summaryrefslogtreecommitdiff
path: root/fw/wmi_unified.h
blob: 536fdfd966ec95a5c17afe2acd711b4e41b55865 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
697
698
699
700
701
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
846
847
848
849
850
851
852
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
868
869
870
871
872
873
874
875
876
877
878
879
880
881
882
883
884
885
886
887
888
889
890
891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906
907
908
909
910
911
912
913
914
915
916
917
918
919
920
921
922
923
924
925
926
927
928
929
930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
958
959
960
961
962
963
964
965
966
967
968
969
970
971
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988
989
990
991
992
993
994
995
996
997
998
999
1000
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047
1048
1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
1070
1071
1072
1073
1074
1075
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
1090
1091
1092
1093
1094
1095
1096
1097
1098
1099
1100
1101
1102
1103
1104
1105
1106
1107
1108
1109
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216
1217
1218
1219
1220
1221
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
1255
1256
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266
1267
1268
1269
1270
1271
1272
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
1296
1297
1298
1299
1300
1301
1302
1303
1304
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316
1317
1318
1319
1320
1321
1322
1323
1324
1325
1326
1327
1328
1329
1330
1331
1332
1333
1334
1335
1336
1337
1338
1339
1340
1341
1342
1343
1344
1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385
1386
1387
1388
1389
1390
1391
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418
1419
1420
1421
1422
1423
1424
1425
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
1441
1442
1443
1444
1445
1446
1447
1448
1449
1450
1451
1452
1453
1454
1455
1456
1457
1458
1459
1460
1461
1462
1463
1464
1465
1466
1467
1468
1469
1470
1471
1472
1473
1474
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
1489
1490
1491
1492
1493
1494
1495
1496
1497
1498
1499
1500
1501
1502
1503
1504
1505
1506
1507
1508
1509
1510
1511
1512
1513
1514
1515
1516
1517
1518
1519
1520
1521
1522
1523
1524
1525
1526
1527
1528
1529
1530
1531
1532
1533
1534
1535
1536
1537
1538
1539
1540
1541
1542
1543
1544
1545
1546
1547
1548
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
1561
1562
1563
1564
1565
1566
1567
1568
1569
1570
1571
1572
1573
1574
1575
1576
1577
1578
1579
1580
1581
1582
1583
1584
1585
1586
1587
1588
1589
1590
1591
1592
1593
1594
1595
1596
1597
1598
1599
1600
1601
1602
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
1618
1619
1620
1621
1622
1623
1624
1625
1626
1627
1628
1629
1630
1631
1632
1633
1634
1635
1636
1637
1638
1639
1640
1641
1642
1643
1644
1645
1646
1647
1648
1649
1650
1651
1652
1653
1654
1655
1656
1657
1658
1659
1660
1661
1662
1663
1664
1665
1666
1667
1668
1669
1670
1671
1672
1673
1674
1675
1676
1677
1678
1679
1680
1681
1682
1683
1684
1685
1686
1687
1688
1689
1690
1691
1692
1693
1694
1695
1696
1697
1698
1699
1700
1701
1702
1703
1704
1705
1706
1707
1708
1709
1710
1711
1712
1713
1714
1715
1716
1717
1718
1719
1720
1721
1722
1723
1724
1725
1726
1727
1728
1729
1730
1731
1732
1733
1734
1735
1736
1737
1738
1739
1740
1741
1742
1743
1744
1745
1746
1747
1748
1749
1750
1751
1752
1753
1754
1755
1756
1757
1758
1759
1760
1761
1762
1763
1764
1765
1766
1767
1768
1769
1770
1771
1772
1773
1774
1775
1776
1777
1778
1779
1780
1781
1782
1783
1784
1785
1786
1787
1788
1789
1790
1791
1792
1793
1794
1795
1796
1797
1798
1799
1800
1801
1802
1803
1804
1805
1806
1807
1808
1809
1810
1811
1812
1813
1814
1815
1816
1817
1818
1819
1820
1821
1822
1823
1824
1825
1826
1827
1828
1829
1830
1831
1832
1833
1834
1835
1836
1837
1838
1839
1840
1841
1842
1843
1844
1845
1846
1847
1848
1849
1850
1851
1852
1853
1854
1855
1856
1857
1858
1859
1860
1861
1862
1863
1864
1865
1866
1867
1868
1869
1870
1871
1872
1873
1874
1875
1876
1877
1878
1879
1880
1881
1882
1883
1884
1885
1886
1887
1888
1889
1890
1891
1892
1893
1894
1895
1896
1897
1898
1899
1900
1901
1902
1903
1904
1905
1906
1907
1908
1909
1910
1911
1912
1913
1914
1915
1916
1917
1918
1919
1920
1921
1922
1923
1924
1925
1926
1927
1928
1929
1930
1931
1932
1933
1934
1935
1936
1937
1938
1939
1940
1941
1942
1943
1944
1945
1946
1947
1948
1949
1950
1951
1952
1953
1954
1955
1956
1957
1958
1959
1960
1961
1962
1963
1964
1965
1966
1967
1968
1969
1970
1971
1972
1973
1974
1975
1976
1977
1978
1979
1980
1981
1982
1983
1984
1985
1986
1987
1988
1989
1990
1991
1992
1993
1994
1995
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
2021
2022
2023
2024
2025
2026
2027
2028
2029
2030
2031
2032
2033
2034
2035
2036
2037
2038
2039
2040
2041
2042
2043
2044
2045
2046
2047
2048
2049
2050
2051
2052
2053
2054
2055
2056
2057
2058
2059
2060
2061
2062
2063
2064
2065
2066
2067
2068
2069
2070
2071
2072
2073
2074
2075
2076
2077
2078
2079
2080
2081
2082
2083
2084
2085
2086
2087
2088
2089
2090
2091
2092
2093
2094
2095
2096
2097
2098
2099
2100
2101
2102
2103
2104
2105
2106
2107
2108
2109
2110
2111
2112
2113
2114
2115
2116
2117
2118
2119
2120
2121
2122
2123
2124
2125
2126
2127
2128
2129
2130
2131
2132
2133
2134
2135
2136
2137
2138
2139
2140
2141
2142
2143
2144
2145
2146
2147
2148
2149
2150
2151
2152
2153
2154
2155
2156
2157
2158
2159
2160
2161
2162
2163
2164
2165
2166
2167
2168
2169
2170
2171
2172
2173
2174
2175
2176
2177
2178
2179
2180
2181
2182
2183
2184
2185
2186
2187
2188
2189
2190
2191
2192
2193
2194
2195
2196
2197
2198
2199
2200
2201
2202
2203
2204
2205
2206
2207
2208
2209
2210
2211
2212
2213
2214
2215
2216
2217
2218
2219
2220
2221
2222
2223
2224
2225
2226
2227
2228
2229
2230
2231
2232
2233
2234
2235
2236
2237
2238
2239
2240
2241
2242
2243
2244
2245
2246
2247
2248
2249
2250
2251
2252
2253
2254
2255
2256
2257
2258
2259
2260
2261
2262
2263
2264
2265
2266
2267
2268
2269
2270
2271
2272
2273
2274
2275
2276
2277
2278
2279
2280
2281
2282
2283
2284
2285
2286
2287
2288
2289
2290
2291
2292
2293
2294
2295
2296
2297
2298
2299
2300
2301
2302
2303
2304
2305
2306
2307
2308
2309
2310
2311
2312
2313
2314
2315
2316
2317
2318
2319
2320
2321
2322
2323
2324
2325
2326
2327
2328
2329
2330
2331
2332
2333
2334
2335
2336
2337
2338
2339
2340
2341
2342
2343
2344
2345
2346
2347
2348
2349
2350
2351
2352
2353
2354
2355
2356
2357
2358
2359
2360
2361
2362
2363
2364
2365
2366
2367
2368
2369
2370
2371
2372
2373
2374
2375
2376
2377
2378
2379
2380
2381
2382
2383
2384
2385
2386
2387
2388
2389
2390
2391
2392
2393
2394
2395
2396
2397
2398
2399
2400
2401
2402
2403
2404
2405
2406
2407
2408
2409
2410
2411
2412
2413
2414
2415
2416
2417
2418
2419
2420
2421
2422
2423
2424
2425
2426
2427
2428
2429
2430
2431
2432
2433
2434
2435
2436
2437
2438
2439
2440
2441
2442
2443
2444
2445
2446
2447
2448
2449
2450
2451
2452
2453
2454
2455
2456
2457
2458
2459
2460
2461
2462
2463
2464
2465
2466
2467
2468
2469
2470
2471
2472
2473
2474
2475
2476
2477
2478
2479
2480
2481
2482
2483
2484
2485
2486
2487
2488
2489
2490
2491
2492
2493
2494
2495
2496
2497
2498
2499
2500
2501
2502
2503
2504
2505
2506
2507
2508
2509
2510
2511
2512
2513
2514
2515
2516
2517
2518
2519
2520
2521
2522
2523
2524
2525
2526
2527
2528
2529
2530
2531
2532
2533
2534
2535
2536
2537
2538
2539
2540
2541
2542
2543
2544
2545
2546
2547
2548
2549
2550
2551
2552
2553
2554
2555
2556
2557
2558
2559
2560
2561
2562
2563
2564
2565
2566
2567
2568
2569
2570
2571
2572
2573
2574
2575
2576
2577
2578
2579
2580
2581
2582
2583
2584
2585
2586
2587
2588
2589
2590
2591
2592
2593
2594
2595
2596
2597
2598
2599
2600
2601
2602
2603
2604
2605
2606
2607
2608
2609
2610
2611
2612
2613
2614
2615
2616
2617
2618
2619
2620
2621
2622
2623
2624
2625
2626
2627
2628
2629
2630
2631
2632
2633
2634
2635
2636
2637
2638
2639
2640
2641
2642
2643
2644
2645
2646
2647
2648
2649
2650
2651
2652
2653
2654
2655
2656
2657
2658
2659
2660
2661
2662
2663
2664
2665
2666
2667
2668
2669
2670
2671
2672
2673
2674
2675
2676
2677
2678
2679
2680
2681
2682
2683
2684
2685
2686
2687
2688
2689
2690
2691
2692
2693
2694
2695
2696
2697
2698
2699
2700
2701
2702
2703
2704
2705
2706
2707
2708
2709
2710
2711
2712
2713
2714
2715
2716
2717
2718
2719
2720
2721
2722
2723
2724
2725
2726
2727
2728
2729
2730
2731
2732
2733
2734
2735
2736
2737
2738
2739
2740
2741
2742
2743
2744
2745
2746
2747
2748
2749
2750
2751
2752
2753
2754
2755
2756
2757
2758
2759
2760
2761
2762
2763
2764
2765
2766
2767
2768
2769
2770
2771
2772
2773
2774
2775
2776
2777
2778
2779
2780
2781
2782
2783
2784
2785
2786
2787
2788
2789
2790
2791
2792
2793
2794
2795
2796
2797
2798
2799
2800
2801
2802
2803
2804
2805
2806
2807
2808
2809
2810
2811
2812
2813
2814
2815
2816
2817
2818
2819
2820
2821
2822
2823
2824
2825
2826
2827
2828
2829
2830
2831
2832
2833
2834
2835
2836
2837
2838
2839
2840
2841
2842
2843
2844
2845
2846
2847
2848
2849
2850
2851
2852
2853
2854
2855
2856
2857
2858
2859
2860
2861
2862
2863
2864
2865
2866
2867
2868
2869
2870
2871
2872
2873
2874
2875
2876
2877
2878
2879
2880
2881
2882
2883
2884
2885
2886
2887
2888
2889
2890
2891
2892
2893
2894
2895
2896
2897
2898
2899
2900
2901
2902
2903
2904
2905
2906
2907
2908
2909
2910
2911
2912
2913
2914
2915
2916
2917
2918
2919
2920
2921
2922
2923
2924
2925
2926
2927
2928
2929
2930
2931
2932
2933
2934
2935
2936
2937
2938
2939
2940
2941
2942
2943
2944
2945
2946
2947
2948
2949
2950
2951
2952
2953
2954
2955
2956
2957
2958
2959
2960
2961
2962
2963
2964
2965
2966
2967
2968
2969
2970
2971
2972
2973
2974
2975
2976
2977
2978
2979
2980
2981
2982
2983
2984
2985
2986
2987
2988
2989
2990
2991
2992
2993
2994
2995
2996
2997
2998
2999
3000
3001
3002
3003
3004
3005
3006
3007
3008
3009
3010
3011
3012
3013
3014
3015
3016
3017
3018
3019
3020
3021
3022
3023
3024
3025
3026
3027
3028
3029
3030
3031
3032
3033
3034
3035
3036
3037
3038
3039
3040
3041
3042
3043
3044
3045
3046
3047
3048
3049
3050
3051
3052
3053
3054
3055
3056
3057
3058
3059
3060
3061
3062
3063
3064
3065
3066
3067
3068
3069
3070
3071
3072
3073
3074
3075
3076
3077
3078
3079
3080
3081
3082
3083
3084
3085
3086
3087
3088
3089
3090
3091
3092
3093
3094
3095
3096
3097
3098
3099
3100
3101
3102
3103
3104
3105
3106
3107
3108
3109
3110
3111
3112
3113
3114
3115
3116
3117
3118
3119
3120
3121
3122
3123
3124
3125
3126
3127
3128
3129
3130
3131
3132
3133
3134
3135
3136
3137
3138
3139
3140
3141
3142
3143
3144
3145
3146
3147
3148
3149
3150
3151
3152
3153
3154
3155
3156
3157
3158
3159
3160
3161
3162
3163
3164
3165
3166
3167
3168
3169
3170
3171
3172
3173
3174
3175
3176
3177
3178
3179
3180
3181
3182
3183
3184
3185
3186
3187
3188
3189
3190
3191
3192
3193
3194
3195
3196
3197
3198
3199
3200
3201
3202
3203
3204
3205
3206
3207
3208
3209
3210
3211
3212
3213
3214
3215
3216
3217
3218
3219
3220
3221
3222
3223
3224
3225
3226
3227
3228
3229
3230
3231
3232
3233
3234
3235
3236
3237
3238
3239
3240
3241
3242
3243
3244
3245
3246
3247
3248
3249
3250
3251
3252
3253
3254
3255
3256
3257
3258
3259
3260
3261
3262
3263
3264
3265
3266
3267
3268
3269
3270
3271
3272
3273
3274
3275
3276
3277
3278
3279
3280
3281
3282
3283
3284
3285
3286
3287
3288
3289
3290
3291
3292
3293
3294
3295
3296
3297
3298
3299
3300
3301
3302
3303
3304
3305
3306
3307
3308
3309
3310
3311
3312
3313
3314
3315
3316
3317
3318
3319
3320
3321
3322
3323
3324
3325
3326
3327
3328
3329
3330
3331
3332
3333
3334
3335
3336
3337
3338
3339
3340
3341
3342
3343
3344
3345
3346
3347
3348
3349
3350
3351
3352
3353
3354
3355
3356
3357
3358
3359
3360
3361
3362
3363
3364
3365
3366
3367
3368
3369
3370
3371
3372
3373
3374
3375
3376
3377
3378
3379
3380
3381
3382
3383
3384
3385
3386
3387
3388
3389
3390
3391
3392
3393
3394
3395
3396
3397
3398
3399
3400
3401
3402
3403
3404
3405
3406
3407
3408
3409
3410
3411
3412
3413
3414
3415
3416
3417
3418
3419
3420
3421
3422
3423
3424
3425
3426
3427
3428
3429
3430
3431
3432
3433
3434
3435
3436
3437
3438
3439
3440
3441
3442
3443
3444
3445
3446
3447
3448
3449
3450
3451
3452
3453
3454
3455
3456
3457
3458
3459
3460
3461
3462
3463
3464
3465
3466
3467
3468
3469
3470
3471
3472
3473
3474
3475
3476
3477
3478
3479
3480
3481
3482
3483
3484
3485
3486
3487
3488
3489
3490
3491
3492
3493
3494
3495
3496
3497
3498
3499
3500
3501
3502
3503
3504
3505
3506
3507
3508
3509
3510
3511
3512
3513
3514
3515
3516
3517
3518
3519
3520
3521
3522
3523
3524
3525
3526
3527
3528
3529
3530
3531
3532
3533
3534
3535
3536
3537
3538
3539
3540
3541
3542
3543
3544
3545
3546
3547
3548
3549
3550
3551
3552
3553
3554
3555
3556
3557
3558
3559
3560
3561
3562
3563
3564
3565
3566
3567
3568
3569
3570
3571
3572
3573
3574
3575
3576
3577
3578
3579
3580
3581
3582
3583
3584
3585
3586
3587
3588
3589
3590
3591
3592
3593
3594
3595
3596
3597
3598
3599
3600
3601
3602
3603
3604
3605
3606
3607
3608
3609
3610
3611
3612
3613
3614
3615
3616
3617
3618
3619
3620
3621
3622
3623
3624
3625
3626
3627
3628
3629
3630
3631
3632
3633
3634
3635
3636
3637
3638
3639
3640
3641
3642
3643
3644
3645
3646
3647
3648
3649
3650
3651
3652
3653
3654
3655
3656
3657
3658
3659
3660
3661
3662
3663
3664
3665
3666
3667
3668
3669
3670
3671
3672
3673
3674
3675
3676
3677
3678
3679
3680
3681
3682
3683
3684
3685
3686
3687
3688
3689
3690
3691
3692
3693
3694
3695
3696
3697
3698
3699
3700
3701
3702
3703
3704
3705
3706
3707
3708
3709
3710
3711
3712
3713
3714
3715
3716
3717
3718
3719
3720
3721
3722
3723
3724
3725
3726
3727
3728
3729
3730
3731
3732
3733
3734
3735
3736
3737
3738
3739
3740
3741
3742
3743
3744
3745
3746
3747
3748
3749
3750
3751
3752
3753
3754
3755
3756
3757
3758
3759
3760
3761
3762
3763
3764
3765
3766
3767
3768
3769
3770
3771
3772
3773
3774
3775
3776
3777
3778
3779
3780
3781
3782
3783
3784
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
3796
3797
3798
3799
3800
3801
3802
3803
3804
3805
3806
3807
3808
3809
3810
3811
3812
3813
3814
3815
3816
3817
3818
3819
3820
3821
3822
3823
3824
3825
3826
3827
3828
3829
3830
3831
3832
3833
3834
3835
3836
3837
3838
3839
3840
3841
3842
3843
3844
3845
3846
3847
3848
3849
3850
3851
3852
3853
3854
3855
3856
3857
3858
3859
3860
3861
3862
3863
3864
3865
3866
3867
3868
3869
3870
3871
3872
3873
3874
3875
3876
3877
3878
3879
3880
3881
3882
3883
3884
3885
3886
3887
3888
3889
3890
3891
3892
3893
3894
3895
3896
3897
3898
3899
3900
3901
3902
3903
3904
3905
3906
3907
3908
3909
3910
3911
3912
3913
3914
3915
3916
3917
3918
3919
3920
3921
3922
3923
3924
3925
3926
3927
3928
3929
3930
3931
3932
3933
3934
3935
3936
3937
3938
3939
3940
3941
3942
3943
3944
3945
3946
3947
3948
3949
3950
3951
3952
3953
3954
3955
3956
3957
3958
3959
3960
3961
3962
3963
3964
3965
3966
3967
3968
3969
3970
3971
3972
3973
3974
3975
3976
3977
3978
3979
3980
3981
3982
3983
3984
3985
3986
3987
3988
3989
3990
3991
3992
3993
3994
3995
3996
3997
3998
3999
4000
4001
4002
4003
4004
4005
4006
4007
4008
4009
4010
4011
4012
4013
4014
4015
4016
4017
4018
4019
4020
4021
4022
4023
4024
4025
4026
4027
4028
4029
4030
4031
4032
4033
4034
4035
4036
4037
4038
4039
4040
4041
4042
4043
4044
4045
4046
4047
4048
4049
4050
4051
4052
4053
4054
4055
4056
4057
4058
4059
4060
4061
4062
4063
4064
4065
4066
4067
4068
4069
4070
4071
4072
4073
4074
4075
4076
4077
4078
4079
4080
4081
4082
4083
4084
4085
4086
4087
4088
4089
4090
4091
4092
4093
4094
4095
4096
4097
4098
4099
4100
4101
4102
4103
4104
4105
4106
4107
4108
4109
4110
4111
4112
4113
4114
4115
4116
4117
4118
4119
4120
4121
4122
4123
4124
4125
4126
4127
4128
4129
4130
4131
4132
4133
4134
4135
4136
4137
4138
4139
4140
4141
4142
4143
4144
4145
4146
4147
4148
4149
4150
4151
4152
4153
4154
4155
4156
4157
4158
4159
4160
4161
4162
4163
4164
4165
4166
4167
4168
4169
4170
4171
4172
4173
4174
4175
4176
4177
4178
4179
4180
4181
4182
4183
4184
4185
4186
4187
4188
4189
4190
4191
4192
4193
4194
4195
4196
4197
4198
4199
4200
4201
4202
4203
4204
4205
4206
4207
4208
4209
4210
4211
4212
4213
4214
4215
4216
4217
4218
4219
4220
4221
4222
4223
4224
4225
4226
4227
4228
4229
4230
4231
4232
4233
4234
4235
4236
4237
4238
4239
4240
4241
4242
4243
4244
4245
4246
4247
4248
4249
4250
4251
4252
4253
4254
4255
4256
4257
4258
4259
4260
4261
4262
4263
4264
4265
4266
4267
4268
4269
4270
4271
4272
4273
4274
4275
4276
4277
4278
4279
4280
4281
4282
4283
4284
4285
4286
4287
4288
4289
4290
4291
4292
4293
4294
4295
4296
4297
4298
4299
4300
4301
4302
4303
4304
4305
4306
4307
4308
4309
4310
4311
4312
4313
4314
4315
4316
4317
4318
4319
4320
4321
4322
4323
4324
4325
4326
4327
4328
4329
4330
4331
4332
4333
4334
4335
4336
4337
4338
4339
4340
4341
4342
4343
4344
4345
4346
4347
4348
4349
4350
4351
4352
4353
4354
4355
4356
4357
4358
4359
4360
4361
4362
4363
4364
4365
4366
4367
4368
4369
4370
4371
4372
4373
4374
4375
4376
4377
4378
4379
4380
4381
4382
4383
4384
4385
4386
4387
4388
4389
4390
4391
4392
4393
4394
4395
4396
4397
4398
4399
4400
4401
4402
4403
4404
4405
4406
4407
4408
4409
4410
4411
4412
4413
4414
4415
4416
4417
4418
4419
4420
4421
4422
4423
4424
4425
4426
4427
4428
4429
4430
4431
4432
4433
4434
4435
4436
4437
4438
4439
4440
4441
4442
4443
4444
4445
4446
4447
4448
4449
4450
4451
4452
4453
4454
4455
4456
4457
4458
4459
4460
4461
4462
4463
4464
4465
4466
4467
4468
4469
4470
4471
4472
4473
4474
4475
4476
4477
4478
4479
4480
4481
4482
4483
4484
4485
4486
4487
4488
4489
4490
4491
4492
4493
4494
4495
4496
4497
4498
4499
4500
4501
4502
4503
4504
4505
4506
4507
4508
4509
4510
4511
4512
4513
4514
4515
4516
4517
4518
4519
4520
4521
4522
4523
4524
4525
4526
4527
4528
4529
4530
4531
4532
4533
4534
4535
4536
4537
4538
4539
4540
4541
4542
4543
4544
4545
4546
4547
4548
4549
4550
4551
4552
4553
4554
4555
4556
4557
4558
4559
4560
4561
4562
4563
4564
4565
4566
4567
4568
4569
4570
4571
4572
4573
4574
4575
4576
4577
4578
4579
4580
4581
4582
4583
4584
4585
4586
4587
4588
4589
4590
4591
4592
4593
4594
4595
4596
4597
4598
4599
4600
4601
4602
4603
4604
4605
4606
4607
4608
4609
4610
4611
4612
4613
4614
4615
4616
4617
4618
4619
4620
4621
4622
4623
4624
4625
4626
4627
4628
4629
4630
4631
4632
4633
4634
4635
4636
4637
4638
4639
4640
4641
4642
4643
4644
4645
4646
4647
4648
4649
4650
4651
4652
4653
4654
4655
4656
4657
4658
4659
4660
4661
4662
4663
4664
4665
4666
4667
4668
4669
4670
4671
4672
4673
4674
4675
4676
4677
4678
4679
4680
4681
4682
4683
4684
4685
4686
4687
4688
4689
4690
4691
4692
4693
4694
4695
4696
4697
4698
4699
4700
4701
4702
4703
4704
4705
4706
4707
4708
4709
4710
4711
4712
4713
4714
4715
4716
4717
4718
4719
4720
4721
4722
4723
4724
4725
4726
4727
4728
4729
4730
4731
4732
4733
4734
4735
4736
4737
4738
4739
4740
4741
4742
4743
4744
4745
4746
4747
4748
4749
4750
4751
4752
4753
4754
4755
4756
4757
4758
4759
4760
4761
4762
4763
4764
4765
4766
4767
4768
4769
4770
4771
4772
4773
4774
4775
4776
4777
4778
4779
4780
4781
4782
4783
4784
4785
4786
4787
4788
4789
4790
4791
4792
4793
4794
4795
4796
4797
4798
4799
4800
4801
4802
4803
4804
4805
4806
4807
4808
4809
4810
4811
4812
4813
4814
4815
4816
4817
4818
4819
4820
4821
4822
4823
4824
4825
4826
4827
4828
4829
4830
4831
4832
4833
4834
4835
4836
4837
4838
4839
4840
4841
4842
4843
4844
4845
4846
4847
4848
4849
4850
4851
4852
4853
4854
4855
4856
4857
4858
4859
4860
4861
4862
4863
4864
4865
4866
4867
4868
4869
4870
4871
4872
4873
4874
4875
4876
4877
4878
4879
4880
4881
4882
4883
4884
4885
4886
4887
4888
4889
4890
4891
4892
4893
4894
4895
4896
4897
4898
4899
4900
4901
4902
4903
4904
4905
4906
4907
4908
4909
4910
4911
4912
4913
4914
4915
4916
4917
4918
4919
4920
4921
4922
4923
4924
4925
4926
4927
4928
4929
4930
4931
4932
4933
4934
4935
4936
4937
4938
4939
4940
4941
4942
4943
4944
4945
4946
4947
4948
4949
4950
4951
4952
4953
4954
4955
4956
4957
4958
4959
4960
4961
4962
4963
4964
4965
4966
4967
4968
4969
4970
4971
4972
4973
4974
4975
4976
4977
4978
4979
4980
4981
4982
4983
4984
4985
4986
4987
4988
4989
4990
4991
4992
4993
4994
4995
4996
4997
4998
4999
5000
5001
5002
5003
5004
5005
5006
5007
5008
5009
5010
5011
5012
5013
5014
5015
5016
5017
5018
5019
5020
5021
5022
5023
5024
5025
5026
5027
5028
5029
5030
5031
5032
5033
5034
5035
5036
5037
5038
5039
5040
5041
5042
5043
5044
5045
5046
5047
5048
5049
5050
5051
5052
5053
5054
5055
5056
5057
5058
5059
5060
5061
5062
5063
5064
5065
5066
5067
5068
5069
5070
5071
5072
5073
5074
5075
5076
5077
5078
5079
5080
5081
5082
5083
5084
5085
5086
5087
5088
5089
5090
5091
5092
5093
5094
5095
5096
5097
5098
5099
5100
5101
5102
5103
5104
5105
5106
5107
5108
5109
5110
5111
5112
5113
5114
5115
5116
5117
5118
5119
5120
5121
5122
5123
5124
5125
5126
5127
5128
5129
5130
5131
5132
5133
5134
5135
5136
5137
5138
5139
5140
5141
5142
5143
5144
5145
5146
5147
5148
5149
5150
5151
5152
5153
5154
5155
5156
5157
5158
5159
5160
5161
5162
5163
5164
5165
5166
5167
5168
5169
5170
5171
5172
5173
5174
5175
5176
5177
5178
5179
5180
5181
5182
5183
5184
5185
5186
5187
5188
5189
5190
5191
5192
5193
5194
5195
5196
5197
5198
5199
5200
5201
5202
5203
5204
5205
5206
5207
5208
5209
5210
5211
5212
5213
5214
5215
5216
5217
5218
5219
5220
5221
5222
5223
5224
5225
5226
5227
5228
5229
5230
5231
5232
5233
5234
5235
5236
5237
5238
5239
5240
5241
5242
5243
5244
5245
5246
5247
5248
5249
5250
5251
5252
5253
5254
5255
5256
5257
5258
5259
5260
5261
5262
5263
5264
5265
5266
5267
5268
5269
5270
5271
5272
5273
5274
5275
5276
5277
5278
5279
5280
5281
5282
5283
5284
5285
5286
5287
5288
5289
5290
5291
5292
5293
5294
5295
5296
5297
5298
5299
5300
5301
5302
5303
5304
5305
5306
5307
5308
5309
5310
5311
5312
5313
5314
5315
5316
5317
5318
5319
5320
5321
5322
5323
5324
5325
5326
5327
5328
5329
5330
5331
5332
5333
5334
5335
5336
5337
5338
5339
5340
5341
5342
5343
5344
5345
5346
5347
5348
5349
5350
5351
5352
5353
5354
5355
5356
5357
5358
5359
5360
5361
5362
5363
5364
5365
5366
5367
5368
5369
5370
5371
5372
5373
5374
5375
5376
5377
5378
5379
5380
5381
5382
5383
5384
5385
5386
5387
5388
5389
5390
5391
5392
5393
5394
5395
5396
5397
5398
5399
5400
5401
5402
5403
5404
5405
5406
5407
5408
5409
5410
5411
5412
5413
5414
5415
5416
5417
5418
5419
5420
5421
5422
5423
5424
5425
5426
5427
5428
5429
5430
5431
5432
5433
5434
5435
5436
5437
5438
5439
5440
5441
5442
5443
5444
5445
5446
5447
5448
5449
5450
5451
5452
5453
5454
5455
5456
5457
5458
5459
5460
5461
5462
5463
5464
5465
5466
5467
5468
5469
5470
5471
5472
5473
5474
5475
5476
5477
5478
5479
5480
5481
5482
5483
5484
5485
5486
5487
5488
5489
5490
5491
5492
5493
5494
5495
5496
5497
5498
5499
5500
5501
5502
5503
5504
5505
5506
5507
5508
5509
5510
5511
5512
5513
5514
5515
5516
5517
5518
5519
5520
5521
5522
5523
5524
5525
5526
5527
5528
5529
5530
5531
5532
5533
5534
5535
5536
5537
5538
5539
5540
5541
5542
5543
5544
5545
5546
5547
5548
5549
5550
5551
5552
5553
5554
5555
5556
5557
5558
5559
5560
5561
5562
5563
5564
5565
5566
5567
5568
5569
5570
5571
5572
5573
5574
5575
5576
5577
5578
5579
5580
5581
5582
5583
5584
5585
5586
5587
5588
5589
5590
5591
5592
5593
5594
5595
5596
5597
5598
5599
5600
5601
5602
5603
5604
5605
5606
5607
5608
5609
5610
5611
5612
5613
5614
5615
5616
5617
5618
5619
5620
5621
5622
5623
5624
5625
5626
5627
5628
5629
5630
5631
5632
5633
5634
5635
5636
5637
5638
5639
5640
5641
5642
5643
5644
5645
5646
5647
5648
5649
5650
5651
5652
5653
5654
5655
5656
5657
5658
5659
5660
5661
5662
5663
5664
5665
5666
5667
5668
5669
5670
5671
5672
5673
5674
5675
5676
5677
5678
5679
5680
5681
5682
5683
5684
5685
5686
5687
5688
5689
5690
5691
5692
5693
5694
5695
5696
5697
5698
5699
5700
5701
5702
5703
5704
5705
5706
5707
5708
5709
5710
5711
5712
5713
5714
5715
5716
5717
5718
5719
5720
5721
5722
5723
5724
5725
5726
5727
5728
5729
5730
5731
5732
5733
5734
5735
5736
5737
5738
5739
5740
5741
5742
5743
5744
5745
5746
5747
5748
5749
5750
5751
5752
5753
5754
5755
5756
5757
5758
5759
5760
5761
5762
5763
5764
5765
5766
5767
5768
5769
5770
5771
5772
5773
5774
5775
5776
5777
5778
5779
5780
5781
5782
5783
5784
5785
5786
5787
5788
5789
5790
5791
5792
5793
5794
5795
5796
5797
5798
5799
5800
5801
5802
5803
5804
5805
5806
5807
5808
5809
5810
5811
5812
5813
5814
5815
5816
5817
5818
5819
5820
5821
5822
5823
5824
5825
5826
5827
5828
5829
5830
5831
5832
5833
5834
5835
5836
5837
5838
5839
5840
5841
5842
5843
5844
5845
5846
5847
5848
5849
5850
5851
5852
5853
5854
5855
5856
5857
5858
5859
5860
5861
5862
5863
5864
5865
5866
5867
5868
5869
5870
5871
5872
5873
5874
5875
5876
5877
5878
5879
5880
5881
5882
5883
5884
5885
5886
5887
5888
5889
5890
5891
5892
5893
5894
5895
5896
5897
5898
5899
5900
5901
5902
5903
5904
5905
5906
5907
5908
5909
5910
5911
5912
5913
5914
5915
5916
5917
5918
5919
5920
5921
5922
5923
5924
5925
5926
5927
5928
5929
5930
5931
5932
5933
5934
5935
5936
5937
5938
5939
5940
5941
5942
5943
5944
5945
5946
5947
5948
5949
5950
5951
5952
5953
5954
5955
5956
5957
5958
5959
5960
5961
5962
5963
5964
5965
5966
5967
5968
5969
5970
5971
5972
5973
5974
5975
5976
5977
5978
5979
5980
5981
5982
5983
5984
5985
5986
5987
5988
5989
5990
5991
5992
5993
5994
5995
5996
5997
5998
5999
6000
6001
6002
6003
6004
6005
6006
6007
6008
6009
6010
6011
6012
6013
6014
6015
6016
6017
6018
6019
6020
6021
6022
6023
6024
6025
6026
6027
6028
6029
6030
6031
6032
6033
6034
6035
6036
6037
6038
6039
6040
6041
6042
6043
6044
6045
6046
6047
6048
6049
6050
6051
6052
6053
6054
6055
6056
6057
6058
6059
6060
6061
6062
6063
6064
6065
6066
6067
6068
6069
6070
6071
6072
6073
6074
6075
6076
6077
6078
6079
6080
6081
6082
6083
6084
6085
6086
6087
6088
6089
6090
6091
6092
6093
6094
6095
6096
6097
6098
6099
6100
6101
6102
6103
6104
6105
6106
6107
6108
6109
6110
6111
6112
6113
6114
6115
6116
6117
6118
6119
6120
6121
6122
6123
6124
6125
6126
6127
6128
6129
6130
6131
6132
6133
6134
6135
6136
6137
6138
6139
6140
6141
6142
6143
6144
6145
6146
6147
6148
6149
6150
6151
6152
6153
6154
6155
6156
6157
6158
6159
6160
6161
6162
6163
6164
6165
6166
6167
6168
6169
6170
6171
6172
6173
6174
6175
6176
6177
6178
6179
6180
6181
6182
6183
6184
6185
6186
6187
6188
6189
6190
6191
6192
6193
6194
6195
6196
6197
6198
6199
6200
6201
6202
6203
6204
6205
6206
6207
6208
6209
6210
6211
6212
6213
6214
6215
6216
6217
6218
6219
6220
6221
6222
6223
6224
6225
6226
6227
6228
6229
6230
6231
6232
6233
6234
6235
6236
6237
6238
6239
6240
6241
6242
6243
6244
6245
6246
6247
6248
6249
6250
6251
6252
6253
6254
6255
6256
6257
6258
6259
6260
6261
6262
6263
6264
6265
6266
6267
6268
6269
6270
6271
6272
6273
6274
6275
6276
6277
6278
6279
6280
6281
6282
6283
6284
6285
6286
6287
6288
6289
6290
6291
6292
6293
6294
6295
6296
6297
6298
6299
6300
6301
6302
6303
6304
6305
6306
6307
6308
6309
6310
6311
6312
6313
6314
6315
6316
6317
6318
6319
6320
6321
6322
6323
6324
6325
6326
6327
6328
6329
6330
6331
6332
6333
6334
6335
6336
6337
6338
6339
6340
6341
6342
6343
6344
6345
6346
6347
6348
6349
6350
6351
6352
6353
6354
6355
6356
6357
6358
6359
6360
6361
6362
6363
6364
6365
6366
6367
6368
6369
6370
6371
6372
6373
6374
6375
6376
6377
6378
6379
6380
6381
6382
6383
6384
6385
6386
6387
6388
6389
6390
6391
6392
6393
6394
6395
6396
6397
6398
6399
6400
6401
6402
6403
6404
6405
6406
6407
6408
6409
6410
6411
6412
6413
6414
6415
6416
6417
6418
6419
6420
6421
6422
6423
6424
6425
6426
6427
6428
6429
6430
6431
6432
6433
6434
6435
6436
6437
6438
6439
6440
6441
6442
6443
6444
6445
6446
6447
6448
6449
6450
6451
6452
6453
6454
6455
6456
6457
6458
6459
6460
6461
6462
6463
6464
6465
6466
6467
6468
6469
6470
6471
6472
6473
6474
6475
6476
6477
6478
6479
6480
6481
6482
6483
6484
6485
6486
6487
6488
6489
6490
6491
6492
6493
6494
6495
6496
6497
6498
6499
6500
6501
6502
6503
6504
6505
6506
6507
6508
6509
6510
6511
6512
6513
6514
6515
6516
6517
6518
6519
6520
6521
6522
6523
6524
6525
6526
6527
6528
6529
6530
6531
6532
6533
6534
6535
6536
6537
6538
6539
6540
6541
6542
6543
6544
6545
6546
6547
6548
6549
6550
6551
6552
6553
6554
6555
6556
6557
6558
6559
6560
6561
6562
6563
6564
6565
6566
6567
6568
6569
6570
6571
6572
6573
6574
6575
6576
6577
6578
6579
6580
6581
6582
6583
6584
6585
6586
6587
6588
6589
6590
6591
6592
6593
6594
6595
6596
6597
6598
6599
6600
6601
6602
6603
6604
6605
6606
6607
6608
6609
6610
6611
6612
6613
6614
6615
6616
6617
6618
6619
6620
6621
6622
6623
6624
6625
6626
6627
6628
6629
6630
6631
6632
6633
6634
6635
6636
6637
6638
6639
6640
6641
6642
6643
6644
6645
6646
6647
6648
6649
6650
6651
6652
6653
6654
6655
6656
6657
6658
6659
6660
6661
6662
6663
6664
6665
6666
6667
6668
6669
6670
6671
6672
6673
6674
6675
6676
6677
6678
6679
6680
6681
6682
6683
6684
6685
6686
6687
6688
6689
6690
6691
6692
6693
6694
6695
6696
6697
6698
6699
6700
6701
6702
6703
6704
6705
6706
6707
6708
6709
6710
6711
6712
6713
6714
6715
6716
6717
6718
6719
6720
6721
6722
6723
6724
6725
6726
6727
6728
6729
6730
6731
6732
6733
6734
6735
6736
6737
6738
6739
6740
6741
6742
6743
6744
6745
6746
6747
6748
6749
6750
6751
6752
6753
6754
6755
6756
6757
6758
6759
6760
6761
6762
6763
6764
6765
6766
6767
6768
6769
6770
6771
6772
6773
6774
6775
6776
6777
6778
6779
6780
6781
6782
6783
6784
6785
6786
6787
6788
6789
6790
6791
6792
6793
6794
6795
6796
6797
6798
6799
6800
6801
6802
6803
6804
6805
6806
6807
6808
6809
6810
6811
6812
6813
6814
6815
6816
6817
6818
6819
6820
6821
6822
6823
6824
6825
6826
6827
6828
6829
6830
6831
6832
6833
6834
6835
6836
6837
6838
6839
6840
6841
6842
6843
6844
6845
6846
6847
6848
6849
6850
6851
6852
6853
6854
6855
6856
6857
6858
6859
6860
6861
6862
6863
6864
6865
6866
6867
6868
6869
6870
6871
6872
6873
6874
6875
6876
6877
6878
6879
6880
6881
6882
6883
6884
6885
6886
6887
6888
6889
6890
6891
6892
6893
6894
6895
6896
6897
6898
6899
6900
6901
6902
6903
6904
6905
6906
6907
6908
6909
6910
6911
6912
6913
6914
6915
6916
6917
6918
6919
6920
6921
6922
6923
6924
6925
6926
6927
6928
6929
6930
6931
6932
6933
6934
6935
6936
6937
6938
6939
6940
6941
6942
6943
6944
6945
6946
6947
6948
6949
6950
6951
6952
6953
6954
6955
6956
6957
6958
6959
6960
6961
6962
6963
6964
6965
6966
6967
6968
6969
6970
6971
6972
6973
6974
6975
6976
6977
6978
6979
6980
6981
6982
6983
6984
6985
6986
6987
6988
6989
6990
6991
6992
6993
6994
6995
6996
6997
6998
6999
7000
7001
7002
7003
7004
7005
7006
7007
7008
7009
7010
7011
7012
7013
7014
7015
7016
7017
7018
7019
7020
7021
7022
7023
7024
7025
7026
7027
7028
7029
7030
7031
7032
7033
7034
7035
7036
7037
7038
7039
7040
7041
7042
7043
7044
7045
7046
7047
7048
7049
7050
7051
7052
7053
7054
7055
7056
7057
7058
7059
7060
7061
7062
7063
7064
7065
7066
7067
7068
7069
7070
7071
7072
7073
7074
7075
7076
7077
7078
7079
7080
7081
7082
7083
7084
7085
7086
7087
7088
7089
7090
7091
7092
7093
7094
7095
7096
7097
7098
7099
7100
7101
7102
7103
7104
7105
7106
7107
7108
7109
7110
7111
7112
7113
7114
7115
7116
7117
7118
7119
7120
7121
7122
7123
7124
7125
7126
7127
7128
7129
7130
7131
7132
7133
7134
7135
7136
7137
7138
7139
7140
7141
7142
7143
7144
7145
7146
7147
7148
7149
7150
7151
7152
7153
7154
7155
7156
7157
7158
7159
7160
7161
7162
7163
7164
7165
7166
7167
7168
7169
7170
7171
7172
7173
7174
7175
7176
7177
7178
7179
7180
7181
7182
7183
7184
7185
7186
7187
7188
7189
7190
7191
7192
7193
7194
7195
7196
7197
7198
7199
7200
7201
7202
7203
7204
7205
7206
7207
7208
7209
7210
7211
7212
7213
7214
7215
7216
7217
7218
7219
7220
7221
7222
7223
7224
7225
7226
7227
7228
7229
7230
7231
7232
7233
7234
7235
7236
7237
7238
7239
7240
7241
7242
7243
7244
7245
7246
7247
7248
7249
7250
7251
7252
7253
7254
7255
7256
7257
7258
7259
7260
7261
7262
7263
7264
7265
7266
7267
7268
7269
7270
7271
7272
7273
7274
7275
7276
7277
7278
7279
7280
7281
7282
7283
7284
7285
7286
7287
7288
7289
7290
7291
7292
7293
7294
7295
7296
7297
7298
7299
7300
7301
7302
7303
7304
7305
7306
7307
7308
7309
7310
7311
7312
7313
7314
7315
7316
7317
7318
7319
7320
7321
7322
7323
7324
7325
7326
7327
7328
7329
7330
7331
7332
7333
7334
7335
7336
7337
7338
7339
7340
7341
7342
7343
7344
7345
7346
7347
7348
7349
7350
7351
7352
7353
7354
7355
7356
7357
7358
7359
7360
7361
7362
7363
7364
7365
7366
7367
7368
7369
7370
7371
7372
7373
7374
7375
7376
7377
7378
7379
7380
7381
7382
7383
7384
7385
7386
7387
7388
7389
7390
7391
7392
7393
7394
7395
7396
7397
7398
7399
7400
7401
7402
7403
7404
7405
7406
7407
7408
7409
7410
7411
7412
7413
7414
7415
7416
7417
7418
7419
7420
7421
7422
7423
7424
7425
7426
7427
7428
7429
7430
7431
7432
7433
7434
7435
7436
7437
7438
7439
7440
7441
7442
7443
7444
7445
7446
7447
7448
7449
7450
7451
7452
7453
7454
7455
7456
7457
7458
7459
7460
7461
7462
7463
7464
7465
7466
7467
7468
7469
7470
7471
7472
7473
7474
7475
7476
7477
7478
7479
7480
7481
7482
7483
7484
7485
7486
7487
7488
7489
7490
7491
7492
7493
7494
7495
7496
7497
7498
7499
7500
7501
7502
7503
7504
7505
7506
7507
7508
7509
7510
7511
7512
7513
7514
7515
7516
7517
7518
7519
7520
7521
7522
7523
7524
7525
7526
7527
7528
7529
7530
7531
7532
7533
7534
7535
7536
7537
7538
7539
7540
7541
7542
7543
7544
7545
7546
7547
7548
7549
7550
7551
7552
7553
7554
7555
7556
7557
7558
7559
7560
7561
7562
7563
7564
7565
7566
7567
7568
7569
7570
7571
7572
7573
7574
7575
7576
7577
7578
7579
7580
7581
7582
7583
7584
7585
7586
7587
7588
7589
7590
7591
7592
7593
7594
7595
7596
7597
7598
7599
7600
7601
7602
7603
7604
7605
7606
7607
7608
7609
7610
7611
7612
7613
7614
7615
7616
7617
7618
7619
7620
7621
7622
7623
7624
7625
7626
7627
7628
7629
7630
7631
7632
7633
7634
7635
7636
7637
7638
7639
7640
7641
7642
7643
7644
7645
7646
7647
7648
7649
7650
7651
7652
7653
7654
7655
7656
7657
7658
7659
7660
7661
7662
7663
7664
7665
7666
7667
7668
7669
7670
7671
7672
7673
7674
7675
7676
7677
7678
7679
7680
7681
7682
7683
7684
7685
7686
7687
7688
7689
7690
7691
7692
7693
7694
7695
7696
7697
7698
7699
7700
7701
7702
7703
7704
7705
7706
7707
7708
7709
7710
7711
7712
7713
7714
7715
7716
7717
7718
7719
7720
7721
7722
7723
7724
7725
7726
7727
7728
7729
7730
7731
7732
7733
7734
7735
7736
7737
7738
7739
7740
7741
7742
7743
7744
7745
7746
7747
7748
7749
7750
7751
7752
7753
7754
7755
7756
7757
7758
7759
7760
7761
7762
7763
7764
7765
7766
7767
7768
7769
7770
7771
7772
7773
7774
7775
7776
7777
7778
7779
7780
7781
7782
7783
7784
7785
7786
7787
7788
7789
7790
7791
7792
7793
7794
7795
7796
7797
7798
7799
7800
7801
7802
7803
7804
7805
7806
7807
7808
7809
7810
7811
7812
7813
7814
7815
7816
7817
7818
7819
7820
7821
7822
7823
7824
7825
7826
7827
7828
7829
7830
7831
7832
7833
7834
7835
7836
7837
7838
7839
7840
7841
7842
7843
7844
7845
7846
7847
7848
7849
7850
7851
7852
7853
7854
7855
7856
7857
7858
7859
7860
7861
7862
7863
7864
7865
7866
7867
7868
7869
7870
7871
7872
7873
7874
7875
7876
7877
7878
7879
7880
7881
7882
7883
7884
7885
7886
7887
7888
7889
7890
7891
7892
7893
7894
7895
7896
7897
7898
7899
7900
7901
7902
7903
7904
7905
7906
7907
7908
7909
7910
7911
7912
7913
7914
7915
7916
7917
7918
7919
7920
7921
7922
7923
7924
7925
7926
7927
7928
7929
7930
7931
7932
7933
7934
7935
7936
7937
7938
7939
7940
7941
7942
7943
7944
7945
7946
7947
7948
7949
7950
7951
7952
7953
7954
7955
7956
7957
7958
7959
7960
7961
7962
7963
7964
7965
7966
7967
7968
7969
7970
7971
7972
7973
7974
7975
7976
7977
7978
7979
7980
7981
7982
7983
7984
7985
7986
7987
7988
7989
7990
7991
7992
7993
7994
7995
7996
7997
7998
7999
8000
8001
8002
8003
8004
8005
8006
8007
8008
8009
8010
8011
8012
8013
8014
8015
8016
8017
8018
8019
8020
8021
8022
8023
8024
8025
8026
8027
8028
8029
8030
8031
8032
8033
8034
8035
8036
8037
8038
8039
8040
8041
8042
8043
8044
8045
8046
8047
8048
8049
8050
8051
8052
8053
8054
8055
8056
8057
8058
8059
8060
8061
8062
8063
8064
8065
8066
8067
8068
8069
8070
8071
8072
8073
8074
8075
8076
8077
8078
8079
8080
8081
8082
8083
8084
8085
8086
8087
8088
8089
8090
8091
8092
8093
8094
8095
8096
8097
8098
8099
8100
8101
8102
8103
8104
8105
8106
8107
8108
8109
8110
8111
8112
8113
8114
8115
8116
8117
8118
8119
8120
8121
8122
8123
8124
8125
8126
8127
8128
8129
8130
8131
8132
8133
8134
8135
8136
8137
8138
8139
8140
8141
8142
8143
8144
8145
8146
8147
8148
8149
8150
8151
8152
8153
8154
8155
8156
8157
8158
8159
8160
8161
8162
8163
8164
8165
8166
8167
8168
8169
8170
8171
8172
8173
8174
8175
8176
8177
8178
8179
8180
8181
8182
8183
8184
8185
8186
8187
8188
8189
8190
8191
8192
8193
8194
8195
8196
8197
8198
8199
8200
8201
8202
8203
8204
8205
8206
8207
8208
8209
8210
8211
8212
8213
8214
8215
8216
8217
8218
8219
8220
8221
8222
8223
8224
8225
8226
8227
8228
8229
8230
8231
8232
8233
8234
8235
8236
8237
8238
8239
8240
8241
8242
8243
8244
8245
8246
8247
8248
8249
8250
8251
8252
8253
8254
8255
8256
8257
8258
8259
8260
8261
8262
8263
8264
8265
8266
8267
8268
8269
8270
8271
8272
8273
8274
8275
8276
8277
8278
8279
8280
8281
8282
8283
8284
8285
8286
8287
8288
8289
8290
8291
8292
8293
8294
8295
8296
8297
8298
8299
8300
8301
8302
8303
8304
8305
8306
8307
8308
8309
8310
8311
8312
8313
8314
8315
8316
8317
8318
8319
8320
8321
8322
8323
8324
8325
8326
8327
8328
8329
8330
8331
8332
8333
8334
8335
8336
8337
8338
8339
8340
8341
8342
8343
8344
8345
8346
8347
8348
8349
8350
8351
8352
8353
8354
8355
8356
8357
8358
8359
8360
8361
8362
8363
8364
8365
8366
8367
8368
8369
8370
8371
8372
8373
8374
8375
8376
8377
8378
8379
8380
8381
8382
8383
8384
8385
8386
8387
8388
8389
8390
8391
8392
8393
8394
8395
8396
8397
8398
8399
8400
8401
8402
8403
8404
8405
8406
8407
8408
8409
8410
8411
8412
8413
8414
8415
8416
8417
8418
8419
8420
8421
8422
8423
8424
8425
8426
8427
8428
8429
8430
8431
8432
8433
8434
8435
8436
8437
8438
8439
8440
8441
8442
8443
8444
8445
8446
8447
8448
8449
8450
8451
8452
8453
8454
8455
8456
8457
8458
8459
8460
8461
8462
8463
8464
8465
8466
8467
8468
8469
8470
8471
8472
8473
8474
8475
8476
8477
8478
8479
8480
8481
8482
8483
8484
8485
8486
8487
8488
8489
8490
8491
8492
8493
8494
8495
8496
8497
8498
8499
8500
8501
8502
8503
8504
8505
8506
8507
8508
8509
8510
8511
8512
8513
8514
8515
8516
8517
8518
8519
8520
8521
8522
8523
8524
8525
8526
8527
8528
8529
8530
8531
8532
8533
8534
8535
8536
8537
8538
8539
8540
8541
8542
8543
8544
8545
8546
8547
8548
8549
8550
8551
8552
8553
8554
8555
8556
8557
8558
8559
8560
8561
8562
8563
8564
8565
8566
8567
8568
8569
8570
8571
8572
8573
8574
8575
8576
8577
8578
8579
8580
8581
8582
8583
8584
8585
8586
8587
8588
8589
8590
8591
8592
8593
8594
8595
8596
8597
8598
8599
8600
8601
8602
8603
8604
8605
8606
8607
8608
8609
8610
8611
8612
8613
8614
8615
8616
8617
8618
8619
8620
8621
8622
8623
8624
8625
8626
8627
8628
8629
8630
8631
8632
8633
8634
8635
8636
8637
8638
8639
8640
8641
8642
8643
8644
8645
8646
8647
8648
8649
8650
8651
8652
8653
8654
8655
8656
8657
8658
8659
8660
8661
8662
8663
8664
8665
8666
8667
8668
8669
8670
8671
8672
8673
8674
8675
8676
8677
8678
8679
8680
8681
8682
8683
8684
8685
8686
8687
8688
8689
8690
8691
8692
8693
8694
8695
8696
8697
8698
8699
8700
8701
8702
8703
8704
8705
8706
8707
8708
8709
8710
8711
8712
8713
8714
8715
8716
8717
8718
8719
8720
8721
8722
8723
8724
8725
8726
8727
8728
8729
8730
8731
8732
8733
8734
8735
8736
8737
8738
8739
8740
8741
8742
8743
8744
8745
8746
8747
8748
8749
8750
8751
8752
8753
8754
8755
8756
8757
8758
8759
8760
8761
8762
8763
8764
8765
8766
8767
8768
8769
8770
8771
8772
8773
8774
8775
8776
8777
8778
8779
8780
8781
8782
8783
8784
8785
8786
8787
8788
8789
8790
8791
8792
8793
8794
8795
8796
8797
8798
8799
8800
8801
8802
8803
8804
8805
8806
8807
8808
8809
8810
8811
8812
8813
8814
8815
8816
8817
8818
8819
8820
8821
8822
8823
8824
8825
8826
8827
8828
8829
8830
8831
8832
8833
8834
8835
8836
8837
8838
8839
8840
8841
8842
8843
8844
8845
8846
8847
8848
8849
8850
8851
8852
8853
8854
8855
8856
8857
8858
8859
8860
8861
8862
8863
8864
8865
8866
8867
8868
8869
8870
8871
8872
8873
8874
8875
8876
8877
8878
8879
8880
8881
8882
8883
8884
8885
8886
8887
8888
8889
8890
8891
8892
8893
8894
8895
8896
8897
8898
8899
8900
8901
8902
8903
8904
8905
8906
8907
8908
8909
8910
8911
8912
8913
8914
8915
8916
8917
8918
8919
8920
8921
8922
8923
8924
8925
8926
8927
8928
8929
8930
8931
8932
8933
8934
8935
8936
8937
8938
8939
8940
8941
8942
8943
8944
8945
8946
8947
8948
8949
8950
8951
8952
8953
8954
8955
8956
8957
8958
8959
8960
8961
8962
8963
8964
8965
8966
8967
8968
8969
8970
8971
8972
8973
8974
8975
8976
8977
8978
8979
8980
8981
8982
8983
8984
8985
8986
8987
8988
8989
8990
8991
8992
8993
8994
8995
8996
8997
8998
8999
9000
9001
9002
9003
9004
9005
9006
9007
9008
9009
9010
9011
9012
9013
9014
9015
9016
9017
9018
9019
9020
9021
9022
9023
9024
9025
9026
9027
9028
9029
9030
9031
9032
9033
9034
9035
9036
9037
9038
9039
9040
9041
9042
9043
9044
9045
9046
9047
9048
9049
9050
9051
9052
9053
9054
9055
9056
9057
9058
9059
9060
9061
9062
9063
9064
9065
9066
9067
9068
9069
9070
9071
9072
9073
9074
9075
9076
9077
9078
9079
9080
9081
9082
9083
9084
9085
9086
9087
9088
9089
9090
9091
9092
9093
9094
9095
9096
9097
9098
9099
9100
9101
9102
9103
9104
9105
9106
9107
9108
9109
9110
9111
9112
9113
9114
9115
9116
9117
9118
9119
9120
9121
9122
9123
9124
9125
9126
9127
9128
9129
9130
9131
9132
9133
9134
9135
9136
9137
9138
9139
9140
9141
9142
9143
9144
9145
9146
9147
9148
9149
9150
9151
9152
9153
9154
9155
9156
9157
9158
9159
9160
9161
9162
9163
9164
9165
9166
9167
9168
9169
9170
9171
9172
9173
9174
9175
9176
9177
9178
9179
9180
9181
9182
9183
9184
9185
9186
9187
9188
9189
9190
9191
9192
9193
9194
9195
9196
9197
9198
9199
9200
9201
9202
9203
9204
9205
9206
9207
9208
9209
9210
9211
9212
9213
9214
9215
9216
9217
9218
9219
9220
9221
9222
9223
9224
9225
9226
9227
9228
9229
9230
9231
9232
9233
9234
9235
9236
9237
9238
9239
9240
9241
9242
9243
9244
9245
9246
9247
9248
9249
9250
9251
9252
9253
9254
9255
9256
9257
9258
9259
9260
9261
9262
9263
9264
9265
9266
9267
9268
9269
9270
9271
9272
9273
9274
9275
9276
9277
9278
9279
9280
9281
9282
9283
9284
9285
9286
9287
9288
9289
9290
9291
9292
9293
9294
9295
9296
9297
9298
9299
9300
9301
9302
9303
9304
9305
9306
9307
9308
9309
9310
9311
9312
9313
9314
9315
9316
9317
9318
9319
9320
9321
9322
9323
9324
9325
9326
9327
9328
9329
9330
9331
9332
9333
9334
9335
9336
9337
9338
9339
9340
9341
9342
9343
9344
9345
9346
9347
9348
9349
9350
9351
9352
9353
9354
9355
9356
9357
9358
9359
9360
9361
9362
9363
9364
9365
9366
9367
9368
9369
9370
9371
9372
9373
9374
9375
9376
9377
9378
9379
9380
9381
9382
9383
9384
9385
9386
9387
9388
9389
9390
9391
9392
9393
9394
9395
9396
9397
9398
9399
9400
9401
9402
9403
9404
9405
9406
9407
9408
9409
9410
9411
9412
9413
9414
9415
9416
9417
9418
9419
9420
9421
9422
9423
9424
9425
9426
9427
9428
9429
9430
9431
9432
9433
9434
9435
9436
9437
9438
9439
9440
9441
9442
9443
9444
9445
9446
9447
9448
9449
9450
9451
9452
9453
9454
9455
9456
9457
9458
9459
9460
9461
9462
9463
9464
9465
9466
9467
9468
9469
9470
9471
9472
9473
9474
9475
9476
9477
9478
9479
9480
9481
9482
9483
9484
9485
9486
9487
9488
9489
9490
9491
9492
9493
9494
9495
9496
9497
9498
9499
9500
9501
9502
9503
9504
9505
9506
9507
9508
9509
9510
9511
9512
9513
9514
9515
9516
9517
9518
9519
9520
9521
9522
9523
9524
9525
9526
9527
9528
9529
9530
9531
9532
9533
9534
9535
9536
9537
9538
9539
9540
9541
9542
9543
9544
9545
9546
9547
9548
9549
9550
9551
9552
9553
9554
9555
9556
9557
9558
9559
9560
9561
9562
9563
9564
9565
9566
9567
9568
9569
9570
9571
9572
9573
9574
9575
9576
9577
9578
9579
9580
9581
9582
9583
9584
9585
9586
9587
9588
9589
9590
9591
9592
9593
9594
9595
9596
9597
9598
9599
9600
9601
9602
9603
9604
9605
9606
9607
9608
9609
9610
9611
9612
9613
9614
9615
9616
9617
9618
9619
9620
9621
9622
9623
9624
9625
9626
9627
9628
9629
9630
9631
9632
9633
9634
9635
9636
9637
9638
9639
9640
9641
9642
9643
9644
9645
9646
9647
9648
9649
9650
9651
9652
9653
9654
9655
9656
9657
9658
9659
9660
9661
9662
9663
9664
9665
9666
9667
9668
9669
9670
9671
9672
9673
9674
9675
9676
9677
9678
9679
9680
9681
9682
9683
9684
9685
9686
9687
9688
9689
9690
9691
9692
9693
9694
9695
9696
9697
9698
9699
9700
9701
9702
9703
9704
9705
9706
9707
9708
9709
9710
9711
9712
9713
9714
9715
9716
9717
9718
9719
9720
9721
9722
9723
9724
9725
9726
9727
9728
9729
9730
9731
9732
9733
9734
9735
9736
9737
9738
9739
9740
9741
9742
9743
9744
9745
9746
9747
9748
9749
9750
9751
9752
9753
9754
9755
9756
9757
9758
9759
9760
9761
9762
9763
9764
9765
9766
9767
9768
9769
9770
9771
9772
9773
9774
9775
9776
9777
9778
9779
9780
9781
9782
9783
9784
9785
9786
9787
9788
9789
9790
9791
9792
9793
9794
9795
9796
9797
9798
9799
9800
9801
9802
9803
9804
9805
9806
9807
9808
9809
9810
9811
9812
9813
9814
9815
9816
9817
9818
9819
9820
9821
9822
9823
9824
9825
9826
9827
9828
9829
9830
9831
9832
9833
9834
9835
9836
9837
9838
9839
9840
9841
9842
9843
9844
9845
9846
9847
9848
9849
9850
9851
9852
9853
9854
9855
9856
9857
9858
9859
9860
9861
9862
9863
9864
9865
9866
9867
9868
9869
9870
9871
9872
9873
9874
9875
9876
9877
9878
9879
9880
9881
9882
9883
9884
9885
9886
9887
9888
9889
9890
9891
9892
9893
9894
9895
9896
9897
9898
9899
9900
9901
9902
9903
9904
9905
9906
9907
9908
9909
9910
9911
9912
9913
9914
9915
9916
9917
9918
9919
9920
9921
9922
9923
9924
9925
9926
9927
9928
9929
9930
9931
9932
9933
9934
9935
9936
9937
9938
9939
9940
9941
9942
9943
9944
9945
9946
9947
9948
9949
9950
9951
9952
9953
9954
9955
9956
9957
9958
9959
9960
9961
9962
9963
9964
9965
9966
9967
9968
9969
9970
9971
9972
9973
9974
9975
9976
9977
9978
9979
9980
9981
9982
9983
9984
9985
9986
9987
9988
9989
9990
9991
9992
9993
9994
9995
9996
9997
9998
9999
10000
10001
10002
10003
10004
10005
10006
10007
10008
10009
10010
10011
10012
10013
10014
10015
10016
10017
10018
10019
10020
10021
10022
10023
10024
10025
10026
10027
10028
10029
10030
10031
10032
10033
10034
10035
10036
10037
10038
10039
10040
10041
10042
10043
10044
10045
10046
10047
10048
10049
10050
10051
10052
10053
10054
10055
10056
10057
10058
10059
10060
10061
10062
10063
10064
10065
10066
10067
10068
10069
10070
10071
10072
10073
10074
10075
10076
10077
10078
10079
10080
10081
10082
10083
10084
10085
10086
10087
10088
10089
10090
10091
10092
10093
10094
10095
10096
10097
10098
10099
10100
10101
10102
10103
10104
10105
10106
10107
10108
10109
10110
10111
10112
10113
10114
10115
10116
10117
10118
10119
10120
10121
10122
10123
10124
10125
10126
10127
10128
10129
10130
10131
10132
10133
10134
10135
10136
10137
10138
10139
10140
10141
10142
10143
10144
10145
10146
10147
10148
10149
10150
10151
10152
10153
10154
10155
10156
10157
10158
10159
10160
10161
10162
10163
10164
10165
10166
10167
10168
10169
10170
10171
10172
10173
10174
10175
10176
10177
10178
10179
10180
10181
10182
10183
10184
10185
10186
10187
10188
10189
10190
10191
10192
10193
10194
10195
10196
10197
10198
10199
10200
10201
10202
10203
10204
10205
10206
10207
10208
10209
10210
10211
10212
10213
10214
10215
10216
10217
10218
10219
10220
10221
10222
10223
10224
10225
10226
10227
10228
10229
10230
10231
10232
10233
10234
10235
10236
10237
10238
10239
10240
10241
10242
10243
10244
10245
10246
10247
10248
10249
10250
10251
10252
10253
10254
10255
10256
10257
10258
10259
10260
10261
10262
10263
10264
10265
10266
10267
10268
10269
10270
10271
10272
10273
10274
10275
10276
10277
10278
10279
10280
10281
10282
10283
10284
10285
10286
10287
10288
10289
10290
10291
10292
10293
10294
10295
10296
10297
10298
10299
10300
10301
10302
10303
10304
10305
10306
10307
10308
10309
10310
10311
10312
10313
10314
10315
10316
10317
10318
10319
10320
10321
10322
10323
10324
10325
10326
10327
10328
10329
10330
10331
10332
10333
10334
10335
10336
10337
10338
10339
10340
10341
10342
10343
10344
10345
10346
10347
10348
10349
10350
10351
10352
10353
10354
10355
10356
10357
10358
10359
10360
10361
10362
10363
10364
10365
10366
10367
10368
10369
10370
10371
10372
10373
10374
10375
10376
10377
10378
10379
10380
10381
10382
10383
10384
10385
10386
10387
10388
10389
10390
10391
10392
10393
10394
10395
10396
10397
10398
10399
10400
10401
10402
10403
10404
10405
10406
10407
10408
10409
10410
10411
10412
10413
10414
10415
10416
10417
10418
10419
10420
10421
10422
10423
10424
10425
10426
10427
10428
10429
10430
10431
10432
10433
10434
10435
10436
10437
10438
10439
10440
10441
10442
10443
10444
10445
10446
10447
10448
10449
10450
10451
10452
10453
10454
10455
10456
10457
10458
10459
10460
10461
10462
10463
10464
10465
10466
10467
10468
10469
10470
10471
10472
10473
10474
10475
10476
10477
10478
10479
10480
10481
10482
10483
10484
10485
10486
10487
10488
10489
10490
10491
10492
10493
10494
10495
10496
10497
10498
10499
10500
10501
10502
10503
10504
10505
10506
10507
10508
10509
10510
10511
10512
10513
10514
10515
10516
10517
10518
10519
10520
10521
10522
10523
10524
10525
10526
10527
10528
10529
10530
10531
10532
10533
10534
10535
10536
10537
10538
10539
10540
10541
10542
10543
10544
10545
10546
10547
10548
10549
10550
10551
10552
10553
10554
10555
10556
10557
10558
10559
10560
10561
10562
10563
10564
10565
10566
10567
10568
10569
10570
10571
10572
10573
10574
10575
10576
10577
10578
10579
10580
10581
10582
10583
10584
10585
10586
10587
10588
10589
10590
10591
10592
10593
10594
10595
10596
10597
10598
10599
10600
10601
10602
10603
10604
10605
10606
10607
10608
10609
10610
10611
10612
10613
10614
10615
10616
10617
10618
10619
10620
10621
10622
10623
10624
10625
10626
10627
10628
10629
10630
10631
10632
10633
10634
10635
10636
10637
10638
10639
10640
10641
10642
10643
10644
10645
10646
10647
10648
10649
10650
10651
10652
10653
10654
10655
10656
10657
10658
10659
10660
10661
10662
10663
10664
10665
10666
10667
10668
10669
10670
10671
10672
10673
10674
10675
10676
10677
10678
10679
10680
10681
10682
10683
10684
10685
10686
10687
10688
10689
10690
10691
10692
10693
10694
10695
10696
10697
10698
10699
10700
10701
10702
10703
10704
10705
10706
10707
10708
10709
10710
10711
10712
10713
10714
10715
10716
10717
10718
10719
10720
10721
10722
10723
10724
10725
10726
10727
10728
10729
10730
10731
10732
10733
10734
10735
10736
10737
10738
10739
10740
10741
10742
10743
10744
10745
10746
10747
10748
10749
10750
10751
10752
10753
10754
10755
10756
10757
10758
10759
10760
10761
10762
10763
10764
10765
10766
10767
10768
10769
10770
10771
10772
10773
10774
10775
10776
10777
10778
10779
10780
10781
10782
10783
10784
10785
10786
10787
10788
10789
10790
10791
10792
10793
10794
10795
10796
10797
10798
10799
10800
10801
10802
10803
10804
10805
10806
10807
10808
10809
10810
10811
10812
10813
10814
10815
10816
10817
10818
10819
10820
10821
10822
10823
10824
10825
10826
10827
10828
10829
10830
10831
10832
10833
10834
10835
10836
10837
10838
10839
10840
10841
10842
10843
10844
10845
10846
10847
10848
10849
10850
10851
10852
10853
10854
10855
10856
10857
10858
10859
10860
10861
10862
10863
10864
10865
10866
10867
10868
10869
10870
10871
10872
10873
10874
10875
10876
10877
10878
10879
10880
10881
10882
10883
10884
10885
10886
10887
10888
10889
10890
10891
10892
10893
10894
10895
10896
10897
10898
10899
10900
10901
10902
10903
10904
10905
10906
10907
10908
10909
10910
10911
10912
10913
10914
10915
10916
10917
10918
10919
10920
10921
10922
10923
10924
10925
10926
10927
10928
10929
10930
10931
10932
10933
10934
10935
10936
10937
10938
10939
10940
10941
10942
10943
10944
10945
10946
10947
10948
10949
10950
10951
10952
10953
10954
10955
10956
10957
10958
10959
10960
10961
10962
10963
10964
10965
10966
10967
10968
10969
10970
10971
10972
10973
10974
10975
10976
10977
10978
10979
10980
10981
10982
10983
10984
10985
10986
10987
10988
10989
10990
10991
10992
10993
10994
10995
10996
10997
10998
10999
11000
11001
11002
11003
11004
11005
11006
11007
11008
11009
11010
11011
11012
11013
11014
11015
11016
11017
11018
11019
11020
11021
11022
11023
11024
11025
11026
11027
11028
11029
11030
11031
11032
11033
11034
11035
11036
11037
11038
11039
11040
11041
11042
11043
11044
11045
11046
11047
11048
11049
11050
11051
11052
11053
11054
11055
11056
11057
11058
11059
11060
11061
11062
11063
11064
11065
11066
11067
11068
11069
11070
11071
11072
11073
11074
11075
11076
11077
11078
11079
11080
11081
11082
11083
11084
11085
11086
11087
11088
11089
11090
11091
11092
11093
11094
11095
11096
11097
11098
11099
11100
11101
11102
11103
11104
11105
11106
11107
11108
11109
11110
11111
11112
11113
11114
11115
11116
11117
11118
11119
11120
11121
11122
11123
11124
11125
11126
11127
11128
11129
11130
11131
11132
11133
11134
11135
11136
11137
11138
11139
11140
11141
11142
11143
11144
11145
11146
11147
11148
11149
11150
11151
11152
11153
11154
11155
11156
11157
11158
11159
11160
11161
11162
11163
11164
11165
11166
11167
11168
11169
11170
11171
11172
11173
11174
11175
11176
11177
11178
11179
11180
11181
11182
11183
11184
11185
11186
11187
11188
11189
11190
11191
11192
11193
11194
11195
11196
11197
11198
11199
11200
11201
11202
11203
11204
11205
11206
11207
11208
11209
11210
11211
11212
11213
11214
11215
11216
11217
11218
11219
11220
11221
11222
11223
11224
11225
11226
11227
11228
11229
11230
11231
11232
11233
11234
11235
11236
11237
11238
11239
11240
11241
11242
11243
11244
11245
11246
11247
11248
11249
11250
11251
11252
11253
11254
11255
11256
11257
11258
11259
11260
11261
11262
11263
11264
11265
11266
11267
11268
11269
11270
11271
11272
11273
11274
11275
11276
11277
11278
11279
11280
11281
11282
11283
11284
11285
11286
11287
11288
11289
11290
11291
11292
11293
11294
11295
11296
11297
11298
11299
11300
11301
11302
11303
11304
11305
11306
11307
11308
11309
11310
11311
11312
11313
11314
11315
11316
11317
11318
11319
11320
11321
11322
11323
11324
11325
11326
11327
11328
11329
11330
11331
11332
11333
11334
11335
11336
11337
11338
11339
11340
11341
11342
11343
11344
11345
11346
11347
11348
11349
11350
11351
11352
11353
11354
11355
11356
11357
11358
11359
11360
11361
11362
11363
11364
11365
11366
11367
11368
11369
11370
11371
11372
11373
11374
11375
11376
11377
11378
11379
11380
11381
11382
11383
11384
11385
11386
11387
11388
11389
11390
11391
11392
11393
11394
11395
11396
11397
11398
11399
11400
11401
11402
11403
11404
11405
11406
11407
11408
11409
11410
11411
11412
11413
11414
11415
11416
11417
11418
11419
11420
11421
11422
11423
11424
11425
11426
11427
11428
11429
11430
11431
11432
11433
11434
11435
11436
11437
11438
11439
11440
11441
11442
11443
11444
11445
11446
11447
11448
11449
11450
11451
11452
11453
11454
11455
11456
11457
11458
11459
11460
11461
11462
11463
11464
11465
11466
11467
11468
11469
11470
11471
11472
11473
11474
11475
11476
11477
11478
11479
11480
11481
11482
11483
11484
11485
11486
11487
11488
11489
11490
11491
11492
11493
11494
11495
11496
11497
11498
11499
11500
11501
11502
11503
11504
11505
11506
11507
11508
11509
11510
11511
11512
11513
11514
11515
11516
11517
11518
11519
11520
11521
11522
11523
11524
11525
11526
11527
11528
11529
11530
11531
11532
11533
11534
11535
11536
11537
11538
11539
11540
11541
11542
11543
11544
11545
11546
11547
11548
11549
11550
11551
11552
11553
11554
11555
11556
11557
11558
11559
11560
11561
11562
11563
11564
11565
11566
11567
11568
11569
11570
11571
11572
11573
11574
11575
11576
11577
11578
11579
11580
11581
11582
11583
11584
11585
11586
11587
11588
11589
11590
11591
11592
11593
11594
11595
11596
11597
11598
11599
11600
11601
11602
11603
11604
11605
11606
11607
11608
11609
11610
11611
11612
11613
11614
11615
11616
11617
11618
11619
11620
11621
11622
11623
11624
11625
11626
11627
11628
11629
11630
11631
11632
11633
11634
11635
11636
11637
11638
11639
11640
11641
11642
11643
11644
11645
11646
11647
11648
11649
11650
11651
11652
11653
11654
11655
11656
11657
11658
11659
11660
11661
11662
11663
11664
11665
11666
11667
11668
11669
11670
11671
11672
11673
11674
11675
11676
11677
11678
11679
11680
11681
11682
11683
11684
11685
11686
11687
11688
11689
11690
11691
11692
11693
11694
11695
11696
11697
11698
11699
11700
11701
11702
11703
11704
11705
11706
11707
11708
11709
11710
11711
11712
11713
11714
11715
11716
11717
11718
11719
11720
11721
11722
11723
11724
11725
11726
11727
11728
11729
11730
11731
11732
11733
11734
11735
11736
11737
11738
11739
11740
11741
11742
11743
11744
11745
11746
11747
11748
11749
11750
11751
11752
11753
11754
11755
11756
11757
11758
11759
11760
11761
11762
11763
11764
11765
11766
11767
11768
11769
11770
11771
11772
11773
11774
11775
11776
11777
11778
11779
11780
11781
11782
11783
11784
11785
11786
11787
11788
11789
11790
11791
11792
11793
11794
11795
11796
11797
11798
11799
11800
11801
11802
11803
11804
11805
11806
11807
11808
11809
11810
11811
11812
11813
11814
11815
11816
11817
11818
11819
11820
11821
11822
11823
11824
11825
11826
11827
11828
11829
11830
11831
11832
11833
11834
11835
11836
11837
11838
11839
11840
11841
11842
11843
11844
11845
11846
11847
11848
11849
11850
11851
11852
11853
11854
11855
11856
11857
11858
11859
11860
11861
11862
11863
11864
11865
11866
11867
11868
11869
11870
11871
11872
11873
11874
11875
11876
11877
11878
11879
11880
11881
11882
11883
11884
11885
11886
11887
11888
11889
11890
11891
11892
11893
11894
11895
11896
11897
11898
11899
11900
11901
11902
11903
11904
11905
11906
11907
11908
11909
11910
11911
11912
11913
11914
11915
11916
11917
11918
11919
11920
11921
11922
11923
11924
11925
11926
11927
11928
11929
11930
11931
11932
11933
11934
11935
11936
11937
11938
11939
11940
11941
11942
11943
11944
11945
11946
11947
11948
11949
11950
11951
11952
11953
11954
11955
11956
11957
11958
11959
11960
11961
11962
11963
11964
11965
11966
11967
11968
11969
11970
11971
11972
11973
11974
11975
11976
11977
11978
11979
11980
11981
11982
11983
11984
11985
11986
11987
11988
11989
11990
11991
11992
11993
11994
11995
11996
11997
11998
11999
12000
12001
12002
12003
12004
12005
12006
12007
12008
12009
12010
12011
12012
12013
12014
12015
12016
12017
12018
12019
12020
12021
12022
12023
12024
12025
12026
12027
12028
12029
12030
12031
12032
12033
12034
12035
12036
12037
12038
12039
12040
12041
12042
12043
12044
12045
12046
12047
12048
12049
12050
12051
12052
12053
12054
12055
12056
12057
12058
12059
12060
12061
12062
12063
12064
12065
12066
12067
12068
12069
12070
12071
12072
12073
12074
12075
12076
12077
12078
12079
12080
12081
12082
12083
12084
12085
12086
12087
12088
12089
12090
12091
12092
12093
12094
12095
12096
12097
12098
12099
12100
12101
12102
12103
12104
12105
12106
12107
12108
12109
12110
12111
12112
12113
12114
12115
12116
12117
12118
12119
12120
12121
12122
12123
12124
12125
12126
12127
12128
12129
12130
12131
12132
12133
12134
12135
12136
12137
12138
12139
12140
12141
12142
12143
12144
12145
12146
12147
12148
12149
12150
12151
12152
12153
12154
12155
12156
12157
12158
12159
12160
12161
12162
12163
12164
12165
12166
12167
12168
12169
12170
12171
12172
12173
12174
12175
12176
12177
12178
12179
12180
12181
12182
12183
12184
12185
12186
12187
12188
12189
12190
12191
12192
12193
12194
12195
12196
12197
12198
12199
12200
12201
12202
12203
12204
12205
12206
12207
12208
12209
12210
12211
12212
12213
12214
12215
12216
12217
12218
12219
12220
12221
12222
12223
12224
12225
12226
12227
12228
12229
12230
12231
12232
12233
12234
12235
12236
12237
12238
12239
12240
12241
12242
12243
12244
12245
12246
12247
12248
12249
12250
12251
12252
12253
12254
12255
12256
12257
12258
12259
12260
12261
12262
12263
12264
12265
12266
12267
12268
12269
12270
12271
12272
12273
12274
12275
12276
12277
12278
12279
12280
12281
12282
12283
12284
12285
12286
12287
12288
12289
12290
12291
12292
12293
12294
12295
12296
12297
12298
12299
12300
12301
12302
12303
12304
12305
12306
12307
12308
12309
12310
12311
12312
12313
12314
12315
12316
12317
12318
12319
12320
12321
12322
12323
12324
12325
12326
12327
12328
12329
12330
12331
12332
12333
12334
12335
12336
12337
12338
12339
12340
12341
12342
12343
12344
12345
12346
12347
12348
12349
12350
12351
12352
12353
12354
12355
12356
12357
12358
12359
12360
12361
12362
12363
12364
12365
12366
12367
12368
12369
12370
12371
12372
12373
12374
12375
12376
12377
12378
12379
12380
12381
12382
12383
12384
12385
12386
12387
12388
12389
12390
12391
12392
12393
12394
12395
12396
12397
12398
12399
12400
12401
12402
12403
12404
12405
12406
12407
12408
12409
12410
12411
12412
12413
12414
12415
12416
12417
12418
12419
12420
12421
12422
12423
12424
12425
12426
12427
12428
12429
12430
12431
12432
12433
12434
12435
12436
12437
12438
12439
12440
12441
12442
12443
12444
12445
12446
12447
12448
12449
12450
12451
12452
12453
12454
12455
12456
12457
12458
12459
12460
12461
12462
12463
12464
12465
12466
12467
12468
12469
12470
12471
12472
12473
12474
12475
12476
12477
12478
12479
12480
12481
12482
12483
12484
12485
12486
12487
12488
12489
12490
12491
12492
12493
12494
12495
12496
12497
12498
12499
12500
12501
12502
12503
12504
12505
12506
12507
12508
12509
12510
12511
12512
12513
12514
12515
12516
12517
12518
12519
12520
12521
12522
12523
12524
12525
12526
12527
12528
12529
12530
12531
12532
12533
12534
12535
12536
12537
12538
12539
12540
12541
12542
12543
12544
12545
12546
12547
12548
12549
12550
12551
12552
12553
12554
12555
12556
12557
12558
12559
12560
12561
12562
12563
12564
12565
12566
12567
12568
12569
12570
12571
12572
12573
12574
12575
12576
12577
12578
12579
12580
12581
12582
12583
12584
12585
12586
12587
12588
12589
12590
12591
12592
12593
12594
12595
12596
12597
12598
12599
12600
12601
12602
12603
12604
12605
12606
12607
12608
12609
12610
12611
12612
12613
12614
12615
12616
12617
12618
12619
12620
12621
12622
12623
12624
12625
12626
12627
12628
12629
12630
12631
12632
12633
12634
12635
12636
12637
12638
12639
12640
12641
12642
12643
12644
12645
12646
12647
12648
12649
12650
12651
12652
12653
12654
12655
12656
12657
12658
12659
12660
12661
12662
12663
12664
12665
12666
12667
12668
12669
12670
12671
12672
12673
12674
12675
12676
12677
12678
12679
12680
12681
12682
12683
12684
12685
12686
12687
12688
12689
12690
12691
12692
12693
12694
12695
12696
12697
12698
12699
12700
12701
12702
12703
12704
12705
12706
12707
12708
12709
12710
12711
12712
12713
12714
12715
12716
12717
12718
12719
12720
12721
12722
12723
12724
12725
12726
12727
12728
12729
12730
12731
12732
12733
12734
12735
12736
12737
12738
12739
12740
12741
12742
12743
12744
12745
12746
12747
12748
12749
12750
12751
12752
12753
12754
12755
12756
12757
12758
12759
12760
12761
12762
12763
12764
12765
12766
12767
12768
12769
12770
12771
12772
12773
12774
12775
12776
12777
12778
12779
12780
12781
12782
12783
12784
12785
12786
12787
12788
12789
12790
12791
12792
12793
12794
12795
12796
12797
12798
12799
12800
12801
12802
12803
12804
12805
12806
12807
12808
12809
12810
12811
12812
12813
12814
12815
12816
12817
12818
12819
12820
12821
12822
12823
12824
12825
12826
12827
12828
12829
12830
12831
12832
12833
12834
12835
12836
12837
12838
12839
12840
12841
12842
12843
12844
12845
12846
12847
12848
12849
12850
12851
12852
12853
12854
12855
12856
12857
12858
12859
12860
12861
12862
12863
12864
12865
12866
12867
12868
12869
12870
12871
12872
12873
12874
12875
12876
12877
12878
12879
12880
12881
12882
12883
12884
12885
12886
12887
12888
12889
12890
12891
12892
12893
12894
12895
12896
12897
12898
12899
12900
12901
12902
12903
12904
12905
12906
12907
12908
12909
12910
12911
12912
12913
12914
12915
12916
12917
12918
12919
12920
12921
12922
12923
12924
12925
12926
12927
12928
12929
12930
12931
12932
12933
12934
12935
12936
12937
12938
12939
12940
12941
12942
12943
12944
12945
12946
12947
12948
12949
12950
12951
12952
12953
12954
12955
12956
12957
12958
12959
12960
12961
12962
12963
12964
12965
12966
12967
12968
12969
12970
12971
12972
12973
12974
12975
12976
12977
12978
12979
12980
12981
12982
12983
12984
12985
12986
12987
12988
12989
12990
12991
12992
12993
12994
12995
12996
12997
12998
12999
13000
13001
13002
13003
13004
13005
13006
13007
13008
13009
13010
13011
13012
13013
13014
13015
13016
13017
13018
13019
13020
13021
13022
13023
13024
13025
13026
13027
13028
13029
13030
13031
13032
13033
13034
13035
13036
13037
13038
13039
13040
13041
13042
13043
13044
13045
13046
13047
13048
13049
13050
13051
13052
13053
13054
13055
13056
13057
13058
13059
13060
13061
13062
13063
13064
13065
13066
13067
13068
13069
13070
13071
13072
13073
13074
13075
13076
13077
13078
13079
13080
13081
13082
13083
13084
13085
13086
13087
13088
13089
13090
13091
13092
13093
13094
13095
13096
13097
13098
13099
13100
13101
13102
13103
13104
13105
13106
13107
13108
13109
13110
13111
13112
13113
13114
13115
13116
13117
13118
13119
13120
13121
13122
13123
13124
13125
13126
13127
13128
13129
13130
13131
13132
13133
13134
13135
13136
13137
13138
13139
13140
13141
13142
13143
13144
13145
13146
13147
13148
13149
13150
13151
13152
13153
13154
13155
13156
13157
13158
13159
13160
13161
13162
13163
13164
13165
13166
13167
13168
13169
13170
13171
13172
13173
13174
13175
13176
13177
13178
13179
13180
13181
13182
13183
13184
13185
13186
13187
13188
13189
13190
13191
13192
13193
13194
13195
13196
13197
13198
13199
13200
13201
13202
13203
13204
13205
13206
13207
13208
13209
13210
13211
13212
13213
13214
13215
13216
13217
13218
13219
13220
13221
13222
13223
13224
13225
13226
13227
13228
13229
13230
13231
13232
13233
13234
13235
13236
13237
13238
13239
13240
13241
13242
13243
13244
13245
13246
13247
13248
13249
13250
13251
13252
13253
13254
13255
13256
13257
13258
13259
13260
13261
13262
13263
13264
13265
13266
13267
13268
13269
13270
13271
13272
13273
13274
13275
13276
13277
13278
13279
13280
13281
13282
13283
13284
13285
13286
13287
13288
13289
13290
13291
13292
13293
13294
13295
13296
13297
13298
13299
13300
13301
13302
13303
13304
13305
13306
13307
13308
13309
13310
13311
13312
13313
13314
13315
13316
13317
13318
13319
13320
13321
13322
13323
13324
13325
13326
13327
13328
13329
13330
13331
13332
13333
13334
13335
13336
13337
13338
13339
13340
13341
13342
13343
13344
13345
13346
13347
13348
13349
13350
13351
13352
13353
13354
13355
13356
13357
13358
13359
13360
13361
13362
13363
13364
13365
13366
13367
13368
13369
13370
13371
13372
13373
13374
13375
13376
13377
13378
13379
13380
13381
13382
13383
13384
13385
13386
13387
13388
13389
13390
13391
13392
13393
13394
13395
13396
13397
13398
13399
13400
13401
13402
13403
13404
13405
13406
13407
13408
13409
13410
13411
13412
13413
13414
13415
13416
13417
13418
13419
13420
13421
13422
13423
13424
13425
13426
13427
13428
13429
13430
13431
13432
13433
13434
13435
13436
13437
13438
13439
13440
13441
13442
13443
13444
13445
13446
13447
13448
13449
13450
13451
13452
13453
13454
13455
13456
13457
13458
13459
13460
13461
13462
13463
13464
13465
13466
13467
13468
13469
13470
13471
13472
13473
13474
13475
13476
13477
13478
13479
13480
13481
13482
13483
13484
13485
13486
13487
13488
13489
13490
13491
13492
13493
13494
13495
13496
13497
13498
13499
13500
13501
13502
13503
13504
13505
13506
13507
13508
13509
13510
13511
13512
13513
13514
13515
13516
13517
13518
13519
13520
13521
13522
13523
13524
13525
13526
13527
13528
13529
13530
13531
13532
13533
13534
13535
13536
13537
13538
13539
13540
13541
13542
13543
13544
13545
13546
13547
13548
13549
13550
13551
13552
13553
13554
13555
13556
13557
13558
13559
13560
13561
13562
13563
13564
13565
13566
13567
13568
13569
13570
13571
13572
13573
13574
13575
13576
13577
13578
13579
13580
13581
13582
13583
13584
13585
13586
13587
13588
13589
13590
13591
13592
13593
13594
13595
13596
13597
13598
13599
13600
13601
13602
13603
13604
13605
13606
13607
13608
13609
13610
13611
13612
13613
13614
13615
13616
13617
13618
13619
13620
13621
13622
13623
13624
13625
13626
13627
13628
13629
13630
13631
13632
13633
13634
13635
13636
13637
13638
13639
13640
13641
13642
13643
13644
13645
13646
13647
13648
13649
13650
13651
13652
13653
13654
13655
13656
13657
13658
13659
13660
13661
13662
13663
13664
13665
13666
13667
13668
13669
13670
13671
13672
13673
13674
13675
13676
13677
13678
13679
13680
13681
13682
13683
13684
13685
13686
13687
13688
13689
13690
13691
13692
13693
13694
13695
13696
13697
13698
13699
13700
13701
13702
13703
13704
13705
13706
13707
13708
13709
13710
13711
13712
13713
13714
13715
13716
13717
13718
13719
13720
13721
13722
13723
13724
13725
13726
13727
13728
13729
13730
13731
13732
13733
13734
13735
13736
13737
13738
13739
13740
13741
13742
13743
13744
13745
13746
13747
13748
13749
13750
13751
13752
13753
13754
13755
13756
13757
13758
13759
13760
13761
13762
13763
13764
13765
13766
13767
13768
13769
13770
13771
13772
13773
13774
13775
13776
13777
13778
13779
13780
13781
13782
13783
13784
13785
13786
13787
13788
13789
13790
13791
13792
13793
13794
13795
13796
13797
13798
13799
13800
13801
13802
13803
13804
13805
13806
13807
13808
13809
13810
13811
13812
13813
13814
13815
13816
13817
13818
13819
13820
13821
13822
13823
13824
13825
13826
13827
13828
13829
13830
13831
13832
13833
13834
13835
13836
13837
13838
13839
13840
13841
13842
13843
13844
13845
13846
13847
13848
13849
13850
13851
13852
13853
13854
13855
13856
13857
13858
13859
13860
13861
13862
13863
13864
13865
13866
13867
13868
13869
13870
13871
13872
13873
13874
13875
13876
13877
13878
13879
13880
13881
13882
13883
13884
13885
13886
13887
13888
13889
13890
13891
13892
13893
13894
13895
13896
13897
13898
13899
13900
13901
13902
13903
13904
13905
13906
13907
13908
13909
13910
13911
13912
13913
13914
13915
13916
13917
13918
13919
13920
13921
13922
13923
13924
13925
13926
13927
13928
13929
13930
13931
13932
13933
13934
13935
13936
13937
13938
13939
13940
13941
13942
13943
13944
13945
13946
13947
13948
13949
13950
13951
13952
13953
13954
13955
13956
13957
13958
13959
13960
13961
13962
13963
13964
13965
13966
13967
13968
13969
13970
13971
13972
13973
13974
13975
13976
13977
13978
13979
13980
13981
13982
13983
13984
13985
13986
13987
13988
13989
13990
13991
13992
13993
13994
13995
13996
13997
13998
13999
14000
14001
14002
14003
14004
14005
14006
14007
14008
14009
14010
14011
14012
14013
14014
14015
14016
14017
14018
14019
14020
14021
14022
14023
14024
14025
14026
14027
14028
14029
14030
14031
14032
14033
14034
14035
14036
14037
14038
14039
14040
14041
14042
14043
14044
14045
14046
14047
14048
14049
14050
14051
14052
14053
14054
14055
14056
14057
14058
14059
14060
14061
14062
14063
14064
14065
14066
14067
14068
14069
14070
14071
14072
14073
14074
14075
14076
14077
14078
14079
14080
14081
14082
14083
14084
14085
14086
14087
14088
14089
14090
14091
14092
14093
14094
14095
14096
14097
14098
14099
14100
14101
14102
14103
14104
14105
14106
14107
14108
14109
14110
14111
14112
14113
14114
14115
14116
14117
14118
14119
14120
14121
14122
14123
14124
14125
14126
14127
14128
14129
14130
14131
14132
14133
14134
14135
14136
14137
14138
14139
14140
14141
14142
14143
14144
14145
14146
14147
14148
14149
14150
14151
14152
14153
14154
14155
14156
14157
14158
14159
14160
14161
14162
14163
14164
14165
14166
14167
14168
14169
14170
14171
14172
14173
14174
14175
14176
14177
14178
14179
14180
14181
14182
14183
14184
14185
14186
14187
14188
14189
14190
14191
14192
14193
14194
14195
14196
14197
14198
14199
14200
14201
14202
14203
14204
14205
14206
14207
14208
14209
14210
14211
14212
14213
14214
14215
14216
14217
14218
14219
14220
14221
14222
14223
14224
14225
14226
14227
14228
14229
14230
14231
14232
14233
14234
14235
14236
14237
14238
14239
14240
14241
14242
14243
14244
14245
14246
14247
14248
14249
14250
14251
14252
14253
14254
14255
14256
14257
14258
14259
14260
14261
14262
14263
14264
14265
14266
14267
14268
14269
14270
14271
14272
14273
14274
14275
14276
14277
14278
14279
14280
14281
14282
14283
14284
14285
14286
14287
14288
14289
14290
14291
14292
14293
14294
14295
14296
14297
14298
14299
14300
14301
14302
14303
14304
14305
14306
14307
14308
14309
14310
14311
14312
14313
14314
14315
14316
14317
14318
14319
14320
14321
14322
14323
14324
14325
14326
14327
14328
14329
14330
14331
14332
14333
14334
14335
14336
14337
14338
14339
14340
14341
14342
14343
14344
14345
14346
14347
14348
14349
14350
14351
14352
14353
14354
14355
14356
14357
14358
14359
14360
14361
14362
14363
14364
14365
14366
14367
14368
14369
14370
14371
14372
14373
14374
14375
14376
14377
14378
14379
14380
14381
14382
14383
14384
14385
14386
14387
14388
14389
14390
14391
14392
14393
14394
14395
14396
14397
14398
14399
14400
14401
14402
14403
14404
14405
14406
14407
14408
14409
14410
14411
14412
14413
14414
14415
14416
14417
14418
14419
14420
14421
14422
14423
14424
14425
14426
14427
14428
14429
14430
14431
14432
14433
14434
14435
14436
14437
14438
14439
14440
14441
14442
14443
14444
14445
14446
14447
14448
14449
14450
14451
14452
14453
14454
14455
14456
14457
14458
14459
14460
14461
14462
14463
14464
14465
14466
14467
14468
14469
14470
14471
14472
14473
14474
14475
14476
14477
14478
14479
14480
14481
14482
14483
14484
14485
14486
14487
14488
14489
14490
14491
14492
14493
14494
14495
14496
14497
14498
14499
14500
14501
14502
14503
14504
14505
14506
14507
14508
14509
14510
14511
14512
14513
14514
14515
14516
14517
14518
14519
14520
14521
14522
14523
14524
14525
14526
14527
14528
14529
14530
14531
14532
14533
14534
14535
14536
14537
14538
14539
14540
14541
14542
14543
14544
14545
14546
14547
14548
14549
14550
14551
14552
14553
14554
14555
14556
14557
14558
14559
14560
14561
14562
14563
14564
14565
14566
14567
14568
14569
14570
14571
14572
14573
14574
14575
14576
14577
14578
14579
14580
14581
14582
14583
14584
14585
14586
14587
14588
14589
14590
14591
14592
14593
14594
14595
14596
14597
14598
14599
14600
14601
14602
14603
14604
14605
14606
14607
14608
14609
14610
14611
14612
14613
14614
14615
14616
14617
14618
14619
14620
14621
14622
14623
14624
14625
14626
14627
14628
14629
14630
14631
14632
14633
14634
14635
14636
14637
14638
14639
14640
14641
14642
14643
14644
14645
14646
14647
14648
14649
14650
14651
14652
14653
14654
14655
14656
14657
14658
14659
14660
14661
14662
14663
14664
14665
14666
14667
14668
14669
14670
14671
14672
14673
14674
14675
14676
14677
14678
14679
14680
14681
14682
14683
14684
14685
14686
14687
14688
14689
14690
14691
14692
14693
14694
14695
14696
14697
14698
14699
14700
14701
14702
14703
14704
14705
14706
14707
14708
14709
14710
14711
14712
14713
14714
14715
14716
14717
14718
14719
14720
14721
14722
14723
14724
14725
14726
14727
14728
14729
14730
14731
14732
14733
14734
14735
14736
14737
14738
14739
14740
14741
14742
14743
14744
14745
14746
14747
14748
14749
14750
14751
14752
14753
14754
14755
14756
14757
14758
14759
14760
14761
14762
14763
14764
14765
14766
14767
14768
14769
14770
14771
14772
14773
14774
14775
14776
14777
14778
14779
14780
14781
14782
14783
14784
14785
14786
14787
14788
14789
14790
14791
14792
14793
14794
14795
14796
14797
14798
14799
14800
14801
14802
14803
14804
14805
14806
14807
14808
14809
14810
14811
14812
14813
14814
14815
14816
14817
14818
14819
14820
14821
14822
14823
14824
14825
14826
14827
14828
14829
14830
14831
14832
14833
14834
14835
14836
14837
14838
14839
14840
14841
14842
14843
14844
14845
14846
14847
14848
14849
14850
14851
14852
14853
14854
14855
14856
14857
14858
14859
14860
14861
14862
14863
14864
14865
14866
14867
14868
14869
14870
14871
14872
14873
14874
14875
14876
14877
14878
14879
14880
14881
14882
14883
14884
14885
14886
14887
14888
14889
14890
14891
14892
14893
14894
14895
14896
14897
14898
14899
14900
14901
14902
14903
14904
14905
14906
14907
14908
14909
14910
14911
14912
14913
14914
14915
14916
14917
14918
14919
14920
14921
14922
14923
14924
14925
14926
14927
14928
14929
14930
14931
14932
14933
14934
14935
14936
14937
14938
14939
14940
14941
14942
14943
14944
14945
14946
14947
14948
14949
14950
14951
14952
14953
14954
14955
14956
14957
14958
14959
14960
14961
14962
14963
14964
14965
14966
14967
14968
14969
14970
14971
14972
14973
14974
14975
14976
14977
14978
14979
14980
14981
14982
14983
14984
14985
14986
14987
14988
14989
14990
14991
14992
14993
14994
14995
14996
14997
14998
14999
15000
15001
15002
15003
15004
15005
15006
15007
15008
15009
15010
15011
15012
15013
15014
15015
15016
15017
15018
15019
15020
15021
15022
15023
15024
15025
15026
15027
15028
15029
15030
15031
15032
15033
15034
15035
15036
15037
15038
15039
15040
15041
15042
15043
15044
15045
15046
15047
15048
15049
15050
15051
15052
15053
15054
15055
15056
15057
15058
15059
15060
15061
15062
15063
15064
15065
15066
15067
15068
15069
15070
15071
15072
15073
15074
15075
15076
15077
15078
15079
15080
15081
15082
15083
15084
15085
15086
15087
15088
15089
15090
15091
15092
15093
15094
15095
15096
15097
15098
15099
15100
15101
15102
15103
15104
15105
15106
15107
15108
15109
15110
15111
15112
15113
15114
15115
15116
15117
15118
15119
15120
15121
15122
15123
15124
15125
15126
15127
15128
15129
15130
15131
15132
15133
15134
15135
15136
15137
15138
15139
15140
15141
15142
15143
15144
15145
15146
15147
15148
15149
15150
15151
15152
15153
15154
15155
15156
15157
15158
15159
15160
15161
15162
15163
15164
15165
15166
15167
15168
15169
15170
15171
15172
15173
15174
15175
15176
15177
15178
15179
15180
15181
15182
15183
15184
15185
15186
15187
15188
15189
15190
15191
15192
15193
15194
15195
15196
15197
15198
15199
15200
15201
15202
15203
15204
15205
15206
15207
15208
15209
15210
15211
15212
15213
15214
15215
15216
15217
15218
15219
15220
15221
15222
15223
15224
15225
15226
15227
15228
15229
15230
15231
15232
15233
15234
15235
15236
15237
15238
15239
15240
15241
15242
15243
15244
15245
15246
15247
15248
15249
15250
15251
15252
15253
15254
15255
15256
15257
15258
15259
15260
15261
15262
15263
15264
15265
15266
15267
15268
15269
15270
15271
15272
15273
15274
15275
15276
15277
15278
15279
15280
15281
15282
15283
15284
15285
15286
15287
15288
15289
15290
15291
15292
15293
15294
15295
15296
15297
15298
15299
15300
15301
15302
15303
15304
15305
15306
15307
15308
15309
15310
15311
15312
15313
15314
15315
15316
15317
15318
15319
15320
15321
15322
15323
15324
15325
15326
15327
15328
15329
15330
15331
15332
15333
15334
15335
15336
15337
15338
15339
15340
15341
15342
15343
15344
15345
15346
15347
15348
15349
15350
15351
15352
15353
15354
15355
15356
15357
15358
15359
15360
15361
15362
15363
15364
15365
15366
15367
15368
15369
15370
15371
15372
15373
15374
15375
15376
15377
15378
15379
15380
15381
15382
15383
15384
15385
15386
15387
15388
15389
15390
15391
15392
15393
15394
15395
15396
15397
15398
15399
15400
15401
15402
15403
15404
15405
15406
15407
15408
15409
15410
15411
15412
15413
15414
15415
15416
15417
15418
15419
15420
15421
15422
15423
15424
15425
15426
15427
15428
15429
15430
15431
15432
15433
15434
15435
15436
15437
15438
15439
15440
15441
15442
15443
15444
15445
15446
15447
15448
15449
15450
15451
15452
15453
15454
15455
15456
15457
15458
15459
15460
15461
15462
15463
15464
15465
15466
15467
15468
15469
15470
15471
15472
15473
15474
15475
15476
15477
15478
15479
15480
15481
15482
15483
15484
15485
15486
15487
15488
15489
15490
15491
15492
15493
15494
15495
15496
15497
15498
15499
15500
15501
15502
15503
15504
15505
15506
15507
15508
15509
15510
15511
15512
15513
15514
15515
15516
15517
15518
15519
15520
15521
15522
15523
15524
15525
15526
15527
15528
15529
15530
15531
15532
15533
15534
15535
15536
15537
15538
15539
15540
15541
15542
15543
15544
15545
15546
15547
15548
15549
15550
15551
15552
15553
15554
15555
15556
15557
15558
15559
15560
15561
15562
15563
15564
15565
15566
15567
15568
15569
15570
15571
15572
15573
15574
15575
15576
15577
15578
15579
15580
15581
15582
15583
15584
15585
15586
15587
15588
15589
15590
15591
15592
15593
15594
15595
15596
15597
15598
15599
15600
15601
15602
15603
15604
15605
15606
15607
15608
15609
15610
15611
15612
15613
15614
15615
15616
15617
15618
15619
15620
15621
15622
15623
15624
15625
15626
15627
15628
15629
15630
15631
15632
15633
15634
15635
15636
15637
15638
15639
15640
15641
15642
15643
15644
15645
15646
15647
15648
15649
15650
15651
15652
15653
15654
15655
15656
15657
15658
15659
15660
15661
15662
15663
15664
15665
15666
15667
15668
15669
15670
15671
15672
15673
15674
15675
15676
15677
15678
15679
15680
15681
15682
15683
15684
15685
15686
15687
15688
15689
15690
15691
15692
15693
15694
15695
15696
15697
15698
15699
15700
15701
15702
15703
15704
15705
15706
15707
15708
15709
15710
15711
15712
15713
15714
15715
15716
15717
15718
15719
15720
15721
15722
15723
15724
15725
15726
15727
15728
15729
15730
15731
15732
15733
15734
15735
15736
15737
15738
15739
15740
15741
15742
15743
15744
15745
15746
15747
15748
15749
15750
15751
15752
15753
15754
15755
15756
15757
15758
15759
15760
15761
15762
15763
15764
15765
15766
15767
15768
15769
15770
15771
15772
15773
15774
15775
15776
15777
15778
15779
15780
15781
15782
15783
15784
15785
15786
15787
15788
15789
15790
15791
15792
15793
15794
15795
15796
15797
15798
15799
15800
15801
15802
15803
15804
15805
15806
15807
15808
15809
15810
15811
15812
15813
15814
15815
15816
15817
15818
15819
15820
15821
15822
15823
15824
15825
15826
15827
15828
15829
15830
15831
15832
15833
15834
15835
15836
15837
15838
15839
15840
15841
15842
15843
15844
15845
15846
15847
15848
15849
15850
15851
15852
15853
15854
15855
15856
15857
15858
15859
15860
15861
15862
15863
15864
15865
15866
15867
15868
15869
15870
15871
15872
15873
15874
15875
15876
15877
15878
15879
15880
15881
15882
15883
15884
15885
15886
15887
15888
15889
15890
15891
15892
15893
15894
15895
15896
15897
15898
15899
15900
15901
15902
15903
15904
15905
15906
15907
15908
15909
15910
15911
15912
15913
15914
15915
15916
15917
15918
15919
15920
15921
15922
15923
15924
15925
15926
15927
15928
15929
15930
15931
15932
15933
15934
15935
15936
15937
15938
15939
15940
15941
15942
15943
15944
15945
15946
15947
15948
15949
15950
15951
15952
15953
15954
15955
15956
15957
15958
15959
15960
15961
15962
15963
15964
15965
15966
15967
15968
15969
15970
15971
15972
15973
15974
15975
15976
15977
15978
15979
15980
15981
15982
15983
15984
15985
15986
15987
15988
15989
15990
15991
15992
15993
15994
15995
15996
15997
15998
15999
16000
16001
16002
16003
16004
16005
16006
16007
16008
16009
16010
16011
16012
16013
16014
16015
16016
16017
16018
16019
16020
16021
16022
16023
16024
16025
16026
16027
16028
16029
16030
16031
16032
16033
16034
16035
16036
16037
16038
16039
16040
16041
16042
16043
16044
16045
16046
16047
16048
16049
16050
16051
16052
16053
16054
16055
16056
16057
16058
16059
16060
16061
16062
16063
16064
16065
16066
16067
16068
16069
16070
16071
16072
16073
16074
16075
16076
16077
16078
16079
16080
16081
16082
16083
16084
16085
16086
16087
16088
16089
16090
16091
16092
16093
16094
16095
16096
16097
16098
16099
16100
16101
16102
16103
16104
16105
16106
16107
16108
16109
16110
16111
16112
16113
16114
16115
16116
16117
16118
16119
16120
16121
16122
16123
16124
16125
16126
16127
16128
16129
16130
16131
16132
16133
16134
16135
16136
16137
16138
16139
16140
16141
16142
16143
16144
16145
16146
16147
16148
16149
16150
16151
16152
16153
16154
16155
16156
16157
16158
16159
16160
16161
16162
16163
16164
16165
16166
16167
16168
16169
16170
16171
16172
16173
16174
16175
16176
16177
16178
16179
16180
16181
16182
16183
16184
16185
16186
16187
16188
16189
16190
16191
16192
16193
16194
16195
16196
16197
16198
16199
16200
16201
16202
16203
16204
16205
16206
16207
16208
16209
16210
16211
16212
16213
16214
16215
16216
16217
16218
16219
16220
16221
16222
16223
16224
16225
16226
16227
16228
16229
16230
16231
16232
16233
16234
16235
16236
16237
16238
16239
16240
16241
16242
16243
16244
16245
16246
16247
16248
16249
16250
16251
16252
16253
16254
16255
16256
16257
16258
16259
16260
16261
16262
16263
16264
16265
16266
16267
16268
16269
16270
16271
16272
16273
16274
16275
16276
16277
16278
16279
16280
16281
16282
16283
16284
16285
16286
16287
16288
16289
16290
16291
16292
16293
16294
16295
16296
16297
16298
16299
16300
16301
16302
16303
16304
16305
16306
16307
16308
16309
16310
16311
16312
16313
16314
16315
16316
16317
16318
16319
16320
16321
16322
16323
16324
16325
16326
16327
16328
16329
16330
16331
16332
16333
16334
16335
16336
16337
16338
16339
16340
16341
16342
16343
16344
16345
16346
16347
16348
16349
16350
16351
16352
16353
16354
16355
16356
16357
16358
16359
16360
16361
16362
16363
16364
16365
16366
16367
16368
16369
16370
16371
16372
16373
16374
16375
16376
16377
16378
16379
16380
16381
16382
16383
16384
16385
16386
16387
16388
16389
16390
16391
16392
16393
16394
16395
16396
16397
16398
16399
16400
16401
16402
16403
16404
16405
16406
16407
16408
16409
16410
16411
16412
16413
16414
16415
16416
16417
16418
16419
16420
16421
16422
16423
16424
16425
16426
16427
16428
16429
16430
16431
16432
16433
16434
16435
16436
16437
16438
16439
16440
16441
16442
16443
16444
16445
16446
16447
16448
16449
16450
16451
16452
16453
16454
16455
16456
16457
16458
16459
16460
16461
16462
16463
16464
16465
16466
16467
16468
16469
16470
16471
16472
16473
16474
16475
16476
16477
16478
16479
16480
16481
16482
16483
16484
16485
16486
16487
16488
16489
16490
16491
16492
16493
16494
16495
16496
16497
16498
16499
16500
16501
16502
16503
16504
16505
16506
16507
16508
16509
16510
16511
16512
16513
16514
16515
16516
16517
16518
16519
16520
16521
16522
16523
16524
16525
16526
16527
16528
16529
16530
16531
16532
16533
16534
16535
16536
16537
16538
16539
16540
16541
16542
16543
16544
16545
16546
16547
16548
16549
16550
16551
16552
16553
16554
16555
16556
16557
16558
16559
16560
16561
16562
16563
16564
16565
16566
16567
16568
16569
16570
16571
16572
16573
16574
16575
16576
16577
16578
16579
16580
16581
16582
16583
16584
16585
16586
16587
16588
16589
16590
16591
16592
16593
16594
16595
16596
16597
16598
16599
16600
16601
16602
16603
16604
16605
16606
16607
16608
16609
16610
16611
16612
16613
16614
16615
16616
16617
16618
16619
16620
16621
16622
16623
16624
16625
16626
16627
16628
16629
16630
16631
16632
16633
16634
16635
16636
16637
16638
16639
16640
16641
16642
16643
16644
16645
16646
16647
16648
16649
16650
16651
16652
16653
16654
16655
16656
16657
16658
16659
16660
16661
16662
16663
16664
16665
16666
16667
16668
16669
16670
16671
16672
16673
16674
16675
16676
16677
16678
16679
16680
16681
16682
16683
16684
16685
16686
16687
16688
16689
16690
16691
16692
16693
16694
16695
16696
16697
16698
16699
16700
16701
16702
16703
16704
16705
16706
16707
16708
16709
16710
16711
16712
16713
16714
16715
16716
16717
16718
16719
16720
16721
16722
16723
16724
16725
16726
16727
16728
16729
16730
16731
16732
16733
16734
16735
16736
16737
16738
16739
16740
16741
16742
16743
16744
16745
16746
16747
16748
16749
16750
16751
16752
16753
16754
16755
16756
16757
16758
16759
16760
16761
16762
16763
16764
16765
16766
16767
16768
16769
16770
16771
16772
16773
16774
16775
16776
16777
16778
16779
16780
16781
16782
16783
16784
16785
16786
16787
16788
16789
16790
16791
16792
16793
16794
16795
16796
16797
16798
16799
16800
16801
16802
16803
16804
16805
16806
16807
16808
16809
16810
16811
16812
16813
16814
16815
16816
16817
16818
16819
16820
16821
16822
16823
16824
16825
16826
16827
16828
16829
16830
16831
16832
16833
16834
16835
16836
16837
16838
16839
16840
16841
16842
16843
16844
16845
16846
16847
16848
16849
16850
16851
16852
16853
16854
16855
16856
16857
16858
16859
16860
16861
16862
16863
16864
16865
16866
16867
16868
16869
16870
16871
16872
16873
16874
16875
16876
16877
16878
16879
16880
16881
16882
16883
16884
16885
16886
16887
16888
16889
16890
16891
16892
16893
16894
16895
16896
16897
16898
16899
16900
16901
16902
16903
16904
16905
16906
16907
16908
16909
16910
16911
16912
16913
16914
16915
16916
16917
16918
16919
16920
16921
16922
16923
16924
16925
16926
16927
16928
16929
16930
16931
16932
16933
16934
16935
16936
16937
16938
16939
16940
16941
16942
16943
16944
16945
16946
16947
16948
16949
16950
16951
16952
16953
16954
16955
16956
16957
16958
16959
16960
16961
16962
16963
16964
16965
16966
16967
16968
16969
16970
16971
16972
16973
16974
16975
16976
16977
16978
16979
16980
16981
16982
16983
16984
16985
16986
16987
16988
16989
16990
16991
16992
16993
16994
16995
16996
16997
16998
16999
17000
17001
17002
17003
17004
17005
17006
17007
17008
17009
17010
17011
17012
17013
17014
17015
17016
17017
17018
17019
17020
17021
17022
17023
17024
17025
17026
17027
17028
17029
17030
17031
17032
17033
17034
17035
17036
17037
17038
17039
17040
17041
17042
17043
17044
17045
17046
17047
17048
17049
17050
17051
17052
17053
17054
17055
17056
17057
17058
17059
17060
17061
17062
17063
17064
17065
17066
17067
17068
17069
17070
17071
17072
17073
17074
17075
17076
17077
17078
17079
17080
17081
17082
17083
17084
17085
17086
17087
17088
17089
17090
17091
17092
17093
17094
17095
17096
17097
17098
17099
17100
17101
17102
17103
17104
17105
17106
17107
17108
17109
17110
17111
17112
17113
17114
17115
17116
17117
17118
17119
17120
17121
17122
17123
17124
17125
17126
17127
17128
17129
17130
17131
17132
17133
17134
17135
17136
17137
17138
17139
17140
17141
17142
17143
17144
17145
17146
17147
17148
17149
17150
17151
17152
17153
17154
17155
17156
17157
17158
17159
17160
17161
17162
17163
17164
17165
17166
17167
17168
17169
17170
17171
17172
17173
17174
17175
17176
17177
17178
17179
17180
17181
17182
17183
17184
17185
17186
17187
17188
17189
17190
17191
17192
17193
17194
17195
17196
17197
17198
17199
17200
17201
17202
17203
17204
17205
17206
17207
17208
17209
17210
17211
17212
17213
17214
17215
17216
17217
17218
17219
17220
17221
17222
17223
17224
17225
17226
17227
17228
17229
17230
17231
17232
17233
17234
17235
17236
17237
17238
17239
17240
17241
17242
17243
17244
17245
17246
17247
17248
17249
17250
17251
17252
17253
17254
17255
17256
17257
17258
17259
17260
17261
17262
17263
17264
17265
17266
17267
17268
17269
17270
17271
17272
17273
17274
17275
17276
17277
17278
17279
17280
17281
17282
17283
17284
17285
17286
17287
17288
17289
17290
17291
17292
17293
17294
17295
17296
17297
17298
17299
17300
17301
17302
17303
17304
17305
17306
17307
17308
17309
17310
17311
17312
17313
17314
17315
17316
17317
17318
17319
17320
17321
17322
17323
17324
17325
17326
17327
17328
17329
17330
17331
17332
17333
17334
17335
17336
17337
17338
17339
17340
17341
17342
17343
17344
17345
17346
17347
17348
17349
17350
17351
17352
17353
17354
17355
17356
17357
17358
17359
17360
17361
17362
17363
17364
17365
17366
17367
17368
17369
17370
17371
17372
17373
17374
17375
17376
17377
17378
17379
17380
17381
17382
17383
17384
17385
17386
17387
17388
17389
17390
17391
17392
17393
17394
17395
17396
17397
17398
17399
17400
17401
17402
17403
17404
17405
17406
17407
17408
17409
17410
17411
17412
17413
17414
17415
17416
17417
17418
17419
17420
17421
17422
17423
17424
17425
17426
17427
17428
17429
17430
17431
17432
17433
17434
17435
17436
17437
17438
17439
17440
17441
17442
17443
17444
17445
17446
17447
17448
17449
17450
17451
17452
17453
17454
17455
17456
17457
17458
17459
17460
17461
17462
17463
17464
17465
17466
17467
17468
17469
17470
17471
17472
17473
17474
17475
17476
17477
17478
17479
17480
17481
17482
17483
17484
17485
17486
17487
17488
17489
17490
17491
17492
17493
17494
17495
17496
17497
17498
17499
17500
17501
17502
17503
17504
17505
17506
17507
17508
17509
17510
17511
17512
17513
17514
17515
17516
17517
17518
17519
17520
17521
17522
17523
17524
17525
17526
17527
17528
17529
17530
17531
17532
17533
17534
17535
17536
17537
17538
17539
17540
17541
17542
17543
17544
17545
17546
17547
17548
17549
17550
17551
17552
17553
17554
17555
17556
17557
17558
17559
17560
17561
17562
17563
17564
17565
17566
17567
17568
17569
17570
17571
17572
17573
17574
17575
17576
17577
17578
17579
17580
17581
17582
17583
17584
17585
17586
17587
17588
17589
17590
17591
17592
17593
17594
17595
17596
17597
17598
17599
17600
17601
17602
17603
17604
17605
17606
17607
17608
17609
17610
17611
17612
17613
17614
17615
17616
17617
17618
17619
17620
17621
17622
17623
17624
17625
17626
17627
17628
17629
17630
17631
17632
17633
17634
17635
17636
17637
17638
17639
17640
17641
17642
17643
17644
17645
17646
17647
17648
17649
17650
17651
17652
17653
17654
17655
17656
17657
17658
17659
17660
17661
17662
17663
17664
17665
17666
17667
17668
17669
17670
17671
17672
17673
17674
17675
17676
17677
17678
17679
17680
17681
17682
17683
17684
17685
17686
17687
17688
17689
17690
17691
17692
17693
17694
17695
17696
17697
17698
17699
17700
17701
17702
17703
17704
17705
17706
17707
17708
17709
17710
17711
17712
17713
17714
17715
17716
17717
17718
17719
17720
17721
17722
17723
17724
17725
17726
17727
17728
17729
17730
17731
17732
17733
17734
17735
17736
17737
17738
17739
17740
17741
17742
17743
17744
17745
17746
17747
17748
17749
17750
17751
17752
17753
17754
17755
17756
17757
17758
17759
17760
17761
17762
17763
17764
17765
17766
17767
17768
17769
17770
17771
17772
17773
17774
17775
17776
17777
17778
17779
17780
17781
17782
17783
17784
17785
17786
17787
17788
17789
17790
17791
17792
17793
17794
17795
17796
17797
17798
17799
17800
17801
17802
17803
17804
17805
17806
17807
17808
17809
17810
17811
17812
17813
17814
17815
17816
17817
17818
17819
17820
17821
17822
17823
17824
17825
17826
17827
17828
17829
17830
17831
17832
17833
17834
17835
17836
17837
17838
17839
17840
17841
17842
17843
17844
17845
17846
17847
17848
17849
17850
17851
17852
17853
17854
17855
17856
17857
17858
17859
17860
17861
17862
17863
17864
17865
17866
17867
17868
17869
17870
17871
17872
17873
17874
17875
17876
17877
17878
17879
17880
17881
17882
17883
17884
17885
17886
17887
17888
17889
17890
17891
17892
17893
17894
17895
17896
17897
17898
17899
17900
17901
17902
17903
17904
17905
17906
17907
17908
17909
17910
17911
17912
17913
17914
17915
17916
17917
17918
17919
17920
17921
17922
17923
17924
17925
17926
17927
17928
17929
17930
17931
17932
17933
17934
17935
17936
17937
17938
17939
17940
17941
17942
17943
17944
17945
17946
17947
17948
17949
17950
17951
17952
17953
17954
17955
17956
17957
17958
17959
17960
17961
17962
17963
17964
17965
17966
17967
17968
17969
17970
17971
17972
17973
17974
17975
17976
17977
17978
17979
17980
17981
17982
17983
17984
17985
17986
17987
17988
17989
17990
17991
17992
17993
17994
17995
17996
17997
17998
17999
18000
18001
18002
18003
18004
18005
18006
18007
18008
18009
18010
18011
18012
18013
18014
18015
18016
18017
18018
18019
18020
18021
18022
18023
18024
18025
18026
18027
18028
18029
18030
18031
18032
18033
18034
18035
18036
18037
18038
18039
18040
18041
18042
18043
18044
18045
18046
18047
18048
18049
18050
18051
18052
18053
18054
18055
18056
18057
18058
18059
18060
18061
18062
18063
18064
18065
18066
18067
18068
18069
18070
18071
18072
18073
18074
18075
18076
18077
18078
18079
18080
18081
18082
18083
18084
18085
18086
18087
18088
18089
18090
18091
18092
18093
18094
18095
18096
18097
18098
18099
18100
18101
18102
18103
18104
18105
18106
18107
18108
18109
18110
18111
18112
18113
18114
18115
18116
18117
18118
18119
18120
18121
18122
18123
18124
18125
18126
18127
18128
18129
18130
18131
18132
18133
18134
18135
18136
18137
18138
18139
18140
18141
18142
18143
18144
18145
18146
18147
18148
18149
18150
18151
18152
18153
18154
18155
18156
18157
18158
18159
18160
18161
18162
18163
18164
18165
18166
18167
18168
18169
18170
18171
18172
18173
18174
18175
18176
18177
18178
18179
18180
18181
18182
18183
18184
18185
18186
18187
18188
18189
18190
18191
18192
18193
18194
18195
18196
18197
18198
18199
18200
18201
18202
18203
18204
18205
18206
18207
18208
18209
18210
18211
18212
18213
18214
18215
18216
18217
18218
18219
18220
18221
18222
18223
18224
18225
18226
18227
18228
18229
18230
18231
18232
18233
18234
18235
18236
18237
18238
18239
18240
18241
18242
18243
18244
18245
18246
18247
18248
18249
18250
18251
18252
18253
18254
18255
18256
18257
18258
18259
18260
18261
18262
18263
18264
18265
18266
18267
18268
18269
18270
18271
18272
18273
18274
18275
18276
18277
18278
18279
18280
18281
18282
18283
18284
18285
18286
18287
18288
18289
18290
18291
18292
18293
18294
18295
18296
18297
18298
18299
18300
18301
18302
18303
18304
18305
18306
18307
18308
18309
18310
18311
18312
18313
18314
18315
18316
18317
18318
18319
18320
18321
18322
18323
18324
18325
18326
18327
18328
18329
18330
18331
18332
18333
18334
18335
18336
18337
18338
18339
18340
18341
18342
18343
18344
18345
18346
18347
18348
18349
18350
18351
18352
18353
18354
18355
18356
18357
18358
18359
18360
18361
18362
18363
18364
18365
18366
18367
18368
18369
18370
18371
18372
18373
18374
18375
18376
18377
18378
18379
18380
18381
18382
18383
18384
18385
18386
18387
18388
18389
18390
18391
18392
18393
18394
18395
18396
18397
18398
18399
18400
18401
18402
18403
18404
18405
18406
18407
18408
18409
18410
18411
18412
18413
18414
18415
18416
18417
18418
18419
18420
18421
18422
18423
18424
18425
18426
18427
18428
18429
18430
18431
18432
18433
18434
18435
18436
18437
18438
18439
18440
18441
18442
18443
18444
18445
18446
18447
18448
18449
18450
18451
18452
18453
18454
18455
18456
18457
18458
18459
18460
18461
18462
18463
18464
18465
18466
18467
18468
18469
18470
18471
18472
18473
18474
18475
18476
18477
18478
18479
18480
18481
18482
18483
18484
18485
18486
18487
18488
18489
18490
18491
18492
18493
18494
18495
18496
18497
18498
18499
18500
18501
18502
18503
18504
18505
18506
18507
18508
18509
18510
18511
18512
18513
18514
18515
18516
18517
18518
18519
18520
18521
18522
18523
18524
18525
18526
18527
18528
18529
18530
18531
18532
18533
18534
18535
18536
18537
18538
18539
18540
18541
18542
18543
18544
18545
18546
18547
18548
18549
18550
18551
18552
18553
18554
18555
18556
18557
18558
18559
18560
18561
18562
18563
18564
18565
18566
18567
18568
18569
18570
18571
18572
18573
18574
18575
18576
18577
18578
18579
18580
18581
18582
18583
18584
18585
18586
18587
18588
18589
18590
18591
18592
18593
18594
18595
18596
18597
18598
18599
18600
18601
18602
18603
18604
18605
18606
18607
18608
18609
18610
18611
18612
18613
18614
18615
18616
18617
18618
18619
18620
18621
18622
18623
18624
18625
18626
18627
18628
18629
18630
18631
18632
18633
18634
18635
18636
18637
18638
18639
18640
18641
18642
18643
18644
18645
18646
18647
18648
18649
18650
18651
18652
18653
18654
18655
18656
18657
18658
18659
18660
18661
18662
18663
18664
18665
18666
18667
18668
18669
18670
18671
18672
18673
18674
18675
18676
18677
18678
18679
18680
18681
18682
18683
18684
18685
18686
18687
18688
18689
18690
18691
18692
18693
18694
18695
18696
18697
18698
18699
18700
18701
18702
18703
18704
18705
18706
18707
18708
18709
18710
18711
18712
18713
18714
18715
18716
18717
18718
18719
18720
18721
18722
18723
18724
18725
18726
18727
18728
18729
18730
18731
18732
18733
18734
18735
18736
18737
18738
18739
18740
18741
18742
18743
18744
18745
18746
18747
18748
18749
18750
18751
18752
18753
18754
18755
18756
18757
18758
18759
18760
18761
18762
18763
18764
18765
18766
18767
18768
18769
18770
18771
18772
18773
18774
18775
18776
18777
18778
18779
18780
18781
18782
18783
18784
18785
18786
18787
18788
18789
18790
18791
18792
18793
18794
18795
18796
18797
18798
18799
18800
18801
18802
18803
18804
18805
18806
18807
18808
18809
18810
18811
18812
18813
18814
18815
18816
18817
18818
18819
18820
18821
18822
18823
18824
18825
18826
18827
18828
18829
18830
18831
18832
18833
18834
18835
18836
18837
18838
18839
18840
18841
18842
18843
18844
18845
18846
18847
18848
18849
18850
18851
18852
18853
18854
18855
18856
18857
18858
18859
18860
18861
18862
18863
18864
18865
18866
18867
18868
18869
18870
18871
18872
18873
18874
18875
18876
18877
18878
18879
18880
18881
18882
18883
18884
18885
18886
18887
18888
18889
18890
18891
18892
18893
18894
18895
18896
18897
18898
18899
18900
18901
18902
18903
18904
18905
18906
18907
18908
18909
18910
18911
18912
18913
18914
18915
18916
18917
18918
18919
18920
18921
18922
18923
18924
18925
18926
18927
18928
18929
18930
18931
18932
18933
18934
18935
18936
18937
18938
18939
18940
18941
18942
18943
18944
18945
18946
18947
18948
18949
18950
18951
18952
18953
18954
18955
18956
18957
18958
18959
18960
18961
18962
18963
18964
18965
18966
18967
18968
18969
18970
18971
18972
18973
18974
18975
18976
18977
18978
18979
18980
18981
18982
18983
18984
18985
18986
18987
18988
18989
18990
18991
18992
18993
18994
18995
18996
18997
18998
18999
19000
19001
19002
19003
19004
19005
19006
19007
19008
19009
19010
19011
19012
19013
19014
19015
19016
19017
19018
19019
19020
19021
19022
19023
19024
19025
19026
19027
19028
19029
19030
19031
19032
19033
19034
19035
19036
19037
19038
19039
19040
19041
19042
19043
19044
19045
19046
19047
19048
19049
19050
19051
19052
19053
19054
19055
19056
19057
19058
19059
19060
19061
19062
19063
19064
19065
19066
19067
19068
19069
19070
19071
19072
19073
19074
19075
19076
19077
19078
19079
19080
19081
19082
19083
19084
19085
19086
19087
19088
19089
19090
19091
19092
19093
19094
19095
19096
19097
19098
19099
19100
19101
19102
19103
19104
19105
19106
19107
19108
19109
19110
19111
19112
19113
19114
19115
19116
19117
19118
19119
19120
19121
19122
19123
19124
19125
19126
19127
19128
19129
19130
19131
19132
19133
19134
19135
19136
19137
19138
19139
19140
19141
19142
19143
19144
19145
19146
19147
19148
19149
19150
19151
19152
19153
19154
19155
19156
19157
19158
19159
19160
19161
19162
19163
19164
19165
19166
19167
19168
19169
19170
19171
19172
19173
19174
19175
19176
19177
19178
19179
19180
19181
19182
19183
19184
19185
19186
19187
19188
19189
19190
19191
19192
19193
19194
19195
19196
19197
19198
19199
19200
19201
19202
19203
19204
19205
19206
19207
19208
19209
19210
19211
19212
19213
19214
19215
19216
19217
19218
19219
19220
19221
19222
19223
19224
19225
19226
19227
19228
19229
19230
19231
19232
19233
19234
19235
19236
19237
19238
19239
19240
19241
19242
19243
19244
19245
19246
19247
19248
19249
19250
19251
19252
19253
19254
19255
19256
19257
19258
19259
19260
19261
19262
19263
19264
19265
19266
19267
19268
19269
19270
19271
19272
19273
19274
19275
19276
19277
19278
19279
19280
19281
19282
19283
19284
19285
19286
19287
19288
19289
19290
19291
19292
19293
19294
19295
19296
19297
19298
19299
19300
19301
19302
19303
19304
19305
19306
19307
19308
19309
19310
19311
19312
19313
19314
19315
19316
19317
19318
19319
19320
19321
19322
19323
19324
19325
19326
19327
19328
19329
19330
19331
19332
19333
19334
19335
19336
19337
19338
19339
19340
19341
19342
19343
19344
19345
19346
19347
19348
19349
19350
19351
19352
19353
19354
19355
19356
19357
19358
19359
19360
19361
19362
19363
19364
19365
19366
19367
19368
19369
19370
19371
19372
19373
19374
19375
19376
19377
19378
19379
19380
19381
19382
19383
19384
19385
19386
19387
19388
19389
19390
19391
19392
19393
19394
19395
19396
19397
19398
19399
19400
19401
19402
19403
19404
19405
19406
19407
19408
19409
19410
19411
19412
19413
19414
19415
19416
19417
19418
19419
19420
19421
19422
19423
19424
19425
19426
19427
19428
19429
19430
19431
19432
19433
19434
19435
19436
19437
19438
19439
19440
19441
19442
19443
19444
19445
19446
19447
19448
19449
19450
19451
19452
19453
19454
19455
19456
19457
19458
19459
19460
19461
19462
19463
19464
19465
19466
19467
19468
19469
19470
19471
19472
19473
19474
19475
19476
19477
19478
19479
19480
19481
19482
19483
19484
19485
19486
19487
19488
19489
19490
19491
19492
19493
19494
19495
19496
19497
19498
19499
19500
19501
19502
19503
19504
19505
19506
19507
19508
19509
19510
19511
19512
19513
19514
19515
19516
19517
19518
19519
19520
19521
19522
19523
19524
19525
19526
19527
19528
19529
19530
19531
19532
19533
19534
19535
19536
19537
19538
19539
19540
19541
19542
19543
19544
19545
19546
19547
19548
19549
19550
19551
19552
19553
19554
19555
19556
19557
19558
19559
19560
19561
19562
19563
19564
19565
19566
19567
19568
19569
19570
19571
19572
19573
19574
19575
19576
19577
19578
19579
19580
19581
19582
19583
19584
19585
19586
19587
19588
19589
19590
19591
19592
19593
19594
19595
19596
19597
19598
19599
19600
19601
19602
19603
19604
19605
19606
19607
19608
19609
19610
19611
19612
19613
19614
19615
19616
19617
19618
19619
19620
19621
19622
19623
19624
19625
19626
19627
19628
19629
19630
19631
19632
19633
19634
19635
19636
19637
19638
19639
19640
19641
19642
19643
19644
19645
19646
19647
19648
19649
19650
19651
19652
19653
19654
19655
19656
19657
19658
19659
19660
19661
19662
19663
19664
19665
19666
19667
19668
19669
19670
19671
19672
19673
19674
19675
19676
19677
19678
19679
19680
19681
19682
19683
19684
19685
19686
19687
19688
19689
19690
19691
19692
19693
19694
19695
19696
19697
19698
19699
19700
19701
19702
19703
19704
19705
19706
19707
19708
19709
19710
19711
19712
19713
19714
19715
19716
19717
19718
19719
19720
19721
19722
19723
19724
19725
19726
19727
19728
19729
19730
19731
19732
19733
19734
19735
19736
19737
19738
19739
19740
19741
19742
19743
19744
19745
19746
19747
19748
19749
19750
19751
19752
19753
19754
19755
19756
19757
19758
19759
19760
19761
19762
19763
19764
19765
19766
19767
19768
19769
19770
19771
19772
19773
19774
19775
19776
19777
19778
19779
19780
19781
19782
19783
19784
19785
19786
19787
19788
19789
19790
19791
19792
19793
19794
19795
19796
19797
19798
19799
19800
19801
19802
19803
19804
19805
19806
19807
19808
19809
19810
19811
19812
19813
19814
19815
19816
19817
19818
19819
19820
19821
19822
19823
19824
19825
19826
19827
19828
19829
19830
19831
19832
19833
19834
19835
19836
19837
19838
19839
19840
19841
19842
19843
19844
19845
19846
19847
19848
19849
19850
19851
19852
19853
19854
19855
19856
19857
19858
19859
19860
19861
19862
19863
19864
19865
19866
19867
19868
19869
19870
19871
19872
19873
19874
19875
19876
19877
19878
19879
19880
19881
19882
19883
19884
19885
19886
19887
19888
19889
19890
19891
19892
19893
19894
19895
19896
19897
19898
19899
19900
19901
19902
19903
19904
19905
19906
19907
19908
19909
19910
19911
19912
19913
19914
19915
19916
19917
19918
19919
19920
19921
19922
19923
19924
19925
19926
19927
19928
19929
19930
19931
19932
19933
19934
19935
19936
19937
19938
19939
19940
19941
19942
19943
19944
19945
19946
19947
19948
19949
19950
19951
19952
19953
19954
19955
19956
19957
19958
19959
19960
19961
19962
19963
19964
19965
19966
19967
19968
19969
19970
19971
19972
19973
19974
19975
19976
19977
19978
19979
19980
19981
19982
19983
19984
19985
19986
19987
19988
19989
19990
19991
19992
19993
19994
19995
19996
19997
19998
19999
20000
20001
20002
20003
20004
20005
20006
20007
20008
20009
20010
20011
20012
20013
20014
20015
20016
20017
20018
20019
20020
20021
20022
20023
20024
20025
20026
20027
20028
20029
20030
20031
20032
20033
20034
20035
20036
20037
20038
20039
20040
20041
20042
20043
20044
20045
20046
20047
20048
20049
20050
20051
20052
20053
20054
20055
20056
20057
20058
20059
20060
20061
20062
20063
20064
20065
20066
20067
20068
20069
20070
20071
20072
20073
20074
20075
20076
20077
20078
20079
20080
20081
20082
20083
20084
20085
20086
20087
20088
20089
20090
20091
20092
20093
20094
20095
20096
20097
20098
20099
20100
20101
20102
20103
20104
20105
20106
20107
20108
20109
20110
20111
20112
20113
20114
20115
20116
20117
20118
20119
20120
20121
20122
20123
20124
20125
20126
20127
20128
20129
20130
20131
20132
20133
20134
20135
20136
20137
20138
20139
20140
20141
20142
20143
20144
20145
20146
20147
20148
20149
20150
20151
20152
20153
20154
20155
20156
20157
20158
20159
20160
20161
20162
20163
20164
20165
20166
20167
20168
20169
20170
20171
20172
20173
20174
20175
20176
20177
20178
20179
20180
20181
20182
20183
20184
20185
20186
20187
20188
20189
20190
20191
20192
20193
20194
20195
20196
20197
20198
20199
20200
20201
20202
20203
20204
20205
20206
20207
20208
20209
20210
20211
20212
20213
20214
20215
20216
20217
20218
20219
20220
20221
20222
20223
20224
20225
20226
20227
20228
20229
20230
20231
20232
20233
20234
20235
20236
20237
20238
20239
20240
20241
20242
20243
20244
20245
20246
20247
20248
20249
20250
20251
20252
20253
20254
20255
20256
20257
20258
20259
20260
20261
20262
20263
20264
20265
20266
20267
20268
20269
20270
20271
20272
20273
20274
20275
20276
20277
20278
20279
20280
20281
20282
20283
20284
20285
20286
20287
20288
20289
20290
20291
20292
20293
20294
20295
20296
20297
20298
20299
20300
20301
20302
20303
20304
20305
20306
20307
20308
20309
20310
20311
20312
20313
20314
20315
20316
20317
20318
20319
20320
20321
20322
20323
20324
20325
20326
20327
20328
20329
20330
20331
20332
20333
20334
20335
20336
20337
20338
20339
20340
20341
20342
20343
20344
20345
20346
20347
20348
20349
20350
20351
20352
20353
20354
20355
20356
20357
20358
20359
20360
20361
20362
20363
20364
20365
20366
20367
20368
20369
20370
20371
20372
20373
20374
20375
20376
20377
20378
20379
20380
20381
20382
20383
20384
20385
20386
20387
20388
20389
20390
20391
20392
20393
20394
20395
20396
20397
20398
20399
20400
20401
20402
20403
20404
20405
20406
20407
20408
20409
20410
20411
20412
20413
20414
20415
20416
20417
20418
20419
20420
20421
20422
20423
20424
20425
20426
20427
20428
20429
20430
20431
20432
20433
20434
20435
20436
20437
20438
20439
20440
20441
20442
20443
20444
20445
20446
20447
20448
20449
20450
20451
20452
20453
20454
20455
20456
20457
20458
20459
20460
20461
20462
20463
20464
20465
20466
20467
20468
20469
20470
20471
20472
20473
20474
20475
20476
20477
20478
20479
20480
20481
20482
20483
20484
20485
20486
20487
20488
20489
20490
20491
20492
20493
20494
20495
20496
20497
20498
20499
20500
20501
20502
20503
20504
20505
20506
20507
20508
20509
20510
20511
20512
20513
20514
20515
20516
20517
20518
20519
20520
20521
20522
20523
20524
20525
20526
20527
20528
20529
20530
20531
20532
20533
20534
20535
20536
20537
20538
20539
20540
20541
20542
20543
20544
20545
20546
20547
20548
20549
20550
20551
20552
20553
20554
20555
20556
20557
20558
20559
20560
20561
20562
20563
20564
20565
20566
20567
20568
20569
20570
20571
20572
20573
20574
20575
20576
20577
20578
20579
20580
20581
20582
20583
20584
20585
20586
20587
20588
20589
20590
20591
20592
20593
20594
20595
20596
20597
20598
20599
20600
20601
20602
20603
20604
20605
20606
20607
20608
20609
20610
20611
20612
20613
20614
20615
20616
20617
20618
20619
20620
20621
20622
20623
20624
20625
20626
20627
20628
20629
20630
20631
20632
20633
20634
20635
20636
20637
20638
20639
20640
20641
20642
20643
20644
20645
20646
20647
20648
20649
20650
20651
20652
20653
20654
20655
20656
20657
20658
20659
20660
20661
20662
20663
20664
20665
20666
20667
20668
20669
20670
20671
20672
20673
20674
20675
20676
20677
20678
20679
20680
20681
20682
20683
20684
20685
20686
20687
20688
20689
20690
20691
20692
20693
20694
20695
20696
20697
20698
20699
20700
20701
20702
20703
20704
20705
20706
20707
20708
20709
20710
20711
20712
20713
20714
20715
20716
20717
20718
20719
20720
20721
20722
20723
20724
20725
20726
20727
20728
20729
20730
20731
20732
20733
20734
20735
20736
20737
20738
20739
20740
20741
20742
20743
20744
20745
20746
20747
20748
20749
20750
20751
20752
20753
20754
20755
20756
20757
20758
20759
20760
20761
20762
20763
20764
20765
20766
20767
20768
20769
20770
20771
20772
20773
20774
20775
20776
20777
20778
20779
20780
20781
20782
20783
20784
20785
20786
20787
20788
20789
20790
20791
20792
20793
20794
20795
20796
20797
20798
20799
20800
20801
20802
20803
20804
20805
20806
20807
20808
20809
20810
20811
20812
20813
20814
20815
20816
20817
20818
20819
20820
20821
20822
20823
20824
20825
20826
20827
20828
20829
20830
20831
20832
20833
20834
20835
20836
20837
20838
20839
20840
20841
20842
20843
20844
20845
20846
20847
20848
20849
20850
20851
20852
20853
20854
20855
20856
20857
20858
20859
20860
20861
20862
20863
20864
20865
20866
20867
20868
20869
20870
20871
20872
20873
20874
20875
20876
20877
20878
20879
20880
20881
20882
20883
20884
20885
20886
20887
20888
20889
20890
20891
20892
20893
20894
20895
20896
20897
20898
20899
20900
20901
20902
20903
20904
20905
20906
20907
20908
20909
20910
20911
20912
20913
20914
20915
20916
20917
20918
20919
20920
20921
20922
20923
20924
20925
20926
20927
20928
20929
20930
20931
20932
20933
20934
20935
20936
20937
20938
20939
20940
20941
20942
20943
20944
20945
20946
20947
20948
20949
20950
20951
20952
20953
20954
20955
20956
20957
20958
20959
20960
20961
20962
20963
20964
20965
20966
20967
20968
20969
20970
20971
20972
20973
20974
20975
20976
20977
20978
20979
20980
20981
20982
20983
20984
20985
20986
20987
20988
20989
20990
20991
20992
20993
20994
20995
20996
20997
20998
20999
21000
21001
21002
21003
21004
21005
21006
21007
21008
21009
21010
21011
21012
21013
21014
21015
21016
21017
21018
21019
21020
21021
21022
21023
21024
21025
21026
21027
21028
21029
21030
21031
21032
21033
21034
21035
21036
21037
21038
21039
21040
21041
21042
21043
21044
21045
21046
21047
21048
21049
21050
21051
21052
21053
21054
21055
21056
21057
21058
21059
21060
21061
21062
21063
21064
21065
21066
21067
21068
21069
21070
21071
21072
21073
21074
21075
21076
21077
21078
21079
21080
21081
21082
21083
21084
21085
21086
21087
21088
21089
21090
21091
21092
21093
21094
21095
21096
21097
21098
21099
21100
21101
21102
21103
21104
21105
21106
21107
21108
21109
21110
21111
21112
21113
21114
21115
21116
21117
21118
21119
21120
21121
21122
21123
21124
21125
21126
21127
21128
21129
21130
21131
21132
21133
21134
21135
21136
21137
21138
21139
21140
21141
21142
21143
21144
21145
21146
21147
21148
21149
21150
21151
21152
21153
21154
21155
21156
21157
21158
21159
21160
21161
21162
21163
21164
21165
21166
21167
21168
21169
21170
21171
21172
21173
21174
21175
21176
21177
21178
21179
21180
21181
21182
21183
21184
21185
21186
21187
21188
21189
21190
21191
21192
21193
21194
21195
21196
21197
21198
21199
21200
21201
21202
21203
21204
21205
21206
21207
21208
21209
21210
21211
21212
21213
21214
21215
21216
21217
21218
21219
21220
21221
21222
21223
21224
21225
21226
21227
21228
21229
21230
21231
21232
21233
21234
21235
21236
21237
21238
21239
21240
21241
21242
21243
21244
21245
21246
21247
21248
21249
21250
21251
21252
21253
21254
21255
21256
21257
21258
21259
21260
21261
21262
21263
21264
21265
21266
21267
21268
21269
21270
21271
21272
21273
21274
21275
21276
21277
21278
21279
21280
21281
21282
21283
21284
21285
21286
21287
21288
21289
21290
21291
21292
21293
21294
21295
21296
21297
21298
21299
21300
21301
21302
21303
21304
21305
21306
21307
21308
21309
21310
21311
21312
21313
21314
21315
21316
21317
21318
21319
21320
21321
21322
21323
21324
21325
21326
21327
21328
21329
21330
21331
21332
21333
21334
21335
21336
21337
21338
21339
21340
21341
21342
21343
21344
21345
21346
21347
21348
21349
21350
21351
21352
21353
21354
21355
21356
21357
21358
21359
21360
21361
21362
21363
21364
21365
21366
21367
21368
21369
21370
21371
21372
21373
21374
21375
21376
21377
21378
21379
21380
21381
21382
21383
21384
21385
21386
21387
21388
21389
21390
21391
21392
21393
21394
21395
21396
21397
21398
21399
21400
21401
21402
21403
21404
21405
21406
21407
21408
21409
21410
21411
21412
21413
21414
21415
21416
21417
21418
21419
21420
21421
21422
21423
21424
21425
21426
21427
21428
21429
21430
21431
21432
21433
21434
21435
21436
21437
21438
21439
21440
21441
21442
21443
21444
21445
21446
21447
21448
21449
21450
21451
21452
21453
21454
21455
21456
21457
21458
21459
21460
21461
21462
21463
21464
21465
21466
21467
21468
21469
21470
21471
21472
21473
21474
21475
21476
21477
21478
21479
21480
21481
21482
21483
21484
21485
21486
21487
21488
21489
21490
21491
21492
21493
21494
21495
21496
21497
21498
21499
21500
21501
21502
21503
21504
21505
21506
21507
21508
21509
21510
21511
21512
21513
21514
21515
21516
21517
21518
21519
21520
21521
21522
21523
21524
21525
21526
21527
21528
21529
21530
21531
21532
21533
21534
21535
21536
21537
21538
21539
21540
21541
21542
21543
21544
21545
21546
21547
21548
21549
21550
21551
21552
21553
21554
21555
21556
21557
21558
21559
21560
21561
21562
21563
21564
21565
21566
21567
21568
21569
21570
21571
21572
21573
21574
21575
21576
21577
21578
21579
21580
21581
21582
21583
21584
21585
21586
21587
21588
21589
21590
21591
21592
21593
21594
21595
21596
21597
21598
21599
21600
21601
21602
21603
21604
21605
21606
21607
21608
21609
21610
21611
21612
21613
21614
21615
21616
21617
21618
21619
21620
21621
21622
21623
21624
21625
21626
21627
21628
21629
21630
21631
21632
21633
21634
21635
21636
21637
21638
21639
21640
21641
21642
21643
21644
21645
21646
21647
21648
21649
21650
21651
21652
21653
21654
21655
21656
21657
21658
21659
21660
21661
21662
21663
21664
21665
21666
21667
21668
21669
21670
21671
21672
21673
21674
21675
21676
21677
21678
21679
21680
21681
21682
21683
21684
21685
21686
21687
21688
21689
21690
21691
21692
21693
21694
21695
21696
21697
21698
21699
21700
21701
21702
21703
21704
21705
21706
21707
21708
21709
21710
21711
21712
21713
21714
21715
21716
21717
21718
21719
21720
21721
21722
21723
21724
21725
21726
21727
21728
21729
21730
21731
21732
21733
21734
21735
21736
21737
21738
21739
21740
21741
21742
21743
21744
21745
21746
21747
21748
21749
21750
21751
21752
21753
21754
21755
21756
21757
21758
21759
21760
21761
21762
21763
21764
21765
21766
21767
21768
21769
21770
21771
21772
21773
21774
21775
21776
21777
21778
21779
21780
21781
21782
21783
21784
21785
21786
21787
21788
21789
21790
21791
21792
21793
21794
21795
21796
21797
21798
21799
21800
21801
21802
21803
21804
21805
21806
21807
21808
21809
21810
21811
21812
21813
21814
21815
21816
21817
21818
21819
21820
21821
21822
21823
21824
21825
21826
21827
21828
21829
21830
21831
21832
21833
21834
21835
21836
21837
21838
21839
21840
21841
21842
21843
21844
21845
21846
21847
21848
21849
21850
21851
21852
21853
21854
21855
21856
21857
21858
21859
21860
21861
21862
21863
21864
21865
21866
21867
21868
21869
21870
21871
21872
21873
21874
21875
21876
21877
21878
21879
21880
21881
21882
21883
21884
21885
21886
21887
21888
21889
21890
21891
21892
21893
21894
21895
21896
21897
21898
21899
21900
21901
21902
21903
21904
21905
21906
21907
21908
21909
21910
21911
21912
21913
21914
21915
21916
21917
21918
21919
21920
21921
21922
21923
21924
21925
21926
21927
21928
21929
21930
21931
21932
21933
21934
21935
21936
21937
21938
21939
21940
21941
21942
21943
21944
21945
21946
21947
21948
21949
21950
21951
21952
21953
21954
21955
21956
21957
21958
21959
21960
21961
21962
21963
21964
21965
21966
21967
21968
21969
21970
21971
21972
21973
21974
21975
21976
21977
21978
21979
21980
21981
21982
21983
21984
21985
21986
21987
21988
21989
21990
21991
21992
21993
21994
21995
21996
21997
21998
21999
22000
22001
22002
22003
22004
22005
22006
22007
22008
22009
22010
22011
22012
22013
22014
22015
22016
22017
22018
22019
22020
22021
22022
22023
22024
22025
22026
22027
22028
22029
22030
22031
22032
22033
22034
22035
22036
22037
22038
22039
22040
22041
22042
22043
22044
22045
22046
22047
22048
22049
22050
22051
22052
22053
22054
22055
22056
22057
22058
22059
22060
22061
22062
22063
22064
22065
22066
22067
22068
22069
22070
22071
22072
22073
22074
22075
22076
22077
22078
22079
22080
22081
22082
22083
22084
22085
22086
22087
22088
22089
22090
22091
22092
22093
22094
22095
22096
22097
22098
22099
22100
22101
22102
22103
22104
22105
22106
22107
22108
22109
22110
22111
22112
22113
22114
22115
22116
22117
22118
22119
22120
22121
22122
22123
22124
22125
22126
22127
22128
22129
22130
22131
22132
22133
22134
22135
22136
22137
22138
22139
22140
22141
22142
22143
22144
22145
22146
22147
22148
22149
22150
22151
22152
22153
22154
22155
22156
22157
22158
22159
22160
22161
22162
22163
22164
22165
22166
22167
22168
22169
22170
22171
22172
22173
22174
22175
22176
22177
22178
22179
22180
22181
22182
22183
22184
22185
22186
22187
22188
22189
22190
22191
22192
22193
22194
22195
22196
22197
22198
22199
22200
22201
22202
22203
22204
22205
22206
22207
22208
22209
22210
22211
22212
22213
22214
22215
22216
22217
22218
22219
22220
22221
22222
22223
22224
22225
22226
22227
22228
22229
22230
22231
22232
22233
22234
22235
22236
22237
22238
22239
22240
22241
22242
22243
22244
22245
22246
22247
22248
22249
22250
22251
22252
22253
22254
22255
22256
22257
22258
22259
22260
22261
22262
22263
22264
22265
22266
22267
22268
22269
22270
22271
22272
22273
22274
22275
22276
22277
22278
22279
22280
22281
22282
22283
22284
22285
22286
22287
22288
22289
22290
22291
22292
22293
22294
22295
22296
22297
22298
22299
22300
22301
22302
22303
22304
22305
22306
22307
22308
22309
22310
22311
22312
22313
22314
22315
22316
22317
22318
22319
22320
22321
22322
22323
22324
22325
22326
22327
22328
22329
22330
22331
22332
22333
22334
22335
22336
22337
22338
22339
22340
22341
22342
22343
22344
22345
22346
22347
22348
22349
22350
22351
22352
22353
22354
22355
22356
22357
22358
22359
22360
22361
22362
22363
22364
22365
22366
22367
22368
22369
22370
22371
22372
22373
22374
22375
22376
22377
22378
22379
22380
22381
22382
22383
22384
22385
22386
22387
22388
22389
22390
22391
22392
22393
22394
22395
22396
22397
22398
22399
22400
22401
22402
22403
22404
22405
22406
22407
22408
22409
22410
22411
22412
22413
22414
22415
22416
22417
22418
22419
22420
22421
22422
22423
22424
22425
22426
22427
22428
22429
22430
22431
22432
22433
22434
22435
22436
22437
22438
22439
22440
22441
22442
22443
22444
22445
22446
22447
22448
22449
22450
22451
22452
22453
22454
22455
22456
22457
22458
22459
22460
22461
22462
22463
22464
22465
22466
22467
22468
22469
22470
22471
22472
22473
22474
22475
22476
22477
22478
22479
22480
22481
22482
22483
22484
22485
22486
22487
22488
22489
22490
22491
22492
22493
22494
22495
22496
22497
22498
22499
22500
22501
22502
22503
22504
22505
22506
22507
22508
22509
22510
22511
22512
22513
22514
22515
22516
22517
22518
22519
22520
22521
22522
22523
22524
22525
22526
22527
22528
22529
22530
22531
22532
22533
22534
22535
22536
22537
22538
22539
22540
22541
22542
22543
22544
22545
22546
22547
22548
22549
22550
22551
22552
22553
22554
22555
22556
22557
22558
22559
22560
22561
22562
22563
22564
22565
22566
22567
22568
22569
22570
22571
22572
22573
22574
22575
22576
22577
22578
22579
22580
22581
22582
22583
22584
22585
22586
22587
22588
22589
22590
22591
22592
22593
22594
22595
22596
22597
22598
22599
22600
22601
22602
22603
22604
22605
22606
22607
22608
22609
22610
22611
22612
22613
22614
22615
22616
22617
22618
22619
22620
22621
22622
22623
22624
22625
22626
22627
22628
22629
22630
22631
22632
22633
22634
22635
22636
22637
22638
22639
22640
22641
22642
22643
22644
22645
22646
22647
22648
22649
22650
22651
22652
22653
22654
22655
22656
22657
22658
22659
22660
22661
22662
22663
22664
22665
22666
22667
22668
22669
22670
22671
22672
22673
22674
22675
22676
22677
22678
22679
22680
22681
22682
22683
22684
22685
22686
22687
22688
22689
22690
22691
22692
22693
22694
22695
22696
22697
22698
22699
22700
22701
22702
22703
22704
22705
22706
22707
22708
22709
22710
22711
22712
22713
22714
22715
22716
22717
22718
22719
22720
22721
22722
22723
22724
22725
22726
22727
22728
22729
22730
22731
22732
22733
22734
22735
22736
22737
22738
22739
22740
22741
22742
22743
22744
22745
22746
22747
22748
22749
22750
22751
22752
22753
22754
22755
22756
22757
22758
22759
22760
22761
22762
22763
22764
22765
22766
22767
22768
22769
22770
22771
22772
22773
22774
22775
22776
22777
22778
22779
22780
22781
22782
22783
22784
22785
22786
22787
22788
22789
22790
22791
22792
22793
22794
22795
22796
22797
22798
22799
22800
22801
22802
22803
22804
22805
22806
22807
22808
22809
22810
22811
22812
22813
22814
22815
22816
22817
22818
22819
22820
22821
22822
22823
22824
22825
22826
22827
22828
22829
22830
22831
22832
22833
22834
22835
22836
22837
22838
22839
22840
22841
22842
22843
22844
22845
22846
22847
22848
22849
22850
22851
22852
22853
22854
22855
22856
22857
22858
22859
22860
22861
22862
22863
22864
22865
22866
22867
22868
22869
22870
22871
22872
22873
22874
22875
22876
22877
22878
22879
22880
22881
22882
22883
22884
22885
22886
22887
22888
22889
22890
22891
22892
22893
22894
22895
22896
22897
22898
22899
22900
22901
22902
22903
22904
22905
22906
22907
22908
22909
22910
22911
22912
22913
22914
22915
22916
22917
22918
22919
22920
22921
22922
22923
22924
22925
22926
22927
22928
22929
22930
22931
22932
22933
22934
22935
22936
22937
22938
22939
22940
22941
22942
22943
22944
22945
22946
22947
22948
22949
22950
22951
22952
22953
22954
22955
22956
22957
22958
22959
22960
22961
22962
22963
22964
22965
22966
22967
22968
22969
22970
22971
22972
22973
22974
22975
22976
22977
22978
22979
22980
22981
22982
22983
22984
22985
22986
22987
22988
22989
22990
22991
22992
22993
22994
22995
22996
22997
22998
22999
23000
23001
23002
23003
23004
23005
23006
23007
23008
23009
23010
23011
23012
23013
23014
23015
23016
23017
23018
23019
23020
23021
23022
23023
23024
23025
23026
23027
23028
23029
23030
23031
23032
23033
23034
23035
23036
23037
23038
23039
23040
23041
23042
23043
23044
23045
23046
23047
23048
23049
23050
23051
23052
23053
23054
23055
23056
23057
23058
23059
23060
23061
23062
23063
23064
23065
23066
23067
23068
23069
23070
23071
23072
23073
23074
23075
23076
23077
23078
23079
23080
23081
23082
23083
23084
23085
23086
23087
23088
23089
23090
23091
23092
23093
23094
23095
23096
23097
23098
23099
23100
23101
23102
23103
23104
23105
23106
23107
23108
23109
23110
23111
23112
23113
23114
23115
23116
23117
23118
23119
23120
23121
23122
23123
23124
23125
23126
23127
23128
23129
23130
23131
23132
23133
23134
23135
23136
23137
23138
23139
23140
23141
23142
23143
23144
23145
23146
23147
23148
23149
23150
23151
23152
23153
23154
23155
23156
23157
23158
23159
23160
23161
23162
23163
23164
23165
23166
23167
23168
23169
23170
23171
23172
23173
23174
23175
23176
23177
23178
23179
23180
23181
23182
23183
23184
23185
23186
23187
23188
23189
23190
23191
23192
23193
23194
23195
23196
23197
23198
23199
23200
23201
23202
23203
23204
23205
23206
23207
23208
23209
23210
23211
23212
23213
23214
23215
23216
23217
23218
23219
23220
23221
23222
23223
23224
23225
23226
23227
23228
23229
23230
23231
23232
23233
23234
23235
23236
23237
23238
23239
23240
23241
23242
23243
23244
23245
23246
23247
23248
23249
23250
23251
23252
23253
23254
23255
23256
23257
23258
23259
23260
23261
23262
23263
23264
23265
23266
23267
23268
23269
23270
23271
23272
23273
23274
23275
23276
23277
23278
23279
23280
23281
23282
23283
23284
23285
23286
23287
23288
23289
23290
23291
23292
23293
23294
23295
23296
23297
23298
23299
23300
23301
23302
23303
23304
23305
23306
23307
23308
23309
23310
23311
23312
23313
23314
23315
23316
23317
23318
23319
23320
23321
23322
23323
23324
23325
23326
23327
23328
23329
23330
23331
23332
23333
23334
23335
23336
23337
23338
23339
23340
23341
23342
23343
23344
23345
23346
23347
23348
23349
23350
23351
23352
23353
23354
23355
23356
23357
23358
23359
23360
23361
23362
23363
23364
23365
23366
23367
23368
23369
23370
23371
23372
23373
23374
23375
23376
23377
23378
23379
23380
23381
23382
23383
23384
23385
23386
23387
23388
23389
23390
23391
23392
23393
23394
23395
23396
23397
23398
23399
23400
23401
23402
23403
23404
23405
23406
23407
23408
23409
23410
23411
23412
23413
23414
23415
23416
23417
23418
23419
23420
23421
23422
23423
23424
23425
23426
23427
23428
23429
23430
23431
23432
23433
23434
23435
23436
23437
23438
23439
23440
23441
23442
23443
23444
23445
23446
23447
23448
23449
23450
23451
23452
23453
23454
23455
23456
23457
23458
23459
23460
23461
23462
23463
23464
23465
23466
23467
23468
23469
23470
23471
23472
23473
23474
23475
23476
23477
23478
23479
23480
23481
23482
23483
23484
23485
23486
23487
23488
23489
23490
23491
23492
23493
23494
23495
23496
23497
23498
23499
23500
23501
23502
23503
23504
23505
23506
23507
23508
23509
23510
23511
23512
23513
23514
23515
23516
23517
23518
23519
23520
23521
23522
23523
23524
23525
23526
23527
23528
23529
23530
23531
23532
23533
23534
23535
23536
23537
23538
23539
23540
23541
23542
23543
23544
23545
23546
23547
23548
23549
23550
23551
23552
23553
23554
23555
23556
23557
23558
23559
23560
23561
23562
23563
23564
23565
23566
23567
23568
23569
23570
23571
23572
23573
23574
23575
23576
23577
23578
23579
23580
23581
23582
23583
23584
23585
23586
23587
23588
23589
23590
23591
23592
23593
23594
23595
23596
23597
23598
23599
23600
23601
23602
23603
23604
23605
23606
23607
23608
23609
23610
23611
23612
23613
23614
23615
23616
23617
23618
23619
23620
23621
23622
23623
23624
23625
23626
23627
23628
23629
23630
23631
23632
23633
23634
23635
23636
23637
23638
23639
23640
23641
23642
23643
23644
23645
23646
23647
23648
23649
23650
23651
23652
23653
23654
23655
23656
23657
23658
23659
23660
23661
23662
23663
23664
23665
23666
23667
23668
23669
23670
23671
23672
23673
23674
23675
23676
23677
23678
23679
23680
23681
23682
23683
23684
23685
23686
23687
23688
23689
23690
23691
23692
23693
23694
23695
23696
23697
23698
23699
23700
23701
23702
23703
23704
23705
23706
23707
23708
23709
23710
23711
23712
23713
23714
23715
23716
23717
23718
23719
23720
23721
23722
23723
23724
23725
23726
23727
23728
23729
23730
23731
23732
23733
23734
23735
23736
23737
23738
23739
23740
23741
23742
23743
23744
23745
23746
23747
23748
23749
23750
23751
23752
23753
23754
23755
23756
23757
23758
23759
23760
23761
23762
23763
23764
23765
23766
23767
23768
23769
23770
23771
23772
23773
23774
23775
23776
23777
23778
23779
23780
23781
23782
23783
23784
23785
23786
23787
23788
23789
23790
23791
23792
23793
23794
23795
23796
23797
23798
23799
23800
23801
23802
23803
23804
23805
23806
23807
23808
23809
23810
23811
23812
23813
23814
23815
23816
23817
23818
23819
23820
23821
23822
23823
23824
23825
23826
23827
23828
23829
23830
23831
23832
23833
23834
23835
23836
23837
23838
23839
23840
23841
23842
23843
23844
23845
23846
23847
23848
23849
23850
23851
23852
23853
23854
23855
23856
23857
23858
23859
23860
23861
23862
23863
23864
23865
23866
23867
23868
23869
23870
23871
23872
23873
23874
23875
23876
23877
23878
23879
23880
23881
23882
23883
23884
23885
23886
23887
23888
23889
23890
23891
23892
23893
23894
23895
23896
23897
23898
23899
23900
23901
23902
23903
23904
23905
23906
23907
23908
23909
23910
23911
23912
23913
23914
23915
23916
23917
23918
23919
23920
23921
23922
23923
23924
23925
23926
23927
23928
23929
23930
23931
23932
23933
23934
23935
23936
23937
23938
23939
23940
23941
23942
23943
23944
23945
23946
23947
23948
23949
23950
23951
23952
23953
23954
23955
23956
23957
23958
23959
23960
23961
23962
23963
23964
23965
23966
23967
23968
23969
23970
23971
23972
23973
23974
23975
23976
23977
23978
23979
23980
23981
23982
23983
23984
23985
23986
23987
23988
23989
23990
23991
23992
23993
23994
23995
23996
23997
23998
23999
24000
24001
24002
24003
24004
24005
24006
24007
24008
24009
24010
24011
24012
24013
24014
24015
24016
24017
24018
24019
24020
24021
24022
24023
24024
24025
24026
24027
24028
24029
24030
24031
24032
24033
24034
24035
24036
24037
24038
24039
24040
24041
24042
24043
24044
24045
24046
24047
24048
24049
24050
24051
24052
24053
24054
24055
24056
24057
24058
24059
24060
24061
24062
24063
24064
24065
24066
24067
24068
24069
24070
24071
24072
24073
24074
24075
24076
24077
24078
24079
24080
24081
24082
24083
24084
24085
24086
24087
24088
24089
24090
24091
24092
24093
24094
24095
24096
24097
24098
24099
24100
24101
24102
24103
24104
24105
24106
24107
24108
24109
24110
24111
24112
24113
24114
24115
24116
24117
24118
24119
24120
24121
24122
24123
24124
24125
24126
24127
24128
24129
24130
24131
24132
24133
24134
24135
24136
24137
24138
24139
24140
24141
24142
24143
24144
24145
24146
24147
24148
24149
24150
24151
24152
24153
24154
24155
24156
24157
24158
24159
24160
24161
24162
24163
24164
24165
24166
24167
24168
24169
24170
24171
24172
24173
24174
24175
24176
24177
24178
24179
24180
24181
24182
24183
24184
24185
24186
24187
24188
24189
24190
24191
24192
24193
24194
24195
24196
24197
24198
24199
24200
24201
24202
24203
24204
24205
24206
24207
24208
24209
24210
24211
24212
24213
24214
24215
24216
24217
24218
24219
24220
24221
24222
24223
24224
24225
24226
24227
24228
24229
24230
24231
24232
24233
24234
24235
24236
24237
24238
24239
24240
24241
24242
24243
24244
24245
24246
24247
24248
24249
24250
24251
24252
24253
24254
24255
24256
24257
24258
24259
24260
24261
24262
24263
24264
24265
24266
24267
24268
24269
24270
24271
24272
24273
24274
24275
24276
24277
24278
24279
24280
24281
24282
24283
24284
24285
24286
24287
24288
24289
24290
24291
24292
24293
24294
24295
24296
24297
24298
24299
24300
24301
24302
24303
24304
24305
24306
24307
24308
24309
24310
24311
24312
24313
24314
24315
24316
24317
24318
24319
24320
24321
24322
24323
24324
24325
24326
24327
24328
24329
24330
24331
24332
24333
24334
24335
24336
24337
24338
24339
24340
24341
24342
24343
24344
24345
24346
24347
24348
24349
24350
24351
24352
24353
24354
24355
24356
24357
24358
24359
24360
24361
24362
24363
24364
24365
24366
24367
24368
24369
24370
24371
24372
24373
24374
24375
24376
24377
24378
24379
24380
24381
24382
24383
24384
24385
24386
24387
24388
24389
24390
24391
24392
24393
24394
24395
24396
24397
24398
24399
24400
24401
24402
24403
24404
24405
24406
24407
24408
24409
24410
24411
24412
24413
24414
24415
24416
24417
24418
24419
24420
24421
24422
24423
24424
24425
24426
24427
24428
24429
24430
24431
24432
24433
24434
24435
24436
24437
24438
24439
24440
24441
24442
24443
24444
24445
24446
24447
24448
24449
24450
24451
24452
24453
24454
24455
24456
24457
24458
24459
24460
24461
24462
24463
24464
24465
24466
24467
24468
24469
24470
24471
24472
24473
24474
24475
24476
24477
24478
24479
24480
24481
24482
24483
24484
24485
24486
24487
24488
24489
24490
24491
24492
24493
24494
24495
24496
24497
24498
24499
24500
24501
24502
24503
24504
24505
24506
24507
24508
24509
24510
24511
24512
24513
24514
24515
24516
24517
24518
24519
24520
24521
24522
24523
24524
24525
24526
24527
24528
24529
24530
24531
24532
24533
24534
24535
24536
24537
24538
24539
24540
24541
24542
24543
24544
24545
24546
24547
24548
24549
24550
24551
24552
24553
24554
24555
24556
24557
24558
24559
24560
24561
24562
24563
24564
24565
24566
24567
24568
24569
24570
24571
24572
24573
24574
24575
24576
24577
24578
24579
24580
24581
24582
24583
24584
24585
24586
24587
24588
24589
24590
24591
24592
24593
24594
24595
24596
24597
24598
24599
24600
24601
24602
24603
24604
24605
24606
24607
24608
24609
24610
24611
24612
24613
24614
24615
24616
24617
24618
24619
24620
24621
24622
24623
24624
24625
24626
24627
24628
24629
24630
24631
24632
24633
24634
24635
24636
24637
24638
24639
24640
24641
24642
24643
24644
24645
24646
24647
24648
24649
24650
24651
24652
24653
24654
24655
24656
24657
24658
24659
24660
24661
24662
24663
24664
24665
24666
24667
24668
24669
24670
24671
24672
24673
24674
24675
24676
24677
24678
24679
24680
24681
24682
24683
24684
24685
24686
24687
24688
24689
24690
24691
24692
24693
24694
24695
24696
24697
24698
24699
24700
24701
24702
24703
24704
24705
24706
24707
24708
24709
24710
24711
24712
24713
24714
24715
24716
24717
24718
24719
24720
24721
24722
24723
24724
24725
24726
24727
24728
24729
24730
24731
24732
24733
24734
24735
24736
24737
24738
24739
24740
24741
24742
24743
24744
24745
24746
24747
24748
24749
24750
24751
24752
24753
24754
24755
24756
24757
24758
24759
24760
24761
24762
24763
24764
24765
24766
24767
24768
24769
24770
24771
24772
24773
24774
24775
24776
24777
24778
24779
24780
24781
24782
24783
24784
24785
24786
24787
24788
24789
24790
24791
24792
24793
24794
24795
24796
24797
24798
24799
24800
24801
24802
24803
24804
24805
24806
24807
24808
24809
24810
24811
24812
24813
24814
24815
24816
24817
24818
24819
24820
24821
24822
24823
24824
24825
24826
24827
24828
24829
24830
24831
24832
24833
24834
24835
24836
24837
24838
24839
24840
24841
24842
24843
24844
24845
24846
24847
24848
24849
24850
24851
24852
24853
24854
24855
24856
24857
24858
24859
24860
24861
24862
24863
24864
24865
24866
24867
24868
24869
24870
24871
24872
24873
24874
24875
24876
24877
24878
24879
24880
24881
24882
24883
24884
24885
24886
24887
24888
24889
24890
24891
24892
24893
24894
24895
24896
24897
24898
24899
24900
24901
24902
24903
24904
24905
24906
24907
24908
24909
24910
24911
24912
24913
24914
24915
24916
24917
24918
24919
24920
24921
24922
24923
24924
24925
24926
24927
24928
24929
24930
24931
24932
24933
24934
24935
24936
24937
24938
24939
24940
24941
24942
24943
24944
24945
24946
24947
24948
24949
24950
24951
24952
24953
24954
24955
24956
24957
24958
24959
24960
24961
24962
24963
24964
24965
24966
24967
24968
24969
24970
24971
24972
24973
24974
24975
24976
24977
24978
24979
24980
24981
24982
24983
24984
24985
24986
24987
24988
24989
24990
24991
24992
24993
24994
24995
24996
24997
24998
24999
25000
25001
25002
25003
25004
25005
25006
25007
25008
25009
25010
25011
25012
25013
25014
25015
25016
25017
25018
25019
25020
25021
25022
25023
25024
25025
25026
25027
25028
25029
25030
25031
25032
25033
25034
25035
25036
25037
25038
25039
25040
25041
25042
25043
25044
25045
25046
25047
25048
25049
25050
25051
25052
25053
25054
25055
25056
25057
25058
25059
25060
25061
25062
25063
25064
25065
25066
25067
25068
25069
25070
25071
25072
25073
25074
25075
25076
25077
25078
25079
25080
25081
25082
25083
25084
25085
25086
25087
25088
25089
25090
25091
25092
25093
25094
25095
25096
25097
25098
25099
25100
25101
25102
25103
25104
25105
25106
25107
25108
25109
25110
25111
25112
25113
25114
25115
25116
25117
25118
25119
25120
25121
25122
25123
25124
25125
25126
25127
25128
25129
25130
25131
25132
25133
25134
25135
25136
25137
25138
25139
25140
25141
25142
25143
25144
25145
25146
25147
25148
25149
25150
25151
25152
25153
25154
25155
25156
25157
25158
25159
25160
25161
25162
25163
25164
25165
25166
25167
25168
25169
25170
25171
25172
25173
25174
25175
25176
25177
25178
25179
25180
25181
25182
25183
25184
25185
25186
25187
25188
25189
25190
25191
25192
25193
25194
25195
25196
25197
25198
25199
25200
25201
25202
25203
25204
25205
25206
25207
25208
25209
25210
25211
25212
25213
25214
25215
25216
25217
25218
25219
25220
25221
25222
25223
25224
25225
25226
25227
25228
25229
25230
25231
25232
25233
25234
25235
25236
25237
25238
25239
25240
25241
25242
25243
25244
25245
25246
25247
25248
25249
25250
25251
25252
25253
25254
25255
25256
25257
25258
25259
25260
25261
25262
25263
25264
25265
25266
25267
25268
25269
25270
25271
25272
25273
25274
25275
25276
25277
25278
25279
25280
25281
25282
25283
25284
25285
25286
25287
25288
25289
25290
25291
25292
25293
25294
25295
25296
25297
25298
25299
25300
25301
25302
25303
25304
25305
25306
25307
25308
25309
25310
25311
25312
25313
25314
25315
25316
25317
25318
25319
25320
25321
25322
25323
25324
25325
25326
25327
25328
25329
25330
25331
25332
25333
25334
25335
25336
25337
25338
25339
25340
25341
25342
25343
25344
25345
25346
25347
25348
25349
25350
25351
25352
25353
25354
25355
25356
25357
25358
25359
25360
25361
25362
25363
25364
25365
25366
25367
25368
25369
25370
25371
25372
25373
25374
25375
25376
25377
25378
25379
25380
25381
25382
25383
25384
25385
25386
25387
25388
25389
25390
25391
25392
25393
25394
25395
25396
25397
25398
25399
25400
25401
25402
25403
25404
25405
25406
25407
25408
25409
25410
25411
25412
25413
25414
25415
25416
25417
25418
25419
25420
25421
25422
25423
25424
25425
25426
25427
25428
25429
25430
25431
25432
25433
25434
25435
25436
25437
25438
25439
25440
25441
25442
25443
25444
25445
25446
25447
25448
25449
25450
25451
25452
25453
25454
25455
25456
25457
25458
25459
25460
25461
25462
25463
25464
25465
25466
25467
25468
25469
25470
25471
25472
25473
25474
25475
25476
25477
25478
25479
25480
25481
25482
25483
25484
25485
25486
25487
25488
25489
25490
25491
25492
25493
25494
25495
25496
25497
25498
25499
25500
25501
25502
25503
25504
25505
25506
25507
25508
25509
25510
25511
25512
25513
25514
25515
25516
25517
25518
25519
25520
25521
25522
25523
25524
25525
25526
25527
25528
25529
25530
25531
25532
25533
25534
25535
25536
25537
25538
25539
25540
25541
25542
25543
25544
25545
25546
25547
25548
25549
25550
25551
25552
25553
25554
25555
25556
25557
25558
25559
25560
25561
25562
25563
25564
25565
25566
25567
25568
25569
25570
25571
25572
25573
25574
25575
25576
25577
25578
25579
25580
25581
25582
25583
25584
25585
25586
25587
25588
25589
25590
25591
25592
25593
25594
25595
25596
25597
25598
25599
25600
25601
25602
25603
25604
25605
25606
25607
25608
25609
25610
25611
25612
25613
25614
25615
25616
25617
25618
25619
25620
25621
25622
25623
25624
25625
25626
25627
25628
25629
25630
25631
25632
25633
25634
25635
25636
25637
25638
25639
25640
25641
25642
25643
25644
25645
25646
25647
25648
25649
25650
25651
25652
25653
25654
25655
25656
25657
25658
25659
25660
25661
25662
25663
25664
25665
25666
25667
25668
25669
25670
25671
25672
25673
25674
25675
25676
25677
25678
25679
25680
25681
25682
25683
25684
25685
25686
25687
25688
25689
25690
25691
25692
25693
25694
25695
25696
25697
25698
25699
25700
25701
25702
25703
25704
25705
25706
25707
25708
25709
25710
25711
25712
25713
25714
25715
25716
25717
25718
25719
25720
25721
25722
25723
25724
25725
25726
25727
25728
25729
25730
25731
25732
25733
25734
25735
25736
25737
25738
25739
25740
25741
25742
25743
25744
25745
25746
25747
25748
25749
25750
25751
25752
25753
25754
25755
25756
25757
25758
25759
25760
25761
25762
25763
25764
25765
25766
25767
25768
25769
25770
25771
25772
25773
25774
25775
25776
25777
25778
25779
25780
25781
25782
25783
25784
25785
25786
25787
25788
25789
25790
25791
25792
25793
25794
25795
25796
25797
25798
25799
25800
25801
25802
25803
25804
25805
25806
25807
25808
25809
25810
25811
25812
25813
25814
25815
25816
25817
25818
25819
25820
25821
25822
25823
25824
25825
25826
25827
25828
25829
25830
25831
25832
25833
25834
25835
25836
25837
25838
25839
25840
25841
25842
25843
25844
25845
25846
25847
25848
25849
25850
25851
25852
25853
25854
25855
25856
25857
25858
25859
25860
25861
25862
25863
25864
25865
25866
25867
25868
25869
25870
25871
25872
25873
25874
25875
25876
25877
25878
25879
25880
25881
25882
25883
25884
25885
25886
25887
25888
25889
25890
25891
25892
25893
25894
25895
25896
25897
25898
25899
25900
25901
25902
25903
25904
25905
25906
25907
25908
25909
25910
25911
25912
25913
25914
25915
25916
25917
25918
25919
25920
25921
25922
25923
25924
25925
25926
25927
25928
25929
25930
25931
25932
25933
25934
25935
25936
25937
25938
25939
25940
25941
25942
25943
25944
25945
25946
25947
25948
25949
25950
25951
25952
25953
25954
25955
25956
25957
25958
25959
25960
25961
25962
25963
25964
25965
25966
25967
25968
25969
25970
25971
25972
25973
25974
25975
25976
25977
25978
25979
25980
25981
25982
25983
25984
25985
25986
25987
25988
25989
25990
25991
25992
25993
25994
25995
25996
25997
25998
25999
26000
26001
26002
26003
26004
26005
26006
26007
26008
26009
26010
26011
26012
26013
26014
26015
26016
26017
26018
26019
26020
26021
26022
26023
26024
26025
26026
26027
26028
26029
26030
26031
26032
26033
26034
26035
26036
26037
26038
26039
26040
26041
26042
26043
26044
26045
26046
26047
26048
26049
26050
26051
26052
26053
26054
26055
26056
26057
26058
26059
26060
26061
26062
26063
26064
26065
26066
26067
26068
26069
26070
26071
26072
26073
26074
26075
26076
26077
26078
26079
26080
26081
26082
26083
26084
26085
26086
26087
26088
26089
26090
26091
26092
26093
26094
26095
26096
26097
26098
26099
26100
26101
26102
26103
26104
26105
26106
26107
26108
26109
26110
26111
26112
26113
26114
26115
26116
26117
26118
26119
26120
26121
26122
26123
26124
26125
26126
26127
26128
26129
26130
26131
26132
26133
26134
26135
26136
26137
26138
26139
26140
26141
26142
26143
26144
26145
26146
26147
26148
26149
26150
26151
26152
26153
26154
26155
26156
26157
26158
26159
26160
26161
26162
26163
26164
26165
26166
26167
26168
26169
26170
26171
26172
26173
26174
26175
26176
26177
26178
26179
26180
26181
26182
26183
26184
26185
26186
26187
26188
26189
26190
26191
26192
26193
26194
26195
26196
26197
26198
26199
26200
26201
26202
26203
26204
26205
26206
26207
26208
26209
26210
26211
26212
26213
26214
26215
26216
26217
26218
26219
26220
26221
26222
26223
26224
26225
26226
26227
26228
26229
26230
26231
26232
26233
26234
26235
26236
26237
26238
26239
26240
26241
26242
26243
26244
26245
26246
26247
26248
26249
26250
26251
26252
26253
26254
26255
26256
26257
26258
26259
26260
26261
26262
26263
26264
26265
26266
26267
26268
26269
26270
26271
26272
26273
26274
26275
26276
26277
26278
26279
26280
26281
26282
26283
26284
26285
26286
26287
26288
26289
26290
26291
26292
26293
26294
26295
26296
26297
26298
26299
26300
26301
26302
26303
26304
26305
26306
26307
26308
26309
26310
26311
26312
26313
26314
26315
26316
26317
26318
26319
26320
26321
26322
26323
26324
26325
26326
26327
26328
26329
26330
26331
26332
26333
26334
26335
26336
26337
26338
26339
26340
26341
26342
26343
26344
26345
26346
26347
26348
26349
26350
26351
26352
26353
26354
26355
26356
26357
26358
26359
26360
26361
26362
26363
26364
26365
26366
26367
26368
26369
26370
26371
26372
26373
26374
26375
26376
26377
26378
26379
26380
26381
26382
26383
26384
26385
26386
26387
26388
26389
26390
26391
26392
26393
26394
26395
26396
26397
26398
26399
26400
26401
26402
26403
26404
26405
26406
26407
26408
26409
26410
26411
26412
26413
26414
26415
26416
26417
26418
26419
26420
26421
26422
26423
26424
26425
26426
26427
26428
26429
26430
26431
26432
26433
26434
26435
26436
26437
26438
26439
26440
26441
26442
26443
26444
26445
26446
26447
26448
26449
26450
26451
26452
26453
26454
26455
26456
26457
26458
26459
26460
26461
26462
26463
26464
26465
26466
26467
26468
26469
26470
26471
26472
26473
26474
26475
26476
26477
26478
26479
26480
26481
26482
26483
26484
26485
26486
26487
26488
26489
26490
26491
26492
26493
26494
26495
26496
26497
26498
26499
26500
26501
26502
26503
26504
26505
26506
26507
26508
26509
26510
26511
26512
26513
26514
26515
26516
26517
26518
26519
26520
26521
26522
26523
26524
26525
26526
26527
26528
26529
26530
26531
26532
26533
26534
26535
26536
26537
26538
26539
26540
26541
26542
26543
26544
26545
26546
26547
26548
26549
26550
26551
26552
26553
26554
26555
26556
26557
26558
26559
26560
26561
26562
26563
26564
26565
26566
26567
26568
26569
26570
26571
26572
26573
26574
26575
26576
26577
26578
26579
26580
26581
26582
26583
26584
26585
26586
26587
26588
26589
26590
26591
26592
26593
26594
26595
26596
26597
26598
26599
26600
26601
26602
26603
26604
26605
26606
26607
26608
26609
26610
26611
26612
26613
26614
26615
26616
26617
26618
26619
26620
26621
26622
26623
26624
26625
26626
26627
26628
26629
26630
26631
26632
26633
26634
26635
26636
26637
26638
26639
26640
26641
26642
26643
26644
26645
26646
26647
26648
26649
26650
26651
26652
26653
26654
26655
26656
26657
26658
26659
26660
26661
26662
26663
26664
26665
26666
26667
26668
26669
26670
26671
26672
26673
26674
26675
26676
26677
26678
26679
26680
26681
26682
26683
26684
26685
26686
26687
26688
26689
26690
26691
26692
26693
26694
26695
26696
26697
26698
26699
26700
26701
26702
26703
26704
26705
26706
26707
26708
26709
26710
26711
26712
26713
26714
26715
26716
26717
26718
26719
26720
26721
26722
26723
26724
26725
26726
26727
26728
26729
26730
26731
26732
26733
26734
26735
26736
26737
26738
26739
26740
26741
26742
26743
26744
26745
26746
26747
26748
26749
26750
26751
26752
26753
26754
26755
26756
26757
26758
26759
26760
26761
26762
26763
26764
26765
26766
26767
26768
26769
26770
26771
26772
26773
26774
26775
26776
26777
26778
26779
26780
26781
26782
26783
26784
26785
26786
26787
26788
26789
26790
26791
26792
26793
26794
26795
26796
26797
26798
26799
26800
26801
26802
26803
26804
26805
26806
26807
26808
26809
26810
26811
26812
26813
26814
26815
26816
26817
26818
26819
26820
26821
26822
26823
26824
26825
26826
26827
26828
26829
26830
26831
26832
26833
26834
26835
26836
26837
26838
26839
26840
26841
26842
26843
26844
26845
26846
26847
26848
26849
26850
26851
26852
26853
26854
26855
26856
26857
26858
26859
26860
26861
26862
26863
26864
26865
26866
26867
26868
26869
26870
26871
26872
26873
26874
26875
26876
26877
26878
26879
26880
26881
26882
26883
26884
26885
26886
26887
26888
26889
26890
26891
26892
26893
26894
26895
26896
26897
26898
26899
26900
26901
26902
26903
26904
26905
26906
26907
26908
26909
26910
26911
26912
26913
26914
26915
26916
26917
26918
26919
26920
26921
26922
26923
26924
26925
26926
26927
26928
26929
26930
26931
26932
26933
26934
26935
26936
26937
26938
26939
26940
26941
26942
26943
26944
26945
26946
26947
26948
26949
26950
26951
26952
26953
26954
26955
26956
26957
26958
26959
26960
26961
26962
26963
26964
26965
26966
26967
26968
26969
26970
26971
26972
26973
26974
26975
26976
26977
26978
26979
26980
26981
26982
26983
26984
26985
26986
26987
26988
26989
26990
26991
26992
26993
26994
26995
26996
26997
26998
26999
27000
27001
27002
27003
27004
27005
27006
27007
27008
27009
27010
27011
27012
27013
27014
27015
27016
27017
27018
27019
27020
27021
27022
27023
27024
27025
27026
27027
27028
27029
27030
27031
27032
27033
27034
27035
27036
27037
27038
27039
27040
27041
27042
27043
27044
27045
27046
27047
27048
27049
27050
27051
27052
27053
27054
27055
27056
27057
27058
27059
27060
27061
27062
27063
27064
27065
27066
27067
27068
27069
27070
27071
27072
27073
27074
27075
27076
27077
27078
27079
27080
27081
27082
27083
27084
27085
27086
27087
27088
27089
27090
27091
27092
27093
27094
27095
27096
27097
27098
27099
27100
27101
27102
27103
27104
27105
27106
27107
27108
27109
27110
27111
27112
27113
27114
27115
27116
27117
27118
27119
27120
27121
27122
27123
27124
27125
27126
27127
27128
27129
27130
27131
27132
27133
27134
27135
27136
27137
27138
27139
27140
27141
27142
27143
27144
27145
27146
27147
27148
27149
27150
27151
27152
27153
27154
27155
27156
27157
27158
27159
27160
27161
27162
27163
27164
27165
27166
27167
27168
27169
27170
27171
27172
27173
27174
27175
27176
27177
27178
27179
27180
27181
27182
27183
27184
27185
27186
27187
27188
27189
27190
27191
27192
27193
27194
27195
27196
27197
27198
27199
27200
27201
27202
27203
27204
27205
27206
27207
27208
27209
27210
27211
27212
27213
27214
27215
27216
27217
27218
27219
27220
27221
27222
27223
27224
27225
27226
27227
27228
27229
27230
27231
27232
27233
27234
27235
27236
27237
27238
27239
27240
27241
27242
27243
27244
27245
27246
27247
27248
27249
27250
27251
27252
27253
27254
27255
27256
27257
27258
27259
27260
27261
27262
27263
27264
27265
27266
27267
27268
27269
27270
27271
27272
27273
27274
27275
27276
27277
27278
27279
27280
27281
27282
27283
27284
27285
27286
27287
27288
27289
27290
27291
27292
27293
27294
27295
27296
27297
27298
27299
27300
27301
27302
27303
27304
27305
27306
27307
27308
27309
27310
27311
27312
27313
27314
27315
27316
27317
27318
27319
27320
27321
27322
27323
27324
27325
27326
27327
27328
27329
27330
27331
27332
27333
27334
27335
27336
27337
27338
27339
27340
27341
27342
27343
27344
27345
27346
27347
27348
27349
27350
27351
27352
27353
27354
27355
27356
27357
27358
27359
27360
27361
27362
27363
27364
27365
27366
27367
27368
27369
27370
27371
27372
27373
27374
27375
27376
27377
27378
27379
27380
27381
27382
27383
27384
27385
27386
27387
27388
27389
27390
27391
27392
27393
27394
27395
27396
27397
27398
27399
27400
27401
27402
27403
27404
27405
27406
27407
27408
27409
27410
27411
27412
27413
27414
27415
27416
27417
27418
27419
27420
27421
27422
27423
27424
27425
27426
27427
27428
27429
27430
27431
27432
27433
27434
27435
27436
27437
27438
27439
27440
27441
27442
27443
27444
27445
27446
27447
27448
27449
27450
27451
27452
27453
27454
27455
27456
27457
27458
27459
27460
27461
27462
27463
27464
27465
27466
27467
27468
27469
27470
27471
27472
27473
27474
27475
27476
27477
27478
27479
27480
27481
27482
27483
27484
27485
27486
27487
27488
27489
27490
27491
27492
27493
27494
27495
27496
27497
27498
27499
27500
27501
27502
27503
27504
27505
27506
27507
27508
27509
27510
27511
27512
27513
27514
27515
27516
27517
27518
27519
27520
27521
27522
27523
27524
27525
27526
27527
27528
27529
27530
27531
27532
27533
27534
27535
27536
27537
27538
27539
27540
27541
27542
27543
27544
27545
27546
27547
27548
27549
27550
27551
27552
27553
27554
27555
27556
27557
27558
27559
27560
27561
27562
27563
27564
27565
27566
27567
27568
27569
27570
27571
27572
27573
27574
27575
27576
27577
27578
27579
27580
27581
27582
27583
27584
27585
27586
27587
27588
27589
27590
27591
27592
27593
27594
27595
27596
27597
27598
27599
27600
27601
27602
27603
27604
27605
27606
27607
27608
27609
27610
27611
27612
27613
27614
27615
27616
27617
27618
27619
27620
27621
27622
27623
27624
27625
27626
27627
27628
27629
27630
27631
27632
27633
27634
27635
27636
27637
27638
27639
27640
27641
27642
27643
27644
27645
27646
27647
27648
27649
27650
27651
27652
27653
27654
27655
27656
27657
27658
27659
27660
27661
27662
27663
27664
27665
27666
27667
27668
27669
27670
27671
27672
27673
27674
27675
27676
27677
27678
27679
27680
27681
27682
27683
27684
27685
27686
27687
27688
27689
27690
27691
27692
27693
27694
27695
27696
27697
27698
27699
27700
27701
27702
27703
27704
27705
27706
27707
27708
27709
27710
27711
27712
27713
27714
27715
27716
27717
27718
27719
27720
27721
27722
27723
27724
27725
27726
27727
27728
27729
27730
27731
27732
27733
27734
27735
27736
27737
27738
27739
27740
27741
27742
27743
27744
27745
27746
27747
27748
27749
27750
27751
27752
27753
27754
27755
27756
27757
27758
27759
27760
27761
27762
27763
27764
27765
27766
27767
27768
27769
27770
27771
27772
27773
27774
27775
27776
27777
27778
27779
27780
27781
27782
27783
27784
27785
27786
27787
27788
27789
27790
27791
27792
27793
27794
27795
27796
27797
27798
27799
27800
27801
27802
27803
27804
27805
27806
27807
27808
27809
27810
27811
27812
27813
27814
27815
27816
27817
27818
27819
27820
27821
27822
27823
27824
27825
27826
27827
27828
27829
27830
27831
27832
27833
27834
27835
27836
27837
27838
27839
27840
27841
27842
27843
27844
27845
27846
27847
27848
27849
27850
27851
27852
27853
27854
27855
27856
27857
27858
27859
27860
27861
27862
27863
27864
27865
27866
27867
27868
27869
27870
27871
27872
27873
27874
27875
27876
27877
27878
27879
27880
27881
27882
27883
27884
27885
27886
27887
27888
27889
27890
27891
27892
27893
27894
27895
27896
27897
27898
27899
27900
27901
27902
27903
27904
27905
27906
27907
27908
27909
27910
27911
27912
27913
27914
27915
27916
27917
27918
27919
27920
27921
27922
27923
27924
27925
27926
27927
27928
27929
27930
27931
27932
27933
27934
27935
27936
27937
27938
27939
27940
27941
27942
27943
27944
27945
27946
27947
27948
27949
27950
27951
27952
27953
27954
27955
27956
27957
27958
27959
27960
27961
27962
27963
27964
27965
27966
27967
27968
27969
27970
27971
27972
27973
27974
27975
27976
27977
27978
27979
27980
27981
27982
27983
27984
27985
27986
27987
27988
27989
27990
27991
27992
27993
27994
27995
27996
27997
27998
27999
28000
28001
28002
28003
28004
28005
28006
28007
28008
28009
28010
28011
28012
28013
28014
28015
28016
28017
28018
28019
28020
28021
28022
28023
28024
28025
28026
28027
28028
28029
28030
28031
28032
28033
28034
28035
28036
28037
28038
28039
28040
28041
28042
28043
28044
28045
28046
28047
28048
28049
28050
28051
28052
28053
28054
28055
28056
28057
28058
28059
28060
28061
28062
28063
28064
28065
28066
28067
28068
28069
28070
28071
28072
28073
28074
28075
28076
28077
28078
28079
28080
28081
28082
28083
28084
28085
28086
28087
28088
28089
28090
28091
28092
28093
28094
28095
28096
28097
28098
28099
28100
28101
28102
28103
28104
28105
28106
28107
28108
28109
28110
28111
28112
28113
28114
28115
28116
28117
28118
28119
28120
28121
28122
28123
28124
28125
28126
28127
28128
28129
28130
28131
28132
28133
28134
28135
28136
28137
28138
28139
28140
28141
28142
28143
28144
28145
28146
28147
28148
28149
28150
28151
28152
28153
28154
28155
28156
28157
28158
28159
28160
28161
28162
28163
28164
28165
28166
28167
28168
28169
28170
28171
28172
28173
28174
28175
28176
28177
28178
28179
28180
28181
28182
28183
28184
28185
28186
28187
28188
28189
28190
28191
28192
28193
28194
28195
28196
28197
28198
28199
28200
28201
28202
28203
28204
28205
28206
28207
28208
28209
28210
28211
28212
28213
28214
28215
28216
28217
28218
28219
28220
28221
28222
28223
28224
28225
28226
28227
28228
28229
28230
28231
28232
28233
28234
28235
28236
28237
28238
28239
28240
28241
28242
28243
28244
28245
28246
28247
28248
28249
28250
28251
28252
28253
28254
28255
28256
28257
28258
28259
28260
28261
28262
28263
28264
28265
28266
28267
28268
28269
28270
28271
28272
28273
28274
28275
28276
28277
28278
28279
28280
28281
28282
28283
28284
28285
28286
28287
28288
28289
28290
28291
28292
28293
28294
28295
28296
28297
28298
28299
28300
28301
28302
28303
28304
28305
28306
28307
28308
28309
28310
28311
28312
28313
28314
28315
28316
28317
28318
28319
28320
28321
28322
28323
28324
28325
28326
28327
28328
28329
28330
28331
28332
28333
28334
28335
28336
28337
28338
28339
28340
28341
28342
28343
28344
28345
28346
28347
28348
28349
28350
28351
28352
28353
28354
28355
28356
28357
28358
28359
28360
28361
28362
28363
28364
28365
28366
28367
28368
28369
28370
28371
28372
28373
28374
28375
28376
28377
28378
28379
28380
28381
28382
28383
28384
28385
28386
28387
28388
28389
28390
28391
28392
28393
28394
28395
28396
28397
28398
28399
28400
28401
28402
28403
28404
28405
28406
28407
28408
28409
28410
28411
28412
28413
28414
28415
28416
28417
28418
28419
28420
28421
28422
28423
28424
28425
28426
28427
28428
28429
28430
28431
28432
28433
28434
28435
28436
28437
28438
28439
28440
28441
28442
28443
28444
28445
28446
28447
28448
28449
28450
28451
28452
28453
28454
28455
28456
28457
28458
28459
28460
28461
28462
28463
28464
28465
28466
28467
28468
28469
28470
28471
28472
28473
28474
28475
28476
28477
28478
28479
28480
28481
28482
28483
28484
28485
28486
28487
28488
28489
28490
28491
28492
28493
28494
28495
28496
28497
28498
28499
28500
28501
28502
28503
28504
28505
28506
28507
28508
28509
28510
28511
28512
28513
28514
28515
28516
28517
28518
28519
28520
28521
28522
28523
28524
28525
28526
28527
28528
28529
28530
28531
28532
28533
28534
28535
28536
28537
28538
28539
28540
28541
28542
28543
28544
28545
28546
28547
28548
28549
28550
28551
28552
28553
28554
28555
28556
28557
28558
28559
28560
28561
28562
28563
28564
28565
28566
28567
28568
28569
28570
28571
28572
28573
28574
28575
28576
28577
28578
28579
28580
28581
28582
28583
28584
28585
28586
28587
28588
28589
28590
28591
28592
28593
28594
28595
28596
28597
28598
28599
28600
28601
28602
28603
28604
28605
28606
28607
28608
28609
28610
28611
28612
28613
28614
28615
28616
28617
28618
28619
28620
28621
28622
28623
28624
28625
28626
28627
28628
28629
28630
28631
28632
28633
28634
28635
28636
28637
28638
28639
28640
28641
28642
28643
28644
28645
28646
28647
28648
28649
28650
28651
28652
28653
28654
28655
28656
28657
28658
28659
28660
28661
28662
28663
28664
28665
28666
28667
28668
28669
28670
28671
28672
28673
28674
28675
28676
28677
28678
28679
28680
28681
28682
28683
28684
28685
28686
28687
28688
28689
28690
28691
28692
28693
28694
28695
28696
28697
28698
28699
28700
28701
28702
28703
28704
28705
28706
28707
28708
28709
28710
28711
28712
28713
28714
28715
28716
28717
28718
28719
28720
28721
28722
28723
28724
28725
28726
28727
28728
28729
28730
28731
28732
28733
28734
28735
28736
28737
28738
28739
28740
28741
28742
28743
28744
28745
28746
28747
28748
28749
28750
28751
28752
28753
28754
28755
28756
28757
28758
28759
28760
28761
28762
28763
28764
28765
28766
28767
28768
28769
28770
28771
28772
28773
28774
28775
28776
28777
28778
28779
28780
28781
28782
28783
28784
28785
28786
28787
28788
28789
28790
28791
28792
28793
28794
28795
28796
28797
28798
28799
28800
28801
28802
28803
28804
28805
28806
28807
28808
28809
28810
28811
28812
28813
28814
28815
28816
28817
28818
28819
28820
28821
28822
28823
28824
28825
28826
28827
28828
28829
28830
28831
28832
28833
28834
28835
28836
28837
28838
28839
28840
28841
28842
28843
28844
28845
28846
28847
28848
28849
28850
28851
28852
28853
28854
28855
28856
28857
28858
28859
28860
28861
28862
28863
28864
28865
28866
28867
28868
28869
28870
28871
28872
28873
28874
28875
28876
28877
28878
28879
28880
28881
28882
28883
28884
28885
28886
28887
28888
28889
28890
28891
28892
28893
28894
28895
28896
28897
28898
28899
28900
28901
28902
28903
28904
28905
28906
28907
28908
28909
28910
28911
28912
28913
28914
28915
28916
28917
28918
28919
28920
28921
28922
28923
28924
28925
28926
28927
28928
28929
28930
28931
28932
28933
28934
28935
28936
28937
28938
28939
28940
28941
28942
28943
28944
28945
28946
28947
28948
28949
28950
28951
28952
28953
28954
28955
28956
28957
28958
28959
28960
28961
28962
28963
28964
28965
28966
28967
28968
28969
28970
28971
28972
28973
28974
28975
28976
28977
28978
28979
28980
28981
28982
28983
28984
28985
28986
28987
28988
28989
28990
28991
28992
28993
28994
28995
28996
28997
28998
28999
29000
29001
29002
29003
29004
29005
29006
29007
29008
29009
29010
29011
29012
29013
29014
29015
29016
29017
29018
29019
29020
29021
29022
29023
29024
29025
29026
29027
29028
29029
29030
29031
29032
29033
29034
29035
29036
29037
29038
29039
29040
29041
29042
29043
29044
29045
29046
29047
29048
29049
29050
29051
29052
29053
29054
29055
29056
29057
29058
29059
29060
29061
29062
29063
29064
29065
29066
29067
29068
29069
29070
29071
29072
29073
29074
29075
29076
29077
29078
29079
29080
29081
29082
29083
29084
29085
29086
29087
29088
29089
29090
29091
29092
29093
29094
29095
29096
29097
29098
29099
29100
29101
29102
29103
29104
29105
29106
29107
29108
29109
29110
29111
29112
29113
29114
29115
29116
29117
29118
29119
29120
29121
29122
29123
29124
29125
29126
29127
29128
29129
29130
29131
29132
29133
29134
29135
29136
29137
29138
29139
29140
29141
29142
29143
29144
29145
29146
29147
29148
29149
29150
29151
29152
29153
29154
29155
29156
29157
29158
29159
29160
29161
29162
29163
29164
29165
29166
29167
29168
29169
29170
29171
29172
29173
29174
29175
29176
29177
29178
29179
29180
29181
29182
29183
29184
29185
29186
29187
29188
29189
29190
29191
29192
29193
29194
29195
29196
29197
29198
29199
29200
29201
29202
29203
29204
29205
29206
29207
29208
29209
29210
29211
29212
29213
29214
29215
29216
29217
29218
29219
29220
29221
29222
29223
29224
29225
29226
29227
29228
29229
29230
29231
29232
29233
29234
29235
29236
29237
29238
29239
29240
29241
29242
29243
29244
29245
29246
29247
29248
29249
29250
29251
29252
29253
29254
29255
29256
29257
29258
29259
29260
29261
29262
29263
29264
29265
29266
29267
29268
29269
29270
29271
29272
29273
29274
29275
29276
29277
29278
29279
29280
29281
29282
29283
29284
29285
29286
29287
29288
29289
29290
29291
29292
29293
29294
29295
29296
29297
29298
29299
29300
29301
29302
29303
29304
29305
29306
29307
29308
29309
29310
29311
29312
29313
29314
29315
29316
29317
29318
29319
29320
29321
29322
29323
29324
29325
29326
29327
29328
29329
29330
29331
29332
29333
29334
29335
29336
29337
29338
29339
29340
29341
29342
29343
29344
29345
29346
29347
29348
29349
29350
29351
29352
29353
29354
29355
29356
29357
29358
29359
29360
29361
29362
29363
29364
29365
29366
29367
29368
29369
29370
29371
29372
29373
29374
29375
29376
29377
29378
29379
29380
29381
29382
29383
29384
29385
29386
29387
29388
29389
29390
29391
29392
29393
29394
29395
29396
29397
29398
29399
29400
29401
29402
29403
29404
29405
29406
29407
29408
29409
29410
29411
29412
29413
29414
29415
29416
29417
29418
29419
29420
29421
29422
29423
29424
29425
29426
29427
29428
29429
29430
29431
29432
29433
29434
29435
29436
29437
29438
29439
29440
29441
29442
29443
29444
29445
29446
29447
29448
29449
29450
29451
29452
29453
29454
29455
29456
29457
29458
29459
29460
29461
29462
29463
29464
29465
29466
29467
29468
29469
29470
29471
29472
29473
29474
29475
29476
29477
29478
29479
29480
29481
29482
29483
29484
29485
29486
29487
29488
29489
29490
29491
29492
29493
29494
29495
29496
29497
29498
29499
29500
29501
29502
29503
29504
29505
29506
29507
29508
29509
29510
29511
29512
29513
29514
29515
29516
29517
29518
29519
29520
29521
29522
29523
29524
29525
29526
29527
29528
29529
29530
29531
29532
29533
29534
29535
29536
29537
29538
29539
29540
29541
29542
29543
29544
29545
29546
29547
29548
29549
29550
29551
29552
29553
29554
29555
29556
29557
29558
29559
29560
29561
29562
29563
29564
29565
29566
29567
29568
29569
29570
29571
29572
29573
29574
29575
29576
29577
29578
29579
29580
29581
29582
29583
29584
29585
29586
29587
29588
29589
29590
29591
29592
29593
29594
29595
29596
29597
29598
29599
29600
29601
29602
29603
29604
29605
29606
29607
29608
29609
29610
29611
29612
29613
29614
29615
29616
29617
29618
29619
29620
29621
29622
29623
29624
29625
29626
29627
29628
29629
29630
29631
29632
29633
29634
29635
29636
29637
29638
29639
29640
29641
29642
29643
29644
29645
29646
29647
29648
29649
29650
29651
29652
29653
29654
29655
29656
29657
29658
29659
29660
29661
29662
29663
29664
29665
29666
29667
29668
29669
29670
29671
29672
29673
29674
29675
29676
29677
29678
29679
29680
29681
29682
29683
29684
29685
29686
29687
29688
29689
29690
29691
29692
29693
29694
29695
29696
29697
29698
29699
29700
29701
29702
29703
29704
29705
29706
29707
29708
29709
29710
29711
29712
29713
29714
29715
29716
29717
29718
29719
29720
29721
29722
29723
29724
29725
29726
29727
29728
29729
29730
29731
29732
29733
29734
29735
29736
29737
29738
29739
29740
29741
29742
29743
29744
29745
29746
29747
29748
29749
29750
29751
29752
29753
29754
29755
29756
29757
29758
29759
29760
29761
29762
29763
29764
29765
29766
29767
29768
29769
29770
29771
29772
29773
29774
29775
29776
29777
29778
29779
29780
29781
29782
29783
29784
29785
29786
29787
29788
29789
29790
29791
29792
29793
29794
29795
29796
29797
29798
29799
29800
29801
29802
29803
29804
29805
29806
29807
29808
29809
29810
29811
29812
29813
29814
29815
29816
29817
29818
29819
29820
29821
29822
29823
29824
29825
29826
29827
29828
29829
29830
29831
29832
29833
29834
29835
29836
29837
29838
29839
29840
29841
29842
29843
29844
29845
29846
29847
29848
29849
29850
29851
29852
29853
29854
29855
29856
29857
29858
29859
29860
29861
29862
29863
29864
29865
29866
29867
29868
29869
29870
29871
29872
29873
29874
29875
29876
29877
29878
29879
29880
29881
29882
29883
29884
29885
29886
29887
29888
29889
29890
29891
29892
29893
29894
29895
29896
29897
29898
29899
29900
29901
29902
29903
29904
29905
29906
29907
29908
29909
29910
29911
29912
29913
29914
29915
29916
29917
29918
29919
29920
29921
29922
29923
29924
29925
29926
29927
29928
29929
29930
29931
29932
29933
29934
29935
29936
29937
29938
29939
29940
29941
29942
29943
29944
29945
29946
29947
29948
29949
29950
29951
29952
29953
29954
29955
29956
29957
29958
29959
29960
29961
29962
29963
29964
29965
29966
29967
29968
29969
29970
29971
29972
29973
29974
29975
29976
29977
29978
29979
29980
29981
29982
29983
29984
29985
29986
29987
29988
29989
29990
29991
29992
29993
29994
29995
29996
29997
29998
29999
30000
30001
30002
30003
30004
30005
30006
30007
30008
30009
30010
30011
30012
30013
30014
30015
30016
30017
30018
30019
30020
30021
30022
30023
30024
30025
30026
30027
30028
30029
30030
30031
30032
30033
30034
30035
30036
30037
30038
30039
30040
30041
30042
30043
30044
30045
30046
30047
30048
30049
30050
30051
30052
30053
30054
30055
30056
30057
30058
30059
30060
30061
30062
30063
30064
30065
30066
30067
30068
30069
30070
30071
30072
30073
30074
30075
30076
30077
30078
30079
30080
30081
30082
30083
30084
30085
30086
30087
30088
30089
30090
30091
30092
30093
30094
30095
30096
30097
30098
30099
30100
30101
30102
30103
30104
30105
30106
30107
30108
30109
30110
30111
30112
30113
30114
30115
30116
30117
30118
30119
30120
30121
30122
30123
30124
30125
30126
30127
30128
30129
30130
30131
30132
30133
30134
30135
30136
30137
30138
30139
30140
30141
30142
30143
30144
30145
30146
30147
30148
30149
30150
30151
30152
30153
30154
30155
30156
30157
30158
30159
30160
30161
30162
30163
30164
30165
30166
30167
30168
30169
30170
30171
30172
30173
30174
30175
30176
30177
30178
30179
30180
30181
30182
30183
30184
30185
30186
30187
30188
30189
30190
30191
30192
30193
30194
30195
30196
30197
30198
30199
30200
30201
30202
30203
30204
30205
30206
30207
30208
30209
30210
30211
30212
30213
30214
30215
30216
30217
30218
30219
30220
30221
30222
30223
30224
30225
30226
30227
30228
30229
30230
30231
30232
30233
30234
30235
30236
30237
30238
30239
30240
30241
30242
30243
30244
30245
30246
30247
30248
30249
30250
30251
30252
30253
30254
30255
30256
30257
30258
30259
30260
30261
30262
30263
30264
30265
30266
30267
30268
30269
30270
30271
30272
30273
30274
30275
30276
30277
30278
30279
30280
30281
30282
30283
30284
30285
30286
30287
30288
30289
30290
30291
30292
30293
30294
30295
30296
30297
30298
30299
30300
30301
30302
30303
30304
30305
30306
30307
30308
30309
30310
30311
30312
30313
30314
30315
30316
30317
30318
30319
30320
30321
30322
30323
30324
30325
30326
30327
30328
30329
30330
30331
30332
30333
30334
30335
30336
30337
30338
30339
30340
30341
30342
30343
30344
30345
30346
30347
30348
30349
30350
30351
30352
30353
30354
30355
30356
30357
30358
30359
30360
30361
30362
30363
30364
30365
30366
30367
30368
30369
30370
30371
30372
30373
30374
30375
30376
30377
30378
30379
30380
30381
30382
30383
30384
30385
30386
30387
30388
30389
30390
30391
30392
30393
30394
30395
30396
30397
30398
30399
30400
30401
30402
30403
30404
30405
30406
30407
30408
30409
30410
30411
30412
30413
30414
30415
30416
30417
30418
30419
30420
30421
30422
30423
30424
30425
30426
30427
30428
30429
30430
30431
30432
30433
30434
30435
30436
30437
30438
30439
30440
30441
30442
30443
30444
30445
30446
30447
30448
30449
30450
30451
30452
30453
30454
30455
30456
30457
30458
30459
30460
30461
30462
30463
30464
30465
30466
30467
30468
30469
30470
30471
30472
30473
30474
30475
30476
30477
30478
30479
30480
30481
30482
30483
30484
30485
30486
30487
30488
30489
30490
30491
30492
30493
30494
30495
30496
30497
30498
30499
30500
30501
30502
30503
30504
30505
30506
30507
30508
30509
30510
30511
30512
30513
30514
30515
30516
30517
30518
30519
30520
30521
30522
30523
30524
30525
30526
30527
30528
30529
30530
30531
30532
30533
30534
30535
30536
30537
30538
30539
30540
30541
30542
30543
30544
30545
30546
30547
30548
30549
30550
30551
30552
30553
30554
30555
30556
30557
30558
30559
30560
30561
30562
30563
30564
30565
30566
30567
30568
30569
30570
30571
30572
30573
30574
30575
30576
30577
30578
30579
30580
30581
30582
30583
30584
30585
30586
30587
30588
30589
30590
30591
30592
30593
30594
30595
30596
30597
30598
30599
30600
30601
30602
30603
30604
30605
30606
30607
30608
30609
30610
30611
30612
30613
30614
30615
30616
30617
30618
30619
30620
30621
30622
30623
30624
30625
30626
30627
30628
30629
30630
30631
30632
30633
30634
30635
30636
30637
30638
30639
30640
30641
30642
30643
30644
30645
30646
30647
30648
30649
30650
30651
30652
30653
30654
30655
30656
30657
30658
30659
30660
30661
30662
30663
30664
30665
30666
30667
30668
30669
30670
30671
30672
30673
30674
30675
30676
30677
30678
30679
30680
30681
30682
30683
30684
30685
30686
30687
30688
30689
30690
30691
30692
30693
30694
30695
30696
30697
30698
30699
30700
30701
30702
30703
30704
30705
30706
30707
30708
30709
30710
30711
30712
30713
30714
30715
30716
30717
30718
30719
30720
30721
30722
30723
30724
30725
30726
30727
30728
30729
30730
30731
30732
30733
30734
30735
30736
30737
30738
30739
30740
30741
30742
30743
30744
30745
30746
30747
30748
30749
30750
30751
30752
30753
30754
30755
30756
30757
30758
30759
30760
30761
30762
30763
30764
30765
30766
30767
30768
30769
30770
30771
30772
30773
30774
30775
30776
30777
30778
30779
30780
30781
30782
30783
30784
30785
30786
30787
30788
30789
30790
30791
30792
30793
30794
30795
30796
30797
30798
30799
30800
30801
30802
30803
30804
30805
30806
30807
30808
30809
30810
30811
30812
30813
30814
30815
30816
30817
30818
30819
30820
30821
30822
30823
30824
30825
30826
30827
30828
30829
30830
30831
30832
30833
30834
30835
30836
30837
30838
30839
30840
30841
30842
30843
30844
30845
30846
30847
30848
30849
30850
30851
30852
30853
30854
30855
30856
30857
30858
30859
30860
30861
30862
30863
30864
30865
30866
30867
30868
30869
30870
30871
30872
30873
30874
30875
30876
30877
30878
30879
30880
30881
30882
30883
30884
30885
30886
30887
30888
30889
30890
30891
30892
30893
30894
30895
30896
30897
30898
30899
30900
30901
30902
30903
30904
30905
30906
30907
30908
30909
30910
30911
30912
30913
30914
30915
30916
30917
30918
30919
30920
30921
30922
30923
30924
30925
30926
30927
30928
30929
30930
30931
30932
30933
30934
30935
30936
30937
30938
30939
30940
30941
30942
30943
30944
30945
30946
30947
30948
30949
30950
30951
30952
30953
30954
30955
30956
30957
30958
30959
30960
30961
30962
30963
30964
30965
30966
30967
30968
30969
30970
30971
30972
30973
30974
30975
30976
30977
30978
30979
30980
30981
30982
30983
30984
30985
30986
30987
30988
30989
30990
30991
30992
30993
30994
30995
30996
30997
30998
30999
31000
31001
31002
31003
31004
31005
31006
31007
31008
31009
31010
31011
31012
31013
31014
31015
31016
31017
31018
31019
31020
31021
31022
31023
31024
31025
31026
31027
31028
31029
31030
31031
31032
31033
31034
31035
31036
31037
31038
31039
31040
31041
31042
31043
31044
31045
31046
31047
31048
31049
31050
31051
31052
31053
31054
31055
31056
31057
31058
31059
31060
31061
31062
31063
31064
31065
31066
31067
31068
31069
31070
31071
31072
31073
31074
31075
31076
31077
31078
31079
31080
31081
31082
31083
31084
31085
31086
31087
31088
31089
31090
31091
31092
31093
31094
31095
31096
31097
31098
31099
31100
31101
31102
31103
31104
31105
31106
31107
31108
31109
31110
31111
31112
31113
31114
31115
31116
31117
31118
31119
31120
31121
31122
31123
31124
31125
31126
31127
31128
31129
31130
31131
31132
31133
31134
31135
31136
31137
31138
31139
31140
31141
31142
31143
31144
31145
31146
31147
31148
31149
31150
31151
31152
31153
31154
31155
31156
31157
31158
31159
31160
31161
31162
31163
31164
31165
31166
31167
31168
31169
31170
31171
31172
31173
31174
31175
31176
31177
31178
31179
31180
31181
31182
31183
31184
31185
31186
31187
31188
31189
31190
31191
31192
31193
31194
31195
31196
31197
31198
31199
31200
31201
31202
31203
31204
31205
31206
31207
31208
31209
31210
31211
31212
31213
31214
31215
31216
31217
31218
31219
31220
31221
31222
31223
31224
31225
31226
31227
31228
31229
31230
31231
31232
31233
31234
31235
31236
31237
31238
31239
31240
31241
31242
31243
31244
31245
31246
31247
31248
31249
31250
31251
31252
31253
31254
31255
31256
31257
31258
31259
31260
31261
31262
31263
31264
31265
31266
31267
31268
31269
31270
31271
31272
31273
31274
31275
31276
31277
31278
31279
31280
31281
31282
31283
31284
31285
31286
31287
31288
31289
31290
31291
31292
31293
31294
31295
31296
31297
31298
31299
31300
31301
31302
31303
31304
31305
31306
31307
31308
31309
31310
31311
31312
31313
31314
31315
31316
31317
31318
31319
31320
31321
31322
31323
31324
31325
31326
31327
31328
31329
31330
31331
31332
31333
31334
31335
31336
31337
31338
31339
31340
31341
31342
31343
31344
31345
31346
31347
31348
31349
31350
31351
31352
31353
31354
31355
31356
31357
31358
31359
31360
31361
31362
31363
31364
31365
31366
31367
31368
31369
31370
31371
31372
31373
31374
31375
31376
31377
31378
31379
31380
31381
31382
31383
31384
31385
31386
31387
31388
31389
31390
31391
31392
31393
31394
31395
31396
31397
31398
31399
31400
31401
31402
31403
31404
31405
31406
31407
31408
31409
31410
31411
31412
31413
31414
31415
31416
31417
31418
31419
31420
31421
31422
31423
31424
31425
31426
31427
31428
31429
31430
31431
31432
31433
31434
31435
31436
31437
31438
31439
31440
31441
31442
31443
31444
31445
31446
31447
31448
31449
31450
31451
31452
31453
31454
31455
31456
31457
31458
31459
31460
31461
31462
31463
31464
31465
31466
31467
31468
31469
31470
31471
31472
31473
31474
31475
31476
31477
31478
31479
31480
31481
31482
31483
31484
31485
31486
31487
31488
31489
31490
31491
31492
31493
31494
31495
31496
31497
31498
31499
31500
31501
31502
31503
31504
31505
31506
31507
31508
31509
31510
31511
31512
31513
31514
31515
31516
31517
31518
31519
31520
31521
31522
31523
31524
31525
31526
31527
31528
31529
31530
31531
31532
31533
31534
31535
31536
31537
31538
31539
31540
31541
31542
31543
31544
31545
31546
31547
31548
31549
31550
31551
31552
31553
31554
31555
31556
31557
31558
31559
31560
31561
31562
31563
31564
31565
31566
31567
31568
31569
31570
31571
31572
31573
31574
31575
31576
31577
31578
31579
31580
31581
31582
31583
31584
31585
31586
31587
31588
31589
31590
31591
31592
31593
31594
31595
31596
31597
31598
31599
31600
31601
31602
31603
31604
31605
31606
31607
31608
31609
31610
31611
31612
31613
31614
31615
31616
31617
31618
31619
31620
31621
31622
31623
31624
31625
31626
31627
31628
31629
31630
31631
31632
31633
31634
31635
31636
31637
31638
31639
31640
31641
31642
31643
31644
31645
31646
31647
31648
31649
31650
31651
31652
31653
31654
31655
31656
31657
31658
31659
31660
31661
31662
31663
31664
31665
31666
31667
31668
31669
31670
31671
31672
31673
31674
31675
31676
31677
31678
31679
31680
31681
31682
31683
31684
31685
31686
31687
31688
31689
31690
31691
31692
31693
31694
31695
31696
31697
31698
31699
31700
31701
31702
31703
31704
31705
31706
31707
31708
31709
31710
31711
31712
31713
31714
31715
31716
31717
31718
31719
31720
31721
31722
31723
31724
31725
31726
31727
31728
31729
31730
31731
31732
31733
31734
31735
31736
31737
31738
31739
31740
31741
31742
31743
31744
31745
31746
31747
31748
31749
31750
31751
31752
31753
31754
31755
31756
31757
31758
31759
31760
31761
31762
31763
31764
31765
31766
31767
31768
31769
31770
31771
31772
31773
31774
31775
31776
31777
31778
31779
31780
31781
31782
31783
31784
31785
31786
31787
31788
31789
31790
31791
31792
31793
31794
31795
31796
31797
31798
31799
31800
31801
31802
31803
31804
31805
31806
31807
31808
31809
31810
31811
31812
31813
31814
31815
31816
31817
31818
31819
31820
31821
31822
31823
31824
31825
31826
31827
31828
31829
31830
31831
31832
31833
31834
31835
31836
31837
31838
31839
31840
31841
31842
31843
31844
31845
31846
31847
31848
31849
31850
31851
31852
31853
31854
31855
31856
31857
31858
31859
31860
31861
31862
31863
31864
31865
31866
31867
31868
31869
31870
31871
31872
31873
31874
31875
31876
31877
31878
31879
31880
31881
31882
31883
31884
31885
31886
31887
31888
31889
31890
31891
31892
31893
31894
31895
31896
31897
31898
31899
31900
31901
31902
31903
31904
31905
31906
31907
31908
31909
31910
31911
31912
31913
31914
31915
31916
31917
31918
31919
31920
31921
31922
31923
31924
31925
31926
31927
31928
31929
31930
31931
31932
31933
31934
31935
31936
31937
31938
31939
31940
31941
31942
31943
31944
31945
31946
31947
31948
31949
31950
31951
31952
31953
31954
31955
31956
31957
31958
31959
31960
31961
31962
31963
31964
31965
31966
31967
31968
31969
31970
31971
31972
31973
31974
31975
31976
31977
31978
31979
31980
31981
31982
31983
31984
31985
31986
31987
31988
31989
31990
31991
31992
31993
31994
31995
31996
31997
31998
31999
32000
32001
32002
32003
32004
32005
32006
32007
32008
32009
32010
32011
32012
32013
32014
32015
32016
32017
32018
32019
32020
32021
32022
32023
32024
32025
32026
32027
32028
32029
32030
32031
32032
32033
32034
32035
32036
32037
32038
32039
32040
32041
32042
32043
32044
32045
32046
32047
32048
32049
32050
32051
32052
32053
32054
32055
32056
32057
32058
32059
32060
32061
32062
32063
32064
32065
32066
32067
32068
32069
32070
32071
32072
32073
32074
32075
32076
32077
32078
32079
32080
32081
32082
32083
32084
32085
32086
32087
32088
32089
32090
32091
32092
32093
32094
32095
32096
32097
32098
32099
32100
32101
32102
32103
32104
32105
32106
32107
32108
32109
32110
32111
32112
32113
32114
32115
32116
32117
32118
32119
32120
32121
32122
32123
32124
32125
32126
32127
32128
32129
32130
32131
32132
32133
32134
32135
32136
32137
32138
32139
32140
32141
32142
32143
32144
32145
32146
32147
32148
32149
32150
32151
32152
32153
32154
32155
32156
32157
32158
32159
32160
32161
32162
32163
32164
32165
32166
32167
32168
32169
32170
32171
32172
32173
32174
32175
32176
32177
32178
32179
32180
32181
32182
32183
32184
32185
32186
32187
32188
32189
32190
32191
32192
32193
32194
32195
32196
32197
32198
32199
32200
32201
32202
32203
32204
32205
32206
32207
32208
32209
32210
32211
32212
32213
32214
32215
32216
32217
32218
32219
32220
32221
32222
32223
32224
32225
32226
32227
32228
32229
32230
32231
32232
32233
32234
32235
32236
32237
32238
32239
32240
32241
32242
32243
32244
32245
32246
32247
32248
32249
32250
32251
32252
32253
32254
32255
32256
32257
32258
32259
32260
32261
32262
32263
32264
32265
32266
32267
32268
32269
32270
32271
32272
32273
32274
32275
32276
32277
32278
32279
32280
32281
32282
32283
32284
32285
32286
32287
32288
32289
32290
32291
32292
32293
32294
32295
32296
32297
32298
32299
32300
32301
32302
32303
32304
32305
32306
32307
32308
32309
32310
32311
32312
32313
32314
32315
32316
32317
32318
32319
32320
32321
32322
32323
32324
32325
32326
32327
32328
32329
32330
32331
32332
32333
32334
32335
32336
32337
32338
32339
32340
32341
32342
32343
32344
32345
32346
32347
32348
32349
32350
32351
32352
32353
32354
32355
32356
32357
32358
32359
32360
32361
32362
32363
32364
32365
32366
32367
32368
32369
32370
32371
32372
32373
32374
32375
32376
32377
32378
32379
32380
32381
32382
32383
32384
32385
32386
32387
32388
32389
32390
32391
32392
32393
32394
32395
32396
32397
32398
32399
32400
32401
32402
32403
32404
32405
32406
32407
32408
32409
32410
32411
32412
32413
32414
32415
32416
32417
32418
32419
32420
32421
32422
32423
32424
32425
32426
32427
32428
32429
32430
32431
32432
32433
32434
32435
32436
32437
32438
32439
32440
32441
32442
32443
32444
32445
32446
32447
32448
32449
32450
32451
32452
32453
32454
32455
32456
32457
32458
32459
32460
32461
32462
32463
32464
32465
32466
32467
32468
32469
32470
32471
32472
32473
32474
32475
32476
32477
32478
32479
32480
32481
32482
32483
32484
32485
32486
32487
32488
32489
32490
32491
32492
32493
32494
32495
32496
32497
32498
32499
32500
32501
32502
32503
32504
32505
32506
32507
32508
32509
32510
32511
32512
32513
32514
32515
32516
32517
32518
32519
32520
32521
32522
32523
32524
32525
32526
32527
32528
32529
32530
32531
32532
32533
32534
32535
32536
32537
32538
32539
32540
32541
32542
32543
32544
32545
32546
32547
32548
32549
32550
32551
32552
32553
32554
32555
32556
32557
32558
32559
32560
32561
32562
32563
32564
32565
32566
32567
32568
32569
32570
32571
32572
32573
32574
32575
32576
32577
32578
32579
32580
32581
32582
32583
32584
32585
32586
32587
32588
32589
32590
32591
32592
32593
32594
32595
32596
32597
32598
32599
32600
32601
32602
32603
32604
32605
32606
32607
32608
32609
32610
32611
32612
32613
32614
32615
32616
32617
32618
32619
32620
32621
32622
32623
32624
32625
32626
32627
32628
32629
32630
32631
32632
32633
32634
32635
32636
32637
32638
32639
32640
32641
32642
32643
32644
32645
32646
32647
32648
32649
32650
32651
32652
32653
32654
32655
32656
32657
32658
32659
32660
32661
32662
32663
32664
32665
32666
32667
32668
32669
32670
32671
32672
32673
32674
32675
32676
32677
32678
32679
32680
32681
32682
32683
32684
32685
32686
32687
32688
32689
32690
32691
32692
32693
32694
32695
32696
32697
32698
32699
32700
32701
32702
32703
32704
32705
32706
32707
32708
32709
32710
32711
32712
32713
32714
32715
32716
32717
32718
32719
32720
32721
32722
32723
32724
32725
32726
32727
32728
32729
32730
32731
32732
32733
32734
32735
32736
32737
32738
32739
32740
32741
32742
32743
32744
32745
32746
32747
32748
32749
32750
32751
32752
32753
32754
32755
32756
32757
32758
32759
32760
32761
32762
32763
32764
32765
32766
32767
32768
32769
32770
32771
32772
32773
32774
32775
32776
32777
32778
32779
32780
32781
32782
32783
32784
32785
32786
32787
32788
32789
32790
32791
32792
32793
32794
32795
32796
32797
32798
32799
32800
32801
32802
32803
32804
32805
32806
32807
32808
32809
32810
32811
32812
32813
32814
32815
32816
32817
32818
32819
32820
32821
32822
32823
32824
32825
32826
32827
32828
32829
32830
32831
32832
32833
32834
32835
32836
32837
32838
32839
32840
32841
32842
32843
32844
32845
32846
32847
32848
32849
32850
32851
32852
32853
32854
32855
32856
32857
32858
32859
32860
32861
32862
32863
32864
32865
32866
32867
32868
32869
32870
32871
32872
32873
32874
32875
32876
32877
32878
32879
32880
32881
32882
32883
32884
32885
32886
32887
32888
32889
32890
32891
32892
32893
32894
32895
32896
32897
32898
32899
32900
32901
32902
32903
32904
32905
32906
32907
32908
32909
32910
32911
32912
32913
32914
32915
32916
32917
32918
32919
32920
32921
32922
32923
32924
32925
32926
32927
32928
32929
32930
32931
32932
32933
32934
32935
32936
32937
32938
32939
32940
32941
32942
32943
32944
32945
32946
32947
32948
32949
32950
32951
32952
32953
32954
32955
32956
32957
32958
32959
32960
32961
32962
32963
32964
32965
32966
32967
32968
32969
32970
32971
32972
32973
32974
32975
32976
32977
32978
32979
32980
32981
32982
32983
32984
32985
32986
32987
32988
32989
32990
32991
32992
32993
32994
32995
32996
32997
32998
32999
33000
33001
33002
33003
33004
33005
33006
33007
33008
33009
33010
33011
33012
33013
33014
33015
33016
33017
33018
33019
33020
33021
33022
33023
33024
33025
33026
33027
33028
33029
33030
33031
33032
33033
33034
33035
33036
33037
33038
33039
33040
33041
33042
33043
33044
33045
33046
33047
33048
33049
33050
33051
33052
33053
33054
33055
33056
33057
33058
33059
33060
33061
33062
33063
33064
33065
33066
33067
33068
33069
33070
33071
33072
33073
33074
33075
33076
33077
33078
33079
33080
33081
33082
33083
33084
33085
33086
33087
33088
33089
33090
33091
33092
33093
33094
33095
33096
33097
33098
33099
33100
33101
33102
33103
33104
33105
33106
33107
33108
33109
33110
33111
33112
33113
33114
33115
33116
33117
33118
33119
33120
33121
33122
33123
33124
33125
33126
33127
33128
33129
33130
33131
33132
33133
33134
33135
33136
33137
33138
33139
33140
33141
33142
33143
33144
33145
33146
33147
33148
33149
33150
33151
33152
33153
33154
33155
33156
33157
33158
33159
33160
33161
33162
33163
33164
33165
33166
33167
33168
33169
33170
33171
33172
33173
33174
33175
33176
33177
33178
33179
33180
33181
33182
33183
33184
33185
33186
33187
33188
33189
33190
33191
33192
33193
33194
33195
33196
33197
33198
33199
33200
33201
33202
33203
33204
33205
33206
33207
33208
33209
33210
33211
33212
33213
33214
33215
33216
33217
33218
33219
33220
33221
33222
33223
33224
33225
33226
33227
33228
33229
33230
33231
33232
33233
33234
33235
33236
33237
33238
33239
33240
33241
33242
33243
33244
33245
33246
33247
33248
33249
33250
33251
33252
33253
33254
33255
33256
33257
33258
33259
33260
33261
33262
33263
33264
33265
33266
33267
33268
33269
33270
33271
33272
33273
33274
33275
33276
33277
33278
33279
33280
33281
33282
33283
33284
33285
33286
33287
33288
33289
33290
33291
33292
33293
33294
33295
33296
33297
33298
33299
33300
33301
33302
33303
33304
33305
33306
33307
33308
33309
33310
33311
33312
33313
33314
33315
33316
33317
33318
33319
33320
33321
33322
33323
33324
33325
33326
33327
33328
33329
33330
33331
33332
33333
33334
33335
33336
33337
33338
33339
33340
33341
33342
33343
33344
33345
33346
33347
33348
33349
33350
33351
33352
33353
33354
33355
33356
33357
33358
33359
33360
33361
33362
33363
33364
33365
33366
33367
33368
33369
33370
33371
33372
33373
33374
33375
33376
33377
33378
33379
33380
33381
33382
33383
33384
33385
33386
33387
33388
33389
33390
33391
33392
33393
33394
33395
33396
33397
33398
33399
33400
33401
33402
33403
33404
33405
33406
33407
33408
33409
33410
33411
33412
33413
33414
33415
33416
33417
33418
33419
33420
33421
33422
33423
33424
33425
33426
33427
33428
33429
33430
33431
33432
33433
33434
33435
33436
33437
33438
33439
33440
33441
33442
33443
33444
33445
33446
33447
33448
33449
33450
33451
33452
33453
33454
33455
33456
33457
33458
33459
33460
33461
33462
33463
33464
33465
33466
33467
33468
33469
33470
33471
33472
33473
33474
33475
33476
33477
33478
33479
33480
33481
33482
33483
33484
33485
33486
33487
33488
33489
33490
33491
33492
33493
33494
33495
33496
33497
33498
33499
33500
33501
33502
33503
33504
33505
33506
33507
33508
33509
33510
33511
33512
33513
33514
33515
33516
33517
33518
33519
33520
33521
33522
33523
33524
33525
33526
33527
33528
33529
33530
33531
33532
33533
33534
33535
33536
33537
33538
33539
33540
33541
33542
33543
33544
33545
33546
33547
33548
33549
33550
33551
33552
33553
33554
33555
33556
33557
33558
33559
33560
33561
33562
33563
33564
33565
33566
33567
33568
33569
33570
33571
33572
33573
33574
33575
33576
33577
33578
33579
33580
33581
33582
33583
33584
33585
33586
33587
33588
33589
33590
33591
33592
33593
33594
33595
33596
33597
33598
33599
33600
33601
33602
33603
33604
33605
33606
33607
33608
33609
33610
33611
33612
33613
33614
33615
33616
33617
33618
33619
33620
33621
33622
33623
33624
33625
33626
33627
33628
33629
33630
33631
33632
33633
33634
33635
33636
33637
33638
33639
33640
33641
33642
33643
33644
33645
33646
33647
33648
33649
33650
33651
33652
33653
33654
33655
33656
33657
33658
33659
33660
33661
33662
33663
33664
33665
33666
33667
33668
33669
33670
33671
33672
33673
33674
33675
33676
33677
33678
33679
33680
33681
33682
33683
33684
33685
33686
33687
33688
33689
33690
33691
33692
33693
33694
33695
33696
33697
33698
33699
33700
33701
33702
33703
33704
33705
33706
33707
33708
33709
33710
33711
33712
33713
33714
33715
33716
33717
33718
33719
33720
33721
33722
33723
33724
33725
33726
33727
33728
33729
33730
33731
33732
33733
33734
33735
33736
33737
33738
33739
33740
33741
33742
33743
33744
33745
33746
33747
33748
33749
33750
33751
33752
33753
33754
33755
33756
33757
33758
33759
33760
33761
33762
33763
33764
33765
33766
33767
33768
33769
33770
33771
33772
33773
33774
33775
33776
33777
33778
33779
33780
33781
33782
33783
33784
33785
33786
33787
33788
33789
33790
33791
33792
33793
33794
33795
33796
33797
33798
33799
33800
33801
33802
33803
33804
33805
33806
33807
33808
33809
33810
33811
33812
33813
33814
33815
33816
33817
33818
33819
33820
33821
33822
33823
33824
33825
33826
33827
33828
33829
33830
33831
33832
33833
33834
33835
33836
33837
33838
33839
33840
33841
33842
33843
33844
33845
33846
33847
33848
33849
33850
33851
33852
33853
33854
33855
33856
33857
33858
33859
33860
33861
33862
33863
33864
33865
33866
33867
33868
33869
33870
33871
33872
33873
33874
33875
33876
33877
33878
33879
33880
33881
33882
33883
33884
33885
33886
33887
33888
33889
33890
33891
33892
33893
33894
33895
33896
33897
33898
33899
33900
33901
33902
33903
33904
33905
33906
33907
33908
33909
33910
33911
33912
33913
33914
33915
33916
33917
33918
33919
33920
33921
33922
33923
33924
33925
33926
33927
33928
33929
33930
33931
33932
33933
33934
33935
33936
33937
33938
33939
33940
33941
33942
33943
33944
33945
33946
33947
33948
33949
33950
33951
33952
33953
33954
33955
33956
33957
33958
33959
33960
33961
33962
33963
33964
33965
33966
33967
33968
33969
33970
33971
33972
33973
33974
33975
33976
33977
33978
33979
33980
33981
33982
33983
33984
33985
33986
33987
33988
33989
33990
33991
33992
33993
33994
33995
33996
33997
33998
33999
34000
34001
34002
34003
34004
34005
34006
34007
34008
34009
34010
34011
34012
34013
34014
34015
34016
34017
34018
34019
34020
34021
34022
34023
34024
34025
34026
34027
34028
34029
34030
34031
34032
34033
34034
34035
34036
34037
34038
34039
34040
34041
34042
34043
34044
34045
34046
34047
34048
34049
34050
34051
34052
34053
34054
34055
34056
34057
34058
34059
34060
34061
34062
34063
34064
34065
34066
34067
34068
34069
34070
34071
34072
34073
34074
34075
34076
34077
34078
34079
34080
34081
34082
34083
34084
34085
34086
34087
34088
34089
34090
34091
34092
34093
34094
34095
34096
34097
34098
34099
34100
34101
34102
34103
34104
34105
34106
34107
34108
34109
34110
34111
34112
34113
34114
34115
34116
34117
34118
34119
34120
34121
34122
34123
34124
34125
34126
34127
34128
34129
34130
34131
34132
34133
34134
34135
34136
34137
34138
34139
34140
34141
34142
34143
34144
34145
34146
34147
34148
34149
34150
34151
34152
34153
34154
34155
34156
34157
34158
34159
34160
34161
34162
34163
34164
34165
34166
34167
34168
34169
34170
34171
34172
34173
34174
34175
34176
34177
34178
34179
34180
34181
34182
34183
34184
34185
34186
34187
34188
34189
34190
34191
34192
34193
34194
34195
34196
34197
34198
34199
34200
34201
34202
34203
34204
34205
34206
34207
34208
34209
34210
34211
34212
34213
34214
34215
34216
34217
34218
34219
34220
34221
34222
34223
34224
34225
34226
34227
34228
34229
34230
34231
34232
34233
34234
34235
34236
34237
34238
34239
34240
34241
34242
34243
34244
34245
34246
34247
34248
34249
34250
34251
34252
34253
34254
34255
34256
34257
34258
34259
34260
34261
34262
34263
34264
34265
34266
34267
34268
34269
34270
34271
34272
34273
34274
34275
34276
34277
34278
34279
34280
34281
34282
34283
34284
34285
34286
34287
34288
34289
34290
34291
34292
34293
34294
34295
34296
34297
34298
34299
34300
34301
34302
34303
34304
34305
34306
34307
34308
34309
34310
34311
34312
34313
34314
34315
34316
34317
34318
34319
34320
34321
34322
34323
34324
34325
34326
34327
34328
34329
34330
34331
34332
34333
34334
34335
34336
34337
34338
34339
34340
34341
34342
34343
34344
34345
34346
34347
34348
34349
34350
34351
34352
34353
34354
34355
34356
34357
34358
34359
34360
34361
34362
34363
34364
34365
34366
34367
34368
34369
34370
34371
34372
34373
34374
34375
34376
34377
34378
34379
34380
34381
34382
34383
34384
34385
34386
34387
34388
34389
34390
34391
34392
34393
34394
34395
34396
34397
34398
34399
34400
34401
34402
34403
34404
34405
34406
34407
34408
34409
34410
34411
34412
34413
34414
34415
34416
34417
34418
34419
34420
34421
34422
34423
34424
34425
34426
34427
34428
34429
34430
34431
34432
34433
34434
34435
34436
34437
34438
34439
34440
34441
34442
34443
34444
34445
34446
34447
34448
34449
34450
34451
34452
34453
34454
34455
34456
34457
34458
34459
34460
34461
34462
34463
34464
34465
34466
34467
34468
34469
34470
34471
34472
34473
34474
34475
34476
34477
34478
34479
34480
34481
34482
34483
34484
34485
34486
34487
34488
34489
34490
34491
34492
34493
34494
34495
34496
34497
34498
34499
34500
34501
34502
34503
34504
34505
34506
34507
34508
34509
34510
34511
34512
34513
34514
34515
34516
34517
34518
34519
34520
34521
34522
34523
34524
34525
34526
34527
34528
34529
34530
34531
34532
34533
34534
34535
34536
34537
34538
34539
34540
34541
34542
34543
34544
34545
34546
34547
34548
34549
34550
34551
34552
34553
34554
34555
34556
34557
34558
34559
34560
34561
34562
34563
34564
34565
34566
34567
34568
34569
34570
34571
34572
34573
34574
34575
34576
34577
34578
34579
34580
34581
34582
34583
34584
34585
34586
34587
34588
34589
34590
34591
34592
34593
34594
34595
34596
34597
34598
34599
34600
34601
34602
34603
34604
34605
34606
34607
34608
34609
34610
34611
34612
34613
34614
34615
34616
34617
34618
34619
34620
34621
34622
34623
34624
34625
34626
34627
34628
34629
34630
34631
34632
34633
34634
34635
34636
34637
34638
34639
34640
34641
34642
34643
34644
34645
34646
34647
34648
34649
34650
34651
34652
34653
34654
34655
34656
34657
34658
34659
34660
34661
34662
34663
34664
34665
34666
34667
34668
34669
34670
34671
34672
34673
34674
34675
34676
34677
34678
34679
34680
34681
34682
34683
34684
34685
34686
34687
34688
34689
34690
34691
34692
34693
34694
34695
34696
34697
34698
34699
34700
34701
34702
34703
34704
34705
34706
34707
34708
34709
34710
34711
34712
34713
34714
34715
34716
34717
34718
34719
34720
34721
34722
34723
34724
34725
34726
34727
34728
34729
34730
34731
34732
34733
34734
34735
34736
34737
34738
34739
34740
34741
34742
34743
34744
34745
34746
34747
34748
34749
34750
34751
34752
34753
34754
34755
34756
34757
34758
34759
34760
34761
34762
34763
34764
34765
34766
34767
34768
34769
34770
34771
34772
34773
34774
34775
34776
34777
34778
34779
34780
34781
34782
34783
34784
34785
34786
34787
34788
34789
34790
34791
34792
34793
34794
34795
34796
34797
34798
34799
34800
34801
34802
34803
34804
34805
34806
34807
34808
34809
34810
34811
34812
34813
34814
34815
34816
34817
34818
34819
34820
34821
34822
34823
34824
34825
34826
34827
34828
34829
34830
34831
34832
34833
34834
34835
34836
34837
34838
34839
34840
34841
34842
34843
34844
34845
34846
34847
34848
34849
34850
34851
34852
34853
34854
34855
34856
34857
34858
34859
34860
34861
34862
34863
34864
34865
34866
34867
34868
34869
34870
34871
34872
34873
34874
34875
34876
34877
34878
34879
34880
34881
34882
34883
34884
34885
34886
34887
34888
34889
34890
34891
34892
34893
34894
34895
34896
34897
34898
34899
34900
34901
34902
34903
34904
34905
34906
34907
34908
34909
34910
34911
34912
34913
34914
34915
34916
34917
34918
34919
34920
34921
34922
34923
34924
34925
34926
34927
34928
34929
34930
34931
34932
34933
34934
34935
34936
34937
34938
34939
34940
34941
34942
34943
34944
34945
34946
34947
34948
34949
34950
34951
34952
34953
34954
34955
34956
34957
34958
34959
34960
34961
34962
34963
34964
34965
34966
34967
34968
34969
34970
34971
34972
34973
34974
34975
34976
34977
34978
34979
34980
34981
34982
34983
34984
34985
34986
34987
34988
34989
34990
34991
34992
34993
34994
34995
34996
34997
34998
34999
35000
35001
35002
35003
35004
35005
35006
35007
35008
35009
35010
35011
35012
35013
35014
35015
35016
35017
35018
35019
35020
35021
35022
35023
35024
35025
35026
35027
35028
35029
35030
35031
35032
35033
35034
35035
35036
35037
35038
35039
35040
35041
35042
35043
35044
35045
35046
35047
35048
35049
35050
35051
35052
35053
35054
35055
35056
35057
35058
35059
35060
35061
35062
35063
35064
35065
35066
35067
35068
35069
35070
35071
35072
35073
35074
35075
35076
35077
35078
35079
35080
35081
35082
35083
35084
35085
35086
35087
35088
35089
35090
35091
35092
35093
35094
35095
35096
35097
35098
35099
35100
35101
35102
35103
35104
35105
35106
35107
35108
35109
35110
35111
35112
35113
35114
35115
35116
35117
35118
35119
35120
35121
35122
35123
35124
35125
35126
35127
35128
35129
35130
35131
35132
35133
35134
35135
35136
35137
35138
35139
35140
35141
35142
35143
35144
35145
35146
35147
35148
35149
35150
35151
35152
35153
35154
35155
35156
35157
35158
35159
35160
35161
35162
35163
35164
35165
35166
35167
35168
35169
35170
35171
35172
35173
35174
35175
35176
35177
35178
35179
35180
35181
35182
35183
35184
35185
35186
35187
35188
35189
35190
35191
35192
35193
35194
35195
35196
35197
35198
35199
35200
35201
35202
35203
35204
35205
35206
35207
35208
35209
35210
35211
35212
35213
35214
35215
35216
35217
35218
35219
35220
35221
35222
35223
35224
35225
35226
35227
35228
35229
35230
35231
35232
35233
35234
35235
35236
35237
35238
35239
35240
35241
35242
35243
35244
35245
35246
35247
35248
35249
35250
35251
35252
35253
35254
35255
35256
35257
35258
35259
35260
35261
35262
35263
35264
35265
35266
35267
35268
35269
35270
35271
35272
35273
35274
35275
35276
35277
35278
35279
35280
35281
35282
35283
35284
35285
35286
35287
35288
35289
35290
35291
35292
35293
35294
35295
35296
35297
35298
35299
35300
35301
35302
35303
35304
35305
35306
35307
35308
35309
35310
35311
35312
35313
35314
35315
35316
35317
35318
35319
35320
35321
35322
35323
35324
35325
35326
35327
35328
35329
35330
35331
35332
35333
35334
35335
35336
35337
35338
35339
35340
35341
35342
35343
35344
35345
35346
35347
35348
35349
35350
35351
35352
35353
35354
35355
35356
35357
35358
35359
35360
35361
35362
35363
35364
35365
35366
35367
35368
35369
35370
35371
35372
35373
35374
35375
35376
35377
35378
35379
35380
35381
35382
35383
35384
35385
35386
35387
35388
35389
35390
35391
35392
35393
35394
35395
35396
35397
35398
35399
35400
35401
35402
35403
35404
35405
35406
35407
35408
35409
35410
35411
35412
35413
35414
35415
35416
35417
35418
35419
35420
35421
35422
35423
35424
35425
35426
35427
35428
35429
35430
35431
35432
35433
35434
35435
35436
35437
35438
35439
35440
35441
35442
35443
35444
35445
35446
35447
35448
35449
35450
35451
35452
35453
35454
35455
35456
35457
35458
35459
35460
35461
35462
35463
35464
35465
35466
35467
35468
35469
35470
35471
35472
35473
35474
35475
35476
35477
35478
35479
35480
35481
35482
35483
35484
35485
35486
35487
35488
35489
35490
35491
35492
35493
35494
35495
35496
35497
35498
35499
35500
35501
35502
35503
35504
35505
35506
35507
35508
35509
35510
35511
35512
35513
35514
35515
35516
35517
35518
35519
35520
35521
35522
35523
35524
35525
35526
35527
35528
35529
35530
35531
35532
35533
35534
35535
35536
35537
35538
35539
35540
35541
35542
35543
35544
35545
35546
35547
35548
35549
35550
35551
35552
35553
35554
35555
35556
35557
35558
35559
35560
35561
35562
35563
35564
35565
35566
35567
35568
35569
35570
35571
35572
35573
35574
35575
35576
35577
35578
35579
35580
35581
35582
35583
35584
35585
35586
35587
35588
35589
35590
35591
35592
35593
35594
35595
35596
35597
35598
35599
35600
35601
35602
35603
35604
35605
35606
35607
35608
35609
35610
35611
35612
35613
35614
35615
35616
35617
35618
35619
35620
35621
35622
35623
35624
35625
35626
35627
35628
35629
35630
35631
35632
35633
35634
35635
35636
35637
35638
35639
35640
35641
35642
35643
35644
35645
35646
35647
35648
35649
35650
35651
35652
35653
35654
35655
35656
35657
35658
35659
35660
35661
35662
35663
35664
35665
35666
35667
35668
35669
35670
35671
35672
35673
35674
35675
35676
35677
35678
35679
35680
35681
35682
35683
35684
35685
35686
35687
35688
35689
35690
35691
35692
35693
35694
35695
35696
35697
35698
35699
35700
35701
35702
35703
35704
35705
35706
35707
35708
35709
35710
35711
35712
35713
35714
35715
35716
35717
35718
35719
35720
35721
35722
35723
35724
35725
35726
35727
35728
35729
35730
35731
35732
35733
35734
35735
35736
35737
35738
35739
35740
35741
35742
35743
35744
35745
35746
35747
35748
35749
35750
35751
35752
35753
35754
35755
35756
35757
35758
35759
35760
35761
35762
35763
35764
35765
35766
35767
35768
35769
35770
35771
35772
35773
35774
35775
35776
35777
35778
35779
35780
35781
35782
35783
35784
35785
35786
35787
35788
35789
35790
35791
35792
35793
35794
35795
35796
35797
35798
35799
35800
35801
35802
35803
35804
35805
35806
35807
35808
35809
35810
35811
35812
35813
35814
35815
35816
35817
35818
35819
35820
35821
35822
35823
35824
35825
35826
35827
35828
35829
35830
35831
35832
35833
35834
35835
35836
35837
35838
35839
35840
35841
35842
35843
35844
35845
35846
35847
35848
35849
35850
35851
35852
35853
35854
35855
35856
35857
35858
35859
35860
35861
35862
35863
35864
35865
35866
35867
35868
35869
35870
35871
35872
35873
35874
35875
35876
35877
35878
35879
35880
35881
35882
35883
35884
35885
35886
35887
35888
35889
35890
35891
35892
35893
35894
35895
35896
35897
35898
35899
35900
35901
35902
35903
35904
35905
35906
35907
35908
35909
35910
35911
35912
35913
35914
35915
35916
35917
35918
35919
35920
35921
35922
35923
35924
35925
35926
35927
35928
35929
35930
35931
35932
35933
35934
35935
35936
35937
35938
35939
35940
35941
35942
35943
35944
35945
35946
35947
35948
35949
35950
35951
35952
35953
35954
35955
35956
35957
35958
35959
35960
35961
35962
35963
35964
35965
35966
35967
35968
35969
35970
35971
35972
35973
35974
35975
35976
35977
35978
35979
35980
35981
35982
35983
35984
35985
35986
35987
35988
35989
35990
35991
35992
35993
35994
35995
35996
35997
35998
35999
36000
36001
36002
36003
36004
36005
36006
36007
36008
36009
36010
36011
36012
36013
36014
36015
36016
36017
36018
36019
36020
36021
36022
36023
36024
36025
36026
36027
36028
36029
36030
36031
36032
36033
36034
36035
36036
36037
36038
36039
36040
36041
36042
36043
36044
36045
36046
36047
36048
36049
36050
36051
36052
36053
36054
36055
36056
36057
36058
36059
36060
36061
36062
36063
36064
36065
36066
36067
36068
36069
36070
36071
36072
36073
36074
36075
36076
36077
36078
36079
36080
36081
36082
36083
36084
36085
36086
36087
36088
36089
36090
36091
36092
36093
36094
36095
36096
36097
36098
36099
36100
36101
36102
36103
36104
36105
36106
36107
36108
36109
36110
36111
36112
36113
36114
36115
36116
36117
36118
36119
36120
36121
36122
36123
36124
36125
36126
36127
36128
36129
36130
36131
36132
36133
36134
36135
36136
36137
36138
36139
36140
36141
36142
36143
36144
36145
36146
36147
36148
36149
36150
36151
36152
36153
36154
36155
36156
36157
36158
36159
36160
36161
36162
36163
36164
36165
36166
36167
36168
36169
36170
36171
36172
36173
36174
36175
36176
36177
36178
36179
36180
36181
36182
36183
36184
36185
36186
36187
36188
36189
36190
36191
36192
36193
36194
36195
36196
36197
36198
36199
36200
36201
36202
36203
36204
36205
36206
36207
36208
36209
36210
36211
36212
36213
36214
36215
36216
36217
36218
36219
36220
36221
36222
36223
36224
36225
36226
36227
36228
36229
36230
36231
36232
36233
36234
36235
36236
36237
36238
36239
36240
36241
36242
36243
36244
36245
36246
36247
36248
36249
36250
36251
36252
36253
36254
36255
36256
36257
36258
36259
36260
36261
36262
36263
36264
36265
36266
36267
36268
36269
36270
36271
36272
36273
36274
36275
36276
36277
36278
36279
36280
36281
36282
36283
36284
36285
36286
36287
36288
36289
36290
36291
36292
36293
36294
36295
36296
36297
36298
36299
36300
36301
36302
36303
36304
36305
36306
36307
36308
36309
36310
36311
36312
36313
36314
36315
36316
36317
36318
36319
36320
36321
36322
36323
36324
36325
36326
36327
36328
36329
36330
36331
36332
36333
36334
36335
36336
36337
36338
36339
36340
36341
36342
36343
36344
36345
36346
36347
36348
36349
36350
36351
36352
36353
36354
36355
36356
36357
36358
36359
36360
36361
36362
36363
36364
36365
36366
36367
36368
36369
36370
36371
36372
36373
36374
36375
36376
36377
36378
36379
36380
36381
36382
36383
36384
36385
36386
36387
36388
36389
36390
36391
36392
36393
36394
36395
36396
36397
36398
36399
36400
36401
36402
36403
36404
36405
36406
36407
36408
36409
36410
36411
36412
36413
36414
36415
36416
36417
36418
36419
36420
36421
36422
36423
36424
36425
36426
36427
36428
36429
36430
36431
36432
36433
36434
36435
36436
36437
36438
36439
36440
36441
36442
36443
36444
36445
36446
36447
36448
36449
36450
36451
36452
36453
36454
36455
36456
36457
36458
36459
36460
36461
36462
36463
36464
36465
36466
36467
36468
36469
36470
36471
36472
36473
36474
36475
36476
36477
36478
36479
36480
36481
36482
36483
36484
36485
36486
36487
36488
36489
36490
36491
36492
36493
36494
36495
36496
36497
36498
36499
36500
36501
36502
36503
36504
36505
36506
36507
36508
36509
36510
36511
36512
36513
36514
36515
36516
36517
36518
36519
36520
36521
36522
36523
36524
36525
36526
36527
36528
36529
36530
36531
36532
36533
36534
36535
36536
36537
36538
36539
36540
36541
36542
36543
36544
36545
36546
36547
36548
36549
36550
36551
36552
36553
36554
36555
36556
36557
36558
36559
36560
36561
36562
36563
36564
36565
36566
36567
36568
36569
36570
36571
36572
36573
36574
36575
36576
36577
36578
36579
36580
36581
36582
36583
36584
36585
36586
36587
36588
36589
36590
36591
36592
36593
36594
36595
36596
36597
36598
36599
36600
36601
36602
36603
36604
36605
36606
36607
36608
36609
36610
36611
36612
36613
36614
36615
36616
36617
36618
36619
36620
36621
36622
36623
36624
36625
36626
36627
36628
36629
36630
36631
36632
36633
36634
36635
36636
36637
36638
36639
36640
36641
36642
36643
36644
36645
36646
36647
36648
36649
36650
36651
36652
36653
36654
36655
36656
36657
36658
36659
36660
36661
36662
36663
36664
36665
36666
36667
36668
36669
36670
36671
36672
36673
36674
36675
36676
36677
36678
36679
36680
36681
36682
36683
36684
36685
36686
36687
36688
36689
36690
36691
36692
36693
36694
36695
36696
36697
36698
36699
36700
36701
36702
36703
36704
36705
36706
36707
36708
36709
36710
36711
36712
36713
36714
36715
36716
36717
36718
36719
36720
36721
36722
36723
36724
36725
36726
36727
36728
36729
36730
36731
36732
36733
36734
36735
36736
36737
36738
36739
36740
36741
36742
36743
36744
36745
36746
36747
36748
36749
36750
36751
36752
36753
36754
36755
36756
36757
36758
36759
36760
36761
36762
36763
36764
36765
36766
36767
36768
36769
36770
36771
36772
36773
36774
36775
36776
36777
36778
36779
36780
36781
36782
36783
36784
36785
36786
36787
36788
36789
36790
36791
36792
36793
36794
36795
36796
36797
36798
36799
36800
36801
36802
36803
36804
36805
36806
36807
36808
36809
36810
36811
36812
36813
36814
36815
36816
36817
36818
36819
36820
36821
36822
36823
36824
36825
36826
36827
36828
36829
36830
36831
36832
36833
36834
36835
36836
36837
36838
36839
36840
36841
36842
36843
36844
36845
36846
36847
36848
36849
36850
36851
36852
36853
36854
36855
36856
36857
36858
36859
36860
36861
36862
36863
36864
36865
36866
36867
36868
36869
36870
36871
36872
36873
36874
36875
36876
36877
36878
36879
36880
36881
36882
36883
36884
36885
36886
36887
36888
36889
36890
36891
36892
36893
36894
36895
36896
36897
36898
36899
36900
36901
36902
36903
36904
36905
36906
36907
36908
36909
36910
36911
36912
36913
36914
36915
36916
36917
36918
36919
36920
36921
36922
36923
36924
36925
36926
36927
36928
36929
36930
36931
36932
36933
36934
36935
36936
36937
36938
36939
36940
36941
36942
36943
36944
36945
36946
36947
36948
36949
36950
36951
36952
36953
36954
36955
36956
36957
36958
36959
36960
36961
36962
36963
36964
36965
36966
36967
36968
36969
36970
36971
36972
36973
36974
36975
36976
36977
36978
36979
36980
36981
36982
36983
36984
36985
36986
36987
36988
36989
36990
36991
36992
36993
36994
36995
36996
36997
36998
36999
37000
37001
37002
37003
37004
37005
37006
37007
37008
37009
37010
37011
37012
37013
37014
37015
37016
37017
37018
37019
37020
37021
37022
37023
37024
37025
37026
37027
37028
37029
37030
37031
37032
37033
37034
37035
37036
37037
37038
37039
37040
37041
37042
37043
37044
37045
37046
37047
37048
37049
37050
37051
37052
37053
37054
37055
37056
37057
37058
37059
37060
37061
37062
37063
37064
37065
37066
37067
37068
37069
37070
37071
37072
37073
37074
37075
37076
37077
37078
37079
37080
37081
37082
37083
37084
37085
37086
37087
37088
37089
37090
37091
37092
37093
37094
37095
37096
37097
37098
37099
37100
37101
37102
37103
37104
37105
37106
37107
37108
37109
37110
37111
37112
37113
37114
37115
37116
37117
37118
37119
37120
37121
37122
37123
37124
37125
37126
37127
37128
37129
37130
37131
37132
37133
37134
37135
37136
37137
37138
37139
37140
37141
37142
37143
37144
37145
37146
37147
37148
37149
37150
37151
37152
37153
37154
37155
37156
37157
37158
37159
37160
37161
37162
37163
37164
37165
37166
37167
37168
37169
37170
37171
37172
37173
37174
37175
37176
37177
37178
37179
37180
37181
37182
37183
37184
37185
37186
37187
37188
37189
37190
37191
37192
37193
37194
37195
37196
37197
37198
37199
37200
37201
37202
37203
37204
37205
37206
37207
37208
37209
37210
37211
37212
37213
37214
37215
37216
37217
37218
37219
37220
37221
37222
37223
37224
37225
37226
37227
37228
37229
37230
37231
37232
37233
37234
37235
37236
37237
37238
37239
37240
37241
37242
37243
37244
37245
37246
37247
37248
37249
37250
37251
37252
37253
37254
37255
37256
37257
37258
37259
37260
37261
37262
37263
37264
37265
37266
37267
37268
37269
37270
37271
37272
37273
37274
37275
37276
37277
37278
37279
37280
37281
37282
37283
37284
37285
37286
37287
37288
37289
37290
37291
37292
37293
37294
37295
37296
37297
37298
37299
37300
37301
37302
37303
37304
37305
37306
37307
37308
37309
37310
37311
37312
37313
37314
37315
37316
37317
37318
37319
37320
37321
37322
37323
37324
37325
37326
37327
37328
37329
37330
37331
37332
37333
37334
37335
37336
37337
37338
37339
37340
37341
37342
37343
37344
37345
37346
37347
37348
37349
37350
37351
37352
37353
37354
37355
37356
37357
37358
37359
37360
37361
37362
37363
37364
37365
37366
37367
37368
37369
37370
37371
37372
37373
37374
37375
37376
37377
37378
37379
37380
37381
37382
37383
37384
37385
37386
37387
37388
37389
37390
37391
37392
37393
37394
37395
37396
37397
37398
37399
37400
37401
37402
37403
37404
37405
37406
37407
37408
37409
37410
37411
37412
37413
37414
37415
37416
37417
37418
37419
37420
37421
37422
37423
37424
37425
37426
37427
37428
37429
37430
37431
37432
37433
37434
37435
37436
37437
37438
37439
37440
37441
37442
37443
37444
37445
37446
37447
37448
37449
37450
37451
37452
37453
37454
37455
37456
37457
37458
37459
37460
37461
37462
37463
37464
37465
37466
37467
37468
37469
37470
37471
37472
37473
37474
37475
37476
37477
37478
37479
37480
37481
37482
37483
37484
37485
37486
37487
37488
37489
37490
37491
37492
37493
37494
37495
37496
37497
37498
37499
37500
37501
37502
37503
37504
37505
37506
37507
37508
37509
37510
37511
37512
37513
37514
37515
37516
37517
37518
37519
37520
37521
37522
37523
37524
37525
37526
37527
37528
37529
37530
37531
37532
37533
37534
37535
37536
37537
37538
37539
37540
37541
37542
37543
37544
37545
37546
37547
37548
37549
37550
37551
37552
37553
37554
37555
37556
37557
37558
37559
37560
37561
37562
37563
37564
37565
37566
37567
37568
37569
37570
37571
37572
37573
37574
37575
37576
37577
37578
37579
37580
37581
37582
37583
37584
37585
37586
37587
37588
37589
37590
37591
37592
37593
37594
37595
37596
37597
37598
37599
37600
37601
37602
37603
37604
37605
37606
37607
37608
37609
37610
37611
37612
37613
37614
37615
37616
37617
37618
37619
37620
37621
37622
37623
37624
37625
37626
37627
37628
37629
37630
37631
37632
37633
37634
37635
37636
37637
37638
37639
37640
37641
37642
37643
37644
37645
37646
37647
37648
37649
37650
37651
37652
37653
37654
37655
37656
37657
37658
37659
37660
37661
37662
37663
37664
37665
37666
37667
37668
37669
37670
37671
37672
37673
37674
37675
37676
37677
37678
37679
37680
37681
37682
37683
37684
37685
37686
37687
37688
37689
37690
37691
37692
37693
37694
37695
37696
37697
37698
37699
37700
37701
37702
37703
37704
37705
37706
37707
37708
37709
37710
37711
37712
37713
37714
37715
37716
37717
37718
37719
37720
37721
37722
37723
37724
37725
37726
37727
37728
37729
37730
37731
37732
37733
37734
37735
37736
37737
37738
37739
37740
37741
37742
37743
37744
37745
37746
37747
37748
37749
37750
37751
37752
37753
37754
37755
37756
37757
37758
37759
37760
37761
37762
37763
37764
37765
37766
37767
37768
37769
37770
37771
37772
37773
37774
37775
37776
37777
37778
37779
37780
37781
37782
37783
37784
37785
37786
37787
37788
37789
37790
37791
37792
37793
37794
37795
37796
37797
37798
37799
37800
37801
37802
37803
37804
37805
37806
37807
37808
37809
37810
37811
37812
37813
37814
37815
37816
37817
37818
37819
37820
37821
37822
37823
37824
37825
37826
37827
37828
37829
37830
37831
37832
37833
37834
37835
37836
37837
37838
37839
37840
37841
37842
37843
37844
37845
37846
37847
37848
37849
37850
37851
37852
37853
37854
37855
37856
37857
37858
37859
37860
37861
37862
37863
37864
37865
37866
37867
37868
37869
37870
37871
37872
37873
37874
37875
37876
37877
37878
37879
37880
37881
37882
37883
37884
37885
37886
37887
37888
37889
37890
37891
37892
37893
37894
37895
37896
37897
37898
37899
37900
37901
37902
37903
37904
37905
37906
37907
37908
37909
37910
37911
37912
37913
37914
37915
37916
37917
37918
37919
37920
37921
37922
37923
37924
37925
37926
37927
37928
37929
37930
37931
37932
37933
37934
37935
37936
37937
37938
37939
37940
37941
37942
37943
37944
37945
37946
37947
37948
37949
37950
37951
37952
37953
37954
37955
37956
37957
37958
37959
37960
37961
37962
37963
37964
37965
37966
37967
37968
37969
37970
37971
37972
37973
37974
37975
37976
37977
37978
37979
37980
37981
37982
37983
37984
37985
37986
37987
37988
37989
37990
37991
37992
37993
37994
37995
37996
37997
37998
37999
38000
38001
38002
38003
38004
38005
38006
38007
38008
38009
38010
38011
38012
38013
38014
38015
38016
38017
38018
38019
38020
38021
38022
38023
38024
38025
38026
38027
38028
38029
38030
38031
38032
38033
38034
38035
38036
38037
38038
38039
38040
38041
38042
38043
38044
38045
38046
38047
38048
38049
38050
38051
38052
38053
38054
38055
38056
38057
38058
38059
38060
38061
38062
38063
38064
38065
38066
38067
38068
38069
38070
38071
38072
38073
38074
38075
38076
38077
38078
38079
38080
38081
38082
38083
38084
38085
38086
38087
38088
38089
38090
38091
38092
38093
38094
38095
38096
38097
38098
38099
38100
38101
38102
38103
38104
38105
38106
38107
38108
38109
38110
38111
38112
38113
38114
38115
38116
38117
38118
38119
38120
38121
38122
38123
38124
38125
38126
38127
38128
38129
38130
38131
38132
38133
38134
38135
38136
38137
38138
38139
38140
38141
38142
38143
38144
38145
38146
38147
38148
38149
38150
38151
38152
38153
38154
38155
38156
38157
38158
38159
38160
38161
38162
38163
38164
38165
38166
38167
38168
38169
38170
38171
38172
38173
38174
38175
38176
38177
38178
38179
38180
38181
38182
38183
38184
38185
38186
38187
38188
38189
38190
38191
38192
38193
38194
38195
38196
38197
38198
38199
38200
38201
38202
38203
38204
38205
38206
38207
38208
38209
38210
38211
38212
38213
38214
38215
38216
38217
38218
38219
38220
38221
38222
38223
38224
38225
38226
38227
38228
38229
38230
38231
38232
38233
38234
38235
38236
38237
38238
38239
38240
38241
38242
38243
38244
38245
38246
38247
38248
38249
38250
38251
38252
38253
38254
38255
38256
38257
38258
38259
38260
38261
38262
38263
38264
38265
38266
38267
38268
38269
38270
38271
38272
38273
38274
38275
38276
38277
38278
38279
38280
38281
38282
38283
38284
38285
38286
38287
38288
38289
38290
38291
38292
38293
38294
38295
38296
38297
38298
38299
38300
38301
38302
38303
38304
38305
38306
38307
38308
38309
38310
38311
38312
38313
38314
38315
38316
38317
38318
38319
38320
38321
38322
38323
38324
38325
38326
38327
38328
38329
38330
38331
38332
38333
38334
38335
38336
38337
38338
38339
38340
38341
38342
38343
38344
38345
38346
38347
38348
38349
38350
38351
38352
38353
38354
38355
38356
38357
38358
38359
38360
38361
38362
38363
38364
38365
38366
38367
38368
38369
38370
38371
38372
38373
38374
38375
38376
38377
38378
38379
38380
38381
38382
38383
38384
38385
38386
38387
38388
38389
38390
38391
38392
38393
38394
38395
38396
38397
38398
38399
38400
38401
38402
38403
38404
38405
38406
38407
38408
38409
38410
38411
38412
38413
38414
38415
38416
38417
38418
38419
38420
38421
38422
38423
38424
38425
38426
38427
38428
38429
38430
38431
38432
38433
38434
38435
38436
38437
38438
38439
38440
38441
38442
38443
38444
38445
38446
38447
38448
38449
38450
38451
38452
38453
38454
38455
38456
38457
38458
38459
38460
38461
38462
38463
38464
38465
38466
38467
38468
38469
38470
38471
38472
38473
38474
38475
38476
38477
38478
38479
38480
38481
38482
38483
38484
38485
38486
38487
38488
38489
38490
38491
38492
38493
38494
38495
38496
38497
38498
38499
38500
38501
38502
38503
38504
38505
38506
38507
38508
38509
38510
38511
38512
38513
38514
38515
38516
38517
38518
38519
38520
38521
38522
38523
38524
38525
38526
38527
38528
38529
38530
38531
38532
38533
38534
38535
38536
38537
38538
38539
38540
38541
38542
38543
38544
38545
38546
38547
38548
38549
38550
38551
38552
38553
38554
38555
38556
38557
38558
38559
38560
38561
38562
38563
38564
38565
38566
38567
38568
38569
38570
38571
38572
38573
38574
38575
38576
38577
38578
38579
38580
38581
38582
38583
38584
38585
38586
38587
38588
38589
38590
38591
38592
38593
38594
38595
38596
38597
38598
38599
38600
38601
38602
38603
38604
38605
38606
38607
38608
38609
38610
38611
38612
38613
38614
38615
38616
38617
38618
38619
38620
38621
38622
38623
38624
38625
38626
38627
38628
38629
38630
38631
38632
38633
38634
38635
38636
38637
38638
38639
38640
38641
38642
38643
38644
38645
38646
38647
38648
38649
38650
38651
38652
38653
38654
38655
38656
38657
38658
38659
38660
38661
38662
38663
38664
38665
38666
38667
38668
38669
38670
38671
38672
38673
38674
38675
38676
38677
38678
38679
38680
38681
38682
38683
38684
38685
38686
38687
38688
38689
38690
38691
38692
38693
38694
38695
38696
38697
38698
38699
38700
38701
38702
38703
38704
38705
38706
38707
38708
38709
38710
38711
38712
38713
38714
38715
38716
38717
38718
38719
38720
38721
38722
38723
38724
38725
38726
38727
38728
38729
38730
38731
38732
38733
38734
38735
38736
38737
38738
38739
38740
38741
38742
38743
38744
38745
38746
38747
38748
38749
38750
38751
38752
38753
38754
38755
38756
38757
38758
38759
38760
38761
38762
38763
38764
38765
38766
38767
38768
38769
38770
38771
38772
38773
38774
38775
38776
38777
38778
38779
38780
38781
38782
38783
38784
38785
38786
38787
38788
38789
38790
38791
38792
38793
38794
38795
38796
38797
38798
38799
38800
38801
38802
38803
38804
38805
38806
38807
38808
38809
38810
38811
38812
38813
38814
38815
38816
38817
38818
38819
38820
38821
38822
38823
38824
38825
38826
38827
38828
38829
38830
38831
38832
38833
38834
38835
38836
38837
38838
38839
38840
38841
38842
38843
38844
38845
38846
38847
38848
38849
38850
38851
38852
38853
38854
38855
38856
38857
38858
38859
38860
38861
38862
38863
38864
38865
38866
38867
38868
38869
38870
38871
38872
38873
38874
38875
38876
38877
38878
38879
38880
38881
38882
38883
38884
38885
38886
38887
38888
38889
38890
38891
38892
38893
38894
38895
38896
38897
38898
38899
38900
38901
38902
38903
38904
38905
38906
38907
38908
38909
38910
38911
38912
38913
38914
38915
38916
38917
38918
38919
38920
38921
38922
38923
38924
38925
38926
38927
38928
38929
38930
38931
38932
38933
38934
38935
38936
38937
38938
38939
38940
38941
38942
38943
38944
38945
38946
38947
38948
38949
38950
38951
38952
38953
38954
38955
38956
38957
38958
38959
38960
38961
38962
38963
38964
38965
38966
38967
38968
38969
38970
38971
38972
38973
38974
38975
38976
38977
38978
38979
38980
38981
38982
38983
38984
38985
38986
38987
38988
38989
38990
38991
38992
38993
38994
38995
38996
38997
38998
38999
39000
39001
39002
39003
39004
39005
39006
39007
39008
39009
39010
39011
39012
39013
39014
39015
39016
39017
39018
39019
39020
39021
39022
39023
39024
39025
39026
39027
39028
39029
39030
39031
39032
39033
39034
39035
39036
39037
39038
39039
39040
39041
39042
39043
39044
39045
39046
39047
39048
39049
39050
39051
39052
39053
39054
39055
39056
39057
39058
39059
39060
39061
39062
39063
39064
39065
39066
39067
39068
39069
39070
39071
39072
39073
39074
39075
39076
39077
39078
39079
39080
39081
39082
39083
39084
39085
39086
39087
39088
39089
39090
39091
39092
39093
39094
39095
39096
39097
39098
39099
39100
39101
39102
39103
39104
39105
39106
39107
39108
39109
39110
39111
39112
39113
39114
39115
39116
39117
39118
39119
39120
39121
39122
39123
39124
39125
39126
39127
39128
39129
39130
39131
39132
39133
39134
39135
39136
39137
39138
39139
39140
39141
39142
39143
39144
39145
39146
39147
39148
39149
39150
39151
39152
39153
39154
39155
39156
39157
39158
39159
39160
39161
39162
39163
39164
39165
39166
39167
39168
39169
39170
39171
39172
39173
39174
39175
39176
39177
39178
39179
39180
39181
39182
39183
39184
39185
39186
39187
39188
39189
39190
39191
39192
39193
39194
39195
39196
39197
39198
39199
39200
39201
39202
39203
39204
39205
39206
39207
39208
39209
39210
39211
39212
39213
39214
39215
39216
39217
39218
39219
39220
39221
39222
39223
39224
39225
39226
39227
39228
39229
39230
39231
39232
39233
39234
39235
39236
39237
39238
39239
39240
39241
39242
39243
39244
39245
39246
39247
39248
39249
39250
39251
39252
39253
39254
39255
39256
39257
39258
39259
39260
39261
39262
39263
39264
39265
39266
39267
39268
39269
39270
39271
39272
39273
39274
39275
39276
39277
39278
39279
39280
39281
39282
39283
39284
39285
39286
39287
39288
39289
39290
39291
39292
39293
39294
39295
39296
39297
39298
39299
39300
39301
39302
39303
39304
39305
39306
39307
39308
39309
39310
39311
39312
39313
39314
39315
39316
39317
39318
39319
39320
39321
39322
39323
39324
39325
39326
39327
39328
39329
39330
39331
39332
39333
39334
39335
39336
39337
39338
39339
39340
39341
39342
39343
39344
39345
39346
39347
39348
39349
39350
39351
39352
39353
39354
39355
39356
39357
39358
39359
39360
39361
39362
39363
39364
39365
39366
39367
39368
39369
39370
39371
39372
39373
39374
39375
39376
39377
39378
39379
39380
39381
39382
39383
39384
39385
39386
39387
39388
39389
39390
39391
39392
39393
39394
39395
39396
39397
39398
39399
39400
39401
39402
39403
39404
39405
39406
39407
39408
39409
39410
39411
39412
39413
39414
39415
39416
39417
39418
39419
39420
39421
39422
39423
39424
39425
39426
39427
39428
39429
39430
39431
39432
39433
39434
39435
39436
39437
39438
39439
39440
39441
39442
39443
39444
39445
39446
39447
39448
39449
39450
39451
39452
39453
39454
39455
39456
39457
39458
39459
39460
39461
39462
39463
39464
39465
39466
39467
39468
39469
39470
39471
39472
39473
39474
39475
39476
39477
39478
39479
39480
39481
39482
39483
39484
39485
39486
39487
39488
39489
39490
39491
39492
39493
39494
39495
39496
39497
39498
39499
39500
39501
39502
39503
39504
39505
39506
39507
39508
39509
39510
39511
39512
39513
39514
39515
39516
39517
39518
39519
39520
39521
39522
39523
39524
39525
39526
39527
39528
39529
39530
39531
39532
39533
39534
39535
39536
39537
39538
39539
39540
39541
39542
39543
39544
39545
39546
39547
39548
39549
39550
39551
39552
39553
39554
39555
39556
39557
39558
39559
39560
39561
39562
39563
39564
39565
39566
39567
39568
39569
39570
39571
39572
39573
39574
39575
39576
39577
39578
39579
39580
39581
39582
39583
39584
39585
39586
39587
39588
39589
39590
39591
39592
39593
39594
39595
39596
39597
39598
39599
39600
39601
39602
39603
39604
39605
39606
39607
39608
39609
39610
39611
39612
39613
39614
39615
39616
39617
39618
39619
39620
39621
39622
39623
39624
39625
39626
39627
39628
39629
39630
39631
39632
39633
39634
39635
39636
39637
39638
39639
39640
39641
39642
39643
39644
39645
39646
39647
39648
39649
39650
39651
39652
39653
39654
39655
39656
39657
39658
39659
39660
39661
39662
39663
39664
39665
39666
39667
39668
39669
39670
39671
39672
39673
39674
39675
39676
39677
39678
39679
39680
39681
39682
39683
39684
39685
39686
39687
39688
39689
39690
39691
39692
39693
39694
39695
39696
39697
39698
39699
39700
39701
39702
39703
39704
39705
39706
39707
39708
39709
39710
39711
39712
39713
39714
39715
39716
39717
39718
39719
39720
39721
39722
39723
39724
39725
39726
39727
39728
39729
39730
39731
39732
39733
39734
39735
39736
39737
39738
39739
39740
39741
39742
39743
39744
39745
39746
39747
39748
39749
39750
39751
39752
39753
39754
39755
39756
39757
39758
39759
39760
39761
39762
39763
39764
39765
39766
39767
39768
39769
39770
39771
39772
39773
39774
39775
39776
39777
39778
39779
39780
39781
39782
39783
39784
39785
39786
39787
39788
39789
39790
39791
39792
39793
39794
39795
39796
39797
39798
39799
39800
39801
39802
39803
39804
39805
39806
39807
39808
39809
39810
39811
39812
39813
39814
39815
39816
39817
39818
39819
39820
39821
39822
39823
39824
39825
39826
39827
39828
39829
39830
39831
39832
39833
39834
39835
39836
39837
39838
39839
39840
39841
39842
39843
39844
39845
39846
39847
39848
39849
39850
39851
39852
39853
39854
39855
39856
39857
39858
39859
39860
39861
39862
39863
39864
39865
39866
39867
39868
39869
39870
39871
39872
39873
39874
39875
39876
39877
39878
39879
39880
39881
39882
39883
39884
39885
39886
39887
39888
39889
39890
39891
39892
39893
39894
39895
39896
39897
39898
39899
39900
39901
39902
39903
39904
39905
39906
39907
39908
39909
39910
39911
39912
39913
39914
39915
39916
39917
39918
39919
39920
39921
39922
39923
39924
39925
39926
39927
39928
39929
39930
39931
39932
39933
39934
39935
39936
39937
39938
39939
39940
39941
39942
39943
39944
39945
39946
39947
39948
39949
39950
39951
39952
39953
39954
39955
39956
39957
39958
39959
39960
39961
39962
39963
39964
39965
39966
39967
39968
39969
39970
39971
39972
39973
39974
39975
39976
39977
39978
39979
39980
39981
39982
39983
39984
39985
39986
39987
39988
39989
39990
39991
39992
39993
39994
39995
39996
39997
39998
39999
40000
40001
40002
40003
40004
40005
40006
40007
40008
40009
40010
40011
40012
40013
40014
40015
40016
40017
40018
40019
40020
40021
40022
40023
40024
40025
40026
40027
40028
40029
40030
40031
40032
40033
40034
40035
40036
40037
40038
40039
40040
40041
40042
40043
40044
40045
40046
40047
40048
40049
40050
40051
40052
40053
40054
40055
40056
40057
40058
40059
40060
40061
40062
40063
40064
40065
40066
40067
40068
40069
40070
40071
40072
40073
40074
40075
40076
40077
40078
40079
40080
40081
40082
40083
40084
40085
40086
40087
40088
40089
40090
40091
40092
40093
40094
40095
40096
40097
40098
40099
40100
40101
40102
40103
40104
40105
40106
40107
40108
40109
40110
40111
40112
40113
40114
40115
40116
40117
40118
40119
40120
40121
40122
40123
40124
40125
40126
40127
40128
40129
40130
40131
40132
40133
40134
40135
40136
40137
40138
40139
40140
40141
40142
40143
40144
40145
40146
40147
40148
40149
40150
40151
40152
40153
40154
40155
40156
40157
40158
40159
40160
40161
40162
40163
40164
40165
40166
40167
40168
40169
40170
40171
40172
40173
40174
40175
40176
40177
40178
40179
40180
40181
40182
40183
40184
40185
40186
40187
40188
40189
40190
40191
40192
40193
40194
40195
40196
40197
40198
40199
40200
40201
40202
40203
40204
40205
40206
40207
40208
40209
40210
40211
40212
40213
40214
40215
40216
40217
40218
40219
40220
40221
40222
40223
40224
40225
40226
40227
40228
40229
40230
40231
40232
40233
40234
40235
40236
40237
40238
40239
40240
40241
40242
40243
40244
40245
40246
40247
40248
40249
40250
40251
40252
40253
40254
40255
40256
40257
40258
40259
40260
40261
40262
40263
40264
40265
40266
40267
40268
40269
40270
40271
40272
40273
40274
40275
40276
40277
40278
40279
40280
40281
40282
40283
40284
40285
40286
40287
40288
40289
40290
40291
40292
40293
40294
40295
40296
40297
40298
40299
40300
40301
40302
40303
40304
40305
40306
40307
40308
40309
40310
40311
40312
40313
40314
40315
40316
40317
40318
40319
40320
40321
40322
40323
40324
40325
40326
40327
40328
40329
40330
40331
40332
40333
40334
40335
40336
40337
40338
40339
40340
40341
40342
40343
40344
40345
40346
40347
40348
40349
40350
40351
40352
40353
40354
40355
40356
40357
40358
40359
40360
40361
40362
40363
40364
40365
40366
40367
40368
40369
40370
40371
40372
40373
40374
40375
40376
40377
40378
40379
40380
40381
40382
40383
40384
40385
40386
40387
40388
40389
40390
40391
40392
40393
40394
40395
40396
40397
40398
40399
40400
40401
40402
40403
40404
40405
40406
40407
40408
40409
40410
40411
40412
40413
40414
40415
40416
40417
40418
40419
40420
40421
40422
40423
40424
40425
40426
40427
40428
40429
40430
40431
40432
40433
40434
40435
40436
40437
40438
40439
40440
40441
40442
40443
40444
40445
40446
40447
40448
40449
40450
40451
40452
40453
40454
40455
40456
40457
40458
40459
40460
40461
40462
40463
40464
40465
40466
40467
40468
40469
40470
40471
40472
40473
40474
40475
40476
40477
40478
40479
40480
40481
40482
40483
40484
40485
40486
40487
40488
40489
40490
40491
40492
40493
40494
40495
40496
40497
40498
40499
40500
40501
40502
40503
40504
40505
40506
40507
40508
40509
40510
40511
40512
40513
40514
40515
40516
40517
40518
40519
40520
40521
40522
40523
40524
40525
40526
40527
40528
40529
40530
40531
40532
40533
40534
40535
40536
40537
40538
40539
40540
40541
40542
40543
40544
40545
40546
40547
40548
40549
40550
40551
40552
40553
40554
40555
40556
40557
40558
40559
40560
40561
40562
40563
40564
40565
40566
40567
40568
40569
40570
40571
40572
40573
40574
40575
40576
40577
40578
40579
40580
40581
40582
40583
40584
40585
40586
40587
40588
40589
40590
40591
40592
40593
40594
40595
40596
40597
40598
40599
40600
40601
40602
40603
40604
40605
40606
40607
40608
40609
40610
40611
40612
40613
40614
40615
40616
40617
40618
40619
40620
40621
40622
40623
40624
40625
40626
40627
40628
40629
40630
40631
40632
40633
40634
40635
40636
40637
40638
40639
40640
40641
40642
40643
40644
40645
40646
40647
40648
40649
40650
40651
40652
40653
40654
40655
40656
40657
40658
40659
40660
40661
40662
40663
40664
40665
40666
40667
40668
40669
40670
40671
40672
40673
40674
40675
40676
40677
40678
40679
40680
40681
40682
40683
40684
40685
40686
40687
40688
40689
40690
40691
40692
40693
40694
40695
40696
40697
40698
40699
40700
40701
40702
40703
40704
40705
40706
40707
40708
40709
40710
40711
40712
40713
40714
40715
40716
40717
40718
40719
40720
40721
40722
40723
40724
40725
40726
40727
40728
40729
40730
40731
40732
40733
40734
40735
40736
40737
40738
40739
40740
40741
40742
40743
40744
40745
40746
40747
40748
40749
40750
40751
40752
40753
40754
40755
40756
40757
40758
40759
40760
40761
40762
40763
40764
40765
40766
40767
40768
40769
40770
40771
40772
40773
40774
40775
40776
40777
40778
40779
40780
40781
40782
40783
40784
40785
40786
40787
40788
40789
40790
40791
40792
40793
40794
40795
40796
40797
40798
40799
40800
40801
40802
40803
40804
40805
40806
40807
40808
40809
40810
40811
40812
40813
40814
40815
40816
40817
40818
40819
40820
40821
40822
40823
40824
40825
40826
40827
40828
40829
40830
40831
40832
40833
40834
40835
40836
40837
40838
40839
40840
40841
40842
40843
40844
40845
40846
40847
40848
40849
40850
40851
40852
40853
40854
40855
40856
40857
40858
40859
40860
40861
40862
40863
40864
40865
40866
40867
40868
40869
40870
40871
40872
40873
40874
40875
40876
40877
40878
40879
40880
40881
40882
40883
40884
40885
40886
40887
40888
40889
40890
40891
40892
40893
40894
40895
40896
40897
40898
40899
40900
40901
40902
40903
40904
40905
40906
40907
40908
40909
40910
40911
40912
40913
40914
40915
40916
40917
40918
40919
40920
40921
40922
40923
40924
40925
40926
40927
40928
40929
40930
40931
40932
40933
40934
40935
40936
40937
40938
40939
40940
40941
40942
40943
40944
40945
40946
40947
40948
40949
40950
40951
40952
40953
40954
40955
40956
40957
40958
40959
40960
40961
40962
40963
40964
40965
40966
40967
40968
40969
40970
40971
40972
40973
40974
40975
40976
40977
40978
40979
40980
40981
40982
40983
40984
40985
40986
40987
40988
40989
40990
40991
40992
40993
40994
40995
40996
40997
40998
40999
41000
41001
41002
41003
41004
41005
41006
41007
41008
41009
41010
41011
41012
41013
41014
41015
41016
41017
41018
41019
41020
41021
41022
41023
41024
41025
41026
41027
41028
41029
41030
41031
41032
41033
41034
41035
41036
41037
41038
41039
41040
41041
41042
41043
41044
41045
41046
41047
41048
41049
41050
41051
41052
41053
41054
41055
41056
41057
41058
41059
41060
41061
41062
41063
41064
41065
41066
41067
41068
41069
41070
41071
41072
41073
41074
41075
41076
41077
41078
41079
41080
41081
41082
41083
41084
41085
41086
41087
41088
41089
41090
41091
41092
41093
41094
41095
41096
41097
41098
41099
41100
41101
41102
41103
41104
41105
41106
41107
41108
41109
41110
41111
41112
41113
41114
41115
41116
41117
41118
41119
41120
41121
41122
41123
41124
41125
41126
41127
41128
41129
41130
41131
41132
41133
41134
41135
41136
41137
41138
41139
41140
41141
41142
41143
41144
41145
41146
41147
41148
41149
41150
41151
41152
41153
41154
41155
41156
41157
41158
41159
41160
41161
41162
41163
41164
41165
41166
41167
41168
41169
41170
41171
41172
41173
41174
41175
41176
41177
41178
41179
41180
41181
41182
41183
41184
41185
41186
41187
41188
41189
41190
41191
41192
41193
41194
41195
41196
41197
41198
41199
41200
41201
41202
41203
41204
41205
41206
41207
41208
41209
41210
41211
41212
41213
41214
41215
41216
41217
41218
41219
41220
41221
41222
41223
41224
41225
41226
41227
41228
41229
41230
41231
41232
41233
41234
41235
41236
41237
41238
41239
41240
41241
41242
41243
41244
41245
41246
41247
41248
41249
41250
41251
41252
41253
41254
41255
41256
41257
41258
41259
41260
41261
41262
41263
41264
41265
41266
41267
41268
41269
41270
41271
41272
41273
41274
41275
41276
41277
41278
41279
41280
41281
41282
41283
41284
41285
41286
41287
41288
41289
41290
41291
41292
41293
41294
41295
41296
41297
41298
41299
41300
41301
41302
41303
41304
41305
41306
41307
41308
41309
41310
41311
41312
41313
41314
41315
41316
41317
41318
41319
41320
41321
41322
41323
41324
41325
41326
41327
41328
41329
41330
41331
41332
41333
41334
41335
41336
41337
41338
41339
41340
41341
41342
41343
41344
41345
41346
41347
41348
41349
41350
41351
41352
41353
41354
41355
41356
41357
41358
41359
41360
41361
41362
41363
41364
41365
41366
41367
41368
41369
41370
41371
41372
41373
41374
41375
41376
41377
41378
41379
41380
41381
41382
41383
41384
41385
41386
41387
41388
41389
41390
41391
41392
41393
41394
41395
41396
41397
41398
41399
41400
41401
41402
41403
41404
41405
41406
41407
41408
41409
41410
41411
41412
41413
41414
41415
41416
41417
41418
41419
41420
41421
41422
41423
41424
41425
41426
41427
41428
41429
41430
41431
41432
41433
41434
41435
41436
41437
41438
41439
41440
41441
41442
41443
41444
41445
41446
41447
41448
41449
41450
41451
41452
41453
41454
41455
41456
41457
41458
41459
41460
41461
41462
41463
41464
41465
41466
41467
41468
41469
41470
41471
41472
41473
41474
41475
41476
41477
41478
41479
41480
41481
41482
41483
41484
41485
41486
41487
41488
41489
41490
41491
41492
41493
41494
41495
41496
41497
41498
41499
41500
41501
41502
41503
41504
41505
41506
41507
41508
41509
41510
41511
41512
41513
41514
41515
41516
41517
41518
41519
41520
41521
41522
41523
41524
41525
41526
41527
41528
41529
41530
41531
41532
41533
41534
41535
41536
41537
41538
41539
41540
41541
41542
41543
41544
41545
41546
41547
41548
41549
41550
41551
41552
41553
41554
41555
41556
41557
41558
41559
41560
41561
41562
41563
41564
41565
41566
41567
41568
41569
41570
41571
41572
41573
41574
41575
41576
41577
41578
41579
41580
41581
41582
41583
41584
41585
41586
41587
41588
41589
41590
41591
41592
41593
41594
41595
41596
41597
41598
41599
41600
41601
41602
41603
41604
41605
41606
41607
41608
41609
41610
41611
41612
41613
41614
41615
41616
41617
41618
41619
41620
41621
41622
41623
41624
41625
41626
41627
41628
41629
41630
41631
41632
41633
41634
41635
41636
41637
41638
41639
41640
41641
41642
41643
41644
41645
41646
41647
41648
41649
41650
41651
41652
41653
41654
41655
41656
41657
41658
41659
41660
41661
41662
41663
41664
41665
41666
41667
41668
41669
41670
41671
41672
41673
41674
41675
41676
41677
41678
41679
41680
41681
41682
41683
41684
41685
41686
41687
41688
41689
41690
41691
41692
41693
41694
41695
41696
41697
41698
41699
41700
41701
41702
41703
41704
41705
41706
41707
41708
41709
41710
41711
41712
41713
41714
41715
41716
41717
41718
41719
41720
41721
41722
41723
41724
41725
41726
41727
41728
41729
41730
41731
41732
41733
41734
41735
41736
41737
41738
41739
41740
41741
41742
41743
41744
41745
41746
41747
41748
41749
41750
41751
41752
41753
41754
41755
41756
41757
41758
41759
41760
41761
41762
41763
41764
41765
41766
41767
41768
41769
41770
41771
41772
41773
41774
41775
41776
41777
41778
41779
41780
41781
41782
41783
41784
41785
41786
41787
41788
41789
41790
41791
41792
41793
41794
41795
41796
41797
41798
41799
41800
41801
41802
41803
41804
41805
41806
41807
41808
41809
41810
41811
41812
41813
41814
41815
41816
41817
41818
41819
41820
41821
41822
41823
41824
41825
41826
41827
41828
41829
41830
41831
41832
41833
41834
41835
41836
41837
41838
41839
41840
41841
41842
41843
41844
41845
41846
41847
41848
41849
41850
41851
41852
41853
41854
41855
41856
41857
41858
41859
41860
41861
41862
41863
41864
41865
41866
41867
41868
41869
41870
41871
41872
41873
41874
41875
41876
41877
41878
41879
41880
41881
41882
41883
41884
41885
41886
41887
41888
41889
41890
41891
41892
41893
41894
41895
41896
41897
41898
41899
41900
41901
41902
41903
41904
41905
41906
41907
41908
41909
41910
41911
41912
41913
41914
41915
41916
41917
41918
41919
41920
41921
41922
41923
41924
41925
41926
41927
41928
41929
41930
41931
41932
41933
41934
41935
41936
41937
41938
41939
41940
41941
41942
41943
41944
41945
41946
41947
41948
41949
41950
41951
41952
41953
41954
41955
41956
41957
41958
41959
41960
41961
41962
41963
41964
41965
41966
41967
41968
41969
41970
41971
41972
41973
41974
41975
41976
41977
41978
41979
41980
41981
41982
41983
41984
41985
41986
41987
41988
41989
41990
41991
41992
41993
41994
41995
41996
41997
41998
41999
42000
42001
42002
42003
42004
42005
42006
42007
42008
42009
42010
42011
42012
42013
42014
42015
42016
42017
42018
42019
42020
42021
42022
42023
42024
42025
42026
42027
42028
42029
42030
42031
42032
42033
42034
42035
42036
42037
42038
42039
42040
42041
42042
42043
42044
42045
42046
42047
42048
42049
42050
42051
42052
42053
42054
42055
42056
42057
42058
42059
42060
42061
42062
42063
42064
42065
42066
42067
42068
42069
42070
42071
42072
42073
42074
42075
42076
42077
42078
42079
42080
42081
42082
42083
42084
42085
42086
42087
42088
42089
42090
42091
42092
42093
42094
42095
42096
42097
42098
42099
42100
42101
42102
42103
42104
42105
42106
42107
42108
42109
42110
42111
42112
42113
42114
42115
42116
42117
42118
42119
42120
42121
42122
42123
42124
42125
42126
42127
42128
42129
42130
42131
42132
42133
42134
42135
42136
42137
42138
42139
42140
42141
42142
42143
42144
42145
42146
42147
42148
42149
42150
42151
42152
42153
42154
42155
42156
42157
42158
42159
42160
42161
42162
42163
42164
42165
42166
42167
42168
42169
42170
42171
42172
42173
42174
42175
42176
42177
42178
42179
42180
42181
42182
42183
42184
42185
42186
42187
42188
42189
42190
42191
42192
42193
42194
42195
42196
42197
42198
42199
42200
42201
42202
42203
42204
42205
42206
42207
42208
42209
42210
42211
42212
42213
42214
42215
42216
42217
42218
42219
42220
42221
42222
42223
42224
42225
42226
42227
42228
42229
42230
42231
42232
42233
42234
42235
42236
42237
42238
42239
42240
42241
42242
42243
42244
42245
42246
42247
42248
42249
42250
42251
42252
42253
42254
42255
42256
42257
42258
42259
42260
42261
42262
42263
42264
42265
42266
42267
42268
42269
42270
42271
42272
42273
42274
42275
42276
42277
42278
42279
42280
42281
42282
42283
42284
42285
42286
42287
42288
42289
42290
42291
42292
42293
42294
42295
42296
42297
42298
42299
42300
42301
42302
42303
42304
42305
42306
42307
42308
42309
42310
42311
42312
42313
42314
42315
42316
42317
42318
42319
42320
42321
42322
42323
42324
42325
42326
42327
42328
42329
42330
42331
42332
42333
42334
42335
42336
42337
42338
42339
42340
42341
42342
42343
42344
42345
42346
42347
42348
42349
42350
42351
42352
42353
42354
42355
42356
42357
42358
42359
42360
42361
42362
42363
42364
42365
42366
42367
42368
42369
42370
42371
42372
42373
42374
42375
42376
42377
42378
42379
42380
42381
42382
42383
42384
42385
42386
42387
42388
42389
42390
42391
42392
42393
42394
42395
42396
42397
42398
42399
42400
42401
42402
42403
42404
42405
42406
42407
42408
42409
42410
42411
42412
42413
42414
42415
42416
42417
42418
42419
42420
42421
42422
42423
42424
42425
42426
42427
42428
42429
42430
42431
42432
42433
42434
42435
42436
42437
42438
42439
42440
42441
42442
42443
42444
42445
42446
42447
42448
42449
42450
42451
42452
42453
42454
42455
42456
42457
42458
42459
42460
42461
42462
42463
42464
42465
42466
42467
42468
42469
42470
42471
42472
42473
42474
42475
42476
42477
42478
42479
42480
42481
42482
42483
42484
42485
42486
42487
42488
42489
42490
42491
42492
42493
42494
42495
42496
42497
42498
42499
42500
42501
42502
42503
42504
42505
42506
42507
42508
42509
42510
42511
42512
42513
42514
42515
42516
42517
42518
42519
42520
42521
42522
42523
42524
42525
42526
42527
42528
42529
42530
42531
42532
42533
42534
42535
42536
42537
42538
42539
42540
42541
42542
42543
42544
42545
42546
42547
42548
42549
42550
42551
42552
42553
42554
42555
42556
42557
42558
42559
42560
42561
42562
42563
42564
42565
42566
42567
42568
42569
42570
42571
42572
42573
42574
42575
42576
42577
42578
42579
42580
42581
42582
42583
42584
42585
42586
42587
42588
42589
42590
42591
42592
42593
42594
42595
42596
42597
42598
42599
42600
42601
42602
42603
42604
42605
42606
42607
42608
42609
42610
42611
42612
42613
42614
42615
42616
42617
42618
42619
42620
42621
42622
42623
42624
42625
42626
42627
42628
42629
42630
42631
42632
42633
42634
42635
42636
42637
42638
42639
42640
42641
42642
42643
42644
42645
42646
42647
42648
42649
42650
42651
42652
42653
42654
42655
42656
42657
42658
42659
42660
42661
42662
42663
42664
42665
42666
42667
42668
42669
42670
42671
42672
42673
42674
42675
42676
42677
42678
42679
42680
42681
42682
42683
42684
42685
42686
42687
42688
42689
42690
42691
42692
42693
42694
42695
42696
42697
42698
42699
42700
42701
42702
42703
42704
42705
42706
42707
42708
42709
42710
42711
42712
42713
42714
42715
42716
42717
42718
42719
42720
42721
42722
42723
42724
42725
42726
42727
42728
42729
42730
42731
42732
42733
42734
42735
42736
42737
42738
42739
42740
42741
42742
42743
42744
42745
42746
42747
42748
42749
42750
42751
42752
42753
42754
42755
42756
42757
42758
42759
42760
42761
42762
42763
42764
42765
42766
42767
42768
42769
42770
42771
42772
42773
42774
42775
42776
42777
42778
42779
42780
42781
42782
42783
42784
42785
42786
42787
42788
42789
42790
42791
42792
42793
42794
42795
42796
42797
42798
42799
42800
42801
42802
42803
42804
42805
42806
42807
42808
42809
42810
42811
42812
42813
42814
42815
42816
42817
42818
42819
42820
42821
42822
42823
42824
42825
42826
42827
42828
42829
42830
42831
42832
42833
42834
42835
42836
42837
42838
42839
42840
42841
42842
42843
42844
42845
42846
42847
42848
42849
42850
42851
42852
42853
42854
42855
42856
42857
42858
42859
42860
42861
42862
42863
42864
42865
42866
42867
42868
42869
42870
42871
42872
42873
42874
42875
42876
42877
42878
42879
42880
42881
42882
42883
42884
42885
42886
42887
42888
42889
42890
42891
42892
42893
42894
42895
42896
42897
42898
42899
42900
42901
42902
42903
42904
42905
42906
42907
42908
42909
42910
42911
42912
42913
42914
42915
42916
42917
42918
42919
42920
42921
42922
42923
42924
42925
42926
42927
42928
42929
42930
42931
42932
42933
42934
42935
42936
42937
42938
42939
42940
42941
42942
42943
42944
42945
42946
42947
42948
42949
42950
42951
42952
42953
42954
42955
42956
42957
42958
42959
42960
42961
42962
42963
42964
42965
42966
42967
42968
42969
42970
42971
42972
42973
42974
42975
42976
42977
42978
42979
42980
42981
42982
42983
42984
42985
42986
42987
42988
42989
42990
42991
42992
42993
42994
42995
42996
42997
42998
42999
43000
43001
43002
43003
43004
43005
43006
43007
43008
43009
43010
43011
43012
43013
43014
43015
43016
43017
43018
43019
43020
43021
43022
43023
43024
43025
43026
43027
43028
43029
43030
43031
43032
43033
43034
43035
43036
43037
43038
43039
43040
43041
43042
43043
43044
43045
43046
43047
43048
43049
43050
43051
43052
43053
43054
43055
43056
43057
43058
43059
43060
43061
43062
43063
43064
43065
43066
43067
43068
43069
43070
43071
43072
43073
43074
43075
43076
43077
43078
43079
43080
43081
43082
43083
43084
43085
43086
43087
43088
43089
43090
43091
43092
43093
43094
43095
43096
43097
43098
43099
43100
43101
43102
43103
43104
43105
43106
43107
43108
43109
43110
43111
43112
43113
43114
43115
43116
43117
43118
43119
43120
43121
43122
43123
43124
43125
43126
43127
43128
43129
43130
43131
43132
43133
43134
43135
43136
43137
43138
43139
43140
43141
43142
43143
43144
43145
43146
43147
43148
43149
43150
43151
43152
43153
43154
43155
43156
43157
43158
43159
43160
43161
43162
43163
43164
43165
43166
43167
43168
43169
43170
43171
43172
43173
43174
43175
43176
43177
43178
43179
43180
43181
43182
43183
43184
43185
43186
43187
43188
43189
43190
43191
43192
43193
43194
43195
43196
43197
43198
43199
43200
43201
43202
43203
43204
43205
43206
43207
43208
43209
43210
43211
43212
43213
43214
43215
43216
43217
43218
43219
43220
43221
43222
43223
43224
43225
43226
43227
43228
43229
43230
43231
43232
43233
43234
43235
43236
43237
43238
43239
43240
43241
43242
43243
43244
43245
43246
43247
43248
43249
43250
43251
43252
43253
43254
43255
43256
43257
43258
43259
43260
43261
43262
43263
43264
43265
43266
43267
43268
43269
43270
43271
43272
43273
43274
43275
43276
43277
43278
43279
43280
43281
43282
43283
43284
43285
43286
43287
43288
43289
43290
43291
43292
43293
43294
43295
43296
43297
43298
43299
43300
43301
43302
43303
43304
43305
43306
43307
43308
43309
43310
43311
43312
43313
43314
43315
43316
43317
43318
43319
43320
43321
43322
43323
43324
43325
43326
43327
43328
43329
43330
43331
43332
43333
43334
43335
43336
43337
43338
43339
43340
43341
43342
43343
43344
43345
43346
43347
43348
43349
43350
43351
43352
43353
43354
43355
43356
43357
43358
43359
43360
43361
43362
43363
43364
43365
43366
43367
43368
43369
43370
43371
43372
43373
43374
43375
43376
43377
43378
43379
43380
43381
43382
43383
43384
43385
43386
43387
43388
43389
43390
43391
43392
43393
43394
43395
43396
43397
43398
43399
43400
43401
43402
43403
43404
43405
43406
43407
43408
43409
43410
43411
43412
43413
43414
43415
43416
43417
43418
43419
43420
43421
43422
43423
43424
43425
43426
43427
43428
43429
43430
43431
43432
43433
43434
43435
43436
43437
43438
43439
43440
43441
43442
43443
43444
43445
43446
43447
43448
43449
43450
43451
43452
43453
43454
43455
43456
43457
43458
43459
43460
43461
43462
43463
43464
43465
43466
43467
43468
43469
43470
43471
43472
43473
43474
43475
43476
43477
43478
43479
43480
43481
43482
43483
43484
43485
43486
43487
43488
43489
43490
43491
43492
43493
43494
43495
43496
43497
43498
43499
43500
43501
43502
43503
43504
43505
43506
43507
43508
43509
43510
43511
43512
43513
43514
43515
43516
43517
43518
43519
43520
43521
43522
43523
43524
43525
43526
43527
43528
43529
43530
43531
43532
43533
43534
43535
43536
43537
43538
43539
43540
43541
43542
43543
43544
43545
43546
43547
43548
43549
43550
43551
43552
43553
43554
43555
43556
43557
43558
43559
43560
43561
43562
43563
43564
43565
43566
43567
43568
43569
43570
43571
43572
43573
43574
43575
43576
43577
43578
43579
43580
43581
43582
43583
43584
43585
43586
43587
43588
43589
43590
43591
43592
43593
43594
43595
43596
43597
43598
43599
43600
43601
43602
43603
43604
43605
43606
43607
43608
43609
43610
43611
43612
43613
43614
43615
43616
43617
43618
43619
43620
43621
43622
43623
43624
43625
43626
43627
43628
43629
43630
43631
43632
43633
43634
43635
43636
43637
43638
43639
43640
43641
43642
43643
43644
43645
43646
43647
43648
43649
43650
43651
43652
43653
43654
43655
43656
43657
43658
43659
43660
43661
43662
43663
43664
43665
43666
43667
43668
43669
43670
43671
43672
43673
43674
43675
43676
43677
43678
43679
43680
43681
43682
43683
43684
43685
43686
43687
43688
43689
43690
43691
43692
43693
43694
43695
43696
43697
43698
43699
43700
43701
43702
43703
43704
43705
43706
43707
43708
43709
43710
43711
43712
43713
43714
43715
43716
43717
43718
43719
43720
43721
43722
43723
43724
43725
43726
43727
43728
43729
43730
43731
43732
43733
43734
43735
43736
43737
43738
43739
43740
43741
43742
43743
43744
43745
43746
43747
43748
43749
43750
43751
43752
43753
43754
43755
43756
43757
43758
43759
43760
43761
43762
43763
43764
43765
43766
43767
43768
43769
43770
43771
43772
43773
43774
43775
43776
43777
43778
43779
43780
43781
43782
43783
43784
43785
43786
43787
43788
43789
43790
43791
43792
43793
43794
43795
43796
43797
43798
43799
43800
43801
43802
43803
43804
43805
43806
43807
43808
43809
43810
43811
43812
43813
43814
43815
43816
43817
43818
43819
43820
43821
43822
43823
43824
43825
43826
43827
43828
43829
43830
43831
43832
43833
43834
43835
43836
43837
43838
43839
43840
43841
43842
43843
43844
43845
43846
43847
43848
43849
43850
43851
43852
43853
43854
43855
43856
43857
43858
43859
43860
43861
43862
43863
43864
43865
43866
43867
43868
43869
43870
43871
43872
43873
43874
43875
43876
43877
43878
43879
43880
43881
43882
43883
43884
43885
43886
43887
43888
43889
43890
43891
43892
43893
43894
43895
43896
43897
43898
43899
43900
43901
43902
43903
43904
43905
43906
43907
43908
43909
43910
43911
43912
43913
43914
43915
43916
43917
43918
43919
43920
43921
43922
43923
43924
43925
43926
43927
43928
43929
43930
43931
43932
43933
43934
43935
43936
43937
43938
43939
43940
43941
43942
43943
43944
43945
43946
43947
43948
43949
43950
43951
43952
43953
43954
43955
43956
43957
43958
43959
43960
43961
43962
43963
43964
43965
43966
43967
43968
43969
43970
43971
43972
43973
43974
43975
43976
43977
43978
43979
43980
43981
43982
43983
43984
43985
43986
43987
43988
43989
43990
43991
43992
43993
43994
43995
43996
43997
43998
43999
44000
44001
44002
44003
44004
44005
44006
44007
44008
44009
44010
44011
44012
44013
44014
44015
44016
44017
44018
44019
44020
44021
44022
44023
44024
44025
44026
44027
44028
44029
44030
44031
44032
44033
44034
44035
44036
44037
44038
44039
44040
44041
44042
44043
44044
44045
44046
44047
44048
44049
44050
44051
44052
44053
44054
44055
44056
44057
44058
44059
44060
44061
44062
44063
44064
44065
44066
44067
44068
44069
44070
44071
44072
44073
44074
44075
44076
44077
44078
44079
44080
44081
44082
44083
44084
44085
44086
44087
44088
44089
44090
44091
44092
44093
44094
44095
44096
44097
44098
44099
44100
44101
44102
44103
44104
44105
44106
44107
44108
44109
44110
44111
44112
44113
44114
44115
44116
44117
44118
44119
44120
44121
44122
44123
44124
44125
44126
44127
44128
44129
44130
44131
44132
44133
44134
44135
44136
44137
44138
44139
44140
44141
44142
44143
44144
44145
44146
44147
44148
44149
44150
44151
44152
44153
44154
44155
44156
44157
44158
44159
44160
44161
44162
44163
44164
44165
44166
44167
44168
44169
44170
44171
44172
44173
44174
44175
44176
44177
44178
44179
44180
44181
44182
44183
44184
44185
44186
44187
44188
44189
44190
44191
44192
44193
44194
44195
44196
44197
44198
44199
44200
44201
44202
44203
44204
44205
44206
44207
44208
44209
44210
44211
44212
44213
44214
44215
44216
44217
44218
44219
44220
44221
44222
44223
44224
44225
44226
44227
44228
44229
44230
44231
44232
44233
44234
44235
44236
44237
44238
44239
44240
44241
44242
44243
44244
44245
44246
44247
44248
44249
44250
44251
44252
44253
44254
44255
44256
44257
44258
44259
44260
44261
44262
44263
44264
44265
44266
44267
44268
44269
44270
44271
44272
44273
44274
44275
44276
44277
44278
44279
44280
44281
44282
44283
44284
44285
44286
44287
44288
44289
44290
44291
44292
44293
44294
44295
44296
44297
44298
44299
44300
44301
44302
44303
44304
44305
44306
44307
44308
44309
44310
44311
44312
44313
44314
44315
44316
44317
44318
44319
44320
44321
44322
44323
44324
44325
44326
44327
44328
44329
44330
44331
44332
44333
44334
44335
44336
44337
44338
44339
44340
44341
44342
44343
44344
44345
44346
44347
44348
44349
44350
44351
44352
44353
44354
44355
44356
44357
44358
44359
44360
44361
44362
44363
44364
44365
44366
44367
44368
44369
44370
44371
44372
44373
44374
44375
44376
44377
44378
44379
44380
44381
44382
44383
44384
44385
44386
44387
44388
44389
44390
44391
44392
44393
44394
44395
44396
44397
44398
44399
44400
44401
44402
44403
44404
44405
44406
44407
44408
44409
44410
44411
44412
44413
44414
44415
44416
44417
44418
44419
44420
44421
44422
44423
44424
44425
44426
44427
44428
44429
44430
44431
44432
44433
44434
44435
44436
44437
44438
44439
44440
44441
44442
44443
44444
44445
44446
44447
44448
44449
44450
44451
44452
44453
44454
44455
44456
44457
44458
44459
44460
44461
44462
44463
44464
44465
44466
44467
44468
44469
44470
44471
44472
44473
44474
44475
44476
44477
44478
44479
44480
44481
44482
44483
44484
44485
44486
44487
44488
44489
44490
44491
44492
44493
44494
44495
44496
44497
44498
44499
44500
44501
44502
44503
44504
44505
44506
44507
44508
44509
44510
44511
44512
44513
44514
44515
44516
44517
44518
44519
44520
44521
44522
44523
44524
44525
44526
44527
44528
44529
44530
44531
44532
44533
44534
44535
44536
44537
44538
44539
44540
44541
44542
44543
44544
44545
44546
44547
44548
44549
44550
44551
44552
44553
44554
44555
44556
44557
44558
44559
44560
44561
44562
44563
44564
44565
44566
44567
44568
44569
44570
44571
44572
44573
44574
44575
44576
44577
44578
44579
44580
44581
44582
44583
44584
44585
44586
44587
44588
44589
44590
44591
44592
44593
44594
44595
44596
44597
44598
44599
44600
44601
44602
44603
44604
44605
44606
44607
44608
44609
44610
44611
44612
44613
44614
44615
44616
44617
44618
44619
44620
44621
44622
44623
44624
44625
44626
44627
44628
44629
44630
44631
44632
44633
44634
44635
44636
44637
44638
44639
44640
44641
44642
44643
44644
44645
44646
44647
44648
44649
44650
44651
44652
44653
44654
44655
44656
44657
44658
44659
44660
44661
44662
44663
44664
44665
44666
44667
44668
44669
44670
44671
44672
44673
44674
44675
44676
44677
44678
44679
44680
44681
44682
44683
44684
44685
44686
44687
44688
44689
44690
44691
44692
44693
44694
44695
44696
44697
44698
44699
44700
44701
44702
44703
44704
44705
44706
44707
44708
44709
44710
44711
44712
44713
44714
44715
44716
44717
44718
44719
44720
44721
44722
44723
44724
44725
44726
44727
44728
44729
44730
44731
44732
44733
44734
44735
44736
44737
44738
44739
44740
44741
44742
44743
44744
44745
44746
44747
44748
44749
44750
44751
44752
44753
44754
44755
44756
44757
44758
44759
44760
44761
44762
44763
44764
44765
44766
44767
44768
44769
44770
44771
44772
44773
44774
44775
44776
44777
44778
44779
44780
44781
44782
44783
44784
44785
44786
44787
44788
44789
44790
44791
44792
44793
44794
44795
44796
44797
44798
44799
44800
44801
44802
44803
44804
44805
44806
44807
44808
44809
44810
44811
44812
44813
44814
44815
44816
44817
44818
44819
44820
44821
44822
44823
44824
44825
44826
44827
44828
44829
44830
44831
44832
44833
44834
44835
44836
44837
44838
44839
44840
44841
44842
44843
44844
44845
44846
44847
44848
44849
44850
44851
44852
44853
44854
44855
44856
44857
44858
44859
44860
44861
44862
44863
44864
44865
44866
44867
44868
44869
44870
44871
44872
44873
44874
44875
44876
44877
44878
44879
44880
44881
44882
44883
44884
44885
44886
44887
44888
44889
44890
44891
44892
44893
44894
44895
44896
44897
44898
44899
44900
44901
44902
44903
44904
44905
44906
44907
44908
44909
44910
44911
44912
44913
44914
44915
44916
44917
44918
44919
44920
44921
44922
44923
44924
44925
44926
44927
44928
44929
44930
44931
44932
44933
44934
44935
44936
44937
44938
44939
44940
44941
44942
44943
44944
44945
44946
44947
44948
44949
44950
44951
44952
44953
44954
44955
44956
44957
44958
44959
44960
44961
44962
44963
44964
44965
44966
44967
44968
44969
44970
44971
44972
44973
44974
44975
44976
44977
44978
44979
44980
44981
44982
44983
44984
44985
44986
44987
44988
44989
44990
44991
44992
44993
44994
44995
44996
44997
44998
44999
45000
45001
45002
45003
45004
45005
45006
45007
45008
45009
45010
45011
45012
45013
45014
45015
45016
45017
45018
45019
45020
45021
45022
45023
45024
45025
45026
45027
45028
45029
45030
45031
45032
45033
45034
45035
45036
45037
45038
45039
45040
45041
45042
45043
45044
45045
45046
45047
45048
45049
45050
45051
45052
45053
45054
45055
45056
45057
45058
45059
45060
45061
45062
45063
45064
45065
45066
45067
45068
45069
45070
45071
45072
45073
45074
45075
45076
45077
45078
45079
45080
45081
45082
45083
45084
45085
45086
45087
45088
45089
45090
45091
45092
45093
45094
45095
45096
45097
45098
45099
45100
45101
45102
45103
45104
45105
45106
45107
45108
45109
45110
45111
45112
45113
45114
45115
45116
45117
45118
45119
45120
45121
45122
45123
45124
45125
45126
45127
45128
45129
45130
45131
45132
45133
45134
45135
45136
45137
45138
45139
45140
45141
45142
45143
45144
45145
45146
45147
45148
45149
45150
45151
45152
45153
45154
45155
45156
45157
45158
45159
45160
45161
45162
45163
45164
45165
45166
45167
45168
45169
45170
45171
45172
45173
45174
45175
45176
45177
45178
45179
45180
45181
45182
45183
45184
45185
45186
45187
45188
45189
45190
45191
45192
45193
45194
45195
45196
45197
45198
45199
45200
45201
45202
45203
45204
45205
45206
45207
45208
45209
45210
45211
45212
45213
45214
45215
45216
45217
45218
45219
45220
45221
45222
45223
45224
45225
45226
45227
45228
45229
45230
45231
45232
45233
45234
45235
45236
45237
45238
45239
45240
45241
45242
45243
45244
45245
45246
45247
45248
45249
45250
45251
45252
45253
45254
45255
45256
45257
45258
45259
45260
45261
45262
45263
45264
45265
45266
45267
45268
45269
45270
45271
45272
45273
45274
45275
45276
45277
45278
45279
45280
45281
45282
45283
45284
45285
45286
45287
45288
45289
45290
45291
45292
45293
45294
45295
45296
45297
45298
45299
45300
45301
45302
45303
45304
45305
45306
45307
45308
45309
45310
45311
45312
45313
45314
45315
45316
45317
45318
45319
45320
45321
45322
45323
45324
45325
45326
45327
45328
45329
45330
45331
45332
45333
45334
45335
45336
45337
45338
45339
45340
45341
45342
45343
45344
45345
45346
45347
45348
45349
45350
45351
45352
45353
45354
45355
45356
45357
45358
45359
45360
45361
45362
45363
45364
45365
45366
45367
/*
 * Copyright (c) 2010-2021 The Linux Foundation. All rights reserved.
 * Copyright (c) 2021-2023 Qualcomm Innovation Center, Inc. All rights reserved.
 *
 * Previously licensed under the ISC license by Qualcomm Atheros, Inc.
 *
 *
 * Permission to use, copy, modify, and/or distribute this software for
 * any purpose with or without fee is hereby granted, provided that the
 * above copyright notice and this permission notice appear in all
 * copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
 * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
 * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
 * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
 * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
 * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
 * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
 * PERFORMANCE OF THIS SOFTWARE.
 */

/*
 * This file was originally distributed by Qualcomm Atheros, Inc.
 * under proprietary terms before Copyright ownership was assigned
 * to the Linux Foundation.
 */

/**
 * @addtogroup WMIAPI
 *@{
 */

/** @file
 * This file specifies the WMI interface for the  Software Architecture.
 *
 * It includes definitions of all the commands and events. Commands are messages
 * from the host to the target. Events and Replies are messages from the target
 * to the host.
 *
 * Ownership of correctness in regards to WMI commands
 * belongs to the host driver and the target is not required to validate
 * parameters for value, proper range, or any other checking.
 *
 * Guidelines for extending this interface are below.
 *
 * 1. Add new WMI commands ONLY within the specified range - 0x9000 - 0x9fff
 * 2. Use ONLY A_UINT32 type for defining member variables within WMI command/event
 *    structures. Do not use A_UINT8, A_UINT16, A_BOOL or enum types within these structures.
 * 3. DO NOT define bit fields within structures. Implement bit fields using masks
 *    if necessary. Do not use the programming language's bit field definition.
 * 4. Define macros for encode/decode of A_UINT8, A_UINT16 fields within the A_UINT32
 *    variables. Use these macros for set/get of these fields. Try to use this to
 *    optimize the structure without bloating it with A_UINT32 variables for every lower
 *    sized field.
 * 5. Do not use PACK/UNPACK attributes for the structures as each member variable is
 *    already 4-byte aligned by virtue of being a A_UINT32 type.
 * 6. Comment each parameter part of the WMI command/event structure by using the
 *    2 stars at the beginning of C comment instead of one star to enable HTML document
 *    generation using Doxygen.
 *
 */

#ifndef _WMI_UNIFIED_H_
#define _WMI_UNIFIED_H_


#ifdef __cplusplus
extern "C" {
#endif

#include <wlan_defs.h>
#include <wmi_services.h>
/*
 * Include the defs of vendor-specific messages (or possibly dummy defs
 * if there are no actual vendor-specific message defs).
 */
#include <wmi_unified_vendor.h>

#define ATH_MAC_LEN             6               /**< length of MAC in bytes */
#define WMI_EVENT_STATUS_SUCCESS 0 /* Success return status to host */
#define WMI_EVENT_STATUS_FAILURE 1 /* Failure return status to host */

#define MAX_TX_RATE_VALUES      10 /*Max Tx Rates*/
#define MAX_RSSI_VALUES         10 /*Max Rssi values*/
#define WMI_MAX_CHAINS 8
#define WMI_MAX_CHAINS_FOR_AOA_RCC 2
#define WMI_MAX_ADDRESS_SPACE   10

#define MAX_AOA_PHASEDELTA      31  /* 62 gain values */

#define MAX_20MHZ_SEGMENTS 16  /* 320 MHz / 20 MHz = 16 (20 MHz subbands) */

/* The WLAN_MAX_AC macro cannot be changed without breaking
   WMI compatibility. */
/* The maximum value of access category */
#define WLAN_MAX_AC  4

#define WMI_MAX_PN_LEN 8

/*
 * These don't necessarily belong here; but as the MS/SM macros require
 * ar6000_internal.h to be included, it may not be defined as yet.
 */
#define WMI_F_MS(_v, _f)                                            \
            (((_v) & (_f)) >> (_f##_S))

/*
 * This breaks the "good macro practice" of only referencing each
 * macro field once (to avoid things like field++ from causing issues.)
 */
#define WMI_F_RMW(_var, _v, _f)                                     \
            do {                                                    \
                (_var) &= ~(_f);                                    \
                (_var) |= (((_v) << (_f##_S)) & (_f));              \
            } while (0)

#define WMI_GET_BITS(_val,_index,_num_bits)                         \
    (((_val) >> (_index)) & (((A_UINT32) 1 << (_num_bits)) - 1))

#define WMI_SET_BITS(_var,_index,_num_bits,_val) do {                       \
    (_var) &= ~((((A_UINT32) 1 << (_num_bits)) - 1) << (_index));           \
    (_var) |= (((_val) & (((A_UINT32) 1 << (_num_bits)) - 1)) << (_index)); \
    } while (0)

#define WMI_APPEND_TWO_SET_BITS(var, lsb_index, lsb_num_bits, msb_index, msb_num_bits, val) \
    do { \
        WMI_SET_BITS(var, lsb_index, lsb_num_bits, val); \
        WMI_SET_BITS(var, msb_index, msb_num_bits, (val >> lsb_num_bits)); \
    } while(0)

#define WMI_APPEND_TWO_GET_BITS(var, lsb_index, lsb_num_bits, msb_index, msb_num_bits, val) \
    do { \
        (var) = WMI_GET_BITS(val, lsb_index, lsb_num_bits); \
        (var) |= (WMI_GET_BITS(val, msb_index, msb_num_bits) << lsb_num_bits); \
    } while(0)

/*
 * Below GET/SET BITS_ARRAY_LEN32_BYTES macros can be used when
 * reading/writing bits which are spread across array_len32 entries.
 * These can be used to GET/SET maximum of 32 bits only,
 * also array_len32 length should be limited to maximum of 32.
 */
#define WMI_GET_BITS_ARRAY_LEN32_BYTES(var, _arrayp, _index, _num_bits) \
    do { \
        A_UINT8 i; \
        for (i = 0; i < _num_bits; i++) { \
            (var) |= (WMI_GET_BITS(_arrayp[(_index+i) / 32], ((_index+i) % 32), 1) << i); \
        } \
    } while(0)

#define WMI_SET_BITS_ARRAY_LEN32_BYTES(_arrayp, _index, _num_bits, val) \
    do { \
        A_UINT8 i; \
        for (i = 0; i < _num_bits; i++) { \
            WMI_SET_BITS(_arrayp[(_index+i) / 32], ((_index+i) % 32), 1, (val >> i)); \
        } \
    } while(0)

/**
 * A packed array is an array where each entry in the array is less than
 * or equal to 16 bits, and the entries are stuffed into an A_UINT32 array.
 * For example, if each entry in the array is 11 bits, then you can stuff
 * an array of 4 11-bit values into an array of 2 A_UINT32 values.
 * The first 2 11-bit values will be stored in the first A_UINT32,
 * and the last 2 11-bit values will be stored in the second A_UINT32.
 */
#define WMI_PACKED_ARR_SIZE(num_entries,bits_per_entry) \
    (((num_entries) / (32 / (bits_per_entry))) +            \
    (((num_entries) % (32 / (bits_per_entry))) ? 1 : 0))

#define WMI_RETURN_STRING(str) case ((str)): return (A_UINT8 *)(# str);

static INLINE A_UINT32 wmi_packed_arr_get_bits(A_UINT32 *arr,
    A_UINT32 entry_index, A_UINT32 bits_per_entry)
{
    A_UINT32 entries_per_uint = (32 / bits_per_entry);
    A_UINT32 uint_index = (entry_index / entries_per_uint);
    A_UINT32 num_entries_in_prev_uints = (uint_index * entries_per_uint);
    A_UINT32 index_in_uint = (entry_index - num_entries_in_prev_uints);
    A_UINT32 start_bit_in_uint = (index_in_uint * bits_per_entry);
    return (arr[uint_index] >> start_bit_in_uint) &
            (((A_UINT32) 1 << bits_per_entry) - 1);
}

static INLINE void wmi_packed_arr_set_bits(A_UINT32 *arr, A_UINT32 entry_index,
    A_UINT32 bits_per_entry, A_UINT32 val)
{
    A_UINT32 entries_per_uint = (32 / bits_per_entry);
    A_UINT32 uint_index = (entry_index / entries_per_uint);
    A_UINT32 num_entries_in_prev_uints = (uint_index * entries_per_uint);
    A_UINT32 index_in_uint = (entry_index - num_entries_in_prev_uints);
    A_UINT32 start_bit_in_uint = (index_in_uint * bits_per_entry);

    arr[uint_index] &=
        ~((((A_UINT32) 1 << bits_per_entry) - 1) << start_bit_in_uint);
    arr[uint_index] |=
        ((val & (((A_UINT32) 1 << bits_per_entry) - 1)) << start_bit_in_uint);
}

/** 2 word representation of MAC addr */
typedef struct _wmi_mac_addr {
    /** upper 4 bytes of  MAC address */
    A_UINT32 mac_addr31to0;
    /** lower 2 bytes of  MAC address */
    A_UINT32 mac_addr47to32;
} wmi_mac_addr;

/** macro to convert MAC address from WMI word format to char array */
#define WMI_MAC_ADDR_TO_CHAR_ARRAY(pwmi_mac_addr,c_macaddr) do {        \
     (c_macaddr)[0] = (((pwmi_mac_addr)->mac_addr31to0)  >>  0) & 0xff; \
     (c_macaddr)[1] = (((pwmi_mac_addr)->mac_addr31to0)  >>  8) & 0xff; \
     (c_macaddr)[2] = (((pwmi_mac_addr)->mac_addr31to0)  >> 16) & 0xff; \
     (c_macaddr)[3] = (((pwmi_mac_addr)->mac_addr31to0)  >> 24) & 0xff; \
     (c_macaddr)[4] = (((pwmi_mac_addr)->mac_addr47to32) >>  0) & 0xff; \
     (c_macaddr)[5] = (((pwmi_mac_addr)->mac_addr47to32) >>  8) & 0xff; \
   } while (0)

/** macro to convert MAC address from char array to WMI word format */
#define WMI_CHAR_ARRAY_TO_MAC_ADDR(c_macaddr,pwmi_mac_addr)  do { \
    (pwmi_mac_addr)->mac_addr31to0 = \
       (((A_UINT32)(c_macaddr)[0] <<  0) | \
        ((A_UINT32)(c_macaddr)[1] <<  8) | \
        ((A_UINT32)(c_macaddr)[2] << 16) | \
        ((A_UINT32)(c_macaddr)[3] << 24)); \
    (pwmi_mac_addr)->mac_addr47to32 = ((c_macaddr)[4] | ((c_macaddr)[5] << 8));\
   } while (0)

/*
 * The below function declarations are for implementations on some
 * platforms of the above macros, but in function form, to save code
 * memory by avoiding macro-inlining of a non-trivial amount of code.
 * These function versions of the above macros may not be available
 * on all host and target platforms.
 */
void wmi_mac_addr_to_char_array(wmi_mac_addr *pwmi_mac_addr, A_UINT8 *c_macaddr);
void wmi_char_array_to_mac_addr(A_UINT8 *c_macaddr, wmi_mac_addr *pwmi_mac_addr);

/*
 * wmi command groups.
 */
typedef enum {
    /* 0 to 2 are reserved */
    WMI_GRP_START = 0x3,
    WMI_GRP_SCAN = WMI_GRP_START, /* 0x3 */
    WMI_GRP_PDEV,           /* 0x4 */
    WMI_GRP_VDEV,           /* 0x5 */
    WMI_GRP_PEER,           /* 0x6 */
    WMI_GRP_MGMT,           /* 0x7 */
    WMI_GRP_BA_NEG,         /* 0x8 */
    WMI_GRP_STA_PS,         /* 0x9 */
    WMI_GRP_DFS,            /* 0xa */
    WMI_GRP_ROAM,           /* 0xb */
    WMI_GRP_OFL_SCAN,       /* 0xc */
    WMI_GRP_P2P,            /* 0xd */
    WMI_GRP_AP_PS,          /* 0xe */
    WMI_GRP_RATE_CTRL,      /* 0xf */
    WMI_GRP_PROFILE,        /* 0x10 */
    WMI_GRP_SUSPEND,        /* 0x11 */
    WMI_GRP_BCN_FILTER,     /* 0x12 */
    WMI_GRP_WOW,            /* 0x13 */
    WMI_GRP_RTT,            /* 0x14 */
    WMI_GRP_SPECTRAL,       /* 0x15 */
    WMI_GRP_STATS,          /* 0x16 */
    WMI_GRP_ARP_NS_OFL,     /* 0x17 */
    WMI_GRP_NLO_OFL,        /* 0x18 */
    WMI_GRP_GTK_OFL,        /* 0x19 */
    WMI_GRP_CSA_OFL,        /* 0x1a */
    WMI_GRP_CHATTER,        /* 0x1b */
    WMI_GRP_TID_ADDBA,      /* 0x1c */
    WMI_GRP_MISC,           /* 0x1d */
    WMI_GRP_GPIO,           /* 0x1e */
    WMI_GRP_FWTEST,         /* 0x1f */
    WMI_GRP_TDLS,           /* 0x20 */
    WMI_GRP_RESMGR,         /* 0x21 */
    WMI_GRP_STA_SMPS,       /* 0x22 */
    WMI_GRP_WLAN_HB,        /* 0x23 */
    WMI_GRP_RMC,            /* 0x24 */
    WMI_GRP_MHF_OFL,        /* 0x25 */
    WMI_GRP_LOCATION_SCAN,  /* 0x26 */
    WMI_GRP_OEM,            /* 0x27 */
    WMI_GRP_NAN,            /* 0x28 */
    WMI_GRP_COEX,           /* 0x29 */
    WMI_GRP_OBSS_OFL,       /* 0x2a */
    WMI_GRP_LPI,            /* 0x2b */
    WMI_GRP_EXTSCAN,        /* 0x2c */
    WMI_GRP_DHCP_OFL,       /* 0x2d */
    WMI_GRP_IPA,            /* 0x2e */
    WMI_GRP_MDNS_OFL,       /* 0x2f */
    WMI_GRP_SAP_OFL,        /* 0x30 */
    WMI_GRP_OCB,            /* 0x31 */
    WMI_GRP_SOC,            /* 0x32 */
    WMI_GRP_PKT_FILTER,     /* 0x33 */
    WMI_GRP_MAWC,           /* 0x34 */
    WMI_GRP_PMF_OFFLOAD,    /* 0x35 */
    WMI_GRP_BPF_OFFLOAD,    /* 0x36 Berkeley Packet Filter */
    WMI_GRP_NAN_DATA,       /* 0x37 */
    WMI_GRP_PROTOTYPE,      /* 0x38 */
    WMI_GRP_MONITOR,        /* 0x39 */
    WMI_GRP_REGULATORY,     /* 0x3a */
    WMI_GRP_HW_DATA_FILTER, /* 0x3b */
    WMI_GRP_WLM,            /* 0x3c WLAN Latency Manager */
    WMI_GRP_11K_OFFLOAD,    /* 0x3d */
    WMI_GRP_TWT,            /* 0x3e TWT (Target Wake Time) for STA and AP */
    WMI_GRP_MOTION_DET,     /* 0x3f */
    WMI_GRP_SPATIAL_REUSE,  /* 0x40 */
    WMI_GRP_ESP,            /* 0x41 Estimate Service Parameters (802.11mc) */
    WMI_GRP_HPCS_PULSE,     /* 0x42 */
    WMI_GRP_AUDIO,          /* 0x43 */
    WMI_GRP_CFR_CAPTURE,    /* 0x44 */
    WMI_GRP_ATM,            /* 0x45 ATM (Air Time Management group) */
    WMI_GRP_VENDOR,         /* 0x46 vendor specific group */
    WMI_GRP_LATENCY,        /* 0x47 TID/AC level latency config */
    WMI_GRP_MLO,            /* 0x48 MLO(Multiple Link Operation) management */
    WMI_GRP_SAWF,           /* 0x49 SAWF (Service Aware WiFi) */
    WMI_GRP_QUIET_OFL,      /* 0x4a Quiet offloads */
    WMI_GRP_ODD,            /* 0x4b ODD */
    WMI_GRP_TDMA,           /* 0x4c TDMA */
    WMI_GRP_MANUAL_UL_TRIG  /* 0x4d Manual UL OFDMA Trigger */
} WMI_GRP_ID;

#define WMI_CMD_GRP_START_ID(grp_id) (((grp_id) << 12) | 0x1)
#define WMI_EVT_GRP_START_ID(grp_id) (((grp_id) << 12) | 0x1)

/**
 * Command IDs and commange events
 */
typedef enum {
    /** initialize the wlan sub system */
    WMI_INIT_CMDID = 0x1,

    /* Scan specific commands */

    /** start scan request to FW  */
    WMI_START_SCAN_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SCAN),
    /** stop scan request to FW  */
    WMI_STOP_SCAN_CMDID,
    /** full list of channels as defined by the regulatory that will be used by scanner   */
    WMI_SCAN_CHAN_LIST_CMDID,
    /** overwrite default priority table in scan scheduler   */
    WMI_SCAN_SCH_PRIO_TBL_CMDID,
    /** This command to adjust the priority and min.max_rest_time
     * of an on ongoing scan request.
     */
    WMI_SCAN_UPDATE_REQUEST_CMDID,

    /** set OUI to be used in probe request if enabled */
    WMI_SCAN_PROB_REQ_OUI_CMDID,
    /** config adaptive dwell scan */
    WMI_SCAN_ADAPTIVE_DWELL_CONFIG_CMDID,
    /** Only applicable to DBS capable product */
    WMI_SET_SCAN_DBS_DUTY_CYCLE_CMDID,

    /* PDEV(physical device) specific commands */
    /** set regulatorty ctl id used by FW to determine the exact ctl power limits */
    WMI_PDEV_SET_REGDOMAIN_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_PDEV),
    /** set channel. mainly used for supporting monitor mode */
    WMI_PDEV_SET_CHANNEL_CMDID,
    /** set pdev specific parameters */
    WMI_PDEV_SET_PARAM_CMDID,
    /** enable packet log */
    WMI_PDEV_PKTLOG_ENABLE_CMDID,
    /** disable packet log*/
    WMI_PDEV_PKTLOG_DISABLE_CMDID,
    /** set wmm parameters */
    WMI_PDEV_SET_WMM_PARAMS_CMDID,
    /** set HT cap ie that needs to be carried probe requests HT/VHT channels */
    WMI_PDEV_SET_HT_CAP_IE_CMDID,
    /** set VHT cap ie that needs to be carried on probe requests on VHT channels */
    WMI_PDEV_SET_VHT_CAP_IE_CMDID,

    /** Command to send the DSCP-to-TID map to the target */
    WMI_PDEV_SET_DSCP_TID_MAP_CMDID,
    /** set quiet ie parameters. primarily used in AP mode */
    WMI_PDEV_SET_QUIET_MODE_CMDID,
    /** Enable/Disable Green AP Power Save  */
    WMI_PDEV_GREEN_AP_PS_ENABLE_CMDID,
    /** get TPC config for the current operating channel */
    WMI_PDEV_GET_TPC_CONFIG_CMDID,

    /** set the base MAC address for the physical device before a VDEV is created.
     *  For firmware that doesn't support this feature and this command, the pdev
     *  MAC address will not be changed. */
    WMI_PDEV_SET_BASE_MACADDR_CMDID,

    /* eeprom content dump , the same to bdboard data */
    WMI_PDEV_DUMP_CMDID,
    /* set LED configuration  */
    WMI_PDEV_SET_LED_CONFIG_CMDID,
    /* Get Current temperature of chip in Celcius degree*/
    WMI_PDEV_GET_TEMPERATURE_CMDID,
    /* Set LED flashing behavior  */
    WMI_PDEV_SET_LED_FLASHING_CMDID,
    /** Enable/Disable Smart Antenna */
    WMI_PDEV_SMART_ANT_ENABLE_CMDID,
    /** Set Smart Antenna RX antenna*/
    WMI_PDEV_SMART_ANT_SET_RX_ANTENNA_CMDID,
    /** Override the antenna switch table */
    WMI_PDEV_SET_ANTENNA_SWITCH_TABLE_CMDID,
    /** Override the CTL table */
    WMI_PDEV_SET_CTL_TABLE_CMDID,
    /** Override the array gain table */
    WMI_PDEV_SET_MIMOGAIN_TABLE_CMDID,
    /** FIPS test mode command */
    WMI_PDEV_FIPS_CMDID,
    /** get CCK ANI level */
    WMI_PDEV_GET_ANI_CCK_CONFIG_CMDID,
    /** get OFDM ANI level */
    WMI_PDEV_GET_ANI_OFDM_CONFIG_CMDID,
    /** NF Cal Power dBr/dBm */
    WMI_PDEV_GET_NFCAL_POWER_CMDID,
    /** TxPPDU TPC */
    WMI_PDEV_GET_TPC_CMDID,
    /** Set to enable MIB stats collection */
    WMI_MIB_STATS_ENABLE_CMDID,
    /** Set preferred channel list for DBS Mgr */
    WMI_PDEV_SET_PCL_CMDID,
    /** Set HW mode. Eg: single MAC, DBS & SBS, see soc_hw_mode_t for values */
    WMI_PDEV_SET_HW_MODE_CMDID,
    /** Set DFS, SCAN modes and other FW configurations */
    WMI_PDEV_SET_MAC_CONFIG_CMDID,
    /** Set per band and per pdev antenna chains */
    WMI_PDEV_SET_ANTENNA_MODE_CMDID,
    /** Periodic channel stats request command */
    WMI_SET_PERIODIC_CHANNEL_STATS_CONFIG_CMDID,
    /** WMI command for power debug framework */
    WMI_PDEV_WAL_POWER_DEBUG_CMDID,
    /** set per-AC rx reorder timeouts */
    WMI_PDEV_SET_REORDER_TIMEOUT_VAL_CMDID,
    /** WMI command for WOW gpio and type */
    WMI_PDEV_SET_WAKEUP_CONFIG_CMDID,
    /* Get current ANT's per chain's RSSI info */
    WMI_PDEV_GET_ANTDIV_STATUS_CMDID,
    /** WMI command for getting Chip Power Stats */
    WMI_PDEV_GET_CHIP_POWER_STATS_CMDID,
    /** set stats reporting thresholds - see WMI_REPORT_STATS_EVENTID */
    WMI_PDEV_SET_STATS_THRESHOLD_CMDID,
    /** vdev restart request for multiple vdevs */
    WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID,
    /** Pdev update packet routing command */
    WMI_PDEV_UPDATE_PKT_ROUTING_CMDID,
    /** Get Calibration data version details */
    WMI_PDEV_CHECK_CAL_VERSION_CMDID,
    /** Set Diversity Gain */
    WMI_PDEV_SET_DIVERSITY_GAIN_CMDID,
    /** Get chain RSSI and antena index command */
    WMI_PDEV_DIV_GET_RSSI_ANTID_CMDID,
    /** get bss chan info */
    WMI_PDEV_BSS_CHAN_INFO_REQUEST_CMDID,
    /** update pmk cache info */
    WMI_PDEV_UPDATE_PMK_CACHE_CMDID,
    /**  update fils HLP */
    WMI_PDEV_UPDATE_FILS_HLP_PKT_CMDID,
    /** update ctltable request **/
    WMI_PDEV_UPDATE_CTLTABLE_REQUEST_CMDID,
    /** Command to set beacon OUI **/
    WMI_PDEV_CONFIG_VENDOR_OUI_ACTION_CMDID,
    /** enable/disable per-AC tx queue optimizations */
    WMI_PDEV_SET_AC_TX_QUEUE_OPTIMIZED_CMDID,
    /** enable/disable rx promiscuous mode */
    WMI_PDEV_SET_RX_FILTER_PROMISCUOUS_CMDID,
    /* set a generic direct DMA ring config */
    WMI_PDEV_DMA_RING_CFG_REQ_CMDID,
    /* enable/disable Action frame response as HE TB PPDU */
    WMI_PDEV_HE_TB_ACTION_FRM_CMDID,
    /** filter packet log based on MAC address */
    WMI_PDEV_PKTLOG_FILTER_CMDID,
    /** wmi command for setting rogue ap configuration */
    WMI_PDEV_SET_RAP_CONFIG_CMDID,
    /** Specify DSM filters along with disallow bssid filters */
    WMI_PDEV_DSM_FILTER_CMDID,
    /** enable/disable periodic frame injection */
    WMI_PDEV_FRAME_INJECT_CMDID,
    /*
     * Pdev level command to:
     * a) solicit @WMI_TBTTOFFSET_EXT_UPDATE_EVENTID having TBTT in qtime
     *    domain for all active vdevs or
     * b) update one pdevs tbtt offset to another pdev for use in
     *    RNR TBTT offset calculation.
     */
    WMI_PDEV_TBTT_OFFSET_SYNC_CMDID,
    /** Bss color bitmap for SRG based spatial reuse feature */
    WMI_PDEV_SET_SRG_BSS_COLOR_BITMAP_CMDID,
    /** Partial BSSID bitmap for SRG based spatial reuse feature */
    WMI_PDEV_SET_SRG_PARTIAL_BSSID_BITMAP_CMDID,
    /** OBSS color enable bitmap for SRG based spatial reuse feature */
    WMI_PDEV_SET_SRG_OBSS_COLOR_ENABLE_BITMAP_CMDID,
    /** OBSS BSSID enable bitmap for SRG based spatial reuse feature */
    WMI_PDEV_SET_SRG_OBSS_BSSID_ENABLE_BITMAP_CMDID,
    /** OBSS color enable bitmap for NON_SRG based spatial reuse feature */
    WMI_PDEV_SET_NON_SRG_OBSS_COLOR_ENABLE_BITMAP_CMDID,
    /** OBSS BSSID enable bitmap for NON_SRG based spatial reuse feature */
    WMI_PDEV_SET_NON_SRG_OBSS_BSSID_ENABLE_BITMAP_CMDID,
    /** TPC stats display command */
    WMI_PDEV_GET_TPC_STATS_CMDID,
    /** ENABLE/DISABLE Duration based tx mode selection */
    WMI_PDEV_ENABLE_DURATION_BASED_TX_MODE_SELECTION_CMDID,
    /* Get DPD status from HALPHY */
    WMI_PDEV_GET_DPD_STATUS_CMDID,
    /* Set bios sar table */
    WMI_PDEV_SET_BIOS_SAR_TABLE_CMDID,
    /* Set bios geo table */
    WMI_PDEV_SET_BIOS_GEO_TABLE_CMDID,
    /* Get Calibration status from HALPHY */
    WMI_PDEV_GET_HALPHY_CAL_STATUS_CMDID,
    /* Set HALPHY CAL bitmap */
    WMI_PDEV_SET_HALPHY_CAL_BMAP_CMDID,
    /* WMI cmd to set a single vdev param for multiple vdevs */
    WMI_PDEV_MULTIPLE_VDEV_SET_PARAM_CMDID,
    /* Configure MEC AGING TIMER */
    WMI_PDEV_MEC_AGING_TIMER_CONFIG_CMDID,
    /* Set bios interface table */
    WMI_PDEV_SET_BIOS_INTERFACE_CMDID,
    WMI_PDEV_FIPS_EXTEND_CMDID,
    WMI_PDEV_FIPS_MODE_SET_CMDID,
    WMI_PDEV_FEATURESET_CMDID,
    /** tag as Filter Pass category and the filters set for FP mode */
    WMI_PDEV_MESH_RX_FILTER_ENABLE_CMDID,
    /* WMI cmd to set Target rate to power table */
    WMI_PDEV_SET_TGTR2P_TABLE_CMDID,
    /* WMI cmd to set RF path for PHY */
    WMI_PDEV_SET_RF_PATH_CMDID,


    /* VDEV (virtual device) specific commands */
    /** vdev create */
    WMI_VDEV_CREATE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_VDEV),
    /** vdev delete */
    WMI_VDEV_DELETE_CMDID,
    /** vdev start request */
    WMI_VDEV_START_REQUEST_CMDID,
    /** vdev restart request (RX only, NO TX, used for CAC period)*/
    WMI_VDEV_RESTART_REQUEST_CMDID,
    /** vdev up request */
    WMI_VDEV_UP_CMDID,
    /** vdev stop request */
    WMI_VDEV_STOP_CMDID,
    /** vdev down request */
    WMI_VDEV_DOWN_CMDID,
    /* set a vdev param */
    WMI_VDEV_SET_PARAM_CMDID,
    /* set a key (used for setting per peer unicast and per vdev multicast) */
    WMI_VDEV_INSTALL_KEY_CMDID,

    /* wnm sleep mode command */
    WMI_VDEV_WNM_SLEEPMODE_CMDID,
    WMI_VDEV_WMM_ADDTS_CMDID,
    WMI_VDEV_WMM_DELTS_CMDID,
    WMI_VDEV_SET_WMM_PARAMS_CMDID,
    WMI_VDEV_SET_GTX_PARAMS_CMDID,
    WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMDID,

    WMI_VDEV_PLMREQ_START_CMDID,
    WMI_VDEV_PLMREQ_STOP_CMDID,
    /* TSF timestamp action for specified vdev */
    WMI_VDEV_TSF_TSTAMP_ACTION_CMDID,
    /** set the additional IEs in probe requests for scan or
     *  assoc req etc for frames FW locally generates */
    WMI_VDEV_SET_IE_CMDID,

    WMI_VDEV_RATEMASK_CMDID,
    /** ATF VDEV REQUEST commands. */
    WMI_VDEV_ATF_REQUEST_CMDID,
    /** Command to send the DSCP-to-TID map to the target for VAP */
    WMI_VDEV_SET_DSCP_TID_MAP_CMDID,
    /* Configure filter for Neighbor Rx Pkt (smart mesh selective listening) */
    WMI_VDEV_FILTER_NEIGHBOR_RX_PACKETS_CMDID,
    /** set quiet ie parameters. primarily used in AP mode */
    WMI_VDEV_SET_QUIET_MODE_CMDID,
    /** To set custom aggregation size for per vdev */
    WMI_VDEV_SET_CUSTOM_AGGR_SIZE_CMDID,

    /* DISA feature: Encrypt-decrypt data request */
    WMI_VDEV_ENCRYPT_DECRYPT_DATA_REQ_CMDID,

    /** Command to enable mac randomizaton **/
    WMI_VDEV_ADD_MAC_ADDR_TO_RX_FILTER_CMDID,

    /** WMI commands related to dbg arp stats */
    WMI_VDEV_SET_ARP_STAT_CMDID,
    WMI_VDEV_GET_ARP_STAT_CMDID,

    /** get tx power for the current vdev */
    WMI_VDEV_GET_TX_POWER_CMDID,
    /* limit STA offchannel activity */
    WMI_VDEV_LIMIT_OFFCHAN_CMDID,
    /** To set custom software retries per-AC for vdev */
    WMI_VDEV_SET_CUSTOM_SW_RETRY_TH_CMDID,
    /** To set chainmask configuration for vdev */
    WMI_VDEV_CHAINMASK_CONFIG_CMDID,

    WMI_VDEV_GET_BCN_RECEPTION_STATS_CMDID,
    /* request LTE-Coex info */
    WMI_VDEV_GET_MWS_COEX_INFO_CMDID,
    /** delete all peer (excluding bss peer) */
    WMI_VDEV_DELETE_ALL_PEER_CMDID,
    /* To set bss max idle time related parameters */
    WMI_VDEV_BSS_MAX_IDLE_TIME_CMDID,
    /** Indicates FW to trigger Audio sync  */
    WMI_VDEV_AUDIO_SYNC_TRIGGER_CMDID,
    /** Gives Qtimer value  to FW  */
    WMI_VDEV_AUDIO_SYNC_QTIMER_CMDID,
    /** Preferred channel list for each vdev */
    WMI_VDEV_SET_PCL_CMDID,
    /** VDEV_GET_BIG_DATA_CMD IS DEPRECATED - DO NOT USE */
    WMI_VDEV_GET_BIG_DATA_CMDID,
    /** Get per vdev BIG DATA stats phase 2 */
    WMI_VDEV_GET_BIG_DATA_P2_CMDID,
    /** set TPC PSD/non-PSD power */
    WMI_VDEV_SET_TPC_POWER_CMDID,
    /** IGMP OFFLOAD */
    WMI_VDEV_IGMP_OFFLOAD_CMDID,
    /** Enable/Disable Intra Bss for each vdev */
    WMI_VDEV_ENABLE_DISABLE_INTRA_BSS_CMDID,
    /* set vdev mu sniffer param */
    WMI_VDEV_SET_MU_SNIF_CMDID,
    /** ICMP OFFLOAD */
    WMI_VDEV_ICMP_OFFLOAD_CMDID,
    /** Update vdev mac address */
    WMI_VDEV_UPDATE_MAC_ADDR_CMDID,
    /* WMI cmd to perform operation on multiple peer based on subcmd type */
    WMI_VDEV_MULTIPLE_PEER_GROUP_CMDID,
    /** Set LTF key seed which will be further used to derive LTF keys */
    WMI_VDEV_SET_LTF_KEY_SEED_CMDID,

    WMI_VDEV_PN_MGMT_RX_FILTER_CMDID,

    /** Enable SR prohibit feature for TIDs of vdev */
    WMI_VDEV_PARAM_ENABLE_SR_PROHIBIT_CMDID,

    /** pause vdev's Tx, Rx, or both for a specific duration */
    WMI_VDEV_PAUSE_CMDID,

    /* peer specific commands */

    /** create a peer */
    WMI_PEER_CREATE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_PEER),
    /** delete a peer */
    WMI_PEER_DELETE_CMDID,
    /** flush specific  tid queues of a peer */
    WMI_PEER_FLUSH_TIDS_CMDID,
    /** set a parameter of a peer */
    WMI_PEER_SET_PARAM_CMDID,
    /** set peer to associated state. will cary all parameters determined during assocication time */
    WMI_PEER_ASSOC_CMDID,
    /**add a wds  (4 address) entry. used only for testing WDS feature on AP products */
    WMI_PEER_ADD_WDS_ENTRY_CMDID,
    /**remove wds  (4 address) entry. used only for testing WDS feature on AP products */
    WMI_PEER_REMOVE_WDS_ENTRY_CMDID,
    /** set up mcast group info for multicast to unicast conversion */
    WMI_PEER_MCAST_GROUP_CMDID,
    /** request peer info from FW. FW shall respond with PEER_INFO_EVENTID */
    WMI_PEER_INFO_REQ_CMDID,
    /** request the estimated link speed for the peer. FW shall respond with
     *  WMI_PEER_ESTIMATED_LINKSPEED_EVENTID.
     */
    WMI_PEER_GET_ESTIMATED_LINKSPEED_CMDID,
    /** Set the conditions to report peer justified rate to driver
     * The justified rate means the user-rate is justified by PER.
     */
    WMI_PEER_SET_RATE_REPORT_CONDITION_CMDID,

    /** update a wds (4 address) entry */
    WMI_PEER_UPDATE_WDS_ENTRY_CMDID,
    /** add a proxy sta entry */
    WMI_PEER_ADD_PROXY_STA_ENTRY_CMDID,
    /** Set Smart Antenna TX antenna */
    WMI_PEER_SMART_ANT_SET_TX_ANTENNA_CMDID,
    /** Set Smart Antenna TX train info */
    WMI_PEER_SMART_ANT_SET_TRAIN_INFO_CMDID,
    /** Set SA node config options */
    WMI_PEER_SMART_ANT_SET_NODE_CONFIG_OPS_CMDID,
    /** ATF PEER REQUEST commands */
    WMI_PEER_ATF_REQUEST_CMDID,
    /** bandwidth fairness (BWF) peer configuration request command */
    WMI_PEER_BWF_REQUEST_CMDID,
    /** rx reorder queue setup for peer/tid */
    WMI_PEER_REORDER_QUEUE_SETUP_CMDID,
    /** rx reorder queue remove for peer/tid */
    WMI_PEER_REORDER_QUEUE_REMOVE_CMDID,
    /** specify a limit for rx A-MPDU block size */
    WMI_PEER_SET_RX_BLOCKSIZE_CMDID,
    /** request peer antdiv info from FW. FW shall respond with PEER_ANTDIV_INFO_EVENTID */
    WMI_PEER_ANTDIV_INFO_REQ_CMDID,
    /*
     * The WMI_PEER_OPER_MODE_CHANGE_EVENTID def was originally mistakenly
     * placed here, amongst the CMDID defs.
     * The WMI_PEER_OPER_MODE_CHANGE_EVENTID def has been moved to the
     * EVENTID section, but to preserve backwards compatibility, the value
     * here that had been used for WMI_PEER_OPER_MODE_CHANGE_EVENTID
     * is kept reserved/deprecated.
     *
     * This WMI_PEER_RESERVED0_CMDID value can be replaced with an actual
     * WMI peer event message ID, though it will be simpler to instead add
     * new WMI_PEER CMDID defs at the end of the WMI_GRP_PEER WMI_CMD_GRP.
     */
    WMI_PEER_RESERVED0_CMDID,
    /** Peer/Tid/Msduq threshold update */
    WMI_PEER_TID_MSDUQ_QDEPTH_THRESH_UPDATE_CMDID,
    /** TID specific configurations per peer of type
     * wmi_peer_tid_configurations_cmd_fixed_param
     */
    WMI_PEER_TID_CONFIGURATIONS_CMDID,

    /** Peer configuration for Channel Frequency Response (CFR) capture
     * of type wmi_peer_cfr_capture_cmd.
     *
     * On targets that do not use the direct DMA framework,
     * completion of the CFR capture is communicated through
     * HTT_T2H_MSG_TYPE_CFR_DUMP_COMPL_IND.
     * Such targets will set WMI_SERVICE_CFR_CAPTURE_IND_MSG_TYPE_1
     * in WMI Service Ready.
     *
     * On targets that use direct DMA, completion of CFR capture is
     * communicated through WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID
     * using module ID WMI_DMA_RING_CONFIG_MODULE_RTT.
     * Such targets will set WMI_SERVICE_CFR_CAPTURE_IND_EVT_TYPE_1
     * in WMI Service Ready and enumerate WMI_DMA_RING_CONFIG_MODULE_RTT
     * in the dma_ring_caps entry of WMI_SERVICE_READY_EXT_EVENTID.
     * Additional MAC metadata is provided in WMI_PEER_CFR_CAPTURE_EVENTID.
     */
    WMI_PEER_CFR_CAPTURE_CMDID,

    /** WMI command related to AP channel width switching */
    WMI_PEER_CHAN_WIDTH_SWITCH_CMDID,

    /** WMI command to fetch current tx PN for the peer */
    WMI_PEER_TX_PN_REQUEST_CMDID,

    /** unmap response with peer ids */
    WMI_PEER_UNMAP_RESPONSE_CMDID,

    /** WMI command for per-peer configuration of VLAN header operations
     * during TX and RX
     */
    WMI_PEER_CONFIG_VLAN_CMDID,

    /** WMI command for per-peer configuration of PPE DS */
    WMI_PEER_CONFIG_PPE_DS_CMDID,

    /** Enable/Disable Intra Bss for the peer */
    WMI_PEER_ENABLE_DISABLE_INTRA_BSS_CMDID,

    WMI_PEER_RX_PN_REQUEST_CMDID,

    /* Mac addr based filtering*/
    WMI_PEER_TX_FILTER_CMDID,

    /** flush specific tid queues of a peer */
    WMI_PEER_FLUSH_POLICY_CMDID,

    /* Set disabled scheduler modes for one or more peers */
    WMI_PEER_SCHED_MODE_DISABLE_CMDID,

    /* Group SET cmd for PEERS */
    WMI_PEER_BULK_SET_CMDID,

    /* beacon/management specific commands */

    /** transmit beacon by reference . used for transmitting beacon on low latency interface like pcie */
    WMI_BCN_TX_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MGMT),
    /** transmit beacon by value */
    WMI_PDEV_SEND_BCN_CMDID,
    /** set the beacon template. used in beacon offload mode to setup the
     *  the common beacon template with the FW to be used by FW to generate beacons */
    WMI_BCN_TMPL_CMDID,
    /** set beacon filter with FW */
    WMI_BCN_FILTER_RX_CMDID,
    /* enable/disable filtering of probe requests in the firmware */
    WMI_PRB_REQ_FILTER_RX_CMDID,
    /** transmit management frame by value. will be deprecated */
    WMI_MGMT_TX_CMDID,
    /** set the probe response template. used in beacon offload mode to setup the
     *  the common probe response template with the FW to be used by FW to generate
     *  probe responses */
    WMI_PRB_TMPL_CMDID,
    /** Transmit Mgmt frame by reference */
    WMI_MGMT_TX_SEND_CMDID,
    /** Transmit data frame by reference */
    WMI_OFFCHAN_DATA_TX_SEND_CMDID,
    /** transmit FILS Discovery frame by value */
    WMI_PDEV_SEND_FD_CMDID,
    /** Cmd to enable/disable offloaded beacons */
    WMI_BCN_OFFLOAD_CTRL_CMDID,
    /** Cmd to enable FW handling BSS color change notification from AP. */
    WMI_BSS_COLOR_CHANGE_ENABLE_CMDID,
    /** To configure Beacon offload quiet-ie params */
    WMI_VDEV_BCN_OFFLOAD_QUIET_CONFIG_CMDID,
    /** set FILS Discovery frame template for FW to generate FD frames */
    WMI_FD_TMPL_CMDID,
    /** Transmit QoS null Frame over wmi interface */
    WMI_QOS_NULL_FRAME_TX_SEND_CMDID,
    /** WMI CMD to receive the management filter criteria from the host for RX REO */
    WMI_MGMT_RX_REO_FILTER_CONFIGURATION_CMDID,

    /** commands to directly control ba negotiation directly from host. only used in test mode */

    /** turn off FW Auto addba mode and let host control addba */
    WMI_ADDBA_CLEAR_RESP_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_BA_NEG),
    /** send add ba request */
    WMI_ADDBA_SEND_CMDID,
    WMI_ADDBA_STATUS_CMDID,
    /** send del ba */
    WMI_DELBA_SEND_CMDID,
    /** set add ba response will be used by FW to generate addba response*/
    WMI_ADDBA_SET_RESP_CMDID,
    /** send single VHT MPDU with AMSDU */
    WMI_SEND_SINGLEAMSDU_CMDID,

    /** Station power save specific config */
    /** enable/disable station powersave */
    WMI_STA_POWERSAVE_MODE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_STA_PS),
    /** set station power save specific parameter */
    WMI_STA_POWERSAVE_PARAM_CMDID,
    /** set station mimo powersave mode */
    WMI_STA_MIMO_PS_MODE_CMDID,
    /** config station TX cycle percentage in a beacon interval */
    WMI_STA_TDCC_CONFIG_CMDID,


    /** DFS-specific commands */
    /** enable DFS (radar detection)*/
    WMI_PDEV_DFS_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_DFS),
    /** disable DFS (radar detection)*/
    WMI_PDEV_DFS_DISABLE_CMDID,
    /** enable DFS phyerr/parse filter offload */
    WMI_DFS_PHYERR_FILTER_ENA_CMDID,
    /** enable DFS phyerr/parse filter offload */
    WMI_DFS_PHYERR_FILTER_DIS_CMDID,
    /** enable DFS phyerr processing offload */
    WMI_PDEV_DFS_PHYERR_OFFLOAD_ENABLE_CMDID,
    /** disable DFS phyerr processing offload */
    WMI_PDEV_DFS_PHYERR_OFFLOAD_DISABLE_CMDID,
    /** set ADFS channel config */
    WMI_VDEV_ADFS_CH_CFG_CMDID,
    /** abort ADFS off-channel-availability-check currently in progress */
    WMI_VDEV_ADFS_OCAC_ABORT_CMDID,

    /* Roaming specific commands */
    /** set roam scan mode */
    WMI_ROAM_SCAN_MODE = WMI_CMD_GRP_START_ID(WMI_GRP_ROAM),
    /** set roam scan RSSI threshold below which roam scan is enabled  */
    WMI_ROAM_SCAN_RSSI_THRESHOLD,
    /** set roam scan period for periodic roam scan mode  */
    WMI_ROAM_SCAN_PERIOD,
    /** set roam scan trigger RSSI change threshold   */
    WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD,
    /** set roam AP profile   */
    WMI_ROAM_AP_PROFILE,
    /** set channel list for roam scans */
    WMI_ROAM_CHAN_LIST,
    /** Stop scan command */
    WMI_ROAM_SCAN_CMD,
    /** roaming sme offload sync complete */
    WMI_ROAM_SYNCH_COMPLETE,
    /** set ric request element for 11r roaming */
    WMI_ROAM_SET_RIC_REQUEST_CMDID,
    /** Invoke roaming forcefully */
    WMI_ROAM_INVOKE_CMDID,
    /** roaming filter cmd to allow further filtering of roaming candidate */
    WMI_ROAM_FILTER_CMDID,
    /** set gateway ip, mac and retries for subnet change detection */
    WMI_ROAM_SUBNET_CHANGE_CONFIG_CMDID,
    /** configure thresholds for MAWC */
    WMI_ROAM_CONFIGURE_MAWC_CMDID,
    /** configure MultiBand Operation(refer WFA MBO spec) parameter */
    WMI_ROAM_SET_MBO_PARAM_CMDID, /* DEPRECATED */
    /** configure packet error rate threshold for triggering roaming */
    WMI_ROAM_PER_CONFIG_CMDID,
    /** configure BSS Transition Management (BTM) offload for roaming */
    WMI_ROAM_BTM_CONFIG_CMDID,
    /** Enable or Disable Fast Initial Link Setup (FILS) feature */
    WMI_ENABLE_FILS_CMDID,
    /** Request for roam scan stats */
    WMI_REQUEST_ROAM_SCAN_STATS_CMDID,
    /** Configure BSS load parameters for roam trigger */
    WMI_ROAM_BSS_LOAD_CONFIG_CMDID,
    /** Configure deauth roam trigger parameters */
    WMI_ROAM_DEAUTH_CONFIG_CMDID,
    /** Configure idle roam trigger parameters */
    WMI_ROAM_IDLE_CONFIG_CMDID,
    /**
     * WMI_ROAM_DSM_FILTER_CMDID is deprecated and should be unused,
     * but leave it reserved just to be safe.
     */
    DEPRECATED__WMI_ROAM_DSM_FILTER_CMDID,
    /** Enable or disable roaming triggers */
    WMI_ROAM_ENABLE_DISABLE_TRIGGER_REASON_CMDID,
    /** Pre-Authentication completion status command */
    WMI_ROAM_PREAUTH_STATUS_CMDID,
    /** Command to get roam scan channels list */
    WMI_ROAM_GET_SCAN_CHANNEL_LIST_CMDID,
    /** configure MLO parameters for roaming */
    WMI_ROAM_MLO_CONFIG_CMDID,
    /** set roam params **/
    WMI_ROAM_SET_PARAM_CMDID,
    /** Enable or Disable roam vendor control */
    WMI_ROAM_ENABLE_VENDOR_CONTROL_CMDID,
    /** Get firmware ini value */
    WMI_ROAM_GET_VENDOR_CONTROL_PARAM_CMDID,

    /** offload scan specific commands */
    /** set offload scan AP profile   */
    WMI_OFL_SCAN_ADD_AP_PROFILE = WMI_CMD_GRP_START_ID(WMI_GRP_OFL_SCAN),
    /** remove offload scan AP profile   */
    WMI_OFL_SCAN_REMOVE_AP_PROFILE,
    /** set offload scan period   */
    WMI_OFL_SCAN_PERIOD,

    /* P2P specific commands */
    /**set P2P device info. FW will used by FW to create P2P IE to be carried in probe response
     * generated during p2p listen and for p2p discoverability  */
    WMI_P2P_DEV_SET_DEVICE_INFO = WMI_CMD_GRP_START_ID(WMI_GRP_P2P),
    /** enable/disable p2p discoverability on STA/AP VDEVs  */
    WMI_P2P_DEV_SET_DISCOVERABILITY,
    /** set p2p ie to be carried in beacons generated by FW for GO  */
    WMI_P2P_GO_SET_BEACON_IE,
    /** set p2p ie to be carried in probe response frames generated by FW for GO  */
    WMI_P2P_GO_SET_PROBE_RESP_IE,
    /** set the vendor specific p2p ie data. FW will use this to parse the P2P NoA
     *  attribute in the beacons/probe responses received.
     *  Note: This command is currently used only for Apple P2P implementation.
     */
    WMI_P2P_SET_VENDOR_IE_DATA_CMDID,
    /** set the configure of p2p find offload */
    WMI_P2P_DISC_OFFLOAD_CONFIG_CMDID,
    /** set the vendor specific p2p ie data for p2p find offload using */
    WMI_P2P_DISC_OFFLOAD_APPIE_CMDID,
    /** set the BSSID/device name pattern of p2p find offload */
    WMI_P2P_DISC_OFFLOAD_PATTERN_CMDID,
    /** set OppPS related parameters **/
    WMI_P2P_SET_OPPPS_PARAM_CMDID,
    /** set listen offload start related parameters */
    WMI_P2P_LISTEN_OFFLOAD_START_CMDID,
    /** set listen offload stop related parameters */
    WMI_P2P_LISTEN_OFFLOAD_STOP_CMDID,

    /** AP power save specific config */
    /** set AP power save specific param */
    WMI_AP_PS_PEER_PARAM_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_AP_PS),
    /** set AP UAPSD coex specific param */
    WMI_AP_PS_PEER_UAPSD_COEX_CMDID,
    /** set Enhanced Green AP param */
    WMI_AP_PS_EGAP_PARAM_CMDID,

    /** Rate-control specific commands */
    WMI_PEER_RATE_RETRY_SCHED_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_RATE_CTRL),

    /** WLAN Profiling commands. */
    WMI_WLAN_PROFILE_TRIGGER_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_PROFILE),
    WMI_WLAN_PROFILE_SET_HIST_INTVL_CMDID,
    WMI_WLAN_PROFILE_GET_PROFILE_DATA_CMDID,
    WMI_WLAN_PROFILE_ENABLE_PROFILE_ID_CMDID,
    WMI_WLAN_PROFILE_LIST_PROFILE_ID_CMDID,

    /** Suspend resume command Ids */
    WMI_PDEV_SUSPEND_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SUSPEND),
    WMI_PDEV_RESUME_CMDID,

    /* Beacon filter commands */
    /** add a beacon filter */
    WMI_ADD_BCN_FILTER_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_BCN_FILTER),
    /** remove a  beacon filter */
    WMI_RMV_BCN_FILTER_CMDID,

    /* WOW Specific WMI commands*/
    /** add pattern for awake */
    WMI_WOW_ADD_WAKE_PATTERN_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_WOW),
    /** deleta a wake pattern */
    WMI_WOW_DEL_WAKE_PATTERN_CMDID,
    /** enable/deisable wake event  */
    WMI_WOW_ENABLE_DISABLE_WAKE_EVENT_CMDID,
    /** enable WOW  */
    WMI_WOW_ENABLE_CMDID,
    /** host woke up from sleep event to FW. Generated in response to WOW Hardware event */
    WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID,
    /* IOAC add keep alive cmd. */
    WMI_WOW_IOAC_ADD_KEEPALIVE_CMDID,
    /* IOAC del keep alive cmd. */
    WMI_WOW_IOAC_DEL_KEEPALIVE_CMDID,
    /* IOAC add pattern for awake */
    WMI_WOW_IOAC_ADD_WAKE_PATTERN_CMDID,
    /* IOAC deleta a wake pattern */
    WMI_WOW_IOAC_DEL_WAKE_PATTERN_CMDID,
    /* D0-WOW enable or disable cmd */
    WMI_D0_WOW_ENABLE_DISABLE_CMDID,
    /* enable extend WoW */
    WMI_EXTWOW_ENABLE_CMDID,
    /* Extend WoW command to configure app type1 parameter */
    WMI_EXTWOW_SET_APP_TYPE1_PARAMS_CMDID,
    /* Extend WoW command to configure app type2 parameter */
    WMI_EXTWOW_SET_APP_TYPE2_PARAMS_CMDID,
    /* enable ICMPv6 Network advertisement filtering */
    WMI_WOW_ENABLE_ICMPV6_NA_FLT_CMDID,
    /*
     * Set a pattern to match UDP packet in WOW mode.
     * If match, construct a tx frame in a local buffer
     * to send through the peer AP to the entity in the
     * IP network that sent the UDP packet to this STA.
     */
    WMI_WOW_UDP_SVC_OFLD_CMDID,
    /* configure WOW host wakeup PIN pattern */
    WMI_WOW_HOSTWAKEUP_GPIO_PIN_PATTERN_CONFIG_CMDID,

    /* Set which action category should wake the host from suspend */
    WMI_WOW_SET_ACTION_WAKE_UP_CMDID,

    /*
     * Set a pattern to match broadcast CoAP packet in WoW mode.
     * If match and verify pass, cache the packet and then reply
     * a unicast response in local with pre-configured packet.
     */
    WMI_WOW_COAP_ADD_PATTERN_CMDID,

    /* Delete a pattern match broadcast CoAP packet */
    WMI_WOW_COAP_DEL_PATTERN_CMDID,

    /*
     * Add a CoAP keepalive pattern to send a CoAP broadcast packet
     * when configured timeout occurred.
     */
    WMI_WOW_COAP_ADD_KEEPALIVE_PATTERN_CMDID,

    /* Delete a CoAP keepalive pattern */
    WMI_WOW_COAP_DEL_KEEPALIVE_PATTERN_CMDID,

    /* Host read the cached CoAP packets after resume */
    WMI_WOW_COAP_GET_BUF_INFO_CMDID,


    /* RTT measurement related cmd */
    /** request to make an RTT measurement */
    WMI_RTT_MEASREQ_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_RTT),
    /** request to report a tsf measurement */
    WMI_RTT_TSF_CMDID,
    /** RTT 11az PASN authentication status */
    WMI_RTT_PASN_AUTH_STATUS_CMD,
    /** RTT 11az PASN deauthentication cmd */
    WMI_RTT_PASN_DEAUTH_CMD,

    /** spectral scan command */
    /** configure spectral scan */
    WMI_VDEV_SPECTRAL_SCAN_CONFIGURE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SPECTRAL),
    /** enable/disable spectral scan and trigger */
    WMI_VDEV_SPECTRAL_SCAN_ENABLE_CMDID,

    /* F/W stats */
    /** one time request for stats */
    WMI_REQUEST_STATS_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_STATS),
    /** Push MCC Adaptive Scheduler Stats to Firmware */
    WMI_MCC_SCHED_TRAFFIC_STATS_CMDID,
    /** one time request for txrx stats */
    WMI_REQUEST_STATS_EXT_CMDID,
    /* Link Layer stats */
    /** Request for link layer stats */
    WMI_REQUEST_LINK_STATS_CMDID,
    /** Request for setting params to link layer stats */
    WMI_START_LINK_STATS_CMDID,
    /** Request to clear stats*/
    WMI_CLEAR_LINK_STATS_CMDID,

    /** Request for getting the Firmware Memory Dump */
    WMI_GET_FW_MEM_DUMP_CMDID,

    /** Request to flush of the buffered debug messages */
    WMI_DEBUG_MESG_FLUSH_CMDID,

    /** Cmd to configure the verbose level */
    WMI_DIAG_EVENT_LOG_CONFIG_CMDID,

    /** One time request for wlan stats */
    WMI_REQUEST_WLAN_STATS_CMDID,

    /** Request for getting RCPI of peer */
    WMI_REQUEST_RCPI_CMDID,

    /** One time request for peer stats info */
    WMI_REQUEST_PEER_STATS_INFO_CMDID,

    /** One time request for radio channel stats */
    WMI_REQUEST_RADIO_CHAN_STATS_CMDID,

    /** request for WLM (wlan latency manager) stats */
    WMI_REQUEST_WLM_STATS_CMDID,

    /** request for control path stats */
    WMI_REQUEST_CTRL_PATH_STATS_CMDID,

    /** unified request for LL stats and get station cmds */
    WMI_REQUEST_UNIFIED_LL_GET_STA_CMDID,

    /** request for thermal stats */
    WMI_REQUEST_THERMAL_STATS_CMDID,

    /** request for HALPHY stats through ctrl path */
    WMI_REQUEST_HALPHY_CTRL_PATH_STATS_CMDID,


    /** ARP OFFLOAD REQUEST*/
    WMI_SET_ARP_NS_OFFLOAD_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_ARP_NS_OFL),

    /** Proactive ARP Response Add Pattern Command*/
    WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMDID,

    /** Proactive ARP Response Del Pattern Command*/
    WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMDID,

    /** NS offload confid*/
    WMI_NETWORK_LIST_OFFLOAD_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_NLO_OFL),

    /** APFIND Config */
    WMI_APFIND_CMDID,

    /** Passpoint list config  */
    WMI_PASSPOINT_LIST_CONFIG_CMDID,

    /** configure suppressing parameters for MAWC */
    WMI_NLO_CONFIGURE_MAWC_CMDID,

    /* GTK offload Specific WMI commands*/
    WMI_GTK_OFFLOAD_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_GTK_OFL),

    /* CSA offload Specific WMI commands*/
    /** csa offload enable */
    WMI_CSA_OFFLOAD_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_CSA_OFL),
    /** chan switch command */
    WMI_CSA_OFFLOAD_CHANSWITCH_CMDID,

    /* Chatter commands*/
    /* Change chatter mode of operation */
    WMI_CHATTER_SET_MODE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_CHATTER),
    /** chatter add coalescing filter command */
    WMI_CHATTER_ADD_COALESCING_FILTER_CMDID,
    /** chatter delete coalescing filter command */
    WMI_CHATTER_DELETE_COALESCING_FILTER_CMDID,
    /** chatter coalecing query command */
    WMI_CHATTER_COALESCING_QUERY_CMDID,

    /**addba specific commands */
    /** start the aggregation on this TID */
    WMI_PEER_TID_ADDBA_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_TID_ADDBA),
    /** stop the aggregation on this TID */
    WMI_PEER_TID_DELBA_CMDID,

    /** set station mimo powersave method */
    WMI_STA_DTIM_PS_METHOD_CMDID,
    /** Configure the Station UAPSD AC Auto Trigger Parameters */
    WMI_STA_UAPSD_AUTO_TRIG_CMDID,
    /** Configure the Keep Alive Parameters */
    WMI_STA_KEEPALIVE_CMDID,

    /* Request ssn from target for a sta/tid pair */
    WMI_BA_REQ_SSN_CMDID,


    /* misc command group */
    /** echo command mainly used for testing */
    WMI_ECHO_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MISC),

    /* !!IMPORTANT!!
     * If you need to add a new WMI command to the WMI_GRP_MISC sub-group,
     * please make sure you add it BEHIND WMI_PDEV_UTF_CMDID,
     * as we MUST have a fixed value here to maintain compatibility between
     * UTF and the ART2 driver
     */
    /** UTF WMI commands */
    WMI_PDEV_UTF_CMDID,

    /** set debug log config */
    WMI_DBGLOG_CFG_CMDID,
    /* QVIT specific command id */
    WMI_PDEV_QVIT_CMDID,
    /* Factory Testing Mode request command
     * used for integrated chipsets */
    WMI_PDEV_FTM_INTG_CMDID,
    /* set and get keepalive parameters command */
    WMI_VDEV_SET_KEEPALIVE_CMDID,
    WMI_VDEV_GET_KEEPALIVE_CMDID,
    /* For fw recovery test command */
    WMI_FORCE_FW_HANG_CMDID,
    /* Set Mcast/Bdcast filter */
    WMI_SET_MCASTBCAST_FILTER_CMDID,
    /** set thermal management params **/
    WMI_THERMAL_MGMT_CMDID,
    /** set host auto shutdown params **/
    WMI_HOST_AUTO_SHUTDOWN_CFG_CMDID,
    /** set tpc chainmask config command */
    WMI_TPC_CHAINMASK_CONFIG_CMDID,
    /** set Antenna diversity command */
    WMI_SET_ANTENNA_DIVERSITY_CMDID,
    /** Set OCB Sched Request, deprecated */
    WMI_OCB_SET_SCHED_CMDID,
    /** Set RSSI monitoring config command */
    WMI_RSSI_BREACH_MONITOR_CONFIG_CMDID,
    /** Enable/disable Large Receive Offload processing; provide cfg params */
    WMI_LRO_CONFIG_CMDID,
    /** transfer data from host to firmware to write flash */
    WMI_TRANSFER_DATA_TO_FLASH_CMDID,
    /** Command to enable/disable filtering of multicast IP with unicast mac */
    WMI_CONFIG_ENHANCED_MCAST_FILTER_CMDID,
    /** Command to control WISA mode */
    WMI_VDEV_WISA_CMDID,
    /** set debug log time stamp sync up with host */
    WMI_DBGLOG_TIME_STAMP_SYNC_CMDID,
    /** Command for host to set/delete multiple mcast filters */
    WMI_SET_MULTIPLE_MCAST_FILTER_CMDID,
    /** upload a requested section of data from firmware flash to host */
    WMI_READ_DATA_FROM_FLASH_CMDID,
    /* Thermal Throttling SET CONF commands */
    WMI_THERM_THROT_SET_CONF_CMDID,
    /* set runtime dpd recalibration params */
    WMI_RUNTIME_DPD_RECAL_CMDID,
    /* get TX power for input HALPHY parameters */
    WMI_GET_TPC_POWER_CMDID,
    /* Specify when to start monitoring for idle state */
    WMI_IDLE_TRIGGER_MONITOR_CMDID,
    /** set ELNA BYPASS status */
    WMI_SET_ELNA_BYPASS_CMDID,
    /** get ELNA BYPASS status */
    WMI_GET_ELNA_BYPASS_CMDID,
    /** get ANI level of the channels */
    WMI_GET_CHANNEL_ANI_CMDID,
    /** set OCL (One Chain Listen) mode */
    WMI_SET_OCL_CMDID,
    /** Consolidated params for pdev/vdev:
     * Set multiple parameters at once for one pdev or vdev.
     */
    WMI_SET_MULTIPLE_PDEV_VDEV_PARAM_CMDID,

    /* WMI cmd used to allocate HW scratch registers */
    WMI_PMM_SCRATCH_REG_ALLOCATION_CMDID,

    /* WMI cmd used to start/stop XGAP (XPAN Green AP) */
    WMI_XGAP_ENABLE_CMDID,

    /* H2T HPA message */
    WMI_HPA_CMDID,

    /* WMI comamnd for standalone sounding */
    WMI_VDEV_STANDALONE_SOUND_CMDID,

    /*  Offload 11k related requests */
    WMI_11K_OFFLOAD_REPORT_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_11K_OFFLOAD),
    /* invoke neighbor report from FW */
    WMI_11K_INVOKE_NEIGHBOR_REPORT_CMDID,

    /* GPIO Configuration */
    WMI_GPIO_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_GPIO),
    WMI_GPIO_OUTPUT_CMDID,

    /* Txbf configuration command */
    WMI_TXBF_CMDID,

    /* Antenna Controller, connected to wlan debug uart/GPIO. */
    WMI_ANT_CONTROLLER_CMDID,

    WMI_GPIO_STATE_REQ_CMDID,

    /* FWTEST Commands */
    WMI_FWTEST_VDEV_MCC_SET_TBTT_MODE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_FWTEST),
    /** set NoA descs **/
    WMI_FWTEST_P2P_SET_NOA_PARAM_CMDID,
    /* UNIT Tests  */
    WMI_UNIT_TEST_CMDID,
    /* set debug and tuning parameters */
    WMI_FWTEST_CMDID,
    /* Q-Boost configuration test commands */
    WMI_QBOOST_CFG_CMDID,
    /* Simulation Test command  */
    WMI_SIMULATION_TEST_CMDID,
    /* WFA test config command */
    WMI_WFA_CONFIG_CMDID,

    /** TDLS Configuration */
    /** enable/disable TDLS */
    WMI_TDLS_SET_STATE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_TDLS),
    /** set tdls peer state */
    WMI_TDLS_PEER_UPDATE_CMDID,
    /** TDLS Offchannel control */
    WMI_TDLS_SET_OFFCHAN_MODE_CMDID,

    /** Resmgr Configuration */
    /** Adaptive OCS is enabled by default in the FW. This command is used to
     * disable FW based adaptive OCS.
     */
    WMI_RESMGR_ADAPTIVE_OCS_ENABLE_DISABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_RESMGR),
    /** set the requested channel time quota for the home channels */
    WMI_RESMGR_SET_CHAN_TIME_QUOTA_CMDID,
    /** set the requested latency for the home channels */
    WMI_RESMGR_SET_CHAN_LATENCY_CMDID,

    /** STA SMPS Configuration */
    /** force SMPS mode */
    WMI_STA_SMPS_FORCE_MODE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_STA_SMPS),
    /** set SMPS parameters */
    WMI_STA_SMPS_PARAM_CMDID,

    /* Wlan HB commands*/
    /* enable/disable wlan HB */
    WMI_HB_SET_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_WLAN_HB),
    /* set tcp parameters for wlan HB */
    WMI_HB_SET_TCP_PARAMS_CMDID,
    /* set tcp pkt filter for wlan HB */
    WMI_HB_SET_TCP_PKT_FILTER_CMDID,
    /* set udp parameters for wlan HB */
    WMI_HB_SET_UDP_PARAMS_CMDID,
    /* set udp pkt filter for wlan HB */
    WMI_HB_SET_UDP_PKT_FILTER_CMDID,

    /* OIC ping keep alive */
    WMI_HB_OIC_PING_OFFLOAD_PARAM_CMDID,
    WMI_HB_OIC_PING_OFFLOAD_SET_ENABLE_CMDID,

    /* WMI commands related to DHCP Lease Renew Offload **/
    WMI_HB_DHCP_LEASE_RENEW_OFFLOAD_CMDID,

    /** Wlan RMC commands*/
    /** enable/disable RMC */
    WMI_RMC_SET_MODE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_RMC),
    /** configure action frame period */
    WMI_RMC_SET_ACTION_PERIOD_CMDID,
    /** For debug/future enhancement purposes only,
     *  configures/finetunes RMC algorithms */
    WMI_RMC_CONFIG_CMDID,
    /** select manual leader */
    WMI_RMC_SET_MANUAL_LEADER_CMDID,

    /** WLAN MHF offload commands */
    /** enable/disable MHF offload */
    WMI_MHF_OFFLOAD_SET_MODE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MHF_OFL),
    /** Plumb routing table for MHF offload */
    WMI_MHF_OFFLOAD_PLUMB_ROUTING_TBL_CMDID,

    /*location scan commands*/
    /*start batch scan*/
    WMI_BATCH_SCAN_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_LOCATION_SCAN),
    /*stop batch scan*/
    WMI_BATCH_SCAN_DISABLE_CMDID,
    /*get batch scan result*/
    WMI_BATCH_SCAN_TRIGGER_RESULT_CMDID,


    /* OEM related cmd */
    WMI_OEM_REQ_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_OEM),
    WMI_OEM_REQUEST_CMDID, /* UNUSED */
    /* OEM related cmd used for Low Power ranging */
    WMI_LPI_OEM_REQ_CMDID,
    WMI_OEM_DMA_RING_CFG_REQ_CMDID,
    /** Command to handle OEM's opaque data */
    WMI_OEM_DATA_CMDID,


    /** Nan Request */
    WMI_NAN_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_NAN),

    /** Modem power state command */
    WMI_MODEM_POWER_STATE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_COEX),
    WMI_CHAN_AVOID_UPDATE_CMDID,
    WMI_COEX_CONFIG_CMDID,
    WMI_CHAN_AVOID_RPT_ALLOW_CMDID,
    WMI_COEX_GET_ANTENNA_ISOLATION_CMDID,
    WMI_SAR_LIMITS_CMDID,
    WMI_SAR_GET_LIMITS_CMDID,
    /** Dedicated BT Antenna Mode (DBAM) command */
    WMI_COEX_DBAM_CMDID,
    WMI_TAS_POWER_HISTORY_CMDID,
    WMI_ESL_EGID_CMDID,

    /**
     *  OBSS scan offload enable/disable commands
     *  OBSS scan enable CMD will send to FW after VDEV UP, if these conditions are true:
     *  1.  WMI_SERVICE_OBSS_SCAN is reported by FW in service ready,
     *  2.  STA connect to a 2.4 GHz ht20/ht40 AP,
     *  3.  AP enable 20/40 coexistence (OBSS_IE-74 can be found in beacon or association response)
     *  If OBSS parameters from beacon changed, also use enable CMD to update parameters.
     *  OBSS scan disable CMD will send to FW if have enabled when tearing down connection.
     */
    WMI_OBSS_SCAN_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_OBSS_OFL),
    WMI_OBSS_SCAN_DISABLE_CMDID,
    WMI_OBSS_COLOR_COLLISION_DET_CONFIG_CMDID,

    /** LPI commands */
    /** LPI mgmt snooping config command */
    WMI_LPI_MGMT_SNOOPING_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_LPI),
    /** LPI scan start command */
    WMI_LPI_START_SCAN_CMDID,
    /** LPI scan stop command */
    WMI_LPI_STOP_SCAN_CMDID,

    /** ExtScan commands */
    WMI_EXTSCAN_START_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_EXTSCAN),
    WMI_EXTSCAN_STOP_CMDID,
    WMI_EXTSCAN_CONFIGURE_WLAN_CHANGE_MONITOR_CMDID,
    WMI_EXTSCAN_CONFIGURE_HOTLIST_MONITOR_CMDID,
    WMI_EXTSCAN_GET_CACHED_RESULTS_CMDID,
    WMI_EXTSCAN_GET_WLAN_CHANGE_RESULTS_CMDID,
    WMI_EXTSCAN_SET_CAPABILITIES_CMDID,
    WMI_EXTSCAN_GET_CAPABILITIES_CMDID,
    WMI_EXTSCAN_CONFIGURE_HOTLIST_SSID_MONITOR_CMDID,
    WMI_EXTSCAN_CONFIGURE_MAWC_CMDID,

    /** DHCP server offload commands */
    WMI_SET_DHCP_SERVER_OFFLOAD_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_DHCP_OFL),

    /** IPA Offload features related commands */
    WMI_IPA_OFFLOAD_ENABLE_DISABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_IPA),

    /** mDNS responder offload commands */
    WMI_MDNS_OFFLOAD_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MDNS_OFL),
    WMI_MDNS_SET_FQDN_CMDID,
    WMI_MDNS_SET_RESPONSE_CMDID,
    WMI_MDNS_GET_STATS_CMDID,
    WMI_MDNS_SET_STAIP_CMDID,

    /* enable/disable AP Authentication offload */
    WMI_SAP_OFL_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SAP_OFL),
    WMI_SAP_SET_BLACKLIST_PARAM_CMDID,
    WMI_SAP_OBSS_DETECTION_CFG_CMDID,

    /** Out-of-context-of-BSS (OCB) commands */
    WMI_OCB_SET_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_OCB),
    WMI_OCB_SET_UTC_TIME_CMDID,
    WMI_OCB_START_TIMING_ADVERT_CMDID,
    WMI_OCB_STOP_TIMING_ADVERT_CMDID,
    WMI_OCB_GET_TSF_TIMER_CMDID,
    WMI_DCC_GET_STATS_CMDID,
    WMI_DCC_CLEAR_STATS_CMDID,
    WMI_DCC_UPDATE_NDL_CMDID,

    /* System-On-Chip commands */
    WMI_SOC_SET_PCL_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SOC),
    WMI_SOC_SET_HW_MODE_CMDID,
    WMI_SOC_SET_DUAL_MAC_CONFIG_CMDID,
    WMI_SOC_SET_ANTENNA_MODE_CMDID,
    /** enable/disable TQM reset (SOC level) feature */
    WMI_SOC_TQM_RESET_ENABLE_DISABLE_CMDID,

    /* packet filter commands */
    WMI_PACKET_FILTER_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_PKT_FILTER),
    WMI_PACKET_FILTER_ENABLE_CMDID,

    /** Motion Aided WiFi Connectivity (MAWC) commands */
    WMI_MAWC_SENSOR_REPORT_IND_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MAWC),

    /** WMI commands related to PMF 11w Offload */
    WMI_PMF_OFFLOAD_SET_SA_QUERY_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_PMF_OFFLOAD),

    /** WMI commands related to pkt filter (BPF) offload */
    WMI_BPF_GET_CAPABILITY_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_BPF_OFFLOAD),
    WMI_BPF_GET_VDEV_STATS_CMDID,
    WMI_BPF_SET_VDEV_INSTRUCTIONS_CMDID,
    WMI_BPF_DEL_VDEV_INSTRUCTIONS_CMDID,
    WMI_BPF_SET_VDEV_ACTIVE_MODE_CMDID,
    WMI_BPF_SET_VDEV_ENABLE_CMDID,
    WMI_BPF_SET_VDEV_WORK_MEMORY_CMDID,
    WMI_BPF_GET_VDEV_WORK_MEMORY_CMDID,

    /** WMI commands related to monitor mode. */
    WMI_MNT_FILTER_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MONITOR),

    /** WMI commands related to regulatory offload */
    WMI_SET_CURRENT_COUNTRY_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_REGULATORY),
    WMI_11D_SCAN_START_CMDID,
    WMI_11D_SCAN_STOP_CMDID,
    WMI_SET_INIT_COUNTRY_CMDID,
    WMI_AFC_CMDID,

    /**
     * Nan Data commands
     * NDI - NAN Data Interface
     * NDP - NAN Data Path
     */
    /* Commands in prototyping phase */
    WMI_NDI_GET_CAP_REQ_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_PROTOTYPE),
    WMI_NDP_INITIATOR_REQ_CMDID,
    WMI_NDP_RESPONDER_REQ_CMDID,
    WMI_NDP_END_REQ_CMDID,
    WMI_NDP_CMDID,

    /** WMI commands related to HW data filtering **/
    WMI_HW_DATA_FILTER_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_HW_DATA_FILTER),

    /** WMI commands related to WLAN latency module **/
    WMI_WLM_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_WLM),

    /** WMI commands related to STA & AP TWT module **/
    WMI_TWT_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_TWT),
    WMI_TWT_DISABLE_CMDID,
    WMI_TWT_ADD_DIALOG_CMDID,
    WMI_TWT_DEL_DIALOG_CMDID,
    WMI_TWT_PAUSE_DIALOG_CMDID,
    WMI_TWT_RESUME_DIALOG_CMDID,
    WMI_TWT_BTWT_INVITE_STA_CMDID,
    WMI_TWT_BTWT_REMOVE_STA_CMDID,
    WMI_TWT_NUDGE_DIALOG_CMDID,
    WMI_VDEV_SET_TWT_EDCA_PARAMS_CMDID, /* XPAN TWT */

    /** WMI commands related to motion detection **/
    WMI_MOTION_DET_CONFIG_PARAM_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MOTION_DET),
    WMI_MOTION_DET_BASE_LINE_CONFIG_PARAM_CMDID,
    WMI_MOTION_DET_START_STOP_CMDID,
    WMI_MOTION_DET_BASE_LINE_START_STOP_CMDID,

    /** WMI commands related to OBSS PD Spatial Reuse **/
    WMI_PDEV_OBSS_PD_SPATIAL_REUSE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SPATIAL_REUSE),
    WMI_PDEV_OBSS_PD_SPATIAL_REUSE_SET_DEF_OBSS_THRESH_CMDID,

    /** WMI commands related to High Precision Clock Synchronization feature **/
    WMI_HPCS_PULSE_START_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_HPCS_PULSE),

    /** WMI commands related to Audio Frame aggregation feature **/
    WMI_AUDIO_AGGR_ENABLE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_AUDIO),
    WMI_AUDIO_AGGR_ADD_GROUP_CMDID,
    WMI_AUDIO_AGGR_DEL_GROUP_CMDID,
    WMI_AUDIO_AGGR_SET_GROUP_RATE_CMDID,
    WMI_AUDIO_AGGR_SET_GROUP_RETRY_CMDID,
    WMI_AUDIO_AGGR_SET_GROUP_AUTO_RATE_CMDID,
    WMI_AUDIO_AGGR_SET_GROUP_PROBE_CMDID,
    WMI_AUDIO_AGGR_UPDATE_STA_GROUP_INFO_CMDID,
    WMI_AUDIO_AGGR_GET_STATISTICS_CMDID,
    WMI_AUDIO_AGGR_RESET_STATISTICS_CMDID,
    WMI_AUDIO_AGGR_SET_RTSCTS_CONFIG_CMDID,
    WMI_AUDIO_AGGR_SET_SCHED_METHOD_CMDID,
    WMI_AUDIO_AGGR_GET_SCHED_METHOD_CMDID,

    /** WMI commands related to Channel Frequency Response Capture **/
    WMI_CFR_CAPTURE_FILTER_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_CFR_CAPTURE),

    /** WMI commands related to Air Time Management feature **/
    /** ATF SSID GROUPING REQUEST command */
    WMI_ATF_SSID_GROUPING_REQUEST_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_ATM),
    /** WMM ATF Configuration for groups */
    WMI_ATF_GROUP_WMM_AC_CONFIG_REQUEST_CMDID,
    /** ATF Peer Extended Request command */
    WMI_PEER_ATF_EXT_REQUEST_CMDID,

    /** Vendor Defined WMI commands **/
    WMI_VENDOR_PDEV_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_VENDOR),
    WMI_VENDOR_VDEV_CMDID,
    WMI_VENDOR_PEER_CMDID,
    /** Further vendor cmd IDs can be added below **/

    /** WMI commands specific to Tid level Latency config **/
    /** VDEV Latency Config command */
    WMI_VDEV_TID_LATENCY_CONFIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_LATENCY),
    /** TID Latency Request command */
    WMI_PEER_TID_LATENCY_CONFIG_CMDID,

    /** WMI commands specific to MLO **/
    /** MLO link active / inactive Request command */
    WMI_MLO_LINK_SET_ACTIVE_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MLO),
    /** WMI cmd used to indicate hw_links part of MLO */
    WMI_MLO_SETUP_CMDID,
    /** WMI cmd used for init synchronization of hw_links part of MLO */
    WMI_MLO_READY_CMDID,
    /** WMI cmd used for tearing down a hw_link part of MLO */
    WMI_MLO_TEARDOWN_CMDID,
    /** WMI cmd used to setup Tid to Link Mapping for a MLO Peer */
    WMI_MLO_PEER_TID_TO_LINK_MAP_CMDID,
    /** WMI cmd for dynamically deleting a link from a MLD VAP */
    WMI_MLO_LINK_REMOVAL_CMDID,
    /** WMI cmd used to setup Tid to Link Mapping for a MLO VAP */
    WMI_MLO_AP_VDEV_TID_TO_LINK_MAP_CMDID,
    /** WMI cmd used to get mlo link information */
    WMI_MLO_VDEV_GET_LINK_INFO_CMDID,

    /** WMI commands specific to Service Aware WiFi (SAWF) */
    /** configure or reconfigure the parameters for a service class */
    WMI_SAWF_SVC_CLASS_CFG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_SAWF),
    /** disable a service class */
    WMI_SAWF_SVC_CLASS_DISABLE_CMDID,

    /* WMI commands specific to ODD */
    WMI_ODD_LIVEDUMP_REQUEST_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_ODD),

    /* WMI commands specific to TDMA */
    WMI_TDMA_SCHEDULE_REQUEST_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_TDMA),

    /* WMI commands specific to manually-triggered UL */
    /** WMI Command to set Manual SU UL OFDMA trigger parameters */
    WMI_VDEV_SET_ULOFDMA_MANUAL_SU_TRIG_CMDID = WMI_CMD_GRP_START_ID(WMI_GRP_MANUAL_UL_TRIG),

    /** WMI Command to set Manual MU UL OFDMA trigger parameters */
    WMI_VDEV_SET_ULOFDMA_MANUAL_MU_TRIG_CMDID,
} WMI_CMD_ID;

typedef enum {
    /** WMI service is ready; after this event WMI messages can be sent/received  */
    WMI_SERVICE_READY_EVENTID = 0x1,
    /** WMI is ready; after this event the wlan subsystem is initialized and can process commands. */
    WMI_READY_EVENTID,

    /** Specify what WMI services the target supports (for services beyond
     * what fits in the WMI_SERVICE_READY_EVENT message's wmi_service_bitmap)
     */
    WMI_SERVICE_AVAILABLE_EVENTID,

    /** Specify what numbers and kinds of interfaces (a.k.a. vdevs)
     * the target supports
     */
    WMI_IFACE_COMBINATION_IND_EVENTID,

    /** Scan specific events */
    WMI_SCAN_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_SCAN),

    /** Spectral scan FW params to host */
    WMI_PDEV_SSCAN_FW_PARAM_EVENTID,

    /** Spectral scan related event start/stop trigger to host  */
    WMI_SSCAN_EVT_MESSAGE_EVENTID,

    /** Spectral scan capabilities advertisement */
    WMI_SPECTRAL_CAPABILITIES_EVENTID,


    /* PDEV specific events */
    /** TPC config for the current operating channel */
    WMI_PDEV_TPC_CONFIG_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_PDEV),
    /** Channel stats event    */
    WMI_CHAN_INFO_EVENTID,

    /** PHY Error specific WMI event */
    WMI_PHYERR_EVENTID,

    /** eeprom dump event  */
    WMI_PDEV_DUMP_EVENTID,

    /** traffic pause event */
    WMI_TX_PAUSE_EVENTID,

    /** DFS radar event  */
    WMI_DFS_RADAR_EVENTID,

    /** track L1SS entry and residency event */
    WMI_PDEV_L1SS_TRACK_EVENTID,

    /** Report current temperature of the chip in Celcius degree */
    WMI_PDEV_TEMPERATURE_EVENTID,

    /** Extension of WMI_SERVICE_READY msg with extra target capability info */
    WMI_SERVICE_READY_EXT_EVENTID,

    /** FIPS test mode event */
    WMI_PDEV_FIPS_EVENTID,

    /** Channel hopping avoidance */
    WMI_PDEV_CHANNEL_HOPPING_EVENTID,

    /** CCK ANI level event */
    WMI_PDEV_ANI_CCK_LEVEL_EVENTID,

    /** OFDM ANI level event */
    WMI_PDEV_ANI_OFDM_LEVEL_EVENTID,

    /** Tx PPDU params */
    WMI_PDEV_TPC_EVENTID,

    /** NF Cal Power in DBR/DBM for all channels */
    WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID,

    /** SOC/PDEV events */
    WMI_PDEV_SET_HW_MODE_RESP_EVENTID,
    WMI_PDEV_HW_MODE_TRANSITION_EVENTID,
    WMI_PDEV_SET_MAC_CONFIG_RESP_EVENTID,
    /** Report ANT DIV feature's status */
    WMI_PDEV_ANTDIV_STATUS_EVENTID,
    /** Chip level Power stats */
    WMI_PDEV_CHIP_POWER_STATS_EVENTID,
    /** Power Save Failure Detected */
    WMI_PDEV_CHIP_POWER_SAVE_FAILURE_DETECTED_EVENTID,

    /* Event to report the switch count in csa of one or more VDEVs */
    WMI_PDEV_CSA_SWITCH_COUNT_STATUS_EVENTID,

    /** Report the caldata version to host */
    WMI_PDEV_CHECK_CAL_VERSION_EVENTID,

    /** Report chain RSSI and antenna index to host */
    WMI_PDEV_DIV_RSSI_ANTID_EVENTID,

    /** provide noise floor and cycle counts for a channel */
    WMI_PDEV_BSS_CHAN_INFO_EVENTID,

    /** Response received the ctl table to host */
    WMI_PDEV_UPDATE_CTLTABLE_EVENTID,

    WMI_PDEV_DMA_RING_CFG_RSP_EVENTID,

    WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID,

    /** WMI Event to deliver CTL Failsafe application */
    WMI_PDEV_CTL_FAILSAFE_CHECK_EVENTID,

    /* Event to report the switch count in BSS color of one or more VDEVs */
    WMI_PDEV_CSC_SWITCH_COUNT_STATUS_EVENTID,

    /* Event to send cold boot calibration data */
    WMI_PDEV_COLD_BOOT_CAL_DATA_EVENTID,

    /* Event to report a rogue ap info that is detected in fw */
    WMI_PDEV_RAP_INFO_EVENTID,

    WMI_CHAN_RF_CHARACTERIZATION_INFO_EVENTID,

    /** 2nd extension of SERVICE_READY msg with extra target capability info */
    WMI_SERVICE_READY_EXT2_EVENTID,

    /**
     * vdev restart response for multiple vdevs in response to
     * MULTIPLE_VDEV_RESTART_REQUEST
     */
    WMI_PDEV_MULTIPLE_VDEV_RESTART_RESP_EVENTID,

    /** WMI event in response to TPC STATS command */
    WMI_PDEV_GET_TPC_STATS_EVENTID,

    /* Event to get DPD status from HALPHY */
    WMI_PDEV_GET_DPD_STATUS_EVENTID,

    /* Event to get Calibration status from HALPHY */
    WMI_PDEV_GET_HALPHY_CAL_STATUS_EVENTID,

    /* Event to set halphy cal bitmap */
    WMI_PDEV_SET_HALPHY_CAL_BMAP_EVENTID,

    /* Event to get AOA phasedelta values from HALPHY */
    WMI_PDEV_AOA_PHASEDELTA_EVENTID,

    WMI_PDEV_FIPS_EXTEND_EVENTID,

    /* Event to send packet log decode information */
    WMI_PDEV_PKTLOG_DECODE_INFO_EVENTID,

    /**
     * RSSI dB to dBm conversion params info event
     * sent to host after channel/bw/chainmask change per pdev.
     */
    WMI_PDEV_RSSI_DBM_CONVERSION_PARAMS_INFO_EVENTID,

    /* Event to indicate Schedule tid queue suspended info */
    WMI_PDEV_SCHED_TIDQ_SUSP_INFO_EVENTID,

    /* Event to send target rate to power table update status */
    WMI_PDEV_SET_TGTR2P_TABLE_EVENTID,


    /* VDEV specific events */
    /** VDEV started event in response to VDEV_START request */
    WMI_VDEV_START_RESP_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_VDEV),
    /** vdev stopped event , generated in response to VDEV_STOP request */
    WMI_VDEV_STOPPED_EVENTID,
    /* Indicate the set key (used for setting per
     * peer unicast and per vdev multicast)
     * operation has completed */
    WMI_VDEV_INSTALL_KEY_COMPLETE_EVENTID,
    /* NOTE: WMI_VDEV_MCC_BCN_INTERVAL_CHANGE_REQ_EVENTID would be deprecated. Please
     don't use this for any new implementations */
    /* Firmware requests dynamic change to a specific beacon interval for a specific vdev ID in MCC scenario.
     This request is valid only for vdevs operating in soft AP or P2P GO mode */
    WMI_VDEV_MCC_BCN_INTERVAL_CHANGE_REQ_EVENTID,

    /* Return the TSF timestamp of specified vdev */
    WMI_VDEV_TSF_REPORT_EVENTID,

    /* FW response to Host for vdev delete cmdid */
    WMI_VDEV_DELETE_RESP_EVENTID,

    /* DISA feature: FW response to Host with encrypted/decrypted 802.11 DISA frame */
    WMI_VDEV_ENCRYPT_DECRYPT_DATA_RESP_EVENTID,

    /** event to report mac randomization success **/
    WMI_VDEV_ADD_MAC_ADDR_TO_RX_FILTER_STATUS_EVENTID,

    /* event for ARP stats collection */
    WMI_VDEV_GET_ARP_STAT_EVENTID,

    /** get tx power event in response to VDEV_GET_TX_POWER request */
    WMI_VDEV_GET_TX_POWER_EVENTID,

    WMI_VDEV_BCN_RECEPTION_STATS_EVENTID,

    /* provide LTE-Coex state */
    WMI_VDEV_GET_MWS_COEX_STATE_EVENTID,

    /* provide LTE-Coex Dynamic Power Back-off info */
    WMI_VDEV_GET_MWS_COEX_DPWB_STATE_EVENTID,

    /* provide LTE-Coex TDM info */
    WMI_VDEV_GET_MWS_COEX_TDM_STATE_EVENTID,

    /* provide LTE-Coex IDRx info */
    WMI_VDEV_GET_MWS_COEX_IDRX_STATE_EVENTID,

    /* provide LTE-Coex antenna sharing info */
    WMI_VDEV_GET_MWS_COEX_ANTENNA_SHARING_STATE_EVENTID,

    /* Event to handle FW offloaded mgmt packets */
    WMI_VDEV_MGMT_OFFLOAD_EVENTID,

    /* FW response to Host for delete all peer cmdid */
    WMI_VDEV_DELETE_ALL_PEER_RESP_EVENTID,

    /** Indicates host to start/stop strobing for QTIMER periodically */
    WMI_VDEV_AUDIO_SYNC_START_STOP_EVENTID,
    /** Sends the final offset in the QTIMERs of both master and slave */
    WMI_VDEV_AUDIO_SYNC_Q_MASTER_SLAVE_OFFSET_EVENTID,
    /** VDEV_SEND_BIG_DATA_EVENT IS DEPRECATED - DO NOT USE */
    WMI_VDEV_SEND_BIG_DATA_EVENTID,
    /** send BIG DATA stats to host phase 2 */
    WMI_VDEV_SEND_BIG_DATA_P2_EVENTID,
    /** Latency related information received from beacon IE */
    WMI_VDEV_BCN_LATENCY_EVENTID,
    /** Disconnect request from FW */
    WMI_VDEV_DISCONNECT_EVENTID,
    /** Send Smart Monitor related params to host */
    WMI_VDEV_SMART_MONITOR_EVENTID,
    /** Send status of vdev mac address update request to host */
    WMI_VDEV_UPDATE_MAC_ADDR_CONF_EVENTID,
    /** event to report latency level honored by FW */
    WMI_VDEV_LATENCY_LEVEL_EVENTID,

    /* peer specific events */
    /** FW reauet to kick out the station for reasons like inactivity,lack of response ..etc */
    WMI_PEER_STA_KICKOUT_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_PEER),

    /** Peer Info Event with data_rate, RSSI, tx_fail_cnt etc */
    WMI_PEER_INFO_EVENTID,

    /** Event indicating that TX fail count reaching threshold */
    WMI_PEER_TX_FAIL_CNT_THR_EVENTID,

    /* Return the estimate link speed for the Peer specified in the
     * WMI_PEER_GET_ESTIMATED_LINKSPEED_CMDID command.
     */
    WMI_PEER_ESTIMATED_LINKSPEED_EVENTID,
    /* Return the peer state
     * WMI_PEER_SET_PARAM_CMDID, WMI_PEER_AUTHORIZE
     */
    WMI_PEER_STATE_EVENTID,

    /* Peer Assoc Conf event to confirm fw had received PEER_ASSOC_CMD.
     * After that, host will send Mx message.
     * Otherwise, host will pause any Mx(STA:M2/M4) message
     */
    WMI_PEER_ASSOC_CONF_EVENTID,

    /* FW response to Host for peer delete cmdid */
    WMI_PEER_DELETE_RESP_EVENTID,

    /** Valid rate code list for peer  */
    WMI_PEER_RATECODE_LIST_EVENTID,
    WMI_WDS_PEER_EVENTID,
    WMI_PEER_STA_PS_STATECHG_EVENTID,
    /** Peer Ant Div Info Event with RSSI per chain, etc */
    WMI_PEER_ANTDIV_INFO_EVENTID,

    /*
     * WMI_PEER_RESERVED_EVENTID
     * These values are used for placeholders, to allow the subsequent
     * WMI_PEER_OPER_MODE_CHANGE_EVENTID constant to have the same value
     * as it had in its original location, when it was mistakenly placed
     * amongst the WMI_PEER CMDID defs.
     *
     * These WMI_PEER_RESERVED values can be replaced with actual WMI peer
     * event message IDs, though it will be simpler to instead add new
     * WMI_PEER EVENTID defs at the end of the WMI_GRP_PEER WMI_EVT_GRP.
     */
    WMI_PEER_RESERVED0_EVENTID,
    WMI_PEER_RESERVED1_EVENTID,
    WMI_PEER_RESERVED2_EVENTID,
    WMI_PEER_RESERVED3_EVENTID,
    WMI_PEER_RESERVED4_EVENTID,
    WMI_PEER_RESERVED5_EVENTID,
    WMI_PEER_RESERVED6_EVENTID,
    WMI_PEER_RESERVED7_EVENTID,
    WMI_PEER_RESERVED8_EVENTID,
    WMI_PEER_RESERVED9_EVENTID,
    WMI_PEER_RESERVED10_EVENTID,
    /** Peer operating mode change indication sent to host to update stats */
    WMI_PEER_OPER_MODE_CHANGE_EVENTID,

    /** report the current tx PN for the peer */
    WMI_PEER_TX_PN_RESPONSE_EVENTID,

    WMI_PEER_CFR_CAPTURE_EVENTID,

    /* Peer Create Conf event to confirm fw had received WMI_PEER_CREATE_CMDID
     * and status of WMI_PEER_CREATE_CMDID.
     */
    WMI_PEER_CREATE_CONF_EVENTID,

    WMI_PEER_RX_PN_RESPONSE_EVENTID,


    /* beacon/mgmt specific events */
    /** RX management frame. the entire frame is carried along with the event.  */
    WMI_MGMT_RX_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MGMT),
    /** software beacon alert event to Host requesting host to Queue a beacon for transmission
     use only in host beacon mode */
    WMI_HOST_SWBA_EVENTID,
    /** beacon tbtt offset event indicating the tsf offset of the tbtt from the theoretical value.
     tbtt offset is normally 0 and will be non zero if there are multiple VDEVs operating in
     staggered beacon transmission mode */
    WMI_TBTTOFFSET_UPDATE_EVENTID,

    /** event after the first beacon is transmitted following
             a change in the template.*/
    WMI_OFFLOAD_BCN_TX_STATUS_EVENTID,
    /** event after the first probe response is transmitted following
             a change in the template.*/
    WMI_OFFLOAD_PROB_RESP_TX_STATUS_EVENTID,
    /** Event for Mgmt TX completion event */
    WMI_MGMT_TX_COMPLETION_EVENTID,
    /** Event for Mgmt TX bundle completion event */
    WMI_MGMT_TX_BUNDLE_COMPLETION_EVENTID,
    /** vdev_map used in WMI_TBTTOFFSET_UPDATE_EVENTID supports max 32 vdevs.
     *   Use this event if number of vdevs > 32.
     */
    WMI_TBTTOFFSET_EXT_UPDATE_EVENTID,
    /** Event for offchan data TX completion event */
    WMI_OFFCHAN_DATA_TX_COMPLETION_EVENTID,

    /** software FILS Discovery Frame alert event to Host, requesting host to Queue an FD frame for transmission */
    WMI_HOST_SWFDA_EVENTID,

    /** software beacon alert event to Host requesting host to Queue a beacon for transmission.
     *   Used only in host beacon mode. */
    WMI_HOST_SWBA_V2_EVENTID,

    /** Event for QoS null frame TX completion  */
    WMI_QOS_NULL_FRAME_TX_COMPLETION_EVENTID,

    /** WMI event for Firmware Consumed/Dropped Rx management frames indication */
    WMI_MGMT_RX_FW_CONSUMED_EVENTID,


    /* ADDBA Related WMI Events*/
    /** Indication the completion of the prior
     WMI_PEER_TID_DELBA_CMDID(initiator) */
    WMI_TX_DELBA_COMPLETE_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_BA_NEG),
    /** Indication the completion of the prior
     *WMI_PEER_TID_ADDBA_CMDID(initiator) */
    WMI_TX_ADDBA_COMPLETE_EVENTID,

    /* Seq num returned from hw for a sta/tid pair */
    WMI_BA_RSP_SSN_EVENTID,

    /* Aggregation state requested by BTC */
    WMI_AGGR_STATE_TRIG_EVENTID,

    /** Roam event to trigger roaming on host */
    WMI_ROAM_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_ROAM),

    /** matching AP found from list of profiles */
    WMI_PROFILE_MATCH,
    /** roam synch event */
    WMI_ROAM_SYNCH_EVENTID,
    /** roam synch frame event */
    WMI_ROAM_SYNCH_FRAME_EVENTID,
    /** various roam scan stats */
    WMI_ROAM_SCAN_STATS_EVENTID,
    /** Blacklisted AP information event */
    WMI_ROAM_BLACKLIST_EVENTID,
    /** Roam Pre-Authentication start event */
    WMI_ROAM_PREAUTH_START_EVENTID,
    /** Roaming PMKID request event */
    WMI_ROAM_PMKID_REQUEST_EVENTID,
    /** roam stats */
    WMI_ROAM_STATS_EVENTID,
    /** Roam scan channels list */
    WMI_ROAM_SCAN_CHANNEL_LIST_EVENTID,
    /** Firmware roam capability information */
    WMI_ROAM_CAPABILITY_REPORT_EVENTID,
    /** Send AP frame content like beacon/probe resp etc.. */
    WMI_ROAM_FRAME_EVENTID,
    /** Send firmware ini value corresponding to param_id */
    WMI_ROAM_GET_VENDOR_CONTROL_PARAM_EVENTID,

    /** P2P disc found */
    WMI_P2P_DISC_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_P2P),
    /** send noa info to host when noa is changed for beacon tx offload enable */
    WMI_P2P_NOA_EVENTID,
    /** send p2p listen offload stopped event with different reason */
    WMI_P2P_LISTEN_OFFLOAD_STOPPED_EVENTID,

    /** Send EGAP Info to host */
    WMI_AP_PS_EGAP_INFO_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_AP_PS),

    /* send pdev resume event to host after pdev resume. */
    WMI_PDEV_RESUME_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_SUSPEND),

    /** WOW wake up host event.generated in response to WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID.
     will cary wake reason */
    WMI_WOW_WAKEUP_HOST_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_WOW),
    WMI_D0_WOW_DISABLE_ACK_EVENTID,
    WMI_WOW_INITIAL_WAKEUP_EVENTID,
    WMI_WOW_COAP_BUF_INFO_EVENTID,

    /* RTT related event ID */
    /** RTT measurement report */
    WMI_RTT_MEASUREMENT_REPORT_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_RTT),
    /** TSF measurement report */
    WMI_TSF_MEASUREMENT_REPORT_EVENTID,
    /** RTT error report */
    WMI_RTT_ERROR_REPORT_EVENTID,
    /** RTT 11az PASN peer create request */
    WMI_RTT_PASN_PEER_CREATE_REQ_EVENTID,
    /** RTT 11az PASN peer delete event */
    WMI_RTT_PASN_PEER_DELETE_EVENTID,

    /*STATS specific events*/
    /** txrx stats event requested by host */
    WMI_STATS_EXT_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_STATS),
    /** FW iface link stats Event  */
    WMI_IFACE_LINK_STATS_EVENTID,
    /** FW iface peer link stats Event  */
    WMI_PEER_LINK_STATS_EVENTID,
    /** FW Update radio stats Event  */
    WMI_RADIO_LINK_STATS_EVENTID,

    /**  Firmware memory dump Complete event*/
    WMI_UPDATE_FW_MEM_DUMP_EVENTID,

    /** Event indicating the DIAG logs/events supported by FW */
    WMI_DIAG_EVENT_LOG_SUPPORTED_EVENTID,

    /** Instantaneous RSSI event */
    WMI_INST_RSSI_STATS_EVENTID,

    /** FW update tx power levels event */
    WMI_RADIO_TX_POWER_LEVEL_STATS_EVENTID,

    /** This event is used to report wlan stats to host.
     * It is triggered under 3 conditions:
     * (a) Periodic timer timed out, based on the period specified
     *     by WMI_PDEV_PARAM_STATS_OBSERVATION_PERIOD
     * (b) Whenever any of the (enabled) stats thresholds specified
     *     in the WMI_PDEV_SET_STATS_THRESHOLD_CMD message is exceeded
     *     within the current stats period.
     * (c) In response to the one-time wlan stats request of
     *     WMI_REQUEST_WLAN_STATS_CMDID from host.
     *
     *  If this event is triggered by condition a or b,
     *  the stats counters are cleared at the start of each period.
     *  But if it is triggered by condition c, stats counters won't be cleared.
     */
    WMI_REPORT_STATS_EVENTID,

    /** Event indicating RCPI of the peer requested by host in the WMI_REQUEST_RCPI_CMDID */
    WMI_UPDATE_RCPI_EVENTID,

    /** This event is used to respond to WMI_REQUEST_PEER_STATS_INFO_CMDID
     *  and report peer stats info to host */
    WMI_PEER_STATS_INFO_EVENTID,

    /** This event is used to respond to WMI_REQUEST_RADIO_CHAN_STATS_CMDID
     *  and report radio channel stats to host */
    WMI_RADIO_CHAN_STATS_EVENTID,

    /** This event is used to respond to WMI_REQUEST_WLM_STATS_CMDID
     *  and report WLM (WLAN latency manager) stats info to host */
    WMI_WLM_STATS_EVENTID,

    /** This event is used to respond to WMI_REQUEST_CTRL_PATH_STATS_CMDID
     *  and report stats info to host */
    WMI_CTRL_PATH_STATS_EVENTID,

    /** This event is used to respond to
     * WMI_REQUEST_HALPHY_CTRL_PATH_STATS_CMDID and report stats info to host
     */
    WMI_HALPHY_CTRL_PATH_STATS_EVENTID,

    /** FW IPA link stats Event */
    WMI_IPA_LINK_STATS_EVENTID,


    /* NLO specific events */
    /** NLO match event after the first match */
    WMI_NLO_MATCH_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_NLO_OFL),

    /** NLO scan complete event */
    WMI_NLO_SCAN_COMPLETE_EVENTID,

    /** APFIND specific events */
    WMI_APFIND_EVENTID,

    /** passpoint network match event */
    WMI_PASSPOINT_MATCH_EVENTID,

    /** GTK offload stautus event requested by host */
    WMI_GTK_OFFLOAD_STATUS_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_GTK_OFL),

    /** GTK offload failed to rekey event */
    WMI_GTK_REKEY_FAIL_EVENTID,

    /* CSA handling event */
    WMI_CSA_HANDLING_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_CSA_OFL),
    /* CSA IE received event */
    WMI_CSA_IE_RECEIVED_EVENTID,

    /*chatter query reply event*/
    WMI_CHATTER_PC_QUERY_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_CHATTER),

    /** DFS related events */
    WMI_PDEV_DFS_RADAR_DETECTION_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_DFS),
    /** Indicate channel-availability-check completion event to host */
    WMI_VDEV_DFS_CAC_COMPLETE_EVENTID,
    /** Indicate off-channel-availability-check completion event to host */
    WMI_VDEV_ADFS_OCAC_COMPLETE_EVENTID,

    /** echo event in response to echo command */
    WMI_ECHO_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MISC),

    /* !!IMPORTANT!!
     * If you need to add a new WMI event ID to the WMI_GRP_MISC sub-group,
     * please make sure you add it BEHIND WMI_PDEV_UTF_EVENTID,
     * as we MUST have a fixed value here to maintain compatibility between
     * UTF and the ART2 driver
     */
    /** UTF specific WMI event */
    WMI_PDEV_UTF_EVENTID,

    /** event carries buffered debug messages  */
    WMI_DEBUG_MESG_EVENTID,
    /** FW stats(periodic or on shot)  */
    WMI_UPDATE_STATS_EVENTID,
    /** debug print message used for tracing FW code while debugging  */
    WMI_DEBUG_PRINT_EVENTID,
    /** DCS wlan or non-wlan interference event
     */
    WMI_DCS_INTERFERENCE_EVENTID,
    /** VI spoecific event  */
    WMI_PDEV_QVIT_EVENTID,
    /** FW code profile data in response to profile request  */
    WMI_WLAN_PROFILE_DATA_EVENTID,
    /* Factory Testing Mode request event
     * used for integrated chipsets */
    WMI_PDEV_FTM_INTG_EVENTID,
    /* avoid list of frequencies .
     */
    WMI_WLAN_FREQ_AVOID_EVENTID,
    /* Indicate the keepalive parameters */
    WMI_VDEV_GET_KEEPALIVE_EVENTID,
    /*Thermal Management event*/
    WMI_THERMAL_MGMT_EVENTID,

    /* Container for DIAG event and log data */
    WMI_DIAG_DATA_CONTAINER_EVENTID,

    /* host auto shutdown event */
    WMI_HOST_AUTO_SHUTDOWN_EVENTID,

    /*update mib counters together with WMI_UPDATE_STATS_EVENTID*/
    WMI_UPDATE_WHAL_MIB_STATS_EVENTID,

    /*update ht/vht info based on vdev (rx and tx NSS and preamble)*/
    WMI_UPDATE_VDEV_RATE_STATS_EVENTID,

    WMI_DIAG_EVENTID,

    /** Set OCB Sched Response, deprecated */
    WMI_OCB_SET_SCHED_EVENTID,

    /** event to indicate the flush of the buffered debug messages is complete*/
    WMI_DEBUG_MESG_FLUSH_COMPLETE_EVENTID,

    /** event to report mix/max RSSI breach events */
    WMI_RSSI_BREACH_EVENTID,

    /** event to report completion of data storage into flash memory */
    WMI_TRANSFER_DATA_TO_FLASH_COMPLETE_EVENTID,

    /** event to report SCPC calibrated data to host */
    WMI_PDEV_UTF_SCPC_EVENTID,

    /** event to provide requested data from the target's flash memory */
    WMI_READ_DATA_FROM_FLASH_EVENTID,

    /** event to report rx aggregation failure frame information */
    WMI_REPORT_RX_AGGR_FAILURE_EVENTID,

    /** event to upload a PKGID to host to identify chip for various products */
    WMI_PKGID_EVENTID,

    /* Thermal Throttling stats event id for every pdev and zones, etc */
    WMI_THERM_THROT_STATS_EVENTID,

    /* WMI UNIT TEST event */
    WMI_UNIT_TEST_EVENTID,

    /** event to report result of host configure SAR2 */
    WMI_SAR2_RESULT_EVENTID,

    /** event to get TX power per input HALPHY parameters */
    WMI_GET_TPC_POWER_EVENTID,

    /** event to provide MU-EDCA Parameters (to update host's beacon config) */
    WMI_MUEDCA_PARAMS_CONFIG_EVENTID,

    /** event to get ELNA BYPASS status */
    WMI_GET_ELNA_BYPASS_EVENTID,

    /** event to report ANI level of the channels */
    WMI_GET_CHANNEL_ANI_EVENTID,

    /* WMI event to available scratch registers */
    WMI_PMM_AVAILABLE_SCRATCH_REG_EVENTID,

    /* WMI event to scratch registers allocation */
    WMI_PMM_SCRATCH_REG_ALLOCATION_COMPLETE_EVENTID,

    /* WMI event to indicate Helath Monitor Infra init done */
    WMI_HEALTH_MON_INIT_DONE_EVENTID,

    /* WMI XGAP enable command response event ID */
    WMI_XGAP_ENABLE_COMPLETE_EVENTID,

    /* T2H HPA message */
    WMI_HPA_EVENTID,

    /* WMI standalone command complete Event */
    WMI_VDEV_STANDALONE_SOUND_COMPLETE_EVENTID,


    /* GPIO Event */
    WMI_GPIO_INPUT_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_GPIO),
    /** upload H_CV info WMI event
     * to indicate uploaded H_CV info to host
     */
    WMI_UPLOADH_EVENTID,

    /** capture H info WMI event
     * to indicate captured H info to host
     */
    WMI_CAPTUREH_EVENTID,
    /* hw RFkill */
    WMI_RFKILL_STATE_CHANGE_EVENTID,

    /* Smart Antenna Controller status */
    WMI_SMARTANT_STATE_CHANGE_EVENTID,

    WMI_GPIO_STATE_RES_EVENTID,

    /* TDLS Event */
    WMI_TDLS_PEER_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_TDLS),

    /* Resmgr Event */
    /* deliver the new channel time quota for home channels */
    WMI_RESMGR_CHAN_TIME_QUOTA_CHANGED_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_RESMGR),

    /** STA SMPS Event */
    /** force SMPS mode */
    WMI_STA_SMPS_FORCE_MODE_COMPLETE_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_STA_SMPS),

    /*location scan event*/
    /*report the firmware's capability of batch scan*/
    WMI_BATCH_SCAN_ENABLED_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_LOCATION_SCAN),
    /*batch scan result*/
    WMI_BATCH_SCAN_RESULT_EVENTID,
    /* OEM Event */
    WMI_OEM_CAPABILITY_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_OEM), /*DEPRECATED*/
    WMI_OEM_MEASUREMENT_REPORT_EVENTID, /* DEPRECATED */
    WMI_OEM_ERROR_REPORT_EVENTID, /* DEPRECATED */
    WMI_OEM_RESPONSE_EVENTID,
    WMI_OEM_DMA_RING_CFG_RSP_EVENTID,
    WMI_OEM_DMA_BUF_RELEASE_EVENTID,
    WMI_OEM_DATA_EVENTID,

    /* NAN Event */
    WMI_NAN_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_NAN),
    WMI_NAN_DISC_IFACE_CREATED_EVENTID,
    WMI_NAN_DISC_IFACE_DELETED_EVENTID,
    WMI_NAN_STARTED_CLUSTER_EVENTID,
    WMI_NAN_JOINED_CLUSTER_EVENTID,
    WMI_NAN_DMESG_EVENTID,

    /* Coex Event */
    WMI_COEX_REPORT_ANTENNA_ISOLATION_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_COEX),
    WMI_SAR_GET_LIMITS_EVENTID,
    /** Dedicated BT Antenna Mode (DBAM) complete event */
    WMI_COEX_DBAM_COMPLETE_EVENTID,
    WMI_TAS_POWER_HISTORY_EVENTID,

    /* LPI Event */
    WMI_LPI_RESULT_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_LPI),
    WMI_LPI_STATUS_EVENTID,
    WMI_LPI_HANDOFF_EVENTID,

    /* ExtScan events */
    WMI_EXTSCAN_START_STOP_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_EXTSCAN),
    WMI_EXTSCAN_OPERATION_EVENTID,
    WMI_EXTSCAN_TABLE_USAGE_EVENTID,
    WMI_EXTSCAN_CACHED_RESULTS_EVENTID,
    WMI_EXTSCAN_WLAN_CHANGE_RESULTS_EVENTID,
    WMI_EXTSCAN_HOTLIST_MATCH_EVENTID,
    WMI_EXTSCAN_CAPABILITIES_EVENTID,
    WMI_EXTSCAN_HOTLIST_SSID_MATCH_EVENTID,

    /* mDNS offload events */
    WMI_MDNS_STATS_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MDNS_OFL),

    /* SAP Authentication offload events */
    WMI_SAP_OFL_ADD_STA_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_SAP_OFL),
    WMI_SAP_OFL_DEL_STA_EVENTID,
    WMI_SAP_OBSS_DETECTION_REPORT_EVENTID,

    /* OBSS Offloads events */
    WMI_OBSS_COLOR_COLLISION_DETECTION_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_OBSS_OFL),

    /** Out-of-context-of-bss (OCB) events */
    WMI_OCB_SET_CONFIG_RESP_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_OCB),
    WMI_OCB_GET_TSF_TIMER_RESP_EVENTID,
    WMI_DCC_GET_STATS_RESP_EVENTID,
    WMI_DCC_UPDATE_NDL_RESP_EVENTID,
    WMI_DCC_STATS_EVENTID,

    /* System-On-Chip events */
    WMI_SOC_SET_HW_MODE_RESP_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_SOC),
    WMI_SOC_HW_MODE_TRANSITION_EVENTID,
    WMI_SOC_SET_DUAL_MAC_CONFIG_RESP_EVENTID,

    /** Motion Aided WiFi Connectivity (MAWC) events */
    WMI_MAWC_ENABLE_SENSOR_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MAWC),

    /** pkt filter (BPF) offload relevant events */
    WMI_BPF_CAPABILIY_INFO_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_BPF_OFFLOAD),
    WMI_BPF_VDEV_STATS_INFO_EVENTID,
    WMI_BPF_GET_VDEV_WORK_MEMORY_RESP_EVENTID,

    /* RMC specific event */
    /* RMC manual leader selected event */
    WMI_RMC_NEW_LEADER_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_RMC),

    /** WMI events related to regulatory offload */
    WMI_REG_CHAN_LIST_CC_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_REGULATORY),
    WMI_11D_NEW_COUNTRY_EVENTID,
    WMI_REG_CHAN_LIST_CC_EXT_EVENTID,
    WMI_AFC_EVENTID,

    /** Events for TWT(Target Wake Time) of STA and AP  */
    WMI_TWT_ENABLE_COMPLETE_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_TWT),
    WMI_TWT_DISABLE_COMPLETE_EVENTID,
    WMI_TWT_ADD_DIALOG_COMPLETE_EVENTID,
    WMI_TWT_DEL_DIALOG_COMPLETE_EVENTID,
    WMI_TWT_PAUSE_DIALOG_COMPLETE_EVENTID,
    WMI_TWT_RESUME_DIALOG_COMPLETE_EVENTID,
    WMI_TWT_BTWT_INVITE_STA_COMPLETE_EVENTID,
    WMI_TWT_BTWT_REMOVE_STA_COMPLETE_EVENTID,
    WMI_TWT_SESSION_STATS_EVENTID,
    WMI_TWT_NUDGE_DIALOG_COMPLETE_EVENTID,
    WMI_TWT_NOTIFY_EVENTID,
    WMI_TWT_ACK_EVENTID,

    /** Events in Prototyping phase */
    WMI_NDI_CAP_RSP_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_PROTOTYPE),
    WMI_NDP_INITIATOR_RSP_EVENTID,
    WMI_NDP_RESPONDER_RSP_EVENTID,
    WMI_NDP_END_RSP_EVENTID,
    WMI_NDP_INDICATION_EVENTID,
    WMI_NDP_CONFIRM_EVENTID,
    WMI_NDP_END_INDICATION_EVENTID,
    WMI_WLAN_COEX_BT_ACTIVITY_EVENTID,
    WMI_NDL_SCHEDULE_UPDATE_EVENTID,
    WMI_NDP_EVENTID,

    /** WMI events related to motion detection */
    WMI_MOTION_DET_HOST_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MOTION_DET),
    WMI_MOTION_DET_BASE_LINE_HOST_EVENTID,

    /** WMI events related to Estimation of Service Parameters (802.11mc) */
    WMI_ESP_ESTIMATE_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_ESP),

    /** WMI events related to Audio Frame aggregation feature **/
    WMI_AUDIO_AGGR_REPORT_STATISTICS_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_AUDIO),
    WMI_AUDIO_AGGR_SCHED_METHOD_EVENTID,

    /** Vendor defined WMI events **/
    WMI_VENDOR_PDEV_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_VENDOR),
    WMI_VENDOR_VDEV_EVENTID,
    WMI_VENDOR_PEER_EVENTID,
    /** Further vendor event IDs can be added below **/

    /** WMI event specific to MLO **/
    /** MLO link active / inactive response event */
    WMI_MLO_LINK_SET_ACTIVE_RESP_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MLO),
    /* Response event for MLO setup cmd */
    WMI_MLO_SETUP_COMPLETE_EVENTID,
    /* Response event for MLO teardown cmd */
    WMI_MLO_TEARDOWN_COMPLETE_EVENTID,
    /* Response event for Link Removal Cmd */
    WMI_MLO_LINK_REMOVAL_EVENTID,
    /* Response event for WMI_MLO_AP_VDEV_TID_TO_LINK_MAP_CMDID */
    WMI_MLO_AP_VDEV_TID_TO_LINK_MAP_EVENTID,
    /* Response event for WMI_MLO_VDEV_GET_LINK_INFO_CMDID */
    WMI_MLO_VDEV_LINK_INFO_EVENTID,
    /** request host to do T2LM neg to the un-disabled link */
    WMI_MLO_LINK_DISABLE_REQUEST_EVENTID,

    /* WMI event specific to Quiet handling */
    WMI_QUIET_HANDLING_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_QUIET_OFL),

    /* ODD events */
    WMI_ODD_LIVEDUMP_RESPONSE_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_ODD),

    /** WMI events specific to manually-triggered UL */
    /**
     * WMI Event to send Manual UL OFDMA Trigger frame status feedback to Host
     */
    WMI_MANUAL_UL_OFDMA_TRIG_FEEDBACK_EVENTID = WMI_EVT_GRP_START_ID(WMI_GRP_MANUAL_UL_TRIG),
    /**
     * WMI Event to send Manual UL OFDMA Trigger frame RX PPDU info to Host
     */
    WMI_MANUAL_UL_OFDMA_TRIG_RX_PEER_USERINFO_EVENTID,
} WMI_EVT_ID;

/* defines for OEM message sub-types */
#define WMI_OEM_CAPABILITY_REQ     0x01
#define WMI_OEM_CAPABILITY_RSP     0x02
#define WMI_OEM_MEASUREMENT_REQ    0x03
#define WMI_OEM_MEASUREMENT_RSP    0x04
#define WMI_OEM_ERROR_REPORT_RSP   0x05
#define WMI_OEM_NAN_MEAS_REQ       0x06
#define WMI_OEM_NAN_MEAS_RSP       0x07
#define WMI_OEM_NAN_PEER_INFO      0x08
#define WMI_OEM_CONFIGURE_LCR      0x09
#define WMI_OEM_CONFIGURE_LCI      0x0A


#define WMI_CHAN_LIST_TAG                0x1
#define WMI_SSID_LIST_TAG                0x2
#define WMI_BSSID_LIST_TAG               0x3
#define WMI_IE_TAG                       0x4
#define WMI_SCAN_START_OFFSET_TAG        0x5

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_channel */
    /** primary 20 MHz channel frequency in mhz */
    A_UINT32 mhz;
    /** Center frequency 1 in MHz*/
    A_UINT32 band_center_freq1;
    /** Center frequency 2 in MHz - valid only for 11acvht 80plus80 mode*/
    A_UINT32 band_center_freq2;
    /** channel info described below */
    A_UINT32 info;
    /** contains min power, max power, reg power and reg class id.  */
    A_UINT32 reg_info_1;
    /** contains antennamax, max bandwidth */
    A_UINT32 reg_info_2;
} wmi_channel;

typedef enum {
    WMI_CHANNEL_CHANGE_CAUSE_NONE = 0,
    WMI_CHANNEL_CHANGE_CAUSE_CSA,
} wmi_channel_change_cause;

/** channel info consists of 6 bits of channel mode */

#define WMI_SET_CHANNEL_MODE(pwmi_channel,val) do { \
     (pwmi_channel)->info &= 0xffffffc0;            \
     (pwmi_channel)->info |= (val);                 \
     } while (0)

#define WMI_GET_CHANNEL_MODE(pwmi_channel) ((pwmi_channel)->info & 0x0000003f)

#define WMI_CHAN_FLAG_HT40_PLUS   6
#define WMI_CHAN_FLAG_PASSIVE     7
#define WMI_CHAN_ADHOC_ALLOWED    8
#define WMI_CHAN_AP_DISABLED      9
#define WMI_CHAN_FLAG_DFS         10
#define WMI_CHAN_FLAG_ALLOW_HT    11  /* HT is allowed on this channel */
#define WMI_CHAN_FLAG_ALLOW_VHT   12  /* VHT is allowed on this channel */
#define WMI_CHANNEL_CHANGE_CAUSE_CSA 13 /*Indicate reason for channel switch */
#define WMI_CHAN_FLAG_HALF_RATE     14  /* Indicates half rate channel */
#define WMI_CHAN_FLAG_QUARTER_RATE  15  /* Indicates quarter rate channel */
#define WMI_CHAN_FLAG_DFS_CFREQ2  16 /* Enable radar event reporting for sec80 in VHT80p80 */
#define WMI_CHAN_FLAG_ALLOW_HE    17 /* HE (11ax) is allowed on this channel */
#define WMI_CHAN_FLAG_PSC         18 /* Indicate it is a PSC (preferred scanning channel) */
#define WMI_CHAN_FLAG_NAN_DISABLED 19 /* Indicates that NAN operations are disabled on this channel */
#define WMI_CHAN_FLAG_STA_DFS     20 /* Indicates if STA should process radar signals */
#define WMI_CHAN_FLAG_ALLOW_EHT   21 /* EHT (11be) is allowed on this channel */

#define WMI_SET_CHANNEL_FLAG(pwmi_channel,flag) do { \
        (pwmi_channel)->info |=  ((A_UINT32) 1 << flag);      \
     } while (0)

#define WMI_GET_CHANNEL_FLAG(pwmi_channel,flag)   \
        (((pwmi_channel)->info & ((A_UINT32) 1 << flag)) >> flag)

#define WMI_SET_CHANNEL_MIN_POWER(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_1 &= 0xffffff00;           \
     (pwmi_channel)->reg_info_1 |= (val & 0xff);         \
     } while (0)
#define WMI_GET_CHANNEL_MIN_POWER(pwmi_channel) ((pwmi_channel)->reg_info_1 & 0xff)

#define WMI_SET_CHANNEL_MAX_POWER(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_1 &= 0xffff00ff;           \
     (pwmi_channel)->reg_info_1 |= ((val & 0xff) << 8);  \
     } while (0)
#define WMI_GET_CHANNEL_MAX_POWER(pwmi_channel) ((((pwmi_channel)->reg_info_1) >> 8) & 0xff)

#define WMI_SET_CHANNEL_REG_POWER(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_1 &= 0xff00ffff;           \
     (pwmi_channel)->reg_info_1 |= ((val & 0xff) << 16); \
     } while (0)
#define WMI_GET_CHANNEL_REG_POWER(pwmi_channel) ((((pwmi_channel)->reg_info_1) >> 16) & 0xff)
#define WMI_SET_CHANNEL_REG_CLASSID(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_1 &= 0x00ffffff;             \
     (pwmi_channel)->reg_info_1 |= ((val & 0xff) << 24);   \
     } while (0)
#define WMI_GET_CHANNEL_REG_CLASSID(pwmi_channel) ((((pwmi_channel)->reg_info_1) >> 24) & 0xff)

#define WMI_SET_CHANNEL_ANTENNA_MAX(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_2 &= 0xffffff00;             \
     (pwmi_channel)->reg_info_2 |= (val & 0xff);           \
     } while (0)
#define WMI_GET_CHANNEL_ANTENNA_MAX(pwmi_channel) ((pwmi_channel)->reg_info_2 & 0xff)

/* max tx power is in 1 dBm units */
#define WMI_SET_CHANNEL_MAX_TX_POWER(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_2 &= 0xffff00ff;              \
     (pwmi_channel)->reg_info_2 |= ((val & 0xff) << 8);     \
     } while (0)
#define WMI_GET_CHANNEL_MAX_TX_POWER(pwmi_channel) ((((pwmi_channel)->reg_info_2)>>8) & 0xff)

/* max bw supported for each channel, enum wmi_channel_width as value */
#define WMI_SET_CHANNEL_MAX_BANDWIDTH(pwmi_channel,val) do { \
     (pwmi_channel)->reg_info_2 &= 0xff00ffff;              \
     (pwmi_channel)->reg_info_2 |= ((val & 0xff) << 16);     \
     } while (0)
#define WMI_GET_CHANNEL_MAX_BANDWIDTH(pwmi_channel) ((((pwmi_channel)->reg_info_2) >> 16) & 0xff)

/** HT Capabilities*/
#define WMI_HT_CAP_ENABLED                0x0001   /* HT Enabled/ disabled */
#define WMI_HT_CAP_HT20_SGI               0x0002   /* Short Guard Interval with HT20 */
#define WMI_HT_CAP_DYNAMIC_SMPS           0x0004   /* Dynamic MIMO powersave */
#define WMI_HT_CAP_TX_STBC                0x0008   /* B3 TX STBC */
#define WMI_HT_CAP_TX_STBC_MASK_SHIFT     3
#define WMI_HT_CAP_RX_STBC                0x0030   /* B4-B5 RX STBC */
#define WMI_HT_CAP_RX_STBC_MASK_SHIFT     4
#define WMI_HT_CAP_LDPC                   0x0040   /* LDPC supported */
#define WMI_HT_CAP_L_SIG_TXOP_PROT        0x0080   /* L-SIG TXOP Protection */
#define WMI_HT_CAP_MPDU_DENSITY           0x0700   /* MPDU Density */
#define WMI_HT_CAP_MPDU_DENSITY_MASK_SHIFT 8
#define WMI_HT_CAP_HT40_SGI               0x0800
#define WMI_HT_CAP_RX_LDPC                0x1000   /* LDPC RX support */
#define WMI_HT_CAP_TX_LDPC                0x2000   /* LDPC TX support */


/* These macros should be used when we wish to advertise STBC support for
 * only 1SS or 2SS or 3SS. */
#define WMI_HT_CAP_RX_STBC_1SS            0x0010   /* B4-B5 RX STBC */
#define WMI_HT_CAP_RX_STBC_2SS            0x0020   /* B4-B5 RX STBC */
#define WMI_HT_CAP_RX_STBC_3SS            0x0030   /* B4-B5 RX STBC */


#define WMI_HT_CAP_DEFAULT_ALL (WMI_HT_CAP_ENABLED       | \
                                WMI_HT_CAP_HT20_SGI      | \
                                WMI_HT_CAP_HT40_SGI      | \
                                WMI_HT_CAP_TX_STBC       | \
                                WMI_HT_CAP_RX_STBC       | \
                                WMI_HT_CAP_LDPC          | \
                                WMI_HT_CAP_TX_LDPC       | \
                                WMI_HT_CAP_RX_LDPC)

/* WMI_VHT_CAP_* these maps to ieee 802.11ac vht capability information
 field. The fields not defined here are not supported, or reserved.
 Do not change these masks and if you have to add new one follow the
 bitmask as specified by 802.11ac draft.
 */


#define WMI_VHT_CAP_MAX_MPDU_LEN_7935            0x00000001
#define WMI_VHT_CAP_MAX_MPDU_LEN_11454           0x00000002
#define WMI_VHT_CAP_MAX_MPDU_LEN_MASK            0x00000003
#define WMI_VHT_CAP_CH_WIDTH_160MHZ              0x00000004
#define WMI_VHT_CAP_CH_WIDTH_80P80_160MHZ        0x00000008
#define WMI_VHT_CAP_RX_LDPC                      0x00000010
#define WMI_VHT_CAP_SGI_80MHZ                    0x00000020
#define WMI_VHT_CAP_SGI_160MHZ                   0x00000040
#define WMI_VHT_CAP_TX_STBC                      0x00000080
#define WMI_VHT_CAP_RX_STBC_MASK                 0x00000300
#define WMI_VHT_CAP_RX_STBC_MASK_SHIFT           8
#define WMI_VHT_CAP_SU_BFORMER                   0x00000800
#define WMI_VHT_CAP_SU_BFORMEE                   0x00001000
#define WMI_VHT_CAP_MAX_CS_ANT_MASK              0x0000E000
#define WMI_VHT_CAP_MAX_CS_ANT_MASK_SHIFT        13
#define WMI_VHT_CAP_MAX_SND_DIM_MASK             0x00070000
#define WMI_VHT_CAP_MAX_SND_DIM_MASK_SHIFT       16
#define WMI_VHT_CAP_MU_BFORMER                   0x00080000
#define WMI_VHT_CAP_MU_BFORMEE                   0x00100000
#define WMI_VHT_CAP_TXOP_PS                      0x00200000
#define WMI_VHT_CAP_MAX_AMPDU_LEN_EXP            0x03800000
#define WMI_VHT_CAP_MAX_AMPDU_LEN_EXP_SHIFT      23
#define WMI_VHT_CAP_RX_FIXED_ANT                 0x10000000
#define WMI_VHT_CAP_TX_FIXED_ANT                 0x20000000
#define WMI_VHT_EXTENDED_NSS_BW_MASK             0xC0000000
#define WMI_VHT_EXTENDED_NSS_BW_MASK_SHIFT       30

/* TEMPORARY:
 * Preserve the incorrect old name as an alias for the correct new name
 * until all references to the old name have been removed from all hosts
 * and targets.
 */
#define WMI_VHT_CAP_MAX_AMPDU_LEN_EXP_SHIT WMI_VHT_CAP_MAX_AMPDU_LEN_EXP_SHIFT


/* These macros should be used when we wish to advertise STBC support for
 * only 1SS or 2SS or 3SS. */
#define WMI_VHT_CAP_RX_STBC_1SS 0x00000100
#define WMI_VHT_CAP_RX_STBC_2SS 0x00000200
#define WMI_VHT_CAP_RX_STBC_3SS 0x00000300

/* TEMPORARY:
 * Preserve the incorrect old name as an alias for the correct new name
 * until all references to the old name have been removed from all hosts
 * and targets.
 */
#define WMI_vHT_CAP_RX_STBC_3SS WMI_VHT_CAP_RX_STBC_3SS

/* TEMPORARY:
 * Spec does not have VHT TX LDPC capability bit. To Maintain backward
 * compatibility due to previous incorrect definition, the value is moved
 * from 0x4 to 0x0. No new use of WMI_VHT_CAP_TX_LDPC should be added.
 */
#define WMI_VHT_CAP_TX_LDPC 0x0


#define WMI_VHT_CAP_DEFAULT_ALL (WMI_VHT_CAP_MAX_MPDU_LEN_11454  |      \
                                 WMI_VHT_CAP_SGI_80MHZ           |      \
                                 WMI_VHT_CAP_TX_STBC             |      \
                                 WMI_VHT_CAP_RX_STBC_MASK        |      \
                                 WMI_VHT_CAP_RX_LDPC             |      \
                                 WMI_VHT_CAP_TX_LDPC             |      \
                                 WMI_VHT_CAP_MAX_AMPDU_LEN_EXP   |      \
                                 WMI_VHT_CAP_RX_FIXED_ANT        |      \
                                 WMI_VHT_CAP_TX_FIXED_ANT)

/* Interested readers refer to Rx/Tx MCS Map definition as defined in
 802.11ac
 */
#define WMI_VHT_MAX_MCS_EXT_SS_GET(vht_mcs_map, index) WMI_GET_BITS(vht_mcs_map, 16 + index, 1)
#define WMI_VHT_MAX_MCS_EXT_SS_SET(vht_mcs_map, index, value) WMI_SET_BITS(vht_mcs_map, 16 + index, 1, value)

/* Notification bit for Ext MCS 10/11 support */
#define WMI_VHT_MCS_NOTIFY_EXT_SS_GET(vht_mcs_map) WMI_GET_BITS(vht_mcs_map, 24, 1)
#define WMI_VHT_MCS_NOTIFY_EXT_SS_SET(vht_mcs_map, value) WMI_SET_BITS(vht_mcs_map, 24, 1, value)

#define WMI_VHT_MAX_MCS_4_SS_MASK(r,ss)      ((3 & (r)) << (((ss) - 1) << 1))
#define WMI_VHT_MAX_SUPP_RATE_MASK           0x1fff0000
#define WMI_VHT_MAX_SUPP_RATE_MASK_SHIFT     16

/** 11ax capabilities */
#define WMI_HE_CAP_PPE_PRESENT            0x00000001
#define WMI_HE_CAP_TWT_RESPONDER_SUPPORT  0x00000002
#define WMI_HE_CAP_TWT_REQUESTER_SUPPORT  0x00000004
#define WMI_HE_FRAG_SUPPORT_MASK          0x00000018
#define WMI_HE_FRAG_SUPPORT_SHIFT         3

#define WMI_HE_CAP_1X_LTF_400NS_GI_SUPPORT      0x00000001
#define WMI_HE_CAP_2X_LTF_400NS_GI_SUPPORT      0x00000002
#define WMI_HE_CAP_2X_LTF_160_80_80_SUPPORT     0x00000004
#define WMI_HE_CAP_RX_DL_OFDMA_SUPPORT          0x00000018
#define WMI_HE_CAP_RX_DL_MUMIMO_SUPPORT         0x00000030

#define WMI_HE_CAP_1X_LTF_400NS_GI_SUPPORT_GET(he_cap_info_dword1) \
    WMI_GET_BITS(he_cap_info_dword1, 0, 1)
#define WMI_HE_CAP_1X_LTF_400NS_GI_SUPPORT_SET(he_cap_info_dword1, value) \
    WMI_SET_BITS(he_cap_info_dword1, 0, 1, value)

#define WMI_HE_CAP_2X_LTF_400NS_GI_SUPPORT_GET(he_cap_info_dword1) \
    WMI_GET_BITS(he_cap_info_dword1, 1, 1)
#define WMI_HE_CAP_2X_LTF_400NS_GI_SUPPORT_SET(he_cap_info_dword1, value) \
    WMI_SET_BITS(he_cap_info_dword1, 1, 1, value)

#define WMI_HE_CAP_2X_LTF_160_80_80_SUPPORT_GET(he_cap_info_dword1) \
    WMI_GET_BITS(he_cap_info_dword1, 2, 1)
#define WMI_HE_CAP_2X_LTF_160_80_80_SUPPORT_SET(he_cap_info_dword1, value) \
    WMI_SET_BITS(he_cap_info_dword1, 2, 1, value)

#define WMI_HE_CAP_RX_DL_OFDMA_SUPPORT_GET(he_cap_info_dword1) \
    WMI_GET_BITS(he_cap_info_dword1, 3, 2)
#define WMI_HE_CAP_RX_DL_OFDMA_SUPPORT_SET(he_cap_info_dword1, value) \
    WMI_SET_BITS(he_cap_info_dword1, 3, 2, value)

#define WMI_HE_CAP_RX_DL_MUMIMO_SUPPORT_GET(he_cap_info_dword1) \
    WMI_GET_BITS(he_cap_info_dword1, 5, 2)
#define WMI_HE_CAP_RX_DL_MUMIMO_SUPPORT_SET(he_cap_info_dword1, value) \
    WMI_SET_BITS(he_cap_info_dword1, 5, 2, value)

/* Interested readers refer to Rx/Tx MCS Map definition as defined in 802.11ax
 */
#define WMI_HE_MAX_MCS_4_SS_MASK(r,ss)      ((3 & (r)) << (((ss) - 1) << 1))

/*
 * index ranges from 0 to 15, and is used for checking if MCS 12/13 is enabled
 * for a particular NSS.
 * The lower 8 bits (indices 0-7) within the 16 bits indicate MCS 12/13
 * enablement for BW <= 80MHz; the upper 8 bits (indices 8-15) within
 * the 16 bits indicate MCS 12/13 enablement for BW > 80MHz.
 * The 16 bits for the index values are within the upper bits (bits 31:16)
 * of a 32-bit word.
 */
#define WMI_HE_EXTRA_MCS_SS_GET(he_mcs_map_ext, index) \
    WMI_GET_BITS(he_mcs_map_ext, 16 + index, 1)
#define WMI_HE_EXTRA_MCS_SS_SET(he_mcs_map_ext, index, value) \
    WMI_SET_BITS(he_mcs_map_ext, 16 + index, 1, value)

/* fragmentation support field value */
enum {
    WMI_HE_FRAG_SUPPORT_LEVEL0, /* No Fragmentation support */
    WMI_HE_FRAG_SUPPORT_LEVEL1, /* support for fragments within a VHT single MPDU, no support for fragments within AMPDU */
    WMI_HE_FRAG_SUPPORT_LEVEL2, /* support for up to 1 fragment per MSDU within a single A-MPDU */
    WMI_HE_FRAG_SUPPORT_LEVEL3, /* support for multiple fragments per MSDU within an A-MPDU */
};

enum {
    WMI_HE_RX_DL_OFDMA_SUPPORT_DEFAULT, /* Default */
    WMI_HE_RX_DL_OFDMA_SUPPORT_DISABLE, /* RX DL OFDMA Support Disabled */
    WMI_HE_RX_DL_OFDMA_SUPPORT_ENABLE,  /* RX DL OFDMA Support Enabled */
    WMI_HE_RX_DL_OFDMA_SUPPORT_INVALID, /* INVALID  */
};

enum {
    WMI_HE_RX_DL_MUMIMO_SUPPORT_DEFAULT, /* Default */
    WMI_HE_RX_DL_MUMIMO_SUPPORT_DISABLE, /* RX DL MU-MIMO Support Disabled */
    WMI_HE_RX_DL_MUMIMO_SUPPORT_ENABLE,  /* RX DL MU-MIMO Support Enabled */
    WMI_HE_RX_DL_MUMIMO_SUPPORT_INVALID, /* INVALID  */
};

/** NOTE: This defs cannot be changed in the future without breaking WMI compatibility */
#define WMI_MAX_NUM_SS                    MAX_HE_NSS
#define WMI_MAX_NUM_RU                    MAX_HE_RU

/*
 * Figure 8 554ae: -PPE Threshold Info field format
 * we pack PPET16 and PPT8 for four RU's in one element of array.
 *
 * ppet16_ppet8_ru3_ru0 array element 0 holds:
 *     |  PPET8 | PPET16 | PPET8  | PPET16 | PPET8  | PPET16 | PPET8  | PPET16 |
 *rsvd |NSS1,RU4|NSS1,RU4|NSS1,RU3|NSS1,RU3|NSS1,RU2|NSS1,RU2|NSS1,RU1|NSS1,RU1|
 *31:23|  22:20 |  19:17 |  17:15 |  14:12 |  11:9  |   8:6  |   5:3  |   2:0  |
 *
 * ppet16_ppet8_ru3_ru0 array element 1 holds:
 *     | PPET8  | PPET16 | PPET8  | PPET16 | PPET8  | PPET16 | PPET8  | PPET16 |
 *rsvd |NSS2,RU4|NSS2,RU4|NSS2,RU3|NSS2,RU3|NSS2,RU2|NSS2,RU2|NSS2,RU1|NSS2,RU1|
 *31:23|  22:20 |  19:17 |  17:15 |  14:12 |  11:9  |   8:6  |   5:3  |   2:0  |
 *
 * etc.
 */

/*
 * Note that in these macros, "ru" is one-based, not zero-based, while
 * nssm1 is zero-based.
 */
#define WMI_SET_PPET16(ppet16_ppet8_ru3_ru0, ru, nssm1, ppet) \
    do { \
        ppet16_ppet8_ru3_ru0[nssm1] &= ~(7 << (((ru-1) & 3) * 6)); \
        ppet16_ppet8_ru3_ru0[nssm1] |= ((ppet & 7) << (((ru-1) & 3) * 6)); \
    } while (0)

#define WMI_GET_PPET16(ppet16_ppet8_ru3_ru0, ru, nssm1) \
    ((ppet16_ppet8_ru3_ru0[nssm1] >> (((ru-1) & 3) * 6)) & 7)

#define WMI_SET_PPET8(ppet16_ppet8_ru3_ru0, ru, nssm1, ppet) \
    do { \
        ppet16_ppet8_ru3_ru0[nssm1] &= ~(7 << (((ru-1) & 3) * 6 + 3)); \
        ppet16_ppet8_ru3_ru0[nssm1] |= ((ppet&7) << (((ru-1) & 3) * 6 + 3)); \
    } while (0)

#define WMI_GET_PPET8(ppet16_ppet8_ru3_ru0, ru, nssm1) \
    ((ppet16_ppet8_ru3_ru0[nssm1] >> (((ru-1) & 3) * 6 + 3)) & 7)

typedef struct _wmi_ppe_threshold {
    A_UINT32 numss_m1; /** NSS - 1*/
    union {
        A_UINT32 ru_count; /** RU COUNT OBSOLETE to be removed after few versions */
        A_UINT32 ru_mask; /** RU index mask */
    };
    A_UINT32 ppet16_ppet8_ru3_ru0[WMI_MAX_NUM_SS]; /** ppet8 and ppet16 for max num ss */
    /**************************************************
     * As this struct is embedded inside other structs,
     * it cannot be expanded without breaking backwards
     * compatibility.  Do not add new fields here.
     **************************************************/
} wmi_ppe_threshold;

#define WMI_MAX_EHTCAP_MAC_SIZE  2
#define WMI_MAX_EHTCAP_PHY_SIZE  3

/*
 * 0 – index indicated EHT-MCS map for 20Mhz only sta (4 bytes valid)
 * 1 – index for <= 80MHz bw  (only 3 bytes are valid and other is reserved)
 * 2 – index for == 160Mhz bw (only 3 bytes are valid and other is reserved)
 * 3 – index for == 320Mhz bw (only 3 bytes are valid and other is reserved)
 */
enum {
    WMI_EHT_SUPP_MCS_20MHZ_ONLY,
    WMI_EHT_SUPP_MCS_LE_80MHZ,
    WMI_EHT_SUPP_MCS_160MHZ,
    WMI_EHT_SUPP_MCS_320MHZ,
};
#define WMI_MAX_EHT_SUPP_MCS_2G_SIZE  2
#define WMI_MAX_EHT_SUPP_MCS_5G_SIZE  4

/* WMI_SYS_CAPS_* refer to the capabilities that system support
 */
#define WMI_SYS_CAP_ENABLE                       0x00000001
#define WMI_SYS_CAP_TXPOWER                      0x00000002

/*
 * WMI Dual Band Simultaneous (DBS) hardware mode list bit-mask definitions.
 * Bits 5:0 are reserved
 */
#define WMI_DBS_HW_MODE_MAC0_TX_STREAMS_BITPOS  (28)
#define WMI_DBS_HW_MODE_MAC0_RX_STREAMS_BITPOS  (24)
#define WMI_DBS_HW_MODE_MAC1_TX_STREAMS_BITPOS  (20)
#define WMI_DBS_HW_MODE_MAC1_RX_STREAMS_BITPOS  (16)
#define WMI_DBS_HW_MODE_MAC0_BANDWIDTH_BITPOS   (12)
#define WMI_DBS_HW_MODE_MAC1_BANDWIDTH_BITPOS   (8)
#define WMI_DBS_HW_MODE_DBS_MODE_BITPOS         (7)
#define WMI_DBS_HW_MODE_AGILE_DFS_MODE_BITPOS   (6)

#define WMI_DBS_HW_MODE_MAC0_TX_STREAMS_MASK    (0xf << WMI_DBS_HW_MODE_MAC0_TX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC0_RX_STREAMS_MASK    (0xf << WMI_DBS_HW_MODE_MAC0_RX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC1_TX_STREAMS_MASK    (0xf << WMI_DBS_HW_MODE_MAC1_TX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC1_RX_STREAMS_MASK    (0xf << WMI_DBS_HW_MODE_MAC1_RX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC0_BANDWIDTH_MASK     (0xf << WMI_DBS_HW_MODE_MAC0_BANDWIDTH_BITPOS)
#define WMI_DBS_HW_MODE_MAC1_BANDWIDTH_MASK     (0xf << WMI_DBS_HW_MODE_MAC1_BANDWIDTH_BITPOS)
#define WMI_DBS_HW_MODE_DBS_MODE_MASK           (0x1 << WMI_DBS_HW_MODE_DBS_MODE_BITPOS)
#define WMI_DBS_HW_MODE_AGILE_DFS_MODE_MASK     (0x1 << WMI_DBS_HW_MODE_AGILE_DFS_MODE_BITPOS)

#define WMI_DBS_HW_MODE_MAC0_TX_STREAMS_SET(hw_mode, value) \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_MAC0_TX_STREAMS_BITPOS, 4, value)
#define WMI_DBS_HW_MODE_MAC0_RX_STREAMS_SET(hw_mode, value) \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_MAC0_RX_STREAMS_BITPOS, 4, value)
#define WMI_DBS_HW_MODE_MAC1_TX_STREAMS_SET(hw_mode, value) \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_MAC1_TX_STREAMS_BITPOS, 4, value)
#define WMI_DBS_HW_MODE_MAC1_RX_STREAMS_SET(hw_mode, value) \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_MAC1_RX_STREAMS_BITPOS, 4, value)
#define WMI_DBS_HW_MODE_MAC0_BANDWIDTH_SET(hw_mode, value)  \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_MAC0_BANDWIDTH_BITPOS, 4, value)
#define WMI_DBS_HW_MODE_MAC1_BANDWIDTH_SET(hw_mode, value)  \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_MAC1_BANDWIDTH_BITPOS, 4, value)
#define WMI_DBS_HW_MODE_DBS_MODE_SET(hw_mode, value)        \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_DBS_MODE_BITPOS, 1, value)
#define WMI_DBS_HW_MODE_AGILE_DFS_SET(hw_mode, value)       \
    WMI_SET_BITS(hw_mode, WMI_DBS_HW_MODE_AGILE_DFS_MODE_BITPOS, 1, value)

#define WMI_DBS_HW_MODE_MAC0_TX_STREAMS_GET(hw_mode)    \
    ((hw_mode & WMI_DBS_HW_MODE_MAC0_TX_STREAMS_MASK) >> WMI_DBS_HW_MODE_MAC0_TX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC0_RX_STREAMS_GET(hw_mode)    \
    ((hw_mode & WMI_DBS_HW_MODE_MAC0_RX_STREAMS_MASK) >> WMI_DBS_HW_MODE_MAC0_RX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC1_TX_STREAMS_GET(hw_mode)    \
    ((hw_mode & WMI_DBS_HW_MODE_MAC1_TX_STREAMS_MASK) >> WMI_DBS_HW_MODE_MAC1_TX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC1_RX_STREAMS_GET(hw_mode)    \
    ((hw_mode & WMI_DBS_HW_MODE_MAC1_RX_STREAMS_MASK) >> WMI_DBS_HW_MODE_MAC1_RX_STREAMS_BITPOS)
#define WMI_DBS_HW_MODE_MAC0_BANDWIDTH_GET(hw_mode)     \
    ((hw_mode & WMI_DBS_HW_MODE_MAC0_BANDWIDTH_MASK) >> WMI_DBS_HW_MODE_MAC0_BANDWIDTH_BITPOS)
#define WMI_DBS_HW_MODE_MAC1_BANDWIDTH_GET(hw_mode)     \
    ((hw_mode & WMI_DBS_HW_MODE_MAC1_BANDWIDTH_MASK) >> WMI_DBS_HW_MODE_MAC1_BANDWIDTH_BITPOS)
#define WMI_DBS_HW_MODE_DBS_MODE_GET(hw_mode)           \
    ((hw_mode & WMI_DBS_HW_MODE_DBS_MODE_MASK) >> WMI_DBS_HW_MODE_DBS_MODE_BITPOS)
#define WMI_DBS_HW_MODE_AGILE_DFS_GET(hw_mode)          \
    ((hw_mode & WMI_DBS_HW_MODE_AGILE_DFS_MODE_MASK) >> WMI_DBS_HW_MODE_AGILE_DFS_MODE_BITPOS)

#define WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_BITPOS        (31)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_BITPOS      (30)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_BITPOS  (29)
#define WMI_DBS_CONC_SCAN_CFG_ASYNC_DBS_SCAN_BITPOS  (28)
#define WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_BITPOS   (27)

#define WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_MASK         ((A_UINT32) 0x1 << WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_MASK       ((A_UINT32) 0x1 << WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_MASK   ((A_UINT32) 0x1 << WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_ASYC_DBS_SCAN_MASK    ((A_UINT32) 0x1 << WMI_DBS_CONC_SCAN_CFG_ASYNC_DBS_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_MASK    ((A_UINT32) 0x1 << WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_BITPOS)

#define WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_SET(scan_cfg, value) \
    WMI_SET_BITS(scan_cfg, WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_BITPOS, 1, value)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_SET(scan_cfg, value) \
    WMI_SET_BITS(scan_cfg, WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_BITPOS, 1, value)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_SET(scan_cfg, value) \
    WMI_SET_BITS(scan_cfg, WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_BITPOS, 1, value)
#define WMI_DBS_CONC_SCAN_CFG_ASYNC_DBS_SCAN_SET(scan_cfg, value) \
    WMI_SET_BITS(scan_cfg, WMI_DBS_CONC_SCAN_CFG_ASYNC_DBS_SCAN_BITPOS, 1, value)
#define WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_SET(scan_cfg, value) \
    WMI_SET_BITS(scan_cfg, WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_BITPOS, 1, value)

#define WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_GET(scan_cfg)    \
    ((scan_cfg & WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_MASK) >> WMI_DBS_CONC_SCAN_CFG_DBS_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_GET(scan_cfg)    \
    ((scan_cfg & WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_MASK) >> WMI_DBS_CONC_SCAN_CFG_AGILE_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_GET(scan_cfg)    \
    ((scan_cfg & WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_MASK) >> WMI_DBS_CONC_SCAN_CFG_AGILE_DFS_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_ASYNC_DBS_SCAN_GET(scan_cfg)    \
    ((scan_cfg & WMI_DBS_CONC_SCAN_CFG_ASYC_DBS_SCAN_MASK) >> WMI_DBS_CONC_SCAN_CFG_ASYNC_DBS_SCAN_BITPOS)
#define WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_GET(scan_cfg)    \
    ((scan_cfg & WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_MASK) >> WMI_DBS_CONC_SCAN_CFG_SYNC_DBS_SCAN_BITPOS)

#define WMI_DBS_FW_MODE_CFG_DBS_BITPOS                  (31)
#define WMI_DBS_FW_MODE_CFG_AGILE_DFS_BITPOS            (30)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_BITPOS          (29)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_BITPOS (28)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_BITPOS (27)
#define WMI_DBS_FW_MODE_CFG_ASYNC_SBS_BITPOS            (26)

#define WMI_DBS_FW_MODE_CFG_DBS_MASK                    ((A_UINT32) 0x1 << WMI_DBS_FW_MODE_CFG_DBS_BITPOS)
#define WMI_DBS_FW_MODE_CFG_AGILE_DFS_MASK              ((A_UINT32) 0x1 << WMI_DBS_FW_MODE_CFG_AGILE_DFS_BITPOS)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_DFS_MASK        ((A_UINT32) 0x1 << WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_BITPOS)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_MASK   ((A_UINT32) 0x1 << WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_BITPOS)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_MASK   ((A_UINT32) 0x1 << WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_BITPOS)
#define WMI_DBS_FW_MODE_CFG_ASYNC_SBS_MASK              ((A_UINT32) 0x1 << WMI_DBS_FW_MODE_CFG_ASYNC_SBS_BITPOS)

#define WMI_DBS_FW_MODE_CFG_DBS_SET(fw_mode, value) \
    WMI_SET_BITS(fw_mode, WMI_DBS_FW_MODE_CFG_DBS_BITPOS, 1, value)
#define WMI_DBS_FW_MODE_CFG_AGILE_DFS_SET(fw_mode, value) \
    WMI_SET_BITS(fw_mode, WMI_DBS_FW_MODE_CFG_AGILE_DFS_BITPOS, 1, value)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_SET(fw_mode, value) \
    WMI_SET_BITS(fw_mode, WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_BITPOS, 1, value)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_SET(fw_mode, value) \
    WMI_SET_BITS(fw_mode, WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_BITPOS, 1, value)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_SET(fw_mode, value) \
    WMI_SET_BITS(fw_mode, WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_BITPOS, 1, value)
#define WMI_DBS_FW_MODE_CFG_ASYNC_SBS_SET(fw_mode, value) \
    WMI_SET_BITS(fw_mode, WMI_DBS_FW_MODE_CFG_ASYNC_SBS_BITPOS, 1, value)

#define WMI_DBS_FW_MODE_CFG_DBS_GET(fw_mode)    \
    ((fw_mode & WMI_DBS_FW_MODE_CFG_DBS_MASK) >> WMI_DBS_FW_MODE_CFG_DBS_BITPOS)
#define WMI_DBS_FW_MODE_CFG_AGILE_DFS_GET(fw_mode)    \
    ((fw_mode & WMI_DBS_FW_MODE_CFG_AGILE_DFS_MASK) >> WMI_DBS_FW_MODE_CFG_AGILE_DFS_BITPOS)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_GET(fw_mode)    \
    ((fw_mode & WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_DFS_MASK) >> WMI_DBS_FW_MODE_CFG_DBS_FOR_CXN_BITPOS)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_GET(fw_mode)    \
    ((fw_mode & WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_MASK) >> WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_STA_BITPOS)
#define WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_GET(fw_mode)    \
    ((fw_mode & WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_MASK) >> WMI_DBS_FW_MODE_CFG_DBS_FOR_STA_PLUS_P2P_BITPOS)
#define WMI_DBS_FW_MODE_CFG_ASYNC_SBS_GET(fw_mode)    \
    ((fw_mode & WMI_DBS_FW_MODE_CFG_ASYNC_SBS_MASK) >> WMI_DBS_FW_MODE_CFG_ASYNC_SBS_BITPOS)

/** NOTE: This structure cannot be extended in the future without breaking WMI compatibility */
typedef struct _wmi_abi_version {
    A_UINT32 abi_version_0; /** WMI Major and Minor versions */
    A_UINT32 abi_version_1; /** WMI change revision */
    A_UINT32 abi_version_ns_0; /** ABI version namespace first four dwords */
    A_UINT32 abi_version_ns_1; /** ABI version namespace second four dwords */
    A_UINT32 abi_version_ns_2; /** ABI version namespace third four dwords */
    A_UINT32 abi_version_ns_3; /** ABI version namespace fourth four dwords */
} wmi_abi_version;

/*
 * maximum number of memory requests allowed from FW.
 */
#define WMI_MAX_MEM_REQS 16

/* !!NOTE!!:
 * This HW_BD_INFO_SIZE cannot be changed without breaking compatibility.
 * Please don't change it.
 */
#define HW_BD_INFO_SIZE       5

/**
 * PDEV ID to identify the physical device,
 * value 0 reserved for SOC level commands/event
 */
#define WMI_PDEV_ID_SOC         0 /* SOC level, applicable to all PDEVs */
#define WMI_PDEV_ID_1ST         1 /* first pdev  (pdev 0) */
#define WMI_PDEV_ID_2ND         2 /* second pdev (pdev 1) */
#define WMI_PDEV_ID_3RD         3 /* third pdev  (pdev 2) */

/*
 * Enum regarding which BDF elements are provided in which elements of the
 * wmi_service_ready_event_fixed_param.hw_bd_info[] array
 */
typedef enum {
    BDF_VERSION = 0,
    REF_DESIGN_ID = 1,
    CUSTOMER_ID = 2,
    PROJECT_ID = 3,
    BOARD_DATA_REV = 4,
} wmi_hw_bd_info_e;

/*
 * Macros to get/set BDF details within the
 * wmi_service_ready_event_fixed_param.hw_bd_info[] array
 */
#define WMI_GET_BDF_VERSION(hw_bd_info)         ((hw_bd_info)[BDF_VERSION])
#define WMI_GET_REF_DESIGN(hw_bd_info)          ((hw_bd_info)[REF_DESIGN_ID])
#define WMI_GET_CUSTOMER_ID(hw_bd_info)         ((hw_bd_info)[CUSTOMER_ID])
#define WMI_GET_PROJECT_ID(hw_bd_info)          ((hw_bd_info)[PROJECT_ID])
#define WMI_GET_BOARD_DATA_REV(hw_bd_info)      ((hw_bd_info)[BOARD_DATA_REV])

#define WMI_SET_BDF_VERSION(hw_bd_info, val)    ((hw_bd_info)[BDF_VERSION]    = (val))
#define WMI_SET_REF_DESIGN(hw_bd_info, val)     ((hw_bd_info)[REF_DESIGN_ID]  = (val))
#define WMI_SET_CUSTOMER_ID(hw_bd_info, val)    ((hw_bd_info)[CUSTOMER_ID]    = (val))
#define WMI_SET_PROJECT_ID(hw_bd_info, val)     ((hw_bd_info)[PROJECT_ID]     = (val))
#define WMI_SET_BOARD_DATA_REV(hw_bd_info, val) ((hw_bd_info)[BOARD_DATA_REV] = (val))

/*
 * Enum to indicate which Tx power capability is provided in which element of
 * hw_tx_power_signed
 */
typedef enum {
    WMI_HW_MIN_TX_POWER_SIGNED = 0,
    WMI_HW_MAX_TX_POWER_SIGNED = 1,
    WMI_HW_TX_POWER_CAPS_MAX,
} wmi_hw_tx_power_caps;

/**
 * The following struct holds optional payload for
 * wmi_service_ready_event_fixed_param,e.g., 11ac pass some of the
 * device capability to the host.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SERVICE_READY_EVENT */
    A_UINT32 fw_build_vers; /* firmware build number */
    wmi_abi_version fw_abi_vers;
    A_UINT32 phy_capability; /* WMI_PHY_CAPABILITY */
    A_UINT32 max_frag_entry; /* Maximum number of frag table entries that SW will populate less 1 */
    A_UINT32 num_rf_chains;
    /* The following field is only valid for service type WMI_SERVICE_11AC */
    A_UINT32 ht_cap_info; /* WMI HT Capability */
    A_UINT32 vht_cap_info; /* VHT capability info field of 802.11ac */
    A_UINT32 vht_supp_mcs; /* VHT Supported MCS Set field Rx/Tx same */
    A_UINT32 hw_min_tx_power;
    A_UINT32 hw_max_tx_power;
    /* sys_cap_info:
     * bits  1:0  - RXTX LED + RFKILL enable flags (see WMI_LEDRFKILL_FLAGS)
     * bits 31:2  - reserved (must be set to zero)
     */
    A_UINT32 sys_cap_info;
    A_UINT32 min_pkt_size_enable; /* Enterprise mode short pkt enable */
    /** Max beacon and Probe Response IE offload size (includes
     *  optional P2P IEs) */
    A_UINT32 max_bcn_ie_size;
    /*
     * request to host to allocate a chuck of memory and pss it down to FW via WM_INIT.
     * FW uses this as FW extesnsion memory for saving its data structures. Only valid
     * for low latency interfaces like PCIE where FW can access this memory directly (or)
     * by DMA.
     */
    A_UINT32 num_mem_reqs;
    /* Max No. scan channels target can support
     * If FW is too old and doesn't indicate this number, host side value will default to
     * 0, and host will take the original compatible value (62) for future scan channel
     * setup.
     */
    A_UINT32 max_num_scan_channels;

    /* Hardware board specific ID. Values defined in enum WMI_HWBOARD_ID.
     * Default 0 means that hw_bd_info[] is invalid (legacy board).
     */
    A_UINT32 hw_bd_id;
    A_UINT32 hw_bd_info[HW_BD_INFO_SIZE]; /* Board specific information. Invalid if hw_hd_id is zero. */

    /*
     * Number of MACs supported, i.e. a DBS-capable device will return 2
     */
    A_UINT32 max_supported_macs;

    /*
     * FW sub-feature capabilities to be used in concurrence with wmi_service_bitmap
     */
    A_UINT32 wmi_fw_sub_feat_caps; /* values from enum WMI_FW_SUB_FEAT_CAPS */

    /*
     * Number of Dual Band Simultaneous (DBS) hardware modes
     */
    A_UINT32 num_dbs_hw_modes;

    /*
     * txrx_chainmask
     *    [7:0]   - 2G band tx chain mask
     *    [15:8]  - 2G band rx chain mask
     *    [23:16] - 5G band tx chain mask
     *    [31:24] - 5G band rx chain mask
     *
     */
    A_UINT32 txrx_chainmask;

    /*
     * default Dual Band Simultaneous (DBS) hardware mode
     */
    A_UINT32 default_dbs_hw_mode_index;

    /*
     * Number of msdu descriptors target would use
     */
    A_UINT32 num_msdu_desc;

/* This ready_event_fixed_param TLV is followed by the below TLVs:
 *     HAL_REG_CAPABILITIES   hal_reg_capabilities;
 *     A_UINT32 wmi_service_bitmap[WMI_SERVICE_BM_SIZE];
 *     wlan_host_mem_req mem_reqs[];
 *     A_UINT32 wlan_dbs_hw_mode_list[];
 */
} wmi_service_ready_event_fixed_param;

typedef enum {
    WMI_RXTX_LED_ENABLE         = 0x00000001,
    WMI_RFKILL_ENABLE           = 0x00000002,
} WMI_LEDRFKILL_FLAGS;

#define WMI_SERVICE_SEGMENT_BM_SIZE32 4 /* 4x A_UINT32 = 128 bits */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_service_available_event_fixed_param */
    /*
     * The wmi_service_segment offset field specifies the position within the
     * logical bitmap of WMI service flags at which the WMI service flags
     * specified within this message begin.
     * Since the first 128 WMI service flags are specified within the
     * wmi_service_bitmap field of the WMI_SERVICE_READY_EVENT message,
     * the wmi_service_segment_offset value is expected to be 128 or more.
     */
    A_UINT32 wmi_service_segment_offset;
    A_UINT32 wmi_service_segment_bitmap[WMI_SERVICE_SEGMENT_BM_SIZE32];
/*
 * This TLV is followed by the below TLVs:
 * A_UINT32 wmi_service_ext_bitmap[]
 *     The wmi_service_ext_bitmap covers WMI service flags at the offset where
 *     wmi_service_available_event_fixed_param.wmi_service_segment_bitmap
 *     leaves off.
 *     For example, if
 *         wmi_service_available_event_fixed_param.wmi_service_segment_offset
 *     is 128, then
 *         wmi_service_available_event_fixed_param.wmi_service_segment_bitmap
 *     will cover WMI service flags
 *         128 to (128 + WMI_SERVICE_SEGMENT_BM_SIZE32 * 32) = 128 to 256
 *     and wmi_service_ext_bitmap will cover WMI service flags starting at 256.
 */
} wmi_service_available_event_fixed_param;

/*
 * HDL version GET/SET APIs
 */
#define WMI_HDL_VERSION_BITPOS    0
#define WMI_HDL_VERSION_NUM_BITS 10

#define WMI_HDL_VERSION_GET(dword) WMI_GET_BITS(dword, WMI_HDL_VERSION_BITPOS, WMI_HDL_VERSION_NUM_BITS)
#define WMI_HDL_VERSION_SET(dword, value) WMI_SET_BITS(dword, WMI_HDL_VERSION_BITPOS, WMI_HDL_VERSION_NUM_BITS, value)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SERVICE_EXT_READY_EVENT */
    /* which WMI_DBS_CONC_SCAN_CFG setting the FW is initialized with */
    A_UINT32 default_conc_scan_config_bits;
    /* which WMI_DBS_FW_MODE_CFG setting the FW is initialized with */
    A_UINT32 default_fw_config_bits;
    wmi_ppe_threshold ppet;
    A_UINT32 he_cap_info; /* see section 8.4.2.213 from draft r8 of 802.11ax; see WMI_HE_FRAG_SUPPORT enum */
    /*
     * An HT STA shall not allow transmission of more than one MPDU start
     * within the time limit described in the MPDU maximum density field.
     */
    A_UINT32 mpdu_density; /* units are microseconds */
    /*
     * Maximum no of BSSID based RX filters host can program
     * Value 0 means FW hasn't given any limit to host.
     */
    A_UINT32 max_bssid_rx_filters;
    /*
     * Extended FW build version information:
     * bits  9:0  -> HDL version info
     * bits 12:10 -> CRM sub ID MSbs (refer to WMI_SVC_RDY_CRM_SUB_ID_GET/SET)
     * bits 27:13 -> reserved
     * bits 31:28 -> CRM sub ID LSbs (refer to WMI_SVC_RDY_CRM_SUB_ID_GET/SET)
     */
    A_UINT32 fw_build_vers_ext;
    /* max_nlo_ssids - dynamically negotiated maximum number of SSIDS for NLO
     * This limit is the maximum number of SSIDs that can be configured in the
     * target for Network List Offload (i.e. scanning for a preferred network).
     * If this value is 0x0, the target supports WMI_NLO_MAX_SSIDS (16).
     * If this value is non-zero, the host should send back in the
     * WMI_INIT message's wmi_resource_config.max_nlo_ssids a value that
     * is equal to or less than the target capability limit reported here.
     */
    A_UINT32 max_nlo_ssids;
    /* ref to section 8.4.2.48 Multiple BSSID element
     * The Max BSSID Indicator field contains a value assigned to n,
     * where 2^n is the maximum number of BSSIDs
     */
    A_UINT32 max_bssid_indicator;

    /* 2nd DWORD of HE MAC Capabilities */
    A_UINT32 he_cap_info_ext;

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/

    /*
     * A variable-length TLV array of wmi_chan_rf_characterization_info will
     * follow this fixed_param TLV, containing rx characterization info for
     * primary channels.
     *   WMI_CHAN_RF_CHARACTERIZATION_INFO wmi_chan_rf_characterization_info[];
     */
} wmi_service_ready_ext_event_fixed_param;

#define WMI_SVC_RDY_CRM_SUB_ID_LSBS_INDEX    28
#define WMI_SVC_RDY_CRM_SUB_ID_LSBS_NUM_BITS 4
#define WMI_SVC_RDY_CRM_SUB_ID_MSBS_INDEX    10
#define WMI_SVC_RDY_CRM_SUB_ID_MSBS_NUM_BITS 3
#define WMI_SVC_RDY_CRM_SUB_ID_GET(var, val) \
    WMI_APPEND_TWO_GET_BITS( \
        var, \
        WMI_SVC_RDY_CRM_SUB_ID_LSBS_INDEX, \
        WMI_SVC_RDY_CRM_SUB_ID_LSBS_NUM_BITS, \
        WMI_SVC_RDY_CRM_SUB_ID_MSBS_INDEX, \
        WMI_SVC_RDY_CRM_SUB_ID_MSBS_NUM_BITS, \
        val)
#define WMI_SVC_RDY_CRM_SUB_ID_SET(var, val) \
    WMI_APPEND_TWO_SET_BITS( \
        var, \
        WMI_SVC_RDY_CRM_SUB_ID_LSBS_INDEX, \
        WMI_SVC_RDY_CRM_SUB_ID_LSBS_NUM_BITS, \
        WMI_SVC_RDY_CRM_SUB_ID_MSBS_INDEX, \
        WMI_SVC_RDY_CRM_SUB_ID_MSBS_NUM_BITS, \
        val)

/*
 * regdb version GET/SET APIs
 */
#define WMI_REG_DB_VERSION_MAJOR_BITPOS 0
#define WMI_REG_DB_VERSION_MINOR_BITPOS 8
#define WMI_BDF_REG_DB_VERSION_MAJOR_BITPOS 16
#define WMI_BDF_REG_DB_VERSION_MINOR_BITPOS 24
#define WMI_REG_DB_VERSION_NUM_BITS 8

#define WMI_REG_DB_VERSION_MAJOR_GET(dword) \
    WMI_GET_BITS(dword, WMI_REG_DB_VERSION_MAJOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS)
#define WMI_REG_DB_VERSION_MAJOR_SET(dword, value) \
    WMI_SET_BITS(dword, WMI_REG_DB_VERSION_MAJOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS, value)

#define WMI_REG_DB_VERSION_MINOR_GET(dword) \
    WMI_GET_BITS(dword, WMI_REG_DB_VERSION_MINOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS)
#define WMI_REG_DB_VERSION_MINOR_SET(dword, value) \
    WMI_SET_BITS(dword, WMI_REG_DB_VERSION_MINOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS, value)

#define WMI_BDF_REG_DB_VERSION_MAJOR_GET(dword) \
    WMI_GET_BITS(dword, WMI_BDF_REG_DB_VERSION_MAJOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS)
#define WMI_BDF_REG_DB_VERSION_MAJOR_SET(dword, value) \
    WMI_SET_BITS(dword, WMI_BDF_REG_DB_VERSION_MAJOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS, value)

#define WMI_BDF_REG_DB_VERSION_MINOR_GET(dword) \
    WMI_GET_BITS(dword, WMI_BDF_REG_DB_VERSION_MINOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS)
#define WMI_BDF_REG_DB_VERSION_MINOR_SET(dword, value) \
    WMI_SET_BITS(dword, WMI_BDF_REG_DB_VERSION_MINOR_BITPOS, WMI_REG_DB_VERSION_NUM_BITS, value)

#define WMI_REG_DB_VERSION_SET(dword, reg_db_ver_major, reg_db_ver_minor, bdf_reg_db_ver_major, bdf_reg_db_ver_minor) \
    do { \
        WMI_REG_DB_VERSION_MAJOR_SET(dword, reg_db_ver_major); \
        WMI_REG_DB_VERSION_MINOR_SET(dword, reg_db_ver_minor); \
        WMI_BDF_REG_DB_VERSION_MAJOR_SET(dword, bdf_reg_db_ver_major); \
        WMI_BDF_REG_DB_VERSION_MINOR_SET(dword, bdf_reg_db_ver_minor); \
    } while (0)

#define WMI_HW_MIN_TX_POWER_BITPOS  0
#define WMI_HW_MAX_TX_POWER_BITPOS  16

#define WMI_HW_MIN_TX_POWER_GET(dword) \
    ((A_INT16) WMI_GET_BITS(dword, WMI_HW_MIN_TX_POWER_BITPOS, 16))
#define WMI_HW_MIN_TX_POWER_SET(dword, value) \
    WMI_SET_BITS(dword, WMI_HW_MIN_TX_POWER_BITPOS, 16, value)
#define WMI_HW_MAX_TX_POWER_GET(dword) \
    ((A_INT16) WMI_GET_BITS(dword, WMI_HW_MAX_TX_POWER_BITPOS, 16))
#define WMI_HW_MAX_TX_POWER_SET(dword, value) \
    WMI_SET_BITS(dword, WMI_HW_MAX_TX_POWER_BITPOS, 16, value)

#define WMI_MAX_USER_PER_PPDU_UL_OFDMA_GET(dword) \
        WMI_GET_BITS(dword, 0, 16)

#define WMI_MAX_USER_PER_PPDU_UL_OFDMA_SET(dword, value) \
        WMI_SET_BITS(dword, 0, 16, value)

#define WMI_MAX_USER_PER_PPDU_DL_OFDMA_GET(dword) \
        WMI_GET_BITS(dword, 16, 16)

#define WMI_MAX_USER_PER_PPDU_DL_OFDMA_SET(dword, value) \
        WMI_SET_BITS(dword, 16, 16, value)

#define WMI_MAX_USER_PER_PPDU_UL_MUMIMO_GET(dword) \
        WMI_GET_BITS(dword, 0, 16)

#define WMI_MAX_USER_PER_PPDU_UL_MUMIMO_SET(dword, value) \
        WMI_SET_BITS(dword, 0, 16, value)

#define WMI_MAX_USER_PER_PPDU_DL_MUMIMO_GET(dword) \
        WMI_GET_BITS(dword, 16, 16)

#define WMI_MAX_USER_PER_PPDU_DL_MUMIMO_SET(dword, value) \
        WMI_SET_BITS(dword, 16, 16, value)

#define WMI_TARGET_CAP_FLAGS_RX_PEER_METADATA_VERSION_GET(target_cap_flags) \
        WMI_GET_BITS(target_cap_flags, 0, 2)
#define WMI_TARGET_CAP_FLAGS_RX_PEER_METADATA_VERSION_SET(target_cap_flags, value) \
        WMI_SET_BITS(target_cap_flags, 0, 2, value)

#define WMI_TARGET_CAP_UL_MU_MIMO_RX_SUPPORT_2GHZ_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 2, 1)
#define WMI_TARGET_CAP_UL_MU_MIMO_RX_SUPPORT_2GHZ_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 2, 1, value)

#define WMI_TARGET_CAP_UL_MU_MIMO_TX_SUPPORT_2GHZ_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 3, 1)
#define WMI_TARGET_CAP_UL_MU_MIMO_TX_SUPPORT_2GHZ_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 3, 1, value)

#define WMI_TARGET_CAP_UL_MU_MIMO_RX_SUPPORT_5GHZ_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 4, 1)
#define WMI_TARGET_CAP_UL_MU_MIMO_RX_SUPPORT_5GHZ_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 4, 1, value)

#define WMI_TARGET_CAP_UL_MU_MIMO_TX_SUPPORT_5GHZ_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 5, 1)
#define WMI_TARGET_CAP_UL_MU_MIMO_TX_SUPPORT_5GHZ_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 5, 1, value)

#define WMI_TARGET_CAP_UL_MU_MIMO_RX_SUPPORT_6GHZ_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 6, 1)
#define WMI_TARGET_CAP_UL_MU_MIMO_RX_SUPPORT_6GHZ_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 6, 1, value)

#define WMI_TARGET_CAP_UL_MU_MIMO_TX_SUPPORT_6GHZ_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 7, 1)
#define WMI_TARGET_CAP_UL_MU_MIMO_TX_SUPPORT_6GHZ_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 7, 1, value)

#define WMI_TARGET_CAP_MAX_ML_BSS_NUM_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 8, 3)
#define WMI_TARGET_CAP_MAX_ML_BSS_NUM_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 8, 3, value)

#define WMI_TARGET_CAP_CONCURRENCE_SUPPORT_GET(target_cap_flags) \
    WMI_GET_BITS(target_cap_flags, 11, 2)
#define WMI_TARGET_CAP_CONCURRENCE_SUPPORT_SET(target_cap_flags, value) \
    WMI_SET_BITS(target_cap_flags, 11, 2, value)

/*
 * wmi_htt_msdu_idx_to_htt_msdu_qtype GET/SET APIs
 */
#define WMI_HTT_MSDUQ_IDX_TO_MSDUQ_QTYPE_INDEX_GET(index_and_type) \
    WMI_GET_BITS(index_and_type, 0, 8)
#define WMI_HTT_MSDUQ_IDX_TO_MSDUQ_QTYPE_INDEX_SET(index_and_type, value) \
    WMI_SET_BITS(index_and_type, 0, 8, value)

#define WMI_HTT_MSDUQ_IDX_TO_MSDUQ_QTYPE_TYPE_GET(index_and_type) \
    WMI_GET_BITS(index_and_type, 8, 8)
#define WMI_HTT_MSDUQ_IDX_TO_MSDUQ_QTYPE_TYPE_SET(index_and_type, value) \
    WMI_SET_BITS(index_and_type, 8, 8, value)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_htt_msdu_idx_to_htt_msdu_qtype.*/
    /**
     * index_and_type
     *
     * [7:0]   : htt_msduq_index
     * [15:8]  : htt_msduq_type
     * [31:16] : reserved
     */
    A_UINT32 index_and_type;
} wmi_htt_msdu_idx_to_htt_msdu_qtype;

typedef enum {
    WMI_AFC_FEATURE_6G_DEPLOYMENT_UNSPECIFIED = 0,
    WMI_AFC_FEATURE_6G_DEPLOYMENT_INDOOR_ONLY =  1,
    WMI_AFC_FEATURE_6G_DEPLOYMENT_OUTDOOR_ONLY = 2,
} WMI_AFC_FEATURE_6G_DEPLOYMENT_TYPE;

typedef enum {
    WMI_BDF_VERSION_CHECK_DISABLED = 0,

    /* WMI_BDF_VERSION_CHECK_GOOD:
     * BDF version is matched with FW.
     */
    WMI_BDF_VERSION_CHECK_GOOD = 1,

    /* WMI_BDF_VERSION_TEMPLATE_TOO_OLD:
     * BDF template version is older than the oldest version supported by FW.
     */
    WMI_BDF_VERSION_TEMPLATE_TOO_OLD = 2,

    /* WMI_BDF_VERSION_TEMPLATE_TOO_NEW:
     * BDF template version is newer than the newest version supported by FW.
     */
    WMI_BDF_VERSION_TEMPLATE_TOO_NEW = 3,

    /* WMI_BDF_VERSION_FW_TOO_OLD:
     * FW version is older than the major version supported by BDF.
     */
    WMI_BDF_VERSION_FW_TOO_OLD = 4,

    /* WMI_BDF_VERSION_FW_TOO_NEW:
     * FW version is newer than the minor version supported by BDF.
     */
    WMI_BDF_VERSION_FW_TOO_NEW = 5,
} wmi_bdf_version_status_type;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_service_ready_ext2_event_fixed_param.*/

    /*
     * regDB Version to be sent to Host on WMI service ready ext2 event.
     *    [7:0]   - regDbVersionMajor
     *    [15:8]  - regDbVersionMinor
     *    [23:16] - bdfRegDbVersionMajor
     *    [31:24] - bdfRegDbVersionMinor
     * The WMI_*REG_DB_VERSION_[MAJOR,MINOR]_[SET,GET] macros are used to
     * access these bitfields.
     */
    A_UINT32 reg_db_version;

    /* Min & Max Tx power (in dBm) supported in 2.4 GHz band
     *  [15:0]   - Min Tx Power in 2.4 GHz band
     *  [31:16]  - Max Tx Power in 2.4 GHz band
     * WMI_HW_[MIN,MAX]_TX_POWER_[GET,SET] macros are used to access
     * these bitfields.
     * If Min Tx Power = Max Tx Power = 0 means Min Tx Power & Max Tx Power
     * are not specified.
     */
    A_UINT32 hw_min_max_tx_power_2g;

    /* Min & Max Tx power (in dBm) supported in 5 GHz band
     *  [15:0]   - Min Tx Power in 5 GHz band
     *  [31:16]  - Max Tx Power in 5 GHz band
     * WMI_HW_[MIN,MAX]_TX_POWER_[GET,SET] macros are used to access
     * these bitfields.
     * If Min Tx Power = Max Tx Power = 0 means Min Tx Power & Max Tx Power
     * are not specified.
     */
    A_UINT32 hw_min_max_tx_power_5g;

    /*
     * Number of peers supported per WMI_PEER_CHAN_WIDTH_SWITCH_CMDID
     * 0 - not enabled
     */
    A_UINT32 chwidth_num_peer_caps;

    /*
     * Whether preamble puncturing is supported by FW, and if so, for which
     * bandwidths.  The possible values for this field are listed below.
     *   0: preamble puncturing is not supported
     *  80: puncturing supported within channels of at least 80 MHz bandwidth
     * 160: puncturing supported within channels of at least 160 MHz bandwidth
     * 320: puncturing supported within 320 MHz channels
     */
    A_UINT32 preamble_puncture_bw;

    /*
     * [15:0]  - ULOFDMA Refer WMI_MAX_USER_PER_PPDU_UL_OFDMA_GET & SET
     * [31:16] - DLOFDMA Refer WMI_MAX_USER_PER_PPDU_DL_OFDMA_GET & SET
     * If max_user_per_ppdu_ofdma == 0 the UL/DL max users are unspecified.
     */
    A_UINT32 max_user_per_ppdu_ofdma;

    /*
     * [15:0]  - ULMUMIMO Refer WMI_MAX_USER_PER_PPDU_UL_MUMIMO_GET & SET
     * [31:16] - DLMUMIMO Refer WMI_MAX_USER_PER_PPDU_DL_MUMIMO_GET & SET
     * If max_user_per_ppdu_mumimo == 0 the UL/DL max users are unspecified.
     */
    A_UINT32 max_user_per_ppdu_mumimo;

    /**
     * @brief target_cap_flags - flags containing information about target capabilities.
     * Bits 1:0
     *    Rx peer metadata version number used by target
     *    0-> legacy case
     *    1-> MLO support
     *    2,3-> reserved
     *    Refer to WMI_TARGET_CAP_FLAGS_PEER_METADATA_VERSION macros.
     * Bit 2 - UL MUMIMO Rx support on 2.4 GHz (AP Mode)
     * Bit 3 - UL MUMIMO Tx support on 2.4 GHz (STA Mode)
     * Bit 4 - UL MUMIMO Rx support on 5 GHz (AP Mode)
     * Bit 5 - UL MUMIMO Tx support on 5 GHz (STA Mode)
     * Bit 6 - UL MUMIMO Rx support on 6 GHz (AP Mode)
     * Bit 7 - UL MUMIMO Tx support on 6 GHz (STA Mode)
     * Bits 10:8 - max ML BSS number supported, range [0-7]
     * Bits 12:11  concurrence support capability
     *      Bit11 - [ML-STA + SL-STA]  0: not supported; 1:supported
     *      Bit12 - [ML-STA + SL-SAP]  0: not supported; 1:supported
     * Bits 31:13 - Reserved
     */
    A_UINT32 target_cap_flags;

    /* EHT MAC Capabilities: total WMI_MAX_EHTCAP_MAC_SIZE*A_UINT32 bits
     * those bits actually are max mac capabilities = cap_mac_2g | cap_mac_5g
     * The actual cap mac info per mac (2g/5g) in the TLV -- WMI_MAC_PHY_CAPABILITIES_EXT
     */
    A_UINT32 eht_cap_mac_info[WMI_MAX_EHTCAP_MAC_SIZE];

    /* Following this struct are the TLV's:
     *     WMI_DMA_RING_CAPABILITIES;
     *     wmi_spectral_bin_scaling_params;
     *     WMI_MAC_PHY_CAPABILITIES_EXT;  <-- EHT mac capabilities and phy capabilities info
     *     WMI_HAL_REG_CAPABILITIES_EXT2;
     *     wmi_nan_capabilities;
     *     WMI_SCAN_RADIO_CAPABILITIES_EXT2;
     */

    /*
     * Max number of LinkView peers supported by target
     */
    A_UINT32 max_num_linkview_peers;

    /*
     * Max number of msduq's per TID per peer supported by target,
     * defines LinkView peers number
     */
    A_UINT32 max_num_msduq_supported_per_tid;

    /*
     * Number of peers support default flowqs
     */
    A_UINT32 default_num_msduq_supported_per_tid;

    /*
     * Indoor/Outdoor specification for AFC support -
     * refer to WMI_AFC_FEATURE_6G_DEPLOYMENT_TYPE enum
     */
    A_UINT32 afc_deployment_type;

    /*
     * Board data check report. Please see wmi_hw_bd_status_type enum values.
     */
    A_UINT32 hw_bd_status;

    /*
     * max block ack window size FW supports for tx.
     */
    A_UINT32 tx_aggr_ba_win_size_max;

    /*
     * max block ack window size FW supports for rx.
     */
    A_UINT32 rx_aggr_ba_win_size_max;

    /* Followed by next TLVs:
     *     WMI_DMA_RING_CAPABILITIES          dma_ring_caps[];
     *     wmi_spectral_bin_scaling_params    wmi_bin_scaling_params[];
     *     WMI_MAC_PHY_CAPABILITIES_EXT       mac_phy_caps[];
     *     WMI_HAL_REG_CAPABILITIES_EXT2      hal_reg_caps[];
     *     wmi_nan_capabilities               nan_cap;
     *     WMI_SCAN_RADIO_CAPABILITIES_EXT2   wmi_scan_radio_caps[];
     *     wmi_htt_msdu_idx_to_htt_msdu_qtype htt_msdu_idx_to_qtype_map[];
     *     wmi_dbs_or_sbs_cap_ext             dbs_or_sbs_cap_ext;
     *     A_INT32 hw_tx_power_signed[WMI_HW_TX_POWER_CAPS_MAX];
     */
} wmi_service_ready_ext2_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chan_rf_characterization_info_event_fixed_param */
    /*
     * A variable-length TLV array of wmi_chan_rf_characterization_info will
     * follow this fixed_param TLV, containing rx characterization info for
     * primary channels.
     * WMI_CHAN_RF_CHARACTERIZATION_INFO wmi_chan_rf_characterization_info[];
     */
} wmi_chan_rf_characterization_info_event_fixed_param;

typedef enum {
    WMI_FW_STA_RTT_INITR =     0x00000001,
    WMI_FW_STA_RTT_RESPR =     0x00000002,
    WMI_FW_P2P_CLI_RTT_INITR = 0x00000004,
    WMI_FW_P2P_CLI_RTT_RESPR = 0x00000008,
    WMI_FW_P2P_GO_RTT_INITR =  0x00000010,
    WMI_FW_P2P_GO_RTT_RESPR =  0x00000020,
    WMI_FW_AP_RTT_INITR =      0x00000040,
    WMI_FW_AP_RTT_RESPR =      0x00000080,
    WMI_FW_NAN_RTT_INITR =     0x00000100,
    WMI_FW_NAN_RTT_RESPR =     0x00000200,
    WMI_FW_SCAN_DBS_POLICY =   0x00000400,
    /*
     * New fw sub feature capabilities before
     * WMI_FW_MAX_SUB_FEAT_CAP
     */
    WMI_FW_MAX_SUB_FEAT_CAP =  0x80000000,
} WMI_FW_SUB_FEAT_CAPS;

typedef enum {
    WMI_HWBD_NONE       = 0,            /* No hw board information is given */
    WMI_HWBD_QCA6174    = 1,            /* Rome(AR6320) */
    WMI_HWBD_QCA2582    = 2,            /* Killer 1525*/
} WMI_HWBD_ID;

#define ATH_BD_DATA_REV_MASK            0x000000FF
#define ATH_BD_DATA_REV_SHIFT           0

#define ATH_BD_DATA_PROJ_ID_MASK        0x0000FF00
#define ATH_BD_DATA_PROJ_ID_SHIFT       8

#define ATH_BD_DATA_CUST_ID_MASK        0x00FF0000
#define ATH_BD_DATA_CUST_ID_SHIFT       16

#define ATH_BD_DATA_REF_DESIGN_ID_MASK  0xFF000000
#define ATH_BD_DATA_REF_DESIGN_ID_SHIFT 24

#define SET_BD_DATA_REV(bd_data_ver, value)     \
    ((bd_data_ver) &= ~ATH_BD_DATA_REV_MASK, (bd_data_ver) |= ((value) << ATH_BD_DATA_REV_SHIFT))

#define GET_BD_DATA_REV(bd_data_ver)            \
    (((bd_data_ver) & ATH_BD_DATA_REV_MASK) >> ATH_BD_DATA_REV_SHIFT)

#define SET_BD_DATA_PROJ_ID(bd_data_ver, value) \
    ((bd_data_ver) &= ~ATH_BD_DATA_PROJ_ID_MASK, (bd_data_ver) |= ((value) << ATH_BD_DATA_PROJ_ID_SHIFT))

#define GET_BD_DATA_PROJ_ID(bd_data_ver)        \
    (((bd_data_ver) & ATH_BD_DATA_PROJ_ID_MASK) >> ATH_BD_DATA_PROJ_ID_SHIFT)

#define SET_BD_DATA_CUST_ID(bd_data_ver, value) \
    ((bd_data_ver) &= ~ATH_BD_DATA_CUST_ID_MASK, (bd_data_ver) |= ((value) << ATH_BD_DATA_CUST_ID_SHIFT))

#define GET_BD_DATA_CUST_ID(bd_data_ver)        \
    (((bd_data_ver) & ATH_BD_DATA_CUST_ID_MASK) >> ATH_BD_DATA_CUST_ID_SHIFT)

#define SET_BD_DATA_REF_DESIGN_ID(bd_data_ver, value)   \
    ((bd_data_ver) &= ~ATH_BD_DATA_REF_DESIGN_ID_MASK, (bd_data_ver) |= ((value) << ATH_BD_DATA_REF_DESIGN_ID_SHIFT))

#define GET_BD_DATA_REF_DESIGN_ID(bd_data_ver)          \
    (((bd_data_ver) & ATH_BD_DATA_REF_DESIGN_ID_MASK) >> ATH_BD_DATA_REF_DESIGN_ID_SHIFT)


#ifdef ROME_LTE_COEX_FREQ_AVOID
typedef struct {
    A_UINT32 start_freq; /* start frequency, not channel center freq */
    A_UINT32 end_freq; /* end frequency */
} avoid_freq_range_desc;

typedef struct {
    /* bad channel range count, multi range is allowed, 0 means all channel clear */
    A_UINT32 num_freq_ranges;
    /* multi range with num_freq_ranges, LTE advance multi carrier, CDMA,etc */
    avoid_freq_range_desc avd_freq_range[0];
} wmi_wlan_avoid_freq_ranges_event;
#endif

/** status consists of  upper 16 bits fo A_STATUS status and lower 16 bits of module ID that returned status */
#define WLAN_INIT_STATUS_SUCCESS   0x0
#define WLAN_INIT_STATUS_GEN_FAILED   0x1
#define WLAN_GET_INIT_STATUS_REASON(status)    ((status) & 0xffff)
#define WLAN_GET_INIT_STATUS_MODULE_ID(status) (((status) >> 16) & 0xffff)

typedef A_UINT32 WLAN_INIT_STATUS;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ready_event_fixed_param */
    wmi_abi_version fw_abi_vers;
    /*
     * mac_addr is always filled; in addition, there can be a mac_addr_list
     * TLV following this fixed_param TLV to specify additional MAC addresses,
     * for cases where the target specifies one MAC address per pdev
     * (so the host can treat the pdevs within the target as separately
     * as possible) rather than one MAC address for the whole SOC.
     */
    wmi_mac_addr mac_addr;
    A_UINT32 status;
    A_UINT32 num_dscp_table;
    /* num_extra_mac_addr -
     * how many additional MAC addresses besides the above mac_addr
     * are provided in the subsequent mac_addr_list TLV
     */
    A_UINT32 num_extra_mac_addr;
    /*
     * Total number of "real" peers (remote peers of an AP vdev,
     * BSS peer of a STA vdev, TDLS peer of a STA vdev) that FW supports.
     * If 0, then Host can use param_tlv->resource_config->num_peers as
     * total number of peers.
     */
    A_UINT32 num_total_peers;
    /*
     * Number of extra peers that Firmware adds.
     * These are self peers and/or other FW only peers that don't represent
     * a 802.11 transceiver, but instead are used for convenience, e.g. to
     * provide a pseudo-peer object for an AP vdev's bcast/mcast tx queues,
     * to allow each tx queue to belong to a peer object.
     * Peer ID can be up to num_total_peers + num_extra_peers.
     */
    A_UINT32 num_extra_peers;
    /*
     * max_ast_index - max AST index that Firmware can generate
     * max_ast_index = (ast_table_size-1), ast_table_size is dynamically chosen
     * based on num_peers configuration from Host. Hence Host needs to know the
     * max_ast_index that Firmware can generate.
     * A 0x0 value for max_ast_index means the target has not specified a limit.
     */
    A_UINT32 max_ast_index;
    /* pktlog_defs_checksum:
     * checksum computed from the definitions of the enums and structs
     * used within pktlog traces.
     * This pktlog defs checksum needs to be embedded into pktlog trace files
     * (specifically in ath_pktlog_bufhdr.version).
     *
     * If pktlog_defs_checksum is zero then it is invalid; it should be ignored
     * and ath_pktlog_bufhdr.magic_num needs to be PKTLOG_MAGIC_NUM_LEGACY
     * (i.e. 7735225).
     *
     * If pktlog_defs_checksum is non-zero then it is valid, and the host
     * should put it into the pktlog trace file header and set
     * ath_pktlog_bufhdr.magic_num as PKTLOG_MAGIC_NUM_VERSION_IS_CHECKSUM
     * (i.e. 2453506), to indicate that the file header version field contains
     * a checksum.
     */
    A_UINT32 pktlog_defs_checksum;

    /*
     * max_onchip_ast_index - max AST index that Firmware can generate
     * max_onchip_ast_index = (ast_table_size-1), where ast_table_size is
     * dynamically chosen based on num_peers configuration from Host.
     * Hence Host needs to know the max_onchip_ast_index that Firmware can
     * generate.
     * A 0x0 value for max_onchip_ast_index means the target has not specified
     * a limit.
     */
    A_UINT32 max_onchip_ast_index;

    /*
     * The maximum number of LinkView peers can be supported onsite of target,
     * based on proposed by the host configuration,
     * total number of available resources, configured peers number,
     * number of MSDUQs per LinkView peer's TID.
     * Target can reduce proposed by WMI_INIT_CMDID number, depending on
     * the target's resources availability.
     */
    A_UINT32 num_of_linkview_peers;

    /* Total number of "real" max_active_vdevs that FW supports. */
    A_UINT32 num_max_active_vdevs;

/*
 * This fixed_param TLV is followed by these additional TLVs:
 * mac_addr_list[num_extra_mac_addr];
 */
} wmi_ready_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_resource_config */
    /**
     * @brief num_vdev - number of virtual devices (VAPs) to support
     */
    A_UINT32 num_vdevs;
    /**
     * @brief num_peers - number of peer nodes to support
     */
    A_UINT32 num_peers;
    /*
     * @brief In offload mode target supports features like WOW, chatter and other
     * protocol offloads. In order to support them some functionalities like
     * reorder buffering, PN checking need to be done in target. This determines
     * maximum number of peers supported by target in offload mode
     */
    A_UINT32 num_offload_peers;
    /* @brief Number of reorder buffers available for doing target based reorder
     * Rx reorder buffering
     */
    A_UINT32 num_offload_reorder_buffs;
    /**
     * @brief num_peer_keys - number of keys per peer
     */
    A_UINT32 num_peer_keys;
    /**
     * @brief num_peer_tids - number of TIDs to provide storage for per peer.
     */
    A_UINT32 num_tids;
    /**
     * @brief ast_skid_limit - max skid for resolving hash collisions
     * @details
     *     The address search table is sparse, so that if two MAC addresses
     *     result in the same hash value, the second of these conflicting
     *     entries can slide to the next index in the address search table,
     *     and use it, if it is unoccupied.  This ast_skid_limit parameter
     *     specifies the upper bound on how many subsequent indices to search
     *     over to find an unoccupied space.
     */
    A_UINT32 ast_skid_limit;
    /**
     * @brief tx_chain_mask - the nominal chain mask for transmit
     * @details
     *     The chain mask may be modified dynamically, e.g. to operate AP tx with
     *     a reduced number of chains if no clients are associated.
     *     This configuration parameter specifies the nominal chain-mask that
     *     should be used when not operating with a reduced set of tx chains.
     */
    A_UINT32 tx_chain_mask;
    /**
     * @brief rx_chain_mask - the nominal chain mask for receive
     * @details
     *     The chain mask may be modified dynamically, e.g. for a client to use
     *     a reduced number of chains for receive if the traffic to the client
     *     is low enough that it doesn't require downlink MIMO or antenna
     *     diversity.
     *     This configuration parameter specifies the nominal chain-mask that
     *     should be used when not operating with a reduced set of rx chains.
     */
    A_UINT32 rx_chain_mask;
    /**
     * @brief rx_timeout_pri - what rx reorder timeout (ms) to use for the AC
     * @details
     *     Each WMM access class (voice, video, best-effort, background) will
     *     have its own timeout value to dictate how long to wait for missing
     *     rx MPDUs to arrive before flushing subsequent MPDUs that have already
     *     been received.
     *     This parameter specifies the timeout in milliseconds for each class .
     *     NOTE: the number of class (defined as 4) cannot be
     *     changed in the future without breaking WMI compatibility.
     */
    A_UINT32 rx_timeout_pri[4];
    /**
     * @brief rx_decap mode - what mode the rx should decap packets to
     * @details
     *     MAC can decap to RAW (no decap), native wifi or Ethernet types
     *     THis setting also determines the default TX behavior, however TX
     *     behavior can be modified on a per VAP basis during VAP init
     */
    A_UINT32 rx_decap_mode;
    /**
     * @brief  scan_max_pending_req - what is the maximum scan requests than can be queued
     */
    A_UINT32 scan_max_pending_req;

    /**
     * @brief maximum VDEV that could use BMISS offload
     */
    A_UINT32 bmiss_offload_max_vdev;

    /**
     * @brief maximum VDEV that could use offload roaming
     */
    A_UINT32 roam_offload_max_vdev;

    /**
     * @brief maximum AP profiles that would push to offload roaming
     */
    A_UINT32 roam_offload_max_ap_profiles;

    /**
     * @brief num_mcast_groups - how many groups to use for mcast->ucast conversion
     * @details
     *     The target's WAL maintains a table to hold information regarding which
     *     peers belong to a given multicast group, so that if multicast->unicast
     *     conversion is enabled, the target can convert multicast tx frames to a
     *     series of unicast tx frames, to each peer within the multicast group.
     *     This num_mcast_groups configuration parameter tells the target how
     *     many multicast groups to provide storage for within its multicast
     *     group membership table.
     */
    A_UINT32 num_mcast_groups;

    /**
     * @brief num_mcast_table_elems - size to alloc for the mcast membership table
     * @details
     *     This num_mcast_table_elems configuration parameter tells the target
     *     how many peer elements it needs to provide storage for in its
     *     multicast group membership table.
     *     These multicast group membership table elements are shared by the
     *     multicast groups stored within the table.
     */
    A_UINT32 num_mcast_table_elems;

    /**
     * @brief mcast2ucast_mode - whether/how to do multicast->unicast conversion
     * @details
     *     This configuration parameter specifies whether the target should
     *     perform multicast --> unicast conversion on transmit, and if so,
     *     what to do if it finds no entries in its multicast group membership
     *     table for the multicast IP address in the tx frame.
     *     Configuration value:
     *     0 -> Do not perform multicast to unicast conversion.
     *     1 -> Convert multicast frames to unicast, if the IP multicast address
     *          from the tx frame is found in the multicast group membership
     *          table.  If the IP multicast address is not found, drop the frame.
     *     2 -> Convert multicast frames to unicast, if the IP multicast address
     *          from the tx frame is found in the multicast group membership
     *          table.  If the IP multicast address is not found, transmit the
     *          frame as multicast.
     */
    A_UINT32 mcast2ucast_mode;


    /**
     * @brief tx_dbg_log_size - how much memory to allocate for a tx PPDU dbg log
     * @details
     *     This parameter controls how much memory the target will allocate to
     *     store a log of tx PPDU meta-information (how large the PPDU was,
     *     when it was sent, whether it was successful, etc.)
     */
    A_UINT32 tx_dbg_log_size;

    /**
     * @brief num_wds_entries - how many AST entries to be allocated for WDS
     */
    A_UINT32 num_wds_entries;

    /**
     * @brief dma_burst_size - MAC DMA burst size, e.g., on Peregrine on PCI
     * this limit can be 0 -default, 1 256B
     */
    A_UINT32 dma_burst_size;

    /**
     * @brief mac_aggr_delim - Fixed delimiters to be inserted after every MPDU
     * to account for interface latency to avoid underrun.
     */
    A_UINT32 mac_aggr_delim;
    /**
     * @brief rx_skip_defrag_timeout_dup_detection_check
     * @details
     *  determine whether target is responsible for detecting duplicate
     *  non-aggregate MPDU and timing out stale fragments.
     *
     *  A-MPDU reordering is always performed on the target.
     *
     *  0: target responsible for frag timeout and dup checking
     *  1: host responsible for frag timeout and dup checking
     */
    A_UINT32 rx_skip_defrag_timeout_dup_detection_check;

    /**
     * @brief vow_config - Configuration for VoW : No of Video Nodes to be supported
     * and Max no of descriptors for each Video link (node).
     */
    A_UINT32 vow_config;

    /**
     * @brief maximum VDEV that could use GTK offload
     */
    A_UINT32 gtk_offload_max_vdev;

    /**
     * @brief num_msdu_desc - Number of msdu descriptors target should use
     */
    A_UINT32 num_msdu_desc; /* Number of msdu desc */
    /**
     * @brief max_frag_entry - Max. number of Tx fragments per MSDU
     * @details
     *     This parameter controls the max number of Tx fragments per MSDU.
     *     This is sent by the target as part of the WMI_SERVICE_READY event
     *     and is overridden by the OS shim as required.
     */
    A_UINT32 max_frag_entries;

    /**
     * @brief num_tdls_vdevs - Max. number of vdevs that can support TDLS
     * @brief num_msdu_desc - Number of vdev that can support beacon offload
     */

    A_UINT32 num_tdls_vdevs; /* number of vdevs allowed to do tdls */

    /**
     * @brief num_tdls_conn_table_entries - Number of peers tracked by tdls vdev
     * @details
     *      Each TDLS enabled vdev can track outgoing transmits/RSSI/rates to/of
     *      peers in a connection tracking table for possible TDLS link creation
     *      or deletion. This controls the number of tracked peers per vdev.
     */
    A_UINT32  num_tdls_conn_table_entries; /* number of peers to track per TDLS vdev */
    /**
     * @brief beacon_tx_offload_max_vdev - Number of maximum beaconing vaps at any time.
     */
     A_UINT32 beacon_tx_offload_max_vdev;
     A_UINT32 num_multicast_filter_entries;
     A_UINT32 num_wow_filters; /*host can configure the number of wow filters*/

     /**
     * @brief num_keep_alive_pattern - Num of keep alive patterns configured
     * from host.
     */
     A_UINT32 num_keep_alive_pattern;
    /**
     * @brief keep_alive_pattern_size - keep alive pattern size.
     */
     A_UINT32 keep_alive_pattern_size;
    /**
     * @brief max_tdls_concurrent_sleep_sta - Number of tdls sleep sta supported
     * @details
     *      Each TDLS STA can become a sleep STA independently. This parameter
     *      mentions how many such sleep STAs can be supported concurrently.
     */
    A_UINT32 max_tdls_concurrent_sleep_sta;

    /**
     * @brief max_tdls_concurrent_buffer_sta - Number of tdls buffer sta supported
     * @details
     *      Each TDLS STA can become a buffer STA independently. This parameter
     *      mentions how many such buffer STAs can be supported concurrently.
     */
    A_UINT32 max_tdls_concurrent_buffer_sta;

    /**
     * @brief wmi_send_separate - host configures fw to send the wmi separately
     */
    A_UINT32 wmi_send_separate;

    /**
     * @brief num_ocb_vdevs - Number of vdevs used for OCB support
     */
    A_UINT32 num_ocb_vdevs;

    /**
     * @brief num_ocb_channels - The supported number of simultaneous OCB channels
     */
    A_UINT32 num_ocb_channels;

    /**
     * @brief num_ocb_schedules - The supported number of OCB schedule segments
     */
    A_UINT32 num_ocb_schedules;

    /**
     * @brief specific configuration from host, such as per platform configuration
     */
    #define WMI_RSRC_CFG_FLAG_WOW_IGN_PCIE_RST_S 0
    #define WMI_RSRC_CFG_FLAG_WOW_IGN_PCIE_RST_M 0x1

    #define WMI_RSRC_CFG_FLAG_LTEU_SUPPORT_S 1
    #define WMI_RSRC_CFG_FLAG_LTEU_SUPPORT_M 0x2

    #define WMI_RSRC_CFG_FLAG_COEX_GPIO_SUPPORT_S 2
    #define WMI_RSRC_CFG_FLAG_COEX_GPIO_SUPPORT_M 0x4

    #define WMI_RSRC_CFG_FLAG_AUX_RADIO_SPECTRAL_INTF_S 3
    #define WMI_RSRC_CFG_FLAG_AUX_RADIO_SPECTRAL_INTF_M 0x8

    #define WMI_RSRC_CFG_FLAG_AUX_RADIO_CHAN_LOAD_INTF_S 4
    #define WMI_RSRC_CFG_FLAG_AUX_RADIO_CHAN_LOAD_INTF_M 0x10

    #define WMI_RSRC_CFG_FLAG_BSS_CHANNEL_INFO_64_S 5
    #define WMI_RSRC_CFG_FLAG_BSS_CHANNEL_INFO_64_M 0x20

    #define WMI_RSRC_CFG_FLAG_ATF_CONFIG_ENABLE_S 6
    #define WMI_RSRC_CFG_FLAG_ATF_CONFIG_ENABLE_M 0x40

    #define WMI_RSRC_CFG_FLAG_IPHR_PAD_CONFIG_ENABLE_S 7
    #define WMI_RSRC_CFG_FLAG_IPHR_PAD_CONFIG_ENABLE_M 0x80

    #define WMI_RSRC_CFG_FLAG_QWRAP_MODE_ENABLE_S 8
    #define WMI_RSRC_CFG_FLAG_QWRAP_MODE_ENABLE_M 0x100

    #define WMI_RSRC_CFG_FLAG_MGMT_COMP_EVT_BUNDLE_SUPPORT_S 9
    #define WMI_RSRC_CFG_FLAG_MGMT_COMP_EVT_BUNDLE_SUPPORT_M 0x200

    #define WMI_RSRC_CFG_FLAG_TX_MSDU_ID_NEW_PARTITION_SUPPORT_S 10
    #define WMI_RSRC_CFG_FLAG_TX_MSDU_ID_NEW_PARTITION_SUPPORT_M 0x400

    #define WMI_RSRC_CFG_FLAG_TX_PPDU_STATS_ENABLE_S 11
    #define WMI_RSRC_CFG_FLAG_TX_PPDU_STATS_ENABLE_M 0x800

    #define WMI_RSRC_CFG_FLAG_TCL_CCE_DISABLE_S 12
    #define WMI_RSRC_CFG_FLAG_TCL_CCE_DISABLE_M 0x1000

    #define WMI_RSRC_CFG_FLAG_TIM_V2_SUPPORT_ENABLE_S 13
    #define WMI_RSRC_CFG_FLAG_TIM_V2_SUPPORT_ENABLE_M 0x2000

    #define WMI_RSRC_CFG_FLAG_EAPOL_REKEY_MINRATE_SUPPORT_ENABLE_S 14
    #define WMI_RSRC_CFG_FLAG_EAPOL_REKEY_MINRATE_SUPPORT_ENABLE_M 0x4000

    #define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_VALID_S 15
    #define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_VALID_M 0x8000

    /*
     * If the AC override valid bit is set then this field will specify the
     * access category to use for EAPOL frames
     * 0 - WMM_AC_BE
     * 1 - WMM_AC_BK
     * 2 - WMM_AC_VI
     * 3 - WMM_AC_VO
     */
    #define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_S 16
    #define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_M 0x30000

    /*
     * If TX_ACK_RSSI is set, then the target should populate the ack_rssi
     * field within the WMI_MGMT_TX_COMPLETION_EVENT message, the ack_rssi
     * TLV within the WMI_MGMT_TX_BUNDLE_COMPLETION_EVENT message, and the
     * "MSDU ACK RSSI" array within the HTT_T2H TX_COMPL_IND message.
     */
    #define WMI_RSRC_CFG_FLAG_TX_ACK_RSSI_S 18
    #define WMI_RSRC_CFG_FLAG_TX_ACK_RSSI_M 0x40000

    /*
     * If HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN is set, the host will not
     * include the HTC header length in the payload length for all HTT_H2T
     * messages.
     * Otherwise, only when sending HTT_H2T_MSG_TYPE_TX_FRM message,
     * payload length includes HTC header length. Other HTT_H2T messages'
     * payload length does not include HTC header length.
     * The host will only set this HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN flag
     * if the target has set the WMI_SERVICE_HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN
     * flag to indicate its support for this option.
     */
    #define WMI_RSRC_CFG_FLAG_HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN_S 19
    #define WMI_RSRC_CFG_FLAG_HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN_M 0x80000

    #define WMI_RSRC_CFG_FLAG_PEER_UNMAP_RESPONSE_SUPPORT_S 20
    #define WMI_RSRC_CFG_FLAG_PEER_UNMAP_RESPONSE_SUPPORT_M 0x100000

    /*
     * If this HTT_PEER_STATS is set, then the target should use the
     * the HTT_T2H_MSG_TYPE_PEER_STATS_IND message to upload peer stats;
     * else the target should avoid sending the PEER_STATS_IND message.
     */
    #define WMI_RSRC_CFG_FLAG_HTT_PEER_STATS_S 21
    #define WMI_RSRC_CFG_FLAG_HTT_PEER_STATS_M 0x200000

    /*
     * If this BIT is set, then the target should use peer_tid_ext to analyze
     * per peer per tid extended configurations
     */
    #define WMI_RSRC_CFG_FLAG_PEER_TID_EXT_S 22
    #define WMI_RSRC_CFG_FLAG_PEER_TID_EXT_M 0x400000

    /*
     * If the VIDEO_OVER_WIFI_ENABLE flag is set, the target will use a
     * series of algorithmic adjustments to optimize Video performance
     * by reducing latency, reducing latency jitter, and minimizing
     * dropped packets.
     */
    #define WMI_RSRC_CFG_FLAG_VIDEO_OVER_WIFI_ENABLE_S 23
    #define WMI_RSRC_CFG_FLAG_VIDEO_OVER_WIFI_ENABLE_M 0x800000

    /*
     * If the THREE_WAY_COEX_CONFIG_LEGACY flag is set, the target will use
     * the configuration parameters given by Host driver to WLAN FW and
     * apply them along with the existing CoEx Weights Override logic to
     * prioritize the WLAN-BT-Zigbee packets accordingly.
     *
     * The host shall only set the THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT
     * RSRC_CFG flag if the target has set the WMI_SERVICE
     * THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT flag.
     *
     * The logic to send GPM to BT-SOC with BT-ZB priorities remains the same.
     */
    #define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT_S 24
    #define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT_M 0x1000000

    /*
     * If the THREE_WAY_COEX_CONFIG_OVERRIDE flag is set, the target will use
     * the configuration parameters given by Host driver to WLAN FW and
     * apply them by OVERRIDing the existing CoEx Weights Override logic to
     * prioritize the WLAN-BT-Zigbee packets accordingly.
     *
     * The host shall only set the THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT
     * RSRC_CFG flag if the target has set the WMI_SERVICE
     * THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT flag.
     *
     * The logic to send GPM to BT-SOC with BT-ZB priorities remains the same.
     */
    #define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT_S 25
    #define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT_M 0x2000000

    /*
     * If the TX_COMPLETION_TX_TSF64 flag is set, the target should
     * populate the htt_tx_compl_ind_append_tx_tsf64 array within the
     * HTT_T2H TX_COMPL_IND message.
     */
    #define WMI_RSRC_CFG_FLAG_TX_COMPLETION_TX_TSF64_ENABLE_S 26
    #define WMI_RSRC_CFG_FLAG_TX_COMPLETION_TX_TSF64_ENABLE_M 0x4000000

    /*
     * If this BIT is set, then the target should support Packet capture(SMART MU FR)
     */
    #define WMI_RSRC_CFG_FLAG_PACKET_CAPTURE_SUPPORT_S 27
    #define WMI_RSRC_CFG_FLAG_PACKET_CAPTURE_SUPPORT_M 0x8000000

    /*
     * If this BIT is set, then target should support BSS Max Idle period.
     */
    #define WMI_RSRC_CFG_FLAG_BSS_MAX_IDLE_TIME_SUPPORT_S 28
    #define WMI_RSRC_CFG_FLAG_BSS_MAX_IDLE_TIME_SUPPORT_M 0x10000000

    /*
     * If this bit is set, then target should use the audio sync feature.
     * Host should only set this bit if the target has indicated via the
     * WMI_SERVICE_AUDIO_SYNC_SUPPORT flag that it supports audio sync.
     */
    #define WMI_RSRC_CFG_FLAG_AUDIO_SYNC_SUPPORT_S  29
    #define WMI_RSRC_CFG_FLAG_AUDIO_SYNC_SUPPORT_M 0x20000000

    /*
     * If this BIT is set, then the target should disable IPA
     */
    #define WMI_RSRC_CFG_FLAG_IPA_DISABLE_S 30
    #define WMI_RSRC_CFG_FLAG_IPA_DISABLE_M 0x40000000

    /*
     * If this bit is set, target should use the PCIe GEN switching feature.
     */
    #define WMI_RSRC_CFG_FLAG_PCIE_GEN_SWITCH_CAPABLITY_S 31
    #define WMI_RSRC_CFG_FLAG_PCIE_GEN_SWITCH_CAPABLITY_M 0x80000000

    A_UINT32 flag1;

    /** @brief smart_ant_cap - Smart Antenna capabilities information
     * @details
     *        1 - Smart antenna is enabled.
     *        0 - Smart antenna is disabled.
     * In future this can contain smart antenna specific capabilities.
     */
    A_UINT32 smart_ant_cap;

    /**
     * User can configure the buffers allocated for each AC (BE, BK, VI, VO)
     * during init
     */
    A_UINT32 BK_Minfree;
    A_UINT32 BE_Minfree;
    A_UINT32 VI_Minfree;
    A_UINT32 VO_Minfree;

    /**
     * @brief alloc_frag_desc_for_data_pkt . Controls data packet fragment
     * descriptor memory allocation.
     *   1 - Allocate fragment descriptor memory for data packet in firmware.
     *       If host wants to transmit data packet at its desired rate,
     *       this field must be set.
     *   0 - Don't allocate fragment descriptor for data packet.
     */
    A_UINT32 alloc_frag_desc_for_data_pkt;

    /** how much space to allocate for NDP NS (neighbor solicitation) specs */
    A_UINT32 num_ns_ext_tuples_cfg;

    /**
     * size (in bytes) of the buffer the FW shall allocate per vdev
     * firmware can dynamic allocate memory (or disable)
     * packet filtering feature.
     * 0 - fw chooses its default value
     * -1 (0XFFFFFFFF) - disable APF
     */
    A_UINT32 bpf_instruction_size;

    /**
     * Maximum no of BSSID based RX filters host would program
     * Value 0 means host doesn't given any limit to FW.
     */
    A_UINT32 max_bssid_rx_filters;
    /**
     * Use PDEV ID instead of MAC ID, added for backward compatibility with older host
     * which is using MAC ID. 1 means PDEV ID, 0 means MAC ID.
     */
    A_UINT32 use_pdev_id;

    /** Maximum number of scan clients whose DBS scan duty cycle can be configured */
    A_UINT32 max_num_dbs_scan_duty_cycle;

    /** Maximum number of Multi group key to support */
    A_UINT32 max_num_group_keys;

    union {
        A_UINT32 peer_map_unmap_v2_support; /* old name */
        /**
         * HTT peer map/unmap format support (map 4bits and unmap 4bits)
         * 0x00 -> host use default map/unmap only.
         * 0x01 -> legacy value that is interpreted the same as 0x22.
         * 0x22 -> host supports HTT peer map/unmap v2 format; the target is
         *         allowed but not required to use peer map/unmap v2 format.
         * 0x32 -> host supports HTT peer map v3 format; the target is
         *         allowed but not required to use peer map v3 format and
         *         peer unmap v2 format.
         */
        A_UINT32 peer_map_unmap_versions;
    };

    /** Sched config params for all pdevs
     * These tx scheduling configuration parameters are currently only
     * used for internal testing purposes; therefore the non-default
     * values for this field are not currently documented.
     * For regular use, this field should be set to 0x0.
     */
    A_UINT32 sched_params;

    /* Number of MAC on which AP TWT feature is supported */
    A_UINT32 twt_ap_pdev_count;

    /* Max no of STA with which TWT sessions can be formed by the AP */
    A_UINT32 twt_ap_sta_count;

    /* max_nlo_ssids - dynamically negotiated maximum number of SSIDS for NLO
     * This parameter provides the final specification for the maximum number
     * of SSIDs for the target to support for Network List Offload's scanning
     * for preferred networks.
     * This wmi_resource_config.max_nlo_ssids must be <= the max_nlo_ssids
     * field from the target's WMI_SERVICE_READY_EXT_EVENT message.
     * (If the target didn't provide a max_nlo_ssids field in the
     * WMI_SERVICE_READY_EXT message, or if the SERVICE_READY_EXT msg's
     * max_nlo_ssids value was 0x0, the target doesn't support dynamic
     * negotiation of max NLO SSIDs, and WMI_NLO_MAX_SSIDS (=16) applies.)
     * If this wmi_resource_config.max_nlo_ssids field is absent or 0x0,
     * the host does not support dynamic negotiation of max NLO SSIDs.
     * In such a case, the target will respond as follows:
     * If the target supports at least WMI_NLO_MAX_SSIDS, the target will
     * use the statically-configured WMI_NLO_MAX_SSIDS value.
     * If the target supports less than WMI_NLO_MAX_SSIDS, the target will
     * abort its boot-up, due to receiving an invalid/unsupported
     * configuration specification.
     */
    A_UINT32 max_nlo_ssids;

    /**
     * num_packet_filters: the num that host requests fw to support for
     * pktfilter in total, then firmware can dynamic allocate
     * memory(or disable) pktfilter feature.
     *
     * 0 -  fw chooses its default value.
     * -1(0XFFFFFFFF)- disable pktfilter.
     */
    A_UINT32 num_packet_filters;

    /**
     * num_max_sta_vdevs: the max num for the sta vdevs
     * fw will use it to config the memory of offload features that
     * are only for sta vdevs.
     * p2p client should be included.
     *
     *  0 - fw chooses its default value: 'num_vdevs' of this structure.
     */
    A_UINT32 num_max_sta_vdevs;

    /* ref to section 8.4.2.48 Multiple BSSID element
     * The Max BSSID Indicator field contains a value assigned to n,
     * where 2^n is the maximum number of BSSIDs
     */
    A_UINT32 max_bssid_indicator;

    /** @brief ul_resp_config - Configures the 11ax uplink ofdma feature on STA.
     *         I.e. sending uplink response to a trigger frame sent by AP.
     *  @details
     *        0 - fw default behavior, based on chipset
     *        1 - UL_RESP is disabled.
     *        2 - UL_RESP is enabled.
     *        other - reserved.
     */
    A_UINT32 ul_resp_config;

    /* msdu_flow_override_config0 - contains AST enable bitmask
     * AST0 is unconditionally enabled, unless the MSDU flow override feature
     * is entirely disabled.
     * AST1 through AST3 are conditionally enabled, based on bits 0-2 in
     * msdu_flow_override_config0.
     * If all three bits are 0, no msdu flow override feature at all in FW.
     *
     * The WMI_MSDU_FLOW_AST_ENABLE_GET and WMI_MSDU_FLOW_AST_ENABLE_SET
     * macros are used to read and write these bitfields.
     */
    A_UINT32 msdu_flow_override_config0;

     /* msdu_flow_override_config1:
      * Bits 3:0   - AST0_FLOW_MASK(4)
      * Bits 7:4   - AST1_FLOW_MASK(4)
      * Bits 11:8  - AST2_FLOW_MASK(4)
      * Bits 15:12 - AST3_FLOW_MASK(4)
      * Bits 23:16 - TID_VALID_HI_PRI (8)
      * Bits 31:24 - TID_VALID_LOW_PRI (8)
      *
      * The macros
      * WMI_MSDU_FLOW_ASTX_MSDU_FLOW_MASKS_GET
      * WMI_MSDU_FLOW_ASTX_MSDU_FLOW_MASKS_SET
      * WMI_MSDU_FLOW_TID_VALID_HI_MASKS_GET
      * WMI_MSDU_FLOW_TID_VALID_HI_MASKS_SET
      * WMI_MSDU_FLOW_TID_VALID_LOW_MASKS_GET
      * WMI_MSDU_FLOW_TID_VALID_LOW_MASKS_SET
      * are used to read and write these bitfields.
      */
    A_UINT32 msdu_flow_override_config1;

    /** @brief flags2 - contains flags used for the following purposes:
     *  Configure 11ax uplink ofdma/MU-MIMO feature in FW, when chipsets
     *  are brought up in Repeater/STA mode.
     *
     *  @details
     *  Bits  3:0
     *      Enable UL MU-OFDMA/MIMO for PDEVs WIFI0, WIFI1, WIFI2
     *      This flags should only be set when a pdev has STA VAP
     *      in repeater/self-organizing-network modes.
     *      E.g. to enable UL RESP for 5G and 2G radios, value shall be
     *      0b00000000000000000000000000000011 = 0x3.
     *      Host shall use UCI config for a radio to populate this value,
     *      each radio entry shall have "config re_ul_resp 1" value set.
     *      Hence this can be configured dynamically.
     *
     *      Refer to the below WMI_RSRC_CFG_FLAGS2_RE_ULRESP_PDEV_CFG_GET/SET
     *      macros.
     *  Bits 5:4
     *      HTT rx peer metadata version number that host supports.
     *      Firmware initially sends the target supported version number
     *      as part of service_ready_ext2 message.
     *      Host can ack the version number that it is using as part of
     *      this message.
     *      0-> legacy case
     *      1-> MLO support
     *      2-3-> Reserved
     *      Refer to the WMI_RSRC_CFG_FLAGS2_RX_PEER_METADATA_VERSION macros.
     *  Bit 6 - is_sap_connected_d3wow_enabled
     *      Enable D3WoW for SAP w/ clients connected
     *      0-> disable the feature
     *      1-> enable the feature
     *      Refer to the WMI_RSRC_CFG_FLAGS2_IS_SAP_CONNECTED_D3WOW_ENABLED
     *      GET/SET macros.
     *  Bit 7 - is_go_connected_d3wow_enabled
     *      Enable D3WoW for GO w/ clients connected
     *      0-> disable the feature
     *      1-> enable the feature
     *      Refer to the WMI_RSRC_CFG_FLAGS2_IS_GO_CONNECTED_D3WOW_ENABLED
     *      GET/SET macros.
     *  Bit 8 - enable_dynamic_pcie_gen_speed_switch
     *      enable dynamic pcie gen speed switch
     *      0-> disable the feature
     *      1-> enable the feature
     *      Refer to the WMI_RSRC_CFG_FLAGS2_IS_DYNAMIC_PCIE_GEN_SPEED_SWITCH_ENABLED
     *      GET/SET macros.
     *  Bit 9 - calc_next_dtim_count
     *      0 -> disable calculation of DTIM count for MBSSID_NON_TX_VAP
     *      1 -> Used by some hosts to indicate calculation of DTIM count
     *           for MBSSID_NON_TX_VAP
     *      Refer to WMI_RSRC_CFG_FLAGS2_CALC_NEXT_DTIM_COUNT_GET/SET macros.
     *
     * Bit 10 - arp_ac_override_valid
     *      0 -> arp_ac_override field is invalid
     *      1 -> arp_ac_override field is valid
     *      Refer to WMI_RSRC_CFG_FLAGS2_ARP_AC_OVERRIDE_VALID_GET/SET macros.
     * Bit 12:11 - arp_ac_override
     *      If the AC override valid bit is set then this field will specify the
     *      access category to use for ARP frames
     *      0 - WMM_AC_BE
     *      1 - WMM_AC_BK
     *      2 - WMM_AC_VI
     *      3 - WMM_AC_VO
     *      Refer to WMI_RSRC_CFG_FLAGS2_ARP_AC_OVERRIDE_GET/SET macros.
     * Bit 13 - sawf_sched
     *      SAWF feature flag for scheduler
     *      0  -> disable SAWF based scheduling
     *      1  -> enable SAWF based scheduling
     *      Refer to WMI_RSRC_CFG_FLAGS2_SAWF_CONFIG_ENABLE_GET/SET macros.
     * Bit 14 - notify_frame_support
     *      Flag to enable notify_frame_support from host.
     *      0  -> disable notify_frame_support feature
     *      1  -> enable_notify_frame_support feature
     *      Refer to WMI_RSRC_CFG_FLAGS2_NOTIFY_FRAME_CONFIG_ENABLE_GET/SET
     *      macros.
     * Bit 15 - disable_wds_mec_intrabss
     *      Flag to disable wds learning, MEC, intrabss offload.
     *      By default, it is enabled.
     *      0  -> enable wds_mec_intrabss offload
     *      1  -> disable wds_mec_intrabss offload
     *      Refer to WMI_RSRC_CFG_FLAGS2_DISABLE_WDS_MEC_INTRABSS_OFFLOAD_GET /
     *      SET macros.
     * Bit 16 - latency_flowq_support
     *      Flag to indicate whether host supports latency tolerant queue.
     *      By default, it is disabled.
     *      0  -> disable latency_flowq_support
     *      1  -> enable latency_flowq_support
     *      Refer to WMI_RSRC_CFG_FLAGS2_LATENCY_FLOWQ_SUPPORT_GET/SET macros.
     * Bit 17 - rf_path_mode
     *      Flag to indicate overlapping_freq_mode
     *      By default, it will be primary mode (0)
     *      0 - Primary
     *      1 - Secondary
     *      Refer to WMI_RSRC_CFG_FLAGS2_RF_PATH_MODE_GET/SET macros.
     *
     *  Bits 31:18 - Reserved
     */
    A_UINT32 flags2;
    /** @brief host_service_flags - can be used by Host to indicate
     * services that host can support.
     *
     *  @details
     *  Bit 0
     *      The bit will be set when Host HDD supports separate iface creation
     *      for NAN.  More specifically Host can support creation of NAN vdev
     *      in firmware.
     *
     *      Refer to WMI_RSRC_CFG_HOST_SERVICE_FLAG_NAN_IFACE_SUPPORT_GET/SET
     *      macros defined below.
     *  Bit 1
     *      The bit will be set when HOST is capable of processing multiple
     *      radio events per radio. More specifically whenever Firmware is
     *      sending multiple radio events (WMI_RADIO_LINK_STATS_EVENTID
     *      = 0x16004) for a single radio,
     *      Through this flag Firmware will know that HOST is able to support
     *      delivery of RADIO_LINK_STATS across multiple event messages,
     *      and Firmware can send multiple radio events.
     *
     *      Refer to WMI_RSRC_CFG_HOST_SERVICE_FLAG_HOST_SUPPORT_MULTI_RADIO_EVTS_PER_RADIO_GET/SET
     *      macros defined below.
     *  Bit 2
     *      This bit will be set when host is able to handle split AST feature.
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_SPLIT_AST_FEATURE_HOST_SUPPORT_GET
     *      and _SET macros.
     *  Bit 3
     *      This bit will be set when host is able to enable EAPOL offload to
     *      FW for SAE roaming feature.
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_SAE_EAPOL_OFFLOAD_SUPPORT_GET
     *      and _SET macros.
     *  Bit 4
     *      This bit will be set when host is able to process the
     *      WMI_REG_CC_EXT_EVENT.
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_CC_EXT_SUPPORT_GET
     *      and _SET macros.
     *  Bit 5
     *      This bit will be set when the host supports NAN channels.
     *      Refer to WMI_RSRC_CFG_HOST_SERVICE_FLAG_NAN_CHANNEL_SUPPORT_GET/SET
     *  Bit 6
     *      This bit will be set when the host supports synchronous TWT events.
     *      Refer to WMI_RSRC_CFG_HOST_SERVICE_FLAG_STA_TWT_SYNC_EVT_SUPPORT_GET
     *      and _SET.
     *  Bit 7
     *      This bit will be set when host supports both LPI and SP mode.
     *      when this bit is set to 0 - Indicate LPI only mode
     *                  when set to 1 - Indicate both SP mode and LPI mode
     *                                  both are supported
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_LPI_SP_MODE_SUPPORT_GET
     *      and _SET macros.
     *  Bit 8
     *      This bit will be set when host wants to disable timer check in
     *      reg for AFC.
     *      when set to 1 - Disable timer check
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_DISCARD_TIMER_CHECK_GET
     *      and _SET macros.
     *  Bit 9
     *      This bit will be set when host host wants to disable request id
     *      check in reg for AFC.
     *      when set to 1 - Disable Request ID check
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_DISCARD_REQ_ID_CHECK_GET
     *      and _SET macros.
     *  Bit 10
     *      This bit will be set when host wants to enable indoor for AFC
     *      when this bit is set to 0 indoor mode not enabled
     *      when this bit is set to 1 indoor mode is enabled
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_AFC_INDOOR_SUPPORT_CHECK_GET
     *      and SET macros
     *  Bit 11
     *      This bit will be set when host wants to enable outdoor for AFC
     *      when this bit is set to 0 outdoor mode not enabled
     *      when this bit is set to 1 outdoor mode is enabled
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_AFC_OUTDOOR_SUPPORT_CHECK_GET
     *      and SET macros.
     *  Bit 12
     *      This bit will be set when host host wants to enable/disable
     *      REO QREF feature
     *      when set to 1 - Enable the REO QREF feature
     *      when set to 0 - Disable the REO QREF feature
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_REO_QREF_FEATURE_SUPPORT_GET
     *      and _SET macros.
     *  Bit 13
     *      This bit will be set when host host wants to enable/disable
     *      bang radar 320M support feature
     *      when set to 1 - Enable the bang radar 320M support
     *      when set to 0 - Disable the bang radar 320M support
     *      Refer to the below definitions of the
     *      WMI_RSRC_CFG_HOST_SERVICE_FLAG_BANG_RADAR_320M_SUPPORT_GET
     *      and _SET macros.
     *  Bits 31:14 - Reserved
     */
    A_UINT32 host_service_flags;

    /** @brief max_rnr_neighbours -
     * The Maximum number of neighbour RNR's from other SoC.
     * This limits the field @num_bss in @wmi_pdev_tbtt_offset_sync_cmd_fixed_param.
     * Value of 0 means cross SoC TBTT offset synchronization not required and
     * @PDEV_TBTT_OFFSET_SYNC_CMD wouldn't be used.
     */
    A_UINT32 max_rnr_neighbours;

    /** @brief ema_max_vap_cnt - number of maximum EMA Tx vaps (VAPs having both
     *  VDEV_FLAGS_EMA_MODE and VDEV_FLAGS_TRANSMIT_AP set) at any instance
     * of time across SOC. Legacy MBSS Vaps are not accounted in this field.
     */
    A_UINT32 ema_max_vap_cnt;

    /** @brief ema_max_profile_period - maximum profile periodicity
     * (maximum number of beacons after which VAP profiles repeat)
     * for any EMA VAP on any pdev.
     */

    A_UINT32 ema_max_profile_period;
    /** @brief max_ndp_sessions
     * This is the max ndp sessions sent by the host which is the minimum
     * of the value requested within the host's ini configurations and
     * the max ndp sessions supported by the firmware (as reported in the
     * SERVICE_READY_EXT2_EVENT message).
     */
    A_UINT32 max_ndp_sessions;

    /** @brief max_ndi_supported
     * This is the max ndi interfaces sent by the host based on the value
     * specified by the host's ini configuration.
     */
    A_UINT32 max_ndi_interfaces;

    /** @brief max_ap_vaps
     * Maximum number of AP mode vdevs created at any time.
     * This value is minimum of the number of AP vdevs supported by
     * the target and host.
     */
    A_UINT32 max_ap_vaps;

    /** @brief cbc_flow_ena
     * When cbc_flow_ena is se, halphy will do Cold Boot Calibration flow.
     * Otherwise, halphy will do normal flow.
     */
    A_UINT32 cbc_flow_ena;

    /** @brief ema_init_config - can be used by Host to indicate beacon size
     *  @details
     *  Bit   0 : 15 - Size of beacon, currently it can be sent as
     *                 1500 or 2500 or 4000 bytes
     *  Bit  16 : 31 - Reserved
     *  In case of Backward compatibility, if this variable is 0 then
     *  default beacon size (1500) is used.
     */
    A_UINT32 ema_init_config;

    /** @brief carrier_config
     * Carrier profile configuration
     * BIT 0 -> enable/disable charter configurations
     * BIT 1 : 31 Reserved
     */
    A_UINT32 carrier_config;

    /** @brief num_of_linkview_peers - proposed by the host value of
     *      the peers with the num_of_linkview_msduqs_per_tid allocation
     *  @details
     *  Host can request what the number of 'num_peers' should use
     *  num_of_linkview_msduqs_per_tid. All other peers will use
     *  default number of MSDUQs allocated.
     */
    A_UINT32 num_of_linkview_peers;

    /** @brief num_of_linkview_msduqs_per_tid - proposed by the host value of
     *      MSDUQs per each LinkView peer's TID
     *  @details
     *  Host sends the number of MSDUQs per each LinkView peer's TID.
     *  This number will be used during resources allocation for
     * LinkView peer in the target.
     */
    A_UINT32 num_of_linkview_msduqs_per_tid;

    /**
     * @brief num_max_active_vdevs -
     * number of max active virtual devices (VAPs) to support
     */
    A_UINT32 num_max_active_vdevs;
} wmi_resource_config;

#define WMI_MSDU_FLOW_AST_ENABLE_GET(msdu_flow_config0, ast_x) \
    (((ast_x) == 0) ? 1 : ((msdu_flow_config0) & (1 << ((ast_x) - 1))))
#define WMI_MSDU_FLOW_AST_ENABLE_SET(msdu_flow_config0, ast_x, enable) \
    do { \
        if ((ast_x) == 0) break;  \
        if ((enable)) { \
            (msdu_flow_config0) |= (1 << ((ast_x) - 1)); \
        } else { \
            (msdu_flow_config0) &= ~(1 << ((ast_x) - 1)); \
        } \
    } while(0)

#define WMI_MSDU_FLOW_ASTX_MSDU_FLOW_MASKS_GET(msdu_flow_config1, ast_x) \
    (((msdu_flow_config1) & (0x0f << ((ast_x) * 4))) >> ((ast_x) * 4))
#define WMI_MSDU_FLOW_ASTX_MSDU_FLOW_MASKS_SET( \
    msdu_flow_config1, ast_x, mask) \
    do { \
        (msdu_flow_config1) &= ~(0xF << ((ast_x) * 4)); \
        (msdu_flow_config1) |= ((mask) << ((ast_x) * 4)); \
    } while(0)

#define WMI_MSDU_FLOW_TID_VALID_HI_MASKS_GET(msdu_flow_config1) \
    (((msdu_flow_config1) & 0xff0000) >> 16)
#define WMI_MSDU_FLOW_TID_VALID_HI_MASKS_SET(msdu_flow_config1, mask) \
    do { \
        (msdu_flow_config1) &= ~0xff0000; \
        (msdu_flow_config1) |= ((mask) << 16); \
    } while(0)

#define WMI_MSDU_FLOW_TID_VALID_LOW_MASKS_GET(msdu_flow_config1) \
    ((msdu_flow_config1 & 0xff000000) >> 24)
#define WMI_MSDU_FLOW_TID_VALID_LOW_MASKS_SET(msdu_flow_config1, mask) \
    do { \
        (msdu_flow_config1) &= ~0xff000000; \
        (msdu_flow_config1) |= ((mask) << 24); \
    } while(0)

#define WMI_RSRC_CFG_FLAG_SET(word32, flag, value) \
    do { \
        (word32) &= ~WMI_RSRC_CFG_FLAG_ ## flag ## _M; \
        (word32) |= ((value) << WMI_RSRC_CFG_FLAG_ ## flag ## _S) & \
            WMI_RSRC_CFG_FLAG_ ## flag ## _M; \
    } while (0)
#define WMI_RSRC_CFG_FLAG_GET(word32, flag) \
    (((word32) & WMI_RSRC_CFG_FLAG_ ## flag ## _M) >> \
    WMI_RSRC_CFG_FLAG_ ## flag ## _S)

#define WMI_RSRC_CFG_FLAG_WOW_IGN_PCIE_RST_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), WOW_IGN_PCIE_RST, (value))
#define WMI_RSRC_CFG_FLAG_WOW_IGN_PCIE_RST_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), WOW_IGN_PCIE_RST)

#define WMI_RSRC_CFG_FLAG_LTEU_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), LTEU_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_LTEU_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), LTEU_SUPPORT)

#define WMI_RSRC_CFG_FLAG_COEX_GPIO_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), COEX_GPIO_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_COEX_GPIO_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), COEX_GPIO_SUPPORT)

#define WMI_RSRC_CFG_FLAG_AUX_RADIO_SPECTRAL_INTF_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), AUX_RADIO_SPECTRAL_INTF, (value))
#define WMI_RSRC_CFG_FLAG_AUX_RADIO_SPECTRAL_INTF_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), AUX_RADIO_SPECTRAL_INTF)

#define WMI_RSRC_CFG_FLAG_AUX_RADIO_CHAN_LOAD_INTF_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), AUX_RADIO_CHAN_LOAD_INTF, (value))
#define WMI_RSRC_CFG_FLAG_AUX_RADIO_CHAN_LOAD_INTF_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), AUX_RADIO_CHAN_LOAD_INTF)

#define WMI_RSRC_CFG_FLAG_BSS_CHANNEL_INFO_64_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), BSS_CHANNEL_INFO_64, (value))
#define WMI_RSRC_CFG_FLAG_BSS_CHANNEL_INFO_64_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), BSS_CHANNEL_INFO_64)

#define WMI_RSRC_CFG_FLAG_ATF_CONFIG_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), ATF_CONFIG_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_ATF_CONFIG_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), ATF_CONFIG_ENABLE)

#define WMI_RSRC_CFG_FLAG_IPHR_PAD_CONFIG_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), IPHR_PAD_CONFIG_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_IPHR_PAD_CONFIG_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), IPHR_PAD_CONFIG_ENABLE)

#define WMI_RSRC_CFG_FLAG_QWRAP_MODE_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), QWRAP_MODE_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_QWRAP_MODE_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), QWRAP_MODE_ENABLE)

#define WMI_RSRC_CFG_FLAG_MGMT_COMP_EVT_BUNDLE_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), MGMT_COMP_EVT_BUNDLE_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_MGMT_COMP_EVT_BUNDLE_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), MGMT_COMP_EVT_BUNDLE_SUPPORT)

#define WMI_RSRC_CFG_FLAG_TX_MSDU_ID_NEW_PARTITION_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), TX_MSDU_ID_NEW_PARTITION_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_TX_MSDU_ID_NEW_PARTITION_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), TX_MSDU_ID_NEW_PARTITION_SUPPORT)

#define WMI_RSRC_CFG_FLAG_TCL_CCE_DISABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), TCL_CCE_DISABLE, (value))
#define WMI_RSRC_CFG_FLAG_TCL_CCE_DISABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), TCL_CCE_DISABLE)

#define WMI_RSRC_CFG_FLAG_TIM_V2_SUPPORT_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), TIM_V2_SUPPORT_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_TIM_V2_SUPPORT_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), TIM_V2_SUPPORT_ENABLE)

#define WMI_RSRC_CFG_FLAG_EAPOL_REKEY_MINRATE_SUPPORT_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), EAPOL_REKEY_MINRATE_SUPPORT_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_EAPOL_REKEY_MINRATE_SUPPORT_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), EAPOL_REKEY_MINRATE_SUPPORT_ENABLE)

#define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_VALID_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), EAPOL_AC_OVERRIDE_VALID, (value))
#define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_VALID_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), EAPOL_AC_OVERRIDE_VALID)

#define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), EAPOL_AC_OVERRIDE, (value))
#define WMI_RSRC_CFG_FLAG_EAPOL_AC_OVERRIDE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), EAPOL_AC_OVERRIDE)

#define WMI_RSRC_CFG_FLAG_TX_ACK_RSSI_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), TX_ACK_RSSI, (value))
#define WMI_RSRC_CFG_FLAG_TX_ACK_RSSI_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), TX_ACK_RSSI)

#define WMI_RSRC_CFG_FLAG_HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN, (value))
#define WMI_RSRC_CFG_FLAG_HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), HTT_H2T_NO_HTC_HDR_LEN_IN_MSG_LEN)

#define WMI_RSRC_CFG_FLAG_PEER_UNMAP_RESPONSE_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), PEER_UNMAP_RESPONSE_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_PEER_UNMAP_RESPONSE_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), PEER_UNMAP_RESPONSE_SUPPORT)

#define WMI_RSRC_CFG_FLAG_HTT_PEER_STATS_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), HTT_PEER_STATS, (value))
#define WMI_RSRC_CFG_FLAG_HTT_PEER_STATS_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), HTT_PEER_STATS)

#define WMI_RSRC_CFG_FLAG_PEER_TID_EXT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), PEER_TID_EXT, (value))
#define WMI_RSRC_CFG_FLAG_PEER_TID_EXT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), PEER_TID_EXT)

#define WMI_RSRC_CFG_FLAG_VIDEO_OVER_WIFI_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), VIDEO_OVER_WIFI_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_VIDEO_OVER_WIFI_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), VIDEO_OVER_WIFI_ENABLE)

#define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), THREE_WAY_COEX_CONFIG_LEGACY_SUPPORT)

#define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), THREE_WAY_COEX_CONFIG_OVERRIDE_SUPPORT)

#define WMI_RSRC_CFG_FLAG_TX_COMPLETION_TX_TSF64_ENABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), TX_COMPLETION_TX_TSF64_ENABLE, (value))
#define WMI_RSRC_CFG_FLAG_TX_COMPLETION_TX_TSF64_ENABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), TX_COMPLETION_TX_TSF64_ENABLE)

#define WMI_RSRC_CFG_FLAG_PACKET_CAPTURE_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), PACKET_CAPTURE_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_PACKET_CAPTURE_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), PACKET_CAPTURE_SUPPORT)

#define WMI_RSRC_CFG_FLAG_BSS_MAX_IDLE_TIME_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), BSS_MAX_IDLE_TIME_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_BSS_MAX_IDLE_TIME_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), BSS_MAX_IDLE_TIME_SUPPORT)

#define WMI_RSRC_CFG_FLAG_AUDIO_SYNC_SUPPORT_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), AUDIO_SYNC_SUPPORT, (value))
#define WMI_RSRC_CFG_FLAG_AUDIO_SYNC_SUPPORT_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), AUDIO_SYNC_SUPPORT)

#define WMI_RSRC_CFG_FLAG_IPA_DISABLE_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), IPA_DISABLE, (value))
#define WMI_RSRC_CFG_FLAG_IPA_DISABLE_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), IPA_DISABLE)

#define WMI_RSRC_CFG_FLAG_PCIE_GEN_SWITCH_CAPABLITY_SET(word32, value) \
    WMI_RSRC_CFG_FLAG_SET((word32), PCIE_GEN_SWITCH_CAPABLITY, (value))
#define WMI_RSRC_CFG_FLAG_PCIE_GEN_SWITCH_CAPABLITY_GET(word32) \
    WMI_RSRC_CFG_FLAG_GET((word32), PCIE_GEN_SWITCH_CAPABLITY)

#define WMI_RSRC_CFG_FLAGS2_RE_ULRESP_PDEV_CFG_GET(flags2, pdev_id) \
    WMI_GET_BITS(flags2, pdev_id, 1)
#define WMI_RSRC_CFG_FLAGS2_RE_ULRESP_PDEV_CFG_SET(flags2, pdev_id, value) \
    WMI_SET_BITS(flags2, pdev_id, 1, value)

#define WMI_RSRC_CFG_FLAGS2_RX_PEER_METADATA_VERSION_GET(flags2) \
    WMI_GET_BITS(flags2, 4, 2)
#define WMI_RSRC_CFG_FLAGS2_RX_PEER_METADATA_VERSION_SET(flags2, value) \
    WMI_SET_BITS(flags2, 4, 2, value)

#define WMI_RSRC_CFG_FLAGS2_IS_SAP_CONNECTED_D3WOW_ENABLED_GET(flags2) \
    WMI_GET_BITS(flags2, 6, 1)
#define WMI_RSRC_CFG_FLAGS2_IS_SAP_CONNECTED_D3WOW_ENABLED_SET(flags2, value) \
    WMI_SET_BITS(flags2, 6, 1, value)

#define WMI_RSRC_CFG_FLAGS2_IS_GO_CONNECTED_D3WOW_ENABLED_GET(flags2) \
    WMI_GET_BITS(flags2, 7, 1)
#define WMI_RSRC_CFG_FLAGS2_IS_GO_CONNECTED_D3WOW_ENABLED_SET(flags2, value) \
    WMI_SET_BITS(flags2, 7, 1, value)

#define WMI_RSRC_CFG_FLAGS2_IS_DYNAMIC_PCIE_GEN_SPEED_SWITCH_ENABLED_GET(flags2) \
    WMI_GET_BITS(flags2, 8, 1)
#define WMI_RSRC_CFG_FLAGS2_IS_DYNAMIC_PCIE_GEN_SPEED_SWITCH_ENABLED_SET(flags2, value) \
    WMI_SET_BITS(flags2, 8, 1, value)

#define WMI_RSRC_CFG_FLAGS2_CALC_NEXT_DTIM_COUNT_GET(flags2) \
    WMI_GET_BITS(flags2, 9, 1)
#define WMI_RSRC_CFG_FLAGS2_CALC_NEXT_DTIM_COUNT_SET(flags2, value) \
    WMI_SET_BITS(flags2, 9, 1, value)

#define WMI_RSRC_CFG_FLAGS2_ARP_AC_OVERRIDE_VALID_GET(flags2) \
    WMI_GET_BITS(flags2, 10, 1)
#define WMI_RSRC_CFG_FLAGS2_ARP_AC_OVERRIDE_VALID_SET(flags2, value) \
    WMI_SET_BITS(flags2, 10, 1, value)

#define WMI_RSRC_CFG_FLAGS2_ARP_AC_OVERRIDE_GET(flags2) \
    WMI_GET_BITS(flags2, 11, 2)
#define WMI_RSRC_CFG_FLAGS2_ARP_AC_OVERRIDE_SET(flags2, value) \
    WMI_SET_BITS(flags2, 11, 2, value)

#define WMI_RSRC_CFG_FLAGS2_SAWF_CONFIG_ENABLE_GET(flags2) \
    WMI_GET_BITS(flags2, 13, 1)
#define WMI_RSRC_CFG_FLAGS2_SAWF_CONFIG_ENABLE_SET(flags2, value) \
    WMI_SET_BITS(flags2, 13, 1, value)

#define WMI_RSRC_CFG_FLAGS2_NOTIFY_FRAME_CONFIG_ENABLE_GET(flags2) \
    WMI_GET_BITS(flags2, 14, 1)
#define WMI_RSRC_CFG_FLAGS2_NOTIFY_FRAME_CONFIG_ENABLE_SET(flags2, value) \
    WMI_SET_BITS(flags2, 14, 1, value)

#define WMI_RSRC_CFG_FLAGS2_DISABLE_WDS_MEC_INTRABSS_OFFLOAD_GET(flags2) \
    WMI_GET_BITS(flags2, 15, 1)
#define WMI_RSRC_CFG_FLAGS2_DISABLE_WDS_MEC_INTRABSS_OFFLOAD_SET(flags2, value) \
    WMI_SET_BITS(flags2, 15, 1, value)

#define WMI_RSRC_CFG_FLAGS2_LATENCY_FLOWQ_SUPPORT_GET(flags2) \
    WMI_GET_BITS(flags2, 16, 1)
#define WMI_RSRC_CFG_FLAGS2_LATENCY_FLOWQ_SUPPORT_SET(flags2, value) \
    WMI_SET_BITS(flags2, 16, 1, value)

#define WMI_RSRC_CFG_FLAGS2_RF_PATH_MODE_GET(flags2) \
    WMI_GET_BITS(flags2, 17, 1)
#define WMI_RSRC_CFG_FLAGS2_RF_PATH_MODE_SET(flags2, value) \
    WMI_SET_BITS(flags2, 17, 1, value)


#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_NAN_IFACE_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 0, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_NAN_IFACE_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 0, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_HOST_SUPPORT_MULTI_RADIO_EVTS_PER_RADIO_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 1, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_HOST_SUPPORT_MULTI_RADIO_EVTS_PER_RADIO_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 1, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_SPLIT_AST_FEATURE_HOST_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 2, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_SPLIT_AST_FEATURE_HOST_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 2, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_SAE_EAPOL_OFFLOAD_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 3, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_SAE_EAPOL_OFFLOAD_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 3, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_CC_EXT_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 4, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_CC_EXT_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 4, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_NAN_CHANNEL_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 5, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_NAN_CHANNEL_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 5, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_STA_TWT_SYNC_EVT_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 6, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_STA_TWT_SYNC_EVT_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 6, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_LPI_SP_MODE_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 7, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_LPI_SP_MODE_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 7, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_DISCARD_AFC_TIMER_CHECK_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 8, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_DISCARD_AFC_TIMER_CHECK_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 8, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_DISCARD_AFC_REQ_ID_CHECK_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 9, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REG_DISCARD_AFC_REQ_ID_CHECK_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 9, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_AFC_INDOOR_SUPPORT_CHECK_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 10, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_AFC_INDOOR_SUPPORT_CHECK_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 10, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_AFC_OUTDOOR_SUPPORT_CHECK_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 11, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_AFC_OUTDOOR_SUPPORT_CHECK_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 11, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REO_QREF_FEATURE_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 12, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_REO_QREF_FEATURE_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 12, 1, val)

#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_BANG_RADAR_320M_SUPPORT_GET(host_service_flags) \
    WMI_GET_BITS(host_service_flags, 13, 1)
#define WMI_RSRC_CFG_HOST_SERVICE_FLAG_BANG_RADAR_320M_SUPPORT_SET(host_service_flags, val) \
    WMI_SET_BITS(host_service_flags, 13, 1, val)


#define WMI_RSRC_CFG_CARRIER_CFG_CHARTER_ENABLE_GET(carrier_config) \
    WMI_GET_BITS(carrier_config, 0, 1)
#define WMI_RSRC_CFG_CARRIER_CFG_CHARTER_ENABLE_SET(carrier_config, val) \
    WMI_SET_BITS(carrier_config, 0, 1, val)

/** Top nibble can be used to diff between HE and EHT: 0xVXXXXXXX
 *  If V == 0b0000: format is HE.
 *  If V == 0b0001: format is EHT.
 */
#define WMI_RSRC_CFG_IS_EHT_GET(param_value) \
    WMI_GET_BITS(param_value, 28, 4)
#define WMI_RSRC_CFG_IS_EHT_SET(param_value, val) \
    WMI_SET_BITS(param_value, 28, 4, val)

/* Used along with the above macro to set the value. */
#define WMI_RSRC_CFG_PARAM_VALUE_GET(param_value) \
    WMI_GET_BITS(param_value, 0, 28)
#define WMI_RSRC_CFG_PARAM_VALUE_SET(param_value, val) \
    WMI_SET_BITS(param_value, 0, 28, val)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_init_cmd_fixed_param */

    /** The following indicate the WMI versions to be supported by
     *  the host driver. Note that the host driver decide to
     *  "downgrade" its WMI version support and this may not be the
     *  native version of the host driver. */
    wmi_abi_version host_abi_vers;

    A_UINT32 num_host_mem_chunks; /** size of array host_mem_chunks[] */
/* This init_cmd_fixed_param TLV is followed by the below TLVs:
 *     wmi_resource_config   resource_config;
 *     wlan_host_memory_chunk host_mem_chunks[];
 *     wmi_pdev_set_hw_mode_cmd_fixed_param hw_mode_config;
 *         Note that the hw_mode_config, in spite of its "pdev" name,
 *         applies to the entire target rather than for a single pdev
 *         within the target.
 *         To avoid specifying a HW mode for the target, the host should
 *         fill hw_mode_config's fields with 0x0.
 *     wmi_pdev_band_to_mac                 band_to_mac[];
 *     wmi_htt_msdu_idx_to_htt_msdu_qtype   htt_msdu_idx_to_qtype_map[];
 */
} wmi_init_cmd_fixed_param;

typedef enum {
    WMI_WIFI_STANDARD_4     = 0,
    WMI_WIFI_STANDARD_5     = 1,
    WMI_WIFI_STANDARD_6     = 2,
    WMI_WIFI_STANDARD_6E    = 3,
    WMI_WIFI_STANDARD_7     = 4,
} WMI_WIFI_STANDARD;

typedef enum {
    WMI_HOST_NONE       = 0, /* No concurrency mode supported */
    WMI_HOST_DBS        = 1, /* When 2.4G + 5G & 2.4G + 6G if 6G is supported */
    WMI_HOST_DBS_SBS    = 2, /* When 2.4G + 5G, 2.4G + 6G, 5G + 6G & 5G + 5G is supported */
} WMI_BAND_CONCURRENCY;

typedef enum {
    WMI_SISO        = 1, /* When 1x1 is supported */
    WMI_MIMO_2X2    = 2, /* When 2x2 MIMO is supported */
} WMI_NUM_ANTENNAS;

typedef enum {
    WMI_VENDOR1_REQ1_VERSION_3_00   = 0,
    WMI_VENDOR1_REQ1_VERSION_3_01   = 1,
    WMI_VENDOR1_REQ1_VERSION_3_20   = 2,
    WMI_VENDOR1_REQ1_VERSION_3_30   = 3,
    WMI_VENDOR1_REQ1_VERSION_3_40   = 4,
} WMI_VENDOR1_REQ1_VERSION;

typedef enum {
    WMI_VENDOR1_REQ2_VERSION_3_00   = 0,
    WMI_VENDOR1_REQ2_VERSION_3_01   = 1,
    WMI_VENDOR1_REQ2_VERSION_3_20   = 2,
} WMI_VENDOR1_REQ2_VERSION;

typedef enum {
    WMI_HOST_BAND_CAP_2GHZ = 0x01,
    WMI_HOST_BAND_CAP_5GHZ = 0x02,
    WMI_HOST_BAND_CAP_6GHZ = 0x04,
} WMI_HOST_BAND_CAP;

/* HW features supported info */
/* enum WMI_WIFI_STANDARD are possible values for WiFi standard bitfield */
#define WMI_GET_WIFI_STANDARD(var, feature_bitmap)              \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 0, 4)
#define WMI_SET_WIFI_STANDARD(feature_bitmap, val)              \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 0, 4, val)
/* enum WMI_BAND_CONCURRENCY are possible values for band concurrency support bitfield */
#define WMI_GET_BAND_CONCURRENCY_SUPPORT(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 4, 3)
#define WMI_SET_BAND_CONCURRENCY_SUPPORT(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 4, 3, val)

/* PNO feature supported info */
#define WMI_GET_PNO_SCAN_IN_UNASSOC_STATE(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 7, 1)
#define WMI_SET_PNO_SCAN_IN_UNASSOC_STATE(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 7, 1, val)
#define WMI_GET_PNO_SCAN_IN_ASSOC_STATE(var, feature_bitmap)            \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 8, 1)
#define WMI_SET_PNO_SCAN_IN_ASSOC_STATE(feature_bitmap, val)            \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 8, 1, val)

/* TWT feature supported info */
#define WMI_GET_TWT_FEATURE_SUPPORT(var, feature_bitmap)           \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 9, 1)
#define WMI_SET_TWT_FEATURE_SUPPORT(feature_bitmap, val)           \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 9, 1, val)
#define WMI_GET_TWT_REQUESTOR(var, feature_bitmap)                 \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 10, 1)
#define WMI_SET_TWT_REQUESTER(feature_bitmap, val)                 \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 10, 1, val)
#define WMI_GET_TWT_BROADCAST(var, feature_bitmap)                 \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 11, 1)
#define WMI_SET_TWT_BROADCAST(feature_bitmap, val)                 \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 11, 1, val)
#define WMI_GET_TWT_FLEXIBLE(var, feature_bitmap)                  \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 12, 1)
#define WMI_SET_TWT_FLEXIBLE(feature_bitmap, val)                  \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 12, 1, val)

/* WIFI optimizer feature supported info */
#define WMI_GET_WIFI_OPT_FEATURE_SUPPORT(var, feature_bitmap)                   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 13, 1)
#define WMI_SET_WIFI_OPT_FEATURE_SUPPORT(feature_bitmap, val)         \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 13, 1, val)

/* RFC8325 feature supported info */
#define WMI_GET_RFC8325_FEATURE_SUPPORT(var, feature_bitmap)                \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 14, 1)
#define WMI_SET_RFC8325_FEATURE_SUPPORT(feature_bitmap, val)                \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 14, 1, val)

/* MHS feature supported info */
#define WMI_GET_MHS_5G_SUPPORT(var, feature_bitmap)                     \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 15, 1)
#define WMI_SET_MHS_5G_SUPPORT(feature_bitmap, val)                     \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 15, 1, val)
#define WMI_GET_MHS_6G_SUPPORT(var, feature_bitmap)                     \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 16, 1)
#define WMI_SET_MHS_6G_SUPPORT(feature_bitmap, val)                     \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 16, 1, val)
#define WMI_GET_MHS_MAX_CLIENTS_SUPPORT(var, feature_bitmap)            \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 17, 8)
#define WMI_SET_MHS_MAX_CLIENTS_SUPPORT(feature_bitmap, val)            \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 17, 8, val)
#define WMI_GET_MHS_SET_COUNTRY_CODE_HAL_SUPPORT(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 25, 1)
#define WMI_SET_MHS_SET_COUNTRY_CODE_HAL_SUPPORT(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 25, 1, val)
#define WMI_GET_MHS_GETVALID_CHANNELS_SUPPORT(var, feature_bitmap)      \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 26, 1)
#define WMI_SET_MHS_GETVALID_CHANNELS_SUPPORT(feature_bitmap, val)      \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 26, 1, val)
/* enum WMI_WIFI_STANDARD are possible values for MHS DOT11 mode support bitfield */
#define WMI_GET_MHS_DOT11_MODE_SUPPORT(var, feature_bitmap)             \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 27, 4)
#define WMI_SET_MHS_DOT11_MODE_SUPPORT(feature_bitmap, val)             \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 27, 4, val)
#define WMI_GET_MHS_WPA3_SUPPORT(var, feature_bitmap)                   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 31, 1)
#define WMI_SET_MHS_WPA3_SUPPORT(feature_bitmap, val)                   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 31, 1, val)

/* Vendor requirement1 supported version info */
/* enum's WMI_VENDORxx_REQxx_VERSION are the possible vaues for below bitfield*/
#define WMI_GET_VENDOR_REQ_1_VERSION(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 32, 8)
#define WMI_SET_VENDOR_REQ_1_VERSION(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 32, 8, val)

/* Roaming feature supported info */
#define WMI_GET_ROAMING_HIGH_CU_ROAM_TRIGGER(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 40, 1)
#define WMI_SET_ROAMING_HIGH_CU_ROAM_TRIGGER(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 40, 1, val)
#define WMI_GET_ROAMING_EMERGENCY_TRIGGER(var, feature_bitmap)             \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 41, 1)
#define WMI_SET_ROAMING_EMERGENCY_TRIGGER(feature_bitmap, val)             \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 41, 1, val)
#define WMI_GET_ROAMING_BTM_TRIGGER(var, feature_bitmap)                   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 42, 1)
#define WMI_SET_ROAMING_BTM_TRIGGER(feature_bitmap, val)                   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 42, 1, val)
#define WMI_GET_ROAMING_IDLE_TRIGGER(var, feature_bitmap)                  \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 43, 1)
#define WMI_SET_ROAMING_IDLE_TRIGGER(feature_bitmap, val)                  \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 43, 1, val)
#define WMI_GET_ROAMING_WTC_TRIGGER(var, feature_bitmap)                   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 44, 1)
#define WMI_SET_ROAMING_WTC_TRIGGER(feature_bitmap, val)                   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 44, 1, val)
#define WMI_GET_ROAMING_BTCOEX_TRIGGER(var, feature_bitmap)                \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 45, 1)
#define WMI_SET_ROAMING_BTCOEX_TRIGGER(feature_bitmap, val)                \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 45, 1, val)
#define WMI_GET_ROAMING_BTW_WPA_WPA2(var, feature_bitmap)                  \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 46, 1)
#define WMI_SET_ROAMING_BTW_WPA_WPA2(feature_bitmap, val)                  \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 46, 1, val)
#define WMI_GET_ROAMING_MANAGE_CHAN_LIST_API(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 47, 1)
#define WMI_SET_ROAMING_MANAGE_CHAN_LIST_API(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 47, 1, val)
#define WMI_GET_ROAMING_ADAPTIVE_11R(var, feature_bitmap)                  \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 48, 1)
#define WMI_SET_ROAMING_ADAPTIVE_11R(feature_bitmap, val)                  \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 48, 1, val)
#define WMI_GET_ROAMING_CTRL_API_GET_SET(var, feature_bitmap)              \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 49, 1)
#define WMI_SET_ROAMING_CTRL_API_GET_SET(feature_bitmap, val)              \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 49, 1, val)
#define WMI_GET_ROAMING_CTRL_API_REASSOC(var, feature_bitmap)              \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 50, 1)
#define WMI_SET_ROAMING_CTRL_API_REASSOC(feature_bitmap, val)              \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 50, 1, val)
#define WMI_GET_ROAMING_CTRL_GET_CU(var, feature_bitmap)                   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 51, 1)
#define WMI_SET_ROAMING_CTRL_GET_CU(feature_bitmap, val)                   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 51, 1, val)

/* Vendor requirement2 supported version info */
/* enum's WMI_VENDORxx_REQxx_VERSION are the possible vaues for below bitfield*/
#define WMI_GET_VENDOR_REQ_2_VERSION(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 52, 8)
#define WMI_SET_VENDOR_REQ_2_VERSION(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 52, 8, val)

#define WMI_GET_ASSURANCE_DISCONNECT_REASON_API(var, feature_bitmap)       \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 60, 1)
#define WMI_SET_ASSURANCE_DISCONNECT_REASON_API(feature_bitmap, val)       \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 60, 1, val)

/* Frame pcap logging */
#define WMI_GET_FRAME_PCAP_LOG_MGMT(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 61, 1)
#define WMI_SET_FRAME_PCAP_LOG_MGMT(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 61, 1, val)
#define WMI_GET_FRAME_PCAP_LOG_CTRL(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 62, 1)
#define WMI_SET_FRAME_PCAP_LOG_CTRL(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 62, 1, val)
#define WMI_GET_FRAME_PCAP_LOG_DATA(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 63, 1)
#define WMI_SET_FRAME_PCAP_LOG_DATA(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 63, 1, val)

/* Security features supported info */
#define WMI_GET_SECURITY_WPA3_SAE_H2E(var, feature_bitmap)                \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 64, 1)
#define WMI_SET_SECURITY_WPA3_SAE_H2E(feature_bitmap, val)                \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 64, 1, val)
#define WMI_GET_SECURITY_WPA3_SAE_FT(var, feature_bitmap)                 \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 65, 1)
#define WMI_SET_SECURITY_WPA3_SAE_FT(feature_bitmap, val)                 \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 65, 1, val)
#define WMI_GET_SECURITY_WPA3_ENTERP_SUITEB(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 66, 1)
#define WMI_SET_SECURITY_WPA3_ENTERP_SUITEB(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 66, 1, val)
#define WMI_GET_SECURITY_WPA3_ENTERP_SUITEB_192bit(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 67, 1)
#define WMI_SET_SECURITY_WPA3_ENTERP_SUITEB_192bit(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 67, 1, val)
#define WMI_GET_SECURITY_FILS_SHA256(var, feature_bitmap)                 \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 68, 1)
#define WMI_SET_SECURITY_FILS_SHA256(feature_bitmap, val)                 \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 68, 1, val)
#define WMI_GET_SECURITY_FILS_SHA384(var, feature_bitmap)                 \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 69, 1)
#define WMI_SET_SECURITY_FILS_SHA384(feature_bitmap, val)                 \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 69, 1, val)
#define WMI_GET_SECURITY_FILS_SHA256_FT(var, feature_bitmap)              \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 70, 1)
#define WMI_SET_SECURITY_FILS_SHA256_FT(feature_bitmap, val)              \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 70, 1, val)
#define WMI_GET_SECURITY_FILS_SHA384_FT(var, feature_bitmap)              \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 71, 1)
#define WMI_SET_SECURITY_FILS_SHA384_FT(feature_bitmap, val)              \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 71, 1, val)
#define WMI_GET_SECURITY_ENCHANCED_OPEN(var, feature_bitmap)              \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 72, 1)
#define WMI_SET_SECURITY_ENCHANCED_OPEN(feature_bitmap, val)              \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 72, 1, val)

/* Peer protocol features supported info */
#define WMI_GET_NAN_SUPPORT(var, feature_bitmap)            \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 73, 1)
#define WMI_SET_NAN_SUPPORT(feature_bitmap, val)            \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 73, 1, val)
#define WMI_GET_TDLS_SUPPORT(var, feature_bitmap)           \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 74, 1)
#define WMI_SET_TDLS_SUPPORT(feature_bitmap, val)           \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 74, 1, val)
#define WMI_GET_P2P6E_SUPPORT(var, feature_bitmap)          \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 75, 1)
#define WMI_SET_P2P6E_SUPPORT(feature_bitmap, val)          \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 75, 1, val)
#define WMI_GET_TDLS_OFFCHAN_SUPPORT(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 76, 1)
#define WMI_SET_TDLS_OFFCHAN_SUPPORT(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 76, 1, val)
#define WMI_GET_TDLS_CAP_ENHANCE(var, feature_bitmap)       \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 77, 1)
#define WMI_SET_TDLS_CAP_ENHANCE(feature_bitmap, val)       \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 77, 1, val)
#define WMI_GET_MAX_TDLS_PEERS_SUPPORT(var, feature_bitmap) \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 78, 4)
#define WMI_SET_MAX_TDLS_PEERS_SUPPORT(feature_bitmap, val) \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 78, 4, val)
#define WMI_GET_STA_DUAL_P2P_SUPPORT(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 82, 1)
#define WMI_SET_STA_DUAL_P2P_SUPPORT(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 82, 1, val)

/* Big data feature supported info */
#define WMI_GET_PEER_BIGDATA_GETBSSINFO_API_SUPPORT(var, feature_bitmap)            \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 83, 1)
#define WMI_SET_PEER_BIGDATA_GETBSSINFO_API_SUPPORT(feature_bitmap, val)            \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 83, 1, val)
#define WMI_GET_PEER_BIGDATA_GETASSOCREJECTINFO_API_SUPPORT(var, feature_bitmap)    \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 84, 1)
#define WMI_SET_PEER_BIGDATA_GETASSOCREJECTINFO_API_SUPPORT(feature_bitmap, val)    \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 84, 1, val)
#define WMI_GET_PEER_BIGDATA_GETSTAINFO_API_SUPPORT(var, feature_bitmap)            \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 85, 1)
#define WMI_SET_PEER_BIGDATA_GETSTAINFO_API_SUPPORT(feature_bitmap, val)            \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 85, 1, val)

/* Feature set requirement supported version info */
#define WMI_GET_FEATURE_SET_VERSION(var, feature_bitmap)                 \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 86, 16)
#define WMI_SET_FEATURE_SET_VERSION(feature_bitmap, val)                 \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 86, 16, val)

/*
 * enum WMI_NUM_ANTENNAS are possible values for number of antennas supported bitfield.
 * Bitfield value 0 means invalid, 1 means SISO, 2 means MIMO, and values 3+ are reserved.
 */
#define WMI_GET_NUM_ANTENNAS(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 102, 4)
#define WMI_SET_NUM_ANTENNAS(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 102, 4, val)

/* enum WMI_HOST_BAND_CAP are possible values for below bitfield */
#define WMI_GET_HOST_BAND_CAP(var, feature_bitmap)   \
        WMI_GET_BITS_ARRAY_LEN32_BYTES(var, feature_bitmap, 106, 6)
#define WMI_SET_HOST_BAND_CAP(feature_bitmap, val)   \
        WMI_SET_BITS_ARRAY_LEN32_BYTES(feature_bitmap, 106, 6, val)

/*
 * Specify how many A_UINT32 words are needed to hold the feature bitmap flags.
 * This value may change over time.
 * It is not directly used in any WMI message definition.
 * It is provided simply as a convenience for the feature_set_bitmap sender to
 * know how many 32-bit words to allocate for the bitmap.
 */
#define WMI_FEATURE_SET_BITMAP_ARRAY_LEN32 4

/**
 * TLV for channel list
 */
typedef struct {
    /** WMI_CHAN_LIST_TAG */
    A_UINT32 tag;
    /** # of channels to scan */
    A_UINT32 num_chan;
    /** channels in Mhz */
    A_UINT32 channel_list[1];
} wmi_chan_list;

/**
 * TLV for bssid list
 */
typedef struct {
    /** WMI_BSSID_LIST_TAG */
    A_UINT32 tag;
    /** number of bssids   */
    A_UINT32 num_bssid;
    /** bssid list         */
    wmi_mac_addr bssid_list[1];
} wmi_bssid_list;

/**
 * TLV for  ie data.
 */
typedef struct {
    /** WMI_IE_TAG */
    A_UINT32 tag;
    /** number of bytes in ie data   */
    A_UINT32 ie_len;
    /** ie data array  (ie_len adjusted to  number of words  (ie_len + 4)/4)  */
    A_UINT32 ie_data[1];
} wmi_ie_data;

/**
 * TLV used for length/buffer
 */
typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tlv_buf_len_param */
    A_UINT32 buf_len;       /** Length of buf */
    /**
     * Following this structure is the TLV byte stream of buf of length buf_len:
     * A_UINT8 buf[];
     *
     */
} wmi_tlv_buf_len_param;

/**
 * TLV used for specifying the dimensions of a multi-dimensional array
 * that has been stored in a flat buffer
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tlv_arrays_len_param */
    /**
     * d1_len, d2_len, d3_len, and d4_len are the lengths of each dimension
     * for a multi-dimensional array.
     * If the length of outer dimension is not 1, the inner dimension
     * shouldn't be 1.
     * If the multi-dimensional array has less than 4 dimensions, the outer
     * dimensions' lengths should be 1.  For example, a buf[3][4] array
     * would have d1_len = 4, d2_len = 3, d3_len = 1, d4_len = 1.
     * The outermost dimension of the array can be inferred from the array
     * length; thus, this struct supports up to 5-D arrays.  For a 5-D array,
     * the outermost (5th) dimension would be
     *     array length / (d1_len * d2_len * d3_len * d4_len)
     *
     * For security (to ensure no out-of-bounds memory access),
     * the receiver shall validate that the product of all dimensions
     * is equal to (or less than) the array length.
     */
    A_UINT32 d1_len;  /* the length of 1st (innermost) dimension array */
    A_UINT32 d2_len;  /* the length of 2nd dimension array */
    A_UINT32 d3_len;  /* the length of 3rd dimension array */
    A_UINT32 d4_len;  /* the length of 4th dimension array */
    /**
     * Following this structure is the TLV multi-dimension array buffer:
     * <type> buf[L1*L2*L3*L4];
     * where, L1, L2, L3, and L4 are the values of
     * d1_len, d2_len, d3_len and d4_len.
     * To access the 4-D element a[i][j][k][l], the buf[] array would be
     * indexed as buf[i*L3*L2*L1 + j*L2*L1 + k*L1 + l].
     */
} wmi_tlv_arrays_len_param;

typedef struct {
    /** Len of the SSID */
    A_UINT32 ssid_len;
    /** SSID */
    A_UINT32 ssid[8];
} wmi_ssid;

typedef struct {
    /** WMI_SSID_LIST_TAG */
    A_UINT32 tag;
    A_UINT32 num_ssids;
    wmi_ssid ssids[1];
} wmi_ssid_list;

typedef struct {
    /** WMI_SCAN_START_OFFSET_TAG */
    A_UINT32     tag;
    /** Number of start TSF offsets */
    A_UINT32     num_offset;
    /** Array of start TSF offsets provided in milliseconds */
    A_UINT32     start_tsf_offset[1];
} wmi_scan_start_offset;

/**
 * WLAN_SCAN_CHAN_MODE Macros defined for A_UINT8 phymode_list[]
 */
/** enum WLAN_PHY_MODE _mode starts from 0, but the WMI message requires
 * 0 to be used to represent unspecified / don't care / default values.
 * Therefore, WMI phy mode = WLAN phy mode + 1.
 */
/** If the received WMI phy mode is 0 then it is ignored by the FW,
 * and the FW will use any mode as long as the frequency matches.
 */
/** The number of phy_mode's (BW+mode) passed in the TLV phymode_list[] must
 * be equal to num_chan.  (Unless the host does not specify phymode_list values
 * at all, in which case the number of phymode_list elements will be zero.)
 * The indexing of the phymode_list[] array corresponds to same index of
 * the chan_list[] array.
 */
#define WMI_SCAN_CHAN_SET_MODE(_c) ((_c) + 1)
#define WMI_SCAN_CHAN_GET_MODE(_c) ((_c) - 1)
#define WMI_SCAN_CHAN_MODE_IS_SET(_c) (_c)

typedef struct {
    /*
     * freq unit: MHz (upper 16bits -- value)
     * flags (lower 16bits -- bitfield): valid for the freq short ssid
     *     The flags bitfield contains a bitmask of WMI_SCAN_HINT_FLAG_ values.
     */
    A_UINT32 freq_flags;
    /* per spec, only 4 bytes*/
    A_UINT32 short_ssid;
} wmi_hint_freq_short_ssid;

/** following bssid mac address same as wmi_mac_addr
 *  one example: freq -- 5980(0x175c), flags -- 0x1, mac -- 00:03:7f:12:34:56
 *  freq_flags     will be: 0x175c0001
 *  macaddr31to00 will be: 0x127f0300
 *  macaddr47to32 will be: 0x00005634
 */
typedef struct {
    /*
     * freq unit: MHz (upper 16bits -- value)
     * flags (lower 16bits -- bitfield): valid for the freq bssid
     *     The flags bitfield contains a bitmask of WMI_SCAN_HINT_FLAG_ values.
     */
    A_UINT32 freq_flags;
    /* legacy bssid addr, use same macro to convert: WMI_MAC_ADDR_TO_CHAR_ARRAY, WMI_CHAR_ARRAY_TO_MAC_ADDR */
    wmi_mac_addr bssid;
} wmi_hint_freq_bssid;

/** macro to get freq and corresponding flags from wmi_hint_freq_short_ssid */
#define WMI_GET_FREQ_FROM_HINT_FREQ_SHORT_SSID(pwmi_hint_freq_short_ssid_addr) ((((pwmi_hint_freq_short_ssid_addr)->freq_flags) >> 16) & 0xffff)
#define WMI_GET_FLAGS_FROM_HINT_FREQ_SHORT_SSID(pwmi_hint_freq_short_ssid_addr) (((pwmi_hint_freq_short_ssid_addr)->freq_flags) & 0xffff)

/** macro to set freq and corresponding flags in wmi_hint_freq_short_ssid */
#define WMI_SET_FREQ_IN_HINT_FREQ_SHORT_SSID(freq, pwmi_hint_freq_short_ssid_addr) (((pwmi_hint_freq_short_ssid_addr)->freq_flags) |= ((freq) << 16))
#define WMI_SET_FLAGS_IN_HINT_FREQ_SHORT_SSID(flags, pwmi_hint_freq_short_ssid_addr) (((pwmi_hint_freq_short_ssid_addr)->freq_flags) |= (flags))

/** macro to get freq and corresponding flags from wmi_hint_freq_bssid */
#define WMI_GET_FREQ_FROM_HINT_FREQ_BSSID(pwmi_hint_freq_bssid_addr) ((((pwmi_hint_freq_bssid_addr)->freq_flags) >> 16) & 0xffff)
#define WMI_GET_FLAGS_FROM_HINT_FREQ_BSSID(pwmi_hint_freq_bssid_addr) (((pwmi_hint_freq_bssid_addr)->freq_flags) & 0xffff)

/** macro to set freq and corresponding flags in wmi_hint_freq_bssid */
#define WMI_SET_FREQ_IN_HINT_FREQ_BSSID(freq, pwmi_hint_freq_bssid_addr) (((pwmi_hint_freq_bssid_addr)->freq_flags) |= ((freq) << 16))
#define WMI_SET_FLAGS_IN_HINT_FREQ_BSSID(flags, pwmi_hint_freq_bssid_addr) (((pwmi_hint_freq_bssid_addr)->freq_flags) |= (flags))

/** other macro for 6 GHZ, TU (time unit), 20TU normally it is 20ms */
#define MAX_NUM_20TU_EACH_CH      6
#define MAX_NUM_S_SSID_EACH_20TU  1
#define MAX_NUM_BSSID_EACH_20TU   3

/* prefix used by scan requestor ids on the host */
#define WMI_HOST_SCAN_REQUESTOR_ID_PREFIX 0xA000
/* prefix used by scan request ids generated on the host */
/* host cycles through the lower 12 bits to generate ids */
#define WMI_HOST_SCAN_REQ_ID_PREFIX 0xA000

#define WLAN_SCAN_PARAMS_MAX_SSID    16
#define WLAN_SCAN_PARAMS_MAX_BSSID   4
#define WLAN_SCAN_PARAMS_MAX_IE_LEN  512

/* NOTE: This constant cannot be changed without breaking WMI compatibility */
#define WMI_IE_BITMAP_SIZE             8

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_start_scan_cmd_fixed_param */
    /** Scan ID (lower 16 bits) MSB 4 bits is used to identify scan client based on enum WMI_SCAN_CLIENT_ID */
    A_UINT32 scan_id;
    /** Scan requestor ID (lower 16 bits) is used by scan client to classify the scan source, reason, ...etc */
    A_UINT32 scan_req_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32 vdev_id;
    /** Scan Priority, input to scan scheduler */
    A_UINT32 scan_priority;
    /** Scan events subscription */
    A_UINT32 notify_scan_events;
    /** dwell time in msec on active channels */
    A_UINT32 dwell_time_active;
    /** dwell time in msec on passive channels */
    A_UINT32 dwell_time_passive;
    /** min time in msec on the BSS channel,only valid if atleast one VDEV is active*/
    A_UINT32 min_rest_time;
    /** max rest time in msec on the BSS channel,only valid if at least one VDEV is active*/
    /** the scanner will rest on the bss channel at least min_rest_time. after min_rest_time the scanner
     *  will start checking for tx/rx activity on all VDEVs. if there is no activity the scanner will
     *  switch to off channel. if there is activity the scanner will let the radio on the bss channel
     *  until max_rest_time expires.at max_rest_time scanner will switch to off channel
     *  irrespective of activity. activity is determined by the idle_time parameter.
     */
    A_UINT32 max_rest_time;
    /** time before sending next set of probe requests.
     *   The scanner keeps repeating probe requests transmission with period specified by repeat_probe_time.
     *   The number of probe requests specified depends on the ssid_list and bssid_list
     */
    A_UINT32 repeat_probe_time;
    /** time in msec between 2 consecutive probe requests with in a set. */
    A_UINT32 probe_spacing_time;
    /** data inactivity time in msec on bss channel that will be used by scanner for measuring the inactivity  */
    A_UINT32 idle_time;
    /** maximum time in msec allowed for scan  */
    A_UINT32 max_scan_time;
    /** delay in msec before sending first probe request after switching to a channel */
    A_UINT32 probe_delay;
    /** Scan control flags */
    A_UINT32 scan_ctrl_flags;
    /** Burst duration time in msec*/
    A_UINT32 burst_duration;

    /** # if channels to scan. In the TLV channel_list[] */
    A_UINT32 num_chan;
    /** number of bssids. In the TLV bssid_list[] */
    A_UINT32 num_bssid;
    /** number of ssid. In the TLV ssid_list[] */
    A_UINT32 num_ssids;
    /** number of bytes in ie data. In the TLV ie_data[]. Max len is defined by WLAN_SCAN_PARAMS_MAX_IE_LEN */
    A_UINT32 ie_len;
    /** Max number of probes to be sent */
    A_UINT32 n_probes;
    /** MAC Address to use in Probe Req as SA **/
    wmi_mac_addr mac_addr;
    /** Mask on which MAC has to be randomized **/
    wmi_mac_addr mac_mask;
    /**  ie bitmap to use in probe req **/
    A_UINT32 ie_bitmap[WMI_IE_BITMAP_SIZE];
    /** Number of vendor OUIs. In the TLV vendor_oui[] **/
    A_UINT32 num_vendor_oui;
    /** Scan control flags extended **/
    A_UINT32 scan_ctrl_flags_ext;
    /** dwell time in msec on active 2G channels, if it's not zero */
    A_UINT32 dwell_time_active_2g;
    /**
     * dwell time in msec when 6 GHz channel (PSC or non-PSC) is marked
     * as an active channel
     */
    A_UINT32 dwell_time_active_6ghz;
    /**
     * dwell time in msec when 6 GHz channel (PSC or non-PSC) is marked
     * as a passive channel
     */
    A_UINT32 dwell_time_passive_6ghz;
    /**
     * Offset time is in milliseconds per channel.
     */
    A_UINT32 scan_start_offset;
    /**
     * minimum dwell time in msec for 6 GHz channel
     * We'll listen for this time on the channel; if no beacon /
     * probe response / FILS frame are received during this time
     * we'll move to next channel.
     */
    A_UINT32 min_dwell_time_6ghz;
    /**
     * dwell time in msec for 6 GHz channel of spectral scan channel list
     */
    A_UINT32 dwell_time_spectral_ch;

/**
 * TLV (tag length value) parameters follow the scan_cmd
 * structure. The TLV's are:
 *     channel_list:
 *         If FW supports WMI_SERVICE_SCAN_CONFIG_PER_CHANNEL,
 *             then channel_list may fill the upper 12 bits with channel flags,
 *             while using only the lower 20 bits for channel frequency.
 *             Check WMI_SCAN_CHANNEL_FLAG macros for the channel flags
 *         If FW doesn't support WMI_SERVICE_SCAN_CONFIG_PER_CHANNEL,
 *             then channel_list only holds the frequency value
 *         Use WMI_SCAN_CHANNEL_FREQ_MASK & WMI_SCAN_CHANNEL_FLAGS_MASK
 *     A_UINT32 channel_list[num_chan]; // in MHz
 *     wmi_ssid ssid_list[num_ssids];
 *     wmi_mac_addr bssid_list[num_bssid];
 *     A_UINT8 ie_data[ie_len];
 *     wmi_vendor_oui vendor_oui[num_vendor_oui];
 *     A_UINT8 phymode_list[0 or num_chan]; // see WMI_SCAN_CHAN_MODE macros
 *     wmi_hint_freq_short_ssid hint_freq_short_ssid[num]; // the num can be calculated by TLV len
 *     wmi_hint_freq_bssid hint_freq_bssid[num]; // the num can be calculated by TLV len
 *     A_UINT32 spectral_chan_list[num]; // in MHz, the num can be calculated by TLV len
 *     *** NOTE:
 *     *** Use caution when using further TLVs, in case the additional
 *     *** TLVs cause the message size to exceed the of the buffer to
 *     *** hold the message.
 */
} wmi_start_scan_cmd_fixed_param;

/**
 * scan control flags.
 */

/** passively scan all channels including active channels */
#define WMI_SCAN_FLAG_PASSIVE        0x1
/** add wild card ssid probe request even though ssid_list is specified. */
#define WMI_SCAN_ADD_BCAST_PROBE_REQ 0x2
/** add cck rates to rates/xrate ie for the generated probe request */
#define WMI_SCAN_ADD_CCK_RATES       0x4
/** add ofdm rates to rates/xrate ie for the generated probe request */
#define WMI_SCAN_ADD_OFDM_RATES      0x8
/** To enable indication of Chan load and Noise floor to host */
#define WMI_SCAN_CHAN_STAT_EVENT     0x10
/** Filter Probe request frames  */
#define WMI_SCAN_FILTER_PROBE_REQ    0x20
/**When set, not to scan DFS channels*/
#define WMI_SCAN_BYPASS_DFS_CHN      0x40
/**When set, certain errors are ignored and scan continues.
 * Different FW scan engine may use its own logic to decide what errors to ignore*/
#define WMI_SCAN_CONTINUE_ON_ERROR   0x80
/** Enable promiscuous mode for CCXv4 */
#define WMI_SCAN_FILTER_PROMISCOUS   0x100
/** allow to send probe req on DFS channel */
#define WMI_SCAN_FLAG_FORCE_ACTIVE_ON_DFS 0x200
/** add TPC content in probe req frame */
#define WMI_SCAN_ADD_TPC_IE_IN_PROBE_REQ  0x400
/** add DS content in probe req frame */
#define WMI_SCAN_ADD_DS_IE_IN_PROBE_REQ   0x800
/** use random mac address for TA for probe request frame and add
 * oui specified by WMI_SCAN_PROB_REQ_OUI_CMDID to the probe req frame.
 * if oui is not set by WMI_SCAN_PROB_REQ_OUI_CMDID  then the flag is ignored*/
#define WMI_SCAN_ADD_SPOOFED_MAC_IN_PROBE_REQ   0x1000
/** allow mgmt transmission during off channel scan */
#define WMI_SCAN_OFFCHAN_MGMT_TX    0x2000
/** allow data transmission during off channel scan */
#define WMI_SCAN_OFFCHAN_DATA_TX    0x4000
/** allow capture ppdu with phy errors */
#define WMI_SCAN_CAPTURE_PHY_ERROR  0x8000
/** always do passive scan on passive channels */
#define WMI_SCAN_FLAG_STRICT_PASSIVE_ON_PCHN 0x10000
/** set HALF (10MHz) rate support */
#define WMI_SCAN_FLAG_HALF_RATE_SUPPORT      0x20000
/** set Quarter (5MHz) rate support */
#define WMI_SCAN_FLAG_QUARTER_RATE_SUPPORT   0x40000
#define WMI_SCAN_RANDOM_SEQ_NO_IN_PROBE_REQ 0x80000
#define WMI_SCAN_ENABLE_IE_WHTELIST_IN_PROBE_REQ 0x100000
/** pause home channel when scan channel is same as home channel */
#define WMI_SCAN_FLAG_PAUSE_HOME_CHANNEL            0x200000
/**
 * report CCA busy for each possible 20Mhz subbands of the wideband scan channel
 */
#define WMI_SCAN_FLAG_REPORT_CCA_BUSY_FOREACH_20MHZ 0x400000

/** for adaptive scan mode using 3 bits (21 - 23 bits) */
#define WMI_SCAN_DWELL_MODE_MASK 0x00E00000
#define WMI_SCAN_DWELL_MODE_SHIFT        21

typedef enum {
    WMI_SCAN_DWELL_MODE_DEFAULT      = 0,
    WMI_SCAN_DWELL_MODE_CONSERVATIVE = 1,
    WMI_SCAN_DWELL_MODE_MODERATE     = 2,
    WMI_SCAN_DWELL_MODE_AGGRESSIVE   = 3,
    WMI_SCAN_DWELL_MODE_STATIC       = 4,
} WMI_SCAN_DWELL_MODE;

#define WMI_SCAN_SET_DWELL_MODE(flag, mode) \
    do { \
        (flag) |= (((mode) << WMI_SCAN_DWELL_MODE_SHIFT) & \
            WMI_SCAN_DWELL_MODE_MASK); \
    } while (0)

#define WMI_SCAN_GET_DWELL_MODE(flag) \
    (((flag) & WMI_SCAN_DWELL_MODE_MASK) >> WMI_SCAN_DWELL_MODE_SHIFT)

/** WMI_SCAN_CLASS_MASK must be the same value as IEEE80211_SCAN_CLASS_MASK */
#define WMI_SCAN_CLASS_MASK 0xFF000000

/*
 * Masks identifying types/ID of scans
 * Scan_Stop macros should be the same value as below defined in UMAC
 * #define IEEE80211_SPECIFIC_SCAN       0x00000000
 * #define IEEE80211_VAP_SCAN            0x01000000
 * #define IEEE80211_ALL_SCANS           0x04000000
 */
/* WMI_SCAN_STOP_ONE:
 * Stop one scan which matches with scan_id provided in scan stop command.
 */
#define WMI_SCAN_STOP_ONE         0x00000000
/* WMI_SCN_STOP_VAP_ALL:
 * Stop all scans (host scans and FW internal scans) on provided vdev.
 */
#define WMI_SCN_STOP_VAP_ALL      0x01000000
/* WMI_SCN_STOP_HOST_VAP_ALL:
 * Stop all host scans on provided vdev.
 */
#define WMI_SCN_STOP_HOST_VAP_ALL 0x02000000
/* WMI_SCAN_STOP_ALL:
 * Stop all scans (host scans and FW internal scans) on all vdevs.
 */
#define WMI_SCAN_STOP_ALL         0x04000000

/** extended Scan ctrl flags **/
#define WMI_SCAN_FLAG_EXT_DBS_SCAN_POLICY_MASK 0x00000003 /* Bit 0-1 reserved for DBS scan selection policy.*/

#define WMI_SCAN_DBS_POLICY_DEFAULT             0x0 /** Select duty cycle if configured, else fall back to whatever
                                                        policy scan manager computes */
#define WMI_SCAN_DBS_POLICY_FORCE_NONDBS        0x1 /** Force to select Non-DBS scan */
#define WMI_SCAN_DBS_POLICY_IGNORE_DUTY         0x2 /** Ignore duty cycle even if configured and fall back to whatever
                                                        policy scan manager computes*/
#define WMI_SCAN_DBS_POLICY_RESERVED            0x3
#define WMI_SCAN_DBS_POLICY_MAX                 0x3

/* Enable Reception of Public Action frame with this flag */
#define WMI_SCAN_FLAG_EXT_FILTER_PUBLIC_ACTION_FRAME  0x00000004

/* Indicate to scan all PSC channel */
#define WMI_SCAN_FLAG_EXT_6GHZ_SCAN_ALL_PSC_CH        0x00000008

/* Indicate to scan all NON-PSC channel */
#define WMI_SCAN_FLAG_EXT_6GHZ_SCAN_ALL_NON_PSC_CH    0x00000010

/* Indicate to save scan result matching hint from scan client */
#define WMI_SCAN_FLAG_EXT_6GHZ_MATCH_HINT             0x00000020

/* Skip any ch on which no any RNR had been received */
#define WMI_SCAN_FLAG_EXT_6GHZ_SKIP_NON_RNR_CH        0x00000040

/* Indicate client hint req is high priority than fw rnr or FILS disc */
#define WMI_SCAN_FLAG_EXT_6GHZ_CLIENT_HIGH_PRIORITY   0x00000080

/* Force all 6 GHz scan channels to active channel */
#define WMI_SCAN_FLAG_EXT_6GHZ_FORCE_CHAN_ACTIVE      0x00000100

/* Force broadcast address in RA even though specified bssid */
#define WMI_SCAN_FLAG_EXT_FORCE_BRCAST_RA             0x00000200

/* Extend 6 GHz channel measure time */
#define WMI_SCAN_FLAG_EXT_6GHZ_EXTEND_MEASURE_TIME    0x00000400

/**
 * Currently passive scan has higher priority than beacon and
 * beacon miss would happen irrespective of dwell time.
 * Below flag ensures there would not be beacon miss if the dwell
 * time is lesser than beacon interval - channel switch time combined.
 * For dwell time greater than beacon interval, bmiss is expected.
 */
#define WMI_SCAN_FLAG_EXT_PASSIVE_SCAN_START_TIME_ENHANCE   0x00000800

/* Force unicast address in RA */
#define WMI_SCAN_FLAG_EXT_FORCE_UNICAST_RA            0x00001000

/**
 * Indicate to add 10 Mhz offset to spectral scan center frequencies
 * sent by Host when checking against support channel list in FW
 */
#define WMI_SCAN_FLAG_EXT_SPECTRAL_CFREQ_PLUS_10MHZ_IN_SUPP_CH_LIST 0x00002000

/* Include MLO IE in Probe req */
#define WMI_SCAN_FLAG_EXT_INCL_MLIE_PRB_REQ           0x00004000

#define WMI_SCAN_FLAG_EXT_LOW_LATENCY_SCAN    0x00008000
#define WMI_SCAN_FLAG_EXT_RELIABLE_SCAN       0x00010000
#define WMI_SCAN_FLAG_EXT_FAST_SCAN           0x00020000
#define WMI_SCAN_FLAG_EXT_LOW_POWER_SCAN      0x00040000


/**
 * new 6 GHz flags per chan (short ssid or bssid) in struct
 * wmi_hint_freq_short_ssid or wmi_hint_freq_bssid
 */
/* Indicate not to send probe req for short_ssid or bssid on that channel */
#define WMI_SCAN_HINT_FLAG_SKIP_TX_PROBE_REQ    0x00000001

/* Force channel in WMI hint to active channel */
#define WMI_SCAN_HINT_FLAG_FORCE_CHAN_ACTIVE    0x00000002

/* Combine short SSID with legacy bssid list */
#define WMI_SCAN_HINT_FLAG_COMBINE_BSSID_LIST   0x00000004


#define WMI_SCAN_CHANNEL_FREQ_MASK  0x000FFFFF
#define WMI_SCAN_CHANNEL_FLAGS_MASK 0xFFF00000

/**
 * Per channel configuration flags
 */

/**
 * WMI_SCAN_CHANNEL_FLAG_SCAN_ONLY_IF_RNR_FOUND:
 *     If this flag is set, then scan only if the corresponding channel
 *     is found via RNR IE during 2g/5g scan.
 *     If this flag is not set, then FW always scans the channel
 *     irrespective of RNR and also FW ignores
 *     WMI_SCAN_FLAG_EXT_6GHZ_SKIP_NON_RNR_CH flag
 */
#define WMI_SCAN_CHANNEL_FLAG_SCAN_ONLY_IF_RNR_FOUND 0x001

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_stop_scan_cmd_fixed_param */
    /** requestor requesting cancel  */
    A_UINT32 requestor;
    /** Scan ID */
    A_UINT32 scan_id;
    /**
     * Req Type
     * req_type should be WMI_SCAN_STOP_ONE, WMI_SCN_STOP_VAP_ALL or WMI_SCAN_STOP_ALL
     * WMI_SCAN_STOP_ONE indicates to stop a specific scan with scan_id (on a specific pdev in DBDC)
     * WMI_SCN_STOP_VAP_ALL indicates to stop all scan requests on a specific vDev with vdev_id
     * WMI_SCAN_STOP_ALL indicates to stop all scan requests in both Scheduler's queue and Scan Engine (on a specific pdev in DBDC)
     */
    A_UINT32 req_type;
    /**
     * vDev ID
     * used when req_type equals to WMI_SCN_STOP_VAP_ALL, it indexed the vDev on which to stop the scan
     */
    A_UINT32 vdev_id;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
} wmi_stop_scan_cmd_fixed_param;


#define MAX_NUM_CHAN_PER_WMI_CMD     58    /* each WMI cmd can hold 58 channel entries at most */
#define APPEND_TO_EXISTING_CHAN_LIST 1
#define CHANNEL_MAX_BANDWIDTH_VALID  2

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_chan_list_cmd_fixed_param */
    A_UINT32 num_scan_chans; /** no of elements in chan_info[] */
    A_UINT32 flags; /* Flags used to control the behavior of channel list update on target side */
    A_UINT32 pdev_id; /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0. */
/** Followed by the variable length TLV chan_info:
 *  wmi_channel chan_info[] */
} wmi_scan_chan_list_cmd_fixed_param;

/*
 * Priority numbers must be sequential, starting with 0.
 */
/* NOTE: WLAN SCAN_PRIORITY_COUNT can't be changed without breaking the compatibility */
typedef enum {
    WMI_SCAN_PRIORITY_VERY_LOW = 0,
    WMI_SCAN_PRIORITY_LOW,
    WMI_SCAN_PRIORITY_MEDIUM,
    WMI_SCAN_PRIORITY_HIGH,
    WMI_SCAN_PRIORITY_VERY_HIGH,

    WMI_SCAN_PRIORITY_COUNT /* number of priorities supported */
} wmi_scan_priority;

/* Five Levels for Requested Priority */
/* VERY_LOW LOW  MEDIUM   HIGH  VERY_HIGH */
typedef A_UINT32 WLAN_PRIORITY_MAPPING[WMI_SCAN_PRIORITY_COUNT];

/**
 * to keep align with UMAC implementation, we pass only vdev_type but not vdev_subtype when we overwrite an entry for a specific vdev_subtype
 * ex. if we need overwrite P2P Client prority entry, we will overwrite the whole table for WLAN_M_STA
 * we will generate the new WLAN_M_STA table with modified P2P Client Entry but keep STA entry intact
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_sch_priority_table_cmd_fixed_param */
    /**
     * used as an index to find the proper table for a specific vdev type in default_scan_priority_mapping_table
     * vdev_type should be one of enum in WLAN_OPMODE which inculdes WLAN_M_IBSS, WLAN_M_STA, WLAN_M_AP and WLAN_M_MONITOR currently
     */
    A_UINT32 vdev_type;
    /**
     * number of rows in mapping_table for a specific vdev
     * for WLAN_M_STA type, there are 3 entries in the table (refer to default_scan_priority_mapping_table definition)
     */
    A_UINT32 number_rows;
    /**
     * pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
/**  mapping_table for a specific vdev follows this TLV
 *   WLAN_PRIORITY_MAPPING mapping_table[]; */
} wmi_scan_sch_priority_table_cmd_fixed_param;

/** update flags */
#define WMI_SCAN_UPDATE_SCAN_PRIORITY           0x1
#define WMI_SCAN_UPDATE_SCAN_MIN_REST_TIME      0x2
#define WMI_SCAN_UPDATE_SCAN_MAX_REST_TIME      0x4

typedef struct {
    A_UINT32 tlv_header;
    /** requestor requesting update scan request  */
    A_UINT32 requestor;
    /** Scan ID of the scan request that need to be update */
    A_UINT32 scan_id;
    /** update flags, indicating which of the following fields are valid and need to be updated*/
    A_UINT32 scan_update_flags;
    /** scan priority. Only valid if WMI_SCAN_UPDATE_SCAN_PRIORITY flag is set in scan_update_flag */
    A_UINT32 scan_priority;
    /** min rest time. Only valid if WMI_SCAN_UPDATE_MIN_REST_TIME flag is set in scan_update_flag */
    A_UINT32 min_rest_time;
    /** min rest time. Only valid if WMI_SCAN_UPDATE_MAX_REST_TIME flag is set in scan_update_flag */
    A_UINT32 max_rest_time;
    /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0 */
    A_UINT32 pdev_id;
} wmi_scan_update_request_cmd_fixed_param;

#define WMI_SCAN_PROBE_OUI_SPOOFED_MAC_IN_PROBE_REQ 0x1
#define WMI_SCAN_PROBE_OUI_RANDOM_SEQ_NO_IN_PROBE_REQ 0x2
#define WMI_SCAN_PROBE_OUI_ENABLE_IE_WHITELIST_IN_PROBE_REQ 0x4

typedef struct _wmi_vendor_oui {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vendor_oui */
    A_UINT32 oui_type_subtype; /** Vendor OUI type and subtype, lower 3 bytes is type and highest byte is subtype**/
}wmi_vendor_oui;

typedef struct {
    A_UINT32 tlv_header;
    /** oui to be used in probe request frame when  random mac addresss is
     * requested part of scan parameters. this is applied to both FW internal scans and
     * host initated scans. host can request for random mac address with
     * WMI_SCAN_ADD_SPOOFED_MAC_IN_PROBE_REQ flag.     */
    A_UINT32 prob_req_oui;
    A_UINT32 vdev_id;
    /** Control Flags **/
    A_UINT32 flags;
    /**  ie bitmap to use in probe req **/
    A_UINT32 ie_bitmap[WMI_IE_BITMAP_SIZE];
    /** Number of vendor OUIs. In the TLV vendor_oui[] **/
    A_UINT32 num_vendor_oui;
    /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0 */
    A_UINT32 pdev_id;
    /* Following this tlv, there comes an array of structure of type wmi_vendor_oui
 wmi_vendor_oui vendor_oui[];*/
} wmi_scan_prob_req_oui_cmd_fixed_param;


enum wmi_scan_event_type {
    WMI_SCAN_EVENT_STARTED = 0x1,
    WMI_SCAN_EVENT_COMPLETED = 0x2,
    WMI_SCAN_EVENT_BSS_CHANNEL = 0x4,
    WMI_SCAN_EVENT_FOREIGN_CHANNEL = 0x8,
    WMI_SCAN_EVENT_DEQUEUED = 0x10, /* scan request got dequeued */
    WMI_SCAN_EVENT_PREEMPTED = 0x20, /* preempted by other high priority scan */
    WMI_SCAN_EVENT_START_FAILED = 0x40, /* scan start failed */
    WMI_SCAN_EVENT_RESTARTED = 0x80, /* scan restarted */
    WMI_SCAN_EVENT_FOREIGN_CHANNEL_EXIT = 0x100,
    WMI_SCAN_EVENT_SUSPENDED = 0x200, /* scan request is suspended */
    WMI_SCAN_EVENT_RESUMED = 0x400,   /* scan request is resumed */
    WMI_SCAN_EVENT_MAX = 0x8000
};

enum wmi_scan_completion_reason {
    /** scan related events */
    WMI_SCAN_REASON_NONE = 0xFF,
    WMI_SCAN_REASON_COMPLETED = 0,
    WMI_SCAN_REASON_CANCELLED = 1,
    WMI_SCAN_REASON_PREEMPTED = 2,
    WMI_SCAN_REASON_TIMEDOUT = 3,
    WMI_SCAN_REASON_INTERNAL_FAILURE = 4, /* This reason indication failures when performaing scan */
    WMI_SCAN_REASON_SUSPENDED = 5,
    WMI_SCAN_REASON_DFS_VIOLATION = 6, /* Failure when tried to SCAN channel in NOL list */
    WMI_SCAN_REASON_MAX,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_event_fixed_param */
    /** scan event (wmi_scan_event_type) */
    A_UINT32 event;
    /** status of the scan completion event */
    A_UINT32 reason;
    /** channel freq , only valid for FOREIGN channel event*/
    A_UINT32 channel_freq;
    /**id of the requestor whose scan is in progress */
    A_UINT32 requestor;
    /**id of the scan that is in progress */
    A_UINT32 scan_id;
    /**id of VDEV that requested the scan */
    A_UINT32 vdev_id;
    /** TSF Timestamp when the scan event (wmi_scan_event_type) is completed
     * In case of AP it is TSF of the AP vdev
     * In case of STA connected state this is the TSF of the AP
     * In case of STA not connected it will be the free running HW timer
     */
    A_UINT32 tsf_timestamp;
} wmi_scan_event_fixed_param;

/* WMI Diag event */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag is WMITLV_TAG_STRUC_wmi_diag_event_fixed_param */
    A_UINT32 time_stamp; /* Reference timestamp. diag frame contains diff value */
    A_UINT32 count;   /* Number of diag frames added to current event */
    A_UINT32 dropped;
    /* followed by WMITLV_TAG_ARRAY_BYTE */
} wmi_diag_event_fixed_param;

#define WMI_11K_OFFLOAD_BITMAP_NEIGHBOR_REPORT_REQ  0x1

typedef struct {
    A_UINT32 time_offset;                   /* positive offset in secs from the time 11k offload command has been received, 0xFFFFFFFF if offset is not valid */
    A_UINT32 low_rssi_offset;               /* positive offset in dB from current low RSSI roaming trigger to send neighbor req, 0xFFFFFFFF if offset is not valid */
    A_UINT32 bmiss_count_trigger;           /* value 1 is to send neighbor report at 1st BMISS, 0xFFFFFFFF if input is not valid */
    A_UINT32 per_threshold_offset;          /* percentage offset from the current per_threshold, 0xFFFFFFFF if input is not valid */
    A_UINT32 neighbor_report_cache_timeout; /* cache timeout in secs after which neighbor cache is not valid in FW, 0xFFFFFFFF if input is not valid */
    A_UINT32 max_neighbor_report_req_cap;   /* 0xFFFFFFFF if input is not valid, else positive number per every roam, these are the maximum number of
                                             * neighbor report requests that will be sent by FW after every roam */
    wmi_ssid ssid;                          /* ssid of current connected AP FW might choose to use this SSID in the neighbor report req frame if it is
                                             * interested in candidate of the same SSID */
} wmi_neighbor_report_offload;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_offload_11k_report_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 offload_11k; /* bitmask to indicate to FW what all 11k features are offloaded */
} wmi_11k_offload_report_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_neighbor_report_offload_tlv_param */
    wmi_neighbor_report_offload neighbor_rep_ofld_params;
} wmi_neighbor_report_11k_offload_tlv_param;

#define WMI_INVOKE_NEIGHBOR_REPORT_FLAGS_SEND_RESP_TO_HOST 0x1

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_invoke_neighbor_report_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 flags;
    wmi_ssid ssid; /* if ssid.len == 0, firmware doesn't include ssid sub-element.
                    * In that case AP gives all the candidates in ESS without SSID filter
                    * If host wants to insert ssid subelement in the neighbor report request frame, then it can specify the ssid here */
} wmi_11k_offload_invoke_neighbor_report_fixed_param;

#define WMI_MAX_PMKID_LEN   16
#define WMI_MAX_PMK_LEN     64

#define WMI_PMK_CACHE_CAT_FLAG_BSSID              0x1
#define WMI_PMK_CACHE_CAT_FLAG_SSID_CACHE_ID      0x2

#define WMI_PMK_CACHE_ACTION_FLAG_ADD_ENTRY       0x1
#define WMI_PMK_CACHE_ACTION_FLAG_DEL_ENTRY       0x2

typedef struct {
    A_UINT32       tlv_header;
    A_UINT32       pmk_len;
    A_UINT8        pmk[WMI_MAX_PMK_LEN];/* for big-endian hosts, manual endian conversion will be needed to keep the array values in their original order,
                                        in spite of the automatic byte-swap applied to WMI messages during download*/
    A_UINT32       pmkid_len;
    A_UINT8        pmkid[WMI_MAX_PMKID_LEN];
    wmi_mac_addr   bssid;
    wmi_ssid       ssid;
    A_UINT32       cache_id;
    A_UINT32       cat_flag;  // whether (bssid) or (ssid,cache_id) is valid
    A_UINT32       action_flag;  // add/delete the entry
} wmi_pmk_cache;

#define WMI_PMK_CACHE_OP_FLAG_FLUSH_ALL       0x1

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_update_pmk_cache_cmd_fixed_param */
    A_UINT32 op_flag;   //option to flush all the cache at once
    A_UINT32 vdev_id;
    A_UINT32 num_cache;
    /**
    * TLV (tag length value) parameters follow the update_pmk_cache cmd
    * structure. The TLV's are:
     * wmi_pmk_cache cache_list[];
    */
} wmi_pdev_update_pmk_cache_cmd_fixed_param;

#define WMI_FILS_MAX_USERNAME_LEN 16
#define WMI_FILS_MAX_REALM_LEN 256
#define WMI_FILS_MAX_RRK_LEN 64
#define WMI_FILS_MAX_RIK_LEN 64

/* for big-endian hosts, manual endian conversion will be needed to keep the array values in their original order,
in spite of the automatic byte-swap applied to WMI messages during download*/

typedef struct {
    A_UINT8     username[WMI_FILS_MAX_USERNAME_LEN];
    A_UINT32    username_length;
    A_UINT32    next_erp_seq_num;
    A_UINT8     rRk[WMI_FILS_MAX_RRK_LEN];
    A_UINT32    rRk_length;
    A_UINT8     rIk[WMI_FILS_MAX_RIK_LEN];
    A_UINT32    rIk_length;
    A_UINT8     realm[WMI_FILS_MAX_REALM_LEN];
    A_UINT32    realm_len;
} wmi_erp_info;

enum wmi_fils_hlp_pkt_type {
    WMI_FILS_HLP_PKT_TYPE_DHCP_DISCOVER = 1,
};

typedef struct {
    A_UINT32      tlv_header;  /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_fils_offload_tlv_param */
    A_UINT32      flags;
    wmi_erp_info  vdev_erp_info;
} wmi_roam_fils_offload_tlv_param;

typedef struct {
    A_UINT32  tlv_header; /** tag WMITLV_TAG_STRUC_wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param**/
    A_UINT32  flags;
    A_UINT32  vdev_id;
    A_UINT32  size;
    A_UINT32  pkt_type; // filled using enum wmi_fils_hlp_pkt_type
 // A_UINT8          fils_hlp_pkt[];
} wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param;

#define WMI_MAX_KEK_LEN 64
#define GTK_OFFLOAD_KEK_EXTENDED_BYTES WMI_MAX_KEK_LEN /*KEK len has been increased to 64 to support FILS security.
                                          To not break backward compatibility, new GTK_OFFLOAD_KEK_EXTENDED_BYTES has been defined without modifying old GTK_OFFLOAD_KEK_BYTES */

typedef struct {
    A_UINT32   tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_fils_synch_tlv_param */
    A_UINT32   update_erp_next_seq_num;// Boolean denoting whether next erp_seq_num changed or not.
    A_UINT32   next_erp_seq_num;
    A_UINT32   kek_len;
    A_UINT8    kek[WMI_MAX_KEK_LEN];
    A_UINT32   pmk_len;
    A_UINT8    pmk[WMI_MAX_PMK_LEN];
    A_UINT8    pmkid[WMI_MAX_PMKID_LEN];
    A_UINT8    realm[WMI_FILS_MAX_REALM_LEN];
    A_UINT32   realm_len;
} wmi_roam_fils_synch_tlv_param;

/*
 * FW sends PMK cache of roamed candidate to host to sync pmk cache with host
 */
typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_pmk_cache_synch_tlv_param */
    A_UINT32  pmk_len;
    A_UINT8  pmk[WMI_MAX_PMK_LEN];
    A_UINT8  pmkid[WMI_MAX_PMKID_LEN];
} wmi_roam_pmk_cache_synch_tlv_param;

/**
 * WMI_ROAM_LINK_FLAG_XXX definition:
 */
#define WMI_ROAM_LINK_FLAG_DISABLE    0x1   /* link is disabled, host can overwrite it later. */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_ml_setup_links_param */
    A_UINT32 vdev_id; /* when vdev_id is 0xffffffff, means the link_id hasn't attached to vdev */
    A_UINT32 link_id; /* link id defined as in 802.11 BE spec. */
    wmi_channel channel; /* link primary channel */
    /**
     * link flags: refer WMI_ROAM_LINK_FLAG_XXX.
     */
    A_UINT32 flags;
    wmi_mac_addr link_addr; /* link address */
} wmi_roam_ml_setup_links_param;

/*
 * If FW has multiple active channels due to MCC(multi channel concurrency),
 * then these stats are combined stats for all the active channels.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_update_whal_mib_stats_event_fixed_param */
    /** ack count, it is an incremental number, not accumulated number */
    A_UINT32 ackRcvBad;
    /** bad rts count, it is an incremental number, not accumulated number */
    A_UINT32 rtsBad;
    /** good rts, it is an incremental number, not accumulated number */
    A_UINT32 rtsGood;
    /** fcs count, it is an incremental number, not accumulated number */
    A_UINT32 fcsBad;
    /** beacon count, it is an incremental number, not accumulated number */
    A_UINT32 noBeacons;
} wmi_update_whal_mib_stats_event_fixed_param;

/*
 * This defines how much headroom is kept in the
 * receive frame between the descriptor and the
 * payload, in order for the WMI PHY error and
 * management handler to insert header contents.
 *
 * This is in bytes.
 */
#define WMI_MGMT_RX_HDR_HEADROOM (sizeof(wmi_comb_phyerr_rx_hdr) + WMI_TLV_HDR_SIZE + sizeof(wmi_single_phyerr_rx_hdr))

/** This event will be used for sending scan results
 * as well as rx mgmt frames to the host. The rx buffer
 * will be sent as part of this WMI event. It would be a
 * good idea to pass all the fields in the RX status
 * descriptor up to the host.
 */
/* ATH_MAX_ANTENNA value (4) can't be changed without breaking the compatibility */
#define ATH_MAX_ANTENNA 4 /* To support beelinear, which is up to 4 chains */

/** flag indicating that the mgmt frame (probe req/beacon) is received in the context of extscan performed by FW */
#define WMI_MGMT_RX_HDR_EXTSCAN     0x01
/** flag indicating that the mgmt frame (probe req/beacon) is received in the context of matched network by FW ENLO */
#define WMI_MGMT_RX_HDR_ENLO     0x02

#define MAX_ANTENNA_EIGHT 8


/** Helper macro for params GET/SET of MGMT_RX_FW_CONSUMED_EVENTID */
#define WMI_MGMT_RX_FW_CONSUMED_PARAM_PEER_ID_GET(peer_info_subtype) WMI_GET_BITS(peer_info_subtype, 0, 16)
#define WMI_MGMT_RX_FW_CONSUMED_PARAM_PEER_ID_SET(peer_info_subtype, value) WMI_SET_BITS(peer_info_subtype, 0, 16, value)

#define WMI_MGMT_RX_FW_CONSUMED_PARAM_IEEE_LINK_ID_GET(peer_info_subtype) WMI_GET_BITS(peer_info_subtype, 16, 3)
#define WMI_MGMT_RX_FW_CONSUMED_PARAM_IEEE_LINK_ID_SET(peer_info_subtype, value) WMI_SET_BITS(peer_info_subtype, 16, 3, value)

#define WMI_MGMT_RX_FW_CONSUMED_PARAM_SUBTYPE_GET(peer_info_subtype) WMI_GET_BITS(peer_info_subtype, 28, 4)
#define WMI_MGMT_RX_FW_CONSUMED_PARAM_SUBTYPE_SET(peer_info_subtype, value) WMI_SET_BITS(peer_info_subtype, 28, 4, value)

#define WMI_MGMT_RX_FW_CONSUMED_PARAM_MGMT_PKT_CTR_VALID_GET(mgmt_pkt_ctr_info) WMI_GET_BITS(mgmt_pkt_ctr_info, 15, 1)
#define WMI_MGMT_RX_FW_CONSUMED_PARAM_MGMT_PKT_CTR_VALID_SET(mgmt_pkt_ctr_info, value) WMI_SET_BITS(mgmt_pkt_ctr_info, 15, 1, value)

#define WMI_MGMT_RX_FW_CONSUMED_PARAM_MGMT_PKT_CTR_GET(mgmt_pkt_ctr_info) WMI_GET_BITS(mgmt_pkt_ctr_info, 16, 16)
#define WMI_MGMT_RX_FW_CONSUMED_PARAM_MGMT_PKT_CTR_SET(mgmt_pkt_ctr_info, value) WMI_SET_BITS(mgmt_pkt_ctr_info, 16, 16, value)

typedef struct {
    A_UINT32 tlv_header; /* WMITLV_TAG_STRUCT_wmi_mgmt_rx_fw_consumed_hdr */
    A_UINT32 rx_tsf_l32; /* h/w assigned timestamp of the rx frame in micro sec */
    A_UINT32 rx_tsf_u32 ;/* h/w assigned timestamp of the rx frame in micro sec */
    A_UINT32 pdev_id; /* pdev_id for identifying the MAC the rx mgmt frame was received by */
    /**
     * peer_info_subtype
     *
     * [15:0]:  ml_peer_id, ML peer_id unique across chips
     * [18:16]: ieee_link_id, protocol link id on which the rx frame is received
     * [27:19]: reserved
     * [31:28]: subtype, subtype of the received MGMT frame
     */
    A_UINT32 peer_info_subtype;
    A_UINT32 chan_freq; /* frequency in MHz of the channel on which this frame was received */
    /* Timestamp (in micro sec) of the last fw consumed/dropped mgmt. frame, same across chips */
    A_UINT32 global_timestamp;
    /**
     * mgmt_pkt_ctr_info
     *
     * [14:0]:  reserved
     * [15]:    mgmt_pkt_ctr_valid
     * [31:16]: mgmt_pkt_ctr, Sequence number of the last fw consumed mgmt frame
     */
    A_UINT32 mgmt_pkt_ctr_info;
    A_UINT32 rx_ppdu_duration_us; /* receive duration in us */
    A_UINT32 mpdu_end_timestamp; /* mpdu end timestamp in us (based on HWMLO timer) */
} wmi_mgmt_rx_fw_consumed_hdr;

/** Helper macro for param GET/SET of mgmt_rx_reo_params */
#define WMI_MGMT_RX_REO_PARAM_IEEE_LINK_ID_GET(mgmt_pkt_ctr_link_info) WMI_GET_BITS(mgmt_pkt_ctr_link_info, 12, 3)
#define WMI_MGMT_RX_REO_PARAM_IEEE_LINK_ID_SET(mgmt_pkt_ctr_link_info, value) WMI_SET_BITS(mgmt_pkt_ctr_link_info, 12, 3, value)

#define WMI_MGMT_RX_REO_PARAM_MGMT_PKT_CTR_VALID_GET(mgmt_pkt_ctr_link_info) WMI_GET_BITS(mgmt_pkt_ctr_link_info, 15, 1)
#define WMI_MGMT_RX_REO_PARAM_MGMT_PKT_CTR_VALID_SET(mgmt_pkt_ctr_link_info, value) WMI_SET_BITS(mgmt_pkt_ctr_link_info, 15, 1, value)

#define WMI_MGMT_RX_REO_PARAM_MGMT_PKT_CTR_GET(mgmt_pkt_ctr_link_info) WMI_GET_BITS(mgmt_pkt_ctr_link_info, 16, 16)
#define WMI_MGMT_RX_REO_PARAM_MGMT_PKT_CTR_SET(mgmt_pkt_ctr_link_info, value) WMI_SET_BITS(mgmt_pkt_ctr_link_info, 16, 16, value)

/** Data structure of the TLV to add in RX EVENTID for providing REO params
 *  like global_timestamp and mgmt_pkt_ctr
 */
typedef struct {
    A_UINT32 tlv_header; /*TLV WMITLV_TAG_STRUC_wmi_mgmt_rx_reo_params*/
    /* Timestamp (in micro sec) of the last fw forwarded mgmt. frame, same across chips */
    A_UINT32 global_timestamp;
    /**
     * mgmt_pkt_ctr_link_info
     *
     * [11:0]:  reserved
     * [14:12]: ieee_link_id, protocol link id on which the rx frame is received
     * [15]:    mgmt_pkt_ctr_valid
     * [31:16]: mgmt_pkt_ctr, Sequence number of the last fw forwarded mgmt frame
     */

    A_UINT32 mgmt_pkt_ctr_link_info;
    A_UINT32 rx_ppdu_duration_us; /* receive duration in us */
    A_UINT32 mpdu_end_timestamp; /* mpdu end timestamp in us (based on HWMLO timer) */
} wmi_mgmt_rx_reo_params;

/** Helper macro for param GET/SET */
#define WMI_RX_PARAM_EXT_META_ID_GET(mgmt_rx_params_ext_dword0) WMI_GET_BITS(mgmt_rx_params_ext_dword0, 0, 3)
#define WMI_RX_PARAM_EXT_META_ID_SET(mgmt_rx_params_ext_dword0, value) WMI_SET_BITS(mgmt_rx_params_ext_dword0, 0, 3, value)

#define WMI_RX_PARAM_EXT_BA_WIN_SIZE_GET(mgmt_rx_params_ext_dword1) WMI_GET_BITS(mgmt_rx_params_ext_dword1, 0, 16)
#define WMI_RX_PARAM_EXT_BA_WIN_SIZE_SET(mgmt_rx_params_ext_dword1, value) WMI_SET_BITS(mgmt_rx_params_ext_dword1, 0, 16, value)

#define WMI_RX_PARAM_EXT_REO_WIN_SIZE_GET(mgmt_rx_params_ext_dword1) WMI_GET_BITS(mgmt_rx_params_ext_dword1, 16, 16)
#define WMI_RX_PARAM_EXT_REO_WIN_SIZE_SET(mgmt_rx_params_ext_dword1, value) WMI_SET_BITS(mgmt_rx_params_ext_dword1, 16, 16, value)

typedef enum {
    WMI_RX_PARAMS_EXT_META_ADDBA = 0x0,
} wmi_mgmt_rx_params_ext_meta_t;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag (WMITLV_TAG_STRUC_wmi_mgmt_rx_params_ext) and len */
    union {
        struct {
            A_UINT32
                /* Describes the representation of the data in rx_param_ext_dword1
                 * Full set shown in wmi_mgmt_rx_params_ext_meta_t */
                meta_id     : 3,
                /* Dedicated for commonly used parameters only */
                reserved_0  : 29;
        };
        A_UINT32 mgmt_rx_params_ext_dword0;
    };
    union {
        struct {
            /* WMI_RX_PARAMS_EXT_META_ADDBA */
            A_UINT32
                ba_win_size :16,  /* negotiated BA window size */
                reo_win_size :16; /* 2x the negotiated BA window size to handle any latency across MLO */
        };
        A_UINT32 mgmt_rx_params_ext_dword1;
    };
} wmi_mgmt_rx_params_ext;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mgmt_rx_hdr */
    /** channel on which this frame is received (channel number) */
    A_UINT32 channel;
    /** snr information used to cal RSSI */
    A_UINT32 snr;
    /** Rate kbps */
    A_UINT32 rate;
    /** rx phy mode WLAN_PHY_MODE */
    A_UINT32 phy_mode;
    /** length of the frame */
    A_UINT32 buf_len;
    /** rx status */
    A_UINT32 status; /* capture mode indication */
    /** RSSI of PRI 20MHz for each chain. */
    A_UINT32 rssi_ctl[ATH_MAX_ANTENNA];
    /** information about the management frame e.g. can give a scan source for a scan result mgmt frame */
    A_UINT32 flags;
    /** combined RSSI, i.e. the sum of the snr + noise floor (dBm units) */
    A_INT32 rssi;
    /** delta between local TSF(TSF timestamp when frame was RXd)
     *  and remote TSF(TSF timestamp in the IE for mgmt frame -
     *  beacon,proberesp for e.g). If remote TSF is not available,
     *  delta set to 0.
     *  Although tsf_delta is stored as A_UINT32, it can be negative,
     *  and thus would need to be sign-extended if added to a value
     *  larger than 32 bits.
     */
    A_UINT32 tsf_delta;

    /* The lower 32 bits of the TSF (rx_tsf_l32) is copied by FW from
     * TSF timestamp in the RX MAC descriptor provided by HW.
     */
    A_UINT32 rx_tsf_l32;

    /* The Upper 32 bits (rx_tsf_u32) is filled by reading the TSF register
     * after the packet is received.
     */
    A_UINT32 rx_tsf_u32;

    /** pdev_id for identifying the MAC the rx mgmt frame was received by
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /** freq in MHz of the channel on which this frame was received */
    A_UINT32 chan_freq;

/* This TLV is followed by array of bytes:
 *   A_UINT8 bufp[]; <-- management frame buffer
 */
/* This TLV is optionally followed by array of struct:
 *  wmi_rssi_ctl_ext rssi_ctl_ext;
 */
/*
 * This TLV is followed by struct:
 * wmi_mgmt_rx_reo_params reo_params;// MGMT rx REO params
 */
/*
 * This TLV is optionally followed by struct:
 * wmi_mgmt_rx_params_ext mgmt_rx_params_ext[0 or 1];
 */
} wmi_mgmt_rx_hdr;

/* WMI CMD to receive the management filter criteria from the host */
typedef struct {
    A_UINT32 tlv_header; /* WMITLV_TAG_STRUC_wmi_mgmt_reo_filter_cmd_fixed_param */
    A_UINT32 pdev_id; /* pdev_id for identifying the MAC */
    /* filter:
     * Each bit represents the possible combination of frame type (2 bits)
     * and subtype (4 bits)
     * There would be 64 such combinations as per the 802.11 standard
     * For Exp : We have beacon frame, we will take the type and subtype
     *           of this frame and concatenate the bits, it will give 6 bits
     *           number. We need to go to that bit position in the below
     *           2 filter_low and filter_high bitmap and set the bit.
     */
    A_UINT32 filter_low;
    A_UINT32 filter_high;
} wmi_mgmt_rx_reo_filter_configuration_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag (WMITLV_TAG_STRUC_wmi_frame_pn_params) and len */
    A_UINT8 cur_pn[WMI_MAX_PN_LEN];
    A_UINT8 prev_pn[WMI_MAX_PN_LEN];
} wmi_frame_pn_params;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag (WMITLV_TAG_STRUC_wmi_is_my_frame) */
    A_UINT32 mgmt_frm_sub_type; /* to indicate which sub-type of MGMT frame */
    A_UINT32 is_my_frame; /* to indicate frame is sent to this BSSID */
} wmi_is_my_mgmt_frame;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mgmt_ml_info */
    /**
     * CU vdev map to initmate about the on-going Critical update
     * per-link contains 16 VAPs at max.
     */

    /*
     *  bits    : 0-15 | 16-31
     *  link-id :  0   |   1
     */
    A_UINT32 cu_vdev_map_1;
    /*
     *  bits    : 0-15 | 16-31
     *  link-id :  2   |   3
     */
    A_UINT32 cu_vdev_map_2;
    /*
     *  bits    : 0-15 | 16-31
     *  link-id :  4   |   5
     */
    A_UINT32 cu_vdev_map_3;
    /*
     *  bits    : 0-15 | 16-31
     *  link-id :  6   |   7
     */
    A_UINT32 cu_vdev_map_4; /* bits 63:32 */
    /**
     * This is followed by byte array that contains BPCC value per MLO VAP.
     * There will be 16 byte entries for each link corresponding to VAP-ID.
     * So number of byte entries will be (num of max links supported by AP * 16)
     * Note: num of max links supported = 8
     */
} wmi_mgmt_ml_info;

#define WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_VDEV_ID_GET(_var)       WMI_GET_BITS(_var, 0, 8)
#define WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_VDEV_ID_SET(_var, _val) WMI_SET_BITS(_var, 0, 8, _val)

#define WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_EXP_DUR_GET(_var)       WMI_GET_BITS(_var, 8, 24)
#define WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_EXP_DUR_SET(_var, _val) WMI_SET_BITS(_var, 8, 24, _val)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_bcast_t2lm_info */
    /*
     * Vdev_id for MLO vap
     * WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_VDEV_ID_GET /
     * WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_VDEV_ID_SET
     * vdev_id :8
     *
     * Duration time for MLO Vap
     * WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_VDEV_ID_GET /
     * WMI_MLO_BROADCAST_TID_TO_LINK_MAP_INFO_VDEV_ID_SET
     * expected_duration :24
     */
    A_UINT32 vdev_id_expec_dur;
} wmi_mlo_bcast_t2lm_info;

typedef enum {
    PKT_CAPTURE_MODE_DISABLE = 0,
    PKT_CAPTURE_MODE_MGMT_ONLY,
    PKT_CAPTURE_MODE_DATA_ONLY,
    PKT_CAPTURE_MODE_DATA_MGMT,
} WMI_PKT_CAPTURE_MODE_CONFIG;

/* This information sending to host during offloaded MGMT local TX and host TX */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mgmt_hdr */
    /* channel frequency in MHz */
    A_UINT32 chan_freq;
    /** snr information used to cal RSSI in dB */
    A_UINT32 snr;
    /** Rate kbps */
    A_UINT32 rate_kbps;
    /** phy mode WLAN_PHY_MODE */
    A_UINT32 phy_mode;
    /** length of the frame in bytes */
    A_UINT32 buf_len;
    /** status:
     * 0x00: CRC ERR
     * 0x08: DECRYPT ERR
     * 0x10: MIC ERR
     * 0x20: KEY CACHE MISS
     */
    A_UINT32 status;
    /** flags:
     * Information about the management frame e.g. can give a scan source
     * for a scan result mgmt frame
     * Refer to WMI_MGMT_RX_HDR_ definitions.
     * ex: WMI_MGMT_RX_HDR_EXTSCAN,WMI_MGMT_RX_HDR_ENLO
     */
    A_UINT32 flags;
    /** combined RSSI, i.e. the sum of the snr + noise floor (dBm units) */
    A_INT32 rssi;
    /** delta between local TSF (TSF timestamp when frame was RXd)
     *  and remote TSF (TSF timestamp in the IE for mgmt frame -
     *  beacon, proberesp for example). If remote TSF is not available,
     *  delta is set to 0.
     *  Although tsf_delta is stored as A_UINT32, it can be negative,
     *  and thus would need to be sign-extended if added to a value
     *  larger than 32 bits.
     */
    A_UINT32 tsf_delta;

    /* The lower 32 bits of the TSF (tsf_l32) is copied by FW from
     * TSF timestamp in the TX MAC descriptor provided by HW.
     */
    A_UINT32 tsf_l32;

    /* The upper 32 bits of the TSF (tsf_u32) is copied by FW from
     * TSF timestamp in the TX MAC descriptor provided by HW.
     */
    A_UINT32 tsf_u32;

    /** pdev_id for identifying the MAC the tx mgmt frame transmitted.
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    A_UINT32 direction; /* tx:0,rx:1*/

    /** tx_status:
     * 0: xmit ok
     * 1: excessive retries
     * 2: blocked by tx filtering
     * 4: fifo underrun
     * 8: swabort
     */
    A_UINT32 tx_status;

    A_UINT32
        /* tx_retry_cnt:
         * Indicates retry count of offloaded/local & host mgmt tx frames.
         * The WMI_MGMT_HDR_TX_RETRY_[SET,GET] macros can be used to access
         * this bitfield in a portable manner.
         */
        tx_retry_cnt:6, /* [5:0] */
        reserved_1:26;  /* [31:6] */

/* This TLV may be followed by array of bytes:
 *   A_UINT8 bufp[]; <-- management frame buffer
 */
} wmi_mgmt_hdr;

/* Tx retry cnt set & get bits*/
#define WMI_MGMT_HDR_TX_RETRY_CNT_SET(tx_retry_cnt, value) \
    WMI_SET_BITS(tx_retry_cnt, 0, 6, value)
#define WMI_MGMT_HDR_TX_RETRY_CNT_GET(tx_retry_cnt) \
    WMI_GET_BITS(tx_retry_cnt, 0, 6)

/*
 * Instead of universally increasing the RX_HDR_HEADROOM size which may cause problems for older targets,
 * this new ext_hdr can be used for extending the header and will be only applicable for new targets.
 */
typedef struct
{
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_rssi_ctl_ext */
    /** RSSI of PRI 20MHz for each chain, in dB w.r.t. noise floor */
    A_UINT32 rssi_ctl_ext[MAX_ANTENNA_EIGHT - ATH_MAX_ANTENNA];
} wmi_rssi_ctl_ext;

typedef struct {
    /** TSF timestamp */
    A_UINT32 tsf_timestamp;

    /**
     * Current freq1, freq2
     *
     * [7:0]:    freq1[lo]
     * [15:8] :   freq1[hi]
     * [23:16]:   freq2[lo]
     * [31:24]:   freq2[hi]
     */
    A_UINT32 freq_info_1;

    /**
     * Combined RSSI over all chains and channel width for this PHY error
     *
     * [7:0]: RSSI combined
     * [15:8]: Channel width (MHz)
     * [23:16]: PHY error code
     * [24:16]: reserved (future use)
     */
    A_UINT32 freq_info_2;

    /**
     * RSSI on chain 0 through 3
     *
     * This is formatted the same as the PPDU_START RX descriptor
     * field:
     *
     * [7:0]:   pri20
     * [15:8]:  sec20
     * [23:16]: sec40
     * [31:24]: sec80
     */
    A_UINT32 rssi_chain0;
    A_UINT32 rssi_chain1;
    A_UINT32 rssi_chain2;
    A_UINT32 rssi_chain3;

    /**
     * Last calibrated NF value for chain 0 through 3
     *
     * nf_list_1:
     *
     * + [15:0] - chain 0
     * + [31:16] - chain 1
     *
     * nf_list_2:
     *
     * + [15:0] - chain 2
     * + [31:16] - chain 3
     */
    A_UINT32 nf_list_1;
    A_UINT32 nf_list_2;

    /** Length of the frame */
    A_UINT32 buf_len;
} wmi_single_phyerr_rx_hdr;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_single_phyerr_ext_rx_hdr */
    /**
     * RSSI on chain 4 through 7 in dB w.r.t noise floor.
     *
     * This is formatted the same as the PPDU_START RX descriptor
     * field:
     *
     * [7:0]:   pri20
     * [15:8]:  sec20
     * [23:16]: sec40
     * [31:24]: sec80
     */
    A_UINT32 rssi_chain4;
    A_UINT32 rssi_chain5;
    A_UINT32 rssi_chain6;
    A_UINT32 rssi_chain7;
    /**
     * Last calibrated NF value for chain 4 through 7 in dBm
     *
     * nf_list_3:
     * + [15:0] - chain 4
     * + [31:16] - chain 5
     *
     * nf_list_4:
     * + [15:0] - chain 6
     * + [31:16] - chain 7
     *
     * Each chain's noise floor is stored as a sign-extended (negative)
     * value in dBm units.
     */
    A_UINT32 nf_list_3;
    A_UINT32 nf_list_4;
} wmi_single_phyerr_ext_rx_hdr;

#define WMI_UNIFIED_FREQINFO_1_LO   0x000000ff
#define WMI_UNIFIED_FREQINFO_1_LO_S 0
#define WMI_UNIFIED_FREQINFO_1_HI   0x0000ff00
#define WMI_UNIFIED_FREQINFO_1_HI_S 8
#define WMI_UNIFIED_FREQINFO_2_LO   0x00ff0000
#define WMI_UNIFIED_FREQINFO_2_LO_S 16
#define WMI_UNIFIED_FREQINFO_2_HI   0xff000000
#define WMI_UNIFIED_FREQINFO_2_HI_S 24

/*
 * Please keep in mind that these _SET macros break macro side effect
 * assumptions; don't be clever with them.
 */
#define WMI_UNIFIED_FREQ_INFO_GET(hdr, f)                                   \
            (WMI_F_MS((hdr)->freq_info_1,                                   \
              WMI_UNIFIED_FREQINFO_##f##_LO)                                \
              | (WMI_F_MS((hdr)->freq_info_1,                               \
                 WMI_UNIFIED_FREQINFO_##f##_HI) << 8))

#define WMI_UNIFIED_FREQ_INFO_SET(hdr, f, v)                                \
        do {                                                                \
            WMI_F_RMW((hdr)->freq_info_1, (v) & 0xff,                       \
                WMI_UNIFIED_FREQINFO_##f##_LO);                             \
            WMI_F_RMW((hdr)->freq_info_1, ((v) >> 8) & 0xff,                \
                WMI_UNIFIED_FREQINFO_##f##_HI);                             \
        } while (0)

#define WMI_UNIFIED_FREQINFO_2_RSSI_COMB    0x000000ff
#define WMI_UNIFIED_FREQINFO_2_RSSI_COMB_S  0
#define WMI_UNIFIED_FREQINFO_2_CHWIDTH      0x0000ff00
#define WMI_UNIFIED_FREQINFO_2_CHWIDTH_S    8
#define WMI_UNIFIED_FREQINFO_2_PHYERRCODE   0x00ff0000
#define WMI_UNIFIED_FREQINFO_2_PHYERRCODE_S 16

#define WMI_UNIFIED_RSSI_COMB_GET(hdr)                                      \
            ((int8_t) (WMI_F_MS((hdr)->freq_info_2,                         \
                WMI_UNIFIED_FREQINFO_2_RSSI_COMB)))

#define WMI_UNIFIED_RSSI_COMB_SET(hdr, v)                                   \
            WMI_F_RMW((hdr)->freq_info_2, (v) & 0xff,                       \
              WMI_UNIFIED_FREQINFO_2_RSSI_COMB);

#define WMI_UNIFIED_CHWIDTH_GET(hdr)                                        \
            WMI_F_MS((hdr)->freq_info_2, WMI_UNIFIED_FREQINFO_2_CHWIDTH)

#define WMI_UNIFIED_CHWIDTH_SET(hdr, v)                                     \
            WMI_F_RMW((hdr)->freq_info_2, (v) & 0xff,                       \
              WMI_UNIFIED_FREQINFO_2_CHWIDTH);

#define WMI_UNIFIED_PHYERRCODE_GET(hdr)                                     \
            WMI_F_MS((hdr)->freq_info_2, WMI_UNIFIED_FREQINFO_2_PHYERRCODE)

#define WMI_UNIFIED_PHYERRCODE_SET(hdr, v)                                  \
            WMI_F_RMW((hdr)->freq_info_2, (v) & 0xff,                       \
              WMI_UNIFIED_FREQINFO_2_PHYERRCODE);

#define WMI_UNIFIED_CHAIN_0     0x0000ffff
#define WMI_UNIFIED_CHAIN_0_S   0
#define WMI_UNIFIED_CHAIN_1     0xffff0000
#define WMI_UNIFIED_CHAIN_1_S   16
#define WMI_UNIFIED_CHAIN_2     0x0000ffff
#define WMI_UNIFIED_CHAIN_2_S   0
#define WMI_UNIFIED_CHAIN_3     0xffff0000
#define WMI_UNIFIED_CHAIN_3_S   16

#define WMI_UNIFIED_CHAIN_4     0x0000ffff
#define WMI_UNIFIED_CHAIN_4_S   0
#define WMI_UNIFIED_CHAIN_5     0xffff0000
#define WMI_UNIFIED_CHAIN_5_S   16
#define WMI_UNIFIED_CHAIN_6     0x0000ffff
#define WMI_UNIFIED_CHAIN_6_S   0
#define WMI_UNIFIED_CHAIN_7     0xffff0000
#define WMI_UNIFIED_CHAIN_7_S   16

#define WMI_UNIFIED_CHAIN_0_FIELD   nf_list_1
#define WMI_UNIFIED_CHAIN_1_FIELD   nf_list_1
#define WMI_UNIFIED_CHAIN_2_FIELD   nf_list_2
#define WMI_UNIFIED_CHAIN_3_FIELD   nf_list_2
#define WMI_UNIFIED_CHAIN_4_FIELD   nf_list_3
#define WMI_UNIFIED_CHAIN_5_FIELD   nf_list_3
#define WMI_UNIFIED_CHAIN_6_FIELD   nf_list_4
#define WMI_UNIFIED_CHAIN_7_FIELD   nf_list_4

#define WMI_UNIFIED_NF_CHAIN_GET(hdr, c)                                    \
            ((int16_t) (WMI_F_MS((hdr)->WMI_UNIFIED_CHAIN_##c##_FIELD,      \
              WMI_UNIFIED_CHAIN_##c)))

#define WMI_UNIFIED_NF_CHAIN_SET(hdr, c, nf)                                \
            WMI_F_RMW((hdr)->WMI_UNIFIED_CHAIN_##c##_FIELD, (nf) & 0xffff,  \
              WMI_UNIFIED_CHAIN_##c);

/*
 * For now, this matches what the underlying hardware is doing.
 * Update ar6000ProcRxDesc() to use these macros when populating
 * the rx descriptor and then we can just copy the field over
 * to the WMI PHY notification without worrying about breaking
 * things.
 */
#define WMI_UNIFIED_RSSI_CHAN_PRI20     0x000000ff
#define WMI_UNIFIED_RSSI_CHAN_PRI20_S   0
#define WMI_UNIFIED_RSSI_CHAN_SEC20     0x0000ff00
#define WMI_UNIFIED_RSSI_CHAN_SEC20_S   8
#define WMI_UNIFIED_RSSI_CHAN_SEC40     0x00ff0000
#define WMI_UNIFIED_RSSI_CHAN_SEC40_S   16
#define WMI_UNIFIED_RSSI_CHAN_SEC80     0xff000000
#define WMI_UNIFIED_RSSI_CHAN_SEC80_S   24

#define WMI_UNIFIED_RSSI_CHAN_SET(hdr, c, ch, rssi)                         \
            WMI_F_RMW((hdr)->rssi_chain##c, (rssi) & 0xff,                  \
              WMI_UNIFIED_RSSI_CHAN_##ch);

#define WMI_UNIFIED_RSSI_CHAN_GET(hdr, c, ch)                               \
            ((int8_t) (WMI_F_MS((hdr)->rssi_chain##c,                       \
              WMI_UNIFIED_RSSI_CHAN_##ch)))

#define WMI_UNIFIED_CHAIN_RSSI_GET(tlv, chain_idx, band) \
    ((A_INT8) WMI_F_MS((tlv)->chain_rssi[chain_idx], WMI_UNIFIED_RSSI_CHAN_ ## band))

typedef struct {
    /** Phy error event header */
    wmi_single_phyerr_rx_hdr hdr;
    /** frame buffer */
    A_UINT8 bufp[1];
} wmi_single_phyerr_rx_event;

/* PHY ERROR MASK 0 */
/* bits 1:0 defined but not published */
#define WMI_PHY_ERROR_MASK0_RADAR                           (1 <<  2)
/* bits 23:3 defined but not published */
#define WMI_PHY_ERROR_MASK0_FALSE_RADAR_EXT                 (1 << 24)
/* bits 25:24 defined but not published */
#define WMI_PHY_ERROR_MASK0_SPECTRAL_SCAN                   (1 << 26)
/* bits 31:27 defined but not published */

/* PHY ERROR MASK 1 */
/* bits 13:0 defined but not published */
/* bits 31:14 reserved */

/* PHY ERROR MASK 2 */
/* bits 31:0 reserved */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_comb_phyerr_rx_hdr */
    /** Phy error phy error count */
    A_UINT32 num_phyerr_events;
    A_UINT32 tsf_l32;
    A_UINT32 tsf_u32;
    A_UINT32 buf_len;
    union {
        A_UINT32 pmac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 rsPhyErrMask0; /* see WMI_PHY_ERROR_MASK0 */
    A_UINT32 rsPhyErrMask1; /* see WMI_PHY_ERROR_MASK1 */
    A_UINT32 rsPhyErrMask2; /* see WMI_PHY_ERROR_MASK2 */
/* This TLV is followed by array of bytes:
 *     frame buffer - contains multiple payloads in the order:
 *         header - payload, header - payload...
 *     (The header is of type: wmi_single_phyerr_rx_hdr)
 *   A_UINT8 bufp[];
 *     The extension hdr will repeat num_phyerr_events of times
 *     and will have 1:1 mapping with above header. i.e the 1st
 *     ext_rx_hdr will belong to 1st phyerr_rx_hdr and so on.
 *   wmi_single_phyerr_ext_rx_hdr single_phyerr_ext;
 */
} wmi_comb_phyerr_rx_hdr;

/* WMI MGMT TX  */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mgmt_tx_hdr */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** xmit rate */
    A_UINT32 tx_rate;
    /** xmit power */
    A_UINT32 tx_power;
    /** Buffer length in bytes */
    A_UINT32 buf_len;
/* This TLV is followed by array of bytes:
 *   A_UINT8 bufp[]; <-- management frame buffer
 */
} wmi_mgmt_tx_hdr;

#define WMI_TX_SEND_PARAM_EXT_META_ID_GET(tx_param_ext_dword0) WMI_GET_BITS(tx_param_dword0, 0, 3)
#define WMI_TX_SEND_PARAM_EXT_META_ID_SET(tx_param_ext_dword0, value) WMI_SET_BITS(tx_param_dword0, 0, 3, value)

#define WMI_TX_SEND_PARAM_EXT_WIN_SIZE_GET(tx_param_ext_dword1) WMI_GET_BITS(tx_param_dword1, 0, 16)
#define WMI_TX_SEND_PARAM_EXT_WIN_SIZE_SET(tx_param_ext_dword1, value) WMI_SET_BITS(tx_param_dword1, 0, 16, value)

typedef enum {
    WMI_TX_SEND_PARAMS_EXT_META_ADDBA = 0x0,
    WMI_TX_SEND_PARAMS_EXT_META_DELBA = 0x1,
} wmi_tx_send_params_ext_meta_t;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag (WMITLV_TAG_STRUC_wmi_tx_send_params_ext) and len */
    union {
        struct {
            A_UINT32 meta_id     : 3,  /* Describes the representation of the data in tx_param_ext_dword1 Full set shown in wmi_tx_send_params_ext_meta_t */
                     reserved_0  : 29; /* Dedicated for commonly used parameters only */
        };
        A_UINT32 tx_param_ext_dword0;
    };
    union {
        struct {
        /* WMI_TX_SEND_PARAMS_EXT_META_ADDBA */
            A_UINT32 win_size    : 16,
                     reserved_1  : 16;
        };
        A_UINT32 tx_param_ext_dword1;
    };
} wmi_tx_send_params_ext;

#define WMI_TX_SEND_PARAM_PWR_GET(tx_param_dword0) WMI_GET_BITS(tx_param_dword0, 0, 8)
#define WMI_TX_SEND_PARAM_PWR_SET(tx_param_dword0, value) WMI_SET_BITS(tx_param_dword0, 0, 8, value)

#define WMI_TX_SEND_PARAM_MCS_MASK_GET(tx_param_dword0) WMI_GET_BITS(tx_param_dword0, 8, 12)
#define WMI_TX_SEND_PARAM_MCS_MASK_SET(tx_param_dword0, value) WMI_SET_BITS(tx_param_dword0, 8, 12, value)

#define WMI_TX_SEND_PARAM_NSS_MASK_GET(tx_param_dword0) WMI_GET_BITS(tx_param_dword0, 20, 8)
#define WMI_TX_SEND_PARAM_NSS_MASK_SET(tx_param_dword0, value) WMI_SET_BITS(tx_param_dword0, 20, 8, value)

#define WMI_TX_SEND_PARAM_RETRY_LIMIT_GET(tx_param_dword0) WMI_GET_BITS(tx_param_dword0, 28, 4)
#define WMI_TX_SEND_PARAM_RETRY_LIMIT_SET(tx_param_dword0, value) WMI_SET_BITS(tx_param_dword0, 28, 4, value)

#define WMI_TX_SEND_PARAM_CHAIN_MASK_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 0, 8)
#define WMI_TX_SEND_PARAM_CHAIN_MASK_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 0, 8, value)

#define WMI_TX_SEND_PARAM_BW_MASK_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 8, 7)
#define WMI_TX_SEND_PARAM_BW_MASK_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 8, 7, value)

#define WMI_TX_SEND_PARAM_PREAMBLE_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 15, 5)
#define WMI_TX_SEND_PARAM_PREAMBLE_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 15, 5, value)

#define WMI_TX_SEND_PARAM_FRAME_TYPE_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 20, 1)
#define WMI_TX_SEND_PARAM_FRAME_TYPE_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 20, 1, value)

#define WMI_TX_SEND_PARAM_CFR_CAPTURE_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 21, 1)
#define WMI_TX_SEND_PARAM_CFR_CAPTURE_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 21, 1, value)

#define WMI_TX_SEND_PARAM_BEAMFORM_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 22, 1)
#define WMI_TX_SEND_PARAM_BEAMFORM_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 22, 1, value)

#define WMI_TX_SEND_PARAM_RETRY_LIMIT_EXT_GET(tx_param_dword1) WMI_GET_BITS(tx_param_dword1, 23, 3)
#define WMI_TX_SEND_PARAM_RETRY_LIMIT_EXT_SET(tx_param_dword1, value) WMI_SET_BITS(tx_param_dword1, 23, 3, value)


/* TX_SEND flags:
 * Bit 0: set wrong txkey
 *     There is one special WFA test case in STA or AP, setting wrong txkey
 *     in disassoc or deauth with PMF enabled to verify if peer disconnected
 */
#define WMI_TX_SEND_FLAG_SET_WRONG_KEY    0x00000001
#define WMI_TX_SEND_FLAG_SET_WRONG_KEY_GET(tx_flags) WMI_GET_BITS(tx_flags, 0, 1)
#define WMI_TX_SEND_FLAG_SET_WRONG_KEY_SET(tx_flags, value) WMI_SET_BITS(tx_flags, 0, 1, value)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_send_params */

    union {
        struct {
            /* DWORD 0: tx power, tx rate, retry_limit */
            A_UINT32
                /* pwr -
                 * Specify what power the tx frame needs to be transmitted at.
                 * The power a signed (two's complement) value is in units of 0.5 dBm.
                 * The value needs to be appropriately sign-extended when extracting
                 * the value from the message and storing it in a variable that is
                 * larger than A_INT8.  (fw automatically handles this sign-extension.)
                 * If the transmission uses multiple tx chains, this power spec is
                 * the total transmit power, assuming incoherent combination of
                 * per-chain power to produce the total power.
                 */
                 pwr: 8,

                /* mcs_mask -
                 * Specify the allowable values for MCS index (modulation and coding)
                 * to use for transmitting the frame.
                 *
                 * For HT / VHT preamble types, this mask directly corresponds to
                 * the HT or VHT MCS indices that are allowed.  For each bit N set
                 * within the mask, MCS index N is allowed for transmitting the frame.
                 * For legacy CCK and OFDM rates, separate bits are provided for CCK
                 * rates versus OFDM rates, so the host has the option of specifying
                 * that the target must transmit the frame with CCK or OFDM rates
                 * (not HT or VHT), but leaving the decision to the target whether
                 * to use CCK or OFDM.
                 *
                 * For CCK and OFDM, the bits within this mask are interpreted as
                 * follows:
                 *     bit  0 -> CCK 1 Mbps rate is allowed
                 *     bit  1 -> CCK 2 Mbps rate is allowed
                 *     bit  2 -> CCK 5.5 Mbps rate is allowed
                 *     bit  3 -> CCK 11 Mbps rate is allowed
                 *     bit  4 -> OFDM BPSK modulation, 1/2 coding rate is allowed
                 *     bit  5 -> OFDM BPSK modulation, 3/4 coding rate is allowed
                 *     bit  6 -> OFDM QPSK modulation, 1/2 coding rate is allowed
                 *     bit  7 -> OFDM QPSK modulation, 3/4 coding rate is allowed
                 *     bit  8 -> OFDM 16-QAM modulation, 1/2 coding rate is allowed
                 *     bit  9 -> OFDM 16-QAM modulation, 3/4 coding rate is allowed
                 *     bit 10 -> OFDM 64-QAM modulation, 2/3 coding rate is allowed
                 *     bit 11 -> OFDM 64-QAM modulation, 3/4 coding rate is allowed
                 *
                 * The MCS index specification needs to be compatible with the
                 * bandwidth mask specification.  For example, a MCS index == 9
                 * specification is inconsistent with a preamble type == VHT,
                 * Nss == 1, and channel bandwidth == 20 MHz.
                 *
                 * Furthermore, the host has only a limited ability to specify to
                 * the target to select from HT + legacy rates, or VHT + legacy rates,
                 * since this mcs_mask can specify either HT/VHT rates or legacy rates.
                 * If no bits are set, target can choose what MCS type to use.
                 */
                 mcs_mask: 12,

                /* nss_mask -
                 * Specify which numbers of spatial streams (MIMO factor) are permitted.
                 * Each bit in this mask corresponds to a Nss value:
                 *     bit 0: if set, Nss = 1 (non-MIMO) is permitted
                 *     bit 1: if set, Nss = 2 (2x2 MIMO) is permitted
                 *     bit 2: if set, Nss = 3 (3x3 MIMO) is permitted
                 *     bit 3: if set, Nss = 4 (4x4 MIMO) is permitted
                 *     bit 4: if set, Nss = 5 (5x5 MIMO) is permitted
                 *     bit 5: if set, Nss = 6 (6x6 MIMO) is permitted
                 *     bit 6: if set, Nss = 7 (7x7 MIMO) is permitted
                 *     bit 7: if set, Nss = 8 (8x8 MIMO) is permitted
                 * The values in the Nss mask must be suitable for the recipient, e.g.
                 * a value of 0x4 (Nss = 3) cannot be specified for a tx frame to a
                 * recipient which only supports 2x2 MIMO.
                 * If no bits are set, target can choose what NSS type to use.
                 */
                 nss_mask: 8,

                /* retry_limit -
                 * Specify the maximum number of transmissions, including the
                 * initial transmission, to attempt before giving up if no ack
                 * is received.
                 * If the tx rate is specified, then all retries shall use the
                 * same rate as the initial transmission.
                 * If no tx rate is specified, the target can choose whether to
                 * retain the original rate during the retransmissions, or to
                 * fall back to a more robust rate.
                 */
                 retry_limit: 4;

       };
       A_UINT32 tx_param_dword0;
    };

    union {
        struct {
            /* DWORD 1: tx chain mask, preamble_type, tx BW */
            A_UINT32
                /* chain_mask - specify which chains to transmit from
                 * If not set, target will choose what chain_mask to use.
                 */
                chain_mask: 8,

                /* The bits in this mask correspond to the values as below
                 *     bit  0 -> 5MHz
                 *     bit  1 -> 10MHz
                 *     bit  2 -> 20MHz
                 *     bit  3 -> 40MHz
                 *     bit  4 -> 80MHz
                 *     bit  5 -> 160MHz
                 *     bit  6 -> 80_80MHz
                 * If no bits are set, target can choose what BW to use.
                 */
                bw_mask: 7,

                /* preamble_type_mask -
                 * Specify which preamble types (CCK, OFDM, HT, VHT) the target
                 * may choose from for transmitting this frame.
                 * Each bit in this mask corresponds to a preamble_type value:
                 *     bit 0: if set, OFDM
                 *     bit 1: if set, CCK
                 *     bit 2: if set, HT
                 *     bit 3: if set, VHT
                 *     bit 4: if set, HE
                 * If no bits are set, target can choose what preamble type to use.
                 */
                preamble_type: 5,

                /* Data:1 Mgmt:0 */
                frame_type: 1,

                /* Capture CFR when bit is set */
                cfr_capture: 1,

                /* Enables Beamforming when bit is set */
                en_beamforming: 1,

                /*
                 * Extra 3 bits of retry limit defined in tx_param_dword0,
                 * to allow maximum 127 retries for specific frames.
                 */
                retry_limit_ext: 3,

                reserved1_31_26: 6;
        };
        A_UINT32 tx_param_dword1;
    };
} wmi_tx_send_params;

#define WMI_MLO_MGMT_TID 0xFFFFFFFF

typedef struct {
    A_UINT32 tlv_header; /* TLV tag (WMITLV_TAG_STRUC_wmi_mlo_tx_send_params) and len */
    A_UINT32 hw_link_id; /** Unique link id across SOCs, provided by QMI handshake.
                           * If WMI_MLO_MGMT_TID then the frame will be queued in the MLO queue
                           * If valid hw_link_id
                           */
} wmi_mlo_tx_send_params;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mgmt_tx_send_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 desc_id;  /* echoed in tx_compl_event */
    A_UINT32 chanfreq; /* MHz units */
    /* WMI_MGMT_TX_SEND_CMDID is used for both pass by value and
     * pass by reference WMI management frames.
     *
     * a) If the command is for pass by reference,
     *    paddr_lo and padd_hi will hold the address of remote/host buffer
     * b) If the command is for pass by value,
     *    paddr_lo and paddr_hi will be NULL.
     */
    A_UINT32 paddr_lo;
    A_UINT32 paddr_hi;
    A_UINT32 frame_len;
    A_UINT32 buf_len;  /** Buffer length in bytes */
    /*
     * The frame which will have tx_params_valid set will be always be RAW
     * frame, as it will be tx'ed on non-pause tid
     */
    A_UINT32 tx_params_valid;
    /* tx_flags:
     * Extra flags when tx_params_valid is 0.
     * Refer to WMI_TX_SEND_FLAG_xxx defs regarding the meaning of the
     * bits within this field.
     */
    A_UINT32 tx_flags;
    /* peer_rssi:
     * If non-zero, indicates saved peer beacon/probe resp RSSI (dBm units)
     * ONLY for init connection auth/assoc pkt.
     */
    A_INT32 peer_rssi;


/* This TLV is followed by array of bytes: First 64 bytes of management frame
 *   A_UINT8 bufp[];
 */
/* This TLV is followed by wmi_tx_send_params
 * wmi_tx_send_params tx_send_params;
 * wmi_mlo_tx_send_params mlo_tx_send_params[];
 * wmi_tx_send_params_ext tx_send_params_ext[0 or 1];
 */
} wmi_mgmt_tx_send_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_offchan_data_tx_send_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 desc_id;  /* echoed in tx_compl_event */
    A_UINT32 chanfreq; /* MHz units */
    A_UINT32 paddr_lo;
    A_UINT32 paddr_hi;
    A_UINT32 frame_len;
    A_UINT32 buf_len;  /** Buffer length in bytes */
    /* The frame which will have tx_params_valid set will be always be RAW
     * frame, as it will be tx'ed on non-pause tid
     */
    A_UINT32 tx_params_valid;

/* This TLV is followed by array of bytes: First 64 bytes of frame
 *   A_UINT8 bufp[];
 */
/* This TLV is followed by wmi_tx_send_params
 * wmi_tx_send_params tx_send_params;
 */
} wmi_offchan_data_tx_send_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_qos_null_frame_tx_send_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 desc_id;  /* echoed in tx_compl_event */
    A_UINT32 paddr_lo; /* paddr_lo and padd_hi will hold the address of remote/host buffer, which is physical address of frame */
    A_UINT32 paddr_hi;
    A_UINT32 frame_len; /* Actual length of frame in bytes*/
    A_UINT32 buf_len;  /** Buffer length in bytes, length of data DMA'ed to FW from host */

/* This fixed_param TLV is followed by the TLVs listed below:
 * 1.  ARRAY_BYTE TLV: First buf_len (expected to be 64) bytes of frame
 *     A_UINT8 bufp[];
 * 2.  wmi_tx_send_params tx_send_params;
 */
} wmi_qos_null_frame_tx_send_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_echo_event_fixed_param */
    A_UINT32 value;
} wmi_echo_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_echo_cmd_fixed_param */
    A_UINT32 value;
} wmi_echo_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag would be equivalent to WMITLV_TAG_STRUC_wmi_mlo_link_disable_request_event_fixed_param  */
    /** AP MLD address request to be disabled some set of link */
    wmi_mac_addr mld_addr;
    /** Request link id set to disable */
    A_UINT32 linkid_bitmap;
} wmi_mlo_link_disable_request_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_regdomain_cmd_fixed_param */

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** reg domain code */
    A_UINT32 reg_domain;
    A_UINT32 reg_domain_2G; /* fulfil 2G domain ID */
    A_UINT32 reg_domain_5G; /* fulfil 5G domain ID */
    A_UINT32 conformance_test_limit_2G; /* 2G whole band CTL index */
    A_UINT32 conformance_test_limit_5G; /* 5G whole band CTL index */
    A_UINT32 dfs_domain;

    /**
     * The below conformance_test_limit index fields are for supporting the
     * 5G sub-band CTL feature.
     * Conformance test limits (CTLs) are the product-specific
     * regulatory-compliant powers stored in the board data file (BDF).
     * These CTLs within the BDF are identified by CTL index values.
     * For example, the BDF file is expected to contain CTL data for
     * FCC (CTL index = 0x10), ETSI (CTL index = 0x30),
     * Japan/MKK (CTL index = 0x40), Korea (CTL index = 0x50),
     * and China (CTL index = 0x60) CTL regions.
     * The target FW will use the CTL indices specified in this message to
     * find a BDF CTL entry with a matching CTL index value, and then use
     * that CTL as one of the inputs into the tx power limit computation.
     * A CTL index value of 0x0 is invalid, and will be ignored by the FW.
     */
    A_UINT32 conformance_test_limit_5G_subband_UNII1;
    A_UINT32 conformance_test_limit_5G_subband_UNII2a;
    A_UINT32 conformance_test_limit_5G_subband_UNII2c;
    A_UINT32 conformance_test_limit_5G_subband_UNII3;
    A_UINT32 conformance_test_limit_5G_subband_UNII4;
    /**
     * The below conformance_test_limit index fields are like the above,
     * but are for supporting the 6G sub-band CTL feature.
     */
    A_UINT32 conformance_test_limit_6G_subband_UNII5;
    A_UINT32 conformance_test_limit_6G_subband_UNII6;
    A_UINT32 conformance_test_limit_6G_subband_UNII7;
    A_UINT32 conformance_test_limit_6G_subband_UNII8;

    /**
     * In 6G sub-band CTL, fulfil 6G domain id and whole band CTL index firstly.
     * Unlike 5G sub-band CTL index fields, role ap and role client have
     * different indices.
     * Each role has 3 sub-band indices due to different power_mode type.
     * Below 3 represent for power_mode types: 0-LPI, 1-SP, 2-VLP
     * Below 2 represent for client_max: 0-default, 1-subordinate
     */

    A_UINT32 reg_domain_6G;  /* fulfil 6G domain id */
    A_UINT32 conformance_test_limit_6G; /* 6G whole band CTL index */

    A_UINT32 conformance_test_limit_6G_subband_UNII5_ap[3];
    A_UINT32 conformance_test_limit_6G_subband_UNII6_ap[3];
    A_UINT32 conformance_test_limit_6G_subband_UNII7_ap[3];
    A_UINT32 conformance_test_limit_6G_subband_UNII8_ap[3];

    A_UINT32 conformance_test_limit_6G_subband_UNII5_client[3][2];
    A_UINT32 conformance_test_limit_6G_subband_UNII6_client[3][2];
    A_UINT32 conformance_test_limit_6G_subband_UNII7_client[3][2];
    A_UINT32 conformance_test_limit_6G_subband_UNII8_client[3][2];
} wmi_pdev_set_regdomain_cmd_fixed_param;

typedef struct {
    /** TRUE for scan start and flase for scan end */
    A_UINT32 scan_start;
} wmi_pdev_scan_cmd;

/* WMI support for setting ratemask in target */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_config_ratemask_fixed_param */
    A_UINT32 vdev_id;
    /*
     * 0 - cck/ofdm
     * 1 - HT
     * 2 - VHT
     * 3 - HE
     * 4 - EHT
     *
     * Rate Bit mask format:
     *     <MCS in NSS MAX> ...
     *     <MCS MAX, ..., 2, 1, 0 : NSS2>
     *     <MCS MAX, ..., 2, 1, 0 : NSS1>
     * EHT Rate Bit Mask format:
     *     <MCS in NSS MAX> ...
     *     <MCS MAX, ... 2, 1, 0, -1, -2 : NSS2>
     *     <MCS MAX, ..., 2, 1, 0, -1(DCM), -2(EHT Dup) : NSS1>
     */
    A_UINT32 type;

    A_UINT32 mask_lower32;
    A_UINT32 mask_higher32;
    A_UINT32 mask_lower32_2;
    A_UINT32 mask_higher32_2;
} wmi_vdev_config_ratemask_cmd_fixed_param;

/* nrp action - Filter Neighbor Rx Packets  - add/remove filter */
enum {
    WMI_FILTER_NRP_ACTION_ADD        = 0x1,
    WMI_FILTER_NRP_ACTION_REMOVE     = 0x2,
    WMI_FILTER_NRP_ACTION_GET_LIST   = 0x3,
}; /* nrp - Neighbor Rx Packets */

/* nrp type - Filter Neighbor Rx Packets  - ap/client addr */
enum {
    WMI_FILTER_NRP_TYPE_AP_BSSID     = 0x1,
    WMI_FILTER_NRP_TYPE_STA_MACADDR  = 0x2,
};

/* nrp flag - Filter Neighbor Rx Packets
 * (capture flag, 2 & 3 not initially supported)
 */
enum {
    WMI_FILTER_NRP_CAPTURE_ONLY_RX_PACKETS      = 0x1,
    WMI_FILTER_NRP_CAPTURE_ONLY_TX_PACKETS      = 0x2,
    WMI_FILTER_NRP_CAPTURE_BOTH_TXRX_PACKETS    = 0x3,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_filter_nrp_config_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* AP Bssid or Client Mac-addr */
    wmi_mac_addr addr;
    /* Add/Remove NRF Filter */
    A_UINT32 action; /* WMI_FILTER_NRP_ACTION enum */
    /* client/ap filter */
    A_UINT32 type; /* WMI_FILTER_NRP_TYPE enum */
    /* optional - tx/rx capture */
    A_UINT32 flag; /* WMI_FILTER_NRP_CAPTURE enum */
    /* BSSID index - index of the BSSID register */
    A_UINT32 bssid_idx;
} wmi_vdev_filter_nrp_config_cmd_fixed_param; /* Filter for Neighbor Rx Packets */

/* tx peer filter action - Filter Tx Packets  - add/remove filter */
enum {
    WMI_PEER_TX_FILTER_ACTION_ADD                           = 1,
    WMI_PEER_TX_FILTER_ACTION_REMOVE                        = 2,
    WMI_PEER_TX_FILTER_ACTION_ADD_AND_ENABLE_FILTERING      = 3,
    WMI_PEER_TX_FILTER_ACTION_REMOVE_AND_CLEAR_FILTERING    = 4,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_tx_filter_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* Client  MAC addr */
    wmi_mac_addr addr;
    /* Add/Remove monitor_sta Filter */
    A_UINT32 action; /* WMI_PEER_TX_FILTER_ACTION enum */
} wmi_peer_tx_filter_cmd_fixed_param; /* Filter for TX Packets */

/* Command to set/unset chip in quiet mode */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_quiet_cmd_fixed_param */
    A_UINT32 pdev_id; /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 period; /*period in TUs*/
    A_UINT32 duration; /*duration in TUs*/
    A_UINT32 next_start; /*offset in TUs*/
    A_UINT32 enabled; /*enable/disable*/
} wmi_pdev_set_quiet_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_quiet_cmd_fixed_param */
    A_UINT32 vdev_id;    /* Virtual interface ID */
    A_UINT32 period;     /* period in TUs */
    A_UINT32 duration;   /* duration in TUs */
    A_UINT32 next_start; /* offset in TUs */
    A_UINT32 enabled;    /* enable/disable */
} wmi_vdev_set_quiet_cmd_fixed_param;

/*
 * START_STOP flag value: 1 - Start, 0 - Stop
 */
#define WMI_OFFLOAD_QUIET_FLAG_START_STOP              0x00000001
/*
 * ONE_SHOT flag value: 1 - One shot, 0 - Repeat
 * This flag is only relevant if the START_STOP flag == 1 (start).
 */
#define WMI_OFFLOAD_QUIET_FLAG_ONE_SHOT                0x00000002
/*
 * Enable/Disable sending Quiet IE info in SWBA event from the target
 * 0 - Don't include Quiet IE in WMI SWBA Event
 * 1 - Include Quiet IE in WMI SWBA Event
 */
#define WMI_OFFLOAD_QUIET_FLAG_INFO_IN_SWBA_START_STOP 0x00000004

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_bcn_offload_ml_quiet_config_params */
    A_UINT32 vdev_id;    /* partner vdev_id */
    A_UINT32 hw_link_id; /* hw_link_id: Unique link id across SOCs, got as part of QMI handshake */
    A_UINT32 beacon_interval; /* beacon interval in TU from received beacon of the partner link */
    A_UINT32 period;     /* period in TUs */
    A_UINT32 duration;   /* duration in TUs */
    A_UINT32 next_start; /* offset in TUs from beacon */
    A_UINT32 flags;      /* STOP or START (and single vs. repeated) Quiet IE
                          * See WMI_OFFLOAD_QUIET_FLAG_xxx defs.
                          */
} wmi_vdev_bcn_offload_ml_quiet_config_params;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param */
    A_UINT32 vdev_id;    /* Virtual interface ID */
    A_UINT32 period;     /* period in TUs */
    A_UINT32 duration;   /* duration in TUs */
    A_UINT32 next_start; /* offset in TUs from beacon */
    A_UINT32 flags;      /* STOP or START (and single vs. repeated) Quiet IE
                          * See WMI_OFFLOAD_QUIET_FLAG_xxx defs.
                          */
/*
 * This TLV is optionally followed by array of wmi_vdev_bcn_offload_ml_quiet_config_params struct
 * wmi_vdev_bcn_offload_ml_quiet_config_params will have multiple instances equal to num of links in an AP MLD
 *   wmi_vdev_bcn_offload_ml_quiet_config_params ml_quiet_param[];
 */
} wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;   /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_custom_aggr_size_cmd_fixed_param */
    A_UINT32 vdev_id;      /* vdev id indicating to which the vdev custom aggregation size will be applied. */
    /* Size for tx aggregation for the vdev mentioned in vdev id
     * (max MPDUs per A-MPDU or max MSDUs per A-MSDU based on aggr_type field)
     */
    A_UINT32 tx_aggr_size;

    A_UINT32 rx_aggr_size; /* Size for rx aggregation (block ack window size limit) for the vdev mentioned in vdev id */

    /*
     * To set TX aggregation size limits per VDEV per AC
     * bits 1:0 (ac):
     *     Access Category (0x0=BE, 0x1=BK, 0x2=VI, 0x3=VO)
     *     If tx_ac_enable bit is not set, tx_aggr_size is applied
     *     for all Access Categories
     * bit 2 (aggr_type):             TX Aggregation Type (0=A-MPDU, 1=A-MSDU)
     * bit 3 (tx_aggr_size_disable):  If set tx_aggr_size is invalid
     * bit 4 (rx_aggr_size_disable):  If set rx_aggr_size is invalid
     * bit 5 (tx_ac_enable):          If set, above ac bitmap is valid.
     * bit 6 (256 BA support enable)  If set, Default 256 BA size is expected
     *                                from host
     * bit 7 (1024 BA support enable) If set, Default 1024 BA size is expected
     *                                from host
     * bits 31:8:                     Reserved bits. should be set to zero.
     */
    A_UINT32 enable_bitmap;
} wmi_vdev_set_custom_aggr_size_cmd_fixed_param;

typedef enum {
    WMI_VDEV_CUSTOM_AGGR_TYPE_AMPDU = 0,
    WMI_VDEV_CUSTOM_AGGR_TYPE_AMSDU = 1,
    WMI_VDEV_CUSTOM_AGGR_TYPE_MAX,
} wmi_vdev_custom_aggr_type_t;

#define WMI_VDEV_CUSTOM_AGGR_AC_BITPOS           0
#define WMI_VDEV_CUSTOM_AGGR_AC_NUM_BITS         2
#define WMI_VDEV_CUSTOM_AGGR_TYPE_BITPOS         2
#define WMI_VDEV_CUSTOM_AGGR_TYPE_NUM_BITS       1
#define WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_BITPOS    3
#define WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_NUM_BITS  1
#define WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_BITPOS    4
#define WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_NUM_BITS  1
#define WMI_VDEV_CUSTOM_TX_AC_EN_BITPOS          5
#define WMI_VDEV_CUSTOM_TX_AC_EN_NUM_BITS        1
#define WMI_VDEV_CUSTOM_AGGR_256_BA_EN_BITPOS    6
#define WMI_VDEV_CUSTOM_AGGR_256_BA_EN_NUM_BITS  1
#define WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_BITPOS   7
#define WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_NUM_BITS 1

#define WMI_VDEV_CUSTOM_AGGR_AC_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_AGGR_AC_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_AC_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_AGGR_AC_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_AGGR_AC_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_AC_NUM_BITS)

#define WMI_VDEV_CUSTOM_AGGR_TYPE_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_AGGR_TYPE_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_TYPE_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_AGGR_TYPE_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_AGGR_TYPE_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_TYPE_NUM_BITS)

#define WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_BITPOS, \
        WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_BITPOS, \
        WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_NUM_BITS)

#define WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_BITPOS, \
        WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_BITPOS, \
        WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_NUM_BITS)

#define WMI_VDEV_CUSTOM_TX_AC_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_TX_AC_EN_BITPOS, \
        WMI_VDEV_CUSTOM_TX_AC_EN_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_TX_AC_EN_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_TX_AC_EN_BITPOS, \
        WMI_VDEV_CUSTOM_TX_AC_EN_NUM_BITS)

#define WMI_VDEV_CUSTOM_AGGR_256_BA_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_AGGR_256_BA_EN_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_256_BA_EN_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_AGGR_256_BA_EN_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_AGGR_256_BA_EN_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_256_BA_EN_NUM_BITS)

#define WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_NUM_BITS, value)
#define WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_GET(param)         \
    WMI_GET_BITS(param, WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_BITPOS, \
        WMI_VDEV_CUSTOM_AGGR_1024_BA_EN_NUM_BITS)

typedef enum {
    WMI_VDEV_CUSTOM_SW_RETRY_TYPE_NONAGGR = 0,
    WMI_VDEV_CUSTOM_SW_RETRY_TYPE_AGGR = 1,
    WMI_VDEV_CUSTOM_SW_RETRY_TYPE_MAX,
} wmi_vdev_custom_sw_retry_type_t;

typedef struct {
    A_UINT32 tlv_header;   /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_custom_sw_retry_th_cmd_fixed_param */
    A_UINT32 vdev_id;      /* vdev id indicating to which the vdev custom software retries will be applied. */
    A_UINT32 ac_type;      /* access category (VI, VO, BE, BK) enum wmi_traffic_ac */
    A_UINT32 sw_retry_type; /* 0 = non-aggr retry, 1 = aggr retry (wmi_vdev_custom_sw_retry_type_t enum) */
    A_UINT32 sw_retry_th;   /* max retry count per AC base on ac_type for the vdev mentioned in vdev id*/
} wmi_vdev_set_custom_sw_retry_th_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_chainmask_config_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* vdev id indicating to which the vdev, this chainmask configuration will be applied. */
    A_UINT32 vdev_id;
    /* number of chains to use for transmissions in 2.4 GHz band */
    A_UINT32 num_tx_chains_2g;
    /* number of chains to use for reception in 2.4 GHz band */
    A_UINT32 num_rx_chains_2g;
    /* nss to use for transmissions in 2.4 GHz band */
    A_UINT32 tx_nss_2g;
    /* nss to use for reception in 2.4 GHz band */
    A_UINT32 rx_nss_2g;
    /* number of chains to use for 11b transmissions. Valid only in 2.4 GHz */
    A_UINT32 num_tx_chains_b;
    /* number of chains to use for 11g transmissions. Valid only in 2.4 GHz */
    A_UINT32 num_tx_chains_g;
    /* number of chains to use for transmissions in 5 GHz band */
    A_UINT32 num_tx_chains_5g;
    /* number of chains to use for reception in 5 GHz band */
    A_UINT32 num_rx_chains_5g;
    /* nss to use for transmissions in 5 GHz band */
    A_UINT32 tx_nss_5g;
    /* nss to use for reception in 5 GHz band */
    A_UINT32 rx_nss_5g;
    /* number of chains to use for 11a transmissions. Valid only in 5 GHz */
    A_UINT32 num_tx_chains_a;
    /* If non-zero then use only one chain for TX when connection tx_nss is 1 in 2.4 GHz */
    A_UINT32 disable_tx_mrc_2g;
    /* If non-zero then use only one chain for RX when connection rx_nss is 1 in 2.4 GHz */
    A_UINT32 disable_rx_mrc_2g;
    /* If non-zero then use only one chain for TX when connection tx_nss is 1 in 5 GHz */
    A_UINT32 disable_tx_mrc_5g;
    /* If non-zero then use only one chain for RX when connection rx_nss is 1 in 5 GHz */
    A_UINT32 disable_rx_mrc_5g;
} wmi_vdev_chainmask_config_cmd_fixed_param;

/*
 * Command to enable/disable Green AP Power Save.
 * This helps conserve power during AP operation. When the AP has no
 * stations associated with it, the host can enable Green AP Power Save
 * to request the firmware to shut down all but one transmit and receive
 * chains.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_green_ap_ps_enable_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    A_UINT32 enable; /*1:enable, 0:disable*/
} wmi_pdev_green_ap_ps_enable_cmd_fixed_param;


#define MAX_HT_IE_LEN 32
/* DEPRECATED */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_ht_ie_cmd_fixed_param */
    A_UINT32 reserved0; /** placeholder for pdev_id of future multiple MAC products. Init. to 0. */
    A_UINT32 ie_len; /*length of the ht ie in the TLV ie_data[] */
    A_UINT32 tx_streams; /* Tx streams supported for this HT IE */
    A_UINT32 rx_streams; /* Rx streams supported for this HT IE */
/** The TLV for the HT IE follows:
 *       A_UINT32 ie_data[];
 */
} wmi_pdev_set_ht_ie_cmd_fixed_param;

#define MAX_VHT_IE_LEN 32
/* DEPRECATED */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_vht_ie_cmd_fixed_param */
    A_UINT32 reserved0; /** placeholder for pdev_id of future multiple MAC products. Init. to 0. */
    A_UINT32 ie_len; /*length of the vht ie in the TLV ie_data[] */
    A_UINT32 tx_streams; /* Tx streams supported for this HT IE */
    A_UINT32 rx_streams; /* Rx streams supported for this HT IE */
/** The TLV for the VHT IE follows:
 *       A_UINT32 ie_data[];
 */
} wmi_pdev_set_vht_ie_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_base_macaddr_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    wmi_mac_addr base_macaddr;
} wmi_pdev_set_base_macaddr_cmd_fixed_param;


enum wmi_spectral_scan_mode {
    WMI_SPECTRAL_SCAN_NORMAL_MODE,
    WMI_SPECTRAL_SCAN_AGILE_MODE,

    WMI_SPECTRAL_SCAN_MAX_MODE /* keep this last */
};

/*
 * For now, the spectral configuration is global rather than
 * per-vdev.  The vdev is a placeholder and will be ignored
 * by the firmware.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_spectral_configure_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 spectral_scan_count;
    A_UINT32 spectral_scan_period;
    A_UINT32 spectral_scan_priority;
    A_UINT32 spectral_scan_fft_size;
    A_UINT32 spectral_scan_gc_ena;
    A_UINT32 spectral_scan_restart_ena;
    A_UINT32 spectral_scan_noise_floor_ref;
    A_UINT32 spectral_scan_init_delay;
    A_UINT32 spectral_scan_nb_tone_thr;
    A_UINT32 spectral_scan_str_bin_thr;
    A_UINT32 spectral_scan_wb_rpt_mode;
    A_UINT32 spectral_scan_rssi_rpt_mode;
    A_UINT32 spectral_scan_rssi_thr;
    A_UINT32 spectral_scan_pwr_format;
    A_UINT32 spectral_scan_rpt_mode;
    A_UINT32 spectral_scan_bin_scale;
    A_UINT32 spectral_scan_dBm_adj;
    A_UINT32 spectral_scan_chn_mask;
    /* See enum wmi_spectral_scan_mode */
    A_UINT32 spectral_scan_mode;
    union {
        /**
         * Two center frequencies are required for agile channel switch
         * supporting True 160 and Restricted 160 ((80+80) or 165) MHz.
         * This parameter specifies the center frequency for cases with a
         * contiguous channel, and the center frequency of the primary
         * portion of a non-contiguous (80+80 or 165 MHz) channel.
         */
        A_UINT32 spectral_scan_center_freq;
        A_UINT32 spectral_scan_center_freq1;
    };
    /* agile span primary channel frequency (MHz), 0 for normal scan*/
    A_UINT32 spectral_scan_chan_freq;
    /* agile scan bandwidth (20, 40, 80, 80+80, 160), enum wmi_channel_width */
    A_UINT32 spectral_scan_chan_width;
    /**
     * Adding freq2 to support True 160 and restricted 160 ((80+80) or 165) MHz.
     * agile span center frequency2 (MHz), 0 for normal scan.
     */
    A_UINT32 spectral_scan_center_freq2;
    /**
     * Flag to enable re-capture of FFT sample if the previous sample has
     * AGC gain change bit set.
     * Re-capture will be enabled only if scan period is greater than 50us.
     */
    A_UINT32 recapture_sample_on_gain_change;
} wmi_vdev_spectral_configure_cmd_fixed_param;

/*
 * Enabling, disabling and triggering the spectral scan
 * is a per-vdev operation.  That is, it will set channel
 * flags per vdev rather than globally; so concurrent scan/run
 * and multiple STA (eg p2p, tdls, multi-band STA) is possible.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_spectral_enable_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* 0 - ignore; 1 - trigger, 2 - clear trigger */
    A_UINT32 trigger_cmd;
    /* 0 - ignore; 1 - enable, 2 - disable */
    A_UINT32 enable_cmd;
    /* See enum wmi_spectral_scan_mode */
    A_UINT32 spectral_scan_mode;
} wmi_vdev_spectral_enable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_tx_power_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_vdev_get_tx_power_cmd_fixed_param;

/* Primary 80 bin values */
#define WMI_SSCAN_PRI80_START_BIN_GET(pri80_bins)        WMI_GET_BITS(pri80_bins, 0, 16)
#define WMI_SSCAN_PRI80_START_BIN_SET(pri80_bins, value) WMI_SET_BITS(pri80_bins, 0, 16, value)
#define WMI_SSCAN_PRI80_END_BIN_GET(pri80_bins)          WMI_GET_BITS(pri80_bins, 16, 16)
#define WMI_SSCAN_PRI80_END_BIN_SET(pri80_bins, value)   WMI_SET_BITS(pri80_bins, 16, 16, value)

/* Secondary 80 bin values */
#define WMI_SSCAN_SEC80_START_BIN_GET(sec80_bins)        WMI_GET_BITS(sec80_bins, 0, 16)
#define WMI_SSCAN_SEC80_START_BIN_SET(sec80_bins, value) WMI_SET_BITS(sec80_bins, 0, 16, value)
#define WMI_SSCAN_SEC80_END_BIN_GET(sec80_bins)          WMI_GET_BITS(sec80_bins, 16, 16)
#define WMI_SSCAN_SEC80_END_BIN_SET(sec80_bins, value)   WMI_SET_BITS(sec80_bins, 16, 16, value)

/* 5MHz bin values */
#define WMI_SSCAN_MID_5MHZ_START_BIN_GET(mid_5mhz_bins)        WMI_GET_BITS(mid_5mhz_bins, 0, 16)
#define WMI_SSCAN_MID_5MHZ_START_BIN_SET(mid_5mhz_bins, value) WMI_SET_BITS(mid_5mhz_bins, 0, 16, value)
#define WMI_SSCAN_MID_5MHZ_END_BIN_GET(mid_5mhz_bins)          WMI_GET_BITS(mid_5mhz_bins, 16, 16)
#define WMI_SSCAN_MID_5MHZ_END_BIN_SET(mid_5mhz_bins, value)   WMI_SET_BITS(mid_5mhz_bins, 16, 16, value)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_sscan_fw_cmd_fixed_param */
    A_UINT32 pdev_id;

    /* See enum wmi_spectral_scan_mode */
    A_UINT32 spectral_scan_mode;

    /**
      * This fixed_param TLV is followed by the below TLVs:
      *
      * wmi_pdev_sscan_fft_bin_index fft_bin_index[]; // array len = 0 or 1
      *     If present (array length is 1) this TLV specifies the primary
      *     and secondary channels FFT bin indices for True 160 and
      *     Restricted 160 (80+80 or 165) MHz BW cases.
      */
} wmi_pdev_sscan_fw_cmd_fixed_param;

/**
 * The below structure is used only to send the FFT bin numbers for
 * True 160 and Restricted 160(80+80 or 165) MHz from FW to HOST
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_sscan_fft_bin_index */

    /**
     * Bit 15 -  0 : primary 80 start bin number
     * Bit 31 - 16 : primary 80 end bin number
     * Refer to WMI_SSCAN_PRI80_[START,END]_BIN_[GET,SET] macros.
     * Only for True 160 and Restricted 160(80+80 or 165) MHz this
     * will be filled.
     */
    A_UINT32 pri80_bins;

    /**
     * Bit 15 -  0 : secondary 80 start bin number
     * Bit 31 - 16 : secondary 80 end bin number
     * Refer to WMI_SSCAN_SEC80_[START,END]_BIN_[GET,SET] macros.
     * Only for True 160 and Restricted 160(80+80 or 165) MHz this
     * will be filled.
     */
    A_UINT32 sec80_bins;

    /**
     * Bit 15 -  0 : 5Mhz start bin number
     * Bit 31 - 16 : 5Mhz end bin number
     * Refer to WMI_SSCAN_MID_5MHZ_[START,END]_BIN_[GET,SET] macros.
     * Only for Restricted 160(80+80 or 165), otherwise 0.
     */
    A_UINT32 mid_5mhz_bins;
} wmi_pdev_sscan_fft_bin_index;

#define WMI_SPECTRAL_CHAN_PUNCTURE_BMAP_GET(puncture_bmap) WMI_GET_BITS(puncture_bmap, 0, 16)
#define WMI_SPECTRAL_CHAN_PUNCTURE_BMAP_SET(puncture_bmap, value) WMI_SET_BITS(puncture_bmap, 0 , 16, value)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_sscan_chan_info */
    /*
     *  For contiguous channels, cfreq1 should be represent the center of the entire span and
     *  cfreq2 should be 0 whereas for non-contiguous channels, cfreq1 should represent the
     *  center of primary segment whereas cfreq2 should represent the center of secondary segment
    */
    /* Information corresponding to operating channel */
    A_UINT32 operating_pri20_freq; /* In MHz */
    A_UINT32 operating_cfreq1;     /* In MHz */
    A_UINT32 operating_cfreq2;     /* In MHz */
    A_UINT32 operating_bw;         /* as per enum wmi_channel_width */
    /*
     * bits [15:0] are used to represent puncture modes where each bit indicates
     * whether that 20MHz channel is punctured.
     * bits [31:16] are reserved.
     */
    A_UINT32 operating_puncture_20mhz_bitmap;

    /* Information corresponding to channel in which spectral scan is done */
    A_UINT32 sscan_cfreq1; /* In MHz */
    A_UINT32 sscan_cfreq2; /* In MHz */
    A_UINT32 sscan_bw; /*  as per enum wmi_channel_width */
    /*
     * bits [15:0] are used to represent puncture modes where each bit indicates
     * whether that 20MHz channel is punctured.
     * bits [31:16] are reserved.
     */
    A_UINT32 sscan_puncture_20mhz_bitmap;
} wmi_pdev_sscan_chan_info;

typedef struct
{
     A_UINT32 tlv_header;  /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_sscan_per_detector_info */
     A_UINT32 detector_id; /** ID of the detector involved in the spectral scan */
     /*
      * Start/End frequency (in MHz) to indicate the frequency range to which the detector is listening
     */
     A_UINT32 start_freq;       /* in MHz */
     A_UINT32 end_freq;         /* in MHz */
} wmi_pdev_sscan_per_detector_info;

typedef enum {
    /** Enum to indicate bmsk of spectral scan stop evt on scan count max out */
    WMI_SSCAN_EVT_BMSK_SCAN_STOP_SCOUNT = 0X00000001,


    /** Add more event code bmsks above this */
    WMI_SSCAN_EVT_BMSK_MAX = 0Xffffffff,
} wmi_sscan_evt_message_code;

/**
 * The below structure is used to send the start/stop triggers
 * for events related to spectral scan activity from
 * FW to host
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sscan_evt_message_fixed_param */
    A_UINT32 pdev_id;

    /** Refer Enum wmi_sscan_evt_message_code */
    A_UINT32 sscan_evt_code;
} wmi_sscan_evt_message_fixed_param;

#define WMI_BEACON_CTRL_TX_DISABLE  0
#define WMI_BEACON_CTRL_TX_ENABLE   1
#define WMI_BEACON_CTRL_SWBA_EVENT_DISABLE  2
#define WMI_BEACON_CTRL_SWBA_EVENT_ENABLE   3

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_offload_ctrl_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    A_UINT32 bcn_ctrl_op; /* fw default 1 (see WMI_BEACON_CTRL defs) */
} wmi_bcn_offload_ctrl_cmd_fixed_param;

/** common structure used for wmi_vedv_get_tx_power_event */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_tx_power_event_fixed_param */
    A_UINT32 tx_power; /** units: 0.5 dBm, per-chain tx power */
    A_UINT32 vdev_id; /** unique id identifying the VDEV, generated by the caller */
} wmi_vdev_get_tx_power_event_fixed_param;

typedef enum {
    /** Limit the offchannel duration */
    WMI_VDEV_LIMIT_OFFCHAN_ENABLE   = 0x1,
    /** Skip DFS channels from Scan channel list.
     *  valid for both host scans and FW scans */
    WMI_VDEV_LIMIT_OFFCHAN_SKIP_DFS = 0x2,
} wmi_vdev_limit_offchan_flags;

typedef struct {
    A_UINT32 tlv_header; /* WMITLV_TAG_STRUC_wmi_vdev_limit_offchan_cmd_fixed_param */
    /** Limit the duration of offchannel events requested by the vdev corresponding to the specified vdev_id */
    A_UINT32 vdev_id;
    /** see enum wmi_vdev_limit_offchan_flags */
    A_UINT32 flags;
    /** max offchannel time allowed in msec when WMI_VDEV_LIMIT_OFFCHAN_ENABLE flag is set */
    A_UINT32 max_offchan_time;
    /** rest time in msec on the BSS channel */
    A_UINT32 rest_time;
} wmi_vdev_limit_offchan_cmd_fixed_param;

#define WMI_CSA_EVENT_QSBW_ISE_ID_MASK    0x000000FF /* information sub element id for QSBW, expected value is 0x02 */
#define WMI_CSA_EVENT_QSBW_ISE_LEN_MASK   0x0000FF00 /* length of QSBW ISE data, expected value is 0x02 */
#define WMI_CSA_EVENT_QSBW_ISE_CAP_MASK   0x00FF0000 /* capabilities, 0x01 for 5MHz, 0x02 for 10MHz, 0x01|0x2 for both (see WMI_CSA_EVENT_QSBW_ISE bitmask defs) */
#define WMI_CSA_EVENT_QSBW_ISE_NOTIF_MASK 0xFF000000 /* notification from AP, 0x01 for 5MHz, 0x02 for 10MHz (see WMI_CSA_EVENT_QSBW_ISE bitmask defs) */

#define WMI_CSA_EVENT_QSBW_ISE_ID 0x02
#define WMI_CSA_EVENT_QSBW_ISE_LEN 0x02

#define WMI_CSA_EVENT_QSBW_ISE_5M_BITMASK  0x01
#define WMI_CSA_EVENT_QSBW_ISE_10M_BITMASK  0x02

#define WMI_CSA_EVENT_QSBW_ISE_CAP_5M(qsbw_ise) \
    (((qsbw_ise) >> 16) & WMI_CSA_EVENT_QSBW_ISE_5M_BITMASK)
#define WMI_CSA_EVENT_QSBW_ISE_CAP_10M(qsbw_ise) \
    (((qsbw_ise) >> 16) & WMI_CSA_EVENT_QSBW_ISE_10M_BITMASK)
#define WMI_CSA_EVENT_QSBW_ISE_NOTIF_5M(qsbw_ise) \
    (((qsbw_ise) >> 24) & WMI_CSA_EVENT_QSBW_ISE_5M_BITMASK)
#define WMI_CSA_EVENT_QSBW_ISE_NOTIF_10M(qsbw_ise) \
    (((qsbw_ise) >> 24) & WMI_CSA_EVENT_QSBW_ISE_10M_BITMASK)

typedef enum {
    WMI_CSA_IE_PRESENT    = 0x00000001,
    WMI_XCSA_IE_PRESENT   = 0x00000002,
    WMI_WBW_IE_PRESENT    = 0x00000004,
    WMI_CSWRAP_IE_PRESENT = 0x00000008,
    WMI_CSWARP_IE_PRESENT = WMI_CSWRAP_IE_PRESENT, /* deprecated: typo */
    WMI_QSBW_ISE_PRESENT  = 0x00000010,
    WMI_CSWRAP_IE_EXTENDED_PRESENT = 0x00000020, /* Added bitmask to verify if the additional information is filled in */
} WMI_CSA_EVENT_IES_PRESENT_FLAG;

/* wmi CSA receive event from beacon frame */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_csa_event_fixed_param */
    A_UINT32 i_fc_dur; /* Bit 0-15: FC, Bit 16-31: DUR */
    wmi_mac_addr i_addr1;
    wmi_mac_addr i_addr2;
    /* NOTE: size of array of csa_ie[], xcsa_ie[], and wb_ie[] cannot be
     * changed in the future without breaking WMI compatibility */
    A_UINT32 csa_ie[2];
    A_UINT32 xcsa_ie[2];
    A_UINT32 wb_ie[2];
    union {
        A_UINT32 cswrap_ie; /* use this */
        A_UINT32 cswarp_ie; /* deprecated (typo) */
    };
    A_UINT32 ies_present_flag; /* WMI_CSA_EVENT_IES_PRESENT_FLAG */
    A_UINT32 qsbw_ise;
    /* cswrap_ie_extended:
     * Stores full IEEE80211_ELEMID_CHAN_SWITCH_WRAP information element.
     * The first two octets host the Element ID and Length fields.
     * The IE comprises New Country Subelement (optional and max length 6),
     * Wide Bandwidth Channel Subelement (optional and max length 5) and
     * New Transmit Power Envelope subelement (optional and max length 7)
     * The 4-byte words within cswrap_ie_extended[] use little endian ordering;
     * the first octect of the IE resides in bits 7:0 of cswrap_ie_extended[0],
     * the second octet resides in bits 15:8 of cswrap_ie_extended[0] and so on.
     */
    A_UINT32 cswrap_ie_extended[5];
} wmi_csa_event_fixed_param;

#define WMI_GET_MLD_MAC_ADDRESS_PRESENT(mld_mac_address_present) \
    WMI_GET_BITS(mld_mac_address_present, 0, 1)
#define WMI_SET_MLD_MAC_ADDRESS_PRESENT(mld_mac_address_present, value) \
    WMI_SET_BITS(mld_mac_address_present, 0, 1, value)

#define WMI_GET_LINK_ADDRESS_PRESENT(link_mac_address_present) \
    WMI_GET_BITS(link_mac_address_present, 1, 1)
#define WMI_SET_LINK_ADDRESS_PRESENT(link_mac_address_present, value) \
    WMI_SET_BITS(link_mac_address_present, 1, 1, value)

#define WMI_GET_LINK_ID_PRESENT(link_id_present) \
    WMI_GET_BITS(link_id_present, 2, 1)
#define WMI_SET_LINK_ID_PRESENT(link_id_present, value) \
    WMI_SET_BITS(link_id_present, 2, 1, value)

typedef enum {
    WMI_QUIET_EVENT_START = 0,
    WMI_QUIET_EVENT_STOP  = 1,
} WMI_QUIET_EVENT_FLAG;

/* WMI Quiet receive event from beacon frame */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_quiet_event_fixed_param */
    wmi_mac_addr mld_mac_address; /* AP mld mac address */
    wmi_mac_addr link_mac_address; /* AP link mac address */
    A_UINT32 linkid; /* Link id associated with AP */
    A_UINT32 mld_mac_address_present :1,
             link_mac_address_present :1,
             linkid_present :1,
             reserved :29;
    A_UINT32 quiet_status; /* WMI_QUIET_EVENT_FLAG: quiet start or stop */
} wmi_quiet_event_fixed_param;

typedef enum {
    WAL_PEER_MCAST2UCAST_DISABLED    = 0,
    WAL_PEER_MCAST2UCAST_DROP_EMPTY  = 1, /* Drop the frames if match is not found */
    WAL_PEER_MCAST2UCAST_MCAST_EMPTY = 2, /* Send as mcast if match is not found */
} WMI_PEER_MCAST2UCAST_MODE;

typedef enum {
    PKT_PWR_SAVE_NAP_ENABLE     = 0x00000001,
    PKT_PWR_SAVE_LS_ENABLE      = 0x00000002,
    PKT_PWR_SAVE_DS_ENABLE      = 0x00000004,

    PKT_PWR_SAVE_BTCOEX_ENABLE  = 0x00000008,

    PKT_PWR_SAVE_FSM_ENABLE     = 0x80000000,
} WMI_PDEV_PKT_PWR_SAVE_LEVEL;

/** MACROs to get user setting for enabling/disabling Secondary Rate Feature set
 * Bit-0    : Enable/Disable Control for "PPDU Secondary Retry Support"
 * Bit-1    : Enable/Disable Control for "RTS Black/White-listing Support"
 * Bit-2    : Enable/Disable Control for "Higher MCS retry restriction on XRETRY failures"
 * Bit 3-5  : "Xretry threshold" to use
 * Bit 6~31 : reserved for future use.
 */
#define WMI_PDEV_PARAM_SECONDARY_RATE_ENABLE_BIT_S      0
#define WMI_PDEV_PARAM_SECONDARY_RATE_ENABLE_BIT        0x00000001
#define WMI_PDEV_PARAM_RTS_BL_WL_ENABLE_BIT_S           1
#define WMI_PDEV_PARAM_RTS_BL_WL_ENABLE_BIT             0x00000002
#define WMI_PDEV_PARAM_HIGHER_MCS_XRETRY_RESTRICTION_S  2
#define WMI_PDEV_PARAM_HIGHER_MCS_XRETRY_RESTRICTION    0x00000004
#define WMI_PDEV_PARAM_XRETRY_THRESHOLD_S               3
#define WMI_PDEV_PARAM_XRETRY_THRESHOLD                 0x00000038

#define WMI_PDEV_PARAM_IS_SECONDARY_RATE_ENABLED(word32)            WMI_F_MS(word32, WMI_PDEV_PARAM_SECONDARY_RATE_ENABLE_BIT)
#define WMI_PDEV_PARAM_IS_RTS_BL_WL_ENABLED(word32)                 WMI_F_MS(word32, WMI_PDEV_PARAM_RTS_BL_WL_ENABLE_BIT)
#define WMI_PDEV_PARAM_IS_HIGHER_MCS_XRETRY_RESTRICTION_SET(word32) WMI_F_MS(word32, WMI_PDEV_PARAM_HIGHER_MCS_XRETRY_RESTRICTION)
#define WMI_PDEV_PARAM_GET_XRETRY_THRESHOLD(word32)                 WMI_F_MS(word32, WMI_PDEV_PARAM_XRETRY_THRESHOLD)

/*
 * The WMI_SCHED_MODE_FLAGS enum is used by the following WMI commands:
 *
 *     WMI_VDEV_PARAM_SET_DISABLED_SCHED_MODES
 *     WMI_PDEV_PARAM_SET_DISABLED_SCHED_MODES
 *     WMI_PEER_SCHED_MODE_DISABLE_CMDID
 *     WMI_SAWF_SVC_CLASS_CFG_CMDID
 */
typedef enum {
    WMI_SCHED_MODE_DL_MU_MIMO = 0x00000001,
    WMI_SCHED_MODE_UL_MU_MIMO = 0x00000002,
    WMI_SCHED_MODE_DL_OFDMA   = 0x00000004,
    WMI_SCHED_MODE_UL_OFDMA   = 0x00000008,
} WMI_SCHED_MODE_FLAGS;

typedef enum {
    /** TX chain mask */
    WMI_PDEV_PARAM_TX_CHAIN_MASK = 0x1,
    /** RX chain mask */
    WMI_PDEV_PARAM_RX_CHAIN_MASK,                     /* 0x2 */
    /** TX power limit for 2G Radio */
    WMI_PDEV_PARAM_TXPOWER_LIMIT2G,                   /* 0x3 */
    /** TX power limit for 5G Radio */
    WMI_PDEV_PARAM_TXPOWER_LIMIT5G,                   /* 0x4 */
    /** TX power scale */
    WMI_PDEV_PARAM_TXPOWER_SCALE,                     /* 0x5 */
    /** Beacon generation mode . 0: host, 1: target   */
    WMI_PDEV_PARAM_BEACON_GEN_MODE,                   /* 0x6 */
    /** Beacon generation mode . 0: staggered 1: bursted   */
    WMI_PDEV_PARAM_BEACON_TX_MODE,                    /* 0x7 */
    /** Resource manager off chan mode .
     * 0: turn off off chan mode. 1: turn on offchan mode
     */
    WMI_PDEV_PARAM_RESMGR_OFFCHAN_MODE,               /* 0x8 */
    /** Protection mode  0: no protection 1:use CTS-to-self 2: use RTS/CTS */
    WMI_PDEV_PARAM_PROTECTION_MODE,                   /* 0x9 */
    /** Dynamic bandwidth 0: disable 1: enable */
    WMI_PDEV_PARAM_DYNAMIC_BW,                        /* 0xa */
    /** Non aggregrate/ 11g sw retry threshold.0-disable */
    WMI_PDEV_PARAM_NON_AGG_SW_RETRY_TH,               /* 0xb */
    /** aggregrate sw retry threshold. 0-disable*/
    WMI_PDEV_PARAM_AGG_SW_RETRY_TH,                   /* 0xc */
    /** Station kickout threshold (non of consecutive failures).0-disable */
    WMI_PDEV_PARAM_STA_KICKOUT_TH,                    /* 0xd */
    /** Aggerate size scaling configuration per AC */
    WMI_PDEV_PARAM_AC_AGGRSIZE_SCALING,               /* 0xe */
    /** LTR enable */
    WMI_PDEV_PARAM_LTR_ENABLE,                        /* 0xf */
    /** LTR latency for BE, in us */
    WMI_PDEV_PARAM_LTR_AC_LATENCY_BE,                 /* 0x10 */
    /** LTR latency for BK, in us */
    WMI_PDEV_PARAM_LTR_AC_LATENCY_BK,                 /* 0x11 */
    /** LTR latency for VI, in us */
    WMI_PDEV_PARAM_LTR_AC_LATENCY_VI,                 /* 0x12 */
    /** LTR latency for VO, in us  */
    WMI_PDEV_PARAM_LTR_AC_LATENCY_VO,                 /* 0x13 */
    /** LTR AC latency timeout, in ms */
    WMI_PDEV_PARAM_LTR_AC_LATENCY_TIMEOUT,            /* 0x14 */
    /** LTR platform latency override, in us */
    WMI_PDEV_PARAM_LTR_SLEEP_OVERRIDE,                /* 0x15 */
    /** LTR-M override, in us */
    WMI_PDEV_PARAM_LTR_RX_OVERRIDE,                   /* 0x16 */
    /** Tx activity timeout for LTR, in us */
    WMI_PDEV_PARAM_LTR_TX_ACTIVITY_TIMEOUT,           /* 0x17 */
    /** L1SS state machine enable */
    WMI_PDEV_PARAM_L1SS_ENABLE,                       /* 0x18 */
    /** Deep sleep state machine enable */
    WMI_PDEV_PARAM_DSLEEP_ENABLE,                     /* 0x19 */
    /** RX buffering flush enable */
    WMI_PDEV_PARAM_PCIELP_TXBUF_FLUSH,                /* 0x1a */
    /** RX buffering matermark */
    WMI_PDEV_PARAM_PCIELP_TXBUF_WATERMARK,            /* 0x1b */
    /** RX buffering timeout enable */
    WMI_PDEV_PARAM_PCIELP_TXBUF_TMO_EN,               /* 0x1c */
    /** RX buffering timeout value */
    WMI_PDEV_PARAM_PCIELP_TXBUF_TMO_VALUE,            /* 0x1d */
    /** pdev level stats update period in ms */
    WMI_PDEV_PARAM_PDEV_STATS_UPDATE_PERIOD,          /* 0x1e */
    /** vdev level stats update period in ms */
    WMI_PDEV_PARAM_VDEV_STATS_UPDATE_PERIOD,          /* 0x1f */
    /** peer level stats update period in ms */
    WMI_PDEV_PARAM_PEER_STATS_UPDATE_PERIOD,          /* 0x20 */
    /** beacon filter status update period */
    WMI_PDEV_PARAM_BCNFLT_STATS_UPDATE_PERIOD,        /* 0x21 */
    /** QOS Mgmt frame protection MFP/PMF 0: disable, 1: enable */
    WMI_PDEV_PARAM_PMF_QOS,                           /* 0x22 */
    /** Access category on which ARP frames are sent */
    WMI_PDEV_PARAM_ARP_AC_OVERRIDE,                   /* 0x23 */
    /** DCS configuration */
    WMI_PDEV_PARAM_DCS,                               /* 0x24 */
    /** Enable/Disable ANI on target */
    WMI_PDEV_PARAM_ANI_ENABLE,                        /* 0x25 */
    /** configure the ANI polling period */
    WMI_PDEV_PARAM_ANI_POLL_PERIOD,                   /* 0x26 */
    /** configure the ANI listening period */
    WMI_PDEV_PARAM_ANI_LISTEN_PERIOD,                 /* 0x27 */
    /** configure OFDM immunity level */
    WMI_PDEV_PARAM_ANI_OFDM_LEVEL,                    /* 0x28 */
    /** configure CCK immunity level */
    WMI_PDEV_PARAM_ANI_CCK_LEVEL,                     /* 0x29 */
    /** Enable/Disable CDD for 1x1 STAs in rate control module */
    WMI_PDEV_PARAM_DYNTXCHAIN,                        /* 0x2a */
    /** Enable/Disable proxy STA */
    WMI_PDEV_PARAM_PROXY_STA,                         /* 0x2b */
    /** Enable/Disable low power state when all VDEVs are inactive/idle. */
    WMI_PDEV_PARAM_IDLE_PS_CONFIG,                    /* 0x2c */
    /** Enable/Disable power gating sleep */
    WMI_PDEV_PARAM_POWER_GATING_SLEEP,                /* 0x2d */
    /** Enable/Disable Rfkill */
    WMI_PDEV_PARAM_RFKILL_ENABLE,                     /* 0x2e */
    /** Set Bursting DUR */
    WMI_PDEV_PARAM_BURST_DUR,                         /* 0x2f */
    /** Set Bursting ENABLE */
    WMI_PDEV_PARAM_BURST_ENABLE,                      /* 0x30 */
    /** HW rfkill config */
    WMI_PDEV_PARAM_HW_RFKILL_CONFIG,                  /* 0x31 */
    /** Enable radio low power features */
    WMI_PDEV_PARAM_LOW_POWER_RF_ENABLE,               /* 0x32 */
   /** L1SS entry and residency time track */
    WMI_PDEV_PARAM_L1SS_TRACK,                        /* 0x33 */
    /** set hyst at runtime, requirement from SS */
    WMI_PDEV_PARAM_HYST_EN,                           /* 0x34 */
    /** Enable/ Disable POWER COLLAPSE */
    WMI_PDEV_PARAM_POWER_COLLAPSE_ENABLE,             /* 0x35 */
   /** configure LED system state */
    WMI_PDEV_PARAM_LED_SYS_STATE,                     /* 0x36 */
   /** Enable/Disable LED */
    WMI_PDEV_PARAM_LED_ENABLE,                        /* 0x37 */
    /** set DIRECT AUDIO time latency */
    WMI_PDEV_PARAM_AUDIO_OVER_WLAN_LATENCY, /* DEPRECATED */ /* 0x38 */
    /** set DIRECT AUDIO Feature ENABLE */
    WMI_PDEV_PARAM_AUDIO_OVER_WLAN_ENABLE, /* DEPRECATED */  /* 0x39 */
    /** pdev level whal mib stats update enable */
    WMI_PDEV_PARAM_WHAL_MIB_STATS_UPDATE_ENABLE,      /* 0x3a */
    /** ht/vht info based on vdev */
    WMI_PDEV_PARAM_VDEV_RATE_STATS_UPDATE_PERIOD,     /* 0x3b */
    /** Set CTS channel BW for dynamic BW adjustment feature */
    WMI_PDEV_PARAM_CTS_CBW,                           /* 0x3c */
    /** Set GPIO pin info used by WNTS */
    WMI_PDEV_PARAM_WNTS_CONFIG,                       /* 0x3d */
    /** Enable/Disable hardware adaptive early rx feature */
    WMI_PDEV_PARAM_ADAPTIVE_EARLY_RX_ENABLE,          /* 0x3e */
    /** The minimum early rx duration, to ensure early rx duration is non-zero */
    WMI_PDEV_PARAM_ADAPTIVE_EARLY_RX_MIN_SLEEP_SLOP,  /* 0x3f */
    /** Increasing/decreasing step used by hardware */
    WMI_PDEV_PARAM_ADAPTIVE_EARLY_RX_INC_DEC_STEP,    /* 0x40 */
    /** The fixed early rx duration when adaptive early rx is disabled */
    WMI_PDEV_PARAM_EARLY_RX_FIX_SLEEP_SLOP,           /* 0x41 */
    /** Enable/Disable bmiss based adaptive beacon timeout feature */
    WMI_PDEV_PARAM_BMISS_BASED_ADAPTIVE_BTO_ENABLE,   /* 0x42 */
    /** The minimum beacon timeout duration, to ensure beacon timeout duration is non-zero */
    WMI_PDEV_PARAM_BMISS_BTO_MIN_BCN_TIMEOUT,         /* 0x43 */
    /** Increasing/decreasing step used by hardware */
    WMI_PDEV_PARAM_BMISS_BTO_INC_DEC_STEP,            /* 0x44 */
    /** The fixed beacon timeout duration when bmiss based adaptive beacon timeout is disabled */
    WMI_PDEV_PARAM_BTO_FIX_BCN_TIMEOUT,               /* 0x45 */
    /** Enable/Disable Congestion Estimator based adaptive beacon timeout feature */
    WMI_PDEV_PARAM_CE_BASED_ADAPTIVE_BTO_ENABLE,      /* 0x46 */
    /** combo value of ce_id, ce_threshold, ce_time, refer to WMI_CE_BTO_CE_ID_MASK */
    WMI_PDEV_PARAM_CE_BTO_COMBO_CE_VALUE,             /* 0x47 */
    /** 2G TX chain mask */
    WMI_PDEV_PARAM_TX_CHAIN_MASK_2G,                  /* 0x48 */
    /** 2G RX chain mask */
    WMI_PDEV_PARAM_RX_CHAIN_MASK_2G,                  /* 0x49 */
    /** 5G TX chain mask */
    WMI_PDEV_PARAM_TX_CHAIN_MASK_5G,                  /* 0x4a */
    /** 5G RX chain mask */
    WMI_PDEV_PARAM_RX_CHAIN_MASK_5G,                  /* 0x4b */
    /* Set tx chain mask for CCK rates */
    WMI_PDEV_PARAM_TX_CHAIN_MASK_CCK,                 /* 0x4c */
    /* Set tx chain mask for 1SS stream */
    WMI_PDEV_PARAM_TX_CHAIN_MASK_1SS,                 /* 0x4d */
    /* Enable/Disable CTS2Self for P2P GO when Non-P2P Client is connected */
    WMI_PDEV_PARAM_CTS2SELF_FOR_P2P_GO_CONFIG,        /* 0x4e */
    /** TX power backoff in dB: tx power -= param value
     * Host passes values(DB) to Halphy, Halphy reduces the power table by
     * the values. Safety check will happen in Halphy
     */
    WMI_PDEV_PARAM_TXPOWER_DECR_DB,                   /* 0x4f */
    /** enable and disable aggregate burst along with duration */
    WMI_PDEV_PARAM_AGGR_BURST,                        /* 0x50 */
    /** Set the global RX decap mode */
    WMI_PDEV_PARAM_RX_DECAP_MODE,                     /* 0x51 */
    /** Enable/Disable Fast channel reset */
    WMI_PDEV_PARAM_FAST_CHANNEL_RESET,                /* 0x52 */
    /** Default antenna for Smart antenna */
    WMI_PDEV_PARAM_SMART_ANTENNA_DEFAULT_ANTENNA,     /* 0x53 */
    /** Set the user-specified antenna gain */
    WMI_PDEV_PARAM_ANTENNA_GAIN,                      /* 0x54 */
    /** Set the user-specified RX filter */
    WMI_PDEV_PARAM_RX_FILTER,                         /* 0x55 */
    /** configure the user-specified MCAST tid for managed mcast feature
     *  0-15 is the valid range. 0xff will clear the tid setting */
    WMI_PDEV_SET_MCAST_TO_UCAST_TID,                  /* 0x56 */
    /** Enable/Disable Proxy sta mode */
    WMI_PDEV_PARAM_PROXY_STA_MODE,                    /* 0x57 */
    /** configure the mcast2ucast mode for the pdev->peer_mcast.
     *  See WMI_PEER_MCAST2UCAST_MODE for possible values */
    WMI_PDEV_PARAM_SET_MCAST2UCAST_MODE,              /* 0x58 */
    /** Sets the Mcast buffers for cloning, to support Mcast enhancement */
    WMI_PDEV_PARAM_SET_MCAST2UCAST_BUFFER,            /* 0x59 */
    /** Remove the Mcast buffers added by host */
    WMI_PDEV_PARAM_REMOVE_MCAST2UCAST_BUFFER,         /* 0x5a */
    /** En/disable station power save state indication */
    WMI_PDEV_PEER_STA_PS_STATECHG_ENABLE,             /* 0x5b */
    /** Access category on which ARP frames are sent */
    WMI_PDEV_PARAM_IGMPMLD_AC_OVERRIDE,               /* 0x5c */
    /** allow or disallow interbss frame forwarding */
    WMI_PDEV_PARAM_BLOCK_INTERBSS,                    /* 0x5d */
    /** Enable/Disable reset */
    WMI_PDEV_PARAM_SET_DISABLE_RESET_CMDID,           /* 0x5e */
    /** Enable/Disable/Set MSDU_TTL in milliseconds. */
    WMI_PDEV_PARAM_SET_MSDU_TTL_CMDID,                /* 0x5f */
    /** Set global PPDU duration limit (usec). */
    WMI_PDEV_PARAM_SET_PPDU_DURATION_CMDID,           /* 0x60 */
    /** set txbf sounding period of vap in milliseconds */
    WMI_PDEV_PARAM_TXBF_SOUND_PERIOD_CMDID,           /* 0x61 */
    /** Set promiscuous mode */
    WMI_PDEV_PARAM_SET_PROMISC_MODE_CMDID,            /* 0x62 */
    /** Set burst mode */
    WMI_PDEV_PARAM_SET_BURST_MODE_CMDID,              /* 0x63 */
    /** enable enhanced stats */
    WMI_PDEV_PARAM_EN_STATS,                          /* 0x64 */
    /** Set mu-grouping policy */
    WMI_PDEV_PARAM_MU_GROUP_POLICY,                   /* 0x65 */
    /** Channel Hopping Enable */
    WMI_PDEV_PARAM_NOISE_DETECTION,                   /* 0x66 */
    /** Set Channel Hopping NF threshold in dBm */
    WMI_PDEV_PARAM_NOISE_THRESHOLD,                   /* 0x67 */
    /** Set PAPRD policy */
    WMI_PDEV_PARAM_DPD_ENABLE,                        /* 0x68 */
    /** Enable/disable mcast/bcast echo, used by ProxySTA */
    WMI_PDEV_PARAM_SET_MCAST_BCAST_ECHO,              /* 0x69 */
    /** ATF enable/disable strict schedule */
    WMI_PDEV_PARAM_ATF_STRICT_SCH,                    /* 0x6a */
    /** ATF set access category duration, B0-B29 duration, B30-B31: AC */
    WMI_PDEV_PARAM_ATF_SCHED_DURATION,                /* 0x6b */
    /** Default antenna polarization */
    WMI_PDEV_PARAM_ANT_PLZN,                          /* 0x6c */
    /** Set mgmt retry limit */
    WMI_PDEV_PARAM_MGMT_RETRY_LIMIT,                  /* 0x6d */
    /** Set CCA sensitivity level in dBm */
    WMI_PDEV_PARAM_SENSITIVITY_LEVEL,                 /* 0x6e */
    /** Set 2G positive and negative Tx power in 0.5dBm units */
    WMI_PDEV_PARAM_SIGNED_TXPOWER_2G,                 /* 0x6f */
    /** Set 5G positive and negative Tx power in 0.5dBm
     *  units */
    WMI_PDEV_PARAM_SIGNED_TXPOWER_5G,                 /* 0x70 */
    /** Enable/disable AMSDU for tids */
    WMI_PDEV_PARAM_ENABLE_PER_TID_AMSDU,              /* 0x71 */
    /** Enable/disable AMPDU for tids */
    WMI_PDEV_PARAM_ENABLE_PER_TID_AMPDU,              /* 0x72 */
    /** Set CCA threshold in dBm */
    WMI_PDEV_PARAM_CCA_THRESHOLD,                     /* 0x73 */
    /** RTS Fixed rate setting */
    WMI_PDEV_PARAM_RTS_FIXED_RATE,                    /* 0x74 */
    /** Pdev reset */
    WMI_PDEV_PARAM_PDEV_RESET,                        /* 0x75 */
    /** wapi mbssid offset **/
    WMI_PDEV_PARAM_WAPI_MBSSID_OFFSET,                /* 0x76 */
    /** ARP DEBUG source address*/
    WMI_PDEV_PARAM_ARP_DBG_SRCADDR,                   /* 0x77 */
    /** ARP DEBUG destination address*/
    WMI_PDEV_PARAM_ARP_DBG_DSTADDR,                   /* 0x78 */
    /** ATF enable/disable obss noise scheduling */
    WMI_PDEV_PARAM_ATF_OBSS_NOISE_SCH,                /* 0x79 */
    /** ATF obss noise scaling factor */
    WMI_PDEV_PARAM_ATF_OBSS_NOISE_SCALING_FACTOR,     /* 0x7a */
    /**
     * TX power reduction scaling exponent - final tx power is the
     * nominal tx power (A_MIN(reg_pow,ctl,etc..)) divided by
     * 2^(scale exponent).  For example:
     * If this scale exponent is  0, the power is unchanged (divided by 2^0)
     * If this factor is 1, the power is scaled down by 2^1, i.e. 3 dB
     * If this factor is 2, the power is scaled down by 2^2, i.e. 6 dB
     * If this factor is 3, the power is scaled down by 2^3, i.e. 9 dB
     */
    WMI_PDEV_PARAM_CUST_TXPOWER_SCALE,                /* 0x7b */
    /** ATF enabe/disable dynamically */
    WMI_PDEV_PARAM_ATF_DYNAMIC_ENABLE,                /* 0x7c */
    /** Set tx retry limit for control frames. 0 = disable, 31 = max */
    WMI_PDEV_PARAM_CTRL_RETRY_LIMIT,                  /* 0x7d */
    /** Set propagation delay for 2G / 5G band.
     * The propagation delay is fundamentally a per-peer property, but
     * the target may not support per-peer settings for ack timeouts.
     * This pdev parameter allows the MAC-level ack timeout to be set to
     * a value suitable for the worst-case propagation delay of any peer
     * within that pdev.
     * Units are microseconds.
     */
    WMI_PDEV_PARAM_PROPAGATION_DELAY,                 /* 0x7e */
    /**
     * Host can enable/disable ANT DIV feature
     * if it's been enabled in BDF
     */
    WMI_PDEV_PARAM_ENA_ANT_DIV,                       /* 0x7f */
    /** Host can force one chain to select a specific ANT */
    WMI_PDEV_PARAM_FORCE_CHAIN_ANT,                   /* 0x80 */
    /**
     * Start a cycle ANT self test periodically.
     * In the test, the FW would select each ANT pair
     * one by one, the cycle time could be configured
     * via WMI_PDEV_PARAM_ANT_DIV_SELFTEST_INTVL
     */
    WMI_PDEV_PARAM_ANT_DIV_SELFTEST,                  /* 0x81 */
    /**
     * Configure the cycle time of ANT self test,
     * the unit is micro second. Per the timer
     * limitation, too small value could be not so
     * accurate.
     */
    WMI_PDEV_PARAM_ANT_DIV_SELFTEST_INTVL,            /* 0x82 */
    /**
     * wlan stats observation period, the unit is millisecond.
     * The value of 0 is used to turn off periodic stats report.
     */
    WMI_PDEV_PARAM_STATS_OBSERVATION_PERIOD,          /* 0x83 */
    /**
     * Set tx_ppdu_delay[] bin size to specify how many
     * milliseconds each bin of the wmi_tx_stats.tx_ppdu_delay[]
     * histogram represents.
     */
    WMI_PDEV_PARAM_TX_PPDU_DELAY_BIN_SIZE_MS,         /* 0x84 */
    /** set wmi_tx_stats.tx_ppdu_delay[] array length */
    WMI_PDEV_PARAM_TX_PPDU_DELAY_ARRAY_LEN,           /* 0x85 */
    /** set wmi_tx_stats.tx_mpdu_aggr[] array length */
    WMI_PDEV_PARAM_TX_MPDU_AGGR_ARRAY_LEN,            /* 0x86 */
    /** set wmi_rx_stats.rx_mpdu_aggr[] array length */
    WMI_PDEV_PARAM_RX_MPDU_AGGR_ARRAY_LEN,            /* 0x87 */
    /** Set TX delay value in TX sch module, unit is microseconds */
    WMI_PDEV_PARAM_TX_SCH_DELAY,                      /* 0x88 */
    /** Set RTS enable for SIFS bursting */
    WMI_PDEV_PARAM_ENABLE_RTS_SIFS_BURSTING,          /* 0x89 */
    /** Set Maximum number of MPDUs in an AMPDU*/
    WMI_PDEV_PARAM_MAX_MPDUS_IN_AMPDU,                /* 0x8a */

    /** Enable/disable peer stats info mechanism
     * A zero value disables; a non-zero value enables.
     */
    WMI_PDEV_PARAM_PEER_STATS_INFO_ENABLE,            /* 0x8b */

    /** Configure Fast PWR Transition mode
     * 0x0 -> inidcates Fast PWR transition disabled
     * 0x1 -> indicates Static mode enabled
     * 0x2 -> indicates Dynamic mode enabled
     */
    WMI_PDEV_PARAM_FAST_PWR_TRANSITION,               /* 0x8c */

    /** Enable/disable radio channel stats mechanism
     *  A zero value disables; a non-zero value enables.
     */
    WMI_PDEV_PARAM_RADIO_CHAN_STATS_ENABLE,           /* 0x8d */
    /** Enable/disable radio diagnosis feature
     *  which allows retrieving the status of radio.
     *  A zero value disables; a non-zero value enables.
     */
    WMI_PDEV_PARAM_RADIO_DIAGNOSIS_ENABLE,            /* 0x8e */
    /** Enable/Disable mesh mcast traffic
     * 1 - Allow mesh mcast traffic
     * 0 - Disallow mesh mcast traffic
     */
    WMI_PDEV_PARAM_MESH_MCAST_ENABLE,                 /* 0x8f */
    /** Enable/Disable smart chainmask scheme
      * 1 - Enable smart chainmask scheme
      * 0 - Disable smart chainmask scheme
      */
    WMI_PDEV_PARAM_SMART_CHAINMASK_SCHEME,            /* 0x90 */
    /** Enable/Disable alternate chainmask scheme
     * 1 - Enable alternate chainmask scheme
     * 0 - Disable alternate chainmask scheme
     */
    WMI_PDEV_PARAM_ALTERNATIVE_CHAINMASK_SCHEME,      /* 0x91 */
    /** User configured parameters for antenna diversity algorithm
     *  BIT[25..13]: Probe period (milliseconds units)
     *  BIT[12..0]: Stay period (milliseconds units)
     */
    WMI_PDEV_PARAM_ANT_DIV_USRCFG,                    /* 0x92 */
    /** pdev packet power save levels,
     *  refer to WMI_PDEV_PKT_PWR_SAVE_LEVEL
     */
    WMI_PDEV_PARAM_PACKET_POWER_SAVE_LEVEL,           /* 0x93 */
    /** Define IOT pattern to be enabled/disabled
      * bit values: 0 - disable, 1 - enable
      * BIT[0..31]: each bit represents an IOT pattern
      * -----
      * Bit 0 - avoid SMPS with certain APs
      * Bits 31:1 - reserved
      */
    WMI_PDEV_PARAM_SET_IOT_PATTERN,                   /* 0x94 */
    /** ACK timeout - change wireless packet ack timeout configuration,
     *  units are microseconds
     */
    WMI_PDEV_PARAM_ACK_TIMEOUT,                       /* 0x95 */
    /** Number of TX chains to use for a/b/g rates.
     *  bit 0~15  : 11b mode TX chain number.
     *  bit 16~31 : 11ag mode TX chain number.
     */
    WMI_PDEV_PARAM_ABG_MODE_TX_CHAIN_NUM,             /* 0x96 */
    /** Enable/Disable cck txfir override
     *  bit 0 - enable (1) or disable (0) CCK tx FIR
     *  bits 31:1 - unused / reserved (set to 0)
     */
    WMI_PDEV_PARAM_ENABLE_CCK_TXFIR_OVERRIDE,         /* 0x97 */
    /** Enable/Disable DTIM Synth
     *   1- Enable DTIM Synth
     *   0- Disable DTIM Synth
     */
    WMI_PDEV_PARAM_DTIM_SYNTH,                        /* 0x98 */
    /** Configure auto detect power failure feature.
     *   0 - FW will trigger crash if power failure happens.
     *   1 - FW will send a failure notification to host, and the host
     *       framework determines how to respond to the power failure
     *   2 - Silently rejuvenate if power failure occurs.
     *   3 - Feature disabled.
     */
    WMI_PDEV_AUTO_DETECT_POWER_FAILURE,               /* 0x99 */
    /** Configure operating voltage corner mode based on phymode and bw.
     * bit 0-1 -   operating voltage corner mode for 11a/b.
     * bit 2-3 -   operating voltage corner mode for 11g.
     * bit 4-5 -   operating voltage corner mode for 11n, 20MHz, 1x1.
     * bit 6-7 -   operating voltage corner mode for 11n, 20MHz, 2x2.
     * bit 8-9 -   operating voltage corner mode for 11n, 40MHz, 1x1.
     * bit 10-11 - operating voltage corner mode for 11n, 40MHz, 2x2.
     * bit 12-13 - operating voltage corner mode for 11ac, 20MHz, 1x1.
     * bit 14-15 - operating voltage corner mode for 11ac, 20MHz, 2x2.
     * bit 16-17 - operating voltage corner mode for 11ac, 40MHz, 1x1.
     * bit 18-19 - operating voltage corner mode for 11ac, 40MHz, 2x2.
     * bit 20-21 - operating voltage corner mode for 11ac, 80MHz, 1x1.
     * bit 22-23 - operating voltage corner mode for 11ac, 80MHz, 2x2.
     * bit 24-25 - operating voltage corner mode for 11ac, 160MHz, 1x1.
     * bit 26-27 - operating voltage corner mode for 11ac, 160MHz, 2x2.
     * ---------------------------------------------
     * 00 - Static voltage corner SVS
     * 01 - static voltage corner LOW SVS
     * 10 - Dynamic voltage corner selection based on TPUT
     * 11 - Dynamic voltage corner selection based on TPUT and Tx Flush counters
     */
    WMI_PDEV_UPDATE_WDCVS_ALGO,                       /* 0x9a */

    /* Enable/Disable data stall detection */
    WMI_PDEV_PARAM_DATA_STALL_DETECT_ENABLE,          /* 0x9b */
    /* GCMP Support indication to FW */
    WMI_PDEV_PARAM_GCMP_SUPPORT_ENABLE,               /* 0x9c */
    /** Enable/Disable chain selection optimization for one chain dtim
     *   non-zero - Enable optimization and use this non-zero value as the
     *              chain imbalance threshold for optimization to kick in
     *              (units = dB)
     *   0- Disable optimization
     */
    WMI_PDEV_PARAM_1CH_DTIM_OPTIMIZED_CHAIN_SELECTION,/* 0x9d */
    /*
     * Override default FW behavior and explicitly enable / disable
     * the use of CCK for PPDU transmissions.
     *
     * When CCK transmissions are disabled, the default OFDM legacy
     * rate will be used instead.
     */
    WMI_PDEV_PARAM_CCK_TX_ENABLE,                     /* 0x9e */
    /*
     * Set the user-specified antenna gain, but in 0.5 dB units.
     * This is a finer-granularity version of WMI_PDEV_PARAM_ANTENNA_GAIN.
     * E.g. to set a gain of 15.5 dB, a value of 31 could be provided as the
     * value accompanying the PDEV_PARAM_ANTENNA_GAIN_HALF_DB parameter type.
     */
    WMI_PDEV_PARAM_ANTENNA_GAIN_HALF_DB,              /* 0x9f */
    /*
     * Global Enable/Disable control for Secondary Retry Feature Set
     *
     * Bit-0  : Enable/Disable Control for "PPDU Secondary Retry Support"
     * Bit-1  : Enable/Disable Control for "RTS Black/White-listing Support"
     * Bit-2  : Enable/Disable Control for "Higher MCS retry restriction on XRETRY failures"
     * Bit 3-5: "Xretry threshold" to use
     */
    WMI_PDEV_PARAM_SECONDARY_RETRY_ENABLE,            /* 0xA0 */
    /** Set global uplink triggered PPDU duration limit (usec). */
    WMI_PDEV_PARAM_SET_UL_PPDU_DURATION,              /* 0xA1 */
    /** Set target buffer status report trigger interval (ms) */
    WMI_PDEV_PARAM_SET_UL_BSR_TRIG_INTERVAL,          /* 0xA2 */
    /** Use simplified equal RU allocation for DL and UL OFDMA */
    WMI_PDEV_PARAM_EQUAL_RU_ALLOCATION_ENABLE,        /* 0xA3 */
    /** Enable/disable MWS-COEX 4G (LTE) Quick FTDM.
     * 0 - Don't allow quick FTDM Policy (Default)
     * 1 - Allow quick FTDM policy.
     */
    WMI_PDEV_PARAM_MWSCOEX_4G_ALLOW_QUICK_FTDM,       /* 0xA4 */
    /** Set MWS-COEX 5G-NR power limit.
     * 0:    Don't apply user specific power limit,
     *       use internal power limit (Default)
     * 1-2:  invalid value (ignored)
     * 3-21: apply the specified value as the external power limit, in dBm
     * >21:  invalid value (ignored)
     */
    WMI_PDEV_PARAM_MWSCOEX_SET_5GNR_PWR_LIMIT,        /* 0xA5 */
    /** Set max msdus available for cong ctrl in target */
    WMI_PDEV_PARAM_SET_CONG_CTRL_MAX_MSDUS,           /* 0xA6 */
    /*
     * Configures the Estimated Throughput Calculation indication (802.11mc) settings.
     * The accompanying A_UINT32 parameter, in units of seconds, specifies how often FW needs to send the ESP estimation indication to the host.
     * Value 0: Disable this feature
     * Non zero Value: Periodicity (seconds)
     */
    WMI_PDEV_PARAM_ESP_INDICATION_PERIOD,             /* 0xA7 */

    /*
     * Enable/Disable periodic peer CFR capture
     * WMI_PEER_CFR_CAPTURE_ENABLE - Enable per peer periodic CFR capture
     * WMI_PEER_CFR_CAPTURE_DISABLE - Disable per peer periodic CFR capture
     */
    WMI_PDEV_PARAM_PER_PEER_PERIODIC_CFR_ENABLE,

    /*
     * Set the base timer for the periodic CFR capture. By default this is 10ms.
     * The period ('periodicity' param in wmi_peer_cfr_capture_cmd) of
     * CFR measurement of other peers will be in multiples of this base timer.
     * The unit is in milliseconds.
     */
    WMI_PDEV_PARAM_PERIODIC_CFR_BASE_TIMER,

    /*
     * Once the periodic capture is enabled using
     * WMI_PDEV_PARAM_PER_PEER_PERIODIC_CFR_ENABLE, the timer starts running in
     * the target. This parameter will ensure that the timer stops if there are
     * no active peers in the capture list. Once the peers are added again to
     * the capture list, the timer will not start again. The timer has to be
     * started again using WMI_PDEV_PARAM_PER_PEER_PERIODIC_CFR_ENABLE.
     * Value 1: Enable this feature
     * Value 0: Disable this feature
     */
    WMI_PDEV_PARAM_ENABLE_OPTIMIZED_PERIODIC_CFR_TIMER,

    /*
     * Configures a portion of the Estimated Service Params indication
     * (802.11mc) settings, which together specify estimated throughput.
     * The accompanying A_UINT32 parameter is the ESP BA WINDOW size advertised
     * Value 0: Disable this feature
     * Non zero Value: ESP BA WINDOW size
     */
    WMI_PDEV_PARAM_ESP_BA_WINDOW,

    /*
     * Configures a portion of the Estimated Service Params indication
     * (802.11mc) settings, which together specify estimated throughput.
     * The accompanying A_UINT32 parameter is the air time fraction to be
     * advertised in the ESP IE
     * Value 0: Disable this feature
     * Non zero Value: Air time fraction in percentage
     */
    WMI_PDEV_PARAM_ESP_AIRTIME_FRACTION,

    /*
     * Configures a portion of the Estimated Service Params indication
     * (802.11mc) settings, which together specify estimated throughput.
     * The accompanying A_UINT32 parameter specifies PPDU duration in units
     * of milliseconds.
     * Value 0: Disable this feature
     * Non zero Value: PPDU duration in milliseconds
     */
    WMI_PDEV_PARAM_ESP_PPDU_DURATION,

    /*
     * Enable/Disable NOL(Non Occupancy list) in firmware
     *   1- Use NOL in firmware
     *   0- Don't use NOL in firmware
     */
    WMI_PDEV_PARAM_USE_NOL,

    /*
     * Allow / Not Allow RU26 in any user's RU allocation field in UL OFDMA
     * trigger frames sent by AP
     *  1 - Allow RU26
     *  0 - Do not allow RU26
     */
    WMI_PDEV_PARAM_UL_RU26_ALLOWED,

    /*
     * Enable/Disable sub channel marking
     *  1 - Enable sub channel marking
     *  0 - Disable sub channel marking (default value)
     */
    WMI_PDEV_PARAM_SUB_CHANNEL_MARKING,

    /*
     * Enable/Disable/Set MGMT_TTL in milliseconds.
     * non_zero - Enable, with the specified value
     * 0 - Disable
     */
    WMI_PDEV_PARAM_SET_MGMT_TTL,

    /*
     * Enable/Disable/Set PROBE_RESP_TTL in milliseconds.
     * non_zero - Enable, with the specified value
     * 0 - Disable
     */
    WMI_PDEV_PARAM_SET_PROBE_RESP_TTL,

    /*
     * TBTT_CTRL_CFG
     * BITS 0 - 2 (refer to WMI_TBTT_CTRL_CFG enum)
     *   0  - DEFAULT -> HW_TBTT
     *   1  - SW_TBTT -> HW_TBTT disabled,
     *        software would truncate BURST near TBTT
     *   2  - IGNORE_TBTT
     *
     * BITS 3 - 31 Reserved, must be set to 0x0
     */
    WMI_PDEV_PARAM_SET_TBTT_CTRL,

    /*
     * BITS0 ~1 (refer to enum)
     * 0 - default --> always update
     * 1 - ignore to update
     * 2 - update if larger than threshould
     * 3 - update if less or equal than threshould
     *
     * BITS 2 ~ 31 Threshould
     */
    WMI_PDEV_PARAM_NAV_OVERRIDE_CONFIG,

    /* Set global MU PPDU duration for DL (usec units) */
    WMI_PDEV_PARAM_SET_MU_PPDU_DURATION,

    /*
     * Enable / disable test mode configuration.
     * By default FW will always send triggers dynamically (mix of BSR/Basic).
     * The below testmode are only used for certain tests.
     * A value of 1 in a given bit enables corresponding test mode.
     * bit | test mode
     * ---------------
     *  0  | FW only sends BSR triggers.
     *  1  | FW only sends Basic triggers.
     *  2  | If set, FW enables MU-RTS trigger.
     *     | If cleared, FW uses implementation-specific internal default setting.
     *  3  | FW enables unicast embedded trigger in HE MU PPDU.
     * 4-31| reserved.
     */
    WMI_PDEV_PARAM_SET_TEST_CMD_UL_TRIGGER_TYPE_ENABLE,

    /*
     * Configure test command to set LSIG len.
     * Value 0: Dynamic LSIG based on STA's qdepth.
     * Non zero Value: LSIG length to be configured
     *                 as part of trigger frame.
     *   bit   |
     * ---------------
     *  0 - 30 | Bits storing the host supplied <value>.
     *  31     | If set: The legitimate value closest to the value specified in
     *         |   in bits 30:0 is directly set in UL len in trigger frame.
     *         |   The FW performs calculations to determine which legitimate
     *         |   value is closest to the specified value, if the specified
     *         |   value is not already legitimate.
     *         | If not set: The value in lower bits is the duration (in ms),
     *         |   from which the UL len is derived.
     *         |   Example: if host sets 2000 (2ms), then UL Len in trigger
     *         |   will be derived to accommodate the given duration.
     */
    WMI_PDEV_PARAM_SET_TEST_CMD_UL_TRIGGER_LSIG_LEN,

    /*
     * Configure test cmd for fixed rate setting used for UL Trigger
     * (only Basic/BSR triggers).
     * The top nibble is used to select which format to use for encoding
     * the rate specification: 0xVXXXXXXX, V must be 1 for the UL
     * format.
     * If V == 0b0001: format is: 0x1000RRRR.
     *                 This will be output of WMI_ASSEMBLE_RATECODE_V1
     *
     */
    WMI_PDEV_PARAM_SET_TEST_CMD_UL_TRIGGER_FIXED_RATE,

    /*
     * Configure test command to set the mac padding duration.
     *  0 - FW set Mac Padding to 0us
     *  1 - FW set Mac Padding to 8us
     *  2 - FW set Mac Padding to 16us
     */
    WMI_PDEV_PARAM_SET_TEST_CMD_UL_MAC_PADDING,

    /*
     * Configure test command to set the fc duration in BSR trigger frame.
     *  value 0 - FW calculates the duration (default).
     *  Non zero Value: Duration to be configured.
     */
    WMI_PDEV_PARAM_SET_TEST_CMD_UL_BSR_FC_DURATION,

    /* Parameter used for configuring TWT scheduling properties
     * bit | config_mode
     * -----------------
     *  0  | Disables DL MU for TWT peers within TWT SP
     *  1  | Disables UL MU for TWT peers within TWT SP
     *  2  | Disables scheduling from WMM sched context for TWT peers
     *  3  | If set, FW only sends Basic triggers in TWT SP.
     * 4-31| reserved.
     */
    WMI_PDEV_PARAM_SET_TEST_CMD_TWT_SCHED_CONFIG,

    /* Parameter used to configure OBSS Packet Detect threshold
     * for Non-SRG / SRG based Spatial Reuse feature.
     * (SRG = Spatial Reuse Group)
     * The accepted values are in between 0x00 and 0xFF, inclusive.
     * The parameter value is programmed into the appropriate spatial reuse
     * register, to specify how low the background signal strength from
     * neighboring BSS cells must be, for this AP to employ spatial reuse.
     *
     * The value of the parameter is compared against the OBSS RSSI in dB.
     * It is a 8-bit value whose
     * range is -128 to 127 (after two's complement operation).
     * For example, if the parameter value is 0xF5, the target will
     * allow spatial reuse if the RSSI detected from other BSS
     * is below -10 dB.
     * Similarly, if the parameter value is 0x0A, the target will
     * allow spatial reuse only if the RSSI detected from neighboring
     * BSS cells is no more than 10 dB.
     *
     * If Bit 29 is set, then input value will be in dBm. This is used
     * for chipsets that uses dBm for comparison across MAC/Phy blocks.
     * Older chipsets support input in dB units. For newer chipsets, dBm
     * units will be used.
     * The host will use the WMI_SERVICE_SRG_SRP_SPATIAL_REUSE_SUPPORT
     * service ready bit to differentiate between providing input as dB or dBm.
     *
     * bit    | purpose
     * -----------------
     * 0  - 7 | Param Value for non-SRG based Spatial Reuse
     * 8  - 15| Param value for SRG based Spatial Reuse
     * 16 - 28| Reserved
     * 29     | Param value is in dBm units rather than dB units
     * 30     | Enable/Disable SRG based spatial reuse.
     *        | If set to 0, ignore bits 8-15.
     * 31     | Enable/Disable Non-SRG based spatial reuse.
     *        | If set to 0, ignore bits 0-7.
     */
    WMI_PDEV_PARAM_SET_CMD_OBSS_PD_THRESHOLD,

    /* Parameter used for enabling/disabling non wlan coex from boot */
    WMI_PDEV_PARAM_ENABLE_NON_WLAN_COEX_FROM_BOOT,

    /* Parameter used to configure OBSS Packet Detection per Access Category
     * for SRP based and OBSS_PD based spatial reuse feature.
     * (SRP = Spatial Reuse Parameter)
     * Based on the bits set, the corresponding Access Category Queues will have
     * spatial reuse enabled / disabled.
     * bit     | AC
     * ------------
     * 0       | BK for SRG/Non-SRG
     * 1       | BE for SRG/Non-SRG
     * 2       | VI for SRG/Non-SRG
     * 3       | VO for SRG/Non-SRG
     * 4 - 15  | Reserved
     * 16      | BK for SRP
     * 17      | BE for SRP
     * 18      | VI for SRP
     * 19      | VO for SRP
     * 20 - 31 | Reserved
     */
    WMI_PDEV_PARAM_SET_CMD_OBSS_PD_PER_AC,

    /*
     * Parameter used to enable/disable FW control of MU-EDCA and AP back-off
     * parameters.
     * If set to zero, FW mode is disabled; if set to 1, FW mode is enabled.
     * Default setting is to have it enabled, and user can disable it in
     * favor of manual mode or host control mode.
     */
    WMI_PDEV_PARAM_ENABLE_FW_DYNAMIC_HE_EDCA,

    /*
     * Parameter used to set default 6 GHz rate.
     * Applies to all non data transmissions in 6 GHz unless
     * overwritten by respective VDEV params.
     */
    WMI_PDEV_PARAM_DEFAULT_6GHZ_RATE,

    /*
     * Configures the duration (in seconds) to delay the channel avoidance
     * indication at WLAN firmware before indicating it to WLAN host,
     * when WWAN (LTE/5GNR) PCC is in conflict due to WWAN-WLAN coexistence.
     * Default value is 60 seconds.
     * If set to zero, FW sends channel avoidance indcation immediately to Host.
     */
    WMI_PDEV_PARAM_MWSCOEX_PCC_CHAVD_DELAY,

    /*
     * Configures the duration (in seconds) to delay the channel avoidance
     * indication at WLAN firmware before indicating it to WLAN host,
     * when WWAN (LTE/5GNR) SCC is in conflict due to WWAN-WLAN coexistence.
     * Default value is 120 seconds.
     * If set to zero, FW sends channel avoidance indcation immediately to Host.
     */
    WMI_PDEV_PARAM_MWSCOEX_SCC_CHAVD_DELAY,

    /*
     * Parameter used to set ageout timer value from host (units = seconds).
     * If not set, FW use default value 2 seconds.
     * ageout time: the time upto which DFS channel information such as
     * beacon found is remembered
     */
    WMI_PDEV_PARAM_SET_DFS_CHAN_AGEOUT_TIME,

    /* Parameter used for enabling/disabling xlna bypass for SAP mode*/
    WMI_PDEV_PARAM_SET_SAP_XLNA_BYPASS,

    /* Parameter used to enable/disable SRP feature */
    WMI_PDEV_PARAM_ENABLE_SRP,

    /* Parameter used to enable/disable SR prohibit feature */
    WMI_PDEV_PARAM_ENABLE_SR_PROHIBIT,

    /*
     * Parameter used to enable/disable UL OFDMA mBSSID support for
     * trigger frames. It is disabled by default.
     * bit | config_mode
     * -----------------
     *  0  | Enable/Disable mBSSID trigger support for basic triggers.
     *  1  | Enable/Disable mBSSID trigger support for BSR triggers.
     *  2  | Enable/Disable mBSSID trigger support for MU RTS.
     *  3  | Enable/Disable mBSSID trigger support for UL MUMIMO triggers.
     */
    WMI_PDEV_PARAM_ENABLE_MBSSID_CTRL_FRAME,

    /*
     * Parameter to set preamble punctured band as a bitmask, i.e.
     * which 20MHz in the 80MHz bandwidth or 40MHz in 160MHz bandwidth.
     * E.g. if first 20MHz is the primary and preamble puncturing is
     * desired for 3rd 20Mhz, then the host will send 0x0100.
     * FW doesn't expect the primary 20MHz to be punctured.
     * This param is required only for 11ax release.
     */
    WMI_PDEV_PARAM_SET_PREAM_PUNCT_BW,

    /*
     * Parameter used to set the Margin dB value to be included for calculating
     * the spatial reuse value in common info field of the UL Trigger frame.
     * Accepted value as per Spec are 0 to 5 dB (inclusive).
     */
    WMI_PDEV_PARAM_SR_TRIGGER_MARGIN,

    /* Param to enable/disable PCIE HW ILP */
    WMI_PDEV_PARAM_PCIE_HW_ILP,

    /*
     * Configure the TXTD_START_TIMESTAMP parameters
     * The timestamp units are nanoseconds.
     * This parameter can be used to adjust at what point the TXTD module
     * will start operating after the STA connects to an AP.
     */
    WMI_PDEV_PARAM_SET_TXTD_START_TIMESTAMP,

    /*
     * Parameter to configure and enable/disable features for mesh usecases
     * bit    | config_mode
     * -----------------
     *  0     | Set to 1 to disable BSSID based spatial reuse.
     *  1-31  | Reserved.
     */
    WMI_PDEV_PARAM_SET_MESH_PARAMS,

    /* Param to enable low latency mode */
    WMI_PDEV_PARAM_LOW_LATENCY_SCHED_MODE,

    /* Param to enable per USERPD SSR - for MultiPD enabled chips */
    WMI_PDEV_PARAM_MPD_USERPD_SSR,

    /*
     * Param to disable Hardware Assist feature,
     * i.e. Disables HW feature that reconstructs the PPDU
     * by picking failing MPDUs from prior FES attempt.
     */
    WMI_PDEV_PARAM_DISABLE_HW_ASSIST,

    /*
     * Param to Enable/Disable Tx on DFS for Scan Radio RDP
     * Send MGMT frames on the DFS channel before Tx on the said channel
     * when in monitor mode.
     * Scan Radio RDP should do Tx on DFS channel based on available
     * Tx frame on DFS without doing CAC.
     * Host should ensure to send this param only for Scan Radio RDP.
     * This param used to inform Scan Radio Supports Tx on DFS channel.
     */
    WMI_PDEV_PARAM_SCAN_RADIO_TX_ON_DFS,

    /*
     * Param to configure Minimum OBSS ppdu time below which
     * spatial reuse will not happen over the TXOP duration of the OBSS frame.
     * If the incoming OBSS frame ppdu duration is greater then the value
     * configured, then spatial reuse can happen over the OBSS PPDU.
     * The value is configured in microseconds.
     */
    WMI_PDEV_PARAM_OBSS_MIN_DURATION_CHECK_FOR_SR,

    /*
     * Param to Enable/Disable Truncate SR feature.
     * PPDUs transmitted using SR opportunity will be truncated at the end
     * of OBSS frame duration and will not extend beyond.
     */
    WMI_PDEV_PARAM_TRUNCATE_SR,

    /* Parameter used to configure separate NON_SRG/SRG OBSS PD threshold for
     * for Control Frame.
     * (SRG = Spatial Reuse Group)
     * The accepted values are in between 0x00 and 0xFF, inclusive.
     * The parameter value is checked against the RSSI of the OBSS Control
     * frame. If RSSI is below the parameter value, then the Control frame is
     * aborted and NAV is ignored. Separate OBSS PD threshold for Control frame
     * is added to account for the higher TX power used for such control frames
     * when compared with data frames.
     *
     * The input value will be interpreted as a signed value in dBm units.
     *
     * The values will be reflected in the registers only if
     * SRG / non-srg based spatial reuse is enabled via
     * WMI_PDEV_PARAM_SET_CMD_OBSS_PD_THRESHOLD cmd.
     * bit    | purpose
     * -----------------
     * 0  - 7 | Param Value for non-srg OBSS PD threshold for non-SRG
     *        | control frames
     * 8  - 15| Param Value for srg OBSS PD threshold for SRG control frames
     * 16 - 29| Reserved
     * 30     | Enable/Disable separate SRG based spatial reuse for OBSS
     *        | control frames.
     *        | If set to 0, ignore bits 8-15.
     * 31     | Enable/Disable separate non-SRG based spatial reuse for OBSS
     *        | control frames.
     *        | If set to 0, ignore bits 0-7.
     */
    WMI_PDEV_PARAM_CTRL_FRAME_OBSS_PD_THRESHOLD,

    /* Param to configure the access category for the TWT queue */
    WMI_PDEV_PARAM_TWT_AC_CONFIG,

    /*
     * TX xretry extension parameter to allow product specific adjustment.
     * I.e. multiply the xretry counter by N% for a requirement from framework.
     */
    WMI_PDEV_PARAM_PDEV_STATS_TX_XRETRY_EXT,

    /*
     * Per PDEV level, set the highest rate cap allowed.
     * The accepted input values NSS are between 1-8, inclusive.
     * The accepted input values MCS are between 0-15, inclusive.
     * FW will use the input values as is.
     * The rate cap is specified in NSS, MCS format each 4bits.
     * i.e., NSS and MCS combined as shown below:
     * b'0-b'7  indicate the NSS (NSS value can be from 1-8)
     * b'8-b'15 indicate the MCS (MCS value can be from 0-15)
     * b'16 Enable or disable nss cap
     * b'17 Enable or disable mcs cap
     */
    WMI_PDEV_PARAM_RATE_UPPER_CAP,

    /*
     * Per PDEV level, set number of MCS to be dropped based
     * on configured retries.
     *  bit | config_mode
     *  -----------------
     *  0-7 | param value for number MCS to be dropped
     *  8-15| param value for excess retries
     *  16  | If set to 0, number of MCS to be dropped is disabled, i.e.
     *      | fall back to default mode.
     *      | The default value of MCS to be dropped is 1.
     *  17  | if set to 0, retries is disabled/use default retries.
     *      | The default value of retries is 3.
     */
    WMI_PDEV_PARAM_SET_RATE_DROP_DOWN_RETRY_THRESH,

    /*
     * Param value to configure min/max probe interval for MCS of current NSS.
     * If probe interval expired, ratectrl will probe for MCS of current NSS.
     * If probe was successful, rate control updates the probe time with a
     * min of probe interval.
     * If probe failed for MCS of current NSS, rate control updates the probe
     * time by multiplying the probe period with 2, which is not greater than
     * max probe interval.
     * units = milliseconds
     *  bits | config_mode
     *  0-15 | minimum probe time for MCS
     *  16-31| maximum probe time for MCS
     */
    WMI_PDEV_PARAM_MIN_MAX_MCS_PROBE_INTERVAL,

    /* Param value to configure min/max probe interval for NSS.
     * Rate control will probe for alternate NSS if probe time is expired.
     * If probe for an alternate NSS was successful, rate control updates
     * the probe time with a min of probe interval.
     * If probe failed for alternate NSS, rate control updates the probe time
     * by multiplying the probe period with 2, which is not greater than
     * max probe interval.
     * units = milliseconds
     *  bits | config_mode
     *  0-15 | minimum probe time for alternate NSS
     *  16-32| maximum probe time for alternate NSS
     */
    WMI_PDEV_PARAM_MIN_MAX_NSS_PROBE_INTERVAL,

    /* Param to enable/disable probing on all BW */
    WMI_PDEV_PARAM_EN_PROBE_ALL_BW,

    /* Param to enable/disable updating scrambler seed feature */
    WMI_PDEV_PARAM_EN_UPDATE_SCRAM_SEED,

    /*
     * Param to set the GPIO Drive Configuration value for
     * Smart Antenna Parallel Mode
     */
    WMI_PDEV_PARAM_SA_PARALLEL_MODE_GPIO_DRIVE_CFG,

    /*
     * Param to disable LPI antenna optimizations
     * In 6G LPI mode, additional antenna optimizations are done to
     * improve range. Param is provided to disable the added
     * optimizations.
     */
    WMI_PDEV_PARAM_DISABLE_LPI_ANT_OPTIMIZATION,

    /*
     * Param to configure exclusive RSID range for 11az TB ranging.
     * RSID's are subset of total AID space and must not be used
     * for any other purpose by Host. FW uses these IDs for trigger
     * based ranging.
     */
    WMI_PDEV_PARAM_RTT_11AZ_RSID_RANGE,

    /*
     * Disable the indicated DL and UL scheduler for the PDEV.
     *
     * This command is not supported in STA mode.
     *
     * A value of 1 in a given bit position disables the corresponding mode,
     * and a value of 0 enables the mode. The WMI_SCHED_MODE_FLAGS enum defines
     * the bit positions for each mode.
     *
     * A single 32 bit value is used to store the following configuration
     * bitmap.
     *
     * This command differs from WMI_VDEV_PARAM_SET_HEMU_MODE and
     * WMI_VDEV_PARAM_SET_EHT_MU_MODE in that it is intended for use during
     * normal AP operation, and will never cause a VAP restart or other
     * capability bit modification. It simply controls the scheduler
     * behavior.
     *
     * bit   | sched mode
     * ---------------
     *   0   | DL MU-MIMO
     *   1   | UL MU-MIMO
     *   2   | DL OFDMA
     *   3   | UL OFDMA
     * 4..31 | RESERVED
     */
    WMI_PDEV_PARAM_SET_DISABLED_SCHED_MODES,

    /*
     * Override default FW behavior and explicitly enable / disable
     * to allow frames without encryption when no encryption is set.
     *
     */
    WMI_PDEV_PARAM_BYPASS_ENCRYPTION,

    /*
     * Param to Enable/Disable scan blanking feature on the Scan Radio
     * Host should ensure to send this param only for Scan Radio
     * The WMI_SCAN_BLANKING_MODE enum specifies the possible values for this parameter.
     * Based on the received input, the scan blanking feature will be carried out as explained in the enum WMI_SCAN_BLANKING_MODE
     */
    WMI_PDEV_PARAM_SET_SCAN_BLANKING_MODE,

    /*
     * Parameter to enable/disable Multi-Channel Concurrency low latency mode
     * bit    | config_mode
     * -----------------
     *  0     | 0:disable, 1:enable.
     *  1-31  | Reserved.
     */
    WMI_PDEV_PARAM_SET_CONC_LOW_LATENCY_MODE,

    /*
     * Parameter to enable/disable low power listen mode
     * bit    | config_mode
     * -----------------
     *  0     | 0:disable, 1:enable.
     *  1-31  | Reserved.
     */
    WMI_PDEV_PARAM_LPL_SETTING,
} WMI_PDEV_PARAM;

#define WMI_PDEV_ONLY_BSR_TRIG_IS_ENABLED(trig_type) WMI_GET_BITS(trig_type, 0, 1)
#define WMI_PDEV_ONLY_BSR_TRIG_ENABLE(trig_type) WMI_SET_BITS(trig_type, 0, 1, 1)
#define WMI_PDEV_ONLY_BSR_TRIG_DISABLE(trig_type) WMI_SET_BITS(trig_type, 0, 1, 0)

#define WMI_PDEV_ONLY_BASIC_TRIG_IS_ENABLED(trig_type) WMI_GET_BITS(trig_type, 1, 1)
#define WMI_PDEV_ONLY_BASIC_TRIG_ENABLE(trig_type) WMI_SET_BITS(trig_type, 1, 1, 1)
#define WMI_PDEV_ONLY_BASIC_TRIG_DISABLE(trig_type) WMI_SET_BITS(trig_type, 1, 1, 0)

#define WMI_PDEV_MU_RTS_IS_ENABLED(trig_type) WMI_GET_BITS(trig_type, 2, 1)
#define WMI_PDEV_MU_RTS_ENABLE(trig_type) WMI_SET_BITS(trig_type, 2, 1, 1)
#define WMI_PDEV_MU_RTS_DISABLE(trig_type) WMI_SET_BITS(trig_type, 2, 1, 0)

#define WMI_PDEV_EMBEDDED_TRIGGER_IS_ENABLED(trig_type) WMI_GET_BITS(trig_type, 3, 1)
#define WMI_PDEV_EMBEDDED_TRIGGER_ENABLE(trig_type) WMI_SET_BITS(trig_type, 3, 1, 1)
#define WMI_PDEV_EMBEDDED_TRIGGER_DISABLE(trig_type) WMI_SET_BITS(trig_type, 3, 1, 0)

#define WMI_PDEV_TWT_SCHED_CFG_IS_DL_MU_IS_ENABLED(twt_sched_cfg) WMI_GET_BITS(twt_sched_cfg, 0, 1)
#define WMI_PDEV_TWT_SCHED_CFG_DL_MU_ENABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 0, 1, 1)
#define WMI_PDEV_TWT_SCHED_CFG_DL_MU_DISABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 0, 1, 0)

#define WMI_PDEV_TWT_SCHED_CFG_IS_UL_MU_IS_ENABLED(twt_sched_cfg) WMI_GET_BITS(twt_sched_cfg, 1, 1)
#define WMI_PDEV_TWT_SCHED_CFG_UL_MU_ENABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 1, 1, 1)
#define WMI_PDEV_TWT_SCHED_CFG_UL_MU_DISABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 1, 1, 0)

#define WMI_PDEV_TWT_SCHED_CFG_IS_WMM_IS_ENABLED(twt_sched_cfg) WMI_GET_BITS(twt_sched_cfg, 2, 1)
#define WMI_PDEV_TWT_SCHED_CFG_WMM_ENABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 2, 1, 1)
#define WMI_PDEV_TWT_SCHED_CFG_WMM_DISABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 2, 1, 0)

#define WMI_PDEV_TWT_SCHED_CFG_IS_USE_ONLY_BASIC_TRIGGER_IS_ENABLED(twt_sched_cfg) WMI_GET_BITS(twt_sched_cfg, 3, 1)
#define WMI_PDEV_TWT_SCHED_CFG_USE_ONLY_BASIC_TRIGGER_ENABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 3, 1, 1)
#define WMI_PDEV_TWT_SCHED_CFG_USE_ONLY_BASIC_TRIGGER_DISABLE(twt_sched_cfg) WMI_SET_BITS(twt_sched_cfg, 3, 1, 0)

#define WMI_PDEV_LSIG_LEN_DURATION_ENABLE(lsig_len) WMI_SET_BITS(lsig_len, 0, 31, 1)
#define WMI_PDEV_LSIG_LEN_DURATION_DISABLE(lsig_len) WMI_SET_BITS(lsig_len, 0, 31, 0)
#define WMI_PDEV_LSIG_LEN_DURATION_GET(lsig_len) WMI_GET_BITS(lsig_len, 0, 30)
#define WMI_PDEV_LSIG_LEN_DURATION_SET(lsig_len, value) WMI_SET_BITS(lsig_len, 0, 30, value)

#define WMI_PDEV_IS_NON_SRG_ENABLED(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 31, 1)
#define WMI_PDEV_NON_SRG_ENABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 31, 1, 1)
#define WMI_PDEV_NON_SRG_DISABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 31, 1, 0)
#define WMI_PDEV_NON_SRG_PD_THRESHOLD_SET(pd_threshold_cfg, value) WMI_SET_BITS(pd_threshold_cfg, 0, 8, value)
#define WMI_PDEV_NON_SRG_PD_THRESHOLD_GET(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 0, 8)

#define WMI_PDEV_IS_SRG_ENABLED(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 30, 1)
#define WMI_PDEV_SRG_ENABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 30, 1, 1)
#define WMI_PDEV_SRG_DISABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 30, 1, 0)
#define WMI_PDEV_SRG_PD_THRESHOLD_SET(pd_threshold_cfg, value) WMI_SET_BITS(pd_threshold_cfg, 8, 8, value)
#define WMI_PDEV_SRG_PD_THRESHOLD_GET(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 8, 8)

#define WMI_PDEV_IS_PD_THRESHOLD_IN_DBM(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 29, 1)
#define WMI_PDEV_SET_PD_THRESHOLD_IN_DBM(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 29, 1, 1)

#define WMI_PDEV_OBSS_PD_ENABLE_PER_AC_SET(per_ac_cfg, value) WMI_SET_BITS(per_ac_cfg, 0, 4, value)
    #define WMI_PDEV_OBSS_PD_ENABLE_PER_AC_GET(per_ac_cfg) WMI_GET_BITS(per_ac_cfg, 0, 4)
#define WMI_PDEV_SRP_ENABLE_PER_AC_SET(per_ac_cfg, value) WMI_SET_BITS(per_ac_cfg, 16, 4, value)
    #define WMI_PDEV_SRP_ENABLE_PER_AC_GET(per_ac_cfg) WMI_GET_BITS(per_ac_cfg, 16, 4)

#define WMI_PDEV_IS_NON_SRG_SEP_PD_THRESH_CTRL_FRAME_ENABLED(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 31, 1)
#define WMI_PDEV_NON_SRG_SEP_PD_THRESH_CTRL_FRAME_ENABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 31, 1, 1)
#define WMI_PDEV_NON_SRG_SEP_PD_THRESH_CTRL_FRAME_DISABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 31, 1, 0)
#define WMI_PDEV_NON_SRG_SEP_PD_THRESH_CTRL_FRAME_SET(pd_threshold_cfg, value) WMI_SET_BITS(pd_threshold_cfg, 0, 8, value)
#define WMI_PDEV_NON_SRG_SEP_PD_THRESH_CTRL_FRAME_GET(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 0, 8)

#define WMI_PDEV_IS_SRG_SEP_PD_THRESH_CTRL_FRAME_ENABLED(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 30, 1)
#define WMI_PDEV_SRG_SEP_PD_THRESH_CTRL_FRAME_ENABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 30, 1, 1)
#define WMI_PDEV_SRG_SEP_PD_THRESH_CTRL_FRAME_DISABLE(pd_threshold_cfg) WMI_SET_BITS(pd_threshold_cfg, 30, 1, 0)
#define WMI_PDEV_SRG_SEP_PD_THRESH_CTRL_FRAME_SET(pd_threshold_cfg, value) WMI_SET_BITS(pd_threshold_cfg, 8, 8, value)
#define WMI_PDEV_SRG_SEP_PD_THRESH_CTRL_FRAME_GET(pd_threshold_cfg) WMI_GET_BITS(pd_threshold_cfg, 8, 8)


#define WMI_PDEV_UPPER_CAP_NSS_GET(value) WMI_GET_BITS(value, 0, 8)
#define WMI_PDEV_UPPER_CAP_NSS_SET(_value, value) WMI_SET_BITS(_value, 0, 8, value)
#define WMI_PDEV_UPPER_CAP_MCS_GET(value) WMI_GET_BITS(value, 8, 8)
#define WMI_PDEV_UPPER_CAP_MCS_SET(_value, value) WMI_SET_BITS(_value, 8, 8, value)
#define WMI_PDEV_UPPER_CAP_NSS_VALID_GET(value) WMI_GET_BITS(value, 16, 1)
#define WMI_PDEV_UPPER_CAP_NSS_VALID_SET(_value, value) WMI_SET_BITS(_value, 16, 1, value)
#define WMI_PDEV_UPPER_CAP_MCS_VALID_GET(value) WMI_GET_BITS(value, 17, 1)
#define WMI_PDEV_UPPER_CAP_MCS_VALID_SET(_value, value) WMI_SET_BITS(_value, 17, 1, value)

#define WMI_PDEV_RATE_DROP_NUM_MCS_GET(value) WMI_GET_BITS(value, 0, 8)
#define WMI_PDEV_RATE_DROP_NUM_MCS_SET(_value, value) WMI_SET_BITS(_value, 0, 8, value)
#define WMI_PDEV_RATE_DROP_RETRY_THRSH_GET(value) WMI_GET_BITS(value, 8, 8)
#define WMI_PDEV_RATE_DROP_RETRY_THRSH_SET(_value, value) WMI_SET_BITS(_value, 8, 8, value)
#define WMI_PDEV_RATE_DROP_NUM_MCS_VALID_GET(value) WMI_GET_BITS(value, 16, 1)
#define WMI_PDEV_RATE_DROP_NUM_MCS_VALID_SET(_value, value) WMI_SET_BITS(_value, 16, 1, value)
#define WMI_PDEV_RATE_DROP_RETRY_THRSH_VALID_GET(value) WMI_GET_BITS(value, 17, 1)
#define WMI_PDEV_RATE_DROP_RETRY_THRSH_VALID_SET(_value, value) WMI_SET_BITS(_value, 17, 1, value)

#define WMI_PDEV_RATE_MIN_MCS_PROBE_INTERVAL_GET(value) WMI_GET_BITS(value, 0, 16)
#define WMI_PDEV_RATE_MIN_MCS_PROBE_INTERVAL_SET(_value, value) WMI_SET_BITS(_value, 0, 16, value)
#define WMI_PDEV_RATE_MAX_MCS_PROBE_INTERVAL_GET(value) WMI_GET_BITS(value, 16, 16)
#define WMI_PDEV_RATE_MAX_MCS_PROBE_INTERVAL_SET(_value, value) WMI_SET_BITS(_value, 16, 16, value)

#define WMI_PDEV_RATE_MIN_NSS_PROBE_INTERVAL_GET(value) WMI_GET_BITS(value, 0, 16)
#define WMI_PDEV_RATE_MIN_NSS_PROBE_INTERVAL_SET(_value, value) WMI_SET_BITS(_value, 0, 16, value)
#define WMI_PDEV_RATE_MAX_NSS_PROBE_INTERVAL_GET(value) WMI_GET_BITS(value, 16, 16)
#define WMI_PDEV_RATE_MAX_NSS_PROBE_INTERVAL_SET(_value, value) WMI_SET_BITS(_value, 16, 16, value)

#define WMI_MBSSID_CTRL_FRAME_BASIC_TRIGGER ((A_UINT32) 1 << 0)
#define WMI_MBSSID_CTRL_FRAME_BSR_TRIGGER ((A_UINT32) 1 << 1)
#define WMI_MBSSID_CTRL_FRAME_MU_RTS_TRIGGER ((A_UINT32) 1 << 2)
#define WMI_MBSSID_CTRL_FRAME_UL_MU_MIMO_TRIGGER ((A_UINT32) 1 << 3)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_param_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** parameter id   */
    A_UINT32 param_id; /* WMI_PDEV_PARAM */
    /** parameter value */
    A_UINT32 param_value;
} wmi_pdev_set_param_cmd_fixed_param;

/* param values for WMI_PDEV_PARAM_SET_TBTT_CTRL's TBTT_CTRL_CFG bit-field */
typedef enum {
    WMI_TBTT_CTRL_HW_TRUNCATE = 0,
    WMI_TBTT_CTRL_SW_TRUNCATE,
    WMI_TBTT_CTRL_IGNORE_TBTT,

    WMI_TBTT_CTRL_MAX = 0x7,
} WMI_TBTT_CTRL_CFG;

/** MACRO to set / get TBTT_CTRL_CFG bit-field within
 *  WMI_PDEV_PARAM_SET_TBTT_CTRL:
 *      bits 0~2 : TBTT_CTRL_CFG
 *      bits 3~31: Reserved (set to 0x0)
 */
#define WMI_PDEV_PARAM_TBTT_CTRL_CFG_S  0
#define WMI_PDEV_PARAM_TBTT_CTRL_CFG    0x00000007

#define WMI_PDEV_PARAM_GET_TBTT_CTRL_CFG(word32) \
    WMI_F_MS(word32, WMI_PDEV_PARAM_TBTT_CTRL_CFG)
#define WMI_PDEV_PARAM_SET_TBTT_CTRL_CFG(word32, value) \
    WMI_F_RMW(word32,value,WMI_PDEV_PARAM_TBTT_CTRL_CFG)

/** MACRO define to set / get 11b and 11ag mode TX chain number:
 *  bit 0~15 : 11b mode TX chain number.
 *  bit 16~31: 11ag mode TX chain number.
 */
#define WMI_PDEV_PARAM_11B_TX_CHAIN_NUM_S  0
#define WMI_PDEV_PARAM_11B_TX_CHAIN_NUM    0x0000FFFF
#define WMI_PDEV_PARAM_11AG_TX_CHAIN_NUM_S 16
#define WMI_PDEV_PARAM_11AG_TX_CHAIN_NUM   0xFFFF0000

#define WMI_PDEV_PARAM_GET_11B_TX_CHAIN_NUM(word32) WMI_F_MS(word32, WMI_PDEV_PARAM_11B_TX_CHAIN_NUM)
#define WMI_PDEV_PARAM_SET_11B_TX_CHAIN_NUM(word32, value)  WMI_F_RMW(word32,value,WMI_PDEV_PARAM_11B_TX_CHAIN_NUM)

#define WMI_PDEV_PARAM_GET_11AG_TX_CHAIN_NUM(word32) WMI_F_MS(word32, WMI_PDEV_PARAM_11AG_TX_CHAIN_NUM)
#define WMI_PDEV_PARAM_SET_11AG_TX_CHAIN_NUM(word32, value) WMI_F_RMW(word32,value,WMI_PDEV_PARAM_11AG_TX_CHAIN_NUM)

/* param_value for param_id WMI_PDEV_PARAM_CTS_CBW */
typedef enum {
    WMI_CTS_CBW_INVALID = 0,
    WMI_CTS_CBW_20,
    WMI_CTS_CBW_40,
    WMI_CTS_CBW_80,
    WMI_CTS_CBW_80_80,
    WMI_CTS_CBW_160,
} WMI_CTS_CBW;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_tpc_config_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** parameter   */
    A_UINT32 param;
} wmi_pdev_get_tpc_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* WMITLV_TAG_STRUC_wmi_pdev_div_get_rssi_antid_fixed_param */
    /** pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /** RSSI (rssi_chain_x_pri20) on each chain (units: dB above noise floor) */
    A_UINT32 chain_rssi[WMI_MAX_CHAINS];
    /** index of the last-used antenna for each chain */
    A_UINT32 ant_id[WMI_MAX_CHAINS];
    /** mac address of diversity peer */
    wmi_mac_addr macaddr;
} wmi_pdev_div_get_rssi_antid_fixed_param;

typedef enum {
    WMI_TPC_STATS_EVENT_SEND_REG          = 0x00000001,
    WMI_TPC_STATS_EVENT_SEND_RATE         = 0x00000002,
    WMI_TPC_STATS_EVENT_SEND_CTL          = 0x00000004,
    WMI_TPC_STATS_EVENT_SEND_REG_RATE_CTL = 0x00000007, /* REG | RATE | CTL */
} WMI_PDEV_TPC_STATS_PARAMS;

typedef enum {
    WMI_HALPHY_TPC_STATS_SUPPORT_160 = 0,
    WMI_HALPHY_TPC_STATS_SUPPORT_320,
    WMI_HALPHY_TPC_STATS_SUPPORT_AX,
    WMI_HALPHY_TPC_STATS_SUPPORT_AX_EXTRA_MCS,
    WMI_HALPHY_TPC_STATS_SUPPORT_BE,
    WMI_HALPHY_TPC_STATS_SUPPORT_BE_PUNC,
    WMI_HALPHY_TPC_STATS_SUPPORT_CTL_DESIGN_1,
} WMI_HALPHY_TPC_STATS_SUPPORT_BITF; /* support bit fields */

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_tpc_stats_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** parameter -
     * This is to specify whether we want only the target power
     * information (rates array) or the CTL power or the regulatory
     * power information. At present, we send all of them.
     */
    A_UINT32 param; /* Currently expect WMI_TPC_STATS_EVENT_SEND_REG_RATE_CTL
                     * as a host specification that rates array, regulatory
                     * power array, and ctl power array are all to be sent.
                     * See WMI_PDEV_TPC_STATS_PARAMS.
                     */
} wmi_pdev_get_tpc_stats_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_tpc_stats_event_fixed_param */
    A_UINT32 pdev_id; /* pdev_id for identifying the MAC. See macros starting with WMI_PDEV_ID_ for values */
    A_UINT32 end_of_event; /* The total response to the WMI command will be split into multiple event chunks to fit into the WMI svc msg size limit: 0 indicates more events to follow: 1 indicates end of event  */
    A_UINT32 event_count; /* Incremented for every event chunk for Host to know the sequence */
    /* wmi_tpc_configs TLV to optionally follow */
    /* wmi_max_reg_power_allowed TLVs to optionally follow */
    /* wmi_tpc_rates_array TLVs to optionally follow */
    /* wmi_tpc_ctl_pwr_table TLVs to optionally follow */
} wmi_pdev_get_tpc_stats_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tpc_configs */
    A_UINT32 regDomain;
    A_UINT32 chanFreq; /* current channel in MHz */
    A_UINT32 phyMode;  /* current phy mode - See WLAN_PHY_MODE for the different phy modes */
    A_UINT32 maxAntennaGain; /* Maximum antenna gain for the current regulatory in 0.25 dBm steps */
    A_UINT32 twiceMaxRDPower; /* Maximum transmit power allowed in the regulatory domain in 0.25 dBm steps */
    A_INT32 userAntennaGain; /* User specified antenna gain in 0.25 dBm steps */
    A_UINT32 powerLimit; /* The overall power limit in 0.25 dBm steps */
    A_UINT32 rateMax; /* The total number of rates supported */
    A_UINT32 numTxChain; /* The total number of active chains */
    A_UINT32 ctl; /* See CONFORMANCE_TEST_LIMITS enumeration */
    A_UINT32 flags; /* See WMI_TPC_CONFIG_EVENT_FLAG */

    /* support_bits:
     * Tells info about BE, HE, HE_EXTRA_MCS, 160, 320, 11BE PUNC.
     * Refer to enum WMI_HALPHY_TPC_STATS_SUPPORT_BITF.
     */
    A_UINT32 support_bits;
    A_UINT32 nss; /* target specific NUM_SPATIAL_STREAM flag */
} wmi_tpc_configs;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_max_reg_power_allowed */
    A_UINT32 reg_power_type; /* 0: maxRegAllowedPower (1D array),
                              * 1: maxRegAllowedPowerAGCDD (2D array),
                              * 2: maxRegAllowedPowerAGSTBC (2D array),
                              * 3: maxRegAllowedPowerAGTXBF (2D array)
                              */
    A_UINT32 reg_power_array_len; /* Length of the regulatory power array being sent in bytes */
    A_UINT32 d1;  /* the length of 1st (innermost) dimension array */
    A_UINT32 d2;  /* the length of 2nd dimension array */
    A_UINT32 d3;  /* the length of 3rd dimension array (for future use) */
    A_UINT32 d4;  /* the length of 4th dimension array (for future use) */
    /*
     * This TLV is followed by an A_INT16 TLV-array that will carry
     * one of the four types of regulatory power arrays.
     *
     * The multi-dimensional regulatory power array will be communicated
     * as a flat array: Host to stitch it back as 2D array.
     * For an array[a][b][c][d], d1 = d, d2 = c, d3 = b, d4 = a
     * For a 2D array, array[a][b], d1 = b, d2 = a, d3 = 1, d4 = 1
     * The possible types of following A_INT16 TLV arrays are
     * 1. A_INT16  maxRegAllowedPower[WHAL_TPC_TX_NUM_CHAIN];
     * 2. A_INT16  maxRegAllowedPowerAGCDD[WHAL_TPC_TX_NUM_CHAIN - 1][WHAL_TPC_TX_NUM_CHAIN - 1];
     * 3. A_INT16  maxRegAllowedPowerAGSTBC[WHAL_TPC_TX_NUM_CHAIN - 1][WHAL_TPC_TX_NUM_CHAIN - 1];
     * 4. A_INT16  maxRegAllowedPowerAGTXBF[WHAL_TPC_TX_NUM_CHAIN - 1][WHAL_TPC_TX_NUM_CHAIN - 1];
     * where WHAL_TPC_TX_NUM_CHAIN=2 for CYP and 8 for HK.
     */
} wmi_max_reg_power_allowed;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tpc_rates_array */
    A_UINT32 rate_array_type; /* 0: ratesArray,
                               * 1: ratesArray2 (for chain > 4),
                               * 2: dl_ofdma rate array
                               */
    A_UINT32 rate_array_len;
    /* This TLV will be followed by an A_UINT16 TLV array that will
     * carry one of the types of TPC rate arrays.
     * All the rates arrays are 1D arrays.
     * The possible types of following A_UINT16 TLV arrays are
     * 1. A_UINT16 ratesArray[WHAL_TPC_RATE_MAX];
     *    This array has to be referred when number of active chains is < 4
     * 2. A_UINT16 ratesArray2[WHAL_TPC_RATE_MAX];
     *    This array has to be referred when number of active chains is > 4
     * 3. A_UINT16 ratesArray_DL_OFDMA[72];
     * WHAL_TPC_RATE_MAX is 748 for HK (considering PHY A0 8x8)
     * WHAL_TPC_RATE_MAX is 188 for CYP (considering PHY A0 2x2)
     * Each 16 bit value in the rates array carries both SU and MU
     * target power information.
     * Bits 0:7 contained the SU target power (signed value, 0.25 dBm units),
     * bits 8:15 denote the MU target power (signed value, 0.25 dBm units).
     */
} wmi_tpc_rates_array;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tpc_ctl_pwr_table */
    A_UINT32 ctl_array_type; /* 0: ctl_array,
                              * 1: ctl_160 array,
                              * 2: ctl_dlOfdma array,
                              * 3: ctl_ulOfdma array
                              */
    A_UINT32 ctl_array_len; /* Length of the CTL array being sent in bytes */
    A_UINT32 end_of_ctl_pwr; /* Message MAY be split into smaller chunks
                              * to fit in the WMI svc msg size limit:
                              * 0 indicates more chunks of CTL info to follow,
                              * 1 indicates end of CTL info.
                              */
    A_UINT32 ctl_pwr_count; /* Incremented for every CTL info chunk
                             * for Host to know the sequence.
                             */
    A_UINT32 d1;  /* the length of 1st (innermost) dimension array */
    A_UINT32 d2;  /* the length of 2nd dimension array */
    A_UINT32 d3;  /* the length of 3rd dimension array */
    A_UINT32 d4;  /* the length of 4th dimension array */
    /* This TLV will be followed by an A_INT8 TLV-array that will
     * carry one the types of CTL power arrays.
     * The CTL array will be multi-dimensional, but will be communicated as
     * a flat array; the host has to stitch it back into a 4D array.
     * The possible types of following A_INT8 arrays are
     * 1. A_INT8 ctlEdgePwrBF[WHAL_MAX_NUM_CHAINS][2][10][8];
     * 2. A_INT8 ctlEdgePwr160[WHAL_MAX_NUM_CHAINS/2][2][2][4];
     * 3. A_INT8 ctlEdgePwrBF_dlOFDMA[WHAL_MAX_NUM_CHAINS][2][3][8];
     * For e.g., in ctlEdgePwrBF
     * D4 = WHAL_MAX_NUM_CHAINS = 8 for HK, 2 for CYP, 4 for Pine
     * D3 = BF on/off = 2
     * D2 = 10 which the number of different tx modes,
     *      like cck, legacy, HT20, HT40, VHT80, etc.
     * D1 = NSS = 8, number of spatial streams
     * Total number of elements = D4*D3*D2*D1
     * The same will apply for ctl_dlOfdma array, except that the values
     * of d1,d2,d3,d4 will be different.
     */
} wmi_tpc_ctl_pwr_table;

typedef struct {
    A_UINT32 tlv_header; /* WMITLV_TAG_STRUC_wmi_pdev_bss_chan_info_request_fixed_param */
    A_UINT32 param;   /* 1 = read only, 2= read and clear */
    A_UINT32 pdev_id; /* pdev_id for identifying mac */
} wmi_pdev_bss_chan_info_request_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* WMITLV_TAG_STRUC_wmi_pdev_update_ctltable_request_fixed_param */
    A_UINT32 total_len;     /* the total number of ctl table bytes to be transferred */
    A_UINT32 len;           /* the number of ctltable bytes in current payload */
    A_UINT32 seq;           /* the number of current transfers */
/*
 * This TLV is followed by the following additional TLVs:
 * ARRAY_BYTE TLV of ctltable_data
 */
} wmi_pdev_update_ctltable_request_fixed_param;

#define WMI_ESP_ESTIMATE_GET_BE(airtime)         WMI_GET_BITS(airtime, 0, 8)
#define WMI_ESP_ESTIMATE_SET_BE(airtime, value)  WMI_SET_BITS(airtime, 0, 8, value)

#define WMI_ESP_ESTIMATE_GET_BK(airtime)         WMI_GET_BITS(airtime, 8, 8)
#define WMI_ESP_ESTIMATE_SET_BK(airtime, value)  WMI_SET_BITS(airtime, 8, 8, value)

#define WMI_ESP_ESTIMATE_GET_VI(airtime)         WMI_GET_BITS(airtime, 16, 8)
#define WMI_ESP_ESTIMATE_SET_VI(airtime, value)  WMI_SET_BITS(airtime, 16, 8, value)

#define WMI_ESP_ESTIMATE_GET_VO(airtime)         WMI_GET_BITS(airtime, 24, 8)
#define WMI_ESP_ESTIMATE_SET_VO(airtime, value)  WMI_SET_BITS(airtime, 24, 8, value)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_esp_estimate_event_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /*
     * Percentage of air time available for each AC
     * BIT[0-7]   : AC_BE
     * BIT[8-15]  : AC_BK
     * BIT[16-23] : AC_VI
     * BIT[24-31] : AC_VO
     */
    A_UINT32 ac_airtime_percentage;
} wmi_esp_estimate_event_fixed_param;

#define WMI_FAST_DIVERSITY_BIT_OFFSET 0
#define WMI_SLOW_DIVERSITY_BIT_OFFSET 1

#define WMI_SLOW_DIVERSITY_CH0_WEIGHT_SHIFT 2
#define WMI_SLOW_DIVERSITY_CH0_WEIGHT_MASK (0xf << WMI_SLOW_DIVERSITY_CH0_WEIGHT_SHIFT)
#define WMI_SLOW_DIVERSITY_CH0_WEIGHT_GET_BITS(word32) \
    (((word32) & WMI_SLOW_DIVERSITY_CH0_WEIGHT_MASK) >> WMI_SLOW_DIVERSITY_CH0_WEIGHT_SHIFT)
#define WMI_SLOW_DIVERSITY_CH0_WEIGHT_SET_BITS(word32, value) \
    do { \
        (word32) &= ~WMI_SLOW_DIVERSITY_CH0_WEIGHT_MASK; \
        (word32) |= ((value) << WMI_SLOW_DIVERSITY_CH0_WEIGHT_SHIFT) & \
            WMI_SLOW_DIVERSITY_CH0_WEIGHT_MASK; \
    } while (0)

#define WMI_SLOW_DIVERSITY_CH1_WEIGHT_SHIFT 6
#define WMI_SLOW_DIVERSITY_CH1_WEIGHT_MASK (0xf << WMI_SLOW_DIVERSITY_CH1_WEIGHT_SHIFT)
#define WMI_SLOW_DIVERSITY_CH1_WEIGHT_GET_BITS(word32) \
    (((word32) & WMI_SLOW_DIVERSITY_CH1_WEIGHT_MASK) >> WMI_SLOW_DIVERSITY_CH1_WEIGHT_SHIFT)
#define WMI_SLOW_DIVERSITY_CH1_WEIGHT_SET_BITS(word32, value) \
    do { \
        (word32) &= ~WMI_SLOW_DIVERSITY_CH1_WEIGHT_MASK; \
        (word32) |= ((value) << WMI_SLOW_DIVERSITY_CH1_WEIGHT_SHIFT) & \
            WMI_SLOW_DIVERSITY_CH1_WEIGHT_MASK; \
    } while (0)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_antenna_diversity_cmd_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    /**
     * The following "value" field is divided into bit fields as follows:
     *     bits | purpose
     *     -----+---------------------------------------
     *        0 | enable/disable FAST diversity
     *        1 | enable/disable SLOW diversity
     *      5:2 | chain0 slow-diversity weighting factor
     *      9:6 | chain1 slow-diversity weighting factor
     *     31:10| currently unused (set to 0x0)
     * Refer to the above WMI_[FAST/SLOW]_DIVERSITY constants.
     */
    A_UINT32 value;
} wmi_pdev_set_antenna_diversity_cmd_fixed_param;

#define WMI_MAX_RSSI_THRESHOLD_SUPPORTED 3

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rssi_breach_monitor_config_cmd_fixed_param */
    A_UINT32 vdev_id; /* vdev_id, where RSSI monitoring will take place */
    A_UINT32 request_id; /* host will configure request_id and firmware echo this id in RSSI_BREACH_EVENT */
    A_UINT32 enabled_bitmap; /* bit [0-2] = low_rssi_breach_enabled[0-2] enabled, bit [3-5] = hi_rssi_breach_enabled[0-2] */
    A_UINT32 low_rssi_breach_threshold[WMI_MAX_RSSI_THRESHOLD_SUPPORTED]; /* unit dBm. host driver to make sure [0] > [1] > [2] */
    A_UINT32 hi_rssi_breach_threshold[WMI_MAX_RSSI_THRESHOLD_SUPPORTED]; /* unit dBm. host driver to make sure [0] < [1] < [2] */
    A_UINT32 lo_rssi_reenable_hysteresis; /* unit dBm. once low rssi[] breached, same event bitmap will be generated only after signal gets better than this level. This value is adopted for all low_rssi_breach_threshold[3] */
    A_UINT32 hi_rssi_reenable_histeresis;/* unit dBm. once hi rssi[] breached, same event bitmap will be generated only after signal gets worse than this level. This value is adopted for all hi_rssi_breach_threshold[3] */
    A_UINT32 min_report_interval; /* After last event is generated, we wait until this interval to generate next event  */
    A_UINT32 max_num_report; /* this is to suppress number of event to be generated */
} wmi_rssi_breach_monitor_config_fixed_param;

typedef struct {
    /** parameter   */
    A_UINT32 param;
} wmi_pdev_dump_cmd;

typedef enum {
    PAUSE_TYPE_CHOP =           0x1, /** for MCC (switch channel), only vdev_map is valid */
    PAUSE_TYPE_PS =             0x2, /** for peer station sleep in sap mode, only peer_id is valid */
    PAUSE_TYPE_UAPSD =          0x3, /** for uapsd, only peer_id and tid_map are valid. */
    PAUSE_TYPE_P2P_CLIENT_NOA = 0x4, /** only vdev_map is valid, actually only one vdev id is set at one time */
    PAUSE_TYPE_P2P_GO_PS =      0x5, /** only vdev_map is valid, actually only one vdev id is set at one time */
    PAUSE_TYPE_STA_ADD_BA =     0x6, /** only peer_id and tid_map are valid, actually only one tid is set at one time */
    PAUSE_TYPE_AP_PS =          0x7, /** for pausing AP vdev when all the connected clients are in PS. only vdev_map is valid */
    PAUSE_TYPE_IBSS_PS =        0x8, /** for pausing IBSS vdev when all the peers are in PS. only vdev_map is valid */
    PAUSE_TYPE_CHOP_TDLS_OFFCHAN = 0x9, /** for TDLS offchannel MCC (switch channel), only vdev_map is valid, TDLS connection tracker needs to be notified */

    PAUSE_TYPE_HOST =           0x15, /* host is requesting vdev pause */
} wmi_tx_pause_type;

typedef enum {
    ACTION_PAUSE =     0x0,
    ACTION_UNPAUSE =   0x1,
} wmi_tx_pause_action;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 pause_type;
    A_UINT32 action;
    A_UINT32 vdev_map;
    A_UINT32 peer_id;
    A_UINT32 tid_map;
} wmi_tx_pause_event_fixed_param;

typedef enum {
    WMI_MGMT_TX_COMP_TYPE_COMPLETE_OK = 0,
    WMI_MGMT_TX_COMP_TYPE_DISCARD,
    WMI_MGMT_TX_COMP_TYPE_INSPECT,
    WMI_MGMT_TX_COMP_TYPE_COMPLETE_NO_ACK,
    WMI_MGMT_TX_COMP_TYPE_MAX,
} WMI_MGMT_TX_COMP_STATUS_TYPE;

typedef struct {
    A_UINT32    tlv_header;
    A_UINT32    desc_id; /* from tx_send_cmd */
    A_UINT32    status;  /* WMI_MGMT_TX_COMP_STATUS_TYPE */
    /** pdev_id for identifying the MAC that transmitted the mgmt frame
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32    pdev_id;
    /* ppdu_id
     * Hardware PPDU ID for tracking the completion stats
     * A ppdu_id value of 0x0 is invalid, and should be ignored.
     */
    A_UINT32    ppdu_id;
    /* ack_rssi
     * TX mgmt ack RSSI report to host.
     * Only valid when status == COMPLETE_OK and the ACK_RSSI report is enabled
     * ACK RSSI is reported as SNR dB, i.e. how many dB the RSSI is above
     * the noise floor.
     */
    A_UINT32    ack_rssi;
    /* xmit rate in kbps */
    A_UINT32 tx_rate;
    /* phy mode WLAN_PHY_MODE of the channel defined in wlan_defs.h */
    A_UINT32 peer_phymode;
    A_UINT32 retries_count;
    /* current 64 bit TSF timestamp */
    A_UINT32 tx_tsf_l32;
    A_UINT32 tx_tsf_u32;
} wmi_mgmt_tx_compl_event_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_offchan_data_tx_compl_event_fixed_param */
    A_UINT32    desc_id; /* from tx_send_cmd */
    A_UINT32    status;  /* same status as WMI_MGMT_TX_COMP_STATUS_TYPE */
    /** pdev_id for identifying the MAC that transmitted the mgmt frame
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32    pdev_id;
    /* ppdu_id
     * Hardware PPDU ID for tracking the completion stats
     * A ppdu_id value of 0x0 is invalid, and should be ignored.
     */
    A_UINT32    ppdu_id;
} wmi_offchan_data_tx_compl_event_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_qos_null_frame_tx_compl_event_fixed_param */
    A_UINT32    desc_id; /* echoed from tx_send_cmd */
    A_UINT32    status;  /* same status as WMI_MGMT_TX_COMP_STATUS_TYPE */
    /** pdev_id for identifying the MAC that transmitted the QoS NULL frame
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32    pdev_id;
    /* ppdu_id
     * Hardware PPDU ID for tracking the completion stats
     * A ppdu_id value of 0x0 is invalid, and should be ignored.
     */
    A_UINT32    ppdu_id;
    /* ack_rssi
     * TX mgmt ack RSSI report to host.
     * Only valid when status == COMPLETE_OK and the ACK_RSSI report is enabled
     * ack_rssi is reported in dBm.
     */
    A_INT32    ack_rssi;
} wmi_qos_null_frame_tx_compl_event_fixed_param;

typedef struct {
    A_UINT32    tlv_header;
    A_UINT32    num_reports;
    /* tlv for completion
     * A_UINT32 desc_ids[num_reports]; <- from tx_send_cmd
     * A_UINT32 status[num_reports];   <- WMI_MGMT_TX_COMP_STATUS_TYPE
     * A_UINT32 ppdu_id[num_reports];  <- list of PPDU IDs
     * A_UINT32 ack_rssi[num_reports]; <- list of ack RSSI
     *                                    RSSI units = dB w.r.t. noise floor
     */
} wmi_mgmt_tx_compl_bundle_event_fixed_param;

#define WMI_TPC_RATE_MAX            160
/* WMI_TPC_TX_NUM_CHAIN macro can't be changed without breaking the WMI compatibility */
#define WMI_TPC_TX_NUM_CHAIN        4

typedef enum {
    /* bits 0-7 for table flags */
    WMI_TPC_CONFIG_EVENT_FLAG_TABLE_CDD  = 0x1,
    WMI_TPC_CONFIG_EVENT_FLAG_TABLE_STBC = 0x2,
    WMI_TPC_CONFIG_EVENT_FLAG_TABLE_TXBF = 0x4,

    /* bits 8-11 for interface version flags */
    WMI_TPC_CONFIG_EVENT_FLAG_IF_MASK = 0x0F00,
    WMI_TPC_CONFIG_EVENT_FLAG_IF_V1   = 0x0100,
} WMI_TPC_CONFIG_EVENT_FLAG;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_tpc_config_event_fixed_param  */
    A_UINT32 regDomain;
    A_UINT32 chanFreq;
    A_UINT32 phyMode;
    A_UINT32 twiceAntennaReduction;
    A_UINT32 twiceMaxRDPower;
    A_INT32 twiceAntennaGain;
    A_UINT32 powerLimit;
    A_UINT32 rateMax;
    A_UINT32 numTxChain;
    A_UINT32 ctl;
    A_UINT32 flags;
    /* WMI_TPC_TX_NUM_CHAIN macro can't be changed without breaking the WMI compatibility */
    A_INT8 maxRegAllowedPower[WMI_TPC_TX_NUM_CHAIN];
    A_INT8 maxRegAllowedPowerAGCDD[WMI_TPC_TX_NUM_CHAIN][WMI_TPC_TX_NUM_CHAIN];
    A_INT8 maxRegAllowedPowerAGSTBC[WMI_TPC_TX_NUM_CHAIN][WMI_TPC_TX_NUM_CHAIN];
    A_INT8 maxRegAllowedPowerAGTXBF[WMI_TPC_TX_NUM_CHAIN][WMI_TPC_TX_NUM_CHAIN];
     /** pdev_id for identifying the MAC
      * See macros starting with WMI_PDEV_ID_ for values.
      */
    A_UINT32 pdev_id;
/* This TLV is followed by further TLVs:
 * 1.  byte array:
 *      A_UINT8 ratesArray[];
 * 2a. multi-dimensional array dimension spec:
 *      wmi_tlv_arrays_len_param ctlPwrTbl_param[0 or 1]
 *
 * 2b. ctl power table
 *      A_UINT8 ctlPwrTbl_buf[bf][modes][nss], i.e.
 *      A_UINT8 ctlPwrTbl_buf[d3_len * d2_len * d1_len]
 *      bf is [0 or 1] for [on or off].
 *      For 2G, modes is [0,   1,      2,       or 3] for
 *                       [cck, legacy, (v)ht20, or (v)ht40]
 *      For 5G, modes is [0,      1,       2,       or 3] for
 *                       [legacy, (v)ht20, (v)ht40, or vht80]
 *      nss is [0, 1, 2, or 3] for the number of streams 1~4.
 */
} wmi_pdev_tpc_config_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_div_rssi_antid_event_fixed_param */
    A_UINT32 tlv_header;
    /** how many elements in the MAX_CHAINS arrays below contain valid info */
    A_UINT32 num_chains_valid;
    /** RSSI (rssi_chain_x_pri20) on each chain (units: dB above noise floor) */
    A_UINT32 chain_rssi[WMI_MAX_CHAINS];
    /** index of the last-used antenna for each chain */
    A_UINT32 ant_id[WMI_MAX_CHAINS];
    /** mac address of diversity peer */
    wmi_mac_addr macaddr;
    /* EVM value for stream0 and stream1 20Mhz, dB units */
    A_INT32 chain_evm[WMI_MAX_CHAINS];
} wmi_pdev_div_rssi_antid_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;                /* WMITLV_TAG_STRUC_wmi_pdev_bss_chan_info_event_fixed_param */
    A_UINT32 freq;                      /* Units in MHz */
    A_INT32 noise_floor;                /* units are dBm */

    /* rx clear - how often the channel was unused */
    A_UINT32 rx_clear_count_low;        /* low 31 bits of rx_clear cnt in 64bits format */
    A_UINT32 rx_clear_count_high;       /* high 31 bits of rx_clear cnt in 64bits format */

    /* cycle count - elapsed time during the measured period, in clock ticks */
    A_UINT32 cycle_count_low;           /* low 31 bits of cycle cnt in 64bits format */
    A_UINT32 cycle_count_high;          /* high 31 bits of cycle cnt in 64bits format */

    /* tx cycle count - elapsed time spent in tx, in clock ticks */
    A_UINT32 tx_cycle_count_low;        /* low 31 bits of tx_cycle cnt in 64bits format */
    A_UINT32 tx_cycle_count_high;       /* high 31 bits of tx_cycle cnt in 64bits format */

    /* rx cycle count - elapsed time spent in rx, in clock ticks */
    A_UINT32 rx_cycle_count_low;        /* low 31 bits of rx_cycle cnt in 64bits format */
    A_UINT32 rx_cycle_count_high;       /* high 31 bits of rx_cycle cnt in 64bits format */

    A_UINT32 rx_bss_cycle_count_low;    /* low 31 bits of rx cycle cnt for my bss in 64bits format */
    A_UINT32 rx_bss_cycle_count_high;   /* high 31 bits of rx_cycle cnt for my bss in 64bits format */
    A_UINT32 pdev_id;                   /* pdev_id for identifying the MAC */
} wmi_pdev_bss_chan_info_event_fixed_param;

typedef struct {
    /* WMI event response update ctltable request to host */
    A_UINT32 tlv_header;                /* WMITLV_TAG_STRUC_wmi_pdev_update_ctltable_event_fixed_param */
    A_UINT32 total_len;                 /* the total number of bytes to be transferred */
    A_UINT32 len;                       /* the number of FW received bytes from host */
    A_UINT32 seq;                       /* the number of current transfers */
} wmi_pdev_update_ctltable_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_l1ss_track_event_fixed_param  */
    A_UINT32 periodCnt;
    A_UINT32 L1Cnt;
    A_UINT32 L11Cnt;
    A_UINT32 L12Cnt;
    A_UINT32 L1Entry;
    A_UINT32 L11Entry;
    A_UINT32 L12Entry;
     /** pdev_id for identifying the MAC
      * See macros starting with WMI_PDEV_ID_ for values.
      */
    A_UINT32 pdev_id;
} wmi_pdev_l1ss_track_event_fixed_param;

typedef struct {
    A_UINT32 len;
    A_UINT32 msgref;
    A_UINT32 segmentInfo;
} wmi_pdev_seg_hdr_info;


/*
 * Transmit power scale factor.
 *
 */
typedef enum {
    WMI_TP_SCALE_MAX = 0, /* no scaling (default) */
    WMI_TP_SCALE_50 = 1, /* 50% of max (-3 dBm) */
    WMI_TP_SCALE_25 = 2, /* 25% of max (-6 dBm) */
    WMI_TP_SCALE_12 = 3, /* 12% of max (-9 dBm) */
    WMI_TP_SCALE_MIN = 4, /* min, but still on   */
    WMI_TP_SCALE_SIZE = 5, /* max num of enum     */
} WMI_TP_SCALE;

#define WMI_MAX_DEBUG_MESG (sizeof(A_UINT32) * 32)

typedef struct {
    /** message buffer, NULL terminated */
    char bufp[WMI_MAX_DEBUG_MESG];
} wmi_debug_mesg_event;

enum {
    /** P2P device */
    VDEV_SUBTYPE_P2PDEV = 0,
    /** P2P client */
    VDEV_SUBTYPE_P2PCLI,
    /** P2P GO */
    VDEV_SUBTYPE_P2PGO,
    /** BT3.0 HS */
    VDEV_SUBTYPE_BT,
};

typedef struct {
    /** idnore power , only use flags , mode and freq */
    wmi_channel chan;
} wmi_pdev_set_channel_cmd;

typedef enum {
    WMI_PKTLOG_EVENT_RX =  0x00000001,
    WMI_PKTLOG_EVENT_TX =  0x00000002,
    WMI_PKTLOG_EVENT_RCF = 0x00000004, /* Rate Control Find */
    WMI_PKTLOG_EVENT_RCU = 0x00000008, /* Rate Control Update */
    /* 0x10 used by deprecated DBG_PRINT */
    WMI_PKTLOG_EVENT_SMART_ANTENNA = 0x00000020, /* To support Smart Antenna */
    WMI_PKTLOG_EVENT_SW =  0x00000040, /* To support SW defined events */
    WMI_PKTLOG_EVENT_PHY = 0x00000080, /* To support PHY stats */
    WMI_PKTLOG_EVENT_CBF = 0x00000100, /* To support CBF's filter in */
    /* To support hybrid of events from FW and tx monitor status ring */
    WMI_PKTLOG_EVENT_HYBRID_TX = 0x00000200,
} WMI_PKTLOG_EVENT;

typedef enum {
    WMI_PKTLOG_ENABLE_AUTO  = 0, /* (default) FW will decide under what conditions to enable pktlog */
    WMI_PKTLOG_ENABLE_FORCE = 1, /* pktlog unconditionally enabled */
} WMI_PKTLOG_ENABLE;

typedef enum {
    WMI_PKTLOG_FILTER_IN  = 0, /* capture only for the MAC addresses in pktlog_mac_addr_list*/
    WMI_PKTLOG_FILTER_OUT = 1, /* capture for all MAC addresses except those in pktlog_mac_addr_list */
} WMI_PKTLOG_FILTER_TYPE;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_pktlog_enable_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    A_UINT32 evlist; /* WMI_PKTLOG_EVENT */
    A_UINT32 enable; /* WMI_PKTLOG_ENABLE */
} wmi_pdev_pktlog_enable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_pktlog_disable_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_pktlog_disable_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    *  WMITLV_TAG_STRUC_wmi_pdev_pktlog_filter_info */
    A_UINT32 tlv_header;
    /** mac addr of the peer to be filtered */
    wmi_mac_addr peer_mac_address;
} wmi_pdev_pktlog_filter_info;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_pktlog_filter_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** 0 - disable filtering, 1 - enable filtering */
    A_UINT32 enable;
    A_UINT32 filter_type; /* WMI_PKTLOG_FILTER_TYPE */
    A_UINT32 num_of_mac_addresses;
    /* This TLV is followed by another TLV of array of structs
     * wmi_pdev_pktlog_filter_info pdev_pktlog_filter_info[];
     */
} wmi_pdev_pktlog_filter_cmd_fixed_param;

/**
 * WMI event to send packet log decode information to Host.
 * This sends the metadata which will be embedded by Host in the file-level
 * header of the pktlog trace file (i.e. the ath_pktlog_bufhdr struct).
 * This will be later used by the pktlog post-processing scripts to get
 * prerequisite pktlog_defs*.JSON files for decoding the trace.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_pktlog_decode_info_evt_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** Forty byte field for storing software image as null terminated string */
    A_UINT8  software_image[40];
    /** Forty byte field for storing chip info as null terminated string */
    A_UINT8  chip_info[40];
    /** Four byte field for storing JSON version */
    A_UINT32 pktlog_defs_json_version;
} wmi_pdev_pktlog_decode_info_evt_fixed_param;

typedef enum {
    WMI_ROGUE_AP_ON_STA_PS  = 1, /* rogue ap on sta ps module */
} WMI_ROGUE_AP_TYPE;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_rap_config_fixed_param */
    /** pdev_id for identifying the MAC, the default value is WMI_PDEV_ID_SOC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** rogue ap type, see WMI_ROGUE_AP_TYPE */
    A_UINT32 type;
    /** Enable detection of rogue ap in the ps module
     *
     * 0 -> disabled
     * 1 -> enabled (default)
     */
    A_UINT32 sta_ps_detection_enabled;
/* This TLV is followed by rap_param for each rogue ap:
 *     wmi_pdev_set_rap_config_on_sta_ps_tlv_param rap_param[];
 */
} wmi_pdev_set_rap_config_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_rap_config_on_sta_ps_tlv_param */
    /** bssid of rogue ap */
    wmi_mac_addr bssid;
} wmi_pdev_set_rap_config_on_sta_ps_tlv_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mib_stats_enable_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    A_UINT32 enable_Mib; /** enable for mib stats collection. Stats are delivered to host in wmi_mib_stats structure.
                          * If enable_Mib=1, stats collection is enabled. If enable_Mib=0, stats collection does not happen */
} wmi_mib_stats_enable_cmd_fixed_param;

/** Customize the DSCP (bit) to TID (0-7) mapping for QOS.
 *  NOTE: This constant cannot be changed without breaking
 *  WMI Compatibility. */

#define WMI_DSCP_MAP_MAX    (64)
/*
 * @brief dscp_tid_map_cmdid - command to send the dscp to tid map to the target
 * @details
 * Create an API for sending the custom DSCP-to-TID map to the target
 * If this is a request from the user space or from above the UMAC
 * then the best place to implement this is in the umac_if_offload of the OL path.
 * Provide a place holder for this API in the ieee80211com (ic).
 *
 * This API will be a function pointer in the ieee80211com (ic). Any user space calls for manually setting the DSCP-to-TID mapping
 * in the target should be directed to the function pointer in the ic.
 *
 * Implementation details of the API to send the map to the target are as described-
 *
 * 1. The function will have 2 arguments- struct ieee80211com, DSCP-to-TID map.
 *    DSCP-to-TID map is a one dimensional u_int32_t array of length 64 to
 *    accommodate 64 TID values for 2^6 (64) DSCP ids.
 *    Example:
 *      A_UINT32 dscp_tid_map[WMI_DSCP_MAP_MAX] = {
 *                                  0, 0, 0, 0, 0, 0, 0, 0,
 *                                  1, 1, 1, 1, 1, 1, 1, 1,
 *                                  2, 2, 2, 2, 2, 2, 2, 2,
 *                                  3, 3, 3, 3, 3, 3, 3, 3,
 *                                  4, 4, 4, 4, 4, 4, 4, 4,
 *                                  5, 5, 5, 5, 5, 5, 5, 5,
 *                                  6, 6, 6, 6, 6, 6, 6, 6,
 *                                  7, 7, 7, 7, 7, 7, 7, 7,
 *                                };
 *
 * 2. Request for the WMI buffer of size equal to the size of the DSCP-to-TID map.
 *
 * 3. Copy the DSCP-to-TID map into the WMI buffer.
 *
 * 4. Invoke the wmi_unified_cmd_send to send the cmd buffer to the target with the
 *    WMI_PDEV_SET_DSCP_TID_MAP_CMDID. Arguments to the wmi send cmd API
 *    (wmi_unified_send_cmd) are wmi handle, cmd buffer, length of the cmd buffer and
 *    the WMI_PDEV_SET_DSCP_TID_MAP_CMDID id.
 *
 */
/* DEPRECATED - use VDEV level command instead
 * (wmi_vdev_set_dscp_tid_map_cmd_fixed_param)
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_dscp_tid_map_cmd_fixed_param */
    A_UINT32 reserved0; /** placeholder for pdev_id of future multiple MAC products. Init. to 0. */
    /* map indicating DSCP to TID conversion */
    A_UINT32 dscp_to_tid_map[WMI_DSCP_MAP_MAX];
} wmi_pdev_set_dscp_tid_map_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_dscp_tid_map_cmd_fixed_param */
    A_UINT32 vdev_id;
    /** map indicating DSCP to TID conversion */
    A_UINT32 dscp_to_tid_map[WMI_DSCP_MAP_MAX];
    A_UINT32 enable_override;
} wmi_vdev_set_dscp_tid_map_cmd_fixed_param;

enum WMI_WAKE_GPIO_TYPE {
    WMI_WAKE_GPIO_LOW = 1,
    WMI_WAKE_GPIO_HIGH = 2,
    WMI_WAKE_GPIO_RISING_EDGE = 3,
    WMI_WAKE_GPIO_FALLING_EDGE = 4,
};

/**
 * Set GPIO numbers used to wakeup host and wakeup target.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_PDEV_SET_WAKEUP_CONFIG_CMDID_fixed_param */
    A_UINT32 host_wakeup_gpio; /* gpio num used to wakeup host, 0xff disable wakeup gpio */
    A_UINT32 host_wakeup_type; /* refer to WMI_WAKE_GPIO_TYPE */
    A_UINT32 target_wakeup_gpio; /* gpio num used to wakeup target, 0xff disable wakeup gpio */
    A_UINT32 target_wakeup_type; /* refer to WMI_WAKE_GPIO_TYPE */
} WMI_PDEV_SET_WAKEUP_CONFIG_CMDID_fixed_param;

/** Fixed rate (rate-code) for broadcast/ multicast data frames */
/* @brief bcast_mcast_data_rate - set the rates for the bcast/ mcast frames
 * @details
 * Create an API for setting the custom rate for the MCAST and BCAST frames
 * in the target. If this is a request from the user space or from above the UMAC
 * then the best place to implement this is in the umac_if_offload of the OL path.
 * Provide a place holder for this API in the ieee80211com (ic).
 *
 * Implementation details of the API to set custom rates for MCAST and BCAST in
 * the target are as described-
 *
 * 1. The function will have 3 arguments-
 *    vap structure,
 *    MCAST/ BCAST identifier code,
 *    8 bit rate code
 *
 * The rate-code is a 1-byte field in which:for given rate, nss and preamble
 * b'7-b-6 indicate the preamble (0 OFDM, 1 CCK, 2, HT, 3 VHT)
 * b'5-b'4 indicate the NSS (0 - 1x1, 1 - 2x2, 2 - 3x3)
 * b'3-b'0 indicate the rate, which is indicated as follows:
 *          OFDM :     0: OFDM 48 Mbps
 *                     1: OFDM 24 Mbps
 *                     2: OFDM 12 Mbps
 *                     3: OFDM 6 Mbps
 *                     4: OFDM 54 Mbps
 *                     5: OFDM 36 Mbps
 *                     6: OFDM 18 Mbps
 *                     7: OFDM 9 Mbps
 *         CCK (pream == 1)
 *                     0: CCK 11 Mbps Long
 *                     1: CCK 5.5 Mbps Long
 *                     2: CCK 2 Mbps Long
 *                     3: CCK 1 Mbps Long
 *                     4: CCK 11 Mbps Short
 *                     5: CCK 5.5 Mbps Short
 *                     6: CCK 2 Mbps Short
 *         HT/VHT (pream == 2/3)
 *                     0..7: MCS0..MCS7 (HT)
 *                     0..9: MCS0..MCS9 (VHT)
 *
 * 2. Invoke the wmi_unified_vdev_set_param_send to send the rate value
 *    to the target.
 *    Arguments to the API are-
 *    wmi handle,
 *    VAP interface id (av_if_id) defined in ol_ath_vap_net80211,
 *    WMI_VDEV_PARAM_BCAST_DATA_RATE/ WMI_VDEV_PARAM_MCAST_DATA_RATE,
 *    rate value.
 */
typedef enum {
    WMI_SET_MCAST_RATE,
    WMI_SET_BCAST_RATE
} MCAST_BCAST_RATE_ID;

typedef struct {
    MCAST_BCAST_RATE_ID rate_id;
    A_UINT32 rate;
} mcast_bcast_rate;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wmm_params */
    A_UINT32 cwmin;
    A_UINT32 cwmax;
    A_UINT32 aifs;
    A_UINT32 txoplimit;
    A_UINT32 acm;
    A_UINT32 no_ack;
} wmi_wmm_params;

/* DEPRECATED - use VDEV level command instead
 * (wmi_vdev_set_wmm_params_cmd_fixed_param)
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_wmm_params_cmd_fixed_param */
    A_UINT32 reserved0; /** placeholder for pdev_id of future multiple MAC products. Init. to 0. */
    A_UINT32 dg_type;

/* The TLVs for the 4 AC follows:
 *     wmi_wmm_params wmm_params_ac_be;
 *     wmi_wmm_params wmm_params_ac_bk;
 *     wmi_wmm_params wmm_params_ac_vi;
 *     wmi_wmm_params wmm_params_ac_vo;
 */
} wmi_pdev_set_wmm_params_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pifs_params */
    /* The unit of this offset is PIFS slot time */
    A_UINT32 sap_pifs_offset;
    A_UINT32 leb_pifs_offset;
    A_UINT32 reb_pifs_offset;
} wmi_pifs_params;

typedef enum {
    WMI_EDCA_PARAM_TYPE_AGGRESSIVE = 0,
    WMI_EDCA_PARAM_TYPE_PIFS = 1,
} WMI_EDCA_PARAM_TYPE;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_twt_edca_params_cmd_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 type; /* contains a WMI_EDCA_PARAM_TYPE value */
    /*
     * This TLV is (optionally) followed by other TLVs as below:
     * wmi_wmm_params wmm_params[0/1];
     *     present if type is WMI_EDCA_PARAM_TYPE_AGGRESSIVE
     * wmi_pifs_params pifs_params[0/1];
     *     present if type is WMI_EDCA_PARAM_TYPE_PIFS
     */
} wmi_vdev_set_twt_edca_params_cmd_fixed_param;

typedef enum {
    WMI_REQUEST_PEER_STAT            = 0x00001,
    WMI_REQUEST_AP_STAT              = 0x00002,
    WMI_REQUEST_PDEV_STAT            = 0x00004,
    WMI_REQUEST_VDEV_STAT            = 0x00008,
    WMI_REQUEST_BCNFLT_STAT          = 0x00010,
    WMI_REQUEST_VDEV_RATE_STAT       = 0x00020,
    WMI_REQUEST_INST_STAT            = 0x00040,
    WMI_REQUEST_MIB_STAT             = 0x00080,
    WMI_REQUEST_RSSI_PER_CHAIN_STAT  = 0x00100,
    WMI_REQUEST_CONGESTION_STAT      = 0x00200,
    WMI_REQUEST_PEER_EXTD_STAT       = 0x00400,
    WMI_REQUEST_BCN_STAT             = 0x00800,
    WMI_REQUEST_BCN_STAT_RESET       = 0x01000,
    WMI_REQUEST_PEER_EXTD2_STAT      = 0x02000,
    WMI_REQUEST_MIB_EXTD_STAT        = 0x04000,
    WMI_REQUEST_PMF_BCN_PROTECT_STAT = 0x08000,
    WMI_REQUEST_VDEV_EXTD_STAT       = 0x10000,
    WMI_REQUEST_PDEV_EXTD_STAT       = 0x20000,
    WMI_REQUEST_PDEV_TELEMETRY_STAT  = 0x40000,
} wmi_stats_id;

/*
 * cfg_retry_count is set to max number of times the AP should try sending
 * QoS Null frames to the STA for measuring the instantaneous RSSI
 *
 * retry_count is used to maintain the number of times the AP has tried sending
 * QoS Null frames to the STA for measuring the instantaneous RSSI
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_stats_cmd_sub_struc_param */
    A_UINT32 cfg_retry_count;
    A_UINT32 retry_count;
} wmi_inst_rssi_stats_params;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_stats_cmd_fixed_param */
    wmi_stats_id stats_id;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    A_UINT32 pdev_id; /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0. */
/*
 * This TLV is (optionally) followed by other TLVs:
 *     wmi_inst_rssi_stats_params inst_rssi_params;
 *     A_UINT32 vdev_id_bitmap[];
 *         This array is present and non-zero length in MLO case, stats should
 *         only be provided from the vdev_id_bitmap in the bitmap when it is
 *         present.
 *     wmi_mac_addr mld_macaddr[];
 *         This array is present and non-zero length in MLO case, stats should
 *         only be provided from the peers with the MLD MAC addresses specified
 *         in the array.
 */
} wmi_request_stats_cmd_fixed_param;

/* stats type bitmap  */
#define WMI_LINK_STATS_RADIO         0x00000001
#define WMI_LINK_STATS_IFACE         0x00000002
#define WMI_LINK_STATS_ALL_PEER      0x00000004
#define WMI_LINK_STATS_PER_PEER      0x00000008
#define WMI_LINK_STATS_IPA           0x00000010


/* wifi clear statistics bitmap  */
#define WIFI_STATS_RADIO              0x00000001 /** all radio statistics */
#define WIFI_STATS_RADIO_CCA          0x00000002 /** cca_busy_time (within radio statistics) */
#define WIFI_STATS_RADIO_CHANNELS     0x00000004 /** all channel statistics (within radio statistics) */
#define WIFI_STATS_RADIO_SCAN         0x00000008 /** all scan statistics (within radio statistics) */
#define WIFI_STATS_IFACE              0x00000010 /** all interface statistics */
#define WIFI_STATS_IFACE_TXRATE       0x00000020 /** all tx rate statistics (within interface statistics) */
#define WIFI_STATS_IFACE_AC           0x00000040 /** all ac statistics (within interface statistics) */
#define WIFI_STATS_IFACE_CONTENTION   0x00000080 /** all contention (min, max, avg) statistics (within ac statisctics) */
#define WMI_STATS_IFACE_ALL_PEER      0x00000100 /** All peer stats on this interface */
#define WMI_STATS_IFACE_PER_PEER      0x00000200 /** Clear particular peer stats depending on the peer_mac */

/** Default value for stats if the stats collection has not started */
#define WMI_STATS_VALUE_INVALID       0xffffffff

#define WMI_DIAG_ID_GET(diag_events_logs)                         WMI_GET_BITS(diag_events_logs, 0, 16)
#define WMI_DIAG_ID_SET(diag_events_logs, value)                  WMI_SET_BITS(diag_events_logs, 0, 16, value)
#define WMI_DIAG_TYPE_GET(diag_events_logs)                       WMI_GET_BITS(diag_events_logs, 16, 1)
#define WMI_DIAG_TYPE_SET(diag_events_logs, value)                WMI_SET_BITS(diag_events_logs, 16, 1, value)
#define WMI_DIAG_ID_ENABLED_DISABLED_GET(diag_events_logs)        WMI_GET_BITS(diag_events_logs, 17, 1)
#define WMI_DIAG_ID_ENABLED_DISABLED_SET(diag_events_logs, value) WMI_SET_BITS(diag_events_logs, 17, 1, value)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_diag_event_log_config_fixed_param */
    A_UINT32 num_of_diag_events_logs;
/* The TLVs will follow.
 *    A_UINT32 diag_events_logs_list[]; 0-15 Bits Diag EVENT/LOG ID,
 *                                      Bit 16 - DIAG type EVENT/LOG, 0 - Event, 1 - LOG
 *                                      Bit 17 Indicate if the DIAG type is Enabled/Disabled.
 */
} wmi_diag_event_log_config_fixed_param;

#define WMI_DIAG_FREQUENCY_GET(diag_events_logs)          WMI_GET_BITS(diag_events_logs, 17, 1)
#define WMI_DIAG_FREQUENCY_SET(diag_events_logs, value)   WMI_SET_BITS(diag_events_logs, 17, 1, value)
#define WMI_DIAG_EXT_FEATURE_GET(diag_events_logs)        WMI_GET_BITS(diag_events_logs, 18, 1)
#define WMI_DIAG_EXT_FEATURE_SET(diag_events_logs, value) WMI_SET_BITS(diag_events_logs, 18, 1, value)

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 num_of_diag_events_logs;
/* The TLVs will follow.
 *    A_UINT32 diag_events_logs_list[]; 0-15 Bits Diag EVENT/LOG ID,
 *                                      Bit 16 - DIAG type EVENT/LOG, 0 - Event, 1 - LOG
 *                                      Bit 17 - Frequency of the DIAG EVENT/LOG High Frequency -1, Low Frequency - 0
 *                                      Bit 18 - Set if the EVENTS/LOGs are used for EXT DEBUG Framework
 */
} wmi_diag_event_log_supported_event_fixed_params;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_debug_mesg_flush_fixed_param*/
    A_UINT32 reserved0; /** placeholder for future */
} wmi_debug_mesg_flush_fixed_param;

typedef struct {
    A_UINT32 tlv_header;        /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_debug_mesg_fw_data_stall_param */
    A_UINT32 vdev_id_bitmap;    /** bitmap representation for vdev_id's where data stall happened */
    A_UINT32 data_stall_type;   /** wlan_dbg_data_stall_type_e */
    /** reason_code1:
     * The information stored in reason_code1 varies based on the data stally
     * type values:
     * data_stall_type      | reason_code1
     * -----------------------------------------------------
     * HWSCHED_CMD_FLUSH    | flush req reason (0-40)
     * RX_REFILL_FAILED     | ring_id (0-7)
     * RX_FCS_LEN_ERROR     | exact error type
     */
    A_UINT32 reason_code1;
    A_UINT32 reason_code2;      /** on which tid/hwq stall happened */
    A_UINT32 recovery_type;     /** wlan_dbg_data_stall_recovery_type_e */
} wmi_debug_mesg_fw_data_stall_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_debug_mesg_fw_cal_failure_param */
    A_UINT32 tlv_header;
    /* wmi_ctrl_path_stats_cal_type_ids enum defines possible cal type IDs */
    A_UINT32 cal_type;
    /* wmi_cal_failure_reason_code enum defines possible failure reason codes */
    A_UINT32 cal_failure_reason_code;
} wmi_debug_mesg_fw_cal_failure_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_debug_mesg_flush_complete_fixed_param*/
    A_UINT32 reserved0; /** placeholder for future */
} wmi_debug_mesg_flush_complete_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rssi_breach_fixed_param */
    /* vdev_id, where RSSI breach event occurred */
    A_UINT32 vdev_id;
    /* request id */
    A_UINT32 request_id;
    /* bitmap[0-2] is corresponding to low_rssi[0-2]. bitmap[3-5] is corresponding to hi_rssi[0-2]*/
    A_UINT32 event_bitmap;
    /* rssi at the time of RSSI breach. Unit dBm */
    A_UINT32 rssi;
    /* bssid of the monitored AP's */
    wmi_mac_addr bssid;
} wmi_rssi_breach_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_fw_mem_dump */
    /** unique id identifying the segment */
    A_UINT32 seg_id;
    /** Start address of the segment to be read */
    A_UINT32 seg_start_addr_lo;
    A_UINT32 seg_start_addr_hi;
    /** Length of the segment to be read */
    A_UINT32 seg_length;
    /** Host bufeer address to which the segment will be read and dumped */
    A_UINT32 dest_addr_lo;
    A_UINT32 dest_addr_hi;
} wmi_fw_mem_dump;

/* Command to get firmware memory dump*/
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_get_fw_mem_dump_fixed_param */
    /** unique id identifying the request */
    A_UINT32 request_id;
    /** number of memory dump segments */
    A_UINT32 num_fw_mem_dump_segs;
/**
 * This TLV is followed by another TLV
 *     wmi_fw_mem_dump fw_mem_dump[];
 */
} wmi_get_fw_mem_dump_fixed_param;

/** Event to indicate the completion of fw mem dump */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_update_fw_mem_dump_fixed_param */
    /** unique id identifying the request, given in the request stats command */
    A_UINT32 request_id;
    /*In case of Firmware memory dump */
    A_UINT32 fw_mem_dump_complete;
} wmi_update_fw_mem_dump_fixed_param;


typedef enum {
    WMI_ROAMING_IDLE = 0,
    WMI_ROAMING_ACTIVE = 1,
} wmi_roam_state;

/* access categories */
typedef enum {
   WMI_AC_VO  = 0,
   WMI_AC_VI  = 1,
   WMI_AC_BE  = 2,
   WMI_AC_BK  = 3,
   WMI_AC_MAX = 4,
} wmi_traffic_ac;

typedef enum {
    WMI_STA_STATS = 0,
    WMI_SOFTAP_STATS = 1,
    WMI_IBSS_STATS = 2,
    WMI_P2P_CLIENT_STATS = 3,
    WMI_P2P_GO_STATS = 4,
    WMI_NAN_STATS = 5,
    WMI_MESH_STATS = 6,
 } wmi_link_iface_type;

/* channel operating width */
typedef enum {
    WMI_CHAN_WIDTH_20    = 0,
    WMI_CHAN_WIDTH_40    = 1,
    WMI_CHAN_WIDTH_80    = 2,
    WMI_CHAN_WIDTH_160   = 3,
    WMI_CHAN_WIDTH_80P80 = 4,
    WMI_CHAN_WIDTH_5     = 5,
    WMI_CHAN_WIDTH_10    = 6,
    WMI_CHAN_WIDTH_165   = 7,
    WMI_CHAN_WIDTH_160P160 = 8,
    WMI_CHAN_WIDTH_320   = 9,

    WMI_CHAN_WIDTH_MAX,
} wmi_channel_width;

/*Clear stats*/
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_clear_link_stats_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** stop_stats_collection_req = 1 will imply stop the statistics collection */
    A_UINT32 stop_stats_collection_req;
    /** identifies what stats to be cleared */
    A_UINT32 stats_clear_req_mask;
    /** identifies which peer stats to be cleared. Valid only while clearing PER_REER */
    wmi_mac_addr peer_macaddr;
/*
 * This TLV is (optionally) followed by other TLVs:
 *     A_UINT32 vdev_id_bitmap[];
 *         This array is present and non-zero length in MLO case, stats should
 *         only be cleared for the VDEVs in vdev_id_bitmap in the bitmap when
 *         it is present.
 *     wmi_mac_addr mld_macaddr[];
 *         This array is present and non-zero length in MLO case, stats should
 *         only be cleared for the peers with the MLD MAC addresses specified
 *         in the array.
 */
} wmi_clear_link_stats_cmd_fixed_param;

/* Link Stats configuration params. Trigger the link layer statistics collection*/
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_start_link_stats_cmd_fixed_param */
    /** threshold to classify the pkts as short or long */
    A_UINT32 mpdu_size_threshold;
    /** set for field debug mode. Driver should collect all statistics regardless of performance impact.*/
    A_UINT32 aggressive_statistics_gathering;
} wmi_start_link_stats_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_link_stats_cmd_fixed_param */
    /** Type of stats required. This is a bitmask WMI_LINK_STATS_RADIO, WMI_LINK_STATS_IFACE */
    A_UINT32 stats_type;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** unique id identifying the request, generated by the caller */
    A_UINT32 request_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
/*
 * This TLV is (optionally) followed by other TLVs:
 * A_UINT32 vdev_id_bitmap[];
 *     This array is present and non-zero length in MLO case, stats should only
 *     be provided from the vdev_id_bitmap in the bitmap when it is present.
 * wmi_mac_addr mld_macaddr[];
 *     This array is present and non-zero length in MLO case, stats should only
 *     be provided from the peers with the MLD MAC addresses specified
 *     in the array.
 */
} wmi_request_link_stats_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_unified_request_ll_get_sta_cmd_fixed_param */
    /** Type of stats required. This is a bitmask of WMI_LINK_STATS_RADIO, WMI_LINK_STATS_IFACE */
    A_UINT32 link_stats_type;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** unique id identifying the request, generated by the caller */
    A_UINT32 request_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Type of stats required for get station cmd (see wmi_stats_id enum) */
    A_UINT32 get_sta_stats_id;
    /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0. */
    A_UINT32 pdev_id;
/*
 * This TLV is (optionally) followed by other TLVs:
 * A_UINT32 vdev_id_bitmap[];
 *     This array is present and non-zero length in MLO case, stats should only
 *     be provided from the vdev_id_bitmap in the bitmap when it is present.
 * wmi_mac_addr mld_macaddr[];
 *     This array is present and non-zero length in MLO case, stats should only
 *     be provided from the peers with the MLD MAC addresses specified
 *     in the array.
 */
} wmi_request_unified_ll_get_sta_cmd_fixed_param;

#define WLM_STATS_REQ_LINK          0x00000001
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_wlm_stats_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** WLM event request bitmask
     * Used by host to customize the wlm stats report.
     * Filled with a combination of WLM_STATS_xxx values.
     */
    A_UINT32 request_bitmask;
} wmi_request_wlm_stats_cmd_fixed_param;

/* channel statistics */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_channel_stats */
    /** Channel width (20, 40, 80, 80+80, 160) enum wmi_channel_width*/
    A_UINT32 channel_width;
    /** Primary 20 MHz channel */
    A_UINT32 center_freq;
    /** center frequency (MHz) first segment */
    A_UINT32 center_freq0;
    /** center frequency (MHz) second segment */
    A_UINT32 center_freq1;
    /** msecs the radio is awake (32 bits number accruing over time) */
    A_UINT32 radio_awake_time;
    /** msecs the CCA register is busy (32 bits number accruing over time)
     * Includes rx_time but not tx_time.
     */
    A_UINT32 cca_busy_time;
    /** msecs the radio is transmitting (32 bits number accruing over time) */
    A_UINT32 tx_time;
    /** msecs the radio is in active receive (32 bits number accruing over time) */
    A_UINT32 rx_time;
    /*** NOTE ***
     * Be cautious about adding new fields in wmi_channel_stats.
     * STA-centric targets may instantiate many instances of per-channel
     * stats, and consequently may consume a non-trivial amount of on-chip
     * memory for storing the channel stats.
     */
} wmi_channel_stats;

/* this structure used for pass vdev id in stats events */
typedef struct {
    union {
        struct {
            A_UINT32 id      : 31, /* the vdev ID */
                     validate: 1;  /* validate bit, the vdev ID is only valid if this bit set as 1 */
        };
        A_UINT32 vdev_id;
    };
} wmi_vdev_id_info;

#define WMI_VDEV_ID_INFO_GET_VDEV_ID(vdev_id_info)             WMI_GET_BITS(vdev_id_info, 0, 31)
#define WMI_VDEV_ID_INFO_SET_VDEV_ID(vdev_id_info, value)      WMI_SET_BITS(vdev_id_info, 0, 31, value)
#define WMI_VDEV_ID_INFO_GET_VALIDATE(vdev_id_info)            WMI_GET_BITS(vdev_id_info, 31, 1)
#define WMI_VDEV_ID_INFO_SET_VALIDATE(vdev_id_info, value)     WMI_SET_BITS(vdev_id_info, 31, 1, value)

typedef struct {
    union {
        struct {
            A_UINT32
                id: 8, /* the vdev ID */
                /* validate:
                 * validate bit, the vdev ID (id and link_status) is only valid
                 * if this bit set as 1.
                 */
                validate: 1,
                /* link_status:
                 * 0 -> link inactive
                 * 1 -> link active
                 */
                link_status: 1,
                reserved:22;
        };
        A_UINT32 vdev_info_word0;
    };
} wmi_vdev_id_info_v2;

#define WMI_VDEV_ID_INFO_V2_GET_VDEV_ID(vdev_id_info_v2)             WMI_GET_BITS(vdev_id_info_v2, 0, 8)
#define WMI_VDEV_ID_INFO_V2_SET_VDEV_ID(vdev_id_info_v2, value)      WMI_SET_BITS(vdev_id_info_v2, 0, 8, value)
#define WMI_VDEV_ID_INFO_V2_GET_VALIDATE(vdev_id_info_v2)            WMI_GET_BITS(vdev_id_info_v2, 8, 1)
#define WMI_VDEV_ID_INFO_V2_SET_VALIDATE(vdev_id_info_v2, value)     WMI_SET_BITS(vdev_id_info_v2, 8, 1, value)
#define WMI_VDEV_ID_INFO_V2_GET_LINK_STATUS(vdev_id_info_v2)         WMI_GET_BITS(vdev_id_info_v2, 9, 1)
#define WMI_VDEV_ID_INFO_V2_SET_LINK_STATUS(vdev_id_info_v2, value)  WMI_SET_BITS(vdev_id_info_v2, 9, 1, value)


/*
 * Each step represents 0.5 dB.  The starting value is 0 dBm.
 * Thus the TPC levels cover 0 dBm to 31.5 dBm inclusive in 0.5 dB steps.
 */
#define MAX_TPC_LEVELS 64

/* radio statistics */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_radio_link_stats */
    /** Wifi radio (if multiple radio supported) */
    A_UINT32 radio_id;
    /** msecs the radio is awake (32 bits number accruing over time) */
    A_UINT32 on_time;
    /** msecs the radio is transmitting (32 bits number accruing over time) */
    A_UINT32 tx_time;
    /** msecs the radio is in active receive (32 bits number accruing over time) */
    A_UINT32 rx_time;
    /** msecs the radio is awake due to all scan (32 bits number accruing over time) */
    A_UINT32 on_time_scan;
    /** msecs the radio is awake due to NAN (32 bits number accruing over time) */
    A_UINT32 on_time_nbd;
    /** msecs the radio is awake due to G?scan (32 bits number accruing over time) */
    A_UINT32 on_time_gscan;
    /** msecs the radio is awake due to roam?scan (32 bits number accruing over time) */
    A_UINT32 on_time_roam_scan;
    /** msecs the radio is awake due to PNO scan (32 bits number accruing over time) */
    A_UINT32 on_time_pno_scan;
    /** msecs the radio is awake due to HS2.0 scans and GAS exchange (32 bits number accruing over time) */
    A_UINT32 on_time_hs20;
    /** number of channels */
    A_UINT32 num_channels;
    /** tx time per TPC level - DEPRECATED
     * This field is deprecated.
     * It is superseded by the WMI_RADIO_TX_POWER_LEVEL_STATS_EVENTID message.
     */
    A_UINT32 tx_time_per_tpc[MAX_TPC_LEVELS];
    /** msecs the radio is awake due to Host initiated scan (accruing over time) */
    A_UINT32 on_time_host_scan;
    /** msecs the radio is awake due to LPI scan (accruing over time) */
    A_UINT32 on_time_lpi_scan;
} wmi_radio_link_stats;

/** tx time per power level statistics */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_power_level_stats_evt_fixed_param */
    /** total number of tx power levels */
    A_UINT32 total_num_tx_power_levels;
    /** number of tx power levels that are carried in this event */
    A_UINT32 num_tx_power_levels;
    /** offset of current stats
     * If ((num_tx_power_levels + power_level_offset)) ==
     *     total_num_tx_power_levels)
     * this message completes the report of tx time per power levels.
     * Otherwise, additional WMI_RADIO_TX_POWER_LEVEL_STATS_EVENTID messages
     * will be sent by the target to deliver the remainder of the tx time
     * per power level stats.
     */
    A_UINT32 power_level_offset;
    /* radio id for this tx time per power level statistics (if multiple radio supported) */
    A_UINT32 radio_id;
    /** Indicates the vdev id of the stats for MLO stats query */
    wmi_vdev_id_info vdev_id_info;
/*
 * This TLV will be followed by a TLV containing a variable-length array of
 * A_UINT32 with tx time per power level data
 *  A_UINT32 tx_time_per_power_level[num_tx_power_levels]
 * The tx time is in units of milliseconds.
 * The power levels are board-specific values; a board-specific translation
 * has to be applied to determine what actual power corresponds to each
 * power level.
 * Just as the host has a BDF file available, the host should also have
 * a data file available that provides the power level to power translations.
 */
} wmi_tx_power_level_stats_evt_fixed_param;


/** Radio statistics (once started) do not stop or get reset unless wifi_clear_link_stats is invoked */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_radio_link_stats_event_fixed_param */
    /** unique id identifying the request, given in the request stats command */
    A_UINT32 request_id;
    /** Number of radios*/
    A_UINT32 num_radio;
    /** more_data will be set depending on the number of radios */
    A_UINT32 more_radio_events;
    /*
     * For the event WMI_RADIO_LINK_STATS_EVENTID = 0x16004,
     * FW may not be able to send all the channels (2 GHz, 5 GHz & 6 GHz)
     * together in one event message, due to buffer size limitations.
     * To avoid this limitation, FW will send multiple events to HOST
     * depending upon the number of channels.
     * If more_channels is set to 0 means FW has indicated all the
     * channels for this radio.
     * If more_channels is set to 1, it indicates FW will send another
     * event having additional channels for the same radio.
     */
    A_UINT32 more_channels;
    /** Indicates the vdev id of the stats for MLO stats query */
    wmi_vdev_id_info vdev_id_info;
/*
 * This TLV is followed by another TLV of array of bytes
 *   size of(struct wmi_radio_link_stats);
 *
 * This TLV is followed by another TLV of array of bytes
 *   num_channels * size of(struct wmi_channel_stats)
 */
} wmi_radio_link_stats_event_fixed_param;

/* per rate statistics */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rate_stats */
    /** rate information
     * The rate-code is a 1-byte field in which:for given rate, nss and preamble
     * b'7-b-6 indicate the preamble (0 OFDM, 1 CCK, 2, HT, 3 VHT)
     * b'5-b'4 indicate the NSS (0 - 1x1, 1 - 2x2, 2 - 3x3)
     * b'3-b'0 indicate the rate, which is indicated as follows:
     *          OFDM :     0: OFDM 48 Mbps
     *                     1: OFDM 24 Mbps
     *                     2: OFDM 12 Mbps
     *                     3: OFDM 6 Mbps
     *                     4: OFDM 54 Mbps
     *                     5: OFDM 36 Mbps
     *                     6: OFDM 18 Mbps
     *                     7: OFDM 9 Mbps
     *         CCK (pream == 1)
     *                     0: CCK 11 Mbps Long
     *                     1: CCK 5.5 Mbps Long
     *                     2: CCK 2 Mbps Long
     *                     3: CCK 1 Mbps Long
     *                     4: CCK 11 Mbps Short
     *                     5: CCK 5.5 Mbps Short
     *                     6: CCK 2 Mbps Short
     *         HT/VHT (pream == 2/3)
     *                     0..7: MCS0..MCS7 (HT)
     *                     0..9: MCS0..MCS9 (VHT)
     */
    A_UINT32 rate;
    /** units of 100 Kbps */
    A_UINT32 bitrate;
    /** number of successfully transmitted data pkts (ACK rcvd) */
    A_UINT32 tx_mpdu;
    /** number of received data pkts */
    A_UINT32 rx_mpdu;
    /** number of data packet losses (no ACK) */
    A_UINT32 mpdu_lost;
    /** total number of data pkt retries */
    A_UINT32 retries;
    /** number of short data pkt retries */
    A_UINT32 retries_short;
    /** number of long data pkt retries */
    A_UINT32 retries_long;
} wmi_rate_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_link_stats */
    /** peer type (AP, TDLS, GO etc.) enum wmi_peer_type*/
    A_UINT32 peer_type;
    /** mac address */
    wmi_mac_addr peer_mac_address;
    /** peer wmi_CAPABILITY_XXX */
    A_UINT32 capabilities;
    /** number of rates */
    A_UINT32 num_rates;
} wmi_peer_link_stats;

/** PEER statistics (once started) reset and start afresh after each connection */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_stats_event_fixed_param */
    /** unique id identifying the request, given in the request stats command */
    A_UINT32 request_id;
    /** number of peers accomidated in this particular event  */
    A_UINT32 num_peers;
    /** Indicates the fragment number  */
    A_UINT32 peer_event_number;
    /** Indicates if there are more peers which will be sent as separate peer_stats event */
    A_UINT32 more_data;
    /** Indicates the vdev id of the stats for MLO stats query */
    wmi_vdev_id_info vdev_id_info;

/**
 * This TLV is followed by another TLV
 * num_peers * size of(struct wmi_peer_stats)
 * num_rates * size of(struct wmi_rate_stats). num_rates is the sum of the rates of all the peers.
 */
} wmi_peer_stats_event_fixed_param;

/* per access category statistics */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wmm_ac_stats */
    /** access category (VI, VO, BE, BK) enum wmi_traffic_ac*/
    A_UINT32 ac_type;
    /** number of successfully transmitted unicast data pkts (ACK rcvd) */
    A_UINT32 tx_mpdu;
    /** number of received unicast mpdus */
    A_UINT32 rx_mpdu;
    /** number of successfully transmitted multicast data packets */
    /** STA case: implies ACK received from AP for the unicast packet in which mcast pkt was sent */
    A_UINT32 tx_mcast;
    /** number of received multicast data packets */
    A_UINT32 rx_mcast;
    /** number of received unicast a-mpdus */
    A_UINT32 rx_ampdu;
    /** number of transmitted unicast a-mpdus */
    A_UINT32 tx_ampdu;
    /** number of data pkt losses (no ACK) */
    A_UINT32 mpdu_lost;
    /** total number of data pkt retries */
    A_UINT32 retries;
    /** number of short data pkt retries */
    A_UINT32 retries_short;
    /** number of long data pkt retries */
    A_UINT32 retries_long;
    /** data pkt min contention time (usecs) */
    A_UINT32 contention_time_min;
    /** data pkt max contention time (usecs) */
    A_UINT32 contention_time_max;
    /** data pkt avg contention time (usecs) */
    A_UINT32 contention_time_avg;
    /** num of data pkts used for contention statistics */
    A_UINT32 contention_num_samples;
    /** number of pending pkts */
    A_UINT32 tx_pending_msdu;
} wmi_wmm_ac_stats;

/* interface statistics */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_iface_link_stats */
    /** access point beacon received count from connected AP */
    A_UINT32 beacon_rx;
    /** access point mgmt frames received count from connected AP (including Beacon) */
    A_UINT32 mgmt_rx;
    /** action frames received count */
    A_UINT32 mgmt_action_rx;
    /** action frames transmit count */
    A_UINT32 mgmt_action_tx;
    /** access Point Beacon and Management frames RSSI (averaged) */
    A_UINT32 rssi_mgmt;
    /** access Point Data Frames RSSI (averaged) from connected AP */
    A_UINT32 rssi_data;
    /** access Point ACK RSSI (averaged) from connected AP */
    A_UINT32 rssi_ack;
    /** number of peers */
    A_UINT32 num_peers;
    /** Indicates how many peer_stats events will be sent depending on the num_peers. */
    A_UINT32 num_peer_events;
    /** number of ac */
    A_UINT32 num_ac;
    /** Roaming Stat */
    A_UINT32 roam_state;
    /** Average Beacon spread offset is the averaged time delay between TBTT and beacon TSF */
    /** Upper 32 bits of averaged 64 bit beacon spread offset */
    A_UINT32 avg_bcn_spread_offset_high;
    /** Lower 32 bits of averaged 64 bit beacon spread offset */
    A_UINT32 avg_bcn_spread_offset_low;
    /** Takes value of 1 if AP leaks packets after sending an ACK for PM=1 otherwise 0 */
    A_UINT32 is_leaky_ap;
    /** Average number of frames received from AP after receiving the ACK for a frame with PM=1 */
    A_UINT32 avg_rx_frms_leaked;
    /** Rx leak watch window currently in force to minimize data loss because of leaky AP. Rx leak window is the
        time driver waits before shutting down the radio or switching the channel and after receiving an ACK for
        a data frame with PM bit set) */
    A_UINT32 rx_leak_window;
    A_UINT32 tx_rts_succ_cnt;
    A_UINT32 tx_rts_fail_cnt;
    A_UINT32 tx_ppdu_succ_cnt;
    A_UINT32 tx_ppdu_fail_cnt;
    /** msecs the interface is in Connected state (accruing over time) */
    A_UINT32 connected_duration;
    /** msecs the interface is in DisConnected state (accruing over time) */
    A_UINT32 disconnected_duration;
    /** msecs the interface is doing RTT ranging (accruing over time) */
    A_UINT32 rtt_ranging_duration;
    /** msecs the interface is in RTT responder mode (accruing over time) */
    A_UINT32 rtt_responder_duration;
    /** Number of Probes (Tx) sent on the interface (accruing over time) */
    A_UINT32 num_probes_tx;
    /** Number of Beacon misses on this interface (accruing over time) */
    A_UINT32 num_beacon_miss;
    /** time slice duty cycle percentage of this interface */
    A_UINT32 time_slice_duty_cycle;
    /**
     * Current home channel noise floor value report to host
     * Units are dBm, values 0x0000ffff and 0x0 are invalid.
     */
    A_INT32 nf_cal_val;
} wmi_iface_link_stats;

typedef enum {
    WMI_OFFLOAD_STATS_TYPE_SOC_BCAST   = 0,
    WMI_OFFLOAD_STATS_TYPE_SOC_MCAST   = 1,
    WMI_OFFLOAD_STATS_TYPE_SOC_UCAST   = 2,
    WMI_OFFLOAD_STATS_TYPE_ARP         = 3,
    WMI_OFFLOAD_STATS_TYPE_NS          = 4,
    WMI_OFFLOAD_STATS_TYPE_APF_BCAST   = 5,
    WMI_OFFLOAD_STATS_TYPE_APF_MCAST   = 6,
    WMI_OFFLOAD_STATS_TYPE_APF_UCAST   = 7,
    /* Add New offload stat type here */
    WMI_OFFLOAD_STATS_TYPE_MAX,
} wmi_offload_stats_type;

typedef struct {
   A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_iface_offload_stats */
   /** Type of offload stat. enum wmi_offload_stats_type **/
   A_UINT32 type;
   /** Number of (MSDUs) frames Received **/
   A_UINT32 rx_count;
   /** Number of frames Dropped **/
   A_UINT32 drp_count;
   /** Number of frames for which FW Responded (Valid for ARP and NS only). (or)
     * Number of frames forwarded to Host (Valid for stats type except ARP and NS). **/
   A_UINT32 fwd_count;
} wmi_iface_offload_stats;

typedef struct {
   A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_iface_powersave_stats */
   /** Total TIM beacon event that wlan ps received **/
   A_UINT32 tot_tim_bcn;
   /** Total error TIM beacon found by wlan ps including no rx in TIM wakeup and TIM event in active state **/
   A_UINT32 tot_err_tim_bcn;
} wmi_iface_powersave_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ipa_link_stats */

    /** IPA tx channel 0 buffer hp/tp */
    A_UINT32 wbm2sw_ring_ch0_hp;
    A_UINT32 wbm2sw_ring_ch0_tp;
    /** IPA tx channel 1 buffer hp/tp */
    A_UINT32 wbm2sw_ring_ch1_hp;
    A_UINT32 wbm2sw_ring_ch1_tp;

    /** IPA rx channel 0 buffer hp/tp */
    A_UINT32 reo2sw_ring_ch0_hp;
    A_UINT32 reo2sw_ring_ch0_tp;
    /** IPA rx channel 1 buffer hp/tp */
    A_UINT32 reo2sw_ring_ch1_hp;
    A_UINT32 reo2sw_ring_ch1_tp;

    /** IPA rx channel 0 ring full counter */
    A_UINT32 reo2sw_ch0_producer_full_cnt;
    /** IPA rx channel 1 ring full counter */
    A_UINT32 reo2sw_ch1_producer_full_cnt;

    /** IPA rx path drop feature enable */
    A_UINT32 ipa_drop_enabled;
    /** Counter for IPA rx path switch to drop-enabled state */
    A_UINT32 ipa_switch_to_drop_cnt;
    /** Counter for IPA rx path switch from drop-enabled state to normal state */
    A_UINT32 ipa_switch_from_drop_cnt;
} wmi_ipa_link_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ipa_per_mac_stats */

    /** TCL total enqueued packet number */
    A_UINT32 tcl_enqueue_packets;
    /** TCL total discarded packet number during enqueue */
    A_UINT32 tcl_enqueue_discard;

    /** Total tx duration time, usec */
    A_UINT32 total_ppdu_duration_us;

    /** IPA rx no resource debug counter */
    A_UINT32 wmac_no_resource_drop_ppdu_cnt_ix0;
    A_UINT32 wmac_no_resource_drop_ppdu_cnt_ix1;
    A_UINT32 wmac_no_resource_drop_mpdu_cnt_ix0;
    A_UINT32 wmac_no_resource_drop_mpdu_cnt_ix1;
    A_UINT32 wmac_rxdma2reo_producer_full_cnt;
} wmi_ipa_per_mac_stats;

/** IPA statistics (once started) reset and start afresh after each connection */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ipa_link_stats_event_fixed_param */
    /** unique id identifying the request, given in the request stats command */
    A_UINT32 request_id;
    /** number of MACs */
    A_UINT32 num_macs;
/*
 * This TLV is followed by other TLVs:
 *   wmi_ipa_link_stats ipa_link_stats;
 *   wmi_ipa_per_mac_stats ipa_per_mac_stats[num_macs];
 */
} wmi_ipa_link_stats_event_fixed_param;

/** Interface statistics (once started) reset and start afresh after each connection */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_iface_link_stats_event_fixed_param */
    /** unique id identifying the request, given in the request stats command */
    A_UINT32 request_id;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** Number of offload stats **/
    A_UINT32 num_offload_stats;
/*
 * This TLV is followed by other TLVs:
 *   wmi_iface_link_stats iface_link_stats;
 *   num_ac * size of(struct wmi_wmm_ac_stats)
 *   wmi_iface_offload_stats iface_offload_stats[num_offload_stats]
 *   wmi_iface_powersave_stats iface_powersave_stats[]
 */
} wmi_iface_link_stats_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlm_stats_event_fixed_param */
    /** bitmask listing which WLM stats are provided.
     * Copied from wlm_stats_cmd_fixed_param.
     * (This field is provided for convenience rather than necessity, since
     * the recipient can directly check which TLV arrays have non-zero length.)
     */
    A_UINT32 request_bitmask;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /**
     * timestamp of event report, in microseconds units
     * This timestamp is for debugging purposes only.
     * It can be used to correlate this WLM stats event data with
     * other WLM information uploaded through other means.
     */
    A_UINT32 timestamp;
    /**
     * Interval between two consecutive WLM stats query requests,
     * in microseconds units.
     * This interval is used for converting the scan_period and pwr_on_period
     * values from within wmi_wlm_link_stats from percentage units to time
     * units.
     */
    A_UINT32 req_interval;
/*
 * This TLV is followed by an A_UINT32 array TLV carrying an opaque payload.
 */
} wmi_wlm_stats_event_fixed_param;

/** Suspend option */
enum {
    WMI_PDEV_SUSPEND, /* suspend */
    WMI_PDEV_SUSPEND_AND_DISABLE_INTR, /* suspend and disable all interrupts */
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_suspend_cmd_fixed_param  */
    /* suspend option sent to target */
    A_UINT32 pdev_id; /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 suspend_opt;
} wmi_pdev_suspend_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_resume_cmd_fixed_param  */
    A_UINT32 pdev_id; /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
} wmi_pdev_resume_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_rate_stats_event_fixed_param,  */
    A_UINT32 num_vdev_stats; /* number of vdevs */
} wmi_vdev_rate_stats_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len, tag equals WMITLV_TAG_STRUC_wmi_vdev_rate_ht_info*/
    A_UINT32 vdevid; /* Id of the wlan vdev*/
    A_UINT32 tx_nss; /* Bit 28 of tx_rate_kbps has this info - based on last data packet transmitted*/
    A_UINT32 rx_nss; /* Bit 24 of rx_rate_kbps - same as above*/
    A_UINT32 tx_preamble; /* Bits 30-29 from tx_rate_kbps */
    A_UINT32 rx_preamble; /* Bits 26-25 from rx_rate_kbps */
} wmi_vdev_rate_ht_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len, tag equals WMITLV_TAG_STRUC_wmi_rx_aggr_failure_event_fixed_param */
    A_UINT32 num_failure_info; /* How many holes on rx aggregation */
} wmi_rx_aggr_failure_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len, tag equals WMITLV_wmi_rx_aggr_failure_info */
    A_UINT32 start_seq; /* start sequence number of the hole */
    A_UINT32 end_seq; /* end sequence number of the hole */
} wmi_rx_aggr_failure_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_pn_request_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    A_UINT32 key_type; /* use standard cipher types - see WMI_CIPHER_ defs */
    /** key index **/
    A_UINT32 key_ix;
} wmi_peer_tx_pn_request_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rx_pn_request_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    A_UINT32 key_type; /* use standard cipher types - see WMI_CIPHER_ defs */
    /** key index **/
    A_UINT32 key_ix;
} wmi_peer_rx_pn_request_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_pn_response_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    A_UINT32 key_type; /* use standard cipher types - see WMI_CIPHER_ defs */
    /** Packet Number
    * The PN is provided in little endian order, with bits 7:0 of the PN
    * residing in pn[0].
    * The key_type indirectly specifies the packet number length, and thus
    * how many bytes within pn[] are filled with valid data.
    */
    A_UINT8 pn[16];
    /** key index **/
    A_UINT32 key_ix;
} wmi_peer_tx_pn_response_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rx_pn_response_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    A_UINT32 key_type; /* use standard cipher types - see WMI_CIPHER_ defs */
    A_UINT32 key_idx;
    /** Packet Number
    * The PN is provided in little endian order, with bits 7:0 of the PN
    * residing in pn[0].
    * The key_type indirectly specifies the packet number length, and thus
    * how many bytes within pn[] are filled with valid data.
    */
    A_UINT8 pn[WMI_MAX_PN_LEN];
} wmi_peer_rx_pn_response_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_stats_event_fixed_param */
    wmi_stats_id stats_id;
    /** number of pdev stats event structures (wmi_pdev_stats) 0 or 1 */
    A_UINT32 num_pdev_stats;
    /** number of vdev stats event structures  (wmi_vdev_stats) 0 or max vdevs */
    A_UINT32 num_vdev_stats;
    /** number of peer stats event structures  (wmi_peer_stats) 0 or max peers */
    A_UINT32 num_peer_stats;
    A_UINT32 num_bcnflt_stats;
    /** number of chan stats event structures  (wmi_chan_stats) 0 to MAX MCC CHANS */
    A_UINT32 num_chan_stats;
    /** number of MIB stats event structures (wmi_mib_stats) */
    A_UINT32 num_mib_stats;
    A_UINT32 pdev_id; /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0. */
    /** number of beacon stats event structures (wmi_bcn_stats) */
    A_UINT32 num_bcn_stats;
    /** number of extended peer stats event structures (wmi_peer_extd_stats) */
    A_UINT32 num_peer_extd_stats;
    /** number of extd2 peer stats event structures (wmi_peer_extd2_stats) */
    A_UINT32 num_peer_extd2_stats;
    /** last_event
     * The most significant bit is set to 1 to indicate whether the last_event
     * field contains valid data.  The least significant bit is set to 1 to
     * indicate this is the final WMI_STATS_EVENT in a series.
     */
    A_UINT32 last_event;
    /** number of extended MIB stats event structures (wmi_mib_extd_stats) */
    A_UINT32 num_mib_extd_stats;
    /** Indicates the vdev id of the stats for MLO stats query */
    wmi_vdev_id_info vdev_id_info;
    /** Indicates the vdev id of the stats for MLO stats query v2 */
    wmi_vdev_id_info_v2 vdev_id_info_v2;

/* This TLV is followed by another TLV of array of bytes
 *   A_UINT8 data[];
 *  This data array contains
 *   num_pdev_stats * size of(struct wmi_pdev_stats)
 *   num_vdev_stats * size of(struct wmi_vdev_stats)
 *   num_peer_stats * size of(struct wmi_peer_stats)
 *   num_bcnflt_stats * size_of()
 *   num_chan_stats * size of(struct wmi_chan_stats)
 *   num_mib_stats * size of(struct wmi_mib_stats)
 *   num_bcn_stats * size of(struct wmi_bcn_stats)
 */
/* If WMI_REQUEST_PEER_EXTD_STAT is set in stats_id,
 * the data[] array also contains num_peer_stats * size of wmi_peer_extd_stats
 * following the information elements listed above.
 */
/* If WMI_REQUEST_MIB_EXTD_STAT is set in stats_id,
 * the data[] array also contains
 * num_mib_extd_stats * size of(struct wmi_mib_extd_stats)
 * following the information elements listed above.
 */
/* If WMI_REQUEST_PMF_BCN_PROTECT_STAT is set in stats_id, then TLV
 * wmi_pmf_bcn_protect_stats pmf_bcn_protect_stats[]
 * follows the other TLVs
 */
/* If WMI_REQUEST_VDEV_EXTD_STAT is set in stats_id, then TLV
 * wmi_vdev_extd_stats wmi_vdev_extd_stats[]
 * follows the other TLVs
 */
/* If WMI_REQUEST_PDEV_EXTD_STAT is set in stats_id, then TLV
 * wmi_pdev_extd_stats wmi_pdev_extd_stats[]
 * follows the other TLVs
 */
/* If WMI_REQUEST_PDEV_TELEMETRY_STAT is set in stats_id, then TLV
 * wmi_pdev_telemetry_stats wmi_pdev_telemetry_stats[]
 * follows the other TLVs
 */
} wmi_stats_event_fixed_param;

/* WLAN channel CCA stats bitmap  */
#define WLAN_STATS_IDLE_TIME_SHIFT             0
#define WLAN_STATS_IDLE_TIME_TIME              0x00000001

#define WLAN_STATS_TX_TIME_SHIFT               1
#define WLAN_STATS_TX_TIME_MASK                0x00000002

#define WLAN_STATS_RX_IN_BSS_TIME_SHIFT        2
#define WLAN_STATS_RX_IN_BSS_TIME_MASK         0x00000004

#define WLAN_STATS_RX_OUT_BSS_TIME_SHIFT       3
#define WLAN_STATS_RX_OUT_BSS_TIME_MASK        0x00000008

#define WLAN_STATS_RX_BUSY_TIME_SHIFT          4
#define WLAN_STATS_RX_BUSY_TIME_MASK           0x00000010

#define WLAN_STATS_RX_IN_BAD_COND_TIME_SHIFT   5
#define WLAN_STATS_RX_IN_BAD_COND_TIME_MASK    0x00000020

#define WLAN_STATS_TX_IN_BAD_COND_TIME_SHIFT   6
#define WLAN_STATS_TX_IN_BAD_COND_TIME_MASK    0x00000040

#define WLAN_STATS_WLAN_NOT_AVAIL_TIME_SHIFT   7
#define WLAN_STATS_WLAN_NOT_AVAIL_TIME_MASK    0x00000080

/* WLAN peer signal stats bitmap  */
#define WLAN_STATS_PER_CHAIN_SNR_SHIFT         0
#define WLAN_STATS_PER_CHAIN_SNR_MASK          0x00000001

#define WLAN_STATS_PER_CHAIN_NF_SHIFT          1
#define WLAN_STATS_PER_CHAIN_NF_MASK           0x00000002

/* WLAN TX stats bitmap  */
#define WLAN_STATS_TX_MSDU_CNT_SHIFT           0
#define WLAN_STATS_TX_MSDU_CNT_MASK            0x00000001

#define WLAN_STATS_TX_MPDU_CNT_SHIFT           1
#define WLAN_STATS_TX_MPDU_CNT_MASK            0x00000002

#define WLAN_STATS_TX_PPDU_CNT_SHIFT           2
#define WLAN_STATS_TX_PPDU_CNT_MASK            0x00000004

#define WLAN_STATS_TX_BYTES_SHIFT              3
#define WLAN_STATS_TX_BYTES_MASK               0x00000008

#define WLAN_STATS_TX_MSDU_DROP_CNT_SHIFT      4
#define WLAN_STATS_TX_MSDU_DROP_CNT_MASK       0x00000010

#define WLAN_STATS_TX_DROP_BYTES_SHIFT         5
#define WLAN_STATS_TX_DROP_BYTES_MASK          0x00000020

#define WLAN_STATS_TX_MPDU_RETRY_CNT_SHIFT     6
#define WLAN_STATS_TX_MPDU_RETRY_CNT_MASK      0x00000040

#define WLAN_STATS_TX_MPDU_FAIL_CNT_SHIFT      7
#define WLAN_STATS_TX_MPDU_FAIL_CNT_MASK       0x00000080

#define WLAN_STATS_TX_PPDU_FAIL_CNT_SHIFT      8
#define WLAN_STATS_TX_PPDU_FAIL_CNT_MASK       0x00000100

#define WLAN_STATS_TX_MPDU_AGGR_SHIFT          9
#define WLAN_STATS_TX_MPDU_AGGR_MASK           0x00000200

#define WLAN_STATS_TX_SUCC_MCS_SHIFT           10
#define WLAN_STATS_TX_SUCC_MCS_MASK            0x00000400

#define WLAN_STATS_TX_FAIL_MCS_SHIFT           11
#define WLAN_STATS_TX_FAIL_MCS_MASK            0x00000800

#define WLAN_STATS_TX_PPDU_DELAY_SHIFT         12
#define WLAN_STATS_TX_PPDU_DELAY_MASK          0x00001000

/* WLAN RX stats bitmap  */
#define WLAN_STATS_MAC_RX_MPDU_CNT_SHIFT     0
#define WLAN_STATS_MAC_RX_MPDU_CNT_MASK      0x00000001

#define WLAN_STATS_MAC_RX_BYTES_SHIFT        1
#define WLAN_STATS_MAC_RX_BYTES_MASK         0x00000002

#define WLAN_STATS_PHY_RX_PPDU_CNT_SHIFT     2
#define WLAN_STATS_PHY_RX_PPDU_CNT_MASK      0x00000004

#define WLAN_STATS_PHY_RX_BYTES_SHIFT        3
#define WLAN_STATS_PHY_RX_BYTES_MASK         0x00000008

#define WLAN_STATS_RX_DISORDER_CNT_SHIFT     4
#define WLAN_STATS_RX_DISORDER_CNT_MASK      0x00000010

#define WLAN_STATS_RX_MPDU_RETRY_CNT_SHIFT   5
#define WLAN_STATS_RX_MPDU_RETRY_CNT_MASK    0x00000020

#define WLAN_STATS_RX_MPDU_DUP_CNT_SHIFT     6
#define WLAN_STATS_RX_MPDU_DUP_CNT_MASK      0x00000040

#define WLAN_STATS_RX_MPDU_DISCARD_CNT_SHIFT 7
#define WLAN_STATS_RX_MPDU_DISCARD_CNT_MASK  0x00000080

#define WLAN_STATS_RX_MPDU_AGGR_SHIFT        8
#define WLAN_STATS_RX_MPDU_AGGR_MASK         0x00000100

#define WLAN_STATS_RX_MCS_SHIFT              9
#define WLAN_STATS_RX_MCS_MASK               0x00000200

#define WLAN_STATS_STA_PS_INDS_SHIFT         10
#define WLAN_STATS_STA_PS_INDS_MASK          0x00000400

#define WLAN_STATS_STA_PS_DURS_SHIFT         11
#define WLAN_STATS_STA_PS_DURS_MASK          0x00000800

#define WLAN_STATS_RX_PROBE_REQS_SHIFT       12
#define WLAN_STATS_RX_PROBE_REQS_MASK        0x00001000

#define WLAN_STATS_RX_OTH_MGMTS_SHIFT        13
#define WLAN_STATS_RX_OTH_MGMTS_MASK         0x00002000

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chan_cca_stats */
    A_UINT32 vdev_id;
    /** Percentage of idle time, no TX, no RX, no interference */
    A_UINT32 idle_time;
    /** Percentage of time transmitting packets */
    A_UINT32 tx_time;
    /** Percentage of time receiving packets in current BSSs */
    A_UINT32 rx_in_bss_time;
    /** Percentage of time receiving packets not in current BSSs */
    A_UINT32 rx_out_bss_time;
    /** Percentage of time interference detected. */
    A_UINT32 rx_busy_time;
    /** Percentage of time receiving packets with errors
     * or packets flagged as retransmission or seqnum discontinued. */
    A_UINT32 rx_in_bad_cond_time;
    /** Percentage of time the device transmitted packets that haven't been ACKed. */
    A_UINT32 tx_in_bad_cond_time;
    /** Percentage of time the chip is unable to work in normal conditions. */
    A_UINT32 wlan_not_avail_time;
} wmi_chan_cca_stats;

/** Thresholds of cca stats, stands for percentages of stats variation.
 *  Check wmi_chan_cca_stats for each stats's meaning.
 */
typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chan_cca_stats_thresh */
    A_UINT32 idle_time;           /* units = percent */
    A_UINT32 tx_time;             /* units = percent */
    A_UINT32 rx_in_bss_time;      /* units = percent */
    A_UINT32 rx_out_bss_time;     /* units = percent */
    A_UINT32 rx_busy_time;        /* units = percent */
    A_UINT32 rx_in_bad_cond_time; /* units = percent */
    A_UINT32 tx_in_bad_cond_time; /* units = percent */
    A_UINT32 wlan_not_avail_time; /* units = percent */
} wmi_chan_cca_stats_thresh;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_signal_stats */
    A_UINT32 vdev_id;
    A_UINT32 peer_id;
    /** per chain SNR in current bss, units are dB */
    A_INT32 per_chain_snr[WMI_MAX_CHAINS];
    /** per chain background noise, units are dBm */
    A_INT32 per_chain_nf[WMI_MAX_CHAINS];
    /** per antenna rx MPDUs */
    A_UINT32 per_antenna_rx_mpdus[WMI_MAX_CHAINS];
    /** per antenna tx MPDUs */
    A_UINT32 per_antenna_tx_mpdus[WMI_MAX_CHAINS];
    /** num of valid chains for per antenna rx/tx MPDU cnts*/
    A_UINT32 num_chains_valid;
} wmi_peer_signal_stats;

/** Thresholds of signal stats, stand for percentage of stats variation.
 *  Check wmi_peer_signal_stats for each stats's meaning.
 */
typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_signal_stats_thresh */
    A_UINT32 per_chain_snr; /* units = dB */
    A_UINT32 per_chain_nf; /* units = dBm */
} wmi_peer_signal_stats_thresh;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_stats */
    /** Number of total TX MSDUs on MAC layer in the period */
    A_UINT32 tx_msdu_cnt;
    /** Number of total TX MPDUs on MAC layer in the period */
    A_UINT32 tx_mpdu_cnt;
    /** Number of total TX PPDUs on MAC layer in the period */
    A_UINT32 tx_ppdu_cnt;
    /** Bytes of tx data on MAC layer in the period */
    A_UINT32 tx_bytes;
    /** Number of TX MSDUs cancelled due to any reason in the period,
     * such as WMM limitation/bandwidth limitation/radio congestion */
    A_UINT32 tx_msdu_drop_cnt;
    /** Bytes of dropped TX packets in the period */
    A_UINT32 tx_drop_bytes;
    /** Number of unacked transmissions of MPDUs */
    A_UINT32 tx_mpdu_retry_cnt;
    /** Number of MPDUs have not been ACKed despite retried */
    A_UINT32 tx_mpdu_fail_cnt;
    /** Number of PPDUs which received no block ack */
    A_UINT32 tx_ppdu_fail_cnt;
    /* This TLV is followed by TLVs below: :
     *     A_UINT32 tx_mpdu_aggr[tx_mpdu_aggr_array_len];
     *     A_UINT32 tx_succ_mcs[tx_succ_mcs_array_len];
     *     A_UINT32 tx_fail_mcs[tx_fail_mcs_array_len];
     *     A_UINT32 tx_ppdu_delay[tx_ppdu_delay_array_len];
     */
} wmi_tx_stats;

/** Thresholds of tx stats, stand for percentage of stats variation.
 *  Check wmi_tx_stats for each stats's meaning.
 */
typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_stats_thresh */
    A_UINT32 tx_msdu_cnt;
    A_UINT32 tx_mpdu_cnt;
    A_UINT32 tx_ppdu_cnt;
    A_UINT32 tx_bytes;
    A_UINT32 tx_msdu_drop_cnt;
    A_UINT32 tx_drop_bytes;
    A_UINT32 tx_mpdu_retry_cnt;
    A_UINT32 tx_mpdu_fail_cnt;
    A_UINT32 tx_ppdu_fail_cnt;
    A_UINT32 tx_mpdu_aggr;
    A_UINT32 tx_succ_mcs;
    A_UINT32 tx_fail_mcs;
    A_UINT32 tx_ppdu_delay;
} wmi_tx_stats_thresh;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_ac_tx_stats */
    A_UINT32 vdev_id;
    A_UINT32 peer_id;
    /* The TLVs for the 4 AC follows:
     *     wmi_tx_stats tx_stats[];   wmi_tx_stats for BE/BK/VI/VO
     */
} wmi_peer_ac_tx_stats;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rx_stats */
    /** Number of RX MPDUs on MAC layer */
    A_UINT32 mac_rx_mpdu_cnt;
    /** Bytes of RX packets on MAC layer */
    A_UINT32 mac_rx_bytes;
    /** Number of RX PPDU on PHY layer */
    A_UINT32 phy_rx_ppdu_cnt;
    /** Bytes of RX packets on PHY layer */
    A_UINT32 phy_rx_bytes;
    /** Number of discontinuity in seqnum */
    A_UINT32 rx_disorder_cnt;
    /** Number of RX MPDUs flagged as retransmissions */
    A_UINT32 rx_mpdu_retry_cnt;
    /** Number of RX MPDUs identified as duplicates */
    A_UINT32 rx_mpdu_dup_cnt;
    /** Number of RX MPDUs discarded */
    A_UINT32 rx_mpdu_discard_cnt;
    /* This TLV is followed by TLVs below:
     *     A_UINT32 rx_mpdu_aggr[rx_mpdu_aggr_array_len];
     *     A_UINT32 rx_mcs[rx_mcs_array_len];
     */
} wmi_rx_stats;

/** Thresholds of rx stats, stands for percentage of stats variation.
 *  Check wmi_rx_stats for each stats's meaning.
 */
typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rx_stats_thresh */
    A_UINT32 mac_rx_mpdu_cnt;
    A_UINT32 mac_rx_bytes;
    A_UINT32 phy_rx_ppdu_cnt;
    A_UINT32 phy_rx_bytes;
    A_UINT32 rx_disorder_cnt;
    A_UINT32 rx_mpdu_retry_cnt;
    A_UINT32 rx_mpdu_dup_cnt;
    A_UINT32 rx_mpdu_discard_cnt;
    A_UINT32 rx_mpdu_aggr;
    A_UINT32 rx_mcs;
    A_UINT32 sta_ps_inds;
    A_UINT32 sta_ps_durs;
    A_UINT32 rx_probe_reqs;
    A_UINT32 rx_oth_mgmts;
} wmi_rx_stats_thresh;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_ac_rx_stats */
    A_UINT32 vdev_id;
    A_UINT32 peer_id;
    /** How many times STAs go to sleep */
    A_UINT32 sta_ps_inds;
    /** Total sleep time of STAs, milliseconds units */
    A_UINT32 sta_ps_durs;
    /** Number of probe requests received */
    A_UINT32 rx_probe_reqs;
    /** Number of other management frames received, not including probe requests */
    A_UINT32 rx_oth_mgmts;
    /* The TLVs for the 4 AC follows:
     *     wmi_rx_stats rx_stats[];  wmi_rx_stats for BE/BK/VI/VO
     */
} wmi_peer_ac_rx_stats;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_stats_period */
    /*
     * This struct provides the timestamps from a low-frequency timer
     * for the start and end of a stats period.
     * Each timestamp is reported twice, with different units.
     * The _msec timestamp is in millisecond units.
     * The _count timestamp is in clock tick units.
     * The timestamp is reported in clock ticks as well as in milliseconds
     * so that if the stats start and end times fall within the same
     * millisecond, the clock tick timestamps can still be used to
     * determine what fraction of a millisecond the stats period occupied.
     */
    A_UINT32 start_low_freq_msec;
    A_UINT32 start_low_freq_count;
    A_UINT32 end_low_freq_msec;
    A_UINT32 end_low_freq_count;
} wmi_stats_period;

typedef enum {
    /** Periodic timer timed out, based on the period specified
     *  by WMI_PDEV_PARAM_STATS_OBSERVATION_PERIOD
     */
    TRIGGER_COND_ID_TIMER_TIMED_OUT  =  0x1,
    /** Any of the (enabled) stats thresholds specified
     *  in the WMI_PDEV_SET_STATS_THRESHOLD_CMD message is exceeded
     *  within the current stats period.
     */
    TRIGGER_COND_ID_THRESH_EXCEEDED  =  0x2,
    /** In Response to the one-time wlan stats request of
     *  WMI_REQUEST_WLAN_STATS_CMDID from host.
     */
    TRIGGER_COND_ID_ONE_TIME_REQUEST =  0x3,
} wmi_report_stats_event_trigger_cond_id;

typedef struct
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_stats_interference */

    /** For cases where a single rx chain has options to be connected to
     * different rx antennas, show which rx antennas were in use during
     * receipt of a given PPDU.
     * This sa_ant_matrix provides a bitmask of the antennas used while
     * receiving this frame.
     */
    A_UINT32 sa_ant_matrix;

    /** Count how many times the hal_rxerr_phy is marked, in this time period.
     * The counter value is reset each period. The host specifies the period
     * via WMI_PDEV_PARAM_STATS_OBSERVATION_PERIOD.
     */
    A_UINT32 phyerr_count;

    /** The timestamp at which the WMI event is reported.
     * In targets that have a WBTIMER_1 timer, this timestamp is taken
     * from WBTIMER_1.
     */
    A_UINT32 timestamp;
} wmi_stats_interference;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_report_stats_event_fixed_param */
    /** Indicate what triggered this event, check wmi_report_stats_event_trigger_cond_id for details */
    A_UINT32 trigger_cond_id;
    /** Bitmap to indicate changed channel CCA stats which exceeded the thresholds */
    A_UINT32 cca_chgd_bitmap;
    /** Bitmap to indicate changed peer signal stats which exceeded the thresholds */
    A_UINT32 sig_chgd_bitmap;
    /** Bitmap to indicate changed TX counters which exceeded the thresholds */
    A_UINT32 tx_chgd_bitmap;
    /** Bitmap to indicate changed RX counters which exceeded the thresholds */
    A_UINT32 rx_chgd_bitmap;
    /** number of per channel CCA stats structures (wmi_chan_cca_stats), 0 to max vdevs*/
    A_UINT32 num_chan_cca_stats;
    /** number of per peer signal stats structures (wmi_peer_signal_stats), 0 to max peers*/
    A_UINT32 num_peer_signal_stats;
    /** number of per peer ac TX stats structures (wmi_peer_ac_tx_stats), 0 to max peers*/
    A_UINT32 num_peer_ac_tx_stats;
    /** Array length of tx_mpdu_aggr[] which is histogram of MPDU aggregation size(1 to 7 and 8+).
     *  The array indicates number of MPDUs sent on specified aggregation size
     *  (per number of MPDUs per AMPDUs / 1 to 7 and 8+).
     *  Array length can be set per WMI_PDEV_PARAM_TX_MPDU_AGGR_ARRAY_LEN */
    A_UINT32 tx_mpdu_aggr_array_len;
    /** Array length of tx_succ_mcs[] which is histogram of encoding rate.
     *  The array indicates number of acked PPDUs sent at a specific rate */
    A_UINT32 tx_succ_mcs_array_len;
    /** Array length of tx_fail_mcs[] which is histogram of encoding rate.
     *  The array indicates number of unacked PPDUs sent at a specific rate */
    A_UINT32 tx_fail_mcs_array_len;
    /** tx_ppdu_delay[]is a histogram of delays on MAC layer.
    * The array counts numbers of PPDUs encountering different TX time delays.
    * TX delay here means time interval between the time a PPDU is queued
    * to the MAC HW for transmission and the time the lower layers of
    * tx FW return a tx status.
    *
    * The bin size tx_ppdu_delay_bin_size_ms specifies how many milliseconds
    * each bin of the tx_ppdu_delay histogram represents.
    * By default the bin size is 10ms.
    * tx_ppdu_delay[0] -> delays between 0-9 ms
    * tx_ppdu_delay[1] -> delays between 10-19 ms
    * ...
    * tx_ppdu_delay[9] -> delays between 90-99 ms
    * tx_ppdu_delay[10] -> delays >= 100 ms
    * Bin size can be set per WMI_PDEV_PARAM_TX_PPDU_DELAY_BIN_SIZE_MS.
    */
    A_UINT32 tx_ppdu_delay_bin_size_ms;
    /** Array length of tx_ppdu_delay[]. It can be set per WMI_PDEV_PARAM_TX_PPDU_DELAY_ARRAY_LEN */
    A_UINT32 tx_ppdu_delay_array_len;
    /** number of per peer ac RX stats structures (wmi_peer_ac_rx_stats), 0 to max peers*/
    A_UINT32 num_peer_ac_rx_stats;
    /** Array length of rx_mpdu_aggr[] which is histogram of MPDU aggregation size(1 to 7 and 8+).
     *  It can be set per WMI_PDEV_PARAM_RX_MPDU_AGGR_ARRAY_LEN */
    A_UINT32 rx_mpdu_aggr_array_len;
    /** Array size of rx_mcs[] which is histogram of encoding rate.
     *  The array indicates number of PPDUs received at a specific rate */
    A_UINT32 rx_mcs_array_len;
    /** Array size of stats_period[] which contains several stats periods. */
    A_UINT32 stats_period_array_len;
    /** Indicates the vdev id for MLO case */
    wmi_vdev_id_info vdev_id_info;

    /**
     * This TLV is followed by TLVs below:
     *    wmi_chan_cca_stats       chan_cca_stats[];         Array length is specified by num_chan_cca_stats
     *    wmi_peer_signal_stats    peer_signal_stats[];      Array length is specified by num_peer_signal_stats
     *    wmi_peer_ac_tx_stats     peer_ac_tx_stats[];       Array length is specified by num_peer_ac_tx_stats
     *    wmi_tx_stats             tx_stats[][];             Array length is num_peer_ac_tx_stats * WLAN_MAX_AC, array index is (peer_index * WLAN_MAX_AC + ac_index)
     *    A_UINT32                 tx_mpdu_aggr[][][];       Array length is num_peer_ac_tx_stats * WLAN_MAX_AC * tx_mpdu_aggr_array_len,
     *                                                       array index is (peer_index * WLAN_MAX_AC + ac_index) * tx_mpdu_aggr_array_len + A-MPDU aggregation index
     *    A_UINT32                 tx_succ_mcs[][][];        Array length is num_peer_ac_tx_stats * WLAN_MAX_AC * tx_succ_mcs_array_len,
     *                                                       array index is (peer_index * WLAN_MAX_AC + ac_index) * tx_succ_mcs_array_len + MCS index
     *    A_UINT32                 tx_fail_mcs[][][];        Array length is num_peer_ac_tx_stats * WLAN_MAX_AC * tx_fail_mcs_array_len,
     *                                                       array index is (peer_index * WLAN_MAX_AC + ac_index) * tx_fail_mcs_array_len + MCS index
     *    A_UINT32                 tx_ppdu_delay[][][];      Array length is num_peer_ac_tx_stats * WLAN_MAX_AC * tx_ppdu_delay_array_len,
     *                                                       array index is (peer_index * WLAN_MAX_AC + ac_index) * tx_ppdu_delay_array_len + tx delay index
     *    wmi_peer_ac_rx_stats     peer_ac_rx_stats[];       Array length is specified by num_peer_ac_rx_stats
     *    wmi_rx_stats             rx_stats[][];             Array length is num_peer_ac_rx_stats * WLAN_MAX_AC, array index is (peer_index * WLAN_MAX_AC + ac_index)
     *    A_UINT32                 rx_mpdu_aggr[][][];       Array length is num_peer_ac_rx_stats * WLAN_MAX_AC * rx_mpdu_aggr_array_len,
     *                                                       array index is (peer_index * WLAN_MAX_AC + ac_index) * rx_mpdu_aggr_array_len + A-MPDU aggregation index
     *    A_UINT32                 rx_mcs[][][];             Array length is (num_peer_ac_rx_stats * WLAN_MAX_AC) * rx_mcs_array_len,
     *                                                       array index is (peer_index * WLAN_MAX_AC + ac_index) * rx_mcs_array_len + MCS index
     *    wmi_stats_period         stats_period[];           Array length is specified by stats_period_array_len
     *    wmi_stats_interference   stats_interference[];     Array length is determied by dividing array level TLV header's length value by array-element TLV header's length value.
     **/
} wmi_report_stats_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_stats_info */
    A_UINT32 tlv_header;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** bytes (size of MPDUs) transmitted to this peer */
    struct {
        /* lower 32 bits of the tx_bytes value */
        A_UINT32 low_32;
        /* upper 32 bits of the tx_bytes value */
        A_UINT32 high_32;
    } tx_bytes;
    /** packets (MSDUs) transmitted to this peer */
    struct {
        /* lower 32 bits of the tx_packets value */
        A_UINT32 low_32;
        /* upper 32 bits of the tx_packets value */
        A_UINT32 high_32;
    } tx_packets;
    /** bytes (size of MPDUs) received from this peer */
    struct {
        /* lower 32 bits of the rx_bytes value */
        A_UINT32 low_32;
        /* upper 32 bits of the rx_bytes value */
        A_UINT32 high_32;
    } rx_bytes;
    /** packets (MSDUs) received from this peer */
    struct {
        /* lower 32 bits of the rx_packets value */
        A_UINT32 low_32;
        /* upper 32 bits of the rx_packets value */
        A_UINT32 high_32;
    } rx_packets;
    /** cumulative retry counts (MPDUs) */
    A_UINT32 tx_retries;
    /** number of failed transmissions (MPDUs) (retries exceeded, no ACK) */
    A_UINT32 tx_failed;
    /** rate information, it is output of WMI_ASSEMBLE_RATECODE_V1
     *  (in format of 0x1000RRRR)
     * The rate-code is a 4-bytes field in which,
     * for given rate, nss and preamble
     *
     * b'31-b'29 unused / reserved
     * b'28      indicate the version of rate-code (1 = RATECODE_V1)
     * b'27-b'11 unused / reserved
     * b'10-b'8  indicate the preamble (0 OFDM, 1 CCK, 2 HT, 3 VHT)
     * b'7-b'5   indicate the NSS (0 - 1x1, 1 - 2x2, 2 - 3x3, 3 - 4x4)
     * b'4-b'0   indicate the rate, which is indicated as follows:
     *          OFDM :     0: OFDM 48 Mbps
     *                     1: OFDM 24 Mbps
     *                     2: OFDM 12 Mbps
     *                     3: OFDM 6 Mbps
     *                     4: OFDM 54 Mbps
     *                     5: OFDM 36 Mbps
     *                     6: OFDM 18 Mbps
     *                     7: OFDM 9 Mbps
     *         CCK (pream == 1)
     *                     0: CCK 11 Mbps Long
     *                     1: CCK 5.5 Mbps Long
     *                     2: CCK 2 Mbps Long
     *                     3: CCK 1 Mbps Long
     *                     4: CCK 11 Mbps Short
     *                     5: CCK 5.5 Mbps Short
     *                     6: CCK 2 Mbps Short
     *         HT/VHT (pream == 2/3)
     *                     0..7: MCS0..MCS7 (HT)
     *                     0..9: MCS0..MCS9 (11AC VHT)
     *                     0..11: MCS0..MCS11 (11AX VHT)
     */
    /** rate-code of the last transmission */
    A_UINT32 last_tx_rate_code;
    /** rate-code of the last received PPDU */
    A_UINT32 last_rx_rate_code;
    /** bitrate of the last transmission, in units of kbps */
    A_UINT32 last_tx_bitrate_kbps;
    /** bitrate of the last received PPDU, in units of kbps */
    A_UINT32 last_rx_bitrate_kbps;
    /** combined RSSI of the last received PPDU, in unit of dBm */
    A_INT32 peer_rssi;
    /** number of succeed transmissions (MPDUs) (ACK) */
    A_UINT32 tx_succeed;
    /**
     * The RSSI values are in dBm units, and are exponentially time-averaged.
     * The averaging is performed on the dB values (rather than the linear
     * values).
     */
    A_INT32 peer_rssi_per_chain[WMI_MAX_CHAINS];
    /* show how many elements in the tx_rate_counts array belong to this peer */
    A_UINT32 num_tx_rate_counts;
    /* show how many elements in the rx_rate_counts array belong to this peer */
    A_UINT32 num_rx_rate_counts;
    /* This TLV array is followed by other TLVs:
     *   A_UINT32 tx_rate_counts[sum(num_tx_rate_counts)];
     *       The above num_tx_rate_counts field shows which elements
     *       within the tx_rate_counts array belong to a given peer.
     *       Elements tx_rate_counts[0] to tx_rate_counts[N0-1] belong to
     *       peer 0, where N0 = peer_stats_info[0].num_tx_rate_counts.
     *       Elements tx_rate_counts[N0] to tx_rate_counts[N0+N1-1] belong to
     *       peer 1, where N1 = peer_stats_info[1].num_tx_rate_counts.
     *       etc.
     *   A_UINT32 rx_rate_counts[sum(num_rx_rate_counts)];
     *       The above num_rx_rate_counts field shows which elements
     *       within the rx_rate_counts array belong to a given peer.
     *       Elements rx_rate_counts[0] to rx_rate_counts[N0-1] belong to
     *       peer 0, where N0 = peer_stats_info[0].num_rx_rate_counts.
     *       Elements rx_rate_counts[N0] to rx_rate_counts[N0+N1-1] belong to
     *       peer 1, where N1 = peer_stats_info[1].num_rx_rate_counts.
     *       etc.
     */
} wmi_peer_stats_info;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_stats_info_event_fixed_param */
    A_UINT32 tlv_header;
    /** VDEV to which the peers belong to */
    A_UINT32 vdev_id;
    /** number of peers in peer_stats_info[] */
    A_UINT32 num_peers;
    /** flag to indicate if there are more peers which will
     *  be sent a following separate peer_stats_info event */
    A_UINT32 more_data;
    /* This TLV is followed by another TLV of array of structs
     * wmi_peer_stats_info peer_stats_info[];
     */
} wmi_peer_stats_info_event_fixed_param;

/**
 * WMI arrays of length WMI_MGMT_FRAME_SUBTYPE_MAX use the
 * IEEE802.11 standard's enumeration of mgmt frame subtypes:
 *  0 -> IEEE80211_FC0_SUBTYPE_ASSOC_REQ
 *  1 -> IEEE80211_FC0_SUBTYPE_ASSOC_RESP
 *  2 -> IEEE80211_FC0_SUBTYPE_REASSOC_REQ
 *  3 -> IEEE80211_FC0_SUBTYPE_REASSOC_RESP
 *  4 -> IEEE80211_FC0_SUBTYPE_PROBE_REQ
 *  5 -> IEEE80211_FC0_SUBTYPE_PROBE_RESP
 *  6 -> Reserved
 *  7 -> Reserved
 *  8 -> IEEE80211_FC0_SUBTYPE_BEACON
 *  9 -> IEEE80211_FC0_SUBTYPE_ATIM
 * 10 -> IEEE80211_FC0_SUBTYPE_DISASSOC
 * 11 -> IEEE80211_FC0_SUBTYPE_AUTH
 * 12 -> IEEE80211_FC0_SUBTYPE_DEAUTH
 * 13 -> IEEE80211_FCO_SUBTYPE_ACTION
 * 14 -> IEEE80211_FC0_SUBTYPE_ACTION_NOACK
 * 15 -> IEEE80211_FC0_SUBTYPE_RESERVED
 */
#define WMI_MGMT_FRAME_SUBTYPE_MAX 16

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_path_pdev_stats_struct*/
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /** counter of how many times this pdev has
     *  transmitted each management frame sub-type */
    A_UINT32 tx_mgmt_subtype[WMI_MGMT_FRAME_SUBTYPE_MAX];
    /** counter of how many times this pdev has
     *  received each management frame sub-type */
    A_UINT32 rx_mgmt_subtype[WMI_MGMT_FRAME_SUBTYPE_MAX];
    /** scan fail dfs violation time in ms */
    A_UINT32 scan_fail_dfs_violation_time_ms;
    /** NOL check failed latest channel frequency in MHz */
    A_UINT32 nol_check_fail_last_chan_freq;
    /** NOL check failed timestamp in ms */
    A_UINT32 nol_check_fail_time_stamp_ms;
    /** total peer create count */
    A_UINT32 total_peer_create_cnt;
    /** total peer delete count */
    A_UINT32 total_peer_delete_cnt;
    /** total peer delete response count */
    A_UINT32 total_peer_delete_resp_cnt;
    /** sched algo FIFO full count */
    A_UINT32 vdev_pause_fail_rt_to_sched_algo_fifo_full_cnt;
    /** total number of qos null tx frame queued over WMI */
    A_UINT32 qos_null_tx_over_wmi;
    /** total qos null tx frame completion received count */
    A_UINT32 qos_null_tx_send_compl_over_wmi;
    /** total event alloc failure count for qos null tx send */
    A_UINT32 qos_null_tx_send_event_alloc_failed;

    /** wlan_pdev fields num_macs, vdev_up_count and vdev_active_count
     * num_macs_phy_vdev_up_active:
     * This word contains the following bitfields:
     * number of macs from wlan_pdev
     * (WMI_PDEV_STATS_NUM_MACS_SET,GET)
     * number of vdev up count
     * (WMI_PDEV_STATS_VDEV_UP_CNT_SET,GET)
     * number of vdev active count
     * (WMI_PDEV_STATS_VDEV_UP_CNT_SET,GET)
     */
   A_UINT32 opaque_debug_num_macs_phy_vdev_up_active;
   /** refer wlan_pdev ic flags */
   A_UINT32 opaque_debug_ic_flags;
   /** vdev_id that are paused per pdev */
   A_UINT32 opaque_debug_paused_ap_vdev_bitmap;
   /** opaque_debug_flags:
    * refer to WLAN_PS_DESC_BIN_HWM_HIT or WLAN_PS_DESC_BIN_LWM_HIT
    */
   A_UINT32 opaque_debug_flags;
   /** wlan_pdev fields remote_peer_cnt, max_rf_chains_2G and max_rf_chains_5G
    * remote_peer_cnt_max_rf_chains_2G_5G:
    * This word contains the following bitfields:
    * max chains supported in the 2.4 GHz band
    * (WMI_PDEV_STATS_MAX_RF_CHAIN_2G_SET,GET)
    * max chains supported in the 5 GHz band,
    * (WMI_PDEV_STATS_MAX_RF_CHAIN_5G_SET,GET)
    * number of remote peers
    * (WMI_PDEV_STATS_REMOTE_PEER_CNT_SET,GET)
    */
   A_UINT32 opaque_debug_remote_peer_cnt_max_rf_chains_2G_5G;
   /** wlan_pdev max HT Capability info, WMI_HT_CAP defines */
   A_UINT32 opaque_debug_max_ht_cap_info;
   /** wlan_pdev max VHT capability info, WMI_VHT_CAP defines */
   A_UINT32 opaque_debug_max_vht_cap_info;
   /** opaque_debug_max_vht_supp_mcs:
    * wlan_pdev max VHT Supported MCS which is
    * vht_supp_mcs_2G or vht_supp_mcs_5G
    */
   A_UINT32 opaque_debug_max_vht_supp_mcs;
   /** wlan_pdev max HE capability info, WMI_HE_CAP defines */
   A_UINT32 opaque_debug_max_he_cap_info;
   A_UINT32 opaque_debug_max_he_cap_info_ext;
   /** the nominal chain mask for transmit */
   A_UINT32 opaque_debug_tx_chain_mask;
   /** the nominal chain mask for receive */
   A_UINT32 opaque_debug_rx_chain_mask;
   /** opaque_debug_ema_flags:
    *  This word contains the following bitfields:
    *  ema_flags: ema_max_vap_cnt and ema_max_profile_period from wlan_pdev
    *  ema_max_vap_cnt- number of maximum EMA Tx vaps (VAPs having both
    *  VDEV_FLAGS_EMA_MODE and VDEV_FLAGS_TRANSMIT_AP set)
    *  (WMI_PDEV_STATS_EMA_MAX_VAP_CNT_SET,GET)
    *  ema_max_profile_period - maximum profile periodicity
    *  (maximum number of beacons after which VAP profiles repeat)
    *  for any EMA VAP on any pdev.
    *  (WMI_PDEV_STATS_EMA_MAX_PROFILE_PERIOD_SET,GET)
    */
   A_UINT32 opaque_debug_ema_flags;
   /** wlan_pdev - maximum ML peers supported */
   A_UINT32 opaque_debug_num_ml_peer_entries;
   /** This word contains the following bitfields:
    *  wlan_pdev fields - num_max_hw_links, current_chip_id and max_num_chips
    *      (related to MLO)
    *  Max number of HW links
    *  (WMI_PDEV_STATS_NUM_MAX_HW_LINKS_SET,GET)
    *  Current Chip Id
    *  (WMI_PDEV_STATS_CURRENT_CHIP_ID_SET,GET)
    *  Max number of chips
    *  (WMI_PDEV_STATS_MAX_NUM_CHIPS_SET,GET)
    */
   A_UINT32 opaque_debug_mlo_flags;
   /** Indicate beacon size in bytes */
   A_UINT32 opaque_debug_large_bcn_size;
   /** proposed by the host value of MSDUQs per each LinkView peer's TID */
   A_UINT32 opaque_debug_num_of_linkview_msduqs_per_tid;
   /** bcn_filter_context variables */
   A_UINT32 opaque_debug_bcns_dropped;
   A_UINT32 opaque_debug_bcns_recvd;
   A_UINT32 opaque_debug_bcns_delivered;
   /** Tids that are paused/unpaused based on module_id */
   A_UINT32 opaque_debug_vdev_all_tid_pause_bitmap;
   /** Tids that are blocked/unblocked based on module_id */
   A_UINT32 opaque_debug_vdev_all_tid_block_bitmap;
   /** wal_pdev rx filter, WAL_RX_FILTER_FLAGS defines */
   A_UINT32 opaque_debug_rx_filter;
   /** This word contains the following bitfields:
    *  aggr_nonaggr_retry_th:
    *      wal_pdev fields - agg_retry_th and non_agg_retry_th
    *      This value holds max retry threshold up to which a Data packet
    *      will be retried when ack is not received.
    *      agg_retry_th - Threshold value used when aggregation is enabled
    *          (WMI_PDEV_STATS_AGG_RETRY_TH_SET,GET)
    *      non_agg_retry_th - Threshold value used for non-aggregation.
    *          (WMI_PDEV_STATS_NON_AGG_RETRY_TH_SET)
    */
   A_UINT32 opaque_debug_aggr_nonaggr_retry_th;
   /** This word contains the following bitfields:
    *  num_max_rx_ba_sessions:
    *  Number of rx BA session establised
    *      (WMI_PDEV_STATS_NUM_RX_BA_SESSIONS_SET,GET)
    *  Max number of rx BA session from wal_pdev
    *      (WMI_PDEV_STATS_MAX_RX_BA_SESSIONS_SET,GET)
    */
   A_UINT32 opaque_debug_num_max_rx_ba_sessions;
   /** It holds WHAL_CHANNEL_SWITCH_FLAGS values */
   A_UINT32 opaque_debug_chan_switch_flags;
   /** reset_cause holds PDEV_RESET_CONSEC_FAILURE or PDEV_RESET_TXQ_TIMEOUT */
   A_UINT32 opaque_debug_consecutive_failure_reset_cause;
   /** PPDU duration limit, in us */
   A_UINT32 opaque_debug_mu_ppdu_dur_limit_us;
   /** pdev reset in progress */
   A_UINT32 opaque_debug_reset_in_progress;
   /** wal_dev - vdev_migrate_state refer to WAL_VDEV_MIGRATE_STATE */
   A_UINT32 opaque_debug_vdev_migrate_state;
   /** opaque_debug_rts_rc_flag:
    * wal_pdev rts ratecode - this value reflects whatever
    * WMI_PDEV_PARAM_RTS_FIXED_RATE value the host has specified for the pdev.
    */
   A_UINT32 opaque_debug_rts_rc_flag;
   /* Num of peer delete in progress */
   A_UINT32 opaque_debug_num_of_peer_delete_in_progress;
   /** wal_pdev total number of active vdev count */
   A_UINT32 opaque_debug_total_active_vdev_cnt;
   /** wal_pdev - max number of vdevs per pdev */
   A_UINT32 opaque_debug_max_vdevs;
   /* NonOccupancyList(NOL) context  */
   A_UINT32 opaque_debug_dfs_nol_count;
   /** NOL timeout in seconds */
   A_UINT32 opaque_debug_dfs_nol_timeout;
   A_UINT32 opaque_debug_dfs_use_nol;
   /** channel availability check mode, refer enum WMI_ADFS_OCAC_MODE */
   A_UINT32 opaque_debug_cac_mode;
   A_UINT32 opaque_debug_dyn_ppdu_dur; /* in ms */
   /** This word contains the following bitfields:
    * wal_pdev home channel info
    * home_chan_mhz_flags:
    * primary channel frequency in mhz
    *     (WMI_PDEV_STATS_HOME_CHAN_MHZ_SET,GET)
    * flags to specify other channel attributes
    *     (WMI_PDEV_STATS_HOME_CHAN_FLAGS_SET, GET)
    */
   A_UINT32 opaque_debug_home_chan_mhz_flags;
   /** home channel center frequency in MHz */
   A_UINT32 opaque_debug_home_band_center_freq;
   /** home channel phy_mode, refer enum WLAN_PHY_MODE */
   A_UINT32 opaque_debug_home_phy_mode;
   /** This word contains the following bitfields:
    * wal_pdev current channel info
    * cur_chan_mhz_flags:
    * primary channel frequency in mhz
    *     (WMI_PDEV_STATS_CUR_CHAN_MHZ_SET,GET)
    * flags to specify other channel attributes
    *     (WMI_PDEV_STATS_CUR_CHAN_FLAGS_SET,GET)
    */
   A_UINT32 opaque_debug_cur_chan_mhz_flags;
   /** current channel center frequency in MHz */
   A_UINT32 opaque_debug_cur_band_center_freq;
   /** current channel phy_mode, refer enum WLAN_PHY_MODE */
   A_UINT32 opaque_debug_cur_phy_mode;
   /* Beacon context info */
   A_UINT32 opaque_debug_bcn_q_num_bcns_queued_to_hw;
   /** beacon queue AIFS */
   A_UINT32 opaque_debug_aifs;
   /** beacon queue cwmin */
   A_UINT32 opaque_debug_cwmin;
   /** beacon queue cwmax */
   A_UINT32 opaque_debug_cwmax;
   /** FILS discovery period in TU */
   A_UINT32 opaque_debug_fils_period;
   /** Beacon interval in TU */
   A_UINT32 opaque_debug_beacon_period;
   A_UINT32 opaque_debug_staggered_beacon_intvl;
   /** wal_pdev tx context, refer enum WAL_TX_CTXT_FLAGS */
   A_UINT32 opaque_debug_tx_ctxt_flags;
   /** opaque_debug_burst_mode_pending_isr
    * wal_pdev tx_ctxt fields - burst_mode refer enum WAL_TX_BURST_MODE
    * and pending_isr_status count
    */
   A_UINT32 opaque_debug_burst_mode_pending_isr;
   /** max burst duration from ppdu duration in us */
   A_UINT32 opaque_debug_burst_dur;
   /** counter for tx hw stuck */
   A_UINT32 opaque_debug_tx_hw_stuck_cnt;
   /** counter for tx consecutive lifetime expiry */
   A_UINT32 opaque_debug_consecutive_lifetime_expiries;
   /** wal_pdev rx context, refer enum WAL_RX_CTXT_FLAGS */
   A_UINT32 opaque_debug_rx_ctxt_flags;
   /** wal_pdev fields in rx context for rx_suspend or resume count */
   A_UINT32 opaque_debug_rx_suspend_cnt;
   A_UINT32 opaque_debug_rx_resume_cnt;
   A_UINT32 opaque_debug_rx_pcie_suspend_cnt;
   A_UINT32 opaque_debug_rx_pcie_resume_cnt;
   /** This word contains the following bitfields:
    *  wal_pdev fields
    *  pdev paused - WMI_PDEV_STATS_PAUSED_SET,GET
    *  pdev suspend - WMI_PDEV_STATS_SUSPENDED_SET,GET
    *  cac_enabed - MI_PDEV_STATS_CAC_ENABLED_SET,GET
    *  monitor VAP present - WMI_PDEV_STATS_IS_MONITOR_TYPE_PRESENT_SET,GET
    *  beacon tx mode - WMI_PDEV_STATS_BCN_TX_MODE_SET,GET
    *  isTXsuspended - WMI_PDEV_STATS_IS_TXSUSPENDED_SET,GET
    *  isSCHEDsuspended - WMI_PDEV_STATS_IS_SCHEDSUSPENDED_SET,GET
    *  sched_algo_resume_needed -
    *      WMI_PDEV_STATS_SCHED_ALGO_RESUME_NEEDED_SET,GET
    *  abort_reason - WMI_PDEV_STATS_ABORT_REASON_SET,GET
    *  atf_cfg - WMI_PDEV_STATS_ATF_CONFIG_SET,GET
    *  Green AP TX chainmask valid - WMI_PDEV_STATS_GAP_TX_CH_MASK_VALID_SET,GET
    *  Green AP RX chainmask valid - WMI_PDEV_STATS_GAP_RX_CH_MASK_VALID_SET,GET
    *  Green AP Phy mode valid - WMI_PDEV_STATS_GAP_PHY_MODE_VALID_SET,GET
    *  burst_enable - WMI_PDEV_STATS_BURST_ENABLE_SET,GET
    */
   A_UINT32 opaque_debug_wal_pdev_bitfield;
   /** This word contains the following bitfields:
    *  gap_phy_mode_freq:
    *  When GreenAP is enabled, phy_mode (WMI_PDEV_STATS_GAP_PHY_MODE_SET,GET)
    *  and center freq(MHz) (WMI_PDEV_STATS_GAP_BAND_CENTER_FREQ1_SET,GET)
    *  in GAP context is displayed
    */
   A_UINT32 opaque_debug_gap_phy_mode_freq;
   /**
    * The following 5 opaque_debug_reserved_field variables are provided
    * purely for debugging by technicians who have outside knowledge of
    * what kind of values the target has placed into these fields.
    */
   A_UINT32 opaque_debug_reserved_field_1;
   A_UINT32 opaque_debug_reserved_field_2;
   A_UINT32 opaque_debug_reserved_field_3;
   A_UINT32 opaque_debug_reserved_field_4;
   A_UINT32 opaque_debug_reserved_field_5;
} wmi_ctrl_path_pdev_stats_struct;

#define WMI_PDEV_STATS_NUM_MACS_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PDEV_STATS_NUM_MACS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PDEV_STATS_NUM_PHY_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PDEV_STATS_NUM_PHY_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PDEV_STATS_VDEV_UP_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_VDEV_UP_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_VDEV_ACTIVE_CNT_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_VDEV_ACTIVE_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_REMOTE_PEER_CNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_REMOTE_PEER_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_MAX_RF_CHAIN_2G_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_MAX_RF_CHAIN_2G_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_MAX_RF_CHAIN_5G_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_MAX_RF_CHAIN_5G_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_EMA_MAX_VAP_CNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8 )
#define WMI_PDEV_STATS_EMA_MAX_VAP_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8 , val)
#define WMI_PDEV_STATS_EMA_MAX_PROFILE_PERIOD_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PDEV_STATS_EMA_MAX_PROFILE_PERIOD_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PDEV_STATS_NUM_SELF_PEERS_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_NUM_SELF_PEERS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_MAX_ACTIVE_VDEVS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_MAX_ACTIVE_VDEVS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_NUM_MAX_HW_LINKS_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PDEV_STATS_NUM_MAX_HW_LINKS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PDEV_STATS_CURRENT_CHIP_ID_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PDEV_STATS_CURRENT_CHIP_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PDEV_STATS_MAX_NUM_CHIPS_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_MAX_NUM_CHIPS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_NUM_HOME_CHANS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_NUM_HOME_CHANS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_AGG_RETRY_TH_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PDEV_STATS_AGG_RETRY_TH_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PDEV_STATS_NON_AGG_RETRY_TH_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PDEV_STATS_NON_AGG_RETRY_TH_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PDEV_STATS_MAX_NON_DATA_RETRY_TH_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_MAX_NON_DATA_RETRY_TH_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_NUM_CONSECUTIVE_BCN_TX_FILT_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_NUM_CONSECUTIVE_BCN_TX_FILT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_NUM_RX_BA_SESSIONS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_NUM_RX_BA_SESSIONS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_MAX_RX_BA_SESSIONS_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_MAX_RX_BA_SESSIONS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_PPDU_DUR_LIMIT_US_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_PPDU_DUR_LIMIT_US_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_MU_PPDU_DUR_LIMIT_US_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_MU_PPDU_DUR_LIMIT_US_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_RTS_RC_FLAGS_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PDEV_STATS_RTS_RC_FLAGS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PDEV_STATS_RTS_RC_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PDEV_STATS_RTS_RC_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PDEV_STATS_GAP_TX_CH_MASK_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_GAP_TX_CH_MASK_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_GAP_RX_CH_MASK_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_GAP_RX_CH_MASK_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_GAP_PHY_MODE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_GAP_PHY_MODE_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_GAP_BAND_CENTER_FREQ1_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_GAP_BAND_CENTER_FREQ1_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_CONSECUTIVE_FAILURE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_CONSECUTIVE_FAILURE_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_NUM_FILS_DISC_ENQD_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_NUM_FILS_DISC_ENQD_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_RESET_CAUSE_BITMAP_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_RESET_CAUSE_BITMAP_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PDEV_STATS_SWBA_NUM_OF_VDEVS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)
#define WMI_PDEV_STATS_SWBA_NUM_OF_VDEVS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PDEV_STATS_HOME_CHAN_MHZ_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_HOME_CHAN_MHZ_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_HOME_CHAN_FLAGS_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_HOME_CHAN_FLAGS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_HOME_CHAN_BAND_FREQ_1_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_HOME_CHAN_BAND_FREQ_1_SET(flag,val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_HOME_CHAN_BAND_FREQ_2_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_HOME_CHAN_BAND_FREQ_2_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_CUR_CHAN_MHZ_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_CUR_CHAN_MHZ_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_CUR_CHAN_FLAGS_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_CUR_CHAN_FLAGS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_CUR_CHAN_BAND_FREQ_1_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PDEV_STATS_CUR_CHAN_BAND_FREQ_1_SET(flag,val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PDEV_STATS_CUR_CHAN_BAND_FREQ_2_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)
#define WMI_PDEV_STATS_CUR_CHAN_BAND_FREQ_2_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PDEV_STATS_BURST_MODE_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PDEV_STATS_BURST_MODE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PDEV_STATS_PENDING_ISR_STATUS_GET(flag) \
    WMI_GET_BITS(flag, 8, 16)
#define WMI_PDEV_STATS_PENDING_ISR_STATUS_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 16, val)
#define WMI_PDEV_STATS_BCN_Q_NUM_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PDEV_STATS_BCN_Q_NUM_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PDEV_STATS_NUM_BCNS_QUEUED_TO_HW_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PDEV_STATS_NUM_BCNS_QUEUED_TO_HW_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PDEV_STATS_SWFDA_VDEV_ID_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PDEV_STATS_SWFDA_VDEV_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)

#define WMI_PDEV_STATS_ABORT_RESULT_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_PDEV_STATS_ABORT_RESULT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_PDEV_STATS_SCHED_ALGO_RESUME_NEEDED_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_PDEV_STATS_SCHED_ALGO_RESUME_NEEDED_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_PDEV_STATS_ABORT_REASON_GET(flag) \
    WMI_GET_BITS(flag, 2, 3)
#define WMI_PDEV_STATS_ABORT_REASON_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 3, val)
#define WMI_PDEV_STATS_IS_TXSUSPENDED_GET(flag) \
    WMI_GET_BITS(flag, 5, 1)
#define WMI_PDEV_STATS_IS_TXSUSPENDED_SET(flag, val) \
    WMI_SET_BITS(flag, 5, 1, val)
#define WMI_PDEV_STATS_IS_SCHEDSUSPENDED_GET(flag) \
    WMI_GET_BITS(flag, 6, 1)
#define WMI_PDEV_STATS_IS_SCHEDSUSPENDED_SET(flag, val) \
    WMI_SET_BITS(flag, 6, 1, val)
#define WMI_PDEV_STATS_IS_TXSUSPENDED_WITH_AFC_GET(flag) \
    WMI_GET_BITS(flag, 7, 1)
#define WMI_PDEV_STATS_IS_TXSUSPENDED_WITH_AFC_SET(flag, val) \
    WMI_SET_BITS(flag, 7, 1, val)
#define WMI_PDEV_STATS_IS_SCHEDSUSPENDED_WITH_AFC_GET(flag) \
    WMI_GET_BITS(flag, 8, 1)
#define WMI_PDEV_STATS_IS_SCHEDSUSPENDED_WITH_AFC_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 1, val)
#define WMI_PDEV_STATS_SW_RETRY_MPDU_COUNT_TH_GET(flag) \
    WMI_GET_BITS(flag, 9, 1)
#define WMI_PDEV_STATS_SW_RETRY_MPDU_COUNT_TH_SET(flag, val) \
    WMI_SET_BITS(flag, 9, 1, val)
#define WMI_PDEV_STATS_SENDBAR_COMPL_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 10, 1)
#define WMI_PDEV_STATS_SENDBAR_COMPL_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 10, 1, val)
#define WMI_PDEV_STATS_CAC_ENABLED_GET(flag) \
    WMI_GET_BITS(flag, 11, 1)
#define WMI_PDEV_STATS_CAC_ENABLED_SET(flag, val) \
    WMI_SET_BITS(flag, 11, 1, val)
#define WMI_PDEV_STATS_PAUSED_GET(flag) \
    WMI_GET_BITS(flag, 12, 1)
#define WMI_PDEV_STATS_PAUSED_SET(flag, val) \
    WMI_SET_BITS(flag, 12, 1, val)
#define WMI_PDEV_STATS_SUSPENDED_GET(flag) \
    WMI_GET_BITS(flag, 13, 1)
#define WMI_PDEV_STATS_SUSPENDED_SET(flag, val) \
    WMI_SET_BITS(flag, 13, 1, val)
#define WMI_PDEV_STATS_MAC_COLD_RESET_GET(flag) \
    WMI_GET_BITS(flag, 14, 1)
#define WMI_PDEV_STATS_MAC_COLD_RESET_SET(flag, val) \
    WMI_SET_BITS(flag, 14, 1, val)
#define WMI_PDEV_STATS_SAFE_TO_ACCESS_HW_GET(flag) \
    WMI_GET_BITS(flag, 15, 1)
#define WMI_PDEV_STATS_SAFE_TO_ACCESS_HW_SET(flag, val) \
    WMI_SET_BITS(flag, 15, 1, val)
#define WMI_PDEV_STATS_STA_PS_STATECHG_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 16, 1)
#define WMI_PDEV_STATS_STA_PS_STATECHG_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 1, val)
#define WMI_PDEV_STATS_WAL_HOST_SCAN_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 17, 1)
#define WMI_PDEV_STATS_WAL_HOST_SCAN_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 17, 1, val)
#define WMI_PDEV_STATS_ATF_CONFIG_GET(flag) \
    WMI_GET_BITS(flag, 18, 1)
#define WMI_PDEV_STATS_ATF_CONFIG_SET(flag, val) \
    WMI_SET_BITS(flag, 18, 1, val)
#define WMI_PDEV_STATS_EAPOL_AC_OVERRIDE_GET(flag) \
    WMI_GET_BITS(flag, 19, 1)
#define WMI_PDEV_STATS_EAPOL_AC_OVERRIDE_SET(flag, val) \
    WMI_SET_BITS(flag, 19, 1, val)
#define WMI_PDEV_STATS_CALC_NEXT_DTIM_CNT_GET(flag) \
    WMI_GET_BITS(flag, 20, 1)
#define WMI_PDEV_STATS_CALC_NEXT_DTIM_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 20, 1, val)
#define WMI_PDEV_STATS_ATF_STRICT_SCH_GET(flag) \
    WMI_GET_BITS(flag, 21, 1)
#define WMI_PDEV_STATS_ATF_STRICT_SCH_SET(flag, val) \
    WMI_SET_BITS(flag, 21, 1, val)
#define WMI_PDEV_STATS_BCN_TX_MODE_GET(flag) \
    WMI_GET_BITS(flag, 22, 2)
#define WMI_PDEV_STATS_BCN_TX_MODE_SET(flag, val) \
    WMI_SET_BITS(flag, 22, 2, val)
#define WMI_PDEV_STATS_IS_MONITOR_TYPE_PRESENT_GET(flag) \
    WMI_GET_BITS(flag, 24, 1)
#define WMI_PDEV_STATS_IS_MONITOR_TYPE_PRESENT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 1, val)
#define WMI_PDEV_STATS_DYN_BW_GET(flag) \
    WMI_GET_BITS(flag, 25, 1)
#define WMI_PDEV_STATS_DYN_BW_SET(flag, val) \
    WMI_SET_BITS(flag, 25, 1, val)
#define WMI_PDEV_STATS_IS_MLO_SUPPORTED_GET(flag) \
    WMI_GET_BITS(flag, 26, 1)
#define WMI_PDEV_STATS_IS_MLO_SUPPORTED_SET(flag, val) \
    WMI_SET_BITS(flag, 26, 1, val)
#define WMI_PDEV_STATS_GAP_TX_CH_MASK_VALID_GET(flag) \
    WMI_GET_BITS(flag, 27, 1)
#define WMI_PDEV_STATS_GAP_TX_CH_MASK_VALID_SET(flag, val) \
    WMI_SET_BITS(flag, 27, 1, val)
#define WMI_PDEV_STATS_GAP_RX_CH_MASK_VALID_GET(flag) \
    WMI_GET_BITS(flag, 28, 1)
#define WMI_PDEV_STATS_GAP_RX_CH_MASK_VALID_SET(flag, val) \
    WMI_SET_BITS(flag, 28, 1, val)
#define WMI_PDEV_STATS_GAP_PHY_MODE_VALID_GET(flag) \
    WMI_GET_BITS(flag, 29, 1)
#define WMI_PDEV_STATS_GAP_PHY_MODE_VALID_SET(flag, val) \
    WMI_SET_BITS(flag, 29, 1, val)
#define WMI_PDEV_STATS_GAP_CLKGATE_VALID_GET(flag) \
    WMI_GET_BITS(flag, 30, 1)
#define WMI_PDEV_STATS_GAP_CLKGATE_VALID_SET(flag, val) \
    WMI_SET_BITS(flag, 30, 1, val)
#define WMI_PDEV_STATS_BURST_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 31, 1)
#define WMI_PDEV_STATS_BURST_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 31, 1, val)

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_path_btcoex_stats_struct*/
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /** Counts the number of BT TX requests */
    A_UINT32 bt_tx_req_cntr;
    /** Counts the number of BT RX requests */
    A_UINT32 bt_rx_req_cntr;
    /** Counts the number of BT requests that got NACKed */
    A_UINT32 bt_req_nack_cntr;
    /** Counts the number of WLAN TX request denied due to scheduled BT activity */
    A_UINT32 wl_tx_req_nack_schd_bt_reason_cntr;
    /** Counts the number of WLAN TX request denied due to current BT activity */
    A_UINT32 wl_tx_req_nack_current_bt_reason_cntr;
    /** Counts the number of WLAN TX request denied due to other WLAN in TX reason */
    A_UINT32 wl_tx_req_nack_other_wlan_tx_reason_cntr;
    /** Counts the number of times the WLAN in TX is aborted after getting ACKed */
    A_UINT32 wl_in_tx_abort_cntr;
    /** Counts the number of Auto Response WLAN TX requests */
    A_UINT32 wl_tx_auto_resp_req_cntr;
    /** Counts the number of ACKed WLAN TX requests */
    A_UINT32 wl_tx_req_ack_cntr;
    /** Counts the number of WLAN TX requests */
    A_UINT32 wl_tx_req_cntr;
} wmi_ctrl_path_btcoex_stats_struct;

/* Send diag event based on trigger reasons */
typedef enum {
    WMI_DIAG_TRIGGER_MIN = 0x1000,

    WMI_DIAG_TRIGGER_HOST_REQUESTED = WMI_DIAG_TRIGGER_MIN,
    WMI_DIAG_TRIGGER_BEACON_MISS,
    WMI_DIAG_TRIGGER_SCAN_FAIL,
    WMI_DIAG_TRIGGER_DISCONNECT,
    WMI_DIAG_TRIGGER_ENTER_BMPS_IMPS_FAIL,
    WMI_DIAG_TRIGGER_BUFFER_FULL,
    WMI_DIAG_TRIGGER_DATA_STALL,
    WMI_DIAG_TRIGGER_TIMER_TRIGGERED,
    WMI_DIAG_TRIGGER_REMOTE_COPY,
    WMI_DIAG_TRIGGER_CAL_FAILURE,
    WMI_DIAG_TRIGGER_FES_BKPRESS_DEV_RESET_IND,

    WMI_DIAG_TRIGGER_MAX,
} wmi_diag_trigger_e;

typedef enum {
    WMI_CTRL_PATH_STATS_ARENA_HRAM,
    WMI_CTRL_PATH_STATS_ARENA_HCRAM,
    WMI_CTRL_PATH_STATS_ARENA_HREMOTE,
    WMI_CTRL_PATH_STATS_ARENA_HCREMOTE,
    WMI_CTRL_PATH_STATS_ARENA_REMOTE,
    WMI_CTRL_PATH_STATS_ARENA_SRAM,
    WMI_CTRL_PATH_STATS_ARENA_SRAM_AUX,
    WMI_CTRL_PATH_STATS_ARENA_PAGEABLE,
    WMI_CTRL_PATH_STATS_ARENA_CMEM,
    WMI_CTRL_PATH_STATS_ARENA_TRAM,
    WMI_CTRL_PATH_STATS_ARENA_HWIO,
    WMI_CTRL_PATH_STATS_ARENA_CALDB,
    WMI_CTRL_PATH_STATS_ARENA_M3,
    WMI_CTRL_PATH_STATS_ARENA_ETMREMOTE,
    WMI_CTRL_PATH_STATS_ARENA_M3_DUMP,
    WMI_CTRL_PATH_STATS_ARENA_EMUPHY,
    WMI_CTRL_PATH_STATS_ARENA_DBG_SRAM,
    WMI_CTRL_PATH_STATS_ARENA_DBG_SRAM_AUX,
    WMI_CTRL_PATH_STATS_ARENA_SRAM_AUX_OVERFLOW,
    WMI_CTRL_PATH_STATS_ARENA_AMSS,
    WMI_CTRL_PATH_STATS_ARENA_MLO_SHMEM,
    WMI_CTRL_PATH_STATS_ARENA_MLO_H_SHMEM,
    WMI_CTRL_PATH_STATS_ARENA_MLO_HC_SHMEM,
    WMI_CTRL_PATH_STATS_ARENA_RRI_CMD,
    WMI_CTRL_PATH_STATS_ARENA_SRAM_CLADE,
    WMI_CTRL_PATH_STATS_ARENA_MAX,
} wmi_ctrl_path_fw_arena_ids;

/*
 * Used by some hosts to print names of arenas, based on
 * wmi_ctrl_path_fw_arena_ids values specified in
 * wmi_ctrl_path_mem_stats_struct in ctrl_path_stats event msg.
 */
static INLINE A_UINT8 *wmi_ctrl_path_fw_arena_id_to_name(A_UINT32 arena_id)
{
    switch(arena_id)
    {
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_HRAM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_HCRAM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_HREMOTE);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_HCREMOTE);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_REMOTE);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_SRAM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_SRAM_AUX);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_PAGEABLE);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_CMEM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_TRAM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_HWIO);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_CALDB);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_M3);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_ETMREMOTE);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_M3_DUMP);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_EMUPHY);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_DBG_SRAM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_DBG_SRAM_AUX);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_SRAM_AUX_OVERFLOW);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_AMSS);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_MLO_SHMEM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_MLO_H_SHMEM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_MLO_HC_SHMEM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_RRI_CMD);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_ARENA_SRAM_CLADE);
    }

    return (A_UINT8 *) "WMI_CTRL_PATH_STATS_ARENA_UNKNOWN";
}

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ctrl_path_mem_stats_struct */
    A_UINT32 tlv_header;
    A_UINT32 arena_id;          /* see wmi_ctrl_path_fw_arena_ids */
    A_UINT32 total_bytes;       /* total bytes in each arena */
    A_UINT32 allocated_bytes;   /* allocated bytes in each arena */
} wmi_ctrl_path_mem_stats_struct;

/* status code of Get stats TWT dialog */
typedef enum _WMI_GET_STATS_TWT_STATUS_T {
    WMI_GET_STATS_TWT_STATUS_OK,                 /* Get status TWT dialog successfully completed */
    WMI_GET_STATS_TWT_STATUS_DIALOG_ID_NOT_EXIST,/* TWT dialog ID does not exist */
    WMI_GET_STATS_TWT_STATUS_INVALID_PARAM,      /* invalid parameters */
} WMI_GET_STATS_TWT_STATUS_T;

/* Resp type of ODD command operation */
typedef enum _WMI_ODD_ADDR_READ_OPTION_TYPE_T {
    WMI_ODD_ADDR_READ_OPTION_TYPE_ADD_ADDR_COMMAND,  /* Resp for the command to add/configure address space */
    WMI_ODD_ADDR_READ_OPTION_TYPE_DEL_ADDR_COMMAND,  /* Resp for the command to del/reset address space */
    WMI_ODD_ADDR_READ_OPTION_TYPE_DISP_ADDR_COMMAND, /* Resp for the command to display address space */
    WMI_ODD_ADDR_READ_OPTION_TYPE_DISP_VAL_COMMAND,  /* Resp for the command to display value at address space */
} WMI_ODD_ADDR_READ_OPTION_TYPE_T;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ctrl_path_twt_stats_struct */
    A_UINT32 tlv_header;
    A_UINT32 dialog_id;         /* TWT dialog ID */
    A_UINT32 status;            /* refer to WMI_GET_STATS_TWT_STATUS_T */
    A_UINT32 num_sp_cycles;     /* Number of TWT SP's*/
    A_UINT32 avg_sp_dur_us;     /* Average SP time */
    A_UINT32 min_sp_dur_us;     /* Minimum SP time */
    A_UINT32 max_sp_dur_us;     /* Maximum SP time */
    A_UINT32 tx_mpdu_per_sp;    /* Average pkts tx per SP */
    A_UINT32 rx_mpdu_per_sp;    /* Average pkts rx per SP */
    A_UINT32 tx_bytes_per_sp;   /* Average tx bytes per SP */
    A_UINT32 rx_bytes_per_sp;   /* Average rx bytes per SP */
} wmi_ctrl_path_twt_stats_struct;

#define BMISS_STATS_RSSI_SAMPLE_MAX 10
typedef struct {
    A_INT32  rssi;        /* dBm units */
    A_UINT32 sample_time; /* timestamp from host/target shared qtimer */
} bmiss_stats_rssi_samples_t;

typedef struct {
    A_UINT32 num_of_bmiss_sequences; /* number of consecutive bmiss > 2 */
    A_UINT32 num_bitmask_wraparound; /* number of times bitmask wrapped around */
    A_UINT32 num_bcn_hist_lost;      /* number of beacons history we have lost */
} consecutive_bmiss_stats_t;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ctrl_path_bmiss_stats_struct */
    A_UINT32 tlv_header;
    A_UINT32 num_pre_bmiss;                     /* number of pre_bmiss */
    bmiss_stats_rssi_samples_t  rssi_samples[BMISS_STATS_RSSI_SAMPLE_MAX];  /* RSSI samples at pre bmiss*/
    /* rssi_sample_curr_index:
     * index of the element in rssi_samples array containing the oldest sample
     */
    A_UINT32 rssi_sample_curr_index;
    A_UINT32 num_first_bmiss;                   /* number of first bmiss */
    A_UINT32 num_final_bmiss;                   /* number of final bmiss */
    A_UINT32 num_null_sent_in_first_bmiss;      /* number of null frames sent in first bmiss */
    A_UINT32 num_null_failed_in_first_bmiss;    /* number of failed null frames in first bmiss */
    A_UINT32 num_null_sent_in_final_bmiss;      /* number of null frames sent in final bmiss */
    A_UINT32 num_null_failed_in_final_bmiss;    /* number of failed null frames in final bmiss */
    consecutive_bmiss_stats_t cons_bmiss_stats;
} wmi_ctrl_path_bmiss_stats_struct;

typedef enum {
    WMI_CTRL_PATH_STATS_CAL_PROFILE_COLD_BOOT_CAL       = 0x0,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_FULL_CHAN_SWITCH    = 0x1,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_SCAN_CHAN_SWITCH    = 0x2,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_DPD_SPLIT_CAL       = 0x3,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_TEMP_TRIGEER_CAL    = 0x4,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_POWER_SAVE_WAKE_UP  = 0x5,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_TIMER_TRIGGER_CAL   = 0x6,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_FTM_TRIGGER_CAL     = 0x7,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_AGILE_OR_POWER_DOWN_DTIM = 0x8,
    WMI_CTRL_PATH_STATS_CAL_PROFILE_NOISY_ENV_RXDO      = 0x9,

    /* add new cal profiles above this line */
    WMI_CTRL_PATH_STATS_CAL_PROFILE_INVALID             = 0x1F
} wmi_ctrl_path_stats_cal_profile_ids;

typedef enum {
    WMI_CTRL_PATH_STATS_CAL_TYPE_ADC                     = 0x0,
    WMI_CTRL_PATH_STATS_CAL_TYPE_DAC                     = 0x1,
    WMI_CTRL_PATH_STATS_CAL_TYPE_PROCESS                 = 0x2,
    WMI_CTRL_PATH_STATS_CAL_TYPE_NOISE_FLOOR             = 0x3,
    WMI_CTRL_PATH_STATS_CAL_TYPE_RXDCO                   = 0x4,
    WMI_CTRL_PATH_STATS_CAL_TYPE_COMB_TXLO_TXIQ_RXIQ     = 0x5,
    WMI_CTRL_PATH_STATS_CAL_TYPE_TXLO                    = 0x6,
    WMI_CTRL_PATH_STATS_CAL_TYPE_TXIQ                    = 0x7,
    WMI_CTRL_PATH_STATS_CAL_TYPE_RXIQ                    = 0x8,
    WMI_CTRL_PATH_STATS_CAL_TYPE_IM2                     = 0x9,
    WMI_CTRL_PATH_STATS_CAL_TYPE_LNA                     = 0xa,
    WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_LP_RXDCO            = 0xb,
    WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_LP_RXIQ             = 0xc,
    WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_MEMORYLESS          = 0xd,
    WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_MEMORY              = 0xe,
    WMI_CTRL_PATH_STATS_CAL_TYPE_IBF                     = 0xf,
    WMI_CTRL_PATH_STATS_CAL_TYPE_PDET_AND_PAL            = 0x10,
    WMI_CTRL_PATH_STATS_CAL_TYPE_RXDCO_IQ                = 0x11,
    WMI_CTRL_PATH_STATS_CAL_TYPE_RXDCO_DTIM              = 0x12,
    WMI_CTRL_PATH_STATS_CAL_TYPE_TPC_CAL                 = 0x13,
    WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_TIMEREQ             = 0x14,
    WMI_CTRL_PATH_STATS_CAL_TYPE_BWFILTER                = 0x15,
    WMI_CTRL_PATH_STATS_CAL_TYPE_PEF                     = 0x16,
    WMI_CTRL_PATH_STATS_CAL_TYPE_PADROOP                 = 0x17,
    WMI_CTRL_PATH_STATS_CAL_TYPE_SELFCALTPC              = 0x18,

    /* add new cal types above this line */
    WMI_CTRL_PATH_STATS_CAL_TYPE_INVALID                 = 0xFF
} wmi_ctrl_path_stats_cal_type_ids;

typedef enum {
    WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_NOISE_FLOOR    = 0x0,
    WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_DPD_MEMORYLESS = 0x1,
    WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_DPD_MEMORY     = 0x2,

    /* add new periodic cal types above this line */
    WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_INVALID        = 0xFF
} wmi_ctrl_path_stats_periodic_cal_type_ids;

typedef enum {
    WMI_CAL_FAILURE_REASON_ERROR_MIN = 0x0,
    /* DPD failure reasons */
    WMI_CAL_FAILURE_REASON_DPD_NMSE_FAIL = 0x1,
    WMI_CAL_FAILURE_REASON_DPD_SQ_FAIL = 0x2,
    WMI_CAL_FAILURE_REASON_DPD_HW_FAIL = 0x3,
    WMI_CAL_FAILURE_REASON_DPD_EXCESSIVE_RETRY = 0x4,
    /* RXDCO failure reasons */
    WMI_CAL_FAILURE_REASON_RXDCO_HW_CAL_EXCESSIVE_RETRY = 0x5,
    WMI_CAL_FAILURE_REASON_RXDCO_INVALID_HW_CAL = 0x6,
    WMI_CAL_FAILURE_REASON_RXDCO_HW_AND_SWPP_FAILURE = 0x7,
    /* ADC failure reasons */
    WMI_CAL_FAILURE_REASON_TIADC_INVALID_BAND = 0x8,
    /* BWFILTER failure reasons */
    WMI_CAL_FAILURE_REASON_TXBBF = 0x9,
    WMI_CAL_FAILURE_REASON_RXBBF = 0xa,
    /* PKDET failure reasons */
    WMI_CAL_FAILURE_REASON_PKDET = 0xb,
    /* COMBCAL failure reasons */
    WMI_CAL_FAILURE_REASON_COMB = 0xc,

    /* add new cal failure error reasons above this line */
    WMI_CAL_FAILURE_REASON_ERROR_MAX = 0xff,
} wmi_cal_failure_reason_code;

/*
 * Used by some hosts to print names of cal profile, based on
 * wmi_ctrl_path_cal_profile_ids values specified in
 * wmi_ctrl_path_calibration_stats_struct in ctrl_path_stats event msg.
 */
static INLINE
A_UINT8 *wmi_ctrl_path_cal_profile_id_to_name(A_UINT32 cal_profile_id)
{
    switch (cal_profile_id)
    {
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_COLD_BOOT_CAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_FULL_CHAN_SWITCH);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_SCAN_CHAN_SWITCH);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_DPD_SPLIT_CAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_TEMP_TRIGEER_CAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_POWER_SAVE_WAKE_UP);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_TIMER_TRIGGER_CAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_FTM_TRIGGER_CAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_AGILE_OR_POWER_DOWN_DTIM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_PROFILE_NOISY_ENV_RXDO);
    }

    return (A_UINT8 *) "WMI_CTRL_PATH_STATS_CAL_PROFILE_UNKNOWN";
}

/*
 * Used by some hosts to print names of cal type, based on
 * wmi_ctrl_path_cal_type_ids values specified in
 * wmi_ctrl_path_calibration_stats_struct in ctrl_path_stats event msg.
 */
static INLINE A_UINT8 *wmi_ctrl_path_cal_type_id_to_name(A_UINT32 cal_type_id)
{
    switch (cal_type_id)
    {
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_ADC);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_DAC);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_PROCESS);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_NOISE_FLOOR);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_RXDCO);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_COMB_TXLO_TXIQ_RXIQ);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_TXLO);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_TXIQ);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_RXIQ);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_IM2);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_LNA);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_LP_RXDCO);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_LP_RXIQ);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_MEMORYLESS);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_MEMORY);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_IBF);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_PDET_AND_PAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_RXDCO_IQ);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_RXDCO_DTIM);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_TPC_CAL);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_DPD_TIMEREQ);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_BWFILTER);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_PEF);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_PADROOP);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_CAL_TYPE_SELFCALTPC);
    }

    return (A_UINT8 *) "WMI_CTRL_PATH_STATS_CAL_TYPE_UNKNOWN";
}

/*
 * Used by some hosts to print names of peridodic cal type, based on
 * wmi_ctrl_path_periodic_cal_type_ids values specified in
 * wmi_ctrl_path_calibration_stats_struct in ctrl_path_stats event msg.
 */
static INLINE A_UINT8 *wmi_ctrl_path_periodic_cal_type_id_to_name(A_UINT32 periodic_cal_type_id)
{
    switch (periodic_cal_type_id)
    {
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_NOISE_FLOOR);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_DPD_MEMORYLESS);
        WMI_RETURN_STRING(WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_DPD_MEMORY);
    }

    return (A_UINT8 *) "WMI_CTRL_PATH_STATS_PERIODIC_CAL_TYPE_UNKNOWN";
}

/*
 * Used by some hosts to print names of cal failure reason code, based on
 * wmi_ctrl_path_cal_failure_reason_codes values specified in cal fail event msg
 */
static INLINE A_UINT8 *wmi_cal_failure_reason_code_to_name(A_UINT32 cal_failure_reason_code)
{
    switch (cal_failure_reason_code)
    {
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_ERROR_MIN);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_DPD_NMSE_FAIL);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_DPD_SQ_FAIL);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_DPD_HW_FAIL);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_DPD_EXCESSIVE_RETRY);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_RXDCO_HW_CAL_EXCESSIVE_RETRY);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_RXDCO_INVALID_HW_CAL);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_RXDCO_HW_AND_SWPP_FAILURE);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_TIADC_INVALID_BAND);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_TXBBF);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_RXBBF);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_PKDET);
        WMI_RETURN_STRING(WMI_CAL_FAILURE_REASON_COMB);
    }

    return (A_UINT8 *) "WMI_CAL_FAILURE_REASON_UNKNOWN";
}

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ctrl_path_calibration_stats_struct*/
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC/PHY */
    A_UINT32 pdev_id;
    /** Bit 0 - 7  : cal type / periodic cal type
      *              These bits hold either a wmi_ctrl_path_stats_cal_type_ids
      *              value for generic cal (if bit 13 is cleared) or a
      *              wmi_ctrl_path_stats_periodic_cal_type_ids value for
      *              periodic cal (if bit 13 is set).
      *              Signifies the type of calibration
      *              cal_type       : 8
      * Bit 8 - 12 : These bits hold a wmi_ctrl_path_stats_cal_profile_ids value.
      *              Signifies the type of cal profile
      *              cal_profile     : 5
      * Bit 13     : Signifies whether stats is for generic cal or periodic cal
      *              is_cal_periodic : 1
      *              0 -> generic cal
      *              1 -> periodic cal
      * Bit 14 - 31: Reserved for future
      */
    A_UINT32 cal_info;
    A_UINT32 cal_triggered_cnt;   /* Count of number of times calibration triggered */
    A_UINT32 cal_fail_cnt;        /* Count of number of times calibration failed */
    A_UINT32 cal_fcs_cnt;         /* Count of number of times FCS done for cal */
    A_UINT32 cal_fcs_fail_cnt;    /* Count of number of times FCS failed for cal */
} wmi_ctrl_path_calibration_stats_struct;

#define WMI_CTRL_PATH_CALIBRATION_STATS_CAL_TYPE_GET(cal_info)             WMI_GET_BITS(cal_info, 0, 8)
#define WMI_CTRL_PATH_CALIBRATION_STATS_CAL_TYPE_SET(cal_info, cal_type)   WMI_SET_BITS(cal_info, 0, 8, cal_type)

#define WMI_CTRL_PATH_CALIBRATION_STATS_CAL_PROFILE_GET(cal_info)              WMI_GET_BITS(cal_info, 8, 5)
#define WMI_CTRL_PATH_CALIBRATION_STATS_CAL_PROFILE_SET(cal_info, cal_profile) WMI_SET_BITS(cal_info, 8, 5, cal_profile)

#define WMI_CTRL_PATH_CALIBRATION_STATS_IS_PERIODIC_CAL_GET(cal_info)              WMI_GET_BITS(cal_info, 13, 1)
#define WMI_CTRL_PATH_CALIBRATION_STATS_IS_PERIODIC_CAL_SET(cal_info, is_periodic) WMI_SET_BITS(cal_info, 13, 1, is_periodic)

/* 0=20MHz, 1=40MHz, 2=80MHz, 3=160MHz, 4=240MHz, 5=320MHz */
#define WMI_AWGN_MAX_BW 6

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ctrl_path_awgn_stats_struct
     * For 6G FCC test we have to monitor channel interference and switch
     * to non-interference channel.
     * Additive White Gaussian Noise (AWGN) interference detection logic
     * is used to detect interference based upon CCA / BW drop / packet drop.
     * Once AWGN interference is detected, the target sends
     * WMI_DCS_INTERFERENCE_EVENTID to host for channel change/BW change.
     * This stats struct is used to get info about how many times these
     * CCA_Interference/BW_Drop/Pkt_Drop indicators of AWGN occur.
     */
    A_UINT32 tlv_header;
    /*
     * AWGN WMI event sent count
     * This is used to inform how many WMI_DCS_INTERFERENCE_EVENTID have been
     * sent to the host.
     * WMI_DCS_INTERFERENCE_EVENTID is sent whenever one or more of
     * CCA_Int/BW_Drop/Channel_Change(Pkt_Drop) happen.
     */
    A_UINT32 awgn_send_evt_cnt;
    /* AWGN primary int count */
    A_UINT32 awgn_pri_int_cnt;
    /* AWGN secondary int count */
    A_UINT32 awgn_sec_int_cnt;
    /*
     * AWGN pkt drop trigger count
     * This shows how many times the presence of interference on the
     * primary BW has been inferred due to pkt drops.
     * WMI_DCS_INTERFERENCE_EVENTID will be sent whenever there is
     * interference on Primary Channel.
     */
    A_UINT32 awgn_pkt_drop_trigger_cnt;
    /* awgn pkt drop trigger reset count */
    A_UINT32 awgn_pkt_drop_trigger_reset_cnt;
    /*
     * AWGN bandwidth drop count
     * This is used to inform count for any frame transmitted on lower BW
     * than configured BW.
     * WMI_DCS_INTERFERENCE_EVENTID will be sent whenever there is BW drop.
     */
    A_UINT32 awgn_bw_drop_cnt;
    /* AWGN bandwidth drop reset count */
    A_UINT32 awgn_bw_drop_reset_cnt;
    /*
     * AWGN CCA int count
     * This is used to inform the interference based on CCA registers.
     * WMI_DCS_INTERFERENCE_EVENTID will be sent whenever there is CCA
     * interference.
     */
    A_UINT32 awgn_cca_int_cnt;
    /* AWGN cca int reset count */
    A_UINT32 awgn_cca_int_reset_cnt;
    /* AWGN cca ack blk count */
    A_UINT32 awgn_cca_ack_blk_cnt;
    /* AWGN cca ack blk reset count */
    A_UINT32 awgn_cca_ack_reset_cnt;
    /*
     * AWGN int BW cnt used to store interference occurred at 20/40/80/160MHz
     * bw_cnt[0] counts interference detections in 20 MHz BW,
     * bw_cnt[1] counts interference detections in 40 MHz BW,
     * bw_cnt[2] counts interference detections in 80 MHz BW,
     * bw_cnt[3] counts interference detections in 160 MHz BW,
     * bw_cnt[4] and bw_cnt[6] are reserved for 240 MHz and 320 MHz.
     */
    A_UINT32 awgn_int_bw_cnt[WMI_AWGN_MAX_BW];
} wmi_ctrl_path_awgn_stats_struct;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_path_dfs_channel_stats_struct*/
    A_UINT32 tlv_header;
    /** pdev_id for identifying the PHY */
    A_UINT32 pdev_id;
    /** nol element num */
    A_UINT32 nol;
    /** Channel in MHz */
    A_UINT32 channel;

    /** Channel width in MHz */
    A_UINT32 chwidth;

    /** Time left for the channel to remain in NOL list (in seconds) */
    A_UINT32 timeleft;
} wmi_ctrl_path_dfs_channel_stats_struct;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_path_odd_addr_read_struct*/
    A_UINT32 tlv_header;
    /* resp_type:
     * Response type for each sub option:
     * Add address space, display address, display data, delete address space.
     * Refer to WMI_ODD_ADDR_READ_OPTION_TYPE_T.
     */
    A_UINT32 resp_type;
    /* User configured Entry id */
    A_UINT32 entry_id;
    /* address:
     * User configured Address Space.
     * Any unused elements will be filled with 0x0.
     */
    A_UINT32 address[WMI_MAX_ADDRESS_SPACE];
    /* data
     * Data/Value at the User configured Address Space.
     * Any unused elements will be filled with 0x0.
     */
    A_UINT32 data[WMI_MAX_ADDRESS_SPACE];
    /* Status of the operation performed: 0 = failure, 1 = success */
    A_UINT32 is_success;
} wmi_ctrl_path_odd_addr_read_struct;

/*
 * The wmi_ctrl_path_afc_stats_struct is used to send AFC stats within
 * the WMI_CTRL_PATH_STATS_EVENT message, in response to a
 * WMI_REQUEST_CTRL_PATH_STATS_CMD message for the stat type
 * WMI_REQUEST_CTRL_PATH_AFC_STAT.
 */
typedef struct {
    /* TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ctrl_path_afc_stats_struct */
    A_UINT32 tlv_header;

    A_UINT32 pdev_id;               /* pdev_id for identifying the MAC/PHY */

    /* Count of new request ID every time it is generated */
    A_UINT32 request_id_count;
    /* Count of total number of AFC payload received */
    A_UINT32 response_count;
    /* Count of total number of invalid AFC response */
    A_UINT32 invalid_response_count;
    /* Count of total number of AFC resets received  */
    A_UINT32 reset_count;

    /* AFC Response error counters*/

    /*
     * Count of total number of incorrect payload received due to
     * request ID and response
     * Increments when request ID doesn't match with response.
     */
    A_UINT32 id_mismatch_count;

    /*
     * Count of total number of "local_error_code" success event
     * received as part of the AFC response payload in the below struct
     * "afc_spectrum_inquiry_resp_bin_type"
     */
    A_UINT32 local_err_code_success;

    /*
     * Count of total number of "local_error_code" failure event
     * received as part of the AFC response payload in the below struct
     * "afc_spectrum_inquiry_resp_bin_type"
     */
    A_UINT32 local_err_code_failure;

    /*
     * The below fields are used to denote the count of
     * different server response code received in "afc_serv_resp_code"
     * received as part of "afc_spectrum_inquiry_resp_bin_type"
     * These resp codes are as per the WFA spec
     */
    /* afc_serv_resp_code = version not supported */
    A_UINT32 serv_resp_code_100;
    /* afc_serv_resp_code = Device disallowed */
    A_UINT32 serv_resp_code_101;
    /* afc_serv_resp_code = Missing param */
    A_UINT32 serv_resp_code_102;
    /* afc_serv_resp_code = invalid value */
    A_UINT32 serv_resp_code_103;
    /* afc_serv_resp_code = unexpected param */
    A_UINT32 serv_resp_code_106;
    /* afc_serv_resp_code = unsupported spectrum */
    A_UINT32 serv_resp_code_300;

    /*
     * AFC Compliance tracker
     */
    /* proxy_standalone_0
     * This field displays the value of Request ID check disable received
     * as part of the INI knob
     */
    A_UINT32 proxy_standalone_0;
    /* proxy_standalone_1
     * This field displays the value of Timer check disable received
     * as part of the INI knob
     */
    A_UINT32 proxy_standalone_1;

    /* Count of successful power events sent to host */
    A_UINT32 power_event_counter;
    /* Count of total force LPI power mode switch when grace count expires */
    A_UINT32 force_LPI_counter;

    /*
     * Count of total number of successful host set
     * TPC command received within the compliance timer
     */
    A_UINT32 tpc_wmi_success_count;

    /*
     * Count of total number of failed host set
     * TPC command. This is incremented when compliance timer expires
     */
    A_UINT32 tpc_wmi_failure_count;

    /*
     * These counters are incremented as part of the
     * Regulatory Compliance check done on the AFC payload
     * received from server
     */
    /* Incorrect PSD value received in freq Obj */
    A_UINT32 psd_failure_count;
    /* Incorrect End freq received in freq Obj */
    A_UINT32 psd_end_freq_failure_count;
    /* Incorrect Start freq received in freq Obj */
    A_UINT32 psd_start_freq_failure_count;
    /* Incorrect EIRP received in channel obj */
    A_UINT32 eirp_failure_count;
    /* Incorrect centre freq channel received in channel obj */
    A_UINT32 cfreq_failure_count;

    /*
     * AFC Current status
     */
    /* Current Request ID */
    A_UINT32 request_id;
    /* grace_timer_count
     * This grace counter increments only after TTL expiry.
     * Cleared to zero once valid payload is received.
     */
    A_UINT32 grace_timer_count;
    /* Current TTL Time in seconds from last valid payload response */
    A_UINT32 cur_ttl_timer;
    /* deployment_mode
     * 6G AP deployment mode denoting indoor or outdoor
     * Indoor = 1, Outdoor = 2
     */
    A_UINT32 deployment_mode;
    /*
     * Proxy mode AFC-Response payload clear count
     */
    A_UINT32 payload_clear_count;
} wmi_ctrl_path_afc_stats_struct;

/* AT - Airtime */
/* AA - Available Airtime */
#define WMI_PMLO_UL_DL_INBSS_AT_GET_BE(airtime)         WMI_GET_BITS(airtime, 0, 8)
#define WMI_PMLO_UL_DL_INBSS_AT_SET_BE(airtime, value)  WMI_SET_BITS(airtime, 0, 8, value)

#define WMI_PMLO_UL_DL_INBSS_AT_GET_BK(airtime)         WMI_GET_BITS(airtime, 8, 8)
#define WMI_PMLO_UL_DL_INBSS_AT_SET_BK(airtime, value)  WMI_SET_BITS(airtime, 8, 8, value)

#define WMI_PMLO_UL_DL_INBSS_AT_GET_VI(airtime)         WMI_GET_BITS(airtime, 16, 8)
#define WMI_PMLO_UL_DL_INBSS_AT_SET_VI(airtime, value)  WMI_SET_BITS(airtime, 16, 8, value)

#define WMI_PMLO_UL_DL_INBSS_AT_GET_VO(airtime)         WMI_GET_BITS(airtime, 24, 8)
#define WMI_PMLO_UL_DL_INBSS_AT_SET_VO(airtime, value)  WMI_SET_BITS(airtime, 24, 8, value)

#define WMI_PMLO_LINK_OBSS_AT_GET(airtime)              WMI_GET_BITS(airtime, 0, 8)
#define WMI_PMLO_LINK_OBSS_AT_SET(airtime, value)       WMI_SET_BITS(airtime, 0, 8, value)

#define WMI_PMLO_LINK_AA_GET(airtime)                   WMI_GET_BITS(airtime, 8, 8)
#define WMI_PMLO_LINK_AA_SET(airtime, value)            WMI_SET_BITS(airtime, 8, 8, value)

#define WMI_PMLO_UL_AIRTIME_NON_AC_GET(airtime)         WMI_GET_BITS(airtime, 16, 8)
#define WMI_PMLO_UL_AIRTIME_NON_AC_SET(airtime, value)  WMI_SET_BITS(airtime, 16, 8, value)

#define WMI_PMLO_DL_AIRTIME_NON_AC_GET(airtime)         WMI_GET_BITS(airtime, 24, 8)
#define WMI_PMLO_DL_AIRTIME_NON_AC_SET(airtime, value)  WMI_SET_BITS(airtime, 24, 8, value)

/*
 * The wmi_ctrl_path_pmlo_stats_struct is used to send Provisional MLO stats
 * the WMI_CTRL_PATH_STATS_EVENT message, in response to a
 * WMI_REQUEST_CTRL_PATH_STATS_CMD message for the stat type
 * WMI_REQUEST_CTRL_PATH_PMLO_STAT.
 */
typedef struct {
    /* TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ctrl_path_pmlo_stats_struct */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the PHY */
    A_UINT32 pdev_id;
    /*
     * Percentage of downlink air time used in each access category
     * calculated InBSS, units in percentage.
     * BIT[0-7]   : AC_BE
     * BIT[8-15]  : AC_BK
     * BIT[16-23] : AC_VI
     * BIT[24-31] : AC_VO
     * Please refer to WMI_PMLO_UL_DL_INBSS_AT_* macros
     * to retrieve values for each access category in dl_inbss_airtime_per_ac.
     */
    union {
        struct {
             A_UINT32
                 dl_inbss_airtime_ac_be: 8,
                 dl_inbss_airtime_ac_bk: 8,
                 dl_inbss_airtime_ac_vi: 8,
                 dl_inbss_airtime_ac_vo: 8;
        };
        A_UINT32 dl_inbss_airtime_per_ac;
    };
    /*
     * Percentage of uplink air time used in each access category
     * calculated InBSS, units in percentage.
     * BIT[0-7]   : AC_BE
     * BIT[8-15]  : AC_BK
     * BIT[16-23] : AC_VI
     * BIT[24-31] : AC_VO
     * Please refer to WMI_PMLO_UL_DL_INBSS_AT_* macros
     * to set/get values for each access category in ul_inbss_airtime_per_ac.
     */
    union {
        struct {
            A_UINT32
                ul_inbss_airtime_ac_be: 8,
                ul_inbss_airtime_ac_bk: 8,
                ul_inbss_airtime_ac_vi: 8,
                ul_inbss_airtime_ac_vo: 8;
        };
        A_UINT32 ul_inbss_airtime_per_ac;
    };
    /*
     * Percentage of air time available for each AC, units in percentage.
     * BIT[0-7]   : AC_BE
     * BIT[8-15]  : AC_BK
     * BIT[16-23] : AC_VI
     * BIT[24-31] : AC_VO
     * Please refer to WMI_ESP_ESTIMATE_GET_* and WMI_ESP_ESTIMATE_SET_* macros
     * to retrieve values for each access category in estimated_air_time_per_ac.
     */
    union {
        struct {
             A_UINT32
                 estimated_air_time_ac_be: 8,
                 estimated_air_time_ac_bk: 8,
                 estimated_air_time_ac_vi: 8,
                 estimated_air_time_ac_vo: 8;
        };
        A_UINT32 estimated_air_time_per_ac;
    };
    /*
     * Average channel latency per AC, units in micro seconds.
     * avg_chan_lat_per_ac[0] : AC_VO
     * avg_chan_lat_per_ac[1] : AC_VI
     * avg_chan_lat_per_ac[2] : AC_BE
     * avg_chan_lat_per_ac[3] : AC_BK
     */
    A_UINT32 avg_chan_lat_per_ac[WMI_AC_MAX];
    /*
     * link_obss_airtime: Percentage of OBSS used air time per link,
     * units in percentage.
     * Refer to WMI_PMLO_LINK_OBSS_AT_* Macro to set/get values.
     * link_idle_airtime: Idle/free airtime per link, units in percentage.
     * Refer to WMI_PMLO_LINK_AA_* macro to set/get values.
     * ul_inbss_airtime_non_ac: ul inBSS airtime occupied by non-AC traffic,
     * units in percentage.
     * Refer to WMI_PMLO_UL_AIRTIME_NON_AC_* macro to set/get values.
     * dl_inbss_airtime_non_ac: dl inBSS airtime occupied by non-AC traffic,
     * units in percentage.
     * Refer to WMI_PMLO_DL_AIRTIME_NON_AC_* macro to set/get values.
     */
    union {
        struct {
            A_UINT32 link_obss_airtime:       8,
                     link_idle_airtime:       8,
                     ul_inbss_airtime_non_ac: 8,
                     dl_inbss_airtime_non_ac: 8;
        };
        A_UINT32 ul_dl_obss_free_aa_word32;
    };
} wmi_ctrl_path_pmlo_stats_struct;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_path_cfr_stats_struct */
    A_UINT32 tlv_header;
    /*
     * This index is used for formatting the printout of this stats TLV.
     * A stats header is added when the index=0.
     */
    A_UINT32 index;
    wmi_mac_addr cfr_peer_mac_addr;
    A_UINT32 peer_in_use;
    A_UINT32 capture_in_progress;
    /* capture_method: 0 means oneshot request, otherwise periodic request */
    A_UINT32 capture_method;
    A_UINT32 periodicity; /* Time in ms */
    A_UINT32 latest_req_timestamp; /* Time in ms */
    A_UINT32 latest_resp_timestamp; /* Time in ms */
    A_UINT32 cfr_req_count;
    A_UINT32 cfr_resp_success_count;
    A_UINT32 cfr_resp_failure_count;
} wmi_ctrl_path_cfr_stats_struct;


#define WMI_MAX_MLO_LINKS 5
#define WMI_HE_MAP_COUNT 3
#define WMI_EHT_MAP_COUNT 3

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ctrl_path_peer_stats_struct
     */
    A_UINT32 tlv_header;
    /* mac address - part of wlan_peer */
    wmi_mac_addr mac_addr;
    /* wlan_peer flags - refer to IEEE80211_NODE_* flags in wlan_peer.h */
    A_UINT32 opaque_debug_flags;
    /* opaque_debug_vht_caps:
     * Negotiated VHT capabilities in the wlan_peer struct
     * Refer to ieee80211_defs.h.
     */
    A_UINT32 opaque_debug_vht_caps;
    /* opaque_debug_flags_ext:
     * Extended flags in the wlan_peer struct
     * Refer to IEEE80211_NODE_* flags in wlan_peer.h.
     */
    A_UINT32 opaque_debug_flags_ext;
    /* TID queues marked for TWT flush, present in wlan_peer */
    A_UINT32 opaque_debug_twt_flush_tidmap;
    /* Number of TWT SPs to be expired, present in wlan_peer */
    A_UINT32 opaque_debug_n_TWT_SPs_to_expire;
    /* opaque_debug_rc_flags:
     * Peer rate information, part of struct rate_node
     * Refer to whal_rate_api.h for complete RC_FLAGS details.
     */
    A_UINT32 opaque_debug_rc_flags;
    /* opaque_debug_sm_event_mask_eosp_cnt:
     * This word contains the following bitfields:
     *   - Power save state machine event mask,
     *     part of wal_ps_buf_peer_handle_t.
     *     Refer to enum wal_ps_buf_peer_reg_ev_handlers.
     *     Use WMI_PEER_STATS_SM_MASK_SET,GET macros.
     *   - End of service period (EOSP) sent retry counter,
     *     part of wal_ps_buf_peer_handle_t.
     *     Use WMI_PEER_STATS_EOSP_RETRY_CNT_SET,GET macros.
     */
    A_UINT32 opaque_debug_sm_event_mask_eosp_cnt;
    /* opaque_debug_ps_buf_peer_flag1:
     * Power save related send_n, ps_poll, unscheduled service period
     * related fields;
     * Part of wal_ps_buf_peer_handle_t.
     * Refer to wal_ps_buf_peer_ctx struct definition.
     */
    A_UINT32 opaque_debug_ps_buf_peer_flag1;
    /* opaque_debug_ps_buf_peer_flag2:
     * Power save related trigger/delivery tid related fields.
     * part of wal_ps_buf_peer_handle_t.
     * Refer to wal_ps_buf_peer_ctx struct definition.
     */
    A_UINT32 opaque_debug_ps_buf_peer_flag2;
    /* opaque_debug_ps_buf_peer_flag3:
     * Power save related last trigger related information,
     * part of wal_ps_buf_peer_handle_t.
     * Refer to wal_ps_buf_peer_ctx struct definition.
     */
    A_UINT32 opaque_debug_ps_buf_peer_flag3;
    /* opaque_debug_last_rx_trigger_time:
     * Time of the most recently received uplink trigger frame,
     * part of wal_ps_buf_peer_handle_t - in microseconds units.
     */
    A_UINT32 opaque_debug_last_rx_trigger_time;
    /* opaque_debug_last_poll_time:
     * TSF of the most recently received uplink PS-Poll,
     * part of wal_ps_buf_peer_handle_t - in TU
     */
    A_UINT32 opaque_debug_last_poll_time;
    /* opaque_debug_oldest_tx_buffered_waiting_ms:
     * Enqueue time of most recent MSDU that AP has buffered for
     * sleeping station, part of wal_ps_buf_peer_handle_t, in ms units.
     */
    A_UINT32 opaque_debug_oldest_tx_buffered_waiting_ms;
    /* opaque_debug_last_rxtx_activity:
     * The last time when there was a rx or tx traffic from a client,
     * part of wal_ps_buf_peer_handle_t, in ms units.
     */
    A_UINT32 opaque_debug_last_rxtx_activity;
    /* opaque_debug_twt_flush_expiry_timestamp:
     * Peer's TWT flush expiry timestamp in us,
     * part of peer_twt_flush struct.
     */
    A_UINT32 opaque_debug_twt_flush_expiry_timestamp;
    /* opaque_debug_hw_link_id:
     * Unique link id across SOCs, determined during QMI handshake,
     * part of wlan_peer_ml_info_t.
     */
    A_UINT32 opaque_debug_hw_link_id;
    /* opaque_debug_ml_partner_hw_link_id_bitmap:
     * Hardware link id of the of partner links that are to be cleaned up.
     * This is filled by host during peer delete cmd.
     * It it part of wlan_peer_ml_info_t.
     */
    A_UINT32 opaque_debug_ml_partner_hw_link_id_bitmap;
    /* opaque_debug_link_flags:
     * MLO link flags: related to assoc, anchor, master and primary UMAC links.
     * Refer to resmgr_mlo_link_flags.
     * Part of wlan_peer_ml_info_t.
     */
    A_UINT32 opaque_debug_link_flags;
    /* MLO peer id - part of wlan_ml_peer_t */
    A_UINT32 opaque_debug_ml_peer_id;
    /* MLD mac address - part of wlan_ml_peer_t */
    wmi_mac_addr opaque_debug_mld_mac_addr;
    /* opaque_debug_assoc_id_usage_cnt:
     * Part of wlan_peer.
     * This word contains the following bitfields:
     *   - assoc id of the peer
     *     Use WMI_PEER_STATS_ASSOCIATE_ID_SET,GET macros.
     *   - peer usage count to track if peer alloc command is sent
     *     for new or existing peer,
     *     Use WMI_PEER_STATS_USAGE_CNT_SET,GET macros.
     */
    A_UINT32 opaque_debug_assoc_id_usage_cnt;
    /* opaque_debug_default_ht_caps:
     * Part of wlan_peer.
     * This word contains the following bitfields:
     *   - default peer capabilities of the peer - refer ieee80211_defs.h
     *     Use WMI_PEER_STATS_DEF_CAPS_SET,GET macros.
     *   - HT capabilities of the peer - refer ieee80211_defs.h
     *     Use WMI_PEER_STATS_HT_CAPS_SET,GET macros.
     */
    A_UINT32 opaque_debug_default_ht_caps;
    /* opaque_debug_inact_gen:
     * Part of wlan_peer.
     * This word contains the following bitfields:
     *   - Overall tx/rx inactivity time of the peer in seconds
     *     Use WMI_PEER_STATS_INACT_GEN_SET,GET macros.
     *   - Data tx/rx inactivity time of the peer in seconds.
     *     Use WMI_PEER_STATS_DATA_INACT_GEN_SET,GET macros.
     */
    A_UINT32 opaque_debug_inact_gen;
    /* opaque_debug_id_type:
     * Part of wlan_peer.
     * This word contains the following bitfields:
     *   - Type of peer whether it is bss,self or remote peer.
     *     Refer to enum wmi_peer_type.
     *     Use WMI_PEER_STATS_TYPE_SET,GET macros.
     *   - MAC ID that the peer belongs to
     *     Use WMI_PEER_STATS_MAC_ID_SET,GET macros.
     *   - sw peer id of the peer
     *     Use WMI_PEER_STATS_ID_SET,GET macros.
     */
    A_UINT32 opaque_debug_id_type;
    /* Deleted tids bitmask within the peer - part of wal_peer */
    A_UINT32 opaque_debug_deleted_tidmask;
    /* number of local pending frames for completions -  part of wal_peer */
    A_UINT32 opaque_debug_num_of_local_frames_pending;
    /* flags part of wal_peer - refer to wal_peer_flags_t */
    A_UINT32 opaque_debug_wal_peer_flags;
    /* opaque_debug_keyid0_ast_index:
     * The AST index for key id 0 which is always allocated,
     * part of wal_peer.
     */
    A_UINT32 opaque_debug_keyid0_ast_index;
    /* opaque_debug_all_tids_block_module_bitmap:
     * Bitmap of block IDs requesting block of all TIDs,
     * part of wal_peer.
     * Refer to enum WLAN_PAUSE_ID.
     * This block/pause ID can be mapped to a WLAN_MODULE_ID module ID.
     */
    A_UINT32 opaque_debug_all_tids_block_module_bitmap;
    /* opaque_debug_all_tids_pause_module_bitmap:
     * Bitmap of pause IDs requesting block of all TIDs,
     * part of wal_peer.
     * Refer to enum WLAN_PAUSE_ID.
     * This pause ID can be mapped to a WLAN_MODULE_ID module ID.
     */
    A_UINT32 opaque_debug_all_tids_pause_module_bitmap;
    /* opaque_debug_data_tids_block_module_bitmap:
     * Bitmap of block ids requesting block of data tids,
     * part of wal_peer.
     * Refer to enum WLAN_PAUSE_ID.
     * This block/pause ID can be mapped to a WLAN_MODULE_ID module ID.
     */
    A_UINT32 opaque_debug_data_tids_block_module_bitmap;
    /* opaque_debug_data_tids_pause_module_bitmap:
     * Bitmap of pause ids requesting block of data tids,
     * part of wal_peer.
     * Refer to enum WLAN_PAUSE_ID.
     * This pause ID can be mapped to a WLAN_MODULE_ID module ID.
     */
    A_UINT32 opaque_debug_data_tids_pause_module_bitmap;
    /* The time stamp when first ppdu fails in us, part of wal_peer */
    A_UINT32 opaque_debug_ppdu_fail_time;
    /* opaque_debug_rate_params:
     * This word contains the following bitfields:
     *   - Non data rate code of the peer - part of wal_peer
     *     Use WMI_PEER_STATS_BSS_NON_DATA_RC_SET,GET macros.
     *   - channel bandwidth supported by the peer, part of wal_peer.
     *     The mapping is as follows:
     *     0 = 20 MHz, 1 = 40 MHz, 2 = 80 MHz, 3 = 160 MHz, 4 = 320 MHz
     *     Use WMI_PEER_STATS_CH_WIDTH_SET,GET macros.
     *   - MCS used for the last PPDU received from the peer, part of wal_peer
     *     Use WMI_PEER_STATS_RX_MCS_SET,GET macros.
     */
    A_UINT32 opaque_debug_rate_params;
    /* consecutive QOS null frame tx fail count, part of wal_peer */
    A_UINT32 opaque_debug_consecutive_null_failure;
    /* peer delete state refer enum PEER_DELETE_SM_STATE, part of wal_peer */
    A_UINT32 opaque_debug_peer_delete_sm_state;
    /* opaque_debug_cache_rate_info_low32,_high32:
     * Lower/upper 32 bits respectively of cached rate info variable
     * updated by the HTT metadata.
     * This rate_info is based on the values from struct
     * htt_tx_msdu_desc_ext2_t  .
     * If htt_tx_desc_ext2->update_peer_cache is set to 1 and
     * HTT_TX_TCL_METADATA_PEER_ID_GET(tcl_cmd_num) returns valid peer ID
     * then rate_info cache of the peer is updated.
     * Part of wal_peer.
     */
    A_UINT32 opaque_debug_cache_rate_info_low32;
    A_UINT32 opaque_debug_cache_rate_info_high32;
    /* opaque_debug_peer_delete_rc4_rekey:
     * This word contains the following bitfields:
     *   - Flag that denotes if Peer delete all is in progress or not,
     *     part of wal_peer.
     *     Use WMI_PEER_STATS_DELETE_ALL_FLAG_SET,GET macros.
     *   - RC4 rekey counter, part of wal_peer.
     *     Use WMI_PEER_STATS_RC4_REKEY_CNT_SET,GET macros.
     */
    A_UINT32 opaque_debug_peer_delete_rc4_rekey;
    /* opaque_debug_mcbc_tids_pause_bitmap:
     * Bitmap containing Multicast and broadcast tids that are paused,
     * part of wal_peer.
     */
    A_UINT32 opaque_debug_mcbc_tids_pause_bitmap;
    /* opaque_debug_next_to_last_pn_low32,_high32:
     * Lower/upper 32 bits respectively of last used PN value received,
     * part of wal_peer.
     */
    A_UINT32 opaque_debug_next_to_last_pn_low32;
    A_UINT32 opaque_debug_next_to_last_pn_high32;
    /* opaque_debug_last_pn_low32,_high32:
     * Lower/upper 32 bits respectively of current PN value received,
     * part of wal_peer.
     */
    A_UINT32 opaque_debug_last_pn_low32;
    A_UINT32 opaque_debug_last_pn_high32;
    /* opaque_debug_twt_ap_peer_ctx_flags:
     * This word contains the following bitfields:
     *   - TWT AP peer's context flags, part of twt_ap_peer_handle_t struct.
     *     Refer twt_ap_twt_session_t definition.
     *     Use WMI_PEER_STATS_TWT_AP_FLAGS_SET,GET macros.
     *   - TWT session counter, part of twt_ap_peer_handle_t struct.
     *     Use WMI_PEER_STATS_TWT_AP_SESSION_CNT_SET,GET macros.
     *   - TWT frame retry counter, part of twt_ap_peer_handle_t struct.
     *     Use WMI_PEER_STATS_TWT_FRM_RETRY_SET,GET macros.
     */
    A_UINT32 opaque_debug_twt_ap_peer_ctx_flags;
    /* opaque_debug_twt_ap_counters:
     * This word contains the following bitfields:
     *   - TWT UL trigger counter, part of twt_ap_peer_handle_t struct.
     *     Use WMI_PEER_STATS_TWT_UL_TRIGGER_SET,GET macros.
     *   - TWT Broadcast session counter, part of twt_ap_peer_handle_t struct.
     *     Use WMI_PEER_STATS_TWT_BC_SESSION_SET,GET macros.
     *   - TWT pending report counter, part of twt_ap_peer_handle_t struct.
     *     Use WMI_PEER_STATS_TWT_PENDING_REPORT_SET,GET macros.
     *   - TWT flow IDs, part of twt_ap_peer_handle_t struct.
     *     Use WMI_PEER_STATS_TWT_FLOW_IDS_SET,GET macros.
     */
    A_UINT32 opaque_debug_twt_ap_counters;
    /* opaque_debug_tx_state_bmap_low32,_high32:
     * Lower/upper 32 bits respectively of list of currently running
     * BA Tx states for tids in this peer, part of wal_ba_peer_handle_t.
     */
    A_UINT32 opaque_debug_tx_state_bmap_low32;
    A_UINT32 opaque_debug_tx_state_bmap_high32;
    /* opaque_debug_addba_mode:
     * This word contains the following bitfields:
     *   - ADDBA mode whether its automatic or manual,
     *     WAL_BA_ADDBA_MODE_AUTO = 0 and WAL_BA_ADDBA_MODE_MANUAL = 1
     *     Part of wal_ba_peer_handle_t.
     *     Use WMI_PEER_STATS_ADDBBA_TX_MODE_SET,GET macros.
     *   - ADDBA request's response code, part of wal_ba_peer_handle_t.
     *     Use WMI_PEER_STATS_ADDBBA_RESP_MODE_SET,GET macros.
     */
    A_UINT32 opaque_debug_addba_mode;
    /* opaque_debug_tx_retry_bmap:
     * Bitmap of tids and their TX BlockAck retry counters.
     * Each TID uses 2 bits for its BA retry counter.
     * Part of wal_ba_peer_handle_t.
     */
    A_UINT32 opaque_debug_tx_retry_bmap;
    /* opaque_debug_rx_state_bmap:
     * Bitmap of tids and their RX BlockAck retry counters.
     *   00 - BA not setup
     *   01 - BA in progress
     *   10 - reserved
     *   11 - BA setup.
     * Each TID uses 2 bits for its BA RX state;
     * for instance TID 0's BA info occupies bits 1:0 and so on.
     * Part of wal_ba_peer_handle_t.
     */
    A_UINT32 opaque_debug_rx_state_bmap;
    /* opaque_debug_tx_pending_delba_tid_bmap:
     * TID bitmap containaing information DELBA tx pending,
     * part of wal_ba_peer_handle_t.
     */
    A_UINT32 opaque_debug_tx_pending_delba_tid_bmap;
    /* opaque_debug_link_monitor_tid_num:
     * link monitor tid num in bss_peer ba_peer_handle,
     * part of wal_ba_peer_handle_t.
     */
    A_UINT32 opaque_debug_link_monitor_tid_num;
    /* opaque_debug_rc4_eapol_key_complete:
     * Flag that denotes rc4 eapol key exchange is complete,
     * part of wal_peer_ext.
     */
    A_UINT32 opaque_debug_rc4_eapol_key_complete;
    /* qcache peer flags, refer to qpeer_flags_t */
    A_UINT32 opaque_debug_qpeer_flags;
    /* bitmap of TIDs requested for flush, part of wal_qcache_peer */
    A_UINT32 opaque_debug_delete_requested_tidmask;
    /* bitmap of created TIDs, part of wal_qcache_peer */
    A_UINT32 opaque_debug_tid_created_tidmask;
    /* opaque_debug_qpeer_rt_flags0,_flags1,_flags2:
     * RT thread related fields in qpeer, refer to _wal_qcache_peer.
     */
    A_UINT32 opaque_debug_qpeer_rt_flags0;
    A_UINT32 opaque_debug_qpeer_rt_flags1;
    A_UINT32 opaque_debug_qpeer_rt_flags2;
    /* opaque_debug_qpeer_sa_flags0,_flags1:
     * SA thread related fields in qpeer, refer to _wal_qcache_peer.
     */
    A_UINT32 opaque_debug_qpeer_sa_flags0;
    A_UINT32 opaque_debug_qpeer_sa_flags1;
    /* BE thread related fields in qpeer, refer to _wal_qcache_peer */
    A_UINT32 opaque_debug_qpeer_be_flags;
    /* qpeer event bitmap, refer to wal_peer_event_type */
    A_UINT32 opaque_debug_event_bitmap;
    /* tx fail count for a peer, part of dcache peer */
    A_UINT32 opaque_debug_seq_no_tx_fail_cnt;
    /* Last transmission rate in kbps for a peer, part of dcache peer */
    A_UINT32 opaque_debug_last_tx_rate_kbps;
    /* opaque_debug_amsdu_size:
     * This word contains the following bitfields:
     *    - MAX AMSDU size of the peer, part of dcache peer.
     *      Use WMI_PEER_STATS_MAX_AMSDU_SIZE_SET,GET macros.
     */
    A_UINT32 opaque_debug_amsdu_size;
    /* opaque_debug_fake_sleep_time:
     * Time elapsed in ms after entering into fake sleep after xretry failure,
     * part of dcache peer.
     */
    A_UINT32 opaque_debug_fake_sleep_time;
    /* opaque_debug_tx_frame_qos_ctrl:
     * This word contains the following bitfields:
     *   - Tx frame control FC flags in ieee80211_defs.h, part of dcache peer.
     *     Use WMI_PEER_STATS_TX_FRAME_CTRL_SET,GET macros.
     *   - Tx QOS control FC flags in ieee80211_defs.h, part of dcache peer.
     *     Use WMI_PEER_STATS_TX_QOS_CTRL_SET,GET macros.
     */
    A_UINT32 opaque_debug_tx_frame_qos_ctrl;
    /* opaque_debug_consec_fail_subfrm_sz:
     * This word contains the following bitfields:
     *   - Consecutive tx fail count for the peer, part of dcache peer.
     *     Use WMI_PEER_STATS_CONSEC_FAIL_SET,GET macros.
     *   - subframe size configured for the peer, part of dcache peer.
     *     Use WMI_PEER_STATS_SUBFRAME_SIZE_SET,GET macros.
     */
    A_UINT32 opaque_debug_consec_fail_subfrm_sz;
    /* opaque_debug_tx_fail_partial_aid:
     * This word contains the following bitfields:
     *   - tx fail count for the peer, part of dcache peer.
     *     Use WMI_PEER_STATS_TX_FAIL_CNT_SET,GET macros.
     *   - Partial AID of the peer, part of dcache peer.
     *     Use WMI_PEER_STATS_TX_PARTIAL_AID_SET,GET macros.
     */
    A_UINT32 opaque_debug_tx_fail_partial_aid;
    /* opaque_debug_max_nss:
     * Part of dcache peer.
     * This word contains the following bitfields:
     *   - Peer NSS value sent by host during WMI_PEER_ASSOC cmd.
     *     Use WMI_PEER_STATS_MAX_NSS_SET,GET macros.
     */
    A_UINT32 opaque_debug_max_nss;
    /* opaque_debug_he_cap_info:
     * Peer HE capabilities info sent during peer assoc cmd.
     * Refer to WMI_HECAP_* macros in wmi_unified.h.
     * Part of dcache peer.
     */
    A_UINT32 opaque_debug_he_cap_info;
    /* opaque_debug_he_cap_info_ext:
     * Peer extended HE capabilities info sent during peer assoc cmd.
     * Refer to WMI_HECAP_* macros in wmi_unified.h.
     * Part of dcache peer.
     */
    A_UINT32 opaque_debug_he_cap_info_ext;
    /* opaque_debug_eht_cap_info:
     * Peer EHT capabilities info.
     * Refer to ieee80211_defs.h, part of dcache peer.
     */
    A_UINT32 opaque_debug_eht_cap_info;
    /* TAC thread related fields in dcache peer refer wal_dcache_peer_t */
    A_UINT32 opaque_debug_dcache_tac_flags;
    /* RT thread related fields in dcache peer refer wal_dcache_peer_t */
    A_UINT32 opaque_debug_dcache_rt_flags;
    /* Supported RC modes for the peer refer enum RC_MODE, part of dcache */
    A_UINT32 opaque_debug_rc_mode_supported_mask;
    /* opaque_debug_wlan_peer_bitfield_mask:
     * Part of wlan peer. This word contains the following bitfields:
     *   - Flag that denotes whether peer delete response is being sent
     *     to host or not.
     *     Use WMI_PEER_STATS_DEL_RESP_TO_HOST_SET,GET macros.
     *   - Flag that denotes if peer delete is in progress or not.
     *     Use WMI_PEER_STATS_DELETE_IN_PROGRESS_SET,GET macros.
     *   - Flag that denotes if peer migration is in progress or not.
     *     Use WMI_PEER_STATS_MIGRATION_IN_PROGRESS_SET,GET macros.
     *   - Flag that denotes peer's connection/authorized state.
     *     Refer WAL_PEER_STATE_* macros in wal_peer.h.
     *     Use WMI_PEER_STATS_CONN_STATE_SET,GET macros.
     *   - TX chain mask at 160MHz of the peer set during peer assoc command.
     *     Use WMI_PEER_STATS_TX_CHAIN_MASK_160_SET,GET macros.
     *   - Tx chain mask set during peer assoc command.
     *     Use WMI_PEER_STATS_TX_CHAIN_MASK_SET,GET macros.
     *   - copy of tx chain mask of peer saved for AP MIMO PS.
     *     Use WMI_PEER_STATS_ASSOC_CHAIN_MASK_SET,GET macros.
     */
    A_UINT32 opaque_debug_wlan_peer_bitfield_mask;
    /* opaque_debug_wal_peer_bitfields:
     * Part of wal_peer. This word contains the following bitfields:
     *   - Flag that denotes if QOS null is sent over WMI or not.
     *     Use WMI_PEER_STATS_QOS_NULL_OVER_WMI_SET,GET macros.
     *   - Flag that denotes whether peer assoc is received
     *     for the first time or not.
     *     Use WMI_PEER_STATS_NEW_ASSOC_SET,GET macros.
     *   - Flag that denotes whether TWT filter is enabled or not.
     *     Use WMI_PEER_STATS_TWT_FILT_FLAG_SET,GET macros.
     *   - Flag that denotes whether TWT is registered or not.
     *     Use WMI_PEER_STATS_TWT_REG_FLAG_SET,GET macros.
     *   - Flag that denotes whether WMM txQ uplink trigger is disabled or not.
     *     Use WMI_PEER_STATS_WMM_UL_TRIG_FLAG_SET,GET macros.
     *   - Number of active TIDs that do not have BA setup.
     *     Use WMI_PEER_STATS_ACTIVE_NOT_BA_TID_SET,GET macros.
     */
    A_UINT32 opaque_debug_wal_peer_bitfields;
    /* flags in RT context refer wal_peer_ext_t */
    A_UINT32 opaque_debug_wal_peer_rt_flags;
    /* opaque_debug_ml_attributes:
     * Part of wal_ml_peer. This word contains the following bitfields:
     *   - Num of MLO links
     *     Use WMI_PEER_STATS_NUM_LINKS_SET,GET macros.
     *   - ML peer id
     *     Use WMI_PEER_STATS_ML_PEER_ID_SET,GET macros.
     *   - Primary link ID
     *     Use WMI_PEER_STATS_PRI_LINK_ID_SET,GET macros.
     *   - Primary chip ID
     *     Use WMI_PEER_STATS_PRI_CHIP_ID_SET,GET macros.
     *   - Initial link count
     *     Use WMI_PEER_STATS_LINK_INIT_CNT_SET,GET macros.
     *   - Number of local links
     *     Use WMI_PEER_STATS_NUM_LOCAL_LINKS_SET,GET macros.
     *   - Bitmap of participating chips
     *     Use WMI_PEER_STATS_CHIPS_BITMAP_SET,GET macros.
     */
    A_UINT32 opaque_debug_ml_attributes;
    /* wal peer MLO flags refer ml_peer_flags_t */
    A_UINT32 opaque_debug_ml_flags;
    /* opaque_debug_ml_link_info_flags:
     * Part of link_info in wlan_peer_ml_info_t.
     * This word contains the following bitfields:
     *   - flag denoting if MLO-link is valid or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_VALID_SET,GET macros.
     *   - flag denoting if MLO-link is active or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_ACTIVE_SET,GET macros.
     *   - flag denoting if MLO-link is primary or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_PRI_SET,GET macros.
     *   - flag denoting if MLO-link is assoc link or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_ASSOC_LINK_SET,GET macros.
     *   - Chip ID of the MLO-link
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_CHIP_ID_SET,GET macros.
     *   - IEEE link ID of the MLO-link
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_IEEE_LINK_SET,GET macros.
     *   - HW link ID of the MLO-link
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_HW_LINK_SET,GET macros.
     *   - logical link ID of the MLO-link
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_LOGICAL_LINK_SET,GET macros.
     *   - flag denoting if MLO-link is master link or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_MASTER_LINK_SET,GET macros.
     *   - flag denoting if MLO-link is anchor link or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_ANCHOR_LINK_SET,GET macros.
     *   - flag denoting if MLO-link is initialized or not
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_INIT_SET,GET macros.
     */
    A_UINT32 opaque_debug_ml_link_info_flags[WMI_MAX_MLO_LINKS];
    /* opaque_debug_ml_link_info_id:
     * Part of link_info in wlan_peer_ml_info_t.
     * This word contains the following bitfields:
     *   - sw_peer_id corresponding to the link
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_PEER_ID_SET,GET macros.
     *   - vdev id corresponding to the link
     *     Use WMI_PEER_STATS_ML_PEER_LINK_INFO_VDEV_ID_SET,GET macros.
     */
    A_UINT32 opaque_debug_ml_link_info_id[WMI_MAX_MLO_LINKS];
    /* MLO link info primary tid mask, part of link_info in wlan_peer_ml_info_t */
    A_UINT32 opaque_debug_ml_link_info_pri_tidmask[WMI_MAX_MLO_LINKS];
    /* opaque_debug_rc_node_params:
     * Part of struct TX_PEER_PARAMS.
     * This word contains the following bitfields:
     *   - NSS of the peer in 160MHZ
     *     Use WMI_PEER_STATS_NSS_160_SET,GET macros.
     *   - phymode of the peer - refer enum WLAN_PHY_MODE
     *     Use WMI_PEER_STATS_RC_PHYMODE_SET,GET macros.
     *   - legacy rate set for the peer
     *     Use WMI_PEER_STATS_LEGACY_RATE_SET,GET macros.
     */
    A_UINT32 opaque_debug_rc_node_params;
    /* opaque_debug_rc_vht_mcs_set:
     * Rate node param - negotiated VHT MCS map,
     * part of struct TX_PEER_PARAMS
     */
    A_UINT32 opaque_debug_rc_vht_mcs_set;
    /* opaque_debug_rc_node_params1:
     * Part of link_info in wlan_peer_ml_info_t.
     * This word contains the following bitfields:
     *   - Minimum data rate set for the peer in Mbps
     *     Use WMI_PEER_STATS_MIN_DATA_RATE_SET,GET macros.
     *   - Max VHT rate set for the peer
     *     Use WMI_PEER_STATS_VHT_MAX_RATE_SET,GET macros.
     *   - Max VHT streams set for the peer
     *     Use WMI_PEER_STATS_VHT_MAX_STREAMS_SET,GET macros.
     *   - BSS - Channel frequency set for the peer in MHz
     *     Use WMI_PEER_STATS_RC_CHAN_FREQ_SET,GET macros.
     */
    A_UINT32 opaque_debug_rc_node_params1;
    /* opaque_debug_he_mcs_nss_set_tx,_rx:
     * Rate node param - negotiated HE MCS tx+rx maps,
     * part of struct TX_PEER_PARAMS.
     * The lower 8 bits (bits 23:16) within the upper 16 bits indicate
     * MCS 12/13 enablement for BW <= 80MHz; the upper 8 bits (bits 31:24)
     * within the 16 bits indicate MCS 12/13 enablement for BW > 80MHz.
     * The 16 bits for the index values are within the upper bits (bits 31:16)
     * of a 32-bit word. and WMI_HE_MAP_COUNT is based on HE_MCS_MAP_CNT
     * in ieee80211_defs.h.
     */
    A_UINT32 opaque_debug_he_mcs_nss_set_tx[WMI_HE_MAP_COUNT];
    A_UINT32 opaque_debug_he_mcs_nss_set_rx[WMI_HE_MAP_COUNT];
    /* opaque_debug_eht_mcs_nss_set_tx,_rx:
     * Rate node param - negotiated EHT MCS tx+rx maps,
     * part of struct TX_PEER_PARAMS.
     * B0-B3 indicates max NSS that supports mcs 0-7
     * B4-B7 indicates max NSS that supports mcs 8-9
     * B8-B11 indicates max NSS that supports mcs 10-11
     * B12-B15 indicates max NSS that supports mcs 12-13
     * B16-B31 reserved.
     * WMI_EHT_MAP_COUNT is based on EHT_MCS_MAP_CNT in ieee80211_defs.h.
     */
    A_UINT32 opaque_debug_eht_mcs_nss_set_tx[WMI_EHT_MAP_COUNT];
    A_UINT32 opaque_debug_eht_mcs_nss_set_rx[WMI_EHT_MAP_COUNT];
    /* opaque_debug_rc_user_start_mcs_rate:
     * Rate node user_start_rate is MCS value set based on phymode.
     * For possible values refer "INITIAL_" macros in ratectrl.h.
     * Part of struct TX_PEER_PARAMS.
     * This is the starting value of MCS that was used by rate control
     * for the first transmissions to the peer, until PER information
     * from the peer allowed the rate control algorithm to determine
     * the suitable MCS.
     */
    A_UINT32 opaque_debug_rc_user_start_mcs_rate;
    /*
     * The following 4 opaque_debug_field variables are provided purely
     * for debugging by technicians who have outside knowledge of what
     * kind of values the target has placed into these fields.
     * They are not to be interpreted by the host driver in any manner.
     */
    A_UINT32 opaque_debug_field_1;
    A_UINT32 opaque_debug_field_2;
    A_UINT32 opaque_debug_field_3;
    A_UINT32 opaque_debug_field_4;
} wmi_ctrl_path_peer_stats_struct;

#define WMI_PEER_STATS_SM_MASK_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_SM_MASK_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_EOSP_RETRY_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PEER_STATS_EOSP_RETRY_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
/* bits 31:24 unused/reserved */

#define WMI_PEER_STATS_ASSOCIATE_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_ASSOCIATE_ID_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_USAGE_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_USAGE_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_DEF_CAPS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_DEF_CAPS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_HT_CAPS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_HT_CAPS_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_INACT_GEN_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_INACT_GEN_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_DATA_INACT_GEN_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_DATA_INACT_GEN_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_PEER_TYPE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_PEER_TYPE_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PEER_STATS_MAC_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PEER_STATS_MAC_ID_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PEER_STATS_PEER_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_PEER_ID_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_BSS_NON_DATA_RC_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_BSS_NON_DATA_RC_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PEER_STATS_CH_WIDTH_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PEER_STATS_CH_WIDTH_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PEER_STATS_RX_MCS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PEER_STATS_RX_MCS_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
/* bits 31:24 unused/reserved */

#define WMI_PEER_STATS_DELETE_ALL_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_DELETE_ALL_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PEER_STATS_RC4_REKEY_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PEER_STATS_RC4_REKEY_CNT_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
/* bits 31:16 unused/reserved */

#define WMI_PEER_STATS_TWT_AP_FLAGS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_TWT_AP_FLAGS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_TWT_AP_SESSION_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PEER_STATS_TWT_AP_SESSION_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PEER_STATS_TWT_FRM_RETRY_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PEER_STATS_TWT_FRM_RETRY_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_PEER_STATS_TWT_UL_TRIGGER_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_TWT_UL_TRIGGER_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PEER_STATS_TWT_BC_SESSION_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PEER_STATS_TWT_BC_SESSION_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PEER_STATS_TWT_PENDING_REPORT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PEER_STATS_TWT_PENDING_REPORT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PEER_STATS_TWT_FLOW_IDS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PEER_STATS_TWT_FLOW_IDS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_PEER_STATS_ADDBBA_TX_MODE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_ADDBBA_TX_MODE_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_ADDBBA_RESP_MODE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_ADDBBA_RESP_MODE_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_MAX_AMSDU_SIZE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_MAX_AMSDU_SIZE_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
/* bits 31:16 unused/reserved */

#define WMI_PEER_STATS_TX_FRAME_CTRL_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_TX_FRAME_CTRL_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_TX_QOS_CTRL_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_TX_QOS_CTRL_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_CONSEC_FAIL_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_CONSEC_FAIL_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_SUBFRAME_SIZE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_SUBFRAME_SIZE_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_TX_FAIL_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_TX_FAIL_CNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_TX_PARTIAL_AID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_TX_PARTIAL_AID_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_MAX_NSS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_MAX_NSS_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
/* bits 31:8 unused/reserved */

#define WMI_PEER_STATS_DEL_RESP_TO_HOST_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_PEER_STATS_DEL_RESP_TO_HOST_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_PEER_STATS_DELETE_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_PEER_STATS_DELETE_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_PEER_STATS_MIGRATION_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 1, val)
#define WMI_PEER_STATS_MIGRATION_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 2, 1)
#define WMI_PEER_STATS_CONN_STATE_SET(flag, val) \
    WMI_SET_BITS(flag, 3, 4, val)
#define WMI_PEER_STATS_CONN_STATE_GET(flag) \
    WMI_GET_BITS(flag, 3, 4)
#define WMI_PEER_STATS_TX_CHAIN_MASK_160_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PEER_STATS_TX_CHAIN_MASK_160_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PEER_STATS_TX_CHAIN_MASK_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PEER_STATS_TX_CHAIN_MASK_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_PEER_STATS_ASSOC_CHAIN_MASK_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PEER_STATS_ASSOC_CHAIN_MASK_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_PEER_STATS_QOS_NULL_OVER_WMI_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_PEER_STATS_QOS_NULL_OVER_WMI_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_PEER_STATS_NEW_ASSOC_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_PEER_STATS_NEW_ASSOC_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_PEER_STATS_TWT_FILT_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 1, val)
#define WMI_PEER_STATS_TWT_FILT_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 2, 1)
#define WMI_PEER_STATS_TWT_REG_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 3, 1, val)
#define WMI_PEER_STATS_TWT_REG_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 3, 1)
#define WMI_PEER_STATS_WMM_UL_TRIG_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 4, 1, val)
#define WMI_PEER_STATS_WMM_UL_TRIG_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 4, 1)
#define WMI_PEER_STATS_ACTIVE_NOT_BA_TID_SET(flag, val) \
    WMI_SET_BITS(flag, 5, 4, val)
#define WMI_PEER_STATS_ACTIVE_NOT_BA_TID_GET(flag) \
    WMI_GET_BITS(flag, 5, 4)
/* bits 31:10 unused/reserved */

#define WMI_PEER_STATS_NUM_LINKS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 2, val)
#define WMI_PEER_STATS_NUM_LINKS_GET(flag) \
    WMI_GET_BITS(flag, 0, 2)
#define WMI_PEER_STATS_ML_PEER_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 12, val)
#define WMI_PEER_STATS_ML_PEER_ID_GET(flag) \
    WMI_GET_BITS(flag, 2, 12)
#define WMI_PEER_STATS_PRI_LINK_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 14, 3, val)
#define WMI_PEER_STATS_PRI_LINK_ID_GET(flag) \
    WMI_GET_BITS(flag, 14, 3)
#define WMI_PEER_STATS_PRI_CHIP_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 17, 2, val)
#define WMI_PEER_STATS_PRI_CHIP_ID_GET(flag) \
    WMI_GET_BITS(flag, 17, 2)
#define WMI_PEER_STATS_LINK_INIT_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 19, 3, val)
#define WMI_PEER_STATS_LINK_INIT_CNT_GET(flag) \
    WMI_GET_BITS(flag, 19, 3)
#define WMI_PEER_STATS_NUM_LOCAL_LINKS_SET(flag, val) \
    WMI_SET_BITS(flag, 22, 2, val)
#define WMI_PEER_STATS_NUM_LOCAL_LINKS_GET(flag) \
    WMI_GET_BITS(flag, 22, 2)
#define WMI_PEER_STATS_CHIPS_BITMAP_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_PEER_STATS_CHIPS_BITMAP_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_PEER_STATS_ML_PEER_LINK_INFO_VALID_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_VALID_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_ACTIVE_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_ACTIVE_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_PRI_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_PRI_GET(flag) \
    WMI_GET_BITS(flag, 2, 1)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_ASSOC_LINK_SET(flag, val) \
    WMI_SET_BITS(flag, 3, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_ASSOC_LINK_GET(flag) \
    WMI_GET_BITS(flag, 3, 1)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_CHIP_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 4, 3, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_CHIP_ID_GET(flag) \
    WMI_GET_BITS(flag, 4, 3)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_IEEE_LINK_SET(flag, val) \
    WMI_SET_BITS(flag, 7, 8, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_IEEE_LINK_GET(flag) \
    WMI_GET_BITS(flag, 7, 8)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_HW_LINK_SET(flag, val) \
    WMI_SET_BITS(flag, 15, 3, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_HW_LINK_GET(flag) \
    WMI_GET_BITS(flag, 15, 3)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_LOGICAL_LINK_SET(flag, val) \
    WMI_SET_BITS(flag, 18, 2, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_LOGICAL_LINK_GET(flag) \
    WMI_GET_BITS(flag, 18, 2)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_MASTER_LINK_SET(flag, val) \
    WMI_SET_BITS(flag, 20, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_MASTER_LINK_GET(flag) \
    WMI_GET_BITS(flag, 20, 1)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_ANCHOR_LINK_SET(flag, val) \
    WMI_SET_BITS(flag, 21, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_ANCHOR_LINK_GET(flag) \
    WMI_GET_BITS(flag, 21, 1)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_INIT_SET(flag, val) \
    WMI_SET_BITS(flag, 22, 1, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_INIT_GET(flag) \
    WMI_GET_BITS(flag, 22, 1)
/* bits 31:23 unused/reserved */

#define WMI_PEER_STATS_ML_PEER_LINK_INFO_PEER_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_PEER_ID_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_VDEV_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_PEER_STATS_ML_PEER_LINK_INFO_VDEV_ID_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
/* bits 31:24 unused/reserved */

#define WMI_PEER_STATS_NSS_160_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_NSS_160_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PEER_STATS_RC_PHYMODE_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_PEER_STATS_RC_PHYMODE_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_PEER_STATS_LEGACY_RATE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_LEGACY_RATE_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_PEER_STATS_MIN_DATA_RATE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_PEER_STATS_MIN_DATA_RATE_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_PEER_STATS_VHT_MAX_RATE_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 4, val)
#define WMI_PEER_STATS_VHT_MAX_RATE_GET(flag) \
    WMI_GET_BITS(flag, 8, 4)
#define WMI_PEER_STATS_VHT_MAX_STREAMS_SET(flag, val) \
    WMI_SET_BITS(flag, 12, 4, val)
#define WMI_PEER_STATS_VHT_MAX_STREAMS_GET(flag) \
    WMI_GET_BITS(flag, 12, 4)
#define WMI_PEER_STATS_RC_CHAN_FREQ_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_PEER_STATS_RC_CHAN_FREQ_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)


typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_path_cfr_stats_struct */
    A_UINT32 tlv_header;
    /* blanking_mode:
     * blanking configuration. Refer to WMI_SCAN_BLANKING_MODE
     */
    A_UINT32 blanking_mode;
    /* is_blanking_enabled:
     * current blanking status. 0 = disabled, 1 = enabled
     */
    A_UINT32 is_blanking_enabled;
    A_UINT32 gate_2g_enabled; /* 2.4GHZ gate pin state */
    A_UINT32 gate_5g_enabled; /* 5GHz gate pin state */
    A_UINT32 gate_6g_enabled; /* 6GHz gate pin state */
    A_UINT32 blanking_count; /* scan radio blanking count */
    A_UINT32 blanking_duration; /* scan radio blanking duration in us */
} wmi_ctrl_path_blanking_stats_struct;

typedef struct {
    /** TLV tag and len; tag equals
    *  WMITLV_TAG_STRUC_wmi_ctrl_path_stats_event_fixed_param */
    A_UINT32 tlv_header;
    /** Request ID */
    A_UINT32 request_id;
    /** more flag
     *  1 - More events sent after this event.
     *  0 - no more events after this event.
     */
    A_UINT32 more;
    /** status:
     * The status field's value shows whether the WMI_REQUEST_CTRL_PATH_STATS
     * request was completed successfully,
     *     0 - status is success
     *     1 - status is failure
     */
    A_UINT32 status;
    /** This TLV is (optionally) followed by TLV arrays containing
     *  different types of stats:
     *  1.  wmi_ctrl_path_pdev_stats_struct ctrl_path_pdev_stats[];
     *      This TLV array contains zero or more pdev stats instances.
     *  2.  wmi_vdev_extd_stats vdev_extd_stats[];
     *      This TLV array contains zero or more vdev_extd_stats instances.
     */
} wmi_ctrl_path_stats_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_halphy_ctrl_path_stats_event_fixed_param
     */
    A_UINT32 tlv_header;

    /** Process id requested */
    A_UINT32 request_id;

    /* end_of_event - single event or Multiple Event */
    A_UINT32 end_of_event;

    /*
     * event_count - If Multiple Events are send, this is to identify
     * particular event out of Multiple Events that are send to host
     */
    A_UINT32 event_count;

    /** Pdev id requested */
    A_UINT32 pdev_id;
} wmi_halphy_ctrl_path_stats_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_radio_chan_stats */
    A_UINT32 tlv_header;
    /** primary channel freq of the channel whose stats is sent */
    A_UINT32 chan_mhz;
    /** accumulation of time the radio is tuned to this channel,
     *  in units of microseconds */
    A_UINT32 on_chan_us;
    /** accumulation of the TX PPDU duration over the measurement period,
     *  in units of microseconds */
    A_UINT32 tx_duration_us;
    /** accumulation of the RX PPDU duration over the measurement period,
     *  in units of microseconds */
    A_UINT32 rx_duration_us;
    /** ratio of channel busy time to on_chan_us, in units of percent */
    A_UINT32 chan_busy_ratio;
    /** ratio of on_chan_us to the measurement period, in units of percent */
    A_UINT32 on_chan_ratio;
    /** measurement period, in units of microseconds */
    A_UINT32 measurement_period_us;
    /** MPDUs transmitted on this channel */
    A_UINT32 tx_mpdus;
    /** MSDUs transmitted on this channel */
    A_UINT32 tx_msdus;
    /** MPDUS successfully received on this channel */
    A_UINT32 rx_succ_mpdus;
    /** Failed MPDUs (CRC failures) received on this channel */
    A_UINT32 rx_fail_mpdus;
} wmi_radio_chan_stats;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_radio_chan_stats_event_fixed_param */
    A_UINT32 tlv_header;
    /** number of channel stats in radio_chan_stats[] */
    A_UINT32 num_chans;
    /* This TLV is followed by another TLV of array of structs
     * wmi_radio_chan_stats radio_chan_stats[];
     */
} wmi_radio_chan_stats_event_fixed_param;

/**
 *  PDEV statistics
 *
 *  This struct incorporates the wlan_dbg_stats struct, which is
 *  conditionally defined, based on the AR900B flag.
 *  The below _v1 struct variant is the unconditional definition
 *  that matches what would be conditionally defined by builds that
 *  don't use the AR900B flag.  The _v2 struct variant is the
 *  unconditional definition that matches what would be conditionally
 *  defined by builds that use the AR900B flag.
 *  The _v2 struct def can be used within host or target builds
 *  that don't use the AR900B flag, but needs to interoperate with a
 *  target or host build that does use the AR900B flag.
 *  Similarly, the _v1 struct def can be used by a host or target build
 *  that does use the AR900B flag, but needs to interoperate with a
 *  target or host build that doesn't use the AR900B flag.
 *
 *  For backwards compatibility, wmi_pdev_stats is still (conditionally)
 *  defined, as an alias for either the _v1 or _v2 variant.
 */
typedef struct {
    /** Channel noise floor */
    A_INT32 chan_nf;
    /** TX frame count */
    A_UINT32 tx_frame_count;
    /** RX frame count */
    A_UINT32 rx_frame_count;
    /** rx clear count */
    A_UINT32 rx_clear_count;
    /** cycle count */
    A_UINT32 cycle_count;
    /** Phy error count */
    A_UINT32 phy_err_count;
    /** Channel Tx Power */
    A_UINT32 chan_tx_pwr;
    /** WAL dbg stats */
    struct wlan_dbg_stats_v1 pdev_stats;
} wmi_pdev_stats_v1;

typedef struct {
    /** Channel noise floor */
    A_INT32 chan_nf;
    /** TX frame count */
    A_UINT32 tx_frame_count;
    /** RX frame count */
    A_UINT32 rx_frame_count;
    /** rx clear count */
    A_UINT32 rx_clear_count;
    /** cycle count */
    A_UINT32 cycle_count;
    /** Phy error count */
    A_UINT32 phy_err_count;
    /** Channel Tx Power */
    A_UINT32 chan_tx_pwr;
    /** WAL dbg stats */
    struct wlan_dbg_stats_v2 pdev_stats;
} wmi_pdev_stats_v2;

#if defined(AR900B)
#define wmi_pdev_stats wmi_pdev_stats_v2
#else
#define wmi_pdev_stats wmi_pdev_stats_v1
#endif

/**
 *  pdev extension statistics
 */
typedef struct {
    A_UINT32 tlv_header;
    /* pdev id */
    A_UINT32 pdev_id;
    /** my_rx_count
     * What portion of time, as measured by the MAC HW clock was occupied
     * by receiving PPDUs addressed to one of the vdevs within this pdev.
     */
    A_UINT32 my_rx_count;
    /** rx_matched_11ax_msdu_cnt
     * number of Rx 11ax MSDUs with matching BSS color counter
     * updated at EOP (end of packet)
     */
    A_UINT32 rx_matched_11ax_msdu_cnt;
    /** rx_other_11ax_msdu_cnt
     * number of Rx 11ax MSDUs with other BSS color counter updated at EOP
     * (end of packet)
     */
    A_UINT32 rx_other_11ax_msdu_cnt;
} wmi_pdev_extd_stats;

/**
 *  pdev telemetry statistics
 */
typedef struct{
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_telemetry_stats */
    A_UINT32 pdev_id;
    /*
     * Average channel latency per AC, units in micro seconds.
     * avg_chan_lat_per_ac[0] : AC_VO
     * avg_chan_lat_per_ac[1] : AC_VI
     * avg_chan_lat_per_ac[2] : AC_BE
     * avg_chan_lat_per_ac[3] : AC_BK
     */
    A_UINT32 avg_chan_lat_per_ac[WMI_AC_MAX];
    /*
     * Percentage of air time available for each AC, units in percentage.
     * BIT[0-7]   : AC_BE
     * BIT[8-15]  : AC_BK
     * BIT[16-23] : AC_VI
     * BIT[24-31] : AC_VO
     * Please refer to WMI_ESP_ESTIMATE_GET_* and WMI_ESP_ESTIMATE_SET_* macros
     * to retrieve values for each access category in estimated_air_time_per_ac.
     */
    A_UINT32 estimated_air_time_per_ac;
} wmi_pdev_telemetry_stats;

/**
 *  VDEV statistics
 *  @todo
 *  add all VDEV stats here
 */

typedef struct {
    A_INT32 bcn_snr;
    A_INT32 dat_snr;
} wmi_snr_info;

typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    wmi_snr_info vdev_snr;
    A_UINT32 tx_frm_cnt[WLAN_MAX_AC]; /* Total number of packets(per AC) that were successfully transmitted(with and without retries, including multi-cast, broadcast) */
    A_UINT32 rx_frm_cnt; /* Total number of packets that were successfully received (after appropriate filter rules including multi-cast, broadcast) */
    A_UINT32 multiple_retry_cnt[WLAN_MAX_AC]; /* The number of MSDU packets and MMPDU frames per AC
     that the 802.11 station successfully transmitted after more than one retransmission attempt */
    A_UINT32 fail_cnt[WLAN_MAX_AC]; /* Total number packets(per AC) failed to transmit */
    A_UINT32 rts_fail_cnt; /* Total number of RTS/CTS sequence failures for transmission of a packet */
    A_UINT32 rts_succ_cnt; /* Total number of RTS/CTS sequence success for transmission of a packet */
    A_UINT32 rx_err_cnt; /* The receive error count. HAL will provide the RxP FCS error global */
    A_UINT32 rx_discard_cnt; /* The sum of the receive error count and dropped-receive-buffer error count. (FCS error) */
    A_UINT32 ack_fail_cnt; /* Total number packets failed transmit because of no ACK from the remote entity */
    A_UINT32 tx_rate_history[MAX_TX_RATE_VALUES];/*History of last ten transmit rate, in units of 500 kbit/sec */
    A_UINT32 bcn_rssi_history[MAX_RSSI_VALUES];/*History of last ten Beacon RSSI of the connected Bss */
} wmi_vdev_stats;

/*
 * vdev ext stats with additional bcn stats
 * (Due to backward compatibility requirements, these new stats fields cannot be
 * added inside wmi_vdev_stats.)
 */
typedef struct {
    A_UINT32 vdev_id;
    A_UINT32 tx_bcn_succ_cnt; /* Total number of beacon frame transmitted successfully */
    A_UINT32 tx_bcn_outage_cnt; /* Total number of failed beacons */
} wmi_bcn_stats;

#define WMI_VDEV_STATS_FLAGS_LINK_ACTIVE_FLAG_IS_VALID_BIT 0
#define WMI_VDEV_STATS_FLAGS_LINK_ACTIVE_FLAG_IS_VALID_MASK \
    (1 << WMI_VDEV_STATS_FLAGS_LINK_ACTIVE_FLAG_IS_VALID_BIT)

#define WMI_VDEV_STATS_FLAGS_IS_LINK_ACTIVE_BIT 1
#define WMI_VDEV_STATS_FLAGS_IS_LINK_ACTIVE_MASK \
    (1 << WMI_VDEV_STATS_FLAGS_IS_LINK_ACTIVE_BIT)

/**
 *  vdev extension statistics
 */
typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ctrl_vdev_extd_stats */
    A_UINT32 tlv_header;
    /* vdev id */
    A_UINT32 vdev_id;
    /* Total number of Fils Discovery frames transmitted successfully */
    A_UINT32 fd_succ_cnt;
    /* Total number of Fils Discovery frames failed */
    A_UINT32 fd_fail_cnt;
    /* Total number of unsolicited probe response frames transmitted successfully */
    A_UINT32 unsolicited_prb_succ_cnt;
    /* Total number of unsolicited probe response frames failed */
    A_UINT32 unsolicited_prb_fail_cnt;
    /* vdev info flags:
     * bit 0: WMI_VDEV_STATS_FLAGS_LINK_ACTIVE_FLAG_IS_VALID,
     *     0: the "is link active" flag is not valid
     *     1: the "is link active" flag is valid
     * bit 1: WMI_VDEV_STATS_FLAGS_IS_LINK_ACTIVE,
     *     1:link_active; 0:link_inactive
     * Refer to WMI_VDEV_STATS_FLAGS_ defs.
     */
    A_UINT32 flags;

    /** opaque_debug_wal_vdev_flags:
     * This will contain the value from wal_vdev wal vdev flags for vdev state
     */
    A_UINT32 opaque_debug_wal_vdev_flags;
    /** control flags for this vdev */
    A_UINT32 opaque_debug_vdev_flags;
    /**  vdevid of transmitted AP (mbssid case) */
    A_UINT32 opaque_debug_vdevid_trans;
    /** opaque_debug_profile_idx:
     * the profile index of the connected non-trans ap (mbssid case).
     * 0 means invalid.
     */
    A_UINT32 opaque_debug_profile_idx;
    /** opaque_debug_profile_num:
     * the total profile numbers of non-trans aps (mbssid case).
     * 0 means legacy AP.
     */
    A_UINT32 opaque_debug_profile_num;
    /* Contains the value of multi_vdev_restart status */
    A_UINT32 opaque_debug_multi_vdev_restart;
    /* Contains the value of created mac_id from wal_vdev */
    A_UINT32 opaque_debug_created_mac_id;
    /* Contains the value of consecutive count of the leaky AP */
    A_UINT32 opaque_debug_consec_detect_leaky_ap_cnt;
    /* Contains the value of Vdev manager debug flags */
    A_UINT32 opaque_debug_vdev_mgr_dbg_flags;
    /* Contains the value of max vdev pause delay in microseconds */
    A_UINT32 opaque_debug_max_pause_delay_us;
    /* opaque_debug_sta_offset:
     * Contains the value of the offset of vdev TSF with BI (vdev_tsf%BI)
     * for STA vdev.
     */
    A_UINT32 opaque_debug_sta_offset;
    /* Contains the value of vdev pn sequence receive filter */
    A_UINT32 opaque_debug_vdev_pn_rx_filter;
    /* Contains the value of config params */
    A_UINT32 opaque_debug_traffic_config;
    /* opaque_debug_he_bss_rts_thld_tu:
     * Contains Period of time in units for a non-AP STA to reserve the medium.
     */
    A_UINT32 opaque_debug_he_bss_rts_thld_tu;
    /* opaque_debug_rts_threshold:
     * Contains the value of Request to Send (RTS) Threshold of the packet size.
     */
    A_UINT32 opaque_debug_rts_threshold; /* dot11RTSThreshold */
    /* Contains the value of Tx failure count threshold */
    A_UINT32 opaque_debug_tx_fail_cnt_thres;
    /* Contains the value of ratio = HI_WORD/LO_WORD */
    A_UINT32 opaque_debug_mu_edca_sifs_ratio;
    /* opaque_debug_kickout_th:
     * Contains the value of kickout threshold that denotes units of
     * lost block acks of consecutive tx failure threshold.
     */
    A_UINT32 opaque_debug_kickout_th;
    /* opaque_debug_rate_dd_bmap:
     * Contains the value of per vap config related to VAP aggregation
     * of ratectrl drop-down limits.
     */
    A_UINT32 opaque_debug_rate_dd_bmap;
    /* Contains the value of Maximum Transmission Unit frame size */
    A_UINT32 opaque_debug_mtu_size;
    /* Contains the value of vdev event bitmap from wal_vdev */
    A_UINT32 opaque_debug_event_bitmap;
    /* Contains the value of peer event bitmap from wal_vdev */
    A_UINT32 opaque_debug_peer_event_bitmap;
    /* Contains the value of Sched config of vdev allowed time during ATF */
    A_UINT32 opaque_debug_atf_vdev_allowed_time;
    /* opaque_debug_atf_vdev_used_unallocated_time:
     * Contains the value of Sched config of vdev used unallocated time
     * during ATF.
     */
    A_UINT32 opaque_debug_atf_vdev_used_unallocated_time;
    /* Contains the value of Sched config of vdev unused time during ATF */
    A_UINT32 opaque_debug_atf_vdev_unused_time;
    /* Contains the value of Carrier frequency offset last programmed time */
    A_UINT32 opaque_debug_last_prog_time;
    /* Contains the value of Carrier frequency offset last receive time */
    A_UINT32 opaque_debug_last_recv_time;
    /* Contains the value of Packet count of received frames on the channel */
    A_UINT32 opaque_debug_rx_pkt_on_channel;
    /* Contains the value of Target beacon transmission time offset value */
    A_UINT32 opaque_debug_tbtt_offset;
    /* Contains the value of tid pause bitmap of the peer from wal_vdev */
    A_UINT32 opaque_debug_peer_all_tid_pause_bitmap;
    /* Contains the value of tid block bitmap of the peer from wal_vdev */
    A_UINT32 opaque_debug_peer_all_tid_block_bitmap;
    /* Contains the value of tdls peer kickout threshold */
    A_UINT32 opaque_debug_tdls_peer_kickout_th;
    /* opaque_debug_num_of_remote_peers_connected:
     * Contains the value of num_of_remote_peers_connected;
     * Below field is valid only for AP vap.
     */
    A_UINT32 opaque_debug_num_of_remote_peers_connected;
    /* Contains the value of num of Multi group key support */
    A_UINT32 opaque_debug_num_group_key_enabled;
    /* Contains the value of delete all peer command flags */
    A_UINT32 opaque_debug_delete_all_peer_flags;
    /* Contains the value of Keepalive ARP sender address time */
    A_UINT32 opaque_debug_keepalive_arp_sender_ipv4;
    /* Contains the value of Keepalive ARP Target address time */
    A_UINT32 opaque_debug_keepalive_arp_target_ipv4;
    /* Contains the value of Keepalive interval duration time */
    A_UINT32 opaque_debug_keepalive_interval;
    /* Contains the value of Keepalive start timer timestamp */
    A_UINT32 opaque_debug_keepalive_timer_start_timestamp;
    /* Contains the value of max idle interval and status of STA */
    A_UINT32 opaque_debug_sta_maxidle_interval;
    A_UINT32 opaque_debug_sta_maxidle_method;
    /* Contains the value of Timing synchronization function (TSF) time diff */
    A_UINT32 opaque_debug_tsf_curr_time_diff;
    /* opaque_debug_sleep_duration_us:
     * Contains the value of Time in microsends to detect sleep duration
     * of the client.
     */
    A_UINT32 opaque_debug_sleep_duration_us;
    /* Contains the value of pause start time and to calculate pause delay */
    A_UINT32 opaque_debug_pause_start_time_us;
    A_UINT32 opaque_debug_pause_delay_us;
    /* Contains the value of number of supported group key */
    A_UINT32 opaque_debug_num_supported_group_key;
    /* opaque_debug_avg_data_null_tx_delay:
     * Contains the value of Average time taken to calculate data frame
     * tx delay.
     */
    A_UINT32 opaque_debug_avg_data_null_tx_delay;
    /* opaque_debug_avg_rx_leak_window:
     * Contains the value of Average time taken to calculate data frame
     * in receive window.
     */
    A_UINT32 opaque_debug_avg_rx_leak_window;
    /* Contains the value of count for number of received deauth frames */
    A_UINT32 opaque_debug_num_recv_deauth;
    /* Contains the value of Beacon interval in microseconds */
    A_UINT32 opaque_debug_bcn_intval_us;
    /* opaque_debug_fils_period
     * Contains the value of us, period configured through
     * WMI_ENABLE_FILS_CMDID.
     */
    A_UINT32 opaque_debug_fils_period;
    /* Contains the value of previous Timing synchronization function (TSF) */
    A_UINT32 opaque_debug_prev_tsf;
    /* Contains the value of time taken during client sleep */
    A_UINT32 opaque_debug_sleep_entry_time;
    /* Contains the value of Total sleep duration from wal_vdev */
    A_UINT32 opaque_debug_tot_sleep_dur;
    /* Contains the value of Vdev pause bitmap from wal_vdev */
    A_UINT32 opaque_debug_pause_bitmap;
    /* opaque_debug_last_send_to_host_deauth_tsf:
     * Contains the value of Last TSF time last_send_to_host_deauth_tsf
     * from wlan_vdev.
     */
    A_UINT32 opaque_debug_last_send_to_host_deauth_tsf;
    /* Contains the value of debug_short_ssid from wlan_vdev */
    A_UINT32 opaque_debug_short_ssid;
    /* Bitfield macro's expansion variables */
    /* opaque_debug_vdev_amsdu_bitfield:
     * bit  7:0  - Contains the value of dis_dyn_bw_rts from wlan_vdev,
     *     15:8  - max_amsdu,
     *     23:16 - def_amsdu,
     *     31:24 - he_bss_color
     */
    A_UINT32 opaque_debug_vdev_amsdu_bitfield;
    /* opaque_debug_vdev_ac_failure_configs:
     * bit  7:0  - Contains the value of dhe_def_pe_duratio from wal_vdev,
     *     15:8  - minimum_allowed_mcs,
     *     23:16 - max_11ac_to_leg_rts_fallback_th,
     *     31:24 - max_11ac_rts_consec_failure_th
     */
    A_UINT32 opaque_debug_vdev_ac_failure_configs;
    /* opaque_debug_vdev_pkt_type_info:
     * bit  7:0  - Contains the value of input_pkt_type from wal_vdev,
     *     15:8  - recv_pkt_type,
     *     23:16 - disable_intra_fwd,
     *     31:24 - ps_awake
     */
    A_UINT32 opaque_debug_vdev_pkt_type_info;
    /* opaque_debug_vdev_ba_param_bitfield:
     * bit  7:0  - Contains the value of snr_cal_count from wal_vdev,
     *     15:8  - amsdu_auto_enable,
     *     23:16 - param_ba_timeout,
     *     31:24 - param_ba_buffer_size
     */
    A_UINT32 opaque_debug_vdev_ba_param_bitfield;
    /* opaque_debug_vdev_aggr_bitfield:
     * bit  7:0  - Contains the value of param_amsdu_support from wal_vdev,
     *     15:8  - param_ba_retry_max,
     *     23:16 - tx_aggr_size,
     *     31:24 - rx_aggr_size
     */
    A_UINT32 opaque_debug_vdev_aggr_bitfield;
    /* opaque_debug_vdev_event_delivery:
     * bit  7:0  - Contains the value of tqm_bypass_enabled from wal_vdev,
     *     15:8  - wmmac_timer_vote_cnt,
     *     23:16 - peer_event_delivery_in_progress,
     *     31:24 - vdev_event_delivery_in_progress
     */
    A_UINT32 opaque_debug_vdev_event_delivery;
     /* opaque_debug_vdev_cap_slot_bitfield:
     * bit  7:0  - Contains the value of bcn_max_slot from wal_vdev,
     *     15:8  - bcn_curr_slot,
     *     23:16 - mgmt_tx_power,
     *     31:24 - mbssid_capable_association
     */
    A_UINT32 opaque_debug_vdev_cap_slot_bitfield;
    /* opaque_debug_vdev_bcn_configs:
     * bit  7:0  - Contains the value of mbssid_txbssid_association from
     *             wal_vdev,
     *     15:8  - consec_beacon_skip,
     *     23:16 - consec_beacon_skip_cnt,
     *     31:24 - max_consec_beacon_skip
     */
    A_UINT32 opaque_debug_vdev_bcn_configs;
    /* Contains the value of opaque_debug_vdev_cmd_info */
    A_UINT32 opaque_debug_vdev_cmd_info;
    /* opaque_debug_vdev_mac_configs:
     * bit  7:0  - Contains the value of pause_cnt from wlan_vdev,
     *     15:8  - e_mac_id,
     *     23:16 - is_transmit_bssid,
     *     31:24 - rts_rc_flag
     */
    A_UINT32 opaque_debug_vdev_mac_configs;
    /* opaque_debug_vdev_mode_configs:
     * bit  7:0  - Contains the value of ic_opmode from wlan_vdev,
     *     15:8  - ic_subopmode,
     *     23:16 - ic_curmode,
     *     31:24 - vdev_up_cmd_cnt
     */
    A_UINT32 opaque_debug_vdev_mode_configs;
    /* opaque_debug_vdev_keepalive_bitfields:
     * bit  7:0  - keepalive_method
     *     15:8  - keepalive_prohibit_data_mgmt
     *     23:16 - resp_type
     *     31:24 - ap_detect_out_of_sync_sleeping_sta_time_secs
     */
    A_UINT32 opaque_debug_vdev_keepalive_bitfields;
    /* opaque_debug_vdev_bcn_drift_info:
     * bit  7:0  - bcn_drift_cnt
     *     15:8  - bcn_drift_calibration
     *     23:16 - rts_cts_default
     *     31:24 - vdev_down_cmd_cnt
     */
    A_UINT32 opaque_debug_vdev_bcn_drift_info;
    /* opaque_debug_vdev_arp_configs:
     * bit  7:0  - Contains the value of tbtt_link_type from wlan_vdev,
     *     15:8  - is_arp_in_air,
     *     23:16 - is_ns_in_air,
     *     31:24 - num_of_keepalive_attempts
     */
    A_UINT32 opaque_debug_vdev_arp_configs;
    /* opaque_debug_vdev_streams_configs:
     * bit  7:0  - n_beacons_since_last_rssi_report
     *     15:8  - num_ofld_peer_alloced
     *     23:16 - preferred_tx_streams
     *     31:24 - preferred_rx_streams
     */
    A_UINT32 opaque_debug_vdev_streams_configs;
    /* opaque_debug_vdev_chains_configs:
     * bit  7:0  - Contains the value of preferred_tx_streams_160 from
     *             wlan_vdev,
     *     15:8  - preferred_rx_streams_160,
     *     23:16 - tx_chains_num_11b,
     *     31:24 - tx_chains_num_11ag
     */
    A_UINT32 opaque_debug_vdev_chains_configs;
    /* opaque_debug_vdev_power_cap_configs:
     * bit  7:0  - Contains the value of supp_op_cls_ie_len from wlan_vdev,
     *     15:8  - rm_en_cap_ie_len,
     *     23:16 - power_cap_ie_len,
     *     31:24 - supp_channel_ie_len
     */
    A_UINT32 opaque_debug_vdev_power_cap_configs;
    /* opaque_debug_vdev_wmm_mbo_configs:
     * bit  7:0  - Contains the value of wmm_tspec_ie_len from wlan_vdev,
     *     15:8  - ccx_version_ie_len,
     *     23:16 - extn_dh_ie_len,
     *     31:24 - mbo_ie_len
     */
    A_UINT32 opaque_debug_vdev_wmm_mbo_configs;
    /* opaque_debug_vdev_remote_configs:
     * bit  7:0  - Contains the value of rsnxe_ie_len from wlan_vdev,
     *     15:8  - remote_peer_cnt
     *     23:16 - p2p_cli_pause_type
     *     31:24 - mu_edca_update_count
     */
    A_UINT32 opaque_debug_vdev_remote_configs;
    /* opaque_debug_vdev_stats_id_configs:
     * bit  7:0  - vdev_stats_id
     *     15:8  - vdev_stats_id_valid
     *     23:16 - preferred_tx_streams_320
     *     31:24 - preferred_rx_streams_320
     */
    A_UINT32 opaque_debug_vdev_stats_id_configs;
    /* opaque_debug_vdev_assoc_peer_configs:
     * bit  7:0  - unused / reserved
     *     15:8  - group_cipher
     *     31:16 - assoc_id
     */
    A_UINT32 opaque_debug_vdev_assoc_peer_configs;
    /* opaque_debug_vdev_mhz_fils_configs:
     * bit 15:0  - Contains the value of bss_channel_mhz from wal_vdev,
     *     31:16 - config_fils_period
     */
    A_UINT32 opaque_debug_vdev_mhz_fils_configs;
    /* opaque_debug_vdev_fils_period:
     * bit 15:0  - Contains the value of calc_fils_period from wal_vdev,
     *     31:16 - ic_txseqs_cmn
     */
    A_UINT32 opaque_debug_vdev_fils_period;
    /* opaque_debug_vdev_inactive_time:
     * bit 15:0  - Contains the value of
     *             ap_keepalive_min_idle_inactive_time_secs from wlan_vdev,
     *     31:16 - ap_keepalive_max_idle_inactive_time_secs
     */
    A_UINT32 opaque_debug_vdev_inactive_time;
    /* opaque_debug_vdev_chain_mask_configs:
     * bit 15:0  - Contains the value of
     *             ap_keepalive_max_unresponsive_time_secs from wlan_vdev,
     *     31:16 - chain_mask
     */
    A_UINT32 opaque_debug_vdev_chain_mask_configs;
    /* opaque_debug_vdev_ie_len_configs:
     * bit 15:0  - num_mcast_filters
     *     31:16 - ext_cap_ie_len
     */
    A_UINT32 opaque_debug_vdev_ie_len_configs;
    /* opaque_debug_vdev_fils_configs:
     * bit 15:0  - Contains the value of fils_channel_guard_time from wlan_vdev,
     *     31:16 - fd_tmpl_len
     */
    A_UINT32 opaque_debug_vdev_fils_configs;
    /* opaque_debug_vdev_chan_configs:
     * bit 15:0  - Contains the value of common_rsn_caps from wlan_vdev,
     *     31:16 - off_ch_active_dwell_time
     */
    A_UINT32 opaque_debug_vdev_chan_configs;
    /* opaque_debug_vdev_dwell_configs:
     * bit 15:0  - Contains the value of off_ch_passive_dwell_time from
     *             wlan_vdev,
     *     31:16 - current_pause_request_id
     */
    A_UINT32 opaque_debug_vdev_dwell_configs;
    /* opaque_debug_vdev_wmi_configs:
     * bit  0 - Contains the value of hide_ssid_enable from wlan_vdev,
     *      1 - b_none_protocol_paused
     *      2 - dpd_cal_state
     *      4 - req_bcn_q_unpause
     *      5 - bt_coex_enable_cts2s
     *      6 - dpd_delay_n_beacon
     *      8 - b_need_check_first_beacon
     *      9 - ap_peer_keepalive_max_idle_time_reached
     *     10 - leakyap_cts2s_enable
     *     11 - stasapscc_in_mcc
     *     12 - stasapscc_in_mcc_cts2s_enable
     *     13 - is_vdev_stopping
     *     14 - is_wmi_vdev_down
     *     15 - is_vdev_down_pending
     *     16 - vdev_delete_in_progress
     *     17 - cac_enabled
     *     18 - is_quaterrate
     *     19 - is_halfrate
     *     20 - stop_resp_event_blocked
     *     21 - use_enhanced_mcast_filter
     *     22 - is_start_pending_on_asm
     *     23 - no_null_to_ap_for_roaming
     *     24 - is_loopback_cal_pending
     *     25 - vdev_delete_acked
     *     26 - bc_proberesp_enable
     *     27 - is_wmm_param
     *     28 - is_connect_in_progress
     *     29 - is_mu_edca_param
     *     30 - send_del_resp_tohost
     *     31 - is_restart_different_ch
     */
    A_UINT32 opaque_debug_vdev_wmi_configs;
    /* opaque_debug_vdev_hu_mu_configs:
     * bit     0 - Contains the value of proto_ps_status from wlan_vdev,
     *         1 - smps_intolerant
     *         2 - is_offload_registered_for_connection
     *         3 - is_bss_beacon_offload_registered
     *         4 - is_prob_resp_offload_registered
     *         5 - is_ibss_beacon_offload_registered
     *         6 - is_keepalive_attempts_exhausted
     *         7 - is_bcn_tx_ie_changed_log
     *         8 - he_su_bfee
     *         9 - he_su_bfer
     *        10 - he_mu_bfee
     *        11 - he_mu_bfer
     *        12 - he_dl_ofdma
     *        13 - he_ul_ofdma
     *        14 - he_ul_mumimo
     *        15 - ul_mu_resp
     *     23:16 - alt_rssi_non_srg
     *     31:24 - alt_rssi_srg
     */
    A_UINT32 opaque_debug_vdev_hu_mu_configs;
    /* opaque_debug_vdev_sm_chan_configs:
     * bit    0 - Contains the value of he_bss_color_en from wlan_vdev,
     *        1 - he_txbf_ofdma
     *        2 - non_srg_enable
     *        3 - srg_enable
     *        4 - srp_enable
     *        5 - sr_initialized
     *        6 - sr_rings_initialized
     *     10:7 - per_ac_obss_pd_enable
     *       11 - ifup
     *       12 - ifactive
     *       13 - ifpaused
     *       14 - ifoutofsync
     *       15 - is_free
     *       16 - is_nawds
     *       17 - hw_flag
     *       18 - ch_req_flag
     *       20 - restart_resp
     *       21 - first_beacon_recv_wait
     *       22 - erpenabled
     *       23 - start_responded
     *       24 - bcn_sync_crit_req_act
     *       25 - recal_notif_registered
     *       26 - bcn_tx_paused
     *       27 - he_bss_color_en_bypass
     *       28 - default_ba_mode
     *       29 - ba_256_bitmap_enable
     *       30 - ba_256_bitmap_tx_disable
     *       31 - is_multi_group_key_enabled
     */
    A_UINT32 opaque_debug_vdev_sm_chan_configs;
    /*
     * The following 4 opaque_debug variables are provided purely for
     * debugging by technicians who have outside knowledge of what kind of
     * values the target has placed into these fields.
     * The host must not interpret the values of these fields, since the
     * meaning of the values provided in these fields may change without
     * regard for backwards compatibility or interoperability.
     */
    A_UINT32 opaque_debug_field_1;
    A_UINT32 opaque_debug_field_2;
    A_UINT32 opaque_debug_field_3;
    A_UINT32 opaque_debug_field_4;
} wmi_vdev_extd_stats;


#define WMI_VDEV_STATS_DIS_DYN_BW_RTS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_DIS_DYN_BW_RTS_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_MAX_AMSDU_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_MAX_AMSDU_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_DEF_AMSDU_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_DEF_AMSDU_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_HW_BSS_COLOR_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_HW_BSS_COLOR_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_HE_DEF_PE_DURATION_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_HE_DEF_PE_DURATION_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_MINIMUM_ALLOWED_MCS_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_MINIMUM_ALLOWED_MCS_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_MAX_11AC_TO_LEG_RTS_FALLBACK_TH_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_MAX_11AC_TO_LEG_RTS_FALLBACK_TH_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_MAX_11AC_RTS_CONSEC_FAILURE_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_MAX_11AC_RTS_CONSEC_FAILURE_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_INPUT_PKT_TYPE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_INPUT_PKT_TYPE_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_RECV_PKT_TYPE_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_RECV_PKT_TYPE_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_DISABLE_INTRA_FWD_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_DISABLE_INTRA_FWD_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_PS_AWAKE_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_PS_AWAKE_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_SNR_CAL_COUNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_SNR_CAL_COUNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_AMSDU_AUTO_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_AMSDU_AUTO_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_PARAM_BA_TIMEOUT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_PARAM_BA_TIMEOUT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_PARAM_BA_BUFFER_SIZE_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_PARAM_BA_BUFFER_SIZE_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_PARAM_AMSDU_SUPPORT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_PARAM_AMSDU_SUPPORT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_PARAM_BA_RETRY_MAX_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_PARAM_BA_RETRY_MAX_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_TX_AGGR_SIZE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_TX_AGGR_SIZE_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_RX_AGGR_SIZE_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_RX_AGGR_SIZE_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_TQM_BYPASS_ENABLED_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_TQM_BYPASS_ENABLED_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_WMMAC_TIMER_VOTE_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_WMMAC_TIMER_VOTE_CNT_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_PEER_EVENT_DELIVERY_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_PEER_EVENT_DELIVERY_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_VDEV_EVENT_DELIVERY_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_VDEV_EVENT_DELIVERY_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_BCN_MAX_SLOT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_BCN_MAX_SLOT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_BCN_CURR_SLOT_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_BCN_CURR_SLOT_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_MGMT_TX_POWER_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_MGMT_TX_POWER_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_MBSSID_CAPABLE_ASSOCIATION_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_MBSSID_CAPABLE_ASSOCIATION_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_MBSSID_TXBSSID_ASSOCIATION_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_MBSSID_TXBSSID_ASSOCIATION_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_CONSEC_BEACON_SKIP_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_CONSEC_BEACON_SKIP_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_CONSEC_BEACON_SKIP_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_CONSEC_BEACON_SKIP_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_MAX_CONSEC_BEACON_SKIP_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_MAX_CONSEC_BEACON_SKIP_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_BCN_DRIFT_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_BCN_DRIFT_CNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_BCN_DRIFT_CALIBRATION_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_BCN_DRIFT_CALIBRATION_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_VDEV_DOWN_CMD_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_VDEV_DOWN_CMD_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_RTS_CTS_DEFAULT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_RTS_CTS_DEFAULT_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_PAUSE_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_PAUSE_CNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_E_MAC_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_E_MAC_ID_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_IS_TRANSMIT_BSSID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_IS_TRANSMIT_BSSID_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_RTS_RC_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_RTS_RC_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_IC_OPMODE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_IC_OPMODE_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_IC_SUBOPMODE_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_IC_SUBOPMODE_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_IC_CURMODE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_IC_CURMODE_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_VDEV_UP_CMD_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_VDEV_UP_CMD_CNT_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_KEEPALIVE_METHOD_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_KEEPALIVE_METHOD_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_KEEPALIVE_PROHIBIT_DATA_MGMT_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_KEEPALIVE_PROHIBIT_DATA_MGMT_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_RESP_TYPE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_RESP_TYPE_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_AP_DETECT_OUT_OF_SYNC_SLEEPING_STA_TIME_SECS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_AP_DETECT_OUT_OF_SYNC_SLEEPING_STA_TIME_SECS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_BCN_DRIFT_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_BCN_DRIFT_CNT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_BCN_DRIFT_CALIBRATION_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_BCN_DRIFT_CALIBRATION_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_VDEV_DOWN_CMD_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_VDEV_DOWN_CMD_CNT_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_RTS_CTS_DEFAULT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_RTS_CTS_DEFAULT_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_TBTT_LINK_TYPE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_TBTT_LINK_TYPE_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_IS_ARP_IN_AIR_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_IS_ARP_IN_AIR_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_IS_NS_IN_AIR_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_IS_NS_IN_AIR_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_NUM_OF_KEEPALIVE_ATTEMPTS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_NUM_OF_KEEPALIVE_ATTEMPTS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_N_BEACONS_SINCE_LAST_RSSI_REPORT_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_N_BEACONS_SINCE_LAST_RSSI_REPORT_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_NUM_OFLD_PEER_ALLOCED_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_NUM_OFLD_PEER_ALLOCED_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_PREFERRED_TX_STREAMS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_PREFERRED_TX_STREAMS_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_PREFERRED_RX_STREAMS_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_PREFERRED_RX_STREAMS_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_PREFERRED_TX_STREAMS_160_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_PREFERRED_TX_STREAMS_160_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_PREFERRED_RX_STREAMS_160_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_PREFERRED_RX_STREAMS_160_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_TX_CHAINS_NUM_11B_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_TX_CHAINS_NUM_11B_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_TX_CHAINS_NUM_11AG_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_TX_CHAINS_NUM_11AG_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_SUPP_OP_CLS_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_SUPP_OP_CLS_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_RM_EN_CAP_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_RM_EN_CAP_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_POWER_CAP_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_POWER_CAP_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_SUPP_CHANNEL_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_SUPP_CHANNEL_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_WMM_TSPEC_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_WMM_TSPEC_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_CCX_VERSION_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_CCX_VERSION_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_EXTN_DH_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_EXTN_DH_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_MBO_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_MBO_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_RSNXE_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_RSNXE_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_REMOTE_PEER_CNT_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_REMOTE_PEER_CNT_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_P2P_CLI_PAUSE_TYPE_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_P2P_CLI_PAUSE_TYPE_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_MU_EDCA_UPDATE_COUNT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_MU_EDCA_UPDATE_COUNT_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 8, val)
#define WMI_VDEV_STATS_ID_GET(flag) \
    WMI_GET_BITS(flag, 0, 8)
#define WMI_VDEV_STATS_ID_VALID_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_ID_VALID_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_PREFERRED_TX_STREAMS_320_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_PREFERRED_TX_STREAMS_320_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_PREFERRED_RX_STREAMS_320_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_PREFERRED_RX_STREAMS_320_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

/* bits 7:0 unused / reserved */
#define WMI_VDEV_STATS_GROUP_CIPHER_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 8, val)
#define WMI_VDEV_STATS_GROUP_CIPHER_GET(flag) \
    WMI_GET_BITS(flag, 8, 8)
#define WMI_VDEV_STATS_ASSOC_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_ASSOC_ID_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_BSS_CHANNEL_MHZ_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_BSS_CHANNEL_MHZ_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_CONFIG_FILS_PERIOD_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_CONFIG_FILS_PERIOD_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_CALC_FILS_PERIOD_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_CALC_FILS_PERIOD_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_IC_TXSEQS_CMN_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_IC_TXSEQS_CMN_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_AP_KEEPALIVE_MIN_IDLE_INACTIVE_TIME_SECS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_AP_KEEPALIVE_MIN_IDLE_INACTIVE_TIME_SECS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_AP_KEEPALIVE_MAX_IDLE_INACTIVE_TIME_SECS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_AP_KEEPALIVE_MAX_IDLE_INACTIVE_TIME_SECS_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_CHAIN_MASK_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_CHAIN_MASK_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_NUM_MCAST_FILTERS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_NUM_MCAST_FILTERS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_EXT_CAP_IE_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_EXT_CAP_IE_LEN_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_FILS_CHANNEL_GUARD_TIME_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_FILS_CHANNEL_GUARD_TIME_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_FD_TMPL_LEN_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_FD_TMPL_LEN_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_COMMON_RSN_CAPS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_COMMON_RSN_CAPS_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_OFF_CH_ACTIVE_DWELL_TIME_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_OFF_CH_ACTIVE_DWELL_TIME_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_OFF_CH_PASSIVE_DWELL_TIME_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 16, val)
#define WMI_VDEV_STATS_OFF_CH_PASSIVE_DWELL_TIME_GET(flag) \
    WMI_GET_BITS(flag, 0, 16)
#define WMI_VDEV_STATS_CURRENT_PAUSE_REQUEST_ID_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 16, val)
#define WMI_VDEV_STATS_CURRENT_PAUSE_REQUEST_ID_GET(flag) \
    WMI_GET_BITS(flag, 16, 16)

#define WMI_VDEV_STATS_HIDE_SSID_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_VDEV_STATS_HIDE_SSID_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_VDEV_STATS_B_NONE_PROTOCOL_PAUSED_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_VDEV_STATS_B_NONE_PROTOCOL_PAUSED_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_VDEV_STATS_DPD_CAL_STATE_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 2, val)
#define WMI_VDEV_STATS_DPD_CAL_STATE_GET(flag) \
    WMI_GET_BITS(flag, 2, 2)
#define WMI_VDEV_STATS_REQ_BCN_Q_UNPAUSE_SET(flag, val) \
    WMI_SET_BITS(flag, 4, 1, val)
#define WMI_VDEV_STATS_REQ_BCN_Q_UNPAUSE_GET(flag) \
    WMI_GET_BITS(flag, 4, 1)
#define WMI_VDEV_STATS_BT_COEX_ENABLE_CTS2S_SET(flag, val) \
    WMI_SET_BITS(flag, 5, 1, val)
#define WMI_VDEV_STATS_BT_COEX_ENABLE_CTS2S_GET(flag) \
    WMI_GET_BITS(flag, 5, 1)
#define WMI_VDEV_STATS_DPD_DELAY_N_BEACON_SET(flag, val) \
    WMI_SET_BITS(flag, 6, 2, val)
#define WMI_VDEV_STATS_DPD_DELAY_N_BEACON_GET(flag) \
    WMI_GET_BITS(flag, 6, 2)
#define WMI_VDEV_STATS_B_NEED_CHECK_FIRST_BEACON_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 1, val)
#define WMI_VDEV_STATS_B_NEED_CHECK_FIRST_BEACON_GET(flag) \
    WMI_GET_BITS(flag, 8, 1)
#define WMI_VDEV_STATS_AP_PEER_KEEPALIVE_MAX_IDLE_TIME_REACHED_SET(flag, val) \
    WMI_SET_BITS(flag, 9, 1, val)
#define WMI_VDEV_STATS_AP_PEER_KEEPALIVE_MAX_IDLE_TIME_REACHED_GET(flag) \
    WMI_GET_BITS(flag, 9, 1)
#define WMI_VDEV_STATS_LEAKYAP_CTS2S_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 10, 1, val)
#define WMI_VDEV_STATS_LEAKYAP_CTS2S_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 10, 1)
#define WMI_VDEV_STATS_STASAPSCC_IN_MCC_SET(flag, val) \
    WMI_SET_BITS(flag, 11, 1, val)
#define WMI_VDEV_STATS_STASAPSCC_IN_MCC_GET(flag) \
    WMI_GET_BITS(flag, 11, 1)
#define WMI_VDEV_STATS_STASAPSCC_IN_MCC_CTS2S_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 12, 1, val)
#define WMI_VDEV_STATS_STASAPSCC_IN_MCC_CTS2S_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 12, 1)
#define WMI_VDEV_STATS_IS_VDEV_STOPPING_SET(flag, val) \
    WMI_SET_BITS(flag, 13, 1, val)
#define WMI_VDEV_STATS_IS_VDEV_STOPPING_GET(flag) \
    WMI_GET_BITS(flag, 13, 1)
#define WMI_VDEV_STATS_IS_WMI_VDEV_DOWN_SET(flag, val) \
    WMI_SET_BITS(flag, 14, 1, val)
#define WMI_VDEV_STATS_IS_WMI_VDEV_DOWN_GET(flag) \
    WMI_GET_BITS(flag, 14, 1)
#define WMI_VDEV_STATS_IS_VDEV_DOWN_PENDING_SET(flag, val) \
    WMI_SET_BITS(flag, 15, 1, val)
#define WMI_VDEV_STATS_IS_VDEV_DOWN_PENDING_GET(flag) \
    WMI_GET_BITS(flag, 15, 1)
#define WMI_VDEV_STATS_VDEV_DELETE_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 1, val)
#define WMI_VDEV_STATS_VDEV_DELETE_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 16, 1)
#define WMI_VDEV_STATS_CAC_ENABLED_SET(flag, val) \
    WMI_SET_BITS(flag, 17, 1, val)
#define WMI_VDEV_STATS_CAC_ENABLED_GET(flag) \
    WMI_GET_BITS(flag, 17, 1)
#define WMI_VDEV_STATS_IS_QUATERRATE_SET(flag, val) \
    WMI_SET_BITS(flag, 18, 1, val)
#define WMI_VDEV_STATS_IS_QUATERRATE_GET(flag) \
    WMI_GET_BITS(flag, 18, 1)
#define WMI_VDEV_STATS_IS_HALFRATE_SET(flag, val) \
    WMI_SET_BITS(flag, 19, 1, val)
#define WMI_VDEV_STATS_IS_HALFRATE_GET(flag) \
    WMI_GET_BITS(flag, 19, 1)
#define WMI_VDEV_STATS_STOP_RESP_EVENT_BLOCKED_SET(flag, val) \
    WMI_SET_BITS(flag, 20, 1, val)
#define WMI_VDEV_STATS_STOP_RESP_EVENT_BLOCKED_GET(flag) \
    WMI_GET_BITS(flag, 20, 1)
#define WMI_VDEV_STATS_USE_ENHANCED_MCAST_FILTER_SET(flag, val) \
    WMI_SET_BITS(flag, 21, 1, val)
#define WMI_VDEV_STATS_USE_ENHANCED_MCAST_FILTER_GET(flag) \
    WMI_GET_BITS(flag, 21, 1)
#define WMI_VDEV_STATS_IS_START_PENDING_ON_ASM_SET(flag, val) \
    WMI_SET_BITS(flag, 22, 1, val)
#define WMI_VDEV_STATS_IS_START_PENDING_ON_ASM_GET(flag) \
    WMI_GET_BITS(flag, 22, 1)
#define WMI_VDEV_STATS_NO_NULL_TO_AP_FOR_ROAMING_SET(flag, val) \
    WMI_SET_BITS(flag, 23, 1, val)
#define WMI_VDEV_STATS_NO_NULL_TO_AP_FOR_ROAMING_GET(flag) \
    WMI_GET_BITS(flag, 23, 1)
#define WMI_VDEV_STATS_IS_LOOPBACK_CAL_PENDING_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 1, val)
#define WMI_VDEV_STATS_IS_LOOPBACK_CAL_PENDING_GET(flag) \
    WMI_GET_BITS(flag, 24, 1)
#define WMI_VDEV_STATS_VDEV_DELETE_ACKED_SET(flag, val) \
    WMI_SET_BITS(flag, 25, 1, val)
#define WMI_VDEV_STATS_VDEV_DELETE_ACKED_GET(flag) \
    WMI_GET_BITS(flag, 25, 1)
#define WMI_VDEV_STATS_BC_PROBERESP_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 26, 1, val)
#define WMI_VDEV_STATS_BC_PROBERESP_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 26, 1)
#define WMI_VDEV_STATS_IS_WMM_PARAM_SET_SET(flag, val) \
    WMI_SET_BITS(flag, 27, 1, val)
#define WMI_VDEV_STATS_IS_WMM_PARAM_SET_GET(flag) \
    WMI_GET_BITS(flag, 27, 1)
#define WMI_VDEV_STATS_IS_CONNECT_IN_PROGRESS_SET(flag, val) \
    WMI_SET_BITS(flag, 28, 1, val)
#define WMI_VDEV_STATS_IS_CONNECT_IN_PROGRESS_GET(flag) \
    WMI_GET_BITS(flag, 28, 1)
#define WMI_VDEV_STATS_IS_MU_EDCA_PARAM_SET_SET(flag, val) \
    WMI_SET_BITS(flag, 29, 1, val)
#define WMI_VDEV_STATS_IS_MU_EDCA_PARAM_SET_GET(flag) \
    WMI_GET_BITS(flag, 29, 1)
#define WMI_VDEV_STATS_SEND_DEL_RESP_TOHOST_SET(flag, val) \
    WMI_SET_BITS(flag, 30, 1, val)
#define WMI_VDEV_STATS_SEND_DEL_RESP_TOHOST_GET(flag) \
    WMI_GET_BITS(flag, 30, 1)
#define WMI_VDEV_STATS_IS_RESTART_DIFFERENT_CH_SET(flag, val) \
    WMI_SET_BITS(flag, 31, 1, val)
#define WMI_VDEV_STATS_IS_RESTART_DIFFERENT_CH_GET(flag) \
    WMI_GET_BITS(flag, 31, 1)

#define WMI_VDEV_STATS_PROTO_PS_STATUS_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_VDEV_STATS_PROTO_PS_STATUS_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_VDEV_STATS_SMPS_INTOLERANT_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_VDEV_STATS_SMPS_INTOLERANT_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_VDEV_STATS_IS_OFFLOAD_REGISTERED_FOR_CONNECTION_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 1, val)
#define WMI_VDEV_STATS_IS_OFFLOAD_REGISTERED_FOR_CONNECTION_GET(flag) \
    WMI_GET_BITS(flag, 2, 1)
#define WMI_VDEV_STATS_IS_BSS_BEACON_OFFLOAD_REGISTERED_SET(flag, val) \
    WMI_SET_BITS(flag, 3, 1, val)
#define WMI_VDEV_STATS_IS_BSS_BEACON_OFFLOAD_REGISTERED_GET(flag) \
    WMI_GET_BITS(flag, 3, 1)
#define WMI_VDEV_STATS_IS_PROB_RESP_OFFLOAD_REGISTERED_SET(flag, val) \
    WMI_SET_BITS(flag, 4, 1, val)
#define WMI_VDEV_STATS_IS_PROB_RESP_OFFLOAD_REGISTERED_GET(flag) \
    WMI_GET_BITS(flag, 4, 1)
#define WMI_VDEV_STATS_IS_IBSS_BEACON_OFFLOAD_REGISTERED_SET(flag, val) \
    WMI_SET_BITS(flag, 5, 1, val)
#define WMI_VDEV_STATS_IS_IBSS_BEACON_OFFLOAD_REGISTERED_GET(flag) \
    WMI_GET_BITS(flag, 5, 1)
#define WMI_VDEV_STATS_IS_KEEPALIVE_ATTEMPTS_EXHAUSTED_SET(flag, val) \
    WMI_SET_BITS(flag, 6, 1, val)
#define WMI_VDEV_STATS_IS_KEEPALIVE_ATTEMPTS_EXHAUSTED_GET(flag) \
    WMI_GET_BITS(flag, 6, 1)
#define WMI_VDEV_STATS_IS_BCN_TX_IE_CHANGED_LOG_SET(flag, val) \
    WMI_SET_BITS(flag, 7, 1, val)
#define WMI_VDEV_STATS_IS_BCN_TX_IE_CHANGED_LOG_GET(flag) \
    WMI_GET_BITS(flag, 7, 1)
#define WMI_VDEV_STATS_HE_SU_BFEE_SET(flag, val) \
    WMI_SET_BITS(flag, 8, 1, val)
#define WMI_VDEV_STATS_HE_SU_BFEE_GET(flag) \
    WMI_GET_BITS(flag, 8, 1)
#define WMI_VDEV_STATS_HE_SU_BFER_SET(flag, val) \
    WMI_SET_BITS(flag, 9, 1, val)
#define WMI_VDEV_STATS_HE_SU_BFER_GET(flag) \
    WMI_GET_BITS(flag, 9, 1)
#define WMI_VDEV_STATS_HE_MU_BFEE_SET(flag, val) \
    WMI_SET_BITS(flag, 10, 1, val)
#define WMI_VDEV_STATS_HE_MU_BFEE_GET(flag) \
    WMI_GET_BITS(flag, 10, 1)
#define WMI_VDEV_STATS_HE_MU_BFER_SET(flag, val) \
    WMI_SET_BITS(flag, 11, 1, val)
#define WMI_VDEV_STATS_HE_MU_BFER_GET(flag) \
    WMI_GET_BITS(flag, 11, 1)
#define WMI_VDEV_STATS_HE_DL_OFDMA_SET(flag, val) \
    WMI_SET_BITS(flag, 12, 1, val)
#define WMI_VDEV_STATS_HE_DL_OFDMA_GET(flag) \
    WMI_GET_BITS(flag, 12, 1)
#define WMI_VDEV_STATS_HE_UL_OFDMA_SET(flag, val) \
    WMI_SET_BITS(flag, 13, 1, val)
#define WMI_VDEV_STATS_HE_UL_OFDMA_GET(flag) \
    WMI_GET_BITS(flag, 13, 1)
#define WMI_VDEV_STATS_HE_UL_MUMIMO_SET(flag, val) \
    WMI_SET_BITS(flag, 14, 1, val)
#define WMI_VDEV_STATS_HE_UL_MUMIMO_GET(flag) \
    WMI_GET_BITS(flag, 14, 1)
#define WMI_VDEV_STATS_UL_MU_RESP_SET(flag, val) \
    WMI_SET_BITS(flag, 15, 1, val)
#define WMI_VDEV_STATS_UL_MU_RESP_GET(flag) \
    WMI_GET_BITS(flag, 15, 1)
#define WMI_VDEV_STATS_ALT_RSSI_NON_SRG_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 8, val)
#define WMI_VDEV_STATS_ALT_RSSI_NON_SRG_GET(flag) \
    WMI_GET_BITS(flag, 16, 8)
#define WMI_VDEV_STATS_ALT_RSSI_SRG_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 8, val)
#define WMI_VDEV_STATS_ALT_RSSI_SRG_GET(flag) \
    WMI_GET_BITS(flag, 24, 8)

#define WMI_VDEV_STATS_HE_BSS_COLOR_EN_SET(flag, val) \
    WMI_SET_BITS(flag, 0, 1, val)
#define WMI_VDEV_STATS_HE_BSS_COLOR_EN_GET(flag) \
    WMI_GET_BITS(flag, 0, 1)
#define WMI_VDEV_STATS_HE_TXBF_OFDMA_SET(flag, val) \
    WMI_SET_BITS(flag, 1, 1, val)
#define WMI_VDEV_STATS_HE_TXBF_OFDMA_GET(flag) \
    WMI_GET_BITS(flag, 1, 1)
#define WMI_VDEV_STATS_NON_SRG_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 2, 1, val)
#define WMI_VDEV_STATS_NON_SRG_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 2, 1)
#define WMI_VDEV_STATS_SRG_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 3, 1, val)
#define WMI_VDEV_STATS_SRG_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 3, 1)
#define WMI_VDEV_STATS_SRP_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 4, 1, val)
#define WMI_VDEV_STATS_SRP_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 4, 1)
#define WMI_VDEV_STATS_SR_INITIALIZED_SET(flag, val) \
    WMI_SET_BITS(flag, 5, 1, val)
#define WMI_VDEV_STATS_SR_INITIALIZED_GET(flag) \
    WMI_GET_BITS(flag, 5, 1)
#define WMI_VDEV_STATS_SR_RINGS_INITIALIZED_SET(flag, val) \
    WMI_SET_BITS(flag, 6, 1, val)
#define WMI_VDEV_STATS_SR_RINGS_INITIALIZED_GET(flag) \
    WMI_GET_BITS(flag, 6, 1)
#define WMI_VDEV_STATS_PER_AC_OBSS_PD_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 7, 4, val)
#define WMI_VDEV_STATS_PER_AC_OBSS_PD_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 7, 4)
#define WMI_VDEV_STATS_IFUP_SET(flag, val) \
    WMI_SET_BITS(flag, 11, 1, val)
#define WMI_VDEV_STATS_IFUP_GET(flag) \
    WMI_GET_BITS(flag, 11, 1)
#define WMI_VDEV_STATS_IFACTIVE_SET(flag, val) \
    WMI_SET_BITS(flag, 12, 1, val)
#define WMI_VDEV_STATS_IFACTIVE_GET(flag) \
    WMI_GET_BITS(flag, 12, 1)
#define WMI_VDEV_STATS_IFPAUSED_SET(flag, val) \
    WMI_SET_BITS(flag, 13, 1, val)
#define WMI_VDEV_STATS_IFPAUSED_GET(flag) \
    WMI_GET_BITS(flag, 13, 1)
#define WMI_VDEV_STATS_IFOUTOFSYNC_SET(flag, val) \
    WMI_SET_BITS(flag, 14, 1, val)
#define WMI_VDEV_STATS_IFOUTOFSYNC_GET(flag) \
    WMI_GET_BITS(flag, 14, 1)
#define WMI_VDEV_STATS_IS_FREE_SET(flag, val) \
    WMI_SET_BITS(flag, 15, 1, val)
#define WMI_VDEV_STATS_IS_FREE_GET(flag) \
    WMI_GET_BITS(flag, 15, 1)
#define WMI_VDEV_STATS_IS_NAWDS_SET(flag, val) \
    WMI_SET_BITS(flag, 16, 1, val)
#define WMI_VDEV_STATS_IS_NAWDS_GET(flag) \
    WMI_GET_BITS(flag, 16, 1)
#define WMI_VDEV_STATS_HW_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 17, 1, val)
#define WMI_VDEV_STATS_HW_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 17, 1)
#define WMI_VDEV_STATS_CH_REQ_FLAG_SET(flag, val) \
    WMI_SET_BITS(flag, 18, 2, val)
#define WMI_VDEV_STATS_CH_REQ_FLAG_GET(flag) \
    WMI_GET_BITS(flag, 18, 2)
#define WMI_VDEV_STATS_RESTART_RESP_SET(flag, val) \
    WMI_SET_BITS(flag, 20, 1, val)
#define WMI_VDEV_STATS_RESTART_RESP_GET(flag) \
    WMI_GET_BITS(flag, 20, 1)
#define WMI_VDEV_STATS_FIRST_BEACON_RECV_WAIT_SET(flag, val) \
    WMI_SET_BITS(flag, 21, 1, val)
#define WMI_VDEV_STATS_FIRST_BEACON_RECV_WAIT_GET(flag) \
    WMI_GET_BITS(flag, 21, 1)
#define WMI_VDEV_STATS_ERPENABLED_SET(flag, val) \
    WMI_SET_BITS(flag, 22, 1, val)
#define WMI_VDEV_STATS_ERPENABLED_GET(flag) \
    WMI_GET_BITS(flag, 22, 1)
#define WMI_VDEV_STATS_START_RESPONDED_SET(flag, val) \
    WMI_SET_BITS(flag, 23, 1, val)
#define WMI_VDEV_STATS_START_RESPONDED_GET(flag) \
    WMI_GET_BITS(flag, 23, 1)
#define WMI_VDEV_STATS_BCN_SYNC_CRIT_REQ_ACT_SET(flag, val) \
    WMI_SET_BITS(flag, 24, 1, val)
#define WMI_VDEV_STATS_BCN_SYNC_CRIT_REQ_ACT_GET(flag) \
    WMI_GET_BITS(flag, 24, 1)
#define WMI_VDEV_STATS_RECAL_NOTIF_REGISTERED_SET(flag, val) \
    WMI_SET_BITS(flag, 25, 1, val)
#define WMI_VDEV_STATS_RECAL_NOTIF_REGISTERED_GET(flag) \
    WMI_GET_BITS(flag, 25, 1)
#define WMI_VDEV_STATS_BCN_TX_PAUSED_SET(flag, val) \
    WMI_SET_BITS(flag, 26, 1, val)
#define WMI_VDEV_STATS_BCN_TX_PAUSED_GET(flag) \
    WMI_GET_BITS(flag, 26, 1)
#define WMI_VDEV_STATS_HE_BSS_COLOR_EN_BYPASS_SET(flag, val) \
    WMI_SET_BITS(flag, 27, 1, val)
#define WMI_VDEV_STATS_HE_BSS_COLOR_EN_BYPASS_GET(flag) \
    WMI_GET_BITS(flag, 27, 1)
#define WMI_VDEV_STATS_DEFAULT_BA_MODE_SET(flag, val) \
    WMI_SET_BITS(flag, 28, 1, val)
#define WMI_VDEV_STATS_DEFAULT_BA_MODE_GET(flag) \
    WMI_GET_BITS(flag, 28, 1)
#define WMI_VDEV_STATS_BA_256_BITMAP_ENABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 29, 1, val)
#define WMI_VDEV_STATS_BA_256_BITMAP_ENABLE_GET(flag) \
    WMI_GET_BITS(flag, 29, 1)
#define WMI_VDEV_STATS_BA_256_BITMAP_TX_DISABLE_SET(flag, val) \
    WMI_SET_BITS(flag, 30, 1, val)
#define WMI_VDEV_STATS_BA_256_BITMAP_TX_DISABLE_GET(flag) \
    WMI_GET_BITS(flag, 30, 1)
#define WMI_VDEV_STATS_IS_MULTI_GROUP_KEY_ENABLED_SET(flag, val) \
    WMI_SET_BITS(flag, 31, 1, val)
#define WMI_VDEV_STATS_IS_MULTI_GROUP_KEY_ENABLED_GET(flag) \
    WMI_GET_BITS(flag, 31, 1)


/**
 *  peer statistics.
 */
typedef struct {
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** RSSI */
    A_UINT32 peer_rssi;
    /** last tx data rate used for peer */
    A_UINT32 peer_tx_rate;
    /** last rx data rate used for peer */
    A_UINT32 peer_rx_rate;
} wmi_peer_stats;

/**
 *  Peer extension statistics
 */
typedef struct {
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* lower 32 bits of rx duration in microseconds */
    A_UINT32 rx_duration;
    /** Total TX bytes (including dot11 header) sent to peer */
    A_UINT32 peer_tx_bytes;
    /** Total RX bytes (including dot11 header) received from peer */
    A_UINT32 peer_rx_bytes;
    /** last TX ratecode */
    A_UINT32 last_tx_rate_code;
    /** TX power used by peer - units are 0.5 dBm */
    A_INT32 last_tx_power;

    /* Total number of received multicast & broadcast data frames corresponding to this peer */
    A_UINT32 rx_mc_bc_cnt; /* 1 in the MSB of rx_mc_bc_cnt represents a valid data */
    /* upper 32 bits of rx duration in microseconds */
    A_UINT32 rx_duration_u32; /* 1 in the most significant bit indicates this field contains valid data */
    A_UINT32 reserved[2]; /** for future use - add new peer stats here */
} wmi_peer_extd_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_extd2_stats */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /*
     * The following rx_bytes field (lower/upper pair) counts only the
     * MSDU bytes (after 802.11 decap, if applicable), and thus doesn't
     * count the 802.11 header, unlike the wmi_peer_extd_stats.peer_rx_bytes
     * and wmi_peer_stats_info.rx_bytes fields.
     */
    /** Lower 32 bits of the rx_bytes (size of MSDUs) excluding dot11 header from this peer */
    A_UINT32 rx_bytes_l32;
    /** Upper 32 bits of the rx_bytes (size of MSDUs) excluding dot11 header from this peer */
    A_UINT32 rx_bytes_u32;
    /** Number of MPDUS received with FCS error from this peer */
    A_UINT32 rx_fcs_err;
    /** Number of MPDUs(both data and non data) received from this peer */
    A_UINT32 rx_mpdus;
    /** nss of last tx data to peer */
    A_UINT32 last_tx_nss;
    /** nss of last rx data from peer */
    A_UINT32 last_rx_nss;
    /** chain mask used for last tx data to peer */
    A_UINT32 last_tx_chain_mask;
    /** chain mask used for last rx data from peer */
    A_UINT32 last_rx_chain_mask;
} wmi_peer_extd2_stats;

typedef struct {
    /** Primary channel freq of the channel for which stats are sent */
    A_UINT32 chan_mhz;
    /** Time spent on the channel */
    A_UINT32 sampling_period_us;
    /** Aggregate duration over a sampling period for which channel activity was observed */
    A_UINT32 rx_clear_count;
    /** Accumalation of the TX PPDU duration over a sampling period */
    A_UINT32 tx_duration_us;
    /** Accumalation of the RX PPDU duration over a sampling period */
    A_UINT32 rx_duration_us;
} wmi_chan_stats;

/**
 * MIB statistics.  See 802.11 spec for the meaning of each field.
 */
typedef struct {
    A_UINT32 tx_mpdu_grp_frag_cnt;       /*dot11TransmittedFragmentCount */
    A_UINT32 tx_msdu_grp_frm_cnt;        /*dot11GroupTransmittedFrameCount */
    A_UINT32 tx_msdu_fail_cnt;           /*dot11FailedCount*/
    A_UINT32 rx_mpdu_frag_cnt;           /*dot11ReceivedFragmentCount*/
    A_UINT32 rx_msdu_grp_frm_cnt;        /*dot11GroupReceivedFrameCount*/
    A_UINT32 rx_mpdu_fcs_err;            /*dot11FCSErrorCount*/
    A_UINT32 tx_msdu_frm_cnt;            /*dot11TransmittedFrameCount*/
    A_UINT32 tx_msdu_retry_cnt;          /*dot11RetryCount*/
    A_UINT32 rx_frm_dup_cnt;             /*dot11FrameDuplicateCount */
    A_UINT32 tx_rts_success_cnt;         /*dot11RTSSuccessCount*/
    A_UINT32 tx_rts_fail_cnt;            /*dot11RTSFailureCount*/
    A_UINT32 tx_Qos_mpdu_grp_frag_cnt;   /*dot11QosTransmittedFragmentCount */
    A_UINT32 tx_Qos_msdu_fail_UP;        /*dot11QosFailedCount */
    A_UINT32 tx_Qos_msdu_retry_UP;       /*dot11QosRetryCount */
    A_UINT32 rx_Qos_frm_dup_cnt_UP;      /*dot11QosFrameDuplicateCount*/
    A_UINT32 tx_Qos_rts_success_cnt_UP;  /*dot11QosRTSSuccessCount*/
    A_UINT32 tx_Qos_rts_fail_cnt_UP;     /*dot11QosRTSFailureCount*/
    A_UINT32 rx_Qos_mpdu_frag_cnt_UP;    /*dot11QosReceivedFragmentCount*/
    A_UINT32 tx_Qos_msdu_frm_cnt_UP;     /*dot11QosTransmittedFrameCount*/
    A_UINT32 rx_Qos_msdu_discard_cnt_UP; /*dot11QosDiscardedFrameCount*/
    A_UINT32 rx_Qos_mpdu_cnt;            /*dot11QosMPDUsReceivedCount*/
    A_UINT32 rx_Qos_mpdu_retryBit_cnt;   /*dot11QosRetriesReceivedCount*/
    A_UINT32 rsna_Mgmt_discard_CCMP_replay_err_cnt; /*dot11RSNAStatsRobustMgmtCCMPReplays*/
    A_UINT32 rsna_TKIP_icv_err_cnt;      /*dot11RSNAStatsTKIPICVErrors*/
    A_UINT32 rsna_TKIP_replay_err_cnt;   /*dot11RSNAStatsTKIPReplays*/
    A_UINT32 rsna_CCMP_decrypt_err_cnt;  /*dot11RSNAStatsCCMPDecryptErrors*/
    A_UINT32 rsna_CCMP_replay_err_cnt;   /*dot11RSNAStatsCCMPReplays*/
    A_UINT32 tx_ampdu_cnt;               /*dot11TransmittedAMPDUCount*/
    A_UINT32 tx_mpdu_cnt_in_ampdu;       /*dot11TransmittedMPDUsInAMPDUCount*/
    union {
        A_UINT64 counter; /* for use by target only */
        struct {
            A_UINT32 low;
            A_UINT32 high;
        } upload; /* for use by host */
    } tx_octets_in_ampdu;                /*dot11TransmittedOctetsInAMPDUCount*/
    A_UINT32 rx_ampdu_cnt;               /*dot11AMPDUReceivedCount*/
    A_UINT32 rx_mpdu_cnt_in_ampdu;       /*dot11MPDUInReceivedAMPDUCount*/
    union {
        A_UINT64 counter; /* for use by target only */
        struct {
            A_UINT32 rx_octets_in_ampdu_low;
            A_UINT32 rx_octets_in_ampdu_high;
        } upload; /* for use by host */
    } rx_octets_in_ampdu;                /*dot11ReceivedOctetsInAMPDUCount*/
    A_UINT32 reserved_1;
    A_UINT32 reserved_2;
    A_UINT32 reserved_3;
    A_UINT32 reserved_4;
} wmi_mib_stats;

/**
 *  MIB extension statistics.
 */
typedef struct {
    A_UINT32 tx_msdu_multi_retry_cnt;    /*dot11MultipleRetryCount*/
    A_UINT32 tx_ack_fail_cnt;            /*dot11ACKFailureCount*/
    A_UINT32 tx_qos_msdu_multi_retry_up; /*dot11QosMultipleRetryCount*/
    A_UINT32 tx_qos_ack_fail_cnt_up;     /*dot11QosACKFailureCount*/
    A_UINT32 rsna_cmac_icv_err_cnt;      /*dot11RSNAStatsCMACICVErrors*/
    A_UINT32 rsna_cmac_replay_err_cnt;   /*dot11RSNAStatsCMACReplays*/
    A_UINT32 rx_ampdu_deli_crc_err_cnt;  /*dot11AMPDUDelimiterCRCErrorCount*/
    A_UINT32 reserved[8];    /* Reserve more fields for future extension */
} wmi_mib_extd_stats;

/**
 *  Beacon protection statistics.
 */
typedef struct {
    A_UINT32 tlv_header;        /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pmf_bcn_protect_stats */
    A_UINT32 igtk_mic_fail_cnt; /* MIC failure count of management packets using IGTK */
    A_UINT32 igtk_replay_cnt;   /* Replay detection count of management packets using IGTK */
    A_UINT32 bcn_mic_fail_cnt;  /* MIC failure count of beacon packets using BIGTK */
    A_UINT32 bcn_replay_cnt;    /* Replay detection count of beacon packets using BIGTK */
} wmi_pmf_bcn_protect_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rssi_stats */
    A_UINT32 vdev_id;
    A_INT32  rssi_avg_beacon[WMI_MAX_CHAINS];
    A_INT32  rssi_avg_data[WMI_MAX_CHAINS];
    wmi_mac_addr peer_macaddr;
} wmi_rssi_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_congestion_stats */
    A_UINT32 vdev_id;
   /* congestion -
    * This field holds the congestion percentage = (busy_time/total_time)*100
    * for the interval from when the vdev was started to the current time
    * (or the time at which the vdev was stopped).
    */
    A_UINT32 congestion;
} wmi_congestion_stats;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_per_chain_rssi_stats */
    A_UINT32 num_per_chain_rssi_stats;
/* This TLV is followed by another TLV of array of structs:
 *     wmi_rssi_stats rssi_stats[num_per_chain_rssi_stats];
 */
} wmi_per_chain_rssi_stats;

/* vdev control flags (per bits) */
#define VDEV_FLAGS_NON_MBSSID_AP      0x00000001   /* legacy AP */
#define VDEV_FLAGS_TRANSMIT_AP        0x00000002   /* indicate if this vdev is transmitting AP */
#define VDEV_FLAGS_NON_TRANSMIT_AP    0x00000004   /* explicitly indicate this vdev is non-transmitting AP */
#define VDEV_FLAGS_EMA_MODE           0x00000008   /* vdev is EMA and supports multiple beacon profiles.
                                                    * Once this flag set, flags VDEV_FLAGS_TRANSMIT_AP and
                                                    * VDEV_FLAGS_NON_TRANSMIT_AP classify it as either Tx vap
                                                    * or non Tx vap.
                                                    */
#define VDEV_FLAGS_SCAN_MODE_VAP      0x00000010   /* for Scan Radio vdev will be special vap.
                                                    * There will not be WMI_VDEV_UP_CMD, there will be only WMI_VDEV_CREATE_CMD
                                                    * and WMI_VDEV_START_REQUEST_CMD. Based on this parameter need to make decision like
                                                    * vdev Pause/Unpause at WMI_VDEV_START_REQUEST_CMD.
                                                    */
/* get/set/check macros for VDEV_FLAGS_SCAN_MODE_VAP flag */
#define WMI_SCAN_MODE_VDEV_FLAG_GET(flag)            WMI_GET_BITS(flag, 4, 1)
#define WMI_SCAN_MODE_VDEV_FLAG_SET(flag, val)       WMI_SET_BITS(flag, 4, 1, val)

#define WMI_SCAN_MODE_VDEV_FLAG_ENABLED(flag)        ((flag & VDEV_FLAGS_SCAN_MODE_VAP) ? 1 : 0)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_create_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** VDEV type (AP,STA,IBSS,MONITOR) */
    A_UINT32 vdev_type;
    /** VDEV subtype (P2PDEV, P2PCLI, P2PGO, BT3.0)*/
    A_UINT32 vdev_subtype;
    /** VDEV MAC address */
    wmi_mac_addr vdev_macaddr;
    /** Number of configured txrx streams */
    A_UINT32 num_cfg_txrx_streams;
    /**
     * pdev_id for identifying the MAC,
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** control flags for this vdev (DEPRECATED)
     * Use @mbss_capability_flags in vdev start instead.
     */
    A_UINT32 flags;
    /**  vdevid of transmitted AP (mbssid case) (DEPRECATED)
     * Use @vdevid_trans in vdev start instead.
     */
    A_UINT32 vdevid_trans;
    /* vdev_stats_id_valid indicates whether vdev_stats_id is valid */
    A_UINT32 vdev_stats_id_valid;
    /**
     * vdev_stats_id indicates the ID for the REO Rx stats collection
     * For Beryllium: 0-47 is the valid range and >=48 is invalid
     * This vdev_stats_id field should be ignored unless the
     * vdev_stats_id_valid field is non-zero.
     */
    A_UINT32 vdev_stats_id;
/* This TLV is followed by another TLV of array of structures
 *   wmi_vdev_txrx_streams cfg_txrx_streams[];
 *   wmi_vdev_create_mlo_params mlo_params[0,1];
 *       optional TLV, only present for MLO vdev;
 *       if the vdev is not MLO the array length should be 0.
 */
} wmi_vdev_create_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_txrx_streams */
    /* band - Should take values from wmi_channel_band_mask */
    A_UINT32 band;
    /* max supported tx streams per given band for this vdev */
    A_UINT32 supported_tx_streams;
    /* max supported rx streams per given band for this vdev */
    A_UINT32 supported_rx_streams;
} wmi_vdev_txrx_streams;

/* wmi_p2p_noa_descriptor structure can't be modified without breaking the compatibility for WMI_HOST_SWBA_EVENTID */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_noa_descriptor */
    A_UINT32 type_count; /** 255: continuous schedule, 0: reserved */
    A_UINT32 duration; /** Absent period duration in micro seconds */
    A_UINT32 interval; /** Absent period interval in micro seconds */
    A_UINT32 start_time; /** 32 bit tsf time when in starts */
} wmi_p2p_noa_descriptor;

/*
 * mlo_flags sub-fields:
 * bits 0    - mlo enable flag;
 * bits 1    - assoc link flag;
 * bits 2    - primary_umac flag;
 * bits 3    - is logical link index valid
 * bits 4    - is mlo peer id valid
 */
#define WMI_MLO_FLAGS_GET_ENABLED(mlo_flags)                WMI_GET_BITS(mlo_flags, 0, 1)
#define WMI_MLO_FLAGS_SET_ENABLED(mlo_flags, value)         WMI_SET_BITS(mlo_flags, 0, 1, value)
#define WMI_MLO_FLAGS_GET_ASSOC_LINK(mlo_flags)             WMI_GET_BITS(mlo_flags, 1, 1)
#define WMI_MLO_FLAGS_SET_ASSOC_LINK(mlo_flags, value)      WMI_SET_BITS(mlo_flags, 1, 1, value)
#define WMI_MLO_FLAGS_GET_PRIMARY_UMAC(mlo_flags)           WMI_GET_BITS(mlo_flags, 2, 1)
#define WMI_MLO_FLAGS_SET_PRIMARY_UMAC(mlo_flags, value)    WMI_SET_BITS(mlo_flags, 2, 1, value)
#define WMI_MLO_FLAGS_GET_LINK_INDEX_VALID(mlo_flags)       WMI_GET_BITS(mlo_flags, 3, 1)
#define WMI_MLO_FLAGS_SET_LINK_INDEX_VALID(mlo_flags, value) WMI_SET_BITS(mlo_flags, 3, 1, value)
#define WMI_MLO_FLAGS_GET_PEER_ID_VALID(mlo_flags)          WMI_GET_BITS(mlo_flags, 4, 1)
#define WMI_MLO_FLAGS_SET_PEER_ID_VALID(mlo_flags, value)   WMI_SET_BITS(mlo_flags, 4, 1, value)
#define WMI_MLO_FLAGS_GET_MCAST_VDEV(mlo_flags)             WMI_GET_BITS(mlo_flags, 5, 1)
#define WMI_MLO_FLAGS_SET_MCAST_VDEV(mlo_flags, value)      WMI_SET_BITS(mlo_flags, 5, 1, value)
#define WMI_MLO_FLAGS_GET_EMLSR_SUPPORT(mlo_flags)          WMI_GET_BITS(mlo_flags, 6, 1)
#define WMI_MLO_FLAGS_SET_EMLSR_SUPPORT(mlo_flags, value)   WMI_SET_BITS(mlo_flags, 6, 1, value)
#define WMI_MLO_FLAGS_GET_FORCE_LINK_INACTIVE(mlo_flags)    WMI_GET_BITS(mlo_flags, 7, 1)
#define WMI_MLO_FLAGS_SET_FORCE_LINK_INACTIVE(mlo_flags, value) WMI_SET_BITS(mlo_flags, 7, 1, value)
#define WMI_MLO_FLAGS_GET_LINK_ADD(mlo_flags)               WMI_GET_BITS(mlo_flags, 8, 1)
#define WMI_MLO_FLAGS_SET_LINK_ADD(mlo_flags, value)        WMI_SET_BITS(mlo_flags, 8, 1, value)
#define WMI_MLO_FLAGS_GET_LINK_DEL(mlo_flags)               WMI_GET_BITS(mlo_flags, 9, 1)
#define WMI_MLO_FLAGS_SET_LINK_DEL(mlo_flags, value)        WMI_SET_BITS(mlo_flags, 9, 1, value)
#define WMI_MLO_FLAGS_GET_BRIDGE_PEER(mlo_flags)            WMI_GET_BITS(mlo_flags, 10, 1)
#define WMI_MLO_FLAGS_SET_BRIDGE_PEER(mlo_flags, value)     WMI_SET_BITS(mlo_flags, 10, 1, value)

/* this structure used for pass mlo flags*/
typedef struct {
    union {
        struct {
            A_UINT32 mlo_enabled:1, /* indicate is MLO enabled */
                     mlo_assoc_link:1, /* indicate is the link used to initialize the association of mlo connection */
                     mlo_primary_umac:1, /* indicate is the link on primary UMAC, WIN only flag */
                     mlo_logical_link_index_valid:1, /* indicate if the logial link index in wmi_peer_assoc_mlo_params is valid */
                     mlo_peer_id_valid:1, /* indicate if the mlo peer id in wmi_peer_assoc_mlo_params is valid */
                     mlo_mcast_vdev:1, /* indicate this is the MLO mcast primary vdev */
                     emlsr_support:1, /* indicate that eMLSR is supported */
                     mlo_force_link_inactive:1, /* indicate this link is forced inactive */
                     mlo_link_add:1, /* Indicate dynamic link addition in an MLD VAP */
                     mlo_link_del:1, /* Indicate dynamic link deletion in an MLD VAP */
                     mlo_bridge_peer:1, /* Indicate if this link has bridge_peer */
                     unused: 21;
        };
        A_UINT32 mlo_flags;
    };
} wmi_mlo_flags;

typedef struct {
    A_UINT32 tlv_header;/** TLV tag (WMITLV_TAG_STRUC_wmi_partner_link_params) and len;*/
    A_UINT32 vdev_id; /** partner vdev_id */
    A_UINT32 hw_link_id; /** hw_link_id: Unique link id across SOCs, got as part of QMI handshake */
    wmi_mac_addr vdev_macaddr; /** VDEV MAC address */
    wmi_mlo_flags mlo_flags;
} wmi_partner_link_params;

/* this TLV structure used for pass mlo parameters on vdev create*/
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; */
    /** MLD MAC address */
    wmi_mac_addr mld_macaddr;
} wmi_vdev_create_mlo_params;

/* this TLV structure used for pass mlo parameters on vdev start*/
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; */
    wmi_mlo_flags mlo_flags; /*only mlo enable and assoc link flag need by vdev start*/
} wmi_vdev_start_mlo_params;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_update_mac_addr_cmd_fixed_param */
    /** Unique id identifying the VDEV to update mac addr */
    A_UINT32 vdev_id;
    /** New VDEV MAC address to configure */
    wmi_mac_addr vdev_macaddr;
    /** New MLD MAC address to configure */
    wmi_mac_addr mld_macaddr;
} wmi_vdev_update_mac_addr_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_update_mac_addr_conf_event_fixed_param */
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /*
     * Status of mac address update request.
     * Refer to wmi_vdev_update_mac_addr_conf_status.
     */
    A_UINT32 status;
} wmi_vdev_update_mac_addr_conf_event_fixed_param;

/** VDEV update mac address event response status codes */
typedef enum {
    /** VDEV mac address updated successfully */
    WMI_VDEV_UPDATE_MAC_ADDR_CONF_STATUS_SUCCESS = 0,
    /** Requested VDEV not found */
    WMI_VDEV_UPDATE_MAC_ADDR_CONF_STATUS_INVALID_VDEVID = 1,
    /** Unsupported VDEV combination.eg: received cmd in VDEV connected state */
    WMI_VDEV_UPDATE_MAC_ADDR_CONF_STATUS_NOT_SUPPORTED = 2,
    /** FW internal failure to update mac address */
    WMI_VDEV_UPDATE_MAC_ADDR_CONF_STATUS_INTERNAL_FAIL = 3,
} wmi_vdev_update_mac_addr_conf_status;

/** values for vdev_type */
#define WMI_VDEV_TYPE_AP         0x1
#define WMI_VDEV_TYPE_STA        0x2
#define WMI_VDEV_TYPE_IBSS       0x3
#define WMI_VDEV_TYPE_MONITOR    0x4

/** VDEV type is for social wifi interface.This VDEV is Currently mainly needed
* by FW to execute the NAN specific WMI commands and also implement NAN specific
* operations like Network discovery, service provisioning and service
* subscription  ..etc. If FW needs NAN VDEV then Host should issue VDEV create
* WMI command to create this VDEV once during initialization and host is not
* expected to use any VDEV specific WMI commands on this VDEV.
**/
#define WMI_VDEV_TYPE_NAN        0x5

#define WMI_VDEV_TYPE_OCB        0x6

/* NAN Data Interface */
#define WMI_VDEV_TYPE_NDI        0x7

#define WMI_VDEV_TYPE_MESH_POINT 0x8

/*
 * Param values to be sent for WMI_VDEV_PARAM_SGI command
 * which are used in 11ax, 11be systems
 */
#define WMI_SGI_LEGACY         0x1 /* for HT and VHT   */
#define WMI_SGI_HE_400_NS      0x2 /* for HE 400 nsec  */
#define WMI_SGI_HE_800_NS      0x4 /* for HE 800 nsec  */
#define WMI_SGI_HE_1600_NS     0x8 /* for HE 1600 nsec */
#define WMI_SGI_HE_3200_NS    0x10 /* for HE 3200 nsec */
#define WMI_SGI_EHT_800_NS    0x20 /* for EHT 800 nsec  */
#define WMI_SGI_EHT_1600_NS   0x40 /* for EHT 1600 nsec */
#define WMI_SGI_EHT_3200_NS   0x80 /* for EHT 3200 nsec */

/*
 * Param values to be sent for WMI_VDEV_PARAM_HE_LTF command
 * which are used in 11ax systems
 */
#define WMI_HE_LTF_DEFAULT 0x0
#define WMI_HE_LTF_1X      0x1
#define WMI_HE_LTF_2X      0x2
#define WMI_HE_LTF_4X      0x3
/*
 * Param values to be sent for WMI_VDEV_EHT_PARAM_LTF command
 * which are used in 11be systems
 */
#define WMI_EHT_LTF_DEFAULT 0x4
#define WMI_EHT_LTF_1X      0x5
#define WMI_EHT_LTF_2X      0x6
#define WMI_EHT_LTF_4X      0x7

/** values for vdev_subtype */
#define WMI_UNIFIED_VDEV_SUBTYPE_P2P_DEVICE 0x1
#define WMI_UNIFIED_VDEV_SUBTYPE_P2P_CLIENT 0x2
#define WMI_UNIFIED_VDEV_SUBTYPE_P2P_GO     0x3
#define WMI_UNIFIED_VDEV_SUBTYPE_PROXY_STA  0x4
#define WMI_UNIFIED_VDEV_SUBTYPE_MESH       0x5
/* new subtype for 11S mesh is required as 11S functionality differs
 * in many ways from proprietary mesh
 * 11S uses 6-addr frame format and supports peering between mesh
 * stations and dynamic best path selection between mesh stations.
 * While in proprietary mesh, neighboring mesh station MAC is manually
 * added to AST table for traffic flow between mesh stations
 */
#define WMI_UNIFIED_VDEV_SUBTYPE_MESH_11S   0x6
/* Subtype to indicate that the AP VAP is in smart monitor mode
 * This is needed to differentiate in firmware between normal AP mode
 * with smart monitor AP mode
 */
#define WMI_UNIFIED_VDEV_SUBTYPE_SMART_MON  0x7

/** values for vdev_start_request flags */
/** Indicates that AP VDEV uses hidden ssid. only valid for
 *  AP/GO */
#define WMI_UNIFIED_VDEV_START_HIDDEN_SSID  (1<<0)
/** Indicates if robust management frame/management frame
 *  protection is enabled. For GO/AP vdevs, it indicates that
 *  it may support station/client associations with RMF enabled.
 *  For STA/client vdevs, it indicates that sta will
 *  associate with AP with RMF enabled. */
#define WMI_UNIFIED_VDEV_START_PMF_ENABLED  (1<<1)
/*
 * Host is sending bcn_tx_rate to override the beacon tx rates.
 */
#define WMI_UNIFIED_VDEV_START_BCN_TX_RATE_PRESENT (1<<2)
/** Indicates if LDPC RX will be advertized inside HT/VHT Capabilities IE
 * of assoc request/response
 */
#define WMI_UNIFIED_VDEV_START_LDPC_RX_ENABLED  (1<<3)
/** Indicates HW encryption is disabled, and SW encryption is enabled.
 *  If This flag is set, indicates that HW encryption will be disabled
 *  and SW encryption will be enabled.
 *  If SW encryption is enabled, key plumbing will not happen in FW.
 */
#define WMI_UNIFIED_VDEV_START_HW_ENCRYPTION_DISABLED  (1<<4)

/* BSS color 0-6 */
#define WMI_HEOPS_COLOR_GET_D2(he_ops) WMI_GET_BITS(he_ops, 0, 6)
#define WMI_HEOPS_COLOR_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 0, 6, value)

/* Default PE Duration subfield indicates the PE duration in units of 4 us */
#define WMI_HEOPS_DEFPE_GET_D2(he_ops) WMI_GET_BITS(he_ops, 6, 3)
#define WMI_HEOPS_DEFPE_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 6, 3, value)

/* TWT required */
#define WMI_HEOPS_TWT_REQUIRED_GET_D2(he_ops) WMI_GET_BITS(he_ops, 9, 1)
#define WMI_HEOPS_TWT_REQUIRED_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 9, 1, value)
/* DEPRECATED, use WMI_HEOPS_TWT_REQUIRED_GET instead */
#define WMI_HEOPS_TWT_GET_D2(he_ops) \
    WMI_HEOPS_TWT_REQUIRED_GET_D2(he_ops)
/* DEPRECATED, use WMI_HEOPS_TWT_REQUIRED_SET instead */
#define WMI_HEOPS_TWT_SET_D2(he_ops, value) \
    WMI_HEOPS_TWT_REQUIRED_SET_D2(he_ops, value)

/* RTS threshold in units of 32 us,0 - always use RTS 1023 - this is disabled */
#define WMI_HEOPS_RTSTHLD_GET_D2(he_ops) WMI_GET_BITS(he_ops, 10, 10)
#define WMI_HEOPS_RTSTHLD_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 10, 10, value)

/* Partial BSS Color field indicates whether BSS applies an AID assignment rule using partial BSS color bits */
#define WMI_HEOPS_PARTBSSCOLOR_GET_D2(he_ops) WMI_GET_BITS(he_ops, 20, 1)
#define WMI_HEOPS_PARTBSSCOLOR_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 20, 1, value)

/* MAX BSS supported by MultiBSS element */
#define WMI_HEOPS_MAXBSSID_GET_D2(he_ops) WMI_GET_BITS(he_ops, 21, 8)
#define WMI_HEOPS_MAXBSSID_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 21, 8, value)

/* Tx BSSID Indicator indicates whether HE AP corresponds to transmitted BSSID */
#define WMI_HEOPS_TXBSSID_GET_D2(he_ops) WMI_GET_BITS(he_ops, 29, 1)
#define WMI_HEOPS_TXBSSID_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 29, 1, value)

/* when set to 1 disables use of BSS color */
#define WMI_HEOPS_BSSCOLORDISABLE_GET_D2(he_ops) WMI_GET_BITS(he_ops, 30, 1)
#define WMI_HEOPS_BSSCOLORDISABLE_SET_D2(he_ops, value) WMI_SET_BITS(he_ops, 30, 1, value)

/**--- HEOPS_DUALBEACON: DO NOT USE - DEPRECATED ---*/
/* When set to 1 HE AP transmits beacons using two PHY formats,
 * one in non-HE format and other in an HE_EXT_SU PHY format
 */
#define WMI_HEOPS_DUALBEACON_GET_D2(he_ops) (0)
#define WMI_HEOPS_DUALBEACON_SET_D2(he_ops, value) {;}

#define WMI_MAX_HECAP_PHY_SIZE                 (3)

/* Dual Band both 2.4 GHz and 5 GHz Supported */
#define WMI_HECAP_PHY_DB_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 0, 1)
#define WMI_HECAP_PHY_DB_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 0, 1, value)

/*
 * B0: Indicates STA support 40 MHz channel width in 2.4 GHz
 * B1: Indicates STA support 40 MHz and 80 MHz channel width in 5 GHz
 * B2: Indicates STA supports 160 MHz channel width in 5 GHz
 * B3: Indicates STA supports 160/80+80 MHz channel width in 5 GHz
 * B4: If B1 is set to 0, then B5 indicates support of 242/106/52/26-tone
 *     RU mapping in 40 MHz channel width in 2.4 GHz. Otherwise Reserved.
 * B5: If B2, B3, and B4 are set to 0, then B6 indicates support of
 *     242-tone RU mapping in 40 MHz and 80
 * MHz channel width in 5 GHz. Otherwise Reserved.
 * B6: Reserved
 */
#define WMI_HECAP_PHY_CBW_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 1, 7)
#define WMI_HECAP_PHY_CBW_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 1, 7, value)

/*
 * B0: Indicates STA supports reception of preamble puncturing in 80 MHz,
 *     where in the preamble only the secondary 20 MHz is punctured
 * B1: Indicates STA supports reception of preamble puncturing in 80 MHz,
 *     where in the preamble only one of the two 20 MHz sub-channels in the
 *     secondary 40 MHz is punctured
 * B2: Indicates STA supports reception of preamble puncturing in 160 MHz
 *     or 80+80 MHz, where in the primary 80 MHz of the preamble only the
 *     secondary 20 MHz is punctured
 * B3: Indicates STA supports reception of preamble puncturing in 160 MHz
 *     or 80+80 MHz, where in the primary 80 MHz of the preamble, the
 *     primary 40 MHz is present
 */
#define WMI_HECAP_PHY_PREAMBLEPUNCRX_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 8, 4)
#define WMI_HECAP_PHY_PREAMBLEPUNCRX_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 8, 4, value)

/* Indicates transmitting STA is a Class A (1) or a Class B (0) device */
#define WMI_HECAP_PHY_COD_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 12, 1)
#define WMI_HECAP_PHY_COD_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 12, 1, value)

/* Indicates support of transmission and reception of LDPC encoded packets */
#define WMI_HECAP_PHY_LDPC_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 13, 1)
#define WMI_HECAP_PHY_LDPC_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 13, 1, value)

/* Below 2 macros are for maintaining backward compatibility - Deprecated use WMI_HECAP_PHY_LDPC instead */
#define WMI_HECAP_PHY_TXLDPC_GET_D2(he_cap_phy) WMI_HECAP_PHY_LDPC_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_TXLDPC_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_LDPC_SET_D2(he_cap_phy, value)
/* Below 2 macros are for maintaining backward compatibility - Deprecated use WMI_HECAP_PHY_LDPC instead */
#define WMI_HECAP_PHY_RXLDPC_GET_D2(he_cap_phy) WMI_HECAP_PHY_LDPC_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_RXLDPC_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_LDPC_SET_D2(he_cap_phy, value)

/*
 * B0: Indicates support of reception of 1x LTF and 0.8us guard interval duration for HE SU PPDUs.
 */
#define WMI_HECAP_PHY_LTFGIFORHE_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 14, 1)
#define WMI_HECAP_PHY_LTFGIFORHE_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 14, 1, value)

/*
 * When the Doppler Rx subfield is 1, indicates the maximum number of space-
 * time streams supported for reception when midamble is used in the Data field.
 */
#define WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 15, 2)
#define WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 15, 2, value)

/*
 * B0: For a transmitting STA acting as beamformee, it indicates support of
 *     NDP reception using 4x LTF and 3.2 us guard interval duration
 */
#define WMI_HECAP_PHY_LTFGIFORNDP_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 17, 1)
#define WMI_HECAP_PHY_LTFGIFORNDP_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 17, 1, value)

/* indicates support for the transmission of HE PPDUs using STBC with one spatial stream for <= 80MHz Tx*/
#define WMI_HECAP_PHY_TXSTBC_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 18, 1)
#define WMI_HECAP_PHY_TXSTBC_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 18, 1, value)

/* indicates support for the reception of HE PPDUs using STBC with one spatial stream for <= 80MHz Tx*/
#define WMI_HECAP_PHY_RXSTBC_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 19, 1)
#define WMI_HECAP_PHY_RXSTBC_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 19, 1, value)

/* indicates transmitting STA supports transmitting HE PPDUs with Doppler procedure */
#define WMI_HECAP_PHY_TXDOPPLER_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 20, 1)
#define WMI_HECAP_PHY_TXDOPPLER_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 20, 1, value)

/* indicates transmitting STA supports receiving HE PPDUs with Doppler procedure */
#define WMI_HECAP_PHY_RXDOPPLER_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 21, 1)
#define WMI_HECAP_PHY_RXDOPPLER_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 21, 1, value)

/*
 * If the transmitting STA is an AP:
 *     indicates STA supports of reception of full bandwidth UL MU-MIMO
 *     transmission.
 * If the transmitting STA is a non-AP STA:
 *     indicates STA supports of transmission of full bandwidth UL MU-MIMO
 *     transmission.
 */
#define WMI_HECAP_PHY_UL_MU_MIMO_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 22, 1)
#define WMI_HECAP_PHY_UL_MU_MIMO_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 22, 1, value)

/*
 * If the transmitting STA is an AP:
 *     indicates STA supports of reception of UL MUMIMO transmission on an
 *     RU in an HE MU PPDU where the RU does not span the entire PPDU bandwidth.
 * If the transmitting STA is a non-AP STA:
 *     indicates STA supports of transmission of UL MU-MIMO transmission on an
 *     RU in an HE MU PPDU where the RU does not span the entire PPDU bandwidth.
 */
#define WMI_HECAP_PHY_ULMUMIMOOFDMA_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 23, 1)
#define WMI_HECAP_PHY_ULMUMIMOOFDMA_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 23, 1, value)

/* Tx DCM
 * B0:B1
 *     00: Does not support DCM
 *     01: BPSK
 *     10: QPSK
 *     11: 16-QAM
 * B2 signals maximum number of spatial streams with DCM
 *     0: 1 spatial stream
 *     1: 2 spatial streams
 */
#define WMI_HECAP_PHY_DCMTX_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 24, 3)
#define WMI_HECAP_PHY_DCMTX_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 24, 3, value)

/* Rx DCM
 * B0:B1
 *     00: Does not support DCM
 *     01: BPSK
 *     10: QPSK
 *     11: 16-QAM
 * B2 signals maximum number of spatial streams with DCM
 *     0: 1 spatial stream
 *     1: 2 spatial streams
 */
#define WMI_HECAP_PHY_DCMRX_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 27, 3)
#define WMI_HECAP_PHY_DCMRX_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 27, 3, value)


/*
 * Indicates that the STA supports the reception of an HE MU PPDU payload
 * over full bandwidth and partial bandwidth (106-tone RU within 20 MHz).
 */
#define WMI_HECAP_PHY_ULHEMU_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 30, 1)
#define WMI_HECAP_PHY_ULHEMU_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 30, 1, value)

/* Indicates support for operation as an SU beamformer */
#define WMI_HECAP_PHY_SUBFMR_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 31, 1)
#define WMI_HECAP_PHY_SUBFMR_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 31, 1, value)

/* Indicates support for operation as an SU beamformee */
#define WMI_HECAP_PHY_SUBFME_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 0, 1)
#define WMI_HECAP_PHY_SUBFME_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 0, 1, value)

/* Indicates support for operation as an MU Beamformer */
#define WMI_HECAP_PHY_MUBFMR_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 1, 1)
#define WMI_HECAP_PHY_MUBFMR_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 1, 1, value)

/*
 * Num STS -1 for <= 80MHz (min val 3)
 * The maximum number of space-time streams minus 1 that the STA can
 * receive in an HE NDP
 */
#define WMI_HECAP_PHY_BFMESTSLT80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 2, 3)
#define WMI_HECAP_PHY_BFMESTSLT80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 2, 3, value)


/*
 * Num STS -1 for > 80MHz (min val 3)
 * The maximum number of space-time streams minus 1 that the STA can
 * receive in an HE NDP
 */
#define WMI_HECAP_PHY_BFMESTSGT80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 5, 3)
#define WMI_HECAP_PHY_BFMESTSGT80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 5, 3, value)

/*
 * Number Of Sounding Dimensions For <= 80 MHz
 * If SU beamformer capable, set to the maximum supported value of the
 * TXVECTOR parameter NUM_STS minus 1.
 * Otherwise, reserved.
 */
#define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 8, 3)
#define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 8, 3, value)

/*
 * Number Of Sounding Dimensions For > 80 MHz
 * If SU beamformer capable, set to the maximum supported value of the
 * TXVECTOR parameter NUM_STS minus 1.
 * Otherwise, reserved.
 */
#define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 11, 3)
#define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 11, 3, value)

/*
 * Indicates if the HE beamformee is capable of feedback with tone
 * grouping of 16 in the HE Compressed Beamforming Report field for
 * a SU-type feedback.
 */
#define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 14, 1)
#define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 14, 1, value)

/*
 * Indicates if the HE beamformee is capable of feedback with tone
 * grouping of 16 in the HE Compressed Beamforming Report field for
 * a MU-type feedback.
 */
#define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 15, 1)
#define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 15, 1, value)

/*
 * Indicates if HE beamformee is capable of feedback with codebook
 * size {4, 2} in the HECompressed Beamforming Report field for
 * a SU-type feedback.
 */
#define WMI_HECAP_PHY_CODBK42SU_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 16, 1)
#define WMI_HECAP_PHY_CODBK42SU_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 16, 1, value)

/*
 * Indicates if HE beamformee is capable of feedback with codebook
 * size {7, 5} in the HE Compressed Beamforming Report field for
 * a MU-type feedback.
 */
#define WMI_HECAP_PHY_CODBK75MU_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 17, 1)
#define WMI_HECAP_PHY_CODBK75MU_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 17, 1, value)

/*
 * Beamforming Feedback With Trigger Frame
 * If the transmitting STA is an AP STA:
 * B0: indicates support of reception of SU-Type partial(1) and full bandwidth feedback(0)
 * B1: indicates support of reception of MU-Type partial(1) bandwidth feedback
 * B2: indicates support of reception of CQI-Only partial and full bandwidth feedback
 * If the transmitting STA is a non-AP STA:
 * B0: indicates support of transmission of SU-Type partial(1) and full bandwidth(0) feedback
 * B1: indicates support of transmission of MU-Type partial(1) bandwidth feedback
 * B2: indicates support of transmission of CQI-Onlypartial (1)and full bandwidth feedback
 */
#define WMI_HECAP_PHY_BFFEEDBACKTRIG_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 18, 3)
#define WMI_HECAP_PHY_BFFEEDBACKTRIG_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 18, 3, value)

/* Indicates the support of transmission and reception of an HE extended range SU PPDU payload transmitted
 * over the right 106-tone RU or partial BW ER
 */
#define WMI_HECAP_PHY_HEERSU_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 21, 1)
#define WMI_HECAP_PHY_HEERSU_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 21, 1, value)

/* Indicates that the non-AP STA supports reception of a DL MU-MIMO transmission on an RU in an HE MU PPDU
 * where the RU does not span the entire PPDU bandwidth.
 */
#define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 22, 1)
#define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 22, 1, value)

/* Indicates whether or not the PPE Threshold field is present */
#define WMI_HECAP_PHY_PETHRESPRESENT_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 23, 1)
#define WMI_HECAP_PHY_PETHRESPRESENT_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 23, 1, value)

/* Indicates that the STA supports SRP-based SR operation */
#define WMI_HECAP_PHY_SRPSPRESENT_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 24, 1)
#define WMI_HECAP_PHY_SRPPRESENT_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 24, 1, value)

/* Indicates that the STA supports a power boost factor ar for the r-th RU in the range [0.5, 2] */
#define WMI_HECAP_PHY_PWRBOOSTAR_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 25, 1)
#define WMI_HECAP_PHY_PWRBOOSTAR_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 25, 1, value)

/* Indicates support for the reception of 4x LTF and 0.8us guard interval duration for HE SU PPDUs. */
#define WMI_HECAP_PHY_4XLTFAND800NSECSGI_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 26, 1)
#define WMI_HECAP_PHY_4XLTFAND800NSECSGI_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 26, 1, value)

/* For a transmitting STA acting as a beamformee, it indicates the maximum Nc for beamforming sounding
 * feedback supported If SU beamformee capable, then set to the maximum Nc for beamforming sounding feedback
 * minus 1. Otherwise, reserved.
 */
#define WMI_HECAP_PHY_MAXNC_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 27, 3)
#define WMI_HECAP_PHY_MAXNC_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 27, 3, value)

/* Indicates support for the transmission of an HE PPDU that has a bandwidth greater than 80 MHz and is using
 * STBC with one spatial stream
 */
#define WMI_HECAP_PHY_STBCTXGT80_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 30, 1)
#define WMI_HECAP_PHY_STBCTXGT80_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 30, 1, value)

/* Indicates support for the reception of an HE PPDU that has a bandwidth greater than 80 MHz and is using
 * STBC with one spatial stream
 */
#define WMI_HECAP_PHY_STBCRXGT80_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 31, 1)
#define WMI_HECAP_PHY_STBCRXGT80_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 31, 1, value)

/* Indicates support for the reception of an HE ER SU PPDU with 4x LTF and 0.8 us guard interval duration */
#define WMI_HECAP_PHY_ERSU4X800NSECGI_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 0, 1)
#define WMI_HECAP_PHY_ERSU4X800NSECGI_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 0, 1, value)

/*
 * Indicates support of 26-, 52-, and 106-tone mapping for a 20 MHz operating non-AP HE STA that is the
 * receiver of a 40 MHz HE MU PPDU in 2.4 GHz band, or the transmitter of a 40 MHz HE TB PPDU in 2.4GHz band.
 */
#define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 1, 1)
#define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 1, 1, value)

/*
 * Indicates support of 26-, 52-, and 106-tone mapping for a 20 MHz operating non-AP HE STA that is the
 * receiver of a 80+80 MHz or a 160 MHz HE MU PPDU, or the transmitter of a 80+80 MHz or 160 MHz HE TB PPDU.
 */
#define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 2, 1)
#define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 2, 1, value)

/*
 * Indicates supports of 160 MHz OFDMA for a non-AP HE STA that sets bit B1 of Channel Width Set to 1, and
 * sets B2 and B3 of Channel Width Set each to 0, when operating with 80 MHz channel width. The capability
 * bit is applicable while receiving a 80+80 MHz or a 160 MHz HE MU PPDU, or transmitting a 80+80 MHz or a
 * 160 MHz HE TB PPDU.
 */
#define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 3, 1)
#define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 3, 1, value)

/* Indicates support for the reception of an HE ER SU PPDU with 1x LTF and 0.8 us guard interval duration */
#define WMI_HECAP_PHY_ERSU1X800NSECGI_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 4, 1)
#define WMI_HECAP_PHY_ERSU1X800NSECGI_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 4, 1, value)

/*
 * When the Doppler Rx subfield is 1, indicates support for receiving midambles with 2x HE-LTF, 1x HE-LTF
 * in HE SU PPDU if the HE SU PPDU With 1x HE-LTF And 0.8 s GI subfield is set to 1, and 1x HE-LTF in
 * HE ER SU PPDU if the HE ER SU PPDU With 1x HELTF And 0.8 s GI subfield is set to 1.
 */
#define WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 5, 1)
#define WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 5, 1, value)

/*HTC + HE Support  Set to 1 if STA supports reception of HE Variant HT control Field*/
#define WMI_HECAP_MAC_HECTRL_GET_D2(he_cap) WMI_GET_BITS(he_cap, 0, 1)
#define WMI_HECAP_MAC_HECTRL_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 0, 1, value)

/* set to 1 to for TWT Requestor support*/
#define WMI_HECAP_MAC_TWTREQ_GET_D2(he_cap) WMI_GET_BITS(he_cap, 1, 1)
#define WMI_HECAP_MAC_TWTREQ_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 1, 1, value)

/* set to 1 to for TWT Responder support*/
#define WMI_HECAP_MAC_TWTRSP_GET_D2(he_cap) WMI_GET_BITS(he_cap, 2, 1)
#define WMI_HECAP_MAC_TWTRSP_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 2, 1, value)

/* Level of frag support
   Set to 0 for no support for dynamic fragmentation.
   Set to 1 for support for dynamic fragments that are contained within a S-MPDU
   Set to 2 for support for dynamic fragments that are contained within a Single MPDU and support for up to
        one dynamic fragment for each MSDU and each MMPDU within an A-MPDU or multi-TID A-MPDU.
   Set to 3 for support for dynamic fragments that are contained within a Single MPDU and support for multiple
        dynamic fragments for each MSDU within an AMPDU or multi-TID AMPDU and up to one dynamic fragment
        for each MMPDU in a multi-TID A-MPDU that is not a Single MPDU
*/
#define WMI_HECAP_MAC_HEFRAG_GET_D2(he_cap) WMI_GET_BITS(he_cap, 3, 2)
#define WMI_HECAP_MAC_HEFRAG_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 3, 2, value)

/* The maximum number of fragmented MSDUs, Nmax,defined by this field is Nmax = 2 Maximum Number Of FMPDUs*/
#define WMI_HECAP_MAC_MAXFRAGMSDU_GET_D2(he_cap) WMI_GET_BITS(he_cap, 5, 3)
#define WMI_HECAP_MAC_MAXFRAGMSDU_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 5, 3, value)

/* 0 =  no restriction on the minimum payload , 1 = 128 octets min, 2 = 256 octets min, 3 = 512 octets min */
#define WMI_HECAP_MAC_MINFRAGSZ_GET_D2(he_cap) WMI_GET_BITS(he_cap, 8, 2)
#define WMI_HECAP_MAC_MINFRAGSZ_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 8, 2, value)

/*0 = no additional processing time, 1 = 8us,2 = 16us */
#define WMI_HECAP_MAC_TRIGPADDUR_GET_D2(he_cap) WMI_GET_BITS(he_cap, 10, 2)
#define WMI_HECAP_MAC_TRIGPADDUR_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 10, 2, value)

/*number of TIDs minus 1 of QoS Data frames that HE STA can aggregate in  multi-TID AMPDU*/
#define WMI_HECAP_MAC_MTID_GET_D2(he_cap) WMI_GET_BITS(he_cap, 12, 3)
#define WMI_HECAP_MAC_MTID_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 12, 3, value)

/*
 * Indicates support by a STA to receive an ack-enabled A-MPDU in which an A-MSDU is carried in
 * a QoS Data frame for which no block ack agreement exists.
 */
#define WMI_HECAP_MAC_AMSDUINAMPDU_GET_D2(he_cap) WMI_GET_BITS(he_cap, 15, 1)
#define WMI_HECAP_MAC_AMSDUINAMPDU_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 15, 1, value)

/*--- HECAP_MAC_HELKAD: DO NOT USE - DEPRECATED ---*/
/*0=No Feedback,2=Unsolicited,3=Both*/
#define WMI_HECAP_MAC_HELKAD_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_HELKAD_SET_D2(he_cap, value) {;}

/* bit 16 reserved. */

/*Set to 1 for reception of AllAck support*/
#define WMI_HECAP_MAC_AACK_GET_D2(he_cap) WMI_GET_BITS(he_cap, 17, 1)
#define WMI_HECAP_MAC_AACK_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 17, 1, value)

/*Set to 1 if the STA supports reception of the UL MU Response Scheduling A-Control field*/
#define WMI_HECAP_MAC_ULMURSP_GET_D2(he_cap) WMI_GET_BITS(he_cap, 18, 1)
#define WMI_HECAP_MAC_ULMURSP_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 18, 1, value)

/*Set to 1 if the STA supports the BSR A-Control field functionality.*/
#define WMI_HECAP_MAC_BSR_GET_D2(he_cap) WMI_GET_BITS(he_cap, 19, 1)
#define WMI_HECAP_MAC_BSR_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 19, 1, value)

/*Set to 1 when the STA supports broadcast TWT functionality.*/
#define WMI_HECAP_MAC_BCSTTWT_GET_D2(he_cap) WMI_GET_BITS(he_cap, 20, 1)
#define WMI_HECAP_MAC_BCSTTWT_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 20, 1, value)

/*Set to 1 if STA supports rx of Multi-STA BA that has 32-bit Block Ack Bitmap*/
#define WMI_HECAP_MAC_32BITBA_GET_D2(he_cap) WMI_GET_BITS(he_cap, 21, 1)
#define WMI_HECAP_MAC_32BITBA_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 21, 1, value)

/*Set to 1 if the STA supports MU cascading operation*/
#define WMI_HECAP_MAC_MUCASCADE_GET_D2(he_cap) WMI_GET_BITS(he_cap, 22, 1)
#define WMI_HECAP_MAC_MUCASCADE_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 22, 1, value)

/*Set to 1 when the STA supports reception of this multi-TID A-MPDU format*/
#define WMI_HECAP_MAC_ACKMTIDAMPDU_GET_D2(he_cap) WMI_GET_BITS(he_cap, 23, 1)
#define WMI_HECAP_MAC_ACKMTIDAMPDU_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 23, 1, value)

/*Set to 1 when the STA supports its reception*/
#define WMI_HECAP_MAC_GROUPMSTABA_GET_D2(he_cap) WMI_GET_BITS(he_cap, 24, 1)
#define WMI_HECAP_MAC_GROUPMSTABA_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 24, 1, value)

/*Set to 1 if the STA supports reception of the OMI A-Control field*/
#define WMI_HECAP_MAC_OMI_GET_D2(he_cap) WMI_GET_BITS(he_cap, 25, 1)
#define WMI_HECAP_MAC_OMI_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 25, 1, value)

/*1 if OFDMA Random Access Supported*/
#define WMI_HECAP_MAC_OFDMARA_GET_D2(he_cap) WMI_GET_BITS(he_cap, 26, 1)
#define WMI_HECAP_MAC_OFDMARA_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 26, 1, value)

/* Maximum AMPDU Length Exponent.
 * If the HE STA includes a VHT Capabilities element, the Maximum A-MPDU Length Exponent subfield in
 * HE Capabilities element combined with the Maximum A-MPDU Length Exponent subfield in VHT
 * Capabilities element indicate the maximum length of A-MPDU that the STA can Receive where EOF
 * padding is not included in this limit.
*/
#define WMI_HECAP_MAC_MAXAMPDULEN_EXP_GET_D2(he_cap) WMI_GET_BITS(he_cap, 27, 2)
#define WMI_HECAP_MAC_MAXAMPDULEN_EXP_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 27, 2, value)

/*A-MSDU Fragmentation Support*/
#define WMI_HECAP_MAC_AMSDUFRAG_GET_D2(he_cap) WMI_GET_BITS(he_cap, 29, 1)
#define WMI_HECAP_MAC_AMSDUFRAG_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 29, 1, value)

/*Flexible TWT Schedule Support*/
#define WMI_HECAP_MAC_FLEXTWT_GET_D2(he_cap) WMI_GET_BITS(he_cap, 30, 1)
#define WMI_HECAP_MAC_FLEXTWT_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 30, 1, value)

/*Rx Control Frame to MultiBSS*/
#define WMI_HECAP_MAC_MBSS_GET_D2(he_cap) WMI_GET_BITS(he_cap, 31, 1)
#define WMI_HECAP_MAC_MBSS_SET_D2(he_cap, value) WMI_SET_BITS(he_cap, 31, 1, value)

/* BSRP A-MPDU Aggregation
 * maintaining compatibility since we don't support this now so not wasting memory
 */
#define WMI_HECAP_MAC_BSRPAMPDU_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_BSRPAMPDU_SET_D2(he_cap, value) {;}

/* Quiet Time Period (QTP) operation
 * maintaining compatibility since we don't support this now so not wasting memory
 */
#define WMI_HECAP_MAC_QTP_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_QTP_SET_D2(he_cap, value) {;}

/* support by an AP for receiving an (A-)MPDU that contains a BQR in the
 * A-Control subfield and support by a non-AP STA for generating an (A-)MPDU
 * that contains a BQR in the A-Control subfield
 * maintaining compatibility since we don't support this now so not wasting memory
 */
#define WMI_HECAP_MAC_ABQR_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_ABQR_SET_D2(he_cap, value) {;}

/*Indicates support by the STA for the role of SR Responder.*/
#define WMI_HECAP_MAC_SRRESP_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_SRRESP_SET_D2(he_cap, value) {;}

/* Indicates support for an AP to encode OPS information to TIM element of the FILS Discovery
 * frames or TIM frames as described in AP operation for opportunistic power save.
 * Indicates support for a non-AP STA to receive the opportunistic power save encoded TIM elements
 */
#define WMI_HECAP_MAC_OPS_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_OPS_SET_D2(he_cap, value) {;}

/* Indicates support for a non-AP STA to follow the NDP feedback report procedure and respond to
 * the NDP Feedback Report Poll Trigger frame.
 */
#define WMI_HECAP_MAC_NDPFDBKRPT_GET_D2(he_cap) (0)
#define WMI_HECAP_MAC_NDPFDBKRPT_SET_D2(he_cap, value) {;}

/* BELOW MACROS ARE DEPRECATED Also we are not defining bits for capabilities
 * beyond bit 31 we donot support as it adds additional dword to our struct which may be later
 * removed by standard
 */
#define WMI_HECAP_MAC_MBAHECTRL_GET_D2(he_cap) (0) /* DO NOT USE - DEPRECATED*/
#define WMI_HECAP_MAC_MBAHECTRL_SET_D2(he_cap, value) {;} /* DO NOT USE - DEPRECATED*/

#define WMI_HECAP_MAC_MURTS_GET_D2(he_cap) (0) /* DO NOT USE - DEPRECATED*/
#define WMI_HECAP_MAC_MURTS_SET_D2(he_cap, value) {;} /* DO NOT USE - DEPRECATED*/

/*Deprecate use  WMI_HECAP_PHY_PREAMBLEPUNCRX instead*/
#define WMI_HECAP_PHY_CBMODE_GET_D2(he_cap_phy) WMI_HECAP_PHY_CBMODE_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_CBMODE_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_CBMODE_SET_D2(he_cap_phy, value)


/* Below 2 macros are for maintaining backward compatibility - Deprecated use WMI_HECAP_PHY_LTFGIFORHE_GET instead */
#define WMI_HECAP_PHY_OLTF_GET_D2(he_cap_phy) WMI_HECAP_PHY_LTFGIFORHE_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_OLTF_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_LTFGIFORHE_SET_D2(he_cap_phy, value)


/*DEPRECATED - USE WMI_HECAP_PHY_BFMENLTSGT80MHZ*/
#define WMI_HECAP_PHY_SUBFMESTS_GET_D2(he_cap_phy) WMI_HECAP_PHY_BFMESTSLT80MHZ_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_SUBFMESTS_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_BFMESTSLT80MHZ_SET_D2(he_cap_phy, value)

/*DEPRECATED - use WMI_HECAP_PHY_PETHRESPRESENT**/
#define WMI_HECAP_PHY_PADDING_GET_D2(he_cap_phy) WMI_HECAP_PHY_PETHRESPRESENT_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_PADDING_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_PETHRESPRESENT_SET_D2(he_cap_phy, value)


/**DO NOT USE - DEPRECATED*/
#define WMI_HECAP_PHY_DLOFMAMUMIMO_GET_D2(he_cap_phy) (0)
#define WMI_HECAP_PHY_DLOFDMAMUMIO_SET_D2(he_cap_phy, value) {;}

/*DO NOT USE - DEPRECATED**/
#define WMI_HECAP_PHY_32GI_GET_D2(he_cap_phy) (0)
#define WMI_HECAP_PHY_32GI_SET_D2(he_cap_phy, value) {;}

/*DO NOT USE - DEPRECATED**/
#define WMI_HECAP_PHY_NOSUNDIMENS_GET_D2(he_cap_phy) (0)
#define WMI_HECAP_PHY_NOSUNDIMENS_SET_D2(he_cap_phy, value) {;}

/*DO NOT USE - DEPRECATED**/
#define WMI_HECAP_PHY_40MHZNSS_GET_D2(he_cap_phy)(0)
#define WMI_HECAP_PHY_40MHZNSS_SET_D2(he_cap_phy, value) {;}


/* START TEMPORARY WORKAROUND -
 * Leave legacy names as aliases for new names, until all references to the
 * legacy names have been removed.
 */
#define WMI_HECAP_PHY_ULOFDMA_GET_D2 WMI_HECAP_PHY_ULMUMIMOOFDMA_GET_D2
#define WMI_HECAP_PHY_ULOFDMA_SET_D2 WMI_HECAP_PHY_ULMUMIMOOFDMA_SET_D2
/* END TEMPORARY WORKAROUND */

/* DEPRECATED - use WMI_HECAP_PHY_DCMRX or WMI_HECAP_PHY_DCMTX */
#define WMI_HECAP_PHY_DCM_GET_D2(he_cap_phy) WMI_HECAP_PHY_DCMRX_GET_D2(he_cap_phy)
#define WMI_HECAP_PHY_DCM_SET_D2(he_cap_phy, value) WMI_HECAP_PHY_DCMRX_SET_D2(he_cap_phy, value)

/*
 * The maximum value for NSTS-1<=80MHz,(min val 3)total that can be sent
 * to the STA in a DL MU-MIMO transmission on full or partial bandwidth
 */
#define WMI_HECAP_PHY_NSTSLT80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 5, 3)
#define WMI_HECAP_PHY_NSTSLT80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 5, 3, value)


/*
 * The maximum value for NSTS-1 > 80MHz (min val 3) total that can be sent
 * to the STA in a DL MU-MIMO transmission on full or partial bandwidth
 */
#define WMI_HECAP_PHY_NSTSGT80MHZ_GET_D2(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 8, 3)
#define WMI_HECAP_PHY_NSTSGT80MHZ_SET_D2(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 8, 3, value)

/*
 * Indicates the spatial multiplexing power save mode after receiving a
 * Trigger frame that is in operation immediately after (re)association.
 */
#define WMI_HECAP_MAC_DYNSMPWRSAVE_GET_D2(he_cap2) (0)
#define WMI_HECAP_MAC_DYNSMPWRSAVE_SET_D2(he_cap2, value) {;}

/* Indicates support for Punctured Sounding */
#define WMI_HECAP_MAC_PUNCSOUNDING_GET_D2(he_cap2) (0)
#define WMI_HECAP_MAC_PUNCSOUNDING_SET_D2(he_cap2, value) {;}

/*
 * Indicates support for receiving a Trigger frame in an HT PPDU and
 * receiving a Trigger frame in a VHT PPDU
 */
#define WMI_HECAP_MAC_HTVHTTRIGRX_GET_D2(he_cap2) (0)
#define WMI_HECAP_MAC_HTVHTTRIGRX_SET_D2(he_cap2, value) {;}

#define WMI_GET_HW_RATECODE_PREAM_V1(_rcode)     (((_rcode) >> 8) & 0x7)
#define WMI_GET_HW_RATECODE_NSS_V1(_rcode)       (((_rcode) >> 5) & 0x7)
#define WMI_GET_HW_RATECODE_RATE_V1(_rcode)      (((_rcode) >> 0) & 0x1F)
#define WMI_ASSEMBLE_RATECODE_V1(_rate, _nss, _pream) \
            (((1) << 28) | ((_pream) << 8) | ((_nss) << 5) | (_rate))

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_start_request_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** requestor id identifying the caller module */
    A_UINT32 requestor_id;
    /** beacon interval from received beacon */
    A_UINT32 beacon_interval;
    /** DTIM Period from the received beacon */
    A_UINT32 dtim_period;
    /** Flags */
    A_UINT32 flags;
    /** ssid field. Only valid for AP/GO/IBSS/BTAmp VDEV type. */
    wmi_ssid ssid;
    /** beacon/probe response xmit rate. Applicable for SoftAP. */
    /** This field will be invalid and ignored unless the */
    /** flags field has the WMI_UNIFIED_VDEV_START_BCN_TX_RATE_PRESENT bit. */
    /** When valid, this field contains the fixed tx rate for the beacon */
    /** and probe response frames send by the GO or SoftAP */
    A_UINT32 bcn_tx_rate;
    /** beacon/probe response xmit power. Applicable for SoftAP. */
    A_UINT32 bcn_txPower;
    /** number of p2p NOA descriptor(s) from scan entry */
    A_UINT32 num_noa_descriptors;
    /** Disable H/W ack. This used by WMI_VDEV_RESTART_REQUEST_CMDID.
     During CAC, Our HW shouldn't ack ditected frames */
    A_UINT32 disable_hw_ack;
    /** This field will be invalid unless the Dual Band Simultaneous (DBS) feature is enabled. */
    /** The DBS policy manager indicates the preferred number of transmit streams. */
    A_UINT32 preferred_tx_streams;
    /** This field will be invalid unless the Dual Band Simultaneous (DBS) feature is enabled. */
    /** the DBS policy manager indicates the preferred number of receive streams. */
    A_UINT32 preferred_rx_streams;
    A_UINT32 he_ops; /* refer to WMI_HEOPS_xxx macros */
    A_UINT32 cac_duration_ms;  /* in milliseconds */
    A_UINT32 regdomain;
    /* min data rate to be used in BSS in Mbps */
    A_UINT32 min_data_rate;

    /** @mbss_capability_flags: Bitmap of vdev's MBSS/EMA capability.
     *  Capabilities are combination of below flags:
     *     VDEV_FLAGS_NON_MBSSID_AP
     *     VDEV_FLAGS_TRANSMIT_AP
     *     VDEV_FLAGS_NON_TRANSMIT_AP
     *     VDEV_FLAGS_EMA_MODE
     *     VDEV_FLAGS_SCAN_MODE_VAP - if the vdev is used for scan radio
     */
    A_UINT32 mbss_capability_flags;

    /** vdevid of transmitting VAP (mbssid case). Ignored for non mbssid case */
    A_UINT32 vdevid_trans;
    A_UINT32 eht_ops;
    A_UINT32 puncture_20mhz_bitmap; /* each bit indicates one 20 MHz BW punctured */

    A_UINT32 mbssid_multi_group_flag; /* Flag to identify whether multi group mbssid is supported */
    A_UINT32 mbssid_multi_group_id; /* Group id of current vdev only valid when multi group mbssid is supported */

/* The TLVs follows this structure:
 *     wmi_channel chan; <-- WMI channel
 *     wmi_p2p_noa_descriptor  noa_descriptors[]; <-- actual p2p NOA descriptor from scan entry
 *     wmi_vdev_start_mlo_params  mlo_params[0,1]; <-- vdev start MLO parameters
 *         optional TLV, only present for MLO vdevs,
 *         If the vdev is non-MLO the array length should be 0.
 *     wmi_partner_link_info link_info[]; <-- partner link info
 *         optional TLV, only present for MLO vdevs,
 *         If the vdev is non-MLO the array length should be 0.
 */
} wmi_vdev_start_request_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_delete_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_delete_cmd_fixed_param;

enum WMI_VDEV_UP_FLAGS {
    /** EMA_MBSSID_AP
     * Valid only for STA VDEV.
     * This flag will be set when STA connected MBSSID AP is EMA capable.
     * EMA - Enhanced Multiple BSS Advertisemet.
     */
    WMI_VDEV_UP_FLAG_EMA_MBSSID_AP = 0x00000001,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_up_cmdid_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** aid (assoc id) received in association response for STA VDEV  */
    A_UINT32 vdev_assoc_id;
    /** bssid of the BSS the VDEV is joining  */
    wmi_mac_addr vdev_bssid;
    /** bssid of transmitted AP (mbssid case) */
    wmi_mac_addr trans_bssid;
    /** the profile index of the connected non-trans ap (mbssid case). 0 means invalid */
    A_UINT32 profile_idx;
    /** the total profile numbers of non-trans aps (mbssid case). 0 means legacy AP */
    A_UINT32 profile_num;
    /** flags - this is a bitwise-or combination of WMI_VDEV_UP_FLAGS values */
    A_UINT32 flags;
} wmi_vdev_up_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_stop_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_stop_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_down_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_down_cmd_fixed_param;

typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_standby_response_cmd;

typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_resume_response_cmd;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_param_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** parameter id   */
    A_UINT32 param_id;
    /** parameter value */
    A_UINT32 param_value;
} wmi_vdev_set_param_cmd_fixed_param;

typedef struct {
    A_UINT32 key_seq_counter_l;
    A_UINT32 key_seq_counter_h;
} wmi_key_seq_counter;

#define  WMI_CIPHER_NONE         0x0  /* clear key */
#define  WMI_CIPHER_WEP          0x1
#define  WMI_CIPHER_TKIP         0x2
#define  WMI_CIPHER_AES_OCB      0x3
#define  WMI_CIPHER_AES_CCM      0x4
#define  WMI_CIPHER_WAPI         0x5
#define  WMI_CIPHER_CKIP         0x6
#define  WMI_CIPHER_AES_CMAC     0x7
#define  WMI_CIPHER_ANY          0x8
#define  WMI_CIPHER_AES_GCM      0x9
#define  WMI_CIPHER_AES_GMAC     0xa
#define  WMI_CIPHER_WAPI_GCM_SM4 0xb
#define  WMI_CIPHER_BIP_CMAC_128 0xc
#define  WMI_CIPHER_BIP_CMAC_256 0xd
#define  WMI_CIPHER_BIP_GMAC_128 0xe
#define  WMI_CIPHER_BIP_GMAC_256 0xf

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_install_key_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** MAC address used for installing   */
    wmi_mac_addr peer_macaddr;
    /** key index */
    A_UINT32 key_ix;
    /** key flags */
    A_UINT32 key_flags;
    /** key cipher, defined above */
    A_UINT32 key_cipher;
    /** key rsc counter */
    wmi_key_seq_counter key_rsc_counter;
    /** global key rsc counter */
    wmi_key_seq_counter key_global_rsc_counter;
    /** global key tsc counter */
    wmi_key_seq_counter key_tsc_counter;
    /** WAPI key rsc counter */
    A_UINT8 wpi_key_rsc_counter[16];
    /** WAPI key tsc counter */
    A_UINT8 wpi_key_tsc_counter[16];
    /** key length */
    A_UINT32 key_len;
    /** key tx mic length */
    A_UINT32 key_txmic_len;
    /** key rx mic length */
    A_UINT32 key_rxmic_len;
    /** specifies if the group_key_ix is valid, filled by the sender */
    A_UINT32 is_group_key_ix_valid;
    /** Multi group key ID */
    A_UINT32 group_key_ix;
/*
 * Following this struct are this TLV.
 *     A_UINT8  key_data[]; <-- actual key data; contains key followed by tx mic followed by rx mic
 */
} wmi_vdev_install_key_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_ltf_key_seed_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** MAC address used for deriving */
    wmi_mac_addr peer_macaddr;
    /** authentication mode */
    A_UINT32 rsn_authmode;
    /** LTF key seed length */
    A_UINT32 key_seed_len;
/*
 * Following this struct are this TLV.
 *     A_UINT8  key_seed[key_seed_len]; <-- actual LTF key seed;
 */
} wmi_vdev_set_ltf_key_seed_cmd_fixed_param;

/** Preamble types to be used with VDEV fixed rate configuration */
typedef enum {
    WMI_RATE_PREAMBLE_OFDM,
    WMI_RATE_PREAMBLE_CCK,
    WMI_RATE_PREAMBLE_HT,
    WMI_RATE_PREAMBLE_VHT,
    WMI_RATE_PREAMBLE_HE,
    WMI_RATE_PREAMBLE_EHT,
} WMI_RATE_PREAMBLE;

/** Value to disable fixed rate setting */
#define WMI_FIXED_RATE_NONE    (0xff)

#define WMI_GI_400_NS 1
#define WMI_GI_800_NS 0
#define WMI_GI_1600_NS 2
#define WMI_GI_3200_NS 3

/** OCE(Optimized Connectivity_Experience) Feature flags */
#define WMI_VDEV_OCE_PROBE_REQUEST_RATE_FEATURE_BITMAP                 0x1
#define WMI_VDEV_OCE_PROBE_RESPONSE_RATE_FEATURE_BITMAP                0x2
#define WMI_VDEV_OCE_BEACON_RATE_FEATURE_BITMAP                        0x4
#define WMI_VDEV_OCE_PROBE_REQUEST_DEFERRAL_FEATURE_BITMAP             0x8
#define WMI_VDEV_OCE_FILS_DISCOVERY_FRAME_FEATURE_BITMAP               0x10
#define WMI_VDEV_OCE_ESP_FEATURE_BITMAP                                0x20
#define WMI_VDEV_OCE_REASSOC_REJECT_FEATURE_BITMAP                     0x40

/** 6 GHZ params **/
/* Control to enable/disable beacon tx in non-HT duplicate */
#define WMI_VDEV_6GHZ_BITMAP_NON_HT_DUPLICATE_BEACON                    0x1
/* Control to enable/disable broadcast probe response tx in non-HT duplicate */
#define WMI_VDEV_6GHZ_BITMAP_NON_HT_DUPLICATE_BCAST_PROBE_RSP           0x2
/* Control to enable/disable FILS discovery frame tx in non-HT duplicate */
#define WMI_VDEV_6GHZ_BITMAP_NON_HT_DUPLICATE_FD_FRAME                  0x4
/* Control to enable/disable periodic FILS discovery frame transmission */
#define WMI_VDEV_6GHZ_BITMAP_FD_FRAME                                   0x8  /* deprecated */
/* Control to enable/disable periodic broadcast probe response transmission */
#define WMI_VDEV_6GHZ_BITMAP_BCAST_PROBE_RSP                            0x10 /* deprecated */

/** ROAM_11KV control params */

/* WMI_VDEV_ROAM_11KV_CTRL_DISABLE_FW_TRIGGER_ROAMING:
 * Disable all FW-triggered roaming (e.g. low RSSI/final bmiss/BTM/PER)
 * while still allowing host-invoked roaming.
 */
#define WMI_VDEV_ROAM_11KV_CTRL_DISABLE_FW_TRIGGER_ROAMING              0x1
/* WMI_VDEV_ROAM_11KV_CTRL_KEEP_CONN_RECV_BTM_REQ:
 * DUT do not scan or roaming when receiving BTM req frame
 */
#define WMI_VDEV_ROAM_11KV_CTRL_KEEP_CONN_RECV_BTM_REQ                  0x2
/* WMI_VDEV_ROAM_11KV_CTRL_DONOT_SEND_DISASSOC_ON_BTM_DI_SET:
 * DUT do not send disasoc frame to AP when receiving BTM req with
 * Disassoc Imminent bit set to 1.
 */
#define WMI_VDEV_ROAM_11KV_CTRL_DONOT_SEND_DISASSOC_ON_BTM_DI_SET       0x4


/** NAN vdev config Feature flags */
#define WMI_VDEV_NAN_ALLOW_DW_CONFIG_CHANGE_IN_SYNC_ROLE                0x1


/** the definition of different VDEV parameters */
typedef enum {
    /** RTS Threshold */
    WMI_VDEV_PARAM_RTS_THRESHOLD = 0x1,
    /** Fragmentation threshold */
    WMI_VDEV_PARAM_FRAGMENTATION_THRESHOLD,                   /* 0x2 */
    /** beacon interval in TUs */
    WMI_VDEV_PARAM_BEACON_INTERVAL,                           /* 0x3 */
    /** Listen interval in TUs */
    WMI_VDEV_PARAM_LISTEN_INTERVAL,                           /* 0x4 */
    /** multicast rate in Mbps */
    WMI_VDEV_PARAM_MULTICAST_RATE,                            /* 0x5 */
    /** management frame rate in Mbps */
    WMI_VDEV_PARAM_MGMT_TX_RATE,                              /* 0x6 */
    /** slot time (long vs short) */
    WMI_VDEV_PARAM_SLOT_TIME,                                 /* 0x7 */
    /** preamble (long vs short) */
    WMI_VDEV_PARAM_PREAMBLE,                                  /* 0x8 */
    /** SWBA time (time before tbtt in msec) */
    WMI_VDEV_PARAM_SWBA_TIME,                                 /* 0x9 */
    /** time period for updating VDEV stats */
    WMI_VDEV_STATS_UPDATE_PERIOD,                             /* 0xa */
    /** age out time in msec for frames queued for station in power save*/
    WMI_VDEV_PWRSAVE_AGEOUT_TIME,                             /* 0xb */
    /** Host SWBA interval (time in msec before tbtt for SWBA event generation) */
    WMI_VDEV_HOST_SWBA_INTERVAL,                              /* 0xc */
    /** DTIM period (specified in units of num beacon intervals) */
    WMI_VDEV_PARAM_DTIM_PERIOD,                               /* 0xd */
    /** scheduler air time limit for this VDEV. used by off chan scheduler  */
    WMI_VDEV_OC_SCHEDULER_AIR_TIME_LIMIT,                     /* 0xe */
    /** enable/disable WDS for this VDEV  */
    WMI_VDEV_PARAM_WDS,                                       /* 0xf */
    /** ATIM Window */
    WMI_VDEV_PARAM_ATIM_WINDOW,                               /* 0x10 */
    /** BMISS max */
    WMI_VDEV_PARAM_BMISS_COUNT_MAX,                           /* 0x11 */
    /** BMISS first time */
    WMI_VDEV_PARAM_BMISS_FIRST_BCNT,                          /* 0x12 */
    /** BMISS final time */
    WMI_VDEV_PARAM_BMISS_FINAL_BCNT,                          /* 0x13 */
    /** WMM enables/disabled */
    WMI_VDEV_PARAM_FEATURE_WMM,                               /* 0x14 */
    /** Channel width */
    WMI_VDEV_PARAM_CHWIDTH,                                   /* 0x15 */
    /** Channel Offset */
    WMI_VDEV_PARAM_CHEXTOFFSET,                               /* 0x16 */
    /** Disable HT Protection */
    WMI_VDEV_PARAM_DISABLE_HTPROTECTION,                      /* 0x17 */
    /** Quick STA Kickout */
    WMI_VDEV_PARAM_STA_QUICKKICKOUT,                          /* 0x18 */
    /** Rate to be used with Management frames */
    WMI_VDEV_PARAM_MGMT_RATE,                                 /* 0x19 */
    /** Protection Mode */
    WMI_VDEV_PARAM_PROTECTION_MODE,                           /* 0x1a */
    /** Fixed rate setting
     * The top nibble is used to select which format to use for encoding
     * the rate specification: 0xVXXXXXXX
     * If V == 0b0000: format is same as before: 0x000000RR
     * If V == 0b0001: format is: 0x1000RRRR.
     *                 This will be output of WMI_ASSEMBLE_RATECODE_V1
     * The host shall use the new V1 format (and set V = 0x1) if the target
     * indicates 802.11ax support via the WMI_SERVICE_11AX flag, or if the
     * system is configured with Nss > 4 (either at compile time within the
     * host driver, or through WMI_SERVICE_READY PHY capabilities provided
     * by the target).
     */
    WMI_VDEV_PARAM_FIXED_RATE,                                /* 0x1b */
    /**
     * 11AX: GI =
     *     WMI_GI_400_NS, WMI_GI_800_NS, WMI_GI_1600_NS, or WMI_GI_3200_NS
     * 11N: SGI=WMI_GI_400_NS
     */
    WMI_VDEV_PARAM_SGI,                                       /* 0x1c */
    /** Enable LDPC */
    WMI_VDEV_PARAM_LDPC,                                      /* 0x1d */
    /** Enable Tx STBC */
    WMI_VDEV_PARAM_TX_STBC,                                   /* 0x1e */
    /** Enable Rx STBC */
    WMI_VDEV_PARAM_RX_STBC,                                   /* 0x1f */
    /** Intra BSS forwarding  */
    WMI_VDEV_PARAM_INTRA_BSS_FWD,                             /* 0x20 */
    /** Setting Default xmit key for Vdev */
    WMI_VDEV_PARAM_DEF_KEYID,                                 /* 0x21 */
    /** NSS width */
    WMI_VDEV_PARAM_NSS,                                       /* 0x22 */
    /** Set the custom rate for the broadcast data frames */
    WMI_VDEV_PARAM_BCAST_DATA_RATE,                           /* 0x23 */
    /** Set the custom rate (rate-code) for multicast data frames */
    WMI_VDEV_PARAM_MCAST_DATA_RATE,                           /* 0x24 */
    /** Tx multicast packet indicate Enable/Disable */
    WMI_VDEV_PARAM_MCAST_INDICATE,                            /* 0x25 */
    /** Tx DHCP packet indicate Enable/Disable */
    WMI_VDEV_PARAM_DHCP_INDICATE,                             /* 0x26 */
    /** Enable host inspection of Tx unicast packet to unknown destination */
    WMI_VDEV_PARAM_UNKNOWN_DEST_INDICATE,                     /* 0x27 */

    /* The minimum amount of time AP begins to consider STA inactive */
    WMI_VDEV_PARAM_AP_KEEPALIVE_MIN_IDLE_INACTIVE_TIME_SECS,  /* 0x28 */

    /* An associated STA is considered inactive when there is no recent TX/RX
     * activity and no downlink frames are buffered for it. Once a STA exceeds
     * the maximum idle inactive time, the AP will send an 802.11 data-null as
     * a keep alive to verify the STA is still associated. If the STA does ACK
     * the data-null, or if the data-null is buffered and the STA does not
     * retrieve it, the STA will be considered unresponsive (see
     * WMI_VDEV_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS). */
    WMI_VDEV_PARAM_AP_KEEPALIVE_MAX_IDLE_INACTIVE_TIME_SECS,  /* 0x29 */

    /* An associated STA is considered unresponsive if there is no recent
     * TX/RX activity and downlink frames are buffered for it. Once a STA
     * exceeds the maximum unresponsive time, the AP will send a
     * WMI_STA_KICKOUT event to the host so the STA can be deleted. */
    WMI_VDEV_PARAM_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS,   /* 0x2a */

    /* Enable NAWDS : MCAST INSPECT Enable, NAWDS Flag set */
    WMI_VDEV_PARAM_AP_ENABLE_NAWDS,                           /* 0x2b */
    /** Enable/Disable RTS-CTS */
    WMI_VDEV_PARAM_ENABLE_RTSCTS,                             /* 0x2c */
    /* Enable TXBFee/er */
    WMI_VDEV_PARAM_TXBF,                                      /* 0x2d */

    /**Set packet power save */
    WMI_VDEV_PARAM_PACKET_POWERSAVE,                          /* 0x2e */

    /**Drops un-encrypted packets if any received in an encryted connection
     * otherwise forwards to host
     */
    WMI_VDEV_PARAM_DROP_UNENCRY,                              /* 0x2f */

    /*
     * Set TX encap type.
     *
     * enum wmi_pkt_type is to be used as the parameter
     * specifying the encap type.
     */
    WMI_VDEV_PARAM_TX_ENCAP_TYPE,                             /* 0x30 */

    /*
     * Try to detect stations that woke-up and exited power save but did not
     * successfully transmit data-null with PM=0 to AP. When this happens,
     * STA and AP power save state are out-of-sync. Use buffered but
     * undelivered MSDU to the STA as a hint that the STA is really awake
     * and expecting normal ASAP delivery, rather than retrieving BU with
     * PS-Poll, U-APSD trigger, etc.
     *
     * 0 disables out-of-sync detection. Maximum time is 255 seconds.
     */
    WMI_VDEV_PARAM_AP_DETECT_OUT_OF_SYNC_SLEEPING_STA_TIME_SECS,  /* 0x31 */

    /* Enable/Disable early rx dynamic adjust feature.
     * Early-rx dynamic adjust is a advance power save feature.
     * Early-rx is a wakeup duration before exact TBTT,which is deemed necessary to provide a cushion for various
     * timing discrepancies in the system.
     * In current code branch, the duration is set to a very conservative fix value to make sure the drift impact is minimum.
     * The fix early-tx will result in the unnessary power consume, so a dynamic early-rx adjust algorithm can be designed
     * properly to minimum the power consume.*/
    WMI_VDEV_PARAM_EARLY_RX_ADJUST_ENABLE,                    /* 0x32 */

    /* set target bmiss number per sample cycle if bmiss adjust was chosen.
     * In this adjust policy,early-rx is adjusted by comparing the current bmiss rate to target bmiss rate
     * which can be set by user through WMI command.
     */
    WMI_VDEV_PARAM_EARLY_RX_TGT_BMISS_NUM,                    /* 0x33 */

    /* set sample cycle(in the unit of beacon interval) if bmiss adjust was chosen */
    WMI_VDEV_PARAM_EARLY_RX_BMISS_SAMPLE_CYCLE,               /* 0x34 */

    /* set slop_step */
    WMI_VDEV_PARAM_EARLY_RX_SLOP_STEP,                        /* 0x35 */

    /* set init slop */
    WMI_VDEV_PARAM_EARLY_RX_INIT_SLOP,                        /* 0x36 */

    /* pause adjust enable/disable */
    WMI_VDEV_PARAM_EARLY_RX_ADJUST_PAUSE,                     /* 0x37 */


    /* Set channel pwr limit value of the vdev the minimal value of all
     * vdevs operating on this channel will be set as channel tx power
     * limit, which is used to configure ratearray
     */
    WMI_VDEV_PARAM_TX_PWRLIMIT,                               /* 0x38 */

    /* set the count of snr value for calculation in snr monitor */
    WMI_VDEV_PARAM_SNR_NUM_FOR_CAL,                           /* 0x39 */

    /** Roaming offload */
    WMI_VDEV_PARAM_ROAM_FW_OFFLOAD,                           /* 0x3a */

    /** Enable Leader request RX functionality for RMC */
    WMI_VDEV_PARAM_ENABLE_RMC,                                /* 0x3b */

   /* IBSS does not have deauth/disassoc, vdev has to detect peer gone event
     * by himself. If the beacon lost time exceed this threshold, the peer is
     * thought to be gone. */
    WMI_VDEV_PARAM_IBSS_MAX_BCN_LOST_MS,                      /* 0x3c */

    /** max rate in kpbs, transmit rate can't go beyond it */
    WMI_VDEV_PARAM_MAX_RATE,                                  /* 0x3d */

    /* enable/disable drift sample. 0: disable; 1: clk_drift; 2: ap_drift; 3 both clk and ap drift*/
    WMI_VDEV_PARAM_EARLY_RX_DRIFT_SAMPLE,                     /* 0x3e */

    /* set Tx failure count threshold for the vdev */
    WMI_VDEV_PARAM_SET_IBSS_TX_FAIL_CNT_THR,                  /* 0x3f */

    /* set ebt resync timeout value, in the unit of TU */
    WMI_VDEV_PARAM_EBT_RESYNC_TIMEOUT,                        /* 0x40 */

    /* Enable Aggregation State Trigger Event */
    WMI_VDEV_PARAM_AGGR_TRIG_EVENT_ENABLE,                    /* 0x41 */

    /* This parameter indicates whether IBSS station can enter into power save
    * mode by sending Null frame (with PM=1). When not allowed, IBSS station has to stay
    * awake all the time and should never set PM=1 in its transmitted frames.
    * This parameter is meaningful/valid only when WMI_VDEV_PARAM_ATIM_WINDOW_LENGTH
    * is non-zero. */
    WMI_VDEV_PARAM_IS_IBSS_POWER_SAVE_ALLOWED,                /* 0x42 */

    /* This parameter indicates if this station can enter into power collapse
    * for the remaining beacon interval after the ATIM window.
    * This parameter is meaningful/valid only when WMI_VDEV_PARAM_IS_IBSS_POWER_SAVE_ALLOWED
    * is set to TRUE. */
    WMI_VDEV_PARAM_IS_POWER_COLLAPSE_ALLOWED,                 /* 0x43 */

    /* This parameter indicates whether IBSS station exit power save mode and
    * enter power active state (by sending Null frame with PM=0 in the immediate ATIM Window)
    * whenever there is a TX/RX activity. */
    WMI_VDEV_PARAM_IS_AWAKE_ON_TXRX_ENABLED,                  /* 0x44 */

    /* If Awake on TX/RX activity is enabled, this parameter indicates
    * the data inactivity time in number of beacon intervals after which
    * IBSS station reenters power save by sending Null frame with PM=1. */
    WMI_VDEV_PARAM_INACTIVITY_CNT,                            /* 0x45 */

    /* Inactivity time in msec after which TX Service Period (SP) is
    * terminated by sending a Qos Null frame with EOSP.
    * If value is 0, TX SP is terminated with the last buffered packet itself
    * instead of waiting for the inactivity timeout. */
    WMI_VDEV_PARAM_TXSP_END_INACTIVITY_TIME_MS,               /* 0x46 */

    /** DTIM policy */
    WMI_VDEV_PARAM_DTIM_POLICY,                               /* 0x47 */

    /* When IBSS network is initialized, PS-supporting device
    * does not enter protocol sleep state during first
    * WMI_VDEV_PARAM_IBSS_PS_WARMUP_TIME_SECS seconds. */
    WMI_VDEV_PARAM_IBSS_PS_WARMUP_TIME_SECS,                  /* 0x48 */

    /* Enable/Disable 1 RX chain usage during the ATIM window */
    WMI_VDEV_PARAM_IBSS_PS_1RX_CHAIN_IN_ATIM_WINDOW_ENABLE,   /* 0x49 */

    /* RX Leak window is the time driver waits before shutting down
     * the radio or switching the channel and after receiving an ACK
     * for a data frame with PM bit set) */
    WMI_VDEV_PARAM_RX_LEAK_WINDOW,                            /* 0x4a */

    /** Averaging factor(16 bit value) is used in the calculations to
     * perform averaging of different link level statistics like average
     * beacon spread or average number of frames leaked */
    WMI_VDEV_PARAM_STATS_AVG_FACTOR,                          /* 0x4b */

    /** disconnect threshold, once the consecutive error for specific peer
     * exceed this threshold, FW will send kickout event to host */
    WMI_VDEV_PARAM_DISCONNECT_TH,                             /* 0x4c */

    /** The rate_code of RTS_CTS changed by host. Now FW can support
     * more non-HT rates rather than 1Mbps or 6Mbps */
    WMI_VDEV_PARAM_RTSCTS_RATE,                               /* 0x4d */

    /** This parameter indicates whether using a long duration RTS-CTS
     * protection when a SAP goes off channel in MCC mode */
    WMI_VDEV_PARAM_MCC_RTSCTS_PROTECTION_ENABLE,              /* 0x4e */

    /** This parameter indicates whether using a broadcast probe response
     * to increase the detectability of SAP in MCC mode */
    WMI_VDEV_PARAM_MCC_BROADCAST_PROBE_ENABLE,                /* 0x4f */

    /** This parameter indicates the power backoff in percentage
     * currently supports 100%, 50%, 25%, 12.5%, and minimum
     * Host passes 0, 1, 2, 3, 4 to Firmware
     * 0 --> 100% --> no changes, 1 --> 50% --> -3dB,
     * 2 --> 25% --> -6dB, 3 --> 12.5% --> -9dB, 4 --> minimum --> -32dB
     */
    WMI_VDEV_PARAM_TXPOWER_SCALE,                             /* 0x50 */

    /** TX power backoff in dB: tx power -= param value
     * Host passes values(DB) to Halphy, Halphy reduces the power table
     * by the values.  Safety check will happen in Halphy.
     */
    WMI_VDEV_PARAM_TXPOWER_SCALE_DECR_DB,                     /* 0x51 */

    /** Multicast to Unicast conversion setting */
    WMI_VDEV_PARAM_MCAST2UCAST_SET,                           /* 0x52 */

    /** Total number of HW retries */
    WMI_VDEV_PARAM_RC_NUM_RETRIES,                            /* 0x53 */

    /** Max tx percentage for cabq */
    WMI_VDEV_PARAM_CABQ_MAXDUR,                               /* 0x54 */

    /** MFPTEST settings */
    WMI_VDEV_PARAM_MFPTEST_SET,                               /* 0x55 */

    /** RTS Fixed rate setting */
    WMI_VDEV_PARAM_RTS_FIXED_RATE,                            /* 0x56 */

    /** VHT SGI MASK */
    WMI_VDEV_PARAM_VHT_SGIMASK,                               /* 0x57 */

    /** VHT80 Auto Rate MASK */
    WMI_VDEV_PARAM_VHT80_RATEMASK,                            /* 0x58 */

    /** set Proxy STA features for this vap */
    WMI_VDEV_PARAM_PROXY_STA,                                 /* 0x59 */

    /** set virtual cell mode - enable/disable */
    WMI_VDEV_PARAM_VIRTUAL_CELL_MODE,                         /* 0x5a */

    /** Set receive packet type */
    WMI_VDEV_PARAM_RX_DECAP_TYPE,                             /* 0x5b */

    /** Set ratemask with specific Bandwidth and NSS */
    WMI_VDEV_PARAM_BW_NSS_RATEMASK,                           /* 0x5c */

    /** Set SENSOR Support */
    WMI_VDEV_PARAM_SENSOR_AP,                                 /* 0x5d */

    /** Set beacon rate */
    WMI_VDEV_PARAM_BEACON_RATE,                               /* 0x5e */

    /** Enable CTS to self for DTIM beacon */
    WMI_VDEV_PARAM_DTIM_ENABLE_CTS,                           /* 0x5f */

    /** Disable station kickout at Vap level */
    WMI_VDEV_PARAM_STA_KICKOUT,                               /* 0x60 */

    /* VDEV capabilities */
    WMI_VDEV_PARAM_CAPABILITIES, /* see capabilities defs below */ /* 0x61 */

    /**
     * Increment TSF in micro seconds to avoid beacon collision on mesh VAP.
     * The host must ensure that either no other vdevs share the TSF with
     * this vdev, or else that it is acceptable to apply this TSF adjustment
     * to all vdevs sharing the TSF.
     */
    WMI_VDEV_PARAM_TSF_INCREMENT,                             /* 0x62 */

    /** Disable/Enable AMPDU of vdev per AC:
     * bit | AC
     * --------
     *  0  | VO
     *  1  | VI
     *  2  | BE
     *  3  | BK
     * A value of 0 in a given bit disables A-MPDU aggregation for
     * that AC; a value of 1 enables A-MPDU aggregation
     */
    WMI_VDEV_PARAM_AMPDU_PER_AC,                              /* 0x63 */

    /**
     * Vdev level rx filter of from-ds / to-ds / no-ds / ta / ra frames.
     * Used mainly for mesh-vap.
     * The parameter value delivered with the RX_FILTER vdev param contains
     * a bit-or mask of wmi_vdev_param_filter enum values.
     */
    WMI_VDEV_PARAM_RX_FILTER,                                 /* 0x64 */

    /** vdev-specific mgmt tx power in dBm units (signed integer value) */
    WMI_VDEV_PARAM_MGMT_TX_POWER,                             /* 0x65 */

    /** Vdev level non aggregration/11g sw retry threshold. 0-disable, min:0, max:31, default:15 */
    WMI_VDEV_PARAM_NON_AGG_SW_RETRY_TH,                       /* 0x66 */
    /** Vdev level aggregration sw retry threshold. 0-disable, min:0, max:31, default:15 */
    WMI_VDEV_PARAM_AGG_SW_RETRY_TH,                           /* 0x67 */

    /** disable dynamic bw RTS **/
    WMI_VDEV_PARAM_DISABLE_DYN_BW_RTS,                        /* 0x68 */

    /** per ssid (vdev) based ATF strict/fair scheduling policy
     *  param values are WMI_ATF_SSID_FAIR_SCHED, WMI_ATF_SSID_STRICT_SCHED,
     *  or WMI_ATF_SSID_FAIR_SCHED_WITH_UB
     */
    WMI_VDEV_PARAM_ATF_SSID_SCHED_POLICY,                     /* 0x69 */

    /** Enable or disable Dual carrier modulation
     * valid values: 0-Disable DCM, 1-Enable DCM.
     */
    WMI_VDEV_PARAM_HE_DCM,                                    /* 0x6a */

    /** Enable or disable Extended range
     * valid values: 0-Disable ER, 1-Enable ER.
     */
    WMI_VDEV_PARAM_HE_RANGE_EXT,                              /* 0x6b */

    /* enable or disable BCAST probe response feature */
    WMI_VDEV_PARAM_ENABLE_BCAST_PROBE_RESPONSE,               /* 0x6c */

    /* param to specify probe request Tx delay during Fast Initial Link Setup */
    WMI_VDEV_PARAM_FILS_MAX_CHANNEL_GUARD_TIME, /* units = milliseconds */ /* 0x6d */

    /* enable or disable NOA for P2P GO */
    WMI_VDEV_PARAM_DISABLE_NOA_P2P_GO,                        /* 0x6e */

    /** Per band user management frame fix rate setting
     *  BIT 31: enable (1) or disable (0) mgmt fix rate for 5G
     *  BIT 30: enable (1) or disable (0) mgmt fix rate for 2G
     *
     *  BIT 23: 11ax (1) or legacy (0) rate code
     *  BITS [22..12]: rate code for 5G
     *
     *  BIT 11: 11ax (1) or legacy (0) rate code
     *  BITS [10..0]: rate code for 2G
     */
    WMI_VDEV_PARAM_PER_BAND_MGMT_TX_RATE,                     /* 0x6f */
    /* This should be called before WMI_VDEV_PARAM_TXBF */
    WMI_VDEV_PARAM_11AX_TXBF,                                 /* 0x70 */

    /** This parameter indicates whether VDEV is SMPS intolerant.
     * I.e. - SMPS action frame cannot be transmitted by the VDEV to
     * dynamically change the RX NSS.
     *
     * valid values: 1 - VDEV is SMPS intolerant, 0 - VDEV is SMPS tolerant
     */
    WMI_VDEV_PARAM_SMPS_INTOLERANT,                           /* 0x71 */

    /** specify probe request Tx delay for scans triggered on this VDEV */
    WMI_VDEV_PARAM_PROBE_DELAY, /* units = milliseconds */    /* 0x72 */

    /** specify the time gap between each set of probe request transmissions.
     * The number of probe requests in each set depends on the ssid_list and
     * bssid_list in the scan request.
     * This parameter will be applied only for scans triggered on this VDEV.
     */
    WMI_VDEV_PARAM_REPEAT_PROBE_TIME, /* units = milliseconds */ /* 0x73 */

    /** specify the HE LTF setting that should be used for fixed rate
     * transmissions.
     *
     * Expects values of WMI_HE_LTF_DEFAULT, WMI_HE_LTF_1X, WMI_HE_LTF_2X,
     * or WMI_HE_LTF_4X.
     */
    WMI_VDEV_PARAM_HE_LTF,                                    /* 0x74 */

    /** VDEV parameter to configure the number of TX chains to use for
     *  a/b/g rates.
     *  bit 0~15  : 11b mode TX chain number.
     *  bit 16~31 : 11ag mode TX chain number.
     *
     *  valid values:
     *      Should not exceed the maximum number of supported TX Chains
     *      0 - Used to reset the vote. Acts as Don't Care
     */
    WMI_VDEV_PARAM_ABG_MODE_TX_CHAIN_NUM,                     /* 0x75 */

    /**
     * Enable or disable the multi group key feature on this VDEV.
     * used for NAN APP and VLAN Tagging
     */
    WMI_VDEV_PARAM_ENABLE_MULTI_GROUP_KEY,                    /* 0x76 */

   /*
    * Specify the total number of multi group key on this VDEV.
    */
    WMI_VDEV_PARAM_NUM_GROUP_KEYS,                            /* 0x77 */

    /** VDEV parameter to enable or disable various OCE features */
    WMI_VDEV_PARAM_ENABLE_DISABLE_OCE_FEATURES,              /* 0x78 */

    /*
     * Set/Clear 3 least-significant bits to
     * Disable or Enable rate drop down for MGMT, SU data and MU data pkts
     *
     * bit 0 -> If set MGMT Pkt rate drop down is enabled else disabled
     * bit 1 -> If set SU data Pkt rate drop down is enabled else disabled
     * bit 2 -> If set MU data Pkt rate drop down is enabled else disabled
     * bits 31:3 -> Reserved bits. should be set to zero.
     */
    WMI_VDEV_PARAM_RATE_DROPDOWN_BMAP,                       /* 0x79 */

    /** VDEV parameter to config modulated DTIM count */
    WMI_VDEV_PARAM_MODDTIM_CNT,                              /* 0x7a */

    /**
     * VDEV parameter to config max listen interval,
     * when modulated DTIM is enabled.
     * Units are 100TU.
     */
    WMI_VDEV_PARAM_MAX_LI_OF_MODDTIM,                        /* 0x7b */

    /** VDEV parameter to config dynamic DTIM count */
    WMI_VDEV_PARAM_DYNDTIM_CNT,                              /* 0x7c */

    /** VDEV parameter to enable or disable RTT responder role
      * valid values: 0-Disable responder role 1-Enable responder role
      */
    WMI_VDEV_PARAM_ENABLE_DISABLE_RTT_RESPONDER_ROLE,        /* 0x7d */

    /** Parameter to configure BA mode.
     * Valid values: 0- Auto mode,
     *               1- Manual mode(addba req not sent).
     *               2- buffer size 64
     *               3- buffer size 256
     *               4- buffer size 128 // placeholder, not valid
     *               5- buffer size 512
     *               6- buffer size 1024
     */
    WMI_VDEV_PARAM_BA_MODE,                                 /* 0x7e */

    /**
     * VDEV parameter to force to set modulate DTIM count as listen interval,
     * no matter whether WoW is enabled
     * Default: Disabled.
     * Valid values: 0- Disabled,
     *               1- Enabled.
     */
    WMI_VDEV_PARAM_FORCED_MODDTIM_ENABLE,                   /* 0x7f */

    /** specify the setting that are valid for auto rate transmissions.
     * bits 7:0 (LTF): When bitmask is set, then corresponding LTF value is
     *                 used for auto rate.
     *     BIT0   = 1 (WMI_HE_LTF_1X or WMI_EHT_LTF_1X depending on
     *                 current rate’s preamble type HE or EHT)
     *     BIT1   = 1 (WMI_HE_LTF_2X or WMI_EHT_LTF_2X)
     *     BIT2   = 1 (WMI_HE_LTF_4X or WMI_EHT_LTF_4X)
     *     BIT3-7 = Reserved bits.
     * bits 15:8 (SGI): When bitmask is set, then corresponding SGI value is
     *                 used for auto rate.
     *     BIT8     = 1 (400 NS)
     *     BIT9     = 1 (800 NS)
     *     BIT10    = 1 (1600 NS)
     *     BIT11    = 1 (3200 NS)
     *     BIT12-15 = Reserved bits.
     * bits 31:16: Reserved bits. should be set to zero.
     */
    WMI_VDEV_PARAM_AUTORATE_MISC_CFG,                       /* 0x80 */

    /** VDEV parameter to enable or disable RTT initiator mac address
      * randomization.
      * Default: Disabled.
      * valid values: 0-Disable random mac 1-Enable random mac
      */
    WMI_VDEV_PARAM_ENABLE_DISABLE_RTT_INITIATOR_RANDOM_MAC, /* 0x81 */

    /**
     * For each AC, configure how many tx retries to send without RTS
     * before enabling RTS
     *  bits 0:7    :BE
     *  bits 8:15   :BK
     *  bits 16:23  :VI
     *  bits 24:31  :VO
     * A value of 0 in specific AC means default configuration for that AC.
     */
    WMI_VDEV_PARAM_TX_RETRIES_BEFORE_RTS_PER_AC,           /* 0x82 */

    /**
     * Parameter to enable/disable AMSDU aggregation size auto-selection logic.
     * We have logic where AMSDU aggregation size is dynamically decided
     * based on MCS. That logic is enabled by default.
     * For certain tests, we need a method to disable this optimization,
     * and base AMSDU size only on the peer's capability rather than our logic.
     * A value of 0 means disable internal optimization,
     * 1 means enable internal optimzation.
     */
    WMI_VDEV_PARAM_AMSDU_AGGREGATION_SIZE_OPTIMIZATION,    /* 0x83 */

    /**
     * In RAW mode, FW will not know whether the encryption is enabled
     * on this vdev or not.
     * Because of this, FW will not program the right info into the
     * RawNwifi TLV resulting in the connection failure in RAW mode.
     * So to program the right info, FW should know whether the security
     * is enabled on this VDEV.
     * Host will send this VDEV param command (With Value = 1) in case of
     * RAW secure mode.
     */
    WMI_VDEV_PARAM_RAW_IS_ENCRYPTED,                       /* 0x84 */

    /**
     * Dynamically enable/disable green tx (GTX) on supported rates.
     * Host will set this param to 1 for enabling GTX & 0 for disabling it.
     * Note: If GTX was already running (since the global GTX control
     * resides with default BDF setting) & host wants to disable GTX,
     * the VDEV does not exercise any more TPC changes on the GTX supported
     * rates & goes to a default GTX SM where all PPDU's sent on default TPC.
     * Whenever, host wants to re-enable GTX, the enable command resumes the
     * GTX functionality & TPC convergence to lower power levels can be
     * attained as long as PER on GTX supported rates is within the pre-defined
     * PER margin configured through the BDF.
     */
    WMI_VDEV_PARAM_GTX_ENABLE,                             /* 0x85 */

    /*
     * Enable/Disable multicast buffer.
     * A FLAG to enable & disable buffering of multicast frames at AP
     * when stations are in Power Save mode.
     * Once AP disables buffering of multicast frame,
     * clients which goes into Power save mode will not receive these frames.
     * by default MCAST buffering will be enabled.
     * (CABQ = Content After Beacon Queue = multicast queue)
     * Host will send this VDEV param command,
     * With Value = 1 means fw will disable the MCAST buffering
     * With Value = 0 means fw will enable the MCAST buffering.
     */
    WMI_VDEV_PARAM_DISABLE_CABQ,                          /* 0x86 */

    /**
      * For SU and MU sounding
      * switch between su ac/ax sounding and mu ac/ax sounding
      * switch between triggered/ non-triggered on ax sounding enabled.
      * each bit toggles the corresponding modes by enabling/disabling
      *
      * Bit 1 doesn't carry any operation for now and may change later,
      * so reserved.
      *
      *-----------------------
      * bit(0)   |    mode
      *-----------------------
      *       0  |  AC
      *       1  |  AX
      *-----------------------
      *
      * bit(1)   |  Reserved
      *
      *-----------------------
      * bit(2)   |    mode
      *-----------------------
      *       0  |  SU
      *       1  |  MU
      *-----------------------
      * bit(3)   |    mode
      *-----------------------
      *       0  |  non -triggered
      *       1  |  triggered
      */
    WMI_VDEV_PARAM_SET_HE_SOUNDING_MODE,                  /* 0x87 */

    /** Fixed rate setting used in UL Trigger
     * The top nibble is used to select which format to use for encoding
     * the rate specification: 0xVXXXXXXX, V must be 1 for the UL
     * format.
     * If V == 0b0001: format is: 0x1000RRRR.
     *                 ("RRRR" ratecode already has those preamble bits,
     *                 which can specify HE or EHT)
     *                 This will be output of WMI_ASSEMBLE_RATECODE_V1
     *
     * This parameter controls the UL OFDMA and UL MU-MIMO vdev fixed rate.
     */
    WMI_VDEV_PARAM_UL_FIXED_RATE,                         /* 0x88 */

    /**
     * Uplink MU-MIMO & OFDMA GI configuration used in UL Trigger
     * 11AX: GI =
     *     WMI_GI_400_NS, WMI_GI_800_NS, WMI_GI_1600_NS, or WMI_GI_3200_NS
     * 11N: SGI=WMI_GI_400_NS
     */
    /** Top nibble can be used to distinguish between HE and EHT: 0xVXXXXXXX
     *  If V == 0b0000: format is HE.
     *  If V == 0b0001: format is EHT.
     */
    WMI_VDEV_PARAM_UL_GI,                                 /* 0x89 */

    /** Enable/Disable LDPC in UL Trigger */
    /** Top nibble can be used to distinguish between HE and EHT: 0xVXXXXXXX
     *  If V == 0b0000: format is HE.
     *  If V == 0b0001: format is EHT.
     */
    WMI_VDEV_PARAM_UL_LDPC,                               /* 0x8A */

    /** Max NSS allowed in UL Trigger */
    /** Top nibble can be used to distinguish between HE and EHT: 0xVXXXXXXX
     *  If V == 0b0000: format is HE.
     *  If V == 0b0001: format is EHT.
     */
    WMI_VDEV_PARAM_UL_NSS,                                /* 0x8B */

    /** Enable/Disable STBC in UL Trigger */
    /** Top nibble can be used to distinguish between HE and EHT: 0xVXXXXXXX
     *  If V == 0b0000: format is HE.
     *  If V == 0b0001: format is EHT.
     */
    WMI_VDEV_PARAM_UL_STBC,                               /* 0x8C */

    /** specify the HE LTF setting that should be used for fixed rate
     * uplink transmissions.
     *
     * Expects values of WMI_HE_LTF_DEFAULT, WMI_HE_LTF_1X, WMI_HE_LTF_2X,
     * or WMI_HE_LTF_4X.
     */
    WMI_VDEV_PARAM_UL_HE_LTF,                             /* 0x8D */

    /** Uplink OFDMA PPDU bandwidth */
    /** Top nibble can be used to distinguish between HE and EHT: 0xVXXXXXXX
     *  If V == 0b0000: format is HE.
     *                  (0: 20MHz, 1: 40MHz, 2: 80Mhz, 3: 160MHz)
     *  If V == 0b0001: format is EHT.
     *                  (0: 20MHz, 1: 40MHz, 2: 80Mhz, 3: 160MHz, 4: 320MHz)
     */
    WMI_VDEV_PARAM_UL_PPDU_BW,                            /* 0x8E */

    /** Enable/Disable FW handling MU EDCA change from AP (1: En, 0:Dis)  */
    WMI_VDEV_PARAM_MU_EDCA_FW_UPDATE_EN,                  /* 0x8F */

    /** Update dot11ObssNbruToleranceTime in fw. Param value: seconds */
    WMI_VDEV_PARAM_UPDATE_OBSS_RU_TOLERANCE_TIME,         /* 0x90 */

    /** Parameter used when MTU size is sent by the host
     * In particular, this configuration message is used for cases where the
     * encapsulation header results in a larger max frame size than the
     * typical 802.3 + SNAP/LLC frame.
     */
    WMI_VDEV_PARAM_MAX_MTU_SIZE,                          /* 0x91 */

    /** Send every nth beacon to host
     * if value of n is 0, it means this Nth beacon upload is disabled
     */
    WMI_VDEV_PARAM_NTH_BEACON_TO_HOST,                    /* 0x92 */

    /**
     * To capture the MGMT OR DATA OR BOTH packets.
     * Refer to enum WMI_PKT_CAPTURE_MODE_CONFIG for specifications of
     * which parameter value enables which kind of packet captures.
     */
    WMI_VDEV_PARAM_PACKET_CAPTURE_MODE,         /* 0x93 */

    /**
     * To configure duration of how many seconds without tx unicast traffic is
     * considered stale for mcast rate adaptation
     */
    WMI_VDEV_PARAM_MCAST_RC_STALE_PERIOD,       /* 0x94 */

    /*
     * Bits 3:0   - AST0_FLOW_MASK(4)
     * Bits 7:4   - AST1_FLOW_MASK(4)
     * Bits 11:8  - AST2_FLOW_MASK(4)
     * Bits 15:12 - AST3_FLOW_MASK(4)
     * Bits 23:16 - TID_VALID_HI_PRI(8)
     * Bits 31:24 - TID_VALID_LOW_PRI(8)
     *
     * The below macros can be used to set/get the relevant fields.
     * WMI_MSDU_FLOW_ASTX_MSDU_FLOW_MASKS_GET(msdu_flow_config1, ast_x)
     * WMI_MSDU_FLOW_ASTX_MSDU_FLOW_MASKS_SET(msdu_flow_config1, ast_x, mask)
     * WMI_MSDU_FLOW_TID_VALID_HI_MASKS_GET(msdu_flow_config1)
     * WMI_MSDU_FLOW_TID_VALID_HI_MASKS_SET(msdu_flow_config1, mask)
     * WMI_MSDU_FLOW_TID_VALID_LOW_MASKS_GET(msdu_flow_config1)
     * WMI_MSDU_FLOW_TID_VALID_LOW_MASKS_SET(msdu_flow_config1, mask)
     */
    WMI_VDEV_PARAM_MSDU_FLOW_OVERRIDE_CONFIG,  /* 0x95 */

    /* Enable/Disable using NULL frame for leaky AP  */
    WMI_VDEV_PARAM_ENABLE_NULL_FOR_LEAKY_AP,   /* 0x96 */

    /**
     * To configure duration of how many seconds without TX/RX data traffic,
     * NDI vdev can kickout the connected peer (i.e. NDP Termination).
     */
    WMI_VDEV_PARAM_NDP_INACTIVITY_TIMEOUT,     /* 0x97 */

    /* To enable/disable multicast rate adaptation feature at vdev level */
    WMI_VDEV_PARAM_ENABLE_MCAST_RC,            /* 0x98 */

    /*
     * Params related to 6 GHz operation
     * The parameter value is formed from WMI_VDEV_6GHZ_BITMAP flags.
     */
    WMI_VDEV_PARAM_6GHZ_PARAMS,                /* 0x99 */

    /**
     * VDEV parameter to enable or disable RTT initiator role
     * Default : Enabled
     * valid values: 0-Disable initiator role, 1-Enable initiator role.
     */
    WMI_VDEV_PARAM_ENABLE_DISABLE_RTT_INITIATOR_ROLE, /* 0x9A */

    /**
     * To configure duration of how many seconds to wait to kickout peer
     * if peer is not reachable
     */
    WMI_VDEV_PARAM_NDP_KEEPALIVE_TIMEOUT,      /* 0x9B*/

    /**
     * To support discovery of NAN cluster with Master Preference (MP) as 0
     * when a new device is enabling NAN
     */
    WMI_VDEV_PARAM_ALLOW_NAN_INITIAL_DISCOVERY_OF_MP0_CLUSTER, /* 0x9C */

    /**
     * VDEV parameter to enable or disable roaming reason VSIE in
     * re-association request
     *
     * Default : Disabled
     * valid values: 0 - Disable 1 - Enable
     */
    WMI_VDEV_PARAM_ENABLE_DISABLE_ROAM_REASON_VSIE, /* 0x9D */

    /* Parameter used to configure OBSS Packet Detect threshold
     * for Non-SRG / SRG based Spatial Reuse feature.
     * (SRG = Spatial Reuse Group)
     * The accepted values are in between 0x00 and 0xFF, inclusive.
     * The parameter value is programmed into the appropriate spatial reuse
     * register, to specify how low the background signal strength from
     * neighboring BSS cells must be, for this AP to employ spatial reuse.
     *
     * The value of the parameter is compared against the OBSS RSSI in dB.
     * It is a 8-bit value whose
     * range is -128 to 127 (after two's complement operation).
     * For example, if the parameter value is 0xF5, the target will
     * allow spatial reuse if the RSSI detected from other BSS
     * is below -10 dB.
     * Similarly, if the parameter value is 0x0A, the target will
     * allow spatial reuse only if the RSSI detected from neighboring
     * BSS cells is no more than 10 dB.
     *
     * If Bit 29 is set, then input value will be in dBm. This is used
     * for chipsets that use dBm for comparison across MAC/Phy blocks.
     * Older chipsets support input in dB units. For newer chipsets, dBm
     * units will be used.
     * The host will use the WMI_SERVICE_SRG_SRP_SPATIAL_REUSE_SUPPORT
     * service ready bit to differentiate between providing input as dB or dBm.
     *
     * bit    | purpose
     * -----------------
     * 0  - 7 | Param Value for non-SRG based Spatial Reuse
     * 8  - 15| Param value for SRG based Spatial Reuse
     * 16 - 28| Reserved
     * 29     | Param value is in dBm units rather than dB units
     * 30     | Enable/Disable SRG based spatial reuse.
     *        | If set to 0, ignore bits 8-15.
     * 31     | Enable/Disable Non-SRG based spatial reuse.
     *        | If set to 0, ignore bits 0-7.
     *
     * The WMI_VDEV_PARAM_SET_CMD_OBSS_PD_THRESHOLD setting will only
     * take effect if the WMI_PDEV_PARAM_SET_CMD_OBSS_PD_THRESHOLD
     * setting is also set for the pdev that the vdev belongs to.
     */
    WMI_VDEV_PARAM_SET_CMD_OBSS_PD_THRESHOLD, /* 0x9E */

    /* Parameter used to configure OBSS Packet Detection per Access Category
     * for SRP based and OBSS_PD based spatial reuse feature.
     * (SRP = Spatial Reuse Parameter)
     * Based on the bits set, the corresponding Access Category Queues will have
     * spatial reuse enabled / disabled.
     * bit     | AC
     * ------------
     * 0       | BK for SRG/Non-SRG
     * 1       | BE for SRG/Non-SRG
     * 2       | VI for SRG/Non-SRG
     * 3       | VO for SRG/Non-SRG
     * 4 - 15  | Reserved
     * 16      | BK for SRP
     * 17      | BE for SRP
     * 18      | VI for SRP
     * 19      | VO for SRP
     * 20 - 31 | Reserved
     *
     * The WMI_VDEV_PARAM_SET_CMD_OBSS_PD_PER_AC setting will only take effect
     * if the WMI_PDEV_PARAM_SET_CMD_OBSS_PD_PER_AC setting is also set for
     * the pdev that the vdev belongs to.
     */
    WMI_VDEV_PARAM_SET_CMD_OBSS_PD_PER_AC, /* 0x9F */

    /**
     * VDEV parameter to indicate RSN (Robust Security Network) capability.
     * This value will be intersection of the local vdev's (STA's)
     * RSN capability and the peer's (AP's) RSN capability.
     */
    WMI_VDEV_PARAM_RSN_CAPABILITY,        /* 0xA0 */

    /* Parameter used to enable/disable SRP feature */
    WMI_VDEV_PARAM_ENABLE_SRP,            /* 0xA1 */

    /*
     * Parameter used to control roaming/11kv (BTM) / etc. behavior
     * bit    | purpose
     * -----------------
     * 0      | Disable any FW side roaming except host invoke roaming
     * 1      | Do not trans away on receiving BTM req
     * 2      | Do not send disassoc to AP when receiving BTM req with
     *        | Disassoc Imminent bit set to 1
     * 3 - 31 | Reserved
     */
    WMI_VDEV_PARAM_ROAM_11KV_CTRL,        /* 0xA2 */

    /* vdev param to enable or disable various NAN config features
     * param value bitmap set to 1 for enable and 0 for disable respectively
     */
    WMI_VDEV_PARAM_ENABLE_DISABLE_NAN_CONFIG_FEATURES,  /* 0xA3 */

    /* vdev param to enable the SAP HW offload
     *  Bit : 0     - enable/disable SHO
     *  Bit : 1     - enable for Sta connected state as well.
     *  Bit : 2-31  - reserved
     */
    WMI_VDEV_PARAM_SHO_CONFIG,          /* 0xA4  */

    /** Enable or disable Non-data HE Extended range
     *  valid values: 0-Disable ER, 1-Enable ER.
     */
    WMI_VDEV_PARAM_NON_DATA_HE_RANGE_EXT,    /* 0xA5 */

    /** Prohibit data & mgmt except keepalive pkt */
    WMI_VDEV_PARAM_PROHIBIT_DATA_MGMT,       /* 0xA6 */

    /**  Enable or disable Txop requirement feature
     *   0 - Disable feature
     *   1 - Enable feature
     */
    WMI_VDEV_PARAM_WMM_TXOP_ENABLE,          /* 0xA7 */

    /** Value of DTIM to be applied in Suspend mode
     */
    WMI_VDEV_PARAM_FORCE_DTIM_CNT,           /* 0xA8 */

    /* vdev param to configure the Smart Monitor features
     *  Bit : 0     - enable/disable Trigger frames
     *  Bit : 1     - enable/disable QOS frames
     *  Bit : 2-4   - if 1, fwd beacon frames from connected AP
     *              - if 2, fwd beacon frames from unconnected AP
     *                during roam scan/host scan
     *              - if 3, fwd beacons from unconnected AP during
     *                roam scan/host scan and from connected AP
     *              - if 4, don't fwd any beacon frame
     *  Bit : 5-31  - reserved
     */
    WMI_VDEV_PARAM_SMART_MONITOR_CONFIG,     /* 0xA9  */

    /** Value of MAX modulated DTIM in ms to be applied
     *  in Suspend mode. This parameter will override
     *  the value of WMI_VDEV_PARAM_MAX_LI_OF_MODDTIM
     */
    WMI_VDEV_PARAM_MAX_LI_OF_MODDTIM_MS,     /* 0xAA */

    /*
     * Security config advertised in beacons
     * bit 0: URNM_MFPR in RSNXE
     * bit 1: MFPC in RSN CAP
     * bit 2: MFPR in RSN CAP
     * bit 31:3 Reserved
     */
    WMI_VDEV_PARAM_11AZ_SECURITY_CONFIG,    /* 0xAB */

    /*
     * Latency Level Flags
     */
    WMI_VDEV_PARAM_NORMAL_LATENCY_FLAGS_CONFIGURATION,    /* 0xAC */
    WMI_VDEV_PARAM_XR_LATENCY_FLAGS_CONFIGURATION,        /* 0xAD */
    WMI_VDEV_PARAM_LOW_LATENCY_FLAGS_CONFIGURATION,       /* 0xAE */
    WMI_VDEV_PARAM_ULTRA_LOW_LATENCY_FLAGS_CONFIGURATION, /* 0xAF */

    /*
     * Latency level UL/DL
     * 0-15 bits: UL
     * 16-31 bits: DL
     */
    WMI_VDEV_PARAM_NORMAL_LATENCY_UL_DL_CONFIGURATION,    /* 0xB0 */
    WMI_VDEV_PARAM_XR_LATENCY_UL_DL_CONFIGURATION,        /* 0xB1 */
    WMI_VDEV_PARAM_LOW_LATENCY_UL_DL_CONFIGURATION,       /* 0xB2 */
    WMI_VDEV_PARAM_ULTRA_LOW_LATENCY_UL_DL_CONFIGURATION, /* 0xB3 */
    /*
     * Ini to
     * Configure default latency level for all clients
     */
    WMI_VDEV_PARAM_DEFAULT_LATENCY_LEVEL_CONFIGURATION,   /* 0xB4 */

    /*
     * Ini to
     * Configure multi client Low latency Feature
     */
    WMI_VDEV_PARAM_MULTI_CLIENT_LL_FEATURE_CONFIGURATION, /* 0xB5 */

    /*
     * traffic config for per vdev
     * bit 0: low latency vdev
     * bit 1: high tput vdev
     * bit 31:2 Reserved
     */
    WMI_VDEV_PARAM_VDEV_TRAFFIC_CONFIG,                   /* 0xB6 */

    /* Final bmiss time for Non WOW mode in sec */
    WMI_VDEV_PARAM_FINAL_BMISS_TIME_SEC,                  /* 0xB7 */
    /* Final bmiss time for WOW mode in sec */
    WMI_VDEV_PARAM_FINAL_BMISS_TIME_WOW_SEC,              /* 0xB8 */

    /*
     * Param to disable LPI antenna optimizations at Vdev level.
     * In 6G LPI mode, additional antenna optimizations are done to
     * improve range. Param is provided to disable the added
     * optimizations.
     */
    WMI_VDEV_PARAM_DISABLE_LPI_ANT_OPTIMIZATION,          /* 0xB9 */

    /*
     * Param to update connected VDEV channel bandwidth.
     * Target firmware should take care of notifying associated peers
     * (except TDLS) about change in bandwidth, through OMN/OMI notification
     * before performing bandwidth update internally.
     * Please note incase of STA VDEV only BSS peer gets updated,
     * associated TDLS peer bandwidth wont be impacted.
     *
     * The the updated bandwith is specified with a wmi_channel_width value.
     */
    WMI_VDEV_PARAM_CHWIDTH_WITH_NOTIFY,                   /* 0xBA */


    /*=== ADD NEW VDEV PARAM TYPES ABOVE THIS LINE ===
     * The below vdev param types are used for prototyping, and are
     * prone to change.
     */
    WMI_VDEV_PARAM_PROTOTYPE = 0x8000,
        /* 11AX SPECIFIC defines */
        /* USE this for BSS color change */
        WMI_VDEV_PARAM_BSS_COLOR,                             /* 0x8001 */

        /*
         * Enable / disable trigger access for a AP vdev's peers.
         * For a STA mode vdev this will enable/disable triggered access
         * and enable/disable Multi User mode of operation.
         * A value of 0 in a given bit disables corresponding mode.
         * bit | hemu mode
         * ---------------
         *  0  | HE SUBFEE
         *  1  | HE SUBFER
         *  2  | HE MUBFEE
         *  3  | HE MUBFER
         *  4  | DL OFDMA, for AP its DL Tx OFDMA for Sta its Rx OFDMA
         *  5  | UL OFDMA, for AP its Tx OFDMA trigger for Sta its Rx OFDMA
         *     |           trigger receive & UL response
         *  6  | UL MUMIMO
         *  7  | TXBF+OFDMA
         */
        WMI_VDEV_PARAM_SET_HEMU_MODE,                         /* 0x8002 */
        WMI_VDEV_PARAM_HEOPS_0_31,                            /* 0x8003 */
        WMI_VDEV_PARAM_OBSSPD,                                /* 0x8004 */

        /*
         * Enable / disable trigger access for a AP vdev's peers.
         * For a STA mode vdev this will enable/disable triggered access
         * and enable/disable Multi User mode of operation.
         * A value of 0 in a given bit disables corresponding mode.
         * bit | EHT mu mode
         * ---------------
         *  0  | EHT SUBFEE
         *  1  | EHT SUBFER
         *  2  | EHT MUBFEE
         *  3  | EHT MUBFER
         *  4  | EHT DL OFDMA, for AP its DL Tx OFDMA for Sta its Rx OFDMA
         *  5  | EHT UL OFDMA, for AP its Tx OFDMA trigger for Sta its Rx OFDMA
         *     |           trigger receive & UL response
         *  6  | EHT MUMIMO
         *  7  | EHT DL OFDMA + TXBF
         *  8  | EHT DL OFDMA + MU-MIMO
         *  9  | EHT UL OFDMA + MU-MIMO
         */
        WMI_VDEV_PARAM_SET_EHT_MU_MODE,                       /* 0x8005 */

        /**
         * Specify the EHT LTF setting that should be used for fixed rate
         * transmissions.
         *
         * Expects values of WMI_EHT_LTF_DEFAULT, WMI_EHT_LTF_1X,
         * WMI_EHT_LTF_2X, or WMI_EHT_LTF_4X.
         */
         WMI_VDEV_PARAM_EHT_LTF,                               /* 0x8006 */

        /**
         * Expects values of WMI_EHT_LTF_DEFAULT, WMI_EHT_LTF_1X,
         * WMI_EHT_LTF_2X, or WMI_EHT_LTF_4X.
         */
        WMI_VDEV_PARAM_UL_EHT_LTF,                             /* 0x8007 */

        /**
         * Enable or disable Dual Carrier Modulation
         * valid values: 0-Disable EHT DCM, 1-Enable EHT DCM.
         */
        WMI_VDEV_PARAM_EHT_DCM,                                /* 0x8008 */

        /**
         * Enable or disable Extended range
         * valid values: 0-Disable ER, 1-Enable ER.
         */
        WMI_VDEV_PARAM_EHT_RANGE_EXT,                          /* 0x8009 */

        /**
         * Enable or disable Non-data EHT Extended range
         *  valid values: 0-Disable ER, 1-Enable ER.
         */
        WMI_VDEV_PARAM_NON_DATA_EHT_RANGE_EXT,                 /* 0x800A */

        /*
         * 0 - fixed pattern disable,
         * 1 - Fixed pattern enable and value pointed by
         *     WMI_VDEV_PARAM_FIXED_PUNCTURE_PATTERN
         *     punctured mode for 11be systems
         */
        WMI_VDEV_PARAM_FIXED_PUNCTURE_PATTERN,                /* 0x800B */

        WMI_VDEV_PARAM_EHTOPS_0_31,                           /* 0x800C */

        /*
         * 0 - eht 11be puncturing disable,
         * 1 - eht 11be puncturing enable
         */
        WMI_VDEV_PARAM_SET_EHT_PUNCTURING_MODE,               /* 0x800D */

        /*
         * 0 - Disable MCAST Beamforming
         * 1 - Enable MCAST Beamforming
         */
        WMI_VDEV_PARAM_MCAST_STEERING,                        /* 0x800E */

        /*
         * bit 0: 0 - XR SAP profile disabled
         *        1 - XR SAP profile enabled
         * bit 1: 0 - XPAN profile disabled
         *        1 - XPAN profile enabled
         * bits 31:2 - reserved
         */
        WMI_VDEV_PARAM_SET_PROFILE,                           /* 0x800F */

        /*
         * for valid vdev id
         * for vdev offload stats
         */
        WMI_VDEV_PARAM_VDEV_STATS_ID_UPDATE,                  /* 0x8010 */

        /*
         * Enable or disable Extra LTF capability in Auto rate and
         * Fixed rate EHT data packet transmissions.
         * Even when this vdev param is enabled, Extra LTF may not be
         * enabled for all rates in auto rate mode based on other conditions.
         * valid values: 0 - Disable Extra LTF, 1- Enable Extra LTF.
         */
        WMI_VDEV_PARAM_EXTRA_EHT_LTF,                  /* 0x8011 */

        /*
         * Disable the indicated DL and UL scheduler for the VDEV.
         *
         * This command is not supported in STA mode.
         *
         * A value of 1 in a given bit position disables the corresponding
         * mode, and a value of 0 enables the mode. The WMI_SCHED_MODE_FLAGS
         * enum defines the bit positions for each mode.
         *
         * A single 32 bit value is used to store the following configuration
         * bitmap.
         *
         * This command differs from WMI_VDEV_PARAM_SET_HEMU_MODE and
         * WMI_VDEV_PARAM_SET_EHT_MU_MODE in that it is intended for use during
         * normal AP operation, and will never cause a VAP restart or other
         * capability bit modification. It simply controls the scheduler
         * behavior.
         *
         * bit   | sched mode
         * ---------------
         *   0   | DL MU-MIMO
         *   1   | UL MU-MIMO
         *   2   | DL OFDMA
         *   3   | UL OFDMA
         * 4..31 | RESERVED
         */
        WMI_VDEV_PARAM_SET_DISABLED_SCHED_MODES,       /* 0x8012 */

        /*
         * SAP Power save with TWT vdev param command
         *      0 - Disable SAP Power save TWT
         *      1 - Enable SAP Power save TWT
         */
        WMI_VDEV_PARAM_SET_SAP_PS_WITH_TWT,            /* 0x8013 */

    /*=== END VDEV_PARAM_PROTOTYPE SECTION ===*/
} WMI_VDEV_PARAM;

/* EHT Modes */
#define WMI_VDEV_EHT_SUBFEE_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 0, 1)
#define WMI_VDEV_EHT_SUBFEE_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 0, 1, 1)
#define WMI_VDEV_EHT_SUBFEE_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 0, 1, 0)

#define WMI_VDEV_EHT_SUBFER_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 1, 1)
#define WMI_VDEV_EHT_SUBFER_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 1, 1, 1)
#define WMI_VDEV_EHT_SUBFER_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 1, 1, 0)

#define WMI_VDEV_EHT_MUBFEE_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 2, 1)
#define WMI_VDEV_EHT_MUBFEE_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 2, 1, 1)
#define WMI_VDEV_EHT_MUBFEE_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 2, 1, 0)

#define WMI_VDEV_EHT_MUBFER_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 3, 1)
#define WMI_VDEV_EHT_MUBFER_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 3, 1, 1)
#define WMI_VDEV_EHT_MUBFER_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 3, 1, 0)

#define WMI_VDEV_EHT_DLOFDMA_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 4, 1)
#define WMI_VDEV_EHT_DLOFDMA_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 4, 1, 1)
#define WMI_VDEV_EHT_DLOFDMA_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 4, 1, 0)

#define WMI_VDEV_EHT_ULOFDMA_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 5, 1)
#define WMI_VDEV_EHT_ULOFDMA_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 5, 1, 1)
#define WMI_VDEV_EHT_ULOFDMA_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 5, 1, 0)

#define WMI_VDEV_EHT_ULMUMIMO_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 6, 1)
#define WMI_VDEV_EHT_ULMUMIMO_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 6, 1, 1)
#define WMI_VDEV_EHT_ULMUMIMO_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 6, 1, 0)

#define WMI_VDEV_EHT_TXBF_OFDMA_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 7, 1)
#define WMI_VDEV_EHT_TXBF_OFDMA_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 7, 1, 1)
#define WMI_VDEV_EHT_TXBF_OFDMA_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 7, 1, 0)

#define WMI_VDEV_EHT_DLOFDMA_W_MUMIMO_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 8, 1)
#define WMI_VDEV_EHT_DLOFDMA_W_MUMIMO_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 8, 1, 1)
#define WMI_VDEV_EHT_DLOFDMA_W_MUMIMO_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 8, 1, 0)

#define WMI_VDEV_EHT_ULOFDMA_W_MUMIMO_IS_ENABLED(eht_mu_mode) WMI_GET_BITS((eht_mu_mode), 9, 1)
#define WMI_VDEV_EHT_ULOFDMA_W_MUMIMO_ENABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 9, 1, 1)
#define WMI_VDEV_EHT_ULOFDMA_W_MUMIMO_DISABLE(eht_mu_mode) WMI_SET_BITS((eht_mu_mode), 9, 1, 0)

/* HE Modes */
#define WMI_VDEV_HE_SUBFEE_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 0, 1)
#define WMI_VDEV_HE_SUBFEE_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 0, 1, 1)
#define WMI_VDEV_HE_SUBFEE_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 0, 1, 0)

#define WMI_VDEV_HE_SUBFER_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 1, 1)
#define WMI_VDEV_HE_SUBFER_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 1, 1, 1)
#define WMI_VDEV_HE_SUBFER_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 1, 1, 0)

#define WMI_VDEV_HE_MUBFEE_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 2, 1)
#define WMI_VDEV_HE_MUBFEE_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 2, 1, 1)
#define WMI_VDEV_HE_MUBFEE_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 2, 1, 0)

#define WMI_VDEV_HE_MUBFER_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 3, 1)
#define WMI_VDEV_HE_MUBFER_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 3, 1, 1)
#define WMI_VDEV_HE_MUBFER_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 3, 1, 0)

#define WMI_VDEV_HE_DLOFDMA_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 4, 1)
#define WMI_VDEV_HE_DLOFDMA_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 4, 1, 1)
#define WMI_VDEV_HE_DLOFDMA_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 4, 1, 0)

#define WMI_VDEV_HE_ULOFDMA_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 5, 1)
#define WMI_VDEV_HE_ULOFDMA_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 5, 1, 1)
#define WMI_VDEV_HE_ULOFDMA_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 5, 1, 0)

#define WMI_VDEV_HE_ULMUMIMO_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 6, 1)
#define WMI_VDEV_HE_ULMUMIMO_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 6, 1, 1)
#define WMI_VDEV_HE_ULMUMIMO_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 6, 1, 0)

#define WMI_VDEV_HE_TXBF_OFDMA_IS_ENABLED(hemu_mode) WMI_GET_BITS(hemu_mode, 7, 1)
#define WMI_VDEV_HE_TXBF_OFDMA_ENABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 7, 1, 1)
#define WMI_VDEV_HE_TXBF_OFDMA_DISABLE(hemu_mode) WMI_SET_BITS(hemu_mode, 7, 1, 0)

#define WMI_VDEV_HE_AX_SOUNDING_IS_ENABLED(mode) WMI_GET_BITS(mode, 0, 1)
#define WMI_VDEV_HE_MU_SOUNDING_IS_ENABLED(mode) WMI_GET_BITS(mode, 2, 1)
#define WMI_VDEV_HE_AX_TRIG_SOUNDING_IS_ENABLED(mode) WMI_GET_BITS(mode, 3, 1)

/* vdev capabilities bit mask */
#define WMI_VDEV_BEACON_SUPPORT  0x1
#define WMI_VDEV_WDS_LRN_ENABLED 0x2
#define WMI_VDEV_VOW_ENABLED     0x4

#define WMI_VDEV_IS_BEACON_SUPPORTED(param) ((param) & WMI_VDEV_BEACON_SUPPORT)
#define WMI_VDEV_IS_WDS_LRN_ENABLED(param) ((param) & WMI_VDEV_WDS_LRN_ENABLED)
#define WMI_VDEV_IS_VOW_ENABLED(param) ((param) & WMI_VDEV_VOW_ENABLED)

/* Per VAP rate dropdown masks */
#define WMI_VDEV_MGMT_RATE_DROPDOWN_M        0x01
#define WMI_VDEV_MGMT_RATE_DROPDOWN_S           0
#define WMI_VDEV_MGMT_RATE_DROPDOWN (WMI_VDEV_MGMT_RATE_DROPDOWN_M << WMI_VDEV_MGMT_RATE_DROPDOWN_S)
#define WMI_VDEV_MGMT_RATE_DROPDOWN_GET(x) WMI_F_MS(x, WMI_VDEV_MGMT_RATE_DROPDOWN)
#define WMI_VDEV_MGMT_RATE_DROPDOWN_SET(x,z) WMI_F_RMW(x, z, WMI_VDEV_MGMT_RATE_DROPDOWN)

#define WMI_VDEV_SU_DATA_RATE_DROPDOWN_M     0x01
#define WMI_VDEV_SU_DATA_RATE_DROPDOWN_S        1
#define WMI_VDEV_SU_DATA_RATE_DROPDOWN (WMI_VDEV_SU_DATA_RATE_DROPDOWN_M << WMI_VDEV_SU_DATA_RATE_DROPDOWN_S)
#define WMI_VDEV_SU_DATA_RATE_DROPDOWN_GET(x) WMI_F_MS(x, WMI_VDEV_SU_DATA_RATE_DROPDOWN)
#define WMI_VDEV_SU_DATA_RATE_DROPDOWN_SET(x,z) WMI_F_RMW(x, z, WMI_VDEV_SU_DATA_RATE_DROPDOWN)

#define WMI_VDEV_MU_DATA_RATE_DROPDOWN_M     0x01
#define WMI_VDEV_MU_DATA_RATE_DROPDOWN_S        2
#define WMI_VDEV_MU_DATA_RATE_DROPDOWN (WMI_VDEV_MU_DATA_RATE_DROPDOWN_M << WMI_VDEV_MU_DATA_RATE_DROPDOWN_S)
#define WMI_VDEV_MU_DATA_RATE_DROPDOWN_GET(x) WMI_F_MS(x, WMI_VDEV_MU_DATA_RATE_DROPDOWN)
#define WMI_VDEV_MU_DATA_RATE_DROPDOWN_SET(x,z) WMI_F_RMW(x, z, WMI_VDEV_MU_DATA_RATE_DROPDOWN)

/* TXBF capabilities masks */
#define WMI_TXBF_CONF_SU_TX_BFEE_S 0
#define WMI_TXBF_CONF_SU_TX_BFEE_M 0x1
#define WMI_TXBF_CONF_SU_TX_BFEE (WMI_TXBF_CONF_SU_TX_BFEE_M << WMI_TXBF_CONF_SU_TX_BFEE_S)
#define WMI_TXBF_CONF_SU_TX_BFEE_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_SU_TX_BFEE)
#define WMI_TXBF_CONF_SU_TX_BFEE_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_SU_TX_BFEE)

#define WMI_TXBF_CONF_MU_TX_BFEE_S 1
#define WMI_TXBF_CONF_MU_TX_BFEE_M 0x1
#define WMI_TXBF_CONF_MU_TX_BFEE (WMI_TXBF_CONF_MU_TX_BFEE_M << WMI_TXBF_CONF_MU_TX_BFEE_S)
#define WMI_TXBF_CONF_MU_TX_BFEE_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_MU_TX_BFEE)
#define WMI_TXBF_CONF_MU_TX_BFEE_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_MU_TX_BFEE)

#define WMI_TXBF_CONF_SU_TX_BFER_S 2
#define WMI_TXBF_CONF_SU_TX_BFER_M 0x1
#define WMI_TXBF_CONF_SU_TX_BFER (WMI_TXBF_CONF_SU_TX_BFER_M << WMI_TXBF_CONF_SU_TX_BFER_S)
#define WMI_TXBF_CONF_SU_TX_BFER_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_SU_TX_BFER)
#define WMI_TXBF_CONF_SU_TX_BFER_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_SU_TX_BFER)

#define WMI_TXBF_CONF_MU_TX_BFER_S 3
#define WMI_TXBF_CONF_MU_TX_BFER_M 0x1
#define WMI_TXBF_CONF_MU_TX_BFER (WMI_TXBF_CONF_MU_TX_BFER_M << WMI_TXBF_CONF_MU_TX_BFER_S)
#define WMI_TXBF_CONF_MU_TX_BFER_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_MU_TX_BFER)
#define WMI_TXBF_CONF_MU_TX_BFER_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_MU_TX_BFER)

#define WMI_TXBF_CONF_STS_CAP_S 4
#define WMI_TXBF_CONF_STS_CAP_M 0x7
#define WMI_TXBF_CONF_STS_CAP (WMI_TXBF_CONF_STS_CAP_M << WMI_TXBF_CONF_STS_CAP_S)
#define WMI_TXBF_CONF_STS_CAP_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_STS_CAP);
#define WMI_TXBF_CONF_STS_CAP_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_STS_CAP)

#define WMI_TXBF_CONF_IMPLICIT_BF_S 7
#define WMI_TXBF_CONF_IMPLICIT_BF_M 0x1
#define WMI_TXBF_CONF_IMPLICIT_BF (WMI_TXBF_CONF_IMPLICIT_BF_M << WMI_TXBF_CONF_IMPLICIT_BF_S)
#define WMI_TXBF_CONF_IMPLICIT_BF_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_IMPLICIT_BF)
#define WMI_TXBF_CONF_IMPLICIT_BF_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_IMPLICIT_BF)

#define WMI_TXBF_CONF_BF_SND_DIM_S 8
#define WMI_TXBF_CONF_BF_SND_DIM_M 0x7
#define WMI_TXBF_CONF_BF_SND_DIM (WMI_TXBF_CONF_BF_SND_DIM_M << WMI_TXBF_CONF_BF_SND_DIM_S)
#define WMI_TXBF_CONF_BF_SND_DIM_GET(x) WMI_F_MS(x,WMI_TXBF_CONF_BF_SND_DIM)
#define WMI_TXBF_CONF_BF_SND_DIM_SET(x,z) WMI_F_RMW(x,z,WMI_TXBF_CONF_BF_SND_DIM)

/* commands for 11ax TXBF capabilities */

#define WMI_TXBF_CONF_11AX_SU_TX_BFER_GET(x) WMI_GET_BITS((x,0,1)
#define WMI_TXBF_CONF_11AX_SU_TX_BFER_SET(x,z)  WMI_SET_BITS(x,0,1,z)

#define WMI_TXBF_CONF_11AX_SU_TX_BFEE_GET(x) WMI_GET_BITS((x,1,1)
#define WMI_TXBF_CONF_11AX_SU_TX_BFEE_SET(x,z) WMI_SET_BITS(x,1,1,z)

#define WMI_TXBF_CONF_11AX_MU_TX_BFER_GET(x) WMI_GET_BITS((x,2,1)
#define WMI_TXBF_CONF_11AX_MU_TX_BFER_SET(x,z)  WMI_SET_BITS(x,2,1,z)

#define WMI_TXBF_CONF_11AX_BFEE_NDP_STS_LT_EQ_80_GET(x) WMI_GET_BITS((x,3,3)
#define WMI_TXBF_CONF_11AX_BFEE_NDP_STS_LT_EQ_80_SET(x,z) WMI_SET_BITS(x,3,3,z)

#define WMI_TXBF_CONF_11AX_NSTS_LT_EQ_80_GET(x) WMI_GET_BITS((x,6,3)
#define WMI_TXBF_CONF_11AX_NSTS_LT_EQ_80_SET(x,z) WMI_SET_BITS(x,6,3,z)

#define WMI_TXBF_CONF_11AX_TX_BFEE_NDP_STS_GT_80_GET(x) WMI_GET_BITS((x,9,3)
#define WMI_TXBF_CONF_11AX_TX_BFEE_NDP_STS_GT_80_SET(x,z) WMI_SET_BITS(x,9,3,z)

#define WMI_TXBF_CONF_11AX_NSTS_GT_80_GET(x) WMI_GET_BITS((x,12,3)
#define WMI_TXBF_CONF_11AX_NSTS_GT_80_SET(x,z) WMI_SET_BITS(x,12,3,z)

#define WMI_TXBF_CONF_AX_BFER_SND_DIM_LT_EQ_80_SND_DIM_GET(x) WMI_GET_BITS((x,15,3)
#define WMI_TXBF_CONF_AX_BFER_SND_DIM_LT_EQ_80_SND_DIM_SET(x,z) WMI_SET_BITS(x,15,3,z)

#define WMI_TXBF_CONF_AX_BFER_SND_DIM_GT_80_SND_DIM_GET(x) WMI_GET_BITS((x,18,3)
#define WMI_TXBF_CONF_AX_BFER_SND_DIM_GT_80_SND_DIM_SET(x,z) WMI_SET_BITS(x,18,3,z)

#define WMI_TXBF_CONF_AX_SU_BFEE_NG16_FDBK_GET(x) WMI_GET_BITS((x,21,1)
#define WMI_TXBF_CONF_AX_SU_BFEE_NG16_FDBK_SET(x,z) WMI_SET_BITS(x,21,1,z)

#define WMI_TXBF_CONF_AX_MU_BFEE_NG16_FDBK_GET(x) WMI_GET_BITS((x,22,1)
#define WMI_TXBF_CONF_AX_MU_BFEE_NG16_FDBK_SET(x,z) WMI_SET_BITS(x,22,1,z)

#define WMI_TXBF_CONF_AX_SU_BFEE_CDBK_4_2_GET(x) WMI_GET_BITS((x,23,1)
#define WMI_TXBF_CONF_AX_SU_BFEE_CDBK_4_2_SET(x,z) WMI_SET_BITS(x,23,1,z)

#define WMI_TXBF_CONF_AX_MU_BFEE_CDBK_7_5_GET(x) WMI_GET_BITS((x,24,1)
#define WMI_TXBF_CONF_AX_MU_BFEE_CDBK_7_5_SET(x,z) WMI_SET_BITS(x,24,1,z)

#define WMI_TXBF_CONF_AX_FDBK_TRIG_GET(x) WMI_GET_BITS((x,25,1)
#define WMI_TXBF_CONF_AX_FDBK_TRIG_SET(x,z) WMI_SET_BITS(x,25,1,z)


/* TXBF capabilities */
typedef struct {
    A_UINT32 txbf_cap;
} wmi_vdev_txbf_cap;

/* vdev rx filters (for mesh) */
typedef enum {
    WMI_VDEV_RX_ALLOW_ALL_FRAMES  =  0x0, /* Don't drop any frames - Default */
    WMI_VDEV_RX_FILTER_OUT_FROMDS =  0x1, /* Drop FromDS frames */
    WMI_VDEV_RX_FILTER_OUT_TODS   =  0x2, /* Drop ToDS frames */
    WMI_VDEV_RX_FILTER_OUT_NODS   =  0x4, /* Drop NODS frames */
    WMI_VDEV_RX_FILTER_OUT_RA     =  0x8, /* Drop RA frames */
    WMI_VDEV_RX_FILTER_OUT_TA     = 0x10, /* Drop TA frames */
} wmi_vdev_param_filter;

/* Length of ATIM Window in TU */
#define WMI_VDEV_PARAM_ATIM_WINDOW_LENGTH WMI_VDEV_PARAM_ATIM_WINDOW

enum wmi_pkt_type {
    WMI_PKT_TYPE_RAW = 0,
    WMI_PKT_TYPE_NATIVE_WIFI = 1,
    WMI_PKT_TYPE_ETHERNET = 2,
};

/*******************************************************************
 * wmi_vdev_txbf_en is DEPRECATED in favor of wmi_vdev_txbf_cap
 * Do not use it!
 *******************************************************************/
typedef struct {
    A_UINT8     sutxbfee    : 1,
                mutxbfee    : 1,
                sutxbfer    : 1,
                mutxbfer    : 1,
                txb_sts_cap : 3,
                implicit_bf : 1;
} wmi_vdev_txbf_en;

/** Upto 8 bits are available for Roaming module to be sent along with
WMI_VDEV_PARAM_ROAM_FW_OFFLOAD WMI_VDEV_PARAM **/
/* Bit 0: Enable Roaming FW offload LFR1.5/LFR2.0 implementation */
#define WMI_ROAM_FW_OFFLOAD_ENABLE_FLAG                          0x1
/* Bit 1: Enable Roaming module in FW to do scan based on Final BMISS */
#define WMI_ROAM_BMISS_FINAL_SCAN_ENABLE_FLAG                    0x2
/* Bit 2:
 * To enable/disable EAPOL_4WAY_HANDSHAKE process while roaming.
 * param value = 0 --> Enable EAPOL 4way handshake
 * param value = 1 --> Skip EAPOL 4way handshake
 */
#define WMI_VDEV_PARAM_SKIP_ROAM_EAPOL_4WAY_HANDSHAKE            0x4
/* Bit 3:
 * Scan type when WMI_ROAM_BMISS_FINAL_SCAN_ENABLE_FLAG is set:
 * value = 0 --> Chanmap scan followed by one full scan if no candidate found.
 * value = 1 --> Chanmap scan only
 */
#define WMI_ROAM_BMISS_FINAL_SCAN_TYPE_FLAG                      0x8
/* Bit 4:
 * To enable/disable feature: EAPOL offload to FW while SAE roaming.
 * param value = 0 --> Enable EAPOL offload to FW for SAE roaming
 * param value = 1 --> Disable EAPOL offload to FW for SAE roaming
 */
#define WMI_VDEV_PARAM_SKIP_SAE_ROAM_4WAY_HANDSHAKE              0x10

/** slot time long */
#define WMI_VDEV_SLOT_TIME_LONG                                  0x1
/** slot time short */
#define WMI_VDEV_SLOT_TIME_SHORT                                 0x2
/** preablbe long */
#define WMI_VDEV_PREAMBLE_LONG                                   0x1
/** preablbe short */
#define WMI_VDEV_PREAMBLE_SHORT                                  0x2

/** the definition of different START/RESTART Event response  */
typedef enum {
    /* Event response of START CMD */
    WMI_VDEV_START_RESP_EVENT = 0,
    /* Event response of RESTART CMD */
    WMI_VDEV_RESTART_RESP_EVENT,
} WMI_START_EVENT_PARAM;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_start_response_event_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** requestor id that requested the VDEV start request */
    A_UINT32 requestor_id;
    /* Respose of Event type START/RESTART */
    WMI_START_EVENT_PARAM resp_type;
    /** status of the response */
    A_UINT32 status;
    /** Vdev chain mask */
    A_UINT32 chain_mask;
    /** Vdev mimo power save mode */
    A_UINT32 smps_mode;
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    /** Configured Transmit Streams **/
    A_UINT32 cfgd_tx_streams;
    /** Configured Receive Streams **/
    A_UINT32 cfgd_rx_streams;
    /**
     * maximum allowed Tx power (in dBm) for this connection.
     * max_allowed_tx_power = 0 dBm means value is not specified.
     */
    A_INT32 max_allowed_tx_power;
    /** unique id to identify mac's TSF register */
    A_UINT32 mac_tsf_id;
    /** ignore mac_tsf_id unless mac_tsf_id_valid is set */
    A_UINT32 mac_tsf_id_valid;
} wmi_vdev_start_response_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_stopped_event_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_stopped_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_delete_resp_event_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_delete_resp_event_fixed_param;

/** common structure used for simple events (stopped, resume_req, standby response) */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag would be equivalent to actual event  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_vdev_simple_event_fixed_param;

/* Commands for getting and setting protected bit : bss max idle time */
#define WMI_BSS_MAX_IDLE_TIME_PROTECTED_GET(idle_options) \
    WMI_GET_BITS(idle_options, 0, 1)
#define WMI_BSS_MAX_IDLE_TIME_PROTECTED_SET(idle_options, val) \
    WMI_SET_BITS(idle_options, 0, 1, val)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_VDEV_BSS_MAX_IDLE_TIME_fixed_param */
    A_UINT32 vdev_id; /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 max_idle_period; /* time interval in seconds */
    /* idle_options:
     * bit 0    - Protected bit
     *            Refer to WMI_BSS_MAX_IDLE_TIME_PROTECTED_GET,SET macros.
     * bit 31:1 - Reserved bits
     */
    A_UINT32 idle_options;
} wmi_vdev_bss_max_idle_time_cmd_fixed_param;

/** VDEV start response status codes */
#define WMI_VDEV_START_RESPONSE_STATUS_SUCCESS 0x0  /** VDEV successfully started */
#define WMI_VDEV_START_RESPONSE_INVALID_VDEVID  0x1  /** requested VDEV not found */
#define WMI_VDEV_START_RESPONSE_NOT_SUPPORTED  0x2  /** unsupported VDEV combination */
#define WMI_VDEV_START_RESPONSE_DFS_VIOLATION  0x3  /** DFS_VIOLATION since channel in the NOL is selected */
#define WMI_VDEV_START_RESPONSE_INVALID_REGDOMAIN 0x4 /** Invalid regulatory domain in VDEV start */
#define WMI_VDEV_START_RESPONSE_INVALID_BAND   0x5    /** Band unsupported by current hw mode in VDEV start */
#define WMI_VDEV_START_RESPONSE_INVALID_PREFERRED_TX_RX_STREAMS 0x6 /** Invalid preferred tx/rx streams */
#define WMI_VDEV_START_RESPONSE_INVALID_TX_VAP_CONFIG   0x7 /** Invalid tx_vap config in VDEV start */

/** Beacon processing related command and event structures */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_tx_hdr */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** xmit rate */
    A_UINT32 tx_rate;
    /** xmit power */
    A_UINT32 txPower;
    /** beacon buffer length in bytes */
    A_UINT32 buf_len;
/* This TLV is followed by array of bytes:
 *   A_UINT8 bufp[]; <-- beacon frame buffer
 */
} wmi_bcn_tx_hdr;

/* Beacon filter */
#define WMI_BCN_FILTER_ALL   0 /* Filter all beacons */
#define WMI_BCN_FILTER_NONE  1 /* Pass all beacons */
#define WMI_BCN_FILTER_RSSI  2 /* Pass Beacons RSSI >= RSSI threshold */
#define WMI_BCN_FILTER_BSSID 3 /* Pass Beacons with matching BSSID */
#define WMI_BCN_FILTER_SSID  4 /* Pass Beacons with matching SSID */

typedef struct {
    /** Filter ID */
    A_UINT32 bcn_filter_id;
    /** Filter type - wmi_bcn_filter */
    A_UINT32 bcn_filter;
    /** Buffer len */
    A_UINT32 bcn_filter_len;
    /** Filter info (threshold, BSSID, RSSI) */
    A_UINT8 *bcn_filter_buf;
} wmi_bcn_filter_rx_cmd;

/** Capabilities and IEs to be passed to firmware */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_prb_info */
    /** Capabilities */
    A_UINT32 caps;
    /** ERP info */
    A_UINT32 erp;
/** Advanced capabilities */
/** HT capabilities */
/** HT Info */
/** ibss_dfs */
/** wpa Info */
/** rsn Info */
/** rrm info */
/** ath_ext */
/** app IE */
} wmi_bcn_prb_info;

enum wmi_frame_inject_type {
    /* Transmit QoS null frame each period */
    WMI_FRAME_INJECT_TYPE_QOS_NULL,
    /* Transmit CTS to self each period */
    WMI_FRAME_INJECT_TYPE_CTS_TO_SELF,
    /* Transmit HOST provided buffer instead of forming frame in FW */
    WMI_FRAME_INJECT_TYPE_HOST_BUFFER,
    /* Max valid frame inject type for sanity checks*/
    WMI_FRAME_INJECT_TYPE_MAX,
};

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_frame_inject_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV, generated by the caller.
     * At any time only one vdev per mac can have this feature enabled.
     * Two consecutive enable commands on same mac will result in previous
     * command being disabled and new one being enabled.
     */
    A_UINT32 vdev_id;
    /** enable or disable injection */
    A_UINT32 enable;
    /** frame type to be used for frame injection. possible values are
     * defined in enum wmi_frame_inject_type.
     */
    A_UINT32 frame_type;
    /** periodicity of frame injection in milliseconds */
    A_UINT32 frame_inject_period;
    /** Destination address of frame */
    wmi_mac_addr frame_addr1;
    /** Frame control duration field to be set in CTS_TO_SELF.
     * Applicable to frame_type WMI_FRAME_INJECT_TYPE_CTS_TO_SELF only.
     */
    A_UINT32 fc_duration;
    /** variable buffer length. Can be used for frame template.
     * data is in TLV data[]
     */
    A_UINT32 buf_len;
    /*
     * The TLVs follows:
     * A_UINT8  data[]; <-- Variable length data
     */
} wmi_frame_inject_cmd_fixed_param;

#define WMI_BEACON_TMPLT_PROFILE_PERIOD_BITPOS  (0)
#define WMI_BEACON_TMPLT_PROFILE_PERIOD_MASK    (0xff << WMI_BEACON_TMPLT_PROFILE_PERIOD_BITPOS)
#define WMI_BEACON_TMPLT_SET_PROFILE_PERIOD(_ema_param, _val) \
    WMI_SET_BITS(_ema_param, WMI_BEACON_TMPLT_PROFILE_PERIOD_BITPOS, 8, _val)
#define WMI_BEACON_TMPLT_GET_PROFILE_PERIOD(_ema_param) \
    WMI_GET_BITS(_ema_param, WMI_BEACON_TMPLT_PROFILE_PERIOD_BITPOS, 8)

#define WMI_BEACON_TMPLT_TEMPLATE_INDEX_BITPOS  (8)
#define WMI_BEACON_TMPLT_TEMPLATE_INDEX_MASK    (0xff << WMI_BEACON_TMPLT_TEMPLATE_INDEX_BITPOS)
#define WMI_BEACON_TMPLT_SET_TEMPLATE_INDEX(_ema_param, _val) \
    WMI_SET_BITS(_ema_param, WMI_BEACON_TMPLT_TEMPLATE_INDEX_BITPOS, 8, _val)
#define WMI_BEACON_TMPLT_GET_TEMPLATE_INDEX(_ema_param) \
    WMI_GET_BITS(_ema_param, WMI_BEACON_TMPLT_TEMPLATE_INDEX_BITPOS, 8)

#define WMI_BEACON_TMPLT_FIRST_TEMPLATE_BITPOS  (16)
#define WMI_BEACON_TMPLT_FIRST_TEMPLATE_MASK    (0xff << WMI_BEACON_TMPLT_FIRST_TEMPLATE_BITPOS)
#define WMI_BEACON_TMPLT_SET_FIRST_TEMPLATE(_ema_param, _val) \
    WMI_SET_BITS(_ema_param, WMI_BEACON_TMPLT_FIRST_TEMPLATE_BITPOS, 8, _val)
#define WMI_BEACON_TMPLT_GET_FIRST_TEMPLATE(_ema_param) \
    WMI_GET_BITS(_ema_param, WMI_BEACON_TMPLT_FIRST_TEMPLATE_BITPOS, 8)

#define WMI_BEACON_TMPLT_LAST_TEMPLATE_BITPOS  (24)
#define WMI_BEACON_TMPLT_LAST_TEMPLATE_MASK    (0xff << WMI_BEACON_TMPLT_LAST_TEMPLATE_BITPOS)
#define WMI_BEACON_TMPLT_SET_LAST_TEMPLATE(_ema_param, _val) \
    WMI_SET_BITS(_ema_param, WMI_BEACON_TMPLT_LAST_TEMPLATE_BITPOS, 8, _val)
#define WMI_BEACON_TMPLT_GET_LAST_TEMPLATE(_ema_param) \
    WMI_GET_BITS(_ema_param, WMI_BEACON_TMPLT_LAST_TEMPLATE_BITPOS, 8)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_tmpl_ml_info */
    /** hw_link_id:
     * Unique link id across SOCs, got as part of QMI handshake
     */
    A_UINT32 hw_link_id;
    /**
     * CU vdev map for the Critical update category-1
     * (Inclusion of CU IES)
     */
    A_UINT32 cu_vdev_map_cat1_lo; /* bits 31:0 */
    A_UINT32 cu_vdev_map_cat1_hi; /* bits 63:32 */
    /**
     * CU vdev map for the Critical update category-2
     * (modification of CU IES)
     */
    A_UINT32 cu_vdev_map_cat2_lo; /* bits 31:0 */
    A_UINT32 cu_vdev_map_cat2_hi; /* bits 63:32 */
} wmi_bcn_tmpl_ml_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_tmpl_ml_params */
    A_UINT32 vdev_id;    /* partner vdev_id */
    A_UINT32 hw_link_id; /* hw_link_id: Unique link id across SOCs, got as part of QMI handshake */
    A_UINT32 beacon_interval; /* beacon interval in TU from received beacon of the partner link */
    /** CSA IE switch count offset from the beginning of data[]
     *  Value 0 indicates CSA IE is not present in beacon template.
     */
    A_UINT32 csa_switch_count_offset; /* units = bytes */
    /** Extended CSA IE switch count offset from the beginning of data[]
     *  Value 0 indicates ECSA IE is not present in beacon template.
     */
    A_UINT32 ext_csa_switch_count_offset; /* units = bytes */
    /** Per-STA profile Subelement offset from the beginning of the template. */
    A_UINT32 per_sta_profile_offset;
    /** Quiet IE offset from the beginning of the template. */
    A_UINT32 quiet_ie_offset;
    /** Flag to check if other IEs are present in per-sta profile */
    A_UINT32 is_other_ie_present;
} wmi_bcn_tmpl_ml_params;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_tmpl_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** TIM IE offset from the beginning of the template. */
    A_UINT32 tim_ie_offset;
    /** beacon buffer length. data is in TLV data[] */
    A_UINT32 buf_len;
    /** CSA IE switch count offset from the beginning of data[]
     *  Value 0 indicates CSA IE is not present in beacon template.
     */
    A_UINT32 csa_switch_count_offset; /* units = bytes */
    /** Extended CSA IE switch count offset from the beginning of data[]
     *  Value 0 indicates CSA IE is not present in beacon template.
     */
    A_UINT32 ext_csa_switch_count_offset; /* units = bytes */

    /** Specify when to send the CSA switch count status from FW to host.
     * See WMI_CSA_EVENT_BMAP* below for more information.
     * E.g. if CSA switch count event is needed to be sent when the switch count
     * is 0, 1, 4 and 5, set the bitmap to (0X80000033)
     */
    A_UINT32 csa_event_bitmap;
    /** offset (in octets/bytes) of MBSSID IE in beacon frame */
    A_UINT32 mbssid_ie_offset;
    /** offset (in octets/bytes) of ESP IE in beacon frame */
    A_UINT32 esp_ie_offset;
    /** CSC IE color switch count offset from the beginning of data[]
     *  Value 0 indicates CSC IE is not present in beacon template.
     */
    A_UINT32 csc_switch_count_offset; /* units = bytes */
    /** Specify when to send the CSC switch count status from FW to host.
     * See WMI_CSC_EVENT_BMAP* below for more information.
     * E.g. if CSA switch count event is needed to be sent when the switch count
     * is 0, 1, 4 and 5, set the bitmap to (0X80000033)
     */
    A_UINT32 csc_event_bitmap;
    /** Specify offset for FW to overwrite MU EDCA parameters in the beacon.
     * This is done during FW tuning of EDCA parameters.
     * Based on number of HE and Legacy stations.
     * If mu_edca_ie_offset == 0, it is ignored.
     * Only non-zero values are considered.
     */
    A_UINT32 mu_edca_ie_offset;
    /** Specify features that need to be enabled/disabled for the beacon.
     *
     * Bit 0:
     *     Beacon Protection feature enable/disable indication.
     *     Refer to WMI_BEACON_PROTECTION_EN_SET/GET macros.
     *
     * More features can be added to this bitmap.
     */
    A_UINT32 feature_enable_bitmap;

    /**
     * @ema_params: Applicable only for EMA tx VAPs (VAPs having both flags
     *         VDEV_FLAGS_EMA_MODE and VDEV_FLAGS_TRANSMIT_AP set) and should
     *         remain 0 otherwise. For EMA vaps it carries below information
     *         encoded in each byte:
     * Byte 0: (@ema_beacon_profile_periodicity) - beacon profile periodicity
     *         (number of beacons) after which nontransmitted MBSS info repeats.
     *         Assumes values [1, N] inclusive.
     *         Refer to WMI_BEACON_TMPLT_[SET,GET]_PROFILE_PERIOD macros.
     * Byte 1: (@ema_beacon_tmpl_idx) -  Specifies the position of beacon
     *         templates within profile periodicity.
     *         Assumes values [0, ema_beacon_profile_periodicity-1] inclusive.
     *         Multiple templates having same @ema_beacon_max_tmpl_idx will
     *         overwrite previous template.
     *         Refer to WMI_BEACON_TMPLT_[SET,GET]_TEMPLATE_INDEX macros.
     * Byte 2: (@ema_first_tmpl) - Specifies whether it's a last template in
     *         sequence of @ema_beacon_profile_periodicity templates
     *         (end of new template update exchange).
     *         If this template is the only template being updated,
     *         @ema_first_tmpl and @ema_last_tmpl both shall be set to 1.
     *         Refer to WMI_BEACON_TMPLT_[SET,GET]_FIRST_TEMPLATE macros.
     * Byte 3: (@ema_last_tmpl) - pecifies whether it's a last template in
     *         sequence of @ema_beacon_profile_periodicity templates
     *         (end of new template update exchange).
     *         If this template is the only template being updated,
     *         @ema_first_tmpl and @ema_last_tmpl both shall be set to 1.
     *         Refer to WMI_BEACON_TMPLT_[SET,GET]_LAST_TEMPLATE macros.
     */
    A_UINT32 ema_params;

/*
 * The TLVs follows:
 *    wmi_bcn_prb_info bcn_prb_info; <-- beacon probe capabilities and IEs
 *    A_UINT8  data[]; <-- Variable length data
 *    wmi_bcn_tmpl_ml_params ml_bcn_param[]; <-- per-MLO-link beacon data
 *        wmi_bcn_tmpl_ml_params will have multiple instances equal to
 *        the number of links in an AP MLD
 */
} wmi_bcn_tmpl_cmd_fixed_param;

#define WMI_CSA_EVENT_BMAP_VALID_MASK           0X80000000  /* Follow bitmap for sending the CSA switch count event */
#define WMI_CSA_EVENT_BMAP_SWITCH_COUNT_ZERO    0           /* Send only when the switch count becomes zero, added for backward compatibility
                                                            Same can also be achieved by setting bitmap to 0X80000001 */
#define WMI_CSA_EVENT_BMAP_ALL                  0XFFFFFFFF  /* Send CSA switch count event for every update to switch count */

#define WMI_CSC_EVENT_BMAP_VALID_MASK           0X80000000  /* Follow bitmap for sending the CSC switch count event */
#define WMI_CSC_EVENT_BMAP_SWITCH_COUNT_ZERO    0           /* Send only when the switch count becomes zero, added for backward compatibility
                                                            Same can also be achieved by setting bitmap to 0X80000001 */
#define WMI_CSC_EVENT_BMAP_ALL                  0XFFFFFFFF  /* Send CSC switch count event for every update to switch count */

#define WMI_BEACON_PROTECTION_BIT_POS           0 /* Beacon Protection enable/disable indication */

#define WMI_BEACON_PROTECTION_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_BEACON_PROTECTION_BIT_POS, 1, value)

#define WMI_BEACON_PROTECTION_EN_GET(param) \
    WMI_GET_BITS(param, WMI_BEACON_PROTECTION_BIT_POS, 1)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_prb_resp_tmpl_ml_info */
    /** hw_link_id:
     * Unique link id across SOCs, got as part of QMI handshake
     */
    A_UINT32 hw_link_id;
    /**
     * CU vdev map for the Critical update category-1
     * (Inclusion of CU IES)
     */
    A_UINT32 cu_vdev_map_cat1_lo; /* bits 31:0 */
    A_UINT32 cu_vdev_map_cat1_hi; /* bits 63:32 */
    /**
     * CU vdev map for the Critical update category-2
     * (modification of CU IES)
     */
    A_UINT32 cu_vdev_map_cat2_lo; /* bits 31:0 */
    A_UINT32 cu_vdev_map_cat2_hi; /* bits 63:32 */
} wmi_prb_resp_tmpl_ml_info;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_prb_tmpl_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** beacon buffer length. data is in TLV data[] */
    A_UINT32 buf_len;
/*
 * The TLVs follows:
 *    wmi_bcn_prb_info bcn_prb_info; <-- beacon probe capabilities and IEs
 *    A_UINT8  data[]; <-- Variable length data
 */
} wmi_prb_tmpl_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_fd_tmpl_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** fd frame buffer length. data is in TLV data[] */
    A_UINT32 buf_len;

/*
 * The TLVs follows:
 *    A_UINT8  data[]; <-- Variable length data
 */
} wmi_fd_tmpl_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_offload_bcn_tx_status_event_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** bcn tx status, values defined in enum WMI_FRAME_TX_STATUS */
    A_UINT32 tx_status;
} wmi_offload_bcn_tx_status_event_fixed_param;

enum wmi_sta_ps_mode {
    /** enable power save for the given STA VDEV */
    WMI_STA_PS_MODE_DISABLED = 0,
    /** disable power save  for a given STA VDEV */
    WMI_STA_PS_MODE_ENABLED = 1,
};

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_powersave_mode_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;

    /** Power save mode
     *
     * (see enum wmi_sta_ps_mode)
     */
    A_UINT32 sta_ps_mode;
} wmi_sta_powersave_mode_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_tdcc_config_cmd_fixed_param */
    /**  Set a max tx period: percentage of one beacon interval. range: 0 - 100  */
    A_UINT32 tx_cycle_percentage;
    /**  Enable/disable TX Duty Cycle Control powersave */
    A_UINT32 enabled;
} wmi_sta_tdcc_config_cmd_fixed_param;

enum wmi_csa_offload_en {
           WMI_CSA_OFFLOAD_DISABLE = 0,
           WMI_CSA_OFFLOAD_ENABLE = 1,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_csa_offload_enable_cmd_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 csa_offload_enable;
} wmi_csa_offload_enable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_csa_offload_chanswitch_cmd_fixed_param  */
    A_UINT32 vdev_id;
/*
 * The TLVs follows:
 *    wmi_channel chan;
 */
} wmi_csa_offload_chanswitch_cmd_fixed_param;
/**
 * This parameter controls the policy for retrieving frames from AP while the
 * STA is in sleep state.
 *
 * Only takes affect if the sta_ps_mode is enabled
 */
enum wmi_sta_ps_param_rx_wake_policy {
    /* Wake up when ever there is an  RX activity on the VDEV. In this mode
     * the Power save SM(state machine) will come out of sleep by either
     * sending null frame (or) a data frame (with PS==0) in response to TIM
     * bit set in the received beacon frame from AP.
     */
    WMI_STA_PS_RX_WAKE_POLICY_WAKE = 0,

    /* Here the power save state machine will not wakeup in response to TIM
     * bit, instead it will send a PSPOLL (or) UASPD trigger based on UAPSD
     * configuration setup by WMISET_PS_SET_UAPSD  WMI command.  When all
     * access categories are delivery-enabled, the station will send a UAPSD
     * trigger frame, otherwise it will send a PS-Poll.
     */
    WMI_STA_PS_RX_WAKE_POLICY_POLL_UAPSD = 1,
};

/** Number of tx frames/beacon  that cause the power save SM to wake up.
 *
 * Value 1 causes the SM to wake up for every TX. Value 0 has a special
 * meaning, It will cause the SM to never wake up. This is useful if you want
 * to keep the system to sleep all the time for some kind of test mode . host
 * can change this parameter any time.  It will affect at the next tx frame.
 */
enum wmi_sta_ps_param_tx_wake_threshold {
    WMI_STA_PS_TX_WAKE_THRESHOLD_NEVER = 0,
    WMI_STA_PS_TX_WAKE_THRESHOLD_ALWAYS = 1,

/* Values greater than one indicate that many TX attempts per beacon
 * interval before the STA will wake up
 */
};

/**
 * The maximum number of PS-Poll frames the FW will send in response to
 * traffic advertised in TIM before waking up (by sending a null frame with PS
 * = 0). Value 0 has a special meaning: there is no maximum count and the FW
 * will send as many PS-Poll as are necessary to retrieve buffered BU. This
 * parameter is used when the RX wake policy is
 * WMI_STA_PS_RX_WAKE_POLICY_POLL_UAPSD and ignored when the RX wake
 * policy is WMI_STA_PS_RX_WAKE_POLICY_WAKE.
 */
enum wmi_sta_ps_param_pspoll_count {
    WMI_STA_PS_PSPOLL_COUNT_NO_MAX = 0,
/* Values greater than 0 indicate the maximum number of PS-Poll frames FW
 * will send before waking up.
 */
};

/*
 * This will include the delivery and trigger enabled state for every AC.
 * This is the negotiated state with AP. The host MLME needs to set this based
 * on AP capability and the state Set in the association request by the
 * station MLME.Lower 8 bits of the value specify the UAPSD configuration.
 */
#define WMI_UAPSD_AC_TYPE_DELI 0
#define WMI_UAPSD_AC_TYPE_TRIG 1

#define WMI_UAPSD_AC_BIT_MASK(ac,type) \
    ((type == WMI_UAPSD_AC_TYPE_DELI) ? \
     (1 << (ac<<1)) : \
     (1 << ((ac<<1)+1)))

enum wmi_sta_ps_param_uapsd {
    WMI_STA_PS_UAPSD_AC0_DELIVERY_EN = (1 << 0),
    WMI_STA_PS_UAPSD_AC0_TRIGGER_EN = (1 << 1),
    WMI_STA_PS_UAPSD_AC1_DELIVERY_EN = (1 << 2),
    WMI_STA_PS_UAPSD_AC1_TRIGGER_EN = (1 << 3),
    WMI_STA_PS_UAPSD_AC2_DELIVERY_EN = (1 << 4),
    WMI_STA_PS_UAPSD_AC2_TRIGGER_EN = (1 << 5),
    WMI_STA_PS_UAPSD_AC3_DELIVERY_EN = (1 << 6),
    WMI_STA_PS_UAPSD_AC3_TRIGGER_EN = (1 << 7),
};

enum wmi_sta_powersave_param {
/**
 * Controls how frames are retrievd from AP while STA is sleeping
 *
 * (see enum wmi_sta_ps_param_rx_wake_policy)
 */
WMI_STA_PS_PARAM_RX_WAKE_POLICY = 0,

/**
 * The STA will go active after this many TX
 *
 * (see enum wmi_sta_ps_param_tx_wake_threshold)
 */
WMI_STA_PS_PARAM_TX_WAKE_THRESHOLD = 1,

/**
 * Number of PS-Poll to send before STA wakes up
 *
 * (see enum wmi_sta_ps_param_pspoll_count)
 *
 */
WMI_STA_PS_PARAM_PSPOLL_COUNT = 2,

/**
 * TX/RX inactivity time in msec before going to sleep.
 *
 * The power save SM will monitor tx/rx activity on the VDEV, if no
 * activity for the specified msec of the parameter the Power save SM will
 * go to sleep.
 */
WMI_STA_PS_PARAM_INACTIVITY_TIME = 3,

/**
 * Set uapsd configuration.
 *
 * (see enum wmi_sta_ps_param_uapsd)
 */
WMI_STA_PS_PARAM_UAPSD = 4,

/**
 * Number of PS-Poll to send before STA wakes up in QPower Mode
 */
WMI_STA_PS_PARAM_QPOWER_PSPOLL_COUNT = 5,

/**
 * Enable QPower
 */
WMI_STA_PS_ENABLE_QPOWER = 6,

/**
 * Number of TX frames before the entering the Active state
 */
WMI_STA_PS_PARAM_QPOWER_MAX_TX_BEFORE_WAKE = 7,

/**
 * QPower SPEC PSPOLL interval
 */
WMI_STA_PS_PARAM_QPOWER_SPEC_PSPOLL_WAKE_INTERVAL = 8,

/**
 * Max SPEC PSPOLL to be sent when the PSPOLL response has
 * no-data bit set
 */
WMI_STA_PS_PARAM_QPOWER_SPEC_MAX_SPEC_NODATA_PSPOLL = 9,

/**
 * Max value of ITO reset when there is no tx-rx
 * after AP has set the TIM bit
 */
WMI_STA_PS_PARAM_MAX_RESET_ITO_COUNT_ON_TIM_NO_TXRX = 10,

/**
 * Flag to enable/disable Powersave Optimization
 * in WOW
 */
WMI_STA_PS_PARAM_ENABLE_PS_OPT_IN_WOW = 11,
};

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_powersave_param_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** station power save parameter (see enum wmi_sta_powersave_param) */
    A_UINT32 param;
    A_UINT32 value;
} wmi_sta_powersave_param_cmd_fixed_param;

/** No MIMO power save */
#define WMI_STA_MIMO_PS_MODE_DISABLE
/** mimo powersave mode static*/
#define WMI_STA_MIMO_PS_MODE_STATIC
/** mimo powersave mode dynamic */
#define WMI_STA_MIMO_PS_MODE_DYNAMI

typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** mimo powersave mode as defined above */
    A_UINT32 mimo_pwrsave_mode;
} wmi_sta_mimo_ps_mode_cmd;


/** U-APSD configuration of peer station from (re)assoc request and TSPECs */
enum wmi_ap_ps_param_uapsd {
    WMI_AP_PS_UAPSD_AC0_DELIVERY_EN = (1 << 0),
    WMI_AP_PS_UAPSD_AC0_TRIGGER_EN = (1 << 1),
    WMI_AP_PS_UAPSD_AC1_DELIVERY_EN = (1 << 2),
    WMI_AP_PS_UAPSD_AC1_TRIGGER_EN = (1 << 3),
    WMI_AP_PS_UAPSD_AC2_DELIVERY_EN = (1 << 4),
    WMI_AP_PS_UAPSD_AC2_TRIGGER_EN = (1 << 5),
    WMI_AP_PS_UAPSD_AC3_DELIVERY_EN = (1 << 6),
    WMI_AP_PS_UAPSD_AC3_TRIGGER_EN = (1 << 7),
};

/** U-APSD maximum service period of peer station */
enum wmi_ap_ps_peer_param_max_sp {
    WMI_AP_PS_PEER_PARAM_MAX_SP_UNLIMITED = 0,
    WMI_AP_PS_PEER_PARAM_MAX_SP_2 = 1,
    WMI_AP_PS_PEER_PARAM_MAX_SP_4 = 2,
    WMI_AP_PS_PEER_PARAM_MAX_SP_6 = 3,

    /* keep last! */
    MAX_WMI_AP_PS_PEER_PARAM_MAX_SP,
};

/** param values for WMI_AP_PS_PEER_PARAM_SIFS_RESP_FRMTYPE */
enum wmi_ap_ps_param_sifs_resp_frmtype {
    WMI_SIFS_RESP_PSPOLL    = (1 << 0),
    WMI_SIFS_RESP_UAPSD     = (1 << 1),
    WMI_SIFS_RESP_QBST_EXP  = (1 << 2),
    WMI_SIFS_RESP_QBST_DATA = (1 << 3),
    WMI_SIFS_RESP_QBST_BAR  = (1 << 4),
};

/**
 * AP power save parameter
 * Set a power save specific parameter for a peer station
 */
enum wmi_ap_ps_peer_param {
    /** Set uapsd configuration for a given peer.
     *
     * This will include the delivery and trigger enabled state for every AC.
     * The host  MLME needs to set this based on AP capability and stations
     * request Set in the association request  received from the station.
     *
     * Lower 8 bits of the value specify the UAPSD configuration.
     *
     * (see enum wmi_ap_ps_param_uapsd)
     * The default value is 0.
     */
    WMI_AP_PS_PEER_PARAM_UAPSD = 0,

    /**
     * Set the service period for a UAPSD capable station
     *
     * The service period from wme ie in the (re)assoc request frame.
     *
     * (see enum wmi_ap_ps_peer_param_max_sp)
     */
    WMI_AP_PS_PEER_PARAM_MAX_SP = 1,

    /** Time in seconds for aging out buffered frames for STA in power save */
    WMI_AP_PS_PEER_PARAM_AGEOUT_TIME = 2,

    /**
     * Specify frame types that are considered SIFS RESP trigger frame
     * (see enum wmi_ap_ps_param_sifs_resp_frmtype)
     */
    WMI_AP_PS_PEER_PARAM_SIFS_RESP_FRMTYPE = 3,

    /** Specifies the trigger state of TID. Valid only for UAPSD frame type  */
    WMI_AP_PS_PEER_PARAM_SIFS_RESP_UAPSD = 4,

    /** Specifies the WNM sleep state of a STA */
    WMI_AP_PS_PEER_PARAM_WNM_SLEEP = 5,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ap_ps_peer_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** AP powersave param (see enum wmi_ap_ps_peer_param) */
    A_UINT32 param;
    /** AP powersave param value (see defines) */
    A_UINT32 value;
} wmi_ap_ps_peer_cmd_fixed_param;

/** Configure peer station 11v U-APSD coexistence
 *
 * Two parameters from uaspd coexistence ie info (as specified in 11v) are
 * sent down to FW along with this command.
 *
 * The semantics of these fields are described in the following text extracted
 * from 802.11v.
 *
 * ---  If the non-AP STA specified a non-zero TSF 0 Offset value in the
 *      U-APSD Coexistence element, the AP should not transmit frames to the
 *      non-AP STA outside of the U-APSD Coexistence Service Period, which
 *      begins when the AP receives the U-APSD trigger frame and ends after
 *      the transmission period specified by the result of the following
 *      calculation:
 *
 *          End of transmission period = T + (Interval . ((T . TSF 0 Offset) mod Interval))
 *
 *      Where T is the time the U-APSD trigger frame was received at the AP
 *      Interval is the UAPSD Coexistence element Duration/Interval field
 *      value (see 7.3.2.91) or upon the successful transmission of a frame
 *      with EOSP bit set to 1, whichever is earlier.
 *
 *
 * ---  If the non-AP STA specified a zero TSF 0 Offset value in the U-APSD
 *      Coexistence element, the AP should not transmit frames to the non-AP
 *      STA outside of the U-APSD Coexistence Service Period, which begins
 *      when the AP receives a U-APSD trigger frame and ends after the
 *      transmission period specified by the result of the following
 *      calculation: End of transmission period = T + Duration
 */
typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Enable U-APSD coexistence support for this peer
     *
     * 0 -> disabled (default)
     * 1 -> enabled
     */
    A_UINT32 enabled;
    /** Duration/Interval as defined by 11v U-ASPD coexistence */
    A_UINT32 duration_interval;
    /** Upper 32 bits of 64-bit TSF offset */
    A_UINT32 tsf_offset_high;
    /** Lower 32 bits of 64-bit TSF offset */
    A_UINT32 tsf_offset_low;
} wmi_ap_powersave_peer_uapsd_coex_cmd;

typedef enum {
    WMI_AP_PS_EGAP_F_ENABLE_PHYERR_DETECTION      = 0x0001,
    WMI_AP_PS_EGAP_F_ENABLE_PWRSAVE_BY_PS_STATE   = 0x0002,
    WMI_AP_PS_EGAP_F_ENABLE_PWRSAVE_BY_INACTIVITY = 0x0004,

    WMI_AP_PS_EGAP_FLAG_MAX = 0x8000
} wmi_ap_ps_egap_flag_type;

#define WMI_EGAP_GET_REDUCED_2G_TX_CHM(txrx_chm)  WMI_GET_BITS(txrx_chm, 0, 8)
#define WMI_EGAP_GET_REDUCED_2G_RX_CHM(txrx_chm)  WMI_GET_BITS(txrx_chm, 8, 8)
#define WMI_EGAP_GET_REDUCED_5G_TX_CHM(txrx_chm)  WMI_GET_BITS(txrx_chm, 16, 8)
#define WMI_EGAP_GET_REDUCED_5G_RX_CHM(txrx_chm)  WMI_GET_BITS(txrx_chm, 24, 8)

#define WMI_EGAP_SET_REDUCED_2G_TX_CHM(txrx_chm, val)  WMI_SET_BITS(txrx_chm, 0, 8, val)
#define WMI_EGAP_SET_REDUCED_2G_RX_CHM(txrx_chm, val)  WMI_SET_BITS(txrx_chm, 8, 8, val)
#define WMI_EGAP_SET_REDUCED_5G_TX_CHM(txrx_chm, val)  WMI_SET_BITS(txrx_chm, 16, 8, val)
#define WMI_EGAP_SET_REDUCED_5G_RX_CHM(txrx_chm, val)  WMI_SET_BITS(txrx_chm, 24, 8, val)

/**
 * configure enhanced green ap parameters
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals wmi_ap_powersave_egap_param_cmd_fixed_param  */
    /** Enable enhanced green ap
     * 0 -> disabled
     * 1 -> enabled
     */
    A_UINT32 enable;
    /** The param indicates a duration that all STAs connected
     * to S-AP have no traffic.
     */
    A_UINT32 inactivity_time; /* in unit of milliseconds */
    /** The param indicates a duration that all STAs connected
     * to S-AP have no traffic, after all STAs have entered powersave.
     */
    A_UINT32 wait_time; /* in unit of milliseconds */
    /** The param is used to turn on/off some functions within E-GAP.
     */
    A_UINT32 flags; /* wmi_ap_ps_egap_flag_type bitmap */
    /** Reduced_txrx_chainmask
     *    [7:0]   - 2G band tx chain mask
     *    [15:8]  - 2G band rx chain mask
     *    [23:16] - 5G band tx chain mask
     *    [31:24] - 5G band rx chain mask
     */
    A_UINT32 reduced_txrx_chainmask;
} wmi_ap_ps_egap_param_cmd_fixed_param;

typedef enum {
    WMI_AP_PS_EGAP_STATUS_IDLE        = 1,
    WMI_AP_PS_EGAP_STATUS_PWRSAVE_OFF = 2,
    WMI_AP_PS_EGAP_STATUS_PWRSAVE_ON  = 3,

    WMI_AP_PS_EGAP_STATUS_MAX = 15
} wmi_ap_ps_egap_status_type;

/**
 * send enhanced green ap status to host
 */
typedef struct
{
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ap_ps_egap_info_chainmask_list */
    A_UINT32 tlv_header;
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    /** The param indicates the current tx chainmask with the mac id. */
    A_UINT32 tx_chainmask;
    /** The param indicates the current rx chainmask with the mac id. */
    A_UINT32 rx_chainmask;
} wmi_ap_ps_egap_info_chainmask_list;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals wmi_ap_powersave_egap_param_cmd_fixed_param  */
    /** Enhanced green ap status (WMI_AP_PS_EGAP_STATUS). */
    A_UINT32 status;
/* This TLV is followed by
 *     wmi_ap_ps_egap_info_chainmask_list chainmask_list[];
 */
} wmi_ap_ps_egap_info_event_fixed_param;

/* 128 clients = 4 words */
/* WMI_TIM_BITMAP_ARRAY_SIZE can't be modified without breaking the compatibility */
#define WMI_TIM_BITMAP_ARRAY_SIZE 4

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tim_info  */
    /** TIM bitmap len (in bytes) */
    A_UINT32 tim_len;
    /** TIM Partial Virtual Bitmap */
    A_UINT32 tim_mcast;
    A_UINT32 tim_bitmap[WMI_TIM_BITMAP_ARRAY_SIZE];
    A_UINT32 tim_changed;
    A_UINT32 tim_num_ps_pending;
    /** Use the vdev_id only if vdev_id_valid is set */
    A_UINT32 vdev_id_valid;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
} wmi_tim_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tim_info  */
    /** TIM Partial Virtual Bitmap */
    A_UINT32 tim_mcast;
    A_UINT32 tim_changed;
    A_UINT32 tim_num_ps_pending;
    /** Use the vdev_id only if vdev_id_valid is set */
    A_UINT32 vdev_id_valid;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** TIM bitmap len (in bytes) */
    A_UINT32 tim_len;
    /* followed by WMITLV_TAG_ARRAY_BYTE holding the TIM bitmap */
} wmi_tim_info_v2;

typedef struct {
    /** Flag to enable quiet period IE support */
    A_UINT32 is_enabled;
    /** Quiet start */
    A_UINT32 tbttcount;
    /** Beacon intervals between quiets*/
    A_UINT32 period;
    /** TUs of each quiet*/
    A_UINT32 duration;
    /** TUs of from TBTT of quiet start*/
    A_UINT32 offset;
} wmi_quiet_info;

/* WMI_P2P_MAX_NOA_DESCRIPTORS can't be modified without breaking the compatibility */
#define WMI_P2P_MAX_NOA_DESCRIPTORS 4   /* Maximum number of NOA Descriptors supported */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_noa_info  */
    /** Bit  0:     Flag to indicate an update in NOA schedule
     *  Bits 7-1:   Reserved
     *  Bits 15-8:  Index (identifies the instance of NOA sub element)
     *  Bit  16:    Opp PS state of the AP
     *  Bits 23-17: Ctwindow in TUs
     *  Bits 31-24: Number of NOA descriptors
     */
    A_UINT32 noa_attributes;
    wmi_p2p_noa_descriptor noa_descriptors[WMI_P2P_MAX_NOA_DESCRIPTORS];
    /** Use the vdev_id only if vdev_id_valid is set */
    A_UINT32 vdev_id_valid;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
} wmi_p2p_noa_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_quiet_offload_info  */
    A_UINT32 vdev_id;   /* unique id identifying the VDEV */
    A_UINT8  tbttcount; /* quiet start */
    A_UINT8  period;    /* beacon intervals between quiets */
    A_UINT16 duration;  /* TUs of each quiet */
    A_UINT16 offset;    /* TUs of from TBTT of quiet start */
} wmi_quiet_offload_info;

#define WMI_UNIFIED_NOA_ATTR_MODIFIED       0x1
#define WMI_UNIFIED_NOA_ATTR_MODIFIED_S     0

#define WMI_UNIFIED_NOA_ATTR_IS_MODIFIED(hdr)                       \
            WMI_F_MS((hdr)->noa_attributes, WMI_UNIFIED_NOA_ATTR_MODIFIED)

#define WMI_UNIFIED_NOA_ATTR_MODIFIED_SET(hdr)                      \
            WMI_F_RMW((hdr)->noa_attributes, 0x1,                   \
                WMI_UNIFIED_NOA_ATTR_MODIFIED);

#define WMI_UNIFIED_NOA_ATTR_INDEX          0xff00
#define WMI_UNIFIED_NOA_ATTR_INDEX_S        8

#define WMI_UNIFIED_NOA_ATTR_INDEX_GET(hdr)                         \
            WMI_F_MS((hdr)->noa_attributes, WMI_UNIFIED_NOA_ATTR_INDEX)

#define WMI_UNIFIED_NOA_ATTR_INDEX_SET(hdr, v)                      \
            WMI_F_RMW((hdr)->noa_attributes, (v) & 0xff,            \
                WMI_UNIFIED_NOA_ATTR_INDEX);

#define WMI_UNIFIED_NOA_ATTR_OPP_PS         0x10000
#define WMI_UNIFIED_NOA_ATTR_OPP_PS_S       16

#define WMI_UNIFIED_NOA_ATTR_OPP_PS_GET(hdr)                         \
            WMI_F_MS((hdr)->noa_attributes, WMI_UNIFIED_NOA_ATTR_OPP_PS)

#define WMI_UNIFIED_NOA_ATTR_OPP_PS_SET(hdr)                         \
            WMI_F_RMW((hdr)->noa_attributes, 0x1,                    \
                WMI_UNIFIED_NOA_ATTR_OPP_PS);

#define WMI_UNIFIED_NOA_ATTR_CTWIN          0xfe0000
#define WMI_UNIFIED_NOA_ATTR_CTWIN_S        17

#define WMI_UNIFIED_NOA_ATTR_CTWIN_GET(hdr)                          \
            WMI_F_MS((hdr)->noa_attributes, WMI_UNIFIED_NOA_ATTR_CTWIN)

#define WMI_UNIFIED_NOA_ATTR_CTWIN_SET(hdr, v)                       \
            WMI_F_RMW((hdr)->noa_attributes, (v) & 0x7f,             \
                WMI_UNIFIED_NOA_ATTR_CTWIN);

#define WMI_UNIFIED_NOA_ATTR_NUM_DESC       0xff000000
#define WMI_UNIFIED_NOA_ATTR_NUM_DESC_S     24

#define WMI_UNIFIED_NOA_ATTR_NUM_DESC_GET(hdr)                       \
            WMI_F_MS((hdr)->noa_attributes, WMI_UNIFIED_NOA_ATTR_NUM_DESC)

#define WMI_UNIFIED_NOA_ATTR_NUM_DESC_SET(hdr, v)                    \
            WMI_F_RMW((hdr)->noa_attributes, (v) & 0xff,             \
                WMI_UNIFIED_NOA_ATTR_NUM_DESC);

typedef struct {
    /** TIM info */
    wmi_tim_info tim_info;
    /** P2P NOA info */
    wmi_p2p_noa_info p2p_noa_info;
/* TBD: More info elements to be added later */
} wmi_bcn_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_host_swba_event_fixed_param  */
    /** bitmap identifying the VDEVs, generated by the caller */
    A_UINT32 vdev_map;
    /** how many vdev's info is included in this message
     *  If this field is zero, then the number of vdevs is specified by
     *  the number of bits set in the vdev_map bitmap.
     */
    A_UINT32 num_vdevs;
/* This TLV is followed by tim_info and p2p_noa_info for each vdev:
 *     wmi_tim_info tim_info[];
 *     wmi_p2p_noa_info p2p_noa_info[];
 *     wmi_quiet_offload_info quiet_offload_info[0/1];
 *
 */
} wmi_host_swba_event_fixed_param;

#define WMI_MAX_AP_VDEV 16

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_host_swfda_event_fixed_param  */
    /** vdev_id identifying the VDEV for which FILS should be generated */
    A_UINT32 vdev_id;
    /** time (in TU) at which current FILS Discovery frame is scheduled for Tx */
    A_UINT32 fils_tt;
    /** next TBTT time (in TU) for this vdev  */
    A_UINT32 tbtt;
} wmi_host_swfda_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tbtt_offset_event_fixed_param  */
    /** bimtap of VDEVs that has tbtt offset updated */
    A_UINT32 vdev_map;
/* The TLVs for tbttoffset_list, tbtt_qtime_low_us_list, and
 * tbtt_qtime_high_us_list will follow this TLV.
 *   - tbtt offset list in the order of the LSb to MSb in the vdev_map bitmap
 *     A_UINT32 tbttoffset_list[WMI_MAX_AP_VDEV];
 *   - tbtt qtime_low_us list(Lower 32 bit of qtime us) in the order of the
 *     LSb to MSb in the vdev_map bitmap
 *     A_UINT32 tbtt_qtime_low_us_list[WMI_MAX_AP_VDEV];
 *   - tbtt qtime_high_us list(Higher 32 bit of qtime us) in the order of the
 *     LSb to MSb in the vdev_map bitmap
 *     A_UINT32 tbtt_qtime_high_us_list[WMI_MAX_AP_VDEV];
 */
} wmi_tbtt_offset_event_fixed_param;

#define WMI_TBTT_OFFSET_INVALID 0xffffffff /* tbttoffset is not updated by FW */
typedef struct {
    A_UINT32 tlv_header;/* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tbtt_offset_info */
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** tbttoffset in TUs */
    A_UINT32 tbttoffset;
    /** absolute tbtt time in qtime us */
    A_UINT32 tbtt_qtime_low_us;  /* bits 31:0 of qtime */
    A_UINT32 tbtt_qtime_high_us; /* bits 63:32 of qtime */
} wmi_tbtt_offset_info;

/** Use this event if number of vdevs > 32 */
typedef struct {
   A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tbtt_offset_ext_event_fixed_param  */
   A_UINT32 num_vdevs;
/*
 * The TLVs for tbttoffset will follow this TLV.
 * Of size num_vdevs * wmi_tbtt_offset_info
 */
} wmi_tbtt_offset_ext_event_fixed_param;


/* Peer Specific commands and events */

typedef struct {
    A_UINT32 percentage; /* in unit of 12.5% */
    A_UINT32 min_delta;  /* in unit of Mbps */
} rate_delta_t;

#define PEER_RATE_REPORT_COND_FLAG_DELTA        0x01
#define PEER_RATE_REPORT_COND_FLAG_THRESHOLD    0x02
#define MAX_NUM_OF_RATE_THRESH                  4

typedef struct {
    A_UINT32 val_cond_flags;     /* PEER_RATE_REPORT_COND_FLAG_DELTA, PEER_RATE_REPORT_COND_FLAG_THRESHOLD
                                    Any of these two conditions or both of them can be set. */
    rate_delta_t rate_delta;
    A_UINT32 rate_threshold[MAX_NUM_OF_RATE_THRESH];  /* In unit of Mbps. There are at most 4 thresholds.
                                                         If the threshold count is less than 4, set zero to
                                                         the one following the last threshold */
} report_cond_per_phy_t;


enum peer_rate_report_cond_phy_type {
    PEER_RATE_REPORT_COND_11B = 0,
    PEER_RATE_REPORT_COND_11A_G,
    PEER_RATE_REPORT_COND_11N,
    PEER_RATE_REPORT_COND_11AC,
    PEER_RATE_REPORT_COND_MAX_NUM
};

typedef struct {
    A_UINT32 tlv_header;                     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_rate_report_condition_fixed_param */
    A_UINT32 enable_rate_report;             /* 1= enable, 0=disable */
    A_UINT32 report_backoff_time;            /* in unit of msecond */
    A_UINT32 report_timer_period;            /* in unit of msecond */
    /* In the following field, the array index means the phy type,
     * please see enum peer_rate_report_cond_phy_type for detail */
    report_cond_per_phy_t cond_per_phy[PEER_RATE_REPORT_COND_MAX_NUM];
} wmi_peer_set_rate_report_condition_fixed_param;

/* Peer Type:
 * NB: This can be left DEFAULT for the normal case, and f/w will determine BSS type based
 * on address and vdev opmode. This is largely here to allow host to indicate that
 * peer is explicitly a TDLS peer
 */
enum wmi_peer_type {
    WMI_PEER_TYPE_DEFAULT = 0,    /* Generic/Non-BSS/Self Peer */
    WMI_PEER_TYPE_BSS = 1,        /* Peer is BSS Peer entry */
    WMI_PEER_TYPE_TDLS = 2,       /* Peer is a TDLS Peer */
    WMI_PEER_TYPE_OCB = 3,        /* Peer is a OCB Peer */
    WMI_PEER_TYPE_NAN_DATA = 4,   /* Peer is NAN DATA */
    WMI_PEER_TYPE_TRANS_BSS = 5,  /* For creating BSS peer when connecting with non-transmit AP */
    WMI_PEER_TYPE_PASN = 6,       /* Peer is used for Pre-Association Security Negotiation */
    WMI_PEER_TYPE_BRIDGE = 7,     /* For creating Dummy Peer in case of 4 Link MLO */
    WMI_PEER_TYPE_HOST_MAX = 127, /* Host <-> Target Peer type is assigned up to 127 */
                                  /* Reserved from 128 - 255 for target internal use.*/
    WMI_PEER_TYPE_ROAMOFFLOAD_TEMP = 128, /* Temporarily created during offload roam */
};

/* this TLV structure used for providing mlo parameters on peer create */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len */
    wmi_mlo_flags mlo_flags; /* only mlo enable flag need by STA mode peer create */
} wmi_peer_create_mlo_params;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_create_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** peer type: see enum values above */
    A_UINT32 peer_type;
/* The TLVs follows this structure:
 * wmi_peer_create_mlo_params mlo_params[]; <-- MLO flags on peer_create
 *     Optional TLV, only present for MLO peers.
 *     If the peer is non-MLO, the array length should be 0.
 *     Only mlo_enable flag required by MCC to decide MAC address to be used.
 */
} wmi_peer_create_cmd_fixed_param;

/* this TLV structure is used for providing MLO parameters on peer delete */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len */
    A_UINT32 mlo_hw_link_id_bitmap; /* Hardware link id of the link which has crashed or was not created in the first place */
} wmi_peer_delete_mlo_params;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_delete_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
/* The TLVs follows this structure:
 * wmi_peer_delete_mlo_params mlo_params[]; <-- MLO flags on peer_delete
 *     Optional TLV, only present for MLO peers.
 *     If the peer is non-MLO, the array length should be 0.
 *     Used for Link peer deleted.
 */
} wmi_peer_delete_cmd_fixed_param;

#define WMI_VDEV_ALL_PEER_MAX_BITMAP_WORD32 ((WMI_PEER_TYPE_HOST_MAX+31) / 32)

#define WMI_VDEV_DELETE_ALL_PEER_BITMAP_SET(param, peer_type) \
        WMI_SET_BITS(param[peer_type / 32], (peer_type % 32), 1, 1)

#define WMI_VDEV_DELETE_ALL_PEER_BITMAP_GET(param, peer_type) \
        WMI_GET_BITS(param[peer_type / 32], (peer_type % 32), 1)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_delete_all_peer_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /**
     * Host can request for deletion of peers specific to wmi_peer_type
     * through below bitmap.
     * Macro's WMI_VDEV_DELETE_ALL_PEER_BITMAP_SET &
     * WMI_VDEV_DELETE_ALL_PEER_BITMAP_GET are used for accessing purpose.
     * And if bitmap array is filled with zeros, firmware needs to delete
     * all peers.
     */
     A_UINT32 peer_type_bitmap[WMI_VDEV_ALL_PEER_MAX_BITMAP_WORD32];
} wmi_vdev_delete_all_peer_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_unmap_response_cmd_fixed_param */
    A_UINT32 tlv_header;
    /*
     * Following this struct is the TLV:
     * A_UINT32 peer_ids[]; <-- variable-length array of peer_ids
     *                          that have been unmapped by the host
     */
} wmi_peer_unmap_response_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_set_rx_blocksize_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /**
     * maximum block ack window size to use during a rx block ack negotiation,
     * i.e. the maximum number of MPDUs per A-MPDU that will be received
     */
    A_UINT32  rx_block_ack_win_limit;
} wmi_peer_set_rx_blocksize_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_flush_tids_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** tid bitmap identifying the tids to flush */
    A_UINT32 peer_tid_bitmap;
} wmi_peer_flush_tids_cmd_fixed_param;

typedef struct {
    /** rate mode . 0: disable fixed rate (auto rate)
     *   1: legacy (non 11n) rate  specified as ieee rate 2*Mbps
     *   2: ht20 11n rate  specified as mcs index
     *   3: ht40 11n rate  specified as mcs index
     */
    A_UINT32 rate_mode;
    /** 4 rate values for 4 rate series. series 0 is stored in byte 0 (LSB)
     *  and series 3 is stored at byte 3 (MSB) */
    A_UINT32 rate_series;
    /** 4 retry counts for 4 rate series. retry count for rate 0 is stored in byte 0 (LSB)
     *  and retry count for rate 3 is stored at byte 3 (MSB) */
    A_UINT32 rate_retries;
} wmi_fixed_rate;

typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** fixed rate */
    wmi_fixed_rate peer_fixed_rate;
} wmi_peer_fixed_rate_cmd;

#define WMI_MGMT_TID    17

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_addba_clear_resp_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
} wmi_addba_clear_resp_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_addba_send_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** Buffer/Window size*/
    A_UINT32 buffersize;
} wmi_addba_send_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_delba_send_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** Is Initiator */
    A_UINT32 initiator;
    /** Reason code */
    A_UINT32 reasoncode;
} wmi_delba_send_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_addba_setresponse_cmd_fixed_param */
    /** unique id identifying the vdev, generated by the caller */
    A_UINT32 vdev_id;
    /** peer mac address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** status code */
    A_UINT32 statuscode;
} wmi_addba_setresponse_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_send_singleamsdu_cmd_fixed_param */
    /** unique id identifying the vdev, generated by the caller */
    A_UINT32 vdev_id;
    /** peer mac address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
} wmi_send_singleamsdu_cmd_fixed_param;

/* Type of Station DTIM Power Save method */
enum {
    /* For NORMAL DTIM, the parameter is the number of beacon intervals and
     * also the same value as the listen interval. For this method, the
     * station will wake up based on the listen interval. If this
     * listen interval is not equal to DTIM, then the station may
     * miss certain DTIM beacons. If this value is 1, then the
     * station will wake up for every beacon.
     */
    WMI_STA_DTIM_PS_NORMAL_DTIM = 0x01,
    /* For MODULATED_DTIM, parameter is a multiple of DTIM beacons to skip.
     * When this value is 1, then the station will wake at every DTIM beacon.
     * If this value is >1, then the station will skip certain DTIM beacons.
     * This value is the multiple of DTIM intervals that the station will
     * wake up to receive the DTIM beacons.
     */
    WMI_STA_DTIM_PS_MODULATED_DTIM = 0x02,
};

/* Parameter structure for the WMI_STA_DTIM_PS_METHOD_CMDID */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_dtim_ps_method_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** Station DTIM Power Save method as defined above */
    A_UINT32 dtim_pwrsave_method;
    /** DTIM PS value. Contents depends on the method */
    A_UINT32 value;
    /** Modulated DTIM value */
    A_UINT32 MaxLIModulatedDTIM;
} wmi_sta_dtim_ps_method_cmd_fixed_param;

/*
 * For Station UAPSD Auto Trigger feature, the Firmware monitors the
 * uAPSD uplink and downlink traffic for each uAPSD enabled WMM ACs.
 * If there is no uplink/download for the specified service interval (field service_interval),
 * firmware will auto generate a QOS-NULL trigger for that WMM-AP with the TID value
 * specified in the UP (field user_priority).
 * Firmware also monitors the responses for these QOS-NULL triggers.
 * If the peer does not have any delivery frames, it will respond with
 * QOS-NULL (EOSP=1). This feature of only using service interval is assumed to be mandatory for all
 * firmware implementation. For this basic implementation, the suspend_interval and delay_interval
 * are unused and should be set to 0.
 * When service_interval is 0, then the firmware will not send any trigger frames. This is for
 * certain host-based implementations that don't want this firmware offload.
 * Note that the per-AC intervals are required for some usage scenarios. This is why the intervals
 * are given in the array of ac_param[]. For example, Voice service interval may defaults to 20 ms
 * and rest of the AC default to 300 ms.
 *
 * The service bit, WMI_STA_UAPSD_VAR_AUTO_TRIG, will indicate that the more advanced feature
 * of variable auto trigger is supported. The suspend_interval and delay_interval is used in
 * the more advanced monitoring method.
 * If the PEER does not have any delivery enabled data frames (non QOS-NULL) for the
 * suspend interval (field suspend_interval), firmware will change its auto trigger interval
 * to delay interval (field delay_interval). This way, when there is no traffic, the station
 * will save more power by waking up less and sending less trigger frames.
 * The (service_interval < suspend_interval) and (service_interval < delay_interval).
 * If this variable auto trigger is not required, then the suspend_interval and delay_interval
 * should be 0.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_uapsd_auto_trig_param */
    /** WMM Access category from 0 to 3 */
    A_UINT32 wmm_ac;
    /** User priority to use in trigger frames. It is the TID
     *  value. This field needs to be specified and may not be
     *  equivalent to AC since some implementation may use the TSPEC
     *  to enable UAPSD and negotiate a particular user priority. */
    A_UINT32 user_priority;
    /** service interval in ms */
    A_UINT32 service_interval;
    /** Suspend interval in ms */
    A_UINT32 suspend_interval;
    /** delay interval in ms */
    A_UINT32 delay_interval;
} wmi_sta_uapsd_auto_trig_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_uapsd_auto_trig_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer mac address */
    wmi_mac_addr peer_macaddr;
    /** Number of AC to specify */
    A_UINT32 num_ac;
/*
 * Following this struct is the TLV:
 *     wmi_sta_uapsd_auto_trig_param ac_param[]; <-- Variable number of AC parameters (defined by field num_ac)
 */

} wmi_sta_uapsd_auto_trig_cmd_fixed_param;

/** mimo powersave state */
#define WMI_PEER_MIMO_PS_STATE                          0x1
/** enable/disable AMPDU . initial value (enabled) */
#define WMI_PEER_AMPDU                                  0x2
/** authorize/unauthorize peer. initial value is unauthorized (0)  */
#define WMI_PEER_AUTHORIZE                              0x3
/** peer channel bandwidth */
#define WMI_PEER_CHWIDTH                                0x4
/** peer NSS */
#define WMI_PEER_NSS                                    0x5
/** USE 4 ADDR */
#define WMI_PEER_USE_4ADDR                              0x6
/* set group membership status */
#define WMI_PEER_MEMBERSHIP             0x7
#define WMI_PEER_USERPOS                0x8
/*
 * A critical high-level protocol is being used with this peer. Target
 * should take appropriate measures (if possible) to ensure more
 * reliable link with minimal latency. This *may* include modifying the
 * station power save policy, enabling more RX chains, increased
 * priority of channel scheduling, etc.
 *
 * NOTE: This parameter should only be considered a hint as specific
 * behavior will depend on many factors including current network load
 * and vdev/peer configuration.
 *
 * For STA VDEV this peer corresponds to the AP's BSS peer.
 * For AP VDEV this peer corresponds to the remote peer STA.
 */
#define WMI_PEER_CRIT_PROTO_HINT_ENABLED     0x9
/* set Tx failure count threshold for the peer - Currently unused */
#define WMI_PEER_TX_FAIL_CNT_THR                        0xA
/* Enable H/W retry and Enable H/W Send CTS2S before Data */
#define WMI_PEER_SET_HW_RETRY_CTS2S                     0xB

/* Set peer advertised IBSS atim window length */
#define WMI_PEER_IBSS_ATIM_WINDOW_LENGTH                0xC

/** peer phy mode */
#define WMI_PEER_PHYMODE                                0xD
/** Use FIXED Pwr */
#define WMI_PEER_USE_FIXED_PWR                          0xE
/** Set peer fixed rate
 * The top nibble is used to select which format to use for encoding
 * the rate specification: 0xVXXXXXXX
 * If V == 0b0000: format is same as before: 0x000000RR
 * If V == 0b0001: format is: 0x1000RRRR.
 *                 This will be output of WMI_ASSEMBLE_RATECODE_V1
 * The host shall use the new V1 format (and set V = 0x1) if the target
 * indicates 802.11ax support via the WMI_SERVICE_11AX flag, or if the
 * system is configured with Nss > 4 (either at compile time within the
 * host driver, or through WMI_SERVICE_READY PHY capabilities provided
 * by the target).
 */
#define WMI_PEER_PARAM_FIXED_RATE                       0xF

/** Allowlist peer TIDs */
#define WMI_PEER_SET_MU_ALLOWLIST                       0x10
/* retain definition of deprecated prior name, for backwards compatibility */
#define WMI_PEER_SET_MU_WHITELIST WMI_PEER_SET_MU_ALLOWLIST

/** Set peer max tx rate (MCS) in adaptive rate ctrl */
#define WMI_PEER_SET_MAX_TX_RATE                        0x11
/** Set peer minimal tx rate (MCS) in adaptive rate ctrl */
#define WMI_PEER_SET_MIN_TX_RATE                        0x12
/**
 * default ring routing for peer data packets,
 * param_value = bit 0 for hash based routing enabled or not
 *               (value 1 is enabled, value 0 is disabled)
 *               bits 1:5 are for ring 32 (i.e. ring id value
 *               selected from 0 to 31 values)
 *               bits 6:7 are for LMAC/peer based routing.
 *               bit 8 for peer based ring selection enabled or not
 *               (value 1 is enabled, value 0 is disabled
 *                bits 9-15 are valid when bit 8 is set to 1)
 *               bit 9 is for ring selection enabled for filter-pass
 *               unicast or not (value 1 is enabled, value 0 is disabled)
 *               bit 10 is for ring selection enabled for filter-pass
 *               mcast or not (value 1 is enabled, value 0 is disabled)
 *               bit 11 is for ring selection enabled for filter-pass
 *               BAR or not (value 1 is enabled, value 0 is disabled)
 *               bit 12-14 is for source ring selection value
 *               (value 0 for wbm2rxdma buf ring,
 *                value 1 for fw2rxdma buf ring,
 *                value 2 for sw2rxdma buf ring,
 *                value 3 for no buf ring,
 *                value 4 for sw2rxdma_exception buf ring,
 *                value 5 for fw2rxdma buf ring)
 *               bit 15-17 is for destination ring selection value
 *               (value 0 for wbm release ring,
 *                value 1 for rxdma2fw ring,
 *                value 2 for rxdma2sw ring,
 *                value 3 for rxdma2reo ring,
 *                value 4 for rxdma2fw_pmac1_ring,
 *                value 5 for rxdma2reo_remote0_ring,
 *                value 6 for rxdma2reo_remote1_ring)
 */
#define WMI_PEER_HASH_BASED_ROUTING_GET(value32)        WMI_GET_BITS(value32, 0x0, 1)
#define WMI_PEER_ROUTING_RING_ID_GET(value32)           WMI_GET_BITS(value32, 0x1, 5)
#define WMI_PEER_LMAC_BASED_ROUTING_GET(value32)        WMI_GET_BITS(value32, 0x6, 2)
#define WMI_PEER_BASED_RING_SELECTION_GET(value32)      WMI_GET_BITS(value32, 0x8, 1)
#define WMI_PEER_FILTER_PASS_UNICAST_GET(value32)       WMI_GET_BITS(value32, 0x9, 1)
#define WMI_PEER_FILTER_PASS_MCAST_GET(value32)         WMI_GET_BITS(value32, 0xA, 1)
#define WMI_PEER_FILTER_PASS_BAR_GET(value32)           WMI_GET_BITS(value32, 0xB, 1)
#define WMI_PEER_FILTER_PASS_SRC_RING_VAL_GET(value32)  WMI_GET_BITS(value32, 0xC, 3)
#define WMI_PEER_FILTER_PASS_DEST_RING_VAL_GET(value32) WMI_GET_BITS(value32, 0xF, 3)

#define WMI_PEER_SET_DEFAULT_ROUTING                    0x13
/* peer NSS for VHT160 - Extended NSS support */
#define WMI_PEER_NSS_VHT160                             0x14
/* peer NSS for VHT160 - Extended NSS support */
#define WMI_PEER_NSS_VHT80_80                           0x15
/* Peer SU TXBF sounding interval */
#define WMI_PEER_PARAM_SU_TXBF_SOUNDING_INTERVAL        0x16
/* Peer MU TXBF sounding interval */
#define WMI_PEER_PARAM_MU_TXBF_SOUNDING_INTERVAL        0x17
/* Peer TXBF sounding enable or disable */
#define WMI_PEER_PARAM_TXBF_SOUNDING_ENABLE             0x18
/* Per peer 11ax OFDMA enable or disable */
#define WMI_PEER_PARAM_OFDMA_ENABLE                     0x19
/* Per peer 11ax/11ac MU enable or disable */
#define WMI_PEER_PARAM_MU_ENABLE                        0x1a
/** Set peer fixed rate used in UL Trigger
 * The top nibble is used to select which format to use for encoding
 * the rate specification: 0xVXXXXXXX, V must be 1 for this parameter.
 * If V == 0b0001: format is: 0x1000RRRR.
 *                 ("RRRR" rate code already has those preamble bits,
 *                 which can specify EHT or HE)
 *                 This will be output of WMI_ASSEMBLE_RATECODE_V1
 *
 * This parameter controls the UL OFDMA and UL MU-MIMO peer fixed rate.
 */
#define WMI_PEER_PARAM_UL_FIXED_RATE                    0x1b
/** send specific OMI to peer via QoS-null frame
 * param_value = follow 11ax spec definition
 *               bit0:VHT(1), bit1:HE(1), bit2-31:A-Control
 */
#define WMI_PEER_PARAM_XMIT_OMI                         0x1c
#define WMI_PEER_RARAM_XMIT_OMI WMI_PEER_PARAM_XMIT_OMI /* alias due to prior typo */

/* Disable burst and assist */
#define WMI_PEER_PARAM_DISABLE_AGGRESSIVE_TX            0x1d
/* Enable 11r FT Roaming */
#define  WMI_PEER_PARAM_ENABLE_FT                       0x1e
/* update peer flag for ptk 4 way handshake */
#define  WMI_PEER_PARAM_NEED_PTK_4_WAY                  0x1f
/* update peer flag for gtk 2 way handshake */
#define  WMI_PEER_PARAM_NEED_GTK_2_WAY                  0x20
/* update peer flag for M4 sent */
#define  WMI_PEER_PARAM_M4_SENT                         0x21

/* Per peer MISC stats enable or disable */
#define  WMI_PEER_PARAM_MISC_STATS_ENABLE               0x22

/* Per peer FW congestion enable or disable:
 * A parameter value of 1 will disable FW tx congestion control for the peer,
 * a parameter value 0f 0 will enable FW tx congestion control for the peer.
 */
#define  WMI_PEER_PARAM_FW_CONGESTION_DISABLE           0x23

/* Per peer dynamically change max Nss limit in supported tx modes.
 * Whereas WMI_PEER_NSS cmd needs to reset PER tables and start peer rate
 * control again.
 * Currently supported only for 2x2 case, and also only supports setting
 * all NSS up to current NSS.
 * Mask is used so we can extend in future if needed.
 *
 *  Expected values in bits:
 *  00: Use autorate
 *  01: Enable only 1SS
 *  10: Enable only 2SS
 *  11: Disable NSS clamp feature or Fallback to autorate
 */
#define WMI_PEER_PARAM_DYN_NSS_EN_MASK                 0x24

/* Per peer enable/disable RTS/CTS for unicast management frames.
 * Enabling RTS/CTS only applicable after association process of the peer.
 * Currently supported for spruce(2x2) chipset.
 * Expected values:
 * 0 : Disable RTS/CTS for unicast management frames.
 * 1 : Enable  RTS/CTS for unicast management frames.
 */
#define WMI_PEER_PARAM_EN_RTSCTS_FOR_UNICAST_MGMT      0x25

/** mimo ps values for the parameter WMI_PEER_MIMO_PS_STATE  */
#define WMI_PEER_MIMO_PS_NONE                          0x0
#define WMI_PEER_MIMO_PS_STATIC                        0x1
#define WMI_PEER_MIMO_PS_DYNAMIC                       0x2

/*
 * Each bit indicates one 20 MHz subchannel is punctured or not.
 * A bit in the bitmap is set to 1 to indicate that the corresponding 20 MHz
 * subchannel is not punctured and is set to 0 to indicate that it is punctured.
 */
#define WMI_PEER_PUNCTURE_20MHZ_BITMAP                 0x26

#define WMI_PEER_CHWIDTH_PUNCTURE_BITMAP_GET_CHWIDTH(value32)          WMI_GET_BITS(value32, 0x0, 8)
#define WMI_PEER_CHWIDTH_PUNCTURE_BITMAP_GET_PUNCTURE_BMAP(value32)    WMI_GET_BITS(value32, 0x8, 16)
/*
 * peer channel bandwidth and puncture_bitmap
 * BIT 0-7  -  Peer channel width
 *             This bitfield holds a wmi_channel_width enum value.
 * BIT 8-23 -  Peer Puncture bitmap where each bit indicates whether
 *             a 20 MHz BW is punctured.
 *             The variable should be read from left, LSb (bit 8) will
 *             represent the lowest-frequency 20 MHz portion.
 *             Bit value: 0 - 20 MHz channel is punctured, 1 - not punctured
 */
#define WMI_PEER_CHWIDTH_PUNCTURE_20MHZ_BITMAP         0x27

#define WMI_PEER_SET_TX_POWER                          0x28

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_set_param_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** parameter id   */
    A_UINT32 param_id;
    /** parameter value */
    A_UINT32 param_value;
} wmi_peer_set_param_cmd_fixed_param;

typedef union {
    /*
     * The A_UINT16 "mode" and "tx_rate" fields can only be directly used
     * by the target or a little-endian host.
     * A big-endian host needs to use the WMI_PEER_MAX_MIN_TX_xxx_GET/SET
     * macros on the A_UINT32 "value" field.
     */
    struct {
        A_UINT16 mode; /* 0:CCK, 1:OFDM, 2:HT, 3:VHT (see WMI_RATE_PREAMBLE) */
        A_UINT16 tx_rate; /* see per-mode specs below */
    };
    A_UINT32 value; /* for use by big-endian host */
} wmi_peer_max_min_tx_rate;

/*
 * Any access to the mode/tx_rate in an big endian system should use
 * the below Macros on the wmi_peer_max_min_tx_rate.value field.
 */
#define WMI_PEER_MAX_MIN_TX_MODE_GET(value32) WMI_GET_BITS(value32, 0, 16)
#define WMI_PEER_MAX_MIN_TX_MODE_SET(value32, tx_mode) WMI_SET_BITS(value32, 0, 16, tx_mode)

#define WMI_PEER_MAX_MIN_TX_RATE_GET(value32) WMI_GET_BITS(value32, 16, 16)
#define WMI_PEER_MAX_MIN_TX_RATE_SET(value32, tx_mode) WMI_SET_BITS(value32, 16, 16, tx_mode)

/*   CCK max/min tx Rate description
 *   tx_rate = 0:  1   Mbps
 *   tx_rate = 1:  2   Mbps
 *   tx_rate = 2:  5.5 Mbps
 *   tx_rate = 3: 11   Mbps
 *   tx_rate = else: invalid
 */
enum {
    WMI_MAX_CCK_TX_RATE_1M,       /* up to 1M CCK Rate available */
    WMI_MAX_CCK_TX_RATE_2M,       /* up to 2M CCK Rate available */
    WMI_MAX_CCK_TX_RATE_5_5M,     /* up to 5.5M CCK Rate available */
    WMI_MAX_CCK_TX_RATE_11M,      /* up to 11M CCK Rate available */
    WMI_MAX_CCK_TX_RATE = WMI_MAX_CCK_TX_RATE_11M,
};

/*   OFDM max/min tx Rate description
 *   tx_rate = 0:  6 Mbps
 *   tx_rate = 1:  9 Mbps
 *   tx_rate = 2: 12 Mbps
 *   tx_rate = 3: 18 Mbps
 *   tx_rate = 4: 24 Mbps
 *   tx_rate = 5: 32 Mbps
 *   tx_rate = 6: 48 Mbps
 *   tx_rate = 7: 54 Mbps
 *   tx_rate = else: invalid
 */
enum {
    WMI_MAX_OFDM_TX_RATE_6M,      /* up to 6M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_9M,      /* up to 9M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_12M,     /* up to 12M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_18M,     /* up to 18M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_24M,     /* up to 24M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_36M,     /* up to 36M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_48M,     /* up to 48M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE_54M,     /* up to 54M OFDM Rate available */
    WMI_MAX_OFDM_TX_RATE = WMI_MAX_OFDM_TX_RATE_54M,
};

/*   HT max/min tx rate description
 *    tx_rate = 0~7 : MCS Rate 0~7
 *    tx_rate=else : invalid.
 */
#define WMI_MAX_HT_TX_MCS 0x07

/*   VHT max/min tx rate description
 *    tx_rate = 0~9 : MCS Rate 0~9
 *    tx_rate=else : invalid.
 */
#define WMI_MAX_VHT_TX_MCS 0x09


#define MAX_SUPPORTED_RATES 128

typedef struct {
    /** total number of rates */
    A_UINT32 num_rates;
    /**
     * rates (each 8bit value) packed into a 32 bit word.
     * the rates are filled from least significant byte to most
     * significant byte.
     */
    A_UINT32 rates[(MAX_SUPPORTED_RATES / 4) + 1];
} wmi_rate_set;

/* NOTE: It would bea good idea to represent the Tx MCS
 * info in one word and Rx in another word. This is split
 * into multiple words for convenience
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vht_rate_set */
    A_UINT32 rx_max_rate; /* Max Rx data rate */
    A_UINT32 rx_mcs_set; /* Negotiated RX VHT rates */
    A_UINT32 tx_max_rate; /* Max Tx data rate */
    /*
     *  bit [15:0]  indicates MCS 0 to 9
     *  bit [23:16] indicates MCS 10 & 11
     *  bit [24]    indicates whether MCS 10 & 11 is notified in bit [23:16]
     */
    A_UINT32 tx_mcs_set; /* Negotiated TX VHT rates */
    A_UINT32 tx_max_mcs_nss;  /* b0-b3: max mcs idx; b4-b7: max nss */
} wmi_vht_rate_set;

/* NOTE: It would bea good idea to represent the Tx MCS
 * info in one word and Rx in another word. This is split
 * into multiple words for convenience
 * currently this is being defined in IEEE802.11ax so this is same as wmi_vht_rate_set and is  sub change in future and may include BW as well
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_he_rate_set */
    /* HE Supported MCS Set field Rx
     * - 2 bits are used for each NSS chain.Max of 8 NSS can be encoded with
     *    value 0 - MCS 0-7 enabled for this NSS
     *    value 1 - MCS 0-9 enabled for this NSS
     *    value 2 - MCS 0-11 enabled for this NSS
     *    value 3 - NSS disabled
     * - WMI_HE_MAX_MCS_4_SS_MASK macro can be used for encoding this info
     */
    A_UINT32 rx_mcs_set; /* Negotiated RX HE rates (i.e. rate this node can RX from peer)*/
    /* HE Supported MCS Set field Tx
     * - 2 bits are used for each NSS chain.Max of 8 NSS can be encoded with
     *    value 0 - MCS 0-7 enabled for this NSS
     *    value 1 - MCS 0-9 enabled for this NSS
     *    value 2 - MCS 0-11 enabled for this NSS
     *    value 3 - NSS disabled
     *   WMI_HE_MAX_MCS_4_SS_MASK macro can be used for encoding this info
     *
     * - 8 bits x 2 are used for each Nss value for 2 categories of bandwidths,
     *   to indicate whether MCS 12 and 13 are enabled.
     *    Bits [16:23] used for checking if MCS 12/13 is enabled for a
     *        particular NSS (BW <= 80MHz)
     *    Bits [24:31] used for checking if MCS 12/13 is enabled for a
     *        particular NSS (BW > 80MHz)
     *   The WMI_HE_EXTRA_MCS_SS_[GET,SET] macros can be used for accessing
     *   these bit-fields.
     */
    A_UINT32 tx_mcs_set; /* Negotiated TX HE rates(i.e. rate this node can TX to peer) */
} wmi_he_rate_set;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_eht_rate_set */
    /*
     * B0-B3   indicates max NSS that supports mcs 0-7
     * B4-B7   indicates max NSS that supports mcs 8-9
     * B8-B11  indicates max NSS that supports mcs 10-11
     * B12-B15 indicates max NSS that supports mcs 12-13
     * B16-B31 reserved
     */
    A_UINT32 rx_mcs_set; /* Rx max NSS set */
    A_UINT32 tx_mcs_set; /* Tx max NSS set */
} wmi_eht_rate_set;

/*
 * IMPORTANT: Make sure the bit definitions here are consistent
 * with the ni_flags definitions in wlan_peer.h
 */
#define WMI_PEER_AUTH            0x00000001  /* Authorized for data */
#define WMI_PEER_QOS             0x00000002  /* QoS enabled */
#define WMI_PEER_NEED_PTK_4_WAY  0x00000004  /* Needs PTK 4 way handshake for authorization */
#define WMI_PEER_GK_INST         0x00000008  /* group Key Installed */
#define WMI_PEER_NEED_GTK_2_WAY  0x00000010  /* Needs GTK 2 way handshake after 4-way handshake */
#define WMI_PEER_PRIV            0x00000020  /* Encryption Enabled */
#define WMI_PEER_PK_INST         0x00000040  /* Pairwise Key Installed */
#define WMI_PEER_TKIP_CM_ENABLED 0x00000080  /* TKIP CounterMeasures */
#define WMI_PEER_SW_DEMIC_FRAG   0x00000100  /* S/W Demic of Frag Train */
#define WMI_PEER_CCX_ENABLED     0x00000200  /* CCX enabled */
#define WMI_PEER_HE              0x00000400  /* HE Enabled */
#define WMI_PEER_APSD            0x00000800  /* U-APSD power save enabled */
#define WMI_PEER_HT              0x00001000  /* HT enabled */
#define WMI_PEER_40MHZ           0x00002000  /* 40MHz enabld */
#define WMI_PEER_INTER_BSS_PEER  0x00004000  /* Inter BSS peer */
#define WMI_PEER_STBC            0x00008000  /* STBC Enabled */
#define WMI_PEER_LDPC            0x00010000  /* LDPC ENabled */
#define WMI_PEER_DYN_MIMOPS      0x00020000  /* Dynamic MIMO PS Enabled */
#define WMI_PEER_STATIC_MIMOPS   0x00040000  /* Static MIMO PS enabled */
#define WMI_PEER_DIS_MIMOPS      0x00080000  /* MIMO PS DISABLED */
#define WMI_PEER_SPATIAL_EXP     0x00100000  /* Enable spatial expansion for
                                              * single stream rates to avoid
                                              * unintentional beamforming */
#define WMI_PEER_SPATIAL_MUX     0x00200000  /* SM Enabled */
#define WMI_PEER_TWT_REQ         0x00400000  /* TWT Requester Support bit in Extended Capabilities element */
#define WMI_PEER_TWT_RESP        0x00800000  /* TWT Responder Support bit in Extended Capabilities element */
#define WMI_PEER_MULTI_BSSID     0x01000000  /* Multiple BSSID Support bit in Extended Capabilities element */
#define WMI_PEER_VHT             0x02000000  /* VHT Enabled */
#define WMI_PEER_80MHZ           0x04000000  /* 80MHz enabld */
#define WMI_PEER_PMF             0x08000000  /* Robust Management Frame Protection enabled */
#define WMI_PEER_F_PS_PRESEND_REQUIRED 0x10000000 /* Use this flag to avoid calling powersave API when STA is awake */
#define WMI_PEER_IS_P2P_CAPABLE  0x20000000  /* P2P capable peer */
#define WMI_PEER_160MHZ          0x40000000  /* 160 MHz enabled */
#define WMI_PEER_SAFEMODE_EN     0x80000000  /* Fips Mode Enabled */

/** define for peer_flags_ext */
#define WMI_PEER_EXT_EHT         0x00000001  /* EHT enabled */
#define WMI_PEER_EXT_320MHZ      0x00000002  /* 320Mhz enabled */
#define WMI_PEER_EXT_DMS_CAPABLE 0x00000004
#define WMI_PEER_EXT_HE_CAPS_6GHZ_VALID        0x00000008  /* param he_caps_6ghz is valid or not */
#define WMI_PEER_EXT_F_CRIT_PROTO_HINT_ENABLED 0x40000000

/**
 * Peer rate capabilities.
 *
 * This is of interest to the ratecontrol
 * module which resides in the firmware. The bit definitions are
 * consistent with that defined in if_athrate.c.
 *
 * @todo
 * Move this to a common header file later so there is no need to
 * duplicate the definitions or maintain consistency.
 */
#define WMI_RC_DS_FLAG          0x01    /* Dual stream flag */
#define WMI_RC_CW40_FLAG        0x02    /* CW 40 */
#define WMI_RC_SGI_FLAG         0x04    /* Short Guard Interval */
#define WMI_RC_HT_FLAG          0x08    /* HT */
#define WMI_RC_RTSCTS_FLAG      0x10    /* RTS-CTS */
#define WMI_RC_TX_STBC_FLAG     0x20    /* TX STBC */
#define WMI_RC_TX_STBC_FLAG_S   5       /* TX STBC */
#define WMI_RC_RX_STBC_FLAG     0xC0    /* RX STBC ,2 bits */
#define WMI_RC_RX_STBC_FLAG_S   6       /* RX STBC ,2 bits */
#define WMI_RC_WEP_TKIP_FLAG    0x100   /* WEP/TKIP encryption */
#define WMI_RC_TS_FLAG          0x200   /* Three stream flag */
#define WMI_RC_UAPSD_FLAG       0x400   /* UAPSD Rate Control */

enum WMI_PEER_STA_TYPE {
    WMI_PEER_STA_TYPE_INVALID                 = 0, /* Invalid type*/
    WMI_PEER_STA_TYPE_ONLY_STAVDEV            = 1, /* AP has only STAVDEV and APVDEV is not present on any radio */
    WMI_PEER_STA_TYPE_APVDEV_ON_OTHER_RADIO   = 2, /* AP has STAVDEV on one radio and APVDEV on other radios */
    WMI_PEER_STA_TYPE_FH_APVDEV_ON_SAME_RADIO = 3, /* AP has STAVDEV and APVDEV on same radio. During STAVDEV connection,
                                                    * no repeater client is connected with this repeater APVDEV
                                                    */
    WMI_PEER_STA_TYPE_BH_APVDEV_ON_SAME_RADIO = 4, /* AP has STAVDEV and APVDEV on same radio. During STAVDEV connection,
                                                    * at least one repeater client is connected with this repeater APVDEV
                                                    * (daisy chain config)
                                                    */
};

#define WMI_PEER_STA_TYPE_GET(dword)        WMI_GET_BITS(dword, 0, 8)
#define WMI_PEER_STA_TYPE_SET(dword, value) WMI_SET_BITS(dword, 0, 8, value)

#define WMI_PEER_ASSOC_BSS_MAX_IDLE_OPTION_BITPOS  (0)
#define WMI_PEER_ASSOC_BSS_MAX_IDLE_OPTION_MASK    (0x1 << WMI_PEER_ASSOC_BSS_MAX_IDLE_OPTION_BITPOS)
#define WMI_PEER_ASSOC_SET_BSS_MAX_IDLE_OPTION(_dword, _val) \
    WMI_SET_BITS(_dword, WMI_PEER_ASSOC_BSS_MAX_IDLE_OPTION_BITPOS, 1, _val)
#define WMI_PEER_ASSOC_GET_BSS_MAX_IDLE_OPTION(_dword) \
    WMI_GET_BITS(_dword, WMI_PEER_ASSOC_BSS_MAX_IDLE_OPTION_BITPOS, 1)

#define WMI_PEER_ASSOC_BSS_MAX_IDLE_PERIOD_BITPOS  (16)
#define WMI_PEER_ASSOC_BSS_MAX_IDLE_PERIOD_MASK    (0xFFFF << WMI_PEER_ASSOC_BSS_MAX_IDLE_PERIOD_BITPOS)
#define WMI_PEER_ASSOC_SET_BSS_MAX_IDLE_PERIOD(_dword, _val) \
    WMI_SET_BITS(_dword, WMI_PEER_ASSOC_BSS_MAX_IDLE_PERIOD_BITPOS, 16, _val)
#define WMI_PEER_ASSOC_GET_BSS_MAX_IDLE_PERIOD(_dword) \
    WMI_GET_BITS(_dword, WMI_PEER_ASSOC_BSS_MAX_IDLE_PERIOD_BITPOS, 16)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag (MITLV_TAG_STRUC_wmi_peer_assoc_mlo_partner_link_params) and len */
    A_UINT32 vdev_id; /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 hw_mld_link_id; /** Unique link id across SOCs, got as part of QMI handshake. */
    wmi_mlo_flags mlo_flags;  /** MLO flags */
    A_UINT32 logical_link_index; /** Unique index for links of the mlo. Starts with Zero */
} wmi_peer_assoc_mlo_partner_link_params;

/* This TLV structure used to pass mlo Parameters on peer assoc, only apply for mlo-peers */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; */
    /** MLO flags */
    wmi_mlo_flags mlo_flags;
    /** MLD MAC address */
    wmi_mac_addr mld_macaddr;
    /** Unique index for links of the mlo. Starts with Zero */
    A_UINT32 logical_link_index;
    /** ML Peer ID
     * In WIN systems, mld_peer_id is generated by Host.
     * In MCL systems, mld_peer_id will be set to invalid peer id.
     */
    A_UINT32 mld_peer_id;
    /** Link-ID of the AP to which STA is associated */
    A_UINT32 ieee_link_id;
    /** eMLSR transition timeout in microseconds */
    A_UINT32 emlsr_trans_timeout_us;
    /** eMLSR transition delay in microseconds */
    A_UINT32 emlsr_trans_delay_us;
    /** eMLSR padding delay in microseconds */
    A_UINT32 emlsr_padding_delay_us;
    union {
        /** Medium Synchronization Duration field in units of 32 microseconds */
        A_UINT32 msd_dur_subfield;
        /** DEPRECATED - DO NOT USE.
         * Medium Synchronization Duration in microseconds */
        A_UINT32 msd_dur_us;
    };
    /** Medium Synchronization OFDM ED Threshold */
    A_UINT32 msd_ofdm_ed_thr;
    /** Medium Synchronization Max Num of TXOPs */
    A_UINT32 msd_max_num_txops;
} wmi_peer_assoc_mlo_params;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_assoc_tid_to_link_map */
    A_UINT32 tlv_header;

    /**
     * A_UINT32
     *     WMI_TID_TO_LINK_MAP_TID_NUM_GET / WMI_TID_TO_LINK_MAP_TID_NUM_SET
     *     tid_num:5,
     *
     *     WMI_TID_TO_LINK_MAP_DIR_GET / WMI_TID_TO_LINK_MAP_DIR_SET
     *     dir:2,                 // 0 - DL, 1 - UL, 2 - BiDi
     *
     *     WMI_TID_TO_LINK_MAP_DEFAULT_MAPPING_GET /
     *         WMI_TID_TO_LINK_MAP_DEFAULT_MAPPING_SET
     *     default_link_mapping:1, // If this is set to 1, ignore
     *                             // link_mapping_mask for the specific tid
     *
     *     WMI_TID_TO_LINK_MAP_LINK_MASK_GET / WMI_TID_TO_LINK_MAP_LINK_MASK_SET
     *     link_mapping_mask:16,
     *
     *     rsvd:8;
     */
    A_UINT32 tid_to_link_map_info;
} wmi_peer_assoc_tid_to_link_map;

#define WMI_PDEV_MESH_RX_FILTER_GET(enable) WMI_GET_BITS(enable,0,1)
#define WMI_PDEV_MESH_RX_FILTER_SET(enable,value) WMI_SET_BITS(enable,0,1,value)

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_mesh_rx_filter_enable_fixed_param **/
    A_UINT32 tlv_header;

    A_UINT32 pdev_id;
    union {
        struct {
            A_UINT32 enable: 1, /** denotes enable/disable mesh rx filter, refer to WMI_PDEV_MESH_RX_FILTER_GET/SET macros */
                    reserved: 31;
        };
        A_UINT32 enable_word32;
    };

    /** Mac_Add for the RX filter **/
    wmi_mac_addr link_macaddr;
} wmi_pdev_mesh_rx_filter_enable_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_assoc_complete_cmd_fixed_param */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** VDEV id */
    A_UINT32 vdev_id;
    /** assoc = 1 reassoc = 0 */
    A_UINT32 peer_new_assoc;
    /** peer associd (16 bits) */
    A_UINT32 peer_associd;
    /** peer station flags: see definition above */
    A_UINT32 peer_flags;
    /** negotiated capabilities (lower 16 bits)*/
    A_UINT32 peer_caps;
    /** Listen interval */
    A_UINT32 peer_listen_intval;
    /** HT capabilities of the peer */
    A_UINT32 peer_ht_caps;
    /** maximum rx A-MPDU length */
    A_UINT32 peer_max_mpdu;
    /** mpdu density of the peer in usec(0 to 16) */
    A_UINT32 peer_mpdu_density;
    /** peer rate capabilities see flags above */
    A_UINT32 peer_rate_caps;
    /** num spatial streams */
    A_UINT32 peer_nss;
    /** VHT capabilities of the peer */
    A_UINT32 peer_vht_caps;
    /** phy mode */
    A_UINT32 peer_phymode;
    /** HT Operation Element of the peer. Five bytes packed in 2
     *  INT32 array and filled from lsb to msb.
     *  Note that the size of array peer_ht_info[] cannotbe changed
     *  without breaking WMI Compatibility. */
    A_UINT32 peer_ht_info[2];
    /** total number of negotiated legacy rate set. Also the sizeof
     *  peer_legacy_rates[] */
    A_UINT32 num_peer_legacy_rates;
    /** total number of negotiated ht rate set. Also the sizeof
     *  peer_ht_rates[] */
    A_UINT32 num_peer_ht_rates;
    /**
     * Bitmap providing the mapping of bandwidths to max Rx NSS for this peer
     * in VHT160 / VHT80+80 Mode.
     * As per the New IEEE 802.11 Update, the AP & Peer could advertise and
     * handshake with the Max Rx NSS differing for different bandwidths
     * instead of a single max Rx NSS Value.
     * Some QCA chipsets have to advertise a different max Rx NSS value for
     * 160 MHz and 80MHz.
     *
     *  bit[2:0] : Represents value of Rx NSS for VHT 160 MHz
     *  bit[5:3] : Represents value of Rx NSS for VHT 80_80 MHz -
     *             Extended NSS support
     *  bit[30:6]: Reserved
     *  bit[31]  : MSB(0/1): 1 in case of valid data sent from Host
     */
    A_UINT32 peer_bw_rxnss_override;

    /* 802.11ax capabilities */
    wmi_ppe_threshold peer_ppet;
    A_UINT32 peer_he_cap_info; /* protocol-defined HE / 11ax capability flags */
    A_UINT32 peer_he_ops; /* HE operation contains BSS color */
    A_UINT32 peer_he_cap_phy[WMI_MAX_HECAP_PHY_SIZE];
    A_UINT32 peer_he_mcs; /* Indicates number of HE MCS TLV present */

    /* 2nd DWORD of 11ax MAC Capabilities */
    A_UINT32 peer_he_cap_info_ext;

    /*
     * bit 0     : Indicated support for RX 1xLTF + 0.4us
     * bit 1     : Indicates support for RX 2xLTF + 0.4us
     * bit 2     : Indicates support for 2xLTF in 160/80+80 MHz HE PPDU
     * bit[4:3]  : Indicates support for DL OFDMA
     *             Refer to enum WMI_HE_RX_DL_OFDMA_SUPPORT_x
     * bit[6:5]  : Indicates support for DL MU-MIMO
     *             Refer to enum WMI_HE_RX_DL_MUMIMO_SUPPORT_x
     * bit[31:7] : Reserved
     * Refer to WMI_HE_CAP_xx_LTF_xxx_SUPPORT_GET/SET macros
     */
    A_UINT32 peer_he_cap_info_internal;

    /* min data rate to be used in Mbps */
    A_UINT32 min_data_rate;

    /** HE 6 GHz Band Capabilities of the peer.
     * (Defined in 9.4.2.261 HE 6 GHz Band Capabilities element in
     * 802.11ax_D5.0.)
     * valid when WMI_PEER_HE is set and WMI_PEER_VHT/HT are not set.
     */
    A_UINT32 peer_he_caps_6ghz;

    /* bit[0-7] : sta_type
     * bit[8-31]: reserved
     * Refer to enum WMI_PEER_STA_TYPE for sta_type values.
     * Refer to WMI_PEER_STA_TYPE_GET/SET macros.
     */
    A_UINT32 sta_type;

    /*
     * @bss_max_idle_option - Parameters exchanged for BSS Max Idle capability.
     * bit 0       : If set, only a protected frame indicates activity.
     *               If cleared, either an unprotected or a protected frame
     *               indicates activity.
     *               Refer to the WMI_PEER_ASSOC_[SET,GET]_BSS_MAX_IDLE_OPTION
     *               macros.
     * bit [1:15]  : Reserved
     * bit [16:31] : Max idle period in units of 1000 TUs
     *               Refer to the WMI_PEER_ASSOC_[SET,GET]_BSS_MAX_IDLE_PERIOD
     *               macros.
     */
    A_UINT32 bss_max_idle_option;

    /*
     * Connected AP auth mode values are from  WMI_AUTH_ enum.
     * The target shall ignore an auth_mode value of 0 / WMI_AUTH_NONE,
     * due to ambiguity whether a zero value was provided explicitly or
     * simply as a default.
     */
    A_UINT32 auth_mode;

    /* Refer to WMI_PEER_EXT_xxx defs */
    A_UINT32 peer_flags_ext;

    /* 802.11be capabilities and other params */
    A_UINT32 puncture_20mhz_bitmap; /* each bit indicates one 20Mhz bw puntured */
    /* EHT mac capabilities from BSS beacon EHT cap IE, total WMI_MAX_EHTCAP_MAC_SIZE*A_UINT32 bits */
    A_UINT32 peer_eht_cap_mac[WMI_MAX_EHTCAP_MAC_SIZE];
    /* EHT phy capabilities from BSS beacon EHT cap IE, total WMI_MAX_EHTCAP_PHY_SIZE*A_UINT32 bits */
    A_UINT32 peer_eht_cap_phy[WMI_MAX_EHTCAP_PHY_SIZE];
    A_UINT32 peer_eht_ops;
    wmi_ppe_threshold peer_eht_ppet;

/* Following this struct are the TLV's:
 *     A_UINT8 peer_legacy_rates[];
 *     A_UINT8 peer_ht_rates[];
 *     wmi_vht_rate_set peer_vht_rates; <-- VHT capabilities of the peer
 *     WMI_he_rate_set_peer_he_rates; <-- HE capabilities of the peer
 *     wmi_peer_assoc_mlo_params  mlo_params[0,1]; <-- MLO parameters opt. TLV
 *         Only present for MLO peers.
 *         For non-MLO peers the array length should be 0.
 *     wmi_eht_rate_set peer_eht_rates; <-- EHT capabilities of the peer
 *     wmi_peer_assoc_mlo_partner_link_params link_info[] <-- partner link info
 *     wmi_peer_assoc_tid_to_link_map[] <-- tid to link_map info
 */
} wmi_peer_assoc_complete_cmd_fixed_param;

/* WDS Entry Flags */
#define WMI_WDS_FLAG_STATIC    0x1    /* Disable aging & learning */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_add_wds_entry_cmd_fixed_param */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** wds MAC addr */
    wmi_mac_addr wds_macaddr;
    /* Flags associated with WDS entry - see WMI_WDS_FLAG defs */
    A_UINT32 flags;
    A_UINT32 vdev_id;
} wmi_peer_add_wds_entry_cmd_fixed_param;

#define WMI_CHAN_INFO_START_RESP 0
#define WMI_CHAN_INFO_END_RESP 1
/* deprecated but maintained as aliases: old names containing typo */
#define WMI_CHAN_InFO_START_RESP WMI_CHAN_INFO_START_RESP
#define WMI_CHAN_InFO_END_RESP   WMI_CHAN_INFO_END_RESP

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_remove_wds_entry_cmd_fixed_param */
    /** wds MAC addr */
    wmi_mac_addr wds_macaddr;
    A_UINT32 vdev_id;
} wmi_peer_remove_wds_entry_cmd_fixed_param;


typedef struct {
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
} wmi_peer_q_empty_callback_event;

/*
 * Command to update an already existing WDS entry. Different address setting
 * combinations are possible.
 *
 * Valid wds and peer      -> Associated WDS entry peer ptr & flags will be updated.
 * Valid wds and null peer -> Associated WDS entry flags will be updated.
 * Null wds and Valid peer -> Flags will be updated for all WDS entries behind the peer.
 * Null wds and peer       -> Flags will be updated for all WDS entries.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_update_wds_entry_cmd_fixed_param */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** wds MAC addr */
    wmi_mac_addr wds_macaddr;
    /* Flags associated with WDS entry */
    A_UINT32 flags;
    A_UINT32 vdev_id;
} wmi_peer_update_wds_entry_cmd_fixed_param;

/**
 * Channel info WMI event
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chan_info_event_fixed_param */
    /** Error code */
    A_UINT32 err_code;
    /** Channel freq */
    A_UINT32 freq;
    /** Read flags */
    A_UINT32 cmd_flags;
    /** Noise Floor value */
    A_UINT32 noise_floor;
    /** rx clear count */
    A_UINT32 rx_clear_count;
    /** cycle count */
    A_UINT32 cycle_count;
    /** channel tx power per range in 0.5dBm steps */
    A_UINT32 chan_tx_pwr_range;
    /** channel tx power per throughput */
    A_UINT32 chan_tx_pwr_tp;
    /** rx frame count (cumulative) */
    A_UINT32   rx_frame_count;
    /** BSS rx cycle count */
    A_UINT32 my_bss_rx_cycle_count;
    /** b-mode data rx time (units are microseconds) */
    A_UINT32 rx_11b_mode_data_duration;
    /** tx frame count */
    A_UINT32 tx_frame_cnt;
    /** mac clock */
    A_UINT32 mac_clk_mhz;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /**
     * Noise Floor value for all chain in dBm.
     * If per_chain_noise_floor value is 0 then it should be ignored.
     */
    A_UINT32 per_chain_noise_floor[WMI_MAX_CHAINS];

/**
 * Following this structure is the optional TLV:
 * struct wmi_scan_blanking_params_info[0/1];
 * struct wmi_cca_busy_subband_info[];
 *     Reporting subband CCA busy info in host requested manner.
 */
} wmi_chan_info_event_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_cca_busy_subband_info */
    A_UINT32 tlv_header;
    /** rx clear count */
    A_UINT32 rx_clear_count;
} wmi_cca_busy_subband_info;

/**
 * The below structure contains parameters related to the scan radio
 * blanking feature
 */
typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_blanking_params_info */
    A_UINT32 tlv_header;
    /* scan_radio_blanking_duration:
     * Cumulative scan disabled duration which indicates the total time in
     * micro seconds where rx blanking was enabled on the scan radio due to
     * simultaneous transmissions on the same band in the serving radio.
     */
    A_UINT32 scan_radio_blanking_duration;
    /* scan_radio_blanking_count:
     * Count of the number of times rx blanking was enabled on the scan radio
     * due to simultaneous transmissions on the same band in the serving radio.
     */
    A_UINT32 scan_radio_blanking_count;
} wmi_scan_blanking_params_info;

typedef enum {
    /* Blanking feature will be disabled */
    WMI_SCAN_BLANKING_DISABLED = 0,

    /* Blanking enabled only on current operating band */
    WMI_SCAN_BLANKING_ENABLED,

    /*
     * Blanking enabled on both 5GHz and 6GHz bands when scan radio
     * home channel is on either 5GHz or 6GHz bands
     */
    WMI_SCAN_BLANKING_ENABLED_NO_ISOLATION,

    WMI_SCAN_BLANKING_MAX,
} WMI_SCAN_BLANKING_MODE;

/**
 * The below three structures are the params used for converting RSSI
 * from dB to dBm units.
 */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rssi_dbm_conversion_params_info */
    /* Current operating bandwidth as per wmi_channel_width */
    A_UINT32 curr_bw;
    /* Current rx chainmask */
    A_UINT32 curr_rx_chainmask;
    /* 3 Bytes of xbar_config are used for RF to BB mapping*/
    /* Samples of xbar_config,
     * If xbar_config is 0xFAC688(hex):
     *     RF chains 0-7 are connected to BB chains 0-7
     *     here,
     *         bits 0 to 2 = 0, maps BB chain 0 for RF chain 0
     *         bits 3 to 5 = 1, maps BB chain 1 for RF chain 1
     *         bits 6 to 8 = 2, maps BB chain 2 for RF chain 2
     *         bits 9 to 11 = 3, maps BB chain 3 for RF chain 3
     *         bits 12 to 14 = 4, maps BB chain 4 for RF chain 4
     *         bits 15 to 17 = 5, maps BB chain 5 for RF chain 5
     *         bits 18 to 20 = 6, maps BB chain 6 for RF chain 6
     *         bits 21 to 23 = 7, maps BB chain 7 for RF chain 7
     *
     * If xbar_config is 0x688FAC(hex):
     *     RF chains 0-3 are connected to BB chains 4-7
     *     RF chains 4-7 are connected to BB chains 0-3
     *     here,
     *         bits 0 to 2 = 4, maps BB chain 4 for RF chain 0
     *         bits 3 to 5 = 5, maps BB chain 5 for RF chain 1
     *         bits 6 to 8 = 6, maps BB chain 6 for RF chain 2
     *         bits 9 to 11 = 7, maps BB chain 7 for RF chain 3
     *         bits 12 to 14 = 0, maps BB chain 0 for RF chain 4
     *         bits 15 to 17 = 1, maps BB chain 1 for RF chain 5
     *         bits 18 to 20 = 2, maps BB chain 2 for RF chain 6
     *         bits 21 to 23 = 3, maps BB chain 3 for RF chain 7
     */
    A_UINT32 xbar_config;
    /* The below xlna_bypass params needed in old target architecture
     * generation, not applicable for current target architecture generation.
     * Values will be zero for current target architectures. */
    /* Low noise amplifier bypass offset; signed integer; units are in dB */
    A_INT32 xlna_bypass_offset;
    /* Low noise amplifier bypass threshold; signed integer; units are in dB */
    A_INT32 xlna_bypass_threshold;
    /* nf_hw_dbm:
     * 2D byte array of HW noise floor in dBm per chain, per 20MHz subband
     * This array is filled in little endian format.
     * for big-endian hosts, manual endian conversion is needed to obtain
     * correct sequence of values.
     */
    A_INT8 nf_hw_dbm[MAX_ANTENNA_EIGHT][MAX_20MHZ_SEGMENTS];
} wmi_rssi_dbm_conversion_params_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rssi_dbm_conversion_temp_offset_info */
    /**
     * RSSI offset based on the current temperature, signed integer,
     * units are in dB
     */
    A_INT32 rssi_temp_offset;
} wmi_rssi_dbm_conversion_temp_offset_info;

/**
 * RSSI dB to dBm conversion params event to host
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rssi_dbm_conversion_fixed_param */
    /* PDEV id */
    A_UINT32 pdev_id;
    /**
     * Followed by these TLVs below.
     * wmi_rssi_dbm_conversion_params_info rssi_dbm_conversion_param[0 or 1]
     *     wmi_rssi_dbm_conversion_params_info will be sent in case of
     *     channel, BW, rx_chainmask change.
     * wmi_rssi_dbm_conversion_temp_offset_info rssi_temp_offset[0 or 1]
     *     wmi_rssi_dbm_conversion_temp_offset_info will be sent when the
     *     RSSI temp offset changes.
     */
} wmi_rssi_dbm_conversion_params_info_event_fixed_param;

/**
 * Non wlan interference event
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wlan_dcs_cw_int */
    A_UINT32 channel; /* either number or freq in mhz*/
} wlan_dcs_cw_int;
#define ath_dcs_cw_int /* DEPRECATED */ wlan_dcs_cw_int /* alias */

/**
 *  wlan_dcs_im_tgt_stats
 *
 */
typedef struct _wlan_dcs_im_tgt_stats {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wlan_dcs_im_tgt_stats_t */

    /** current running TSF from the TSF-1 */
    A_UINT32 reg_tsf32;

    /** Known last frame RSSI, in case of multiple stations, if
     *  and at different ranges, this would not guarantee that
     *  this is the least RSSI.
     */
    A_UINT32 last_ack_rssi;

    /**  Sum of all the failed durations in the last one second interval.
     */
    A_UINT32 tx_waste_time;
    /** count how many times the hal_rxerr_phy is marked, in this
     *  time period
     */
    A_UINT32 rx_time;
    A_UINT32 phyerr_cnt;

    /**
     *  WLAN IM stats from target to host
     *
     *  Below statistics are sent from target to host periodically.
     *  These are collected at target as long as target is running
     *  and target chip is not in sleep.
     *
     */

    /** listen time from ANI */
    A_INT32 listen_time;

    /** tx frame count, MAC_PCU_TX_FRAME_CNT_ADDRESS */
    A_UINT32 reg_tx_frame_cnt;

    /** rx frame count, MAC_PCU_RX_FRAME_CNT_ADDRESS */
    A_UINT32 reg_rx_frame_cnt;

    /** rx clear count, MAC_PCU_RX_CLEAR_CNT_ADDRESS */
    A_UINT32 reg_rxclr_cnt;

    /** total cycle counts MAC_PCU_CYCLE_CNT_ADDRESS */
    A_UINT32 reg_cycle_cnt; /* delta cycle count */

    /** extension channel rx clear count  */
    A_UINT32 reg_rxclr_ext_cnt;

    /** OFDM phy error counts, MAC_PCU_PHY_ERR_CNT_1_ADDRESS */
    A_UINT32 reg_ofdm_phyerr_cnt;

    /** CCK phy error count, MAC_PCU_PHY_ERR_CNT_2_ADDRESS */
    A_UINT32 reg_cck_phyerr_cnt; /* CCK err count since last reset, read from register */

    /** Channel noise floor (units are dBm) */
    A_INT32 chan_nf;

    /** BSS rx cycle count */
    A_UINT32 my_bss_rx_cycle_count;
} wlan_dcs_im_tgt_stats_t;

typedef struct wlan_dcs_awgn_info {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dcs_awgn_int_t */
    A_UINT32 tlv_header;
    /** Channel width (20, 40, 80, 80+80, 160, 320 ) enum wmi_channel_width */
    A_UINT32 channel_width;
    /** Primary channel frequency (MHz) */
    A_UINT32 chan_freq;
    /** center frequency (MHz) first segment */
    A_UINT32 center_freq0;
    /** center frequency (MHz) second segment */
    A_UINT32 center_freq1;
    /*
     * Indicates which 20MHz segments contain interference
     *  320 MHz: bits 0-15
     *  160 MHz: bits 0-7
     *   80 MHz: bits 0-3
     * Bitmap - Each bit position will indicate 20MHz in which
     * interference is seen. (Valid 16 bits out of 32 bit integer)
     * Note: for 11be, the interference present 20MHz can be punctured
     * for better channel utilization.
     */
    A_UINT32 chan_bw_interference_bitmap;
} wmi_dcs_awgn_int_t;

/**
 *  wmi_dcs_interference_event_t
 *
 *  Right now this is event and stats together. Partly this is
 *  because cw interference is handled in target now. This
 *  can be done at host itself, if we can carry the NF alone
 *  as a stats event. In future this would be done and this
 *  event would carry only stats.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dcs_interference_event_fixed_param */
    /**
     * Type of the event present, either the cw interference event, or the wlan_im stats, or AWGN int
     *  ATH_CAP_DCS_CWIM   0x01
     *  ATH_CAP_DCS_WLANIM 0x02
     *  ATH_CAP_DCS_AGWNIM 0x04
     */
    A_UINT32 interference_type; /* type of interference, wlan, cw, or AWGN */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
/*
 * Following this struct are these TLVs. Note that they are both array of structures
 * but can have at most one element. Which TLV is empty or has one element depends
 * on the field interference_type. This is to emulate an union with cw_int and wlan_stat
 * elements (not arrays).     union { wlan_dcs_cw_int cw_int; wlan_dcs_im_tgt_stats_t   wlan_stat; } int_event;
 *
 *       wlan_dcs_cw_int            cw_int[];   <-- cw_interference event
 *       wlan_dcs_im_tgt_stats_t   wlan_stat[]; <-- wlan im interference stats
 *       wmi_dcs_awgn_int_t        awgn_int[];  <-- Additive white Gaussian noise (awgn) interference
 */
} wmi_dcs_interference_event_fixed_param;

enum wmi_peer_mcast_group_action {
    wmi_peer_mcast_group_action_add = 0,
    wmi_peer_mcast_group_action_del = 1
};
#define WMI_PEER_MCAST_GROUP_FLAG_ACTION_M   0x1
#define WMI_PEER_MCAST_GROUP_FLAG_ACTION_S   0
#define WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_M 0x2
#define WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_S 1
#define WMI_PEER_MCAST_GROUP_FLAG_SRC_FILTER_EXCLUDE_M 0x4 /* flag to exclude an ip while filtering. set to exclude */
#define WMI_PEER_MCAST_GROUP_FLAG_SRC_FILTER_EXCLUDE_S 2
#define WMI_PEER_MCAST_GROUP_FLAG_IPV6_M 0x8 /* flag to say ipv4/ipv6. Will be set for ipv6 */
#define WMI_PEER_MCAST_GROUP_FLAG_IPV6_S 3
#define WMI_PEER_MCAST_GROUP_FLAG_DELETEALL_M 0x10 /* delete all mcast table entries. */
#define WMI_PEER_MCAST_GROUP_FLAG_DELETEALL_S 4

/* multicast group membership commands */
/* TODO: Converting this will be tricky since it uses an union.
 Also, the mac_addr is not aligned. We will convert to the wmi_mac_addr */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_mcast_group_cmd_fixed_param */
    A_UINT32 flags;
    wmi_mac_addr ucast_mac_addr;
    /* in network byte order */
    /* for ipv4, bytes (12-15) should contain ip address and other lower bytes 0. ipv6 should have all bytes valid */
    A_UINT8 mcast_ip_addr[16];
    /* for ipv6, all 16 bytes has to be valid; for ipv4 last 4 bytes(12-15) has to be valid, rest all 0s */
    A_UINT8 mcast_ip_mask[16];/* zero out lower bytes if ipv4*/
    /* number of address filters - irrespective of ipv4/ipv6 addresses */
    A_UINT32 num_filter_addr;
    /* this array should contain the src IPs that are to be filtered during find
       The array should be packed.
       If there are 2 ipv4 addresses, there should be 8 bytes and rest all 0s */
    A_UINT8 filter_addr[64]; /* 16 ipv4 addresses or 4 ipv6 addresses */
    A_UINT8  vdev_id; /* vdev of this mcast group */
} wmi_peer_mcast_group_cmd_fixed_param;


/** Offload Scan and Roaming related  commands */
/** The FW performs 2 different kinds of offload scans independent
 *  of host. One is Roam scan which is primarily performed  on a
 *  station VDEV after association to look for a better AP that
 *  the station VDEV can roam to. The second scan is connect scan
 *  which is mainly performed when the station is not associated
 *  and to look for a matching AP profile from a list of
 *  configured profiles. */

/* flags for roam_scan_mode_cmd
 * indicate the status (success/fail) of wmi_roam_scan_mode cmd through WMI_ROAM_EVENTID */
#define WMI_ROAM_SCAN_MODE_FLAG_REPORT_STATUS  0x1

/**
 * WMI_ROAM_SCAN_MODE: Set Roam Scan mode
 *   the roam scan mode is one of the periodic, RSSI change, both, none.
 *   None        : Disable Roam scan. No Roam scan at all.
 *   Periodic    : Scan periodically with a configurable period.
 *   Rssi change : Scan when ever RSSI to current AP changes by the threshold value
 *                 set by WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD command.
 *   Both        : Both of the above (scan when either period expires or rss to current AP changes by X amount)
 *
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_mode_fixed_param */
    A_UINT32 roam_scan_mode;
    A_UINT32 vdev_id;
    A_UINT32 flags; /* see WMI_ROAM_SCAN_MODE_FLAG defs */
    /*
     * Minimum duration allowed between two consecutive roam scans.
     * Roam scan is not allowed, if duration between two consecutive
     * roam scans is less than this time.
     */
    A_UINT32 min_delay_btw_scans; /* In msec */
    /*
     * Bitmask (with enum WMI_ROAM_TRIGGER_REASON_ID identifying the bit
     * positions) showing for which roam_trigger_reasons the
     * min_delay_btw_scans constraint should be applied.
     * 0x0 means there is no time restrictions between successive roam scans.
     */
    A_UINT32 min_delay_roam_trigger_reason_bitmask;
} wmi_roam_scan_mode_fixed_param;

#define WMI_ROAM_SCAN_MODE_NONE        0x0
#define WMI_ROAM_SCAN_MODE_PERIODIC    0x1
#define WMI_ROAM_SCAN_MODE_RSSI_CHANGE 0x2
#define WMI_ROAM_SCAN_MODE_BOTH        0x3
/* Note: WMI_ROAM_SCAN_MODE_ROAMOFFLOAD is one bit not conflict with LFR2.0 SCAN_MODE. */
#define WMI_ROAM_SCAN_MODE_ROAMOFFLOAD 0x4


typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 command_arg;
} wmi_roam_scan_cmd_fixed_param;

#define WMI_ROAM_SCAN_STOP_CMD 0x1

/**
 * WMI_ROAM_SCAN_RSSI_THRESHOLD : set scan RSSI threshold
 *  scan RSSI threshold is the RSSI threshold below which the FW will start running Roam scans.
 * Applicable when WMI_ROAM_SCAN_MODE is not set to none.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_rssi_threshold_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** roam scan RSSI threshold */
    A_UINT32 roam_scan_rssi_thresh;
    /** When using Hw generated beacon RSSI interrupts */
    A_UINT32 roam_rssi_thresh_diff;
    /** 5G scan max count */
    A_UINT32 hirssi_scan_max_count;
    /** 5G scan RSSI change threshold value */
    A_UINT32 hirssi_scan_delta;
    /** 5G scan upper bound */
    A_UINT32 hirssi_upper_bound;
    /** roam scan RSSI threshold for 5G band.
     *  offset from roam_scan_rssi_thres, in dB units
     */
    A_INT32 rssi_thresh_offset_5g;
    /* The TLVs will follow.
     * wmi_roam_scan_extended_threshold_param extended_param;
     * wmi_roam_earlystop_rssi_thres_param earlystop_param;
     * wmi_roam_dense_thres_param dense_param;
     * wmi_roam_bg_scan_roaming_param bg_scan_param;
     * wmi_roam_data_rssi_roaming_param data_rssi_param;
     */
} wmi_roam_scan_rssi_threshold_fixed_param;

/**
 * WMI_ROAM_BTM_CONFIG_CMDID : set BTM (BSS Transition Management. 802.11v) offload config
 *  Applicable only when WMI_ROAM_SCAN_MODE is enabled with WMI_ROAM_SCAN_MODE_ROAMOFFLOAD
 */

/**
 *  btm_config.flags
 *  BIT 0     : Enable/Disable the BTM offload.
 *  BIT 1-2   : Action on non matching candidate with cache. Used WMI_ROAM_BTM_OFLD_NON_MATCHING_CND_XXX
 *  BIT 3-5   : Roaming handoff decisions. Use WMI_ROAM_BTM_OFLD_CNDS_MATCH_XXX
 *  BIT 6     : Enable/Disable solicited BTM
 *  BIT 7     : Roam BTM candidates based on the roam score instead of BTM preferred value
 *  BIT 8     : BTM query preference over 11k neighbor report request
 *  BIT 9     : Send BTM query with preferred candidates list
 *  BIT 10    : Forward MBO BTM Request to Host if MBO ASSOC RETRY attribute is set
 *  BIT 11-31 : Reserved
 */
#define WMI_ROAM_BTM_SET_ENABLE(flags, val)                        WMI_SET_BITS(flags, 0, 1, val)
#define WMI_ROAM_BTM_GET_ENABLE(flags)                             WMI_GET_BITS(flags, 0, 1)
#define WMI_ROAM_BTM_SET_NON_MATCHING_CND_ACTION(flags, val)       WMI_SET_BITS(flags, 1, 2, val)
#define WMI_ROAM_BTM_GET_NON_MATCHING_CND_ACTION(flags)            WMI_GET_BITS(flags, 1, 2)
#define WMI_ROAM_BTM_SET_CNDS_MATCH_CONDITION(flags, val)          WMI_SET_BITS(flags, 3, 3, val)
#define WMI_ROAM_BTM_GET_CNDS_MATCH_CONDITION(flags)               WMI_GET_BITS(flags, 3, 3)
#define WMI_ROAM_BTM_SET_SOLICITED_BTM_ENABLE(flags, val)          WMI_SET_BITS(flags, 6, 1, val)
#define WMI_ROAM_BTM_GET_SOLICITED_BTM_ENABLE(flags)               WMI_GET_BITS(flags, 6, 1)
#define WMI_ROAM_BTM_SET_CNDS_SELECT_BASED_ON_SCORE(flags, val)    WMI_SET_BITS(flags, 7, 1, val)
#define WMI_ROAM_BTM_GET_CNDS_SELECT_BASED_ON_SCORE(flags)         WMI_GET_BITS(flags, 7, 1)
#define WMI_ROAM_BTM_SET_BTM_QUERY_PREFERENCE_OVER_11K(flags, val) WMI_SET_BITS(flags, 8, 1, val)
#define WMI_ROAM_BTM_GET_BTM_QUERY_PREFERENCE_OVER_11K(flags)      WMI_GET_BITS(flags, 8, 1)
#define WMI_ROAM_BTM_SET_BTM_QUERY_WITH_CANDIDATE_LIST(flags, val) WMI_SET_BITS(flags, 9, 1, val)
#define WMI_ROAM_BTM_GET_BTM_QUERY_WITH_CANDIDATE_LIST(flags)      WMI_GET_BITS(flags, 9, 1)
#define WMI_ROAM_BTM_SET_FORWARD_MBO_ASSOC_RETRY_BTM_REQUEST_TO_HOST(flags, val)    WMI_SET_BITS(flags, 10, 1, val)
#define WMI_ROAM_BTM_GET_FORWARD_MBO_ASSOC_RETRY_BTM_REQUEST_TO_HOST(flags)         WMI_GET_BITS(flags, 10, 1)


/** WMI_ROAM_BTM_SET_NON_MATCHING_CNDS_ACTION definition: When BTM candidate is not matched with cache by WMI_ROAM_BTM_SET_CNDS_MATCH_CONDITION, determine what to do */
#define WMI_ROAM_BTM_NON_MATCHING_CNDS_SCAN_CONSUME      0 /** Invoke roam scan and consume within firmware. Applicable only when ROAM_SCAN_MODE is enabled. If ROAM_SCAN_MODE is disabled, firmware won't scan and forward it to host */
#define WMI_ROAM_BTM_NON_MATCHING_CNDS_NO_SCAN_FORWARD   1 /** Does not allow roam scan and forward BTM frame to host */
/** reserved upto 3 */

/** WMI_ROAM_BTM_SET_CNDS_MATCH_CONDITION definition: This is used to invoke WMI_ROAM_BTM_SET_NON_MATCHING_CND_ACTION when compared with cache. i.e this condition is not applied with fresh scan result */
#define WMI_ROAM_BTM_CNDS_MATCH_EXACT                    0 /** Exactly matched with roam candidate list to BTM candidates */
#define WMI_ROAM_BTM_CNDS_MATCH_AT_LEAST_TOP             1 /** At least one or more top priority bssid matched */
/** reserved upto 7 */

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_btm_config_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV on which BTM is enabled/disabled */
    A_UINT32 vdev_id;
    /** BTM configuration control flags */
    A_UINT32 flags;
    /*  BTM query timeout, unit: milliseconds
     *  valid value range: 1-10000,
     *  default value: 100 will be set if invalid value is given
     */
    A_UINT32 solicited_timeout_ms;
    /*  Maximum attempt of solicited BTM
     *  If continuous failure reach to this value, solicited BTM to current
     *  ESS will be disabled.
     *  valid value range: 1 - (2^32-1). (2^32)-1 means sending forever
     *  Default value: 3 will be set if invalid value is given
     */
    A_UINT32 max_attempt_cnt;
    /*  Time to stick to current AP after BTM, unit: seconds
     *  valid value range: 0 -(2^16-1).
     *  Either 0 or (2^16)-1 means stick to AP forever.
     *  Default value: 300 will be set if invalid value is given
     */
     A_UINT32 stick_time_seconds;
    /*  Disassoc time threshold in milliseconds
     *  This time threshold allows the target to judge whether the STA
     *  should can move to another AP immediately, or if the STA has time
     *  to calculate roaming candidates.
     *  If the disassoc_timer_threshold value is 0x0, the field should be
     *  disregarded.
     */
    A_UINT32 disassoc_timer_threshold;
    /*
     * Bitmask (with enum WMI_ROAM_TRIGGER_REASON_ID identifying the bit
     * positions) showing for which roam_trigger_reasons the
     * btm query needs to be sent.
     * If roam trigger reasons are unspecified, btm_bitmap will be 0x0.
     */
    A_UINT32 btm_bitmap;
    /*
     * Consider AP as roam candidate only if AP score is better than
     * btm_candidate_min_score for BTM roam trigger
     */
    A_UINT32 btm_candidate_min_score;
} wmi_btm_config_fixed_param;

#define WMI_ROAM_5G_BOOST_PENALIZE_ALGO_FIXED  0x0
#define WMI_ROAM_5G_BOOST_PENALIZE_ALGO_LINEAR 0x1
#define WMI_ROAM_5G_BOOST_PENALIZE_ALGO_LOG    0x2
#define WMI_ROAM_5G_BOOST_PENALIZE_ALGO_EXP    0x3

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_extended_threshold_param */
    A_UINT32 boost_threshold_5g; /** RSSI threshold above which 5GHz RSSI is favored */
    A_UINT32 penalty_threshold_5g; /** RSSI threshold below which 5GHz RSSI is penalized */
    A_UINT32 boost_algorithm_5g; /** 0 == fixed, 1 == linear, 2 == logarithm ..etc */
    A_UINT32 boost_factor_5g; /** factor by which 5GHz RSSI is boosted */
    A_UINT32 penalty_algorithm_5g; /** 0 == fixed, 1 == linear, 2 == logarithm ..etc */
    A_UINT32 penalty_factor_5g; /** factor by which 5GHz RSSI is penalized */
    A_UINT32 max_boost_5g; /** maximum boost that can be applied to a 5GHz RSSI */
    A_UINT32 max_penalty_5g; /** maximum penalty that can be applied to a 5GHz RSSI */
    A_UINT32 good_rssi_threshold; /**  RSSI below which roam is kicked in by background scan, although RSSI is still good */
} wmi_roam_scan_extended_threshold_param;

/**
 * WMI_ROAM_SCAN_PERIOD: period for roam scan.
 *  Applicable when the scan mode is Periodic or both.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_period_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** roam scan period value */
    A_UINT32 roam_scan_period; /* units = milliseconds */
    /** Aging for Roam scans */
    A_UINT32 roam_scan_age;
    /** Inactivity monitoring time to consider device is in inactive state with data count is less than roam_inactive_count */
    A_UINT32 inactivity_time_period; /* units = milliseconds */
    /** Maximum allowed data packets count during inactivity_time_period */
    A_UINT32 roam_inactive_count;
    /** New roam scan period after device is in inactivity state */
    A_UINT32 roam_scan_period_after_inactivity; /* units = milliseconds */
    /** roam full scan period value */
    A_UINT32 roam_full_scan_period; /* units = milliseconds */
} wmi_roam_scan_period_fixed_param;

/**
 * WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD : RSSI delta to trigger the roam scan.
 *   Rssi change threshold used when mode is Rssi change (or) Both.
 *   The FW will run the roam scan when ever the RSSI changes (up or down) by the value set by this parameter.
 *   Note scan is triggered based on the RSSI threshold condition set by WMI_ROAM_SCAN_RSSI_THRESHOLD
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_rssi_change_threshold_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** roam scan RSSI change threshold value */
    A_UINT32 roam_scan_rssi_change_thresh;
    /** When using Hw generated beacon RSSI interrupts */
    A_UINT32 bcn_rssi_weight;
    /** Minimum delay between two 5G scans */
    A_UINT32 hirssi_delay_btw_scans;
} wmi_roam_scan_rssi_change_threshold_fixed_param;

#define WMI_ROAM_SCAN_CHAN_LIST_TYPE_NONE 0x1
#define WMI_ROAM_SCAN_CHAN_LIST_TYPE_STATIC 0x2
#define WMI_ROAM_SCAN_CHAN_LIST_TYPE_DYNAMIC 0x3

#define WMI_ROAM_SCAN_LIST_FLAG_FLUSH_STATIC 0x1 /* Flush static roam scan channel list in FW */
#define WMI_ROAM_SCAN_LIST_FLAG_FLUSH_DYNAMIC 0x2 /* Flush dynamic roam scan channel list in FW */

/**
 * TLV for roaming channel list
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_chan_list_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** WMI_CHAN_LIST_TAG */
    A_UINT32 chan_list_type;
    /** # if channels to scan */
    A_UINT32 num_chan;
    A_UINT32 flags; /* refer to WMI_ROAM_SCAN_LIST_FLAG_xxx defs */
/**
 * TLV (tag length value) parameters follow the wmi_roam_chan_list
 * structure. The TLV's are:
 *     A_UINT32 channel_list[]; // in MHz
 **/
} wmi_roam_chan_list_fixed_param;

/** Authentication modes */
enum {
    WMI_AUTH_NONE, /* no upper level auth */
    WMI_AUTH_OPEN, /* open */
    WMI_AUTH_SHARED, /* shared-key */
    WMI_AUTH_8021X, /* 802.1x */
    WMI_AUTH_AUTO, /* Auto */
    WMI_AUTH_WPA, /* WPA */
    WMI_AUTH_RSNA, /* WPA2/RSNA */
    WMI_AUTH_CCKM, /* CCKM */
    WMI_AUTH_WAPI, /* WAPI */
    WMI_AUTH_AUTO_PSK,
    WMI_AUTH_WPA_PSK,
    WMI_AUTH_RSNA_PSK,
    WMI_AUTH_WAPI_PSK,
    WMI_AUTH_FT_RSNA, /* 11r FT */
    WMI_AUTH_FT_RSNA_PSK,
    WMI_AUTH_RSNA_PSK_SHA256,
    WMI_AUTH_RSNA_8021X_SHA256,
    WMI_AUTH_CCKM_WPA,
    WMI_AUTH_CCKM_RSNA,
    WMI_AUTH_RSNA_FILS_SHA256,
    WMI_AUTH_RSNA_FILS_SHA384,
    WMI_AUTH_RSNA_SUITE_B_8021X_SHA256,
    WMI_AUTH_RSNA_SUITE_B_8021X_SHA384,
    WMI_AUTH_FT_RSNA_SAE,
    WMI_AUTH_FT_RSNA_SUITE_B_8021X_SHA384,
    WMI_AUTH_FT_RSNA_FILS_SHA256,
    WMI_AUTH_FT_RSNA_FILS_SHA384,
    WMI_AUTH_WPA3_SAE,
    WMI_AUTH_WPA3_OWE,
    WMI_AUTH_PASN,
    WMI_AUTH_RSNA_8021X_SHA384,
    WMI_AUTH_WPA3_SAE_SHA384,
    WMI_AUTH_FT_RSNA_SAE_SHA384,
};

typedef enum {
    WMI_SCAN_CLIENT_NLO = 0x1,  /* 1 */
    WMI_SCAN_CLIENT_EXTSCAN,    /* 2 */
    WMI_SCAN_CLIENT_ROAM,       /* 3 */
    WMI_SCAN_CLIENT_P2P,        /* 4 */
    WMI_SCAN_CLIENT_LPI,        /* 5 */
    WMI_SCAN_CLIENT_NAN,        /* 6 */
    WMI_SCAN_CLIENT_ANQP,       /* 7 */
    WMI_SCAN_CLIENT_OBSS,       /* 8 */
    WMI_SCAN_CLIENT_PLM,        /* 9 */
    WMI_SCAN_CLIENT_HOST,       /* 10 */
} WMI_SCAN_CLIENT_ID;

typedef struct {
    /** authentication mode (defined above)  */
    A_UINT32 rsn_authmode;
    /** unicast cipher set */
    A_UINT32 rsn_ucastcipherset;
    /** mcast/group cipher set */
    A_UINT32 rsn_mcastcipherset;
    /** mcast/group management frames cipher set */
    A_UINT32 rsn_mcastmgmtcipherset;
} wmi_rsn_params;

/** looking for a wps enabled AP */
#define WMI_AP_PROFILE_FLAG_WPS    0x1
/** looking for a secure AP  */
#define WMI_AP_PROFILE_FLAG_CRYPTO 0x2
/** looking for a PMF enabled AP */
#define WMI_AP_PROFILE_FLAG_PMF    0x4
/** If this flag is set roam to SAE_H2E (Hash to Element) enabled APs only */
#define WMI_AP_PROFILE_FLAG_SAE_H2E 0x8

/* the value used in wmi_roam_cnd_scoring_param->disable_bitmap */
#define WLAN_ROAM_SCORING_RSSI_DISABLE                  0x00000001
#define WLAN_ROAM_SCORING_HT_DISABLE                    0x00000002
#define WLAN_ROAM_SCORING_VHT_DISABLE                   0x00000004
#define WLAN_ROAM_SCORING_BW_DISABLE                    0x00000008
#define WLAN_ROAM_SCORING_BAND_DISABLE                  0x00000010
#define WLAN_ROAM_SCORING_NSS_DISABLE                   0x00000020
#define WLAN_ROAM_SCORING_CHAN_CONGESTION_DISABLE       0x00000040
#define WLAN_ROAM_SCORING_BEAMFORMING_DISABLE           0x00000080
#define WLAN_ROAM_SCORING_PCL_DISABLE                   0x00000100
#define WLAN_ROAM_SCORING_HE_DISABLE                    0x00000200
#define WLAN_ROAM_SCORING_OCE_WAN_DISABLE               0x00000400
#define WLAN_ROAM_SCORING_ETH_DISABLE                   0x00000800
#define WLAN_ROAM_SCORING_MLO_DISABLE                   0x00001000

#define WLAN_ROAM_SCORING_DISABLE_ALL                   0xFFFFFFFF
#define WLAN_ROAM_SCORING_DEFAULT_PARAM_ALLOW           0x0

#define WLAN_ROAM_MAX_SELECTION_SCORE                   10000

#define WLAN_ROAM_SCORE_20MHZ_BW_INDEX                  0
#define WLAN_ROAM_SCORE_40MHZ_BW_INDEX                  1
#define WLAN_ROAM_SCORE_80MHZ_BW_INDEX                  2
#define WLAN_ROAM_SCORE_160MHZ_BW_INDEX                 3
#define WLAN_ROAM_SCORE_MAX_BW_INDEX                    4
#define WMI_ROAM_GET_BW_SCORE_PERCENTAGE(value32, bw_index)                   WMI_GET_BITS(value32, (8 * (bw_index)), 8)
#define WMI_ROAM_SET_BW_SCORE_PERCENTAGE(value32, score_pcnt, bw_index)       WMI_SET_BITS(value32, (8 * (bw_index)), 8, score_pcnt)

#define WLAN_ROAM_SCORE_NSS_1x1_INDEX                   0
#define WLAN_ROAM_SCORE_NSS_2x2_INDEX                   1
#define WLAN_ROAM_SCORE_NSS_3x3_INDEX                   2
#define WLAN_ROAM_SCORE_NSS_4x4_INDEX                   3
#define WLAN_ROAM_SCORE_MAX_NSS_INDEX                   4
#define WMI_ROAM_GET_NSS_SCORE_PERCENTAGE(value32, nss_index)                 WMI_GET_BITS(value32, (8 * (nss_index)), 8)
#define WMI_ROAM_SET_NSS_SCORE_PERCENTAGE(value32, score_pcnt, nss_index)     WMI_SET_BITS(value32, (8 * (nss_index)), 8, score_pcnt)

#define WLAN_ROAM_SCORE_BAND_2G_INDEX                   0
#define WLAN_ROAM_SCORE_BAND_5G_INDEX                   1
#define WLAN_ROAM_SCORE_BAND_6G_INDEX                   2
/* 3 is reserved */
#define WLAN_ROAM_SCORE_MAX_BAND_NUM_INDICES            4
#define WLAN_ROAM_SCORE_MAX_BAND_INDEX WLAN_ROAM_SCORE_MAX_BAND_NUM_INDICES

#define WLAN_ROAM_SCORE_SECURITY_WPA_INDEX              0
#define WLAN_ROAM_SCORE_SECURITY_WPA2_INDEX             1
#define WLAN_ROAM_SCORE_SECURITY_WPA3_INDEX             2
/* 3 is reserved */
#define WLAN_ROAM_SCORE_SECURITY_MAX_NUM_INDICES        4

#define WMI_ROAM_GET_BAND_SCORE_PERCENTAGE(value32, band_index)                 WMI_GET_BITS(value32, (8 * (band_index)), 8)
#define WMI_ROAM_SET_BAND_SCORE_PERCENTAGE(value32, score_pcnt, band_index)     WMI_SET_BITS(value32, (8 * (band_index)), 8, score_pcnt)

#define WLAN_ROAM_SCORE_MAX_CHAN_CONGESTION_SLOT        16
#define WLAN_ROAM_SCORE_DEFAULT_CONGESTION_SLOT         0

#define WLAN_ROAM_SCORE_MAX_OCE_WAN_SLOT                16
#define WLAN_ROAM_SCORE_DEFAULT_OCE_WAN_SLOT            0

#define WLAN_ROAM_SCORE_320MHZ_BW_EXT_INDEX             0
#define WLAN_ROAM_SCORE_MAX_BW_EXT_INDEX                4

#define WLAN_ROAM_SCORE_MLSR_INDEX                      0
#define WLAN_ROAM_SCORE_MLMR_INDEX                      1
#define WLAN_ROAM_SCORE_EMLSR_INDEX                     2
#define WLAN_ROAM_SCORE_EMLMR_INDEX                     3
#define WLAN_ROAM_SCORE_MLO_INDEX                       4
#define WMI_ROAM_GET_MLO_SCORE_PERCENTAGE(value32, mlo_index)                 WMI_GET_BITS(value32, (8 * (mlo_index)), 8)
#define WMI_ROAM_SET_MLO_SCORE_PERCENTAGE(value32, score_pcnt, mlo_index)     WMI_SET_BITS(value32, (8 * (mlo_index)), 8, score_pcnt)
#define WMI_ROAM_GET_SECURITY_SCORE_PERCENTAGE(value32, security_index) \
    WMI_GET_BITS(value32, (8 * (security_index)), 8)
#define WMI_ROAM_SET_SECURITY_SCORE_PERCENTAGE(value32, score_pcnt, security_index) \
    WMI_SET_BITS(value32, (8 * (security_index)), 8, score_pcnt)

/**
    best_rssi_threshold: Roamable AP RSSI equal or better than this threshold, full RSSI score 100. Units in dBm.
    good_rssi_threshold: Below this threshold, scoring linear percentage between rssi_good_pcnt and 100. Units in dBm.
    bad_rssi_threshold:  Between good and bad RSSI threshold, scoring linear percentage between rssi_bad_pcnt and rssi_good_pcnt. Units in dBm.
    good_rssi_pcnt: Used to assigned scoring percentage of each slot between best to good RSSI threshold. Units in percentage.
    bad_rssi_pcnt: Used to assigned scoring percentage of each slot between good to bad RSSI threshold. Units in percentage.
    good_bucket_size : bucket size of slot in good zone.  Units in dB.
    bad_bucket_size : bucket size of slot in bad zone. Units in dB.
    rssi_pref_5g_rssi_thresh: Below RSSI threshold, 5G AP have given preference of band percentage. Units in dBm.
*/
/**
    The graph below explains how RSSI scoring percentage is calculated
    as the RSSI improves.  In the graph, the derived parameters good_buckets
    and bad_buckets are used.  These derived parameters are related to the
    specified parameters as follows:
        good_buckets =
            (best_rssi_threshold - good_rssi_threshold) / good_bucket_size
        bad_buckets =
            (good_rssi_threshold - bad_rssi_threshold) / bad_bucket_size

      |     (x0,y0) (x0 = best_rssi, y0 = 100)
p 100 |-------o
e     |       |<--------- (100 - good_rssi_pct)/good_buckets
r     |       |___  ,---- good_bucket_size
c     |           | |
e     |           |_V_
n     |               |
t     |               |___o (x1,y1) (x1 = good_rssi, y1 = good_rssi_pcnt)
   80 |                   |
%     |                   |<------ (good_rssi_pcnt - bad_rssi_pcnt)/bad_buckets
      |                   |_____
      |                         |  ,-- bad_bucket_size
      |                         |  |
      |                         |__v__
      |                               |
      |                               |
   40 |                               o------------
      |                             (x2,y2) (x2 = bad_rssi, y2 = bad_rssi_pcnt)
      +------o------------o-----------o------------->
            -50         -70          -80          RSSI dBm

| excellent  |  good      | bad       | poor
| zone       |  zone      | zone      | zone
             V            V           V
        BEST_THRES   GOOD_THRES     BAD_THRES
 */
typedef struct {
    A_INT32  best_rssi_threshold;
    A_INT32  good_rssi_threshold;
    A_INT32  bad_rssi_threshold;
    A_UINT32 good_rssi_pcnt;
    A_UINT32 bad_rssi_pcnt;
    A_UINT32 good_bucket_size;
    A_UINT32 bad_bucket_size;
    A_INT32  rssi_pref_5g_rssi_thresh;
} wmi_roam_cnd_rssi_scoring;

/**
    Use macro WMI_ROAM_CND_GET/SET_BW_SCORE_PERCENTAGE to get and set the
    value respectively of bw_scoring
        BITS 0-7   :- It contains scoring percentage of 20MHz  BW
        BITS 8-15  :- It contains scoring percentage of 40MHz  BW
        BITS 16-23 :- It contains scoring percentage of 80MHz  BW
        BITS 24-31 :- It contains scoring percentage of 160MHz BW

    Use macro WMI_ROAM_CND_GET/SET_BW_SCORE_PERCENTAGE to get and set the
    value respectively of ext_bw_scoring:
        BITS 0-7   :- It contains scoring percentage of 320MHz BW
        BITS 8-15  :- reserved
        BITS 16-23 :- reserved
        BITS 24-31 :- reserved

    The value of each index must be 0-100
 */
typedef struct {
    A_UINT32 score_pcnt;
} wmi_roam_cnd_bw_scoring;

/**
    Use macro WMI_ROAM_CND_GET/SET_BAND_SCORE_PERCENTAGE to get and set the value respectively.
    BITS 0-7   :- It contains scoring percentage of 2G
    BITS 8-15  :- It contains scoring percentage of 5G
    BITS 16-23 :- reserved
    BITS 24-31 :- reserved

    The value of each index must be 0-100
 */
typedef struct {
    A_UINT32 score_pcnt;
} wmi_roam_cnd_band_scoring;

/**
    Use macro WMI_ROAM_CND_GET/SET_NSS_SCORE_PERCENTAGE to get and set the value respectively.
        BITS 0-7   :- It contains scoring percentage of 1x1
        BITS 8-15  :- It contains scoring percentage of 2x2
        BITS 16-23 :- It contains scoring percentage of 3x3
        BITS 24-31 :- It contains scoring percentage of 4x4

    The value of each index must be 0-100
 */
typedef struct {
    A_UINT32 score_pcnt;
} wmi_roam_cnd_nss_scoring;

/**
    score_pcnt: Contains roam score percentage of each slot of respective channel_congestion_pcnt.It is also used same BITS for slot(0-3)
                BITS 0-7   :- the scoring pcnt when AP is not advertise QBSS/ESP info
                BITS 8-15 :-  SLOT_1
                BITS 16-23 :- SLOT_2
                BITS 24-31 :- SLOT_3
                BITS 32-      ...

    num_slot will equally divide 100. e.g, if num_slot = 4
    slot 0 = 0-25%, slot 1 = 26-50% slot 2 = 51-75%, slot 3 = 76-100%
*/
typedef struct {
    A_UINT32 num_slot; /* max 15 */
    A_UINT32 score_pcnt3_to_0;
    A_UINT32 score_pcnt7_to_4;
    A_UINT32 score_pcnt11_to_8;
    A_UINT32 score_pcnt15_to_12;
} wmi_roam_cnd_esp_qbss_scoring;

/**
    score_pcnt: Contains roam score percentage of each slot of respective channel_congestion_pcnt.It is also used same BITS for slot(0-3)
                BITS 0-7   :- the scoring pcnt when AP is not advertise QBSS/ESP info
                BITS 8-15 :-  SLOT_1
                BITS 16-23 :- SLOT_2
                BITS 24-31 :- SLOT_3
                BITS 32-      ...

    num_slot will equally divide 100. e.g, if num_slot = 4
    slot 0 = 0-25%, slot 1 = 26-50% slot 2 = 51-75%, slot 3 = 76-100%
*/
typedef struct {
    A_UINT32 num_slot; /* max 15  */
    A_UINT32 score_pcnt3_to_0;
    A_UINT32 score_pcnt7_to_4;
    A_UINT32 score_pcnt11_to_8;
    A_UINT32 score_pcnt15_to_12;
} wmi_roam_cnd_oce_wan_scoring;

/**
 *  Use macro WMI_ROAM_CND_GET/SET_SECURITY_SCORE_PERCENTAGE
 *  to get and set the value respectively.
 *  BITS 0-7   :- It contains scoring percentage of WPA security
 *  BITS 8-15  :- It contains scoring percentage of WPA2 security
 *  BITS 16-23 :- It contains scoring percentage of WPA3 security
 *  BITS 24-31 :- reserved
 *
 *  The value of each score must be 0-100
 */
typedef struct {
    A_UINT32 score_pcnt;
} wmi_roam_cnd_security_scoring;

typedef enum {
    WMI_VENDOR_ROAM_SCORE_ALGORITHM_ID_NONE = 0, /* Legacy roam score algorithm */
    WMI_VENDOR_ROAM_SCORE_ALGORITHM_ID_RSSI_CU_BASED = 1, /* Roam score algorithm based on RSSI and CU */
}  WMI_VENDOR_ROAM_SCORE_ALGORITHM_ID;

/**
    disable_bitmap :- Each bit will be either allow(0)/disallow(1) to considered the roam score param.
    rssi_weightage_pcnt :- RSSI weightage out of total score in percentage
    ht_weightage_pcnt :- HT weightage out of total score in percentage.
    vht_weightage_pcnt :- VHT weightage out of total score in percentage.
    he_weightage_pcnt :- 11ax weightage out of total score in percentage.
    bw_weightage_pcnt :- Bandwidth weightage out of total score in percentage.
    band_weightage_pcnt :- Band(2G/5G) weightage out of total score in percentage.
    nss_weightage_pcnt:- NSS(1x1 / 2x2) weightage out of total score in percentage.
    esp_qbss_weightage_pcnt: ESP/QBSS weightage out of total score in percentage.
    beamforming_weightage_pcnt :- Beamforming weightage out of total score in percentage.
    pcl_weightage_pcnt :- PCL weightage out of total score in percentage.
    oce_wan_weightage_pcnt :- OCE WAN metrics weightage out of total score in percentage.
    rssi_scoring :- RSSI scoring information.
    bw_scoring :- channel BW scoring percentage information.
    band_scoring : - band scording percentage information.
    nss_scoring :- NSS scoring percentage information.
    esp_qbss_scoring :- ESP/QBSS scoring percentage information
    oce_wan_scoring : OCE WAN metrics percentage information
    roam_score_delta_pcnt :- consider scanned AP as roam eligible candidate only if scanned AP score is at least roam_score_delta % better than connected AP score
    roam_score_delta_mask :- roam trigger bitmap for which roam_score_delta needs to apply. The WMI_ROAM_TRIGGER_REASON_ID enum values identify which bit within the mask is used for which roam trigger cause.
*/
typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_cnd_scoring_param */
    A_UINT32 disable_bitmap;
    A_INT32 rssi_weightage_pcnt;
    A_INT32 ht_weightage_pcnt;
    A_INT32 vht_weightage_pcnt;
    A_INT32 he_weightage_pcnt;
    A_INT32 bw_weightage_pcnt;
    A_INT32 band_weightage_pcnt;
    A_INT32 nss_weightage_pcnt;
    A_INT32 esp_qbss_weightage_pcnt;
    A_INT32 beamforming_weightage_pcnt;
    A_INT32 pcl_weightage_pcnt;
    A_INT32 oce_wan_weightage_pcnt;
    wmi_roam_cnd_rssi_scoring rssi_scoring;
    wmi_roam_cnd_bw_scoring bw_scoring;
    wmi_roam_cnd_band_scoring band_scoring;
    wmi_roam_cnd_nss_scoring nss_scoring;
    wmi_roam_cnd_esp_qbss_scoring esp_qbss_scoring;
    wmi_roam_cnd_oce_wan_scoring oce_wan_scoring;
    A_UINT32 roam_score_delta_pcnt;
    A_UINT32 roam_score_delta_mask;
    /* Vendor specific roam score algorithm ID from WMI_VENDOR_ROAM_SCORE_ALGORITHM_ID enum */
    A_UINT32 vendor_roam_score_algorithm_id;
    /*
     * During CU and low RSSI based roam triggers, consider AP as
     * roam candidate only if its roam score is better than connected AP score
     * by at least candidate_min_roam_score_delta.
     */
    A_UINT32 candidate_min_roam_score_delta;
    /*
     * For OCE Release 2, give weightage to roam candidate tx power if
     * oce_ap_tx_pwr_weightage_pcnt != 0.
     */
    A_UINT32 oce_ap_tx_pwr_weightage_pcnt;
    /*
     * For OCE Release 2, give weightage to roam candidate based on
     * advertised subnet id.
     * Only used if oce_ap_subnet_id_weightage_pcnt != 0.
     */
    A_UINT32 oce_ap_subnet_id_weightage_pcnt;
    /*
     * Give weightage to SAE-PK (Simultaneous Authentication of Equals -
     * Public Key) enabled network APs.
     * Only used if sae_pk_ap_weightage_pcnt != 0.
     */
    A_UINT32 sae_pk_ap_weightage_pcnt;
    /*
     * Give weightage to bandwidth which is greater than 160Mhz.
     */
    wmi_roam_cnd_bw_scoring ext_bw_scoring;
    /*
     * eht_weightage_pcnt :- 11be weightage out of total score in percentage.
     */
    A_UINT32 eht_weightage_pcnt;
    /*
     * mlo_weightage_pcnt :- give weightage to candidate based on MLO support.
     */
    A_UINT32 mlo_weightage_pcnt;
    /*
     * btc_score_factor :- Scale down 2.4GHz AP total score by btc_score_factor
     * during BT coex.
     * Value 0 should be ignored
     */
    A_UINT32 btc_score_factor;
    /*
     * btc_etp_factor :- Scale down 2.4GHz AP total etp value by btc_etp_factor
     * during BT coex.
     * Value 0 should be ignored
     */
    A_UINT32 btc_etp_factor;
    /* Scoring for security mode */
    A_INT32 security_weightage_pcnt;
    wmi_roam_cnd_security_scoring security_scoring;
} wmi_roam_cnd_scoring_param;

typedef struct {
    A_UINT32 tlv_header;   /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_score_delta_param */
    /* Roam trigger reason ID from WMI_ROAM_TRIGGER_REASON_ID */
    A_UINT32 roam_trigger_reason;
    /* Roam score delta in %.
     * Consider AP as roam candidate only if AP score is at least
     * roam_score_delta % better than connected AP score.
     * Ex: roam_score_delta = 20, and connected AP score is 4000,
     * then consider candidate AP only if its score is at least
     * 4800 (= 4000 * 120%)
     */
    A_UINT32 roam_score_delta;
} wmi_roam_score_delta_param;

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_cnd_min_rssi_param */
    /* Roam trigger reason ID from WMI_ROAM_TRIGGER_REASON_ID */
    A_UINT32 roam_trigger_reason;
    /*
     * Consider AP as roam candidate only if AP RSSI is better than
     * candidate_min_rssi
     */
    A_UINT32 candidate_min_rssi; /* units = dBm */
} wmi_roam_cnd_min_rssi_param;

/** To match an open AP, the rs_authmode should be set to WMI_AUTH_NONE
 *  and WMI_AP_PROFILE_FLAG_CRYPTO should be clear.
 *  To match a WEP enabled AP, the rs_authmode should be set to WMI_AUTH_NONE
 *  and WMI_AP_PROFILE_FLAG_CRYPTO should be set .
 */

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ap_profile */
    /** flags as defined above */
    A_UINT32 flags;
    /**
     * RSSI threshold value in dB: the value of the candidate AP should
     * higher by this threshold than the RSSI of the currently associated AP.
     */
    A_UINT32 rssi_threshold;
    /**
     * ssid value to be matched.
     */
    wmi_ssid ssid;

    /**
     * security params to be matched.
     */
    /** authentication mode (defined above)  */
    A_UINT32 rsn_authmode;
    /** unicast cipher set */
    A_UINT32 rsn_ucastcipherset;
    /** mcast/group cipher set */
    A_UINT32 rsn_mcastcipherset;
    /** mcast/group management frames cipher set */
    A_UINT32 rsn_mcastmgmtcipherset;
    /**
     * rssi_abs_threshold value: the value of the candidate AP should
     * higher than this absolute RSSI threshold.
     * Zero means no absolute minimum RSSI is required.
     * units are the offset from the noise floor in dB.
     */
    A_UINT32 rssi_abs_thresh;
    /**
     * bg_rssi_threshold value in dB: For background scan the value of
     * the candidate AP should be higher by this threshold than the RSSI
     * of the currently associated AP.
     */
    A_UINT32 bg_rssi_threshold;
} wmi_ap_profile;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_owe_ap_profile */

    /* OPEN SSID value when STA is connected to OWE transition AP in OWE security */
    wmi_ssid open_ssid_for_owe_transition;
} wmi_owe_ap_profile;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_cnd_vendor_scoring_param */
    A_UINT32 tlv_header;
    /** Indicates the channel band for which these vendor scoring params needs to be applied.
     *  Refer WLAN_ROAM_SCORE_MAX_BAND_INDEX for possible band_idx values.
     */
    A_UINT32 band_idx;
    /** Below RSSI/CU factor_value & factor_score param values are configured by vendor */
    A_UINT32 rssi_factor_value1;
    A_UINT32 rssi_factor_value2;
    A_UINT32 rssi_factor_value3;
    A_UINT32 rssi_factor_value4;
    A_UINT32 rssi_factor_value5;
    A_UINT32 rssi_factor_score1;
    A_UINT32 rssi_factor_score2;
    A_UINT32 rssi_factor_score3;
    A_UINT32 rssi_factor_score4;
    A_UINT32 rssi_factor_score5;
    A_UINT32 cu_factor_value1;
    A_UINT32 cu_factor_value2;
    A_UINT32 cu_factor_score1;
    A_UINT32 cu_factor_score2;
} wmi_roam_cnd_vendor_scoring_param;

/** Support early stop roaming scanning when finding a strong candidate AP
 * A 'strong' candidate is
 * 1) Is eligible candidate
 *    (all conditions are met in existing candidate selection).
 * 2) Its RSSI is better than earlystop threshold.
 *    Earlystop threshold will be relaxed as each channel is scanned.
 */
typedef struct {
    A_UINT32 tlv_header;
    /* Minimum RSSI threshold value for early stop, unit is dB above NF. */
    A_UINT32 roam_earlystop_thres_min;
    /* Maminum RSSI threshold value for early stop, unit is dB above NF. */
    A_UINT32 roam_earlystop_thres_max;
} wmi_roam_earlystop_rssi_thres_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_dense_thres_param */
    A_UINT32 tlv_header;
    /** RSSI threshold offset under trffic and dense env */
    A_UINT32 roam_dense_rssi_thres_offset;
    /** minimum number of APs to determine dense env */
    A_UINT32 roam_dense_min_aps;
    /** initial dense status detected by host at the time of initial connection */
    A_UINT32 roam_dense_status;
    /* traffic threshold to enable aggressive roaming in dense env; units are percent of medium occupancy, 0 - 100 */
    A_UINT32 roam_dense_traffic_thres;
} wmi_roam_dense_thres_param;

/* Definition for flags in wmi_roam_bg_scan_roaming_param
 * Bit 0: BG roaming enabled when we connect to 2G AP only and roaming to 5G AP only.
 * Bit 1-31: Reserved
 */
#define WMI_ROAM_BG_SCAN_FLAGS_2G_TO_5G_ONLY   1

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_bg_scan_roaming_param */
    A_UINT32 tlv_header;
    /** RSSI threshold in dBm below which roaming will be triggered during background scan(non-roam scan). 0 will disable this threshold */
    A_UINT32 roam_bg_scan_bad_rssi_thresh;
    /** bitmap for which scan client will enable/disable background roaming. bit position is mapped to the enum WMI_SCAN_CLIENT_ID. 1 = enable, 0 = disable */
    A_UINT32 roam_bg_scan_client_bitmap;
    /** roam scan RSSI threshold for 2 GHz band.
     *  offset from roam_bg_scan_bad_rssi_thresh, in dB units
     */
    A_INT32 bad_rssi_thresh_offset_2g;
    /* flags for background roaming */
    A_UINT32 flags;
} wmi_roam_bg_scan_roaming_param;

/*
 * If there's rx activity during rx_inactivity_ms and avg of data_rssi
 * is better than roam_data_rssi_thres, then suppress low rssi roaming.
 */
#define WMI_ROAM_DATA_RSSI_FLAG_LOW_RSSI   0x00000001
/*
 * If there's no rx activity during rx_inactivity_ms or avg of data_rssi
 * is better than roam_data_rssi_thres, then suppress this background roaming.
 */
#define WMI_ROAM_DATA_RSSI_FLAG_BACKGROUND 0x00000002

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_data_rssi_roaming_param */
    A_UINT32 tlv_header;
    /* flags for when consider data_rssi,
     * valid values are OR operation of WMI_ROAM_DATA_RSSI_FLAG_ .
     * value 0 to disable the feature.
     */
    A_UINT32 flags;
    /**
     * RSSI threshold in dBm above which roaming scan will be suppressed
     * during some roaming trigger.
     */
    A_INT32 roam_data_rssi_thres;
    /** rx inactivity time, in unit of milliseconds. */
    A_UINT32 rx_inactivity_ms;
} wmi_roam_data_rssi_roaming_param;

/** Beacon filter wmi command info */

#define BCN_FLT_MAX_SUPPORTED_IES    256
#define BCN_FLT_MAX_ELEMS_IE_LIST    (BCN_FLT_MAX_SUPPORTED_IES/32)

typedef struct bss_bcn_stats {
    A_UINT32 vdev_id;
    A_UINT32 bss_bcnsdropped;
    A_UINT32 bss_bcnsdelivered;
} wmi_bss_bcn_stats_t;

typedef struct bcn_filter_stats {
    A_UINT32 bcns_dropped;
    A_UINT32 bcns_delivered;
    A_UINT32 activefilters;
    wmi_bss_bcn_stats_t bss_stats;
} wmi_bcnfilter_stats_t;

typedef struct wmi_add_bcn_filter_cmd {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_add_bcn_filter_cmd_fixed_param */
    A_UINT32 vdev_id;
/*
 * Following this structure is the TLV:
 *    A_UINT32   ie_map[BCN_FLT_MAX_ELEMS_IE_LIST];
 */
} wmi_add_bcn_filter_cmd_fixed_param;

typedef struct wmi_rmv_bcn_filter_cmd {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rmv_bcn_filter_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_rmv_bcn_filter_cmd_fixed_param;

#define WMI_BCN_SEND_DTIM_ZERO         1
#define WMI_BCN_SEND_DTIM_BITCTL_SET   2
typedef struct wmi_bcn_send_from_host {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bcn_send_from_host_cmd_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 data_len;
    union {
        A_UINT32 frag_ptr; /* Physical address of the frame */
        A_UINT32 frag_ptr_lo; /* LSBs of physical address of the frame */
    };
    A_UINT32 frame_ctrl; /* farme ctrl to setup PPDU desc */
    A_UINT32 dtim_flag; /* to control CABQ traffic */
    A_UINT32 bcn_antenna;   /* Antenna for beacon transmission */
    A_UINT32 frag_ptr_hi; /* MSBs of physical address of the frame */
} wmi_bcn_send_from_host_cmd_fixed_param;

/* cmd to support bcn snd for all vaps at once */
typedef struct wmi_pdev_send_bcn {
    A_UINT32 num_vdevs;
    wmi_bcn_send_from_host_cmd_fixed_param bcn_cmd[1];
} wmi_pdev_send_bcn_cmd_t;

typedef struct wmi_fd_send_from_host {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_fd_send_from_host_cmd_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 data_len;
    union {
        A_UINT32 frag_ptr; /* Physical address of the frame */
        A_UINT32 frag_ptr_lo; /* LSBs of physical address of the frame */
    };
    A_UINT32 frag_ptr_hi; /* MSBs of physical address of the frame */
    A_UINT32 frame_ctrl; /* frame ctrl to setup PPDU desc */
} wmi_fd_send_from_host_cmd_fixed_param;

/*
 * Control to send broadcast probe response instead of FD frames.
 * When this flag is not set then FD frame will be transmitted when
 * fd_period is non-zero
 */
#define WMI_FILS_FLAGS_BITMAP_BCAST_PROBE_RSP   0x1

/*
 * WMI command structure for FILS feature enable/disable
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_enable_fils_cmd_fixed_param  */
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 fd_period; /* non-zero - enable Fils Discovery frames or broadcast probe response with this period (in TU),
                         * 0 - disable FD and broadcast probe response frames */
    A_UINT32 flags; /* WMI_FILS_FLAGS_BITMAP flags */
} wmi_enable_fils_cmd_fixed_param;

/*
 * WMI_ROAM_AP_PROFILE:  AP profile of connected AP for roaming.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_ap_profile_fixed_param */
    /** id of AP criteria */
    A_UINT32 id;

    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;

/*
 * Following this structure are the TLVs:
 *     wmi_ap_profile ap_profile; <-- AP profile info
 *     wmi_roam_cnd_scoring_param roam_cnd_scoring_param
 *     wmi_roam_score_delta_param roam_score_delta_param_list[]
 *     wmi_roam_cnd_min_rssi_param roam_cnd_min_rssi_param_list[]
 *     wmi_roam_cnd_vendor_scoring_param roam_cnd_vendor_scoring_param[]
 *     wmi_owe_ap_profile owe_ap_profile[]
 *     A_UINT32 authmode_list[] <-- List of authmode allowed for roaming.
 *         Refer WMI_AUTH_ for authmode values.
 */
} wmi_roam_ap_profile_fixed_param;

/**
 * WMI_OFL_SCAN_ADD_AP_PROFILE: add an AP profile.
 */
typedef struct {
    /** id of AP criteria */
    A_UINT32 id;

    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;

    /** AP profile info */
    wmi_ap_profile ap_profile;

} wmi_ofl_scan_add_ap_profile;

/**
 * WMI_OFL_SCAN_REMOVE_AP_CRITERIA: remove an ap profile.
 */
typedef struct {
    /** id of AP criteria */
    A_UINT32 id;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_ofl_scan_remove_ap_profile;

/**
 * WMI_OFL_SCAN_PERIOD: period in msec for offload scan.
 *  0 will disable ofload scan and a very low value will perform a continuous
 *  scan.
 */
typedef struct {
    /** offload scan period value, used for scans used when not connected */
    A_UINT32 ofl_scan_period;
} wmi_ofl_scan_period;

/* Do not modify XXX_BYTES or XXX_LEN below as it is fixed by standard */
#define ROAM_OFFLOAD_PMK_BYTES       (32)
#define ROAM_OFFLOAD_PSK_MSK_BYTES   (32)
#define ROAM_OFFLOAD_KRK_BYTES       (16)
#define ROAM_OFFLOAD_BTK_BYTES       (32)
#define ROAM_OFFLOAD_R0KH_ID_MAX_LEN (48)
#define ROAM_OFFLOAD_NUM_MCS_SET     (16)

/* This TLV will be filled only in case roam offload for wpa2-psk/okc/ese/11r is enabled */
typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_offload_fixed_param */
    A_UINT32 rssi_cat_gap;   /* gap for every category bucket */
    A_UINT32 prefer_5g;      /* prefer select 5G candidate */
    A_UINT32 select_5g_margin;
    A_UINT32 reassoc_failure_timeout;     /* reassoc failure timeout */
    A_UINT32 capability;
    A_UINT32 ht_caps_info;
    A_UINT32 ampdu_param;
    A_UINT32 ht_ext_cap;
    A_UINT32 ht_txbf;
    A_UINT32 asel_cap;
    A_UINT32 qos_enabled;
    A_UINT32 qos_caps;
    A_UINT32 wmm_caps;
    A_UINT32 mcsset[ROAM_OFFLOAD_NUM_MCS_SET>>2]; /* since this 4 byte aligned, we don't declare it as tlv array */
    A_UINT32 handoff_delay_for_rx; /* In msec. Delay Hand-Off by this duration to receive pending Rx frames from current BSS */
    A_UINT32 max_mlme_sw_retries; /* maximum number of software retries for preauth and reassoc req */
    A_UINT32 no_ack_timeout; /* In msec. duration to wait before another SW retry made if no ack seen for previous frame */
    A_UINT32 roam_candidate_validity_time; /* In msec. validity duration of each entry in roam cache.  If the value is 0x0, this field should be disregarded. */
    A_UINT32 roam_to_current_bss_disable; /* Disable roaming to current bss */
} wmi_roam_offload_tlv_param;


/* flags for 11i offload */
#define WMI_ROAM_OFFLOAD_FLAG_OKC_ENABLED       0   /* okc is enabled */
#define WMI_ROAM_OFFLOAD_FLAG_PMK_CACHE_DISABLED 1  /* pmk caching is disabled */
#define WMI_ROAM_OFFLOAD_FLAG_SAE_SAME_PMKID 2      /* Use same PMKID for WPA3 SAE roaming */
/* from bit 3 to bit 31 are reserved */

#define WMI_SET_ROAM_OFFLOAD_OKC_ENABLED(flag) do { \
        (flag) |=  (1 << WMI_ROAM_OFFLOAD_FLAG_OKC_ENABLED);      \
     } while (0)

#define WMI_SET_ROAM_OFFLOAD_OKC_DISABLED(flag) do { \
        (flag) &=  ~(1 << WMI_ROAM_OFFLOAD_FLAG_OKC_ENABLED);      \
     } while (0)

#define WMI_GET_ROAM_OFFLOAD_OKC_ENABLED(flag)   \
        ((flag) & (1 << WMI_ROAM_OFFLOAD_FLAG_OKC_ENABLED))


#define WMI_SET_ROAM_OFFLOAD_PMK_CACHE_ENABLED(flag) \
    do { \
        (flag) &=  ~(1 << WMI_ROAM_OFFLOAD_FLAG_PMK_CACHE_DISABLED); \
    } while (0)

#define WMI_SET_ROAM_OFFLOAD_PMK_CACHE_DISABLED(flag) \
    do { \
        (flag) |=  (1 << WMI_ROAM_OFFLOAD_FLAG_PMK_CACHE_DISABLED); \
    } while (0)

#define WMI_GET_ROAM_OFFLOAD_PMK_CACHE_DISABLED(flag) \
    ((flag) & (1 << WMI_ROAM_OFFLOAD_FLAG_PMK_CACHE_DISABLED))


/* This TLV will be filled only in case of wpa-psk/wpa2-psk/wpa3 */
typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_11i_offload_fixed_param */
    A_UINT32 flags;          /** flags. see WMI_ROAM_OFFLOAD_FLAG_ above */
    A_UINT32 pmk[ROAM_OFFLOAD_PMK_BYTES>>2]; /* pmk offload. As this 4 byte aligned, we don't declare it as tlv array */
    A_UINT32 pmk_len; /**the length of pmk. in normal case it should be 32, but for LEAP, is should be 16*/
    A_UINT32 pmk_ext_len; /** the length of extended pmk. in normal case it should be 0, but for suiteB, it should be 16*/
    A_UINT32 pmk_ext[ROAM_OFFLOAD_PMK_BYTES>>2]; /* pmk ext offload. 16 bytes for suiteB */
} wmi_roam_11i_offload_tlv_param;

/* This TLV will be  filled only in case of 11R*/
typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_11r_offload_fixed_param */
    A_UINT32 mdie_present;
    A_UINT32 mdid;
    A_UINT32 r0kh_id[ROAM_OFFLOAD_R0KH_ID_MAX_LEN>>2];
    A_UINT32 r0kh_id_len;
    A_UINT32 psk_msk[ROAM_OFFLOAD_PSK_MSK_BYTES>>2]; /* psk/msk offload. As this 4 byte aligned, we don't declare it as tlv array */
    A_UINT32 psk_msk_len; /**length of psk_msk*/
    A_UINT32 psk_msk_ext_len; /**length of psk_msk_ext*/
    A_UINT32 psk_msk_ext[ROAM_OFFLOAD_PSK_MSK_BYTES>>2];
    A_UINT32 adaptive_11r; /* FW needs to perform adaptive 11r roaming */
    /*
     * FW needs to perform FT initial moiblity association instead of
     * FT roaming for deauth roam trigger
     *     0 - To disable FT-IM
     *     1 - To enable FT-IM
     */
    A_UINT32 ft_im_for_deauth;
    /*
     * FW can prefer doing over-the-ds fast BSS transition instead of
     * over-the-air if associated and target AP are both capable of FT over DS.
     *     0 - To disable FT-over-DS
     *     1 - To enable FT-over-DS
     */
    A_UINT32 ft_over_ds_enable;
} wmi_roam_11r_offload_tlv_param;

/* This TLV will be filled only in case of ESE */
typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_ese_offload_fixed_param */
    A_UINT32 krk[ROAM_OFFLOAD_KRK_BYTES>>2]; /* KRK offload. As this 4 byte aligned, we don't declare it as tlv array */
    A_UINT32 btk[ROAM_OFFLOAD_BTK_BYTES>>2]; /* BTK offload. As this 4 byte aligned, we don't declare it as tlv array */
} wmi_roam_ese_offload_tlv_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_sae_offload_tlv_param */
    /* SAE SPMK timeout value in seconds after which FW need to perform SAE full authentication to derive new SPMK */
    A_UINT32 spmk_timeout;
} wmi_roam_sae_offload_tlv_param;

typedef enum {
    WMI_BL_REASON_NUD_FAILURE = 1,
    WMI_BL_REASON_STA_KICKOUT,
    WMI_BL_REASON_ROAM_HO_FAILURE,
    /* Assoc resp with status code 71 - POOR RSSI CONDITIONS */
    WMI_BL_REASON_ASSOC_REJECT_POOR_RSSI,
    /* Assoc resp with status code 34 - DENIED_POOR_CHANNEL_CONDITIONS */
    WMI_BL_REASON_ASSOC_REJECT_OCE,
    WMI_BL_REASON_USERSPACE_BL,
    WMI_BL_REASON_USERSPACE_AVOID_LIST,
    WMI_BL_REASON_BTM_DIASSOC_IMMINENT,
    WMI_BL_REASON_BTM_BSS_TERMINATION,
    WMI_BL_REASON_BTM_MBO_RETRY,
    /* Reassoc resp with status code 34 - DENIED_POOR_CHANNEL_CONDITIONS */
    WMI_BL_REASON_REASSOC_RSSI_REJECT,
    /* Reassoc resp with status code 17 - DENIED_NO_MORE_STAS */
    WMI_BL_REASON_REASSOC_NO_MORE_STAS,
} WMI_BLACKLIST_REASON_ID;

typedef enum {
    WMI_BL_SOURCE_HOST = 1,
    WMI_BL_SOURCE_FW,
} WMI_BLACKLIST_SOURCE_ID;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_blacklist_with_timeout_tlv_param */
    A_UINT32 tlv_header;
    /** Blaclisted AP mac address */
    wmi_mac_addr bssid;
    /** How much time in milliseconds to keep AP in blacklist */
    A_UINT32 timeout;
    /** RSSI (dBm units) when put in blacklist */
    A_INT32 rssi;
    /* Blacklist reason from WMI_BLACKLIST_REASON_ID */
    A_UINT32 reason;
    /* Source of adding AP to BL from WMI_BLACKLIST_SOURCE_ID */
    A_UINT32 source;
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when AP added to blacklist.
     */
    A_UINT32 timestamp;
    /* Original timeout value in milli seconds when AP added to BL */
    A_UINT32 original_timeout;
    /*
     * If disallow_linkid_bitmap is not 0, then means current entity
     * is for MLD AP and bssid field is standing for MLD address.
     * If all links for MLD AP is disallow, then the value shall be 0xffffffff
     */
    A_UINT32 disallow_linkid_bitmap;
} wmi_roam_blacklist_with_timeout_tlv_param;

/** WMI_ROAM_BLACKLIST_EVENT: generated whenever STA needs to move AP to blacklist for a particluar time
 *  Ex: AP which sends BTM request with disassoc imminent is set should be
 *  moved to blacklist until disassociation timer expires
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_blacklist_event_fixed_param */
    A_UINT32 vdev_id;
    /* This TLV is followed by further TLVs:
     *     wmi_roam_blacklist_with_timeout_tlv_param blacklist_with_timeout[]
     */
} wmi_roam_blacklist_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    /** candidate AP mac address */
    wmi_mac_addr bssid;
} wmi_roam_pmkid_request_tlv_param;

/** WMI_ROAM_PMKID_REQUEST_EVENT: generated whenever FW needs the PMKID while roaming **/
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_pmkid_request_event_fixed_param */
    A_UINT32 vdev_id;
    /* This TLV is followed by further TLVs:
     *     wmi_roam_pmkid_request_tlv_param pmkid_request[]
     */
} wmi_roam_pmkid_request_event_fixed_param;

/** WMI_ROAM_EVENT: roam event triggering the host roam logic.
 * generated when ever a better AP is found in the recent roam scan (or)
 * when beacon miss is detected (or) when a DEAUTH/DISASSOC is received
 * from the current AP.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_event_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** reason for roam event */
    A_UINT32 reason;
    /** associated AP's RSSI calculated by FW when reason code is WMI_ROAM_REASON_LOW_RSSI */
    A_UINT32 rssi;
    /** roam notification */
    A_UINT32 notif;
    /** roam notification param
     *  Refer to WMI_ROAM_NOTIF_ defs to interpret the notif_params value.
     *  notif_params contains roam invoke fail reason from
     *  wmi_roam_invoke_error_t if reason is WMI_ROAM_REASON_INVOKE_ROAM_FAIL.
     */
    A_UINT32 notif_params;
    /** roam notification param1
     *  Refer to WMI_ROAM_NOTIF_ defs to interpret the notif_params1 value.
     *  notif_params1 is exact frame length of deauth or disassoc if reason
     *  is WMI_ROAM_REASON_DEAUTH.
     */
    A_UINT32 notif_params1;
} wmi_roam_event_fixed_param;

#define WMI_ROAM_BSS_INFO_FLAG_IS_MLD 0

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_bss_info_param */
    /*
     * bit0: WMI_ROAM_BSS_INFO_FLAG_IS_MLD
     */
    A_UINT32 flags;
    /*
     * mld score if WMI_ROAM_BSS_INFO_FLAG_IS_MLD set, otherwise link score
     */
    A_UINT32 score;
    /*
     *  mld address if WMI_ROAM_BSS_INFO_FLAG_IS_MLD set, otherwise link address
     */
    wmi_mac_addr mac_addr;
} wmi_roam_bss_info_param;

/* roam_reason: bits 0-3 */
#define WMI_ROAM_REASON_INVALID   0x0 /** invalid reason. Do not interpret reason field */
#define WMI_ROAM_REASON_BETTER_AP 0x1 /** found a better AP */
#define WMI_ROAM_REASON_BMISS     0x2 /** beacon miss detected */
#define WMI_ROAM_REASON_LOW_RSSI  0x3 /** connected AP's low RSSI condition detected */
#define WMI_ROAM_REASON_SUITABLE_AP 0x4 /** found another AP that matches
                                          SSID and Security profile in
                                          WMI_ROAM_AP_PROFILE, found during scan
                                          triggered upon FINAL_BMISS **/
#define WMI_ROAM_REASON_HO_FAILED  0x5  /** LFR3.0 roaming failed, indicate the disconnection to host */
/** WMI_ROAM_REASON_INVOKE_ROAM_FAIL:
 * Result code of WMI_ROAM_INVOKE_CMDID.
 * Any roaming failure before reassociation will be indicated to host
 * with this reason.
 * Any roaming failure after reassociation will be indicated to host with
 * WMI_ROAM_REASON_HO_FAILED no matter WMI_ROAM_INVOKE_CMDID is called or not.
 */
#define WMI_ROAM_REASON_INVOKE_ROAM_FAIL 0x6
#define WMI_ROAM_REASON_RSO_STATUS       0x7
#define WMI_ROAM_REASON_BTM              0x8 /** Roaming because of BTM request received */
#define WMI_ROAM_REASON_DEAUTH           0x9 /** deauth/disassoc received */
/* reserved up through 0xF */

/* subnet status: bits 4-5 */
typedef enum
{
    WMI_ROAM_SUBNET_CHANGE_STATUS_UNKNOWN = 0,
    WMI_ROAM_SUBNET_CHANGE_STATUS_UNCHANGED,
    WMI_ROAM_SUBNET_CHANGE_STATUS_CHANGED,
} wmi_roam_subnet_change_status;

#define WMI_ROAM_SUBNET_CHANGE_STATUS_MASK      0x30
#define WMI_ROAM_SUBNET_CHANGE_STATUS_SHIFT     4

#define WMI_SET_ROAM_SUBNET_CHANGE_STATUS(roam_reason, status) \
    do { \
        (roam_reason) |= \
            (((status) << WMI_ROAM_SUBNET_CHANGE_STATUS_SHIFT) & \
             WMI_ROAM_SUBNET_CHANGE_STATUS_MASK); \
    } while (0)

#define WMI_GET_ROAM_SUBNET_CHANGE_STATUS(roam_reason) \
    (((roam_reason) & WMI_ROAM_SUBNET_CHANGE_STATUS_MASK) >> \
     WMI_ROAM_SUBNET_CHANGE_STATUS_SHIFT)

#define WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE_MASK     0x40
#define WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE_SHIFT    6

#define WMI_SET_ROAM_REQUEST_HOST_HW_MODE_CHANGE(roam_reason, status) \
    do { \
        (roam_reason) |= \
            (((status) << WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE_SHIFT) & \
             WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE_MASK); \
    } while (0)

#define WMI_GET_ROAM_REQUEST_HOST_HW_MODE_CHANGE(roam_reason) \
    (((roam_reason) & WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE_MASK) >> \
     WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE_SHIFT)

/* Bits  0-3: stores 4 LSbs of trigger reason.
 *            Old host will get trigger reasons <= 15 from this bitfield.
 * Bit 7 will be 1 always to indicate that bits 8-15 are valid.
 * Bits 8-15: full trigger_reason, including values > 15.
 *            New host will gett full trigger_reason from this bitfield.
 *            Bits 8-11 and bits 0-3 store matching values.
 */
#define WMI_SET_ROAM_EXT_TRIGGER_REASON(roam_reason, trigger_reason) \
    do { \
        (roam_reason) |= (trigger_reason & 0xf); \
        (roam_reason) |= 0x80; \
        (roam_reason) |= ((trigger_reason & 0xff) << 8); \
    } while (0)

/* roaming notification */
#define WMI_ROAM_NOTIF_INVALID           0x0 /** invalid notification. Do not interpret notif field  */
#define WMI_ROAM_NOTIF_ROAM_START        0x1 /** indicate that roaming is started. sent only in non WOW state */
#define WMI_ROAM_NOTIF_ROAM_ABORT        0x2 /** indicate that roaming is aborted. sent only in non WOW state */
#define WMI_ROAM_NOTIF_ROAM_REASSOC      0x3 /** indicate that reassociation is done. sent only in non WOW state */
#define WMI_ROAM_NOTIF_SCAN_MODE_SUCCESS 0x4 /** indicate that roaming scan mode is successful */
#define WMI_ROAM_NOTIF_SCAN_MODE_FAIL    0x5 /** indicate that roaming scan mode is failed due to internal roaming state */
#define WMI_ROAM_NOTIF_DISCONNECT        0x6 /** indicate that roaming not allowed due BTM req */
#define WMI_ROAM_NOTIF_SUBNET_CHANGED    0x7 /** indicate that subnet has changed */
#define WMI_ROAM_NOTIF_SCAN_START        0x8 /** indicate roam scan start, notif_params to be sent as WMI_ROAM_TRIGGER_REASON_ID */
#define WMI_ROAM_NOTIF_DEAUTH_RECV       0x9 /** indicate deauth received, notif_params to be sent as reason code, notif_params1 to be sent as frame length */
#define WMI_ROAM_NOTIF_DISASSOC_RECV     0xa /** indicate disassoc received, notif_params to be sent as reason code, notif_params1 to be sent as frame length */
#define WMI_ROAM_NOTIF_SCAN_MODE_SUCCESS_WITH_HO_FAIL 0xb /** indicate that roaming scan mode is successful but cause disconnection and subsequent
                                                           ** WMI_ROAM_REASON_HO_FAILED is event expected */
#define WMI_ROAM_NOTIF_SCAN_END          0xc /** indicate roam scan end, notif_params to be sent as WMI_ROAM_TRIGGER_REASON_ID */

/**whenever RIC request information change, host driver should pass all ric related information to firmware (now only support tsepc)
* Once, 11r roaming happens, firmware can generate RIC request in reassoc request based on this information
*/
typedef struct
{
    A_UINT32 tlv_header;      /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ric_request_fixed_param */
    A_UINT32 vdev_id;         /**unique id identifying the VDEV, generated by the caller*/
    A_UINT32 num_ric_request; /**number of ric request ie send to firmware.(max value is 2 now)*/
    A_UINT32 is_add_ric;      /**support add ric or delete ric*/
} wmi_ric_request_fixed_param;

/** tspec element: refer to 8.4.2.32 of 802.11 2012 spec
* these elements are used to construct tspec field in RIC request, which allow station to require specific TS when 11r roaming
*/
typedef struct {
    A_UINT32                         tlv_header;
    A_UINT32                         ts_info; /** bits value of TS Info field.*/
    A_UINT32                         nominal_msdu_size; /**Nominal MSDU Size field*/
    A_UINT32                         maximum_msdu_size; /**The Maximum MSDU Size field*/
    A_UINT32                         min_service_interval; /**The Minimum Service Interval field*/
    A_UINT32                         max_service_interval; /**The Maximum Service Interval field*/
    A_UINT32                         inactivity_interval; /**The Inactivity Interval field*/
    A_UINT32                         suspension_interval; /**The Suspension Interval field*/
    A_UINT32                         svc_start_time; /**The Service Start Time field*/
    A_UINT32                         min_data_rate; /**The Minimum Data Rate field*/
    A_UINT32                         mean_data_rate; /**The Mean Data Rate field*/
    A_UINT32                         peak_data_rate; /**The Peak Data Rate field*/
    A_UINT32                         max_burst_size; /**The Burst Size field*/
    A_UINT32                         delay_bound; /**The Delay Bound field*/
    A_UINT32                         min_phy_rate; /**The Minimum PHY Rate field*/
    A_UINT32                         surplus_bw_allowance; /**The Surplus Bandwidth Allowance field*/
    A_UINT32                         medium_time; /**The Medium Time field,in units of 32 us/s.*/
} wmi_ric_tspec;

/* flags for roam_invoke_cmd */
/* add this channel into roam cache channel list after this command is finished */
#define WMI_ROAM_INVOKE_FLAG_ADD_CH_TO_CACHE           0
/* indicate to host of failure if WMI_ROAM_INVOKE_CMDID. */
#define WMI_ROAM_INVOKE_FLAG_REPORT_FAILURE            1
/* during host-invoked roaming, don't send null data frame to AP */
#define WMI_ROAM_INVOKE_FLAG_NO_NULL_FRAME_TO_AP       2
/* start extra full scan if no candidate found in previous scan */
#define WMI_ROAM_INVOKE_FLAG_FULL_SCAN_IF_NO_CANDIDATE 3
/* when bit is set:
 *     Candidate selection algo will based on fw score algo.
 *     Which means configurations like wmi_roam_score_delta_param,
 *     wmi_configure_roam_trigger_parameters is also configurable for
 *     host_invoke roam, as well as consider current BSS score as
 *     score algo input.
 * when bit is not set:
 *     Candidate selection algo will ignore score and above configurations
 *     and ignore current BSS score.
 */
#define WMI_ROAM_INVOKE_FLAG_SELECT_CANDIDATE_CONSIDER_SCORE 4
/* from bit 5 to bit 31 are reserved */

#define WMI_SET_ROAM_INVOKE_ADD_CH_TO_CACHE(flag) do { \
        (flag) |=  (1 << WMI_SET_ROAM_INVOKE_ADD_CH_TO_CACHE);      \
     } while (0)

#define WMI_CLEAR_ROAM_INVOKE_ADD_CH_TO_CACHE(flag) do { \
        (flag) &=  ~(1 << WMI_SET_ROAM_INVOKE_ADD_CH_TO_CACHE);      \
     } while (0)

#define WMI_GET_ROAM_INVOKE_ADD_CH_TO_CACHE(flag)   \
        ((flag) & (1 << WMI_SET_ROAM_INVOKE_ADD_CH_TO_CACHE))


#define WMI_ROAM_INVOKE_SCAN_MODE_FIXED_CH      0   /* scan given channel only */
#define WMI_ROAM_INVOKE_SCAN_MODE_CACHE_LIST    1   /* scan cached channel list */
#define WMI_ROAM_INVOKE_SCAN_MODE_FULL_CH       2   /* scan full channel */
#define WMI_ROAM_INVOKE_SCAN_MODE_SKIP          3   /* no scan is performed. use beacon/probe resp given by the host */
#define WMI_ROAM_INVOKE_SCAN_MODE_CACHE_MAP     4   /* scan cached channel map */

#define WMI_ROAM_INVOKE_AP_SEL_FIXED_BSSID      0   /* roam to given BSSID only */
#define WMI_ROAM_INVOKE_AP_SEL_ANY_BSSID        1   /* roam to any BSSID */

enum wlan_roam_invoke_reason {
    ROAM_INVOKE_REASON_UNDEFINED = 0,
    /* FW will use default parameters to do roam scan, ignore other parameters like WLM, etc. */
    ROAM_INVOKE_REASON_NUD_FAILURE, /* Neighbor Unreachable Detection */
    ROAM_INVOKE_REASON_USER_SPACE,
};

/** WMI_ROAM_INVOKE_CMD: command to invoke roaming forcefully
*
if <roam_scan_ch_mode> is zero and <channel_no> is not given, roaming is not executed.
if <roam_ap_sel_mode> is zero and <BSSID) is not given, roaming is not executed

This command can be used to add specific channel into roam cached channel list by following
<roam_scan_ch_mode> = 0
<roam_ap_sel_mode> = 0
<roam_delay> = 0
<flag> |= WMI_ROAM_INVOKE_FLAG_ADD_CH_TO_CACHE
<BSSID> = do not fill (there will be no actual roaming because of ap_sel_mode is zero, but no BSSID is given)
<channel_no> = channel list to be added
*/
typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_invoke_fixed_param */
    A_UINT32 vdev_id; /** Unique id identifying the VDEV on which roaming is invoked */
    A_UINT32 flags;   /** flags. see WMI_ROAM_INVOKE_FLAG_ above */
    A_UINT32 roam_scan_mode; /** see WMI_ROAM_INVOKE_SCAN_ above */
    A_UINT32 roam_ap_sel_mode; /** see WMI_ROAM_INVOKE_AP_SEL_ above */
    A_UINT32 roam_delay; /** 0 = immediate roam, 1-2^32 = roam after this delay (msec) */
    A_UINT32 num_chan; /** # if channels to scan. In the TLV channel_list[] */
    A_UINT32 num_bssid;  /** number of bssids. In the TLV bssid_list[] */
    A_UINT32 num_buf; /** number of buffers In the TLV bcn_prb_buf_list[] */
    A_UINT32 reason; /** reason of invoke roam, see enum wlan_roam_invoke_reason */
    /**
     * TLV (tag length value) parameters follows roam_invoke_req
     * The TLV's are:
     *     A_UINT32 channel_list[]; // in MHz
     *     wmi_mac_addr bssid_list[];
     *     wmi_tlv_buf_len_param bcn_prb_buf_list[];
     *     A_UINT8 bcn_prb_frm[];
     */
} wmi_roam_invoke_cmd_fixed_param;

/* Definition for op_bitmap */
enum {
    ROAM_FILTER_OP_BITMAP_BLACK_LIST =   0x1,
    ROAM_FILTER_OP_BITMAP_WHITE_LIST =   0x2,
    ROAM_FILTER_OP_BITMAP_PREFER_BSSID = 0x4,
    ROAM_FILTER_OP_BITMAP_LCA_DISALLOW = 0x8,
    ROAM_FILTER_OP_BITMAP_RSSI_REJECTION_OCE = 0x10,
};

/** lca_enable_source_bitmap */
#define WMI_ROAM_LCA_DISALLOW_SOURCE_PER        0x1
#define WMI_ROAM_LCA_DISALLOW_SOURCE_BMISS      0x2
#define WMI_ROAM_LCA_DISALLOW_SOURCE_LOW_RSSI   0x4
#define WMI_ROAM_LCA_DISALLOW_SOURCE_HIGH_RSSI  0x8
#define WMI_ROAM_LCA_DISALLOW_SOURCE_PERIODIC   0x10
#define WMI_ROAM_LCA_DISALLOW_SOURCE_MAWC       0x20 /* MAWC = Motion Aided Wifi connectivity */
#define WMI_ROAM_LCA_DISALLOW_SOURCE_DENSE      0x40
#define WMI_ROAM_LCA_DISALLOW_SOURCE_BACKGROUND 0x80
#define WMI_ROAM_LCA_DISALLOW_SOURCE_FORCED     0x100

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_rejection_list_config_param */
    A_UINT32 tlv_header;
     /** BSSID of AP, who reject (re-)assoc due to low RSSI */
    wmi_mac_addr bssid;
    /** Disallowed AP for certain duration, in units of milliseconds */
    A_UINT32 remaining_disallow_duration;
   /** AP will be allowed for candidate, when AP RSSI better than expected RSSI units in dBm */
    A_INT32 requested_rssi;
} wmi_roam_rejection_list_config_param;
typedef wmi_roam_rejection_list_config_param wmi_roam_rssi_rejection_oce_config_param; /* retain old struct name as an alias for the new name */

typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_filter_list_fixed_param */
    A_UINT32 vdev_id; /** Unique id identifying the VDEV on which roaming filter is adopted */
    A_UINT32 flags; /** flags for filter */
    A_UINT32 op_bitmap; /** 32 bit bitmap to be set on. bit0 = first param, bit 1 = second param...etc. Can be or'ed */
    A_UINT32 num_bssid_black_list; /* number of blacklist in the TLV variable bssid_black_list */
    A_UINT32 num_ssid_white_list; /* number of whitelist in the TLV variable ssid_white_list */
    A_UINT32 num_bssid_preferred_list; /* only for lfr 3.0. number of preferred list & factor in the TLV */
    A_UINT32 num_rssi_rejection_ap; /** number of list of AP who rejected STA due to low RSSI */
    A_UINT32 delta_rssi; /** (dB units) when AB in RSSI blacklist improved by at least delta_rssi, it will be removed from blacklist */
    /**
     * TLV (tag length value) parameters follows roam_filter_list_cmd
     * The TLV's are:
     *     wmi_mac_addr bssid_black_list[];
     *     wmi_ssid ssid_white_list[];
     *     wmi_mac_addr bssid_preferred_list[];
     *     A_UINT32 bssid_preferred_factor[];
     *     wmi_roam_lca_disallow_config_tlv_param lca_disallow_param[0/1] (opt)
     *     wmi_roam_rejection_list_config_param rssi_rejection_list[]
     */
} wmi_roam_filter_fixed_param;

typedef struct {
    A_UINT32 tlv_header;        /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_lca_disallow_config_tlv_param */
    A_UINT32 disallow_duration; /** How long LCA AP will be disallowed before it can be a roaming candidate again, in units of seconds */
    A_UINT32 rssi_channel_penalization; /** How much RSSI will be penalized if candidate(s) are found in the same channel as disallowed AP's, in units of db */
    A_UINT32 num_disallowed_aps; /** How many APs the target should maintain in its LCA (Last Connected AP) list */
    A_UINT32 disallow_lca_enable_source_bitmap; /** disallow LCA logic is enabled only when trigger sources are matched with corresponding bit (see WMI_ROAM_LCA_DISALLOW_SOURCE constants) */
} wmi_roam_lca_disallow_config_tlv_param;

typedef struct {
    A_UINT8 address[4]; /* IPV4 address in Network Byte Order */
} WMI_IPV4_ADDR;

typedef struct _WMI_IPV6_ADDR {
    A_UINT8 address[16]; /* IPV6 in Network Byte Order */
} WMI_IPV6_ADDR;

/* flags for subnet change detection */
#define WMI_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED 0
#define WMI_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED 1
/* bit 2 to bit 31 are reserved */

/* set IPv4 enabled/disabled flag and get the flag */
#define WMI_SET_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED(flag) do { \
    (flag) |= (1 << WMI_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED); \
} while (0)

#define WMI_SET_ROAM_SUBNET_CHANGE_FLAG_IP4_DISABLED(flag) do { \
    (flag) &= ~(1 << WMI_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED); \
} while (0)

#define WMI_GET_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED(flag) \
    ((flag) & (1 << WMI_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED))

/* set IPv6 enabled flag, disabled and get the flag */
#define WMI_SET_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED(flag) do { \
    (flag) |= (1 << WMI_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED); \
} while (0)

#define WMI_SET_ROAM_SUBNET_CHANGE_FLAG_IP6_DISABLED(flag) do { \
    (flag) &= ~(1 << WMI_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED); \
} while (0)

#define WMI_GET_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED(flag) \
    ((flag) & (1 << WMI_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED))

/**
 * WMI_ROAM_SUBNET_CHANGE_CONFIG : Pass the gateway IP and MAC addresses
 *  to FW. FW uses these parameters for subnet change detection.
 */
typedef struct {
    A_UINT32      tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_subnet_change_config_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32      vdev_id;
    /** IPv4/IPv6 enabled/disabled */
    /** This flag sets the WMI_SET_ROAM_SUBNET_CHANGE_FLAG_xxx_ENABLED/DISABLED */
    A_UINT32      flag;
    /** Gateway MAC address */
    wmi_mac_addr  inet_gw_mac_addr;
    /** IP addresses */
    WMI_IPV4_ADDR inet_gw_ip_v4_addr;
    WMI_IPV6_ADDR inet_gw_ip_v6_addr;
    /** Number of software retries for ARP/Neighbor solicitation request */
    A_UINT32      max_retries;
    /** timeout in milliseconds for each ARP request*/
    A_UINT32      timeout;
    /** number of skipped aps **/
    A_UINT32      num_skip_subnet_change_detection_bssid_list;
/**
 * TLV (tag length value) parameters follows roam_subnet_change_config_cmd
 * structure. The TLV's are:
 *     wmi_mac_addr skip_subnet_change_detection_bssid_list [];
 **/
} wmi_roam_subnet_change_config_fixed_param;

typedef enum {
    /** No change in scan mode, use legacy modes */
    ROAM_TRIGGER_SCAN_MODE_NONE = 0,
    /** Trigger only partial roam scan */
    ROAM_TRIGGER_SCAN_MODE_PARTIAL,
    /** Trigger only FULL roam scan */
    ROAM_TRIGGER_SCAN_MODE_FULL,
    /** Don't trigger any roam scan and disconnect from AP */
    ROAM_TRIGGER_SCAN_MODE_NO_SCAN_DISCONNECTION,
} WMI_ROAM_TRIGGER_SCAN_MODE;

typedef struct {
    A_UINT32 tlv_header;     /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_configure_roam_trigger_parameters */
    A_UINT32 trigger_reason; /** Roam trigger reason from WMI_ROAM_TRIGGER_REASON_ID */
    A_UINT32 enable;         /** 0 - Disable, non-zero - enable */
    A_UINT32 scan_mode;      /** Scan mode from WMI_ROAM_TRIGGER_SCAN_MODE */
    /** consider roam trigger if connected AP RSSI is worse than trigger_rssi_threshold */
    A_INT32 trigger_rssi_threshold;      /* Units in dBm */
    /*
     * Consider 2.4GHz AP as roam candidate only if AP RSSI is better than
     * cand_ap_min_rssi_threshold
     * If valid (non-zero) cand_ap_min_rssi_threshold_5g and
     * cand_ap_min_rssi_threshold_6g values are provided,
     * then cand_ap_min_rssi_threshold should only be applied to 2.4 GHz APs.
     * But if cand_ap_min_rssi_threshold_5g and cand_ap_min_rssi_threshold_6g
     * are zeros, then cand_ap_min_rssi_threshold should be applied to all APs.
     */
    A_INT32 cand_ap_min_rssi_threshold; /* Units in dBm */
    /* Roam score delta in %.
     * Consider AP as roam candidate only if AP score is at least
     * roam_score_delta % better than connected AP score.
     * Ex: roam_score_delta = 20, and connected AP score is 4000,
     * then consider candidate AP only if its score is at least
     * 4800 (= 4000 * 120%)
     */
    A_UINT32 roam_score_delta_percentage;
    /* Reason code to be filled in the response frame from STA.
       Ex: Reason code in the BTM response frame
       Valid values are 0 - 255 */
    A_UINT32 reason_code;
    /*
     * Consider 5GHz AP as roam candidate only if AP RSSI is better than
     * cand_ap_min_rssi_threshold_5g
     */
    A_INT32 cand_ap_min_rssi_threshold_5g; /* Units in dBm */
    /*
     * Consider 6 GHz AP as roam candidate only if AP RSSI is better than
     * cand_ap_min_rssi_threshold_6g
     */
    A_INT32 cand_ap_min_rssi_threshold_6g; /* Units in dBm */
} wmi_configure_roam_trigger_parameters;

/**
 * WMI_ROAM_ENABLE_DISABLE_TRIGGER_REASON:
 * Enable or disable roaming triggers in FW.
 */
typedef struct {
    A_UINT32      tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_enable_disable_trigger_reason_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32      vdev_id;
    /**
     * Bitmask (with enum WMI_ROAM_TRIGGER_REASON_ID identifying the bit
     * positions) showing for which roam_trigger_reasons are enabled by
     * bit value equal 0x1, and which roam_trigger_reasons are disabled by
     * bit value equal 0x0.
     */
    A_UINT32      trigger_reason_bitmask;

/**
 * The following TLVs will follow this fixed_param TLV:
 *
 * wmi_configure_roam_trigger_parameters config_roam_trigger_param[]
 *     Roam trigger configuration per roam trigger.
 *     The number of elements in this TLV array is limited to
 *     WMI_ROAM_TRIGGER_EXT_REASON_MAX
 */
} wmi_roam_enable_disable_trigger_reason_fixed_param;

/** WMI_PROFILE_MATCH_EVENT: offload scan
 * generated when ever atleast one of the matching profiles is found
 * in recent NLO scan. no data is carried with the event.
 */

/** P2P specific commands */

/**
 * WMI_P2P_DEV_SET_DEVICE_INFO : p2p device info, which will be used by
 * FW to generate P2P IE tobe carried in probe response frames.
 * FW will respond to probe requests while in listen state.
 */
typedef struct {
    /* number of secondary device types,supported */
    A_UINT32 num_secondary_dev_types;
/**
 * followed by 8 bytes of primary device id and
 * num_secondary_dev_types * 8 bytes of secondary device
 * id.
 */
} wmi_p2p_dev_set_device_info;

/** WMI_P2P_DEV_SET_DISCOVERABILITY: enable/disable discoverability
 *  state. if enabled, an active STA/AP will respond to P2P probe requests on
 *  the operating channel of the VDEV.
 */

typedef struct {
    /* 1:enable disoverability, 0:disable discoverability */
    A_UINT32 enable_discoverability;
} wmi_p2p_set_discoverability;

/** WMI_P2P_GO_SET_BEACON_IE: P2P IE to be added to
 *  beacons generated by FW. used in FW beacon mode.
 *  the FW will add this IE to beacon in addition to the beacon
 *  template set by WMI_BCN_TMPL_CMDID command.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_go_set_beacon_ie_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* ie length */
    A_UINT32 ie_buf_len;
/* Following this structure is the TLV byte stream of ie data of length ie_buf_len:
 *     A_UINT8 ie_data[]; <-- length in byte given by field num_data.
 */

} wmi_p2p_go_set_beacon_ie_fixed_param;

/** WMI_P2P_GO_PROBE_RESP_IE: P2P IE to be added to
 *  probe response generated by FW. used in FW beacon mode.
 *  the FW will add this IE to probe response in addition to the probe response
 *  template set by WMI_PRB_TMPL_CMDID command.
 */
typedef struct {
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* ie length */
    A_UINT32 ie_buf_len;
/*followed by  byte stream of ie data of length ie_buf_len */
} wmi_p2p_go_set_probe_resp_ie;

/** WMI_P2P_SET_VENDOR_IE_DATA_CMDID: Vendor specific P2P IE data, which will
 *  be used by the FW to parse the P2P NoA attribute in beacons, probe responses
 *  and action frames received by the P2P Client.
 *  Note: This command is currently used only for Apple P2P implementation.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_set_vendor_ie_data_cmd_fixed_param */
    /** OS specific P2P IE OUI (3 bytes) + OUI type (1 byte)  */
    A_UINT32 p2p_ie_oui_type;
    /** OS specific NoA Attribute ID */
    A_UINT32 p2p_noa_attribute;
} wmi_p2p_set_vendor_ie_data_cmd_fixed_param;

/*----P2P disc offload definition  ----*/

typedef struct {
    A_UINT32 pattern_type;
/**
 * TLV (tag length value) parameters follow the pattern structure.
 * TLV can contain bssid list, ssid list and
 * ie. the TLV tags are defined above;
 */
} wmi_p2p_disc_offload_pattern_cmd;

typedef struct {
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* mgmt type of the ie*/
    A_UINT32 mgmt_type;
    /* ie length */
    A_UINT32 ie_buf_len;
/*followed by  byte stream of ie data of length ie_buf_len */
} wmi_p2p_disc_offload_appie_cmd;

typedef struct {
    /* enable/disable p2p find offload*/
    A_UINT32 enable;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* p2p find type */
    A_UINT32 disc_type;
    /* p2p find perodic */
    A_UINT32 perodic;
    /* p2p find listen channel in MHz */
    A_UINT32 listen_channel;
    /* p2p find full channel number */
    A_UINT32 num_scan_chans;
/**
 * TLV (tag length value) parameters follow the pattern structure.
 * TLV  contain channel list in MHz
 */
} wmi_p2p_disc_offload_config_cmd;

/*----P2P OppPS definition  ----*/
typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_set_oppps_cmd_fixed_param  */
    A_UINT32 tlv_header;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* OppPS attributes */
    /** Bit  0:     Indicate enable/disable of OppPS
     *  Bits 7-1:   Ctwindow in TUs
     *  Bits 31-8:  Reserved
     */
    A_UINT32    oppps_attr;
} wmi_p2p_set_oppps_cmd_fixed_param;

#define WMI_UNIFIED_OPPPS_ATTR_ENALBED      0x1
#define WMI_UNIFIED_OPPPS_ATTR_ENALBED_S    0

#define WMI_UNIFIED_OPPPS_ATTR_IS_ENABLED(hdr)                      \
            WMI_F_MS((hdr)->oppps_attr, WMI_UNIFIED_OPPPS_ATTR_ENALBED)

#define WMI_UNIFIED_OPPPS_ATTR_ENABLED_SET(hdr)                 \
            WMI_F_RMW((hdr)->oppps_attr, 0x1,                   \
                WMI_UNIFIED_OPPPS_ATTR_ENALBED);

#define WMI_UNIFIED_OPPPS_ATTR_CTWIN        0xfe
#define WMI_UNIFIED_OPPPS_ATTR_CTWIN_S      1

#define WMI_UNIFIED_OPPPS_ATTR_CTWIN_GET(hdr)                           \
            WMI_F_MS((hdr)->oppps_attr, WMI_UNIFIED_OPPPS_ATTR_CTWIN)

#define WMI_UNIFIED_OPPPS_ATTR_CTWIN_SET(hdr, v)                \
            WMI_F_RMW((hdr)->oppps_attr, (v) & 0x7f,            \
                WMI_UNIFIED_OPPPS_ATTR_CTWIN);

typedef enum p2p_lo_start_ctrl_flags_e {
    P2P_LO_START_CTRL_FLAG_FLUSH_LISTEN_RESULT = 1 << 0,  /* flush prob. req when host is awake */
} p2p_lo_start_ctrl_flags;

#define P2P_LO_PER_DEV_TYPE_LEN     8
#define P2P_LO_DEV_TYPES_COUNT_MAX  10
#define P2P_LO_DEV_TYPES_LEN_MAX    (P2P_LO_PER_DEV_TYPE_LEN * P2P_LO_DEV_TYPES_COUNT_MAX)
#define P2P_LO_PROB_RESP_MAX_LEN    512

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 ctl_flags; /* refer to enum_p2p_lo_start_ctrl_flags_e */
    A_UINT32 channel;   /* MHz */
    A_UINT32 period;    /* ms */
    A_UINT32 interval;  /* ms, interval should be larger than period */
    A_UINT32 count;     /* 0 means forever */
    /*
     * device_types_len specifies the number of bytes in the
     * device_types_data[] byte-array TLV that follows this TLV.
     * The data in device_types_data[] is in 8-byte elements, so
     * device_types_len will be a multiple of 8.
     * Refer to P2P_LO_DEV_TYPES_LEN_MAX
     */
    A_UINT32 device_types_len;
    /*
     * prob_resp_len specifies the number of bytes in the
     * prob_resp_data[] byte-array TLV that follows this TLV.
     * Refer to P2P_LO_PROB_RESP_MAX_LEN
     */
    A_UINT32 prob_resp_len;
    /*
     * Two other TLVs follow this TLV:
     * A_UINT8 device_types_data[device_types_len];
     * A_UINT8 prob_resp_data[prob_resp_len];
     *     The information in device_types_data[] and prob_resp_data[]
     *     needs to be provided to the target in over-the-air byte order.
     *     On a big-endian host, if device_types_data and prob_resp_data
     *     are initially in the correct over-the-air byte order,
     *     the automatic byteswap for endianness-correction during WMI
     *     message download will mess up the byte order.
     *     Thus, a big-endian host needs to explicitly byte-swap the bytes
     *     within each quad-byte segment of device_types_data[] and
     *     prob_resp_data[], so that the automatic byte-swap applied during
     *     WMI download from a big-endian host to the little-endian target
     *     will restore device_types_data and prob_resp_data into the
     *     correct byte ordering.
     */
} wmi_p2p_lo_start_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
} wmi_p2p_lo_stop_cmd_fixed_param;

typedef enum p2p_lo_stopped_reason_e {
    P2P_LO_STOPPED_REASON_COMPLETE = 0,   /* finished as scheduled */
    P2P_LO_STOPPED_REASON_RECV_STOP_CMD,  /* host stops it */
    P2P_LO_STOPPED_REASON_INVALID_LO_PAR, /* invalid listen offload par */
    P2P_LO_STOPPED_REASON_FW_NOT_SUPPORT, /* vdev cannot support it right now */
} p2p_lo_stopped_reason;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 reason;/* refer to p2p_lo_stopped_reason_e */
} wmi_p2p_lo_stopped_event_fixed_param;

typedef enum {
    WMI_MNT_FILTER_CONFIG_MANAGER,
    WMI_MNT_FILTER_CONFIG_CONTROL,
    WMI_MNT_FILTER_CONFIG_DATA,
    WMI_MNT_FILTER_CONFIG_ALL,
    WMI_MNT_FILTER_CONFIG_UNKNOWN,
} WMI_MNT_FILTER_CONFIG_TYPE;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 clear_or_set;
    A_UINT32 configure_type; /* see WMI_MNT_FILTER_CONFIG_TYPE */
} wmi_mnt_filter_cmd_fixed_param;

typedef struct {
    A_UINT32 time32; /* upper 32 bits of time stamp */
    A_UINT32 time0;  /* lower 32 bits of time stamp */
} A_TIME64;

typedef enum wmi_peer_sta_kickout_reason {
    WMI_PEER_STA_KICKOUT_REASON_UNSPECIFIED = 0,        /* default value to preserve legacy behavior */
    WMI_PEER_STA_KICKOUT_REASON_XRETRY = 1,
    WMI_PEER_STA_KICKOUT_REASON_INACTIVITY = 2,
    WMI_PEER_STA_KICKOUT_REASON_IBSS_DISCONNECT = 3,
    WMI_PEER_STA_KICKOUT_REASON_TDLS_DISCONNECT = 4,    /* TDLS peer has disappeared. All tx is failing */
    WMI_PEER_STA_KICKOUT_REASON_SA_QUERY_TIMEOUT = 5,
    WMI_PEER_STA_KICKOUT_REASON_ROAMING_EVENT = 6,      /* Directly connected peer has roamed to a repeater */
} PEER_KICKOUT_REASON;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_sta_kickout_event_fixed_param  */
    /** peer mac address */
    wmi_mac_addr peer_macaddr;
    /** Reason code, defined as above */
    A_UINT32 reason;
    /** RSSI of the last bcn (averaged) in dB. 0 means Noise Floor value */
    A_UINT32 rssi;
} wmi_peer_sta_kickout_event_fixed_param;

#define WMI_WLAN_PROFILE_MAX_HIST     3
#define WMI_WLAN_PROFILE_MAX_BIN_CNT 32

typedef struct _wmi_wlan_profile_t {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlan_profile_t */
    A_UINT32 id;
    A_UINT32 cnt;
    A_UINT32 tot;
    A_UINT32 min;
    A_UINT32 max;
    A_UINT32 hist_intvl;
    A_UINT32 hist[WMI_WLAN_PROFILE_MAX_HIST];
} wmi_wlan_profile_t;

typedef struct _wmi_wlan_profile_ctx_t {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlan_profile_ctx_t */
    A_UINT32 tot; /* time in us */
    A_UINT32 tx_msdu_cnt;
    A_UINT32 tx_mpdu_cnt;
    A_UINT32 tx_ppdu_cnt;
    A_UINT32 rx_msdu_cnt;
    A_UINT32 rx_mpdu_cnt;
    A_UINT32 bin_count;
} wmi_wlan_profile_ctx_t;


typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlan_profile_trigger_cmd_fixed_param */
    A_UINT32 enable;
} wmi_wlan_profile_trigger_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlan_profile_get_prof_data_cmd_fixed_param */
    A_UINT32 value;
} wmi_wlan_profile_get_prof_data_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlan_profile_set_hist_intvl_cmd_fixed_param */
    A_UINT32 profile_id;
    A_UINT32 value;
} wmi_wlan_profile_set_hist_intvl_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wlan_profile_enable_profile_id_cmd_fixed_param */
    A_UINT32 profile_id;
    A_UINT32 enable;
} wmi_wlan_profile_enable_profile_id_cmd_fixed_param;

/*Wifi header is upto 26, LLC is 8, with 14 byte duplicate in 802.3 header, that's 26+8-14=20.
 146-128=18. So this means it is converted to non-QoS header. Riva FW take care of the QOS/non-QOS
 when comparing wifi header.*/
/* NOTE: WOW_DEFAULT_BITMAP_PATTERN_SIZE(_DWORD) and WOW_DEFAULT_BITMASK_SIZE(_DWORD) can't be changed without breaking the compatibility */
#define WOW_DEFAULT_BITMAP_PATTERN_SIZE      146
#define WOW_DEFAULT_BITMAP_PATTERN_SIZE_DWORD 37 /* Convert WOW_DEFAULT_EVT_BUF_SIZE into Int32 size */
#define WOW_DEFAULT_BITMASK_SIZE             146
#define WOW_DEFAULT_BITMASK_SIZE_DWORD        37
#define WOW_MAX_BITMAP_FILTERS               32
#define WOW_DEFAULT_MAGIG_PATTERN_MATCH_CNT  16
#define WOW_EXTEND_PATTERN_MATCH_CNT    16
#define WOW_SHORT_PATTERN_MATCH_CNT     8
#define WOW_DEFAULT_EVT_BUF_SIZE             148  /* Maximum 148 bytes of the data is copied starting from header incase if the match is found.
                                                                                    The 148 comes from (128 - 14)  payload size  + 8bytes LLC + 26bytes MAC header*/
#define WOW_DEFAULT_IOAC_PATTERN_SIZE  6
#define WOW_DEFAULT_IOAC_PATTERN_SIZE_DWORD 2
#define WOW_DEFAULT_IOAC_RANDOM_SIZE  6
#define WOW_DEFAULT_IOAC_RANDOM_SIZE_DWORD 2
#define WOW_DEFAULT_IOAC_KEEP_ALIVE_PKT_SIZE   120
#define WOW_DEFAULT_IOAC_KEEP_ALIVE_PKT_SIZE_DWORD 30
#define WOW_DEFAULT_IOAC_SOCKET_PATTERN_SIZE  32
#define WOW_DEFAULT_IOAC_SOCKET_PATTERN_SIZE_DWORD 8
#define WOW_DEFAULT_IOAC_KEEP_ALIVE_PKT_REV_SIZE       32
#define WOW_DEFAULT_IOAC_KEEP_ALIVE_PKT_REV_SIZE_DWORD 8
#define WOW_DEFAULT_IOAC_SOCKET_PATTERN_ACKNAK_SIZE  128
#define WOW_DEFAULT_IOAC_SOCKET_PATTERN_ACKNAK_SIZE_DWORD 32

typedef enum pattern_type_e {
    WOW_PATTERN_MIN = 0,
    WOW_BITMAP_PATTERN = WOW_PATTERN_MIN,
    WOW_IPV4_SYNC_PATTERN,
    WOW_IPV6_SYNC_PATTERN,
    WOW_WILD_CARD_PATTERN,
    WOW_TIMER_PATTERN,
    WOW_MAGIC_PATTERN,
    WOW_IPV6_RA_PATTERN,
    WOW_IOAC_PKT_PATTERN,
    WOW_IOAC_TMR_PATTERN,
    WOW_IOAC_SOCK_PATTERN,
    WOW_PATTERN_MAX
} WOW_PATTERN_TYPE;

typedef enum event_type_e {
    WOW_BMISS_EVENT = 0,          /*  0 */
    WOW_BETTER_AP_EVENT,          /*  1 */
    WOW_DEAUTH_RECVD_EVENT,       /*  2 */
    WOW_MAGIC_PKT_RECVD_EVENT,    /*  3 */
    WOW_GTK_ERR_EVENT,            /*  4 */
    WOW_FOURWAY_HSHAKE_EVENT,     /*  5 */
    WOW_EAPOL_RECVD_EVENT,        /*  6 */
    WOW_NLO_DETECTED_EVENT,       /*  7 */
    WOW_DISASSOC_RECVD_EVENT,     /*  8 */
    WOW_PATTERN_MATCH_EVENT,      /*  9 */
    WOW_CSA_IE_EVENT,             /* 10 */
    WOW_PROBE_REQ_WPS_IE_EVENT,   /* 11 */
    WOW_AUTH_REQ_EVENT,           /* 12 */
    WOW_ASSOC_REQ_EVENT,          /* 13 */
    WOW_HTT_EVENT,                /* 14 */
    WOW_RA_MATCH_EVENT,           /* 15 */
    WOW_HOST_AUTO_SHUTDOWN_EVENT, /* 16 */
    WOW_IOAC_MAGIC_EVENT,         /* 17 */
    WOW_IOAC_SHORT_EVENT,         /* 18 */
    WOW_IOAC_EXTEND_EVENT,        /* 19 */
    WOW_IOAC_TIMER_EVENT,         /* 20 */
    WOW_DFS_PHYERR_RADAR_EVENT,   /* 21 */
    WOW_BEACON_EVENT,             /* 22 */
    WOW_CLIENT_KICKOUT_EVENT,     /* 23 */
    WOW_NAN_EVENT,                /* 24 */
    WOW_EXTSCAN_EVENT,            /* 25 */
    WOW_IOAC_REV_KA_FAIL_EVENT,   /* 26 */
    WOW_IOAC_SOCK_EVENT,          /* 27 */
    WOW_NLO_SCAN_COMPLETE_EVENT,  /* 28 */
    WOW_NAN_DATA_EVENT,           /* 29 */
    WOW_NAN_RTT_EVENT, /* DEPRECATED, UNUSED; 30 */
    WOW_OEM_RESPONSE_EVENT = WOW_NAN_RTT_EVENT, /* reuse deprecated event value; 30 */
    WOW_TDLS_CONN_TRACKER_EVENT,  /* 31 */
    WOW_CRITICAL_LOG_EVENT,               /* 32 +  0 */
    WOW_CHIP_POWER_FAILURE_DETECT_EVENT,  /* 32 +  1 */
    WOW_11D_SCAN_EVENT,                   /* 32 +  2 */
    WOW_SAP_OBSS_DETECTION_EVENT,         /* 32 +  3 */
    WOW_BSS_COLOR_COLLISION_DETECT_EVENT, /* 32 +  4 */
    WOW_TKIP_MIC_ERR_FRAME_RECVD_EVENT,   /* 32 +  5 */
    WOW_ROAM_PREAUTH_START_EVENT,         /* 32 +  6 */
    WOW_ROAM_PMKID_REQUEST_EVENT,         /* 32 +  7 */
    WOW_DFS_CAC_COMPLETE_EVENT,           /* 32 +  8 */
    WOW_VDEV_DISCONNECT_EVENT,            /* 32 +  9 */
    WOW_TWT_EVENT,                        /* 32 + 10 */
    WOW_DCS_INTERFERENCE_DET,             /* 32 + 11 */
    WOW_ROAM_STATS_EVENT,                 /* 32 + 12 */
    WOW_RTT_11AZ_EVENT,                   /* 32 + 13 */
    WOW_P2P_NOA_EVENT,                    /* 32 + 14 */
    WOW_XGAP_EVENT,                       /* 32 + 15 */
} WOW_WAKE_EVENT_TYPE;

typedef enum wake_reason_e {
    WOW_REASON_UNSPECIFIED = -1,
    WOW_REASON_NLOD = 0,
    WOW_REASON_AP_ASSOC_LOST,
    WOW_REASON_LOW_RSSI,
    WOW_REASON_DEAUTH_RECVD,
    WOW_REASON_DISASSOC_RECVD,
    WOW_REASON_GTK_HS_ERR,
    WOW_REASON_EAP_REQ,
    WOW_REASON_FOURWAY_HS_RECV,
    WOW_REASON_TIMER_INTR_RECV,
    WOW_REASON_PATTERN_MATCH_FOUND,
    WOW_REASON_RECV_MAGIC_PATTERN,
    WOW_REASON_P2P_DISC,
    WOW_REASON_WLAN_HB,
    WOW_REASON_CSA_EVENT,
    WOW_REASON_PROBE_REQ_WPS_IE_RECV,
    WOW_REASON_AUTH_REQ_RECV,
    WOW_REASON_ASSOC_REQ_RECV,
    WOW_REASON_HTT_EVENT,
    WOW_REASON_RA_MATCH,
    WOW_REASON_HOST_AUTO_SHUTDOWN,
    WOW_REASON_IOAC_MAGIC_EVENT,
    WOW_REASON_IOAC_SHORT_EVENT,
    WOW_REASON_IOAC_EXTEND_EVENT,
    WOW_REASON_IOAC_TIMER_EVENT,
    WOW_REASON_ROAM_HO,
    WOW_REASON_DFS_PHYERR_RADADR_EVENT,
    WOW_REASON_BEACON_RECV,
    WOW_REASON_CLIENT_KICKOUT_EVENT,
    WOW_REASON_NAN_EVENT,
    WOW_REASON_EXTSCAN,
    WOW_REASON_RSSI_BREACH_EVENT,
    WOW_REASON_IOAC_REV_KA_FAIL_EVENT,
    WOW_REASON_IOAC_SOCK_EVENT,
    WOW_REASON_NLO_SCAN_COMPLETE,
    WOW_REASON_PACKET_FILTER_MATCH,
    WOW_REASON_ASSOC_RES_RECV,
    WOW_REASON_REASSOC_REQ_RECV,
    WOW_REASON_REASSOC_RES_RECV,
    WOW_REASON_ACTION_FRAME_RECV,
    WOW_REASON_BPF_ALLOW,
    WOW_REASON_NAN_DATA,
    WOW_REASON_NAN_RTT, /* DEPRECATED, UNUSED */
    WOW_REASON_OEM_RESPONSE_EVENT = WOW_REASON_NAN_RTT, /* reuse deprecated reason value */
    WOW_REASON_TDLS_CONN_TRACKER_EVENT,
    WOW_REASON_CRITICAL_LOG,
    WOW_REASON_P2P_LISTEN_OFFLOAD,
    WOW_REASON_NAN_EVENT_WAKE_HOST,
    WOW_REASON_CHIP_POWER_FAILURE_DETECT,
    WOW_REASON_11D_SCAN,
    WOW_REASON_THERMAL_CHANGE,
    WOW_REASON_OIC_PING_OFFLOAD,
    WOW_REASON_WLAN_DHCP_RENEW,
    WOW_REASON_SAP_OBSS_DETECTION,
    WOW_REASON_BSS_COLOR_COLLISION_DETECT,
    WOW_REASON_TKIP_MIC_ERR_FRAME_RECVD_DETECT,
    WOW_REASON_WLAN_MD, /* motion detected */
    WOW_REASON_WLAN_BL, /* baselining done */
    WOW_REASON_NTH_BCN_OFLD, /* nth beacon forward to host */
    WOW_REASON_PKT_CAPTURE_MODE_WAKE,
    WOW_REASON_PAGE_FAULT, /* Host wake up due to page fault */
    WOW_REASON_ROAM_PREAUTH_START,
    WOW_REASON_ROAM_PMKID_REQUEST,
    WOW_REASON_RFKILL,
    WOW_REASON_DFS_CAC,
    WOW_REASON_VDEV_DISCONNECT,
    WOW_REASON_LOCAL_DATA_UC_DROP,
    WOW_REASON_GENERIC_WAKE, /* A generic reason that host should be woken up */
    WOW_REASON_ERR_PKT_TRIGGERED_WAKEUP,
    WOW_REASON_TWT,
    WOW_REASON_FATAL_EVENT_WAKE,
    WOW_REASON_DCS_INT_DET,
    WOW_REASON_ROAM_STATS,
    WOW_REASON_MDNS_WAKEUP,
    WOW_REASON_RTT_11AZ,
    WOW_REASON_P2P_NOA_UPDATE,
    /* When Host configured timer elapsed for delayed wakeup */
    WOW_REASON_DELAYED_WAKEUP_HOST_CFG_TIMER_ELAPSED,
    /* Data store list is full, so Host wakeup should be triggered */
    WOW_REASON_DELAYED_WAKEUP_DATA_STORE_LIST_FULL,
    /* Sched PM FW initiated termination event */
    WOW_REASON_SCHED_PM_TERMINATED,
    /* XGAP entry/exit response */
    WOW_REASON_XGAP,
    /* COEX channel avoid event */
    WOW_REASON_COEX_CHAVD,

    /* add new WOW_REASON_ defs before this line */
    WOW_REASON_MAX,
    WOW_REASON_DEBUG_TEST = 0xFF,
} WOW_WAKE_REASON_TYPE;


typedef enum {
    WOW_IFACE_PAUSE_ENABLED,
    WOW_IFACE_PAUSE_DISABLED
} WOW_IFACE_STATUS;

enum {
    WMI_WOW_FLAG_IGNORE_PCIE_RESET          = 0x00000001, /* some win10 platform will not assert pcie_reset for wow.*/
    /* WMI_WOW_FLAG_SEND_PM_PME
     * Some platforms have issues if the PM_PME message is sent after WoW,
     * so don't send PM_PME after WoW unless the host uses this flag
     * to request it.
     */
    WMI_WOW_FLAG_SEND_PM_PME                = 0x00000002,
    /* Flag to indicate unit test */
    WMI_WOW_FLAG_UNIT_TEST_ENABLE           = 0x00000004,
    /* Force HTC wakeup */
    WMI_WOW_FLAG_DO_HTC_WAKEUP              = 0x00000008,
    /* Enable L1SS sleep for PCIE DRV case */
    WMI_WOW_FLAG_ENABLE_DRV_PCIE_L1SS_SLEEP = 0x00000010,
    /*
     * To differentiate system suspend Vs RTPM BIT set -
     * System Suspend WOW, BIT Reset- RTPM (DRV)
     */
    WMI_WOW_FLAG_SYSTEM_SUSPEND_WOW         = 0x00000020,
    /*
     * Feature flag for INI enable_mod_dtim_on_system_suspend
     * This flag/bit will be set if INI settings enable mod_dtim_on_sys_suspend.
     */
    WMI_WOW_FLAG_MOD_DTIM_ON_SYS_SUSPEND    = 0x00000040,
    /*
     * Forced dtim in suspend mode enable Flag.
     * setDtimInSuspendMode
     */
    WMI_WOW_FLAG_FORCED_DTIM_ON_SYS_SUSPEND = 0x00000080,
    /* Flag to force DPD lock. */
    WMI_WOW_FLAG_FORCED_DPD_LOCK            = 0x00000100,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wow_enable_cmd_fixed_param  */
    A_UINT32 enable;
    A_UINT32 pause_iface_config;
    A_UINT32 flags;  /* WMI_WOW_FLAG enums */
} wmi_wow_enable_cmd_fixed_param;

typedef enum {
    WMI_WOW_RESUME_FLAG_TX_DATA          = 0x00000001, /* TX data pending to be sent in resume */
} WMI_WOW_RESUME_FLAG_ENUM;

/* wow nack reason codes */
typedef enum {
    /* WoW error due to unnkown reason */
    WMI_WOW_NON_ACK_REASON_UNKNOWN = 0,

    /* WoW error due to TX failure */
    WMI_WOW_NON_ACK_REASON_TX = 1,

    /* WoW error due to some data blocked */
    WMI_WOW_NON_ACK_REASON_IS_BLOCK = 2,

    /* WoW error in WFA mode */
    WMI_WOW_NON_ACK_REASON_NOT_ALLOW = 3,

    /* WoW error mac operation fail */
    WMI_WOW_NON_ACK_REASON_HW_FAIL = 4,

    /* WoW error due to timeout */
    WMI_WOW_NON_ACK_REASON_TIMEOUT = 5,

    /* WoW error due to RTT or CFR capture active */
    WMI_WOW_NON_ACK_REASON_RTT_DMA = 6,

    /* WoW error due to roam module holding lock */
    WMI_WOW_NON_ACK_REASON_ROAM = 7,

    /* WoW error remote peer not sleeping */
    WMI_WOW_NON_ACK_REASON_PEER_ACTIVE = 8,

    /* WoW error due to WoW entry defer failed */
    WMI_WOW_NON_ACK_REASON_DEFER_FAILURE = 9,

    /* WoW error due to WoW entry defer timeout */
    WMI_WOW_NON_ACK_REASON_DEFER_TIMEOUT = 10,

    /* WoW error due to FATAL event */
    WMI_WOW_NON_ACK_REASON_FATAL_EVENT = 11,

    /* WoW error if close to TBTT */
    WMI_WOW_NON_ACK_REASON_CLOSE_TO_TBTT = 12,
} WMI_WOW_NACK_STATUS;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wow_hostwakeup_from_sleep_cmd_fixed_param  */
    /* reserved0:
     * This "reserved" field is not actually reserved any more.
     * It is being used in certain FW branches to hold flags, whose values
     * are defined by WMI_WOW_RESUME_FLAG_ENUM.
     */
    union {
        A_UINT32 reserved0;
        A_UINT32 flags;
    };
} wmi_wow_hostwakeup_from_sleep_cmd_fixed_param;

#define WOW_ICMPV6_NA_FILTER_DISABLE 0
#define WOW_ICMPV6_NA_FILTER_ENABLE 1

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wow_enable_icmpv6_na_flt_cmd_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 enable; /* WOW_ICMPV6_NA_FILTER_ENABLE/DISABLE */
} wmi_wow_enable_icmpv6_na_flt_cmd_fixed_param;

typedef struct bitmap_pattern_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_BITMAP_PATTERN_T */
    A_UINT32 patternbuf[WOW_DEFAULT_BITMAP_PATTERN_SIZE_DWORD];
    A_UINT32 bitmaskbuf[WOW_DEFAULT_BITMASK_SIZE_DWORD];
    A_UINT32 pattern_offset;
    A_UINT32 pattern_len;
    A_UINT32 bitmask_len;
    A_UINT32 pattern_id; /* must be less than max_bitmap_filters */
} WOW_BITMAP_PATTERN_T;

typedef struct ipv4_sync_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_IPV4_SYNC_PATTERN_T */
    A_UINT32 ipv4_src_addr;
    A_UINT32 ipv4_dst_addr;
    A_UINT32 tcp_src_prt;
    A_UINT32 tcp_dst_prt;
} WOW_IPV4_SYNC_PATTERN_T;

typedef struct ipv6_sync_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_IPV6_SYNC_PATTERN_T */
    A_UINT32 ipv6_src_addr[4];
    A_UINT32 ipv6_dst_addr[4];
    A_UINT32 tcp_src_prt;
    A_UINT32 tcp_dst_prt;
} WOW_IPV6_SYNC_PATTERN_T;

typedef struct WOW_MAGIC_PATTERN_CMD
{
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_MAGIC_PATTERN_CMD */
    wmi_mac_addr macaddr;
} WOW_MAGIC_PATTERN_CMD;

typedef enum wow_ioac_pattern_type {
    WOW_IOAC_MAGIC_PATTERN = 1,
    WOW_IOAC_SHORT_PATTERN,
    WOW_IOAC_EXTEND_PATTERN,
} WOW_IOAC_PATTERN_TYPE;

typedef struct ioac_sock_pattern_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_IOAC_SOCK_PATTERN_T */
    A_UINT32 id;
    A_UINT32 local_ipv4;
    A_UINT32 remote_ipv4;
    A_UINT32 local_port;
    A_UINT32 remote_port;
    A_UINT32 pattern_len; /* units = bytes */
    A_UINT32 pattern[WOW_DEFAULT_IOAC_SOCKET_PATTERN_SIZE_DWORD];
    WMI_IPV6_ADDR local_ipv6;
    WMI_IPV6_ADDR remote_ipv6;
    A_UINT32 ack_nak_len;
    A_UINT32 ackpkt[WOW_DEFAULT_IOAC_SOCKET_PATTERN_ACKNAK_SIZE_DWORD];
    A_UINT32 nakpkt[WOW_DEFAULT_IOAC_SOCKET_PATTERN_ACKNAK_SIZE_DWORD];
} WOW_IOAC_SOCK_PATTERN_T;

typedef struct ioac_pkt_pattern_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_IOAC_PKT_PATTERN_T */
    A_UINT32 pattern_type;
    A_UINT32 pattern[WOW_DEFAULT_IOAC_PATTERN_SIZE_DWORD];
    A_UINT32 random[WOW_DEFAULT_IOAC_RANDOM_SIZE_DWORD];
    A_UINT32 pattern_len;
    A_UINT32 random_len;
} WOW_IOAC_PKT_PATTERN_T;

typedef struct ioac_tmr_pattern_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_IOAC_TMR_PATTERN_T */
    A_UINT32 wake_in_s;
    A_UINT32 vdev_id;
} WOW_IOAC_TMR_PATTERN_T;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_IOAC_ADD_KEEPALIVE_CMD_fixed_param */
    A_UINT32 nID;
} WMI_WOW_IOAC_ADD_KEEPALIVE_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_IOAC_DEL_KEEPALIVE_CMD_fixed_param */
    A_UINT32 nID;
} WMI_WOW_IOAC_DEL_KEEPALIVE_CMD_fixed_param;

typedef struct ioac_keepalive_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_IOAC_KEEPALIVE_T */
    A_UINT32 keepalive_pkt_buf[WOW_DEFAULT_IOAC_KEEP_ALIVE_PKT_SIZE_DWORD];
    A_UINT32 keepalive_pkt_len;
    A_UINT32 period_in_ms;
    A_UINT32 vdev_id;
    A_UINT32 max_loss_cnt;
    A_UINT32 local_ipv4;
    A_UINT32 remote_ipv4;
    A_UINT32 local_port;
    A_UINT32 remote_port;
    A_UINT32 recv_period_in_ms;
    A_UINT32 rev_ka_size;
    A_UINT32 rev_ka_data[WOW_DEFAULT_IOAC_KEEP_ALIVE_PKT_REV_SIZE_DWORD];
    WMI_IPV6_ADDR local_ipv6;
    WMI_IPV6_ADDR remote_ipv6;
} WMI_WOW_IOAC_KEEPALIVE_T;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_IOAC_ADD_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_type;
/*
 * Following this struct are these TLVs. Note that they are all array of structures
 * but can have at most one element. Which TLV is empty or has one element depends
 * on the field pattern_type. This is to emulate an union.
 *     WOW_IOAC_PKT_PATTERN_T pattern_info_pkt[];
 *     WOW_IOAC_TMR_PATTERN_T pattern_info_tmr[];
 */
} WMI_WOW_IOAC_ADD_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_IOAC_DEL_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_type;
    A_UINT32 pattern_id;
} WMI_WOW_IOAC_DEL_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_ADD_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
    A_UINT32 pattern_type;
/*
 * Following this struct are these TLVs. Note that they are all array of structures
 * but can have at most one element. Which TLV is empty or has one element depends
 * on the field pattern_type. This is to emulate an union.
 *     WOW_BITMAP_PATTERN_T       pattern_info_bitmap[];
 *     WOW_IPV4_SYNC_PATTERN_T    pattern_info_ipv4[];
 *     WOW_IPV6_SYNC_PATTERN_T    pattern_info_ipv6[];
 *     WOW_MAGIC_PATTERN_CMD      pattern_info_magic_pattern[];
 *     A_UINT32                   pattern_info_timeout[];
 *     A_UINT32                   ra_ratelimit_interval;
 */
} WMI_WOW_ADD_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_DEL_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
    A_UINT32 pattern_type;
} WMI_WOW_DEL_PATTERN_CMD_fixed_param;

#define WMI_WOW_MAX_EVENT_BM_LEN 4

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_ADD_DEL_EVT_CMD_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 is_add;
    union {
        A_UINT32 event_bitmap;
        A_UINT32 event_bitmaps[WMI_WOW_MAX_EVENT_BM_LEN];
    };
} WMI_WOW_ADD_DEL_EVT_CMD_fixed_param;

/*
 * This structure is used to set the pattern to check UDP packet in WOW mode.
 * If match, construct a tx frame in a local buffer to send through the peer
 * AP to the entity in the IP network that sent the UDP packet to this STA.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_UDP_SVC_OFLD_CMD_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 enable; /* 1: enable, 0: disable*/
    /* dest_port -
     * bits 7:0  contain the LSB of the UDP dest port,
     * bits 15:8 contain the MSB of the UDP dest port
     */
    A_UINT32 dest_port;
    A_UINT32 pattern_len; /* length in byte of pattern[] */
    A_UINT32 response_len; /* length in byte of response[] */
/* Following this struct are the TLV's:
 *  A_UINT8 pattern[];  <-- payload of UDP packet to be checked, network byte order
 *  A_UINT8 response[]; <-- payload of UDP packet to be response, network byte order
 */
} WMI_WOW_UDP_SVC_OFLD_CMD_fixed_param;

/*
 * This structure is used to set the pattern for WOW host wakeup pin pulse pattern confirguration.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_HOSTWAKEUP_PIN_PATTERN_CONFIG_CMD_fixed_param  */
    A_UINT32 enable; /* 1: enable, 0: disable */
    A_UINT32 pin; /* pin for host wakeup */
    A_UINT32 interval_low; /* interval for keeping low voltage, unit: ms */
    A_UINT32 interval_high; /* interval for keeping high voltage, unit: ms */
    A_UINT32 repeat_cnt; /* repeat times for pulse (0xffffffff means forever) */
    A_UINT32 init_state; /* Sense of the GPIO pin used for host wakeups.
                          * If init_state is 0, a low --> high transition
                          * causes a host wakeup interrupt.
                          * If init_state is 1, a high --> low transition
                          * causes a host wakeup interrupt.
                          */
} WMI_WOW_HOSTWAKEUP_GPIO_PIN_PATTERN_CONFIG_CMD_fixed_param;

#define MAX_SUPPORTED_ACTION_CATEGORY           256
#define MAX_SUPPORTED_ACTION_SUBCATEGORY        32
#define MAX_SUPPORTED_ACTION_CATEGORY_ELE_LIST  (MAX_SUPPORTED_ACTION_CATEGORY/32)

typedef enum {
    WOW_ACTION_WAKEUP_OPERATION_RESET = 0,
    WOW_ACTION_WAKEUP_OPERATION_SET,
    WOW_ACTION_WAKEUP_OPERATION_ADD_SET,
    WOW_ACTION_WAKEUP_OPERATION_DELETE_SET,
} WOW_ACTION_WAKEUP_OPERATION;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_SET_ACTION_WAKE_UP_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 operation; /* 0 reset to fw default, 1 set the bits, 2 add the setting bits, 3 delete the setting bits */
    A_UINT32 action_category_map[MAX_SUPPORTED_ACTION_CATEGORY_ELE_LIST];
    /* This fixed_param TLV is followed by these additional TLV's
     * action_bitmaps_per_category -
     * Each element is a 32-bit bitmap indicating which subcategories
     * for that particular action category are considered for WoW wakeup
     * (if the subcategory's bit is 0) or ignored for WoW wakeup (if the
     * subcategory's bit is 1).
     *
     * A_UINT32 action_bitmaps_per_category[]; <-- variable length array
     */
} WMI_WOW_SET_ACTION_WAKE_UP_CMD_fixed_param;

typedef union {
    /* the bytes within these IP addresses are arranged in network byte order */
    A_UINT8 ipv4_addr[4];
    A_UINT8 ipv6_addr[16];
} WMI_IP_ADDR;

#define WMI_COAP_IPTV6_BIT_POS                    0
#define WMI_COAP_ADDR_TYPE_BIT_POS                1

#define WMI_COAP_IPV6_SET(param, value) \
    WMI_SET_BITS(param, WMI_COAP_IPTV6_BIT_POS, 1, value)

#define WMI_COAP_IPV6_GET(param)     \
    WMI_GET_BITS(param, WMI_COAP_IPTV6_BIT_POS, 1)

#define WMI_COAP_ADDR_TYPE_SET(param, value) \
    WMI_SET_BITS(param, WMI_COAP_ADDR_TYPE_BIT_POS, 1, value)

#define WMI_COAP_ADDR_TYPE_GET(param)     \
    WMI_GET_BITS(param, WMI_COAP_ADDR_TYPE_BIT_POS, 1)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_COAP_ADD_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;

    /* pattern_type:
     * Indicates the type of pattern to be enabled
     * Bit 0:    Indicate pattern IP ADDR is IPV6 or IPV4
     * Bit 1:    Indicate pattern ADDR TYPE is BC or UC/MC
     * Bits 31:2 Reserved for future use
     *
     * Refer to WMI_COAP_IPV6_SET,GET and WMI_COAP_ADDR_TYPE_SET,GET macros
     */
    A_UINT32 pattern_type;

    A_UINT32 timeout; /* the cached packet expire timeout in ms */

    /* the dst ip address(uc/mc/bc), dst port to match CoAP message */
    WMI_IP_ADDR match_udp_ip; /* network byte order */
    A_UINT32 match_udp_port;

    /* DUT ip address and port for CoAP replay message */
    WMI_IP_ADDR udp_local_ip; /* network byte order */
    A_UINT32 udp_local_port;

    A_UINT32 verify_offset; /* UDP payload offset to verify */
    A_UINT32 verify_len;    /* UDP payload length to verofy*/
    A_UINT32 coapmsg_len;   /* CoAP reply message length */
/* The below TLV (tag length value) parameters follow this fixed_param TLV:
 *     A_UINT8 verify_string[];  verify content,
 *         length identified by verify_len;
 *     A_UINT8 coapmsg[];        CoAP reply message,
 *         length identified by coapmsg_len;
 */
} WMI_WOW_COAP_ADD_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_COAP_DEL_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
} WMI_WOW_COAP_DEL_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_COAP_ADD_KEEPALIVE_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;

    /* pattern_type:
     * Indicates the type of pattern to be enabled
     * Bit 0:    Indicate pattern IP ADDR is IPV6 or IPV4
     * Bit 1:    Indicate pattern ADDR TYPE is BC or UC/MC
     * Bits 31:2 Reserved for future use
     *
     * Refer to WMI_COAP_IPV6_SET,GET and WMI_COAP_ADDR_TYPE_SET,GET macros
     */
    A_UINT32 pattern_type;

    /* ip address and port for CoAP send keepalive message */
    WMI_IP_ADDR udp_local_ip; /* network byte order */
    A_UINT32 udp_local_port;
    WMI_IP_ADDR udp_remote_ip; /* network byte order */
    A_UINT32 udp_remote_port;

    A_UINT32 timeout;         /* the periorid to send keepalive message in ms */
    A_UINT32 coapmsg_len;     /* keeplive CoAP message length */
/* The below TLV (tag length value) parameters follow this fixed_param TLV:
 *     A_UINT8 coapmsg[];  CoAP keepalive message,
 *          length specified by coapmsg_len field
 */
} WMI_WOW_COAP_ADD_KEEPALIVE_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_COAP_DEL_KEEPALIVE_PATTERN_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
} WMI_WOW_COAP_DEL_KEEPALIVE_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_COAP_GET_BUF_INFO_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
} WMI_WOW_COAP_GET_BUF_INFO_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_hdr; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_coap_tuple */
    A_UINT64 tsf;     /* host and firmware sync tsf */
    /* flag:
     * Indicates the type of ip address
     * Bit 0:    Indicate ip address is IPV6 or IPV4
     * Bits 31:1 Reserved for future use
     *
     * Refer to WMI_COAP_IPV6_SET,GET macros
     */
    A_UINT32 flag;
    WMI_IP_ADDR src_ip; /* network byte order */
    A_UINT32 payload_len;
} wmi_coap_tuple;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_WOW_COAP_BUF_INFO_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
    /** more_data will be set depending on the number of tuples need transmit */
    A_UINT32 more_tuples;

/* The below TLV (tag length value) parameters follow this fixed_param TLV:
 *     wmi_coap_tuple coap_tuple[]; <-- Array of coap_tuple.
 *     A_UINT32 payloads[] <-- the cached received CoAP messages.
 *         The number of message payloads combined into the payloads[]
 *         array matches the number of coap tuples.
 *         The length of each message payload is specified by the
 *         "payload_len" field in the corresponding coap_tuple.
 *         The subsequent message payload starts at the next 4-byte aligned
 *         position within payloads[].
 *         For example, if there are 3 coap_tuples, with
 *             coap_tuples[0].payload_len = 12
 *             coap_tuples[1].payload_len = 23
 *             coap_tuples[2].payload_len = 34
 *         then msg 0 payload will be stored in payloads[0] - payloads[11]
 *         message  1 payload will be stored in payloads[12] - payloads[34]
 *         message  2 payload will be stored in payloads[36] - payloads[69]
 */
} WMI_WOW_COAP_BUF_INFO_EVENT_fixed_param;

typedef struct wow_event_info_s {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_EVENT_INFO_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 flag; /*This is current reserved.*/
    A_INT32 wake_reason;
    A_UINT32 data_len;
    A_UINT32 delayed_pkt_count;
} WOW_EVENT_INFO_fixed_param;

typedef struct wow_initial_wakeup_event_s {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WOW_INITIAL_WAKEUP_EVENT_fixed_param  */
    A_UINT32 vdev_id;
} WOW_INITIAL_WAKEUP_EVENT_fixed_param;

typedef enum {
    WOW_EVENT_INFO_TYPE_PACKET = 0x0001,
    WOW_EVENT_INFO_TYPE_BITMAP,
    WOW_EVENT_INFO_TYPE_GTKIGTK,
} WOW_EVENT_INFO_TYPE;

typedef struct wow_event_info_section_s {
    A_UINT32 data_type;
    A_UINT32 data_len;
} WOW_EVENT_INFO_SECTION;

typedef struct wow_event_info_section_packet_s {
    A_UINT8 packet[WOW_DEFAULT_EVT_BUF_SIZE];
} WOW_EVENT_INFO_SECTION_PACKET;

typedef struct wow_event_info_section_bitmap_s {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WOW_EVENT_INFO_SECTION_BITMAP  */
    A_UINT32 flag; /*This is current reserved.*/
    A_UINT32 value; /*This could be the pattern id for bitmap pattern.*/
    A_UINT32 org_len; /*The length of the original packet.*/
} WOW_EVENT_INFO_SECTION_BITMAP;

/**
 * This command is sent from WLAN host driver to firmware to
 * enable or disable D0-WOW. D0-WOW means APSS suspend with
 * PCIe link and DDR being active.
 *
 *
 * Entering D0-WOW Mode (based on kernel suspend request):
 *    host->target: WMI_DO_WOW_ENABLE_DISABLE_CMDID (enable = 1)
 *    target: Take action (e.g. dbglog suspend)
 *    target->host: HTC_ACK (HTC_MSG_SEND_SUSPEND_COMPLETE message)
 *
 * Exiting D0-WOW mode (based on kernel resume OR target->host message received)
 *    host->target: WMI_DO_WOW_ENABLE_DISABLE_CMDID (enable = 0)
 *    target: Take action (e.g. dbglog resume)
 *    target->host: WMI_D0_WOW_DISABLE_ACK_EVENTID
 *
 * This command is applicable only on the PCIE LL systems
 * Host can enter either D0-WOW or WOW mode, but NOT both at same time
 * Decision to enter D0-WOW or WOW is based on active interfaces
 *
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_d0_wow_enable_disable_cmd_fixed_param  */
    A_UINT32 enable;     /* 1 = enable, 0 = disable */
} wmi_d0_wow_enable_disable_cmd_fixed_param;


typedef enum extend_wow_type_e {
    EXTWOW_TYPE_APP_TYPE1,   /* extend wow type: only enable wakeup for app type1 */
    EXTWOW_TYPE_APP_TYPE2,   /* extend wow type: only enable wakeup for app type2 */
    EXTWOW_TYPE_APP_TYPE1_2, /* extend wow type: enable wakeup for app type1&2 */
    EXTWOW_TYPE_APP_PULSETEST,
    EXTWOW_DISABLED = 255,
} EXTWOW_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals wmi_extwow_enable_cmd_fixed_param  */
    A_UINT32 vdev_id;
    A_UINT32 type;
    A_UINT32 wakeup_pin_num;
    A_UINT32 swol_pulsetest_type;
    A_UINT32 swol_pulsetest_application;
} wmi_extwow_enable_cmd_fixed_param;

#define SWOL_INDOOR_MAC_ADDRESS_INDEX_MAX 8
#define SWOL_INDOOR_KEY_LEN 16

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals wmi_extwow_set_app_type1_params_cmd_fixed_param  */
    A_UINT32 vdev_id;
    wmi_mac_addr  wakee_mac;
    A_UINT8  ident[8];
    A_UINT8  passwd[16];
    A_UINT32 ident_len;
    A_UINT32 passwd_len;

    /* indoor check parameters */
    /* key for mac addresses specified in swol_indoor_key_mac
     * Big-endian hosts need to byte-swap the bytes within each 4-byte
     * segment of this array, so the bytes will return to their original
     * order when the entire WMI message contents are byte-swapped to
     * convert from big-endian to little-endian format.
     */
    A_UINT8 swol_indoor_key[SWOL_INDOOR_MAC_ADDRESS_INDEX_MAX][SWOL_INDOOR_KEY_LEN];
    /* key length for specified mac address index
     * Big-endian hosts need to byte-swap the bytes within each 4-byte
     * segment of this array, so the bytes will return to their original
     * order when the entire WMI message contents are byte-swapped to
     * convert from big-endian to little-endian format.
     */
    A_UINT8 swol_indoor_key_len[SWOL_INDOOR_MAC_ADDRESS_INDEX_MAX];
    /* mac address array allowed to wakeup host*/
    wmi_mac_addr swol_indoor_key_mac[SWOL_INDOOR_MAC_ADDRESS_INDEX_MAX];
    /* app mask for the mac addresses specified in swol_indoor_key_mac */
    A_UINT32 swol_indoor_app_mask[SWOL_INDOOR_MAC_ADDRESS_INDEX_MAX];
    A_UINT32 swol_indoor_waker_check; /* whether to do indoor waker check */
    A_UINT32 swol_indoor_pw_check;    /* whether to check password */
    A_UINT32 swol_indoor_pattern;     /* wakeup pattern */
    A_UINT32 swol_indoor_exception;   /* wakeup when exception happens */
    A_UINT32 swol_indoor_exception_app;
    A_UINT32 swol_assist_enable;      /* whether to enable IoT mode */
} wmi_extwow_set_app_type1_params_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals wmi_extwow_set_app_type2_params_cmd_fixed_param  */
    A_UINT32 vdev_id;

    A_UINT8  rc4_key[16];
    A_UINT32 rc4_key_len;

    /** ip header parameter */
    A_UINT32 ip_id;         /* NC id */
    A_UINT32 ip_device_ip;  /* NC IP address */
    A_UINT32 ip_server_ip;  /* Push server IP address */

    /** tcp header parameter */
    A_UINT16 tcp_src_port;  /* NC TCP port */
    A_UINT16 tcp_dst_port;  /* Push server TCP port */
    A_UINT32 tcp_seq;
    A_UINT32 tcp_ack_seq;

    A_UINT32 keepalive_init;  /* Initial ping interval */
    A_UINT32 keepalive_min;   /* Minimum ping interval */
    A_UINT32 keepalive_max;   /* Maximum ping interval */
    A_UINT32 keepalive_inc;   /* Increment of ping interval */

    wmi_mac_addr gateway_mac;
    A_UINT32 tcp_tx_timeout_val;
    A_UINT32 tcp_rx_timeout_val;

    /** add extra parameter for backward-compatible */
    /*
     * For all byte arrays, natural order is used.  E.g.
     * rc4_write_sandbox[0] holds the 1st RC4 S-box byte,
     * rc4_write_sandbox[1] holds the 2nd RC4 S-box byte, etc.
     */

    /* used to encrypt transmit packet such as keep-alive */
    A_UINT8  rc4_write_sandbox[256];
    A_UINT32 rc4_write_x;
    A_UINT32 rc4_write_y;

    /* used to decrypt received packet such as wow data */
    A_UINT8  rc4_read_sandbox[256];
    A_UINT32 rc4_read_x;
    A_UINT32 rc4_read_y;

    /* used to calculate HMAC hash for transmit packet such as keep-alive */
    A_UINT8  ssl_write_seq[8];
    A_UINT8  ssl_sha1_write_key[64];
    A_UINT32 ssl_sha1_write_key_len;

    /* used to calculate HAMC hash for receive packet such as wow data */
    A_UINT8  ssl_read_seq[8];
    A_UINT8  ssl_sha1_read_key[64];
    A_UINT32 ssl_sha1_read_key_len;

    /* optional element for specifying TCP options data to include in
     * transmit packets such as keep-alive
     */
    A_UINT32 tcp_options_len;
    A_UINT8  tcp_options[40];

    A_UINT32 async_id; /* keep-alive request id */
} wmi_extwow_set_app_type2_params_cmd_fixed_param;


#define WMI_RXERR_CRC               0x01    /* CRC error on frame */
#define WMI_RXERR_DECRYPT           0x08    /* non-Michael decrypt error */
#define WMI_RXERR_MIC               0x10    /* Michael MIC decrypt error */
#define WMI_RXERR_KEY_CACHE_MISS    0x20    /* No/incorrect key matter in h/w */
#define WMI_RX_OFFLOAD_MON_MODE     0x40    /* Offload dropped mgmt pkt's for only in capture mode*/
#define WMI_RXERR_PN                0x80    /* Invalid PN number on frame */

typedef enum {
    PKT_PWR_SAVE_PAID_MATCH =           0x00000001,
    PKT_PWR_SAVE_GID_MATCH =            0x00000002,
    PKT_PWR_SAVE_EARLY_TIM_CLEAR =      0x00000004,
    PKT_PWR_SAVE_EARLY_DTIM_CLEAR =     0x00000008,
    PKT_PWR_SAVE_EOF_PAD_DELIM =        0x00000010,
    PKT_PWR_SAVE_MACADDR_MISMATCH =     0x00000020,
    PKT_PWR_SAVE_DELIM_CRC_FAIL =       0x00000040,
    PKT_PWR_SAVE_GID_NSTS_ZERO =        0x00000080,
    PKT_PWR_SAVE_RSSI_CHECK =           0x00000100,
    PKT_PWR_SAVE_5G_EBT =               0x00000200,
    PKT_PWR_SAVE_2G_EBT =               0x00000400,
    PKT_PWR_SAVE_BSS_COLOR_MISMATCH =   0x00000800,
    PKT_PWR_SAVE_UL_FLAG =              0x00001000,
    PKT_PWR_SAVE_STA_ID_MISMATCH =      0x00002000,
    PKT_PWR_SAVE_MACADDR_MISMATCH_FCS = 0x00004000,

    PKT_PWR_SAVE_ENABLE =               0x80000000,
} WMI_PKT_PWR_SAVE_TYPE;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ftm_intg_cmd_fixed_param */
    A_UINT32 num_data; /** length in byte of data[]. */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
/* This structure is used to send Factory Test Mode [FTM] command
 * from host to firmware for integrated chips which are binary blobs.
 * Following this structure is the TLV:
 *     A_UINT8 data[]; <-- length in byte given by field num_data.
 */
} wmi_ftm_intg_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ftm_intg_event_fixed_param */
    A_UINT32 num_data; /** length in byte of data[]. */
/* This structure is used to receive Factory Test Mode [FTM] event
 * from firmware to host for integrated chips which are binary blobs.
 * Following this structure is the TLV:
 *     A_UINT8 data[]; <-- length in byte given by field num_data.
 */
} wmi_ftm_intg_event_fixed_param;

#define WMI_MAX_NS_OFFLOADS           2
#define WMI_MAX_ARP_OFFLOADS          2

#define WMI_ARPOFF_FLAGS_VALID              (1 << 0)    /* the tuple entry is valid */
#define WMI_ARPOFF_FLAGS_MAC_VALID          (1 << 1)    /* the target mac address is valid */
#define WMI_ARPOFF_FLAGS_REMOTE_IP_VALID    (1 << 2)    /* remote IP field is valid */

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_ARP_OFFLOAD_TUPLE */
    A_UINT32 flags; /* flags */
    A_UINT8 target_ipaddr[4]; /* IPV4 addresses of the local node*/
    A_UINT8 remote_ipaddr[4]; /* source address of the remote node requesting the ARP (qualifier) */
    wmi_mac_addr target_mac; /* mac address for this tuple, if not valid, the local MAC is used */
} WMI_ARP_OFFLOAD_TUPLE;

#define WMI_NSOFF_FLAGS_VALID           (1 << 0)    /* the tuple entry is valid */
#define WMI_NSOFF_FLAGS_MAC_VALID       (1 << 1)    /* the target mac address is valid */
#define WMI_NSOFF_FLAGS_REMOTE_IP_VALID (1 << 2)    /* remote IP field is valid */
#define WMI_NSOFF_FLAGS_IS_IPV6_ANYCAST (1 << 3)    /* whether the configured IPv6 address is anycast */

#define WMI_NSOFF_MAX_TARGET_IPS    2

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_NS_OFFLOAD_TUPLE */
    A_UINT32 flags; /* flags */
    /* NOTE: This size of array target_ipaddr[] cannot be changed without breaking WMI compatibility. */
    WMI_IPV6_ADDR target_ipaddr[WMI_NSOFF_MAX_TARGET_IPS]; /* IPV6 target addresses of the local node  */
    WMI_IPV6_ADDR solicitation_ipaddr; /* multi-cast source IP addresses for receiving solicitations */
    WMI_IPV6_ADDR remote_ipaddr; /* address of remote node requesting the solicitation (qualifier) */
    wmi_mac_addr target_mac; /* mac address for this tuple, if not valid, the local MAC is used */
} WMI_NS_OFFLOAD_TUPLE;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param */
    A_UINT32 flags;
    A_UINT32 vdev_id;
    A_UINT32 num_ns_ext_tuples;
/* Following this structure are the TLVs:
 *     WMI_NS_OFFLOAD_TUPLE  ns_tuples[WMI_MAX_NS_OFFLOADS];
 *     WMI_ARP_OFFLOAD_TUPLE arp_tuples[WMI_MAX_ARP_OFFLOADS];
 *     WMI_NS_OFFLOAD_TUPLE  ns_ext_tuples[]; <-- size based on num_ns_ext_tuples
 */
} WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param;


typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
    A_UINT32 timeout;
    A_UINT32 length;
    /*Following this would be the pattern
       A_UINT8 pattern[] of length specified by length
       field in the structure.*/
} WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param;


typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 pattern_id;
} WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_tid_addba_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** Initiator (1) or Responder (0) for this aggregation */
    A_UINT32 initiator;
    /** size of the negotiated window */
    A_UINT32 window_size;
    /** starting sequence number (only valid for initiator) */
    A_UINT32 ssn;
    /** timeout field represents the time to wait for Block Ack in
     *   initiator case and the time to wait for BAR in responder
     *   case. 0 represents no timeout. */
    A_UINT32 timeout;
    /* BA policy: immediate ACK (0) or delayed ACK (1) */
    A_UINT32 policy;
} wmi_peer_tid_addba_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_tid_delba_cmd */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** Initiator (1) or Responder (0) for this aggregation */
    A_UINT32 initiator;
} wmi_peer_tid_delba_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_addba_complete_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** Event status */
    A_UINT32 status;
} wmi_tx_addba_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tx_delba_complete_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** Tid number */
    A_UINT32 tid;
    /** Event status */
    A_UINT32 status;
} wmi_tx_delba_complete_event_fixed_param;



/*
 * Structure to request sequence numbers for a given
 * peer station on different TIDs. The TIDs are
 * indicated in the tidBitMap, tid 0 would
 * be represented by LSB bit 0. tid 1 would be
 * represented by LSB bit 1 etc.
 * The target will retrieve the current sequence
 * numbers for the peer on all the TIDs requested
 * and send back a response in a WMI event.
 */
typedef struct
{
    A_UINT32    tlv_header;  /* TLV tag and len; tag equals
                                WMITLV_TAG_STRUC_wmi_ba_req_ssn_cmd_sub_struct_param */
    wmi_mac_addr peer_macaddr;
    A_UINT32 tidBitmap;
} wmi_ba_req_ssn;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals
     WMITLV_TAG_STRUC_wmi_ba_req_ssn_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** Number of requested SSN In the TLV wmi_ba_req_ssn[] */
    A_UINT32 num_ba_req_ssn;
/* Following this struct are the TLV's:
 *     wmi_ba_req_ssn ba_req_ssn_list; All peer and tidBitMap for which the ssn is requested
 */
} wmi_ba_req_ssn_cmd_fixed_param;

/*
 * Max transmit categories
 *
 * Note: In future if we need to increase WMI_MAX_TC definition
 * It would break the compatibility for WMI_BA_RSP_SSN_EVENTID.
 */
#define WMI_MAX_TC  8

/*
 * Structure to send response sequence numbers
 * for a give peer and tidmap.
 */
typedef struct
{
    A_UINT32    tlv_header;  /* TLV tag and len; tag equals
                                WMITLV_TAG_STRUC_wmi_ba_req_ssn_event_sub_struct_param */
    wmi_mac_addr peer_macaddr;
    /* A boolean to indicate if ssn is present */
    A_UINT32 ssn_present_for_tid[WMI_MAX_TC];
    /* The ssn from target, valid only if
     * ssn_present_for_tid[tidn] equals 1
     */
    A_UINT32 ssn_for_tid[WMI_MAX_TC];
} wmi_ba_event_ssn;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals
     WMITLV_TAG_STRUC_wmi_ba_rsp_ssn_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** Event status, success or failure of the overall operation */
    A_UINT32 status;
    /** Number of requested SSN In the TLV wmi_ba_req_ssn[] */
    A_UINT32 num_ba_event_ssn;
/* Following this struct are the TLV's:
 *     wmi_ba_event_ssn ba_event_ssn_list; All peer and tidBitMap for which the ssn is requested
 */
} wmi_ba_rsp_ssn_event_fixed_param;


enum wmi_aggr_state_req_type {

    WMI_DISABLE_AGGREGATION,
    WMI_ENABLE_AGGREGATION
};

/*
 * This event is generated by the COEX module
 * when esco call is begins the coex module in fw generated this event to host to
 * disable the RX aggregation and after completion of the esco call fw will indicate to
 * enable back the Rx aggregation .
*/

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_aggr_state_trig_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
   /** req_type  contains values from enum
     *  wmi_aggr_state_req_type; 0 (disable) 1(enable) */
    A_UINT32  req_type;
} wmi_aggr_state_trig_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_install_key_complete_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** MAC address used for installing   */
    wmi_mac_addr peer_macaddr;
    /** key index */
    A_UINT32 key_ix;
    /** key flags */
    A_UINT32 key_flags;
    /** Event status */
    A_UINT32 status;
} wmi_vdev_install_key_complete_event_fixed_param;

typedef enum {
    /* CSA_SA_QUERY_TIMEOUT:
     * Disconnect due to SA query timeout after moving to new channel
     * due to CSA in OCV enabled case.
     */
    WLAN_DISCONNECT_REASON_CSA_SA_QUERY_TIMEOUT = 1,
    /* MOVE_TO_CELLULAR:
     * Disconnect from WiFi to move to cellular
     */
    WLAN_DISCONNECT_REASON_MOVE_TO_CELLULAR,
} WMI_VDEV_DISCONNECT_REASON_ID;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_disconnect_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* Disconnect reason from WMI_VDEV_DISCONNECT_REASON_ID */
    A_UINT32 reason;
} wmi_vdev_disconnect_event_fixed_param;

typedef enum _WMI_NLO_AUTH_ALGORITHM {
    WMI_NLO_AUTH_ALGO_80211_OPEN = 1,
    WMI_NLO_AUTH_ALGO_80211_SHARED_KEY = 2,
    WMI_NLO_AUTH_ALGO_WPA = 3,
    WMI_NLO_AUTH_ALGO_WPA_PSK = 4,
    WMI_NLO_AUTH_ALGO_WPA_NONE = 5,
    WMI_NLO_AUTH_ALGO_RSNA = 6,
    WMI_NLO_AUTH_ALGO_RSNA_PSK = 7,
} WMI_NLO_AUTH_ALGORITHM;

typedef enum _WMI_NLO_CIPHER_ALGORITHM {
    WMI_NLO_CIPHER_ALGO_NONE = 0x00,
    WMI_NLO_CIPHER_ALGO_WEP40 = 0x01,
    WMI_NLO_CIPHER_ALGO_TKIP = 0x02,
    WMI_NLO_CIPHER_ALGO_CCMP = 0x04,
    WMI_NLO_CIPHER_ALGO_WEP104 = 0x05,
    WMI_NLO_CIPHER_ALGO_BIP = 0x06,
    WMI_NLO_CIPHER_ALGO_WPA_USE_GROUP = 0x100,
    WMI_NLO_CIPHER_ALGO_RSN_USE_GROUP = 0x100,
    WMI_NLO_CIPHER_ALGO_WEP = 0x101,
} WMI_NLO_CIPHER_ALGORITHM;

/* SSID broadcast  type passed in NLO params */
typedef enum _WMI_NLO_SSID_BcastNwType
{
  WMI_NLO_BCAST_UNKNOWN      = 0,
  WMI_NLO_BCAST_NORMAL       = 1,
  WMI_NLO_BCAST_HIDDEN       = 2,
} WMI_NLO_SSID_BcastNwType;

#define WMI_NLO_MAX_SSIDS    16
#define WMI_NLO_MAX_CHAN     48

#define WMI_NLO_CONFIG_STOP                             (0x1 << 0)
#define WMI_NLO_CONFIG_START                            (0x1 << 1)
#define WMI_NLO_CONFIG_RESET                            (0x1 << 2)
#define WMI_NLO_CONFIG_SLOW_SCAN                        (0x1 << 4)
#define WMI_NLO_CONFIG_FAST_SCAN                        (0x1 << 5)
#define WMI_NLO_CONFIG_SSID_HIDE_EN                     (0x1 << 6)

/* This bit is used to indicate if EPNO Profile is enabled */
#define WMI_NLO_CONFIG_ENLO                             (0x1 << 7)
#define WMI_NLO_CONFIG_SCAN_PASSIVE                     (0x1 << 8)
#define WMI_NLO_CONFIG_ENLO_RESET                       (0x1 << 9)
#define WMI_NLO_CONFIG_SPOOFED_MAC_IN_PROBE_REQ         (0x1 << 10)
#define WMI_NLO_CONFIG_RANDOM_SEQ_NO_IN_PROBE_REQ       (0x1 << 11)
#define WMI_NLO_CONFIG_ENABLE_IE_WHITELIST_IN_PROBE_REQ (0x1 << 12)
#define WMI_NLO_CONFIG_ENABLE_CNLO_RSSI_CONFIG          (0x1 << 13)

/* Whether directed scan needs to be performed (for hidden SSIDs) */
#define WMI_ENLO_FLAG_DIRECTED_SCAN      1
/* Whether PNO event shall be triggered if the network is found on A band */
#define WMI_ENLO_FLAG_A_BAND             2
/* Whether PNO event shall be triggered if the network is found on G band */
#define WMI_ENLO_FLAG_G_BAND             4
/* Whether strict matching is required (i.e. firmware shall not match on the entire SSID) */
#define WMI_ENLO_FLAG_STRICT_MATCH       8

/* Code for matching the beacon AUTH IE - additional codes TBD */
/* open */
#define WMI_ENLO_AUTH_CODE_OPEN  1
/* WPA_PSK or WPA2PSK */
#define WMI_ENLO_AUTH_CODE_PSK   2
/* any EAPOL */
#define WMI_ENLO_AUTH_CODE_EAPOL 4

/* NOTE: wmi_nlo_ssid_param structure can't be changed without breaking the compatibility */
typedef struct wmi_nlo_ssid_param
{
    A_UINT32 valid;
    wmi_ssid ssid;
} wmi_nlo_ssid_param;

/* NOTE: wmi_nlo_enc_param structure can't be changed without breaking the compatibility */
typedef struct wmi_nlo_enc_param
{
    A_UINT32 valid;
    A_UINT32 enc_type;
} wmi_nlo_enc_param;

/* NOTE: wmi_nlo_auth_param structure can't be changed without breaking the compatibility */
typedef struct wmi_nlo_auth_param
{
    A_UINT32 valid;
    A_UINT32 auth_type;
} wmi_nlo_auth_param;

/* NOTE: wmi_nlo_bcast_nw_param structure can't be changed without breaking the compatibility */
typedef struct wmi_nlo_bcast_nw_param
{
    A_UINT32 valid;
/* If WMI_NLO_CONFIG_EPNO is not set. Supplicant PNO is enabled. The value should be true/false
Otherwise EPNO is enabled. bcast_nw_type would be used as a bit flag contains WMI_ENLO_FLAG_XXX */
    A_UINT32 bcast_nw_type;
} wmi_nlo_bcast_nw_param;

/* NOTE: wmi_nlo_rssi_param structure can't be changed without breaking the compatibility */
typedef struct wmi_nlo_rssi_param
{
    A_UINT32 valid;
    A_INT32 rssi;
} wmi_nlo_rssi_param;

typedef struct nlo_configured_parameters {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_nlo_configured_parameters */
    wmi_nlo_ssid_param ssid;
    wmi_nlo_enc_param enc_type;
    wmi_nlo_auth_param auth_type;
    wmi_nlo_rssi_param rssi_cond;
    wmi_nlo_bcast_nw_param bcast_nw_type; /* indicates if the SSID is hidden or not */
} nlo_configured_parameters;


/* Support channel prediction for PNO scan after scanning top_k_num channels
 * if stationary_threshold is met.
 */
typedef struct nlo_channel_prediction_cfg {
    A_UINT32 tlv_header;
    /* Enable or disable this feature. */
    A_UINT32 enable;
    /* Top K channels will be scanned before deciding whether to further scan
     * or stop. Minimum value is 3 and maximum is 5. */
    A_UINT32 top_k_num;
    /* Preconfigured stationary threshold.
     * Lesser value means more conservative. Bigger value means more aggressive.
     * Maximum is 100 and minimum is 0. */
    A_UINT32 stationary_threshold;
    /* Periodic full channel scan in milliseconds unit.
     * After full_scan_period_ms since last full scan, channel prediction
     * scan is suppressed and will do full scan.
     * This is to help detecting sudden AP power-on or -off. Value 0 means no
     * full scan at all (not recommended).
     */
    A_UINT32 full_scan_period_ms;
} nlo_channel_prediction_cfg;

typedef struct enlo_candidate_score_params_t {
    A_UINT32 tlv_header;   /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_enlo_candidate_score_param */
    A_INT32 min5GHz_rssi;  /* minimum 5GHz RSSI for a BSSID to be considered (units = dBm) */
    A_INT32 min24GHz_rssi; /* minimum 2.4GHz RSSI for a BSSID to be considered (units = dBm) */
    A_UINT32 initial_score_max; /* the maximum score that a network can have before bonuses */
    /* current_connection_bonus:
     * only report when there is a network's score this much higher
     * than the current connection
     */
    A_UINT32 current_connection_bonus;
    A_UINT32 same_network_bonus; /* score bonus for all networks with the same network flag */
    A_UINT32 secure_bonus; /* score bonus for networks that are not open */
    A_UINT32 band5GHz_bonus; /* 5GHz RSSI score bonus (applied to all 5GHz networks) */
} enlo_candidate_score_params;

typedef struct connected_nlo_bss_band_rssi_pref_t {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_connected_nlo_bss_band_rssi_pref */
    /** band which needs to get preference over other band - see wmi_set_vdev_ie_band enum */
    A_UINT32 band;
    /* Amount of RSSI preference (in dB) that can be given to band (mentioned above) over other band */
    A_INT32  rssi_pref;
} connected_nlo_bss_band_rssi_pref;

typedef struct connected_nlo_rssi_params_t {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_connected_nlo_rssi_params */
    /* Relative RSSI threshold (in dB) by which new BSS should have better RSSI than
     * the current connected BSS.
     */
    A_INT32  relative_rssi;
    /* The amount of RSSI preference (in dB) that can be given to a 5G BSS over 2.4G BSS. */
    A_INT32  relative_rssi_5g_pref;
} connected_nlo_rssi_params;

typedef struct wmi_nlo_config {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nlo_config_cmd_fixed_param */
    A_UINT32 flags;
    A_UINT32 vdev_id;
    A_UINT32 fast_scan_max_cycles;
    A_UINT32 active_dwell_time;
    A_UINT32 passive_dwell_time; /* PDT in msecs */
    A_UINT32 probe_bundle_size;
    A_UINT32 rest_time; /* ART = IRT */
    A_UINT32 max_rest_time; /* Max value that can be reached after SBM */
    A_UINT32 scan_backoff_multiplier; /* SBM */
    A_UINT32 fast_scan_period; /* SCBM */
    A_UINT32 slow_scan_period; /* specific to windows */
    A_UINT32 no_of_ssids;
    A_UINT32 num_of_channels;
    A_UINT32 delay_start_time; /* NLO scan start delay time in milliseconds */
    /** MAC Address to use in Probe Req as SA **/
    wmi_mac_addr mac_addr;
    /** Mask on which MAC has to be randomized **/
    wmi_mac_addr mac_mask;
    /** IE bitmap to use in Probe Req **/
    A_UINT32 ie_bitmap[WMI_IE_BITMAP_SIZE];
    /** Number of vendor OUIs. In the TLV vendor_oui[] **/
    A_UINT32 num_vendor_oui;
    /** Number of connected NLO band preferences **/
    A_UINT32 num_cnlo_band_pref;
    /** dwell time in msec on active 2GHz channels */
    A_UINT32 active_dwell_time_2ghz;
    /** dwell time in msec when 6 GHz channel (PSC or non-PSC) is marked as an active channel */
    A_UINT32 active_dwell_time_6ghz;
    /** dwell time in msec when 6 GHz channel (PSC or non-PSC) is marked as a passive channel */
    A_UINT32 passive_dwell_time_6ghz;
/* The TLVs will follow.
 * nlo_configured_parameters nlo_list[];
 * A_UINT32 channel_list[num_of_channels]; // in MHz
 *     channel_list:
 *     If FW supports WMI_SERVICE_PNO_SCAN_CONFIG_PER_CHANNEL,
 *         then channel_list may fill the upper 12 bits with channel flags,
 *         while using only the lower 20 bits for channel frequency.
 *         Check WMI_SCAN_CHANNEL_FLAG macros for the channel flags
 *     If FW doesn't support WMI_SERVICE_PNO_SCAN_CONFIG_PER_CHANNEL,
 *         then channel_list only holds the frequency value
 * nlo_channel_prediction_cfg ch_prediction_cfg;
 * enlo_candidate_score_params candidate_score_params;
 * wmi_vendor_oui vendor_oui[num_vendor_oui];
 * connected_nlo_rssi_params cnlo_rssi_params;
 * connected_nlo_bss_band_rssi_pref cnlo_bss_band_rssi_pref[num_cnlo_band_pref];
 * A_UINT32 preferred_chan_list[]; // in MHz
 */
} wmi_nlo_config_cmd_fixed_param;

typedef struct wmi_nlo_event
{
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nlo_event */
    A_UINT32 vdev_id;
} wmi_nlo_event;


/* WMI_PASSPOINT_CONFIG_SET
 * Sets a list for passpoint networks for PNO purposes;
 * it should be matched against any passpoint networks found
 * during regular PNO scan.
 */
#define WMI_PASSPOINT_CONFIG_SET       (0x1 << 0)
/* WMI_PASSPOINT_CONFIG_RESET
 * Reset passpoint network list -
 * no Passpoint networks should be matched after this.
 */
#define WMI_PASSPOINT_CONFIG_RESET     (0x1 << 1)

#define PASSPOINT_REALM_LEN                  256
#define PASSPOINT_ROAMING_CONSORTIUM_ID_LEN  5
#define PASSPOINT_ROAMING_CONSORTIUM_ID_NUM  16
#define PASSPOINT_PLMN_ID_LEN                3
#define PASSPOINT_PLMN_ID_ALLOC_LEN /* round up to A_UINT32 boundary */ \
    (((PASSPOINT_PLMN_ID_LEN + 3) >> 2) << 2)

/*
 * Confirm PASSPOINT_REALM_LEN is a multiple of 4, so the
 *     A_UINT8 realm[PASSPOINT_REALM_LEN]
 * array will end on a 4-byte boundary.
 * (This 4-byte alignment simplifies endianness-correction byte swapping.)
 */
A_COMPILE_TIME_ASSERT(
    check_passpoint_realm_size,
    (PASSPOINT_REALM_LEN % sizeof(A_UINT32)) == 0);

/*
 * Confirm the product of PASSPOINT_ROAMING_CONSORTIUM_ID_NUM and
 * PASSPOINT_ROAMING_CONSORTIUM_ID_LEN is a multiple of 4, so the
 * roaming_consortium_ids array below will end on a 4-byte boundary.
 * (This 4-byte alignment simplifies endianness-correction byte swapping.)
 */
A_COMPILE_TIME_ASSERT(
    check_passpoint_roaming_consortium_ids_size,
    ((PASSPOINT_ROAMING_CONSORTIUM_ID_NUM*PASSPOINT_ROAMING_CONSORTIUM_ID_LEN) % sizeof(A_UINT32)) == 0);

/* wildcard ID to allow an action (reset) to apply to all networks */
#define WMI_PASSPOINT_NETWORK_ID_WILDCARD 0xFFFFFFFF
typedef struct wmi_passpoint_config {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals wmi_passpoint_config_cmd_fixed_param */
    /* (network) id
     * identifier of the matched network, report this in event
     * This id can be a wildcard (WMI_PASSPOINT_NETWORK_ID_WILDCARD)
     * that indicates the action should be applied to all networks.
     * Currently, the only action that is applied to all networks is "reset".
     * If a non-wildcard ID is specified, that particular network is configured.
     * If a wildcard ID is specified, all networks are reset.
     */
    A_UINT32 id;
    A_UINT32 req_id;
    A_UINT8  realm[PASSPOINT_REALM_LEN]; /*null terminated UTF8 encoded realm, 0 if unspecified*/
    A_UINT8  roaming_consortium_ids[PASSPOINT_ROAMING_CONSORTIUM_ID_NUM][PASSPOINT_ROAMING_CONSORTIUM_ID_LEN]; /*roaming consortium ids to match, 0s if unspecified*/
                                                                                                              /*This would be bytes-stream as same as defition of realm id in 802.11 standard*/
    A_UINT8  plmn[PASSPOINT_PLMN_ID_ALLOC_LEN]; /*PLMN id mcc/mnc combination as per rules, 0s if unspecified */
} wmi_passpoint_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals wmi_passpoint_event_hdr */
    A_UINT32 id;            /* identifier of the matched network */
    A_UINT32 vdev_id;
    A_UINT32 timestamp;     /* time since boot (in microsecond) when the result was retrieved*/
    wmi_ssid ssid;
    wmi_mac_addr    bssid;  /* bssid of the network */
    A_UINT32 channel_mhz;   /* channel frequency in MHz */
    A_UINT32 rssi;          /* RSSI value */
    A_UINT32 rtt;           /* timestamp in nanoseconds*/
    A_UINT32 rtt_sd;        /* standard deviation in rtt */
    A_UINT32 beacon_period; /* beacon advertised in the beacon */
    A_UINT32 capability;    /* capabilities advertised in the beacon */
    A_UINT32 ie_length;     /* size of the ie_data blob */
    A_UINT32 anqp_length;   /* length of ANQP blob */
/* Following this structure is the byte stream of ie data of length ie_buf_len:
 *  A_UINT8 ie_data[]; <-- length in byte given by field ie_length, blob of ie data in beacon
 *  A_UINT8 anqp_ie[]; <-- length in byte given by field anqp_len, blob of anqp data of IE
 *  Implicitly, combing ie_data and anqp_ie into a single bufp, and the bytes stream of each ie should be same as BEACON/Action-frm  by 802.11 spec.
 */
} wmi_passpoint_event_hdr;


#define GTK_OFFLOAD_OPCODE_MASK             0xFF000000
/** Enable GTK offload, and provided parameters KEK,KCK and replay counter values */
#define GTK_OFFLOAD_ENABLE_OPCODE           0x01000000
/** Disable GTK offload */
#define GTK_OFFLOAD_DISABLE_OPCODE          0x02000000
/** Read GTK offload parameters, generates WMI_GTK_OFFLOAD_STATUS_EVENT */
#define GTK_OFFLOAD_REQUEST_STATUS_OPCODE   0x04000000
enum wmi_chatter_mode {
    /* Chatter enter/exit happens
     * automatically based on preset
     * params
     */
    WMI_CHATTER_MODE_AUTO,
    /* Chatter enter is triggered
     * manually by the user
     */
    WMI_CHATTER_MODE_MANUAL_ENTER,
    /* Chatter exit is triggered
     * manually by the user
     */
    WMI_CHATTER_MODE_MANUAL_EXIT,
    /* Placeholder max value, always last*/
    WMI_CHATTER_MODE_MAX
};

enum wmi_chatter_query_type {
    /*query coalescing filter match counter*/
    WMI_CHATTER_QUERY_FILTER_MATCH_CNT,
    WMI_CHATTER_QUERY_MAX
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chatter_set_mode_cmd_fixed_param  */
    A_UINT32 chatter_mode;
} wmi_chatter_set_mode_cmd_fixed_param;

/** maximum number of filter supported*/
#define CHATTER_MAX_COALESCING_RULES     11
/** maximum number of field tests per filter*/
#define CHATTER_MAX_FIELD_TEST           5
/** maximum field length in number of DWORDS*/
#define CHATTER_MAX_TEST_FIELD_LEN32     2

/** field test kinds*/
#define CHATTER_COALESCING_TEST_EQUAL            1
#define CHATTER_COALESCING_TEST_MASKED_EQUAL     2
#define CHATTER_COALESCING_TEST_NOT_EQUAL        3

/** packet type*/
#define CHATTER_COALESCING_PKT_TYPE_UNICAST      (1 << 0)
#define CHATTER_COALESCING_PKT_TYPE_MULTICAST    (1 << 1)
#define CHATTER_COALESCING_PKT_TYPE_BROADCAST    (1 << 2)

/** coalescing field test*/
typedef struct _chatter_pkt_coalescing_hdr_test {
    /** offset from start of mac header, for windows native wifi host driver
     * should assume standard 802.11 frame format without QoS info and address4
     * FW would account for any non-stand fields for final offset value.
     */
    A_UINT32 offset;
    A_UINT32 length; /* length of test field*/
    A_UINT32 test; /*equal, not equal or masked equal*/
    A_UINT32 mask[CHATTER_MAX_TEST_FIELD_LEN32]; /*mask byte stream*/
    A_UINT32 value[CHATTER_MAX_TEST_FIELD_LEN32]; /*value byte stream*/
} chatter_pkt_coalescing_hdr_test;

/** packet coalescing filter*/
typedef struct _chatter_pkt_coalescing_filter {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chatter_pkt_coalescing_filter */
    A_UINT32 filter_id; /* unique id assigned by OS */
    A_UINT32 max_coalescing_delay; /* max milliseconds 1st pkt can be held */
    A_UINT32 pkt_type; /* unicast/multicast/broadcast */
    A_UINT32 num_of_test_field; /* number of field test in table */
    chatter_pkt_coalescing_hdr_test test_fields[CHATTER_MAX_FIELD_TEST]; /* field test tbl */
} chatter_pkt_coalescing_filter;

/** packet coalescing filter add command*/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chatter_coalescing_add_filter_cmd_fixed_param */
    A_UINT32 num_of_filters;
/* Following this tlv, there comes an array of structure of type chatter_pkt_coalescing_filter
 chatter_pkt_coalescing_filter rx_filter[1];*/
} wmi_chatter_coalescing_add_filter_cmd_fixed_param;
/** packet coalescing filter delete command*/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chatter_coalescing_delete_filter_cmd_fixed_param */
    A_UINT32 filter_id; /*filter id which will be deleted*/
} wmi_chatter_coalescing_delete_filter_cmd_fixed_param;
/** packet coalescing query command*/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chatter_coalescing_query_cmd_fixed_param */
    A_UINT32 type; /*type of query*/
} wmi_chatter_coalescing_query_cmd_fixed_param;
/** chatter query reply event*/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chatter_query_reply_event_fixed_param  */
    A_UINT32 type; /*query type*/
    A_UINT32 filter_match_cnt; /*coalescing filter match counter*/
} wmi_chatter_query_reply_event_fixed_param;

/* NOTE: This constants GTK_OFFLOAD_KEK_BYTES, GTK_OFFLOAD_KCK_BYTES, and GTK_REPLAY_COUNTER_BYTES
 * cannot be changed without breaking WMI compatibility. */
#define GTK_OFFLOAD_KEK_BYTES       16
#define GTK_OFFLOAD_KCK_BYTES       16
/* NOTE: GTK_REPLAY_COUNTER_BYTES, WMI_MAX_KEY_LEN, IGTK_PN_SIZE cannot be changed in the future without breaking WMI compatibility */
#define GTK_REPLAY_COUNTER_BYTES    8
#define WMI_MAX_KEY_LEN             32
#define IGTK_PN_SIZE                6

typedef struct {
    /**
     * WMITLV_TAG_STRUC_wmi_roam_ml_key_material_param will exist when link is not created by fw.
     */

    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_ml_link_key_material_param */
    A_UINT32 link_id;    /* The key is for which link, when link_id is 0xf, means the key is used for all links, like PTK */
    /** key index */
    A_UINT32 key_ix;
    /** key cipher, defined as WMI_CIPHER_ */
    A_UINT32 key_cipher;
    A_UINT8  pn[WMI_MAX_PN_LEN];
    A_UINT8  key_buff[WMI_MAX_KEY_LEN];
} wmi_roam_ml_key_material_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_GTK_OFFLOAD_STATUS_EVENT_fixed_param */
    A_UINT32 vdev_id; /** unique id identifying the VDEV */
    A_UINT32 flags; /* status flags */
    A_UINT32 refresh_cnt; /* number of successful GTK refresh exchanges since last SET operation */
    /*
     * As with all WMI messages, this message uses little-endian byte
     * ordering within each A_UINT32 field.
     * If a big-endian host is using automatic swapping of the bytes within
     * each 4-byte A_UINT32 to automatically correct the endianness of the
     * A_UINT32 fields as the message is uploaded from target --> host, the
     * big-endian host will have to undo the automatic byte swapping for the
     * below A_UINT8 fields, to restore them to their original order.
     */
    A_UINT8 replay_counter[GTK_REPLAY_COUNTER_BYTES]; /* current replay counter */
    A_UINT8 igtk_keyIndex; /* Use if IGTK_OFFLOAD is defined */
    A_UINT8 igtk_keyLength; /* Use if IGTK_OFFLOAD is defined */
    A_UINT8 igtk_keyRSC[IGTK_PN_SIZE]; /* key replay sequence counter *//* Use if IGTK_OFFLOAD is defined */
    A_UINT8 igtk_key[WMI_MAX_KEY_LEN]; /* Use if IGTK_OFFLOAD is defined */
    A_UINT8 gtk_keyIndex; /* GTK key index */
    A_UINT8 gtk_keyLength; /* GTK key length */
    A_UINT8 gtk_keyRSC[GTK_REPLAY_COUNTER_BYTES]; /* GTK key replay sequence counter */
    A_UINT8 gtk_key[WMI_MAX_KEY_LEN]; /* GTK key data */
    A_UINT8 bigtk_keyIndex; /* Use if IGTK_OFFLOAD is defined */
    A_UINT8 bigtk_keyLength; /* Use if IGTK_OFFLOAD is defined */
    A_UINT8 bigtk_keyRSC[IGTK_PN_SIZE]; /* key replay sequence counter *//* Use if IGTK_OFFLOAD is defined */
    A_UINT8 bigtk_key[WMI_MAX_KEY_LEN]; /* Use if IGTK_OFFLOAD is defined */
} WMI_GTK_OFFLOAD_STATUS_EVENT_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_GTK_OFFLOAD_CMD_fixed_param */
    A_UINT32 vdev_id; /** unique id identifying the VDEV */
    A_UINT32 flags; /* control flags, GTK offload command use high byte  */
    /* The size of following 3 arrays cannot be changed without breaking WMI compatibility. */
    A_UINT8 KEK[GTK_OFFLOAD_KEK_BYTES]; /* key encryption key */
    A_UINT8 KCK[GTK_OFFLOAD_KCK_BYTES]; /* key confirmation key */
    A_UINT8 replay_counter[GTK_REPLAY_COUNTER_BYTES]; /* replay counter for re-key */

    /*
     * Following structure will be appended when fils:
     *     wmi_gtk_offload_fils_tlv_param wmi_fils_gtk_info;
     * Following structure will be appended to the above KEK[] when kek length
     * is larger than GTK_OFFLOAD_KEK_BYTES:
     *     A_UINT8 kek_ext[];
     * Following structure will be appended to the above KCK[] when kck length
     * is larger than GTK_OFFLOAD_KCK_BYTES:
     *     A_UINT8 kck_ext[];
     */
} WMI_GTK_OFFLOAD_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gtk_offload_extended_tlv_param */
    A_UINT32 vdev_id; /** unique id identifying the VDEV */
    A_UINT32 flags; /* control flags, GTK offload command use high byte  */
    A_UINT32 kek_len;
    A_UINT8  KEK[GTK_OFFLOAD_KEK_EXTENDED_BYTES]; /* key encryption key */
    A_UINT8  KCK[GTK_OFFLOAD_KCK_BYTES]; /* key confirmation key */
    A_UINT8  replay_counter[GTK_REPLAY_COUNTER_BYTES]; /* replay counter for re-key */
} wmi_gtk_offload_fils_tlv_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_PMF_OFFLOAD_SET_SA_QUERY_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 sa_query_retry_interval;  /* in msec */
    A_UINT32 sa_query_max_retry_count;
} WMI_PMF_OFFLOAD_SET_SA_QUERY_CMD_fixed_param;

typedef enum {
    WMI_STA_KEEPALIVE_METHOD_NULL_FRAME = 1, /* 802.11 NULL frame */
    WMI_STA_KEEPALIVE_METHOD_UNSOLICITED_ARP_RESPONSE = 2, /* ARP response */
    WMI_STA_KEEPALIVE_METHOD_ETHERNET_LOOPBACK = 3, /*ETHERNET LOOPBACK*/
    WMI_STA_KEEPALIVE_METHOD_GRATUITOUS_ARP_REQUEST = 4, /* gratuitous ARP req*/
    WMI_STA_KEEPALIVE_METHOD_MGMT_VENDOR_ACTION = 5, /* vendor action frame */
} WMI_STA_KEEPALIVE_METHOD;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_STA_KEEPALVE_ARP_RESPONSE */
    WMI_IPV4_ADDR sender_prot_addr; /* Sender protocol address */
    WMI_IPV4_ADDR target_prot_addr; /* Target protocol address */
    wmi_mac_addr dest_mac_addr; /* destination MAC address */
} WMI_STA_KEEPALVE_ARP_RESPONSE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_STA_KEEPALIVE_CMD_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 enable; /* 1 - Enable, 0 - disable */
    A_UINT32 method; /* keep alive method */
    A_UINT32 interval; /* time interval in seconds  */
/*
 * NOTE: following this structure is the TLV for ARP Response:
 *     WMI_STA_KEEPALVE_ARP_RESPONSE arp_resp; <-- ARP response
 */
} WMI_STA_KEEPALIVE_CMD_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 action;
} WMI_VDEV_WNM_SLEEPMODE_CMD_fixed_param;
typedef WMI_VDEV_WNM_SLEEPMODE_CMD_fixed_param WMI_STA_WNMSLEEP_CMD;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_keepalive_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 keepaliveInterval; /* seconds */
    A_UINT32 keepaliveMethod;
} wmi_vdev_set_keepalive_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_keepalive_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_vdev_get_keepalive_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_keepalive_event_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 keepaliveInterval; /* seconds */
    A_UINT32 keepaliveMethod; /* seconds */
} wmi_vdev_get_keepalive_event_fixed_param;

typedef enum {
    WMI_CLEAR_ARP_STATS_COLLECTED = 0x0,
    WMI_START_ARP_STATS_COLLECTION,
} WMI_ARP_STATS_ACTION;

typedef enum {
    WMI_ARP_STATS_RX_PKT_TYPE_ARP = 0x1,
} WMI_ARP_STATS_RX_PKT_TYPE;

typedef enum {
    WMI_BA_SESSION_ESTABLISHMENT_STATUS_SUCCESS = 0x0,
    WMI_BA_SESSION_ESTABLISHMENT_STATUS_FAILURE,
} WMI_ARP_STATS_BA_SESSION_ESTABLISH_STATUS;

typedef enum {
    WMI_CONNECTION_STATUS_FAILURE = 0x0,
    WMI_CONNECTION_STATUS_SUCCESS,
} WMI_ARP_STATS_CONNECTION_STATUS;

/* ARP stats set (configure) req */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_arp_stats_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 set_clr;  /* WMI_ARP_STATS_ACTION */
    A_UINT32 pkt_type; /* WMI_ARP_STATS_RX_PKT_TYPE */
    A_UINT32 ipv4;     /* target will maintain ARP stats (only) for frames containing this IP address */
} wmi_vdev_set_arp_stats_cmd_fixed_param;

/* ARP stats get req */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_arp_stats_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_vdev_get_arp_stats_cmd_fixed_param;

/* per vdev based ARP stats */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_arp_stats_event_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 arp_req_enqueue;
    A_UINT32 arp_req_tx_success;
    A_UINT32 arp_req_tx_failure; /* number of times a tx MPDU containing a unicast ARP request went unacked */
    A_UINT32 arp_rsp_recvd;
    A_UINT32 out_of_order_arp_rsp_drop_cnt;
    A_UINT32 dad_detected; /* duplicate address detection */
    A_UINT32 connect_status; /* WMI_ARP_STATS_CONNECTION_STATUS */
    A_UINT32 ba_session_establishment_status; /* WMI_ARP_STATS_BA_SESSION_ESTABLISH_STATUS */
} wmi_vdev_get_arp_stats_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /*  TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_connectivity_check_stats */
    A_UINT32 pkt_type_bitmap;  /* WMI_IP_CONNECTIVITY_STATS_RX_PKT_TYPE_BITMAP - only for DNS, TCP and ICMP */
    A_UINT32 tcp_src_port;  /* target will maintain TCP stats (only) for frames with this src port */
    A_UINT32 tcp_dst_port; /* target will maintain TCP stats (only) for frames with this dst port */
    A_UINT32 icmp_ipv4; /* target will maintain ICMPv4 stats (only) for frames containing this IP address */
} wmi_vdev_set_connectivity_check_stats;

/*  per vdev dns/icmp/tcp based stats*/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_connectivity_check_stats */
    A_UINT32 tcp_ack_recvd; /* number of tcp syn ack's received by FW */
    A_UINT32 icmpv4_rsp_recvd; /* number of icmpv4 responses received by FW */
} wmi_vdev_get_connectivity_check_stats;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
#define IPSEC_NATKEEPALIVE_FILTER_DISABLE 0
#define IPSEC_NATKEEPALIVE_FILTER_ENABLE 1
    A_UINT32 action;
} WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD_fixed_param;
typedef WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD_fixed_param WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 mcc_tbttmode;
    wmi_mac_addr mcc_bssid;
} wmi_vdev_mcc_set_tbtt_mode_cmd_fixed_param;

#define WMI_MAX_VENDOR_OUI_ACTION_SUPPORTED_PER_ACTION 10
#define WMI_MAX_VENDOR_OUI_DATA_LENGTH                 20

typedef enum
{
    WMI_VENDOR_OUI_ACTION_CONNECTION_1X1 = 0, /* Connect in 1X1 only */
    WMI_VENDOR_OUI_ACTION_ITO_EXTENSION = 1,  /* Extend the Immediate Time-Out (ITO) if data is not received from AP after beacon with TIM bit set */
    WMI_VENDOR_OUI_ACTION_CCKM_1X1 = 2,       /* TX (only) CCKM rates with 1 chain only */
    WMI_VENDOR_OUI_ACTION_ALT_ITO = 3, /* inactivity time-out */
    WMI_VENDOR_OUI_ACTION_SWITCH_TO_11N_MODE = 4, /* Switch from 11ac to 11n mode to avoid IOT issues with ONM frame */
    /* WMI_VENDOR_OUI_ACTION_CONNECTION_1X1_NUM_TX_RX_CHAINS_1
     * Connect in 1x1 only and Use only one chain for both Tx and Rx
     * to avoid IOT issues due to change in number of Tx and Rx chains
     */
    WMI_VENDOR_OUI_ACTION_CONNECTION_1X1_NUM_TX_RX_CHAINS_1 = 5,

    /* Disable burst and assist, and restrict A-MPDU size to 32 */
    WMI_VENDOR_OUI_ACTION_DISABLE_AGGRESSIVE_TX = 6,

    /* Disable FW triggered TWT if vendor OUI is received in beacon */
    WMI_VENDOR_OUI_ACTION_DISABLE_FW_TRIGGERED_TWT = 7,

    /* Extend ITO under WOW mode if vendor OUI is received in beacon */
    WMI_VENDOR_OUI_ACTION_EXTEND_WOW_ITO = 8,

    /*
     * Turn on station 80211BE feature if AP's vendor OUI is in the list
     * for specific customer
     */
    WMI_VENDOR_OUI_ACTION_ALLOW_11BE = 9,

    /*
     * Turn off FW's dynamic qos null tx rate if specific vendor OUI
     * received in beacon.
     */
    WMI_VENDOR_OUI_ACTION_DISABLE_DYNAMIC_QOS_NULL_TX_RATE = 10,

    /* Add any action before this line */
    WMI_VENDOR_OUI_ACTION_MAX_ACTION_ID
} wmi_vendor_oui_action_id;

typedef struct {
    A_UINT32 tlv_header;
    /** vendor OUI actions */
    A_UINT32 action_id;  /* enum wmi_vendor_oui_action_id */
    A_UINT32 total_num_vendor_oui; /* total number of OUI present in ini for all actions.
                                   ** For first command, this value will be used for allocating memory in FW accordingly */
    A_UINT32 num_vendor_oui_ext; /* the number of wmi_vendor_oui_ext for action_id */
    /* followed by TLVs, an array of structure of type wmi_vendor_oui_ext
    ** wmi_vendor_oui_ext vendor_oui_ext[num_vendor_oui_ext];
    */
    /* followed by A_UINT8 data[] of concatenated data for each vendor_oui_ext[] element
    ** first byte contains the index i of structure vendor_oui_ext[]
    ** for which data is coming and length of the data is extracted as
    ** wmi_vendor_oui_ext[i].buf_data_length. No padding between data of
    ** N th OUI and (N+1) th OUI.
    ** For example, if vendor_oui_ext[0].buf_data_length is 18, then
    ** data[0] will hold the index value 0, data[1] through data[17]
    ** will hold the OUI data for this first OUI, data[18] will hold
    ** the index value 1, and the OUI data for the second OUI will
    ** begin at data[19].
    */
} wmi_pdev_config_vendor_oui_action_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_ac_tx_queue_optimized_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** AC number */
    A_UINT32 ac; /* refer to wmi_traffic_ac */
    /**
     * Enable/disable tx queue optimizations (such as dropping stale tx frms)
     * for the specified AC.
     */
    A_UINT32 ac_tx_queue_optimize_enable;
} wmi_pdev_set_ac_tx_queue_optimized_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_rx_filter_promiscuous_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** Enable/disable rx filter promiscuous */
    A_UINT32 rx_filter_promiscuous_enable;
} wmi_pdev_set_rx_filter_promiscuous_cmd_fixed_param;

typedef enum {
    WMI_BEACON_INFO_PRESENCE_OUI_EXT            = 1 <<  0,
    WMI_BEACON_INFO_PRESENCE_MAC_ADDRESS        = 1 <<  1,
    WMI_BEACON_INFO_PRESENCE_AP_CAPABILITY_NSS  = 1 <<  2,
    WMI_BEACON_INFO_PRESENCE_AP_CAPABILITY_HT   = 1 <<  3,
    WMI_BEACON_INFO_PRESENCE_AP_CAPABILITY_VHT  = 1 <<  4,
    WMI_BEACON_INFO_PRESENCE_AP_CAPABILITY_BAND = 1 <<  5,
} wmi_beacon_info_presence_items;

typedef struct _wmi_vendor_oui_ext {
    A_UINT32 tlv_header;
    A_UINT32 buf_data_length;        /* length of data in bytes for this OUI including index byte */
    A_UINT32 info_presence_bit_mask; /* see enum wmi_beacon_info_presence_items */
    A_UINT32 oui_header_length;      /* either 3 or 5 bytes */
    A_UINT32 oui_data_length;        /* length of oui_data to compare in beacon which follows OUI header. Max length is capped to WMI_MAX_VENDOR_OUI_DATA_LENGTH bytes */
    A_UINT32 mac_address_length;     /* MAC address length in bytes
                                     ** (This value will always be 6,
                                     ** but is explicitly specified for sake
                                     ** of uniformity and completeness).
                                     */
    A_UINT32 capability_data_length; /* length of capability in bytes */
} wmi_vendor_oui_ext;

#define WMI_INFO_CAPABILITY_NSS_MASK                       0x0f
#define WMI_INFO_CAPABILITY_NSS_OFFSET                     0
#define WMI_INFO_CAPABILITY_HT_ENABLE_MASK                 0x10
#define WMI_INFO_CAPABILITY_HT_ENABLE_OFFSET               4
#define WMI_INFO_CAPABILITY_VHT_ENABLE_MASK                0x20
#define WMI_INFO_CAPABILITY_VHT_ENABLE_OFFSET              5
#define WMI_INFO_CAPABILITY_BAND_MASK                      0xc0
#define WMI_INFO_CAPABILITY_BAND_OFFSET                    6

/* definition of WMI_INFO_CAPABILITY_NSS_MASK */
#define WMI_INFO_CAPABILITY_NSS_1X1                        1
#define WMI_INFO_CAPABILITY_NSS_2X2                        2
#define WMI_INFO_CAPABILITY_NSS_3X3                        3
#define WMI_INFO_CAPABILITY_NSS_4X4                        4

/* definition of WMI_INFO_CAPABILITY_BAND_MASK */
#define WMI_INFO_CAPABILITY_2G_BAND_MASK                   (1 << 0)
#define WMI_INFO_CAPABILITY_5G_BAND_MASK                   (1 << 1)

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;        /* home vdev id */
    A_UINT32 meas_token;     /* from measure request frame */
    A_UINT32 dialog_token;
    A_UINT32 number_bursts;  /* zero keep sending until cancel, bigger than 0 means times e.g. 1,2 */
    A_UINT32 burst_interval; /* unit in mill seconds, interval between consecutive burst*/
    A_UINT32 burst_cycle;   /* times cycle through within one burst */
    A_UINT32 tx_power;      /* for path frame */
    A_UINT32 off_duration;  /* uint in mill seconds, channel off duraiton for path loss frame sending */
    wmi_mac_addr dest_mac; /* multicast DA, for path loss frame */
    A_UINT32 num_chans;
/*
 * This fixed_param TLV is followed by other TLVs:
 *     A_UINT32 channel_list[num_chans]; // in MHz
 */
} wmi_vdev_plmreq_start_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 meas_token; /* same value from req*/
} wmi_vdev_plmreq_stop_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_set_noa_cmd_fixed_param  */
    A_UINT32 tlv_header;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* enable/disable NoA */
    A_UINT32 enable;
    /** number of NoA desc. In the TLV noa_descriptor[] */
    A_UINT32 num_noa;
    /**
     * TLV (tag length value) parameters follow the pattern structure.
     * TLV  contain NoA desc with num of num_noa
     */
} wmi_p2p_set_noa_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_unit_test_cmd_fixed_param  */
    A_UINT32 tlv_header;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* Identify the wlan module */
    A_UINT32 module_id;
    /* Num of test arguments passed */
    A_UINT32 num_args;
    /* unique id identifying the unit test cmd, generated by the caller */
    A_UINT32 diag_token;
/**
 * TLV (tag length value) parameters follow the wmi_unit_test_cmd_fixed_param
 * structure. The TLV's are:
 *     A_UINT32 args[];
 **/
} wmi_unit_test_cmd_fixed_param;

/** Roaming offload SYNCH_COMPLETE from host when host finished sync logic
 * after it received WMI_ROAM_SYNCH_EVENTID.
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_synch_complete_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
} wmi_roam_synch_complete_fixed_param;


typedef enum {
    RECOVERY_SIM_ASSERT = 0x01,
    RECOVERY_SIM_NO_DETECT = 0x02,
    RECOVERY_SIM_CTR_EP_FULL = 0x03,
    RECOVERY_SIM_EMPTY_POINT = 0x04,
    RECOVERY_SIM_STACK_OV = 0x05,
    RECOVERY_SIM_INFINITE_LOOP = 0x06,
    RECOVERY_SIM_PCIE_LINKDOWN = 0x07,
    RECOVERY_SIM_SELF_RECOVERY = 0x08,
    RECOVERY_SIM_BT_RECOVERY = 0x09,
} RECOVERY_SIM_TYPE;

/* WMI_FORCE_FW_HANG_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_FORCE_FW_HANG_CMD_fixed_param */
    A_UINT32 type; /*0:unused 1: ASSERT, 2: not respond detect command,3:  simulate ep-full(),4:...*/
    A_UINT32 delay_time_ms; /*0xffffffff means the simulate will delay for random time (0 ~0xffffffff ms)*/
} WMI_FORCE_FW_HANG_CMD_fixed_param;

typedef enum {
    WMI_MCAST_FILTER_SET = 1,
    WMI_MCAST_FILTER_DELETE
} WMI_SET_SINGLE_MCAST_FILTER_OP;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 index;
    A_UINT32 action;
    wmi_mac_addr mcastbdcastaddr;
} WMI_SET_MCASTBCAST_FILTER_CMD_fixed_param;

typedef enum {
    WMI_MULTIPLE_MCAST_FILTER_CLEAR = 1, /* clear all previous mc list */
    WMI_MULTIPLE_MCAST_FILTER_SET,       /* clear all previous mc list, and set new list */
    WMI_MULTIPLE_MCAST_FILTER_DELETE,    /* delete one/multiple mc list */
    WMI_MULTIPLE_MCAST_FILTER_ADD        /* add one/multiple mc list */
} WMI_MULTIPLE_MCAST_FILTER_OP;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 operation;  /* refer WMI_MULTIPLE_MCAST_FILTER_OP */
    A_UINT32 num_mcastaddrs; /* number of elements in the subsequent mcast addr list */
/**
 * TLV (tag length value) parameters follow the
 * structure. The TLV's are:
 * wmi_mac_addr mcastaddr_list[num_mcastaddrs];
 */
} WMI_SET_MULTIPLE_MCAST_FILTER_CMD_fixed_param;


/* WMI_DBGLOG_TIME_STAMP_SYNC_CMDID */
typedef enum {
    WMI_TIME_STAMP_SYNC_MODE_MS, /* millisecond units */
    WMI_TIME_STAMP_SYNC_MODE_US, /* microsecond units */
} WMI_TIME_STAMP_SYNC_MODE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dbglog_time_stamp_sync_cmd_fixed_param */
    A_UINT32 mode; /* 0: millisec, 1: microsec (see WMI_TIME_STAMP_SYNC_MODE) */
    A_UINT32 time_stamp_low; /* lower 32 bits of remote time stamp */
    A_UINT32 time_stamp_high; /* higher 32 bits of remote time stamp */
} WMI_DBGLOG_TIME_STAMP_SYNC_CMD_fixed_param;

/* GPIO Command and Event data structures */

/* WMI_GPIO_CONFIG_CMDID */
enum {
    WMI_GPIO_PULL_NONE,   /** Do not specify a pull. */
    WMI_GPIO_PULL_UP,     /** Pull the GPIO up. */
    WMI_GPIO_PULL_DOWN,   /** Pull the GPIO down. */
    WMI_GPIO_PULL_KEEPER, /** Designate as a keeper. */
};

enum wmi_gpio_drive_strength {
    WMI_GPIO_2MA,  /** Specify a 2 mA drive. */
    WMI_GPIO_4MA,  /** Specify a 4 mA drive. */
    WMI_GPIO_6MA,  /** Specify a 6 mA drive. */
    WMI_GPIO_8MA,  /** Specify an 8 mA drive. */
    WMI_GPIO_10MA, /** Specify a 10 mA drive. */
    WMI_GPIO_12MA, /** Specify a 12 mA drive. */
    WMI_GPIO_14MA, /** Specify a 14 mA drive. */
    WMI_GPIO_16MA, /** Specify a 16 mA drive. */
};

enum wmi_tlmm_gpio_config {
  WMI_TLMM_GPIO_DISABLE, /** Use the internal inactive configuration. */
  WMI_TLMM_GPIO_ENABLE,  /** Use the configuration passed as parameter. */
};

enum {
    WMI_GPIO_INTTYPE_DISABLE,
    WMI_GPIO_INTTYPE_RISING_EDGE,
    WMI_GPIO_INTTYPE_FALLING_EDGE,
    WMI_GPIO_INTTYPE_BOTH_EDGE,
    WMI_GPIO_INTTYPE_LEVEL_LOW,
    WMI_GPIO_INTTYPE_LEVEL_HIGH
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gpio_config_cmd_fixed_param */
    A_UINT32 gpio_num; /* GPIO number to be setup */
    A_UINT32 input; /* 0 - Output/ 1 - Input */
    A_UINT32 pull_type; /* Pull type defined above */
    A_UINT32 intr_mode; /* Interrupt mode defined above (Input) */
    /* mux_config_val - configure pin MUX
     * A value of 0x0 for this field means to use the default MUX configuration.
     * Valid non-zero values are as follows:
     * Rome:
     *     0x4 - use the pin as GPIO (rather than UART)
     */
    A_UINT32 mux_config_val;
    /*
     * The drive strength to use in the configuration of a GPIO.
     * Refer to the wmi_gpio_drive_strength enum.
     */
    A_UINT32 drive;
    /*
     * Use the internal inactive configuration or configuration passed
     * as parameter.
     * Refer to the wmi_tlmm_gpio_config enum.
     */
    A_UINT32 init_enable;
} wmi_gpio_config_cmd_fixed_param;

/* WMI_GPIO_OUTPUT_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gpio_output_cmd_fixed_param */
    A_UINT32 gpio_num; /* GPIO number to be setup */
    A_UINT32 set; /* Set the GPIO pin*/
} wmi_gpio_output_cmd_fixed_param;

/* WMI_GPIO_STATE_REQ_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gpio_state_req_cmd_fixed_param */
    A_UINT32 gpio_num;   /* GPIO number to get state */
} wmi_gpio_state_req_cmd_fixed_param;

/* WMI_GPIO_INPUT_EVENTID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gpio_input_event_fixed_param */
    A_UINT32 gpio_num; /* GPIO number which changed state */
} wmi_gpio_input_event_fixed_param;

typedef enum {
    /**
     * The following wmi_gpio_state_type is mutually exclusive.
     * 0:  gpio_invalid_state
     * 1:  gpio_state is LO
     * 2:  gpio_state is HIGH
     */
    WMI_GPIO_STATE_INVALID, /* GPIO state is invalid. */
    WMI_GPIO_STATE_LOW,     /* GPIO state is low. */
    WMI_GPIO_STATE_HIGH,    /* GPIO state is high. */
} WMI_GPIO_STATE_TYPE;

/* WMI_GPIO_STATE_RES_EVENTID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gpio_state_res_event_fixed_param */
    A_UINT32 gpio_num;   /* GPIO number */
    A_UINT32 gpio_state; /* state of GPIO pin defined in WMI_GPIO_STATE_TYPE 0 invalid 1 - LO, 2 -HI*/
} wmi_gpio_state_res_event_fixed_param;

/* WMI_ANT_CONTROLLER_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ant_controller_cmd_fixed_param */
    A_UINT32 ant_controller_enable;
} wmi_ant_controller_cmd_fixed_param;

/* WMI_P2P_DISC_EVENTID */
enum {
    P2P_DISC_SEARCH_PROB_REQ_HIT = 0, /* prob req hit the p2p find pattern */
    P2P_DISC_SEARCH_PROB_RESP_HIT, /* prob resp hit the p2p find pattern */
};

enum {
    P2P_DISC_MODE_SEARCH = 0, /* do search when p2p find offload*/
    P2P_DISC_MODE_LISTEN, /* do listen when p2p find offload*/
    P2P_DISC_MODE_AUTO, /* do listen and search when p2p find offload*/
};

enum {
    P2P_DISC_PATTERN_TYPE_BSSID = 0, /* BSSID pattern */
    P2P_DISC_PATTERN_TYPE_DEV_NAME, /* device name pattern */
};

typedef struct {
    A_UINT32 vdev_id;
    A_UINT32 reason; /* P2P DISC wake up reason*/
} wmi_p2p_disc_event;

typedef WMI_GTK_OFFLOAD_STATUS_EVENT_fixed_param WOW_EVENT_INFO_SECTION_GTKIGTK;

typedef enum {
    WMI_FAKE_TXBFER_SEND_NDPA,
    WMI_FAKE_TXBFER_SEND_MU,
    WMI_FAKE_TXBFER_NDPA_FBTYPE,
    WMI_FAKE_TXBFER_NDPA_NCIDX,
    WMI_FAKE_TXBFER_NDPA_POLL,
    WMI_FAKE_TXBFER_NDPA_BW,
    WMI_FAKE_TXBFER_NDPA_PREAMBLE,
    WMI_FAKE_TXBFER_NDPA_RATE,
    WMI_FAKE_TXBFER_NDP_BW,
    WMI_FAKE_TXBFER_NDP_NSS,
    WMI_TXBFEE_ENABLE_UPLOAD_H,
    WMI_TXBFEE_ENABLE_CAPTURE_H,
    WMI_TXBFEE_SET_CBF_TBL,
    WMI_TXBFEE_CBF_TBL_LSIG,
    WMI_TXBFEE_CBF_TBL_SIGA1,
    WMI_TXBFEE_CBF_TBL_SIGA2,
    WMI_TXBFEE_CBF_TBL_SIGB,
    WMI_TXBFEE_CBF_TBL_PAD,
    WMI_TXBFEE_CBF_TBL_DUR,
    WMI_TXBFEE_SU_NCIDX,
    WMI_TXBFEE_CBIDX,
    WMI_TXBFEE_NGIDX,
} WMI_TXBF_PARAM_ID;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_txbf_cmd_fixed_param */
    /** parameter id   */
    A_UINT32 param_id;
    /** parameter value */
    A_UINT32 param_value;
} wmi_txbf_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_upload_h_hdr */
    A_UINT32 h_length;
    A_UINT32 cv_length;
/* This TLV is followed by array of bytes:
 *   A_UINT8 bufp[]; <-- h_cv info buffer
 */
} wmi_upload_h_hdr;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_capture_h_event_hdr */
    A_UINT32 svd_num;
    A_UINT32 tone_num;
    A_UINT32 reserved;
} wmi_capture_h_event_hdr;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_avoid_freq_range_desc */
    A_UINT32 start_freq; /* start frequency, not channel center freq */
    A_UINT32 end_freq; /* end frequency */
} wmi_avoid_freq_range_desc;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_avoid_freq_ranges_event_fixed_param */
    /* bad channel range count, multi range is allowed, 0 means all channel clear */
    A_UINT32 num_freq_ranges;

/* The TLVs will follow.
 * multi range with num_freq_ranges, LTE advance multi carrier, CDMA,etc
 *     wmi_avoid_freq_range_desc avd_freq_range[]; <-- message buffer, NULL terminated
 */
} wmi_avoid_freq_ranges_event_fixed_param;

enum {
    WMI_SAR2_SUCCESS                = 0,
    WMI_SAR2_INVALID_ANTENNA_INDEX  = 1,
    WMI_SAR2_INVALID_TABLE_INDEX    = 2,
    WMI_SAR2_STATE_ERROR            = 4,
    WMI_SAR2_BDF_NO_TABLE           = 8,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sar2_result_event_fixed_param  */
    A_UINT32 result; /* refer to the above WMI_SAR2_ result definitions */
} wmi_sar2_result_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_gtk_rekey_fail_event_fixed_param  */
    /** Reserved for future use */
    A_UINT32 reserved0;
    A_UINT32 vdev_id;
} wmi_gtk_rekey_fail_event_fixed_param;


typedef enum WLAN_COEX_EVENT {
    WLAN_COEX_EVENT_BT_NONE                     = 0,
    WLAN_COEX_EVENT_BT_A2DP_PROFILE_ADD         = 1,
    WLAN_COEX_EVENT_BT_A2DP_PROFILE_REMOVE      = 2,
    WLAN_COEX_EVENT_BT_VOICE_PROFILE_ADD        = 3,
    WLAN_COEX_EVENT_BT_VOICE_PROFILE_REMOVE     = 4,
    WLAN_COEX_EVENT_BT_SCAN_START               = 5,
    WLAN_COEX_EVENT_BT_SCAN_STOP                = 6,
    WLAN_COEX_EVENT_BT_PROFILE_CONNECTED        = 7,
    WLAN_COEX_EVENT_BT_PROFILE_DISCONNECTED     = 8,
} WLAN_COEX_EVENT;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 coex_profile_evt; //uses the enum values from WLAN_COEX_EVENT
} wmi_coex_bt_activity_event_fixed_param;

enum wmm_ac_downgrade_policy {
    WMM_AC_DOWNGRADE_DEPRIO,
    WMM_AC_DOWNGRADE_DROP,
    WMM_AC_DOWNGRADE_INVALID,
};

/* WMM EDCA Params type */
#define WMM_PARAM_TYPE_LEGACY        0
/* Relaxed EDCA parameters for 11ax to be used in case of triggered access */
#define WMM_PARAM_TYPE_11AX_EDCA     1

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 cwmin;
    A_UINT32 cwmax;
    A_UINT32 aifs;
    union {
        A_UINT32 txoplimit;
        A_UINT32 mu_edca_timer;
    };
    A_UINT32 acm;
    A_UINT32 no_ack;
} wmi_wmm_vparams;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    wmi_wmm_vparams wmm_params[4]; /* 0 be, 1 bk, 2 vi, 3 vo */
    A_UINT32 wmm_param_type; /* see WMM_PARAM_TYPE_xxx defs */
} wmi_vdev_set_wmm_params_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32              gtxRTMask[2]; /* for HT and VHT rate masks */
    A_UINT32              userGtxMask; /* host request for GTX mask */
    A_UINT32              gtxPERThreshold; /* default: 10% */
    A_UINT32              gtxPERMargin; /* default: 2% */
    A_UINT32              gtxTPCstep; /* default: 1 */
    A_UINT32              gtxTPCMin; /* default: 5 */
    A_UINT32              gtxBWMask; /* 20/40/80/160 Mhz */
} wmi_vdev_set_gtx_params_cmd_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 ac;
    A_UINT32 medium_time_us; /* per second unit, the Admitted time granted, unit in micro seconds */
    A_UINT32 downgrade_type;
} wmi_vdev_wmm_addts_cmd_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 ac;
} wmi_vdev_wmm_delts_cmd_fixed_param;

/* DEPRECATED */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_dfs_enable_cmd_fixed_param  */
    /** Reserved for future use */
    A_UINT32 reserved0;
} wmi_pdev_dfs_enable_cmd_fixed_param;

/* DEPRECATED */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_dfs_disable_cmd_fixed_param  */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_dfs_disable_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dfs_phyerr_filter_ena_cmd_fixed_param
     */
    A_UINT32 tlv_header;

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_dfs_phyerr_filter_ena_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dfs_phyerr_filter_dis_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_dfs_phyerr_filter_dis_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 pdev_id;
} wmi_pdev_dfs_phyerr_offload_enable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 pdev_id;
} wmi_pdev_dfs_phyerr_offload_disable_cmd_fixed_param;

typedef enum {
    QUICK_OCAC = 0,
    EXTENSIVE_OCAC,
    QUICK_RCAC,
} WMI_ADFS_OCAC_MODE;

typedef struct {
    A_UINT32  tlv_header;
    A_UINT32  vdev_id;
    A_UINT32  ocac_mode;  /* WMI_ADFS_OCAC_MODE */
    A_UINT32  min_duration_ms; /* in milliseconds */
    A_UINT32  max_duration_ms; /* in milliseconds */
    A_UINT32  chan_freq;   /* in MHz */
    A_UINT32  chan_width;  /* in MHz */
    /*
     * Two center frequencies are required since agile channel switch
     * has to support 160/165 MHz for products like Pine.
     * For agile which supports only up to 80MHz (HK),
     * freq2 will be 0 and ignored.
     */
    union {
        A_UINT32  center_freq; /* in MHz */ /* old name */
        A_UINT32  center_freq1; /* in MHz */ /* new name */
    };
    A_UINT32  center_freq2; /* in MHz */
} wmi_vdev_adfs_ch_cfg_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
} wmi_vdev_adfs_ocac_abort_cmd_fixed_param;

typedef enum {
    IN_SERVICE_MODE = 0,
    OCAC_MODE,
} WMI_DFS_RADAR_DETECTION_MODE;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 pdev_id;
    /* In-service mode or O-CAC mode */
    A_UINT32 detection_mode; /* WMI_DFS_RADAR_DETECTION_MODE */
    A_UINT32 chan_freq;  /* in MHz */
    A_UINT32 chan_width; /* in MHz */
    A_UINT32 detector_id;
    A_UINT32 segment_id;
    A_UINT32 timestamp;
    A_UINT32 is_chirp;
    A_INT32  freq_offset; /* in MHz */
    A_INT32  sidx; /* segment index (where was the radar within the channel) */
} wmi_pdev_dfs_radar_detection_event_fixed_param;

typedef enum {
    OCAC_COMPLETE = 0,
    OCAC_ABORT,
} WMI_VDEV_OCAC_COMPLETE_STATUS;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 chan_freq;   /* in MHz */
    A_UINT32 chan_width;  /* in MHz */
    /*
     * Two center frequencies are required since agile channel switch
     * has to support 160/165 MHz for products like Pine.
     * For agile which supports only up to 80MHz (HK),
     * freq2 will be 0 and ignored.
     */
    union {
        A_UINT32 center_freq; /* in MHz */ /* old name */
        A_UINT32 center_freq1; /* in MHz */ /* new name */
    };
    A_UINT32 status;   /* WMI_VDEV_OCAC_COMPLETE_STATUS */
    A_UINT32 center_freq2; /* in MHz */
} wmi_vdev_adfs_ocac_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
} wmi_vdev_dfs_cac_complete_event_fixed_param;


/** TDLS COMMANDS */

/* WMI_TDLS_SET_STATE_CMDID */
/* TDLS State */
enum wmi_tdls_state {
    /** TDLS disable */
    WMI_TDLS_DISABLE,
    /** TDLS enabled - no firmware connection tracking/notifications */
    WMI_TDLS_ENABLE_PASSIVE,
    /** TDLS enabled - with firmware connection tracking/notifications */
    WMI_TDLS_ENABLE_ACTIVE,
    /** TDLS enabled - firmware waits for peer mac for connection tracking */
    WMI_TDLS_ENABLE_ACTIVE_EXTERNAL_CONTROL,
    /** TDLS enabled - TDLS connection tracking is done in host */
    WMI_TDLS_ENABLE_CONNECTION_TRACKER_IN_HOST,
};

/* TDLS Options */
#define WMI_TDLS_OFFCHAN_EN             (1 << 0) /** TDLS Off Channel support */
#define WMI_TDLS_BUFFER_STA_EN          (1 << 1) /** TDLS Buffer STA support */
#define WMI_TDLS_SLEEP_STA_EN           (1 << 2) /** TDLS Sleep STA support (not currently supported) */

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tdls_set_state_cmd_fixed_param  */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** Enable/Disable TDLS (wmi_tdls_state) */
    A_UINT32 state;
    /** Duration (in ms) over which to calculate tx/rx threshold to trigger TDLS Discovery */
    A_UINT32 notification_interval_ms;
    /** number of packets OVER which notify/suggest TDLS Discovery:
     *  if current tx pps counter / notification interval >= threshold
     *  then a notification will be sent to host to advise TDLS Discovery */
    A_UINT32 tx_discovery_threshold;
    /** number of packets UNDER which notify/suggest TDLS Teardown:
     *  if current tx pps counter / notification interval < threshold
     *  then a notification will be sent to host to advise TDLS Tear down */
    A_UINT32 tx_teardown_threshold;
    /** Absolute RSSI value under which notify/suggest TDLS Teardown */
    A_INT32 rssi_teardown_threshold;
    /** Peer RSSI < (AP RSSI + delta) will trigger a teardown */
    A_INT32 rssi_delta;
    /** TDLS Option Control
     * Off-Channel, Buffer STA, (later)Sleep STA support */
    A_UINT32 tdls_options;
    /* Buffering time in number of beacon intervals */
    A_UINT32 tdls_peer_traffic_ind_window;
    /* Wait time for PTR frame */
    A_UINT32 tdls_peer_traffic_response_timeout_ms;
    /* Self PUAPSD mask */
    A_UINT32 tdls_puapsd_mask;
    /* Inactivity timeout */
    A_UINT32 tdls_puapsd_inactivity_time_ms;
    /* Max of rx frame during SP */
    A_UINT32 tdls_puapsd_rx_frame_threshold;
    /**Duration (in ms) over which to check whether TDLS link needs to be torn down */
    A_UINT32 teardown_notification_ms;
    /** STA kickout threshold for TDLS peer */
    A_UINT32 tdls_peer_kickout_threshold;
    /* TDLS discovery WAKE timeout in ms.
     * DUT will wake until this timeout to receive TDLS discovery response
     * from peer.
     * If tdls_discovery_wake_timeout is 0x0, the DUT will choose autonomously
     * what wake timeout value to use.
     */
    A_UINT32 tdls_discovery_wake_timeout;
} wmi_tdls_set_state_cmd_fixed_param;

/* WMI_TDLS_PEER_UPDATE_CMDID */

enum wmi_tdls_peer_state {
    /** tx peer TDLS link setup now starting, traffic to DA should be
     * paused (except TDLS frames) until state is moved to CONNECTED (or
     * TEARDOWN on setup failure) */
    WMI_TDLS_PEER_STATE_PEERING,
    /** tx peer TDLS link established, running (all traffic to DA unpaused) */
    WMI_TDLS_PEER_STATE_CONNECTED,
    /** tx peer TDLS link tear down started (link paused, any frames
     * queued for DA will be requeued back through the AP)*/
    WMI_TDLS_PEER_STATE_TEARDOWN,
    /** Add peer mac into connection table */
    WMI_TDLS_PEER_ADD_MAC_ADDR,
    /** Remove peer mac from connection table */
    WMI_TDLS_PEER_REMOVE_MAC_ADDR,
};

/* NB: These defines are fixed, and cannot be changed without breaking WMI compatibility */
#define WMI_TDLS_MAX_SUPP_CHANNELS 128
#define WMI_TDLS_MAX_SUPP_OPER_CLASSES 32
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tdls_peer_capabilities  */
    A_UINT32 tlv_header;
    /* Peer's QoS Info - for U-APSD */
    /* AC FLAGS  - accessed through macros below */
    /* Ack, SP, More Data Ack - accessed through macros below */
    A_UINT32 peer_qos;
    /*TDLS Peer's U-APSD Buffer STA Support*/
    A_UINT32 buff_sta_support;
    /*TDLS off channel related params */
    A_UINT32 off_chan_support;
    A_UINT32 peer_curr_operclass;
    A_UINT32 self_curr_operclass;
    /* Number of channels available for off channel operation */
    A_UINT32 peer_chan_len;
    A_UINT32 peer_operclass_len;
    A_UINT8  peer_operclass[WMI_TDLS_MAX_SUPP_OPER_CLASSES];
    /* Is peer initiator or responder of TDLS setup request */
    A_UINT32 is_peer_responder;
    /* Preferred off channel number as configured by user */
    A_UINT32 pref_offchan_num;
    /* Preferred off channel bandwidth as configured by user */
    A_UINT32 pref_offchan_bw;
    /* Preferred off channel frequency in MHz as configured by user */
    A_UINT32 pref_offchan_freq;

    /** Followed by the variable length TLV peer_chan_list:
     *  wmi_channel peer_chan_list[].
      *   Array size would be peer_chan_len.
     *  This array is intersected channels which is supported by both peer
     *  and DUT. freq1 in chan_info shall be same as mhz, freq2 shall be 0.
     *  FW shall compute BW for an offchan based on peer's ht/vht cap
     *  received in peer_assoc cmd during change STA operation
      */
 } wmi_tdls_peer_capabilities;

#define WMI_TDLS_QOS_VO_FLAG           0
#define WMI_TDLS_QOS_VI_FLAG           1
#define WMI_TDLS_QOS_BK_FLAG           2
#define WMI_TDLS_QOS_BE_FLAG           3
#define WMI_TDLS_QOS_ACK_FLAG          4
#define WMI_TDLS_QOS_SP_FLAG           5
#define WMI_TDLS_QOS_MOREDATA_FLAG     7

#define WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps,flag) do { \
        (ppeer_caps)->peer_qos |=  (1 << flag);      \
     } while (0)
#define WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps,flag)   \
        (((ppeer_caps)->peer_qos & (1 << flag)) >> flag)

#define WMI_SET_TDLS_PEER_VO_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_VO_FLAG)
#define WMI_GET_TDLS_PEER_VO_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_VO_FLAG)
#define WMI_SET_TDLS_PEER_VI_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_VI_FLAG)
#define WMI_GET_TDLS_PEER_VI_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_VI_FLAG)
#define WMI_SET_TDLS_PEER_BK_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_BK_FLAG)
#define WMI_GET_TDLS_PEER_BK_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_BK_FLAG)
#define WMI_SET_TDLS_PEER_BE_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_BE_FLAG)
#define WMI_GET_TDLS_PEER_BE_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_BE_FLAG)
#define WMI_SET_TDLS_PEER_ACK_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_ACK_FLAG)
#define WMI_GET_TDLS_PEER_ACK_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_ACK_FLAG)
/* SP has 2 bits */
#define WMI_SET_TDLS_PEER_SP_UAPSD(ppeer_caps,val) do { \
     (ppeer_caps)->peer_qos |=  (((val) & 0x3) << WMI_TDLS_QOS_SP_FLAG); \
     } while (0)
#define WMI_GET_TDLS_PEER_SP_UAPSD(ppeer_caps) \
    (((ppeer_caps)->peer_qos & (0x3 << WMI_TDLS_QOS_SP_FLAG)) >> WMI_TDLS_QOS_SP_FLAG)

#define WMI_SET_TDLS_PEER_MORE_DATA_ACK_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_SET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_MOREDATA_FLAG)
#define WMI_GET_TDLS_PEER_MORE_DATA_ACK_UAPSD(ppeer_caps) \
    WMI_TDLS_PEER_GET_QOS_FLAG(ppeer_caps, WMI_TDLS_QOS_MOREDATA_FLAG)


#define WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd,flag) do { \
        (pset_cmd)->tdls_puapsd_mask |=  (1 << flag);      \
     } while (0)
#define WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd,flag)   \
        (((pset_cmd)->tdls_puapsd_mask & (1 << flag)) >> flag)

#define WMI_SET_TDLS_SELF_VO_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_VO_FLAG)
#define WMI_GET_TDLS_SELF_VO_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_VO_FLAG)
#define WMI_SET_TDLS_SELF_VI_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_VI_FLAG)
#define WMI_GET_TDLS_SELF_VI_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_VI_FLAG)
#define WMI_SET_TDLS_SELF_BK_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_BK_FLAG)
#define WMI_GET_TDLS_SELF__BK_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_BK_FLAG)
#define WMI_SET_TDLS_SELF_BE_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_BE_FLAG)
#define WMI_GET_TDLS_SELF_BE_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_BE_FLAG)
#define WMI_SET_TDLS_SELF_ACK_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_ACK_FLAG)
#define WMI_GET_TDLS_SELF_ACK_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_ACK_FLAG)
/* SP has 2 bits */
#define WMI_SET_TDLS_SELF_SP_UAPSD(pset_cmd,val) do { \
     (pset_cmd)->tdls_puapsd_mask |=  (((val) & 0x3) << WMI_TDLS_QOS_SP_FLAG); \
     } while (0)
#define WMI_GET_TDLS_SELF_SP_UAPSD(pset_cmd) \
    (((pset_cmd)->tdls_puapsd_mask & (0x3 << WMI_TDLS_QOS_SP_FLAG)) >> WMI_TDLS_QOS_SP_FLAG)

#define WMI_SET_TDLS_SELF_MORE_DATA_ACK_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_SET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_MOREDATA_FLAG)
#define WMI_GET_TDLS_SELF_MORE_DATA_ACK_UAPSD(pset_cmd) \
    WMI_TDLS_SELF_GET_QOS_FLAG(pset_cmd, WMI_TDLS_QOS_MOREDATA_FLAG)


typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tdls_peer_update_cmd_fixed_param  */
    A_UINT32    tlv_header;
    /** unique id identifying the VDEV */
    A_UINT32                    vdev_id;
    /** peer MAC address */
    wmi_mac_addr                peer_macaddr;
    /** new TDLS state for peer (wmi_tdls_peer_state) */
    A_UINT32                    peer_state;
    /* The TLV for wmi_tdls_peer_capabilities will follow.
     *     wmi_tdls_peer_capabilities  peer_caps;
     */
    /** Followed by the variable length TLV chan_info:
     *  wmi_channel chan_info[] */
} wmi_tdls_peer_update_cmd_fixed_param;

/* WMI_TDLS_SET_OFFCHAN_MODE_CMDID */


/* bitmap  20, 40, 80 or 160 MHz wide channel */
#define WMI_TDLS_OFFCHAN_20MHZ                  0x1   /*  20 MHz wide channel */
#define WMI_TDLS_OFFCHAN_40MHZ                  0x2   /*  40 MHz wide channel */
#define WMI_TDLS_OFFCHAN_80MHZ                  0x4   /*  80 MHz wide channel */
#define WMI_TDLS_OFFCHAN_160MHZ                 0x8   /*  160 MHz wide channel */


enum wmi_tdls_offchan_mode {
    WMI_TDLS_ENABLE_OFFCHANNEL,
    WMI_TDLS_DISABLE_OFFCHANNEL, /* passive offchannel disable */
    WMI_TDLS_ACTIVE_DISABLE_OFFCHANNEL,
};

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tdls_set_offchan_mode_cmd_fixed_param  */
    A_UINT32   tlv_header;
    /** unique id identifying the VDEV */
    A_UINT32   vdev_id;
    /** Enable/Disable TDLS offchannel */
    A_UINT32 offchan_mode;
    /** peer MAC address */
    wmi_mac_addr   peer_macaddr;
    /* Is peer initiator or responder of TDLS setup request */
    A_UINT32 is_peer_responder;
    /* off channel number*/
    A_UINT32 offchan_num;
    /* off channel bandwidth bitmap, e.g. WMI_OFFCHAN_20MHZ */
    A_UINT32 offchan_bw_bitmap;
    /* operating class for offchan */
    A_UINT32 offchan_oper_class;
    /* off channel frequency in MHz */
    A_UINT32 offchan_freq;
/** This fixed_param TLV is followed by the below additional TLVs:
 *    - wmi_channel peer_chan_info[]: optional per-peer chan_info
 */
} wmi_tdls_set_offchan_mode_cmd_fixed_param;


/** TDLS EVENTS */
enum wmi_tdls_peer_notification {
    /** tdls discovery recommended for peer (based
     * on tx bytes per second > tx_discover threshold) */
    WMI_TDLS_SHOULD_DISCOVER,
    /** tdls link tear down recommended for peer
     * due to tx bytes per second below tx_teardown_threshold
     * NB: this notification sent once */
    WMI_TDLS_SHOULD_TEARDOWN,
    /** tx peer TDLS link tear down complete */
    WMI_TDLS_PEER_DISCONNECTED,
    /** TDLS/BT role change notification for connection tracker */
    WMI_TDLS_CONNECTION_TRACKER_NOTIFICATION,
};

enum wmi_tdls_peer_reason {
    /** tdls teardown recommended due to low transmits */
    WMI_TDLS_TEARDOWN_REASON_TX,
    /** tdls link tear down recommended due to poor RSSI */
    WMI_TDLS_TEARDOWN_REASON_RSSI,
    /** tdls link tear down recommended due to offchannel scan */
    WMI_TDLS_TEARDOWN_REASON_SCAN,
    /** tdls peer disconnected due to peer deletion */
    WMI_TDLS_DISCONNECTED_REASON_PEER_DELETE,
    /** tdls peer disconnected due to PTR timeout */
    WMI_TDLS_TEARDOWN_REASON_PTR_TIMEOUT,
    /** tdls peer disconnected due wrong PTR format */
    WMI_TDLS_TEARDOWN_REASON_BAD_PTR,
    /** tdls peer not responding */
    WMI_TDLS_TEARDOWN_REASON_NO_RESPONSE,
    /** tdls entered buffer STA role, TDLS connection tracker needs to handle this */
    WMI_TDLS_ENTER_BUF_STA,
    /** tdls exited buffer STA role, TDLS connection tracker needs to handle this */
    WMI_TDLS_EXIT_BUF_STA,
    /** BT entered busy mode, TDLS connection tracker needs to handle this */
    WMI_TDLS_ENTER_BT_BUSY_MODE,
    /** BT exited busy mode, TDLS connection tracker needs to handle this */
    WMI_TDLS_EXIT_BT_BUSY_MODE,
    /** TDLS module received a scan start event, TDLS connection tracker needs to handle this */
    WMI_TDLS_SCAN_STARTED_EVENT,
    /** TDLS module received a scan complete event, TDLS connection tracker needs to handle this */
    WMI_TDLS_SCAN_COMPLETED_EVENT,
};

/* WMI_TDLS_PEER_EVENTID */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tdls_peer_event_fixed_param  */
    A_UINT32    tlv_header;
    /** peer MAC address */
    wmi_mac_addr    peer_macaddr;
    /** TDLS peer status (wmi_tdls_peer_notification)*/
    A_UINT32        peer_status;
    /** TDLS peer reason (wmi_tdls_peer_reason) */
    A_UINT32        peer_reason;
    /** unique id identifying the VDEV */
    A_UINT32        vdev_id;
} wmi_tdls_peer_event_fixed_param;

/* NOTE: wmi_vdev_mcc_bcn_intvl_change_event_fixed_param would be deprecated. Please
 don't use this for any new implementations */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_mcc_bcn_intvl_change_event_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* New beacon interval to be used for the specified VDEV suggested by firmware */
    A_UINT32 new_bcn_intvl;
} wmi_vdev_mcc_bcn_intvl_change_event_fixed_param;

/* WMI_RESMGR_ADAPTIVE_OCS_ENABLE_DISABLE_CMDID */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** 1: enable fw based adaptive ocs,
     *  0: disable fw based adaptive ocs
     */
    A_UINT32 enable;
    /** This field contains the MAC identifier in order to lookup the appropriate OCS instance. */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
} wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param;

/* WMI_RESMGR_SET_CHAN_TIME_QUOTA_CMDID */
typedef struct {
    /* Frequency of the channel for which the quota is set */
    A_UINT32 chan_mhz;
    /* Requested channel time quota expressed as percentage */
    A_UINT32 channel_time_quota;
} wmi_resmgr_chan_time_quota;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_resmgr_chan_time_quota_tlv */
    A_UINT32 tlv_header;
    wmi_resmgr_chan_time_quota chan_time_quota;
} wmi_resmgr_chan_time_quota_tlv;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_resmgr_set_chan_time_quota_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** number of channel time quota command structures
     * (wmi_resmgr_chan_time_quota) 1 or 2
     */
    A_UINT32 num_chans;
/* This TLV is followed by another TLV of array of bytes
 * A_UINT8 data[];
 * This data array contains
 * num_chans * size of(struct wmi_resmgr_chan_time_quota)
 */
} wmi_resmgr_set_chan_time_quota_cmd_fixed_param;

typedef enum {
    WMI_RESMGR_QUOTA_TYPE_CLEAR   = 0,
    WMI_RESMGR_QUOTA_TYPE_FIXED   = 1,
    WMI_RESMGR_QUOTA_TYPE_DYNAMIC = 2,
} wmi_resmgr_quota_type;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_resmgr_chan_time_quota_changed_event_fixed_param */
    A_UINT32 tlv_header;
    /** quota_type: refer to wmi_resmgr_quota_type
     *  0 :  clear  quota
     *  1 :  fixed  quota
     *  2 : dynamic quota
     */
    A_UINT32 quota_type;

/* This TLV is followed by another TLV of array of struct
 * wmi_resmgr_chan_time_quota_tlv chan_quota[num_chans];
 */
} wmi_resmgr_chan_time_quota_changed_event_fixed_param;

/* WMI_RESMGR_SET_CHAN_LATENCY_CMDID */
typedef struct {
    /* Frequency of the channel for which the latency is set */
    A_UINT32 chan_mhz;
    /* Requested channel latency in milliseconds */
    A_UINT32 latency;
} wmi_resmgr_chan_latency;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_resmgr_set_chan_latency_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** number of channel latency command structures
     * (wmi_resmgr_chan_latency) 1 or 2
     */
    A_UINT32 num_chans;
/* This TLV is followed by another TLV of array of bytes
 * A_UINT8 data[];
 * This data array contains
 * num_chans * size of(struct wmi_resmgr_chan_latency)
 */
} wmi_resmgr_set_chan_latency_cmd_fixed_param;

/* WMI_STA_SMPS_FORCE_MODE_CMDID */

/** STA SMPS Forced Mode */
typedef enum {
    WMI_SMPS_FORCED_MODE_NONE = 0,
    WMI_SMPS_FORCED_MODE_DISABLED,
    WMI_SMPS_FORCED_MODE_STATIC,
    WMI_SMPS_FORCED_MODE_DYNAMIC
} wmi_sta_smps_forced_mode;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_sta_smps_force_mode_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** The mode of SMPS that is to be forced in the FW. */
    A_UINT32 forced_mode;
} wmi_sta_smps_force_mode_cmd_fixed_param;

/** wlan HB commands */
#define WMI_WLAN_HB_ITEM_UDP            0x1
#define WMI_WLAN_HB_ITEM_TCP            0x2
#define WMI_WLAN_HB_MAX_FILTER_SIZE     32 /* should be equal to WLAN_HB_MAX_FILTER_SIZE,
                                              must be a multiple of 4 bytes */

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_hb_set_enable_cmd_fixed_param */
    A_UINT32 tlv_header;     /** TLV header*/
    A_UINT32 vdev_id;        /** Vdev ID */
    A_UINT32 enable;         /** 1: Enable, 0: Disable`*/
    A_UINT32 item;           /** 1: UDP, 2: TCP */
    A_UINT32 session;        /** Session ID from HOST */
} wmi_hb_set_enable_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_hb_set_tcp_params_cmd_fixed_param */
    A_UINT32 tlv_header;      /** TLV header*/
    A_UINT32 vdev_id;         /** Vdev ID */
    A_UINT32 srv_ip;          /** Server IP address (IPv4) */
    A_UINT32 dev_ip;          /** Device IP address (IPv4) */
    A_UINT32 seq;             /** TCP Sequence no */
    A_UINT32 src_port;        /** Source port */
    A_UINT32 dst_port;        /** Destination port */
    A_UINT32 interval;        /** Keep alive interval */
    A_UINT32 timeout;         /** Timeout if keep alive fails */
    A_UINT32 session;         /** Session ID from HOST */
    wmi_mac_addr gateway_mac; /** Server Mac Address */
} wmi_hb_set_tcp_params_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_hb_set_tcp_pkt_filter_cmd_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 length;
    A_UINT32 offset;
    A_UINT32 session;
    A_UINT8  filter[WMI_WLAN_HB_MAX_FILTER_SIZE];
} wmi_hb_set_tcp_pkt_filter_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_hb_set_udp_params_cmd_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 srv_ip;
    A_UINT32 dev_ip;
    A_UINT32 src_port;
    A_UINT32 dst_port;
    A_UINT32 interval;
    A_UINT32 timeout;
    A_UINT32 session;
    wmi_mac_addr gateway_mac;
} wmi_hb_set_udp_params_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_hb_set_udp_pkt_filter_cmd_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 length;
    A_UINT32 offset;
    A_UINT32 session;
    A_UINT8  filter[WMI_WLAN_HB_MAX_FILTER_SIZE];
} wmi_hb_set_udp_pkt_filter_cmd_fixed_param;

/** wlan HB events */
typedef enum {
    WMI_WLAN_HB_REASON_UNKNOWN      = 0,
    WMI_WLAN_HB_REASON_TCP_TIMEOUT  = 1,
    WMI_WLAN_HB_REASON_UDP_TIMEOUT  = 2,
} WMI_HB_WAKEUP_REASON;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_hb_ind_event_fixed_param */
    A_UINT32 vdev_id;    /** unique id identifying the VDEV */
    A_UINT32 session;    /** Session ID from HOST */
    A_UINT32 reason;     /** wakeup reason */
} wmi_hb_ind_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_oic_set_enable_cmd_fixed_param */
    A_UINT32 tlv_header;           /** TLV Header */
    A_UINT32 vdev_id;              /** Vdev ID */
    A_UINT32 session;              /** Session number from the HOST */
    A_UINT32 srv_ip;               /** IPv4 address of the OCF server */
    A_UINT32 dev_ip;               /** IPv4 address of the device */
    A_UINT32 tcp_tx_seq;           /** TCP sequence number */
    A_UINT32 src_port;             /** Source port */
    A_UINT32 dst_port;             /** Destination port */
    A_UINT32 protocol;             /** Protocol used: TCP:0, UDP:1 */
    A_UINT32 wlan_hb_session;      /** Linked WLAN HB session. If a keepalive is configured for the TCP session, the session ID of the TCP keepalive */
    A_UINT32 timeout_retries;      /** timeout[31:16]: TCP ACK timeout, time to wait for a TCP ACK in ms
                                       retries[15:0]: Number of TCP level retries of OIC ping request */
    wmi_mac_addr peer_macaddr;     /** MAC address of the OCF server */
    A_UINT32 oic_ping_pkt0;        /** OIC ping packet content [Byte03:Byte00] */
    A_UINT32 oic_ping_pkt1;        /** OIC ping packet content [Byte07:Byte04] */
    A_UINT32 oic_ping_pkt2;        /** OIC ping packet content [Byte11:Byte08] */
    A_UINT32 oic_ping_pkt3;        /** OIC ping packet content [Byte15:Byte12] */

    A_UINT32 tls_cipher_suite_version; /** Cipher suite [31:16] as defined in https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml
                                       TLS version  [15:00] */
    A_UINT32 tls_tx_seq0;          /** Tx sequence number [31:00], incremented after every TLS packet transmission */
    A_UINT32 tls_tx_seq1;          /** Tx sequence number [63:32] */
    A_UINT32 tls_rx_seq0;          /** Rx sequence number [31:00], incremented after every TLS packet reception */
    A_UINT32 tls_rx_seq1;          /** Rx sequence number [63:32] */
    A_UINT32 tls_tx_key0;          /** client_write_key[Byte03:Byte00] refer Section 6.3 RFC 5246 */
    A_UINT32 tls_tx_key1;          /** client_write_key[Byte07:Byte04] */
    A_UINT32 tls_tx_key2;          /** client_write_key[Byte11:Byte08] */
    A_UINT32 tls_tx_key3;          /** client_write_key[Byte15:Byte12] */
    A_UINT32 tls_rx_key0;          /** server_write_key[Byte03:Byte00] */
    A_UINT32 tls_rx_key1;          /** server_write_key[Byte07:Byte04] */
    A_UINT32 tls_rx_key2;          /** server_write_key[Byte11:Byte08] */
    A_UINT32 tls_rx_key3;          /** server_write_key[Byte15:Byte12] */
    A_UINT32 tls_MAC_write_key0;   /** client_write_MAC_key[Byte03:Byte00] refer Section 6.3 RFC 5246 */
    A_UINT32 tls_MAC_write_key1;   /** client_write_MAC_key[Byte07:Byte04] */
    A_UINT32 tls_MAC_write_key2;   /** client_write_MAC_key[Byte11:Byte08] */
    A_UINT32 tls_MAC_write_key3;   /** client_write_MAC_key[Byte15:Byte12] */
    A_UINT32 tls_MAC_write_key4;   /** client_write_MAC_key[Byte19:Byte16] */
    A_UINT32 tls_MAC_write_key5;   /** client_write_MAC_key[Byte23:Byte20] */
    A_UINT32 tls_MAC_write_key6;   /** client_write_MAC_key[Byte27:Byte24] */
    A_UINT32 tls_MAC_write_key7;   /** client_write_MAC_key[Byte31:Byte28] */
    A_UINT32 tls_MAC_read_key0;    /** server_write_MAC_key[Byte03:Byte00] refer Section 6.3 RFC 5246 */
    A_UINT32 tls_MAC_read_key1;    /** server_write_MAC_key[Byte07:Byte04] */
    A_UINT32 tls_MAC_read_key2;    /** server_write_MAC_key[Byte11:Byte08] */
    A_UINT32 tls_MAC_read_key3;    /** server_write_MAC_key[Byte15:Byte12] */
    A_UINT32 tls_MAC_read_key4;    /** server_write_MAC_key[Byte19:Byte16] */
    A_UINT32 tls_MAC_read_key5;    /** server_write_MAC_key[Byte23:Byte20] */
    A_UINT32 tls_MAC_read_key6;    /** server_write_MAC_key[Byte27:Byte24] */
    A_UINT32 tls_MAC_read_key7;    /** server_write_MAC_key[Byte31:Byte28] */
    A_UINT32 tls_client_IV0;       /** CBC Mode: CBC_residue [Byte03:Byte00] refer section 6.2.3.2. CBC Block Cipher in RFC 5246
                                   GCM Mode: GCMNonce.salt [Byte03:Byte00] refer Section 3 of RFC 5288 */
    A_UINT32 tls_client_IV1;       /** CBC Mode: CBC_residue [Byte7:Byte4] */
    A_UINT32 tls_client_IV2;       /** CBC Mode: CBC_residue [Byte11:Byte8] */
    A_UINT32 tls_client_IV3;       /** CBC Mode: CBC_residue [Byte15:Byte12] */
    A_UINT32 tls_server_IV0;       /** CBC Mode: CBC_residue [Byte3:Byte0] refer section 6.2.3.2. CBC Block Cipher in RFC 5246
                                   GCM Mode: GCMNonce.salt [Byte4: Byte0] refer Section 3 of RFC 5288 */
    A_UINT32 tls_server_IV1;       /** CBC Mode: CBC_residue [Byte7:Byte4] */
    A_UINT32 tls_server_IV2;       /** CBC Mode: CBC_residue [Byte11:Byte8] */
    A_UINT32 tls_server_IV3;       /** CBC Mode: CBC_residue [Byte15:Byte12] */
} wmi_oic_ping_offload_params_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_oic_set_enable_cmd_fixed_param */
    A_UINT32 tlv_header; /** TLV Header*/
    A_UINT32 vdev_id;    /** Interface number */
    A_UINT32 session;    /** Session ID*/
    A_UINT32 enable;     /** 1: Enable , 0: Disable */
} wmi_oic_ping_offload_set_enable_cmd_fixed_param;

/** wlan OIC events */
typedef enum {
    WMI_WLAN_OIC_REASON_UNKNOWN      = 0, /** Unknown */
    WMI_WLAN_OIC_REASON_HOST_WAKE    = 1, /** No error , but host is woken up due to other reasons */
    WMI_WLAN_OIC_REASON_TCP_TIMEOUT  = 2, /** TCP Timeout */
    WMI_WLAN_OIC_REASON_PING_TIMEOUT = 3, /** OIC Ping resposnse timeout */
    WMI_WLAN_OIC_REASON_TLS_ERROR    = 4, /** TLS decryption error */
} WMI_OIC_WAKEUP_REASON;

typedef struct {
    A_UINT32 tlv_header;           /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oic_ind_event_fixed_param */
    A_UINT32 vdev_id;              /** unique id identifying the VDEV */
    A_UINT32 session;              /** Session ID from driver */
    A_UINT32 reason;               /** wakeup reason as per WMI_OIC_WAKEUP_REASON */
    A_UINT32 tcp_tx_seq;           /** Current TCP sequence number */
    A_UINT32 tcp_ack_num;          /** Current TCP Acknowledgement number */
    A_UINT32 tls_tx_seq0;          /** Tx sequence number [31:00], incremented after every TLS packet transmission */
    A_UINT32 tls_tx_seq1;          /** Tx sequence number [63:32] */
    A_UINT32 tls_rx_seq0;          /** Rx sequence number [31:00], incremented after every TLS packet reception */
    A_UINT32 tls_rx_seq1;          /** Rx sequence number [63:32] */
    A_UINT32 tls_client_IV0;       /** CBC Mode: CBC_residue [Byte03:Byte00] refer section 6.2.3.2. CBC Block Cipher in RFC 5246 */
    A_UINT32 tls_client_IV1;       /** CBC Mode: CBC_residue [Byte7:Byte4] */
    A_UINT32 tls_client_IV2;       /** CBC Mode: CBC_residue [Byte11:Byte8] */
    A_UINT32 tls_client_IV3;       /** CBC Mode: CBC_residue [Byte15:Byte12] */
    A_UINT32 tls_server_IV0;       /** CBC Mode: CBC_residue [Byte3:Byte0] refer section 6.2.3.2. CBC Block Cipher in RFC 5246 */
    A_UINT32 tls_server_IV1;       /** CBC Mode: CBC_residue [Byte7:Byte4] */
    A_UINT32 tls_server_IV2;       /** CBC Mode: CBC_residue [Byte11:Byte8] */
    A_UINT32 tls_server_IV3;       /** CBC Mode: CBC_residue [Byte15:Byte12] */
} wmi_oic_ping_handoff_event;

typedef struct {
   /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_dhcp_lease_renew_offload_fixed_param */
    A_UINT32 tlv_header;     /** TLV Header*/
    A_UINT32 vdev_id;        /** Vdev ID */
    A_UINT32 enable;         /** 1: Enable 0: Disable*/
    A_UINT32 srv_ip;         /** DHCP Server IP address (IPv4) */
    A_UINT32 client_ip;      /** Device IP address (IPv4) */
    wmi_mac_addr srv_mac;    /** DHCP Server MAC address */
    A_UINT32 parameter_list; /** Optional Parameter list. RFC 1533 gives the complete set of options defined for use with DHCP */
} wmi_dhcp_lease_renew_offload_cmd_fixed_param;

/** WLAN DHCP Lease Renew Events */
typedef enum {
    WMI_WLAN_DHCP_RENEW_REASON_UNKNOWN  = 0, /** Unknown */
    WMI_WLAN_DHCP_RENEW_REASON_ACK_TIMEOUT  = 1, /** DHCP ACK Timeout */
    WMI_WLAN_DHCP_RENEW_REASON_NACK     = 2, /** DHCP error */
} WMI_DHCP_RENEW_WAKEUP_REASON;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dhcp_renew_ind_event_fixed_param */
    A_UINT32 vdev_id;    /** unique id identifying the VDEV */
    A_UINT32 reason;     /** wakeup reason as per enum WMI_DHCP_RENEW_WAKEUP_REASON*/
} wmi_dhcp_lease_renew_event;

/** WMI_STA_SMPS_PARAM_CMDID */
typedef enum {
    /** RSSI threshold to enter Dynamic SMPS mode from inactive mode */
    WMI_STA_SMPS_PARAM_UPPER_RSSI_THRESH = 0,
    /** RSSI threshold to enter Stalled-D-SMPS mode from D-SMPS mode or
     * to enter D-SMPS mode from Stalled-D-SMPS mode */
    WMI_STA_SMPS_PARAM_STALL_RSSI_THRESH = 1,
    /** RSSI threshold to disable SMPS modes */
    WMI_STA_SMPS_PARAM_LOWER_RSSI_THRESH = 2,
    /** Upper threshold for beacon-RSSI. Used to reduce RX chainmask. */
    WMI_STA_SMPS_PARAM_UPPER_BRSSI_THRESH = 3,
    /** Lower threshold for beacon-RSSI. Used to increase RX chainmask. */
    WMI_STA_SMPS_PARAM_LOWER_BRSSI_THRESH = 4,
    /** Enable/Disable DTIM 1chRx feature */
    WMI_STA_SMPS_PARAM_DTIM_1CHRX_ENABLE = 5
} wmi_sta_smps_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_sta_smps_param_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** SMPS parameter (see wmi_sta_smps_param) */
    A_UINT32 param;
    /** Value of SMPS parameter */
    A_UINT32 value;
} wmi_sta_smps_param_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_mcc_sched_sta_traffic_stats */
    A_UINT32 tlv_header;
    /* TX stats */
    A_UINT32 txBytesPushed;
    A_UINT32 txPacketsPushed;
    /* RX stats */
    A_UINT32 rxBytesRcvd;
    A_UINT32 rxPacketsRcvd;
    A_UINT32 rxTimeTotal;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
} wmi_mcc_sched_sta_traffic_stats;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_mcc_sched_traffic_stats_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Duration over which the host stats were collected */
    A_UINT32 duration;
    /** Number of stations filled in following stats array */
    A_UINT32 num_sta;
    /* Following this struct are the TLVs:
     * wmi_mcc_sched_sta_traffic_stats mcc_sched_sta_traffic_stats_list;
     */
} wmi_mcc_sched_traffic_stats_cmd_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals  WMITLV_TAG_STRUC_wmi_batch_scan_enable_cmd_fixed_param */
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /*Batch scan enable command parameters*/
    A_UINT32 scanInterval;
    A_UINT32 numScan2Batch;
    A_UINT32 bestNetworks;
    A_UINT32 rfBand;
    A_UINT32 rtt;
} wmi_batch_scan_enable_cmd_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_batch_scan_enabled_event_fixed_param  */
    A_UINT32 supportedMscan;
}  wmi_batch_scan_enabled_event_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals  WMITLV_TAG_STRUC_wmi_batch_scan_disable_cmd_fixed_param */
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    A_UINT32   param;
} wmi_batch_scan_disable_cmd_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals  WMITLV_TAG_STRUC_wmi_batch_scan_trigger_result_cmd_fixed_param */
 /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    A_UINT32 param;
} wmi_batch_scan_trigger_result_cmd_fixed_param;

typedef struct
{
    A_UINT32 tlv_header;
    wmi_mac_addr   bssid;     /* BSSID */
    wmi_ssid   ssid;     /* SSID */
    A_UINT32   ch;           /* Channel number */
    A_UINT32   rssi;         /* RSSI or Level */
    /* Timestamp when Network was found. Used to calculate age based on timestamp in GET_RSP msg header */
    A_UINT32  timestamp;
    A_UINT32  ch_freq; /* Channel frequency in MHz */
} wmi_batch_scan_result_network_info;

typedef struct
{
    A_UINT32 tlv_header;
    A_UINT32 scanId;                         /* Scan List ID. */
    /* No of AP in a Scan Result. Should be same as bestNetwork in SET_REQ msg */
    A_UINT32 numNetworksInScanList;
    A_UINT32 netWorkStartIndex;  /* indicate the start index of network info*/
} wmi_batch_scan_result_scan_list;

#define LPI_IE_BITMAP_BSSID                  0x00000001     /* if this bit is set, bssid of the scan response frame is sent as the first IE in the data buffer sent to LOWI LP. */
#define LPI_IE_BITMAP_IS_PROBE               0x00000002     /* send true or false based on scan response frame being a Probe Rsp or not */
#define LPI_IE_BITMAP_SSID                   0x00000004     /* send ssid from received scan response frame */
#define LPI_IE_BITMAP_RSSI                   0x00000008     /* send RSSI value reported by HW for the received scan response after adjusting with noise floor */
#define LPI_IE_BITMAP_CHAN                   0x00000010     /* send channel number from the received scan response */
#define LPI_IE_BITMAP_AP_TX_PWR              0x00000020     /* send Tx power from TPC IE of scan rsp */
#define LPI_IE_BITMAP_TX_RATE                0x00000040     /* send rate of the received frame as reported by HW. */
#define LPI_IE_BITMAP_80211_MC_SUPPORT       0x00000080     /* send true or false based on the received scan rsp was from a 11mc supported AP or not. */
#define LPI_IE_BITMAP_TSF_TIMER_VALUE        0x00000100     /* send timestamp reported in the received scan rsp frame. */
#define LPI_IE_BITMAP_AGE_OF_MEASUREMENT     0x00000200     /* (current system time - received time) = duration of time scan rsp frame data is kept in the buffer before sending to LOWI LP. */
/*
 * TEMPORARY alias of incorrect old name the correct name.
 * This alias will be removed once all references to the old name have been fixed.
 */
#define LPI_IE_BITMAP_AGE_OF_MESAUREMENT LPI_IE_BITMAP_AGE_OF_MEASUREMENT
#define LPI_IE_BITMAP_CONN_STATUS            0x00000400     /* If an infra STA is active and connected to an AP, true value is sent else false. */
#define LPI_IE_BITMAP_MSAP_IE                0x00000800     /* info on the vendor specific proprietary IE MSAP */
#define LPI_IE_BITMAP_SEC_STATUS             0x00001000     /* we indicate true or false based on if the AP has WPA or RSN security enabled */
#define LPI_IE_BITMAP_DEVICE_TYPE            0x00002000     /* info about the beacons coming from an AP or P2P or NAN device. */
#define LPI_IE_BITMAP_CHAN_IS_PASSIVE        0x00004000     /* info on whether the scan rsp was received from a passive channel */
#define LPI_IE_BITMAP_DWELL_TIME             0x00008000     /* send the scan dwell time of the channel on which the current scan rsp frame was received. */
#define LPI_IE_BITMAP_BAND_CENTER_FREQ1      0x00010000     /* the center frequencies in case AP is supporting wider channels than 20 MHz */
#define LPI_IE_BITMAP_BAND_CENTER_FREQ2      0x00020000     /* same as above */
#define LPI_IE_BITMAP_PHY_MODE               0x00040000     /* PHY mode indicates a, b, ,g, ac and other combinations */
#define LPI_IE_BITMAP_SCAN_MODULE_ID         0x00080000     /* scan module id indicates the scan client who originated the scan */
#define LPI_IE_BITMAP_SCAN_ID                0x00100000     /* extscan inserts the scan cycle count for this value; other scan clients can insert the scan id of the scan, if needed. */
#define LPI_IE_BITMAP_FLAGS                  0x00200000     /* reserved as a bitmap to indicate more scan information; one such use being to indicate if the on-going scan is interrupted or not */
#define LPI_IE_BITMAP_CACHING_REQD           0x00400000     /* extscan will use this field to indicate if this frame info needs to be cached in LOWI LP or not */
#define LPI_IE_BITMAP_REPORT_CONTEXT_HUB     0x00800000     /* extscan will use this field to indicate to LOWI LP whether to report result to context hub or not. */
#define LPI_IE_BITMAP_CHRE_RADIO_CHAIN       0x01000000     /* include radio chain and RSSI per chain information if this bit is set - for CHRE */

/* 0x02000000, 0x04000000, and 0x08000000 are unused / available */

#define LPI_IE_BITMAP_CHRE_ESS               0x10000000     /* ESS capability info for CHRE */
#define LPI_IE_BITMAP_CHRE_SEC_MODE          0x20000000     /* Security capability info for CHRE */
#define LPI_IE_BITMAP_CHRE_SUPPORTED_RATE    0x40000000     /* Highest MCS corresponding NCC for TX and RX */
#define LPI_IE_BITMAP_ALL                    0xFFFFFFFF

typedef struct {
    A_UINT32 tlv_header;
    /**A_BOOL indicates LPI mgmt snooping enable/disable*/
    A_UINT32 enable;
    /**LPI snooping mode*/
    A_UINT32 snooping_mode;
    /** LPI interested IEs in snooping context */
    A_UINT32 ie_bitmap;
} wmi_lpi_mgmt_snooping_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_start_scan_cmd_fixed_param */
    /** Scan ID */
    A_UINT32 scan_id;
    /** Scan requestor ID */
    A_UINT32 scan_req_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32 vdev_id;
    /** LPI interested IEs in scan context */
    A_UINT32 ie_bitmap;
    /** Scan Priority, input to scan scheduler */
    A_UINT32 scan_priority;
    /** dwell time in msec on active channels */
    A_UINT32 dwell_time_active;
    /** dwell time in msec on passive channels */
    A_UINT32 dwell_time_passive;
    /** min time in msec on the BSS channel,only valid if atleast one VDEV is active*/
    A_UINT32 min_rest_time;
    /** max rest time in msec on the BSS channel,only valid if at least one VDEV is active*/
    /** the scanner will rest on the bss channel at least min_rest_time. after min_rest_time the scanner
     *  will start checking for tx/rx activity on all VDEVs. if there is no activity the scanner will
     *  switch to off channel. if there is activity the scanner will let the radio on the bss channel
     *  until max_rest_time expires.at max_rest_time scanner will switch to off channel
     *  irrespective of activity. activity is determined by the idle_time parameter.
     */
    A_UINT32 max_rest_time;
    /** time before sending next set of probe requests.
     *   The scanner keeps repeating probe requests transmission with period specified by repeat_probe_time.
     *   The number of probe requests specified depends on the ssid_list and bssid_list
     */
    A_UINT32 repeat_probe_time;
    /** time in msec between 2 consecutive probe requests with in a set. */
    A_UINT32 probe_spacing_time;
    /** data inactivity time in msec on bss channel that will be used by scanner for measuring the inactivity  */
    A_UINT32 idle_time;
    /** maximum time in msec allowed for scan  */
    A_UINT32 max_scan_time;
    /** delay in msec before sending first probe request after switching to a channel */
    A_UINT32 probe_delay;
    /** Scan control flags */
    A_UINT32 scan_ctrl_flags;
    /** Burst duration time in msec*/
    A_UINT32 burst_duration;

    /** # if channels to scan. In the TLV channel_list[] */
    A_UINT32 num_chan;
    /** number of bssids. In the TLV bssid_list[] */
    A_UINT32 num_bssid;
    /** number of ssid. In the TLV ssid_list[] */
    A_UINT32 num_ssids;
    /** number of bytes in ie data. In the TLV ie_data[] */
    A_UINT32 ie_len;
    /** Scan control flags extended (see WMI_SCAN_FLAG_EXT_xxx) */
    A_UINT32 scan_ctrl_flags_ext;

/**
 * TLV (tag length value) parameters follow the scan_cmd
 * structure. The TLV's are:
 *     A_UINT32 channel_list[]; // in MHz
 *     wmi_ssid ssid_list[];
 *     wmi_mac_addr bssid_list[];
 *     A_UINT8 ie_data[];
 */
} wmi_lpi_start_scan_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_stop_scan_cmd_fixed_param */
    /** Scan requestor ID */
    A_UINT32 scan_req_id;
    /** Scan ID */
    A_UINT32 scan_id;
    /**
     * Req Type
     * req_type should be WMI_SCAN_STOP_ONE, WMI_SCN_STOP_VAP_ALL or WMI_SCAN_STOP_ALL
     * WMI_SCAN_STOP_ONE indicates to stop a specific scan with scan_id
     * WMI_SCN_STOP_VAP_ALL indicates to stop all scan requests on a specific vDev with vdev_id
     * WMI_SCAN_STOP_ALL indicates to stop all scan requests in both Scheduler's queue and Scan Engine
     */
    A_UINT32 req_type;
    /**
     * vDev ID
     * used when req_type equals to WMI_SCN_STOP_VAP_ALL, it indexed the vDev on which to stop the scan
     */
    A_UINT32 vdev_id;
} wmi_lpi_stop_scan_cmd_fixed_param;

typedef enum {
   WMI_LPI_DEVICE_TYPE_AP = 1,
   WMI_LPI_DEVICE_TYPE_P2P = 2,
   WMI_LPI_DEVICE_TYPE_NAN = 3,
} wmi_lpi_device_type;

typedef struct
{
    A_UINT32 tlv_header;
    /** Scan requestor ID */
    A_UINT32 scan_req_id;
    A_UINT32 ie_bitmap;
    A_UINT32 data_len;
}  wmi_lpi_result_event_fixed_param;

typedef enum {
   /** User scan Request completed */
   WMI_LPI_STATUS_SCAN_REQ_COMPLED = 0,
   /** User Request was never serviced */
   WMI_LPI_STATUS_DROPPED_REQ = 1,
   /** Illegal channel Req */
   WMI_LPI_STATUS_ILLEGAL_CHAN_REQ = 2,
   /** Illegal Operation Req */
   WMI_LPI_STATUS_ILLEGAL_OPER_REQ = 3,
   /** Request Aborted */
   WMI_LPI_STATUS_REQ_ABORTED = 4,
   /** Request Timed Out */
   WMI_LPI_STATUS_REQ_TIME_OUT = 5,
   /** Medium Busy, already there
    * is a scan is going on */
   WMI_LPI_STATUS_MEDIUM_BUSY = 6,
   /** Extscan is the scan client whose scan complete event is triggered */
   WMI_LPI_STATUS_EXTSCAN_CYCLE_AND_SCAN_REQ_COMPLETED = 7,
} wmi_lpi_staus;

typedef struct
{
    A_UINT32      tlv_header;
    wmi_lpi_staus status;
    /** Scan requestor ID */
    A_UINT32      scan_req_id;
}  wmi_lpi_status_event_fixed_param;


typedef struct
{
    A_UINT32      tlv_header;
    wmi_mac_addr  bssid;
    wmi_ssid      ssid;
    A_UINT32      freq;
    A_UINT32      rssi;
    A_UINT32      vdev_id;
}  wmi_lpi_handoff_event_fixed_param;
typedef struct
{
    A_UINT32 tlv_header;
    A_UINT32 timestamp;   /*timestamp of batch scan event*/
    A_UINT32 numScanLists;  /*number of scan in this event*/
    A_UINT32 isLastResult;  /*is this event a last event of the whole batch scan*/
}  wmi_batch_scan_result_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_p2p_noa_event_fixed_param  */
    A_UINT32 vdev_id;
/* This TLV is followed by p2p_noa_info for vdev :
 *     wmi_p2p_noa_info p2p_noa_info;
 */
} wmi_p2p_noa_event_fixed_param;

#define WMI_RFKILL_CFG_RADIO_LEVEL_OFFSET      6
#define WMI_RFKILL_CFG_RADIO_LEVEL_MASK      0x1

#define WMI_RFKILL_CFG_GPIO_PIN_NUM_OFFSET      0
#define WMI_RFKILL_CFG_GPIO_PIN_NUM_MASK      0x3f

#define WMI_RFKILL_CFG_PIN_AS_GPIO_OFFSET      7
#define WMI_RFKILL_CFG_PIN_AS_GPIO_MASK      0xf

typedef struct {
    /** TLV tag and len; tag equals
     * */
    A_UINT32 tlv_header;
    /** gpip pin number */
    A_UINT32 gpio_pin_num;
    /** gpio interrupt type */
    A_UINT32 int_type;
    /** RF radio status */
    A_UINT32 radio_state;
} wmi_rfkill_mode_param;

typedef enum {
    WMI_SET_LED_SYS_POWEROFF,
    WMI_SET_LED_SYS_S3_SUSPEND,
    WMI_SET_LED_SYS_S4_S5,
    WMI_SET_LED_SYS_DRIVER_DISABLE,
    WMI_SET_LED_SYS_WAKEUP,
    WMI_SET_LED_SYS_ALWAYS_ON, /* just for test! */
    WMI_SET_LED_SYS_POWERON,
} wmi_led_sys_state_param;

typedef enum {
    WMI_CONFIG_LED_TO_VDD = 0,
    WMI_CONFIG_LED_TO_GND = 1,
} wmi_config_led_connect_type;

typedef enum {
   WMI_CONFIG_LED_NOT_WITH_BT = 0,
   WMI_CONFIG_LED_WITH_BT = 1,
} wmi_config_led_with_bt_flag;

typedef enum {
   WMI_CONFIG_LED_DISABLE = 0,
   WMI_CONFIG_LED_ENABLE  = 1,
} wmi_config_led_enable_flag;

typedef enum {
    WMI_CONFIG_LED_HIGH_UNSPECIFIED = 0,
    WMI_CONFIG_LED_HIGH_OFF         = 1,
    WMI_CONFIG_LED_HIGH_ON          = 2,
} wmi_config_led_on_flag;

typedef enum {
    WMI_CONFIG_LED_UNSPECIFIED = 0,
    WMI_CONFIG_LED_ON          = 1,
    WMI_CONFIG_LED_OFF         = 2,
    WMI_CONFIG_LED_DIM         = 3,
    WMI_CONFIG_LED_BLINK       = 4,
    WMI_CONFIG_LED_TXRX        = 5,
} wmi_config_led_operation_type;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_pdev_set_led_config_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* Set GPIO pin */
    A_UINT32 led_gpio_pin;
    /* Set connect type defined in wmi_config_led_connect_type */
    A_UINT32 connect_type;
    /* Set flag defined in wmi_config_led_with_bt_flag*/
    A_UINT32 with_bt;
    /* Set LED enablement defined in wmi_config_led_enable_flag */
    A_UINT32 led_enable;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /* see wmi_config_led_operation_type enum */
    A_UINT32 led_operation_type;
    /* see wmi_config_led_on_flag enum */
    A_UINT32 led_on_flag;      /* configure high/low on/off sense */
    A_UINT32 led_on_interval;  /* for blink function; unit: ms */
    A_UINT32 led_off_interval; /* for blink function; unit: ms */
    A_UINT32 led_repeat_cnt;   /* for blink function: how many blinks */
} wmi_pdev_set_led_config_cmd_fixed_param;

#define WMI_WNTS_CFG_GPIO_PIN_NUM_OFFSET 0
#define WMI_WNTS_CFG_GPIO_PIN_NUM_MASK   0xff

/** WMI_SMARTANT_STATE_CHANGE_EVENTIDWMI_SMARTANT_STATE_CHANGE_EVENTID
 *    report Smart Antenna status to host */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_smartant_event_fixed_param */
    A_UINT32 tlv_header;
    /** whether Antenna Controller is still alive or offline. */
    A_UINT32 smart_ant_AC_alive;
} wmi_smartant_state_param;

/** WMI_PEER_INFO_REQ_CMDID
 *   Request FW to provide peer info */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_info_req_cmd_fixed_param   */
    A_UINT32 tlv_header;
    /** In order to get the peer info for a single peer, host shall
     *  issue the peer_mac_address of that peer. For getting the
     *  info all peers, the host shall issue 0xFFFFFFFF as the mac
     *  address. The firmware will return the peer info for all the
     *  peers on the specified vdev_id */
    wmi_mac_addr peer_mac_address;
    /** vdev id */
    A_UINT32 vdev_id;
} wmi_peer_info_req_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_info */
    A_UINT32 tlv_header;
    /** mac addr of the peer */
    wmi_mac_addr peer_mac_address;
    /** data_rate of the peer */
    A_UINT32 data_rate;
    /** RSSI of the peer */
    A_UINT32 rssi;
    /** tx fail count */
    A_UINT32 tx_fail_cnt;
} wmi_peer_info;

/** FW response with the peer info */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_info_event_fixed_param   */
    A_UINT32 tlv_header;
    /** number of peers in peer_info */
    A_UINT32 num_peers;
    /* Set to 1 only if vdev_id field is valid */
    A_UINT32 valid_vdev_id;
    /* VDEV to which the peer belongs to */
    A_UINT32 vdev_id;
    /* This TLV is followed by another TLV of array of structs
     * wmi_peer_info peer_info[];
     */
} wmi_peer_info_event_fixed_param;

/** WMI_PEER_ANTDIV_INFO_REQ_CMDID
 *   Request FW to provide peer info */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_antdiv_info_req_cmd_fixed_param   */
    A_UINT32 tlv_header;
    /** In order to get the peer antdiv info for a single peer, host shall
     *  issue the peer_mac_address of that peer. For getting the
     *  info all peers, the host shall issue 0xFFFFFFFF as the mac
     *  address. The firmware will return the peer info for all the
     *  peers on the specified vdev_id */
    wmi_mac_addr peer_mac_address;
    /** vdev id */
    A_UINT32 vdev_id;
} wmi_peer_antdiv_info_req_cmd_fixed_param;

/** FW response with the peer antdiv info */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_antdiv_info_event_fixed_param   */
    A_UINT32 tlv_header;
    /** number of peers in peer_info */
    A_UINT32 num_peers;
    /* VDEV to which the peer belongs to */
    A_UINT32 vdev_id;
    /* This TLV is followed by another TLV of array of structs
     * wmi_peer_antdiv_info peer_antdiv_info[];
     */
} wmi_peer_antdiv_info_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_antdiv_info */
    A_UINT32 tlv_header;
    /** mac addr of the peer */
    wmi_mac_addr peer_mac_address;
    /** per chain RSSI of the peer, for up to 8 chains.
     * Each chain's entry reports the RSSI for different bandwidths:
     * bits 7:0   -> primary 20 MHz
     * bits 15:8  -> secondary 20 MHz of  40 MHz channel (if applicable)
     * bits 23:16 -> secondary 40 MHz of  80 MHz channel (if applicable)
     * bits 31:24 -> secondary 80 MHz of 160 MHz channel (if applicable)
     * Each of these 8-bit RSSI reports is in dB units, with respect to
     * the noise floor.
     * 0x80 means invalid.
     * All unused bytes within used chain_rssi indices shall be set to 0x80.
     * All unused chain_rssi indices shall be set to 0x80808080.
     */
    A_INT32 chain_rssi[8];
} wmi_peer_antdiv_info;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_msduq_qdepth_thresh_update */

    /** tid_number */
    A_UINT32 tid_num;

    /** msduq_mask to set the value
     * bit 0 - HI-PRI msdu flowq qdepth threshold need to update if set
     * bit 1 - LOW-PRI msdu flowq qdepth threshold need to update if set
     * bit 2 - UDP msdu flowq qdepth threshold need to update if set
     * bit 3 - NON-UDP msdu flowq qdepth threshold need to update if set
     * rest of bits are reserved and set to 0.
     */
    A_UINT32 msduq_update_mask;

    /** Qdepth threshold value
     * If number of msdus in a queue excess over qdepth_thresh_value value
     * while queuing msdu's then we drop new msdus.
     * (Though dropping older (stale) data rather than newer data might be
     * preferable, the dropping is performed by MAC HW, and there's no option
     * to configure the HW to do head dropping rather than tail dropping.)
     */
    A_UINT32 qdepth_thresh_value;
} wmi_msduq_qdepth_thresh_update;

/** WMI_PEER_TID_MSDUQ_QDEPTH_THRESH_UPDATE_CMDID
 *   Request FW to update msduq qdepth threshold per TID per peer */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param
     */
    A_UINT32 tlv_header;

    /** pdev id
     * The pdev_id can be determined from the vdev_id, but the pdev_id
     * is explicitly provided so it can be used for sanity checking.
     */
    A_UINT32 pdev_id;

    /** vdev id */
    A_UINT32 vdev_id;

    /**
     * To set the peer msduq qdepth threshold update for a single peer,
     * the host shall send mac address for which peer need to be updated.
     */
    wmi_mac_addr peer_mac_address;

    /** number of payload update tlvs */
    A_UINT32 num_of_msduq_updates;

    /** Followed by the variable length TLV msduq_qdepth_updates:
     *  wmi_msduq_qdepth_th_update msduq_qdepth_thshd_update_list[]
     */
} wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param;

/**
 * ACK policy to be followed for the TID
 */
typedef enum {
    /** Used when the host does not want to configure the ACK policy */
    WMI_PEER_TID_CONFIG_ACK_POLICY_IGNORE,
    /** Allow ACK for the TID */
    WMI_PEER_TID_CONFIG_ACK,
    /** Do not expect ACK for the TID */
    WMI_PEER_TID_CONFIG_NOACK,
} WMI_PEER_TID_CONFIG_ACK_POLICY;

/**
 * Aggregation control policy for the TID
 */
typedef enum {
    /** Used when the host does not want to configure the aggregation policy */
    WMI_PEER_TID_CONFIG_AGGR_CONTROL_IGNORE,
    /** Enable aggregation for the TID */
    WMI_PEER_TID_CONFIG_AGGR_CONTROL_ENABLE,
    /** Disable aggregation for the TID */
    WMI_PEER_TID_CONFIG_AGGR_CONTROL_DISABLE,
} WMI_PEER_TID_CONFIG_AGGR_CONTROL;

/**
 * Rate control policy for the TID
 */
typedef enum {
    /** Used when the host does not want to configure the rate control policy */
    WMI_PEER_TID_CONFIG_RATE_CONTROL_IGNORE,
    /** Auto rate control */
    WMI_PEER_TID_CONFIG_RATE_CONTROL_AUTO,
    /** Fixed rate control */
    WMI_PEER_TID_CONFIG_RATE_CONTROL_FIXED_RATE,
    /** Set the Default lowest rate (6Mbps in 5GHZ and 1Mbps in 2GHZ) */
    WMI_PEER_TID_CONFIG_RATE_CONTROL_DEFAULT_LOWEST_RATE,
    /**
     * Set the highest rate cap allowed for this TID.
     * Rate cap is specified in rate code format,
     * i.e. NSS and MCS combined as shown below:
     * b'5-b'4 indicate the NSS (0 - 1x1, 1 - 2x2, 2 - 3x3, 3 - 4x4)
     * b'3-b'0 indicate the MCS
     */
    WMI_PEER_TID_CONFIG_RATE_UPPER_CAP,
} WMI_PEER_TID_CONFIG_RATE_CONTROL;

/**
 * SW retry threshold for the TID
 */
typedef enum {
    /** Used when the host does not want to configure the SW retry threshold */
    WMI_PEER_TID_SW_RETRY_IGNORE = 0,
    WMI_PEER_TID_SW_RETRY_MIN = 1,
    WMI_PEER_TID_SW_RETRY_MAX = 30,
    /** No SW retry for the TID */
    WMI_PEER_TID_SW_RETRY_NO_RETRY = 0xFFFFFFFF,
} WMI_PEER_TID_CONFIG_SW_RETRY_THRESHOLD;

/*
 * values for tid_config_supported_bitmap field,
 * in wmi_peer_tid_configurations_cmd structure.
 */
typedef enum {
    /* Used to indicate that disable_rts_cts field is valid */
    WMI_PEER_TID_DISABLE_RTS_CTS_VALID      = 0x00000001,
    WMI_PEER_TID_MAX_NUM_MPDU_IN_PPDU_VALID = 0x00000002,
    WMI_PEER_TID_MAX_NUM_MSDU_IN_MPDU_VALID = 0x00000004,
} WMI_PEER_TID_EXT_CONFIG_VALID_BITMAP;

/*
 * Per TID level enable/disable of RTS/CTS for that peer.
 * Currently applicable only for "data tids" within targets which set
 * the RTSCTS_FOR_UNICAST_MGMT WMI service bit.
 *
 * Enum values/Expected values for disable_rts_cts of
 * WMI_PEER_TID_DISABLE_RTS_CTS_VALID as below:
 *
 * 0 (WMI_RTSCTS_RESET)   - Use default RTS/CTS
 * 1 (WMI_RTSCTS_DISABLE) - Disable RTS/CTS for every ppdu for that
 *                          configured data TID
 * 2 (WMI_RTSCTS_ENABLE)  - Enable RTS/CTS for  every ppdu for that
 *                          configured data TID
 */
typedef enum {
    WMI_RTSCTS_RESET   = 0,
    WMI_RTSCTS_DISABLE = 1,
    WMI_RTSCTS_ENABLE  = 2,
} WMI_PEER_TID_CONFIG_RTSCTS_CONTROL;

/**
 * MPDU Aggregate value for the TID
 */
typedef enum {
    /** Set the default Aggregation value configured in FW */
    WMI_PEER_TID_MAX_NUM_MPDU_IN_PPDU_DEFAULT,
    WMI_PEER_TID_MAX_NUM_MPDU_IN_PPDU_MIN = 1,
    WMI_PEER_TID_MAX_NUM_MPDU_IN_PPDU_MAX = 1024,
} WMI_PEER_TID_CONFIG_MAX_NUM_MPDU_IN_PPDU;

/**
 * MSDU Aggregate value for the TID
 */
typedef enum {
    /** Set the default Aggregation value configured in FW */
    WMI_PEER_TID_MAX_NUM_MSDU_IN_MPDU_DEFAULT,
    WMI_PEER_TID_MAX_NUM_MSDU_IN_MPDU_MIN = 1,
    WMI_PEER_TID_MAX_NUM_MSDU_IN_MPDU_MAX = 7,
} WMI_PEER_TID_CONFIG_MAX_NUM_MSDU_IN_MPDU;

/**
 * Command format for the TID configuration
 */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_tid_configurations_cmd_fixed_param
     */
    A_UINT32 tlv_header;

    /** vdev id */
    A_UINT32 vdev_id;

    /** peer MAC address */
    wmi_mac_addr peer_mac_address;

    /** TID number, generated by the caller.
     * Valid range for QoS TID : 0-15
     * Valid range for non QOS/Mgmt TID: 16-19
     * Any other TID number is invalid.
     */
    A_UINT32 tid_num;

    /** ACK policy - of type WMI_PEER_TID_CONFIG_ACK_POLICY */
    A_UINT32 ack_policy;

    /** Aggregation control - of type WMI_PEER_TID_CONFIG_AGGR_CONTROL */
    A_UINT32 aggr_control;

    /** Rate control - of type WMI_PEER_TID_CONFIG_RATE_CONTROL */
    A_UINT32 rate_control;

    /** Fixed rate control parameters - of type WMI_PEER_PARAM_FIXED_RATE.
     * This is applicable only when rate_control is
     * WMI_PEER_TID_CONFIG_RATE_CONTROL_FIXED_RATE
     */
    A_UINT32 rcode_rcflags;

    /** MPDU SW retry threshold - of type WMI_PEER_TID_CONFIG_SW_RETRY_THRESHOLD
     * This SW retry threshold limits the total number of retransmits of
     * nacked or unacked MPDUs, but it is up to the FW to decide what
     * tx rate to use during each retransmission.
     */
    A_UINT32 sw_retry_threshold;

    /*--- Start of extended structure ---*/
    /* Bitmap to indicate which fields in the extended structure are valid.
     * Bitmap values correspond to enum WMI_PEER_TID_EXT_CONFIG_VALID_BITMAP
     */
    A_UINT32 tid_config_supported_bitmap;

    /* Knob to enable/disable RTS/CTS per TID
     * Enum values/Expected values:
     *
     * 0 (WMI_RTSCTS_RESET)   - Use default RTS/CTS
     * 1 (WMI_RTSCTS_DISABLE) - Disable RTS/CTS for every ppdu for
     *                          that configured data TID
     * 2 (WMI_RTSCTS_ENABLE)  - Enable RTS/CTS for  every ppdu for
     *                          that configured data TID
     */
    A_UINT32 disable_rts_cts;

    /** Size for mpdu aggregation
     * (max MPDUs per PPDU)
     * Valid range : 1-1024 (refer to WMI_PEER_TID_MAX_NUM_MPDU_IN_PPDU_MIN,MAX)
     * When this field is set to 0, default aggregation value configured
     * in the fw will be used.
     * This is applicable only when aggr_control is
     * WMI_PEER_TID_CONFIG_AGGR_CONTROL_ENABLE
     */
    A_UINT32 max_num_mpdu_in_ppdu;

    /** Size for msdu aggregation
     * (max MSDUs per MPDU)
     * Valid range : 1-7 (refer to WMI_PEER_TID_MAX_NUM_MSDU_IN_MPDU_MIN,MAX)
     * When this field is set to 0, default aggregation value configured
     * in the fw will be used.
     * This is applicable only when aggr_control is
     * WMI_PEER_TID_CONFIG_AGGR_CONTROL_ENABLE
     */
    A_UINT32 max_num_msdu_in_mpdu;
} wmi_peer_tid_configurations_cmd_fixed_param;

/* The below enable/disable macros are used for both per peer CFR capture
 * control (as in wmi_peer_cfr_capture_cmd) and control of the entire periodic
 * CFR capture feature (as in WMI_PDEV_PARAM_PER_PEER_PERIODIC_CFR_ENABLE)
 */
#define WMI_PEER_CFR_CAPTURE_ENABLE   1
#define WMI_PEER_CFR_CAPTURE_DISABLE  0

#define WMI_PEER_CFR_ONE_SHOT_REQUEST 0
#define WMI_PEER_CFR_PERIODICITY_MIN  10 /* 10ms */
#define WMI_PEER_CFR_PERIODICITY_MAX  10*60*1000 /* 10 minutes */

/* Bandwidth of peer CFR captures */
typedef enum {
    WMI_PEER_CFR_CAPTURE_BW_20MHZ    = 0,
    WMI_PEER_CFR_CAPTURE_BW_40MHZ    = 1,
    WMI_PEER_CFR_CAPTURE_BW_80MHZ    = 2,
    WMI_PEER_CFR_CAPTURE_BW_160MHZ   = 3,
    WMI_PEER_CFR_CAPTURE_BW_80_80MHZ = 4,
    WMI_PEER_CFR_CAPTURE_BW_MAX,
} WMI_PEER_CFR_CAPTURE_BW;

/* Peer CFR capture method */
typedef enum {
    /* Send null frame on the requested bw and capture CFR on ACK */
    WMI_PEER_CFR_CAPTURE_METHOD_NULL_FRAME = 0,
    WMI_PEER_CFR_CAPTURE_METHOD_NULL_FRAME_WITH_PHASE = 1,
    WMI_PEER_CFR_CAPTURE_METHOD_PROBE_RESP = 2,
    /* New methods to be added here */
    WMI_PEER_CFR_CAPTURE_METHOD_MAX,
} WMI_PEER_CFR_CAPTURE_METHOD;

/*
 * Peer command structure to configure the CFR capture
 */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_cfr_capture_cmd_fixed_param
     */
    A_UINT32 tlv_header;

    /* WMI_PEER_CFR_CAPTURE_ENABLE: Enable CFR capture for the peer
     * WMI_PEER_CFR_CAPTURE_DISABLE: Disable CFR capture for the peer
     */
    A_UINT32 request;
    /* Peer MAC address. In AP mode, this is the address of the connected peer
     * for which CFR capture is needed. In case of STA mode, this is the address
     * of the AP to which the STA is connected
     */
    wmi_mac_addr mac_addr;
    /* vdev id */
    A_UINT32 vdev_id;
    /* Periodicity of measurement in ms.
     * WMI_PEER_CFR_ONE_SHOT_REQUEST: One-shot request i.e., Only one CFR
     * capture for the request and no periodic CFR captures.
     * The min value is WMI_PEER_CFR_PERIODICITY_MIN
     * The max value is WMI_PEER_CFR_PERIODICITY_MAX
     */
    A_UINT32 periodicity;
    /* BW of measurement - of type WMI_PEER_CFR_CAPTURE_BW */
    A_UINT32 bandwidth;
    /* Method used to capture CFR - of type WMI_PEER_CFR_CAPTURE_METHOD */
    A_UINT32 capture_method;
} wmi_peer_cfr_capture_cmd_fixed_param;

typedef enum {
    WMI_PEER_IND_SMPS = 0x0, /* spatial multiplexing power save */
    WMI_PEER_IND_OMN,        /* operating mode notification */
    WMI_PEER_IND_OMI,        /* operating mode indication */
} WMI_PEER_OPER_MODE_IND;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_oper_mode_change */
    A_UINT32 tlv_header;
    /** mac addr of the peer */
    wmi_mac_addr peer_mac_address;
    /** Peer type indication WMI_PEER_OPER_MODE_IND. */
    A_UINT32 ind_type;
    /** new_rxnss valid for all peer_operating mode ind. */
    A_UINT32 new_rxnss;
    /** new_bw  valid for peer_operating mode ind. OMN/OMI
     *  value of this bw is as per 11ax/ac standard:
     *  0 = 20MHz,1 = 40MHz, 2= 80MHz, 3 = 160MHz
     */
    A_UINT32 new_bw;
    /** new_txnss valid for peer_operating mode ind. OMI */
    A_UINT32 new_txnss;
    /** new_disablemu: disable mu mode
     *  valid for peer_operating mode ind. OMI
     */
    A_UINT32 new_disablemu;
} wmi_peer_oper_mode_change_event_fixed_param;

/** FW response when tx failure count has reached threshold
 *  for a peer */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_tx_fail_cnt_thr_event_fixed_param */
    A_UINT32 tlv_header;
    /** vdev id*/
    A_UINT32 vdev_id;
    /** mac address */
    wmi_mac_addr peer_mac_address;
    /** tx failure count - will eventually be removed and not used */
    A_UINT32 tx_fail_cnt;
    /** seq number of the nth tx_fail_event */
    A_UINT32 seq_no;
} wmi_peer_tx_fail_cnt_thr_event_fixed_param;

enum wmi_rmc_mode {
   /** Disable RMC */
   WMI_RMC_MODE_DISABLED = 0,
   /** Enable RMC */
   WMI_RMC_MODE_ENABLED = 1,
};

/** Enable RMC transmitter functionality. Upon
 *  receiving this, the FW shall mutlicast frames with
 *  reliability. This is a vendor
 *  proprietary feature. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_rmc_set_mode_cmd_fixed_param   */
    A_UINT32 tlv_header;
    /** vdev id*/
    A_UINT32 vdev_id;
    /** enable_rmc contains values from enum wmi_rmc_mode;
     *  Default value: 0 (disabled) */
    A_UINT32 enable_rmc;
} wmi_rmc_set_mode_cmd_fixed_param;

/** Configure transmission periodicity of action frames in a
 *  RMC network for the multicast transmitter */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_rmc_set_action_period_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** vdev id */
    A_UINT32 vdev_id;
    /** time period in milliseconds. Default: 300 ms.
       An action frame indicating the current leader is transmitted by the
       RMC transmitter once every 'periodity_msec' */
    A_UINT32 periodicity_msec;
} wmi_rmc_set_action_period_cmd_fixed_param;

/** Optimise Leader selection process in RMC functionality. For
 *  Enhancement/Debug purposes only */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_rmc_config_cmd_fixed_param   */
    A_UINT32 tlv_header;
    /** vdev id */
    A_UINT32 vdev_id;
    /** flags ::
     *  0x0001 - Enable beacon averaging
     *  0x0002 - Force leader selection
     *  0x0004 - Enable Timer based leader switch
     *  0x0008 - Use qos/NULL based for multicast reliability */
    A_UINT32 flags;
    /**  control leader change timeperiod (in seconds) */
    A_UINT32 peridocity_leader_switch;
    /** control activity timeout value for data rx (in seconds) */
    A_UINT32 data_activity_timeout;
    /** mac address of leader */
    wmi_mac_addr forced_leader_mac_addr;
} wmi_rmc_config_cmd_fixed_param;

/** MHF is generally implemented in
 *  the kernel. To decrease system power consumption, the
 *  driver can enable offloading this to the chipset. In
 *  order for the offload, the firmware needs the routing table.
 *  The host shall plumb the routing table into FW. The firmware
 *  shall perform an IP address lookup and forward the packet to
 *  the next hop using next hop's mac address. This is a vendor
 *  proprietary feature. */
enum wmi_mhf_ofl_mode {
   /** Disable MHF offload */
   WMI_MHF_OFL_MODE_DISABLED = 0,
   /** Enable MHF offload */
   WMI_MHF_OFL_MODE_ENABLED = 1,
};

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_mhf_offload_set_mode_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** vdev id*/
    A_UINT32 vdev_id;
    /** enable_mhf_ofl contains values from enum
     *  wmi_mhf_ofl_mode; Default value: 0 (disabled) */
    A_UINT32 enable_mhf_ofl;
} wmi_mhf_offload_set_mode_cmd_fixed_param;

enum wmi_mhf_ofl_table_action {
   /** Create MHF offload table in FW */
   WMI_MHF_OFL_TBL_CREATE = 0,
   /** Append to existing MHF offload table */
   WMI_MHF_OFL_TBL_APPEND = 1,
   /** Flush entire MHF offload table in FW */
   WMI_MHF_OFL_TBL_FLUSH = 2,
};

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_mhf_offload_plumb_routing_table_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** vdev id*/
    A_UINT32 vdev_id;
    /** action corresponds to values from enum
     *  wmi_mhf_ofl_table_action */
    A_UINT32 action;
    /** number of entries in the table */
    A_UINT32 num_entries;
/** Followed by the variable length TLV
 *  wmi_mhf_offload_routing_table_entry entries[] */
} wmi_mhf_offload_plumb_routing_table_cmd;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_mhf_offload_routing_table_entry */
    A_UINT32 tlv_header;
    /** Destination node's IP address */
    WMI_IPV4_ADDR dest_ipv4_addr;
    /** Next hop node's MAC address */
    wmi_mac_addr next_hop_mac_addr;
} wmi_mhf_offload_routing_table_entry;

enum {
    WMI_DFS_RADAR_PULSE_FLAG_MASK_PSIDX_DIFF_VALID = 0x00000001,
};

typedef struct {
    /** tlv tag and len, tag equals
      * WMITLV_TAG_STRUC_wmi_dfs_radar_event */
    A_UINT32 tlv_header;

    /** full 64 tsf timestamp get from MAC tsf timer indicates
     * the time that the radar event uploading to host, split
     * it to high 32 bit and lower 32 bit in fulltsf_high and
     * full_tsf_low
     */
    A_UINT32 upload_fullts_low;
    A_UINT32 upload_fullts_high;

    /** timestamp indicates the time when DFS pulse is detected
     * equal to ppdu_end_ts - radar_pusle_summary_ts_offset
     */
    A_UINT32 pulse_detect_ts;

    /** the duaration of the pulse in us */
    A_UINT32 pulse_duration;

    /** the center frequency of the radar pulse detected, KHz */
    A_UINT32 pulse_center_freq;

    /** bandwidth of current DFS channel, MHz */
    A_UINT32 ch_bandwidth;

    /** center channel frequency1 of current DFS channel, MHz */
    A_UINT16 ch_center_freq1;

    /** center channel frequency2 of current DFS channel, MHz,
     * reserved for 160 BW mode
     */
    A_UINT16 ch_center_freq2;

    /** flag to indicate if this pulse is chirp */
    A_UINT8  pulse_is_chirp;

    /** RSSI recorded in the ppdu */
    A_UINT8  rssi;

    /** extended RSSI info */
    A_UINT8  rssi_ext;

    union {
        A_UINT8 pmac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT8 pdev_id;
    };

    /** index of peak magnitude bin (signed) */
    A_INT32 peak_sidx;

    /** Max pulse chirp velocity in delta bins over chirp FFT interval */
    A_INT32 pulse_delta_peak;

    /** Max pulse chirp velocity variance in delta bins */
    A_INT32 pulse_delta_diff;

    /** the difference in the FFT peak index between short FFT and the first long FFT
     * psidx_diff = (first_long_fft_psidx - 4*first_short_fft_psidx),
     */
    A_INT32 psidx_diff;

    /** pulse_flags: see WMI_DFS_RADAR_PULSE_FLAG_MASK enum values
     *  0x0001 - set if psidx_diff is valid
     */
    A_UINT32 pulse_flags;

} wmi_dfs_radar_event_fixed_param;

enum {
    /* DEFAULT - target chooses what action to take, based on its thermal
     * management policy
     * Targets which throttle tx (and potentially rx) based on thermal
     * management thresholds specified by the host will shut down tx
     * if the temperature exceeds upper_thresh_degreeC.
     * Targets which simply inform the host about threshold breaches will
     * send a notification message to the host if the temperature exceeds
     * upper_thresh_degreeC.
     * Conversely, if the temperature was above upper_thresh_degreeC but
     * then drops to below lower_threshold_degreeC, the target will either
     * resume tx, or notify the host.
     */
    WMI_THERMAL_MGMT_ACTION_DEFAULT = 0,
    /* HALT_TRAFFIC -
     * If the temperature rises above upper_thresh_degreeC, the target will
     * halt tx.
     * If the temperature falls back below lower_thresh_degreeC, the target
     * will resume tx.
     */
    WMI_THERMAL_MGMT_ACTION_HALT_TRAFFIC = 1,
    /* NOTIFY_HOST - the target will notify the host if the temperature
     * either rises above upper_thresh_degreeC or falls below
     * lower_thresh_degreeC.
     */
    WMI_THERMAL_MGMT_ACTION_NOTIFY_HOST = 2,
    /* CHAIN SCALING -
     * The target will switch tx chain mask from multi chains to single chain
     * if the temperature rises above upper_thresh_degreeC.
     * The target will switch tx chainmask back to multi chains if the
     * temperature drops below upper_thresh_degreeC.
     */
    WMI_THERMAL_MGMT_ACTION_CHAINSCALING = 3,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_thermal_mgmt_cmd_fixed_param  */

    /*Thermal thresholds*/
    A_UINT32 lower_thresh_degreeC; /* in degree C*/
    A_UINT32 upper_thresh_degreeC; /* in degree C*/

    /*Enable/Disable Thermal Monitoring for Mitigation*/
    A_UINT32 enable;

    /* action: what the target should do when a thermal upper/lower threshold
     * is crossed.
     * Refer to the WMI_THERMAL_MGMT_ACTION enum.
     */
    A_UINT32 action;
    A_UINT32 threshold_warning_degreeC;
    A_UINT32 sample_rate_ms;
} wmi_thermal_mgmt_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_thermal_mgmt_event_fixed_param  */

    A_UINT32 temperature_degreeC;/* temperature in degree C*/
} wmi_thermal_mgmt_event_fixed_param;

/**
* This command is sent from WLAN host driver to firmware to
 * request firmware to configure auto shutdown timer in fw
 * 0 - Disable <1-19600>-Enabled and timer value is seconds (86400 seconds = 1 day maximum>
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_host_auto_shutdown_cfg_cmd_param  */
    A_UINT32 timer_value;   /** timer value; 0=disable */
} wmi_host_auto_shutdown_cfg_cmd_fixed_param;

enum wmi_host_auto_shutdown_reason {
    WMI_HOST_AUTO_SHUTDOWN_REASON_UNKNOWN = 0,
    WMI_HOST_AUTO_SHUTDOWN_REASON_TIMER_EXPIRY = 1,
    WMI_HOST_AUTO_SHUTDOWN_REASON_MAX,
};

/* WMI_HOST_AUTO_SHUTDOWN_EVENTID  */
typedef struct {
    A_UINT32    tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_host_auto_shutdown_event_fixed_param  */
    A_UINT32    shutdown_reason; /* value: wmi_host_auto_shutdown_reason */
} wmi_host_auto_shutdown_event_fixed_param;



/** New WMI command to support TPC CHAINMASK ADJUSTMENT ACCORDING TO a set of conditions specified in the command.
 *  fw will save c tpc offset/chainmask along with conditions and adjust tpc/chainmask when condition meet.
 *  This command is only used by some customer for  verification test.  It is not for end-user.
 *
 *  array of wmi_tpc_chainmask_config structures are passed with the command to specify multiple conditions.
 *
 *  The set of conditions include bt status, stbc status, band, phy_mode, 1stream/2streams, channel, rate. when all these conditions meet,
 *  the output(tpc_offset,chainmask) will be applied on per packet basis. ack_offset is applied based on channel condition only. When multiple
 *  conditions has the same channel ,then the first ack_offset will be applied. It is better for host driver to make sure the
 *  <channel, ack_offset> pair is unique.
 *
 *  the conditions (bt status, stbc status, band, phy_mode, 1steam/2streams, tpc_offset, ack_offset, chainmask) are combinedi into a single word
 *  called basic_config_info by bitmap
 *  to save memory. And channel & rate info will be tracked by 'channel' field and 'rate0', 'rate1' field because of its large combination.
 *
 *  'rate bit' or 'channel bit' field of basic_config_info indicate validity of the channel and rate fields.if rate bit is 0 then the rate field
 *   is ignored.
 *  disable will remove preious conditions from FW.
 *  conditions from the later command will over write conditions stored from a previous command.
 *
 */

#define WMI_TPC_CHAINMASK_CONFIG_BT_ON_OFF    0   /** dont' care the bt status */
#define WMI_TPC_CHAINMASK_CONFIG_BT_ON        1   /** apply only when bt on */
#define WMI_TPC_CHAINMASK_CONFIG_BT_OFF       2   /** apply only when bt off  */
#define WMI_TPC_CHAINMASK_CONFIG_BT_RESV1     3   /** reserved  */

#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_DONT_CARE   0   /**  don't care the chainmask */
#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_CHAIN0      1   /**  force to use Chain0 to send */
#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_CHAIN1      2   /**  force to use Chain1 to send */
#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_CHAIN0_CHAIN1  3   /** force to use Chain0 & Chain1 to send */

#define WMI_TPC_CHAINMASK_CONFIG_STBC_ON_OFF  0   /**  don't care about stbc  */
#define WMI_TPC_CHAINMASK_CONFIG_STBC_ON      1   /**  apply only when stbc on */
#define WMI_TPC_CHAINMASK_CONFIG_STBC_OFF     2   /**  apply only when stbc off */
#define WMI_TPC_CHAINMASK_CONFIG_STBC_RESV1   3   /**  reserved */

#define WMI_TPC_CHAINMASK_CONFIG_BAND_2G      0   /**  2G */
#define WMI_TPC_CHAINMASK_CONFIG_BAND_5G      1   /**  5G */

#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11B_2G    0        /** 11b 2G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11G_2G    1        /** 11g 2G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11N_2G    2        /** 11n 2G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11N_11AC_2G   3    /** 11n + 11ac 2G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11A_5G    4        /** 11a 5G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11N_5G    5        /** 11n 5G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11AC_5G   6        /** 11ac 5G */
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11N_11AC_5G  7     /** 11n + 11ac 5G */

#define WMI_TPC_CHAINMASK_CONFIG_STREAM_1           0    /** 1 stream  */
#define WMI_TPC_CHAINMASK_CONFIG_STREAM_2           1    /** 2 streams */

#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL_OFF        0    /** channel field is ignored */
#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL_ON         1    /** channel field needs to be checked */

#define WMI_TPC_CHAINMASK_CONFIG_RATE_OFF           0    /** rate field is ignored */
#define WMI_TPC_CHAINMASK_CONFIG_RATE_ON            1    /** rate field needs to be checked */

/**  Bit map definition for basic_config_info starts   */
#define WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET_S   0
#define WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET     (0x1f << WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET_S)
#define WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET_GET(x)     WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET)
#define WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET_SET(x,z)   WMI_F_RMW(x,(z) & 0x1f,WMI_TPC_CHAINMASK_CONFIG_TPC_OFFSET)

#define WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET_S      5
#define WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET        (0x1f << WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET_S)
#define WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET_GET(x)     WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET)
#define WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET_SET(x,z)   WMI_F_RMW(x, (z) & 0x1f, WMI_TPC_CHAINMASK_CONFIG_ACK_OFFSET)

#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_S  10
#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK   (0x3 << WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_S)
#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_GET(x)   WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_CHAINMASK)
#define WMI_TPC_CHAINMASK_CONFIG_CHAINMASK_SET(x,z)  WMI_F_RMW(x, (z) & 0x3, WMI_TPC_CHAINMASK_CONFIG_CHAINMASK)

#define WMI_TPC_CHAINMASK_CONFIG_BT_S       12
#define WMI_TPC_CHAINMASK_CONFIG_BT         (0x3 << WMI_TPC_CHAINMASK_CONFIG_BT_S)
#define WMI_TPC_CHAINMASK_CONFIG_BT_GET(x)     WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_BT)
#define WMI_TPC_CHAINMASK_CONFIG_BT_SET(x,z)   WMI_F_RMW(x, (z) & 0x3, WMI_TPC_CHAINMASK_CONFIG_BT)

#define WMI_TPC_CHAINMASK_CONFIG_STBC_S     14
#define WMI_TPC_CHAINMASK_CONFIG_STBC       (0x3 << WMI_TPC_CHAINMASK_CONFIG_STBC_S)
#define WMI_TPC_CHAINMASK_CONFIG_STBC_GET(x)     WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_STBC)
#define WMI_TPC_CHAINMASK_CONFIG_STBC_SET(x,z)   WMI_F_RMW(x, (z) & 0x3, WMI_TPC_CHAINMASK_CONFIG_STBC)

#define WMI_TPC_CHAINMASK_CONFIG_BAND_S     16
#define WMI_TPC_CHAINMASK_CONFIG_BAND       (0x1 << WMI_TPC_CHAINMASK_CONFIG_BAND_S)
#define WMI_TPC_CHAINMASK_CONFIG_BAND_GET(x)  WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_BAND)
#define WMI_TPC_CHAINMASK_CONFIG_BAND_SET(x,z) WMI_F_RMW(x, (z) & 0x1, WMI_TPC_CHAINMASK_CONFIG_BAND)

#define WMI_TPC_CHAINMASK_CONFIG_STREAM_S   17
#define WMI_TPC_CHAINMASK_CONFIG_STREAM     (0x1 << WMI_TPC_CHAINMASK_CONFIG_STREAM_S)
#define WMI_TPC_CHAINMASK_CONFIG_STREAM_GET(x)  WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_STREAM)
#define WMI_TPC_CHAINMASK_CONFIG_STREAM_SET(x,z)  WMI_F_RMW(x, (z) & 0x1, WMI_TPC_CHAINMASK_CONFIG_STREAM)

#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_S     18
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE       (0x7 << WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_S)
#define WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_GET(x) WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_PHY_MODE)
#define WMI_TPC_CHAINAMSK_CONFIG_PHY_MODE_SET(x,z)  WMI_F_RMW(x, (z) & 0x7, WMI_TPC_CHAINMASK_CONFIG_PHY_MODE)

#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL_S     21
/*
 * The deprecated old name (WMI_TPC_CHAINMASK_CONFIG_CHANNEL_EXIST)
 * is temporarily maintained as an alias for the correct name
 * (WMI_TPC_CHAINMASK_CONFIG_CHANNEL)
 */
#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL_EXIST WMI_TPC_CHAINMASK_CONFIG_CHANNEL
#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL       (0x1 << WMI_TPC_CHAINMASK_CONFIG_CHANNEL_S)
#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL_GET(x)  WMI_F_MS(x,WMI_TPC_CHAINMASK_CONFIG_CHANNEL)
#define WMI_TPC_CHAINMASK_CONFIG_CHANNEL_SET(x,z)  WMI_F_RMW(x, (z) & 0x1, WMI_TPC_CHAINMASK_CONFIG_CHANNEL)

#define WMI_TPC_CHAINMASK_CONFIG_RATE_S  22
/*
 * The deprecated old name (WMI_TPC_CHAINMASK_CONFIG_RATE_EXIST)
 * is temporarily maintained as an alias for the correct name
 * (WMI_TPC_CHAINMASK_CONFIG_RATE)
 */
#define WMI_TPC_CHAINMASK_CONFIG_RATE_EXIST WMI_TPC_CHAINMASK_CONFIG_RATE
#define WMI_TPC_CHAINMASK_CONFIG_RATE    (0x1 << WMI_TPC_CHAINMASK_CONFIG_RATE_S)
#define WMI_TPC_CHAINMASK_CONFIG_RATE_GET(x)   WMI_F_MS(x, WMI_TPC_CHAINMASK_CONFIG_RATE)
#define WMI_TPC_CHAINMASK_CONFIG_RATE_SET(x,z)  WMI_F_RMW(x, (z) & 0x1, WMI_TPC_CHAINMASK_CONFIG_RATE)

/**  Bit map definition for basic_config_info ends   */

typedef struct {
    A_UINT32 tlv_header;
    /** Basic condition defined as bit map above, bitmap is chosen to save memory.
     * Bit0  ~ Bit4: tpc offset which will be adjusted if condition matches, the unit is 0.5dB.  bit4 indicates signed
     * Bit5  ~ Bit9: ack offset which will be adjusted if condition matches, the unit is 0.5dB.  bit9 indicates signed
     * Bit10 ~ Bit11: chainmask  b'00: don't care, b'01: force to use chain0, b'10: force to use chain1, b'11: force to use chain0&chain1
     * Bit12 ~ Bit13: bt condition  b'00: don't care, b'01: apply only when bt on, b'10: apply only when bt off,  b'11: reserved
     * Bit14 ~ Bit15: stbc condition  b'00: don't care, b'01: apply only when stbc on, b'10: apply only when stbc off, b'11: reserved
     * Bit16 : band condition  b'0: 2G,  b'1: 5G
     * Bit17 : stream condition:  b'0: 1 stream, b'1: 2 streams
     * Bit18 ~ Bit20: phy mode condition: b'000: 11b 2g, b'001: 11g 2g, b'010: 11n 2g, b'011: 11n+11ac 2g, b'100: 11a, b'101: 11n 5g, b'110: 11ac 5g, b'111: 11n+11ac 5g
     * Bit21 : channel bit, if this bit is 0, then the following channel field is ignored
     * Bit22 : rate bit, if this bit is 0, then the following rate0&rate1 is ignored.
     * Bit23 ~ Bit31:  reserved
     */
    A_UINT32 basic_config_info;

    /** channel mapping bit rule: The lower bit corresponds with smaller channel.
     *  it depends on Bit14 of basic_config_info
     *  Total 24 channels for 5G
     *  36    40    44    48    52    56    60    64   100   104   108   112   116   120   124   128   132   136   140   149   153   157   161   165
     *  Total 14 channels for 2G
     *  1 ~ 14
     */
    A_UINT32 channel;

    /** rate mapping bit rule:  The lower bit corresponds with lower rate.
     *  it depends on Bit16 ~ Bit18 of basic_config_info, "phy mode condition"
     *  Legacy rates , 11b, 11g, 11A
     *  11n one stream (ht20, ht40) 8+8
     *  11n two streams (ht20, ht40) 8+8
     *  11ac one stream (vht20, vht40, vht80) 10+10+10
     *  11ac two streams (vht20, vht40, vht80) 10+10+10
     */
    A_UINT32 rate0;
    /** For example, for 11b, when rate0 equals 0x3, it means if actual_rate in [ "1Mbps", "2Mbps"] connection, the rate condition is true.
     *  For example, for 11g/11a, when rate0 equals 0xf0,it means "54Mbps", "48Mbps", "36Mbps", "24Mb's" is selected, while "18Mbps", "12Mbps", "9Mbps", "6Mbps" is not selected
     */

    /** only used for "11n+11ac" combined phy_mode, (WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11N_11AC_2G , WMI_TPC_CHAINMASK_CONFIG_PHY_MODE_11N_11AC_5G) in this case, 11n rates begins on rate0, while 11ac rates begins on rate1
     */
    A_UINT32 rate1;
} wmi_tpc_chainmask_config;

#define WMI_TPC_CHAINMASK_CONFIG_DISABLE   0   /** control the off for the tpc & chainmask*/
#define WMI_TPC_CHAINMASK_CONFIG_ENABLE    1   /** control the on for the tpc & chainmask*/

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 enable;  /** enable to set tpc & chainmask when conditions meet, 0: disabled,   1: enabled.  */
    A_UINT32 num_tpc_chainmask_configs;
    /** following this structure is num_tpc_chainmask_configs number of wmi_tpc_chainmask_config  */
} wmi_tpc_chainmask_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;        /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oem_dma_ring_cfg_req_fixed_param */
    A_UINT32 pdev_id;
    /**
     * Bits 31:0:   base address of ring [31:0]
     */
    A_UINT32 base_addr_lo;
    /**
     * Bits 3:0:    base address of ring [35:32]
     * Bits 31:4:   reserved
     */
    A_UINT32 base_addr_hi;
    /**
     * Bits 31:0:   address of head index [31:0]
     */
    A_UINT32 head_idx_addr_lo;
    /**
     * Bits 3:0:    address of head index [35:32]
     * Bits 31:4:   reserved
     */
    A_UINT32 head_idx_addr_hi;
    /**
     * Bits 31:0:   address of tail index [31:0]
     */
    A_UINT32 tail_idx_addr_lo;
    /**
     * Bits 3:0:    address of tail index [35:32]
     * Bits 31:4:   reserved
     */
    A_UINT32 tail_idx_addr_hi;
    A_UINT32 num_ptr;           /** Number of pointers in the ring */
} wmi_oem_dma_ring_cfg_req_fixed_param;

#define WMI_OEM_DMA_RING_ADDR_LO_S 0
#define WMI_OEM_DMA_RING_ADDR_LO 0xffffffff

#define WMI_OEM_DMA_RING_ADDR_LO_GET(dword) WMI_F_MS(dword, WMI_OEM_DMA_RING_ADDR_LO)
#define WMI_OEM_DMA_RING_ADDR_LO_SET(dword, val) WMI_F_RMW(dword, val, WMI_OEM_DMA_RING_ADDR_LO)

#define WMI_OEM_DMA_RING_ADDR_HI_S 0
#define WMI_OEM_DMA_RING_ADDR_HI 0xf

#define WMI_OEM_DMA_RING_ADDR_HI_GET(dword) WMI_F_MS(dword, WMI_OEM_DMA_RING_ADDR_HI)
#define WMI_OEM_DMA_RING_ADDR_HI_SET(dword, val) WMI_F_RMW(dword, val, WMI_OEM_DMA_RING_ADDR_HI)

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oem_dma_ring_cfg_rsp_fixed_param */
    A_UINT32 pdev_id;
    A_UINT32 cfg_status;    /** Configuration status; see A_STATUS */
} wmi_oem_dma_ring_cfg_rsp_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oem_indirect_data */
    A_UINT32 pdev_id;       /** ID of pdev whose OEM DMA ring produced the data */
    /**
     * Bits 31:0:   address of data [31:0]
     */
    A_UINT32 addr_lo;
    /**
     * Bits 3:0:    address of data [35:32]
     * Bits 11:4:   reserved
     * Bits 31:12:  opaque host context data [19:0]
     */
    A_UINT32 addr_hi;
    A_UINT32 len;           /** Length of data in bytes */
} wmi_oem_indirect_data;

#define WMI_OEM_DMA_DATA_ADDR_LO_S 0
#define WMI_OEM_DMA_DATA_ADDR_LO 0xffffffff

#define WMI_OEM_DMA_DATA_ADDR_LO_GET(dword) WMI_F_MS(dword, WMI_OEM_DMA_DATA_ADDR_LO)
#define WMI_OEM_DMA_DATA_ADDR_LO_SET(dword, val) WMI_F_RMW(dword, val, WMI_OEM_DMA_DATA_ADDR_LO)

#define WMI_OEM_DMA_DATA_ADDR_HI_S 0
#define WMI_OEM_DMA_DATA_ADDR_HI 0xf

#define WMI_OEM_DMA_DATA_ADDR_HI_GET(dword) WMI_F_MS(dword, WMI_OEM_DMA_DATA_ADDR_HI)
#define WMI_OEM_DMA_DATA_ADDR_HI_SET(dword, val) WMI_F_RMW(dword, val, WMI_OEM_DMA_DATA_ADDR_HI)

#define WMI_OEM_DMA_DATA_ADDR_HI_HOST_DATA_S 12
#define WMI_OEM_DMA_DATA_ADDR_HI_HOST_DATA 0xfffff

#define WMI_OEM_DMA_DATA_ADDR_HI_HOST_DATA_GET(dword) WMI_F_MS(dword, WMI_OEM_DMA_DATA_ADDR_HI_HOST_DATA)
#define WMI_OEM_DMA_DATA_ADDR_HI_HOST_DATA_SET(dword, val) WMI_F_RMW(dword, val, WMI_OEM_DMA_DATA_ADDR_HI_HOST_DATA)

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oem_dma_buf_release_hdr */
    A_UINT32 pdev_id;       /** ID of pdev whose OEM DMA ring produced the data */
} wmi_oem_dma_buf_release_fixed_param;

typedef struct {
    /**
     * Bits 31:0:   address of data [31:0]
     */
    A_UINT32 addr_lo;
    /**
     * Bits 3:0:    address of data [35:32]
     * Bits 11:4:   reserved
     * Bits 31:12:  host context data [19:0]
     */
    A_UINT32 addr_hi;
} wmi_oem_dma_buf_release_entry;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oem_data_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** Actual length in byte of data[]. */
    A_UINT32 data_len;
    /**
     * pdev_vdev_flag - 0  follow old method (vdev_id is valid, ignore pdev_id)
     * pdev_vdev_flag - 1  pdev_id is valid
     */
    A_UINT32 pdev_vdev_flag;
    /** Unique id identifying the PDEV */
    A_UINT32 pdev_id;
/** This structure is used to send OEM DATA binary blobs from
 * application/service to firmware where Host driver is pass through.
 * The OEM-specific commands from OEM-specific userspace applications
 * are passed to OEM-specific feature handlers in firmware as OEM DATA
 * binary blobs. The format of the data is per agreement between FW and
 * userspace applications, with the binary blob beginning with a header
 * that identifies to the FW the nature of the remaining data within the
 * blob.
 *
 * Following this structure is the TLV:
 *     A_UINT8 data[]; <-- actual length in byte given by field data_len.
 */
} wmi_oem_data_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_cmd_param */
    A_UINT32 data_len; /** length in byte of data[]. */
/* This structure is used to send REQ binary blobs
* from application/service to firmware where Host drv is pass through .
* Following this structure is the TLV:
*     A_UINT8 data[]; <-- length in byte given by field data_len.
*/
} wmi_nan_cmd_param;

#define WMI_NAN_GET_RANGING_INITIATOR_ROLE(flag)      WMI_GET_BITS(flag, 0, 1)
#define WMI_NAN_SET_RANGING_INITIATOR_ROLE(flag, val) WMI_SET_BITS(flag, 0, 1, val)
#define WMI_NAN_GET_RANGING_RESPONDER_ROLE(flag)      WMI_GET_BITS(flag, 1, 1)
#define WMI_NAN_SET_RANGING_RESPONDER_ROLE(flag, val) WMI_SET_BITS(flag, 1, 1, val)
#define WMI_NAN_GET_NAN_6G_DISABLE(flag)              WMI_GET_BITS(flag, 2, 1)
#define WMI_NAN_SET_NAN_6G_DISABLE(flag, val)         WMI_SET_BITS(flag, 2, 1, val)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_host_config_param */
    A_UINT32 nan_2g_disc_disable:1; /** This bit when set to 1 indicate NAN 2G discovery should be disabled */
    A_UINT32 nan_5g_disc_disable:1; /** This bit when set to 1 indicate NAN 5G discovery should be disabled */
    A_UINT32 reserved:30;
    /** Flags: refer to WMI_NAN_GET/SET macros
     *  Bit   0    -> Nan ranging initiator role (0 - Disable, 1 - Enable)
     *  Bit   1    -> Nan ranging responder role (0 - Disable, 1 - Enable)
     *  Bit   2    -> Nan 6 GHz support          (1 - Disable, 0 - Enable)
     *  Bits  3-31 -> Reserved
     */
    A_UINT32 flags;
} wmi_nan_host_config_param_PROTOTYPE;
#define wmi_nan_host_config_param wmi_nan_host_config_param_PROTOTYPE

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_event_hdr */
    A_UINT32 data_len; /** length in byte of data[]. */
/* This structure is used to send REQ binary blobs
* from firmware to application/service where Host drv is pass through .
* Following this structure is the TLV:
*     A_UINT8 data[]; <-- length in byte given by field data_len.
*/
} wmi_nan_event_hdr;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_event_info */
    A_UINT32 mac_id; /* MAC ID associated with NAN primary discovery channel; Valid only for NAN enable resp message identified by NAN_MSG_ID_ENABLE_RSP */
    A_UINT32 status:1; /** This bit when set to 0 indicates status is successful; Valid only for NAN enable resp message identified by NAN_MSG_ID_ENABLE_RSP */
    A_UINT32 reserved:31;
    A_UINT32 vdev_id; /** Unique id identifying the vdev with type OPMODE_NAN; Valid only for NAN enable resp message identified by NAN_MSG_ID_ENABLE_RSP */
} wmi_nan_event_info_PROTOTYPE;

#define wmi_nan_event_info wmi_nan_event_info_PROTOTYPE

/**
 * Event to indicate NAN discovery interface created
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_disc_iface_created_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** NAN interface MAC address */
    wmi_mac_addr nan_interface_macaddr;
} wmi_nan_disc_iface_created_event_fixed_param_PROTOTYPE;

#define wmi_nan_disc_iface_created_event_fixed_param wmi_nan_disc_iface_created_event_fixed_param_PROTOTYPE

/**
 * Event to indicate NAN discovery interface deleted
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_disc_iface_deleted_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
} wmi_nan_disc_iface_deleted_event_fixed_param_PROTOTYPE;

#define wmi_nan_disc_iface_deleted_event_fixed_param wmi_nan_disc_iface_deleted_event_fixed_param_PROTOTYPE

/**
 * Event to indicate NAN device started new cluster
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_started_cluster_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** NAN Cluster ID */
    A_UINT32 nan_cluster_id;
} wmi_nan_started_cluster_event_fixed_param_PROTOTYPE;

#define wmi_nan_started_cluster_event_fixed_param wmi_nan_started_cluster_event_fixed_param_PROTOTYPE

/**
 * Event to indicate NAN device joined to cluster
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_joined_cluster_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** NAN Cluster ID */
    A_UINT32 nan_cluster_id;
} wmi_nan_joined_cluster_event_fixed_param_PROTOTYPE;

#define wmi_nan_joined_cluster_event_fixed_param wmi_nan_joined_cluster_event_fixed_param_PROTOTYPE

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_nan_dmesg_event_fixed_param */
    A_UINT32 tlv_header;
    /** length in byte of msg[]. */
    A_UINT32 msg_len;
    /* Following this structure is the TLV:
     *  A_UINT8 msg[]; <-- length in byte given by field data_len.
     * This data contains the string message which will be given to Host to dump it to kernel logs.
     */
} wmi_nan_dmesg_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUCT_wmi_nan_capabilities */
    A_UINT32 tlv_header;
    /** Maximum number of ndp sessions supported by the Firmware */
    A_UINT32 max_ndp_sessions;
} wmi_nan_capabilities;

/** NAN DATA CMD's */

/**
 * NAN Data get capabilities req
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndi_get_cap_req_fixed_param */
    A_UINT32 tlv_header;
    /** unique id generated in upper layer for the transaction */
    A_UINT32 transaction_id;
} wmi_ndi_get_cap_req_fixed_param_PROTOTYPE;

#define wmi_ndi_get_cap_req_fixed_param wmi_ndi_get_cap_req_fixed_param_PROTOTYPE

/**
 * NDP Response code
 */
typedef enum {
    NDP_RSP_CODE_REQUEST_ACCEPT = 0x00,
    NDP_RSP_CODE_REQUEST_REJECT = 0x01,
    NDP_RSP_CODE_REQUEST_DEFER  = 0x02,
} wmi_ndp_rsp_code_PROTOTYPE;

#define wmi_ndp_rsp_code wmi_ndp_rsp_code_PROTOTYPE

/**
 * NDP Channel configuration type
 */
typedef enum {
    WMI_NDP_CHANNEL_NOT_REQUESTED = 0, /* Channel will not configured */
    WMI_NDP_REQUEST_CHANNEL_SETUP = 1, /* Channel will be provided and is optional/hint */
    WMI_NDP_FORCE_CHANNEL_SETUP = 2/* NDP must start on the provided channel */
} wmi_ndp_channel_cfg_PROTOTYPE;

/*
 * The WMI_NDP_IPV6_INTF_ADDR_LEN macro cannot be changed without breaking
 * WMI compatibility.
 */
#define WMI_NDP_IPV6_INTF_ADDR_LEN    16

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_transport_ip_param */
    /* Presence of ipv6_intf_addr */
    A_UINT32 ipv6_addr_present;
    /* Presence of transport Port */
    A_UINT32 trans_port_present;
    /* Presence of  transport Protocol */
    A_UINT32 trans_proto_present;
    /* ipv6 Interface address */
    A_UINT8  ipv6_intf_addr[WMI_NDP_IPV6_INTF_ADDR_LEN];
    /* Transport Port */
    A_UINT32 transport_port;
    /* Transport Protocol */
    A_UINT32 transport_protocol;
} wmi_ndp_transport_ip_param;

#define wmi_ndp_channel_cfg wmi_ndp_channel_cfg_PROTOTYPE

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_channel_info */
    A_UINT32 mac_id; /* mac_id associated with ndp channel at same index */
} wmi_ndp_channel_info_PROTOTYPE;

#define wmi_ndp_channel_info wmi_ndp_channel_info_PROTOTYPE

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_event_param */
    A_UINT32 vdev_id; /* NDI VDEV ID */
    A_UINT32 ndp_termination_in_progress:1; /** This bit when set to 1 indicates to termination of all NDPs associated with NDI vdev ID is started */
    A_UINT32 reserved:31;
} wmi_ndp_event_param_PROTOTYPE;

#define wmi_ndp_event_param wmi_ndp_event_param_PROTOTYPE

/**
 * NDP Initiator requesting a data session
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_initiator_req_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** unique id generated in upper layer for the transaction */
    A_UINT32 transaction_id;
    /** Unique Instance Id identifying the Responder's service */
    A_UINT32 service_instance_id;
    /** Discovery MAC addr of the publisher/peer */
    wmi_mac_addr peer_discovery_mac_addr;
    /** Actual number of bytes in TLV ndp_cfg */
    A_UINT32 ndp_cfg_len;
    /** Actual number of bytes in TLV ndp_app_info */
    A_UINT32 ndp_app_info_len;
    /** NDP channel configuration type defined in wmi_ndp_channel_cfg */
    A_UINT32 ndp_channel_cfg;
    /**  NAN Cipher Suite Shared Key */
    A_UINT32 nan_csid;
    /** Actual number of bytes in TLV ndp_pmk */
    A_UINT32 nan_pmk_len;
    /** Actual number of bytes in TLV ndp_passphrase */
    A_UINT32 nan_passphrase_len;
    /** Actual number of bytes in TLV nan_servicename */
    A_UINT32 nan_servicename_len;
    /**
     * TLV (tag length value) parameters follow the ndp_initiator_req
     * structure. The TLV's are:
     * wmi_channel channel;
     * A_UINT8 ndp_cfg[];
     * A_UINT8 ndp_app_info[];
     * A_UINT8 ndp_pmk[];
     * A_INT8 ndp_passphrase[];
     * A_INT8 nan_servicename[];
     * wmi_ndp_transport_ip_param ndp_transport_ip_param;
     */
} wmi_ndp_initiator_req_fixed_param_PROTOTYPE;

#define wmi_ndp_initiator_req_fixed_param wmi_ndp_initiator_req_fixed_param_PROTOTYPE

/**
 * Initiate a data response on the responder side
 * for data request indication from the peer
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_responder_req_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** unique id generated in upper layer for the transaction */
    A_UINT32 transaction_id;
    /**
     * Unique token Id generated on the initiator/responder
     * side used for a NDP session between two NAN devices
     */
    A_UINT32 ndp_instance_id;
    /** Response Code defined in wmi_ndp_rsp_code */
    A_UINT32 rsp_code;
    /** Number of bytes in TLV ndp_cfg */
    A_UINT32 ndp_cfg_len;
    /** Number of bytes in TLV ndp_app_info */
    A_UINT32 ndp_app_info_len;
    /**  NAN Cipher Suite Shared Key */
    A_UINT32 nan_csid;
    /** Actual number of bytes in TLV ndp_pmk */
    A_UINT32 nan_pmk_len;
    /** Actual number of bytes in TLV ndp_passphrase */
    A_UINT32 nan_passphrase_len;
    /** Actual number of bytes in TLV nan_servicename */
    A_UINT32 nan_servicename_len;
    /**
     * TLV (tag length value) parameters follow the ndp_responder_req
     * structure. The TLV's are:
     * A_UINT8 ndp_cfg[];
     * A_UINT8 ndp_app_info[];
     * A_UINT8 ndp_pmk[];
     * A_INT8 ndp_passphrase[];
     * A_INT8 nan_servicename[];
     * wmi_ndp_transport_ip_param ndp_transport_ip_param;
     */
} wmi_ndp_responder_req_fixed_param_PROTOTYPE;

#define wmi_ndp_responder_req_fixed_param wmi_ndp_responder_req_fixed_param_PROTOTYPE

/**
 * NDP end type
 */
typedef enum {
    WMI_NDP_END_TYPE_UNSPECIFIED = 0x00,
    WMI_NDP_END_TYPE_PEER_UNAVAILABLE = 0x01,
    WMI_NDP_END_TYPE_OTA_FRAME = 0x02,
    WMI_NDP_END_TYPE_DATA_INACTIVITY = 0x03,
} wmi_ndp_end_type_PROTOTYPE;

#define wmi_ndp_end_type wmi_ndp_end_type_PROTOTYPE

/**
 * NDP end reason code
 */
typedef enum {
    WMI_NDP_END_REASON_UNSPECIFIED = 0x00,
    WMI_NDP_END_REASON_INACTIVITY = 0x01,
    WMI_NDP_END_REASON_PEER_DATA_END = 0x02,
    WMI_NDP_END_REASON_DATA_INACTIVITY = 0x03,
} wmi_ndp_end_reason_code_PROTOTYPE;

#define wmi_ndp_end_reason_code wmi_ndp_end_reason_code_PROTOTYPE

/**
 * NDP end request
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_end_req */
    A_UINT32 tlv_header;
    /** NDP instance id */
    A_UINT32 ndp_instance_id;
    /** vdev_id valid flag */
    A_UINT32 vdev_id_valid;
    /** vdev id */
    A_UINT32 vdev_id;
} wmi_ndp_end_req_PROTOTYPE;

#define wmi_ndp_end_req wmi_ndp_end_req_PROTOTYPE

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_cmd_param */
    A_UINT32 vdev_id; /* NDI VDEV ID */
    A_UINT32 ndp_disable:1; /** This bit when set to 1 indicates to terminate all NDPs associated with NDI vdev ID */
    A_UINT32 reserved:31;
} wmi_ndp_cmd_param_PROTOTYPE;

#define wmi_ndp_cmd_param wmi_ndp_cmd_param_PROTOTYPE

/**
 * NDP End request
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_end_req_fixed_param */
    A_UINT32 tlv_header;
    /** unique id generated in upper layer for the transaction */
    A_UINT32 transaction_id;
    /**
     * TLV (tag length value) parameters follow the ndp_end_req
     * structure. The TLV's are:
     * wmi_ndp_end_req ndp_end_req_list[];
     */
} wmi_ndp_end_req_fixed_param_PROTOTYPE;

#define wmi_ndp_end_req_fixed_param wmi_ndp_end_req_fixed_param_PROTOTYPE

/* NAN DATA RSP EVENTS */

/**
 * Event to indicate NAN Data Interface capabilities cmd
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndi_cap_rsp_event_fixed_param */
    A_UINT32 tlv_header;
    /** Copy of transaction_id received in wmi_ndi_get_cap_req */
    A_UINT32 transaction_id;
    /** Max ndi interface support */
    A_UINT32 max_ndi_interfaces;
    /** Max ndp sessions can support */
    A_UINT32 max_ndp_sessions;
    /** Max number of peer's per ndi */
    A_UINT32 max_peers_per_ndi;
    /** which combination of bands is supported - see NAN_DATA_SUPPORTED_BAND enums */
    A_UINT32 nan_data_supported_bands;
} wmi_ndi_cap_rsp_event_fixed_param_PROTOTYPE;

#define wmi_ndi_cap_rsp_event_fixed_param wmi_ndi_cap_rsp_event_fixed_param_PROTOTYPE

/**
 * NDP command response code
 */
typedef enum {
    NDP_CMD_RSP_STATUS_SUCCESS = 0x00,
    NDP_CMD_RSP_STATUS_ERROR = 0x01,
} wmi_ndp_cmd_rsp_status_PROTOTYPE;

#define wmi_ndp_cmd_rsp_status wmi_ndp_cmd_rsp_status_PROTOTYPE

/**
 * Event response for wmi_ndp_initiator_req
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_initiator_rsp_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** Copy of transaction_id received in wmi_ndp_initiator_req */
    A_UINT32 transaction_id;
    /** Response status defined in wmi_ndp_cmd_rsp_status*/
    A_UINT32 rsp_status;
    A_UINT32 reason_code;
    /**
     * Unique token Id generated on the initiator/responder
     * side used for a NDP session between two NAN devices
     */
    A_UINT32 ndp_instance_id;
} wmi_ndp_initiator_rsp_event_fixed_param_PROTOTYPE;

#define wmi_ndp_initiator_rsp_event_fixed_param wmi_ndp_initiator_rsp_event_fixed_param_PROTOTYPE

/**
 * Event response for wmi_ndp_responder_req cmd
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_responder_rsp_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** Copy of transaction_id received in wmi_ndp_responder_req */
    A_UINT32 transaction_id;
    /** Response status defined in wmi_ndp_cmd_rsp_status*/
    A_UINT32 rsp_status;
    A_UINT32 reason_code;
    /**
     * Unique token Id generated on the initiator/responder
     * side used for a NDP session between two NAN devices
     */
    A_UINT32 ndp_instance_id;
    /** NDI mac address of the peer */
    wmi_mac_addr peer_ndi_mac_addr;
    /** Host can create peer if this entry is TRUE */
    A_UINT32 create_peer;
} wmi_ndp_responder_rsp_event_fixed_param_PROTOTYPE;

#define wmi_ndp_responder_rsp_event_fixed_param wmi_ndp_responder_rsp_event_fixed_param_PROTOTYPE

/**
 * Active ndp instance id
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_active_ndp_instance_id */
    A_UINT32 tlv_header;
    /** NDP instance id */
    A_UINT32 ndp_instance_id;
} wmi_active_ndp_instance_id_PROTOTYPE;

#define wmi_active_ndp_instance_id wmi_active_ndp_instance_id_PROTOTYPE

/**
 * NDP end response per ndi
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_end_rsp_per_ndi */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** Peer MAC addr */
    wmi_mac_addr peer_mac_addr;
    /** Number of active ndps on this ndi */
    A_UINT32 num_active_ndps_on_ndi;
} wmi_ndp_end_rsp_per_ndi_PROTOTYPE;

#define wmi_ndp_end_rsp_per_ndi wmi_ndp_end_rsp_per_ndi_PROTOTYPE

/**
 * Event response for wmi_ndp_end_req cmd
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_end_rsp_event_fixed_param */
    A_UINT32 tlv_header;
    /** Copy of transaction_id received in wmi_ndp_end_req */
    A_UINT32 transaction_id;
    /** Response status defined in wmi_ndp_cmd_rsp_status*/
    A_UINT32 rsp_status;
    A_UINT32 reason_code;
    /**
     * TLV (tag length value) parameters follow the ndp_end_rsp
     * structure. The TLV's are:
     * wmi_ndp_end_rsp_per_ndi ndp_end_rsp_per_ndis[];
     * wmi_active_ndp_instance_id active_ndp_instances_id[];
     */
} wmi_ndp_end_rsp_event_fixed_param_PROTOTYPE;

#define wmi_ndp_end_rsp_event_fixed_param wmi_ndp_end_rsp_event_fixed_param_PROTOTYPE

/** NAN DATA EVENTS */

/**
 * NDP self role
 */
typedef enum {
    WMI_NDP_INITIATOR_ROLE,
    WMI_NDP_RESPONDER_ROLE,
} wmi_ndp_self_role_PROTOTYPE;

#define wmi_ndp_self_role wmi_ndp_self_role_PROTOTYPE

/**
 * NDP accept policy
 */
typedef enum {
    WMI_NDP_ACCEPT_POLICY_NONE,
    WMI_NDP_ACCEPT_POLICY_ALL,
} wmi_ndp_accept_policy_PROTOTYPE;

#define wmi_ndp_accept_policy wmi_ndp_accept_policy_PROTOTYPE

/**
 * Event indication received on the responder side when a NDP Initiator request/
 * NDP session is initiated on the Initiator side (self role will be NDP_RESPONDER_ROLE)
 *
 * Event indication received on the initiator side when a
 * NDP responder request on the Initiator side (self role will be NDP_INITIATOR_ROLE)
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_indication_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** Self NDP Role defined in wmi_ndp_self_role */
    A_UINT32 self_ndp_role;
    /** Accept policy defined in wmi_ndp_accept_policy */
    A_UINT32 accept_policy;
    /** Unique Instance Id corresponding to a service/session. */
    A_UINT32 service_instance_id;
    /** Discovery MAC addr of the peer/initiator */
    wmi_mac_addr peer_discovery_mac_addr;
    /** NDI mac address of the peer */
    wmi_mac_addr peer_ndi_mac_addr;
    /**
     * Unique token Id generated on the initiator/responder
     * side used for a NDP session between two NAN devices
     */
    A_UINT32 ndp_instance_id;
    /** Number of bytes in TLV wmi_ndp_cfg */
    A_UINT32 ndp_cfg_len;
    /** Number of bytes in TLV wmi_ndp_app_info */
    A_UINT32 ndp_app_info_len;
    /** Peer NAN Cipher Suite Shared Key */
    A_UINT32 nan_csid;
    /** Actual number of bytes in TLV nan_scid */
    A_UINT32 nan_scid_len;
    /** Self NDI mac address */
    wmi_mac_addr self_ndi_mac_addr;
    /** Number of bytes in TLV service_id */
    A_UINT32 service_id_len;
    /**
     * TLV (tag length value) parameters follow the ndp_indication
     * structure. The TLV's are:
     * A_UINT8 ndp_cfg[];
     * A_UINT8 ndp_app_info[];
     * A_UINT8 nan_scid[];
     * wmi_ndp_transport_ip_param ndp_transport_ip_param;
     * A_UINT8 service_id[service_id_len]; <- holds a single service ID of an
     *     indeterminate number of bytes (most likely 6 bytes)
     */
} wmi_ndp_indication_event_fixed_param_PROTOTYPE;

#define wmi_ndp_indication_event_fixed_param wmi_ndp_indication_event_fixed_param_PROTOTYPE

/**
 * Event indication of data confirm is received on both
 * initiator and responder side confirming a NDP session
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_confirm_event_fixed_param */
    A_UINT32 tlv_header;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /**
     * Unique token Id generated on the initiator/responder
     * side used for a NDP session between two NAN devices
     */
    A_UINT32 ndp_instance_id;
    /** NDI mac address of the peer (required to derive target ipv6 address) */
    wmi_mac_addr peer_ndi_mac_addr;
    /** Response Code defined in wmi_ndp_rsp_code */
    A_UINT32 rsp_code;
    /** Number of bytes in TLV wmi_ndp_cfg */
    A_UINT32 ndp_cfg_len;
    /** Number of bytes in TLV wmi_ndp_app_info */
    A_UINT32 ndp_app_info_len;
    /** Reason Code */
    A_UINT32 reason_code;
    /** Number of active ndps on this peer */
    A_UINT32 num_active_ndps_on_peer;
    /** Number of channels on this peer */
    A_UINT32 num_ndp_channels;
    /**
     * TLV (tag length value) parameters follow the ndp_confirm
     * structure. The TLV's are:
     * A_UINT8 ndp_cfg[];
     * A_UINT8 ndp_app_info[];
     * wmi_channel ndp_channel_list[];
     * A_UINT32 nss_list[]; // Nss indexing should match with channel indexing,
     *                      // since Nss is associated with the channel
     * wmi_ndp_transport_ip_param ndp_transport_ip_param;
     */
} wmi_ndp_confirm_event_fixed_param_PROTOTYPE;

#define wmi_ndp_confirm_event_fixed_param wmi_ndp_confirm_event_fixed_param_PROTOTYPE

/**
 * Event indication received on the initiator/responder side terminating a NDP session
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndp_end_indication */
    A_UINT32 tlv_header;
    /** type defined in  wmi_ndp_end_type */
    A_UINT32 type;
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** reason_code  defined in  wmi_ndp_end_reason_code */
    A_UINT32 reason_code;
    /** NDP instance id */
    A_UINT32 ndp_instance_id;
    /** NDI MAC addr of the peer */
    wmi_mac_addr peer_ndi_mac_addr;
    /** Number of active ndps on this peer */
    A_UINT32 num_active_ndps_on_peer;
} wmi_ndp_end_indication_PROTOTYPE;

#define wmi_ndp_end_indication wmi_ndp_end_indication_PROTOTYPE

typedef struct
{
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ndl_schedule_update_fixed_param */
    /** Unique id identifying the VDEV */
    A_UINT32 vdev_id;
   /** peer MAC address */
    wmi_mac_addr peer_macaddr;
   /** Flags:
    *  Bit   0    -> Nss updated
    *  Bit   1    -> channel list updated
    *  Bits  2-31 -> Reserved
    */
    A_UINT32 flags;
    /** num of channels */
    A_UINT32 num_channels;
    /** num of ndp instances */
    A_UINT32 num_ndp_instances;
    /**
     * TLV (tag length value) parameters follow the ndl_schedule_update
     * structure. The TLV's are:
     * A_UINT32 ndp_instance_list[];
     * wmi_channel ndl_channel_list[];
     * A_UINT32 nss_list[]; // Nss indexing should match with channel indexing,
     *                      // since Nss is associate with a channel
     */
} wmi_ndl_schedule_update_fixed_param_PROTOTYPE;

#define wmi_ndl_schedule_update_fixed_param wmi_ndl_schedule_update_fixed_param_PROTOTYPE

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 num_data;
    /* followed by WMITLV_TAG_ARRAY_BYTE */
} wmi_diag_data_container_event_fixed_param;

enum {
    WMI_PDEV_PARAM_TXPOWER_REASON_NONE = 0,
    WMI_PDEV_PARAM_TXPOWER_REASON_SAR,
    WMI_PDEV_PARAM_TXPOWER_REASON_MAX
};

#define PDEV_PARAM_TXPOWER_VALUE_MASK  0x000000FF
#define PDEV_PARAM_TXPOWER_VALUE_SHIFT 0

#define PDEV_PARAM_TXPOWER_REASON_MASK  0x0000FF00
#define PDEV_PARAM_TXPOWER_REASON_SHIFT 8

#define SET_PDEV_PARAM_TXPOWER_VALUE(txpower_param, value)     \
    ((txpower_param) &= ~PDEV_PARAM_TXPOWER_VALUE_MASK, (txpower_param) |= ((value) << PDEV_PARAM_TXPOWER_VALUE_SHIFT))

#define SET_PDEV_PARAM_TXPOWER_REASON(txpower_param, value)     \
    ((txpower_param) &= ~PDEV_PARAM_TXPOWER_REASON_MASK, (txpower_param) |= ((value) << PDEV_PARAM_TXPOWER_REASON_SHIFT))

#define GET_PDEV_PARAM_TXPOWER_VALUE(txpower_param)     \
    (((txpower_param) & PDEV_PARAM_TXPOWER_VALUE_MASK) >> PDEV_PARAM_TXPOWER_VALUE_SHIFT)

#define GET_PDEV_PARAM_TXPOWER_REASON(txpower_param)     \
    (((txpower_param) & PDEV_PARAM_TXPOWER_REASON_MASK) >> PDEV_PARAM_TXPOWER_REASON_SHIFT)

#define PDEV_PARAM_SMART_CHAINMASK_SCHEME_DECISION_MASK 0x00000001
#define PDEV_PARAM_SMART_CHAINMASK_SCHEME_DECISION_SHIFT 0

#define SET_PDEV_SMART_CHAINMASK_SCHEME_DECISION(param, value) \
    do { \
        (param) &= ~PDEV_PARAM_SMART_CHAINMASK_SCHEME_DECISION_MASK; \
        (param) |= (value) << PDEV_PARAM_SMART_CHAINMASK_SCHEME_DECISION_SHIFT; \
    } while (0)

#define GET_PDEV_SMART_CHAINMASK_SCHEME_DECISION(param)     \
    (((param) & PDEV_PARAM_SMART_CHAINMASK_SCHEME_DECISION_MASK) >> PDEV_PARAM_SMART_CHAINMASK_SCHEME_DECISION_SHIFT)

/**
 * This command is sent from WLAN host driver to firmware to
 * notify the current modem power state. Host would receive a
 * message from modem when modem is powered on. Host driver
 * would then send this command to firmware. Firmware would then
 * power on WCI-2 (UART) interface for LTE/MWS Coex.
 *
 * This command is only applicable for APQ platform which has
 * modem on the platform. If firmware doesn't support MWS Coex,
 * this command can be dropped by firmware.
 *
 * This is a requirement from modem team that WCN can't toggle
 * UART before modem is powered on.
 */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_modem_power_state_cmd_param */
    A_UINT32 tlv_header;

    /** Modem power state parameter */
    A_UINT32 modem_power_state;
} wmi_modem_power_state_cmd_param;

enum {
    WMI_MODEM_STATE_OFF = 0,
    WMI_MODEM_STATE_ON
};

/**
 * This command is sent from WLAN host driver to firmware to
 * notify the updated Specific Absorption Rate (SAR) limits.
 * A critical regulation for FCC compliance, OEMs require methods to set
 * limits on TX power of WLAN/WWAN.
 * Host would receive instructions on what to set the limits per
 * band/chain/modulation to, it would then interpret and send the limits
 * to FW using this WMI message.
 * Since it is possible to have too many commands to fit into one message,
 * FW will keep receiving the messages, until it finds one with
 * commit_limits = 1, at which point it will apply all the received
 * specifications.
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sar_limits_cmd_param */
    A_UINT32 tlv_header;

    /** when set to WMI_SAR_FEATURE_ON_*, enable SAR feature
     *  with BDF (SET_0 to 4) or WMI
     * if set to WMI_SAR_FEATURE_OFF, disable feature;
     * if set to WMI_SAR_FEATURE_NO_CHANGE, do not alter state of feature;
     */
    A_UINT32 sar_enable;

    /** number of items in sar_limits[] */
    A_UINT32 num_limit_rows;

    /** once received and is set to 1, FW will calculate the power limits
     * and send set_power command to apply them.
     * Otherwise just update local values stored in FW until a future msg
     * with commit_limits=1 arrives.
     */
    A_UINT32 commit_limits;

    /**
     * TLV (tag length value) parameters follow the sar_limit_cmd_row
     * structure. The TLV's are:
     * wmi_sar_limit_cmd_row sar_limits[];
     */
} wmi_sar_limits_cmd_fixed_param;

enum wmi_sar_feature_state_flags {
    WMI_SAR_FEATURE_OFF = 0,
    WMI_SAR_FEATURE_ON_SET_0,
    WMI_SAR_FEATURE_ON_SET_1,
    WMI_SAR_FEATURE_ON_SET_2,
    WMI_SAR_FEATURE_ON_SET_3,
    WMI_SAR_FEATURE_ON_SET_4,
    WMI_SAR_FEATURE_NO_CHANGE,
    WMI_SAR_FEATURE_ON_USER_DEFINED,
    WMI_SAR_FEATURE_ON_SAR_V2_0,
    WMI_SAR_FEATURE_ON_SAR_V3,
};

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sar_limit_cmd_row */

    /** Current values: WMI_SAR_2G_ID, WMI_SAR_5G_ID. Can be extended by adding
     * new band_id values .
     */
    A_UINT32 band_id;

    A_UINT32 chain_id;

    /** Current values: WMI_SAR_MOD_CCK, WMI_SAR_MOD_OFDM */
    A_UINT32 mod_id;

    /**
     * To be backwards-compatible with older code use a union with
     * limit_value & limit_index as alternate names / interpretations
     * of the same message information element.
     * The older code still uses limit_value, while the new code will
     * use limit_index.
     * The interpretation of the field as value or index depends on
     * WMI_SAR_FEATURE_ON_*
     * WMI_SAR_FEATURE_ON_SAR_V2_0 will use it as index, other case
     * still use it as value.
     */
    union {
        /** actual power limit value, in steps of 0.5 dBm */
        A_UINT32 limit_value;
        A_UINT32 limit_index;
    };

    /** in case the OEM doesn't care about one of the qualifiers from above,
     * the bit for that qualifier within the validity_bitmap can be set to 0
     * so that limit is applied to all possible cases of this qualifier
     * (i.e. if a qualifier's validity_bitmap flag is 0, the qualifier is
     * treated as a wildcard).
     * Current masks:
     *     WMI_SAR_BAND_ID_VALID_MASK
     *     WMI_SAR_CHAIN_ID_VALID_MASK
     *     WMI_SAR_MOD_ID_VALID_MASK
     * Example: if !WMI_IS_SAR_MOD_ID_VALID(bitmap),
     *     it means apply same limit_value to both WMI_SAR_MOD_CCK and
     *     WMI_SAR_MOD_OFDM cases.
     */
    A_UINT32 validity_bitmap;
} wmi_sar_limit_cmd_row;

enum wmi_sar_band_id_flags {
    WMI_SAR_2G_ID = 0,
    WMI_SAR_5G_ID
};

enum wmi_sar_mod_id_flags {
    WMI_SAR_MOD_CCK = 0,
    WMI_SAR_MOD_OFDM
};

/**
 * This message is sent from FW to WLAN host to inform the host of the
 * updated Specific Absorption Rate (SAR) limits currently in use.
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sar_get_limits_event_param */
    A_UINT32 tlv_header;

    /** when set to WMI_SAR_FEATURE_ON_*, SAR feature is enabled
     *  with BDF (SET_0 to 4) or WMI
     * if set to WMI_SAR_FEATURE_OFF, feature is disabled;
     */
    A_UINT32 sar_enable;

    /**
     * number of items in sar_limits[].
     *  used when sar_enable == WMI_SAR_FEATURE_ON_USER_DEFINED.
     *  Should be zero if any of the BDF sets is activated.
     */
    A_UINT32 num_limit_rows;

    /**
     * TLV (tag length value) parameters follow the sar_get_limit_event_row
     * structure. The TLV's are:
     * wmi_sar_get_limit_event_row sar_limits[num_limit_rows];
     */
} wmi_sar_get_limits_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sar_get_limit_event_row */

    /** Current values: WMI_SAR_2G_ID, WMI_SAR_5G_ID. Can be extended by adding
     * new band_id values .
     */
    A_UINT32 band_id;

    A_UINT32 chain_id;

    /** Current values: WMI_SAR_MOD_CCK, WMI_SAR_MOD_OFDM */
    A_UINT32 mod_id;

    /** actual power limit value, in steps of 0.5 dBm */
    A_UINT32 limit_value;
} wmi_sar_get_limit_event_row;

#define WMI_SAR_BAND_ID_VALID_MASK      (0x1)
#define WMI_SAR_CHAIN_ID_VALID_MASK     (0x2)
#define WMI_SAR_MOD_ID_VALID_MASK       (0x4)

#define WMI_SET_SAR_BAND_ID_VALID(bitmap)    ((bitmap) |= WMI_SAR_BAND_ID_VALID_MASK)
#define WMI_SET_SAR_CHAIN_ID_VALID(bitmap)   ((bitmap) |= WMI_SAR_CHAIN_ID_VALID_MASK)
#define WMI_SET_SAR_MOD_ID_VALID(bitmap)     ((bitmap) |= WMI_SAR_MOD_ID_VALID_MASK)

#define WMI_IS_SAR_BAND_ID_VALID(bitmap)     ((bitmap) & WMI_SAR_BAND_ID_VALID_MASK)
#define WMI_IS_SAR_CHAIN_ID_VALID(bitmap)    ((bitmap) & WMI_SAR_CHAIN_ID_VALID_MASK)
#define WMI_IS_SAR_MOD_ID_VALID(bitmap)      ((bitmap) & WMI_SAR_MOD_ID_VALID_MASK)

/**
 * This command is sent from WLAN host driver to firmware to
 * get current Specific Absorption Rate (SAR) limits status from firmware.
 * The command does not require any parameters as of now.
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sar_get_limits_cmd_param */
    A_UINT32 tlv_header;
    /** currently no parameters are required. Reserved bit field for future use added */
    /*  All bits need to be set to 0 while it is a reserved field. */
    A_UINT32 reserved;
} wmi_sar_get_limits_cmd_fixed_param;

#define WMI_ROAM_AUTH_STATUS_CONNECTED       0x1 /** connected, but not authenticated */
#define WMI_ROAM_AUTH_STATUS_AUTHENTICATED   0x2 /** connected and authenticated */

/** WMI_ROAM_SYNCH_EVENT: roam synch event triggering the host propagation logic
    generated whenever firmware roamed to new AP silently and
    (a) If the host is awake, FW sends the event to the host immediately .
    (b) If host is in sleep then either
        (1) FW waits until  host sends WMI_PDEV_RESUME_CMDID or WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID
    command to FW (part of host wake up sequence  from low power mode) before sending the event host.
        (2) data/mgmt frame is received from roamed AP, which needs to return to host
*/

#define GTK_OFFLOAD_KCK_EXTENDED_BYTES 32

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_key_material */
    A_UINT32 tlv_header;

    A_UINT8  kck[GTK_OFFLOAD_KCK_BYTES]; /* EAPOL-Key Key Confirmation Key (KCK) */
    A_UINT8  kek[GTK_OFFLOAD_KEK_BYTES]; /* EAPOL-Key Key Encryption Key (KEK) */
    A_UINT8  replay_counter[GTK_REPLAY_COUNTER_BYTES];
} wmi_key_material;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_key_material_ext */
    A_UINT32 tlv_header;
    /*
     * key_buffer contains kck,kck2,kek,kek2,replay counter, in order.
     * If both the below kck_len and kek_len fields are 0x0, the split
     * between kck vs. kek should be inferred based on akmp.
     */
    A_UINT8  key_buffer[GTK_OFFLOAD_KEK_EXTENDED_BYTES+GTK_OFFLOAD_KCK_EXTENDED_BYTES+GTK_REPLAY_COUNTER_BYTES];
    /* length of kck in key_buffer */
    A_UINT32 kck_len;
    /* length of kek in key_buffer */
    A_UINT32 kek_len;
} wmi_key_material_ext;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_synch_event_fixed_param  */
    /** Unique id identifying the VDEV on which roaming is done by firmware */
    A_UINT32 vdev_id;
    /** auth_status: connected or authorized */
    A_UINT32 auth_status;
    /** roam_reason:
     * bits 0-3  roam trigger reason LSbs - see WMI_ROAM_TRIGGER_REASON_XXX
     * bits 4-5  subnet status - see WMI_ROAM_SUBNET_CHANGE_STATUS_XXX.
     * bit  6    HW mode status, set 1 to indicate host to schedule
     *           HW mode change, see WMI_ROAM_REQUEST_HOST_HW_MODE_CHANGE.
     * bit  7    0x1 to show bits 8-15 are valid
     * bits 8-15 full WMI_ROAM_TRIGGER_REASON_ID/WMI_ROAM_TRIGGER_EXT_REASON_ID
     *           since 4 bits are not enough.
     */
    A_UINT32 roam_reason;
    /** associated AP's RSSI calculated by FW when reason code is WMI_ROAM_REASON_LOW_RSSI. not valid if roam_reason is BMISS */
    A_UINT32 rssi;
    /** MAC address of roamed AP */
    wmi_mac_addr bssid;     /* BSSID */
    /** whether the frame is beacon or probe rsp */
    A_UINT32 is_beacon;
    /** the length of beacon/probe rsp */
    A_UINT32 bcn_probe_rsp_len;
    /** the length of reassoc rsp */
    A_UINT32 reassoc_rsp_len;
    /** the length of reassoc req */
    A_UINT32 reassoc_req_len;
    /**
     * maximum allowed Tx power (in dBm) for this connection.
     * max_allowed_tx_power = 0 dBm means value is not specified.
     */
    A_INT32 max_allowed_tx_power;
    /** unique id to identify mac's TSF register */
    A_UINT32 mac_tsf_id;
    /** ignore mac_tsf_id unless mac_tsf_id_valid is set */
    A_UINT32 mac_tsf_id_valid;
    /**
     * TLV (tag length value) parameters follows roam_synch_event
     * The TLV's are:
     *     A_UINT8 bcn_probe_rsp_frame[bcn_probe_resp_len];
     *     A_UINT8 reassoc_rsp_frame[reassoc_rsp_len];
     *     wmi_channel chan;
     *     wmi_key_material key[];
     *     A_UINT32 status[]; subnet changed status not being used currently.
     *         Will pass the information using roam_status.
     *     A_UINT8 reassoc_req_frame[reassoc_req_len];
     *     wmi_pdev_hw_mode_transition_event_fixed_param
     *         hw_mode_transition_fixed_param[];
     *     wmi_pdev_set_hw_mode_response_vdev_mac_entry
     *         wmi_pdev_set_hw_mode_response_vdev_mac_mapping[];
     *     wmi_roam_fils_synch_tlv_param roam_fils_synch_info[];
     *     wmi_key_material_ext key_ext[];
     *     wmi_roam_pmk_cache_synch_tlv_param roam_pmk_cache_synch_info[];
     *     wmi_pdev_band_to_mac mac_freq_mapping[];
     */
} wmi_roam_synch_event_fixed_param;

/**
 * The WMI_ROAM_SYNCH_FRAME_EVENTID message is used in conjunction with the
 * WMI_ROAM_SYNCH_EVENTID message.  The former will be sent 1st followed by
 * the latter for cases where the WMI_ROAM_SYNCH_EVENTID message size would
 * exceed 2K.  The more_frag field in the WMI_ROAM_SYNCH_FRAME_EVENTID informs
 * the host whether more WMI_ROAM_SYNCH_FRAME_EVENTID messages would follow;
 * after the WMI_ROAM_SYNCH_FRAME_EVENTID messages the target sends the
 * WMI_ROAM_SYNCH_EVENTID with bcn_probe_rsp_len, reassoc_rsp_len, and
 * reassoc_rsp_len set to 0.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_synch_frame_event_fixed_param  */
    /** Unique id identifying the VDEV on which roaming is done by firmware */
    A_UINT32 vdev_id;
    /** More frags to follow? */
    A_UINT32 more_frag;
    /** whether the frame is beacon or probe rsp */
    A_UINT32 is_beacon;
    /** the length of beacon/probe rsp */
    A_UINT32 bcn_probe_rsp_len;
    /** the length of reassoc rsp */
    A_UINT32 reassoc_rsp_len;
    /** the length of reassoc req */
    A_UINT32 reassoc_req_len;
    /**
     * TLV (tag length value) parameters follows roam_synch_event
     * The TLV's are:
     *     A_UINT8 bcn_probe_rsp_frame[bcn_probe_rsp_len];
     *     A_UINT8 reassoc_rsp_frame[reassoc_rsp_len];
     *     A_UINT8 reassoc_req_frame[reassoc_req_len];
     */
} wmi_roam_synch_frame_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_frame_event_fixed_param  */
    /** Unique id identifying the VDEV on which roaming is done by firmware */
    A_UINT32 vdev_id;
    /* Exact frame length without considering 4 byte alignment */
    A_UINT32 frame_length;
    A_INT32  rssi; /* Units in dBm */
    /* The frequency on which to transmit. */
    A_UINT32 primary_channel_freq; /* MHz units */
    /**
     * TLV (tag length value) parameters follows roam_frame_event
     * The TLV's are:
     *     A_UINT8 frame[frame_length];
     */
} wmi_roam_frame_event_fixed_param;

#define WMI_PEER_ESTIMATED_LINKSPEED_INVALID    0xFFFFFFFF

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_ wmi_peer_get_estimated_linkspeed_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** MAC address of the peer for which the estimated link speed is required. */
    wmi_mac_addr peer_macaddr;
    /* Set to 1 only if vdev_id field is valid */
    A_UINT32 valid_vdev_id;
    /* VDEV to which the peer belongs to */
    A_UINT32 vdev_id;
} wmi_peer_get_estimated_linkspeed_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_ wmi_peer_estimated_linkspeed_event_fixed_param */
    A_UINT32 tlv_header;
    /** MAC address of the peer for which the estimated link speed is required.
     */
    wmi_mac_addr peer_macaddr;
  /* Estimated link speed in kbps.
   * When est_linkspeed_kbps is not valid, the value is set to WMI_PEER_ESTIMATED_LINKSPEED_INVALID.
   */
    A_UINT32 est_linkspeed_kbps;
    /* Set to 1 only if vdev_id field is valid */
    A_UINT32 valid_vdev_id;
    /* VDEV to which the peer belongs to */
    A_UINT32 vdev_id;
} wmi_peer_estimated_linkspeed_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals */
    /* vdev ID */
    A_UINT32 vdev_id;
    A_UINT32 data_len; /** length in byte of data[]. */
/* This structure is used to send REQ binary blobs
 * from application/service to firmware where Host drv is pass through .
 * Following this structure is the TLV:
 *     A_UINT8 data[]; <-- length in byte given by field data_len.
 *     A_UINT32 vdev_id_bitmap[];
 *         This array is present and non-zero length in MLO case, stats should
 *         only be provided from the vdev_id_bitmap in the bitmap when it is
 *         present.
 */
} wmi_req_stats_ext_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_partner_link_stats */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 data_length; /* length of the stats for this vdev */
    A_UINT32 offset; /* offset of the stats from partner_link_data for this vdev */
} wmi_partner_link_stats;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_stats1_event_fix_param */
    A_UINT32 vdev_id; /** vdev ID */
    A_UINT32 data_len; /** length in byte of data[]. */
    /* This structure is used to send REQ binary blobs
     * from firmware to application/service where Host drv is pass through .
     * Following this structure is the TLV:
     *     A_UINT8 data[]; <-- length in byte given by field data_len.
     */
    /* This structure is used to send information of partner links.
     * Following this structure is the TLV:
     *     wmi_partner_link_stats partner_link_stats[];
     */
    /* This structure is used to send REQ binary blobs of stats of partner
     * links from firmware to application/service where Host drv is pass
     * through.
     * Following this structure is the TLV partner_link_stats:
     *     A_UINT8 partner_link_stats_data[]; <-- length and offset in byte
     *                                            units given by TLV
     *                                            wmi_partner_link_stats.
     */
} wmi_stats_ext_event_fixed_param;

typedef enum {
    /** Default: no replay required. */
    WMI_PEER_DELETE_NO_REPLAY = 0,
    /**
      * Replay requested due to UMAC hang during Peer delete.
      * Replay done by Host SW after MLO UMAC SSR recovered the UMAC.
      */
    WMI_PEER_DELETE_REPLAY_FOR_UMAC,
} WMI_PEER_DELETE_REPLAY_T;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_delete_resp_event_fixed_param  */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** WMI_PEER_DELETE_REPLAY_T */
    A_UINT32 replay_type;
} wmi_peer_delete_resp_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_delete_all_peer_resp_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* Status of peer delete all command */
    /*
     * Values for Status:
     *  0 - OK; command successful
     *  1 - EINVAL; Requested invalid vdev_id
     *  2 - EFAILED; Delete all peer failed
     */
    A_UINT32 status;
    /** WMI_PEER_DELETE_REPLAY_T */
    A_UINT32 replay_type;
} wmi_vdev_delete_all_peer_resp_event_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_ wmi_peer_state_event_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id; /* vdev ID */
    /* MAC address of the peer for which the estimated link speed is required.*/
    wmi_mac_addr peer_macaddr;
    A_UINT32 state; /* peer state */
} wmi_peer_state_event_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_assoc_conf_event_fixed_param */
    A_UINT32 tlv_header;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* status
     * 0: ok
     * 1: fail - peer not present
     */
    A_UINT32 status;
} wmi_peer_assoc_conf_event_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_create_conf_event_fixed_param */
    A_UINT32 tlv_header;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* 0: OK.
     * 1: FAIL - same bss peer exist already. */
    A_UINT32 status;
} wmi_peer_create_conf_event_fixed_param;

enum {
    WMI_2G4_HT40_OBSS_SCAN_PASSIVE = 0,    /** scan_type: passive */
    WMI_2G4_HT40_OBSS_SCAN_ACTIVE, /** scan_type: active */
};

typedef struct {
    /**
     * TLV tag and len;
     * tag equals WMITLV_TAG_STRUC_wmi_obss_scan_enable_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    /**
     * active or passive. if active all the channels are actively scanned.
     *  if passive then all the channels are passively scanned
     */
    A_UINT32 scan_type;
    /**
     * FW can perform multiple scans with in a  OBSS scan interval.
     * For each scan,
     *  if the scan is passive then obss_scan_passive_dwell is minimum dwell to be used for each channel  ,
     *  if the scan is active then obss_scan_active_dwell is minimum dwell to be used for each channel .
     *   The unit for these 2 parameters is TUs.
     */
    A_UINT32 obss_scan_passive_dwell;
    A_UINT32 obss_scan_active_dwell;
    /**
     * OBSS scan interval . FW needs to perform one or more OBSS scans within this interval and fulfill the
     *  both min and total per channel dwell time requirement
     */
    A_UINT32 bss_channel_width_trigger_scan_interval;
    /**
     * FW can perform multiple scans with in a  OBSS scan interval.
     * For each scan,
     * the total per channel dwell time across all scans with in OBSS scan interval should be
     * atleast obss_scan_passive_total_per channel for passive scas and obss_scan_active_total_per channel
     * for active scans and ,
     *   The unit for these 2 parameters is TUs.
     */
    A_UINT32 obss_scan_passive_total_per_channel;
    A_UINT32 obss_scan_active_total_per_channel;
    A_UINT32 bss_width_channel_transition_delay_factor; /** parameter to check exemption from scan */
    A_UINT32 obss_scan_activity_threshold; /** parameter to check exemption from scan */
    /** following two parameters used by FW to fill IEs when sending 20/40 coexistence action frame to AP */
    A_UINT32 forty_mhz_intolerant; /** STA 40M bandwidth intolerant capability */
    A_UINT32 current_operating_class; /** STA current operating class */
    /** length of 2.4GHz channel list to scan at, channel number list in tlv->channels[] */
    A_UINT32 channel_len;
    /** length of optional ie data to append to probe request when active scan, ie data in tlv->ie_field[] */
    A_UINT32 ie_len;

/**
 * TLV (tag length value) parameters following the fixed param structure
 *     A_UINT8 channels[channel_len]; // channel numbers
 *     A_UINT8 ie_field[ie_len];
 *     A_UINT32 chan_freqs[channel_len] // in MHz
 */
} wmi_obss_scan_enable_cmd_fixed_param;

typedef struct {
    /**
    * TLV tag and len;
    * tag equals WMITLV_TAG_STRUC_wmi_obss_scan_disalbe_cmd_fixed_param
    */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
} wmi_obss_scan_disable_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_offload_prb_rsp_tx_status_event_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /** prb rsp tx status, values defined in enum WMI_FRAME_TX_STATUS */
    A_UINT32 tx_status;
} wmi_offload_prb_rsp_tx_status_event_fixed_param;

typedef enum {
    WMI_FRAME_TX_OK,            /* frame tx ok */
    WMI_FRAME_TX_XRETRY,        /* excessivley retried */
    WMI_FRAME_TX_DROP,          /* frame dropped by FW due to resources */
    WMI_FRAME_TX_FILTERED,      /* frame filtered by hardware */
} WMI_FRAME_TX_STATUS;

/**
 * This command is sent from WLAN host driver to firmware to
 * request firmware to send the latest channel avoidance range
 * to host.
 *
 * This command is only applicable for APQ platform which has
 * modem on the platform. If firmware doesn't support MWS Coex,
 * this command can be dropped by firmware.
 *
 * Host would send this command to firmware to request a channel
 * avoidance information update.
 */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_chan_avoid_update_cmd_param */
    A_UINT32 tlv_header;
} wmi_chan_avoid_update_cmd_param;

/* ExtScan operation mode */
typedef enum {
   WMI_EXTSCAN_MODE_NONE          = 0x0000,
   WMI_EXTSCAN_MODE_START         = 0x0001, /* ExtScan/TableMonitoring operation started */
   WMI_EXTSCAN_MODE_STOP          = 0x0002, /* ExtScan/TableMonitoring operation stopped */
   WMI_EXTSCAN_MODE_IGNORED       = 0x0003, /* ExtScan command ignored due to error */
} wmi_extscan_operation_mode;

/* Channel Mask */
typedef enum {
   WMI_CHANNEL_BAND_UNSPECIFIED = 0x0000,
   WMI_CHANNEL_BAND_24          = 0x0001, /* 2.4 channel */
   WMI_CHANNEL_BAND_5_NON_DFS   = 0x0002, /* 5G Channels (No DFS channels) */
   WMI_CHANNEL_BAND_DFS         = 0x0004, /* DFS channels */
} wmi_channel_band_mask;

typedef enum {
    WMI_EXTSCAN_CYCLE_STARTED_EVENT     = 0x0001,
    WMI_EXTSCAN_CYCLE_COMPLETED_EVENT   = 0x0002,
    WMI_EXTSCAN_BUCKET_STARTED_EVENT    = 0x0004,
    WMI_EXTSCAN_BUCKET_COMPLETED_EVENT  = 0x0008,
    WMI_EXTSCAN_BUCKET_FAILED_EVENT     = 0x0010,
    WMI_EXTSCAN_BUCKET_OVERRUN_EVENT    = 0x0020,
    WMI_EXTSCAN_THRESHOLD_NUM_SCANS     = 0x0040,
    WMI_EXTSCAN_THRESHOLD_PERCENT       = 0x0080,

    WMI_EXTSCAN_EVENT_MAX               = 0x8000
} wmi_extscan_event_type;

#define WMI_EXTSCAN_CYCLE_EVENTS_MASK    (WMI_EXTSCAN_CYCLE_STARTED_EVENT   | \
                                          WMI_EXTSCAN_CYCLE_COMPLETED_EVENT)

#define WMI_EXTSCAN_BUCKET_EVENTS_MASK   (WMI_EXTSCAN_BUCKET_STARTED_EVENT   | \
                                          WMI_EXTSCAN_BUCKET_COMPLETED_EVENT | \
                                          WMI_EXTSCAN_BUCKET_FAILED_EVENT    | \
                                          WMI_EXTSCAN_BUCKET_OVERRUN_EVENT)

typedef enum {
    WMI_EXTSCAN_NO_FORWARDING         = 0x0000,
    WMI_EXTSCAN_FORWARD_FRAME_TO_HOST = 0x0001
} wmi_extscan_forwarding_flags;

typedef enum {
    WMI_EXTSCAN_USE_MSD                 = 0x0001,    /* Use Motion Sensor Detection */
    WMI_EXTSCAN_EXTENDED_BATCHING_EN    = 0x0002,    /* Extscan LPASS extended batching feature is supported and enabled */
} wmi_extscan_configuration_flags;

typedef enum {
    WMI_EXTSCAN_BUCKET_CACHE_RESULTS     = 0x0001,   /* Cache the results of bucket whose configuration flags has this bit set */
    WMI_EXTSCAN_REPORT_EVENT_CONTEXT_HUB = 0x0002,   /* Report ext scan results to context hub or not. */
} wmi_extscan_bucket_configuration_flags;

typedef enum {
    WMI_EXTSCAN_STATUS_OK    = 0,
    WMI_EXTSCAN_STATUS_ERROR = 0x80000000,
    WMI_EXTSCAN_STATUS_INVALID_PARAMETERS,
    WMI_EXTSCAN_STATUS_INTERNAL_ERROR
} wmi_extscan_start_stop_status;

typedef struct {
    /** Request ID - to identify command. Cannot be 0 */
    A_UINT32     request_id;
    /** Requestor ID - client requesting ExtScan */
    A_UINT32     requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32     vdev_id;
} wmi_extscan_command_id;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** channel in MHz */
    A_UINT32    channel;

    /** dwell time in msec - use defaults if 0 */
    A_UINT32    min_dwell_time;
    A_UINT32    max_dwell_time;

    /** passive/active channel and other flags */
    A_UINT32    control_flags;                        /* 0 => active, 1 => passive scan; ignored for DFS */
} wmi_extscan_bucket_channel;

/* Scan Bucket specification */
typedef struct {
    A_UINT32        tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** Bucket ID  - 0-based */
    A_UINT32        bucket_id;
    /** ExtScan events subscription - events to be reported to client (see wmi_extscan_event_type) */
    A_UINT32        notify_extscan_events;
    /** Options to forward scan results - see wmi_extscan_forwarding_flags */
    A_UINT32        forwarding_flags;
    /** ExtScan configuration flags - wmi_extscan_bucket_configuration_flags */
    A_UINT32        configuration_flags;
    /** DEPRECATED member: multiplier to be applied to the periodic scan's base period */
    A_UINT32        base_period_multiplier;
    /** dwell time in msec on active channels - use defaults if 0 */
    A_UINT32        min_dwell_time_active;
    A_UINT32        max_dwell_time_active;
    /** dwell time in msec on passive channels - use defaults if 0 */
    A_UINT32        min_dwell_time_passive;
    A_UINT32        max_dwell_time_passive;
    /** see wmi_channel_band_mask; when equal to WMI_CHANNEL_UNSPECIFIED, use channel list */
    A_UINT32        channel_band;
    /** number of channels (if channel_band is WMI_CHANNEL_UNSPECIFIED) */
    A_UINT32        num_channels;
    /** scan period upon start or restart of the bucket - periodicity of the bucket to begin with */
    A_UINT32        min_period;
    /** period above which exponent is not applied anymore */
    A_UINT32        max_period;
    /** back off value to be applied to bucket's periodicity after exp_max_step_count scan cycles
      * new_bucket_period = last_bucket_period + last_exponent_period * exp_backoff
      */
    A_UINT32        exp_backoff;
    /** number of scans performed at a given periodicity after which exponential back off value is
       * applied to current periodicity to obtain a newer one
       */
    A_UINT32        exp_max_step_count;
/** Followed by the variable length TLV chan_list:
 *  wmi_extscan_bucket_channel chan_list[] */
} wmi_extscan_bucket;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_start_cmd_fixed_param */
    /** Request ID - to identify command. Cannot be 0 */
    A_UINT32     request_id;
    /** Requestor ID - client requesting ExtScan */
    A_UINT32     requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32     vdev_id;
    /** table ID - to allow support for multiple simultaneous requests */
    A_UINT32     table_id;
    /** Base period (milliseconds) used by scan buckets to define periodicity of the scans */
    A_UINT32     base_period;
    /** Maximum number of iterations to run - one iteration is the scanning of the least frequent bucket */
    A_UINT32     max_iterations;
    /** Options to forward scan results - see wmi_extscan_forwarding_flags */
    A_UINT32     forwarding_flags;
    /** ExtScan configuration flags - wmi_extscan_configuration_flags */
    A_UINT32     configuration_flags;
    /** ExtScan events subscription - bitmask indicating which events should be send to client (see wmi_extscan_event_type) */
    A_UINT32     notify_extscan_events;
    /** Scan Priority, input to scan scheduler */
    A_UINT32     scan_priority;
    /** Maximum number of BSSIDs to cache on each scan cycle */
    A_UINT32     max_bssids_per_scan_cycle;
    /** Minimum RSSI value to report */
    A_UINT32     min_rssi;
    /** Maximum table usage in percentage */
    A_UINT32     max_table_usage;
    /** default dwell time in msec on active channels */
    A_UINT32     min_dwell_time_active;
    A_UINT32     max_dwell_time_active;
    /** default dwell time in msec on passive channels */
    A_UINT32     min_dwell_time_passive;
    A_UINT32     max_dwell_time_passive;
    /** min time in msec on the BSS channel,only valid if atleast one VDEV is active*/
    A_UINT32     min_rest_time;
    /** max rest time in msec on the BSS channel,only valid if at least one VDEV is active*/
    /** the scanner will rest on the bss channel at least min_rest_time. after min_rest_time the scanner
     *  will start checking for tx/rx activity on all VDEVs. if there is no activity the scanner will
     *  switch to off channel. if there is activity the scanner will let the radio on the bss channel
     *  until max_rest_time expires.at max_rest_time scanner will switch to off channel
     *  irrespective of activity. activity is determined by the idle_time parameter.
     */
    A_UINT32     max_rest_time;
    /** time before sending next set of probe requests.
     *   The scanner keeps repeating probe requests transmission with period specified by repeat_probe_time.
     *   The number of probe requests specified depends on the ssid_list and bssid_list
     */
    /** Max number of probes to be sent */
    A_UINT32     n_probes;
    /** time in msec between 2 sets of probe requests. */
    A_UINT32     repeat_probe_time;
    /** time in msec between 2 consecutive probe requests with in a set. */
    A_UINT32     probe_spacing_time;
    /** data inactivity time in msec on bss channel that will be used by scanner for measuring the inactivity  */
    A_UINT32     idle_time;
    /** maximum time in msec allowed for scan  */
    A_UINT32     max_scan_time;
    /** delay in msec before sending first probe request after switching to a channel */
    A_UINT32     probe_delay;
    /** Scan control flags */
    A_UINT32     scan_ctrl_flags;
    /** Burst duration time in msec*/
    A_UINT32     burst_duration;

    /** number of bssids in the TLV bssid_list[] */
    A_UINT32     num_bssid;
    /** number of ssid in the TLV ssid_list[] */
    A_UINT32     num_ssids;
    /** number of bytes in TLV ie_data[] */
    A_UINT32     ie_len;
    /** number of buckets in the TLV bucket_list[] */
    A_UINT32     num_buckets;
    /** in number of scans, send notifications to host after these many scans */
    A_UINT32    report_threshold_num_scans;
    /** number of channels in channel_list[] determined by the
        sum of wmi_extscan_bucket.num_channels in array  */

/**
 * TLV (tag length value) parameters follow the extscan_cmd
 * structure. The TLV's are:
 *     wmi_ssid                   ssid_list[];
 *     wmi_mac_addr               bssid_list[];
 *     A_UINT8                    ie_data[];
 *     wmi_extscan_bucket         bucket_list[];
 *     wmi_extscan_bucket_channel channel_list[];
 */
} wmi_extscan_start_cmd_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_stop_cmd_fixed_param */
    /** Request ID - to match running command. 0 matches any request */
    A_UINT32     request_id;
    /** Requestor ID - client requesting stop */
    A_UINT32     requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32     vdev_id;
    /** table ID - to allow support for multiple simultaneous requests */
    A_UINT32     table_id;
} wmi_extscan_stop_cmd_fixed_param;

enum wmi_extscan_get_cached_results_flags {
    WMI_EXTSCAN_GET_CACHED_RESULTS_FLAG_NONE        = 0x0000,
    WMI_EXTSCAN_GET_CACHED_RESULTS_FLAG_FLUSH_TABLE = 0x0001
};

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_get_cached_results_cmd_fixed_param */
    /** request ID - used to correlate command with events */
    A_UINT32    request_id;
    /** Requestor ID - client that requested results */
    A_UINT32    requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32    vdev_id;
    /** table ID - to allow support for multiple simultaneous requests */
    A_UINT32    table_id;
    /** maximum number of results to be returned  */
    A_UINT32    max_results;
    /** flush BSSID list - wmi_extscan_get_cached_results_flags */
    A_UINT32    control_flags; /* enum wmi_extscan_get_cached_results_flags */
} wmi_extscan_get_cached_results_cmd_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_get_wlan_change_results_cmd_fixed_param */
    /** request ID - used to correlate command with events */
    A_UINT32    request_id;
    /** Requestor ID - client that requested results */
    A_UINT32    requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32    vdev_id;
    /** table ID - to allow support for multiple simultaneous requests */
    A_UINT32    table_id;
} wmi_extscan_get_wlan_change_results_cmd_fixed_param;

typedef struct {
    A_UINT32        tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** bssid */
    wmi_mac_addr    bssid;
    /** channel in MHz */
    A_UINT32        channel;
    /** upper RSSI limit */
    A_UINT32        upper_rssi_limit;
    /** lower RSSI limit */
    A_UINT32        lower_rssi_limit;
} wmi_extscan_wlan_change_bssid_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_configure_wlan_change_monitor_cmd_fixed_param */
    /** Request ID - to identify command. Cannot be 0 */
    A_UINT32    request_id;
    /** Requestor ID - client requesting wlan change monitoring */
    A_UINT32    requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32    vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32    table_id;
    /** operation mode: start/stop */
    A_UINT32    mode; /* wmi_extscan_operation_mode */
    /** number of RSSI samples to store */
    A_UINT32    max_rssi_samples;
    /** number of samples to use to calculate RSSI average */
    A_UINT32    rssi_averaging_samples;
    /** number of scans to confirm loss of contact with RSSI */
    A_UINT32    lost_ap_scan_count;
    /** number of out-of-range BSSIDs necessary to send event */
    A_UINT32    max_out_of_range_count;

    /** total number of bssid signal descriptors (in all pages) */
    A_UINT32    total_entries;
    /** index of the first bssid entry found in the TLV wlan_change_descriptor_list*/
    A_UINT32    first_entry_index;
    /** number of bssid signal descriptors in this page */
    A_UINT32    num_entries_in_page;
/* Following this structure is the TLV:
 *     wmi_extscan_wlan_change_bssid_param wlan_change_descriptor_list[];
 *         (number of elements given by field num_page_entries)
 */
} wmi_extscan_configure_wlan_change_monitor_cmd_fixed_param;

typedef struct {
    A_UINT32        tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** bssid */
    wmi_mac_addr    bssid;
    /** RSSI min threshold for reporting */
    A_UINT32        min_rssi;
    /** Deprecated entry - channel in MHz */
    A_UINT32        channel;
    /** RSSI max threshold for reporting */
    A_UINT32        max_rssi;
} wmi_extscan_hotlist_entry;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_configure_hotlist_monitor_cmd_fixed_param */
    /** Request ID - to identify command. Cannot be 0 */
    A_UINT32    request_id;
    /** Requestor ID - client requesting hotlist monitoring */
    A_UINT32    requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32    vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32    table_id;
    /** operation mode: start/stop */
    A_UINT32    mode;    /* wmi_extscan_operation_mode */
    /** total number of bssids (in all pages) */
    A_UINT32    total_entries;
    /** index of the first bssid entry found in the TLV wmi_extscan_hotlist_entry */
    A_UINT32    first_entry_index;
    /** number of bssids in this page */
    A_UINT32    num_entries_in_page;
    /** number of consecutive scans to confirm loss of contact with AP */
    A_UINT32    lost_ap_scan_count;
/* Following this structure is the TLV:
 *     wmi_extscan_hotlist_entry hotlist[]; <-- number of elements given by field num_page_entries.
 */
} wmi_extscan_configure_hotlist_monitor_cmd_fixed_param;

typedef struct {
    A_UINT32        tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /**ssid */
    wmi_ssid        ssid;
    /**band */
    A_UINT32        band;
    /**RSSI threshold for reporting */
    A_UINT32        min_rssi;
    A_UINT32        max_rssi;
} wmi_extscan_hotlist_ssid_entry;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_configure_hotlist_ssid_monitor_cmd_fixed_param */
    /** Request ID - to identify command. Cannot be 0 */
    A_UINT32    request_id;
    /** Requestor ID - client requesting hotlist ssid monitoring */
    A_UINT32    requestor_id;
    /** VDEV id(interface) that is requesting scan */
    A_UINT32    vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32    table_id;
    /** operation mode: start/stop */
    A_UINT32    mode; /* wmi_extscan_operation_mode */
    /**total number of ssids (in all pages) */
    A_UINT32    total_entries;
    /**index of the first ssid entry found in the TLV wmi_extscan_hotlist_ssid_entry*/
    A_UINT32    first_entry_index;
    /**number of ssids in this page */
    A_UINT32    num_entries_in_page;
    /** number of consecutive scans to confirm loss of an ssid **/
    A_UINT32    lost_ap_scan_count;
    /* Following this structure is the TLV:
     *     wmi_extscan_hotlist_ssid_entry hotlist_ssid[]; <-- number of elements given by field num_page_entries.
     */
} wmi_extscan_configure_hotlist_ssid_monitor_cmd_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32    table_id;
    /** size in bytes of scan cache entry */
    A_UINT32    scan_cache_entry_size;
    /** maximum number of scan cache entries */
    A_UINT32    max_scan_cache_entries;
    /** maximum number of buckets per extscan request */
    A_UINT32    max_buckets;
    /** maximum number of BSSIDs that will be stored in each scan (best n/w as per RSSI) */
    A_UINT32    max_bssid_per_scan;
    /** table usage level at which indication must be sent to host */
    A_UINT32    max_table_usage_threshold;
} wmi_extscan_cache_capabilities;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32    table_id;
    /** size in bytes of wlan change entry */
    A_UINT32    wlan_change_entry_size;
    /** maximum number of entries in wlan change table */
    A_UINT32    max_wlan_change_entries;
    /** number of RSSI samples used for averaging RSSI */
    A_UINT32    max_rssi_averaging_samples;
    /** number of BSSID/RSSI entries (BSSID pointer, RSSI, timestamp) that device can hold */
    A_UINT32    max_rssi_history_entries;
} wmi_extscan_wlan_change_monitor_capabilities;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32    table_id;
    /** size in bytes of hotlist entry */
    A_UINT32    wlan_hotlist_entry_size;
    /** maximum number of entries in wlan change table */
    A_UINT32    max_hotlist_entries;
} wmi_extscan_hotlist_monitor_capabilities;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_set_capabilities_cmd_fixed_param */
    /** Request ID - matches request ID used to start hot list monitoring */
    A_UINT32    request_id;
    /** Requestor ID - client requesting stop */
    A_UINT32    requestor_id;
    /** number of extscan caches */
    A_UINT32    num_extscan_cache_tables;
    /** number of wlan change lists */
    A_UINT32    num_wlan_change_monitor_tables;
    /** number of hotlists */
    A_UINT32    num_hotlist_monitor_tables;
    /** if one sided rtt data collection is supported */
    A_UINT32    rtt_one_sided_supported;
    /** if 11v data collection is supported */
    A_UINT32    rtt_11v_supported;
    /** if 11mc data collection is supported */
    A_UINT32    rtt_ftm_supported;
    /** number of extscan cache capabilities (one per table)  */
    A_UINT32    num_extscan_cache_capabilities;
    /** number of wlan change  capabilities (one per table)  */
    A_UINT32    num_extscan_wlan_change_capabilities;
    /** number of extscan hotlist capabilities (one per table)  */
    A_UINT32    num_extscan_hotlist_capabilities;
/* Following this structure is the TLV:
 *     wmi_extscan_cache_capabilities               extscan_cache_capabilities; <-- number of capabilities given by num_extscan_caches
 *     wmi_extscan_wlan_change_monitor_capabilities wlan_change_capabilities;   <-- number of capabilities given by num_wlan_change_monitor_tables
 *     wmi_extscan_hotlist_monitor_capabilities     hotlist_capabilities;       <-- number of capabilities given by num_hotlist_monitor_tables
 */
} wmi_extscan_set_capabilities_cmd_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_get_capabilities_cmd_fixed_param */
    /** Request ID - matches request ID used to start hot list monitoring */
    A_UINT32    request_id;
    /** Requestor ID - client requesting capabilities */
    A_UINT32    requestor_id;
} wmi_extscan_get_capabilities_cmd_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_start_stop_event_fixed_param */
    /** Request ID of the operation that was started/stopped */
    A_UINT32     request_id;
    /** Requestor ID of the operation that was started/stopped */
    A_UINT32     requestor_id;
    /** VDEV id(interface) of the operation that was started/stopped */
    A_UINT32     vdev_id;
    /** extscan WMI command */
    A_UINT32     command;
    /** operation mode: start/stop */
    A_UINT32     mode; /* wmi_extscan_operation_mode */
    /**success/failure */
    A_UINT32     status; /* enum wmi_extscan_start_stop_status */
    /** table ID - to allow support for multiple simultaneous requests */
    A_UINT32     table_id;
} wmi_extscan_start_stop_event_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_operation_event_fixed_param */
    /** Request ID of the extscan operation that is currently running */
    A_UINT32     request_id;
    /** Requestor ID of the extscan operation that is currently running */
    A_UINT32     requestor_id;
    /** VDEV id(interface) of the extscan operation that is currently running */
    A_UINT32     vdev_id;
    /** scan event (wmi_scan_event_type) */
    A_UINT32     event; /* wmi_extscan_event_type */
    /** table ID - to allow support for multiple simultaneous requests */
    A_UINT32     table_id;
    /**number of buckets */
    A_UINT32     num_buckets;
    /* Following this structure is the TLV:
     *     A_UINT32    bucket_id[]; <-- number of elements given by field num_buckets.
     */
} wmi_extscan_operation_event_fixed_param;

/* Types of extscan tables */
typedef enum {
    EXTSCAN_TABLE_NONE    = 0,
    EXTSCAN_TABLE_BSSID   = 1,
    EXTSCAN_TABLE_RSSI    = 2,
} wmi_extscan_table_type;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_table_usage_event_fixed_param */
    /** Request ID of the extscan operation that is currently running */
    A_UINT32     request_id;
    /** Requestor ID of the extscan operation that is currently running */
    A_UINT32     requestor_id;
    /** VDEV id(interface) of the extscan operation that is currently running */
    A_UINT32     vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32     table_id;
    /**see wmi_extscan_table_type for table reporting usage */
    A_UINT32     table_type;
    /**number of entries in use */
    A_UINT32     entries_in_use;
    /**maximum number of entries in table */
    A_UINT32     maximum_entries;
} wmi_extscan_table_usage_event_fixed_param;

typedef enum {
    WMI_SCAN_STATUS_INTERRUPTED = 1      /* Indicates scan got interrupted i.e. aborted or pre-empted for a long time (> 1sec)
                                            this can be used to discard scan results */
} wmi_scan_status_flags;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** RSSI */
    A_UINT32    rssi;
    /** time stamp in milliseconds */
    A_UINT32    tstamp;
    /** Extscan cycle during which this entry was scanned */
    A_UINT32    scan_cycle_id;
    /** flag to indicate if the given result was obtained as part of interrupted (aborted/large time gap preempted) scan */
    A_UINT32    flags;
    /** Bitmask of buckets (i.e. sets of channels) scanned */
    A_UINT32    buckets_scanned;
} wmi_extscan_rssi_info;

typedef struct {
    A_UINT32        tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** bssid */
    wmi_mac_addr    bssid;
    /** ssid */
    wmi_ssid        ssid;
    /** channel in MHz */
    A_UINT32        channel;
    /** capabilities */
    A_UINT32        capabilities;
    /** beacon interval in TUs */
    A_UINT32        beacon_interval;
    /** time stamp in milliseconds - time last seen */
    A_UINT32        tstamp;
    /** flags - _tExtScanEntryFlags */
    A_UINT32        flags;
    /** RTT in ns */
    A_UINT32        rtt;
    /** RTT standard deviation */
    A_UINT32        rtt_sd;
    /** RSSI information */
    A_UINT32        number_rssi_samples;
    /** IE length */
    A_UINT32        ie_length; /* length of IE data */
} wmi_extscan_wlan_descriptor;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_cached_results_event_fixed_param */
    /** Request ID of the WMI_EXTSCAN_GET_CACHED_RESULTS_CMDID */
    A_UINT32     request_id;
    /** Requestor ID of the WMI_EXTSCAN_GET_CACHED_RESULTS_CMDID */
    A_UINT32     requestor_id;
    /** VDEV id(interface) of the WMI_EXTSCAN_GET_CACHED_RESULTS_CMDID */
    A_UINT32     vdev_id;
    /** Request ID of the extscan operation that is currently running */
    A_UINT32     extscan_request_id;
    /** Requestor ID of the extscan operation that is currently running */
    A_UINT32     extscan_requestor_id;
    /** VDEV id(interface) of the extscan operation that is currently running */
    A_UINT32     extscan_vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32     table_id;
    /**current time stamp in seconds. Used to provide a baseline for the relative timestamps returned for each block and entry */
    A_UINT32     current_tstamp;
    /**total number of bssids (in all pages) */
    A_UINT32     total_entries;
    /**index of the first bssid entry found in the TLV wmi_extscan_wlan_descriptor*/
    A_UINT32     first_entry_index;
    /**number of bssids in this page */
    A_UINT32     num_entries_in_page;
    /** number of buckets scanned**/
    A_UINT32     buckets_scanned;
    /* Followed by the variable length TLVs
     *     wmi_extscan_wlan_descriptor    bssid_list[]
     *     wmi_extscan_rssi_info          rssi_list[]
     *     A_UINT8                        ie_list[]
     */
} wmi_extscan_cached_results_event_fixed_param;

typedef enum {
    EXTSCAN_WLAN_CHANGE_FLAG_NONE         = 0x00,
    EXTSCAN_WLAN_CHANGE_FLAG_OUT_OF_RANGE = 0x01,
    EXTSCAN_WLAN_CHANGE_FLAG_AP_LOST      = 0x02,
} wmi_extscan_wlan_change_flags;

typedef struct {
    A_UINT32        tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_ARRAY_STRUC */
    /** bssid */
    wmi_mac_addr    bssid;
    /** time stamp in milliseconds */
    A_UINT32        tstamp;
    /** upper RSSI limit */
    A_UINT32        upper_rssi_limit;
    /** lower RSSI limit */
    A_UINT32        lower_rssi_limit;
    /** channel */
    A_UINT32        channel;    /* in MHz */
    /** current RSSI average */
    A_UINT32        rssi_average;
    /** flags - wmi_extscan_wlan_change_flags */
    A_UINT32        flags;
    /** length of RSSI history to follow (number of values) */
    A_UINT32        num_rssi_samples;
} wmi_extscan_wlan_change_result_bssid;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_wlan_change_results_event_fixed_param */
    /** Request ID of the WMI_EXTSCAN_GET_WLAN_CHANGE_RESULTS_CMDID command that requested the results */
    A_UINT32     request_id;
    /** Requestor ID of the WMI_EXTSCAN_GET_WLAN_CHANGE_RESULTS_CMDID command that requested the results */
    A_UINT32     requestor_id;
    /** VDEV id(interface) of the WMI_EXTSCAN_GET_WLAN_CHANGE_RESULTS_CMDID command that requested the results */
    A_UINT32     vdev_id;
    /** Request ID of the WMI_EXTSCAN_CONFIGURE_WLAN_CHANGE_MONITOR_CMDID command that configured the table */
    A_UINT32     config_request_id;
    /** Requestor ID of the WMI_EXTSCAN_CONFIGURE_WLAN_CHANGE_MONITOR_CMDID command that configured the table */
    A_UINT32     config_requestor_id;
    /** VDEV id(interface) of the WMI_EXTSCAN_CONFIGURE_WLAN_CHANGE_MONITOR_CMDID command that configured the table */
    A_UINT32     config_vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32     table_id;
    /**number of entries with RSSI out of range or BSSID not detected */
    A_UINT32     change_count;
    /**total number of bssid signal descriptors (in all pages) */
    A_UINT32     total_entries;
    /**index of the first bssid signal descriptor entry found in the TLV wmi_extscan_wlan_descriptor*/
    A_UINT32     first_entry_index;
    /**number of bssids signal descriptors in this page */
    A_UINT32     num_entries_in_page;
/* Following this structure is the TLV:
 *     wmi_extscan_wlan_change_result_bssid bssid_signal_descriptor_list[];
 *         (number of descriptors given by field num_entries_in_page)
 * Following this structure is the list of RSSI values (each is an A_UINT8):
 *     A_UINT8 rssi_list[]; <-- last N RSSI values.
 */
} wmi_extscan_wlan_change_results_event_fixed_param;

enum _tExtScanEntryFlags
{
    WMI_HOTLIST_FLAG_NONE           = 0x00,
    WMI_HOTLIST_FLAG_PRESENCE       = 0x01,
    WMI_HOTLIST_FLAG_DUPLICATE_SSID = 0x80,
};

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_hotlist_match_event_fixed_param */
    /** Request ID of the WMI_EXTSCAN_CONFIGURE_HOTLIST_MONITOR_CMDID that configured the table */
    A_UINT32     config_request_id;
    /** Requestor ID of the WMI_EXTSCAN_CONFIGURE_HOTLIST_MONITOR_CMDID that configured the table */
    A_UINT32     config_requestor_id;
    /** VDEV id(interface) of the WMI_EXTSCAN_CONFIGURE_HOTLIST_MONITOR_CMDID that configured the table */
    A_UINT32     config_vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32     table_id;
    /**total number of bssids (in all pages) */
    A_UINT32     total_entries;
    /**index of the first bssid entry found in the TLV wmi_extscan_wlan_descriptor*/
    A_UINT32     first_entry_index;
    /**number of bssids in this page */
    A_UINT32     num_entries_in_page;
/* Following this structure is the TLV:
 *     wmi_extscan_wlan_descriptor hotlist_match[]; <-- number of descriptors given by field num_entries_in_page.
 */
} wmi_extscan_hotlist_match_event_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_hotlist_match_event_fixed_param */
    /** Request ID of the WMI_EXTSCAN_CONFIGURE_HOTLIST_SSID_MONITOR_CMDID that configured the table */
    A_UINT32     config_request_id;
    /** Requestor ID of the WMI_EXTSCAN_CONFIGURE_HOTLIST_SSID_MONITOR_CMDID that configured the table */
    A_UINT32     config_requestor_id;
    /** VDEV id(interface) of the WMI_EXTSCAN_CONFIGURE_HOTLIST_SSID_MONITOR_CMDID that configured the table */
    A_UINT32     config_vdev_id;
    /** table ID - to allow support for multiple simultaneous tables */
    A_UINT32     table_id;
    /**total number of ssids (in all pages) */
    A_UINT32     total_entries;
    /**index of the first ssid entry found in the TLV wmi_extscan_wlan_descriptor*/
    A_UINT32     first_entry_index;
    /**number of ssids in this page */
    A_UINT32     num_entries_in_page;
/* Following this structure is the TLV:
 *     wmi_extscan_wlan_descriptor hotlist_match[]; <-- number of descriptors given by field num_entries_in_page.
 */
} wmi_extscan_hotlist_ssid_match_event_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_extscan_capabilities_event_fixed_param */
    /** Request ID of the WMI_EXTSCAN_GET_CAPABILITIES_CMDID */
    A_UINT32     request_id;
    /** Requestor ID of the WMI_EXTSCAN_GET_CAPABILITIES_CMDID */
    A_UINT32     requestor_id;
    /** VDEV id(interface) of the WMI_EXTSCAN_GET_CAPABILITIES_CMDID */
    A_UINT32     vdev_id;
    /** number of extscan caches */
    A_UINT32     num_extscan_cache_tables;
    /** number of wlan change lists */
    A_UINT32     num_wlan_change_monitor_tables;
    /** number of hotlists */
    A_UINT32     num_hotlist_monitor_tables;
    /** if one sided rtt data collection is supported */
    A_UINT32     rtt_one_sided_supported;
    /** if 11v data collection is supported */
    A_UINT32     rtt_11v_supported;
    /** if 11mc data collection is supported */
    A_UINT32     rtt_ftm_supported;
    /** number of extscan cache capabilities (one per table)  */
    A_UINT32     num_extscan_cache_capabilities;
    /** number of wlan change  capabilities (one per table)  */
    A_UINT32     num_extscan_wlan_change_capabilities;
    /** number of extscan hotlist capabilities (one per table)  */
    A_UINT32     num_extscan_hotlist_capabilities;
    /* max number of roaming ssid whitelist firmware can support */
    A_UINT32 num_roam_ssid_whitelist;
    /* max number of blacklist bssid firmware can support */
    A_UINT32 num_roam_bssid_blacklist;
    /* max number of preferred list firmware can support */
    A_UINT32 num_roam_bssid_preferred_list;
    /* max number of hotlist ssids firmware can support */
    A_UINT32 num_extscan_hotlist_ssid;
    /* max number of epno networks firmware can support */
    A_UINT32 num_epno_networks;

/* Following this structure are the TLVs describing the capabilities of of the various types of lists. The FW theoretically
 * supports multiple lists of each type.
 *
 *     wmi_extscan_cache_capabilities               extscan_cache_capabilities[] <-- capabilities of extscan cache (BSSID/RSSI lists)
 *     wmi_extscan_wlan_change_monitor_capabilities wlan_change_capabilities[]   <-- capabilities of wlan_change_monitor_tables
 *     wmi_extscan_hotlist_monitor_capabilities     hotlist_capabilities[]       <-- capabilities of hotlist_monitor_tables
 */
} wmi_extscan_capabilities_event_fixed_param;

/* WMI_D0_WOW_DISABLE_ACK_EVENTID  */
typedef struct {
    A_UINT32    tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_d0_wow_disable_ack_event_fixed_param  */
    A_UINT32    reserved0; /* for future need */
} wmi_d0_wow_disable_ack_event_fixed_param;

/** WMI_PDEV_RESUME_EVENTID : generated in response to WMI_PDEV_RESUME_CMDID */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_resume_event_fixed_param  */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_resume_event_fixed_param;



/** value representing all modules */
#define WMI_DEBUG_LOG_MODULE_ALL 0xffff

/* param definitions */

/**
  * Log level for a given module. Value contains both module id and log level.
  * here is the bitmap definition for value.
  * module Id   : 16
  *     Flags   :  reserved
  *     Level   :  8
  * if odule Id  is WMI_DEBUG_LOG_MODULE_ALL then  log level is  applied to all modules (global).
  * WMI_DEBUG_LOG_MIDULE_ALL will overwrites per module level setting.
  */
#define WMI_DEBUG_LOG_PARAM_LOG_LEVEL      0x1

#define WMI_DBGLOG_SET_LOG_LEVEL(val,lvl) do { \
        (val) |=  (lvl & 0xff);                \
     } while (0)

#define WMI_DBGLOG_GET_LOG_LEVEL(val) ((val) & 0xff)

#define WMI_DBGLOG_SET_MODULE_ID(val,mid) do { \
        (val) |=  ((mid & 0xffff) << 16);        \
     } while (0)

#define WMI_DBGLOG_GET_MODULE_ID(val) (((val) >> 16) & 0xffff)

/**
  * Enable the debug log for a given vdev. Value is vdev id
  */
#define WMI_DEBUG_LOG_PARAM_VDEV_ENABLE    0x2


/**
  * Disable the debug log for a given vdev. Value is vdev id
  * All the log level  for a given VDEV is disabled except the ERROR log messages
  */

#define WMI_DEBUG_LOG_PARAM_VDEV_DISABLE   0x3

/**
  * set vdev enable bitmap. value is the vden enable bitmap
  */
#define WMI_DEBUG_LOG_PARAM_VDEV_ENABLE_BITMAP    0x4

/**
  * set a given log level to all the modules specified in the module bitmap.
  * and set the log level for all other modules to DBGLOG_ERR.
  *  value: log levelt to be set.
  *  module_id_bitmap : identifies the modules for which the log level should be set and
  *                      modules for which the log level should be reset to DBGLOG_ERR.
  */
#define WMI_DEBUG_LOG_PARAM_MOD_ENABLE_BITMAP    0x5

/**
 *  Wow mode specific logging enablement
 *  Wow mode module_id_bitmap : identifies the modules for which the log level
 *                  should be set in WOW and modules for which the log level
 *                  should be reset to DBGLOG_MAX_LVL.
 */
#define WMI_DEBUG_LOG_PARAM_WOW_MOD_ENABLE_BITMAP 0x6

#define NUM_MODULES_PER_ENTRY ((sizeof(A_UINT32)) << 3)

#define WMI_MODULE_ENABLE(pmid_bitmap,mod_id) \
    ((pmid_bitmap)[(mod_id)/NUM_MODULES_PER_ENTRY] |= \
         (1 << ((mod_id)%NUM_MODULES_PER_ENTRY)))

#define WMI_MODULE_DISABLE(pmid_bitmap,mod_id)     \
    ((pmid_bitmap)[(mod_id)/NUM_MODULES_PER_ENTRY] &=  \
      (~(1 << ((mod_id)%NUM_MODULES_PER_ENTRY))))

#define WMI_MODULE_IS_ENABLED(pmid_bitmap,mod_id) \
    (((pmid_bitmap)[(mod_id)/NUM_MODULES_PER_ENTRY] &  \
       (1 << ((mod_id)%NUM_MODULES_PER_ENTRY))) != 0)

#define MAX_MODULE_ID_BITMAP_WORDS 16 /* 16*32=512 module ids. should be more than sufficient */
typedef struct {
        A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_debug_log_config_cmd_fixed_param */
        A_UINT32 dbg_log_param; /** param types are defined above */
        A_UINT32 value;
        /* The below array will follow this tlv ->fixed length module_id_bitmap[]
        A_UINT32 module_id_bitmap[MAX_MODULE_ID_BITMAP_WORDS];
     */
} wmi_debug_log_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_temperature_cmd_fixed_param  */
    A_UINT32 param;     /* Reserved for future use */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_get_temperature_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_temperature_event_fixed_param */
    A_INT32  value;     /* temperature value in Celcius degree */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_temperature_event_fixed_param;

typedef enum {
    ANTDIV_HW_CFG_STATUS,
    ANTDIV_SW_CFG_STATUS,
    ANTDIV_MAX_STATUS_TYPE_NUM
} ANTDIV_STATUS_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_antdiv_status_cmd_fixed_param  */
    A_UINT32 status_event_id; /* Status event ID - see ANTDIV_STATUS_TYPE */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_get_antdiv_status_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_antdiv_status_event_fixed_param */
    A_UINT32 support;   /* ANT DIV feature enabled or not */
    A_UINT32 chain_num; /* how many chain supported */
    A_UINT32 ant_num;   /* how many ANT supported, 32 max */
    /*
     * Each entry is for a tx/rx chain, and contains a bitmap identifying
     * the antennas attached to that tx/rx chain.
     */
    A_UINT32 selectable_ant_mask[8];
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_antdiv_status_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_dhcp_server_offload_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 enable;
    A_UINT32 srv_ipv4; /* server IP */
    A_UINT32 start_lsb; /* starting address assigned to client */
    A_UINT32 num_client; /* number of clients we support */
} wmi_set_dhcp_server_offload_cmd_fixed_param;

typedef enum {
    AP_RX_DATA_OFFLOAD             = 0x00,
    STA_RX_DATA_OFFLOAD            = 0x01,
} wmi_ipa_offload_types;

/**
 * This command is sent from WLAN host driver to firmware for
 * enabling/disabling IPA data-path offload features.
 *
 *
 * Enabling data path offload to IPA(based on host INI configuration), example:
 *    when STA interface comes up,
 *    host->target: WMI_IPA_OFFLOAD_ENABLE_DISABLE_CMD,
 *                  (enable = 1, vdev_id = STA vdev id, offload_type = STA_RX_DATA_OFFLOAD)
 *
 * Disabling data path offload to IPA, example:
 *    host->target: WMI_IPA_OFFLOAD_ENABLE_DISABLE_CMD,
 *                  (enable = 0, vdev_id = STA vdev id, offload_type = STA_RX_DATA_OFFLOAD)
 *
 *
 * This command is applicable only on the PCIE LL systems
 *
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ipa_offload_enable_disable_cmd_fixed_param */
    A_UINT32 offload_type; /* wmi_ipa_offload_types enum values */
    A_UINT32 vdev_id;
    A_UINT32 enable; /* 1 == enable, 0 == disable */
} wmi_ipa_offload_enable_disable_cmd_fixed_param;

typedef enum {
    WMI_LED_FLASHING_PATTERN_NOT_CONNECTED    = 0,
    WMI_LED_FLASHING_PATTERN_CONNECTED   = 1,
    WMI_LED_FLASHING_PATTERN_RESERVED    = 2,
} wmi_set_led_flashing_type;

/**
The state of the LED GPIO control is determined by two 32 bit values(X_0 and X_1) to produce a 64 bit value.
Each 32 bit value consists of 4 bytes, where each byte defines the number of 50ms intervals that the GPIO will
remain at a predetermined state. The 64 bit value provides 8 unique GPIO timing intervals. The pattern starts
with the MSB of X_0 and continues to the LSB of X_1. After executing the timer interval of the LSB of X_1, the
pattern returns to the MSB of X_0 and repeats. The GPIO state for each timing interval  alternates from Low to
High and the first interval of the pattern represents the time when the GPIO is Low. When a timing interval of
Zero is reached, it is skipped and moves on to the next interval.
*/
typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_led_flashing_cmd_fixed_param  */
    A_UINT32    pattern_id; /* pattern identifier */
    A_UINT32    led_x0; /* led flashing parameter0 */
    A_UINT32    led_x1; /* led flashing parameter1 */
    A_UINT32    gpio_num; /* GPIO number */
} wmi_set_led_flashing_cmd_fixed_param;

/**
 * The purpose of the multicast Domain Name System (mDNS) is to resolve host names to IP addresses
 * within small networks that do not include a local name server.
 * It utilizes essentially the same programming interfaces, packet formats and operating semantics
 * as the unicast DNS, and the advantage is zero configuration service while no need for central or
 * global server.
 * Based on mDNS, the DNS-SD (Service Discovery) allows clients to discover a named list of services
 * by type in a specified domain using standard DNS queries.
 * Here, we provide the ability to advertise the available services by responding to mDNS queries.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mdns_offload_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 enable;
} wmi_mdns_offload_cmd_fixed_param;

#define WMI_MAX_MDNS_FQDN_LEN         64
#define WMI_MAX_MDNS_RESP_LEN         512
#define WMI_MDNS_FQDN_TYPE_GENERAL    0
#define WMI_MDNS_FQDN_TYPE_UNIQUE     1

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mdns_set_fqdn_cmd_fixed_param */
    A_UINT32 vdev_id;
    /** type of fqdn, general or unique */
    A_UINT32 type;
    /** length of fqdn */
    A_UINT32 fqdn_len;
    /* Following this structure is the TLV byte stream of fqdn data of length fqdn_len
     * A_UINT8  fqdn_data[]; <-- fully-qualified domain name to check if match with the received queries
     */
} wmi_mdns_set_fqdn_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mdns_set_resp_cmd_fixed_param */
    A_UINT32 vdev_id;
    /** Answer Resource Record count */
    A_UINT32 AR_count;
    /** length of response */
    A_UINT32 resp_len;
    /* Following this structure is the TLV byte stream of resp data of length resp_len
     * A_UINT8  resp_data[]; <-- responses consisits of Resource Records
     */
} wmi_mdns_set_resp_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mdns_set_staIP_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 staIP; /* IPv4 address for STA mode */
} wmi_mdns_set_staIP_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mdns_get_stats_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_mdns_get_stats_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mdns_stats_event_fixed_param */
    A_UINT32 vdev_id;
    /** curTimestamp in milliseconds */
    A_UINT32 curTimestamp;
    /** last received Query in milliseconds */
    A_UINT32 lastQueryTimestamp;
    /** last sent Response in milliseconds */
    A_UINT32 lastResponseTimestamp;
    /** stats of received queries */
    A_UINT32 totalQueries;
    /** stats of macth queries */
    A_UINT32 totalMatches;
    /** stats of responses */
    A_UINT32 totalResponses;
    /** indicate the current status of mDNS offload */
    A_UINT32 status;
} wmi_mdns_stats_event_fixed_param;

/**
 * The purpose of the SoftAP authenticator offload is to offload the association and 4-way handshake process
 * down to the firmware. When this feature is enabled, firmware can process the association/disassociation
 * request and create/remove connection even host is suspended.
 * 3 major components are offloaded:
 *     1. ap-mlme. Firmware will process auth/deauth, association/disassociation request and send out response.
 *     2. 4-way handshake. Firmware will send out m1/m3 and receive m2/m4.
 *     3. key installation. Firmware will generate PMK from the psk info which is sent from the host and install PMK/GTK.
 * Current implementation only supports WPA2 CCMP.
 */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sap_ofl_enable_cmd_fixed_param */
    /** VDEV id(interface) of the WMI_SAP_OFL_ENABLE_CMDID */
    A_UINT32 vdev_id;
    /** enable/disable sap auth offload */
    A_UINT32 enable;
    /** sap ssid */
    wmi_ssid ap_ssid;
    /** authentication mode (defined above) */
    A_UINT32 rsn_authmode;
    /** unicast cipher set */
    A_UINT32 rsn_ucastcipherset;
    /** mcast/group cipher set */
    A_UINT32 rsn_mcastcipherset;
    /** mcast/group management frames cipher set */
    A_UINT32 rsn_mcastmgmtcipherset;
    /** sap channel */
    A_UINT32 channel;
    /** length of psk */
    A_UINT32 psk_len;
    /* Following this structure is the TLV byte stream of wpa passphrase data of length psk_len
     * A_UINT8  psk[];
     */
} wmi_sap_ofl_enable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sap_ofl_add_sta_event_fixed_param */
    /** VDEV id(interface) of the WMI_SAP_OFL_ADD_STA_EVENTID */
    A_UINT32 vdev_id;
    /** aid (association id) of this station */
    A_UINT32 assoc_id;
    /** peer station's mac addr */
    wmi_mac_addr peer_macaddr;
    /** length of association request frame */
    A_UINT32 data_len;
    /* Following this structure is the TLV byte stream of a whole association request frame of length data_len
     * A_UINT8 bufp[];
     */
} wmi_sap_ofl_add_sta_event_fixed_param;

typedef enum {
    SAP_OFL_DEL_STA_FLAG_NONE       = 0x00,
    SAP_OFL_DEL_STA_FLAG_RECONNECT  = 0x01,
} wmi_sap_ofl_del_sta_flags;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sap_ofl_del_sta_event_fixed_param */
    /** VDEV id(interface) of the WMI_SAP_OFL_DEL_STA_EVENTID */
    A_UINT32 vdev_id;
    /** aid (association id) of this station */
    A_UINT32 assoc_id;
    /** peer station's mac addr */
    wmi_mac_addr peer_macaddr;
    /** disassociation reason */
    A_UINT32 reason;
    /** flags - wmi_sap_ofl_del_sta_flags */
    A_UINT32 flags;
} wmi_sap_ofl_del_sta_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sap_set_blacklist_param_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* Number of client failure connection attempt */
    A_UINT32 num_retry;
    /* Time in milliseconds to record the client's failure connection attempts */
    A_UINT32 retry_allow_time_ms;
    /* Time in milliseconds to drop the connection request if client is blacklisted */
    A_UINT32 blackout_time_ms;
} wmi_sap_set_blacklist_param_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_apfind_cmd_param */
    A_UINT32 data_len; /** length in byte of data[]. */
    /** This structure is used to send REQ binary blobs
     * from application/service to firmware where Host drv is pass through .
     * Following this structure is the TLV:
     *     A_UINT8 data[]; <-- length in byte given by field data_len.
     */
} wmi_apfind_cmd_param;

typedef enum apfind_event_type_e {
    APFIND_MATCH_EVENT = 0,
    APFIND_WAKEUP_EVENT,
} APFIND_EVENT_TYPE;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_apfind_event_hdr */
    A_UINT32 event_type; /** APFIND_EVENT_TYPE */
    A_UINT32 data_len; /** length in byte of data[]. */
    /** This structure is used to send event binary blobs
     * from firmware to application/service and Host drv.
     * Following this structure is the TLV:
     *     A_UINT8 data[]; <-- length in byte given by field data_len.
     */
} wmi_apfind_event_hdr;

/* SAP obss detection offload types */
typedef enum {
    WMI_SAP_OBSS_DETECTION_MODE_DISABLED = 0, /* fw to disable the detection */
    WMI_SAP_OBSS_DETECTION_MODE_PRESENT_NOTIFY = 1, /* if the matching beacon is present, notify host immediately */
    WMI_SAP_OBSS_DETECTION_MODE_ABSENT_TIMEOUT_NOTIFY = 2,/* if the matching beacon is absent for the timeout period, notify host */
} WMI_SAP_OBSS_DETECTION_MODE;

typedef struct wmi_sap_obss_detection_cfg_cmd_s {
    A_UINT32 tlv_header; /* tag = WMITLV_TAG_STRUC_wmi_sap_obss_detection_cfg_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 detect_period_ms;

    /* detect whether there is 11b ap/ibss */
    A_UINT32 b_ap_detect_mode;  /* refer WMI_SAP_OBSS_DETECTION_MODE */

    /* detect whether there is 11b sta connected with other APs */
    A_UINT32 b_sta_detect_mode;

    /* detect whether there is 11g AP */
    A_UINT32 g_ap_detect_mode;

    /* detect whether there is legacy 11a traffic */
    A_UINT32 a_detect_mode;

    /* detect whether there is ap which is ht legacy mode  */
    A_UINT32 ht_legacy_detect_mode;

    /* detect whether there is ap which is ht mixed mode : has 11b/11g sta */
    A_UINT32 ht_mixed_detect_mode;

    /* detect whether there is ap which has 20M only station */
    A_UINT32 ht_20mhz_detect_mode;

} wmi_sap_obss_detection_cfg_cmd_fixed_param;

typedef enum {
    WMI_SAP_OBSS_DETECTION_EVENT_REASON_NOT_SUPPORT = 0,
    WMI_SAP_OBSS_DETECTION_EVENT_REASON_PRESENT_NOTIFY,
    WMI_SAP_OBSS_DETECTION_EVENT_REASON_ABSENT_TIMEOUT,
} WMI_SAP_OBSS_DETECTION_EVENT_REASON;

/* WMI_SAP_OBSS_DETECTION_MATCH_MASK is one or more of the following shift bits */
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_11B_AP_S       0
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_11B_STA_S      1
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_11G_AP_S       2
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_11A_S          3
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_HT_LEGACY_S    4
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_HT_MIXED_S     5
#define WMI_SAP_OBSS_DETECTION_MATCH_BIT_HT_20MHZ_S     6

typedef struct wmi_sap_obss_detection_info_evt_s {
    A_UINT32 tlv_header; /* tag = WMITLV_TAG_STRUC_wmi_sap_obss_detection_info_evt_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 reason;   /* refer WMI_SAP_OBSS_DETECTION_EVENT_REASON */
    A_UINT32 matched_detection_masks;  /* bit(s) from WMI_SAP_OBSS_DETECTION_MATCH_MASK */
    wmi_mac_addr matched_bssid_addr;  /* valid when reason is WMI_SAP_OBSS_DETECTION_EVENT_REASON_PRESENT_NOTIFY */
} wmi_sap_obss_detection_info_evt_fixed_param;

/** WMI command to enable STA FW handle bss color change notification from AP */
typedef struct  {
    A_UINT32 tlv_header; /* tag equals WMITLV_TAG_STRUC_wmi_bss_color_change_enable_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 enable;
} wmi_bss_color_change_enable_fixed_param;

typedef enum  {
    WMI_BSS_COLOR_COLLISION_DISABLE = 0,
    WMI_BSS_COLOR_COLLISION_DETECTION,
    WMI_BSS_COLOR_FREE_SLOT_TIMER_EXPIRY,
    WMI_BSS_COLOR_FREE_SLOT_AVAILABLE,
} WMI_BSS_COLOR_COLLISION_EVT_TYPE;

/** Command to enable OBSS Color collision detection for both STA and AP mode */
typedef struct  {
    A_UINT32 tlv_header;                /* tag equals WMITLV_TAG_STRUC_wmi_obss_color_collision_det_config_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 flags;                     /* proposed for future use cases */
    A_UINT32 evt_type;                  /* WMI_BSS_COLOR_COLLISION_EVT_TYPE */
    A_UINT32 current_bss_color;
    A_UINT32 detection_period_ms;       /* scan interval for both AP and STA mode */
    A_UINT32 scan_period_ms;            /* scan period for passive scan to detect collision */
    A_UINT32 free_slot_expiry_time_ms;  /* FW to notify host at timer expiry after which Host disables bss color */
} wmi_obss_color_collision_det_config_fixed_param;

/** WMI event to notify host on OBSS Color collision detection, free slot available for AP mode */
typedef struct  {
    A_UINT32 tlv_header;                    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_obss_color_collision_evt_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 evt_type;                      /* WMI_BSS_COLOR_COLLISION_EVT_TYPE */
    A_UINT32 bss_color_bitmap_bit0to31;     /* Bit set indicating BSS color present */
    A_UINT32 bss_color_bitmap_bit32to63;    /* Bit set indicating BSS color present */
} wmi_obss_color_collision_evt_fixed_param;

/*
 * WMI event to notify host if latency_flags/latency_level got changed
 * or if latency got enabled/disabled.
 * When latency disable is received in the beacon vendor IE and wlm
 * parameters are restored, latency_enable will be zero.
 * latency level and latency flags will be those of wlm params.
 * Lay out of latency flags is as follows. The field is same as flags
 * in wmi_wlm_config_cmd_fixed_param.
 *
 * |31 19|  18 | 17|16 14| 13 | 12| 11 | 10 |  9  |  8 |7  6|5  4|3  2| 1 | 0 |
 * +-----+-----+---+-----+----+---+----+----+-----+----+----+----+----+---+---+
 * | RSVD|SRATE|RTS| NSS |EDCA|TRY|SSLP|CSLP|DBMPS|RSVD|Roam|RSVD|DWLT|DFS|SUP|
 * +------------------------------+---------------+---------+-----------------+
 * |              WAL             |    PS         |  Roam   |     Scan        |
 */
typedef struct  {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_bcn_latency_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 latency_enable;
    A_UINT32 latency_level;
    A_UINT32 latency_flags;
} wmi_vdev_bcn_latency_fixed_param;

/**
 * OCB DCC types and structures.
 */

/**
 * DCC types as described in ETSI TS 102 687
 * Type                   Format            stepSize    referenceValue  numBits
 * -------------------------------------------------------------------------
 * ndlType_acPrio         INTEGER (0...7)   1           number          3
 * ndlType_controlLoop    INTEGER (0...7)   1           0               3
 * ndlType_arrivalRate    INTEGER (0..8191) 0.01 /s     0               13
 * ndlType_channelLoad    INTEGER (0..1000) 0.1 %       0 %             10
 * ndlType_channelUse     INTEGER (0..8000) 0.0125 %    0 %             13
 * ndlType_datarate       INTEGER (0..7)                Table 8         3
 * ndlType_distance       INTEGER (0..4095) 1 m         0               12
 * ndlType_numberElements INTEGER (0..63)               number          6
 * ndlType_packetDuration INTEGER (0..2047) TSYM        0               11
 * ndlType_packetInterval INTEGER (0..1023) 10 ms       0               10
 * ndlType_pathloss       INTEGER (0..31)   0.1         1.0             5
 * ndlType_rxPower        INTEGER (0..127)  -0.5 dB     -40 dBm         7
 * ndlType_snr            INTEGER (0..127)  0.5 dB      -10 dB          7
 * ndlType_timing         INTEGER (0..4095) 10 ms       0               12
 * ndlType_txPower        INTEGER (0..127)  0.5 dB      -20 dBm         7
 * ndlType_ratio          INTEGER (0..100)  1 %         0 %             7
 * ndlType_exponent       INTEGER (0..100)  0.1         0               7
 * ndlType_queueStatus    Enumeration                   Table A.2       1
 * ndlType_dccMechanism   Bitset                        Table A.2       6
 *
 * NOTE: All of following size macros (SIZE_NDLTYPE_ACPRIO through SIZE_BYTE)
 * cannot be changed without breaking WMI compatibility.
 *
 * NOTE: For each of the types, one additional bit is allocated. This
 *  leftmost bit is used to indicate that the value is invalid. */
#define SIZE_NDLTYPE_ACPRIO         (1 +  3)
#define SIZE_NDLTYPE_CONTROLLOOP    (1 +  3)
#define SIZE_NDLTYPE_ARRIVALRATE    (1 + 13)
#define SIZE_NDLTYPE_CHANNELLOAD    (1 + 10)
#define SIZE_NDLTYPE_CHANNELUSE     (1 + 13)
#define SIZE_NDLTYPE_DATARATE       (1 +  3)
#define SIZE_NDLTYPE_DISTANCE       (1 + 12)
#define SIZE_NDLTYPE_NUMBERELEMENTS (1 +  6)
#define SIZE_NDLTYPE_PACKETDURATION (1 + 11)
#define SIZE_NDLTYPE_PACKETINTERVAL (1 + 10)
#define SIZE_NDLTYPE_PATHLOSS       (1 +  5)
#define SIZE_NDLTYPE_RXPOWER        (1 +  7)
#define SIZE_NDLTYPE_SNR            (1 +  7)
#define SIZE_NDLTYPE_TIMING         (1 + 12)
#define SIZE_NDLTYPE_TXPOWER        (1 +  7)
#define SIZE_NDLTYPE_RATIO          (1 +  7)
#define SIZE_NDLTYPE_EXPONENT       (1 +  7)
#define SIZE_NDLTYPE_QUEUESTATUS    (1 +  1)
#define SIZE_NDLTYPE_DCCMECHANISM   (1 +  6)
#define SIZE_BYTE                   (8)

#define INVALID_ACPRIO          ((1 << SIZE_NDLTYPE_ACPRIO) - 1)
#define INVALID_CONTROLLOOP     ((1 << SIZE_NDLTYPE_CONTROLLOOP) - 1)
#define INVALID_ARRIVALRATE     ((1 << SIZE_NDLTYPE_ARRIVALRATE) - 1)
#define INVALID_CHANNELLOAD     ((1 << SIZE_NDLTYPE_CHANNELLOAD) - 1)
#define INVALID_CHANNELUSE      ((1 << SIZE_NDLTYPE_CHANNELUSE) - 1)
#define INVALID_DATARATE        ((1 << SIZE_NDLTYPE_DATARATE) - 1)
#define INVALID_DISTANCE        ((1 << SIZE_NDLTYPE_DISTANCE) - 1)
#define INVALID_NUMBERELEMENTS  ((1 << SIZE_NDLTYPE_NUMBERELEMENTS) - 1)
#define INVALID_PACKETDURATION  ((1 << SIZE_NDLTYPE_PACKETDURATION) - 1)
#define INVALID_PACKETINTERVAL  ((1 << SIZE_NDLTYPE_PACKETINTERVAL) - 1)
#define INVALID_PATHLOSS        ((1 << SIZE_NDLTYPE_PATHLOSS) - 1)
#define INVALID_RXPOWER         ((1 << SIZE_NDLTYPE_RXPOWER) - 1)
#define INVALID_SNR             ((1 << SIZE_NDLTYPE_SNR) - 1)
#define INVALID_TIMING          ((1 << SIZE_NDLTYPE_TIMING) - 1)
#define INVALID_TXPOWER         ((1 << SIZE_NDLTYPE_TXPOWER) - 1)
#define INVALID_RATIO           ((1 << SIZE_NDLTYPE_RATIO) - 1)
#define INVALID_EXPONENT        ((1 << SIZE_NDLTYPE_EXPONENT) - 1)
#define INVALID_QUEUESTATS      ((1 << SIZE_NDLTYPE_QUEUESTATUS) - 1)
#define INVALID_DCCMECHANISM    ((1 << SIZE_NDLTYPE_DCCMECHANISM) - 1)

/** The MCS_COUNT macro cannot be modified without breaking
 *  WMI compatibility. */
#define MCS_COUNT               (8)

/** Flags for ndlType_dccMechanism. */
typedef enum {
    DCC_MECHANISM_TPC = 1,
    DCC_MECHANISM_TRC = 2,
    DCC_MECHANISM_TDC = 4,
    DCC_MECHANISM_DSC = 8,
    DCC_MECHANISM_TAC = 16,
    DCC_MECHANISM_RESERVED = 32,
    DCC_MECHANISM_ALL = 0x3f,
} wmi_dcc_ndl_type_dcc_mechanism;

/** Values for ndlType_queueStatus. */
typedef enum {
    DCC_QUEUE_CLOSED = 0,
    DCC_QUEUE_OPEN = 1,
} wmi_dcc_ndl_type_queue_status;

/** For ndlType_acPrio, use the values in wmi_traffic_ac. */

/** Values for ndlType_datarate */
typedef enum {
    DCC_DATARATE_3_MBPS = 0,
    DCC_DATARATE_4_5_MBPS = 1,
    DCC_DATARATE_6_MBPS = 2,
    DCC_DATARATE_9_MBPS = 3,
    DCC_DATARATE_12_MBPS = 4,
    DCC_DATARATE_18_MBPS = 5,
    DCC_DATARATE_24_MBPS = 6,
    DCC_DATARATE_27_MBPS = 7,
} wmi_dcc_ndl_type_datarate;

/** Data structure for active state configuration. */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_dcc_ndl_active_state_config */
    A_UINT32 tlv_header;
    /**
     * NDL_asStateId, ndlType_numberElements, 1+6 bits.
     * NDL_asChanLoad, ndlType_channelLoad, 1+10 bits.
     */
    A_UINT32 state_info;
    /**
     * NDL_asDcc(AC_BK), ndlType_dccMechanism, 1+6 bits.
     * NDL_asDcc(AC_BE), ndlType_dccMechanism, 1+6 bits.
     * NDL_asDcc(AC_VI), ndlType_dccMechanism, 1+6 bits.
     * NDL_asDcc(AC_VO), ndlType_dccMechanism, 1+6 bits.
     */
    A_UINT32 as_dcc[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_DCCMECHANISM)];

    /**
     * NDL_asTxPower(AC_BK), ndlType_txPower, 1+7 bits.
     * NDL_asTxPower(AC_BE), ndlType_txPower, 1+7 bits.
     * NDL_asTxPower(AC_VI), ndlType_txPower, 1+7 bits.
     * NDL_asTxPower(AC_VO), ndlType_txPower, 1+7 bits.
     */
    A_UINT32 as_tx_power_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_TXPOWER)];
    /**
     * NDL_asPacketInterval(AC_BK), ndlType_packetInterval, 1+10 bits.
     * NDL_asPacketInterval(AC_BE), ndlType_packetInterval, 1+10 bits.
     * NDL_asPacketInterval(AC_VI), ndlType_packetInterval, 1+10 bits.
     * NDL_asPacketInterval(AC_VO), ndlType_packetInterval, 1+10 bits.
     */
    A_UINT32 as_packet_interval_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_PACKETINTERVAL)];
    /**
     * NDL_asDatarate(AC_BK), ndlType_datarate, 1+3 bits.
     * NDL_asDatarate(AC_BE), ndlType_datarate, 1+3 bits.
     * NDL_asDatarate(AC_VI), ndlType_datarate, 1+3 bits.
     * NDL_asDatarate(AC_VO), ndlType_datarate, 1+3 bits.
     */
    A_UINT32 as_datarate_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_DATARATE)];
    /**
     * NDL_asCarrierSense(AC_BK), ndlType_rxPower, 1+7 bits.
     * NDL_asCarrierSense(AC_BE), ndlType_rxPower, 1+7 bits.
     * NDL_asCarrierSense(AC_VI), ndlType_rxPower, 1+7 bits.
     * NDL_asCarrierSense(AC_VO), ndlType_rxPower, 1+7 bits.
     */
    A_UINT32 as_carrier_sense_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_RXPOWER)];
} wmi_dcc_ndl_active_state_config;

#define WMI_NDL_AS_STATE_ID_GET(ptr)                    WMI_GET_BITS((ptr)->state_info, 0, 7)
#define WMI_NDL_AS_STATE_ID_SET(ptr,val)                WMI_SET_BITS((ptr)->state_info, 0, 7, val)
#define WMI_NDL_AS_CHAN_LOAD_GET(ptr)                   WMI_GET_BITS((ptr)->state_info, 7, 11)
#define WMI_NDL_AS_CHAN_LOAD_SET(ptr,val)               WMI_SET_BITS((ptr)->state_info, 7, 11, val)
#define WMI_NDL_AS_DCC_GET(ptr,acprio)                  wmi_packed_arr_get_bits((ptr)->as_dcc, acprio, SIZE_NDLTYPE_DCCMECHANISM)
#define WMI_NDL_AS_DCC_SET(ptr,acprio,val)              wmi_packed_arr_set_bits((ptr)->as_dcc, acprio, SIZE_NDLTYPE_DCCMECHANISM, val)
#define WMI_NDL_AS_TX_POWER_GET(ptr,acprio)             wmi_packed_arr_get_bits((ptr)->as_tx_power_ac, acprio, SIZE_NDLTYPE_TXPOWER)
#define WMI_NDL_AS_TX_POWER_SET(ptr,acprio,val)         wmi_packed_arr_set_bits((ptr)->as_tx_power_ac, acprio, SIZE_NDLTYPE_TXPOWER, val)
#define WMI_NDL_AS_PACKET_INTERVAL_GET(ptr,acprio)      wmi_packed_arr_get_bits((ptr)->as_packet_interval_ac, acprio, SIZE_NDLTYPE_PACKETINTERVAL)
#define WMI_NDL_AS_PACKET_INTERVAL_SET(ptr,acprio,val)  wmi_packed_arr_set_bits((ptr)->as_packet_interval_ac, acprio, SIZE_NDLTYPE_PACKETINTERVAL, val)
#define WMI_NDL_AS_DATARATE_GET(ptr,acprio)             wmi_packed_arr_get_bits((ptr)->as_datarate_ac, acprio, SIZE_NDLTYPE_DATARATE)
#define WMI_NDL_AS_DATARATE_SET(ptr,acprio,val)         wmi_packed_arr_set_bits((ptr)->as_datarate_ac, acprio, SIZE_NDLTYPE_DATARATE, val)
#define WMI_NDL_AS_CARRIER_SENSE_GET(ptr,acprio)        wmi_packed_arr_get_bits((ptr)->as_carrier_sense_ac, acprio, SIZE_NDLTYPE_RXPOWER)
#define WMI_NDL_AS_CARRIER_SENSE_SET(ptr,acprio,val)    wmi_packed_arr_set_bits((ptr)->as_carrier_sense_ac, acprio, SIZE_NDLTYPE_RXPOWER, val)

/** Data structure for EDCA/QOS parameters. */
typedef struct
{
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_qos_parameter */
    A_UINT32 tlv_header;
    /** Arbitration Inter-Frame Spacing. Range: 2-15 */
    A_UINT32 aifsn;
    /** Contention Window minimum. Range: 1 - 10 */
    A_UINT32 cwmin;
    /** Contention Window maximum. Range: 1 - 10 */
    A_UINT32 cwmax;
} wmi_qos_parameter;

/** Data structure for information specific to a channel. */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ocb_channel */
    A_UINT32 tlv_header;
    A_UINT32 bandwidth; /* MHz units */
    wmi_mac_addr mac_address;
} wmi_ocb_channel;

/** Data structure for an element of the schedule array. */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ocb_schedule_element */
    A_UINT32 tlv_header;
    A_UINT32 channel_freq; /* MHz units */
    A_UINT32 total_duration; /* ms units */
    A_UINT32 guard_interval; /* ms units */
} wmi_ocb_schedule_element;

/** Data structure for OCB configuration. */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ocb_set_config_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** VDEV id(interface) that is being configured */
    A_UINT32 vdev_id;
    A_UINT32 channel_count;
    A_UINT32 schedule_size;
    A_UINT32 flags;
    A_UINT32 ta_max_duration; /* Max duration of continuing multichannel operation without receiving a TA frame (units = seconds) */

    /** This is followed by a TLV array of wmi_channel. */
    /** This is followed by a TLV array of wmi_ocb_channel. */
    /** This is followed by a TLV array of wmi_qos_parameter. */
    /** This is followed by a TLV array of wmi_dcc_ndl_chan. */
    /** This is followed by a TLV array of wmi_dcc_ndl_active_state_config. */
    /** This is followed by a TLV array of wmi_ocb_schedule_element. */
} wmi_ocb_set_config_cmd_fixed_param;

#define EXPIRY_TIME_IN_TSF_TIMESTAMP_OFFSET     0
#define EXPIRY_TIME_IN_TSF_TIMESTAMP_MASK       1

#define WMI_OCB_EXPIRY_TIME_IN_TSF(ptr)     (((ptr)->flags & EXPIRY_TIME_IN_TSF_TIMESTAMP_MASK) >> EXPIRY_TIME_IN_TSF_TIMESTAMP_OFFSET)


/** Data structure for the response to the WMI_OCB_SET_CONFIG_CMDID command. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ocb_set_config_resp_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 status;
} wmi_ocb_set_config_resp_event_fixed_param;

/* SIZE_UTC_TIME and SIZE_UTC_TIME_ERROR cannot be modified without breaking
   WMI compatibility. */
#define SIZE_UTC_TIME (10) /* The size of the utc time in bytes. */
#define SIZE_UTC_TIME_ERROR (5) /* The size of the utc time error in bytes. */

/** Data structure to set the UTC time. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ocb_set_utc_time_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** 10 bytes of the utc time. */
    A_UINT32 utc_time[WMI_PACKED_ARR_SIZE(SIZE_UTC_TIME,SIZE_BYTE)];
    /** 5 bytes of the time error. */
    A_UINT32 time_error[WMI_PACKED_ARR_SIZE(SIZE_UTC_TIME_ERROR,SIZE_BYTE)];
} wmi_ocb_set_utc_time_cmd_fixed_param;

#define WMI_UTC_TIME_GET(ptr,byte_index)        wmi_packed_arr_get_bits((ptr)->utc_time, byte_index, SIZE_BYTE)
#define WMI_UTC_TIME_SET(ptr,byte_index,val)    wmi_packed_arr_set_bits((ptr)->utc_time, byte_index, SIZE_BYTE, val)
#define WMI_TIME_ERROR_GET(ptr,byte_index)      wmi_packed_arr_get_bits((ptr)->time_error, byte_index, SIZE_BYTE)
#define WMI_TIME_ERROR_SET(ptr,byte_index,val)  wmi_packed_arr_set_bits((ptr)->time_error, byte_index, SIZE_BYTE, val)

/** Data structure start the timing advertisement. The template for the
 *  timing advertisement frame follows this structure in the WMI command.
 */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ocb_start_timing_advert_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** Number of times the TA is sent every 5 seconds. */
    A_UINT32 repeat_rate;
    /** The frequency on which to transmit. */
    A_UINT32 channel_freq; /* MHz units */
    /** The offset into the template of the timestamp. */
    A_UINT32 timestamp_offset;
    /** The offset into the template of the time value. */
    A_UINT32 time_value_offset;
    /** The length of the timing advertisement template. The
     *  template is in the TLV data. */
    A_UINT32 timing_advert_template_length;

    /** This is followed by a binary array containing the TA template. */
} wmi_ocb_start_timing_advert_cmd_fixed_param;

/** Data structure to stop the timing advertisement. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ocb_stop_timing_advert_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 channel_freq; /* MHz units */
} wmi_ocb_stop_timing_advert_cmd_fixed_param;

/** Data structure for the request for WMI_OCB_GET_TSF_TIMER_CMDID. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ocb_get_tsf_timer_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 reserved;
} wmi_ocb_get_tsf_timer_cmd_fixed_param;

/** Data structure for the response to WMI_OCB_GET_TSF_TIMER_CMDID. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_ocb_get_tsf_timer_resp_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 tsf_timer_high;
    A_UINT32 tsf_timer_low;
} wmi_ocb_get_tsf_timer_resp_event_fixed_param;

/** Data structure for DCC stats configuration per channel. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_ndl_stats_per_channel */
    A_UINT32 tlv_header;

    /** The channel for which this applies, 16 bits. */
    /** The dcc_stats_bitmap, 8 bits. */
    A_UINT32 chan_info;

    /** Demodulation model parameters. */
    /**
     * NDL_snrBackoff(MCS0), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS1), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS2), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS3), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS4), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS5), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS6), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS7), ndlType_snr, 1+7 bits.
     */
    A_UINT32 snr_backoff_mcs[WMI_PACKED_ARR_SIZE(MCS_COUNT,SIZE_NDLTYPE_SNR)];

    /** Communication ranges. */
    /**
     * tx_power, ndlType_txPower, 1+7 bits.
     * datarate, ndlType_datarate, 1+3 bits.
     */
    A_UINT32 tx_power_datarate;
    /**
     * NDL_carrierSenseRange, ndlType_distance, 1+12 bits.
     * NDL_estCommRange, ndlType_distance, 1+12 bits.
     */
    A_UINT32 carrier_sense_est_comm_range;

    /** Channel load measures. */
    /**
     * dccSensitivity, ndlType_rxPower, 1+7 bits.
     * carrierSense, ndlType_rxPower, 1+7 bits.
     * NDL_channelLoad, ndlType_channelLoad, 1+10 bits.
     */
    A_UINT32 dcc_stats;
    /**
     * NDL_packetArrivalRate, ndlType_arrivalRate, 1+13 bits.
     * NDL_packetAvgDuration, ndlType_packetDuration, 1+11 bits.
     */
    A_UINT32 packet_stats;
    /**
     * NDL_channelBusyTime, ndlType_channelLoad, 1+10 bits.
     */
    A_UINT32 channel_busy_time;

    /** Transmit packet statistics. */
    /**
     * NDL_txPacketArrivalRate(AC_BK), ndlType_arrivalRate, 1+13 bits.
     * NDL_txPacketArrivalRate(AC_BE), ndlType_arrivalRate, 1+13 bits.
     * NDL_txPacketArrivalRate(AC_VI), ndlType_arrivalRate, 1+13 bits.
     * NDL_txPacketArrivalRate(AC_VO), ndlType_arrivalRate, 1+13 bits.
     */
    A_UINT32 tx_packet_arrival_rate_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_ARRIVALRATE)];
    /**
     * NDL_txPacketAvgDuration(AC_BK), ndlType_packetDuration, 1+11 bits.
     * NDL_txPacketAvgDuration(AC_BE), ndlType_packetDuration, 1+11 bits.
     * NDL_txPacketAvgDuration(AC_VI), ndlType_packetDuration, 1+11 bits.
     * NDL_txPacketAvgDuration(AC_VO), ndlType_packetDuration, 1+11 bits.
     */
    A_UINT32 tx_packet_avg_duration_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_PACKETDURATION)];
    /**
     * NDL_txChannelUse(AC_BK), ndlType_channelUse, 1+13 bits.
     * NDL_txChannelUse(AC_BE), ndlType_channelUse, 1+13 bits.
     * NDL_txChannelUse(AC_VI), ndlType_channelUse, 1+13 bits.
     * NDL_txChannelUse(AC_VO), ndlType_channelUse, 1+13 bits.
     */
    A_UINT32 tx_channel_use_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_CHANNELUSE)];
    /**
     * NDL_txSignalAvgPower(AC_BK), ndlType_txPower, 1+7 bits.
     * NDL_txSignalAvgPower(AC_BE), ndlType_txPower, 1+7 bits.
     * NDL_txSignalAvgPower(AC_VI), ndlType_txPower, 1+7 bits.
     * NDL_txSignalAvgPower(AC_VO), ndlType_txPower, 1+7 bits.
     */
    A_UINT32 tx_signal_avg_power_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_TXPOWER)];
} wmi_dcc_ndl_stats_per_channel;

#define WMI_NDL_STATS_SNR_BACKOFF_GET(ptr,mcs)      wmi_packed_arr_get_bits((ptr)->snr_backoff_mcs, mcs, SIZE_NDLTYPE_SNR)
#define WMI_NDL_STATS_SNR_BACKOFF_SET(ptr,mcs,val)  wmi_packed_arr_set_bits((ptr)->snr_backoff_mcs, mcs, SIZE_NDLTYPE_SNR, val)

#define WMI_NDL_STATS_CHAN_FREQ_GET(ptr)            WMI_GET_BITS((ptr)->chan_info, 0, 16)
#define WMI_NDL_STATS_CHAN_FREQ_SET(ptr,val)        WMI_SET_BITS((ptr)->chan_info, 0, 16, val)
#define WMI_NDL_STATS_DCC_STATS_BITMAP_GET(ptr)     WMI_GET_BITS((ptr)->chan_info, 16, 8)
#define WMI_NDL_STATS_DCC_STATS_BITMAP_SET(ptr,val) WMI_SET_BITS((ptr)->chan_info, 16, 8, val)

#define WMI_NDL_STATS_SNR_BACKOFF_GET(ptr,mcs)      wmi_packed_arr_get_bits((ptr)->snr_backoff_mcs, mcs, SIZE_NDLTYPE_SNR)
#define WMI_NDL_STATS_SNR_BACKOFF_SET(ptr,mcs,val)  wmi_packed_arr_set_bits((ptr)->snr_backoff_mcs, mcs, SIZE_NDLTYPE_SNR, val)

#define WMI_TX_POWER_GET(ptr)                       WMI_GET_BITS((ptr)->tx_power_datarate, 0, 8)
#define WMI_TX_POWER_SET(ptr,val)                   WMI_SET_BITS((ptr)->tx_power_datarate, 0, 8, val)
#define WMI_TX_DATARATE_GET(ptr)                    WMI_GET_BITS((ptr)->tx_power_datarate, 0, 4)
#define WMI_TX_DATARATE_SET(ptr,val)                WMI_SET_BITS((ptr)->tx_power_datarate, 0, 4, val)
#define WMI_NDL_CARRIER_SENSE_RANGE_GET(ptr)        WMI_GET_BITS((ptr)->carrier_sense_est_comm_range, 0, 13)
#define WMI_NDL_CARRIER_SENSE_RANGE_SET(ptr,val)    WMI_SET_BITS((ptr)->carrier_sense_est_comm_range, 0, 13, val)
#define WMI_NDL_EST_COMM_RANGE_GET(ptr)             WMI_GET_BITS((ptr)->carrier_sense_est_comm_range, 13, 13)
#define WMI_NDL_EST_COMM_RANGE_SET(ptr,val)         WMI_SET_BITS((ptr)->carrier_sense_est_comm_range, 13, 13, val)

#define WMI_DCC_SENSITIVITY_GET(ptr)                WMI_GET_BITS((ptr)->dcc_stats, 0, 8)
#define WMI_DCC_SENSITIVITY_SET(ptr,val)            WMI_SET_BITS((ptr)->dcc_stats, 0, 8, val)
#define WMI_CARRIER_SENSE_GET(ptr)                  WMI_GET_BITS((ptr)->dcc_stats, 8, 8)
#define WMI_CARRIER_SENSE_SET(ptr,val)              WMI_SET_BITS((ptr)->dcc_stats, 8, 8, val)
#define WMI_NDL_CHANNEL_LOAD_GET(ptr)               WMI_GET_BITS((ptr)->dcc_stats, 16, 11)
#define WMI_NDL_CHANNEL_LOAD_SET(ptr,val)           WMI_SET_BITS((ptr)->dcc_stats, 16, 11, val)
#define WMI_NDL_PACKET_ARRIVAL_RATE_GET(ptr)        WMI_GET_BITS((ptr)->packet_stats, 0, 14)
#define WMI_NDL_PACKET_ARRIVAL_RATE_SET(ptr,val)    WMI_SET_BITS((ptr)->packet_stats, 0, 14, val)
#define WMI_NDL_PACKET_AVG_DURATION_GET(ptr)        WMI_GET_BITS((ptr)->packet_stats, 14, 12)
#define WMI_NDL_PACKET_AVG_DURATION_SET(ptr,val)    WMI_SET_BITS((ptr)->packet_stats, 14, 12, val)
#define WMI_NDL_CHANNEL_BUSY_TIME_GET(ptr)          WMI_GET_BITS((ptr)->channel_busy_time, 0, 11)
#define WMI_NDL_CHANNEL_BUSY_TIME_SET(ptr,val)      WMI_SET_BITS((ptr)->channel_busy_time, 0, 11, val)

#define WMI_NDL_TX_PACKET_ARRIVAL_RATE_GET(ptr,acprio)          wmi_packed_arr_get_bits((ptr)->tx_packet_arrival_rate_ac, acprio, SIZE_NDLTYPE_ARRIVALRATE)
#define WMI_NDL_TX_PACKET_ARRIVAL_RATE_SET(ptr,acprio,val)      wmi_packed_arr_set_bits((ptr)->tx_packet_arrival_rate_ac, acprio, SIZE_NDLTYPE_ARRIVALRATE, val)
#define WMI_NDL_TX_PACKET_AVG_DURATION_GET(ptr,acprio)          wmi_packed_arr_get_bits((ptr)->tx_packet_avg_duration_ac, acprio, SIZE_NDLTYPE_PACKETDURATION)
#define WMI_NDL_TX_PACKET_AVG_DURATION_SET(ptr,acprio,val)      wmi_packed_arr_set_bits((ptr)->tx_packet_avg_duration_ac, acprio, SIZE_NDLTYPE_PACKETDURATION, val)
#define WMI_NDL_TX_CHANNEL_USE_GET(ptr,acprio)                  wmi_packed_arr_get_bits((ptr)->tx_channel_use_ac, acprio, SIZE_NDLTYPE_CHANNELUSE)
#define WMI_NDL_TX_CHANNEL_USE_SET(ptr,acprio,val)              wmi_packed_arr_set_bits((ptr)->tx_channel_use_ac, acprio, SIZE_NDLTYPE_CHANNELUSE, val)
#define WMI_NDL_TX_SIGNAL_AVG_POWER_GET(ptr,acprio)             wmi_packed_arr_get_bits((ptr)->tx_signal_avg_power_ac, acprio, SIZE_NDLTYPE_TXPOWER)
#define WMI_NDL_TX_SIGNAL_AVG_POWER_SET(ptr,acprio,val)         wmi_packed_arr_set_bits((ptr)->tx_signal_avg_power_ac, acprio, SIZE_NDLTYPE_TXPOWER, val)

/** Bitmap for DCC stats. */
typedef enum {
    DCC_STATS_DEMODULATION_MODEL = 1,
    DCC_STATS_COMMUNICATION_RANGES = 2,
    DCC_STATS_CHANNEL_LOAD_MEASURES = 4,
    DCC_STATS_TRANSMIT_PACKET_STATS = 8,
    DCC_STATS_TRANSMIT_MODEL_PARAMETER = 16,
    DCC_STATS_ALL = 0xff,
} wmi_dcc_stats_bitmap;

/** Data structure for getting the DCC stats. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_get_stats_cmd_fixed_param */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;

    /** The number of channels for which stats are being requested. */
    A_UINT32 num_channels;

    /** This is followed by a TLV array of wmi_dcc_channel_stats_request. */
} wmi_dcc_get_stats_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_channel_stats_request */
    A_UINT32 tlv_header;

    /** The channel for which this applies. */
    A_UINT32 chan_freq; /* MHz units */

    /** The DCC stats being requested. */
    A_UINT32 dcc_stats_bitmap;
} wmi_dcc_channel_stats_request;

/** Data structure for the response with the DCC stats. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_get_stats_resp_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** Number of channels in the response. */
    A_UINT32 num_channels;
    /** This is followed by a TLV array of wmi_dcc_ndl_stats_per_channel. */
} wmi_dcc_get_stats_resp_event_fixed_param;

/** Data structure for clearing the DCC stats. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_clear_stats_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 dcc_stats_bitmap;
} wmi_dcc_clear_stats_cmd_fixed_param;

/** Data structure for the pushed DCC stats */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_stats_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** The number of channels in the response. */
    A_UINT32 num_channels;

    /** This is followed by a TLV array of wmi_dcc_ndl_stats_per_channel. */
} wmi_dcc_stats_event_fixed_param;

/** Data structure for updating NDL per channel. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_ndl_chan */
    A_UINT32 tlv_header;

    /**
     * Channel frequency, 16 bits
     * NDL_numActiveState, ndlType_numberElements, 1+6 bits
     */
    A_UINT32 chan_info;

    /**
     *  NDL_minDccSampling, 10 bits.
     *      Maximum time interval between subsequent checks of the DCC rules.
     */
    A_UINT32 ndl_min_dcc_sampling;

    /**
     * dcc_enable, 1 bit.
     * dcc_stats_enable, 1 bit.
     * dcc_stats_interval, 16 bits.
     */
    A_UINT32 dcc_flags;

    /** General DCC configuration. */
    /**
     * NDL_timeUp, ndlType_timing, 1+12 bits.
     * NDL_timeDown, ndlType_timing, 1+12 bits.
     */
    A_UINT32 general_config;

    /** Transmit power thresholds. */
    /**
     * NDL_minTxPower, ndlType_txPower, 1+7 bits.
     * NDL_maxTxPower, ndlType_txPower, 1+7 bits.
     */
    A_UINT32 min_max_tx_power; /* see "ETSI TS 102 687" table above for units */
    /**
     * NDL_defTxPower(AC_BK), ndlType_txPower, 1+7 bits.
     * NDL_defTxPower(AC_BE), ndlType_txPower, 1+7 bits.
     * NDL_defTxPower(AC_VI), ndlType_txPower, 1+7 bits.
     * NDL_defTxPower(AC_VO), ndlType_txPower, 1+7 bits.
     */
    /* see "ETSI TS 102 687" table above for units */
    A_UINT32 def_tx_power_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_TXPOWER)];

    /** Packet timing thresholds. */
    /**
     * NDL_maxPacketDuration(AC_BK), ndlType_packetDuration, 1+11 bits.
     * NDL_maxPacketDuration(AC_BE), ndlType_packetDuration, 1+11 bits.
     * NDL_maxPacketDuration(AC_VI), ndlType_packetDuration, 1+11 bits.
     * NDL_maxPacketDuration(AC_VO), ndlType_packetDuration, 1+11 bits.
     */
    A_UINT32 max_packet_duration_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_PACKETDURATION)];
    /**
     * NDL_minPacketInterval, ndlType_packetInterval, 1+10 bits.
     * NDL_maxPacketInterval, ndlType_packetInterval, 1+10 bits.
     */
    A_UINT32 min_max_packet_interval;
    /**
     * NDL_defPacketInterval(AC_BK), ndlType_packetInterval, 1+10 bits.
     * NDL_defPacketInterval(AC_BE), ndlType_packetInterval, 1+10 bits.
     * NDL_defPacketInterval(AC_VI), ndlType_packetInterval, 1+10 bits.
     * NDL_defPacketInterval(AC_VO), ndlType_packetInterval, 1+10 bits.
     */
    A_UINT32 def_packet_interval_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_PACKETINTERVAL)];

    /** Packet datarate thresholds. */
    /**
     * NDL_minDatarate, ndlType_datarate, 1+3 bits.
     * NDL_maxDatarate, ndlType_datarate, 1+3 bits.
     */
    A_UINT32 min_max_datarate;
    /**
     * NDL_defDatarate(AC_BK), ndlType_datarate, 1+3 bits.
     * NDL_defDatarate(AC_BE), ndlType_datarate, 1+3 bits.
     * NDL_defDatarate(AC_VI), ndlType_datarate, 1+3 bits.
     * NDL_defDatarate(AC_VO), ndlType_datarate, 1+3 bits.
     */
    A_UINT32 def_datarate_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC,SIZE_NDLTYPE_DATARATE)];

    /** Receive signal thresholds. */
    /**
     * NDL_minCarrierSense, ndlType_rxPower, 1+7 bits.
     * NDL_maxCarrierSense, ndlType_rxPower, 1+7 bits.
     * NDL_defCarrierSense, ndlType_rxPower, 1+7 bits.
     */
    A_UINT32 min_max_def_carrier_sense;

    /** Receive model parameter. */
    /**
     * NDL_defDccSensitivity, ndlType_rxPower, 1+7 bits.
     * NDL_maxCsRange, ndlType_distance, 1+12 bits.
     * NDL_refPathLoss, ndlType_pathloss, 1+5 bits.
     */
    A_UINT32 receive_model_parameter;

    /**
     * NDL_minSNR, ndlType_snr, 1+7 bits.
     */
    A_UINT32 receive_model_parameter_2;

    /** Demodulation model parameters. */
    /**
     * NDL_snrBackoff(MCS0), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS1), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS2), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS3), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS4), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS5), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS6), ndlType_snr, 1+7 bits.
     * NDL_snrBackoff(MCS7), ndlType_snr, 1+7 bits.
     */
    A_UINT32 snr_backoff_mcs[WMI_PACKED_ARR_SIZE(MCS_COUNT,SIZE_NDLTYPE_SNR)];

    /** Transmit model parameters. */
    /**
     * NDL_tmPacketArrivalRate(AC_BK), ndlType_arrivalRate, 1+13 bits.
     * NDL_tmPacketArrivalRate(AC_BE), ndlType_arrivalRate, 1+13 bits.
     * NDL_tmPacketArrivalRate(AC_VI), ndlType_arrivalRate, 1+13 bits.
     * NDL_tmPacketArrivalRate(AC_VO), ndlType_arrivalRate, 1+13 bits.
     */
    A_UINT32 tm_packet_arrival_rate_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_ARRIVALRATE)];
    /**
     * NDL_tmPacketAvgDuration(AC_BK), ndlType_packetDuration, 1+11 bits.
     * NDL_tmPacketAvgDuration(AC_BE), ndlType_packetDuration, 1+11 bits.
     * NDL_tmPacketAvgDuration(AC_VI), ndlType_packetDuration, 1+11 bits.
     * NDL_tmPacketAvgDuration(AC_VO), ndlType_packetDuration, 1+11 bits.
     */
    A_UINT32 tm_packet_avg_duration_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_PACKETDURATION)];
    /**
     * NDL_tmSignalAvgPower(AC_BK), ndlType_txPower, 1+7 bits.
     * NDL_tmSignalAvgPower(AC_BE), ndlType_txPower, 1+7 bits.
     * NDL_tmSignalAvgPower(AC_VI), ndlType_txPower, 1+7 bits.
     * NDL_tmSignalAvgPower(AC_VO), ndlType_txPower, 1+7 bits.
     */
    A_UINT32 tm_signal_avg_power_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_TXPOWER)];
    /**
     * NDL_tmMaxChannelUse, ndlType_channelUse, 1+13 bits.
     */
    A_UINT32 tm_max_channel_use;
    /**
     * NDL_tmChannelUse(AC_BK), ndlType_channelUse, 1+13 bits.
     * NDL_tmChannelUse(AC_BE), ndlType_channelUse, 1+13 bits.
     * NDL_tmChannelUse(AC_VI), ndlType_channelUse, 1+13 bits.
     * NDL_tmChannelUse(AC_VO), ndlType_channelUse, 1+13 bits.
     */
    A_UINT32 tm_channel_use_ac[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_CHANNELUSE)];

    /** Channel load thresholds. */
    /**
     * NDL_minChannelLoad, ndlType_channelLoad, 1+10 bits.
     * NDL_maxChannelLoad, ndlType_channelLoad, 1+10 bits.
     */
    A_UINT32 min_max_channel_load;

    /** Transmit queue parameters. */
    /**
     * NDL_numQueue, ndlType_acPrio, 1+3 bits.
     * NDL_refQueueStatus(AC_BK), ndlType_queueStatus, 1+1 bit.
     * NDL_refQueueStatus(AC_BE), ndlType_queueStatus, 1+1 bit.
     * NDL_refQueueStatus(AC_VI), ndlType_queueStatus, 1+1 bit.
     * NDL_refQueueStatus(AC_VO), ndlType_queueStatus, 1+1 bit.
     */
    A_UINT32 transmit_queue_parameters;

    /**
     * NDL_refQueueLen(AC_BK), ndlType_numberElements, 1+6 bits.
     * NDL_refQueueLen(AC_BE), ndlType_numberElements, 1+6 bits.
     * NDL_refQueueLen(AC_VI), ndlType_numberElements, 1+6 bits.
     * NDL_refQueueLen(AC_VO), ndlType_numberElements, 1+6 bits.
     */
    A_UINT32 numberElements[WMI_PACKED_ARR_SIZE(WLAN_MAX_AC, SIZE_NDLTYPE_NUMBERELEMENTS)];

} wmi_dcc_ndl_chan;

#define WMI_CHAN_FREQ_GET(ptr)                  WMI_GET_BITS((ptr)->chan_info, 0, 16)
#define WMI_CHAN_FREQ_SET(ptr,val)              WMI_SET_BITS((ptr)->chan_info, 0, 16, val)
#define WMI_NDL_NUM_ACTIVE_STATE_GET(ptr)       WMI_GET_BITS((ptr)->chan_info, 16, 7)
#define WMI_NDL_NUM_ACTIVE_STATE_SET(ptr,val)   WMI_SET_BITS((ptr)->chan_info, 16, 7, val)

#define WMI_NDL_MIN_DCC_SAMPLING_GET(ptr)       WMI_GET_BITS((ptr)->ndl_min_dcc_sampling, 0, 10)
#define WMI_NDL_MIN_DCC_SAMPLING_SET(ptr,val)   WMI_SET_BITS((ptr)->ndl_min_dcc_sampling, 0, 10, val)
#define WMI_NDL_MEASURE_INTERVAL_GET(ptr)       WMI_GET_BITS((ptr)->ndl_min_dcc_sampling, 10, 16)
#define WMI_NDL_MEASURE_INTERVAL_SET(ptr,val)   WMI_SET_BITS((ptr)->ndl_min_dcc_sampling, 10, 16, val)

#define WMI_NDL_DCC_ENABLE_GET(ptr)             WMI_GET_BITS((ptr)->dcc_flags, 0, 1)
#define WMI_NDL_DCC_ENABLE_SET(ptr,val)         WMI_SET_BITS((ptr)->dcc_flags, 0, 1, val)
#define WMI_NDL_DCC_STATS_ENABLE_GET(ptr)       WMI_GET_BITS((ptr)->dcc_flags, 1, 1)
#define WMI_NDL_DCC_STATS_ENABLE_SET(ptr,val)   WMI_SET_BITS((ptr)->dcc_flags, 1, 1, val)
#define WMI_NDL_DCC_STATS_INTERVAL_GET(ptr)     WMI_GET_BITS((ptr)->dcc_flags, 2, 16)
#define WMI_NDL_DCC_STATS_INTERVAL_SET(ptr,val) WMI_SET_BITS((ptr)->dcc_flags, 2, 16, val)

#define WMI_NDL_TIME_UP_GET(ptr)                WMI_GET_BITS((ptr)->general_config, 0, 13)
#define WMI_NDL_TIME_UP_SET(ptr,val)            WMI_SET_BITS((ptr)->general_config, 0, 13, val)
#define WMI_NDL_TIME_DOWN_GET(ptr)              WMI_GET_BITS((ptr)->general_config, 13, 13)
#define WMI_NDL_TIME_DOWN_SET(ptr,val)          WMI_SET_BITS((ptr)->general_config, 13, 13, val)

#define WMI_NDL_MIN_TX_POWER_GET(ptr)       WMI_GET_BITS((ptr)->min_max_tx_power, 0, 8)
#define WMI_NDL_MIN_TX_POWER_SET(ptr,val)   WMI_SET_BITS((ptr)->min_max_tx_power, 0, 8, val)
#define WMI_NDL_MAX_TX_POWER_GET(ptr)       WMI_GET_BITS((ptr)->min_max_tx_power, 8, 8)
#define WMI_NDL_MAX_TX_POWER_SET(ptr,val)   WMI_SET_BITS((ptr)->min_max_tx_power, 8, 8, val)

#define WMI_NDL_DEF_TX_POWER_GET(ptr,acprio)        wmi_packed_arr_get_bits((ptr)->def_tx_power_ac, acprio, SIZE_NDLTYPE_TXPOWER)
#define WMI_NDL_DEF_TX_POWER_SET(ptr,acprio,val)    wmi_packed_arr_set_bits((ptr)->def_tx_power_ac, acprio, SIZE_NDLTYPE_TXPOWER, val)

#define WMI_NDL_MAX_PACKET_DURATION_GET(ptr,acprio)     wmi_packed_arr_get_bits((ptr)->max_packet_duration_ac, acprio, SIZE_NDLTYPE_PACKETDURATION)
#define WMI_NDL_MAX_PACKET_DURATION_SET(ptr,acprio,val) wmi_packed_arr_set_bits((ptr)->max_packet_duration_ac, acprio, SIZE_NDLTYPE_PACKETDURATION, val)
#define WMI_NDL_MIN_PACKET_INTERVAL_GET(ptr)            WMI_GET_BITS((ptr)->min_max_packet_interval, 0, 11)
#define WMI_NDL_MIN_PACKET_INTERVAL_SET(ptr,val)        WMI_SET_BITS((ptr)->min_max_packet_interval, 0, 11, val)
#define WMI_NDL_MAX_PACKET_INTERVAL_GET(ptr)            WMI_GET_BITS((ptr)->min_max_packet_interval, 11, 11)
#define WMI_NDL_MAX_PACKET_INTERVAL_SET(ptr,val)        WMI_SET_BITS((ptr)->min_max_packet_interval, 11, 11, val)
#define WMI_NDL_DEF_PACKET_INTERVAL_GET(ptr,acprio)     wmi_packed_arr_get_bits((ptr)->def_packet_interval_ac, acprio, SIZE_NDLTYPE_PACKETINTERVAL)
#define WMI_NDL_DEF_PACKET_INTERVAL_SET(ptr,acprio,val) wmi_packed_arr_set_bits((ptr)->def_packet_interval_ac, acprio, SIZE_NDLTYPE_PACKETINTERVAL, val)

#define WMI_NDL_MIN_DATARATE_GET(ptr)               WMI_GET_BITS((ptr)->min_max_datarate, 0, 4)
#define WMI_NDL_MIN_DATARATE_SET(ptr,val)           WMI_SET_BITS((ptr)->min_max_datarate, 0, 4, val)
#define WMI_NDL_MAX_DATARATE_GET(ptr)               WMI_GET_BITS((ptr)->min_max_datarate, 4, 4)
#define WMI_NDL_MAX_DATARATE_SET(ptr,val)           WMI_SET_BITS((ptr)->min_max_datarate, 4, 4, val)
#define WMI_NDL_DEF_DATARATE_GET(ptr,acprio)        wmi_packed_arr_get_bits((ptr)->def_datarate_ac, acprio, SIZE_NDLTYPE_DATARATE)
#define WMI_NDL_DEF_DATARATE_SET(ptr,acprio,val)    wmi_packed_arr_set_bits((ptr)->def_datarate_ac, acprio, SIZE_NDLTYPE_DATARATE, val)

#define WMI_NDL_MIN_CARRIER_SENSE_GET(ptr)      WMI_GET_BITS((ptr)->min_max_def_carrier_sense, 0, 8)
#define WMI_NDL_MIN_CARRIER_SENSE_SET(ptr,val)  WMI_SET_BITS((ptr)->min_max_def_carrier_sense, 0, 8, val)
#define WMI_NDL_MAX_CARRIER_SENSE_GET(ptr)      WMI_GET_BITS((ptr)->min_max_def_carrier_sense, 8, 8)
#define WMI_NDL_MAX_CARRIER_SENSE_SET(ptr,val)  WMI_SET_BITS((ptr)->min_max_def_carrier_sense, 8, 8, val)
#define WMI_NDL_DEF_CARRIER_SENSE_GET(ptr)      WMI_GET_BITS((ptr)->min_max_def_carrier_sense, 16, 8)
#define WMI_NDL_DEF_CARRIER_SENSE_SET(ptr,val)  WMI_SET_BITS((ptr)->min_max_def_carrier_sense, 16, 8, val)

#define WMI_NDL_DEF_DCC_SENSITIVITY_GET(ptr)        WMI_GET_BITS((ptr)->receive_model_parameter, 0, 8)
#define WMI_NDL_DEF_DCC_SENSITIVITY_SET(ptr,val)    WMI_SET_BITS((ptr)->receive_model_parameter, 0, 8, val)
#define WMI_NDL_MAX_CS_RANGE_GET(ptr)               WMI_GET_BITS((ptr)->receive_model_parameter, 8, 13)
#define WMI_NDL_MAX_CS_RANGE_SET(ptr,val)           WMI_SET_BITS((ptr)->receive_model_parameter, 8, 13, val)
#define WMI_NDL_REF_PATH_LOSS_GET(ptr)              WMI_GET_BITS((ptr)->receive_model_parameter, 21, 6)
#define WMI_NDL_REF_PATH_LOSS_SET(ptr,val)          WMI_SET_BITS((ptr)->receive_model_parameter, 21, 6, val)

#define WMI_NDL_MIN_SNR_GET(ptr)                    WMI_GET_BITS((ptr)->receive_model_parameter_2, 0, 8)
#define WMI_NDL_MIN_SNR_SET(ptr,val)                WMI_SET_BITS((ptr)->receive_model_parameter_2, 0, 8, val)

#define WMI_NDL_SNR_BACKOFF_GET(ptr,mcs)        wmi_packed_arr_get_bits((ptr)->snr_backoff_mcs, mcs, SIZE_NDLTYPE_SNR)
#define WMI_NDL_SNR_BACKOFF_SET(ptr,mcs,val)    wmi_packed_arr_set_bits((ptr)->snr_backoff_mcs, mcs, SIZE_NDLTYPE_SNR, val)

#define WMI_NDL_TM_PACKET_ARRIVAL_RATE_GET(ptr,acprio)      wmi_packed_arr_get_bits((ptr)->tm_packet_arrival_rate_ac, acprio, SIZE_NDLTYPE_ARRIVALRATE)
#define WMI_NDL_TM_PACKET_ARRIVAL_RATE_SET(ptr,acprio,val)  wmi_packed_arr_set_bits((ptr)->tm_packet_arrival_rate_ac, acprio, SIZE_NDLTYPE_ARRIVALRATE, val)
#define WMI_NDL_TM_PACKET_AVG_DURATION_GET(ptr,acprio)      wmi_packed_arr_get_bits((ptr)->tm_packet_avg_duration_ac, acprio, SIZE_NDLTYPE_PACKETDURATION)
#define WMI_NDL_TM_PACKET_AVG_DURATION_SET(ptr,acprio,val)  wmi_packed_arr_set_bits((ptr)->tm_packet_avg_duration_ac, acprio, SIZE_NDLTYPE_PACKETDURATION, val)
#define WMI_NDL_TM_SIGNAL_AVG_POWER_GET(ptr,acprio)         wmi_packed_arr_get_bits((ptr)->tm_signal_avg_power_ac, acprio, SIZE_NDLTYPE_TXPOWER)
#define WMI_NDL_TM_SIGNAL_AVG_POWER_SET(ptr,acprio,val)     wmi_packed_arr_set_bits((ptr)->tm_signal_avg_power_ac, acprio, SIZE_NDLTYPE_TXPOWER, val)
#define WMI_NDL_TM_MAX_CHANNEL_USE_GET(ptr)                 WMI_GET_BITS((ptr)->tm_max_channel_use, 0, 14)
#define WMI_NDL_TM_MAX_CHANNEL_USE_SET(ptr,val)             WMI_SET_BITS((ptr)->tm_max_channel_use, 0, 14, val)
#define WMI_NDL_TM_CHANNEL_USE_GET(ptr,acprio)              wmi_packed_arr_get_bits((ptr)->tm_channel_use_ac, acprio, SIZE_NDLTYPE_CHANNELUSE)
#define WMI_NDL_TM_CHANNEL_USE_SET(ptr,acprio,val)          wmi_packed_arr_set_bits((ptr)->tm_channel_use_ac, acprio, SIZE_NDLTYPE_CHANNELUSE, val)

#define WMI_NDL_MIN_CHANNEL_LOAD_GET(ptr)       WMI_GET_BITS((ptr)->min_max_channel_load, 0, 11)
#define WMI_NDL_MIN_CHANNEL_LOAD_SET(ptr,val)   WMI_SET_BITS((ptr)->min_max_channel_load, 0, 11, val)
#define WMI_NDL_MAX_CHANNEL_LOAD_GET(ptr)       WMI_GET_BITS((ptr)->min_max_channel_load, 11, 11)
#define WMI_NDL_MAX_CHANNEL_LOAD_SET(ptr,val)   WMI_SET_BITS((ptr)->min_max_channel_load, 11, 11, val)

#define WMI_NDL_NUM_QUEUE_GET(ptr)                      WMI_GET_BITS((ptr)->transmit_queue_parameters, 0, 4)
#define WMI_NDL_NUM_QUEUE_SET(ptr,val)                  WMI_SET_BITS((ptr)->transmit_queue_parameters, 0, 4, val)
#define WMI_NDL_REF_QUEUE_STATUS_GET(ptr,acprio)        WMI_GET_BITS((ptr)->transmit_queue_parameters, (4 + (acprio * 2)), 2)
#define WMI_NDL_REF_QUEUE_STATUS_SET(ptr,acprio,val)    WMI_SET_BITS((ptr)->transmit_queue_parameters, (4 + (acprio * 2)), 2, val)
#define WMI_NDL_REF_QUEUE_LEN_GET(ptr,acprio)           wmi_packed_arr_get_bits((ptr)->numberElements, acprio, SIZE_NDLTYPE_NUMBERELEMENTS)
#define WMI_NDL_REF_QUEUE_LEN_SET(ptr,acprio,val)       wmi_packed_arr_set_bits((ptr)->numberElements, acprio, SIZE_NDLTYPE_NUMBERELEMENTS, val)

/** Data structure for updating the NDL. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_update_ndl_cmd_fixed_param */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;

    /** The number of channels in the request. */
    A_UINT32 num_channel;

    /** This is followed by a TLV array of wmi_dcc_ndl_chan. */
    /** This is followed by a TLV array of wmi_dcc_ndl_active_state_config. */
} wmi_dcc_update_ndl_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_dcc_update_ndl_resp_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_UINT32 status;
} wmi_dcc_update_ndl_resp_event_fixed_param;

/* Actions for TSF timestamp */
typedef enum {
    TSF_TSTAMP_CAPTURE_REQ = 1,
    TSF_TSTAMP_CAPTURE_RESET = 2,
    TSF_TSTAMP_READ_VALUE = 3,
    TSF_TSTAMP_QTIMER_CAPTURE_REQ = 4,
    TSF_TSTAMP_AUTO_REPORT_ENABLE = 5,
    TSF_TSTAMP_AUTO_REPORT_DISABLE = 6,
} wmi_tsf_tstamp_action;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_vdev_tsf_tstamp_action_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* action type, refer to wmi_tsf_tstamp_action */
    A_UINT32 tsf_action;
} wmi_vdev_tsf_tstamp_action_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_vdev_tsf_report_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* low 32bit of tsf */
    A_UINT32 tsf_low;
    /* high 32 bit of tsf */
    A_UINT32 tsf_high;
    /* low 32 bits of qtimer */
    A_UINT32 qtimer_low;
    /* high 32 bits of qtimer */
    A_UINT32 qtimer_high;
    /*
     * tsf_id: TSF ID for the current vdev
     * This field should be ignored unless the tsf_id_valid flag is set.
     */
    A_UINT32 tsf_id;
    /*
     * The mac_id and tsf_id fields should be ignored unless the
     * tsf_id_valid flag is set.
     */
    A_UINT32 tsf_id_valid;
    /*
     * mac_id: MAC identifier
     * This field should be ignored unless the tsf_id_valid flag is set.
     */
    A_UINT32 mac_id;
    /*
     * The original mac_id_valid field that was originally used to specify
     * whether the mac_id field is valid has been repurposed to instead
     * specify whether this message is a TSF report or a UL delay report.
     */
    union {
        A_UINT32 mac_id_valid; /* original name */
        /* ul_delay_or_tsf_report:
         * New name for the field, reflecting its new purpose.
         * ul_delay_or_tsf_report = 1 -> UL delay
         * ul_delay_or_tsf_report = 0 -> TSF report
         */
        A_UINT32 ul_delay_or_tsf_report;
    };
    /* low 32 bits of wlan global tsf */
    A_UINT32 wlan_global_tsf_low;
    /* high 32 bits of wlan global tsf */
    A_UINT32 wlan_global_tsf_high;
    /* low 32 bits of tqm timer */
    A_UINT32 tqm_timer_low;
    /* high 32 bits of tqm timer */
    A_UINT32 tqm_timer_high;
    /* use tqm timer flag */
    A_UINT32 use_tqm_timer;
} wmi_vdev_tsf_report_event_fixed_param;

/* ie_id values:
 * 0 to 255 are used for individual IEEE802.11 Information Element types
 */
#define WMI_SET_VDEV_IE_ID_SCAN_SET_DEFAULT_IE 256

/* source values: */
#define WMI_SET_VDEV_IE_SOURCE_HOST     0x0

/* band values: */
typedef enum {
    WMI_SET_VDEV_IE_BAND_ALL = 0,
    WMI_SET_VDEV_IE_BAND_2_4GHZ,
    WMI_SET_VDEV_IE_BAND_5GHZ,
} wmi_set_vdev_ie_band;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_ie_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** unique id to identify the ie_data as defined by ieee 802.11 spec */
    A_UINT32 ie_id;
    /** ie_len corresponds to num of bytes in ie_data[] */
    A_UINT32 ie_len;
    /** source of this command */
    A_UINT32 ie_source; /* see WMI_SET_VDEV_IE_SOURCE_ defs */
    /** band for this IE - se wmi_set_vdev_ie_band enum */
    A_UINT32 band;
   /**
    * Following this structure is the TLV byte stream of ie data of length ie_buf_len:
    * A_UINT8 ie_data[];
    *
    */
} wmi_vdev_set_ie_cmd_fixed_param;

/* DISA feature related data structures */
#define MAX_MAC_HEADER_LEN 32
typedef enum {
    WMI_ENCRYPT_DECRYPT_FLAG_INVALID,
    WMI_ENCRYPT = 1,
    WMI_DECRYPT = 2,
} WMI_ENCRYPT_DECRYPT_FLAG;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_encrypt_decrypt_data_req_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    A_UINT32 key_flag; /* WMI_ENCRYPT_DECRYPT_FLAG */
    A_UINT32 key_idx;
    A_UINT32 key_cipher;
    A_UINT32 key_len; /* units = bytes */
    A_UINT32 key_txmic_len; /* units = bytes */
    A_UINT32 key_rxmic_len; /* units = bytes */
    /** Key: This array needs to be provided in little-endian order */
    A_UINT8 key_data[WMI_MAX_KEY_LEN];
    /** Packet number: This array needs to be provided in little-endian order.
     *  If the PN is less than 8 bytes, the PN data shall be placed into this
     *  pn[] array starting at byte 0, leaving the MSBs empty.
     */
    A_UINT8 pn[8];
    /** 802.11 MAC header to be typecast to struct ieee80211_qosframe_addr4
     *  This array needs to be provided in little-endian order.
     */
    A_UINT8 mac_hdr[MAX_MAC_HEADER_LEN];
    A_UINT32 data_len; /** Payload length, units = bytes */
    /*
     * Following this struct are this TLV:
     *     A_UINT8  data[]; <-- actual data to be encrypted,
     *                          needs to be provided in little-endian order
     */
} wmi_vdev_encrypt_decrypt_data_req_cmd_fixed_param;

/* This event is generated in response to WMI_VDEV_ENCRYPT_DECRYPT_DATA_REQ_CMDID from HOST.
 * On receiving WMI command WMI_VDEV_ENCRYPT_DECRYPT_DATA_REQ_CMDID from
 * HOST with DISA test vectors, DISA frame will prepared and submitted to HW,
 * then on receiving the tx completion for the DISA frame this WMI event
 * will be delivered to HOST with the encrypted frame.
 */
typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_vdev_encrypt_decrypt_data_resp_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    A_INT32 status; /*  0: success, -1: Failure, */
    /* 802.11 header length + encrypted payload length (units = bytes) */
    A_UINT32 data_length;
    /*
     * Following this struct is this TLV:
     *    A_UINT8 enc80211_frame[]; <-- Encrypted 802.11 frame;
     *        802.11 header + encrypted payload,
     *        provided in little-endian order
     */
} wmi_vdev_encrypt_decrypt_data_resp_event_fixed_param;

/* DEPRECATED - use wmi_pdev_set_pcl_cmd_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_soc_set_pcl_cmd_fixed_param */
    /** Set Preferred Channel List  **/

    /** # of channels to scan */
    A_UINT32 num_chan;
/**
 * TLV (tag length value) parameters follow the wmi_soc_set_pcl_cmd
 * structure. The TLV's are:
 *     A_UINT32 channel_list[];
 **/
} wmi_soc_set_pcl_cmd_fixed_param;

/* Values for channel_weight */
typedef enum {
    WMI_PCL_WEIGHT_DISALLOW  = 0,
    WMI_PCL_WEIGHT_LOW       = 1,
    WMI_PCL_WEIGHT_MEDIUM    = 2,
    WMI_PCL_WEIGHT_HIGH      = 3,
    WMI_PCL_WEIGHT_VERY_HIGH = 4,
} wmi_pcl_chan_weight;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_pcl_cmd_fixed_param */
    /** Set Preferred Channel List  **/

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /** # of channels to scan */
    A_UINT32 num_chan;
/**
 * TLV (tag length value) parameters follow the wmi_soc_set_pcl_cmd
 * structure. The TLV's are:
 *     A_UINT32 channel_weight[];  channel order & size will be as per the list provided in WMI_SCAN_CHAN_LIST_CMDID
 **/
} wmi_pdev_set_pcl_cmd_fixed_param;

/* DEPRECATED - use wmi_pdev_set_hw_mode_cmd_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_soc_set_hw_mode_cmd_fixed_param */
    /**  Set Hardware Mode  **/

    /* Hardware Mode Index */
    A_UINT32 hw_mode_index;
} wmi_soc_set_hw_mode_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len tag equals WMITLV_TAG_STRUC_wmi_pdev_band_to_mac */
    /** pdev_id for identifying the MAC
      * See macros starting with WMI_PDEV_ID_ for values.
      */
    A_UINT32 pdev_id;
    /* start frequency in MHz */
    A_UINT32 start_freq;
    /* end frequency in MHz */
    A_UINT32 end_freq;
} wmi_pdev_band_to_mac;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_hw_mode_cmd_fixed_param */
    /**  Set Hardware Mode  **/

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /* Hardware Mode Index */
    A_UINT32 hw_mode_index;

    /* Number of band to mac TLVs */
    A_UINT32 num_band_to_mac;

    /* Followed by TLVs of type
     * num_band_to_mac * wmi_pdev_band_to_mac.
     */
} wmi_pdev_set_hw_mode_cmd_fixed_param;

/* DEPRECATED - use wmi_pdev_set_dual_mac_config_cmd_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_soc_set_dual_mac_config_cmd_fixed_param */
    /**  Set Dual MAC Firmware Configuration  **/

    /* Concurrent scan configuration bits */
    A_UINT32 concurrent_scan_config_bits;
    /* Firmware mode configuration bits */
    A_UINT32 fw_mode_config_bits;
} wmi_soc_set_dual_mac_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_mac_config_cmd_fixed_param */
    /**  Set Dual MAC Firmware Configuration  **/

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /* Concurrent scan configuration bits */
    A_UINT32 concurrent_scan_config_bits;
    /* Firmware mode configuration bits */
    A_UINT32 fw_mode_config_bits;
} wmi_pdev_set_mac_config_cmd_fixed_param;

typedef struct { /* DEPRECATED */
    A_UINT32 num_tx_chains;
    A_UINT32 num_rx_chains;
    A_UINT32 reserved[2];
} soc_num_tx_rx_chains;

typedef struct {
    A_UINT32 num_tx_chains_2g;
    A_UINT32 num_rx_chains_2g;
    A_UINT32 num_tx_chains_5g;
    A_UINT32 num_rx_chains_5g;
} band_num_tx_rx_chains;

typedef union { /* DEPRECATED */
    soc_num_tx_rx_chains soc_txrx_chain_setting;
    band_num_tx_rx_chains band_txrx_chain_setting;
} antenna_num_tx_rx_chains;

typedef enum {
    ANTENNA_MODE_DISABLED = 0x0,
    ANTENNA_MODE_LOW_POWER_LOCATION_SCAN = 0x01,
    /* reserved */
} antenna_mode_reason;

/* DEPRECATED - use wmi_pdev_set_antenna_mode_cmd_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len;  tag equals WMITLV_TAG_STRUC_wmi_soc_set_antenna_mode_cmd_fixed_param */

    /* the reason for setting antenna mode, refer antenna_mode_reason */
    A_UINT32 reason;

    /*
     * The above reason parameter will select whether the following union
     * is soc_num_tx_rx_chains or band_num_tx_rx_chains.
     */
    antenna_num_tx_rx_chains num_txrx_chains_setting;
} wmi_soc_set_antenna_mode_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len;  tag equals WMITLV_TAG_STRUC_wmi_pdev_set_antenna_mode_cmd_fixed_param */

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /* Bits 0-15 is the number of RX chains and 16-31 is the number of TX chains */
    A_UINT32 num_txrx_chains;
} wmi_pdev_set_antenna_mode_cmd_fixed_param;

/** Data structure for information specific to a VDEV to MAC mapping. */
/* DEPRECATED - use wmi_pdev_set_hw_mode_response_vdev_mac_entry instead */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_soc_set_hw_mode_response_vdev_mac_entry */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id; /* VDEV ID */
    A_UINT32 mac_id; /* MAC ID */
} wmi_soc_set_hw_mode_response_vdev_mac_entry;

/** Data structure for information specific to a VDEV to MAC mapping. */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_set_hw_mode_response_vdev_mac_entry */
    A_UINT32 tlv_header;

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    A_UINT32 vdev_id;
} wmi_pdev_set_hw_mode_response_vdev_mac_entry;

/* DEPRECATED - use wmi_pdev_set_hw_mode_response_event_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_soc_set_hw_mode_response_event_fixed_param */
    /**  Set Hardware Mode Response Event  **/

    /* Status of set_hw_mode command */
    /*
     * Values for Status:
     *  0 - OK; command successful
     *  1 - EINVAL; Requested invalid hw_mode
     *  2 - ECANCELED; HW mode change canceled
     *  3 - ENOTSUP; HW mode not supported
     *  4 - EHARDWARE; HW mode change prevented by hardware
     *  5 - EPENDING; HW mode change is pending
     *  6 - ECOEX; HW mode change conflict with Coex
     */
    A_UINT32 status;
    /* Configured Hardware Mode */
    A_UINT32 cfgd_hw_mode_index;
    /* Number of Vdev to Mac entries */
    A_UINT32 num_vdev_mac_entries;

/**
 * TLV (tag length value) parameters follow the soc_set_hw_mode_response_event
 * structure. The TLV's are:
 *      A_UINT32 wmi_soc_set_hw_mode_response_vdev_mac_entry[];
 */
} wmi_soc_set_hw_mode_response_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_hw_mode_response_event_fixed_param */
    /**  Set Hardware Mode Response Event  **/

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /* Status of set_hw_mode command */
    /*
     * Values for Status:
     *  0 - OK; command successful
     *  1 - EINVAL; Requested invalid hw_mode
     *  2 - ECANCELED; HW mode change canceled
     *  3 - ENOTSUP; HW mode not supported
     *  4 - EHARDWARE; HW mode change prevented by hardware
     *  5 - EPENDING; HW mode change is pending
     *  6 - ECOEX; HW mode change conflict with Coex
     */
    A_UINT32 status;
    /* Configured Hardware Mode */
    A_UINT32 cfgd_hw_mode_index;
    /* Number of Vdev to Mac entries */
    A_UINT32 num_vdev_mac_entries;
/**
 * TLV (tag length value) parameters follow the soc_set_hw_mode_response_event
 * structure. The TLV's are:
 *      A_UINT32 wmi_soc_set_hw_mode_response_vdev_mac_entry[];
 */
} wmi_pdev_set_hw_mode_response_event_fixed_param;

/* DEPRECATED - use wmi_pdev_hw_mode_transition_event_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_soc_hw_mode_transition_event_fixed_param */
    /**  Hardware Mode Transition Event **/

    /* Original or old Hardware mode */
    A_UINT32 old_hw_mode_index;
    /* New Hardware Mode */
    A_UINT32 new_hw_mode_index;
    /* Number of Vdev to Mac entries */
    A_UINT32 num_vdev_mac_entries;

/**
 * TLV (tag length value) parameters follow the soc_set_hw_mode_response_event
 * structure. The TLV's are:
 *      A_UINT32 wmi_soc_set_hw_mode_response_vdev_mac_entry[];
 */
} wmi_soc_hw_mode_transition_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_hw_mode_transition_event_fixed_param */
    /**  Hardware Mode Transition Event **/

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /* Original or old Hardware mode */
    A_UINT32 old_hw_mode_index;
    /* New Hardware Mode */
    A_UINT32 new_hw_mode_index;
    /* Number of Vdev to Mac entries */
    A_UINT32 num_vdev_mac_entries;

/**
 * TLV (tag length value) parameters follow the pdev_set_hw_mode_response_event
 * structure. The TLV's are:
 *     wmi_pdev_set_hw_mode_response_vdev_mac_entry
 *         wmi_pdev_set_hw_mode_response_vdev_mac_mapping[];
 *     wmi_pdev_band_to_mac mac_freq_mapping[];
 */
} wmi_pdev_hw_mode_transition_event_fixed_param;

/**
 * This command is sent from WLAN host driver to firmware for
 * plugging in reorder queue desc to lithium hw.
 *
 * Example: plug-in queue desc for TID 5
 *    host->target: WMI_PEER_REORDER_QUEUE_SETUP_CMDID,
 *                  (vdev_id = PEER vdev id,
 *                   peer_macaddr = PEER mac addr,
 *                   tid = 5,
 *                   queue_ptr_lo = queue desc addr lower 32 bits,
 *                   queue_ptr_hi = queue desc addr higher 32 bits,
 *                   queue_no = 16-bit number assigned by host for queue,
 *                              stored in bits 15:0 of queue_no field)
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_reorder_queue_setup_cmd_fixed_param */
    A_UINT32 vdev_id;
    wmi_mac_addr peer_macaddr; /* peer mac address */
    A_UINT32 tid; /* 0 to 15 = QoS TIDs, 16 = non-qos TID */
    A_UINT32 queue_ptr_lo; /* lower 32 bits of queue desc address */
    A_UINT32 queue_ptr_hi; /* upper 32 bits of queue desc address */
    A_UINT32 queue_no; /* 16-bit number assigned by host for queue,
                          stored in bits 15:0 of queue_no field */
    A_UINT32 ba_window_size_valid; /* Is ba_window_size valid?
                                    * 0 = Invalid, 1 = Valid */
    A_UINT32 ba_window_size; /* Valid values: 0 to 256
                              * Host sends the message when BA session is
                              * established or terminated for the TID. */
} wmi_peer_reorder_queue_setup_cmd_fixed_param;

/**
 * This command is sent from WLAN host driver to firmware for
 * removing one or more reorder queue desc to lithium hw.
 *
 * Example: remove queue desc for all TIDs
 *    host->target: WMI_PEER_REORDER_REMOVE_CMDID,
 *                  (vdev_id = PEER vdev id,
 *                   peer_macaddr = PEER mac addr,
 *                   tid = 0x1FFFF,
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_reorder_queue_remove_cmd_fixed_param */
    A_UINT32 vdev_id;
    wmi_mac_addr peer_macaddr; /* peer mac address */
    A_UINT32 tid_mask; /* bits 0 to 15 = QoS TIDs, bit 16 = non-qos TID */
} wmi_peer_reorder_queue_remove_cmd_fixed_param;


/* DEPRECATED - use wmi_pdev_set_mac_config_response_event_fixed_param instead */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_soc_set_dual_mac_config_response_event_fixed_param */
    /**  Set Dual MAC Config Response Event  **/

    /* Status for set_dual_mac_config command */
    /*
     * Values for Status:
     *  0 - OK; command successful
     *  1 - EINVAL; Requested invalid hw_mode
     *  3 - ENOTSUP; HW mode not supported
     *  4 - EHARDWARE; HW mode change prevented by hardware
     *  6 - ECOEX; HW mode change conflict with Coex
     */
    A_UINT32 status;

} wmi_soc_set_dual_mac_config_response_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_mac_config_response_event_fixed_param */
    /**  Set Dual MAC Config Response Event  **/

    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;

    /* Status for set_dual_mac_config command */
    /*
     * Values for Status:
     *  0 - OK; command successful
     *  1 - EINVAL; Requested invalid hw_mode
     *  3 - ENOTSUP; HW mode not supported
     *  4 - EHARDWARE; HW mode change prevented by hardware
     *  6 - ECOEX; HW mode change conflict with Coex
     */
     A_UINT32 status;
} wmi_pdev_set_mac_config_response_event_fixed_param;

typedef enum {
    MAWC_MOTION_STATE_UNKNOWN,
    MAWC_MOTION_STATE_STATIONARY,
    MAWC_MOTION_STATE_WALK,
    MAWC_MOTION_STATE_TRANSIT,
} MAWC_MOTION_STATE;

typedef enum {
    MAWC_SENSOR_STATUS_OK,
    MAWC_SENSOR_STATUS_FAILED_TO_ENABLE,
    MAWC_SENSOR_STATUS_SHUTDOWN,
} MAWC_SENSOR_STATUS;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_mawc_sensor_report_ind_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** new motion state, MAWC_MOTION_STATE */
    A_UINT32 motion_state;
    /** status code of sensor, MAWC_SENSOR_STATUS */
    A_UINT32 sensor_status;
} wmi_mawc_sensor_report_ind_cmd_fixed_param;

/* MBO flag field definition */
/* Bit 0: 0 - Allow to connect to both MBO and non-MBO AP
 *        1 - Allow to connect to MBO AP only
 * Bit 1-31 : reserved.
 */
#define WMI_ROAM_MBO_FLAG_MBO_ONLY_MODE  (1<<0) /* DEPRECATED */

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_roam_set_mbo_fixed_param */
    A_UINT32 tlv_header;
    /** vdev id */
    A_UINT32 vdev_id;
    /** enable or disable MBO */
    A_UINT32 enable;
    /** MBO flags, refer to definition of MBO flags*/
    A_UINT32 flags;
} wmi_roam_set_mbo_fixed_param; /* DEPRECATED */

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_ARRAY_STRUC */
    A_UINT32 tlv_header;
    /** Current operating class number */
    A_UINT32 cur_op_class;
    /** Country string of current reg domain,
     * the expected value should be same as country str defined
     * in country IE.
     * 3 octets (COUNTRY_STR) + 1 octet (always 0)
     * The ordering of this array must be maintained,
     * even when a big-endian host's WMI messages undergo
     * automatic byte reordering for conversion to the
     * little-endian ordering required by the target.
     * On big-endian hosts, this array may need to be byte-swapped
     * by the host, so the subsequent automatic byte-swap
     * will result in the correct final byte order.
     * global operating class: set country_str[0]=0
     */
    A_UINT8 country_str[4];
    /** Supported operating class number in current regdomain */
    A_UINT32 supp_op_class_num;
    /* The TLVs will follow. */
    /* A_UINT32 supp_op_class_list[] */
} wmi_supported_operating_class_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_ARRAY_STRUC */
    A_UINT32 tlv_header;
    /** non preferred channel attribute length */
    A_UINT32 non_prefer_ch_attr_len;
    /* The TLVs will follow. */
    /** A_UINT8 non_prefer_ch_attr[];*/
} wmi_mbo_non_preferred_channel_report_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_mawc_enable_sensor_event_fixed_param */
    A_UINT32 tlv_header;
    /* enable(1) or disable(0) */
    A_UINT32 enable;
} wmi_mawc_enable_sensor_event_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_extscan_configure_mawc_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /* enable(1) or disable(0) MAWC */
    A_UINT32 enable;
    /* ratio of skipping suppressing scan, skip one out of x */
    A_UINT32 suppress_ratio;
} wmi_extscan_configure_mawc_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_roam_per_config_fixed_param */
    A_UINT32 tlv_header;
    /* Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /* enable(1) or disable(0) packet error rate trigger for roaming */
    A_UINT32 enable;
    /* high_rate_thresh, low_rate_thresh, pkt_err_rate_thresh_pct:
     * If PER monitoring as a trigger for roaming is enabled,
     * it is controlled by high_rate_thresh, low_rate_thresh, and
     * pkt_err_rate_thresh_pct.
     * PER monitoring is performed only when the time-averaged throughput
     * is less than high_rate_thresh.
     * During PER monitoring, the target keeps track of the PHY rate for
     * each of the first N PPDUs within a time window.
     * If the number of PPDUs with PHY rate < low_rate_thresh exceeds
     * N * pkt_err_rate_thresh_pct / 100, roaming will be triggered.
     *
     * This PER monitoring as a trigger for roaming is performed
     * concurrently but independently for rx and tx.
     */
    A_UINT32 high_rate_thresh; /* units = Kbps */
    A_UINT32 low_rate_thresh; /* units = Kbps */
    A_UINT32 pkt_err_rate_thresh_pct;
    /*
     * rest time after associating to a new AP before
     * starting to monitor PER as a roaming trigger,
     * (units are seconds)
     */
    A_UINT32 per_rest_time;
    /* This is the total time for which PER monitoring will be run.
     * After completion of time windows, the average PER over the window
     * will be computed.
     * The parameter value stores specifications for both TX and RX
     * monitor times.
     * The two least-significant bytes (0 & 1) hold the RX monitor time;
     * the two most-significant bytes (2 & 3) hold the TX monitor time.
     */
    A_UINT32 pkt_err_rate_mon_time; /* units = seconds */
    /* Minimum roamable AP RSSI for candidate selection for PER based roam */
    A_INT32 min_candidate_rssi; /* units = dBm */
} wmi_roam_per_config_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_nlo_configure_mawc_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /* enable(1) or disable(0) MAWC */
    A_UINT32 enable;
    /* ratio of exponential backoff, next = current + current*ratio/100 */
    A_UINT32 exp_backoff_ratio;
    /* initial scan interval(msec) */
    A_UINT32 init_scan_interval;
    /* max scan interval(msec) */
    A_UINT32 max_scan_interval;
} wmi_nlo_configure_mawc_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_roam_configure_mawc_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /* enable(1) or disable(0) MAWC */
    A_UINT32 enable;
    /* data traffic load (kBps) to register CMC */
    A_UINT32 traffic_load_threshold;
    /* RSSI threshold (dBm) to scan for Best AP */
    A_UINT32 best_ap_rssi_threshold;
    /* high RSSI threshold adjustment in Stationary to suppress scan */
    A_UINT32 rssi_stationary_high_adjust;
    /* low RSSI threshold adjustment in Stationary to suppress scan */
    A_UINT32 rssi_stationary_low_adjust;
} wmi_roam_configure_mawc_cmd_fixed_param;

#define WMI_PACKET_FILTER_COMPARE_DATA_LEN_DWORD     2
#define WMI_PACKET_FILTER_MAX_CMP_PER_PACKET_FILTER  5

typedef enum {
    PACKET_FILTER_TYPE_INVALID = 0,
    PACKET_FILTER_TYPE_FILTER_PKT,
    PACKET_FILTER_TYPE_RESERVE_PKT, /* not used */
    PACKET_FILTER_TYPE_MAX_ENUM_SIZE
} WMI_PACKET_FILTER_FILTER_TYPE;

typedef enum {
    PACKET_FILTER_PROTO_TYPE_INVALID = 0,

    /* L2 header */
    PACKET_FILTER_PROTO_TYPE_MAC,
    PACKET_FILTER_PROTO_TYPE_SNAP,

    /* L3 header (EtherType) */
    PACKET_FILTER_PROTO_TYPE_IPV4,
    PACKET_FILTER_PROTO_TYPE_IPV6,

    /* L4 header (IP protocol) */
    PACKET_FILTER_PROTO_TYPE_UDP,
    PACKET_FILTER_PROTO_TYPE_TCP,
    PACKET_FILTER_PROTO_TYPE_ICMPV6,

    PACKET_FILTER_PROTO_TYPE_MAX
} WMI_PACKET_FILTER_PROTO_TYPE;

typedef enum {
    PACKET_FILTER_CMP_TYPE_INVALID = 0,
    PACKET_FILTER_CMP_TYPE_EQUAL,
    PACKET_FILTER_CMP_TYPE_MASK_EQUAL,
    PACKET_FILTER_CMP_TYPE_NOT_EQUAL,
    PACKET_FILTER_CMP_TYPE_MASK_NOT_EQUAL,
    PACKET_FILTER_CMP_TYPE_ADDRTYPE,
    PACKET_FILTER_CMP_TYPE_MAX
} WMI_PACKET_FILTER_CMP_TYPE;

typedef enum {
    PACKET_FILTER_SET_INACTIVE = 0,
    PACKET_FILTER_SET_ACTIVE
} WMI_PACKET_FILTER_ACTION;

typedef enum {
    PACKET_FILTER_SET_DISABLE = 0,
    PACKET_FILTER_SET_ENABLE
} WMI_PACKET_FILTER_RUNTIME_ENABLE;

typedef struct {
    A_UINT32  proto_type;
    A_UINT32  cmp_type;
    A_UINT32  data_length; /* Length of the data to compare (units = bytes) */
    A_UINT32  data_offset; /* from start of the respective frame header (units = bytes) */
    A_UINT32  compareData[WMI_PACKET_FILTER_COMPARE_DATA_LEN_DWORD]; /* Data to compare, little-endian order */
    A_UINT32  dataMask[WMI_PACKET_FILTER_COMPARE_DATA_LEN_DWORD]; /* Mask to be applied on rcvd packet data before compare, little-endian order */
} WMI_PACKET_FILTER_PARAMS_TYPE;

typedef struct {
    A_UINT32  tlv_header;
    A_UINT32  vdev_id;
    A_UINT32  filter_id;
    A_UINT32  filter_action; /* WMI_PACKET_FILTER_ACTION */
    A_UINT32  filter_type;
    A_UINT32  num_params; /* how many entries in paramsData are valid */
    A_UINT32  coalesce_time; /* not currently used - fill with 0x0 */
    WMI_PACKET_FILTER_PARAMS_TYPE  paramsData[WMI_PACKET_FILTER_MAX_CMP_PER_PACKET_FILTER];
    /* deprecated0:
     * This field simply provides filler space to retain the original message
     * format while reducing WMI_PACKET_FILTER_MAX_CMP_PER_PACKET_FILTER
     * from 10 to 5.
     */
    WMI_PACKET_FILTER_PARAMS_TYPE  deprecated0[5];
} WMI_PACKET_FILTER_CONFIG_CMD_fixed_param;

/* enable / disable all filters within the specified vdev */
typedef struct {
    A_UINT32  tlv_header;
    A_UINT32  vdev_id;
    A_UINT32  enable; /* WMI_PACKET_FILTER_RUNTIME_ENABLE */
} WMI_PACKET_FILTER_ENABLE_CMD_fixed_param;

#define WMI_LRO_INFO_TCP_FLAG_VALS_BITPOS  0
#define WMI_LRO_INFO_TCP_FLAG_VALS_NUMBITS 9

#define WMI_LRO_INFO_TCP_FLAG_VALS_SET(tcp_flag_u32, tcp_flag_values) \
    WMI_SET_BITS(tcp_flag_u32, \
        WMI_LRO_INFO_TCP_FLAG_VALS_BITPOS, \
        WMI_LRO_INFO_TCP_FLAG_VALS_NUMBITS, \
        tcp_flag_values)
#define WMI_LRO_INFO_TCP_FLAG_VALS_GET(tcp_flag_u32) \
    WMI_GET_BITS(tcp_flag_u32, \
        WMI_LRO_INFO_TCP_FLAG_VALS_BITPOS, \
        WMI_LRO_INFO_TCP_FLAG_VALS_NUMBITS)

#define WMI_LRO_INFO_TCP_FLAGS_MASK_BITPOS  9
#define WMI_LRO_INFO_TCP_FLAGS_MASK_NUMBITS 9

#define WMI_LRO_INFO_TCP_FLAGS_MASK_SET(tcp_flag_u32, tcp_flags_mask) \
    WMI_SET_BITS(tcp_flag_u32, \
        WMI_LRO_INFO_TCP_FLAGS_MASK_BITPOS, \
        WMI_LRO_INFO_TCP_FLAGS_MASK_NUMBITS, \
        tcp_flags_mask)
#define WMI_LRO_INFO_TCP_FLAGS_MASK_GET(tcp_flag_u32) \
    WMI_GET_BITS(tcp_flag_u32, \
        WMI_LRO_INFO_TCP_FLAGS_MASK_BITPOS, \
        WMI_LRO_INFO_TCP_FLAGS_MASK_NUMBITS)

typedef struct {
    A_UINT32 tlv_header;
    /**
     * @brief lro_enable - indicates whether lro is enabled
     * [0] LRO Enable
     */
    A_UINT32 lro_enable;
    /**
     * @brief tcp_flag_u32 - mask of which TCP flags to check and
     *      values to check for
     * [8:0] TCP flag values - If the TCP flags from the packet do not match
     *       the values in this field after masking with TCP flags mask below,
     *       LRO eligible will not be set
     * [17:9] TCP flags mask - Mask field for comparing the TCP values
     *       provided above with the TCP flags field in the received packet
     * Use WMI_LRO_INFO_TCP_FLAG_VALS and WMI_LRO_INFO_TCP_FLAGS_MASK
     * macros to isolate the mask field and values field that are packed
     * into this u32 "word".
     */
    A_UINT32 tcp_flag_u32;
    /**
     * @brief toeplitz_hash_ipv4 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv4 packets. Contains
     * bytes 0 to 3
     *
     * In this and all the below toeplitz_hash fields, the bytes are
     * specified in little-endian order.  For example:
     *     toeplitz_hash_ipv4_0_3 bits 7:0   holds seed byte 0
     *     toeplitz_hash_ipv4_0_3 bits 15:8  holds seed byte 1
     *     toeplitz_hash_ipv4_0_3 bits 23:16 holds seed byte 2
     *     toeplitz_hash_ipv4_0_3 bits 31:24 holds seed byte 3
     */
    A_UINT32 toeplitz_hash_ipv4_0_3;

    /**
     * @brief toeplitz_hash_ipv4 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv4 packets. Contains
     * bytes 4 to 7
     */
    A_UINT32 toeplitz_hash_ipv4_4_7;

    /**
     * @brief toeplitz_hash_ipv4 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv4 packets. Contains
     * bytes 8 to 11
     */
    A_UINT32 toeplitz_hash_ipv4_8_11;

    /**
     * @brief toeplitz_hash_ipv4 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv4 packets. Contains
     * bytes 12 to 15
     */
    A_UINT32 toeplitz_hash_ipv4_12_15;

    /**
     * @brief toeplitz_hash_ipv4 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv4 packets. Contains
     * byte 16
     */
    A_UINT32 toeplitz_hash_ipv4_16;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 0 to 3
     */
    A_UINT32 toeplitz_hash_ipv6_0_3;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 4 to 7
     */
    A_UINT32 toeplitz_hash_ipv6_4_7;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 8 to 11
     */
    A_UINT32 toeplitz_hash_ipv6_8_11;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 12 to 15
     */
    A_UINT32 toeplitz_hash_ipv6_12_15;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 16 to 19
     */
    A_UINT32 toeplitz_hash_ipv6_16_19;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 20 to 22
     */
    A_UINT32 toeplitz_hash_ipv6_20_23;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 24 to 27
     */
    A_UINT32 toeplitz_hash_ipv6_24_27;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 28 to 31
     */
    A_UINT32 toeplitz_hash_ipv6_28_31;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 32 to 35
     */
    A_UINT32 toeplitz_hash_ipv6_32_35;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * bytes 36 to 39
     */
    A_UINT32 toeplitz_hash_ipv6_36_39;

    /**
     * @brief toeplitz_hash_ipv6 - contains seed needed to compute
     * the flow id 5-tuple toeplitz hash for IPv6 packets. Contains
     * byte 40
     */
    A_UINT32 toeplitz_hash_ipv6_40;

    /**
     * @brief pdev_id - identifies the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_lro_info_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_transfer_data_to_flash_cmd_fixed_param  */
    A_UINT32 offset; /* flash offset to write, starting from 0 */
    A_UINT32 length; /* valid data length in buffer, unit: byte */
} wmi_transfer_data_to_flash_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_transfer_data_to_flash_complete_event_fixed_param */
    /** Return status. 0 for success, non-zero otherwise */
    A_UINT32 status;
} wmi_transfer_data_to_flash_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_read_data_from_flash_cmd_fixed_param  */
    A_UINT32 offset; /* flash offset to read, starting from 0 */
    A_UINT32 length; /* data length to read, unit: byte */
} wmi_read_data_from_flash_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_read_data_from_flash_event_fixed_param */
    A_UINT32 status; /* Return status. 0 for success, non-zero otherwise */
    A_UINT32 offset; /* flash offset reading from, starting from 0 */
    A_UINT32 length; /* length of data being reported, unit: byte */
} wmi_read_data_from_flash_event_fixed_param;

typedef enum {
    ENHANCED_MCAST_FILTER_DISABLED,
    ENHANCED_MCAST_FILTER_ENABLED
} ENHANCED_MCAST_FILTER_CONFIG;

/*
 * Command to enable/disable filtering of multicast IP with unicast mac
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_config_enhanced_mcast_filter_fixed_param */
    /* Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /* 1 = enable 0 = disable (see ENHANCED_MCAST_FILTER_CONFIG) */
    A_UINT32 enable;
} wmi_config_enhanced_mcast_filter_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_wisa_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** WISA enable / disable mode */
    A_UINT32 wisa_mode;
} wmi_vdev_wisa_cmd_fixed_param;

/*
 * This structure is used to report SMPS force mode set complete to host.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sta_smps_force_mode_complete_event_fixed_param */
    /* Unique id identifying the VDEV */
    A_UINT32 vdev_id;
    /* Return status. 0 for success, non-zero otherwise */
    A_UINT32 status;
} wmi_sta_smps_force_mode_complete_event_fixed_param;

/*
 * This structure is used to report SCPC calibrated data to host.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scpc_event_fixed_param */
    /** number of BDF patches. Each patch contains offset, length and data */
    A_UINT32 num_patch;
/*  This TLV is followed by another TLV of array of bytes
 *  A_UINT8 data[];
 *  This data array contains, for example
 *  patch1 offset(byte3~0),   patch1 data length(byte7~4),   patch1 data(byte11~8)
 *  patch2 offset(byte15~12), patch2 data length(byte19~16), patch2 data(byte47~20)
 *
 */
} wmi_scpc_event_fixed_param;

typedef enum {
    FW_ACTIVE_BPF_MODE_DISABLE =         (1 << 1),
    FW_ACTIVE_BPF_MODE_FORCE_ENABLE =    (1 << 2),
    FW_ACTIVE_BPF_MODE_ADAPTIVE_ENABLE = (1 << 3),
} FW_ACTIVE_BPF_MODE;

/* bpf interface structure */
typedef struct wmi_bpf_get_capability_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 reserved;  /* reserved for future use - must be filled with 0x0 */
} wmi_bpf_get_capability_cmd_fixed_param;

typedef struct wmi_bpf_capability_info_evt_s {
    A_UINT32 tlv_header;
    A_UINT32 bpf_version; /* fw's implement version */
    A_UINT32 max_bpf_filters; /* max filters that fw supports */
    A_UINT32 max_bytes_for_bpf_inst; /* the maximum bytes that can be used as bpf instructions */
    A_UINT32 fw_active_bpf_support_mcbc_modes; /* multicast/broadcast - refer to FW_ACTIVE_BPF_MODE, it can be 'or' of them */
    A_UINT32 fw_active_bpf_support_uc_modes; /* unicast - refer to FW_ACTIVE_BPF_MODE, it can be 'or' of them */
} wmi_bpf_capability_info_evt_fixed_param;

/* bit 0 of flags: report counters */
#define WMI_BPF_GET_VDEV_STATS_FLAG_CTR_S  0
#define WMI_BPF_GET_VDEV_STATS_FLAG_CTR_M  0x1
typedef struct wmi_bpf_get_vdev_stats_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 flags;
    A_UINT32 vdev_id;
} wmi_bpf_get_vdev_stats_cmd_fixed_param;

typedef struct wmi_bpf_vdev_stats_info_evt_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 num_filters;
    A_UINT32 num_checked_pkts;
    A_UINT32 num_dropped_pkts;
} wmi_bpf_vdev_stats_info_evt_fixed_param;

typedef struct wmi_bpf_set_vdev_instructions_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 filter_id;
    A_UINT32 bpf_version;  /* host bpf version */
    A_UINT32 total_length;
    A_UINT32 current_offset;
    A_UINT32 current_length;
/*
 * The TLV follows:
 *    A_UINT8  buf_inst[]; <-- Variable length buffer for the instuctions
 */
} wmi_bpf_set_vdev_instructions_cmd_fixed_param;

#define BPF_FILTER_ID_ALL  0xFFFFFFFF
typedef struct wmi_bpf_del_vdev_instructions_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 filter_id;  /* BPF_FILTER_ID_ALL means delete all */
} wmi_bpf_del_vdev_instructions_cmd_fixed_param;

typedef struct wmi_bpf_set_vdev_active_mode_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 mcbc_mode; /* refer to FW_ACTIVE_BPF_MODE */
    A_UINT32 uc_mode; /* refer to FW_ACTIVE_BPF_MODE */
} wmi_bpf_set_vdev_active_mode_cmd_fixed_param;

typedef struct wmi_bpf_set_vdev_enable_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 is_enabled; /* fw assume host default enables */
} wmi_bpf_set_vdev_enable_cmd_fixed_param;

typedef struct wmi_bpf_set_vdev_work_memory_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 bpf_version; /* bpf instruction version */
    A_UINT32 program_len; /* the program length may be changed by this command */
    A_UINT32 addr_offset; /* start writing addr in the working memory */
    A_UINT32 length;      /* the writing size of this command (byte units) */
/*
 * The TLV follows:
 *  A_UINT8 buf_inst[]; <-- Variable length buffer with the data to write
 */
} wmi_bpf_set_vdev_work_memory_cmd_fixed_param;

typedef struct wmi_bpf_get_vdev_work_memory_cmd_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 addr_offset; /* start reading addr in the working memory */
    A_UINT32 length;      /* reading size from addr (byte units) */
} wmi_bpf_get_vdev_work_memory_cmd_fixed_param;

typedef struct wmi_bpf_get_vdev_work_memory_resp_evt_s {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 offset;    /* read memory offset from start_addr */
    A_UINT32 length;    /* read memory length of this command */
    A_UINT32 fragment;  /* 1 means more data will come, 0 means last fragment */
/*
 * The TLV follows:
 *  A_UINT8 buf_inst[]; <-- Variable length buffer containing the read data
 */
} wmi_bpf_get_vdev_work_memory_resp_evt_fixed_param;

#define AES_BLOCK_LEN           16  /* in bytes */
#define FIPS_KEY_LENGTH_128     16  /* in bytes */
#define FIPS_KEY_LENGTH_256     32  /* in bytes */
#define FIPS_ENCRYPT_CMD        0
#define FIPS_DECRYPT_CMD        1
#define FIPS_ENGINE_AES_CTR     0
#define FIPS_ENGINE_AES_MIC     1
#define FIPS_ERROR_OPER_TIMEOUT 1

typedef enum {
    WMI_FIPS_KEY_CIPHER_CCM,
    WMI_FIPS_KEY_CIPHER_GCM
} wmi_fips_key_cipher;

typedef enum {
    WMI_FIPS_DISABLE,
    WMI_FIPS_ENABLE
} wmi_fips_mode_set;

/* WMI_PDEV_FIPS_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_fips_cmd_fixed_param */

    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };

    A_UINT32 fips_cmd;            /* FIPS_ENCRYPT or FIPS_DECRYPT */
    A_UINT32 mode;                /* FIPS_ENGINE_AES_CTR or FIPS_ENGINE_AES_MIC */
    A_UINT32 key_len;             /* FIPS_KEY_LENGTH_128 or FIPS_KEY_LENGTH_256 (units = bytes) */
    A_UINT8 key[WMI_MAX_KEY_LEN]; /* Key */
    A_UINT32 data_len;            /* data length */
/*
 * Following this structure is the TLV:
 * A_UINT32 data[1]; <-- In Data (keep this in the end)
 */
} wmi_pdev_fips_cmd_fixed_param;

#define MAX_IVNONCE_LEN_FIPS_EXTEND 16

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_fips_extend_cmd_init_params */

    A_UINT32 fips_cmd;            /* FIPS_ENCRYPT or FIPS_DECRYPT */
    A_UINT32 key_cipher;          /* CCM or GCM */

    A_UINT32 key_len;             /* FIPS_KEY_LENGTH_128 or FIPS_KEY_LENGTH_256: 16/32 bytes */

    A_UINT8 key[WMI_MAX_KEY_LEN]; /* Key if this message is sent by a big-endian host, the byte-ordering of this array needs to be maintained (by manually byte-swapping this array's contents to make up for the automatic byte-swapping done by the copy engine). */
    A_UINT32 nonce_iv_len;
    A_UINT8 nonce_iv[MAX_IVNONCE_LEN_FIPS_EXTEND]; /* if this message is sent by a big-endian host, the byte-ordering of this array needs to be maintained (by manually byte-swapping this array's contents to make up for the automatic byte-swapping done by the copy engine).*/
    A_UINT32 tag_len;        /* 8 or 16  */
    A_UINT32 aad_len;
    A_UINT32 payload_len;/* Plaintext length */
} wmi_fips_extend_cmd_init_params;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_fips_extend_cmd_fixed_param */

    A_UINT32 pdev_id;
    A_UINT32 fips_cookie;        /* Cookie value to identify test vector */
    A_UINT32 frag_idx;           /* Fragment Number */
    A_UINT32 more_bit;           /* Set to 0 for last fragment number */
    A_UINT32 data_len;            /* data length ()*/

/*
 * Following this structure are the TLVs:
 *     wmi_fips_extend_cmd_init_params cmd_params
 *     A_UINT32 data[1]; <-- In Data ((aad, payload in order))
 */
} wmi_pdev_fips_extend_cmd_fixed_param;

typedef struct {
     A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_fips_extend_cmd_fixed_param */

     A_UINT32 pdev_id;
     A_UINT32 fips_mode_set;        /*FIPS_MODE_ENABLE -Enable, FIPS_MODE_DISABLE -disable  */
} wmi_pdev_fips_mode_set_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_featureset_cmd_fixed_param */

/*
 * Following this structure are the TLVs:
 *     A_UINT32 feature_set_bitmap[];   <-- Host supported feature info,
 *                                          array length is equal to
 *                                          WMI_FEATURE_SET_BITMAP_ARRAY_LEN32.
 */
} wmi_pdev_featureset_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_smart_ant_enable_cmd_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 enable;              /* 1:enable, 0:disable */
    A_UINT32 mode;                /* 1:GPIO parallel mode, 0:GPIO serial mode */
    A_UINT32 rx_antenna;          /* rx antenna */
    A_UINT32 tx_default_antenna;  /* tx default antenna */
   /*
    * Following this structure is the TLV:
    * wmi_pdev_smart_ant_gpio_handle
    */
} wmi_pdev_smart_ant_enable_cmd_fixed_param;

/** GPIO pins/function values to control antennas */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_smart_ant_gpio_handle */
    A_UINT32 gpio_pin;   /* For serial: index 0-strobe index 1-data, For Parallel: per stream */
    A_UINT32 gpio_func;  /* GPIO function values for Smart Antenna */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_smart_ant_gpio_handle;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_smart_ant_set_rx_antenna_cmd_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 rx_antenna;
} wmi_pdev_smart_ant_set_rx_antenna_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param */
    /** unique id identifying the vdev, generated by the caller */
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
   /*
    * Following this structure is the TLV:
    * wmi_peer_smart_ant_set_tx_antenna_series
    */
} wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_tx_antenna_series */
    /* antenna array */
    A_UINT32 antenna_series;
} wmi_peer_smart_ant_set_tx_antenna_series;

#define WMI_PER_VALID_BIT_POS     0
#define WMI_PER_VALID_NUM_BITS    1

#define WMI_GET_PER_VALID(per_threshold) \
    WMI_GET_BITS(per_threshold, WMI_PER_VALID_BIT_POS, WMI_PER_VALID_NUM_BITS)

#define WMI_PER_VALID_SET(per_threshold, value) \
    WMI_SET_BITS(per_threshold, WMI_PER_VALID_BIT_POS, WMI_PER_VALID_NUM_BITS, value)

#define WMI_PER_THRESHOLD_BIT_POS     1
#define WMI_PER_THRESHOLD_NUM_BITS    8

#define WMI_GET_PER_THRESHOLD(per_threshold) \
    WMI_GET_BITS(per_threshold, WMI_PER_THRESHOLD_BIT_POS, WMI_PER_THRESHOLD_NUM_BITS)

#define WMI_PER_THRESHOLD_SET(per_threshold, value) \
    WMI_SET_BITS(per_threshold, WMI_PER_THRESHOLD_BIT_POS, WMI_PER_THRESHOLD_NUM_BITS, value)

#define WMI_PER_MIN_TX_PKTS_BIT_POS     9
#define WMI_PER_MIN_TX_PKTS_NUM_BITS    16

#define WMI_GET_PER_MIN_TX_PKTS(per_threshold) \
    WMI_GET_BITS(per_threshold, WMI_PER_MIN_TX_PKTS_BIT_POS, WMI_PER_MIN_TX_PKTS_NUM_BITS)

#define WMI_PER_MIN_TX_PKTS_SET(per_threshold, value) \
    WMI_SET_BITS(per_threshold, WMI_PER_MIN_TX_PKTS_BIT_POS, WMI_PER_MIN_TX_PKTS_NUM_BITS, value)

#define WMI_RATE_SERIES_320_BIT_POS     0
#define WMI_RATE_SERIES_320_NUM_BITS    16

#define WMI_GET_RATE_SERIES_320(train_rate_series_ext) \
    WMI_GET_BITS(train_rate_series_ext, WMI_RATE_SERIES_320_BIT_POS, WMI_RATE_SERIES_320_NUM_BITS)

#define WMI_SET_RATE_SERIES_320(train_rate_series_ext) \
    WMI_SET_BITS(train_rate_series_ext, WMI_RATE_SERIES_320_BIT_POS, WMI_RATE_SERIES_320_NUM_BITS, value)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_train_antenna_param */
    /* rate array */
    union {
        /* train_rate_series:
         * original name, used for 8-bit rate-code implementations
         */
        A_UINT32  train_rate_series;
        /* train_rate_series_lo:
         * Contains the lower 32 bits of rate array, for larger rate-code
         * implementations.  This field is paired with train_rate_series_hi.
         */
        A_UINT32  train_rate_series_lo;
    };
    /* antenna array */
    A_UINT32 train_antenna_series;
    /* Rate flags */
    /* TODO: For future use? */
    A_UINT32 rc_flags;
    /* rate array -- continued */
    A_UINT32 train_rate_series_hi; /* Higher 32 bits of rate array */
    /* train_rate_series_ext:
     * 15:0 - 320Mhz rate
     * 31:16 - Reserved
     */
    A_UINT32 train_rate_series_ext; /* For 320Mhz and Reserved for other */
} wmi_peer_smart_ant_set_train_antenna_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* num packets; 0-stop training */
    A_UINT32 num_pkts;
    /* per_threshold:
     * bits  | interpretation
     * ------+--------------------------
     *    0  | PER Threshold is valid
     *  1:8  | Per Threshold
     *  9:24 | min_tx_pkts Minimum number of pkts need to be checked
     * 25:31 | Reserved
     */
    A_UINT32 per_threshold;
/*
 * Following this structure is the TLV:
 * wmi_peer_smart_ant_set_train_antenna_param
 */
} wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param */
    /** unique id identifying the vdev, generated by the caller */
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* command id*/
    A_UINT32 cmd_id;
    /* number of arguments passed */
    A_UINT32 args_count;
/*
 * Following this structure is the TLV:
 * A_UINT32 args[]; <-- argument list
 */
} wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_ant_ctrl_chain */
    A_UINT32 antCtrlChain;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_set_ant_ctrl_chain;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_ant_switch_tbl_cmd_fixed_param */
    A_UINT32 mac_id;     /* MAC ID */
    A_UINT32 antCtrlCommon1;
    A_UINT32 antCtrlCommon2;
   /*
    * Following this structure is the TLV:
    * wmi_pdev_set_ant_ctrl_chain
    */
} wmi_pdev_set_ant_switch_tbl_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_ctl_table_cmd_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    /** len of CTL info */
    A_UINT32 ctl_len;
    /* ctl array (len adjusted to  number of words).
     * Following this structure is the TLV:
     * A_UINT32 ctl_info[1];
     */
} wmi_pdev_set_ctl_table_cmd_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_bios_sar_cmd_fixed_param */
    A_UINT32    pdev_id;    /* pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32    sar_len;
    /*  sar power array are stored in TLV, which follow this structure;
     *  sar_len is the number of valid bytes in the sar power array;
     *  sar power array contains 22 elements.
     *  Each element stores the maximum SAR power on certain band.
     *  Its type is A_UINT8 and its unit is 0.25 dBm.
     *      sar_power[0] for chain0 2g
     *      sar_power[1] for chain0 5g unii-1
     *      ...
     *      sar_power[4] for chain0 5g unii-4
     *      sar_power[5] for chain0 6g unii-5
     *      ...
     *      sar_power[10] for chain0 6g unii-10
     *      sar_power[11] for chain1 2g
     *      ...
     *      sar_power[21] for chain1 6g unii-10
     */

    A_UINT32    dbs_backoff_len;
    /*  dbs_backoff follow sar array, its type is A_UINT8;
     *  dbs_backoff[0] ~ dbs_backoff[5], these six elements are based on
     *  maximum SAR power, and make some offset adjustment in DBS mode.
     *  Their unit is 0.25 dB.
     *      dbs_backoff[0] for chain 0 2G
     *      dbs_backoff[1] for chain 0 5G
     *      dbs_backoff[2] for chain 0 6G
     *      dbs_backoff[3] for chain 1 2G
     *      dbs_backoff[4] for chain 1 5G
     *      dbs_backoff[5] for chain 1 6G
     */
} wmi_pdev_set_bios_sar_table_cmd_fixed_param;

typedef struct {
    A_UINT32    tlv_header; /*  TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_bios_sar_cmd_fixed_param */
    A_UINT32    pdev_id;    /*   pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32    geo_len;
    /* geo offset array is in TLV, followed this structure:
     * A_UINT8 Geo_offset[];
     * Geo_offset array has 18 elements. The meaning of each element is to
     * adjust offset based on maximum SAR power according to different regions.
     * Its unit is 0.25 dB.
     *     Geo_offset[0] chain 0 FCC_Offset on 2G
     *     Geo_offset[1] chain 0 FCC_Offset on 5G
     *     Geo_offset[2] chain 0 FCC_Offset on 6G
     *     Geo_offset[3] chain 0 CE_Offset on 2G
     *     Geo_offset[4] chain 0 CE_Offset on 5G
     *     Geo_offset[5] chain 0 CE_Offset on 6G
     *     Geo_offset[6] chain 0 ROW_Offset on 2G
     *     Geo_offset[7] chain 0 ROW_Offset on 5G
     *     Geo_offset[8] chain 0 ROW_Offset on 6G
     *     Geo_offset[9] chain 1 FCC_Offset on 2G
     *     ...
     *     Geo_offset[17] chain 1 ROW_Offset on 6G
     *  In actual use, FW will subtract an offset value according to the region;
     */
} wmi_pdev_set_bios_geo_table_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_bios_interface_cmd_fixed_param */
    A_UINT32 pdev_id;       /* pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 param_type_id; /* BIOS parameters type, see bios_param_type_e */
    /* length:
     * Number of valid bytes in A_UINT8 TLV array that follows this
     * fixed_param TLV.
     * The number of bytes allocated in the A_UINT8 TLV array will be a
     * multiple of 4.  The "length" field indicates how many of these
     * byte elements contain valid data; the remainder are only for
     * alignment padding and should be ignored.
     */
    A_UINT32 length;
    /*  Following this structure is TLV, bios data array */
} wmi_pdev_set_bios_interface_cmd_fixed_param;

typedef enum {
    BIOS_PARAM_CCA_THRESHOLD_TYPE,
    /*  CCA THR structure has 29 bytes, it includes control flag and
     *  CCA THR parameters;
     *
     *  If CCA_THR_Control is set 0, FW will still use
     *  AGC_ENERGY_DETECT_THRESHOLD.agcEnergyDetThr in BDF, and detailed
     *  CCA threshold do not need to be transported.
     *  If CCA_THR_Control is set 1, FW needs to use CCA threshold parameters
     *  in BIOS, and CCA THR parameters are provided in the subsequent A_UINT8
     *  TLV array.
     *
     *  In CCA THR parameters, ETSI / MKK / CHN use same CCA threshold,
     *  and FCC / KOR use same CCA threshold. Its unit is in 1db,
     *  which is relative to HW NF value.
     *
     *  //control flag
     *  A_UINT8         CCA_THR_Control
     *
     *  //5G
     *  A_UINT8     agcEnergyDetThr5G_thrCcaPri20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr5G_thrCcaExt20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr5G_thrCcaExt40dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr5G_thrCcaExt80dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr5G_thrCcaPri20dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr5G_thrCcaExt20dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr5G_thrCcaExt40dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr5G_thrCcaExt80dB_FCC_KOR
     *
     *  //2G
     *  A_UINT8     agcEnergyDetThr2G_thrCcaPri20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr2G_thrCcaExt20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr2G_thrCcaExt40dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr2G_thrCcaExt80dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr2G_thrCcaPri20dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr2G_thrCcaExt20dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr2G_hrCcaExt40dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr2G_hrCcaExt80dB_FCC_KOR
     *
     *  //6G
     *  A_UINT8     agcEnergyDetThr6G_thrCcaPri20dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr6G_thrCcaExt20dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr6G_thrCcaExt40dB_FCC_KOR
     *  A_UINT8     agcEnergyDetThr6G_thrCcaExt80dB_FCC_KOR
     *
     *  //6G-LPI/VLP
     *  A_UINT8     agcEnergyDetThr6GLPI.thrCcaPri20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GLPI thrCcaExt20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GLPI thrCcaExt40dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GLPI.thrCcaExt80dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GVLP.thrCcaPri20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GVLP thrCcaExt20dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GVLP thrCcaExt40dB_ETSI_MKK_CHN
     *  A_UINT8     agcEnergyDetThr6GVLP.thrCcaExt80dB_ETSI_MKK_CHN
     */

    BIOS_PARAM_TAS_CONFIG_TYPE,
    /*
     *  BIOS_PARAM_TAS_CONFIG_TYPE Structure has 108 bytes. Please Note these fields of A_UINT32 or A_INT32.
     *  explicit endianness corrections will need to be done by any big-endian host when the little-endian target is paired with a big-endian host.
     *  PowerLimitIndicator points out which region(FCC OR ICNIRP) power limit value should be used.
     *  A bit of PowerLimitIndicator maps a country. bit value 0: ICNIRP 1: FCC
     *
     *  A_UINT8       Version
     *  A_UINT8       TASIsPairWith3rdPartyWwan
     *  A_UINT8       SARAntennaGroupingExt[6]  (6 Bytes)
     *  A_UINT32      TASPeakModeIndicator[8]  (32 Bytes)
     *  A_UINT32      TAS_FCC_ICNIRP_Indicator[8] (32 Bytes)
     *  A_UINT32      PowerLimitIndicator[8] (32 Bytes)
     *  A_UINT8       reserveMarginDb (1 Bytes)
     *  A_UINT8       reserved[3] (3 Bytes)
     */

    BIOS_PARAM_TAS_DATA_TYPE,
    /*
     *  BIOS_PARAM_TAS_DATA_TYPE Structure has 69 bytes as below, power limit value unit is 0.25 dBm.
     *  If Enable flag is 0, FW will not use power limit value of bios.
     *
     *  A_UINT8 Version
     *  A_UINT8 Enable Flag
     *  A_UINT8 Power Table Index
     *  ====================FCC POWER LIMIT VALUE======================
     *  A_INT8  FCC 2 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm)
     *  A_INT8  FCC 2 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm)
     *  A_INT8  FCC 2 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm)
     *  A_INT8  FCC 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-1, Ch32 ~ Ch48)
     *  A_INT8  FCC 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-1, Ch32 ~ Ch48)
     *  A_INT8  FCC 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-1, Ch32 ~ Ch48)
     *  A_INT8  FCC 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-2, Ch50 ~ Ch144)
     *  A_INT8  FCC 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-2, Ch50 ~ Ch144)
     *  A_INT8  FCC 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-2, Ch50 ~ Ch144)
     *  A_INT8  FCC 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-3, Ch149 ~ Ch161)
     *  A_INT8  FCC 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-3, Ch149 ~ Ch161)
     *  A_INT8  FCC 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-3, Ch149 ~ Ch161)
     *  A_INT8  FCC 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-4, Ch163 ~ Ch177)
     *  A_INT8  FCC 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-4, Ch163 ~ Ch177)
     *  A_INT8  FCC 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-4, Ch163 ~ Ch177)
     *  A_INT8  FCC 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch1, Ch2 ~ Ch41)
     *  A_INT8  FCC 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch1, Ch2 ~ Ch41)
     *  A_INT8  FCC 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch1, Ch2 ~ Ch41)
     *  A_INT8  FCC 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch45 ~ Ch93)
     *  A_INT8  FCC 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch45 ~ Ch93)
     *  A_INT8  FCC 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch45 ~ Ch93)
     *  A_INT8  FCC 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-6) (Ch97~ Ch113)
     *  A_INT8  FCC 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-6) (Ch97~ Ch113)
     *  A_INT8  FCC 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-6) (Ch97~ Ch113)
     *  A_INT8  FCC 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-8) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-8) (Ch117~Ch149)
     *  A_INT8  FCC 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-8) (Ch117~Ch149)
     *  ====================ICNIRP POWER LIMIT VALUE======================
     *  A_INT8  ICNIRP 2 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm)
     *  A_INT8  ICNIRP 2 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm)
     *  A_INT8  ICNIRP 2 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-1, Ch32 ~ Ch48)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-1, Ch32 ~ Ch48)
     *  A_INT8  ICNIRP 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-1, Ch32 ~ Ch48)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-2, Ch50 ~ Ch144)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-2, Ch50 ~ Ch144)
     *  A_INT8  ICNIRP 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-2, Ch50 ~ Ch144)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-3, Ch149 ~ Ch161)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-3, Ch149 ~ Ch161)
     *  A_INT8  ICNIRP 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-3, Ch149 ~ Ch161)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-4, Ch163 ~ Ch177)
     *  A_INT8  ICNIRP 5 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-4, Ch163 ~ Ch177)
     *  A_INT8  ICNIRP 5 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-4, Ch163 ~ Ch177)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch1, Ch2 ~ Ch41)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch1, Ch2 ~ Ch41)
     *  A_INT8  ICNIRP 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch1, Ch2 ~ Ch41)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch45 ~ Ch93)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch45 ~ Ch93)
     *  A_INT8  ICNIRP 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-5) (Ch45 ~ Ch93)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-6) (Ch97~ Ch113)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-6) (Ch97~ Ch113)
     *  A_INT8  ICNIRP 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-6) (Ch97~ Ch113)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-7) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain0) Power Limit Value(unit: 0.25dBm) (UNII-8) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz SISO (Chain1) Power Limit Value(unit: 0.25dBm) (UNII-8) (Ch117~Ch149)
     *  A_INT8  ICNIRP 6 GHz MIMO (Chain0 + Chain1) Power Limit Value(unit: 0.25dBm) (UNII-8) (Ch117~Ch149)
     */

    BIOS_PARAM_TYPE_BANDEDGE_CTL_POWER,
     /*
      *  BIOS_PARAM_TYPE_BANDEDGE_CTL_POWER Structure has 100 bytes as below, CTL limit power unit is 0.25 dBm.
      *  If Enable flag is 0, FW will not use power limit value of bios.
      *
      *  A_UINT8 version
      *  A_UINT8 enableFlag  (always 1)
      *  A_UINT8 reserved[2]  for 4 byte alignment,

      *  ====================2G CTL POWER LIMIT ======================
      *  A_INT8 2G 20M Channel Center Freq 2412 CTL Limit Power SU
      *  A_INT8 2G 20M Channel Center Freq 2412 CTL Limit Power OFDMA
      *  A_INT8 2G 20M Channel Center Freq 2417 CTL Limit Power SU
      *  A_INT8 2G 20M Channel Center Freq 2417 CTL Limit Power OFDMA
      *  A_INT8 2G 20M Channel Center Freq 2462 CTL Limit Power SU
      *  A_INT8 2G 20M Channel Center Freq 2462 CTL Limit Power OFDMA
      *  A_INT8 2G 20M Channel Center Freq 2467 CTL Limit Power SU
      *  A_INT8 2G 20M Channel Center Freq 2467 CTL Limit Power OFDMA
      *  A_INT8 2G 20M Channel Center Freq 2472 CTL Limit Power SU
      *  A_INT8 2G 20M Channel Center Freq 2472 CTL Limit Power OFDMA

      *  A_INT8 2G 40M Channel Center Freq 2422 CTL Limit Power SU
      *  A_INT8 2G 40M Channel Center Freq 2422 CTL Limit Power OFDMA
      *  A_INT8 2G 40M Channel Center Freq 2427 CTL Limit Power SU
      *  A_INT8 2G 40M Channel Center Freq 2427 CTL Limit Power OFDMA
      *  A_INT8 2G 40M Channel Center Freq 2452 CTL Limit Power SU
      *  A_INT8 2G 40M Channel Center Freq 2452 CTL Limit Power OFDMA
      *  A_INT8 2G 40M Channel Center Freq 2457 CTL Limit Power SU
      *  A_INT8 2G 40M Channel Center Freq 2457 CTL Limit Power OFDMA
      *  A_INT8 2G 40M Channel Center Freq 2462 CTL Limit Power SU
      *  A_INT8 2G 40M Channel Center Freq 2462 CTL Limit Power OFDMA

      *  ====================5G CTL POWER LIMIT ======================
      *  A_INT8 5G 20M Channel Center Freq 5180 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5180 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5320 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5320 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5500 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5500 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5700 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5700 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5745 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5745 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5825 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5825 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5845 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5845 CTL Limit Power OFDMA
      *  A_INT8 5G 20M Channel Center Freq 5885 CTL Limit Power SU
      *  A_INT8 5G 20M Channel Center Freq 5885 CTL Limit Power OFDMA

      *  A_INT8 5G 40M Channel Center Freq 5190 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5190 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5310 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5310 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5510 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5510 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5670 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5670 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5755 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5755 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5795 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5795 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5835 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5835 CTL Limit Power OFDMA
      *  A_INT8 5G 40M Channel Center Freq 5875 CTL Limit Power SU
      *  A_INT8 5G 40M Channel Center Freq 5875 CTL Limit Power OFDMA

      *  A_INT8 5G 80M Channel Center Freq 5210 CTL Limit Power SU
      *  A_INT8 5G 80M Channel Center Freq 5210 CTL Limit Power OFDMA
      *  A_INT8 5G 80M Channel Center Freq 5290 CTL Limit Power SU
      *  A_INT8 5G 80M Channel Center Freq 5290 CTL Limit Power OFDMA
      *  A_INT8 5G 80M Channel Center Freq 5530 CTL Limit Power SU
      *  A_INT8 5G 80M Channel Center Freq 5530 CTL Limit Power OFDMA
      *  A_INT8 5G 80M Channel Center Freq 5610 CTL Limit Power SU
      *  A_INT8 5G 80M Channel Center Freq 5610 CTL Limit Power OFDMA
      *  A_INT8 5G 80M Channel Center Freq 5775 CTL Limit Power SU
      *  A_INT8 5G 80M Channel Center Freq 5775 CTL Limit Power OFDMA
      *  A_INT8 5G 80M Channel Center Freq 5855 CTL Limit Power SU
      *  A_INT8 5G 80M Channel Center Freq 5855 CTL Limit Power OFDMA

      *  A_INT8 5G 160M Channel Center Freq 5250 CTL Limit Power SU
      *  A_INT8 5G 160M Channel Center Freq 5250 CTL Limit Power OFDMA
      *  A_INT8 5G 160M Channel Center Freq 5570 CTL Limit Power SU
      *  A_INT8 5G 160M Channel Center Freq 5570 CTL Limit Power OFDMA
      *  A_INT8 5G 160M Channel Center Freq 5815 CTL Limit Power SU
      *  A_INT8 5G 160M Channel Center Freq 5815 CTL Limit Power OFDMA

      *  A_INT8 5G 320M Channel Center Freq 5650 CTL Limit Power SU (5650 Punctured 1111_1111_1111_0000)
      *  A_INT8 5G 320M Channel Center Freq 5650 CTL Limit Power OFDMA (5650 Punctured 1111_1111_1111_0000)

      *  ====================6G CTL POWER LIMIT ======================
      *  A_INT8 6G 20M Channel Center Freq 5935 CTL Limit Power SU
      *  A_INT8 6G 20M Channel Center Freq 5935 CTL Limit Power OFDMA
      *  A_INT8 6G 20M Channel Center Freq 5955 CTL Limit Power SU
      *  A_INT8 6G 20M Channel Center Freq 5955 CTL Limit Power OFDMA
      *  A_INT8 6G 20M Channel Center Freq 6415 CTL Limit Power SU
      *  A_INT8 6G 20M Channel Center Freq 6415 CTL Limit Power OFDMA
      *  A_INT8 6G 20M Channel Center Freq 7115 CTL Limit Power SU
      *  A_INT8 6G 20M Channel Center Freq 7115 CTL Limit Power OFDMA

      *  A_INT8 6G 40M Channel Center Freq 5965 CTL Limit Power SU
      *  A_INT8 6G 40M Channel Center Freq 5965 CTL Limit Power OFDMA
      *  A_INT8 6G 40M Channel Center Freq 6405 CTL Limit Power SU
      *  A_INT8 6G 40M Channel Center Freq 6405 CTL Limit Power OFDMA

      *  A_INT8 6G 80M Channel Center Freq 5985 CTL Limit Power SU
      *  A_INT8 6G 80M Channel Center Freq 5985 CTL Limit Power OFDMA
      *  A_INT8 6G 80M Channel Center Freq 6385 CTL Limit Power SU
      *  A_INT8 6G 80M Channel Center Freq 6385 CTL Limit Power OFDMA

      *  A_INT8 6G 160M Channel Center Freq 6025 CTL Limit Power SU
      *  A_INT8 6G 160M Channel Center Freq 6025 CTL Limit Power OFDMA
      *  A_INT8 6G 160M Channel Center Freq 6345 CTL Limit Power SU
      *  A_INT8 6G 160M Channel Center Freq 6345 CTL Limit Power OFDMA

      *  A_INT8 6G 320M Channel Center Freq 6105 CTL Limit Power SU
      *  A_INT8 6G 320M Channel Center Freq 6105 CTL Limit Power OFDMA
      *  A_INT8 6G 320M Channel Center Freq 6265 CTL Limit Power SU
      *  A_INT8 6G 320M Channel Center Freq 6265 CTL Limit Power OFDMA
      */


    BIOS_PARAM_TYPE_MAX,
} bios_param_type_e;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_mimogain_table_cmd_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 mimogain_info; /* see WMI_MIMOGAIN macros */
    /*
     * Bit 7:0 len of array gain table
     * Bit 8   bypass multi chain gain or not
     */
    /* array gain table(s) (len adjusted to number of words).
     * Following this structure is the TLV:
     * A_UINT32 arraygain_tbl[1];
     */
} wmi_pdev_set_mimogain_table_cmd_fixed_param;

#define WMI_MIMOGAIN_ARRAY_GAIN_LEN_S 0
#define WMI_MIMOGAIN_ARRAY_GAIN_LEN (0xff << WMI_MIMOGAIN_ARRAY_GAIN_LEN_S)
#define WMI_MIMOGAIN_ARRAY_GAIN_LEN_GET(x) WMI_F_MS(x,WMI_MIMOGAIN_ARRAY_GAIN_LEN)
#define WMI_MIMOGAIN_ARRAY_GAIN_LEN_SET(x,z) WMI_F_RMW(x,z,WMI_MIMOGAIN_ARRAY_GAIN_LEN)

#define WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_S 8
#define WMI_MIMOGAIN_MULTI_CHAIN_BYPASS (0x1 << WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_S)
#define WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_GET(x) WMI_F_MS(x,WMI_MIMOGAIN_MULTI_CHAIN_BYPASS)
#define WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_SET(x,z) WMI_F_RMW(x,z,WMI_MIMOGAIN_MULTI_CHAIN_BYPASS)


typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_fwtest_set_param_cmd_fixed_param */
    /** parameter id   */
    A_UINT32 param_id;
    /** parameter value */
    A_UINT32 param_value;
} wmi_fwtest_set_param_cmd_fixed_param;

#define WMI_ATF_DENOMINATION   1000 /* Expressed in 1 part in 1000 (permille) */

#define WMI_ATF_SSID_FAIR_SCHED         0 /** fair ATF scheduling for vdev */
#define WMI_ATF_SSID_STRICT_SCHED       1 /** strict ATF scheduling for vdev */
#define WMI_ATF_SSID_FAIR_SCHED_WITH_UB 2 /** fair ATF scheduling with upper bound for VDEV */

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_atf_peer_info */
    A_UINT32 tlv_header;
    wmi_mac_addr peer_macaddr;
    A_UINT32 atf_units; /* Based on 1 part in 1000 (per mille) */
    A_UINT32 atf_groupid; /* Group Id of the peers for ATF SSID grouping */
    A_UINT32 atf_units_reserved; /* Peer congestion threshold for future use */
    A_UINT32 vdev_id;
    A_UINT32 pdev_id;
} wmi_atf_peer_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_atf_request_fixed_param */
    A_UINT32 num_peers;
    /*
     * Following this structure is the TLV:
     * struct wmi_atf_peer_info peer_info[num_peers];
     */
} wmi_peer_atf_request_fixed_param;

#define WMI_ATF_GROUP_SCHED_POLICY_BIT_POS        0
#define WMI_ATF_GROUP_SCHED_POLICY_NUM_BITS       4

#define WMI_ATF_GROUP_GET_GROUP_SCHED_POLICY(atf_group_flags)  \
    WMI_GET_BITS(atf_group_flags,WMI_ATF_GROUP_SCHED_POLICY_BIT_POS,WMI_ATF_GROUP_SCHED_POLICY_NUM_BITS)

#define WMI_ATF_GROUP_SET_GROUP_SCHED_POLICY(atf_group_flags,val)  \
    WMI_SET_BITS(atf_group_flags,WMI_ATF_GROUP_SCHED_POLICY_BIT_POS,WMI_ATF_GROUP_SCHED_POLICY_NUM_BITS,val)

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_atf_group_info */
    A_UINT32 tlv_header;
    A_UINT32 atf_group_id; /* ID of the Air Time Management group */
    /* atf_group_units
     * Fraction of air time allowed for the group, in per mille units
     * (from 0-1000).
     * For example, to indicate that the group can use 12.3% of the air time,
     * the atf_group_units setting would be 123.
     */
    A_UINT32 atf_group_units;
    /* atf_group_flags
     *  Bits 4-31  - Reserved (Shall be zero)
     *  Bits 0-3   - Group Schedule Policy (Fair/Strict/Fair with upper bound)
     *               Refer to WMI_ATF_SSID_ definitions
     */
    A_UINT32 atf_group_flags;
} wmi_atf_group_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_atf_ssid_grp_request_fixed_param */
    A_UINT32 pdev_id;
    /*
     * Following this structure is the TLV:
     * struct wmi_atf_group_info group_info[];
     */
} wmi_atf_ssid_grp_request_fixed_param;

/* ATF Configurations for WMM ACs of a group, value for each AC shall be in
 * percentage (0-100).
 * This perecentage is relative to the residual airtime (derived by FW)
 * configured for the group.
 * When WMM ATF is not configured for a peer all values shall be 0.
 */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_atf_group_wmm_ac_info
     */
    A_UINT32 tlv_header;
    A_UINT32 atf_group_id; /* ID of the Air Time Management group */
    A_UINT32 atf_units_be;
    A_UINT32 atf_units_bk;
    A_UINT32 atf_units_vi;
    A_UINT32 atf_units_vo;
} wmi_atf_group_wmm_ac_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_atf_grp_wmm_ac_cfg_request_fixed_param */
    A_UINT32 pdev_id;
    /*
     * Following this structure is the TLV:
     * struct wmi_atf_group_wmm_ac_info group_info[];
     */
} wmi_atf_grp_wmm_ac_cfg_request_fixed_param;

#define WMI_VDEV_LATENCY_TIDNUM_BIT_POS     0
#define WMI_VDEV_LATENCY_TIDNUM_NUM_BITS    8

#define WMI_VDEV_LATENCY_GET_TIDNUM(vdev_latency_info) \
    WMI_GET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_TIDNUM_BIT_POS, WMI_VDEV_LATENCY_TIDNUM_NUM_BITS)

#define WMI_VDEV_LATENCY_SET_TIDNUM(vdev_latency_info,val) \
    WMI_SET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_TIDNUM_BIT_POS, WMI_VDEV_LATENCY_TIDNUM_NUM_BITS, val)

#define WMI_VDEV_LATENCY_AC_BIT_POS     8
#define WMI_VDEV_LATENCY_AC_NUM_BITS    2

#define WMI_VDEV_LATENCY_GET_AC(vdev_latency_info) \
    WMI_GET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_AC_BIT_POS, WMI_VDEV_LATENCY_AC_NUM_BITS)

#define WMI_VDEV_LATENCY_SET_AC(vdev_latency_info,val) \
    WMI_SET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_AC_BIT_POS, WMI_VDEV_LATENCY_AC_NUM_BITS, val)

#define WMI_VDEV_LATENCY_DL_VALID_BIT_POS     10
#define WMI_VDEV_LATENCY_DL_VALID_NUM_BITS    1

#define WMI_VDEV_LATENCY_GET_DL_VALID(vdev_latency_info) \
    WMI_GET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_DL_VALID_BIT_POS, WMI_VDEV_LATENCY_DL_VALID_NUM_BITS)

#define WMI_VDEV_LATENCY_SET_DL_VALID(vdev_latency_info,val) \
    WMI_SET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_DL_VALID_BIT_POS, WMI_VDEV_LATENCY_DL_VALID_NUM_BITS, val)

#define WMI_VDEV_LATENCY_UL_VALID_BIT_POS     11
#define WMI_VDEV_LATENCY_UL_VALID_NUM_BITS    1

#define WMI_VDEV_LATENCY_GET_UL_VALID(vdev_latency_info) \
    WMI_GET_BITS(vdev_latency_info,WMI_VDEV_LATENCY_UL_VALID_BIT_POS, WMI_VDEV_LATENCY_UL_VALID_NUM_BITS)

#define WMI_VDEV_LATENCY_SET_UL_VALID(vdev_latency_info,val) \
    WMI_SET_BITS(vdev_latency_info, WMI_VDEV_LATENCY_UL_VALID_BIT_POS, WMI_VDEV_LATENCY_UL_VALID_NUM_BITS, val)

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_vdev_latency_info
     */
    A_UINT32 tlv_header;
    /*
     * Maximum expected average delay between 2 schedules in milliseconds
     * of given TID type when it has active traffic.
     * 0x0 is considered as invalid service interval.
     */
    A_UINT32 service_interval;
    /* burst_size:
     * The number of bytes transmitted (in DL TIDs) / received (in UL ACs)
     * in service interval.
     */
    A_UINT32 burst_size;
    /* max_latency:
     * The maximum end to end latency expectation, in milliseconds.
     * If this value is 0x0, it shall be ignored.
     */
    A_UINT32 max_latency;
    /* max_per:
     * The maximum PER (as a percent) for the peer-TID, in range 1 - 100.
     * If this value is 0x0, it shall be ignored.
     */
    A_UINT32 max_per;
    /* min_tput:
     * The minimum guaranteed throughput to the peer-TID, in Kbps.
     * If this value is 0x0, it shall be ignored.
     */
    A_UINT32 min_tput;
    /* vdev_latency_info
     *  Bits  12 - 31   - Reserved (Shall be zero)
     *  Bit   11        - UL latency config indication.
     *                    If this bit is set then this latency info will
     *                    be used when triggering UL traffic.  Until the
     *                    AC specified in bits 8-9 has transferred at least
     *                    burst_size amount of UL data within the service
     *                    period, the AP will continue sending UL triggers
     *                    when the STA has data of the specified access
     *                    category ready to transmit.
     *                    Note that the TID specified in bits 0-7 does not
     *                    apply to UL; the TID-to-AC mapping applied to DL
     *                    data that can be adjusted by the TID specified
     *                    in bits 0-7 and the AC specified in bits 8-9 is
     *                    distinct from the TID-to-AC mapping applied to
     *                    UL data.
     *  Bit   10        - DL latency config indication. If the bit is set
     *                    then DL TID will use this latency config.
     *  Bits  8 - 9     - This bit has info on the custom AC of DL TID.
     *                    Also if bit 11 is set, the AP will apply some
     *                    of these latency specs (in particular, burst_size)
     *                    to UL traffic for this AC, by sending UL triggers
     *                    until the desired amount of data has been received
     *                    within the service period.
     *  Bits  0 - 7     - Specifies the TID of interest that corresponds
     *                    to the AC specified in bits 8-9.  This can be
     *                    used to adjust the TID-to-AC mapping applied to
     *                    DL data (if bit 10 is set).
     */
    A_UINT32 vdev_latency_info;
} wmi_vdev_latency_info;

/*
 * Currently wmi_vdev_tid_latency_config_fixed_param will be sent per
 * data tid to map the AC.
 * Also to configure VDEV level latency config to be used by all TIDs
 * based on the mapping.
 * VDEV restart is expected during this command
 */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_tid_latency_config_fixed_param  */
    A_UINT32 pdev_id;
    A_UINT32 vdev_id;
    /*
     * Following this structure is the TLV:
     * struct wmi_vdev_latency_info vdev_latency_info[];
     */
} wmi_vdev_tid_latency_config_fixed_param;

#define WMI_TID_LATENCY_TIDNUM_BIT_POS     0
#define WMI_TID_LATENCY_TIDNUM_NUM_BITS    8

#define WMI_TID_LATENCY_GET_TIDNUM(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_TID_LATENCY_TIDNUM_BIT_POS, WMI_TID_LATENCY_TIDNUM_NUM_BITS)

#define WMI_TID_LATENCY_SET_TIDNUM(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info, WMI_TID_LATENCY_TIDNUM_BIT_POS, WMI_TID_LATENCY_TIDNUM_NUM_BITS, val)

#define WMI_TID_LATENCY_AC_BIT_POS     8
#define WMI_TID_LATENCY_AC_NUM_BITS    2

#define WMI_TID_LATENCY_GET_AC(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_TID_LATENCY_AC_BIT_POS ,  WMI_TID_LATENCY_AC_NUM_BITS)

#define WMI_TID_LATENCY_SET_AC(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info, WMI_TID_LATENCY_AC_BIT_POS ,   WMI_TID_LATENCY_AC_NUM_BITS, val)

#define WMI_TID_LATENCY_DL_ENABLE_BIT_POS     10
#define WMI_TID_LATENCY_DL_ENABLE_NUM_BITS    1

#define WMI_TID_LATENCY_GET_DL_ENABLE(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info,WMI_TID_LATENCY_DL_ENABLE_BIT_POS, WMI_TID_LATENCY_DL_ENABLE_NUM_BITS)

#define WMI_TID_LATENCY_SET_DL_ENABLE(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info,WMI_TID_LATENCY_DL_ENABLE_BIT_POS, WMI_TID_LATENCY_DL_ENABLE_NUM_BITS, val)

#define WMI_TID_LATENCY_UL_ENABLE_BIT_POS     11
#define WMI_TID_LATENCY_UL_ENABLE_NUM_BITS    1

#define WMI_TID_LATENCY_GET_UL_ENABLE(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info,WMI_TID_LATENCY_UL_ENABLE_BIT_POS, WMI_TID_LATENCY_UL_ENABLE_NUM_BITS)

#define WMI_TID_LATENCY_SET_UL_ENABLE(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info,WMI_TID_LATENCY_UL_ENABLE_BIT_POS, WMI_TID_LATENCY_UL_ENABLE_NUM_BITS, val)

#define WMI_LATENCY_BURST_SIZE_SUM_BIT_POS     12
#define WMI_LATENCY_BURST_SIZE_SUM_NUM_BITS    2

#define WMI_LATENCY_GET_BURST_SIZE_SUM(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_LATENCY_BURST_SIZE_SUM_BIT_POS, WMI_LATENCY_BURST_SIZE_SUM_NUM_BITS)

#define WMI_LATENCY_SET_BURST_SIZE_SUM(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info, WMI_LATENCY_BURST_SIZE_SUM_BIT_POS, WMI_LATENCY_BURST_SIZE_SUM_NUM_BITS, val)

#define WMI_LATENCY_MSDUQ_ID_BIT_POS     14
#define WMI_LATENCY_MSDUQ_ID_NUM_BITS    4

#define WMI_LATENCY_GET_MSDUQ_ID(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_LATENCY_MSDUQ_ID_BIT_POS, WMI_LATENCY_MSDUQ_ID_NUM_BITS)

#define WMI_LATENCY_SET_MSDUQ_ID(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info, WMI_LATENCY_MSDUQ_ID_BIT_POS, WMI_LATENCY_MSDUQ_ID_NUM_BITS, val)

#define WMI_LATENCY_DISABLE_UL_OFDMA_BIT_POS     18
#define WMI_LATENCY_DISABLE_UL_OFDMA_NUM_BITS    1

#define WMI_LATENCY_GET_DISABLE_UL_OFDMA(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_LATENCY_DISABLE_UL_OFDMA_BIT_POS, WMI_LATENCY_DISABLE_UL_OFDMA_NUM_BITS)

#define WMI_LATENCY_SET_DISABLE_UL_OFDMA(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info, WMI_LATENCY_DISABLE_UL_OFDMA_BIT_POS, WMI_LATENCY_DISABLE_UL_OFDMA_NUM_BITS, val)

#define WMI_LATENCY_DISABLE_UL_MU_MIMO_BIT_POS     19
#define WMI_LATENCY_DISABLE_UL_MU_MIMO_NUM_BITS    1

#define WMI_LATENCY_GET_DISABLE_UL_MU_MIMO(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_LATENCY_DISABLE_UL_MU_MIMO_BIT_POS, WMI_LATENCY_DISABLE_UL_MU_MIMO_NUM_BITS)

#define WMI_LATENCY_SET_DISABLE_UL_MU_MIMO(latency_tid_info,val) \
    WMI_SET_BITS(latency_tid_info, WMI_LATENCY_DISABLE_UL_MU_MIMO_BIT_POS, WMI_LATENCY_DISABLE_UL_MU_MIMO_NUM_BITS, val)

#define WMI_LATENCY_SAWF_UL_PARAMS_FLAG_POS         20
#define WMI_LATENCY_SAWF_UL_PARAMS_FLAG_NUM_BITS    1

#define WMI_LATENCY_GET_SAWF_UL_PARAMS_BIT(latency_tid_info) \
    WMI_GET_BITS(latency_tid_info, WMI_LATENCY_SAWF_UL_PARAMS_FLAG_POS, WMI_LATENCY_SAWF_UL_PARAMS_FLAG_NUM_BITS)

#define WMI_LATENCY_SET_SAWF_UL_PARAMS_BIT(latency_tid_info, val) \
    WMI_SET_BITS(latency_tid_info, WMI_LATENCY_SAWF_UL_PARAMS_FLAG_POS, WMI_LATENCY_SAWF_UL_PARAMS_FLAG_NUM_BITS, val)


typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_tid_latency_info
     */
    A_UINT32 tlv_header;
    wmi_mac_addr dest_macaddr; /* Mac address of end client */
    /*
     * Maximum expected average delay between 2 schedules in milliseconds
     * of given TID type when it has active traffic.
     * 0x0 is considered as invalid service interval.
     */
    A_UINT32 service_interval;
    /*
     * Cumulative number of bytes are expected to be transmitted or
     * received in the service interval when this specific Peer-TID
     * has active traffic.
     * If cumulative number of bytes is 0x0, it is considered as
     * invalid burst size.  In that case, firmware would try to transmit
     * and receive as many bytes as it can for this specific Peer-TID.
     * This burst size will be added or subtracted from vdev burst size
     * based on burst size sum bit in latency tid info.
     * The VDEV burst size will be considered to be 0 when no VDEV latency
     * command is received.
     * If host needs to set burst size for a peer then they can use the
     * peer cmd and set burst size sum bit to 1.
     */
    A_UINT32 burst_size_diff;
    /* max_latency:
     * The maximum end to end latency expectation, in milliseconds.
     * If this value is 0x0, it shall be ignored.
     */
    A_UINT32 max_latency;
    /* max_per:
     * The maximum PER (as a percent) for the peer-TID, in range 1 - 100
     * If this value is 0x0, it shall be ignored.
     */
    A_UINT32 max_per;
    /* min_tput:
     * The minimum guaranteed throughput to the peer-TID, in Kbps.
     * If this value is 0x0, it shall be ignored.
     */
    A_UINT32 min_tput;
    /* latency_tid_info
     *  Bits 21-31      - Reserved (Shall be zero)
     *  Bit  20         - Flag to indicate SAWF UL params (and not mesh latency)
     *  Bit  19         - Disable UL MU-MIMO. If set, UL MU-MIMO is disabled
     *                    for the specified AC. Note that TID level control is
     *                    not possible for UL MU-MIMO (the granularity is AC).
     *  Bit  18         - Disable UL OFDMA. If set, UL OFDMA is disabled for
     *                    the specified AC. Note that TID level control is not
     *                    possible for UL OFDMA (the granularity is AC).
     *  Bits 14-17      - MSDU queue flow id within the TID for configuring
     *                    latency info per MSDU flow queue
     *  Bit  12-13      - burst size sum. Bit to indicate whether to add or
     *                    subtract burst_size_diff from vdev cmd burst size:
     *                    1 -> addition
     *                    2 -> subtraction
     *  Bit   11        - UL latency config indication.
     *                    If this bit is set then this latency info will
     *                    be used when triggering UL traffic.  Until the
     *                    AC specified in bits 8-9 has transferred at least
     *                    burst_size amount of UL data within the service
     *                    period, the AP will continue sending UL triggers
     *                    when the STA has data of the specified access
     *                    category ready to transmit.
     *                    Note that the TID specified in bits 0-7 does not
     *                    apply to UL; the TID-to-AC mapping applied to DL
     *                    data that can be adjusted by the TID specified
     *                    in bits 0-7 and the AC specified in bits 8-9 is
     *                    distinct from the TID-to-AC mapping applied to
     *                    UL data.
     *  Bit   10        - DL latency config indication. If the bit is set
     *                    then DL TID will use this latency config.
     *  Bits  8 - 9     - This bit has info on the custom AC of DL TID.
     *                    Also if bit 11 is set, the AP will apply some
     *                    of these latency specs (in particular, burst_size)
     *                    to UL traffic for this AC, by sending UL triggers
     *                    until the desired amount of data has been received
     *                    within the service period.
     *  Bits  0 - 7     - Specifies the TID of interest that corresponds
     *                    to the AC specified in bits 8-9.  This can be
     *                    used to adjust the TID-to-AC mapping applied to
     *                    DL data (if bit 10 is set).
     */
    A_UINT32 latency_tid_info;
} wmi_tid_latency_info;

/*
 * Currently wmi_peer_tid_set_latency_request_fixed_param will be sent
 * per TID per latency configured client.
 * In future this command might come for multiple latency configured
 * clients together.
 * The clients are expected to be associated while receiving this command.
 */

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_tid_latency_config_fixed_param */
    A_UINT32 pdev_id;
    /*
     * Following this structure is the TLV:
     * struct wmi_tid_latency_info latency_info[];
     */
} wmi_peer_tid_latency_config_fixed_param;

#define WMI_ATF_GROUP_CFG_PEER_BIT_POS     0
#define WMI_ATF_GROUP_CFG_PEER_NUM_BITS    1

#define WMI_ATF_GROUP_GET_CFG_PEER_BIT(atf_peer_flags) \
    WMI_GET_BITS(atf_peer_flags,WMI_ATF_GROUP_CFG_PEER_BIT_POS,WMI_ATF_GROUP_CFG_PEER_NUM_BITS)

#define WMI_ATF_GROUP_SET_CFG_PEER_BIT(atf_peer_flags,val) \
    WMI_SET_BITS(atf_peer_flags,WMI_ATF_GROUP_CFG_PEER_BIT_POS,WMI_ATF_GROUP_CFG_PEER_NUM_BITS,val)

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_peer_atf_ext_info */
    A_UINT32 tlv_header;
    wmi_mac_addr peer_macaddr;
    A_UINT32 atf_group_id; /* Group Id of the peers for ATF SSID grouping */
    /* atf_peer_flags
     *  Bits 1-31  - Reserved (Shall be zero)
     *  Bit  0     - Configured Peer Indication (0/1), this bit would be set by
     *               host to indicate that the peer has airtime % configured
     *               explicitly by user.
     */
    A_UINT32 atf_peer_flags;
} wmi_peer_atf_ext_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_atf_ext_request_fixed_param */
    A_UINT32 pdev_id;
    /*
     * Following this structure is the TLV:
     * struct wmi_peer_atf_ext_info peer_ext_info[];
     */
} wmi_peer_atf_ext_request_fixed_param;

/* Structure for Bandwidth Fairness peer information */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bwf_peer_info */
    A_UINT32 tlv_header;
    wmi_mac_addr peer_macaddr;
    A_UINT32 bwf_guaranteed_bandwidth; /* BWF guaranteed_bandwidth for the peers in mbps */
    A_UINT32 bwf_max_airtime; /* BWF Maximum airtime percentage that can be allocated to the peer to meet the guaranteed_bandwidth */
    A_UINT32 bwf_peer_priority; /* BWF priority of the peer to allocate the tokens dynamically */
    A_UINT32 vdev_id;
    A_UINT32 pdev_id;
} wmi_bwf_peer_info;

/* Structure for Bandwidth Fairness peer request */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_bwf_request_fixed_param */
    A_UINT32 num_peers;
    /*
     * Following this structure is the TLV:
     * struct wmi_bwf_peer_info peer_info[num_peers];
     */
} wmi_peer_bwf_request_fixed_param;

/* Equal distribution of ATF air time within an VDEV. */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_atf_request_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 peer_atf_units; /* Per peer ATF units (per mille). */
    A_UINT32 pdev_id;
} wmi_vdev_atf_request_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_ani_cck_config_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** parameter   */
    A_UINT32 param;
} wmi_pdev_get_ani_cck_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_ani_ofdm_config_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /** parameter   */
    A_UINT32 param;
} wmi_pdev_get_ani_ofdm_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_QBOOST_CFG_CMD_fixed_param */
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
    A_UINT32 qb_enable;
    wmi_mac_addr peer_macaddr;
} WMI_QBOOST_CFG_CMD_fixed_param;

#define WMI_INST_STATS_INVALID_RSSI 0

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_inst_rssi_stats_resp_fixed_param */
    A_UINT32 iRSSI; /* dB above the noise floor */
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
} wmi_inst_rssi_stats_resp_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_cck_ofdm_rate_info */
    A_UINT32 ratecode_legacy; /* Rate code for CCK OFDM */
} wmi_peer_cck_ofdm_rate_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_mcs_rate_info */
    A_UINT32 ratecode_20;  /* Rate code for 20MHz BW */
    A_UINT32 ratecode_40;  /* Rate code for 40MHz BW */
    A_UINT32 ratecode_80;  /* Rate code for 80MHz BW */
    A_UINT32 ratecode_160; /* Rate code for 160MHz BW */
    A_UINT32 ratecode_320; /* Rate code for 320MHz BW */
} wmi_peer_mcs_rate_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_ratecode_list_event_fixed_param */
    wmi_mac_addr peer_macaddr;
    A_UINT32 ratecount; /* Max Rate count for each mode */
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
    A_UINT32 pdev_id; /* ID of the pdev this peer belongs to */
    A_UINT32 ratecount_ext; /* Max Rate count for 160, 320MHz */
    /*
     * Following this structure are the TLV:
     * struct wmi_peer_cck_ofdm_rate_info;
     * struct wmi_peer_mcs_rate_info;
     */
} wmi_peer_ratecode_list_event_fixed_param;

typedef struct wmi_wds_addr_event {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wds_addr_event_fixed_param */
    A_UINT32 event_type[4];
    wmi_mac_addr peer_mac;
    wmi_mac_addr dest_mac;
    A_UINT32 vdev_id; /* ID of the vdev this peer belongs to */
} wmi_wds_addr_event_fixed_param;

/*
 * Enum values for WMI_PEER_PS_SUPPORTED_BITMAP field,
 * in wmi_peer_sta_ps_statechange_event structure.
 */
typedef enum {
   /* Used to indicate that peer_ps_valid is valid */
   WMI_PEER_PS_VALID_SUPPORTED =     0x00000001,
   /* Used to indicate that peer_ps_timestamp field is valid */
   WMI_PEER_PS_TIMESTAMP_SUPPORTED = 0x00000002,
} WMI_PEER_PS_SUPPORTED_BITMAP;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_sta_ps_statechange_event_fixed_param */
    wmi_mac_addr peer_macaddr;
    A_UINT32 peer_ps_state;
    /* Start of extended structure */
    /* Bitmap to indicate which fields in the extended structure are valid.
     * Bitmap values correspond to enum WMI_PEER_PS_SUPPORTED_BITMAP
     */
    A_UINT32 peer_ps_supported_bitmap;
    /* This field is used to indicate host of a valid PS state change.
     * 1 - indicates a valid PS state change.
     * 0 - indicates an invalid PS state change.
     * Host to ignore the power save duration calculation when peer_ps_valid = 0
     */
    A_UINT32 peer_ps_valid;
    /* This field indicates the time since target boot-up in MilliSeconds. */
    A_UINT32 peer_ps_timestamp;
    /* Indicates the vdev id for MLO case */
    wmi_vdev_id_info vdev_id_info;
} wmi_peer_sta_ps_statechange_event_fixed_param;

/* WMI_PDEV_FIPS_EVENTID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_fips_event_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 error_status; /* Error status: 0 (no err), 1, or OPER_TIMEOUT */
    A_UINT32 data_len;     /* Data length */
/*
 * Following this structure is the TLV:
 *    A_UINT32 data[1]; <-- Out Data (keep this in the end)
 */
} wmi_pdev_fips_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_fips_event_fixed_param */
    A_UINT32 pdev_id;
    A_UINT32 fips_cookie;    /* Cookie value to identify test vector */
    A_UINT32 cmd_frag_idx;   /* Fragment Number */
    A_UINT32 more_bit;
    A_UINT32 error_status; /* Error status: 0 (no err), 1, or OPER_TIMEOUT */
    A_UINT32 data_len;     /* Data length CTlen+ TAGlen*/
/*
 * Following this structure is the TLV:
 *    A_UINT32 data[1]; <-- Out Data (ciphertext+tag)
 */
} wmi_pdev_fips_extend_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_channel_hopping_event_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    /* Noise threshold iterations with high values */
    A_UINT32 noise_floor_report_iter;
    /* Total noise threshold iterations */
    A_UINT32 noise_floor_total_iter;
} wmi_pdev_channel_hopping_event_fixed_param;

enum {
    WMI_PDEV_RESERVE_AST_ENTRY_OK,
    WMI_PDEV_RESERVE_AST_ENTRY_HASH_COLLISION,
    WMI_PDEV_RESERVE_AST_ENTRY_CROSSING_AXI_BOUNDARY,
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_tpc_cmd_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 rate_flags;
    /**
    * FLAG_ONE_CHAIN     0x00000001  - one chain mask
    * FLAG_TWO_CHAIN     0x00000003  - two chain mask
    * FLAG_THREE_CHAIN   0x00000007  - three chain mask
    * FLAG_FOUR_CHAIN    0x0000000F  - four chain mask
    * FLAG_FIVE_CHAIN    0x0000001F  - five chain mask
    * FLAG_SIX_CHAIN     0x0000003F  - six chain mask
    * FLAG_SEVEN_CHAIN   0x0000007F  - seven chain mask
    * FLAG_EIGHT_CHAIN   0x000000FF  - eight chain mask
    * FLAG_STBC          0x00000100  - STBC is set
    * FLAG_40MHZ         0x00000200  - bits 9-10 used for BW:
    * FLAG_80MHZ         0x00000400    (bw >> 9) & 3 will give
    * FLAG_160MHZ        0x00000600    1 -> 40 MHz, 2 -> 80 MHz, 3 -> 160 MHz
    * FLAG_TXBF          0x00000800 - Tx Bf enabled
    * FLAG_RTSENA        0x00001000 - RTS enabled
    * FLAG_CTSENA        0x00002000 - CTS enabled
    * FLAG_LDPC          0x00004000 - LDPC set
    * FLAG_SGI           0x00008000 - Short guard interval
    *                   (0x00010000-0x00080000 unused)
    *------------------
    * 0x00100000-0x00700000 used for SU/MU/OFDMA tx mode
    * FLAG_SU            0x00100000 - SU Data
    * FLAG_DL_MU_MIMO_AC 0x00200000 - DL AC MU data
    * FLAG_DL_MU_MIMO_AX 0x00300000 - DL AX MU data
    * FLAG_DL_OFDMA      0x00400000 - DL OFDMA data
    * FLAG_UL_OFDMA      0x00500000 - UL OFDMA data
    * FLAG_UL_MU_MIMO    0x00600000 - UL MU data
    *------------------
    * */
    A_UINT32 nss;
    /**
    * NSS 0x0 - 0x7
    * */
    A_UINT32 preamble;
    /**
    * PREAM_OFDM - 0x0
    * PREAM_CCK  - 0x1
    * PREAM_HT   - 0x2
    * PREAM_VHT  - 0x3
    * PREAM_HE   - 0x4
    * */
    A_UINT32 hw_rate;
    /**
     * *** HW_OFDM_RATE ***
     * OFDM_48_MBPS - 0x0
     * OFDM_24_MBPS - 0x1
     * OFDM_12_MBPS - 0x2
     * OFDM_6_MBPS  - 0x3
     * OFDM_54_MBPS - 0x4
     * OFDM_36_MBPS - 0x5
     * OFDM_18_MBPS - 0x6
     * OFDM_9_MBPS  - 0x7
     *
     * *** HW_CCK_RATE ***
     * CCK_11_LONG_MBPS   - 0x0
     * CCK_5_5_LONG_MBPS  - 0x1
     * CCK_2_LONG_MBPS    - 0x2
     * CCK_1_LONG_MBPS    - 0x3
     * CCK_11_SHORT_MBPS  - 0x4
     * CCK_5_5_SHORT_MBPS - 0x5
     * CCK_2_SHORT_MBPS   - 0x6
     *
     * *** HW_HT / VHT_RATE ***
     * MCS 0x0 - 0xb
     * */
} wmi_pdev_get_tpc_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_chip_power_stats_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_get_chip_power_stats_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_bcn_recv_stats_cmd_fixed_param */
    /** VDEV identifier */
    A_UINT32 vdev_id;
} wmi_vdev_get_bcn_recv_stats_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_xgap_enable_cmd_fixed_param */
    A_UINT32 beacon_interval; /* in TU */
    A_UINT32 sap_lp_flag;     /* bit 0 : set/unset for enter/exit XGAP */
    A_UINT32 dialog_token;
    A_UINT32 duration;        /* in us : sap LP enter/exit duration, 0 for permanent exit */
} wmi_xgap_enable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_xgap_enable_complete_event_fixed_param */
    A_UINT32 dialog_token;
    A_UINT32 next_tsf_low32;
    A_UINT32 next_tsf_high32;
} wmi_xgap_enable_complete_event_fixed_param;

/*
 * wmi mws-coex command IDs
 */
typedef enum {
    WMI_MWS_COEX_STATE = 0x01,
    WMI_MWS_COEX_DPWB_STATE,
    WMI_MWS_COEX_TDM_STATE,
    WMI_MWS_COEX_IDRX_STATE,
    WMI_MWS_COEX_ANTENNA_SHARING_STATE,
} wmi_mws_coex_cmd_id;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_mws_coex_state_cmd_fixed_param */
    /** VDEV identifier */
    A_UINT32 vdev_id;
    /** Command ID (type: wmi_mws_coex_cmd_id) */
    A_UINT32 cmd_id;
} wmi_vdev_get_mws_coex_info_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_tpc_event_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
   /*
    * Following this structure is the TLV:
    *    A_UINT32 tpc[2];
    *    tpc[0] - maximum power per rate
    *    tpc[1] - minimum power per rate
    *    Currently this event only provides max and min power limits
    *    for a single rate.  In the future this event may be expanded
    *    to provide the information for multiple rates.
    *    At that time, the format of the data will be provided.
    */
} wmi_pdev_tpc_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_event_fixed_param */
    union {
        A_UINT32 mac_id; /* OBSOLETE - will be removed once all refs are gone */
        /** pdev_id for identifying the MAC
         * See macros starting with WMI_PDEV_ID_ for values.
         */
        A_UINT32 pdev_id;
    };
    A_UINT32 nfdBr_len;
    A_UINT32 nfdBm_len;
    A_UINT32 freqNum_len;
   /*
    * Following this structure is the TLV:
    * WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_nfdBr;
    * WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_nfdBm;
    * WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_freqNum;
    */
} wmi_pdev_nfcal_power_all_channels_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_nfdBr */
    A_UINT32 nfdBr;
} wmi_pdev_nfcal_power_all_channels_nfdBr;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_nfdBm */
    A_UINT32 nfdBm;
} wmi_pdev_nfcal_power_all_channels_nfdBm;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_nfcal_power_all_channels_freqNum */
    A_UINT32 freqNum;
} wmi_pdev_nfcal_power_all_channels_freqNum;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ani_cck_event_fixed_param */
    A_UINT32 cck_level;
} wmi_ani_cck_event_fixed_param;

typedef enum wmi_power_debug_reg_fmt_type {
    /* WMI_POWER_DEBUG_REG_FMT_TYPE_ROME -> Dumps following 12 Registers
     *     SOC_SYSTEM_SLEEP
     *     WLAN_SYSTEM_SLEEP
     *     RTC_SYNC_FORCE_WAKE
     *     MAC_DMA_ISR
     *     MAC_DMA_TXRX_ISR
     *     MAC_DMA_ISR_S1
     *     MAC_DMA_ISR_S2
     *     MAC_DMA_ISR_S3
     *     MAC_DMA_ISR_S4
     *     MAC_DMA_ISR_S5
     *     MAC_DMA_ISR_S6
     *     MAC_DMA_ISR_S7
     */
    WMI_POWER_DEBUG_REG_FMT_TYPE_ROME,

    WMI_POWER_DEBUG_REG_FMT_TYPE_MAX = 0xf,
} WMI_POWER_DEBUG_REG_FMT_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chip_power_stats_event_fixed_param */
    A_UINT32 cumulative_sleep_time_ms; /* maximum range is 35 hours, due to conversion from internal 0.03215 ms units to ms */
    A_UINT32 cumulative_total_on_time_ms; /* maximum range is 35 hours, due to conversion from internal 0.03215 ms units to ms */
    A_UINT32 deep_sleep_enter_counter; /* count of number of times chip enterred deep sleep */
    A_UINT32 last_deep_sleep_enter_tstamp_ms; /* Last Timestamp when Chip went to deep sleep */
    A_UINT32 debug_register_fmt; /* WMI_POWER_DEBUG_REG_FMT_TYPE enum, describes debug registers being dumped as part of the event */
    A_UINT32 num_debug_register; /* number of debug registers being sent to host */
    /*
     * Following this structure is the TLV:
     *    A_UINT32 debug_registers[num_debug_registers];
     */
} wmi_pdev_chip_power_stats_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_get_bcn_recv_stats_fixed_param */
    A_UINT32 vdev_id;
    /* total_bcn_cnt
     * total beacon count (tbtt instances)
     * After this value reaches 255 it saturates and stays at 255.
     * This field is used to determine which of the 256 bits in the
     * bmiss_bitmap field are valid.
     */
    A_UINT32 total_bcn_cnt;
    /* total_bmiss_cnt
     * Total beacon miss count in last 255 beacons, max value is 255.
     * This value is the number of bits set within bmiss_bitmap.
     */
    A_UINT32 total_bmiss_cnt;
    /* bmiss_bitmap
     * This bitmap indicates the status of the last 255 beacons.
     * If a bit is set, that means the corresponding beacon was missed.
     * Bit 0 of bmiss_bitmap[0] represents the most recent beacon.
     * The total_bcn_cnt field indicates how many bits within bmiss_bitmap
     * are valid.
     */
    A_UINT32 bmiss_bitmap[8];
} wmi_vdev_bcn_recv_stats_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_mws_coex_state_fixed_param */
    A_UINT32 vdev_id;

    /* LTE-WLAN coexistence scheme bitmap
     * Indicates the final schemes applied for the current Coex scenario.
     * Bit 0 - TDM policy
     * Bit 1 - Forced TDM policy
     * Bit 2 - Dynamic Power Back-off policy
     * Bit 3 - Channel Avoidance policy
     * Bit 4 - Static Power Back-off policy
     */
    A_UINT32 coex_scheme_bitmap;

    /* Active conflict count
     * Indicates the number of Active conflicts for the current WLAN and LTE frequency combinations.
     */
    A_UINT32 active_conflict_count;

    /* Potential conflict count
     * Indicates the number of Potential conflicts for the current WLAN and LTE frequency combinations.
     */
    A_UINT32 potential_conflict_count;

    /* Bitmap of the group-0 WLAN channels to be avoided during LTE-WLAN coex operation.
     * Indicates the WLAN channels to be avoided in b/w WLAN CH-1 and WLAN CH-14.
     */
    A_UINT32 chavd_group0_bitmap;

    /* Bitmap of the group-1 WLAN channels to be avoided during LTE-WLAN coex operation.
     * Indicates the WLAN channels to be avoided in b/w WLAN CH-36 and WLAN CH-64.
     */
    A_UINT32 chavd_group1_bitmap;

    /* Bitmap of the group-2 WLAN channels to be avoided during LTE-WLAN coex operation.
     * Indicates the WLAN channels to be avoided in b/w WLAN CH-100 and WLAN CH-140.
     */
    A_UINT32 chavd_group2_bitmap;

    /* Bitmap of the group-3 WLAN channels to be avoided during LTE-WLAN coex operation.
     * Indicates the WLAN channels to be avoided in b/w WLAN CH-149 and WLAN CH-165.
     */
    A_UINT32 chavd_group3_bitmap;
} wmi_vdev_get_mws_coex_state_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_mws_coex_dpwb_state_fixed_param */
    A_UINT32 vdev_id;

    /* Current state of the Dynamic Power Back-off state machine
     * MWSCOEX_PWB_UNINIT_STATE                        = 0, PWB state machine is in un-intialized state.
     * MWSCOEX_PWB_WLAN_ON_SINR_START_STATE            = 1, SINR measurement starts when WLAN is on
     * MWSCOEX_PWB_WLAN_ON_WAIT_RESP_STATE             = 2, Waiting for SINR response when WLAN is on
     * MWSCOEX_PWB_WLAN_OFF_AWAIT_STATE                = 3, WLAN off state for buffer between SINR on/off measurement.
     * MWSCOEX_PWB_WLAN_OFF_SINR_START_STATE           = 4, SINR measurement starts when WLAN is off
     * MWSCOEX_PWB_WLAN_OFF_WAIT_RESP_STATE            = 5, Waiting for SINR response when WLAN is off
     * MWSCOEX_PWB_WLAN_OFF_SINR_STOP_STATE            = 6, SINR measurement stops when WLAN is off
     * MWSCOEX_PWB_FORCED_TDM_STATE                    = 7, Entered Forced TDM state.
     * MWSCOEX_PWB_HALTED_STATE                        = 8, Power back-off algorithm halted.
     * MWSCOEX_PWB_WLAN_ALWAYS_ON_SINR_START_STATE     = 9, SINR measurement starts in WLAN always on state.
     * MWSCOEX_PWB_WLAN_ALWAYS_ON_SINR_STOP_STATE      = 10, SINR measurement stops in WLAN always on state.
     */
    A_UINT32 current_dpwb_state;

    /* P(N+1) value in dBm i.e. Tx power to be applied in the next Dynamic Power Back-off cycle,
     * where P(N) is the power applied during current cycle.
     * ranges from 3dBm to 21 dBM
     */
    A_INT32 pnp1_value;

    /* Indicates the duty cycle of current LTE frame.
     * Duty cycle: Number of UL slots with uplink data and allocated RBs.
     */
    A_UINT32 lte_dutycycle;

    /* LTE SINR value in dB, when WLAN is ON. */
    A_INT32 sinr_wlan_on;

    /* LTE SINR value in dB, when WLAN is OFF. */
    A_INT32 sinr_wlan_off;

    /* LTE blocks with error for the current bler report.
     * Number of LTE blocks with error for a given number (block_count)  of LTE blocks.
     */
    A_UINT32 bler_count;

    /* Number of LTE blocks considered for bler count report.
     * Bler repot will be generated after the reception of every "block_count" number of blocks.
     */
    A_UINT32 block_count;

    /* WLAN RSSI level
     * WLAN RSSI is divided in to 3 levels i.e. Good/Moderate/Low (configurable inside f/w)
     * 0-Good, 1-Moderate, 2-Low
     */
    A_UINT32 wlan_rssi_level;

    /* WLAN RSSI value in dBm considered in Dynamic Power back-off algorithm
     * Dynamic power back-off algorithm considers either Rx data frame RSSI/Beacon RSSI based on some constraints.
     */
    A_INT32 wlan_rssi;

    /* Indicates whether any TDM policy triggered from Dynamic power back-off policy.
     * 1 - TDM triggered.
     * 0 - TDM not triggered.
     */
    A_UINT32 is_tdm_running;
} wmi_vdev_get_mws_coex_dpwb_state_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_mws_coex_tdm_state_fixed_param */
    A_UINT32 vdev_id;
    /* Time Division Multiplexing (TDM) LTE-Coex Policy type.
     * There are totally 4 types of TDM policies(1-SINR TDM, 2-RSSI TDM, 3-LOW RX RATE TDM, 4-STICKY TDM)
     * Bit 0 - SINR TDM policy.
     * Bit 1 - RSSI TDM policy.
     * Bit 2 - Low Rx rate TDM policy
     * Bit 3 - Sticky TDM policy
     */
    A_UINT32 tdm_policy_bitmap;

    /* TDM LTE/WLAN sub-frame bitmap
     * Indicates the bitmap of LTE/WLAN sub-frames.
     * value 0: WLAN slot.
     * value 1: LTE slot.
     */
    A_UINT32 tdm_sf_bitmap;
} wmi_vdev_get_mws_coex_tdm_state_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_mws_coex_idrx_state_fixed_param */
    A_UINT32 vdev_id;

    /* SUB0 LTE-coex tech.
     *------------------------
     * TECH          TECH_ID
     *------------------------
     * LTE              0
     * TDSCDMA          1
     * GSM1             2
     * ONEX             3
     * HDR              4
     * WCDMA            5
     * GSM2             6
     * GSM3             7
     * WCDMA2           8
     * LTE2             9
     * Indicates the type of WWAN technology used as SUB0 i.e. SIM slot 1
     */
    A_UINT32 sub0_techid;

    /* SUB0 mitigation policy.
     * Indicates the mitigation policy used to coexist with WLAN.
     * 1 - Tx blanking
     * 2 - Static power back-off
     */
    A_UINT32 sub0_policy;

    /* Set if SUB0 is in link critical state.
     * Link critical will be set, if continuous page miss happens or RSSI is below -100 dBm at LTE side.
     */
    A_UINT32 sub0_is_link_critical;

    /* LTE SUB0 imposed static power applied to WLAN due to LTE-WLAN coex.
     * Value of static power applied during LTE page cycle ranges from 3-21 dBm.
     */
    A_INT32 sub0_static_power;

    /* LTE SUB0 RSSI value in dBm */
    A_INT32 sub0_rssi;

    /* SUB1 LTE-coex tech.
     *------------------------
     * TECH          TECH_ID
     *------------------------
     * LTE              0
     * TDSCDMA          1
     * GSM1             2
     * ONEX             3
     * HDR              4
     * WCDMA            5
     * GSM2             6
     * GSM3             7
     * WCDMA2           8
     * LTE2             9
     * Indicates the type of WWAN technology used as SUB1 i.e. SIM slot 2
     */
    A_UINT32 sub1_techid;

    /* SUB1 mitigation policy.
     * Indicates the mitigation policy used to coexist with WLAN.
     * 1 - Tx blanking
     * 2 - Static power back-off
     */
    A_UINT32 sub1_policy;

    /* Set if SUB1 is in link critical state.
     * Link critical will be set, if continuous page miss happens or RSSI is below -100 dBm at LTE side.
     */
    A_UINT32 sub1_is_link_critical;

    /* LTE SUB1 imposed static power applied to WLAN due to LTE-WLAN coex.
     * Value of static power applied during LTE page cycle ranges from 3-21 dBm.
     */
    A_INT32 sub1_static_power;

    /* LTE SUB1 RSSI value in dBm */
    A_INT32 sub1_rssi;
} wmi_vdev_get_mws_coex_idrx_state_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_mws_coex_antenna_sharing_state_fixed_param */
    A_UINT32 vdev_id;

    /* BDF values of Coex flags.
     * coexflag 0x1 = MWS Coex enabled
     * coexflag 0x3 = MWS Coex enabled + Antenna sharing enabled for WLAN operating in 2.4GHz band.
     */
    A_UINT32 coex_flags;

    /* BDF values of Coex Antenna sharing config
     * coex_config 0x0 = no Antenna sharing
     * coexconfig 0x1 = switched based Antenna sharing
     * coexconfig 0x2 = splitter based Antenna sharing
     */
    A_UINT32 coex_config;

    /* Tx Chain mask value
     * Bit 0: Tx chain-0
     * Bit 1: Tx Chain-1
     * value: 0x1 - Operating in 1X1
     * value: 0x3 - Operating in 2X2
     */
    A_UINT32 tx_chain_mask;

    /* Rx Chain mask value
     * Bit 0: Rx chain-0
     * Bit 1: Rx Chain-1
     * value: 0x1 - Operating in 1X1
     * value: 0x3 - Operating in 2X2
     */
    A_UINT32 rx_chain_mask;

    /* Currently active Rx Spatial streams
     * Bit 0: Rx Spatial Stream-0
     * Bit 1: Rx Spatial Stream-1
     */
    A_UINT32 rx_nss;

    /* Forced MRC policy type
     * BTC_FORCED              (0x01)
     * RSSI_FORCED             (0x02)
     * MODEM_ACQ_FORCED        (0x04)
     */
    A_UINT32 force_mrc;

    /* RSSI value considered for MRC
     * 1: Data RSSI
     * 2: Beacon RSSI
     */
    A_UINT32 rssi_type;

    /* RSSI value measured at Chain-0 in dBm */
    A_INT32 chain0_rssi;

    /* RSSI value measured at Chain-1 in dBm */
    A_INT32 chain1_rssi;

    /* RSSI value of two chains combined in dBm */
    A_INT32 combined_rssi;

    /* Absolute imbalance between two Rx chains in dB */
    A_UINT32 imbalance;

    /* RSSI threshold defined for the above imbalance value in dBm.
     * Based on the degree of imbalance between the rx chains, different
     * RSSI thresholds are used to determine whether MRC (Maximum-Ratio
     * Combining) use of multiple rx chains is suitable.
     * This field shows the RSSI threshold below which MRC is used.
     */
    A_INT32 mrc_threshold;

    /* Antenna grant duration to WLAN, in milliseconds */
    A_UINT32 grant_duration;
} wmi_vdev_get_mws_coex_antenna_sharing_state_fixed_param;

typedef enum wmi_chip_power_save_failure_reason_code_type {
    WMI_PROTOCOL_POWER_SAVE_FAILURE_REASON,
    WMI_HW_POWER_SAVE_FAILURE_REASON,
    WMI_CSS_LOCKED_POWER_FAILURE_REASON,
    WMI_MAC0_LOCKED_POWER_FAILURE_REASON,
    WMI_MAC1_LOCKED_POWER_FAILURE_REASON,
    WMI_POWER_SAVE_FAILURE_REASON_MAX = 0xf,
} WMI_POWER_SAVE_FAILURE_REASON_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_chip_power_save_failure_detected_fixed_param */
    A_UINT32 power_save_failure_reason_code; /* Chip power save failuire reason as defined in WMI_POWER_SAVE_FAILURE_REASON_TYPE */
    A_UINT32 protocol_wake_lock_bitmap[4]; /* bitmap with bits set for modules (from WLAN_MODULE_ID enum) voting against sleep for prolonged duration */
} wmi_chip_power_save_failure_detected_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_ani_ofdm_event_fixed_param */
    A_UINT32 ofdm_level;
} wmi_ani_ofdm_event_fixed_param;

/* When a bit is set it specifies the particular WLAN traffic type is high priority.
 * BT low priority traffic has higher priority than WLAN low priority traffic and has
 * lower priority when compared to WLAN high priority traffic.
 * BT high priority traffic has higher priority than WLAN low/high priority traffic.
 */
#define WMI_PDEV_BE_PRIORITY_BIT     (1<<0)
#define WMI_PDEV_BK_PRIORITY_BIT     (1<<1)
#define WMI_PDEV_VI_PRIORITY_BIT     (1<<2)
#define WMI_PDEV_VO_PRIORITY_BIT     (1<<3)
#define WMI_PDEV_BEACON_PRIORITY_BIT (1<<4)
#define WMI_PDEV_MGMT_PRIORITY_BIT   (1<<5)
#define WMI_PDEV_IS_BE_PRIORITY_SET(val) ((val) & WMI_PDEV_BE_PRIORITY_BIT)
#define WMI_PDEV_IS_BK_PRIORITY_SET(val) ((val) & WMI_PDEV_BK_PRIORITY_BIT)
#define WMI_PDEV_IS_VI_PRIORITY_SET(val) ((val) & WMI_PDEV_VI_PRIORITY_BIT)
#define WMI_PDEV_IS_VO_PRIORITY_SET(val) ((val) & WMI_PDEV_VO_PRIORITY_BIT)
#define WMI_PDEV_IS_BEACON_PRIORITY_SET(val) ((val) & WMI_PDEV_BEACON_PRIORITY_BIT)
#define WMI_PDEV_IS_MGMT_PRIORITY_SET(val) ((val) & WMI_PDEV_MGMT_PRIORITY_BIT)

/*
 * For Maple 3-way coex, The interface will have following configurable
 * priority bits to set relative priorities of WLAN/BT/3-radio PTA.
 * To send below config host will use WMI_COEX_CONFIG_CMD command with
 * config type WMI_COEX_CONFIG_THREE_WAY_COEX_START
 * WMI_COEX_CONFIG_THREE_WAY_COEX_RESET
 *
 ** Bits 0 to 7 corresponds to Wifi
 * Bit - 0: QCA_WIFI_BE
 * Bit - 1: QCA_WIFI_BK
 * Bit - 2: QCA_WIFI_VI
 * Bit - 3: QCA_WIFI_VO
 * Bit - 4: QCA_WIFI_BEACON
 * Bit - 5: QCA_WIFI_MGMT
 * Bits 6 - 7: Reserved
 *
 ** Bits 8 to 15 corresponds to BT
 * Bit - 8: QCA_BT_ADVERTISER
 * Bit - 9: QCA_BT_SCANNER
 * Bit - 10: QCA_BT_BLE_CONNECTION
 * Bits 11 to 15: Reserved
 *
 ** Bits 16 to 24 corresponds to 3-radio PTA,
 * It can be anything BT/ZigBee connected to 802.15.4 radio
 * Bit - 16: QCA_PTA_THIRD_RADIO_LOW
 * Bit - 17: QCA_PTA_THIRD_RADIO_HIGH
 * Bits 18 to 24: Reserved
 *
 ** Bits 25 to 31 Reserved for future use
 */
#define WMI_PDEV_BT_ADVERTISER_PRIORITY_BIT      (1 <<  8)
#define WMI_PDEV_BT_SCANNER_PRIORITY_BIT         (1 <<  9)
#define WMI_PDEV_BT_BLE_CONNECTION_PRIORITY_BIT  (1 << 10)
#define WMI_PDEV_IS_BT_ADVERTISER_PRIORITY_SET(val) \
    ((val) & WMI_PDEV_BT_ADVERTISER_PRIORITY_BIT)
#define WMI_PDEV_IS_BT_SCANNER_PRIORITY_SET(val) \
    ((val) & WMI_PDEV_BT_SCANNER_PRIORITY_BIT)
#define WMI_PDEV_IS_BT_BLE_CONNECTION_PRIORITY_SET(val) \
    ((val) & WMI_PDEV_BT_BLE_CONNECTION_PRIORITY_BIT)

#define WMI_PDEV_PTA_THIRD_RADIO_LOW_PRIORITY_BIT  (1 << 16)
#define WMI_PDEV_PTA_THIRD_RADIO_HIGH_PRIORITY_BIT (1 << 17)
#define WMI_PDEV_IS_PTA_THIRD_RADIO_LOW_PRIORITY_SET(val) \
    ((val) & WMI_PDEV_PTA_THIRD_RADIO_LOW_PRIORITY_BIT)
#define WMI_PDEV_IS_PTA_THIRD_RADIO_HIGH_PRIORITY_SET(val) \
    ((val) & WMI_PDEV_PTA_THIRD_RADIO_HIGH_PRIORITY_BIT)

typedef enum wmi_coex_algo_type  {
    WMI_COEX_ALGO_UNCONS_FREERUN  = 0,
    WMI_COEX_ALGO_FREERUN         = 1,
    WMI_COEX_ALGO_OCS             = 2,
} WMI_COEX_ALGO_TYPE;

typedef enum wmi_coex_config_type {
    WMI_COEX_CONFIG_PAGE_P2P_TDM        =  1, /* config interval (arg1 BT, arg2 WLAN) for P2P + PAGE */
    WMI_COEX_CONFIG_PAGE_STA_TDM        =  2, /* config interval (arg1 BT, arg2 WLAN) for STA + PAGE */
    WMI_COEX_CONFIG_PAGE_SAP_TDM        =  3, /* config interval (arg1 BT, arg2 WLAN) for SAP + PAGE */
    WMI_COEX_CONFIG_DURING_WLAN_CONN    =  4, /* config during WLAN connection */
    WMI_COEX_CONFIG_BTC_ENABLE          =  5, /* config to enable/disable BTC */
    WMI_COEX_CONFIG_COEX_DBG            =  6, /* config of COEX debug setting */
    WMI_COEX_CONFIG_PAGE_P2P_STA_TDM    =  7, /* config interval (ms units) (arg1 BT, arg2 WLAN) for P2P + STA + PAGE */
    WMI_COEX_CONFIG_INQUIRY_P2P_TDM     =  8, /* config interval (ms units) (arg1 BT, arg2 WLAN) for P2P + INQUIRY */
    WMI_COEX_CONFIG_INQUIRY_STA_TDM     =  9, /* config interval (ms units) (arg1 BT, arg2 WLAN) for STA + INQUIRY */
    WMI_COEX_CONFIG_INQUIRY_SAP_TDM     = 10, /* config interval (ms units) (arg1 BT, arg2 WLAN) for SAP + INQUIRY */
    WMI_COEX_CONFIG_INQUIRY_P2P_STA_TDM = 11, /* config interval (ms units) (arg1 BT, arg2 WLAN) for P2P + STA + INQUIRY */
    WMI_COEX_CONFIG_TX_POWER            = 12, /* config wlan total tx power when bt coex (arg1 is wlan_tx_power_limit, in 0.5 dBm units) */
    WMI_COEX_CONFIG_PTA_CONFIG          = 13, /* config  whether enable PTA and GPIO number (arg1 is pta_enable, arg2 is GPIO number used as /BT_ACTIVE/BT_PRIORITY/WLAN_DENY,8 bit for each) */
    WMI_COEX_CONFIG_AP_TDM              = 14, /* config interval (arg1 duty cycle in ms, arg2 WLAN duration in ms) for AP */
    WMI_COEX_CONFIG_WLAN_SCAN_PRIORITY  = 15, /* config to set WLAN priority during Off Channel Scan */
    WMI_COEX_CONFIG_WLAN_PKT_PRIORITY   = 16, /* config to set WLAN priority for BE/BK/VO/VI/Beacon/Management frame */
    WMI_COEX_CONFIG_PTA_INTERFACE       = 17, /* config PTA interface,
                                                 arg1 PTA num,
                                                 arg2 mode (2-wire/3-wire/PTA),
                                                 arg3 first slot time in microsec,
                                                 arg4 BT priority time in microsec,
                                                 arg5 PTA algorithm (WMI_COEX_ALGO_TYPE),
                                                 arg6 PTA priority */
    WMI_COEX_CONFIG_BTC_DUTYCYCLE       = 18, /* config interval (ms units) (arg1 WLAN pause duration, arg2 WLAN unpause duration) for WLAN UL + BT Rx */
    WMI_COEX_CONFIG_HANDOVER_RSSI       = 19, /* config to set WLAN RSSI (dBm units) at which device switches from Hybrid to TDD coex mode */
    WMI_COEX_CONFIG_PTA_BT_INFO         = 20, /* get BT information,
                                                 arg1 BT info type: WMI_COEX_PTA_BT_INFO_TYPE_T, scan/advertise/connection info,
                                                 arg2-arg5: BT information parameters */
    WMI_COEX_CONFIG_SINK_WLAN_TDM       = 21, /* config interval (ms units) (arg1 BT, arg2 WLAN) for A2DP SINK + WLAN */
    WMI_COEX_CONFIG_COEX_ENABLE_MCC_TDM = 22, /* config disable/enable COEX TDM for MCC */
    WMI_COEX_CONFIG_LOWRSSI_A2DPOPP_TDM = 23, /* config interval (ms units) (arg1 BT, arg2 WLAN) for STA + A2dp + OPP + LOWRSSI */
    WMI_COEX_CONFIG_BTC_MODE            = 24, /* config BTC mode, arg1 mode: 0 TDD/1 FDD/2 Hybrid*/
    WMI_COEX_CONFIG_ANTENNA_ISOLATION   = 25, /* config isolation between BT and WLAN chains
                                               * The arguments are interpreted differently
                                               * depending on whether the target supports
                                               * WMI_SERVICE_COEX_SUPPORT_UNEQUAL_ISOLATION
                                               * If (not COEX_SUPPORT_UNEQUAL_ISOLATION) or arg2 == 0:
                                               *     arg1 => isolation between BT and WLAN chains,
                                               *             dB units,
                                               *             same isolation for all chains
                                               * Else:
                                               *     arg1 bits  7:0  - chain 0 isolation, in dB
                                               *     arg1 bits 15:8  - chain 1 isolation, in dB
                                               *     arg1 bits 23:16 - chain 2 isolation, in dB
                                               *     arg1 bits 31:24 - chain 3 isolation, in dB
                                               * arg2 - 0 => Equal isolation b/w BT and each WLAN chain (default)
                                               *        1 => Different isolation b/w BT and each WLAN chain
                                               */
    WMI_COEX_CONFIG_BT_LOW_RSSI_THRESHOLD = 26, /* config BT low RSSI threshold (dBm units) */
    WMI_COEX_CONFIG_BT_INTERFERENCE_LEVEL = 27, /* config BT interference level (dBm units)
                                                 arg1 low - lower limit
                                                 arg2 low - upper limit
                                                 arg3 medium - lower limit
                                                 arg4 medium - upper limit
                                                 arg5 high - lower limit
                                                 arg6 high - upper limit */
    WMI_COEX_CONFIG_WLAN_OVER_ZBLOW        = 28, /* config to boost WiFi traffic over 15.4 Low prio traffic */
    WMI_COEX_CONFIG_WLAN_MGMT_OVER_BT_A2DP = 29, /* config to raise WLAN priority higher than BT in coex scenario of SAP + BT or 15.4 */
    WMI_COEX_CONFIG_WLAN_CONN_OVER_LE      = 30, /* config to elevate Wifi priority over BLE during WLAN association */
    WMI_COEX_CONFIG_LE_OVER_WLAN_TRAFFIC   = 31, /* config to elevate BLE traffic over WiFi traffic */
    WMI_COEX_CONFIG_THREE_WAY_COEX_RESET   = 32, /* config to reset the weights to default  */
    /* WMI_COEX_CONFIG_THREE_WAY_DELAY_PARA
     * config to T_PRIO T_DELAY parameter for each case
     *   arg1 - wlan/bt state
     *       0: beacon tx
     *       1: wlan connecting
     *       2: wlan in dhcp
     *       3: a2dp critical
     *       4: eSCO
     *   arg2 - t_prio for low priority traffic (microsecond units)
     *   arg3 - t_delay for low priority traffic (microsecond units)
     *   arg4 - t_prio for high priority traffic (microsecond units)
     *   arg5 - t_delay for high priority traffic (microsecond units)
     */
    WMI_COEX_CONFIG_THREE_WAY_DELAY_PARA   = 33,
    /* WMI_COEX_CONFIG_THREE_WAY_COEX_START
     * config to set coex parameters from WLAN host to adjust priorities
     * among wlan/bt/zb
     * arg1 - priority level 1, the serialized coex scenorio ID will be put here
     * arg2 - priority level 2, same parameters rules as arg1
     * arg3 - priority level 3, same parameters rules as arg1
     * arg4 - priority level 4, same parameters rules as arg1
     */
    WMI_COEX_CONFIG_THREE_WAY_COEX_START   = 34,
    /* WMI_COEX_CONFIG_MPTA_HELPER_ENABLE
     * config to enable(1)/disable(0) mpta-helper function
     */
    WMI_COEX_CONFIG_MPTA_HELPER_ENABLE     = 35,
    /* WMI_COEX_CONFIG_MPTA_HELPER_ZIGBEE_STATE
     * config zigbee state
     * arg1: zigbee state
     *       (idle form-network wait-join join-network network-up HMI)
     */
    WMI_COEX_CONFIG_MPTA_HELPER_ZIGBEE_STATE = 36,
    /* WMI_COEX_CONFIG_MPTA_HELPER_INT_OCS_PARAMS
     * config ocs wlan/nonwlan params after MPTA interrupt fired
     * arg1: wlan duration (ms units) in Shape-OCS
     * arg2: nonwlan duration (ms units) in Shape-OCS
     */
    WMI_COEX_CONFIG_MPTA_HELPER_INT_OCS_PARAMS = 37,
    /* WMI_COEX_CONFIG_MPTA_HELPER_MON_OCS_PARAMS
     * config ocs wlan/nonwlan params during monitor period after
     * interrupt period finished
     * arg1: wlan duration (ms units) in Shape-OCS
     * arg2: nonwlan duration (ms units) in Shape-OCS
     */
    WMI_COEX_CONFIG_MPTA_HELPER_MON_OCS_PARAMS   = 38,
    /* WMI_COEX_CONFIG_MPTA_HELPER_INT_MON_DURATION
     * config ocs duration in interrupt period and monitor period
     * arg1: duration (ms units) in interrupt period
     * arg2: duration (ms units) in monitor period
     */
    WMI_COEX_CONFIG_MPTA_HELPER_INT_MON_DURATION = 39,
    /* WMI_COEX_CONFIG_MPTA_HELPER_ZIGBEE_CHANNEL
     * config zigbee channel 11 - 26
     */
    WMI_COEX_CONFIG_MPTA_HELPER_ZIGBEE_CHANNEL   = 40,
    /* WMI_COEX_CONFIG_MPTA_HELPER_WLAN_MUTE_DURATION
     * config msw mute duration (ms units) after MPTA interrupt fired
     */
    WMI_COEX_CONFIG_MPTA_HELPER_WLAN_MUTE_DURATION   = 41,
    /* WMI_COEX_CONFIG_BT_SCO_ALLOW_WLAN_2G_SCAN
     * allow WLAN scan on 2.4G channel when BT SCO connectivity is alive
     */
    WMI_COEX_CONFIG_BT_SCO_ALLOW_WLAN_2G_SCAN   = 42,
    /* WMI_COEX_CONFIG_ENABLE_2ND_HARMONIC_WAR
     * config to enable(1)/disable(0) WAR of BT 2nd harmonic issue function
     */
    WMI_COEX_CONFIG_ENABLE_2ND_HARMONIC_WAR     = 43,
    /* WMI_COEX_CONFIG_BTCOEX_SEPARATE_CHAIN_MODE
     * config BTC separate chain mode or shared mode
     */
    WMI_COEX_CONFIG_BTCOEX_SEPARATE_CHAIN_MODE  = 44,
    /* WMI_COEX_CONFIG_ENABLE_TPUT_SHAPING
     * enable WLAN throughput shaping while BT scanning
     */
    WMI_COEX_CONFIG_ENABLE_TPUT_SHAPING = 45,
    /* WMI_COEX_CONFIG_ENABLE_TXBF
     * enable WLAN tx beamforming during coex case
     */
    WMI_COEX_CONFIG_ENABLE_TXBF = 46,
    /* WMI_COEX_CONFIG_FORCED_ALGO
     * config to select coex algorithm
     * arg1: select fixed coex algorithm
     */
    WMI_COEX_CONFIG_FORCED_ALGO = 47,
    /* WMI_COEX_CONFIG_LE_SCAN_POLICY
     * BLE scan Coex policy hint
     * 0 to place more emphasis on BLE Scan results
     * 1 to place more emphasis on WLAN performance
     */
    WMI_COEX_CONFIG_LE_SCAN_POLICY = 48,
} WMI_COEX_CONFIG_TYPE;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 config_type; /* wmi_coex_config_type enum */
    A_UINT32 config_arg1;
    A_UINT32 config_arg2;
    A_UINT32 config_arg3;
    A_UINT32 config_arg4;
    A_UINT32 config_arg5;
    A_UINT32 config_arg6;
} WMI_COEX_CONFIG_CMD_fixed_param;

typedef enum wmi_coex_dbam_mode_type {
    WMI_COEX_DBAM_DISABLE = 0,
    WMI_COEX_DBAM_ENABLE = 1,
    WMI_COEX_DBAM_FORCED = 2,
} WMI_COEX_DBAM_MODE_TYPE;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 dbam_mode; /* wmi_coex_dbam_mode_type enum */
} wmi_coex_dbam_cmd_fixed_param;

/**
 * Host get current TAS buffer from FW or set last TAS buffer to FW
 */
typedef enum wmi_tas_power_history_cmd_type {
    WMI_TAS_POWER_HISTORY_CMD_GET = 0, /* before WLAN off, host trigger this cmd to get power history */
    WMI_TAS_POWER_HISTORY_CMD_SET = 1, /* after WLAN reboot, host trigger this cmd to set power history of last life cycle */
} WMI_TAS_POWER_HISTORY_CMD_TYPE;

typedef struct {
    A_UINT32    tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tas_power_history_cmd_fixed_param */
    A_UINT32    sub_type;       /* refer to WMI_TAS_POWER_HISTORY_TYPE */
    A_UINT32    time_diff;      /* time of wlan on - time of wlan off after wlan reboot. unit: millisecond*/
} wmi_tas_power_history_cmd_fixed_param;

/**
 * This command is sent from WLAN host driver to firmware to
 * request firmware to enable/disable channel avoidance report
 * to host.
 *
 */
enum {
    WMI_MWSCOEX_CHAN_AVD_RPT_DISALLOW = 0,
    WMI_MWSCOEX_CHAN_AVD_RPT_ALLOW = 1
};

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_CHAN_AVOID_RPT_ALLOW_CMD_fixed_param */
    /** Allow/disallow flag - see WMI_MWSCOEX_CHAN_AVD_RPT enum */
    A_UINT32 rpt_allow;
} WMI_CHAN_AVOID_RPT_ALLOW_CMD_fixed_param;

/*
 * Periodic channel stats WMI command structure
 * WMI_SET_PERIODIC_CHANNEL_STATS_CONFIG_CMDID
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_periodic_channel_stats_config_fixed_param */
    /** 1 = enable, 0 = disable */
    A_UINT32 enable;
    /** periodic stats duration (units are milliseconds) */
    A_UINT32 stats_period;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_set_periodic_channel_stats_config_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_wal_power_debug_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
    /* Identify the wlan module */
    A_UINT32 module_id;
    /* Num of elements in the following args[] array */
    A_UINT32 num_args;
/**
 * Following this structure are the TLVs:
 *   A_UINT32 args[];
 **/
} wmi_pdev_wal_power_debug_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_reorder_timeout_val_cmd_fixed_param */
    /**
     * @brief rx_timeout_pri - what rx reorder timeout (ms) to use for the AC
     * @details
     *     Each WMM access category (voice, video, best-effort, background)
     *     will have its own timeout value to dictate how long to wait for
     *     missing rx MPDUs to arrive before releasing subsequent MPDUs that
     *     have already been received.
     *     This parameter specifies the timeout in milliseconds for each
     *     access category.
     *     The array elements are indexed by the WMI_AC enum to identify
     *     which array element corresponds to which AC / traffic type.
     */
    A_UINT32 rx_timeout_pri[WMI_AC_MAX];
} wmi_pdev_set_reorder_timeout_val_cmd_fixed_param;

/**
 * wlan stats shall be understood as per period.
 * Generally, it is reported periodically based on the period specified by host.
 * But if the variation of one stats of compared to the
 * previous notification exceeds a threshold,
 * FW will report the wlan stats immediately.
 * The values of the stats becomes the new reference to compute variations.
 * This threshold can be a global setting or per category.
 * Host can enable/disable the mechanism for any stats per bitmap.
 * TX/RX thresholds (percentage value) are shared across ACs,
 * and TX/RX stats comprisons are processed per AC of each peer.
 * For example, if bit 0 (stand for tx_mpdus) of tx_thresh_bitmap is set to 1,
 * and the detailed tx_mpdus threshold value is set to 10%,
 * suppose tx_mpdus value of BE of peer 0 is 100 in first period,
 * and it reaches 110 during the second period,
 * FW will generate and send out a wlan stats event immediately.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_stats_threshold_cmd_fixed_param */
    /** Indicate if threshold mechanism is enabled or disabled.
     *  It is disabled by default.
     *  Host can enable and disable it dynamically.
     */
    A_UINT32 enable_thresh;
    /** use_thresh_bitmap equals 0 means gbl_thresh is used.
     *  when use_thresh_bitmap equals 1, ignore gbl_thresh and use stats bitmap indicated thresholds.
     */
    A_UINT32 use_thresh_bitmap;
    /** global threshold, valid when use_thresh_bitmap equals 0.
     *  It takes effect for all counters.
     *  If use_thresh_bitmap ==0 && gbl_thresh == 0, disable threshold mechanism.
     */
    A_UINT32 gbl_thresh;
    /** Enable/disable bitmap for threshold mechanism of CCA stats */
    A_UINT32 cca_thresh_enable_bitmap;
    /** Enable/disable bitmap for threshold mechanism of signal stats */
    A_UINT32 signal_thresh_enable_bitmap;
    /** Enable/disable bitmap for threshold mechanism of TX stats */
    A_UINT32 tx_thresh_enable_bitmap;
    /** Enable/disable bitmap for threshold mechanism of RX stats */
    A_UINT32 rx_thresh_enable_bitmap;
    /* This TLV is followed by TLVs below:
     *    wmi_chan_cca_stats_thresh     cca_thresh;
     *    wmi_peer_signal_stats_thresh  signal_thresh;
     *    wmi_tx_stats_thresh           tx_thresh;
     *    wmi_rx_stats_thresh           rx_thresh;
     */
} wmi_pdev_set_stats_threshold_cmd_fixed_param;

typedef enum {
    WMI_REQUEST_WLAN_TX_STAT     = 0x01,
    WMI_REQUEST_WLAN_RX_STAT     = 0x02,
    WMI_REQUEST_WLAN_CCA_STAT    = 0x04,
    WMI_REQUEST_WLAN_SIGNAL_STAT = 0x08,
} wmi_wlan_stats_id;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_wlan_stats_cmd_fixed_param */
    wmi_wlan_stats_id stats_id;
} wmi_request_wlan_stats_cmd_fixed_param;

typedef enum {
    WMI_REQUEST_ONE_PEER_STATS_INFO = 0x01, /* request stats of one specified peer */
    WMI_REQUEST_VDEV_ALL_PEER_STATS_INFO = 0x02, /* request stats of all peers belong to specified VDEV */
} wmi_peer_stats_info_request_type;

/** It is required to issue WMI_PDEV_PARAM_PEER_STATS_INFO_ENABLE
 *  (with a non-zero value) before issuing the first REQUEST_PEER_STATS_INFO.
 */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_request_peer_stats_info_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** request_type to indicate if only stats of
     *  one peer or all peers of the VDEV are requested,
     *  see wmi_peer_stats_info_request_type.
     */
    A_UINT32 request_type;
    /** VDEV identifier */
    A_UINT32 vdev_id;
    /** this peer_macaddr is only used if request_type == ONE_PEER_STATS_INFO */
    wmi_mac_addr peer_macaddr;
    /** flag to indicate if FW needs to reset requested peers stats */
    A_UINT32 reset_after_request;
} wmi_request_peer_stats_info_cmd_fixed_param;

typedef enum {
    /*
     * Multiple stats type can be requested together, so each value
     * within this enum represents a bit position within a stats bitmap.
     */
    /* bit 0 is currently unused / reserved */
    WMI_REQUEST_CTRL_PATH_PDEV_TX_STAT      = 1,
    WMI_REQUEST_CTRL_PATH_VDEV_EXTD_STAT    = 2,
    WMI_REQUEST_CTRL_PATH_MEM_STAT          = 3,
    WMI_REQUEST_CTRL_PATH_TWT_STAT          = 4,
    WMI_REQUEST_CTRL_PATH_CALIBRATION_STAT  = 5,
    WMI_REQUEST_CTRL_PATH_DFS_CHANNEL_STAT  = 6,
    WMI_REQUEST_CTRL_PATH_AWGN_STAT         = 7,
    WMI_REQUEST_CTRL_PATH_BTCOEX_STAT       = 8,
    WMI_REQUEST_CTRL_PATH_BMISS_STAT        = 9,
    WMI_REQUEST_CTRL_PATH_ODD_ADDR_READ     = 10,
    WMI_REQUEST_CTRL_PATH_AFC_STAT          = 11,
    WMI_REQUEST_CTRL_PATH_PMLO_STAT         = 12,
    WMI_REQUEST_CTRL_PATH_CFR_STAT          = 13,
    WMI_REQUEST_CTRL_PATH_T2LM_STAT         = 14,
    WMI_REQUEST_CTRL_PATH_BLANKING_STAT     = 15,
    WMI_REQUEST_CTRL_PATH_PEER_STAT         = 16,
} wmi_ctrl_path_stats_id;

typedef enum {
    /* bit 0 is currently unused / reserved */
    WMI_HALPHY_CTRL_PATH_PDEV_TX_STAT = 1,
} wmi_halphy_ctrl_path_stats_id;

typedef enum {
    /*
     * The following stats actions are mutually exclusive.
     * A single stats request message can only specify one action.
     */
    WMI_REQUEST_CTRL_PATH_STAT_GET              = 1,
    WMI_REQUEST_CTRL_PATH_STAT_RESET            = 2,
    WMI_REQUEST_CTRL_PATH_STAT_START            = 3,
    WMI_REQUEST_CTRL_PATH_STAT_STOP             = 4,
    WMI_REQUEST_CTRL_PATH_STAT_PERIODIC_PUBLISH = 5,
} wmi_ctrl_path_stats_action;

typedef enum {
    WMI_HALPHY_CTRL_PATH_SU_STATS = 0,
    WMI_HALPHY_CTRL_PATH_SUTXBF_STATS,
    WMI_HALPHY_CTRL_PATH_MU_STATS,
    WMI_HALPHY_CTRL_PATH_MUTXBF_STATS,
} wmi_halphy_ctrl_path_subid;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_request_ctrl_path_stats_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Bitmask showing which of stats IDs 0-31 have been requested.
     *  These stats ids are defined in enum wmi_ctrl_path_stats_id.
     */
    A_UINT32 stats_id_mask;
    /** request ID to store the cookies in wifistats */
    A_UINT32 request_id;
    /** action
     *  get/reset/start/stop based on stats id
     *  defined as a part of wmi_ctrl_path_stats_action
     **/
    A_UINT32 action; /* refer to wmi_ctrl_path_stats_action */

    /**
     * The stat_periodicity field is relevant only when action is set to
     * WMI_REQUEST_CTRL_PATH_STAT_PERIODIC_PUBLISH.
     * The units of this periodicity are milliseconds.
     * Periodically send WMI ctrl-path stats event with the specified stats
     * periodicity for the stats whose IDs are set in stats_id_mask.
     * Periodic WMI ctrl-path stats events are enabled by setting value > 0,
     * Previously onngoing periodic WMI ctrl-path stats events become
     * disabled when action is WMI_REQUEST_CTRL_PATH_STAT_PERIODIC_PUBLISH
     * and stat_periodicity = 0.
     */
    A_UINT32 stat_periodicity;

    /** The below TLV arrays optionally follow this fixed_param TLV structure:
     *  1.  A_UINT32 pdev_ids[];
     *      If this array is present and non-zero length, stats should only
     *      be provided from the pdevs identified in the array.
     *  2.  A_UINT32 vdev_ids[];
     *      If this array is present and non-zero length, stats should only
     *      be provided from the vdevs identified in the array.
     *  3.  wmi_mac_addr peer_macaddr[];
     *      If this array is present and non-zero length, stats should only
     *      be provided from the peers with the MAC addresses specified
     *      in the array.
     */
} wmi_request_ctrl_path_stats_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_request_halphy_ctrl_path_stats_cmd_fixed_param */
    A_UINT32 tlv_header;

    /** Bitmask showing which of stats IDs 0-31 have been requested.
     *  These stats ids are defined in enum wmi_halphy_ctrl_path_stats_id.
     */
    A_UINT32 stats_id_mask;
    /** process id requested */
    A_UINT32 request_id;
    /** action
     *  get/reset based on stats id
     *  defined as a part of wmi_ctrl_path_stats_action
     **/
    A_UINT32 action; /* refer to wmi_ctrl_path_stats_action */

    /** Request Halphy subid stats
     * According to the requested stats_id_mask this halphy_subid varies
     * For stats_id = 1, the possible values could be enum
     * wmi_halphy_ctrl_path_halphyid
     */
    A_UINT32 halphy_subid;

    /** The below TLV arrays optionally follow this fixed_param TLV structure:
     *  1.  A_UINT32 pdev_ids[];
     *      If this array is present and non-zero length, stats should only
     *      be provided from the pdevs identified in the array.
     *  2.  A_UINT32 vdev_ids[];
     *      If this array is present and non-zero length, stats should only
     *      be provided from the vdevs identified in the array.
     *  3.  wmi_mac_addr peer_macaddr[];
     *      If this array is present and non-zero length, stats should only
     *      be provided from the peers with the MAC addresses specified
     *      in the array.
     */
} wmi_request_halphy_ctrl_path_stats_cmd_fixed_param;

typedef enum {
    WMI_REQUEST_ONE_RADIO_CHAN_STATS = 0x01, /* request stats of one specified channel */
    WMI_REQUEST_ALL_RADIO_CHAN_STATS = 0x02, /* request stats of all channels */
} wmi_radio_chan_stats_request_type;

/** It is required to issue WMI_PDEV_PARAM_RADIO_CHAN_STATS_ENABLE
 *  (with a non-zero value) before issuing the first REQUEST_RADIO_CHAN_STATS.
 */
typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_request_radio_chan_stats_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** request_type to indicate if only stats of
     *  one channel or all channels are requested,
     *  see wmi_radio_chan_stats_request_type.
     */
    A_UINT32 request_type;
    /** Frequency of channel whose stats is requested,
     *  only used when request_type == WMI_REQUEST_ONE_RADIO_CHAN_STATS
     */
    A_UINT32 chan_mhz;
    /** flag to indicate if FW needs to reset requested stats of specified channel/channels */
    A_UINT32 reset_after_request;
} wmi_request_radio_chan_stats_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_rmc_set_leader_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* Leader's mac address */
    wmi_mac_addr leader_mac_addr;
} wmi_rmc_set_leader_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_rmc_manual_leader_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /*  0: success
     *  1: selected leader not found in network, able to find using auto selection
     * -1: error
     * non zero value should be return to userspace in case of failure */
    A_INT32 status;
    /* bssid of new leader */
    wmi_mac_addr leader_mac_addr;
} wmi_rmc_manual_leader_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_audio_sync_start_event_fixed_param
     */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* periodicity:
     * How frequently (in msec) FW wants host to capture the Q_TIMER.
     * periodicity = 0 indicates to the host to stop capturing the QTIMERs.
     */
    A_UINT32 periodicity;
    /* No of Qtimer captures FW wants */
    A_UINT32 reads_needed;
    /* Lower 32 bits of the mac timer. Value is valid only if periodicity = 0 */
    A_UINT32 mac_timer_l32;
    /* Upper 32 bits of the mac timer. Value is valid only if periodicity = 0 */
    A_UINT32 mac_timer_u32;
    /* Lower 32 bits of the Qtimer. Value is valid only if periodicity = 0 */
    A_UINT32 qtimer_l32;
    /* Upper 32 bits of the Qtimer. Value is valid only if periodicity = 0 */
    A_UINT32 qtimer_u32;
} wmi_audio_sync_start_stop_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_audio_sync_q_mac_relation_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* Lower 32 bits of the offset between Qmaster and Qslave */
    A_UINT32 offset_l32;
    /* Upper 32 bits of the offset between Qmaster and Qslave */
    A_UINT32 offset_u32;
} wmi_audio_sync_q_master_slave_offset_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_audio_sync_q_mac_relation_event_fixed_param */
    A_UINT32 tlv_header;
    /* Lower 32 bits of the Qtimer of master */
    A_UINT32 qmaster_l32;
    /* Upper 32 bits of the Qtimer of master */
    A_UINT32 qmaster_u32;
    /* Lower 32 bits of the Qtimer of slave*/
    A_UINT32 qslave_l32;
    /* Upper 32 bits of the Qtimer of slave*/
    A_UINT32 qslave_u32;
} wmi_audio_sync_q_master_slave_times;

/** Set Preferred Channel List  **/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_pcl_cmd_fixed_param */
    /** vdev_id */
    A_UINT32 vdev_id;
/**
 * TLV (tag length value) parameters follow the wmi_vdev_set_pcl_cmd
 * structure. The TLV's are:
 *
 *     A_UINT32 channel_weight[];
 *         values defined by enum 'wmi_pcl_chan_weight'
 *         channel order & size will be as per the list provided in WMI_SCAN_CHAN_LIST_CMDID
 **/
} wmi_vdev_set_pcl_cmd_fixed_param;

/** command type for WMI_PDEV_TBTT_OFFSET_SYNC_CMDID */
enum pdev_tbtt_offset_cmd_type
{
    WMI_PDEV_GET_TBTT_OFFSET,
    WMI_PDEV_SET_TBTT_OFFSET,
};

/** Per neighbour TBTT offset information */
typedef struct
{
    /** TLV tag and len, tag equals WMITLV_TAG_STRUC_wmi_pdev_tbtt_offset_info */
    A_UINT32 tlv_header;
    /* neighbour bss mac address */
    wmi_mac_addr bss_mac;
    /* neighbour bss beacon interval in TU */
    A_UINT32 beacon_intval;
    /* neighbour bss operating class as defined in Annex E, IEEE80211 standard */
    A_UINT32 opclass;
    /* neighbour bss operating channel index */
    A_UINT32 chan_idx;
    /* neighbour bss next QTIME TBTT high 32 bit value */
    A_UINT32 next_qtime_tbtt_high;
    /* neighbour bss next QTIME TBTT low 32 bit value */
    A_UINT32 next_qtime_tbtt_low;
} wmi_pdev_rnr_bss_tbtt_info;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_tbtt_offset_sync_cmd_fixed_param */
    A_UINT32 tlv_header;
    /*
     * PDEV identifier. Value WMI_PDEV_ID_SOC implies applicable to all pdevs
     * on SoC else applicable only to specified pdev
     */
    A_UINT32 pdev_id;
    /* command_type from enum pdev_tbtt_offset_cmd_type */
    A_UINT32 cmd_type;
    /*
     * Following this structure is the TLV:
     * struct wmi_pdev_rnr_bss_tbtt_info rnr_tbtt_info[num_rnr_tbtt_info];
     */
} wmi_pdev_tbtt_offset_sync_cmd_fixed_param;

typedef enum {
    WLAN_2G_CAPABILITY = 0x1,
    WLAN_5G_CAPABILITY = 0x2,
} WLAN_BAND_CAPABILITY;

typedef enum wmi_hw_mode_config_type {
    WMI_HW_MODE_SINGLE      = 0, /* Only one PHY is active. */
    WMI_HW_MODE_DBS         = 1, /* Both PHYs are active in different bands, PHYB in 2G and PHYA in 5G. */
    WMI_HW_MODE_SBS_PASSIVE = 2, /* Both PHYs are in passive mode (only rx) in same band; no tx allowed. */
    WMI_HW_MODE_SBS         = 3, /* Both PHYs are active in the same band.
                                  * Support for both PHYs within one band is planned for 5G only
                                  * (as indicated in WMI_MAC_PHY_CAPABILITIES),
                                  * but could be extended to other bands in the future.
                                  * The separation of the band between the two PHYs needs to be communicated separately.
                                  */
    WMI_HW_MODE_DBS_SBS     = 4, /* 3 PHYs, with 2 on the same band doing SBS
                                  * as in WMI_HW_MODE_SBS, and 3rd on the other band
                                  */
    WMI_HW_MODE_DBS_OR_SBS  = 5, /* One PHY is on 5G and the other PHY can be in 2G or 5G. */
    WMI_HW_MODE_DBS_2G_5G   = 6, /* Both PHYs are active in different bands. PhyA 2G and PhyB 5G */
    WMI_HW_MODE_2G_PHYB     = 7, /* Only PhyB 2G active */
    WMI_HW_MODE_EMLSR       = 8, /* Both PHYs are active in listen mode in 1x1
                                  * and Tx/Rx trigger on any PHY will switch
                                  * from 1x1 to 2x2 on that Phy
                                  */
    WMI_HW_MODE_AUX_EMLSR_SINGLE = 9, /* PHYA0 and AUX are active in listen mode
                                       * in 1x1 and Tx/Rx trigger on any.
                                       * PHY will switch from 1x1 to 2x2
                                       * on that Phy.
                                       */
    WMI_HW_MODE_AUX_EMLSR_SPLIT = 10, /* PHYA1 and AUX are active in listen mode
                                       * in 1x1 and Tx/Rx trigger on any.
                                       * PHY will switch from 1x1 to 2x2
                                       * on that Phy.
                                       */
} WMI_HW_MODE_CONFIG_TYPE;

/*
 * Per HW mode MLO capability flags
 * use bits 31:27 of A_UINT32 hw_mode_config_type for Per HW mode MLO
 * capability flags...
 * WMI_MLO_CAP_FLAG_NONE:           Do not support MLO for the specific HW mode
 * WMI_MLO_CAP_FLAG_NON_STR_IN_DBS: Support STR MLO when DBS for the specific
 *                                  HW mode
 * WMI_MLO_CAP_FLAG_STR_IN_DBS:     Support Non-STR MLO when DBS for the
 *                                  specific HW mode
 * WMI_MLO_CAP_FLAG_NON_STR_IN_SBS: Support STR MLO when SBS for the specific
 *                                  HW mode
 * WMI_MLO_CAP_FLAG_STR_IN_SBS:     Support Non-STR MLO when SBS for the
 *                                  specific HW mode
 * WMI_MLO_CAP_FLAG_STR:            Support STR for the specific HW mode.
 *
 * WMI_MLO_CAP_FLAG_EMLSR:          Support eMLSR mode.
 */
#define WMI_MLO_CAP_FLAG_NONE           0x00
#define WMI_MLO_CAP_FLAG_NON_STR_IN_DBS 0x01
#define WMI_MLO_CAP_FLAG_STR_IN_DBS     0x02
#define WMI_MLO_CAP_FLAG_NON_STR_IN_SBS 0x04
#define WMI_MLO_CAP_FLAG_STR_IN_SBS     0x08
#define WMI_MLO_CAP_FLAG_STR            0x10
#define WMI_MLO_CAP_FLAG_EMLSR          0x20

/*
 * hw_mode_config_type sub-fields for chips that support 802.11BE/MLO:
 * bits 26:0  - hw_mode_config
 * bits 31:27 - per HW mode MLO capability flags
 */
#define WMI_BECAP_PHY_GET_HW_MODE_CFG(hw_mode_config_type) WMI_GET_BITS(hw_mode_config_type, 0, 27)
#define WMI_BECAP_PHY_SET_HW_MODE_CFG(hw_mode_config_type, value) WMI_SET_BITS(hw_mode_config_type, 0, 27, value)
#define WMI_BECAP_PHY_GET_MLO_CAP(hw_mode_config_type) WMI_GET_BITS(hw_mode_config_type, 27, 5)
#define WMI_BECAP_PHY_SET_MLO_CAP(hw_mode_config_type, value) WMI_SET_BITS(hw_mode_config_type, 27, 5, value)

/*
 * pdev_id sub-fields for chips that support 802.11BE/MLO
 * as part of WMI_MAC_PHY_CAPABILITIES and WMI_MAC_PHY_CAPABILITIES_EXT:
 * bits 16:0  - pdev_id
 * bits 32:16 - Unique link id across SOCs, got as part of QMI handshake.
 */
#define WMI_PHY_GET_PDEV_ID(pdev_id) WMI_GET_BITS(pdev_id, 0, 16)
#define WMI_PHY_SET_PDEV_ID(pdev_id, value) WMI_SET_BITS(pdev_id, 0, 16, value)
#define WMI_PHY_GET_HW_LINK_ID(pdev_id) WMI_GET_BITS(pdev_id, 16, 16)
#define WMI_PHY_SET_HW_LINK_ID(pdev_id, value) WMI_SET_BITS(pdev_id, 16, 16, value)

#define WMI_SUPPORT_11B_GET(flags) WMI_GET_BITS(flags, 0, 1)
#define WMI_SUPPORT_11B_SET(flags, value) WMI_SET_BITS(flags, 0, 1, value)

#define WMI_SUPPORT_11G_GET(flags) WMI_GET_BITS(flags, 1, 1)
#define WMI_SUPPORT_11G_SET(flags, value) WMI_SET_BITS(flags, 1, 1, value)

#define WMI_SUPPORT_11A_GET(flags) WMI_GET_BITS(flags, 2, 1)
#define WMI_SUPPORT_11A_SET(flags, value) WMI_SET_BITS(flags, 2, 1, value)

#define WMI_SUPPORT_11N_GET(flags) WMI_GET_BITS(flags, 3, 1)
#define WMI_SUPPORT_11N_SET(flags, value) WMI_SET_BITS(flags, 3, 1, value)

#define WMI_SUPPORT_11AC_GET(flags) WMI_GET_BITS(flags, 4, 1)
#define WMI_SUPPORT_11AC_SET(flags, value) WMI_SET_BITS(flags, 4, 1, value)

#define WMI_SUPPORT_11AX_GET(flags) WMI_GET_BITS(flags, 5, 1)
#define WMI_SUPPORT_11AX_SET(flags, value) WMI_SET_BITS(flags, 5, 1, value)

#define WMI_SUPPORT_11BE_GET(flags) WMI_GET_BITS(flags, 6, 1)
#define WMI_SUPPORT_11BE_SET(flags, value) WMI_SET_BITS(flags, 6, 1, value)

#define WMI_MAX_MUBFEE_GET(flags) WMI_GET_BITS(flags, 28, 4)
#define WMI_MAX_MUBFEE_SET(flags, value) WMI_SET_BITS(flags, 28, 4, value)

/*
 * +-----------------------------+------------------------------------+
 * | Transmitted VHT Capabilities|         NSS Support of STA         |
 * |       Information Field     |    transmitted VHT Capabilites     |
 * +---------------+-------------+------+------+------+------+--------+
 * |   Supported   |   Extended  |      |      |      |      |        |
 * |   Channel     |   NSS BW    |      |      |      |      |        |
 * |   WidthSet    |   Support   |20 Mhz|40 Mhz|80 Mhz|160Mhz|80+80Mhz|
 * +---------------+-------------+------+------+------+------+--------+
 * |        0      |      0      |  1   |  1   |  1   |      |        |
 * +---------------+-------------+------+------+------+------+--------+
 * |        0      |      1      |  1   |  1   |  1   | 1/2  |        |
 * +---------------+-------------+------+------+------+------+--------+
 * |        0      |      2      |  1   |  1   |  1   | 1/2  |  1/2   |
 * +---------------+-------------+------+------+------+------+--------+
 * |        0      |      3      |  1   |  1   |  1   | 3/4  |  3/4   |
 * +---------------+-------------+------+------+------+------+--------+
 * |        1      |      0      |  1   |  1   |  1   |  1   |        |
 * +---------------+-------------+------+------+------+------+--------+
 * |        1      |      1      |  1   |  1   |  1   |  1   |  1/2   |
 * +---------------+-------------+------+------+------+------+--------+
 * |        1      |      2      |  1   |  1   |  1   |  1   |  3/4   |
 * +---------------+-------------+------+------+------+------+--------+
 * |        1      |      3      |  2   |  2   |  2   |  2   |   1    |
 * +---------------+-------------+------+------+------+------+--------+
 * |        2      |      0      |  1   |  1   |  1   |  1   |   1    |
 * +---------------+-------------+------+------+------+------+--------+
 * |        2      |      3      |  2   |  2   |  2   |  1   |   1    |
 * +---------------+-------------+------+------+------+------+--------+
 */

/*
 *  [0]   : WMI_NSS_RATIO_ENABLE_DISABLE_BITPOS
 *  [4:1] : WMI_NSS_RATIO_INFO_BITPOS
 */
#define  WMI_NSS_RATIO_ENABLE_DISABLE_BITPOS        0x0
#define  WMI_NSS_RATIO_INFO_BITPOS                  0x1

/*
 * WMI_NSS_RATIO_ENABLE_DISABLE values:
 * [0] : 0 - WMI_NSS_RATIO_DISABLE
 * [0] : 1 - WMI_NSS_RATIO_ENABLE
 */
#define  WMI_NSS_RATIO_DISABLE                      0x0
#define  WMI_NSS_RATIO_ENABLE                       0x1

/*
 * WMI_NSS_RATIO_INFO values:
 *  [4:1] : 0000 - WMI_NSS_RATIO_1BY2_NSS
 *  [4:1] : 0001 - WMI_NSS_RATIO_3BY4_NSS
 *  [4:1] : 0010 - WMI_NSS_RATIO_1_NSS
 *  [4:1] : 0011 - WMI_NSS_RATIO_2_NSS
 */
#define  WMI_NSS_RATIO_1BY2_NSS                     0x0
#define  WMI_NSS_RATIO_3BY4_NSS                     0x1
#define  WMI_NSS_RATIO_1_NSS                        0x2
#define  WMI_NSS_RATIO_2_NSS                        0x3

#define WMI_NSS_RATIO_ENABLE_DISABLE_SET(param, value) \
    WMI_SET_BITS(param, WMI_NSS_RATIO_ENABLE_DISABLE_BITPOS, 1, value)
#define WMI_NSS_RATIO_ENABLE_DISABLE_GET(dword) \
    WMI_GET_BITS(dword, WMI_NSS_RATIO_ENABLE_DISABLE_BITPOS, 1)

#define WMI_NSS_RATIO_INFO_SET(param, value) \
    WMI_SET_BITS(param, WMI_NSS_RATIO_INFO_BITPOS, 4, value)
#define WMI_NSS_RATIO_INFO_GET(dword) \
    WMI_GET_BITS(dword, WMI_NSS_RATIO_INFO_BITPOS, 4)

/*
 * 11BE EML Capability Set and Get macros
 */
#define WMI_SUPPORT_EMLSR_GET(eml_capability) WMI_GET_BITS(eml_capability, 0, 1)
#define WMI_SUPPORT_EMLSR_SET(eml_capability, value) WMI_SET_BITS(eml_capability, 0, 1, value)

#define WMI_EMLSR_PADDING_DELAY_GET(eml_capability) WMI_GET_BITS(eml_capability, 1, 3)
#define WMI_EMLSR_PADDING_DELAY_SET(eml_capability, value) WMI_SET_BITS(eml_capability, 1, 3, value)

#define WMI_EMLSR_TRANSITION_DELAY_GET(eml_capability) WMI_GET_BITS(eml_capability, 4, 3)
#define WMI_EMLSR_TRANSITION_DELAY_SET(eml_capability, value) WMI_SET_BITS(eml_capability, 4, 3, value)

#define WMI_SUPPORT_EMLMR_GET(eml_capability) WMI_GET_BITS(eml_capability, 7, 1)
#define WMI_SUPPORT_EMLMR_SET(eml_capability, value) WMI_SET_BITS(eml_capability, 7, 1, value)

#define WMI_EMLMR_DELAY_GET(eml_capability) WMI_GET_BITS(eml_capability, 8, 3)
#define WMI_EMLMR_DELAY_SET(eml_capability, value) WMI_SET_BITS(eml_capability, 8, 3, value)

#define WMI_TRANSITION_TIMEOUT_GET(eml_capability) WMI_GET_BITS(eml_capability, 11, 4)
#define WMI_TRANSITION_TIMEOUT_SET(eml_capability, value) WMI_SET_BITS(eml_capability, 11, 4, value)

/*
 * 11BE MLD Capability Set and Get macros
 */
#define WMI_MAX_NUM_SIMULTANEOUS_LINKS_GET(mld_capability) WMI_GET_BITS(mld_capability, 0, 4)
#define WMI_MAX_NUM_SIMULTANEOUS_LINKS_SET(mld_capability, value) WMI_SET_BITS(mld_capability, 0, 4, value)

#define WMI_SUPPORT_SRS_GET(mld_capability) WMI_GET_BITS(mld_capability, 4, 1)
#define WMI_SUPPORT_SRS_SET(mld_capability, value) WMI_SET_BITS(mld_capability, 4, 1, value)

#define WMI_TID_TO_LINK_NEGOTIATION_GET(mld_capability) WMI_GET_BITS(mld_capability, 5, 2)
#define WMI_TID_TO_LINK_NEGOTIATION_SET(mld_capability, value) WMI_SET_BITS(mld_capability, 5, 2, value)

#define WMI_FREQ_SEPERATION_STR_GET(mld_capability) WMI_GET_BITS(mld_capability, 7, 5)
#define WMI_FREQ_SEPERATION_STR_SET(mld_capability, value) WMI_SET_BITS(mld_capability, 7, 5, value)

#define WMI_SUPPORT_AAR_GET(mld_capability) WMI_GET_BITS(mld_capability, 12, 1)
#define WMI_SUPPORT_AAR_SET(mld_capability, value) WMI_SET_BITS(mld_capability, 12, 1, value)

/*
 * 11BE Ext MLD Capability Set and Get macros
 */
#define WMI_EXT_MLD_OPERATION_PARAMETER_UPDATE_SUPP_GET(ext_mld_capability) WMI_GET_BITS(ext_mld_capability, 0, 1)
#define WMI_EXT_MLD_OPERATION_PARAMETER_UPDATE_SUPP_SET(ext_mld_capability, value) WMI_SET_BITS(ext_mld_capability, 0, 1, value)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_MAC_PHY_CAPABILITIES */
    /* hw_mode_id - identify a particular set of HW characteristics, as specified
     * by the subsequent fields. WMI_MAC_PHY_CAPABILITIES element must be mapped
     * to its parent WMI_HW_MODE_CAPABILITIES element using hw_mode_id.
     * No particular ordering of WMI_MAC_PHY_CAPABILITIES elements should be assumed,
     * though in practice the elements may always be ordered by hw_mode_id */
    A_UINT32 hw_mode_id;
    /*
     * pdev_id starts with 1. pdev_id 1 => phy_id 0, pdev_id 2 => phy_id 1
     * hw_link_id: Unique link id across SOCs, got as part of QMI handshake.
     * For legacy chips which do not support MLO, these top bits will always
     * be set to 0, so it won't impact the legacy chips which treat pdev_id
     * as 32 bits.
     */
    union {
        struct {
            A_UINT32 pdev_id:16,
                     hw_link_id:16;
        } wmi_pdev_to_link_map;
        A_UINT32 pdev_id;
    };
    /* phy id. Starts with 0 */
    A_UINT32 phy_id;
    /* supported modulations and number of MU beamformees */
    union {
        struct {
            A_UINT32 supports_11b:1,
                     supports_11g:1,
                     supports_11a:1,
                     supports_11n:1,
                     supports_11ac:1,
                     supports_11ax:1,
                     supports_11be:1,

                     unused: 21,

                     max_mubfee: 4; /* max MU beamformees supported per MAC */
        };
        A_UINT32 supported_flags;
    };
    /* supported bands, enum WLAN_BAND_CAPABILITY */
    A_UINT32 supported_bands;
    /* ampdu density 0 for no restriction, 1 for 1/4 us, 2 for 1/2 us,
     * 3 for 1 us,4 for 2 us, 5 for 4 us, 6 for 8 us,7 for 16 us */
    A_UINT32 ampdu_density;
    /* max bw supported 2G, enum wmi_channel_width */
    A_UINT32 max_bw_supported_2G;
    /* WMI HT Capability, WMI_HT_CAP defines */
    A_UINT32 ht_cap_info_2G;
    /* VHT capability info field of 802.11ac, WMI_VHT_CAP defines */
    A_UINT32 vht_cap_info_2G;
    /* VHT Supported MCS Set field Rx/Tx same
     * The max VHT-MCS for n SS subfield (where n = 1,...,8) is encoded as follows
     * - 0 indicates support for VHT-MCS 0-7 for n spatial streams
     * - 1 indicates support for VHT-MCS 0-8 for n spatial streams
     * - 2 indicates support for VHT-MCS 0-9 for n spatial streams
     * - 3 indicates that n spatial streams is not supported
     * - bit [15:0] Each NSS takes 2 bit.
     * - bit [23:16] Indicates support for VHT-MCS 10 and 11 for
     *   n spatial streams
     *       - bit 16 - for NSS 1
     *       - bit 17 - for NSS 2
     *       - .
     *       - .
     *       - bit 23 - for NSS 8
     *       - bit 24 - indicate whether the VHT-MCS 10-11 specs in bits 23:16
     *                  are valid
     *   Refer to the WMI_VHT_MAX_MCS_EXT_SS_GET/SET macros.
     */
    A_UINT32 vht_supp_mcs_2G;
    /*HE capability info field of 802.11ax, WMI_HE_CAP defines */
    A_UINT32 he_cap_info_2G;
    /* HE Supported MCS Set field Rx/Tx same
     * - 2 bits are used for each NSS chain.Max of 8 NSS can be encoded with
     *     bit 2-0 indicating max HE MCS of NSS1
     *     bit 5-3 indicating max HE MCS of NSS2 and so on
     * - The max HE-MCS for n SS subfield (where n = 1,...,8) in case of
     *     HE BW less than or equal to 80MHZ is encoded as follows
     * - 0 indicates support for VHT-MCS 0-7 for n spatial streams
     * - 1 indicates support for VHT-MCS 0-9 for n spatial streams
     * - 2 indicates support for VHT-MCS 0-11 for n spatial streams
     * - 3 indicates that n spatial streams is not supported
     * - WMI_HE_MAX_MCS_4_SS_MASK macro can be used for encoding this info
     */
    A_UINT32 he_supp_mcs_2G;
    /* Valid Transmit chain mask */
    A_UINT32 tx_chain_mask_2G;
    /* Valid Receive chain mask */
    A_UINT32 rx_chain_mask_2G;
    /* max bw supported 5G, enum wmi_channel_width */
    A_UINT32 max_bw_supported_5G;
    /* WMI HT Capability, WMI_HT_CAP defines */
    A_UINT32 ht_cap_info_5G;
    /* VHT capability info field of 802.11ac, WMI_VHT_CAP defines */
    A_UINT32 vht_cap_info_5G;
    /* VHT Supported MCS Set field Rx/Tx same
     * The max VHT-MCS for n SS subfield (where n = 1,...,8) is encoded as follows
     * - 0 indicates support for VHT-MCS 0-7 for n spatial streams
     * - 1 indicates support for VHT-MCS 0-8 for n spatial streams
     * - 2 indicates support for VHT-MCS 0-9 for n spatial streams
     * - 3 indicates that n spatial streams is not supported
     * - bit [15:0] Each NSS takes 2 bit.
     * - bit [23:16] Indicates support for VHT-MCS 10 and 11 for
     *   n spatial streams
     *       - bit 16 - for NSS 1
     *       - bit 17 - for NSS 2
     *       - .
     *       - .
     *       - bit 23 - for NSS 8
     *       - bit 24 - indicate whether the VHT-MCS 10-11 specs in bits 23:16
     *                  are valid
     *   Refer to the WMI_VHT_MAX_MCS_EXT_SS_GET/SET macros.
     */
    A_UINT32 vht_supp_mcs_5G;
    /*HE capability info field of 802.11ax, WMI_HE_CAP defines */
    A_UINT32 he_cap_info_5G;
    /* HE Supported MCS Set field Rx/Tx same
     * - 2 bits are used for each NSS chain.Max of 8 NSS can be encoded with
     *     bit 2-0 indicating max HE MCS of NSS1
     *     bit 5-3 indicating max HE MCS of NSS2 and so on
     * - The max HE-MCS for n SS subfield (where n = 1,...,8) in case of
     *     HE BW less than or equal to 80MHZ is encoded as follows
     * - 0 indicates support for VHT-MCS 0-7 for n spatial streams
     * - 1 indicates support for VHT-MCS 0-9 for n spatial streams
     * - 2 indicates support for VHT-MCS 0-11 for n spatial streams
     * - 3 indicates that n spatial streams is not supported
     * - WMI_HE_MAX_MCS_4_SS_MASK macro can be used for encoding this info
     * - The max HE-MCS for n SS subfield (where n = 1,...,8) in case of
     *     HE BW equal to 80+80 or 160 MHZ encoding is same as above just the
     *     lower 16 bits are used for lower 80MHz NSS-MCS supported combo and
     *     upper 16 bits are used for upper 80MHz NSS-MCS supported combo
     */
    A_UINT32 he_supp_mcs_5G;
    /* Valid Transmit chain mask */
    A_UINT32 tx_chain_mask_5G;
    /* Valid Receive chain mask */
    A_UINT32 rx_chain_mask_5G;
    /* HE capability phy field of 802.11ax, WMI_HE_CAP defines */
    A_UINT32 he_cap_phy_info_2G[WMI_MAX_HECAP_PHY_SIZE];
    A_UINT32 he_cap_phy_info_5G[WMI_MAX_HECAP_PHY_SIZE];
    wmi_ppe_threshold he_ppet2G;
    wmi_ppe_threshold he_ppet5G;
    /* chainmask table to be used for the MAC */
    A_UINT32 chainmask_table_id;
    /* PDEV ID to LMAC ID mapping */
    A_UINT32 lmac_id;
    /* 2nd DWORD of HE capability info field of 802.11ax, support Draft 3+ */
    A_UINT32 he_cap_info_2G_ext;
    A_UINT32 he_cap_info_5G_ext;
    /*
     * bit 0     : Indicated support for RX 1xLTF + 0.4us
     * bit 1     : Indicates support for RX 2xLTF + 0.4us
     * bit 2     : Indicates support for 2xLTF in 160/80+80 MHz HE PPDU
     * bit[31:3] : Reserved
     * Refer to WMI_HE_CAP_xx_LTF_xxx_SUPPORT_GET/SET macros
     */
    A_UINT32 he_cap_info_internal;

    A_UINT32 wireless_modes; /* REGDMN MODE, see REGDMN_MODE_ enum */
    A_UINT32 low_2ghz_chan_freq;  /* units = MHz */
    A_UINT32 high_2ghz_chan_freq; /* units = MHz */
    A_UINT32 low_5ghz_chan_freq;  /* units = MHz */
    A_UINT32 high_5ghz_chan_freq; /* units = MHz */

    /*
     * NSS ratio to be sent to Host during boot-up capabilities negotiation
     *
     * Bit 0 - refer to WMI_NSS_RATIO_ENABLE_DISABLE_ definitions
     * [0]    :  0 - WMI_NSS_RATIO_DISABLE
     * [0]    :  1 - WMI_NSS_RATIO_ENABLE
     *
     * Bits 4:1 - refer to WMI_NSS_RATIO_INFO_ definitions
     * [4:1]  : 0000 - WMI_NSS_RATIO_1BY2_NSS
     * [4:1]  : 0001 - WMI_NSS_RATIO_3BY4_NSS
     * [4:1]  : 0010 - WMI_NSS_RATIO_1_NSS
     * [4:1]  : 0011 - WMI_NSS_RATIO_2_NSS
     *
     * [31:5] : Reserved
     */
    A_UINT32 nss_ratio;
    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_MAC_PHY_CAPABILITIES;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_MAC_PHY_CAPABILITIES_EXT */
    /* hw_mode_id - identify a particular set of HW characteristics, as specified
     * by the subsequent fields. WMI_MAC_PHY_CAPABILITIES element must be mapped
     * to its parent WMI_HW_MODE_CAPABILITIES element using hw_mode_id.
     * No particular ordering of WMI_MAC_PHY_CAPABILITIES elements should be assumed,
     * though in practice the elements may always be ordered by hw_mode_id */
    A_UINT32 hw_mode_id;
    /*
     * pdev_id starts with 1. pdev_id 1 => phy_id 0, pdev_id 2 => phy_id 1
     * hw_link_id: Unique link id across SOCs, got as part of QMI handshake.
     * For legacy chips which do not support MLO, these top bits will always
     * be set to 0, so it won't impact the legacy chips which treat pdev_id
     * as 32 bits.
     */
    union {
        struct {
            A_UINT32 pdev_id:16,
                     hw_link_id:16;
        } wmi_pdev_to_link_map;
        A_UINT32 pdev_id;
    };
    /* phy id. Starts with 0 */
    A_UINT32 phy_id;
    A_UINT32 wireless_modes_ext; /* REGDMN MODE EXT, see REGDMN_MODE_ enum */

    /**************************************************************************
     * following new params for 802.11be, but under development
     **************************************************************************/
    /* EHT capability mac info field of 802.11be */
    A_UINT32 eht_cap_mac_info_2G[WMI_MAX_EHTCAP_MAC_SIZE];
    A_UINT32 eht_cap_mac_info_5G[WMI_MAX_EHTCAP_MAC_SIZE];
    A_UINT32 eht_supp_mcs_2G; /* deprecated (c.f. eht_supp_mcs_ext_2G) */
    A_UINT32 eht_supp_mcs_5G; /* deprecated (c.f. eht_supp_mcs_ext_5G) */
    /* EHT capability phy field of 802.11be, WMI_EHT_CAP defines */
    A_UINT32 eht_cap_phy_info_2G[WMI_MAX_EHTCAP_PHY_SIZE];
    A_UINT32 eht_cap_phy_info_5G[WMI_MAX_EHTCAP_PHY_SIZE];
    wmi_ppe_threshold eht_ppet2G;
    wmi_ppe_threshold eht_ppet5G;
    A_UINT32 eht_cap_info_internal;
    /* eht_supp_mcs_ext_2G, eht_supp_mcs_ext_5G:
     * array index interpretation:
     * 0 – index indicated EHT-MCS map for 20Mhz only sta (4 bytes valid)
     * 1 – index for <= 80MHz bw (only 3 bytes are valid and other is reserved)
     * 2 – index for 160Mhz bw (only 3 bytes are valid and other is reserved)
     * 3 – index for 320Mhz bw (only 3 bytes are valid and other is reserved)
     *
     * The format of the data stored in each array index element is defined
     * by IEEE802.11 9.4.2.295c.4
     * For example, for the 20 MHz / index 0 element:
     *     B0 -- B3: Rx Max Nss that Supports EHT-MCS 0–7
     *     B4 -- B7: Tx Max Nss that Supports EHT-MCS 0–7
     *     B8 -- B11: Rx Max Nss that Supports EHT-MCS 8–9
     *     B12 -- B15: Tx Max Nss that Supports EHT-MCS 8–9
     *     B16 -- B19: Rx Max Nss that Supports EHT-MCS 10–11
     *     B20 -- B23: Tx Max Nss that Supports EHT-MCS 10–11
     *     B24 -- B27: Rx Max Nss that Supports EHT-MCS 12–13
     *     B28 -- B31: Tx Max Nss that Supports EHT-MCS 12–13
     */
    A_UINT32 eht_supp_mcs_ext_2G[WMI_MAX_EHT_SUPP_MCS_2G_SIZE];
    A_UINT32 eht_supp_mcs_ext_5G[WMI_MAX_EHT_SUPP_MCS_5G_SIZE];
    union {
        struct {
            A_UINT32 emlsr_support:1,
                     emlsr_padding_delay:3,
                     emlsr_transition_delay:3,
                     emlmr_support:1,
                     emlmr_delay:3,
                     transition_timeout:4,
                     reserved: 17;
        };
        A_UINT32 eml_capability;
    };
    union {
        struct {
            A_UINT32 max_num_simultaneous_links:4,
                     srs_support:1,
                     tid_to_link_negotiation_support:2, /* Set to 0 if TID-to-link mapping is not supported by the MLD.
                                                         * Set to 1 if MLD supports the mapping of each TID to the same or different link set.
                                                         * Set to 2 if MLD only supports the mapping of all TIDs to the same link set.
                                                         * Value  3 is reserved */
                     freq_separation_str:5,
                     aar_support:1,
                     reserved2: 19;
        };
        A_UINT32 mld_capability;
    };
    union {
        struct {
            A_UINT32
                op_update_para_support:1, /* Indicates support of operation parameter update negotiation */
                reserved3: 31;
        };
        A_UINT32 ext_mld_capability;
    };
} WMI_MAC_PHY_CAPABILITIES_EXT;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_HW_MODE_CAPABILITIES */
    /* hw_mode_id - identify a particular set of HW characteristics,
     * as specified by the subsequent fields */
    A_UINT32 hw_mode_id;
    /* BIT0 represents phy_id 0, BIT1 represent phy_id 1 and so on
     * number of bits set in phy_id_map represents number of WMI_MAC_PHY_CAPABILITIES TLV's
     * one for each active PHY for current HW mode identified by hw_mode_id. For example for
     * DBS/SBS mode there will be 2 WMI_MAC_PHY_CAPABILITIES TLVs and for single MAC modes it
     * will be 1 WMI_MAC_PHY_CAPABILITIES TLVs */
    A_UINT32 phy_id_map;
    /* hw_mode_config_type
     * Identify a particular type of HW mode such as SBS, DBS etc.
     * Refer to WMI_HW_MODE_CONFIG_TYPE values.
     *
     * Use bits 31:27 of hw_mode_config_type for Per HW mode MLO capability
     * flags.
     * Refer to WMI_MLO_CAP_FLAG_XXX. For legacy chips which do not support
     * MLO, these top bits will always be set to 0, so it won't impact the
     * legacy chips which treat hw_mode_config_type as 32 bits.
     */
    union {
        struct {
            A_UINT32 hw_mode_config   :27,
                     mlo_cap_flag     :5; /* see WMI_MLO_CAP_FLAG_ defs */
        };
        A_UINT32 hw_mode_config_type;
    };

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_HW_MODE_CAPABILITIES;

/*
 * The following macros are for the bitfields witihin the supported flags field
 * of WMI_MAC_PHY_CHAINMASK_CAPABILITY:
 * Capabilities for the chainmask
 */

#define WMI_SUPPORT_CHAN_WIDTH_20_GET(flags) WMI_GET_BITS(flags, 0, 1)
#define WMI_SUPPORT_CHAN_WIDTH_20_SET(flags, value) WMI_SET_BITS(flags, 0, 1, value)

#define WMI_SUPPORT_CHAN_WIDTH_40_GET(flags) WMI_GET_BITS(flags, 1, 1)
#define WMI_SUPPORT_CHAN_WIDTH_40_SET(flags, value) WMI_SET_BITS(flags, 1, 1, value)

#define WMI_SUPPORT_CHAN_WIDTH_80_GET(flags) WMI_GET_BITS(flags, 2, 1)
#define WMI_SUPPORT_CHAN_WIDTH_80_SET(flags, value) WMI_SET_BITS(flags, 2, 1, value)

#define WMI_SUPPORT_CHAN_WIDTH_160_GET(flags) WMI_GET_BITS(flags, 3, 1)
#define WMI_SUPPORT_CHAN_WIDTH_160_SET(flags, value) WMI_SET_BITS(flags, 3, 1, value)

#define WMI_SUPPORT_CHAN_WIDTH_80P80_GET(flags) WMI_GET_BITS(flags, 4, 1)
#define WMI_SUPPORT_CHAN_WIDTH_80P80_SET(flags, value) WMI_SET_BITS(flags, 4, 1, value)

#define WMI_SUPPORT_AGILE_SPECTRAL_GET(flags) WMI_GET_BITS(flags, 5, 1)
#define WMI_SUPPORT_AGILE_SPECTRAL_SET(flags, value) WMI_SET_BITS(flags, 5, 1, value)

#define WMI_SUPPORT_AGILE_SPECTRAL_160_GET(flags) WMI_GET_BITS(flags, 6, 1)
#define WMI_SUPPORT_AGILE_SPECTRAL_160_SET(flags, value) WMI_SET_BITS(flags, 6, 1, value)

#define WMI_SUPPORT_ADFS_160_GET(flags) WMI_GET_BITS(flags, 7, 1)
#define WMI_SUPPORT_ADFS_160_SET(flags, value) WMI_SET_BITS(flags, 7, 1, value)

#define WMI_SUPPORT_CHAN_WIDTH_320_GET(flags) WMI_GET_BITS(flags, 8, 1)
#define WMI_SUPPORT_CHAN_WIDTH_320_SET(flags, value) WMI_SET_BITS(flags, 8, 1, value)

#define WMI_SUPPORT_ADFS_320_GET(flags) WMI_GET_BITS(flags, 9, 1)
#define WMI_SUPPORT_ADFS_320_SET(flags, value) WMI_SET_BITS(flags, 9, 1, value)

#define WMI_SUPPORT_AGILE_SPECTRAL_320_GET(flags) WMI_GET_BITS(flags, 10, 1)
#define WMI_SUPPORT_AGILE_SPECTRAL_320_SET(flags, value) WMI_SET_BITS(flags, 10, 1, value)

#define WMI_SUPPORT_CHAIN_MASK_2G_GET(flags) WMI_GET_BITS(flags, 27, 1)
#define WMI_SUPPORT_CHAIN_MASK_2G_SET(flags, value) WMI_SET_BITS(flags, 27, 1, value)

#define WMI_SUPPORT_CHAIN_MASK_5G_GET(flags) WMI_GET_BITS(flags, 28, 1)
#define WMI_SUPPORT_CHAIN_MASK_5G_SET(flags, value) WMI_SET_BITS(flags, 28, 1, value)

#define WMI_SUPPORT_CHAIN_MASK_TX_GET(flags) WMI_GET_BITS(flags, 29, 1)
#define WMI_SUPPORT_CHAIN_MASK_TX_SET(flags, value) WMI_SET_BITS(flags, 29, 1, value)

#define WMI_SUPPORT_CHAIN_MASK_RX_GET(flags) WMI_GET_BITS(flags, 30, 1)
#define WMI_SUPPORT_CHAIN_MASK_RX_SET(flags, value) WMI_SET_BITS(flags, 30, 1, value)

#define WMI_SUPPORT_CHAIN_MASK_ADFS_GET(flags) WMI_GET_BITS(flags, 31, 1)
#define WMI_SUPPORT_CHAIN_MASK_ADFS_SET(flags, value) WMI_SET_BITS(flags, 31, 1, value)

/** Definition of valid chainmask and associated capabilities */
typedef struct {
    A_UINT32 tlv_header;/* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_MAC_PHY_CHAINMASK_CAPABILITY */
     /* supported flags: Capabilities for this chianmask*/
    union {
        struct {
            A_UINT32 supports_chan_width_20:1,
                     supports_chan_width_40:1,
                     supports_chan_width_80:1,
                     supports_chan_width_160:1,
                     supports_chan_width_80P80:1,
                     supports_agile_spectral:1,
                     supports_agile_spectral_160:1,
                     supports_aDFS_160:1,
                     supports_chan_width_320:1,
                     supports_aDFS_320:1,
                     supports_agile_spectral_320:1,
                     reserved:16, /* bits 26:11 */
                     chain_mask_2G:1,
                     chain_mask_5G:1,
                     chain_mask_tx:1,
                     chain_mask_rx:1,
                     supports_aDFS:1; /* agile DFS */
        };
        A_UINT32 supported_flags;
    };
    A_UINT32 chainmask;

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_MAC_PHY_CHAINMASK_CAPABILITY;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_MAC_PHY_CHAINMASK_COMBO */
    A_UINT32 chainmask_table_id;
    /* Number of valid Chainmask in the table */
    A_UINT32 num_valid_chainmask;

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
/*
 * This TLV is followed by the below TLVs:
 * WMI_MAC_PHY_CHAINMASK_CAPABILITY mac_phy_chainmask_caps[num_valid_chainmask]
 */
} WMI_MAC_PHY_CHAINMASK_COMBO;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SOC_MAC_PHY_HW_MODE_CAPS */
    /* num HW modes */
    A_UINT32 num_hw_modes;
    /* number of unique chainmask combo tables */
    A_UINT32 num_chainmask_tables;

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/

/*
 * This TLV is followed by the below TLVs:
 *
 * WMI_HW_MODE_CAPABILITIES soc_hw_mode_caps[num_hw_modes]
 *
 * (intervening TLVs, e.g. HW_MODE_CAPS, MAC_PHY_CAPS, HAL_REG_CAPS)
 *
 * WMI_MAC_PHY_CHAINMASK_COMBO mac_phy_chainmask_combo[num_chainmask_tables]
 * // number of chainmasks specified in mac_phy_chainmask_combo[0]
 * WMI_MAC_PHY_CHAINMASK_CAPABILITY mac_phy_chainmask_caps[num_valid_chainmask0]
 * // number of chainmasks specified in mac_phy_chainmask_combo[1]
 * WMI_MAC_PHY_CHAINMASK_CAPABILITY mac_phy_chainmask_caps[num_valid_chainmask1]
 * // number of chainmasks specified in mac_phy_chainmask_combo[2]
 * WMI_MAC_PHY_CHAINMASK_CAPABILITY mac_phy_chainmask_caps[num_valid_chainmask2]
 * etc.
 */
} WMI_SOC_MAC_PHY_HW_MODE_CAPS;

/*Below are Reg caps per PHY. Please note PHY ID starts with 0.*/
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_HAL_REG_CAPABILITIES_EXT */
    /* phy id */
    A_UINT32 phy_id;
    /* regdomain value specified in EEPROM */
    A_UINT32 eeprom_reg_domain;
    /* regdomain */
    A_UINT32 eeprom_reg_domain_ext;
    /* CAP1 capabilities bit map, see REGDMN_CAP1_ defines */
    A_UINT32 regcap1;
    /* REGDMN EEPROM CAP, see REGDMN_EEPROM_EEREGCAP_ defines */
    A_UINT32 regcap2;
    /* REGDMN MODE, see REGDMN_MODE_ enum */
    A_UINT32 wireless_modes;
    A_UINT32 low_2ghz_chan;  /* freq in MHz */
    A_UINT32 high_2ghz_chan; /* freq in MHz */
    A_UINT32 low_5ghz_chan;  /* freq in MHz */
    A_UINT32 high_5ghz_chan; /* freq in MHz */
    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_HAL_REG_CAPABILITIES_EXT;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_HAL_REG_CAPABILITIES_EXT2 */
    /* phy id */
    A_UINT32 phy_id;
    /* regdomain value specified in EEPROM */
    A_UINT32 wireless_modes_ext;
    A_UINT32 low_2ghz_chan_ext;  /* freq in MHz */
    A_UINT32 high_2ghz_chan_ext; /* freq in MHz */
    A_UINT32 low_5ghz_chan_ext;  /* freq in MHz */
    A_UINT32 high_5ghz_chan_ext; /* freq in MHz */
} WMI_HAL_REG_CAPABILITIES_EXT2;

/*
 * TWT service capability bitmap in wmi_twt_caps_params TLV
 * within WMI_SERVICE_READY_EXT2_EVENTID message
 */
typedef enum {
    WMI_TWT_STA_SYNC_EVENT_CAP = 1, /* STA TWT: FW internal errors reported using sync WMI_TWT_ACK_EVENTID */

    /* Add new TWT Caps above */
    WMI_TWT_MAX_CAP = 32,
} WMI_TWT_CAPS_BITMAP;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_caps_param */

    /* twt_capability_bitmap
     * TWT Capabilities - refer to WMI_TWT_CAPS_BITMAP for the meaning of
     * the bits within the bitmap
     */
    A_UINT32 twt_capability_bitmap;
} wmi_twt_caps_params;

/*
 * This TLV used for Scan Radio RDP
 * We have an RDP which supports Multiband-Frequency (2 GHz, 5 GHz and 6 GHz)
 * on a single radio.
 * The AP acts as a special VAP. There will not be WMI_VDEV_UP_CMD.
 * This radio is used only for scanning purpose and to send few MGMT frames.
 * The DFS feature is disabled on this scan radio, since there will not be
 * much TX traffic.
 * The Host has to disable CAC timer because DFS feature not supported here.
 * In order to know about the scan radio RDP, DFS disabled case and
 * SCAN BLANKING support, the target has to send this information to Host
 * per pdev via WMI_SERVICE_READY_EXT2_EVENT.
 * The target is notified of the special scan VAP by the flags variable
 * in the WMI_CREATE_CMD.
 */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SCAN_RADIO_CAPABILITIES_EXT2 */
    A_UINT32 phy_id;
    /*
     * Bit 0:
     *     1 - SCAN_RADIO supported  0 - SCAN_RADIO  not supported
     *     Refer to WMI_SCAN_RADIO_CAP_SCAN_RADIO_FLAG_SET, GET macros
     * Bit 1:
     *     1 - DFS enabled           0 - DFS disabled
     *     Refer to WMI_SCAN_RADIO_CAP_DFS_FLAG_SET, GET macros
     * Bit 2:
     *     1 - SCAN RADIO blanking supported
     *     0 - SCAN RADIO blanking not supported
     *     Refer to WMI_SCAN_RADIO_CAP_BLANKING_SUPPORT_SET, GET macros
     * [3:31] reserved
     */
    A_UINT32 flags;
} WMI_SCAN_RADIO_CAPABILITIES_EXT2;

#define WMI_SCAN_RADIO_CAP_SCAN_RADIO_FLAG_GET(flag)         WMI_GET_BITS(flag, 0, 1)
#define WMI_SCAN_RADIO_CAP_SCAN_RADIO_FLAG_SET(flag, val)    WMI_SET_BITS(flag, 0, 1, val)

#define WMI_SCAN_RADIO_CAP_DFS_FLAG_GET(flag)                WMI_GET_BITS(flag, 1, 1)
#define WMI_SCAN_RADIO_CAP_DFS_FLAG_SET(flag, val)           WMI_SET_BITS(flag, 1, 1, val)

#define WMI_SCAN_RADIO_CAP_BLANKING_SUPPORT_GET(flag)        WMI_GET_BITS(flag, 2, 1)
#define WMI_SCAN_RADIO_CAP_BLANKING_SUPPORT_SET(flag, val)   WMI_SET_BITS(flag, 2, 1, val)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SOC_HAL_REG_CAPABILITIES */
    A_UINT32 num_phy;
    /* num_phy WMI_HAL_REG_CAPABILITIES_EXT TLV's */

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_SOC_HAL_REG_CAPABILITIES;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_OEM_DMA_RING_CAPABILITIES */
    A_UINT32 pdev_id;
    A_UINT32 min_num_ptr;
    /* Minimum number of pointers in the OEM DMA ring for this pdev */
    A_UINT32 min_buf_size;
    /* Minimum size in bytes of each buffer in the OEM DMA ring */
    A_UINT32 min_buf_align;
    /* Minimum alignment in bytes of each buffer in the OEM DMA ring */

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_OEM_DMA_RING_CAPABILITIES;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_SAR_CAPABILITIES*/
    /* sar version in bdf */
    A_UINT32 active_version;

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_SAR_CAPABILITIES;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_adaptive_dwell_parameters_tlv */
    /** global default adaptive dwell mode, used when WMI_SCAN_DWELL_MODE_DEFAULT */
    A_UINT32 default_adaptive_dwell_mode;
   /** the weight to calculate the average low pass filter for channel congestion. 0-100 */
    A_UINT32 adapative_lpf_weight;
   /** interval to monitor passive scan in msec */
    A_UINT32 passive_monitor_interval_ms;
   /** % of wifi activity to switch from passive to active 0-100 */
    A_UINT32 wifi_activity_threshold_pct;
} wmi_scan_adaptive_dwell_parameters_tlv;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_adaptive_dwell_config_fixed_param */
    /* globally enable/disable adaptive dwell */
    A_UINT32 enable;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
/**
 * followed by TLV (tag length value) parameters array
 * The TLV's are:
 * wmi_scan_adaptive_dwell_parameters_tlv param[]; (0 or 1 elements)
 */
} wmi_scan_adaptive_dwell_config_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_dbs_duty_cycle_param_tlv */
    /**  module_id **/
    A_UINT32 module_id;
   /** number of dbs scans */
    A_UINT32 num_dbs_scans;
   /** number of non-dbs scans */
    A_UINT32 num_non_dbs_scans;
} wmi_scan_dbs_duty_cycle_tlv_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_scan_dbs_duty_cycle_fixed_param */
    /* number of scan client dutycycle param elements */
    A_UINT32 num_clients;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
/**
 * followed by TLV (tag length value) parameters array
 * The TLV's are:
 * wmi_scan_selection_duty_cycle_tlv_param[num_clients];
 */
} wmi_scan_dbs_duty_cycle_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_therm_throt_level_config_info */
    A_UINT32 tlv_header;
    /**
      * temperature sensor value in celsius when to exit to lower zone,
      * this value can be lower than HWM of lower zone as zone overlapping
      * is permitted by design to provide hysteresis
      */
    A_UINT32 temp_lwm;
    /**
      * temperature sensor value in celsius when to exit to higher zone,
      * this value can be higher than LWM of higher zone as zone overlapping
      * is permitted by design to provide hysteresis
      */
    A_UINT32 temp_hwm;
    A_UINT32 dc_off_percent; /* duty cycle off percent 0-100. 0 means no off, 100 means no on (shutdown the phy) */
    /** Disable only the transmit queues in firmware that have lower priority than value defined by prio
       *    Prioritization:
       *    0 = disable all data tx queues, No Prioritization defined
       *    1 = disable BK tx queue
       *    2 = disable BK+BE tx queues
       *    3 = disable BK+BE+VI tx queues
       */
    A_UINT32 prio;
} wmi_therm_throt_level_config_info;

typedef enum {
    WMI_THERMAL_TEMP_RANGE_STATS_NONE = 0,
    WMI_THERMAL_TEMP_RANGE_STATS_INIT,
    WMI_THERMAL_TEMP_RANGE_STATS_REQUEST,
    WMI_THERMAL_TEMP_RANGE_STATS_CLEAR,
    WMI_THERMAL_STATS_CURRENT_ALL_SENSORS_TEMP,
} wmi_thermal_stats_action;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_thermal_stats_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /*
     * Configure thermal temperature offset value for capturing
     * thermal stats in thermal range.
     * FW already has thermal throttling threshold temperature in BDF.
     * Thermal STATS start capturing from temperature threshold to
     * temperature threshold + offset.
     * If thermal offset is 0 then thermal STATS capture is disabled.
     *
     * Units of thermal_offset are degrees Celsius.
     */
    A_UINT32 thermal_offset;
    A_UINT32 thermal_action; /* refer to enum wmi_thermal_stats_action */
} wmi_thermal_stats_cmd_fixed_param;

typedef enum {
    WMI_THERMAL_CLIENT_UNSPECIFIED = 0,
    WMI_THERMAL_CLIENT_APPS        = 1,
    WMI_THERMAL_CLIENT_WPSS        = 2,
    WMI_THERMAL_CLIENT_FW          = 3,
    WMI_THERMAL_CLIENT_MAX
} WMI_THERMAL_MITIGATION_CLIENTS;

#define WMI_THERMAL_CLIENT_MAX_PRIORITY 10

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_therm_throt_config_request_fixed_param */
    A_UINT32 pdev_id;          /* config for each pdev */
    A_UINT32 enable;           /* 0:disable, 1:enable */
    A_UINT32 dc;               /* duty cycle in ms */
    A_UINT32 dc_per_event;     /* how often (after how many duty cycles) the FW sends stats to host */
    A_UINT32 therm_throt_levels; /* Indicates the number of thermal zone configuration */
    A_UINT32 client_id;        /* Indicates the client from whom the request is being forwarded to FW. Refer to WMI_THERMAL_MITIGATION_CLIENTS. */
    A_UINT32 priority;         /* Indicates the priority, higher the value, higher the priority. Varies from 1 to WMI_THERMAL_CLIENT_MAX_PRIORITY. */
    /*
     * Following this structure is the TLV:
     * struct wmi_therm_throt_level_config_info therm_throt_level_config_info[therm_throt_levels];
     */
} wmi_therm_throt_config_request_fixed_param;

typedef enum {
    /* no throttling */
    WMI_THERMAL_FULLPERF        = 0,
    /* throttling tx to do thermal mitigation */
    WMI_THERMAL_MITIGATION      = 1,
    /* shut down the tx completely */
    WMI_THERMAL_SHUTOFF         = 2,
    /* THERMAL_SHUTDOWN_TGT
     * The target is over the temperature limit even with tx shut off.
     * The target will be shut down entirely to control the temperature.
     */
    WMI_THERMAL_SHUTDOWN_TGT    = 3,
} WMI_THERMAL_THROT_LEVEL;

#define WMI_THERMAL_STATS_TEMP_THRESH_LEVEL_MAX 5

/** FW response with the stats event id for every pdev and zones */
typedef struct {
    /*  TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_therm_throt_stats_event_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 pdev_id;            /* stats for corresponding pdev*/
    A_UINT32 temp;               /* Temperature reading in celsius */
    A_UINT32 level;              /* Current thermal throttling level -
                                  * contains a WMI_THERMAL_THROT_LEVEL value. */
    A_UINT32 therm_throt_levels; /* number of levels in therm_throt_level_stats_info */
    /* This TLV is followed by another TLV of array of structs
     * wmi_therm_throt_level_stats_info therm_throt_level_stats_info[therm_throt_levels];
     * wmi_thermal_throt_temp_range_stats temp_range_stats[therm_throt_levels];
     */
} wmi_therm_throt_stats_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_therm_throt_level_stats_info */
    A_UINT32 tlv_header;
    A_UINT32 level_count; /* count of each time thermal throttling entered this state */
    A_UINT32 dc_count;    /* total number of duty cycles spent in this state. */
                          /* this number increments by one each time we are in this state and we finish one full duty cycle. */
} wmi_therm_throt_level_stats_info;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_thermal_throt_temp_range_stats
     */
    A_UINT32 tlv_header;
    /**
     * Temperature range to capture thermal stats between start to end
     * temperature level.
     */
    A_UINT32 start_temp_level; /* unit in degC */
    A_UINT32 end_temp_level;   /* unit in degC */

    /** Total time spent on each thermal stats level, units are milliseconds. */
    A_UINT32 total_time_ms_lo;
    A_UINT32 total_time_ms_hi;
    /**
     * Thermal stats counter for every time thermal stats level enters
     * this temperature range.
     */
    A_UINT32 num_entry;
} wmi_thermal_throt_temp_range_stats;


typedef enum {
    WMI_REG_EXT_FCC_MIDBAND = 0,
    WMI_REG_EXT_JAPAN_MIDBAND = 1,
    WMI_REG_EXT_FCC_DFS_HT40 = 2,
    WMI_REG_EXT_JAPAN_NONDFS_HT40 = 3,
    WMI_REG_EXT_JAPAN_DFS_HT40 = 4,
    WMI_REG_EXT_FCC_CH_144 = 5,
} WMI_REG_EXT_BITMAP;

#ifdef WMI_CMD_STRINGS
static INLINE A_UINT8 *wmi_id_to_name(A_UINT32 wmi_command)
{
    switch (wmi_command) {
        /* initialize the wlan sub system */
         WMI_RETURN_STRING(WMI_INIT_CMDID);

        /* Scan specific commands */

        /* start scan request to FW  */
        WMI_RETURN_STRING(WMI_START_SCAN_CMDID);
        /* stop scan request to FW  */
        WMI_RETURN_STRING(WMI_STOP_SCAN_CMDID);
        /* full list of channels as defined by the regulatory
         * that will be used by scanner   */
        WMI_RETURN_STRING(WMI_SCAN_CHAN_LIST_CMDID);
        /* overwrite default priority table in scan scheduler */
        WMI_RETURN_STRING(WMI_SCAN_SCH_PRIO_TBL_CMDID);
        /* This command to adjust the priority and min.max_rest_time
         * of an on ongoing scan request.
         */
        WMI_RETURN_STRING(WMI_SCAN_UPDATE_REQUEST_CMDID);

        /* PDEV(physical device) specific commands */
        /* set regulatorty ctl id used by FW to determine the exact
         * ctl power limits */
        WMI_RETURN_STRING(WMI_PDEV_SET_REGDOMAIN_CMDID);
        /* set channel. mainly used for supporting monitor mode */
        WMI_RETURN_STRING(WMI_PDEV_SET_CHANNEL_CMDID);
        /* set pdev specific parameters */
        WMI_RETURN_STRING(WMI_PDEV_SET_PARAM_CMDID);
        /* enable packet log */
        WMI_RETURN_STRING(WMI_PDEV_PKTLOG_ENABLE_CMDID);
        /* disable packet log*/
        WMI_RETURN_STRING(WMI_PDEV_PKTLOG_DISABLE_CMDID);
        /* set wmm parameters */
        WMI_RETURN_STRING(WMI_PDEV_SET_WMM_PARAMS_CMDID);
        /* set HT cap ie that needs to be carried probe requests
         * HT/VHT channels */
        WMI_RETURN_STRING(WMI_PDEV_SET_HT_CAP_IE_CMDID);
        /* set VHT cap ie that needs to be carried on probe
         * requests on VHT channels */
        WMI_RETURN_STRING(WMI_PDEV_SET_VHT_CAP_IE_CMDID);

        /* Command to send the DSCP-to-TID map to the target */
        WMI_RETURN_STRING(WMI_PDEV_SET_DSCP_TID_MAP_CMDID);
        /* set quiet ie parameters. primarily used in AP mode */
        WMI_RETURN_STRING(WMI_PDEV_SET_QUIET_MODE_CMDID);
        /* Enable/Disable Green AP Power Save  */
        WMI_RETURN_STRING(WMI_PDEV_GREEN_AP_PS_ENABLE_CMDID);
        /* get TPC config for the current operating channel */
        WMI_RETURN_STRING(WMI_PDEV_GET_TPC_CONFIG_CMDID);

        /* set the base MAC address for the physical device before
         * a VDEV is created. For firmware that does not support
         * this feature and this command, the pdev MAC address will
         * not be changed. */
        WMI_RETURN_STRING(WMI_PDEV_SET_BASE_MACADDR_CMDID);

        /* eeprom content dump , the same to bdboard data */
        WMI_RETURN_STRING(WMI_PDEV_DUMP_CMDID);

        /* VDEV(virtual device) specific commands */
        /* vdev create */
        WMI_RETURN_STRING(WMI_VDEV_CREATE_CMDID);
        /* vdev delete */
        WMI_RETURN_STRING(WMI_VDEV_DELETE_CMDID);
        /* vdev start request */
        WMI_RETURN_STRING(WMI_VDEV_START_REQUEST_CMDID);
        /* vdev restart request (RX only, NO TX, used for CAC period)*/
        WMI_RETURN_STRING(WMI_VDEV_RESTART_REQUEST_CMDID);
        /* vdev up request */
        WMI_RETURN_STRING(WMI_VDEV_UP_CMDID);
        /* vdev stop request */
        WMI_RETURN_STRING(WMI_VDEV_STOP_CMDID);
        /* vdev down request */
        WMI_RETURN_STRING(WMI_VDEV_DOWN_CMDID);
        /* set a vdev param */
        WMI_RETURN_STRING(WMI_VDEV_SET_PARAM_CMDID);
        /* set a key (used for setting per peer unicast
         * and per vdev multicast) */
        WMI_RETURN_STRING(WMI_VDEV_INSTALL_KEY_CMDID);
        /* Set bss max idle time */
        WMI_RETURN_STRING(WMI_VDEV_BSS_MAX_IDLE_TIME_CMDID);

        /* wnm sleep mode command */
        WMI_RETURN_STRING(WMI_VDEV_WNM_SLEEPMODE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_WMM_ADDTS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_WMM_DELTS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_WMM_PARAMS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_GTX_PARAMS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMDID);

        WMI_RETURN_STRING(WMI_VDEV_PLMREQ_START_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_PLMREQ_STOP_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_TSF_TSTAMP_ACTION_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_IE_CMDID);

        /* peer specific commands */

        /** create a peer */
        WMI_RETURN_STRING(WMI_PEER_CREATE_CMDID);
        /** delete a peer */
        WMI_RETURN_STRING(WMI_PEER_DELETE_CMDID);
        /** delete all peer (excluding bss peer) */
        WMI_RETURN_STRING(WMI_VDEV_DELETE_ALL_PEER_CMDID);
        /** flush specific  tid queues of a peer */
        WMI_RETURN_STRING(WMI_PEER_FLUSH_TIDS_CMDID);
        /** set a parameter of a peer */
        WMI_RETURN_STRING(WMI_PEER_SET_PARAM_CMDID);
        /* set peer to associated state. will cary all parameters
         * determined during assocication time */
        WMI_RETURN_STRING(WMI_PEER_ASSOC_CMDID);
        /* add a wds  (4 address ) entry. used only for testing
         * WDS feature on AP products */
        WMI_RETURN_STRING(WMI_PEER_ADD_WDS_ENTRY_CMDID);
        /* remove wds  (4 address ) entry. used only for testing WDS
         * feature on AP products */
        WMI_RETURN_STRING(WMI_PEER_REMOVE_WDS_ENTRY_CMDID);
        /* set up mcast info for multicast to unicast conversion */
        WMI_RETURN_STRING(WMI_PEER_MCAST_GROUP_CMDID);
        /* request peer info from FW to get PEER_INFO_EVENTID */
        WMI_RETURN_STRING(WMI_PEER_INFO_REQ_CMDID);
        /* unmap response for a peer */
        WMI_RETURN_STRING(WMI_PEER_UNMAP_RESPONSE_CMDID);

        /* beacon/management specific commands */

        /* transmit beacon by reference. used for transmitting beacon
         * on low latency interface like pcie */
        WMI_RETURN_STRING(WMI_BCN_TX_CMDID);
        /* transmit beacon by value */
        WMI_RETURN_STRING(WMI_PDEV_SEND_BCN_CMDID);
        /* set the beacon template. used in beacon offload mode to setup
         * the common beacon template with the FW to be used by FW to
         * generate beacons */
        WMI_RETURN_STRING(WMI_BCN_TMPL_CMDID);
        /* set beacon filter with FW */
        WMI_RETURN_STRING(WMI_BCN_FILTER_RX_CMDID);
        /* enable/disable filtering of probe requests in the firmware */
        WMI_RETURN_STRING(WMI_PRB_REQ_FILTER_RX_CMDID);
        /* transmit management frame by value. will be deprecated */
        WMI_RETURN_STRING(WMI_MGMT_TX_CMDID);
        /* set the probe response template. used in beacon offload mode
         * to setup the common probe response template with the FW to
         * be used by FW to generate probe responses */
        WMI_RETURN_STRING(WMI_PRB_TMPL_CMDID);
        /** set FILS Discovery frame template for FW to generate FD frames */
        WMI_RETURN_STRING(WMI_FD_TMPL_CMDID);

        /* commands to directly control ba negotiation directly from
         * host. only used in test mode */

        /* turn off FW Auto addba mode and let host control addba */
        WMI_RETURN_STRING(WMI_ADDBA_CLEAR_RESP_CMDID);
        /* send add ba request */
        WMI_RETURN_STRING(WMI_ADDBA_SEND_CMDID);
        WMI_RETURN_STRING(WMI_ADDBA_STATUS_CMDID);
        /* send del ba */
        WMI_RETURN_STRING(WMI_DELBA_SEND_CMDID);
        /* set add ba response will be used by FW to generate
         * addba response*/
        WMI_RETURN_STRING(WMI_ADDBA_SET_RESP_CMDID);
        /* send single VHT MPDU with AMSDU */
        WMI_RETURN_STRING(WMI_SEND_SINGLEAMSDU_CMDID);

        /* Station power save specific config */
        /* enable/disable station powersave */
        WMI_RETURN_STRING(WMI_STA_POWERSAVE_MODE_CMDID);
        /* set station power save specific parameter */
        WMI_RETURN_STRING(WMI_STA_POWERSAVE_PARAM_CMDID);
        /* set station mimo powersave mode */
        WMI_RETURN_STRING(WMI_STA_MIMO_PS_MODE_CMDID);

        /* DFS-specific commands */
        /* enable DFS (radar detection)*/
        WMI_RETURN_STRING(WMI_PDEV_DFS_ENABLE_CMDID);
        /* disable DFS (radar detection)*/
        WMI_RETURN_STRING(WMI_PDEV_DFS_DISABLE_CMDID);
        /* enable DFS phyerr/parse filter offload */
        WMI_RETURN_STRING(WMI_DFS_PHYERR_FILTER_ENA_CMDID);
        /* enable DFS phyerr/parse filter offload */
        WMI_RETURN_STRING(WMI_DFS_PHYERR_FILTER_DIS_CMDID);

        /* Roaming specific  commands */
        /* set roam scan mode */
        WMI_RETURN_STRING(WMI_ROAM_SCAN_MODE);
        /* set roam scan RSSI threshold below which roam
         * scan is enabled  */
        WMI_RETURN_STRING(WMI_ROAM_SCAN_RSSI_THRESHOLD);
        /* set roam scan period for periodic roam scan mode  */
        WMI_RETURN_STRING(WMI_ROAM_SCAN_PERIOD);
        /* set roam scan trigger RSSI change threshold   */
        WMI_RETURN_STRING(WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD);
        /* set roam AP profile   */
        WMI_RETURN_STRING(WMI_ROAM_AP_PROFILE);
        /* set channel list for roam scans */
        WMI_RETURN_STRING(WMI_ROAM_CHAN_LIST);
        /* offload scan specific commands */
        /* set offload scan AP profile   */
        WMI_RETURN_STRING(WMI_OFL_SCAN_ADD_AP_PROFILE);
        /* remove offload scan AP profile   */
        WMI_RETURN_STRING(WMI_OFL_SCAN_REMOVE_AP_PROFILE);
        /* set offload scan period   */
        WMI_RETURN_STRING(WMI_OFL_SCAN_PERIOD);

        /* P2P specific commands */
        /* set P2P device info. FW will used by FW to create P2P IE
         * to be carried in probe response generated during p2p listen
         * and for p2p discoverability  */
        WMI_RETURN_STRING(WMI_P2P_DEV_SET_DEVICE_INFO);
        /* enable/disable p2p discoverability on STA/AP VDEVs  */
        WMI_RETURN_STRING(WMI_P2P_DEV_SET_DISCOVERABILITY);
        /* set p2p ie to be carried in beacons generated by FW for GO */
        WMI_RETURN_STRING(WMI_P2P_GO_SET_BEACON_IE);
        /* set p2p ie to be carried in probe response frames generated
         * by FW for GO  */
        WMI_RETURN_STRING(WMI_P2P_GO_SET_PROBE_RESP_IE);
        /* set the vendor specific p2p ie data.
         * FW will use this to parse the P2P NoA
         * attribute in the beacons/probe responses received.
         */
        WMI_RETURN_STRING(WMI_P2P_SET_VENDOR_IE_DATA_CMDID);
        /* set the configure of p2p find offload */
        WMI_RETURN_STRING(WMI_P2P_DISC_OFFLOAD_CONFIG_CMDID);
        /* set the vendor specific p2p ie data for p2p find offload */
        WMI_RETURN_STRING(WMI_P2P_DISC_OFFLOAD_APPIE_CMDID);
        /* set the BSSID/device name pattern of p2p find offload */
        WMI_RETURN_STRING(WMI_P2P_DISC_OFFLOAD_PATTERN_CMDID);
        /* set OppPS related parameters **/
        WMI_RETURN_STRING(WMI_P2P_SET_OPPPS_PARAM_CMDID);

        /* AP power save specific config
         * set AP power save specific param */
        WMI_RETURN_STRING(WMI_AP_PS_PEER_PARAM_CMDID);
        /* set AP UAPSD coex specific param */
        WMI_RETURN_STRING(WMI_AP_PS_PEER_UAPSD_COEX_CMDID);

        /* Rate-control specific commands */
        WMI_RETURN_STRING(WMI_PEER_RATE_RETRY_SCHED_CMDID);

        /* WLAN Profiling commands. */
        WMI_RETURN_STRING(WMI_WLAN_PROFILE_TRIGGER_CMDID);
        WMI_RETURN_STRING(WMI_WLAN_PROFILE_SET_HIST_INTVL_CMDID);
        WMI_RETURN_STRING(WMI_WLAN_PROFILE_GET_PROFILE_DATA_CMDID);
        WMI_RETURN_STRING(WMI_WLAN_PROFILE_ENABLE_PROFILE_ID_CMDID);
        WMI_RETURN_STRING(WMI_WLAN_PROFILE_LIST_PROFILE_ID_CMDID);

        /* Suspend resume command Ids */
        WMI_RETURN_STRING(WMI_PDEV_SUSPEND_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_RESUME_CMDID);

        /* Beacon filter commands */
        /* add a beacon filter */
        WMI_RETURN_STRING(WMI_ADD_BCN_FILTER_CMDID);
        /* remove a  beacon filter */
        WMI_RETURN_STRING(WMI_RMV_BCN_FILTER_CMDID);

        /* WOW Specific WMI commands */
        /* add pattern for awake */
        WMI_RETURN_STRING(WMI_WOW_ADD_WAKE_PATTERN_CMDID);
        /* deleta a wake pattern */
        WMI_RETURN_STRING(WMI_WOW_DEL_WAKE_PATTERN_CMDID);
        /* enable/deisable wake event  */
        WMI_RETURN_STRING(WMI_WOW_ENABLE_DISABLE_WAKE_EVENT_CMDID);
        /* enable WOW  */
        WMI_RETURN_STRING(WMI_WOW_ENABLE_CMDID);
        /* host woke up from sleep event to FW. Generated in response
         * to WOW Hardware event */
        WMI_RETURN_STRING(WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID);

        /* RTT measurement related cmd */
        /* request to make an RTT measurement */
        WMI_RETURN_STRING(WMI_RTT_MEASREQ_CMDID);
        /* request to report a tsf measurement */
        WMI_RETURN_STRING(WMI_RTT_TSF_CMDID);

        /* spectral scan command */
        /* configure spectral scan */
        WMI_RETURN_STRING(WMI_VDEV_SPECTRAL_SCAN_CONFIGURE_CMDID);
        /* enable/disable spectral scan and trigger */
        WMI_RETURN_STRING(WMI_VDEV_SPECTRAL_SCAN_ENABLE_CMDID);

        /* F/W stats */
        /* one time request for stats */
        WMI_RETURN_STRING(WMI_REQUEST_STATS_CMDID);
        /* Push MCC Adaptive Scheduler Stats to Firmware */
        WMI_RETURN_STRING(WMI_MCC_SCHED_TRAFFIC_STATS_CMDID);

        /* ARP OFFLOAD REQUEST*/
        WMI_RETURN_STRING(WMI_SET_ARP_NS_OFFLOAD_CMDID);

        /* Proactive ARP Response Add Pattern Command*/
        WMI_RETURN_STRING(WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMDID);

        /* Proactive ARP Response Del Pattern Command*/
        WMI_RETURN_STRING(WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMDID);

        /* NS offload confid*/
        WMI_RETURN_STRING(WMI_NETWORK_LIST_OFFLOAD_CONFIG_CMDID);

        /* GTK offload Specific WMI commands */
        WMI_RETURN_STRING(WMI_GTK_OFFLOAD_CMDID);

        /* CSA offload Specific WMI commands */
        /* csa offload enable */
        WMI_RETURN_STRING(WMI_CSA_OFFLOAD_ENABLE_CMDID);
        /* chan switch command */
        WMI_RETURN_STRING(WMI_CSA_OFFLOAD_CHANSWITCH_CMDID);

        /* Chatter commands */
        /* Change chatter mode of operation */
        WMI_RETURN_STRING(WMI_CHATTER_SET_MODE_CMDID);
        /* chatter add coalescing filter command */
        WMI_RETURN_STRING(WMI_CHATTER_ADD_COALESCING_FILTER_CMDID);
        /* chatter delete coalescing filter command */
        WMI_RETURN_STRING(WMI_CHATTER_DELETE_COALESCING_FILTER_CMDID);
        /* chatter coalecing query command */
        WMI_RETURN_STRING(WMI_CHATTER_COALESCING_QUERY_CMDID);

        /* addba specific commands */
        /* start the aggregation on this TID */
        WMI_RETURN_STRING(WMI_PEER_TID_ADDBA_CMDID);
        /* stop the aggregation on this TID */
        WMI_RETURN_STRING(WMI_PEER_TID_DELBA_CMDID);

        /* set station mimo powersave method */
        WMI_RETURN_STRING(WMI_STA_DTIM_PS_METHOD_CMDID);
        /* Configure the Station UAPSD AC Auto Trigger Parameters */
        WMI_RETURN_STRING(WMI_STA_UAPSD_AUTO_TRIG_CMDID);
        /* Configure the Keep Alive Parameters */
        WMI_RETURN_STRING(WMI_STA_KEEPALIVE_CMDID);

        /* Request ssn from target for a sta/tid pair */
        WMI_RETURN_STRING(WMI_BA_REQ_SSN_CMDID);
        /* misc command group */
        /* echo command mainly used for testing */
        WMI_RETURN_STRING(WMI_ECHO_CMDID);

        /* !!IMPORTANT!!
         * If you need to add a new WMI command to the
         * WMI_RETURN_STRING(WMI_GRP_MISC) sub-group,
         * please make sure you add it BEHIND
         * WMI_RETURN_STRING(WMI_PDEV_UTF_CMDID);
         * as we MUST have a fixed value here to maintain compatibility between
         * UTF and the ART2 driver
         */
        /* UTF WMI commands */
        WMI_RETURN_STRING(WMI_PDEV_UTF_CMDID);

        /* set debug log config */
        WMI_RETURN_STRING(WMI_DBGLOG_CFG_CMDID);
        /* QVIT specific command id */
        WMI_RETURN_STRING(WMI_PDEV_QVIT_CMDID);
        /* Factory Testing Mode request command
         * used for integrated chipsets */
        WMI_RETURN_STRING(WMI_PDEV_FTM_INTG_CMDID);
        /* set and get keepalive parameters command */
        WMI_RETURN_STRING(WMI_VDEV_SET_KEEPALIVE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_KEEPALIVE_CMDID);
        /* For fw recovery test command */
        WMI_RETURN_STRING(WMI_FORCE_FW_HANG_CMDID);
        /* Set Mcast/Bdcast filter */
        WMI_RETURN_STRING(WMI_SET_MCASTBCAST_FILTER_CMDID);
        /* set thermal management params */
        WMI_RETURN_STRING(WMI_THERMAL_MGMT_CMDID);
        WMI_RETURN_STRING(WMI_RSSI_BREACH_MONITOR_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_LRO_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_TRANSFER_DATA_TO_FLASH_CMDID);
        WMI_RETURN_STRING(WMI_CONFIG_ENHANCED_MCAST_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_WISA_CMDID);
        WMI_RETURN_STRING(WMI_SCAN_ADAPTIVE_DWELL_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_WOW_SET_ACTION_WAKE_UP_CMDID);
        WMI_RETURN_STRING(WMI_MAWC_SENSOR_REPORT_IND_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_CONFIGURE_MAWC_CMDID);
        WMI_RETURN_STRING(WMI_NLO_CONFIGURE_MAWC_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_CONFIGURE_MAWC_CMDID);
        /* GPIO Configuration */
        WMI_RETURN_STRING(WMI_GPIO_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_GPIO_OUTPUT_CMDID);

        /* Txbf configuration command */
        WMI_RETURN_STRING(WMI_TXBF_CMDID);

        /* FWTEST Commands */
        WMI_RETURN_STRING(WMI_FWTEST_VDEV_MCC_SET_TBTT_MODE_CMDID);
        /* set NoA descs */
        WMI_RETURN_STRING(WMI_FWTEST_P2P_SET_NOA_PARAM_CMDID);

        /* TDLS Configuration */
        /* enable/disable TDLS */
        WMI_RETURN_STRING(WMI_TDLS_SET_STATE_CMDID);
        /* set tdls peer state */
        WMI_RETURN_STRING(WMI_TDLS_PEER_UPDATE_CMDID);

        /* Resmgr Configuration */
        /* Adaptive OCS is enabled by default in the FW.
         * This command is used to disable FW based adaptive OCS.
         */
        WMI_RETURN_STRING
            (WMI_RESMGR_ADAPTIVE_OCS_ENABLE_DISABLE_CMDID);
        /* set the requested channel time quota for the home channels */
        WMI_RETURN_STRING(WMI_RESMGR_SET_CHAN_TIME_QUOTA_CMDID);
        /* set the requested latency for the home channels */
        WMI_RETURN_STRING(WMI_RESMGR_SET_CHAN_LATENCY_CMDID);

        /* STA SMPS Configuration */
        /* force SMPS mode */
        WMI_RETURN_STRING(WMI_STA_SMPS_FORCE_MODE_CMDID);
        /* set SMPS parameters */
        WMI_RETURN_STRING(WMI_STA_SMPS_PARAM_CMDID);

        /* Wlan HB commands */
        /* enable/disable wlan HB */
        WMI_RETURN_STRING(WMI_HB_SET_ENABLE_CMDID);
        /* set tcp parameters for wlan HB */
        WMI_RETURN_STRING(WMI_HB_SET_TCP_PARAMS_CMDID);
        /* set tcp pkt filter for wlan HB */
        WMI_RETURN_STRING(WMI_HB_SET_TCP_PKT_FILTER_CMDID);
        /* set udp parameters for wlan HB */
        WMI_RETURN_STRING(WMI_HB_SET_UDP_PARAMS_CMDID);
        /* set udp pkt filter for wlan HB */
        WMI_RETURN_STRING(WMI_HB_SET_UDP_PKT_FILTER_CMDID);

        /* Wlan RMC commands*/
        /* enable/disable RMC */
        WMI_RETURN_STRING(WMI_RMC_SET_MODE_CMDID);
        /* configure action frame period */
        WMI_RETURN_STRING(WMI_RMC_SET_ACTION_PERIOD_CMDID);
        /* For debug/future enhancement purposes only,
         * configures/finetunes RMC algorithms */
        WMI_RETURN_STRING(WMI_RMC_CONFIG_CMDID);

        /* WLAN MHF offload commands */
        /* enable/disable MHF offload */
        WMI_RETURN_STRING(WMI_MHF_OFFLOAD_SET_MODE_CMDID);
        /* Plumb routing table for MHF offload */
        WMI_RETURN_STRING(WMI_MHF_OFFLOAD_PLUMB_ROUTING_TBL_CMDID);

        /* location scan commands */
        /* start batch scan */
        WMI_RETURN_STRING(WMI_BATCH_SCAN_ENABLE_CMDID);
        /* stop batch scan */
        WMI_RETURN_STRING(WMI_BATCH_SCAN_DISABLE_CMDID);
        /* get batch scan result */
        WMI_RETURN_STRING(WMI_BATCH_SCAN_TRIGGER_RESULT_CMDID);
        /* OEM related cmd */
        WMI_RETURN_STRING(WMI_OEM_REQ_CMDID);
        WMI_RETURN_STRING(WMI_OEM_REQUEST_CMDID);
        /* NAN request cmd */
        WMI_RETURN_STRING(WMI_NAN_CMDID);
        /* Modem power state cmd */
        WMI_RETURN_STRING(WMI_MODEM_POWER_STATE_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_STATS_EXT_CMDID);
        WMI_RETURN_STRING(WMI_OBSS_SCAN_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_OBSS_SCAN_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_PEER_GET_ESTIMATED_LINKSPEED_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_SCAN_CMD);
        WMI_RETURN_STRING(WMI_PDEV_SET_LED_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_HOST_AUTO_SHUTDOWN_CFG_CMDID);
        WMI_RETURN_STRING(WMI_CHAN_AVOID_UPDATE_CMDID);
        WMI_RETURN_STRING(WMI_COEX_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_WOW_IOAC_ADD_KEEPALIVE_CMDID);
        WMI_RETURN_STRING(WMI_WOW_IOAC_DEL_KEEPALIVE_CMDID);
        WMI_RETURN_STRING(WMI_WOW_IOAC_ADD_WAKE_PATTERN_CMDID);
        WMI_RETURN_STRING(WMI_WOW_IOAC_DEL_WAKE_PATTERN_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_LINK_STATS_CMDID);
        WMI_RETURN_STRING(WMI_START_LINK_STATS_CMDID);
        WMI_RETURN_STRING(WMI_CLEAR_LINK_STATS_CMDID);
        WMI_RETURN_STRING(WMI_GET_FW_MEM_DUMP_CMDID);
        WMI_RETURN_STRING(WMI_LPI_MGMT_SNOOPING_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_LPI_START_SCAN_CMDID);
        WMI_RETURN_STRING(WMI_LPI_STOP_SCAN_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_START_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_STOP_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_CONFIGURE_WLAN_CHANGE_MONITOR_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_CONFIGURE_HOTLIST_MONITOR_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_GET_CACHED_RESULTS_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_GET_WLAN_CHANGE_RESULTS_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_SET_CAPABILITIES_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_GET_CAPABILITIES_CMDID);
        WMI_RETURN_STRING(WMI_EXTSCAN_CONFIGURE_HOTLIST_SSID_MONITOR_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_SYNCH_COMPLETE);
        WMI_RETURN_STRING(WMI_D0_WOW_ENABLE_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_EXTWOW_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_EXTWOW_SET_APP_TYPE1_PARAMS_CMDID);
        WMI_RETURN_STRING(WMI_EXTWOW_SET_APP_TYPE2_PARAMS_CMDID);
        WMI_RETURN_STRING(WMI_UNIT_TEST_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_SET_RIC_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_TEMPERATURE_CMDID);
        WMI_RETURN_STRING(WMI_SET_DHCP_SERVER_OFFLOAD_CMDID);
        WMI_RETURN_STRING(WMI_TPC_CHAINMASK_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_IPA_OFFLOAD_ENABLE_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_SCAN_PROB_REQ_OUI_CMDID);
        WMI_RETURN_STRING(WMI_TDLS_SET_OFFCHAN_MODE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_LED_FLASHING_CMDID);
        WMI_RETURN_STRING(WMI_MDNS_OFFLOAD_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_MDNS_SET_FQDN_CMDID);
        WMI_RETURN_STRING(WMI_MDNS_SET_RESPONSE_CMDID);
        WMI_RETURN_STRING(WMI_MDNS_GET_STATS_CMDID);
        WMI_RETURN_STRING(WMI_MDNS_SET_STAIP_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_INVOKE_CMDID);
        WMI_RETURN_STRING(WMI_SET_ANTENNA_DIVERSITY_CMDID);
        WMI_RETURN_STRING(WMI_SAP_OFL_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_APFIND_CMDID);
        WMI_RETURN_STRING(WMI_PASSPOINT_LIST_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_OCB_SET_SCHED_CMDID);
        WMI_RETURN_STRING(WMI_OCB_SET_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_OCB_SET_UTC_TIME_CMDID);
        WMI_RETURN_STRING(WMI_OCB_START_TIMING_ADVERT_CMDID);
        WMI_RETURN_STRING(WMI_OCB_STOP_TIMING_ADVERT_CMDID);
        WMI_RETURN_STRING(WMI_OCB_GET_TSF_TIMER_CMDID);
        WMI_RETURN_STRING(WMI_DCC_GET_STATS_CMDID);
        WMI_RETURN_STRING(WMI_DCC_CLEAR_STATS_CMDID);
        WMI_RETURN_STRING(WMI_DCC_UPDATE_NDL_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_SUBNET_CHANGE_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_DEBUG_MESG_FLUSH_CMDID);
        WMI_RETURN_STRING(WMI_PEER_SET_RATE_REPORT_CONDITION_CMDID);
        WMI_RETURN_STRING(WMI_SOC_SET_PCL_CMDID);
        WMI_RETURN_STRING(WMI_SOC_SET_HW_MODE_CMDID);
        WMI_RETURN_STRING(WMI_SOC_SET_DUAL_MAC_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_WOW_ENABLE_ICMPV6_NA_FLT_CMDID);
        WMI_RETURN_STRING(WMI_DIAG_EVENT_LOG_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PACKET_FILTER_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PACKET_FILTER_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_SAP_SET_BLACKLIST_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_WOW_UDP_SVC_OFLD_CMDID);
        WMI_RETURN_STRING(WMI_MGMT_TX_SEND_CMDID);
        WMI_RETURN_STRING(WMI_SOC_SET_ANTENNA_MODE_CMDID);
        WMI_RETURN_STRING(WMI_WOW_HOSTWAKEUP_GPIO_PIN_PATTERN_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_AP_PS_EGAP_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_PMF_OFFLOAD_SET_SA_QUERY_CMDID);
        WMI_RETURN_STRING(WMI_BPF_GET_CAPABILITY_CMDID);
        WMI_RETURN_STRING(WMI_BPF_GET_VDEV_STATS_CMDID);
        WMI_RETURN_STRING(WMI_BPF_SET_VDEV_INSTRUCTIONS_CMDID);
        WMI_RETURN_STRING(WMI_BPF_DEL_VDEV_INSTRUCTIONS_CMDID);
        WMI_RETURN_STRING(WMI_NDI_GET_CAP_REQ_CMDID);
        WMI_RETURN_STRING(WMI_NDP_INITIATOR_REQ_CMDID);
        WMI_RETURN_STRING(WMI_NDP_RESPONDER_REQ_CMDID);
        WMI_RETURN_STRING(WMI_NDP_END_REQ_CMDID);
        WMI_RETURN_STRING(WMI_PEER_UPDATE_WDS_ENTRY_CMDID);
        WMI_RETURN_STRING(WMI_PEER_ADD_PROXY_STA_ENTRY_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_FIPS_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SMART_ANT_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SMART_ANT_SET_RX_ANTENNA_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_ANTENNA_SWITCH_TABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_CTL_TABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_MIMOGAIN_TABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_TPC_CMDID);
        WMI_RETURN_STRING(WMI_MIB_STATS_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_ANI_CCK_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_ANI_OFDM_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_RATEMASK_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ATF_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_DSCP_TID_MAP_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_FILTER_NEIGHBOR_RX_PACKETS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_QUIET_MODE_CMDID);
        WMI_RETURN_STRING(WMI_PEER_SMART_ANT_SET_TX_ANTENNA_CMDID);
        WMI_RETURN_STRING(WMI_PEER_SMART_ANT_SET_TRAIN_INFO_CMDID);
        WMI_RETURN_STRING(WMI_PEER_SMART_ANT_SET_NODE_CONFIG_OPS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_ATF_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_FWTEST_CMDID);
        WMI_RETURN_STRING(WMI_QBOOST_CFG_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_NFCAL_POWER_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_PCL_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_HW_MODE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_MAC_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_ANTENNA_MODE_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_SET_MBO_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_CHAN_AVOID_RPT_ALLOW_CMDID);
        WMI_RETURN_STRING(WMI_SET_PERIODIC_CHANNEL_STATS_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_CUSTOM_AGGR_SIZE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_WAL_POWER_DEBUG_CMDID);
        WMI_RETURN_STRING(WMI_PEER_BWF_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_DBGLOG_TIME_STAMP_SYNC_CMDID);
        WMI_RETURN_STRING(WMI_P2P_LISTEN_OFFLOAD_START_CMDID);
        WMI_RETURN_STRING(WMI_P2P_LISTEN_OFFLOAD_STOP_CMDID);
        WMI_RETURN_STRING(WMI_PEER_REORDER_QUEUE_SETUP_CMDID);
        WMI_RETURN_STRING(WMI_PEER_REORDER_QUEUE_REMOVE_CMDID);
        WMI_RETURN_STRING(WMI_SET_MULTIPLE_MCAST_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_READ_DATA_FROM_FLASH_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_REORDER_TIMEOUT_VAL_CMDID);
        WMI_RETURN_STRING(WMI_PEER_SET_RX_BLOCKSIZE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_WAKEUP_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_ANTDIV_STATUS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_ANTDIV_INFO_REQ_CMDID);
        WMI_RETURN_STRING(WMI_MNT_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_CHIP_POWER_STATS_CMDID);
        WMI_RETURN_STRING(WMI_COEX_GET_ANTENNA_ISOLATION_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_STATS_THRESHOLD_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_WLAN_STATS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ENCRYPT_DECRYPT_DATA_REQ_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_PEER_STATS_INFO_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_RADIO_CHAN_STATS_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_PER_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ADD_MAC_ADDR_TO_RX_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_BPF_SET_VDEV_ACTIVE_MODE_CMDID);
        WMI_RETURN_STRING(WMI_HW_DATA_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_LPI_OEM_REQ_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_UPDATE_PKT_ROUTING_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_CHECK_CAL_VERSION_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_DIVERSITY_GAIN_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_ARP_STAT_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_ARP_STAT_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_TX_POWER_CMDID);
        WMI_RETURN_STRING(WMI_OFFCHAN_DATA_TX_SEND_CMDID);
        WMI_RETURN_STRING(WMI_SET_INIT_COUNTRY_CMDID);
        WMI_RETURN_STRING(WMI_SET_SCAN_DBS_DUTY_CYCLE_CMDID);
        WMI_RETURN_STRING(WMI_THERM_THROT_SET_CONF_CMDID);
        WMI_RETURN_STRING(WMI_OEM_DMA_RING_CFG_REQ_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_BSS_CHAN_INFO_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_LIMIT_OFFCHAN_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_BTM_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_WLM_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_UPDATE_CTLTABLE_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_CONFIG_VENDOR_OUI_ACTION_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SEND_FD_CMDID);
        WMI_RETURN_STRING(WMI_ENABLE_FILS_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_AC_TX_QUEUE_OPTIMIZED_CMDID);
        WMI_RETURN_STRING(WMI_PEER_TID_MSDUQ_QDEPTH_THRESH_UPDATE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_RX_FILTER_PROMISCUOUS_CMDID);
        WMI_RETURN_STRING(WMI_SAP_OBSS_DETECTION_CFG_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_DMA_RING_CFG_REQ_CMDID);
        WMI_RETURN_STRING(WMI_11K_OFFLOAD_REPORT_CMDID);
        WMI_RETURN_STRING(WMI_11K_INVOKE_NEIGHBOR_REPORT_CMDID);
        WMI_RETURN_STRING(WMI_BPF_SET_VDEV_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_BPF_SET_VDEV_WORK_MEMORY_CMDID);
        WMI_RETURN_STRING(WMI_BPF_GET_VDEV_WORK_MEMORY_CMDID);
        WMI_RETURN_STRING(WMI_BSS_COLOR_CHANGE_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_OBSS_COLOR_COLLISION_DET_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_RUNTIME_DPD_RECAL_CMDID);
        WMI_RETURN_STRING(WMI_TWT_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_TWT_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_TWT_ADD_DIALOG_CMDID);
        WMI_RETURN_STRING(WMI_TWT_DEL_DIALOG_CMDID);
        WMI_RETURN_STRING(WMI_TWT_PAUSE_DIALOG_CMDID);
        WMI_RETURN_STRING(WMI_TWT_RESUME_DIALOG_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_ROAM_SCAN_STATS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_TID_CONFIGURATIONS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_CUSTOM_SW_RETRY_TH_CMDID);
        WMI_RETURN_STRING(WMI_GET_TPC_POWER_CMDID);
        WMI_RETURN_STRING(WMI_MOTION_DET_CONFIG_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_MOTION_DET_BASE_LINE_CONFIG_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_MOTION_DET_START_STOP_CMDID);
        WMI_RETURN_STRING(WMI_MOTION_DET_BASE_LINE_START_STOP_CMDID);
        WMI_RETURN_STRING(WMI_SAR_LIMITS_CMDID);
        WMI_RETURN_STRING(WMI_SAR_GET_LIMITS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_CHAN_WIDTH_SWITCH_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_OBSS_PD_SPATIAL_REUSE_SET_DEF_OBSS_THRESH_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_HE_TB_ACTION_FRM_CMDID);
        WMI_RETURN_STRING(WMI_HPCS_PULSE_START_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_CHAINMASK_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_BCN_OFFLOAD_QUIET_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_NDP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_PKTLOG_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_SET_CURRENT_COUNTRY_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_BCN_RECEPTION_STATS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_TX_PN_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_BSS_LOAD_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_MWS_COEX_INFO_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_WLM_STATS_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_RAP_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_STA_TDCC_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_DEAUTH_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_IDLE_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_IDLE_TRIGGER_MONITOR_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_DSM_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_TWT_BTWT_INVITE_STA_CMDID);
        WMI_RETURN_STRING(WMI_TWT_BTWT_REMOVE_STA_CMDID);
        WMI_RETURN_STRING(WMI_OEM_DATA_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_PREAUTH_STATUS_CMDID);
        WMI_RETURN_STRING(WMI_SET_ELNA_BYPASS_CMDID);
        WMI_RETURN_STRING(WMI_GET_ELNA_BYPASS_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_ADD_GROUP_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_DEL_GROUP_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_SET_GROUP_RATE_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_SET_GROUP_RETRY_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_UPDATE_STA_GROUP_INFO_CMDID);
        WMI_RETURN_STRING(WMI_CFR_CAPTURE_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_ATF_SSID_GROUPING_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_ATF_GROUP_WMM_AC_CONFIG_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_PEER_ATF_EXT_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_GET_CHANNEL_ANI_CMDID);
        WMI_RETURN_STRING(WMI_SET_OCL_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_SET_GROUP_AUTO_RATE_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_SET_GROUP_PROBE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_AUDIO_SYNC_TRIGGER_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_AUDIO_SYNC_QTIMER_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_GET_SCAN_CHANNEL_LIST_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_BIG_DATA_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_FRAME_INJECT_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_TBTT_OFFSET_SYNC_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_GET_BIG_DATA_P2_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_GET_STATISTICS_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_RESET_STATISTICS_CMDID);
        WMI_RETURN_STRING(WMI_ANT_CONTROLLER_CMDID);
        WMI_RETURN_STRING(WMI_SIMULATION_TEST_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_SET_RTSCTS_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_CTRL_PATH_STATS_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_TPC_STATS_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_SET_SCHED_METHOD_CMDID);
        WMI_RETURN_STRING(WMI_AUDIO_AGGR_GET_SCHED_METHOD_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_UNIFIED_LL_GET_STA_CMDID);
        WMI_RETURN_STRING(WMI_QOS_NULL_FRAME_TX_SEND_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_ENABLE_DURATION_BASED_TX_MODE_SELECTION_CMDID);
        WMI_RETURN_STRING(WMI_TWT_NUDGE_DIALOG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_TPC_POWER_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_TID_LATENCY_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PEER_TID_LATENCY_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_MLO_LINK_SET_ACTIVE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_DPD_STATUS_CMDID);
        WMI_RETURN_STRING(WMI_MLO_SETUP_CMDID);
        WMI_RETURN_STRING(WMI_MLO_READY_CMDID);
        WMI_RETURN_STRING(WMI_MLO_TEARDOWN_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_IGMP_OFFLOAD_CMDID);
        WMI_RETURN_STRING(WMI_MGMT_RX_REO_FILTER_CONFIGURATION_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_BIOS_SAR_TABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_BIOS_GEO_TABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_GET_HALPHY_CAL_STATUS_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_HALPHY_CAL_BMAP_CMDID);
        WMI_RETURN_STRING(WMI_AFC_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_MULTIPLE_VDEV_SET_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_MEC_AGING_TIMER_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_PEER_CONFIG_PPE_DS_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ENABLE_DISABLE_INTRA_BSS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_ENABLE_DISABLE_INTRA_BSS_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_MLO_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_THERMAL_STATS_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_BIOS_INTERFACE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_MU_SNIF_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ICMP_OFFLOAD_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_SET_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_FIPS_EXTEND_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_FIPS_MODE_SET_CMDID);
        WMI_RETURN_STRING(WMI_SAWF_SVC_CLASS_CFG_CMDID);
        WMI_RETURN_STRING(WMI_SAWF_SVC_CLASS_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_UPDATE_MAC_ADDR_CMDID);
        WMI_RETURN_STRING(WMI_SOC_TQM_RESET_ENABLE_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_MULTIPLE_PEER_GROUP_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_LTF_KEY_SEED_CMDID);
        WMI_RETURN_STRING(WMI_RTT_PASN_AUTH_STATUS_CMD);
        WMI_RETURN_STRING(WMI_RTT_PASN_DEAUTH_CMD);
        WMI_RETURN_STRING(WMI_VDEV_PN_MGMT_RX_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_PEER_RX_PN_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_SET_MULTIPLE_PDEV_VDEV_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_PMM_SCRATCH_REG_ALLOCATION_CMDID);
        WMI_RETURN_STRING(WMI_MLO_PEER_TID_TO_LINK_MAP_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_ENABLE_VENDOR_CONTROL_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_GET_VENDOR_CONTROL_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_HALPHY_CTRL_PATH_STATS_CMDID);
        WMI_RETURN_STRING(WMI_PEER_FLUSH_POLICY_CMDID);
        WMI_RETURN_STRING(WMI_WOW_COAP_ADD_PATTERN_CMDID);
        WMI_RETURN_STRING(WMI_WOW_COAP_DEL_PATTERN_CMDID);
        WMI_RETURN_STRING(WMI_WOW_COAP_ADD_KEEPALIVE_PATTERN_CMDID);
        WMI_RETURN_STRING(WMI_WOW_COAP_DEL_KEEPALIVE_PATTERN_CMDID);
        WMI_RETURN_STRING(WMI_WOW_COAP_GET_BUF_INFO_CMDID);
        WMI_RETURN_STRING(WMI_COEX_DBAM_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_FEATURESET_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_PARAM_ENABLE_SR_PROHIBIT_CMDID);
        WMI_RETURN_STRING(WMI_XGAP_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_MESH_RX_FILTER_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_MLO_LINK_REMOVAL_CMDID);
        WMI_RETURN_STRING(WMI_MLO_AP_VDEV_TID_TO_LINK_MAP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_DIV_GET_RSSI_ANTID_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_UPDATE_PMK_CACHE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_UPDATE_FILS_HLP_PKT_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_SRG_BSS_COLOR_BITMAP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_SRG_PARTIAL_BSSID_BITMAP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_SRG_OBSS_COLOR_ENABLE_BITMAP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_SRG_OBSS_BSSID_ENABLE_BITMAP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_NON_SRG_OBSS_COLOR_ENABLE_BITMAP_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_NON_SRG_OBSS_BSSID_ENABLE_BITMAP_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_PCL_CMDID);
        WMI_RETURN_STRING(WMI_PEER_RESERVED0_CMDID);
        WMI_RETURN_STRING(WMI_PEER_CFR_CAPTURE_CMDID);
        WMI_RETURN_STRING(WMI_PEER_CONFIG_VLAN_CMDID);
        WMI_RETURN_STRING(WMI_PEER_TX_FILTER_CMDID);
        WMI_RETURN_STRING(WMI_BCN_OFFLOAD_CTRL_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_DFS_PHYERR_OFFLOAD_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_DFS_PHYERR_OFFLOAD_DISABLE_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ADFS_CH_CFG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_ADFS_OCAC_ABORT_CMDID);
        WMI_RETURN_STRING(WMI_ROAM_ENABLE_DISABLE_TRIGGER_REASON_CMDID);
        WMI_RETURN_STRING(WMI_REQUEST_RCPI_CMDID);
        WMI_RETURN_STRING(WMI_WFA_CONFIG_CMDID);
        WMI_RETURN_STRING(WMI_HB_OIC_PING_OFFLOAD_PARAM_CMDID);
        WMI_RETURN_STRING(WMI_HB_OIC_PING_OFFLOAD_SET_ENABLE_CMDID);
        WMI_RETURN_STRING(WMI_HB_DHCP_LEASE_RENEW_OFFLOAD_CMDID);
        WMI_RETURN_STRING(WMI_RMC_SET_MANUAL_LEADER_CMDID);
        WMI_RETURN_STRING(WMI_11D_SCAN_START_CMDID);
        WMI_RETURN_STRING(WMI_11D_SCAN_STOP_CMDID);
        WMI_RETURN_STRING(WMI_VENDOR_PDEV_CMDID);
        WMI_RETURN_STRING(WMI_VENDOR_VDEV_CMDID);
        WMI_RETURN_STRING(WMI_VENDOR_PEER_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_TWT_EDCA_PARAMS_CMDID); /* XPAN TWT */
        WMI_RETURN_STRING(WMI_ESL_EGID_CMDID);
        WMI_RETURN_STRING(WMI_TDMA_SCHEDULE_REQUEST_CMDID);
        WMI_RETURN_STRING(WMI_HPA_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_TGTR2P_TABLE_CMDID); /* To set target rate to power table */
        WMI_RETURN_STRING(WMI_MLO_VDEV_GET_LINK_INFO_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_ULOFDMA_MANUAL_SU_TRIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_SET_ULOFDMA_MANUAL_MU_TRIG_CMDID);
        WMI_RETURN_STRING(WMI_VDEV_STANDALONE_SOUND_CMDID);
        WMI_RETURN_STRING(WMI_PDEV_SET_RF_PATH_CMDID); /* set RF path of PHY */
        WMI_RETURN_STRING(WMI_VDEV_PAUSE_CMDID);
        WMI_RETURN_STRING(WMI_GPIO_STATE_REQ_CMDID);
    }

    return (A_UINT8 *) "Invalid WMI cmd";
}
#endif /* WMI_CMD_STRINGS */

/**  WMI commands/events for the regulatory offload  */

/** Host indicating current country code to FW */
typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_current_country_cmd_fixed_param */
    A_UINT32  pdev_id;
    A_UINT32  new_alpha2; /** alpha2 characters representing the country code */
} wmi_set_current_country_cmd_fixed_param;

typedef enum {
    WMI_COUNTRYCODE_ALPHA2,
    WMI_COUNTRYCODE_COUNTRY_ID,
    WMI_COUNTRYCODE_DOMAIN_CODE,
} WMI_COUNTRYCODE_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_init_country_cmd_fixed_param */
    A_UINT32 pdev_id;
    A_UINT32 countrycode_type; /* WMI_COUNTRYCODE_TYPE */
    union {
        struct {
            /* Three character for alpha2. The first two is ISO name for country the last one
            present if it is indoor and out door.  First char in bits 7:0 and second char in bits 15:8 ... */
            A_UINT32  alpha2:24,
                      unused:8;
        };
        A_UINT32 country_id;   /* Country ID */
        A_UINT32 domain_code;  /* Domain code */
    } country_code;
} wmi_set_init_country_cmd_fixed_param;

typedef enum {
    /**
     * serv_resp_format_type will indicate the format in which afc_serv data
     * is written into host/target shared memory
     * This type can be expanded in future as per requirements.
     */
    AFC_SERV_RESP_FORMAT_JSON = 0,
    AFC_SERV_RESP_FORMAT_BINARY = 1,
    AFC_SERV_RESP_FORMAT_IGNORE = 2, /* When cmd type is reset,server response is set to FORMAT_IGNORE */
} WMI_AFC_SERV_RESP_FORMAT_TYPE;

typedef enum {
    /**
     * wmi_afc_cmd_type will indicate type of AFC command sent to FW.
     * Once AFC server writes data at TZ memory location SERV_RESP_READY
     * type command is sent to FW.
     * This type can be expanded in future as per requirements.
     */
    WMI_AFC_CMD_SERV_RESP_READY = 1,
    WMI_AFC_CMD_RESET = 2, /* Added cmd type to handle AFC reset */
    WMI_AFC_CMD_CLEAR_PAYLOAD = 3, /* Added cmd type to clear AFC response payload in proxy mode */
} WMI_AFC_CMD_TYPE;

/** Host indicating AFC info availability to FW */
typedef struct {
     A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_afc_cmd_fixed_param */
     A_UINT32 pdev_id;
     A_UINT32 cmd_type; /* refer WMI_AFC_CMD_TYPE */
     A_UINT32 serv_resp_format; /* refer WMI_AFC_SERV_RESP_FORMAT_TYPE */
} wmi_afc_cmd_fixed_param;

/** Host indicates AFC info availability to FW using WMI_AFC_CMD
 * This AFC info is written by AFC application/ server in host/target
 * shared memory reserved during bootup.
 * The structure is placeholder, indicating way afc_serv_resp is written in FW.
 * This structure will not be attach as input to WMI command.
 * This structure will be common to both host and FW.
 * The structure of this WMI AFC info is as follows.
 */
typedef struct {
    A_UINT32 tlv_header;   /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_afc_serv_resp_struct */
    A_UINT32 status;       /* validity flag to be updated by TZ/ PF stub layer,
                            * to indicate if payload is valid or not.
                            * status = 1 will indicate payload is valid. */
    A_UINT32 time_to_live; /* Total time for which this AFC info is valid in seconds */
    A_UINT32 length;       /* length of the payload, in bytes */
    A_UINT32 payload_format; /* The format of payload written in FW memory:
                              * 0 -> JSON format
                              * 1 -> Binary format
                              * Refer to WMI_AFC_SERV_RESP_FORMAT_TYPE.
                              */
    /*
     * The structure above is followed by array of char which will have
     * JSON string or binary data, as specified by the payload_format field.
     * A_CHAR bufp[];    AFC payload (JSON string or binary data)
     */
} wmi_afc_serv_resp_struct;

/*
 * The following structures define the format used for AFC binary data objects
 * shared by the host SW and target FW.
 * FW expects these structures to be written in shared memory in little-endian
 * format. If the host/AFC app uses big endian format, Host/APP needs to
 * byteswap the data, so FW will get data in the expected little-endian format.
 */
typedef struct {
    A_UINT32 freq_info; /* bits 15:0  = u16 start_freq,
                         * bits 31:16 = u16 end_freq
                         * both in MHz units
                         */
    A_INT32 max_psd;     /* Maximum PSD in dBm/MHz, value is stored in 0.01 dBm/MHz steps */
} afc_freq_info;

typedef struct {
    A_UINT32 channel_cfi;  /* channel center frequency index */
    /*
     * maximum permissible EIRP available for above CFI in dBm,
     * value is stored in 0.01 dBm steps.
     * Note: This A_UINT32 field can receive negative EIRP value from AFC
     * server. These negative EIRP value cases are handled internally.
     */
    A_UINT32 max_eirp_pwr;
} afc_eirp_info;

typedef struct {
    A_UINT32 global_operating_class;
    A_UINT32 num_channels; /* num of valid channels for above global operating class */
    /* This structure is followed by (num_channels*sizeof(afc_eirp_info))
     * bytes array:
     *     afc_eirp_info eirp_info[num_channels];
     *     List of channel cfi and eirp power values,
     *     Total size will be num_channels * sizeof(afc_eirp_info)
     */
} afc_channel_info;

/*
 * For case of afc_server_resp containing binary payload, the buf pointer
 * in wmi_afc_serv_resp_struct will be poiniting to binary format payload
 * which is in the format defined below.
 */
typedef struct {
    A_UINT32 local_error_code;   /* Internal error code between AFC app and target success = 0, General failure = 1 */
    A_UINT32 version;            /* Internal version between AFC app and Target for structure pattern */
    A_UINT32 afc_wfa_version;    /* Version defined in AFC spec document. bits 15:0 -- minor version & bits 31:16 -- major version */
    A_UINT32 request_id;         /* AFC unique request ID */
    A_UINT32 avail_exp_time_d;   /* avail_exp_time_d and avail_exp_time_t are in UTC
                                  * Availability expiry time date format: YYYY-MM-DD,
                                  * bits 7:0 -DD - Day (expected values 1-31)
                                  * bits 15:8 -MM - Month (expected values 1-12)
                                  * bits 31:16 -YYYY - Year
                                  */
    A_UINT32 avail_exp_time_t;   /* Availability expiry time format HH-MM-SS
                                  * bits 7:0 -SS - Time in Sec (expected values 0-59)
                                  * bits 15:8 -MM - Minute (expected values 0-59)
                                  * bits 23:16 -HH - Hour (expected values 0-23)
                                  * bits 31:24 -reserved
                                  */
    A_INT32 afc_serv_resp_code;   /* response code defined in afc wfa document, refer WMI_AFC_SERV_RESP_CODE */
    A_UINT32 num_frequency_obj;   /* Total number of frequency objects */
    A_UINT32 num_channel_obj;     /* Total number of frequency objects */
    char shortdesc[64];           /* This field represents a short description related to the result indicated by the response_code
                                   * field. End of description will be indicated by 0 */
    A_UINT32 reserved[2];         /* reserve space for future fields - needs to be set to 0x0 */

    /*
     * This structure is followed by an array of frequency info and
     * channel info array:
     *   - afc_freq_info freq_info[num_frequency_obj];
     *     List of frequency power values, total size will be
     *     num_frequency_obj * sizeof(afc_freq_info)
     *   - afc_channel_info chan_info[num_channel_obj];
     *     List of channel power values, total size will be
     *     num_channel_obj * sizeof(afc_channel_info)
     */
} afc_spectrum_inquiry_resp_bin_type;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_vdev_enable_disable_intra_bss_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /** The corresponding vdev_id.
     */
    A_UINT32 vdev_id;
    /* Enable/Disable intra_bss.
     */
    A_UINT32 enable;
} wmi_vdev_enable_disable_intra_bss_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_peer_enable_disable_intra_bss_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /** Mac Address of the peer.
     */
    wmi_mac_addr mac_addr;
    /** The corresponding vdev_id.
     */
    A_UINT32 vdev_id;
    /* Enable/Disable intra_bss.
     */
    A_UINT32 enable;
} wmi_peer_enable_disable_intra_bss_cmd_fixed_param;

/* Freq units in MHz */
#define WMI_REG_RULE_START_FREQ_GET(freq_info)                     WMI_GET_BITS(freq_info, 0, 16)
#define WMI_REG_RULE_START_FREQ_SET(freq_info, value)              WMI_SET_BITS(freq_info, 0, 16, value)
#define WMI_REG_RULE_END_FREQ_GET(freq_info)                       WMI_GET_BITS(freq_info, 16, 16)
#define WMI_REG_RULE_END_FREQ_SET(freq_info, value)                WMI_SET_BITS(freq_info, 16, 16, value)

/* BW in MHz */
#define WMI_REG_RULE_MAX_BW_GET(bw_pwr_info)                       WMI_GET_BITS(bw_pwr_info, 0, 16)
#define WMI_REG_RULE_MAX_BW_SET(bw_pwr_info, value)                WMI_SET_BITS(bw_pwr_info, 0, 16, value)
/* regpower in dBm */
#define WMI_REG_RULE_REG_POWER_GET(bw_pwr_info)                    WMI_GET_BITS(bw_pwr_info, 16, 8)
#define WMI_REG_RULE_REG_POWER_SET(bw_pwr_info, value)             WMI_SET_BITS(bw_pwr_info, 16, 8, value)
/* antenna gain */
#define WMI_REG_RULE_ANTENNA_GAIN_GET(bw_pwr_info)                 WMI_GET_BITS(bw_pwr_info, 24, 8)
#define WMI_REG_RULE_ANTENNA_GAIN_SET(bw_pwr_info, value)          WMI_SET_BITS(bw_pwr_info, 24, 8, value)

typedef enum {
    WMI_REG_FLAG_CHAN_NO_IR           = 0x0001, /* passive channel */
    WMI_REG_FLAG_CHAN_RADAR           = 0x0002, /* dfs channel */
    WMI_REG_FLAG_CHAN_NO_OFDM         = 0x0004, /* no ofdm channel */
    WMI_REG_FLAG_CHAN_INDOOR_ONLY     = 0x0008, /* indoor only channel */
} WMI_REGULATORY_FLAGS;

#define WMI_REG_RULE_FLAGS_GET(flag_info)                    WMI_GET_BITS(flag_info, 0, 16)
#define WMI_REG_RULE_FLAGS_SET(flag_info, value)             WMI_SET_BITS(flag_info, 0, 16, value)

typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_regulatory_rule_struct */
    A_UINT32  freq_info;       /* bits 15:0  = u16 start_freq,
                                * bits 31:16 = u16 end_freq
                                * (both in MHz units) */
    A_UINT32  bw_pwr_info;     /* bits 15:0  = u16 max_bw (MHz units),
                                  bits 23:16 = u8 reg_power (dBm units),
                                  bits 31:24 = u8 ant_gain (dB units) */
    A_UINT32  flag_info;       /* bits 15:0  = u16 flags,
                                  bits 31:16 reserved */
} wmi_regulatory_rule_struct;

#define WMI_REG_RULE_PSD_FLAG_GET(psd_power_info) \
    WMI_GET_BITS(psd_power_info, 0, 1)
#define WMI_REG_RULE_PSD_FLAG_SET(psd_power_info, value) \
    WMI_SET_BITS(psd_power_info, 0, 1, value)

#define WMI_REG_RULE_PSD_EIRP_GET(psd_power_info) \
    WMI_GET_BITS(psd_power_info, 16, 16)
#define WMI_REG_RULE_PSD_EIRP_SET(psd_power_info, value) \
    WMI_SET_BITS(psd_power_info, 16, 16, value)

typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_regulatory_rule_ext_struct */
    A_UINT32  freq_info;       /* bits 15:0  = u16 start_freq,
                                  bits 31:16 = u16 end_freq
                                  (both in MHz units)
                                  use same MACRO as wmi_regulatory_rule_struct
                                */
    A_UINT32  bw_pwr_info;     /* bits 15:0  = u16 max_bw (MHz units),
                                  bits 23:16 = u8 reg_power (dBm units),
                                  bits 31:24 = u8 ant_gain (dB units)
                                  use same MACRO as wmi_regulatory_rule_struct
                                */
    A_UINT32  flag_info;       /* bits 15:0  = u16 flags,
                                  bits 31:16 reserved
                                  use same MACRO as wmi_regulatory_rule_struct
                                */
    A_UINT32  psd_power_info;  /* bits 0     - whether PSD power,
                                  bits 15:1  - reserved
                                  bits 31:16 - maximum PSD EIRP (dB/MHz)
                                */
} wmi_regulatory_rule_ext_struct;

#define WMI_REG_CHAN_PRIORITY_FREQ_GET(freq_info)        WMI_GET_BITS(freq_info, 0, 16)
#define WMI_REG_CHAN_PRIORITY_FREQ_SET(freq_info, value) WMI_SET_BITS(freq_info, 0, 16, value)

typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_regulatory_chan_priority_struct */
    A_UINT32  freq_info;
    /* freq_info:
     * bits 15:0 = u16 Cutoff Frequency value for Prioritization (in MHz units)
     *             The frequencies above this value will be prioritized and
     *             the frequencies below this value will be de-prioritized.
     * bits 31:16 = reserved for future
     */
} wmi_regulatory_chan_priority_struct;

#define WMI_REG_FCC_RULE_CHAN_FREQ_GET(freq_info)           WMI_GET_BITS(freq_info, 0, 16)
#define WMI_REG_FCC_RULE_CHAN_FREQ_SET(freq_info, value)    WMI_SET_BITS(freq_info, 0, 16, value)
#define WMI_REG_FCC_RULE_FCC_TX_POWER_GET(freq_info)        WMI_GET_BITS(freq_info, 16, 8)
#define WMI_REG_FCC_RULE_FCC_TX_POWER_SET(freq_info, value) WMI_SET_BITS(freq_info, 16, 8, value)

typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_regulatory_fcc_rule_struct */
    A_UINT32  freq_info;
    /* freq_info:
     * bits 15:0  = u16 channel frequency (in MHz units)
     * bits 23:16 = u8 FCC_Tx_power (dBm units)
     * bits 31:24 = u8 reserved for future
     */
} wmi_regulatory_fcc_rule_struct;

typedef enum {
    WMI_REG_DFS_UNINIT_REGION = 0,
    WMI_REG_DFS_FCC_REGION    = 1,
    WMI_REG_DFS_ETSI_REGION   = 2,
    WMI_REG_DFS_MKK_REGION    = 3,
    WMI_REG_DFS_CN_REGION     = 4,
    WMI_REG_DFS_KR_REGION     = 5,

    /* Add new items above */
    WMI_REG_DFS_UNDEF_REGION = 0xFFFF,
} WMI_REG_DFS_REGION;

typedef enum {
    WMI_REGULATORY_PHYMODE_NO11A    = 0x0001,  /* NO 11A */
    WMI_REGULATORY_PHYMODE_NO11B    = 0x0002,  /* NO 11B */
    WMI_REGULATORY_PHYMODE_NO11G    = 0x0004,  /* NO 11G */
    WMI_REGULATORY_PHYMODE_NO11N    = 0x0008,  /* NO 11N */
    WMI_REGULATORY_PHYMODE_NO11AC   = 0x0010,  /* NO 11AC */
    WMI_REGULATORY_PHYMODE_NO11AX   = 0x0020,  /* NO 11AX */
    WMI_REGULATORY_PHYMODE_NO11BE   = 0x0040,  /* NO 11BE */
} WMI_REGULATORY_PHYBITMAP;

typedef enum {
    WMI_REG_SET_CC_STATUS_PASS = 0,
    WMI_REG_CURRENT_ALPHA2_NOT_FOUND = 1,
    WMI_REG_INIT_ALPHA2_NOT_FOUND = 2,
    WMI_REG_SET_CC_CHANGE_NOT_ALLOWED = 3,
    WMI_REG_SET_CC_STATUS_NO_MEMORY = 4,
    WMI_REG_SET_CC_STATUS_FAIL = 5,
} WMI_REG_SET_CC_STATUS_CODE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_reg_chan_list_cc_event_fixed_param */
    A_UINT32 status_code; /* WMI_REG_SET_CC_STATUS_CODE */
    A_UINT32 phy_id;
    A_UINT32 alpha2;
    A_UINT32 num_phy;
    A_UINT32 country_id;
    A_UINT32 domain_code;
    A_UINT32 dfs_region;  /* WMI_REG_DFS_REGION */
    A_UINT32 phybitmap;   /* WMI_REGULATORY_PHYBITMAP */
    A_UINT32 min_bw_2g;   /* BW in MHz */
    A_UINT32 max_bw_2g;   /* BW in MHz */
    A_UINT32 min_bw_5g;   /* BW in MHz */
    A_UINT32 max_bw_5g;   /* BW in MHz */
    A_UINT32 num_2g_reg_rules;
    A_UINT32 num_5g_reg_rules;
/*
 * followed by wmi_regulatory_rule_struct TLV array. First 2G and then 5G
 * - wmi_regulatory_fcc_rule_struct reg_fcc_rule[]
 */
} wmi_reg_chan_list_cc_event_fixed_param;

typedef enum {
    WMI_REG_CLIENT_REGULAR = 0,
    WMI_REG_CLIENT_SUBORDINATE = 1,
    /* 2 and 3 are reserved for future growth */
    WMI_REG_CLIENT_MAX = 4, /* can't expand, b/c used as array length below */
} wmi_reg_client_type;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_reg_chan_list_cc_event_ext_fixed_param */
    A_UINT32 status_code; /* WMI_REG_SET_CC_STATUS_CODE */
    A_UINT32 phy_id;
    A_UINT32 alpha2;
    A_UINT32 num_phy;
    A_UINT32 country_id;  /* uses CountryCode enum values */
    A_UINT32 domain_code; /* used EnumRd enum values */
    A_UINT32 dfs_region;  /* WMI_REG_DFS_REGION */
    A_UINT32 phybitmap;   /* WMI_REGULATORY_PHYBITMAP */
    A_UINT32 min_bw_2g;   /* BW in MHz */
    A_UINT32 max_bw_2g;   /* BW in MHz */
    A_UINT32 min_bw_5g;   /* BW in MHz */
    A_UINT32 max_bw_5g;   /* BW in MHz */
    A_UINT32 num_2g_reg_rules;
    A_UINT32 num_5g_reg_rules;
    A_UINT32 client_type;            /* populated if device can function as client */
    A_UINT32 rnr_tpe_usable;         /* If RNR TPE Octet usable for that country   */
    A_UINT32 unspecified_ap_usable;  /* If unspecified AP usable for that country  */
    A_UINT32 domain_code_6g_ap_lpi;
    A_UINT32 domain_code_6g_ap_sp;
    A_UINT32 domain_code_6g_ap_vlp;
    A_UINT32 domain_code_6g_client_lpi[WMI_REG_CLIENT_MAX];
    A_UINT32 domain_code_6g_client_sp[WMI_REG_CLIENT_MAX];
    A_UINT32 domain_code_6g_client_vlp[WMI_REG_CLIENT_MAX];
    A_UINT32 domain_code_6g_super_id;
    A_UINT32 min_bw_6g_ap_sp; /* MHz */
    A_UINT32 max_bw_6g_ap_sp;
    A_UINT32 min_bw_6g_ap_lpi;
    A_UINT32 max_bw_6g_ap_lpi;
    A_UINT32 min_bw_6g_ap_vlp;
    A_UINT32 max_bw_6g_ap_vlp;
    A_UINT32 min_bw_6g_client_sp[WMI_REG_CLIENT_MAX];
    A_UINT32 max_bw_6g_client_sp[WMI_REG_CLIENT_MAX];
    A_UINT32 min_bw_6g_client_lpi[WMI_REG_CLIENT_MAX];
    A_UINT32 max_bw_6g_client_lpi[WMI_REG_CLIENT_MAX];
    A_UINT32 min_bw_6g_client_vlp[WMI_REG_CLIENT_MAX];
    A_UINT32 max_bw_6g_client_vlp[WMI_REG_CLIENT_MAX];
    A_UINT32 num_6g_reg_rules_ap_sp;
    A_UINT32 num_6g_reg_rules_ap_lpi;
    A_UINT32 num_6g_reg_rules_ap_vlp;
    A_UINT32 num_6g_reg_rules_client_sp[WMI_REG_CLIENT_MAX];
    A_UINT32 num_6g_reg_rules_client_lpi[WMI_REG_CLIENT_MAX];
    A_UINT32 num_6g_reg_rules_client_vlp[WMI_REG_CLIENT_MAX];
/*
 * This fixed_param TLV is followed by the following TLVs:
 *   - wmi_regulatory_rule_ext reg_rule_array[] struct TLV array.
 *     Within the reg rule ext TLV array, the 2G elements occur first,
 *     then the 5G elements, then the 6G elements (AP SG, AP LPI, AP VLP,
 *     client SP x4, client LPI x4, client vlp x4).
 *   - wmi_regulatory_chan_priority_struct reg_chan_priority[]
 *   - wmi_regulatory_fcc_rule_struct reg_fcc_rule[]
 */
} wmi_reg_chan_list_cc_event_ext_fixed_param;

/* WFA AFC Version */
#define WMI_AFC_WFA_MINOR_VERSION_GET(afc_wfa_version)             WMI_GET_BITS(afc_wfa_version, 0, 16)
#define WMI_AFC_WFA_MINOR_VERSION_SET(afc_wfa_version, value)      WMI_SET_BITS(afc_wfa_version, 0, 16, value)
#define WMI_AFC_WFA_MAJOR_VERSION_GET(afc_wfa_version)             WMI_GET_BITS(afc_wfa_version, 16, 16)
#define WMI_AFC_WFA_MAJOR_VERSION_SET(afc_wfa_version, value)      WMI_SET_BITS(afc_wfa_version, 16, 16, value)

/* avail_exp_time_d time is expected as YYYY-MM-DD */
#define WMI_AVAIL_EXPIRY_TIME_DAY_GET(avail_exp_time_d)             WMI_GET_BITS(avail_exp_time_d, 0, 8)
#define WMI_AVAIL_EXPIRY_TIME_DAY_SET(avail_exp_time_d, value)      WMI_SET_BITS(avail_exp_time_d, 0, 8, value)
#define WMI_AVAIL_EXPIRY_TIME_MONTH_GET(avail_exp_time_d)           WMI_GET_BITS(avail_exp_time_d, 8, 8)
#define WMI_AVAIL_EXPIRY_TIME_MONTH_SET(avail_exp_time_d, value)    WMI_SET_BITS(avail_exp_time_d, 8, 8, value)
#define WMI_AVAIL_EXPIRY_TIME_YEAR_GET(avail_exp_time_d)            WMI_GET_BITS(avail_exp_time_d, 16, 16)
#define WMI_AVAIL_EXPIRY_TIME_YEAR_SET(avail_exp_time_d, value)     WMI_SET_BITS(avail_exp_time_d, 16, 16, value)

/* avail_exp_time_t time is expected as HH-MM-SS */
#define WMI_AVAIL_EXPIRY_TIME_SEC_GET(avail_exp_time_t)             WMI_GET_BITS(avail_exp_time_t, 0, 8)
#define WMI_AVAIL_EXPIRY_TIME_SEC_SET(avail_exp_time_t, value)      WMI_SET_BITS(avail_exp_time_t, 0, 8, value)
#define WMI_AVAIL_EXPIRY_TIME_MINUTE_GET(avail_exp_time_t)          WMI_GET_BITS(avail_exp_time_t, 8, 8)
#define WMI_AVAIL_EXPIRY_TIME_MINUTE_SET(avail_exp_time_t, value)   WMI_SET_BITS(avail_exp_time_t, 8, 8, value)
#define WMI_AVAIL_EXPIRY_TIME_HOUR_GET(avail_exp_time_t)            WMI_GET_BITS(avail_exp_time_t, 16, 8)
#define WMI_AVAIL_EXPIRY_TIME_HOUR_SET(avail_exp_time_t, value)     WMI_SET_BITS(avail_exp_time_t, 16, 8, value)

typedef enum {
    /**
     * The following event type is mutually exclusive.
     * afc_event_type will indicate type of AFC event sent from FW to host.
     * 1. For sending Power Info WMI_AFC_EVENT_POWER_INFO event is used.
     * 2. For sending AFC expiry use WMI_AFC_EVENT_TIMER_EXPIRY
     * This type can be expanded in future as per requirements.
     */
    WMI_AFC_EVENT_POWER_INFO   = 1,
    WMI_AFC_EVENT_TIMER_EXPIRY = 2,
} WMI_AFC_EVENT_TYPE;

typedef enum {
    /**
     * The following afc_expiry_event_subtype is mutually exclusive
     * and is a part of expiry event.
     * 1. At boot up AFC expiry will contain AFC start.
     * 2. If AFC timer expires AFC_RENEW status code will be sent to host
     *    with expiry event.
     * 3. If AFC server is not responding to FW in specified time, FW will
     *    indicate host to switch to LPI.
     * 4. In SP mode, if AFC server is not responding to FW in
     *    specified time then FW will indicate host to stop TX since
     *    there are no lower power mode available.
     */
    WMI_AFC_EXPIRY_EVENT_START                    = 1,
    WMI_AFC_EXPIRY_EVENT_RENEW                    = 2,
    WMI_AFC_EXPIRY_EVENT_SWITCH_TO_LOW_POWER_MODE = 3,
        /* retain the deprecated old name as an alias for the new name */
        WMI_AFC_EXPIRY_EVENT_SWITCH_TO_LPI =
            WMI_AFC_EXPIRY_EVENT_SWITCH_TO_LOW_POWER_MODE,
    WMI_AFC_EXPIRY_EVENT_STOP_TX                  = 4,
} WMI_AFC_EXPIRY_EVENT_SUBTYPE;

typedef enum {
    /**
     * The following fw_status_code is mutually exclusive
     * and is used in power event.
     * 0. AFC power event is success.
     * 1. If Host does not indicate AFC indication cmd within certain time
     *    of AFC expiry FW_AFC_POWER_EVENT_RESP_NOT_RECEIVED will be used.
     * 2. If FW is not able to parse afc_info, parsing_failure will be
     *    indicated using WMI_FW_AFC_POWER_EVENT_RESP_NOT_RECEIVED.
     * 3. If due to some local reason AFC event is failed, AFC event failure
     *    is indicated using WMI_FW_AFC_POWER_EVENT_FAILURE.
     */
    WMI_FW_AFC_POWER_EVENT_SUCCESS              = 0,
    WMI_FW_AFC_POWER_EVENT_RESP_NOT_RECEIVED    = 1,
    WMI_FW_AFC_POWER_EVENT_RESP_PARSING_FAILURE = 2,
    WMI_FW_AFC_POWER_EVENT_FAILURE              = 3,
} WMI_FW_AFC_POWER_EVENT_STATUS_CODE;

typedef enum {
    /**
     * The following afc_server_resp_code is mutually exclusive.
     * This response code will be indicated to AFC server.
     * These codes are defined in WIFI spec doc for AFC as follows
     * -1: General Failure
     * 0:  Success
     * 100 - 199: General errors related to the protocol
     * 300 - 399: Error events specific to message exchange for the
     *            Available Spectrum Inquiry
     */
    WMI_AFC_SERV_RESP_GENERAL_FAILURE        = -1,
    WMI_AFC_SERV_RESP_SUCCESS                = 0,
    WMI_AFC_SERV_RESP_VERSION_NOT_SUPPORTED  = 100,
    WMI_AFC_SERV_RESP_DEVICE_UNALLOWED       = 101,
    WMI_AFC_SERV_RESP_MISSING_PARAM          = 102,
    WMI_AFC_SERV_RESP_INVALID_VALUE          = 103,
    WMI_AFC_SERV_RESP_UNEXPECTED_PARAM       = 106,
    WMI_AFC_SERV_RESP_UNSUPPORTED_SPECTRUM   = 300,
} WMI_AFC_SERV_RESP_CODE;

typedef struct {
    /** TLV tag and len;
     *  tag equals WMITLV_TAG_STRUC_wmi_afc_event_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 phy_id;
    A_UINT32 event_type; /* refer to WMI_AFC_EVENT_TYPE */

    /** This TLV is (optionally) followed by TLV and TLV arrays containing
     *  different afc_event:
     *  1.  wmi_afc_expiry_event_param expiry_evt;
     *      This TLV contains afc_expiry_event_param of fixed size.
     *  2.  wmi_reg_afc_power_event_param afc_power_event;
     *      This TLV contains afc_power_info_param of fixed size.
     *  3.  wmi_6g_afc_frequency_info freq_info[]
     *      This TLV array contains zero or more TLVs of freq_info,
     *      which contain freq range and PSD.
     *  4.  wmi_6g_afc_channel_info channel_info[]
     *      This TLV array contains zero or more TLVs of global_operating
     *      class and number of channel
     *      in each global operating class
     *  5.  wmi_afc_chan_eirp_power_info chan_eirp_power_info[]
     *      This TLV array contains zero or more TLVs of channel CFI and
     *      EIRP power values for each of the total number of channels
     *      per global operating class.
     */
} wmi_afc_event_fixed_param;

typedef struct {
    /** TLV tag and len;
     *  tag equals WMITLV_TAG_STRUC_wmi_afc_expiry_event_param.
     */
    A_UINT32 tlv_header;
    A_UINT32 request_id; /* AFC unique Request ID for AFC expiry event, This is Nonce generated by FW for freshness */
    A_UINT32 event_subtype; /* refer to WMI_AFC_EXPIRY_EVENT_SUBTYPE */
    A_UINT32 afc_wfa_version;    /* bits 15:0  -- minor version
                                  * bits 31:16 -- major version
                                  * WMI_AFC_WFA_MINOR_VERSION_GET &
                                  * WMI_AFC_WFA_MAJOR_VERSION_GET
                                  */
} wmi_afc_expiry_event_param;

typedef struct {
    /** TLV tag and len;
      *tag equals WMITLV_TAG_STRUC_wmi_afc_power_event_param */
    A_UINT32 tlv_header;
    A_UINT32 fw_status_code;     /* refer WMI_FW_AFC_POWER_EVENT_STATUS_CODE */
    A_UINT32 resp_id;            /* AFC unique response ID, in case of fw_status_code as WMI_FW_AFC_POWER_EVENT_RESP_PARSING_FAILURE resp id may be invalid. */
    A_INT32  afc_serv_resp_code; /* refer WMI_AFC_SERV_RESP_CODE, This field and following all fields are valid if fw_status_code is a success. */
    A_UINT32 afc_wfa_version;    /* bits 15:0  -- minor version
                                  * bits 31:16 -- major version
                                  * WMI_AFC_WFA_MINOR_VERSION_GET &
                                  * WMI_AFC_WFA_MAJOR_VERSION_GET
                                  */
    A_UINT32 avail_exp_time_d;   /* avail_exp_time_d and avail_exp_time_t are
                                  * in UTC
                                  * Availability expiry time date format:
                                  * YYYY-MM-DD,
                                  * bits 7:0 -DD - Day (expected values 1-31)
                                  * bits 15:8 -MM - Month (expected values 1-12)
                                  * bits 31:16 -YYYY - Year
                                  */
    A_UINT32 avail_exp_time_t;   /* Availability expiry time format HH-MM-SS
                                  * bits 7:0 -SS - Time in Sec (expected values 0-59)
                                  * bits 15:8 -MM - Minute (expected values 0-59)
                                  * bits 23:16 -HH - Hour (expected values 0-23)
                                  * bits 31:24 -reserved
                                  */
} wmi_afc_power_event_param;

typedef struct {
    /** TLV tag and len;
     * tag equals WMITLV_TAG_STRUC_wmi_6g_afc_frequency_info */
    A_UINT32  tlv_header;
    A_UINT32  freq_info;     /* bits 15:0  = u16 start_freq,
                              * bits 31:16 = u16 end_freq
                              * (both in MHz units)
                              * use MACRO as WMI_REG_RULE_START_FREQ_GET &
                              * WMI_REG_RULE_START_FREQ_SET
                              */
    A_INT32   psd_power_info; /* Maximum PSD in dBm/MHz, value is stored in 0.01 dBm/MHz steps */
} wmi_6g_afc_frequency_info;

typedef struct {
    /** TLV tag and len;
     * tag equals WMITLV_TAG_STRUC_wmi_6g_afc_channel_info  */
    A_UINT32  tlv_header;
    A_UINT32  global_operating_class;
    A_UINT32  num_channels; /* num of valid channels for above global operating class */
    /* This TLV will be followed by array of
     * num_channels times wmi_afc_chan_eirp_power_info
     * wmi_afc_chan_eirp_power_info power_info[]
     * EIRP power array has chunks of elements corresponding to each channel
     * in the channel array.
     * i.e. the EIRP power array will contain
     * (suppose N1 and N2 are number of valid channels from channel_info[0]
     * and channel_info[1] respectively)
     * eirp_power[0] power for channel 0 from channel_info[0]
     * eirp_power[1] power for channel 1 from channel_info[0]
     * ...
     * eirp_power[N1-1] power for channel N1-1 from channel_info[0]
     * eirp_power[N1] power for channel 0 from channel_info[1]
     * eirp_power[N1+1] power for channel 1 from channel_info[1]
     * ...
     * eirp_power[N1+N2-1] power for channel N2-1 channel_info[1]
     * ...
     */
} wmi_6g_afc_channel_info;

typedef struct {
    /** TLV tag and len;
     * tag equals WMITLV_TAG_STRUC_wmi_afc_chan_eirp_power_info */
    A_UINT32 tlv_header ;
    A_UINT32 channel_cfi; /* channel center frequency indices */
    A_UINT32 eirp_pwr;    /* maximum permissible EIRP available for above CFI in dBm, value is stored in 0.01 dBm steps */
} wmi_afc_chan_eirp_power_info;

typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_11d_scan_start_cmd_fixed_param */
    A_UINT32  vdev_id;
    A_UINT32  scan_period_msec;   /** scan duration in milli-seconds */
    A_UINT32  start_interval_msec; /** offset duration to start the scan in milli-seconds */
} wmi_11d_scan_start_cmd_fixed_param;

typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_11d_scan_stop_cmd_fixed_param */
    A_UINT32  vdev_id;
} wmi_11d_scan_stop_cmd_fixed_param;

/** FW indicating new current country code to Host */
typedef struct {
    A_UINT32  tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_11d_new_country_event_fixed_param */
    A_UINT32  new_alpha2; /** alpha2 characters representing the country code */
} wmi_11d_new_country_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_coex_get_antenna_isolation_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* Currently there are no parameters for this message. */
} wmi_coex_get_antenna_isolation_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_get_nfcal_power_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_get_nfcal_power_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_coex_report_isolation_event_fixed_param */
    A_UINT32 tlv_header;
    /** Antenna isolation value in dB units, none zero value is valid while 0 means failed to do isolation measurement or corresponding chain is not active.
     *  Currently the HW descriptor only supports 4 chains at most.
     *  Further isolation_chainX elements can be added in the future
     *  for additional chains, if needed.
     */
    A_UINT32 isolation_chain0:8, /* [7:0],   isolation value for chain 0 */
             isolation_chain1:8, /* [15:8],  isolation value for chain 1 */
             isolation_chain2:8, /* [23:16], isolation value for chain 2 */
             isolation_chain3:8; /* [31:24], isolation value for chain 3 */
} wmi_coex_report_isolation_event_fixed_param;

typedef enum {
    WMI_COEX_DBAM_COMP_SUCCESS          = 0, /* success, mode is applied */
    WMI_COEX_DBAM_COMP_ONGOING          = 1, /* success, mode is applied */
    WMI_COEX_DBAM_COMP_DELAYED          = 2, /* DBAM is delayed and TDD is selected temporarily */
    WMI_COEX_DBAM_COMP_NOT_SUPPORT      = 3, /* DBAM is not supported */
    WMI_COEX_DBAM_COMP_TEST_MODE        = 4, /* ignore due to test mode */
    WMI_COEX_DBAM_COMP_INVALID_PARAM    = 5, /* invalid parameter is received */
    WMI_COEX_DBAM_COMP_FAIL             = 6, /* command failed */
} wmi_coex_dbam_comp_status;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_coex_dbam_complete_event_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 comp_status;    /* wmi_coex_dbam_comp_status */
} wmi_coex_dbam_complete_event_fixed_param;

typedef enum wmi_tas_power_history_event_type {
    WMI_TAS_POWER_HISTORY_EVENT_SAVE_FAILURE  = 0, /* Power history save fail, it will caused by: TAS Feature Not enable or get remote address fail */
    WMI_TAS_POWER_HISTORY_EVENT_SAVE_COMPLETE = 1, /* Power history save complete */
} WMI_TAS_POWER_HISTORY_EVENT_TYPE;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tas_power_history_event_fixed_param */
    A_UINT32    tlv_header;
    A_UINT32    sub_type;     /* refer to WMI_TAS_POWER_HISTORY_EVENT_TYPE */
} wmi_tas_power_history_event_fixed_param;

typedef enum {
    WMI_RCPI_MEASUREMENT_TYPE_AVG_MGMT  = 1,
    WMI_RCPI_MEASUREMENT_TYPE_AVG_DATA  = 2,
    WMI_RCPI_MEASUREMENT_TYPE_LAST_MGMT = 3,
    WMI_RCPI_MEASUREMENT_TYPE_LAST_DATA = 4,
} wmi_rcpi_measurement_type;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_rcpi_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* measurement type - defined in enum wmi_rcpi_measurement_type */
    A_UINT32 measurement_type;
} wmi_request_rcpi_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_update_rcpi_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* measurement type - defined in enum wmi_rcpi_measurement_type */
    A_UINT32 measurement_type;
    /* Measured RCPI in dBm of the peer requested by host */
    A_INT32 rcpi;
    /** status
     *  0 - Requested peer RCPI available
     *  1 - Requested peer RCPI not available
     */
    A_UINT32 status;
} wmi_update_rcpi_event_fixed_param;

/* Definition of mask for various package id */
#define WMI_PKGID_MASK_AUTO 0x00000080

typedef struct {
    /** TLV tag and len; tag equals*/
    A_UINT32 tlv_header;
    /**
     * The value field is filled with WMI_PKGID_MASK values.
     * Currently, the only flag used within values is
     * WMI_PKGID_MASK_AUTO, where bit7=1 for automotive systems.
     */
    A_UINT32 value;
} wmi_pkgid_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_add_mac_addr_to_rx_filter_cmd_fixed_params */
    A_UINT32 vdev_id; /* vdev id whose mac to be randomized */
    /* enable is set to 1 if mac randomization to be enabled */
    A_UINT32 enable;
    /* randomization mac address if randomization is enabled */
    wmi_mac_addr mac_addr;
    /* To get the PMAC from freq param */
    A_UINT32 freq;  /* units in MHz */
} wmi_vdev_add_mac_addr_to_rx_filter_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_add_mac_addr_to_rx_filter_event_fixed_params */
    A_UINT32 vdev_id; /* vdev of id whose mac address was randomized */
    A_UINT32 status; /* status is 1 if success and 0 if failed */
} wmi_vdev_add_mac_addr_to_rx_filter_status_event_fixed_param;

/* Definition of HW data filtering */
typedef enum {
    WMI_HW_DATA_FILTER_DROP_NON_ARP_BC = 0x01,
    WMI_HW_DATA_FILTER_DROP_NON_ICMPV6_MC = 0x02,
} WMI_HW_DATA_FILTER_BITMAP_TYPE;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 enable;  /* 1 . enable, 0- disable */
    A_UINT32 hw_filter_bitmap; /* see WMI_HW_DATA_FILTER_BITMAP_TYPE */
} wmi_hw_data_filter_cmd_fixed_param;

/** values for multiple_vdev_restart_request flags */
/* Host is expecting consolidated Multiple Vdev Restart Response(MVRR) event. */
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_IS_MVRR_EVENT_SUPPORT(flag)  WMI_GET_BITS(flag, 0, 1)
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_MVRR_EVENT_SUPPORT(flag,val)  WMI_SET_BITS(flag, 0, 1, val)
/* Host is sending phymode_list for each vdev. */
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_IS_PHYMODE_PRESENT(flag)  WMI_GET_BITS(flag, 1, 1)
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_PHYMODE_PRESENT(flag,val)  WMI_SET_BITS(flag, 1, 1, val)
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_GET_PHYMODE(phymode) WMI_GET_BITS(phymode, 0, 6)
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_PHYMODE(phymode, val) WMI_SET_BITS(phymode, 0, 6, val)

/** Indicates that VDEV ID is in bit-map format
 *  If this flag is set, FW will determine the vdev IDs from the positions
 *  of the bits that are set, and use these vdev IDs for vdev restart.
 *
 *  This flag should not be set from host unless FW has set the service bit
 *  WMI_SERVICE_MULTIPLE_VDEV_RESTART_BITMAP_SUPPORT to indicate it supports
 *  this interpretation of the vdev IDs as a bitmap.
 *
 *  If this flag is set then below is the way it will be parsed
 *  vdev_ids[0] = 53 (0011 0101) -> indicates vdev 0,2,4,5 is set
 *  vdev_ids[1] = 53 (0000 0101) -> indicates vdev 32,34 is set
 *  similar to this the value can be extended in feature for more vdev's
 *
 *  If flag is not se then default parsing will be as below
 *  vdev_ids[0] = 0
 *  vdev_ids[1] = 2
 *  vdev_ids[2] = 4
 *  .
 *  .
 *  vdev_ids[5] = 34
 */
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_BITMAP_SUPPORT(flag)  WMI_GET_BITS(flag, 2, 1)
#define WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_BITMAP_SUPPORT(flag,val)  WMI_SET_BITS(flag, 2, 1, val)


/* This command is used whenever host wants to restart multiple
 * VDEVs using single command and the VDEV that are restarted will
 * need to have same properties they had before restart except for the
 * operating channel
 */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /** unique id identifying the module, generated by the caller */
    A_UINT32 requestor_id;
    /** Disable H/W ack.
     * During CAC, Our HW shouldn't ack directed frames
     */
    A_UINT32 disable_hw_ack;
    /* Determine the duration of CAC on the given channel 'chan' */
    A_UINT32 cac_duration_ms;
    A_UINT32 num_vdevs;
    /*
     * Flags to indicate which parameters are sent as part of the request.
     * This field is filled with the bitwise combination of the flag values
     * defined by WMI_MULTIPLE_VDEV_RESTART_FLAG_xxx
     */
    A_UINT32 flags;
    A_UINT32 puncture_20mhz_bitmap; /* each bit indicates one 20 MHz BW punctured */

    /* The TLVs follows this structure:
     * A_UINT32 vdev_ids[]; <--- Array of vdev IDs, or bitmap of vdev IDs
     *     In flags if WMI_MULTIPLE_VDEV_RESTART_FLAG_BITMAP_SUPPORT is set
     *     FW will interpret the vdev_ids values as a bitmap, and will use the
     *     position of all the bits set within the bitmap to determine the
     *     vdev IDs to use for vdev restart.
     *     If this flag is set then below is the way it will be parsed
     *         vdev_ids[0] = 53 (0011 0101) -> indicates vdev 0,2,4,5 is set
     *         vdev_ids[1] = 53 (0000 0101) -> indicates vdev 32,34 is set
     *         The array can be extended in feature for more vdevs.
     *     If this flag is not se then default parsing will be as below
     *         vdev_ids[0] = 0
     *         vdev_ids[1] = 2
     *         vdev_ids[2] = 4
     *         .
     *         .
     *         vdev_ids[5] = 34
     * wmi_channel chan; <------ WMI channel
     * A_UINT32 phymode_list[]; <-- Array of Phymode list, with
     *    each phymode value stored in bits 5:0 of the A_UINT32.
     *    Use the WMI_MULTIPLE_VDEV_RESTART_FLAG_GET/SET_PHYMODE macros
     *    to access the phymode value from within each A_UINT32 element.
     * A_UINT32 preferred_tx_streams[]; <-- Array of preferred_tx_streams
     *    with vdev ID as index.
     * A_UINT32 preferred_rx_streams[]; <-- Array of preferred_rx_streams
     *    with vdev ID as index.
     */
} wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_csa_switch_count_status_event_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /** CSA switch count value in the last transmitted beacon */
    A_UINT32 current_switch_count;
    A_UINT32 num_vdevs;

    /* The TLVs follows this structure:
     * A_UINT32 vdev_ids[]; <--- Array of VDEV ids.
     */
} wmi_pdev_csa_switch_count_status_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_csc_vdev_list */
    A_UINT32 vdev_id;
    A_UINT32 current_switch_count; /** CSC switch count value in the last transmitted beacon */
} wmi_csc_vdev_list;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_csc_switch_count_status_event_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /** CSC switch count value in the last transmitted beacon */
    A_UINT32 current_switch_count;

    /* The TLVs follows this structure:
     * struct wmi_csc_vdev_list vdev_info[]; // IDs of vdevs and their current switch countdown values
     */
} wmi_pdev_csc_switch_count_status_event_fixed_param;

/* Operation types for packet routing command */
typedef enum {
    WMI_PDEV_ADD_PKT_ROUTING,
    WMI_PDEV_DEL_PKT_ROUTING,
} wmi_pdev_pkt_routing_op_code;

/* Packet routing types based on specific data types */
typedef enum {
    WMI_PDEV_ROUTING_TYPE_ARP_IPV4,
    WMI_PDEV_ROUTING_TYPE_NS_IPV6,
    WMI_PDEV_ROUTING_TYPE_IGMP_IPV4,
    WMI_PDEV_ROUTING_TYPE_MLD_IPV6,
    WMI_PDEV_ROUTING_TYPE_DHCP_IPV4,
    WMI_PDEV_ROUTING_TYPE_DHCP_IPV6,
    WMI_PDEV_ROUTING_TYPE_DNS_TCP_IPV4,
    WMI_PDEV_ROUTING_TYPE_DNS_TCP_IPV6,
    WMI_PDEV_ROUTING_TYPE_DNS_UDP_IPV4,
    WMI_PDEV_ROUTING_TYPE_DNS_UDP_IPV6,
    WMI_PDEV_ROUTING_TYPE_ICMP_IPV4,
    WMI_PDEV_ROUTING_TYPE_ICMP_IPV6,
    WMI_PDEV_ROUTING_TYPE_TCP_IPV4,
    WMI_PDEV_ROUTING_TYPE_TCP_IPV6,
    WMI_PDEV_ROUTING_TYPE_UDP_IPV4,
    WMI_PDEV_ROUTING_TYPE_UDP_IPV6,
    WMI_PDEV_ROUTING_TYPE_IPV4,
    WMI_PDEV_ROUTING_TYPE_IPV6,
    WMI_PDEV_ROUTING_TYPE_EAP,
    WMI_PDEV_ROUTING_TYPE_VLAN,
} wmi_pdev_pkt_routing_type;

typedef enum {
    WMI_PDEV_WIFIRXCCE_USE_CCE_E  = 0,
    WMI_PDEV_WIFIRXCCE_USE_ASPT_E = 1,
    WMI_PDEV_WIFIRXCCE_USE_FT_E   = 2,
    WMI_PDEV_WIFIRXCCE_USE_CCE2_E = 3,
} wmi_pdev_dest_ring_handler_type;

/* This command shall be sent only when no VDEV is up. If the command is sent after any VDEV is up, target will ignore the command */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_update_pkt_routing_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Identifies pdev on which routing needs to be applied */
    A_UINT32 pdev_id;
    /** Indicates the routing operation type: add/delete */
    A_UINT32 op_code; /* wmi_pdev_pkt_routing_op_code */
    /** Bitmap of multiple pkt routing types for a given destination ring and meta data */
    A_UINT32 routing_type_bitmap; /* see wmi_pdev_pkt_routing_type */
    /** 5 bits [4:0] are used to specify the destination ring where the CCE matched
      * packet needs to be routed.
      */
    A_UINT32 dest_ring;
    /** 16 bits [15:0] meta data can be passed to CCE. When the superrule matches,
      * CCE copies this back in RX_MSDU_END_TLV.
      */
    A_UINT32 meta_data;
    /**
     * Indicates the dest ring handler type: CCE, APST, FT, CCE2
     * Refer to wmi_pdev_dest_ring_handler_type / WMI_PDEV_WIFIRXCCE_USE_xxx
     */
    A_UINT32 dest_ring_handler;
} wmi_pdev_update_pkt_routing_cmd_fixed_param;

typedef enum {
    WMI_CALIBRATION_NO_FEATURE = 0, /* The board was calibrated with a meta which did not have this feature */
    WMI_CALIBRATION_OK,             /* The calibration status is OK */
    WMI_CALIBRATION_NOT_OK,         /* The calibration status is NOT OK */
} WMI_CALIBRATION_STATUS;

#define WMI_BOARD_MCN_STRING_MAX_SIZE 19

/**
 * WMI_BOARD_MCN_STRING_BUF_SIZE : represents the number of elements in board_mcn_detail.
 * Since board_mcn_detail is of type A_UINT8, the value of WMI_BOARD_MCN_STRING_BUF_SIZE
 * should be multiple of 4 for alignment reason. And the last byte byte is reserved for
 * null-terminator
 */
#define WMI_BOARD_MCN_STRING_BUF_SIZE (WMI_BOARD_MCN_STRING_MAX_SIZE+1) /* null-terminator */

typedef struct {
    A_UINT32 tlv_header;            /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_check_cal_version_event_fixed_param  */
    A_UINT32 software_cal_version;  /* Current software level calibration data version */
    A_UINT32 board_cal_version;     /* Calibration data version programmed on chip */
    A_UINT32 cal_status;            /* filled with WMI_CALIBRATION_STATUS enum value */

    /* board_mcn_detail:
     * Provides board's MCN (Material Control Number) information for the host
     * to display. This is used to track the Hardware level revisions/versions.
     * This array carries the ASCII values of the MCN to the host. And host
     * would just print this in a string format whenever user requests.
     * Note: On a big-endian host, the 4 bytes within each A_UINT32 portion
     * of a WMI message will be automatically byteswapped by the copy engine
     * as the messages are transferred between host and target, to convert
     * between the target's little-endianness and the host's big-endianness.
     * Consequently, a big-endian host will have to manually unswap the bytes
     * within the board_mcn_detail string buffer to get the bytes back into
     * the desired natural order.
     */
    A_UINT8 board_mcn_detail[WMI_BOARD_MCN_STRING_BUF_SIZE];
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_check_cal_version_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_check_cal_version_cmd_fixed_param */
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     */
    A_UINT32 pdev_id;
} wmi_pdev_check_cal_version_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_diversity_gain_cmd_fixed_param */
    /** Identifies pdev on which diversity gain to be applied */
    A_UINT32 pdev_id;
    /** The number of spatial stream */
    A_UINT32 nss;
    /** The number of gains */
    A_UINT32 num_gains;
    /*
     * This fixed_param TLV is followed by other TLVs:
     *    A_UINT8 diversity_gains[num_gains]; (gain is in dB units)
     */
} wmi_pdev_set_diversity_gain_cmd_fixed_param;

/* flags for unit_test_event  */
#define WMI_UNIT_TEST_EVENT_FLAG_STATUS         0   /* 0 = success, 1 = fail */
#define WMI_UNIT_TEST_EVENT_FLAG_DONE           1   /* 0 = not done, 1 = done  */

/* from bit 2 to bit 31 are reserved */

#define WMI_SET_UNIT_TEST_EVENT_FLAG_STATUS_SUCCESS(flag) do { \
        (flag) |= (1 << WMI_UNIT_TEST_EVENT_FLAG_STATUS); \
     } while (0)

#define WMI_SET_UNIT_TEST_EVENT_FLAG_STATUS_FAIL(flag) do { \
        (flag) &= ~(1 << WMI_UNIT_TEST_EVENT_FLAG_STATUS); \
     } while (0)

#define WMI_GET_UNIT_TEST_EVENT_FLAG_STSTUS(flag) \
        ((flag) & (1 << WMI_UNIT_TEST_EVENT_FLAG_STATUS))

#define WMI_SET_UNIT_TEST_EVENT_FLAG_DONE(flag) do { \
        (flag) |= (1 << WMI_UNIT_TEST_EVENT_FLAG_DONE); \
     } while (0)

#define WMI_CLR_UNIT_TEST_EVENT_FLAG_DONE(flag) do { \
        (flag) &= ~(1 << WMI_UNIT_TEST_EVENT_FLAG_DONE); \
     } while (0)

#define WMI_GET_UNIT_TEST_EVENT_FLAG_DONE(flag) \
        ((flag) & (1 << WMI_UNIT_TEST_EVENT_FLAG_DONE))

typedef struct {
    /* TLV tag and len; tag equals WMI_UNIT_TEST_EVENTID */
    A_UINT32 tlv_header;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* Identify the wlan module */
    A_UINT32 module_id;
    /* unique id identifying the unit test cmd, generated by the caller */
    A_UINT32 diag_token;
    /* flag for the status of the unit_test_cmd */
    A_UINT32 flag;
    /* data length number of bytes for current dump */
    A_UINT32 payload_len;
    /* TLV/Payload after this structure is sent in little endian
     * format for the length mentioned in this structure.
     * A_UINT8 payload[1];
     */
} wmi_unit_test_event_fixed_param;

/* Definition of latency levels */
typedef enum {
    WMI_WLM_LL_NORMAL = 0x0,
    /* DEPRECATED */ WMI_WLM_LL_MODERATE = 0x1,
    WMI_WLM_LL_XR = 0x1,
    WMI_WLM_LL_LOW = 0x2,
    WMI_WLM_LL_ULTRA_LOW = 0x3,
} WMI_WLM_LATENCY_LEVEL;

typedef struct {
    A_UINT32 tlv_header; /* WMITLV_TAG_STRUC_wmi_vdev_latency_event_fixed_param */
    /** The latency level for specified vdev_id */
    A_UINT32 vdev_id;
    /** latency level enum WMI_WLM_LATENCY_LEVEL honored by FW */
    A_UINT32 latency_level;
} wmi_vdev_latency_event_fixed_param;

/*
* Lay out of flags in wmi_wlm_config_cmd_fixed_param
*
* |31 19|  18 | 17|16 14| 13 | 12| 11 | 10 |  9  |  8 |7  6|5  4|3  2| 1 | 0 |
* +-----+-----+---+-----+----+---+----+----+-----+----+----+----+----+---+---+
* | RSVD|SRATE|RTS| NSS |EDCA|TRY|SSLP|CSLP|DBMPS|RSVD|Roam|RSVD|DWLT|DFS|SUP|
* +------------------------------+---------------+---------+-----------------+
* |              WAL             |    PS         |  Roam   |     Scan        |
*
* Flag values:
*     TRY: (1) enable short limit for retrying unacked tx, where the limit is
*              based on the traffic's latency level
*          (0) default tx retry behavior
*    EDCA: (1) Apply VO parameters on BE
*          (0) default behavior
*     NSS: (0) no Nss limits, other than those negotiatied during association
*          (1) during 2-chain operation, tx only a single spatial stream
*          (2) - (7) reserved / invalid
*     RTS: (0) default protection
*          (1) always enable RTS/CTS protection
*   SRATE: (0) default secondary rate policy
*          (1) disable secondary rate
*/
/* bit 0-3 of flags is used for scan operation */
/* bit 0: Avoid scan request from HLOS if bit is set */

#define WLM_FLAGS_SCAN_SUPPRESS  1  /* suppress all scan request */

/* bit 1: WLM_FLAGS_SCAN_SKIP_DFS, skip dfs channel if bit is set */

#define WLM_FLAGS_SCAN_SKIP_DFS  1  /* skip dfs channel operation */

/* bit 2-3: define policy of dwell time/duration of each foreign channel
   (b3 b2)
   (0  0 ): Default dwell time
   (0  1 ): WLM_FLAGS_STICK_SCAN_DWELL_TIME : Stick to original active/passive dwell time, but split
   foreign channel dwell times into fitting into min (dl_latency, ul_latency). Note it can increase
   overall scan duration.
   (1  0 ): WLM_FLAGS_SHRINK_SCAN_DWELL_TIME: Shrink active/passive dwell time to
   min(dl_latency, ul_latency, dwell_time). It may reduce overall scan duration, but it may decrease
   the accuracy of scan result.
   (1  1 ): reserved
*/
#define WLM_FLAGS_DEFAULT_SCAN_DWELL_TIME   0 /* Default scan dwell time */
#define WLM_FLAGS_STICK_SCAN_DWELL_TIME     1 /* Shrink off channel time but extend overall scan duration */
#define WLM_FLAGS_SHRINK_SCAN_DWELL_TIME    2 /* Shrink scan off channel time */

/* bit 4-5: reserved for scan */

/* bit 6-7 of flags is used for roaming operation */
/* bit 6-7: define roaming policy:
   (b7 b6)
   (0  0 ): WLM_FLAGS_ROAM_ALLOW: Default behavior, allow roaming in all scenarios
   (0  1 ): WLM_FLAGS_ROAM_SUPPRESS: Disallow all roaming
   (1  0 ): WLM_FLAGS_ALLOW_FINAL_BMISS_ROAM: Allow final bmiss roaming only
   (1  1 ): reserved
*/
#define WLM_FLAGS_ROAM_ALLOW     0
#define WLM_FLAGS_ROAM_SUPPRESS  1
#define WLM_FLAGS_ALLOW_FINAL_BMISS_ROAM 2

/* bit 8: reserved for roaming */

/* bit 9-11 of flags is used for powersave operation */
/* bit 9: WLM_FLAGS_PS_DISABLE_BMPS, disable BMPS if bit is set */

#define WLM_FLAGS_PS_DISABLE_BMPS 1 /* disable BMPS */

/* bit 10: WLM_FLAGS_PS_DISABLE_CSS_COLLAPSE, disable css power collapse if bit is set */

#define WLM_FLAGS_PS_DISABLE_CSS_COLLAPSE  1  /* disable css power collapse */

/* bit 11: WLM_FLAGS_PS_DISABLE_SYS_SLEEP, disable sys sleep if bit is set */

#define WLM_FLAGS_PS_DISABLE_SYS_SLEEP  1  /* disable sys sleep */


/* bit 17-31 of flags is reserved for powersave and WAL */

#define WLM_FLAGS_SCAN_IS_SUPPRESS(flag)                  WMI_GET_BITS(flag, 0, 1)
#define WLM_FLAGS_SCAN_SET_SUPPRESS(flag, val)            WMI_SET_BITS(flag, 0, 1, val)
#define WLM_FLAGS_SCAN_IS_SKIP_DFS(flag)                  WMI_GET_BITS(flag, 1, 1)
#define WLM_FLAGS_SCAN_SET_SKIP_DFS(flag, val)            WMI_SET_BITS(flag, 1, 1, val)
#define WLM_FLAGS_SCAN_GET_DWELL_TIME_POLICY(flag)        WMI_GET_BITS(flag, 2, 2)
#define WLM_FLAGS_SCAN_SET_DWELL_TIME_POLICY(flag, val)   WMI_SET_BITS(flag, 2, 2, val)
#define WLM_FLAGS_TSF_LATENCY_COMPENSATE_ENABLED_GET(flag) WMI_GET_BITS(flag, 4, 1)
#define WLM_FLAGS_TSF_LATENCY_COMPENSATE_ENABLED_SET(flag) WMI_SET_BITS(flag, 4, 1, val)
#define WLM_FLAGS_ROAM_GET_POLICY(flag)                   WMI_GET_BITS(flag, 6, 2)
#define WLM_FLAGS_ROAM_SET_POLICY(flag, val)              WMI_SET_BITS(flag, 6, 2, val)
#define WLM_FLAGS_PS_IS_BMPS_DISABLED(flag)               WMI_GET_BITS(flag, 9, 1)
#define WLM_FLAGS_PS_IS_CSS_CLPS_DISABLED(flag)           WMI_GET_BITS(flag, 10, 1)
#define WLM_FLAGS_PS_SET_CSS_CLPS_DISABLE(flag, val)      WMI_SET_BITS(flag, 10, 1, val)
#define WLM_FLAGS_PS_IS_SYS_SLP_DISABLED(flag)            WMI_GET_BITS(flag, 11, 1)
#define WLM_FLAGS_PS_SET_SYS_SLP_DISABLE(flag, val)       WMI_SET_BITS(flag, 11, 1, val)
#define WLM_FLAGS_WAL_LIMIT_TRY_ENABLED(flag)             WMI_GET_BITS(flag, 12, 1)
#define WLM_FLAGS_WAL_LIMIT_TRY_SET(flag, val)            WMI_SET_BITS(flag, 12, 1, val)
#define WLM_FLAGS_WAL_ADJUST_EDCA_ENABLED(flag)           WMI_GET_BITS(flag, 13, 1)
#define WLM_FLAGS_WAL_ADJUST_EDCA_SET(flag, val)          WMI_SET_BITS(flag, 13, 1, val)
#define WLM_FLAGS_WAL_1NSS_ENABLED(flag)                 (WMI_GET_BITS(flag, 14, 3) & 0x1)
#define WLM_FLAGS_WAL_NSS_SET(flag, val)                  WMI_SET_BITS(flag, 14, 3, val)
#define WLM_FLAGS_WAL_ALWAYS_RTS_PROTECTION(flag)         WMI_GET_BITS(flag, 17, 1)
#define WLM_FLAGS_WAL_RTS_PROTECTION_SET(flag, val)       WMI_SET_BITS(flag, 17, 1, val)
#define WLM_FLAGS_WAL_DISABLE_SECONDARY_RATE(flag)        WMI_GET_BITS(flag, 18, 1)
#define WLM_FLAGS_WAL_SECONDARY_RATE_SET(flag, val)       WMI_SET_BITS(flag, 18, 1, val)
#define WLM_FLAGS_PS_IS_PCIE_L11_ENABLED(flag)            WMI_GET_BITS(flag, 19, 1)
#define WLM_FLAGS_PS_SET_PCIE_L11_ENABLE(flag, val)       WMI_SET_BITS(flag, 19, 1, val)
#define WLM_FLAGS_PS_IS_PHYRF_PS_ENABLED(flag)            WMI_GET_BITS(flag, 20, 1)
#define WLM_FLAGS_PS_SET_PHYRF_PS_ENABLE(flag, val)       WMI_SET_BITS(flag, 20, 1, val)
#define WLM_FLAGS_SCAN_IS_SPLIT_PAS_CH_ENABLED(flag)      WMI_GET_BITS(flag, 21, 1)
#define WLM_FLAGS_SCAN_SET_SPLIT_PAS_CH_ENABLE(flag, val) WMI_SET_BITS(flag, 21, 1, val)
#define WLM_FLAGS_SCAN_IS_ADAPT_SCAN_ENABLED(flag)        WMI_GET_BITS(flag, 22, 1)
#define WLM_FLAGS_SCAN_SET_ADAPT_SCAN_ENABLE(flag, val)   WMI_SET_BITS(flag, 22, 1, val)
#define WLM_FLAGS_SET_FORCE_DEFAULT_LATENCY(flag, val)    WMI_SET_BITS(flag, 0, 1, val)
#define WLM_FLAGS_GET_FORCE_DEFAULT_LATENCY(flag)         WMI_GET_BITS(flag, 0, 1)

#define WLM_MAX_HOST_CLIENTS 5

typedef struct {
    /** TLV tag and len; tag equals WMI_WLM_CONFIG_CMD_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /*
     * Refer to WMI_WLM_LATENCY_LEVEL
     * Once latency change detected, WLM will notify modules e.g. STAPS or SCAN/ROAM,
     * who subscribed this event. And subscribers, like SCAN, may disable/cutoff offchan
     * operation to support lower latency of WLAN.
     */
    A_UINT32 latency_level;
    /*
     * represent uplink latency in ms
     * This parameter will be used by STAPS module to decide timing parameters, like
     * ITO or SPEC wakeup interval. For SCAN/ROAM, it may used to calculate offchan
     * durations.
     * For host and FW with multi client LL feature enabled, this field is obsolete.
     */
    A_UINT32 ul_latency;
    /*
     * represent downlink latency in ms
     * Similar usage as ul_latency
     * For host and FW with multi client LL feature enabled, this field is obsolete.
     */
    A_UINT32 dl_latency;
    /*
     * flags for each client of WLM, refer to WLM_FLAGS_ definitions above.
     * For host and FW with multi client LL feature enabled, this field is obsolete.
     */
    A_UINT32 flags;
    /*
     * bit 0 used as force reset:
     * to override the latency level as default
     * for all the wlm clients
     */
    A_UINT32 flags_ext;
    /*
     * clients of WLM Arbiter
     * WLM_MAX_HOST_CLIENTS 5
     */
    A_UINT32 client_id_bitmask;
} wmi_wlm_config_cmd_fixed_param;

/* Broadcast TWT enable/disable for both REQUESTER and RESPONDER */
#define TWT_EN_DIS_FLAGS_GET_BTWT(flag)         WMI_GET_BITS(flag, 0, 1)
#define TWT_EN_DIS_FLAGS_SET_BTWT(flag, val)    WMI_SET_BITS(flag, 0, 1, val)

/* legacy MBSSID enable/disable */
#define TWT_EN_DIS_FLAGS_GET_L_MBSSID(flag)       WMI_GET_BITS(flag, 1, 1)
#define TWT_EN_DIS_FLAGS_SET_L_MBSSID(flag, val)  WMI_SET_BITS(flag, 1, 1, val)

/* 11ax MBSSID enable/disable */
#define TWT_EN_DIS_FLAGS_GET_AX_MBSSID(flag)      WMI_GET_BITS(flag, 2, 1)
#define TWT_EN_DIS_FLAGS_SET_AX_MBSSID(flag, val) WMI_SET_BITS(flag, 2, 1, val)

/* Configuration of TWT Modes,
 * If this BIT is set BIT4/5 will be used in FW, else BIT4/5 will be ignored.
 * Which means when we receive WMI_TWT_ENABLE_CMDID command from host,
 * without BIT3 set we will enable both REQUESTER/RESPONDER.
 *
 * Same interpretation is used in WMI_TWT_DISABLE_CMDID, if BIT3 is not set
 * we will disable both REQUESTER and RESPONDER.
 */
#define TWT_EN_DIS_FLAGS_GET_SPLIT_CONFIG(flag)      WMI_GET_BITS(flag, 3, 1)
#define TWT_EN_DIS_FLAGS_SET_SPLIT_CONFIG(flag, val) WMI_SET_BITS(flag, 3, 1, val)

/*
 * The flags are used both in WMI_TWT_ENABLE_CMDID and WMI_TWT_DISABLE_CMDID.
 *
 * BIT4 represents whether the it is for REQUESTER or RESPONDER.
 * BIT5 represents whether it is individual or broadcast mode.
 *
 * For instance, in WMI_TWT_ENABLE_CMDID if BIT4=0 and BIT5=0, then we will
 * enable only Requester, we will not change any configuration of RESPONDER.
 *
 * Same way in WMI_TWT_DISABLE_CMDID if BIT4=0 and BIT5=0, then we will only
 * disable Individual and Broadcast REQUESTER, we will not alter any RESPONDER
 * configuration.
 *
 * If host is enabling or disabling both REQUESTER and RESPONDER host will
 * send two WMI commands, one for REQUESTER and one for RESPONDER.
 *
 * WMI_TWT_ENABLE_CMDID command flags description,
 * |----------------------------------------------------------------------|
 * |BIT4=0, BIT5=0  | Enable Individual TWT requester                     |
 * |----------------------------------------------------------------------|
 * |BIT4=0, BIT5=1  | Enable both Individual and Broadcast TWT requester  |
 * |----------------------------------------------------------------------|
 * |BIT4=1, BIT5=0  | Enable Individual TWT responder                     |
 * |----------------------------------------------------------------------|
 * |BIT4=1, BIT5=1  | Enable both Individual and Broadcast TWT responder  |
 * |----------------------------------------------------------------------|
 *
 *
 * WMI_TWT_DISABLE_CMDID command flags description,
 * |----------------------------------------------------------------------|
 * |BIT4=0, BIT5=0  | Disable both Individual and Broadcast TWT requester |
 * |----------------------------------------------------------------------|
 * |BIT4=0, BIT5=1  | Disable Broadcast TWT requester                     |
 * |----------------------------------------------------------------------|
 * |BIT4=1, BIT5=0  | Disable both Individual and broadcast TWT responder |
 * |----------------------------------------------------------------------|
 * |BIT4=1, BIT5=1  | Disable Broadcast TWT responder                     |
 * |----------------------------------------------------------------------|
 *
 * If user has enabled only individual requester at any point and after
 * sometime if user wants to enable broadcast requester then user cannot
 * directly send another WMI_TWT_ENABLE_CMDID with broadcast configuration,
 * user has to disable TWT requester first and then enable both individual
 * requester and broadcast requester. Same way for RESPONDER.
 *
 */
/* 0: requester; 1: responder */
#define TWT_EN_DIS_FLAGS_GET_REQ_RESP(flag)      WMI_GET_BITS(flag, 4, 1)
#define TWT_EN_DIS_FLAGS_SET_REQ_RESP(flag, val) WMI_SET_BITS(flag, 4, 1, val)

/* 0: iTWT; 1: bTWT */
#define TWT_EN_DIS_FLAGS_GET_I_B_TWT(flag)      WMI_GET_BITS(flag, 5, 1)
#define TWT_EN_DIS_FLAGS_SET_I_B_TWT(flag, val) WMI_SET_BITS(flag, 5, 1, val)

/* 0: bTWT; 1: rTWT */
#define TWT_EN_DIS_FLAGS_GET_B_R_TWT(flag)      WMI_GET_BITS(flag, 6, 1)
#define TWT_EN_DIS_FLAGS_SET_B_R_TWT(flag, val) WMI_SET_BITS(flag, 6, 1, val)

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_enable_cmd_fixed_param  */
    /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    A_UINT32 sta_cong_timer_ms;     /* STA TWT congestion timer TO value in terms of ms */
    A_UINT32 mbss_support;          /* Reserved */
    A_UINT32 default_slot_size;              /* This is the default value for the TWT slot setup by AP (units = microseconds) */
    A_UINT32 congestion_thresh_setup;        /* Minimum congestion required to start setting up TWT sessions */
    /*
     * The congestion parameters below are in percent of occupied airtime.
     */
    A_UINT32 congestion_thresh_teardown;     /* Minimum congestion below which TWT will be torn down */
    A_UINT32 congestion_thresh_critical;     /* Threshold above which TWT will not be active */
    /*
     * The interference parameters below use an abstract method of evaluating
     * interference.  The parameters are in percent, ranging from 0 for no
     * interference, to 100 for interference extreme enough to completely
     * block the signal of interest.
     */
    A_UINT32 interference_thresh_teardown;   /* Minimum interference above that TWT will not be active */
    A_UINT32 interference_thresh_setup;      /* Minimum interference below that TWT session can be setup */
    A_UINT32 min_no_sta_setup;               /* Minimum no of STA required to start TWT setup */
    A_UINT32 min_no_sta_teardown;            /* Minimum no of STA below which TWT will be torn down */
    A_UINT32 no_of_bcast_mcast_slots;        /* Number of default slot sizes reserved for BCAST/MCAST delivery */
    A_UINT32 min_no_twt_slots;               /* Minimum no of available slots for TWT to be operational */
    A_UINT32 max_no_sta_twt;                 /* Max no of STA with which TWT is possible (must be <= the wmi_resource_config's twt_ap_sta_count value) */
    /*
     * The below interval parameters have units of milliseconds.
     */
    A_UINT32 mode_check_interval;            /* Interval between two successive check to decide the mode of TWT */
    A_UINT32 add_sta_slot_interval;          /* Interval between decisions making to create TWT slots for STAs */
    A_UINT32 remove_sta_slot_interval;       /* Interval between decisions making to remove TWT slot of STAs */
    A_UINT32 flags;                          /* enable/disable flags, refer to MACROs TWT_EN_DIS_FLAGS_* (TWT_EN_DIS_FLAGS_GET_BTWT etc.) */
} wmi_twt_enable_cmd_fixed_param;

/* status code of enabling TWT */
typedef enum _WMI_ENABLE_TWT_STATUS_T {
    WMI_ENABLE_TWT_STATUS_OK,              /* enabling TWT successfully completed */
    WMI_ENABLE_TWT_STATUS_ALREADY_ENABLED, /* TWT already enabled */
    WMI_ENABLE_TWT_STATUS_NOT_READY,       /* FW not ready for enabling TWT */
    WMI_ENABLE_TWT_INVALID_PARAM,          /* invalid parameters */
    WMI_ENABLE_TWT_STATUS_UNKNOWN_ERROR,   /* enabling TWT failed with an unknown reason */
} WMI_ENABLE_TWT_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_enable_complete_event_fixed_param */
    /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0 */
    A_UINT32 pdev_id;
    A_UINT32 status;        /* WMI_ENABLE_TWT_STATUS_T */
} wmi_twt_enable_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_disable_cmd_fixed_param  */
    /** pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. In non-DBDC case host should set it to 0 */
    A_UINT32 pdev_id;       /* host should never set it to WMI_PDEV_ID_SOC  */
    A_UINT32 flags;         /* enable/disable flags, refer to MACROs TWT_EN_DIS_FLAGS_* (TWT_EN_DIS_FLAGS_GET_BTWT etc.) */
    A_UINT32 reason_code;   /* refer to WMI_DISABLE_TWT_REASON_T */
} wmi_twt_disable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_disable_complete_event_fixed_param */
    A_UINT32 pdev_id;
    A_UINT32 status; /* refer to WMI_DISABLE_TWT_STATUS_T enum */
} wmi_twt_disable_complete_event_fixed_param;

/* status code of TWT Disable */
typedef enum _WMI_DISABLE_TWT_STATUS_T {
    WMI_DISABLE_TWT_STATUS_OK,                  /*  Disabling TWT successfully completed */
    WMI_DISABLE_TWT_STATUS_ROAM_IN_PROGRESS,    /* Roaming in progress */
    WMI_DISABLE_TWT_STATUS_CHAN_SW_IN_PROGRESS, /* Channel switch in progress */
    WMI_DISABLE_TWT_STATUS_SCAN_IN_PROGRESS,    /* Scan in progress */
} WMI_DISABLE_TWT_STATUS_T;

/* Host reason code of TWT Disable command : Set by Host */
typedef enum _WMI_DISABLE_TWT_REASON_T {
    /* Host will set one of below reason code while disabling TWT */
    WMI_DISABLE_TWT_REASON_NONE,                        /* Normal case */
    WMI_DISABLE_TWT_REASON_CONCURRENCY_SCC,             /* Concurrency case SCC */
    WMI_DISABLE_TWT_REASON_CONCURRENCY_MCC,             /* Concurrency case MCC */
    WMI_DISABLE_TWT_REASON_CHANGE_CONGESTION_TIMEOUT,   /* To change congestion time */
    WMI_DISABLE_TWT_REASON_P2P_GO_NOA,                  /* P2P GO NOA reason */
} WMI_DISABLE_TWT_REASON_T;

/* Notification event ID to Host */
typedef enum _WMI_TWT_NOTIFICATION_ID_T {
    WMI_TWT_NOTIFY_EVENT_READY = 1,
    WMI_TWT_NOTIFY_EVENT_AP_TWT_REQ_BIT_SET = 2,
    WMI_TWT_NOTIFY_EVENT_AP_TWT_REQ_BIT_CLEAR = 3,
} WMI_TWT_NOTIFICATION_ID_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_notify_event_fixed_param */
    A_UINT32 vdev_id;      /* vdev id of TWT notify event */
    A_UINT32 event_id;     /* refer to WMI_TWT_NOTIFICATION_ID_T */
} wmi_twt_notify_event_fixed_param;

/* from IEEE 802.11ah section 9.4.2.200 */
typedef enum _WMI_TWT_COMMAND_T {
    WMI_TWT_COMMAND_REQUEST_TWT    = 0,
    WMI_TWT_COMMAND_SUGGEST_TWT    = 1,
    WMI_TWT_COMMAND_DEMAND_TWT     = 2,
    WMI_TWT_COMMAND_TWT_GROUPING   = 3,
    WMI_TWT_COMMAND_ACCEPT_TWT     = 4,
    WMI_TWT_COMMAND_ALTERNATE_TWT  = 5,
    WMI_TWT_COMMAND_DICTATE_TWT    = 6,
    WMI_TWT_COMMAND_REJECT_TWT     = 7,
} WMI_TWT_COMMAND_T;

/* TWT command, refer to WMI_TWT_COMMAND_T */
#define TWT_FLAGS_GET_CMD(flag)                 WMI_GET_BITS(flag, 0, 8)
#define TWT_FLAGS_SET_CMD(flag, val)            WMI_SET_BITS(flag, 0, 8, val)

/* 0 means Individual TWT, 1 means Broadcast TWT */
#define TWT_FLAGS_GET_BROADCAST(flag)           WMI_GET_BITS(flag, 8, 1)
#define TWT_FLAGS_SET_BROADCAST(flag, val)      WMI_SET_BITS(flag, 8, 1, val)

/* 0 means non-Trigger-enabled TWT, 1 means  means Trigger-enabled TWT */
#define TWT_FLAGS_GET_TRIGGER(flag)             WMI_GET_BITS(flag, 9, 1)
#define TWT_FLAGS_SET_TRIGGER(flag, val)        WMI_SET_BITS(flag, 9, 1, val)

/* flow type 0 means announced TWT, 1 means un-announced TWT */
#define TWT_FLAGS_GET_FLOW_TYPE(flag)           WMI_GET_BITS(flag, 10, 1)
#define TWT_FLAGS_SET_FLOW_TYPE(flag, val)      WMI_SET_BITS(flag, 10, 1, val)

/* 0 means TWT protection is required, 1 means TWT protection is not required */
#define TWT_FLAGS_GET_PROTECTION(flag)          WMI_GET_BITS(flag, 11, 1)
#define TWT_FLAGS_SET_PROTECTION(flag, val)     WMI_SET_BITS(flag, 11, 1, val)

/* B-TWT ID 0: 0 means non-0 B-TWT ID or I-TWT, 1 means B-TWT ID 0 */
#define TWT_FLAGS_GET_BTWT_ID0(flag)            WMI_GET_BITS(flag, 12, 1)
#define TWT_FLAGS_SET_BTWT_ID0(flag, val)       WMI_SET_BITS(flag, 12, 1, val)

/* 0 means TWT Information frame is enabled, 1 means TWT Information frame is disabled */
#define TWT_FLAGS_GET_TWT_INFO_FRAME_DISABLED(flag)      WMI_GET_BITS(flag, 13, 1)
#define TWT_FLAGS_SET_TWT_INFO_FRAME_DISABLED(flag, val) WMI_SET_BITS(flag, 13, 1, val)

/*
 * 1 means PM_RESPONDER_MODE information sent in BIT15 is valid, 0 means it is not valid.
 * Will be used for backward compatibility if host uses older FW versions
 * then value will be 0 so host will not consider the BIT15 value.
 */
#define TWT_FLAGS_GET_PM_RESPONDER_MODE_VALID(flag)      WMI_GET_BITS(flag, 14, 1)
#define TWT_FLAGS_SET_PM_RESPONDER_MODE_VALID(flag, val) WMI_SET_BITS(flag, 14, 1, val)

/* 1 means PM_RESPONDER_MODE supported, 0 means not supported */
#define TWT_FLAGS_GET_PM_RESPONDER_MODE(flag)      WMI_GET_BITS(flag, 15, 1)
#define TWT_FLAGS_SET_PM_RESPONDER_MODE(flag, val) WMI_SET_BITS(flag, 15, 1, val)

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_ack_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 twt_cmd;       /* TWT command for which this ack is sent */
    A_UINT32 status;        /* Status code corresponding to twt_cmd.
                             * This status field contains a value from the
                             * status enum corresponding to the twt_cmd type
                             * (WMI_ADD_TWT_STATUS_T, WMI_DEL_TWT_STATUS_T,
                             * WMI_PAUSE_TWT_STATUS_T, etc.)
                             */
} wmi_twt_ack_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_add_dialog_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr;      /* peer MAC address */
    A_UINT32 dialog_id; /* TWT dialog_id (< 0xFF) is per peer, I-TWT & B-TWT use different diaglog ID */

    /* 1. wake_intvl_mantis must be <= 0xFFFF
     * 2. wake_intvl_us must be divided evenly by wake_intvl_mantis,
     *    i.e., wake_intvl_us % wake_intvl_mantis == 0
     * 3. the quotient of wake_intvl_us/wake_intvl_mantis must be 2 to N-th(0<=N<=31) power,
     *    i.e., wake_intvl_us/wake_intvl_mantis == 2^N, 0<=N<=31
     */
    A_UINT32 wake_intvl_us;         /* TWT Wake Interval in units of us */
    A_UINT32 wake_intvl_mantis;     /* TWT Wake Interval Mantissa */

    /* wake_dura_us must be divided evenly by 256, i.e., wake_dura_us % 256 == 0 */
    A_UINT32 wake_dura_us;          /* TWT Wake Duration in units of us, must be <= 65280 (0xFF00) */

    A_UINT32 sp_offset_us;          /* this long time after TWT setup the 1st SP will start */
    A_UINT32 flags;                 /* TWT flags, refer to MACROs TWT_FLAGS_*(TWT_FLAGS_GET_CMD etc) */

    /* Broadcast TWT(B-TWT) Persistence, when used in Add/update Dialog,
     * indicates for how long(in units of TBTTs) current B-TWT session
     * parameters will not be changed.
     * Refer to 11ax spec session "9.4.2.199 TWT element" for more info.
     */
    A_UINT32 b_twt_persistence;

    /* Broadcast TWT(B-TWT) Recommendation, refer to section
     * "9.4.2.199 TWT element" of latest 11ax draft
     */
    A_UINT32 b_twt_recommendation;

    /* Min tolerance limit of wake interval.
     * If this variable is set to 0 by host, FW will ignore it.
     */
    A_UINT32 min_wake_intvl_us;

   /* Max tolerance limit of wake interval.
    * If this variable is set to 0 by host, FW will ignore it.
    */
    A_UINT32 max_wake_intvl_us;

   /* Min tolerance limit of wake duration.
    * If this variable is set to 0 by host, FW will ignore it.
    */
    A_UINT32 min_wake_dura_us;

   /* Max tolerance limit of wake duration.
    * If this variable is set to 0 by host, FW will ignore it.
    */
    A_UINT32 max_wake_dura_us;

    /*
     * Service period start TSF (absolute)
     * If sp_start_tsf_lo == sp_start_tsf_hi == 0, the specification
     * is invalid, and shall be ignored.
     */
    A_UINT32 sp_start_tsf_lo; /* bits 31:0 */
    A_UINT32 sp_start_tsf_hi; /* bits 63:32 */

    /*
     * In announced mode, wait for announce timeout before explicit announce
     * using QoS NULL.
     * If set to 0, FW will send QoS NULL immediately.
     */
    A_UINT32 announce_timeout_us;

    A_UINT32 link_id_bitmap;

    /* parameters required for R-TWT feature */
    A_UINT32 r_twt_dl_tid_bitmap;
    A_UINT32 r_twt_ul_tid_bitmap;
} wmi_twt_add_dialog_cmd_fixed_param;

/* status code of adding TWT dialog */
typedef enum _WMI_ADD_TWT_STATUS_T {
    WMI_ADD_TWT_STATUS_OK,                  /* adding TWT dialog successfully completed */
    WMI_ADD_TWT_STATUS_TWT_NOT_ENABLED,     /* TWT not enabled */
    WMI_ADD_TWT_STATUS_USED_DIALOG_ID,      /* TWT dialog ID is already used */
    WMI_ADD_TWT_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_ADD_TWT_STATUS_NOT_READY,           /* FW not ready */
    WMI_ADD_TWT_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_ADD_TWT_STATUS_NO_ACK,              /* peer AP/STA did not ACK the request/response frame */
    WMI_ADD_TWT_STATUS_NO_RESPONSE,         /* peer AP did not send the response frame */
    WMI_ADD_TWT_STATUS_DENIED,              /* AP did not accept the request */
    WMI_ADD_TWT_STATUS_UNKNOWN_ERROR,       /* adding TWT dialog failed with an unknown reason */
    WMI_ADD_TWT_STATUS_AP_PARAMS_NOT_IN_RANGE,  /* peer AP wake interval, duration not in range */
    WMI_ADD_TWT_STATUS_AP_IE_VALIDATION_FAILED, /* peer AP IE Validation Failed */
    WMI_ADD_TWT_STATUS_ROAM_IN_PROGRESS,    /* Roaming in progress */
    WMI_ADD_TWT_STATUS_CHAN_SW_IN_PROGRESS, /* Channel switch in progress */
    WMI_ADD_TWT_STATUS_SCAN_IN_PROGRESS,    /* Scan in progress */
    WMI_ADD_TWT_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_ADD_TWT_STATUS_BTWT_NOT_ENBABLED,   /* Broadcast TWT is not enabled */
    WMI_ADD_TWT_STATUS_RTWT_NOT_ENBABLED,   /* Restricted TWT is not enabled */
} WMI_ADD_TWT_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_add_dialog_additional_params */
    A_UINT32 flags;         /* TWT flags, refer to MACROs TWT_FLAGS_*(TWT_FLAGS_GET_CMD etc) */
    A_UINT32 wake_dur_us;   /* Wake duration in uS */
    A_UINT32 wake_intvl_us; /* Wake Interval in uS */
    A_UINT32 sp_offset_us;  /* SP Starting Offset */
    A_UINT32 sp_tsf_us_lo;  /* SP start TSF bits 31:0 */
    A_UINT32 sp_tsf_us_hi;  /* SP start TSF bits 63:32 */
} wmi_twt_add_dialog_additional_params;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_add_dialog_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_ADD_TWT_STATUS_T */
/*
 * This fixed_param TLV is followed by the below TLVs:
 * wmi_twt_add_dialog_additional_params twt_params[]; // TWT params received
 *                                                    // from peer
 */
} wmi_twt_add_dialog_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_del_dialog_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    /* Broadcast TWT(B-TWT) Persistence, when used in Del Dialog,
     * indicates for how long(in units of TBTTs) current B-TWT session
     * parameters will be present.
     * Refer to 11ax spec session "9.4.2.199 TWT element" for more info.
     */
    A_UINT32 b_twt_persistence;
    A_UINT32 is_bcast_twt;
} wmi_twt_del_dialog_cmd_fixed_param;

/* status code of deleting TWT dialog */
typedef enum _WMI_DEL_TWT_STATUS_T {
    WMI_DEL_TWT_STATUS_OK,                  /* deleting TWT dialog successfully completed */
    WMI_DEL_TWT_STATUS_DIALOG_ID_NOT_EXIST, /* TWT dialog ID not exists */
    WMI_DEL_TWT_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_DEL_TWT_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_DEL_TWT_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_DEL_TWT_STATUS_NO_ACK,              /* peer AP/STA did not ACK the request/response frame */
    WMI_DEL_TWT_STATUS_UNKNOWN_ERROR,       /* deleting TWT dialog failed with an unknown reason */
    WMI_DEL_TWT_STATUS_PEER_INIT_TEARDOWN,  /* Peer Initiated Teardown */
    WMI_DEL_TWT_STATUS_ROAMING,             /* Reason Roaming Start*/
    WMI_DEL_TWT_STATUS_CONCURRENCY,         /* Teardown due to concurrency */
    WMI_DEL_TWT_STATUS_CHAN_SW_IN_PROGRESS, /* Channel switch in progress */
    WMI_DEL_TWT_STATUS_SCAN_IN_PROGRESS,    /* Reason Scan in progress */
    WMI_DEL_TWT_STATUS_CHANGE_CONGESTION_TIMEOUT,   /* Congestion timeout changed */
    WMI_DEL_TWT_STATUS_P2P_GO_NOA,                  /* P2P GO NOA */
} WMI_DEL_TWT_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_del_dialog_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_DEL_TWT_STATUS_T */
} wmi_twt_del_dialog_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_pause_dialog_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
} wmi_twt_pause_dialog_cmd_fixed_param;

/* status code of pausing TWT dialog */
typedef enum _WMI_PAUSE_TWT_STATUS_T {
    WMI_PAUSE_TWT_STATUS_OK,                  /* pausing TWT dialog successfully completed */
    WMI_PAUSE_TWT_STATUS_DIALOG_ID_NOT_EXIST, /* TWT dialog ID not exists */
    WMI_PAUSE_TWT_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_PAUSE_TWT_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_PAUSE_TWT_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_PAUSE_TWT_STATUS_NO_ACK,              /* peer AP/STA did not ACK the request/response frame */
    WMI_PAUSE_TWT_STATUS_UNKNOWN_ERROR,       /* pausing TWT dialog failed with an unknown reason */
    WMI_PAUSE_TWT_STATUS_ALREADY_PAUSED,      /* The TWT dialog is already paused */
    WMI_PAUSE_TWT_STATUS_TWT_INFO_FRM_NOT_SUPPORTED, /* TWT information frame is not supported by AP */
    WMI_PAUSE_TWT_STATUS_CHAN_SW_IN_PROGRESS, /* Channel switch in progress */
    WMI_PAUSE_TWT_STATUS_ROAM_IN_PROGRESS,    /* Roam in progress */
    WMI_PAUSE_TWT_STATUS_SCAN_IN_PROGRESS,    /* Scan in progress */
} WMI_PAUSE_TWT_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_pause_dialog_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_PAUSE_TWT_STATUS_T */
} wmi_twt_pause_dialog_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_resume_dialog_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 sp_offset_us;  /* this long time after TWT resumed the 1st SP will start */
    A_UINT32 next_twt_size; /* Next TWT subfield Size, refer to IEEE 802.11ax section "9.4.1.60 TWT Information field" */
} wmi_twt_resume_dialog_cmd_fixed_param;

/* status code of resuming TWT dialog */
typedef enum _WMI_RESUME_TWT_STATUS_T {
    WMI_RESUME_TWT_STATUS_OK,                  /* resuming TWT dialog successfully completed */
    WMI_RESUME_TWT_STATUS_DIALOG_ID_NOT_EXIST, /* TWT dialog ID not exists */
    WMI_RESUME_TWT_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_RESUME_TWT_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_RESUME_TWT_STATUS_NOT_PAUSED,          /* dialog not paused currently */
    WMI_RESUME_TWT_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_RESUME_TWT_STATUS_NO_ACK,              /* peer AP/STA did not ACK the request/response frame */
    WMI_RESUME_TWT_STATUS_UNKNOWN_ERROR,       /* resuming TWT dialog failed with an unknown reason */
    WMI_RESUME_TWT_STATUS_TWT_INFO_FRM_NOT_SUPPORTED, /* TWT information frame is not supported by AP */
    WMI_RESUME_TWT_STATUS_CHAN_SW_IN_PROGRESS, /* Channel switch in progress */
    WMI_RESUME_TWT_STATUS_ROAM_IN_PROGRESS,    /* Roam in progress */
    WMI_RESUME_TWT_STATUS_SCAN_IN_PROGRESS,    /* Scan in progress */
} WMI_RESUME_TWT_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_resume_dialog_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_RESUME_TWT_STATUS_T */
} wmi_twt_resume_dialog_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_nudge_dialog_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 suspend_duration_ms;  /* this long time after TWT paused the 1st SP will start (millisecond) */
    A_UINT32 next_twt_size; /* Next TWT subfield Size, refer to IEEE 802.11ax section "9.4.1.60 TWT Information field" */
    A_INT32 sp_start_offset; /* Next TWT service period will be offset by this time (microsecond) */
} wmi_twt_nudge_dialog_cmd_fixed_param;

/* status code of nudging TWT dialog */
typedef enum _WMI_TWT_NUDGE_STATUS_T {
    WMI_NUDGE_TWT_STATUS_OK,                  /* nudging TWT dialog successfully completed */
    WMI_NUDGE_TWT_STATUS_DIALOG_ID_NOT_EXIST, /* TWT dialog ID doesn't exist */
    WMI_NUDGE_TWT_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_NUDGE_TWT_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_NUDGE_TWT_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_NUDGE_TWT_STATUS_NO_ACK,              /* peer AP/STA did not ACK the request/response frame */
    WMI_NUDGE_TWT_STATUS_UNKNOWN_ERROR,       /* nudging TWT dialog failed with an unknown reason */
    WMI_NUDGE_TWT_STATUS_ALREADY_PAUSED,      /* The TWT dialog is already paused */
    WMI_NUDGE_TWT_STATUS_TWT_INFO_FRM_NOT_SUPPORTED, /* TWT information frame is not supported by AP */
    WMI_NUDGE_TWT_STATUS_CHAN_SW_IN_PROGRESS, /* Channel switch in progress */
    WMI_NUDGE_TWT_STATUS_ROAM_IN_PROGRESS,    /* Roam in progress */
    WMI_NUDGE_TWT_STATUS_SCAN_IN_PROGRESS,    /* Scan in progress */
} WMI_TWT_NUDGE_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_nudge_dialog_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_NUDGE_TWT_STATUS_T */
    A_UINT32 sp_tsf_us_lo;  /* SP resume TSF bits 31:0 */
    A_UINT32 sp_tsf_us_hi;  /* SP resume TSF bits 63:32 */
} wmi_twt_nudge_dialog_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_btwt_invite_sta_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    /* parameters required for R-TWT feature */
    A_UINT32 r_twt_dl_tid_bitmap;
    A_UINT32 r_twt_ul_tid_bitmap;
} wmi_twt_btwt_invite_sta_cmd_fixed_param;

/* status code of inviting STA to B-TWT dialog */
typedef enum _WMI_TWT_BTWT_INVITE_STA_STATUS_T {
    WMI_TWT_BTWT_INVITE_STA_STATUS_OK,                  /* inviting STA to B-TWT successfully completed */
    WMI_TWT_BTWT_INVITE_STA_STATUS_DIALOG_ID_NOT_EXIST, /* TWT dialog ID not exists */
    WMI_TWT_BTWT_INVITE_STA_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_TWT_BTWT_INVITE_STA_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_TWT_BTWT_INVITE_STA_STATUS_ALREADY_JOINED,      /* peer STA already joined the session */
    WMI_TWT_BTWT_INVITE_STA_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_TWT_BTWT_INVITE_STA_STATUS_NO_ACK,              /* peer STA did not ACK the request/response frame */
    WMI_TWT_BTWT_INVITE_STA_STATUS_UNKNOWN_ERROR,       /* failed with an unknown reason */
} WMI_TWT_BTWT_INVITE_STA_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals wmi_twt_btwt_invite_sta_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_TWT_BTWT_INVITE_STA_STATUS_T */
} wmi_twt_btwt_invite_sta_complete_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals wmi_twt_btwt_remove_sta_cmd_fixed_param  */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    /* parameters required for R-TWT feature */
    A_UINT32 r_twt_dl_tid_bitmap;
    A_UINT32 r_twt_ul_tid_bitmap;
} wmi_twt_btwt_remove_sta_cmd_fixed_param;

/* status code of removing STA from B-TWT dialog */
typedef enum _WMI_TWT_BTWT_REMOVE_STA_STATUS_T {
    WMI_TWT_BTWT_REMOVE_STA_STATUS_OK,                  /* removing STA from B-TWT successfully completed */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_DIALOG_ID_NOT_EXIST, /* TWT dialog ID not exists */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_INVALID_PARAM,       /* invalid parameters */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_DIALOG_ID_BUSY,      /* FW is in the process of handling this dialog */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_NOT_JOINED,          /* peer STA not joined yet */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_NO_RESOURCE,         /* FW resource exhausted */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_NO_ACK,              /* peer STA did not ACK the request/response frame */
    WMI_TWT_BTWT_REMOVE_STA_STATUS_UNKNOWN_ERROR,       /* failed with an unknown reason */
} WMI_TWT_BTWT_REMOVE_STA_STATUS_T;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals wmi_twt_btwt_remove_sta_complete_event_fixed_param */
    A_UINT32 vdev_id;       /* VDEV identifier */
    wmi_mac_addr peer_macaddr; /* peer MAC address */
    A_UINT32 dialog_id;     /* TWT dialog ID */
    A_UINT32 status;        /* refer to WMI_TWT_BTWT_REMOVE_STA_STATUS_T */
} wmi_twt_btwt_remove_sta_complete_event_fixed_param;

typedef enum {
    WMI_DMA_RING_CONFIG_MODULE_SPECTRAL,
    WMI_DMA_RING_CONFIG_MODULE_RTT,
    WMI_DMA_RING_CONFIG_MODULE_CV_UPLOAD,
} WMI_DMA_RING_SUPPORTED_MODULE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_DMA_RING_CAPABILITIES */
    A_UINT32 pdev_id;
    A_UINT32 mod_id;     /* see WMI_DMA_RING_SUPPORTED_MODULE */
    A_UINT32 ring_elems_min; /* minimum spaces in the DMA ring for this pdev */
    A_UINT32 min_buf_size; /* minimum size in bytes of each buffer in the DMA ring */
    A_UINT32 min_buf_align; /* minimum alignment in bytes of each buffer in the DMA ring */

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_DMA_RING_CAPABILITIES;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUCT_ wmi_chan_rf_characterization_info */

    /**
     * [7:0]  : channel metric -  0 = unusable, 1 = worst, 100 = best
     * [11:8] : channel BW - This bit-field uses values compatible with
     *          enum definitions used internally within the target's
     *          halphy code.  This bit field uses wmi_channel_width.
     * [15:12]: Reserved
     * [31:16]: Frequency - Center frequency of the channel for which
     *          the RF characterisation info applies (MHz)
     */
    A_UINT32 freq_info;

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} WMI_CHAN_RF_CHARACTERIZATION_INFO;

#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_CHAN_METRIC   0x000000ff
#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_CHAN_METRIC_S 0
#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_BW            0x00000f00
#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_BW_S          8
#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_FREQ          0xffff0000
#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_FREQ_S        16

#define WMI_CHAN_RF_CHARACTERIZATION_CHAN_METRIC_SET(dword,val) \
            WMI_F_RMW((dword)->freq_info,(val), \
            WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_CHAN_METRIC)
#define WMI_CHAN_RF_CHARACTERIZATION_CHAN_METRIC_GET(dword) \
            WMI_F_MS((dword)->freq_info,WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_CHAN_METRIC)

#define WMI_CHAN_RF_CHARACTERIZATION_BW_SET(dword, val) \
            WMI_F_RMW((dword)->freq_info,(val), \
            WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_BW)
#define WMI_CHAN_RF_CHARACTERIZATION_BW_GET(dword) \
            WMI_F_MS((dword)->freq_info,WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_BW)

#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_SET(dword, val) \
            WMI_F_RMW((dword)->freq_info,(val), \
            WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_FREQ)

#define WMI_CHAN_RF_CHARACTERIZATION_FREQ_GET(dword) \
            WMI_F_MS((dword)->freq_info,WMI_CHAN_RF_CHARACTERIZATION_FREQ_INFO_FREQ)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_WMI_COEX_FIX_CHANNEL_CAPABILITIES */
    /**************************************************************************
    * 1: SAP fix channel has higher priority than ACS
    * 0: SAP fix channel has lower priority than ACS
    **************************************************************************/
    A_UINT32 fix_channel_priority;
} WMI_COEX_FIX_CHANNEL_CAPABILITIES;



#define WMI_DMA_RING_PADDR_LO_S 0
#define WMI_DMA_RING_PADDR_LO   0xffffffff

#define WMI_DMA_RING_BASE_PADDR_LO_GET(dword) WMI_F_MS(dword, WMI_DMA_RING_PADDR_LO)
#define WMI_DMA_RING_BASE_PADDR_LO_SET(dword, val) WMI_F_RMW(dword, val, WMI_DMA_RING_PADDR_LO)

#define WMI_DMA_RING_HEAD_IDX_PADDR_LO_GET(dword) WMI_F_MS(dword, WMI_DMA_RING_PADDR_LO)
#define WMI_DMA_RING_HEAD_IDX_PADDR_LO_SET(dword, val) WMI_F_RMW(dword, val, WMI_DMA_RING_PADDR_LO)

#define WMI_DMA_RING_TAIL_IDX_PADDR_LO_GET(dword) WMI_F_MS(dword, WMI_DMA_RING_PADDR_LO)
#define WMI_DMA_RING_TAIL_IDX_PADDR_LO_SET(dword, val) WMI_F_RMW(dword, val, WMI_DMA_RING_PADDR_LO)

#define WMI_DMA_RING_PADDR_HI_S 0
#define WMI_DMA_RING_PADDR_HI   0xffff

#define WMI_DMA_RING_BASE_PADDR_HI_GET(dword) WMI_F_MS(dword, WMI_DMA_RING_PADDR_HI)
#define WMI_DMA_RING_BASE_PADDR_HI_SET(dword, val) WMI_F_RMW(dword, val, WMI_DMA_RING_PADDR_HI)

#define WMI_DMA_RING_HEAD_IDX_PADDR_HI_GET(dword) WMI_F_MS(dword, WMI_DMA_RING_PADDR_HI)
#define WMI_DMA_RING_HEAD_IDX_PADDR_HI_SET(dword, val) WMI_F_RMW(dword, val, WMI_DMA_RING_PADDR_HI)

#define WMI_DMA_RING_TAIL_IDX_PADDR_HI_GET(dword) WMI_F_MS(dword, WMI_DMA_RING_PADDR_HI)
#define WMI_DMA_RING_TAIL_IDX_PADDR_HI_SET(dword, val) WMI_F_RMW(dword, val, WMI_DMA_RING_PADDR_HI)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dma_ring_cfg_req_fixed_param */
    A_UINT32 pdev_id;
    A_UINT32 mod_id;            /* see WMI_DMA_RING_SUPPORTED_MODULE */
    /**
     * Bits 31:0:   base address of ring [31:0]
     */
    A_UINT32 base_paddr_lo;
    /**
     * Bits 15:0:   base address of ring [47:32]
     * Bits 31:16:  reserved (set to 0x0)
     */
    A_UINT32 base_paddr_hi;
    /**
     * Bits 31:0:   address of head index [31:0]
     */
    A_UINT32 head_idx_paddr_lo;
    /**
     * Bits 15:0:   address of head index [47:32]
     * Bits 31:16:  reserved (set to 0x0)
     */
    A_UINT32 head_idx_paddr_hi;
    /**
     * Bits 31:0:   address of tail index [31:0]
     */
    A_UINT32 tail_idx_paddr_lo;
    /**
     * Bits 15:0:   address of tail index [47:32]
     * Bits 31:16:  reserved (set to 0x0)
     */
    A_UINT32 tail_idx_paddr_hi;
    A_UINT32 num_elems;          /** Number of elems in the ring */
    A_UINT32 buf_size;           /** size of allocated buffer in bytes */

    A_UINT32 num_resp_per_event; /** Number of wmi_dma_buf_release_entry packed together */

    /**
     * This parameter specifies the timeout in milliseconds.
     * Target should timeout and send whatever resp it has if this time expires.
     */
    A_UINT32 event_timeout_ms;
} wmi_dma_ring_cfg_req_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dma_ring_cfg_rsp_fixed_param */
    A_UINT32 pdev_id;
    A_UINT32 mod_id;        /* see WMI_DMA_RING_SUPPORTED_MODULE */
    A_UINT32 cfg_status;    /** Configuration status; see A_STATUS */
} wmi_dma_ring_cfg_rsp_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dma_buf_release_fixed_param */
    A_UINT32 pdev_id;       /** ID of pdev whose DMA ring produced the data */
    A_UINT32 mod_id;        /* see WMI_DMA_RING_SUPPORTED_MODULE */
    A_UINT32 num_buf_release_entry;
    A_UINT32 num_meta_data_entry;
    /* This TLV is followed by another TLV of array of structs.
     * wmi_dma_buf_release_entry entries[num_buf_release_entry];
     * wmi_dma_buf_release_spectral_meta_data meta_datat[num_meta_data_entry];
     * wmi_dma_buf_release_cv_upload_meta_data cv_meta_data[num_meta_data_entry]
     */
} wmi_dma_buf_release_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dma_buf_release_entry */
    /**
     * Bits 31:0:   address of data [31:0]
     */
    A_UINT32 paddr_lo;
    /**
     * Bits 11:0:   address of data [43:32]
     * Bits 31:12:  host context data [19:0]
     */
    A_UINT32 paddr_hi;
} wmi_dma_buf_release_entry;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dma_buf_release_spectral_meta_data */
    /**
     * meta data information.
     * Host uses the noise floor values as one of the major parameter
     * to classify the spectral data.
     * This information will not be provided by ucode unlike the fft reports
     * which gets DMAed to DDR buffer.
     * Hence sending the NF values in dBm units as meta data information.
     */
    A_INT32 noise_floor[WMI_MAX_CHAINS];
    /**
     * The time taken by target in micro seconds to complete the reset routine
     * and re-initiate the spectral scan.
     * If the delay is 0, the WAR to bookkeep the timestamp won't be exercised
     * in HOST.
     */
    A_UINT32 reset_delay;
    /**
     * Current center freq1 (MHz units)
     */
    A_UINT32 freq1;
    /**
     * Current center freq2 (MHz units)
     */
    A_UINT32 freq2;
    /**
     * Channel Width (MHz units)
     */
    A_UINT32 ch_width;
} wmi_dma_buf_release_spectral_meta_data;

typedef enum {
    NO_SCALING = 0, /* No bin scaling*/
    /**
     * scaled_bin_mag = bin_mag *
     *                  sqrt(10^(max(legacy_max_gain - default_agc_max_gain + low_level_offset - RSSI_corr,
     *                  (agc_total_gain_db < default_agc_max_gain) * high_level_offset)/10)) *
     *                  2^(DET{0,1,2}_SPECTRAL_SCAN_BIN_SCALE - legacy_spectral_scan_bin_scale)
     */
    AGC_GAIN_RSSI_CORR_BASED = 1,
} WMI_SPECTRAL_SCALING_FORMULA_ID;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_spectral_bin_scaling_params */
    A_UINT32 pdev_id;   /* ID of pdev to which the scaling parameters are to be applied */
    WMI_SPECTRAL_SCALING_FORMULA_ID formula_id; /* Represets the formula to be used */
    A_UINT32 low_level_offset; /* low level offset for fine tuning the scaling factor based on RSSI and AGC gain */
    A_UINT32 high_level_offset; /* high level offset for fine tuning the scaling factor based on RSSI and AGC gain */
    A_UINT32 rssi_thr; /* RSSI threshold to be used to adjust the inband power of the given spectral report */
    A_UINT32 default_agc_max_gain;/* DEFAULT AGC MAX GAIN used. Fetched from register RXTD_RADAR_SBS_CTRL_1_L bits20:13 */

    /**************************************************************************
     * DON'T ADD ANY FURTHER FIELDS HERE -
     * It would cause the size of the READY_EXT message within some targets
     * to exceed the size of the buffer used for the message.
     **************************************************************************/
} wmi_spectral_bin_scaling_params;

#define WMI_SPECTRAL_BW_CAPS_GET(bw_caps, index) WMI_GET_BITS(bw_caps, index, 1)
#define WMI_SPECTRAL_BW_CAPS_SET(bw_caps, index, value) WMI_SET_BITS(bw_caps, index, 1, value)

#define WMI_SPECTRAL_FFT_SIZE_CAPS_GET(fft_size_caps, index) WMI_GET_BITS(ft_size_caps, index, 1)
#define WMI_SPECTRAL_FFT_SIZE_CAPS_SET(fft_size_caps, index, value) WMI_SET_BITS(fft_size_caps, index, 1, value)

typedef struct {
    A_UINT32 tlv_header;   /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_spectral_scan_bw_capabilities */
    A_UINT32 pdev_id;      /* ID of pdev for which the bandwidth capabilities are advertised */
    A_UINT32 sscan_mode;   /* scan mode to denote whether this is a normal/agile scan (refer to wmi_spectral_scan_mode) */
    A_UINT32 operating_bw; /* Operating bandwidth which supports the bandwidth capabilities,  as per enum wmi_channel_width */
    union {
        struct {           /* To indicate the scan bandwidths support for the operating bandwidth and scan mode */
            A_UINT32 supports_sscan_bw_20:1,
                     supports_sscan_bw_40:1,
                     supports_sscan_bw_80:1,
                     supports_sscan_bw_160:1,
                     supports_sscan_bw_80p80:1,
                     supports_sscan_bw_320:1,
                     reserved:26;
        };
        A_UINT32 supported_flags;
    };
} wmi_spectral_scan_bw_capabilities;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_spectral_fft_size_capabilities */
    A_UINT32 pdev_id;     /* ID of pdev for which the bandwidth capabilities are advertised */
    A_UINT32 sscan_bw;    /* sscan bandwidth, as per enum wmi_channel_width */
    union {
        struct {          /* To indicate the scan FFT sizes supported in the sscan bandwidth */
            A_UINT32 supports_fft_size_1:1,
                     supports_fft_size_2:1,
                     supports_fft_size_3:1,
                     supports_fft_size_4:1,
                     supports_fft_size_5:1,
                     supports_fft_size_6:1,
                     supports_fft_size_7:1,
                     supports_fft_size_8:1,
                     supports_fft_size_9:1,
                     supports_fft_size_10:1,
                     supports_fft_size_11:1,
                     reserved:21;
        };
        A_UINT32 supported_flags;
    };
} wmi_spectral_fft_size_capabilities;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_ctl_failsafe_event_params */
    A_UINT32 pdev_id;   /* ID of pdev to which ctl failsafe status is sent */
    A_UINT32 ctl_FailsafeStatus; /* To indicate if Failsafe value is imposed on CTL. 0- Success, 1- Failsafe imposed */
} wmi_pdev_ctl_failsafe_check_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_runtime_dpd_recal_cmd_fixed_param  */
    A_UINT32 enable;      /* Enable/disable */

    /* Thermal Thresholds,
     * DPD recalibration will be triggered, when current temperature is
     * either greater than (tmpt_base_c + dlt_tmpt_c_h),
     * or less than (tmpt_base_c + dlt_tmpt_c_l).
     * Here tmpt_base_c is the temperature in centigrade when first run dpd calibration.
     */
    A_UINT32 dlt_tmpt_c_h;
    A_UINT32 dlt_tmpt_c_l;

    /* cooling_time_ms
     * The time (in milliseconds) expected to be needed for the unit
     * to cool from dlt_tmpt_c_h to dlt_tmpt_c_l.
     */
    A_UINT32 cooling_time_ms;

    /*  Max duration for dpd re-cal. Unit: ms */
    A_UINT32 dpd_dur_max_ms;
} wmi_runtime_dpd_recal_cmd_fixed_param;

typedef enum {
    WMI_ROAM_TRIGGER_REASON_NONE = 0,
    WMI_ROAM_TRIGGER_REASON_PER,
    WMI_ROAM_TRIGGER_REASON_BMISS,
    WMI_ROAM_TRIGGER_REASON_LOW_RSSI,
    WMI_ROAM_TRIGGER_REASON_HIGH_RSSI,
    WMI_ROAM_TRIGGER_REASON_PERIODIC,
    WMI_ROAM_TRIGGER_REASON_MAWC,
    WMI_ROAM_TRIGGER_REASON_DENSE,
    WMI_ROAM_TRIGGER_REASON_BACKGROUND,
    WMI_ROAM_TRIGGER_REASON_FORCED,
    WMI_ROAM_TRIGGER_REASON_BTM,
    WMI_ROAM_TRIGGER_REASON_UNIT_TEST,
    WMI_ROAM_TRIGGER_REASON_BSS_LOAD,
    WMI_ROAM_TRIGGER_REASON_DEAUTH,
    WMI_ROAM_TRIGGER_REASON_IDLE,
    /*
     * NOTE: don't add any more ROAM_TRIGGER_REASON values here.
     * There are checks in the FW that require the value of
     * WMI_ROAM_TRIGGER_REASON_MAX to be < 16.
     * Add new ROAM_TRIGGER_REASON values below, inside the
     * WMI_ROAM_TRIGGER_EXT_REASON_ID enum.
     */
    WMI_ROAM_TRIGGER_REASON_MAX,
} WMI_ROAM_TRIGGER_REASON_ID;

/*
 * The WMI_ROAM_TRIGGER_REASON_ID enum cannot be expanded with new values,
 * due to checks in the FW that require WMI_ROAM_TRIGGER_REASON_MAX to be
 * less than 16.
 * The WMI_ROAM_TRIGGER_EXT_REASON_ID enum is used to hold further roam
 * trigger reasons.
 */
typedef enum {
    WMI_ROAM_TRIGGER_REASON_STA_KICKOUT = WMI_ROAM_TRIGGER_REASON_MAX,
    WMI_ROAM_TRIGGER_REASON_ESS_RSSI,
    WMI_ROAM_TRIGGER_REASON_WTC_BTM,
    WMI_ROAM_TRIGGER_REASON_PMK_TIMEOUT,
    WMI_ROAM_TRIGGER_REASON_BTC,

    WMI_ROAM_TRIGGER_EXT_REASON_MAX
} WMI_ROAM_TRIGGER_EXT_REASON_ID;

/* value for DENSE roam trigger */
#define WMI_RX_TRAFFIC_ABOVE_THRESHOLD 0x1
#define WMI_TX_TRAFFIC_ABOVE_THRESHOLD 0x2

typedef struct {
    A_UINT32 trigger_id; /* id from WMI_ROAM_TRIGGER_REASON_ID */
    /* interpretation of trigger value is as follows, for different trigger IDs
     * ID = PER -> value = PER percentage
     * ID = LOW_RSSI -> value = RSSI in dB wrt noise floor,
     * ID = HIGH_RSSI -> value = RSSI in dB wrt to noise floor,
     * ID = DENSE -> value = specification if it is tx or rx traffic threshold,
     *      (see WMI_[RX,TX]_TRAFFIC_ABOVE_THRESHOLD)
     * ID = PERIODIC -> value = periodicity in ms
     *
     * for other IDs trigger_value would be 0 (invalid)
     */
    A_UINT32 trigger_value;
} wmi_roam_scan_trigger_reason;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_request_roam_scan_stats_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_request_roam_scan_stats_cmd_fixed_param;

/** BSS load configuration parameters for roam trigger */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_bss_load_cmd_fixed_param */
    A_UINT32 vdev_id;
    /** Minimum number of beacons to be consider for calculating average AP BSS load within time monitor_time_window */
    A_UINT32 beacons_min_count;
    /** Monitor time window in seconds */
    A_UINT32 monitor_time_window;
    /** BSS load threshold after which roam scan should trigger */
    A_UINT32 bss_load_threshold;
    /** rssi_2g_threshold
     * If connected AP is in 2.4 GHz, then consider bss load roam triggered
     * only if load % > bss_load_threshold && connected AP RSSI is worse
     * than rssi_2g_threshold.
     */
    A_INT32 rssi_2g_threshold; /* units = dBm */
    /** rssi_5g_threshold
     * If connected AP is in 5 GHz, then consider bss load roam triggered
     * only if load % > bss_load_threshold && connected AP RSSI is worse
     * than rssi_5g_threshold.
     */
    A_INT32 rssi_5g_threshold; /* units = dBm */
    /** rssi_6g_threshold
     * If connected AP is in 6 GHz, then consider bss load roam triggered
     * only if load % > bss_load_threshold && connected AP RSSI is worse
     * than rssi_6g_threshold. If rssi_6g_threshold is 0, it should be ignored.
     */
    A_INT32 rssi_6g_threshold; /* units = dBm */
} wmi_roam_bss_load_config_cmd_fixed_param;

/** Deauth roam trigger parameters */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_deauth_config_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* 1-Enable, 0-Disable */
    A_UINT32 enable;
} wmi_roam_deauth_config_cmd_fixed_param;

/** IDLE roam trigger parameters */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_idle_config_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* 1: Enable, 0: Disable */
    A_UINT32 enable;
    /* Connected AP band. 0: Any Band, 1: 2.4 GHz Band, 2: 5 GHz Band */
    A_UINT32 band;
    /* Trigger Idle roaming only if RSSI change of connected AP is within rssi_delta during idle time */
    A_UINT32 rssi_delta; /* units = dB */
    /* Trigger idle roam only if connected RSSI is better than min_rssi */
    A_INT32 min_rssi; /* units = dBm */
    /* Inactive/Idle time duration
     * After screen is OFF (or whatever condition is suitable in a given
     * system as an indication that the system is likely idle)
     * and if below conditions are met then idle roaming will be triggered.
     * 1. Connected AP band is matching with band value configured
     * 2. No TX/RX data for more than idle_time configured
     *    or TX/RX data packets count is less than data_packet_count
     *    during idle_time
     * 3. Connected AP RSSI change is not more than rssi_delta
     * 4. Connected AP RSSI is better than min_rssi.
     *    The purpose of this trigger for idle scan is to issue the scan
     *    even if (moreover, particularly if) the connection to the
     *    existing AP is still good, to keep the STA from getting locked
     *    onto the current good AP and thus missing out on an available
     *    even better AP.  This min_rssi threshold can be used to adjust
     *    the connection quality level at which the STA considers doing an
     *    idle scan.
     */
    A_UINT32 idle_time; /* units = seconds */
    /* Maximum allowed data packets count during idle time */
    A_UINT32 data_packet_count;
} wmi_roam_idle_config_cmd_fixed_param;

/** trigger to start/stop monitoring if system is idle command parameters */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_idle_trigger_monitor_cmd_fixed_param */
    /* idle_trigger_monitor values are from WMI_IDLE_TRIGGER_MONITOR_ID */
    A_UINT32 idle_trigger_monitor;
} wmi_idle_trigger_monitor_cmd_fixed_param;

typedef enum {
    WMI_IDLE_TRIGGER_MONITOR_NONE = 0, /* no-op */
    /* IDLE_TRIGGER_MONITOR_ON
     * The host's screen has turned off (or some other event indicating that
     * the system is likely idle) -
     * start monitoring to check if the system is idle.
     */
    WMI_IDLE_TRIGGER_MONITOR_ON,
    /* IDLE_TRIGGER_MONITOR_OFF
     * The host's screen has turned on (or some other event indicating that
     * the system is not idle)
     */
    WMI_IDLE_TRIGGER_MONITOR_OFF,
} WMI_SCREEN_STATUS_NOTIFY_ID;

typedef struct {
    /** TLV tag and len; tag equals wmi_pdev_dsm_filter_fixed_param */
    A_UINT32 tlv_header;
    /**
     * TLV (tag length value) parameter's following pdev_dsm_filter_cmd are,
     *
     *  wmi_pdev_bssid_disallow_list_config_param bssid_disallow_list[];
     *      i.e array containing all disallow AP filter lists including
     *      the new DSM lists (avoidlist / driver_blacklist) and existing
     *      lists (supplicant_blacklist / rssi_rejectlist etc.)
     */
} wmi_pdev_dsm_filter_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_bssid_disallow_list_config_param */
    A_UINT32 tlv_header;
    /** bssid type i.e whether bssid falls in avoid list or driver_blacklist etc.
      see WMI_BSSID_DISALLOW_LIST_TYPE **/
    A_UINT32 bssid_type;
    /** mac address of disallow BSSID */
    wmi_mac_addr bssid;
    /** Disallow AP for certain duration, in units of milliseconds */
    A_UINT32 remaining_disallow_duration;
    /** AP will be allowed for candidate, when AP RSSI better than expected RSSI units in dBm */
    A_INT32 expected_rssi;
    /* Blacklist reason from WMI_BLACKLIST_REASON_ID */
    A_UINT32 reason;
    /* Source of adding AP to BL from WMI_BLACKLIST_SOURCE_ID */
    A_UINT32 source;
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when AP added to blacklist.
     */
    A_UINT32 timestamp;
    /* Original timeout value in milli seconds when AP added to BL */
    A_UINT32 original_timeout;
    /*
     * If disallow_linkid_bitmap is not 0, then means current entity
     * is for MLD AP and bssid field is standing for MLD address.
     * If all links for MLD AP is disallow, then the value shall be 0xffffffff
     */
    A_UINT32 disallow_linkid_bitmap;
} wmi_pdev_bssid_disallow_list_config_param;

typedef enum {
    /* USER_SPACE_BLACK_LIST
     * Black Listed AP's by host's user space
     */
    WMI_BSSID_DISALLOW_USER_SPACE_BLACK_LIST = 1,
    /* DRIVER_BLACK_LIST
     * Black Listed AP's by host driver
     * used for data stall migitation
     */
    WMI_BSSID_DISALLOW_DRIVER_BLACK_LIST,
    /* USER_SPACE_AVOID_LIST
     * Avoid List AP's by host's user space
     * used for data stall migitation
     */
    WMI_BSSID_DISALLOW_USER_SPACE_AVOID_LIST,
    /* DRIVER_AVOID_LIST
     * Avoid List AP's by host driver
     * used for data stall migitation
     */
    WMI_BSSID_DISALLOW_DRIVER_AVOID_LIST,
    /* RSSI_REJECT_LIST
     * OCE AP's
     */
    WMI_BSSID_DISALLOW_RSSI_REJECT_LIST,
} WMI_BSSID_DISALLOW_LIST_TYPE;

/* WLAN_PDEV_MAX_NUM_BSSID_DISALLOW_LIST:
 * Maximum number of BSSID disallow entries which host is allowed to send
 * to firmware within the WMI_PDEV_DSM_FILTER_CMDID message.
 */
#define WLAN_PDEV_MAX_NUM_BSSID_DISALLOW_LIST  28

/** Roam Pre-Authentication completion status */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_preauth_status_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* preauth_status, 0 - Success, Non Zero - Failure
     * Refer to IEEE Std 802.11-2016 Table 9-46 for meaning of status values.
     */
    A_UINT32 preauth_status;
    /* AP BSSID for which pre-authentication is completed */
    wmi_mac_addr candidate_ap_bssid;
    /**
     * This fixed_param TLV is followed by the below TLVs:
     *
     * PMKID computed after successful pre-authentication. This is valid only if preauth_status is success
     * A_UINT8 pmkid[];
     *
     * PMK computed after successful pre-authentication. This is valid only if preauth_status is success
     * A_UINT8 pmk[];
     */
} wmi_roam_preauth_status_cmd_fixed_param;

/** Roam Pre-Authentication start event */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_preauth_start_event_fixed_param */
    A_UINT32 vdev_id;
    /* AP BSSID for which host needs to start pre-authentication */
    wmi_mac_addr candidate_ap_bssid;
    /*
     * Transmit address for which host needs to start pre-authentication
     * in MLO case.  In non MLO cases, transmit_addr will be filled with 0x0.
     */
    wmi_mac_addr transmit_addr;
    /* AKM suite type (as defined in the IEEE 802.11 spec) */
    A_UINT32 akm_suite_type;
} wmi_roam_preauth_start_event_fixed_param;

typedef struct {
    /*
     * The timestamp is in units of ticks of a 19.2MHz clock.
     * The timestamp is taken at roam scan start.
     */
    A_UINT32 lower32bit;
    A_UINT32 upper32bit;
} wmi_roaming_timestamp;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_stats_event_fixed_param */
    A_UINT32 vdev_id;
    /* number of roam scans */
    A_UINT32 num_roam_scans;
    /* This TLV is followed by TLV's:
     *   A_UINT32 client_id[num_roam_scans]; based on WMI_SCAN_CLIENT_ID
     *   wmi_roaming_timestamp timestamp[num_roam_scans]; clock ticks at the time of scan start
     *   A_UINT32 num_channels[num_roam_scans]; number of channels that are scanned
     *   A_UINT32 chan_info[]; channel frequencies (MHz) in each scan
     *       The num_channels[] elements specify how many elements there are
     *       within chan_info[] for each scan.
     *       For example, if num_channels = [2, 3] then chan_info will have 5
     *       elements, with the first 2 elements from the first scan, and
     *       the last 3 elements from the second scan.
     *   wmi_mac_addr old_bssid[num_roam_scans]; bssid we are connected to at the time of roaming
     *   A_UINT32 is_roaming_success[num_roam_scans]; value is 1 if roaming is successful, 0 if roaming failed
     *   wmi_mac_addr new_bssid[num_roam_scans]; bssid after roaming
     *   A_UINT32 num_of_roam_candidates[num_roam_scans]; number of candidates found in each roam scan
     *   roam_scan_trigger_reason roam_reason[num_roam_scans]; reason for each roam scan
     *   wmi_mac_addr bssid[]; bssids of candidates in each roam scan
     *       The num_of_roam_candidates[] elements specify how many elements
     *       there are within bssid[] for each scan.
     *       For example, if num_of_roam_candidates = [2, 3] then bssid will
     *       have 5 elements, with the first 2 elements from the first scan,
     *       and the last 3 elements from the second scan.
     *   A_UINT32 score[]; score of candidates in each roam scan
     *       The num_of_roam_candidates[] elements specify how many elements
     *       there are within score[] for each scan.
     *       For example, if num_of_roam_candidates = [2, 3] then score will
     *       have 5 elements, with the first 2 elements from the first scan,
     *       and the last 3 elements from the second scan.
     *   A_UINT32 channel[]; channel frequency (MHz) of candidates in each roam scan
     *       The num_of_roam_candidates[] elements specify how many elements
     *       there are within channel[] for each scan.
     *       For example, if num_of_roam_candidates = [2, 3] then channel will
     *       have 5 elements, with the first 2 elements from the first scan,
     *       and the last 3 elements from the second scan.
     *   A_UINT32 rssi[]; RSSI in dB w.r.t. noise floor of candidates
     *       in each roam scan.
     *       The num_of_roam_candidates[] elements specify how many elements
     *       there are within rssi[] for each scan.
     *       For example, if num_of_roam_candidates = [2, 3] then rssi will
     *       have 5 elements, with the first 2 elements from the first scan,
     *       and the last 3 elements from the second scan.
     */
} wmi_roam_scan_stats_event_fixed_param;

typedef enum {
    WMI_ROAM_TRIGGER_SUB_REASON_PERIODIC_TIMER = 1, /* Roam scan triggered due to periodic timer expiry */
    WMI_ROAM_TRIGGER_SUB_REASON_INACTIVITY_TIMER,   /* Roam scan triggered due to inactivity detection */
    /* INACTIVITY_TIMER_LOW_RSSI - alias for INACTIVITY_TIMER */
    WMI_ROAM_TRIGGER_SUB_REASON_INACTIVITY_TIMER_LOW_RSSI =
        WMI_ROAM_TRIGGER_SUB_REASON_INACTIVITY_TIMER,
    WMI_ROAM_TRIGGER_SUB_REASON_BTM_DI_TIMER,       /* Roam scan triggered due to BTM Disassoc Imminent timeout */
    WMI_ROAM_TRIGGER_SUB_REASON_FULL_SCAN,          /* Roam scan triggered due to partial scan failure */
    WMI_ROAM_TRIGGER_SUB_REASON_LOW_RSSI_PERIODIC,  /* Roam scan triggered due to Low RSSI periodic timer */
    WMI_ROAM_TRIGGER_SUB_REASON_CU_PERIODIC,        /* Roam scan triggered due to CU periodic timer */
    /* PERIODIC_TIMER_AFTER_INACTIVITY:
     * Roam scan triggered due to periodic timer after device in
     * inactivity state.
     * This timer is enabled/used for roaming in a vendor-specific manner.
     */
    WMI_ROAM_TRIGGER_SUB_REASCON_PERIODIC_TIMER_AFTER_INACTIVITY,
    WMI_ROAM_TRIGGER_SUB_REASON_PERIODIC_TIMER_AFTER_INACTIVITY =
        WMI_ROAM_TRIGGER_SUB_REASCON_PERIODIC_TIMER_AFTER_INACTIVITY,
    /*
     * PERIODIC_TIMER_AFTER_INACTIVITY_LOW_RSSI - alias for
     * PERIODIC_TIMER_AFTER_INACTIVITY
     */
    WMI_ROAM_TRIGGER_SUB_REASON_PERIODIC_TIMER_AFTER_INACTIVITY_LOW_RSSI =
        WMI_ROAM_TRIGGER_SUB_REASON_PERIODIC_TIMER_AFTER_INACTIVITY,
    WMI_ROAM_TRIGGER_SUB_REASON_PERIODIC_TIMER_AFTER_INACTIVITY_CU,
    WMI_ROAM_TRIGGER_SUB_REASON_INACTIVITY_TIMER_CU,
} WMI_ROAM_TRIGGER_SUB_REASON_ID;

typedef enum wmi_roam_invoke_status_error {
    WMI_ROAM_INVOKE_STATUS_SUCCESS = 0,
    WMI_ROAM_INVOKE_STATUS_VDEV_INVALID = 0x11,    /* Invalid VDEV */
    WMI_ROAM_INVOKE_STATUS_BSS_INVALID,            /* Invalid VDEV BSS */
    WMI_ROAM_INVOKE_STATUS_VDEV_DOWN,              /* VDEV is not UP */
    WMI_ROAM_INVOKE_STATUS_ROAM_HANDLE_INVALID,    /* VDEV ROAM handle is invalid */
    WMI_ROAM_INVOKE_STATUS_OFFLOAD_DISABLE,        /* Roam offload is not enabled */
    WMI_ROAM_INVOKE_STATUS_AP_SSID_LENGTH_INVALID, /* Connected AP profile SSID length is zero */
    WMI_ROAM_INVOKE_STATUS_HO_DISALLOW,            /* Already FW internal roaming is in progress */
    WMI_ROAM_INVOKE_STATUS_ALREADY_RUNNING,        /* Roam Invoke already in progress either from internal FW BTM request or from host*/
    WMI_ROAM_INVOKE_STATUS_NON_ROAMABLE_AP,        /* Roam HO is not triggered due to non roamable AP */
    WMI_ROAM_INVOKE_STATUS_HO_INTERNAL_FAIL,       /* Candidate AP save failed */
    WMI_ROAM_INVOKE_STATUS_DISALLOW,               /* Roam invoke trigger is not enabled */
    WMI_ROAM_INVOKE_STATUS_SCAN_FAIL,              /* Scan start fail */
    WMI_ROAM_INVOKE_STATUS_START_HO_FAIL,          /* Roam HO start fail */
    WMI_ROAM_INVOKE_STATUS_INVALID_PARAMS,         /* Roam invoke params are invalid */
    WMI_ROAM_INVOKE_STATUS_INVALID_SCAN_MODE,      /* Roam scan mode is invalid */
    WMI_ROAM_INVOKE_STATUS_NO_CAND_AP,             /* No candidate AP found to roam to */
    WMI_ROAM_INVOKE_STATUS_HO_FAIL,                /* handoff failed */
} wmi_roam_invoke_status_error_t;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_reason_tlv_param */
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when roam trigger happened.
     */
    A_UINT32 timestamp;      /* Timestamp in milli seconds */
    /* trigger_reason:
     * Roam trigger reason from WMI_ROAM_TRIGGER_REASON_ID
     */
    A_UINT32 trigger_reason;
    /* trigger_sub_reason:
     * Reason for each roam scan from WMI_ROAM_TRIGGER_SUB_REASON_ID,
     * if multiple scans are triggered for a single roam trigger.
     */
    A_UINT32 trigger_sub_reason;
    A_UINT32 current_rssi;   /* Connected AP RSSI in dBm */
    /* roam_rssi_threshold:
     * RSSI threshold value in dBm for low RSSI roam trigger.
     */
    A_UINT32 roam_rssi_threshold;
    A_UINT32 cu_load;        /* Connected AP CU load percentage (0-100) */
    /* deauth_type:
     * 1 -> De-authentication
     * 2 -> Disassociation
     */
    A_UINT32 deauth_type;
    /* deauth_reason:
     * De-authentication or disassociation reason.
     * De-authentication / disassociation Values are enumerated in the
     * 802.11 spec.
     */
    A_UINT32 deauth_reason;
    /* btm_request_mode:
     * Mode Values are enumerated in the 802.11 spec.
     */
    A_UINT32 btm_request_mode;
    A_UINT32 disassoc_imminent_timer;  /* in Milli seconds */
    /* validity_internal:
     * Preferred candidate list validity interval in Milli seconds.
     */
    A_UINT32 validity_internal;
    /* candidate_list_count:
     * Number of preferred candidates from BTM request.
     */
    A_UINT32 candidate_list_count;
    /* btm_response_status_code:
     * Response status Values are enumerated in the 802.11 spec.
     */
    A_UINT32 btm_response_status_code;

    union {
        /*
         * If a definition of these vendor-specific files has been provided,
         * use the vendor-specific names for these fields as an alias for
         */
        #ifdef WMI_ROAM_TRIGGER_REASON_VENDOR_SPECIFIC1
        WMI_ROAM_TRIGGER_REASON_VENDOR_SPECIFIC1;
        #endif
        struct {
            /* opaque space reservation for vendor-specific fields */
            A_UINT32 vendor_specific1[7];
        };
    };
    /* BTM BSS termination timeout value in milli seconds */
    A_UINT32 btm_bss_termination_timeout;
    /* BTM MBO assoc retry timeout value in milli seconds */
    A_UINT32 btm_mbo_assoc_retry_timeout;
    union {
        /*
         * If a definition of these vendor-specific files has been provided,
         * use the vendor-specific names for these fields as an alias for
         */
        #ifdef WMI_ROAM_TRIGGER_REASON_VENDOR_SPECIFIC2
        WMI_ROAM_TRIGGER_REASON_VENDOR_SPECIFIC2;
        #endif
        struct {
            /* opaque space reservation for vendor-specific fields */
            A_UINT32 vendor_specific2[4];
        };
    };
    /* btm_req_dialog_token: dialog token number in BTM request frame */
    A_UINT32 btm_req_dialog_token;
    /* data RSSI in dBm when abort to roam scan */
    A_INT32 data_rssi;
    /* data RSSI threshold in dBm */
    A_INT32 data_rssi_threshold;
    /* rx linkspeed status, 0:good linkspeed, 1:bad */
    A_UINT32 rx_linkspeed_status;
} wmi_roam_trigger_reason;

#define WMI_GET_BTCONNECT_STATUS(flags)      WMI_GET_BITS(flags, 0, 1)
#define WMI_SET_BTCONNECT_STATUS(flags, val) WMI_SET_BITS(flags, 0, 1, val)

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_info_tlv_param */
    /* roam_scan_type:
     * 0 -> Partial roam scan
     * 1 -> Full roam scan
     */
    A_UINT32 roam_scan_type;
    /* next_rssi_trigger_threshold:
     * Updated RSSI threshold value in dBm for next roam trigger.
     */
    A_UINT32 next_rssi_trigger_threshold;
    A_UINT32 roam_scan_channel_count; /* Number of channels scanned during roam scan */
    A_UINT32 roam_ap_count; /* Number of roamable APs */
    A_UINT32 frame_info_count; /* Number of frame info */
    /*
     * scan_complete_timestamp is the absolute time w.r.t host timer
     * which is synchronized between the host and target.
     * This timestamp indicates the time when roam scan finished.
     */
    A_UINT32 scan_complete_timestamp;   /* milli second units */
    /*
     * Flags capturing factors involved during roam scan:
     * Bit 0    : Bluetooth connect status, 0(not connected) or 1(connected).
     * Bit 1-31 : reserved for future use.
     */
    A_UINT32 flags;
} wmi_roam_scan_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_channel_info_tlv_param */
    A_UINT32 channel;    /* Channel frequency in MHz */
    A_UINT32 ch_dwell_type; /* indicates channel dwell type:
                             * 0 -> unspecified
                             * 1 -> active
                             * 2 -> passive
                             */
} wmi_roam_scan_channel_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_ap_info_tlv_param */
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when candidate AP is found
     * during roam scan.
     */
    A_UINT32 timestamp;      /* Timestamp in milli seconds */
    A_UINT32 candidate_type; /* 0 - Candidate AP, 1 - Connected AP */
    wmi_mac_addr bssid;      /* AP MAC address */
    A_UINT32 channel;        /* AP channel frequency in MHz */
    A_UINT32 rssi;           /* AP current RSSI in dBm */
    A_UINT32 cu_load;        /* AP current cu load percentage (0-100) */
    /*
     * The score fields below don't have a pre-determined range,
     * but use the sense that a higher score indicates a better
     * roam candidate.
     */
    A_UINT32 rssi_score;     /* AP current RSSI score */
    A_UINT32 cu_score;       /* AP current cu score */
    A_UINT32 total_score;    /* AP total score */
    A_UINT32 etp;            /* AP Estimated Throughput (ETP) value in mbps */
    /* Blacklist reason from WMI_BLACKLIST_REASON_ID */
    A_UINT32 bl_reason;
    /* Source of adding AP to BL from WMI_BLACKLIST_SOURCE_ID */
    A_UINT32 bl_source;
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when AP added to blacklist.
     */
    A_UINT32 bl_timestamp;
    /* Original timeout value in milli seconds when AP added to BL */
    A_UINT32 bl_original_timeout;
} wmi_roam_ap_info;

typedef enum {
    /* Failures reasons for not triggering roaming */
    WMI_ROAM_FAIL_REASON_NO_SCAN_START = 1, /* Roam scan not started */
    WMI_ROAM_FAIL_REASON_SCAN_NOT_ALLOWED = WMI_ROAM_FAIL_REASON_NO_SCAN_START, /* Roam scan is not allowed to start */
    WMI_ROAM_FAIL_REASON_NO_AP_FOUND,       /* No roamable APs found during roam scan */
    WMI_ROAM_FAIL_REASON_NO_CAND_AP_FOUND,  /* No candidate APs found during roam scan */

    /* Failure reasons after roaming is triggered */
    WMI_ROAM_FAIL_REASON_HOST,              /* Roam fail due to VDEV STOP issued from Host */
    WMI_ROAM_FAIL_REASON_AUTH_SEND,         /* Unable to send auth request frame */
    WMI_ROAM_FAIL_REASON_AUTH_RECV,         /* Received auth response with error status code */
    WMI_ROAM_FAIL_REASON_NO_AUTH_RESP,      /* Not receiving auth response frame */
    WMI_ROAM_FAIL_REASON_REASSOC_SEND,      /* Unable to send reassoc request frame */
    WMI_ROAM_FAIL_REASON_REASSOC_RECV,      /* Received reassoc response with error status code */
    WMI_ROAM_FAIL_REASON_NO_REASSOC_RESP,   /* Not receiving reassoc response frame */
    WMI_ROAM_FAIL_REASON_EAPOL_TIMEOUT,     /* EAPOL TIMEOUT */
    WMI_ROAM_FAIL_REASON_EAPOL_M1_TIMEOUT = WMI_ROAM_FAIL_REASON_EAPOL_TIMEOUT, /* EAPOL M1 is not received */
    WMI_ROAM_FAIL_REASON_MLME,              /* MLME internal error */
    WMI_ROAM_FAIL_REASON_INTERNAL_ABORT,    /* Internal abort */
    WMI_ROAM_FAIL_REASON_SCAN_START,        /* Unable to start roam scan */
    WMI_ROAM_FAIL_REASON_AUTH_NO_ACK,       /* No ACK is received for Auth request */
    WMI_ROAM_FAIL_REASON_AUTH_INTERNAL_DROP, /* Auth request is dropped internally */
    WMI_ROAM_FAIL_REASON_REASSOC_NO_ACK,    /* No ACK is received for Reassoc request */
    WMI_ROAM_FAIL_REASON_REASSOC_INTERNAL_DROP, /* Reassoc request is dropped internally */
    WMI_ROAM_FAIL_REASON_EAPOL_M2_SEND,     /* Unable to send EAPOL M2 frame */
    WMI_ROAM_FAIL_REASON_EAPOL_M2_INTERNAL_DROP,   /* EAPOL M2 frame dropped internally */
    WMI_ROAM_FAIL_REASON_EAPOL_M2_NO_ACK,   /* No Ack is received for EAPOL M2 frame */
    WMI_ROAM_FAIL_REASON_EAPOL_M3_TIMEOUT,  /* M3 is not received */
    WMI_ROAM_FAIL_REASON_EAPOL_M4_SEND,     /* Unable to send EAPOL M4 frame */
    WMI_ROAM_FAIL_REASON_EAPOL_M4_INTERNAL_DROP,   /* EAPOL M4 frame dropped internally */
    WMI_ROAM_FAIL_REASON_EAPOL_M4_NO_ACK,   /* No Ack is received for EAPOL M4 frame */
    WMI_ROAM_FAIL_REASON_NO_SCAN_FOR_FINAL_BMISS, /* Roam scan is not started for Final Bmiss case */
    WMI_ROAM_FAIL_REASON_DISCONNECT,        /* Deauth or Disassoc received from AP during roaming handoff */
    WMI_ROAM_FAIL_REASON_SYNC,              /* when host wakes-up during roaming in-progress, abort current roaming if previous sync is pending */
    WMI_ROAM_FAIL_REASON_SAE_INVALID_PMKID, /* WPA3-SAE invalid PMKID */
    WMI_ROAM_FAIL_REASON_SAE_PREAUTH_TIMEOUT, /* WPA3-SAE pre-authentication timeout */
    WMI_ROAM_FAIL_REASON_SAE_PREAUTH_FAIL, /* WPA3-SAE pre-authentication failed */
    WMI_ROAM_FAIL_REASON_UNABLE_TO_START_ROAM_HO, /* Roam HO is not started due to FW internal issue */

    /* Failure reasons to indicate no candidate and final bmiss event sent */
    WMI_ROAM_FAIL_REASON_NO_AP_FOUND_AND_FINAL_BMISS_SENT, /* No roamable APs found during roam scan and final bmiss event sent */
    WMI_ROAM_FAIL_REASON_NO_CAND_AP_FOUND_AND_FINAL_BMISS_SENT, /* No candidate APs found during roam scan and final bmiss event sent */
    WMI_ROAM_FAIL_REASON_CURR_AP_STILL_OK, /* Roam scan not happen due to current network condition is fine */

    WMI_ROAM_FAIL_REASON_UNKNOWN = 255,
} WMI_ROAM_FAIL_REASON_ID;

typedef enum {
    WMI_ROAM_ABORT_UNSPECIFIED = 0,            /* Target did not specify detailed reason for roam scan being aborted */
    WMI_ROAM_ABORT_LOWRSSI_DATA_RSSI_HIGH = 1, /* Roam scan is not started due to high data RSSI during low-RSSI roaming */
    WMI_ROAM_ABORT_LOWRSSI_LINK_SPEED_GOOD,    /* Roam scan is not started due to good link speed during low-RSSI roaming */
    WMI_ROAM_ABORT_BG_DATA_RSSI_HIGH,          /* Roam scan is not started due to high data RSSI during background roaming */
    WMI_ROAM_ABORT_BG_RSSI_ABOVE_THRESHOLD,    /* Roam scan is not started due to high beacon RSSI during background roaming */
} WMI_ROAM_FAIL_SUB_REASON_ID;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_result_tlv_param */
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when roaming is completed.
     */
    A_UINT32 timestamp;     /* Timestamp in milli seconds */
    A_UINT32 roam_status;   /* 0 - Roaming is success, 1 - Roaming is failed */
    A_UINT32 roam_fail_reason; /* from WMI_ROAM_FAIL_REASON_ID */
    wmi_mac_addr bssid; /* bssid corresponds to roam_fail_reason */
    A_UINT32 roam_abort_reason; /* Detail reason for roam scan not start, from WMI_ROAM_FAIL_SUB_REASON_ID */
} wmi_roam_result;

#define WMI_ROAM_NEIGHBOR_REPORT_INFO_REQUEST_TOKEN_GET(detail)         WMI_GET_BITS(detail, 0, 8)
#define WMI_ROAM_NEIGHBOR_REPORT_INFO_REQUEST_TOKEN_SET(detail,val)     WMI_SET_BITS(detail, 0, 8, val)
#define WMI_ROAM_NEIGHBOR_REPORT_INFO_RESPONSE_TOKEN_GET(detail)        WMI_GET_BITS(detail, 8, 8)
#define WMI_ROAM_NEIGHBOR_REPORT_INFO_RESPONSE_TOKEN_SET(detail,val)    WMI_SET_BITS(detail, 8, 8, val)
#define WMI_ROAM_NEIGHBOR_REPORT_INFO_NUM_OF_NRIE_GET(detail)           WMI_GET_BITS(detail, 16, 8)
#define WMI_ROAM_NEIGHBOR_REPORT_INFO_NUM_OF_NRIE_SET(detail,val)       WMI_SET_BITS(detail, 16, 8, val)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_neighbor_report_info_tlv_param */
    /* request_type:
     * 1 -> BTM query
     * 2 -> 11K neighbor report request
     */
    A_UINT32 request_type;
    /* neighbor_report_request_timestamp:
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when neighbor report request
     * is received.
     */
    A_UINT32 neighbor_report_request_timestamp;  /* in milli seconds */
    /* neighbor_report_response_timestamp:
     * This timestamp indicates the time when neighbor report response is sent.
     */
    A_UINT32 neighbor_report_response_timestamp; /* in milli seconds */
    A_UINT32 neighbor_report_channel_count; /* Number of channels received in neighbor report response */
    A_UINT32 btm_query_token; /* btm query dialog token */
    /* btm_query_reason_code:
     * Transition Query Reasons are enumerated in table 7-43x
     * of the 802.11v spec.
     */
    A_UINT32 btm_query_reason_code;
    /* neighbor_report_detail:
     * [7:0]     : neighbor report request token
     * [15:8]    : neighbor report response token
     * [23:16]   : the number of neighbor report elements in response frame
     * [31:24]   : reserved
     * Refer to the above WMI_ROAM_NEIGHBOR_REPORT_INFO_*_GET,_SET macros for
     * reading and writing these bitfields.
     */
    A_UINT32 neighbor_report_detail;
} wmi_roam_neighbor_report_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_btm_response_info_tlv_param */

    /*enum STATUS_CODE_WNM_BTM defined in ieee80211_defs.h*/
    A_UINT32 btm_status;

    /* AP MAC address */
    wmi_mac_addr target_bssid;

    /* vsie_reason value:
     *  0x00    Will move to Cellular
     *  0x01    Unspecified
     *  0x02    Not supported
     *  0x03    No Cellular Network
     *  0x04    Controlled by framework
     *  0x05    Roam to better AP
     *  0x06    Suspend mode
     *  0x07    RSSI is strong enough
     *  0x08-0xFF    TBD
     */
    A_UINT32 vsie_reason;
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when btm response is sent.
     */
    A_UINT32 timestamp; /* milli second units */
    A_UINT32 btm_resp_dialog_token; /* dialog_token in btm response frame */
    /* btm_resp_bss_termination_delay:
     * bss_termination_delay in btm response frame is the number of minutes
     * that the responding STA requests the BSS to delay termination.
     */
    A_UINT32 btm_resp_bss_termination_delay;
} wmi_roam_btm_response_info;

typedef struct {
    A_UINT32 tlv_header;                /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_btm_request_candidate_info_tlv_param */
    wmi_mac_addr btm_candidate_bssid;   /* BTM candidate MAC address */
    A_UINT32 preference;                /* preference in Preference IE */
} wmi_roam_btm_request_candidate_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_neighbor_report_channel_info_tlv_param */
    A_UINT32 channel;    /* Channel frequency in MHz */
} wmi_roam_neighbor_report_channel_info;

#define WMI_GET_ASSOC_ID(frame_info_ext)      WMI_GET_BITS(frame_info_ext, 0, 16)
#define WMI_SET_ASSOC_ID(frame_info_ext, val) WMI_SET_BITS(frame_info_ext, 0, 16, val)

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_frame_info_tlv_param */
    /* timestamp is the absolute time w.r.t host timer which is synchronized between the host and target */
    A_UINT32 timestamp;      /* Timestamp when frame is sent or received */
    /*
     * frame_info = frame_type | (frame_subtype << 2) | (request_or_response << 6) | (auth_algo_num << 7) | (seq_num << 16)
     * frame_type(2 bits), frame_subtype(4 bits) are from 802.11 spec.
     *     If frame_type is WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT, frame_subtype
     *     should be one of value in WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE.
     * request_or_response(1 bit) - Valid if frame_subtype is authentication.
     *      0 - Authentication request 1 - Authentication response
     * auth_algo_num(5bits) : Lower 5 bits of 9.4.1.1 Authentication Algorithm
     *     Number field
     *     The auth_algo_num bits shall be ignored unless
     *     WMI_SERVICE_ROAM_STAT_PER_CANDIDATE_FRAME_INFO_SUPPORT is set and
     *     frame_subtype is auth frame.
     * seq_num(16 bits) - frame sequence number
     */
    A_UINT32 frame_info;

    /* status_code:
     * For Rx frames : Status code from 802.11 spec, section 9.4.1.9
     * For Rx frames (deauth / disassoc) : Reason code from 802.11 spec,
     *     section 9.4.1.7
     * For Tx frames : Status_code should be one of value in
     *     WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_STATUS
     */
    A_UINT32 status_code;
    /*
     * rssi_dbm_abs
     * Last known RSSI of the current BSSID at the moment when the frame
     * was sent and received.
     * This RSSI value is valid for deauth / disassoc frame only.
     * The rssi_dbm_abs value is the absolute value of the RSSI in dBm units.
     * For example, if the RSSI is -40 dBm, rssi_dbm_abs will be 40.
     */
    A_UINT32 rssi_dbm_abs;
    /* retry_count
     * To show how many times the same frame (but with different
     * sequence number) is retransmitted, in protocol level.
     */
    A_UINT32 retry_count;
    wmi_mac_addr bssid;      /* AP MAC address */
    /*
     * frame_info_ext captures below fields:
     * Bit 0-15  : (re)assoc id of (re)association response frame,
     *             section 9.4.1.8 AID field.
     * Bit 16~31 : reserved for future use.
     */
    A_UINT32 frame_info_ext;
} wmi_roam_frame_info;

typedef enum {
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT = 3,
} WMI_ROAM_FRAME_INFO_FRAME_TYPE;

typedef enum {
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE_M1 = 1,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE_M2,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE_M3,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE_M4,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE_GTK_M1,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE_GTK_M2,
} WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_SUBTYPE;

typedef enum {
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_STATUS_ACK = 0,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_STATUS_NO_ACK,
    WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_STATUS_TX_FAIL,
} WMI_ROAM_FRAME_INFO_FRAME_TYPE_EXT_STATUS;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_initial_info_tlv_param */

    /* count of full scan */
    A_UINT32 roam_full_scan_count;
    A_INT32  rssi_th; /* unit: dBm */
    A_UINT32 cu_th; /* channel utilization threshold: uses units of percent */
    /* timer_canceled:
     * bit0: timer1 canceled
     * bit1: timer2 canceled
     * bit2: inactive timer canceled
     */
    A_UINT32 timer_canceled;
} wmi_roam_initial_info;

typedef enum {
    WMI_ROAM_MSG_RSSI_RECOVERED = 1, /* Connected AP RSSI is recovered to good region */
} WMI_ROAM_MSG_ID;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_msg_info_tlv_param */
    /*
     * timestamp is the absolute time (in milliseconds) w.r.t host timer
     * which is synchronized between the host and target
     */
    A_UINT32 timestamp;
    A_UINT32 msg_id; /* Message ID from WMI_ROAM_MSG_ID */
    /* msg_param values are interpreted differently for different msg_id values.
     * if msg_id == WMI_ROAM_MSG_RSSI_RECOVERED:
     *     msg_param1 contains current AP RSSI in dBm
     *         (unsigned -> signed conversion is required)
     *     msg_param2 contains next trigger RSSI threshold in dBm
     *         (unsigned -> signed conversion is required)
     */
    A_UINT32 msg_param1;
    A_UINT32 msg_param2;
} wmi_roam_msg_info;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_stats_event_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 roam_scan_trigger_count; /* Number of roam scans triggered */
} wmi_roam_stats_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_reason_cmm_tlv_param */
    /*
     * timestamp is the absolute time w.r.t host timer which is synchronized
     * between the host and target.
     * This timestamp indicates the time when roam trigger happened.
     */
    A_UINT32 timestamp;      /* Timestamp in milli seconds */
    /* trigger_reason:
     * Roam trigger reason from WMI_ROAM_TRIGGER_REASON_ID
     */
    A_UINT32 trigger_reason;
    /* trigger_sub_reason:
     * Reason for each roam scan from WMI_ROAM_TRIGGER_SUB_REASON_ID,
     * if multiple scans are triggered for a single roam trigger.
     */
    A_UINT32 trigger_sub_reason;
    A_UINT32 current_rssi;   /* Connected AP RSSI in dBm */
} wmi_roam_trigger_reason_cmm;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_rssi_tlv_param */
    /* roam_rssi_threshold:
     * RSSI threshold value in dBm for low RSSI roam trigger.
     */
    A_UINT32 roam_rssi_threshold;
    /* data RSSI in dBm */
    A_UINT32 data_rssi;
    /* data RSSI threshold in dBm */
    A_UINT32 data_rssi_threshold;
    /* rx linkspeed status, 0:good linkspeed, 1:bad */
    A_UINT32 rx_linkspeed_status;
} wmi_roam_trigger_rssi;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_bss_load_tlv_param */
    A_UINT32 cu_load;        /* Connected AP CU load percentage (0-100) */
} wmi_roam_trigger_bss_load;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_deauth_tlv_param */
    /* deauth_type:
     * 1 -> De-authentication
     * 2 -> Disassociation
     */
    A_UINT32 deauth_type;
    /* deauth_reason:
     * De-authentication or disassociation reason.
     * De-authentication / disassociation Values are enumerated in the
     * 802.11 spec.
     */
    A_UINT32 deauth_reason;
} wmi_roam_trigger_deauth;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_btm_tlv_param */
    /* btm_request_mode:
     * Mode Values are enumerated in the 802.11 spec.
     */
    A_UINT32 btm_request_mode;
    A_UINT32 disassoc_imminent_timer;  /* in Milli seconds */
    /* validity_internal:
     * Preferred candidate list validity interval in Milli seconds.
     */
    A_UINT32 validity_internal;
    /* candidate_list_count:
     * Number of preferred candidates from BTM request.
     */
    A_UINT32 candidate_list_count;
    /* btm_response_status_code:
     * Response status Values are enumerated in the 802.11 spec.
     */
    A_UINT32 btm_response_status_code;

    /* BTM BSS termination timeout value in milli seconds */
    A_UINT32 btm_bss_termination_timeout;
    /* BTM MBO assoc retry timeout value in milli seconds */
    A_UINT32 btm_mbo_assoc_retry_timeout;

    /* btm_req_dialog_token: dialog token number in BTM request frame */
    A_UINT32 btm_req_dialog_token;
} wmi_roam_trigger_btm;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_bmiss_tlv_param */
    /* B[0-6]: final bmiss cnt.
     * B[7-23]: consecutive bmiss cnt
     * B[24]: isQosNullSuccess: 0: success, 1:fail
     */
    A_UINT32 bmiss_status;
} wmi_roam_trigger_bmiss;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_dense_tlv_param */
    /* RX Throughput in bytes per second in dense env */
    A_UINT32 rx_tput;
    /* TX Throughput in bytes per second in dense env */
    A_UINT32 tx_tput;
    /* dense_status: b[0-7]: roamable AP count info in dense env */
    A_UINT32 dense_status;
} wmi_roam_trigger_dense;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_force_tlv_param */
    A_UINT32 invoke_reason; /* from wlan_roam_invoke_reason */
} wmi_roam_trigger_force;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_kickout_tlv_param */
    /* consecutive tx failure threshold */
    A_UINT32 kickout_th;
    A_UINT32 kickout_reason; /* from PEER_KICKOUT_REASON */
} wmi_roam_trigger_kickout;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_per_tlv_param */
    /*  For PER roam,
     *  If the number of PPDUs with PHY rate < low_rate_thresh exceeds
     *  N * tx/rx_rate_thresh_percnt / 100, roaming will be triggered.
     *  b[0-7]:  tx_rate_thresh_percnt
     *  b[16-23]:rx_rate_thresh_percnt
     */
    A_UINT32 rate_thresh_percnt;
} wmi_roam_trigger_per;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_periodic_tlv_param */
    /*  roam scan periodic :   units = milliseconds*/
    A_UINT32 periodic_timer_ms;
} wmi_roam_trigger_periodic;

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_trigger_hi_rssi_tlv_param */
    /*  roam High RSSI threshold */
    A_UINT32 hi_rssi_threshold;
} wmi_roam_trigger_hi_rssi;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_get_scan_channel_list_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_roam_get_scan_channel_list_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_scan_channel_list_event_fixed_param */
    A_UINT32 vdev_id;
    wmi_ssid ssid; /* SSID of connected AP */
    /*
     * This event can be sent as a response to
     * WMI_ROAM_GET_SCAN_CHANNEL_LIST_CMDID or
     * can be sent asynchronously during disconnection.
     * command_response = 1, when it is sent as a response to
     *                       WMI_ROAM_GET_SCAN_CHANNEL_LIST_CMDID
     *                  = 0, for other cases
     */
    A_UINT32 command_response;
/*
 * This fixed_param TLV is followed by the below TLVs:
 *
 * List of roam scan channel frequencies in MHz
 * A_UINT32 channel_list[];
 */
} wmi_roam_scan_channel_list_event_fixed_param;

typedef enum {
    WMI_ROAM_CND_RSSI_SCORING             = 0x00000001, /* FW considers RSSI scoring */
    WMI_ROAM_CND_HT_SCORING               = 0x00000002, /* FW considers HT scoring */
    WMI_ROAM_CND_VHT_SCORING              = 0x00000004, /* FW considers VHT scoring */
    WMI_ROAM_CND_HE_SCORING               = 0x00000008, /* FW considers 11ax scoring */
    WMI_ROAM_CND_BW_SCORING               = 0x00000010, /* FW considers Bandwidth scoring */
    WMI_ROAM_CND_BAND_SCORING             = 0x00000020, /* FW considers Band(2G/5G) scoring */
    WMI_ROAM_CND_NSS_SCORING              = 0x00000040, /* FW considers NSS(1x1 / 2x2) scoring */
    WMI_ROAM_CND_CHAN_CONGESTION_SCORING  = 0x00000080, /* FW considers ESP/QBSS scoring */
    WMI_ROAM_CND_BEAMFORMING_SCORING      = 0x00000100, /* FW considers Beamforming scoring */
    WMI_ROAM_CND_PCL_SCORING              = 0x00000200, /* FW considers PCL scoring */
    WMI_ROAM_CND_OCE_WAN_SCORING          = 0x00000400, /* FW considers OCE WAN metrics scoring */
    WMI_ROAM_CND_OCE_AP_TX_PWR_SCORING    = 0x00000800, /* FW considers OCE AP Tx power scoring */
    WMI_ROAM_CND_OCE_AP_SUBNET_ID_SCORING = 0x00001000, /* FW considers OCE AP subnet id scoring */
    WMI_ROAM_CND_SAE_PK_AP_SCORING        = 0x00002000, /* FW considers SAE-PK enabled AP scoring */
    WMI_ROAM_CND_SECURITY_SCORING         = 0x00004000, /* FW considers security scoring */
} WMI_ROAM_CND_SCORING_PARAMS;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_capability_report_event_fixed_param */
    /*
     * This event is sent asynchronously during FW init.
     * It indicates FW roam related capabilities to host.
     *
     * scoring_capability_bitmap = Indicates firmware candidate scoring
     *                             capabilities. It's a bitmap of values
     *                             from enum WMI_ROAM_CND_SCORING_PARAMS.
     */
    A_UINT32 scoring_capability_bitmap;
} wmi_roam_capability_report_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_mlo_config_cmd_fixed_param */
    wmi_mac_addr partner_link_addr; /* Assigned link address which can be used as self link addr when vdev is not created */

    A_UINT32 vdev_id;

    /*
     * Configure max number of link mlo connection supports.
     * Invalid value or 0 will use max supported value by fw.
     */
    A_UINT32 support_link_num;

    /*
     * Bit 0: 2G band support if 1
     * Bit 1: 5G band support if 1
     * Bit 2: 6G band support if 1
     */
    A_UINT32 support_link_band; /* Configure the band bitmap of mlo connection supports. */
} wmi_roam_mlo_config_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_param_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** parameter id - see WMI_ROAM_PARAM */
    A_UINT32 param_id;
    /** parameter value */
    A_UINT32 param_value;
} wmi_roam_set_param_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_enable_vendor_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** abstract mechanism for differentiating vendors */
    A_UINT32 vendor_id;
    /** 1 - Enable, 0 - Disable */
    A_UINT32 enable;
} wmi_roam_enable_vendor_control_cmd_fixed_param;

typedef enum {
    ROAM_VENDOR_CONTROL_PARAM_TRIGGER = 1,
    ROAM_VENDOR_CONTROL_PARAM_DELTA,
    ROAM_VENDOR_CONTROL_PARAM_FULL_SCANPERIOD,
    ROAM_VENDOR_CONTROL_PARAM_PARTIAL_SCANPERIOD,
    ROAM_VENDOR_CONTROL_PARAM_ACTIVE_CH_DWELLTIME,
    ROAM_VENDOR_CONTROL_PARAM_PASSIVE_CH_DWELLTIME,
    ROAM_VENDOR_CONTROL_PARAM_HOME_CH_TIME,
    ROAM_VENDOR_CONTROL_PARAM_AWAY_TIME,
    /* Sending query for all roam_vendor_control_param */
    ROAM_VENDOR_CONTROL_PARAM_ALL = 0xFFFFFFFF,
} WMI_ROAM_GET_VENDOR_CONTROL_PARAM_ID;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_vendor_param_cmd_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /** Vendor Control Param ID from enum WMI_ROAM_GET_VENDOR_CONTROL_PARAM_ID */
    A_UINT32 param_id;
} wmi_roam_get_vendor_control_param_cmd_fixed_param;

/* WMI_ROAM_GET_VENDOR_CONTROL_PARAM_EVENTID - No need to make this event as wakeable event
 * Host ensures to take wakelock after sending WMI_ROAM_GET_VENDOR_CONTROL_PARAM_CMDID command */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_roam_get_vendor_control_param_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /**
     * Vendor Control Param ID from enum WMI_ROAM_GET_VENDOR_CONTROL_PARAM_ID
     * If param_id is ROAM_VENDOR_CONTROL_PARAM_ALL, send all vendor control
     * param value defined in enum WMI_ROAM_GET_VENDOR_CONTROL_PARAM_ID
     * using wmi_vendor_control_param tlv
     */
    A_UINT32 param_id;
    /** Vendor control param value */
    A_UINT32 param_value;
} wmi_roam_get_vendor_control_param_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vendor_control_param */
    /** Vendor Control Param ID from enum WMI_ROAM_GET_VENDOR_CONTROL_PARAM_ID */
    A_UINT32 param_id;
    /** Vendor control param value */
    A_UINT32 param_value;
} wmi_vendor_control_param;

/** the definition of different ROAM parameters */
typedef enum {
    /*
     * roam param to configure below roam events
     * Bit : 0 disabled - do not send WMI_ROAM_NOTIF_SCAN_END in WMI_ROAM_EVENTID
     * Bit : 0 enabled  - send WMI_ROAM_NOTIF_SCAN_END in WMI_ROAM_EVENTID
     * Bit : 1 disabled - do not send 1) WMI_ROAM_STATS_EVENTID 2) WMI_ROAM_NOTIF_SCAN_START and WMI_ROAM_NOTIF_SCAN_END notifs in WMI_ROAM_EVENTID in suspend mode
     * Bit : 1 enabled  - send 1) WMI_ROAM_STATS_EVENTID 2) WMI_ROAM_NOTIF_SCAN_START and WMI_ROAM_NOTIF_SCAN_END notifs in WMI_ROAM_EVENTID in suspend mode
     * Bit : 2-31  - reserved
     */
    WMI_ROAM_PARAM_ROAM_EVENTS_CONFIG = 1,

    /*
     * Bit : 0 if unset, POOR_LINKSPEED
     * Bit : 0 if set, GOOD_LINKSPEED
     */
    WMI_ROAM_PARAM_LINKSPEED_STATE = 2,

    /*
     * roam param to configure roam scan params for DFS jitter reduction
     * Bit : 0 enabled   - DFS channel jitter reduction is enabled.
     * Bit : 0 disabled  - DFS channel jitter reduction is disabled.
     *
     * Bit : 1-7         - To indicate the passive-to-active conversion timeout
     *                     with range 40 to 70 in ms, default value is 50ms.
     *                     If an invalid (out of range) value is provided, the
     *                     default value will be used.
     * Bit : 8-13        - To indicate the DFS RSSI threshold for current AP
     *                     with range 0 to 58, default value is 0 dB
     *                     (DFS RSSI threshold = -70 dBm + 0 dB = -70 dBm).
     *                     The specified value (in dB) is added to the -70 dBm
     *                     baseline value to get the RSSI threshold in dBm.
     *                     If an invalid (out of range) value is provided, the
     *                     default value will be used.
     * Bit : 14-19       - To indicate the DFS RSSI threshold for candidate AP
     *                     with range 0 to 58, default value is 0 dB
     *                     (DFS RSSI threshold = -70 - 0 = -70 dBm).
     *                     The specified value (in dB) is added to the -70 dBm
     *                     baseline value to get the RSSI threshold in dBm.
     *                     If an invalid (out of range) value is provided, the
     *                     default value will be used.
     * Bit : 20 disabled - To indicate DFS roam scan policy is AGILE
     * Bit : 20 enabled  - To indicate DFS roam scan policy is Legacy
     *
     * Bit : 21-31 are reserved
     */
    WMI_ROAM_PARAM_ROAM_SCAN_DFS_CONFIG_BITMAP = 3,

    /*
     * roam param to configure HO_DELAY_RX value at runtime
     * The configured value of ho_delay_rx will be in milliseconds
     * Maximum value which user can configure using this Param ID is 1000 msec.
     *
     * If any value beyond this Maximum value is provided by user, FW will
     * configure the ho_delay_rx value to Maximum allowed value i.e. 1000 msec.
     */
    WMI_ROAM_PARAM_ROAM_HO_DELAY_RUNTIME_CONFIG = 4,

    /*
     * Roam param to enable/disable full scan channel optimization
     * As per current implementation of roam scan, if there are no APs found
     * during partial scan, immediately a full scan will be initiated as a
     * fallback. This includes all channels that were already scanned as part
     * of partial scan.
     * This flag controls the optimization, to exclude all channels, which are
     * already scanned as part of partial scan.
     */
    WMI_ROAM_PARAM_ROAM_CONTROL_FULL_SCAN_CHANNEL_OPTIMIZATION = 5,

    /*
     * Roam param to enable/disable scanning of 6 GHz PSC channels
     * As per current implementation, Wi-Fi STA scans on all 6 GHz PSC channels
     * as part of full scan during a roam scan irrespective of whether APs are
     * present in 6 GHz or not.
     * This flag controls the optimization to do the scan in 6 GHz PSC channels
     * only if channel map or newly received RNR indicates 6 GHz APs during
     * current 2.4 GHz or 5 GHz scanning of Roam Full scan.
     */
    WMI_ROAM_PARAM_ROAM_CONTROL_FULL_SCAN_6GHZ_PSC_ONLY_WITH_RNR = 6,

    /*
     * Flag to tell whether MCC is disallowed or not in sta + sta currrent case.
     * If flag is unset, then no limitation for channels which sta can roam to.
     * If flag is set, then the channels which one of STA roam to cause MCC with other STA, it will be disallowed.
     */
     WMI_ROAM_PARAM_ROAM_MCC_DISALLOW = 7,

    /*
     * Roam param to provide additional RSSI Boost for 6 GHz Candidate AP
     * during Roam Scan in case any 6 GHz candidate has better Roam score
     * but fails RSSI Delta Check.
     * This configurable RSSI Boost value for 6GHz Candidate AP will be
     * configured via ini RoamRssiDiff6GHz
     * This configured RSSI boost value will only be applicable for 6GHz
     * Candidate AP when the STA is connected to 2.4/5 GHz Band AP and will
     * not impact if STA is connected to 6GHz Band AP
     */
    WMI_ROAM_PARAM_ROAM_RSSI_BOOST_FOR_6GHZ_CAND_AP = 8,

    /*=== END ROAM_PARAM_PROTOTYPE SECTION ===*/
} WMI_ROAM_PARAM;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_big_data_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_vdev_get_big_data_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_send_big_data_event_fixed_param */
    A_UINT32 vdev_id;
    /** param list **/
    /* Target power (dBm units) - 2.4G/5G */
    A_UINT32 target_power_2g_dsss;
    A_UINT32 target_power_2g_ofdm;
    A_UINT32 target_power_2g_mcs0;
    A_UINT32 target_power_5g_ofdm;
    A_UINT32 target_power_5g_mcs0;

    /* ANI level from hal-phy */
    A_UINT32 ani_level;

    /* Number of probe requests sent while roaming after BMISS */
    A_UINT32 tx_probe_req;

    /* Number of probe responses received while roaming after BMISS */
    A_UINT32 rx_probe_response;

    /*
     * Number of retries (both by HW and FW) for tx data MPDUs sent by this vdev
     */
    A_UINT32 num_data_retries;

    /* Number of tx data MPDUs dropped from this vdev due to tx retry limit */
    A_UINT32 num_tx_data_fail;

    /* Number of aggregated unicast tx expecting response ppdu */
    A_UINT32 data_tx_ppdu_count;

    /* Number of aggregated unicast tx expecting response mpdu */
    A_UINT32 data_tx_mpdu_count;

    /* number of rx frames with good PCLP */
    A_UINT32 rx_frame_good_pclp_count;

    /* Number of occasions that no valid delimiter is detected by ampdu parser */
    A_UINT32 invalid_delimiter_count;

    /* Number of frames for which the CRC check failed in the MAC */
    A_UINT32 rx_crc_check_fail_count;

    /* tx fifo overflows count for transmissions by this vdev */
    A_UINT32 txpcu_fifo_overflows_count;

    /* Number of ucast ACKS received good FCS (doesn't include block acks) */
    A_UINT32 successful_acks_count;

    /*
     * RX BlockACK Counts
     * Note that this counts the number of block acks received by this vdev,
     * not the number of MPDUs acked by block acks.
     */
    A_UINT32 rx_block_ack_count;

    /* Beacons received from member of BSS */
    A_UINT32 member_bss_beacon_count;

    /* Beacons received from other BSS */
    A_UINT32 non_bss_beacon_count;

    /* Number of RX Data multicast frames dropped by the HW */
    A_UINT32 rx_data_mc_frame_filtered_count;
} wmi_vdev_send_big_data_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_get_big_data_p2_cmd_fixed_param */
    A_UINT32 vdev_id;
} wmi_vdev_get_big_data_p2_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_send_big_data_p2_event_fixed_param */
    A_UINT32 vdev_id;
    /** param list **/
    /* total number of TSF out of sync */
    A_UINT32 tsf_out_of_sync;

    /**
     * ANI (noise interference) level corresponding to the channel.
     * The range of values is different for chips of different target
     * architectures.  Helium values range from 0 to 9, while Lithium
     * and Beryllium values range from -5 to 15.
     * In all cases, higher values indicate more noise interference.
     */
    A_INT32 ani_level;

    /*
     * This fixed_param TLV is followed by the below TLVs:
     * List of datapath big data stats. This stat is not interpreted by
     * host. This gets directly updated on big data server and later FW
     * team will analyze this data.
     *
     * A_UINT32 bd_datapath_stats[]; // DEPRECATED
     * wmi_big_data_dp_stats_tlv_param big_data_dp_stats[];
     */
} wmi_vdev_send_big_data_p2_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_bd_datapath_stats_tlv_param */
    A_UINT32 tlv_header;

    /* Tx power before disconnection.
     * The units of the following tx power fields are 0.5 dBm for Helium
     * architecture target (e.g. a value of 1 means tx power = 0.5 dBm),
     * and are 0.25 dBm for subsequent target architectures.
     */
    A_UINT32 last_data_tx_pwr;
    A_UINT32 target_power_dsss;
    A_UINT32 target_power_ofdm;

    /* Rate index of last data frame before disconnection */
    A_UINT32 last_tx_data_rix;

    /* Tx rate (in kbps) of last data frame before disconnection */
    A_UINT32 last_tx_data_rate_kbps;
} wmi_big_data_dp_stats_tlv_param;

typedef enum {
    WMI_6GHZ_REG_LPI = 0,
    WMI_6GHZ_REG_VLP = 1,
    WMI_6GHZ_REG_SP  = 2,
    WMI_6GHZ_REG_SP_STA = 3,
    WMI_6GHZ_REG_MAX = 5, /* Can't expand, b/c used as array length below */
} WMI_6GHZ_REG_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_tpc_power_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 psd_power;  /* Value: 0 or 1, is PSD power or not */
    A_UINT32 eirp_power; /* Maximum EIRP power (dDm units), valid only if power is PSD */
    A_UINT32 power_type_6ghz; /* Type: WMI_6GHZ_REG_TYPE, used for halphy CTL lookup */

    /*
     * This fixed_param TLV is followed by the below TLVs:
     * num_pwr_levels of wmi_vdev_set_tpc_power_atomic_fixed_param
     * For PSD power, it is the PSD/EIRP power of the frequency (20MHz chunks).
     * For non-psd power, the power values are for 20, 40, and till
     * BSS BW power levels.
     * The num_pwr_levels will be checked by sw how many elements present
     * in the variable-length array.
     *
     * wmi_vdev_set_tpc_power_atomic_fixed_param;
     */
} wmi_vdev_set_tpc_power_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 chan_cfreq; /* Channel center frequency (MHz) */
    A_UINT32 tx_power;   /* Unit: dBm, either PSD/EIRP power for this frequency or incremental for non-PSD BW */
} wmi_vdev_ch_power_info;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals wmi_txpower_query_cmd_fixed_param  */
    A_UINT32 request_id;    /* unique request ID to distinguish the command / event set */

    /* The mode value has the following meaning :
     * 0  : 11a
     * 1  : 11bg
     * 2  : 11b
     * 3  : 11g only
     * 4  : 11a HT20
     * 5  : 11g HT20
     * 6  : 11a HT40
     * 7  : 11g HT40
     * 8  : 11a VHT20
     * 9  : 11a VHT40
     * 10 : 11a VHT80
     * 11 : 11g VHT20
     * 12 : 11g VHT40
     * 13 : 11g VHT80
     * 14 : unknown
     */
    A_UINT32 mode;
    A_UINT32 rate;          /* rate index */
    A_UINT32 nss;           /* number of spatial stream */
    A_UINT32 beamforming;   /* beamforming parameter 0:disabled, 1:enabled */
    A_UINT32 chain_mask;    /* mask for the antenna set to get power */
    A_UINT32 chain_index;   /* index for the antenna */
} wmi_get_tpc_power_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_get_tpc_power_evt_fixed_param  */
    A_UINT32 request_id;    /* request ID set by the command */
    A_INT32  tx_power;      /* TX power for the specified HALPHY parameters in half dBm unit */
} wmi_get_tpc_power_evt_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_dpd_status_cmd_fixed_param */
    A_UINT32 pdev_id;        /* PDEV ID set by the command */
} wmi_pdev_get_dpd_status_cmd_fixed_param;

typedef enum {
    WMI_DPD_STATUS_DISABLE = 0,
    WMI_DPD_STATUS_ENABLE = 1,
    WMI_DPD_STATUS_INVALID = 2,
} WMI_DPD_STATUS;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_dpd_status_evt_fixed_param  */
    A_UINT32 pdev_id;        /* PDEV Id set by the command */
    A_UINT32 dpd_status;    /* DPD status obtained from HALPHY, refer to WMI_DPD_STATUS */
} wmi_pdev_get_dpd_status_evt_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_halphy_cal_status_cmd_fixed_param */
    A_UINT32 pdev_id;       /* PDEV ID set by the command */
} wmi_pdev_get_halphy_cal_status_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_aoa_phasedelta_evt_fixed_param  */
    A_UINT32 pdev_id; /* PDEV Id set by the command */
    A_UINT32 freq; /* Current channel in MHz */

    /*
     * Chain Info
     * LSB 16 bits - Max chain supported,
     * MSB 16 bits - Chain pair which has phase values:
     *        0x0003 - chain 0 and 1
     *        0x000c - chain 2 and 3
     *        0x0030 - chain 4 and 5
     *        0x00c0 - chain 6 and 7
     */
    A_UINT32 chainInfo;

    /*
     * Phase Delta values:
     * Two phase delta values are packed into each A_UINT32 word
     * LSB 16-bit is 1st value and MSB 16-bit is 2nd value
     * Phasedelta values will be 0-1023 (mapped to 0-360 degree)
     * Each gain from 0 to 61 has a phasedelta value, e.g.
     * gain 0's phase delta occupies bits 15:0 of phasedelta[chain][0],
     * gain 1's phase delta occupies bits 31:16 of phasedelta[chain][0],
     * gain 2's phase delta occupies bits 15:0 of phasedelta[chain][1], etc.
     */
    A_UINT32 phasedelta[WMI_MAX_CHAINS_FOR_AOA_RCC][MAX_AOA_PHASEDELTA];

    /*
     * IBF cal values:
     * Used for final AoA calculation
     * [AoAPhase =  ( PhaseDeltaValue + IBFcalValue )   %   1024]
     */
    A_UINT32 perChainIbfCalVal[WMI_MAX_CHAINS_FOR_AOA_RCC];
} wmi_pdev_aoa_phasedelta_evt_fixed_param;

/* WMI_HALPHY_CAL_LIST:
 *
 * Below is the list of HALPHY online CAL currently enabled in
 * WIN chipsets
 */
typedef enum {
    WMI_HALPHY_CAL_ADC = 0,
    WMI_HALPHY_CAL_BWFILTER,
    WMI_HALPHY_CAL_PDET_AND_PAL,
    WMI_HALPHY_CAL_RXDCO,
    WMI_HALPHY_CAL_COMB_TXLO_TXIQ_RXIQ,
    WMI_HALPHY_CAL_IBF,
    WMI_HALPHY_CAL_PA_DROOP,
    WMI_HALPHY_CAL_DAC,
    WMI_HALPHY_CAL_ANI,
    WMI_HALPHY_CAL_NOISE_FLOOR,

    WMI_HALPHY_CAL_MAX_CAL_LIST
} WMI_HALPHY_CAL_LIST;

/* WMI_HALPHY_CAL_VALID_BITMAP_STATUS
 *
 * In WMI wmi_pdev_get_halphy_cal_status_evt_fixed_param
 * (halphy_cal_valid_bmap member), below enum list must be used
 * to get which calibration status indication is sent by FW to HOST.
 * Only if that particular bit it set, corresponding bit of the
 * halphy_cal_status variable will be valid.
 */
typedef enum {
    WMI_HALPHY_CAL_ADC_BMAP                 = (1 << WMI_HALPHY_CAL_ADC),
    WMI_HALPHY_CAL_BWFILTER_BMAP            = (1 << WMI_HALPHY_CAL_BWFILTER),
    WMI_HALPHY_CAL_PDET_AND_PAL_BMAP        = (1 << WMI_HALPHY_CAL_PDET_AND_PAL),
    WMI_HALPHY_CAL_RXDCO_BMAP               = (1 << WMI_HALPHY_CAL_RXDCO),
    WMI_HALPHY_CAL_COMB_TXLO_TXIQ_RXIQ_BMAP = (1 << WMI_HALPHY_CAL_COMB_TXLO_TXIQ_RXIQ),
    WMI_HALPHY_CAL_IBF_BMAP                 = (1 << WMI_HALPHY_CAL_IBF),
    WMI_HALPHY_CAL_PA_DROOP_BMAP            = (1 << WMI_HALPHY_CAL_PA_DROOP),
    WMI_HALPHY_CAL_DAC_BMAP                 = (1 << WMI_HALPHY_CAL_DAC),
    WMI_HALPHY_CAL_ANI_BMAP                 = (1 << WMI_HALPHY_CAL_ANI),
    WMI_HALPHY_CAL_NOISE_FLOOR_BMAP         = (1 << WMI_HALPHY_CAL_NOISE_FLOOR),
} WMI_HALPHY_CAL_VALID_BITMAP_STATUS;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_get_halphy_cal_status_evt_fixed_param  */
    A_UINT32 pdev_id;       /* PDEV Id set by the command */

    /*
     * Calibration valid bitmap from HALPHY, refer to
     * WMI_HALPHY_CAL_VALID_BITMAP_STATUS.
     * Only if this particular bit it set, corresponding bit of the
     * halphy_cal_status variable will be valid.
     */
    A_UINT32 halphy_cal_valid_bmap;

    /* Calibration result status bitmap from HALPHY.
     * The WMI_HALPHY_CAL_VALID_BITMAP_STATUS enum identifies which bit
     * in the bitmap corresponds to which cal type.
     * Each valid bit uses the following settings:
     *     1 - SUCCESS
     *     0 - FAILURE
    */
    A_UINT32 halphy_cal_status;
} wmi_pdev_get_halphy_cal_status_evt_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_halphy_cal_bmap_cmd_fixed_param */
    A_UINT32 pdev_id;       /* PDEV ID set by the command */

    /*
     * Calibration valid bitmap from HOST, refer to
     * WMI_HALPHY_CAL_VALID_BITMAP_STATUS.
     * Based on the bitmap value, HALPHY will set corresponding mask values
     * to each of the online calibrations
     */
    A_UINT32 online_halphy_cals_bmap;

    /* Calibration enable/disable support for home/scan channel
     *     0 - home channel
     *     1 - scan channel
     *     2 - both home and scan channel
     */
    A_UINT32 home_scan_channel;
} wmi_pdev_set_halphy_cal_bmap_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_halphy_cal_bmap_evt_fixed_param */
    A_UINT32 pdev_id;       /* PDEV Id set by the command */

    /* Status indication for calibration
     *     0 - SUCCESS
     *     1 - FAIL
     * This WMI command will by sent from HOST dynamically but only one
     * at a time. So no need of cookie/request handshake.
     */
    A_UINT32 status;
} wmi_pdev_set_halphy_cal_bmap_evt_fixed_param;

/* below structures are related to Motion Detection. */
typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_motion_det_config_params_cmd_fixed_param */
    A_UINT32 tlv_header;         /** TLV Header */
    A_UINT32 vdev_id;            /** Vdev ID */
    A_UINT32 time_t1;            /** Time gap of successive bursts of
                                  * measurement frames during coarse
                                  * motion detection (in ms) */
    A_UINT32 time_t2;            /** Time gap of successive bursts of
                                  * measurement frames during fine
                                  * motion detection (in ms) */
    A_UINT32 n1;                 /** number of measurement frames in one
                                  * burst, for coarse detection */
    A_UINT32 n2;                 /** number of measurement frames in one
                                  * burst, for fine detection */
    A_UINT32 time_t1_gap;        /** gap between measurement frames in
                                  * course detection (in ms) */
    A_UINT32 time_t2_gap;        /** gap between measurement frames in
                                  * fine detection (in ms) */
    A_UINT32 coarse_K;           /** number of times motion detection has to
                                  * be performed for coarse detection */
    A_UINT32 fine_K;             /** number of times motion detection has to
                                  * be performed for fine detection */
    A_UINT32 coarse_Q;           /** number of times motion is expected
                                  * to be detected for success case in
                                  * coarse detection */
    A_UINT32 fine_Q;             /** number of times motion is expected
                                  * to be detected for success case in
                                  * fine detection */
    A_UINT32 md_coarse_thr_high; /** higher threshold value (in percent)
                                  * from host to FW, which will be used in
                                  * coarse detection phase of motion detection.
                                  * This is the threshold for the correlation
                                  * of the old RF local-scattering environment
                                  * with the current RF local-scattering
                                  * environment.  A value of 100(%) indicates
                                  * that neither the transceiver nor any
                                  * nearby objects have changed position. */
    A_UINT32 md_fine_thr_high;   /** higher threshold value (in percent)
                                  * from host to FW, which will be used in
                                  * fine detection phase of motion detection.
                                  * This is the threshold for correlation
                                  * between the old and current RF environments,
                                  * as explained above. */
    A_UINT32 md_coarse_thr_low;  /** lower threshold value (in percent)
                                  * for immediate detection of motion in
                                  * coarse detection phase.
                                  * This is the threshold for correlation
                                  * between the old and current RF environments,
                                  * as explained above. */
    A_UINT32 md_fine_thr_low;    /** lower threshold value (in percent)
                                  * for immediate detection of motion in
                                  * fine detection phase.
                                  * This is the threshold for correlation
                                  * between the old and current RF environments,
                                  * as explained above. */
} wmi_motion_det_config_params_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_motion_det_base_line_config_params_cmd_fixed_param */
    A_UINT32 tlv_header;    /** TLV Header */
    A_UINT32 vdev_id;       /** Vdev ID */
    A_UINT32 bl_time_t;     /** time T for baseline (in ms)
                             * Every bl_time_t, bl_n packets are sent */
    A_UINT32 bl_packet_gap; /** gap between measurement frames for baseline
                             * (in ms) */
    A_UINT32 bl_n;          /** number of measurement frames to be sent
                             * during one baseline */
    A_UINT32 bl_num_meas;   /** number of times the baseline measurement
                             * to be done */
} wmi_motion_det_base_line_config_params_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_motion_det_start_stop_cmd_fixed_param */
    A_UINT32 tlv_header; /** TLV Header */
    A_UINT32 vdev_id;    /** Vdev ID */
    A_UINT32 enable;     /** start = 1, stop =0 */
} wmi_motion_det_start_stop_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_motion_det_base_line_start_stop_cmd_fixed_param */
    A_UINT32 tlv_header; /** TLV Header */
    A_UINT32 vdev_id;    /** Vdev ID */
    A_UINT32 enable;     /** start = 1, stop =0 */
} wmi_motion_det_base_line_start_stop_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_motion_det_event */
    A_UINT32 tlv_header; /** TLV Header */
    A_UINT32 vdev_id;    /** Vdev ID */
    A_UINT32 status;     /** status = 1 -> motion detected */
} wmi_motion_det_event;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_motion_det_base_line_event */
    A_UINT32 tlv_header;           /** TLV Header */
    A_UINT32 vdev_id;              /** Vdev ID */
    A_UINT32 bl_baseline_value;    /** baseline correlation value calculated
                                    * during baselining phase (in %) */
    A_UINT32 bl_max_corr_reserved; /** max corr value obtained during baselining
                                    * phase (in %); reserved for future */
    A_UINT32 bl_min_corr_reserved; /** min corr value obtained during baselining
                                    * phase (in %); reserved for future */
} wmi_motion_det_base_line_event;

/* Below structures are related to OBSS_PD_SPATIAL Reuse */
typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_obss_set_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** Enable/Disable Spatial Reuse */
    A_UINT32 enable;
    /*
     * In the below fields, "OBSS level" refers to the power of the
     * signals received from "Other BSS".
     * Spatial reuse will only be permitted if the Other BSS's signal power
     * is within the min to max range specified by the below fields.
     */
    /** Minimum OBSS level to use */
    A_INT32 obss_min; /* RSSI in dBm */
    /** Maximum OBSS level to use */
    A_INT32 obss_max; /* RSSI in dBm */
    /** Vdev id*/
    A_UINT32 vdev_id;
} wmi_obss_spatial_reuse_set_cmd_fixed_param;

/*
 * Below structure is related to WMI CMD that configures the default
 * minimum (OBSS_MIN) and maximum (OBSS_MAX) Other BSS levels (RSSI in dBm)
 * for VDEV of a give type (STA or AP). These thresholds are configured
 * within the Host and passed down to the FW. FW will use these
 * default OBSS_MIN and OBSS_MAX values during roaming if the assoc response
 * from the AP does not include spatial reuse parameter set Info Element.
 */
typedef struct {
    /** TLV tag and len; tag equals
    *   WMITLV_TAG_STRUC_wmi_obss_spatial_reuse_set_def_obss_thresh_cmd_fixed_param
    */
    A_UINT32 tlv_header;
    /*
     * In the below fields, "OBSS level" refers to the power of the
     * signals received from "Other BSS".
     * Spatial reuse will only be permitted if the Other BSS's signal power
     * is within the min to max range specified by the below fields.
     */
    /** Minimum OBSS level to use */
    A_INT32 obss_min; /* RSSI in dBm */
    /** Maximum OBSS level to use */
    A_INT32 obss_max; /* RSSI in dBm */
    /** Type of VDEV for which these threshold are applicable.
     *  vdev_type should be one of WMI_VDEV_TYPE_STA or WMI_VDEV_TYPE_AP
     */
    A_UINT32 vdev_type;
} wmi_obss_spatial_reuse_set_def_obss_thresh_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUCT_wmi_chan_width_peer_list */
    wmi_mac_addr peer_macaddr;
    A_UINT32 chan_width; /* wmi_channel_width */
    A_UINT32 puncture_20mhz_bitmap; /* per peer wmi puncture_bitmap,
                                     * each bit indicates one 20 MHz BW
                                     * punctured.
                                     * This variable should be read from left,
                                     * LSb will point to the lowest-frequency
                                     * 20 MHz frequency slice.
                                     * bit value:
                                     *     0 - 20 MHz BW is punctured
                                     *     1 - not punctured
                                     */
} wmi_chan_width_peer_list;

#define WMI_PEER_CHAN_WIDTH_SWITCH_SET_VALID_VDEV_ID(comp) WMI_SET_BITS(comp, 31,1, 1)
#define WMI_PEER_CHAN_WIDTH_SWITCH_GET_VALID_VDEV_ID(comp) WMI_GET_BITS(comp, 31, 1)

#define WMI_PEER_CHAN_WIDTH_SWITCH_SET_VALID_PUNCTURE_BITMAP(comp) WMI_SET_BITS(comp, 30, 1, 1)
#define WMI_PEER_CHAN_WIDTH_SWITCH_GET_VALID_PUNCTURE_BITMAP(comp) WMI_GET_BITS(comp, 30, 1)

/* bits 29:8 currently unused */

#define WMI_PEER_CHAN_WIDTH_SWITCH_SET_VDEV_ID(comp, value) WMI_SET_BITS(comp, 0, 8, value)
#define WMI_PEER_CHAN_WIDTH_SWITCH_GET_VDEV_ID(comp) WMI_GET_BITS(comp, 0, 8)

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_chan_width_switch_cmd_fixed_param */
    A_UINT32 num_peers;
    /* vdev_var:
     * The MSb (bit 31) indicates that the vdev_id is valid.
     * Bit 30 indicates that the puncture bitmap is valid.
     * The LSB (bits 0-7) is used to infer the actual vdev_id.
     * The other bits can be used for future enhancements.
     */
    A_UINT32 vdev_var;
    /*
     * Following this structure is the TLV:
     * struct wmi_chan_width_peer_list chan_width_peer_info[num_peers];
     */
} wmi_peer_chan_width_switch_cmd_fixed_param;

#define WMI_PEER_BULK_SET_VDEV_ID(comp, value) WMI_SET_BITS(comp, 0, 8, value)
#define WMI_PEER_BULK_GET_VDEV_ID(comp) WMI_GET_BITS(comp, 0, 8)
/* bits 30:8 currently unused */
#define WMI_PEER_BULK_SET_VALID_VDEV_ID(comp) WMI_SET_BITS(comp, 31, 1, 1)
#define WMI_PEER_BULK_GET_VALID_VDEV_ID(comp) WMI_GET_BITS(comp, 31, 1)

typedef struct {
     A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUCT_wmi_peer_list */
     wmi_mac_addr peer_macaddr;
     /** parameter id */
     A_UINT32 param_id;
     A_UINT32 param_value;
} wmi_peer_list;

/* WMI_PEER_BULK_SET_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_bulk_set_cmd_fixed_param */
    /* vdev_var:
     * The MSb (bit 31) indicates that the vdev_id is valid.
     * The LSB (bits 0-7) is used to infer the actual vdev_id.
     * The other bits can be used for future enhancements.
     */
    A_UINT32 vdev_var;

    /*
     * Following this structure is the TLV array:
     *     struct wmi_peer_list peer_info[];
     */
} wmi_peer_bulk_set_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_he_tb_action_frm_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* enable or disable HE TB Action frame */
    A_UINT32 enable;
    /* length of action frame body in bytes */
    A_UINT32 data_len;
/* This TLV is followed by another TLV of array of bytes
 * A_UINT8 data[];
 * This data array contains the action frame raw data
 */
} wmi_pdev_he_tb_action_frm_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     *  WMITLV_TAG_STRUC_wmi_hpcs_pulse_start_cmd_fixed_param */
    A_UINT32 tlv_header;            /** TLV Header */
    A_UINT32 vdev_id;               /** Vdev ID */
    A_UINT32 start;                 /** Start/Stop */
    A_UINT32 sync_time;             /** Lower 32-bit of the TSF at which the
                                     * pulse should be synced. */
    A_UINT32 pulse_interval;        /** Periodicity of pulses in micro seconds */
    A_UINT32 active_sync_period;    /** Number of beacons to sync before generating
                                     * pulse in units of beacon interval.
                                     * Valid for clock slaves only. */
    A_UINT32 gpio_pin;              /** GPIO Pin number to be used */
    A_UINT32 pulse_width;           /** Duration of pulse in micro seconds */
} wmi_hpcs_pulse_start_cmd_fixed_param;

typedef struct {
     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_muedca_params_config_event_fixed_param */
     A_UINT32 tlv_header;                          /** TLV Header */
     A_UINT32 pdev_id;
     /*
      * The following per-AC arrays are indexed using the
      * WMI_AC_xxx / wmi_traffic_ac enum values.
      */
     /* aifsn
      * Arbitration inter frame spacing number (AIFSN)
      * Values are integers used for back off computation.
      */
     A_UINT32 aifsn[WMI_AC_MAX];
     /* ecwmin
      * Exponent form of ContentionWindow min (ECWmin)
      * Values are integers used for back off computation.
      */
     A_UINT32 ecwmin[WMI_AC_MAX];
     /* ecwmax
      * Exponent form of ContentionWindow max (ECWmax)
      * Values are integers used for back off computation.
      */
     A_UINT32 ecwmax[WMI_AC_MAX];
     /* muedca_expiration_time
      * MU EDCA Expiration time refers to the length of time after the most
      * recent UL trigger time. The MU EDCA Timer field indicates the time
      * limit, in units of 8 TUs
      */
     A_UINT32 muedca_expiration_time[WMI_AC_MAX];
 } wmi_muedca_params_config_event_fixed_param;

/* Default PE Duration subfield indicates the PE duration in units of 4 us */
#define WMI_HEOPS_DEFPE_GET_D3(he_ops) WMI_GET_BITS(he_ops, 0, 3)
#define WMI_HEOPS_DEFPE_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 0, 3, value)

/* TWT required */
#define WMI_HEOPS_TWT_REQUIRED_GET_D3(he_ops) WMI_GET_BITS(he_ops, 3, 1)
#define WMI_HEOPS_TWT_REQUIRED_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 3, 1, value)

/* RTS threshold in units of 32 us,0 - always use RTS 1023 - this is disabled */
#define WMI_HEOPS_RTSTHLD_GET_D3(he_ops) WMI_GET_BITS(he_ops, 4, 10)
#define WMI_HEOPS_RTSTHLD_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 4, 10, value)

/* VHT Operation Information Present */
#define WMI_HEOPS_VHTOPSPRSNT_GET_D3(he_ops) WMI_GET_BITS(he_ops, 14, 1)
#define WMI_HEOPS_VHTOPSPRSNT_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 14, 1, value)

/* Co-Located BSS */
#define WMI_HEOPS_COLOCBSS_GET_D3(he_ops) WMI_GET_BITS(he_ops, 15, 1)
#define WMI_HEOPS_COLOCBSS_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 15, 1, value)

/* ER SU Disable */
#define WMI_HEOPS_ERSUDIS_GET_D3(he_ops) WMI_GET_BITS(he_ops, 16, 1)
#define WMI_HEOPS_ERSUDIS_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 16, 1, value)

/* bit17 - bit23 are reserved */

/* BSS color */
#define WMI_HEOPS_COLOR_GET_D3(he_ops) WMI_GET_BITS(he_ops, 24, 6)
#define WMI_HEOPS_COLOR_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 24, 6, value)

/* Partial BSS Color field indicates whether BSS applies an AID assignment rule using partial BSS color bits */
#define WMI_HEOPS_PARTBSSCOLOR_GET_D3(he_ops) WMI_GET_BITS(he_ops, 30, 1)
#define WMI_HEOPS_PARTBSSCOLOR_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 30, 1, value)

/* when set to 1 disables use of BSS color */
#define WMI_HEOPS_BSSCOLORDISABLE_GET_D3(he_ops) WMI_GET_BITS(he_ops, 31, 1)
#define WMI_HEOPS_BSSCOLORDISABLE_SET_D3(he_ops, value) WMI_SET_BITS(he_ops, 31, 1, value)

/* PHY Capabilities Information field */


/* bit 0 reserved */

/*
 * B0: Indicates STA support 40 MHz channel width in 2.4 GHz
 * B1: Indicates STA support 40 MHz and 80 MHz channel width in 5 GHz
 * B2: Indicates STA supports 160 MHz channel width in 5 GHz
 * B3: Indicates STA supports 160/80+80 MHz channel width in 5 GHz
 * B4: If B1 is set to 0, then B5 indicates support of 242/106/52/26-tone
 *     RU mapping in 40 MHz channel width in 2.4 GHz. Otherwise Reserved.
 * B5: If B2, B3, and B4 are set to 0, then B6 indicates support of
 *     242-tone RU mapping in 40 MHz and 80
 * MHz channel width in 5 GHz. Otherwise Reserved.
 * B6: Reserved
 */
#define WMI_HECAP_PHY_CBW_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 1, 7)
#define WMI_HECAP_PHY_CBW_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 1, 7, value)

/*
 * B0: Indicates STA supports reception of preamble puncturing in 80 MHz,
 *     where in the preamble only the secondary 20 MHz is punctured
 * B1: Indicates STA supports reception of preamble puncturing in 80 MHz,
 *     where in the preamble only one of the two 20 MHz sub-channels in the
 *     secondary 40 MHz is punctured
 * B2: Indicates STA supports reception of preamble puncturing in 160 MHz
 *     or 80+80 MHz, where in the primary 80 MHz of the preamble only the
 *     secondary 20 MHz is punctured
 * B3: Indicates STA supports reception of preamble puncturing in 160 MHz
 *     or 80+80 MHz, where in the primary 80 MHz of the preamble, the
 *     primary 40 MHz is present
 */
#define WMI_HECAP_PHY_PREAMBLEPUNCRX_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 8, 4)
#define WMI_HECAP_PHY_PREAMBLEPUNCRX_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 8, 4, value)

/* Indicates transmitting STA is a Class A (1) or a Class B (0) device */
#define WMI_HECAP_PHY_COD_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 12, 1)
#define WMI_HECAP_PHY_COD_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 12, 1, value)

/* Indicates support of transmission and reception of LDPC encoded packets */
#define WMI_HECAP_PHY_LDPC_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 13, 1)
#define WMI_HECAP_PHY_LDPC_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 13, 1, value)

/*
 * B0: Indicates support of reception of 1x LTF and 0.8us guard interval duration for HE SU PPDUs.
 */
#define WMI_HECAP_PHY_LTFGIFORHE_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 14, 1)
#define WMI_HECAP_PHY_LTFGIFORHE_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 14, 1, value)

/*
 * If the Doppler Rx subfield is 1, indicates the maximum number of space-time streams supported for reception
 *     when a midamble is present in the Data field.
 * If the Doppler Tx subfield is 1, indicates the maximum number of space-time streams supported for transmission
 *     when a midamble is present in the Data field.
 * If both Doppler Rx and Doppler Tx subfields are 1, indicates the maximum number of space-time streams
 *     supported for transmission and reception when a midamble is present in the Data field.
 */
#define WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 15, 2)
#define WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 15, 2, value)

/*
 * B0: For a transmitting STA acting as beamformee, it indicates support of
 *     NDP reception using 4x LTF and 3.2 us guard interval duration
 */
#define WMI_HECAP_PHY_LTFGIFORNDP_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 17, 1)
#define WMI_HECAP_PHY_LTFGIFORNDP_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 17, 1, value)

/*
 * indicates support for the transmission of an HE TB PPDU that has a
 * bandwidth less than or equal to 80 MHz and is using STBC and with
 * one spatial stream
 */
#define WMI_HECAP_PHY_TXSTBC_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 18, 1)
#define WMI_HECAP_PHY_TXSTBC_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 18, 1, value)

/* indicates support for the reception of HE PPDUs using STBC with one spatial stream for <= 80MHz Tx */
#define WMI_HECAP_PHY_RXSTBC_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 19, 1)
#define WMI_HECAP_PHY_RXSTBC_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 19, 1, value)

/* indicates transmitting STA supports transmitting HE PPDUs with Doppler procedure */
#define WMI_HECAP_PHY_TXDOPPLER_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 20, 1)
#define WMI_HECAP_PHY_TXDOPPLER_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 20, 1, value)

/* indicates transmitting STA supports receiving HE PPDUs with Doppler procedure */
#define WMI_HECAP_PHY_RXDOPPLER_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 21, 1)
#define WMI_HECAP_PHY_RXDOPPLER_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 21, 1, value)

/*
 * If the transmitting STA is an AP:
 *     indicates STA supports of reception of full bandwidth UL MU-MIMO
 *     transmission.
 * If the transmitting STA is a non-AP STA:
 *     indicates STA supports of transmission of full bandwidth UL MU-MIMO
 *     transmission.
 */
#define WMI_HECAP_PHY_UL_MU_MIMO_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 22, 1)
#define WMI_HECAP_PHY_UL_MU_MIMO_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 22, 1, value)

/*
 * If the transmitting STA is an AP:
 *     indicates STA supports of reception of UL MUMIMO transmission on an
 *     RU in an HE MU PPDU where the RU does not span the entire PPDU bandwidth.
 * If the transmitting STA is a non-AP STA:
 *     indicates STA supports of transmission of UL MU-MIMO transmission on an
 *     RU in an HE MU PPDU where the RU does not span the entire PPDU bandwidth.
 */
#define WMI_HECAP_PHY_ULMUMIMOOFDMA_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 23, 1)
#define WMI_HECAP_PHY_ULMUMIMOOFDMA_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 23, 1, value)

/* Tx DCM
 * B0:B1
 *     00: Does not support DCM
 *     01: BPSK
 *     10: QPSK
 *     11: 16-QAM
 * B2 signals maximum number of spatial streams with DCM
 *     0: 1 spatial stream
 *     1: 2 spatial streams
 */
#define WMI_HECAP_PHY_DCMTX_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 24, 3)
#define WMI_HECAP_PHY_DCMTX_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 24, 3, value)

/* Rx DCM
 * B0:B1
 *     00: Does not support DCM
 *     01: BPSK
 *     10: QPSK
 *     11: 16-QAM
 * B2 signals maximum number of spatial streams with DCM
 *     0: 1 spatial stream
 *     1: 2 spatial streams
 */
#define WMI_HECAP_PHY_DCMRX_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 27, 3)
#define WMI_HECAP_PHY_DCMRX_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 27, 3, value)


/*
 * Indicates that the STA supports the reception of an HE MU PPDU payload
 * over full bandwidth and partial bandwidth (106-tone RU within 20 MHz).
 */
#define WMI_HECAP_PHY_ULHEMU_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 30, 1)
#define WMI_HECAP_PHY_ULHEMU_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 30, 1, value)

/* Indicates support for operation as an SU beamformer */
#define WMI_HECAP_PHY_SUBFMR_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[0], 31, 1)
#define WMI_HECAP_PHY_SUBFMR_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[0], 31, 1, value)

/* Indicates support for operation as an SU beamformee */
#define WMI_HECAP_PHY_SUBFME_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 0, 1)
#define WMI_HECAP_PHY_SUBFME_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 0, 1, value)

/* Indicates support for operation as an MU Beamformer */
#define WMI_HECAP_PHY_MUBFMR_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 1, 1)
#define WMI_HECAP_PHY_MUBFMR_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 1, 1, value)

/*
 * Num STS -1 for <= 80MHz (min val 3)
 * The maximum number of space-time streams minus 1 that the STA can
 * receive in an HE NDP
 */
#define WMI_HECAP_PHY_BFMESTSLT80MHZ_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 2, 3)
#define WMI_HECAP_PHY_BFMESTSLT80MHZ_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 2, 3, value)


/*
 * Num STS -1 for > 80MHz (min val 3)
 * The maximum number of space-time streams minus 1 that the STA can
 * receive in an HE NDP
 */
#define WMI_HECAP_PHY_BFMESTSGT80MHZ_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 5, 3)
#define WMI_HECAP_PHY_BFMESTSGT80MHZ_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 5, 3, value)


/*
 * Number Of Sounding Dimensions For <= 80 MHz
 * If SU beamformer capable, set to the maximum supported value of the
 * TXVECTOR parameter NUM_STS minus 1.
 * Otherwise, reserved.
 */
#define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 8, 3)
#define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 8, 3, value)

/*
 * Number Of Sounding Dimensions For > 80 MHz
 * If SU beamformer capable, set to the maximum supported value of the
 * TXVECTOR parameter NUM_STS minus 1.
 * Otherwise, reserved.
 */
#define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 11, 3)
#define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 11, 3, value)

/*
 * Indicates if the HE beamformee is capable of feedback with tone
 * grouping of 16 in the HE Compressed Beamforming Report field for
 * a SU-type feedback.
 */
#define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 14, 1)
#define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 14, 1, value)

/*
 * Indicates if the HE beamformee is capable of feedback with tone
 * grouping of 16 in the HE Compressed Beamforming Report field for
 * a MU-type feedback.
 */
#define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 15, 1)
#define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 15, 1, value)

/*
 * Indicates if HE beamformee is capable of feedback with codebook
 * size {4, 2} in the HECompressed Beamforming Report field for
 * a SU-type feedback.
 */
#define WMI_HECAP_PHY_CODBK42SU_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 16, 1)
#define WMI_HECAP_PHY_CODBK42SU_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 16, 1, value)

/*
 * Indicates if HE beamformee is capable of feedback with codebook
 * size {7, 5} in the HE Compressed Beamforming Report field for
 * a MU-type feedback.
 */
#define WMI_HECAP_PHY_CODBK75MU_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 17, 1)
#define WMI_HECAP_PHY_CODBK75MU_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 17, 1, value)

/*
 * Beamforming Feedback With Trigger Frame
 * If the transmitting STA is an AP STA:
 * B0: indicates support of reception of SU-Type partial(1) and full bandwidth feedback(0)
 * B1: indicates support of reception of MU-Type partial(1) bandwidth feedback
 * B2: indicates support of reception of CQI-Only partial and full bandwidth feedback
 * If the transmitting STA is a non-AP STA:
 * B0: indicates support of transmission of SU-Type partial(1) and full bandwidth(0) feedback
 * B1: indicates support of transmission of MU-Type partial(1) bandwidth feedback
 * B2: indicates support of transmission of CQI-Onlypartial (1)and full bandwidth feedback
 */
#define WMI_HECAP_PHY_BFFEEDBACKTRIG_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 18, 3)
#define WMI_HECAP_PHY_BFFEEDBACKTRIG_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 18, 3, value)

/* Indicates the support of transmission and reception of an HE extended range SU PPDU payload transmitted
 * over the right 106-tone RU or partial BW ER
 */
#define WMI_HECAP_PHY_HEERSU_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 21, 1)
#define WMI_HECAP_PHY_HEERSU_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 21, 1, value)

/* Indicates that the non-AP STA supports reception of a DL MU-MIMO transmission on an RU in an HE MU PPDU
 * where the RU does not span the entire PPDU bandwidth.
 */
#define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 22, 1)
#define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 22, 1, value)

/* Indicates whether or not the PPE Threshold field is present */
#define WMI_HECAP_PHY_PETHRESPRESENT_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 23, 1)
#define WMI_HECAP_PHY_PETHRESPRESENT_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 23, 1, value)

/* Indicates that the STA supports SRP-based SR operation */
#define WMI_HECAP_PHY_SRPSPRESENT_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 24, 1)
#define WMI_HECAP_PHY_SRPPRESENT_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 24, 1, value)

/* Indicates that the STA supports a power boost factor ar for the r-th RU in the range [0.5, 2] */
#define WMI_HECAP_PHY_PWRBOOSTAR_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 25, 1)
#define WMI_HECAP_PHY_PWRBOOSTAR_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 25, 1, value)

/* Indicates support for the reception of 4x LTF and 0.8us guard interval duration for HE SU PPDUs. */
#define WMI_HECAP_PHY_4XLTFAND800NSECSGI_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 26, 1)
#define WMI_HECAP_PHY_4XLTFAND800NSECSGI_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 26, 1, value)

/* For a transmitting STA acting as a beamformee, it indicates the maximum Nc for beamforming sounding
 * feedback supported If SU beamformee capable, then set to the maximum Nc for beamforming sounding feedback
 * minus 1. Otherwise, reserved.
 */
#define WMI_HECAP_PHY_MAXNC_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 27, 3)
#define WMI_HECAP_PHY_MAXNC_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 27, 3, value)

/* Indicates support for the transmission of an HE PPDU that has a bandwidth greater than 80 MHz and is using
 * STBC with one spatial stream
 */
#define WMI_HECAP_PHY_STBCTXGT80_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 30, 1)
#define WMI_HECAP_PHY_STBCTXGT80_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 30, 1, value)

/* Indicates support for the reception of an HE PPDU that has a bandwidth greater than 80 MHz and is using
 * STBC with one spatial stream
 */
#define WMI_HECAP_PHY_STBCRXGT80_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[1], 31, 1)
#define WMI_HECAP_PHY_STBCRXGT80_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[1], 31, 1, value)

/* Indicates support for the reception of an HE ER SU PPDU with 4x LTF and 0.8 us guard interval duration */
#define WMI_HECAP_PHY_ERSU4X800NSECGI_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 0, 1)
#define WMI_HECAP_PHY_ERSU4X800NSECGI_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 0, 1, value)

/*
 * Indicates support of 26-, 52-, and 106-tone mapping for a 20 MHz operating non-AP HE STA that is the
 * receiver of a 40 MHz HE MU PPDU in 2.4 GHz band, or the transmitter of a 40 MHz HE TB PPDU in 2.4GHz band.
 */
#define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 1, 1)
#define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 1, 1, value)

/*
 * Indicates support of 26-, 52-, and 106-tone mapping for a 20 MHz operating non-AP HE STA that is the
 * receiver of a 80+80 MHz or a 160 MHz HE MU PPDU, or the transmitter of a 80+80 MHz or 160 MHz HE TB PPDU.
 */
#define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 2, 1)
#define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 2, 1, value)

/*
 * Indicates supports of 160 MHz OFDMA for a non-AP HE STA that sets bit B1 of Channel Width Set to 1, and
 * sets B2 and B3 of Channel Width Set each to 0, when operating with 80 MHz channel width. The capability
 * bit is applicable while receiving a 80+80 MHz or a 160 MHz HE MU PPDU, or transmitting a 80+80 MHz or a
 * 160 MHz HE TB PPDU.
 */
#define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 3, 1)
#define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 3, 1, value)

/* Indicates support for the reception of an HE ER SU PPDU with 1x LTF and 0.8 us guard interval duration */
#define WMI_HECAP_PHY_ERSU1X800NSECGI_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 4, 1)
#define WMI_HECAP_PHY_ERSU1X800NSECGI_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 4, 1, value)

/*
 * If the Doppler Rx subfield is 1, indicates support for receiving midambles with 2x HE-LTF, 1x HE-LTF in
 * HE SU PPDU if the HE SU PPDU With 1x HE-LTF And 0.8 s GI subfield is set to 1, and 1x HE-LTF in
 * HE ER SU PPDU if the HE ER SU PPDU With 1x HELTF And 0.8 s GI subfield is set to 1.
 *
 * If the Doppler Tx subfield is 1, indicates support for transmitting midambles with 2x HE-LTF, 1x HE-LTF
 * in HE TB PPDU when allowed.

 * If both the Doppler Rx and Doppler Tx subfields are 1, indicates support for receiving midambles with 2x HELTF,
 * 1x HE-LTF in HE SU PPDU if the HE SU PPDU With 1x HE-LTF And 0.8 s GI subfield is set to 1, and
 * 1x HE-LTF in HE ER SU PPDU if the HE ER SU PPDU With 1x HE-LTF And 0.8 s GI subfield is set
 * to 1; and also support for transmitting midambles with 2x HE-LTF, 1x HE-LTF in HE TB PPDU when allowed.
 */
#define WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_GET_D3(he_cap_phy) WMI_GET_BITS(he_cap_phy[2], 5, 1)
#define WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 5, 1, value)

/*
 * If the DCM Max Constellation Tx subfield is greater than 0, then the DCM Max BW subfield indicates the
 * maximum bandwidth of a PPDU that the STA might transmit with DCM applied.
 *
 * If the DCM Max Constellation Rx subfield is greater than 0, then the DCM Max BW subfield indicates the
 * maximum bandwidth of a PPDU with DCM applied that the STA can receive.
 *
 * If both the DCM Max Constellation Tx subfield and DCM Max Constellation Rx subfield are 0, then this
 * subfield is reserved.
 *
 * 0=20MHz, 1=40Mhz, 2=80Mhz, 3=160Mhz or 80+80Mhz
 */
#define WMI_HECAP_PHY_DCMMAXBW_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 6, 2)
#define WMI_HECAP_PHY_DCMMAXBW_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 6, 2, value)

/*
 * For a non-AP STA, indicates support for receiving a DL HE MU PPDU where the number of OFDM symbols
 * in the HE SIG-B field is greater than 16.
 */
#define WMI_HECAP_PHY_LNG16SIGBSYMBSUPRT_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 8, 1)
#define WMI_HECAP_PHY_LNG16SIGBSYMBSUPRT_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 8, 1, value)

/*
 * For an AP, indicates support for the reception of full bandwidth non-triggered CQI-only feedback.
 * For a non-AP STA, indicates support for the transmission of full bandwidth non-triggered CQI-only feedback.
 */
#define WMI_HECAP_PHY_NONTRIGCQIFEEDBK_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 9, 1)
#define WMI_HECAP_PHY_NONTRIGCQIFEEDBK_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 9, 1, value)

/*
 * For a non-AP STA, indicates support for the transmission of 1024-QAM on a 26-, 52-, and 106-tone RU.
 * Reserved for an AP.
 */
#define WMI_HECAP_PHY_TX1024QAM242RUSUPRT_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 10, 1)
#define WMI_HECAP_PHY_TX1024QAM242RUSUPRT_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 10, 1, value)

/*
 * Indicates support for the reception of 1024-QAM on a 26-, 52-, and 106-tone RU.
 */
#define WMI_HECAP_PHY_RX1024QAM242RUSUPRT_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 11, 1)
#define WMI_HECAP_PHY_RX1024QAM242RUSUPRT_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 11, 1, value)

/*
 * Indicates support for reception of an HE MU PPDU with an RU spanning the entire PPDU bandwidth and a
 * compressed HE-SIG-B format.
 */
#define WMI_HECAP_PHY_RXFULBWSUWCMPRSSIGB_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 12, 1)
#define WMI_HECAP_PHY_RXFULBWSUWCMPRSSIGB_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 12, 1, value)

/*
 * Indicates support for reception of an HE MU PPDU with a bandwidth less than or equal to 80 MHz, an RU
 * spanning the entire PPDU bandwidth and a non-compressed HE-SIG-B format.
 */
#define WMI_HECAP_PHY_RXFULBWSUWNONCMPRSSIGB_GET_D3(he_cap_phy)  WMI_GET_BITS(he_cap_phy[2], 13, 1)
#define WMI_HECAP_PHY_RXFULBWSUWNONCMPRSSIGB_SET_D3(he_cap_phy, value) WMI_SET_BITS(he_cap_phy[2], 13, 1, value)

/* HE MAC Capabilities Information field format */

/* HTC + HE Support  Set to 1 if STA supports reception of HE Variant HT control Field */
#define WMI_HECAP_MAC_HECTRL_GET_D3(he_cap) WMI_GET_BITS(he_cap, 0, 1)
#define WMI_HECAP_MAC_HECTRL_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 0, 1, value)

/* set to 1 to for TWT Requestor support */
#define WMI_HECAP_MAC_TWTREQ_GET_D3(he_cap) WMI_GET_BITS(he_cap, 1, 1)
#define WMI_HECAP_MAC_TWTREQ_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 1, 1, value)

/* set to 1 to for TWT Responder support */
#define WMI_HECAP_MAC_TWTRSP_GET_D3(he_cap) WMI_GET_BITS(he_cap, 2, 1)
#define WMI_HECAP_MAC_TWTRSP_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 2, 1, value)

/* Level of frag support
   Set to 0 for no support for dynamic fragmentation.
   Set to 1 for support for dynamic fragments that are contained within a S-MPDU
   Set to 2 for support for dynamic fragments that are contained within a Single MPDU and support for up to
        one dynamic fragment for each MSDU and each MMPDU within an A-MPDU or multi-TID A-MPDU.
   Set to 3 for support for dynamic fragments that are contained within a Single MPDU and support for multiple
        dynamic fragments for each MSDU within an AMPDU or multi-TID AMPDU and up to one dynamic fragment
        for each MMPDU in a multi-TID A-MPDU that is not a Single MPDU
*/
#define WMI_HECAP_MAC_HEFRAG_GET_D3(he_cap) WMI_GET_BITS(he_cap, 3, 2)
#define WMI_HECAP_MAC_HEFRAG_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 3, 2, value)

/* The maximum number of fragmented MSDUs, Nmax,defined by this field is Nmax = 2 Maximum Number Of FMPDUs */
#define WMI_HECAP_MAC_MAXFRAGMSDU_GET_D3(he_cap) WMI_GET_BITS(he_cap, 5, 3)
#define WMI_HECAP_MAC_MAXFRAGMSDU_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 5, 3, value)


/* 0 =  no restriction on the minimum payload , 1 = 128 octets min, 2 = 256 octets min, 3 = 512 octets min */
#define WMI_HECAP_MAC_MINFRAGSZ_GET_D3(he_cap) WMI_GET_BITS(he_cap, 8, 2)
#define WMI_HECAP_MAC_MINFRAGSZ_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 8, 2, value)

/*0 = no additional processing time, 1 = 8us,2 = 16us */
#define WMI_HECAP_MAC_TRIGPADDUR_GET_D3(he_cap) WMI_GET_BITS(he_cap, 10, 2)
#define WMI_HECAP_MAC_TRIGPADDUR_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 10, 2, value)

/* Indicates the number of TIDs of QoS Data frames that an HE STA can receive in a multi-TID AMPDU */
#define WMI_HECAP_MAC_MTID_RX_GET_D3(he_cap) WMI_GET_BITS(he_cap, 12, 3)
#define WMI_HECAP_MAC_MTID_RX_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 12, 3, value)

/* Indicates support for link adaptation using the HLA Control subfield. */
#define WMI_HECAP_MAC_HELINK_ADPT_GET_D3(he_cap) WMI_GET_BITS(he_cap, 15, 2)
#define WMI_HECAP_MAC_HELINK_ADPT_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 15, 2, value)

/* Set to 1 for reception of AllAck support */
#define WMI_HECAP_MAC_AACK_GET_D3(he_cap) WMI_GET_BITS(he_cap, 17, 1)
#define WMI_HECAP_MAC_AACK_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 17, 1, value)

/* Set to 1 if the STA supports reception of the UL MU Response Scheduling A-Control field */
#define WMI_HECAP_MAC_TRS_GET_D3(he_cap) WMI_GET_BITS(he_cap, 18, 1)
#define WMI_HECAP_MAC_TRS_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 18, 1, value)

/* Set to 1 if the STA supports the BSR A-Control field functionality.*/
#define WMI_HECAP_MAC_BSR_GET_D3(he_cap) WMI_GET_BITS(he_cap, 19, 1)
#define WMI_HECAP_MAC_BSR_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 19, 1, value)

/* Set to 1 when the STA supports broadcast TWT functionality.*/
#define WMI_HECAP_MAC_BCSTTWT_GET_D3(he_cap) WMI_GET_BITS(he_cap, 20, 1)
#define WMI_HECAP_MAC_BCSTTWT_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 20, 1, value)

/* Set to 1 if STA supports rx of Multi-STA BA that has 32-bit Block Ack Bitmap */
#define WMI_HECAP_MAC_32BITBA_GET_D3(he_cap) WMI_GET_BITS(he_cap, 21, 1)
#define WMI_HECAP_MAC_32BITBA_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 21, 1, value)

/* Set to 1 if the STA supports MU cascading operation */
#define WMI_HECAP_MAC_MUCASCADE_GET_D3(he_cap) WMI_GET_BITS(he_cap, 22, 1)
#define WMI_HECAP_MAC_MUCASCADE_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 22, 1, value)

/* Set to 1 when the STA supports reception of this multi-TID A-MPDU format */
#define WMI_HECAP_MAC_ACKMTIDAMPDU_GET_D3(he_cap) WMI_GET_BITS(he_cap, 23, 1)
#define WMI_HECAP_MAC_ACKMTIDAMPDU_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 23, 1, value)

/* bit 24 - reserved */

/* Set to 1 if the STA supports reception of the OMI A-Control field */
#define WMI_HECAP_MAC_OMI_GET_D3(he_cap) WMI_GET_BITS(he_cap, 25, 1)
#define WMI_HECAP_MAC_OMI_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 25, 1, value)

/*1 if OFDMA Random Access Supported */
#define WMI_HECAP_MAC_OFDMARA_GET_D3(he_cap) WMI_GET_BITS(he_cap, 26, 1)
#define WMI_HECAP_MAC_OFDMARA_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 26, 1, value)

/* Maximum AMPDU Length Exponent.
 * If the HE STA includes a VHT Capabilities element, the Maximum A-MPDU Length Exponent subfield in
 * HE Capabilities element combined with the Maximum A-MPDU Length Exponent subfield in VHT
 * Capabilities element indicate the maximum length of A-MPDU that the STA can Receive where EOF
 * padding is not included in this limit.
*/
#define WMI_HECAP_MAC_MAXAMPDULEN_EXP_GET_D3(he_cap) WMI_GET_BITS(he_cap, 27, 2)
#define WMI_HECAP_MAC_MAXAMPDULEN_EXP_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 27, 2, value)


/* A-MSDU Fragmentation Support */
#define WMI_HECAP_MAC_AMSDUFRAG_GET_D3(he_cap) WMI_GET_BITS(he_cap, 29, 1)
#define WMI_HECAP_MAC_AMSDUFRAG_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 29, 1, value)

/* Flexible TWT Schedule Support */
#define WMI_HECAP_MAC_FLEXTWT_GET_D3(he_cap) WMI_GET_BITS(he_cap, 30, 1)
#define WMI_HECAP_MAC_FLEXTWT_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 30, 1, value)

/* Rx Control Frame to MultiBSS */
#define WMI_HECAP_MAC_MBSS_GET_D3(he_cap) WMI_GET_BITS(he_cap, 31, 1)
#define WMI_HECAP_MAC_MBSS_SET_D3(he_cap, value) WMI_SET_BITS(he_cap, 31, 1, value)

/* 2nd DWORD of HE MAC Capabilities */

/* BSRP A-MPDU Aggregation
 * maintaining compatibility since we don't support this now so not wasting memory
 */
#define WMI_HECAP_MAC_BSRPAMPDU_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 0, 1)
#define WMI_HECAP_MAC_BSRPAMPDU_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 0, 1, value)

/* Quiet Time Period (QTP) operation
 * maintaining compatibility since we don't support this now so not wasting memory
 */
#define WMI_HECAP_MAC_QTP_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 1, 1)
#define WMI_HECAP_MAC_QTP_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 1, 1, value)

/* support by an AP for receiving an (A-)MPDU that contains a BQR in the
 * A-Control subfield and support by a non-AP STA for generating an (A-)MPDU
 * that contains a BQR in the A-Control subfield
 * maintaining compatibility since we don't support this now so not wasting memory
 */
#define WMI_HECAP_MAC_ABQR_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 2, 1)
#define WMI_HECAP_MAC_ABQR_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 2, 1, value)

/* Indicates support by the STA for the role of SRP Responder.*/
#define WMI_HECAP_MAC_SRPRESP_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 3, 1)
#define WMI_HECAP_MAC_SRPRESP_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 3, 1, value)

/* Indicates support for a non-AP STA to follow the NDP feedback report procedure and respond to
 * the NDP Feedback Report Poll Trigger frame.
 */
#define WMI_HECAP_MAC_NDPFDBKRPT_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 4, 1)
#define WMI_HECAP_MAC_NDPFDBKRPT_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 4, 1, value)

/* Indicates support for an AP to encode OPS information to TIM element of the FILS Discovery
 * frames or TIM frames as described in AP operation for opportunistic power save.
 * Indicates support for a non-AP STA to receive the opportunistic power save encoded TIM elements
 */
#define WMI_HECAP_MAC_OPS_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 5, 1)
#define WMI_HECAP_MAC_OPS_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 5, 1, value)

/* Indicates support by a STA to receive an ack-enabled A-MPDU in which an A-MSDU is carried in
 * a QoS Data frame for which no block ack agreement exists.
 */
#define WMI_HECAP_MAC_AMSDUINAMPDU_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 6, 1)
#define WMI_HECAP_MAC_AMSDUINAMPDU_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 6, 1, value)

/* Indicates the number of TIDs of QoS Data frames that an HE STA can transmit in a multi-TID AMPDU */
#define WMI_HECAP_MAC_MTID_TX_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 7, 3)
#define WMI_HECAP_MAC_MTID_TX_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 7, 3, value)

/* Indicates whether an HE STA supports an HE subchannel selective transmission operation */
#define WMI_HECAP_MAC_SUBCHANSELTX_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 10, 1)
#define WMI_HECAP_MAC_SUBCHANSELTX_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 10, 1, value)

/* Indicates support by a STA to receive a TRS Control subfield or a Trigger frame with a User Info
 * field addressed to the STA with the RU Allocation subfield of the TRS Control subfield or the User
 * Info field indicating 2x996-tone.
 */
#define WMI_HECAP_MAC_UL2X996RU_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 11, 1)
#define WMI_HECAP_MAC_UL2X996RU_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 11, 1, value)

/* Indicates whether an AP supports interpretation of the UL MU Data Disable subfield of the OM Control subfield */
#define WMI_HECAP_MAC_OMCULMUDDIS_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 12, 1)
#define WMI_HECAP_MAC_OMCULMUDDIS_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 12, 1, value)

/* Indicates the spatial multiplexing power save mode after receiving a
 * Trigger frame that is in operation immediately after (re)association.
 */
#define WMI_HECAP_MAC_DYNSMPWRSAVE_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 13, 1)
#define WMI_HECAP_MAC_DYNSMPWRSAVE_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 13, 1, value)

/* Indicates support for Punctured Sounding */
#define WMI_HECAP_MAC_PUNCSOUNDING_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 14, 1)
#define WMI_HECAP_MAC_PUNCSOUNDING_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 14, 1, value)

/* Indicates support for receiving a Trigger frame in an HT PPDU and
 * receiving a Trigger frame in a VHT PPDU
 */
#define WMI_HECAP_MAC_HTVHTTRIGRX_GET_D3(he_cap2) WMI_GET_BITS(he_cap2, 15, 1)
#define WMI_HECAP_MAC_HTVHTTRIGRX_SET_D3(he_cap2, value) WMI_SET_BITS(he_cap2, 15, 1, value)

/*
 * The following conditionally-defined macros can be used in systems
 * which only support either 802.11ax draft 2 or 802.11ax draft 3,
 * but not both, and which make this D2 vs. D3 selection at build time.
 */
#ifdef SUPPORT_11AX_D3
  #define WMI_HEOPS_COLOR_GET WMI_HEOPS_COLOR_GET_D3
  #define WMI_HEOPS_COLOR_SET WMI_HEOPS_COLOR_SET_D3
  #define WMI_HEOPS_DEFPE_GET WMI_HEOPS_DEFPE_GET_D3
  #define WMI_HEOPS_DEFPE_SET WMI_HEOPS_DEFPE_SET_D3
  #define WMI_HEOPS_TWT_REQUIRED_GET WMI_HEOPS_TWT_REQUIRED_GET_D3
  #define WMI_HEOPS_TWT_REQUIRED_SET WMI_HEOPS_TWT_REQUIRED_SET_D3
  #define WMI_HEOPS_TWT_GET WMI_HEOPS_TWT_REQUIRED_GET_D3  /* DEPRECATED, use WMI_HEOPS_TWT_REQUIRED_GET */
  #define WMI_HEOPS_TWT_SET WMI_HEOPS_TWT_REQUIRED_SET_D3  /* DEPRECATED, use WMI_HEOPS_TWT_REQUIRED_SET */
  #define WMI_HEOPS_RTSTHLD_GET WMI_HEOPS_RTSTHLD_GET_D3
  #define WMI_HEOPS_RTSTHLD_SET WMI_HEOPS_RTSTHLD_SET_D3
  #define WMI_HEOPS_PARTBSSCOLOR_GET WMI_HEOPS_PARTBSSCOLOR_GET_D3
  #define WMI_HEOPS_PARTBSSCOLOR_SET WMI_HEOPS_PARTBSSCOLOR_SET_D3
  #define WMI_HEOPS_COLOCBSS_GET WMI_HEOPS_COLOCBSS_GET_D3
  #define WMI_HEOPS_COLOCBSS_SET WMI_HEOPS_COLOCBSS_SET_D3
  #define WMI_HEOPS_VHTOPSPRSNT_GET WMI_HEOPS_VHTOPSPRSNT_GET_D3
  #define WMI_HEOPS_VHTOPSPRSNT_SET WMI_HEOPS_VHTOPSPRSNT_SET_D3
  #define WMI_HEOPS_ERSUDIS_GET WMI_HEOPS_ERSUDIS_GET_D3
  #define WMI_HEOPS_ERSUDIS_SET WMI_HEOPS_ERSUDIS_SET_D3
  #define WMI_HEOPS_BSSCOLORDISABLE_GET WMI_HEOPS_BSSCOLORDISABLE_GET_D3
  #define WMI_HEOPS_BSSCOLORDISABLE_SET WMI_HEOPS_BSSCOLORDISABLE_SET_D3
  #define WMI_HEOPS_TXBSSID_GET(he_ops) (0)       /* DEPRECATED - DO NOT USE */
  #define WMI_HEOPS_TXBSSID_SET(he_ops, value)    /* DEPRECATED - DO NOT USE */

  #define WMI_HECAP_PHY_CBW_GET WMI_HECAP_PHY_CBW_GET_D3
  #define WMI_HECAP_PHY_CBW_SET WMI_HECAP_PHY_CBW_SET_D3
  #define WMI_HECAP_PHY_PREAMBLEPUNCRX_GET WMI_HECAP_PHY_PREAMBLEPUNCRX_GET_D3
  #define WMI_HECAP_PHY_PREAMBLEPUNCRX_SET WMI_HECAP_PHY_PREAMBLEPUNCRX_SET_D3
  #define WMI_HECAP_PHY_COD_GET WMI_HECAP_PHY_COD_GET_D3
  #define WMI_HECAP_PHY_COD_SET WMI_HECAP_PHY_COD_SET_D3
  #define WMI_HECAP_PHY_LDPC_GET WMI_HECAP_PHY_LDPC_GET_D3
  #define WMI_HECAP_PHY_LDPC_SET WMI_HECAP_PHY_LDPC_SET_D3
  #define WMI_HECAP_PHY_TXLDPC_GET WMI_HECAP_PHY_LDPC_GET /* Deprecated use WMI_HECAP_PHY_LDPC */
  #define WMI_HECAP_PHY_TXLDPC_SET WMI_HECAP_PHY_LDPC_SET /* Deprecated use WMI_HECAP_PHY_LDPC */
  #define WMI_HECAP_PHY_RXLDPC_GET WMI_HECAP_PHY_LDPC_GET /* Deprecated use WMI_HECAP_PHY_LDPC */
  #define WMI_HECAP_PHY_RXLDPC_SET WMI_HECAP_PHY_LDPC_SET /* Deprecated use WMI_HECAP_PHY_LDPC */
  #define WMI_HECAP_PHY_LTFGIFORHE_GET WMI_HECAP_PHY_LTFGIFORHE_GET_D3
  #define WMI_HECAP_PHY_LTFGIFORHE_SET WMI_HECAP_PHY_LTFGIFORHE_SET_D3
  #define WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_GET WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_GET_D3
  #define WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_SET WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_SET_D3
  #define WMI_HECAP_PHY_LTFGIFORNDP_GET WMI_HECAP_PHY_LTFGIFORNDP_GET_D3
  #define WMI_HECAP_PHY_LTFGIFORNDP_SET WMI_HECAP_PHY_LTFGIFORNDP_SET_D3
  #define WMI_HECAP_PHY_TXSTBC_GET WMI_HECAP_PHY_TXSTBC_GET_D3
  #define WMI_HECAP_PHY_TXSTBC_SET WMI_HECAP_PHY_TXSTBC_SET_D3
  #define WMI_HECAP_PHY_RXSTBC_GET WMI_HECAP_PHY_RXSTBC_GET_D3
  #define WMI_HECAP_PHY_RXSTBC_SET WMI_HECAP_PHY_RXSTBC_SET_D3
  #define WMI_HECAP_PHY_TXDOPPLER WMI_HECAP_PHY_TXDOPPLER_GET_D3
  #define WMI_HECAP_PHY_TXDOPPLER_SET WMI_HECAP_PHY_TXDOPPLER_SET_D3
  #define WMI_HECAP_PHY_RXDOPPLER_GET WMI_HECAP_PHY_RXDOPPLER_GET_D3
  #define WMI_HECAP_PHY_RXDOPPLER_SET WMI_HECAP_PHY_RXDOPPLER_SET_D3
  #define WMI_HECAP_PHY_UL_MU_MIMO_GET WMI_HECAP_PHY_UL_MU_MIMO_GET_D3
  #define WMI_HECAP_PHY_UL_MU_MIMO_SET WMI_HECAP_PHY_UL_MU_MIMO_SET_D3
  #define WMI_HECAP_PHY_ULMUMIMOOFDMA_GET WMI_HECAP_PHY_ULMUMIMOOFDMA_GET_D3
  #define WMI_HECAP_PHY_ULMUMIMOOFDMA_SET WMI_HECAP_PHY_ULMUMIMOOFDMA_SET_D3
  #define WMI_HECAP_PHY_DCMTX_GET WMI_HECAP_PHY_DCMTX_GET_D3
  #define WMI_HECAP_PHY_DCMTX_SET WMI_HECAP_PHY_DCMTX_SET_D3
  #define WMI_HECAP_PHY_DCMRX_GET WMI_HECAP_PHY_DCMRX_GET_D3
  #define WMI_HECAP_PHY_DCMRX_SET WMI_HECAP_PHY_DCMRX_SET_D3
  /* DEPRECATED - use WMI_HECAP_PHY_DCMRX or WMI_HECAP_PHY_DCMTX */
  #define WMI_HECAP_PHY_DCM_GET WMI_HECAP_PHY_DCMRX_GET_D3
  #define WMI_HECAP_PHY_DCM_SET WMI_HECAP_PHY_DCMRX_SET_D3
  #define WMI_HECAP_PHY_ULHEMU_GET WMI_HECAP_PHY_ULHEMU_GET_D3
  #define WMI_HECAP_PHY_ULHEMU_SET WMI_HECAP_PHY_ULHEMU_SET_D3
  #define WMI_HECAP_PHY_SUBFMR_GET WMI_HECAP_PHY_SUBFMR_GET_D3
  #define WMI_HECAP_PHY_SUBFMR_SET WMI_HECAP_PHY_SUBFMR_SET_D3
  #define WMI_HECAP_PHY_SUBFME_GET WMI_HECAP_PHY_SUBFME_GET_D3
  #define WMI_HECAP_PHY_SUBFME_SET WMI_HECAP_PHY_SUBFME_SET_D3
  #define WMI_HECAP_PHY_MUBFMR_GET WMI_HECAP_PHY_MUBFMR_GET_D3
  #define WMI_HECAP_PHY_MUBFMR_SET WMI_HECAP_PHY_MUBFMR_SET_D3
  #define WMI_HECAP_PHY_BFMESTSLT80MHZ_GET WMI_HECAP_PHY_BFMESTSLT80MHZ_GET_D3
  #define WMI_HECAP_PHY_BFMESTSLT80MHZ_SET WMI_HECAP_PHY_BFMESTSLT80MHZ_SET_D3
  #define WMI_HECAP_PHY_BFMESTSGT80MHZ_GET WMI_HECAP_PHY_BFMESTSGT80MHZ_GET_D3
  #define WMI_HECAP_PHY_BFMESTSGT80MHZ_SET WMI_HECAP_PHY_BFMESTSGT80MHZ_SET_D3
  #define WMI_HECAP_PHY_NSTSLT80MHZ_GET WMI_HECAP_PHY_BFMESTSLT80MHZ_GET_D3
  #define WMI_HECAP_PHY_NSTSLT80MHZ_SET WMI_HECAP_PHY_BFMESTSLT80MHZ_SET_D3
  #define WMI_HECAP_PHY_NSTSGT80MHZ_GET WMI_HECAP_PHY_BFMESTSGT80MHZ_GET_D3
  #define WMI_HECAP_PHY_NSTSGT80MHZ_SET WMI_HECAP_PHY_BFMESTSGT80MHZ_SET_D3
  #define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_GET WMI_HECAP_PHY_NUMSOUNDLT80MHZ_GET_D3
  #define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_SET WMI_HECAP_PHY_NUMSOUNDLT80MHZ_SET_D3
  #define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_GET WMI_HECAP_PHY_NUMSOUNDGT80MHZ_GET_D3
  #define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_SET WMI_HECAP_PHY_NUMSOUNDGT80MHZ_SET_D3
  #define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_GET WMI_HECAP_PHY_NG16SUFEEDBACKLT80_GET_D3
  #define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_SET WMI_HECAP_PHY_NG16SUFEEDBACKLT80_SET_D3
  #define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_GET WMI_HECAP_PHY_NG16MUFEEDBACKGT80_GET_D3
  #define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_SET WMI_HECAP_PHY_NG16MUFEEDBACKGT80_SET_D3
  #define WMI_HECAP_PHY_CODBK42SU_GET WMI_HECAP_PHY_CODBK42SU_GET_D3
  #define WMI_HECAP_PHY_CODBK42SU_SET WMI_HECAP_PHY_CODBK42SU_SET_D3
  #define WMI_HECAP_PHY_CODBK75MU_GET WMI_HECAP_PHY_CODBK75MU_GET_D3
  #define WMI_HECAP_PHY_CODBK75MU_SET WMI_HECAP_PHY_CODBK75MU_SET_D3
  #define WMI_HECAP_PHY_BFFEEDBACKTRIG_GET WMI_HECAP_PHY_BFFEEDBACKTRIG_GET_D3
  #define WMI_HECAP_PHY_BFFEEDBACKTRIG_SET WMI_HECAP_PHY_BFFEEDBACKTRIG_SET_D3
  #define WMI_HECAP_PHY_HEERSU_GET WMI_HECAP_PHY_HEERSU_GET_D3
  #define WMI_HECAP_PHY_HEERSU_SET WMI_HECAP_PHY_HEERSU_SET_D3
  #define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_GET WMI_HECAP_PHY_DLMUMIMOPARTIALBW_GET_D3
  #define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_SET WMI_HECAP_PHY_DLMUMIMOPARTIALBW_SET_D3
  #define WMI_HECAP_PHY_PETHRESPRESENT_GET WMI_HECAP_PHY_PETHRESPRESENT_GET_D3
  #define WMI_HECAP_PHY_PETHRESPRESENT_SET WMI_HECAP_PHY_PETHRESPRESENT_SET_D3
  #define WMI_HECAP_PHY_SRPSPRESENT_GET WMI_HECAP_PHY_SRPSPRESENT_GET_D3
  #define WMI_HECAP_PHY_SRPPRESENT_SET WMI_HECAP_PHY_SRPPRESENT_SET_D3
  #define WMI_HECAP_PHY_PWRBOOSTAR_GET WMI_HECAP_PHY_PWRBOOSTAR_GET_D3
  #define WMI_HECAP_PHY_PWRBOOSTAR_SET WMI_HECAP_PHY_PWRBOOSTAR_SET_D3
  #define WMI_HECAP_PHY_4XLTFAND800NSECSGI_GET WMI_HECAP_PHY_4XLTFAND800NSECSGI_GET_D3
  #define WMI_HECAP_PHY_4XLTFAND800NSECSGI_SET WMI_HECAP_PHY_4XLTFAND800NSECSGI_SET_D3
  #define WMI_HECAP_PHY_MAXNC_GET WMI_HECAP_PHY_MAXNC_GET_D3
  #define WMI_HECAP_PHY_MAXNC_SET WMI_HECAP_PHY_MAXNC_SET_D3
  #define WMI_HECAP_PHY_STBCTXGT80_GET WMI_HECAP_PHY_STBCTXGT80_GET_D3
  #define WMI_HECAP_PHY_STBCTXGT80_SET WMI_HECAP_PHY_STBCTXGT80_SET_D3
  #define WMI_HECAP_PHY_STBCRXGT80_GET WMI_HECAP_PHY_STBCRXGT80_GET_D3
  #define WMI_HECAP_PHY_STBCRXGT80_SET WMI_HECAP_PHY_STBCRXGT80_SET_D3
  #define WMI_HECAP_PHY_ERSU4X800NSECGI_GET WMI_HECAP_PHY_ERSU4X800NSECGI_GET_D3
  #define WMI_HECAP_PHY_ERSU4X800NSECGI_SET WMI_HECAP_PHY_ERSU4X800NSECGI_SET_D3
  #define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_GET WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_GET_D3
  #define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_SET WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_SET_D3
  #define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_GET WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_GET_D3
  #define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_SET WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_SET_D3
  #define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_GET WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_GET_D3
  #define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_SET WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_SET_D3
  #define WMI_HECAP_PHY_ERSU1X800NSECGI_GET WMI_HECAP_PHY_ERSU1X800NSECGI_GET_D3
  #define WMI_HECAP_PHY_ERSU1X800NSECGI_SET WMI_HECAP_PHY_ERSU1X800NSECGI_SET_D3
  #define WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_GET WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_GET_D3
  #define WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_SET WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_SET_D3
  #define WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_GET WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_GET  /* DEPRECATED */
  #define WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_SET WMI_HECAP_PHY_MIDAMBLETXRX2XAND1XHELTF_SET  /* DEPRECATED */
  #define WMI_HECAP_PHY_DCMMAXBW_GET WMI_HECAP_PHY_DCMMAXBW_GET_D3
  #define WMI_HECAP_PHY_DCMMAXBW_SET WMI_HECAP_PHY_DCMMAXBW_SET_D3
  #define WMI_HECAP_PHY_LNG16SIGBSYMBSUPRT_GET WMI_HECAP_PHY_LNG16SIGBSYMBSUPRT_GET_D3
  #define WMI_HECAP_PHY_LNG16SIGBSYMBSUPRT_SET WMI_HECAP_PHY_LNG16SIGBSYMBSUPRT_SET_D3
  #define WMI_HECAP_PHY_NONTRIGCQIFEEDBK_GET WMI_HECAP_PHY_NONTRIGCQIFEEDBK_GET_D3
  #define WMI_HECAP_PHY_NONTRIGCQIFEEDBK_SET WMI_HECAP_PHY_NONTRIGCQIFEEDBK_SET_D3
  #define WMI_HECAP_PHY_TX1024QAM242RUSUPRT_GET WMI_HECAP_PHY_TX1024QAM242RUSUPRT_GET_D3
  #define WMI_HECAP_PHY_TX1024QAM242RUSUPRT_SET WMI_HECAP_PHY_TX1024QAM242RUSUPRT_SET_D3
  #define WMI_HECAP_PHY_RX1024QAM242RUSUPRT_GET WMI_HECAP_PHY_RX1024QAM242RUSUPRT_GET_D3
  #define WMI_HECAP_PHY_RX1024QAM242RUSUPRT_SET WMI_HECAP_PHY_RX1024QAM242RUSUPRT_SET_D3
  #define WMI_HECAP_PHY_RXFULBWSUWCMPRSSIGB_GET WMI_HECAP_PHY_RXFULBWSUWCMPRSSIGB_GET_D3
  #define WMI_HECAP_PHY_RXFULBWSUWCMPRSSIGB_SET WMI_HECAP_PHY_RXFULBWSUWCMPRSSIGB_SET_D3
  #define WMI_HECAP_PHY_RXFULBWSUWNONCMPRSSIGB_GET WMI_HECAP_PHY_RXFULBWSUWNONCMPRSSIGB_GET_D3
  #define WMI_HECAP_PHY_RXFULBWSUWNONCMPRSSIGB_SET WMI_HECAP_PHY_RXFULBWSUWNONCMPRSSIGB_SET_D3
  #define WMI_HECAP_PHY_DB_GET(he_phy_cap) (0)        /* DEPRECATED - DO NOT USE */
  #define WMI_HECAP_PHY_DB_SET(he_phy_cap, value)     /* DEPRECATED - DO NOT USE */
  #define WMI_HECAP_MAC_HECTRL_GET WMI_HECAP_MAC_HECTRL_GET_D3
  #define WMI_HECAP_MAC_HECTRL_SET WMI_HECAP_MAC_HECTRL_SET_D3
  #define WMI_HECAP_MAC_TWTREQ_GET WMI_HECAP_MAC_TWTREQ_GET_D3
  #define WMI_HECAP_MAC_TWTREQ_SET WMI_HECAP_MAC_TWTREQ_SET_D3
  #define WMI_HECAP_MAC_TWTRSP_GET WMI_HECAP_MAC_TWTRSP_GET_D3
  #define WMI_HECAP_MAC_TWTRSP_SET WMI_HECAP_MAC_TWTRSP_SET_D3
  #define WMI_HECAP_MAC_HEFRAG_GET WMI_HECAP_MAC_HEFRAG_GET_D3
  #define WMI_HECAP_MAC_HEFRAG_SET WMI_HECAP_MAC_HEFRAG_SET_D3
  #define WMI_HECAP_MAC_MAXFRAGMSDU_GET WMI_HECAP_MAC_MAXFRAGMSDU_GET_D3
  #define WMI_HECAP_MAC_MAXFRAGMSDU_SET WMI_HECAP_MAC_MAXFRAGMSDU_SET_D3
  #define WMI_HECAP_MAC_MINFRAGSZ_GET WMI_HECAP_MAC_MINFRAGSZ_GET_D3
  #define WMI_HECAP_MAC_MINFRAGSZ_SET WMI_HECAP_MAC_MINFRAGSZ_SET_D3
  #define WMI_HECAP_MAC_TRIGPADDUR_GET WMI_HECAP_MAC_TRIGPADDUR_GET_D3
  #define WMI_HECAP_MAC_TRIGPADDUR_SET WMI_HECAP_MAC_TRIGPADDUR_SET_D3
  #define WMI_HECAP_MAC_MTID_RX_GET WMI_HECAP_MAC_MTID_RX_GET_D3
  #define WMI_HECAP_MAC_MTID_RX_SET WMI_HECAP_MAC_MTID_RX_SET_D3
  #define WMI_HECAP_MAC_HELINK_ADPT_GET WMI_HECAP_MAC_HELINK_ADPT_GET_D3
  #define WMI_HECAP_MAC_HELINK_ADPT_SET WMI_HECAP_MAC_HELINK_ADPT_SET_D3
  #define WMI_HECAP_MAC_AACK_GET WMI_HECAP_MAC_AACK_GET_D3
  #define WMI_HECAP_MAC_AACK_SET WMI_HECAP_MAC_AACK_SET_D3
  #define WMI_HECAP_MAC_TRS_GET WMI_HECAP_MAC_TRS_GET_D3
  #define WMI_HECAP_MAC_TRS_SET WMI_HECAP_MAC_TRS_SET_D3
  #define WMI_HECAP_MAC_ULMURSP_GET(he_cap) (0)    /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_ULMURSP_SET(he_cap, value) /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_BSR_GET WMI_HECAP_MAC_BSR_GET_D3
  #define WMI_HECAP_MAC_BSR_SET WMI_HECAP_MAC_BSR_SET_D3
  #define WMI_HECAP_MAC_BCSTTWT_GET WMI_HECAP_MAC_BCSTTWT_GET_D3
  #define WMI_HECAP_MAC_BCSTTWT_SET WMI_HECAP_MAC_BCSTTWT_SET_D3
  #define WMI_HECAP_MAC_32BITBA_GET WMI_HECAP_MAC_32BITBA_GET_D3
  #define WMI_HECAP_MAC_32BITBA_SET WMI_HECAP_MAC_32BITBA_SET_D3
  #define WMI_HECAP_MAC_MUCASCADE_GET WMI_HECAP_MAC_MUCASCADE_GET_D3
  #define WMI_HECAP_MAC_MUCASCADE_SET WMI_HECAP_MAC_MUCASCADE_SET_D3
  #define WMI_HECAP_MAC_ACKMTIDAMPDU_GET WMI_HECAP_MAC_ACKMTIDAMPDU_GET_D3
  #define WMI_HECAP_MAC_ACKMTIDAMPDU_SET WMI_HECAP_MAC_ACKMTIDAMPDU_SET_D3
  #define WMI_HECAP_MAC_GROUPMSTABA_GET(he_cap) (0)    /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_GROUPMSTABA_SET(he_cap, value) /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_OMI_GET WMI_HECAP_MAC_OMI_GET_D3
  #define WMI_HECAP_MAC_OMI_SET WMI_HECAP_MAC_OMI_SET_D3
  #define WMI_HECAP_MAC_OFDMARA_GET WMI_HECAP_MAC_OFDMARA_GET_D3
  #define WMI_HECAP_MAC_OFDMARA_SET WMI_HECAP_MAC_OFDMARA_SET_D3
  #define WMI_HECAP_MAC_MAXAMPDULEN_EXP_GET WMI_HECAP_MAC_MAXAMPDULEN_EXP_GET_D3
  #define WMI_HECAP_MAC_MAXAMPDULEN_EXP_SET WMI_HECAP_MAC_MAXAMPDULEN_EXP_SET_D3
  #define WMI_HECAP_MAC_AMSDUFRAG_GET WMI_HECAP_MAC_AMSDUFRAG_GET_D3
  #define WMI_HECAP_MAC_AMSDUFRAG_SET WMI_HECAP_MAC_AMSDUFRAG_SET_D3
  #define WMI_HECAP_MAC_FLEXTWT_GET WMI_HECAP_MAC_FLEXTWT_GET_D3
  #define WMI_HECAP_MAC_FLEXTWT_SET WMI_HECAP_MAC_FLEXTWT_SET_D3
  #define WMI_HECAP_MAC_MBSS_GET WMI_HECAP_MAC_MBSS_GET_D3
  #define WMI_HECAP_MAC_MBSS_SET WMI_HECAP_MAC_MBSS_SET_D3
  #define WMI_HECAP_MAC_BSRPAMPDU_GET WMI_HECAP_MAC_BSRPAMPDU_GET_D3
  #define WMI_HECAP_MAC_BSRPAMPDU_SET WMI_HECAP_MAC_BSRPAMPDU_SET_D3
  #define WMI_HECAP_MAC_QTP_GET WMI_HECAP_MAC_QTP_GET_D3
  #define WMI_HECAP_MAC_QTP_SET WMI_HECAP_MAC_QTP_SET_D3
  #define WMI_HECAP_MAC_ABQR_GET WMI_HECAP_MAC_ABQR_GET_D3
  #define WMI_HECAP_MAC_ABQR_SET WMI_HECAP_MAC_ABQR_SET_D3
  #define WMI_HECAP_MAC_SRPRESP_GET WMI_HECAP_MAC_SRPRESP_GET_D3
  #define WMI_HECAP_MAC_SRPRESP_SET WMI_HECAP_MAC_SRPRESP_SET_D3
  #define WMI_HECAP_MAC_SRRESP_GET(he_cap2) (0)    /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_SRRESP_SET(he_cap2, value) /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_NDPFDBKRPT_GET WMI_HECAP_MAC_NDPFDBKRPT_GET_D3
  #define WMI_HECAP_MAC_NDPFDBKRPT_SET WMI_HECAP_MAC_NDPFDBKRPT_SET_D3
  #define WMI_HECAP_MAC_OPS_GET WMI_HECAP_MAC_OPS_GET_D3
  #define WMI_HECAP_MAC_OPS_SET WMI_HECAP_MAC_OPS_SET_D3
  #define WMI_HECAP_MAC_AMSDUINAMPDU_GET WMI_HECAP_MAC_AMSDUINAMPDU_GET_D3
  #define WMI_HECAP_MAC_AMSDUINAMPDU_SET WMI_HECAP_MAC_AMSDUINAMPDU_SET_D3
  #define WMI_HECAP_MAC_MTID_TX_GET WMI_HECAP_MAC_MTID_TX_GET_D3
  #define WMI_HECAP_MAC_MTID_TX_SET WMI_HECAP_MAC_MTID_TX_SET_D3
  #define WMI_HECAP_MAC_SUBCHANSELTX_GET WMI_HECAP_MAC_SUBCHANSELTX_GET_D3
  #define WMI_HECAP_MAC_SUBCHANSELTX_SET WMI_HECAP_MAC_SUBCHANSELTX_SET_D3
  #define WMI_HECAP_MAC_UL2X996RU_GET WMI_HECAP_MAC_UL2X996RU_GET_D3
  #define WMI_HECAP_MAC_UL2X996RU_SET WMI_HECAP_MAC_UL2X996RU_SET_D3
  #define WMI_HECAP_MAC_OMCULMUDDIS_GET WMI_HECAP_MAC_OMCULMUDDIS_GET_D3
  #define WMI_HECAP_MAC_OMCULMUDDIS_SET WMI_HECAP_MAC_OMCULMUDDIS_SET_D3
  #define WMI_HECAP_MAC_HELKAD_GET(he_cap) (0)           /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_MAC_HELKAD_SET(he_cap, value)        /* DEPRECATED, DO NOT USE */
  #define WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_GET WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_GET_D3 /* DEPRECATED - DO NOT USE */
  #define WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_SET WMI_HECAP_PHY_MIDAMBLETXRXMAXNSTS_SET_D3 /* DEPRECATED - DO NOT USE */
  #define WMI_HECAP_MAC_DYNSMPWRSAVE_GET WMI_HECAP_MAC_DYNSMPWRSAVE_GET_D3
  #define WMI_HECAP_MAC_DYNSMPWRSAVE_SET WMI_HECAP_MAC_DYNSMPWRSAVE_SET_D3
  #define WMI_HECAP_MAC_PUNCSOUNDING_GET WMI_HECAP_MAC_PUNCSOUNDING_GET_D3
  #define WMI_HECAP_MAC_PUNCSOUNDING_SET WMI_HECAP_MAC_PUNCSOUNDING_SET_D3
  #define WMI_HECAP_MAC_HTVHTTRIGRX_GET WMI_HECAP_MAC_HTVHTTRIGRX_GET_D3
  #define WMI_HECAP_MAC_HTVHTTRIGRX_SET WMI_HECAP_MAC_HTVHTTRIGRX_SET_D3
#else /* SUPPORT_11AX_D3 vs. D2 */
  /* D2 and D2- */
  #define WMI_HEOPS_COLOR_GET WMI_HEOPS_COLOR_GET_D2
  #define WMI_HEOPS_COLOR_SET WMI_HEOPS_COLOR_SET_D2
  #define WMI_HEOPS_DEFPE_GET WMI_HEOPS_DEFPE_GET_D2
  #define WMI_HEOPS_DEFPE_SET WMI_HEOPS_DEFPE_SET_D2
  #define WMI_HEOPS_TWT_REQUIRED_GET WMI_HEOPS_TWT_REQUIRED_GET_D2
  #define WMI_HEOPS_TWT_REQUIRED_SET WMI_HEOPS_TWT_REQUIRED_SET_D2
  #define WMI_HEOPS_TWT_GET WMI_HEOPS_TWT_GET_D2     /* Deprecated */
  #define WMI_HEOPS_TWT_SET WMI_HEOPS_TWT_SET_D2     /* Deprecated */
  #define WMI_HEOPS_RTSTHLD_GET WMI_HEOPS_RTSTHLD_GET_D2
  #define WMI_HEOPS_RTSTHLD_SET WMI_HEOPS_RTSTHLD_SET_D2
  #define WMI_HEOPS_PARTBSSCOLOR_GET WMI_HEOPS_PARTBSSCOLOR_GET_D2
  #define WMI_HEOPS_PARTBSSCOLOR_SET WMI_HEOPS_PARTBSSCOLOR_SET_D2
  #define WMI_HEOPS_MAXBSSID_GET WMI_HEOPS_MAXBSSID_GET_D2
  #define WMI_HEOPS_MAXBSSID_SET WMI_HEOPS_MAXBSSID_SET_D2
  #define WMI_HEOPS_TXBSSID_GET WMI_HEOPS_TXBSSID_GET_D2
  #define WMI_HEOPS_TXBSSID_SET WMI_HEOPS_TXBSSID_SET_D2
  #define WMI_HEOPS_BSSCOLORDISABLE_GET WMI_HEOPS_BSSCOLORDISABLE_GET_D2
  #define WMI_HEOPS_BSSCOLORDISABLE_SET WMI_HEOPS_BSSCOLORDISABLE_SET_D2
  #define WMI_HEOPS_DUALBEACON_GET WMI_HEOPS_DUALBEACON_GET_D2
  #define WMI_HEOPS_DUALBEACON_SET WMI_HEOPS_DUALBEACON_SET_D2
  #define WMI_HECAP_PHY_DB_GET WMI_HECAP_PHY_DB_GET_D2
  #define WMI_HECAP_PHY_DB_SET WMI_HECAP_PHY_DB_SET_D2
  #define WMI_HECAP_PHY_CBW_GET WMI_HECAP_PHY_CBW_GET_D2
  #define WMI_HECAP_PHY_CBW_SET WMI_HECAP_PHY_CBW_SET_D2
  #define WMI_HECAP_PHY_PREAMBLEPUNCRX_GET WMI_HECAP_PHY_PREAMBLEPUNCRX_GET_D2
  #define WMI_HECAP_PHY_PREAMBLEPUNCRX_SET WMI_HECAP_PHY_PREAMBLEPUNCRX_SET_D2
  #define WMI_HECAP_PHY_COD_GET WMI_HECAP_PHY_COD_GET_D2
  #define WMI_HECAP_PHY_COD_SET WMI_HECAP_PHY_COD_SET_D2
  #define WMI_HECAP_PHY_LDPC_GET WMI_HECAP_PHY_LDPC_GET_D2
  #define WMI_HECAP_PHY_LDPC_SET WMI_HECAP_PHY_LDPC_SET_D2
  #define WMI_HECAP_PHY_TXLDPC_GET WMI_HECAP_PHY_TXLDPC_GET_D2
  #define WMI_HECAP_PHY_TXLDPC_SET WMI_HECAP_PHY_TXLDPC_SET_D2
  #define WMI_HECAP_PHY_RXLDPC_GET WMI_HECAP_PHY_RXLDPC_GET_D2
  #define WMI_HECAP_PHY_RXLDPC_SET WMI_HECAP_PHY_RXLDPC_SET_D2
  #define WMI_HECAP_PHY_LTFGIFORHE_GET WMI_HECAP_PHY_LTFGIFORHE_GET_D2
  #define WMI_HECAP_PHY_LTFGIFORHE_SET WMI_HECAP_PHY_LTFGIFORHE_SET_D2
  #define WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_GET WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_GET_D2
  #define WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_SET WMI_HECAP_PHY_MIDAMBLERXMAXNSTS_SET_D2
  #define WMI_HECAP_PHY_LTFGIFORNDP_GET WMI_HECAP_PHY_LTFGIFORNDP_GET_D2
  #define WMI_HECAP_PHY_LTFGIFORNDP_SET WMI_HECAP_PHY_LTFGIFORNDP_SET_D2
  #define WMI_HECAP_PHY_TXSTBC_GET WMI_HECAP_PHY_TXSTBC_GET_D2
  #define WMI_HECAP_PHY_TXSTBC_SET WMI_HECAP_PHY_TXSTBC_SET_D2
  #define WMI_HECAP_PHY_RXSTBC_GET WMI_HECAP_PHY_RXSTBC_GET_D2
  #define WMI_HECAP_PHY_RXSTBC_SET WMI_HECAP_PHY_RXSTBC_SET_D2
  #define WMI_HECAP_PHY_TXDOPPLER_GET WMI_HECAP_PHY_TXDOPPLER_GET_D2
  #define WMI_HECAP_PHY_TXDOPPLER_SET WMI_HECAP_PHY_TXDOPPLER_SET_D2
  #define WMI_HECAP_PHY_RXDOPPLER_GET WMI_HECAP_PHY_RXDOPPLER_GET_D2
  #define WMI_HECAP_PHY_RXDOPPLER_SET WMI_HECAP_PHY_RXDOPPLER_SET_D2
  #define WMI_HECAP_PHY_UL_MU_MIMO_GET WMI_HECAP_PHY_UL_MU_MIMO_GET_D2
  #define WMI_HECAP_PHY_UL_MU_MIMO_SET WMI_HECAP_PHY_UL_MU_MIMO_SET_D2
  #define WMI_HECAP_PHY_ULMUMIMOOFDMA_GET WMI_HECAP_PHY_ULMUMIMOOFDMA_GET_D2
  #define WMI_HECAP_PHY_ULMUMIMOOFDMA_SET WMI_HECAP_PHY_ULMUMIMOOFDMA_SET_D2
  #define WMI_HECAP_PHY_DCMTX_GET WMI_HECAP_PHY_DCMTX_GET_D2
  #define WMI_HECAP_PHY_DCMTX_SET WMI_HECAP_PHY_DCMTX_SET_D2
  #define WMI_HECAP_PHY_DCMRX_GET WMI_HECAP_PHY_DCMRX_GET_D2
  #define WMI_HECAP_PHY_DCMRX_SET WMI_HECAP_PHY_DCMRX_SET_D2
  #define WMI_HECAP_PHY_ULHEMU_GET WMI_HECAP_PHY_ULHEMU_GET_D2
  #define WMI_HECAP_PHY_ULHEMU_SET WMI_HECAP_PHY_ULHEMU_SET_D2
  #define WMI_HECAP_PHY_SUBFMR_GET WMI_HECAP_PHY_SUBFMR_GET_D2
  #define WMI_HECAP_PHY_SUBFMR_SET WMI_HECAP_PHY_SUBFMR_SET_D2
  #define WMI_HECAP_PHY_SUBFME_GET WMI_HECAP_PHY_SUBFME_GET_D2
  #define WMI_HECAP_PHY_SUBFME_SET WMI_HECAP_PHY_SUBFME_SET_D2
  #define WMI_HECAP_PHY_MUBFMR_GET WMI_HECAP_PHY_MUBFMR_GET_D2
  #define WMI_HECAP_PHY_MUBFMR_SET WMI_HECAP_PHY_MUBFMR_SET_D2
  #define WMI_HECAP_PHY_BFMESTSLT80MHZ_GET WMI_HECAP_PHY_BFMESTSLT80MHZ_GET_D2
  #define WMI_HECAP_PHY_BFMESTSLT80MHZ_SET WMI_HECAP_PHY_BFMESTSLT80MHZ_SET_D2
  #define WMI_HECAP_PHY_BFMESTSGT80MHZ_GET WMI_HECAP_PHY_BFMESTSGT80MHZ_GET_D2
  #define WMI_HECAP_PHY_BFMESTSGT80MHZ_SET WMI_HECAP_PHY_BFMESTSGT80MHZ_SET_D2
  #define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_GET WMI_HECAP_PHY_NUMSOUNDLT80MHZ_GET_D2
  #define WMI_HECAP_PHY_NUMSOUNDLT80MHZ_SET WMI_HECAP_PHY_NUMSOUNDLT80MHZ_SET_D2
  #define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_GET WMI_HECAP_PHY_NUMSOUNDGT80MHZ_GET_D2
  #define WMI_HECAP_PHY_NUMSOUNDGT80MHZ_SET WMI_HECAP_PHY_NUMSOUNDGT80MHZ_SET_D2
  #define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_GET WMI_HECAP_PHY_NG16SUFEEDBACKLT80_GET_D2
  #define WMI_HECAP_PHY_NG16SUFEEDBACKLT80_SET WMI_HECAP_PHY_NG16SUFEEDBACKLT80_SET_D2
  #define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_GET WMI_HECAP_PHY_NG16MUFEEDBACKGT80_GET_D2
  #define WMI_HECAP_PHY_NG16MUFEEDBACKGT80_SET WMI_HECAP_PHY_NG16MUFEEDBACKGT80_SET_D2
  #define WMI_HECAP_PHY_CODBK42SU_GET WMI_HECAP_PHY_CODBK42SU_GET_D2
  #define WMI_HECAP_PHY_CODBK42SU_SET WMI_HECAP_PHY_CODBK42SU_SET_D2
  #define WMI_HECAP_PHY_CODBK75MU_GET WMI_HECAP_PHY_CODBK75MU_GET_D2
  #define WMI_HECAP_PHY_CODBK75MU_SET WMI_HECAP_PHY_CODBK75MU_SET_D2
  #define WMI_HECAP_PHY_BFFEEDBACKTRIG_GET WMI_HECAP_PHY_BFFEEDBACKTRIG_GET_D2
  #define WMI_HECAP_PHY_BFFEEDBACKTRIG_SET WMI_HECAP_PHY_BFFEEDBACKTRIG_SET_D2
  #define WMI_HECAP_PHY_HEERSU_GET WMI_HECAP_PHY_HEERSU_GET_D2
  #define WMI_HECAP_PHY_HEERSU_SET WMI_HECAP_PHY_HEERSU_SET_D2
  #define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_GET WMI_HECAP_PHY_DLMUMIMOPARTIALBW_GET_D2
  #define WMI_HECAP_PHY_DLMUMIMOPARTIALBW_SET WMI_HECAP_PHY_DLMUMIMOPARTIALBW_SET_D2
  #define WMI_HECAP_PHY_PETHRESPRESENT_GET WMI_HECAP_PHY_PETHRESPRESENT_GET_D2
  #define WMI_HECAP_PHY_PETHRESPRESENT_SET WMI_HECAP_PHY_PETHRESPRESENT_SET_D2
  #define WMI_HECAP_PHY_SRPSPRESENT_GET WMI_HECAP_PHY_SRPSPRESENT_GET_D2
  #define WMI_HECAP_PHY_SRPPRESENT_SET WMI_HECAP_PHY_SRPPRESENT_SET_D2
  #define WMI_HECAP_PHY_PWRBOOSTAR_GET WMI_HECAP_PHY_PWRBOOSTAR_GET_D2
  #define WMI_HECAP_PHY_PWRBOOSTAR_SET WMI_HECAP_PHY_PWRBOOSTAR_SET_D2
  #define WMI_HECAP_PHY_4XLTFAND800NSECSGI_GET WMI_HECAP_PHY_4XLTFAND800NSECSGI_GET_D2
  #define WMI_HECAP_PHY_4XLTFAND800NSECSGI_SET WMI_HECAP_PHY_4XLTFAND800NSECSGI_SET_D2
  #define WMI_HECAP_PHY_MAXNC_GET WMI_HECAP_PHY_MAXNC_GET_D2
  #define WMI_HECAP_PHY_MAXNC_SET WMI_HECAP_PHY_MAXNC_SET_D2
  #define WMI_HECAP_PHY_STBCTXGT80_GET WMI_HECAP_PHY_STBCTXGT80_GET_D2
  #define WMI_HECAP_PHY_STBCTXGT80_SET WMI_HECAP_PHY_STBCTXGT80_SET_D2
  #define WMI_HECAP_PHY_STBCRXGT80_GET WMI_HECAP_PHY_STBCRXGT80_GET_D2
  #define WMI_HECAP_PHY_STBCRXGT80_SET WMI_HECAP_PHY_STBCRXGT80_SET_D2
  #define WMI_HECAP_PHY_ERSU4X800NSECGI_GET WMI_HECAP_PHY_ERSU4X800NSECGI_GET_D2
  #define WMI_HECAP_PHY_ERSU4X800NSECGI_SET WMI_HECAP_PHY_ERSU4X800NSECGI_SET_D2
  #define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_GET WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_GET_D2
  #define WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_SET WMI_HECAP_PHY_HEPPDU20IN40MHZ2G_SET_D2
  #define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_GET WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_GET_D2
  #define WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_SET WMI_HECAP_PHY_HEPPDU20IN160OR80P80MHZ_SET_D2
  #define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_GET WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_GET_D2
  #define WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_SET WMI_HECAP_PHY_HEPPDU80IN160OR80P80MHZ_SET_D2
  #define WMI_HECAP_PHY_ERSU1X800NSECGI_GET WMI_HECAP_PHY_ERSU1X800NSECGI_GET_D2
  #define WMI_HECAP_PHY_ERSU1X800NSECGI_SET WMI_HECAP_PHY_ERSU1X800NSECGI_SET_D2
  #define WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_GET WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_GET_D2
  #define WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_SET WMI_HECAP_PHY_MIDAMBLERX2XAND1XHELTF_SET_D2
  #define WMI_HECAP_MAC_HECTRL_GET WMI_HECAP_MAC_HECTRL_GET_D2
  #define WMI_HECAP_MAC_HECTRL_SET WMI_HECAP_MAC_HECTRL_SET_D2
  #define WMI_HECAP_MAC_TWTREQ_GET WMI_HECAP_MAC_TWTREQ_GET_D2
  #define WMI_HECAP_MAC_TWTREQ_SET WMI_HECAP_MAC_TWTREQ_SET_D2
  #define WMI_HECAP_MAC_TWTRSP_GET WMI_HECAP_MAC_TWTRSP_GET_D2
  #define WMI_HECAP_MAC_TWTRSP_SET WMI_HECAP_MAC_TWTRSP_SET_D2
  #define WMI_HECAP_MAC_HEFRAG_GET WMI_HECAP_MAC_HEFRAG_GET_D2
  #define WMI_HECAP_MAC_HEFRAG_SET WMI_HECAP_MAC_HEFRAG_SET_D2
  #define WMI_HECAP_MAC_MAXFRAGMSDU_GET WMI_HECAP_MAC_MAXFRAGMSDU_GET_D2
  #define WMI_HECAP_MAC_MAXFRAGMSDU_SET WMI_HECAP_MAC_MAXFRAGMSDU_SET_D2
  #define WMI_HECAP_MAC_MINFRAGSZ_GET WMI_HECAP_MAC_MINFRAGSZ_GET_D2
  #define WMI_HECAP_MAC_MINFRAGSZ_SET WMI_HECAP_MAC_MINFRAGSZ_SET_D2
  #define WMI_HECAP_MAC_TRIGPADDUR_GET WMI_HECAP_MAC_TRIGPADDUR_GET_D2
  #define WMI_HECAP_MAC_TRIGPADDUR_SET WMI_HECAP_MAC_TRIGPADDUR_SET_D2
  #define WMI_HECAP_MAC_MTID_GET WMI_HECAP_MAC_MTID_GET_D2
  #define WMI_HECAP_MAC_MTID_SET WMI_HECAP_MAC_MTID_SET_D2
  #define WMI_HECAP_MAC_AMSDUINAMPDU_GET WMI_HECAP_MAC_AMSDUINAMPDU_GET_D2
  #define WMI_HECAP_MAC_AMSDUINAMPDU_SET WMI_HECAP_MAC_AMSDUINAMPDU_SET_D2
  #define WMI_HECAP_MAC_HELKAD_GET WMI_HECAP_MAC_HELKAD_GET_D2
  #define WMI_HECAP_MAC_HELKAD_SET WMI_HECAP_MAC_HELKAD_SET_D2
  #define WMI_HECAP_MAC_AACK_GET WMI_HECAP_MAC_AACK_GET_D2
  #define WMI_HECAP_MAC_AACK_SET WMI_HECAP_MAC_AACK_SET_D2
  #define WMI_HECAP_MAC_ULMURSP_GET WMI_HECAP_MAC_ULMURSP_GET_D2
  #define WMI_HECAP_MAC_ULMURSP_SET WMI_HECAP_MAC_ULMURSP_SET_D2
  #define WMI_HECAP_MAC_BSR_GET WMI_HECAP_MAC_BSR_GET_D2
  #define WMI_HECAP_MAC_BSR_SET WMI_HECAP_MAC_BSR_SET_D2
  #define WMI_HECAP_MAC_BCSTTWT_GET WMI_HECAP_MAC_BCSTTWT_GET_D2
  #define WMI_HECAP_MAC_BCSTTWT_SET WMI_HECAP_MAC_BCSTTWT_SET_D2
  #define WMI_HECAP_MAC_32BITBA_GET WMI_HECAP_MAC_32BITBA_GET_D2
  #define WMI_HECAP_MAC_32BITBA_SET WMI_HECAP_MAC_32BITBA_SET_D2
  #define WMI_HECAP_MAC_MUCASCADE_GET WMI_HECAP_MAC_MUCASCADE_GET_D2
  #define WMI_HECAP_MAC_MUCASCADE_SET WMI_HECAP_MAC_MUCASCADE_SET_D2
  #define WMI_HECAP_MAC_ACKMTIDAMPDU_GET WMI_HECAP_MAC_ACKMTIDAMPDU_GET_D2
  #define WMI_HECAP_MAC_ACKMTIDAMPDU_SET WMI_HECAP_MAC_ACKMTIDAMPDU_SET_D2
  #define WMI_HECAP_MAC_GROUPMSTABA_GET WMI_HECAP_MAC_GROUPMSTABA_GET_D2
  #define WMI_HECAP_MAC_GROUPMSTABA_SET WMI_HECAP_MAC_GROUPMSTABA_SET_D2
  #define WMI_HECAP_MAC_OMI_GET WMI_HECAP_MAC_OMI_GET_D2
  #define WMI_HECAP_MAC_OMI_SET WMI_HECAP_MAC_OMI_SET_D2
  #define WMI_HECAP_MAC_OFDMARA_GET WMI_HECAP_MAC_OFDMARA_GET_D2
  #define WMI_HECAP_MAC_OFDMARA_SET WMI_HECAP_MAC_OFDMARA_SET_D2
  #define WMI_HECAP_MAC_MAXAMPDULEN_EXP_GET WMI_HECAP_MAC_MAXAMPDULEN_EXP_GET_D2
  #define WMI_HECAP_MAC_MAXAMPDULEN_EXP_SET WMI_HECAP_MAC_MAXAMPDULEN_EXP_SET_D2
  #define WMI_HECAP_MAC_AMSDUFRAG_GET WMI_HECAP_MAC_AMSDUFRAG_GET_D2
  #define WMI_HECAP_MAC_AMSDUFRAG_SET WMI_HECAP_MAC_AMSDUFRAG_SET_D2
  #define WMI_HECAP_MAC_FLEXTWT_GET WMI_HECAP_MAC_FLEXTWT_GET_D2
  #define WMI_HECAP_MAC_FLEXTWT_SET WMI_HECAP_MAC_FLEXTWT_SET_D2
  #define WMI_HECAP_MAC_MBSS_GET WMI_HECAP_MAC_MBSS_GET_D2
  #define WMI_HECAP_MAC_MBSS_SET WMI_HECAP_MAC_MBSS_SET_D2
  #define WMI_HECAP_MAC_BSRPAMPDU_GET WMI_HECAP_MAC_BSRPAMPDU_GET_D2
  #define WMI_HECAP_MAC_BSRPAMPDU_SET WMI_HECAP_MAC_BSRPAMPDU_SET_D2
  #define WMI_HECAP_MAC_QTP_GET WMI_HECAP_MAC_QTP_GET_D2
  #define WMI_HECAP_MAC_QTP_SET WMI_HECAP_MAC_QTP_SET_D2
  #define WMI_HECAP_MAC_ABQR_GET WMI_HECAP_MAC_ABQR_GET_D2
  #define WMI_HECAP_MAC_ABQR_SET WMI_HECAP_MAC_ABQR_SET_D2
  #define WMI_HECAP_MAC_SRRESP_GET WMI_HECAP_MAC_SRRESP_GET_D2
  #define WMI_HECAP_MAC_SRRESP_SET WMI_HECAP_MAC_SRRESP_SET_D2
  #define WMI_HECAP_MAC_OPS_GET WMI_HECAP_MAC_OPS_GET_D2
  #define WMI_HECAP_MAC_OPS_SET WMI_HECAP_MAC_OPS_SET_D2
  #define WMI_HECAP_MAC_NDPFDBKRPT_GET WMI_HECAP_MAC_NDPFDBKRPT_GET_D2
  #define WMI_HECAP_MAC_NDPFDBKRPT_SET WMI_HECAP_MAC_NDPFDBKRPT_SET_D2
  #define WMI_HECAP_MAC_MBAHECTRL_GET WMI_HECAP_MAC_MBAHECTRL_GET_D2
  #define WMI_HECAP_MAC_MBAHECTRL_SET WMI_HECAP_MAC_MBAHECTRL_SET_D2
  #define WMI_HECAP_MAC_MURTS_GET WMI_HECAP_MAC_MURTS_GET_D2
  #define WMI_HECAP_MAC_MURTS_SET WMI_HECAP_MAC_MURTS_SET_D2
  #define WMI_HECAP_PHY_CBMODE_GET WMI_HECAP_PHY_CBMODE_GET_D2
  #define WMI_HECAP_PHY_CBMODE_SET WMI_HECAP_PHY_CBMODE_SET_D2
  #define WMI_HECAP_PHY_OLTF_GET WMI_HECAP_PHY_OLTF_GET_D2
  #define WMI_HECAP_PHY_OLTF_SET WMI_HECAP_PHY_OLTF_SET_D2
  #define WMI_HECAP_PHY_SUBFMESTS_GET WMI_HECAP_PHY_SUBFMESTS_GET_D2
  #define WMI_HECAP_PHY_SUBFMESTS_SET WMI_HECAP_PHY_SUBFMESTS_SET_D2
  #define WMI_HECAP_PHY_PADDING_GET WMI_HECAP_PHY_PADDING_GET_D2
  #define WMI_HECAP_PHY_PADDING_SET WMI_HECAP_PHY_PADDING_SET_D2
  #define WMI_HECAP_PHY_DLOFMAMUMIMO_GET WMI_HECAP_PHY_DLOFMAMUMIMO_GET_D2
  #define WMI_HECAP_PHY_DLOFDMAMUMIO_SET WMI_HECAP_PHY_DLOFDMAMUMIO_SET_D2
  #define WMI_HECAP_PHY_32GI_GET WMI_HECAP_PHY_32GI_GET_D2
  #define WMI_HECAP_PHY_32GI_SET WMI_HECAP_PHY_32GI_SET_D2
  #define WMI_HECAP_PHY_NOSUNDIMENS_GET WMI_HECAP_PHY_NOSUNDIMENS_GET_D2
  #define WMI_HECAP_PHY_NOSUNDIMENS_SET WMI_HECAP_PHY_NOSUNDIMENS_SET_D2
  #define WMI_HECAP_PHY_40MHZNSS_GET WMI_HECAP_PHY_40MHZNSS_GET_D2
  #define WMI_HECAP_PHY_40MHZNSS_SET WMI_HECAP_PHY_40MHZNSS_SET_D2
  #define WMI_HECAP_PHY_ULOFDMA_GET WMI_HECAP_PHY_ULOFDMA_GET_D2
  #define WMI_HECAP_PHY_ULOFDMA_SET WMI_HECAP_PHY_ULOFDMA_SET_D2
  #define WMI_HECAP_PHY_DCM_GET WMI_HECAP_PHY_DCM_GET_D2
  #define WMI_HECAP_PHY_DCM_SET WMI_HECAP_PHY_DCM_SET_D2
  #define WMI_HECAP_PHY_NSTSLT80MHZ_GET WMI_HECAP_PHY_NSTSLT80MHZ_GET_D2
  #define WMI_HECAP_PHY_NSTSLT80MHZ_SET WMI_HECAP_PHY_NSTSLT80MHZ_SET_D2
  #define WMI_HECAP_PHY_NSTSGT80MHZ_GET WMI_HECAP_PHY_NSTSGT80MHZ_GET_D2
  #define WMI_HECAP_PHY_NSTSGT80MHZ_SET WMI_HECAP_PHY_NSTSGT80MHZ_SET_D2
  #define WMI_HECAP_MAC_DYNSMPWRSAVE_GET WMI_HECAP_MAC_DYNSMPWRSAVE_GET_D2
  #define WMI_HECAP_MAC_DYNSMPWRSAVE_SET WMI_HECAP_MAC_DYNSMPWRSAVE_SET_D2
  #define WMI_HECAP_MAC_PUNCSOUNDING_GET WMI_HECAP_MAC_PUNCSOUNDING_GET_D2
  #define WMI_HECAP_MAC_PUNCSOUNDING_SET WMI_HECAP_MAC_PUNCSOUNDING_SET_D2
  #define WMI_HECAP_MAC_HTVHTTRIGRX_GET WMI_HECAP_MAC_HTVHTTRIGRX_GET_D2
  #define WMI_HECAP_MAC_HTVHTTRIGRX_SET WMI_HECAP_MAC_HTVHTTRIGRX_SET_D2
#endif /* SUPPORT_11AX_D3 */


/****** 11BE EHT PHY Capabilities Information field ******/

/* Bit 0: reserved */

/* Bit 1: support for 320Mhz in 6 GHz */
#define WMI_EHTCAP_PHY_320MHZIN6GHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 1, 1)
#define WMI_EHTCAP_PHY_320MHZIN6GHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 1, 1, value)

/* Bit 2: support for 242-tone RU in BW wider than 20Mhz */
#define WMI_EHTCAP_PHY_242TONERUBWLT20MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 2, 1)
#define WMI_EHTCAP_PHY_242TONERUBWLT20MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 2, 1, value)

/* Bit 3: NDP with 4x EHT-LTF and 3.2us GI */
#define WMI_EHTCAP_PHY_NDP4XEHTLTFAND320NSGI_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 3, 1)
#define WMI_EHTCAP_PHY_NDP4XEHTLTFAND320NSGI_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 3, 1, value)

/* Bit 4: partial bandwidth UL MU-MIMO */
#define WMI_EHTCAP_PHY_PARTIALBWULMU_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 4, 1)
#define WMI_EHTCAP_PHY_PARTIALBWULMU_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 4, 1, value)

/* Bit 5: SU beamformer */
#define WMI_EHTCAP_PHY_SUBFMR_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 5, 1)
#define WMI_EHTCAP_PHY_SUBFMR_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 5, 1, value)

/* Bit 6: SU beamformee */
#define WMI_EHTCAP_PHY_SUBFME_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 6, 1)
#define WMI_EHTCAP_PHY_SUBFME_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 6, 1, value)

/* Bit 7-9: beamformee SS (<=80Mhz) */
#define WMI_EHTCAP_PHY_BFMESSLT80MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 7, 3)
#define WMI_EHTCAP_PHY_BFMESSLT80MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 7, 3, value)

/* Bit 10-12: beamformee SS (=160Mhz) */
#define WMI_EHTCAP_PHY_BFMESS160MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 10, 3)
#define WMI_EHTCAP_PHY_BFMESS160MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 10, 3, value)

/* Bit 13-15: beamformee SS (=320Mhz) */
#define WMI_EHTCAP_PHY_BFMESS320MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 13, 3)
#define WMI_EHTCAP_PHY_BFMESS320MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 13, 3, value)

/* Bit 16-18: number of sounding dimensions (<=80Mhz) */
#define WMI_EHTCAP_PHY_NUMSOUNDLT80MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 16, 3)
#define WMI_EHTCAP_PHY_NUMSOUNDLT80MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 16, 3, value)

/* Bit 19-21: number of sounding dimensions (=160Mhz) */
#define WMI_EHTCAP_PHY_NUMSOUND160MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 19, 3)
#define WMI_EHTCAP_PHY_NUMSOUND160MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 19, 3, value)

/* Bit 22-24: number of sounding dimensions (=320Mhz) */
#define WMI_EHTCAP_PHY_NUMSOUND320MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 22, 3)
#define WMI_EHTCAP_PHY_NUMSOUND320MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 22, 3, value)

/* Bit 25: ng = 16 SU feedback */
#define WMI_EHTCAP_PHY_NG16SUFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 25, 1)
#define WMI_EHTCAP_PHY_NG16SUFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 25, 1, value)

/* Bit 26: ng = 16 MU feedback */
#define WMI_EHTCAP_PHY_NG16MUFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 26, 1)
#define WMI_EHTCAP_PHY_NG16MUFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 26, 1, value)

/* Bit 27: codebook size {4,2} SU feedback */
#define WMI_EHTCAP_PHY_CODBK42SUFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 27, 1)
#define WMI_EHTCAP_PHY_CODBK42SUFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 27, 1, value)

/* Bit 28: codebook size {7,5} MU feedback */
#define WMI_EHTCAP_PHY_CODBK75MUFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 28, 1)
#define WMI_EHTCAP_PHY_CODBK75MUFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 28, 1, value)

/* Bit 29: triggered SU beamforming feedback */
#define WMI_EHTCAP_PHY_TRIGSUBFFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 29, 1)
#define WMI_EHTCAP_PHY_TRIGSUBFFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 29, 1, value)

/* Bit 30: triggered MU beamforming partial BW feedback */
#define WMI_EHTCAP_PHY_TRIGMUBFPARTBWFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 30, 1)
#define WMI_EHTCAP_PHY_TRIGMUBFPARTBWFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 30, 1, value)

/* Bit 31: triggered CQI feedback */
#define WMI_EHTCAP_PHY_TRIGCQIFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[0], 31, 1)
#define WMI_EHTCAP_PHY_TRIGCQIFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[0], 31, 1, value)

/* Bit 32: partial bandwidth DL MU-MIMO */
#define WMI_EHTCAP_PHY_PARTBWDLMUMIMO_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 0, 1)
#define WMI_EHTCAP_PHY_PARTBWDLMUMIMO_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 0, 1, value)

/* Bit 33: PSR-based SR support */
#define WMI_EHTCAP_PHY_PSRSR_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 1, 1)
#define WMI_EHTCAP_PHY_PSRSR_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 1, 1, value)

/* Bit 34: power boost factor support */
#define WMI_EHTCAP_PHY_PWRBSTFACTOR_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 2, 1)
#define WMI_EHTCAP_PHY_PWRBSTFACTOR_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 2, 1, value)

/* Bit 35: EHT MU PPDU with 4xEHT-LTF and 0.8us GI */
#define WMI_EHTCAP_PHY_4XEHTLTFAND800NSGI_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 3, 1)
#define WMI_EHTCAP_PHY_4XEHTLTFAND800NSGI_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 3, 1, value)

/* Bit 36-39: max NC */
#define WMI_EHTCAP_PHY_MAXNC_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 4, 4)
#define WMI_EHTCAP_PHY_MAXNC_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 4, 4, value)

/* Bit 40: non-triggered CQI feedback */
#define WMI_EHTCAP_PHY_NONTRIGCQIFB_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 8, 1)
#define WMI_EHTCAP_PHY_NONTRIGCQIFB_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 8, 1, value)

/* Bit 41: Tx 1024-QAM and 4096-QAM < 242-tone RU support */
#define WMI_EHTCAP_PHY_TX1024AND4096QAMLS242TONERU_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 9, 1)
#define WMI_EHTCAP_PHY_TX1024AND4096QAMLS242TONERU_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 9, 1, value)

/* Bit 42: Rx 1024-QAM and 4096-QAM < 242-tone RU support */
#define WMI_EHTCAP_PHY_RX1024AND4096QAMLS242TONERU_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 10, 1)
#define WMI_EHTCAP_PHY_RX1024AND4096QAMLS242TONERU_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 10, 1, value)

/* Bit 43: PPE thresholds present */
#define WMI_EHTCAP_PHY_PPETHRESPRESENT_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 11, 1)
#define WMI_EHTCAP_PHY_PPETHRESPRESENT_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 11, 1, value)

/* Bit 44-45: common nominal packet padding */
#define WMI_EHTCAP_PHY_CMNNOMPKTPAD_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 12, 2)
#define WMI_EHTCAP_PHY_CMNNOMPKTPAD_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 12, 2, value)

/* Bit 46-50: max number of supported EHT-LTFs */
#define WMI_EHTCAP_PHY_MAXNUMEHTLTF_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 14, 5)
#define WMI_EHTCAP_PHY_MAXNUMEHTLTF_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 14, 5, value)

/* Bit 51-54: support of MCS 15 */
#define WMI_EHTCAP_PHY_SUPMCS15_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 19, 4)
#define WMI_EHTCAP_PHY_SUPMCS15_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 19, 4, value)

/* Bit 55: support of EHT DUP in 6 GHz */
#define WMI_EHTCAP_PHY_EHTDUPIN6GHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 23, 1)
#define WMI_EHTCAP_PHY_EHTDUPIN6GHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 23, 1, value)

/* Bit 56: support for 20Mhz operating STA receiving NDP with wider bandwidth */
#define WMI_EHTCAP_PHY_20MHZOPSTARXNDPWIDERBW_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 24, 1)
#define WMI_EHTCAP_PHY_20MHZOPSTARXNDPWIDERBW_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 24, 1, value)

/* Bit 57: non-OFDMA UL MU-MIMO (bw <= 80Mhz) */
#define WMI_EHTCAP_PHY_NONOFDMAULMUMIMOLT80MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 25, 1)
#define WMI_EHTCAP_PHY_NONOFDMAULMUMIMOLT80MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 25, 1, value)

/* Bit 58: non-OFDMA UL MU-MIMO (bw = 160Mhz) */
#define WMI_EHTCAP_PHY_NONOFDMAULMUMIMO160MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 26, 1)
#define WMI_EHTCAP_PHY_NONOFDMAULMUMIMO160MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 26, 1, value)

/* Bit 59: non-OFDMA UL MU-MIMO (bw = 320Mhz) */
#define WMI_EHTCAP_PHY_NONOFDMAULMUMIMO320MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 27, 1)
#define WMI_EHTCAP_PHY_NONOFDMAULMUMIMO320MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 27, 1, value)

/* Bit 60: MU beamformer (bw <= 80Mhz) */
#define WMI_EHTCAP_PHY_MUBFMRLT80MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 28, 1)
#define WMI_EHTCAP_PHY_MUBFMRLT80MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 28, 1, value)

/* Bit 61: MU beamformer (bw = 160Mhz) */
#define WMI_EHTCAP_PHY_MUBFMR160MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 29, 1)
#define WMI_EHTCAP_PHY_MUBFMR160MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 29, 1, value)

/* Bit 62: MU beamformer (bw = 320Mhz) */
#define WMI_EHTCAP_PHY_MUBFMR320MHZ_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 30, 1)
#define WMI_EHTCAP_PHY_MUBFMR320MHZ_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 30, 1, value)

/* Bit 63: TB sounding feedback rate limit */
#define WMI_EHTCAP_PHY_TBSUNDFBRATELIMIT_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[1], 31, 1)
#define WMI_EHTCAP_PHY_TBSUNDFBRATELIMIT_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[1], 31, 1, value)

/* Bit 64: Rx 1024-QAM in wider bandwidth DL OFDMA support */
#define WMI_EHTCAP_PHY_RX1024QAMWIDERBWDLOFDMA_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[2], 0, 1)
#define WMI_EHTCAP_PHY_RX1024QAMWIDERBWDLOFDMA_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[2], 0, 1, value)

/* Bit 65: Rx 4096-QAM in wider bandwidth DL OFDMA support */
#define WMI_EHTCAP_PHY_RX4096QAMWIDERBWDLOFDMA_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[2], 1, 1)
#define WMI_EHTCAP_PHY_RX4096QAMWIDERBWDLOFDMA_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[2], 1, 1, value)

/* Bit 66: 20Mhz-only limited capabilities support */
#define WMI_EHTCAP_PHY_20MHZ_ONLY_CAPS_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[2], 2, 1)
#define WMI_EHTCAP_PHY_20MHZ_ONLY_CAPS_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[2], 2, 1, value)

/* Bit 67: 20Mhz-only triggered MU beamforming full BW feedback and DL MU-MIMO */
#define WMI_EHTCAP_PHY_20MHZ_ONLY_TRIGGER_MUBF_FULL_BW_FB_AND_DLMUMIMO_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[2], 3, 1)
#define WMI_EHTCAP_PHY_20MHZ_ONLY_TRIGGER_MUBF_FULL_BW_FB_AND_DLMUMIMO_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[2], 3, 1, value)

/* Bit 68: 20Mhz-only M-RU support */
#define WMI_EHTCAP_PHY_20MHZ_ONLY_MRU_SUPP_GET(eht_cap_phy) WMI_GET_BITS(eht_cap_phy[2], 4, 1)
#define WMI_EHTCAP_PHY_20MHZ_ONLY_MRU_SUPP_SET(eht_cap_phy, value) WMI_SET_BITS(eht_cap_phy[2], 4, 1, value)


/* Bits 69-71: reserved */

/****** End of 11BE EHT PHY Capabilities Information field ******/

/****** 11BE EHT MAC Capabilities Information field ******/

/* Bit 0: NSEP/EPCS priority access supported: draft1.4 change the name from NSEP to EPCS
 *        To compatible with <= draft 1.4 ver, we keep 2 define there, but same bit.
 */
#define WMI_EHTCAP_MAC_NSEPPRIACCESS_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 0, 1)
#define WMI_EHTCAP_MAC_NSEPPRIACCESS_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 0, 1, value)
#define WMI_EHTCAP_MAC_EPCSPRIACCESS_GET(eht_cap_mac) WMI_EHTCAP_MAC_NSEPPRIACCESS_GET(eht_cap_mac)
#define WMI_EHTCAP_MAC_EPCSPRIACCESS_SET(eht_cap_mac, value) WMI_EHTCAP_MAC_NSEPPRIACCESS_SET(eht_cap_mac, value)

/* Bit 1: EHT OM control support */
#define WMI_EHTCAP_MAC_EHTOMCTRL_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 1, 1)
#define WMI_EHTCAP_MAC_EHTOMCTRL_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 1, 1, value)

/* Bit 2: triggered TXOP mode 1 support
 *        As in draft 1.4, we define mode2 and to compatible with old version, we keep 2 define there, but same bit.
 */
#define WMI_EHTCAP_MAC_TRIGTXOP_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 2, 1)
#define WMI_EHTCAP_MAC_TRIGTXOP_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 2, 1, value)
#define WMI_EHTCAP_MAC_TRIGTXOPMODE1_GET(eht_cap_mac) WMI_EHTCAP_MAC_TRIGTXOP_GET(eht_cap_mac)
#define WMI_EHTCAP_MAC_TRIGTXOPMODE1_SET(eht_cap_mac, value) WMI_EHTCAP_MAC_TRIGTXOP_SET(eht_cap_mac, value)

/* Bit 3: triggered TXOP mode 2 support */
#define WMI_EHTCAP_MAC_TRIGTXOPMODE2_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 3, 1)
#define WMI_EHTCAP_MAC_TRIGTXOPMODE2_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 3, 1, value)

/* Bit 4: restricted TWT support */
#define WMI_EHTCAP_MAC_RESTRICTTWT_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 4, 1)
#define WMI_EHTCAP_MAC_RESTRICTTWT_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 4, 1, value)

/* Bit 5: SCS traffic description support */
#define WMI_EHTCAP_MAC_SCSTRAFFICDESC_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 5, 1)
#define WMI_EHTCAP_MAC_SCSTRAFFICDESC_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 5, 1, value)

/* Bit 6-7: maximum MPDU length */
#define WMI_EHTCAP_MAC_MAXMPDULEN_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 6, 2)
#define WMI_EHTCAP_MAC_MAXMPDULEN_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 6, 2, value)

/* Bit 8: Maximum A-MPDU Length Exponent Extension */
#define WMI_EHTCAP_MAC_MAXAMPDULEN_EXP_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 8, 1)
#define WMI_EHTCAP_MAC_MAXAMPDULEN_EXP_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 8, 1, value)

/* Bit 9: EHT TRS support */
#define WMI_EHTCAP_MAC_TRS_SUPPORT_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 9, 1)
#define WMI_EHTCAP_MAC_TRS_SUPPORT_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 9, 1, value)

/* Bit 10: TXOP return support in txop sharing mode 2 */
#define WMI_EHTCAP_MAC_TXOP_RETURN_SUPP_IN_SHARINGMODE2_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 10, 1)
#define WMI_EHTCAP_MAC_TXOP_RETURN_SUPP_IN_SHARINGMODE2_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 10, 1, value)

/* Bit 11: two BQRs support */
#define WMI_EHTCAP_MAC_TWO_BQRS_SUPP_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 11, 1)
#define WMI_EHTCAP_MAC_TWO_BQRS_SUPP_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 11, 1, value)

/* Bit 12-13: EHT link adaptation support */
#define WMI_EHTCAP_MAC_EHT_LINK_ADAPTATION_SUPP_GET(eht_cap_mac) WMI_GET_BITS(eht_cap_mac[0], 12, 2)
#define WMI_EHTCAP_MAC_EHT_LINK_ADAPTATION_SUPP_SET(eht_cap_mac, value) WMI_SET_BITS(eht_cap_mac[0], 12, 2, value)

/* Bit 14-15: reserved */

/****** End of 11BE EHT MAC Capabilities Information field ******/


typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_cfr_capture_event_fixed_param */
    A_UINT32 tlv_header;
    /* Method used to capture CFR - of type WMI_PEER_CFR_CAPTURE_METHOD */
    A_UINT32 capture_method;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* Peer MAC address. In AP mode, this is the address of the connected peer
     * for which CFR capture is needed. In case of STA mode, this is the address
     * of the AP to which the STA is connected
     */
    wmi_mac_addr mac_addr;
    /* primary 20 MHz channel frequency in mhz */
    A_UINT32 chan_mhz;
    /* BW of measurement - of type WMI_PEER_CFR_CAPTURE_BW */
    A_UINT32 bandwidth;
    /* phy mode WLAN_PHY_MODE of the channel defined in wlan_defs.h*/
    A_UINT32 phy_mode;
    /* Center frequency 1 in MHz*/
    A_UINT32 band_center_freq1;
    /* Center frequency 2 in MHz - valid only for 11acvht 80plus80 mode*/
    A_UINT32 band_center_freq2;
    /* Number of spatial streams */
    A_UINT32 sts_count;
    /* Bits 31:0:   address of data from wmi_dma_buf_release_entry [31:0] */
    A_UINT32 correlation_info_1;
    /* Bits 11:0:   address of data from wmi_dma_buf_release_entry [43:32]
     * Bits 15:12:  reserved (set to 0x0)
     * Bits 31:16:  hardware PPDU ID [15:0]
     */
    A_UINT32 correlation_info_2;
    /* Bits 1:0:    TX status (if any); values defined in enum
    *               WMI_FRAME_TX_STATUS
     * Bits 30:2:   reserved (set to 0x0)
     * Bit  31:     Status of the CFR capture of the peer
     *              1 (True) - Successful; 0 (False) - Not successful
     */
    A_UINT32 status;
    /* Timestamp in microseconds at which the CFR was captured in the hardware.
     * The clock used for this timestamp is private to the target and
     * is not visible to the host i.e., Host can interpret only the
     * relative timestamp deltas from one message to the next,
     * but can't interpret the absolute timestamp from a single message.
     */
    A_UINT32 timestamp_us;
    /*
     * Count of the current CFR capture from FW.
     * This is helpful to identify any drops in FW.
     */
    A_UINT32 counter;
    /* Per chain RSSI of the peer, for up to WMI_MAX_CHAINS.
     * Each chain's entry reports the RSSI for different bands in dBm units.
     * Use WMI_UNIFIED_CHAIN_RSSI_GET to extract the value for a particular
     * band.
     * A band value of 0x80 (-128) is invalid.
     */
    A_UINT32 chain_rssi[WMI_MAX_CHAINS];
    /* Carrier frequency offset
       It is Difference between down conversion oscillator frequency at the receiver
       versus carrier frequency of the received signal. To convert to ppm, below
       equation needs to be used. Here, Fc is carrier frequency (primary 20 channel frequency) in Hz:

       PPM = cfo_measurement(13 bits)/((2^13)/(800e-9)/2/Fc*1e6)
       PPM ranges from -40 to +40

       Bits 0  : 0   Set to 1 to indicate cfo measurement value is valid
       Bits 1  : 14  14 bits cfo measurement raw data. 14 bit is signed bit.
                     For the above ppm equation , use the first 13 bits to calculate.
     */
    A_UINT32 cfo_measurement_valid :1,
             cfo_measurement :14,
             reserved :17;

    /* RX packet start timestamp.
     * It reports the time the first L-STF ADC sample arrived at RX antenna
     * It is in units of 480 MHz clock, i.e. number of clock cycles at 480 MHz.
     */
    A_UINT32 rx_start_ts;

    /*
     * The rx_ts_reset flag will be set to 1 upon every reset of rx_start_ts.
     */
    A_UINT32 rx_ts_reset;

    /*
     * MCS and Guard Interval.
     * MCS: For legacy mode only
     *    0: 48 Mbps
     *    1: 24 Mbps
     *    2: 12 Mbps
     *    3: 6 Mbps
     *    4: 54 Mbps
     *    5: 36 Mbps
     *    6: 18 Mbps
     *    7: 9 Mbps
     *    8-254: reserved
     *    255:   invalid entry
     *
     * GI: For Legacy mode only
     *    0: 0.8 us
     *    1: 0.4 us
     *    2: 1.6 us
     *    3: 3.2 us
     *    4-254: reserved
     *    255:   invalid entry
     *
     * Bits 0:7        mcs
     * Bits 8:15       gi_type
     * Bits 16:31      reserved
     */
    A_UINT32 mcs_gi_info;
} wmi_peer_cfr_capture_event_fixed_param;

#define WMI_CFR_MCS_GET(mcs_gi_info) \
        WMI_GET_BITS(mcs_gi_info, 0, 8)

#define WMI_CFR_MCS_SET(mcs_gi_info, value) \
        WMI_SET_BITS(mcs_gi_info, 0, 8, value)

#define WMI_CFR_GI_TYPE_GET(mcs_gi_info) \
        WMI_GET_BITS(mcs_gi_info, 8, 8)

#define WMI_CFR_GI_TYPE_SET(mcs_gi_info, value) \
        WMI_SET_BITS(mcs_gi_info, 8, 8, value)


#define WMI_UNIFIED_CHAIN_PHASE_MASK 0x0000ffff
#define WMI_UNIFIED_CHAIN_PHASE_GET(tlv, chain_idx) \
    ((A_UINT16) ((tlv)->chain_phase[chain_idx] & WMI_UNIFIED_CHAIN_PHASE_MASK))
#define WMI_UNIFIED_CHAIN_PHASE_SET(tlv, chain_idx, value) \
    (tlv)->chain_phase[chain_idx] = (WMI_UNIFIED_CHAIN_PHASE_MASK & (value))

#define WMI_CFR_AGC_GAIN_CHAINS_PER_U32 4
#define WMI_UNIFIED_AGC_GAIN_MASK 0x000000ff
#define WMI_UNIFIED_AGC_GAIN_GET(tlv, chain_idx) \
    ((A_UINT8) ((tlv)->agc_gain_index[(chain_idx)/WMI_CFR_AGC_GAIN_CHAINS_PER_U32] >> \
        ((chain_idx)%WMI_CFR_AGC_GAIN_CHAINS_PER_U32)*8) & WMI_UNIFIED_AGC_GAIN_MASK)
#define WMI_UNIFIED_AGC_GAIN_SET(tlv, chain_idx, value) \
    (tlv)->agc_gain_index[chain_idx/WMI_CFR_AGC_GAIN_CHAINS_PER_U32] = \
        (tlv)->agc_gain_index[chain_idx/WMI_CFR_AGC_GAIN_CHAINS_PER_U32] & \
            ~(0xff << (((chain_idx)%WMI_CFR_AGC_GAIN_CHAINS_PER_U32)*8)) | \
            (((value)<<((chain_idx)%WMI_CFR_AGC_GAIN_CHAINS_PER_U32)*8))

#define WMI_UNIFIED_AGC_GAIN_TBL_IDX_GET(tlv, chain_idx) \
    ((A_UINT8) ((tlv)->agc_gain_tbl_index[(chain_idx)/WMI_CFR_AGC_GAIN_CHAINS_PER_U32] >> \
        ((chain_idx)%WMI_CFR_AGC_GAIN_CHAINS_PER_U32)*8) & WMI_UNIFIED_AGC_GAIN_MASK)

#define WMI_UNIFIED_AGC_GAIN_TBL_IDX_SET(tlv, chain_idx, value) \
    (tlv)->agc_gain_tbl_index[chain_idx/WMI_CFR_AGC_GAIN_CHAINS_PER_U32] = \
        (tlv)->agc_gain_tbl_index[chain_idx/WMI_CFR_AGC_GAIN_CHAINS_PER_U32] & \
            ~(0xff << (((chain_idx)%WMI_CFR_AGC_GAIN_CHAINS_PER_U32)*8)) | \
            (((value)<<((chain_idx)%WMI_CFR_AGC_GAIN_CHAINS_PER_U32)*8))

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_peer_cfr_capture_event_phase_fixed_param */
    A_UINT32 tlv_header;

    /* Per chain AoA phase data of the Peer, for up to WMI_MAX_CHAINS.
     * USE WMI_UNIFIED_CHAIN_PHASE_GET to extract the phase value for
     * a particular chain.
     * Only lower 2 bytes will contain phase data for a particular chain.
     * The values in phase data will be from 0  1023 as mapping of
     * 0-359 degrees using the formula -
     * phase data = phase in degrees * 1024 / 360
     *
     * Target will set 0xFFFF for all invalid chains.
     *
     * The WMI_UNIFIED_CHAIN_PHASE_GET/SET macros can be used to access
     * the valid portion of the 4-byte word containing the chain phase data.
     */
    A_UINT32 chain_phase[WMI_MAX_CHAINS];

    /* agc_gain_index
     * It shows an index in the AGC gain LUT.
     * agc gain should be in range between 0 to 62.
     * 4 AGC gain index values are packed into each A_UINT32 word;
     * use the WMI_UNITIFED_AGC_GAIN_GET/SET macros to read/write
     * the AGC gain indices for individual chains.
     */
    A_UINT32 agc_gain_index[WMI_MAX_CHAINS/WMI_CFR_AGC_GAIN_CHAINS_PER_U32];

    /*
     * Each chain is provided with 8 bits within agc_gain_tbl_index.
     * The value for each of these 8-bit portions is between 0 to 2:
     *  0 : Default Gain Table
     *  1 : Low RF Gain Table.
     *      Low gain applied at RF as compared to gains applied when
     *      gain_table _idx = 0 is selected.
     *  2 : Very Low RF Gain Table.
     *      It's similar to above with even lower gains applied.
     *
     * AoA should use the normal/regular GLUT, thus GAIN_TABLE_IDX
     * should always be 0. If it is not 0, it means that there was
     * out-of-band blocker causing the hardware to pick a different
     * gain table. In that case, AoA result will not be reliable.
     * Therefore, the recommendation is to stop doing AoA if
     * GAIN_TABLE_IDX != 0 and indicate error.
     */
    A_UINT32 agc_gain_tbl_index[WMI_MAX_CHAINS/WMI_CFR_AGC_GAIN_CHAINS_PER_U32];
} wmi_peer_cfr_capture_event_phase_fixed_param;

#define WMI_PEER_CFR_CAPTURE_EVT_STATUS_OK      0x80000000
#define WMI_PEER_CFR_CAPTURE_EVT_STATUS_OK_S    31

/* Failed to capture CFR as peer is in power save mode */
#define WMI_PEER_CFR_CAPTURE_EVT_STATUS_PS_FAILED      0x40000000
#define WMI_PEER_CFR_CAPTURE_EVT_STATUS_PS_FAILED_S    30

#define WMI_PEER_CFR_CAPTURE_EVT_STATUS_TX      0x00000003
#define WMI_PEER_CFR_CAPTURE_EVT_STATUS_TX_S    0

/**
 *  wmi_cold_boot_cal_data config flags
 *  BIT 0     : 1 means more data will come, 0 means last event
 *  BIT 1-31  : Reserved
 */
#define WMI_COLD_BOOT_CAL_DATA_SET_IS_MORE_DATA(flags, val)      WMI_SET_BITS(flags, 0, 1, val)
#define WMI_COLD_BOOT_CAL_DATA_GET_IS_MORE_DATA(flags)           WMI_GET_BITS(flags, 0, 1)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_cold_boot_cal_data_fixed_param */
    A_UINT32 data_len; /** length in byte of data[]. */
    A_UINT32 flags; /** config flags : Only 0th bit is used, bit 1-31 are reserved */
/* Following this structure is the TLV:
 *      A_UINT8 data[]; <-- length in byte given by field data_len.
 * This data array contains cold boot data calibration raw data.
 */
} wmi_cold_boot_cal_data_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_rap_info_event_fixed_param */
    /** pdev_id for identifying the MAC, the default value is WMI_PDEV_ID_SOC
      * See macros starting with WMI_PDEV_ID_ for values.
      */
    A_UINT32 pdev_id;
    A_UINT32 type; /** type of the rogue ap, see WMI_ROGUE_AP_TYPE */
    wmi_mac_addr bssid; /** bssid of the rogue ap */
} wmi_pdev_rap_info_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_sched_tidq_susp_info_event_fixed_param */
    A_UINT32 pdev_id; /** pdev id */
    A_UINT32 tid_num; /** tid_num that is suspended */
    A_UINT32 suspended_time_ms; /** time for which tid has been suspended in ms */
} wmi_pdev_sched_tidq_susp_info_event_fixed_param;

/*
 * WMI API for Firmware to indicate iface combinations which Firmware
 * support to Host
 */
typedef struct {
    A_UINT32 tlv_header; /* tag = WMITLV_TAG_STRUC_wmi_wlanfw_iface_cmb_ind_event_fixed_param */

    /* common part */
    /* Consider DBS/DBDC for this new implementation */
    A_UINT32 pdev_n;

    /* iface combinations part -
     * Use subsequent TLV arrays to list supported combinations of interfaces.
     */

/*
 * The TLVs listing interface combinations, will follow this TLV.
 * The number of combinations can be calculated by dividing the
 * TLV array length by the TLV array element length.
 *
 * The fixed_param TLV is directly followed by a list of
 * wlanfw_iface_combination elements:
 *     wlanfw_iface_combination combinations[0];
 *     wlanfw_iface_combination combinations[1];
 *     ...
 *     wlanfw_iface_combination combinations[N];
 *
 * After the list of wlanfw_iface_combinations is a list of interface limits.
 * The cmb_limits field of each wlanfw_iface_combination show which of the
 * limits within the "wlanfw_ifact_limit limits" list belong to that
 * iface_combination:
 *     limits[0]                                     <- cmb 0, limit 0
 *     ...
 *     limits[cmb[0].cmb_limits-1]                   <- cmb 0, limit N
 *     limits[cmb[0].cmb_limits]                     <- cmb 1, limit 0
 *     ...
 *     limits[cmb[0].cmb_limits+cmb[1].cmb_limits-1] <- cmb 1, limit N
 *     limits[cmb[0].cmb_limits+cmb[1].cmb_limits]   <- cmb 2, limit 0
 *     ...
 */
} wmi_wlanfw_iface_cmb_ind_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* tag = WMITLV_TAG_STRUC_wmi_wlanfw_iface_limit_param */
    /*
     * How many vdevs can work as below vdev_type/vdev_subtype
     * in one combination.
     */
    A_UINT32 vdev_limit_n;
    /*
     * Indicate what role above vdevs can work as.
     * Refer to "WMI_VDEV_TYPE_xx, WMI_UNIFIED_VDEV_SUBTYPE_xx"
     * for roles definition.
     */
    A_UINT32 vdev_type;
    A_UINT32 vdev_subtype;
} wlanfw_iface_limit;

/**
 * @brief specific configuration of valid_fields for host.
 * These flags are used for indicating which fields in wlanfw_iface_combination
 * contains valid value for Host Driver.
 * 0: Host can ignore this field
 * 1: field contains valid value for Host Driver
 */

#define WMI_CMB_VALID_FIELDS_FLAG_PEER_MAX_S 0
#define WMI_CMB_VALID_FIELDS_FLAG_PEER_MAX_M 0x1

#define WMI_CMB_VALID_FIELDS_FLAG_STA_AP_BCN_INT_MATCH_S 1
#define WMI_CMB_VALID_FIELDS_FLAG_STA_AP_BCN_INT_MATCH_M 0x2

#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_MIN_S 2
#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_MIN_M 0x4

#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_N_S 3
#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_N_M 0x8

#define WMI_CMB_VALID_FIELDS_FLAG_SET(word32, flag, value) \
    do { \
        (word32) &= ~WMI_CMB_VALID_FIELDS_FLAG_ ## flag ## _M; \
        (word32) |= ((value) << WMI_CMB_VALID_FIELDS_FLAG_ ## flag ## _S) & \
            WMI_CMB_VALID_FIELDS_FLAG_ ## flag ## _M; \
    } while (0)

#define WMI_CMB_VALID_FIELDS_FLAG_GET(word32, flag) \
    (((word32) & WMI_CMB_VALID_FIELDS_FLAG_ ## flag ## _M) >> \
    WMI_CMB_VALID_FIELDS_FLAG_ ## flag ## _S)

#define WMI_CMB_VALID_FIELDS_FLAG_PEER_MAX_SET(word32, value) \
    WMI_CMB_VALID_FIELDS_FLAG_SET((word32), PEER_MAX, (value))
#define WMI_CMB_VALID_FIELDS_FLAG_PEER_MAX_GET(word32) \
    WMI_CMB_VALID_FIELDS_FLAG_GET((word32), PEER_MAX)

#define WMI_CMB_VALID_FIELDS_FLAG_STA_AP_BCN_INT_MATCH_SET(word32, value) \
    WMI_CMB_VALID_FIELDS_FLAG_SET((word32), STA_AP_BCN_INT_MATCH, (value))
#define WMI_CMB_VALID_FIELDS_FLAG_STA_AP_BCN_INT_MATCH_GET(word32) \
    WMI_CMB_VALID_FIELDS_FLAG_GET((word32), STA_AP_BCN_INT_MATCH)

#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_MIN_SET(word32, value) \
    WMI_CMB_VALID_FIELDS_FLAG_SET((word32), BCN_INT_MIN, (value))
#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_MIN_GET(word32) \
    WMI_CMB_VALID_FIELDS_FLAG_GET((word32), BCN_INT_MIN)

#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_N_SET(word32, value) \
    WMI_CMB_VALID_FIELDS_FLAG_SET((word32), BCN_INT_N, (value))
#define WMI_CMB_VALID_FIELDS_FLAG_BCN_INT_N_GET(word32) \
    WMI_CMB_VALID_FIELDS_FLAG_GET((word32), BCN_INT_N)

typedef struct {
    A_UINT32 tlv_header;
    /*
     * Max num Peers can be supported in this combination.
     * It excludes the self-peers associated with each vdev.
     * It's the number of real remote peers.
     * eg: when working as AP mode, indicating how many clients can be
     * supported to connect with this AP.
     */
    A_UINT32 peer_max;
    /* Home Channels supported on one single phy concurrently */
    A_UINT32 channel_n;
    /*
     * The number of "wlanfw_iface_limit" for a specified combination.
     * eg: there is 2 vdev, including 1 AP vdev and 1 STA vdev, then this
     * cmb_limits will be 2 for this combination.
     */
    A_UINT32 cmb_limits;
    /*
     * Beacon intervals for STA and AP types need to be match or not.
     * 1: need to be match
     * 0: not need
     */
    A_UINT32 sta_ap_bcn_int_match;
    /*
     * This combination supports different beacon intervals or not.
     * 0: Beacon interval is same for all interface
     * !0: STA Beacon interval AND GCD of AP Beacon intervals
     *     should be greater or equal to this value.
     */
    A_UINT32 bcn_int_min;
    /*
     * Number of different Beacon intervals
     */
    A_UINT32 bcn_int_n;

    /*
     * This indicates which field in this struct
     * contains valid value for Host Driver.
     * Refer to definitions for "WMI_CMB_VALID_FIELDS_FLAG_xx".
     */
    A_UINT32 valid_fields;
} wlanfw_iface_combination;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_set_elna_bypass_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** 1-Enable, 0-Disable */
    A_UINT32 en_dis;
} wmi_set_elna_bypass_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_get_elna_bypass_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
} wmi_get_elna_bypass_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_get_elna_bypass_event_fixed_param */
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** 1-Enable, 0-Disable */
    A_UINT32 en_dis;
} wmi_get_elna_bypass_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_get_channel_ani_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /**
     * TLV (tag length value) parameters follow the
     * structure. The TLV's are:
     * list of channels (center freq of primary 20 MHz of the channel, in MHz)
     * A_UINT32 channel_list[];
     */
} wmi_get_channel_ani_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_get_channel_ani_event_fixed_param
     */
    A_UINT32 tlv_header;
    /**
     * TLV (tag length value) parameters follow the
     * structure. The TLV's are:
     * wmi_channel_ani_info_tlv_param ani_info[];
     */
} wmi_get_channel_ani_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_channel_ani_info_tlv_param */
    A_UINT32 tlv_header;
    /** channel freq (center of 20 MHz primary channel) in MHz */
    A_UINT32 chan_freq;
    /**
     * ANI (noise interference) level corresponding to the channel.
     * Values range from [0-9], with higher values indicating more
     * noise interference.
     */
    A_UINT32 ani_level;
} wmi_channel_ani_info_tlv_param;

/* This command is to specify to enable/disable audio frame aggr */
typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_aggr_enable_cmd_fixed_param */
    A_UINT32 aggr_enable; /* enable aggregation for audio frame */
    A_UINT32 tbd_enable;  /* enable time_based discarding for audio frame */
    A_UINT32 vdev_id;
} wmi_audio_aggr_enable_cmd_fixed_param;

typedef struct wmi_audio_aggr_rate_set_s {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_audio_aggr_rate_set */
    A_UINT32 mcs;
    A_UINT32 bandwidth; /* 0 for 20M, 1 for 40M and 2 for 80M, etc. */
    A_UINT32 vdev_id;
} WMI_AUDIO_AGGR_RATE_SET_T;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_aggr_add_group */
    A_UINT32 group_id;      /* id of audio group */
    wmi_mac_addr multicast_addr; /* multicast address of audio group */
    A_UINT32 vdev_id;
} wmi_audio_aggr_add_group_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_aggr_del_group */
    A_UINT32 group_id;
    A_UINT32 vdev_id;
} wmi_audio_aggr_del_group_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_aggr_set_group_rate */
    A_UINT32 group_id;
    A_UINT32 vdev_id;
    /**
     * TLV (tag length value) parameters follow the
     * structure. The TLV's are:
     * WMI_AUDIO_AGGR_RATE_SET_T rate_set[];
     **/
} wmi_audio_aggr_set_group_rate_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_aggr_set_group_retry */
    A_UINT32 group_id;
    A_UINT32 retry_thresh;
    A_UINT32 vdev_id;
} wmi_audio_aggr_set_group_retry_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 group_id;
    /*
     * bit0: if set, Enable HT20
     * bit1: if set, Enable HT40
     * bit2, bit3: Reserved
     * bit4: if set, Enable VHT20
     * bit5: if set, Enable VHT40
     * bit6: if set, Enable VHT80
     * bit7 ~ bit31: Reserved
     */
    A_UINT32 bw;
    A_UINT32 mcs_min;
    A_UINT32 mcs_max;
    A_UINT32 mcs_offset;
    A_UINT32 nss;
} wmi_audio_aggr_set_group_auto_rate_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 group_id;
    A_UINT32 interval;
} wmi_audio_aggr_set_group_probe_cmd_fixed_param;

typedef struct {
    /**
     * TLV tag and len;
     * tag equals WMITLV_TAG_STRUC_wmi_audio_aggr_update_sta_group_info */
    A_UINT32 tlv_header;

    /* vdev id */
    A_UINT32 vdev_id; /* which STA/vdev's group membership is being specified */

    /* bitmap that indicates which groups this sta belongs to */
    A_UINT32 group_bmap;

/*
 * This fixed_param struct is followed by a TLV array of wmi_mac_addr,
 * which specifies the multi-cast MAC address used for each group.
 * The number of elements within the TLV array matches the number of bits
 * set within group_bmap.
 */
} wmi_audio_aggr_update_sta_group_info_cmd_fixed_param;

typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /*
     * Identifier from Host to indicate how many this cmd been sent to FW.
     * This value will be echoed back in the response_id field
     * of the WMI_AUDIO_AGGR_REPORT_STATISTICS_EVENTID.
     */
    A_UINT32 request_id;
} wmi_audio_aggr_get_statistics_cmd_fixed_param;

typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
} wmi_audio_aggr_reset_statistics_cmd_fixed_param;

typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;

    /*
     * The user_mode and user_profile fields are passed through
     * the host driver to the target FW, but are never interpreted
     * by the host driver. The values for these fields are opaque
     * to the host, and are only interpreted by the FW.
     */
    A_UINT32 user_mode;
    A_UINT32 user_profile;
} wmi_audio_aggr_set_rtscts_config_cmd_fixed_param;

typedef enum {
    /* audio aggr scheduler method list */
    WMI_AUDIO_AGGR_SCHED_METHOD_HOST_CONTROL = 1,
    WMI_AUDIO_AGGR_SCHED_METHOD_HOST_CONTROL_PER_CYCLE = 2,

    WMI_AUDIO_AGGR_SCHED_METHOD_MAX,
} WMI_AUDIO_AGGR_SCHED_METHOD_TYPE;

typedef enum {
    /* audio aggr RTS-CTS Config */
    WMI_AUDIO_AGGR_RTS_CTS_CONFIG_DISABLED = 0,
    WMI_AUDIO_AGGR_RTS_CTS_CONFIG_PPDU = 1,
    WMI_AUDIO_AGGR_RTS_CTS_CONFIG_CYCLE = 2,

    WMI_AUDIO_AGGR_RTS_CTS_MAX,
} WMI_AUDIO_AGGR_RTS_CTS_CONFIG_TYPE;

typedef struct {
    /* TLV tag and len */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;

    /* selected audio aggr scheduler method
    *  valid methods can be found in WMI_AUDIO_AGGR_SCHED_METHOD_TYPE
    */
    A_UINT32 sched_method;

    /* rts-cts config
    * valid config can be found in WMI_AUDIO_AGGR_RTS_CTS_CONFIG_TYPE
    */
    A_UINT32 rtscts_config;
} wmi_audio_aggr_set_sched_method_cmd_fixed_param;

typedef struct {
    /* TLV tag and len */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;
} wmi_audio_aggr_get_sched_method_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_set_ocl_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** enable/disable OCL, 1 - enable, 0 - disable*/
    A_UINT32 en_dis_chain;
} wmi_set_ocl_cmd_fixed_param;

typedef enum {
    /* HPA Handshake Stages */
    WMI_HPA_SMCK_REQUEST = 0,
    WMI_HPA_SMCK_RESPONSE = 1,
    WMI_HPA_SIGN_REQUEST = 2,
    WMI_HPA_SIGN_RESPONSE = 3,
    WMI_HPA_HANDSHAKE_STAGE_MAX,
} WMI_HPA_STAGE_TYPE;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_hpa_cmd_fixed_param */
    /* stage:
     * HPA Handshake Stage, filled with a WMI_HPA_STAGE_TYPE enum value
     */
    A_UINT32 stage;

    /* the base address and length of data on host memory */
    A_UINT32 base_paddr_low;  /* bits 31:0 */
    A_UINT32 base_paddr_high; /* bits 63:32 */
    A_UINT32 len;             /* units = bytes */
} wmi_hpa_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_hpa_evt_fixed_param */
    /* stage:
     * HPA Handshake Stage, filled with a WMI_HPA_STAGE_TYPE enum value
     */
    A_UINT32 stage;

    A_UINT32 nonce;
} wmi_hpa_evt_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_sync_qtimer */
    A_UINT32 vdev_id;
    A_UINT32 qtimer_l32;
    A_UINT32 qtimer_u32;
} wmi_audio_sync_qtimer_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_audio_sync_trigger */
    A_UINT32 vdev_id;
    /* agg_relation:
     * indicates whether host needs only one pair of Qmaster and Qslave,
     * or Qmaster and Qslave pairs derived for each FTM frame exchange.
     *  0 indicates one pair for each FTM frame exchanged
     *  1 indicates only one pair of Qmaster and Qslave times.
     */
    A_UINT32 agg_relation;
} wmi_audio_sync_trigger_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_mec_aging_timer_config_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /** SOC level Command. pdev_id - WMI_PDEV_ID_SOC is used.
     */
    A_UINT32 pdev_id;
    /* The Threshold for mec aging timer in ms
     */
    A_UINT32 mec_aging_timer_threshold;
} wmi_pdev_mec_aging_timer_config_cmd_fixed_param;

#define WMI_CFR_GROUP_TA_ADDR_VALID_BIT_POS           0
#define WMI_CFR_GROUP_TA_ADDR_MASK_VALID_BIT_POS      1
#define WMI_CFR_GROUP_RA_ADDR_VALID_BIT_POS           2
#define WMI_CFR_GROUP_RA_ADDR_MASK_VALID_BIT_POS      3
#define WMI_CFR_GROUP_BW_VALID_BIT_POS                4
#define WMI_CFR_GROUP_NSS_VALID_BIT_POS               5
#define WMI_CFR_GROUP_MGMT_SUBTYPE_VALID_BIT_POS      6
#define WMI_CFR_GROUP_CTRL_SUBTYPE_VALID_BIT_POS      7
#define WMI_CFR_GROUP_DATA_SUBTYPE_VALID_BIT_POS      8

/* The bits in this mask mapped to WMI_PEER_CFR_CAPTURE_BW enum */
#define WMI_CFR_GROUP_BW_MASK_NUM_BITS                6
#define WMI_CFR_GROUP_BW_BIT_POS                      0

/* The bits in this mask correspond to the values as below
 * bit 0 -> Nss 1
 * bit 1 -> Nss 2
 * ...
 * bit 7 -> Nss 8
 */
#define WMI_CFR_GROUP_NSS_MASK_NUM_BITS               8
#define WMI_CFR_GROUP_NSS_BIT_POS                     16

#define WMI_CFR_GROUP_TA_ADDR_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_TA_ADDR_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_TA_ADDR_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_TA_ADDR_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_TA_ADDR_MASK_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_TA_ADDR_MASK_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_TA_ADDR_MASK_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_TA_ADDR_MASK_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_RA_ADDR_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_RA_ADDR_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_RA_ADDR_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_RA_ADDR_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_RA_ADDR_MASK_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_RA_ADDR_MASK_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_RA_ADDR_MASK_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_RA_ADDR_MASK_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_BW_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_BW_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_BW_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_BW_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_NSS_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_NSS_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_NSS_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_NSS_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_MGMT_SUBTYPE_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_MGMT_SUBTYPE_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_MGMT_SUBTYPE_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_MGMT_SUBTYPE_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_CTRL_SUBTYPE_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_CTRL_SUBTYPE_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_CTRL_SUBTYPE_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_CTRL_SUBTYPE_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_DATA_SUBTYPE_VALID_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_DATA_SUBTYPE_VALID_BIT_POS, 1, value)

#define WMI_CFR_GROUP_DATA_SUBTYPE_VALID_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_DATA_SUBTYPE_VALID_BIT_POS, 1)

#define WMI_CFR_GROUP_BW_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_BW_BIT_POS, WMI_CFR_GROUP_BW_MASK_NUM_BITS, value)

#define WMI_CFR_GROUP_BW_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_BW_BIT_POS, WMI_CFR_GROUP_BW_MASK_NUM_BITS)

#define WMI_CFR_GROUP_NSS_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_GROUP_NSS_BIT_POS, WMI_CFR_GROUP_NSS_MASK_NUM_BITS, value)

#define WMI_CFR_GROUP_NSS_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_GROUP_NSS_BIT_POS, WMI_CFR_GROUP_NSS_MASK_NUM_BITS)

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_cfr_filter_group_config */
    A_UINT32 tlv_header;
    /* Filter group number for which the below filters needs to be applied */
    A_UINT32 filter_group_id;
    /* Indicates which of the below filter's value is valid
     * Bit 0:    Ta_addr is valid if set
     * Bit 1:    Ta_addr_mask is valid if set
     * Bit 2:    Ra_addr is valid if set
     * Bit 3:    Ra_addr_mask is valid if set
     * Bit 4:    Bandwidth is valid if set
     * Bit 5:    NSS is valid if set
     * Bit 6:    Mgmt_subtype is valid if set
     * Bit 7:    Ctrl_subtype is valid if set
     * Bit 8:    Data_subtype is valid if set
     * Bits 31:9 Reserved for future use
     */
    A_UINT32 filter_set_valid_mask;
    /* ta_addr:
     * Packets matching the TA_mac addr will be filtered in by MAC
     * for CFR capture.
     */
    wmi_mac_addr ta_addr;
    /* ta_addr_mask:
     * Packets matching the TA_mac addr Mask will be filtered in by MAC
     * for CFR capture.
     */
    wmi_mac_addr ta_addr_mask;
    /* ra_addr:
     * Packets matching the RA_mac addr will be filtered in by MAC
     * for CFR capture.
     */
    wmi_mac_addr ra_addr;
    /* ra_addr_mask:
     * Packets matching the RA_mac addr Mask will be filtered in by MAC
     * for CFR capture.
     */
    wmi_mac_addr ra_addr_mask;
    /* bw_nss_filter:
     * Indicates which bw and nss packets will be filtered for CFR capture
     * Bits 4:0   CFR capture will be done for packets matching the bandwidths
     *            specified within this bitmask
     * Bits 15:5  Reserved for future
     * Bits 23:16 CFR capture will be done for packets matching the Nss
     *            specified within this bitmask
     * Bits 31:24 Reserved for future
     */
    A_UINT32 bw_nss_filter;
    /* mgmt_subtype_filter:
     * Managments Packets matching the subtype filter categories will be
     * filtered in by MAC for CFR capture.
     * This is a bitmask, in which each bit represents the corresponding
     * mgmt subtype value as per ieee80211_defs.h
     */
    A_UINT32 mgmt_subtype_filter;
    /* ctrl_subtype_filter:
     * Control Packets matching the subtype filter category will be
     * filtered in by MAC for CFR capture.
     * This is a bitmask, in which each bit represents the corresponding
     * ctrl subtype value as per ieee80211_defs.h
     */
    A_UINT32 ctrl_subtype_filter;
    /* data_subtype_filter:
     * Data Packets matching the subtype filter category will be
     * filtered in by MAC for CFR capture.
     * This is a bitmask, in which each bit represents the corresponding
     * data subtype value as per ieee80211_defs.h
     */
    A_UINT32 data_subtype_filter;
} wmi_cfr_filter_group_config;

#define WMI_CFR_DIRECTED_FTM_ACK_EN_BIT_POS           0
#define WMI_CFR_ALL_FTM_ACK_EN_BIT_POS                1
#define WMI_CFR_NDPA_NDP_DIRECTED_EN_BIT_POS          2
#define WMI_CFR_NDPA_NDP_ALL_EN_BIT_POS               3
#define WMI_CFR_TA_RA_TYPE_FILTER_EN_BIT_POS          4
#define WMI_CFR_ALL_PACKET_EN_BIT_POS                 5
#define WMI_CFR_FILTER_IN_AS_FP_TA_RA_TYPE_BIT_POS    6

#define WMI_CFR_CAPTURE_INTERVAL_NUM_BITS             24
#define WMI_CFR_CAPTURE_INTERVAL_BIT_POS              0

#define WMI_CFR_CAPTURE_DURATION_NUM_BITS             24
#define WMI_CFR_CAPTURE_DURATION_BIT_POS              0

#define WMI_CFR_FILTER_GROUP_BITMAP_NUM_BITS          16
#define WMI_CFR_FILTER_GROUP_BITMAP_BIT_POS           0

#define WMI_CFR_UL_MU_USER_UPPER_NUM_BITS             5
#define WMI_CFR_UL_MU_USER_UPPER_BIT_POS              0

#define WMI_CFR_FREEZE_DELAY_CNT_EN_MASK              1
#define WMI_CFR_FREEZE_DELAY_CNT_EN_BIT_POS           0

#define WMI_CFR_FREEZE_DELAY_CNT_THR_NUM_BITS         8
#define WMI_CFR_FREEZE_DELAY_CNT_THR_BIT_POS          1


#define WMI_CFR_CAPTURE_COUNT_NUM_BITS                16
#define WMI_CFR_CAPTURE_COUNT_BIT_POS                 0

#define WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_NUM_BITS    1
#define WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_BIT_POS     16


#define WMI_CFR_DIRECTED_FTM_ACK_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_DIRECTED_FTM_ACK_EN_BIT_POS, 1, value)

#define WMI_CFR_DIRECTED_FTM_ACK_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_DIRECTED_FTM_ACK_EN_BIT_POS, 1)

#define WMI_CFR_ALL_FTM_ACK_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_ALL_FTM_ACK_EN_BIT_POS, 1, value)

#define WMI_CFR_ALL_FTM_ACK_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_ALL_FTM_ACK_EN_BIT_POS, 1)

#define WMI_CFR_NDPA_NDP_DIRECTED_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_NDPA_NDP_DIRECTED_EN_BIT_POS, 1, value)

#define WMI_CFR_NDPA_NDP_DIRECTED_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_NDPA_NDP_DIRECTED_EN_BIT_POS, 1)

#define WMI_CFR_NDPA_NDP_ALL_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_NDPA_NDP_ALL_EN_BIT_POS, 1, value)

#define WWMI_CFR_NDPA_NDP_ALL_EN_GET WMI_CFR_NDPA_NDP_ALL_EN_GET
#define WMI_CFR_NDPA_NDP_ALL_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_NDPA_NDP_ALL_EN_BIT_POS, 1)

#define WMI_CFR_TA_RA_TYPE_FILTER_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_TA_RA_TYPE_FILTER_EN_BIT_POS, 1, value)

#define WMI_CFR_TA_RA_TYPE_FILTER_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_TA_RA_TYPE_FILTER_EN_BIT_POS, 1)

#define WWMI_CFR_ALL_PACKET_EN_SET WMI_CFR_ALL_PACKET_EN_SET
#define WMI_CFR_ALL_PACKET_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_ALL_PACKET_EN_BIT_POS, 1, value)

#define WMI_CFR_ALL_PACKET_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_ALL_PACKET_EN_BIT_POS, 1)

#define WMI_CFR_FILTER_IN_AS_FP_TA_RA_TYPE_SET(param, value)  \
    WMI_SET_BITS(param, WMI_CFR_FILTER_IN_AS_FP_TA_RA_TYPE_BIT_POS, 1, value)

#define WMI_CFR_FILTER_IN_AS_FP_TA_RA_TYPE_GET(param)  \
    WMI_GET_BITS(param, WMI_CFR_FILTER_IN_AS_FP_TA_RA_TYPE_BIT_POS, 1)

#define WMI_CFR_CAPTURE_INTERVAL_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_CAPTURE_INTERVAL_BIT_POS, WMI_CFR_CAPTURE_INTERVAL_NUM_BITS, value)

#define WMI_CFR_CAPTURE_INTERVAL_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_CAPTURE_INTERVAL_BIT_POS, WMI_CFR_CAPTURE_INTERVAL_NUM_BITS)

#define WMI_CFR_CAPTURE_DURATION_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_CAPTURE_DURATION_BIT_POS, WMI_CFR_CAPTURE_DURATION_NUM_BITS, value)

#define WMI_CFR_CAPTURE_DURATION_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_CAPTURE_DURATION_BIT_POS, WMI_CFR_CAPTURE_DURATION_NUM_BITS)

#define WMI_CFR_FILTER_GROUP_BITMAP_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_FILTER_GROUP_BITMAP_BIT_POS, WMI_CFR_FILTER_GROUP_BITMAP_NUM_BITS, value)

#define WMI_CFR_FILTER_GROUP_BITMAP_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_FILTER_GROUP_BITMAP_BIT_POS, WMI_CFR_FILTER_GROUP_BITMAP_NUM_BITS)

#define WMI_CFR_UL_MU_USER_UPPER_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_UL_MU_USER_UPPER_BIT_POS, WMI_CFR_UL_MU_USER_UPPER_NUM_BITS, value)

#define WMI_CFR_UL_MU_USER_UPPER_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_UL_MU_USER_UPPER_BIT_POS, WMI_CFR_UL_MU_USER_UPPER_NUM_BITS)

#define WMI_CFR_FREEZE_DELAY_CNT_EN_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_FREEZE_DELAY_CNT_EN_BIT_POS, WMI_CFR_FREEZE_DELAY_CNT_EN_MASK, value)

#define WMI_CFR_FREEZE_DELAY_CNT_EN_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_FREEZE_DELAY_CNT_EN_BIT_POS, WMI_CFR_FREEZE_DELAY_CNT_EN_MASK)

#define WMI_CFR_FREEZE_DELAY_CNT_THR_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_FREEZE_DELAY_CNT_THR_BIT_POS, WMI_CFR_FREEZE_DELAY_CNT_THR_NUM_BITS, value)

#define WMI_CFR_FREEZE_DELAY_CNT_THR_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_FREEZE_DELAY_CNT_THR_BIT_POS, WMI_CFR_FREEZE_DELAY_CNT_THR_NUM_BITS)

#define WMI_CFR_CAPTURE_COUNT_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_CAPTURE_COUNT_BIT_POS, WMI_CFR_CAPTURE_COUNT_NUM_BITS, value)

#define WMI_CFR_CAPTURE_COUNT_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_CAPTURE_COUNT_BIT_POS, WMI_CFR_CAPTURE_COUNT_NUM_BITS)

#define WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_SET(param, value) \
    WMI_SET_BITS(param, WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_BIT_POS, WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_NUM_BITS, value)

#define WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_GET(param)     \
    WMI_GET_BITS(param, WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_BIT_POS, WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_NUM_BITS)

typedef struct {
   /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_peer_cfr_capture_filter_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* filter_type:
     * Indicates the type of filter to be enabled
     * Bit 0:    Filter Directed FTM ACK frames for CFR capture
     * Bit 1:    Filter All FTM ACK frames for CFR capture
     * Bit 2:    Filter NDPA NDP Directed Frames for CFR capture
     * Bit 3:    Filter NDPA NDP All Frames for CFR capture
     * Bit 4:    Filter Frames based on TA/RA/Subtype as provided
     *           in CFR Group config
     * Bit 5:    Filter in All packets for CFR Capture
     * Bit 6:    Filter in TA/RA frames as FP if this bit is set else as MO
     * Bits 31:7 Reserved for future use
     */
    A_UINT32 filter_type;
    /* capture_interval:
     * Capture interval field which is time in between consecutive
     * CFR capture, in microsecond units
     * Bits 23:0  Capture interval
     * Bits 31:24 Reserved for future use
     */
    A_UINT32 capture_interval;
    /* capture_duration:
     * Capture Duration field for which CFR capture has to happen,
     * in microsecond units
     * Bits 23:0  Capture Duration
     * Bits 31:24 Reserved for future use
     */
    A_UINT32 capture_duration;
    /* Bitfields set indicates which of the CFR group config is enabled
     * Bits 15:0  Filter Group enable Bits
     * Bits 31:16 Reserved for future use
     * If Bit 0 is set, then CFR filter group 0 alone is enabled and so on
     */
    A_UINT32 filter_group_bitmap;
    /* ul_mu_user_mask_lower:
     * Bitfields indicates which of the users in the current UL MU
     * transmission are enabled for CFR capture.
     * Bits 31 to 0 indicates user indexes for 32 users in a UL MU transmission.
     * If bit 0 is set, then the CFR capture will happen for user index 0
     * in the current UL MU Transmission.
     * If bits 0,2 are set, then CFR capture for UL MU TX corresponds to
     * user indices 0 and 2.
     */
    A_UINT32 ul_mu_user_mask_lower;
    /* ul_mu_user_mask_upper:
     * This is continuation of the above lower mask.
     * Bits 4:0  Bitfields indicates user indices from 33 to 37 users.
     * Bits 31:5 Reserved for future use
     * If bit 0 is set, then CFR capture is enabled for user index 33
     * in a UL MU transmission.
     */
    A_UINT32 ul_mu_user_mask_upper;
    /* freeze_tlv_delay_cnt
     * Indicates the number of consecutive Rx packets to be skipped
     * before CFR capture is enabled again.
     * Bits 8:0   Freeze Delay Count value
     * Bits 31:9  Reserved for future use
     */
    A_UINT32 freeze_tlv_delay_cnt;

    /* capture_count:
     * Indicates the number of consecutive packets for which CFR capture
     * is to be enabled.
     * Interpretation of capture_interval_mode_select (bit 16):
     *     Value 0: capture_interval + capture_duration fields are used
     *              to capture CFR for capture_duration after every
     *              capture_interval.
     *     Value 1: capture_interval + capture_count fields are used to
     *              capture CFR for capture_count+1 number of packets
     *              after every capture interval
     * Bit 15:0   : capture_count
     *              Refer to WMI_CFR_CAPTURE_COUNT_GET/SET macros.
     * Bit 16     : capture_interval_mode_select
     *              Refer to WMI_CFR_CAPTURE_INTERVAL_MODE_SEL_GET/SET macros.
     * Bits 31:17 : Reserved
     */
    A_UINT32 capture_count;

/*
 * A variable-length TLV array of wmi_cfr_filter_group_config will
 * follow this fixed_param TLV
 * wmi_cfr_filter_group_config filter_group_config[];
 */
} wmi_cfr_capture_filter_cmd_fixed_param;

enum wmi_oem_data_evt_cause {
    WMI_OEM_DATA_EVT_CAUSE_UNSPECIFIED = 0,
    WMI_OEM_DATA_EVT_CAUSE_CMD_REQ = 1,
    WMI_OEM_DATA_EVT_CAUSE_ASYNC = 2,
};

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_oem_data_event_fixed_param */
    A_UINT32 data_len; /** length in byte of data[]. */
    /* Event Cause reason from enum wmi_oem_data_evt_cause */
    A_UINT32 event_cause;
/* Following this structure is the TLV:
 *      A_UINT8 data[]; <-- length in byte given by field data_len.
 * This data array contains OEM data, the payload begins with a field to tell the HOST regarding the kind of the OEM data.
 *      A_UINT8 file_name[]; <-- Name of the file to which HOST needs to write this OEM specific data.
 */
} wmi_oem_data_event_fixed_param;

#define WMI_VLAN_TX_BIT_POS                             0
#define WMI_VLAN_RX_BIT_POS                             1
#define WMI_TX_INSERT_OR_STRIP_BIT_POS                  2
#define WMI_TX_STRIP_INSERT_VLAN_INNER_BIT_POS          3
#define WMI_TX_STRIP_INSERT_VLAN_OUTER_BIT_POS          4
#define WMI_RX_STRIP_VLAN_C_TAG_BIT_POS                 5
#define WMI_RX_STRIP_VLAN_S_TAG_BIT_POS                 6
#define WMI_RX_INSERT_VLAN_C_TAG_BIT_POS                7
#define WMI_RX_INSERT_VLAN_S_TAG_BIT_POS                8

#define WMI_TX_INSERT_VLAN_INNER_TCI_NUM_BITS           16
#define WMI_TX_INSERT_VLAN_INNER_TCI_BIT_POS            0

#define WMI_TX_INSERT_VLAN_OUTER_TCI_NUM_BITS           16
#define WMI_TX_INSERT_VLAN_OUTER_TCI_BIT_POS            16


#define WMI_VLAN_TX_SET(param, value) \
    WMI_SET_BITS(param, WMI_VLAN_TX_BIT_POS, 1, value)

#define WMI_VLAN_TX_GET(param)     \
    WMI_GET_BITS(param, WMI_VLAN_TX_BIT_POS, 1)

#define WMI_VLAN_RX_SET(param, value) \
    WMI_SET_BITS(param, WMI_VLAN_RX_BIT_POS, 1, value)

#define WMI_VLAN_RX_GET(param)     \
    WMI_GET_BITS(param, WMI_VLAN_RX_BIT_POS, 1)

#define WMI_TX_INSERT_OR_STRIP_SET(param, value) \
    WMI_SET_BITS(param, WMI_TX_INSERT_OR_STRIP_BIT_POS, 1, value)

#define WMI_TX_INSERT_OR_STRIP_GET(param)     \
    WMI_GET_BITS(param, WMI_TX_INSERT_OR_STRIP_BIT_POS, 1)

#define WMI_TX_STRIP_INSERT_VLAN_INNER_SET(param, value) \
    WMI_SET_BITS(param, WMI_TX_STRIP_INSERT_VLAN_INNER_BIT_POS, 1, value)

#define WMI_TX_STRIP_INSERT_VLAN_INNER_GET(param)     \
    WMI_GET_BITS(param, WMI_TX_STRIP_INSERT_VLAN_INNER_BIT_POS, 1)

#define WMI_TX_STRIP_INSERT_VLAN_OUTER_SET(param, value) \
    WMI_SET_BITS(param, WMI_TX_STRIP_INSERT_VLAN_OUTER_BIT_POS, 1, value)

#define WMI_TX_STRIP_INSERT_VLAN_OUTER_GET(param)     \
    WMI_GET_BITS(param, WMI_TX_STRIP_INSERT_VLAN_OUTER_BIT_POS, 1)

#define WMI_RX_STRIP_VLAN_C_TAG_SET(param, value) \
    WMI_SET_BITS(param, WMI_RX_STRIP_VLAN_C_TAG_BIT_POS, 1, value)

#define WMI_RX_STRIP_VLAN_C_TAG_GET(param)     \
    WMI_GET_BITS(param, WMI_RX_STRIP_VLAN_C_TAG_BIT_POS, 1)

#define WMI_RX_STRIP_VLAN_S_TAG_SET(param, value) \
    WMI_SET_BITS(param, WMI_RX_STRIP_VLAN_S_TAG_BIT_POS, 1, value)

#define WMI_RX_STRIP_VLAN_S_TAG_GET(param)     \
    WMI_GET_BITS(param, WMI_RX_STRIP_VLAN_S_TAG_BIT_POS, 1)

#define WMI_RX_INSERT_VLAN_C_TAG_SET(param, value) \
    WMI_SET_BITS(param, WMI_RX_INSERT_VLAN_C_TAG_BIT_POS, 1, value)

#define WMI_RX_INSERT_VLAN_C_TAG_GET(param)     \
    WMI_GET_BITS(param, WMI_RX_INSERT_VLAN_C_TAG_BIT_POS, 1)

#define WMI_RX_INSERT_VLAN_S_TAG_SET(param, value) \
    WMI_SET_BITS(param, WMI_RX_INSERT_VLAN_S_TAG_BIT_POS, 1, value)

#define WMI_RX_INSERT_VLAN_S_TAG_GET(param)     \
    WMI_GET_BITS(param, WMI_RX_INSERT_VLAN_S_TAG_BIT_POS, 1)

#define WMI_TX_INSERT_VLAN_INNER_TCI_SET(param, value) \
    WMI_SET_BITS(param, WMI_TX_INSERT_VLAN_INNER_TCI_BIT_POS, WMI_TX_INSERT_VLAN_INNER_TCI_NUM_BITS, value)

#define WMI_TX_INSERT_VLAN_INNER_TCI_GET(param)     \
    WMI_GET_BITS(param, WMI_TX_INSERT_VLAN_INNER_TCI_BIT_POS, WMI_TX_INSERT_VLAN_INNER_TCI_NUM_BITS)

#define WMI_TX_INSERT_VLAN_OUTER_TCI_SET(param, value) \
    WMI_SET_BITS(param, WMI_TX_INSERT_VLAN_OUTER_TCI_BIT_POS, WMI_TX_INSERT_VLAN_OUTER_TCI_NUM_BITS, value)

#define WMI_TX_INSERT_VLAN_OUTER_TCI_GET(param)     \
    WMI_GET_BITS(param, WMI_TX_INSERT_VLAN_OUTER_TCI_BIT_POS, WMI_TX_INSERT_VLAN_OUTER_TCI_NUM_BITS)

typedef struct {
   /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_peer_config_vlan_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* peer_vlan_config_mask:
     * Field indicates VLAN settings that need to set in RX and TX peer
     * Bit 0:    Indicates if the settings are present for TX peer
     *           [1 - present for TX peer]
     * Bit 1:    Indicates if the settings are present for RX peer
     *           [1 - present for RX peer]
     * Bit 2:    Setting the insert_or_strip bit in TX peer
     *           [0 - Strip, 1 - Insert]
     * Bit 3:    Setting the strip_insert_vlan_inner bit in TX peer
     *           [0 - Strip, 1 - Insert]
     * Bit 4:    Setting the strip_insert_vlan_outer bit in TX peer
     *           [0 - Strip, 1 - Insert]
     * Bit 5:    Setting the strip_vlan_c_tag_decap bit in RX peer [1 - Strip]
     * Bit 6:    Setting the strip_vlan_s_tag_decap bit in RX peer [1 - Strip]
     * Bit 7:    Setting the rx_insert_vlan_c_tag_padding bit in RX peer
     *           [1 - Insert]
     * Bit 8:    Setting the rx_insert_vlan_s_tag_padding bit in RX peer
     *           [1 - Insert]
     */
    A_UINT32 peer_vlan_config_mask;

    /* insert_vlan_tci:
     * Field indicates the word that needs to be inserted in the
     * inner or outer tag, if insertion is enabled by the
     * TX peer strip_insert_vlan_{inner,outer} fields along with
     * insert_or_strip field
     * Bits 0:15  insert_vlan_inner_tci
     * Bits 16:31 insert_vlan_outer_tci
     */
    A_UINT32 insert_vlan_tci;
    /* VDEV identifier */
    A_UINT32 vdev_id;
} wmi_peer_config_vlan_cmd_fixed_param;

typedef struct {
  /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_peer_config_ppe_ds_cmd_fixed_param */
    A_UINT32 tlv_header;

    wmi_mac_addr peer_macaddr;
    A_UINT32 ppe_routing_enable; /* enum WMI_PPE_ROUTING_TYPE */

    /* The processing stages in PPE that this packet buffer need to go through
     * and on to which PPE queues these buffers should be mapped to.
     * Refer pkg/ppe/src/ppe_sc.h for service code types
     */
    A_UINT32 service_code;

    A_UINT32 priority_valid;

    /* Unique number that represents a VAP's vdev_id in PPE domain */
    A_UINT32 src_info;

    /* VDEV identifier */
    A_UINT32 vdev_id;
} wmi_peer_config_ppe_ds_cmd_fixed_param;

typedef enum {
    WMI_PPE_ROUTING_DISABLED = 0,
    WMI_AST_USE_PPE_ENABLED  = 1,
    WMI_AST_USE_PPE_DISABLED = 2,
    WMI_PPE_ROUTING_TYPE_MAX,
} WMI_PPE_ROUTING_TYPE;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_pdev_multiple_vdev_restart_resp_event_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 pdev_id; /* ID of the pdev this response belongs to */
    A_UINT32 requestor_id;
    /** Return status. As per WMI_VDEV_START_RESPONSE_XXXXX */
    A_UINT32 status;

    /* The TLVs follows this structure:
     * A_UINT32 vdev_ids_bitmap[]; <--- Array of VDEV id bitmap.
     */
} wmi_pdev_multiple_vdev_restart_resp_event_fixed_param;

/** WMI event for Firmware to report soundbar audio frame statistics to Host **/
typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;
    A_UINT32 vdev_id; /* ID of the vdev this response belongs to */
    /** identify which request this responds to **/
    A_UINT32 response_id;
    /* audio frame statistics part -
     * Use subsequent TLV arrays to list group_stats and peer_stats.
     */

/*
 * The TLVs listing group_stats, will follow this TLV.
 * The number of group_stats can be calculated by dividing the
 * TLV array length by the TLV array element length.
 *
 * The fixed_param TLV is directly followed by a list of
 * wmi_audio_aggr_group_stats elements:
 *     wmi_audio_aggr_group_stats group_stats[0];
 *     wmi_audio_aggr_group_stats group_stats[1];
 *     ...
 *     wmi_audio_aggr_group_stats group_stats[N];
 *
 * After the list of wmi_audio_aggr_group_stats is a list of peer_stats.
 *     wmi_audio_aggr_peer_stats peer_stats[0];
 *     wmi_audio_aggr_peer_stats peer_stats[1];
 *     ...
 *     wmi_audio_aggr_peer_stats peer_stats[N];
 *
 */
} wmi_audio_aggr_statistics_event_fixed_param;

typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;
    /* Group mac_address */
    wmi_mac_addr group_addr;
    /* Group identity */
    A_UINT32 group_id;
    /* Multicast MSDU Data Packets received from Host for this Group */
    A_UINT32 mcast_tx;
    /*
     * Multicast MSDU Data Packets sent to OTA.
     * Customer defined SW Retry Packets not included, as these
     * SW Retry packets generated in FW locally, but not from Host.
     */
    A_UINT32 mcast_tx_ok;
    /*
     * Multicast MSDU Data Packets sent to OTA.
     * Only include Customer defined SW Retry Packets.
     */
    A_UINT32 mcast_tx_ok_retry;
    /*
     * Multicast MSDU Data Packets not sent to OTA,
     * discarded by tbd function due to timeout.
     * Customer defined SW Retry Packets not included.
     */
    A_UINT32 mcast_tx_tbd_lost;
    /*
     * Multicast MSDU Data Packets not sent to OTA,
     * discarded by tbd function due to timeout.
     * Only include Customer defined SW Retry Packets.
     */
    A_UINT32 mcast_tx_tbd_lost_retry;
} wmi_audio_aggr_group_stats;

typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;
    /* STA mac_address */
    wmi_mac_addr peer_addr;
    /* Unicast MSDU Data Packets received from peer STA */
    A_UINT32 ucast_rx;
    /* Unicast MSDU Data Packets received from Host for Peer STA */
    A_UINT32 ucast_tx;
    /*
     * Unicast MSDU Data Packets received from Host,
     * and SW retry times for these packets.
     */
    A_UINT32 ucast_tx_retry;
    /*
     * Unicast MSDU Data Packets received from Host,
     * and sent to Peer STA successfully.
     */
    A_UINT32 ucast_tx_ok;
    /*
     * Unicast MSDU Data Packets received from Host,
     * but sent to Peer STA fail. not OTA, or no ACK from Peer.
     */
    A_UINT32 ucast_tx_lost;
    /*
     * Periodic NULL Data frames for multicast tx rate auto control.
     * Generated by FW locally, and sent to Peer STA successfully.
     */
    A_UINT32 null_frame_tx;
    /*
     * Periodic NULL Data frames for multicast tx rate auto control.
     * Generated by FW locally, but sent to Peer STA fail.
     */
    A_UINT32 null_frame_tx_lost;
} wmi_audio_aggr_peer_stats;

typedef struct {
    /** TLV tag and len **/
    A_UINT32 tlv_header;

    /* ID of the vdev this response belongs to */
    A_UINT32 vdev_id;

    /* selected audio aggr scheduler method
    *  valid methods can be found in WMI_AUDIO_AGGR_SCHED_METHOD_TYPE
    */
    A_UINT32 sched_method;

    /* rts-cts config
    * valid config can be found in WMI_AUDIO_AGGR_RTS_CTS_CONFIG_TYPE
    */
    A_UINT32 rtscts_config;
} wmi_audio_aggr_sched_method_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    *WMITLV_TAG_STRUC_wmi_pdev_srg_bss_color_bitmap_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* 64 bit bss color bitmap used by SRG based spatial reuse feature
     * bitmap[0] contains lower 32 bits and bitmap[1] contains
     * upper 32 bits.
     */
    A_UINT32 srg_bss_color_bitmap[2];
} wmi_pdev_srg_bss_color_bitmap_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    *WMITLV_TAG_STRUC_wmi_pdev_srg_partial_bssid_bitmap_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* 64 bit partial bssid bitmap used by SRG based spatial reuse feature
     * bitmap[0] contains lower 32 bits and bitmap[1] contains
     * upper 32 bits.
     */
    A_UINT32 srg_partial_bssid_bitmap[2];
} wmi_pdev_srg_partial_bssid_bitmap_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_srg_obss_color_enable_bitmap_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* 64 bit SRG obss color enable bitmap used by SRG based spatial reuse feature
     * bitmap[0] contains lower 32 bits and bitmap[1] contains
     * upper 32 bits.
     */
    A_UINT32 srg_obss_en_color_bitmap[2];
} wmi_pdev_srg_obss_color_enable_bitmap_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_srg_obss_bssid_enable_bitmap_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* 64 bit obss bssid enable bitmap used by SRG based spatial reuse feature
     * bitmap[0] contains lower 32 bits and bitmap[1] contains
     * upper 32 bits.
     */
    A_UINT32 srg_obss_en_bssid_bitmap[2];
} wmi_pdev_srg_obss_bssid_enable_bitmap_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_non_srg_obss_color_enable_bitmap_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* 64 bit Non_SRG obss color enable bitmap used by Non_SRG based spatial reuse feature
     * bitmap[0] contains lower 32 bits and bitmap[1] contains
     * upper 32 bits.
     */
    A_UINT32 non_srg_obss_en_color_bitmap[2];
} wmi_pdev_non_srg_obss_color_enable_bitmap_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_non_srg_obss_bssid_enable_bitmap_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* 64 bit obss bssid enable bitmap used by Non_SRG based spatial reuse feature
     * bitmap[0] contains lower 32 bits and bitmap[1] contains
     * upper 32 bits.
     */
    A_UINT32 non_srg_obss_en_bssid_bitmap[2];
} wmi_pdev_non_srg_obss_bssid_enable_bitmap_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_pdev_enable_duration_based_tx_mode_selection_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0
     */
    A_UINT32 pdev_id;
    /* enable/disable Duration based Tx Mode selection */
    A_UINT32 duration_based_tx_mode_selection;
} wmi_pdev_enable_duration_based_tx_mode_selection_cmd_fixed_param;

typedef enum {
    /* Simulation test command types */
    WMI_SIM_TEST_FRAME_CONTENT_CHANGE_CMD,
    WMI_SIM_TEST_DROP_FRAME_CMD,
    WMI_SIM_TEST_DELAY_FRAME_CMD,
    WMI_SIM_TEST_CONFIGURATION_CMD,

    WMI_SIM_TEST_CMD_UNKNOWN = 255,
} WMI_SIMULATION_TEST_CMD_TYPE;

typedef enum {
    /* Simulation test sub-command types */
    WMI_SIM_TEST_SUB_CMD_UNKNOWN = 255,
} WMI_SIMULATION_TEST_SUB_CMD_TYPE;

#define WMI_SIM_FRAME_TYPE_BIT_POS      0
#define WMI_SIM_FRAME_SUBTYPE_BIT_POS   8
#define WMI_SIM_FRAME_SEQ_BIT_POS       16
#define WMI_SIM_FRAME_OFFSET_BIT_POS    0
#define WMI_SIM_FRAME_LENGTH_BIT_POS    16

#define WMI_SIM_FRAME_TYPE_SET(param, value) \
    WMI_SET_BITS(param, WMI_SIM_FRAME_TYPE_BIT_POS, 8, value)
#define WMI_SIM_FRAME_TYPE_GET(param)     \
    WMI_GET_BITS(param, WMI_SIM_FRAME_TYPE_BIT_POS, 8)

#define WMI_SIM_FRAME_SUBTYPE_SET(param, value) \
    WMI_SET_BITS(param, WMI_SIM_FRAME_SUBTYPE_BIT_POS, 8, value)
#define WMI_SIM_FRAME_SUBTYPE_GET(param)     \
    WMI_GET_BITS(param, WMI_SIM_FRAME_SUBTYPE_BIT_POS, 8)

#define WMI_SIM_FRAME_SEQ_SET(param, value) \
    WMI_SET_BITS(param, WMI_SIM_FRAME_SEQ_BIT_POS, 8, value)
#define WMI_SIM_FRAME_SEQ_GET(param)     \
    WMI_GET_BITS(param, WMI_SIM_FRAME_SEQ_BIT_POS, 8)

#define WMI_SIM_FRAME_OFFSET_SET(param, value) \
    WMI_SET_BITS(param, WMI_SIM_FRAME_OFFSET_BIT_POS, 16, value)
#define WMI_SIM_FRAME_OFFSET_GET(param)     \
    WMI_GET_BITS(param, WMI_SIM_FRAME_OFFSET_BIT_POS, 16)

#define WMI_SIM_FRAME_LENGTH_SET(param, value) \
    WMI_SET_BITS(param, WMI_SIM_FRAME_LENGTH_BIT_POS, 16, value)
#define WMI_SIM_FRAME_LENGTH_GET(param)     \
    WMI_GET_BITS(param, WMI_SIM_FRAME_LENGTH_BIT_POS, 16)

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_simulation_test_cmd_fixed_param  */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC.
     * See macros starting with WMI_PDEV_ID_ for values.
     * In non-DBDC case host should set it to 0.
     */
    A_UINT32 pdev_id;
    /** vdev_id for identifying the vap simulation command needs to be applied.
     * This is for future purpose, currently only 1 vap is supported for
     * simulation test mode.
     * Host will always set it to 0 for now.
     */
    A_UINT32 vdev_id;
    /** peer MAC address for identifying the peer for which the simulation
     * command needs to be applied.
     * peer_macaddr needs to be set to '0' for simulation commands which
     * needs to be applied at pdev or vdev level.
     */
    wmi_mac_addr peer_macaddr;
    /** test command type, as per WMI_SIMULATION_TEST_CMD_TYPE */
    A_UINT32 test_cmd_type;
    /** test command type, as per WMI_SIMULATION_TEST_SUB_CMD_TYPE */
    A_UINT32 test_subcmd_type;
    /**
     * The frame type, frame subtype, and frame sequence number
     * are stored as bitfields within the below A_UINT32 "word".
     * Use the WMI_SIM_xxx_GET/SET macros to read and
     * write these bitfields.
     **/
    A_UINT32 frame_type_subtype_seq;
    /**
     * The frame offset and frame length,
     * are stored as bitfields within the below A_UINT32 "word".
     * Use the WMI_SIM_xxx_GET/SET macros to read and
     * write these bitfields.
     **/
    A_UINT32 frame_offset_length;
    /** buf_len: Buffer length in bytes
     * In some cases buf_len == frame_length, but not always.
     * For example, a DELAY_FRAME command will not involve any frame
     * contents, so frame_length will be zero, but buf_len will be
     * non-zero because it will contain command-specific parameters.
     */
    A_UINT32 buf_len;
/* This TLV is followed by array of bytes:
 *   A_UINT8 bufp[];
 *       For FRAME_CONTENT_CHANGE commands, bufp contains the first 64 bytes
 *       of the frame.
 */
} wmi_simulation_test_cmd_fixed_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wfa_config_rsnxe */
    A_UINT32 tlv_header;
    /* rsnxe_param
     * Override RSNXE Used bit in FT reassoc request.
     *   Possible values from host are:
     *   0  use default value based on capability
     *   1  override with 1
     *   2  override with 0
     */
    A_UINT32 rsnxe_param;
} wmi_wfa_config_rsnxe;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wfa_config_csa */
    A_UINT32 tlv_header;
    /* ignore_csa
     * Ignore CSA from AP and keep STA in current channel and don't deauth AP.
     *   Possible values from host are:
     *   0  default behavior
     *   1  ignore CSA
     */
    A_UINT32 ignore_csa;
} wmi_wfa_config_csa;

typedef enum {
    WMI_WFA_CONFIG_OCV_FRMTYPE_SAQUERY_REQ          = 0x00000001,
    WMI_WFA_CONFIG_OCV_FRMTYPE_SAQUERY_RSP          = 0x00000002,
    WMI_WFA_CONFIG_OCV_FRMTYPE_FT_REASSOC_REQ       = 0x00000004,
    WMI_WFA_CONFIG_OCV_FRMTYPE_FILS_REASSOC_REQ     = 0x00000008,
} WMI_WFA_CONFIG_OCV_FRMTYPE;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wfa_config_ocv */
    A_UINT32 tlv_header;
    /* frame_types
     * Override OCI channel number in specified frames.
     * Possible frame types from host are enum WMI_WFA_CONFIG_OCV_FRMTYPE.
     */
    A_UINT32 frame_types;
    /* Frequency value in mhz to override in specified frame type */
    A_UINT32 chan_freq;
} wmi_wfa_config_ocv;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wfa_config_saquery */
    A_UINT32 tlv_header;
    /* remain_connect_on_saquery_timeout
     * Don't send deauth on SA Query response timeout.
     *   Possible values from host are:
     *   0  default behavior
     *   1  don't send deauth on SA Query response timeout
     */
    A_UINT32 remain_connect_on_saquery_timeout;
} wmi_wfa_config_saquery;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wfa_config_ofdma */
    A_UINT32 tlv_header;
    /* force_he_trigger_to_eht_sta
     *   Possible values from host are:
     *   0  default behavior
     *   1  instead of sending EHT triggers to EHT stations, send HE triggers
     */
    A_UINT32 force_he_trigger_to_eht_sta;
} wmi_wfa_config_ofdma;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_wfa_config_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** VDEV identifier */
    A_UINT32 vdev_id;
    /* The below TLV arrays follow this structure:
     * wmi_wfa_config_rsnxe   wfa_config_rsnxe[];   (0 or 1 elements)
     * wmi_wfa_config_csa     wfa_config_csa[];     (0 or 1 elements)
     * wmi_wfa_config_ocv     wfa_config_ocv[];     (0 or 1 elements)
     * wmi_wfa_config_saquery wfa_config_saquery[]; (0 or 1 elements)
     * wmi_wfa_config_ofdma   wfa_config_ofdma[];   (0 or 1 elements)
     */
} wmi_wfa_config_cmd_fixed_param;

#define WMI_TWT_SESSION_FLAG_FLOW_ID_GET(_var) WMI_GET_BITS(_var, 0, 16)
#define WMI_TWT_SESSION_FLAG_FLOW_ID_SET(_var, _val) WMI_SET_BITS(_var, 0, 16, _val)

#define WMI_TWT_SESSION_FLAG_BCAST_TWT_GET(_var) WMI_GET_BITS(_var, 16, 1)
#define WMI_TWT_SESSION_FLAG_BCAST_TWT_SET(_var, _val) WMI_SET_BITS(_var, 16, 1, _val)

#define WMI_TWT_SESSION_FLAG_TRIGGER_TWT_GET(_var) WMI_GET_BITS(_var, 17, 1)
#define WMI_TWT_SESSION_FLAG_TRIGGER_TWT_SET(_var, _val) WMI_SET_BITS(_var, 17, 1, _val)

#define WMI_TWT_SESSION_FLAG_ANNOUN_TWT_GET(_var) WMI_GET_BITS(_var, 18, 1)
#define WMI_TWT_SESSION_FLAG_ANNOUN_TWT_SET(_var, _val) WMI_SET_BITS(_var, 18, 1, _val)

#define WMI_TWT_SESSION_FLAG_TWT_PROTECTION_GET(_var) WMI_GET_BITS(_var, 19, 1)
#define WMI_TWT_SESSION_FLAG_TWT_PROTECTION_SET(_var, _val) WMI_SET_BITS(_var, 19, 1, _val)

#define WMI_TWT_SESSION_FLAG_TWT_INFO_FRAME_DISABLED_GET(_var) WMI_GET_BITS(_var, 20, 1)
#define WMI_TWT_SESSION_FLAG_TWT_INFO_FRAME_DISABLED_SET(_var, _val) WMI_SET_BITS(_var, 20, 1, _val)

#define WMI_TWT_SESSION_FLAG_TWT_PM_RESPONDER_MODE_VALID_GET(_var) WMI_GET_BITS(_var, 21, 1)
#define WMI_TWT_SESSION_FLAG_TWT_PM_RESPONDER_MODE_VALID_SET(_var, _val) WMI_SET_BITS(_var, 21, 1, _val)

#define WMI_TWT_SESSION_FLAG_TWT_PM_RESPONDER_MODE_GET(_var) WMI_GET_BITS(_var, 22, 1)
#define WMI_TWT_SESSION_FLAG_TWT_PM_RESPONDER_MODE_SET(_var, _val) WMI_SET_BITS(_var, 22, 1, _val)

#define WMI_TWT_SESSION_FLAG_RESTRICTED_TWT_GET(_var) WMI_GET_BITS(_var, 23, 1)
#define WMI_TWT_SESSION_FLAG_RESTRICTED_TWT_SET(_var, _val) WMI_SET_BITS(_var, 23, 1, _val)

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_twt_session_stats_info */
    A_UINT32 tlv_hdr;

    A_UINT32     vdev_id;
    wmi_mac_addr peer_mac;
    A_UINT32 event_type; /* event type - defined in enum wmi_twt_session_stats_type */
    /*
     * Flags to provide information on TWT session and session types.
     * This field is filled with the bitwise combination of the flag values
     * defined by WMI_TWT_SESSION_FLAG_xxx
     */
    A_UINT32     flow_id_flags;
    A_UINT32     dialog_id;
    A_UINT32     wake_dura_us;
    A_UINT32     wake_intvl_us;
    /* this long time after TWT resumed the 1st Service Period will start */
    A_UINT32     sp_offset_us;
    /* service period start TSF */
    A_UINT32     sp_tsf_us_lo; /* bits 31:0 */
    A_UINT32     sp_tsf_us_hi; /* bits 63:32 */
} wmi_twt_session_stats_info;

enum wmi_twt_session_stats_type {
    WMI_TWT_SESSION_SETUP     = 1,
    WMI_TWT_SESSION_TEARDOWN  = 2,
    WMI_TWT_SESSION_UPDATE    = 3,
};

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_pdev_twt_session_stats_event_fixed_param */
    A_UINT32 tlv_header;

    A_UINT32 pdev_id; /* ID of the pdev this response belongs to */

    /* The TLVs follows this structure:
     * wmi_twt_session_stats_info twt_sessions[]; <--- Array of twt_session.
     */
} wmi_pdev_twt_session_stats_event_fixed_param;

typedef struct wmi_pdev_vendor_event
{
    /* type is WMITLV_TAG_STRUC_wmi_vendor_pdev_event_fixed_param */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /* Any vendor specialization cases will need to add sub_type enum defs. */
    A_UINT32 sub_type;
    wmi_pdev_vendor_event_val evt;
    /* NOTE:
     * Future changes may increase the size of pdev_vendor_event.
     * Consequently, no fields can be added here after pdev_vendor_event,
     * because their offsets within wmi_pdev_vendor_event_fixed_param
     * would change, causing backwards incompatibilities.
     */
} wmi_pdev_vendor_event_fixed_param;
typedef wmi_pdev_vendor_event_fixed_param wmi_vendor_pdev_event_fixed_param;

typedef struct wmi_vdev_vendor_event
{
    /* type is WMITLV_TAG_STRUC_wmi_vendor_vdev_event_fixed_param */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* Any vendor specialization cases will need to add sub_type enum defs. */
    A_UINT32 sub_type;
    wmi_vdev_vendor_event_val evt;
    /* NOTE:
     * Future changes may increase the size of vdev_vendor_event.
     * Consequently, no fields can be added here after vdev_vendor_event,
     * because their offsets within wmi_vdev_vendor_event_fixed_param
     * would change, causing backwards incompatibilities.
     */
} wmi_vdev_vendor_event_fixed_param;
typedef wmi_vdev_vendor_event_fixed_param wmi_vendor_vdev_event_fixed_param;

typedef struct wmi_peer_vendor_event
{
    /* type is WMITLV_TAG_STRUC_wmi_vendor_peer_event_fixed_param */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* Any vendor specialization cases will need to add sub_type enum defs. */
    A_UINT32 sub_type;
    wmi_peer_vendor_event_val evt;
    /* NOTE:
     * Future changes may increase the size of peer_vendor_event.
     * Consequently, no fields can be added here after peer_vendor_event,
     * because their offsets within wmi_peer_vendor_event_fixed_param
     * would change, causing backwards incompatibilities.
     */
} wmi_peer_vendor_event_fixed_param;
typedef wmi_peer_vendor_event_fixed_param wmi_vendor_peer_event_fixed_param;

typedef struct wmi_pdev_vendor_cmd
{
    /* type is WMITLV_TAG_STRUC_wmi_vendor_pdev_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /* Any vendor specialization cases will need to add sub_type enum defs. */
    A_UINT32 sub_type;
    wmi_pdev_vendor_cmd_val cmd;
    /* NOTE:
     * Future changes may increase the size of pdev_vendor_cmd.
     * Consequently, no fields can be added here after pdev_vendor_cmd,
     * because their offsets within wmi_pdev_vendor_cmd_fixed_param
     * would change, causing backwards incompatibilities.
     */
} wmi_pdev_vendor_cmd_fixed_param;
typedef wmi_pdev_vendor_cmd_fixed_param wmi_vendor_pdev_cmd_fixed_param;

typedef struct wmi_vdev_vendor_cmd
{
    /* type is WMITLV_TAG_STRUC_wmi_vendor_vdev_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* Any vendor specialization cases will need to add sub_type enum defs. */
    A_UINT32 sub_type;
    wmi_vdev_vendor_cmd_val cmd;
    /* NOTE:
     * Future changes may increase the size of vdev_vendor_cmd.
     * Consequently, no fields can be added here after vdev_vendor_cmd,
     * because their offsets within wmi_vdev_vendor_cmd_fixed_param
     * would change, causing backwards incompatibilities.
     */
} wmi_vdev_vendor_cmd_fixed_param;
typedef wmi_vdev_vendor_cmd_fixed_param wmi_vendor_vdev_cmd_fixed_param;

typedef struct wmi_peer_vendor_cmd
{
    /* type is WMITLV_TAG_STRUC_wmi_vendor_peer_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC.  See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /* unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
    /* peer MAC address */
    wmi_mac_addr peer_macaddr;
    /* Any vendor specialization cases will need to add sub_type enum defs. */
    A_UINT32 sub_type;
    wmi_peer_vendor_cmd_val cmd;
    /* NOTE:
     * Future changes may increase the size of peer_vendor_cmd.
     * Consequently, no fields can be added here after peer_vendor_cmd,
     * because their offsets within wmi_peer_vendor_cmd_fixed_param
     * would change, causing backwards incompatibilities.
     */
} wmi_peer_vendor_cmd_fixed_param;
typedef wmi_peer_vendor_cmd_fixed_param wmi_vendor_peer_cmd_fixed_param;

typedef enum {
    WMI_MLO_LINK_FORCE_ACTIVE                 = 1, /* Force specific links active */
    WMI_MLO_LINK_FORCE_INACTIVE               = 2, /* Force specific links inactive */
    WMI_MLO_LINK_FORCE_ACTIVE_LINK_NUM        = 3, /* Force active a number of links, firmware to decide which links to inactive */
    WMI_MLO_LINK_FORCE_INACTIVE_LINK_NUM      = 4, /* Force inactive a number of links, firmware to decide which links to inactive */
    WMI_MLO_LINK_NO_FORCE                     = 5, /* Cancel the force operation of specific links, allow firmware to decide */
    WMI_MLO_LINK_FORCE_ACTIVE_INACTIVE        = 6, /* combination of force specific links active & force specific links inactive */
} WMI_MLO_LINK_FORCE_MODE;

typedef enum {
    WMI_MLO_LINK_FORCE_REASON_NEW_CONNECT      = 1, /* Set force specific links because of new connection */
    WMI_MLO_LINK_FORCE_REASON_NEW_DISCONNECT   = 2, /* Set force specific links because of new dis-connection */
    WMI_MLO_LINK_FORCE_REASON_LINK_REMOVAL     = 3, /* Set force specific links because of AP-side link removal */
    WMI_MLO_LINK_FORCE_REASON_TDLS             = 4, /* Set force specific links because of 11BE MLO TDLS setup/teardown */
} WMI_MLO_LINK_FORCE_REASON;

typedef struct wmi_mlo_link_set_active_cmd
{
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_link_set_active_cmd_fixed_param; */
    A_UINT32 tlv_header;
    /** enum WMI_MLO_LINK_FORCE_MODE */
    A_UINT32 force_mode;
    /** reason of force link active / inactive, enum WMI_MLO_LINK_FORCE_REASON */
    A_UINT32 reason;
/* The TLVs follows this structure:
 * wmi_mlo_set_active_link_number_param link_number_param[];
 *     Link number parameters, optional TLV.
 *     Present when force type is WMI_MLO_LINK_FORCE_ACTIVE_LINK_NUM or
 *     WMI_MLO_LINK_FORCE_INACTIVE_LINK_NUM.
 *     In other cases the length of array should be 0.
 * A_UINT32 vdev_id_bitmap[];
 *     Optional TLV, present when force type is WMI_MLO_LINK_FORCE_ACTIVE
 *     or WMI_MLO_LINK_FORCE_INACTIVE or WMI_MLO_LINK_NO_FORCE,
 *     to specific the vdevs to configure.
 *     For force mode WMI_MLO_LINK_FORCE_ACTIVE_INACTIVE vdev_id_bitmap[]
 *     carry the active vdev bitmap.
 *     In other cases the length of the array should be 0.
 * A_UINT32 vdev_id_bitmap2[];
 *     For force mode WMI_MLO_LINK_FORCE_ACTIVE_INACTIVE vdev_id_bitmap2[]
 *     carry the inactive vdev bitmap.
 *     In other cases the length of the array should be 0.
 */
} wmi_mlo_link_set_active_cmd_fixed_param;

typedef struct wmi_mlo_set_active_link_number_param
{
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_set_active_link_number_param */
    A_UINT32 tlv_header;
    /** number of link to be config */
    A_UINT32 num_of_link;
    /** VDEV type, see values for vdev_type (WMI_VDEV_TYPE_AP,WMI_VDEV_TYPE_STA,
     *  WMI_VDEV_TYPE_IBSS, WMI_VDEV_TYPE_MONITOR,WMI_VDEV_TYPE_NAN,WMI_VDEV_TYPE_NDI ...)
     */
    A_UINT32 vdev_type;
    /** VDEV subtype, see values for vdev_subtype (WMI_UNIFIED_VDEV_SUBTYPE_P2P_DEVICE,
     *  WMI_UNIFIED_VDEV_SUBTYPE_P2P_CLIENT, WMI_UNIFIED_VDEV_SUBTYPE_P2P_GO ...)*/
    A_UINT32 vdev_subtype;
    /** home channel frequency in MHz of the vdev*/
    A_UINT32 home_freq;

} wmi_mlo_set_active_link_number_param;

typedef struct wmi_mlo_link_set_active_resp_event
{
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_link_set_active_resp_event_fixed_param; */
    A_UINT32 tlv_header;

    /** Return status. 0 for success, non-zero otherwise */
    A_UINT32 status;

/* The TLVs follows this structure:
 *     A_UINT32 force_active_vdev_bitmap[]; <-- current force active vdev.
 *     A_UINT32 force_inactive_vdev_bitmap[]; <-- current force inactive vdevs
 */
} wmi_mlo_link_set_active_resp_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_setup_cmd_fixed_param; */
    A_UINT32 tlv_header;
    /** Unique ID representing the hw_links part of the MLD */
    A_UINT32 mld_group_id;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
/*
 * Followed by TLVs:
 *     A_UINT32 hw_link_ids[];
 */
} wmi_mlo_setup_cmd_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_setup_complete_event_fixed_param; */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /** Return status. 0 for success, non-zero otherwise */
    A_UINT32 status;
} wmi_mlo_setup_complete_event_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_ready_cmd_fixed_param; */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
} wmi_mlo_ready_cmd_fixed_param;

typedef enum wmi_mlo_tear_down_reason_code_type {
    WMI_MLO_TEARDOWN_SSR_REASON,
    WMI_MLO_TEARDOWN_HOST_INITIATED_REASON,
} WMI_MLO_TEARDOWN_REASON_TYPE;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_teardown_fixed_param; */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /** reason_code: of type WMI_TEARDOWN_REASON_TYPE */
    A_UINT32 reason_code;
} wmi_mlo_teardown_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_teardown_complete_fixed_param; */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /** Return status. 0 for success, non-zero otherwise */
    A_UINT32 status;
} wmi_mlo_teardown_complete_fixed_param;

#define WMI_TID_TO_LINK_MAP_TID_NUM_GET(_var)               WMI_GET_BITS(_var, 0, 5)
#define WMI_TID_TO_LINK_MAP_TID_NUM_SET(_var, _val)         WMI_SET_BITS(_var, 0, 5, _val)

#define WMI_TID_TO_LINK_MAP_DIR_GET(_var)                   WMI_GET_BITS(_var, 5, 2)
#define WMI_TID_TO_LINK_MAP_DIR_SET(_var, _val)             WMI_SET_BITS(_var, 5, 2, _val)

#define WMI_TID_TO_LINK_MAP_DEFAULT_MAPPING_GET(_var)       WMI_GET_BITS(_var, 7, 1)
#define WMI_TID_TO_LINK_MAP_DEFAULT_MAPPING_SET(_var, _val) WMI_SET_BITS(_var, 7, 1, _val)

#define WMI_TID_TO_LINK_MAP_LINK_MASK_GET(_var)             WMI_GET_BITS(_var, 8, 16)
#define WMI_TID_TO_LINK_MAP_LINK_MASK_SET(_var, _val)       WMI_SET_BITS(_var, 8, 16, _val)

enum {
    WMI_TID_TO_LINK_MAP_DIR_DL,
    WMI_TID_TO_LINK_MAP_DIR_UL,
    WMI_TID_TO_LINK_MAP_DIR_BIDI,
};

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tid_to_link_map */
    A_UINT32 tlv_header;

    /**
     * A_UINT32
     *     WMI_TID_TO_LINK_MAP_TID_NUM_GET / WMI_TID_TO_LINK_MAP_TID_NUM_SET
     *     tid_num:5,
     *
     *     WMI_TID_TO_LINK_MAP_DIR_GET / WMI_TID_TO_LINK_MAP_DIR_SET
     *     dir:2,                 // 0 - DL, 1 - UL, 2 - BiDi
     *
     *     WMI_TID_TO_LINK_MAP_DEFAULT_MAPPING_GET /
     *         WMI_TID_TO_LINK_MAP_DEFAULT_MAPPING_SET
     *     default_link_mapping:1, // If this is set to 1, ignore
     *                             // link_mapping_mask for the specific tid
     *
     *     WMI_TID_TO_LINK_MAP_LINK_MASK_GET / WMI_TID_TO_LINK_MAP_LINK_MASK_SET
     *     link_mapping_mask:16,
     *
     *     rsvd:8;
     */
    A_UINT32 tid_to_link_map_info;
} wmi_tid_to_link_map;

#define WMI_MAX_NUM_PREFERRED_LINKS 4

/* NOTE:
 * wmi_peer_preferred_link_map will be deprecated and replaced
 * by wmi_mlo_peer_link_control_param.
 */
typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_preferred_link_map */
    A_UINT32 tlv_header;

    /* num_preferred_links:
     * If it is 0, all links are equally preferred and which link to be used
     *  in each schedule is decided by FW.
     */
    A_UINT32 num_preferred_links;

    /* [0] - highest preferred link, [1] - 2nd preferred link, etc. */
    A_UINT32 preferred_link_order[WMI_MAX_NUM_PREFERRED_LINKS];

    /* expected_max_latency_ms:
     * 0     - Expected Max Latency to be estimated in Firmware
     * Non 0 - Firmware should try to achieve given max latency
     *         in first preferred link.
     *         If unable to meet in first preferred link, start scheduling
     *         in next preferred link and so on.
     */
    A_UINT32 expected_max_latency_ms[WLAN_MAX_AC];
} wmi_peer_preferred_link_map;

#define WMI_MLO_PEER_LINK_CONTROL_PARAM_SET_TX_LINK_TUPLE_CONFIG(comp, value) \
    WMI_SET_BITS(comp, 0, 1, value)
#define WMI_MLO_PEER_LINK_CONTROL_PARAM_GET_TX_LINK_TUPLE_CONFIG(comp) \
    WMI_GET_BITS(comp, 0, 1)

#define WMI_MLO_PEER_LINK_CONTROL_PARAM_SET_PREFERRED_LINK_CONFIG(comp, value) \
    WMI_SET_BITS(comp, 1, 1, value)
#define WMI_MLO_PEER_LINK_CONTROL_PARAM_GET_PREFERRED_LINK_CONFIG(comp) \
    WMI_GET_BITS(comp, 1, 1)

#define WMI_MAX_NUM_MLO_LINKS 5

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_preferred_link_map */
    A_UINT32 tlv_header;

    /** flags:
     * Bit0    : tx_link_tuple enable/disable.
     *           When enabled, f/w picks the links in tx_link_tuple_bitmap
     *           for TX scheduling.
     * Bit1    : preferred_link enable/disable.
     *           When enabled, f/w schedules the data on preferred link first.
     *           If it fails to deliver within a timeout, it additionally
     *           starts attempting TX on non-preferred links.
     * Bit2-31 : reserved
     */
     A_UINT32 flags;

    /* num_links: number of links present in link_priority_order array below.
     * 0        - we dont have sorted list of link priority
     * non zero - this should be the max number of links that the peer supports.
     */
    A_UINT32 num_links;

    /* link_priority_order:
     * [0] - ID of highest priority link,
     * [1] - ID of 2nd highest priority link, etc.
     */
    A_UINT32 link_priority_order[WMI_MAX_NUM_MLO_LINKS];

    /* tx_link_tuple_bitmap:
     * bitmap of indices within link_priority_order array that needs to be
     * selected in the TX link tuple.
     * FW will not attempt scheduling on a link if it is not part of the
     * tx_link_tuple.
     */
    A_UINT32 tx_link_tuple_bitmap;

    /* max_timeout_ms: applicable only when preferred_link is enabled
     * 0     - max_timeout_ms to be estimated in Firmware
     * Non 0 - value beyond which, firmware should additionally start
     *         scheduling on non preferred links
     */
    A_UINT32 max_timeout_ms[WLAN_MAX_AC];
} wmi_mlo_peer_link_control_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_tid_to_link_map_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;

    /** MLO Peer's current link MAC address */
    wmi_mac_addr link_macaddr;

    /**
     * Following this structure is the TLV:
     *   - struct wmi_tid_to_link_map tid_to_link_map[];
     *   - struct wmi_peer_preferred_link_map peer_preferred_link_map[];
     *     Note - TLV array of peer_preferred_link_map has either 0 or 1
     *     entries, not multiple entries.
     *   - struct wmi_mlo_peer_link_control_param[];
     *     Note: can have 0 or 1 entry.
     */
} wmi_peer_tid_to_link_map_fixed_param;

typedef struct{
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_ap_vdev_tid_to_link_map_cmd_fixed_param */
    A_UINT32 tlv_header;
    /** pdev_id for identifying the MAC, See macros starting with WMI_PDEV_ID_ for values. */
    A_UINT32 pdev_id;
    /** vdev_id for identifying the MLO Vap */
    A_UINT32 vdev_id;
    /** disabled link bits */
    A_UINT32 disabled_link_bitmap;
    /**
     * Following this structure is the TLV:
     * struct wmi_mlo_ap_vdev_tid_to_link_map_ie_info[];
     */
} wmi_mlo_ap_vdev_tid_to_link_map_cmd_fixed_param;

typedef enum {
    /* Mapping Switch TSF */
    WMI_MAP_SWITCH_TIMER_TSF,
    /* Mapping Switch Timer Expired */
    WMI_MAP_SWITCH_TIMER_EXPIRED,
    /* Expected Duration Expired */
    WMI_EXPECTED_DUR_EXPIRED,
} WMI_MLO_TID_TO_LINK_MAP_STATUS;

#define WMI_BCAST_T2LM_MAX 16 /* max number of vdevs covered by T2LM stats */
typedef struct {
    /* TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_ctrl_path_t2lm_stats_struct
     */
    A_UINT32 tlv_header;
    /*
     * The below arrays store per-vdev counters, and are indexed by vdev ID.
     * The number of valid elements is min(WMI_BCAST_T2LM_MAX, num vdevs).
     */
    A_UINT32 bcast_t2lm_wmi_cmd[WMI_BCAST_T2LM_MAX];
    A_UINT32 bcast_t2lm_wmi_evt_map_swt_tme_tsf[WMI_BCAST_T2LM_MAX];
    A_UINT32 bcast_t2lm_wmi_evt_map_swt_tme_exp[WMI_BCAST_T2LM_MAX];
    A_UINT32 bcast_t2lm_wmi_evt_exp_dur_exp[WMI_BCAST_T2LM_MAX];
} wmi_ctrl_path_t2lm_stats_struct;

typedef struct{
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_ap_vdev_tid_to_link_map_evt_fixed_param */
    A_UINT32 tlv_header;
    /* vdev_id of AP MLO vap */
    A_UINT32 vdev_id;
    /* containts mapping status of WMI_MLO_TID_TO_LINK_MAP_STATUS */
    A_UINT32 status_type;
    /* Mapping switch time of current TSF value */
    A_UINT32 mapping_switch_tsf;
} wmi_mlo_ap_vdev_tid_to_link_map_evt_fixed_param;

/* CTRL Field  bit-5-7 reserved */
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DIR_GET(_var)                WMI_GET_BITS(_var, 0, 2)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DIR_SET(_var, _val)          WMI_SET_BITS(_var, 0, 2, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DEF_LINK_GET(_var)           WMI_GET_BITS(_var, 2, 1)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DEF_LINK_SET(_var, _val)     WMI_SET_BITS(_var, 2, 1, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_SWT_TIME_GET(_var)           WMI_GET_BITS(_var, 3, 1)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_SWT_TIME_SET(_var, _val)     WMI_SET_BITS(_var, 3, 1, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DUR_TIME_GET(_var)           WMI_GET_BITS(_var, 4, 1)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DUR_TIME_SET(_var, _val)     WMI_SET_BITS(_var, 4, 1, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_SIZE_GET(_var)       WMI_GET_BITS(_var, 5, 1)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_SIZE_SET(_var, _val) WMI_SET_BITS(_var, 5, 1, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_PRE_GET(_var)       WMI_GET_BITS(_var, 8, 8)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_PRE_SET(_var, _val) WMI_SET_BITS(_var, 8, 8, _val)

/* IEEE Link ID 15 bits on each link id 1 bit is reserved */
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_0_GET(_var)          WMI_GET_BITS(_var, 0, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_0_SET(_var, _val)    WMI_SET_BITS(_var, 0, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_1_GET(_var)          WMI_GET_BITS(_var, 16, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_1_SET(_var, _val)    WMI_SET_BITS(_var, 16, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_2_GET(_var)          WMI_GET_BITS(_var, 0, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_2_SET(_var, _val)    WMI_SET_BITS(_var, 0, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_3_GET(_var)          WMI_GET_BITS(_var, 16, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_3_SET(_var, _val)    WMI_SET_BITS(_var, 16, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_4_GET(_var)          WMI_GET_BITS(_var, 0, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_4_SET(_var, _val)    WMI_SET_BITS(_var, 0, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_5_GET(_var)          WMI_GET_BITS(_var, 16, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_5_SET(_var, _val)    WMI_SET_BITS(_var, 16, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_6_GET(_var)          WMI_GET_BITS(_var, 0, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_6_SET(_var, _val)    WMI_SET_BITS(_var, 0, 15, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_7_GET(_var)          WMI_GET_BITS(_var, 16, 15)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_7_SET(_var, _val)    WMI_SET_BITS(_var, 16, 15, _val)

/* HW Link ID each hw link with 16-bit */
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_0_GET(_var)            WMI_GET_BITS(_var, 0, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_0_SET(_var, _val)      WMI_SET_BITS(_var, 0, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_1_GET(_var)            WMI_GET_BITS(_var, 16, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_1_SET(_var, _val)      WMI_SET_BITS(_var, 16, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_2_GET(_var)            WMI_GET_BITS(_var, 0, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_2_SET(_var, _val)      WMI_SET_BITS(_var, 0, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_3_GET(_var)            WMI_GET_BITS(_var, 16, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_3_SET(_var, _val)      WMI_SET_BITS(_var, 16, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_4_GET(_var)            WMI_GET_BITS(_var, 0, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_4_SET(_var, _val)      WMI_SET_BITS(_var, 0, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_5_GET(_var)            WMI_GET_BITS(_var, 16, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_5_SET(_var, _val)      WMI_SET_BITS(_var, 16, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_6_GET(_var)            WMI_GET_BITS(_var, 0, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_6_SET(_var, _val)      WMI_SET_BITS(_var, 0, 16, _val)

#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_7_GET(_var)            WMI_GET_BITS(_var, 16, 16)
#define WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_7_SET(_var, _val)      WMI_SET_BITS(_var, 16, 16, _val)

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tid_to_link_map */
    A_UINT32 tlv_header;
    /*
     * A_UINT32
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DIR_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DIR_SET
     *      direction: 2       // 0 - DL, 1 - UL, 2 - BiDi
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DEF_LINK_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DEF_LINK_SET
     *      default_link_mapping:1 // 1 - Default Link Mapping Present
     *                             // 0 - Default Link Mapping not present
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_SWT_TIME_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_SWT_TIME_SET
     *      mapping_switch_time_present:1 // 1 - Mapping Switch Time
     *                                    //     Field Present
     *                                    // 0 - Mapping Switch Time
     *                                    //     Field not Present
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DUR_TIME_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_DUR_TIME_SET
     *      expected_duration_present:1  // 1 - Expected Duration Field Present
     *                                   // 0 - Expected Duration Field
     *                                   //     not Present
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_SIZE_GET
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_SIZE_SET
     *      link_mapping_size:1          // 1 - Link Mapping Size  1 Octets
     *                                   // 0 - Link Mapping Size  2 Octets
     *
     *      reserved:2
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_PRE_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_CTRL_LINK_MAP_PRE_SET
     *      link_mapping_presence_indicator:8 // Link mapping presence indicator
     *
     *      reserved2:16 // upper 16 bits are unused
     */
    A_UINT32 tid_to_link_map_ctrl;

    /*
     * Mapping Switch time represents TSF time for the New TID_TO_LINK Mapping
     * will be established
     * 16 bit of TSF time ( from bits 10 to 25)
     *
     * Default to Non-Default: One TID_TO_LINK Mapping IE
     * (wmi_mlo_ap_vdev_tid_to_link_map_ie_info)
     * Mapping switch time present for New Non-Default Mapping
     *
     * Non-Default to Non-Default: Two TID_TO_LINK Mapping IE
     * (wmi_mlo_ap_vdev_tid_to_link_map_ie_info)
     * Mapping switch time not present for 1st TID_TO_LINK Mapping
     * (Current Non-Default Mapping) value would be zero
     * Mapping switch time present for 2nd TID_TO_LINK Mapping
     * (New Non-Default Mapping)
     *
     * Non_Default to Default: One TID_TO_LINK Mapping IE
     * (wmi_mlo_ap_vdev_tid_to_link_map_ie_info)
     * Mapping switch time not present value would be zero
     */
    A_UINT32 map_switch_time;
    /*
     * Expected duration would be either duration/remaining duration of Mapping
     *
     * Default to Non-Default: One TID_TO_LINK Mapping IE
     * (wmi_mlo_ap_vdev_tid_to_link_map_ie_info)
     * Expected duration represents duration of New Non-Default Mapping
     * will be effective
     *
     * Non-Default to Non-Default: Two TID_TO_LINK Mapping IE
     * (wmi_mlo_ap_vdev_tid_to_link_map_ie_info)
     * Expected duration represents remaing duration of 1st TID_TO_LINK
     * Mapping (Current Non-Default Mapping)
     * Expected duration represents duration of the 2nd TID_TO_LINK
     * Mapping (New Non-Default Mapping ) will be effective
     *
     * Non_Default to Default: One TID_TO_LINK Mapping IE
     * (wmi_mlo_ap_vdev_tid_to_link_map_ie_info)
     * Expected duration represents remaing duration of Current Non-Default
     * Mapping
     */
    A_UINT32 expected_duration;

    /*
     * for default_link_mapping ieee_tid_0_1_link_map value would be zero
     * which means IE should not include this param
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_0_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_0_SET
     *      tid_0_link_id:15 // TID_0 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_1_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_1_SET
     *      tid_1_link_id:15 // TID_1 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     */
    A_UINT32 ieee_tid_0_1_link_map;
    /*
     *  for default_link_mapping ieee_tid_2_3_link_map value would be zero
     *  which means IE should not include this param
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_2_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_2_SET
     *      tid_2_link_id:15 // TID_2 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_3_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_3_SET
     *      tid_3_link_id:15 // TID_3 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     */
    A_UINT32 ieee_tid_2_3_link_map;
    /*
     * for default_link_mapping ieee_tid_4_5_link_map value would be zero
     * which means IE should not include this param
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_4_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_4_SET
     *      tid_4_link_id:15 // TID_4 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_5_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_5_SET
     *      tid_5_link_id:15 // TID_5 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     */
    A_UINT32 ieee_tid_4_5_link_map;
    /*
     * for default_link_mapping ieee_tid_6_7_link_map value would be zero
     * which means IE should not include this param
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_6_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_6_SET
     *      tid_6_link_id:15 // TID_6 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_7_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_IEEE_LINK_ID_7_SET
     *      tid_7_link_id:15 // TID_7 Link IDs (0 to 14)
     *                       // Non-Zero value represents links mapped
     *                       // to this TID.
     *                       // Zero value represents links are not mapped
     *                       // to this TID.
     *
     *      reserved:1
     */
    A_UINT32 ieee_tid_6_7_link_map;

    /*
     * hw_link_map will be used by the FW to pause or unpause the TIDs
     * in all the associated MLD STAs in the corresponsing MLD VAP
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_0_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_0_SET
     *      hw_tid_0_link_map:16
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_1_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_1_SET
     *      hw_tid_1_link_map:16
     */
    A_UINT32 hw_tid_0_1_link_map;
    /*
     * hw_link_map will be used by the FW to pause or unpause the TIDs
     * in all the associated MLD STAs in the corresponsing MLD VAP
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_2_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_2_SET
     *      hw_tid_2_link_map:16
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_3_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_3_SET
     *      hw_tid_3_link_map:16
     */
    A_UINT32 hw_tid_2_3_link_map;
    /*
     * hw_link_map will be used by the FW to pause or unpause the TIDs
     * in all the associated MLD STAs in the corresponsing MLD VAP
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_4_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_4_SET
     *      hw_tid_4_link_map:16
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_5_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_5_SET
     *      hw_tid_5_link_map:16
     */
    A_UINT32 hw_tid_4_5_link_map;
    /*
     * hw_link_map will be used by the FW to pause or unpause the TIDs
     * in all the associated MLD STAs in the corresponsing MLD VAP
     * A_UINT32
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_6_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_6_SET
     *      hw_tid_6_link_map:16
     *
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_7_GET /
     *      WMI_MLO_VDEV_TID_TO_LINK_MAP_HW_LINK_ID_7_SET
     *      hw_tid_7_link_map:16
     */
    A_UINT32 hw_tid_6_7_link_map;
} wmi_mlo_ap_vdev_tid_to_link_map_ie_info;

#define WMI_IGMP_OFFLOAD_SUPPORT_DISABLE_BITMASK    0x0
#define WMI_IGMP_V1_OFFLOAD_SUPPORT_BITMASK         0x1
#define WMI_IGMP_V2_OFFLOAD_SUPPORT_BITMASK         0x2
#define WMI_IGMP_V3_OFFLOAD_SUPPORT_BITMASK         0x4
#define WMI_IGMP_OFFLOAD_SUPPORT_ALL_VERSION        0x7

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_igmp_offload_fixed_param */
    A_UINT32 vdev_id;                   /** VDEV identifier */
    A_UINT32 enable;                    /** IGMP offload support enable/disable */
    A_UINT32 version_support_bitmask;   /** IGMP version support v1, v2 and/or v3*/

/* Following this structure are the TLVs:
 *     WMI_IPV4_ADDR  grp_ip_address[num_mcast_ipv4_addr];
 */
} wmi_igmp_offload_fixed_param;

/* flags for ICMP Offload IP4,IP6 */
#define WMI_ICMP_OFFLOAD_IPV4_ENABLED_BIT 0
#define WMI_ICMP_OFFLOAD_IPV6_ENABLED_BIT 1

/* set IPv4 enabled/disabled flag and get the flag */
#define WMI_SET_ICMP_OFFLOAD_IPV4_ENABLED_BIT(valid_bitmask)  \
    WMI_SET_BITS(valid_bitmask, WMI_ICMP_OFFLOAD_IPV4_ENABLED_BIT, 1, 1)

#define WMI_SET_ICMP_OFFLOAD_IPV4_DISABLED_BIT(valid_bitmask) \
    WMI_SET_BITS(valid_bitmask, WMI_ICMP_OFFLOAD_IPV4_ENABLED_BIT, 1, 0)

#define WMI_GET_ICMP_OFFLOAD_IPV4_ENABLED(valid_bitmask) \
    WMI_GET_BITS(valid_bitmask, WMI_ICMP_OFFLOAD_IPV4_ENABLED_BIT, 1)

/* set IPv6 enabled flag, disabled and get the flag */
#define WMI_SET_ICMP_OFFLOAD_IPV6_ENABLED_BIT(valid_bitmask) \
    WMI_SET_BITS(valid_bitmask, WMI_ICMP_OFFLOAD_IPV6_ENABLED_BIT, 1, 1)

#define WMI_SET_ICMP_OFFLOAD_IPV6_DISABLED_BIT(valid_bitmask) \
    WMI_SET_BITS(valid_bitmask, WMI_ICMP_OFFLOAD_IPV6_ENABLED_BIT, 1, 0)

#define WMI_GET_ICMP_OFFLOAD_IPV6_ENABLED(valid_bitmask) \
    WMI_GET_BITS(valid_bitmask, WMI_ICMP_OFFLOAD_IPV6_ENABLED_BIT, 1)

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_vdev_icmp_offload_cmd_fixed_param
     */
    A_UINT32      tlv_header;
    A_UINT32      vdev_id;
    A_UINT32      enable;
    /* bitmask for valid ipv4/ipv6 address */
    A_UINT32      valid_bitmask;
    WMI_IPV4_ADDR ipv4_addr;
/* Following this structure are the TLVs:
 *      WMI_IPV6_ADDR ipv6_addr[num_ipv6_addr];
 */
} wmi_icmp_offload_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_vdev_smart_monitor_event_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** Average RSSI value of Data Frames */
    A_INT32 avg_rssi_data_dbm;
} wmi_vdev_smart_monitor_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_multiple_vdev_set_param_cmd_fixed_param */
    A_UINT32 pdev_id;
    /** parameter id   */
    A_UINT32 param_id;
    /** parameter value */
    A_UINT32 param_value;
    /* The TLVs follows this structure:
     * A_UINT32 vdev_ids[]; <--- Array of VDEV ids.
     */
} wmi_pdev_multiple_vdev_set_param_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_param_info */
    /** ID of the parameter being set */
    A_UINT32 param_id;
    /** value of the parameter being set */
    A_UINT32 param_value;
} wmi_set_param_info;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_set_multiple_pdev_vdev_param_cmd_fixed_param */
    /** Command is for vdev or pdev: 0 = pdev, 1 = vdev */
    A_UINT32 is_vdev;
    /** unique dev_id identifying the VDEV/PDEV */
    A_UINT32 dev_id;
    /*
     * Following this structure is the TLV:
     *     wmi_set_param_info param_info[];
     */
} wmi_set_multiple_pdev_vdev_param_cmd_fixed_param;

typedef enum {
    WMI_MU_SNIF_DISABLE,
    WMI_MU_SNIF_USER_INPUT,
    WMI_MU_SNIF_WILDCARD,
} WMI_MU_SNIF_MODE;

typedef struct {
    /** TLV tag and len; tag equals
      * WMITLV_TAG_STRUC_wmi_vdev_set_mu_snif_cmd_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /* MU sniffer mode - refer to WMI_MU_SNIF_MODE enum */
    A_UINT32 mode;
    /* max num of user to decode */
    A_UINT32 max_num_user;
/**
 * TLV (tag length value) parameters follow setting MU sniffer command
 * structure. The TLV's are:
 * A_UINT32 aids[];
 */
} wmi_vdev_set_mu_snif_cmd_param;

typedef struct {
    /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dbs_or_sbs_cap_ext*/
    A_UINT32 tlv_header;
    /* hw_mode_id: refer to WMI_HW_MODE_CAPABILITIES */
    A_UINT32 hw_mode_id;
    /*
     * If sbs_lower_band_end_freq is set to non-zero, it indicates
     * async SBS mode is supported, and lower-band/higher band to MAC
     * mapping is switch-able. unit: mhz. examples 5180, 5320
     */
    A_UINT32 sbs_lower_band_end_freq;
} wmi_dbs_or_sbs_cap_ext;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals wmi_cust_bdf_version_capabilities*/
    /* Cust bdf Major version in bdf */
    A_UINT32 cust_bdf_ver_major;
    /* Cust bdf Minor version in bdf */
    A_UINT32 cust_bdf_ver_minor;
} wmi_cust_bdf_version_capabilities;

enum WMI_CODEL_ENABLE_VALUES {
    WMI_CODEL_DISABLED,
    WMI_CODEL_ENABLED,
    /* WMI_CODEL_DEBUG:
     * partly enabled – track interval and check target, but don’t drop
     */
    WMI_CODEL_DEBUG,
};

typedef enum {
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_MIN_THRUPUT    = 0,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_MAX_THRUPUT    = 0xffffffff,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_BURST_SIZE     = 0,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_SVC_INTERVAL   = 0xffffffff,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_DELAY_BOUND    = 0xffffffff,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_TIME_TO_LIVE   = 0xffffffff,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_PRIORITY       = 0,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_TID            = 0xffffffff,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_MSDU_LOSS_RATE = 0,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_DISABLED_SCHED_MODE = 0,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_CODEL_ENABLED  = WMI_CODEL_DISABLED,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_CODEL_LATENCY_TARGET_MS = 0xffffffff,
    WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_CODEL_INTERVAL_MS       = 0xffffffff,
} WMI_SAWF_SVC_CLASS_PARAM_DEFAULTS;

#define WMI_CODEL_INTERVAL_MAX_MS       0x0000ffff
#define WMI_CODEL_LATENCY_TARGET_MAX_MS 0x00003fff

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sawf_svc_class_cfg_cmd_fixed_param */
    A_UINT32 svc_class_id; /* which service class is being configured */
    /*-----
     * The below fields specify the values for the parameters of the
     * service class being configured.
     * Each such service class parameter has a default value specified in the
     * above WMI_SAWF_SVC_CLASS_PARAM_DEFAULTS enum.
     * This default value shall be specified for service classes where
     * the parameter in question is not applicable.
     * For example, for service classes that have no minimum throughput
     * requirement, the min_thruput_kbps field should be set to
     * WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_MIN_THRUPUT, i.e. 0.
     *-----*/
    /* min_thruput_kbps:
     * How much throughput should be "guaranteed" for each MSDU queue
     * belonging to this service class.
     * Units are kilobits per second.
     */
    A_UINT32 min_thruput_kbps;
    /* max_thruput_kbps:
     * What upper limit on throughput shall be applied to MSDU queues belonging
     * to this service class, if other peer-TIDs are not meeting their QoS
     * service goals.
     * Units are kilobits per second.
     */
    A_UINT32 max_thruput_kbps;
    /* burst_size_bytes:
     * How much data (i.e. how many MSDUs) should be pulled from a
     * MSDU queue belonging to this service class to be formed into MPDUs
     * and enqueued for transmission.
     * Similarly, how long should a tx op be for MPDUs containing MSDUs from
     * this service class, to ensure that the necessary amount of data gets
     * delivered to the peer.
     * Units are bytes.
     */
    A_UINT32 burst_size_bytes;
    /* svc_interval_ms:
     * How frequently MSDUs belonging to this service class should be
     * formed into MPDUs and enqueued for transmission.
     * The svc_interval_ms parameter is expected to be <= the delay_bound_ms
     * parameter.
     * Units are milliseconds.
     */
    A_UINT32 svc_interval_ms;
    /* delay_bound_ms:
     * How promptly the MSDUs belonging to this service class need to be
     * delivered to the recipient peer.
     * Units are milliseconds.
     */
    A_UINT32 delay_bound_ms;
    /* time_to_live_ms:
     * How long MSDUs belonging to this service class remain valid.
     * If the MSDU has not been successfully transmitted before this
     * time-to-live time has elapsed, the MSDU should be discarded.
     * The time_to_live_ms parameter is expected to be >= the delay_bound_ms
     * parameter.
     * Units are milliseconds.
     */
    A_UINT32 time_to_live_ms;
    /* priority:
     * What degree of precedence shall the WLAN FW's tx scheduler use
     * when considering whether to transmit MPDUs generated from MSDUs
     * belonging to this service class.
     */
    A_UINT32 priority;
    /* tid:
     * Which WLAN TID shall be used for delivering traffic of this
     * service class.
     */
    A_UINT32 tid;
    /* msdu_loss_rate_ppm:
     * This parameter indicates the acceptable rate of MSDU loss.
     * Units are parts per million.
     * E.g. if it is acceptable for 1 MSDU of every 10000 to be lost,
     * the msdu_loss_rate_ppm value would be 100,
     * since 100 / 1000000 = 1 / 10000.
     */
    A_UINT32 msdu_loss_rate_ppm;
    /*
     * The disabled DL and UL scheduler modes bitmap.
     *
     * Each bit in the "disabled_sched_modes" bitmap indicates whether a
     * specific scheduler mode may be selected by the fast loop scheduler. A
     * "1" bit indicates that mode is disabled, and a "0" bit indicates the
     * mode is enabled.
     *
     * The WMI_SCHED_MODE_FLAGS enum defines the bit positions for each mode.
     */
    A_UINT32 disabled_sched_modes;

    A_UINT32 codel_enabled; /* contains a WMI_CODEL_ENABLE_VALUES enum value */
    /* codel_latency_target_ms:
     * The codel_latency_target_ms field specifies the latency target for
     * MSDU queues belonging to this service class.
     * The latency of each such MSDU queue will periodically be checked
     * (with the periodicity controlled by the code_interval_ms parameter).
     * If the MSDU queue's latency is above this target latency, a MSDU will
     * be dropped from the head of the queue, to attempt to get the flow's
     * producer to scale down its rate of MSDU production.
     * This value should be roughly 10% to 30% of the codel_interval_ms value.
     * This value must be <= WMI_CODEL_LATENCY_TARGET_MAX_MS (or must equal
     * WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_CODEL_LATENCY_TARGET_MS).
     */
    A_UINT32 codel_latency_target_ms;
    /* codel_interval_ms:
     * The codel_interval_ms field specifies the baseline interval between
     * successive checks that a given MSDU queue's latency is under the
     * CoDel target latency.
     * If in a given interval a MSDU queue has a latency exceeding the target,
     * the duration of the subsequent interval for that MSDU queue will be
     * reduced.  The interval will get reset to the baseline interval when
     * the MSDU queue's latency is again under the CoDel target latency.
     * This value must be <= WMI_CODEL_INTERVAL_MAX_MS (or must equal
     * WMI_SAWF_SVC_CLASS_PARAM_DEFAULT_CODEL_INTERVAL_MS).
     */
    A_UINT32 codel_interval_ms;
} wmi_sawf_svc_class_cfg_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sawf_svc_class_disable_cmd_fixed_param */
    A_UINT32 svc_class_id; /* which service class is being disabled */
} wmi_sawf_svc_class_disable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;  /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_sw_cal_ver_cap */
    A_UINT32 bdf_cal_ver; /* SW cal version in BDF */
    A_UINT32 ftm_cal_ver; /* SW cal version in factory data */
    A_UINT32 status;      /* Return status. 0 for success, non-zero otherwise */
} wmi_sw_cal_ver_cap;

typedef struct {
    /** TLV tag and len; tag equals
      * WMITLV_TAG_STRUC_wmi_soc_tqm_reset_enable_disable_cmd_fixed_param
      */
    A_UINT32 tlv_header;
    /** 0 - disable TQM-reset feature, 1 - enable TQM-reset feature */
    A_UINT32 enable;
} wmi_soc_tqm_reset_enable_disable_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_multiple_peer_group_cmd_fixed_param */
    A_UINT32 vdev_id;
    A_UINT32 pdev_id;
    /** Sub command id - populated with a WMI_CMD_ID value.
     * Currently supported command ids are WMI_PEER_REMOVE_WDS_ENTRY_CMDID.
     */
    A_UINT32  sub_cmd_id;
    /* The TLVs follows this structure:
     * wmi_mac_addr wds_macaddr[]; <--- Array of wds mac addresses.
     */
} wmi_vdev_multiple_peer_group_cmd_fixed_param;

/* WMI_VDEV_PN_MGMT_RX_FILTER_CMDID */
typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_pn_mgmt_rx_filter_cmd_fixed_param */
    A_UINT32 vdev_id;
    /* RX Filter - MGMT/Action frame type is specified in each bit as per 802.11 spec
     * PN check will be done for all MGMT frames irrespective of RX Filter.
     * Rx filter is only used to decide whether PN failed frames should be forwarded to host
     * Example for forwarding beacon and de-auth pkt alone to host then bit 8(Beacon) and 12(De-auth) must be set */
    A_UINT32 pn_rx_filter;
} wmi_vdev_pn_mgmt_rx_filter_cmd_fixed_param; /* Filter for Neighbor Rx Packets */

typedef struct {
    A_UINT32 tlv_header;
    /* egid_info:
     * Identify which ESL group is active and the duty cycle configured
     * for each group.
     * This is a 128-bit bitmap to represent 16 ESL sets, with each set
     * having 8 members.
     * For a given set, the 1-values within the 8-bit bitmap identify
     * which groups are active.  The number of active groups within each
     * set of 8 indirectly determines the WLAN/BT duty cycle:
     *     number of 1-bits    |
     *     within 8-bit bitmap | WLAN / BT duty cycle
     *     --------------------+----------------
     *            0            | 100 ms  WLAN
     *            1            | 87.5 ms WLAN, 12.5 ms BT
     *            2            | 75 ms   WLAN, 25 ms   BT
     *            3            | 62.5 ms WLAN, 37.5 ms BT
     *            4            | 50 ms   WLAN, 50 ms   BT
     *            5            | 37.5 ms WLAN, 62.5 ms BT
     *            6            | 25 ms   WLAN, 75 ms   BT
     *            7            | 12.5 ms WLAN, 87.5 ms BT
     *            8            |               100 ms  BT
     * The lowest bits in the bitmap represent the highest ESL groups,
     * E.g. bitmap bit 0 corresponds to ESL group 127, bit 1 corresponds
     * to ESL group 126, bit 7 corresponds to ESL group 120, bit 8
     * corresponds to ESL group 119, etc.
     *
     * So for example, if the lowest 8 bits of egid_info are 0x07, this
     * indicates that groups 125-127 are active and 120-124 are inactive,
     * and that the duty cycle is 62.5 ms WLAN + 37.5 ms BT.
     */
    A_UINT32 egid_info[4];
} wmi_esl_egid_cmd_fixed_param;

#define WMI_RTT_PASN_PEER_CREATE_SECURITY_MODE_GET(flag)          WMI_GET_BITS(flag, 0, 2)
#define WMI_RTT_PASN_PEER_CREATE_SECURITY_MODE_SET(flag,val)      WMI_SET_BITS(flag, 0, 2, val)
#define WMI_RTT_PASN_PEER_CREATE_FORCE_SELF_MAC_USE_GET(flag)     WMI_GET_BITS(flag, 2, 1)
#define WMI_RTT_PASN_PEER_CREATE_FORCE_SELF_MAC_USE_SET(flag,val) WMI_SET_BITS(flag, 2, 1, val)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_peer_create_req_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
/**
 * The following TLV will follow this fixed_param TLV:
 *
 * wmi_rtt_pasn_peer_create_req_param rtt_pasn_peer_param[]
 */
} wmi_rtt_pasn_peer_create_req_event_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_peer_create_req_param */

    wmi_mac_addr self_mac_addr; /* self MAC address (can be vdev address or random mac address) */
    wmi_mac_addr dest_mac_addr; /* MAC address of the peer */

    A_UINT32     control_flag; /* some control information here */
    /*********************************************************************************
     * Bits 1:0:   Security mode, check wmi_rtt_security_mode for detail.
     *             Host driver to request supplicant to derive and install PASN keys if security mode is set.
     * Bit 2:      Force_self_mac_addr_use, To indicate supplicant/hostapd to use this self mac addr to (re)generate PASN keys,
     *             and flush old cache( if it exists) for dest_mac_addr with old self_mac_addr.
     * Bits 31:3:  Reserved
     */
} wmi_rtt_pasn_peer_create_req_param;


typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_auth_status_cmd_fixed_param */
/**
 * The following TLV will follow this fixed_param TLV:
 *
 * wmi_rtt_pasn_auth_status_param pasn_auth_status_param[]
 */
} wmi_rtt_pasn_auth_status_cmd_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_auth_status_param */
    /* MAC address of the peer */
    wmi_mac_addr peer_mac_addr;
    /* Return status. 0 for success, non-zero otherwise */
    A_UINT32     status;
    /* Source address used for doing PASN authentication */
    wmi_mac_addr source_mac_addr;
} wmi_rtt_pasn_auth_status_param;


#define WMI_RTT_PASN_PEER_DELETE_DELETED_BIT_GET(flag)     WMI_GET_BITS(flag, 0, 1)
#define WMI_RTT_PASN_PEER_DELETE_DELETED_BIT_SET(flag,val) WMI_SET_BITS(flag, 0, 1, val)
#define WMI_RTT_PASN_PEER_DELETE_FLUSH_KEYS_GET(flag)      WMI_GET_BITS(flag, 1, 1)
#define WMI_RTT_PASN_PEER_DELETE_FLUSH_KEYS_SET(flag,val)  WMI_SET_BITS(flag, 1, 1, val)

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_peer_delete_event_fixed_param */
    /** unique id identifying the VDEV, generated by the caller */
    A_UINT32 vdev_id;
/**
 * The following TLV will follow this fixed_param TLV:
 *
 * wmi_rtt_pasn_peer_delete_param rtt_pasn_peer_param[]
 */
} wmi_rtt_pasn_peer_delete_event_fixed_param;

typedef struct {
    A_UINT32     tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_peer_delete_param */
    /* MAC address of the peer */
    wmi_mac_addr peer_mac_addr;
    /* some control information here */
    A_UINT32     control_flag;
/**********************************************************************************
 * Bit 0:    peer_deleted (This is set to 1 if peer has already been deleted by the target)
 * Bit 1:    flush keys (This is set to 1 if target wants the cached PASN keys to be flushed)
 * Bits 31:2: reserved
 */
} wmi_rtt_pasn_peer_delete_param;

typedef struct {
    A_UINT32     tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_rtt_pasn_deauth_cmd_fixed_param */
    /* MAC address of the peer */
    wmi_mac_addr peer_mac_addr;
} wmi_rtt_pasn_deauth_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pmm_scratch_reg_info */
    /** what the register is used for - see WFSS_PMM_SCRATCH_REG_PURPOSE enum */
    A_UINT32 pmm_scratch_reg_purpose;
    /** Address of scratch register */
    A_UINT32 pmm_scratch_reg_address;
} wmi_pmm_scratch_reg_info;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pmm_scratch_reg_allocation_cmd_fixed_param */
    /** pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /*
     * Following this structure is the TLV:
     *     wmi_pmm_scratch_reg_info scratch_reg_info[];
     */
} wmi_pmm_scratch_reg_allocation_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pmm_available_scratch_reg_info */
    /** Scratch register address */
    A_UINT32 pmm_scratch_reg_address;
} wmi_pmm_available_scratch_reg_info;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pmm_available_scratch_reg_event_fixed_param */
    /** pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /*
     * Following this structure is the TLV:
     *     wmi_pmm_available_scratch_reg_info pmm_available_scratch_reg_info[];
     */
} wmi_pmm_available_scratch_reg_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pmm_scratch_reg_allocation_complete_event_fixed_param */
    /** pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /** 1 - success, 0 - failed */
    A_UINT32 is_allocated;
} wmi_pmm_scratch_reg_allocation_complete_event_fixed_param;

typedef enum {
    WMI_NO_FLUSH,
    WMI_TWT_FLUSH,

    /* Add new flush policies above */
    WMI_MAX_FLUSH_POLICY
} wmi_peer_flush_policy;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_flush_policy_cmd_fixed_param */
    A_UINT32 vdev_id;
    /** peer MAC address */
    wmi_mac_addr peer_macaddr;
    /** The tids to flush */
    A_UINT32 peer_tid_bitmap;
    /* wmi_peer_flush_policy */
    A_UINT32 flush_policy;
    /* n_TWT_SPs_to_expire:
     * Expire / drop packets whose age is greater than this specified number
     * of TWT service periods.
     */
    A_UINT32 n_TWT_SPs_to_expire;
} wmi_peer_flush_policy_cmd_fixed_param;

/* health monitor infra Def */
typedef struct {
    /** TLV tag and len */
    A_UINT32 tlv_header;
    A_UINT32 ring_buf_paddr_low;
    A_UINT32 ring_buf_paddr_high;
    A_UINT32 initial_upload_period_ms;
} wmi_health_mon_init_done_fixed_param;

/** ODD **/

/* Livedump Data structures */
#define WMI_ODD_LIVEDUMP_RESP_SET_STATUS(status, val) \
    WMI_SET_BITS(status, 0, 4, val)
#define WMI_ODD_LIVEDUMP_RESP_GET_STATUS(status) \
    WMI_GET_BITS(status, 0, 4)

typedef enum {
    ODD_LIVEDUMP_STATUS_SUCCESS = 0,
    ODD_LIVEDUMP_STATUS_FAILURE,
    ODD_MAX_LIVEDUMP_STATUS,
} odd_livedump_resp_status;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 odd_livedump_request_id;
    /* Following this structure is the TLV:
     *    A_UINT32 odd_livedump_id_list[]; <-- array livedump_id list
     */
} wmi_livedump_request_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header;
    /* odd_livedump_request_id:
     * this echoes the request id that was sent in the wmi_livedump_cmd_param
     */
    A_UINT32 odd_livedump_request_id;
    /*
     * 4 LSB's to indicate status of the odd_livedump_request_id processed
     * by the FW, the other 28bits to kept for future enhancements.
     * The status will be defined in the enum odd_livedump_resp_status
     * 0 - SUCCESS
     * 1 - FAILURE
     * Refer to the WMI_ODD_LIVEDUMP_RESP_SET,_GET_STATUS macros.
     */
    A_UINT32 status;
} wmi_livedump_response_event_fixed_param;

#define WMI_MLO_LINK_REMOVAL_GET_VDEVID(tbtt_info)               WMI_GET_BITS(tbtt_info, 0, 8)
#define WMI_MLO_LINK_REMOVAL_SET_VDEVID(tbtt_info, value)        WMI_SET_BITS(tbtt_info, 0, 8, value)
#define WMI_MLO_LINK_REMOVAL_GET_LINKID(tbtt_info)               WMI_GET_BITS(tbtt_info, 8, 8)
#define WMI_MLO_LINK_REMOVAL_SET_LINKID(tbtt_info, value)        WMI_SET_BITS(tbtt_info, 8, 8, value)
#define WMI_MLO_LINK_REMOVAL_GET_TBTT_COUNT(tbtt_info)           WMI_GET_BITS(tbtt_info, 16, 16)
#define WMI_MLO_LINK_REMOVAL_SET_TBTT_COUNT(tbtt_info, value)    WMI_SET_BITS(tbtt_info, 16, 16, value)

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_link_removal_tbtt_count; */
    A_UINT32 tlv_header;
    union {
        struct {
            A_UINT32 vdev_id:8,
                     link_id:8,
                     tbtt_count:16;
        };
        A_UINT32 tbtt_info;
    };
} wmi_mlo_link_removal_tbtt_count;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_link_removal_tbtt_update; */
    A_UINT32 tlv_header;

    A_UINT32 tbtt_count;

    A_UINT32 qtimer_ts_low; /* lower-32 bits */
    A_UINT32 qtimer_ts_high; /* higher-32 bits */

    A_UINT32 tsf_low; /* lower-32 bits */
    A_UINT32 tsf_high; /* higher-32 bits */
} wmi_mlo_link_removal_tbtt_update;

typedef struct {
   /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_link_removal_evt_fixed_param; */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;

    /*
     * Followed by TLVs:
     *     wmi_mlo_link_removal_tbtt_update
     */
} wmi_mlo_link_removal_evt_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_link_removal_cmd_fixed_param */
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 reconfig_ml_ie_num_bytes_valid;

   /* This TLV is followed by array of bytes:
    *   A_UINT8 reconfig_ml_ie[]; <-- Entire reconfiguration element (multi-link control + common-info + 1 per-sta profile)
    */
} wmi_mlo_link_removal_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_per_peer_sched_mode_disable */

    /* Peer MAC Address */
    wmi_mac_addr peer_macaddr;

    /*
     * The disabled DL and UL scheduler modes bitmap.
     *
     * This command is not supported in STA mode.
     *
     * A value of 1 in a given bit position disables the corresponding mode,
     * and a value of 0 enables the mode. The WMI_SCHED_MODE_FLAGS enum defines
     * the bit positions for each mode.
     *
     * A single 32 bit value is used to store the following configuration
     * bitmap.
     *
     * bit   | sched mode
     * ---------------
     *   0   | DL MU-MIMO
     *   1   | UL MU-MIMO
     *   2   | DL OFDMA
     *   3   | UL OFDMA
     * 4..31 | RESERVED
     */
    A_UINT32 disabled_sched_modes;
} wmi_per_peer_sched_mode_disable;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_peer_sched_mode_disable_fixed_param */
    A_UINT32 pdev_id;
    /* The TLVs for each peer follows:
     *     wmi_per_peer_sched_mode_disable per_peer_sched_mode_disable[];
     */
} wmi_peer_sched_mode_disable_fixed_param;

/** Coordinated-AP TDMA **/

#define WMI_TDMA_MAX_ACTIVE_SCHEDULES  10

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_tdma_schedule_request_cmd_fixed_param **/
    /** pdev_id
     * PDEV ID for identifying the MAC for which this schedule
     * is being requested.
     */
    A_UINT32 pdev_id;
    /** schedule_type
     * 0 = Reserved
     * 1 = Restricted
     * UINT32_MAX = Cancel all TDMA schedules and ignore other parameters below.
     */
    A_UINT32 schedule_type;
    /** schedule_handle_id
     * Unique ID to identify this TDMA schedule
     */
    A_UINT32 schedule_handle_id;
    /** owner_bssid
     * The BSSID this TDMA schedule is reserved for
     */
    wmi_mac_addr owner_bssid;
    /** start_time_tsf_low
     * Lower 32-bits of Synchronized Start time for the first busy slot
     * in this TDMA schedule.
     * It should be a PMM global FW TSF reference
     */
    A_UINT32 start_time_tsf_low;
    /** start_time_tsf_high
     * Higher 32-bits of Synchronized Start time for the first busy slot
     * in this TDMA schedule.
     * It should be a PMM global FW TSF reference
     */
    A_UINT32 start_time_tsf_high;
    /** num_busy_slots
     * Number of busy periods in this schedule
     */
    A_UINT32 num_busy_slots;
    /** busy_slot_dur_ms
     * The fixed duration of each busy slot in milliseconds
     */
    A_UINT32 busy_slot_dur_ms;
    /** busy_slot_intvl_ms
     * The fixed interval between the start of two consecutive busy slots
     * in milliseconds.
     */
    A_UINT32 busy_slot_intvl_ms;
    /** edca_params_valid
     * Indicates whether the following EDCA fields aifsn, ecwmin, ecwmax
     * are valid or not
     * 1 = Valid. 0 = Not Valid.
     */
    A_UINT32 edca_params_valid;
    /** aifsn
     * Arbitration inter frame spacing number for this schedule type.
     * Range: 2-15.
     * For voice, video, best-effort, background ACs
     */
    A_UINT32 aifsn[WMI_AC_MAX];
    /** ecwmin
     * Exponent form of Contention Window minimum value for this schedule type.
     * Range: 2 - 1024.
     * For voice, video, best-effort, background ACs
     */
    A_UINT32 ecwmin[WMI_AC_MAX];
    /** ecwmax
     * Exponent form of Contention Window maximum value for this schedule type.
     * Range: 2 - 1024.
     * For voice, video, best-effort, background ACs
     */
    A_UINT32 ecwmax[WMI_AC_MAX];
} wmi_tdma_schedule_request_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_tgtr2p_table _fixed_param */
    A_UINT32 pdev_id;
    /* freq_band:
     * Indicates the intended FreqBand for updating targetPowerR2PTable.
     *     0: 5G
     *     1: 2G
     *     2: 6G
     */
    A_UINT32 freq_band;
    /* sub_band:
     * Denotes band defined in targetPowerR2PFreqRangexG BDF fields.
     * Valid values for each target is listed below
     * For 11AX targets,
     * 2G - 0
     * 5G/6G - 0/1/2
     *
     * For 11BE targets,
     * 2G - 0
     * 5G/6G - 0/1
     */
    A_UINT32 sub_band;
    /* is_ext:
     * Applicable only for 11BE targets
     * 0 - Default targetPowerR2PTable
     * 1 - To update targetPowerR2PTable in extension fields
     * For 11AX targets, value is expected to be 0.
     */
    A_UINT32 is_ext;
    A_UINT32 target_type; /* 0 - IPQ95xx, 1 - QCN90xx, 0x10 - QCN92xx */
    A_UINT32 r2p_array_len; /* length of targetPowerR2PTable */
    /* end_of_r2ptable_update:
     * This field can be used to indicate FW to trigger update of SW structures
     * once user has updated for all the sub-bands of the Frequency band.
     * This would be used when there are multiple sub-bands.
     */
    A_UINT32 end_of_r2ptable_update;
/*
 * Following this structure is the TLV containing targetPowerR2PTablexG
 * of type INT8 and with a unit of 0.25dBm.
 */
} wmi_pdev_set_tgtr2p_table_cmd_fixed_param;

typedef enum {
    WMI_PDEV_TGTR2P_SUCCESS = 0,
    WMI_PDEV_TGTR2P_SUCCESS_WAITING_FOR_END_OF_UPDATE,
    WMI_PDEV_TGTR2P_ERROR_INVALID_FREQ_BAND,
    WMI_PDEV_TGTR2P_ERROR_INVALID_SUB_BAND,
    WMI_PDEV_TGTR2P_ERROR_EXTENSION_FIELDS_NOT_ENABLED_IN_BDF,
    WMI_PDEV_TGTR2P_ERROR_INVALID_TARGET_TPYE,
    WMI_PDEV_TGTR2P_ERROR_R2P_ARRAY_LEN_MISMATCH,
} wmi_pdev_set_tgtr2p_event_status_type;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_tgtr2p_table_event_fixed_param */

    /* status:
     * enum wmi_pdev_set_tgtr2p_event_status_type to indicate the status
     * code/result
     */
    A_UINT32 status;
    A_UINT32 pdev_id; /* to identify for which pdev the response is received */
} wmi_pdev_set_tgtr2p_table_event_fixed_param;

typedef struct {
    A_UINT32 tlv_header;      /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_vdev_get_link_info_cmd_fixed_param */
    A_UINT32 vdev_id;
    wmi_mac_addr mld_macaddr; /* MLD MAC address */
} wmi_mlo_vdev_get_link_info_cmd_fixed_param;

typedef enum {
    WMI_LINK_INFO_EVENT_SUCCESS = 0,

    /* reject due to common failure reason */
    WMI_LINK_INFO_EVENT_REJECT_FAILURE,

    /* reject as vdev is not up */
    WMI_LINK_INFO_EVENT_REJECT_VDEV_NOT_UP,

    /* reject as roaming is in progress */
    WMI_LINK_INFO_EVENT_REJECT_ROAMING_IN_PROGRESS,

    /* reject as it's not MLO connection */
    WMI_LINK_INFO_EVENT_REJECT_NON_MLO_CONNECTION,
} wmi_mlo_vdev_link_info_event_status_type;

typedef struct {
    A_UINT32 tlv_header; /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_vdev_link_info_event_fixed_param */

    /* status:
     * enum wmi_mlo_vdev_link_info_event_status_type to indicate the status
     */
    A_UINT32 status;

    /* vdev_id:
     * unique id identifying the VDEV, generated by the caller
     */
    A_UINT32 vdev_id;

    wmi_mac_addr mld_macaddr; /* MLD MAC address */

    /* hw_mode_index:
     * current hardware mode index, see soc_hw_mode_t for values
     */
    A_UINT32 hw_mode_index;
} wmi_mlo_vdev_link_info_event_fixed_param;

#define WMI_MLO_VDEV_LINK_INFO_GET_VDEVID(link_info)             WMI_GET_BITS(link_info, 0, 8)
#define WMI_MLO_VDEV_LINK_INFO_SET_VDEVID(link_info, value)      WMI_SET_BITS(link_info, 0, 8, value)
#define WMI_MLO_VDEV_LINK_INFO_GET_LINKID(link_info)             WMI_GET_BITS(link_info, 8, 8)
#define WMI_MLO_VDEV_LINK_INFO_SET_LINKID(link_info, value)      WMI_SET_BITS(link_info, 8, 8, value)
#define WMI_MLO_VDEV_LINK_INFO_GET_LINK_STATUS(link_info)        WMI_GET_BITS(link_info, 16, 2)
#define WMI_MLO_VDEV_LINK_INFO_SET_LINK_STATUS(link_info, value) WMI_SET_BITS(link_info, 16, 2, value)

typedef struct {
    A_UINT32 tlv_header;     /* TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_mlo_vdev_link_info */
    union {
        struct {
            A_UINT32 vdev_id:8,     /* vdev id for this link */
                     link_id:8,     /* link id defined as in 802.11 BE spec. */
                     link_status:2, /* link_status - 0: active, 1: inactive  */
                     reserved:14;
        };
        A_UINT32 link_info;
    };
    A_UINT32 chan_freq;             /* Channel frequency in MHz */
} wmi_mlo_vdev_link_info;

/* Manual UL OFDMA trigger frame data structures */

typedef enum {
    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_NONE,
    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_RESP,    /* response timeout, mismatch,
                                             * BW mismatch, mimo ctrl mismatch,
                                             * CRC error.. */
    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_FILT,    /* blocked by tx filtering */
    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_FIFO,    /* fifo, misc errors in HW */
    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_SWABORT, /* software initiated abort
                                             * (TX_ABORT) */

    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_MAX     = 0xff,
    WMI_UL_OFDMA_MANUAL_TRIG_TXERR_INVALID =
        WMI_UL_OFDMA_MANUAL_TRIG_TXERR_MAX
} wmi_ul_ofdma_manual_trig_txerr_t;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_manual_ul_ofdma_trig_feedback_evt_fixed_param  */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;

    /* To indicate whether feedback event is for SU (0) or MU trigger (1) */
    A_UINT32 feedback_trig_type;

    /* Feedback Params */
    A_UINT32 curr_su_manual_trig_count;
    A_UINT32 remaining_su_manual_trig;
    A_UINT32 remaining_mu_trig_peers;
    A_UINT32 manual_trig_status;  /* holds a wmi_ul_ofdma_manual_trig_txerr_t */

    /**
     * This TLV is followed by TLVs below:
     *    wmi_mac_addr peer_macaddr[];
     *        Array length corresponds to the number of triggered peers
     */
} wmi_manual_ul_ofdma_trig_feedback_evt_fixed_param;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_manual_mu_trig_cmd_fixed_param  */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;

    /* Configurable Parameters for manual UL OFDMA Multi-User Trigger frame */
    A_UINT32 manual_trig_preferred_ac;
    /**
     * This TLV is followed by TLVs below:
     *    wmi_mac_addr peer_macaddr[];
     *        The array has one element for each peer to be included in the
     *        manually-triggered UL MU transmission.
     */
} wmi_vdev_set_manual_mu_trig_cmd_fixed_param;

typedef struct {
   /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_vdev_set_manual_su_trig_cmd_fixed_param  */
    A_UINT32 tlv_header;

    /* VDEV identifier */
    A_UINT32 vdev_id;

    /* Configurable Parameters for manual UL OFDMA Single-User Trigger frame */
    wmi_mac_addr peer_macaddr;
    A_UINT32 manual_trig_preferred_ac;
    A_UINT32 num_su_manual_trig;
    A_UINT32 manual_trig_length;
    A_UINT32 manual_trig_mcs;
    A_UINT32 manual_trig_nss;
    A_INT32  manual_trig_target_rssi; /* units = dBm */
} wmi_vdev_set_manual_su_trig_cmd_fixed_param;


#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_SET_ASNR_LENGTH(asnr_params, value) \
        WMI_SET_BITS(asnr_params, 0, 16, value)
#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_GET_ASNR_LENGTH(asnr_params) \
        WMI_GET_BITS(asnr_params, 0, 16)

#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_SET_ASNR_OFFSET(asnr_params, value) \
        WMI_SET_BITS(asnr_params, 16, 16, value)
#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_GET_ASNR_OFFSET(asnr_params) \
        WMI_GET_BITS(asnr_params, 16, 16)

#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_SET_DSNR_LENGTH(dsnr_params, value) \
        WMI_SET_BITS(dsnr_params, 0, 16, value)
#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_GET_DSNR_LENGTH(dsnr_params) \
        WMI_GET_BITS(dsnr_params, 0, 16)

#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_SET_DSNR_OFFSET(dsnr_params, value) \
        WMI_SET_BITS(dsnr_params, 16, 16, value)
#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_GET_DSNR_OFFSET(dsnr_params) \
        WMI_GET_BITS(dsnr_params, 16, 16)

#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_SET_FB_PARAMS_NC(fb_params, value) \
        WMI_SET_BITS(fb_params, 0, 2, value)
#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_GET_FB_PARAMS_NC(fb_params) \
        WMI_GET_BITS(fb_params, 0, 2)

#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_SET_FB_PARAMS_NSS_NUM(fb_params, value) \
        WMI_SET_BITS(fb_params, 2, 2, value)
#define WMI_DMA_BUF_RELEASE_CV_UPLOAD_GET_FB_PARAMS_NSS_NUM(fb_params) \
        WMI_GET_BITS(fb_params, 2, 2)


#define WMI_SET_STANDALONE_SOUND_PARAMS_FB_TYPE(snd_params, value) \
        WMI_SET_BITS(snd_params, 0, 1, value)
#define WMI_GET_STANDALONE_SOUND_PARAMS_FB_TYPE(snd_params) \
        WMI_GET_BITS(snd_params, 0, 1)

#define WMI_SET_STANDALONE_SOUND_PARAMS_NG(snd_params, value) \
        WMI_SET_BITS(snd_params, 1, 2, value)
#define WMI_GET_STANDALONE_SOUND_PARAMS_NG(snd_params) \
        WMI_GET_BITS(snd_params, 1, 2)

#define WMI_SET_STANDALONE_SOUND_PARAMS_CB(snd_params, value) \
        WMI_SET_BITS(snd_params, 3, 1, value)
#define WMI_GET_STANDALONE_SOUND_PARAMS_CB(snd_params) \
        WMI_GET_BITS(snd_params, 3, 1)

#define WMI_SET_STANDALONE_SOUND_PARAMS_BW(snd_params, value) \
        WMI_SET_BITS(snd_params, 4, 3, value)
#define WMI_GET_STANDALONE_SOUND_PARAMS_BW(snd_params) \
        WMI_GET_BITS(snd_params, 4, 3)


typedef enum _WMI_STANDALONE_SOUND_STATUS_T {
    WMI_STANDALONE_SOUND_STATUS_OK,
    WMI_STANDALONE_SOUND_STATUS_ERR_NUM_PEERS_EXCEEDED,
    WMI_STANDALONE_SOUND_STATUS_ERR_NG_INVALID,
    WMI_STANDALONE_SOUND_STATUS_ERR_NUM_REPEAT_EXCEEDED,
    WMI_STANDALONE_SOUND_STATUS_ERR_PEER_DOESNOT_SUPPORT_BW,
    WMI_STANDALONE_SOUND_STATUS_ERR_INVALID_PEER,
    WMI_STANDALONE_SOUND_STATUS_ERR_INVALID_VDEV,
    WMI_STANDALONE_SOUND_STATUS_ERR_PEER_DOES_NOT_SUPPORT_MU_FB,
    WMI_STANDALONE_SOUND_STATUS_ERR_DMA_NOT_CONFIGURED,
    WMI_STANDALONE_SOUND_STATUS_ERR_COMPLETE_FAILURE,
} WMI_STANDALONE_SOUND_STATUS_T;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_dma_buf_release_cv_upload_meta_data */
    /** Set if the CV is valid */
    A_UINT32 is_valid;
     /** Feedback type */
    A_UINT32 fb_type;
    /**
    * [15:0] ASNR length
    * [31:16] ASNR offset
    */
    A_UINT32 asnr_params;
    /**
    * [15:0] DSNR length
    * [31:16] DSNR offset
    */
    A_UINT32 dsnr_params;
    /** Peer mac address */
    wmi_mac_addr peer_mac_address;
    /**
    * [1:0] Nc
    * [3:2] nss_num
    */
    A_UINT32 fb_params;
} wmi_dma_buf_release_cv_upload_meta_data;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_standalone_sounding_cmd_fixed_param */
    /** vdev identifier */
    A_UINT32 vdev_id;
    /** sounding_params:
    * [0] Feedback type
    * [2:1] Ng
    * [3] Codebook
    * [6:4] BW
    *     0 = 20 MHz
    *     1 = 40 MHz
    *     2 = 80 MHz
    *     3 = 160 MHz
    *     4 = 320 MHz
    * [31:7] Reserved
    */
    A_UINT32 sounding_params;
    /** The number of sounding repeats */
    A_UINT32 num_sounding_repeats;
    /**
    * TLV (tag length value) parameters follow the
    * structure. The TLV's are:
    * wmi_mac_addr peer_list[num_peers];
    */
} wmi_standalone_sounding_cmd_fixed_param;

typedef struct {
    A_UINT32 tlv_header; /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_standalone_sounding_evt_fixed_param */
    /** vdev identifier */
    A_UINT32 vdev_id;
    /** status:
     * standalone sounding command status -
     * refer to WMI_STANDALONE_SOUND_STATUS_T
     */
    A_UINT32 status;
    /** number of CV buffers uploaded */
    A_UINT32 buffer_uploaded;
    /** TLV (tag length value) parameters follow the
    * structure. The TLV's are:
    * A_UINT32 snd_failed[num_sounding_repeats];
    *     snd_failed[] array's elements hold the number of failures
    *     for each sounding.
    */
} wmi_standalone_sounding_evt_fixed_param;

typedef struct {
    /*
     * TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_pdev_set_rf_path_cmd_fixed_param
     */
    A_UINT32 tlv_header;
    /* pdev_id for identifying the MAC */
    A_UINT32 pdev_id;
    /*
     * rf_path :
     * 0 - primary RF path
     * 1 - secondary RF path
     */
    A_UINT32 rf_path;
} wmi_pdev_set_rf_path_cmd_fixed_param;

#define WMI_SET_RX_PEER_STATS_RESP_TYPE(rx_params, value) \
        WMI_SET_BITS(rx_params, 0, 1, value)
#define WMI_GET_RX_PEER_STATS_RESP_TYPE(rx_params) \
        WMI_GET_BITS(rx_params, 0, 1)

#define WMI_SET_RX_PEER_STATS_MCS(rx_params, value) \
        WMI_SET_BITS(rx_params, 1, 5, value)
#define WMI_GET_RX_PEER_STATS_MCS(rx_params) \
        WMI_GET_BITS(rx_params, 1, 5)

#define WMI_SET_RX_PEER_STATS_NSS(rx_params, value) \
        WMI_SET_BITS(rx_params, 6, 4, value)
#define WMI_GET_RX_PEER_STATS_NSS(rx_params) \
        WMI_GET_BITS(rx_params, 6, 4)

#define WMI_SET_RX_PEER_STATS_GI_LTF_TYPE(rx_params, value) \
        WMI_SET_BITS(rx_params, 10, 4, value)
#define WMI_GET_RX_PEER_STATS_GI_LTF_TYPE(rx_params) \
        WMI_GET_BITS(rx_params, 10, 4)

typedef enum {
    WMI_PEER_RX_RESP_SU    = 0,
    WMI_PEER_RX_RESP_MIMO  = 1,
    WMI_PEER_RX_RESP_OFDMA = 2,
} WMI_PEER_RX_RESP_TYPE;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_manual_ul_ofdma_trig_rx_peer_userinfo  */
    A_UINT32        tlv_header;

    /* Peer mac address */
    wmi_mac_addr    peer_macaddr;

    /* Per peer RX parameters */
    /* [0] - Flag to indicate if peer responded with QoS Data or QoS NULL.
     *  0 -> indicates QoS NULL, 1-> indicates QoS Data response
     * [5:1] - MCS - Peer response MCS
     * [9:6] - NSS - Peer response NSS
     * [13:10] - GI LTF Type - Peer response GI/LTF type
     *     0 => gi == GI_1600 && ltf == 1x LTF
     *     1 => gi == GI_1600 && ltf == 2x LTF
     *     2 => gi == GI_3200 && ltf == 4x LTF
     * [31:14] - Reserved
     */
    A_UINT32        rx_peer_stats;

    /* Peer response per chain RSSI */
    A_INT32         peer_per_chain_rssi[WMI_MAX_CHAINS];
} wmi_manual_ul_ofdma_trig_rx_peer_userinfo;

typedef struct {
    /** TLV tag and len; tag equals WMITLV_TAG_STRUC_wmi_manual_ul_ofdma_trig_rx_peer_userinfo_evt_fixed_param  */
    A_UINT32 tlv_header;

    A_UINT32 vdev_id; /* VDEV identifier */

    /* combined_rssi:
     * RX Combined RSSI in dBm
     * Value indicates the average RSSI per 20MHz by averaging the total RSSI
     * across entire BW for each OFDMA STA
     */
    A_INT32 combined_rssi;

    /* rx_ppdu_resp_type:
     * RX PPDU Response Type
     * Refer WMI_PEER_RX_RESP_TYPE for possible values
     */
    A_UINT32 rx_ppdu_resp_type;

    /* rx_resp_bw:
     * RX response bandwidth
     *     0 = 20 MHz
     *     1 = 40 MHz
     *     2 = 80 MHz
     *     3 = 160 MHz
     *     4 = 320 MHz
     */
    A_UINT32 rx_resp_bw;

    /**
     * This TLV is followed by TLVs below:
     *     wmi_manual_ul_ofdma_trig_rx_peer_userinfo rx_peer_userinfo[]
     *         TLV length specified by number of peer responses for manual
     *         UL OFDMA trigger
     */
} wmi_manual_ul_ofdma_trig_rx_peer_userinfo_evt_fixed_param;

typedef enum _WMI_VDEV_PAUSE_TYPE
{
    WMI_VDEV_PAUSE_TYPE_UNKNOWN = 0,
    WMI_VDEV_PAUSE_TYPE_MLO_LINK = 1,
    WMI_VDEV_PAUSE_TYPE_TX = 2,
} WMI_VDEV_PAUSE_TYPE;

typedef struct {
    /** TLV tag and len; tag equals
     * WMITLV_TAG_STRUC_wmi_vdev_pause_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** type of pause, refer to WMI_VDEV_PAUSE_TYPE */
    A_UINT32 pause_type;
    /** duration of pause, in unit of ms */
    A_UINT32 pause_dur_ms;
} wmi_vdev_pause_cmd_fixed_param;



/* ADD NEW DEFS HERE */


// {
/*****************************************************************************
 * The following structures are deprecated. DO NOT USE THEM!
 */
/** Max number of channels in the schedule. */
#define OCB_CHANNEL_MAX (5)

/* NOTE: Make sure these data structures are identical to those
* defined in sirApi.h */

typedef struct
{
    /** Arbitration Inter-Frame Spacing. Range: 2-15 */
    A_UINT32 aifsn;
    /** Contention Window minimum. Range: 1 - 10 */
    A_UINT32 cwmin;
    /** Contention Window maximum. Range: 1 - 10 */
    A_UINT32 cwmax;
} wmi_qos_params_t;

typedef struct {
    A_UINT32 tlv_header;
    A_UINT32 vdev_id;
    A_UINT32 tidmap; /* Bitmap specifying the TIDs for which prohibit would be set/unset */
    A_UINT32 prohibit_enable; /* 0 for Disable, 1 for Enable */
} wmi_vdev_param_enable_sr_prohibit_fixed_param;

typedef struct
{
    /** Channel frequency in MHz */
    A_UINT32 chan_freq;
    /** Channel duration in ms */
    A_UINT32 duration;
    /** Start guard interval in ms */
    A_UINT32 start_guard_interval;
    /** End guard interval in ms */
    A_UINT32 end_guard_interval;
    /** Transmit power in dBm, range 0 - 23 */
    A_UINT32 tx_power;
    /** Transmit datarate in Mbps */
    A_UINT32 tx_rate;
    /** QoS parameters for each AC */
    wmi_qos_params_t qos_params[WLAN_MAX_AC];
    /** 1 to enable RX stats for this channel, 0 otherwise */
    A_UINT32 rx_stats;
} wmi_ocb_channel_t;

typedef struct {
    /** TLV tag and len; tag equals
    * WMITLV_TAG_STRUC_wmi_ocb_set_sched_cmd_fixed_param */
    A_UINT32 tlv_header;
    /* VDEV identifier */
    A_UINT32 vdev_id;
    /** Number of valid channels in the channels array */
    A_UINT32 num_channels;
    /** The array of channels */
    wmi_ocb_channel_t channels[OCB_CHANNEL_MAX];
    /** 1 to allow off-channel tx, 0 otherwise */
    A_UINT32 off_channel_tx; /* Not supported */
} wmi_ocb_set_sched_cmd_fixed_param;

typedef struct {
    /** Return status. 0 for success, non-zero otherwise */
    A_UINT32 status;
} wmi_ocb_set_sched_event_fixed_param;

/*****************************************************************************
 * END DEPRECATED
 */
// }
/* ADD NEW DEFS ABOVE THIS DEPRECATED SECTION */


#ifdef __cplusplus
}
#endif

#endif /*_WMI_UNIFIED_H_*/

/**@}*/