airtime.c 23 KB

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  1. // SPDX-License-Identifier: ISC
  2. /*
  3. * Copyright (C) 2019 Felix Fietkau <nbd@nbd.name>
  4. * Copyright (C) 2021-2022 Intel Corporation
  5. */
  6. #include <net/mac80211.h>
  7. #include "ieee80211_i.h"
  8. #include "sta_info.h"
  9. #define AVG_PKT_SIZE 1024
  10. /* Number of bits for an average sized packet */
  11. #define MCS_NBITS (AVG_PKT_SIZE << 3)
  12. /* Number of kilo-symbols (symbols * 1024) for a packet with (bps) bits per
  13. * symbol. We use k-symbols to avoid rounding in the _TIME macros below.
  14. */
  15. #define MCS_N_KSYMS(bps) DIV_ROUND_UP(MCS_NBITS << 10, (bps))
  16. /* Transmission time (in 1024 * usec) for a packet containing (ksyms) * 1024
  17. * symbols.
  18. */
  19. #define MCS_SYMBOL_TIME(sgi, ksyms) \
  20. (sgi ? \
  21. ((ksyms) * 4 * 18) / 20 : /* 3.6 us per sym */ \
  22. ((ksyms) * 4) /* 4.0 us per sym */ \
  23. )
  24. /* Transmit duration for the raw data part of an average sized packet */
  25. #define MCS_DURATION(streams, sgi, bps) \
  26. ((u32)MCS_SYMBOL_TIME(sgi, MCS_N_KSYMS((streams) * (bps))))
  27. #define MCS_DURATION_S(shift, streams, sgi, bps) \
  28. ((u16)((MCS_DURATION(streams, sgi, bps) >> shift)))
  29. /* These should match the values in enum nl80211_he_gi */
  30. #define HE_GI_08 0
  31. #define HE_GI_16 1
  32. #define HE_GI_32 2
  33. /* Transmission time (1024 usec) for a packet containing (ksyms) * k-symbols */
  34. #define HE_SYMBOL_TIME(gi, ksyms) \
  35. (gi == HE_GI_08 ? \
  36. ((ksyms) * 16 * 17) / 20 : /* 13.6 us per sym */ \
  37. (gi == HE_GI_16 ? \
  38. ((ksyms) * 16 * 18) / 20 : /* 14.4 us per sym */ \
  39. ((ksyms) * 16) /* 16.0 us per sym */ \
  40. ))
  41. /* Transmit duration for the raw data part of an average sized packet */
  42. #define HE_DURATION(streams, gi, bps) \
  43. ((u32)HE_SYMBOL_TIME(gi, MCS_N_KSYMS((streams) * (bps))))
  44. #define HE_DURATION_S(shift, streams, gi, bps) \
  45. (HE_DURATION(streams, gi, bps) >> shift)
  46. /* gi in HE/EHT is identical. It matches enum nl80211_eht_gi as well */
  47. #define EHT_GI_08 HE_GI_08
  48. #define EHT_GI_16 HE_GI_16
  49. #define EHT_GI_32 HE_GI_32
  50. #define EHT_DURATION(streams, gi, bps) \
  51. HE_DURATION(streams, gi, bps)
  52. #define EHT_DURATION_S(shift, streams, gi, bps) \
  53. HE_DURATION_S(shift, streams, gi, bps)
  54. #define BW_20 0
  55. #define BW_40 1
  56. #define BW_80 2
  57. #define BW_160 3
  58. #define BW_320 4
  59. /*
  60. * Define group sort order: HT40 -> SGI -> #streams
  61. */
  62. #define IEEE80211_MAX_STREAMS 4
  63. #define IEEE80211_HT_STREAM_GROUPS 4 /* BW(=2) * SGI(=2) */
  64. #define IEEE80211_VHT_STREAM_GROUPS 8 /* BW(=4) * SGI(=2) */
  65. #define IEEE80211_HE_MAX_STREAMS 8
  66. #define IEEE80211_HE_STREAM_GROUPS 12 /* BW(=4) * GI(=3) */
  67. #define IEEE80211_EHT_MAX_STREAMS 8
  68. #define IEEE80211_EHT_STREAM_GROUPS 15 /* BW(=5) * GI(=3) */
  69. #define IEEE80211_HT_GROUPS_NB (IEEE80211_MAX_STREAMS * \
  70. IEEE80211_HT_STREAM_GROUPS)
  71. #define IEEE80211_VHT_GROUPS_NB (IEEE80211_MAX_STREAMS * \
  72. IEEE80211_VHT_STREAM_GROUPS)
  73. #define IEEE80211_HE_GROUPS_NB (IEEE80211_HE_MAX_STREAMS * \
  74. IEEE80211_HE_STREAM_GROUPS)
  75. #define IEEE80211_EHT_GROUPS_NB (IEEE80211_EHT_MAX_STREAMS * \
  76. IEEE80211_EHT_STREAM_GROUPS)
  77. #define IEEE80211_HT_GROUP_0 0
  78. #define IEEE80211_VHT_GROUP_0 (IEEE80211_HT_GROUP_0 + IEEE80211_HT_GROUPS_NB)
  79. #define IEEE80211_HE_GROUP_0 (IEEE80211_VHT_GROUP_0 + IEEE80211_VHT_GROUPS_NB)
  80. #define IEEE80211_EHT_GROUP_0 (IEEE80211_HE_GROUP_0 + IEEE80211_HE_GROUPS_NB)
  81. #define MCS_GROUP_RATES 14
  82. #define HT_GROUP_IDX(_streams, _sgi, _ht40) \
  83. IEEE80211_HT_GROUP_0 + \
  84. IEEE80211_MAX_STREAMS * 2 * _ht40 + \
  85. IEEE80211_MAX_STREAMS * _sgi + \
  86. _streams - 1
  87. #define _MAX(a, b) (((a)>(b))?(a):(b))
  88. #define GROUP_SHIFT(duration) \
  89. _MAX(0, 16 - __builtin_clz(duration))
  90. /* MCS rate information for an MCS group */
  91. #define __MCS_GROUP(_streams, _sgi, _ht40, _s) \
  92. [HT_GROUP_IDX(_streams, _sgi, _ht40)] = { \
  93. .shift = _s, \
  94. .duration = { \
  95. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 54 : 26), \
  96. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 108 : 52), \
  97. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 162 : 78), \
  98. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 216 : 104), \
  99. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 324 : 156), \
  100. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 432 : 208), \
  101. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 486 : 234), \
  102. MCS_DURATION_S(_s, _streams, _sgi, _ht40 ? 540 : 260) \
  103. } \
  104. }
  105. #define MCS_GROUP_SHIFT(_streams, _sgi, _ht40) \
  106. GROUP_SHIFT(MCS_DURATION(_streams, _sgi, _ht40 ? 54 : 26))
  107. #define MCS_GROUP(_streams, _sgi, _ht40) \
  108. __MCS_GROUP(_streams, _sgi, _ht40, \
  109. MCS_GROUP_SHIFT(_streams, _sgi, _ht40))
  110. #define VHT_GROUP_IDX(_streams, _sgi, _bw) \
  111. (IEEE80211_VHT_GROUP_0 + \
  112. IEEE80211_MAX_STREAMS * 2 * (_bw) + \
  113. IEEE80211_MAX_STREAMS * (_sgi) + \
  114. (_streams) - 1)
  115. #define BW2VBPS(_bw, r4, r3, r2, r1) \
  116. (_bw == BW_160 ? r4 : _bw == BW_80 ? r3 : _bw == BW_40 ? r2 : r1)
  117. #define __VHT_GROUP(_streams, _sgi, _bw, _s) \
  118. [VHT_GROUP_IDX(_streams, _sgi, _bw)] = { \
  119. .shift = _s, \
  120. .duration = { \
  121. MCS_DURATION_S(_s, _streams, _sgi, \
  122. BW2VBPS(_bw, 234, 117, 54, 26)), \
  123. MCS_DURATION_S(_s, _streams, _sgi, \
  124. BW2VBPS(_bw, 468, 234, 108, 52)), \
  125. MCS_DURATION_S(_s, _streams, _sgi, \
  126. BW2VBPS(_bw, 702, 351, 162, 78)), \
  127. MCS_DURATION_S(_s, _streams, _sgi, \
  128. BW2VBPS(_bw, 936, 468, 216, 104)), \
  129. MCS_DURATION_S(_s, _streams, _sgi, \
  130. BW2VBPS(_bw, 1404, 702, 324, 156)), \
  131. MCS_DURATION_S(_s, _streams, _sgi, \
  132. BW2VBPS(_bw, 1872, 936, 432, 208)), \
  133. MCS_DURATION_S(_s, _streams, _sgi, \
  134. BW2VBPS(_bw, 2106, 1053, 486, 234)), \
  135. MCS_DURATION_S(_s, _streams, _sgi, \
  136. BW2VBPS(_bw, 2340, 1170, 540, 260)), \
  137. MCS_DURATION_S(_s, _streams, _sgi, \
  138. BW2VBPS(_bw, 2808, 1404, 648, 312)), \
  139. MCS_DURATION_S(_s, _streams, _sgi, \
  140. BW2VBPS(_bw, 3120, 1560, 720, 346)) \
  141. } \
  142. }
  143. #define VHT_GROUP_SHIFT(_streams, _sgi, _bw) \
  144. GROUP_SHIFT(MCS_DURATION(_streams, _sgi, \
  145. BW2VBPS(_bw, 243, 117, 54, 26)))
  146. #define VHT_GROUP(_streams, _sgi, _bw) \
  147. __VHT_GROUP(_streams, _sgi, _bw, \
  148. VHT_GROUP_SHIFT(_streams, _sgi, _bw))
  149. #define HE_GROUP_IDX(_streams, _gi, _bw) \
  150. (IEEE80211_HE_GROUP_0 + \
  151. IEEE80211_HE_MAX_STREAMS * 3 * (_bw) + \
  152. IEEE80211_HE_MAX_STREAMS * (_gi) + \
  153. (_streams) - 1)
  154. #define __HE_GROUP(_streams, _gi, _bw, _s) \
  155. [HE_GROUP_IDX(_streams, _gi, _bw)] = { \
  156. .shift = _s, \
  157. .duration = { \
  158. HE_DURATION_S(_s, _streams, _gi, \
  159. BW2VBPS(_bw, 979, 489, 230, 115)), \
  160. HE_DURATION_S(_s, _streams, _gi, \
  161. BW2VBPS(_bw, 1958, 979, 475, 230)), \
  162. HE_DURATION_S(_s, _streams, _gi, \
  163. BW2VBPS(_bw, 2937, 1468, 705, 345)), \
  164. HE_DURATION_S(_s, _streams, _gi, \
  165. BW2VBPS(_bw, 3916, 1958, 936, 475)), \
  166. HE_DURATION_S(_s, _streams, _gi, \
  167. BW2VBPS(_bw, 5875, 2937, 1411, 705)), \
  168. HE_DURATION_S(_s, _streams, _gi, \
  169. BW2VBPS(_bw, 7833, 3916, 1872, 936)), \
  170. HE_DURATION_S(_s, _streams, _gi, \
  171. BW2VBPS(_bw, 8827, 4406, 2102, 1051)), \
  172. HE_DURATION_S(_s, _streams, _gi, \
  173. BW2VBPS(_bw, 9806, 4896, 2347, 1166)), \
  174. HE_DURATION_S(_s, _streams, _gi, \
  175. BW2VBPS(_bw, 11764, 5875, 2808, 1411)), \
  176. HE_DURATION_S(_s, _streams, _gi, \
  177. BW2VBPS(_bw, 13060, 6523, 3124, 1555)), \
  178. HE_DURATION_S(_s, _streams, _gi, \
  179. BW2VBPS(_bw, 14702, 7344, 3513, 1756)), \
  180. HE_DURATION_S(_s, _streams, _gi, \
  181. BW2VBPS(_bw, 16329, 8164, 3902, 1944)) \
  182. } \
  183. }
  184. #define HE_GROUP_SHIFT(_streams, _gi, _bw) \
  185. GROUP_SHIFT(HE_DURATION(_streams, _gi, \
  186. BW2VBPS(_bw, 979, 489, 230, 115)))
  187. #define HE_GROUP(_streams, _gi, _bw) \
  188. __HE_GROUP(_streams, _gi, _bw, \
  189. HE_GROUP_SHIFT(_streams, _gi, _bw))
  190. #define EHT_BW2VBPS(_bw, r5, r4, r3, r2, r1) \
  191. ((_bw) == BW_320 ? r5 : BW2VBPS(_bw, r4, r3, r2, r1))
  192. #define EHT_GROUP_IDX(_streams, _gi, _bw) \
  193. (IEEE80211_EHT_GROUP_0 + \
  194. IEEE80211_EHT_MAX_STREAMS * 3 * (_bw) + \
  195. IEEE80211_EHT_MAX_STREAMS * (_gi) + \
  196. (_streams) - 1)
  197. #define __EHT_GROUP(_streams, _gi, _bw, _s) \
  198. [EHT_GROUP_IDX(_streams, _gi, _bw)] = { \
  199. .shift = _s, \
  200. .duration = { \
  201. EHT_DURATION_S(_s, _streams, _gi, \
  202. EHT_BW2VBPS(_bw, 1960, 980, 490, 234, 117)), \
  203. EHT_DURATION_S(_s, _streams, _gi, \
  204. EHT_BW2VBPS(_bw, 3920, 1960, 980, 468, 234)), \
  205. EHT_DURATION_S(_s, _streams, _gi, \
  206. EHT_BW2VBPS(_bw, 5880, 2937, 1470, 702, 351)), \
  207. EHT_DURATION_S(_s, _streams, _gi, \
  208. EHT_BW2VBPS(_bw, 7840, 3920, 1960, 936, 468)), \
  209. EHT_DURATION_S(_s, _streams, _gi, \
  210. EHT_BW2VBPS(_bw, 11760, 5880, 2940, 1404, 702)), \
  211. EHT_DURATION_S(_s, _streams, _gi, \
  212. EHT_BW2VBPS(_bw, 15680, 7840, 3920, 1872, 936)), \
  213. EHT_DURATION_S(_s, _streams, _gi, \
  214. EHT_BW2VBPS(_bw, 17640, 8820, 4410, 2106, 1053)), \
  215. EHT_DURATION_S(_s, _streams, _gi, \
  216. EHT_BW2VBPS(_bw, 19600, 9800, 4900, 2340, 1170)), \
  217. EHT_DURATION_S(_s, _streams, _gi, \
  218. EHT_BW2VBPS(_bw, 23520, 11760, 5880, 2808, 1404)), \
  219. EHT_DURATION_S(_s, _streams, _gi, \
  220. EHT_BW2VBPS(_bw, 26133, 13066, 6533, 3120, 1560)), \
  221. EHT_DURATION_S(_s, _streams, _gi, \
  222. EHT_BW2VBPS(_bw, 29400, 14700, 7350, 3510, 1755)), \
  223. EHT_DURATION_S(_s, _streams, _gi, \
  224. EHT_BW2VBPS(_bw, 32666, 16333, 8166, 3900, 1950)), \
  225. EHT_DURATION_S(_s, _streams, _gi, \
  226. EHT_BW2VBPS(_bw, 35280, 17640, 8820, 4212, 2106)), \
  227. EHT_DURATION_S(_s, _streams, _gi, \
  228. EHT_BW2VBPS(_bw, 39200, 19600, 9800, 4680, 2340)) \
  229. } \
  230. }
  231. #define EHT_GROUP_SHIFT(_streams, _gi, _bw) \
  232. GROUP_SHIFT(EHT_DURATION(_streams, _gi, \
  233. EHT_BW2VBPS(_bw, 1960, 980, 490, 234, 117)))
  234. #define EHT_GROUP(_streams, _gi, _bw) \
  235. __EHT_GROUP(_streams, _gi, _bw, \
  236. EHT_GROUP_SHIFT(_streams, _gi, _bw))
  237. #define EHT_GROUP_RANGE(_gi, _bw) \
  238. EHT_GROUP(1, _gi, _bw), \
  239. EHT_GROUP(2, _gi, _bw), \
  240. EHT_GROUP(3, _gi, _bw), \
  241. EHT_GROUP(4, _gi, _bw), \
  242. EHT_GROUP(5, _gi, _bw), \
  243. EHT_GROUP(6, _gi, _bw), \
  244. EHT_GROUP(7, _gi, _bw), \
  245. EHT_GROUP(8, _gi, _bw)
  246. struct mcs_group {
  247. u8 shift;
  248. u16 duration[MCS_GROUP_RATES];
  249. };
  250. static const struct mcs_group airtime_mcs_groups[] = {
  251. MCS_GROUP(1, 0, BW_20),
  252. MCS_GROUP(2, 0, BW_20),
  253. MCS_GROUP(3, 0, BW_20),
  254. MCS_GROUP(4, 0, BW_20),
  255. MCS_GROUP(1, 1, BW_20),
  256. MCS_GROUP(2, 1, BW_20),
  257. MCS_GROUP(3, 1, BW_20),
  258. MCS_GROUP(4, 1, BW_20),
  259. MCS_GROUP(1, 0, BW_40),
  260. MCS_GROUP(2, 0, BW_40),
  261. MCS_GROUP(3, 0, BW_40),
  262. MCS_GROUP(4, 0, BW_40),
  263. MCS_GROUP(1, 1, BW_40),
  264. MCS_GROUP(2, 1, BW_40),
  265. MCS_GROUP(3, 1, BW_40),
  266. MCS_GROUP(4, 1, BW_40),
  267. VHT_GROUP(1, 0, BW_20),
  268. VHT_GROUP(2, 0, BW_20),
  269. VHT_GROUP(3, 0, BW_20),
  270. VHT_GROUP(4, 0, BW_20),
  271. VHT_GROUP(1, 1, BW_20),
  272. VHT_GROUP(2, 1, BW_20),
  273. VHT_GROUP(3, 1, BW_20),
  274. VHT_GROUP(4, 1, BW_20),
  275. VHT_GROUP(1, 0, BW_40),
  276. VHT_GROUP(2, 0, BW_40),
  277. VHT_GROUP(3, 0, BW_40),
  278. VHT_GROUP(4, 0, BW_40),
  279. VHT_GROUP(1, 1, BW_40),
  280. VHT_GROUP(2, 1, BW_40),
  281. VHT_GROUP(3, 1, BW_40),
  282. VHT_GROUP(4, 1, BW_40),
  283. VHT_GROUP(1, 0, BW_80),
  284. VHT_GROUP(2, 0, BW_80),
  285. VHT_GROUP(3, 0, BW_80),
  286. VHT_GROUP(4, 0, BW_80),
  287. VHT_GROUP(1, 1, BW_80),
  288. VHT_GROUP(2, 1, BW_80),
  289. VHT_GROUP(3, 1, BW_80),
  290. VHT_GROUP(4, 1, BW_80),
  291. VHT_GROUP(1, 0, BW_160),
  292. VHT_GROUP(2, 0, BW_160),
  293. VHT_GROUP(3, 0, BW_160),
  294. VHT_GROUP(4, 0, BW_160),
  295. VHT_GROUP(1, 1, BW_160),
  296. VHT_GROUP(2, 1, BW_160),
  297. VHT_GROUP(3, 1, BW_160),
  298. VHT_GROUP(4, 1, BW_160),
  299. HE_GROUP(1, HE_GI_08, BW_20),
  300. HE_GROUP(2, HE_GI_08, BW_20),
  301. HE_GROUP(3, HE_GI_08, BW_20),
  302. HE_GROUP(4, HE_GI_08, BW_20),
  303. HE_GROUP(5, HE_GI_08, BW_20),
  304. HE_GROUP(6, HE_GI_08, BW_20),
  305. HE_GROUP(7, HE_GI_08, BW_20),
  306. HE_GROUP(8, HE_GI_08, BW_20),
  307. HE_GROUP(1, HE_GI_16, BW_20),
  308. HE_GROUP(2, HE_GI_16, BW_20),
  309. HE_GROUP(3, HE_GI_16, BW_20),
  310. HE_GROUP(4, HE_GI_16, BW_20),
  311. HE_GROUP(5, HE_GI_16, BW_20),
  312. HE_GROUP(6, HE_GI_16, BW_20),
  313. HE_GROUP(7, HE_GI_16, BW_20),
  314. HE_GROUP(8, HE_GI_16, BW_20),
  315. HE_GROUP(1, HE_GI_32, BW_20),
  316. HE_GROUP(2, HE_GI_32, BW_20),
  317. HE_GROUP(3, HE_GI_32, BW_20),
  318. HE_GROUP(4, HE_GI_32, BW_20),
  319. HE_GROUP(5, HE_GI_32, BW_20),
  320. HE_GROUP(6, HE_GI_32, BW_20),
  321. HE_GROUP(7, HE_GI_32, BW_20),
  322. HE_GROUP(8, HE_GI_32, BW_20),
  323. HE_GROUP(1, HE_GI_08, BW_40),
  324. HE_GROUP(2, HE_GI_08, BW_40),
  325. HE_GROUP(3, HE_GI_08, BW_40),
  326. HE_GROUP(4, HE_GI_08, BW_40),
  327. HE_GROUP(5, HE_GI_08, BW_40),
  328. HE_GROUP(6, HE_GI_08, BW_40),
  329. HE_GROUP(7, HE_GI_08, BW_40),
  330. HE_GROUP(8, HE_GI_08, BW_40),
  331. HE_GROUP(1, HE_GI_16, BW_40),
  332. HE_GROUP(2, HE_GI_16, BW_40),
  333. HE_GROUP(3, HE_GI_16, BW_40),
  334. HE_GROUP(4, HE_GI_16, BW_40),
  335. HE_GROUP(5, HE_GI_16, BW_40),
  336. HE_GROUP(6, HE_GI_16, BW_40),
  337. HE_GROUP(7, HE_GI_16, BW_40),
  338. HE_GROUP(8, HE_GI_16, BW_40),
  339. HE_GROUP(1, HE_GI_32, BW_40),
  340. HE_GROUP(2, HE_GI_32, BW_40),
  341. HE_GROUP(3, HE_GI_32, BW_40),
  342. HE_GROUP(4, HE_GI_32, BW_40),
  343. HE_GROUP(5, HE_GI_32, BW_40),
  344. HE_GROUP(6, HE_GI_32, BW_40),
  345. HE_GROUP(7, HE_GI_32, BW_40),
  346. HE_GROUP(8, HE_GI_32, BW_40),
  347. HE_GROUP(1, HE_GI_08, BW_80),
  348. HE_GROUP(2, HE_GI_08, BW_80),
  349. HE_GROUP(3, HE_GI_08, BW_80),
  350. HE_GROUP(4, HE_GI_08, BW_80),
  351. HE_GROUP(5, HE_GI_08, BW_80),
  352. HE_GROUP(6, HE_GI_08, BW_80),
  353. HE_GROUP(7, HE_GI_08, BW_80),
  354. HE_GROUP(8, HE_GI_08, BW_80),
  355. HE_GROUP(1, HE_GI_16, BW_80),
  356. HE_GROUP(2, HE_GI_16, BW_80),
  357. HE_GROUP(3, HE_GI_16, BW_80),
  358. HE_GROUP(4, HE_GI_16, BW_80),
  359. HE_GROUP(5, HE_GI_16, BW_80),
  360. HE_GROUP(6, HE_GI_16, BW_80),
  361. HE_GROUP(7, HE_GI_16, BW_80),
  362. HE_GROUP(8, HE_GI_16, BW_80),
  363. HE_GROUP(1, HE_GI_32, BW_80),
  364. HE_GROUP(2, HE_GI_32, BW_80),
  365. HE_GROUP(3, HE_GI_32, BW_80),
  366. HE_GROUP(4, HE_GI_32, BW_80),
  367. HE_GROUP(5, HE_GI_32, BW_80),
  368. HE_GROUP(6, HE_GI_32, BW_80),
  369. HE_GROUP(7, HE_GI_32, BW_80),
  370. HE_GROUP(8, HE_GI_32, BW_80),
  371. HE_GROUP(1, HE_GI_08, BW_160),
  372. HE_GROUP(2, HE_GI_08, BW_160),
  373. HE_GROUP(3, HE_GI_08, BW_160),
  374. HE_GROUP(4, HE_GI_08, BW_160),
  375. HE_GROUP(5, HE_GI_08, BW_160),
  376. HE_GROUP(6, HE_GI_08, BW_160),
  377. HE_GROUP(7, HE_GI_08, BW_160),
  378. HE_GROUP(8, HE_GI_08, BW_160),
  379. HE_GROUP(1, HE_GI_16, BW_160),
  380. HE_GROUP(2, HE_GI_16, BW_160),
  381. HE_GROUP(3, HE_GI_16, BW_160),
  382. HE_GROUP(4, HE_GI_16, BW_160),
  383. HE_GROUP(5, HE_GI_16, BW_160),
  384. HE_GROUP(6, HE_GI_16, BW_160),
  385. HE_GROUP(7, HE_GI_16, BW_160),
  386. HE_GROUP(8, HE_GI_16, BW_160),
  387. HE_GROUP(1, HE_GI_32, BW_160),
  388. HE_GROUP(2, HE_GI_32, BW_160),
  389. HE_GROUP(3, HE_GI_32, BW_160),
  390. HE_GROUP(4, HE_GI_32, BW_160),
  391. HE_GROUP(5, HE_GI_32, BW_160),
  392. HE_GROUP(6, HE_GI_32, BW_160),
  393. HE_GROUP(7, HE_GI_32, BW_160),
  394. HE_GROUP(8, HE_GI_32, BW_160),
  395. EHT_GROUP_RANGE(EHT_GI_08, BW_20),
  396. EHT_GROUP_RANGE(EHT_GI_16, BW_20),
  397. EHT_GROUP_RANGE(EHT_GI_32, BW_20),
  398. EHT_GROUP_RANGE(EHT_GI_08, BW_40),
  399. EHT_GROUP_RANGE(EHT_GI_16, BW_40),
  400. EHT_GROUP_RANGE(EHT_GI_32, BW_40),
  401. EHT_GROUP_RANGE(EHT_GI_08, BW_80),
  402. EHT_GROUP_RANGE(EHT_GI_16, BW_80),
  403. EHT_GROUP_RANGE(EHT_GI_32, BW_80),
  404. EHT_GROUP_RANGE(EHT_GI_08, BW_160),
  405. EHT_GROUP_RANGE(EHT_GI_16, BW_160),
  406. EHT_GROUP_RANGE(EHT_GI_32, BW_160),
  407. EHT_GROUP_RANGE(EHT_GI_08, BW_320),
  408. EHT_GROUP_RANGE(EHT_GI_16, BW_320),
  409. EHT_GROUP_RANGE(EHT_GI_32, BW_320),
  410. };
  411. static u32
  412. ieee80211_calc_legacy_rate_duration(u16 bitrate, bool short_pre,
  413. bool cck, int len)
  414. {
  415. u32 duration;
  416. if (cck) {
  417. duration = 144 + 48; /* preamble + PLCP */
  418. if (short_pre)
  419. duration >>= 1;
  420. duration += 10; /* SIFS */
  421. } else {
  422. duration = 20 + 16; /* premable + SIFS */
  423. }
  424. len <<= 3;
  425. duration += (len * 10) / bitrate;
  426. return duration;
  427. }
  428. static u32 ieee80211_get_rate_duration(struct ieee80211_hw *hw,
  429. struct ieee80211_rx_status *status,
  430. u32 *overhead)
  431. {
  432. bool sgi = status->enc_flags & RX_ENC_FLAG_SHORT_GI;
  433. int bw, streams;
  434. int group, idx;
  435. u32 duration;
  436. switch (status->bw) {
  437. case RATE_INFO_BW_20:
  438. bw = BW_20;
  439. break;
  440. case RATE_INFO_BW_40:
  441. bw = BW_40;
  442. break;
  443. case RATE_INFO_BW_80:
  444. bw = BW_80;
  445. break;
  446. case RATE_INFO_BW_160:
  447. bw = BW_160;
  448. break;
  449. case RATE_INFO_BW_320:
  450. bw = BW_320;
  451. break;
  452. default:
  453. WARN_ON_ONCE(1);
  454. return 0;
  455. }
  456. switch (status->encoding) {
  457. case RX_ENC_VHT:
  458. streams = status->nss;
  459. idx = status->rate_idx;
  460. group = VHT_GROUP_IDX(streams, sgi, bw);
  461. break;
  462. case RX_ENC_HT:
  463. streams = ((status->rate_idx >> 3) & 3) + 1;
  464. idx = status->rate_idx & 7;
  465. group = HT_GROUP_IDX(streams, sgi, bw);
  466. break;
  467. case RX_ENC_HE:
  468. streams = status->nss;
  469. idx = status->rate_idx;
  470. group = HE_GROUP_IDX(streams, status->he_gi, bw);
  471. break;
  472. case RX_ENC_EHT:
  473. streams = status->nss;
  474. idx = status->rate_idx;
  475. group = EHT_GROUP_IDX(streams, status->eht.gi, bw);
  476. break;
  477. default:
  478. WARN_ON_ONCE(1);
  479. return 0;
  480. }
  481. switch (status->encoding) {
  482. case RX_ENC_EHT:
  483. case RX_ENC_HE:
  484. if (WARN_ON_ONCE(streams > 8))
  485. return 0;
  486. break;
  487. default:
  488. if (WARN_ON_ONCE(streams > 4))
  489. return 0;
  490. break;
  491. }
  492. if (idx >= MCS_GROUP_RATES)
  493. return 0;
  494. duration = airtime_mcs_groups[group].duration[idx];
  495. duration <<= airtime_mcs_groups[group].shift;
  496. *overhead = 36 + (streams << 2);
  497. return duration;
  498. }
  499. u32 ieee80211_calc_rx_airtime(struct ieee80211_hw *hw,
  500. struct ieee80211_rx_status *status,
  501. int len)
  502. {
  503. struct ieee80211_supported_band *sband;
  504. u32 duration, overhead = 0;
  505. if (status->encoding == RX_ENC_LEGACY) {
  506. const struct ieee80211_rate *rate;
  507. bool sp = status->enc_flags & RX_ENC_FLAG_SHORTPRE;
  508. bool cck;
  509. /* on 60GHz or sub-1GHz band, there are no legacy rates */
  510. if (WARN_ON_ONCE(status->band == NL80211_BAND_60GHZ ||
  511. status->band == NL80211_BAND_S1GHZ))
  512. return 0;
  513. sband = hw->wiphy->bands[status->band];
  514. if (!sband || status->rate_idx >= sband->n_bitrates)
  515. return 0;
  516. rate = &sband->bitrates[status->rate_idx];
  517. cck = rate->flags & IEEE80211_RATE_MANDATORY_B;
  518. return ieee80211_calc_legacy_rate_duration(rate->bitrate, sp,
  519. cck, len);
  520. }
  521. duration = ieee80211_get_rate_duration(hw, status, &overhead);
  522. if (!duration)
  523. return 0;
  524. duration *= len;
  525. duration /= AVG_PKT_SIZE;
  526. duration /= 1024;
  527. return duration + overhead;
  528. }
  529. EXPORT_SYMBOL_GPL(ieee80211_calc_rx_airtime);
  530. static bool ieee80211_fill_rate_info(struct ieee80211_hw *hw,
  531. struct ieee80211_rx_status *stat, u8 band,
  532. struct rate_info *ri)
  533. {
  534. struct ieee80211_supported_band *sband = hw->wiphy->bands[band];
  535. int i;
  536. if (!ri || !sband)
  537. return false;
  538. stat->bw = ri->bw;
  539. stat->nss = ri->nss;
  540. stat->rate_idx = ri->mcs;
  541. if (ri->flags & RATE_INFO_FLAGS_EHT_MCS)
  542. stat->encoding = RX_ENC_EHT;
  543. else if (ri->flags & RATE_INFO_FLAGS_HE_MCS)
  544. stat->encoding = RX_ENC_HE;
  545. else if (ri->flags & RATE_INFO_FLAGS_VHT_MCS)
  546. stat->encoding = RX_ENC_VHT;
  547. else if (ri->flags & RATE_INFO_FLAGS_MCS)
  548. stat->encoding = RX_ENC_HT;
  549. else
  550. stat->encoding = RX_ENC_LEGACY;
  551. if (ri->flags & RATE_INFO_FLAGS_SHORT_GI)
  552. stat->enc_flags |= RX_ENC_FLAG_SHORT_GI;
  553. switch (stat->encoding) {
  554. case RX_ENC_EHT:
  555. stat->eht.gi = ri->eht_gi;
  556. break;
  557. default:
  558. stat->he_gi = ri->he_gi;
  559. break;
  560. }
  561. if (stat->encoding != RX_ENC_LEGACY)
  562. return true;
  563. stat->rate_idx = 0;
  564. for (i = 0; i < sband->n_bitrates; i++) {
  565. if (ri->legacy != sband->bitrates[i].bitrate)
  566. continue;
  567. stat->rate_idx = i;
  568. return true;
  569. }
  570. return false;
  571. }
  572. static int ieee80211_fill_rx_status(struct ieee80211_rx_status *stat,
  573. struct ieee80211_hw *hw,
  574. struct ieee80211_tx_rate *rate,
  575. struct rate_info *ri, u8 band, int len)
  576. {
  577. memset(stat, 0, sizeof(*stat));
  578. stat->band = band;
  579. if (ieee80211_fill_rate_info(hw, stat, band, ri))
  580. return 0;
  581. if (!ieee80211_rate_valid(rate))
  582. return -1;
  583. if (rate->flags & IEEE80211_TX_RC_160_MHZ_WIDTH)
  584. stat->bw = RATE_INFO_BW_160;
  585. else if (rate->flags & IEEE80211_TX_RC_80_MHZ_WIDTH)
  586. stat->bw = RATE_INFO_BW_80;
  587. else if (rate->flags & IEEE80211_TX_RC_40_MHZ_WIDTH)
  588. stat->bw = RATE_INFO_BW_40;
  589. else
  590. stat->bw = RATE_INFO_BW_20;
  591. stat->enc_flags = 0;
  592. if (rate->flags & IEEE80211_TX_RC_USE_SHORT_PREAMBLE)
  593. stat->enc_flags |= RX_ENC_FLAG_SHORTPRE;
  594. if (rate->flags & IEEE80211_TX_RC_SHORT_GI)
  595. stat->enc_flags |= RX_ENC_FLAG_SHORT_GI;
  596. stat->rate_idx = rate->idx;
  597. if (rate->flags & IEEE80211_TX_RC_VHT_MCS) {
  598. stat->encoding = RX_ENC_VHT;
  599. stat->rate_idx = ieee80211_rate_get_vht_mcs(rate);
  600. stat->nss = ieee80211_rate_get_vht_nss(rate);
  601. } else if (rate->flags & IEEE80211_TX_RC_MCS) {
  602. stat->encoding = RX_ENC_HT;
  603. } else {
  604. stat->encoding = RX_ENC_LEGACY;
  605. }
  606. return 0;
  607. }
  608. static u32 ieee80211_calc_tx_airtime_rate(struct ieee80211_hw *hw,
  609. struct ieee80211_tx_rate *rate,
  610. struct rate_info *ri,
  611. u8 band, int len)
  612. {
  613. struct ieee80211_rx_status stat;
  614. if (ieee80211_fill_rx_status(&stat, hw, rate, ri, band, len))
  615. return 0;
  616. return ieee80211_calc_rx_airtime(hw, &stat, len);
  617. }
  618. u32 ieee80211_calc_tx_airtime(struct ieee80211_hw *hw,
  619. struct ieee80211_tx_info *info,
  620. int len)
  621. {
  622. u32 duration = 0;
  623. int i;
  624. for (i = 0; i < ARRAY_SIZE(info->status.rates); i++) {
  625. struct ieee80211_tx_rate *rate = &info->status.rates[i];
  626. u32 cur_duration;
  627. cur_duration = ieee80211_calc_tx_airtime_rate(hw, rate, NULL,
  628. info->band, len);
  629. if (!cur_duration)
  630. break;
  631. duration += cur_duration * rate->count;
  632. }
  633. return duration;
  634. }
  635. EXPORT_SYMBOL_GPL(ieee80211_calc_tx_airtime);
  636. u32 ieee80211_calc_expected_tx_airtime(struct ieee80211_hw *hw,
  637. struct ieee80211_vif *vif,
  638. struct ieee80211_sta *pubsta,
  639. int len, bool ampdu)
  640. {
  641. struct ieee80211_supported_band *sband;
  642. struct ieee80211_chanctx_conf *conf;
  643. int rateidx;
  644. bool cck, short_pream;
  645. u32 basic_rates;
  646. u8 band = 0;
  647. u16 rate;
  648. len += 38; /* Ethernet header length */
  649. conf = rcu_dereference(vif->bss_conf.chanctx_conf);
  650. if (conf)
  651. band = conf->def.chan->band;
  652. if (pubsta) {
  653. struct sta_info *sta = container_of(pubsta, struct sta_info,
  654. sta);
  655. struct ieee80211_rx_status stat;
  656. struct ieee80211_tx_rate *tx_rate = &sta->deflink.tx_stats.last_rate;
  657. struct rate_info *ri = &sta->deflink.tx_stats.last_rate_info;
  658. u32 duration, overhead;
  659. u8 agg_shift;
  660. if (ieee80211_fill_rx_status(&stat, hw, tx_rate, ri, band, len))
  661. return 0;
  662. if (stat.encoding == RX_ENC_LEGACY || !ampdu)
  663. return ieee80211_calc_rx_airtime(hw, &stat, len);
  664. duration = ieee80211_get_rate_duration(hw, &stat, &overhead);
  665. /*
  666. * Assume that HT/VHT transmission on any AC except VO will
  667. * use aggregation. Since we don't have reliable reporting
  668. * of aggregation length, assume an average size based on the
  669. * tx rate.
  670. * This will not be very accurate, but much better than simply
  671. * assuming un-aggregated tx in all cases.
  672. */
  673. if (duration > 400 * 1024) /* <= VHT20 MCS2 1S */
  674. agg_shift = 1;
  675. else if (duration > 250 * 1024) /* <= VHT20 MCS3 1S or MCS1 2S */
  676. agg_shift = 2;
  677. else if (duration > 150 * 1024) /* <= VHT20 MCS5 1S or MCS2 2S */
  678. agg_shift = 3;
  679. else if (duration > 70 * 1024) /* <= VHT20 MCS5 2S */
  680. agg_shift = 4;
  681. else if (stat.encoding != RX_ENC_HE ||
  682. duration > 20 * 1024) /* <= HE40 MCS6 2S */
  683. agg_shift = 5;
  684. else
  685. agg_shift = 6;
  686. duration *= len;
  687. duration /= AVG_PKT_SIZE;
  688. duration /= 1024;
  689. duration += (overhead >> agg_shift);
  690. return max_t(u32, duration, 4);
  691. }
  692. if (!conf)
  693. return 0;
  694. /* No station to get latest rate from, so calculate the worst-case
  695. * duration using the lowest configured basic rate.
  696. */
  697. sband = hw->wiphy->bands[band];
  698. basic_rates = vif->bss_conf.basic_rates;
  699. short_pream = vif->bss_conf.use_short_preamble;
  700. rateidx = basic_rates ? ffs(basic_rates) - 1 : 0;
  701. rate = sband->bitrates[rateidx].bitrate;
  702. cck = sband->bitrates[rateidx].flags & IEEE80211_RATE_MANDATORY_B;
  703. return ieee80211_calc_legacy_rate_duration(rate, short_pream, cck, len);
  704. }