rs.c 115 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright(c) 2005 - 2014 Intel Corporation. All rights reserved.
  4. * Copyright(c) 2013 - 2015 Intel Mobile Communications GmbH
  5. * Copyright(c) 2016 Intel Deutschland GmbH
  6. *
  7. * This program is free software; you can redistribute it and/or modify it
  8. * under the terms of version 2 of the GNU General Public License as
  9. * published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope that it will be useful, but WITHOUT
  12. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  13. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  14. * more details.
  15. *
  16. * You should have received a copy of the GNU General Public License along with
  17. * this program; if not, write to the Free Software Foundation, Inc.,
  18. * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
  19. *
  20. * The full GNU General Public License is included in this distribution in the
  21. * file called LICENSE.
  22. *
  23. * Contact Information:
  24. * Intel Linux Wireless <linuxwifi@intel.com>
  25. * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  26. *
  27. *****************************************************************************/
  28. #include <linux/kernel.h>
  29. #include <linux/skbuff.h>
  30. #include <linux/slab.h>
  31. #include <net/mac80211.h>
  32. #include <linux/netdevice.h>
  33. #include <linux/etherdevice.h>
  34. #include <linux/delay.h>
  35. #include <linux/workqueue.h>
  36. #include "rs.h"
  37. #include "fw-api.h"
  38. #include "sta.h"
  39. #include "iwl-op-mode.h"
  40. #include "mvm.h"
  41. #include "debugfs.h"
  42. #define RS_NAME "iwl-mvm-rs"
  43. #define IWL_RATE_MAX_WINDOW 62 /* # tx in history window */
  44. /* Calculations of success ratio are done in fixed point where 12800 is 100%.
  45. * Use this macro when dealing with thresholds consts set as a percentage
  46. */
  47. #define RS_PERCENT(x) (128 * x)
  48. static u8 rs_ht_to_legacy[] = {
  49. [IWL_RATE_MCS_0_INDEX] = IWL_RATE_6M_INDEX,
  50. [IWL_RATE_MCS_1_INDEX] = IWL_RATE_9M_INDEX,
  51. [IWL_RATE_MCS_2_INDEX] = IWL_RATE_12M_INDEX,
  52. [IWL_RATE_MCS_3_INDEX] = IWL_RATE_18M_INDEX,
  53. [IWL_RATE_MCS_4_INDEX] = IWL_RATE_24M_INDEX,
  54. [IWL_RATE_MCS_5_INDEX] = IWL_RATE_36M_INDEX,
  55. [IWL_RATE_MCS_6_INDEX] = IWL_RATE_48M_INDEX,
  56. [IWL_RATE_MCS_7_INDEX] = IWL_RATE_54M_INDEX,
  57. [IWL_RATE_MCS_8_INDEX] = IWL_RATE_54M_INDEX,
  58. [IWL_RATE_MCS_9_INDEX] = IWL_RATE_54M_INDEX,
  59. };
  60. static const u8 ant_toggle_lookup[] = {
  61. [ANT_NONE] = ANT_NONE,
  62. [ANT_A] = ANT_B,
  63. [ANT_B] = ANT_C,
  64. [ANT_AB] = ANT_BC,
  65. [ANT_C] = ANT_A,
  66. [ANT_AC] = ANT_AB,
  67. [ANT_BC] = ANT_AC,
  68. [ANT_ABC] = ANT_ABC,
  69. };
  70. #define IWL_DECLARE_RATE_INFO(r, s, rp, rn) \
  71. [IWL_RATE_##r##M_INDEX] = { IWL_RATE_##r##M_PLCP, \
  72. IWL_RATE_HT_SISO_MCS_##s##_PLCP, \
  73. IWL_RATE_HT_MIMO2_MCS_##s##_PLCP, \
  74. IWL_RATE_VHT_SISO_MCS_##s##_PLCP, \
  75. IWL_RATE_VHT_MIMO2_MCS_##s##_PLCP,\
  76. IWL_RATE_##rp##M_INDEX, \
  77. IWL_RATE_##rn##M_INDEX }
  78. #define IWL_DECLARE_MCS_RATE(s) \
  79. [IWL_RATE_MCS_##s##_INDEX] = { IWL_RATE_INVM_PLCP, \
  80. IWL_RATE_HT_SISO_MCS_##s##_PLCP, \
  81. IWL_RATE_HT_MIMO2_MCS_##s##_PLCP, \
  82. IWL_RATE_VHT_SISO_MCS_##s##_PLCP, \
  83. IWL_RATE_VHT_MIMO2_MCS_##s##_PLCP, \
  84. IWL_RATE_INVM_INDEX, \
  85. IWL_RATE_INVM_INDEX }
  86. /*
  87. * Parameter order:
  88. * rate, ht rate, prev rate, next rate
  89. *
  90. * If there isn't a valid next or previous rate then INV is used which
  91. * maps to IWL_RATE_INVALID
  92. *
  93. */
  94. static const struct iwl_rs_rate_info iwl_rates[IWL_RATE_COUNT] = {
  95. IWL_DECLARE_RATE_INFO(1, INV, INV, 2), /* 1mbps */
  96. IWL_DECLARE_RATE_INFO(2, INV, 1, 5), /* 2mbps */
  97. IWL_DECLARE_RATE_INFO(5, INV, 2, 11), /*5.5mbps */
  98. IWL_DECLARE_RATE_INFO(11, INV, 9, 12), /* 11mbps */
  99. IWL_DECLARE_RATE_INFO(6, 0, 5, 11), /* 6mbps ; MCS 0 */
  100. IWL_DECLARE_RATE_INFO(9, INV, 6, 11), /* 9mbps */
  101. IWL_DECLARE_RATE_INFO(12, 1, 11, 18), /* 12mbps ; MCS 1 */
  102. IWL_DECLARE_RATE_INFO(18, 2, 12, 24), /* 18mbps ; MCS 2 */
  103. IWL_DECLARE_RATE_INFO(24, 3, 18, 36), /* 24mbps ; MCS 3 */
  104. IWL_DECLARE_RATE_INFO(36, 4, 24, 48), /* 36mbps ; MCS 4 */
  105. IWL_DECLARE_RATE_INFO(48, 5, 36, 54), /* 48mbps ; MCS 5 */
  106. IWL_DECLARE_RATE_INFO(54, 6, 48, INV), /* 54mbps ; MCS 6 */
  107. IWL_DECLARE_MCS_RATE(7), /* MCS 7 */
  108. IWL_DECLARE_MCS_RATE(8), /* MCS 8 */
  109. IWL_DECLARE_MCS_RATE(9), /* MCS 9 */
  110. };
  111. enum rs_action {
  112. RS_ACTION_STAY = 0,
  113. RS_ACTION_DOWNSCALE = -1,
  114. RS_ACTION_UPSCALE = 1,
  115. };
  116. enum rs_column_mode {
  117. RS_INVALID = 0,
  118. RS_LEGACY,
  119. RS_SISO,
  120. RS_MIMO2,
  121. };
  122. #define MAX_NEXT_COLUMNS 7
  123. #define MAX_COLUMN_CHECKS 3
  124. struct rs_tx_column;
  125. typedef bool (*allow_column_func_t) (struct iwl_mvm *mvm,
  126. struct ieee80211_sta *sta,
  127. struct rs_rate *rate,
  128. const struct rs_tx_column *next_col);
  129. struct rs_tx_column {
  130. enum rs_column_mode mode;
  131. u8 ant;
  132. bool sgi;
  133. enum rs_column next_columns[MAX_NEXT_COLUMNS];
  134. allow_column_func_t checks[MAX_COLUMN_CHECKS];
  135. };
  136. static bool rs_ant_allow(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  137. struct rs_rate *rate,
  138. const struct rs_tx_column *next_col)
  139. {
  140. return iwl_mvm_bt_coex_is_ant_avail(mvm, next_col->ant);
  141. }
  142. static bool rs_mimo_allow(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  143. struct rs_rate *rate,
  144. const struct rs_tx_column *next_col)
  145. {
  146. if (!sta->ht_cap.ht_supported)
  147. return false;
  148. if (sta->smps_mode == IEEE80211_SMPS_STATIC)
  149. return false;
  150. if (num_of_ant(iwl_mvm_get_valid_tx_ant(mvm)) < 2)
  151. return false;
  152. if (!iwl_mvm_bt_coex_is_mimo_allowed(mvm, sta))
  153. return false;
  154. if (mvm->nvm_data->sku_cap_mimo_disabled)
  155. return false;
  156. return true;
  157. }
  158. static bool rs_siso_allow(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  159. struct rs_rate *rate,
  160. const struct rs_tx_column *next_col)
  161. {
  162. if (!sta->ht_cap.ht_supported)
  163. return false;
  164. return true;
  165. }
  166. static bool rs_sgi_allow(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  167. struct rs_rate *rate,
  168. const struct rs_tx_column *next_col)
  169. {
  170. struct ieee80211_sta_ht_cap *ht_cap = &sta->ht_cap;
  171. struct ieee80211_sta_vht_cap *vht_cap = &sta->vht_cap;
  172. if (is_ht20(rate) && (ht_cap->cap &
  173. IEEE80211_HT_CAP_SGI_20))
  174. return true;
  175. if (is_ht40(rate) && (ht_cap->cap &
  176. IEEE80211_HT_CAP_SGI_40))
  177. return true;
  178. if (is_ht80(rate) && (vht_cap->cap &
  179. IEEE80211_VHT_CAP_SHORT_GI_80))
  180. return true;
  181. if (is_ht160(rate) && (vht_cap->cap &
  182. IEEE80211_VHT_CAP_SHORT_GI_160))
  183. return true;
  184. return false;
  185. }
  186. static const struct rs_tx_column rs_tx_columns[] = {
  187. [RS_COLUMN_LEGACY_ANT_A] = {
  188. .mode = RS_LEGACY,
  189. .ant = ANT_A,
  190. .next_columns = {
  191. RS_COLUMN_LEGACY_ANT_B,
  192. RS_COLUMN_SISO_ANT_A,
  193. RS_COLUMN_MIMO2,
  194. RS_COLUMN_INVALID,
  195. RS_COLUMN_INVALID,
  196. RS_COLUMN_INVALID,
  197. RS_COLUMN_INVALID,
  198. },
  199. .checks = {
  200. rs_ant_allow,
  201. },
  202. },
  203. [RS_COLUMN_LEGACY_ANT_B] = {
  204. .mode = RS_LEGACY,
  205. .ant = ANT_B,
  206. .next_columns = {
  207. RS_COLUMN_LEGACY_ANT_A,
  208. RS_COLUMN_SISO_ANT_B,
  209. RS_COLUMN_MIMO2,
  210. RS_COLUMN_INVALID,
  211. RS_COLUMN_INVALID,
  212. RS_COLUMN_INVALID,
  213. RS_COLUMN_INVALID,
  214. },
  215. .checks = {
  216. rs_ant_allow,
  217. },
  218. },
  219. [RS_COLUMN_SISO_ANT_A] = {
  220. .mode = RS_SISO,
  221. .ant = ANT_A,
  222. .next_columns = {
  223. RS_COLUMN_SISO_ANT_B,
  224. RS_COLUMN_MIMO2,
  225. RS_COLUMN_SISO_ANT_A_SGI,
  226. RS_COLUMN_LEGACY_ANT_A,
  227. RS_COLUMN_LEGACY_ANT_B,
  228. RS_COLUMN_INVALID,
  229. RS_COLUMN_INVALID,
  230. },
  231. .checks = {
  232. rs_siso_allow,
  233. rs_ant_allow,
  234. },
  235. },
  236. [RS_COLUMN_SISO_ANT_B] = {
  237. .mode = RS_SISO,
  238. .ant = ANT_B,
  239. .next_columns = {
  240. RS_COLUMN_SISO_ANT_A,
  241. RS_COLUMN_MIMO2,
  242. RS_COLUMN_SISO_ANT_B_SGI,
  243. RS_COLUMN_LEGACY_ANT_A,
  244. RS_COLUMN_LEGACY_ANT_B,
  245. RS_COLUMN_INVALID,
  246. RS_COLUMN_INVALID,
  247. },
  248. .checks = {
  249. rs_siso_allow,
  250. rs_ant_allow,
  251. },
  252. },
  253. [RS_COLUMN_SISO_ANT_A_SGI] = {
  254. .mode = RS_SISO,
  255. .ant = ANT_A,
  256. .sgi = true,
  257. .next_columns = {
  258. RS_COLUMN_SISO_ANT_B_SGI,
  259. RS_COLUMN_MIMO2_SGI,
  260. RS_COLUMN_SISO_ANT_A,
  261. RS_COLUMN_LEGACY_ANT_A,
  262. RS_COLUMN_LEGACY_ANT_B,
  263. RS_COLUMN_INVALID,
  264. RS_COLUMN_INVALID,
  265. },
  266. .checks = {
  267. rs_siso_allow,
  268. rs_ant_allow,
  269. rs_sgi_allow,
  270. },
  271. },
  272. [RS_COLUMN_SISO_ANT_B_SGI] = {
  273. .mode = RS_SISO,
  274. .ant = ANT_B,
  275. .sgi = true,
  276. .next_columns = {
  277. RS_COLUMN_SISO_ANT_A_SGI,
  278. RS_COLUMN_MIMO2_SGI,
  279. RS_COLUMN_SISO_ANT_B,
  280. RS_COLUMN_LEGACY_ANT_A,
  281. RS_COLUMN_LEGACY_ANT_B,
  282. RS_COLUMN_INVALID,
  283. RS_COLUMN_INVALID,
  284. },
  285. .checks = {
  286. rs_siso_allow,
  287. rs_ant_allow,
  288. rs_sgi_allow,
  289. },
  290. },
  291. [RS_COLUMN_MIMO2] = {
  292. .mode = RS_MIMO2,
  293. .ant = ANT_AB,
  294. .next_columns = {
  295. RS_COLUMN_SISO_ANT_A,
  296. RS_COLUMN_MIMO2_SGI,
  297. RS_COLUMN_LEGACY_ANT_A,
  298. RS_COLUMN_LEGACY_ANT_B,
  299. RS_COLUMN_INVALID,
  300. RS_COLUMN_INVALID,
  301. RS_COLUMN_INVALID,
  302. },
  303. .checks = {
  304. rs_mimo_allow,
  305. },
  306. },
  307. [RS_COLUMN_MIMO2_SGI] = {
  308. .mode = RS_MIMO2,
  309. .ant = ANT_AB,
  310. .sgi = true,
  311. .next_columns = {
  312. RS_COLUMN_SISO_ANT_A_SGI,
  313. RS_COLUMN_MIMO2,
  314. RS_COLUMN_LEGACY_ANT_A,
  315. RS_COLUMN_LEGACY_ANT_B,
  316. RS_COLUMN_INVALID,
  317. RS_COLUMN_INVALID,
  318. RS_COLUMN_INVALID,
  319. },
  320. .checks = {
  321. rs_mimo_allow,
  322. rs_sgi_allow,
  323. },
  324. },
  325. };
  326. static inline u8 rs_extract_rate(u32 rate_n_flags)
  327. {
  328. /* also works for HT because bits 7:6 are zero there */
  329. return (u8)(rate_n_flags & RATE_LEGACY_RATE_MSK);
  330. }
  331. static int iwl_hwrate_to_plcp_idx(u32 rate_n_flags)
  332. {
  333. int idx = 0;
  334. if (rate_n_flags & RATE_MCS_HT_MSK) {
  335. idx = rate_n_flags & RATE_HT_MCS_RATE_CODE_MSK;
  336. idx += IWL_RATE_MCS_0_INDEX;
  337. /* skip 9M not supported in HT*/
  338. if (idx >= IWL_RATE_9M_INDEX)
  339. idx += 1;
  340. if ((idx >= IWL_FIRST_HT_RATE) && (idx <= IWL_LAST_HT_RATE))
  341. return idx;
  342. } else if (rate_n_flags & RATE_MCS_VHT_MSK) {
  343. idx = rate_n_flags & RATE_VHT_MCS_RATE_CODE_MSK;
  344. idx += IWL_RATE_MCS_0_INDEX;
  345. /* skip 9M not supported in VHT*/
  346. if (idx >= IWL_RATE_9M_INDEX)
  347. idx++;
  348. if ((idx >= IWL_FIRST_VHT_RATE) && (idx <= IWL_LAST_VHT_RATE))
  349. return idx;
  350. } else {
  351. /* legacy rate format, search for match in table */
  352. u8 legacy_rate = rs_extract_rate(rate_n_flags);
  353. for (idx = 0; idx < ARRAY_SIZE(iwl_rates); idx++)
  354. if (iwl_rates[idx].plcp == legacy_rate)
  355. return idx;
  356. }
  357. return IWL_RATE_INVALID;
  358. }
  359. static void rs_rate_scale_perform(struct iwl_mvm *mvm,
  360. struct ieee80211_sta *sta,
  361. struct iwl_lq_sta *lq_sta,
  362. int tid, bool ndp);
  363. static void rs_fill_lq_cmd(struct iwl_mvm *mvm,
  364. struct ieee80211_sta *sta,
  365. struct iwl_lq_sta *lq_sta,
  366. const struct rs_rate *initial_rate);
  367. static void rs_stay_in_table(struct iwl_lq_sta *lq_sta, bool force_search);
  368. /**
  369. * The following tables contain the expected throughput metrics for all rates
  370. *
  371. * 1, 2, 5.5, 11, 6, 9, 12, 18, 24, 36, 48, 54, 60 MBits
  372. *
  373. * where invalid entries are zeros.
  374. *
  375. * CCK rates are only valid in legacy table and will only be used in G
  376. * (2.4 GHz) band.
  377. */
  378. static const u16 expected_tpt_legacy[IWL_RATE_COUNT] = {
  379. 7, 13, 35, 58, 40, 57, 72, 98, 121, 154, 177, 186, 0, 0, 0
  380. };
  381. /* Expected TpT tables. 4 indexes:
  382. * 0 - NGI, 1 - SGI, 2 - AGG+NGI, 3 - AGG+SGI
  383. */
  384. static const u16 expected_tpt_siso_20MHz[4][IWL_RATE_COUNT] = {
  385. {0, 0, 0, 0, 42, 0, 76, 102, 124, 159, 183, 193, 202, 216, 0},
  386. {0, 0, 0, 0, 46, 0, 82, 110, 132, 168, 192, 202, 210, 225, 0},
  387. {0, 0, 0, 0, 49, 0, 97, 145, 192, 285, 375, 420, 464, 551, 0},
  388. {0, 0, 0, 0, 54, 0, 108, 160, 213, 315, 415, 465, 513, 608, 0},
  389. };
  390. static const u16 expected_tpt_siso_40MHz[4][IWL_RATE_COUNT] = {
  391. {0, 0, 0, 0, 77, 0, 127, 160, 184, 220, 242, 250, 257, 269, 275},
  392. {0, 0, 0, 0, 83, 0, 135, 169, 193, 229, 250, 257, 264, 275, 280},
  393. {0, 0, 0, 0, 101, 0, 199, 295, 389, 570, 744, 828, 911, 1070, 1173},
  394. {0, 0, 0, 0, 112, 0, 220, 326, 429, 629, 819, 912, 1000, 1173, 1284},
  395. };
  396. static const u16 expected_tpt_siso_80MHz[4][IWL_RATE_COUNT] = {
  397. {0, 0, 0, 0, 130, 0, 191, 223, 244, 273, 288, 294, 298, 305, 308},
  398. {0, 0, 0, 0, 138, 0, 200, 231, 251, 279, 293, 298, 302, 308, 312},
  399. {0, 0, 0, 0, 217, 0, 429, 634, 834, 1220, 1585, 1760, 1931, 2258, 2466},
  400. {0, 0, 0, 0, 241, 0, 475, 701, 921, 1343, 1741, 1931, 2117, 2468, 2691},
  401. };
  402. static const u16 expected_tpt_siso_160MHz[4][IWL_RATE_COUNT] = {
  403. {0, 0, 0, 0, 191, 0, 244, 288, 298, 308, 313, 318, 323, 328, 330},
  404. {0, 0, 0, 0, 200, 0, 251, 293, 302, 312, 317, 322, 327, 332, 334},
  405. {0, 0, 0, 0, 439, 0, 875, 1307, 1736, 2584, 3419, 3831, 4240, 5049, 5581},
  406. {0, 0, 0, 0, 488, 0, 972, 1451, 1925, 2864, 3785, 4240, 4691, 5581, 6165},
  407. };
  408. static const u16 expected_tpt_mimo2_20MHz[4][IWL_RATE_COUNT] = {
  409. {0, 0, 0, 0, 74, 0, 123, 155, 179, 213, 235, 243, 250, 261, 0},
  410. {0, 0, 0, 0, 81, 0, 131, 164, 187, 221, 242, 250, 256, 267, 0},
  411. {0, 0, 0, 0, 98, 0, 193, 286, 375, 550, 718, 799, 878, 1032, 0},
  412. {0, 0, 0, 0, 109, 0, 214, 316, 414, 607, 790, 879, 965, 1132, 0},
  413. };
  414. static const u16 expected_tpt_mimo2_40MHz[4][IWL_RATE_COUNT] = {
  415. {0, 0, 0, 0, 123, 0, 182, 214, 235, 264, 279, 285, 289, 296, 300},
  416. {0, 0, 0, 0, 131, 0, 191, 222, 242, 270, 284, 289, 293, 300, 303},
  417. {0, 0, 0, 0, 200, 0, 390, 571, 741, 1067, 1365, 1505, 1640, 1894, 2053},
  418. {0, 0, 0, 0, 221, 0, 430, 630, 816, 1169, 1490, 1641, 1784, 2053, 2221},
  419. };
  420. static const u16 expected_tpt_mimo2_80MHz[4][IWL_RATE_COUNT] = {
  421. {0, 0, 0, 0, 182, 0, 240, 264, 278, 299, 308, 311, 313, 317, 319},
  422. {0, 0, 0, 0, 190, 0, 247, 269, 282, 302, 310, 313, 315, 319, 320},
  423. {0, 0, 0, 0, 428, 0, 833, 1215, 1577, 2254, 2863, 3147, 3418, 3913, 4219},
  424. {0, 0, 0, 0, 474, 0, 920, 1338, 1732, 2464, 3116, 3418, 3705, 4225, 4545},
  425. };
  426. static const u16 expected_tpt_mimo2_160MHz[4][IWL_RATE_COUNT] = {
  427. {0, 0, 0, 0, 240, 0, 278, 308, 313, 319, 322, 324, 328, 330, 334},
  428. {0, 0, 0, 0, 247, 0, 282, 310, 315, 320, 323, 325, 329, 332, 338},
  429. {0, 0, 0, 0, 875, 0, 1735, 2582, 3414, 5043, 6619, 7389, 8147, 9629, 10592},
  430. {0, 0, 0, 0, 971, 0, 1925, 2861, 3779, 5574, 7304, 8147, 8976, 10592, 11640},
  431. };
  432. /* mbps, mcs */
  433. static const struct iwl_rate_mcs_info iwl_rate_mcs[IWL_RATE_COUNT] = {
  434. { "1", "BPSK DSSS"},
  435. { "2", "QPSK DSSS"},
  436. {"5.5", "BPSK CCK"},
  437. { "11", "QPSK CCK"},
  438. { "6", "BPSK 1/2"},
  439. { "9", "BPSK 1/2"},
  440. { "12", "QPSK 1/2"},
  441. { "18", "QPSK 3/4"},
  442. { "24", "16QAM 1/2"},
  443. { "36", "16QAM 3/4"},
  444. { "48", "64QAM 2/3"},
  445. { "54", "64QAM 3/4"},
  446. { "60", "64QAM 5/6"},
  447. };
  448. #define MCS_INDEX_PER_STREAM (8)
  449. static const char *rs_pretty_ant(u8 ant)
  450. {
  451. static const char * const ant_name[] = {
  452. [ANT_NONE] = "None",
  453. [ANT_A] = "A",
  454. [ANT_B] = "B",
  455. [ANT_AB] = "AB",
  456. [ANT_C] = "C",
  457. [ANT_AC] = "AC",
  458. [ANT_BC] = "BC",
  459. [ANT_ABC] = "ABC",
  460. };
  461. if (ant > ANT_ABC)
  462. return "UNKNOWN";
  463. return ant_name[ant];
  464. }
  465. static const char *rs_pretty_lq_type(enum iwl_table_type type)
  466. {
  467. static const char * const lq_types[] = {
  468. [LQ_NONE] = "NONE",
  469. [LQ_LEGACY_A] = "LEGACY_A",
  470. [LQ_LEGACY_G] = "LEGACY_G",
  471. [LQ_HT_SISO] = "HT SISO",
  472. [LQ_HT_MIMO2] = "HT MIMO",
  473. [LQ_VHT_SISO] = "VHT SISO",
  474. [LQ_VHT_MIMO2] = "VHT MIMO",
  475. };
  476. if (type < LQ_NONE || type >= LQ_MAX)
  477. return "UNKNOWN";
  478. return lq_types[type];
  479. }
  480. static char *rs_pretty_rate(const struct rs_rate *rate)
  481. {
  482. static char buf[40];
  483. static const char * const legacy_rates[] = {
  484. [IWL_RATE_1M_INDEX] = "1M",
  485. [IWL_RATE_2M_INDEX] = "2M",
  486. [IWL_RATE_5M_INDEX] = "5.5M",
  487. [IWL_RATE_11M_INDEX] = "11M",
  488. [IWL_RATE_6M_INDEX] = "6M",
  489. [IWL_RATE_9M_INDEX] = "9M",
  490. [IWL_RATE_12M_INDEX] = "12M",
  491. [IWL_RATE_18M_INDEX] = "18M",
  492. [IWL_RATE_24M_INDEX] = "24M",
  493. [IWL_RATE_36M_INDEX] = "36M",
  494. [IWL_RATE_48M_INDEX] = "48M",
  495. [IWL_RATE_54M_INDEX] = "54M",
  496. };
  497. static const char *const ht_vht_rates[] = {
  498. [IWL_RATE_MCS_0_INDEX] = "MCS0",
  499. [IWL_RATE_MCS_1_INDEX] = "MCS1",
  500. [IWL_RATE_MCS_2_INDEX] = "MCS2",
  501. [IWL_RATE_MCS_3_INDEX] = "MCS3",
  502. [IWL_RATE_MCS_4_INDEX] = "MCS4",
  503. [IWL_RATE_MCS_5_INDEX] = "MCS5",
  504. [IWL_RATE_MCS_6_INDEX] = "MCS6",
  505. [IWL_RATE_MCS_7_INDEX] = "MCS7",
  506. [IWL_RATE_MCS_8_INDEX] = "MCS8",
  507. [IWL_RATE_MCS_9_INDEX] = "MCS9",
  508. };
  509. const char *rate_str;
  510. if (is_type_legacy(rate->type) && (rate->index <= IWL_RATE_54M_INDEX))
  511. rate_str = legacy_rates[rate->index];
  512. else if ((is_type_ht(rate->type) || is_type_vht(rate->type)) &&
  513. (rate->index >= IWL_RATE_MCS_0_INDEX) &&
  514. (rate->index <= IWL_RATE_MCS_9_INDEX))
  515. rate_str = ht_vht_rates[rate->index];
  516. else
  517. rate_str = "BAD_RATE";
  518. sprintf(buf, "(%s|%s|%s)", rs_pretty_lq_type(rate->type),
  519. rs_pretty_ant(rate->ant), rate_str);
  520. return buf;
  521. }
  522. static inline void rs_dump_rate(struct iwl_mvm *mvm, const struct rs_rate *rate,
  523. const char *prefix)
  524. {
  525. IWL_DEBUG_RATE(mvm,
  526. "%s: %s BW: %d SGI: %d LDPC: %d STBC: %d\n",
  527. prefix, rs_pretty_rate(rate), rate->bw,
  528. rate->sgi, rate->ldpc, rate->stbc);
  529. }
  530. static void rs_rate_scale_clear_window(struct iwl_rate_scale_data *window)
  531. {
  532. window->data = 0;
  533. window->success_counter = 0;
  534. window->success_ratio = IWL_INVALID_VALUE;
  535. window->counter = 0;
  536. window->average_tpt = IWL_INVALID_VALUE;
  537. }
  538. static void rs_rate_scale_clear_tbl_windows(struct iwl_mvm *mvm,
  539. struct iwl_scale_tbl_info *tbl)
  540. {
  541. int i;
  542. IWL_DEBUG_RATE(mvm, "Clearing up window stats\n");
  543. for (i = 0; i < IWL_RATE_COUNT; i++)
  544. rs_rate_scale_clear_window(&tbl->win[i]);
  545. for (i = 0; i < ARRAY_SIZE(tbl->tpc_win); i++)
  546. rs_rate_scale_clear_window(&tbl->tpc_win[i]);
  547. }
  548. static inline u8 rs_is_valid_ant(u8 valid_antenna, u8 ant_type)
  549. {
  550. return (ant_type & valid_antenna) == ant_type;
  551. }
  552. static int rs_tl_turn_on_agg_for_tid(struct iwl_mvm *mvm,
  553. struct iwl_lq_sta *lq_data, u8 tid,
  554. struct ieee80211_sta *sta)
  555. {
  556. int ret = -EAGAIN;
  557. IWL_DEBUG_HT(mvm, "Starting Tx agg: STA: %pM tid: %d\n",
  558. sta->addr, tid);
  559. ret = ieee80211_start_tx_ba_session(sta, tid, 5000);
  560. if (ret == -EAGAIN) {
  561. /*
  562. * driver and mac80211 is out of sync
  563. * this might be cause by reloading firmware
  564. * stop the tx ba session here
  565. */
  566. IWL_ERR(mvm, "Fail start Tx agg on tid: %d\n",
  567. tid);
  568. ieee80211_stop_tx_ba_session(sta, tid);
  569. }
  570. return ret;
  571. }
  572. static void rs_tl_turn_on_agg(struct iwl_mvm *mvm, u8 tid,
  573. struct iwl_lq_sta *lq_data,
  574. struct ieee80211_sta *sta)
  575. {
  576. if (tid < IWL_MAX_TID_COUNT)
  577. rs_tl_turn_on_agg_for_tid(mvm, lq_data, tid, sta);
  578. else
  579. IWL_ERR(mvm, "tid exceeds max TID count: %d/%d\n",
  580. tid, IWL_MAX_TID_COUNT);
  581. }
  582. static inline int get_num_of_ant_from_rate(u32 rate_n_flags)
  583. {
  584. return !!(rate_n_flags & RATE_MCS_ANT_A_MSK) +
  585. !!(rate_n_flags & RATE_MCS_ANT_B_MSK) +
  586. !!(rate_n_flags & RATE_MCS_ANT_C_MSK);
  587. }
  588. /*
  589. * Static function to get the expected throughput from an iwl_scale_tbl_info
  590. * that wraps a NULL pointer check
  591. */
  592. static s32 get_expected_tpt(struct iwl_scale_tbl_info *tbl, int rs_index)
  593. {
  594. if (tbl->expected_tpt)
  595. return tbl->expected_tpt[rs_index];
  596. return 0;
  597. }
  598. /**
  599. * rs_collect_tx_data - Update the success/failure sliding window
  600. *
  601. * We keep a sliding window of the last 62 packets transmitted
  602. * at this rate. window->data contains the bitmask of successful
  603. * packets.
  604. */
  605. static int _rs_collect_tx_data(struct iwl_mvm *mvm,
  606. struct iwl_scale_tbl_info *tbl,
  607. int scale_index, int attempts, int successes,
  608. struct iwl_rate_scale_data *window)
  609. {
  610. static const u64 mask = (((u64)1) << (IWL_RATE_MAX_WINDOW - 1));
  611. s32 fail_count, tpt;
  612. /* Get expected throughput */
  613. tpt = get_expected_tpt(tbl, scale_index);
  614. /*
  615. * Keep track of only the latest 62 tx frame attempts in this rate's
  616. * history window; anything older isn't really relevant any more.
  617. * If we have filled up the sliding window, drop the oldest attempt;
  618. * if the oldest attempt (highest bit in bitmap) shows "success",
  619. * subtract "1" from the success counter (this is the main reason
  620. * we keep these bitmaps!).
  621. */
  622. while (attempts > 0) {
  623. if (window->counter >= IWL_RATE_MAX_WINDOW) {
  624. /* remove earliest */
  625. window->counter = IWL_RATE_MAX_WINDOW - 1;
  626. if (window->data & mask) {
  627. window->data &= ~mask;
  628. window->success_counter--;
  629. }
  630. }
  631. /* Increment frames-attempted counter */
  632. window->counter++;
  633. /* Shift bitmap by one frame to throw away oldest history */
  634. window->data <<= 1;
  635. /* Mark the most recent #successes attempts as successful */
  636. if (successes > 0) {
  637. window->success_counter++;
  638. window->data |= 0x1;
  639. successes--;
  640. }
  641. attempts--;
  642. }
  643. /* Calculate current success ratio, avoid divide-by-0! */
  644. if (window->counter > 0)
  645. window->success_ratio = 128 * (100 * window->success_counter)
  646. / window->counter;
  647. else
  648. window->success_ratio = IWL_INVALID_VALUE;
  649. fail_count = window->counter - window->success_counter;
  650. /* Calculate average throughput, if we have enough history. */
  651. if ((fail_count >= IWL_MVM_RS_RATE_MIN_FAILURE_TH) ||
  652. (window->success_counter >= IWL_MVM_RS_RATE_MIN_SUCCESS_TH))
  653. window->average_tpt = (window->success_ratio * tpt + 64) / 128;
  654. else
  655. window->average_tpt = IWL_INVALID_VALUE;
  656. return 0;
  657. }
  658. static int rs_collect_tpc_data(struct iwl_mvm *mvm,
  659. struct iwl_lq_sta *lq_sta,
  660. struct iwl_scale_tbl_info *tbl,
  661. int scale_index, int attempts, int successes,
  662. u8 reduced_txp)
  663. {
  664. struct iwl_rate_scale_data *window = NULL;
  665. if (WARN_ON_ONCE(reduced_txp > TPC_MAX_REDUCTION))
  666. return -EINVAL;
  667. window = &tbl->tpc_win[reduced_txp];
  668. return _rs_collect_tx_data(mvm, tbl, scale_index, attempts, successes,
  669. window);
  670. }
  671. static int rs_collect_tlc_data(struct iwl_mvm *mvm,
  672. struct iwl_lq_sta *lq_sta,
  673. struct iwl_scale_tbl_info *tbl,
  674. int scale_index, int attempts, int successes)
  675. {
  676. struct iwl_rate_scale_data *window = NULL;
  677. if (scale_index < 0 || scale_index >= IWL_RATE_COUNT)
  678. return -EINVAL;
  679. if (tbl->column != RS_COLUMN_INVALID) {
  680. struct lq_sta_pers *pers = &lq_sta->pers;
  681. pers->tx_stats[tbl->column][scale_index].total += attempts;
  682. pers->tx_stats[tbl->column][scale_index].success += successes;
  683. }
  684. /* Select window for current tx bit rate */
  685. window = &(tbl->win[scale_index]);
  686. return _rs_collect_tx_data(mvm, tbl, scale_index, attempts, successes,
  687. window);
  688. }
  689. /* Convert rs_rate object into ucode rate bitmask */
  690. static u32 ucode_rate_from_rs_rate(struct iwl_mvm *mvm,
  691. struct rs_rate *rate)
  692. {
  693. u32 ucode_rate = 0;
  694. int index = rate->index;
  695. ucode_rate |= ((rate->ant << RATE_MCS_ANT_POS) &
  696. RATE_MCS_ANT_ABC_MSK);
  697. if (is_legacy(rate)) {
  698. ucode_rate |= iwl_rates[index].plcp;
  699. if (index >= IWL_FIRST_CCK_RATE && index <= IWL_LAST_CCK_RATE)
  700. ucode_rate |= RATE_MCS_CCK_MSK;
  701. return ucode_rate;
  702. }
  703. if (is_ht(rate)) {
  704. if (index < IWL_FIRST_HT_RATE || index > IWL_LAST_HT_RATE) {
  705. IWL_ERR(mvm, "Invalid HT rate index %d\n", index);
  706. index = IWL_LAST_HT_RATE;
  707. }
  708. ucode_rate |= RATE_MCS_HT_MSK;
  709. if (is_ht_siso(rate))
  710. ucode_rate |= iwl_rates[index].plcp_ht_siso;
  711. else if (is_ht_mimo2(rate))
  712. ucode_rate |= iwl_rates[index].plcp_ht_mimo2;
  713. else
  714. WARN_ON_ONCE(1);
  715. } else if (is_vht(rate)) {
  716. if (index < IWL_FIRST_VHT_RATE || index > IWL_LAST_VHT_RATE) {
  717. IWL_ERR(mvm, "Invalid VHT rate index %d\n", index);
  718. index = IWL_LAST_VHT_RATE;
  719. }
  720. ucode_rate |= RATE_MCS_VHT_MSK;
  721. if (is_vht_siso(rate))
  722. ucode_rate |= iwl_rates[index].plcp_vht_siso;
  723. else if (is_vht_mimo2(rate))
  724. ucode_rate |= iwl_rates[index].plcp_vht_mimo2;
  725. else
  726. WARN_ON_ONCE(1);
  727. } else {
  728. IWL_ERR(mvm, "Invalid rate->type %d\n", rate->type);
  729. }
  730. if (is_siso(rate) && rate->stbc) {
  731. /* To enable STBC we need to set both a flag and ANT_AB */
  732. ucode_rate |= RATE_MCS_ANT_AB_MSK;
  733. ucode_rate |= RATE_MCS_STBC_MSK;
  734. }
  735. ucode_rate |= rate->bw;
  736. if (rate->sgi)
  737. ucode_rate |= RATE_MCS_SGI_MSK;
  738. if (rate->ldpc)
  739. ucode_rate |= RATE_MCS_LDPC_MSK;
  740. return ucode_rate;
  741. }
  742. /* Convert a ucode rate into an rs_rate object */
  743. static int rs_rate_from_ucode_rate(const u32 ucode_rate,
  744. enum nl80211_band band,
  745. struct rs_rate *rate)
  746. {
  747. u32 ant_msk = ucode_rate & RATE_MCS_ANT_ABC_MSK;
  748. u8 num_of_ant = get_num_of_ant_from_rate(ucode_rate);
  749. u8 nss;
  750. memset(rate, 0, sizeof(*rate));
  751. rate->index = iwl_hwrate_to_plcp_idx(ucode_rate);
  752. if (rate->index == IWL_RATE_INVALID)
  753. return -EINVAL;
  754. rate->ant = (ant_msk >> RATE_MCS_ANT_POS);
  755. /* Legacy */
  756. if (!(ucode_rate & RATE_MCS_HT_MSK) &&
  757. !(ucode_rate & RATE_MCS_VHT_MSK)) {
  758. if (num_of_ant == 1) {
  759. if (band == NL80211_BAND_5GHZ)
  760. rate->type = LQ_LEGACY_A;
  761. else
  762. rate->type = LQ_LEGACY_G;
  763. }
  764. return 0;
  765. }
  766. /* HT or VHT */
  767. if (ucode_rate & RATE_MCS_SGI_MSK)
  768. rate->sgi = true;
  769. if (ucode_rate & RATE_MCS_LDPC_MSK)
  770. rate->ldpc = true;
  771. if (ucode_rate & RATE_MCS_STBC_MSK)
  772. rate->stbc = true;
  773. if (ucode_rate & RATE_MCS_BF_MSK)
  774. rate->bfer = true;
  775. rate->bw = ucode_rate & RATE_MCS_CHAN_WIDTH_MSK;
  776. if (ucode_rate & RATE_MCS_HT_MSK) {
  777. nss = ((ucode_rate & RATE_HT_MCS_NSS_MSK) >>
  778. RATE_HT_MCS_NSS_POS) + 1;
  779. if (nss == 1) {
  780. rate->type = LQ_HT_SISO;
  781. WARN_ONCE(!rate->stbc && !rate->bfer && num_of_ant != 1,
  782. "stbc %d bfer %d",
  783. rate->stbc, rate->bfer);
  784. } else if (nss == 2) {
  785. rate->type = LQ_HT_MIMO2;
  786. WARN_ON_ONCE(num_of_ant != 2);
  787. } else {
  788. WARN_ON_ONCE(1);
  789. }
  790. } else if (ucode_rate & RATE_MCS_VHT_MSK) {
  791. nss = ((ucode_rate & RATE_VHT_MCS_NSS_MSK) >>
  792. RATE_VHT_MCS_NSS_POS) + 1;
  793. if (nss == 1) {
  794. rate->type = LQ_VHT_SISO;
  795. WARN_ONCE(!rate->stbc && !rate->bfer && num_of_ant != 1,
  796. "stbc %d bfer %d",
  797. rate->stbc, rate->bfer);
  798. } else if (nss == 2) {
  799. rate->type = LQ_VHT_MIMO2;
  800. WARN_ON_ONCE(num_of_ant != 2);
  801. } else {
  802. WARN_ON_ONCE(1);
  803. }
  804. }
  805. WARN_ON_ONCE(rate->bw == RATE_MCS_CHAN_WIDTH_80 &&
  806. !is_vht(rate));
  807. return 0;
  808. }
  809. /* switch to another antenna/antennas and return 1 */
  810. /* if no other valid antenna found, return 0 */
  811. static int rs_toggle_antenna(u32 valid_ant, struct rs_rate *rate)
  812. {
  813. u8 new_ant_type;
  814. if (!rate->ant || rate->ant > ANT_ABC)
  815. return 0;
  816. if (!rs_is_valid_ant(valid_ant, rate->ant))
  817. return 0;
  818. new_ant_type = ant_toggle_lookup[rate->ant];
  819. while ((new_ant_type != rate->ant) &&
  820. !rs_is_valid_ant(valid_ant, new_ant_type))
  821. new_ant_type = ant_toggle_lookup[new_ant_type];
  822. if (new_ant_type == rate->ant)
  823. return 0;
  824. rate->ant = new_ant_type;
  825. return 1;
  826. }
  827. static u16 rs_get_supported_rates(struct iwl_lq_sta *lq_sta,
  828. struct rs_rate *rate)
  829. {
  830. if (is_legacy(rate))
  831. return lq_sta->active_legacy_rate;
  832. else if (is_siso(rate))
  833. return lq_sta->active_siso_rate;
  834. else if (is_mimo2(rate))
  835. return lq_sta->active_mimo2_rate;
  836. WARN_ON_ONCE(1);
  837. return 0;
  838. }
  839. static u16 rs_get_adjacent_rate(struct iwl_mvm *mvm, u8 index, u16 rate_mask,
  840. int rate_type)
  841. {
  842. u8 high = IWL_RATE_INVALID;
  843. u8 low = IWL_RATE_INVALID;
  844. /* 802.11A or ht walks to the next literal adjacent rate in
  845. * the rate table */
  846. if (is_type_a_band(rate_type) || !is_type_legacy(rate_type)) {
  847. int i;
  848. u32 mask;
  849. /* Find the previous rate that is in the rate mask */
  850. i = index - 1;
  851. if (i >= 0)
  852. mask = BIT(i);
  853. for (; i >= 0; i--, mask >>= 1) {
  854. if (rate_mask & mask) {
  855. low = i;
  856. break;
  857. }
  858. }
  859. /* Find the next rate that is in the rate mask */
  860. i = index + 1;
  861. for (mask = (1 << i); i < IWL_RATE_COUNT; i++, mask <<= 1) {
  862. if (rate_mask & mask) {
  863. high = i;
  864. break;
  865. }
  866. }
  867. return (high << 8) | low;
  868. }
  869. low = index;
  870. while (low != IWL_RATE_INVALID) {
  871. low = iwl_rates[low].prev_rs;
  872. if (low == IWL_RATE_INVALID)
  873. break;
  874. if (rate_mask & (1 << low))
  875. break;
  876. }
  877. high = index;
  878. while (high != IWL_RATE_INVALID) {
  879. high = iwl_rates[high].next_rs;
  880. if (high == IWL_RATE_INVALID)
  881. break;
  882. if (rate_mask & (1 << high))
  883. break;
  884. }
  885. return (high << 8) | low;
  886. }
  887. static inline bool rs_rate_supported(struct iwl_lq_sta *lq_sta,
  888. struct rs_rate *rate)
  889. {
  890. return BIT(rate->index) & rs_get_supported_rates(lq_sta, rate);
  891. }
  892. /* Get the next supported lower rate in the current column.
  893. * Return true if bottom rate in the current column was reached
  894. */
  895. static bool rs_get_lower_rate_in_column(struct iwl_lq_sta *lq_sta,
  896. struct rs_rate *rate)
  897. {
  898. u8 low;
  899. u16 high_low;
  900. u16 rate_mask;
  901. struct iwl_mvm *mvm = lq_sta->pers.drv;
  902. rate_mask = rs_get_supported_rates(lq_sta, rate);
  903. high_low = rs_get_adjacent_rate(mvm, rate->index, rate_mask,
  904. rate->type);
  905. low = high_low & 0xff;
  906. /* Bottom rate of column reached */
  907. if (low == IWL_RATE_INVALID)
  908. return true;
  909. rate->index = low;
  910. return false;
  911. }
  912. /* Get the next rate to use following a column downgrade */
  913. static void rs_get_lower_rate_down_column(struct iwl_lq_sta *lq_sta,
  914. struct rs_rate *rate)
  915. {
  916. struct iwl_mvm *mvm = lq_sta->pers.drv;
  917. if (is_legacy(rate)) {
  918. /* No column to downgrade from Legacy */
  919. return;
  920. } else if (is_siso(rate)) {
  921. /* Downgrade to Legacy if we were in SISO */
  922. if (lq_sta->band == NL80211_BAND_5GHZ)
  923. rate->type = LQ_LEGACY_A;
  924. else
  925. rate->type = LQ_LEGACY_G;
  926. rate->bw = RATE_MCS_CHAN_WIDTH_20;
  927. WARN_ON_ONCE(rate->index < IWL_RATE_MCS_0_INDEX ||
  928. rate->index > IWL_RATE_MCS_9_INDEX);
  929. rate->index = rs_ht_to_legacy[rate->index];
  930. rate->ldpc = false;
  931. } else {
  932. /* Downgrade to SISO with same MCS if in MIMO */
  933. rate->type = is_vht_mimo2(rate) ?
  934. LQ_VHT_SISO : LQ_HT_SISO;
  935. }
  936. if (num_of_ant(rate->ant) > 1)
  937. rate->ant = first_antenna(iwl_mvm_get_valid_tx_ant(mvm));
  938. /* Relevant in both switching to SISO or Legacy */
  939. rate->sgi = false;
  940. if (!rs_rate_supported(lq_sta, rate))
  941. rs_get_lower_rate_in_column(lq_sta, rate);
  942. }
  943. /* Check if both rates are identical
  944. * allow_ant_mismatch enables matching a SISO rate on ANT_A or ANT_B
  945. * with a rate indicating STBC/BFER and ANT_AB.
  946. */
  947. static inline bool rs_rate_equal(struct rs_rate *a,
  948. struct rs_rate *b,
  949. bool allow_ant_mismatch)
  950. {
  951. bool ant_match = (a->ant == b->ant) && (a->stbc == b->stbc) &&
  952. (a->bfer == b->bfer);
  953. if (allow_ant_mismatch) {
  954. if (a->stbc || a->bfer) {
  955. WARN_ONCE(a->ant != ANT_AB, "stbc %d bfer %d ant %d",
  956. a->stbc, a->bfer, a->ant);
  957. ant_match |= (b->ant == ANT_A || b->ant == ANT_B);
  958. } else if (b->stbc || b->bfer) {
  959. WARN_ONCE(b->ant != ANT_AB, "stbc %d bfer %d ant %d",
  960. b->stbc, b->bfer, b->ant);
  961. ant_match |= (a->ant == ANT_A || a->ant == ANT_B);
  962. }
  963. }
  964. return (a->type == b->type) && (a->bw == b->bw) && (a->sgi == b->sgi) &&
  965. (a->ldpc == b->ldpc) && (a->index == b->index) && ant_match;
  966. }
  967. /* Check if both rates share the same column */
  968. static inline bool rs_rate_column_match(struct rs_rate *a,
  969. struct rs_rate *b)
  970. {
  971. bool ant_match;
  972. if (a->stbc || a->bfer)
  973. ant_match = (b->ant == ANT_A || b->ant == ANT_B);
  974. else
  975. ant_match = (a->ant == b->ant);
  976. return (a->type == b->type) && (a->bw == b->bw) && (a->sgi == b->sgi)
  977. && ant_match;
  978. }
  979. static inline enum rs_column rs_get_column_from_rate(struct rs_rate *rate)
  980. {
  981. if (is_legacy(rate)) {
  982. if (rate->ant == ANT_A)
  983. return RS_COLUMN_LEGACY_ANT_A;
  984. if (rate->ant == ANT_B)
  985. return RS_COLUMN_LEGACY_ANT_B;
  986. goto err;
  987. }
  988. if (is_siso(rate)) {
  989. if (rate->ant == ANT_A || rate->stbc || rate->bfer)
  990. return rate->sgi ? RS_COLUMN_SISO_ANT_A_SGI :
  991. RS_COLUMN_SISO_ANT_A;
  992. if (rate->ant == ANT_B)
  993. return rate->sgi ? RS_COLUMN_SISO_ANT_B_SGI :
  994. RS_COLUMN_SISO_ANT_B;
  995. goto err;
  996. }
  997. if (is_mimo(rate))
  998. return rate->sgi ? RS_COLUMN_MIMO2_SGI : RS_COLUMN_MIMO2;
  999. err:
  1000. return RS_COLUMN_INVALID;
  1001. }
  1002. static u8 rs_get_tid(struct ieee80211_hdr *hdr)
  1003. {
  1004. u8 tid = IWL_MAX_TID_COUNT;
  1005. if (ieee80211_is_data_qos(hdr->frame_control)) {
  1006. u8 *qc = ieee80211_get_qos_ctl(hdr);
  1007. tid = qc[0] & 0xf;
  1008. }
  1009. if (unlikely(tid > IWL_MAX_TID_COUNT))
  1010. tid = IWL_MAX_TID_COUNT;
  1011. return tid;
  1012. }
  1013. void iwl_mvm_rs_tx_status(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  1014. int tid, struct ieee80211_tx_info *info, bool ndp)
  1015. {
  1016. int legacy_success;
  1017. int retries;
  1018. int i;
  1019. struct iwl_lq_cmd *table;
  1020. u32 lq_hwrate;
  1021. struct rs_rate lq_rate, tx_resp_rate;
  1022. struct iwl_scale_tbl_info *curr_tbl, *other_tbl, *tmp_tbl;
  1023. u8 reduced_txp = (uintptr_t)info->status.status_driver_data[0];
  1024. u32 tx_resp_hwrate = (uintptr_t)info->status.status_driver_data[1];
  1025. struct iwl_mvm_sta *mvmsta = iwl_mvm_sta_from_mac80211(sta);
  1026. struct iwl_lq_sta *lq_sta = &mvmsta->lq_sta;
  1027. bool allow_ant_mismatch = fw_has_api(&mvm->fw->ucode_capa,
  1028. IWL_UCODE_TLV_API_LQ_SS_PARAMS);
  1029. /* Treat uninitialized rate scaling data same as non-existing. */
  1030. if (!lq_sta) {
  1031. IWL_DEBUG_RATE(mvm, "Station rate scaling not created yet.\n");
  1032. return;
  1033. } else if (!lq_sta->pers.drv) {
  1034. IWL_DEBUG_RATE(mvm, "Rate scaling not initialized yet.\n");
  1035. return;
  1036. }
  1037. /* This packet was aggregated but doesn't carry status info */
  1038. if ((info->flags & IEEE80211_TX_CTL_AMPDU) &&
  1039. !(info->flags & IEEE80211_TX_STAT_AMPDU))
  1040. return;
  1041. rs_rate_from_ucode_rate(tx_resp_hwrate, info->band, &tx_resp_rate);
  1042. #ifdef CONFIG_MAC80211_DEBUGFS
  1043. /* Disable last tx check if we are debugging with fixed rate but
  1044. * update tx stats */
  1045. if (lq_sta->pers.dbg_fixed_rate) {
  1046. int index = tx_resp_rate.index;
  1047. enum rs_column column;
  1048. int attempts, success;
  1049. column = rs_get_column_from_rate(&tx_resp_rate);
  1050. if (WARN_ONCE(column == RS_COLUMN_INVALID,
  1051. "Can't map rate 0x%x to column",
  1052. tx_resp_hwrate))
  1053. return;
  1054. if (info->flags & IEEE80211_TX_STAT_AMPDU) {
  1055. attempts = info->status.ampdu_len;
  1056. success = info->status.ampdu_ack_len;
  1057. } else {
  1058. attempts = info->status.rates[0].count;
  1059. success = !!(info->flags & IEEE80211_TX_STAT_ACK);
  1060. }
  1061. lq_sta->pers.tx_stats[column][index].total += attempts;
  1062. lq_sta->pers.tx_stats[column][index].success += success;
  1063. IWL_DEBUG_RATE(mvm, "Fixed rate 0x%x success %d attempts %d\n",
  1064. tx_resp_hwrate, success, attempts);
  1065. return;
  1066. }
  1067. #endif
  1068. if (time_after(jiffies,
  1069. (unsigned long)(lq_sta->last_tx +
  1070. (IWL_MVM_RS_IDLE_TIMEOUT * HZ)))) {
  1071. int t;
  1072. IWL_DEBUG_RATE(mvm, "Tx idle for too long. reinit rs\n");
  1073. for (t = 0; t < IWL_MAX_TID_COUNT; t++)
  1074. ieee80211_stop_tx_ba_session(sta, t);
  1075. iwl_mvm_rs_rate_init(mvm, sta, info->band, false);
  1076. return;
  1077. }
  1078. lq_sta->last_tx = jiffies;
  1079. /* Ignore this Tx frame response if its initial rate doesn't match
  1080. * that of latest Link Quality command. There may be stragglers
  1081. * from a previous Link Quality command, but we're no longer interested
  1082. * in those; they're either from the "active" mode while we're trying
  1083. * to check "search" mode, or a prior "search" mode after we've moved
  1084. * to a new "search" mode (which might become the new "active" mode).
  1085. */
  1086. table = &lq_sta->lq;
  1087. lq_hwrate = le32_to_cpu(table->rs_table[0]);
  1088. rs_rate_from_ucode_rate(lq_hwrate, info->band, &lq_rate);
  1089. /* Here we actually compare this rate to the latest LQ command */
  1090. if (!rs_rate_equal(&tx_resp_rate, &lq_rate, allow_ant_mismatch)) {
  1091. IWL_DEBUG_RATE(mvm,
  1092. "initial tx resp rate 0x%x does not match 0x%x\n",
  1093. tx_resp_hwrate, lq_hwrate);
  1094. /*
  1095. * Since rates mis-match, the last LQ command may have failed.
  1096. * After IWL_MISSED_RATE_MAX mis-matches, resync the uCode with
  1097. * ... driver.
  1098. */
  1099. lq_sta->missed_rate_counter++;
  1100. if (lq_sta->missed_rate_counter > IWL_MVM_RS_MISSED_RATE_MAX) {
  1101. lq_sta->missed_rate_counter = 0;
  1102. IWL_DEBUG_RATE(mvm,
  1103. "Too many rates mismatch. Send sync LQ. rs_state %d\n",
  1104. lq_sta->rs_state);
  1105. iwl_mvm_send_lq_cmd(mvm, &lq_sta->lq, false);
  1106. }
  1107. /* Regardless, ignore this status info for outdated rate */
  1108. return;
  1109. } else
  1110. /* Rate did match, so reset the missed_rate_counter */
  1111. lq_sta->missed_rate_counter = 0;
  1112. if (!lq_sta->search_better_tbl) {
  1113. curr_tbl = &(lq_sta->lq_info[lq_sta->active_tbl]);
  1114. other_tbl = &(lq_sta->lq_info[1 - lq_sta->active_tbl]);
  1115. } else {
  1116. curr_tbl = &(lq_sta->lq_info[1 - lq_sta->active_tbl]);
  1117. other_tbl = &(lq_sta->lq_info[lq_sta->active_tbl]);
  1118. }
  1119. if (WARN_ON_ONCE(!rs_rate_column_match(&lq_rate, &curr_tbl->rate))) {
  1120. IWL_DEBUG_RATE(mvm,
  1121. "Neither active nor search matches tx rate\n");
  1122. tmp_tbl = &(lq_sta->lq_info[lq_sta->active_tbl]);
  1123. rs_dump_rate(mvm, &tmp_tbl->rate, "ACTIVE");
  1124. tmp_tbl = &(lq_sta->lq_info[1 - lq_sta->active_tbl]);
  1125. rs_dump_rate(mvm, &tmp_tbl->rate, "SEARCH");
  1126. rs_dump_rate(mvm, &lq_rate, "ACTUAL");
  1127. /*
  1128. * no matching table found, let's by-pass the data collection
  1129. * and continue to perform rate scale to find the rate table
  1130. */
  1131. rs_stay_in_table(lq_sta, true);
  1132. goto done;
  1133. }
  1134. /*
  1135. * Updating the frame history depends on whether packets were
  1136. * aggregated.
  1137. *
  1138. * For aggregation, all packets were transmitted at the same rate, the
  1139. * first index into rate scale table.
  1140. */
  1141. if (info->flags & IEEE80211_TX_STAT_AMPDU) {
  1142. rs_collect_tpc_data(mvm, lq_sta, curr_tbl, lq_rate.index,
  1143. info->status.ampdu_len,
  1144. info->status.ampdu_ack_len,
  1145. reduced_txp);
  1146. /* ampdu_ack_len = 0 marks no BA was received. For TLC, treat
  1147. * it as a single frame loss as we don't want the success ratio
  1148. * to dip too quickly because a BA wasn't received.
  1149. * For TPC, there's no need for this optimisation since we want
  1150. * to recover very quickly from a bad power reduction and,
  1151. * therefore we'd like the success ratio to get an immediate hit
  1152. * when failing to get a BA, so we'd switch back to a lower or
  1153. * zero power reduction. When FW transmits agg with a rate
  1154. * different from the initial rate, it will not use reduced txp
  1155. * and will send BA notification twice (one empty with reduced
  1156. * txp equal to the value from LQ and one with reduced txp 0).
  1157. * We need to update counters for each txp level accordingly.
  1158. */
  1159. if (info->status.ampdu_ack_len == 0)
  1160. info->status.ampdu_len = 1;
  1161. rs_collect_tlc_data(mvm, lq_sta, curr_tbl, lq_rate.index,
  1162. info->status.ampdu_len,
  1163. info->status.ampdu_ack_len);
  1164. /* Update success/fail counts if not searching for new mode */
  1165. if (lq_sta->rs_state == RS_STATE_STAY_IN_COLUMN) {
  1166. lq_sta->total_success += info->status.ampdu_ack_len;
  1167. lq_sta->total_failed += (info->status.ampdu_len -
  1168. info->status.ampdu_ack_len);
  1169. }
  1170. } else {
  1171. /* For legacy, update frame history with for each Tx retry. */
  1172. retries = info->status.rates[0].count - 1;
  1173. /* HW doesn't send more than 15 retries */
  1174. retries = min(retries, 15);
  1175. /* The last transmission may have been successful */
  1176. legacy_success = !!(info->flags & IEEE80211_TX_STAT_ACK);
  1177. /* Collect data for each rate used during failed TX attempts */
  1178. for (i = 0; i <= retries; ++i) {
  1179. lq_hwrate = le32_to_cpu(table->rs_table[i]);
  1180. rs_rate_from_ucode_rate(lq_hwrate, info->band,
  1181. &lq_rate);
  1182. /*
  1183. * Only collect stats if retried rate is in the same RS
  1184. * table as active/search.
  1185. */
  1186. if (rs_rate_column_match(&lq_rate, &curr_tbl->rate))
  1187. tmp_tbl = curr_tbl;
  1188. else if (rs_rate_column_match(&lq_rate,
  1189. &other_tbl->rate))
  1190. tmp_tbl = other_tbl;
  1191. else
  1192. continue;
  1193. rs_collect_tpc_data(mvm, lq_sta, tmp_tbl,
  1194. lq_rate.index, 1,
  1195. i < retries ? 0 : legacy_success,
  1196. reduced_txp);
  1197. rs_collect_tlc_data(mvm, lq_sta, tmp_tbl,
  1198. lq_rate.index, 1,
  1199. i < retries ? 0 : legacy_success);
  1200. }
  1201. /* Update success/fail counts if not searching for new mode */
  1202. if (lq_sta->rs_state == RS_STATE_STAY_IN_COLUMN) {
  1203. lq_sta->total_success += legacy_success;
  1204. lq_sta->total_failed += retries + (1 - legacy_success);
  1205. }
  1206. }
  1207. /* The last TX rate is cached in lq_sta; it's set in if/else above */
  1208. lq_sta->last_rate_n_flags = lq_hwrate;
  1209. IWL_DEBUG_RATE(mvm, "reduced txpower: %d\n", reduced_txp);
  1210. done:
  1211. /* See if there's a better rate or modulation mode to try. */
  1212. if (sta->supp_rates[info->band])
  1213. rs_rate_scale_perform(mvm, sta, lq_sta, tid, ndp);
  1214. }
  1215. /*
  1216. * mac80211 sends us Tx status
  1217. */
  1218. static void rs_mac80211_tx_status(void *mvm_r,
  1219. struct ieee80211_supported_band *sband,
  1220. struct ieee80211_sta *sta, void *priv_sta,
  1221. struct sk_buff *skb)
  1222. {
  1223. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
  1224. struct iwl_op_mode *op_mode = (struct iwl_op_mode *)mvm_r;
  1225. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  1226. struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
  1227. if (!iwl_mvm_sta_from_mac80211(sta)->vif)
  1228. return;
  1229. if (!ieee80211_is_data(hdr->frame_control) ||
  1230. info->flags & IEEE80211_TX_CTL_NO_ACK)
  1231. return;
  1232. iwl_mvm_rs_tx_status(mvm, sta, rs_get_tid(hdr), info,
  1233. ieee80211_is_qos_nullfunc(hdr->frame_control));
  1234. }
  1235. /*
  1236. * Begin a period of staying with a selected modulation mode.
  1237. * Set "stay_in_tbl" flag to prevent any mode switches.
  1238. * Set frame tx success limits according to legacy vs. high-throughput,
  1239. * and reset overall (spanning all rates) tx success history statistics.
  1240. * These control how long we stay using same modulation mode before
  1241. * searching for a new mode.
  1242. */
  1243. static void rs_set_stay_in_table(struct iwl_mvm *mvm, u8 is_legacy,
  1244. struct iwl_lq_sta *lq_sta)
  1245. {
  1246. IWL_DEBUG_RATE(mvm, "Moving to RS_STATE_STAY_IN_COLUMN\n");
  1247. lq_sta->rs_state = RS_STATE_STAY_IN_COLUMN;
  1248. if (is_legacy) {
  1249. lq_sta->table_count_limit = IWL_MVM_RS_LEGACY_TABLE_COUNT;
  1250. lq_sta->max_failure_limit = IWL_MVM_RS_LEGACY_FAILURE_LIMIT;
  1251. lq_sta->max_success_limit = IWL_MVM_RS_LEGACY_SUCCESS_LIMIT;
  1252. } else {
  1253. lq_sta->table_count_limit = IWL_MVM_RS_NON_LEGACY_TABLE_COUNT;
  1254. lq_sta->max_failure_limit = IWL_MVM_RS_NON_LEGACY_FAILURE_LIMIT;
  1255. lq_sta->max_success_limit = IWL_MVM_RS_NON_LEGACY_SUCCESS_LIMIT;
  1256. }
  1257. lq_sta->table_count = 0;
  1258. lq_sta->total_failed = 0;
  1259. lq_sta->total_success = 0;
  1260. lq_sta->flush_timer = jiffies;
  1261. lq_sta->visited_columns = 0;
  1262. }
  1263. static inline int rs_get_max_rate_from_mask(unsigned long rate_mask)
  1264. {
  1265. if (rate_mask)
  1266. return find_last_bit(&rate_mask, BITS_PER_LONG);
  1267. return IWL_RATE_INVALID;
  1268. }
  1269. static int rs_get_max_allowed_rate(struct iwl_lq_sta *lq_sta,
  1270. const struct rs_tx_column *column)
  1271. {
  1272. switch (column->mode) {
  1273. case RS_LEGACY:
  1274. return lq_sta->max_legacy_rate_idx;
  1275. case RS_SISO:
  1276. return lq_sta->max_siso_rate_idx;
  1277. case RS_MIMO2:
  1278. return lq_sta->max_mimo2_rate_idx;
  1279. default:
  1280. WARN_ON_ONCE(1);
  1281. }
  1282. return lq_sta->max_legacy_rate_idx;
  1283. }
  1284. static const u16 *rs_get_expected_tpt_table(struct iwl_lq_sta *lq_sta,
  1285. const struct rs_tx_column *column,
  1286. u32 bw)
  1287. {
  1288. /* Used to choose among HT tables */
  1289. const u16 (*ht_tbl_pointer)[IWL_RATE_COUNT];
  1290. if (WARN_ON_ONCE(column->mode != RS_LEGACY &&
  1291. column->mode != RS_SISO &&
  1292. column->mode != RS_MIMO2))
  1293. return expected_tpt_legacy;
  1294. /* Legacy rates have only one table */
  1295. if (column->mode == RS_LEGACY)
  1296. return expected_tpt_legacy;
  1297. ht_tbl_pointer = expected_tpt_mimo2_20MHz;
  1298. /* Choose among many HT tables depending on number of streams
  1299. * (SISO/MIMO2), channel width (20/40/80), SGI, and aggregation
  1300. * status */
  1301. if (column->mode == RS_SISO) {
  1302. switch (bw) {
  1303. case RATE_MCS_CHAN_WIDTH_20:
  1304. ht_tbl_pointer = expected_tpt_siso_20MHz;
  1305. break;
  1306. case RATE_MCS_CHAN_WIDTH_40:
  1307. ht_tbl_pointer = expected_tpt_siso_40MHz;
  1308. break;
  1309. case RATE_MCS_CHAN_WIDTH_80:
  1310. ht_tbl_pointer = expected_tpt_siso_80MHz;
  1311. break;
  1312. case RATE_MCS_CHAN_WIDTH_160:
  1313. ht_tbl_pointer = expected_tpt_siso_160MHz;
  1314. break;
  1315. default:
  1316. WARN_ON_ONCE(1);
  1317. }
  1318. } else if (column->mode == RS_MIMO2) {
  1319. switch (bw) {
  1320. case RATE_MCS_CHAN_WIDTH_20:
  1321. ht_tbl_pointer = expected_tpt_mimo2_20MHz;
  1322. break;
  1323. case RATE_MCS_CHAN_WIDTH_40:
  1324. ht_tbl_pointer = expected_tpt_mimo2_40MHz;
  1325. break;
  1326. case RATE_MCS_CHAN_WIDTH_80:
  1327. ht_tbl_pointer = expected_tpt_mimo2_80MHz;
  1328. break;
  1329. case RATE_MCS_CHAN_WIDTH_160:
  1330. ht_tbl_pointer = expected_tpt_mimo2_160MHz;
  1331. break;
  1332. default:
  1333. WARN_ON_ONCE(1);
  1334. }
  1335. } else {
  1336. WARN_ON_ONCE(1);
  1337. }
  1338. if (!column->sgi && !lq_sta->is_agg) /* Normal */
  1339. return ht_tbl_pointer[0];
  1340. else if (column->sgi && !lq_sta->is_agg) /* SGI */
  1341. return ht_tbl_pointer[1];
  1342. else if (!column->sgi && lq_sta->is_agg) /* AGG */
  1343. return ht_tbl_pointer[2];
  1344. else /* AGG+SGI */
  1345. return ht_tbl_pointer[3];
  1346. }
  1347. static void rs_set_expected_tpt_table(struct iwl_lq_sta *lq_sta,
  1348. struct iwl_scale_tbl_info *tbl)
  1349. {
  1350. struct rs_rate *rate = &tbl->rate;
  1351. const struct rs_tx_column *column = &rs_tx_columns[tbl->column];
  1352. tbl->expected_tpt = rs_get_expected_tpt_table(lq_sta, column, rate->bw);
  1353. }
  1354. static s32 rs_get_best_rate(struct iwl_mvm *mvm,
  1355. struct iwl_lq_sta *lq_sta,
  1356. struct iwl_scale_tbl_info *tbl, /* "search" */
  1357. unsigned long rate_mask, s8 index)
  1358. {
  1359. struct iwl_scale_tbl_info *active_tbl =
  1360. &(lq_sta->lq_info[lq_sta->active_tbl]);
  1361. s32 success_ratio = active_tbl->win[index].success_ratio;
  1362. u16 expected_current_tpt = active_tbl->expected_tpt[index];
  1363. const u16 *tpt_tbl = tbl->expected_tpt;
  1364. u16 high_low;
  1365. u32 target_tpt;
  1366. int rate_idx;
  1367. if (success_ratio >= RS_PERCENT(IWL_MVM_RS_SR_NO_DECREASE)) {
  1368. target_tpt = 100 * expected_current_tpt;
  1369. IWL_DEBUG_RATE(mvm,
  1370. "SR %d high. Find rate exceeding EXPECTED_CURRENT %d\n",
  1371. success_ratio, target_tpt);
  1372. } else {
  1373. target_tpt = lq_sta->last_tpt;
  1374. IWL_DEBUG_RATE(mvm,
  1375. "SR %d not that good. Find rate exceeding ACTUAL_TPT %d\n",
  1376. success_ratio, target_tpt);
  1377. }
  1378. rate_idx = find_first_bit(&rate_mask, BITS_PER_LONG);
  1379. while (rate_idx != IWL_RATE_INVALID) {
  1380. if (target_tpt < (100 * tpt_tbl[rate_idx]))
  1381. break;
  1382. high_low = rs_get_adjacent_rate(mvm, rate_idx, rate_mask,
  1383. tbl->rate.type);
  1384. rate_idx = (high_low >> 8) & 0xff;
  1385. }
  1386. IWL_DEBUG_RATE(mvm, "Best rate found %d target_tp %d expected_new %d\n",
  1387. rate_idx, target_tpt,
  1388. rate_idx != IWL_RATE_INVALID ?
  1389. 100 * tpt_tbl[rate_idx] : IWL_INVALID_VALUE);
  1390. return rate_idx;
  1391. }
  1392. static u32 rs_bw_from_sta_bw(struct ieee80211_sta *sta)
  1393. {
  1394. switch (sta->bandwidth) {
  1395. case IEEE80211_STA_RX_BW_160:
  1396. return RATE_MCS_CHAN_WIDTH_160;
  1397. case IEEE80211_STA_RX_BW_80:
  1398. return RATE_MCS_CHAN_WIDTH_80;
  1399. case IEEE80211_STA_RX_BW_40:
  1400. return RATE_MCS_CHAN_WIDTH_40;
  1401. case IEEE80211_STA_RX_BW_20:
  1402. default:
  1403. return RATE_MCS_CHAN_WIDTH_20;
  1404. }
  1405. }
  1406. /*
  1407. * Check whether we should continue using same modulation mode, or
  1408. * begin search for a new mode, based on:
  1409. * 1) # tx successes or failures while using this mode
  1410. * 2) # times calling this function
  1411. * 3) elapsed time in this mode (not used, for now)
  1412. */
  1413. static void rs_stay_in_table(struct iwl_lq_sta *lq_sta, bool force_search)
  1414. {
  1415. struct iwl_scale_tbl_info *tbl;
  1416. int active_tbl;
  1417. int flush_interval_passed = 0;
  1418. struct iwl_mvm *mvm;
  1419. mvm = lq_sta->pers.drv;
  1420. active_tbl = lq_sta->active_tbl;
  1421. tbl = &(lq_sta->lq_info[active_tbl]);
  1422. /* If we've been disallowing search, see if we should now allow it */
  1423. if (lq_sta->rs_state == RS_STATE_STAY_IN_COLUMN) {
  1424. /* Elapsed time using current modulation mode */
  1425. if (lq_sta->flush_timer)
  1426. flush_interval_passed =
  1427. time_after(jiffies,
  1428. (unsigned long)(lq_sta->flush_timer +
  1429. (IWL_MVM_RS_STAY_IN_COLUMN_TIMEOUT * HZ)));
  1430. /*
  1431. * Check if we should allow search for new modulation mode.
  1432. * If many frames have failed or succeeded, or we've used
  1433. * this same modulation for a long time, allow search, and
  1434. * reset history stats that keep track of whether we should
  1435. * allow a new search. Also (below) reset all bitmaps and
  1436. * stats in active history.
  1437. */
  1438. if (force_search ||
  1439. (lq_sta->total_failed > lq_sta->max_failure_limit) ||
  1440. (lq_sta->total_success > lq_sta->max_success_limit) ||
  1441. ((!lq_sta->search_better_tbl) &&
  1442. (lq_sta->flush_timer) && (flush_interval_passed))) {
  1443. IWL_DEBUG_RATE(mvm,
  1444. "LQ: stay is expired %d %d %d\n",
  1445. lq_sta->total_failed,
  1446. lq_sta->total_success,
  1447. flush_interval_passed);
  1448. /* Allow search for new mode */
  1449. lq_sta->rs_state = RS_STATE_SEARCH_CYCLE_STARTED;
  1450. IWL_DEBUG_RATE(mvm,
  1451. "Moving to RS_STATE_SEARCH_CYCLE_STARTED\n");
  1452. lq_sta->total_failed = 0;
  1453. lq_sta->total_success = 0;
  1454. lq_sta->flush_timer = 0;
  1455. /* mark the current column as visited */
  1456. lq_sta->visited_columns = BIT(tbl->column);
  1457. /*
  1458. * Else if we've used this modulation mode enough repetitions
  1459. * (regardless of elapsed time or success/failure), reset
  1460. * history bitmaps and rate-specific stats for all rates in
  1461. * active table.
  1462. */
  1463. } else {
  1464. lq_sta->table_count++;
  1465. if (lq_sta->table_count >=
  1466. lq_sta->table_count_limit) {
  1467. lq_sta->table_count = 0;
  1468. IWL_DEBUG_RATE(mvm,
  1469. "LQ: stay in table clear win\n");
  1470. rs_rate_scale_clear_tbl_windows(mvm, tbl);
  1471. }
  1472. }
  1473. /* If transitioning to allow "search", reset all history
  1474. * bitmaps and stats in active table (this will become the new
  1475. * "search" table). */
  1476. if (lq_sta->rs_state == RS_STATE_SEARCH_CYCLE_STARTED) {
  1477. rs_rate_scale_clear_tbl_windows(mvm, tbl);
  1478. }
  1479. }
  1480. }
  1481. static void rs_set_amsdu_len(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  1482. struct iwl_scale_tbl_info *tbl,
  1483. enum rs_action scale_action)
  1484. {
  1485. struct iwl_mvm_sta *sta_priv = iwl_mvm_sta_from_mac80211(sta);
  1486. if ((!is_vht(&tbl->rate) && !is_ht(&tbl->rate)) ||
  1487. tbl->rate.index < IWL_RATE_MCS_5_INDEX ||
  1488. scale_action == RS_ACTION_DOWNSCALE)
  1489. sta_priv->tlc_amsdu = false;
  1490. else
  1491. sta_priv->tlc_amsdu = true;
  1492. }
  1493. /*
  1494. * setup rate table in uCode
  1495. */
  1496. static void rs_update_rate_tbl(struct iwl_mvm *mvm,
  1497. struct ieee80211_sta *sta,
  1498. struct iwl_lq_sta *lq_sta,
  1499. struct iwl_scale_tbl_info *tbl)
  1500. {
  1501. rs_fill_lq_cmd(mvm, sta, lq_sta, &tbl->rate);
  1502. iwl_mvm_send_lq_cmd(mvm, &lq_sta->lq, false);
  1503. }
  1504. static bool rs_tweak_rate_tbl(struct iwl_mvm *mvm,
  1505. struct ieee80211_sta *sta,
  1506. struct iwl_lq_sta *lq_sta,
  1507. struct iwl_scale_tbl_info *tbl,
  1508. enum rs_action scale_action)
  1509. {
  1510. if (sta->bandwidth != IEEE80211_STA_RX_BW_80)
  1511. return false;
  1512. if (!is_vht_siso(&tbl->rate))
  1513. return false;
  1514. if ((tbl->rate.bw == RATE_MCS_CHAN_WIDTH_80) &&
  1515. (tbl->rate.index == IWL_RATE_MCS_0_INDEX) &&
  1516. (scale_action == RS_ACTION_DOWNSCALE)) {
  1517. tbl->rate.bw = RATE_MCS_CHAN_WIDTH_20;
  1518. tbl->rate.index = IWL_RATE_MCS_4_INDEX;
  1519. IWL_DEBUG_RATE(mvm, "Switch 80Mhz SISO MCS0 -> 20Mhz MCS4\n");
  1520. goto tweaked;
  1521. }
  1522. /* Go back to 80Mhz MCS1 only if we've established that 20Mhz MCS5 is
  1523. * sustainable, i.e. we're past the test window. We can't go back
  1524. * if MCS5 is just tested as this will happen always after switching
  1525. * to 20Mhz MCS4 because the rate stats are cleared.
  1526. */
  1527. if ((tbl->rate.bw == RATE_MCS_CHAN_WIDTH_20) &&
  1528. (((tbl->rate.index == IWL_RATE_MCS_5_INDEX) &&
  1529. (scale_action == RS_ACTION_STAY)) ||
  1530. ((tbl->rate.index > IWL_RATE_MCS_5_INDEX) &&
  1531. (scale_action == RS_ACTION_UPSCALE)))) {
  1532. tbl->rate.bw = RATE_MCS_CHAN_WIDTH_80;
  1533. tbl->rate.index = IWL_RATE_MCS_1_INDEX;
  1534. IWL_DEBUG_RATE(mvm, "Switch 20Mhz SISO MCS5 -> 80Mhz MCS1\n");
  1535. goto tweaked;
  1536. }
  1537. return false;
  1538. tweaked:
  1539. rs_set_expected_tpt_table(lq_sta, tbl);
  1540. rs_rate_scale_clear_tbl_windows(mvm, tbl);
  1541. return true;
  1542. }
  1543. static enum rs_column rs_get_next_column(struct iwl_mvm *mvm,
  1544. struct iwl_lq_sta *lq_sta,
  1545. struct ieee80211_sta *sta,
  1546. struct iwl_scale_tbl_info *tbl)
  1547. {
  1548. int i, j, max_rate;
  1549. enum rs_column next_col_id;
  1550. const struct rs_tx_column *curr_col = &rs_tx_columns[tbl->column];
  1551. const struct rs_tx_column *next_col;
  1552. allow_column_func_t allow_func;
  1553. u8 valid_ants = iwl_mvm_get_valid_tx_ant(mvm);
  1554. const u16 *expected_tpt_tbl;
  1555. u16 tpt, max_expected_tpt;
  1556. for (i = 0; i < MAX_NEXT_COLUMNS; i++) {
  1557. next_col_id = curr_col->next_columns[i];
  1558. if (next_col_id == RS_COLUMN_INVALID)
  1559. continue;
  1560. if (lq_sta->visited_columns & BIT(next_col_id)) {
  1561. IWL_DEBUG_RATE(mvm, "Skip already visited column %d\n",
  1562. next_col_id);
  1563. continue;
  1564. }
  1565. next_col = &rs_tx_columns[next_col_id];
  1566. if (!rs_is_valid_ant(valid_ants, next_col->ant)) {
  1567. IWL_DEBUG_RATE(mvm,
  1568. "Skip column %d as ANT config isn't supported by chip. valid_ants 0x%x column ant 0x%x\n",
  1569. next_col_id, valid_ants, next_col->ant);
  1570. continue;
  1571. }
  1572. for (j = 0; j < MAX_COLUMN_CHECKS; j++) {
  1573. allow_func = next_col->checks[j];
  1574. if (allow_func && !allow_func(mvm, sta, &tbl->rate,
  1575. next_col))
  1576. break;
  1577. }
  1578. if (j != MAX_COLUMN_CHECKS) {
  1579. IWL_DEBUG_RATE(mvm,
  1580. "Skip column %d: not allowed (check %d failed)\n",
  1581. next_col_id, j);
  1582. continue;
  1583. }
  1584. tpt = lq_sta->last_tpt / 100;
  1585. expected_tpt_tbl = rs_get_expected_tpt_table(lq_sta, next_col,
  1586. rs_bw_from_sta_bw(sta));
  1587. if (WARN_ON_ONCE(!expected_tpt_tbl))
  1588. continue;
  1589. max_rate = rs_get_max_allowed_rate(lq_sta, next_col);
  1590. if (max_rate == IWL_RATE_INVALID) {
  1591. IWL_DEBUG_RATE(mvm,
  1592. "Skip column %d: no rate is allowed in this column\n",
  1593. next_col_id);
  1594. continue;
  1595. }
  1596. max_expected_tpt = expected_tpt_tbl[max_rate];
  1597. if (tpt >= max_expected_tpt) {
  1598. IWL_DEBUG_RATE(mvm,
  1599. "Skip column %d: can't beat current TPT. Max expected %d current %d\n",
  1600. next_col_id, max_expected_tpt, tpt);
  1601. continue;
  1602. }
  1603. IWL_DEBUG_RATE(mvm,
  1604. "Found potential column %d. Max expected %d current %d\n",
  1605. next_col_id, max_expected_tpt, tpt);
  1606. break;
  1607. }
  1608. if (i == MAX_NEXT_COLUMNS)
  1609. return RS_COLUMN_INVALID;
  1610. return next_col_id;
  1611. }
  1612. static int rs_switch_to_column(struct iwl_mvm *mvm,
  1613. struct iwl_lq_sta *lq_sta,
  1614. struct ieee80211_sta *sta,
  1615. enum rs_column col_id)
  1616. {
  1617. struct iwl_scale_tbl_info *tbl = &(lq_sta->lq_info[lq_sta->active_tbl]);
  1618. struct iwl_scale_tbl_info *search_tbl =
  1619. &(lq_sta->lq_info[(1 - lq_sta->active_tbl)]);
  1620. struct rs_rate *rate = &search_tbl->rate;
  1621. const struct rs_tx_column *column = &rs_tx_columns[col_id];
  1622. const struct rs_tx_column *curr_column = &rs_tx_columns[tbl->column];
  1623. u32 sz = (sizeof(struct iwl_scale_tbl_info) -
  1624. (sizeof(struct iwl_rate_scale_data) * IWL_RATE_COUNT));
  1625. unsigned long rate_mask = 0;
  1626. u32 rate_idx = 0;
  1627. memcpy(search_tbl, tbl, sz);
  1628. rate->sgi = column->sgi;
  1629. rate->ant = column->ant;
  1630. if (column->mode == RS_LEGACY) {
  1631. if (lq_sta->band == NL80211_BAND_5GHZ)
  1632. rate->type = LQ_LEGACY_A;
  1633. else
  1634. rate->type = LQ_LEGACY_G;
  1635. rate->bw = RATE_MCS_CHAN_WIDTH_20;
  1636. rate->ldpc = false;
  1637. rate_mask = lq_sta->active_legacy_rate;
  1638. } else if (column->mode == RS_SISO) {
  1639. rate->type = lq_sta->is_vht ? LQ_VHT_SISO : LQ_HT_SISO;
  1640. rate_mask = lq_sta->active_siso_rate;
  1641. } else if (column->mode == RS_MIMO2) {
  1642. rate->type = lq_sta->is_vht ? LQ_VHT_MIMO2 : LQ_HT_MIMO2;
  1643. rate_mask = lq_sta->active_mimo2_rate;
  1644. } else {
  1645. WARN_ONCE(1, "Bad column mode");
  1646. }
  1647. if (column->mode != RS_LEGACY) {
  1648. rate->bw = rs_bw_from_sta_bw(sta);
  1649. rate->ldpc = lq_sta->ldpc;
  1650. }
  1651. search_tbl->column = col_id;
  1652. rs_set_expected_tpt_table(lq_sta, search_tbl);
  1653. lq_sta->visited_columns |= BIT(col_id);
  1654. /* Get the best matching rate if we're changing modes. e.g.
  1655. * SISO->MIMO, LEGACY->SISO, MIMO->SISO
  1656. */
  1657. if (curr_column->mode != column->mode) {
  1658. rate_idx = rs_get_best_rate(mvm, lq_sta, search_tbl,
  1659. rate_mask, rate->index);
  1660. if ((rate_idx == IWL_RATE_INVALID) ||
  1661. !(BIT(rate_idx) & rate_mask)) {
  1662. IWL_DEBUG_RATE(mvm,
  1663. "can not switch with index %d"
  1664. " rate mask %lx\n",
  1665. rate_idx, rate_mask);
  1666. goto err;
  1667. }
  1668. rate->index = rate_idx;
  1669. }
  1670. IWL_DEBUG_RATE(mvm, "Switched to column %d: Index %d\n",
  1671. col_id, rate->index);
  1672. return 0;
  1673. err:
  1674. rate->type = LQ_NONE;
  1675. return -1;
  1676. }
  1677. static enum rs_action rs_get_rate_action(struct iwl_mvm *mvm,
  1678. struct iwl_scale_tbl_info *tbl,
  1679. s32 sr, int low, int high,
  1680. int current_tpt,
  1681. int low_tpt, int high_tpt)
  1682. {
  1683. enum rs_action action = RS_ACTION_STAY;
  1684. if ((sr <= RS_PERCENT(IWL_MVM_RS_SR_FORCE_DECREASE)) ||
  1685. (current_tpt == 0)) {
  1686. IWL_DEBUG_RATE(mvm,
  1687. "Decrease rate because of low SR\n");
  1688. return RS_ACTION_DOWNSCALE;
  1689. }
  1690. if ((low_tpt == IWL_INVALID_VALUE) &&
  1691. (high_tpt == IWL_INVALID_VALUE) &&
  1692. (high != IWL_RATE_INVALID)) {
  1693. IWL_DEBUG_RATE(mvm,
  1694. "No data about high/low rates. Increase rate\n");
  1695. return RS_ACTION_UPSCALE;
  1696. }
  1697. if ((high_tpt == IWL_INVALID_VALUE) &&
  1698. (high != IWL_RATE_INVALID) &&
  1699. (low_tpt != IWL_INVALID_VALUE) &&
  1700. (low_tpt < current_tpt)) {
  1701. IWL_DEBUG_RATE(mvm,
  1702. "No data about high rate and low rate is worse. Increase rate\n");
  1703. return RS_ACTION_UPSCALE;
  1704. }
  1705. if ((high_tpt != IWL_INVALID_VALUE) &&
  1706. (high_tpt > current_tpt)) {
  1707. IWL_DEBUG_RATE(mvm,
  1708. "Higher rate is better. Increate rate\n");
  1709. return RS_ACTION_UPSCALE;
  1710. }
  1711. if ((low_tpt != IWL_INVALID_VALUE) &&
  1712. (high_tpt != IWL_INVALID_VALUE) &&
  1713. (low_tpt < current_tpt) &&
  1714. (high_tpt < current_tpt)) {
  1715. IWL_DEBUG_RATE(mvm,
  1716. "Both high and low are worse. Maintain rate\n");
  1717. return RS_ACTION_STAY;
  1718. }
  1719. if ((low_tpt != IWL_INVALID_VALUE) &&
  1720. (low_tpt > current_tpt)) {
  1721. IWL_DEBUG_RATE(mvm,
  1722. "Lower rate is better\n");
  1723. action = RS_ACTION_DOWNSCALE;
  1724. goto out;
  1725. }
  1726. if ((low_tpt == IWL_INVALID_VALUE) &&
  1727. (low != IWL_RATE_INVALID)) {
  1728. IWL_DEBUG_RATE(mvm,
  1729. "No data about lower rate\n");
  1730. action = RS_ACTION_DOWNSCALE;
  1731. goto out;
  1732. }
  1733. IWL_DEBUG_RATE(mvm, "Maintain rate\n");
  1734. out:
  1735. if ((action == RS_ACTION_DOWNSCALE) && (low != IWL_RATE_INVALID)) {
  1736. if (sr >= RS_PERCENT(IWL_MVM_RS_SR_NO_DECREASE)) {
  1737. IWL_DEBUG_RATE(mvm,
  1738. "SR is above NO DECREASE. Avoid downscale\n");
  1739. action = RS_ACTION_STAY;
  1740. } else if (current_tpt > (100 * tbl->expected_tpt[low])) {
  1741. IWL_DEBUG_RATE(mvm,
  1742. "Current TPT is higher than max expected in low rate. Avoid downscale\n");
  1743. action = RS_ACTION_STAY;
  1744. } else {
  1745. IWL_DEBUG_RATE(mvm, "Decrease rate\n");
  1746. }
  1747. }
  1748. return action;
  1749. }
  1750. static bool rs_stbc_allow(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  1751. struct iwl_lq_sta *lq_sta)
  1752. {
  1753. /* Our chip supports Tx STBC and the peer is an HT/VHT STA which
  1754. * supports STBC of at least 1*SS
  1755. */
  1756. if (!lq_sta->stbc_capable)
  1757. return false;
  1758. if (!iwl_mvm_bt_coex_is_mimo_allowed(mvm, sta))
  1759. return false;
  1760. return true;
  1761. }
  1762. static void rs_get_adjacent_txp(struct iwl_mvm *mvm, int index,
  1763. int *weaker, int *stronger)
  1764. {
  1765. *weaker = index + IWL_MVM_RS_TPC_TX_POWER_STEP;
  1766. if (*weaker > TPC_MAX_REDUCTION)
  1767. *weaker = TPC_INVALID;
  1768. *stronger = index - IWL_MVM_RS_TPC_TX_POWER_STEP;
  1769. if (*stronger < 0)
  1770. *stronger = TPC_INVALID;
  1771. }
  1772. static bool rs_tpc_allowed(struct iwl_mvm *mvm, struct ieee80211_vif *vif,
  1773. struct rs_rate *rate, enum nl80211_band band)
  1774. {
  1775. int index = rate->index;
  1776. bool cam = (iwlmvm_mod_params.power_scheme == IWL_POWER_SCHEME_CAM);
  1777. bool sta_ps_disabled = (vif->type == NL80211_IFTYPE_STATION &&
  1778. !vif->bss_conf.ps);
  1779. IWL_DEBUG_RATE(mvm, "cam: %d sta_ps_disabled %d\n",
  1780. cam, sta_ps_disabled);
  1781. /*
  1782. * allow tpc only if power management is enabled, or bt coex
  1783. * activity grade allows it and we are on 2.4Ghz.
  1784. */
  1785. if ((cam || sta_ps_disabled) &&
  1786. !iwl_mvm_bt_coex_is_tpc_allowed(mvm, band))
  1787. return false;
  1788. IWL_DEBUG_RATE(mvm, "check rate, table type: %d\n", rate->type);
  1789. if (is_legacy(rate))
  1790. return index == IWL_RATE_54M_INDEX;
  1791. if (is_ht(rate))
  1792. return index == IWL_RATE_MCS_7_INDEX;
  1793. if (is_vht(rate))
  1794. return index == IWL_RATE_MCS_7_INDEX ||
  1795. index == IWL_RATE_MCS_8_INDEX ||
  1796. index == IWL_RATE_MCS_9_INDEX;
  1797. WARN_ON_ONCE(1);
  1798. return false;
  1799. }
  1800. enum tpc_action {
  1801. TPC_ACTION_STAY,
  1802. TPC_ACTION_DECREASE,
  1803. TPC_ACTION_INCREASE,
  1804. TPC_ACTION_NO_RESTIRCTION,
  1805. };
  1806. static enum tpc_action rs_get_tpc_action(struct iwl_mvm *mvm,
  1807. s32 sr, int weak, int strong,
  1808. int current_tpt,
  1809. int weak_tpt, int strong_tpt)
  1810. {
  1811. /* stay until we have valid tpt */
  1812. if (current_tpt == IWL_INVALID_VALUE) {
  1813. IWL_DEBUG_RATE(mvm, "no current tpt. stay.\n");
  1814. return TPC_ACTION_STAY;
  1815. }
  1816. /* Too many failures, increase txp */
  1817. if (sr <= RS_PERCENT(IWL_MVM_RS_TPC_SR_FORCE_INCREASE) ||
  1818. current_tpt == 0) {
  1819. IWL_DEBUG_RATE(mvm, "increase txp because of weak SR\n");
  1820. return TPC_ACTION_NO_RESTIRCTION;
  1821. }
  1822. /* try decreasing first if applicable */
  1823. if (sr >= RS_PERCENT(IWL_MVM_RS_TPC_SR_NO_INCREASE) &&
  1824. weak != TPC_INVALID) {
  1825. if (weak_tpt == IWL_INVALID_VALUE &&
  1826. (strong_tpt == IWL_INVALID_VALUE ||
  1827. current_tpt >= strong_tpt)) {
  1828. IWL_DEBUG_RATE(mvm,
  1829. "no weak txp measurement. decrease txp\n");
  1830. return TPC_ACTION_DECREASE;
  1831. }
  1832. if (weak_tpt > current_tpt) {
  1833. IWL_DEBUG_RATE(mvm,
  1834. "lower txp has better tpt. decrease txp\n");
  1835. return TPC_ACTION_DECREASE;
  1836. }
  1837. }
  1838. /* next, increase if needed */
  1839. if (sr < RS_PERCENT(IWL_MVM_RS_TPC_SR_NO_INCREASE) &&
  1840. strong != TPC_INVALID) {
  1841. if (weak_tpt == IWL_INVALID_VALUE &&
  1842. strong_tpt != IWL_INVALID_VALUE &&
  1843. current_tpt < strong_tpt) {
  1844. IWL_DEBUG_RATE(mvm,
  1845. "higher txp has better tpt. increase txp\n");
  1846. return TPC_ACTION_INCREASE;
  1847. }
  1848. if (weak_tpt < current_tpt &&
  1849. (strong_tpt == IWL_INVALID_VALUE ||
  1850. strong_tpt > current_tpt)) {
  1851. IWL_DEBUG_RATE(mvm,
  1852. "lower txp has worse tpt. increase txp\n");
  1853. return TPC_ACTION_INCREASE;
  1854. }
  1855. }
  1856. IWL_DEBUG_RATE(mvm, "no need to increase or decrease txp - stay\n");
  1857. return TPC_ACTION_STAY;
  1858. }
  1859. static bool rs_tpc_perform(struct iwl_mvm *mvm,
  1860. struct ieee80211_sta *sta,
  1861. struct iwl_lq_sta *lq_sta,
  1862. struct iwl_scale_tbl_info *tbl)
  1863. {
  1864. struct iwl_mvm_sta *mvm_sta = iwl_mvm_sta_from_mac80211(sta);
  1865. struct ieee80211_vif *vif = mvm_sta->vif;
  1866. struct ieee80211_chanctx_conf *chanctx_conf;
  1867. enum nl80211_band band;
  1868. struct iwl_rate_scale_data *window;
  1869. struct rs_rate *rate = &tbl->rate;
  1870. enum tpc_action action;
  1871. s32 sr;
  1872. u8 cur = lq_sta->lq.reduced_tpc;
  1873. int current_tpt;
  1874. int weak, strong;
  1875. int weak_tpt = IWL_INVALID_VALUE, strong_tpt = IWL_INVALID_VALUE;
  1876. #ifdef CONFIG_MAC80211_DEBUGFS
  1877. if (lq_sta->pers.dbg_fixed_txp_reduction <= TPC_MAX_REDUCTION) {
  1878. IWL_DEBUG_RATE(mvm, "fixed tpc: %d\n",
  1879. lq_sta->pers.dbg_fixed_txp_reduction);
  1880. lq_sta->lq.reduced_tpc = lq_sta->pers.dbg_fixed_txp_reduction;
  1881. return cur != lq_sta->pers.dbg_fixed_txp_reduction;
  1882. }
  1883. #endif
  1884. rcu_read_lock();
  1885. chanctx_conf = rcu_dereference(vif->chanctx_conf);
  1886. if (WARN_ON(!chanctx_conf))
  1887. band = NUM_NL80211_BANDS;
  1888. else
  1889. band = chanctx_conf->def.chan->band;
  1890. rcu_read_unlock();
  1891. if (!rs_tpc_allowed(mvm, vif, rate, band)) {
  1892. IWL_DEBUG_RATE(mvm,
  1893. "tpc is not allowed. remove txp restrictions\n");
  1894. lq_sta->lq.reduced_tpc = TPC_NO_REDUCTION;
  1895. return cur != TPC_NO_REDUCTION;
  1896. }
  1897. rs_get_adjacent_txp(mvm, cur, &weak, &strong);
  1898. /* Collect measured throughputs for current and adjacent rates */
  1899. window = tbl->tpc_win;
  1900. sr = window[cur].success_ratio;
  1901. current_tpt = window[cur].average_tpt;
  1902. if (weak != TPC_INVALID)
  1903. weak_tpt = window[weak].average_tpt;
  1904. if (strong != TPC_INVALID)
  1905. strong_tpt = window[strong].average_tpt;
  1906. IWL_DEBUG_RATE(mvm,
  1907. "(TPC: %d): cur_tpt %d SR %d weak %d strong %d weak_tpt %d strong_tpt %d\n",
  1908. cur, current_tpt, sr, weak, strong,
  1909. weak_tpt, strong_tpt);
  1910. action = rs_get_tpc_action(mvm, sr, weak, strong,
  1911. current_tpt, weak_tpt, strong_tpt);
  1912. /* override actions if we are on the edge */
  1913. if (weak == TPC_INVALID && action == TPC_ACTION_DECREASE) {
  1914. IWL_DEBUG_RATE(mvm, "already in lowest txp, stay\n");
  1915. action = TPC_ACTION_STAY;
  1916. } else if (strong == TPC_INVALID &&
  1917. (action == TPC_ACTION_INCREASE ||
  1918. action == TPC_ACTION_NO_RESTIRCTION)) {
  1919. IWL_DEBUG_RATE(mvm, "already in highest txp, stay\n");
  1920. action = TPC_ACTION_STAY;
  1921. }
  1922. switch (action) {
  1923. case TPC_ACTION_DECREASE:
  1924. lq_sta->lq.reduced_tpc = weak;
  1925. return true;
  1926. case TPC_ACTION_INCREASE:
  1927. lq_sta->lq.reduced_tpc = strong;
  1928. return true;
  1929. case TPC_ACTION_NO_RESTIRCTION:
  1930. lq_sta->lq.reduced_tpc = TPC_NO_REDUCTION;
  1931. return true;
  1932. case TPC_ACTION_STAY:
  1933. /* do nothing */
  1934. break;
  1935. }
  1936. return false;
  1937. }
  1938. /*
  1939. * Do rate scaling and search for new modulation mode.
  1940. */
  1941. static void rs_rate_scale_perform(struct iwl_mvm *mvm,
  1942. struct ieee80211_sta *sta,
  1943. struct iwl_lq_sta *lq_sta,
  1944. int tid, bool ndp)
  1945. {
  1946. int low = IWL_RATE_INVALID;
  1947. int high = IWL_RATE_INVALID;
  1948. int index;
  1949. struct iwl_rate_scale_data *window = NULL;
  1950. int current_tpt = IWL_INVALID_VALUE;
  1951. int low_tpt = IWL_INVALID_VALUE;
  1952. int high_tpt = IWL_INVALID_VALUE;
  1953. u32 fail_count;
  1954. enum rs_action scale_action = RS_ACTION_STAY;
  1955. u16 rate_mask;
  1956. u8 update_lq = 0;
  1957. struct iwl_scale_tbl_info *tbl, *tbl1;
  1958. u8 active_tbl = 0;
  1959. u8 done_search = 0;
  1960. u16 high_low;
  1961. s32 sr;
  1962. u8 prev_agg = lq_sta->is_agg;
  1963. struct iwl_mvm_sta *sta_priv = iwl_mvm_sta_from_mac80211(sta);
  1964. struct iwl_mvm_tid_data *tid_data;
  1965. struct rs_rate *rate;
  1966. lq_sta->is_agg = !!sta_priv->agg_tids;
  1967. /*
  1968. * Select rate-scale / modulation-mode table to work with in
  1969. * the rest of this function: "search" if searching for better
  1970. * modulation mode, or "active" if doing rate scaling within a mode.
  1971. */
  1972. if (!lq_sta->search_better_tbl)
  1973. active_tbl = lq_sta->active_tbl;
  1974. else
  1975. active_tbl = 1 - lq_sta->active_tbl;
  1976. tbl = &(lq_sta->lq_info[active_tbl]);
  1977. rate = &tbl->rate;
  1978. if (prev_agg != lq_sta->is_agg) {
  1979. IWL_DEBUG_RATE(mvm,
  1980. "Aggregation changed: prev %d current %d. Update expected TPT table\n",
  1981. prev_agg, lq_sta->is_agg);
  1982. rs_set_expected_tpt_table(lq_sta, tbl);
  1983. rs_rate_scale_clear_tbl_windows(mvm, tbl);
  1984. }
  1985. /* current tx rate */
  1986. index = rate->index;
  1987. /* rates available for this association, and for modulation mode */
  1988. rate_mask = rs_get_supported_rates(lq_sta, rate);
  1989. if (!(BIT(index) & rate_mask)) {
  1990. IWL_ERR(mvm, "Current Rate is not valid\n");
  1991. if (lq_sta->search_better_tbl) {
  1992. /* revert to active table if search table is not valid*/
  1993. rate->type = LQ_NONE;
  1994. lq_sta->search_better_tbl = 0;
  1995. tbl = &(lq_sta->lq_info[lq_sta->active_tbl]);
  1996. rs_update_rate_tbl(mvm, sta, lq_sta, tbl);
  1997. }
  1998. return;
  1999. }
  2000. /* Get expected throughput table and history window for current rate */
  2001. if (!tbl->expected_tpt) {
  2002. IWL_ERR(mvm, "tbl->expected_tpt is NULL\n");
  2003. return;
  2004. }
  2005. /* TODO: handle rate_idx_mask and rate_idx_mcs_mask */
  2006. window = &(tbl->win[index]);
  2007. /*
  2008. * If there is not enough history to calculate actual average
  2009. * throughput, keep analyzing results of more tx frames, without
  2010. * changing rate or mode (bypass most of the rest of this function).
  2011. * Set up new rate table in uCode only if old rate is not supported
  2012. * in current association (use new rate found above).
  2013. */
  2014. fail_count = window->counter - window->success_counter;
  2015. if ((fail_count < IWL_MVM_RS_RATE_MIN_FAILURE_TH) &&
  2016. (window->success_counter < IWL_MVM_RS_RATE_MIN_SUCCESS_TH)) {
  2017. IWL_DEBUG_RATE(mvm,
  2018. "%s: Test Window: succ %d total %d\n",
  2019. rs_pretty_rate(rate),
  2020. window->success_counter, window->counter);
  2021. /* Can't calculate this yet; not enough history */
  2022. window->average_tpt = IWL_INVALID_VALUE;
  2023. /* Should we stay with this modulation mode,
  2024. * or search for a new one? */
  2025. rs_stay_in_table(lq_sta, false);
  2026. return;
  2027. }
  2028. /* If we are searching for better modulation mode, check success. */
  2029. if (lq_sta->search_better_tbl) {
  2030. /* If good success, continue using the "search" mode;
  2031. * no need to send new link quality command, since we're
  2032. * continuing to use the setup that we've been trying. */
  2033. if (window->average_tpt > lq_sta->last_tpt) {
  2034. IWL_DEBUG_RATE(mvm,
  2035. "SWITCHING TO NEW TABLE SR: %d "
  2036. "cur-tpt %d old-tpt %d\n",
  2037. window->success_ratio,
  2038. window->average_tpt,
  2039. lq_sta->last_tpt);
  2040. /* Swap tables; "search" becomes "active" */
  2041. lq_sta->active_tbl = active_tbl;
  2042. current_tpt = window->average_tpt;
  2043. /* Else poor success; go back to mode in "active" table */
  2044. } else {
  2045. IWL_DEBUG_RATE(mvm,
  2046. "GOING BACK TO THE OLD TABLE: SR %d "
  2047. "cur-tpt %d old-tpt %d\n",
  2048. window->success_ratio,
  2049. window->average_tpt,
  2050. lq_sta->last_tpt);
  2051. /* Nullify "search" table */
  2052. rate->type = LQ_NONE;
  2053. /* Revert to "active" table */
  2054. active_tbl = lq_sta->active_tbl;
  2055. tbl = &(lq_sta->lq_info[active_tbl]);
  2056. /* Revert to "active" rate and throughput info */
  2057. index = tbl->rate.index;
  2058. current_tpt = lq_sta->last_tpt;
  2059. /* Need to set up a new rate table in uCode */
  2060. update_lq = 1;
  2061. }
  2062. /* Either way, we've made a decision; modulation mode
  2063. * search is done, allow rate adjustment next time. */
  2064. lq_sta->search_better_tbl = 0;
  2065. done_search = 1; /* Don't switch modes below! */
  2066. goto lq_update;
  2067. }
  2068. /* (Else) not in search of better modulation mode, try for better
  2069. * starting rate, while staying in this mode. */
  2070. high_low = rs_get_adjacent_rate(mvm, index, rate_mask, rate->type);
  2071. low = high_low & 0xff;
  2072. high = (high_low >> 8) & 0xff;
  2073. /* TODO: handle rate_idx_mask and rate_idx_mcs_mask */
  2074. sr = window->success_ratio;
  2075. /* Collect measured throughputs for current and adjacent rates */
  2076. current_tpt = window->average_tpt;
  2077. if (low != IWL_RATE_INVALID)
  2078. low_tpt = tbl->win[low].average_tpt;
  2079. if (high != IWL_RATE_INVALID)
  2080. high_tpt = tbl->win[high].average_tpt;
  2081. IWL_DEBUG_RATE(mvm,
  2082. "%s: cur_tpt %d SR %d low %d high %d low_tpt %d high_tpt %d\n",
  2083. rs_pretty_rate(rate), current_tpt, sr,
  2084. low, high, low_tpt, high_tpt);
  2085. scale_action = rs_get_rate_action(mvm, tbl, sr, low, high,
  2086. current_tpt, low_tpt, high_tpt);
  2087. /* Force a search in case BT doesn't like us being in MIMO */
  2088. if (is_mimo(rate) &&
  2089. !iwl_mvm_bt_coex_is_mimo_allowed(mvm, sta)) {
  2090. IWL_DEBUG_RATE(mvm,
  2091. "BT Coex forbids MIMO. Search for new config\n");
  2092. rs_stay_in_table(lq_sta, true);
  2093. goto lq_update;
  2094. }
  2095. switch (scale_action) {
  2096. case RS_ACTION_DOWNSCALE:
  2097. /* Decrease starting rate, update uCode's rate table */
  2098. if (low != IWL_RATE_INVALID) {
  2099. update_lq = 1;
  2100. index = low;
  2101. } else {
  2102. IWL_DEBUG_RATE(mvm,
  2103. "At the bottom rate. Can't decrease\n");
  2104. }
  2105. break;
  2106. case RS_ACTION_UPSCALE:
  2107. /* Increase starting rate, update uCode's rate table */
  2108. if (high != IWL_RATE_INVALID) {
  2109. update_lq = 1;
  2110. index = high;
  2111. } else {
  2112. IWL_DEBUG_RATE(mvm,
  2113. "At the top rate. Can't increase\n");
  2114. }
  2115. break;
  2116. case RS_ACTION_STAY:
  2117. /* No change */
  2118. if (lq_sta->rs_state == RS_STATE_STAY_IN_COLUMN)
  2119. update_lq = rs_tpc_perform(mvm, sta, lq_sta, tbl);
  2120. break;
  2121. default:
  2122. break;
  2123. }
  2124. lq_update:
  2125. /* Replace uCode's rate table for the destination station. */
  2126. if (update_lq) {
  2127. tbl->rate.index = index;
  2128. if (IWL_MVM_RS_80_20_FAR_RANGE_TWEAK)
  2129. rs_tweak_rate_tbl(mvm, sta, lq_sta, tbl, scale_action);
  2130. rs_set_amsdu_len(mvm, sta, tbl, scale_action);
  2131. rs_update_rate_tbl(mvm, sta, lq_sta, tbl);
  2132. }
  2133. rs_stay_in_table(lq_sta, false);
  2134. /*
  2135. * Search for new modulation mode if we're:
  2136. * 1) Not changing rates right now
  2137. * 2) Not just finishing up a search
  2138. * 3) Allowing a new search
  2139. */
  2140. if (!update_lq && !done_search &&
  2141. lq_sta->rs_state == RS_STATE_SEARCH_CYCLE_STARTED
  2142. && window->counter) {
  2143. enum rs_column next_column;
  2144. /* Save current throughput to compare with "search" throughput*/
  2145. lq_sta->last_tpt = current_tpt;
  2146. IWL_DEBUG_RATE(mvm,
  2147. "Start Search: update_lq %d done_search %d rs_state %d win->counter %d\n",
  2148. update_lq, done_search, lq_sta->rs_state,
  2149. window->counter);
  2150. next_column = rs_get_next_column(mvm, lq_sta, sta, tbl);
  2151. if (next_column != RS_COLUMN_INVALID) {
  2152. int ret = rs_switch_to_column(mvm, lq_sta, sta,
  2153. next_column);
  2154. if (!ret)
  2155. lq_sta->search_better_tbl = 1;
  2156. } else {
  2157. IWL_DEBUG_RATE(mvm,
  2158. "No more columns to explore in search cycle. Go to RS_STATE_SEARCH_CYCLE_ENDED\n");
  2159. lq_sta->rs_state = RS_STATE_SEARCH_CYCLE_ENDED;
  2160. }
  2161. /* If new "search" mode was selected, set up in uCode table */
  2162. if (lq_sta->search_better_tbl) {
  2163. /* Access the "search" table, clear its history. */
  2164. tbl = &(lq_sta->lq_info[(1 - lq_sta->active_tbl)]);
  2165. rs_rate_scale_clear_tbl_windows(mvm, tbl);
  2166. /* Use new "search" start rate */
  2167. index = tbl->rate.index;
  2168. rs_dump_rate(mvm, &tbl->rate,
  2169. "Switch to SEARCH TABLE:");
  2170. rs_update_rate_tbl(mvm, sta, lq_sta, tbl);
  2171. } else {
  2172. done_search = 1;
  2173. }
  2174. }
  2175. if (done_search && lq_sta->rs_state == RS_STATE_SEARCH_CYCLE_ENDED) {
  2176. /* If the "active" (non-search) mode was legacy,
  2177. * and we've tried switching antennas,
  2178. * but we haven't been able to try HT modes (not available),
  2179. * stay with best antenna legacy modulation for a while
  2180. * before next round of mode comparisons. */
  2181. tbl1 = &(lq_sta->lq_info[lq_sta->active_tbl]);
  2182. if (is_legacy(&tbl1->rate)) {
  2183. IWL_DEBUG_RATE(mvm, "LQ: STAY in legacy table\n");
  2184. if (tid != IWL_MAX_TID_COUNT) {
  2185. tid_data = &sta_priv->tid_data[tid];
  2186. if (tid_data->state != IWL_AGG_OFF) {
  2187. IWL_DEBUG_RATE(mvm,
  2188. "Stop aggregation on tid %d\n",
  2189. tid);
  2190. ieee80211_stop_tx_ba_session(sta, tid);
  2191. }
  2192. }
  2193. rs_set_stay_in_table(mvm, 1, lq_sta);
  2194. } else {
  2195. /* If we're in an HT mode, and all 3 mode switch actions
  2196. * have been tried and compared, stay in this best modulation
  2197. * mode for a while before next round of mode comparisons. */
  2198. if ((lq_sta->last_tpt > IWL_AGG_TPT_THREHOLD) &&
  2199. (lq_sta->tx_agg_tid_en & (1 << tid)) &&
  2200. (tid != IWL_MAX_TID_COUNT)) {
  2201. tid_data = &sta_priv->tid_data[tid];
  2202. if (tid_data->state == IWL_AGG_OFF && !ndp) {
  2203. IWL_DEBUG_RATE(mvm,
  2204. "try to aggregate tid %d\n",
  2205. tid);
  2206. rs_tl_turn_on_agg(mvm, tid,
  2207. lq_sta, sta);
  2208. }
  2209. }
  2210. rs_set_stay_in_table(mvm, 0, lq_sta);
  2211. }
  2212. }
  2213. }
  2214. struct rs_init_rate_info {
  2215. s8 rssi;
  2216. u8 rate_idx;
  2217. };
  2218. static const struct rs_init_rate_info rs_optimal_rates_24ghz_legacy[] = {
  2219. { -60, IWL_RATE_54M_INDEX },
  2220. { -64, IWL_RATE_48M_INDEX },
  2221. { -68, IWL_RATE_36M_INDEX },
  2222. { -80, IWL_RATE_24M_INDEX },
  2223. { -84, IWL_RATE_18M_INDEX },
  2224. { -85, IWL_RATE_12M_INDEX },
  2225. { -86, IWL_RATE_11M_INDEX },
  2226. { -88, IWL_RATE_5M_INDEX },
  2227. { -90, IWL_RATE_2M_INDEX },
  2228. { S8_MIN, IWL_RATE_1M_INDEX },
  2229. };
  2230. static const struct rs_init_rate_info rs_optimal_rates_5ghz_legacy[] = {
  2231. { -60, IWL_RATE_54M_INDEX },
  2232. { -64, IWL_RATE_48M_INDEX },
  2233. { -72, IWL_RATE_36M_INDEX },
  2234. { -80, IWL_RATE_24M_INDEX },
  2235. { -84, IWL_RATE_18M_INDEX },
  2236. { -85, IWL_RATE_12M_INDEX },
  2237. { -87, IWL_RATE_9M_INDEX },
  2238. { S8_MIN, IWL_RATE_6M_INDEX },
  2239. };
  2240. static const struct rs_init_rate_info rs_optimal_rates_ht[] = {
  2241. { -60, IWL_RATE_MCS_7_INDEX },
  2242. { -64, IWL_RATE_MCS_6_INDEX },
  2243. { -68, IWL_RATE_MCS_5_INDEX },
  2244. { -72, IWL_RATE_MCS_4_INDEX },
  2245. { -80, IWL_RATE_MCS_3_INDEX },
  2246. { -84, IWL_RATE_MCS_2_INDEX },
  2247. { -85, IWL_RATE_MCS_1_INDEX },
  2248. { S8_MIN, IWL_RATE_MCS_0_INDEX},
  2249. };
  2250. /* MCS index 9 is not valid for 20MHz VHT channel width,
  2251. * but is ok for 40, 80 and 160MHz channels.
  2252. */
  2253. static const struct rs_init_rate_info rs_optimal_rates_vht_20mhz[] = {
  2254. { -60, IWL_RATE_MCS_8_INDEX },
  2255. { -64, IWL_RATE_MCS_7_INDEX },
  2256. { -68, IWL_RATE_MCS_6_INDEX },
  2257. { -72, IWL_RATE_MCS_5_INDEX },
  2258. { -80, IWL_RATE_MCS_4_INDEX },
  2259. { -84, IWL_RATE_MCS_3_INDEX },
  2260. { -85, IWL_RATE_MCS_2_INDEX },
  2261. { -87, IWL_RATE_MCS_1_INDEX },
  2262. { S8_MIN, IWL_RATE_MCS_0_INDEX},
  2263. };
  2264. static const struct rs_init_rate_info rs_optimal_rates_vht[] = {
  2265. { -60, IWL_RATE_MCS_9_INDEX },
  2266. { -64, IWL_RATE_MCS_8_INDEX },
  2267. { -68, IWL_RATE_MCS_7_INDEX },
  2268. { -72, IWL_RATE_MCS_6_INDEX },
  2269. { -80, IWL_RATE_MCS_5_INDEX },
  2270. { -84, IWL_RATE_MCS_4_INDEX },
  2271. { -85, IWL_RATE_MCS_3_INDEX },
  2272. { -87, IWL_RATE_MCS_2_INDEX },
  2273. { -88, IWL_RATE_MCS_1_INDEX },
  2274. { S8_MIN, IWL_RATE_MCS_0_INDEX },
  2275. };
  2276. #define IWL_RS_LOW_RSSI_THRESHOLD (-76) /* dBm */
  2277. /* Init the optimal rate based on STA caps
  2278. * This combined with rssi is used to report the last tx rate
  2279. * to userspace when we haven't transmitted enough frames.
  2280. */
  2281. static void rs_init_optimal_rate(struct iwl_mvm *mvm,
  2282. struct ieee80211_sta *sta,
  2283. struct iwl_lq_sta *lq_sta)
  2284. {
  2285. struct rs_rate *rate = &lq_sta->optimal_rate;
  2286. if (lq_sta->max_mimo2_rate_idx != IWL_RATE_INVALID)
  2287. rate->type = lq_sta->is_vht ? LQ_VHT_MIMO2 : LQ_HT_MIMO2;
  2288. else if (lq_sta->max_siso_rate_idx != IWL_RATE_INVALID)
  2289. rate->type = lq_sta->is_vht ? LQ_VHT_SISO : LQ_HT_SISO;
  2290. else if (lq_sta->band == NL80211_BAND_5GHZ)
  2291. rate->type = LQ_LEGACY_A;
  2292. else
  2293. rate->type = LQ_LEGACY_G;
  2294. rate->bw = rs_bw_from_sta_bw(sta);
  2295. rate->sgi = rs_sgi_allow(mvm, sta, rate, NULL);
  2296. /* ANT/LDPC/STBC aren't relevant for the rate reported to userspace */
  2297. if (is_mimo(rate)) {
  2298. lq_sta->optimal_rate_mask = lq_sta->active_mimo2_rate;
  2299. } else if (is_siso(rate)) {
  2300. lq_sta->optimal_rate_mask = lq_sta->active_siso_rate;
  2301. } else {
  2302. lq_sta->optimal_rate_mask = lq_sta->active_legacy_rate;
  2303. if (lq_sta->band == NL80211_BAND_5GHZ) {
  2304. lq_sta->optimal_rates = rs_optimal_rates_5ghz_legacy;
  2305. lq_sta->optimal_nentries =
  2306. ARRAY_SIZE(rs_optimal_rates_5ghz_legacy);
  2307. } else {
  2308. lq_sta->optimal_rates = rs_optimal_rates_24ghz_legacy;
  2309. lq_sta->optimal_nentries =
  2310. ARRAY_SIZE(rs_optimal_rates_24ghz_legacy);
  2311. }
  2312. }
  2313. if (is_vht(rate)) {
  2314. if (rate->bw == RATE_MCS_CHAN_WIDTH_20) {
  2315. lq_sta->optimal_rates = rs_optimal_rates_vht_20mhz;
  2316. lq_sta->optimal_nentries =
  2317. ARRAY_SIZE(rs_optimal_rates_vht_20mhz);
  2318. } else {
  2319. lq_sta->optimal_rates = rs_optimal_rates_vht;
  2320. lq_sta->optimal_nentries =
  2321. ARRAY_SIZE(rs_optimal_rates_vht);
  2322. }
  2323. } else if (is_ht(rate)) {
  2324. lq_sta->optimal_rates = rs_optimal_rates_ht;
  2325. lq_sta->optimal_nentries = ARRAY_SIZE(rs_optimal_rates_ht);
  2326. }
  2327. }
  2328. /* Compute the optimal rate index based on RSSI */
  2329. static struct rs_rate *rs_get_optimal_rate(struct iwl_mvm *mvm,
  2330. struct iwl_lq_sta *lq_sta)
  2331. {
  2332. struct rs_rate *rate = &lq_sta->optimal_rate;
  2333. int i;
  2334. rate->index = find_first_bit(&lq_sta->optimal_rate_mask,
  2335. BITS_PER_LONG);
  2336. for (i = 0; i < lq_sta->optimal_nentries; i++) {
  2337. int rate_idx = lq_sta->optimal_rates[i].rate_idx;
  2338. if ((lq_sta->pers.last_rssi >= lq_sta->optimal_rates[i].rssi) &&
  2339. (BIT(rate_idx) & lq_sta->optimal_rate_mask)) {
  2340. rate->index = rate_idx;
  2341. break;
  2342. }
  2343. }
  2344. return rate;
  2345. }
  2346. /* Choose an initial legacy rate and antenna to use based on the RSSI
  2347. * of last Rx
  2348. */
  2349. static void rs_get_initial_rate(struct iwl_mvm *mvm,
  2350. struct ieee80211_sta *sta,
  2351. struct iwl_lq_sta *lq_sta,
  2352. enum nl80211_band band,
  2353. struct rs_rate *rate)
  2354. {
  2355. int i, nentries;
  2356. unsigned long active_rate;
  2357. s8 best_rssi = S8_MIN;
  2358. u8 best_ant = ANT_NONE;
  2359. u8 valid_tx_ant = iwl_mvm_get_valid_tx_ant(mvm);
  2360. const struct rs_init_rate_info *initial_rates;
  2361. for (i = 0; i < ARRAY_SIZE(lq_sta->pers.chain_signal); i++) {
  2362. if (!(lq_sta->pers.chains & BIT(i)))
  2363. continue;
  2364. if (lq_sta->pers.chain_signal[i] > best_rssi) {
  2365. best_rssi = lq_sta->pers.chain_signal[i];
  2366. best_ant = BIT(i);
  2367. }
  2368. }
  2369. IWL_DEBUG_RATE(mvm, "Best ANT: %s Best RSSI: %d\n",
  2370. rs_pretty_ant(best_ant), best_rssi);
  2371. if (best_ant != ANT_A && best_ant != ANT_B)
  2372. rate->ant = first_antenna(valid_tx_ant);
  2373. else
  2374. rate->ant = best_ant;
  2375. rate->sgi = false;
  2376. rate->ldpc = false;
  2377. rate->bw = RATE_MCS_CHAN_WIDTH_20;
  2378. rate->index = find_first_bit(&lq_sta->active_legacy_rate,
  2379. BITS_PER_LONG);
  2380. if (band == NL80211_BAND_5GHZ) {
  2381. rate->type = LQ_LEGACY_A;
  2382. initial_rates = rs_optimal_rates_5ghz_legacy;
  2383. nentries = ARRAY_SIZE(rs_optimal_rates_5ghz_legacy);
  2384. } else {
  2385. rate->type = LQ_LEGACY_G;
  2386. initial_rates = rs_optimal_rates_24ghz_legacy;
  2387. nentries = ARRAY_SIZE(rs_optimal_rates_24ghz_legacy);
  2388. }
  2389. if (!IWL_MVM_RS_RSSI_BASED_INIT_RATE)
  2390. goto out;
  2391. /* Start from a higher rate if the corresponding debug capability
  2392. * is enabled. The rate is chosen according to AP capabilities.
  2393. * In case of VHT/HT when the rssi is low fallback to the case of
  2394. * legacy rates.
  2395. */
  2396. if (sta->vht_cap.vht_supported &&
  2397. best_rssi > IWL_RS_LOW_RSSI_THRESHOLD) {
  2398. switch (sta->bandwidth) {
  2399. case IEEE80211_STA_RX_BW_160:
  2400. case IEEE80211_STA_RX_BW_80:
  2401. case IEEE80211_STA_RX_BW_40:
  2402. initial_rates = rs_optimal_rates_vht;
  2403. nentries = ARRAY_SIZE(rs_optimal_rates_vht);
  2404. break;
  2405. case IEEE80211_STA_RX_BW_20:
  2406. initial_rates = rs_optimal_rates_vht_20mhz;
  2407. nentries = ARRAY_SIZE(rs_optimal_rates_vht_20mhz);
  2408. break;
  2409. default:
  2410. IWL_ERR(mvm, "Invalid BW %d\n", sta->bandwidth);
  2411. goto out;
  2412. }
  2413. active_rate = lq_sta->active_siso_rate;
  2414. rate->type = LQ_VHT_SISO;
  2415. rate->bw = rs_bw_from_sta_bw(sta);
  2416. } else if (sta->ht_cap.ht_supported &&
  2417. best_rssi > IWL_RS_LOW_RSSI_THRESHOLD) {
  2418. initial_rates = rs_optimal_rates_ht;
  2419. nentries = ARRAY_SIZE(rs_optimal_rates_ht);
  2420. active_rate = lq_sta->active_siso_rate;
  2421. rate->type = LQ_HT_SISO;
  2422. } else {
  2423. active_rate = lq_sta->active_legacy_rate;
  2424. }
  2425. for (i = 0; i < nentries; i++) {
  2426. int rate_idx = initial_rates[i].rate_idx;
  2427. if ((best_rssi >= initial_rates[i].rssi) &&
  2428. (BIT(rate_idx) & active_rate)) {
  2429. rate->index = rate_idx;
  2430. break;
  2431. }
  2432. }
  2433. out:
  2434. rs_dump_rate(mvm, rate, "INITIAL");
  2435. }
  2436. /* Save info about RSSI of last Rx */
  2437. void rs_update_last_rssi(struct iwl_mvm *mvm,
  2438. struct iwl_lq_sta *lq_sta,
  2439. struct ieee80211_rx_status *rx_status)
  2440. {
  2441. int i;
  2442. lq_sta->pers.chains = rx_status->chains;
  2443. lq_sta->pers.chain_signal[0] = rx_status->chain_signal[0];
  2444. lq_sta->pers.chain_signal[1] = rx_status->chain_signal[1];
  2445. lq_sta->pers.chain_signal[2] = rx_status->chain_signal[2];
  2446. lq_sta->pers.last_rssi = S8_MIN;
  2447. for (i = 0; i < ARRAY_SIZE(lq_sta->pers.chain_signal); i++) {
  2448. if (!(lq_sta->pers.chains & BIT(i)))
  2449. continue;
  2450. if (lq_sta->pers.chain_signal[i] > lq_sta->pers.last_rssi)
  2451. lq_sta->pers.last_rssi = lq_sta->pers.chain_signal[i];
  2452. }
  2453. }
  2454. /**
  2455. * rs_initialize_lq - Initialize a station's hardware rate table
  2456. *
  2457. * The uCode's station table contains a table of fallback rates
  2458. * for automatic fallback during transmission.
  2459. *
  2460. * NOTE: This sets up a default set of values. These will be replaced later
  2461. * if the driver's iwl-agn-rs rate scaling algorithm is used, instead of
  2462. * rc80211_simple.
  2463. *
  2464. * NOTE: Run REPLY_ADD_STA command to set up station table entry, before
  2465. * calling this function (which runs REPLY_TX_LINK_QUALITY_CMD,
  2466. * which requires station table entry to exist).
  2467. */
  2468. static void rs_initialize_lq(struct iwl_mvm *mvm,
  2469. struct ieee80211_sta *sta,
  2470. struct iwl_lq_sta *lq_sta,
  2471. enum nl80211_band band,
  2472. bool init)
  2473. {
  2474. struct iwl_scale_tbl_info *tbl;
  2475. struct rs_rate *rate;
  2476. u8 active_tbl = 0;
  2477. if (!sta || !lq_sta)
  2478. return;
  2479. if (!lq_sta->search_better_tbl)
  2480. active_tbl = lq_sta->active_tbl;
  2481. else
  2482. active_tbl = 1 - lq_sta->active_tbl;
  2483. tbl = &(lq_sta->lq_info[active_tbl]);
  2484. rate = &tbl->rate;
  2485. rs_get_initial_rate(mvm, sta, lq_sta, band, rate);
  2486. rs_init_optimal_rate(mvm, sta, lq_sta);
  2487. WARN_ON_ONCE(rate->ant != ANT_A && rate->ant != ANT_B);
  2488. tbl->column = rs_get_column_from_rate(rate);
  2489. rs_set_expected_tpt_table(lq_sta, tbl);
  2490. rs_fill_lq_cmd(mvm, sta, lq_sta, rate);
  2491. /* TODO restore station should remember the lq cmd */
  2492. iwl_mvm_send_lq_cmd(mvm, &lq_sta->lq, init);
  2493. }
  2494. static void rs_get_rate(void *mvm_r, struct ieee80211_sta *sta, void *mvm_sta,
  2495. struct ieee80211_tx_rate_control *txrc)
  2496. {
  2497. struct sk_buff *skb = txrc->skb;
  2498. struct iwl_op_mode *op_mode __maybe_unused =
  2499. (struct iwl_op_mode *)mvm_r;
  2500. struct iwl_mvm *mvm __maybe_unused = IWL_OP_MODE_GET_MVM(op_mode);
  2501. struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
  2502. struct iwl_lq_sta *lq_sta = mvm_sta;
  2503. struct rs_rate *optimal_rate;
  2504. u32 last_ucode_rate;
  2505. if (sta && !iwl_mvm_sta_from_mac80211(sta)->vif) {
  2506. /* if vif isn't initialized mvm doesn't know about
  2507. * this station, so don't do anything with the it
  2508. */
  2509. sta = NULL;
  2510. mvm_sta = NULL;
  2511. }
  2512. /* TODO: handle rate_idx_mask and rate_idx_mcs_mask */
  2513. /* Treat uninitialized rate scaling data same as non-existing. */
  2514. if (lq_sta && !lq_sta->pers.drv) {
  2515. IWL_DEBUG_RATE(mvm, "Rate scaling not initialized yet.\n");
  2516. mvm_sta = NULL;
  2517. }
  2518. /* Send management frames and NO_ACK data using lowest rate. */
  2519. if (rate_control_send_low(sta, mvm_sta, txrc))
  2520. return;
  2521. iwl_mvm_hwrate_to_tx_rate(lq_sta->last_rate_n_flags,
  2522. info->band, &info->control.rates[0]);
  2523. info->control.rates[0].count = 1;
  2524. /* Report the optimal rate based on rssi and STA caps if we haven't
  2525. * converged yet (too little traffic) or exploring other modulations
  2526. */
  2527. if (lq_sta->rs_state != RS_STATE_STAY_IN_COLUMN) {
  2528. optimal_rate = rs_get_optimal_rate(mvm, lq_sta);
  2529. last_ucode_rate = ucode_rate_from_rs_rate(mvm,
  2530. optimal_rate);
  2531. iwl_mvm_hwrate_to_tx_rate(last_ucode_rate, info->band,
  2532. &txrc->reported_rate);
  2533. }
  2534. }
  2535. static void *rs_alloc_sta(void *mvm_rate, struct ieee80211_sta *sta,
  2536. gfp_t gfp)
  2537. {
  2538. struct iwl_mvm_sta *sta_priv = iwl_mvm_sta_from_mac80211(sta);
  2539. struct iwl_op_mode *op_mode = (struct iwl_op_mode *)mvm_rate;
  2540. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  2541. struct iwl_lq_sta *lq_sta = &sta_priv->lq_sta;
  2542. IWL_DEBUG_RATE(mvm, "create station rate scale window\n");
  2543. lq_sta->pers.drv = mvm;
  2544. #ifdef CONFIG_MAC80211_DEBUGFS
  2545. lq_sta->pers.dbg_fixed_rate = 0;
  2546. lq_sta->pers.dbg_fixed_txp_reduction = TPC_INVALID;
  2547. lq_sta->pers.ss_force = RS_SS_FORCE_NONE;
  2548. #endif
  2549. lq_sta->pers.chains = 0;
  2550. memset(lq_sta->pers.chain_signal, 0, sizeof(lq_sta->pers.chain_signal));
  2551. lq_sta->pers.last_rssi = S8_MIN;
  2552. return &sta_priv->lq_sta;
  2553. }
  2554. static int rs_vht_highest_rx_mcs_index(struct ieee80211_sta_vht_cap *vht_cap,
  2555. int nss)
  2556. {
  2557. u16 rx_mcs = le16_to_cpu(vht_cap->vht_mcs.rx_mcs_map) &
  2558. (0x3 << (2 * (nss - 1)));
  2559. rx_mcs >>= (2 * (nss - 1));
  2560. if (rx_mcs == IEEE80211_VHT_MCS_SUPPORT_0_7)
  2561. return IWL_RATE_MCS_7_INDEX;
  2562. else if (rx_mcs == IEEE80211_VHT_MCS_SUPPORT_0_8)
  2563. return IWL_RATE_MCS_8_INDEX;
  2564. else if (rx_mcs == IEEE80211_VHT_MCS_SUPPORT_0_9)
  2565. return IWL_RATE_MCS_9_INDEX;
  2566. WARN_ON_ONCE(rx_mcs != IEEE80211_VHT_MCS_NOT_SUPPORTED);
  2567. return -1;
  2568. }
  2569. static void rs_vht_set_enabled_rates(struct ieee80211_sta *sta,
  2570. struct ieee80211_sta_vht_cap *vht_cap,
  2571. struct iwl_lq_sta *lq_sta)
  2572. {
  2573. int i;
  2574. int highest_mcs = rs_vht_highest_rx_mcs_index(vht_cap, 1);
  2575. if (highest_mcs >= IWL_RATE_MCS_0_INDEX) {
  2576. for (i = IWL_RATE_MCS_0_INDEX; i <= highest_mcs; i++) {
  2577. if (i == IWL_RATE_9M_INDEX)
  2578. continue;
  2579. /* VHT MCS9 isn't valid for 20Mhz for NSS=1,2 */
  2580. if (i == IWL_RATE_MCS_9_INDEX &&
  2581. sta->bandwidth == IEEE80211_STA_RX_BW_20)
  2582. continue;
  2583. lq_sta->active_siso_rate |= BIT(i);
  2584. }
  2585. }
  2586. if (sta->rx_nss < 2)
  2587. return;
  2588. highest_mcs = rs_vht_highest_rx_mcs_index(vht_cap, 2);
  2589. if (highest_mcs >= IWL_RATE_MCS_0_INDEX) {
  2590. for (i = IWL_RATE_MCS_0_INDEX; i <= highest_mcs; i++) {
  2591. if (i == IWL_RATE_9M_INDEX)
  2592. continue;
  2593. /* VHT MCS9 isn't valid for 20Mhz for NSS=1,2 */
  2594. if (i == IWL_RATE_MCS_9_INDEX &&
  2595. sta->bandwidth == IEEE80211_STA_RX_BW_20)
  2596. continue;
  2597. lq_sta->active_mimo2_rate |= BIT(i);
  2598. }
  2599. }
  2600. }
  2601. static void rs_ht_init(struct iwl_mvm *mvm,
  2602. struct ieee80211_sta *sta,
  2603. struct iwl_lq_sta *lq_sta,
  2604. struct ieee80211_sta_ht_cap *ht_cap)
  2605. {
  2606. /* active_siso_rate mask includes 9 MBits (bit 5),
  2607. * and CCK (bits 0-3), supp_rates[] does not;
  2608. * shift to convert format, force 9 MBits off.
  2609. */
  2610. lq_sta->active_siso_rate = ht_cap->mcs.rx_mask[0] << 1;
  2611. lq_sta->active_siso_rate |= ht_cap->mcs.rx_mask[0] & 0x1;
  2612. lq_sta->active_siso_rate &= ~((u16)0x2);
  2613. lq_sta->active_siso_rate <<= IWL_FIRST_OFDM_RATE;
  2614. lq_sta->active_mimo2_rate = ht_cap->mcs.rx_mask[1] << 1;
  2615. lq_sta->active_mimo2_rate |= ht_cap->mcs.rx_mask[1] & 0x1;
  2616. lq_sta->active_mimo2_rate &= ~((u16)0x2);
  2617. lq_sta->active_mimo2_rate <<= IWL_FIRST_OFDM_RATE;
  2618. if (mvm->cfg->ht_params->ldpc &&
  2619. (ht_cap->cap & IEEE80211_HT_CAP_LDPC_CODING))
  2620. lq_sta->ldpc = true;
  2621. if (mvm->cfg->ht_params->stbc &&
  2622. (num_of_ant(iwl_mvm_get_valid_tx_ant(mvm)) > 1) &&
  2623. (ht_cap->cap & IEEE80211_HT_CAP_RX_STBC))
  2624. lq_sta->stbc_capable = true;
  2625. lq_sta->is_vht = false;
  2626. }
  2627. static void rs_vht_init(struct iwl_mvm *mvm,
  2628. struct ieee80211_sta *sta,
  2629. struct iwl_lq_sta *lq_sta,
  2630. struct ieee80211_sta_vht_cap *vht_cap)
  2631. {
  2632. rs_vht_set_enabled_rates(sta, vht_cap, lq_sta);
  2633. if (mvm->cfg->ht_params->ldpc &&
  2634. (vht_cap->cap & IEEE80211_VHT_CAP_RXLDPC))
  2635. lq_sta->ldpc = true;
  2636. if (mvm->cfg->ht_params->stbc &&
  2637. (num_of_ant(iwl_mvm_get_valid_tx_ant(mvm)) > 1) &&
  2638. (vht_cap->cap & IEEE80211_VHT_CAP_RXSTBC_MASK))
  2639. lq_sta->stbc_capable = true;
  2640. if (fw_has_capa(&mvm->fw->ucode_capa, IWL_UCODE_TLV_CAPA_BEAMFORMER) &&
  2641. (num_of_ant(iwl_mvm_get_valid_tx_ant(mvm)) > 1) &&
  2642. (vht_cap->cap & IEEE80211_VHT_CAP_SU_BEAMFORMEE_CAPABLE))
  2643. lq_sta->bfer_capable = true;
  2644. lq_sta->is_vht = true;
  2645. }
  2646. #ifdef CONFIG_IWLWIFI_DEBUGFS
  2647. static void iwl_mvm_reset_frame_stats(struct iwl_mvm *mvm)
  2648. {
  2649. spin_lock_bh(&mvm->drv_stats_lock);
  2650. memset(&mvm->drv_rx_stats, 0, sizeof(mvm->drv_rx_stats));
  2651. spin_unlock_bh(&mvm->drv_stats_lock);
  2652. }
  2653. void iwl_mvm_update_frame_stats(struct iwl_mvm *mvm, u32 rate, bool agg)
  2654. {
  2655. u8 nss = 0;
  2656. spin_lock(&mvm->drv_stats_lock);
  2657. if (agg)
  2658. mvm->drv_rx_stats.agg_frames++;
  2659. mvm->drv_rx_stats.success_frames++;
  2660. switch (rate & RATE_MCS_CHAN_WIDTH_MSK) {
  2661. case RATE_MCS_CHAN_WIDTH_20:
  2662. mvm->drv_rx_stats.bw_20_frames++;
  2663. break;
  2664. case RATE_MCS_CHAN_WIDTH_40:
  2665. mvm->drv_rx_stats.bw_40_frames++;
  2666. break;
  2667. case RATE_MCS_CHAN_WIDTH_80:
  2668. mvm->drv_rx_stats.bw_80_frames++;
  2669. break;
  2670. case RATE_MCS_CHAN_WIDTH_160:
  2671. mvm->drv_rx_stats.bw_160_frames++;
  2672. break;
  2673. default:
  2674. WARN_ONCE(1, "bad BW. rate 0x%x", rate);
  2675. }
  2676. if (rate & RATE_MCS_HT_MSK) {
  2677. mvm->drv_rx_stats.ht_frames++;
  2678. nss = ((rate & RATE_HT_MCS_NSS_MSK) >> RATE_HT_MCS_NSS_POS) + 1;
  2679. } else if (rate & RATE_MCS_VHT_MSK) {
  2680. mvm->drv_rx_stats.vht_frames++;
  2681. nss = ((rate & RATE_VHT_MCS_NSS_MSK) >>
  2682. RATE_VHT_MCS_NSS_POS) + 1;
  2683. } else {
  2684. mvm->drv_rx_stats.legacy_frames++;
  2685. }
  2686. if (nss == 1)
  2687. mvm->drv_rx_stats.siso_frames++;
  2688. else if (nss == 2)
  2689. mvm->drv_rx_stats.mimo2_frames++;
  2690. if (rate & RATE_MCS_SGI_MSK)
  2691. mvm->drv_rx_stats.sgi_frames++;
  2692. else
  2693. mvm->drv_rx_stats.ngi_frames++;
  2694. mvm->drv_rx_stats.last_rates[mvm->drv_rx_stats.last_frame_idx] = rate;
  2695. mvm->drv_rx_stats.last_frame_idx =
  2696. (mvm->drv_rx_stats.last_frame_idx + 1) %
  2697. ARRAY_SIZE(mvm->drv_rx_stats.last_rates);
  2698. spin_unlock(&mvm->drv_stats_lock);
  2699. }
  2700. #endif
  2701. /*
  2702. * Called after adding a new station to initialize rate scaling
  2703. */
  2704. void iwl_mvm_rs_rate_init(struct iwl_mvm *mvm, struct ieee80211_sta *sta,
  2705. enum nl80211_band band, bool init)
  2706. {
  2707. int i, j;
  2708. struct ieee80211_hw *hw = mvm->hw;
  2709. struct ieee80211_sta_ht_cap *ht_cap = &sta->ht_cap;
  2710. struct ieee80211_sta_vht_cap *vht_cap = &sta->vht_cap;
  2711. struct iwl_mvm_sta *sta_priv = iwl_mvm_sta_from_mac80211(sta);
  2712. struct iwl_lq_sta *lq_sta = &sta_priv->lq_sta;
  2713. struct ieee80211_supported_band *sband;
  2714. unsigned long supp; /* must be unsigned long for for_each_set_bit */
  2715. /* clear all non-persistent lq data */
  2716. memset(lq_sta, 0, offsetof(typeof(*lq_sta), pers));
  2717. sband = hw->wiphy->bands[band];
  2718. lq_sta->lq.sta_id = sta_priv->sta_id;
  2719. sta_priv->tlc_amsdu = false;
  2720. for (j = 0; j < LQ_SIZE; j++)
  2721. rs_rate_scale_clear_tbl_windows(mvm, &lq_sta->lq_info[j]);
  2722. lq_sta->flush_timer = 0;
  2723. lq_sta->last_tx = jiffies;
  2724. IWL_DEBUG_RATE(mvm,
  2725. "LQ: *** rate scale station global init for station %d ***\n",
  2726. sta_priv->sta_id);
  2727. /* TODO: what is a good starting rate for STA? About middle? Maybe not
  2728. * the lowest or the highest rate.. Could consider using RSSI from
  2729. * previous packets? Need to have IEEE 802.1X auth succeed immediately
  2730. * after assoc.. */
  2731. lq_sta->missed_rate_counter = IWL_MVM_RS_MISSED_RATE_MAX;
  2732. lq_sta->band = sband->band;
  2733. /*
  2734. * active legacy rates as per supported rates bitmap
  2735. */
  2736. supp = sta->supp_rates[sband->band];
  2737. lq_sta->active_legacy_rate = 0;
  2738. for_each_set_bit(i, &supp, BITS_PER_LONG)
  2739. lq_sta->active_legacy_rate |= BIT(sband->bitrates[i].hw_value);
  2740. /* TODO: should probably account for rx_highest for both HT/VHT */
  2741. if (!vht_cap || !vht_cap->vht_supported)
  2742. rs_ht_init(mvm, sta, lq_sta, ht_cap);
  2743. else
  2744. rs_vht_init(mvm, sta, lq_sta, vht_cap);
  2745. lq_sta->max_legacy_rate_idx =
  2746. rs_get_max_rate_from_mask(lq_sta->active_legacy_rate);
  2747. lq_sta->max_siso_rate_idx =
  2748. rs_get_max_rate_from_mask(lq_sta->active_siso_rate);
  2749. lq_sta->max_mimo2_rate_idx =
  2750. rs_get_max_rate_from_mask(lq_sta->active_mimo2_rate);
  2751. IWL_DEBUG_RATE(mvm,
  2752. "LEGACY=%lX SISO=%lX MIMO2=%lX VHT=%d LDPC=%d STBC=%d BFER=%d\n",
  2753. lq_sta->active_legacy_rate,
  2754. lq_sta->active_siso_rate,
  2755. lq_sta->active_mimo2_rate,
  2756. lq_sta->is_vht, lq_sta->ldpc, lq_sta->stbc_capable,
  2757. lq_sta->bfer_capable);
  2758. IWL_DEBUG_RATE(mvm, "MAX RATE: LEGACY=%d SISO=%d MIMO2=%d\n",
  2759. lq_sta->max_legacy_rate_idx,
  2760. lq_sta->max_siso_rate_idx,
  2761. lq_sta->max_mimo2_rate_idx);
  2762. /* These values will be overridden later */
  2763. lq_sta->lq.single_stream_ant_msk =
  2764. first_antenna(iwl_mvm_get_valid_tx_ant(mvm));
  2765. lq_sta->lq.dual_stream_ant_msk = ANT_AB;
  2766. /* as default allow aggregation for all tids */
  2767. lq_sta->tx_agg_tid_en = IWL_AGG_ALL_TID;
  2768. lq_sta->is_agg = 0;
  2769. #ifdef CONFIG_IWLWIFI_DEBUGFS
  2770. iwl_mvm_reset_frame_stats(mvm);
  2771. #endif
  2772. rs_initialize_lq(mvm, sta, lq_sta, band, init);
  2773. }
  2774. static void rs_rate_update(void *mvm_r,
  2775. struct ieee80211_supported_band *sband,
  2776. struct cfg80211_chan_def *chandef,
  2777. struct ieee80211_sta *sta, void *priv_sta,
  2778. u32 changed)
  2779. {
  2780. u8 tid;
  2781. struct iwl_op_mode *op_mode =
  2782. (struct iwl_op_mode *)mvm_r;
  2783. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  2784. if (!iwl_mvm_sta_from_mac80211(sta)->vif)
  2785. return;
  2786. /* Stop any ongoing aggregations as rs starts off assuming no agg */
  2787. for (tid = 0; tid < IWL_MAX_TID_COUNT; tid++)
  2788. ieee80211_stop_tx_ba_session(sta, tid);
  2789. iwl_mvm_rs_rate_init(mvm, sta, sband->band, false);
  2790. }
  2791. #ifdef CONFIG_MAC80211_DEBUGFS
  2792. static void rs_build_rates_table_from_fixed(struct iwl_mvm *mvm,
  2793. struct iwl_lq_cmd *lq_cmd,
  2794. enum nl80211_band band,
  2795. u32 ucode_rate)
  2796. {
  2797. struct rs_rate rate;
  2798. int i;
  2799. int num_rates = ARRAY_SIZE(lq_cmd->rs_table);
  2800. __le32 ucode_rate_le32 = cpu_to_le32(ucode_rate);
  2801. u8 ant = (ucode_rate & RATE_MCS_ANT_ABC_MSK) >> RATE_MCS_ANT_POS;
  2802. for (i = 0; i < num_rates; i++)
  2803. lq_cmd->rs_table[i] = ucode_rate_le32;
  2804. rs_rate_from_ucode_rate(ucode_rate, band, &rate);
  2805. if (is_mimo(&rate))
  2806. lq_cmd->mimo_delim = num_rates - 1;
  2807. else
  2808. lq_cmd->mimo_delim = 0;
  2809. lq_cmd->reduced_tpc = 0;
  2810. if (num_of_ant(ant) == 1)
  2811. lq_cmd->single_stream_ant_msk = ant;
  2812. lq_cmd->agg_frame_cnt_limit = LINK_QUAL_AGG_FRAME_LIMIT_DEF;
  2813. }
  2814. #endif /* CONFIG_MAC80211_DEBUGFS */
  2815. static void rs_fill_rates_for_column(struct iwl_mvm *mvm,
  2816. struct iwl_lq_sta *lq_sta,
  2817. struct rs_rate *rate,
  2818. __le32 *rs_table, int *rs_table_index,
  2819. int num_rates, int num_retries,
  2820. u8 valid_tx_ant, bool toggle_ant)
  2821. {
  2822. int i, j;
  2823. __le32 ucode_rate;
  2824. bool bottom_reached = false;
  2825. int prev_rate_idx = rate->index;
  2826. int end = LINK_QUAL_MAX_RETRY_NUM;
  2827. int index = *rs_table_index;
  2828. for (i = 0; i < num_rates && index < end; i++) {
  2829. for (j = 0; j < num_retries && index < end; j++, index++) {
  2830. ucode_rate = cpu_to_le32(ucode_rate_from_rs_rate(mvm,
  2831. rate));
  2832. rs_table[index] = ucode_rate;
  2833. if (toggle_ant)
  2834. rs_toggle_antenna(valid_tx_ant, rate);
  2835. }
  2836. prev_rate_idx = rate->index;
  2837. bottom_reached = rs_get_lower_rate_in_column(lq_sta, rate);
  2838. if (bottom_reached && !is_legacy(rate))
  2839. break;
  2840. }
  2841. if (!bottom_reached && !is_legacy(rate))
  2842. rate->index = prev_rate_idx;
  2843. *rs_table_index = index;
  2844. }
  2845. /* Building the rate table is non trivial. When we're in MIMO2/VHT/80Mhz/SGI
  2846. * column the rate table should look like this:
  2847. *
  2848. * rate[0] 0x400D019 VHT | ANT: AB BW: 80Mhz MCS: 9 NSS: 2 SGI
  2849. * rate[1] 0x400D019 VHT | ANT: AB BW: 80Mhz MCS: 9 NSS: 2 SGI
  2850. * rate[2] 0x400D018 VHT | ANT: AB BW: 80Mhz MCS: 8 NSS: 2 SGI
  2851. * rate[3] 0x400D018 VHT | ANT: AB BW: 80Mhz MCS: 8 NSS: 2 SGI
  2852. * rate[4] 0x400D017 VHT | ANT: AB BW: 80Mhz MCS: 7 NSS: 2 SGI
  2853. * rate[5] 0x400D017 VHT | ANT: AB BW: 80Mhz MCS: 7 NSS: 2 SGI
  2854. * rate[6] 0x4005007 VHT | ANT: A BW: 80Mhz MCS: 7 NSS: 1 NGI
  2855. * rate[7] 0x4009006 VHT | ANT: B BW: 80Mhz MCS: 6 NSS: 1 NGI
  2856. * rate[8] 0x4005005 VHT | ANT: A BW: 80Mhz MCS: 5 NSS: 1 NGI
  2857. * rate[9] 0x800B Legacy | ANT: B Rate: 36 Mbps
  2858. * rate[10] 0x4009 Legacy | ANT: A Rate: 24 Mbps
  2859. * rate[11] 0x8007 Legacy | ANT: B Rate: 18 Mbps
  2860. * rate[12] 0x4005 Legacy | ANT: A Rate: 12 Mbps
  2861. * rate[13] 0x800F Legacy | ANT: B Rate: 9 Mbps
  2862. * rate[14] 0x400D Legacy | ANT: A Rate: 6 Mbps
  2863. * rate[15] 0x800D Legacy | ANT: B Rate: 6 Mbps
  2864. */
  2865. static void rs_build_rates_table(struct iwl_mvm *mvm,
  2866. struct ieee80211_sta *sta,
  2867. struct iwl_lq_sta *lq_sta,
  2868. const struct rs_rate *initial_rate)
  2869. {
  2870. struct rs_rate rate;
  2871. int num_rates, num_retries, index = 0;
  2872. u8 valid_tx_ant = 0;
  2873. struct iwl_lq_cmd *lq_cmd = &lq_sta->lq;
  2874. bool toggle_ant = false;
  2875. memcpy(&rate, initial_rate, sizeof(rate));
  2876. valid_tx_ant = iwl_mvm_get_valid_tx_ant(mvm);
  2877. /* TODO: remove old API when min FW API hits 14 */
  2878. if (!fw_has_api(&mvm->fw->ucode_capa, IWL_UCODE_TLV_API_LQ_SS_PARAMS) &&
  2879. rs_stbc_allow(mvm, sta, lq_sta))
  2880. rate.stbc = true;
  2881. if (is_siso(&rate)) {
  2882. num_rates = IWL_MVM_RS_INITIAL_SISO_NUM_RATES;
  2883. num_retries = IWL_MVM_RS_HT_VHT_RETRIES_PER_RATE;
  2884. } else if (is_mimo(&rate)) {
  2885. num_rates = IWL_MVM_RS_INITIAL_MIMO_NUM_RATES;
  2886. num_retries = IWL_MVM_RS_HT_VHT_RETRIES_PER_RATE;
  2887. } else {
  2888. num_rates = IWL_MVM_RS_INITIAL_LEGACY_NUM_RATES;
  2889. num_retries = IWL_MVM_RS_INITIAL_LEGACY_RETRIES;
  2890. toggle_ant = true;
  2891. }
  2892. rs_fill_rates_for_column(mvm, lq_sta, &rate, lq_cmd->rs_table, &index,
  2893. num_rates, num_retries, valid_tx_ant,
  2894. toggle_ant);
  2895. rs_get_lower_rate_down_column(lq_sta, &rate);
  2896. if (is_siso(&rate)) {
  2897. num_rates = IWL_MVM_RS_SECONDARY_SISO_NUM_RATES;
  2898. num_retries = IWL_MVM_RS_SECONDARY_SISO_RETRIES;
  2899. lq_cmd->mimo_delim = index;
  2900. } else if (is_legacy(&rate)) {
  2901. num_rates = IWL_MVM_RS_SECONDARY_LEGACY_NUM_RATES;
  2902. num_retries = IWL_MVM_RS_SECONDARY_LEGACY_RETRIES;
  2903. } else {
  2904. WARN_ON_ONCE(1);
  2905. }
  2906. toggle_ant = true;
  2907. rs_fill_rates_for_column(mvm, lq_sta, &rate, lq_cmd->rs_table, &index,
  2908. num_rates, num_retries, valid_tx_ant,
  2909. toggle_ant);
  2910. rs_get_lower_rate_down_column(lq_sta, &rate);
  2911. num_rates = IWL_MVM_RS_SECONDARY_LEGACY_NUM_RATES;
  2912. num_retries = IWL_MVM_RS_SECONDARY_LEGACY_RETRIES;
  2913. rs_fill_rates_for_column(mvm, lq_sta, &rate, lq_cmd->rs_table, &index,
  2914. num_rates, num_retries, valid_tx_ant,
  2915. toggle_ant);
  2916. }
  2917. struct rs_bfer_active_iter_data {
  2918. struct ieee80211_sta *exclude_sta;
  2919. struct iwl_mvm_sta *bfer_mvmsta;
  2920. };
  2921. static void rs_bfer_active_iter(void *_data,
  2922. struct ieee80211_sta *sta)
  2923. {
  2924. struct rs_bfer_active_iter_data *data = _data;
  2925. struct iwl_mvm_sta *mvmsta = iwl_mvm_sta_from_mac80211(sta);
  2926. struct iwl_lq_cmd *lq_cmd = &mvmsta->lq_sta.lq;
  2927. u32 ss_params = le32_to_cpu(lq_cmd->ss_params);
  2928. if (sta == data->exclude_sta)
  2929. return;
  2930. /* The current sta has BFER allowed */
  2931. if (ss_params & LQ_SS_BFER_ALLOWED) {
  2932. WARN_ON_ONCE(data->bfer_mvmsta != NULL);
  2933. data->bfer_mvmsta = mvmsta;
  2934. }
  2935. }
  2936. static int rs_bfer_priority(struct iwl_mvm_sta *sta)
  2937. {
  2938. int prio = -1;
  2939. enum nl80211_iftype viftype = ieee80211_vif_type_p2p(sta->vif);
  2940. switch (viftype) {
  2941. case NL80211_IFTYPE_AP:
  2942. case NL80211_IFTYPE_P2P_GO:
  2943. prio = 3;
  2944. break;
  2945. case NL80211_IFTYPE_P2P_CLIENT:
  2946. prio = 2;
  2947. break;
  2948. case NL80211_IFTYPE_STATION:
  2949. prio = 1;
  2950. break;
  2951. default:
  2952. WARN_ONCE(true, "viftype %d sta_id %d", viftype, sta->sta_id);
  2953. prio = -1;
  2954. }
  2955. return prio;
  2956. }
  2957. /* Returns >0 if sta1 has a higher BFER priority compared to sta2 */
  2958. static int rs_bfer_priority_cmp(struct iwl_mvm_sta *sta1,
  2959. struct iwl_mvm_sta *sta2)
  2960. {
  2961. int prio1 = rs_bfer_priority(sta1);
  2962. int prio2 = rs_bfer_priority(sta2);
  2963. if (prio1 > prio2)
  2964. return 1;
  2965. if (prio1 < prio2)
  2966. return -1;
  2967. return 0;
  2968. }
  2969. static void rs_set_lq_ss_params(struct iwl_mvm *mvm,
  2970. struct ieee80211_sta *sta,
  2971. struct iwl_lq_sta *lq_sta,
  2972. const struct rs_rate *initial_rate)
  2973. {
  2974. struct iwl_lq_cmd *lq_cmd = &lq_sta->lq;
  2975. struct iwl_mvm_sta *mvmsta = iwl_mvm_sta_from_mac80211(sta);
  2976. struct rs_bfer_active_iter_data data = {
  2977. .exclude_sta = sta,
  2978. .bfer_mvmsta = NULL,
  2979. };
  2980. struct iwl_mvm_sta *bfer_mvmsta = NULL;
  2981. u32 ss_params = LQ_SS_PARAMS_VALID;
  2982. if (!iwl_mvm_bt_coex_is_mimo_allowed(mvm, sta))
  2983. goto out;
  2984. #ifdef CONFIG_MAC80211_DEBUGFS
  2985. /* Check if forcing the decision is configured.
  2986. * Note that SISO is forced by not allowing STBC or BFER
  2987. */
  2988. if (lq_sta->pers.ss_force == RS_SS_FORCE_STBC)
  2989. ss_params |= (LQ_SS_STBC_1SS_ALLOWED | LQ_SS_FORCE);
  2990. else if (lq_sta->pers.ss_force == RS_SS_FORCE_BFER)
  2991. ss_params |= (LQ_SS_BFER_ALLOWED | LQ_SS_FORCE);
  2992. if (lq_sta->pers.ss_force != RS_SS_FORCE_NONE) {
  2993. IWL_DEBUG_RATE(mvm, "Forcing single stream Tx decision %d\n",
  2994. lq_sta->pers.ss_force);
  2995. goto out;
  2996. }
  2997. #endif
  2998. if (lq_sta->stbc_capable)
  2999. ss_params |= LQ_SS_STBC_1SS_ALLOWED;
  3000. if (!lq_sta->bfer_capable)
  3001. goto out;
  3002. ieee80211_iterate_stations_atomic(mvm->hw,
  3003. rs_bfer_active_iter,
  3004. &data);
  3005. bfer_mvmsta = data.bfer_mvmsta;
  3006. /* This code is safe as it doesn't run concurrently for different
  3007. * stations. This is guaranteed by the fact that calls to
  3008. * ieee80211_tx_status wouldn't run concurrently for a single HW.
  3009. */
  3010. if (!bfer_mvmsta) {
  3011. IWL_DEBUG_RATE(mvm, "No sta with BFER allowed found. Allow\n");
  3012. ss_params |= LQ_SS_BFER_ALLOWED;
  3013. goto out;
  3014. }
  3015. IWL_DEBUG_RATE(mvm, "Found existing sta %d with BFER activated\n",
  3016. bfer_mvmsta->sta_id);
  3017. /* Disallow BFER on another STA if active and we're a higher priority */
  3018. if (rs_bfer_priority_cmp(mvmsta, bfer_mvmsta) > 0) {
  3019. struct iwl_lq_cmd *bfersta_lq_cmd = &bfer_mvmsta->lq_sta.lq;
  3020. u32 bfersta_ss_params = le32_to_cpu(bfersta_lq_cmd->ss_params);
  3021. bfersta_ss_params &= ~LQ_SS_BFER_ALLOWED;
  3022. bfersta_lq_cmd->ss_params = cpu_to_le32(bfersta_ss_params);
  3023. iwl_mvm_send_lq_cmd(mvm, bfersta_lq_cmd, false);
  3024. ss_params |= LQ_SS_BFER_ALLOWED;
  3025. IWL_DEBUG_RATE(mvm,
  3026. "Lower priority BFER sta found (%d). Switch BFER\n",
  3027. bfer_mvmsta->sta_id);
  3028. }
  3029. out:
  3030. lq_cmd->ss_params = cpu_to_le32(ss_params);
  3031. }
  3032. static void rs_fill_lq_cmd(struct iwl_mvm *mvm,
  3033. struct ieee80211_sta *sta,
  3034. struct iwl_lq_sta *lq_sta,
  3035. const struct rs_rate *initial_rate)
  3036. {
  3037. struct iwl_lq_cmd *lq_cmd = &lq_sta->lq;
  3038. struct iwl_mvm_sta *mvmsta;
  3039. struct iwl_mvm_vif *mvmvif;
  3040. lq_cmd->agg_disable_start_th = IWL_MVM_RS_AGG_DISABLE_START;
  3041. lq_cmd->agg_time_limit =
  3042. cpu_to_le16(IWL_MVM_RS_AGG_TIME_LIMIT);
  3043. #ifdef CONFIG_MAC80211_DEBUGFS
  3044. if (lq_sta->pers.dbg_fixed_rate) {
  3045. rs_build_rates_table_from_fixed(mvm, lq_cmd,
  3046. lq_sta->band,
  3047. lq_sta->pers.dbg_fixed_rate);
  3048. return;
  3049. }
  3050. #endif
  3051. if (WARN_ON_ONCE(!sta || !initial_rate))
  3052. return;
  3053. rs_build_rates_table(mvm, sta, lq_sta, initial_rate);
  3054. if (fw_has_api(&mvm->fw->ucode_capa, IWL_UCODE_TLV_API_LQ_SS_PARAMS))
  3055. rs_set_lq_ss_params(mvm, sta, lq_sta, initial_rate);
  3056. mvmsta = iwl_mvm_sta_from_mac80211(sta);
  3057. mvmvif = iwl_mvm_vif_from_mac80211(mvmsta->vif);
  3058. if (num_of_ant(initial_rate->ant) == 1)
  3059. lq_cmd->single_stream_ant_msk = initial_rate->ant;
  3060. lq_cmd->agg_frame_cnt_limit = mvmsta->max_agg_bufsize;
  3061. /*
  3062. * In case of low latency, tell the firmware to leave a frame in the
  3063. * Tx Fifo so that it can start a transaction in the same TxOP. This
  3064. * basically allows the firmware to send bursts.
  3065. */
  3066. if (iwl_mvm_vif_low_latency(mvmvif))
  3067. lq_cmd->agg_frame_cnt_limit--;
  3068. if (mvmsta->vif->p2p)
  3069. lq_cmd->flags |= LQ_FLAG_USE_RTS_MSK;
  3070. lq_cmd->agg_time_limit =
  3071. cpu_to_le16(iwl_mvm_coex_agg_time_limit(mvm, sta));
  3072. }
  3073. static void *rs_alloc(struct ieee80211_hw *hw, struct dentry *debugfsdir)
  3074. {
  3075. return hw->priv;
  3076. }
  3077. /* rate scale requires free function to be implemented */
  3078. static void rs_free(void *mvm_rate)
  3079. {
  3080. return;
  3081. }
  3082. static void rs_free_sta(void *mvm_r, struct ieee80211_sta *sta,
  3083. void *mvm_sta)
  3084. {
  3085. struct iwl_op_mode *op_mode __maybe_unused = mvm_r;
  3086. struct iwl_mvm *mvm __maybe_unused = IWL_OP_MODE_GET_MVM(op_mode);
  3087. IWL_DEBUG_RATE(mvm, "enter\n");
  3088. IWL_DEBUG_RATE(mvm, "leave\n");
  3089. }
  3090. #ifdef CONFIG_MAC80211_DEBUGFS
  3091. int rs_pretty_print_rate(char *buf, const u32 rate)
  3092. {
  3093. char *type, *bw;
  3094. u8 mcs = 0, nss = 0;
  3095. u8 ant = (rate & RATE_MCS_ANT_ABC_MSK) >> RATE_MCS_ANT_POS;
  3096. if (!(rate & RATE_MCS_HT_MSK) &&
  3097. !(rate & RATE_MCS_VHT_MSK)) {
  3098. int index = iwl_hwrate_to_plcp_idx(rate);
  3099. return sprintf(buf, "Legacy | ANT: %s Rate: %s Mbps\n",
  3100. rs_pretty_ant(ant),
  3101. index == IWL_RATE_INVALID ? "BAD" :
  3102. iwl_rate_mcs[index].mbps);
  3103. }
  3104. if (rate & RATE_MCS_VHT_MSK) {
  3105. type = "VHT";
  3106. mcs = rate & RATE_VHT_MCS_RATE_CODE_MSK;
  3107. nss = ((rate & RATE_VHT_MCS_NSS_MSK)
  3108. >> RATE_VHT_MCS_NSS_POS) + 1;
  3109. } else if (rate & RATE_MCS_HT_MSK) {
  3110. type = "HT";
  3111. mcs = rate & RATE_HT_MCS_INDEX_MSK;
  3112. nss = ((rate & RATE_HT_MCS_NSS_MSK)
  3113. >> RATE_HT_MCS_NSS_POS) + 1;
  3114. } else {
  3115. type = "Unknown"; /* shouldn't happen */
  3116. }
  3117. switch (rate & RATE_MCS_CHAN_WIDTH_MSK) {
  3118. case RATE_MCS_CHAN_WIDTH_20:
  3119. bw = "20Mhz";
  3120. break;
  3121. case RATE_MCS_CHAN_WIDTH_40:
  3122. bw = "40Mhz";
  3123. break;
  3124. case RATE_MCS_CHAN_WIDTH_80:
  3125. bw = "80Mhz";
  3126. break;
  3127. case RATE_MCS_CHAN_WIDTH_160:
  3128. bw = "160Mhz";
  3129. break;
  3130. default:
  3131. bw = "BAD BW";
  3132. }
  3133. return sprintf(buf, "%s | ANT: %s BW: %s MCS: %d NSS: %d %s%s%s%s\n",
  3134. type, rs_pretty_ant(ant), bw, mcs, nss,
  3135. (rate & RATE_MCS_SGI_MSK) ? "SGI " : "NGI ",
  3136. (rate & RATE_MCS_STBC_MSK) ? "STBC " : "",
  3137. (rate & RATE_MCS_LDPC_MSK) ? "LDPC " : "",
  3138. (rate & RATE_MCS_BF_MSK) ? "BF " : "");
  3139. }
  3140. /**
  3141. * Program the device to use fixed rate for frame transmit
  3142. * This is for debugging/testing only
  3143. * once the device start use fixed rate, we need to reload the module
  3144. * to being back the normal operation.
  3145. */
  3146. static void rs_program_fix_rate(struct iwl_mvm *mvm,
  3147. struct iwl_lq_sta *lq_sta)
  3148. {
  3149. lq_sta->active_legacy_rate = 0x0FFF; /* 1 - 54 MBits, includes CCK */
  3150. lq_sta->active_siso_rate = 0x1FD0; /* 6 - 60 MBits, no 9, no CCK */
  3151. lq_sta->active_mimo2_rate = 0x1FD0; /* 6 - 60 MBits, no 9, no CCK */
  3152. IWL_DEBUG_RATE(mvm, "sta_id %d rate 0x%X\n",
  3153. lq_sta->lq.sta_id, lq_sta->pers.dbg_fixed_rate);
  3154. if (lq_sta->pers.dbg_fixed_rate) {
  3155. rs_fill_lq_cmd(mvm, NULL, lq_sta, NULL);
  3156. iwl_mvm_send_lq_cmd(lq_sta->pers.drv, &lq_sta->lq, false);
  3157. }
  3158. }
  3159. static ssize_t rs_sta_dbgfs_scale_table_write(struct file *file,
  3160. const char __user *user_buf, size_t count, loff_t *ppos)
  3161. {
  3162. struct iwl_lq_sta *lq_sta = file->private_data;
  3163. struct iwl_mvm *mvm;
  3164. char buf[64];
  3165. size_t buf_size;
  3166. u32 parsed_rate;
  3167. mvm = lq_sta->pers.drv;
  3168. memset(buf, 0, sizeof(buf));
  3169. buf_size = min(count, sizeof(buf) - 1);
  3170. if (copy_from_user(buf, user_buf, buf_size))
  3171. return -EFAULT;
  3172. if (sscanf(buf, "%x", &parsed_rate) == 1)
  3173. lq_sta->pers.dbg_fixed_rate = parsed_rate;
  3174. else
  3175. lq_sta->pers.dbg_fixed_rate = 0;
  3176. rs_program_fix_rate(mvm, lq_sta);
  3177. return count;
  3178. }
  3179. static ssize_t rs_sta_dbgfs_scale_table_read(struct file *file,
  3180. char __user *user_buf, size_t count, loff_t *ppos)
  3181. {
  3182. char *buff;
  3183. int desc = 0;
  3184. int i = 0;
  3185. ssize_t ret;
  3186. struct iwl_lq_sta *lq_sta = file->private_data;
  3187. struct iwl_mvm_sta *mvmsta =
  3188. container_of(lq_sta, struct iwl_mvm_sta, lq_sta);
  3189. struct iwl_mvm *mvm;
  3190. struct iwl_scale_tbl_info *tbl = &(lq_sta->lq_info[lq_sta->active_tbl]);
  3191. struct rs_rate *rate = &tbl->rate;
  3192. u32 ss_params;
  3193. mvm = lq_sta->pers.drv;
  3194. buff = kmalloc(2048, GFP_KERNEL);
  3195. if (!buff)
  3196. return -ENOMEM;
  3197. desc += sprintf(buff+desc, "sta_id %d\n", lq_sta->lq.sta_id);
  3198. desc += sprintf(buff+desc, "failed=%d success=%d rate=0%lX\n",
  3199. lq_sta->total_failed, lq_sta->total_success,
  3200. lq_sta->active_legacy_rate);
  3201. desc += sprintf(buff+desc, "fixed rate 0x%X\n",
  3202. lq_sta->pers.dbg_fixed_rate);
  3203. desc += sprintf(buff+desc, "valid_tx_ant %s%s%s\n",
  3204. (iwl_mvm_get_valid_tx_ant(mvm) & ANT_A) ? "ANT_A," : "",
  3205. (iwl_mvm_get_valid_tx_ant(mvm) & ANT_B) ? "ANT_B," : "",
  3206. (iwl_mvm_get_valid_tx_ant(mvm) & ANT_C) ? "ANT_C" : "");
  3207. desc += sprintf(buff+desc, "lq type %s\n",
  3208. (is_legacy(rate)) ? "legacy" :
  3209. is_vht(rate) ? "VHT" : "HT");
  3210. if (!is_legacy(rate)) {
  3211. desc += sprintf(buff + desc, " %s",
  3212. (is_siso(rate)) ? "SISO" : "MIMO2");
  3213. desc += sprintf(buff + desc, " %s",
  3214. (is_ht20(rate)) ? "20MHz" :
  3215. (is_ht40(rate)) ? "40MHz" :
  3216. (is_ht80(rate)) ? "80MHz" :
  3217. (is_ht160(rate)) ? "160MHz" : "BAD BW");
  3218. desc += sprintf(buff + desc, " %s %s %s %s\n",
  3219. (rate->sgi) ? "SGI" : "NGI",
  3220. (rate->ldpc) ? "LDPC" : "BCC",
  3221. (lq_sta->is_agg) ? "AGG on" : "",
  3222. (mvmsta->tlc_amsdu) ? "AMSDU on" : "");
  3223. }
  3224. desc += sprintf(buff+desc, "last tx rate=0x%X\n",
  3225. lq_sta->last_rate_n_flags);
  3226. desc += sprintf(buff+desc,
  3227. "general: flags=0x%X mimo-d=%d s-ant=0x%x d-ant=0x%x\n",
  3228. lq_sta->lq.flags,
  3229. lq_sta->lq.mimo_delim,
  3230. lq_sta->lq.single_stream_ant_msk,
  3231. lq_sta->lq.dual_stream_ant_msk);
  3232. desc += sprintf(buff+desc,
  3233. "agg: time_limit=%d dist_start_th=%d frame_cnt_limit=%d\n",
  3234. le16_to_cpu(lq_sta->lq.agg_time_limit),
  3235. lq_sta->lq.agg_disable_start_th,
  3236. lq_sta->lq.agg_frame_cnt_limit);
  3237. desc += sprintf(buff+desc, "reduced tpc=%d\n", lq_sta->lq.reduced_tpc);
  3238. ss_params = le32_to_cpu(lq_sta->lq.ss_params);
  3239. desc += sprintf(buff+desc, "single stream params: %s%s%s%s\n",
  3240. (ss_params & LQ_SS_PARAMS_VALID) ?
  3241. "VALID" : "INVALID",
  3242. (ss_params & LQ_SS_BFER_ALLOWED) ?
  3243. ", BFER" : "",
  3244. (ss_params & LQ_SS_STBC_1SS_ALLOWED) ?
  3245. ", STBC" : "",
  3246. (ss_params & LQ_SS_FORCE) ?
  3247. ", FORCE" : "");
  3248. desc += sprintf(buff+desc,
  3249. "Start idx [0]=0x%x [1]=0x%x [2]=0x%x [3]=0x%x\n",
  3250. lq_sta->lq.initial_rate_index[0],
  3251. lq_sta->lq.initial_rate_index[1],
  3252. lq_sta->lq.initial_rate_index[2],
  3253. lq_sta->lq.initial_rate_index[3]);
  3254. for (i = 0; i < LINK_QUAL_MAX_RETRY_NUM; i++) {
  3255. u32 r = le32_to_cpu(lq_sta->lq.rs_table[i]);
  3256. desc += sprintf(buff+desc, " rate[%d] 0x%X ", i, r);
  3257. desc += rs_pretty_print_rate(buff+desc, r);
  3258. }
  3259. ret = simple_read_from_buffer(user_buf, count, ppos, buff, desc);
  3260. kfree(buff);
  3261. return ret;
  3262. }
  3263. static const struct file_operations rs_sta_dbgfs_scale_table_ops = {
  3264. .write = rs_sta_dbgfs_scale_table_write,
  3265. .read = rs_sta_dbgfs_scale_table_read,
  3266. .open = simple_open,
  3267. .llseek = default_llseek,
  3268. };
  3269. static ssize_t rs_sta_dbgfs_stats_table_read(struct file *file,
  3270. char __user *user_buf, size_t count, loff_t *ppos)
  3271. {
  3272. char *buff;
  3273. int desc = 0;
  3274. int i, j;
  3275. ssize_t ret;
  3276. struct iwl_scale_tbl_info *tbl;
  3277. struct rs_rate *rate;
  3278. struct iwl_lq_sta *lq_sta = file->private_data;
  3279. buff = kmalloc(1024, GFP_KERNEL);
  3280. if (!buff)
  3281. return -ENOMEM;
  3282. for (i = 0; i < LQ_SIZE; i++) {
  3283. tbl = &(lq_sta->lq_info[i]);
  3284. rate = &tbl->rate;
  3285. desc += sprintf(buff+desc,
  3286. "%s type=%d SGI=%d BW=%s DUP=0\n"
  3287. "index=%d\n",
  3288. lq_sta->active_tbl == i ? "*" : "x",
  3289. rate->type,
  3290. rate->sgi,
  3291. is_ht20(rate) ? "20MHz" :
  3292. is_ht40(rate) ? "40MHz" :
  3293. is_ht80(rate) ? "80MHz" :
  3294. is_ht160(rate) ? "160MHz" : "ERR",
  3295. rate->index);
  3296. for (j = 0; j < IWL_RATE_COUNT; j++) {
  3297. desc += sprintf(buff+desc,
  3298. "counter=%d success=%d %%=%d\n",
  3299. tbl->win[j].counter,
  3300. tbl->win[j].success_counter,
  3301. tbl->win[j].success_ratio);
  3302. }
  3303. }
  3304. ret = simple_read_from_buffer(user_buf, count, ppos, buff, desc);
  3305. kfree(buff);
  3306. return ret;
  3307. }
  3308. static const struct file_operations rs_sta_dbgfs_stats_table_ops = {
  3309. .read = rs_sta_dbgfs_stats_table_read,
  3310. .open = simple_open,
  3311. .llseek = default_llseek,
  3312. };
  3313. static ssize_t rs_sta_dbgfs_drv_tx_stats_read(struct file *file,
  3314. char __user *user_buf,
  3315. size_t count, loff_t *ppos)
  3316. {
  3317. static const char * const column_name[] = {
  3318. [RS_COLUMN_LEGACY_ANT_A] = "LEGACY_ANT_A",
  3319. [RS_COLUMN_LEGACY_ANT_B] = "LEGACY_ANT_B",
  3320. [RS_COLUMN_SISO_ANT_A] = "SISO_ANT_A",
  3321. [RS_COLUMN_SISO_ANT_B] = "SISO_ANT_B",
  3322. [RS_COLUMN_SISO_ANT_A_SGI] = "SISO_ANT_A_SGI",
  3323. [RS_COLUMN_SISO_ANT_B_SGI] = "SISO_ANT_B_SGI",
  3324. [RS_COLUMN_MIMO2] = "MIMO2",
  3325. [RS_COLUMN_MIMO2_SGI] = "MIMO2_SGI",
  3326. };
  3327. static const char * const rate_name[] = {
  3328. [IWL_RATE_1M_INDEX] = "1M",
  3329. [IWL_RATE_2M_INDEX] = "2M",
  3330. [IWL_RATE_5M_INDEX] = "5.5M",
  3331. [IWL_RATE_11M_INDEX] = "11M",
  3332. [IWL_RATE_6M_INDEX] = "6M|MCS0",
  3333. [IWL_RATE_9M_INDEX] = "9M",
  3334. [IWL_RATE_12M_INDEX] = "12M|MCS1",
  3335. [IWL_RATE_18M_INDEX] = "18M|MCS2",
  3336. [IWL_RATE_24M_INDEX] = "24M|MCS3",
  3337. [IWL_RATE_36M_INDEX] = "36M|MCS4",
  3338. [IWL_RATE_48M_INDEX] = "48M|MCS5",
  3339. [IWL_RATE_54M_INDEX] = "54M|MCS6",
  3340. [IWL_RATE_MCS_7_INDEX] = "MCS7",
  3341. [IWL_RATE_MCS_8_INDEX] = "MCS8",
  3342. [IWL_RATE_MCS_9_INDEX] = "MCS9",
  3343. };
  3344. char *buff, *pos, *endpos;
  3345. int col, rate;
  3346. ssize_t ret;
  3347. struct iwl_lq_sta *lq_sta = file->private_data;
  3348. struct rs_rate_stats *stats;
  3349. static const size_t bufsz = 1024;
  3350. buff = kmalloc(bufsz, GFP_KERNEL);
  3351. if (!buff)
  3352. return -ENOMEM;
  3353. pos = buff;
  3354. endpos = pos + bufsz;
  3355. pos += scnprintf(pos, endpos - pos, "COLUMN,");
  3356. for (rate = 0; rate < IWL_RATE_COUNT; rate++)
  3357. pos += scnprintf(pos, endpos - pos, "%s,", rate_name[rate]);
  3358. pos += scnprintf(pos, endpos - pos, "\n");
  3359. for (col = 0; col < RS_COLUMN_COUNT; col++) {
  3360. pos += scnprintf(pos, endpos - pos,
  3361. "%s,", column_name[col]);
  3362. for (rate = 0; rate < IWL_RATE_COUNT; rate++) {
  3363. stats = &(lq_sta->pers.tx_stats[col][rate]);
  3364. pos += scnprintf(pos, endpos - pos,
  3365. "%llu/%llu,",
  3366. stats->success,
  3367. stats->total);
  3368. }
  3369. pos += scnprintf(pos, endpos - pos, "\n");
  3370. }
  3371. ret = simple_read_from_buffer(user_buf, count, ppos, buff, pos - buff);
  3372. kfree(buff);
  3373. return ret;
  3374. }
  3375. static ssize_t rs_sta_dbgfs_drv_tx_stats_write(struct file *file,
  3376. const char __user *user_buf,
  3377. size_t count, loff_t *ppos)
  3378. {
  3379. struct iwl_lq_sta *lq_sta = file->private_data;
  3380. memset(lq_sta->pers.tx_stats, 0, sizeof(lq_sta->pers.tx_stats));
  3381. return count;
  3382. }
  3383. static const struct file_operations rs_sta_dbgfs_drv_tx_stats_ops = {
  3384. .read = rs_sta_dbgfs_drv_tx_stats_read,
  3385. .write = rs_sta_dbgfs_drv_tx_stats_write,
  3386. .open = simple_open,
  3387. .llseek = default_llseek,
  3388. };
  3389. static ssize_t iwl_dbgfs_ss_force_read(struct file *file,
  3390. char __user *user_buf,
  3391. size_t count, loff_t *ppos)
  3392. {
  3393. struct iwl_lq_sta *lq_sta = file->private_data;
  3394. char buf[12];
  3395. int bufsz = sizeof(buf);
  3396. int pos = 0;
  3397. static const char * const ss_force_name[] = {
  3398. [RS_SS_FORCE_NONE] = "none",
  3399. [RS_SS_FORCE_STBC] = "stbc",
  3400. [RS_SS_FORCE_BFER] = "bfer",
  3401. [RS_SS_FORCE_SISO] = "siso",
  3402. };
  3403. pos += scnprintf(buf+pos, bufsz-pos, "%s\n",
  3404. ss_force_name[lq_sta->pers.ss_force]);
  3405. return simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  3406. }
  3407. static ssize_t iwl_dbgfs_ss_force_write(struct iwl_lq_sta *lq_sta, char *buf,
  3408. size_t count, loff_t *ppos)
  3409. {
  3410. struct iwl_mvm *mvm = lq_sta->pers.drv;
  3411. int ret = 0;
  3412. if (!strncmp("none", buf, 4)) {
  3413. lq_sta->pers.ss_force = RS_SS_FORCE_NONE;
  3414. } else if (!strncmp("siso", buf, 4)) {
  3415. lq_sta->pers.ss_force = RS_SS_FORCE_SISO;
  3416. } else if (!strncmp("stbc", buf, 4)) {
  3417. if (lq_sta->stbc_capable) {
  3418. lq_sta->pers.ss_force = RS_SS_FORCE_STBC;
  3419. } else {
  3420. IWL_ERR(mvm,
  3421. "can't force STBC. peer doesn't support\n");
  3422. ret = -EINVAL;
  3423. }
  3424. } else if (!strncmp("bfer", buf, 4)) {
  3425. if (lq_sta->bfer_capable) {
  3426. lq_sta->pers.ss_force = RS_SS_FORCE_BFER;
  3427. } else {
  3428. IWL_ERR(mvm,
  3429. "can't force BFER. peer doesn't support\n");
  3430. ret = -EINVAL;
  3431. }
  3432. } else {
  3433. IWL_ERR(mvm, "valid values none|siso|stbc|bfer\n");
  3434. ret = -EINVAL;
  3435. }
  3436. return ret ?: count;
  3437. }
  3438. #define MVM_DEBUGFS_READ_WRITE_FILE_OPS(name, bufsz) \
  3439. _MVM_DEBUGFS_READ_WRITE_FILE_OPS(name, bufsz, struct iwl_lq_sta)
  3440. #define MVM_DEBUGFS_ADD_FILE_RS(name, parent, mode) do { \
  3441. if (!debugfs_create_file(#name, mode, parent, lq_sta, \
  3442. &iwl_dbgfs_##name##_ops)) \
  3443. goto err; \
  3444. } while (0)
  3445. MVM_DEBUGFS_READ_WRITE_FILE_OPS(ss_force, 32);
  3446. static void rs_add_debugfs(void *mvm, void *priv_sta, struct dentry *dir)
  3447. {
  3448. struct iwl_lq_sta *lq_sta = priv_sta;
  3449. struct iwl_mvm_sta *mvmsta;
  3450. mvmsta = container_of(lq_sta, struct iwl_mvm_sta, lq_sta);
  3451. if (!mvmsta->vif)
  3452. return;
  3453. debugfs_create_file("rate_scale_table", S_IRUSR | S_IWUSR, dir,
  3454. lq_sta, &rs_sta_dbgfs_scale_table_ops);
  3455. debugfs_create_file("rate_stats_table", S_IRUSR, dir,
  3456. lq_sta, &rs_sta_dbgfs_stats_table_ops);
  3457. debugfs_create_file("drv_tx_stats", S_IRUSR | S_IWUSR, dir,
  3458. lq_sta, &rs_sta_dbgfs_drv_tx_stats_ops);
  3459. debugfs_create_u8("tx_agg_tid_enable", S_IRUSR | S_IWUSR, dir,
  3460. &lq_sta->tx_agg_tid_en);
  3461. debugfs_create_u8("reduced_tpc", S_IRUSR | S_IWUSR, dir,
  3462. &lq_sta->pers.dbg_fixed_txp_reduction);
  3463. MVM_DEBUGFS_ADD_FILE_RS(ss_force, dir, S_IRUSR | S_IWUSR);
  3464. return;
  3465. err:
  3466. IWL_ERR((struct iwl_mvm *)mvm, "Can't create debugfs entity\n");
  3467. }
  3468. static void rs_remove_debugfs(void *mvm, void *mvm_sta)
  3469. {
  3470. }
  3471. #endif
  3472. /*
  3473. * Initialization of rate scaling information is done by driver after
  3474. * the station is added. Since mac80211 calls this function before a
  3475. * station is added we ignore it.
  3476. */
  3477. static void rs_rate_init_stub(void *mvm_r,
  3478. struct ieee80211_supported_band *sband,
  3479. struct cfg80211_chan_def *chandef,
  3480. struct ieee80211_sta *sta, void *mvm_sta)
  3481. {
  3482. }
  3483. static const struct rate_control_ops rs_mvm_ops = {
  3484. .name = RS_NAME,
  3485. .tx_status = rs_mac80211_tx_status,
  3486. .get_rate = rs_get_rate,
  3487. .rate_init = rs_rate_init_stub,
  3488. .alloc = rs_alloc,
  3489. .free = rs_free,
  3490. .alloc_sta = rs_alloc_sta,
  3491. .free_sta = rs_free_sta,
  3492. .rate_update = rs_rate_update,
  3493. #ifdef CONFIG_MAC80211_DEBUGFS
  3494. .add_sta_debugfs = rs_add_debugfs,
  3495. .remove_sta_debugfs = rs_remove_debugfs,
  3496. #endif
  3497. };
  3498. int iwl_mvm_rate_control_register(void)
  3499. {
  3500. return ieee80211_rate_control_register(&rs_mvm_ops);
  3501. }
  3502. void iwl_mvm_rate_control_unregister(void)
  3503. {
  3504. ieee80211_rate_control_unregister(&rs_mvm_ops);
  3505. }
  3506. /**
  3507. * iwl_mvm_tx_protection - Gets LQ command, change it to enable/disable
  3508. * Tx protection, according to this request and previous requests,
  3509. * and send the LQ command.
  3510. * @mvmsta: The station
  3511. * @enable: Enable Tx protection?
  3512. */
  3513. int iwl_mvm_tx_protection(struct iwl_mvm *mvm, struct iwl_mvm_sta *mvmsta,
  3514. bool enable)
  3515. {
  3516. struct iwl_lq_cmd *lq = &mvmsta->lq_sta.lq;
  3517. lockdep_assert_held(&mvm->mutex);
  3518. if (enable) {
  3519. if (mvmsta->tx_protection == 0)
  3520. lq->flags |= LQ_FLAG_USE_RTS_MSK;
  3521. mvmsta->tx_protection++;
  3522. } else {
  3523. mvmsta->tx_protection--;
  3524. if (mvmsta->tx_protection == 0)
  3525. lq->flags &= ~LQ_FLAG_USE_RTS_MSK;
  3526. }
  3527. return iwl_mvm_send_lq_cmd(mvm, lq, false);
  3528. }