1 // SPDX-License-Identifier: GPL-2.0-only 2 /****************************************************************************** 3 * 4 * Copyright(c) 2005 - 2011 Intel Corporation. All rights reserved. 5 * 6 * Contact Information: 7 * Intel Linux Wireless <ilw@linux.intel.com> 8 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497 9 * 10 *****************************************************************************/ 11 #include <linux/kernel.h> 12 #include <linux/skbuff.h> 13 #include <linux/slab.h> 14 #include <net/mac80211.h> 15 16 #include <linux/netdevice.h> 17 #include <linux/etherdevice.h> 18 #include <linux/delay.h> 19 20 #include <linux/workqueue.h> 21 22 #include "common.h" 23 #include "4965.h" 24 25 #define IL4965_RS_NAME "iwl-4965-rs" 26 27 #define NUM_TRY_BEFORE_ANT_TOGGLE 1 28 #define IL_NUMBER_TRY 1 29 #define IL_HT_NUMBER_TRY 3 30 31 #define RATE_MAX_WINDOW 62 /* # tx in history win */ 32 #define RATE_MIN_FAILURE_TH 6 /* min failures to calc tpt */ 33 #define RATE_MIN_SUCCESS_TH 8 /* min successes to calc tpt */ 34 35 /* max allowed rate miss before sync LQ cmd */ 36 #define IL_MISSED_RATE_MAX 15 37 /* max time to accum history 2 seconds */ 38 #define RATE_SCALE_FLUSH_INTVL (3*HZ) 39 40 static u8 rs_ht_to_legacy[] = { 41 RATE_6M_IDX, RATE_6M_IDX, 42 RATE_6M_IDX, RATE_6M_IDX, 43 RATE_6M_IDX, 44 RATE_6M_IDX, RATE_9M_IDX, 45 RATE_12M_IDX, RATE_18M_IDX, 46 RATE_24M_IDX, RATE_36M_IDX, 47 RATE_48M_IDX, RATE_54M_IDX 48 }; 49 50 static const u8 ant_toggle_lookup[] = { 51 /*ANT_NONE -> */ ANT_NONE, 52 /*ANT_A -> */ ANT_B, 53 /*ANT_B -> */ ANT_C, 54 /*ANT_AB -> */ ANT_BC, 55 /*ANT_C -> */ ANT_A, 56 /*ANT_AC -> */ ANT_AB, 57 /*ANT_BC -> */ ANT_AC, 58 /*ANT_ABC -> */ ANT_ABC, 59 }; 60 61 #define IL_DECLARE_RATE_INFO(r, s, ip, in, rp, rn, pp, np) \ 62 [RATE_##r##M_IDX] = { RATE_##r##M_PLCP, \ 63 RATE_SISO_##s##M_PLCP, \ 64 RATE_MIMO2_##s##M_PLCP,\ 65 RATE_##r##M_IEEE, \ 66 RATE_##ip##M_IDX, \ 67 RATE_##in##M_IDX, \ 68 RATE_##rp##M_IDX, \ 69 RATE_##rn##M_IDX, \ 70 RATE_##pp##M_IDX, \ 71 RATE_##np##M_IDX } 72 73 /* 74 * Parameter order: 75 * rate, ht rate, prev rate, next rate, prev tgg rate, next tgg rate 76 * 77 * If there isn't a valid next or previous rate then INV is used which 78 * maps to RATE_INVALID 79 * 80 */ 81 const struct il_rate_info il_rates[RATE_COUNT] = { 82 IL_DECLARE_RATE_INFO(1, INV, INV, 2, INV, 2, INV, 2), /* 1mbps */ 83 IL_DECLARE_RATE_INFO(2, INV, 1, 5, 1, 5, 1, 5), /* 2mbps */ 84 IL_DECLARE_RATE_INFO(5, INV, 2, 6, 2, 11, 2, 11), /*5.5mbps */ 85 IL_DECLARE_RATE_INFO(11, INV, 9, 12, 9, 12, 5, 18), /* 11mbps */ 86 IL_DECLARE_RATE_INFO(6, 6, 5, 9, 5, 11, 5, 11), /* 6mbps */ 87 IL_DECLARE_RATE_INFO(9, 6, 6, 11, 6, 11, 5, 11), /* 9mbps */ 88 IL_DECLARE_RATE_INFO(12, 12, 11, 18, 11, 18, 11, 18), /* 12mbps */ 89 IL_DECLARE_RATE_INFO(18, 18, 12, 24, 12, 24, 11, 24), /* 18mbps */ 90 IL_DECLARE_RATE_INFO(24, 24, 18, 36, 18, 36, 18, 36), /* 24mbps */ 91 IL_DECLARE_RATE_INFO(36, 36, 24, 48, 24, 48, 24, 48), /* 36mbps */ 92 IL_DECLARE_RATE_INFO(48, 48, 36, 54, 36, 54, 36, 54), /* 48mbps */ 93 IL_DECLARE_RATE_INFO(54, 54, 48, INV, 48, INV, 48, INV),/* 54mbps */ 94 IL_DECLARE_RATE_INFO(60, 60, 48, INV, 48, INV, 48, INV),/* 60mbps */ 95 }; 96 97 static int 98 il4965_hwrate_to_plcp_idx(u32 rate_n_flags) 99 { 100 int idx = 0; 101 102 /* HT rate format */ 103 if (rate_n_flags & RATE_MCS_HT_MSK) { 104 idx = (rate_n_flags & 0xff); 105 106 if (idx >= RATE_MIMO2_6M_PLCP) 107 idx = idx - RATE_MIMO2_6M_PLCP; 108 109 idx += IL_FIRST_OFDM_RATE; 110 /* skip 9M not supported in ht */ 111 if (idx >= RATE_9M_IDX) 112 idx += 1; 113 if (idx >= IL_FIRST_OFDM_RATE && idx <= IL_LAST_OFDM_RATE) 114 return idx; 115 116 /* legacy rate format, search for match in table */ 117 } else { 118 for (idx = 0; idx < ARRAY_SIZE(il_rates); idx++) 119 if (il_rates[idx].plcp == (rate_n_flags & 0xFF)) 120 return idx; 121 } 122 123 return -1; 124 } 125 126 static void il4965_rs_rate_scale_perform(struct il_priv *il, 127 struct sk_buff *skb, 128 struct ieee80211_sta *sta, 129 struct il_lq_sta *lq_sta); 130 static void il4965_rs_fill_link_cmd(struct il_priv *il, 131 struct il_lq_sta *lq_sta, u32 rate_n_flags); 132 static void il4965_rs_stay_in_table(struct il_lq_sta *lq_sta, 133 bool force_search); 134 135 static void il4965_rs_dbgfs_set_mcs(struct il_lq_sta *lq_sta, 136 u32 *rate_n_flags, int idx); 137 138 /* 139 * The following tables contain the expected throughput metrics for all rates 140 * 141 * 1, 2, 5.5, 11, 6, 9, 12, 18, 24, 36, 48, 54, 60 MBits 142 * 143 * where invalid entries are zeros. 144 * 145 * CCK rates are only valid in legacy table and will only be used in G 146 * (2.4 GHz) band. 147 */ 148 149 static s32 expected_tpt_legacy[RATE_COUNT] = { 150 7, 13, 35, 58, 40, 57, 72, 98, 121, 154, 177, 186, 0 151 }; 152 153 static s32 expected_tpt_siso20MHz[4][RATE_COUNT] = { 154 {0, 0, 0, 0, 42, 0, 76, 102, 124, 158, 183, 193, 202}, /* Norm */ 155 {0, 0, 0, 0, 46, 0, 82, 110, 132, 167, 192, 202, 210}, /* SGI */ 156 {0, 0, 0, 0, 48, 0, 93, 135, 176, 251, 319, 351, 381}, /* AGG */ 157 {0, 0, 0, 0, 53, 0, 102, 149, 193, 275, 348, 381, 413}, /* AGG+SGI */ 158 }; 159 160 static s32 expected_tpt_siso40MHz[4][RATE_COUNT] = { 161 {0, 0, 0, 0, 77, 0, 127, 160, 184, 220, 242, 250, 257}, /* Norm */ 162 {0, 0, 0, 0, 83, 0, 135, 169, 193, 229, 250, 257, 264}, /* SGI */ 163 {0, 0, 0, 0, 96, 0, 182, 259, 328, 451, 553, 598, 640}, /* AGG */ 164 {0, 0, 0, 0, 106, 0, 199, 282, 357, 487, 593, 640, 683}, /* AGG+SGI */ 165 }; 166 167 static s32 expected_tpt_mimo2_20MHz[4][RATE_COUNT] = { 168 {0, 0, 0, 0, 74, 0, 123, 155, 179, 213, 235, 243, 250}, /* Norm */ 169 {0, 0, 0, 0, 81, 0, 131, 164, 187, 221, 242, 250, 256}, /* SGI */ 170 {0, 0, 0, 0, 92, 0, 175, 250, 317, 436, 534, 578, 619}, /* AGG */ 171 {0, 0, 0, 0, 102, 0, 192, 273, 344, 470, 573, 619, 660}, /* AGG+SGI */ 172 }; 173 174 static s32 expected_tpt_mimo2_40MHz[4][RATE_COUNT] = { 175 {0, 0, 0, 0, 123, 0, 182, 214, 235, 264, 279, 285, 289}, /* Norm */ 176 {0, 0, 0, 0, 131, 0, 191, 222, 242, 270, 284, 289, 293}, /* SGI */ 177 {0, 0, 0, 0, 180, 0, 327, 446, 545, 708, 828, 878, 922}, /* AGG */ 178 {0, 0, 0, 0, 197, 0, 355, 481, 584, 752, 872, 922, 966}, /* AGG+SGI */ 179 }; 180 181 /* mbps, mcs */ 182 static const struct il_rate_mcs_info il_rate_mcs[RATE_COUNT] = { 183 {"1", "BPSK DSSS"}, 184 {"2", "QPSK DSSS"}, 185 {"5.5", "BPSK CCK"}, 186 {"11", "QPSK CCK"}, 187 {"6", "BPSK 1/2"}, 188 {"9", "BPSK 1/2"}, 189 {"12", "QPSK 1/2"}, 190 {"18", "QPSK 3/4"}, 191 {"24", "16QAM 1/2"}, 192 {"36", "16QAM 3/4"}, 193 {"48", "64QAM 2/3"}, 194 {"54", "64QAM 3/4"}, 195 {"60", "64QAM 5/6"}, 196 }; 197 198 #define MCS_IDX_PER_STREAM (8) 199 200 static inline u8 201 il4965_rs_extract_rate(u32 rate_n_flags) 202 { 203 return (u8) (rate_n_flags & 0xFF); 204 } 205 206 /* noinline works around https://github.com/llvm/llvm-project/issues/143908 */ 207 static noinline_for_stack void 208 il4965_rs_rate_scale_clear_win(struct il_rate_scale_data *win) 209 { 210 win->data = 0; 211 win->success_counter = 0; 212 win->success_ratio = IL_INVALID_VALUE; 213 win->counter = 0; 214 win->average_tpt = IL_INVALID_VALUE; 215 win->stamp = 0; 216 } 217 218 static inline u8 219 il4965_rs_is_valid_ant(u8 valid_antenna, u8 ant_type) 220 { 221 return (ant_type & valid_antenna) == ant_type; 222 } 223 224 /* 225 * removes the old data from the stats. All data that is older than 226 * TID_MAX_TIME_DIFF, will be deleted. 227 */ 228 static void 229 il4965_rs_tl_rm_old_stats(struct il_traffic_load *tl, u32 curr_time) 230 { 231 /* The oldest age we want to keep */ 232 u32 oldest_time = curr_time - TID_MAX_TIME_DIFF; 233 234 while (tl->queue_count && tl->time_stamp < oldest_time) { 235 tl->total -= tl->packet_count[tl->head]; 236 tl->packet_count[tl->head] = 0; 237 tl->time_stamp += TID_QUEUE_CELL_SPACING; 238 tl->queue_count--; 239 tl->head++; 240 if (tl->head >= TID_QUEUE_MAX_SIZE) 241 tl->head = 0; 242 } 243 } 244 245 /* 246 * increment traffic load value for tid and also remove 247 * any old values if passed the certain time period 248 */ 249 static u8 250 il4965_rs_tl_add_packet(struct il_lq_sta *lq_data, struct ieee80211_hdr *hdr) 251 { 252 u32 curr_time = jiffies_to_msecs(jiffies); 253 u32 time_diff; 254 s32 idx; 255 struct il_traffic_load *tl = NULL; 256 u8 tid; 257 258 if (ieee80211_is_data_qos(hdr->frame_control)) { 259 u8 *qc = ieee80211_get_qos_ctl(hdr); 260 tid = qc[0] & 0xf; 261 } else 262 return MAX_TID_COUNT; 263 264 if (unlikely(tid >= TID_MAX_LOAD_COUNT)) 265 return MAX_TID_COUNT; 266 267 tl = &lq_data->load[tid]; 268 269 curr_time -= curr_time % TID_ROUND_VALUE; 270 271 /* Happens only for the first packet. Initialize the data */ 272 if (!(tl->queue_count)) { 273 tl->total = 1; 274 tl->time_stamp = curr_time; 275 tl->queue_count = 1; 276 tl->head = 0; 277 tl->packet_count[0] = 1; 278 return MAX_TID_COUNT; 279 } 280 281 time_diff = TIME_WRAP_AROUND(tl->time_stamp, curr_time); 282 idx = time_diff / TID_QUEUE_CELL_SPACING; 283 284 /* The history is too long: remove data that is older than */ 285 /* TID_MAX_TIME_DIFF */ 286 if (idx >= TID_QUEUE_MAX_SIZE) 287 il4965_rs_tl_rm_old_stats(tl, curr_time); 288 289 idx = (tl->head + idx) % TID_QUEUE_MAX_SIZE; 290 tl->packet_count[idx] = tl->packet_count[idx] + 1; 291 tl->total = tl->total + 1; 292 293 if ((idx + 1) > tl->queue_count) 294 tl->queue_count = idx + 1; 295 296 return tid; 297 } 298 299 /* 300 get the traffic load value for tid 301 */ 302 static u32 303 il4965_rs_tl_get_load(struct il_lq_sta *lq_data, u8 tid) 304 { 305 u32 curr_time = jiffies_to_msecs(jiffies); 306 u32 time_diff; 307 s32 idx; 308 struct il_traffic_load *tl = NULL; 309 310 if (tid >= TID_MAX_LOAD_COUNT) 311 return 0; 312 313 tl = &(lq_data->load[tid]); 314 315 curr_time -= curr_time % TID_ROUND_VALUE; 316 317 if (!(tl->queue_count)) 318 return 0; 319 320 time_diff = TIME_WRAP_AROUND(tl->time_stamp, curr_time); 321 idx = time_diff / TID_QUEUE_CELL_SPACING; 322 323 /* The history is too long: remove data that is older than */ 324 /* TID_MAX_TIME_DIFF */ 325 if (idx >= TID_QUEUE_MAX_SIZE) 326 il4965_rs_tl_rm_old_stats(tl, curr_time); 327 328 return tl->total; 329 } 330 331 static int 332 il4965_rs_tl_turn_on_agg_for_tid(struct il_priv *il, struct il_lq_sta *lq_data, 333 u8 tid, struct ieee80211_sta *sta) 334 { 335 int ret = -EAGAIN; 336 u32 load; 337 338 load = il4965_rs_tl_get_load(lq_data, tid); 339 340 if (load > IL_AGG_LOAD_THRESHOLD) { 341 D_HT("Starting Tx agg: STA: %pM tid: %d\n", sta->addr, tid); 342 ret = ieee80211_start_tx_ba_session(sta, tid, 5000); 343 if (ret == -EAGAIN) { 344 /* 345 * driver and mac80211 is out of sync 346 * this might be cause by reloading firmware 347 * stop the tx ba session here 348 */ 349 IL_ERR("Fail start Tx agg on tid: %d\n", tid); 350 ieee80211_stop_tx_ba_session(sta, tid); 351 } 352 } else 353 D_HT("Aggregation not enabled for tid %d because load = %u\n", 354 tid, load); 355 356 return ret; 357 } 358 359 static void 360 il4965_rs_tl_turn_on_agg(struct il_priv *il, u8 tid, struct il_lq_sta *lq_data, 361 struct ieee80211_sta *sta) 362 { 363 if (tid < TID_MAX_LOAD_COUNT) 364 il4965_rs_tl_turn_on_agg_for_tid(il, lq_data, tid, sta); 365 else 366 IL_ERR("tid exceeds max load count: %d/%d\n", tid, 367 TID_MAX_LOAD_COUNT); 368 } 369 370 static inline int 371 il4965_get_il4965_num_of_ant_from_rate(u32 rate_n_flags) 372 { 373 return !!(rate_n_flags & RATE_MCS_ANT_A_MSK) + 374 !!(rate_n_flags & RATE_MCS_ANT_B_MSK) + 375 !!(rate_n_flags & RATE_MCS_ANT_C_MSK); 376 } 377 378 /* 379 * Static function to get the expected throughput from an il_scale_tbl_info 380 * that wraps a NULL pointer check 381 */ 382 static s32 383 il4965_get_expected_tpt(struct il_scale_tbl_info *tbl, int rs_idx) 384 { 385 if (tbl->expected_tpt) 386 return tbl->expected_tpt[rs_idx]; 387 return 0; 388 } 389 390 /* 391 * il4965_rs_collect_tx_data - Update the success/failure sliding win 392 * 393 * We keep a sliding win of the last 62 packets transmitted 394 * at this rate. win->data contains the bitmask of successful 395 * packets. 396 */ 397 static int 398 il4965_rs_collect_tx_data(struct il_scale_tbl_info *tbl, int scale_idx, 399 int attempts, int successes) 400 { 401 struct il_rate_scale_data *win = NULL; 402 static const u64 mask = (((u64) 1) << (RATE_MAX_WINDOW - 1)); 403 s32 fail_count, tpt; 404 405 if (scale_idx < 0 || scale_idx >= RATE_COUNT) 406 return -EINVAL; 407 408 /* Select win for current tx bit rate */ 409 win = &(tbl->win[scale_idx]); 410 411 /* Get expected throughput */ 412 tpt = il4965_get_expected_tpt(tbl, scale_idx); 413 414 /* 415 * Keep track of only the latest 62 tx frame attempts in this rate's 416 * history win; anything older isn't really relevant any more. 417 * If we have filled up the sliding win, drop the oldest attempt; 418 * if the oldest attempt (highest bit in bitmap) shows "success", 419 * subtract "1" from the success counter (this is the main reason 420 * we keep these bitmaps!). 421 */ 422 while (attempts > 0) { 423 if (win->counter >= RATE_MAX_WINDOW) { 424 425 /* remove earliest */ 426 win->counter = RATE_MAX_WINDOW - 1; 427 428 if (win->data & mask) { 429 win->data &= ~mask; 430 win->success_counter--; 431 } 432 } 433 434 /* Increment frames-attempted counter */ 435 win->counter++; 436 437 /* Shift bitmap by one frame to throw away oldest history */ 438 win->data <<= 1; 439 440 /* Mark the most recent #successes attempts as successful */ 441 if (successes > 0) { 442 win->success_counter++; 443 win->data |= 0x1; 444 successes--; 445 } 446 447 attempts--; 448 } 449 450 /* Calculate current success ratio, avoid divide-by-0! */ 451 if (win->counter > 0) 452 win->success_ratio = 453 128 * (100 * win->success_counter) / win->counter; 454 else 455 win->success_ratio = IL_INVALID_VALUE; 456 457 fail_count = win->counter - win->success_counter; 458 459 /* Calculate average throughput, if we have enough history. */ 460 if (fail_count >= RATE_MIN_FAILURE_TH || 461 win->success_counter >= RATE_MIN_SUCCESS_TH) 462 win->average_tpt = (win->success_ratio * tpt + 64) / 128; 463 else 464 win->average_tpt = IL_INVALID_VALUE; 465 466 /* Tag this win as having been updated */ 467 win->stamp = jiffies; 468 469 return 0; 470 } 471 472 /* 473 * Fill uCode API rate_n_flags field, based on "search" or "active" table. 474 */ 475 static u32 476 il4965_rate_n_flags_from_tbl(struct il_priv *il, struct il_scale_tbl_info *tbl, 477 int idx, u8 use_green) 478 { 479 u32 rate_n_flags = 0; 480 481 if (is_legacy(tbl->lq_type)) { 482 rate_n_flags = il_rates[idx].plcp; 483 if (idx >= IL_FIRST_CCK_RATE && idx <= IL_LAST_CCK_RATE) 484 rate_n_flags |= RATE_MCS_CCK_MSK; 485 486 } else if (is_Ht(tbl->lq_type)) { 487 if (idx > IL_LAST_OFDM_RATE) { 488 IL_ERR("Invalid HT rate idx %d\n", idx); 489 idx = IL_LAST_OFDM_RATE; 490 } 491 rate_n_flags = RATE_MCS_HT_MSK; 492 493 if (is_siso(tbl->lq_type)) 494 rate_n_flags |= il_rates[idx].plcp_siso; 495 else 496 rate_n_flags |= il_rates[idx].plcp_mimo2; 497 } else { 498 IL_ERR("Invalid tbl->lq_type %d\n", tbl->lq_type); 499 } 500 501 rate_n_flags |= 502 ((tbl->ant_type << RATE_MCS_ANT_POS) & RATE_MCS_ANT_ABC_MSK); 503 504 if (is_Ht(tbl->lq_type)) { 505 if (tbl->is_ht40) { 506 if (tbl->is_dup) 507 rate_n_flags |= RATE_MCS_DUP_MSK; 508 else 509 rate_n_flags |= RATE_MCS_HT40_MSK; 510 } 511 if (tbl->is_SGI) 512 rate_n_flags |= RATE_MCS_SGI_MSK; 513 514 if (use_green) { 515 rate_n_flags |= RATE_MCS_GF_MSK; 516 if (is_siso(tbl->lq_type) && tbl->is_SGI) { 517 rate_n_flags &= ~RATE_MCS_SGI_MSK; 518 IL_ERR("GF was set with SGI:SISO\n"); 519 } 520 } 521 } 522 return rate_n_flags; 523 } 524 525 /* 526 * Interpret uCode API's rate_n_flags format, 527 * fill "search" or "active" tx mode table. 528 */ 529 static int 530 il4965_rs_get_tbl_info_from_mcs(const u32 rate_n_flags, 531 enum nl80211_band band, 532 struct il_scale_tbl_info *tbl, int *rate_idx) 533 { 534 u32 ant_msk = (rate_n_flags & RATE_MCS_ANT_ABC_MSK); 535 u8 il4965_num_of_ant = 536 il4965_get_il4965_num_of_ant_from_rate(rate_n_flags); 537 u8 mcs; 538 539 memset(tbl, 0, sizeof(struct il_scale_tbl_info)); 540 *rate_idx = il4965_hwrate_to_plcp_idx(rate_n_flags); 541 542 if (*rate_idx == RATE_INVALID) { 543 *rate_idx = -1; 544 return -EINVAL; 545 } 546 tbl->is_SGI = 0; /* default legacy setup */ 547 tbl->is_ht40 = 0; 548 tbl->is_dup = 0; 549 tbl->ant_type = (ant_msk >> RATE_MCS_ANT_POS); 550 tbl->lq_type = LQ_NONE; 551 tbl->max_search = IL_MAX_SEARCH; 552 553 /* legacy rate format */ 554 if (!(rate_n_flags & RATE_MCS_HT_MSK)) { 555 if (il4965_num_of_ant == 1) { 556 if (band == NL80211_BAND_5GHZ) 557 tbl->lq_type = LQ_A; 558 else 559 tbl->lq_type = LQ_G; 560 } 561 /* HT rate format */ 562 } else { 563 if (rate_n_flags & RATE_MCS_SGI_MSK) 564 tbl->is_SGI = 1; 565 566 if ((rate_n_flags & RATE_MCS_HT40_MSK) || 567 (rate_n_flags & RATE_MCS_DUP_MSK)) 568 tbl->is_ht40 = 1; 569 570 if (rate_n_flags & RATE_MCS_DUP_MSK) 571 tbl->is_dup = 1; 572 573 mcs = il4965_rs_extract_rate(rate_n_flags); 574 575 /* SISO */ 576 if (mcs <= RATE_SISO_60M_PLCP) { 577 if (il4965_num_of_ant == 1) 578 tbl->lq_type = LQ_SISO; /*else NONE */ 579 /* MIMO2 */ 580 } else { 581 if (il4965_num_of_ant == 2) 582 tbl->lq_type = LQ_MIMO2; 583 } 584 } 585 return 0; 586 } 587 588 /* switch to another antenna/antennas and return 1 */ 589 /* if no other valid antenna found, return 0 */ 590 static int 591 il4965_rs_toggle_antenna(u32 valid_ant, u32 *rate_n_flags, 592 struct il_scale_tbl_info *tbl) 593 { 594 u8 new_ant_type; 595 596 if (!tbl->ant_type || tbl->ant_type > ANT_ABC) 597 return 0; 598 599 if (!il4965_rs_is_valid_ant(valid_ant, tbl->ant_type)) 600 return 0; 601 602 new_ant_type = ant_toggle_lookup[tbl->ant_type]; 603 604 while (new_ant_type != tbl->ant_type && 605 !il4965_rs_is_valid_ant(valid_ant, new_ant_type)) 606 new_ant_type = ant_toggle_lookup[new_ant_type]; 607 608 if (new_ant_type == tbl->ant_type) 609 return 0; 610 611 tbl->ant_type = new_ant_type; 612 *rate_n_flags &= ~RATE_MCS_ANT_ABC_MSK; 613 *rate_n_flags |= new_ant_type << RATE_MCS_ANT_POS; 614 return 1; 615 } 616 617 /* 618 * Green-field mode is valid if the station supports it and 619 * there are no non-GF stations present in the BSS. 620 */ 621 static bool 622 il4965_rs_use_green(struct il_priv *il, struct ieee80211_sta *sta) 623 { 624 return (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_GRN_FLD) && 625 !il->ht.non_gf_sta_present; 626 } 627 628 /* 629 * il4965_rs_get_supported_rates - get the available rates 630 * 631 * if management frame or broadcast frame only return 632 * basic available rates. 633 * 634 */ 635 static u16 636 il4965_rs_get_supported_rates(struct il_lq_sta *lq_sta, 637 struct ieee80211_hdr *hdr, 638 enum il_table_type rate_type) 639 { 640 if (is_legacy(rate_type)) { 641 return lq_sta->active_legacy_rate; 642 } else { 643 if (is_siso(rate_type)) 644 return lq_sta->active_siso_rate; 645 else 646 return lq_sta->active_mimo2_rate; 647 } 648 } 649 650 static u16 651 il4965_rs_get_adjacent_rate(struct il_priv *il, u8 idx, u16 rate_mask, 652 int rate_type) 653 { 654 u8 high = RATE_INVALID; 655 u8 low = RATE_INVALID; 656 657 /* 802.11A or ht walks to the next literal adjacent rate in 658 * the rate table */ 659 if (is_a_band(rate_type) || !is_legacy(rate_type)) { 660 int i; 661 u32 mask; 662 663 /* Find the previous rate that is in the rate mask */ 664 i = idx - 1; 665 for (mask = (1 << i); i >= 0; i--, mask >>= 1) { 666 if (rate_mask & mask) { 667 low = i; 668 break; 669 } 670 } 671 672 /* Find the next rate that is in the rate mask */ 673 i = idx + 1; 674 for (mask = (1 << i); i < RATE_COUNT; i++, mask <<= 1) { 675 if (rate_mask & mask) { 676 high = i; 677 break; 678 } 679 } 680 681 return (high << 8) | low; 682 } 683 684 low = idx; 685 while (low != RATE_INVALID) { 686 low = il_rates[low].prev_rs; 687 if (low == RATE_INVALID) 688 break; 689 if (rate_mask & (1 << low)) 690 break; 691 D_RATE("Skipping masked lower rate: %d\n", low); 692 } 693 694 high = idx; 695 while (high != RATE_INVALID) { 696 high = il_rates[high].next_rs; 697 if (high == RATE_INVALID) 698 break; 699 if (rate_mask & (1 << high)) 700 break; 701 D_RATE("Skipping masked higher rate: %d\n", high); 702 } 703 704 return (high << 8) | low; 705 } 706 707 static u32 708 il4965_rs_get_lower_rate(struct il_lq_sta *lq_sta, 709 struct il_scale_tbl_info *tbl, u8 scale_idx, 710 u8 ht_possible) 711 { 712 s32 low; 713 u16 rate_mask; 714 u16 high_low; 715 u8 switch_to_legacy = 0; 716 u8 is_green = lq_sta->is_green; 717 struct il_priv *il = lq_sta->drv; 718 719 /* check if we need to switch from HT to legacy rates. 720 * assumption is that mandatory rates (1Mbps or 6Mbps) 721 * are always supported (spec demand) */ 722 if (!is_legacy(tbl->lq_type) && (!ht_possible || !scale_idx)) { 723 switch_to_legacy = 1; 724 scale_idx = rs_ht_to_legacy[scale_idx]; 725 if (lq_sta->band == NL80211_BAND_5GHZ) 726 tbl->lq_type = LQ_A; 727 else 728 tbl->lq_type = LQ_G; 729 730 if (il4965_num_of_ant(tbl->ant_type) > 1) 731 tbl->ant_type = 732 il4965_first_antenna(il->hw_params.valid_tx_ant); 733 734 tbl->is_ht40 = 0; 735 tbl->is_SGI = 0; 736 tbl->max_search = IL_MAX_SEARCH; 737 } 738 739 rate_mask = il4965_rs_get_supported_rates(lq_sta, NULL, tbl->lq_type); 740 741 /* Mask with station rate restriction */ 742 if (is_legacy(tbl->lq_type)) { 743 /* supp_rates has no CCK bits in A mode */ 744 if (lq_sta->band == NL80211_BAND_5GHZ) 745 rate_mask = 746 (u16) (rate_mask & 747 (lq_sta->supp_rates << IL_FIRST_OFDM_RATE)); 748 else 749 rate_mask = (u16) (rate_mask & lq_sta->supp_rates); 750 } 751 752 /* If we switched from HT to legacy, check current rate */ 753 if (switch_to_legacy && (rate_mask & (1 << scale_idx))) { 754 low = scale_idx; 755 goto out; 756 } 757 758 high_low = 759 il4965_rs_get_adjacent_rate(lq_sta->drv, scale_idx, rate_mask, 760 tbl->lq_type); 761 low = high_low & 0xff; 762 763 if (low == RATE_INVALID) 764 low = scale_idx; 765 766 out: 767 return il4965_rate_n_flags_from_tbl(lq_sta->drv, tbl, low, is_green); 768 } 769 770 /* 771 * Simple function to compare two rate scale table types 772 */ 773 static bool 774 il4965_table_type_matches(struct il_scale_tbl_info *a, 775 struct il_scale_tbl_info *b) 776 { 777 return (a->lq_type == b->lq_type && a->ant_type == b->ant_type && 778 a->is_SGI == b->is_SGI); 779 } 780 781 /* 782 * mac80211 sends us Tx status 783 */ 784 static void 785 il4965_rs_tx_status(void *il_r, struct ieee80211_supported_band *sband, 786 struct ieee80211_sta *sta, void *il_sta, 787 struct sk_buff *skb) 788 { 789 int legacy_success; 790 int retries; 791 int rs_idx, mac_idx, i; 792 struct il_lq_sta *lq_sta = il_sta; 793 struct il_link_quality_cmd *table; 794 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data; 795 struct il_priv *il = (struct il_priv *)il_r; 796 struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb); 797 enum mac80211_rate_control_flags mac_flags; 798 u32 tx_rate; 799 struct il_scale_tbl_info tbl_type; 800 struct il_scale_tbl_info *curr_tbl, *other_tbl, *tmp_tbl; 801 802 D_RATE("get frame ack response, update rate scale win\n"); 803 804 /* Treat uninitialized rate scaling data same as non-existing. */ 805 if (!lq_sta) { 806 D_RATE("Station rate scaling not created yet.\n"); 807 return; 808 } else if (!lq_sta->drv) { 809 D_RATE("Rate scaling not initialized yet.\n"); 810 return; 811 } 812 813 if (!ieee80211_is_data(hdr->frame_control) || 814 (info->flags & IEEE80211_TX_CTL_NO_ACK)) 815 return; 816 817 /* This packet was aggregated but doesn't carry status info */ 818 if ((info->flags & IEEE80211_TX_CTL_AMPDU) && 819 !(info->flags & IEEE80211_TX_STAT_AMPDU)) 820 return; 821 822 /* 823 * Ignore this Tx frame response if its initial rate doesn't match 824 * that of latest Link Quality command. There may be stragglers 825 * from a previous Link Quality command, but we're no longer interested 826 * in those; they're either from the "active" mode while we're trying 827 * to check "search" mode, or a prior "search" mode after we've moved 828 * to a new "search" mode (which might become the new "active" mode). 829 */ 830 table = &lq_sta->lq; 831 tx_rate = le32_to_cpu(table->rs_table[0].rate_n_flags); 832 il4965_rs_get_tbl_info_from_mcs(tx_rate, il->band, &tbl_type, &rs_idx); 833 if (il->band == NL80211_BAND_5GHZ) 834 rs_idx -= IL_FIRST_OFDM_RATE; 835 mac_flags = info->status.rates[0].flags; 836 mac_idx = info->status.rates[0].idx; 837 /* For HT packets, map MCS to PLCP */ 838 if (mac_flags & IEEE80211_TX_RC_MCS) { 839 mac_idx &= RATE_MCS_CODE_MSK; /* Remove # of streams */ 840 if (mac_idx >= (RATE_9M_IDX - IL_FIRST_OFDM_RATE)) 841 mac_idx++; 842 /* 843 * mac80211 HT idx is always zero-idxed; we need to move 844 * HT OFDM rates after CCK rates in 2.4 GHz band 845 */ 846 if (il->band == NL80211_BAND_2GHZ) 847 mac_idx += IL_FIRST_OFDM_RATE; 848 } 849 /* Here we actually compare this rate to the latest LQ command */ 850 if (mac_idx < 0 || 851 tbl_type.is_SGI != !!(mac_flags & IEEE80211_TX_RC_SHORT_GI) || 852 tbl_type.is_ht40 != !!(mac_flags & IEEE80211_TX_RC_40_MHZ_WIDTH) || 853 tbl_type.is_dup != !!(mac_flags & IEEE80211_TX_RC_DUP_DATA) || 854 tbl_type.ant_type != info->status.antenna || 855 !!(tx_rate & RATE_MCS_HT_MSK) != !!(mac_flags & IEEE80211_TX_RC_MCS) 856 || !!(tx_rate & RATE_MCS_GF_MSK) != 857 !!(mac_flags & IEEE80211_TX_RC_GREEN_FIELD) || rs_idx != mac_idx) { 858 D_RATE("initial rate %d does not match %d (0x%x)\n", mac_idx, 859 rs_idx, tx_rate); 860 /* 861 * Since rates mis-match, the last LQ command may have failed. 862 * After IL_MISSED_RATE_MAX mis-matches, resync the uCode with 863 * ... driver. 864 */ 865 lq_sta->missed_rate_counter++; 866 if (lq_sta->missed_rate_counter > IL_MISSED_RATE_MAX) { 867 lq_sta->missed_rate_counter = 0; 868 il_send_lq_cmd(il, &lq_sta->lq, CMD_ASYNC, false); 869 } 870 /* Regardless, ignore this status info for outdated rate */ 871 return; 872 } else 873 /* Rate did match, so reset the missed_rate_counter */ 874 lq_sta->missed_rate_counter = 0; 875 876 /* Figure out if rate scale algorithm is in active or search table */ 877 if (il4965_table_type_matches 878 (&tbl_type, &(lq_sta->lq_info[lq_sta->active_tbl]))) { 879 curr_tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 880 other_tbl = &(lq_sta->lq_info[1 - lq_sta->active_tbl]); 881 } else 882 if (il4965_table_type_matches 883 (&tbl_type, &lq_sta->lq_info[1 - lq_sta->active_tbl])) { 884 curr_tbl = &(lq_sta->lq_info[1 - lq_sta->active_tbl]); 885 other_tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 886 } else { 887 D_RATE("Neither active nor search matches tx rate\n"); 888 tmp_tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 889 D_RATE("active- lq:%x, ant:%x, SGI:%d\n", tmp_tbl->lq_type, 890 tmp_tbl->ant_type, tmp_tbl->is_SGI); 891 tmp_tbl = &(lq_sta->lq_info[1 - lq_sta->active_tbl]); 892 D_RATE("search- lq:%x, ant:%x, SGI:%d\n", tmp_tbl->lq_type, 893 tmp_tbl->ant_type, tmp_tbl->is_SGI); 894 D_RATE("actual- lq:%x, ant:%x, SGI:%d\n", tbl_type.lq_type, 895 tbl_type.ant_type, tbl_type.is_SGI); 896 /* 897 * no matching table found, let's by-pass the data collection 898 * and continue to perform rate scale to find the rate table 899 */ 900 il4965_rs_stay_in_table(lq_sta, true); 901 goto done; 902 } 903 904 /* 905 * Updating the frame history depends on whether packets were 906 * aggregated. 907 * 908 * For aggregation, all packets were transmitted at the same rate, the 909 * first idx into rate scale table. 910 */ 911 if (info->flags & IEEE80211_TX_STAT_AMPDU) { 912 tx_rate = le32_to_cpu(table->rs_table[0].rate_n_flags); 913 il4965_rs_get_tbl_info_from_mcs(tx_rate, il->band, &tbl_type, 914 &rs_idx); 915 il4965_rs_collect_tx_data(curr_tbl, rs_idx, 916 info->status.ampdu_len, 917 info->status.ampdu_ack_len); 918 919 /* Update success/fail counts if not searching for new mode */ 920 if (lq_sta->stay_in_tbl) { 921 lq_sta->total_success += info->status.ampdu_ack_len; 922 lq_sta->total_failed += 923 (info->status.ampdu_len - 924 info->status.ampdu_ack_len); 925 } 926 } else { 927 /* 928 * For legacy, update frame history with for each Tx retry. 929 */ 930 retries = info->status.rates[0].count - 1; 931 /* HW doesn't send more than 15 retries */ 932 retries = min(retries, 15); 933 934 /* The last transmission may have been successful */ 935 legacy_success = !!(info->flags & IEEE80211_TX_STAT_ACK); 936 /* Collect data for each rate used during failed TX attempts */ 937 for (i = 0; i <= retries; ++i) { 938 tx_rate = le32_to_cpu(table->rs_table[i].rate_n_flags); 939 il4965_rs_get_tbl_info_from_mcs(tx_rate, il->band, 940 &tbl_type, &rs_idx); 941 /* 942 * Only collect stats if retried rate is in the same RS 943 * table as active/search. 944 */ 945 if (il4965_table_type_matches(&tbl_type, curr_tbl)) 946 tmp_tbl = curr_tbl; 947 else if (il4965_table_type_matches 948 (&tbl_type, other_tbl)) 949 tmp_tbl = other_tbl; 950 else 951 continue; 952 il4965_rs_collect_tx_data(tmp_tbl, rs_idx, 1, 953 i < 954 retries ? 0 : legacy_success); 955 } 956 957 /* Update success/fail counts if not searching for new mode */ 958 if (lq_sta->stay_in_tbl) { 959 lq_sta->total_success += legacy_success; 960 lq_sta->total_failed += retries + (1 - legacy_success); 961 } 962 } 963 /* The last TX rate is cached in lq_sta; it's set in if/else above */ 964 lq_sta->last_rate_n_flags = tx_rate; 965 done: 966 /* See if there's a better rate or modulation mode to try. */ 967 if (sta->deflink.supp_rates[sband->band]) 968 il4965_rs_rate_scale_perform(il, skb, sta, lq_sta); 969 } 970 971 /* 972 * Begin a period of staying with a selected modulation mode. 973 * Set "stay_in_tbl" flag to prevent any mode switches. 974 * Set frame tx success limits according to legacy vs. high-throughput, 975 * and reset overall (spanning all rates) tx success history stats. 976 * These control how long we stay using same modulation mode before 977 * searching for a new mode. 978 */ 979 static void 980 il4965_rs_set_stay_in_table(struct il_priv *il, u8 is_legacy, 981 struct il_lq_sta *lq_sta) 982 { 983 D_RATE("we are staying in the same table\n"); 984 lq_sta->stay_in_tbl = 1; /* only place this gets set */ 985 if (is_legacy) { 986 lq_sta->table_count_limit = IL_LEGACY_TBL_COUNT; 987 lq_sta->max_failure_limit = IL_LEGACY_FAILURE_LIMIT; 988 lq_sta->max_success_limit = IL_LEGACY_SUCCESS_LIMIT; 989 } else { 990 lq_sta->table_count_limit = IL_NONE_LEGACY_TBL_COUNT; 991 lq_sta->max_failure_limit = IL_NONE_LEGACY_FAILURE_LIMIT; 992 lq_sta->max_success_limit = IL_NONE_LEGACY_SUCCESS_LIMIT; 993 } 994 lq_sta->table_count = 0; 995 lq_sta->total_failed = 0; 996 lq_sta->total_success = 0; 997 lq_sta->flush_timer = jiffies; 998 lq_sta->action_counter = 0; 999 } 1000 1001 /* 1002 * Find correct throughput table for given mode of modulation 1003 */ 1004 static void 1005 il4965_rs_set_expected_tpt_table(struct il_lq_sta *lq_sta, 1006 struct il_scale_tbl_info *tbl) 1007 { 1008 /* Used to choose among HT tables */ 1009 s32(*ht_tbl_pointer)[RATE_COUNT]; 1010 1011 /* Check for invalid LQ type */ 1012 if (WARN_ON_ONCE(!is_legacy(tbl->lq_type) && !is_Ht(tbl->lq_type))) { 1013 tbl->expected_tpt = expected_tpt_legacy; 1014 return; 1015 } 1016 1017 /* Legacy rates have only one table */ 1018 if (is_legacy(tbl->lq_type)) { 1019 tbl->expected_tpt = expected_tpt_legacy; 1020 return; 1021 } 1022 1023 /* Choose among many HT tables depending on number of streams 1024 * (SISO/MIMO2), channel width (20/40), SGI, and aggregation 1025 * status */ 1026 if (is_siso(tbl->lq_type) && (!tbl->is_ht40 || lq_sta->is_dup)) 1027 ht_tbl_pointer = expected_tpt_siso20MHz; 1028 else if (is_siso(tbl->lq_type)) 1029 ht_tbl_pointer = expected_tpt_siso40MHz; 1030 else if (is_mimo2(tbl->lq_type) && (!tbl->is_ht40 || lq_sta->is_dup)) 1031 ht_tbl_pointer = expected_tpt_mimo2_20MHz; 1032 else /* if (is_mimo2(tbl->lq_type)) <-- must be true */ 1033 ht_tbl_pointer = expected_tpt_mimo2_40MHz; 1034 1035 if (!tbl->is_SGI && !lq_sta->is_agg) /* Normal */ 1036 tbl->expected_tpt = ht_tbl_pointer[0]; 1037 else if (tbl->is_SGI && !lq_sta->is_agg) /* SGI */ 1038 tbl->expected_tpt = ht_tbl_pointer[1]; 1039 else if (!tbl->is_SGI && lq_sta->is_agg) /* AGG */ 1040 tbl->expected_tpt = ht_tbl_pointer[2]; 1041 else /* AGG+SGI */ 1042 tbl->expected_tpt = ht_tbl_pointer[3]; 1043 } 1044 1045 /* 1046 * Find starting rate for new "search" high-throughput mode of modulation. 1047 * Goal is to find lowest expected rate (under perfect conditions) that is 1048 * above the current measured throughput of "active" mode, to give new mode 1049 * a fair chance to prove itself without too many challenges. 1050 * 1051 * This gets called when transitioning to more aggressive modulation 1052 * (i.e. legacy to SISO or MIMO, or SISO to MIMO), as well as less aggressive 1053 * (i.e. MIMO to SISO). When moving to MIMO, bit rate will typically need 1054 * to decrease to match "active" throughput. When moving from MIMO to SISO, 1055 * bit rate will typically need to increase, but not if performance was bad. 1056 */ 1057 static s32 1058 il4965_rs_get_best_rate(struct il_priv *il, struct il_lq_sta *lq_sta, 1059 struct il_scale_tbl_info *tbl, /* "search" */ 1060 u16 rate_mask, s8 idx) 1061 { 1062 /* "active" values */ 1063 struct il_scale_tbl_info *active_tbl = 1064 &(lq_sta->lq_info[lq_sta->active_tbl]); 1065 s32 active_sr = active_tbl->win[idx].success_ratio; 1066 s32 active_tpt = active_tbl->expected_tpt[idx]; 1067 1068 /* expected "search" throughput */ 1069 s32 *tpt_tbl = tbl->expected_tpt; 1070 1071 s32 new_rate, high, low, start_hi; 1072 u16 high_low; 1073 s8 rate = idx; 1074 1075 new_rate = high = low = start_hi = RATE_INVALID; 1076 1077 for (;;) { 1078 high_low = 1079 il4965_rs_get_adjacent_rate(il, rate, rate_mask, 1080 tbl->lq_type); 1081 1082 low = high_low & 0xff; 1083 high = (high_low >> 8) & 0xff; 1084 1085 /* 1086 * Lower the "search" bit rate, to give new "search" mode 1087 * approximately the same throughput as "active" if: 1088 * 1089 * 1) "Active" mode has been working modestly well (but not 1090 * great), and expected "search" throughput (under perfect 1091 * conditions) at candidate rate is above the actual 1092 * measured "active" throughput (but less than expected 1093 * "active" throughput under perfect conditions). 1094 * OR 1095 * 2) "Active" mode has been working perfectly or very well 1096 * and expected "search" throughput (under perfect 1097 * conditions) at candidate rate is above expected 1098 * "active" throughput (under perfect conditions). 1099 */ 1100 if ((100 * tpt_tbl[rate] > lq_sta->last_tpt && 1101 (active_sr > RATE_DECREASE_TH && active_sr <= RATE_HIGH_TH 1102 && tpt_tbl[rate] <= active_tpt)) || 1103 (active_sr >= RATE_SCALE_SWITCH && 1104 tpt_tbl[rate] > active_tpt)) { 1105 1106 /* (2nd or later pass) 1107 * If we've already tried to raise the rate, and are 1108 * now trying to lower it, use the higher rate. */ 1109 if (start_hi != RATE_INVALID) { 1110 new_rate = start_hi; 1111 break; 1112 } 1113 1114 new_rate = rate; 1115 1116 /* Loop again with lower rate */ 1117 if (low != RATE_INVALID) 1118 rate = low; 1119 1120 /* Lower rate not available, use the original */ 1121 else 1122 break; 1123 1124 /* Else try to raise the "search" rate to match "active" */ 1125 } else { 1126 /* (2nd or later pass) 1127 * If we've already tried to lower the rate, and are 1128 * now trying to raise it, use the lower rate. */ 1129 if (new_rate != RATE_INVALID) 1130 break; 1131 1132 /* Loop again with higher rate */ 1133 else if (high != RATE_INVALID) { 1134 start_hi = high; 1135 rate = high; 1136 1137 /* Higher rate not available, use the original */ 1138 } else { 1139 new_rate = rate; 1140 break; 1141 } 1142 } 1143 } 1144 1145 return new_rate; 1146 } 1147 1148 /* 1149 * Set up search table for MIMO2 1150 */ 1151 static int 1152 il4965_rs_switch_to_mimo2(struct il_priv *il, struct il_lq_sta *lq_sta, 1153 struct ieee80211_conf *conf, 1154 struct ieee80211_sta *sta, 1155 struct il_scale_tbl_info *tbl, int idx) 1156 { 1157 u16 rate_mask; 1158 s32 rate; 1159 s8 is_green = lq_sta->is_green; 1160 1161 if (!conf_is_ht(conf) || !sta->deflink.ht_cap.ht_supported) 1162 return -1; 1163 1164 if (sta->deflink.smps_mode == IEEE80211_SMPS_STATIC) 1165 return -1; 1166 1167 /* Need both Tx chains/antennas to support MIMO */ 1168 if (il->hw_params.tx_chains_num < 2) 1169 return -1; 1170 1171 D_RATE("LQ: try to switch to MIMO2\n"); 1172 1173 tbl->lq_type = LQ_MIMO2; 1174 tbl->is_dup = lq_sta->is_dup; 1175 tbl->action = 0; 1176 tbl->max_search = IL_MAX_SEARCH; 1177 rate_mask = lq_sta->active_mimo2_rate; 1178 1179 if (il_is_ht40_tx_allowed(il, &sta->deflink.ht_cap)) 1180 tbl->is_ht40 = 1; 1181 else 1182 tbl->is_ht40 = 0; 1183 1184 il4965_rs_set_expected_tpt_table(lq_sta, tbl); 1185 1186 rate = il4965_rs_get_best_rate(il, lq_sta, tbl, rate_mask, idx); 1187 1188 D_RATE("LQ: MIMO2 best rate %d mask %X\n", rate, rate_mask); 1189 if (rate == RATE_INVALID || !((1 << rate) & rate_mask)) { 1190 D_RATE("Can't switch with idx %d rate mask %x\n", rate, 1191 rate_mask); 1192 return -1; 1193 } 1194 tbl->current_rate = 1195 il4965_rate_n_flags_from_tbl(il, tbl, rate, is_green); 1196 1197 D_RATE("LQ: Switch to new mcs %X idx is green %X\n", tbl->current_rate, 1198 is_green); 1199 return 0; 1200 } 1201 1202 /* 1203 * Set up search table for SISO 1204 */ 1205 static int 1206 il4965_rs_switch_to_siso(struct il_priv *il, struct il_lq_sta *lq_sta, 1207 struct ieee80211_conf *conf, struct ieee80211_sta *sta, 1208 struct il_scale_tbl_info *tbl, int idx) 1209 { 1210 u16 rate_mask; 1211 u8 is_green = lq_sta->is_green; 1212 s32 rate; 1213 1214 if (!conf_is_ht(conf) || !sta->deflink.ht_cap.ht_supported) 1215 return -1; 1216 1217 D_RATE("LQ: try to switch to SISO\n"); 1218 1219 tbl->is_dup = lq_sta->is_dup; 1220 tbl->lq_type = LQ_SISO; 1221 tbl->action = 0; 1222 tbl->max_search = IL_MAX_SEARCH; 1223 rate_mask = lq_sta->active_siso_rate; 1224 1225 if (il_is_ht40_tx_allowed(il, &sta->deflink.ht_cap)) 1226 tbl->is_ht40 = 1; 1227 else 1228 tbl->is_ht40 = 0; 1229 1230 if (is_green) 1231 tbl->is_SGI = 0; /*11n spec: no SGI in SISO+Greenfield */ 1232 1233 il4965_rs_set_expected_tpt_table(lq_sta, tbl); 1234 rate = il4965_rs_get_best_rate(il, lq_sta, tbl, rate_mask, idx); 1235 1236 D_RATE("LQ: get best rate %d mask %X\n", rate, rate_mask); 1237 if (rate == RATE_INVALID || !((1 << rate) & rate_mask)) { 1238 D_RATE("can not switch with idx %d rate mask %x\n", rate, 1239 rate_mask); 1240 return -1; 1241 } 1242 tbl->current_rate = 1243 il4965_rate_n_flags_from_tbl(il, tbl, rate, is_green); 1244 D_RATE("LQ: Switch to new mcs %X idx is green %X\n", tbl->current_rate, 1245 is_green); 1246 return 0; 1247 } 1248 1249 /* 1250 * Try to switch to new modulation mode from legacy 1251 */ 1252 static int 1253 il4965_rs_move_legacy_other(struct il_priv *il, struct il_lq_sta *lq_sta, 1254 struct ieee80211_conf *conf, 1255 struct ieee80211_sta *sta, int idx) 1256 { 1257 struct il_scale_tbl_info *tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 1258 struct il_scale_tbl_info *search_tbl = 1259 &(lq_sta->lq_info[(1 - lq_sta->active_tbl)]); 1260 struct il_rate_scale_data *win = &(tbl->win[idx]); 1261 u32 sz = 1262 (sizeof(struct il_scale_tbl_info) - 1263 (sizeof(struct il_rate_scale_data) * RATE_COUNT)); 1264 u8 start_action; 1265 u8 valid_tx_ant = il->hw_params.valid_tx_ant; 1266 u8 tx_chains_num = il->hw_params.tx_chains_num; 1267 int ret = 0; 1268 u8 update_search_tbl_counter = 0; 1269 1270 tbl->action = IL_LEGACY_SWITCH_SISO; 1271 1272 start_action = tbl->action; 1273 for (;;) { 1274 lq_sta->action_counter++; 1275 switch (tbl->action) { 1276 case IL_LEGACY_SWITCH_ANTENNA1: 1277 case IL_LEGACY_SWITCH_ANTENNA2: 1278 D_RATE("LQ: Legacy toggle Antenna\n"); 1279 1280 if ((tbl->action == IL_LEGACY_SWITCH_ANTENNA1 && 1281 tx_chains_num <= 1) || 1282 (tbl->action == IL_LEGACY_SWITCH_ANTENNA2 && 1283 tx_chains_num <= 2)) 1284 break; 1285 1286 /* Don't change antenna if success has been great */ 1287 if (win->success_ratio >= IL_RS_GOOD_RATIO) 1288 break; 1289 1290 /* Set up search table to try other antenna */ 1291 memcpy(search_tbl, tbl, sz); 1292 1293 if (il4965_rs_toggle_antenna 1294 (valid_tx_ant, &search_tbl->current_rate, 1295 search_tbl)) { 1296 update_search_tbl_counter = 1; 1297 il4965_rs_set_expected_tpt_table(lq_sta, 1298 search_tbl); 1299 goto out; 1300 } 1301 break; 1302 case IL_LEGACY_SWITCH_SISO: 1303 D_RATE("LQ: Legacy switch to SISO\n"); 1304 1305 /* Set up search table to try SISO */ 1306 memcpy(search_tbl, tbl, sz); 1307 search_tbl->is_SGI = 0; 1308 ret = 1309 il4965_rs_switch_to_siso(il, lq_sta, conf, sta, 1310 search_tbl, idx); 1311 if (!ret) { 1312 lq_sta->action_counter = 0; 1313 goto out; 1314 } 1315 1316 break; 1317 case IL_LEGACY_SWITCH_MIMO2_AB: 1318 case IL_LEGACY_SWITCH_MIMO2_AC: 1319 case IL_LEGACY_SWITCH_MIMO2_BC: 1320 D_RATE("LQ: Legacy switch to MIMO2\n"); 1321 1322 /* Set up search table to try MIMO */ 1323 memcpy(search_tbl, tbl, sz); 1324 search_tbl->is_SGI = 0; 1325 1326 if (tbl->action == IL_LEGACY_SWITCH_MIMO2_AB) 1327 search_tbl->ant_type = ANT_AB; 1328 else if (tbl->action == IL_LEGACY_SWITCH_MIMO2_AC) 1329 search_tbl->ant_type = ANT_AC; 1330 else 1331 search_tbl->ant_type = ANT_BC; 1332 1333 if (!il4965_rs_is_valid_ant 1334 (valid_tx_ant, search_tbl->ant_type)) 1335 break; 1336 1337 ret = 1338 il4965_rs_switch_to_mimo2(il, lq_sta, conf, sta, 1339 search_tbl, idx); 1340 if (!ret) { 1341 lq_sta->action_counter = 0; 1342 goto out; 1343 } 1344 break; 1345 } 1346 tbl->action++; 1347 if (tbl->action > IL_LEGACY_SWITCH_MIMO2_BC) 1348 tbl->action = IL_LEGACY_SWITCH_ANTENNA1; 1349 1350 if (tbl->action == start_action) 1351 break; 1352 1353 } 1354 search_tbl->lq_type = LQ_NONE; 1355 return 0; 1356 1357 out: 1358 lq_sta->search_better_tbl = 1; 1359 tbl->action++; 1360 if (tbl->action > IL_LEGACY_SWITCH_MIMO2_BC) 1361 tbl->action = IL_LEGACY_SWITCH_ANTENNA1; 1362 if (update_search_tbl_counter) 1363 search_tbl->action = tbl->action; 1364 return 0; 1365 1366 } 1367 1368 /* 1369 * Try to switch to new modulation mode from SISO 1370 */ 1371 static int 1372 il4965_rs_move_siso_to_other(struct il_priv *il, struct il_lq_sta *lq_sta, 1373 struct ieee80211_conf *conf, 1374 struct ieee80211_sta *sta, int idx) 1375 { 1376 u8 is_green = lq_sta->is_green; 1377 struct il_scale_tbl_info *tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 1378 struct il_scale_tbl_info *search_tbl = 1379 &(lq_sta->lq_info[(1 - lq_sta->active_tbl)]); 1380 struct il_rate_scale_data *win = &(tbl->win[idx]); 1381 struct ieee80211_sta_ht_cap *ht_cap = &sta->deflink.ht_cap; 1382 u32 sz = 1383 (sizeof(struct il_scale_tbl_info) - 1384 (sizeof(struct il_rate_scale_data) * RATE_COUNT)); 1385 u8 start_action; 1386 u8 valid_tx_ant = il->hw_params.valid_tx_ant; 1387 u8 tx_chains_num = il->hw_params.tx_chains_num; 1388 u8 update_search_tbl_counter = 0; 1389 int ret; 1390 1391 start_action = tbl->action; 1392 1393 for (;;) { 1394 lq_sta->action_counter++; 1395 switch (tbl->action) { 1396 case IL_SISO_SWITCH_ANTENNA1: 1397 case IL_SISO_SWITCH_ANTENNA2: 1398 D_RATE("LQ: SISO toggle Antenna\n"); 1399 if ((tbl->action == IL_SISO_SWITCH_ANTENNA1 && 1400 tx_chains_num <= 1) || 1401 (tbl->action == IL_SISO_SWITCH_ANTENNA2 && 1402 tx_chains_num <= 2)) 1403 break; 1404 1405 if (win->success_ratio >= IL_RS_GOOD_RATIO) 1406 break; 1407 1408 memcpy(search_tbl, tbl, sz); 1409 if (il4965_rs_toggle_antenna 1410 (valid_tx_ant, &search_tbl->current_rate, 1411 search_tbl)) { 1412 update_search_tbl_counter = 1; 1413 goto out; 1414 } 1415 break; 1416 case IL_SISO_SWITCH_MIMO2_AB: 1417 case IL_SISO_SWITCH_MIMO2_AC: 1418 case IL_SISO_SWITCH_MIMO2_BC: 1419 D_RATE("LQ: SISO switch to MIMO2\n"); 1420 memcpy(search_tbl, tbl, sz); 1421 search_tbl->is_SGI = 0; 1422 1423 if (tbl->action == IL_SISO_SWITCH_MIMO2_AB) 1424 search_tbl->ant_type = ANT_AB; 1425 else if (tbl->action == IL_SISO_SWITCH_MIMO2_AC) 1426 search_tbl->ant_type = ANT_AC; 1427 else 1428 search_tbl->ant_type = ANT_BC; 1429 1430 if (!il4965_rs_is_valid_ant 1431 (valid_tx_ant, search_tbl->ant_type)) 1432 break; 1433 1434 ret = 1435 il4965_rs_switch_to_mimo2(il, lq_sta, conf, sta, 1436 search_tbl, idx); 1437 if (!ret) 1438 goto out; 1439 break; 1440 case IL_SISO_SWITCH_GI: 1441 if (!tbl->is_ht40 && 1442 !(ht_cap->cap & IEEE80211_HT_CAP_SGI_20)) 1443 break; 1444 if (tbl->is_ht40 && 1445 !(ht_cap->cap & IEEE80211_HT_CAP_SGI_40)) 1446 break; 1447 1448 D_RATE("LQ: SISO toggle SGI/NGI\n"); 1449 1450 memcpy(search_tbl, tbl, sz); 1451 if (is_green) { 1452 if (!tbl->is_SGI) 1453 break; 1454 else 1455 IL_ERR("SGI was set in GF+SISO\n"); 1456 } 1457 search_tbl->is_SGI = !tbl->is_SGI; 1458 il4965_rs_set_expected_tpt_table(lq_sta, search_tbl); 1459 if (tbl->is_SGI) { 1460 s32 tpt = lq_sta->last_tpt / 100; 1461 if (tpt >= search_tbl->expected_tpt[idx]) 1462 break; 1463 } 1464 search_tbl->current_rate = 1465 il4965_rate_n_flags_from_tbl(il, search_tbl, idx, 1466 is_green); 1467 update_search_tbl_counter = 1; 1468 goto out; 1469 } 1470 tbl->action++; 1471 if (tbl->action > IL_SISO_SWITCH_GI) 1472 tbl->action = IL_SISO_SWITCH_ANTENNA1; 1473 1474 if (tbl->action == start_action) 1475 break; 1476 } 1477 search_tbl->lq_type = LQ_NONE; 1478 return 0; 1479 1480 out: 1481 lq_sta->search_better_tbl = 1; 1482 tbl->action++; 1483 if (tbl->action > IL_SISO_SWITCH_GI) 1484 tbl->action = IL_SISO_SWITCH_ANTENNA1; 1485 if (update_search_tbl_counter) 1486 search_tbl->action = tbl->action; 1487 1488 return 0; 1489 } 1490 1491 /* 1492 * Try to switch to new modulation mode from MIMO2 1493 */ 1494 static int 1495 il4965_rs_move_mimo2_to_other(struct il_priv *il, struct il_lq_sta *lq_sta, 1496 struct ieee80211_conf *conf, 1497 struct ieee80211_sta *sta, int idx) 1498 { 1499 s8 is_green = lq_sta->is_green; 1500 struct il_scale_tbl_info *tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 1501 struct il_scale_tbl_info *search_tbl = 1502 &(lq_sta->lq_info[(1 - lq_sta->active_tbl)]); 1503 struct il_rate_scale_data *win = &(tbl->win[idx]); 1504 struct ieee80211_sta_ht_cap *ht_cap = &sta->deflink.ht_cap; 1505 u32 sz = 1506 (sizeof(struct il_scale_tbl_info) - 1507 (sizeof(struct il_rate_scale_data) * RATE_COUNT)); 1508 u8 start_action; 1509 u8 valid_tx_ant = il->hw_params.valid_tx_ant; 1510 u8 tx_chains_num = il->hw_params.tx_chains_num; 1511 u8 update_search_tbl_counter = 0; 1512 int ret; 1513 1514 start_action = tbl->action; 1515 for (;;) { 1516 lq_sta->action_counter++; 1517 switch (tbl->action) { 1518 case IL_MIMO2_SWITCH_ANTENNA1: 1519 case IL_MIMO2_SWITCH_ANTENNA2: 1520 D_RATE("LQ: MIMO2 toggle Antennas\n"); 1521 1522 if (tx_chains_num <= 2) 1523 break; 1524 1525 if (win->success_ratio >= IL_RS_GOOD_RATIO) 1526 break; 1527 1528 memcpy(search_tbl, tbl, sz); 1529 if (il4965_rs_toggle_antenna 1530 (valid_tx_ant, &search_tbl->current_rate, 1531 search_tbl)) { 1532 update_search_tbl_counter = 1; 1533 goto out; 1534 } 1535 break; 1536 case IL_MIMO2_SWITCH_SISO_A: 1537 case IL_MIMO2_SWITCH_SISO_B: 1538 case IL_MIMO2_SWITCH_SISO_C: 1539 D_RATE("LQ: MIMO2 switch to SISO\n"); 1540 1541 /* Set up new search table for SISO */ 1542 memcpy(search_tbl, tbl, sz); 1543 1544 if (tbl->action == IL_MIMO2_SWITCH_SISO_A) 1545 search_tbl->ant_type = ANT_A; 1546 else if (tbl->action == IL_MIMO2_SWITCH_SISO_B) 1547 search_tbl->ant_type = ANT_B; 1548 else 1549 search_tbl->ant_type = ANT_C; 1550 1551 if (!il4965_rs_is_valid_ant 1552 (valid_tx_ant, search_tbl->ant_type)) 1553 break; 1554 1555 ret = 1556 il4965_rs_switch_to_siso(il, lq_sta, conf, sta, 1557 search_tbl, idx); 1558 if (!ret) 1559 goto out; 1560 1561 break; 1562 1563 case IL_MIMO2_SWITCH_GI: 1564 if (!tbl->is_ht40 && 1565 !(ht_cap->cap & IEEE80211_HT_CAP_SGI_20)) 1566 break; 1567 if (tbl->is_ht40 && 1568 !(ht_cap->cap & IEEE80211_HT_CAP_SGI_40)) 1569 break; 1570 1571 D_RATE("LQ: MIMO2 toggle SGI/NGI\n"); 1572 1573 /* Set up new search table for MIMO2 */ 1574 memcpy(search_tbl, tbl, sz); 1575 search_tbl->is_SGI = !tbl->is_SGI; 1576 il4965_rs_set_expected_tpt_table(lq_sta, search_tbl); 1577 /* 1578 * If active table already uses the fastest possible 1579 * modulation (dual stream with short guard interval), 1580 * and it's working well, there's no need to look 1581 * for a better type of modulation! 1582 */ 1583 if (tbl->is_SGI) { 1584 s32 tpt = lq_sta->last_tpt / 100; 1585 if (tpt >= search_tbl->expected_tpt[idx]) 1586 break; 1587 } 1588 search_tbl->current_rate = 1589 il4965_rate_n_flags_from_tbl(il, search_tbl, idx, 1590 is_green); 1591 update_search_tbl_counter = 1; 1592 goto out; 1593 1594 } 1595 tbl->action++; 1596 if (tbl->action > IL_MIMO2_SWITCH_GI) 1597 tbl->action = IL_MIMO2_SWITCH_ANTENNA1; 1598 1599 if (tbl->action == start_action) 1600 break; 1601 } 1602 search_tbl->lq_type = LQ_NONE; 1603 return 0; 1604 out: 1605 lq_sta->search_better_tbl = 1; 1606 tbl->action++; 1607 if (tbl->action > IL_MIMO2_SWITCH_GI) 1608 tbl->action = IL_MIMO2_SWITCH_ANTENNA1; 1609 if (update_search_tbl_counter) 1610 search_tbl->action = tbl->action; 1611 1612 return 0; 1613 1614 } 1615 1616 /* 1617 * Check whether we should continue using same modulation mode, or 1618 * begin search for a new mode, based on: 1619 * 1) # tx successes or failures while using this mode 1620 * 2) # times calling this function 1621 * 3) elapsed time in this mode (not used, for now) 1622 */ 1623 static void 1624 il4965_rs_stay_in_table(struct il_lq_sta *lq_sta, bool force_search) 1625 { 1626 struct il_scale_tbl_info *tbl; 1627 int i; 1628 int active_tbl; 1629 int flush_interval_passed = 0; 1630 struct il_priv *il; 1631 1632 il = lq_sta->drv; 1633 active_tbl = lq_sta->active_tbl; 1634 1635 tbl = &(lq_sta->lq_info[active_tbl]); 1636 1637 /* If we've been disallowing search, see if we should now allow it */ 1638 if (lq_sta->stay_in_tbl) { 1639 1640 /* Elapsed time using current modulation mode */ 1641 if (lq_sta->flush_timer) 1642 flush_interval_passed = 1643 time_after(jiffies, 1644 (unsigned long)(lq_sta->flush_timer + 1645 RATE_SCALE_FLUSH_INTVL)); 1646 1647 /* 1648 * Check if we should allow search for new modulation mode. 1649 * If many frames have failed or succeeded, or we've used 1650 * this same modulation for a long time, allow search, and 1651 * reset history stats that keep track of whether we should 1652 * allow a new search. Also (below) reset all bitmaps and 1653 * stats in active history. 1654 */ 1655 if (force_search || 1656 lq_sta->total_failed > lq_sta->max_failure_limit || 1657 lq_sta->total_success > lq_sta->max_success_limit || 1658 (!lq_sta->search_better_tbl && lq_sta->flush_timer && 1659 flush_interval_passed)) { 1660 D_RATE("LQ: stay is expired %d %d %d\n", 1661 lq_sta->total_failed, lq_sta->total_success, 1662 flush_interval_passed); 1663 1664 /* Allow search for new mode */ 1665 lq_sta->stay_in_tbl = 0; /* only place reset */ 1666 lq_sta->total_failed = 0; 1667 lq_sta->total_success = 0; 1668 lq_sta->flush_timer = 0; 1669 1670 /* 1671 * Else if we've used this modulation mode enough repetitions 1672 * (regardless of elapsed time or success/failure), reset 1673 * history bitmaps and rate-specific stats for all rates in 1674 * active table. 1675 */ 1676 } else { 1677 lq_sta->table_count++; 1678 if (lq_sta->table_count >= lq_sta->table_count_limit) { 1679 lq_sta->table_count = 0; 1680 1681 D_RATE("LQ: stay in table clear win\n"); 1682 for (i = 0; i < RATE_COUNT; i++) 1683 il4965_rs_rate_scale_clear_win(& 1684 (tbl-> 1685 win 1686 [i])); 1687 } 1688 } 1689 1690 /* If transitioning to allow "search", reset all history 1691 * bitmaps and stats in active table (this will become the new 1692 * "search" table). */ 1693 if (!lq_sta->stay_in_tbl) { 1694 for (i = 0; i < RATE_COUNT; i++) 1695 il4965_rs_rate_scale_clear_win(&(tbl->win[i])); 1696 } 1697 } 1698 } 1699 1700 /* 1701 * setup rate table in uCode 1702 */ 1703 static void 1704 il4965_rs_update_rate_tbl(struct il_priv *il, struct il_lq_sta *lq_sta, 1705 struct il_scale_tbl_info *tbl, int idx, u8 is_green) 1706 { 1707 u32 rate; 1708 1709 /* Update uCode's rate table. */ 1710 rate = il4965_rate_n_flags_from_tbl(il, tbl, idx, is_green); 1711 il4965_rs_fill_link_cmd(il, lq_sta, rate); 1712 il_send_lq_cmd(il, &lq_sta->lq, CMD_ASYNC, false); 1713 } 1714 1715 /* 1716 * Do rate scaling and search for new modulation mode. 1717 */ 1718 static void 1719 il4965_rs_rate_scale_perform(struct il_priv *il, struct sk_buff *skb, 1720 struct ieee80211_sta *sta, 1721 struct il_lq_sta *lq_sta) 1722 { 1723 struct ieee80211_hw *hw = il->hw; 1724 struct ieee80211_conf *conf = &hw->conf; 1725 struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb); 1726 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data; 1727 int low = RATE_INVALID; 1728 int high = RATE_INVALID; 1729 int idx; 1730 int i; 1731 struct il_rate_scale_data *win = NULL; 1732 int current_tpt = IL_INVALID_VALUE; 1733 int low_tpt = IL_INVALID_VALUE; 1734 int high_tpt = IL_INVALID_VALUE; 1735 u32 fail_count; 1736 s8 scale_action = 0; 1737 u16 rate_mask; 1738 u8 update_lq = 0; 1739 struct il_scale_tbl_info *tbl, *tbl1; 1740 u16 rate_scale_idx_msk = 0; 1741 u8 is_green = 0; 1742 u8 active_tbl = 0; 1743 u8 done_search = 0; 1744 u16 high_low; 1745 s32 sr; 1746 u8 tid; 1747 struct il_tid_data *tid_data; 1748 1749 D_RATE("rate scale calculate new rate for skb\n"); 1750 1751 /* Send management frames and NO_ACK data using lowest rate. */ 1752 /* TODO: this could probably be improved.. */ 1753 if (!ieee80211_is_data(hdr->frame_control) || 1754 (info->flags & IEEE80211_TX_CTL_NO_ACK)) 1755 return; 1756 1757 lq_sta->supp_rates = sta->deflink.supp_rates[lq_sta->band]; 1758 1759 tid = il4965_rs_tl_add_packet(lq_sta, hdr); 1760 if (tid != MAX_TID_COUNT && (lq_sta->tx_agg_tid_en & (1 << tid))) { 1761 tid_data = &il->stations[lq_sta->lq.sta_id].tid[tid]; 1762 if (tid_data->agg.state == IL_AGG_OFF) 1763 lq_sta->is_agg = 0; 1764 else 1765 lq_sta->is_agg = 1; 1766 } else 1767 lq_sta->is_agg = 0; 1768 1769 /* 1770 * Select rate-scale / modulation-mode table to work with in 1771 * the rest of this function: "search" if searching for better 1772 * modulation mode, or "active" if doing rate scaling within a mode. 1773 */ 1774 if (!lq_sta->search_better_tbl) 1775 active_tbl = lq_sta->active_tbl; 1776 else 1777 active_tbl = 1 - lq_sta->active_tbl; 1778 1779 tbl = &(lq_sta->lq_info[active_tbl]); 1780 if (is_legacy(tbl->lq_type)) 1781 lq_sta->is_green = 0; 1782 else 1783 lq_sta->is_green = il4965_rs_use_green(il, sta); 1784 is_green = lq_sta->is_green; 1785 1786 /* current tx rate */ 1787 idx = lq_sta->last_txrate_idx; 1788 1789 D_RATE("Rate scale idx %d for type %d\n", idx, tbl->lq_type); 1790 1791 /* rates available for this association, and for modulation mode */ 1792 rate_mask = il4965_rs_get_supported_rates(lq_sta, hdr, tbl->lq_type); 1793 1794 D_RATE("mask 0x%04X\n", rate_mask); 1795 1796 /* mask with station rate restriction */ 1797 if (is_legacy(tbl->lq_type)) { 1798 if (lq_sta->band == NL80211_BAND_5GHZ) 1799 /* supp_rates has no CCK bits in A mode */ 1800 rate_scale_idx_msk = 1801 (u16) (rate_mask & 1802 (lq_sta->supp_rates << IL_FIRST_OFDM_RATE)); 1803 else 1804 rate_scale_idx_msk = 1805 (u16) (rate_mask & lq_sta->supp_rates); 1806 1807 } else 1808 rate_scale_idx_msk = rate_mask; 1809 1810 if (!rate_scale_idx_msk) 1811 rate_scale_idx_msk = rate_mask; 1812 1813 if (!((1 << idx) & rate_scale_idx_msk)) { 1814 IL_ERR("Current Rate is not valid\n"); 1815 if (lq_sta->search_better_tbl) { 1816 /* revert to active table if search table is not valid */ 1817 tbl->lq_type = LQ_NONE; 1818 lq_sta->search_better_tbl = 0; 1819 tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 1820 /* get "active" rate info */ 1821 idx = il4965_hwrate_to_plcp_idx(tbl->current_rate); 1822 il4965_rs_update_rate_tbl(il, lq_sta, tbl, idx, 1823 is_green); 1824 } 1825 return; 1826 } 1827 1828 /* Get expected throughput table and history win for current rate */ 1829 if (!tbl->expected_tpt) { 1830 IL_ERR("tbl->expected_tpt is NULL\n"); 1831 return; 1832 } 1833 1834 /* force user max rate if set by user */ 1835 if (lq_sta->max_rate_idx != -1 && lq_sta->max_rate_idx < idx) { 1836 idx = lq_sta->max_rate_idx; 1837 update_lq = 1; 1838 win = &(tbl->win[idx]); 1839 goto lq_update; 1840 } 1841 1842 win = &(tbl->win[idx]); 1843 1844 /* 1845 * If there is not enough history to calculate actual average 1846 * throughput, keep analyzing results of more tx frames, without 1847 * changing rate or mode (bypass most of the rest of this function). 1848 * Set up new rate table in uCode only if old rate is not supported 1849 * in current association (use new rate found above). 1850 */ 1851 fail_count = win->counter - win->success_counter; 1852 if (fail_count < RATE_MIN_FAILURE_TH && 1853 win->success_counter < RATE_MIN_SUCCESS_TH) { 1854 D_RATE("LQ: still below TH. succ=%d total=%d " "for idx %d\n", 1855 win->success_counter, win->counter, idx); 1856 1857 /* Can't calculate this yet; not enough history */ 1858 win->average_tpt = IL_INVALID_VALUE; 1859 1860 /* Should we stay with this modulation mode, 1861 * or search for a new one? */ 1862 il4965_rs_stay_in_table(lq_sta, false); 1863 1864 goto out; 1865 } 1866 /* Else we have enough samples; calculate estimate of 1867 * actual average throughput */ 1868 if (win->average_tpt != 1869 ((win->success_ratio * tbl->expected_tpt[idx] + 64) / 128)) { 1870 IL_ERR("expected_tpt should have been calculated by now\n"); 1871 win->average_tpt = 1872 ((win->success_ratio * tbl->expected_tpt[idx] + 64) / 128); 1873 } 1874 1875 /* If we are searching for better modulation mode, check success. */ 1876 if (lq_sta->search_better_tbl) { 1877 /* If good success, continue using the "search" mode; 1878 * no need to send new link quality command, since we're 1879 * continuing to use the setup that we've been trying. */ 1880 if (win->average_tpt > lq_sta->last_tpt) { 1881 1882 D_RATE("LQ: SWITCHING TO NEW TBL " 1883 "suc=%d cur-tpt=%d old-tpt=%d\n", 1884 win->success_ratio, win->average_tpt, 1885 lq_sta->last_tpt); 1886 1887 if (!is_legacy(tbl->lq_type)) 1888 lq_sta->enable_counter = 1; 1889 1890 /* Swap tables; "search" becomes "active" */ 1891 lq_sta->active_tbl = active_tbl; 1892 current_tpt = win->average_tpt; 1893 1894 /* Else poor success; go back to mode in "active" table */ 1895 } else { 1896 1897 D_RATE("LQ: GOING BACK TO THE OLD TBL " 1898 "suc=%d cur-tpt=%d old-tpt=%d\n", 1899 win->success_ratio, win->average_tpt, 1900 lq_sta->last_tpt); 1901 1902 /* Nullify "search" table */ 1903 tbl->lq_type = LQ_NONE; 1904 1905 /* Revert to "active" table */ 1906 active_tbl = lq_sta->active_tbl; 1907 tbl = &(lq_sta->lq_info[active_tbl]); 1908 1909 /* Revert to "active" rate and throughput info */ 1910 idx = il4965_hwrate_to_plcp_idx(tbl->current_rate); 1911 current_tpt = lq_sta->last_tpt; 1912 1913 /* Need to set up a new rate table in uCode */ 1914 update_lq = 1; 1915 } 1916 1917 /* Either way, we've made a decision; modulation mode 1918 * search is done, allow rate adjustment next time. */ 1919 lq_sta->search_better_tbl = 0; 1920 done_search = 1; /* Don't switch modes below! */ 1921 goto lq_update; 1922 } 1923 1924 /* (Else) not in search of better modulation mode, try for better 1925 * starting rate, while staying in this mode. */ 1926 high_low = 1927 il4965_rs_get_adjacent_rate(il, idx, rate_scale_idx_msk, 1928 tbl->lq_type); 1929 low = high_low & 0xff; 1930 high = (high_low >> 8) & 0xff; 1931 1932 /* If user set max rate, dont allow higher than user constrain */ 1933 if (lq_sta->max_rate_idx != -1 && lq_sta->max_rate_idx < high) 1934 high = RATE_INVALID; 1935 1936 sr = win->success_ratio; 1937 1938 /* Collect measured throughputs for current and adjacent rates */ 1939 current_tpt = win->average_tpt; 1940 if (low != RATE_INVALID) 1941 low_tpt = tbl->win[low].average_tpt; 1942 if (high != RATE_INVALID) 1943 high_tpt = tbl->win[high].average_tpt; 1944 1945 scale_action = 0; 1946 1947 /* Too many failures, decrease rate */ 1948 if (sr <= RATE_DECREASE_TH || current_tpt == 0) { 1949 D_RATE("decrease rate because of low success_ratio\n"); 1950 scale_action = -1; 1951 1952 /* No throughput measured yet for adjacent rates; try increase. */ 1953 } else if (low_tpt == IL_INVALID_VALUE && high_tpt == IL_INVALID_VALUE) { 1954 1955 if (high != RATE_INVALID && sr >= RATE_INCREASE_TH) 1956 scale_action = 1; 1957 else if (low != RATE_INVALID) 1958 scale_action = 0; 1959 } 1960 1961 /* Both adjacent throughputs are measured, but neither one has better 1962 * throughput; we're using the best rate, don't change it! */ 1963 else if (low_tpt != IL_INVALID_VALUE && high_tpt != IL_INVALID_VALUE && 1964 low_tpt < current_tpt && high_tpt < current_tpt) 1965 scale_action = 0; 1966 1967 /* At least one adjacent rate's throughput is measured, 1968 * and may have better performance. */ 1969 else { 1970 /* Higher adjacent rate's throughput is measured */ 1971 if (high_tpt != IL_INVALID_VALUE) { 1972 /* Higher rate has better throughput */ 1973 if (high_tpt > current_tpt && sr >= RATE_INCREASE_TH) 1974 scale_action = 1; 1975 else 1976 scale_action = 0; 1977 1978 /* Lower adjacent rate's throughput is measured */ 1979 } else if (low_tpt != IL_INVALID_VALUE) { 1980 /* Lower rate has better throughput */ 1981 if (low_tpt > current_tpt) { 1982 D_RATE("decrease rate because of low tpt\n"); 1983 scale_action = -1; 1984 } else if (sr >= RATE_INCREASE_TH) { 1985 scale_action = 1; 1986 } 1987 } 1988 } 1989 1990 /* Sanity check; asked for decrease, but success rate or throughput 1991 * has been good at old rate. Don't change it. */ 1992 if (scale_action == -1 && low != RATE_INVALID && 1993 (sr > RATE_HIGH_TH || current_tpt > 100 * tbl->expected_tpt[low])) 1994 scale_action = 0; 1995 1996 switch (scale_action) { 1997 case -1: 1998 /* Decrease starting rate, update uCode's rate table */ 1999 if (low != RATE_INVALID) { 2000 update_lq = 1; 2001 idx = low; 2002 } 2003 2004 break; 2005 case 1: 2006 /* Increase starting rate, update uCode's rate table */ 2007 if (high != RATE_INVALID) { 2008 update_lq = 1; 2009 idx = high; 2010 } 2011 2012 break; 2013 case 0: 2014 /* No change */ 2015 default: 2016 break; 2017 } 2018 2019 D_RATE("choose rate scale idx %d action %d low %d " "high %d type %d\n", 2020 idx, scale_action, low, high, tbl->lq_type); 2021 2022 lq_update: 2023 /* Replace uCode's rate table for the destination station. */ 2024 if (update_lq) 2025 il4965_rs_update_rate_tbl(il, lq_sta, tbl, idx, is_green); 2026 2027 /* Should we stay with this modulation mode, 2028 * or search for a new one? */ 2029 il4965_rs_stay_in_table(lq_sta, false); 2030 2031 /* 2032 * Search for new modulation mode if we're: 2033 * 1) Not changing rates right now 2034 * 2) Not just finishing up a search 2035 * 3) Allowing a new search 2036 */ 2037 if (!update_lq && !done_search && !lq_sta->stay_in_tbl && win->counter) { 2038 /* Save current throughput to compare with "search" throughput */ 2039 lq_sta->last_tpt = current_tpt; 2040 2041 /* Select a new "search" modulation mode to try. 2042 * If one is found, set up the new "search" table. */ 2043 if (is_legacy(tbl->lq_type)) 2044 il4965_rs_move_legacy_other(il, lq_sta, conf, sta, idx); 2045 else if (is_siso(tbl->lq_type)) 2046 il4965_rs_move_siso_to_other(il, lq_sta, conf, sta, 2047 idx); 2048 else /* (is_mimo2(tbl->lq_type)) */ 2049 il4965_rs_move_mimo2_to_other(il, lq_sta, conf, sta, 2050 idx); 2051 2052 /* If new "search" mode was selected, set up in uCode table */ 2053 if (lq_sta->search_better_tbl) { 2054 /* Access the "search" table, clear its history. */ 2055 tbl = &(lq_sta->lq_info[(1 - lq_sta->active_tbl)]); 2056 for (i = 0; i < RATE_COUNT; i++) 2057 il4965_rs_rate_scale_clear_win(&(tbl->win[i])); 2058 2059 /* Use new "search" start rate */ 2060 idx = il4965_hwrate_to_plcp_idx(tbl->current_rate); 2061 2062 D_RATE("Switch current mcs: %X idx: %d\n", 2063 tbl->current_rate, idx); 2064 il4965_rs_fill_link_cmd(il, lq_sta, tbl->current_rate); 2065 il_send_lq_cmd(il, &lq_sta->lq, CMD_ASYNC, false); 2066 } else 2067 done_search = 1; 2068 } 2069 2070 if (done_search && !lq_sta->stay_in_tbl) { 2071 /* If the "active" (non-search) mode was legacy, 2072 * and we've tried switching antennas, 2073 * but we haven't been able to try HT modes (not available), 2074 * stay with best antenna legacy modulation for a while 2075 * before next round of mode comparisons. */ 2076 tbl1 = &(lq_sta->lq_info[lq_sta->active_tbl]); 2077 if (is_legacy(tbl1->lq_type) && !conf_is_ht(conf) && 2078 lq_sta->action_counter > tbl1->max_search) { 2079 D_RATE("LQ: STAY in legacy table\n"); 2080 il4965_rs_set_stay_in_table(il, 1, lq_sta); 2081 } 2082 2083 /* If we're in an HT mode, and all 3 mode switch actions 2084 * have been tried and compared, stay in this best modulation 2085 * mode for a while before next round of mode comparisons. */ 2086 if (lq_sta->enable_counter && 2087 lq_sta->action_counter >= tbl1->max_search) { 2088 if (lq_sta->last_tpt > IL_AGG_TPT_THREHOLD && 2089 (lq_sta->tx_agg_tid_en & (1 << tid)) && 2090 tid != MAX_TID_COUNT) { 2091 tid_data = 2092 &il->stations[lq_sta->lq.sta_id].tid[tid]; 2093 if (tid_data->agg.state == IL_AGG_OFF) { 2094 D_RATE("try to aggregate tid %d\n", 2095 tid); 2096 il4965_rs_tl_turn_on_agg(il, tid, 2097 lq_sta, sta); 2098 } 2099 } 2100 il4965_rs_set_stay_in_table(il, 0, lq_sta); 2101 } 2102 } 2103 2104 out: 2105 tbl->current_rate = 2106 il4965_rate_n_flags_from_tbl(il, tbl, idx, is_green); 2107 i = idx; 2108 lq_sta->last_txrate_idx = i; 2109 } 2110 2111 /* 2112 * il4965_rs_initialize_lq - Initialize a station's hardware rate table 2113 * 2114 * The uCode's station table contains a table of fallback rates 2115 * for automatic fallback during transmission. 2116 * 2117 * NOTE: This sets up a default set of values. These will be replaced later 2118 * if the driver's iwl-4965-rs rate scaling algorithm is used, instead of 2119 * rc80211_simple. 2120 * 2121 * NOTE: Run C_ADD_STA command to set up station table entry, before 2122 * calling this function (which runs C_TX_LINK_QUALITY_CMD, 2123 * which requires station table entry to exist). 2124 */ 2125 static void 2126 il4965_rs_initialize_lq(struct il_priv *il, struct ieee80211_conf *conf, 2127 struct ieee80211_sta *sta, struct il_lq_sta *lq_sta) 2128 { 2129 struct il_scale_tbl_info *tbl; 2130 int rate_idx; 2131 int i; 2132 u32 rate; 2133 u8 use_green; 2134 u8 active_tbl = 0; 2135 u8 valid_tx_ant; 2136 2137 if (!sta || !lq_sta) 2138 return; 2139 2140 use_green = il4965_rs_use_green(il, sta); 2141 2142 i = lq_sta->last_txrate_idx; 2143 2144 valid_tx_ant = il->hw_params.valid_tx_ant; 2145 2146 if (!lq_sta->search_better_tbl) 2147 active_tbl = lq_sta->active_tbl; 2148 else 2149 active_tbl = 1 - lq_sta->active_tbl; 2150 2151 tbl = &(lq_sta->lq_info[active_tbl]); 2152 2153 if (i < 0 || i >= RATE_COUNT) 2154 i = 0; 2155 2156 rate = il_rates[i].plcp; 2157 tbl->ant_type = il4965_first_antenna(valid_tx_ant); 2158 rate |= tbl->ant_type << RATE_MCS_ANT_POS; 2159 2160 if (i >= IL_FIRST_CCK_RATE && i <= IL_LAST_CCK_RATE) 2161 rate |= RATE_MCS_CCK_MSK; 2162 2163 il4965_rs_get_tbl_info_from_mcs(rate, il->band, tbl, &rate_idx); 2164 if (!il4965_rs_is_valid_ant(valid_tx_ant, tbl->ant_type)) 2165 il4965_rs_toggle_antenna(valid_tx_ant, &rate, tbl); 2166 2167 rate = il4965_rate_n_flags_from_tbl(il, tbl, rate_idx, use_green); 2168 tbl->current_rate = rate; 2169 il4965_rs_set_expected_tpt_table(lq_sta, tbl); 2170 il4965_rs_fill_link_cmd(NULL, lq_sta, rate); 2171 il->stations[lq_sta->lq.sta_id].lq = &lq_sta->lq; 2172 il_send_lq_cmd(il, &lq_sta->lq, CMD_SYNC, true); 2173 } 2174 2175 static void 2176 il4965_rs_get_rate(void *il_r, struct ieee80211_sta *sta, void *il_sta, 2177 struct ieee80211_tx_rate_control *txrc) 2178 { 2179 2180 struct sk_buff *skb = txrc->skb; 2181 struct ieee80211_supported_band *sband = txrc->sband; 2182 struct il_priv *il __maybe_unused = (struct il_priv *)il_r; 2183 struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb); 2184 struct il_lq_sta *lq_sta = il_sta; 2185 int rate_idx; 2186 2187 D_RATE("rate scale calculate new rate for skb\n"); 2188 2189 /* Get max rate if user set max rate */ 2190 if (lq_sta) { 2191 lq_sta->max_rate_idx = fls(txrc->rate_idx_mask) - 1; 2192 if (sband->band == NL80211_BAND_5GHZ && 2193 lq_sta->max_rate_idx != -1) 2194 lq_sta->max_rate_idx += IL_FIRST_OFDM_RATE; 2195 if (lq_sta->max_rate_idx < 0 || 2196 lq_sta->max_rate_idx >= RATE_COUNT) 2197 lq_sta->max_rate_idx = -1; 2198 } 2199 2200 /* Treat uninitialized rate scaling data same as non-existing. */ 2201 if (lq_sta && !lq_sta->drv) { 2202 D_RATE("Rate scaling not initialized yet.\n"); 2203 il_sta = NULL; 2204 } 2205 2206 if (!lq_sta) 2207 return; 2208 2209 rate_idx = lq_sta->last_txrate_idx; 2210 2211 if (lq_sta->last_rate_n_flags & RATE_MCS_HT_MSK) { 2212 rate_idx -= IL_FIRST_OFDM_RATE; 2213 /* 6M and 9M shared same MCS idx */ 2214 rate_idx = (rate_idx > 0) ? (rate_idx - 1) : 0; 2215 if (il4965_rs_extract_rate(lq_sta->last_rate_n_flags) >= 2216 RATE_MIMO2_6M_PLCP) 2217 rate_idx = rate_idx + MCS_IDX_PER_STREAM; 2218 info->control.rates[0].flags = IEEE80211_TX_RC_MCS; 2219 if (lq_sta->last_rate_n_flags & RATE_MCS_SGI_MSK) 2220 info->control.rates[0].flags |= 2221 IEEE80211_TX_RC_SHORT_GI; 2222 if (lq_sta->last_rate_n_flags & RATE_MCS_DUP_MSK) 2223 info->control.rates[0].flags |= 2224 IEEE80211_TX_RC_DUP_DATA; 2225 if (lq_sta->last_rate_n_flags & RATE_MCS_HT40_MSK) 2226 info->control.rates[0].flags |= 2227 IEEE80211_TX_RC_40_MHZ_WIDTH; 2228 if (lq_sta->last_rate_n_flags & RATE_MCS_GF_MSK) 2229 info->control.rates[0].flags |= 2230 IEEE80211_TX_RC_GREEN_FIELD; 2231 } else { 2232 /* Check for invalid rates */ 2233 if (rate_idx < 0 || rate_idx >= RATE_COUNT_LEGACY || 2234 (sband->band == NL80211_BAND_5GHZ && 2235 rate_idx < IL_FIRST_OFDM_RATE)) 2236 rate_idx = rate_lowest_index(sband, sta); 2237 /* On valid 5 GHz rate, adjust idx */ 2238 else if (sband->band == NL80211_BAND_5GHZ) 2239 rate_idx -= IL_FIRST_OFDM_RATE; 2240 info->control.rates[0].flags = 0; 2241 } 2242 info->control.rates[0].idx = rate_idx; 2243 info->control.rates[0].count = 1; 2244 } 2245 2246 static void * 2247 il4965_rs_alloc_sta(void *il_rate, struct ieee80211_sta *sta, gfp_t gfp) 2248 { 2249 struct il_station_priv *sta_priv = 2250 (struct il_station_priv *)sta->drv_priv; 2251 struct il_priv *il; 2252 2253 il = (struct il_priv *)il_rate; 2254 D_RATE("create station rate scale win\n"); 2255 2256 return &sta_priv->lq_sta; 2257 } 2258 2259 /* 2260 * Called after adding a new station to initialize rate scaling 2261 */ 2262 void 2263 il4965_rs_rate_init(struct il_priv *il, struct ieee80211_sta *sta, u8 sta_id) 2264 { 2265 int i, j; 2266 struct ieee80211_hw *hw = il->hw; 2267 struct ieee80211_conf *conf = &il->hw->conf; 2268 struct ieee80211_sta_ht_cap *ht_cap = &sta->deflink.ht_cap; 2269 struct il_station_priv *sta_priv; 2270 struct il_lq_sta *lq_sta; 2271 struct ieee80211_supported_band *sband; 2272 2273 sta_priv = (struct il_station_priv *)sta->drv_priv; 2274 lq_sta = &sta_priv->lq_sta; 2275 sband = hw->wiphy->bands[conf->chandef.chan->band]; 2276 2277 lq_sta->lq.sta_id = sta_id; 2278 2279 for (j = 0; j < LQ_SIZE; j++) 2280 for (i = 0; i < RATE_COUNT; i++) 2281 il4965_rs_rate_scale_clear_win(&lq_sta->lq_info[j]. 2282 win[i]); 2283 2284 lq_sta->flush_timer = 0; 2285 lq_sta->supp_rates = sta->deflink.supp_rates[sband->band]; 2286 for (j = 0; j < LQ_SIZE; j++) 2287 for (i = 0; i < RATE_COUNT; i++) 2288 il4965_rs_rate_scale_clear_win(&lq_sta->lq_info[j]. 2289 win[i]); 2290 2291 D_RATE("LQ:" "*** rate scale station global init for station %d ***\n", 2292 sta_id); 2293 /* TODO: what is a good starting rate for STA? About middle? Maybe not 2294 * the lowest or the highest rate.. Could consider using RSSI from 2295 * previous packets? Need to have IEEE 802.1X auth succeed immediately 2296 * after assoc.. */ 2297 2298 lq_sta->is_dup = 0; 2299 lq_sta->max_rate_idx = -1; 2300 lq_sta->missed_rate_counter = IL_MISSED_RATE_MAX; 2301 lq_sta->is_green = il4965_rs_use_green(il, sta); 2302 lq_sta->active_legacy_rate = il->active_rate & ~(0x1000); 2303 lq_sta->band = il->band; 2304 /* 2305 * active_siso_rate mask includes 9 MBits (bit 5), and CCK (bits 0-3), 2306 * supp_rates[] does not; shift to convert format, force 9 MBits off. 2307 */ 2308 lq_sta->active_siso_rate = ht_cap->mcs.rx_mask[0] << 1; 2309 lq_sta->active_siso_rate |= ht_cap->mcs.rx_mask[0] & 0x1; 2310 lq_sta->active_siso_rate &= ~((u16) 0x2); 2311 lq_sta->active_siso_rate <<= IL_FIRST_OFDM_RATE; 2312 2313 /* Same here */ 2314 lq_sta->active_mimo2_rate = ht_cap->mcs.rx_mask[1] << 1; 2315 lq_sta->active_mimo2_rate |= ht_cap->mcs.rx_mask[1] & 0x1; 2316 lq_sta->active_mimo2_rate &= ~((u16) 0x2); 2317 lq_sta->active_mimo2_rate <<= IL_FIRST_OFDM_RATE; 2318 2319 /* These values will be overridden later */ 2320 lq_sta->lq.general_params.single_stream_ant_msk = 2321 il4965_first_antenna(il->hw_params.valid_tx_ant); 2322 lq_sta->lq.general_params.dual_stream_ant_msk = 2323 il->hw_params.valid_tx_ant & ~il4965_first_antenna(il->hw_params. 2324 valid_tx_ant); 2325 if (!lq_sta->lq.general_params.dual_stream_ant_msk) { 2326 lq_sta->lq.general_params.dual_stream_ant_msk = ANT_AB; 2327 } else if (il4965_num_of_ant(il->hw_params.valid_tx_ant) == 2) { 2328 lq_sta->lq.general_params.dual_stream_ant_msk = 2329 il->hw_params.valid_tx_ant; 2330 } 2331 2332 /* as default allow aggregation for all tids */ 2333 lq_sta->tx_agg_tid_en = IL_AGG_ALL_TID; 2334 lq_sta->drv = il; 2335 2336 /* Set last_txrate_idx to lowest rate */ 2337 lq_sta->last_txrate_idx = rate_lowest_index(sband, sta); 2338 if (sband->band == NL80211_BAND_5GHZ) 2339 lq_sta->last_txrate_idx += IL_FIRST_OFDM_RATE; 2340 lq_sta->is_agg = 0; 2341 2342 #ifdef CONFIG_MAC80211_DEBUGFS 2343 lq_sta->dbg_fixed_rate = 0; 2344 #endif 2345 2346 il4965_rs_initialize_lq(il, conf, sta, lq_sta); 2347 } 2348 2349 static void 2350 il4965_rs_fill_link_cmd(struct il_priv *il, struct il_lq_sta *lq_sta, 2351 u32 new_rate) 2352 { 2353 struct il_scale_tbl_info tbl_type; 2354 int idx = 0; 2355 int rate_idx; 2356 int repeat_rate = 0; 2357 u8 ant_toggle_cnt = 0; 2358 u8 use_ht_possible = 1; 2359 u8 valid_tx_ant = 0; 2360 struct il_link_quality_cmd *lq_cmd = &lq_sta->lq; 2361 2362 /* Override starting rate (idx 0) if needed for debug purposes */ 2363 il4965_rs_dbgfs_set_mcs(lq_sta, &new_rate, idx); 2364 2365 /* Interpret new_rate (rate_n_flags) */ 2366 il4965_rs_get_tbl_info_from_mcs(new_rate, lq_sta->band, &tbl_type, 2367 &rate_idx); 2368 2369 /* How many times should we repeat the initial rate? */ 2370 if (is_legacy(tbl_type.lq_type)) { 2371 ant_toggle_cnt = 1; 2372 repeat_rate = IL_NUMBER_TRY; 2373 } else { 2374 repeat_rate = IL_HT_NUMBER_TRY; 2375 } 2376 2377 lq_cmd->general_params.mimo_delimiter = 2378 is_mimo(tbl_type.lq_type) ? 1 : 0; 2379 2380 /* Fill 1st table entry (idx 0) */ 2381 lq_cmd->rs_table[idx].rate_n_flags = cpu_to_le32(new_rate); 2382 2383 if (il4965_num_of_ant(tbl_type.ant_type) == 1) { 2384 lq_cmd->general_params.single_stream_ant_msk = 2385 tbl_type.ant_type; 2386 } else if (il4965_num_of_ant(tbl_type.ant_type) == 2) { 2387 lq_cmd->general_params.dual_stream_ant_msk = tbl_type.ant_type; 2388 } 2389 /* otherwise we don't modify the existing value */ 2390 idx++; 2391 repeat_rate--; 2392 if (il) 2393 valid_tx_ant = il->hw_params.valid_tx_ant; 2394 2395 /* Fill rest of rate table */ 2396 while (idx < LINK_QUAL_MAX_RETRY_NUM) { 2397 /* Repeat initial/next rate. 2398 * For legacy IL_NUMBER_TRY == 1, this loop will not execute. 2399 * For HT IL_HT_NUMBER_TRY == 3, this executes twice. */ 2400 while (repeat_rate > 0 && idx < (LINK_QUAL_MAX_RETRY_NUM - 1)) { 2401 if (is_legacy(tbl_type.lq_type)) { 2402 if (ant_toggle_cnt < NUM_TRY_BEFORE_ANT_TOGGLE) 2403 ant_toggle_cnt++; 2404 else if (il && 2405 il4965_rs_toggle_antenna(valid_tx_ant, 2406 &new_rate, 2407 &tbl_type)) 2408 ant_toggle_cnt = 1; 2409 } 2410 2411 /* Override next rate if needed for debug purposes */ 2412 il4965_rs_dbgfs_set_mcs(lq_sta, &new_rate, idx); 2413 2414 /* Fill next table entry */ 2415 lq_cmd->rs_table[idx].rate_n_flags = 2416 cpu_to_le32(new_rate); 2417 repeat_rate--; 2418 idx++; 2419 } 2420 2421 il4965_rs_get_tbl_info_from_mcs(new_rate, lq_sta->band, 2422 &tbl_type, &rate_idx); 2423 2424 /* Indicate to uCode which entries might be MIMO. 2425 * If initial rate was MIMO, this will finally end up 2426 * as (IL_HT_NUMBER_TRY * 2), after 2nd pass, otherwise 0. */ 2427 if (is_mimo(tbl_type.lq_type)) 2428 lq_cmd->general_params.mimo_delimiter = idx; 2429 2430 /* Get next rate */ 2431 new_rate = 2432 il4965_rs_get_lower_rate(lq_sta, &tbl_type, rate_idx, 2433 use_ht_possible); 2434 2435 /* How many times should we repeat the next rate? */ 2436 if (is_legacy(tbl_type.lq_type)) { 2437 if (ant_toggle_cnt < NUM_TRY_BEFORE_ANT_TOGGLE) 2438 ant_toggle_cnt++; 2439 else if (il && 2440 il4965_rs_toggle_antenna(valid_tx_ant, 2441 &new_rate, &tbl_type)) 2442 ant_toggle_cnt = 1; 2443 2444 repeat_rate = IL_NUMBER_TRY; 2445 } else { 2446 repeat_rate = IL_HT_NUMBER_TRY; 2447 } 2448 2449 /* Don't allow HT rates after next pass. 2450 * il4965_rs_get_lower_rate() will change type to LQ_A or LQ_G. */ 2451 use_ht_possible = 0; 2452 2453 /* Override next rate if needed for debug purposes */ 2454 il4965_rs_dbgfs_set_mcs(lq_sta, &new_rate, idx); 2455 2456 /* Fill next table entry */ 2457 lq_cmd->rs_table[idx].rate_n_flags = cpu_to_le32(new_rate); 2458 2459 idx++; 2460 repeat_rate--; 2461 } 2462 2463 lq_cmd->agg_params.agg_frame_cnt_limit = LINK_QUAL_AGG_FRAME_LIMIT_DEF; 2464 lq_cmd->agg_params.agg_dis_start_th = LINK_QUAL_AGG_DISABLE_START_DEF; 2465 2466 lq_cmd->agg_params.agg_time_limit = 2467 cpu_to_le16(LINK_QUAL_AGG_TIME_LIMIT_DEF); 2468 } 2469 2470 static void * 2471 il4965_rs_alloc(struct ieee80211_hw *hw) 2472 { 2473 return hw->priv; 2474 } 2475 2476 /* rate scale requires free function to be implemented */ 2477 static void 2478 il4965_rs_free(void *il_rate) 2479 { 2480 return; 2481 } 2482 2483 static void 2484 il4965_rs_free_sta(void *il_r, struct ieee80211_sta *sta, void *il_sta) 2485 { 2486 struct il_priv *il __maybe_unused = il_r; 2487 2488 D_RATE("enter\n"); 2489 D_RATE("leave\n"); 2490 } 2491 2492 static void 2493 il4965_rs_dbgfs_set_mcs(struct il_lq_sta *lq_sta, u32 * rate_n_flags, int idx) 2494 { 2495 struct il_priv *il; 2496 u8 valid_tx_ant; 2497 u8 ant_sel_tx; 2498 2499 if (!IS_ENABLED(CONFIG_MAC80211_DEBUGFS)) 2500 return; 2501 2502 il = lq_sta->drv; 2503 valid_tx_ant = il->hw_params.valid_tx_ant; 2504 if (lq_sta->dbg_fixed_rate) { 2505 ant_sel_tx = 2506 ((lq_sta-> 2507 dbg_fixed_rate & RATE_MCS_ANT_ABC_MSK) >> 2508 RATE_MCS_ANT_POS); 2509 if ((valid_tx_ant & ant_sel_tx) == ant_sel_tx) { 2510 *rate_n_flags = lq_sta->dbg_fixed_rate; 2511 D_RATE("Fixed rate ON\n"); 2512 } else { 2513 lq_sta->dbg_fixed_rate = 0; 2514 IL_ERR 2515 ("Invalid antenna selection 0x%X, Valid is 0x%X\n", 2516 ant_sel_tx, valid_tx_ant); 2517 D_RATE("Fixed rate OFF\n"); 2518 } 2519 } else { 2520 D_RATE("Fixed rate OFF\n"); 2521 } 2522 } 2523 2524 static ssize_t 2525 il4965_rs_sta_dbgfs_scale_table_write(struct file *file, 2526 const char __user *user_buf, 2527 size_t count, loff_t *ppos) 2528 { 2529 struct il_lq_sta *lq_sta = file->private_data; 2530 struct il_priv *il; 2531 char buf[64]; 2532 size_t buf_size; 2533 u32 parsed_rate; 2534 2535 il = lq_sta->drv; 2536 memset(buf, 0, sizeof(buf)); 2537 buf_size = min(count, sizeof(buf) - 1); 2538 if (copy_from_user(buf, user_buf, buf_size)) 2539 return -EFAULT; 2540 2541 if (sscanf(buf, "%x", &parsed_rate) == 1) 2542 lq_sta->dbg_fixed_rate = parsed_rate; 2543 else 2544 lq_sta->dbg_fixed_rate = 0; 2545 2546 lq_sta->active_legacy_rate = 0x0FFF; /* 1 - 54 MBits, includes CCK */ 2547 lq_sta->active_siso_rate = 0x1FD0; /* 6 - 60 MBits, no 9, no CCK */ 2548 lq_sta->active_mimo2_rate = 0x1FD0; /* 6 - 60 MBits, no 9, no CCK */ 2549 2550 D_RATE("sta_id %d rate 0x%X\n", lq_sta->lq.sta_id, 2551 lq_sta->dbg_fixed_rate); 2552 2553 if (lq_sta->dbg_fixed_rate) { 2554 il4965_rs_fill_link_cmd(NULL, lq_sta, lq_sta->dbg_fixed_rate); 2555 il_send_lq_cmd(lq_sta->drv, &lq_sta->lq, CMD_ASYNC, false); 2556 } 2557 2558 return count; 2559 } 2560 2561 static ssize_t 2562 il4965_rs_sta_dbgfs_scale_table_read(struct file *file, char __user *user_buf, 2563 size_t count, loff_t *ppos) 2564 { 2565 char *buff; 2566 int desc = 0; 2567 int i = 0; 2568 int idx = 0; 2569 ssize_t ret; 2570 2571 struct il_lq_sta *lq_sta = file->private_data; 2572 struct il_priv *il; 2573 struct il_scale_tbl_info *tbl = &(lq_sta->lq_info[lq_sta->active_tbl]); 2574 2575 il = lq_sta->drv; 2576 buff = kmalloc(1024, GFP_KERNEL); 2577 if (!buff) 2578 return -ENOMEM; 2579 2580 desc += sprintf(buff + desc, "sta_id %d\n", lq_sta->lq.sta_id); 2581 desc += 2582 sprintf(buff + desc, "failed=%d success=%d rate=0%X\n", 2583 lq_sta->total_failed, lq_sta->total_success, 2584 lq_sta->active_legacy_rate); 2585 desc += 2586 sprintf(buff + desc, "fixed rate 0x%X\n", lq_sta->dbg_fixed_rate); 2587 desc += 2588 sprintf(buff + desc, "valid_tx_ant %s%s%s\n", 2589 (il->hw_params.valid_tx_ant & ANT_A) ? "ANT_A," : "", 2590 (il->hw_params.valid_tx_ant & ANT_B) ? "ANT_B," : "", 2591 (il->hw_params.valid_tx_ant & ANT_C) ? "ANT_C" : ""); 2592 desc += 2593 sprintf(buff + desc, "lq type %s\n", 2594 (is_legacy(tbl->lq_type)) ? "legacy" : "HT"); 2595 if (is_Ht(tbl->lq_type)) { 2596 desc += 2597 sprintf(buff + desc, " %s", 2598 (is_siso(tbl->lq_type)) ? "SISO" : "MIMO2"); 2599 desc += 2600 sprintf(buff + desc, " %s", 2601 (tbl->is_ht40) ? "40MHz" : "20MHz"); 2602 desc += 2603 sprintf(buff + desc, " %s %s %s\n", 2604 (tbl->is_SGI) ? "SGI" : "", 2605 (lq_sta->is_green) ? "GF enabled" : "", 2606 (lq_sta->is_agg) ? "AGG on" : ""); 2607 } 2608 desc += 2609 sprintf(buff + desc, "last tx rate=0x%X\n", 2610 lq_sta->last_rate_n_flags); 2611 desc += 2612 sprintf(buff + desc, 2613 "general:" "flags=0x%X mimo-d=%d s-ant0x%x d-ant=0x%x\n", 2614 lq_sta->lq.general_params.flags, 2615 lq_sta->lq.general_params.mimo_delimiter, 2616 lq_sta->lq.general_params.single_stream_ant_msk, 2617 lq_sta->lq.general_params.dual_stream_ant_msk); 2618 2619 desc += 2620 sprintf(buff + desc, 2621 "agg:" 2622 "time_limit=%d dist_start_th=%d frame_cnt_limit=%d\n", 2623 le16_to_cpu(lq_sta->lq.agg_params.agg_time_limit), 2624 lq_sta->lq.agg_params.agg_dis_start_th, 2625 lq_sta->lq.agg_params.agg_frame_cnt_limit); 2626 2627 desc += 2628 sprintf(buff + desc, 2629 "Start idx [0]=0x%x [1]=0x%x [2]=0x%x [3]=0x%x\n", 2630 lq_sta->lq.general_params.start_rate_idx[0], 2631 lq_sta->lq.general_params.start_rate_idx[1], 2632 lq_sta->lq.general_params.start_rate_idx[2], 2633 lq_sta->lq.general_params.start_rate_idx[3]); 2634 2635 for (i = 0; i < LINK_QUAL_MAX_RETRY_NUM; i++) { 2636 idx = 2637 il4965_hwrate_to_plcp_idx(le32_to_cpu 2638 (lq_sta->lq.rs_table[i]. 2639 rate_n_flags)); 2640 if (is_legacy(tbl->lq_type)) { 2641 desc += 2642 sprintf(buff + desc, " rate[%d] 0x%X %smbps\n", i, 2643 le32_to_cpu(lq_sta->lq.rs_table[i]. 2644 rate_n_flags), 2645 il_rate_mcs[idx].mbps); 2646 } else { 2647 desc += 2648 sprintf(buff + desc, " rate[%d] 0x%X %smbps (%s)\n", 2649 i, 2650 le32_to_cpu(lq_sta->lq.rs_table[i]. 2651 rate_n_flags), 2652 il_rate_mcs[idx].mbps, 2653 il_rate_mcs[idx].mcs); 2654 } 2655 } 2656 2657 ret = simple_read_from_buffer(user_buf, count, ppos, buff, desc); 2658 kfree(buff); 2659 return ret; 2660 } 2661 2662 static const struct file_operations rs_sta_dbgfs_scale_table_ops = { 2663 .write = il4965_rs_sta_dbgfs_scale_table_write, 2664 .read = il4965_rs_sta_dbgfs_scale_table_read, 2665 .open = simple_open, 2666 .llseek = default_llseek, 2667 }; 2668 2669 static ssize_t 2670 il4965_rs_sta_dbgfs_stats_table_read(struct file *file, char __user *user_buf, 2671 size_t count, loff_t *ppos) 2672 { 2673 char *buff; 2674 int desc = 0; 2675 int i, j; 2676 ssize_t ret; 2677 2678 struct il_lq_sta *lq_sta = file->private_data; 2679 2680 buff = kmalloc(1024, GFP_KERNEL); 2681 if (!buff) 2682 return -ENOMEM; 2683 2684 for (i = 0; i < LQ_SIZE; i++) { 2685 desc += 2686 sprintf(buff + desc, 2687 "%s type=%d SGI=%d HT40=%d DUP=%d GF=%d\n" 2688 "rate=0x%X\n", lq_sta->active_tbl == i ? "*" : "x", 2689 lq_sta->lq_info[i].lq_type, 2690 lq_sta->lq_info[i].is_SGI, 2691 lq_sta->lq_info[i].is_ht40, 2692 lq_sta->lq_info[i].is_dup, lq_sta->is_green, 2693 lq_sta->lq_info[i].current_rate); 2694 for (j = 0; j < RATE_COUNT; j++) { 2695 desc += 2696 sprintf(buff + desc, 2697 "counter=%d success=%d %%=%d\n", 2698 lq_sta->lq_info[i].win[j].counter, 2699 lq_sta->lq_info[i].win[j].success_counter, 2700 lq_sta->lq_info[i].win[j].success_ratio); 2701 } 2702 } 2703 ret = simple_read_from_buffer(user_buf, count, ppos, buff, desc); 2704 kfree(buff); 2705 return ret; 2706 } 2707 2708 static const struct file_operations rs_sta_dbgfs_stats_table_ops = { 2709 .read = il4965_rs_sta_dbgfs_stats_table_read, 2710 .open = simple_open, 2711 .llseek = default_llseek, 2712 }; 2713 2714 static ssize_t 2715 il4965_rs_sta_dbgfs_rate_scale_data_read(struct file *file, 2716 char __user *user_buf, size_t count, 2717 loff_t *ppos) 2718 { 2719 char buff[120]; 2720 int desc = 0; 2721 struct il_lq_sta *lq_sta = file->private_data; 2722 struct il_scale_tbl_info *tbl = &lq_sta->lq_info[lq_sta->active_tbl]; 2723 2724 if (is_Ht(tbl->lq_type)) 2725 desc += 2726 sprintf(buff + desc, "Bit Rate= %d Mb/s\n", 2727 tbl->expected_tpt[lq_sta->last_txrate_idx]); 2728 else 2729 desc += 2730 sprintf(buff + desc, "Bit Rate= %d Mb/s\n", 2731 il_rates[lq_sta->last_txrate_idx].ieee >> 1); 2732 2733 return simple_read_from_buffer(user_buf, count, ppos, buff, desc); 2734 } 2735 2736 static const struct file_operations rs_sta_dbgfs_rate_scale_data_ops = { 2737 .read = il4965_rs_sta_dbgfs_rate_scale_data_read, 2738 .open = simple_open, 2739 .llseek = default_llseek, 2740 }; 2741 2742 static void 2743 il4965_rs_add_debugfs(void *il, void *il_sta, struct dentry *dir) 2744 { 2745 struct il_lq_sta *lq_sta = il_sta; 2746 2747 debugfs_create_file("rate_scale_table", 0600, dir, lq_sta, 2748 &rs_sta_dbgfs_scale_table_ops); 2749 debugfs_create_file("rate_stats_table", 0400, dir, lq_sta, 2750 &rs_sta_dbgfs_stats_table_ops); 2751 debugfs_create_file("rate_scale_data", 0400, dir, lq_sta, 2752 &rs_sta_dbgfs_rate_scale_data_ops); 2753 debugfs_create_u8("tx_agg_tid_enable", 0600, dir, 2754 &lq_sta->tx_agg_tid_en); 2755 } 2756 2757 /* 2758 * Initialization of rate scaling information is done by driver after 2759 * the station is added. Since mac80211 calls this function before a 2760 * station is added we ignore it. 2761 */ 2762 static void 2763 il4965_rs_rate_init_stub(void *il_r, struct ieee80211_supported_band *sband, 2764 struct cfg80211_chan_def *chandef, 2765 struct ieee80211_sta *sta, void *il_sta) 2766 { 2767 } 2768 2769 static const struct rate_control_ops rs_4965_ops = { 2770 .name = IL4965_RS_NAME, 2771 .tx_status = il4965_rs_tx_status, 2772 .get_rate = il4965_rs_get_rate, 2773 .rate_init = il4965_rs_rate_init_stub, 2774 .alloc = il4965_rs_alloc, 2775 .free = il4965_rs_free, 2776 .alloc_sta = il4965_rs_alloc_sta, 2777 .free_sta = il4965_rs_free_sta, 2778 .add_sta_debugfs = PTR_IF(IS_ENABLED(CONFIG_MAC80211_DEBUGFS), 2779 il4965_rs_add_debugfs), 2780 }; 2781 2782 int 2783 il4965_rate_control_register(void) 2784 { 2785 return ieee80211_rate_control_register(&rs_4965_ops); 2786 } 2787 2788 void 2789 il4965_rate_control_unregister(void) 2790 { 2791 ieee80211_rate_control_unregister(&rs_4965_ops); 2792 } 2793