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Felix Fietkauec8aa662010-05-13 16:48:03 +02001/*
Felix Fietkaua0497f92013-02-13 10:51:08 +01002 * Copyright (C) 2010-2013 Felix Fietkau <nbd@openwrt.org>
Felix Fietkauec8aa662010-05-13 16:48:03 +02003 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation.
7 */
8#include <linux/netdevice.h>
9#include <linux/types.h>
10#include <linux/skbuff.h>
11#include <linux/debugfs.h>
12#include <linux/random.h>
Karl Beldan92082472014-10-21 10:38:38 +020013#include <linux/moduleparam.h>
Felix Fietkauec8aa662010-05-13 16:48:03 +020014#include <linux/ieee80211.h>
15#include <net/mac80211.h>
16#include "rate.h"
Felix Fietkau782dda02016-12-14 20:46:55 +010017#include "sta_info.h"
Felix Fietkauec8aa662010-05-13 16:48:03 +020018#include "rc80211_minstrel.h"
19#include "rc80211_minstrel_ht.h"
20
Felix Fietkaud66c2582015-03-13 10:54:44 +010021#define AVG_AMPDU_SIZE 16
Felix Fietkauec8aa662010-05-13 16:48:03 +020022#define AVG_PKT_SIZE 1200
Felix Fietkauec8aa662010-05-13 16:48:03 +020023
24/* Number of bits for an average sized packet */
Felix Fietkaud66c2582015-03-13 10:54:44 +010025#define MCS_NBITS ((AVG_PKT_SIZE * AVG_AMPDU_SIZE) << 3)
Felix Fietkauec8aa662010-05-13 16:48:03 +020026
27/* Number of symbols for a packet with (bps) bits per symbol */
Johannes Berg00591ce2014-05-19 11:24:19 +020028#define MCS_NSYMS(bps) DIV_ROUND_UP(MCS_NBITS, (bps))
Felix Fietkauec8aa662010-05-13 16:48:03 +020029
Felix Fietkaued97a132013-03-02 21:20:12 +010030/* Transmission time (nanoseconds) for a packet containing (syms) symbols */
Felix Fietkauec8aa662010-05-13 16:48:03 +020031#define MCS_SYMBOL_TIME(sgi, syms) \
32 (sgi ? \
Felix Fietkaued97a132013-03-02 21:20:12 +010033 ((syms) * 18000 + 4000) / 5 : /* syms * 3.6 us */ \
34 ((syms) * 1000) << 2 /* syms * 4 us */ \
Felix Fietkauec8aa662010-05-13 16:48:03 +020035 )
36
37/* Transmit duration for the raw data part of an average sized packet */
Felix Fietkaud66c2582015-03-13 10:54:44 +010038#define MCS_DURATION(streams, sgi, bps) \
39 (MCS_SYMBOL_TIME(sgi, MCS_NSYMS((streams) * (bps))) / AVG_AMPDU_SIZE)
Felix Fietkauec8aa662010-05-13 16:48:03 +020040
Karl Beldan8a0ee4f2014-10-20 15:46:00 +020041#define BW_20 0
42#define BW_40 1
Karl Beldan92082472014-10-21 10:38:38 +020043#define BW_80 2
Karl Beldan8a0ee4f2014-10-20 15:46:00 +020044
Helmut Schaaa5f69d942011-11-14 15:28:20 +010045/*
46 * Define group sort order: HT40 -> SGI -> #streams
47 */
48#define GROUP_IDX(_streams, _sgi, _ht40) \
Karl Beldan8a0ee4f2014-10-20 15:46:00 +020049 MINSTREL_HT_GROUP_0 + \
Helmut Schaaa5f69d942011-11-14 15:28:20 +010050 MINSTREL_MAX_STREAMS * 2 * _ht40 + \
Karl Beldan8a0ee4f2014-10-20 15:46:00 +020051 MINSTREL_MAX_STREAMS * _sgi + \
Helmut Schaaa5f69d942011-11-14 15:28:20 +010052 _streams - 1
53
Felix Fietkauec8aa662010-05-13 16:48:03 +020054/* MCS rate information for an MCS group */
Helmut Schaaa5f69d942011-11-14 15:28:20 +010055#define MCS_GROUP(_streams, _sgi, _ht40) \
56 [GROUP_IDX(_streams, _sgi, _ht40)] = { \
Felix Fietkauec8aa662010-05-13 16:48:03 +020057 .streams = _streams, \
58 .flags = \
Karl Beldan3ec373c2014-10-20 15:46:01 +020059 IEEE80211_TX_RC_MCS | \
Felix Fietkauec8aa662010-05-13 16:48:03 +020060 (_sgi ? IEEE80211_TX_RC_SHORT_GI : 0) | \
61 (_ht40 ? IEEE80211_TX_RC_40_MHZ_WIDTH : 0), \
62 .duration = { \
63 MCS_DURATION(_streams, _sgi, _ht40 ? 54 : 26), \
64 MCS_DURATION(_streams, _sgi, _ht40 ? 108 : 52), \
65 MCS_DURATION(_streams, _sgi, _ht40 ? 162 : 78), \
66 MCS_DURATION(_streams, _sgi, _ht40 ? 216 : 104), \
67 MCS_DURATION(_streams, _sgi, _ht40 ? 324 : 156), \
68 MCS_DURATION(_streams, _sgi, _ht40 ? 432 : 208), \
69 MCS_DURATION(_streams, _sgi, _ht40 ? 486 : 234), \
70 MCS_DURATION(_streams, _sgi, _ht40 ? 540 : 260) \
71 } \
72}
73
Karl Beldan92082472014-10-21 10:38:38 +020074#define VHT_GROUP_IDX(_streams, _sgi, _bw) \
75 (MINSTREL_VHT_GROUP_0 + \
76 MINSTREL_MAX_STREAMS * 2 * (_bw) + \
77 MINSTREL_MAX_STREAMS * (_sgi) + \
78 (_streams) - 1)
79
80#define BW2VBPS(_bw, r3, r2, r1) \
81 (_bw == BW_80 ? r3 : _bw == BW_40 ? r2 : r1)
82
83#define VHT_GROUP(_streams, _sgi, _bw) \
84 [VHT_GROUP_IDX(_streams, _sgi, _bw)] = { \
85 .streams = _streams, \
86 .flags = \
87 IEEE80211_TX_RC_VHT_MCS | \
88 (_sgi ? IEEE80211_TX_RC_SHORT_GI : 0) | \
89 (_bw == BW_80 ? IEEE80211_TX_RC_80_MHZ_WIDTH : \
90 _bw == BW_40 ? IEEE80211_TX_RC_40_MHZ_WIDTH : 0), \
91 .duration = { \
92 MCS_DURATION(_streams, _sgi, \
93 BW2VBPS(_bw, 117, 54, 26)), \
94 MCS_DURATION(_streams, _sgi, \
95 BW2VBPS(_bw, 234, 108, 52)), \
96 MCS_DURATION(_streams, _sgi, \
97 BW2VBPS(_bw, 351, 162, 78)), \
98 MCS_DURATION(_streams, _sgi, \
99 BW2VBPS(_bw, 468, 216, 104)), \
100 MCS_DURATION(_streams, _sgi, \
101 BW2VBPS(_bw, 702, 324, 156)), \
102 MCS_DURATION(_streams, _sgi, \
103 BW2VBPS(_bw, 936, 432, 208)), \
104 MCS_DURATION(_streams, _sgi, \
105 BW2VBPS(_bw, 1053, 486, 234)), \
106 MCS_DURATION(_streams, _sgi, \
107 BW2VBPS(_bw, 1170, 540, 260)), \
108 MCS_DURATION(_streams, _sgi, \
109 BW2VBPS(_bw, 1404, 648, 312)), \
110 MCS_DURATION(_streams, _sgi, \
111 BW2VBPS(_bw, 1560, 720, 346)) \
112 } \
113}
114
Felix Fietkaua0497f92013-02-13 10:51:08 +0100115#define CCK_DURATION(_bitrate, _short, _len) \
Felix Fietkaued97a132013-03-02 21:20:12 +0100116 (1000 * (10 /* SIFS */ + \
Weilong Chenf359d3f2013-12-18 15:44:16 +0800117 (_short ? 72 + 24 : 144 + 48) + \
Felix Fietkaued97a132013-03-02 21:20:12 +0100118 (8 * (_len + 4) * 10) / (_bitrate)))
Felix Fietkaua0497f92013-02-13 10:51:08 +0100119
120#define CCK_ACK_DURATION(_bitrate, _short) \
121 (CCK_DURATION((_bitrate > 10 ? 20 : 10), false, 60) + \
122 CCK_DURATION(_bitrate, _short, AVG_PKT_SIZE))
123
124#define CCK_DURATION_LIST(_short) \
125 CCK_ACK_DURATION(10, _short), \
126 CCK_ACK_DURATION(20, _short), \
127 CCK_ACK_DURATION(55, _short), \
128 CCK_ACK_DURATION(110, _short)
129
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200130#define CCK_GROUP \
131 [MINSTREL_CCK_GROUP] = { \
132 .streams = 0, \
Karl Beldan3ec373c2014-10-20 15:46:01 +0200133 .flags = 0, \
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200134 .duration = { \
135 CCK_DURATION_LIST(false), \
136 CCK_DURATION_LIST(true) \
137 } \
Felix Fietkaua0497f92013-02-13 10:51:08 +0100138 }
139
Karl Beldan92082472014-10-21 10:38:38 +0200140#ifdef CONFIG_MAC80211_RC_MINSTREL_VHT
141static bool minstrel_vht_only = true;
142module_param(minstrel_vht_only, bool, 0644);
143MODULE_PARM_DESC(minstrel_vht_only,
144 "Use only VHT rates when VHT is supported by sta.");
145#endif
146
Felix Fietkauec8aa662010-05-13 16:48:03 +0200147/*
148 * To enable sufficiently targeted rate sampling, MCS rates are divided into
149 * groups, based on the number of streams and flags (HT40, SGI) that they
150 * use.
Helmut Schaaa5f69d942011-11-14 15:28:20 +0100151 *
152 * Sortorder has to be fixed for GROUP_IDX macro to be applicable:
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200153 * BW -> SGI -> #streams
Felix Fietkauec8aa662010-05-13 16:48:03 +0200154 */
155const struct mcs_group minstrel_mcs_groups[] = {
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200156 MCS_GROUP(1, 0, BW_20),
157 MCS_GROUP(2, 0, BW_20),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200158#if MINSTREL_MAX_STREAMS >= 3
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200159 MCS_GROUP(3, 0, BW_20),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200160#endif
161
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200162 MCS_GROUP(1, 1, BW_20),
163 MCS_GROUP(2, 1, BW_20),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200164#if MINSTREL_MAX_STREAMS >= 3
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200165 MCS_GROUP(3, 1, BW_20),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200166#endif
167
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200168 MCS_GROUP(1, 0, BW_40),
169 MCS_GROUP(2, 0, BW_40),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200170#if MINSTREL_MAX_STREAMS >= 3
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200171 MCS_GROUP(3, 0, BW_40),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200172#endif
173
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200174 MCS_GROUP(1, 1, BW_40),
175 MCS_GROUP(2, 1, BW_40),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200176#if MINSTREL_MAX_STREAMS >= 3
Karl Beldan8a0ee4f2014-10-20 15:46:00 +0200177 MCS_GROUP(3, 1, BW_40),
Felix Fietkauec8aa662010-05-13 16:48:03 +0200178#endif
Felix Fietkaua0497f92013-02-13 10:51:08 +0100179
Karl Beldan92082472014-10-21 10:38:38 +0200180 CCK_GROUP,
Felix Fietkauec8aa662010-05-13 16:48:03 +0200181
Karl Beldan92082472014-10-21 10:38:38 +0200182#ifdef CONFIG_MAC80211_RC_MINSTREL_VHT
183 VHT_GROUP(1, 0, BW_20),
184 VHT_GROUP(2, 0, BW_20),
185#if MINSTREL_MAX_STREAMS >= 3
186 VHT_GROUP(3, 0, BW_20),
187#endif
188
189 VHT_GROUP(1, 1, BW_20),
190 VHT_GROUP(2, 1, BW_20),
191#if MINSTREL_MAX_STREAMS >= 3
192 VHT_GROUP(3, 1, BW_20),
193#endif
194
195 VHT_GROUP(1, 0, BW_40),
196 VHT_GROUP(2, 0, BW_40),
197#if MINSTREL_MAX_STREAMS >= 3
198 VHT_GROUP(3, 0, BW_40),
199#endif
200
201 VHT_GROUP(1, 1, BW_40),
202 VHT_GROUP(2, 1, BW_40),
203#if MINSTREL_MAX_STREAMS >= 3
204 VHT_GROUP(3, 1, BW_40),
205#endif
206
207 VHT_GROUP(1, 0, BW_80),
208 VHT_GROUP(2, 0, BW_80),
209#if MINSTREL_MAX_STREAMS >= 3
210 VHT_GROUP(3, 0, BW_80),
211#endif
212
213 VHT_GROUP(1, 1, BW_80),
214 VHT_GROUP(2, 1, BW_80),
215#if MINSTREL_MAX_STREAMS >= 3
216 VHT_GROUP(3, 1, BW_80),
217#endif
218#endif
219};
Felix Fietkaua0497f92013-02-13 10:51:08 +0100220
Johannes Bergf6e1a732014-01-21 00:32:52 +0100221static u8 sample_table[SAMPLE_COLUMNS][MCS_GROUP_RATES] __read_mostly;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200222
Felix Fietkaua8566662013-04-22 16:14:42 +0200223static void
224minstrel_ht_update_rates(struct minstrel_priv *mp, struct minstrel_ht_sta *mi);
225
Felix Fietkauec8aa662010-05-13 16:48:03 +0200226/*
Karl Beldan92082472014-10-21 10:38:38 +0200227 * Some VHT MCSes are invalid (when Ndbps / Nes is not an integer)
228 * e.g for MCS9@20MHzx1Nss: Ndbps=8x52*(5/6) Nes=1
229 *
230 * Returns the valid mcs map for struct minstrel_mcs_group_data.supported
231 */
232static u16
233minstrel_get_valid_vht_rates(int bw, int nss, __le16 mcs_map)
234{
235 u16 mask = 0;
236
237 if (bw == BW_20) {
238 if (nss != 3 && nss != 6)
239 mask = BIT(9);
240 } else if (bw == BW_80) {
241 if (nss == 3 || nss == 7)
242 mask = BIT(6);
243 else if (nss == 6)
244 mask = BIT(9);
245 } else {
246 WARN_ON(bw != BW_40);
247 }
248
249 switch ((le16_to_cpu(mcs_map) >> (2 * (nss - 1))) & 3) {
250 case IEEE80211_VHT_MCS_SUPPORT_0_7:
251 mask |= 0x300;
252 break;
253 case IEEE80211_VHT_MCS_SUPPORT_0_8:
254 mask |= 0x200;
255 break;
256 case IEEE80211_VHT_MCS_SUPPORT_0_9:
257 break;
258 default:
259 mask = 0x3ff;
260 }
261
262 return 0x3ff & ~mask;
263}
264
265/*
Felix Fietkauec8aa662010-05-13 16:48:03 +0200266 * Look up an MCS group index based on mac80211 rate information
267 */
268static int
269minstrel_ht_get_group_idx(struct ieee80211_tx_rate *rate)
270{
Karl Beldancc61d8d2014-09-29 02:36:30 +0200271 return GROUP_IDX((rate->idx / 8) + 1,
Helmut Schaaa5f69d942011-11-14 15:28:20 +0100272 !!(rate->flags & IEEE80211_TX_RC_SHORT_GI),
273 !!(rate->flags & IEEE80211_TX_RC_40_MHZ_WIDTH));
Felix Fietkauec8aa662010-05-13 16:48:03 +0200274}
275
Karl Beldan92082472014-10-21 10:38:38 +0200276static int
277minstrel_vht_get_group_idx(struct ieee80211_tx_rate *rate)
278{
279 return VHT_GROUP_IDX(ieee80211_rate_get_vht_nss(rate),
280 !!(rate->flags & IEEE80211_TX_RC_SHORT_GI),
281 !!(rate->flags & IEEE80211_TX_RC_40_MHZ_WIDTH) +
282 2*!!(rate->flags & IEEE80211_TX_RC_80_MHZ_WIDTH));
283}
284
Felix Fietkaua0497f92013-02-13 10:51:08 +0100285static struct minstrel_rate_stats *
286minstrel_ht_get_stats(struct minstrel_priv *mp, struct minstrel_ht_sta *mi,
287 struct ieee80211_tx_rate *rate)
288{
289 int group, idx;
290
291 if (rate->flags & IEEE80211_TX_RC_MCS) {
292 group = minstrel_ht_get_group_idx(rate);
Karl Beldan7a5e3fa2013-11-11 13:12:55 +0100293 idx = rate->idx % 8;
Karl Beldan92082472014-10-21 10:38:38 +0200294 } else if (rate->flags & IEEE80211_TX_RC_VHT_MCS) {
295 group = minstrel_vht_get_group_idx(rate);
296 idx = ieee80211_rate_get_vht_mcs(rate);
Felix Fietkaua0497f92013-02-13 10:51:08 +0100297 } else {
298 group = MINSTREL_CCK_GROUP;
299
300 for (idx = 0; idx < ARRAY_SIZE(mp->cck_rates); idx++)
301 if (rate->idx == mp->cck_rates[idx])
302 break;
303
304 /* short preamble */
Felix Fietkau41d08582016-12-14 20:46:54 +0100305 if (!(mi->supported[group] & BIT(idx)))
Felix Fietkaua0497f92013-02-13 10:51:08 +0100306 idx += 4;
307 }
308 return &mi->groups[group].rates[idx];
309}
310
Felix Fietkauec8aa662010-05-13 16:48:03 +0200311static inline struct minstrel_rate_stats *
312minstrel_get_ratestats(struct minstrel_ht_sta *mi, int index)
313{
314 return &mi->groups[index / MCS_GROUP_RATES].rates[index % MCS_GROUP_RATES];
315}
316
Felix Fietkauec8aa662010-05-13 16:48:03 +0200317/*
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100318 * Return current throughput based on the average A-MPDU length, taking into
319 * account the expected number of retransmissions and their expected length
Felix Fietkauec8aa662010-05-13 16:48:03 +0200320 */
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100321int
Thomas Huehn50e55a82015-03-24 21:09:41 +0100322minstrel_ht_get_tp_avg(struct minstrel_ht_sta *mi, int group, int rate,
323 int prob_ewma)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200324{
Felix Fietkaued97a132013-03-02 21:20:12 +0100325 unsigned int nsecs = 0;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200326
Thomas Huehn91340732015-03-24 21:09:39 +0100327 /* do not account throughput if sucess prob is below 10% */
Thomas Huehn50e55a82015-03-24 21:09:41 +0100328 if (prob_ewma < MINSTREL_FRAC(10, 100))
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100329 return 0;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200330
Felix Fietkaua0497f92013-02-13 10:51:08 +0100331 if (group != MINSTREL_CCK_GROUP)
Felix Fietkaued97a132013-03-02 21:20:12 +0100332 nsecs = 1000 * mi->overhead / MINSTREL_TRUNC(mi->avg_ampdu_len);
Felix Fietkaua0497f92013-02-13 10:51:08 +0100333
Felix Fietkaued97a132013-03-02 21:20:12 +0100334 nsecs += minstrel_mcs_groups[group].duration[rate];
Felix Fietkaued97a132013-03-02 21:20:12 +0100335
Thomas Huehn50e55a82015-03-24 21:09:41 +0100336 /*
337 * For the throughput calculation, limit the probability value to 90% to
338 * account for collision related packet error rate fluctuation
339 * (prob is scaled - see MINSTREL_FRAC above)
340 */
341 if (prob_ewma > MINSTREL_FRAC(90, 100))
342 return MINSTREL_TRUNC(100000 * ((MINSTREL_FRAC(90, 100) * 1000)
343 / nsecs));
344 else
345 return MINSTREL_TRUNC(100000 * ((prob_ewma * 1000) / nsecs));
Felix Fietkauec8aa662010-05-13 16:48:03 +0200346}
347
348/*
Thomas Huehn59358392014-09-09 23:22:14 +0200349 * Find & sort topmost throughput rates
350 *
351 * If multiple rates provide equal throughput the sorting is based on their
352 * current success probability. Higher success probability is preferred among
353 * MCS groups, CCK rates do not provide aggregation and are therefore at last.
354 */
355static void
Karl Beldand4d141c2014-10-20 15:45:59 +0200356minstrel_ht_sort_best_tp_rates(struct minstrel_ht_sta *mi, u16 index,
357 u16 *tp_list)
Thomas Huehn59358392014-09-09 23:22:14 +0200358{
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100359 int cur_group, cur_idx, cur_tp_avg, cur_prob;
360 int tmp_group, tmp_idx, tmp_tp_avg, tmp_prob;
Thomas Huehn59358392014-09-09 23:22:14 +0200361 int j = MAX_THR_RATES;
362
363 cur_group = index / MCS_GROUP_RATES;
364 cur_idx = index % MCS_GROUP_RATES;
Thomas Huehn91340732015-03-24 21:09:39 +0100365 cur_prob = mi->groups[cur_group].rates[cur_idx].prob_ewma;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100366 cur_tp_avg = minstrel_ht_get_tp_avg(mi, cur_group, cur_idx, cur_prob);
Thomas Huehn59358392014-09-09 23:22:14 +0200367
Felix Fietkau280ba512014-11-18 22:35:31 +0100368 do {
Thomas Huehn59358392014-09-09 23:22:14 +0200369 tmp_group = tp_list[j - 1] / MCS_GROUP_RATES;
370 tmp_idx = tp_list[j - 1] % MCS_GROUP_RATES;
Thomas Huehn91340732015-03-24 21:09:39 +0100371 tmp_prob = mi->groups[tmp_group].rates[tmp_idx].prob_ewma;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100372 tmp_tp_avg = minstrel_ht_get_tp_avg(mi, tmp_group, tmp_idx,
373 tmp_prob);
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100374 if (cur_tp_avg < tmp_tp_avg ||
375 (cur_tp_avg == tmp_tp_avg && cur_prob <= tmp_prob))
Felix Fietkau280ba512014-11-18 22:35:31 +0100376 break;
377 j--;
378 } while (j > 0);
Thomas Huehn59358392014-09-09 23:22:14 +0200379
380 if (j < MAX_THR_RATES - 1) {
381 memmove(&tp_list[j + 1], &tp_list[j], (sizeof(*tp_list) *
382 (MAX_THR_RATES - (j + 1))));
383 }
384 if (j < MAX_THR_RATES)
385 tp_list[j] = index;
386}
387
388/*
389 * Find and set the topmost probability rate per sta and per group
390 */
391static void
Karl Beldand4d141c2014-10-20 15:45:59 +0200392minstrel_ht_set_best_prob_rate(struct minstrel_ht_sta *mi, u16 index)
Thomas Huehn59358392014-09-09 23:22:14 +0200393{
394 struct minstrel_mcs_group_data *mg;
Thomas Huehn91340732015-03-24 21:09:39 +0100395 struct minstrel_rate_stats *mrs;
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100396 int tmp_group, tmp_idx, tmp_tp_avg, tmp_prob;
397 int max_tp_group, cur_tp_avg, cur_group, cur_idx;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100398 int max_gpr_group, max_gpr_idx;
399 int max_gpr_tp_avg, max_gpr_prob;
Thomas Huehn59358392014-09-09 23:22:14 +0200400
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100401 cur_group = index / MCS_GROUP_RATES;
402 cur_idx = index % MCS_GROUP_RATES;
Thomas Huehn59358392014-09-09 23:22:14 +0200403 mg = &mi->groups[index / MCS_GROUP_RATES];
Thomas Huehn91340732015-03-24 21:09:39 +0100404 mrs = &mg->rates[index % MCS_GROUP_RATES];
Thomas Huehn59358392014-09-09 23:22:14 +0200405
406 tmp_group = mi->max_prob_rate / MCS_GROUP_RATES;
407 tmp_idx = mi->max_prob_rate % MCS_GROUP_RATES;
Thomas Huehn91340732015-03-24 21:09:39 +0100408 tmp_prob = mi->groups[tmp_group].rates[tmp_idx].prob_ewma;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100409 tmp_tp_avg = minstrel_ht_get_tp_avg(mi, tmp_group, tmp_idx, tmp_prob);
Thomas Huehn59358392014-09-09 23:22:14 +0200410
411 /* if max_tp_rate[0] is from MCS_GROUP max_prob_rate get selected from
412 * MCS_GROUP as well as CCK_GROUP rates do not allow aggregation */
413 max_tp_group = mi->max_tp_rate[0] / MCS_GROUP_RATES;
414 if((index / MCS_GROUP_RATES == MINSTREL_CCK_GROUP) &&
415 (max_tp_group != MINSTREL_CCK_GROUP))
416 return;
417
Konstantin Khlebnikovf84a9372016-01-29 11:35:12 +0300418 max_gpr_group = mg->max_group_prob_rate / MCS_GROUP_RATES;
419 max_gpr_idx = mg->max_group_prob_rate % MCS_GROUP_RATES;
420 max_gpr_prob = mi->groups[max_gpr_group].rates[max_gpr_idx].prob_ewma;
421
Thomas Huehn91340732015-03-24 21:09:39 +0100422 if (mrs->prob_ewma > MINSTREL_FRAC(75, 100)) {
Thomas Huehn50e55a82015-03-24 21:09:41 +0100423 cur_tp_avg = minstrel_ht_get_tp_avg(mi, cur_group, cur_idx,
424 mrs->prob_ewma);
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100425 if (cur_tp_avg > tmp_tp_avg)
Thomas Huehn59358392014-09-09 23:22:14 +0200426 mi->max_prob_rate = index;
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100427
Thomas Huehn50e55a82015-03-24 21:09:41 +0100428 max_gpr_tp_avg = minstrel_ht_get_tp_avg(mi, max_gpr_group,
429 max_gpr_idx,
430 max_gpr_prob);
431 if (cur_tp_avg > max_gpr_tp_avg)
Thomas Huehn59358392014-09-09 23:22:14 +0200432 mg->max_group_prob_rate = index;
433 } else {
Thomas Huehn91340732015-03-24 21:09:39 +0100434 if (mrs->prob_ewma > tmp_prob)
Thomas Huehn59358392014-09-09 23:22:14 +0200435 mi->max_prob_rate = index;
Konstantin Khlebnikovf84a9372016-01-29 11:35:12 +0300436 if (mrs->prob_ewma > max_gpr_prob)
Thomas Huehn59358392014-09-09 23:22:14 +0200437 mg->max_group_prob_rate = index;
438 }
439}
440
441
442/*
443 * Assign new rate set per sta and use CCK rates only if the fastest
444 * rate (max_tp_rate[0]) is from CCK group. This prohibits such sorted
445 * rate sets where MCS and CCK rates are mixed, because CCK rates can
446 * not use aggregation.
447 */
448static void
449minstrel_ht_assign_best_tp_rates(struct minstrel_ht_sta *mi,
Karl Beldand4d141c2014-10-20 15:45:59 +0200450 u16 tmp_mcs_tp_rate[MAX_THR_RATES],
451 u16 tmp_cck_tp_rate[MAX_THR_RATES])
Thomas Huehn59358392014-09-09 23:22:14 +0200452{
Thomas Huehn50e55a82015-03-24 21:09:41 +0100453 unsigned int tmp_group, tmp_idx, tmp_cck_tp, tmp_mcs_tp, tmp_prob;
Thomas Huehn59358392014-09-09 23:22:14 +0200454 int i;
455
456 tmp_group = tmp_cck_tp_rate[0] / MCS_GROUP_RATES;
457 tmp_idx = tmp_cck_tp_rate[0] % MCS_GROUP_RATES;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100458 tmp_prob = mi->groups[tmp_group].rates[tmp_idx].prob_ewma;
459 tmp_cck_tp = minstrel_ht_get_tp_avg(mi, tmp_group, tmp_idx, tmp_prob);
Thomas Huehn59358392014-09-09 23:22:14 +0200460
461 tmp_group = tmp_mcs_tp_rate[0] / MCS_GROUP_RATES;
462 tmp_idx = tmp_mcs_tp_rate[0] % MCS_GROUP_RATES;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100463 tmp_prob = mi->groups[tmp_group].rates[tmp_idx].prob_ewma;
464 tmp_mcs_tp = minstrel_ht_get_tp_avg(mi, tmp_group, tmp_idx, tmp_prob);
Thomas Huehn59358392014-09-09 23:22:14 +0200465
466 if (tmp_cck_tp > tmp_mcs_tp) {
467 for(i = 0; i < MAX_THR_RATES; i++) {
468 minstrel_ht_sort_best_tp_rates(mi, tmp_cck_tp_rate[i],
469 tmp_mcs_tp_rate);
470 }
471 }
472
473}
474
475/*
476 * Try to increase robustness of max_prob rate by decrease number of
477 * streams if possible.
478 */
479static inline void
480minstrel_ht_prob_rate_reduce_streams(struct minstrel_ht_sta *mi)
481{
482 struct minstrel_mcs_group_data *mg;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100483 int tmp_max_streams, group, tmp_idx, tmp_prob;
Thomas Huehn59358392014-09-09 23:22:14 +0200484 int tmp_tp = 0;
485
486 tmp_max_streams = minstrel_mcs_groups[mi->max_tp_rate[0] /
487 MCS_GROUP_RATES].streams;
488 for (group = 0; group < ARRAY_SIZE(minstrel_mcs_groups); group++) {
489 mg = &mi->groups[group];
Felix Fietkau41d08582016-12-14 20:46:54 +0100490 if (!mi->supported[group] || group == MINSTREL_CCK_GROUP)
Thomas Huehn59358392014-09-09 23:22:14 +0200491 continue;
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100492
493 tmp_idx = mg->max_group_prob_rate % MCS_GROUP_RATES;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100494 tmp_prob = mi->groups[group].rates[tmp_idx].prob_ewma;
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100495
Thomas Huehn50e55a82015-03-24 21:09:41 +0100496 if (tmp_tp < minstrel_ht_get_tp_avg(mi, group, tmp_idx, tmp_prob) &&
Thomas Huehn59358392014-09-09 23:22:14 +0200497 (minstrel_mcs_groups[group].streams < tmp_max_streams)) {
498 mi->max_prob_rate = mg->max_group_prob_rate;
Thomas Huehn6a27b2c402015-03-24 21:09:40 +0100499 tmp_tp = minstrel_ht_get_tp_avg(mi, group,
Thomas Huehn50e55a82015-03-24 21:09:41 +0100500 tmp_idx,
501 tmp_prob);
Thomas Huehn59358392014-09-09 23:22:14 +0200502 }
503 }
504}
505
506/*
Felix Fietkauec8aa662010-05-13 16:48:03 +0200507 * Update rate statistics and select new primary rates
508 *
509 * Rules for rate selection:
510 * - max_prob_rate must use only one stream, as a tradeoff between delivery
511 * probability and throughput during strong fluctuations
Thomas Huehn59358392014-09-09 23:22:14 +0200512 * - as long as the max prob rate has a probability of more than 75%, pick
Felix Fietkauec8aa662010-05-13 16:48:03 +0200513 * higher throughput rates, even if the probablity is a bit lower
514 */
515static void
516minstrel_ht_update_stats(struct minstrel_priv *mp, struct minstrel_ht_sta *mi)
517{
518 struct minstrel_mcs_group_data *mg;
Thomas Huehn91340732015-03-24 21:09:39 +0100519 struct minstrel_rate_stats *mrs;
Thomas Huehn50e55a82015-03-24 21:09:41 +0100520 int group, i, j, cur_prob;
Karl Beldand4d141c2014-10-20 15:45:59 +0200521 u16 tmp_mcs_tp_rate[MAX_THR_RATES], tmp_group_tp_rate[MAX_THR_RATES];
522 u16 tmp_cck_tp_rate[MAX_THR_RATES], index;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200523
524 if (mi->ampdu_packets > 0) {
525 mi->avg_ampdu_len = minstrel_ewma(mi->avg_ampdu_len,
526 MINSTREL_FRAC(mi->ampdu_len, mi->ampdu_packets), EWMA_LEVEL);
527 mi->ampdu_len = 0;
528 mi->ampdu_packets = 0;
529 }
530
531 mi->sample_slow = 0;
532 mi->sample_count = 0;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200533
Thomas Huehn59358392014-09-09 23:22:14 +0200534 /* Initialize global rate indexes */
535 for(j = 0; j < MAX_THR_RATES; j++){
536 tmp_mcs_tp_rate[j] = 0;
537 tmp_cck_tp_rate[j] = 0;
538 }
Karl Beldanc2eb5b02013-04-18 14:26:20 +0200539
Thomas Huehn59358392014-09-09 23:22:14 +0200540 /* Find best rate sets within all MCS groups*/
541 for (group = 0; group < ARRAY_SIZE(minstrel_mcs_groups); group++) {
Felix Fietkauec8aa662010-05-13 16:48:03 +0200542
543 mg = &mi->groups[group];
Felix Fietkau41d08582016-12-14 20:46:54 +0100544 if (!mi->supported[group])
Felix Fietkauec8aa662010-05-13 16:48:03 +0200545 continue;
546
Felix Fietkauec8aa662010-05-13 16:48:03 +0200547 mi->sample_count++;
548
Thomas Huehn59358392014-09-09 23:22:14 +0200549 /* (re)Initialize group rate indexes */
550 for(j = 0; j < MAX_THR_RATES; j++)
551 tmp_group_tp_rate[j] = group;
552
Felix Fietkauec8aa662010-05-13 16:48:03 +0200553 for (i = 0; i < MCS_GROUP_RATES; i++) {
Felix Fietkau41d08582016-12-14 20:46:54 +0100554 if (!(mi->supported[group] & BIT(i)))
Felix Fietkauec8aa662010-05-13 16:48:03 +0200555 continue;
556
Karl Beldan351df092013-11-13 23:07:07 +0100557 index = MCS_GROUP_RATES * group + i;
558
Thomas Huehn91340732015-03-24 21:09:39 +0100559 mrs = &mg->rates[i];
560 mrs->retry_updated = false;
561 minstrel_calc_rate_stats(mrs);
Thomas Huehn50e55a82015-03-24 21:09:41 +0100562 cur_prob = mrs->prob_ewma;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200563
Thomas Huehn50e55a82015-03-24 21:09:41 +0100564 if (minstrel_ht_get_tp_avg(mi, group, i, cur_prob) == 0)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200565 continue;
566
Thomas Huehn59358392014-09-09 23:22:14 +0200567 /* Find max throughput rate set */
568 if (group != MINSTREL_CCK_GROUP) {
569 minstrel_ht_sort_best_tp_rates(mi, index,
570 tmp_mcs_tp_rate);
571 } else if (group == MINSTREL_CCK_GROUP) {
572 minstrel_ht_sort_best_tp_rates(mi, index,
573 tmp_cck_tp_rate);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200574 }
575
Thomas Huehn59358392014-09-09 23:22:14 +0200576 /* Find max throughput rate set within a group */
577 minstrel_ht_sort_best_tp_rates(mi, index,
578 tmp_group_tp_rate);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200579
Thomas Huehn59358392014-09-09 23:22:14 +0200580 /* Find max probability rate per group and global */
581 minstrel_ht_set_best_prob_rate(mi, index);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200582 }
Thomas Huehn59358392014-09-09 23:22:14 +0200583
584 memcpy(mg->max_group_tp_rate, tmp_group_tp_rate,
585 sizeof(mg->max_group_tp_rate));
Felix Fietkauec8aa662010-05-13 16:48:03 +0200586 }
587
Thomas Huehn59358392014-09-09 23:22:14 +0200588 /* Assign new rate set per sta */
589 minstrel_ht_assign_best_tp_rates(mi, tmp_mcs_tp_rate, tmp_cck_tp_rate);
590 memcpy(mi->max_tp_rate, tmp_mcs_tp_rate, sizeof(mi->max_tp_rate));
591
592 /* Try to increase robustness of max_prob_rate*/
593 minstrel_ht_prob_rate_reduce_streams(mi);
594
Felix Fietkau96d4ac32013-03-02 21:20:14 +0100595 /* try to sample all available rates during each interval */
596 mi->sample_count *= 8;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200597
Lorenzo Bianconi37feb7e2013-08-27 16:59:47 +0200598#ifdef CONFIG_MAC80211_DEBUGFS
599 /* use fixed index if set */
600 if (mp->fixed_rate_idx != -1) {
Thomas Huehn59358392014-09-09 23:22:14 +0200601 for (i = 0; i < 4; i++)
602 mi->max_tp_rate[i] = mp->fixed_rate_idx;
Lorenzo Bianconi37feb7e2013-08-27 16:59:47 +0200603 mi->max_prob_rate = mp->fixed_rate_idx;
604 }
605#endif
Felix Fietkaua299c6d2013-03-02 21:20:13 +0100606
Thomas Huehn59358392014-09-09 23:22:14 +0200607 /* Reset update timer */
Thomas Huehn91340732015-03-24 21:09:39 +0100608 mi->last_stats_update = jiffies;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200609}
610
611static bool
Felix Fietkaua0497f92013-02-13 10:51:08 +0100612minstrel_ht_txstat_valid(struct minstrel_priv *mp, struct ieee80211_tx_rate *rate)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200613{
Helmut Schaab79296b2011-11-14 15:28:19 +0100614 if (rate->idx < 0)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200615 return false;
616
Helmut Schaab79296b2011-11-14 15:28:19 +0100617 if (!rate->count)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200618 return false;
619
Karl Beldan92082472014-10-21 10:38:38 +0200620 if (rate->flags & IEEE80211_TX_RC_MCS ||
621 rate->flags & IEEE80211_TX_RC_VHT_MCS)
Felix Fietkaua0497f92013-02-13 10:51:08 +0100622 return true;
623
624 return rate->idx == mp->cck_rates[0] ||
625 rate->idx == mp->cck_rates[1] ||
626 rate->idx == mp->cck_rates[2] ||
627 rate->idx == mp->cck_rates[3];
Felix Fietkauec8aa662010-05-13 16:48:03 +0200628}
629
630static void
Thomas Huehn91340732015-03-24 21:09:39 +0100631minstrel_set_next_sample_idx(struct minstrel_ht_sta *mi)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200632{
633 struct minstrel_mcs_group_data *mg;
634
635 for (;;) {
636 mi->sample_group++;
637 mi->sample_group %= ARRAY_SIZE(minstrel_mcs_groups);
638 mg = &mi->groups[mi->sample_group];
639
Felix Fietkau41d08582016-12-14 20:46:54 +0100640 if (!mi->supported[mi->sample_group])
Felix Fietkauec8aa662010-05-13 16:48:03 +0200641 continue;
642
643 if (++mg->index >= MCS_GROUP_RATES) {
644 mg->index = 0;
645 if (++mg->column >= ARRAY_SIZE(sample_table))
646 mg->column = 0;
647 }
648 break;
649 }
650}
651
652static void
Karl Beldand4d141c2014-10-20 15:45:59 +0200653minstrel_downgrade_rate(struct minstrel_ht_sta *mi, u16 *idx, bool primary)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200654{
655 int group, orig_group;
656
657 orig_group = group = *idx / MCS_GROUP_RATES;
658 while (group > 0) {
659 group--;
660
Felix Fietkau41d08582016-12-14 20:46:54 +0100661 if (!mi->supported[group])
Felix Fietkauec8aa662010-05-13 16:48:03 +0200662 continue;
663
664 if (minstrel_mcs_groups[group].streams >
665 minstrel_mcs_groups[orig_group].streams)
666 continue;
667
668 if (primary)
Thomas Huehn59358392014-09-09 23:22:14 +0200669 *idx = mi->groups[group].max_group_tp_rate[0];
Felix Fietkauec8aa662010-05-13 16:48:03 +0200670 else
Thomas Huehn59358392014-09-09 23:22:14 +0200671 *idx = mi->groups[group].max_group_tp_rate[1];
Felix Fietkauec8aa662010-05-13 16:48:03 +0200672 break;
673 }
674}
675
676static void
Patrick Kelle6048d7632011-11-15 16:44:48 +0100677minstrel_aggr_check(struct ieee80211_sta *pubsta, struct sk_buff *skb)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200678{
679 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
680 struct sta_info *sta = container_of(pubsta, struct sta_info, sta);
681 u16 tid;
682
Felix Fietkau75769c82014-11-16 00:27:55 +0100683 if (skb_get_queue_mapping(skb) == IEEE80211_AC_VO)
684 return;
685
Felix Fietkauec8aa662010-05-13 16:48:03 +0200686 if (unlikely(!ieee80211_is_data_qos(hdr->frame_control)))
687 return;
688
Johannes Berge133fae2013-08-22 08:36:41 +0200689 if (unlikely(skb->protocol == cpu_to_be16(ETH_P_PAE)))
Felix Fietkauec8aa662010-05-13 16:48:03 +0200690 return;
691
692 tid = *ieee80211_get_qos_ctl(hdr) & IEEE80211_QOS_CTL_TID_MASK;
Johannes Berga622ab72010-06-10 10:21:39 +0200693 if (likely(sta->ampdu_mlme.tid_tx[tid]))
Felix Fietkauec8aa662010-05-13 16:48:03 +0200694 return;
695
Felix Fietkau7a36b932016-02-18 19:49:18 +0100696 ieee80211_start_tx_ba_session(pubsta, tid, 0);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200697}
698
699static void
700minstrel_ht_tx_status(void *priv, struct ieee80211_supported_band *sband,
701 struct ieee80211_sta *sta, void *priv_sta,
Felix Fietkau63558a62014-11-19 20:08:10 +0100702 struct ieee80211_tx_info *info)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200703{
704 struct minstrel_ht_sta_priv *msp = priv_sta;
705 struct minstrel_ht_sta *mi = &msp->ht;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200706 struct ieee80211_tx_rate *ar = info->status.rates;
707 struct minstrel_rate_stats *rate, *rate2;
708 struct minstrel_priv *mp = priv;
Felix Fietkaua8566662013-04-22 16:14:42 +0200709 bool last, update = false;
Johannes Berga544ab72012-11-13 21:36:27 +0100710 int i;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200711
712 if (!msp->is_ht)
Felix Fietkau63558a62014-11-19 20:08:10 +0100713 return mac80211_minstrel.tx_status_noskb(priv, sband, sta,
714 &msp->legacy, info);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200715
716 /* This packet was aggregated but doesn't carry status info */
717 if ((info->flags & IEEE80211_TX_CTL_AMPDU) &&
718 !(info->flags & IEEE80211_TX_STAT_AMPDU))
719 return;
720
Björn Smedman15d46f32010-10-10 22:14:25 +0200721 if (!(info->flags & IEEE80211_TX_STAT_AMPDU)) {
722 info->status.ampdu_ack_len =
723 (info->flags & IEEE80211_TX_STAT_ACK ? 1 : 0);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200724 info->status.ampdu_len = 1;
725 }
726
727 mi->ampdu_packets++;
728 mi->ampdu_len += info->status.ampdu_len;
729
730 if (!mi->sample_wait && !mi->sample_tries && mi->sample_count > 0) {
Felix Fietkauc7317e42010-10-21 02:47:25 +0200731 mi->sample_wait = 16 + 2 * MINSTREL_TRUNC(mi->avg_ampdu_len);
Felix Fietkau52c00a32013-03-05 14:20:19 +0100732 mi->sample_tries = 1;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200733 mi->sample_count--;
734 }
735
Daniel Halperin8d5eab52011-03-09 03:10:18 -0800736 if (info->flags & IEEE80211_TX_CTL_RATE_CTRL_PROBE)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200737 mi->sample_packets += info->status.ampdu_len;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200738
Felix Fietkaua0497f92013-02-13 10:51:08 +0100739 last = !minstrel_ht_txstat_valid(mp, &ar[0]);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200740 for (i = 0; !last; i++) {
741 last = (i == IEEE80211_TX_MAX_RATES - 1) ||
Felix Fietkaua0497f92013-02-13 10:51:08 +0100742 !minstrel_ht_txstat_valid(mp, &ar[i + 1]);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200743
Felix Fietkaua0497f92013-02-13 10:51:08 +0100744 rate = minstrel_ht_get_stats(mp, mi, &ar[i]);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200745
Björn Smedman15d46f32010-10-10 22:14:25 +0200746 if (last)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200747 rate->success += info->status.ampdu_ack_len;
748
749 rate->attempts += ar[i].count * info->status.ampdu_len;
750 }
751
752 /*
753 * check for sudden death of spatial multiplexing,
754 * downgrade to a lower number of streams if necessary.
755 */
Thomas Huehn59358392014-09-09 23:22:14 +0200756 rate = minstrel_get_ratestats(mi, mi->max_tp_rate[0]);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200757 if (rate->attempts > 30 &&
758 MINSTREL_FRAC(rate->success, rate->attempts) <
Felix Fietkaua8566662013-04-22 16:14:42 +0200759 MINSTREL_FRAC(20, 100)) {
Thomas Huehn59358392014-09-09 23:22:14 +0200760 minstrel_downgrade_rate(mi, &mi->max_tp_rate[0], true);
Felix Fietkaua8566662013-04-22 16:14:42 +0200761 update = true;
762 }
Felix Fietkauec8aa662010-05-13 16:48:03 +0200763
Thomas Huehn59358392014-09-09 23:22:14 +0200764 rate2 = minstrel_get_ratestats(mi, mi->max_tp_rate[1]);
Ming Leiecc3d5a2010-07-01 23:19:50 +0800765 if (rate2->attempts > 30 &&
766 MINSTREL_FRAC(rate2->success, rate2->attempts) <
Felix Fietkaua8566662013-04-22 16:14:42 +0200767 MINSTREL_FRAC(20, 100)) {
Thomas Huehn59358392014-09-09 23:22:14 +0200768 minstrel_downgrade_rate(mi, &mi->max_tp_rate[1], false);
Felix Fietkaua8566662013-04-22 16:14:42 +0200769 update = true;
770 }
Felix Fietkauec8aa662010-05-13 16:48:03 +0200771
Thomas Huehn91340732015-03-24 21:09:39 +0100772 if (time_after(jiffies, mi->last_stats_update +
773 (mp->update_interval / 2 * HZ) / 1000)) {
Felix Fietkaua8566662013-04-22 16:14:42 +0200774 update = true;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200775 minstrel_ht_update_stats(mp, mi);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200776 }
Felix Fietkaua8566662013-04-22 16:14:42 +0200777
778 if (update)
779 minstrel_ht_update_rates(mp, mi);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200780}
781
782static void
783minstrel_calc_retransmit(struct minstrel_priv *mp, struct minstrel_ht_sta *mi,
784 int index)
785{
Thomas Huehn91340732015-03-24 21:09:39 +0100786 struct minstrel_rate_stats *mrs;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200787 const struct mcs_group *group;
788 unsigned int tx_time, tx_time_rtscts, tx_time_data;
789 unsigned int cw = mp->cw_min;
Daniel Halperin8fddddf2011-05-10 19:00:45 -0700790 unsigned int ctime = 0;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200791 unsigned int t_slot = 9; /* FIXME */
792 unsigned int ampdu_len = MINSTREL_TRUNC(mi->avg_ampdu_len);
Felix Fietkaua0497f92013-02-13 10:51:08 +0100793 unsigned int overhead = 0, overhead_rtscts = 0;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200794
Thomas Huehn91340732015-03-24 21:09:39 +0100795 mrs = minstrel_get_ratestats(mi, index);
796 if (mrs->prob_ewma < MINSTREL_FRAC(1, 10)) {
797 mrs->retry_count = 1;
798 mrs->retry_count_rtscts = 1;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200799 return;
800 }
801
Thomas Huehn91340732015-03-24 21:09:39 +0100802 mrs->retry_count = 2;
803 mrs->retry_count_rtscts = 2;
804 mrs->retry_updated = true;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200805
806 group = &minstrel_mcs_groups[index / MCS_GROUP_RATES];
Felix Fietkaued97a132013-03-02 21:20:12 +0100807 tx_time_data = group->duration[index % MCS_GROUP_RATES] * ampdu_len / 1000;
Daniel Halperin8fddddf2011-05-10 19:00:45 -0700808
809 /* Contention time for first 2 tries */
810 ctime = (t_slot * cw) >> 1;
811 cw = min((cw << 1) | 1, mp->cw_max);
812 ctime += (t_slot * cw) >> 1;
813 cw = min((cw << 1) | 1, mp->cw_max);
814
Felix Fietkaua0497f92013-02-13 10:51:08 +0100815 if (index / MCS_GROUP_RATES != MINSTREL_CCK_GROUP) {
816 overhead = mi->overhead;
817 overhead_rtscts = mi->overhead_rtscts;
818 }
819
Daniel Halperin8fddddf2011-05-10 19:00:45 -0700820 /* Total TX time for data and Contention after first 2 tries */
Felix Fietkaua0497f92013-02-13 10:51:08 +0100821 tx_time = ctime + 2 * (overhead + tx_time_data);
822 tx_time_rtscts = ctime + 2 * (overhead_rtscts + tx_time_data);
Daniel Halperin8fddddf2011-05-10 19:00:45 -0700823
824 /* See how many more tries we can fit inside segment size */
Felix Fietkauec8aa662010-05-13 16:48:03 +0200825 do {
Daniel Halperin8fddddf2011-05-10 19:00:45 -0700826 /* Contention time for this try */
827 ctime = (t_slot * cw) >> 1;
828 cw = min((cw << 1) | 1, mp->cw_max);
829
830 /* Total TX time after this try */
Felix Fietkaua0497f92013-02-13 10:51:08 +0100831 tx_time += ctime + overhead + tx_time_data;
832 tx_time_rtscts += ctime + overhead_rtscts + tx_time_data;
Daniel Halperin8fddddf2011-05-10 19:00:45 -0700833
Felix Fietkauec8aa662010-05-13 16:48:03 +0200834 if (tx_time_rtscts < mp->segment_size)
Thomas Huehn91340732015-03-24 21:09:39 +0100835 mrs->retry_count_rtscts++;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200836 } while ((tx_time < mp->segment_size) &&
Thomas Huehn91340732015-03-24 21:09:39 +0100837 (++mrs->retry_count < mp->max_retry));
Felix Fietkauec8aa662010-05-13 16:48:03 +0200838}
839
840
841static void
842minstrel_ht_set_rate(struct minstrel_priv *mp, struct minstrel_ht_sta *mi,
Felix Fietkaua8566662013-04-22 16:14:42 +0200843 struct ieee80211_sta_rates *ratetbl, int offset, int index)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200844{
845 const struct mcs_group *group = &minstrel_mcs_groups[index / MCS_GROUP_RATES];
Thomas Huehn91340732015-03-24 21:09:39 +0100846 struct minstrel_rate_stats *mrs;
Felix Fietkaua8566662013-04-22 16:14:42 +0200847 u8 idx;
Karl Beldan3ec373c2014-10-20 15:46:01 +0200848 u16 flags = group->flags;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200849
Thomas Huehn91340732015-03-24 21:09:39 +0100850 mrs = minstrel_get_ratestats(mi, index);
851 if (!mrs->retry_updated)
Felix Fietkauec8aa662010-05-13 16:48:03 +0200852 minstrel_calc_retransmit(mp, mi, index);
853
Thomas Huehn91340732015-03-24 21:09:39 +0100854 if (mrs->prob_ewma < MINSTREL_FRAC(20, 100) || !mrs->retry_count) {
Felix Fietkaua8566662013-04-22 16:14:42 +0200855 ratetbl->rate[offset].count = 2;
856 ratetbl->rate[offset].count_rts = 2;
857 ratetbl->rate[offset].count_cts = 2;
858 } else {
Thomas Huehn91340732015-03-24 21:09:39 +0100859 ratetbl->rate[offset].count = mrs->retry_count;
860 ratetbl->rate[offset].count_cts = mrs->retry_count;
861 ratetbl->rate[offset].count_rts = mrs->retry_count_rtscts;
Felix Fietkaua0497f92013-02-13 10:51:08 +0100862 }
863
Karl Beldan3ec373c2014-10-20 15:46:01 +0200864 if (index / MCS_GROUP_RATES == MINSTREL_CCK_GROUP)
Felix Fietkaua8566662013-04-22 16:14:42 +0200865 idx = mp->cck_rates[index % ARRAY_SIZE(mp->cck_rates)];
Karl Beldan92082472014-10-21 10:38:38 +0200866 else if (flags & IEEE80211_TX_RC_VHT_MCS)
867 idx = ((group->streams - 1) << 4) |
868 ((index % MCS_GROUP_RATES) & 0xF);
Karl Beldan3ec373c2014-10-20 15:46:01 +0200869 else
Karl Beldan7a5e3fa2013-11-11 13:12:55 +0100870 idx = index % MCS_GROUP_RATES + (group->streams - 1) * 8;
Felix Fietkaua8566662013-04-22 16:14:42 +0200871
Krishna Chaitanyaa3ebb4e2015-06-12 02:34:52 +0530872 /* enable RTS/CTS if needed:
873 * - if station is in dynamic SMPS (and streams > 1)
874 * - for fallback rates, to increase chances of getting through
875 */
Felix Fietkauc36dd3e2016-02-24 12:07:17 +0100876 if (offset > 0 ||
Krishna Chaitanyaa3ebb4e2015-06-12 02:34:52 +0530877 (mi->sta->smps_mode == IEEE80211_SMPS_DYNAMIC &&
878 group->streams > 1)) {
Felix Fietkaua8566662013-04-22 16:14:42 +0200879 ratetbl->rate[offset].count = ratetbl->rate[offset].count_rts;
880 flags |= IEEE80211_TX_RC_USE_RTS_CTS;
881 }
882
883 ratetbl->rate[offset].idx = idx;
884 ratetbl->rate[offset].flags = flags;
885}
886
Felix Fietkau918fe042016-03-03 22:59:01 +0100887static inline int
888minstrel_ht_get_prob_ewma(struct minstrel_ht_sta *mi, int rate)
889{
890 int group = rate / MCS_GROUP_RATES;
891 rate %= MCS_GROUP_RATES;
892 return mi->groups[group].rates[rate].prob_ewma;
893}
894
895static int
896minstrel_ht_get_max_amsdu_len(struct minstrel_ht_sta *mi)
897{
898 int group = mi->max_prob_rate / MCS_GROUP_RATES;
899 const struct mcs_group *g = &minstrel_mcs_groups[group];
900 int rate = mi->max_prob_rate % MCS_GROUP_RATES;
901
902 /* Disable A-MSDU if max_prob_rate is bad */
903 if (mi->groups[group].rates[rate].prob_ewma < MINSTREL_FRAC(50, 100))
904 return 1;
905
906 /* If the rate is slower than single-stream MCS1, make A-MSDU limit small */
907 if (g->duration[rate] > MCS_DURATION(1, 0, 52))
908 return 500;
909
910 /*
911 * If the rate is slower than single-stream MCS4, limit A-MSDU to usual
912 * data packet size
913 */
914 if (g->duration[rate] > MCS_DURATION(1, 0, 104))
915 return 1600;
916
917 /*
918 * If the rate is slower than single-stream MCS7, or if the max throughput
919 * rate success probability is less than 75%, limit A-MSDU to twice the usual
920 * data packet size
921 */
922 if (g->duration[rate] > MCS_DURATION(1, 0, 260) ||
923 (minstrel_ht_get_prob_ewma(mi, mi->max_tp_rate[0]) <
924 MINSTREL_FRAC(75, 100)))
925 return 3200;
926
927 /*
928 * HT A-MPDU limits maximum MPDU size under BA agreement to 4095 bytes.
929 * Since aggregation sessions are started/stopped without txq flush, use
930 * the limit here to avoid the complexity of having to de-aggregate
931 * packets in the queue.
932 */
933 if (!mi->sta->vht_cap.vht_supported)
934 return IEEE80211_MAX_MPDU_LEN_HT_BA;
935
936 /* unlimited */
937 return 0;
938}
939
Felix Fietkaua8566662013-04-22 16:14:42 +0200940static void
941minstrel_ht_update_rates(struct minstrel_priv *mp, struct minstrel_ht_sta *mi)
942{
943 struct ieee80211_sta_rates *rates;
944 int i = 0;
945
946 rates = kzalloc(sizeof(*rates), GFP_ATOMIC);
947 if (!rates)
948 return;
949
Thomas Huehn59358392014-09-09 23:22:14 +0200950 /* Start with max_tp_rate[0] */
951 minstrel_ht_set_rate(mp, mi, rates, i++, mi->max_tp_rate[0]);
Felix Fietkaua8566662013-04-22 16:14:42 +0200952
953 if (mp->hw->max_rates >= 3) {
Thomas Huehn59358392014-09-09 23:22:14 +0200954 /* At least 3 tx rates supported, use max_tp_rate[1] next */
955 minstrel_ht_set_rate(mp, mi, rates, i++, mi->max_tp_rate[1]);
Felix Fietkaua8566662013-04-22 16:14:42 +0200956 }
957
958 if (mp->hw->max_rates >= 2) {
959 /*
960 * At least 2 tx rates supported, use max_prob_rate next */
961 minstrel_ht_set_rate(mp, mi, rates, i++, mi->max_prob_rate);
962 }
963
Felix Fietkau918fe042016-03-03 22:59:01 +0100964 mi->sta->max_rc_amsdu_len = minstrel_ht_get_max_amsdu_len(mi);
Felix Fietkaua8566662013-04-22 16:14:42 +0200965 rates->rate[i].idx = -1;
966 rate_control_set_rates(mp->hw, mi->sta, rates);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200967}
968
969static inline int
970minstrel_get_duration(int index)
971{
972 const struct mcs_group *group = &minstrel_mcs_groups[index / MCS_GROUP_RATES];
973 return group->duration[index % MCS_GROUP_RATES];
974}
975
976static int
977minstrel_get_sample_rate(struct minstrel_priv *mp, struct minstrel_ht_sta *mi)
978{
Thomas Huehn91340732015-03-24 21:09:39 +0100979 struct minstrel_rate_stats *mrs;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200980 struct minstrel_mcs_group_data *mg;
Thomas Huehn59358392014-09-09 23:22:14 +0200981 unsigned int sample_dur, sample_group, cur_max_tp_streams;
Felix Fietkau06171e92016-03-03 23:25:42 +0100982 int tp_rate1, tp_rate2;
Felix Fietkauec8aa662010-05-13 16:48:03 +0200983 int sample_idx = 0;
984
985 if (mi->sample_wait > 0) {
986 mi->sample_wait--;
987 return -1;
988 }
989
990 if (!mi->sample_tries)
991 return -1;
992
Felix Fietkau965237a2013-03-03 12:49:51 +0100993 sample_group = mi->sample_group;
Karl Beldanf12140c2013-11-11 13:10:49 +0100994 mg = &mi->groups[sample_group];
995 sample_idx = sample_table[mg->column][mg->index];
Thomas Huehn91340732015-03-24 21:09:39 +0100996 minstrel_set_next_sample_idx(mi);
Felix Fietkauec8aa662010-05-13 16:48:03 +0200997
Felix Fietkau41d08582016-12-14 20:46:54 +0100998 if (!(mi->supported[sample_group] & BIT(sample_idx)))
Karl Beldanf12140c2013-11-11 13:10:49 +0100999 return -1;
1000
Thomas Huehn91340732015-03-24 21:09:39 +01001001 mrs = &mg->rates[sample_idx];
Karl Beldanf12140c2013-11-11 13:10:49 +01001002 sample_idx += sample_group * MCS_GROUP_RATES;
1003
Felix Fietkau06171e92016-03-03 23:25:42 +01001004 /* Set tp_rate1, tp_rate2 to the highest / second highest max_tp_rate */
1005 if (minstrel_get_duration(mi->max_tp_rate[0]) >
1006 minstrel_get_duration(mi->max_tp_rate[1])) {
1007 tp_rate1 = mi->max_tp_rate[1];
1008 tp_rate2 = mi->max_tp_rate[0];
1009 } else {
1010 tp_rate1 = mi->max_tp_rate[0];
1011 tp_rate2 = mi->max_tp_rate[1];
1012 }
1013
Felix Fietkauec8aa662010-05-13 16:48:03 +02001014 /*
Helmut Schaaba6fa292012-03-14 13:31:11 +01001015 * Sampling might add some overhead (RTS, no aggregation)
Felix Fietkau06171e92016-03-03 23:25:42 +01001016 * to the frame. Hence, don't use sampling for the highest currently
1017 * used highest throughput or probability rate.
Helmut Schaaba6fa292012-03-14 13:31:11 +01001018 */
Felix Fietkau06171e92016-03-03 23:25:42 +01001019 if (sample_idx == mi->max_tp_rate[0] || sample_idx == mi->max_prob_rate)
Helmut Schaaba6fa292012-03-14 13:31:11 +01001020 return -1;
Felix Fietkaua0ca7962013-03-16 17:00:27 +01001021
Helmut Schaaba6fa292012-03-14 13:31:11 +01001022 /*
Felix Fietkaubc96f242013-03-16 17:00:26 +01001023 * Do not sample if the probability is already higher than 95%
1024 * to avoid wasting airtime.
Felix Fietkauec8aa662010-05-13 16:48:03 +02001025 */
Thomas Huehn91340732015-03-24 21:09:39 +01001026 if (mrs->prob_ewma > MINSTREL_FRAC(95, 100))
Daniel Halperin8d5eab52011-03-09 03:10:18 -08001027 return -1;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001028
1029 /*
1030 * Make sure that lower rates get sampled only occasionally,
1031 * if the link is working perfectly.
1032 */
Thomas Huehn59358392014-09-09 23:22:14 +02001033
Felix Fietkau06171e92016-03-03 23:25:42 +01001034 cur_max_tp_streams = minstrel_mcs_groups[tp_rate1 /
Thomas Huehn59358392014-09-09 23:22:14 +02001035 MCS_GROUP_RATES].streams;
Felix Fietkau965237a2013-03-03 12:49:51 +01001036 sample_dur = minstrel_get_duration(sample_idx);
Felix Fietkau06171e92016-03-03 23:25:42 +01001037 if (sample_dur >= minstrel_get_duration(tp_rate2) &&
Thomas Huehn59358392014-09-09 23:22:14 +02001038 (cur_max_tp_streams - 1 <
Felix Fietkau965237a2013-03-03 12:49:51 +01001039 minstrel_mcs_groups[sample_group].streams ||
1040 sample_dur >= minstrel_get_duration(mi->max_prob_rate))) {
Thomas Huehn91340732015-03-24 21:09:39 +01001041 if (mrs->sample_skipped < 20)
Daniel Halperin8d5eab52011-03-09 03:10:18 -08001042 return -1;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001043
1044 if (mi->sample_slow++ > 2)
Daniel Halperin8d5eab52011-03-09 03:10:18 -08001045 return -1;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001046 }
Felix Fietkau098b8af2013-03-03 12:49:52 +01001047 mi->sample_tries--;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001048
1049 return sample_idx;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001050}
1051
1052static void
1053minstrel_ht_get_rate(void *priv, struct ieee80211_sta *sta, void *priv_sta,
1054 struct ieee80211_tx_rate_control *txrc)
1055{
Felix Fietkaua8566662013-04-22 16:14:42 +02001056 const struct mcs_group *sample_group;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001057 struct ieee80211_tx_info *info = IEEE80211_SKB_CB(txrc->skb);
Felix Fietkaua8566662013-04-22 16:14:42 +02001058 struct ieee80211_tx_rate *rate = &info->status.rates[0];
Felix Fietkauec8aa662010-05-13 16:48:03 +02001059 struct minstrel_ht_sta_priv *msp = priv_sta;
1060 struct minstrel_ht_sta *mi = &msp->ht;
1061 struct minstrel_priv *mp = priv;
1062 int sample_idx;
1063
1064 if (rate_control_send_low(sta, priv_sta, txrc))
1065 return;
1066
1067 if (!msp->is_ht)
1068 return mac80211_minstrel.get_rate(priv, sta, &msp->legacy, txrc);
1069
Felix Fietkau95943422014-11-19 20:08:07 +01001070 if (!(info->flags & IEEE80211_TX_CTL_AMPDU) &&
1071 mi->max_prob_rate / MCS_GROUP_RATES != MINSTREL_CCK_GROUP)
1072 minstrel_aggr_check(sta, txrc->skb);
1073
Felix Fietkauec8aa662010-05-13 16:48:03 +02001074 info->flags |= mi->tx_flags;
Helmut Schaa6de062c2011-08-01 11:32:53 +02001075
Lorenzo Bianconi37feb7e2013-08-27 16:59:47 +02001076#ifdef CONFIG_MAC80211_DEBUGFS
1077 if (mp->fixed_rate_idx != -1)
1078 return;
1079#endif
1080
Helmut Schaa6de062c2011-08-01 11:32:53 +02001081 /* Don't use EAPOL frames for sampling on non-mrr hw */
1082 if (mp->hw->max_rates == 1 &&
Johannes Bergaf61a162013-07-02 18:09:12 +02001083 (info->control.flags & IEEE80211_TX_CTRL_PORT_CTRL_PROTO))
Helmut Schaa6de062c2011-08-01 11:32:53 +02001084 sample_idx = -1;
1085 else
1086 sample_idx = minstrel_get_sample_rate(mp, mi);
Zefir Kurtisi24f75802011-05-20 20:29:17 +02001087
Felix Fietkauec8aa662010-05-13 16:48:03 +02001088 mi->total_packets++;
1089
1090 /* wraparound */
1091 if (mi->total_packets == ~0) {
1092 mi->total_packets = 0;
1093 mi->sample_packets = 0;
1094 }
Felix Fietkaua8566662013-04-22 16:14:42 +02001095
1096 if (sample_idx < 0)
1097 return;
1098
1099 sample_group = &minstrel_mcs_groups[sample_idx / MCS_GROUP_RATES];
1100 info->flags |= IEEE80211_TX_CTL_RATE_CTRL_PROBE;
Felix Fietkau1cd15852013-06-28 21:04:35 +02001101 rate->count = 1;
1102
1103 if (sample_idx / MCS_GROUP_RATES == MINSTREL_CCK_GROUP) {
1104 int idx = sample_idx % ARRAY_SIZE(mp->cck_rates);
1105 rate->idx = mp->cck_rates[idx];
Karl Beldan92082472014-10-21 10:38:38 +02001106 } else if (sample_group->flags & IEEE80211_TX_RC_VHT_MCS) {
1107 ieee80211_rate_set_vht(rate, sample_idx % MCS_GROUP_RATES,
1108 sample_group->streams);
Karl Beldan3ec373c2014-10-20 15:46:01 +02001109 } else {
1110 rate->idx = sample_idx % MCS_GROUP_RATES +
1111 (sample_group->streams - 1) * 8;
Felix Fietkau1cd15852013-06-28 21:04:35 +02001112 }
1113
Karl Beldan3ec373c2014-10-20 15:46:01 +02001114 rate->flags = sample_group->flags;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001115}
1116
1117static void
Felix Fietkaua0497f92013-02-13 10:51:08 +01001118minstrel_ht_update_cck(struct minstrel_priv *mp, struct minstrel_ht_sta *mi,
1119 struct ieee80211_supported_band *sband,
1120 struct ieee80211_sta *sta)
1121{
1122 int i;
1123
Johannes Berg57fbcce2016-04-12 15:56:15 +02001124 if (sband->band != NL80211_BAND_2GHZ)
Felix Fietkaua0497f92013-02-13 10:51:08 +01001125 return;
1126
Johannes Berg30686bf2015-06-02 21:39:54 +02001127 if (!ieee80211_hw_check(mp->hw, SUPPORTS_HT_CCK_RATES))
Felix Fietkau2dfca312013-08-20 19:43:54 +02001128 return;
1129
Felix Fietkaua0497f92013-02-13 10:51:08 +01001130 mi->cck_supported = 0;
1131 mi->cck_supported_short = 0;
1132 for (i = 0; i < 4; i++) {
1133 if (!rate_supported(sta, sband->band, mp->cck_rates[i]))
1134 continue;
1135
1136 mi->cck_supported |= BIT(i);
1137 if (sband->bitrates[i].flags & IEEE80211_RATE_SHORT_PREAMBLE)
1138 mi->cck_supported_short |= BIT(i);
1139 }
1140
Felix Fietkau41d08582016-12-14 20:46:54 +01001141 mi->supported[MINSTREL_CCK_GROUP] = mi->cck_supported;
Felix Fietkaua0497f92013-02-13 10:51:08 +01001142}
1143
1144static void
Felix Fietkauec8aa662010-05-13 16:48:03 +02001145minstrel_ht_update_caps(void *priv, struct ieee80211_supported_band *sband,
Simon Wunderlich3de805c2013-07-08 16:55:50 +02001146 struct cfg80211_chan_def *chandef,
Johannes Berg64f68e52012-03-28 10:58:37 +02001147 struct ieee80211_sta *sta, void *priv_sta)
Felix Fietkauec8aa662010-05-13 16:48:03 +02001148{
1149 struct minstrel_priv *mp = priv;
1150 struct minstrel_ht_sta_priv *msp = priv_sta;
1151 struct minstrel_ht_sta *mi = &msp->ht;
1152 struct ieee80211_mcs_info *mcs = &sta->ht_cap.mcs;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001153 u16 sta_cap = sta->ht_cap.cap;
Karl Beldan92082472014-10-21 10:38:38 +02001154 struct ieee80211_sta_vht_cap *vht_cap = &sta->vht_cap;
Felix Fietkau782dda02016-12-14 20:46:55 +01001155 struct sta_info *sinfo = container_of(sta, struct sta_info, sta);
Karl Beldan92082472014-10-21 10:38:38 +02001156 int use_vht;
Felix Fietkau4dc217d2011-03-25 15:30:38 +01001157 int n_supported = 0;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001158 int ack_dur;
1159 int stbc;
1160 int i;
1161
1162 /* fall back to the old minstrel for legacy stations */
Felix Fietkau4dc217d2011-03-25 15:30:38 +01001163 if (!sta->ht_cap.ht_supported)
1164 goto use_legacy;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001165
Karl Beldan8a0ee4f2014-10-20 15:46:00 +02001166 BUILD_BUG_ON(ARRAY_SIZE(minstrel_mcs_groups) != MINSTREL_GROUPS_NB);
Felix Fietkauec8aa662010-05-13 16:48:03 +02001167
Karl Beldan92082472014-10-21 10:38:38 +02001168#ifdef CONFIG_MAC80211_RC_MINSTREL_VHT
1169 if (vht_cap->vht_supported)
1170 use_vht = vht_cap->vht_mcs.tx_mcs_map != cpu_to_le16(~0);
1171 else
1172#endif
1173 use_vht = 0;
1174
Felix Fietkauec8aa662010-05-13 16:48:03 +02001175 msp->is_ht = true;
1176 memset(mi, 0, sizeof(*mi));
Felix Fietkaua8566662013-04-22 16:14:42 +02001177
1178 mi->sta = sta;
Thomas Huehn91340732015-03-24 21:09:39 +01001179 mi->last_stats_update = jiffies;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001180
Simon Wunderlich438b61b2013-07-08 16:55:51 +02001181 ack_dur = ieee80211_frame_duration(sband->band, 10, 60, 1, 1, 0);
1182 mi->overhead = ieee80211_frame_duration(sband->band, 0, 60, 1, 1, 0);
1183 mi->overhead += ack_dur;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001184 mi->overhead_rtscts = mi->overhead + 2 * ack_dur;
1185
1186 mi->avg_ampdu_len = MINSTREL_FRAC(1, 1);
1187
1188 /* When using MRR, sample more on the first attempt, without delay */
1189 if (mp->has_mrr) {
1190 mi->sample_count = 16;
1191 mi->sample_wait = 0;
1192 } else {
1193 mi->sample_count = 8;
1194 mi->sample_wait = 8;
1195 }
1196 mi->sample_tries = 4;
1197
Karl Beldan92082472014-10-21 10:38:38 +02001198 /* TODO tx_flags for vht - ATM the RC API is not fine-grained enough */
1199 if (!use_vht) {
1200 stbc = (sta_cap & IEEE80211_HT_CAP_RX_STBC) >>
1201 IEEE80211_HT_CAP_RX_STBC_SHIFT;
1202 mi->tx_flags |= stbc << IEEE80211_TX_CTL_STBC_SHIFT;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001203
Karl Beldan92082472014-10-21 10:38:38 +02001204 if (sta_cap & IEEE80211_HT_CAP_LDPC_CODING)
1205 mi->tx_flags |= IEEE80211_TX_CTL_LDPC;
1206 }
Felix Fietkauec8aa662010-05-13 16:48:03 +02001207
Felix Fietkauec8aa662010-05-13 16:48:03 +02001208 for (i = 0; i < ARRAY_SIZE(mi->groups); i++) {
Karl Beldan3ec373c2014-10-20 15:46:01 +02001209 u32 gflags = minstrel_mcs_groups[i].flags;
Karl Beldan92082472014-10-21 10:38:38 +02001210 int bw, nss;
Karl Beldan3ec373c2014-10-20 15:46:01 +02001211
Felix Fietkau41d08582016-12-14 20:46:54 +01001212 mi->supported[i] = 0;
Felix Fietkaua0497f92013-02-13 10:51:08 +01001213 if (i == MINSTREL_CCK_GROUP) {
1214 minstrel_ht_update_cck(mp, mi, sband, sta);
1215 continue;
1216 }
1217
Karl Beldan3ec373c2014-10-20 15:46:01 +02001218 if (gflags & IEEE80211_TX_RC_SHORT_GI) {
1219 if (gflags & IEEE80211_TX_RC_40_MHZ_WIDTH) {
Johannes Berge1a0c6b2013-02-07 11:47:44 +01001220 if (!(sta_cap & IEEE80211_HT_CAP_SGI_40))
1221 continue;
1222 } else {
1223 if (!(sta_cap & IEEE80211_HT_CAP_SGI_20))
1224 continue;
1225 }
Felix Fietkauec8aa662010-05-13 16:48:03 +02001226 }
1227
Karl Beldan3ec373c2014-10-20 15:46:01 +02001228 if (gflags & IEEE80211_TX_RC_40_MHZ_WIDTH &&
Johannes Berge1a0c6b2013-02-07 11:47:44 +01001229 sta->bandwidth < IEEE80211_STA_RX_BW_40)
Felix Fietkauec8aa662010-05-13 16:48:03 +02001230 continue;
1231
Karl Beldan92082472014-10-21 10:38:38 +02001232 nss = minstrel_mcs_groups[i].streams;
1233
Helmut Schaae9219772012-03-09 14:13:45 +01001234 /* Mark MCS > 7 as unsupported if STA is in static SMPS mode */
Karl Beldan92082472014-10-21 10:38:38 +02001235 if (sta->smps_mode == IEEE80211_SMPS_STATIC && nss > 1)
Helmut Schaae9219772012-03-09 14:13:45 +01001236 continue;
1237
Karl Beldan92082472014-10-21 10:38:38 +02001238 /* HT rate */
1239 if (gflags & IEEE80211_TX_RC_MCS) {
1240#ifdef CONFIG_MAC80211_RC_MINSTREL_VHT
Karl Beldan9ffe9042014-10-24 14:34:49 +02001241 if (use_vht && minstrel_vht_only)
Karl Beldan92082472014-10-21 10:38:38 +02001242 continue;
1243#endif
Felix Fietkau41d08582016-12-14 20:46:54 +01001244 mi->supported[i] = mcs->rx_mask[nss - 1];
1245 if (mi->supported[i])
Karl Beldan92082472014-10-21 10:38:38 +02001246 n_supported++;
1247 continue;
1248 }
1249
1250 /* VHT rate */
1251 if (!vht_cap->vht_supported ||
1252 WARN_ON(!(gflags & IEEE80211_TX_RC_VHT_MCS)) ||
1253 WARN_ON(gflags & IEEE80211_TX_RC_160_MHZ_WIDTH))
1254 continue;
1255
1256 if (gflags & IEEE80211_TX_RC_80_MHZ_WIDTH) {
1257 if (sta->bandwidth < IEEE80211_STA_RX_BW_80 ||
1258 ((gflags & IEEE80211_TX_RC_SHORT_GI) &&
1259 !(vht_cap->cap & IEEE80211_VHT_CAP_SHORT_GI_80))) {
1260 continue;
1261 }
1262 }
1263
1264 if (gflags & IEEE80211_TX_RC_40_MHZ_WIDTH)
1265 bw = BW_40;
1266 else if (gflags & IEEE80211_TX_RC_80_MHZ_WIDTH)
1267 bw = BW_80;
1268 else
1269 bw = BW_20;
1270
Felix Fietkau41d08582016-12-14 20:46:54 +01001271 mi->supported[i] = minstrel_get_valid_vht_rates(bw, nss,
Karl Beldan92082472014-10-21 10:38:38 +02001272 vht_cap->vht_mcs.tx_mcs_map);
Felix Fietkau4dc217d2011-03-25 15:30:38 +01001273
Felix Fietkau41d08582016-12-14 20:46:54 +01001274 if (mi->supported[i])
Felix Fietkau4dc217d2011-03-25 15:30:38 +01001275 n_supported++;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001276 }
Felix Fietkau4dc217d2011-03-25 15:30:38 +01001277
1278 if (!n_supported)
1279 goto use_legacy;
1280
Felix Fietkau782dda02016-12-14 20:46:55 +01001281 if (test_sta_flag(sinfo, WLAN_STA_SHORT_PREAMBLE))
1282 mi->cck_supported_short |= mi->cck_supported_short << 4;
1283
Felix Fietkaua8566662013-04-22 16:14:42 +02001284 /* create an initial rate table with the lowest supported rates */
Karl Beldana3647362013-04-18 14:26:21 +02001285 minstrel_ht_update_stats(mp, mi);
Felix Fietkaua8566662013-04-22 16:14:42 +02001286 minstrel_ht_update_rates(mp, mi);
Karl Beldana3647362013-04-18 14:26:21 +02001287
Felix Fietkau4dc217d2011-03-25 15:30:38 +01001288 return;
1289
1290use_legacy:
1291 msp->is_ht = false;
1292 memset(&msp->legacy, 0, sizeof(msp->legacy));
1293 msp->legacy.r = msp->ratelist;
1294 msp->legacy.sample_table = msp->sample_table;
Simon Wunderlich3de805c2013-07-08 16:55:50 +02001295 return mac80211_minstrel.rate_init(priv, sband, chandef, sta,
1296 &msp->legacy);
Felix Fietkauec8aa662010-05-13 16:48:03 +02001297}
1298
1299static void
1300minstrel_ht_rate_init(void *priv, struct ieee80211_supported_band *sband,
Simon Wunderlich3de805c2013-07-08 16:55:50 +02001301 struct cfg80211_chan_def *chandef,
Felix Fietkauec8aa662010-05-13 16:48:03 +02001302 struct ieee80211_sta *sta, void *priv_sta)
1303{
Simon Wunderlich3de805c2013-07-08 16:55:50 +02001304 minstrel_ht_update_caps(priv, sband, chandef, sta, priv_sta);
Felix Fietkauec8aa662010-05-13 16:48:03 +02001305}
1306
1307static void
1308minstrel_ht_rate_update(void *priv, struct ieee80211_supported_band *sband,
Simon Wunderlich3de805c2013-07-08 16:55:50 +02001309 struct cfg80211_chan_def *chandef,
Felix Fietkauec8aa662010-05-13 16:48:03 +02001310 struct ieee80211_sta *sta, void *priv_sta,
Johannes Berg64f68e52012-03-28 10:58:37 +02001311 u32 changed)
Felix Fietkauec8aa662010-05-13 16:48:03 +02001312{
Simon Wunderlich3de805c2013-07-08 16:55:50 +02001313 minstrel_ht_update_caps(priv, sband, chandef, sta, priv_sta);
Felix Fietkauec8aa662010-05-13 16:48:03 +02001314}
1315
1316static void *
1317minstrel_ht_alloc_sta(void *priv, struct ieee80211_sta *sta, gfp_t gfp)
1318{
1319 struct ieee80211_supported_band *sband;
1320 struct minstrel_ht_sta_priv *msp;
1321 struct minstrel_priv *mp = priv;
1322 struct ieee80211_hw *hw = mp->hw;
1323 int max_rates = 0;
1324 int i;
1325
Johannes Berg57fbcce2016-04-12 15:56:15 +02001326 for (i = 0; i < NUM_NL80211_BANDS; i++) {
Felix Fietkauec8aa662010-05-13 16:48:03 +02001327 sband = hw->wiphy->bands[i];
1328 if (sband && sband->n_bitrates > max_rates)
1329 max_rates = sband->n_bitrates;
1330 }
1331
Thomas Huehn472dd352012-06-29 06:26:27 -07001332 msp = kzalloc(sizeof(*msp), gfp);
Felix Fietkauec8aa662010-05-13 16:48:03 +02001333 if (!msp)
1334 return NULL;
1335
1336 msp->ratelist = kzalloc(sizeof(struct minstrel_rate) * max_rates, gfp);
1337 if (!msp->ratelist)
1338 goto error;
1339
1340 msp->sample_table = kmalloc(SAMPLE_COLUMNS * max_rates, gfp);
1341 if (!msp->sample_table)
1342 goto error1;
1343
1344 return msp;
1345
1346error1:
Dan Carpenter7e988012010-07-22 13:14:19 +02001347 kfree(msp->ratelist);
Felix Fietkauec8aa662010-05-13 16:48:03 +02001348error:
1349 kfree(msp);
1350 return NULL;
1351}
1352
1353static void
1354minstrel_ht_free_sta(void *priv, struct ieee80211_sta *sta, void *priv_sta)
1355{
1356 struct minstrel_ht_sta_priv *msp = priv_sta;
1357
1358 kfree(msp->sample_table);
1359 kfree(msp->ratelist);
1360 kfree(msp);
1361}
1362
1363static void *
1364minstrel_ht_alloc(struct ieee80211_hw *hw, struct dentry *debugfsdir)
1365{
1366 return mac80211_minstrel.alloc(hw, debugfsdir);
1367}
1368
1369static void
1370minstrel_ht_free(void *priv)
1371{
1372 mac80211_minstrel.free(priv);
1373}
1374
Antonio Quartullicca674d2014-05-19 21:53:20 +02001375static u32 minstrel_ht_get_expected_throughput(void *priv_sta)
1376{
1377 struct minstrel_ht_sta_priv *msp = priv_sta;
1378 struct minstrel_ht_sta *mi = &msp->ht;
Thomas Huehn50e55a82015-03-24 21:09:41 +01001379 int i, j, prob, tp_avg;
Antonio Quartullicca674d2014-05-19 21:53:20 +02001380
1381 if (!msp->is_ht)
1382 return mac80211_minstrel.get_expected_throughput(priv_sta);
1383
Thomas Huehn59358392014-09-09 23:22:14 +02001384 i = mi->max_tp_rate[0] / MCS_GROUP_RATES;
1385 j = mi->max_tp_rate[0] % MCS_GROUP_RATES;
Thomas Huehn50e55a82015-03-24 21:09:41 +01001386 prob = mi->groups[i].rates[j].prob_ewma;
Antonio Quartullicca674d2014-05-19 21:53:20 +02001387
Thomas Huehn6a27b2c402015-03-24 21:09:40 +01001388 /* convert tp_avg from pkt per second in kbps */
Sven Eckelmann212c5a52016-02-02 08:12:26 +01001389 tp_avg = minstrel_ht_get_tp_avg(mi, i, j, prob) * 10;
1390 tp_avg = tp_avg * AVG_PKT_SIZE * 8 / 1024;
Thomas Huehn6a27b2c402015-03-24 21:09:40 +01001391
1392 return tp_avg;
Antonio Quartullicca674d2014-05-19 21:53:20 +02001393}
1394
Johannes Berg631ad702014-01-20 23:29:34 +01001395static const struct rate_control_ops mac80211_minstrel_ht = {
Felix Fietkauec8aa662010-05-13 16:48:03 +02001396 .name = "minstrel_ht",
Felix Fietkau63558a62014-11-19 20:08:10 +01001397 .tx_status_noskb = minstrel_ht_tx_status,
Felix Fietkauec8aa662010-05-13 16:48:03 +02001398 .get_rate = minstrel_ht_get_rate,
1399 .rate_init = minstrel_ht_rate_init,
1400 .rate_update = minstrel_ht_rate_update,
1401 .alloc_sta = minstrel_ht_alloc_sta,
1402 .free_sta = minstrel_ht_free_sta,
1403 .alloc = minstrel_ht_alloc,
1404 .free = minstrel_ht_free,
1405#ifdef CONFIG_MAC80211_DEBUGFS
1406 .add_sta_debugfs = minstrel_ht_add_sta_debugfs,
1407 .remove_sta_debugfs = minstrel_ht_remove_sta_debugfs,
1408#endif
Antonio Quartullicca674d2014-05-19 21:53:20 +02001409 .get_expected_throughput = minstrel_ht_get_expected_throughput,
Felix Fietkauec8aa662010-05-13 16:48:03 +02001410};
1411
1412
Johannes Bergf6e1a732014-01-21 00:32:52 +01001413static void __init init_sample_table(void)
Felix Fietkauec8aa662010-05-13 16:48:03 +02001414{
1415 int col, i, new_idx;
1416 u8 rnd[MCS_GROUP_RATES];
1417
1418 memset(sample_table, 0xff, sizeof(sample_table));
1419 for (col = 0; col < SAMPLE_COLUMNS; col++) {
Karl Beldanf7d8ad82013-11-13 10:54:19 +01001420 prandom_bytes(rnd, sizeof(rnd));
Felix Fietkauec8aa662010-05-13 16:48:03 +02001421 for (i = 0; i < MCS_GROUP_RATES; i++) {
Felix Fietkauec8aa662010-05-13 16:48:03 +02001422 new_idx = (i + rnd[i]) % MCS_GROUP_RATES;
Felix Fietkauec8aa662010-05-13 16:48:03 +02001423 while (sample_table[col][new_idx] != 0xff)
1424 new_idx = (new_idx + 1) % MCS_GROUP_RATES;
1425
1426 sample_table[col][new_idx] = i;
1427 }
1428 }
1429}
1430
1431int __init
1432rc80211_minstrel_ht_init(void)
1433{
1434 init_sample_table();
1435 return ieee80211_rate_control_register(&mac80211_minstrel_ht);
1436}
1437
1438void
1439rc80211_minstrel_ht_exit(void)
1440{
1441 ieee80211_rate_control_unregister(&mac80211_minstrel_ht);
1442}