rc80211_pid_algo.c 17 KB

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  1. /*
  2. * Copyright 2002-2005, Instant802 Networks, Inc.
  3. * Copyright 2005, Devicescape Software, Inc.
  4. * Copyright 2007, Mattias Nissler <mattias.nissler@gmx.de>
  5. * Copyright 2007-2008, Stefano Brivio <stefano.brivio@polimi.it>
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License version 2 as
  9. * published by the Free Software Foundation.
  10. */
  11. #include <linux/netdevice.h>
  12. #include <linux/types.h>
  13. #include <linux/skbuff.h>
  14. #include <linux/debugfs.h>
  15. #include <net/mac80211.h>
  16. #include "ieee80211_rate.h"
  17. #include "rc80211_pid.h"
  18. /* This is an implementation of a TX rate control algorithm that uses a PID
  19. * controller. Given a target failed frames rate, the controller decides about
  20. * TX rate changes to meet the target failed frames rate.
  21. *
  22. * The controller basically computes the following:
  23. *
  24. * adj = CP * err + CI * err_avg + CD * (err - last_err) * (1 + sharpening)
  25. *
  26. * where
  27. * adj adjustment value that is used to switch TX rate (see below)
  28. * err current error: target vs. current failed frames percentage
  29. * last_err last error
  30. * err_avg average (i.e. poor man's integral) of recent errors
  31. * sharpening non-zero when fast response is needed (i.e. right after
  32. * association or no frames sent for a long time), heading
  33. * to zero over time
  34. * CP Proportional coefficient
  35. * CI Integral coefficient
  36. * CD Derivative coefficient
  37. *
  38. * CP, CI, CD are subject to careful tuning.
  39. *
  40. * The integral component uses a exponential moving average approach instead of
  41. * an actual sliding window. The advantage is that we don't need to keep an
  42. * array of the last N error values and computation is easier.
  43. *
  44. * Once we have the adj value, we map it to a rate by means of a learning
  45. * algorithm. This algorithm keeps the state of the percentual failed frames
  46. * difference between rates. The behaviour of the lowest available rate is kept
  47. * as a reference value, and every time we switch between two rates, we compute
  48. * the difference between the failed frames each rate exhibited. By doing so,
  49. * we compare behaviours which different rates exhibited in adjacent timeslices,
  50. * thus the comparison is minimally affected by external conditions. This
  51. * difference gets propagated to the whole set of measurements, so that the
  52. * reference is always the same. Periodically, we normalize this set so that
  53. * recent events weigh the most. By comparing the adj value with this set, we
  54. * avoid pejorative switches to lower rates and allow for switches to higher
  55. * rates if they behaved well.
  56. *
  57. * Note that for the computations we use a fixed-point representation to avoid
  58. * floating point arithmetic. Hence, all values are shifted left by
  59. * RC_PID_ARITH_SHIFT.
  60. */
  61. /* Adjust the rate while ensuring that we won't switch to a lower rate if it
  62. * exhibited a worse failed frames behaviour and we'll choose the highest rate
  63. * whose failed frames behaviour is not worse than the one of the original rate
  64. * target. While at it, check that the new rate is valid. */
  65. static void rate_control_pid_adjust_rate(struct ieee80211_local *local,
  66. struct sta_info *sta, int adj,
  67. struct rc_pid_rateinfo *rinfo)
  68. {
  69. struct ieee80211_sub_if_data *sdata;
  70. struct ieee80211_supported_band *sband;
  71. int cur_sorted, new_sorted, probe, tmp, n_bitrates, band;
  72. int cur = sta->txrate_idx;
  73. sdata = IEEE80211_DEV_TO_SUB_IF(sta->dev);
  74. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  75. band = sband->band;
  76. n_bitrates = sband->n_bitrates;
  77. /* Map passed arguments to sorted values. */
  78. cur_sorted = rinfo[cur].rev_index;
  79. new_sorted = cur_sorted + adj;
  80. /* Check limits. */
  81. if (new_sorted < 0)
  82. new_sorted = rinfo[0].rev_index;
  83. else if (new_sorted >= n_bitrates)
  84. new_sorted = rinfo[n_bitrates - 1].rev_index;
  85. tmp = new_sorted;
  86. if (adj < 0) {
  87. /* Ensure that the rate decrease isn't disadvantageous. */
  88. for (probe = cur_sorted; probe >= new_sorted; probe--)
  89. if (rinfo[probe].diff <= rinfo[cur_sorted].diff &&
  90. rate_supported(sta, band, rinfo[probe].index))
  91. tmp = probe;
  92. } else {
  93. /* Look for rate increase with zero (or below) cost. */
  94. for (probe = new_sorted + 1; probe < n_bitrates; probe++)
  95. if (rinfo[probe].diff <= rinfo[new_sorted].diff &&
  96. rate_supported(sta, band, rinfo[probe].index))
  97. tmp = probe;
  98. }
  99. /* Fit the rate found to the nearest supported rate. */
  100. do {
  101. if (rate_supported(sta, band, rinfo[tmp].index)) {
  102. sta->txrate_idx = rinfo[tmp].index;
  103. break;
  104. }
  105. if (adj < 0)
  106. tmp--;
  107. else
  108. tmp++;
  109. } while (tmp < n_bitrates && tmp >= 0);
  110. #ifdef CONFIG_MAC80211_DEBUGFS
  111. rate_control_pid_event_rate_change(
  112. &((struct rc_pid_sta_info *)sta->rate_ctrl_priv)->events,
  113. sta->txrate_idx, sband->bitrates[sta->txrate_idx].bitrate);
  114. #endif
  115. }
  116. /* Normalize the failed frames per-rate differences. */
  117. static void rate_control_pid_normalize(struct rc_pid_info *pinfo, int l)
  118. {
  119. int i, norm_offset = pinfo->norm_offset;
  120. struct rc_pid_rateinfo *r = pinfo->rinfo;
  121. if (r[0].diff > norm_offset)
  122. r[0].diff -= norm_offset;
  123. else if (r[0].diff < -norm_offset)
  124. r[0].diff += norm_offset;
  125. for (i = 0; i < l - 1; i++)
  126. if (r[i + 1].diff > r[i].diff + norm_offset)
  127. r[i + 1].diff -= norm_offset;
  128. else if (r[i + 1].diff <= r[i].diff)
  129. r[i + 1].diff += norm_offset;
  130. }
  131. static void rate_control_pid_sample(struct rc_pid_info *pinfo,
  132. struct ieee80211_local *local,
  133. struct sta_info *sta)
  134. {
  135. struct rc_pid_sta_info *spinfo = sta->rate_ctrl_priv;
  136. struct rc_pid_rateinfo *rinfo = pinfo->rinfo;
  137. struct ieee80211_supported_band *sband;
  138. u32 pf;
  139. s32 err_avg;
  140. u32 err_prop;
  141. u32 err_int;
  142. u32 err_der;
  143. int adj, i, j, tmp;
  144. unsigned long period;
  145. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  146. spinfo = sta->rate_ctrl_priv;
  147. /* In case nothing happened during the previous control interval, turn
  148. * the sharpening factor on. */
  149. period = (HZ * pinfo->sampling_period + 500) / 1000;
  150. if (!period)
  151. period = 1;
  152. if (jiffies - spinfo->last_sample > 2 * period)
  153. spinfo->sharp_cnt = pinfo->sharpen_duration;
  154. spinfo->last_sample = jiffies;
  155. /* This should never happen, but in case, we assume the old sample is
  156. * still a good measurement and copy it. */
  157. if (unlikely(spinfo->tx_num_xmit == 0))
  158. pf = spinfo->last_pf;
  159. else {
  160. pf = spinfo->tx_num_failed * 100 / spinfo->tx_num_xmit;
  161. pf <<= RC_PID_ARITH_SHIFT;
  162. }
  163. spinfo->tx_num_xmit = 0;
  164. spinfo->tx_num_failed = 0;
  165. /* If we just switched rate, update the rate behaviour info. */
  166. if (pinfo->oldrate != sta->txrate_idx) {
  167. i = rinfo[pinfo->oldrate].rev_index;
  168. j = rinfo[sta->txrate_idx].rev_index;
  169. tmp = (pf - spinfo->last_pf);
  170. tmp = RC_PID_DO_ARITH_RIGHT_SHIFT(tmp, RC_PID_ARITH_SHIFT);
  171. rinfo[j].diff = rinfo[i].diff + tmp;
  172. pinfo->oldrate = sta->txrate_idx;
  173. }
  174. rate_control_pid_normalize(pinfo, sband->n_bitrates);
  175. /* Compute the proportional, integral and derivative errors. */
  176. err_prop = (pinfo->target << RC_PID_ARITH_SHIFT) - pf;
  177. err_avg = spinfo->err_avg_sc >> pinfo->smoothing_shift;
  178. spinfo->err_avg_sc = spinfo->err_avg_sc - err_avg + err_prop;
  179. err_int = spinfo->err_avg_sc >> pinfo->smoothing_shift;
  180. err_der = (pf - spinfo->last_pf) *
  181. (1 + pinfo->sharpen_factor * spinfo->sharp_cnt);
  182. spinfo->last_pf = pf;
  183. if (spinfo->sharp_cnt)
  184. spinfo->sharp_cnt--;
  185. #ifdef CONFIG_MAC80211_DEBUGFS
  186. rate_control_pid_event_pf_sample(&spinfo->events, pf, err_prop, err_int,
  187. err_der);
  188. #endif
  189. /* Compute the controller output. */
  190. adj = (err_prop * pinfo->coeff_p + err_int * pinfo->coeff_i
  191. + err_der * pinfo->coeff_d);
  192. adj = RC_PID_DO_ARITH_RIGHT_SHIFT(adj, 2 * RC_PID_ARITH_SHIFT);
  193. /* Change rate. */
  194. if (adj)
  195. rate_control_pid_adjust_rate(local, sta, adj, rinfo);
  196. }
  197. static void rate_control_pid_tx_status(void *priv, struct net_device *dev,
  198. struct sk_buff *skb,
  199. struct ieee80211_tx_status *status)
  200. {
  201. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  202. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
  203. struct ieee80211_sub_if_data *sdata;
  204. struct rc_pid_info *pinfo = priv;
  205. struct sta_info *sta;
  206. struct rc_pid_sta_info *spinfo;
  207. unsigned long period;
  208. struct ieee80211_supported_band *sband;
  209. sta = sta_info_get(local, hdr->addr1);
  210. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  211. if (!sta)
  212. return;
  213. /* Don't update the state if we're not controlling the rate. */
  214. sdata = IEEE80211_DEV_TO_SUB_IF(sta->dev);
  215. if (sdata->bss && sdata->bss->force_unicast_rateidx > -1) {
  216. sta->txrate_idx = sdata->bss->max_ratectrl_rateidx;
  217. return;
  218. }
  219. /* Ignore all frames that were sent with a different rate than the rate
  220. * we currently advise mac80211 to use. */
  221. if (status->control.tx_rate != &sband->bitrates[sta->txrate_idx])
  222. goto ignore;
  223. spinfo = sta->rate_ctrl_priv;
  224. spinfo->tx_num_xmit++;
  225. #ifdef CONFIG_MAC80211_DEBUGFS
  226. rate_control_pid_event_tx_status(&spinfo->events, status);
  227. #endif
  228. /* We count frames that totally failed to be transmitted as two bad
  229. * frames, those that made it out but had some retries as one good and
  230. * one bad frame. */
  231. if (status->excessive_retries) {
  232. spinfo->tx_num_failed += 2;
  233. spinfo->tx_num_xmit++;
  234. } else if (status->retry_count) {
  235. spinfo->tx_num_failed++;
  236. spinfo->tx_num_xmit++;
  237. }
  238. if (status->excessive_retries) {
  239. sta->tx_retry_failed++;
  240. sta->tx_num_consecutive_failures++;
  241. sta->tx_num_mpdu_fail++;
  242. } else {
  243. sta->tx_num_consecutive_failures = 0;
  244. sta->tx_num_mpdu_ok++;
  245. }
  246. sta->tx_retry_count += status->retry_count;
  247. sta->tx_num_mpdu_fail += status->retry_count;
  248. /* Update PID controller state. */
  249. period = (HZ * pinfo->sampling_period + 500) / 1000;
  250. if (!period)
  251. period = 1;
  252. if (time_after(jiffies, spinfo->last_sample + period))
  253. rate_control_pid_sample(pinfo, local, sta);
  254. ignore:
  255. sta_info_put(sta);
  256. }
  257. static void rate_control_pid_get_rate(void *priv, struct net_device *dev,
  258. struct ieee80211_supported_band *sband,
  259. struct sk_buff *skb,
  260. struct rate_selection *sel)
  261. {
  262. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  263. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
  264. struct ieee80211_sub_if_data *sdata;
  265. struct sta_info *sta;
  266. int rateidx;
  267. u16 fc;
  268. sta = sta_info_get(local, hdr->addr1);
  269. /* Send management frames and broadcast/multicast data using lowest
  270. * rate. */
  271. fc = le16_to_cpu(hdr->frame_control);
  272. if ((fc & IEEE80211_FCTL_FTYPE) != IEEE80211_FTYPE_DATA ||
  273. is_multicast_ether_addr(hdr->addr1) || !sta) {
  274. sel->rate = rate_lowest(local, sband, sta);
  275. if (sta)
  276. sta_info_put(sta);
  277. return;
  278. }
  279. /* If a forced rate is in effect, select it. */
  280. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  281. if (sdata->bss && sdata->bss->force_unicast_rateidx > -1)
  282. sta->txrate_idx = sdata->bss->force_unicast_rateidx;
  283. rateidx = sta->txrate_idx;
  284. if (rateidx >= sband->n_bitrates)
  285. rateidx = sband->n_bitrates - 1;
  286. sta->last_txrate_idx = rateidx;
  287. sta_info_put(sta);
  288. sel->rate = &sband->bitrates[rateidx];
  289. #ifdef CONFIG_MAC80211_DEBUGFS
  290. rate_control_pid_event_tx_rate(
  291. &((struct rc_pid_sta_info *) sta->rate_ctrl_priv)->events,
  292. rateidx, sband->bitrates[rateidx].bitrate);
  293. #endif
  294. }
  295. static void rate_control_pid_rate_init(void *priv, void *priv_sta,
  296. struct ieee80211_local *local,
  297. struct sta_info *sta)
  298. {
  299. /* TODO: This routine should consider using RSSI from previous packets
  300. * as we need to have IEEE 802.1X auth succeed immediately after assoc..
  301. * Until that method is implemented, we will use the lowest supported
  302. * rate as a workaround. */
  303. struct ieee80211_supported_band *sband;
  304. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  305. sta->txrate_idx = rate_lowest_index(local, sband, sta);
  306. }
  307. static void *rate_control_pid_alloc(struct ieee80211_local *local)
  308. {
  309. struct rc_pid_info *pinfo;
  310. struct rc_pid_rateinfo *rinfo;
  311. struct ieee80211_supported_band *sband;
  312. int i, j, tmp;
  313. bool s;
  314. #ifdef CONFIG_MAC80211_DEBUGFS
  315. struct rc_pid_debugfs_entries *de;
  316. #endif
  317. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  318. pinfo = kmalloc(sizeof(*pinfo), GFP_ATOMIC);
  319. if (!pinfo)
  320. return NULL;
  321. /* We can safely assume that sband won't change unless we get
  322. * reinitialized. */
  323. rinfo = kmalloc(sizeof(*rinfo) * sband->n_bitrates, GFP_ATOMIC);
  324. if (!rinfo) {
  325. kfree(pinfo);
  326. return NULL;
  327. }
  328. /* Sort the rates. This is optimized for the most common case (i.e.
  329. * almost-sorted CCK+OFDM rates). Kind of bubble-sort with reversed
  330. * mapping too. */
  331. for (i = 0; i < sband->n_bitrates; i++) {
  332. rinfo[i].index = i;
  333. rinfo[i].rev_index = i;
  334. if (pinfo->fast_start)
  335. rinfo[i].diff = 0;
  336. else
  337. rinfo[i].diff = i * pinfo->norm_offset;
  338. }
  339. for (i = 1; i < sband->n_bitrates; i++) {
  340. s = 0;
  341. for (j = 0; j < sband->n_bitrates - i; j++)
  342. if (unlikely(sband->bitrates[rinfo[j].index].bitrate >
  343. sband->bitrates[rinfo[j + 1].index].bitrate)) {
  344. tmp = rinfo[j].index;
  345. rinfo[j].index = rinfo[j + 1].index;
  346. rinfo[j + 1].index = tmp;
  347. rinfo[rinfo[j].index].rev_index = j;
  348. rinfo[rinfo[j + 1].index].rev_index = j + 1;
  349. s = 1;
  350. }
  351. if (!s)
  352. break;
  353. }
  354. pinfo->target = RC_PID_TARGET_PF;
  355. pinfo->sampling_period = RC_PID_INTERVAL;
  356. pinfo->coeff_p = RC_PID_COEFF_P;
  357. pinfo->coeff_i = RC_PID_COEFF_I;
  358. pinfo->coeff_d = RC_PID_COEFF_D;
  359. pinfo->smoothing_shift = RC_PID_SMOOTHING_SHIFT;
  360. pinfo->sharpen_factor = RC_PID_SHARPENING_FACTOR;
  361. pinfo->sharpen_duration = RC_PID_SHARPENING_DURATION;
  362. pinfo->norm_offset = RC_PID_NORM_OFFSET;
  363. pinfo->fast_start = RC_PID_FAST_START;
  364. pinfo->rinfo = rinfo;
  365. pinfo->oldrate = 0;
  366. #ifdef CONFIG_MAC80211_DEBUGFS
  367. de = &pinfo->dentries;
  368. de->dir = debugfs_create_dir("rc80211_pid",
  369. local->hw.wiphy->debugfsdir);
  370. de->target = debugfs_create_u32("target_pf", S_IRUSR | S_IWUSR,
  371. de->dir, &pinfo->target);
  372. de->sampling_period = debugfs_create_u32("sampling_period",
  373. S_IRUSR | S_IWUSR, de->dir,
  374. &pinfo->sampling_period);
  375. de->coeff_p = debugfs_create_u32("coeff_p", S_IRUSR | S_IWUSR,
  376. de->dir, &pinfo->coeff_p);
  377. de->coeff_i = debugfs_create_u32("coeff_i", S_IRUSR | S_IWUSR,
  378. de->dir, &pinfo->coeff_i);
  379. de->coeff_d = debugfs_create_u32("coeff_d", S_IRUSR | S_IWUSR,
  380. de->dir, &pinfo->coeff_d);
  381. de->smoothing_shift = debugfs_create_u32("smoothing_shift",
  382. S_IRUSR | S_IWUSR, de->dir,
  383. &pinfo->smoothing_shift);
  384. de->sharpen_factor = debugfs_create_u32("sharpen_factor",
  385. S_IRUSR | S_IWUSR, de->dir,
  386. &pinfo->sharpen_factor);
  387. de->sharpen_duration = debugfs_create_u32("sharpen_duration",
  388. S_IRUSR | S_IWUSR, de->dir,
  389. &pinfo->sharpen_duration);
  390. de->norm_offset = debugfs_create_u32("norm_offset",
  391. S_IRUSR | S_IWUSR, de->dir,
  392. &pinfo->norm_offset);
  393. de->fast_start = debugfs_create_bool("fast_start",
  394. S_IRUSR | S_IWUSR, de->dir,
  395. &pinfo->fast_start);
  396. #endif
  397. return pinfo;
  398. }
  399. static void rate_control_pid_free(void *priv)
  400. {
  401. struct rc_pid_info *pinfo = priv;
  402. #ifdef CONFIG_MAC80211_DEBUGFS
  403. struct rc_pid_debugfs_entries *de = &pinfo->dentries;
  404. debugfs_remove(de->fast_start);
  405. debugfs_remove(de->norm_offset);
  406. debugfs_remove(de->sharpen_duration);
  407. debugfs_remove(de->sharpen_factor);
  408. debugfs_remove(de->smoothing_shift);
  409. debugfs_remove(de->coeff_d);
  410. debugfs_remove(de->coeff_i);
  411. debugfs_remove(de->coeff_p);
  412. debugfs_remove(de->sampling_period);
  413. debugfs_remove(de->target);
  414. debugfs_remove(de->dir);
  415. #endif
  416. kfree(pinfo->rinfo);
  417. kfree(pinfo);
  418. }
  419. static void rate_control_pid_clear(void *priv)
  420. {
  421. }
  422. static void *rate_control_pid_alloc_sta(void *priv, gfp_t gfp)
  423. {
  424. struct rc_pid_sta_info *spinfo;
  425. spinfo = kzalloc(sizeof(*spinfo), gfp);
  426. if (spinfo == NULL)
  427. return NULL;
  428. spinfo->last_sample = jiffies;
  429. #ifdef CONFIG_MAC80211_DEBUGFS
  430. spin_lock_init(&spinfo->events.lock);
  431. init_waitqueue_head(&spinfo->events.waitqueue);
  432. #endif
  433. return spinfo;
  434. }
  435. static void rate_control_pid_free_sta(void *priv, void *priv_sta)
  436. {
  437. struct rc_pid_sta_info *spinfo = priv_sta;
  438. kfree(spinfo);
  439. }
  440. static struct rate_control_ops mac80211_rcpid = {
  441. .name = "pid",
  442. .tx_status = rate_control_pid_tx_status,
  443. .get_rate = rate_control_pid_get_rate,
  444. .rate_init = rate_control_pid_rate_init,
  445. .clear = rate_control_pid_clear,
  446. .alloc = rate_control_pid_alloc,
  447. .free = rate_control_pid_free,
  448. .alloc_sta = rate_control_pid_alloc_sta,
  449. .free_sta = rate_control_pid_free_sta,
  450. #ifdef CONFIG_MAC80211_DEBUGFS
  451. .add_sta_debugfs = rate_control_pid_add_sta_debugfs,
  452. .remove_sta_debugfs = rate_control_pid_remove_sta_debugfs,
  453. #endif
  454. };
  455. MODULE_DESCRIPTION("PID controller based rate control algorithm");
  456. MODULE_AUTHOR("Stefano Brivio");
  457. MODULE_AUTHOR("Mattias Nissler");
  458. MODULE_LICENSE("GPL");
  459. int __init rc80211_pid_init(void)
  460. {
  461. return ieee80211_rate_control_register(&mac80211_rcpid);
  462. }
  463. void rc80211_pid_exit(void)
  464. {
  465. ieee80211_rate_control_unregister(&mac80211_rcpid);
  466. }
  467. #ifdef CONFIG_MAC80211_RC_PID_MODULE
  468. module_init(rc80211_pid_init);
  469. module_exit(rc80211_pid_exit);
  470. #endif