agg-tx.c 26 KB

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  1. /*
  2. * HT handling
  3. *
  4. * Copyright 2003, Jouni Malinen <jkmaline@cc.hut.fi>
  5. * Copyright 2002-2005, Instant802 Networks, Inc.
  6. * Copyright 2005-2006, Devicescape Software, Inc.
  7. * Copyright 2006-2007 Jiri Benc <jbenc@suse.cz>
  8. * Copyright 2007, Michael Wu <flamingice@sourmilk.net>
  9. * Copyright 2007-2010, Intel Corporation
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License version 2 as
  13. * published by the Free Software Foundation.
  14. */
  15. #include <linux/ieee80211.h>
  16. #include <linux/slab.h>
  17. #include <linux/export.h>
  18. #include <net/mac80211.h>
  19. #include "ieee80211_i.h"
  20. #include "driver-ops.h"
  21. #include "wme.h"
  22. /**
  23. * DOC: TX A-MPDU aggregation
  24. *
  25. * Aggregation on the TX side requires setting the hardware flag
  26. * %IEEE80211_HW_AMPDU_AGGREGATION. The driver will then be handed
  27. * packets with a flag indicating A-MPDU aggregation. The driver
  28. * or device is responsible for actually aggregating the frames,
  29. * as well as deciding how many and which to aggregate.
  30. *
  31. * When TX aggregation is started by some subsystem (usually the rate
  32. * control algorithm would be appropriate) by calling the
  33. * ieee80211_start_tx_ba_session() function, the driver will be
  34. * notified via its @ampdu_action function, with the
  35. * %IEEE80211_AMPDU_TX_START action.
  36. *
  37. * In response to that, the driver is later required to call the
  38. * ieee80211_start_tx_ba_cb_irqsafe() function, which will really
  39. * start the aggregation session after the peer has also responded.
  40. * If the peer responds negatively, the session will be stopped
  41. * again right away. Note that it is possible for the aggregation
  42. * session to be stopped before the driver has indicated that it
  43. * is done setting it up, in which case it must not indicate the
  44. * setup completion.
  45. *
  46. * Also note that, since we also need to wait for a response from
  47. * the peer, the driver is notified of the completion of the
  48. * handshake by the %IEEE80211_AMPDU_TX_OPERATIONAL action to the
  49. * @ampdu_action callback.
  50. *
  51. * Similarly, when the aggregation session is stopped by the peer
  52. * or something calling ieee80211_stop_tx_ba_session(), the driver's
  53. * @ampdu_action function will be called with the action
  54. * %IEEE80211_AMPDU_TX_STOP. In this case, the call must not fail,
  55. * and the driver must later call ieee80211_stop_tx_ba_cb_irqsafe().
  56. * Note that the sta can get destroyed before the BA tear down is
  57. * complete.
  58. */
  59. static void ieee80211_send_addba_request(struct ieee80211_sub_if_data *sdata,
  60. const u8 *da, u16 tid,
  61. u8 dialog_token, u16 start_seq_num,
  62. u16 agg_size, u16 timeout)
  63. {
  64. struct ieee80211_local *local = sdata->local;
  65. struct sk_buff *skb;
  66. struct ieee80211_mgmt *mgmt;
  67. u16 capab;
  68. skb = dev_alloc_skb(sizeof(*mgmt) + local->hw.extra_tx_headroom);
  69. if (!skb)
  70. return;
  71. skb_reserve(skb, local->hw.extra_tx_headroom);
  72. mgmt = (struct ieee80211_mgmt *) skb_put(skb, 24);
  73. memset(mgmt, 0, 24);
  74. memcpy(mgmt->da, da, ETH_ALEN);
  75. memcpy(mgmt->sa, sdata->vif.addr, ETH_ALEN);
  76. if (sdata->vif.type == NL80211_IFTYPE_AP ||
  77. sdata->vif.type == NL80211_IFTYPE_AP_VLAN ||
  78. sdata->vif.type == NL80211_IFTYPE_MESH_POINT)
  79. memcpy(mgmt->bssid, sdata->vif.addr, ETH_ALEN);
  80. else if (sdata->vif.type == NL80211_IFTYPE_STATION)
  81. memcpy(mgmt->bssid, sdata->u.mgd.bssid, ETH_ALEN);
  82. else if (sdata->vif.type == NL80211_IFTYPE_ADHOC)
  83. memcpy(mgmt->bssid, sdata->u.ibss.bssid, ETH_ALEN);
  84. mgmt->frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT |
  85. IEEE80211_STYPE_ACTION);
  86. skb_put(skb, 1 + sizeof(mgmt->u.action.u.addba_req));
  87. mgmt->u.action.category = WLAN_CATEGORY_BACK;
  88. mgmt->u.action.u.addba_req.action_code = WLAN_ACTION_ADDBA_REQ;
  89. mgmt->u.action.u.addba_req.dialog_token = dialog_token;
  90. capab = (u16)(1 << 1); /* bit 1 aggregation policy */
  91. capab |= (u16)(tid << 2); /* bit 5:2 TID number */
  92. capab |= (u16)(agg_size << 6); /* bit 15:6 max size of aggergation */
  93. mgmt->u.action.u.addba_req.capab = cpu_to_le16(capab);
  94. mgmt->u.action.u.addba_req.timeout = cpu_to_le16(timeout);
  95. mgmt->u.action.u.addba_req.start_seq_num =
  96. cpu_to_le16(start_seq_num << 4);
  97. ieee80211_tx_skb_tid(sdata, skb, tid);
  98. }
  99. void ieee80211_send_bar(struct ieee80211_vif *vif, u8 *ra, u16 tid, u16 ssn)
  100. {
  101. struct ieee80211_sub_if_data *sdata = vif_to_sdata(vif);
  102. struct ieee80211_local *local = sdata->local;
  103. struct sk_buff *skb;
  104. struct ieee80211_bar *bar;
  105. u16 bar_control = 0;
  106. skb = dev_alloc_skb(sizeof(*bar) + local->hw.extra_tx_headroom);
  107. if (!skb)
  108. return;
  109. skb_reserve(skb, local->hw.extra_tx_headroom);
  110. bar = (struct ieee80211_bar *)skb_put(skb, sizeof(*bar));
  111. memset(bar, 0, sizeof(*bar));
  112. bar->frame_control = cpu_to_le16(IEEE80211_FTYPE_CTL |
  113. IEEE80211_STYPE_BACK_REQ);
  114. memcpy(bar->ra, ra, ETH_ALEN);
  115. memcpy(bar->ta, sdata->vif.addr, ETH_ALEN);
  116. bar_control |= (u16)IEEE80211_BAR_CTRL_ACK_POLICY_NORMAL;
  117. bar_control |= (u16)IEEE80211_BAR_CTRL_CBMTID_COMPRESSED_BA;
  118. bar_control |= (u16)(tid << IEEE80211_BAR_CTRL_TID_INFO_SHIFT);
  119. bar->control = cpu_to_le16(bar_control);
  120. bar->start_seq_num = cpu_to_le16(ssn);
  121. IEEE80211_SKB_CB(skb)->flags |= IEEE80211_TX_INTFL_DONT_ENCRYPT |
  122. IEEE80211_TX_CTL_REQ_TX_STATUS;
  123. ieee80211_tx_skb_tid(sdata, skb, tid);
  124. }
  125. EXPORT_SYMBOL(ieee80211_send_bar);
  126. void ieee80211_assign_tid_tx(struct sta_info *sta, int tid,
  127. struct tid_ampdu_tx *tid_tx)
  128. {
  129. lockdep_assert_held(&sta->ampdu_mlme.mtx);
  130. lockdep_assert_held(&sta->lock);
  131. rcu_assign_pointer(sta->ampdu_mlme.tid_tx[tid], tid_tx);
  132. }
  133. int ___ieee80211_stop_tx_ba_session(struct sta_info *sta, u16 tid,
  134. enum ieee80211_agg_stop_reason reason)
  135. {
  136. struct ieee80211_local *local = sta->local;
  137. struct tid_ampdu_tx *tid_tx;
  138. int ret;
  139. lockdep_assert_held(&sta->ampdu_mlme.mtx);
  140. spin_lock_bh(&sta->lock);
  141. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  142. if (!tid_tx) {
  143. spin_unlock_bh(&sta->lock);
  144. return -ENOENT;
  145. }
  146. /* if we're already stopping ignore any new requests to stop */
  147. if (test_bit(HT_AGG_STATE_STOPPING, &tid_tx->state)) {
  148. spin_unlock_bh(&sta->lock);
  149. return -EALREADY;
  150. }
  151. if (test_bit(HT_AGG_STATE_WANT_START, &tid_tx->state)) {
  152. /* not even started yet! */
  153. ieee80211_assign_tid_tx(sta, tid, NULL);
  154. spin_unlock_bh(&sta->lock);
  155. kfree_rcu(tid_tx, rcu_head);
  156. return 0;
  157. }
  158. set_bit(HT_AGG_STATE_STOPPING, &tid_tx->state);
  159. spin_unlock_bh(&sta->lock);
  160. ht_dbg(sta->sdata, "Tx BA session stop requested for %pM tid %u\n",
  161. sta->sta.addr, tid);
  162. del_timer_sync(&tid_tx->addba_resp_timer);
  163. del_timer_sync(&tid_tx->session_timer);
  164. /*
  165. * After this packets are no longer handed right through
  166. * to the driver but are put onto tid_tx->pending instead,
  167. * with locking to ensure proper access.
  168. */
  169. clear_bit(HT_AGG_STATE_OPERATIONAL, &tid_tx->state);
  170. /*
  171. * There might be a few packets being processed right now (on
  172. * another CPU) that have already gotten past the aggregation
  173. * check when it was still OPERATIONAL and consequently have
  174. * IEEE80211_TX_CTL_AMPDU set. In that case, this code might
  175. * call into the driver at the same time or even before the
  176. * TX paths calls into it, which could confuse the driver.
  177. *
  178. * Wait for all currently running TX paths to finish before
  179. * telling the driver. New packets will not go through since
  180. * the aggregation session is no longer OPERATIONAL.
  181. */
  182. synchronize_net();
  183. tid_tx->stop_initiator = reason == AGG_STOP_PEER_REQUEST ?
  184. WLAN_BACK_RECIPIENT :
  185. WLAN_BACK_INITIATOR;
  186. tid_tx->tx_stop = reason == AGG_STOP_LOCAL_REQUEST;
  187. ret = drv_ampdu_action(local, sta->sdata,
  188. IEEE80211_AMPDU_TX_STOP,
  189. &sta->sta, tid, NULL, 0);
  190. /* HW shall not deny going back to legacy */
  191. if (WARN_ON(ret)) {
  192. /*
  193. * We may have pending packets get stuck in this case...
  194. * Not bothering with a workaround for now.
  195. */
  196. }
  197. return ret;
  198. }
  199. /*
  200. * After sending add Block Ack request we activated a timer until
  201. * add Block Ack response will arrive from the recipient.
  202. * If this timer expires sta_addba_resp_timer_expired will be executed.
  203. */
  204. static void sta_addba_resp_timer_expired(unsigned long data)
  205. {
  206. /* not an elegant detour, but there is no choice as the timer passes
  207. * only one argument, and both sta_info and TID are needed, so init
  208. * flow in sta_info_create gives the TID as data, while the timer_to_id
  209. * array gives the sta through container_of */
  210. u16 tid = *(u8 *)data;
  211. struct sta_info *sta = container_of((void *)data,
  212. struct sta_info, timer_to_tid[tid]);
  213. struct tid_ampdu_tx *tid_tx;
  214. /* check if the TID waits for addBA response */
  215. rcu_read_lock();
  216. tid_tx = rcu_dereference(sta->ampdu_mlme.tid_tx[tid]);
  217. if (!tid_tx ||
  218. test_bit(HT_AGG_STATE_RESPONSE_RECEIVED, &tid_tx->state)) {
  219. rcu_read_unlock();
  220. ht_dbg(sta->sdata,
  221. "timer expired on tid %d but we are not (or no longer) expecting addBA response there\n",
  222. tid);
  223. return;
  224. }
  225. ht_dbg(sta->sdata, "addBA response timer expired on tid %d\n", tid);
  226. ieee80211_stop_tx_ba_session(&sta->sta, tid);
  227. rcu_read_unlock();
  228. }
  229. static inline int ieee80211_ac_from_tid(int tid)
  230. {
  231. return ieee802_1d_to_ac[tid & 7];
  232. }
  233. /*
  234. * When multiple aggregation sessions on multiple stations
  235. * are being created/destroyed simultaneously, we need to
  236. * refcount the global queue stop caused by that in order
  237. * to not get into a situation where one of the aggregation
  238. * setup or teardown re-enables queues before the other is
  239. * ready to handle that.
  240. *
  241. * These two functions take care of this issue by keeping
  242. * a global "agg_queue_stop" refcount.
  243. */
  244. static void __acquires(agg_queue)
  245. ieee80211_stop_queue_agg(struct ieee80211_sub_if_data *sdata, int tid)
  246. {
  247. int queue = sdata->vif.hw_queue[ieee80211_ac_from_tid(tid)];
  248. if (atomic_inc_return(&sdata->local->agg_queue_stop[queue]) == 1)
  249. ieee80211_stop_queue_by_reason(
  250. &sdata->local->hw, queue,
  251. IEEE80211_QUEUE_STOP_REASON_AGGREGATION);
  252. __acquire(agg_queue);
  253. }
  254. static void __releases(agg_queue)
  255. ieee80211_wake_queue_agg(struct ieee80211_sub_if_data *sdata, int tid)
  256. {
  257. int queue = sdata->vif.hw_queue[ieee80211_ac_from_tid(tid)];
  258. if (atomic_dec_return(&sdata->local->agg_queue_stop[queue]) == 0)
  259. ieee80211_wake_queue_by_reason(
  260. &sdata->local->hw, queue,
  261. IEEE80211_QUEUE_STOP_REASON_AGGREGATION);
  262. __release(agg_queue);
  263. }
  264. /*
  265. * splice packets from the STA's pending to the local pending,
  266. * requires a call to ieee80211_agg_splice_finish later
  267. */
  268. static void __acquires(agg_queue)
  269. ieee80211_agg_splice_packets(struct ieee80211_sub_if_data *sdata,
  270. struct tid_ampdu_tx *tid_tx, u16 tid)
  271. {
  272. struct ieee80211_local *local = sdata->local;
  273. int queue = sdata->vif.hw_queue[ieee80211_ac_from_tid(tid)];
  274. unsigned long flags;
  275. ieee80211_stop_queue_agg(sdata, tid);
  276. if (WARN(!tid_tx,
  277. "TID %d gone but expected when splicing aggregates from the pending queue\n",
  278. tid))
  279. return;
  280. if (!skb_queue_empty(&tid_tx->pending)) {
  281. spin_lock_irqsave(&local->queue_stop_reason_lock, flags);
  282. /* copy over remaining packets */
  283. skb_queue_splice_tail_init(&tid_tx->pending,
  284. &local->pending[queue]);
  285. spin_unlock_irqrestore(&local->queue_stop_reason_lock, flags);
  286. }
  287. }
  288. static void __releases(agg_queue)
  289. ieee80211_agg_splice_finish(struct ieee80211_sub_if_data *sdata, u16 tid)
  290. {
  291. ieee80211_wake_queue_agg(sdata, tid);
  292. }
  293. void ieee80211_tx_ba_session_handle_start(struct sta_info *sta, int tid)
  294. {
  295. struct tid_ampdu_tx *tid_tx;
  296. struct ieee80211_local *local = sta->local;
  297. struct ieee80211_sub_if_data *sdata = sta->sdata;
  298. u16 start_seq_num;
  299. int ret;
  300. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  301. /*
  302. * Start queuing up packets for this aggregation session.
  303. * We're going to release them once the driver is OK with
  304. * that.
  305. */
  306. clear_bit(HT_AGG_STATE_WANT_START, &tid_tx->state);
  307. /*
  308. * Make sure no packets are being processed. This ensures that
  309. * we have a valid starting sequence number and that in-flight
  310. * packets have been flushed out and no packets for this TID
  311. * will go into the driver during the ampdu_action call.
  312. */
  313. synchronize_net();
  314. start_seq_num = sta->tid_seq[tid] >> 4;
  315. ret = drv_ampdu_action(local, sdata, IEEE80211_AMPDU_TX_START,
  316. &sta->sta, tid, &start_seq_num, 0);
  317. if (ret) {
  318. ht_dbg(sdata,
  319. "BA request denied - HW unavailable for tid %d\n", tid);
  320. spin_lock_bh(&sta->lock);
  321. ieee80211_agg_splice_packets(sdata, tid_tx, tid);
  322. ieee80211_assign_tid_tx(sta, tid, NULL);
  323. ieee80211_agg_splice_finish(sdata, tid);
  324. spin_unlock_bh(&sta->lock);
  325. kfree_rcu(tid_tx, rcu_head);
  326. return;
  327. }
  328. /* activate the timer for the recipient's addBA response */
  329. mod_timer(&tid_tx->addba_resp_timer, jiffies + ADDBA_RESP_INTERVAL);
  330. ht_dbg(sdata, "activated addBA response timer on tid %d\n", tid);
  331. spin_lock_bh(&sta->lock);
  332. sta->ampdu_mlme.last_addba_req_time[tid] = jiffies;
  333. sta->ampdu_mlme.addba_req_num[tid]++;
  334. spin_unlock_bh(&sta->lock);
  335. /* send AddBA request */
  336. ieee80211_send_addba_request(sdata, sta->sta.addr, tid,
  337. tid_tx->dialog_token, start_seq_num,
  338. local->hw.max_tx_aggregation_subframes,
  339. tid_tx->timeout);
  340. }
  341. /*
  342. * After accepting the AddBA Response we activated a timer,
  343. * resetting it after each frame that we send.
  344. */
  345. static void sta_tx_agg_session_timer_expired(unsigned long data)
  346. {
  347. /* not an elegant detour, but there is no choice as the timer passes
  348. * only one argument, and various sta_info are needed here, so init
  349. * flow in sta_info_create gives the TID as data, while the timer_to_id
  350. * array gives the sta through container_of */
  351. u8 *ptid = (u8 *)data;
  352. u8 *timer_to_id = ptid - *ptid;
  353. struct sta_info *sta = container_of(timer_to_id, struct sta_info,
  354. timer_to_tid[0]);
  355. struct tid_ampdu_tx *tid_tx;
  356. unsigned long timeout;
  357. rcu_read_lock();
  358. tid_tx = rcu_dereference(sta->ampdu_mlme.tid_tx[*ptid]);
  359. if (!tid_tx || test_bit(HT_AGG_STATE_STOPPING, &tid_tx->state)) {
  360. rcu_read_unlock();
  361. return;
  362. }
  363. timeout = tid_tx->last_tx + TU_TO_JIFFIES(tid_tx->timeout);
  364. if (time_is_after_jiffies(timeout)) {
  365. mod_timer(&tid_tx->session_timer, timeout);
  366. rcu_read_unlock();
  367. return;
  368. }
  369. rcu_read_unlock();
  370. ht_dbg(sta->sdata, "tx session timer expired on tid %d\n", (u16)*ptid);
  371. ieee80211_stop_tx_ba_session(&sta->sta, *ptid);
  372. }
  373. int ieee80211_start_tx_ba_session(struct ieee80211_sta *pubsta, u16 tid,
  374. u16 timeout)
  375. {
  376. struct sta_info *sta = container_of(pubsta, struct sta_info, sta);
  377. struct ieee80211_sub_if_data *sdata = sta->sdata;
  378. struct ieee80211_local *local = sdata->local;
  379. struct tid_ampdu_tx *tid_tx;
  380. int ret = 0;
  381. trace_api_start_tx_ba_session(pubsta, tid);
  382. if (WARN_ON_ONCE(!local->ops->ampdu_action))
  383. return -EINVAL;
  384. if ((tid >= IEEE80211_NUM_TIDS) ||
  385. !(local->hw.flags & IEEE80211_HW_AMPDU_AGGREGATION) ||
  386. (local->hw.flags & IEEE80211_HW_TX_AMPDU_SETUP_IN_HW))
  387. return -EINVAL;
  388. ht_dbg(sdata, "Open BA session requested for %pM tid %u\n",
  389. pubsta->addr, tid);
  390. if (sdata->vif.type != NL80211_IFTYPE_STATION &&
  391. sdata->vif.type != NL80211_IFTYPE_MESH_POINT &&
  392. sdata->vif.type != NL80211_IFTYPE_AP_VLAN &&
  393. sdata->vif.type != NL80211_IFTYPE_AP &&
  394. sdata->vif.type != NL80211_IFTYPE_ADHOC)
  395. return -EINVAL;
  396. if (test_sta_flag(sta, WLAN_STA_BLOCK_BA)) {
  397. ht_dbg(sdata,
  398. "BA sessions blocked - Denying BA session request\n");
  399. return -EINVAL;
  400. }
  401. /*
  402. * 802.11n-2009 11.5.1.1: If the initiating STA is an HT STA, is a
  403. * member of an IBSS, and has no other existing Block Ack agreement
  404. * with the recipient STA, then the initiating STA shall transmit a
  405. * Probe Request frame to the recipient STA and shall not transmit an
  406. * ADDBA Request frame unless it receives a Probe Response frame
  407. * from the recipient within dot11ADDBAFailureTimeout.
  408. *
  409. * The probe request mechanism for ADDBA is currently not implemented,
  410. * but we only build up Block Ack session with HT STAs. This information
  411. * is set when we receive a bss info from a probe response or a beacon.
  412. */
  413. if (sta->sdata->vif.type == NL80211_IFTYPE_ADHOC &&
  414. !sta->sta.ht_cap.ht_supported) {
  415. ht_dbg(sdata,
  416. "BA request denied - IBSS STA %pM does not advertise HT support\n",
  417. pubsta->addr);
  418. return -EINVAL;
  419. }
  420. spin_lock_bh(&sta->lock);
  421. /* we have tried too many times, receiver does not want A-MPDU */
  422. if (sta->ampdu_mlme.addba_req_num[tid] > HT_AGG_MAX_RETRIES) {
  423. ret = -EBUSY;
  424. goto err_unlock_sta;
  425. }
  426. /*
  427. * if we have tried more than HT_AGG_BURST_RETRIES times we
  428. * will spread our requests in time to avoid stalling connection
  429. * for too long
  430. */
  431. if (sta->ampdu_mlme.addba_req_num[tid] > HT_AGG_BURST_RETRIES &&
  432. time_before(jiffies, sta->ampdu_mlme.last_addba_req_time[tid] +
  433. HT_AGG_RETRIES_PERIOD)) {
  434. ht_dbg(sdata,
  435. "BA request denied - waiting a grace period after %d failed requests on tid %u\n",
  436. sta->ampdu_mlme.addba_req_num[tid], tid);
  437. ret = -EBUSY;
  438. goto err_unlock_sta;
  439. }
  440. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  441. /* check if the TID is not in aggregation flow already */
  442. if (tid_tx || sta->ampdu_mlme.tid_start_tx[tid]) {
  443. ht_dbg(sdata,
  444. "BA request denied - session is not idle on tid %u\n",
  445. tid);
  446. ret = -EAGAIN;
  447. goto err_unlock_sta;
  448. }
  449. /* prepare A-MPDU MLME for Tx aggregation */
  450. tid_tx = kzalloc(sizeof(struct tid_ampdu_tx), GFP_ATOMIC);
  451. if (!tid_tx) {
  452. ret = -ENOMEM;
  453. goto err_unlock_sta;
  454. }
  455. skb_queue_head_init(&tid_tx->pending);
  456. __set_bit(HT_AGG_STATE_WANT_START, &tid_tx->state);
  457. tid_tx->timeout = timeout;
  458. /* response timer */
  459. tid_tx->addba_resp_timer.function = sta_addba_resp_timer_expired;
  460. tid_tx->addba_resp_timer.data = (unsigned long)&sta->timer_to_tid[tid];
  461. init_timer(&tid_tx->addba_resp_timer);
  462. /* tx timer */
  463. tid_tx->session_timer.function = sta_tx_agg_session_timer_expired;
  464. tid_tx->session_timer.data = (unsigned long)&sta->timer_to_tid[tid];
  465. init_timer_deferrable(&tid_tx->session_timer);
  466. /* assign a dialog token */
  467. sta->ampdu_mlme.dialog_token_allocator++;
  468. tid_tx->dialog_token = sta->ampdu_mlme.dialog_token_allocator;
  469. /*
  470. * Finally, assign it to the start array; the work item will
  471. * collect it and move it to the normal array.
  472. */
  473. sta->ampdu_mlme.tid_start_tx[tid] = tid_tx;
  474. ieee80211_queue_work(&local->hw, &sta->ampdu_mlme.work);
  475. /* this flow continues off the work */
  476. err_unlock_sta:
  477. spin_unlock_bh(&sta->lock);
  478. return ret;
  479. }
  480. EXPORT_SYMBOL(ieee80211_start_tx_ba_session);
  481. static void ieee80211_agg_tx_operational(struct ieee80211_local *local,
  482. struct sta_info *sta, u16 tid)
  483. {
  484. struct tid_ampdu_tx *tid_tx;
  485. lockdep_assert_held(&sta->ampdu_mlme.mtx);
  486. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  487. ht_dbg(sta->sdata, "Aggregation is on for tid %d\n", tid);
  488. drv_ampdu_action(local, sta->sdata,
  489. IEEE80211_AMPDU_TX_OPERATIONAL,
  490. &sta->sta, tid, NULL, tid_tx->buf_size);
  491. /*
  492. * synchronize with TX path, while splicing the TX path
  493. * should block so it won't put more packets onto pending.
  494. */
  495. spin_lock_bh(&sta->lock);
  496. ieee80211_agg_splice_packets(sta->sdata, tid_tx, tid);
  497. /*
  498. * Now mark as operational. This will be visible
  499. * in the TX path, and lets it go lock-free in
  500. * the common case.
  501. */
  502. set_bit(HT_AGG_STATE_OPERATIONAL, &tid_tx->state);
  503. ieee80211_agg_splice_finish(sta->sdata, tid);
  504. spin_unlock_bh(&sta->lock);
  505. }
  506. void ieee80211_start_tx_ba_cb(struct ieee80211_vif *vif, u8 *ra, u16 tid)
  507. {
  508. struct ieee80211_sub_if_data *sdata = vif_to_sdata(vif);
  509. struct ieee80211_local *local = sdata->local;
  510. struct sta_info *sta;
  511. struct tid_ampdu_tx *tid_tx;
  512. trace_api_start_tx_ba_cb(sdata, ra, tid);
  513. if (tid >= IEEE80211_NUM_TIDS) {
  514. ht_dbg(sdata, "Bad TID value: tid = %d (>= %d)\n",
  515. tid, IEEE80211_NUM_TIDS);
  516. return;
  517. }
  518. mutex_lock(&local->sta_mtx);
  519. sta = sta_info_get_bss(sdata, ra);
  520. if (!sta) {
  521. mutex_unlock(&local->sta_mtx);
  522. ht_dbg(sdata, "Could not find station: %pM\n", ra);
  523. return;
  524. }
  525. mutex_lock(&sta->ampdu_mlme.mtx);
  526. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  527. if (WARN_ON(!tid_tx)) {
  528. ht_dbg(sdata, "addBA was not requested!\n");
  529. goto unlock;
  530. }
  531. if (WARN_ON(test_and_set_bit(HT_AGG_STATE_DRV_READY, &tid_tx->state)))
  532. goto unlock;
  533. if (test_bit(HT_AGG_STATE_RESPONSE_RECEIVED, &tid_tx->state))
  534. ieee80211_agg_tx_operational(local, sta, tid);
  535. unlock:
  536. mutex_unlock(&sta->ampdu_mlme.mtx);
  537. mutex_unlock(&local->sta_mtx);
  538. }
  539. void ieee80211_start_tx_ba_cb_irqsafe(struct ieee80211_vif *vif,
  540. const u8 *ra, u16 tid)
  541. {
  542. struct ieee80211_sub_if_data *sdata = vif_to_sdata(vif);
  543. struct ieee80211_local *local = sdata->local;
  544. struct ieee80211_ra_tid *ra_tid;
  545. struct sk_buff *skb = dev_alloc_skb(0);
  546. if (unlikely(!skb))
  547. return;
  548. ra_tid = (struct ieee80211_ra_tid *) &skb->cb;
  549. memcpy(&ra_tid->ra, ra, ETH_ALEN);
  550. ra_tid->tid = tid;
  551. skb->pkt_type = IEEE80211_SDATA_QUEUE_AGG_START;
  552. skb_queue_tail(&sdata->skb_queue, skb);
  553. ieee80211_queue_work(&local->hw, &sdata->work);
  554. }
  555. EXPORT_SYMBOL(ieee80211_start_tx_ba_cb_irqsafe);
  556. int __ieee80211_stop_tx_ba_session(struct sta_info *sta, u16 tid,
  557. enum ieee80211_agg_stop_reason reason)
  558. {
  559. int ret;
  560. mutex_lock(&sta->ampdu_mlme.mtx);
  561. ret = ___ieee80211_stop_tx_ba_session(sta, tid, reason);
  562. mutex_unlock(&sta->ampdu_mlme.mtx);
  563. return ret;
  564. }
  565. int ieee80211_stop_tx_ba_session(struct ieee80211_sta *pubsta, u16 tid)
  566. {
  567. struct sta_info *sta = container_of(pubsta, struct sta_info, sta);
  568. struct ieee80211_sub_if_data *sdata = sta->sdata;
  569. struct ieee80211_local *local = sdata->local;
  570. struct tid_ampdu_tx *tid_tx;
  571. int ret = 0;
  572. trace_api_stop_tx_ba_session(pubsta, tid);
  573. if (!local->ops->ampdu_action)
  574. return -EINVAL;
  575. if (tid >= IEEE80211_NUM_TIDS)
  576. return -EINVAL;
  577. spin_lock_bh(&sta->lock);
  578. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  579. if (!tid_tx) {
  580. ret = -ENOENT;
  581. goto unlock;
  582. }
  583. if (test_bit(HT_AGG_STATE_STOPPING, &tid_tx->state)) {
  584. /* already in progress stopping it */
  585. ret = 0;
  586. goto unlock;
  587. }
  588. set_bit(HT_AGG_STATE_WANT_STOP, &tid_tx->state);
  589. ieee80211_queue_work(&local->hw, &sta->ampdu_mlme.work);
  590. unlock:
  591. spin_unlock_bh(&sta->lock);
  592. return ret;
  593. }
  594. EXPORT_SYMBOL(ieee80211_stop_tx_ba_session);
  595. void ieee80211_stop_tx_ba_cb(struct ieee80211_vif *vif, u8 *ra, u8 tid)
  596. {
  597. struct ieee80211_sub_if_data *sdata = vif_to_sdata(vif);
  598. struct ieee80211_local *local = sdata->local;
  599. struct sta_info *sta;
  600. struct tid_ampdu_tx *tid_tx;
  601. trace_api_stop_tx_ba_cb(sdata, ra, tid);
  602. if (tid >= IEEE80211_NUM_TIDS) {
  603. ht_dbg(sdata, "Bad TID value: tid = %d (>= %d)\n",
  604. tid, IEEE80211_NUM_TIDS);
  605. return;
  606. }
  607. ht_dbg(sdata, "Stopping Tx BA session for %pM tid %d\n", ra, tid);
  608. mutex_lock(&local->sta_mtx);
  609. sta = sta_info_get_bss(sdata, ra);
  610. if (!sta) {
  611. ht_dbg(sdata, "Could not find station: %pM\n", ra);
  612. goto unlock;
  613. }
  614. mutex_lock(&sta->ampdu_mlme.mtx);
  615. spin_lock_bh(&sta->lock);
  616. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  617. if (!tid_tx || !test_bit(HT_AGG_STATE_STOPPING, &tid_tx->state)) {
  618. ht_dbg(sdata, "unexpected callback to A-MPDU stop\n");
  619. goto unlock_sta;
  620. }
  621. if (tid_tx->stop_initiator == WLAN_BACK_INITIATOR && tid_tx->tx_stop)
  622. ieee80211_send_delba(sta->sdata, ra, tid,
  623. WLAN_BACK_INITIATOR, WLAN_REASON_QSTA_NOT_USE);
  624. /*
  625. * When we get here, the TX path will not be lockless any more wrt.
  626. * aggregation, since the OPERATIONAL bit has long been cleared.
  627. * Thus it will block on getting the lock, if it occurs. So if we
  628. * stop the queue now, we will not get any more packets, and any
  629. * that might be being processed will wait for us here, thereby
  630. * guaranteeing that no packets go to the tid_tx pending queue any
  631. * more.
  632. */
  633. ieee80211_agg_splice_packets(sta->sdata, tid_tx, tid);
  634. /* future packets must not find the tid_tx struct any more */
  635. ieee80211_assign_tid_tx(sta, tid, NULL);
  636. ieee80211_agg_splice_finish(sta->sdata, tid);
  637. kfree_rcu(tid_tx, rcu_head);
  638. unlock_sta:
  639. spin_unlock_bh(&sta->lock);
  640. mutex_unlock(&sta->ampdu_mlme.mtx);
  641. unlock:
  642. mutex_unlock(&local->sta_mtx);
  643. }
  644. void ieee80211_stop_tx_ba_cb_irqsafe(struct ieee80211_vif *vif,
  645. const u8 *ra, u16 tid)
  646. {
  647. struct ieee80211_sub_if_data *sdata = vif_to_sdata(vif);
  648. struct ieee80211_local *local = sdata->local;
  649. struct ieee80211_ra_tid *ra_tid;
  650. struct sk_buff *skb = dev_alloc_skb(0);
  651. if (unlikely(!skb))
  652. return;
  653. ra_tid = (struct ieee80211_ra_tid *) &skb->cb;
  654. memcpy(&ra_tid->ra, ra, ETH_ALEN);
  655. ra_tid->tid = tid;
  656. skb->pkt_type = IEEE80211_SDATA_QUEUE_AGG_STOP;
  657. skb_queue_tail(&sdata->skb_queue, skb);
  658. ieee80211_queue_work(&local->hw, &sdata->work);
  659. }
  660. EXPORT_SYMBOL(ieee80211_stop_tx_ba_cb_irqsafe);
  661. void ieee80211_process_addba_resp(struct ieee80211_local *local,
  662. struct sta_info *sta,
  663. struct ieee80211_mgmt *mgmt,
  664. size_t len)
  665. {
  666. struct tid_ampdu_tx *tid_tx;
  667. u16 capab, tid;
  668. u8 buf_size;
  669. capab = le16_to_cpu(mgmt->u.action.u.addba_resp.capab);
  670. tid = (capab & IEEE80211_ADDBA_PARAM_TID_MASK) >> 2;
  671. buf_size = (capab & IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK) >> 6;
  672. mutex_lock(&sta->ampdu_mlme.mtx);
  673. tid_tx = rcu_dereference_protected_tid_tx(sta, tid);
  674. if (!tid_tx)
  675. goto out;
  676. if (mgmt->u.action.u.addba_resp.dialog_token != tid_tx->dialog_token) {
  677. ht_dbg(sta->sdata, "wrong addBA response token, tid %d\n", tid);
  678. goto out;
  679. }
  680. del_timer_sync(&tid_tx->addba_resp_timer);
  681. ht_dbg(sta->sdata, "switched off addBA timer for tid %d\n", tid);
  682. /*
  683. * addba_resp_timer may have fired before we got here, and
  684. * caused WANT_STOP to be set. If the stop then was already
  685. * processed further, STOPPING might be set.
  686. */
  687. if (test_bit(HT_AGG_STATE_WANT_STOP, &tid_tx->state) ||
  688. test_bit(HT_AGG_STATE_STOPPING, &tid_tx->state)) {
  689. ht_dbg(sta->sdata,
  690. "got addBA resp for tid %d but we already gave up\n",
  691. tid);
  692. goto out;
  693. }
  694. /*
  695. * IEEE 802.11-2007 7.3.1.14:
  696. * In an ADDBA Response frame, when the Status Code field
  697. * is set to 0, the Buffer Size subfield is set to a value
  698. * of at least 1.
  699. */
  700. if (le16_to_cpu(mgmt->u.action.u.addba_resp.status)
  701. == WLAN_STATUS_SUCCESS && buf_size) {
  702. if (test_and_set_bit(HT_AGG_STATE_RESPONSE_RECEIVED,
  703. &tid_tx->state)) {
  704. /* ignore duplicate response */
  705. goto out;
  706. }
  707. tid_tx->buf_size = buf_size;
  708. if (test_bit(HT_AGG_STATE_DRV_READY, &tid_tx->state))
  709. ieee80211_agg_tx_operational(local, sta, tid);
  710. sta->ampdu_mlme.addba_req_num[tid] = 0;
  711. if (tid_tx->timeout) {
  712. mod_timer(&tid_tx->session_timer,
  713. TU_TO_EXP_TIME(tid_tx->timeout));
  714. tid_tx->last_tx = jiffies;
  715. }
  716. } else {
  717. ___ieee80211_stop_tx_ba_session(sta, tid, AGG_STOP_DECLINED);
  718. }
  719. out:
  720. mutex_unlock(&sta->ampdu_mlme.mtx);
  721. }