tx.c 39 KB

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  1. /******************************************************************************
  2. *
  3. * GPL LICENSE SUMMARY
  4. *
  5. * Copyright(c) 2008 - 2012 Intel Corporation. All rights reserved.
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of version 2 of the GNU General Public License as
  9. * published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope that it will be useful, but
  12. * WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
  19. * USA
  20. *
  21. * The full GNU General Public License is included in this distribution
  22. * in the file called LICENSE.GPL.
  23. *
  24. * Contact Information:
  25. * Intel Linux Wireless <ilw@linux.intel.com>
  26. * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  27. *
  28. *****************************************************************************/
  29. #include <linux/kernel.h>
  30. #include <linux/module.h>
  31. #include <linux/init.h>
  32. #include <linux/sched.h>
  33. #include <linux/ieee80211.h>
  34. #include "iwl-io.h"
  35. #include "iwl-trans.h"
  36. #include "iwl-agn-hw.h"
  37. #include "dev.h"
  38. #include "agn.h"
  39. static const u8 tid_to_ac[] = {
  40. IEEE80211_AC_BE,
  41. IEEE80211_AC_BK,
  42. IEEE80211_AC_BK,
  43. IEEE80211_AC_BE,
  44. IEEE80211_AC_VI,
  45. IEEE80211_AC_VI,
  46. IEEE80211_AC_VO,
  47. IEEE80211_AC_VO,
  48. };
  49. static void iwlagn_tx_cmd_protection(struct iwl_priv *priv,
  50. struct ieee80211_tx_info *info,
  51. __le16 fc, __le32 *tx_flags)
  52. {
  53. if (info->control.rates[0].flags & IEEE80211_TX_RC_USE_RTS_CTS ||
  54. info->control.rates[0].flags & IEEE80211_TX_RC_USE_CTS_PROTECT ||
  55. info->flags & IEEE80211_TX_CTL_AMPDU)
  56. *tx_flags |= TX_CMD_FLG_PROT_REQUIRE_MSK;
  57. }
  58. /*
  59. * handle build REPLY_TX command notification.
  60. */
  61. static void iwlagn_tx_cmd_build_basic(struct iwl_priv *priv,
  62. struct sk_buff *skb,
  63. struct iwl_tx_cmd *tx_cmd,
  64. struct ieee80211_tx_info *info,
  65. struct ieee80211_hdr *hdr, u8 sta_id)
  66. {
  67. __le16 fc = hdr->frame_control;
  68. __le32 tx_flags = tx_cmd->tx_flags;
  69. tx_cmd->stop_time.life_time = TX_CMD_LIFE_TIME_INFINITE;
  70. if (!(info->flags & IEEE80211_TX_CTL_NO_ACK))
  71. tx_flags |= TX_CMD_FLG_ACK_MSK;
  72. else
  73. tx_flags &= ~TX_CMD_FLG_ACK_MSK;
  74. if (ieee80211_is_probe_resp(fc))
  75. tx_flags |= TX_CMD_FLG_TSF_MSK;
  76. else if (ieee80211_is_back_req(fc))
  77. tx_flags |= TX_CMD_FLG_ACK_MSK | TX_CMD_FLG_IMM_BA_RSP_MASK;
  78. else if (info->band == IEEE80211_BAND_2GHZ &&
  79. priv->cfg->bt_params &&
  80. priv->cfg->bt_params->advanced_bt_coexist &&
  81. (ieee80211_is_auth(fc) || ieee80211_is_assoc_req(fc) ||
  82. ieee80211_is_reassoc_req(fc) ||
  83. skb->protocol == cpu_to_be16(ETH_P_PAE)))
  84. tx_flags |= TX_CMD_FLG_IGNORE_BT;
  85. tx_cmd->sta_id = sta_id;
  86. if (ieee80211_has_morefrags(fc))
  87. tx_flags |= TX_CMD_FLG_MORE_FRAG_MSK;
  88. if (ieee80211_is_data_qos(fc)) {
  89. u8 *qc = ieee80211_get_qos_ctl(hdr);
  90. tx_cmd->tid_tspec = qc[0] & 0xf;
  91. tx_flags &= ~TX_CMD_FLG_SEQ_CTL_MSK;
  92. } else {
  93. tx_cmd->tid_tspec = IWL_TID_NON_QOS;
  94. if (info->flags & IEEE80211_TX_CTL_ASSIGN_SEQ)
  95. tx_flags |= TX_CMD_FLG_SEQ_CTL_MSK;
  96. else
  97. tx_flags &= ~TX_CMD_FLG_SEQ_CTL_MSK;
  98. }
  99. iwlagn_tx_cmd_protection(priv, info, fc, &tx_flags);
  100. tx_flags &= ~(TX_CMD_FLG_ANT_SEL_MSK);
  101. if (ieee80211_is_mgmt(fc)) {
  102. if (ieee80211_is_assoc_req(fc) || ieee80211_is_reassoc_req(fc))
  103. tx_cmd->timeout.pm_frame_timeout = cpu_to_le16(3);
  104. else
  105. tx_cmd->timeout.pm_frame_timeout = cpu_to_le16(2);
  106. } else {
  107. tx_cmd->timeout.pm_frame_timeout = 0;
  108. }
  109. tx_cmd->driver_txop = 0;
  110. tx_cmd->tx_flags = tx_flags;
  111. tx_cmd->next_frame_len = 0;
  112. }
  113. static void iwlagn_tx_cmd_build_rate(struct iwl_priv *priv,
  114. struct iwl_tx_cmd *tx_cmd,
  115. struct ieee80211_tx_info *info,
  116. struct ieee80211_sta *sta,
  117. __le16 fc)
  118. {
  119. u32 rate_flags;
  120. int rate_idx;
  121. u8 rts_retry_limit;
  122. u8 data_retry_limit;
  123. u8 rate_plcp;
  124. if (priv->wowlan) {
  125. rts_retry_limit = IWLAGN_LOW_RETRY_LIMIT;
  126. data_retry_limit = IWLAGN_LOW_RETRY_LIMIT;
  127. } else {
  128. /* Set retry limit on RTS packets */
  129. rts_retry_limit = IWLAGN_RTS_DFAULT_RETRY_LIMIT;
  130. /* Set retry limit on DATA packets and Probe Responses*/
  131. if (ieee80211_is_probe_resp(fc)) {
  132. data_retry_limit = IWLAGN_MGMT_DFAULT_RETRY_LIMIT;
  133. rts_retry_limit =
  134. min(data_retry_limit, rts_retry_limit);
  135. } else if (ieee80211_is_back_req(fc))
  136. data_retry_limit = IWLAGN_BAR_DFAULT_RETRY_LIMIT;
  137. else
  138. data_retry_limit = IWLAGN_DEFAULT_TX_RETRY;
  139. }
  140. tx_cmd->data_retry_limit = data_retry_limit;
  141. tx_cmd->rts_retry_limit = rts_retry_limit;
  142. /* DATA packets will use the uCode station table for rate/antenna
  143. * selection */
  144. if (ieee80211_is_data(fc)) {
  145. tx_cmd->initial_rate_index = 0;
  146. tx_cmd->tx_flags |= TX_CMD_FLG_STA_RATE_MSK;
  147. #ifdef CONFIG_IWLWIFI_DEVICE_TESTMODE
  148. if (priv->tm_fixed_rate) {
  149. /*
  150. * rate overwrite by testmode
  151. * we not only send lq command to change rate
  152. * we also re-enforce per data pkt base.
  153. */
  154. tx_cmd->tx_flags &= ~TX_CMD_FLG_STA_RATE_MSK;
  155. memcpy(&tx_cmd->rate_n_flags, &priv->tm_fixed_rate,
  156. sizeof(tx_cmd->rate_n_flags));
  157. }
  158. #endif
  159. return;
  160. } else if (ieee80211_is_back_req(fc))
  161. tx_cmd->tx_flags |= TX_CMD_FLG_STA_RATE_MSK;
  162. /**
  163. * If the current TX rate stored in mac80211 has the MCS bit set, it's
  164. * not really a TX rate. Thus, we use the lowest supported rate for
  165. * this band. Also use the lowest supported rate if the stored rate
  166. * index is invalid.
  167. */
  168. rate_idx = info->control.rates[0].idx;
  169. if (info->control.rates[0].flags & IEEE80211_TX_RC_MCS ||
  170. (rate_idx < 0) || (rate_idx > IWL_RATE_COUNT_LEGACY))
  171. rate_idx = rate_lowest_index(
  172. &priv->nvm_data->bands[info->band], sta);
  173. /* For 5 GHZ band, remap mac80211 rate indices into driver indices */
  174. if (info->band == IEEE80211_BAND_5GHZ)
  175. rate_idx += IWL_FIRST_OFDM_RATE;
  176. /* Get PLCP rate for tx_cmd->rate_n_flags */
  177. rate_plcp = iwl_rates[rate_idx].plcp;
  178. /* Zero out flags for this packet */
  179. rate_flags = 0;
  180. /* Set CCK flag as needed */
  181. if ((rate_idx >= IWL_FIRST_CCK_RATE) && (rate_idx <= IWL_LAST_CCK_RATE))
  182. rate_flags |= RATE_MCS_CCK_MSK;
  183. /* Set up antennas */
  184. if (priv->cfg->bt_params &&
  185. priv->cfg->bt_params->advanced_bt_coexist &&
  186. priv->bt_full_concurrent) {
  187. /* operated as 1x1 in full concurrency mode */
  188. priv->mgmt_tx_ant = iwl_toggle_tx_ant(priv, priv->mgmt_tx_ant,
  189. first_antenna(priv->nvm_data->valid_tx_ant));
  190. } else
  191. priv->mgmt_tx_ant = iwl_toggle_tx_ant(
  192. priv, priv->mgmt_tx_ant,
  193. priv->nvm_data->valid_tx_ant);
  194. rate_flags |= iwl_ant_idx_to_flags(priv->mgmt_tx_ant);
  195. /* Set the rate in the TX cmd */
  196. tx_cmd->rate_n_flags = iwl_hw_set_rate_n_flags(rate_plcp, rate_flags);
  197. }
  198. static void iwlagn_tx_cmd_build_hwcrypto(struct iwl_priv *priv,
  199. struct ieee80211_tx_info *info,
  200. struct iwl_tx_cmd *tx_cmd,
  201. struct sk_buff *skb_frag)
  202. {
  203. struct ieee80211_key_conf *keyconf = info->control.hw_key;
  204. switch (keyconf->cipher) {
  205. case WLAN_CIPHER_SUITE_CCMP:
  206. tx_cmd->sec_ctl = TX_CMD_SEC_CCM;
  207. memcpy(tx_cmd->key, keyconf->key, keyconf->keylen);
  208. if (info->flags & IEEE80211_TX_CTL_AMPDU)
  209. tx_cmd->tx_flags |= TX_CMD_FLG_AGG_CCMP_MSK;
  210. IWL_DEBUG_TX(priv, "tx_cmd with AES hwcrypto\n");
  211. break;
  212. case WLAN_CIPHER_SUITE_TKIP:
  213. tx_cmd->sec_ctl = TX_CMD_SEC_TKIP;
  214. ieee80211_get_tkip_p2k(keyconf, skb_frag, tx_cmd->key);
  215. IWL_DEBUG_TX(priv, "tx_cmd with tkip hwcrypto\n");
  216. break;
  217. case WLAN_CIPHER_SUITE_WEP104:
  218. tx_cmd->sec_ctl |= TX_CMD_SEC_KEY128;
  219. /* fall through */
  220. case WLAN_CIPHER_SUITE_WEP40:
  221. tx_cmd->sec_ctl |= (TX_CMD_SEC_WEP |
  222. (keyconf->keyidx & TX_CMD_SEC_MSK) << TX_CMD_SEC_SHIFT);
  223. memcpy(&tx_cmd->key[3], keyconf->key, keyconf->keylen);
  224. IWL_DEBUG_TX(priv, "Configuring packet for WEP encryption "
  225. "with key %d\n", keyconf->keyidx);
  226. break;
  227. default:
  228. IWL_ERR(priv, "Unknown encode cipher %x\n", keyconf->cipher);
  229. break;
  230. }
  231. }
  232. /**
  233. * iwl_sta_id_or_broadcast - return sta_id or broadcast sta
  234. * @context: the current context
  235. * @sta: mac80211 station
  236. *
  237. * In certain circumstances mac80211 passes a station pointer
  238. * that may be %NULL, for example during TX or key setup. In
  239. * that case, we need to use the broadcast station, so this
  240. * inline wraps that pattern.
  241. */
  242. static int iwl_sta_id_or_broadcast(struct iwl_rxon_context *context,
  243. struct ieee80211_sta *sta)
  244. {
  245. int sta_id;
  246. if (!sta)
  247. return context->bcast_sta_id;
  248. sta_id = iwl_sta_id(sta);
  249. /*
  250. * mac80211 should not be passing a partially
  251. * initialised station!
  252. */
  253. WARN_ON(sta_id == IWL_INVALID_STATION);
  254. return sta_id;
  255. }
  256. /*
  257. * start REPLY_TX command process
  258. */
  259. int iwlagn_tx_skb(struct iwl_priv *priv,
  260. struct ieee80211_sta *sta,
  261. struct sk_buff *skb)
  262. {
  263. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
  264. struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
  265. struct iwl_station_priv *sta_priv = NULL;
  266. struct iwl_rxon_context *ctx = &priv->contexts[IWL_RXON_CTX_BSS];
  267. struct iwl_device_cmd *dev_cmd;
  268. struct iwl_tx_cmd *tx_cmd;
  269. __le16 fc;
  270. u8 hdr_len;
  271. u16 len, seq_number = 0;
  272. u8 sta_id, tid = IWL_MAX_TID_COUNT;
  273. bool is_agg = false, is_data_qos = false;
  274. int txq_id;
  275. if (info->control.vif)
  276. ctx = iwl_rxon_ctx_from_vif(info->control.vif);
  277. if (iwl_is_rfkill(priv)) {
  278. IWL_DEBUG_DROP(priv, "Dropping - RF KILL\n");
  279. goto drop_unlock_priv;
  280. }
  281. fc = hdr->frame_control;
  282. #ifdef CONFIG_IWLWIFI_DEBUG
  283. if (ieee80211_is_auth(fc))
  284. IWL_DEBUG_TX(priv, "Sending AUTH frame\n");
  285. else if (ieee80211_is_assoc_req(fc))
  286. IWL_DEBUG_TX(priv, "Sending ASSOC frame\n");
  287. else if (ieee80211_is_reassoc_req(fc))
  288. IWL_DEBUG_TX(priv, "Sending REASSOC frame\n");
  289. #endif
  290. if (unlikely(ieee80211_is_probe_resp(fc))) {
  291. struct iwl_wipan_noa_data *noa_data =
  292. rcu_dereference(priv->noa_data);
  293. if (noa_data &&
  294. pskb_expand_head(skb, 0, noa_data->length,
  295. GFP_ATOMIC) == 0) {
  296. memcpy(skb_put(skb, noa_data->length),
  297. noa_data->data, noa_data->length);
  298. hdr = (struct ieee80211_hdr *)skb->data;
  299. }
  300. }
  301. hdr_len = ieee80211_hdrlen(fc);
  302. /* For management frames use broadcast id to do not break aggregation */
  303. if (!ieee80211_is_data(fc))
  304. sta_id = ctx->bcast_sta_id;
  305. else {
  306. /* Find index into station table for destination station */
  307. sta_id = iwl_sta_id_or_broadcast(ctx, sta);
  308. if (sta_id == IWL_INVALID_STATION) {
  309. IWL_DEBUG_DROP(priv, "Dropping - INVALID STATION: %pM\n",
  310. hdr->addr1);
  311. goto drop_unlock_priv;
  312. }
  313. }
  314. IWL_DEBUG_TX(priv, "station Id %d\n", sta_id);
  315. if (sta)
  316. sta_priv = (void *)sta->drv_priv;
  317. if (sta_priv && sta_priv->asleep &&
  318. (info->flags & IEEE80211_TX_CTL_NO_PS_BUFFER)) {
  319. /*
  320. * This sends an asynchronous command to the device,
  321. * but we can rely on it being processed before the
  322. * next frame is processed -- and the next frame to
  323. * this station is the one that will consume this
  324. * counter.
  325. * For now set the counter to just 1 since we do not
  326. * support uAPSD yet.
  327. *
  328. * FIXME: If we get two non-bufferable frames one
  329. * after the other, we might only send out one of
  330. * them because this is racy.
  331. */
  332. iwl_sta_modify_sleep_tx_count(priv, sta_id, 1);
  333. }
  334. dev_cmd = iwl_trans_alloc_tx_cmd(priv->trans);
  335. if (unlikely(!dev_cmd))
  336. goto drop_unlock_priv;
  337. memset(dev_cmd, 0, sizeof(*dev_cmd));
  338. tx_cmd = (struct iwl_tx_cmd *) dev_cmd->payload;
  339. /* Total # bytes to be transmitted */
  340. len = (u16)skb->len;
  341. tx_cmd->len = cpu_to_le16(len);
  342. if (info->control.hw_key)
  343. iwlagn_tx_cmd_build_hwcrypto(priv, info, tx_cmd, skb);
  344. /* TODO need this for burst mode later on */
  345. iwlagn_tx_cmd_build_basic(priv, skb, tx_cmd, info, hdr, sta_id);
  346. iwlagn_tx_cmd_build_rate(priv, tx_cmd, info, sta, fc);
  347. memset(&info->status, 0, sizeof(info->status));
  348. info->driver_data[0] = ctx;
  349. info->driver_data[1] = dev_cmd;
  350. /* From now on, we cannot access info->control */
  351. spin_lock(&priv->sta_lock);
  352. if (ieee80211_is_data_qos(fc) && !ieee80211_is_qos_nullfunc(fc)) {
  353. u8 *qc = NULL;
  354. struct iwl_tid_data *tid_data;
  355. qc = ieee80211_get_qos_ctl(hdr);
  356. tid = qc[0] & IEEE80211_QOS_CTL_TID_MASK;
  357. if (WARN_ON_ONCE(tid >= IWL_MAX_TID_COUNT))
  358. goto drop_unlock_sta;
  359. tid_data = &priv->tid_data[sta_id][tid];
  360. /* aggregation is on for this <sta,tid> */
  361. if (info->flags & IEEE80211_TX_CTL_AMPDU &&
  362. tid_data->agg.state != IWL_AGG_ON) {
  363. IWL_ERR(priv, "TX_CTL_AMPDU while not in AGG:"
  364. " Tx flags = 0x%08x, agg.state = %d",
  365. info->flags, tid_data->agg.state);
  366. IWL_ERR(priv, "sta_id = %d, tid = %d seq_num = %d",
  367. sta_id, tid, SEQ_TO_SN(tid_data->seq_number));
  368. goto drop_unlock_sta;
  369. }
  370. /* We can receive packets from the stack in IWL_AGG_{ON,OFF}
  371. * only. Check this here.
  372. */
  373. if (WARN_ONCE(tid_data->agg.state != IWL_AGG_ON &&
  374. tid_data->agg.state != IWL_AGG_OFF,
  375. "Tx while agg.state = %d", tid_data->agg.state))
  376. goto drop_unlock_sta;
  377. seq_number = tid_data->seq_number;
  378. seq_number &= IEEE80211_SCTL_SEQ;
  379. hdr->seq_ctrl &= cpu_to_le16(IEEE80211_SCTL_FRAG);
  380. hdr->seq_ctrl |= cpu_to_le16(seq_number);
  381. seq_number += 0x10;
  382. if (info->flags & IEEE80211_TX_CTL_AMPDU)
  383. is_agg = true;
  384. is_data_qos = true;
  385. }
  386. /* Copy MAC header from skb into command buffer */
  387. memcpy(tx_cmd->hdr, hdr, hdr_len);
  388. if (is_agg)
  389. txq_id = priv->tid_data[sta_id][tid].agg.txq_id;
  390. else if (info->flags & IEEE80211_TX_CTL_SEND_AFTER_DTIM) {
  391. /*
  392. * Send this frame after DTIM -- there's a special queue
  393. * reserved for this for contexts that support AP mode.
  394. */
  395. txq_id = ctx->mcast_queue;
  396. /*
  397. * The microcode will clear the more data
  398. * bit in the last frame it transmits.
  399. */
  400. hdr->frame_control |=
  401. cpu_to_le16(IEEE80211_FCTL_MOREDATA);
  402. } else if (info->flags & IEEE80211_TX_CTL_TX_OFFCHAN)
  403. txq_id = IWL_AUX_QUEUE;
  404. else
  405. txq_id = ctx->ac_to_queue[skb_get_queue_mapping(skb)];
  406. WARN_ON_ONCE(!is_agg && txq_id != info->hw_queue);
  407. WARN_ON_ONCE(is_agg &&
  408. priv->queue_to_mac80211[txq_id] != info->hw_queue);
  409. if (iwl_trans_tx(priv->trans, skb, dev_cmd, txq_id))
  410. goto drop_unlock_sta;
  411. if (is_data_qos && !ieee80211_has_morefrags(fc))
  412. priv->tid_data[sta_id][tid].seq_number = seq_number;
  413. spin_unlock(&priv->sta_lock);
  414. /*
  415. * Avoid atomic ops if it isn't an associated client.
  416. * Also, if this is a packet for aggregation, don't
  417. * increase the counter because the ucode will stop
  418. * aggregation queues when their respective station
  419. * goes to sleep.
  420. */
  421. if (sta_priv && sta_priv->client && !is_agg)
  422. atomic_inc(&sta_priv->pending_frames);
  423. if (info->flags & IEEE80211_TX_CTL_TX_OFFCHAN)
  424. iwl_scan_offchannel_skb(priv);
  425. return 0;
  426. drop_unlock_sta:
  427. if (dev_cmd)
  428. iwl_trans_free_tx_cmd(priv->trans, dev_cmd);
  429. spin_unlock(&priv->sta_lock);
  430. drop_unlock_priv:
  431. return -1;
  432. }
  433. static int iwlagn_alloc_agg_txq(struct iwl_priv *priv, int mq)
  434. {
  435. int q;
  436. for (q = IWLAGN_FIRST_AMPDU_QUEUE;
  437. q < priv->cfg->base_params->num_of_queues; q++) {
  438. if (!test_and_set_bit(q, priv->agg_q_alloc)) {
  439. priv->queue_to_mac80211[q] = mq;
  440. return q;
  441. }
  442. }
  443. return -ENOSPC;
  444. }
  445. static void iwlagn_dealloc_agg_txq(struct iwl_priv *priv, int q)
  446. {
  447. clear_bit(q, priv->agg_q_alloc);
  448. priv->queue_to_mac80211[q] = IWL_INVALID_MAC80211_QUEUE;
  449. }
  450. int iwlagn_tx_agg_stop(struct iwl_priv *priv, struct ieee80211_vif *vif,
  451. struct ieee80211_sta *sta, u16 tid)
  452. {
  453. struct iwl_tid_data *tid_data;
  454. int sta_id, txq_id;
  455. enum iwl_agg_state agg_state;
  456. sta_id = iwl_sta_id(sta);
  457. if (sta_id == IWL_INVALID_STATION) {
  458. IWL_ERR(priv, "Invalid station for AGG tid %d\n", tid);
  459. return -ENXIO;
  460. }
  461. spin_lock_bh(&priv->sta_lock);
  462. tid_data = &priv->tid_data[sta_id][tid];
  463. txq_id = priv->tid_data[sta_id][tid].agg.txq_id;
  464. switch (priv->tid_data[sta_id][tid].agg.state) {
  465. case IWL_EMPTYING_HW_QUEUE_ADDBA:
  466. /*
  467. * This can happen if the peer stops aggregation
  468. * again before we've had a chance to drain the
  469. * queue we selected previously, i.e. before the
  470. * session was really started completely.
  471. */
  472. IWL_DEBUG_HT(priv, "AGG stop before setup done\n");
  473. goto turn_off;
  474. case IWL_AGG_STARTING:
  475. /*
  476. * This can happen when the session is stopped before
  477. * we receive ADDBA response
  478. */
  479. IWL_DEBUG_HT(priv, "AGG stop before AGG became operational\n");
  480. goto turn_off;
  481. case IWL_AGG_ON:
  482. break;
  483. default:
  484. IWL_WARN(priv, "Stopping AGG while state not ON "
  485. "or starting for %d on %d (%d)\n", sta_id, tid,
  486. priv->tid_data[sta_id][tid].agg.state);
  487. spin_unlock_bh(&priv->sta_lock);
  488. return 0;
  489. }
  490. tid_data->agg.ssn = SEQ_TO_SN(tid_data->seq_number);
  491. /* There are still packets for this RA / TID in the HW */
  492. if (!test_bit(txq_id, priv->agg_q_alloc)) {
  493. IWL_DEBUG_TX_QUEUES(priv,
  494. "stopping AGG on STA/TID %d/%d but hwq %d not used\n",
  495. sta_id, tid, txq_id);
  496. } else if (tid_data->agg.ssn != tid_data->next_reclaimed) {
  497. IWL_DEBUG_TX_QUEUES(priv, "Can't proceed: ssn %d, "
  498. "next_recl = %d\n",
  499. tid_data->agg.ssn,
  500. tid_data->next_reclaimed);
  501. priv->tid_data[sta_id][tid].agg.state =
  502. IWL_EMPTYING_HW_QUEUE_DELBA;
  503. spin_unlock_bh(&priv->sta_lock);
  504. return 0;
  505. }
  506. IWL_DEBUG_TX_QUEUES(priv, "Can proceed: ssn = next_recl = %d\n",
  507. tid_data->agg.ssn);
  508. turn_off:
  509. agg_state = priv->tid_data[sta_id][tid].agg.state;
  510. priv->tid_data[sta_id][tid].agg.state = IWL_AGG_OFF;
  511. spin_unlock_bh(&priv->sta_lock);
  512. if (test_bit(txq_id, priv->agg_q_alloc)) {
  513. /*
  514. * If the transport didn't know that we wanted to start
  515. * agreggation, don't tell it that we want to stop them.
  516. * This can happen when we don't get the addBA response on
  517. * time, or we hadn't time to drain the AC queues.
  518. */
  519. if (agg_state == IWL_AGG_ON)
  520. iwl_trans_txq_disable(priv->trans, txq_id);
  521. else
  522. IWL_DEBUG_TX_QUEUES(priv, "Don't disable tx agg: %d\n",
  523. agg_state);
  524. iwlagn_dealloc_agg_txq(priv, txq_id);
  525. }
  526. ieee80211_stop_tx_ba_cb_irqsafe(vif, sta->addr, tid);
  527. return 0;
  528. }
  529. int iwlagn_tx_agg_start(struct iwl_priv *priv, struct ieee80211_vif *vif,
  530. struct ieee80211_sta *sta, u16 tid, u16 *ssn)
  531. {
  532. struct iwl_rxon_context *ctx = iwl_rxon_ctx_from_vif(vif);
  533. struct iwl_tid_data *tid_data;
  534. int sta_id, txq_id, ret;
  535. IWL_DEBUG_HT(priv, "TX AGG request on ra = %pM tid = %d\n",
  536. sta->addr, tid);
  537. sta_id = iwl_sta_id(sta);
  538. if (sta_id == IWL_INVALID_STATION) {
  539. IWL_ERR(priv, "Start AGG on invalid station\n");
  540. return -ENXIO;
  541. }
  542. if (unlikely(tid >= IWL_MAX_TID_COUNT))
  543. return -EINVAL;
  544. if (priv->tid_data[sta_id][tid].agg.state != IWL_AGG_OFF) {
  545. IWL_ERR(priv, "Start AGG when state is not IWL_AGG_OFF !\n");
  546. return -ENXIO;
  547. }
  548. txq_id = iwlagn_alloc_agg_txq(priv, ctx->ac_to_queue[tid_to_ac[tid]]);
  549. if (txq_id < 0) {
  550. IWL_DEBUG_TX_QUEUES(priv,
  551. "No free aggregation queue for %pM/%d\n",
  552. sta->addr, tid);
  553. return txq_id;
  554. }
  555. ret = iwl_sta_tx_modify_enable_tid(priv, sta_id, tid);
  556. if (ret)
  557. return ret;
  558. spin_lock_bh(&priv->sta_lock);
  559. tid_data = &priv->tid_data[sta_id][tid];
  560. tid_data->agg.ssn = SEQ_TO_SN(tid_data->seq_number);
  561. tid_data->agg.txq_id = txq_id;
  562. *ssn = tid_data->agg.ssn;
  563. if (*ssn == tid_data->next_reclaimed) {
  564. IWL_DEBUG_TX_QUEUES(priv, "Can proceed: ssn = next_recl = %d\n",
  565. tid_data->agg.ssn);
  566. tid_data->agg.state = IWL_AGG_STARTING;
  567. ieee80211_start_tx_ba_cb_irqsafe(vif, sta->addr, tid);
  568. } else {
  569. IWL_DEBUG_TX_QUEUES(priv, "Can't proceed: ssn %d, "
  570. "next_reclaimed = %d\n",
  571. tid_data->agg.ssn,
  572. tid_data->next_reclaimed);
  573. tid_data->agg.state = IWL_EMPTYING_HW_QUEUE_ADDBA;
  574. }
  575. spin_unlock_bh(&priv->sta_lock);
  576. return ret;
  577. }
  578. int iwlagn_tx_agg_oper(struct iwl_priv *priv, struct ieee80211_vif *vif,
  579. struct ieee80211_sta *sta, u16 tid, u8 buf_size)
  580. {
  581. struct iwl_station_priv *sta_priv = (void *) sta->drv_priv;
  582. struct iwl_rxon_context *ctx = iwl_rxon_ctx_from_vif(vif);
  583. int q, fifo;
  584. u16 ssn;
  585. buf_size = min_t(int, buf_size, LINK_QUAL_AGG_FRAME_LIMIT_DEF);
  586. spin_lock_bh(&priv->sta_lock);
  587. ssn = priv->tid_data[sta_priv->sta_id][tid].agg.ssn;
  588. q = priv->tid_data[sta_priv->sta_id][tid].agg.txq_id;
  589. priv->tid_data[sta_priv->sta_id][tid].agg.state = IWL_AGG_ON;
  590. spin_unlock_bh(&priv->sta_lock);
  591. fifo = ctx->ac_to_fifo[tid_to_ac[tid]];
  592. iwl_trans_txq_enable(priv->trans, q, fifo, sta_priv->sta_id, tid,
  593. buf_size, ssn);
  594. /*
  595. * If the limit is 0, then it wasn't initialised yet,
  596. * use the default. We can do that since we take the
  597. * minimum below, and we don't want to go above our
  598. * default due to hardware restrictions.
  599. */
  600. if (sta_priv->max_agg_bufsize == 0)
  601. sta_priv->max_agg_bufsize =
  602. LINK_QUAL_AGG_FRAME_LIMIT_DEF;
  603. /*
  604. * Even though in theory the peer could have different
  605. * aggregation reorder buffer sizes for different sessions,
  606. * our ucode doesn't allow for that and has a global limit
  607. * for each station. Therefore, use the minimum of all the
  608. * aggregation sessions and our default value.
  609. */
  610. sta_priv->max_agg_bufsize =
  611. min(sta_priv->max_agg_bufsize, buf_size);
  612. if (priv->hw_params.use_rts_for_aggregation) {
  613. /*
  614. * switch to RTS/CTS if it is the prefer protection
  615. * method for HT traffic
  616. */
  617. sta_priv->lq_sta.lq.general_params.flags |=
  618. LINK_QUAL_FLAGS_SET_STA_TLC_RTS_MSK;
  619. }
  620. priv->agg_tids_count++;
  621. IWL_DEBUG_HT(priv, "priv->agg_tids_count = %u\n",
  622. priv->agg_tids_count);
  623. sta_priv->lq_sta.lq.agg_params.agg_frame_cnt_limit =
  624. sta_priv->max_agg_bufsize;
  625. IWL_DEBUG_HT(priv, "Tx aggregation enabled on ra = %pM tid = %d\n",
  626. sta->addr, tid);
  627. return iwl_send_lq_cmd(priv, ctx,
  628. &sta_priv->lq_sta.lq, CMD_ASYNC, false);
  629. }
  630. static void iwlagn_check_ratid_empty(struct iwl_priv *priv, int sta_id, u8 tid)
  631. {
  632. struct iwl_tid_data *tid_data = &priv->tid_data[sta_id][tid];
  633. enum iwl_rxon_context_id ctx;
  634. struct ieee80211_vif *vif;
  635. u8 *addr;
  636. lockdep_assert_held(&priv->sta_lock);
  637. addr = priv->stations[sta_id].sta.sta.addr;
  638. ctx = priv->stations[sta_id].ctxid;
  639. vif = priv->contexts[ctx].vif;
  640. switch (priv->tid_data[sta_id][tid].agg.state) {
  641. case IWL_EMPTYING_HW_QUEUE_DELBA:
  642. /* There are no packets for this RA / TID in the HW any more */
  643. if (tid_data->agg.ssn == tid_data->next_reclaimed) {
  644. IWL_DEBUG_TX_QUEUES(priv,
  645. "Can continue DELBA flow ssn = next_recl ="
  646. " %d", tid_data->next_reclaimed);
  647. iwl_trans_txq_disable(priv->trans,
  648. tid_data->agg.txq_id);
  649. iwlagn_dealloc_agg_txq(priv, tid_data->agg.txq_id);
  650. tid_data->agg.state = IWL_AGG_OFF;
  651. ieee80211_stop_tx_ba_cb_irqsafe(vif, addr, tid);
  652. }
  653. break;
  654. case IWL_EMPTYING_HW_QUEUE_ADDBA:
  655. /* There are no packets for this RA / TID in the HW any more */
  656. if (tid_data->agg.ssn == tid_data->next_reclaimed) {
  657. IWL_DEBUG_TX_QUEUES(priv,
  658. "Can continue ADDBA flow ssn = next_recl ="
  659. " %d", tid_data->next_reclaimed);
  660. tid_data->agg.state = IWL_AGG_STARTING;
  661. ieee80211_start_tx_ba_cb_irqsafe(vif, addr, tid);
  662. }
  663. break;
  664. default:
  665. break;
  666. }
  667. }
  668. static void iwlagn_non_agg_tx_status(struct iwl_priv *priv,
  669. struct iwl_rxon_context *ctx,
  670. const u8 *addr1)
  671. {
  672. struct ieee80211_sta *sta;
  673. struct iwl_station_priv *sta_priv;
  674. rcu_read_lock();
  675. sta = ieee80211_find_sta(ctx->vif, addr1);
  676. if (sta) {
  677. sta_priv = (void *)sta->drv_priv;
  678. /* avoid atomic ops if this isn't a client */
  679. if (sta_priv->client &&
  680. atomic_dec_return(&sta_priv->pending_frames) == 0)
  681. ieee80211_sta_block_awake(priv->hw, sta, false);
  682. }
  683. rcu_read_unlock();
  684. }
  685. /**
  686. * translate ucode response to mac80211 tx status control values
  687. */
  688. static void iwlagn_hwrate_to_tx_control(struct iwl_priv *priv, u32 rate_n_flags,
  689. struct ieee80211_tx_info *info)
  690. {
  691. struct ieee80211_tx_rate *r = &info->status.rates[0];
  692. info->status.antenna =
  693. ((rate_n_flags & RATE_MCS_ANT_ABC_MSK) >> RATE_MCS_ANT_POS);
  694. if (rate_n_flags & RATE_MCS_HT_MSK)
  695. r->flags |= IEEE80211_TX_RC_MCS;
  696. if (rate_n_flags & RATE_MCS_GF_MSK)
  697. r->flags |= IEEE80211_TX_RC_GREEN_FIELD;
  698. if (rate_n_flags & RATE_MCS_HT40_MSK)
  699. r->flags |= IEEE80211_TX_RC_40_MHZ_WIDTH;
  700. if (rate_n_flags & RATE_MCS_DUP_MSK)
  701. r->flags |= IEEE80211_TX_RC_DUP_DATA;
  702. if (rate_n_flags & RATE_MCS_SGI_MSK)
  703. r->flags |= IEEE80211_TX_RC_SHORT_GI;
  704. r->idx = iwlagn_hwrate_to_mac80211_idx(rate_n_flags, info->band);
  705. }
  706. #ifdef CONFIG_IWLWIFI_DEBUG
  707. const char *iwl_get_tx_fail_reason(u32 status)
  708. {
  709. #define TX_STATUS_FAIL(x) case TX_STATUS_FAIL_ ## x: return #x
  710. #define TX_STATUS_POSTPONE(x) case TX_STATUS_POSTPONE_ ## x: return #x
  711. switch (status & TX_STATUS_MSK) {
  712. case TX_STATUS_SUCCESS:
  713. return "SUCCESS";
  714. TX_STATUS_POSTPONE(DELAY);
  715. TX_STATUS_POSTPONE(FEW_BYTES);
  716. TX_STATUS_POSTPONE(BT_PRIO);
  717. TX_STATUS_POSTPONE(QUIET_PERIOD);
  718. TX_STATUS_POSTPONE(CALC_TTAK);
  719. TX_STATUS_FAIL(INTERNAL_CROSSED_RETRY);
  720. TX_STATUS_FAIL(SHORT_LIMIT);
  721. TX_STATUS_FAIL(LONG_LIMIT);
  722. TX_STATUS_FAIL(FIFO_UNDERRUN);
  723. TX_STATUS_FAIL(DRAIN_FLOW);
  724. TX_STATUS_FAIL(RFKILL_FLUSH);
  725. TX_STATUS_FAIL(LIFE_EXPIRE);
  726. TX_STATUS_FAIL(DEST_PS);
  727. TX_STATUS_FAIL(HOST_ABORTED);
  728. TX_STATUS_FAIL(BT_RETRY);
  729. TX_STATUS_FAIL(STA_INVALID);
  730. TX_STATUS_FAIL(FRAG_DROPPED);
  731. TX_STATUS_FAIL(TID_DISABLE);
  732. TX_STATUS_FAIL(FIFO_FLUSHED);
  733. TX_STATUS_FAIL(INSUFFICIENT_CF_POLL);
  734. TX_STATUS_FAIL(PASSIVE_NO_RX);
  735. TX_STATUS_FAIL(NO_BEACON_ON_RADAR);
  736. }
  737. return "UNKNOWN";
  738. #undef TX_STATUS_FAIL
  739. #undef TX_STATUS_POSTPONE
  740. }
  741. #endif /* CONFIG_IWLWIFI_DEBUG */
  742. static void iwlagn_count_agg_tx_err_status(struct iwl_priv *priv, u16 status)
  743. {
  744. status &= AGG_TX_STATUS_MSK;
  745. switch (status) {
  746. case AGG_TX_STATE_UNDERRUN_MSK:
  747. priv->reply_agg_tx_stats.underrun++;
  748. break;
  749. case AGG_TX_STATE_BT_PRIO_MSK:
  750. priv->reply_agg_tx_stats.bt_prio++;
  751. break;
  752. case AGG_TX_STATE_FEW_BYTES_MSK:
  753. priv->reply_agg_tx_stats.few_bytes++;
  754. break;
  755. case AGG_TX_STATE_ABORT_MSK:
  756. priv->reply_agg_tx_stats.abort++;
  757. break;
  758. case AGG_TX_STATE_LAST_SENT_TTL_MSK:
  759. priv->reply_agg_tx_stats.last_sent_ttl++;
  760. break;
  761. case AGG_TX_STATE_LAST_SENT_TRY_CNT_MSK:
  762. priv->reply_agg_tx_stats.last_sent_try++;
  763. break;
  764. case AGG_TX_STATE_LAST_SENT_BT_KILL_MSK:
  765. priv->reply_agg_tx_stats.last_sent_bt_kill++;
  766. break;
  767. case AGG_TX_STATE_SCD_QUERY_MSK:
  768. priv->reply_agg_tx_stats.scd_query++;
  769. break;
  770. case AGG_TX_STATE_TEST_BAD_CRC32_MSK:
  771. priv->reply_agg_tx_stats.bad_crc32++;
  772. break;
  773. case AGG_TX_STATE_RESPONSE_MSK:
  774. priv->reply_agg_tx_stats.response++;
  775. break;
  776. case AGG_TX_STATE_DUMP_TX_MSK:
  777. priv->reply_agg_tx_stats.dump_tx++;
  778. break;
  779. case AGG_TX_STATE_DELAY_TX_MSK:
  780. priv->reply_agg_tx_stats.delay_tx++;
  781. break;
  782. default:
  783. priv->reply_agg_tx_stats.unknown++;
  784. break;
  785. }
  786. }
  787. static void iwl_rx_reply_tx_agg(struct iwl_priv *priv,
  788. struct iwlagn_tx_resp *tx_resp)
  789. {
  790. struct agg_tx_status *frame_status = &tx_resp->status;
  791. int tid = (tx_resp->ra_tid & IWLAGN_TX_RES_TID_MSK) >>
  792. IWLAGN_TX_RES_TID_POS;
  793. int sta_id = (tx_resp->ra_tid & IWLAGN_TX_RES_RA_MSK) >>
  794. IWLAGN_TX_RES_RA_POS;
  795. struct iwl_ht_agg *agg = &priv->tid_data[sta_id][tid].agg;
  796. u32 status = le16_to_cpu(tx_resp->status.status);
  797. int i;
  798. WARN_ON(tid == IWL_TID_NON_QOS);
  799. if (agg->wait_for_ba)
  800. IWL_DEBUG_TX_REPLY(priv,
  801. "got tx response w/o block-ack\n");
  802. agg->rate_n_flags = le32_to_cpu(tx_resp->rate_n_flags);
  803. agg->wait_for_ba = (tx_resp->frame_count > 1);
  804. /*
  805. * If the BT kill count is non-zero, we'll get this
  806. * notification again.
  807. */
  808. if (tx_resp->bt_kill_count && tx_resp->frame_count == 1 &&
  809. priv->cfg->bt_params &&
  810. priv->cfg->bt_params->advanced_bt_coexist) {
  811. IWL_DEBUG_COEX(priv, "receive reply tx w/ bt_kill\n");
  812. }
  813. if (tx_resp->frame_count == 1)
  814. return;
  815. /* Construct bit-map of pending frames within Tx window */
  816. for (i = 0; i < tx_resp->frame_count; i++) {
  817. u16 fstatus = le16_to_cpu(frame_status[i].status);
  818. if (status & AGG_TX_STATUS_MSK)
  819. iwlagn_count_agg_tx_err_status(priv, fstatus);
  820. if (status & (AGG_TX_STATE_FEW_BYTES_MSK |
  821. AGG_TX_STATE_ABORT_MSK))
  822. continue;
  823. IWL_DEBUG_TX_REPLY(priv, "status %s (0x%08x), "
  824. "try-count (0x%08x)\n",
  825. iwl_get_agg_tx_fail_reason(fstatus),
  826. fstatus & AGG_TX_STATUS_MSK,
  827. fstatus & AGG_TX_TRY_MSK);
  828. }
  829. }
  830. #ifdef CONFIG_IWLWIFI_DEBUG
  831. #define AGG_TX_STATE_FAIL(x) case AGG_TX_STATE_ ## x: return #x
  832. const char *iwl_get_agg_tx_fail_reason(u16 status)
  833. {
  834. status &= AGG_TX_STATUS_MSK;
  835. switch (status) {
  836. case AGG_TX_STATE_TRANSMITTED:
  837. return "SUCCESS";
  838. AGG_TX_STATE_FAIL(UNDERRUN_MSK);
  839. AGG_TX_STATE_FAIL(BT_PRIO_MSK);
  840. AGG_TX_STATE_FAIL(FEW_BYTES_MSK);
  841. AGG_TX_STATE_FAIL(ABORT_MSK);
  842. AGG_TX_STATE_FAIL(LAST_SENT_TTL_MSK);
  843. AGG_TX_STATE_FAIL(LAST_SENT_TRY_CNT_MSK);
  844. AGG_TX_STATE_FAIL(LAST_SENT_BT_KILL_MSK);
  845. AGG_TX_STATE_FAIL(SCD_QUERY_MSK);
  846. AGG_TX_STATE_FAIL(TEST_BAD_CRC32_MSK);
  847. AGG_TX_STATE_FAIL(RESPONSE_MSK);
  848. AGG_TX_STATE_FAIL(DUMP_TX_MSK);
  849. AGG_TX_STATE_FAIL(DELAY_TX_MSK);
  850. }
  851. return "UNKNOWN";
  852. }
  853. #endif /* CONFIG_IWLWIFI_DEBUG */
  854. static inline u32 iwlagn_get_scd_ssn(struct iwlagn_tx_resp *tx_resp)
  855. {
  856. return le32_to_cpup((__le32 *)&tx_resp->status +
  857. tx_resp->frame_count) & MAX_SN;
  858. }
  859. static void iwlagn_count_tx_err_status(struct iwl_priv *priv, u16 status)
  860. {
  861. status &= TX_STATUS_MSK;
  862. switch (status) {
  863. case TX_STATUS_POSTPONE_DELAY:
  864. priv->reply_tx_stats.pp_delay++;
  865. break;
  866. case TX_STATUS_POSTPONE_FEW_BYTES:
  867. priv->reply_tx_stats.pp_few_bytes++;
  868. break;
  869. case TX_STATUS_POSTPONE_BT_PRIO:
  870. priv->reply_tx_stats.pp_bt_prio++;
  871. break;
  872. case TX_STATUS_POSTPONE_QUIET_PERIOD:
  873. priv->reply_tx_stats.pp_quiet_period++;
  874. break;
  875. case TX_STATUS_POSTPONE_CALC_TTAK:
  876. priv->reply_tx_stats.pp_calc_ttak++;
  877. break;
  878. case TX_STATUS_FAIL_INTERNAL_CROSSED_RETRY:
  879. priv->reply_tx_stats.int_crossed_retry++;
  880. break;
  881. case TX_STATUS_FAIL_SHORT_LIMIT:
  882. priv->reply_tx_stats.short_limit++;
  883. break;
  884. case TX_STATUS_FAIL_LONG_LIMIT:
  885. priv->reply_tx_stats.long_limit++;
  886. break;
  887. case TX_STATUS_FAIL_FIFO_UNDERRUN:
  888. priv->reply_tx_stats.fifo_underrun++;
  889. break;
  890. case TX_STATUS_FAIL_DRAIN_FLOW:
  891. priv->reply_tx_stats.drain_flow++;
  892. break;
  893. case TX_STATUS_FAIL_RFKILL_FLUSH:
  894. priv->reply_tx_stats.rfkill_flush++;
  895. break;
  896. case TX_STATUS_FAIL_LIFE_EXPIRE:
  897. priv->reply_tx_stats.life_expire++;
  898. break;
  899. case TX_STATUS_FAIL_DEST_PS:
  900. priv->reply_tx_stats.dest_ps++;
  901. break;
  902. case TX_STATUS_FAIL_HOST_ABORTED:
  903. priv->reply_tx_stats.host_abort++;
  904. break;
  905. case TX_STATUS_FAIL_BT_RETRY:
  906. priv->reply_tx_stats.bt_retry++;
  907. break;
  908. case TX_STATUS_FAIL_STA_INVALID:
  909. priv->reply_tx_stats.sta_invalid++;
  910. break;
  911. case TX_STATUS_FAIL_FRAG_DROPPED:
  912. priv->reply_tx_stats.frag_drop++;
  913. break;
  914. case TX_STATUS_FAIL_TID_DISABLE:
  915. priv->reply_tx_stats.tid_disable++;
  916. break;
  917. case TX_STATUS_FAIL_FIFO_FLUSHED:
  918. priv->reply_tx_stats.fifo_flush++;
  919. break;
  920. case TX_STATUS_FAIL_INSUFFICIENT_CF_POLL:
  921. priv->reply_tx_stats.insuff_cf_poll++;
  922. break;
  923. case TX_STATUS_FAIL_PASSIVE_NO_RX:
  924. priv->reply_tx_stats.fail_hw_drop++;
  925. break;
  926. case TX_STATUS_FAIL_NO_BEACON_ON_RADAR:
  927. priv->reply_tx_stats.sta_color_mismatch++;
  928. break;
  929. default:
  930. priv->reply_tx_stats.unknown++;
  931. break;
  932. }
  933. }
  934. static void iwlagn_set_tx_status(struct iwl_priv *priv,
  935. struct ieee80211_tx_info *info,
  936. struct iwlagn_tx_resp *tx_resp)
  937. {
  938. u16 status = le16_to_cpu(tx_resp->status.status);
  939. info->flags &= ~IEEE80211_TX_CTL_AMPDU;
  940. info->status.rates[0].count = tx_resp->failure_frame + 1;
  941. info->flags |= iwl_tx_status_to_mac80211(status);
  942. iwlagn_hwrate_to_tx_control(priv, le32_to_cpu(tx_resp->rate_n_flags),
  943. info);
  944. if (!iwl_is_tx_success(status))
  945. iwlagn_count_tx_err_status(priv, status);
  946. }
  947. static void iwl_check_abort_status(struct iwl_priv *priv,
  948. u8 frame_count, u32 status)
  949. {
  950. if (frame_count == 1 && status == TX_STATUS_FAIL_RFKILL_FLUSH) {
  951. IWL_ERR(priv, "Tx flush command to flush out all frames\n");
  952. if (!test_bit(STATUS_EXIT_PENDING, &priv->status))
  953. queue_work(priv->workqueue, &priv->tx_flush);
  954. }
  955. }
  956. int iwlagn_rx_reply_tx(struct iwl_priv *priv, struct iwl_rx_cmd_buffer *rxb,
  957. struct iwl_device_cmd *cmd)
  958. {
  959. struct iwl_rx_packet *pkt = rxb_addr(rxb);
  960. u16 sequence = le16_to_cpu(pkt->hdr.sequence);
  961. int txq_id = SEQ_TO_QUEUE(sequence);
  962. int cmd_index __maybe_unused = SEQ_TO_INDEX(sequence);
  963. struct iwlagn_tx_resp *tx_resp = (void *)pkt->data;
  964. struct ieee80211_hdr *hdr;
  965. u32 status = le16_to_cpu(tx_resp->status.status);
  966. u16 ssn = iwlagn_get_scd_ssn(tx_resp);
  967. int tid;
  968. int sta_id;
  969. int freed;
  970. struct ieee80211_tx_info *info;
  971. struct sk_buff_head skbs;
  972. struct sk_buff *skb;
  973. struct iwl_rxon_context *ctx;
  974. bool is_agg = (txq_id >= IWLAGN_FIRST_AMPDU_QUEUE);
  975. bool is_offchannel_skb;
  976. tid = (tx_resp->ra_tid & IWLAGN_TX_RES_TID_MSK) >>
  977. IWLAGN_TX_RES_TID_POS;
  978. sta_id = (tx_resp->ra_tid & IWLAGN_TX_RES_RA_MSK) >>
  979. IWLAGN_TX_RES_RA_POS;
  980. spin_lock(&priv->sta_lock);
  981. if (is_agg)
  982. iwl_rx_reply_tx_agg(priv, tx_resp);
  983. __skb_queue_head_init(&skbs);
  984. is_offchannel_skb = false;
  985. if (tx_resp->frame_count == 1) {
  986. u16 next_reclaimed = le16_to_cpu(tx_resp->seq_ctl);
  987. next_reclaimed = SEQ_TO_SN(next_reclaimed + 0x10);
  988. if (is_agg) {
  989. /* If this is an aggregation queue, we can rely on the
  990. * ssn since the wifi sequence number corresponds to
  991. * the index in the TFD ring (%256).
  992. * The seq_ctl is the sequence control of the packet
  993. * to which this Tx response relates. But if there is a
  994. * hole in the bitmap of the BA we received, this Tx
  995. * response may allow to reclaim the hole and all the
  996. * subsequent packets that were already acked.
  997. * In that case, seq_ctl != ssn, and the next packet
  998. * to be reclaimed will be ssn and not seq_ctl.
  999. */
  1000. next_reclaimed = ssn;
  1001. }
  1002. if (tid != IWL_TID_NON_QOS) {
  1003. priv->tid_data[sta_id][tid].next_reclaimed =
  1004. next_reclaimed;
  1005. IWL_DEBUG_TX_REPLY(priv, "Next reclaimed packet:%d\n",
  1006. next_reclaimed);
  1007. }
  1008. iwl_trans_reclaim(priv->trans, txq_id, ssn, &skbs);
  1009. iwlagn_check_ratid_empty(priv, sta_id, tid);
  1010. freed = 0;
  1011. /* process frames */
  1012. skb_queue_walk(&skbs, skb) {
  1013. hdr = (struct ieee80211_hdr *)skb->data;
  1014. if (!ieee80211_is_data_qos(hdr->frame_control))
  1015. priv->last_seq_ctl = tx_resp->seq_ctl;
  1016. info = IEEE80211_SKB_CB(skb);
  1017. ctx = info->driver_data[0];
  1018. iwl_trans_free_tx_cmd(priv->trans,
  1019. info->driver_data[1]);
  1020. memset(&info->status, 0, sizeof(info->status));
  1021. if (status == TX_STATUS_FAIL_PASSIVE_NO_RX &&
  1022. iwl_is_associated_ctx(ctx) && ctx->vif &&
  1023. ctx->vif->type == NL80211_IFTYPE_STATION) {
  1024. /* block and stop all queues */
  1025. priv->passive_no_rx = true;
  1026. IWL_DEBUG_TX_QUEUES(priv, "stop all queues: "
  1027. "passive channel");
  1028. ieee80211_stop_queues(priv->hw);
  1029. IWL_DEBUG_TX_REPLY(priv,
  1030. "TXQ %d status %s (0x%08x) "
  1031. "rate_n_flags 0x%x retries %d\n",
  1032. txq_id,
  1033. iwl_get_tx_fail_reason(status),
  1034. status,
  1035. le32_to_cpu(tx_resp->rate_n_flags),
  1036. tx_resp->failure_frame);
  1037. IWL_DEBUG_TX_REPLY(priv,
  1038. "FrameCnt = %d, idx=%d\n",
  1039. tx_resp->frame_count, cmd_index);
  1040. }
  1041. /* check if BAR is needed */
  1042. if (is_agg && !iwl_is_tx_success(status))
  1043. info->flags |= IEEE80211_TX_STAT_AMPDU_NO_BACK;
  1044. iwlagn_set_tx_status(priv, IEEE80211_SKB_CB(skb),
  1045. tx_resp);
  1046. if (!is_agg)
  1047. iwlagn_non_agg_tx_status(priv, ctx, hdr->addr1);
  1048. is_offchannel_skb =
  1049. (info->flags & IEEE80211_TX_CTL_TX_OFFCHAN);
  1050. freed++;
  1051. }
  1052. WARN_ON(!is_agg && freed != 1);
  1053. /*
  1054. * An offchannel frame can be send only on the AUX queue, where
  1055. * there is no aggregation (and reordering) so it only is single
  1056. * skb is expected to be processed.
  1057. */
  1058. WARN_ON(is_offchannel_skb && freed != 1);
  1059. }
  1060. iwl_check_abort_status(priv, tx_resp->frame_count, status);
  1061. spin_unlock(&priv->sta_lock);
  1062. while (!skb_queue_empty(&skbs)) {
  1063. skb = __skb_dequeue(&skbs);
  1064. ieee80211_tx_status(priv->hw, skb);
  1065. }
  1066. if (is_offchannel_skb)
  1067. iwl_scan_offchannel_skb_status(priv);
  1068. return 0;
  1069. }
  1070. /**
  1071. * iwlagn_rx_reply_compressed_ba - Handler for REPLY_COMPRESSED_BA
  1072. *
  1073. * Handles block-acknowledge notification from device, which reports success
  1074. * of frames sent via aggregation.
  1075. */
  1076. int iwlagn_rx_reply_compressed_ba(struct iwl_priv *priv,
  1077. struct iwl_rx_cmd_buffer *rxb,
  1078. struct iwl_device_cmd *cmd)
  1079. {
  1080. struct iwl_rx_packet *pkt = rxb_addr(rxb);
  1081. struct iwl_compressed_ba_resp *ba_resp = (void *)pkt->data;
  1082. struct iwl_ht_agg *agg;
  1083. struct sk_buff_head reclaimed_skbs;
  1084. struct ieee80211_tx_info *info;
  1085. struct ieee80211_hdr *hdr;
  1086. struct sk_buff *skb;
  1087. int sta_id;
  1088. int tid;
  1089. int freed;
  1090. /* "flow" corresponds to Tx queue */
  1091. u16 scd_flow = le16_to_cpu(ba_resp->scd_flow);
  1092. /* "ssn" is start of block-ack Tx window, corresponds to index
  1093. * (in Tx queue's circular buffer) of first TFD/frame in window */
  1094. u16 ba_resp_scd_ssn = le16_to_cpu(ba_resp->scd_ssn);
  1095. if (scd_flow >= priv->cfg->base_params->num_of_queues) {
  1096. IWL_ERR(priv,
  1097. "BUG_ON scd_flow is bigger than number of queues\n");
  1098. return 0;
  1099. }
  1100. sta_id = ba_resp->sta_id;
  1101. tid = ba_resp->tid;
  1102. agg = &priv->tid_data[sta_id][tid].agg;
  1103. spin_lock(&priv->sta_lock);
  1104. if (unlikely(!agg->wait_for_ba)) {
  1105. if (unlikely(ba_resp->bitmap))
  1106. IWL_ERR(priv, "Received BA when not expected\n");
  1107. spin_unlock(&priv->sta_lock);
  1108. return 0;
  1109. }
  1110. if (unlikely(scd_flow != agg->txq_id)) {
  1111. /*
  1112. * FIXME: this is a uCode bug which need to be addressed,
  1113. * log the information and return for now.
  1114. * Since it is can possibly happen very often and in order
  1115. * not to fill the syslog, don't use IWL_ERR or IWL_WARN
  1116. */
  1117. IWL_DEBUG_TX_QUEUES(priv,
  1118. "Bad queue mapping txq_id=%d, agg_txq[sta:%d,tid:%d]=%d\n",
  1119. scd_flow, sta_id, tid, agg->txq_id);
  1120. spin_unlock(&priv->sta_lock);
  1121. return 0;
  1122. }
  1123. __skb_queue_head_init(&reclaimed_skbs);
  1124. /* Release all TFDs before the SSN, i.e. all TFDs in front of
  1125. * block-ack window (we assume that they've been successfully
  1126. * transmitted ... if not, it's too late anyway). */
  1127. iwl_trans_reclaim(priv->trans, scd_flow, ba_resp_scd_ssn,
  1128. &reclaimed_skbs);
  1129. IWL_DEBUG_TX_REPLY(priv, "REPLY_COMPRESSED_BA [%d] Received from %pM, "
  1130. "sta_id = %d\n",
  1131. agg->wait_for_ba,
  1132. (u8 *) &ba_resp->sta_addr_lo32,
  1133. ba_resp->sta_id);
  1134. IWL_DEBUG_TX_REPLY(priv, "TID = %d, SeqCtl = %d, bitmap = 0x%llx, "
  1135. "scd_flow = %d, scd_ssn = %d sent:%d, acked:%d\n",
  1136. ba_resp->tid, le16_to_cpu(ba_resp->seq_ctl),
  1137. (unsigned long long)le64_to_cpu(ba_resp->bitmap),
  1138. scd_flow, ba_resp_scd_ssn, ba_resp->txed,
  1139. ba_resp->txed_2_done);
  1140. /* Mark that the expected block-ack response arrived */
  1141. agg->wait_for_ba = false;
  1142. /* Sanity check values reported by uCode */
  1143. if (ba_resp->txed_2_done > ba_resp->txed) {
  1144. IWL_DEBUG_TX_REPLY(priv,
  1145. "bogus sent(%d) and ack(%d) count\n",
  1146. ba_resp->txed, ba_resp->txed_2_done);
  1147. /*
  1148. * set txed_2_done = txed,
  1149. * so it won't impact rate scale
  1150. */
  1151. ba_resp->txed = ba_resp->txed_2_done;
  1152. }
  1153. priv->tid_data[sta_id][tid].next_reclaimed = ba_resp_scd_ssn;
  1154. iwlagn_check_ratid_empty(priv, sta_id, tid);
  1155. freed = 0;
  1156. skb_queue_walk(&reclaimed_skbs, skb) {
  1157. hdr = (struct ieee80211_hdr *)skb->data;
  1158. if (ieee80211_is_data_qos(hdr->frame_control))
  1159. freed++;
  1160. else
  1161. WARN_ON_ONCE(1);
  1162. info = IEEE80211_SKB_CB(skb);
  1163. iwl_trans_free_tx_cmd(priv->trans, info->driver_data[1]);
  1164. if (freed == 1) {
  1165. /* this is the first skb we deliver in this batch */
  1166. /* put the rate scaling data there */
  1167. info = IEEE80211_SKB_CB(skb);
  1168. memset(&info->status, 0, sizeof(info->status));
  1169. info->flags |= IEEE80211_TX_STAT_ACK;
  1170. info->flags |= IEEE80211_TX_STAT_AMPDU;
  1171. info->status.ampdu_ack_len = ba_resp->txed_2_done;
  1172. info->status.ampdu_len = ba_resp->txed;
  1173. iwlagn_hwrate_to_tx_control(priv, agg->rate_n_flags,
  1174. info);
  1175. }
  1176. }
  1177. spin_unlock(&priv->sta_lock);
  1178. while (!skb_queue_empty(&reclaimed_skbs)) {
  1179. skb = __skb_dequeue(&reclaimed_skbs);
  1180. ieee80211_tx_status(priv->hw, skb);
  1181. }
  1182. return 0;
  1183. }