agg-rx.c 8.7 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 2007-2008, 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 <net/mac80211.h>
  18. #include "ieee80211_i.h"
  19. #include "driver-ops.h"
  20. static void ieee80211_free_tid_rx(struct rcu_head *h)
  21. {
  22. struct tid_ampdu_rx *tid_rx =
  23. container_of(h, struct tid_ampdu_rx, rcu_head);
  24. int i;
  25. for (i = 0; i < tid_rx->buf_size; i++)
  26. dev_kfree_skb(tid_rx->reorder_buf[i]);
  27. kfree(tid_rx->reorder_buf);
  28. kfree(tid_rx->reorder_time);
  29. kfree(tid_rx);
  30. }
  31. static void ___ieee80211_stop_rx_ba_session(struct sta_info *sta, u16 tid,
  32. u16 initiator, u16 reason,
  33. bool from_timer)
  34. {
  35. struct ieee80211_local *local = sta->local;
  36. struct tid_ampdu_rx *tid_rx;
  37. spin_lock_bh(&sta->lock);
  38. tid_rx = sta->ampdu_mlme.tid_rx[tid];
  39. if (!tid_rx) {
  40. spin_unlock_bh(&sta->lock);
  41. return;
  42. }
  43. rcu_assign_pointer(sta->ampdu_mlme.tid_rx[tid], NULL);
  44. #ifdef CONFIG_MAC80211_HT_DEBUG
  45. printk(KERN_DEBUG "Rx BA session stop requested for %pM tid %u\n",
  46. sta->sta.addr, tid);
  47. #endif /* CONFIG_MAC80211_HT_DEBUG */
  48. if (drv_ampdu_action(local, sta->sdata, IEEE80211_AMPDU_RX_STOP,
  49. &sta->sta, tid, NULL))
  50. printk(KERN_DEBUG "HW problem - can not stop rx "
  51. "aggregation for tid %d\n", tid);
  52. /* check if this is a self generated aggregation halt */
  53. if (initiator == WLAN_BACK_RECIPIENT)
  54. ieee80211_send_delba(sta->sdata, sta->sta.addr,
  55. tid, 0, reason);
  56. spin_unlock_bh(&sta->lock);
  57. if (!from_timer)
  58. del_timer_sync(&tid_rx->session_timer);
  59. call_rcu(&tid_rx->rcu_head, ieee80211_free_tid_rx);
  60. }
  61. void __ieee80211_stop_rx_ba_session(struct sta_info *sta, u16 tid,
  62. u16 initiator, u16 reason)
  63. {
  64. ___ieee80211_stop_rx_ba_session(sta, tid, initiator, reason, false);
  65. }
  66. /*
  67. * After accepting the AddBA Request we activated a timer,
  68. * resetting it after each frame that arrives from the originator.
  69. */
  70. static void sta_rx_agg_session_timer_expired(unsigned long data)
  71. {
  72. /* not an elegant detour, but there is no choice as the timer passes
  73. * only one argument, and various sta_info are needed here, so init
  74. * flow in sta_info_create gives the TID as data, while the timer_to_id
  75. * array gives the sta through container_of */
  76. u8 *ptid = (u8 *)data;
  77. u8 *timer_to_id = ptid - *ptid;
  78. struct sta_info *sta = container_of(timer_to_id, struct sta_info,
  79. timer_to_tid[0]);
  80. #ifdef CONFIG_MAC80211_HT_DEBUG
  81. printk(KERN_DEBUG "rx session timer expired on tid %d\n", (u16)*ptid);
  82. #endif
  83. ___ieee80211_stop_rx_ba_session(sta, *ptid, WLAN_BACK_RECIPIENT,
  84. WLAN_REASON_QSTA_TIMEOUT, true);
  85. }
  86. static void ieee80211_send_addba_resp(struct ieee80211_sub_if_data *sdata, u8 *da, u16 tid,
  87. u8 dialog_token, u16 status, u16 policy,
  88. u16 buf_size, u16 timeout)
  89. {
  90. struct ieee80211_local *local = sdata->local;
  91. struct sk_buff *skb;
  92. struct ieee80211_mgmt *mgmt;
  93. u16 capab;
  94. skb = dev_alloc_skb(sizeof(*mgmt) + local->hw.extra_tx_headroom);
  95. if (!skb) {
  96. printk(KERN_DEBUG "%s: failed to allocate buffer "
  97. "for addba resp frame\n", sdata->name);
  98. return;
  99. }
  100. skb_reserve(skb, local->hw.extra_tx_headroom);
  101. mgmt = (struct ieee80211_mgmt *) skb_put(skb, 24);
  102. memset(mgmt, 0, 24);
  103. memcpy(mgmt->da, da, ETH_ALEN);
  104. memcpy(mgmt->sa, sdata->vif.addr, ETH_ALEN);
  105. if (sdata->vif.type == NL80211_IFTYPE_AP ||
  106. sdata->vif.type == NL80211_IFTYPE_AP_VLAN)
  107. memcpy(mgmt->bssid, sdata->vif.addr, ETH_ALEN);
  108. else if (sdata->vif.type == NL80211_IFTYPE_STATION)
  109. memcpy(mgmt->bssid, sdata->u.mgd.bssid, ETH_ALEN);
  110. mgmt->frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT |
  111. IEEE80211_STYPE_ACTION);
  112. skb_put(skb, 1 + sizeof(mgmt->u.action.u.addba_resp));
  113. mgmt->u.action.category = WLAN_CATEGORY_BACK;
  114. mgmt->u.action.u.addba_resp.action_code = WLAN_ACTION_ADDBA_RESP;
  115. mgmt->u.action.u.addba_resp.dialog_token = dialog_token;
  116. capab = (u16)(policy << 1); /* bit 1 aggregation policy */
  117. capab |= (u16)(tid << 2); /* bit 5:2 TID number */
  118. capab |= (u16)(buf_size << 6); /* bit 15:6 max size of aggregation */
  119. mgmt->u.action.u.addba_resp.capab = cpu_to_le16(capab);
  120. mgmt->u.action.u.addba_resp.timeout = cpu_to_le16(timeout);
  121. mgmt->u.action.u.addba_resp.status = cpu_to_le16(status);
  122. ieee80211_tx_skb(sdata, skb);
  123. }
  124. void ieee80211_process_addba_request(struct ieee80211_local *local,
  125. struct sta_info *sta,
  126. struct ieee80211_mgmt *mgmt,
  127. size_t len)
  128. {
  129. struct ieee80211_hw *hw = &local->hw;
  130. struct ieee80211_conf *conf = &hw->conf;
  131. struct tid_ampdu_rx *tid_agg_rx;
  132. u16 capab, tid, timeout, ba_policy, buf_size, start_seq_num, status;
  133. u8 dialog_token;
  134. int ret = -EOPNOTSUPP;
  135. /* extract session parameters from addba request frame */
  136. dialog_token = mgmt->u.action.u.addba_req.dialog_token;
  137. timeout = le16_to_cpu(mgmt->u.action.u.addba_req.timeout);
  138. start_seq_num =
  139. le16_to_cpu(mgmt->u.action.u.addba_req.start_seq_num) >> 4;
  140. capab = le16_to_cpu(mgmt->u.action.u.addba_req.capab);
  141. ba_policy = (capab & IEEE80211_ADDBA_PARAM_POLICY_MASK) >> 1;
  142. tid = (capab & IEEE80211_ADDBA_PARAM_TID_MASK) >> 2;
  143. buf_size = (capab & IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK) >> 6;
  144. status = WLAN_STATUS_REQUEST_DECLINED;
  145. if (test_sta_flags(sta, WLAN_STA_BLOCK_BA)) {
  146. #ifdef CONFIG_MAC80211_HT_DEBUG
  147. printk(KERN_DEBUG "Suspend in progress. "
  148. "Denying ADDBA request\n");
  149. #endif
  150. goto end_no_lock;
  151. }
  152. /* sanity check for incoming parameters:
  153. * check if configuration can support the BA policy
  154. * and if buffer size does not exceeds max value */
  155. /* XXX: check own ht delayed BA capability?? */
  156. if (((ba_policy != 1) &&
  157. (!(sta->sta.ht_cap.cap & IEEE80211_HT_CAP_DELAY_BA))) ||
  158. (buf_size > IEEE80211_MAX_AMPDU_BUF)) {
  159. status = WLAN_STATUS_INVALID_QOS_PARAM;
  160. #ifdef CONFIG_MAC80211_HT_DEBUG
  161. if (net_ratelimit())
  162. printk(KERN_DEBUG "AddBA Req with bad params from "
  163. "%pM on tid %u. policy %d, buffer size %d\n",
  164. mgmt->sa, tid, ba_policy,
  165. buf_size);
  166. #endif /* CONFIG_MAC80211_HT_DEBUG */
  167. goto end_no_lock;
  168. }
  169. /* determine default buffer size */
  170. if (buf_size == 0) {
  171. struct ieee80211_supported_band *sband;
  172. sband = local->hw.wiphy->bands[conf->channel->band];
  173. buf_size = IEEE80211_MIN_AMPDU_BUF;
  174. buf_size = buf_size << sband->ht_cap.ampdu_factor;
  175. }
  176. /* examine state machine */
  177. spin_lock_bh(&sta->lock);
  178. if (sta->ampdu_mlme.tid_rx[tid]) {
  179. #ifdef CONFIG_MAC80211_HT_DEBUG
  180. if (net_ratelimit())
  181. printk(KERN_DEBUG "unexpected AddBA Req from "
  182. "%pM on tid %u\n",
  183. mgmt->sa, tid);
  184. #endif /* CONFIG_MAC80211_HT_DEBUG */
  185. goto end;
  186. }
  187. /* prepare A-MPDU MLME for Rx aggregation */
  188. tid_agg_rx = kmalloc(sizeof(struct tid_ampdu_rx), GFP_ATOMIC);
  189. if (!tid_agg_rx) {
  190. #ifdef CONFIG_MAC80211_HT_DEBUG
  191. if (net_ratelimit())
  192. printk(KERN_ERR "allocate rx mlme to tid %d failed\n",
  193. tid);
  194. #endif
  195. goto end;
  196. }
  197. /* rx timer */
  198. tid_agg_rx->session_timer.function = sta_rx_agg_session_timer_expired;
  199. tid_agg_rx->session_timer.data = (unsigned long)&sta->timer_to_tid[tid];
  200. init_timer(&tid_agg_rx->session_timer);
  201. /* prepare reordering buffer */
  202. tid_agg_rx->reorder_buf =
  203. kcalloc(buf_size, sizeof(struct sk_buff *), GFP_ATOMIC);
  204. tid_agg_rx->reorder_time =
  205. kcalloc(buf_size, sizeof(unsigned long), GFP_ATOMIC);
  206. if (!tid_agg_rx->reorder_buf || !tid_agg_rx->reorder_time) {
  207. #ifdef CONFIG_MAC80211_HT_DEBUG
  208. if (net_ratelimit())
  209. printk(KERN_ERR "can not allocate reordering buffer "
  210. "to tid %d\n", tid);
  211. #endif
  212. kfree(tid_agg_rx->reorder_buf);
  213. kfree(tid_agg_rx->reorder_time);
  214. kfree(tid_agg_rx);
  215. goto end;
  216. }
  217. ret = drv_ampdu_action(local, sta->sdata, IEEE80211_AMPDU_RX_START,
  218. &sta->sta, tid, &start_seq_num);
  219. #ifdef CONFIG_MAC80211_HT_DEBUG
  220. printk(KERN_DEBUG "Rx A-MPDU request on tid %d result %d\n", tid, ret);
  221. #endif /* CONFIG_MAC80211_HT_DEBUG */
  222. if (ret) {
  223. kfree(tid_agg_rx->reorder_buf);
  224. kfree(tid_agg_rx->reorder_time);
  225. kfree(tid_agg_rx);
  226. goto end;
  227. }
  228. /* update data */
  229. tid_agg_rx->dialog_token = dialog_token;
  230. tid_agg_rx->ssn = start_seq_num;
  231. tid_agg_rx->head_seq_num = start_seq_num;
  232. tid_agg_rx->buf_size = buf_size;
  233. tid_agg_rx->timeout = timeout;
  234. tid_agg_rx->stored_mpdu_num = 0;
  235. status = WLAN_STATUS_SUCCESS;
  236. /* activate it for RX */
  237. rcu_assign_pointer(sta->ampdu_mlme.tid_rx[tid], tid_agg_rx);
  238. end:
  239. spin_unlock_bh(&sta->lock);
  240. end_no_lock:
  241. ieee80211_send_addba_resp(sta->sdata, sta->sta.addr, tid,
  242. dialog_token, status, 1, buf_size, timeout);
  243. }