tx.c 28 KB

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  1. /*
  2. * This file is part of wl1271
  3. *
  4. * Copyright (C) 2009 Nokia Corporation
  5. *
  6. * Contact: Luciano Coelho <luciano.coelho@nokia.com>
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License
  10. * version 2 as published by the Free Software Foundation.
  11. *
  12. * This program is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
  20. * 02110-1301 USA
  21. *
  22. */
  23. #include <linux/kernel.h>
  24. #include <linux/module.h>
  25. #include <linux/etherdevice.h>
  26. #include "wlcore.h"
  27. #include "debug.h"
  28. #include "io.h"
  29. #include "ps.h"
  30. #include "tx.h"
  31. #include "event.h"
  32. /*
  33. * TODO: this is here just for now, it must be removed when the data
  34. * operations are in place.
  35. */
  36. #include "../wl12xx/reg.h"
  37. static int wl1271_set_default_wep_key(struct wl1271 *wl,
  38. struct wl12xx_vif *wlvif, u8 id)
  39. {
  40. int ret;
  41. bool is_ap = (wlvif->bss_type == BSS_TYPE_AP_BSS);
  42. if (is_ap)
  43. ret = wl12xx_cmd_set_default_wep_key(wl, id,
  44. wlvif->ap.bcast_hlid);
  45. else
  46. ret = wl12xx_cmd_set_default_wep_key(wl, id, wlvif->sta.hlid);
  47. if (ret < 0)
  48. return ret;
  49. wl1271_debug(DEBUG_CRYPT, "default wep key idx: %d", (int)id);
  50. return 0;
  51. }
  52. static int wl1271_alloc_tx_id(struct wl1271 *wl, struct sk_buff *skb)
  53. {
  54. int id;
  55. id = find_first_zero_bit(wl->tx_frames_map, ACX_TX_DESCRIPTORS);
  56. if (id >= ACX_TX_DESCRIPTORS)
  57. return -EBUSY;
  58. __set_bit(id, wl->tx_frames_map);
  59. wl->tx_frames[id] = skb;
  60. wl->tx_frames_cnt++;
  61. return id;
  62. }
  63. static void wl1271_free_tx_id(struct wl1271 *wl, int id)
  64. {
  65. if (__test_and_clear_bit(id, wl->tx_frames_map)) {
  66. if (unlikely(wl->tx_frames_cnt == ACX_TX_DESCRIPTORS))
  67. clear_bit(WL1271_FLAG_FW_TX_BUSY, &wl->flags);
  68. wl->tx_frames[id] = NULL;
  69. wl->tx_frames_cnt--;
  70. }
  71. }
  72. static void wl1271_tx_ap_update_inconnection_sta(struct wl1271 *wl,
  73. struct sk_buff *skb)
  74. {
  75. struct ieee80211_hdr *hdr;
  76. /*
  77. * add the station to the known list before transmitting the
  78. * authentication response. this way it won't get de-authed by FW
  79. * when transmitting too soon.
  80. */
  81. hdr = (struct ieee80211_hdr *)(skb->data +
  82. sizeof(struct wl1271_tx_hw_descr));
  83. if (ieee80211_is_auth(hdr->frame_control))
  84. wl1271_acx_set_inconnection_sta(wl, hdr->addr1);
  85. }
  86. static void wl1271_tx_regulate_link(struct wl1271 *wl,
  87. struct wl12xx_vif *wlvif,
  88. u8 hlid)
  89. {
  90. bool fw_ps, single_sta;
  91. u8 tx_pkts;
  92. if (WARN_ON(!test_bit(hlid, wlvif->links_map)))
  93. return;
  94. fw_ps = test_bit(hlid, (unsigned long *)&wl->ap_fw_ps_map);
  95. tx_pkts = wl->links[hlid].allocated_pkts;
  96. single_sta = (wl->active_sta_count == 1);
  97. /*
  98. * if in FW PS and there is enough data in FW we can put the link
  99. * into high-level PS and clean out its TX queues.
  100. * Make an exception if this is the only connected station. In this
  101. * case FW-memory congestion is not a problem.
  102. */
  103. if (!single_sta && fw_ps && tx_pkts >= WL1271_PS_STA_MAX_PACKETS)
  104. wl12xx_ps_link_start(wl, wlvif, hlid, true);
  105. }
  106. bool wl12xx_is_dummy_packet(struct wl1271 *wl, struct sk_buff *skb)
  107. {
  108. return wl->dummy_packet == skb;
  109. }
  110. u8 wl12xx_tx_get_hlid_ap(struct wl1271 *wl, struct wl12xx_vif *wlvif,
  111. struct sk_buff *skb)
  112. {
  113. struct ieee80211_tx_info *control = IEEE80211_SKB_CB(skb);
  114. if (control->control.sta) {
  115. struct wl1271_station *wl_sta;
  116. wl_sta = (struct wl1271_station *)
  117. control->control.sta->drv_priv;
  118. return wl_sta->hlid;
  119. } else {
  120. struct ieee80211_hdr *hdr;
  121. if (!test_bit(WLVIF_FLAG_AP_STARTED, &wlvif->flags))
  122. return wl->system_hlid;
  123. hdr = (struct ieee80211_hdr *)skb->data;
  124. if (ieee80211_is_mgmt(hdr->frame_control))
  125. return wlvif->ap.global_hlid;
  126. else
  127. return wlvif->ap.bcast_hlid;
  128. }
  129. }
  130. u8 wl12xx_tx_get_hlid(struct wl1271 *wl, struct wl12xx_vif *wlvif,
  131. struct sk_buff *skb)
  132. {
  133. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
  134. if (!wlvif || wl12xx_is_dummy_packet(wl, skb))
  135. return wl->system_hlid;
  136. if (wlvif->bss_type == BSS_TYPE_AP_BSS)
  137. return wl12xx_tx_get_hlid_ap(wl, wlvif, skb);
  138. if ((test_bit(WLVIF_FLAG_STA_ASSOCIATED, &wlvif->flags) ||
  139. test_bit(WLVIF_FLAG_IBSS_JOINED, &wlvif->flags)) &&
  140. !ieee80211_is_auth(hdr->frame_control) &&
  141. !ieee80211_is_assoc_req(hdr->frame_control))
  142. return wlvif->sta.hlid;
  143. else
  144. return wlvif->dev_hlid;
  145. }
  146. static unsigned int wl12xx_calc_packet_alignment(struct wl1271 *wl,
  147. unsigned int packet_length)
  148. {
  149. if (wl->quirks & WLCORE_QUIRK_NO_BLOCKSIZE_ALIGNMENT)
  150. return ALIGN(packet_length, WL1271_TX_ALIGN_TO);
  151. else
  152. return ALIGN(packet_length, WL12XX_BUS_BLOCK_SIZE);
  153. }
  154. static int wl1271_tx_allocate(struct wl1271 *wl, struct wl12xx_vif *wlvif,
  155. struct sk_buff *skb, u32 extra, u32 buf_offset,
  156. u8 hlid)
  157. {
  158. struct wl1271_tx_hw_descr *desc;
  159. u32 total_len = skb->len + sizeof(struct wl1271_tx_hw_descr) + extra;
  160. u32 len;
  161. u32 total_blocks;
  162. int id, ret = -EBUSY, ac;
  163. u32 spare_blocks = wl->tx_spare_blocks;
  164. bool is_dummy = false;
  165. if (buf_offset + total_len > WL1271_AGGR_BUFFER_SIZE)
  166. return -EAGAIN;
  167. /* allocate free identifier for the packet */
  168. id = wl1271_alloc_tx_id(wl, skb);
  169. if (id < 0)
  170. return id;
  171. /* approximate the number of blocks required for this packet
  172. in the firmware */
  173. len = wl12xx_calc_packet_alignment(wl, total_len);
  174. /* in case of a dummy packet, use default amount of spare mem blocks */
  175. if (unlikely(wl12xx_is_dummy_packet(wl, skb))) {
  176. is_dummy = true;
  177. spare_blocks = TX_HW_BLOCK_SPARE_DEFAULT;
  178. }
  179. total_blocks = (len + TX_HW_BLOCK_SIZE - 1) / TX_HW_BLOCK_SIZE +
  180. spare_blocks;
  181. if (total_blocks <= wl->tx_blocks_available) {
  182. desc = (struct wl1271_tx_hw_descr *)skb_push(
  183. skb, total_len - skb->len);
  184. /* HW descriptor fields change between wl127x and wl128x */
  185. if (wl->chip.id == CHIP_ID_1283_PG20) {
  186. desc->wl128x_mem.total_mem_blocks = total_blocks;
  187. } else {
  188. desc->wl127x_mem.extra_blocks = spare_blocks;
  189. desc->wl127x_mem.total_mem_blocks = total_blocks;
  190. }
  191. desc->id = id;
  192. wl->tx_blocks_available -= total_blocks;
  193. wl->tx_allocated_blocks += total_blocks;
  194. /* If the FW was empty before, arm the Tx watchdog */
  195. if (wl->tx_allocated_blocks == total_blocks)
  196. wl12xx_rearm_tx_watchdog_locked(wl);
  197. ac = wl1271_tx_get_queue(skb_get_queue_mapping(skb));
  198. wl->tx_allocated_pkts[ac]++;
  199. if (!is_dummy && wlvif &&
  200. wlvif->bss_type == BSS_TYPE_AP_BSS &&
  201. test_bit(hlid, wlvif->ap.sta_hlid_map))
  202. wl->links[hlid].allocated_pkts++;
  203. ret = 0;
  204. wl1271_debug(DEBUG_TX,
  205. "tx_allocate: size: %d, blocks: %d, id: %d",
  206. total_len, total_blocks, id);
  207. } else {
  208. wl1271_free_tx_id(wl, id);
  209. }
  210. return ret;
  211. }
  212. static void wl1271_tx_fill_hdr(struct wl1271 *wl, struct wl12xx_vif *wlvif,
  213. struct sk_buff *skb, u32 extra,
  214. struct ieee80211_tx_info *control, u8 hlid)
  215. {
  216. struct timespec ts;
  217. struct wl1271_tx_hw_descr *desc;
  218. int aligned_len, ac, rate_idx;
  219. s64 hosttime;
  220. u16 tx_attr = 0;
  221. __le16 frame_control;
  222. struct ieee80211_hdr *hdr;
  223. u8 *frame_start;
  224. bool is_dummy;
  225. desc = (struct wl1271_tx_hw_descr *) skb->data;
  226. frame_start = (u8 *)(desc + 1);
  227. hdr = (struct ieee80211_hdr *)(frame_start + extra);
  228. frame_control = hdr->frame_control;
  229. /* relocate space for security header */
  230. if (extra) {
  231. int hdrlen = ieee80211_hdrlen(frame_control);
  232. memmove(frame_start, hdr, hdrlen);
  233. }
  234. /* configure packet life time */
  235. getnstimeofday(&ts);
  236. hosttime = (timespec_to_ns(&ts) >> 10);
  237. desc->start_time = cpu_to_le32(hosttime - wl->time_offset);
  238. is_dummy = wl12xx_is_dummy_packet(wl, skb);
  239. if (is_dummy || !wlvif || wlvif->bss_type != BSS_TYPE_AP_BSS)
  240. desc->life_time = cpu_to_le16(TX_HW_MGMT_PKT_LIFETIME_TU);
  241. else
  242. desc->life_time = cpu_to_le16(TX_HW_AP_MODE_PKT_LIFETIME_TU);
  243. /* queue */
  244. ac = wl1271_tx_get_queue(skb_get_queue_mapping(skb));
  245. desc->tid = skb->priority;
  246. if (is_dummy) {
  247. /*
  248. * FW expects the dummy packet to have an invalid session id -
  249. * any session id that is different than the one set in the join
  250. */
  251. tx_attr = (SESSION_COUNTER_INVALID <<
  252. TX_HW_ATTR_OFST_SESSION_COUNTER) &
  253. TX_HW_ATTR_SESSION_COUNTER;
  254. tx_attr |= TX_HW_ATTR_TX_DUMMY_REQ;
  255. } else if (wlvif) {
  256. /* configure the tx attributes */
  257. tx_attr = wlvif->session_counter <<
  258. TX_HW_ATTR_OFST_SESSION_COUNTER;
  259. }
  260. desc->hlid = hlid;
  261. if (is_dummy || !wlvif)
  262. rate_idx = 0;
  263. else if (wlvif->bss_type != BSS_TYPE_AP_BSS) {
  264. /* if the packets are destined for AP (have a STA entry)
  265. send them with AP rate policies, otherwise use default
  266. basic rates */
  267. if (control->flags & IEEE80211_TX_CTL_NO_CCK_RATE)
  268. rate_idx = wlvif->sta.p2p_rate_idx;
  269. else if (control->control.sta)
  270. rate_idx = wlvif->sta.ap_rate_idx;
  271. else
  272. rate_idx = wlvif->sta.basic_rate_idx;
  273. } else {
  274. if (hlid == wlvif->ap.global_hlid)
  275. rate_idx = wlvif->ap.mgmt_rate_idx;
  276. else if (hlid == wlvif->ap.bcast_hlid)
  277. rate_idx = wlvif->ap.bcast_rate_idx;
  278. else
  279. rate_idx = wlvif->ap.ucast_rate_idx[ac];
  280. }
  281. tx_attr |= rate_idx << TX_HW_ATTR_OFST_RATE_POLICY;
  282. desc->reserved = 0;
  283. aligned_len = wl12xx_calc_packet_alignment(wl, skb->len);
  284. if (wl->chip.id == CHIP_ID_1283_PG20) {
  285. desc->wl128x_mem.extra_bytes = aligned_len - skb->len;
  286. desc->length = cpu_to_le16(aligned_len >> 2);
  287. wl1271_debug(DEBUG_TX, "tx_fill_hdr: hlid: %d "
  288. "tx_attr: 0x%x len: %d life: %d mem: %d",
  289. desc->hlid, tx_attr,
  290. le16_to_cpu(desc->length),
  291. le16_to_cpu(desc->life_time),
  292. desc->wl128x_mem.total_mem_blocks);
  293. } else {
  294. int pad;
  295. /* Store the aligned length in terms of words */
  296. desc->length = cpu_to_le16(aligned_len >> 2);
  297. /* calculate number of padding bytes */
  298. pad = aligned_len - skb->len;
  299. tx_attr |= pad << TX_HW_ATTR_OFST_LAST_WORD_PAD;
  300. wl1271_debug(DEBUG_TX, "tx_fill_hdr: pad: %d hlid: %d "
  301. "tx_attr: 0x%x len: %d life: %d mem: %d", pad,
  302. desc->hlid, tx_attr,
  303. le16_to_cpu(desc->length),
  304. le16_to_cpu(desc->life_time),
  305. desc->wl127x_mem.total_mem_blocks);
  306. }
  307. /* for WEP shared auth - no fw encryption is needed */
  308. if (ieee80211_is_auth(frame_control) &&
  309. ieee80211_has_protected(frame_control))
  310. tx_attr |= TX_HW_ATTR_HOST_ENCRYPT;
  311. desc->tx_attr = cpu_to_le16(tx_attr);
  312. }
  313. /* caller must hold wl->mutex */
  314. static int wl1271_prepare_tx_frame(struct wl1271 *wl, struct wl12xx_vif *wlvif,
  315. struct sk_buff *skb, u32 buf_offset)
  316. {
  317. struct ieee80211_tx_info *info;
  318. u32 extra = 0;
  319. int ret = 0;
  320. u32 total_len;
  321. u8 hlid;
  322. bool is_dummy;
  323. if (!skb)
  324. return -EINVAL;
  325. info = IEEE80211_SKB_CB(skb);
  326. /* TODO: handle dummy packets on multi-vifs */
  327. is_dummy = wl12xx_is_dummy_packet(wl, skb);
  328. if (info->control.hw_key &&
  329. info->control.hw_key->cipher == WLAN_CIPHER_SUITE_TKIP)
  330. extra = WL1271_EXTRA_SPACE_TKIP;
  331. if (info->control.hw_key) {
  332. bool is_wep;
  333. u8 idx = info->control.hw_key->hw_key_idx;
  334. u32 cipher = info->control.hw_key->cipher;
  335. is_wep = (cipher == WLAN_CIPHER_SUITE_WEP40) ||
  336. (cipher == WLAN_CIPHER_SUITE_WEP104);
  337. if (unlikely(is_wep && wlvif->default_key != idx)) {
  338. ret = wl1271_set_default_wep_key(wl, wlvif, idx);
  339. if (ret < 0)
  340. return ret;
  341. wlvif->default_key = idx;
  342. }
  343. }
  344. hlid = wl12xx_tx_get_hlid(wl, wlvif, skb);
  345. if (hlid == WL12XX_INVALID_LINK_ID) {
  346. wl1271_error("invalid hlid. dropping skb 0x%p", skb);
  347. return -EINVAL;
  348. }
  349. ret = wl1271_tx_allocate(wl, wlvif, skb, extra, buf_offset, hlid);
  350. if (ret < 0)
  351. return ret;
  352. wl1271_tx_fill_hdr(wl, wlvif, skb, extra, info, hlid);
  353. if (!is_dummy && wlvif && wlvif->bss_type == BSS_TYPE_AP_BSS) {
  354. wl1271_tx_ap_update_inconnection_sta(wl, skb);
  355. wl1271_tx_regulate_link(wl, wlvif, hlid);
  356. }
  357. /*
  358. * The length of each packet is stored in terms of
  359. * words. Thus, we must pad the skb data to make sure its
  360. * length is aligned. The number of padding bytes is computed
  361. * and set in wl1271_tx_fill_hdr.
  362. * In special cases, we want to align to a specific block size
  363. * (eg. for wl128x with SDIO we align to 256).
  364. */
  365. total_len = wl12xx_calc_packet_alignment(wl, skb->len);
  366. memcpy(wl->aggr_buf + buf_offset, skb->data, skb->len);
  367. memset(wl->aggr_buf + buf_offset + skb->len, 0, total_len - skb->len);
  368. /* Revert side effects in the dummy packet skb, so it can be reused */
  369. if (is_dummy)
  370. skb_pull(skb, sizeof(struct wl1271_tx_hw_descr));
  371. return total_len;
  372. }
  373. u32 wl1271_tx_enabled_rates_get(struct wl1271 *wl, u32 rate_set,
  374. enum ieee80211_band rate_band)
  375. {
  376. struct ieee80211_supported_band *band;
  377. u32 enabled_rates = 0;
  378. int bit;
  379. band = wl->hw->wiphy->bands[rate_band];
  380. for (bit = 0; bit < band->n_bitrates; bit++) {
  381. if (rate_set & 0x1)
  382. enabled_rates |= band->bitrates[bit].hw_value;
  383. rate_set >>= 1;
  384. }
  385. /* MCS rates indication are on bits 16 - 23 */
  386. rate_set >>= HW_HT_RATES_OFFSET - band->n_bitrates;
  387. for (bit = 0; bit < 8; bit++) {
  388. if (rate_set & 0x1)
  389. enabled_rates |= (CONF_HW_BIT_RATE_MCS_0 << bit);
  390. rate_set >>= 1;
  391. }
  392. return enabled_rates;
  393. }
  394. void wl1271_handle_tx_low_watermark(struct wl1271 *wl)
  395. {
  396. unsigned long flags;
  397. int i;
  398. for (i = 0; i < NUM_TX_QUEUES; i++) {
  399. if (test_bit(i, &wl->stopped_queues_map) &&
  400. wl->tx_queue_count[i] <= WL1271_TX_QUEUE_LOW_WATERMARK) {
  401. /* firmware buffer has space, restart queues */
  402. spin_lock_irqsave(&wl->wl_lock, flags);
  403. ieee80211_wake_queue(wl->hw,
  404. wl1271_tx_get_mac80211_queue(i));
  405. clear_bit(i, &wl->stopped_queues_map);
  406. spin_unlock_irqrestore(&wl->wl_lock, flags);
  407. }
  408. }
  409. }
  410. static struct sk_buff_head *wl1271_select_queue(struct wl1271 *wl,
  411. struct sk_buff_head *queues)
  412. {
  413. int i, q = -1, ac;
  414. u32 min_pkts = 0xffffffff;
  415. /*
  416. * Find a non-empty ac where:
  417. * 1. There are packets to transmit
  418. * 2. The FW has the least allocated blocks
  419. *
  420. * We prioritize the ACs according to VO>VI>BE>BK
  421. */
  422. for (i = 0; i < NUM_TX_QUEUES; i++) {
  423. ac = wl1271_tx_get_queue(i);
  424. if (!skb_queue_empty(&queues[ac]) &&
  425. (wl->tx_allocated_pkts[ac] < min_pkts)) {
  426. q = ac;
  427. min_pkts = wl->tx_allocated_pkts[q];
  428. }
  429. }
  430. if (q == -1)
  431. return NULL;
  432. return &queues[q];
  433. }
  434. static struct sk_buff *wl12xx_lnk_skb_dequeue(struct wl1271 *wl,
  435. struct wl1271_link *lnk)
  436. {
  437. struct sk_buff *skb;
  438. unsigned long flags;
  439. struct sk_buff_head *queue;
  440. queue = wl1271_select_queue(wl, lnk->tx_queue);
  441. if (!queue)
  442. return NULL;
  443. skb = skb_dequeue(queue);
  444. if (skb) {
  445. int q = wl1271_tx_get_queue(skb_get_queue_mapping(skb));
  446. spin_lock_irqsave(&wl->wl_lock, flags);
  447. WARN_ON_ONCE(wl->tx_queue_count[q] <= 0);
  448. wl->tx_queue_count[q]--;
  449. spin_unlock_irqrestore(&wl->wl_lock, flags);
  450. }
  451. return skb;
  452. }
  453. static struct sk_buff *wl12xx_vif_skb_dequeue(struct wl1271 *wl,
  454. struct wl12xx_vif *wlvif)
  455. {
  456. struct sk_buff *skb = NULL;
  457. int i, h, start_hlid;
  458. /* start from the link after the last one */
  459. start_hlid = (wlvif->last_tx_hlid + 1) % WL12XX_MAX_LINKS;
  460. /* dequeue according to AC, round robin on each link */
  461. for (i = 0; i < WL12XX_MAX_LINKS; i++) {
  462. h = (start_hlid + i) % WL12XX_MAX_LINKS;
  463. /* only consider connected stations */
  464. if (!test_bit(h, wlvif->links_map))
  465. continue;
  466. skb = wl12xx_lnk_skb_dequeue(wl, &wl->links[h]);
  467. if (!skb)
  468. continue;
  469. wlvif->last_tx_hlid = h;
  470. break;
  471. }
  472. if (!skb)
  473. wlvif->last_tx_hlid = 0;
  474. return skb;
  475. }
  476. static struct sk_buff *wl1271_skb_dequeue(struct wl1271 *wl)
  477. {
  478. unsigned long flags;
  479. struct wl12xx_vif *wlvif = wl->last_wlvif;
  480. struct sk_buff *skb = NULL;
  481. /* continue from last wlvif (round robin) */
  482. if (wlvif) {
  483. wl12xx_for_each_wlvif_continue(wl, wlvif) {
  484. skb = wl12xx_vif_skb_dequeue(wl, wlvif);
  485. if (skb) {
  486. wl->last_wlvif = wlvif;
  487. break;
  488. }
  489. }
  490. }
  491. /* dequeue from the system HLID before the restarting wlvif list */
  492. if (!skb)
  493. skb = wl12xx_lnk_skb_dequeue(wl, &wl->links[wl->system_hlid]);
  494. /* do a new pass over the wlvif list */
  495. if (!skb) {
  496. wl12xx_for_each_wlvif(wl, wlvif) {
  497. skb = wl12xx_vif_skb_dequeue(wl, wlvif);
  498. if (skb) {
  499. wl->last_wlvif = wlvif;
  500. break;
  501. }
  502. /*
  503. * No need to continue after last_wlvif. The previous
  504. * pass should have found it.
  505. */
  506. if (wlvif == wl->last_wlvif)
  507. break;
  508. }
  509. }
  510. if (!skb &&
  511. test_and_clear_bit(WL1271_FLAG_DUMMY_PACKET_PENDING, &wl->flags)) {
  512. int q;
  513. skb = wl->dummy_packet;
  514. q = wl1271_tx_get_queue(skb_get_queue_mapping(skb));
  515. spin_lock_irqsave(&wl->wl_lock, flags);
  516. WARN_ON_ONCE(wl->tx_queue_count[q] <= 0);
  517. wl->tx_queue_count[q]--;
  518. spin_unlock_irqrestore(&wl->wl_lock, flags);
  519. }
  520. return skb;
  521. }
  522. static void wl1271_skb_queue_head(struct wl1271 *wl, struct wl12xx_vif *wlvif,
  523. struct sk_buff *skb)
  524. {
  525. unsigned long flags;
  526. int q = wl1271_tx_get_queue(skb_get_queue_mapping(skb));
  527. if (wl12xx_is_dummy_packet(wl, skb)) {
  528. set_bit(WL1271_FLAG_DUMMY_PACKET_PENDING, &wl->flags);
  529. } else {
  530. u8 hlid = wl12xx_tx_get_hlid(wl, wlvif, skb);
  531. skb_queue_head(&wl->links[hlid].tx_queue[q], skb);
  532. /* make sure we dequeue the same packet next time */
  533. wlvif->last_tx_hlid = (hlid + WL12XX_MAX_LINKS - 1) %
  534. WL12XX_MAX_LINKS;
  535. }
  536. spin_lock_irqsave(&wl->wl_lock, flags);
  537. wl->tx_queue_count[q]++;
  538. spin_unlock_irqrestore(&wl->wl_lock, flags);
  539. }
  540. static bool wl1271_tx_is_data_present(struct sk_buff *skb)
  541. {
  542. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)(skb->data);
  543. return ieee80211_is_data_present(hdr->frame_control);
  544. }
  545. void wl12xx_rearm_rx_streaming(struct wl1271 *wl, unsigned long *active_hlids)
  546. {
  547. struct wl12xx_vif *wlvif;
  548. u32 timeout;
  549. u8 hlid;
  550. if (!wl->conf.rx_streaming.interval)
  551. return;
  552. if (!wl->conf.rx_streaming.always &&
  553. !test_bit(WL1271_FLAG_SOFT_GEMINI, &wl->flags))
  554. return;
  555. timeout = wl->conf.rx_streaming.duration;
  556. wl12xx_for_each_wlvif_sta(wl, wlvif) {
  557. bool found = false;
  558. for_each_set_bit(hlid, active_hlids, WL12XX_MAX_LINKS) {
  559. if (test_bit(hlid, wlvif->links_map)) {
  560. found = true;
  561. break;
  562. }
  563. }
  564. if (!found)
  565. continue;
  566. /* enable rx streaming */
  567. if (!test_bit(WLVIF_FLAG_RX_STREAMING_STARTED, &wlvif->flags))
  568. ieee80211_queue_work(wl->hw,
  569. &wlvif->rx_streaming_enable_work);
  570. mod_timer(&wlvif->rx_streaming_timer,
  571. jiffies + msecs_to_jiffies(timeout));
  572. }
  573. }
  574. void wl1271_tx_work_locked(struct wl1271 *wl)
  575. {
  576. struct wl12xx_vif *wlvif;
  577. struct sk_buff *skb;
  578. struct wl1271_tx_hw_descr *desc;
  579. u32 buf_offset = 0;
  580. bool sent_packets = false;
  581. unsigned long active_hlids[BITS_TO_LONGS(WL12XX_MAX_LINKS)] = {0};
  582. int ret;
  583. if (unlikely(wl->state == WL1271_STATE_OFF))
  584. return;
  585. while ((skb = wl1271_skb_dequeue(wl))) {
  586. struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
  587. bool has_data = false;
  588. wlvif = NULL;
  589. if (!wl12xx_is_dummy_packet(wl, skb) && info->control.vif)
  590. wlvif = wl12xx_vif_to_data(info->control.vif);
  591. has_data = wlvif && wl1271_tx_is_data_present(skb);
  592. ret = wl1271_prepare_tx_frame(wl, wlvif, skb, buf_offset);
  593. if (ret == -EAGAIN) {
  594. /*
  595. * Aggregation buffer is full.
  596. * Flush buffer and try again.
  597. */
  598. wl1271_skb_queue_head(wl, wlvif, skb);
  599. wlcore_write_data(wl, REG_SLV_MEM_DATA, wl->aggr_buf,
  600. buf_offset, true);
  601. sent_packets = true;
  602. buf_offset = 0;
  603. continue;
  604. } else if (ret == -EBUSY) {
  605. /*
  606. * Firmware buffer is full.
  607. * Queue back last skb, and stop aggregating.
  608. */
  609. wl1271_skb_queue_head(wl, wlvif, skb);
  610. /* No work left, avoid scheduling redundant tx work */
  611. set_bit(WL1271_FLAG_FW_TX_BUSY, &wl->flags);
  612. goto out_ack;
  613. } else if (ret < 0) {
  614. if (wl12xx_is_dummy_packet(wl, skb))
  615. /*
  616. * fw still expects dummy packet,
  617. * so re-enqueue it
  618. */
  619. wl1271_skb_queue_head(wl, wlvif, skb);
  620. else
  621. ieee80211_free_txskb(wl->hw, skb);
  622. goto out_ack;
  623. }
  624. buf_offset += ret;
  625. wl->tx_packets_count++;
  626. if (has_data) {
  627. desc = (struct wl1271_tx_hw_descr *) skb->data;
  628. __set_bit(desc->hlid, active_hlids);
  629. }
  630. }
  631. out_ack:
  632. if (buf_offset) {
  633. wlcore_write_data(wl, REG_SLV_MEM_DATA, wl->aggr_buf,
  634. buf_offset, true);
  635. sent_packets = true;
  636. }
  637. if (sent_packets) {
  638. /*
  639. * Interrupt the firmware with the new packets. This is only
  640. * required for older hardware revisions
  641. */
  642. if (wl->quirks & WLCORE_QUIRK_END_OF_TRANSACTION)
  643. wl1271_write32(wl, WL12XX_HOST_WR_ACCESS,
  644. wl->tx_packets_count);
  645. wl1271_handle_tx_low_watermark(wl);
  646. }
  647. wl12xx_rearm_rx_streaming(wl, active_hlids);
  648. }
  649. void wl1271_tx_work(struct work_struct *work)
  650. {
  651. struct wl1271 *wl = container_of(work, struct wl1271, tx_work);
  652. int ret;
  653. mutex_lock(&wl->mutex);
  654. ret = wl1271_ps_elp_wakeup(wl);
  655. if (ret < 0)
  656. goto out;
  657. wl1271_tx_work_locked(wl);
  658. wl1271_ps_elp_sleep(wl);
  659. out:
  660. mutex_unlock(&wl->mutex);
  661. }
  662. static u8 wl1271_tx_get_rate_flags(u8 rate_class_index)
  663. {
  664. u8 flags = 0;
  665. if (rate_class_index >= CONF_HW_RXTX_RATE_MCS_MIN &&
  666. rate_class_index <= CONF_HW_RXTX_RATE_MCS_MAX)
  667. flags |= IEEE80211_TX_RC_MCS;
  668. if (rate_class_index == CONF_HW_RXTX_RATE_MCS7_SGI)
  669. flags |= IEEE80211_TX_RC_SHORT_GI;
  670. return flags;
  671. }
  672. static void wl1271_tx_complete_packet(struct wl1271 *wl,
  673. struct wl1271_tx_hw_res_descr *result)
  674. {
  675. struct ieee80211_tx_info *info;
  676. struct ieee80211_vif *vif;
  677. struct wl12xx_vif *wlvif;
  678. struct sk_buff *skb;
  679. int id = result->id;
  680. int rate = -1;
  681. u8 rate_flags = 0;
  682. u8 retries = 0;
  683. /* check for id legality */
  684. if (unlikely(id >= ACX_TX_DESCRIPTORS || wl->tx_frames[id] == NULL)) {
  685. wl1271_warning("TX result illegal id: %d", id);
  686. return;
  687. }
  688. skb = wl->tx_frames[id];
  689. info = IEEE80211_SKB_CB(skb);
  690. if (wl12xx_is_dummy_packet(wl, skb)) {
  691. wl1271_free_tx_id(wl, id);
  692. return;
  693. }
  694. /* info->control is valid as long as we don't update info->status */
  695. vif = info->control.vif;
  696. wlvif = wl12xx_vif_to_data(vif);
  697. /* update the TX status info */
  698. if (result->status == TX_SUCCESS) {
  699. if (!(info->flags & IEEE80211_TX_CTL_NO_ACK))
  700. info->flags |= IEEE80211_TX_STAT_ACK;
  701. rate = wl1271_rate_to_idx(result->rate_class_index,
  702. wlvif->band);
  703. rate_flags = wl1271_tx_get_rate_flags(result->rate_class_index);
  704. retries = result->ack_failures;
  705. } else if (result->status == TX_RETRY_EXCEEDED) {
  706. wl->stats.excessive_retries++;
  707. retries = result->ack_failures;
  708. }
  709. info->status.rates[0].idx = rate;
  710. info->status.rates[0].count = retries;
  711. info->status.rates[0].flags = rate_flags;
  712. info->status.ack_signal = -1;
  713. wl->stats.retry_count += result->ack_failures;
  714. /*
  715. * update sequence number only when relevant, i.e. only in
  716. * sessions of TKIP, AES and GEM (not in open or WEP sessions)
  717. */
  718. if (info->control.hw_key &&
  719. (info->control.hw_key->cipher == WLAN_CIPHER_SUITE_TKIP ||
  720. info->control.hw_key->cipher == WLAN_CIPHER_SUITE_CCMP ||
  721. info->control.hw_key->cipher == WL1271_CIPHER_SUITE_GEM)) {
  722. u8 fw_lsb = result->tx_security_sequence_number_lsb;
  723. u8 cur_lsb = wlvif->tx_security_last_seq_lsb;
  724. /*
  725. * update security sequence number, taking care of potential
  726. * wrap-around
  727. */
  728. wlvif->tx_security_seq += (fw_lsb - cur_lsb) & 0xff;
  729. wlvif->tx_security_last_seq_lsb = fw_lsb;
  730. }
  731. /* remove private header from packet */
  732. skb_pull(skb, sizeof(struct wl1271_tx_hw_descr));
  733. /* remove TKIP header space if present */
  734. if (info->control.hw_key &&
  735. info->control.hw_key->cipher == WLAN_CIPHER_SUITE_TKIP) {
  736. int hdrlen = ieee80211_get_hdrlen_from_skb(skb);
  737. memmove(skb->data + WL1271_EXTRA_SPACE_TKIP, skb->data,
  738. hdrlen);
  739. skb_pull(skb, WL1271_EXTRA_SPACE_TKIP);
  740. }
  741. wl1271_debug(DEBUG_TX, "tx status id %u skb 0x%p failures %u rate 0x%x"
  742. " status 0x%x",
  743. result->id, skb, result->ack_failures,
  744. result->rate_class_index, result->status);
  745. /* return the packet to the stack */
  746. skb_queue_tail(&wl->deferred_tx_queue, skb);
  747. queue_work(wl->freezable_wq, &wl->netstack_work);
  748. wl1271_free_tx_id(wl, result->id);
  749. }
  750. /* Called upon reception of a TX complete interrupt */
  751. void wl1271_tx_complete(struct wl1271 *wl)
  752. {
  753. struct wl1271_acx_mem_map *memmap =
  754. (struct wl1271_acx_mem_map *)wl->target_mem_map;
  755. u32 count, fw_counter;
  756. u32 i;
  757. /* read the tx results from the chipset */
  758. wl1271_read(wl, le32_to_cpu(memmap->tx_result),
  759. wl->tx_res_if, sizeof(*wl->tx_res_if), false);
  760. fw_counter = le32_to_cpu(wl->tx_res_if->tx_result_fw_counter);
  761. /* write host counter to chipset (to ack) */
  762. wl1271_write32(wl, le32_to_cpu(memmap->tx_result) +
  763. offsetof(struct wl1271_tx_hw_res_if,
  764. tx_result_host_counter), fw_counter);
  765. count = fw_counter - wl->tx_results_count;
  766. wl1271_debug(DEBUG_TX, "tx_complete received, packets: %d", count);
  767. /* verify that the result buffer is not getting overrun */
  768. if (unlikely(count > TX_HW_RESULT_QUEUE_LEN))
  769. wl1271_warning("TX result overflow from chipset: %d", count);
  770. /* process the results */
  771. for (i = 0; i < count; i++) {
  772. struct wl1271_tx_hw_res_descr *result;
  773. u8 offset = wl->tx_results_count & TX_HW_RESULT_QUEUE_LEN_MASK;
  774. /* process the packet */
  775. result = &(wl->tx_res_if->tx_results_queue[offset]);
  776. wl1271_tx_complete_packet(wl, result);
  777. wl->tx_results_count++;
  778. }
  779. }
  780. void wl1271_tx_reset_link_queues(struct wl1271 *wl, u8 hlid)
  781. {
  782. struct sk_buff *skb;
  783. int i;
  784. unsigned long flags;
  785. struct ieee80211_tx_info *info;
  786. int total[NUM_TX_QUEUES];
  787. for (i = 0; i < NUM_TX_QUEUES; i++) {
  788. total[i] = 0;
  789. while ((skb = skb_dequeue(&wl->links[hlid].tx_queue[i]))) {
  790. wl1271_debug(DEBUG_TX, "link freeing skb 0x%p", skb);
  791. if (!wl12xx_is_dummy_packet(wl, skb)) {
  792. info = IEEE80211_SKB_CB(skb);
  793. info->status.rates[0].idx = -1;
  794. info->status.rates[0].count = 0;
  795. ieee80211_tx_status_ni(wl->hw, skb);
  796. }
  797. total[i]++;
  798. }
  799. }
  800. spin_lock_irqsave(&wl->wl_lock, flags);
  801. for (i = 0; i < NUM_TX_QUEUES; i++)
  802. wl->tx_queue_count[i] -= total[i];
  803. spin_unlock_irqrestore(&wl->wl_lock, flags);
  804. wl1271_handle_tx_low_watermark(wl);
  805. }
  806. /* caller must hold wl->mutex and TX must be stopped */
  807. void wl12xx_tx_reset_wlvif(struct wl1271 *wl, struct wl12xx_vif *wlvif)
  808. {
  809. int i;
  810. /* TX failure */
  811. for_each_set_bit(i, wlvif->links_map, WL12XX_MAX_LINKS) {
  812. if (wlvif->bss_type == BSS_TYPE_AP_BSS)
  813. wl1271_free_sta(wl, wlvif, i);
  814. else
  815. wlvif->sta.ba_rx_bitmap = 0;
  816. wl->links[i].allocated_pkts = 0;
  817. wl->links[i].prev_freed_pkts = 0;
  818. }
  819. wlvif->last_tx_hlid = 0;
  820. }
  821. /* caller must hold wl->mutex and TX must be stopped */
  822. void wl12xx_tx_reset(struct wl1271 *wl, bool reset_tx_queues)
  823. {
  824. int i;
  825. struct sk_buff *skb;
  826. struct ieee80211_tx_info *info;
  827. /* only reset the queues if something bad happened */
  828. if (WARN_ON_ONCE(wl1271_tx_total_queue_count(wl) != 0)) {
  829. for (i = 0; i < WL12XX_MAX_LINKS; i++)
  830. wl1271_tx_reset_link_queues(wl, i);
  831. for (i = 0; i < NUM_TX_QUEUES; i++)
  832. wl->tx_queue_count[i] = 0;
  833. }
  834. wl->stopped_queues_map = 0;
  835. /*
  836. * Make sure the driver is at a consistent state, in case this
  837. * function is called from a context other than interface removal.
  838. * This call will always wake the TX queues.
  839. */
  840. if (reset_tx_queues)
  841. wl1271_handle_tx_low_watermark(wl);
  842. for (i = 0; i < ACX_TX_DESCRIPTORS; i++) {
  843. if (wl->tx_frames[i] == NULL)
  844. continue;
  845. skb = wl->tx_frames[i];
  846. wl1271_free_tx_id(wl, i);
  847. wl1271_debug(DEBUG_TX, "freeing skb 0x%p", skb);
  848. if (!wl12xx_is_dummy_packet(wl, skb)) {
  849. /*
  850. * Remove private headers before passing the skb to
  851. * mac80211
  852. */
  853. info = IEEE80211_SKB_CB(skb);
  854. skb_pull(skb, sizeof(struct wl1271_tx_hw_descr));
  855. if (info->control.hw_key &&
  856. info->control.hw_key->cipher ==
  857. WLAN_CIPHER_SUITE_TKIP) {
  858. int hdrlen = ieee80211_get_hdrlen_from_skb(skb);
  859. memmove(skb->data + WL1271_EXTRA_SPACE_TKIP,
  860. skb->data, hdrlen);
  861. skb_pull(skb, WL1271_EXTRA_SPACE_TKIP);
  862. }
  863. info->status.rates[0].idx = -1;
  864. info->status.rates[0].count = 0;
  865. ieee80211_tx_status_ni(wl->hw, skb);
  866. }
  867. }
  868. }
  869. #define WL1271_TX_FLUSH_TIMEOUT 500000
  870. /* caller must *NOT* hold wl->mutex */
  871. void wl1271_tx_flush(struct wl1271 *wl)
  872. {
  873. unsigned long timeout;
  874. int i;
  875. timeout = jiffies + usecs_to_jiffies(WL1271_TX_FLUSH_TIMEOUT);
  876. while (!time_after(jiffies, timeout)) {
  877. mutex_lock(&wl->mutex);
  878. wl1271_debug(DEBUG_TX, "flushing tx buffer: %d %d",
  879. wl->tx_frames_cnt,
  880. wl1271_tx_total_queue_count(wl));
  881. if ((wl->tx_frames_cnt == 0) &&
  882. (wl1271_tx_total_queue_count(wl) == 0)) {
  883. mutex_unlock(&wl->mutex);
  884. return;
  885. }
  886. mutex_unlock(&wl->mutex);
  887. msleep(1);
  888. }
  889. wl1271_warning("Unable to flush all TX buffers, timed out.");
  890. /* forcibly flush all Tx buffers on our queues */
  891. mutex_lock(&wl->mutex);
  892. for (i = 0; i < WL12XX_MAX_LINKS; i++)
  893. wl1271_tx_reset_link_queues(wl, i);
  894. mutex_unlock(&wl->mutex);
  895. }
  896. u32 wl1271_tx_min_rate_get(struct wl1271 *wl, u32 rate_set)
  897. {
  898. if (WARN_ON(!rate_set))
  899. return 0;
  900. return BIT(__ffs(rate_set));
  901. }