iwl-scan.c 26 KB

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  1. /******************************************************************************
  2. *
  3. * GPL LICENSE SUMMARY
  4. *
  5. * Copyright(c) 2008 - 2009 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. #include <linux/types.h>
  29. #include <linux/etherdevice.h>
  30. #include <net/lib80211.h>
  31. #include <net/mac80211.h>
  32. #include "iwl-eeprom.h"
  33. #include "iwl-dev.h"
  34. #include "iwl-core.h"
  35. #include "iwl-sta.h"
  36. #include "iwl-io.h"
  37. #include "iwl-helpers.h"
  38. /* For active scan, listen ACTIVE_DWELL_TIME (msec) on each channel after
  39. * sending probe req. This should be set long enough to hear probe responses
  40. * from more than one AP. */
  41. #define IWL_ACTIVE_DWELL_TIME_24 (30) /* all times in msec */
  42. #define IWL_ACTIVE_DWELL_TIME_52 (20)
  43. #define IWL_ACTIVE_DWELL_FACTOR_24GHZ (3)
  44. #define IWL_ACTIVE_DWELL_FACTOR_52GHZ (2)
  45. /* For passive scan, listen PASSIVE_DWELL_TIME (msec) on each channel.
  46. * Must be set longer than active dwell time.
  47. * For the most reliable scan, set > AP beacon interval (typically 100msec). */
  48. #define IWL_PASSIVE_DWELL_TIME_24 (20) /* all times in msec */
  49. #define IWL_PASSIVE_DWELL_TIME_52 (10)
  50. #define IWL_PASSIVE_DWELL_BASE (100)
  51. #define IWL_CHANNEL_TUNE_TIME 5
  52. /**
  53. * iwl_scan_cancel - Cancel any currently executing HW scan
  54. *
  55. * NOTE: priv->mutex is not required before calling this function
  56. */
  57. int iwl_scan_cancel(struct iwl_priv *priv)
  58. {
  59. if (!test_bit(STATUS_SCAN_HW, &priv->status)) {
  60. clear_bit(STATUS_SCANNING, &priv->status);
  61. return 0;
  62. }
  63. if (test_bit(STATUS_SCANNING, &priv->status)) {
  64. if (!test_bit(STATUS_SCAN_ABORTING, &priv->status)) {
  65. IWL_DEBUG_SCAN(priv, "Queuing scan abort.\n");
  66. set_bit(STATUS_SCAN_ABORTING, &priv->status);
  67. queue_work(priv->workqueue, &priv->abort_scan);
  68. } else
  69. IWL_DEBUG_SCAN(priv, "Scan abort already in progress.\n");
  70. return test_bit(STATUS_SCANNING, &priv->status);
  71. }
  72. return 0;
  73. }
  74. EXPORT_SYMBOL(iwl_scan_cancel);
  75. /**
  76. * iwl_scan_cancel_timeout - Cancel any currently executing HW scan
  77. * @ms: amount of time to wait (in milliseconds) for scan to abort
  78. *
  79. * NOTE: priv->mutex must be held before calling this function
  80. */
  81. int iwl_scan_cancel_timeout(struct iwl_priv *priv, unsigned long ms)
  82. {
  83. unsigned long now = jiffies;
  84. int ret;
  85. ret = iwl_scan_cancel(priv);
  86. if (ret && ms) {
  87. mutex_unlock(&priv->mutex);
  88. while (!time_after(jiffies, now + msecs_to_jiffies(ms)) &&
  89. test_bit(STATUS_SCANNING, &priv->status))
  90. msleep(1);
  91. mutex_lock(&priv->mutex);
  92. return test_bit(STATUS_SCANNING, &priv->status);
  93. }
  94. return ret;
  95. }
  96. EXPORT_SYMBOL(iwl_scan_cancel_timeout);
  97. int iwl_send_scan_abort(struct iwl_priv *priv)
  98. {
  99. int ret = 0;
  100. struct iwl_rx_packet *res;
  101. struct iwl_host_cmd cmd = {
  102. .id = REPLY_SCAN_ABORT_CMD,
  103. .meta.flags = CMD_WANT_SKB,
  104. };
  105. /* If there isn't a scan actively going on in the hardware
  106. * then we are in between scan bands and not actually
  107. * actively scanning, so don't send the abort command */
  108. if (!test_bit(STATUS_SCAN_HW, &priv->status)) {
  109. clear_bit(STATUS_SCAN_ABORTING, &priv->status);
  110. return 0;
  111. }
  112. ret = iwl_send_cmd_sync(priv, &cmd);
  113. if (ret) {
  114. clear_bit(STATUS_SCAN_ABORTING, &priv->status);
  115. return ret;
  116. }
  117. res = (struct iwl_rx_packet *)cmd.meta.u.skb->data;
  118. if (res->u.status != CAN_ABORT_STATUS) {
  119. /* The scan abort will return 1 for success or
  120. * 2 for "failure". A failure condition can be
  121. * due to simply not being in an active scan which
  122. * can occur if we send the scan abort before we
  123. * the microcode has notified us that a scan is
  124. * completed. */
  125. IWL_DEBUG_INFO(priv, "SCAN_ABORT returned %d.\n", res->u.status);
  126. clear_bit(STATUS_SCAN_ABORTING, &priv->status);
  127. clear_bit(STATUS_SCAN_HW, &priv->status);
  128. }
  129. priv->alloc_rxb_skb--;
  130. dev_kfree_skb_any(cmd.meta.u.skb);
  131. return ret;
  132. }
  133. EXPORT_SYMBOL(iwl_send_scan_abort);
  134. /* Service response to REPLY_SCAN_CMD (0x80) */
  135. static void iwl_rx_reply_scan(struct iwl_priv *priv,
  136. struct iwl_rx_mem_buffer *rxb)
  137. {
  138. #ifdef CONFIG_IWLWIFI_DEBUG
  139. struct iwl_rx_packet *pkt = (struct iwl_rx_packet *)rxb->skb->data;
  140. struct iwl_scanreq_notification *notif =
  141. (struct iwl_scanreq_notification *)pkt->u.raw;
  142. IWL_DEBUG_RX(priv, "Scan request status = 0x%x\n", notif->status);
  143. #endif
  144. }
  145. /* Service SCAN_START_NOTIFICATION (0x82) */
  146. static void iwl_rx_scan_start_notif(struct iwl_priv *priv,
  147. struct iwl_rx_mem_buffer *rxb)
  148. {
  149. struct iwl_rx_packet *pkt = (struct iwl_rx_packet *)rxb->skb->data;
  150. struct iwl_scanstart_notification *notif =
  151. (struct iwl_scanstart_notification *)pkt->u.raw;
  152. priv->scan_start_tsf = le32_to_cpu(notif->tsf_low);
  153. IWL_DEBUG_SCAN(priv, "Scan start: "
  154. "%d [802.11%s] "
  155. "(TSF: 0x%08X:%08X) - %d (beacon timer %u)\n",
  156. notif->channel,
  157. notif->band ? "bg" : "a",
  158. le32_to_cpu(notif->tsf_high),
  159. le32_to_cpu(notif->tsf_low),
  160. notif->status, notif->beacon_timer);
  161. }
  162. /* Service SCAN_RESULTS_NOTIFICATION (0x83) */
  163. static void iwl_rx_scan_results_notif(struct iwl_priv *priv,
  164. struct iwl_rx_mem_buffer *rxb)
  165. {
  166. #ifdef CONFIG_IWLWIFI_DEBUG
  167. struct iwl_rx_packet *pkt = (struct iwl_rx_packet *)rxb->skb->data;
  168. struct iwl_scanresults_notification *notif =
  169. (struct iwl_scanresults_notification *)pkt->u.raw;
  170. IWL_DEBUG_SCAN(priv, "Scan ch.res: "
  171. "%d [802.11%s] "
  172. "(TSF: 0x%08X:%08X) - %d "
  173. "elapsed=%lu usec (%dms since last)\n",
  174. notif->channel,
  175. notif->band ? "bg" : "a",
  176. le32_to_cpu(notif->tsf_high),
  177. le32_to_cpu(notif->tsf_low),
  178. le32_to_cpu(notif->statistics[0]),
  179. le32_to_cpu(notif->tsf_low) - priv->scan_start_tsf,
  180. jiffies_to_msecs(elapsed_jiffies
  181. (priv->last_scan_jiffies, jiffies)));
  182. #endif
  183. priv->last_scan_jiffies = jiffies;
  184. priv->next_scan_jiffies = 0;
  185. }
  186. /* Service SCAN_COMPLETE_NOTIFICATION (0x84) */
  187. static void iwl_rx_scan_complete_notif(struct iwl_priv *priv,
  188. struct iwl_rx_mem_buffer *rxb)
  189. {
  190. #ifdef CONFIG_IWLWIFI_DEBUG
  191. struct iwl_rx_packet *pkt = (struct iwl_rx_packet *)rxb->skb->data;
  192. struct iwl_scancomplete_notification *scan_notif = (void *)pkt->u.raw;
  193. IWL_DEBUG_SCAN(priv, "Scan complete: %d channels (TSF 0x%08X:%08X) - %d\n",
  194. scan_notif->scanned_channels,
  195. scan_notif->tsf_low,
  196. scan_notif->tsf_high, scan_notif->status);
  197. #endif
  198. /* The HW is no longer scanning */
  199. clear_bit(STATUS_SCAN_HW, &priv->status);
  200. /* The scan completion notification came in, so kill that timer... */
  201. cancel_delayed_work(&priv->scan_check);
  202. IWL_DEBUG_INFO(priv, "Scan pass on %sGHz took %dms\n",
  203. (priv->scan_bands & BIT(IEEE80211_BAND_2GHZ)) ?
  204. "2.4" : "5.2",
  205. jiffies_to_msecs(elapsed_jiffies
  206. (priv->scan_pass_start, jiffies)));
  207. /* Remove this scanned band from the list of pending
  208. * bands to scan, band G precedes A in order of scanning
  209. * as seen in iwl_bg_request_scan */
  210. if (priv->scan_bands & BIT(IEEE80211_BAND_2GHZ))
  211. priv->scan_bands &= ~BIT(IEEE80211_BAND_2GHZ);
  212. else if (priv->scan_bands & BIT(IEEE80211_BAND_5GHZ))
  213. priv->scan_bands &= ~BIT(IEEE80211_BAND_5GHZ);
  214. /* If a request to abort was given, or the scan did not succeed
  215. * then we reset the scan state machine and terminate,
  216. * re-queuing another scan if one has been requested */
  217. if (test_bit(STATUS_SCAN_ABORTING, &priv->status)) {
  218. IWL_DEBUG_INFO(priv, "Aborted scan completed.\n");
  219. clear_bit(STATUS_SCAN_ABORTING, &priv->status);
  220. } else {
  221. /* If there are more bands on this scan pass reschedule */
  222. if (priv->scan_bands)
  223. goto reschedule;
  224. }
  225. priv->last_scan_jiffies = jiffies;
  226. priv->next_scan_jiffies = 0;
  227. IWL_DEBUG_INFO(priv, "Setting scan to off\n");
  228. clear_bit(STATUS_SCANNING, &priv->status);
  229. IWL_DEBUG_INFO(priv, "Scan took %dms\n",
  230. jiffies_to_msecs(elapsed_jiffies(priv->scan_start, jiffies)));
  231. queue_work(priv->workqueue, &priv->scan_completed);
  232. return;
  233. reschedule:
  234. priv->scan_pass_start = jiffies;
  235. queue_work(priv->workqueue, &priv->request_scan);
  236. }
  237. void iwl_setup_rx_scan_handlers(struct iwl_priv *priv)
  238. {
  239. /* scan handlers */
  240. priv->rx_handlers[REPLY_SCAN_CMD] = iwl_rx_reply_scan;
  241. priv->rx_handlers[SCAN_START_NOTIFICATION] = iwl_rx_scan_start_notif;
  242. priv->rx_handlers[SCAN_RESULTS_NOTIFICATION] =
  243. iwl_rx_scan_results_notif;
  244. priv->rx_handlers[SCAN_COMPLETE_NOTIFICATION] =
  245. iwl_rx_scan_complete_notif;
  246. }
  247. EXPORT_SYMBOL(iwl_setup_rx_scan_handlers);
  248. inline u16 iwl_get_active_dwell_time(struct iwl_priv *priv,
  249. enum ieee80211_band band,
  250. u8 n_probes)
  251. {
  252. if (band == IEEE80211_BAND_5GHZ)
  253. return IWL_ACTIVE_DWELL_TIME_52 +
  254. IWL_ACTIVE_DWELL_FACTOR_52GHZ * (n_probes + 1);
  255. else
  256. return IWL_ACTIVE_DWELL_TIME_24 +
  257. IWL_ACTIVE_DWELL_FACTOR_24GHZ * (n_probes + 1);
  258. }
  259. EXPORT_SYMBOL(iwl_get_active_dwell_time);
  260. u16 iwl_get_passive_dwell_time(struct iwl_priv *priv,
  261. enum ieee80211_band band)
  262. {
  263. u16 passive = (band == IEEE80211_BAND_2GHZ) ?
  264. IWL_PASSIVE_DWELL_BASE + IWL_PASSIVE_DWELL_TIME_24 :
  265. IWL_PASSIVE_DWELL_BASE + IWL_PASSIVE_DWELL_TIME_52;
  266. if (iwl_is_associated(priv)) {
  267. /* If we're associated, we clamp the maximum passive
  268. * dwell time to be 98% of the beacon interval (minus
  269. * 2 * channel tune time) */
  270. passive = priv->beacon_int;
  271. if ((passive > IWL_PASSIVE_DWELL_BASE) || !passive)
  272. passive = IWL_PASSIVE_DWELL_BASE;
  273. passive = (passive * 98) / 100 - IWL_CHANNEL_TUNE_TIME * 2;
  274. }
  275. return passive;
  276. }
  277. EXPORT_SYMBOL(iwl_get_passive_dwell_time);
  278. static int iwl_get_channels_for_scan(struct iwl_priv *priv,
  279. enum ieee80211_band band,
  280. u8 is_active, u8 n_probes,
  281. struct iwl_scan_channel *scan_ch)
  282. {
  283. const struct ieee80211_channel *channels = NULL;
  284. const struct ieee80211_supported_band *sband;
  285. const struct iwl_channel_info *ch_info;
  286. u16 passive_dwell = 0;
  287. u16 active_dwell = 0;
  288. int added, i;
  289. u16 channel;
  290. sband = iwl_get_hw_mode(priv, band);
  291. if (!sband)
  292. return 0;
  293. channels = sband->channels;
  294. active_dwell = iwl_get_active_dwell_time(priv, band, n_probes);
  295. passive_dwell = iwl_get_passive_dwell_time(priv, band);
  296. if (passive_dwell <= active_dwell)
  297. passive_dwell = active_dwell + 1;
  298. for (i = 0, added = 0; i < sband->n_channels; i++) {
  299. if (channels[i].flags & IEEE80211_CHAN_DISABLED)
  300. continue;
  301. channel =
  302. ieee80211_frequency_to_channel(channels[i].center_freq);
  303. scan_ch->channel = cpu_to_le16(channel);
  304. ch_info = iwl_get_channel_info(priv, band, channel);
  305. if (!is_channel_valid(ch_info)) {
  306. IWL_DEBUG_SCAN(priv, "Channel %d is INVALID for this band.\n",
  307. channel);
  308. continue;
  309. }
  310. if (!is_active || is_channel_passive(ch_info) ||
  311. (channels[i].flags & IEEE80211_CHAN_PASSIVE_SCAN))
  312. scan_ch->type = SCAN_CHANNEL_TYPE_PASSIVE;
  313. else
  314. scan_ch->type = SCAN_CHANNEL_TYPE_ACTIVE;
  315. if (n_probes)
  316. scan_ch->type |= IWL_SCAN_PROBE_MASK(n_probes);
  317. scan_ch->active_dwell = cpu_to_le16(active_dwell);
  318. scan_ch->passive_dwell = cpu_to_le16(passive_dwell);
  319. /* Set txpower levels to defaults */
  320. scan_ch->dsp_atten = 110;
  321. /* NOTE: if we were doing 6Mb OFDM for scans we'd use
  322. * power level:
  323. * scan_ch->tx_gain = ((1 << 5) | (2 << 3)) | 3;
  324. */
  325. if (band == IEEE80211_BAND_5GHZ)
  326. scan_ch->tx_gain = ((1 << 5) | (3 << 3)) | 3;
  327. else
  328. scan_ch->tx_gain = ((1 << 5) | (5 << 3));
  329. IWL_DEBUG_SCAN(priv, "Scanning ch=%d prob=0x%X [%s %d]\n",
  330. channel, le32_to_cpu(scan_ch->type),
  331. (scan_ch->type & SCAN_CHANNEL_TYPE_ACTIVE) ?
  332. "ACTIVE" : "PASSIVE",
  333. (scan_ch->type & SCAN_CHANNEL_TYPE_ACTIVE) ?
  334. active_dwell : passive_dwell);
  335. scan_ch++;
  336. added++;
  337. }
  338. IWL_DEBUG_SCAN(priv, "total channels to scan %d \n", added);
  339. return added;
  340. }
  341. void iwl_init_scan_params(struct iwl_priv *priv)
  342. {
  343. u8 ant_idx = fls(priv->hw_params.valid_tx_ant) - 1;
  344. if (!priv->scan_tx_ant[IEEE80211_BAND_5GHZ])
  345. priv->scan_tx_ant[IEEE80211_BAND_5GHZ] = ant_idx;
  346. if (!priv->scan_tx_ant[IEEE80211_BAND_2GHZ])
  347. priv->scan_tx_ant[IEEE80211_BAND_2GHZ] = ant_idx;
  348. }
  349. int iwl_scan_initiate(struct iwl_priv *priv)
  350. {
  351. if (!iwl_is_ready_rf(priv)) {
  352. IWL_DEBUG_SCAN(priv, "Aborting scan due to not ready.\n");
  353. return -EIO;
  354. }
  355. if (test_bit(STATUS_SCANNING, &priv->status)) {
  356. IWL_DEBUG_SCAN(priv, "Scan already in progress.\n");
  357. return -EAGAIN;
  358. }
  359. if (test_bit(STATUS_SCAN_ABORTING, &priv->status)) {
  360. IWL_DEBUG_SCAN(priv, "Scan request while abort pending\n");
  361. return -EAGAIN;
  362. }
  363. IWL_DEBUG_INFO(priv, "Starting scan...\n");
  364. if (priv->cfg->sku & IWL_SKU_G)
  365. priv->scan_bands |= BIT(IEEE80211_BAND_2GHZ);
  366. if (priv->cfg->sku & IWL_SKU_A)
  367. priv->scan_bands |= BIT(IEEE80211_BAND_5GHZ);
  368. set_bit(STATUS_SCANNING, &priv->status);
  369. priv->scan_start = jiffies;
  370. priv->scan_pass_start = priv->scan_start;
  371. queue_work(priv->workqueue, &priv->request_scan);
  372. return 0;
  373. }
  374. EXPORT_SYMBOL(iwl_scan_initiate);
  375. #define IWL_DELAY_NEXT_SCAN (HZ*2)
  376. int iwl_mac_hw_scan(struct ieee80211_hw *hw,
  377. struct cfg80211_scan_request *req)
  378. {
  379. unsigned long flags;
  380. struct iwl_priv *priv = hw->priv;
  381. int ret;
  382. u8 *ssid = NULL;
  383. size_t ssid_len = 0;
  384. if (req->n_ssids) {
  385. ssid = req->ssids[0].ssid;
  386. ssid_len = req->ssids[0].ssid_len;
  387. }
  388. IWL_DEBUG_MAC80211(priv, "enter\n");
  389. mutex_lock(&priv->mutex);
  390. spin_lock_irqsave(&priv->lock, flags);
  391. if (!iwl_is_ready_rf(priv)) {
  392. ret = -EIO;
  393. IWL_DEBUG_MAC80211(priv, "leave - not ready or exit pending\n");
  394. goto out_unlock;
  395. }
  396. /* We don't schedule scan within next_scan_jiffies period.
  397. * Avoid scanning during possible EAPOL exchange, return
  398. * success immediately.
  399. */
  400. if (priv->next_scan_jiffies &&
  401. time_after(priv->next_scan_jiffies, jiffies)) {
  402. IWL_DEBUG_SCAN(priv, "scan rejected: within next scan period\n");
  403. queue_work(priv->workqueue, &priv->scan_completed);
  404. ret = 0;
  405. goto out_unlock;
  406. }
  407. /* if we just finished scan ask for delay */
  408. if (iwl_is_associated(priv) && priv->last_scan_jiffies &&
  409. time_after(priv->last_scan_jiffies + IWL_DELAY_NEXT_SCAN, jiffies)) {
  410. IWL_DEBUG_SCAN(priv, "scan rejected: within previous scan period\n");
  411. queue_work(priv->workqueue, &priv->scan_completed);
  412. ret = 0;
  413. goto out_unlock;
  414. }
  415. if (ssid_len) {
  416. priv->one_direct_scan = 1;
  417. priv->direct_ssid_len = ssid_len;
  418. memcpy(priv->direct_ssid, ssid, priv->direct_ssid_len);
  419. } else {
  420. priv->one_direct_scan = 0;
  421. }
  422. ret = iwl_scan_initiate(priv);
  423. IWL_DEBUG_MAC80211(priv, "leave\n");
  424. out_unlock:
  425. spin_unlock_irqrestore(&priv->lock, flags);
  426. mutex_unlock(&priv->mutex);
  427. return ret;
  428. }
  429. EXPORT_SYMBOL(iwl_mac_hw_scan);
  430. #define IWL_SCAN_CHECK_WATCHDOG (7 * HZ)
  431. void iwl_bg_scan_check(struct work_struct *data)
  432. {
  433. struct iwl_priv *priv =
  434. container_of(data, struct iwl_priv, scan_check.work);
  435. if (test_bit(STATUS_EXIT_PENDING, &priv->status))
  436. return;
  437. mutex_lock(&priv->mutex);
  438. if (test_bit(STATUS_SCANNING, &priv->status) ||
  439. test_bit(STATUS_SCAN_ABORTING, &priv->status)) {
  440. IWL_DEBUG_SCAN(priv, "Scan completion watchdog resetting "
  441. "adapter (%dms)\n",
  442. jiffies_to_msecs(IWL_SCAN_CHECK_WATCHDOG));
  443. if (!test_bit(STATUS_EXIT_PENDING, &priv->status))
  444. iwl_send_scan_abort(priv);
  445. }
  446. mutex_unlock(&priv->mutex);
  447. }
  448. EXPORT_SYMBOL(iwl_bg_scan_check);
  449. /**
  450. * iwl_supported_rate_to_ie - fill in the supported rate in IE field
  451. *
  452. * return : set the bit for each supported rate insert in ie
  453. */
  454. static u16 iwl_supported_rate_to_ie(u8 *ie, u16 supported_rate,
  455. u16 basic_rate, int *left)
  456. {
  457. u16 ret_rates = 0, bit;
  458. int i;
  459. u8 *cnt = ie;
  460. u8 *rates = ie + 1;
  461. for (bit = 1, i = 0; i < IWL_RATE_COUNT; i++, bit <<= 1) {
  462. if (bit & supported_rate) {
  463. ret_rates |= bit;
  464. rates[*cnt] = iwl_rates[i].ieee |
  465. ((bit & basic_rate) ? 0x80 : 0x00);
  466. (*cnt)++;
  467. (*left)--;
  468. if ((*left <= 0) ||
  469. (*cnt >= IWL_SUPPORTED_RATES_IE_LEN))
  470. break;
  471. }
  472. }
  473. return ret_rates;
  474. }
  475. static void iwl_ht_cap_to_ie(const struct ieee80211_supported_band *sband,
  476. u8 *pos, int *left)
  477. {
  478. struct ieee80211_ht_cap *ht_cap;
  479. if (!sband || !sband->ht_cap.ht_supported)
  480. return;
  481. if (*left < sizeof(struct ieee80211_ht_cap))
  482. return;
  483. *pos++ = sizeof(struct ieee80211_ht_cap);
  484. ht_cap = (struct ieee80211_ht_cap *) pos;
  485. ht_cap->cap_info = cpu_to_le16(sband->ht_cap.cap);
  486. memcpy(&ht_cap->mcs, &sband->ht_cap.mcs, 16);
  487. ht_cap->ampdu_params_info =
  488. (sband->ht_cap.ampdu_factor & IEEE80211_HT_AMPDU_PARM_FACTOR) |
  489. ((sband->ht_cap.ampdu_density << 2) &
  490. IEEE80211_HT_AMPDU_PARM_DENSITY);
  491. *left -= sizeof(struct ieee80211_ht_cap);
  492. }
  493. /**
  494. * iwl_fill_probe_req - fill in all required fields and IE for probe request
  495. */
  496. u16 iwl_fill_probe_req(struct iwl_priv *priv,
  497. enum ieee80211_band band,
  498. struct ieee80211_mgmt *frame,
  499. int left)
  500. {
  501. int len = 0;
  502. u8 *pos = NULL;
  503. u16 active_rates, ret_rates, cck_rates, active_rate_basic;
  504. const struct ieee80211_supported_band *sband =
  505. iwl_get_hw_mode(priv, band);
  506. /* Make sure there is enough space for the probe request,
  507. * two mandatory IEs and the data */
  508. left -= 24;
  509. if (left < 0)
  510. return 0;
  511. frame->frame_control = cpu_to_le16(IEEE80211_STYPE_PROBE_REQ);
  512. memcpy(frame->da, iwl_bcast_addr, ETH_ALEN);
  513. memcpy(frame->sa, priv->mac_addr, ETH_ALEN);
  514. memcpy(frame->bssid, iwl_bcast_addr, ETH_ALEN);
  515. frame->seq_ctrl = 0;
  516. len += 24;
  517. /* ...next IE... */
  518. pos = &frame->u.probe_req.variable[0];
  519. /* fill in our indirect SSID IE */
  520. left -= 2;
  521. if (left < 0)
  522. return 0;
  523. *pos++ = WLAN_EID_SSID;
  524. *pos++ = 0;
  525. len += 2;
  526. /* fill in supported rate */
  527. left -= 2;
  528. if (left < 0)
  529. return 0;
  530. *pos++ = WLAN_EID_SUPP_RATES;
  531. *pos = 0;
  532. /* exclude 60M rate */
  533. active_rates = priv->rates_mask;
  534. active_rates &= ~IWL_RATE_60M_MASK;
  535. active_rate_basic = active_rates & IWL_BASIC_RATES_MASK;
  536. cck_rates = IWL_CCK_RATES_MASK & active_rates;
  537. ret_rates = iwl_supported_rate_to_ie(pos, cck_rates,
  538. active_rate_basic, &left);
  539. active_rates &= ~ret_rates;
  540. ret_rates = iwl_supported_rate_to_ie(pos, active_rates,
  541. active_rate_basic, &left);
  542. active_rates &= ~ret_rates;
  543. len += 2 + *pos;
  544. pos += (*pos) + 1;
  545. if (active_rates == 0)
  546. goto fill_end;
  547. /* fill in supported extended rate */
  548. /* ...next IE... */
  549. left -= 2;
  550. if (left < 0)
  551. return 0;
  552. /* ... fill it in... */
  553. *pos++ = WLAN_EID_EXT_SUPP_RATES;
  554. *pos = 0;
  555. iwl_supported_rate_to_ie(pos, active_rates, active_rate_basic, &left);
  556. if (*pos > 0) {
  557. len += 2 + *pos;
  558. pos += (*pos) + 1;
  559. } else {
  560. pos--;
  561. }
  562. fill_end:
  563. left -= 2;
  564. if (left < 0)
  565. return 0;
  566. *pos++ = WLAN_EID_HT_CAPABILITY;
  567. *pos = 0;
  568. iwl_ht_cap_to_ie(sband, pos, &left);
  569. if (*pos > 0)
  570. len += 2 + *pos;
  571. return (u16)len;
  572. }
  573. EXPORT_SYMBOL(iwl_fill_probe_req);
  574. static void iwl_bg_request_scan(struct work_struct *data)
  575. {
  576. struct iwl_priv *priv =
  577. container_of(data, struct iwl_priv, request_scan);
  578. struct iwl_host_cmd cmd = {
  579. .id = REPLY_SCAN_CMD,
  580. .len = sizeof(struct iwl_scan_cmd),
  581. .meta.flags = CMD_SIZE_HUGE,
  582. };
  583. struct iwl_scan_cmd *scan;
  584. struct ieee80211_conf *conf = NULL;
  585. int ret = 0;
  586. u32 rate_flags = 0;
  587. u16 cmd_len;
  588. enum ieee80211_band band;
  589. u8 n_probes = 2;
  590. u8 rx_chain = priv->hw_params.valid_rx_ant;
  591. u8 rate;
  592. DECLARE_SSID_BUF(ssid);
  593. conf = ieee80211_get_hw_conf(priv->hw);
  594. mutex_lock(&priv->mutex);
  595. if (!iwl_is_ready(priv)) {
  596. IWL_WARN(priv, "request scan called when driver not ready.\n");
  597. goto done;
  598. }
  599. /* Make sure the scan wasn't canceled before this queued work
  600. * was given the chance to run... */
  601. if (!test_bit(STATUS_SCANNING, &priv->status))
  602. goto done;
  603. /* This should never be called or scheduled if there is currently
  604. * a scan active in the hardware. */
  605. if (test_bit(STATUS_SCAN_HW, &priv->status)) {
  606. IWL_DEBUG_INFO(priv, "Multiple concurrent scan requests in parallel. "
  607. "Ignoring second request.\n");
  608. ret = -EIO;
  609. goto done;
  610. }
  611. if (test_bit(STATUS_EXIT_PENDING, &priv->status)) {
  612. IWL_DEBUG_SCAN(priv, "Aborting scan due to device shutdown\n");
  613. goto done;
  614. }
  615. if (test_bit(STATUS_SCAN_ABORTING, &priv->status)) {
  616. IWL_DEBUG_HC(priv, "Scan request while abort pending. Queuing.\n");
  617. goto done;
  618. }
  619. if (iwl_is_rfkill(priv)) {
  620. IWL_DEBUG_HC(priv, "Aborting scan due to RF Kill activation\n");
  621. goto done;
  622. }
  623. if (!test_bit(STATUS_READY, &priv->status)) {
  624. IWL_DEBUG_HC(priv, "Scan request while uninitialized. Queuing.\n");
  625. goto done;
  626. }
  627. if (!priv->scan_bands) {
  628. IWL_DEBUG_HC(priv, "Aborting scan due to no requested bands\n");
  629. goto done;
  630. }
  631. if (!priv->scan) {
  632. priv->scan = kmalloc(sizeof(struct iwl_scan_cmd) +
  633. IWL_MAX_SCAN_SIZE, GFP_KERNEL);
  634. if (!priv->scan) {
  635. ret = -ENOMEM;
  636. goto done;
  637. }
  638. }
  639. scan = priv->scan;
  640. memset(scan, 0, sizeof(struct iwl_scan_cmd) + IWL_MAX_SCAN_SIZE);
  641. scan->quiet_plcp_th = IWL_PLCP_QUIET_THRESH;
  642. scan->quiet_time = IWL_ACTIVE_QUIET_TIME;
  643. if (iwl_is_associated(priv)) {
  644. u16 interval = 0;
  645. u32 extra;
  646. u32 suspend_time = 100;
  647. u32 scan_suspend_time = 100;
  648. unsigned long flags;
  649. IWL_DEBUG_INFO(priv, "Scanning while associated...\n");
  650. spin_lock_irqsave(&priv->lock, flags);
  651. interval = priv->beacon_int;
  652. spin_unlock_irqrestore(&priv->lock, flags);
  653. scan->suspend_time = 0;
  654. scan->max_out_time = cpu_to_le32(200 * 1024);
  655. if (!interval)
  656. interval = suspend_time;
  657. extra = (suspend_time / interval) << 22;
  658. scan_suspend_time = (extra |
  659. ((suspend_time % interval) * 1024));
  660. scan->suspend_time = cpu_to_le32(scan_suspend_time);
  661. IWL_DEBUG_SCAN(priv, "suspend_time 0x%X beacon interval %d\n",
  662. scan_suspend_time, interval);
  663. }
  664. /* We should add the ability for user to lock to PASSIVE ONLY */
  665. if (priv->one_direct_scan) {
  666. IWL_DEBUG_SCAN(priv, "Start direct scan for '%s'\n",
  667. print_ssid(ssid, priv->direct_ssid,
  668. priv->direct_ssid_len));
  669. scan->direct_scan[0].id = WLAN_EID_SSID;
  670. scan->direct_scan[0].len = priv->direct_ssid_len;
  671. memcpy(scan->direct_scan[0].ssid,
  672. priv->direct_ssid, priv->direct_ssid_len);
  673. n_probes++;
  674. } else {
  675. IWL_DEBUG_SCAN(priv, "Start indirect scan.\n");
  676. }
  677. scan->tx_cmd.tx_flags = TX_CMD_FLG_SEQ_CTL_MSK;
  678. scan->tx_cmd.sta_id = priv->hw_params.bcast_sta_id;
  679. scan->tx_cmd.stop_time.life_time = TX_CMD_LIFE_TIME_INFINITE;
  680. if (priv->scan_bands & BIT(IEEE80211_BAND_2GHZ)) {
  681. band = IEEE80211_BAND_2GHZ;
  682. scan->flags = RXON_FLG_BAND_24G_MSK | RXON_FLG_AUTO_DETECT_MSK;
  683. if (priv->active_rxon.flags & RXON_FLG_CHANNEL_MODE_PURE_40_MSK) {
  684. rate = IWL_RATE_6M_PLCP;
  685. } else {
  686. rate = IWL_RATE_1M_PLCP;
  687. rate_flags = RATE_MCS_CCK_MSK;
  688. }
  689. scan->good_CRC_th = 0;
  690. } else if (priv->scan_bands & BIT(IEEE80211_BAND_5GHZ)) {
  691. band = IEEE80211_BAND_5GHZ;
  692. rate = IWL_RATE_6M_PLCP;
  693. scan->good_CRC_th = IWL_GOOD_CRC_TH;
  694. /* Force use of chains B and C (0x6) for scan Rx for 4965
  695. * Avoid A (0x1) because of its off-channel reception on A-band.
  696. */
  697. if ((priv->hw_rev & CSR_HW_REV_TYPE_MSK) == CSR_HW_REV_TYPE_4965)
  698. rx_chain = 0x6;
  699. } else {
  700. IWL_WARN(priv, "Invalid scan band count\n");
  701. goto done;
  702. }
  703. priv->scan_tx_ant[band] =
  704. iwl_toggle_tx_ant(priv, priv->scan_tx_ant[band]);
  705. rate_flags |= iwl_ant_idx_to_flags(priv->scan_tx_ant[band]);
  706. scan->tx_cmd.rate_n_flags = iwl_hw_set_rate_n_flags(rate, rate_flags);
  707. /* MIMO is not used here, but value is required */
  708. scan->rx_chain = RXON_RX_CHAIN_DRIVER_FORCE_MSK |
  709. cpu_to_le16((0x7 << RXON_RX_CHAIN_VALID_POS) |
  710. (rx_chain << RXON_RX_CHAIN_FORCE_SEL_POS) |
  711. (0x7 << RXON_RX_CHAIN_FORCE_MIMO_SEL_POS));
  712. cmd_len = iwl_fill_probe_req(priv, band,
  713. (struct ieee80211_mgmt *)scan->data,
  714. IWL_MAX_SCAN_SIZE - sizeof(*scan));
  715. scan->tx_cmd.len = cpu_to_le16(cmd_len);
  716. if (priv->iw_mode == NL80211_IFTYPE_MONITOR)
  717. scan->filter_flags = RXON_FILTER_PROMISC_MSK;
  718. scan->filter_flags |= (RXON_FILTER_ACCEPT_GRP_MSK |
  719. RXON_FILTER_BCON_AWARE_MSK);
  720. scan->channel_count =
  721. iwl_get_channels_for_scan(priv, band, 1, /* active */
  722. n_probes,
  723. (void *)&scan->data[le16_to_cpu(scan->tx_cmd.len)]);
  724. if (scan->channel_count == 0) {
  725. IWL_DEBUG_SCAN(priv, "channel count %d\n", scan->channel_count);
  726. goto done;
  727. }
  728. cmd.len += le16_to_cpu(scan->tx_cmd.len) +
  729. scan->channel_count * sizeof(struct iwl_scan_channel);
  730. cmd.data = scan;
  731. scan->len = cpu_to_le16(cmd.len);
  732. set_bit(STATUS_SCAN_HW, &priv->status);
  733. ret = iwl_send_cmd_sync(priv, &cmd);
  734. if (ret)
  735. goto done;
  736. queue_delayed_work(priv->workqueue, &priv->scan_check,
  737. IWL_SCAN_CHECK_WATCHDOG);
  738. mutex_unlock(&priv->mutex);
  739. return;
  740. done:
  741. /* Cannot perform scan. Make sure we clear scanning
  742. * bits from status so next scan request can be performed.
  743. * If we don't clear scanning status bit here all next scan
  744. * will fail
  745. */
  746. clear_bit(STATUS_SCAN_HW, &priv->status);
  747. clear_bit(STATUS_SCANNING, &priv->status);
  748. /* inform mac80211 scan aborted */
  749. queue_work(priv->workqueue, &priv->scan_completed);
  750. mutex_unlock(&priv->mutex);
  751. }
  752. void iwl_bg_abort_scan(struct work_struct *work)
  753. {
  754. struct iwl_priv *priv = container_of(work, struct iwl_priv, abort_scan);
  755. if (!iwl_is_ready(priv))
  756. return;
  757. mutex_lock(&priv->mutex);
  758. set_bit(STATUS_SCAN_ABORTING, &priv->status);
  759. iwl_send_scan_abort(priv);
  760. mutex_unlock(&priv->mutex);
  761. }
  762. EXPORT_SYMBOL(iwl_bg_abort_scan);
  763. void iwl_bg_scan_completed(struct work_struct *work)
  764. {
  765. struct iwl_priv *priv =
  766. container_of(work, struct iwl_priv, scan_completed);
  767. IWL_DEBUG_SCAN(priv, "SCAN complete scan\n");
  768. if (test_bit(STATUS_EXIT_PENDING, &priv->status))
  769. return;
  770. ieee80211_scan_completed(priv->hw, false);
  771. /* Since setting the TXPOWER may have been deferred while
  772. * performing the scan, fire one off */
  773. mutex_lock(&priv->mutex);
  774. iwl_set_tx_power(priv, priv->tx_power_user_lmt, true);
  775. mutex_unlock(&priv->mutex);
  776. }
  777. EXPORT_SYMBOL(iwl_bg_scan_completed);
  778. void iwl_setup_scan_deferred_work(struct iwl_priv *priv)
  779. {
  780. INIT_WORK(&priv->scan_completed, iwl_bg_scan_completed);
  781. INIT_WORK(&priv->request_scan, iwl_bg_request_scan);
  782. INIT_WORK(&priv->abort_scan, iwl_bg_abort_scan);
  783. INIT_DELAYED_WORK(&priv->scan_check, iwl_bg_scan_check);
  784. }
  785. EXPORT_SYMBOL(iwl_setup_scan_deferred_work);