wl1271_scan.c 7.9 KB

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  1. /*
  2. * This file is part of wl1271
  3. *
  4. * Copyright (C) 2009-2010 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/ieee80211.h>
  24. #include "wl1271.h"
  25. #include "wl1271_cmd.h"
  26. #include "wl1271_scan.h"
  27. #include "wl1271_acx.h"
  28. void wl1271_scan_complete_work(struct work_struct *work)
  29. {
  30. struct delayed_work *dwork;
  31. struct wl1271 *wl;
  32. dwork = container_of(work, struct delayed_work, work);
  33. wl = container_of(dwork, struct wl1271, scan_complete_work);
  34. wl1271_debug(DEBUG_SCAN, "Scanning complete");
  35. mutex_lock(&wl->mutex);
  36. if (wl->scan.state == WL1271_SCAN_STATE_IDLE) {
  37. mutex_unlock(&wl->mutex);
  38. return;
  39. }
  40. wl->scan.state = WL1271_SCAN_STATE_IDLE;
  41. kfree(wl->scan.scanned_ch);
  42. wl->scan.scanned_ch = NULL;
  43. mutex_unlock(&wl->mutex);
  44. ieee80211_scan_completed(wl->hw, false);
  45. if (wl->scan.failed) {
  46. wl1271_info("Scan completed due to error.");
  47. ieee80211_queue_work(wl->hw, &wl->recovery_work);
  48. }
  49. }
  50. static int wl1271_get_scan_channels(struct wl1271 *wl,
  51. struct cfg80211_scan_request *req,
  52. struct basic_scan_channel_params *channels,
  53. enum ieee80211_band band, bool passive)
  54. {
  55. struct conf_scan_settings *c = &wl->conf.scan;
  56. int i, j;
  57. u32 flags;
  58. for (i = 0, j = 0;
  59. i < req->n_channels && j < WL1271_SCAN_MAX_CHANNELS;
  60. i++) {
  61. flags = req->channels[i]->flags;
  62. if (!wl->scan.scanned_ch[i] &&
  63. !(flags & IEEE80211_CHAN_DISABLED) &&
  64. ((!!(flags & IEEE80211_CHAN_PASSIVE_SCAN)) == passive) &&
  65. (req->channels[i]->band == band)) {
  66. wl1271_debug(DEBUG_SCAN, "band %d, center_freq %d ",
  67. req->channels[i]->band,
  68. req->channels[i]->center_freq);
  69. wl1271_debug(DEBUG_SCAN, "hw_value %d, flags %X",
  70. req->channels[i]->hw_value,
  71. req->channels[i]->flags);
  72. wl1271_debug(DEBUG_SCAN,
  73. "max_antenna_gain %d, max_power %d",
  74. req->channels[i]->max_antenna_gain,
  75. req->channels[i]->max_power);
  76. wl1271_debug(DEBUG_SCAN, "beacon_found %d",
  77. req->channels[i]->beacon_found);
  78. if (!passive) {
  79. channels[j].min_duration =
  80. cpu_to_le32(c->min_dwell_time_active);
  81. channels[j].max_duration =
  82. cpu_to_le32(c->max_dwell_time_active);
  83. } else {
  84. channels[j].min_duration =
  85. cpu_to_le32(c->min_dwell_time_passive);
  86. channels[j].max_duration =
  87. cpu_to_le32(c->max_dwell_time_passive);
  88. }
  89. channels[j].early_termination = 0;
  90. channels[j].tx_power_att = req->channels[i]->max_power;
  91. channels[j].channel = req->channels[i]->hw_value;
  92. memset(&channels[j].bssid_lsb, 0xff, 4);
  93. memset(&channels[j].bssid_msb, 0xff, 2);
  94. /* Mark the channels we already used */
  95. wl->scan.scanned_ch[i] = true;
  96. j++;
  97. }
  98. }
  99. return j;
  100. }
  101. #define WL1271_NOTHING_TO_SCAN 1
  102. static int wl1271_scan_send(struct wl1271 *wl, enum ieee80211_band band,
  103. bool passive, u32 basic_rate)
  104. {
  105. struct wl1271_cmd_scan *cmd;
  106. struct wl1271_cmd_trigger_scan_to *trigger;
  107. int ret;
  108. u16 scan_options = 0;
  109. cmd = kzalloc(sizeof(*cmd), GFP_KERNEL);
  110. trigger = kzalloc(sizeof(*trigger), GFP_KERNEL);
  111. if (!cmd || !trigger) {
  112. ret = -ENOMEM;
  113. goto out;
  114. }
  115. /* We always use high priority scans */
  116. scan_options = WL1271_SCAN_OPT_PRIORITY_HIGH;
  117. /* No SSIDs means that we have a forced passive scan */
  118. if (passive || wl->scan.req->n_ssids == 0)
  119. scan_options |= WL1271_SCAN_OPT_PASSIVE;
  120. cmd->params.scan_options = cpu_to_le16(scan_options);
  121. cmd->params.n_ch = wl1271_get_scan_channels(wl, wl->scan.req,
  122. cmd->channels,
  123. band, passive);
  124. if (cmd->params.n_ch == 0) {
  125. ret = WL1271_NOTHING_TO_SCAN;
  126. goto out;
  127. }
  128. cmd->params.tx_rate = cpu_to_le32(basic_rate);
  129. cmd->params.rx_config_options = cpu_to_le32(CFG_RX_ALL_GOOD);
  130. cmd->params.rx_filter_options =
  131. cpu_to_le32(CFG_RX_PRSP_EN | CFG_RX_MGMT_EN | CFG_RX_BCN_EN);
  132. cmd->params.n_probe_reqs = wl->conf.scan.num_probe_reqs;
  133. cmd->params.tx_rate = cpu_to_le32(basic_rate);
  134. cmd->params.tid_trigger = 0;
  135. cmd->params.scan_tag = WL1271_SCAN_DEFAULT_TAG;
  136. if (band == IEEE80211_BAND_2GHZ)
  137. cmd->params.band = WL1271_SCAN_BAND_2_4_GHZ;
  138. else
  139. cmd->params.band = WL1271_SCAN_BAND_5_GHZ;
  140. if (wl->scan.ssid_len && wl->scan.ssid) {
  141. cmd->params.ssid_len = wl->scan.ssid_len;
  142. memcpy(cmd->params.ssid, wl->scan.ssid, wl->scan.ssid_len);
  143. }
  144. ret = wl1271_cmd_build_probe_req(wl, wl->scan.ssid, wl->scan.ssid_len,
  145. wl->scan.req->ie, wl->scan.req->ie_len,
  146. band);
  147. if (ret < 0) {
  148. wl1271_error("PROBE request template failed");
  149. goto out;
  150. }
  151. /* disable the timeout */
  152. trigger->timeout = 0;
  153. ret = wl1271_cmd_send(wl, CMD_TRIGGER_SCAN_TO, trigger,
  154. sizeof(*trigger), 0);
  155. if (ret < 0) {
  156. wl1271_error("trigger scan to failed for hw scan");
  157. goto out;
  158. }
  159. wl1271_dump(DEBUG_SCAN, "SCAN: ", cmd, sizeof(*cmd));
  160. ret = wl1271_cmd_send(wl, CMD_SCAN, cmd, sizeof(*cmd), 0);
  161. if (ret < 0) {
  162. wl1271_error("SCAN failed");
  163. goto out;
  164. }
  165. out:
  166. kfree(cmd);
  167. kfree(trigger);
  168. return ret;
  169. }
  170. void wl1271_scan_stm(struct wl1271 *wl)
  171. {
  172. int ret = 0;
  173. switch (wl->scan.state) {
  174. case WL1271_SCAN_STATE_IDLE:
  175. break;
  176. case WL1271_SCAN_STATE_2GHZ_ACTIVE:
  177. ret = wl1271_scan_send(wl, IEEE80211_BAND_2GHZ, false,
  178. wl->conf.tx.basic_rate);
  179. if (ret == WL1271_NOTHING_TO_SCAN) {
  180. wl->scan.state = WL1271_SCAN_STATE_2GHZ_PASSIVE;
  181. wl1271_scan_stm(wl);
  182. }
  183. break;
  184. case WL1271_SCAN_STATE_2GHZ_PASSIVE:
  185. ret = wl1271_scan_send(wl, IEEE80211_BAND_2GHZ, true,
  186. wl->conf.tx.basic_rate);
  187. if (ret == WL1271_NOTHING_TO_SCAN) {
  188. if (wl->enable_11a)
  189. wl->scan.state = WL1271_SCAN_STATE_5GHZ_ACTIVE;
  190. else
  191. wl->scan.state = WL1271_SCAN_STATE_DONE;
  192. wl1271_scan_stm(wl);
  193. }
  194. break;
  195. case WL1271_SCAN_STATE_5GHZ_ACTIVE:
  196. ret = wl1271_scan_send(wl, IEEE80211_BAND_5GHZ, false,
  197. wl->conf.tx.basic_rate_5);
  198. if (ret == WL1271_NOTHING_TO_SCAN) {
  199. wl->scan.state = WL1271_SCAN_STATE_5GHZ_PASSIVE;
  200. wl1271_scan_stm(wl);
  201. }
  202. break;
  203. case WL1271_SCAN_STATE_5GHZ_PASSIVE:
  204. ret = wl1271_scan_send(wl, IEEE80211_BAND_5GHZ, true,
  205. wl->conf.tx.basic_rate_5);
  206. if (ret == WL1271_NOTHING_TO_SCAN) {
  207. wl->scan.state = WL1271_SCAN_STATE_DONE;
  208. wl1271_scan_stm(wl);
  209. }
  210. break;
  211. case WL1271_SCAN_STATE_DONE:
  212. wl->scan.failed = false;
  213. cancel_delayed_work(&wl->scan_complete_work);
  214. ieee80211_queue_delayed_work(wl->hw, &wl->scan_complete_work,
  215. msecs_to_jiffies(0));
  216. break;
  217. default:
  218. wl1271_error("invalid scan state");
  219. break;
  220. }
  221. if (ret < 0) {
  222. cancel_delayed_work(&wl->scan_complete_work);
  223. ieee80211_queue_delayed_work(wl->hw, &wl->scan_complete_work,
  224. msecs_to_jiffies(0));
  225. }
  226. }
  227. int wl1271_scan(struct wl1271 *wl, const u8 *ssid, size_t ssid_len,
  228. struct cfg80211_scan_request *req)
  229. {
  230. if (wl->scan.state != WL1271_SCAN_STATE_IDLE)
  231. return -EBUSY;
  232. wl->scan.state = WL1271_SCAN_STATE_2GHZ_ACTIVE;
  233. if (ssid_len && ssid) {
  234. wl->scan.ssid_len = ssid_len;
  235. memcpy(wl->scan.ssid, ssid, ssid_len);
  236. } else {
  237. wl->scan.ssid_len = 0;
  238. }
  239. wl->scan.req = req;
  240. wl->scan.scanned_ch = kzalloc(req->n_channels *
  241. sizeof(*wl->scan.scanned_ch),
  242. GFP_KERNEL);
  243. /* we assume failure so that timeout scenarios are handled correctly */
  244. wl->scan.failed = true;
  245. ieee80211_queue_delayed_work(wl->hw, &wl->scan_complete_work,
  246. msecs_to_jiffies(WL1271_SCAN_TIMEOUT));
  247. wl1271_scan_stm(wl);
  248. return 0;
  249. }