main.c 31 KB

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  1. /*
  2. * This file is part of wl1251
  3. *
  4. * Copyright (C) 2008-2009 Nokia Corporation
  5. *
  6. * This program is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License
  8. * version 2 as published by the Free Software Foundation.
  9. *
  10. * This program is distributed in the hope that it will be useful, but
  11. * WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  13. * General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program; if not, write to the Free Software
  17. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
  18. * 02110-1301 USA
  19. *
  20. */
  21. #include <linux/module.h>
  22. #include <linux/interrupt.h>
  23. #include <linux/firmware.h>
  24. #include <linux/delay.h>
  25. #include <linux/irq.h>
  26. #include <linux/crc32.h>
  27. #include <linux/etherdevice.h>
  28. #include <linux/vmalloc.h>
  29. #include <linux/slab.h>
  30. #include "wl1251.h"
  31. #include "wl12xx_80211.h"
  32. #include "reg.h"
  33. #include "io.h"
  34. #include "cmd.h"
  35. #include "event.h"
  36. #include "tx.h"
  37. #include "rx.h"
  38. #include "ps.h"
  39. #include "init.h"
  40. #include "debugfs.h"
  41. #include "boot.h"
  42. void wl1251_enable_interrupts(struct wl1251 *wl)
  43. {
  44. wl->if_ops->enable_irq(wl);
  45. }
  46. void wl1251_disable_interrupts(struct wl1251 *wl)
  47. {
  48. wl->if_ops->disable_irq(wl);
  49. }
  50. static int wl1251_power_off(struct wl1251 *wl)
  51. {
  52. return wl->if_ops->power(wl, false);
  53. }
  54. static int wl1251_power_on(struct wl1251 *wl)
  55. {
  56. return wl->if_ops->power(wl, true);
  57. }
  58. static int wl1251_fetch_firmware(struct wl1251 *wl)
  59. {
  60. const struct firmware *fw;
  61. struct device *dev = wiphy_dev(wl->hw->wiphy);
  62. int ret;
  63. ret = request_firmware(&fw, WL1251_FW_NAME, dev);
  64. if (ret < 0) {
  65. wl1251_error("could not get firmware: %d", ret);
  66. return ret;
  67. }
  68. if (fw->size % 4) {
  69. wl1251_error("firmware size is not multiple of 32 bits: %zu",
  70. fw->size);
  71. ret = -EILSEQ;
  72. goto out;
  73. }
  74. wl->fw_len = fw->size;
  75. wl->fw = vmalloc(wl->fw_len);
  76. if (!wl->fw) {
  77. wl1251_error("could not allocate memory for the firmware");
  78. ret = -ENOMEM;
  79. goto out;
  80. }
  81. memcpy(wl->fw, fw->data, wl->fw_len);
  82. ret = 0;
  83. out:
  84. release_firmware(fw);
  85. return ret;
  86. }
  87. static int wl1251_fetch_nvs(struct wl1251 *wl)
  88. {
  89. const struct firmware *fw;
  90. struct device *dev = wiphy_dev(wl->hw->wiphy);
  91. int ret;
  92. ret = request_firmware(&fw, WL1251_NVS_NAME, dev);
  93. if (ret < 0) {
  94. wl1251_error("could not get nvs file: %d", ret);
  95. return ret;
  96. }
  97. if (fw->size % 4) {
  98. wl1251_error("nvs size is not multiple of 32 bits: %zu",
  99. fw->size);
  100. ret = -EILSEQ;
  101. goto out;
  102. }
  103. wl->nvs_len = fw->size;
  104. wl->nvs = kmemdup(fw->data, wl->nvs_len, GFP_KERNEL);
  105. if (!wl->nvs) {
  106. wl1251_error("could not allocate memory for the nvs file");
  107. ret = -ENOMEM;
  108. goto out;
  109. }
  110. ret = 0;
  111. out:
  112. release_firmware(fw);
  113. return ret;
  114. }
  115. static void wl1251_fw_wakeup(struct wl1251 *wl)
  116. {
  117. u32 elp_reg;
  118. elp_reg = ELPCTRL_WAKE_UP;
  119. wl1251_write_elp(wl, HW_ACCESS_ELP_CTRL_REG_ADDR, elp_reg);
  120. elp_reg = wl1251_read_elp(wl, HW_ACCESS_ELP_CTRL_REG_ADDR);
  121. if (!(elp_reg & ELPCTRL_WLAN_READY))
  122. wl1251_warning("WLAN not ready");
  123. }
  124. static int wl1251_chip_wakeup(struct wl1251 *wl)
  125. {
  126. int ret;
  127. ret = wl1251_power_on(wl);
  128. if (ret < 0)
  129. return ret;
  130. msleep(WL1251_POWER_ON_SLEEP);
  131. wl->if_ops->reset(wl);
  132. /* We don't need a real memory partition here, because we only want
  133. * to use the registers at this point. */
  134. wl1251_set_partition(wl,
  135. 0x00000000,
  136. 0x00000000,
  137. REGISTERS_BASE,
  138. REGISTERS_DOWN_SIZE);
  139. /* ELP module wake up */
  140. wl1251_fw_wakeup(wl);
  141. /* whal_FwCtrl_BootSm() */
  142. /* 0. read chip id from CHIP_ID */
  143. wl->chip_id = wl1251_reg_read32(wl, CHIP_ID_B);
  144. /* 1. check if chip id is valid */
  145. switch (wl->chip_id) {
  146. case CHIP_ID_1251_PG12:
  147. wl1251_debug(DEBUG_BOOT, "chip id 0x%x (1251 PG12)",
  148. wl->chip_id);
  149. break;
  150. case CHIP_ID_1251_PG11:
  151. wl1251_debug(DEBUG_BOOT, "chip id 0x%x (1251 PG11)",
  152. wl->chip_id);
  153. break;
  154. case CHIP_ID_1251_PG10:
  155. default:
  156. wl1251_error("unsupported chip id: 0x%x", wl->chip_id);
  157. ret = -ENODEV;
  158. goto out;
  159. }
  160. if (wl->fw == NULL) {
  161. ret = wl1251_fetch_firmware(wl);
  162. if (ret < 0)
  163. goto out;
  164. }
  165. if (wl->nvs == NULL && !wl->use_eeprom) {
  166. /* No NVS from netlink, try to get it from the filesystem */
  167. ret = wl1251_fetch_nvs(wl);
  168. if (ret < 0)
  169. goto out;
  170. }
  171. out:
  172. return ret;
  173. }
  174. #define WL1251_IRQ_LOOP_COUNT 10
  175. static void wl1251_irq_work(struct work_struct *work)
  176. {
  177. u32 intr, ctr = WL1251_IRQ_LOOP_COUNT;
  178. struct wl1251 *wl =
  179. container_of(work, struct wl1251, irq_work);
  180. int ret;
  181. mutex_lock(&wl->mutex);
  182. wl1251_debug(DEBUG_IRQ, "IRQ work");
  183. if (wl->state == WL1251_STATE_OFF)
  184. goto out;
  185. ret = wl1251_ps_elp_wakeup(wl);
  186. if (ret < 0)
  187. goto out;
  188. wl1251_reg_write32(wl, ACX_REG_INTERRUPT_MASK, WL1251_ACX_INTR_ALL);
  189. intr = wl1251_reg_read32(wl, ACX_REG_INTERRUPT_CLEAR);
  190. wl1251_debug(DEBUG_IRQ, "intr: 0x%x", intr);
  191. do {
  192. if (wl->data_path) {
  193. wl->rx_counter = wl1251_mem_read32(
  194. wl, wl->data_path->rx_control_addr);
  195. /* We handle a frmware bug here */
  196. switch ((wl->rx_counter - wl->rx_handled) & 0xf) {
  197. case 0:
  198. wl1251_debug(DEBUG_IRQ,
  199. "RX: FW and host in sync");
  200. intr &= ~WL1251_ACX_INTR_RX0_DATA;
  201. intr &= ~WL1251_ACX_INTR_RX1_DATA;
  202. break;
  203. case 1:
  204. wl1251_debug(DEBUG_IRQ, "RX: FW +1");
  205. intr |= WL1251_ACX_INTR_RX0_DATA;
  206. intr &= ~WL1251_ACX_INTR_RX1_DATA;
  207. break;
  208. case 2:
  209. wl1251_debug(DEBUG_IRQ, "RX: FW +2");
  210. intr |= WL1251_ACX_INTR_RX0_DATA;
  211. intr |= WL1251_ACX_INTR_RX1_DATA;
  212. break;
  213. default:
  214. wl1251_warning(
  215. "RX: FW and host out of sync: %d",
  216. wl->rx_counter - wl->rx_handled);
  217. break;
  218. }
  219. wl->rx_handled = wl->rx_counter;
  220. wl1251_debug(DEBUG_IRQ, "RX counter: %d",
  221. wl->rx_counter);
  222. }
  223. intr &= wl->intr_mask;
  224. if (intr == 0) {
  225. wl1251_debug(DEBUG_IRQ, "INTR is 0");
  226. goto out_sleep;
  227. }
  228. if (intr & WL1251_ACX_INTR_RX0_DATA) {
  229. wl1251_debug(DEBUG_IRQ, "WL1251_ACX_INTR_RX0_DATA");
  230. wl1251_rx(wl);
  231. }
  232. if (intr & WL1251_ACX_INTR_RX1_DATA) {
  233. wl1251_debug(DEBUG_IRQ, "WL1251_ACX_INTR_RX1_DATA");
  234. wl1251_rx(wl);
  235. }
  236. if (intr & WL1251_ACX_INTR_TX_RESULT) {
  237. wl1251_debug(DEBUG_IRQ, "WL1251_ACX_INTR_TX_RESULT");
  238. wl1251_tx_complete(wl);
  239. }
  240. if (intr & WL1251_ACX_INTR_EVENT_A) {
  241. wl1251_debug(DEBUG_IRQ, "WL1251_ACX_INTR_EVENT_A");
  242. wl1251_event_handle(wl, 0);
  243. }
  244. if (intr & WL1251_ACX_INTR_EVENT_B) {
  245. wl1251_debug(DEBUG_IRQ, "WL1251_ACX_INTR_EVENT_B");
  246. wl1251_event_handle(wl, 1);
  247. }
  248. if (intr & WL1251_ACX_INTR_INIT_COMPLETE)
  249. wl1251_debug(DEBUG_IRQ,
  250. "WL1251_ACX_INTR_INIT_COMPLETE");
  251. if (--ctr == 0)
  252. break;
  253. intr = wl1251_reg_read32(wl, ACX_REG_INTERRUPT_CLEAR);
  254. } while (intr);
  255. out_sleep:
  256. wl1251_reg_write32(wl, ACX_REG_INTERRUPT_MASK, ~(wl->intr_mask));
  257. wl1251_ps_elp_sleep(wl);
  258. out:
  259. mutex_unlock(&wl->mutex);
  260. }
  261. static int wl1251_join(struct wl1251 *wl, u8 bss_type, u8 channel,
  262. u16 beacon_interval, u8 dtim_period)
  263. {
  264. int ret;
  265. ret = wl1251_acx_frame_rates(wl, DEFAULT_HW_GEN_TX_RATE,
  266. DEFAULT_HW_GEN_MODULATION_TYPE,
  267. wl->tx_mgmt_frm_rate,
  268. wl->tx_mgmt_frm_mod);
  269. if (ret < 0)
  270. goto out;
  271. ret = wl1251_cmd_join(wl, bss_type, channel, beacon_interval,
  272. dtim_period);
  273. if (ret < 0)
  274. goto out;
  275. ret = wl1251_event_wait(wl, JOIN_EVENT_COMPLETE_ID, 100);
  276. if (ret < 0)
  277. wl1251_warning("join timeout");
  278. out:
  279. return ret;
  280. }
  281. static void wl1251_filter_work(struct work_struct *work)
  282. {
  283. struct wl1251 *wl =
  284. container_of(work, struct wl1251, filter_work);
  285. int ret;
  286. mutex_lock(&wl->mutex);
  287. if (wl->state == WL1251_STATE_OFF)
  288. goto out;
  289. ret = wl1251_ps_elp_wakeup(wl);
  290. if (ret < 0)
  291. goto out;
  292. ret = wl1251_join(wl, wl->bss_type, wl->channel, wl->beacon_int,
  293. wl->dtim_period);
  294. if (ret < 0)
  295. goto out_sleep;
  296. out_sleep:
  297. wl1251_ps_elp_sleep(wl);
  298. out:
  299. mutex_unlock(&wl->mutex);
  300. }
  301. static int wl1251_op_tx(struct ieee80211_hw *hw, struct sk_buff *skb)
  302. {
  303. struct wl1251 *wl = hw->priv;
  304. unsigned long flags;
  305. skb_queue_tail(&wl->tx_queue, skb);
  306. /*
  307. * The chip specific setup must run before the first TX packet -
  308. * before that, the tx_work will not be initialized!
  309. */
  310. ieee80211_queue_work(wl->hw, &wl->tx_work);
  311. /*
  312. * The workqueue is slow to process the tx_queue and we need stop
  313. * the queue here, otherwise the queue will get too long.
  314. */
  315. if (skb_queue_len(&wl->tx_queue) >= WL1251_TX_QUEUE_HIGH_WATERMARK) {
  316. wl1251_debug(DEBUG_TX, "op_tx: tx_queue full, stop queues");
  317. spin_lock_irqsave(&wl->wl_lock, flags);
  318. ieee80211_stop_queues(wl->hw);
  319. wl->tx_queue_stopped = true;
  320. spin_unlock_irqrestore(&wl->wl_lock, flags);
  321. }
  322. return NETDEV_TX_OK;
  323. }
  324. static int wl1251_op_start(struct ieee80211_hw *hw)
  325. {
  326. struct wl1251 *wl = hw->priv;
  327. struct wiphy *wiphy = hw->wiphy;
  328. int ret = 0;
  329. wl1251_debug(DEBUG_MAC80211, "mac80211 start");
  330. mutex_lock(&wl->mutex);
  331. if (wl->state != WL1251_STATE_OFF) {
  332. wl1251_error("cannot start because not in off state: %d",
  333. wl->state);
  334. ret = -EBUSY;
  335. goto out;
  336. }
  337. ret = wl1251_chip_wakeup(wl);
  338. if (ret < 0)
  339. goto out;
  340. ret = wl1251_boot(wl);
  341. if (ret < 0)
  342. goto out;
  343. ret = wl1251_hw_init(wl);
  344. if (ret < 0)
  345. goto out;
  346. ret = wl1251_acx_station_id(wl);
  347. if (ret < 0)
  348. goto out;
  349. wl->state = WL1251_STATE_ON;
  350. wl1251_info("firmware booted (%s)", wl->fw_ver);
  351. /* update hw/fw version info in wiphy struct */
  352. wiphy->hw_version = wl->chip_id;
  353. strncpy(wiphy->fw_version, wl->fw_ver, sizeof(wiphy->fw_version));
  354. out:
  355. if (ret < 0)
  356. wl1251_power_off(wl);
  357. mutex_unlock(&wl->mutex);
  358. return ret;
  359. }
  360. static void wl1251_op_stop(struct ieee80211_hw *hw)
  361. {
  362. struct wl1251 *wl = hw->priv;
  363. wl1251_info("down");
  364. wl1251_debug(DEBUG_MAC80211, "mac80211 stop");
  365. mutex_lock(&wl->mutex);
  366. WARN_ON(wl->state != WL1251_STATE_ON);
  367. if (wl->scanning) {
  368. ieee80211_scan_completed(wl->hw, true);
  369. wl->scanning = false;
  370. }
  371. wl->state = WL1251_STATE_OFF;
  372. wl1251_disable_interrupts(wl);
  373. mutex_unlock(&wl->mutex);
  374. cancel_work_sync(&wl->irq_work);
  375. cancel_work_sync(&wl->tx_work);
  376. cancel_work_sync(&wl->filter_work);
  377. mutex_lock(&wl->mutex);
  378. /* let's notify MAC80211 about the remaining pending TX frames */
  379. wl1251_tx_flush(wl);
  380. wl1251_power_off(wl);
  381. memset(wl->bssid, 0, ETH_ALEN);
  382. wl->listen_int = 1;
  383. wl->bss_type = MAX_BSS_TYPE;
  384. wl->data_in_count = 0;
  385. wl->rx_counter = 0;
  386. wl->rx_handled = 0;
  387. wl->rx_current_buffer = 0;
  388. wl->rx_last_id = 0;
  389. wl->next_tx_complete = 0;
  390. wl->elp = false;
  391. wl->psm = 0;
  392. wl->tx_queue_stopped = false;
  393. wl->power_level = WL1251_DEFAULT_POWER_LEVEL;
  394. wl->channel = WL1251_DEFAULT_CHANNEL;
  395. wl1251_debugfs_reset(wl);
  396. mutex_unlock(&wl->mutex);
  397. }
  398. static int wl1251_op_add_interface(struct ieee80211_hw *hw,
  399. struct ieee80211_vif *vif)
  400. {
  401. struct wl1251 *wl = hw->priv;
  402. int ret = 0;
  403. wl1251_debug(DEBUG_MAC80211, "mac80211 add interface type %d mac %pM",
  404. vif->type, vif->addr);
  405. mutex_lock(&wl->mutex);
  406. if (wl->vif) {
  407. ret = -EBUSY;
  408. goto out;
  409. }
  410. wl->vif = vif;
  411. switch (vif->type) {
  412. case NL80211_IFTYPE_STATION:
  413. wl->bss_type = BSS_TYPE_STA_BSS;
  414. break;
  415. case NL80211_IFTYPE_ADHOC:
  416. wl->bss_type = BSS_TYPE_IBSS;
  417. break;
  418. default:
  419. ret = -EOPNOTSUPP;
  420. goto out;
  421. }
  422. if (memcmp(wl->mac_addr, vif->addr, ETH_ALEN)) {
  423. memcpy(wl->mac_addr, vif->addr, ETH_ALEN);
  424. SET_IEEE80211_PERM_ADDR(wl->hw, wl->mac_addr);
  425. ret = wl1251_acx_station_id(wl);
  426. if (ret < 0)
  427. goto out;
  428. }
  429. out:
  430. mutex_unlock(&wl->mutex);
  431. return ret;
  432. }
  433. static void wl1251_op_remove_interface(struct ieee80211_hw *hw,
  434. struct ieee80211_vif *vif)
  435. {
  436. struct wl1251 *wl = hw->priv;
  437. mutex_lock(&wl->mutex);
  438. wl1251_debug(DEBUG_MAC80211, "mac80211 remove interface");
  439. wl->vif = NULL;
  440. mutex_unlock(&wl->mutex);
  441. }
  442. static int wl1251_build_qos_null_data(struct wl1251 *wl)
  443. {
  444. struct ieee80211_qos_hdr template;
  445. memset(&template, 0, sizeof(template));
  446. memcpy(template.addr1, wl->bssid, ETH_ALEN);
  447. memcpy(template.addr2, wl->mac_addr, ETH_ALEN);
  448. memcpy(template.addr3, wl->bssid, ETH_ALEN);
  449. template.frame_control = cpu_to_le16(IEEE80211_FTYPE_DATA |
  450. IEEE80211_STYPE_QOS_NULLFUNC |
  451. IEEE80211_FCTL_TODS);
  452. /* FIXME: not sure what priority to use here */
  453. template.qos_ctrl = cpu_to_le16(0);
  454. return wl1251_cmd_template_set(wl, CMD_QOS_NULL_DATA, &template,
  455. sizeof(template));
  456. }
  457. static int wl1251_op_config(struct ieee80211_hw *hw, u32 changed)
  458. {
  459. struct wl1251 *wl = hw->priv;
  460. struct ieee80211_conf *conf = &hw->conf;
  461. int channel, ret = 0;
  462. channel = ieee80211_frequency_to_channel(conf->channel->center_freq);
  463. wl1251_debug(DEBUG_MAC80211, "mac80211 config ch %d psm %s power %d",
  464. channel,
  465. conf->flags & IEEE80211_CONF_PS ? "on" : "off",
  466. conf->power_level);
  467. mutex_lock(&wl->mutex);
  468. ret = wl1251_ps_elp_wakeup(wl);
  469. if (ret < 0)
  470. goto out;
  471. if (channel != wl->channel) {
  472. wl->channel = channel;
  473. ret = wl1251_join(wl, wl->bss_type, wl->channel,
  474. wl->beacon_int, wl->dtim_period);
  475. if (ret < 0)
  476. goto out_sleep;
  477. }
  478. if (conf->flags & IEEE80211_CONF_PS && !wl->psm_requested) {
  479. wl1251_debug(DEBUG_PSM, "psm enabled");
  480. wl->psm_requested = true;
  481. wl->dtim_period = conf->ps_dtim_period;
  482. ret = wl1251_acx_wr_tbtt_and_dtim(wl, wl->beacon_int,
  483. wl->dtim_period);
  484. /*
  485. * mac80211 enables PSM only if we're already associated.
  486. */
  487. ret = wl1251_ps_set_mode(wl, STATION_POWER_SAVE_MODE);
  488. if (ret < 0)
  489. goto out_sleep;
  490. } else if (!(conf->flags & IEEE80211_CONF_PS) &&
  491. wl->psm_requested) {
  492. wl1251_debug(DEBUG_PSM, "psm disabled");
  493. wl->psm_requested = false;
  494. if (wl->psm) {
  495. ret = wl1251_ps_set_mode(wl, STATION_ACTIVE_MODE);
  496. if (ret < 0)
  497. goto out_sleep;
  498. }
  499. }
  500. if (conf->power_level != wl->power_level) {
  501. ret = wl1251_acx_tx_power(wl, conf->power_level);
  502. if (ret < 0)
  503. goto out_sleep;
  504. wl->power_level = conf->power_level;
  505. }
  506. out_sleep:
  507. wl1251_ps_elp_sleep(wl);
  508. out:
  509. mutex_unlock(&wl->mutex);
  510. return ret;
  511. }
  512. #define WL1251_SUPPORTED_FILTERS (FIF_PROMISC_IN_BSS | \
  513. FIF_ALLMULTI | \
  514. FIF_FCSFAIL | \
  515. FIF_BCN_PRBRESP_PROMISC | \
  516. FIF_CONTROL | \
  517. FIF_OTHER_BSS)
  518. static void wl1251_op_configure_filter(struct ieee80211_hw *hw,
  519. unsigned int changed,
  520. unsigned int *total,u64 multicast)
  521. {
  522. struct wl1251 *wl = hw->priv;
  523. wl1251_debug(DEBUG_MAC80211, "mac80211 configure filter");
  524. *total &= WL1251_SUPPORTED_FILTERS;
  525. changed &= WL1251_SUPPORTED_FILTERS;
  526. if (changed == 0)
  527. /* no filters which we support changed */
  528. return;
  529. /* FIXME: wl->rx_config and wl->rx_filter are not protected */
  530. wl->rx_config = WL1251_DEFAULT_RX_CONFIG;
  531. wl->rx_filter = WL1251_DEFAULT_RX_FILTER;
  532. if (*total & FIF_PROMISC_IN_BSS) {
  533. wl->rx_config |= CFG_BSSID_FILTER_EN;
  534. wl->rx_config |= CFG_RX_ALL_GOOD;
  535. }
  536. if (*total & FIF_ALLMULTI)
  537. /*
  538. * CFG_MC_FILTER_EN in rx_config needs to be 0 to receive
  539. * all multicast frames
  540. */
  541. wl->rx_config &= ~CFG_MC_FILTER_EN;
  542. if (*total & FIF_FCSFAIL)
  543. wl->rx_filter |= CFG_RX_FCS_ERROR;
  544. if (*total & FIF_BCN_PRBRESP_PROMISC) {
  545. wl->rx_config &= ~CFG_BSSID_FILTER_EN;
  546. wl->rx_config &= ~CFG_SSID_FILTER_EN;
  547. }
  548. if (*total & FIF_CONTROL)
  549. wl->rx_filter |= CFG_RX_CTL_EN;
  550. if (*total & FIF_OTHER_BSS)
  551. wl->rx_filter &= ~CFG_BSSID_FILTER_EN;
  552. /*
  553. * FIXME: workqueues need to be properly cancelled on stop(), for
  554. * now let's just disable changing the filter settings. They will
  555. * be updated any on config().
  556. */
  557. /* schedule_work(&wl->filter_work); */
  558. }
  559. /* HW encryption */
  560. static int wl1251_set_key_type(struct wl1251 *wl,
  561. struct wl1251_cmd_set_keys *key,
  562. enum set_key_cmd cmd,
  563. struct ieee80211_key_conf *mac80211_key,
  564. const u8 *addr)
  565. {
  566. switch (mac80211_key->cipher) {
  567. case WLAN_CIPHER_SUITE_WEP40:
  568. case WLAN_CIPHER_SUITE_WEP104:
  569. if (is_broadcast_ether_addr(addr))
  570. key->key_type = KEY_WEP_DEFAULT;
  571. else
  572. key->key_type = KEY_WEP_ADDR;
  573. mac80211_key->hw_key_idx = mac80211_key->keyidx;
  574. break;
  575. case WLAN_CIPHER_SUITE_TKIP:
  576. if (is_broadcast_ether_addr(addr))
  577. key->key_type = KEY_TKIP_MIC_GROUP;
  578. else
  579. key->key_type = KEY_TKIP_MIC_PAIRWISE;
  580. mac80211_key->hw_key_idx = mac80211_key->keyidx;
  581. break;
  582. case WLAN_CIPHER_SUITE_CCMP:
  583. if (is_broadcast_ether_addr(addr))
  584. key->key_type = KEY_AES_GROUP;
  585. else
  586. key->key_type = KEY_AES_PAIRWISE;
  587. mac80211_key->flags |= IEEE80211_KEY_FLAG_GENERATE_IV;
  588. break;
  589. default:
  590. wl1251_error("Unknown key cipher 0x%x", mac80211_key->cipher);
  591. return -EOPNOTSUPP;
  592. }
  593. return 0;
  594. }
  595. static int wl1251_op_set_key(struct ieee80211_hw *hw, enum set_key_cmd cmd,
  596. struct ieee80211_vif *vif,
  597. struct ieee80211_sta *sta,
  598. struct ieee80211_key_conf *key)
  599. {
  600. struct wl1251 *wl = hw->priv;
  601. struct wl1251_cmd_set_keys *wl_cmd;
  602. const u8 *addr;
  603. int ret;
  604. static const u8 bcast_addr[ETH_ALEN] =
  605. { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
  606. wl1251_debug(DEBUG_MAC80211, "mac80211 set key");
  607. wl_cmd = kzalloc(sizeof(*wl_cmd), GFP_KERNEL);
  608. if (!wl_cmd) {
  609. ret = -ENOMEM;
  610. goto out;
  611. }
  612. addr = sta ? sta->addr : bcast_addr;
  613. wl1251_debug(DEBUG_CRYPT, "CMD: 0x%x", cmd);
  614. wl1251_dump(DEBUG_CRYPT, "ADDR: ", addr, ETH_ALEN);
  615. wl1251_debug(DEBUG_CRYPT, "Key: algo:0x%x, id:%d, len:%d flags 0x%x",
  616. key->cipher, key->keyidx, key->keylen, key->flags);
  617. wl1251_dump(DEBUG_CRYPT, "KEY: ", key->key, key->keylen);
  618. if (is_zero_ether_addr(addr)) {
  619. /* We dont support TX only encryption */
  620. ret = -EOPNOTSUPP;
  621. goto out;
  622. }
  623. mutex_lock(&wl->mutex);
  624. ret = wl1251_ps_elp_wakeup(wl);
  625. if (ret < 0)
  626. goto out_unlock;
  627. switch (cmd) {
  628. case SET_KEY:
  629. wl_cmd->key_action = KEY_ADD_OR_REPLACE;
  630. break;
  631. case DISABLE_KEY:
  632. wl_cmd->key_action = KEY_REMOVE;
  633. break;
  634. default:
  635. wl1251_error("Unsupported key cmd 0x%x", cmd);
  636. break;
  637. }
  638. ret = wl1251_set_key_type(wl, wl_cmd, cmd, key, addr);
  639. if (ret < 0) {
  640. wl1251_error("Set KEY type failed");
  641. goto out_sleep;
  642. }
  643. if (wl_cmd->key_type != KEY_WEP_DEFAULT)
  644. memcpy(wl_cmd->addr, addr, ETH_ALEN);
  645. if ((wl_cmd->key_type == KEY_TKIP_MIC_GROUP) ||
  646. (wl_cmd->key_type == KEY_TKIP_MIC_PAIRWISE)) {
  647. /*
  648. * We get the key in the following form:
  649. * TKIP (16 bytes) - TX MIC (8 bytes) - RX MIC (8 bytes)
  650. * but the target is expecting:
  651. * TKIP - RX MIC - TX MIC
  652. */
  653. memcpy(wl_cmd->key, key->key, 16);
  654. memcpy(wl_cmd->key + 16, key->key + 24, 8);
  655. memcpy(wl_cmd->key + 24, key->key + 16, 8);
  656. } else {
  657. memcpy(wl_cmd->key, key->key, key->keylen);
  658. }
  659. wl_cmd->key_size = key->keylen;
  660. wl_cmd->id = key->keyidx;
  661. wl_cmd->ssid_profile = 0;
  662. wl1251_dump(DEBUG_CRYPT, "TARGET KEY: ", wl_cmd, sizeof(*wl_cmd));
  663. ret = wl1251_cmd_send(wl, CMD_SET_KEYS, wl_cmd, sizeof(*wl_cmd));
  664. if (ret < 0) {
  665. wl1251_warning("could not set keys");
  666. goto out_sleep;
  667. }
  668. out_sleep:
  669. wl1251_ps_elp_sleep(wl);
  670. out_unlock:
  671. mutex_unlock(&wl->mutex);
  672. out:
  673. kfree(wl_cmd);
  674. return ret;
  675. }
  676. static int wl1251_op_hw_scan(struct ieee80211_hw *hw,
  677. struct ieee80211_vif *vif,
  678. struct cfg80211_scan_request *req)
  679. {
  680. struct wl1251 *wl = hw->priv;
  681. struct sk_buff *skb;
  682. size_t ssid_len = 0;
  683. u8 *ssid = NULL;
  684. int ret;
  685. wl1251_debug(DEBUG_MAC80211, "mac80211 hw scan");
  686. if (req->n_ssids) {
  687. ssid = req->ssids[0].ssid;
  688. ssid_len = req->ssids[0].ssid_len;
  689. }
  690. mutex_lock(&wl->mutex);
  691. if (wl->scanning) {
  692. wl1251_debug(DEBUG_SCAN, "scan already in progress");
  693. ret = -EINVAL;
  694. goto out;
  695. }
  696. ret = wl1251_ps_elp_wakeup(wl);
  697. if (ret < 0)
  698. goto out;
  699. skb = ieee80211_probereq_get(wl->hw, wl->vif, ssid, ssid_len,
  700. req->ie, req->ie_len);
  701. if (!skb) {
  702. ret = -ENOMEM;
  703. goto out;
  704. }
  705. ret = wl1251_cmd_template_set(wl, CMD_PROBE_REQ, skb->data,
  706. skb->len);
  707. dev_kfree_skb(skb);
  708. if (ret < 0)
  709. goto out_sleep;
  710. ret = wl1251_cmd_trigger_scan_to(wl, 0);
  711. if (ret < 0)
  712. goto out_sleep;
  713. wl->scanning = true;
  714. ret = wl1251_cmd_scan(wl, ssid, ssid_len, req->channels,
  715. req->n_channels, WL1251_SCAN_NUM_PROBES);
  716. if (ret < 0) {
  717. wl->scanning = false;
  718. goto out_sleep;
  719. }
  720. out_sleep:
  721. wl1251_ps_elp_sleep(wl);
  722. out:
  723. mutex_unlock(&wl->mutex);
  724. return ret;
  725. }
  726. static int wl1251_op_set_rts_threshold(struct ieee80211_hw *hw, u32 value)
  727. {
  728. struct wl1251 *wl = hw->priv;
  729. int ret;
  730. mutex_lock(&wl->mutex);
  731. ret = wl1251_ps_elp_wakeup(wl);
  732. if (ret < 0)
  733. goto out;
  734. ret = wl1251_acx_rts_threshold(wl, (u16) value);
  735. if (ret < 0)
  736. wl1251_warning("wl1251_op_set_rts_threshold failed: %d", ret);
  737. wl1251_ps_elp_sleep(wl);
  738. out:
  739. mutex_unlock(&wl->mutex);
  740. return ret;
  741. }
  742. static void wl1251_op_bss_info_changed(struct ieee80211_hw *hw,
  743. struct ieee80211_vif *vif,
  744. struct ieee80211_bss_conf *bss_conf,
  745. u32 changed)
  746. {
  747. struct wl1251 *wl = hw->priv;
  748. struct sk_buff *beacon, *skb;
  749. int ret;
  750. wl1251_debug(DEBUG_MAC80211, "mac80211 bss info changed");
  751. mutex_lock(&wl->mutex);
  752. ret = wl1251_ps_elp_wakeup(wl);
  753. if (ret < 0)
  754. goto out;
  755. if (changed & BSS_CHANGED_BSSID) {
  756. memcpy(wl->bssid, bss_conf->bssid, ETH_ALEN);
  757. skb = ieee80211_nullfunc_get(wl->hw, wl->vif);
  758. if (!skb)
  759. goto out_sleep;
  760. ret = wl1251_cmd_template_set(wl, CMD_NULL_DATA,
  761. skb->data, skb->len);
  762. dev_kfree_skb(skb);
  763. if (ret < 0)
  764. goto out_sleep;
  765. ret = wl1251_build_qos_null_data(wl);
  766. if (ret < 0)
  767. goto out;
  768. if (wl->bss_type != BSS_TYPE_IBSS) {
  769. ret = wl1251_join(wl, wl->bss_type, wl->channel,
  770. wl->beacon_int, wl->dtim_period);
  771. if (ret < 0)
  772. goto out_sleep;
  773. }
  774. }
  775. if (changed & BSS_CHANGED_ASSOC) {
  776. if (bss_conf->assoc) {
  777. wl->beacon_int = bss_conf->beacon_int;
  778. skb = ieee80211_pspoll_get(wl->hw, wl->vif);
  779. if (!skb)
  780. goto out_sleep;
  781. ret = wl1251_cmd_template_set(wl, CMD_PS_POLL,
  782. skb->data,
  783. skb->len);
  784. dev_kfree_skb(skb);
  785. if (ret < 0)
  786. goto out_sleep;
  787. ret = wl1251_acx_aid(wl, bss_conf->aid);
  788. if (ret < 0)
  789. goto out_sleep;
  790. } else {
  791. /* use defaults when not associated */
  792. wl->beacon_int = WL1251_DEFAULT_BEACON_INT;
  793. wl->dtim_period = WL1251_DEFAULT_DTIM_PERIOD;
  794. }
  795. }
  796. if (changed & BSS_CHANGED_ERP_SLOT) {
  797. if (bss_conf->use_short_slot)
  798. ret = wl1251_acx_slot(wl, SLOT_TIME_SHORT);
  799. else
  800. ret = wl1251_acx_slot(wl, SLOT_TIME_LONG);
  801. if (ret < 0) {
  802. wl1251_warning("Set slot time failed %d", ret);
  803. goto out_sleep;
  804. }
  805. }
  806. if (changed & BSS_CHANGED_ERP_PREAMBLE) {
  807. if (bss_conf->use_short_preamble)
  808. wl1251_acx_set_preamble(wl, ACX_PREAMBLE_SHORT);
  809. else
  810. wl1251_acx_set_preamble(wl, ACX_PREAMBLE_LONG);
  811. }
  812. if (changed & BSS_CHANGED_ERP_CTS_PROT) {
  813. if (bss_conf->use_cts_prot)
  814. ret = wl1251_acx_cts_protect(wl, CTSPROTECT_ENABLE);
  815. else
  816. ret = wl1251_acx_cts_protect(wl, CTSPROTECT_DISABLE);
  817. if (ret < 0) {
  818. wl1251_warning("Set ctsprotect failed %d", ret);
  819. goto out_sleep;
  820. }
  821. }
  822. if (changed & BSS_CHANGED_BEACON) {
  823. beacon = ieee80211_beacon_get(hw, vif);
  824. ret = wl1251_cmd_template_set(wl, CMD_BEACON, beacon->data,
  825. beacon->len);
  826. if (ret < 0) {
  827. dev_kfree_skb(beacon);
  828. goto out_sleep;
  829. }
  830. ret = wl1251_cmd_template_set(wl, CMD_PROBE_RESP, beacon->data,
  831. beacon->len);
  832. dev_kfree_skb(beacon);
  833. if (ret < 0)
  834. goto out_sleep;
  835. ret = wl1251_join(wl, wl->bss_type, wl->beacon_int,
  836. wl->channel, wl->dtim_period);
  837. if (ret < 0)
  838. goto out_sleep;
  839. }
  840. out_sleep:
  841. wl1251_ps_elp_sleep(wl);
  842. out:
  843. mutex_unlock(&wl->mutex);
  844. }
  845. /* can't be const, mac80211 writes to this */
  846. static struct ieee80211_rate wl1251_rates[] = {
  847. { .bitrate = 10,
  848. .hw_value = 0x1,
  849. .hw_value_short = 0x1, },
  850. { .bitrate = 20,
  851. .hw_value = 0x2,
  852. .hw_value_short = 0x2,
  853. .flags = IEEE80211_RATE_SHORT_PREAMBLE },
  854. { .bitrate = 55,
  855. .hw_value = 0x4,
  856. .hw_value_short = 0x4,
  857. .flags = IEEE80211_RATE_SHORT_PREAMBLE },
  858. { .bitrate = 110,
  859. .hw_value = 0x20,
  860. .hw_value_short = 0x20,
  861. .flags = IEEE80211_RATE_SHORT_PREAMBLE },
  862. { .bitrate = 60,
  863. .hw_value = 0x8,
  864. .hw_value_short = 0x8, },
  865. { .bitrate = 90,
  866. .hw_value = 0x10,
  867. .hw_value_short = 0x10, },
  868. { .bitrate = 120,
  869. .hw_value = 0x40,
  870. .hw_value_short = 0x40, },
  871. { .bitrate = 180,
  872. .hw_value = 0x80,
  873. .hw_value_short = 0x80, },
  874. { .bitrate = 240,
  875. .hw_value = 0x200,
  876. .hw_value_short = 0x200, },
  877. { .bitrate = 360,
  878. .hw_value = 0x400,
  879. .hw_value_short = 0x400, },
  880. { .bitrate = 480,
  881. .hw_value = 0x800,
  882. .hw_value_short = 0x800, },
  883. { .bitrate = 540,
  884. .hw_value = 0x1000,
  885. .hw_value_short = 0x1000, },
  886. };
  887. /* can't be const, mac80211 writes to this */
  888. static struct ieee80211_channel wl1251_channels[] = {
  889. { .hw_value = 1, .center_freq = 2412},
  890. { .hw_value = 2, .center_freq = 2417},
  891. { .hw_value = 3, .center_freq = 2422},
  892. { .hw_value = 4, .center_freq = 2427},
  893. { .hw_value = 5, .center_freq = 2432},
  894. { .hw_value = 6, .center_freq = 2437},
  895. { .hw_value = 7, .center_freq = 2442},
  896. { .hw_value = 8, .center_freq = 2447},
  897. { .hw_value = 9, .center_freq = 2452},
  898. { .hw_value = 10, .center_freq = 2457},
  899. { .hw_value = 11, .center_freq = 2462},
  900. { .hw_value = 12, .center_freq = 2467},
  901. { .hw_value = 13, .center_freq = 2472},
  902. };
  903. static int wl1251_op_conf_tx(struct ieee80211_hw *hw, u16 queue,
  904. const struct ieee80211_tx_queue_params *params)
  905. {
  906. enum wl1251_acx_ps_scheme ps_scheme;
  907. struct wl1251 *wl = hw->priv;
  908. int ret;
  909. mutex_lock(&wl->mutex);
  910. wl1251_debug(DEBUG_MAC80211, "mac80211 conf tx %d", queue);
  911. ret = wl1251_ps_elp_wakeup(wl);
  912. if (ret < 0)
  913. goto out;
  914. /* mac80211 uses units of 32 usec */
  915. ret = wl1251_acx_ac_cfg(wl, wl1251_tx_get_queue(queue),
  916. params->cw_min, params->cw_max,
  917. params->aifs, params->txop * 32);
  918. if (ret < 0)
  919. goto out_sleep;
  920. if (params->uapsd)
  921. ps_scheme = WL1251_ACX_PS_SCHEME_UPSD_TRIGGER;
  922. else
  923. ps_scheme = WL1251_ACX_PS_SCHEME_LEGACY;
  924. ret = wl1251_acx_tid_cfg(wl, wl1251_tx_get_queue(queue),
  925. CHANNEL_TYPE_EDCF,
  926. wl1251_tx_get_queue(queue), ps_scheme,
  927. WL1251_ACX_ACK_POLICY_LEGACY);
  928. if (ret < 0)
  929. goto out_sleep;
  930. out_sleep:
  931. wl1251_ps_elp_sleep(wl);
  932. out:
  933. mutex_unlock(&wl->mutex);
  934. return ret;
  935. }
  936. static int wl1251_op_get_survey(struct ieee80211_hw *hw, int idx,
  937. struct survey_info *survey)
  938. {
  939. struct wl1251 *wl = hw->priv;
  940. struct ieee80211_conf *conf = &hw->conf;
  941. if (idx != 0)
  942. return -ENOENT;
  943. survey->channel = conf->channel;
  944. survey->filled = SURVEY_INFO_NOISE_DBM;
  945. survey->noise = wl->noise;
  946. return 0;
  947. }
  948. /* can't be const, mac80211 writes to this */
  949. static struct ieee80211_supported_band wl1251_band_2ghz = {
  950. .channels = wl1251_channels,
  951. .n_channels = ARRAY_SIZE(wl1251_channels),
  952. .bitrates = wl1251_rates,
  953. .n_bitrates = ARRAY_SIZE(wl1251_rates),
  954. };
  955. static const struct ieee80211_ops wl1251_ops = {
  956. .start = wl1251_op_start,
  957. .stop = wl1251_op_stop,
  958. .add_interface = wl1251_op_add_interface,
  959. .remove_interface = wl1251_op_remove_interface,
  960. .config = wl1251_op_config,
  961. .configure_filter = wl1251_op_configure_filter,
  962. .tx = wl1251_op_tx,
  963. .set_key = wl1251_op_set_key,
  964. .hw_scan = wl1251_op_hw_scan,
  965. .bss_info_changed = wl1251_op_bss_info_changed,
  966. .set_rts_threshold = wl1251_op_set_rts_threshold,
  967. .conf_tx = wl1251_op_conf_tx,
  968. .get_survey = wl1251_op_get_survey,
  969. };
  970. static int wl1251_read_eeprom_byte(struct wl1251 *wl, off_t offset, u8 *data)
  971. {
  972. unsigned long timeout;
  973. wl1251_reg_write32(wl, EE_ADDR, offset);
  974. wl1251_reg_write32(wl, EE_CTL, EE_CTL_READ);
  975. /* EE_CTL_READ clears when data is ready */
  976. timeout = jiffies + msecs_to_jiffies(100);
  977. while (1) {
  978. if (!(wl1251_reg_read32(wl, EE_CTL) & EE_CTL_READ))
  979. break;
  980. if (time_after(jiffies, timeout))
  981. return -ETIMEDOUT;
  982. msleep(1);
  983. }
  984. *data = wl1251_reg_read32(wl, EE_DATA);
  985. return 0;
  986. }
  987. static int wl1251_read_eeprom(struct wl1251 *wl, off_t offset,
  988. u8 *data, size_t len)
  989. {
  990. size_t i;
  991. int ret;
  992. wl1251_reg_write32(wl, EE_START, 0);
  993. for (i = 0; i < len; i++) {
  994. ret = wl1251_read_eeprom_byte(wl, offset + i, &data[i]);
  995. if (ret < 0)
  996. return ret;
  997. }
  998. return 0;
  999. }
  1000. static int wl1251_read_eeprom_mac(struct wl1251 *wl)
  1001. {
  1002. u8 mac[ETH_ALEN];
  1003. int i, ret;
  1004. wl1251_set_partition(wl, 0, 0, REGISTERS_BASE, REGISTERS_DOWN_SIZE);
  1005. ret = wl1251_read_eeprom(wl, 0x1c, mac, sizeof(mac));
  1006. if (ret < 0) {
  1007. wl1251_warning("failed to read MAC address from EEPROM");
  1008. return ret;
  1009. }
  1010. /* MAC is stored in reverse order */
  1011. for (i = 0; i < ETH_ALEN; i++)
  1012. wl->mac_addr[i] = mac[ETH_ALEN - i - 1];
  1013. return 0;
  1014. }
  1015. static int wl1251_register_hw(struct wl1251 *wl)
  1016. {
  1017. int ret;
  1018. if (wl->mac80211_registered)
  1019. return 0;
  1020. SET_IEEE80211_PERM_ADDR(wl->hw, wl->mac_addr);
  1021. ret = ieee80211_register_hw(wl->hw);
  1022. if (ret < 0) {
  1023. wl1251_error("unable to register mac80211 hw: %d", ret);
  1024. return ret;
  1025. }
  1026. wl->mac80211_registered = true;
  1027. wl1251_notice("loaded");
  1028. return 0;
  1029. }
  1030. int wl1251_init_ieee80211(struct wl1251 *wl)
  1031. {
  1032. int ret;
  1033. /* The tx descriptor buffer and the TKIP space */
  1034. wl->hw->extra_tx_headroom = sizeof(struct tx_double_buffer_desc)
  1035. + WL1251_TKIP_IV_SPACE;
  1036. /* unit us */
  1037. /* FIXME: find a proper value */
  1038. wl->hw->channel_change_time = 10000;
  1039. wl->hw->flags = IEEE80211_HW_SIGNAL_DBM |
  1040. IEEE80211_HW_SUPPORTS_PS |
  1041. IEEE80211_HW_BEACON_FILTER |
  1042. IEEE80211_HW_SUPPORTS_UAPSD;
  1043. wl->hw->wiphy->interface_modes = BIT(NL80211_IFTYPE_STATION);
  1044. wl->hw->wiphy->max_scan_ssids = 1;
  1045. wl->hw->wiphy->bands[IEEE80211_BAND_2GHZ] = &wl1251_band_2ghz;
  1046. wl->hw->queues = 4;
  1047. if (wl->use_eeprom)
  1048. wl1251_read_eeprom_mac(wl);
  1049. ret = wl1251_register_hw(wl);
  1050. if (ret)
  1051. goto out;
  1052. wl1251_debugfs_init(wl);
  1053. wl1251_notice("initialized");
  1054. ret = 0;
  1055. out:
  1056. return ret;
  1057. }
  1058. EXPORT_SYMBOL_GPL(wl1251_init_ieee80211);
  1059. struct ieee80211_hw *wl1251_alloc_hw(void)
  1060. {
  1061. struct ieee80211_hw *hw;
  1062. struct wl1251 *wl;
  1063. int i;
  1064. static const u8 nokia_oui[3] = {0x00, 0x1f, 0xdf};
  1065. hw = ieee80211_alloc_hw(sizeof(*wl), &wl1251_ops);
  1066. if (!hw) {
  1067. wl1251_error("could not alloc ieee80211_hw");
  1068. return ERR_PTR(-ENOMEM);
  1069. }
  1070. wl = hw->priv;
  1071. memset(wl, 0, sizeof(*wl));
  1072. wl->hw = hw;
  1073. wl->data_in_count = 0;
  1074. skb_queue_head_init(&wl->tx_queue);
  1075. INIT_WORK(&wl->filter_work, wl1251_filter_work);
  1076. INIT_DELAYED_WORK(&wl->elp_work, wl1251_elp_work);
  1077. wl->channel = WL1251_DEFAULT_CHANNEL;
  1078. wl->scanning = false;
  1079. wl->default_key = 0;
  1080. wl->listen_int = 1;
  1081. wl->rx_counter = 0;
  1082. wl->rx_handled = 0;
  1083. wl->rx_current_buffer = 0;
  1084. wl->rx_last_id = 0;
  1085. wl->rx_config = WL1251_DEFAULT_RX_CONFIG;
  1086. wl->rx_filter = WL1251_DEFAULT_RX_FILTER;
  1087. wl->elp = false;
  1088. wl->psm = 0;
  1089. wl->psm_requested = false;
  1090. wl->tx_queue_stopped = false;
  1091. wl->power_level = WL1251_DEFAULT_POWER_LEVEL;
  1092. wl->beacon_int = WL1251_DEFAULT_BEACON_INT;
  1093. wl->dtim_period = WL1251_DEFAULT_DTIM_PERIOD;
  1094. wl->vif = NULL;
  1095. for (i = 0; i < FW_TX_CMPLT_BLOCK_SIZE; i++)
  1096. wl->tx_frames[i] = NULL;
  1097. wl->next_tx_complete = 0;
  1098. INIT_WORK(&wl->irq_work, wl1251_irq_work);
  1099. INIT_WORK(&wl->tx_work, wl1251_tx_work);
  1100. /*
  1101. * In case our MAC address is not correctly set,
  1102. * we use a random but Nokia MAC.
  1103. */
  1104. memcpy(wl->mac_addr, nokia_oui, 3);
  1105. get_random_bytes(wl->mac_addr + 3, 3);
  1106. wl->state = WL1251_STATE_OFF;
  1107. mutex_init(&wl->mutex);
  1108. wl->tx_mgmt_frm_rate = DEFAULT_HW_GEN_TX_RATE;
  1109. wl->tx_mgmt_frm_mod = DEFAULT_HW_GEN_MODULATION_TYPE;
  1110. wl->rx_descriptor = kmalloc(sizeof(*wl->rx_descriptor), GFP_KERNEL);
  1111. if (!wl->rx_descriptor) {
  1112. wl1251_error("could not allocate memory for rx descriptor");
  1113. ieee80211_free_hw(hw);
  1114. return ERR_PTR(-ENOMEM);
  1115. }
  1116. return hw;
  1117. }
  1118. EXPORT_SYMBOL_GPL(wl1251_alloc_hw);
  1119. int wl1251_free_hw(struct wl1251 *wl)
  1120. {
  1121. ieee80211_unregister_hw(wl->hw);
  1122. wl1251_debugfs_exit(wl);
  1123. kfree(wl->target_mem_map);
  1124. kfree(wl->data_path);
  1125. vfree(wl->fw);
  1126. wl->fw = NULL;
  1127. kfree(wl->nvs);
  1128. wl->nvs = NULL;
  1129. kfree(wl->rx_descriptor);
  1130. wl->rx_descriptor = NULL;
  1131. ieee80211_free_hw(wl->hw);
  1132. return 0;
  1133. }
  1134. EXPORT_SYMBOL_GPL(wl1251_free_hw);
  1135. MODULE_DESCRIPTION("TI wl1251 Wireles LAN Driver Core");
  1136. MODULE_LICENSE("GPL");
  1137. MODULE_AUTHOR("Kalle Valo <kvalo@adurom.com>");
  1138. MODULE_FIRMWARE(WL1251_FW_NAME);