rt2x00usb.c 18 KB

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  1. /*
  2. Copyright (C) 2004 - 2009 Ivo van Doorn <IvDoorn@gmail.com>
  3. <http://rt2x00.serialmonkey.com>
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the
  14. Free Software Foundation, Inc.,
  15. 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  16. */
  17. /*
  18. Module: rt2x00usb
  19. Abstract: rt2x00 generic usb device routines.
  20. */
  21. #include <linux/kernel.h>
  22. #include <linux/module.h>
  23. #include <linux/slab.h>
  24. #include <linux/usb.h>
  25. #include <linux/bug.h>
  26. #include "rt2x00.h"
  27. #include "rt2x00usb.h"
  28. /*
  29. * Interfacing with the HW.
  30. */
  31. int rt2x00usb_vendor_request(struct rt2x00_dev *rt2x00dev,
  32. const u8 request, const u8 requesttype,
  33. const u16 offset, const u16 value,
  34. void *buffer, const u16 buffer_length,
  35. const int timeout)
  36. {
  37. struct usb_device *usb_dev = to_usb_device_intf(rt2x00dev->dev);
  38. int status;
  39. unsigned int i;
  40. unsigned int pipe =
  41. (requesttype == USB_VENDOR_REQUEST_IN) ?
  42. usb_rcvctrlpipe(usb_dev, 0) : usb_sndctrlpipe(usb_dev, 0);
  43. if (!test_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags))
  44. return -ENODEV;
  45. for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
  46. status = usb_control_msg(usb_dev, pipe, request, requesttype,
  47. value, offset, buffer, buffer_length,
  48. timeout);
  49. if (status >= 0)
  50. return 0;
  51. /*
  52. * Check for errors
  53. * -ENODEV: Device has disappeared, no point continuing.
  54. * All other errors: Try again.
  55. */
  56. else if (status == -ENODEV) {
  57. clear_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags);
  58. break;
  59. }
  60. }
  61. ERROR(rt2x00dev,
  62. "Vendor Request 0x%02x failed for offset 0x%04x with error %d.\n",
  63. request, offset, status);
  64. return status;
  65. }
  66. EXPORT_SYMBOL_GPL(rt2x00usb_vendor_request);
  67. int rt2x00usb_vendor_req_buff_lock(struct rt2x00_dev *rt2x00dev,
  68. const u8 request, const u8 requesttype,
  69. const u16 offset, void *buffer,
  70. const u16 buffer_length, const int timeout)
  71. {
  72. int status;
  73. BUG_ON(!mutex_is_locked(&rt2x00dev->csr_mutex));
  74. /*
  75. * Check for Cache availability.
  76. */
  77. if (unlikely(!rt2x00dev->csr.cache || buffer_length > CSR_CACHE_SIZE)) {
  78. ERROR(rt2x00dev, "CSR cache not available.\n");
  79. return -ENOMEM;
  80. }
  81. if (requesttype == USB_VENDOR_REQUEST_OUT)
  82. memcpy(rt2x00dev->csr.cache, buffer, buffer_length);
  83. status = rt2x00usb_vendor_request(rt2x00dev, request, requesttype,
  84. offset, 0, rt2x00dev->csr.cache,
  85. buffer_length, timeout);
  86. if (!status && requesttype == USB_VENDOR_REQUEST_IN)
  87. memcpy(buffer, rt2x00dev->csr.cache, buffer_length);
  88. return status;
  89. }
  90. EXPORT_SYMBOL_GPL(rt2x00usb_vendor_req_buff_lock);
  91. int rt2x00usb_vendor_request_buff(struct rt2x00_dev *rt2x00dev,
  92. const u8 request, const u8 requesttype,
  93. const u16 offset, void *buffer,
  94. const u16 buffer_length, const int timeout)
  95. {
  96. int status = 0;
  97. unsigned char *tb;
  98. u16 off, len, bsize;
  99. mutex_lock(&rt2x00dev->csr_mutex);
  100. tb = (char *)buffer;
  101. off = offset;
  102. len = buffer_length;
  103. while (len && !status) {
  104. bsize = min_t(u16, CSR_CACHE_SIZE, len);
  105. status = rt2x00usb_vendor_req_buff_lock(rt2x00dev, request,
  106. requesttype, off, tb,
  107. bsize, timeout);
  108. tb += bsize;
  109. len -= bsize;
  110. off += bsize;
  111. }
  112. mutex_unlock(&rt2x00dev->csr_mutex);
  113. return status;
  114. }
  115. EXPORT_SYMBOL_GPL(rt2x00usb_vendor_request_buff);
  116. int rt2x00usb_regbusy_read(struct rt2x00_dev *rt2x00dev,
  117. const unsigned int offset,
  118. const struct rt2x00_field32 field,
  119. u32 *reg)
  120. {
  121. unsigned int i;
  122. if (!test_bit(DEVICE_STATE_PRESENT, &rt2x00dev->flags))
  123. return -ENODEV;
  124. for (i = 0; i < REGISTER_BUSY_COUNT; i++) {
  125. rt2x00usb_register_read_lock(rt2x00dev, offset, reg);
  126. if (!rt2x00_get_field32(*reg, field))
  127. return 1;
  128. udelay(REGISTER_BUSY_DELAY);
  129. }
  130. ERROR(rt2x00dev, "Indirect register access failed: "
  131. "offset=0x%.08x, value=0x%.08x\n", offset, *reg);
  132. *reg = ~0;
  133. return 0;
  134. }
  135. EXPORT_SYMBOL_GPL(rt2x00usb_regbusy_read);
  136. /*
  137. * TX data handlers.
  138. */
  139. static void rt2x00usb_interrupt_txdone(struct urb *urb)
  140. {
  141. struct queue_entry *entry = (struct queue_entry *)urb->context;
  142. struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
  143. struct skb_frame_desc *skbdesc = get_skb_frame_desc(entry->skb);
  144. struct txdone_entry_desc txdesc;
  145. if (!test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags) ||
  146. !test_bit(ENTRY_OWNER_DEVICE_DATA, &entry->flags))
  147. return;
  148. /*
  149. * Remove the descriptor from the front of the skb.
  150. */
  151. skb_pull(entry->skb, entry->queue->desc_size);
  152. /*
  153. * Signal that the TX descriptor is no longer in the skb.
  154. */
  155. skbdesc->flags &= ~SKBDESC_DESC_IN_SKB;
  156. /*
  157. * Obtain the status about this packet.
  158. * Note that when the status is 0 it does not mean the
  159. * frame was send out correctly. It only means the frame
  160. * was succesfully pushed to the hardware, we have no
  161. * way to determine the transmission status right now.
  162. * (Only indirectly by looking at the failed TX counters
  163. * in the register).
  164. */
  165. txdesc.flags = 0;
  166. if (!urb->status)
  167. __set_bit(TXDONE_UNKNOWN, &txdesc.flags);
  168. else
  169. __set_bit(TXDONE_FAILURE, &txdesc.flags);
  170. txdesc.retry = 0;
  171. rt2x00lib_txdone(entry, &txdesc);
  172. }
  173. int rt2x00usb_write_tx_data(struct queue_entry *entry,
  174. struct txentry_desc *txdesc)
  175. {
  176. struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
  177. /*
  178. * Add the descriptor in front of the skb.
  179. */
  180. skb_push(entry->skb, entry->queue->desc_size);
  181. memset(entry->skb->data, 0, entry->queue->desc_size);
  182. /*
  183. * Call the driver's write_tx_datadesc function, if it exists.
  184. */
  185. if (rt2x00dev->ops->lib->write_tx_datadesc)
  186. rt2x00dev->ops->lib->write_tx_datadesc(entry, txdesc);
  187. return 0;
  188. }
  189. EXPORT_SYMBOL_GPL(rt2x00usb_write_tx_data);
  190. static inline void rt2x00usb_kick_tx_entry(struct queue_entry *entry)
  191. {
  192. struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
  193. struct usb_device *usb_dev = to_usb_device_intf(rt2x00dev->dev);
  194. struct queue_entry_priv_usb *entry_priv = entry->priv_data;
  195. u32 length;
  196. if (test_and_clear_bit(ENTRY_DATA_PENDING, &entry->flags)) {
  197. /*
  198. * USB devices cannot blindly pass the skb->len as the
  199. * length of the data to usb_fill_bulk_urb. Pass the skb
  200. * to the driver to determine what the length should be.
  201. */
  202. length = rt2x00dev->ops->lib->get_tx_data_len(entry);
  203. usb_fill_bulk_urb(entry_priv->urb, usb_dev,
  204. usb_sndbulkpipe(usb_dev, entry->queue->usb_endpoint),
  205. entry->skb->data, length,
  206. rt2x00usb_interrupt_txdone, entry);
  207. usb_submit_urb(entry_priv->urb, GFP_ATOMIC);
  208. }
  209. }
  210. void rt2x00usb_kick_tx_queue(struct rt2x00_dev *rt2x00dev,
  211. const enum data_queue_qid qid)
  212. {
  213. struct data_queue *queue = rt2x00queue_get_queue(rt2x00dev, qid);
  214. unsigned long irqflags;
  215. unsigned int index;
  216. unsigned int index_done;
  217. unsigned int i;
  218. /*
  219. * Only protect the range we are going to loop over,
  220. * if during our loop a extra entry is set to pending
  221. * it should not be kicked during this run, since it
  222. * is part of another TX operation.
  223. */
  224. spin_lock_irqsave(&queue->lock, irqflags);
  225. index = queue->index[Q_INDEX];
  226. index_done = queue->index[Q_INDEX_DONE];
  227. spin_unlock_irqrestore(&queue->lock, irqflags);
  228. /*
  229. * Start from the TX done pointer, this guarentees that we will
  230. * send out all frames in the correct order.
  231. */
  232. if (index_done < index) {
  233. for (i = index_done; i < index; i++)
  234. rt2x00usb_kick_tx_entry(&queue->entries[i]);
  235. } else {
  236. for (i = index_done; i < queue->limit; i++)
  237. rt2x00usb_kick_tx_entry(&queue->entries[i]);
  238. for (i = 0; i < index; i++)
  239. rt2x00usb_kick_tx_entry(&queue->entries[i]);
  240. }
  241. }
  242. EXPORT_SYMBOL_GPL(rt2x00usb_kick_tx_queue);
  243. void rt2x00usb_kill_tx_queue(struct rt2x00_dev *rt2x00dev,
  244. const enum data_queue_qid qid)
  245. {
  246. struct data_queue *queue = rt2x00queue_get_queue(rt2x00dev, qid);
  247. struct queue_entry_priv_usb *entry_priv;
  248. struct queue_entry_priv_usb_bcn *bcn_priv;
  249. unsigned int i;
  250. bool kill_guard;
  251. /*
  252. * When killing the beacon queue, we must also kill
  253. * the beacon guard byte.
  254. */
  255. kill_guard =
  256. (qid == QID_BEACON) &&
  257. (test_bit(DRIVER_REQUIRE_BEACON_GUARD, &rt2x00dev->flags));
  258. /*
  259. * Cancel all entries.
  260. */
  261. for (i = 0; i < queue->limit; i++) {
  262. entry_priv = queue->entries[i].priv_data;
  263. usb_kill_urb(entry_priv->urb);
  264. /*
  265. * Kill guardian urb (if required by driver).
  266. */
  267. if (kill_guard) {
  268. bcn_priv = queue->entries[i].priv_data;
  269. usb_kill_urb(bcn_priv->guardian_urb);
  270. }
  271. }
  272. }
  273. EXPORT_SYMBOL_GPL(rt2x00usb_kill_tx_queue);
  274. /*
  275. * RX data handlers.
  276. */
  277. static void rt2x00usb_interrupt_rxdone(struct urb *urb)
  278. {
  279. struct queue_entry *entry = (struct queue_entry *)urb->context;
  280. struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
  281. struct skb_frame_desc *skbdesc = get_skb_frame_desc(entry->skb);
  282. u8 rxd[32];
  283. if (!test_bit(DEVICE_STATE_ENABLED_RADIO, &rt2x00dev->flags) ||
  284. !test_bit(ENTRY_OWNER_DEVICE_DATA, &entry->flags))
  285. return;
  286. /*
  287. * Check if the received data is simply too small
  288. * to be actually valid, or if the urb is signaling
  289. * a problem.
  290. */
  291. if (urb->actual_length < entry->queue->desc_size || urb->status) {
  292. set_bit(ENTRY_OWNER_DEVICE_DATA, &entry->flags);
  293. usb_submit_urb(urb, GFP_ATOMIC);
  294. return;
  295. }
  296. /*
  297. * Fill in desc fields of the skb descriptor
  298. */
  299. skbdesc->desc = rxd;
  300. skbdesc->desc_len = entry->queue->desc_size;
  301. /*
  302. * Send the frame to rt2x00lib for further processing.
  303. */
  304. rt2x00lib_rxdone(rt2x00dev, entry);
  305. }
  306. /*
  307. * Radio handlers
  308. */
  309. void rt2x00usb_disable_radio(struct rt2x00_dev *rt2x00dev)
  310. {
  311. rt2x00usb_vendor_request_sw(rt2x00dev, USB_RX_CONTROL, 0, 0,
  312. REGISTER_TIMEOUT);
  313. /*
  314. * The USB version of kill_tx_queue also works
  315. * on the RX queue.
  316. */
  317. rt2x00dev->ops->lib->kill_tx_queue(rt2x00dev, QID_RX);
  318. }
  319. EXPORT_SYMBOL_GPL(rt2x00usb_disable_radio);
  320. /*
  321. * Device initialization handlers.
  322. */
  323. void rt2x00usb_clear_entry(struct queue_entry *entry)
  324. {
  325. struct usb_device *usb_dev =
  326. to_usb_device_intf(entry->queue->rt2x00dev->dev);
  327. struct queue_entry_priv_usb *entry_priv = entry->priv_data;
  328. int pipe;
  329. if (entry->queue->qid == QID_RX) {
  330. pipe = usb_rcvbulkpipe(usb_dev, entry->queue->usb_endpoint);
  331. usb_fill_bulk_urb(entry_priv->urb, usb_dev, pipe,
  332. entry->skb->data, entry->skb->len,
  333. rt2x00usb_interrupt_rxdone, entry);
  334. set_bit(ENTRY_OWNER_DEVICE_DATA, &entry->flags);
  335. usb_submit_urb(entry_priv->urb, GFP_ATOMIC);
  336. } else {
  337. entry->flags = 0;
  338. }
  339. }
  340. EXPORT_SYMBOL_GPL(rt2x00usb_clear_entry);
  341. static void rt2x00usb_assign_endpoint(struct data_queue *queue,
  342. struct usb_endpoint_descriptor *ep_desc)
  343. {
  344. struct usb_device *usb_dev = to_usb_device_intf(queue->rt2x00dev->dev);
  345. int pipe;
  346. queue->usb_endpoint = usb_endpoint_num(ep_desc);
  347. if (queue->qid == QID_RX) {
  348. pipe = usb_rcvbulkpipe(usb_dev, queue->usb_endpoint);
  349. queue->usb_maxpacket = usb_maxpacket(usb_dev, pipe, 0);
  350. } else {
  351. pipe = usb_sndbulkpipe(usb_dev, queue->usb_endpoint);
  352. queue->usb_maxpacket = usb_maxpacket(usb_dev, pipe, 1);
  353. }
  354. if (!queue->usb_maxpacket)
  355. queue->usb_maxpacket = 1;
  356. }
  357. static int rt2x00usb_find_endpoints(struct rt2x00_dev *rt2x00dev)
  358. {
  359. struct usb_interface *intf = to_usb_interface(rt2x00dev->dev);
  360. struct usb_host_interface *intf_desc = intf->cur_altsetting;
  361. struct usb_endpoint_descriptor *ep_desc;
  362. struct data_queue *queue = rt2x00dev->tx;
  363. struct usb_endpoint_descriptor *tx_ep_desc = NULL;
  364. unsigned int i;
  365. /*
  366. * Walk through all available endpoints to search for "bulk in"
  367. * and "bulk out" endpoints. When we find such endpoints collect
  368. * the information we need from the descriptor and assign it
  369. * to the queue.
  370. */
  371. for (i = 0; i < intf_desc->desc.bNumEndpoints; i++) {
  372. ep_desc = &intf_desc->endpoint[i].desc;
  373. if (usb_endpoint_is_bulk_in(ep_desc)) {
  374. rt2x00usb_assign_endpoint(rt2x00dev->rx, ep_desc);
  375. } else if (usb_endpoint_is_bulk_out(ep_desc) &&
  376. (queue != queue_end(rt2x00dev))) {
  377. rt2x00usb_assign_endpoint(queue, ep_desc);
  378. queue = queue_next(queue);
  379. tx_ep_desc = ep_desc;
  380. }
  381. }
  382. /*
  383. * At least 1 endpoint for RX and 1 endpoint for TX must be available.
  384. */
  385. if (!rt2x00dev->rx->usb_endpoint || !rt2x00dev->tx->usb_endpoint) {
  386. ERROR(rt2x00dev, "Bulk-in/Bulk-out endpoints not found\n");
  387. return -EPIPE;
  388. }
  389. /*
  390. * It might be possible not all queues have a dedicated endpoint.
  391. * Loop through all TX queues and copy the endpoint information
  392. * which we have gathered from already assigned endpoints.
  393. */
  394. txall_queue_for_each(rt2x00dev, queue) {
  395. if (!queue->usb_endpoint)
  396. rt2x00usb_assign_endpoint(queue, tx_ep_desc);
  397. }
  398. return 0;
  399. }
  400. static int rt2x00usb_alloc_urb(struct rt2x00_dev *rt2x00dev,
  401. struct data_queue *queue)
  402. {
  403. struct queue_entry_priv_usb *entry_priv;
  404. struct queue_entry_priv_usb_bcn *bcn_priv;
  405. unsigned int i;
  406. for (i = 0; i < queue->limit; i++) {
  407. entry_priv = queue->entries[i].priv_data;
  408. entry_priv->urb = usb_alloc_urb(0, GFP_KERNEL);
  409. if (!entry_priv->urb)
  410. return -ENOMEM;
  411. }
  412. /*
  413. * If this is not the beacon queue or
  414. * no guardian byte was required for the beacon,
  415. * then we are done.
  416. */
  417. if (rt2x00dev->bcn != queue ||
  418. !test_bit(DRIVER_REQUIRE_BEACON_GUARD, &rt2x00dev->flags))
  419. return 0;
  420. for (i = 0; i < queue->limit; i++) {
  421. bcn_priv = queue->entries[i].priv_data;
  422. bcn_priv->guardian_urb = usb_alloc_urb(0, GFP_KERNEL);
  423. if (!bcn_priv->guardian_urb)
  424. return -ENOMEM;
  425. }
  426. return 0;
  427. }
  428. static void rt2x00usb_free_urb(struct rt2x00_dev *rt2x00dev,
  429. struct data_queue *queue)
  430. {
  431. struct queue_entry_priv_usb *entry_priv;
  432. struct queue_entry_priv_usb_bcn *bcn_priv;
  433. unsigned int i;
  434. if (!queue->entries)
  435. return;
  436. for (i = 0; i < queue->limit; i++) {
  437. entry_priv = queue->entries[i].priv_data;
  438. usb_kill_urb(entry_priv->urb);
  439. usb_free_urb(entry_priv->urb);
  440. }
  441. /*
  442. * If this is not the beacon queue or
  443. * no guardian byte was required for the beacon,
  444. * then we are done.
  445. */
  446. if (rt2x00dev->bcn != queue ||
  447. !test_bit(DRIVER_REQUIRE_BEACON_GUARD, &rt2x00dev->flags))
  448. return;
  449. for (i = 0; i < queue->limit; i++) {
  450. bcn_priv = queue->entries[i].priv_data;
  451. usb_kill_urb(bcn_priv->guardian_urb);
  452. usb_free_urb(bcn_priv->guardian_urb);
  453. }
  454. }
  455. int rt2x00usb_initialize(struct rt2x00_dev *rt2x00dev)
  456. {
  457. struct data_queue *queue;
  458. int status;
  459. /*
  460. * Find endpoints for each queue
  461. */
  462. status = rt2x00usb_find_endpoints(rt2x00dev);
  463. if (status)
  464. goto exit;
  465. /*
  466. * Allocate DMA
  467. */
  468. queue_for_each(rt2x00dev, queue) {
  469. status = rt2x00usb_alloc_urb(rt2x00dev, queue);
  470. if (status)
  471. goto exit;
  472. }
  473. return 0;
  474. exit:
  475. rt2x00usb_uninitialize(rt2x00dev);
  476. return status;
  477. }
  478. EXPORT_SYMBOL_GPL(rt2x00usb_initialize);
  479. void rt2x00usb_uninitialize(struct rt2x00_dev *rt2x00dev)
  480. {
  481. struct data_queue *queue;
  482. queue_for_each(rt2x00dev, queue)
  483. rt2x00usb_free_urb(rt2x00dev, queue);
  484. }
  485. EXPORT_SYMBOL_GPL(rt2x00usb_uninitialize);
  486. /*
  487. * USB driver handlers.
  488. */
  489. static void rt2x00usb_free_reg(struct rt2x00_dev *rt2x00dev)
  490. {
  491. kfree(rt2x00dev->rf);
  492. rt2x00dev->rf = NULL;
  493. kfree(rt2x00dev->eeprom);
  494. rt2x00dev->eeprom = NULL;
  495. kfree(rt2x00dev->csr.cache);
  496. rt2x00dev->csr.cache = NULL;
  497. }
  498. static int rt2x00usb_alloc_reg(struct rt2x00_dev *rt2x00dev)
  499. {
  500. rt2x00dev->csr.cache = kzalloc(CSR_CACHE_SIZE, GFP_KERNEL);
  501. if (!rt2x00dev->csr.cache)
  502. goto exit;
  503. rt2x00dev->eeprom = kzalloc(rt2x00dev->ops->eeprom_size, GFP_KERNEL);
  504. if (!rt2x00dev->eeprom)
  505. goto exit;
  506. rt2x00dev->rf = kzalloc(rt2x00dev->ops->rf_size, GFP_KERNEL);
  507. if (!rt2x00dev->rf)
  508. goto exit;
  509. return 0;
  510. exit:
  511. ERROR_PROBE("Failed to allocate registers.\n");
  512. rt2x00usb_free_reg(rt2x00dev);
  513. return -ENOMEM;
  514. }
  515. int rt2x00usb_probe(struct usb_interface *usb_intf,
  516. const struct usb_device_id *id)
  517. {
  518. struct usb_device *usb_dev = interface_to_usbdev(usb_intf);
  519. struct rt2x00_ops *ops = (struct rt2x00_ops *)id->driver_info;
  520. struct ieee80211_hw *hw;
  521. struct rt2x00_dev *rt2x00dev;
  522. int retval;
  523. usb_dev = usb_get_dev(usb_dev);
  524. hw = ieee80211_alloc_hw(sizeof(struct rt2x00_dev), ops->hw);
  525. if (!hw) {
  526. ERROR_PROBE("Failed to allocate hardware.\n");
  527. retval = -ENOMEM;
  528. goto exit_put_device;
  529. }
  530. usb_set_intfdata(usb_intf, hw);
  531. rt2x00dev = hw->priv;
  532. rt2x00dev->dev = &usb_intf->dev;
  533. rt2x00dev->ops = ops;
  534. rt2x00dev->hw = hw;
  535. rt2x00_set_chip_intf(rt2x00dev, RT2X00_CHIP_INTF_USB);
  536. retval = rt2x00usb_alloc_reg(rt2x00dev);
  537. if (retval)
  538. goto exit_free_device;
  539. retval = rt2x00lib_probe_dev(rt2x00dev);
  540. if (retval)
  541. goto exit_free_reg;
  542. return 0;
  543. exit_free_reg:
  544. rt2x00usb_free_reg(rt2x00dev);
  545. exit_free_device:
  546. ieee80211_free_hw(hw);
  547. exit_put_device:
  548. usb_put_dev(usb_dev);
  549. usb_set_intfdata(usb_intf, NULL);
  550. return retval;
  551. }
  552. EXPORT_SYMBOL_GPL(rt2x00usb_probe);
  553. void rt2x00usb_disconnect(struct usb_interface *usb_intf)
  554. {
  555. struct ieee80211_hw *hw = usb_get_intfdata(usb_intf);
  556. struct rt2x00_dev *rt2x00dev = hw->priv;
  557. /*
  558. * Free all allocated data.
  559. */
  560. rt2x00lib_remove_dev(rt2x00dev);
  561. rt2x00usb_free_reg(rt2x00dev);
  562. ieee80211_free_hw(hw);
  563. /*
  564. * Free the USB device data.
  565. */
  566. usb_set_intfdata(usb_intf, NULL);
  567. usb_put_dev(interface_to_usbdev(usb_intf));
  568. }
  569. EXPORT_SYMBOL_GPL(rt2x00usb_disconnect);
  570. #ifdef CONFIG_PM
  571. int rt2x00usb_suspend(struct usb_interface *usb_intf, pm_message_t state)
  572. {
  573. struct ieee80211_hw *hw = usb_get_intfdata(usb_intf);
  574. struct rt2x00_dev *rt2x00dev = hw->priv;
  575. int retval;
  576. retval = rt2x00lib_suspend(rt2x00dev, state);
  577. if (retval)
  578. return retval;
  579. /*
  580. * Decrease usbdev refcount.
  581. */
  582. usb_put_dev(interface_to_usbdev(usb_intf));
  583. return 0;
  584. }
  585. EXPORT_SYMBOL_GPL(rt2x00usb_suspend);
  586. int rt2x00usb_resume(struct usb_interface *usb_intf)
  587. {
  588. struct ieee80211_hw *hw = usb_get_intfdata(usb_intf);
  589. struct rt2x00_dev *rt2x00dev = hw->priv;
  590. usb_get_dev(interface_to_usbdev(usb_intf));
  591. return rt2x00lib_resume(rt2x00dev);
  592. }
  593. EXPORT_SYMBOL_GPL(rt2x00usb_resume);
  594. #endif /* CONFIG_PM */
  595. /*
  596. * rt2x00usb module information.
  597. */
  598. MODULE_AUTHOR(DRV_PROJECT);
  599. MODULE_VERSION(DRV_VERSION);
  600. MODULE_DESCRIPTION("rt2x00 usb library");
  601. MODULE_LICENSE("GPL");