btusb.c 47 KB

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  1. /*
  2. *
  3. * Generic Bluetooth USB driver
  4. *
  5. * Copyright (C) 2005-2008 Marcel Holtmann <marcel@holtmann.org>
  6. *
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  21. *
  22. */
  23. #include <linux/module.h>
  24. #include <linux/usb.h>
  25. #include <linux/firmware.h>
  26. #include <net/bluetooth/bluetooth.h>
  27. #include <net/bluetooth/hci_core.h>
  28. #define VERSION "0.6"
  29. static bool ignore_dga;
  30. static bool ignore_csr;
  31. static bool ignore_sniffer;
  32. static bool disable_scofix;
  33. static bool force_scofix;
  34. static bool reset = 1;
  35. static struct usb_driver btusb_driver;
  36. #define BTUSB_IGNORE 0x01
  37. #define BTUSB_DIGIANSWER 0x02
  38. #define BTUSB_CSR 0x04
  39. #define BTUSB_SNIFFER 0x08
  40. #define BTUSB_BCM92035 0x10
  41. #define BTUSB_BROKEN_ISOC 0x20
  42. #define BTUSB_WRONG_SCO_MTU 0x40
  43. #define BTUSB_ATH3012 0x80
  44. #define BTUSB_INTEL 0x100
  45. #define BTUSB_BCM_PATCHRAM 0x200
  46. static const struct usb_device_id btusb_table[] = {
  47. /* Generic Bluetooth USB device */
  48. { USB_DEVICE_INFO(0xe0, 0x01, 0x01) },
  49. /* Apple-specific (Broadcom) devices */
  50. { USB_VENDOR_AND_INTERFACE_INFO(0x05ac, 0xff, 0x01, 0x01) },
  51. /* MediaTek MT76x0E */
  52. { USB_DEVICE(0x0e8d, 0x763f) },
  53. /* Broadcom SoftSailing reporting vendor specific */
  54. { USB_DEVICE(0x0a5c, 0x21e1) },
  55. /* Apple MacBookPro 7,1 */
  56. { USB_DEVICE(0x05ac, 0x8213) },
  57. /* Apple iMac11,1 */
  58. { USB_DEVICE(0x05ac, 0x8215) },
  59. /* Apple MacBookPro6,2 */
  60. { USB_DEVICE(0x05ac, 0x8218) },
  61. /* Apple MacBookAir3,1, MacBookAir3,2 */
  62. { USB_DEVICE(0x05ac, 0x821b) },
  63. /* Apple MacBookAir4,1 */
  64. { USB_DEVICE(0x05ac, 0x821f) },
  65. /* Apple MacBookPro8,2 */
  66. { USB_DEVICE(0x05ac, 0x821a) },
  67. /* Apple MacMini5,1 */
  68. { USB_DEVICE(0x05ac, 0x8281) },
  69. /* AVM BlueFRITZ! USB v2.0 */
  70. { USB_DEVICE(0x057c, 0x3800) },
  71. /* Bluetooth Ultraport Module from IBM */
  72. { USB_DEVICE(0x04bf, 0x030a) },
  73. /* ALPS Modules with non-standard id */
  74. { USB_DEVICE(0x044e, 0x3001) },
  75. { USB_DEVICE(0x044e, 0x3002) },
  76. /* Ericsson with non-standard id */
  77. { USB_DEVICE(0x0bdb, 0x1002) },
  78. /* Canyon CN-BTU1 with HID interfaces */
  79. { USB_DEVICE(0x0c10, 0x0000) },
  80. /* Broadcom BCM20702A0 */
  81. { USB_DEVICE(0x0489, 0xe042) },
  82. { USB_DEVICE(0x04ca, 0x2003) },
  83. { USB_DEVICE(0x0b05, 0x17b5) },
  84. { USB_DEVICE(0x0b05, 0x17cb) },
  85. { USB_DEVICE(0x413c, 0x8197) },
  86. /* Foxconn - Hon Hai */
  87. { USB_VENDOR_AND_INTERFACE_INFO(0x0489, 0xff, 0x01, 0x01) },
  88. /* Broadcom devices with vendor specific id */
  89. { USB_VENDOR_AND_INTERFACE_INFO(0x0a5c, 0xff, 0x01, 0x01),
  90. .driver_info = BTUSB_BCM_PATCHRAM },
  91. /* Belkin F8065bf - Broadcom based */
  92. { USB_VENDOR_AND_INTERFACE_INFO(0x050d, 0xff, 0x01, 0x01) },
  93. /* IMC Networks - Broadcom based */
  94. { USB_VENDOR_AND_INTERFACE_INFO(0x13d3, 0xff, 0x01, 0x01) },
  95. { } /* Terminating entry */
  96. };
  97. MODULE_DEVICE_TABLE(usb, btusb_table);
  98. static const struct usb_device_id blacklist_table[] = {
  99. /* CSR BlueCore devices */
  100. { USB_DEVICE(0x0a12, 0x0001), .driver_info = BTUSB_CSR },
  101. /* Broadcom BCM2033 without firmware */
  102. { USB_DEVICE(0x0a5c, 0x2033), .driver_info = BTUSB_IGNORE },
  103. /* Atheros 3011 with sflash firmware */
  104. { USB_DEVICE(0x0489, 0xe027), .driver_info = BTUSB_IGNORE },
  105. { USB_DEVICE(0x0489, 0xe03d), .driver_info = BTUSB_IGNORE },
  106. { USB_DEVICE(0x0930, 0x0215), .driver_info = BTUSB_IGNORE },
  107. { USB_DEVICE(0x0cf3, 0x3002), .driver_info = BTUSB_IGNORE },
  108. { USB_DEVICE(0x0cf3, 0xe019), .driver_info = BTUSB_IGNORE },
  109. { USB_DEVICE(0x13d3, 0x3304), .driver_info = BTUSB_IGNORE },
  110. /* Atheros AR9285 Malbec with sflash firmware */
  111. { USB_DEVICE(0x03f0, 0x311d), .driver_info = BTUSB_IGNORE },
  112. /* Atheros 3012 with sflash firmware */
  113. { USB_DEVICE(0x0489, 0xe04d), .driver_info = BTUSB_ATH3012 },
  114. { USB_DEVICE(0x0489, 0xe04e), .driver_info = BTUSB_ATH3012 },
  115. { USB_DEVICE(0x0489, 0xe056), .driver_info = BTUSB_ATH3012 },
  116. { USB_DEVICE(0x0489, 0xe057), .driver_info = BTUSB_ATH3012 },
  117. { USB_DEVICE(0x0489, 0xe05f), .driver_info = BTUSB_ATH3012 },
  118. { USB_DEVICE(0x04c5, 0x1330), .driver_info = BTUSB_ATH3012 },
  119. { USB_DEVICE(0x04ca, 0x3004), .driver_info = BTUSB_ATH3012 },
  120. { USB_DEVICE(0x04ca, 0x3005), .driver_info = BTUSB_ATH3012 },
  121. { USB_DEVICE(0x04ca, 0x3006), .driver_info = BTUSB_ATH3012 },
  122. { USB_DEVICE(0x04ca, 0x3007), .driver_info = BTUSB_ATH3012 },
  123. { USB_DEVICE(0x04ca, 0x3008), .driver_info = BTUSB_ATH3012 },
  124. { USB_DEVICE(0x04ca, 0x300b), .driver_info = BTUSB_ATH3012 },
  125. { USB_DEVICE(0x0930, 0x0219), .driver_info = BTUSB_ATH3012 },
  126. { USB_DEVICE(0x0930, 0x0220), .driver_info = BTUSB_ATH3012 },
  127. { USB_DEVICE(0x0b05, 0x17d0), .driver_info = BTUSB_ATH3012 },
  128. { USB_DEVICE(0x0cf3, 0x0036), .driver_info = BTUSB_ATH3012 },
  129. { USB_DEVICE(0x0cf3, 0x3004), .driver_info = BTUSB_ATH3012 },
  130. { USB_DEVICE(0x0cf3, 0x3008), .driver_info = BTUSB_ATH3012 },
  131. { USB_DEVICE(0x0cf3, 0x311d), .driver_info = BTUSB_ATH3012 },
  132. { USB_DEVICE(0x0cf3, 0x311e), .driver_info = BTUSB_ATH3012 },
  133. { USB_DEVICE(0x0cf3, 0x311f), .driver_info = BTUSB_ATH3012 },
  134. { USB_DEVICE(0x0cf3, 0x3121), .driver_info = BTUSB_ATH3012 },
  135. { USB_DEVICE(0x0cf3, 0x817a), .driver_info = BTUSB_ATH3012 },
  136. { USB_DEVICE(0x0cf3, 0xe003), .driver_info = BTUSB_ATH3012 },
  137. { USB_DEVICE(0x0cf3, 0xe004), .driver_info = BTUSB_ATH3012 },
  138. { USB_DEVICE(0x0cf3, 0xe005), .driver_info = BTUSB_ATH3012 },
  139. { USB_DEVICE(0x13d3, 0x3362), .driver_info = BTUSB_ATH3012 },
  140. { USB_DEVICE(0x13d3, 0x3375), .driver_info = BTUSB_ATH3012 },
  141. { USB_DEVICE(0x13d3, 0x3393), .driver_info = BTUSB_ATH3012 },
  142. { USB_DEVICE(0x13d3, 0x3402), .driver_info = BTUSB_ATH3012 },
  143. /* Atheros AR5BBU12 with sflash firmware */
  144. { USB_DEVICE(0x0489, 0xe02c), .driver_info = BTUSB_IGNORE },
  145. /* Atheros AR5BBU12 with sflash firmware */
  146. { USB_DEVICE(0x0489, 0xe036), .driver_info = BTUSB_ATH3012 },
  147. { USB_DEVICE(0x0489, 0xe03c), .driver_info = BTUSB_ATH3012 },
  148. /* Broadcom BCM2035 */
  149. { USB_DEVICE(0x0a5c, 0x2009), .driver_info = BTUSB_BCM92035 },
  150. { USB_DEVICE(0x0a5c, 0x200a), .driver_info = BTUSB_WRONG_SCO_MTU },
  151. { USB_DEVICE(0x0a5c, 0x2035), .driver_info = BTUSB_WRONG_SCO_MTU },
  152. /* Broadcom BCM2045 */
  153. { USB_DEVICE(0x0a5c, 0x2039), .driver_info = BTUSB_WRONG_SCO_MTU },
  154. { USB_DEVICE(0x0a5c, 0x2101), .driver_info = BTUSB_WRONG_SCO_MTU },
  155. /* IBM/Lenovo ThinkPad with Broadcom chip */
  156. { USB_DEVICE(0x0a5c, 0x201e), .driver_info = BTUSB_WRONG_SCO_MTU },
  157. { USB_DEVICE(0x0a5c, 0x2110), .driver_info = BTUSB_WRONG_SCO_MTU },
  158. /* HP laptop with Broadcom chip */
  159. { USB_DEVICE(0x03f0, 0x171d), .driver_info = BTUSB_WRONG_SCO_MTU },
  160. /* Dell laptop with Broadcom chip */
  161. { USB_DEVICE(0x413c, 0x8126), .driver_info = BTUSB_WRONG_SCO_MTU },
  162. /* Dell Wireless 370 and 410 devices */
  163. { USB_DEVICE(0x413c, 0x8152), .driver_info = BTUSB_WRONG_SCO_MTU },
  164. { USB_DEVICE(0x413c, 0x8156), .driver_info = BTUSB_WRONG_SCO_MTU },
  165. /* Belkin F8T012 and F8T013 devices */
  166. { USB_DEVICE(0x050d, 0x0012), .driver_info = BTUSB_WRONG_SCO_MTU },
  167. { USB_DEVICE(0x050d, 0x0013), .driver_info = BTUSB_WRONG_SCO_MTU },
  168. /* Asus WL-BTD202 device */
  169. { USB_DEVICE(0x0b05, 0x1715), .driver_info = BTUSB_WRONG_SCO_MTU },
  170. /* Kensington Bluetooth USB adapter */
  171. { USB_DEVICE(0x047d, 0x105e), .driver_info = BTUSB_WRONG_SCO_MTU },
  172. /* RTX Telecom based adapters with buggy SCO support */
  173. { USB_DEVICE(0x0400, 0x0807), .driver_info = BTUSB_BROKEN_ISOC },
  174. { USB_DEVICE(0x0400, 0x080a), .driver_info = BTUSB_BROKEN_ISOC },
  175. /* CONWISE Technology based adapters with buggy SCO support */
  176. { USB_DEVICE(0x0e5e, 0x6622), .driver_info = BTUSB_BROKEN_ISOC },
  177. /* Digianswer devices */
  178. { USB_DEVICE(0x08fd, 0x0001), .driver_info = BTUSB_DIGIANSWER },
  179. { USB_DEVICE(0x08fd, 0x0002), .driver_info = BTUSB_IGNORE },
  180. /* CSR BlueCore Bluetooth Sniffer */
  181. { USB_DEVICE(0x0a12, 0x0002), .driver_info = BTUSB_SNIFFER },
  182. /* Frontline ComProbe Bluetooth Sniffer */
  183. { USB_DEVICE(0x16d3, 0x0002), .driver_info = BTUSB_SNIFFER },
  184. /* Intel Bluetooth device */
  185. { USB_DEVICE(0x8087, 0x07dc), .driver_info = BTUSB_INTEL },
  186. { USB_DEVICE(0x8087, 0x0a2a), .driver_info = BTUSB_INTEL },
  187. { } /* Terminating entry */
  188. };
  189. #define BTUSB_MAX_ISOC_FRAMES 10
  190. #define BTUSB_INTR_RUNNING 0
  191. #define BTUSB_BULK_RUNNING 1
  192. #define BTUSB_ISOC_RUNNING 2
  193. #define BTUSB_SUSPENDING 3
  194. #define BTUSB_DID_ISO_RESUME 4
  195. struct btusb_data {
  196. struct hci_dev *hdev;
  197. struct usb_device *udev;
  198. struct usb_interface *intf;
  199. struct usb_interface *isoc;
  200. spinlock_t lock;
  201. unsigned long flags;
  202. struct work_struct work;
  203. struct work_struct waker;
  204. struct usb_anchor tx_anchor;
  205. struct usb_anchor intr_anchor;
  206. struct usb_anchor bulk_anchor;
  207. struct usb_anchor isoc_anchor;
  208. struct usb_anchor deferred;
  209. int tx_in_flight;
  210. spinlock_t txlock;
  211. struct usb_endpoint_descriptor *intr_ep;
  212. struct usb_endpoint_descriptor *bulk_tx_ep;
  213. struct usb_endpoint_descriptor *bulk_rx_ep;
  214. struct usb_endpoint_descriptor *isoc_tx_ep;
  215. struct usb_endpoint_descriptor *isoc_rx_ep;
  216. __u8 cmdreq_type;
  217. unsigned int sco_num;
  218. int isoc_altsetting;
  219. int suspend_count;
  220. };
  221. static int inc_tx(struct btusb_data *data)
  222. {
  223. unsigned long flags;
  224. int rv;
  225. spin_lock_irqsave(&data->txlock, flags);
  226. rv = test_bit(BTUSB_SUSPENDING, &data->flags);
  227. if (!rv)
  228. data->tx_in_flight++;
  229. spin_unlock_irqrestore(&data->txlock, flags);
  230. return rv;
  231. }
  232. static void btusb_intr_complete(struct urb *urb)
  233. {
  234. struct hci_dev *hdev = urb->context;
  235. struct btusb_data *data = hci_get_drvdata(hdev);
  236. int err;
  237. BT_DBG("%s urb %p status %d count %d", hdev->name,
  238. urb, urb->status, urb->actual_length);
  239. if (!test_bit(HCI_RUNNING, &hdev->flags))
  240. return;
  241. if (urb->status == 0) {
  242. hdev->stat.byte_rx += urb->actual_length;
  243. if (hci_recv_fragment(hdev, HCI_EVENT_PKT,
  244. urb->transfer_buffer,
  245. urb->actual_length) < 0) {
  246. BT_ERR("%s corrupted event packet", hdev->name);
  247. hdev->stat.err_rx++;
  248. }
  249. }
  250. if (!test_bit(BTUSB_INTR_RUNNING, &data->flags))
  251. return;
  252. usb_mark_last_busy(data->udev);
  253. usb_anchor_urb(urb, &data->intr_anchor);
  254. err = usb_submit_urb(urb, GFP_ATOMIC);
  255. if (err < 0) {
  256. /* -EPERM: urb is being killed;
  257. * -ENODEV: device got disconnected */
  258. if (err != -EPERM && err != -ENODEV)
  259. BT_ERR("%s urb %p failed to resubmit (%d)",
  260. hdev->name, urb, -err);
  261. usb_unanchor_urb(urb);
  262. }
  263. }
  264. static int btusb_submit_intr_urb(struct hci_dev *hdev, gfp_t mem_flags)
  265. {
  266. struct btusb_data *data = hci_get_drvdata(hdev);
  267. struct urb *urb;
  268. unsigned char *buf;
  269. unsigned int pipe;
  270. int err, size;
  271. BT_DBG("%s", hdev->name);
  272. if (!data->intr_ep)
  273. return -ENODEV;
  274. urb = usb_alloc_urb(0, mem_flags);
  275. if (!urb)
  276. return -ENOMEM;
  277. size = le16_to_cpu(data->intr_ep->wMaxPacketSize);
  278. buf = kmalloc(size, mem_flags);
  279. if (!buf) {
  280. usb_free_urb(urb);
  281. return -ENOMEM;
  282. }
  283. pipe = usb_rcvintpipe(data->udev, data->intr_ep->bEndpointAddress);
  284. usb_fill_int_urb(urb, data->udev, pipe, buf, size,
  285. btusb_intr_complete, hdev,
  286. data->intr_ep->bInterval);
  287. urb->transfer_flags |= URB_FREE_BUFFER;
  288. usb_anchor_urb(urb, &data->intr_anchor);
  289. err = usb_submit_urb(urb, mem_flags);
  290. if (err < 0) {
  291. if (err != -EPERM && err != -ENODEV)
  292. BT_ERR("%s urb %p submission failed (%d)",
  293. hdev->name, urb, -err);
  294. usb_unanchor_urb(urb);
  295. }
  296. usb_free_urb(urb);
  297. return err;
  298. }
  299. static void btusb_bulk_complete(struct urb *urb)
  300. {
  301. struct hci_dev *hdev = urb->context;
  302. struct btusb_data *data = hci_get_drvdata(hdev);
  303. int err;
  304. BT_DBG("%s urb %p status %d count %d", hdev->name,
  305. urb, urb->status, urb->actual_length);
  306. if (!test_bit(HCI_RUNNING, &hdev->flags))
  307. return;
  308. if (urb->status == 0) {
  309. hdev->stat.byte_rx += urb->actual_length;
  310. if (hci_recv_fragment(hdev, HCI_ACLDATA_PKT,
  311. urb->transfer_buffer,
  312. urb->actual_length) < 0) {
  313. BT_ERR("%s corrupted ACL packet", hdev->name);
  314. hdev->stat.err_rx++;
  315. }
  316. }
  317. if (!test_bit(BTUSB_BULK_RUNNING, &data->flags))
  318. return;
  319. usb_anchor_urb(urb, &data->bulk_anchor);
  320. usb_mark_last_busy(data->udev);
  321. err = usb_submit_urb(urb, GFP_ATOMIC);
  322. if (err < 0) {
  323. /* -EPERM: urb is being killed;
  324. * -ENODEV: device got disconnected */
  325. if (err != -EPERM && err != -ENODEV)
  326. BT_ERR("%s urb %p failed to resubmit (%d)",
  327. hdev->name, urb, -err);
  328. usb_unanchor_urb(urb);
  329. }
  330. }
  331. static int btusb_submit_bulk_urb(struct hci_dev *hdev, gfp_t mem_flags)
  332. {
  333. struct btusb_data *data = hci_get_drvdata(hdev);
  334. struct urb *urb;
  335. unsigned char *buf;
  336. unsigned int pipe;
  337. int err, size = HCI_MAX_FRAME_SIZE;
  338. BT_DBG("%s", hdev->name);
  339. if (!data->bulk_rx_ep)
  340. return -ENODEV;
  341. urb = usb_alloc_urb(0, mem_flags);
  342. if (!urb)
  343. return -ENOMEM;
  344. buf = kmalloc(size, mem_flags);
  345. if (!buf) {
  346. usb_free_urb(urb);
  347. return -ENOMEM;
  348. }
  349. pipe = usb_rcvbulkpipe(data->udev, data->bulk_rx_ep->bEndpointAddress);
  350. usb_fill_bulk_urb(urb, data->udev, pipe,
  351. buf, size, btusb_bulk_complete, hdev);
  352. urb->transfer_flags |= URB_FREE_BUFFER;
  353. usb_mark_last_busy(data->udev);
  354. usb_anchor_urb(urb, &data->bulk_anchor);
  355. err = usb_submit_urb(urb, mem_flags);
  356. if (err < 0) {
  357. if (err != -EPERM && err != -ENODEV)
  358. BT_ERR("%s urb %p submission failed (%d)",
  359. hdev->name, urb, -err);
  360. usb_unanchor_urb(urb);
  361. }
  362. usb_free_urb(urb);
  363. return err;
  364. }
  365. static void btusb_isoc_complete(struct urb *urb)
  366. {
  367. struct hci_dev *hdev = urb->context;
  368. struct btusb_data *data = hci_get_drvdata(hdev);
  369. int i, err;
  370. BT_DBG("%s urb %p status %d count %d", hdev->name,
  371. urb, urb->status, urb->actual_length);
  372. if (!test_bit(HCI_RUNNING, &hdev->flags))
  373. return;
  374. if (urb->status == 0) {
  375. for (i = 0; i < urb->number_of_packets; i++) {
  376. unsigned int offset = urb->iso_frame_desc[i].offset;
  377. unsigned int length = urb->iso_frame_desc[i].actual_length;
  378. if (urb->iso_frame_desc[i].status)
  379. continue;
  380. hdev->stat.byte_rx += length;
  381. if (hci_recv_fragment(hdev, HCI_SCODATA_PKT,
  382. urb->transfer_buffer + offset,
  383. length) < 0) {
  384. BT_ERR("%s corrupted SCO packet", hdev->name);
  385. hdev->stat.err_rx++;
  386. }
  387. }
  388. }
  389. if (!test_bit(BTUSB_ISOC_RUNNING, &data->flags))
  390. return;
  391. usb_anchor_urb(urb, &data->isoc_anchor);
  392. err = usb_submit_urb(urb, GFP_ATOMIC);
  393. if (err < 0) {
  394. /* -EPERM: urb is being killed;
  395. * -ENODEV: device got disconnected */
  396. if (err != -EPERM && err != -ENODEV)
  397. BT_ERR("%s urb %p failed to resubmit (%d)",
  398. hdev->name, urb, -err);
  399. usb_unanchor_urb(urb);
  400. }
  401. }
  402. static inline void __fill_isoc_descriptor(struct urb *urb, int len, int mtu)
  403. {
  404. int i, offset = 0;
  405. BT_DBG("len %d mtu %d", len, mtu);
  406. for (i = 0; i < BTUSB_MAX_ISOC_FRAMES && len >= mtu;
  407. i++, offset += mtu, len -= mtu) {
  408. urb->iso_frame_desc[i].offset = offset;
  409. urb->iso_frame_desc[i].length = mtu;
  410. }
  411. if (len && i < BTUSB_MAX_ISOC_FRAMES) {
  412. urb->iso_frame_desc[i].offset = offset;
  413. urb->iso_frame_desc[i].length = len;
  414. i++;
  415. }
  416. urb->number_of_packets = i;
  417. }
  418. static int btusb_submit_isoc_urb(struct hci_dev *hdev, gfp_t mem_flags)
  419. {
  420. struct btusb_data *data = hci_get_drvdata(hdev);
  421. struct urb *urb;
  422. unsigned char *buf;
  423. unsigned int pipe;
  424. int err, size;
  425. BT_DBG("%s", hdev->name);
  426. if (!data->isoc_rx_ep)
  427. return -ENODEV;
  428. urb = usb_alloc_urb(BTUSB_MAX_ISOC_FRAMES, mem_flags);
  429. if (!urb)
  430. return -ENOMEM;
  431. size = le16_to_cpu(data->isoc_rx_ep->wMaxPacketSize) *
  432. BTUSB_MAX_ISOC_FRAMES;
  433. buf = kmalloc(size, mem_flags);
  434. if (!buf) {
  435. usb_free_urb(urb);
  436. return -ENOMEM;
  437. }
  438. pipe = usb_rcvisocpipe(data->udev, data->isoc_rx_ep->bEndpointAddress);
  439. usb_fill_int_urb(urb, data->udev, pipe, buf, size, btusb_isoc_complete,
  440. hdev, data->isoc_rx_ep->bInterval);
  441. urb->transfer_flags = URB_FREE_BUFFER | URB_ISO_ASAP;
  442. __fill_isoc_descriptor(urb, size,
  443. le16_to_cpu(data->isoc_rx_ep->wMaxPacketSize));
  444. usb_anchor_urb(urb, &data->isoc_anchor);
  445. err = usb_submit_urb(urb, mem_flags);
  446. if (err < 0) {
  447. if (err != -EPERM && err != -ENODEV)
  448. BT_ERR("%s urb %p submission failed (%d)",
  449. hdev->name, urb, -err);
  450. usb_unanchor_urb(urb);
  451. }
  452. usb_free_urb(urb);
  453. return err;
  454. }
  455. static void btusb_tx_complete(struct urb *urb)
  456. {
  457. struct sk_buff *skb = urb->context;
  458. struct hci_dev *hdev = (struct hci_dev *) skb->dev;
  459. struct btusb_data *data = hci_get_drvdata(hdev);
  460. BT_DBG("%s urb %p status %d count %d", hdev->name,
  461. urb, urb->status, urb->actual_length);
  462. if (!test_bit(HCI_RUNNING, &hdev->flags))
  463. goto done;
  464. if (!urb->status)
  465. hdev->stat.byte_tx += urb->transfer_buffer_length;
  466. else
  467. hdev->stat.err_tx++;
  468. done:
  469. spin_lock(&data->txlock);
  470. data->tx_in_flight--;
  471. spin_unlock(&data->txlock);
  472. kfree(urb->setup_packet);
  473. kfree_skb(skb);
  474. }
  475. static void btusb_isoc_tx_complete(struct urb *urb)
  476. {
  477. struct sk_buff *skb = urb->context;
  478. struct hci_dev *hdev = (struct hci_dev *) skb->dev;
  479. BT_DBG("%s urb %p status %d count %d", hdev->name,
  480. urb, urb->status, urb->actual_length);
  481. if (!test_bit(HCI_RUNNING, &hdev->flags))
  482. goto done;
  483. if (!urb->status)
  484. hdev->stat.byte_tx += urb->transfer_buffer_length;
  485. else
  486. hdev->stat.err_tx++;
  487. done:
  488. kfree(urb->setup_packet);
  489. kfree_skb(skb);
  490. }
  491. static int btusb_open(struct hci_dev *hdev)
  492. {
  493. struct btusb_data *data = hci_get_drvdata(hdev);
  494. int err;
  495. BT_DBG("%s", hdev->name);
  496. err = usb_autopm_get_interface(data->intf);
  497. if (err < 0)
  498. return err;
  499. data->intf->needs_remote_wakeup = 1;
  500. if (test_and_set_bit(HCI_RUNNING, &hdev->flags))
  501. goto done;
  502. if (test_and_set_bit(BTUSB_INTR_RUNNING, &data->flags))
  503. goto done;
  504. err = btusb_submit_intr_urb(hdev, GFP_KERNEL);
  505. if (err < 0)
  506. goto failed;
  507. err = btusb_submit_bulk_urb(hdev, GFP_KERNEL);
  508. if (err < 0) {
  509. usb_kill_anchored_urbs(&data->intr_anchor);
  510. goto failed;
  511. }
  512. set_bit(BTUSB_BULK_RUNNING, &data->flags);
  513. btusb_submit_bulk_urb(hdev, GFP_KERNEL);
  514. done:
  515. usb_autopm_put_interface(data->intf);
  516. return 0;
  517. failed:
  518. clear_bit(BTUSB_INTR_RUNNING, &data->flags);
  519. clear_bit(HCI_RUNNING, &hdev->flags);
  520. usb_autopm_put_interface(data->intf);
  521. return err;
  522. }
  523. static void btusb_stop_traffic(struct btusb_data *data)
  524. {
  525. usb_kill_anchored_urbs(&data->intr_anchor);
  526. usb_kill_anchored_urbs(&data->bulk_anchor);
  527. usb_kill_anchored_urbs(&data->isoc_anchor);
  528. }
  529. static int btusb_close(struct hci_dev *hdev)
  530. {
  531. struct btusb_data *data = hci_get_drvdata(hdev);
  532. int err;
  533. BT_DBG("%s", hdev->name);
  534. if (!test_and_clear_bit(HCI_RUNNING, &hdev->flags))
  535. return 0;
  536. cancel_work_sync(&data->work);
  537. cancel_work_sync(&data->waker);
  538. clear_bit(BTUSB_ISOC_RUNNING, &data->flags);
  539. clear_bit(BTUSB_BULK_RUNNING, &data->flags);
  540. clear_bit(BTUSB_INTR_RUNNING, &data->flags);
  541. btusb_stop_traffic(data);
  542. err = usb_autopm_get_interface(data->intf);
  543. if (err < 0)
  544. goto failed;
  545. data->intf->needs_remote_wakeup = 0;
  546. usb_autopm_put_interface(data->intf);
  547. failed:
  548. usb_scuttle_anchored_urbs(&data->deferred);
  549. return 0;
  550. }
  551. static int btusb_flush(struct hci_dev *hdev)
  552. {
  553. struct btusb_data *data = hci_get_drvdata(hdev);
  554. BT_DBG("%s", hdev->name);
  555. usb_kill_anchored_urbs(&data->tx_anchor);
  556. return 0;
  557. }
  558. static int btusb_send_frame(struct hci_dev *hdev, struct sk_buff *skb)
  559. {
  560. struct btusb_data *data = hci_get_drvdata(hdev);
  561. struct usb_ctrlrequest *dr;
  562. struct urb *urb;
  563. unsigned int pipe;
  564. int err;
  565. BT_DBG("%s", hdev->name);
  566. if (!test_bit(HCI_RUNNING, &hdev->flags))
  567. return -EBUSY;
  568. skb->dev = (void *) hdev;
  569. switch (bt_cb(skb)->pkt_type) {
  570. case HCI_COMMAND_PKT:
  571. urb = usb_alloc_urb(0, GFP_ATOMIC);
  572. if (!urb)
  573. return -ENOMEM;
  574. dr = kmalloc(sizeof(*dr), GFP_ATOMIC);
  575. if (!dr) {
  576. usb_free_urb(urb);
  577. return -ENOMEM;
  578. }
  579. dr->bRequestType = data->cmdreq_type;
  580. dr->bRequest = 0;
  581. dr->wIndex = 0;
  582. dr->wValue = 0;
  583. dr->wLength = __cpu_to_le16(skb->len);
  584. pipe = usb_sndctrlpipe(data->udev, 0x00);
  585. usb_fill_control_urb(urb, data->udev, pipe, (void *) dr,
  586. skb->data, skb->len, btusb_tx_complete, skb);
  587. hdev->stat.cmd_tx++;
  588. break;
  589. case HCI_ACLDATA_PKT:
  590. if (!data->bulk_tx_ep)
  591. return -ENODEV;
  592. urb = usb_alloc_urb(0, GFP_ATOMIC);
  593. if (!urb)
  594. return -ENOMEM;
  595. pipe = usb_sndbulkpipe(data->udev,
  596. data->bulk_tx_ep->bEndpointAddress);
  597. usb_fill_bulk_urb(urb, data->udev, pipe,
  598. skb->data, skb->len, btusb_tx_complete, skb);
  599. hdev->stat.acl_tx++;
  600. break;
  601. case HCI_SCODATA_PKT:
  602. if (!data->isoc_tx_ep || hci_conn_num(hdev, SCO_LINK) < 1)
  603. return -ENODEV;
  604. urb = usb_alloc_urb(BTUSB_MAX_ISOC_FRAMES, GFP_ATOMIC);
  605. if (!urb)
  606. return -ENOMEM;
  607. pipe = usb_sndisocpipe(data->udev,
  608. data->isoc_tx_ep->bEndpointAddress);
  609. usb_fill_int_urb(urb, data->udev, pipe,
  610. skb->data, skb->len, btusb_isoc_tx_complete,
  611. skb, data->isoc_tx_ep->bInterval);
  612. urb->transfer_flags = URB_ISO_ASAP;
  613. __fill_isoc_descriptor(urb, skb->len,
  614. le16_to_cpu(data->isoc_tx_ep->wMaxPacketSize));
  615. hdev->stat.sco_tx++;
  616. goto skip_waking;
  617. default:
  618. return -EILSEQ;
  619. }
  620. err = inc_tx(data);
  621. if (err) {
  622. usb_anchor_urb(urb, &data->deferred);
  623. schedule_work(&data->waker);
  624. err = 0;
  625. goto done;
  626. }
  627. skip_waking:
  628. usb_anchor_urb(urb, &data->tx_anchor);
  629. err = usb_submit_urb(urb, GFP_ATOMIC);
  630. if (err < 0) {
  631. if (err != -EPERM && err != -ENODEV)
  632. BT_ERR("%s urb %p submission failed (%d)",
  633. hdev->name, urb, -err);
  634. kfree(urb->setup_packet);
  635. usb_unanchor_urb(urb);
  636. } else {
  637. usb_mark_last_busy(data->udev);
  638. }
  639. done:
  640. usb_free_urb(urb);
  641. return err;
  642. }
  643. static void btusb_notify(struct hci_dev *hdev, unsigned int evt)
  644. {
  645. struct btusb_data *data = hci_get_drvdata(hdev);
  646. BT_DBG("%s evt %d", hdev->name, evt);
  647. if (hci_conn_num(hdev, SCO_LINK) != data->sco_num) {
  648. data->sco_num = hci_conn_num(hdev, SCO_LINK);
  649. schedule_work(&data->work);
  650. }
  651. }
  652. static inline int __set_isoc_interface(struct hci_dev *hdev, int altsetting)
  653. {
  654. struct btusb_data *data = hci_get_drvdata(hdev);
  655. struct usb_interface *intf = data->isoc;
  656. struct usb_endpoint_descriptor *ep_desc;
  657. int i, err;
  658. if (!data->isoc)
  659. return -ENODEV;
  660. err = usb_set_interface(data->udev, 1, altsetting);
  661. if (err < 0) {
  662. BT_ERR("%s setting interface failed (%d)", hdev->name, -err);
  663. return err;
  664. }
  665. data->isoc_altsetting = altsetting;
  666. data->isoc_tx_ep = NULL;
  667. data->isoc_rx_ep = NULL;
  668. for (i = 0; i < intf->cur_altsetting->desc.bNumEndpoints; i++) {
  669. ep_desc = &intf->cur_altsetting->endpoint[i].desc;
  670. if (!data->isoc_tx_ep && usb_endpoint_is_isoc_out(ep_desc)) {
  671. data->isoc_tx_ep = ep_desc;
  672. continue;
  673. }
  674. if (!data->isoc_rx_ep && usb_endpoint_is_isoc_in(ep_desc)) {
  675. data->isoc_rx_ep = ep_desc;
  676. continue;
  677. }
  678. }
  679. if (!data->isoc_tx_ep || !data->isoc_rx_ep) {
  680. BT_ERR("%s invalid SCO descriptors", hdev->name);
  681. return -ENODEV;
  682. }
  683. return 0;
  684. }
  685. static void btusb_work(struct work_struct *work)
  686. {
  687. struct btusb_data *data = container_of(work, struct btusb_data, work);
  688. struct hci_dev *hdev = data->hdev;
  689. int new_alts;
  690. int err;
  691. if (data->sco_num > 0) {
  692. if (!test_bit(BTUSB_DID_ISO_RESUME, &data->flags)) {
  693. err = usb_autopm_get_interface(data->isoc ? data->isoc : data->intf);
  694. if (err < 0) {
  695. clear_bit(BTUSB_ISOC_RUNNING, &data->flags);
  696. usb_kill_anchored_urbs(&data->isoc_anchor);
  697. return;
  698. }
  699. set_bit(BTUSB_DID_ISO_RESUME, &data->flags);
  700. }
  701. if (hdev->voice_setting & 0x0020) {
  702. static const int alts[3] = { 2, 4, 5 };
  703. new_alts = alts[data->sco_num - 1];
  704. } else {
  705. new_alts = data->sco_num;
  706. }
  707. if (data->isoc_altsetting != new_alts) {
  708. clear_bit(BTUSB_ISOC_RUNNING, &data->flags);
  709. usb_kill_anchored_urbs(&data->isoc_anchor);
  710. if (__set_isoc_interface(hdev, new_alts) < 0)
  711. return;
  712. }
  713. if (!test_and_set_bit(BTUSB_ISOC_RUNNING, &data->flags)) {
  714. if (btusb_submit_isoc_urb(hdev, GFP_KERNEL) < 0)
  715. clear_bit(BTUSB_ISOC_RUNNING, &data->flags);
  716. else
  717. btusb_submit_isoc_urb(hdev, GFP_KERNEL);
  718. }
  719. } else {
  720. clear_bit(BTUSB_ISOC_RUNNING, &data->flags);
  721. usb_kill_anchored_urbs(&data->isoc_anchor);
  722. __set_isoc_interface(hdev, 0);
  723. if (test_and_clear_bit(BTUSB_DID_ISO_RESUME, &data->flags))
  724. usb_autopm_put_interface(data->isoc ? data->isoc : data->intf);
  725. }
  726. }
  727. static void btusb_waker(struct work_struct *work)
  728. {
  729. struct btusb_data *data = container_of(work, struct btusb_data, waker);
  730. int err;
  731. err = usb_autopm_get_interface(data->intf);
  732. if (err < 0)
  733. return;
  734. usb_autopm_put_interface(data->intf);
  735. }
  736. static int btusb_setup_bcm92035(struct hci_dev *hdev)
  737. {
  738. struct sk_buff *skb;
  739. u8 val = 0x00;
  740. BT_DBG("%s", hdev->name);
  741. skb = __hci_cmd_sync(hdev, 0xfc3b, 1, &val, HCI_INIT_TIMEOUT);
  742. if (IS_ERR(skb))
  743. BT_ERR("BCM92035 command failed (%ld)", -PTR_ERR(skb));
  744. else
  745. kfree_skb(skb);
  746. return 0;
  747. }
  748. static int btusb_setup_csr(struct hci_dev *hdev)
  749. {
  750. struct hci_rp_read_local_version *rp;
  751. struct sk_buff *skb;
  752. int ret;
  753. BT_DBG("%s", hdev->name);
  754. skb = __hci_cmd_sync(hdev, HCI_OP_READ_LOCAL_VERSION, 0, NULL,
  755. HCI_INIT_TIMEOUT);
  756. if (IS_ERR(skb)) {
  757. BT_ERR("Reading local version failed (%ld)", -PTR_ERR(skb));
  758. return -PTR_ERR(skb);
  759. }
  760. rp = (struct hci_rp_read_local_version *) skb->data;
  761. if (!rp->status) {
  762. if (le16_to_cpu(rp->manufacturer) != 10) {
  763. /* Clear the reset quirk since this is not an actual
  764. * early Bluetooth 1.1 device from CSR.
  765. */
  766. clear_bit(HCI_QUIRK_RESET_ON_CLOSE, &hdev->quirks);
  767. /* These fake CSR controllers have all a broken
  768. * stored link key handling and so just disable it.
  769. */
  770. set_bit(HCI_QUIRK_BROKEN_STORED_LINK_KEY,
  771. &hdev->quirks);
  772. }
  773. }
  774. ret = -bt_to_errno(rp->status);
  775. kfree_skb(skb);
  776. return ret;
  777. }
  778. struct intel_version {
  779. u8 status;
  780. u8 hw_platform;
  781. u8 hw_variant;
  782. u8 hw_revision;
  783. u8 fw_variant;
  784. u8 fw_revision;
  785. u8 fw_build_num;
  786. u8 fw_build_ww;
  787. u8 fw_build_yy;
  788. u8 fw_patch_num;
  789. } __packed;
  790. static const struct firmware *btusb_setup_intel_get_fw(struct hci_dev *hdev,
  791. struct intel_version *ver)
  792. {
  793. const struct firmware *fw;
  794. char fwname[64];
  795. int ret;
  796. snprintf(fwname, sizeof(fwname),
  797. "intel/ibt-hw-%x.%x.%x-fw-%x.%x.%x.%x.%x.bseq",
  798. ver->hw_platform, ver->hw_variant, ver->hw_revision,
  799. ver->fw_variant, ver->fw_revision, ver->fw_build_num,
  800. ver->fw_build_ww, ver->fw_build_yy);
  801. ret = request_firmware(&fw, fwname, &hdev->dev);
  802. if (ret < 0) {
  803. if (ret == -EINVAL) {
  804. BT_ERR("%s Intel firmware file request failed (%d)",
  805. hdev->name, ret);
  806. return NULL;
  807. }
  808. BT_ERR("%s failed to open Intel firmware file: %s(%d)",
  809. hdev->name, fwname, ret);
  810. /* If the correct firmware patch file is not found, use the
  811. * default firmware patch file instead
  812. */
  813. snprintf(fwname, sizeof(fwname), "intel/ibt-hw-%x.%x.bseq",
  814. ver->hw_platform, ver->hw_variant);
  815. if (request_firmware(&fw, fwname, &hdev->dev) < 0) {
  816. BT_ERR("%s failed to open default Intel fw file: %s",
  817. hdev->name, fwname);
  818. return NULL;
  819. }
  820. }
  821. BT_INFO("%s: Intel Bluetooth firmware file: %s", hdev->name, fwname);
  822. return fw;
  823. }
  824. static int btusb_setup_intel_patching(struct hci_dev *hdev,
  825. const struct firmware *fw,
  826. const u8 **fw_ptr, int *disable_patch)
  827. {
  828. struct sk_buff *skb;
  829. struct hci_command_hdr *cmd;
  830. const u8 *cmd_param;
  831. struct hci_event_hdr *evt = NULL;
  832. const u8 *evt_param = NULL;
  833. int remain = fw->size - (*fw_ptr - fw->data);
  834. /* The first byte indicates the types of the patch command or event.
  835. * 0x01 means HCI command and 0x02 is HCI event. If the first bytes
  836. * in the current firmware buffer doesn't start with 0x01 or
  837. * the size of remain buffer is smaller than HCI command header,
  838. * the firmware file is corrupted and it should stop the patching
  839. * process.
  840. */
  841. if (remain > HCI_COMMAND_HDR_SIZE && *fw_ptr[0] != 0x01) {
  842. BT_ERR("%s Intel fw corrupted: invalid cmd read", hdev->name);
  843. return -EINVAL;
  844. }
  845. (*fw_ptr)++;
  846. remain--;
  847. cmd = (struct hci_command_hdr *)(*fw_ptr);
  848. *fw_ptr += sizeof(*cmd);
  849. remain -= sizeof(*cmd);
  850. /* Ensure that the remain firmware data is long enough than the length
  851. * of command parameter. If not, the firmware file is corrupted.
  852. */
  853. if (remain < cmd->plen) {
  854. BT_ERR("%s Intel fw corrupted: invalid cmd len", hdev->name);
  855. return -EFAULT;
  856. }
  857. /* If there is a command that loads a patch in the firmware
  858. * file, then enable the patch upon success, otherwise just
  859. * disable the manufacturer mode, for example patch activation
  860. * is not required when the default firmware patch file is used
  861. * because there are no patch data to load.
  862. */
  863. if (*disable_patch && le16_to_cpu(cmd->opcode) == 0xfc8e)
  864. *disable_patch = 0;
  865. cmd_param = *fw_ptr;
  866. *fw_ptr += cmd->plen;
  867. remain -= cmd->plen;
  868. /* This reads the expected events when the above command is sent to the
  869. * device. Some vendor commands expects more than one events, for
  870. * example command status event followed by vendor specific event.
  871. * For this case, it only keeps the last expected event. so the command
  872. * can be sent with __hci_cmd_sync_ev() which returns the sk_buff of
  873. * last expected event.
  874. */
  875. while (remain > HCI_EVENT_HDR_SIZE && *fw_ptr[0] == 0x02) {
  876. (*fw_ptr)++;
  877. remain--;
  878. evt = (struct hci_event_hdr *)(*fw_ptr);
  879. *fw_ptr += sizeof(*evt);
  880. remain -= sizeof(*evt);
  881. if (remain < evt->plen) {
  882. BT_ERR("%s Intel fw corrupted: invalid evt len",
  883. hdev->name);
  884. return -EFAULT;
  885. }
  886. evt_param = *fw_ptr;
  887. *fw_ptr += evt->plen;
  888. remain -= evt->plen;
  889. }
  890. /* Every HCI commands in the firmware file has its correspond event.
  891. * If event is not found or remain is smaller than zero, the firmware
  892. * file is corrupted.
  893. */
  894. if (!evt || !evt_param || remain < 0) {
  895. BT_ERR("%s Intel fw corrupted: invalid evt read", hdev->name);
  896. return -EFAULT;
  897. }
  898. skb = __hci_cmd_sync_ev(hdev, le16_to_cpu(cmd->opcode), cmd->plen,
  899. cmd_param, evt->evt, HCI_INIT_TIMEOUT);
  900. if (IS_ERR(skb)) {
  901. BT_ERR("%s sending Intel patch command (0x%4.4x) failed (%ld)",
  902. hdev->name, cmd->opcode, PTR_ERR(skb));
  903. return PTR_ERR(skb);
  904. }
  905. /* It ensures that the returned event matches the event data read from
  906. * the firmware file. At fist, it checks the length and then
  907. * the contents of the event.
  908. */
  909. if (skb->len != evt->plen) {
  910. BT_ERR("%s mismatch event length (opcode 0x%4.4x)", hdev->name,
  911. le16_to_cpu(cmd->opcode));
  912. kfree_skb(skb);
  913. return -EFAULT;
  914. }
  915. if (memcmp(skb->data, evt_param, evt->plen)) {
  916. BT_ERR("%s mismatch event parameter (opcode 0x%4.4x)",
  917. hdev->name, le16_to_cpu(cmd->opcode));
  918. kfree_skb(skb);
  919. return -EFAULT;
  920. }
  921. kfree_skb(skb);
  922. return 0;
  923. }
  924. static int btusb_setup_intel(struct hci_dev *hdev)
  925. {
  926. struct sk_buff *skb;
  927. const struct firmware *fw;
  928. const u8 *fw_ptr;
  929. int disable_patch;
  930. struct intel_version *ver;
  931. const u8 mfg_enable[] = { 0x01, 0x00 };
  932. const u8 mfg_disable[] = { 0x00, 0x00 };
  933. const u8 mfg_reset_deactivate[] = { 0x00, 0x01 };
  934. const u8 mfg_reset_activate[] = { 0x00, 0x02 };
  935. BT_DBG("%s", hdev->name);
  936. /* The controller has a bug with the first HCI command sent to it
  937. * returning number of completed commands as zero. This would stall the
  938. * command processing in the Bluetooth core.
  939. *
  940. * As a workaround, send HCI Reset command first which will reset the
  941. * number of completed commands and allow normal command processing
  942. * from now on.
  943. */
  944. skb = __hci_cmd_sync(hdev, HCI_OP_RESET, 0, NULL, HCI_INIT_TIMEOUT);
  945. if (IS_ERR(skb)) {
  946. BT_ERR("%s sending initial HCI reset command failed (%ld)",
  947. hdev->name, PTR_ERR(skb));
  948. return PTR_ERR(skb);
  949. }
  950. kfree_skb(skb);
  951. /* Read Intel specific controller version first to allow selection of
  952. * which firmware file to load.
  953. *
  954. * The returned information are hardware variant and revision plus
  955. * firmware variant, revision and build number.
  956. */
  957. skb = __hci_cmd_sync(hdev, 0xfc05, 0, NULL, HCI_INIT_TIMEOUT);
  958. if (IS_ERR(skb)) {
  959. BT_ERR("%s reading Intel fw version command failed (%ld)",
  960. hdev->name, PTR_ERR(skb));
  961. return PTR_ERR(skb);
  962. }
  963. if (skb->len != sizeof(*ver)) {
  964. BT_ERR("%s Intel version event length mismatch", hdev->name);
  965. kfree_skb(skb);
  966. return -EIO;
  967. }
  968. ver = (struct intel_version *)skb->data;
  969. if (ver->status) {
  970. BT_ERR("%s Intel fw version event failed (%02x)", hdev->name,
  971. ver->status);
  972. kfree_skb(skb);
  973. return -bt_to_errno(ver->status);
  974. }
  975. BT_INFO("%s: read Intel version: %02x%02x%02x%02x%02x%02x%02x%02x%02x",
  976. hdev->name, ver->hw_platform, ver->hw_variant,
  977. ver->hw_revision, ver->fw_variant, ver->fw_revision,
  978. ver->fw_build_num, ver->fw_build_ww, ver->fw_build_yy,
  979. ver->fw_patch_num);
  980. /* fw_patch_num indicates the version of patch the device currently
  981. * have. If there is no patch data in the device, it is always 0x00.
  982. * So, if it is other than 0x00, no need to patch the deivce again.
  983. */
  984. if (ver->fw_patch_num) {
  985. BT_INFO("%s: Intel device is already patched. patch num: %02x",
  986. hdev->name, ver->fw_patch_num);
  987. kfree_skb(skb);
  988. return 0;
  989. }
  990. /* Opens the firmware patch file based on the firmware version read
  991. * from the controller. If it fails to open the matching firmware
  992. * patch file, it tries to open the default firmware patch file.
  993. * If no patch file is found, allow the device to operate without
  994. * a patch.
  995. */
  996. fw = btusb_setup_intel_get_fw(hdev, ver);
  997. if (!fw) {
  998. kfree_skb(skb);
  999. return 0;
  1000. }
  1001. fw_ptr = fw->data;
  1002. /* This Intel specific command enables the manufacturer mode of the
  1003. * controller.
  1004. *
  1005. * Only while this mode is enabled, the driver can download the
  1006. * firmware patch data and configuration parameters.
  1007. */
  1008. skb = __hci_cmd_sync(hdev, 0xfc11, 2, mfg_enable, HCI_INIT_TIMEOUT);
  1009. if (IS_ERR(skb)) {
  1010. BT_ERR("%s entering Intel manufacturer mode failed (%ld)",
  1011. hdev->name, PTR_ERR(skb));
  1012. release_firmware(fw);
  1013. return PTR_ERR(skb);
  1014. }
  1015. if (skb->data[0]) {
  1016. u8 evt_status = skb->data[0];
  1017. BT_ERR("%s enable Intel manufacturer mode event failed (%02x)",
  1018. hdev->name, evt_status);
  1019. kfree_skb(skb);
  1020. release_firmware(fw);
  1021. return -bt_to_errno(evt_status);
  1022. }
  1023. kfree_skb(skb);
  1024. disable_patch = 1;
  1025. /* The firmware data file consists of list of Intel specific HCI
  1026. * commands and its expected events. The first byte indicates the
  1027. * type of the message, either HCI command or HCI event.
  1028. *
  1029. * It reads the command and its expected event from the firmware file,
  1030. * and send to the controller. Once __hci_cmd_sync_ev() returns,
  1031. * the returned event is compared with the event read from the firmware
  1032. * file and it will continue until all the messages are downloaded to
  1033. * the controller.
  1034. *
  1035. * Once the firmware patching is completed successfully,
  1036. * the manufacturer mode is disabled with reset and activating the
  1037. * downloaded patch.
  1038. *
  1039. * If the firmware patching fails, the manufacturer mode is
  1040. * disabled with reset and deactivating the patch.
  1041. *
  1042. * If the default patch file is used, no reset is done when disabling
  1043. * the manufacturer.
  1044. */
  1045. while (fw->size > fw_ptr - fw->data) {
  1046. int ret;
  1047. ret = btusb_setup_intel_patching(hdev, fw, &fw_ptr,
  1048. &disable_patch);
  1049. if (ret < 0)
  1050. goto exit_mfg_deactivate;
  1051. }
  1052. release_firmware(fw);
  1053. if (disable_patch)
  1054. goto exit_mfg_disable;
  1055. /* Patching completed successfully and disable the manufacturer mode
  1056. * with reset and activate the downloaded firmware patches.
  1057. */
  1058. skb = __hci_cmd_sync(hdev, 0xfc11, sizeof(mfg_reset_activate),
  1059. mfg_reset_activate, HCI_INIT_TIMEOUT);
  1060. if (IS_ERR(skb)) {
  1061. BT_ERR("%s exiting Intel manufacturer mode failed (%ld)",
  1062. hdev->name, PTR_ERR(skb));
  1063. return PTR_ERR(skb);
  1064. }
  1065. kfree_skb(skb);
  1066. BT_INFO("%s: Intel Bluetooth firmware patch completed and activated",
  1067. hdev->name);
  1068. return 0;
  1069. exit_mfg_disable:
  1070. /* Disable the manufacturer mode without reset */
  1071. skb = __hci_cmd_sync(hdev, 0xfc11, sizeof(mfg_disable), mfg_disable,
  1072. HCI_INIT_TIMEOUT);
  1073. if (IS_ERR(skb)) {
  1074. BT_ERR("%s exiting Intel manufacturer mode failed (%ld)",
  1075. hdev->name, PTR_ERR(skb));
  1076. return PTR_ERR(skb);
  1077. }
  1078. kfree_skb(skb);
  1079. BT_INFO("%s: Intel Bluetooth firmware patch completed", hdev->name);
  1080. return 0;
  1081. exit_mfg_deactivate:
  1082. release_firmware(fw);
  1083. /* Patching failed. Disable the manufacturer mode with reset and
  1084. * deactivate the downloaded firmware patches.
  1085. */
  1086. skb = __hci_cmd_sync(hdev, 0xfc11, sizeof(mfg_reset_deactivate),
  1087. mfg_reset_deactivate, HCI_INIT_TIMEOUT);
  1088. if (IS_ERR(skb)) {
  1089. BT_ERR("%s exiting Intel manufacturer mode failed (%ld)",
  1090. hdev->name, PTR_ERR(skb));
  1091. return PTR_ERR(skb);
  1092. }
  1093. kfree_skb(skb);
  1094. BT_INFO("%s: Intel Bluetooth firmware patch completed and deactivated",
  1095. hdev->name);
  1096. return 0;
  1097. }
  1098. static int btusb_setup_bcm_patchram(struct hci_dev *hdev)
  1099. {
  1100. struct btusb_data *data = hci_get_drvdata(hdev);
  1101. struct usb_device *udev = data->udev;
  1102. char fw_name[64];
  1103. const struct firmware *fw;
  1104. const u8 *fw_ptr;
  1105. size_t fw_size;
  1106. const struct hci_command_hdr *cmd;
  1107. const u8 *cmd_param;
  1108. u16 opcode;
  1109. struct sk_buff *skb;
  1110. struct hci_rp_read_local_version *ver;
  1111. long ret;
  1112. snprintf(fw_name, sizeof(fw_name), "brcm/%s-%04x-%04x.hcd",
  1113. udev->product ? udev->product : "BCM",
  1114. le16_to_cpu(udev->descriptor.idVendor),
  1115. le16_to_cpu(udev->descriptor.idProduct));
  1116. ret = request_firmware(&fw, fw_name, &hdev->dev);
  1117. if (ret < 0) {
  1118. BT_INFO("%s: BCM: patch %s not found", hdev->name,
  1119. fw_name);
  1120. return 0;
  1121. }
  1122. /* Reset */
  1123. skb = __hci_cmd_sync(hdev, HCI_OP_RESET, 0, NULL, HCI_INIT_TIMEOUT);
  1124. if (IS_ERR(skb)) {
  1125. ret = PTR_ERR(skb);
  1126. BT_ERR("%s: HCI_OP_RESET failed (%ld)", hdev->name, ret);
  1127. goto done;
  1128. }
  1129. kfree_skb(skb);
  1130. /* Read Local Version Info */
  1131. skb = __hci_cmd_sync(hdev, HCI_OP_READ_LOCAL_VERSION, 0, NULL,
  1132. HCI_INIT_TIMEOUT);
  1133. if (IS_ERR(skb)) {
  1134. ret = PTR_ERR(skb);
  1135. BT_ERR("%s: HCI_OP_READ_LOCAL_VERSION failed (%ld)",
  1136. hdev->name, ret);
  1137. goto done;
  1138. }
  1139. if (skb->len != sizeof(*ver)) {
  1140. BT_ERR("%s: HCI_OP_READ_LOCAL_VERSION event length mismatch",
  1141. hdev->name);
  1142. kfree_skb(skb);
  1143. ret = -EIO;
  1144. goto done;
  1145. }
  1146. ver = (struct hci_rp_read_local_version *) skb->data;
  1147. BT_INFO("%s: BCM: patching hci_ver=%02x hci_rev=%04x lmp_ver=%02x "
  1148. "lmp_subver=%04x", hdev->name, ver->hci_ver, ver->hci_rev,
  1149. ver->lmp_ver, ver->lmp_subver);
  1150. kfree_skb(skb);
  1151. /* Start Download */
  1152. skb = __hci_cmd_sync(hdev, 0xfc2e, 0, NULL, HCI_INIT_TIMEOUT);
  1153. if (IS_ERR(skb)) {
  1154. ret = PTR_ERR(skb);
  1155. BT_ERR("%s: BCM: Download Minidrv command failed (%ld)",
  1156. hdev->name, ret);
  1157. goto reset_fw;
  1158. }
  1159. kfree_skb(skb);
  1160. /* 50 msec delay after Download Minidrv completes */
  1161. msleep(50);
  1162. fw_ptr = fw->data;
  1163. fw_size = fw->size;
  1164. while (fw_size >= sizeof(*cmd)) {
  1165. cmd = (struct hci_command_hdr *) fw_ptr;
  1166. fw_ptr += sizeof(*cmd);
  1167. fw_size -= sizeof(*cmd);
  1168. if (fw_size < cmd->plen) {
  1169. BT_ERR("%s: BCM: patch %s is corrupted",
  1170. hdev->name, fw_name);
  1171. ret = -EINVAL;
  1172. goto reset_fw;
  1173. }
  1174. cmd_param = fw_ptr;
  1175. fw_ptr += cmd->plen;
  1176. fw_size -= cmd->plen;
  1177. opcode = le16_to_cpu(cmd->opcode);
  1178. skb = __hci_cmd_sync(hdev, opcode, cmd->plen, cmd_param,
  1179. HCI_INIT_TIMEOUT);
  1180. if (IS_ERR(skb)) {
  1181. ret = PTR_ERR(skb);
  1182. BT_ERR("%s: BCM: patch command %04x failed (%ld)",
  1183. hdev->name, opcode, ret);
  1184. goto reset_fw;
  1185. }
  1186. kfree_skb(skb);
  1187. }
  1188. /* 250 msec delay after Launch Ram completes */
  1189. msleep(250);
  1190. reset_fw:
  1191. /* Reset */
  1192. skb = __hci_cmd_sync(hdev, HCI_OP_RESET, 0, NULL, HCI_INIT_TIMEOUT);
  1193. if (IS_ERR(skb)) {
  1194. ret = PTR_ERR(skb);
  1195. BT_ERR("%s: HCI_OP_RESET failed (%ld)", hdev->name, ret);
  1196. goto done;
  1197. }
  1198. kfree_skb(skb);
  1199. /* Read Local Version Info */
  1200. skb = __hci_cmd_sync(hdev, HCI_OP_READ_LOCAL_VERSION, 0, NULL,
  1201. HCI_INIT_TIMEOUT);
  1202. if (IS_ERR(skb)) {
  1203. ret = PTR_ERR(skb);
  1204. BT_ERR("%s: HCI_OP_READ_LOCAL_VERSION failed (%ld)",
  1205. hdev->name, ret);
  1206. goto done;
  1207. }
  1208. if (skb->len != sizeof(*ver)) {
  1209. BT_ERR("%s: HCI_OP_READ_LOCAL_VERSION event length mismatch",
  1210. hdev->name);
  1211. kfree_skb(skb);
  1212. ret = -EIO;
  1213. goto done;
  1214. }
  1215. ver = (struct hci_rp_read_local_version *) skb->data;
  1216. BT_INFO("%s: BCM: firmware hci_ver=%02x hci_rev=%04x lmp_ver=%02x "
  1217. "lmp_subver=%04x", hdev->name, ver->hci_ver, ver->hci_rev,
  1218. ver->lmp_ver, ver->lmp_subver);
  1219. kfree_skb(skb);
  1220. done:
  1221. release_firmware(fw);
  1222. return ret;
  1223. }
  1224. static int btusb_probe(struct usb_interface *intf,
  1225. const struct usb_device_id *id)
  1226. {
  1227. struct usb_endpoint_descriptor *ep_desc;
  1228. struct btusb_data *data;
  1229. struct hci_dev *hdev;
  1230. int i, err;
  1231. BT_DBG("intf %p id %p", intf, id);
  1232. /* interface numbers are hardcoded in the spec */
  1233. if (intf->cur_altsetting->desc.bInterfaceNumber != 0)
  1234. return -ENODEV;
  1235. if (!id->driver_info) {
  1236. const struct usb_device_id *match;
  1237. match = usb_match_id(intf, blacklist_table);
  1238. if (match)
  1239. id = match;
  1240. }
  1241. if (id->driver_info == BTUSB_IGNORE)
  1242. return -ENODEV;
  1243. if (ignore_dga && id->driver_info & BTUSB_DIGIANSWER)
  1244. return -ENODEV;
  1245. if (ignore_csr && id->driver_info & BTUSB_CSR)
  1246. return -ENODEV;
  1247. if (ignore_sniffer && id->driver_info & BTUSB_SNIFFER)
  1248. return -ENODEV;
  1249. if (id->driver_info & BTUSB_ATH3012) {
  1250. struct usb_device *udev = interface_to_usbdev(intf);
  1251. /* Old firmware would otherwise let ath3k driver load
  1252. * patch and sysconfig files */
  1253. if (le16_to_cpu(udev->descriptor.bcdDevice) <= 0x0001)
  1254. return -ENODEV;
  1255. }
  1256. data = devm_kzalloc(&intf->dev, sizeof(*data), GFP_KERNEL);
  1257. if (!data)
  1258. return -ENOMEM;
  1259. for (i = 0; i < intf->cur_altsetting->desc.bNumEndpoints; i++) {
  1260. ep_desc = &intf->cur_altsetting->endpoint[i].desc;
  1261. if (!data->intr_ep && usb_endpoint_is_int_in(ep_desc)) {
  1262. data->intr_ep = ep_desc;
  1263. continue;
  1264. }
  1265. if (!data->bulk_tx_ep && usb_endpoint_is_bulk_out(ep_desc)) {
  1266. data->bulk_tx_ep = ep_desc;
  1267. continue;
  1268. }
  1269. if (!data->bulk_rx_ep && usb_endpoint_is_bulk_in(ep_desc)) {
  1270. data->bulk_rx_ep = ep_desc;
  1271. continue;
  1272. }
  1273. }
  1274. if (!data->intr_ep || !data->bulk_tx_ep || !data->bulk_rx_ep)
  1275. return -ENODEV;
  1276. data->cmdreq_type = USB_TYPE_CLASS;
  1277. data->udev = interface_to_usbdev(intf);
  1278. data->intf = intf;
  1279. spin_lock_init(&data->lock);
  1280. INIT_WORK(&data->work, btusb_work);
  1281. INIT_WORK(&data->waker, btusb_waker);
  1282. spin_lock_init(&data->txlock);
  1283. init_usb_anchor(&data->tx_anchor);
  1284. init_usb_anchor(&data->intr_anchor);
  1285. init_usb_anchor(&data->bulk_anchor);
  1286. init_usb_anchor(&data->isoc_anchor);
  1287. init_usb_anchor(&data->deferred);
  1288. hdev = hci_alloc_dev();
  1289. if (!hdev)
  1290. return -ENOMEM;
  1291. hdev->bus = HCI_USB;
  1292. hci_set_drvdata(hdev, data);
  1293. data->hdev = hdev;
  1294. SET_HCIDEV_DEV(hdev, &intf->dev);
  1295. hdev->open = btusb_open;
  1296. hdev->close = btusb_close;
  1297. hdev->flush = btusb_flush;
  1298. hdev->send = btusb_send_frame;
  1299. hdev->notify = btusb_notify;
  1300. if (id->driver_info & BTUSB_BCM92035)
  1301. hdev->setup = btusb_setup_bcm92035;
  1302. if (id->driver_info & BTUSB_BCM_PATCHRAM)
  1303. hdev->setup = btusb_setup_bcm_patchram;
  1304. if (id->driver_info & BTUSB_INTEL)
  1305. hdev->setup = btusb_setup_intel;
  1306. /* Interface numbers are hardcoded in the specification */
  1307. data->isoc = usb_ifnum_to_if(data->udev, 1);
  1308. if (!reset)
  1309. set_bit(HCI_QUIRK_RESET_ON_CLOSE, &hdev->quirks);
  1310. if (force_scofix || id->driver_info & BTUSB_WRONG_SCO_MTU) {
  1311. if (!disable_scofix)
  1312. set_bit(HCI_QUIRK_FIXUP_BUFFER_SIZE, &hdev->quirks);
  1313. }
  1314. if (id->driver_info & BTUSB_BROKEN_ISOC)
  1315. data->isoc = NULL;
  1316. if (id->driver_info & BTUSB_DIGIANSWER) {
  1317. data->cmdreq_type = USB_TYPE_VENDOR;
  1318. set_bit(HCI_QUIRK_RESET_ON_CLOSE, &hdev->quirks);
  1319. }
  1320. if (id->driver_info & BTUSB_CSR) {
  1321. struct usb_device *udev = data->udev;
  1322. u16 bcdDevice = le16_to_cpu(udev->descriptor.bcdDevice);
  1323. /* Old firmware would otherwise execute USB reset */
  1324. if (bcdDevice < 0x117)
  1325. set_bit(HCI_QUIRK_RESET_ON_CLOSE, &hdev->quirks);
  1326. /* Fake CSR devices with broken commands */
  1327. if (bcdDevice <= 0x100)
  1328. hdev->setup = btusb_setup_csr;
  1329. }
  1330. if (id->driver_info & BTUSB_SNIFFER) {
  1331. struct usb_device *udev = data->udev;
  1332. /* New sniffer firmware has crippled HCI interface */
  1333. if (le16_to_cpu(udev->descriptor.bcdDevice) > 0x997)
  1334. set_bit(HCI_QUIRK_RAW_DEVICE, &hdev->quirks);
  1335. data->isoc = NULL;
  1336. }
  1337. if (data->isoc) {
  1338. err = usb_driver_claim_interface(&btusb_driver,
  1339. data->isoc, data);
  1340. if (err < 0) {
  1341. hci_free_dev(hdev);
  1342. return err;
  1343. }
  1344. }
  1345. err = hci_register_dev(hdev);
  1346. if (err < 0) {
  1347. hci_free_dev(hdev);
  1348. return err;
  1349. }
  1350. usb_set_intfdata(intf, data);
  1351. return 0;
  1352. }
  1353. static void btusb_disconnect(struct usb_interface *intf)
  1354. {
  1355. struct btusb_data *data = usb_get_intfdata(intf);
  1356. struct hci_dev *hdev;
  1357. BT_DBG("intf %p", intf);
  1358. if (!data)
  1359. return;
  1360. hdev = data->hdev;
  1361. usb_set_intfdata(data->intf, NULL);
  1362. if (data->isoc)
  1363. usb_set_intfdata(data->isoc, NULL);
  1364. hci_unregister_dev(hdev);
  1365. if (intf == data->isoc)
  1366. usb_driver_release_interface(&btusb_driver, data->intf);
  1367. else if (data->isoc)
  1368. usb_driver_release_interface(&btusb_driver, data->isoc);
  1369. hci_free_dev(hdev);
  1370. }
  1371. #ifdef CONFIG_PM
  1372. static int btusb_suspend(struct usb_interface *intf, pm_message_t message)
  1373. {
  1374. struct btusb_data *data = usb_get_intfdata(intf);
  1375. BT_DBG("intf %p", intf);
  1376. if (data->suspend_count++)
  1377. return 0;
  1378. spin_lock_irq(&data->txlock);
  1379. if (!(PMSG_IS_AUTO(message) && data->tx_in_flight)) {
  1380. set_bit(BTUSB_SUSPENDING, &data->flags);
  1381. spin_unlock_irq(&data->txlock);
  1382. } else {
  1383. spin_unlock_irq(&data->txlock);
  1384. data->suspend_count--;
  1385. return -EBUSY;
  1386. }
  1387. cancel_work_sync(&data->work);
  1388. btusb_stop_traffic(data);
  1389. usb_kill_anchored_urbs(&data->tx_anchor);
  1390. return 0;
  1391. }
  1392. static void play_deferred(struct btusb_data *data)
  1393. {
  1394. struct urb *urb;
  1395. int err;
  1396. while ((urb = usb_get_from_anchor(&data->deferred))) {
  1397. err = usb_submit_urb(urb, GFP_ATOMIC);
  1398. if (err < 0)
  1399. break;
  1400. data->tx_in_flight++;
  1401. }
  1402. usb_scuttle_anchored_urbs(&data->deferred);
  1403. }
  1404. static int btusb_resume(struct usb_interface *intf)
  1405. {
  1406. struct btusb_data *data = usb_get_intfdata(intf);
  1407. struct hci_dev *hdev = data->hdev;
  1408. int err = 0;
  1409. BT_DBG("intf %p", intf);
  1410. if (--data->suspend_count)
  1411. return 0;
  1412. if (!test_bit(HCI_RUNNING, &hdev->flags))
  1413. goto done;
  1414. if (test_bit(BTUSB_INTR_RUNNING, &data->flags)) {
  1415. err = btusb_submit_intr_urb(hdev, GFP_NOIO);
  1416. if (err < 0) {
  1417. clear_bit(BTUSB_INTR_RUNNING, &data->flags);
  1418. goto failed;
  1419. }
  1420. }
  1421. if (test_bit(BTUSB_BULK_RUNNING, &data->flags)) {
  1422. err = btusb_submit_bulk_urb(hdev, GFP_NOIO);
  1423. if (err < 0) {
  1424. clear_bit(BTUSB_BULK_RUNNING, &data->flags);
  1425. goto failed;
  1426. }
  1427. btusb_submit_bulk_urb(hdev, GFP_NOIO);
  1428. }
  1429. if (test_bit(BTUSB_ISOC_RUNNING, &data->flags)) {
  1430. if (btusb_submit_isoc_urb(hdev, GFP_NOIO) < 0)
  1431. clear_bit(BTUSB_ISOC_RUNNING, &data->flags);
  1432. else
  1433. btusb_submit_isoc_urb(hdev, GFP_NOIO);
  1434. }
  1435. spin_lock_irq(&data->txlock);
  1436. play_deferred(data);
  1437. clear_bit(BTUSB_SUSPENDING, &data->flags);
  1438. spin_unlock_irq(&data->txlock);
  1439. schedule_work(&data->work);
  1440. return 0;
  1441. failed:
  1442. usb_scuttle_anchored_urbs(&data->deferred);
  1443. done:
  1444. spin_lock_irq(&data->txlock);
  1445. clear_bit(BTUSB_SUSPENDING, &data->flags);
  1446. spin_unlock_irq(&data->txlock);
  1447. return err;
  1448. }
  1449. #endif
  1450. static struct usb_driver btusb_driver = {
  1451. .name = "btusb",
  1452. .probe = btusb_probe,
  1453. .disconnect = btusb_disconnect,
  1454. #ifdef CONFIG_PM
  1455. .suspend = btusb_suspend,
  1456. .resume = btusb_resume,
  1457. #endif
  1458. .id_table = btusb_table,
  1459. .supports_autosuspend = 1,
  1460. .disable_hub_initiated_lpm = 1,
  1461. };
  1462. module_usb_driver(btusb_driver);
  1463. module_param(ignore_dga, bool, 0644);
  1464. MODULE_PARM_DESC(ignore_dga, "Ignore devices with id 08fd:0001");
  1465. module_param(ignore_csr, bool, 0644);
  1466. MODULE_PARM_DESC(ignore_csr, "Ignore devices with id 0a12:0001");
  1467. module_param(ignore_sniffer, bool, 0644);
  1468. MODULE_PARM_DESC(ignore_sniffer, "Ignore devices with id 0a12:0002");
  1469. module_param(disable_scofix, bool, 0644);
  1470. MODULE_PARM_DESC(disable_scofix, "Disable fixup of wrong SCO buffer size");
  1471. module_param(force_scofix, bool, 0644);
  1472. MODULE_PARM_DESC(force_scofix, "Force fixup of wrong SCO buffers size");
  1473. module_param(reset, bool, 0644);
  1474. MODULE_PARM_DESC(reset, "Send HCI reset command on initialization");
  1475. MODULE_AUTHOR("Marcel Holtmann <marcel@holtmann.org>");
  1476. MODULE_DESCRIPTION("Generic Bluetooth USB driver ver " VERSION);
  1477. MODULE_VERSION(VERSION);
  1478. MODULE_LICENSE("GPL");