usb.c 38 KB

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  1. /*
  2. * Copyright (c) 2011 Broadcom Corporation
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for any
  5. * purpose with or without fee is hereby granted, provided that the above
  6. * copyright notice and this permission notice appear in all copies.
  7. *
  8. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  9. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  10. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  11. * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  12. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
  13. * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
  14. * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  15. */
  16. #include <linux/kernel.h>
  17. #include <linux/module.h>
  18. #include <linux/firmware.h>
  19. #include <linux/usb.h>
  20. #include <linux/vmalloc.h>
  21. #include <brcmu_utils.h>
  22. #include <brcmu_wifi.h>
  23. #include <dhd_bus.h>
  24. #include <dhd_dbg.h>
  25. #include "usb_rdl.h"
  26. #include "usb.h"
  27. #define IOCTL_RESP_TIMEOUT 2000
  28. #define BRCMF_USB_RESET_GETVER_SPINWAIT 100 /* in unit of ms */
  29. #define BRCMF_USB_RESET_GETVER_LOOP_CNT 10
  30. #define BRCMF_POSTBOOT_ID 0xA123 /* ID to detect if dongle
  31. has boot up */
  32. #define BRCMF_USB_NRXQ 50
  33. #define BRCMF_USB_NTXQ 50
  34. #define CONFIGDESC(usb) (&((usb)->actconfig)->desc)
  35. #define IFPTR(usb, idx) ((usb)->actconfig->interface[(idx)])
  36. #define IFALTS(usb, idx) (IFPTR((usb), (idx))->altsetting[0])
  37. #define IFDESC(usb, idx) IFALTS((usb), (idx)).desc
  38. #define IFEPDESC(usb, idx, ep) (IFALTS((usb), (idx)).endpoint[(ep)]).desc
  39. #define CONTROL_IF 0
  40. #define BULK_IF 0
  41. #define BRCMF_USB_CBCTL_WRITE 0
  42. #define BRCMF_USB_CBCTL_READ 1
  43. #define BRCMF_USB_MAX_PKT_SIZE 1600
  44. #define BRCMF_USB_43143_FW_NAME "brcm/brcmfmac43143.bin"
  45. #define BRCMF_USB_43236_FW_NAME "brcm/brcmfmac43236b.bin"
  46. #define BRCMF_USB_43242_FW_NAME "brcm/brcmfmac43242a.bin"
  47. struct brcmf_usb_image {
  48. struct list_head list;
  49. s8 *fwname;
  50. u8 *image;
  51. int image_len;
  52. };
  53. static struct list_head fw_image_list;
  54. struct intr_transfer_buf {
  55. u32 notification;
  56. u32 reserved;
  57. };
  58. struct brcmf_usbdev_info {
  59. struct brcmf_usbdev bus_pub; /* MUST BE FIRST */
  60. spinlock_t qlock;
  61. struct list_head rx_freeq;
  62. struct list_head rx_postq;
  63. struct list_head tx_freeq;
  64. struct list_head tx_postq;
  65. uint rx_pipe, tx_pipe, intr_pipe, rx_pipe2;
  66. int rx_low_watermark;
  67. int tx_low_watermark;
  68. int tx_high_watermark;
  69. int tx_freecount;
  70. bool tx_flowblock;
  71. struct brcmf_usbreq *tx_reqs;
  72. struct brcmf_usbreq *rx_reqs;
  73. u8 *image; /* buffer for combine fw and nvram */
  74. int image_len;
  75. struct usb_device *usbdev;
  76. struct device *dev;
  77. int ctl_in_pipe, ctl_out_pipe;
  78. struct urb *ctl_urb; /* URB for control endpoint */
  79. struct usb_ctrlrequest ctl_write;
  80. struct usb_ctrlrequest ctl_read;
  81. u32 ctl_urb_actual_length;
  82. int ctl_urb_status;
  83. int ctl_completed;
  84. wait_queue_head_t ioctl_resp_wait;
  85. ulong ctl_op;
  86. struct urb *bulk_urb; /* used for FW download */
  87. struct urb *intr_urb; /* URB for interrupt endpoint */
  88. int intr_size; /* Size of interrupt message */
  89. int interval; /* Interrupt polling interval */
  90. struct intr_transfer_buf intr; /* Data buffer for interrupt endpoint */
  91. };
  92. static void brcmf_usb_rx_refill(struct brcmf_usbdev_info *devinfo,
  93. struct brcmf_usbreq *req);
  94. MODULE_AUTHOR("Broadcom Corporation");
  95. MODULE_DESCRIPTION("Broadcom 802.11n wireless LAN fullmac usb driver.");
  96. MODULE_SUPPORTED_DEVICE("Broadcom 802.11n WLAN fullmac usb cards");
  97. MODULE_LICENSE("Dual BSD/GPL");
  98. static struct brcmf_usbdev *brcmf_usb_get_buspub(struct device *dev)
  99. {
  100. struct brcmf_bus *bus_if = dev_get_drvdata(dev);
  101. return bus_if->bus_priv.usb;
  102. }
  103. static struct brcmf_usbdev_info *brcmf_usb_get_businfo(struct device *dev)
  104. {
  105. return brcmf_usb_get_buspub(dev)->devinfo;
  106. }
  107. static int brcmf_usb_ioctl_resp_wait(struct brcmf_usbdev_info *devinfo)
  108. {
  109. return wait_event_timeout(devinfo->ioctl_resp_wait,
  110. devinfo->ctl_completed,
  111. msecs_to_jiffies(IOCTL_RESP_TIMEOUT));
  112. }
  113. static void brcmf_usb_ioctl_resp_wake(struct brcmf_usbdev_info *devinfo)
  114. {
  115. if (waitqueue_active(&devinfo->ioctl_resp_wait))
  116. wake_up(&devinfo->ioctl_resp_wait);
  117. }
  118. static void
  119. brcmf_usb_ctl_complete(struct brcmf_usbdev_info *devinfo, int type, int status)
  120. {
  121. brcmf_dbg(USB, "Enter, status=%d\n", status);
  122. if (unlikely(devinfo == NULL))
  123. return;
  124. if (type == BRCMF_USB_CBCTL_READ) {
  125. if (status == 0)
  126. devinfo->bus_pub.stats.rx_ctlpkts++;
  127. else
  128. devinfo->bus_pub.stats.rx_ctlerrs++;
  129. } else if (type == BRCMF_USB_CBCTL_WRITE) {
  130. if (status == 0)
  131. devinfo->bus_pub.stats.tx_ctlpkts++;
  132. else
  133. devinfo->bus_pub.stats.tx_ctlerrs++;
  134. }
  135. devinfo->ctl_urb_status = status;
  136. devinfo->ctl_completed = true;
  137. brcmf_usb_ioctl_resp_wake(devinfo);
  138. }
  139. static void
  140. brcmf_usb_ctlread_complete(struct urb *urb)
  141. {
  142. struct brcmf_usbdev_info *devinfo =
  143. (struct brcmf_usbdev_info *)urb->context;
  144. brcmf_dbg(USB, "Enter\n");
  145. devinfo->ctl_urb_actual_length = urb->actual_length;
  146. brcmf_usb_ctl_complete(devinfo, BRCMF_USB_CBCTL_READ,
  147. urb->status);
  148. }
  149. static void
  150. brcmf_usb_ctlwrite_complete(struct urb *urb)
  151. {
  152. struct brcmf_usbdev_info *devinfo =
  153. (struct brcmf_usbdev_info *)urb->context;
  154. brcmf_dbg(USB, "Enter\n");
  155. brcmf_usb_ctl_complete(devinfo, BRCMF_USB_CBCTL_WRITE,
  156. urb->status);
  157. }
  158. static int
  159. brcmf_usb_send_ctl(struct brcmf_usbdev_info *devinfo, u8 *buf, int len)
  160. {
  161. int ret;
  162. u16 size;
  163. brcmf_dbg(USB, "Enter\n");
  164. if (devinfo == NULL || buf == NULL ||
  165. len == 0 || devinfo->ctl_urb == NULL)
  166. return -EINVAL;
  167. size = len;
  168. devinfo->ctl_write.wLength = cpu_to_le16p(&size);
  169. devinfo->ctl_urb->transfer_buffer_length = size;
  170. devinfo->ctl_urb_status = 0;
  171. devinfo->ctl_urb_actual_length = 0;
  172. usb_fill_control_urb(devinfo->ctl_urb,
  173. devinfo->usbdev,
  174. devinfo->ctl_out_pipe,
  175. (unsigned char *) &devinfo->ctl_write,
  176. buf, size,
  177. (usb_complete_t)brcmf_usb_ctlwrite_complete,
  178. devinfo);
  179. ret = usb_submit_urb(devinfo->ctl_urb, GFP_ATOMIC);
  180. if (ret < 0)
  181. brcmf_err("usb_submit_urb failed %d\n", ret);
  182. return ret;
  183. }
  184. static int
  185. brcmf_usb_recv_ctl(struct brcmf_usbdev_info *devinfo, u8 *buf, int len)
  186. {
  187. int ret;
  188. u16 size;
  189. brcmf_dbg(USB, "Enter\n");
  190. if ((devinfo == NULL) || (buf == NULL) || (len == 0)
  191. || (devinfo->ctl_urb == NULL))
  192. return -EINVAL;
  193. size = len;
  194. devinfo->ctl_read.wLength = cpu_to_le16p(&size);
  195. devinfo->ctl_urb->transfer_buffer_length = size;
  196. devinfo->ctl_read.bRequestType = USB_DIR_IN
  197. | USB_TYPE_CLASS | USB_RECIP_INTERFACE;
  198. devinfo->ctl_read.bRequest = 1;
  199. usb_fill_control_urb(devinfo->ctl_urb,
  200. devinfo->usbdev,
  201. devinfo->ctl_in_pipe,
  202. (unsigned char *) &devinfo->ctl_read,
  203. buf, size,
  204. (usb_complete_t)brcmf_usb_ctlread_complete,
  205. devinfo);
  206. ret = usb_submit_urb(devinfo->ctl_urb, GFP_ATOMIC);
  207. if (ret < 0)
  208. brcmf_err("usb_submit_urb failed %d\n", ret);
  209. return ret;
  210. }
  211. static int brcmf_usb_tx_ctlpkt(struct device *dev, u8 *buf, u32 len)
  212. {
  213. int err = 0;
  214. int timeout = 0;
  215. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(dev);
  216. brcmf_dbg(USB, "Enter\n");
  217. if (devinfo->bus_pub.state != BRCMFMAC_USB_STATE_UP)
  218. return -EIO;
  219. if (test_and_set_bit(0, &devinfo->ctl_op))
  220. return -EIO;
  221. devinfo->ctl_completed = false;
  222. err = brcmf_usb_send_ctl(devinfo, buf, len);
  223. if (err) {
  224. brcmf_err("fail %d bytes: %d\n", err, len);
  225. clear_bit(0, &devinfo->ctl_op);
  226. return err;
  227. }
  228. timeout = brcmf_usb_ioctl_resp_wait(devinfo);
  229. clear_bit(0, &devinfo->ctl_op);
  230. if (!timeout) {
  231. brcmf_err("Txctl wait timed out\n");
  232. err = -EIO;
  233. }
  234. return err;
  235. }
  236. static int brcmf_usb_rx_ctlpkt(struct device *dev, u8 *buf, u32 len)
  237. {
  238. int err = 0;
  239. int timeout = 0;
  240. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(dev);
  241. brcmf_dbg(USB, "Enter\n");
  242. if (devinfo->bus_pub.state != BRCMFMAC_USB_STATE_UP)
  243. return -EIO;
  244. if (test_and_set_bit(0, &devinfo->ctl_op))
  245. return -EIO;
  246. devinfo->ctl_completed = false;
  247. err = brcmf_usb_recv_ctl(devinfo, buf, len);
  248. if (err) {
  249. brcmf_err("fail %d bytes: %d\n", err, len);
  250. clear_bit(0, &devinfo->ctl_op);
  251. return err;
  252. }
  253. timeout = brcmf_usb_ioctl_resp_wait(devinfo);
  254. err = devinfo->ctl_urb_status;
  255. clear_bit(0, &devinfo->ctl_op);
  256. if (!timeout) {
  257. brcmf_err("rxctl wait timed out\n");
  258. err = -EIO;
  259. }
  260. if (!err)
  261. return devinfo->ctl_urb_actual_length;
  262. else
  263. return err;
  264. }
  265. static struct brcmf_usbreq *brcmf_usb_deq(struct brcmf_usbdev_info *devinfo,
  266. struct list_head *q, int *counter)
  267. {
  268. unsigned long flags;
  269. struct brcmf_usbreq *req;
  270. spin_lock_irqsave(&devinfo->qlock, flags);
  271. if (list_empty(q)) {
  272. spin_unlock_irqrestore(&devinfo->qlock, flags);
  273. return NULL;
  274. }
  275. req = list_entry(q->next, struct brcmf_usbreq, list);
  276. list_del_init(q->next);
  277. if (counter)
  278. (*counter)--;
  279. spin_unlock_irqrestore(&devinfo->qlock, flags);
  280. return req;
  281. }
  282. static void brcmf_usb_enq(struct brcmf_usbdev_info *devinfo,
  283. struct list_head *q, struct brcmf_usbreq *req,
  284. int *counter)
  285. {
  286. unsigned long flags;
  287. spin_lock_irqsave(&devinfo->qlock, flags);
  288. list_add_tail(&req->list, q);
  289. if (counter)
  290. (*counter)++;
  291. spin_unlock_irqrestore(&devinfo->qlock, flags);
  292. }
  293. static struct brcmf_usbreq *
  294. brcmf_usbdev_qinit(struct list_head *q, int qsize)
  295. {
  296. int i;
  297. struct brcmf_usbreq *req, *reqs;
  298. reqs = kzalloc(sizeof(struct brcmf_usbreq) * qsize, GFP_ATOMIC);
  299. if (reqs == NULL) {
  300. brcmf_err("fail to allocate memory!\n");
  301. return NULL;
  302. }
  303. req = reqs;
  304. for (i = 0; i < qsize; i++) {
  305. req->urb = usb_alloc_urb(0, GFP_ATOMIC);
  306. if (!req->urb)
  307. goto fail;
  308. INIT_LIST_HEAD(&req->list);
  309. list_add_tail(&req->list, q);
  310. req++;
  311. }
  312. return reqs;
  313. fail:
  314. brcmf_err("fail!\n");
  315. while (!list_empty(q)) {
  316. req = list_entry(q->next, struct brcmf_usbreq, list);
  317. if (req && req->urb)
  318. usb_free_urb(req->urb);
  319. list_del(q->next);
  320. }
  321. return NULL;
  322. }
  323. static void brcmf_usb_free_q(struct list_head *q, bool pending)
  324. {
  325. struct brcmf_usbreq *req, *next;
  326. int i = 0;
  327. list_for_each_entry_safe(req, next, q, list) {
  328. if (!req->urb) {
  329. brcmf_err("bad req\n");
  330. break;
  331. }
  332. i++;
  333. if (pending) {
  334. usb_kill_urb(req->urb);
  335. } else {
  336. usb_free_urb(req->urb);
  337. list_del_init(&req->list);
  338. }
  339. }
  340. }
  341. static void brcmf_usb_del_fromq(struct brcmf_usbdev_info *devinfo,
  342. struct brcmf_usbreq *req)
  343. {
  344. unsigned long flags;
  345. spin_lock_irqsave(&devinfo->qlock, flags);
  346. list_del_init(&req->list);
  347. spin_unlock_irqrestore(&devinfo->qlock, flags);
  348. }
  349. static void brcmf_usb_tx_complete(struct urb *urb)
  350. {
  351. struct brcmf_usbreq *req = (struct brcmf_usbreq *)urb->context;
  352. struct brcmf_usbdev_info *devinfo = req->devinfo;
  353. brcmf_dbg(USB, "Enter, urb->status=%d, skb=%p\n", urb->status,
  354. req->skb);
  355. brcmf_usb_del_fromq(devinfo, req);
  356. if (urb->status == 0)
  357. devinfo->bus_pub.bus->dstats.tx_packets++;
  358. else
  359. devinfo->bus_pub.bus->dstats.tx_errors++;
  360. brcmf_txcomplete(devinfo->dev, req->skb, urb->status == 0);
  361. brcmu_pkt_buf_free_skb(req->skb);
  362. req->skb = NULL;
  363. brcmf_usb_enq(devinfo, &devinfo->tx_freeq, req, &devinfo->tx_freecount);
  364. if (devinfo->tx_freecount > devinfo->tx_high_watermark &&
  365. devinfo->tx_flowblock) {
  366. brcmf_txflowblock(devinfo->dev, false);
  367. devinfo->tx_flowblock = false;
  368. }
  369. }
  370. static void brcmf_usb_rx_complete(struct urb *urb)
  371. {
  372. struct brcmf_usbreq *req = (struct brcmf_usbreq *)urb->context;
  373. struct brcmf_usbdev_info *devinfo = req->devinfo;
  374. struct sk_buff *skb;
  375. int ifidx = 0;
  376. brcmf_dbg(USB, "Enter, urb->status=%d\n", urb->status);
  377. brcmf_usb_del_fromq(devinfo, req);
  378. skb = req->skb;
  379. req->skb = NULL;
  380. if (urb->status == 0) {
  381. devinfo->bus_pub.bus->dstats.rx_packets++;
  382. } else {
  383. devinfo->bus_pub.bus->dstats.rx_errors++;
  384. brcmu_pkt_buf_free_skb(skb);
  385. brcmf_usb_enq(devinfo, &devinfo->rx_freeq, req, NULL);
  386. return;
  387. }
  388. if (devinfo->bus_pub.state == BRCMFMAC_USB_STATE_UP) {
  389. skb_put(skb, urb->actual_length);
  390. if (brcmf_proto_hdrpull(devinfo->dev, &ifidx, skb) != 0) {
  391. brcmf_err("rx protocol error\n");
  392. brcmu_pkt_buf_free_skb(skb);
  393. devinfo->bus_pub.bus->dstats.rx_errors++;
  394. } else
  395. brcmf_rx_packet(devinfo->dev, ifidx, skb);
  396. /* zero lenght packets indicate usb "failure". Do not refill */
  397. if (urb->actual_length)
  398. brcmf_usb_rx_refill(devinfo, req);
  399. else
  400. brcmf_usb_enq(devinfo, &devinfo->rx_freeq, req, NULL);
  401. } else {
  402. brcmu_pkt_buf_free_skb(skb);
  403. brcmf_usb_enq(devinfo, &devinfo->rx_freeq, req, NULL);
  404. }
  405. return;
  406. }
  407. static void brcmf_usb_rx_refill(struct brcmf_usbdev_info *devinfo,
  408. struct brcmf_usbreq *req)
  409. {
  410. struct sk_buff *skb;
  411. int ret;
  412. if (!req || !devinfo)
  413. return;
  414. skb = dev_alloc_skb(devinfo->bus_pub.bus_mtu);
  415. if (!skb) {
  416. brcmf_usb_enq(devinfo, &devinfo->rx_freeq, req, NULL);
  417. return;
  418. }
  419. req->skb = skb;
  420. usb_fill_bulk_urb(req->urb, devinfo->usbdev, devinfo->rx_pipe,
  421. skb->data, skb_tailroom(skb), brcmf_usb_rx_complete,
  422. req);
  423. req->devinfo = devinfo;
  424. brcmf_usb_enq(devinfo, &devinfo->rx_postq, req, NULL);
  425. ret = usb_submit_urb(req->urb, GFP_ATOMIC);
  426. if (ret) {
  427. brcmf_usb_del_fromq(devinfo, req);
  428. brcmu_pkt_buf_free_skb(req->skb);
  429. req->skb = NULL;
  430. brcmf_usb_enq(devinfo, &devinfo->rx_freeq, req, NULL);
  431. }
  432. return;
  433. }
  434. static void brcmf_usb_rx_fill_all(struct brcmf_usbdev_info *devinfo)
  435. {
  436. struct brcmf_usbreq *req;
  437. if (devinfo->bus_pub.state != BRCMFMAC_USB_STATE_UP) {
  438. brcmf_err("bus is not up=%d\n", devinfo->bus_pub.state);
  439. return;
  440. }
  441. while ((req = brcmf_usb_deq(devinfo, &devinfo->rx_freeq, NULL)) != NULL)
  442. brcmf_usb_rx_refill(devinfo, req);
  443. }
  444. static void
  445. brcmf_usb_state_change(struct brcmf_usbdev_info *devinfo, int state)
  446. {
  447. struct brcmf_bus *bcmf_bus = devinfo->bus_pub.bus;
  448. int old_state;
  449. brcmf_dbg(USB, "Enter, current state=%d, new state=%d\n",
  450. devinfo->bus_pub.state, state);
  451. if (devinfo->bus_pub.state == state)
  452. return;
  453. old_state = devinfo->bus_pub.state;
  454. devinfo->bus_pub.state = state;
  455. /* update state of upper layer */
  456. if (state == BRCMFMAC_USB_STATE_DOWN) {
  457. brcmf_dbg(USB, "DBUS is down\n");
  458. bcmf_bus->state = BRCMF_BUS_DOWN;
  459. } else if (state == BRCMFMAC_USB_STATE_UP) {
  460. brcmf_dbg(USB, "DBUS is up\n");
  461. bcmf_bus->state = BRCMF_BUS_DATA;
  462. } else {
  463. brcmf_dbg(USB, "DBUS current state=%d\n", state);
  464. }
  465. }
  466. static void
  467. brcmf_usb_intr_complete(struct urb *urb)
  468. {
  469. struct brcmf_usbdev_info *devinfo =
  470. (struct brcmf_usbdev_info *)urb->context;
  471. int err;
  472. brcmf_dbg(USB, "Enter, urb->status=%d\n", urb->status);
  473. if (devinfo == NULL)
  474. return;
  475. if (unlikely(urb->status)) {
  476. if (urb->status == -ENOENT ||
  477. urb->status == -ESHUTDOWN ||
  478. urb->status == -ENODEV) {
  479. brcmf_usb_state_change(devinfo,
  480. BRCMFMAC_USB_STATE_DOWN);
  481. }
  482. }
  483. if (devinfo->bus_pub.state == BRCMFMAC_USB_STATE_DOWN) {
  484. brcmf_err("intr cb when DBUS down, ignoring\n");
  485. return;
  486. }
  487. if (devinfo->bus_pub.state == BRCMFMAC_USB_STATE_UP) {
  488. err = usb_submit_urb(devinfo->intr_urb, GFP_ATOMIC);
  489. if (err)
  490. brcmf_err("usb_submit_urb, err=%d\n", err);
  491. }
  492. }
  493. static int brcmf_usb_tx(struct device *dev, struct sk_buff *skb)
  494. {
  495. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(dev);
  496. struct brcmf_usbreq *req;
  497. int ret;
  498. brcmf_dbg(USB, "Enter, skb=%p\n", skb);
  499. if (devinfo->bus_pub.state != BRCMFMAC_USB_STATE_UP)
  500. return -EIO;
  501. req = brcmf_usb_deq(devinfo, &devinfo->tx_freeq,
  502. &devinfo->tx_freecount);
  503. if (!req) {
  504. brcmu_pkt_buf_free_skb(skb);
  505. brcmf_err("no req to send\n");
  506. return -ENOMEM;
  507. }
  508. req->skb = skb;
  509. req->devinfo = devinfo;
  510. usb_fill_bulk_urb(req->urb, devinfo->usbdev, devinfo->tx_pipe,
  511. skb->data, skb->len, brcmf_usb_tx_complete, req);
  512. req->urb->transfer_flags |= URB_ZERO_PACKET;
  513. brcmf_usb_enq(devinfo, &devinfo->tx_postq, req, NULL);
  514. ret = usb_submit_urb(req->urb, GFP_ATOMIC);
  515. if (ret) {
  516. brcmf_err("brcmf_usb_tx usb_submit_urb FAILED\n");
  517. brcmf_usb_del_fromq(devinfo, req);
  518. brcmu_pkt_buf_free_skb(req->skb);
  519. req->skb = NULL;
  520. brcmf_usb_enq(devinfo, &devinfo->tx_freeq, req,
  521. &devinfo->tx_freecount);
  522. } else {
  523. if (devinfo->tx_freecount < devinfo->tx_low_watermark &&
  524. !devinfo->tx_flowblock) {
  525. brcmf_txflowblock(dev, true);
  526. devinfo->tx_flowblock = true;
  527. }
  528. }
  529. return ret;
  530. }
  531. static int brcmf_usb_up(struct device *dev)
  532. {
  533. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(dev);
  534. u16 ifnum;
  535. int ret;
  536. brcmf_dbg(USB, "Enter\n");
  537. if (devinfo->bus_pub.state == BRCMFMAC_USB_STATE_UP)
  538. return 0;
  539. /* Success, indicate devinfo is fully up */
  540. brcmf_usb_state_change(devinfo, BRCMFMAC_USB_STATE_UP);
  541. if (devinfo->intr_urb) {
  542. usb_fill_int_urb(devinfo->intr_urb, devinfo->usbdev,
  543. devinfo->intr_pipe,
  544. &devinfo->intr,
  545. devinfo->intr_size,
  546. (usb_complete_t)brcmf_usb_intr_complete,
  547. devinfo,
  548. devinfo->interval);
  549. ret = usb_submit_urb(devinfo->intr_urb, GFP_ATOMIC);
  550. if (ret) {
  551. brcmf_err("USB_SUBMIT_URB failed with status %d\n",
  552. ret);
  553. return -EINVAL;
  554. }
  555. }
  556. if (devinfo->ctl_urb) {
  557. devinfo->ctl_in_pipe = usb_rcvctrlpipe(devinfo->usbdev, 0);
  558. devinfo->ctl_out_pipe = usb_sndctrlpipe(devinfo->usbdev, 0);
  559. ifnum = IFDESC(devinfo->usbdev, CONTROL_IF).bInterfaceNumber;
  560. /* CTL Write */
  561. devinfo->ctl_write.bRequestType =
  562. USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_INTERFACE;
  563. devinfo->ctl_write.bRequest = 0;
  564. devinfo->ctl_write.wValue = cpu_to_le16(0);
  565. devinfo->ctl_write.wIndex = cpu_to_le16p(&ifnum);
  566. /* CTL Read */
  567. devinfo->ctl_read.bRequestType =
  568. USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE;
  569. devinfo->ctl_read.bRequest = 1;
  570. devinfo->ctl_read.wValue = cpu_to_le16(0);
  571. devinfo->ctl_read.wIndex = cpu_to_le16p(&ifnum);
  572. }
  573. brcmf_usb_rx_fill_all(devinfo);
  574. return 0;
  575. }
  576. static void brcmf_usb_down(struct device *dev)
  577. {
  578. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(dev);
  579. brcmf_dbg(USB, "Enter\n");
  580. if (devinfo == NULL)
  581. return;
  582. if (devinfo->bus_pub.state == BRCMFMAC_USB_STATE_DOWN)
  583. return;
  584. brcmf_usb_state_change(devinfo, BRCMFMAC_USB_STATE_DOWN);
  585. if (devinfo->intr_urb)
  586. usb_kill_urb(devinfo->intr_urb);
  587. if (devinfo->ctl_urb)
  588. usb_kill_urb(devinfo->ctl_urb);
  589. if (devinfo->bulk_urb)
  590. usb_kill_urb(devinfo->bulk_urb);
  591. brcmf_usb_free_q(&devinfo->tx_postq, true);
  592. brcmf_usb_free_q(&devinfo->rx_postq, true);
  593. }
  594. static void
  595. brcmf_usb_sync_complete(struct urb *urb)
  596. {
  597. struct brcmf_usbdev_info *devinfo =
  598. (struct brcmf_usbdev_info *)urb->context;
  599. devinfo->ctl_completed = true;
  600. brcmf_usb_ioctl_resp_wake(devinfo);
  601. }
  602. static bool brcmf_usb_dl_cmd(struct brcmf_usbdev_info *devinfo, u8 cmd,
  603. void *buffer, int buflen)
  604. {
  605. int ret = 0;
  606. char *tmpbuf;
  607. u16 size;
  608. if ((!devinfo) || (devinfo->ctl_urb == NULL))
  609. return false;
  610. tmpbuf = kmalloc(buflen, GFP_ATOMIC);
  611. if (!tmpbuf)
  612. return false;
  613. size = buflen;
  614. devinfo->ctl_urb->transfer_buffer_length = size;
  615. devinfo->ctl_read.wLength = cpu_to_le16p(&size);
  616. devinfo->ctl_read.bRequestType = USB_DIR_IN | USB_TYPE_VENDOR |
  617. USB_RECIP_INTERFACE;
  618. devinfo->ctl_read.bRequest = cmd;
  619. usb_fill_control_urb(devinfo->ctl_urb,
  620. devinfo->usbdev,
  621. usb_rcvctrlpipe(devinfo->usbdev, 0),
  622. (unsigned char *) &devinfo->ctl_read,
  623. (void *) tmpbuf, size,
  624. (usb_complete_t)brcmf_usb_sync_complete, devinfo);
  625. devinfo->ctl_completed = false;
  626. ret = usb_submit_urb(devinfo->ctl_urb, GFP_ATOMIC);
  627. if (ret < 0) {
  628. brcmf_err("usb_submit_urb failed %d\n", ret);
  629. kfree(tmpbuf);
  630. return false;
  631. }
  632. ret = brcmf_usb_ioctl_resp_wait(devinfo);
  633. memcpy(buffer, tmpbuf, buflen);
  634. kfree(tmpbuf);
  635. return ret;
  636. }
  637. static bool
  638. brcmf_usb_dlneeded(struct brcmf_usbdev_info *devinfo)
  639. {
  640. struct bootrom_id_le id;
  641. u32 chipid, chiprev;
  642. brcmf_dbg(USB, "Enter\n");
  643. if (devinfo == NULL)
  644. return false;
  645. /* Check if firmware downloaded already by querying runtime ID */
  646. id.chip = cpu_to_le32(0xDEAD);
  647. brcmf_usb_dl_cmd(devinfo, DL_GETVER, &id, sizeof(id));
  648. chipid = le32_to_cpu(id.chip);
  649. chiprev = le32_to_cpu(id.chiprev);
  650. if ((chipid & 0x4300) == 0x4300)
  651. brcmf_dbg(USB, "chip %x rev 0x%x\n", chipid, chiprev);
  652. else
  653. brcmf_dbg(USB, "chip %d rev 0x%x\n", chipid, chiprev);
  654. if (chipid == BRCMF_POSTBOOT_ID) {
  655. brcmf_dbg(USB, "firmware already downloaded\n");
  656. brcmf_usb_dl_cmd(devinfo, DL_RESETCFG, &id, sizeof(id));
  657. return false;
  658. } else {
  659. devinfo->bus_pub.devid = chipid;
  660. devinfo->bus_pub.chiprev = chiprev;
  661. }
  662. return true;
  663. }
  664. static int
  665. brcmf_usb_resetcfg(struct brcmf_usbdev_info *devinfo)
  666. {
  667. struct bootrom_id_le id;
  668. u32 loop_cnt;
  669. brcmf_dbg(USB, "Enter\n");
  670. loop_cnt = 0;
  671. do {
  672. mdelay(BRCMF_USB_RESET_GETVER_SPINWAIT);
  673. loop_cnt++;
  674. id.chip = cpu_to_le32(0xDEAD); /* Get the ID */
  675. brcmf_usb_dl_cmd(devinfo, DL_GETVER, &id, sizeof(id));
  676. if (id.chip == cpu_to_le32(BRCMF_POSTBOOT_ID))
  677. break;
  678. } while (loop_cnt < BRCMF_USB_RESET_GETVER_LOOP_CNT);
  679. if (id.chip == cpu_to_le32(BRCMF_POSTBOOT_ID)) {
  680. brcmf_dbg(USB, "postboot chip 0x%x/rev 0x%x\n",
  681. le32_to_cpu(id.chip), le32_to_cpu(id.chiprev));
  682. brcmf_usb_dl_cmd(devinfo, DL_RESETCFG, &id, sizeof(id));
  683. return 0;
  684. } else {
  685. brcmf_err("Cannot talk to Dongle. Firmware is not UP, %d ms\n",
  686. BRCMF_USB_RESET_GETVER_SPINWAIT * loop_cnt);
  687. return -EINVAL;
  688. }
  689. }
  690. static int
  691. brcmf_usb_dl_send_bulk(struct brcmf_usbdev_info *devinfo, void *buffer, int len)
  692. {
  693. int ret;
  694. if ((devinfo == NULL) || (devinfo->bulk_urb == NULL))
  695. return -EINVAL;
  696. /* Prepare the URB */
  697. usb_fill_bulk_urb(devinfo->bulk_urb, devinfo->usbdev,
  698. devinfo->tx_pipe, buffer, len,
  699. (usb_complete_t)brcmf_usb_sync_complete, devinfo);
  700. devinfo->bulk_urb->transfer_flags |= URB_ZERO_PACKET;
  701. devinfo->ctl_completed = false;
  702. ret = usb_submit_urb(devinfo->bulk_urb, GFP_ATOMIC);
  703. if (ret) {
  704. brcmf_err("usb_submit_urb failed %d\n", ret);
  705. return ret;
  706. }
  707. ret = brcmf_usb_ioctl_resp_wait(devinfo);
  708. return (ret == 0);
  709. }
  710. static int
  711. brcmf_usb_dl_writeimage(struct brcmf_usbdev_info *devinfo, u8 *fw, int fwlen)
  712. {
  713. unsigned int sendlen, sent, dllen;
  714. char *bulkchunk = NULL, *dlpos;
  715. struct rdl_state_le state;
  716. u32 rdlstate, rdlbytes;
  717. int err = 0;
  718. brcmf_dbg(USB, "Enter, fw %p, len %d\n", fw, fwlen);
  719. bulkchunk = kmalloc(RDL_CHUNK, GFP_ATOMIC);
  720. if (bulkchunk == NULL) {
  721. err = -ENOMEM;
  722. goto fail;
  723. }
  724. /* 1) Prepare USB boot loader for runtime image */
  725. brcmf_usb_dl_cmd(devinfo, DL_START, &state,
  726. sizeof(struct rdl_state_le));
  727. rdlstate = le32_to_cpu(state.state);
  728. rdlbytes = le32_to_cpu(state.bytes);
  729. /* 2) Check we are in the Waiting state */
  730. if (rdlstate != DL_WAITING) {
  731. brcmf_err("Failed to DL_START\n");
  732. err = -EINVAL;
  733. goto fail;
  734. }
  735. sent = 0;
  736. dlpos = fw;
  737. dllen = fwlen;
  738. /* Get chip id and rev */
  739. while (rdlbytes != dllen) {
  740. /* Wait until the usb device reports it received all
  741. * the bytes we sent */
  742. if ((rdlbytes == sent) && (rdlbytes != dllen)) {
  743. if ((dllen-sent) < RDL_CHUNK)
  744. sendlen = dllen-sent;
  745. else
  746. sendlen = RDL_CHUNK;
  747. /* simply avoid having to send a ZLP by ensuring we
  748. * never have an even
  749. * multiple of 64
  750. */
  751. if (!(sendlen % 64))
  752. sendlen -= 4;
  753. /* send data */
  754. memcpy(bulkchunk, dlpos, sendlen);
  755. if (brcmf_usb_dl_send_bulk(devinfo, bulkchunk,
  756. sendlen)) {
  757. brcmf_err("send_bulk failed\n");
  758. err = -EINVAL;
  759. goto fail;
  760. }
  761. dlpos += sendlen;
  762. sent += sendlen;
  763. }
  764. if (!brcmf_usb_dl_cmd(devinfo, DL_GETSTATE, &state,
  765. sizeof(struct rdl_state_le))) {
  766. brcmf_err("DL_GETSTATE Failed xxxx\n");
  767. err = -EINVAL;
  768. goto fail;
  769. }
  770. rdlstate = le32_to_cpu(state.state);
  771. rdlbytes = le32_to_cpu(state.bytes);
  772. /* restart if an error is reported */
  773. if (rdlstate == DL_BAD_HDR || rdlstate == DL_BAD_CRC) {
  774. brcmf_err("Bad Hdr or Bad CRC state %d\n",
  775. rdlstate);
  776. err = -EINVAL;
  777. goto fail;
  778. }
  779. }
  780. fail:
  781. kfree(bulkchunk);
  782. brcmf_dbg(USB, "Exit, err=%d\n", err);
  783. return err;
  784. }
  785. static int brcmf_usb_dlstart(struct brcmf_usbdev_info *devinfo, u8 *fw, int len)
  786. {
  787. int err;
  788. brcmf_dbg(USB, "Enter\n");
  789. if (devinfo == NULL)
  790. return -EINVAL;
  791. if (devinfo->bus_pub.devid == 0xDEAD)
  792. return -EINVAL;
  793. err = brcmf_usb_dl_writeimage(devinfo, fw, len);
  794. if (err == 0)
  795. devinfo->bus_pub.state = BRCMFMAC_USB_STATE_DL_DONE;
  796. else
  797. devinfo->bus_pub.state = BRCMFMAC_USB_STATE_DL_FAIL;
  798. brcmf_dbg(USB, "Exit, err=%d\n", err);
  799. return err;
  800. }
  801. static int brcmf_usb_dlrun(struct brcmf_usbdev_info *devinfo)
  802. {
  803. struct rdl_state_le state;
  804. brcmf_dbg(USB, "Enter\n");
  805. if (!devinfo)
  806. return -EINVAL;
  807. if (devinfo->bus_pub.devid == 0xDEAD)
  808. return -EINVAL;
  809. /* Check we are runnable */
  810. brcmf_usb_dl_cmd(devinfo, DL_GETSTATE, &state,
  811. sizeof(struct rdl_state_le));
  812. /* Start the image */
  813. if (state.state == cpu_to_le32(DL_RUNNABLE)) {
  814. if (!brcmf_usb_dl_cmd(devinfo, DL_GO, &state,
  815. sizeof(struct rdl_state_le)))
  816. return -ENODEV;
  817. if (brcmf_usb_resetcfg(devinfo))
  818. return -ENODEV;
  819. /* The Dongle may go for re-enumeration. */
  820. } else {
  821. brcmf_err("Dongle not runnable\n");
  822. return -EINVAL;
  823. }
  824. brcmf_dbg(USB, "Exit\n");
  825. return 0;
  826. }
  827. static bool brcmf_usb_chip_support(int chipid, int chiprev)
  828. {
  829. switch(chipid) {
  830. case 43143:
  831. return true;
  832. case 43235:
  833. case 43236:
  834. case 43238:
  835. return (chiprev == 3);
  836. case 43242:
  837. return true;
  838. default:
  839. break;
  840. }
  841. return false;
  842. }
  843. static int
  844. brcmf_usb_fw_download(struct brcmf_usbdev_info *devinfo)
  845. {
  846. int devid, chiprev;
  847. int err;
  848. brcmf_dbg(USB, "Enter\n");
  849. if (devinfo == NULL)
  850. return -ENODEV;
  851. devid = devinfo->bus_pub.devid;
  852. chiprev = devinfo->bus_pub.chiprev;
  853. if (!brcmf_usb_chip_support(devid, chiprev)) {
  854. brcmf_err("unsupported chip %d rev %d\n",
  855. devid, chiprev);
  856. return -EINVAL;
  857. }
  858. if (!devinfo->image) {
  859. brcmf_err("No firmware!\n");
  860. return -ENOENT;
  861. }
  862. err = brcmf_usb_dlstart(devinfo,
  863. devinfo->image, devinfo->image_len);
  864. if (err == 0)
  865. err = brcmf_usb_dlrun(devinfo);
  866. return err;
  867. }
  868. static void brcmf_usb_detach(struct brcmf_usbdev_info *devinfo)
  869. {
  870. brcmf_dbg(USB, "Enter, devinfo %p\n", devinfo);
  871. /* free the URBS */
  872. brcmf_usb_free_q(&devinfo->rx_freeq, false);
  873. brcmf_usb_free_q(&devinfo->tx_freeq, false);
  874. usb_free_urb(devinfo->intr_urb);
  875. usb_free_urb(devinfo->ctl_urb);
  876. usb_free_urb(devinfo->bulk_urb);
  877. kfree(devinfo->tx_reqs);
  878. kfree(devinfo->rx_reqs);
  879. }
  880. #define TRX_MAGIC 0x30524448 /* "HDR0" */
  881. #define TRX_VERSION 1 /* Version 1 */
  882. #define TRX_MAX_LEN 0x3B0000 /* Max length */
  883. #define TRX_NO_HEADER 1 /* Do not write TRX header */
  884. #define TRX_MAX_OFFSET 3 /* Max number of individual files */
  885. #define TRX_UNCOMP_IMAGE 0x20 /* Trx contains uncompressed image */
  886. struct trx_header_le {
  887. __le32 magic; /* "HDR0" */
  888. __le32 len; /* Length of file including header */
  889. __le32 crc32; /* CRC from flag_version to end of file */
  890. __le32 flag_version; /* 0:15 flags, 16:31 version */
  891. __le32 offsets[TRX_MAX_OFFSET]; /* Offsets of partitions from start of
  892. * header */
  893. };
  894. static int check_file(const u8 *headers)
  895. {
  896. struct trx_header_le *trx;
  897. int actual_len = -1;
  898. brcmf_dbg(USB, "Enter\n");
  899. /* Extract trx header */
  900. trx = (struct trx_header_le *) headers;
  901. if (trx->magic != cpu_to_le32(TRX_MAGIC))
  902. return -1;
  903. headers += sizeof(struct trx_header_le);
  904. if (le32_to_cpu(trx->flag_version) & TRX_UNCOMP_IMAGE) {
  905. actual_len = le32_to_cpu(trx->offsets[TRX_OFFSETS_DLFWLEN_IDX]);
  906. return actual_len + sizeof(struct trx_header_le);
  907. }
  908. return -1;
  909. }
  910. static int brcmf_usb_get_fw(struct brcmf_usbdev_info *devinfo)
  911. {
  912. s8 *fwname;
  913. const struct firmware *fw;
  914. struct brcmf_usb_image *fw_image;
  915. int err;
  916. brcmf_dbg(USB, "Enter\n");
  917. switch (devinfo->bus_pub.devid) {
  918. case 43143:
  919. fwname = BRCMF_USB_43143_FW_NAME;
  920. break;
  921. case 43235:
  922. case 43236:
  923. case 43238:
  924. fwname = BRCMF_USB_43236_FW_NAME;
  925. break;
  926. case 43242:
  927. fwname = BRCMF_USB_43242_FW_NAME;
  928. break;
  929. default:
  930. return -EINVAL;
  931. break;
  932. }
  933. brcmf_dbg(USB, "Loading FW %s\n", fwname);
  934. list_for_each_entry(fw_image, &fw_image_list, list) {
  935. if (fw_image->fwname == fwname) {
  936. devinfo->image = fw_image->image;
  937. devinfo->image_len = fw_image->image_len;
  938. return 0;
  939. }
  940. }
  941. /* fw image not yet loaded. Load it now and add to list */
  942. err = request_firmware(&fw, fwname, devinfo->dev);
  943. if (!fw) {
  944. brcmf_err("fail to request firmware %s\n", fwname);
  945. return err;
  946. }
  947. if (check_file(fw->data) < 0) {
  948. brcmf_err("invalid firmware %s\n", fwname);
  949. return -EINVAL;
  950. }
  951. fw_image = kzalloc(sizeof(*fw_image), GFP_ATOMIC);
  952. if (!fw_image)
  953. return -ENOMEM;
  954. INIT_LIST_HEAD(&fw_image->list);
  955. list_add_tail(&fw_image->list, &fw_image_list);
  956. fw_image->fwname = fwname;
  957. fw_image->image = vmalloc(fw->size);
  958. if (!fw_image->image)
  959. return -ENOMEM;
  960. memcpy(fw_image->image, fw->data, fw->size);
  961. fw_image->image_len = fw->size;
  962. release_firmware(fw);
  963. devinfo->image = fw_image->image;
  964. devinfo->image_len = fw_image->image_len;
  965. return 0;
  966. }
  967. static
  968. struct brcmf_usbdev *brcmf_usb_attach(struct brcmf_usbdev_info *devinfo,
  969. int nrxq, int ntxq)
  970. {
  971. brcmf_dbg(USB, "Enter\n");
  972. devinfo->bus_pub.nrxq = nrxq;
  973. devinfo->rx_low_watermark = nrxq / 2;
  974. devinfo->bus_pub.devinfo = devinfo;
  975. devinfo->bus_pub.ntxq = ntxq;
  976. devinfo->bus_pub.state = BRCMFMAC_USB_STATE_DOWN;
  977. /* flow control when too many tx urbs posted */
  978. devinfo->tx_low_watermark = ntxq / 4;
  979. devinfo->tx_high_watermark = devinfo->tx_low_watermark * 3;
  980. devinfo->bus_pub.bus_mtu = BRCMF_USB_MAX_PKT_SIZE;
  981. /* Initialize other structure content */
  982. init_waitqueue_head(&devinfo->ioctl_resp_wait);
  983. /* Initialize the spinlocks */
  984. spin_lock_init(&devinfo->qlock);
  985. INIT_LIST_HEAD(&devinfo->rx_freeq);
  986. INIT_LIST_HEAD(&devinfo->rx_postq);
  987. INIT_LIST_HEAD(&devinfo->tx_freeq);
  988. INIT_LIST_HEAD(&devinfo->tx_postq);
  989. devinfo->tx_flowblock = false;
  990. devinfo->rx_reqs = brcmf_usbdev_qinit(&devinfo->rx_freeq, nrxq);
  991. if (!devinfo->rx_reqs)
  992. goto error;
  993. devinfo->tx_reqs = brcmf_usbdev_qinit(&devinfo->tx_freeq, ntxq);
  994. if (!devinfo->tx_reqs)
  995. goto error;
  996. devinfo->tx_freecount = ntxq;
  997. devinfo->intr_urb = usb_alloc_urb(0, GFP_ATOMIC);
  998. if (!devinfo->intr_urb) {
  999. brcmf_err("usb_alloc_urb (intr) failed\n");
  1000. goto error;
  1001. }
  1002. devinfo->ctl_urb = usb_alloc_urb(0, GFP_ATOMIC);
  1003. if (!devinfo->ctl_urb) {
  1004. brcmf_err("usb_alloc_urb (ctl) failed\n");
  1005. goto error;
  1006. }
  1007. devinfo->bulk_urb = usb_alloc_urb(0, GFP_ATOMIC);
  1008. if (!devinfo->bulk_urb) {
  1009. brcmf_err("usb_alloc_urb (bulk) failed\n");
  1010. goto error;
  1011. }
  1012. if (!brcmf_usb_dlneeded(devinfo))
  1013. return &devinfo->bus_pub;
  1014. brcmf_dbg(USB, "Start fw downloading\n");
  1015. if (brcmf_usb_get_fw(devinfo))
  1016. goto error;
  1017. if (brcmf_usb_fw_download(devinfo))
  1018. goto error;
  1019. return &devinfo->bus_pub;
  1020. error:
  1021. brcmf_err("failed!\n");
  1022. brcmf_usb_detach(devinfo);
  1023. return NULL;
  1024. }
  1025. static struct brcmf_bus_ops brcmf_usb_bus_ops = {
  1026. .txdata = brcmf_usb_tx,
  1027. .init = brcmf_usb_up,
  1028. .stop = brcmf_usb_down,
  1029. .txctl = brcmf_usb_tx_ctlpkt,
  1030. .rxctl = brcmf_usb_rx_ctlpkt,
  1031. };
  1032. static int brcmf_usb_probe_cb(struct brcmf_usbdev_info *devinfo)
  1033. {
  1034. struct brcmf_bus *bus = NULL;
  1035. struct brcmf_usbdev *bus_pub = NULL;
  1036. int ret;
  1037. struct device *dev = devinfo->dev;
  1038. brcmf_dbg(USB, "Enter\n");
  1039. bus_pub = brcmf_usb_attach(devinfo, BRCMF_USB_NRXQ, BRCMF_USB_NTXQ);
  1040. if (!bus_pub)
  1041. return -ENODEV;
  1042. bus = kzalloc(sizeof(struct brcmf_bus), GFP_ATOMIC);
  1043. if (!bus) {
  1044. ret = -ENOMEM;
  1045. goto fail;
  1046. }
  1047. bus->dev = dev;
  1048. bus_pub->bus = bus;
  1049. bus->bus_priv.usb = bus_pub;
  1050. dev_set_drvdata(dev, bus);
  1051. bus->ops = &brcmf_usb_bus_ops;
  1052. /* Attach to the common driver interface */
  1053. ret = brcmf_attach(0, dev);
  1054. if (ret) {
  1055. brcmf_err("brcmf_attach failed\n");
  1056. goto fail;
  1057. }
  1058. ret = brcmf_bus_start(dev);
  1059. if (ret) {
  1060. brcmf_err("dongle is not responding\n");
  1061. brcmf_detach(dev);
  1062. goto fail;
  1063. }
  1064. return 0;
  1065. fail:
  1066. /* Release resources in reverse order */
  1067. kfree(bus);
  1068. brcmf_usb_detach(devinfo);
  1069. return ret;
  1070. }
  1071. static void
  1072. brcmf_usb_disconnect_cb(struct brcmf_usbdev_info *devinfo)
  1073. {
  1074. if (!devinfo)
  1075. return;
  1076. brcmf_dbg(USB, "Enter, bus_pub %p\n", devinfo);
  1077. brcmf_detach(devinfo->dev);
  1078. kfree(devinfo->bus_pub.bus);
  1079. brcmf_usb_detach(devinfo);
  1080. }
  1081. static int
  1082. brcmf_usb_probe(struct usb_interface *intf, const struct usb_device_id *id)
  1083. {
  1084. int ep;
  1085. struct usb_endpoint_descriptor *endpoint;
  1086. int ret = 0;
  1087. struct usb_device *usb = interface_to_usbdev(intf);
  1088. int num_of_eps;
  1089. u8 endpoint_num;
  1090. struct brcmf_usbdev_info *devinfo;
  1091. brcmf_dbg(USB, "Enter\n");
  1092. devinfo = kzalloc(sizeof(*devinfo), GFP_ATOMIC);
  1093. if (devinfo == NULL)
  1094. return -ENOMEM;
  1095. devinfo->usbdev = usb;
  1096. devinfo->dev = &usb->dev;
  1097. usb_set_intfdata(intf, devinfo);
  1098. /* Check that the device supports only one configuration */
  1099. if (usb->descriptor.bNumConfigurations != 1) {
  1100. ret = -1;
  1101. goto fail;
  1102. }
  1103. if (usb->descriptor.bDeviceClass != USB_CLASS_VENDOR_SPEC) {
  1104. ret = -1;
  1105. goto fail;
  1106. }
  1107. /*
  1108. * Only the BDC interface configuration is supported:
  1109. * Device class: USB_CLASS_VENDOR_SPEC
  1110. * if0 class: USB_CLASS_VENDOR_SPEC
  1111. * if0/ep0: control
  1112. * if0/ep1: bulk in
  1113. * if0/ep2: bulk out (ok if swapped with bulk in)
  1114. */
  1115. if (CONFIGDESC(usb)->bNumInterfaces != 1) {
  1116. ret = -1;
  1117. goto fail;
  1118. }
  1119. /* Check interface */
  1120. if (IFDESC(usb, CONTROL_IF).bInterfaceClass != USB_CLASS_VENDOR_SPEC ||
  1121. IFDESC(usb, CONTROL_IF).bInterfaceSubClass != 2 ||
  1122. IFDESC(usb, CONTROL_IF).bInterfaceProtocol != 0xff) {
  1123. brcmf_err("invalid control interface: class %d, subclass %d, proto %d\n",
  1124. IFDESC(usb, CONTROL_IF).bInterfaceClass,
  1125. IFDESC(usb, CONTROL_IF).bInterfaceSubClass,
  1126. IFDESC(usb, CONTROL_IF).bInterfaceProtocol);
  1127. ret = -1;
  1128. goto fail;
  1129. }
  1130. /* Check control endpoint */
  1131. endpoint = &IFEPDESC(usb, CONTROL_IF, 0);
  1132. if ((endpoint->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
  1133. != USB_ENDPOINT_XFER_INT) {
  1134. brcmf_err("invalid control endpoint %d\n",
  1135. endpoint->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK);
  1136. ret = -1;
  1137. goto fail;
  1138. }
  1139. endpoint_num = endpoint->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK;
  1140. devinfo->intr_pipe = usb_rcvintpipe(usb, endpoint_num);
  1141. devinfo->rx_pipe = 0;
  1142. devinfo->rx_pipe2 = 0;
  1143. devinfo->tx_pipe = 0;
  1144. num_of_eps = IFDESC(usb, BULK_IF).bNumEndpoints - 1;
  1145. /* Check data endpoints and get pipes */
  1146. for (ep = 1; ep <= num_of_eps; ep++) {
  1147. endpoint = &IFEPDESC(usb, BULK_IF, ep);
  1148. if ((endpoint->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) !=
  1149. USB_ENDPOINT_XFER_BULK) {
  1150. brcmf_err("invalid data endpoint %d\n", ep);
  1151. ret = -1;
  1152. goto fail;
  1153. }
  1154. endpoint_num = endpoint->bEndpointAddress &
  1155. USB_ENDPOINT_NUMBER_MASK;
  1156. if ((endpoint->bEndpointAddress & USB_ENDPOINT_DIR_MASK)
  1157. == USB_DIR_IN) {
  1158. if (!devinfo->rx_pipe) {
  1159. devinfo->rx_pipe =
  1160. usb_rcvbulkpipe(usb, endpoint_num);
  1161. } else {
  1162. devinfo->rx_pipe2 =
  1163. usb_rcvbulkpipe(usb, endpoint_num);
  1164. }
  1165. } else {
  1166. devinfo->tx_pipe = usb_sndbulkpipe(usb, endpoint_num);
  1167. }
  1168. }
  1169. /* Allocate interrupt URB and data buffer */
  1170. /* RNDIS says 8-byte intr, our old drivers used 4-byte */
  1171. if (IFEPDESC(usb, CONTROL_IF, 0).wMaxPacketSize == cpu_to_le16(16))
  1172. devinfo->intr_size = 8;
  1173. else
  1174. devinfo->intr_size = 4;
  1175. devinfo->interval = IFEPDESC(usb, CONTROL_IF, 0).bInterval;
  1176. if (usb->speed == USB_SPEED_HIGH)
  1177. brcmf_dbg(USB, "Broadcom high speed USB wireless device detected\n");
  1178. else
  1179. brcmf_dbg(USB, "Broadcom full speed USB wireless device detected\n");
  1180. ret = brcmf_usb_probe_cb(devinfo);
  1181. if (ret)
  1182. goto fail;
  1183. /* Success */
  1184. return 0;
  1185. fail:
  1186. brcmf_err("failed with errno %d\n", ret);
  1187. kfree(devinfo);
  1188. usb_set_intfdata(intf, NULL);
  1189. return ret;
  1190. }
  1191. static void
  1192. brcmf_usb_disconnect(struct usb_interface *intf)
  1193. {
  1194. struct brcmf_usbdev_info *devinfo;
  1195. brcmf_dbg(USB, "Enter\n");
  1196. devinfo = (struct brcmf_usbdev_info *)usb_get_intfdata(intf);
  1197. brcmf_usb_disconnect_cb(devinfo);
  1198. kfree(devinfo);
  1199. brcmf_dbg(USB, "Exit\n");
  1200. }
  1201. /*
  1202. * only need to signal the bus being down and update the state.
  1203. */
  1204. static int brcmf_usb_suspend(struct usb_interface *intf, pm_message_t state)
  1205. {
  1206. struct usb_device *usb = interface_to_usbdev(intf);
  1207. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(&usb->dev);
  1208. brcmf_dbg(USB, "Enter\n");
  1209. devinfo->bus_pub.state = BRCMFMAC_USB_STATE_SLEEP;
  1210. brcmf_detach(&usb->dev);
  1211. return 0;
  1212. }
  1213. /*
  1214. * (re-) start the bus.
  1215. */
  1216. static int brcmf_usb_resume(struct usb_interface *intf)
  1217. {
  1218. struct usb_device *usb = interface_to_usbdev(intf);
  1219. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(&usb->dev);
  1220. brcmf_dbg(USB, "Enter\n");
  1221. if (!brcmf_attach(0, devinfo->dev))
  1222. return brcmf_bus_start(&usb->dev);
  1223. return 0;
  1224. }
  1225. static int brcmf_usb_reset_resume(struct usb_interface *intf)
  1226. {
  1227. struct usb_device *usb = interface_to_usbdev(intf);
  1228. struct brcmf_usbdev_info *devinfo = brcmf_usb_get_businfo(&usb->dev);
  1229. brcmf_dbg(USB, "Enter\n");
  1230. if (!brcmf_usb_fw_download(devinfo))
  1231. return brcmf_usb_resume(intf);
  1232. return -EIO;
  1233. }
  1234. #define BRCMF_USB_VENDOR_ID_BROADCOM 0x0a5c
  1235. #define BRCMF_USB_DEVICE_ID_43143 0xbd1e
  1236. #define BRCMF_USB_DEVICE_ID_43236 0xbd17
  1237. #define BRCMF_USB_DEVICE_ID_43242 0xbd1f
  1238. #define BRCMF_USB_DEVICE_ID_BCMFW 0x0bdc
  1239. static struct usb_device_id brcmf_usb_devid_table[] = {
  1240. { USB_DEVICE(BRCMF_USB_VENDOR_ID_BROADCOM, BRCMF_USB_DEVICE_ID_43143) },
  1241. { USB_DEVICE(BRCMF_USB_VENDOR_ID_BROADCOM, BRCMF_USB_DEVICE_ID_43236) },
  1242. { USB_DEVICE(BRCMF_USB_VENDOR_ID_BROADCOM, BRCMF_USB_DEVICE_ID_43242) },
  1243. /* special entry for device with firmware loaded and running */
  1244. { USB_DEVICE(BRCMF_USB_VENDOR_ID_BROADCOM, BRCMF_USB_DEVICE_ID_BCMFW) },
  1245. { }
  1246. };
  1247. MODULE_DEVICE_TABLE(usb, brcmf_usb_devid_table);
  1248. MODULE_FIRMWARE(BRCMF_USB_43143_FW_NAME);
  1249. MODULE_FIRMWARE(BRCMF_USB_43236_FW_NAME);
  1250. MODULE_FIRMWARE(BRCMF_USB_43242_FW_NAME);
  1251. static struct usb_driver brcmf_usbdrvr = {
  1252. .name = KBUILD_MODNAME,
  1253. .probe = brcmf_usb_probe,
  1254. .disconnect = brcmf_usb_disconnect,
  1255. .id_table = brcmf_usb_devid_table,
  1256. .suspend = brcmf_usb_suspend,
  1257. .resume = brcmf_usb_resume,
  1258. .reset_resume = brcmf_usb_reset_resume,
  1259. .supports_autosuspend = 1,
  1260. .disable_hub_initiated_lpm = 1,
  1261. };
  1262. static void brcmf_release_fw(struct list_head *q)
  1263. {
  1264. struct brcmf_usb_image *fw_image, *next;
  1265. list_for_each_entry_safe(fw_image, next, q, list) {
  1266. vfree(fw_image->image);
  1267. list_del_init(&fw_image->list);
  1268. }
  1269. }
  1270. static int brcmf_usb_reset_device(struct device *dev, void *notused)
  1271. {
  1272. /* device past is the usb interface so we
  1273. * need to use parent here.
  1274. */
  1275. brcmf_dev_reset(dev->parent);
  1276. return 0;
  1277. }
  1278. void brcmf_usb_exit(void)
  1279. {
  1280. struct device_driver *drv = &brcmf_usbdrvr.drvwrap.driver;
  1281. int ret;
  1282. brcmf_dbg(USB, "Enter\n");
  1283. ret = driver_for_each_device(drv, NULL, NULL,
  1284. brcmf_usb_reset_device);
  1285. usb_deregister(&brcmf_usbdrvr);
  1286. brcmf_release_fw(&fw_image_list);
  1287. }
  1288. void brcmf_usb_init(void)
  1289. {
  1290. brcmf_dbg(USB, "Enter\n");
  1291. INIT_LIST_HEAD(&fw_image_list);
  1292. usb_register(&brcmf_usbdrvr);
  1293. }