hci_ldisc.c 19 KB

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  1. /*
  2. *
  3. * Bluetooth HCI UART driver
  4. *
  5. * Copyright (C) 2000-2001 Qualcomm Incorporated
  6. * Copyright (C) 2002-2003 Maxim Krasnyansky <maxk@qualcomm.com>
  7. * Copyright (C) 2004-2005 Marcel Holtmann <marcel@holtmann.org>
  8. *
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License as published by
  12. * the Free Software Foundation; either version 2 of the License, or
  13. * (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  23. *
  24. */
  25. #include <linux/module.h>
  26. #include <linux/kernel.h>
  27. #include <linux/init.h>
  28. #include <linux/types.h>
  29. #include <linux/fcntl.h>
  30. #include <linux/interrupt.h>
  31. #include <linux/ptrace.h>
  32. #include <linux/poll.h>
  33. #include <linux/slab.h>
  34. #include <linux/tty.h>
  35. #include <linux/errno.h>
  36. #include <linux/string.h>
  37. #include <linux/signal.h>
  38. #include <linux/ioctl.h>
  39. #include <linux/skbuff.h>
  40. #include <linux/firmware.h>
  41. #include <net/bluetooth/bluetooth.h>
  42. #include <net/bluetooth/hci_core.h>
  43. #include "btintel.h"
  44. #include "btbcm.h"
  45. #include "hci_uart.h"
  46. #define VERSION "2.3"
  47. static const struct hci_uart_proto *hup[HCI_UART_MAX_PROTO];
  48. int hci_uart_register_proto(const struct hci_uart_proto *p)
  49. {
  50. if (p->id >= HCI_UART_MAX_PROTO)
  51. return -EINVAL;
  52. if (hup[p->id])
  53. return -EEXIST;
  54. hup[p->id] = p;
  55. BT_INFO("HCI UART protocol %s registered", p->name);
  56. return 0;
  57. }
  58. int hci_uart_unregister_proto(const struct hci_uart_proto *p)
  59. {
  60. if (p->id >= HCI_UART_MAX_PROTO)
  61. return -EINVAL;
  62. if (!hup[p->id])
  63. return -EINVAL;
  64. hup[p->id] = NULL;
  65. return 0;
  66. }
  67. static const struct hci_uart_proto *hci_uart_get_proto(unsigned int id)
  68. {
  69. if (id >= HCI_UART_MAX_PROTO)
  70. return NULL;
  71. return hup[id];
  72. }
  73. static inline void hci_uart_tx_complete(struct hci_uart *hu, int pkt_type)
  74. {
  75. struct hci_dev *hdev = hu->hdev;
  76. /* Update HCI stat counters */
  77. switch (pkt_type) {
  78. case HCI_COMMAND_PKT:
  79. hdev->stat.cmd_tx++;
  80. break;
  81. case HCI_ACLDATA_PKT:
  82. hdev->stat.acl_tx++;
  83. break;
  84. case HCI_SCODATA_PKT:
  85. hdev->stat.sco_tx++;
  86. break;
  87. }
  88. }
  89. static inline struct sk_buff *hci_uart_dequeue(struct hci_uart *hu)
  90. {
  91. struct sk_buff *skb = hu->tx_skb;
  92. if (!skb)
  93. skb = hu->proto->dequeue(hu);
  94. else
  95. hu->tx_skb = NULL;
  96. return skb;
  97. }
  98. int hci_uart_tx_wakeup(struct hci_uart *hu)
  99. {
  100. if (test_and_set_bit(HCI_UART_SENDING, &hu->tx_state)) {
  101. set_bit(HCI_UART_TX_WAKEUP, &hu->tx_state);
  102. return 0;
  103. }
  104. BT_DBG("");
  105. schedule_work(&hu->write_work);
  106. return 0;
  107. }
  108. static void hci_uart_write_work(struct work_struct *work)
  109. {
  110. struct hci_uart *hu = container_of(work, struct hci_uart, write_work);
  111. struct tty_struct *tty = hu->tty;
  112. struct hci_dev *hdev = hu->hdev;
  113. struct sk_buff *skb;
  114. /* REVISIT: should we cope with bad skbs or ->write() returning
  115. * and error value ?
  116. */
  117. restart:
  118. clear_bit(HCI_UART_TX_WAKEUP, &hu->tx_state);
  119. while ((skb = hci_uart_dequeue(hu))) {
  120. int len;
  121. set_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
  122. len = tty->ops->write(tty, skb->data, skb->len);
  123. hdev->stat.byte_tx += len;
  124. skb_pull(skb, len);
  125. if (skb->len) {
  126. hu->tx_skb = skb;
  127. break;
  128. }
  129. hci_uart_tx_complete(hu, bt_cb(skb)->pkt_type);
  130. kfree_skb(skb);
  131. }
  132. if (test_bit(HCI_UART_TX_WAKEUP, &hu->tx_state))
  133. goto restart;
  134. clear_bit(HCI_UART_SENDING, &hu->tx_state);
  135. }
  136. static void hci_uart_init_work(struct work_struct *work)
  137. {
  138. struct hci_uart *hu = container_of(work, struct hci_uart, init_ready);
  139. int err;
  140. if (!test_and_clear_bit(HCI_UART_INIT_PENDING, &hu->hdev_flags))
  141. return;
  142. err = hci_register_dev(hu->hdev);
  143. if (err < 0) {
  144. BT_ERR("Can't register HCI device");
  145. hci_free_dev(hu->hdev);
  146. hu->hdev = NULL;
  147. hu->proto->close(hu);
  148. }
  149. set_bit(HCI_UART_REGISTERED, &hu->flags);
  150. }
  151. int hci_uart_init_ready(struct hci_uart *hu)
  152. {
  153. if (!test_bit(HCI_UART_INIT_PENDING, &hu->hdev_flags))
  154. return -EALREADY;
  155. schedule_work(&hu->init_ready);
  156. return 0;
  157. }
  158. /* ------- Interface to HCI layer ------ */
  159. /* Initialize device */
  160. static int hci_uart_open(struct hci_dev *hdev)
  161. {
  162. BT_DBG("%s %p", hdev->name, hdev);
  163. /* Nothing to do for UART driver */
  164. return 0;
  165. }
  166. /* Reset device */
  167. static int hci_uart_flush(struct hci_dev *hdev)
  168. {
  169. struct hci_uart *hu = hci_get_drvdata(hdev);
  170. struct tty_struct *tty = hu->tty;
  171. BT_DBG("hdev %p tty %p", hdev, tty);
  172. if (hu->tx_skb) {
  173. kfree_skb(hu->tx_skb); hu->tx_skb = NULL;
  174. }
  175. /* Flush any pending characters in the driver and discipline. */
  176. tty_ldisc_flush(tty);
  177. tty_driver_flush_buffer(tty);
  178. if (test_bit(HCI_UART_PROTO_SET, &hu->flags))
  179. hu->proto->flush(hu);
  180. return 0;
  181. }
  182. /* Close device */
  183. static int hci_uart_close(struct hci_dev *hdev)
  184. {
  185. BT_DBG("hdev %p", hdev);
  186. hci_uart_flush(hdev);
  187. hdev->flush = NULL;
  188. return 0;
  189. }
  190. /* Send frames from HCI layer */
  191. static int hci_uart_send_frame(struct hci_dev *hdev, struct sk_buff *skb)
  192. {
  193. struct hci_uart *hu = hci_get_drvdata(hdev);
  194. BT_DBG("%s: type %d len %d", hdev->name, bt_cb(skb)->pkt_type, skb->len);
  195. hu->proto->enqueue(hu, skb);
  196. hci_uart_tx_wakeup(hu);
  197. return 0;
  198. }
  199. /* Flow control or un-flow control the device */
  200. void hci_uart_set_flow_control(struct hci_uart *hu, bool enable)
  201. {
  202. struct tty_struct *tty = hu->tty;
  203. struct ktermios ktermios;
  204. int status;
  205. unsigned int set = 0;
  206. unsigned int clear = 0;
  207. if (enable) {
  208. /* Disable hardware flow control */
  209. ktermios = tty->termios;
  210. ktermios.c_cflag &= ~CRTSCTS;
  211. status = tty_set_termios(tty, &ktermios);
  212. BT_DBG("Disabling hardware flow control: %s",
  213. status ? "failed" : "success");
  214. /* Clear RTS to prevent the device from sending */
  215. /* Most UARTs need OUT2 to enable interrupts */
  216. status = tty->driver->ops->tiocmget(tty);
  217. BT_DBG("Current tiocm 0x%x", status);
  218. set &= ~(TIOCM_OUT2 | TIOCM_RTS);
  219. clear = ~set;
  220. set &= TIOCM_DTR | TIOCM_RTS | TIOCM_OUT1 |
  221. TIOCM_OUT2 | TIOCM_LOOP;
  222. clear &= TIOCM_DTR | TIOCM_RTS | TIOCM_OUT1 |
  223. TIOCM_OUT2 | TIOCM_LOOP;
  224. status = tty->driver->ops->tiocmset(tty, set, clear);
  225. BT_DBG("Clearing RTS: %s", status ? "failed" : "success");
  226. } else {
  227. /* Set RTS to allow the device to send again */
  228. status = tty->driver->ops->tiocmget(tty);
  229. BT_DBG("Current tiocm 0x%x", status);
  230. set |= (TIOCM_OUT2 | TIOCM_RTS);
  231. clear = ~set;
  232. set &= TIOCM_DTR | TIOCM_RTS | TIOCM_OUT1 |
  233. TIOCM_OUT2 | TIOCM_LOOP;
  234. clear &= TIOCM_DTR | TIOCM_RTS | TIOCM_OUT1 |
  235. TIOCM_OUT2 | TIOCM_LOOP;
  236. status = tty->driver->ops->tiocmset(tty, set, clear);
  237. BT_DBG("Setting RTS: %s", status ? "failed" : "success");
  238. /* Re-enable hardware flow control */
  239. ktermios = tty->termios;
  240. ktermios.c_cflag |= CRTSCTS;
  241. status = tty_set_termios(tty, &ktermios);
  242. BT_DBG("Enabling hardware flow control: %s",
  243. status ? "failed" : "success");
  244. }
  245. }
  246. void hci_uart_set_speeds(struct hci_uart *hu, unsigned int init_speed,
  247. unsigned int oper_speed)
  248. {
  249. hu->init_speed = init_speed;
  250. hu->oper_speed = oper_speed;
  251. }
  252. void hci_uart_init_tty(struct hci_uart *hu)
  253. {
  254. struct tty_struct *tty = hu->tty;
  255. struct ktermios ktermios;
  256. /* Bring the UART into a known 8 bits no parity hw fc state */
  257. ktermios = tty->termios;
  258. ktermios.c_iflag &= ~(IGNBRK | BRKINT | PARMRK | ISTRIP |
  259. INLCR | IGNCR | ICRNL | IXON);
  260. ktermios.c_oflag &= ~OPOST;
  261. ktermios.c_lflag &= ~(ECHO | ECHONL | ICANON | ISIG | IEXTEN);
  262. ktermios.c_cflag &= ~(CSIZE | PARENB);
  263. ktermios.c_cflag |= CS8;
  264. ktermios.c_cflag |= CRTSCTS;
  265. /* tty_set_termios() return not checked as it is always 0 */
  266. tty_set_termios(tty, &ktermios);
  267. }
  268. void hci_uart_set_baudrate(struct hci_uart *hu, unsigned int speed)
  269. {
  270. struct tty_struct *tty = hu->tty;
  271. struct ktermios ktermios;
  272. ktermios = tty->termios;
  273. ktermios.c_cflag &= ~CBAUD;
  274. tty_termios_encode_baud_rate(&ktermios, speed, speed);
  275. /* tty_set_termios() return not checked as it is always 0 */
  276. tty_set_termios(tty, &ktermios);
  277. BT_DBG("%s: New tty speeds: %d/%d", hu->hdev->name,
  278. tty->termios.c_ispeed, tty->termios.c_ospeed);
  279. }
  280. static int hci_uart_setup(struct hci_dev *hdev)
  281. {
  282. struct hci_uart *hu = hci_get_drvdata(hdev);
  283. struct hci_rp_read_local_version *ver;
  284. struct sk_buff *skb;
  285. unsigned int speed;
  286. int err;
  287. /* Init speed if any */
  288. if (hu->init_speed)
  289. speed = hu->init_speed;
  290. else if (hu->proto->init_speed)
  291. speed = hu->proto->init_speed;
  292. else
  293. speed = 0;
  294. if (speed)
  295. hci_uart_set_baudrate(hu, speed);
  296. /* Operational speed if any */
  297. if (hu->oper_speed)
  298. speed = hu->oper_speed;
  299. else if (hu->proto->oper_speed)
  300. speed = hu->proto->oper_speed;
  301. else
  302. speed = 0;
  303. if (hu->proto->set_baudrate && speed) {
  304. err = hu->proto->set_baudrate(hu, speed);
  305. if (!err)
  306. hci_uart_set_baudrate(hu, speed);
  307. }
  308. if (hu->proto->setup)
  309. return hu->proto->setup(hu);
  310. if (!test_bit(HCI_UART_VND_DETECT, &hu->hdev_flags))
  311. return 0;
  312. skb = __hci_cmd_sync(hdev, HCI_OP_READ_LOCAL_VERSION, 0, NULL,
  313. HCI_INIT_TIMEOUT);
  314. if (IS_ERR(skb)) {
  315. BT_ERR("%s: Reading local version information failed (%ld)",
  316. hdev->name, PTR_ERR(skb));
  317. return 0;
  318. }
  319. if (skb->len != sizeof(*ver)) {
  320. BT_ERR("%s: Event length mismatch for version information",
  321. hdev->name);
  322. goto done;
  323. }
  324. ver = (struct hci_rp_read_local_version *)skb->data;
  325. switch (le16_to_cpu(ver->manufacturer)) {
  326. #ifdef CONFIG_BT_HCIUART_INTEL
  327. case 2:
  328. hdev->set_bdaddr = btintel_set_bdaddr;
  329. btintel_check_bdaddr(hdev);
  330. break;
  331. #endif
  332. #ifdef CONFIG_BT_HCIUART_BCM
  333. case 15:
  334. hdev->set_bdaddr = btbcm_set_bdaddr;
  335. btbcm_check_bdaddr(hdev);
  336. break;
  337. #endif
  338. }
  339. done:
  340. kfree_skb(skb);
  341. return 0;
  342. }
  343. /* ------ LDISC part ------ */
  344. /* hci_uart_tty_open
  345. *
  346. * Called when line discipline changed to HCI_UART.
  347. *
  348. * Arguments:
  349. * tty pointer to tty info structure
  350. * Return Value:
  351. * 0 if success, otherwise error code
  352. */
  353. static int hci_uart_tty_open(struct tty_struct *tty)
  354. {
  355. struct hci_uart *hu;
  356. BT_DBG("tty %p", tty);
  357. /* Error if the tty has no write op instead of leaving an exploitable
  358. hole */
  359. if (tty->ops->write == NULL)
  360. return -EOPNOTSUPP;
  361. hu = kzalloc(sizeof(struct hci_uart), GFP_KERNEL);
  362. if (!hu) {
  363. BT_ERR("Can't allocate control structure");
  364. return -ENFILE;
  365. }
  366. tty->disc_data = hu;
  367. hu->tty = tty;
  368. tty->receive_room = 65536;
  369. INIT_WORK(&hu->init_ready, hci_uart_init_work);
  370. INIT_WORK(&hu->write_work, hci_uart_write_work);
  371. /* Flush any pending characters in the driver and line discipline. */
  372. /* FIXME: why is this needed. Note don't use ldisc_ref here as the
  373. open path is before the ldisc is referencable */
  374. if (tty->ldisc->ops->flush_buffer)
  375. tty->ldisc->ops->flush_buffer(tty);
  376. tty_driver_flush_buffer(tty);
  377. return 0;
  378. }
  379. /* hci_uart_tty_close()
  380. *
  381. * Called when the line discipline is changed to something
  382. * else, the tty is closed, or the tty detects a hangup.
  383. */
  384. static void hci_uart_tty_close(struct tty_struct *tty)
  385. {
  386. struct hci_uart *hu = tty->disc_data;
  387. struct hci_dev *hdev;
  388. BT_DBG("tty %p", tty);
  389. /* Detach from the tty */
  390. tty->disc_data = NULL;
  391. if (!hu)
  392. return;
  393. hdev = hu->hdev;
  394. if (hdev)
  395. hci_uart_close(hdev);
  396. cancel_work_sync(&hu->write_work);
  397. if (test_and_clear_bit(HCI_UART_PROTO_SET, &hu->flags)) {
  398. if (hdev) {
  399. if (test_bit(HCI_UART_REGISTERED, &hu->flags))
  400. hci_unregister_dev(hdev);
  401. hci_free_dev(hdev);
  402. }
  403. hu->proto->close(hu);
  404. }
  405. kfree(hu);
  406. }
  407. /* hci_uart_tty_wakeup()
  408. *
  409. * Callback for transmit wakeup. Called when low level
  410. * device driver can accept more send data.
  411. *
  412. * Arguments: tty pointer to associated tty instance data
  413. * Return Value: None
  414. */
  415. static void hci_uart_tty_wakeup(struct tty_struct *tty)
  416. {
  417. struct hci_uart *hu = tty->disc_data;
  418. BT_DBG("");
  419. if (!hu)
  420. return;
  421. clear_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
  422. if (tty != hu->tty)
  423. return;
  424. if (test_bit(HCI_UART_PROTO_SET, &hu->flags))
  425. hci_uart_tx_wakeup(hu);
  426. }
  427. /* hci_uart_tty_receive()
  428. *
  429. * Called by tty low level driver when receive data is
  430. * available.
  431. *
  432. * Arguments: tty pointer to tty isntance data
  433. * data pointer to received data
  434. * flags pointer to flags for data
  435. * count count of received data in bytes
  436. *
  437. * Return Value: None
  438. */
  439. static void hci_uart_tty_receive(struct tty_struct *tty, const u8 *data,
  440. char *flags, int count)
  441. {
  442. struct hci_uart *hu = tty->disc_data;
  443. if (!hu || tty != hu->tty)
  444. return;
  445. if (!test_bit(HCI_UART_PROTO_SET, &hu->flags))
  446. return;
  447. /* It does not need a lock here as it is already protected by a mutex in
  448. * tty caller
  449. */
  450. hu->proto->recv(hu, data, count);
  451. if (hu->hdev)
  452. hu->hdev->stat.byte_rx += count;
  453. tty_unthrottle(tty);
  454. }
  455. static int hci_uart_register_dev(struct hci_uart *hu)
  456. {
  457. struct hci_dev *hdev;
  458. BT_DBG("");
  459. /* Initialize and register HCI device */
  460. hdev = hci_alloc_dev();
  461. if (!hdev) {
  462. BT_ERR("Can't allocate HCI device");
  463. return -ENOMEM;
  464. }
  465. hu->hdev = hdev;
  466. hdev->bus = HCI_UART;
  467. hci_set_drvdata(hdev, hu);
  468. /* Only when vendor specific setup callback is provided, consider
  469. * the manufacturer information valid. This avoids filling in the
  470. * value for Ericsson when nothing is specified.
  471. */
  472. if (hu->proto->setup)
  473. hdev->manufacturer = hu->proto->manufacturer;
  474. hdev->open = hci_uart_open;
  475. hdev->close = hci_uart_close;
  476. hdev->flush = hci_uart_flush;
  477. hdev->send = hci_uart_send_frame;
  478. hdev->setup = hci_uart_setup;
  479. SET_HCIDEV_DEV(hdev, hu->tty->dev);
  480. if (test_bit(HCI_UART_RAW_DEVICE, &hu->hdev_flags))
  481. set_bit(HCI_QUIRK_RAW_DEVICE, &hdev->quirks);
  482. if (test_bit(HCI_UART_EXT_CONFIG, &hu->hdev_flags))
  483. set_bit(HCI_QUIRK_EXTERNAL_CONFIG, &hdev->quirks);
  484. if (!test_bit(HCI_UART_RESET_ON_INIT, &hu->hdev_flags))
  485. set_bit(HCI_QUIRK_RESET_ON_CLOSE, &hdev->quirks);
  486. if (test_bit(HCI_UART_CREATE_AMP, &hu->hdev_flags))
  487. hdev->dev_type = HCI_AMP;
  488. else
  489. hdev->dev_type = HCI_BREDR;
  490. if (test_bit(HCI_UART_INIT_PENDING, &hu->hdev_flags))
  491. return 0;
  492. if (hci_register_dev(hdev) < 0) {
  493. BT_ERR("Can't register HCI device");
  494. hci_free_dev(hdev);
  495. return -ENODEV;
  496. }
  497. set_bit(HCI_UART_REGISTERED, &hu->flags);
  498. return 0;
  499. }
  500. static int hci_uart_set_proto(struct hci_uart *hu, int id)
  501. {
  502. const struct hci_uart_proto *p;
  503. int err;
  504. p = hci_uart_get_proto(id);
  505. if (!p)
  506. return -EPROTONOSUPPORT;
  507. err = p->open(hu);
  508. if (err)
  509. return err;
  510. hu->proto = p;
  511. err = hci_uart_register_dev(hu);
  512. if (err) {
  513. p->close(hu);
  514. return err;
  515. }
  516. return 0;
  517. }
  518. static int hci_uart_set_flags(struct hci_uart *hu, unsigned long flags)
  519. {
  520. unsigned long valid_flags = BIT(HCI_UART_RAW_DEVICE) |
  521. BIT(HCI_UART_RESET_ON_INIT) |
  522. BIT(HCI_UART_CREATE_AMP) |
  523. BIT(HCI_UART_INIT_PENDING) |
  524. BIT(HCI_UART_EXT_CONFIG) |
  525. BIT(HCI_UART_VND_DETECT);
  526. if (flags & ~valid_flags)
  527. return -EINVAL;
  528. hu->hdev_flags = flags;
  529. return 0;
  530. }
  531. /* hci_uart_tty_ioctl()
  532. *
  533. * Process IOCTL system call for the tty device.
  534. *
  535. * Arguments:
  536. *
  537. * tty pointer to tty instance data
  538. * file pointer to open file object for device
  539. * cmd IOCTL command code
  540. * arg argument for IOCTL call (cmd dependent)
  541. *
  542. * Return Value: Command dependent
  543. */
  544. static int hci_uart_tty_ioctl(struct tty_struct *tty, struct file *file,
  545. unsigned int cmd, unsigned long arg)
  546. {
  547. struct hci_uart *hu = tty->disc_data;
  548. int err = 0;
  549. BT_DBG("");
  550. /* Verify the status of the device */
  551. if (!hu)
  552. return -EBADF;
  553. switch (cmd) {
  554. case HCIUARTSETPROTO:
  555. if (!test_and_set_bit(HCI_UART_PROTO_SET, &hu->flags)) {
  556. err = hci_uart_set_proto(hu, arg);
  557. if (err) {
  558. clear_bit(HCI_UART_PROTO_SET, &hu->flags);
  559. return err;
  560. }
  561. } else
  562. return -EBUSY;
  563. break;
  564. case HCIUARTGETPROTO:
  565. if (test_bit(HCI_UART_PROTO_SET, &hu->flags))
  566. return hu->proto->id;
  567. return -EUNATCH;
  568. case HCIUARTGETDEVICE:
  569. if (test_bit(HCI_UART_REGISTERED, &hu->flags))
  570. return hu->hdev->id;
  571. return -EUNATCH;
  572. case HCIUARTSETFLAGS:
  573. if (test_bit(HCI_UART_PROTO_SET, &hu->flags))
  574. return -EBUSY;
  575. err = hci_uart_set_flags(hu, arg);
  576. if (err)
  577. return err;
  578. break;
  579. case HCIUARTGETFLAGS:
  580. return hu->hdev_flags;
  581. default:
  582. err = n_tty_ioctl_helper(tty, file, cmd, arg);
  583. break;
  584. }
  585. return err;
  586. }
  587. /*
  588. * We don't provide read/write/poll interface for user space.
  589. */
  590. static ssize_t hci_uart_tty_read(struct tty_struct *tty, struct file *file,
  591. unsigned char __user *buf, size_t nr)
  592. {
  593. return 0;
  594. }
  595. static ssize_t hci_uart_tty_write(struct tty_struct *tty, struct file *file,
  596. const unsigned char *data, size_t count)
  597. {
  598. return 0;
  599. }
  600. static unsigned int hci_uart_tty_poll(struct tty_struct *tty,
  601. struct file *filp, poll_table *wait)
  602. {
  603. return 0;
  604. }
  605. static int __init hci_uart_init(void)
  606. {
  607. static struct tty_ldisc_ops hci_uart_ldisc;
  608. int err;
  609. BT_INFO("HCI UART driver ver %s", VERSION);
  610. /* Register the tty discipline */
  611. memset(&hci_uart_ldisc, 0, sizeof(hci_uart_ldisc));
  612. hci_uart_ldisc.magic = TTY_LDISC_MAGIC;
  613. hci_uart_ldisc.name = "n_hci";
  614. hci_uart_ldisc.open = hci_uart_tty_open;
  615. hci_uart_ldisc.close = hci_uart_tty_close;
  616. hci_uart_ldisc.read = hci_uart_tty_read;
  617. hci_uart_ldisc.write = hci_uart_tty_write;
  618. hci_uart_ldisc.ioctl = hci_uart_tty_ioctl;
  619. hci_uart_ldisc.poll = hci_uart_tty_poll;
  620. hci_uart_ldisc.receive_buf = hci_uart_tty_receive;
  621. hci_uart_ldisc.write_wakeup = hci_uart_tty_wakeup;
  622. hci_uart_ldisc.owner = THIS_MODULE;
  623. err = tty_register_ldisc(N_HCI, &hci_uart_ldisc);
  624. if (err) {
  625. BT_ERR("HCI line discipline registration failed. (%d)", err);
  626. return err;
  627. }
  628. #ifdef CONFIG_BT_HCIUART_H4
  629. h4_init();
  630. #endif
  631. #ifdef CONFIG_BT_HCIUART_BCSP
  632. bcsp_init();
  633. #endif
  634. #ifdef CONFIG_BT_HCIUART_LL
  635. ll_init();
  636. #endif
  637. #ifdef CONFIG_BT_HCIUART_ATH3K
  638. ath_init();
  639. #endif
  640. #ifdef CONFIG_BT_HCIUART_3WIRE
  641. h5_init();
  642. #endif
  643. #ifdef CONFIG_BT_HCIUART_INTEL
  644. intel_init();
  645. #endif
  646. #ifdef CONFIG_BT_HCIUART_BCM
  647. bcm_init();
  648. #endif
  649. #ifdef CONFIG_BT_HCIUART_QCA
  650. qca_init();
  651. #endif
  652. return 0;
  653. }
  654. static void __exit hci_uart_exit(void)
  655. {
  656. int err;
  657. #ifdef CONFIG_BT_HCIUART_H4
  658. h4_deinit();
  659. #endif
  660. #ifdef CONFIG_BT_HCIUART_BCSP
  661. bcsp_deinit();
  662. #endif
  663. #ifdef CONFIG_BT_HCIUART_LL
  664. ll_deinit();
  665. #endif
  666. #ifdef CONFIG_BT_HCIUART_ATH3K
  667. ath_deinit();
  668. #endif
  669. #ifdef CONFIG_BT_HCIUART_3WIRE
  670. h5_deinit();
  671. #endif
  672. #ifdef CONFIG_BT_HCIUART_INTEL
  673. intel_deinit();
  674. #endif
  675. #ifdef CONFIG_BT_HCIUART_BCM
  676. bcm_deinit();
  677. #endif
  678. #ifdef CONFIG_BT_HCIUART_QCA
  679. qca_deinit();
  680. #endif
  681. /* Release tty registration of line discipline */
  682. err = tty_unregister_ldisc(N_HCI);
  683. if (err)
  684. BT_ERR("Can't unregister HCI line discipline (%d)", err);
  685. }
  686. module_init(hci_uart_init);
  687. module_exit(hci_uart_exit);
  688. MODULE_AUTHOR("Marcel Holtmann <marcel@holtmann.org>");
  689. MODULE_DESCRIPTION("Bluetooth HCI UART driver ver " VERSION);
  690. MODULE_VERSION(VERSION);
  691. MODULE_LICENSE("GPL");
  692. MODULE_ALIAS_LDISC(N_HCI);