cdc-acm.c 48 KB

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  1. /*
  2. * cdc-acm.c
  3. *
  4. * Copyright (c) 1999 Armin Fuerst <fuerst@in.tum.de>
  5. * Copyright (c) 1999 Pavel Machek <pavel@ucw.cz>
  6. * Copyright (c) 1999 Johannes Erdfelt <johannes@erdfelt.com>
  7. * Copyright (c) 2000 Vojtech Pavlik <vojtech@suse.cz>
  8. * Copyright (c) 2004 Oliver Neukum <oliver@neukum.name>
  9. * Copyright (c) 2005 David Kubicek <dave@awk.cz>
  10. * Copyright (c) 2011 Johan Hovold <jhovold@gmail.com>
  11. *
  12. * USB Abstract Control Model driver for USB modems and ISDN adapters
  13. *
  14. * Sponsored by SuSE
  15. *
  16. * This program is free software; you can redistribute it and/or modify
  17. * it under the terms of the GNU General Public License as published by
  18. * the Free Software Foundation; either version 2 of the License, or
  19. * (at your option) any later version.
  20. *
  21. * This program is distributed in the hope that it will be useful,
  22. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  23. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  24. * GNU General Public License for more details.
  25. *
  26. * You should have received a copy of the GNU General Public License
  27. * along with this program; if not, write to the Free Software
  28. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  29. */
  30. #undef DEBUG
  31. #undef VERBOSE_DEBUG
  32. #include <linux/kernel.h>
  33. #include <linux/errno.h>
  34. #include <linux/init.h>
  35. #include <linux/slab.h>
  36. #include <linux/tty.h>
  37. #include <linux/serial.h>
  38. #include <linux/tty_driver.h>
  39. #include <linux/tty_flip.h>
  40. #include <linux/module.h>
  41. #include <linux/mutex.h>
  42. #include <linux/uaccess.h>
  43. #include <linux/usb.h>
  44. #include <linux/usb/cdc.h>
  45. #include <asm/byteorder.h>
  46. #include <asm/unaligned.h>
  47. #include <linux/list.h>
  48. #include "cdc-acm.h"
  49. #define DRIVER_AUTHOR "Armin Fuerst, Pavel Machek, Johannes Erdfelt, Vojtech Pavlik, David Kubicek, Johan Hovold"
  50. #define DRIVER_DESC "USB Abstract Control Model driver for USB modems and ISDN adapters"
  51. static struct usb_driver acm_driver;
  52. static struct tty_driver *acm_tty_driver;
  53. static struct acm *acm_table[ACM_TTY_MINORS];
  54. static DEFINE_MUTEX(acm_table_lock);
  55. /*
  56. * acm_table accessors
  57. */
  58. /*
  59. * Look up an ACM structure by index. If found and not disconnected, increment
  60. * its refcount and return it with its mutex held.
  61. */
  62. static struct acm *acm_get_by_index(unsigned index)
  63. {
  64. struct acm *acm;
  65. mutex_lock(&acm_table_lock);
  66. acm = acm_table[index];
  67. if (acm) {
  68. mutex_lock(&acm->mutex);
  69. if (acm->disconnected) {
  70. mutex_unlock(&acm->mutex);
  71. acm = NULL;
  72. } else {
  73. tty_port_get(&acm->port);
  74. mutex_unlock(&acm->mutex);
  75. }
  76. }
  77. mutex_unlock(&acm_table_lock);
  78. return acm;
  79. }
  80. /*
  81. * Try to find an available minor number and if found, associate it with 'acm'.
  82. */
  83. static int acm_alloc_minor(struct acm *acm)
  84. {
  85. int minor;
  86. mutex_lock(&acm_table_lock);
  87. for (minor = 0; minor < ACM_TTY_MINORS; minor++) {
  88. if (!acm_table[minor]) {
  89. acm_table[minor] = acm;
  90. break;
  91. }
  92. }
  93. mutex_unlock(&acm_table_lock);
  94. return minor;
  95. }
  96. /* Release the minor number associated with 'acm'. */
  97. static void acm_release_minor(struct acm *acm)
  98. {
  99. mutex_lock(&acm_table_lock);
  100. acm_table[acm->minor] = NULL;
  101. mutex_unlock(&acm_table_lock);
  102. }
  103. /*
  104. * Functions for ACM control messages.
  105. */
  106. static int acm_ctrl_msg(struct acm *acm, int request, int value,
  107. void *buf, int len)
  108. {
  109. int retval = usb_control_msg(acm->dev, usb_sndctrlpipe(acm->dev, 0),
  110. request, USB_RT_ACM, value,
  111. acm->control->altsetting[0].desc.bInterfaceNumber,
  112. buf, len, 5000);
  113. dev_dbg(&acm->control->dev,
  114. "%s - rq 0x%02x, val %#x, len %#x, result %d\n",
  115. __func__, request, value, len, retval);
  116. return retval < 0 ? retval : 0;
  117. }
  118. /* devices aren't required to support these requests.
  119. * the cdc acm descriptor tells whether they do...
  120. */
  121. #define acm_set_control(acm, control) \
  122. acm_ctrl_msg(acm, USB_CDC_REQ_SET_CONTROL_LINE_STATE, control, NULL, 0)
  123. #define acm_set_line(acm, line) \
  124. acm_ctrl_msg(acm, USB_CDC_REQ_SET_LINE_CODING, 0, line, sizeof *(line))
  125. #define acm_send_break(acm, ms) \
  126. acm_ctrl_msg(acm, USB_CDC_REQ_SEND_BREAK, ms, NULL, 0)
  127. /*
  128. * Write buffer management.
  129. * All of these assume proper locks taken by the caller.
  130. */
  131. static int acm_wb_alloc(struct acm *acm)
  132. {
  133. int i, wbn;
  134. struct acm_wb *wb;
  135. wbn = 0;
  136. i = 0;
  137. for (;;) {
  138. wb = &acm->wb[wbn];
  139. if (!wb->use) {
  140. wb->use = 1;
  141. return wbn;
  142. }
  143. wbn = (wbn + 1) % ACM_NW;
  144. if (++i >= ACM_NW)
  145. return -1;
  146. }
  147. }
  148. static int acm_wb_is_avail(struct acm *acm)
  149. {
  150. int i, n;
  151. unsigned long flags;
  152. n = ACM_NW;
  153. spin_lock_irqsave(&acm->write_lock, flags);
  154. for (i = 0; i < ACM_NW; i++)
  155. n -= acm->wb[i].use;
  156. spin_unlock_irqrestore(&acm->write_lock, flags);
  157. return n;
  158. }
  159. /*
  160. * Finish write. Caller must hold acm->write_lock
  161. */
  162. static void acm_write_done(struct acm *acm, struct acm_wb *wb)
  163. {
  164. wb->use = 0;
  165. acm->transmitting--;
  166. usb_autopm_put_interface_async(acm->control);
  167. }
  168. /*
  169. * Poke write.
  170. *
  171. * the caller is responsible for locking
  172. */
  173. static int acm_start_wb(struct acm *acm, struct acm_wb *wb)
  174. {
  175. int rc;
  176. acm->transmitting++;
  177. wb->urb->transfer_buffer = wb->buf;
  178. wb->urb->transfer_dma = wb->dmah;
  179. wb->urb->transfer_buffer_length = wb->len;
  180. wb->urb->dev = acm->dev;
  181. rc = usb_submit_urb(wb->urb, GFP_ATOMIC);
  182. if (rc < 0) {
  183. dev_err(&acm->data->dev,
  184. "%s - usb_submit_urb(write bulk) failed: %d\n",
  185. __func__, rc);
  186. acm_write_done(acm, wb);
  187. }
  188. return rc;
  189. }
  190. static int acm_write_start(struct acm *acm, int wbn)
  191. {
  192. unsigned long flags;
  193. struct acm_wb *wb = &acm->wb[wbn];
  194. int rc;
  195. spin_lock_irqsave(&acm->write_lock, flags);
  196. if (!acm->dev) {
  197. wb->use = 0;
  198. spin_unlock_irqrestore(&acm->write_lock, flags);
  199. return -ENODEV;
  200. }
  201. dev_vdbg(&acm->data->dev, "%s - susp_count %d\n", __func__,
  202. acm->susp_count);
  203. usb_autopm_get_interface_async(acm->control);
  204. if (acm->susp_count) {
  205. if (!acm->delayed_wb)
  206. acm->delayed_wb = wb;
  207. else
  208. usb_autopm_put_interface_async(acm->control);
  209. spin_unlock_irqrestore(&acm->write_lock, flags);
  210. return 0; /* A white lie */
  211. }
  212. usb_mark_last_busy(acm->dev);
  213. rc = acm_start_wb(acm, wb);
  214. spin_unlock_irqrestore(&acm->write_lock, flags);
  215. return rc;
  216. }
  217. /*
  218. * attributes exported through sysfs
  219. */
  220. static ssize_t show_caps
  221. (struct device *dev, struct device_attribute *attr, char *buf)
  222. {
  223. struct usb_interface *intf = to_usb_interface(dev);
  224. struct acm *acm = usb_get_intfdata(intf);
  225. return sprintf(buf, "%d", acm->ctrl_caps);
  226. }
  227. static DEVICE_ATTR(bmCapabilities, S_IRUGO, show_caps, NULL);
  228. static ssize_t show_country_codes
  229. (struct device *dev, struct device_attribute *attr, char *buf)
  230. {
  231. struct usb_interface *intf = to_usb_interface(dev);
  232. struct acm *acm = usb_get_intfdata(intf);
  233. memcpy(buf, acm->country_codes, acm->country_code_size);
  234. return acm->country_code_size;
  235. }
  236. static DEVICE_ATTR(wCountryCodes, S_IRUGO, show_country_codes, NULL);
  237. static ssize_t show_country_rel_date
  238. (struct device *dev, struct device_attribute *attr, char *buf)
  239. {
  240. struct usb_interface *intf = to_usb_interface(dev);
  241. struct acm *acm = usb_get_intfdata(intf);
  242. return sprintf(buf, "%d", acm->country_rel_date);
  243. }
  244. static DEVICE_ATTR(iCountryCodeRelDate, S_IRUGO, show_country_rel_date, NULL);
  245. /*
  246. * Interrupt handlers for various ACM device responses
  247. */
  248. /* control interface reports status changes with "interrupt" transfers */
  249. static void acm_ctrl_irq(struct urb *urb)
  250. {
  251. struct acm *acm = urb->context;
  252. struct usb_cdc_notification *dr = urb->transfer_buffer;
  253. struct tty_struct *tty;
  254. unsigned char *data;
  255. int newctrl;
  256. int retval;
  257. int status = urb->status;
  258. switch (status) {
  259. case 0:
  260. /* success */
  261. break;
  262. case -ECONNRESET:
  263. case -ENOENT:
  264. case -ESHUTDOWN:
  265. /* this urb is terminated, clean up */
  266. dev_dbg(&acm->control->dev,
  267. "%s - urb shutting down with status: %d\n",
  268. __func__, status);
  269. return;
  270. default:
  271. dev_dbg(&acm->control->dev,
  272. "%s - nonzero urb status received: %d\n",
  273. __func__, status);
  274. goto exit;
  275. }
  276. usb_mark_last_busy(acm->dev);
  277. data = (unsigned char *)(dr + 1);
  278. switch (dr->bNotificationType) {
  279. case USB_CDC_NOTIFY_NETWORK_CONNECTION:
  280. dev_dbg(&acm->control->dev, "%s - network connection: %d\n",
  281. __func__, dr->wValue);
  282. break;
  283. case USB_CDC_NOTIFY_SERIAL_STATE:
  284. tty = tty_port_tty_get(&acm->port);
  285. newctrl = get_unaligned_le16(data);
  286. if (tty) {
  287. if (!acm->clocal &&
  288. (acm->ctrlin & ~newctrl & ACM_CTRL_DCD)) {
  289. dev_dbg(&acm->control->dev,
  290. "%s - calling hangup\n", __func__);
  291. tty_hangup(tty);
  292. }
  293. tty_kref_put(tty);
  294. }
  295. acm->ctrlin = newctrl;
  296. dev_dbg(&acm->control->dev,
  297. "%s - input control lines: dcd%c dsr%c break%c "
  298. "ring%c framing%c parity%c overrun%c\n",
  299. __func__,
  300. acm->ctrlin & ACM_CTRL_DCD ? '+' : '-',
  301. acm->ctrlin & ACM_CTRL_DSR ? '+' : '-',
  302. acm->ctrlin & ACM_CTRL_BRK ? '+' : '-',
  303. acm->ctrlin & ACM_CTRL_RI ? '+' : '-',
  304. acm->ctrlin & ACM_CTRL_FRAMING ? '+' : '-',
  305. acm->ctrlin & ACM_CTRL_PARITY ? '+' : '-',
  306. acm->ctrlin & ACM_CTRL_OVERRUN ? '+' : '-');
  307. break;
  308. default:
  309. dev_dbg(&acm->control->dev,
  310. "%s - unknown notification %d received: index %d "
  311. "len %d data0 %d data1 %d\n",
  312. __func__,
  313. dr->bNotificationType, dr->wIndex,
  314. dr->wLength, data[0], data[1]);
  315. break;
  316. }
  317. exit:
  318. retval = usb_submit_urb(urb, GFP_ATOMIC);
  319. if (retval)
  320. dev_err(&acm->control->dev, "%s - usb_submit_urb failed: %d\n",
  321. __func__, retval);
  322. }
  323. static int acm_submit_read_urb(struct acm *acm, int index, gfp_t mem_flags)
  324. {
  325. int res;
  326. if (!test_and_clear_bit(index, &acm->read_urbs_free))
  327. return 0;
  328. dev_vdbg(&acm->data->dev, "%s - urb %d\n", __func__, index);
  329. res = usb_submit_urb(acm->read_urbs[index], mem_flags);
  330. if (res) {
  331. if (res != -EPERM) {
  332. dev_err(&acm->data->dev,
  333. "%s - usb_submit_urb failed: %d\n",
  334. __func__, res);
  335. }
  336. set_bit(index, &acm->read_urbs_free);
  337. return res;
  338. }
  339. return 0;
  340. }
  341. static int acm_submit_read_urbs(struct acm *acm, gfp_t mem_flags)
  342. {
  343. int res;
  344. int i;
  345. for (i = 0; i < acm->rx_buflimit; ++i) {
  346. res = acm_submit_read_urb(acm, i, mem_flags);
  347. if (res)
  348. return res;
  349. }
  350. return 0;
  351. }
  352. static void acm_process_read_urb(struct acm *acm, struct urb *urb)
  353. {
  354. if (!urb->actual_length)
  355. return;
  356. tty_insert_flip_string(&acm->port, urb->transfer_buffer,
  357. urb->actual_length);
  358. tty_flip_buffer_push(&acm->port);
  359. }
  360. static void acm_read_bulk_callback(struct urb *urb)
  361. {
  362. struct acm_rb *rb = urb->context;
  363. struct acm *acm = rb->instance;
  364. unsigned long flags;
  365. dev_vdbg(&acm->data->dev, "%s - urb %d, len %d\n", __func__,
  366. rb->index, urb->actual_length);
  367. set_bit(rb->index, &acm->read_urbs_free);
  368. if (!acm->dev) {
  369. dev_dbg(&acm->data->dev, "%s - disconnected\n", __func__);
  370. return;
  371. }
  372. usb_mark_last_busy(acm->dev);
  373. if (urb->status) {
  374. dev_dbg(&acm->data->dev, "%s - non-zero urb status: %d\n",
  375. __func__, urb->status);
  376. return;
  377. }
  378. acm_process_read_urb(acm, urb);
  379. /* throttle device if requested by tty */
  380. spin_lock_irqsave(&acm->read_lock, flags);
  381. acm->throttled = acm->throttle_req;
  382. if (!acm->throttled && !acm->susp_count) {
  383. spin_unlock_irqrestore(&acm->read_lock, flags);
  384. acm_submit_read_urb(acm, rb->index, GFP_ATOMIC);
  385. } else {
  386. spin_unlock_irqrestore(&acm->read_lock, flags);
  387. }
  388. }
  389. /* data interface wrote those outgoing bytes */
  390. static void acm_write_bulk(struct urb *urb)
  391. {
  392. struct acm_wb *wb = urb->context;
  393. struct acm *acm = wb->instance;
  394. unsigned long flags;
  395. if (urb->status || (urb->actual_length != urb->transfer_buffer_length))
  396. dev_vdbg(&acm->data->dev, "%s - len %d/%d, status %d\n",
  397. __func__,
  398. urb->actual_length,
  399. urb->transfer_buffer_length,
  400. urb->status);
  401. spin_lock_irqsave(&acm->write_lock, flags);
  402. acm_write_done(acm, wb);
  403. spin_unlock_irqrestore(&acm->write_lock, flags);
  404. schedule_work(&acm->work);
  405. }
  406. static void acm_softint(struct work_struct *work)
  407. {
  408. struct acm *acm = container_of(work, struct acm, work);
  409. struct tty_struct *tty;
  410. dev_vdbg(&acm->data->dev, "%s\n", __func__);
  411. tty = tty_port_tty_get(&acm->port);
  412. if (!tty)
  413. return;
  414. tty_wakeup(tty);
  415. tty_kref_put(tty);
  416. }
  417. /*
  418. * TTY handlers
  419. */
  420. static int acm_tty_install(struct tty_driver *driver, struct tty_struct *tty)
  421. {
  422. struct acm *acm;
  423. int retval;
  424. dev_dbg(tty->dev, "%s\n", __func__);
  425. acm = acm_get_by_index(tty->index);
  426. if (!acm)
  427. return -ENODEV;
  428. retval = tty_standard_install(driver, tty);
  429. if (retval)
  430. goto error_init_termios;
  431. tty->driver_data = acm;
  432. return 0;
  433. error_init_termios:
  434. tty_port_put(&acm->port);
  435. return retval;
  436. }
  437. static int acm_tty_open(struct tty_struct *tty, struct file *filp)
  438. {
  439. struct acm *acm = tty->driver_data;
  440. dev_dbg(tty->dev, "%s\n", __func__);
  441. return tty_port_open(&acm->port, tty, filp);
  442. }
  443. static int acm_port_activate(struct tty_port *port, struct tty_struct *tty)
  444. {
  445. struct acm *acm = container_of(port, struct acm, port);
  446. int retval = -ENODEV;
  447. dev_dbg(&acm->control->dev, "%s\n", __func__);
  448. mutex_lock(&acm->mutex);
  449. if (acm->disconnected)
  450. goto disconnected;
  451. retval = usb_autopm_get_interface(acm->control);
  452. if (retval)
  453. goto error_get_interface;
  454. /*
  455. * FIXME: Why do we need this? Allocating 64K of physically contiguous
  456. * memory is really nasty...
  457. */
  458. set_bit(TTY_NO_WRITE_SPLIT, &tty->flags);
  459. acm->control->needs_remote_wakeup = 1;
  460. acm->ctrlurb->dev = acm->dev;
  461. if (usb_submit_urb(acm->ctrlurb, GFP_KERNEL)) {
  462. dev_err(&acm->control->dev,
  463. "%s - usb_submit_urb(ctrl irq) failed\n", __func__);
  464. goto error_submit_urb;
  465. }
  466. acm->ctrlout = ACM_CTRL_DTR | ACM_CTRL_RTS;
  467. if (acm_set_control(acm, acm->ctrlout) < 0 &&
  468. (acm->ctrl_caps & USB_CDC_CAP_LINE))
  469. goto error_set_control;
  470. usb_autopm_put_interface(acm->control);
  471. /*
  472. * Unthrottle device in case the TTY was closed while throttled.
  473. */
  474. spin_lock_irq(&acm->read_lock);
  475. acm->throttled = 0;
  476. acm->throttle_req = 0;
  477. spin_unlock_irq(&acm->read_lock);
  478. if (acm_submit_read_urbs(acm, GFP_KERNEL))
  479. goto error_submit_read_urbs;
  480. mutex_unlock(&acm->mutex);
  481. return 0;
  482. error_submit_read_urbs:
  483. acm->ctrlout = 0;
  484. acm_set_control(acm, acm->ctrlout);
  485. error_set_control:
  486. usb_kill_urb(acm->ctrlurb);
  487. error_submit_urb:
  488. usb_autopm_put_interface(acm->control);
  489. error_get_interface:
  490. disconnected:
  491. mutex_unlock(&acm->mutex);
  492. return retval;
  493. }
  494. static void acm_port_destruct(struct tty_port *port)
  495. {
  496. struct acm *acm = container_of(port, struct acm, port);
  497. dev_dbg(&acm->control->dev, "%s\n", __func__);
  498. acm_release_minor(acm);
  499. usb_put_intf(acm->control);
  500. kfree(acm->country_codes);
  501. kfree(acm);
  502. }
  503. static void acm_port_shutdown(struct tty_port *port)
  504. {
  505. struct acm *acm = container_of(port, struct acm, port);
  506. int i;
  507. dev_dbg(&acm->control->dev, "%s\n", __func__);
  508. mutex_lock(&acm->mutex);
  509. if (!acm->disconnected) {
  510. usb_autopm_get_interface(acm->control);
  511. acm_set_control(acm, acm->ctrlout = 0);
  512. usb_kill_urb(acm->ctrlurb);
  513. for (i = 0; i < ACM_NW; i++)
  514. usb_kill_urb(acm->wb[i].urb);
  515. for (i = 0; i < acm->rx_buflimit; i++)
  516. usb_kill_urb(acm->read_urbs[i]);
  517. acm->control->needs_remote_wakeup = 0;
  518. usb_autopm_put_interface(acm->control);
  519. }
  520. mutex_unlock(&acm->mutex);
  521. }
  522. static void acm_tty_cleanup(struct tty_struct *tty)
  523. {
  524. struct acm *acm = tty->driver_data;
  525. dev_dbg(&acm->control->dev, "%s\n", __func__);
  526. tty_port_put(&acm->port);
  527. }
  528. static void acm_tty_hangup(struct tty_struct *tty)
  529. {
  530. struct acm *acm = tty->driver_data;
  531. dev_dbg(&acm->control->dev, "%s\n", __func__);
  532. tty_port_hangup(&acm->port);
  533. }
  534. static void acm_tty_close(struct tty_struct *tty, struct file *filp)
  535. {
  536. struct acm *acm = tty->driver_data;
  537. dev_dbg(&acm->control->dev, "%s\n", __func__);
  538. tty_port_close(&acm->port, tty, filp);
  539. }
  540. static int acm_tty_write(struct tty_struct *tty,
  541. const unsigned char *buf, int count)
  542. {
  543. struct acm *acm = tty->driver_data;
  544. int stat;
  545. unsigned long flags;
  546. int wbn;
  547. struct acm_wb *wb;
  548. if (!count)
  549. return 0;
  550. dev_vdbg(&acm->data->dev, "%s - count %d\n", __func__, count);
  551. spin_lock_irqsave(&acm->write_lock, flags);
  552. wbn = acm_wb_alloc(acm);
  553. if (wbn < 0) {
  554. spin_unlock_irqrestore(&acm->write_lock, flags);
  555. return 0;
  556. }
  557. wb = &acm->wb[wbn];
  558. count = (count > acm->writesize) ? acm->writesize : count;
  559. dev_vdbg(&acm->data->dev, "%s - write %d\n", __func__, count);
  560. memcpy(wb->buf, buf, count);
  561. wb->len = count;
  562. spin_unlock_irqrestore(&acm->write_lock, flags);
  563. stat = acm_write_start(acm, wbn);
  564. if (stat < 0)
  565. return stat;
  566. return count;
  567. }
  568. static int acm_tty_write_room(struct tty_struct *tty)
  569. {
  570. struct acm *acm = tty->driver_data;
  571. /*
  572. * Do not let the line discipline to know that we have a reserve,
  573. * or it might get too enthusiastic.
  574. */
  575. return acm_wb_is_avail(acm) ? acm->writesize : 0;
  576. }
  577. static int acm_tty_chars_in_buffer(struct tty_struct *tty)
  578. {
  579. struct acm *acm = tty->driver_data;
  580. /*
  581. * if the device was unplugged then any remaining characters fell out
  582. * of the connector ;)
  583. */
  584. if (acm->disconnected)
  585. return 0;
  586. /*
  587. * This is inaccurate (overcounts), but it works.
  588. */
  589. return (ACM_NW - acm_wb_is_avail(acm)) * acm->writesize;
  590. }
  591. static void acm_tty_throttle(struct tty_struct *tty)
  592. {
  593. struct acm *acm = tty->driver_data;
  594. spin_lock_irq(&acm->read_lock);
  595. acm->throttle_req = 1;
  596. spin_unlock_irq(&acm->read_lock);
  597. }
  598. static void acm_tty_unthrottle(struct tty_struct *tty)
  599. {
  600. struct acm *acm = tty->driver_data;
  601. unsigned int was_throttled;
  602. spin_lock_irq(&acm->read_lock);
  603. was_throttled = acm->throttled;
  604. acm->throttled = 0;
  605. acm->throttle_req = 0;
  606. spin_unlock_irq(&acm->read_lock);
  607. if (was_throttled)
  608. acm_submit_read_urbs(acm, GFP_KERNEL);
  609. }
  610. static int acm_tty_break_ctl(struct tty_struct *tty, int state)
  611. {
  612. struct acm *acm = tty->driver_data;
  613. int retval;
  614. retval = acm_send_break(acm, state ? 0xffff : 0);
  615. if (retval < 0)
  616. dev_dbg(&acm->control->dev, "%s - send break failed\n",
  617. __func__);
  618. return retval;
  619. }
  620. static int acm_tty_tiocmget(struct tty_struct *tty)
  621. {
  622. struct acm *acm = tty->driver_data;
  623. return (acm->ctrlout & ACM_CTRL_DTR ? TIOCM_DTR : 0) |
  624. (acm->ctrlout & ACM_CTRL_RTS ? TIOCM_RTS : 0) |
  625. (acm->ctrlin & ACM_CTRL_DSR ? TIOCM_DSR : 0) |
  626. (acm->ctrlin & ACM_CTRL_RI ? TIOCM_RI : 0) |
  627. (acm->ctrlin & ACM_CTRL_DCD ? TIOCM_CD : 0) |
  628. TIOCM_CTS;
  629. }
  630. static int acm_tty_tiocmset(struct tty_struct *tty,
  631. unsigned int set, unsigned int clear)
  632. {
  633. struct acm *acm = tty->driver_data;
  634. unsigned int newctrl;
  635. newctrl = acm->ctrlout;
  636. set = (set & TIOCM_DTR ? ACM_CTRL_DTR : 0) |
  637. (set & TIOCM_RTS ? ACM_CTRL_RTS : 0);
  638. clear = (clear & TIOCM_DTR ? ACM_CTRL_DTR : 0) |
  639. (clear & TIOCM_RTS ? ACM_CTRL_RTS : 0);
  640. newctrl = (newctrl & ~clear) | set;
  641. if (acm->ctrlout == newctrl)
  642. return 0;
  643. return acm_set_control(acm, acm->ctrlout = newctrl);
  644. }
  645. static int get_serial_info(struct acm *acm, struct serial_struct __user *info)
  646. {
  647. struct serial_struct tmp;
  648. if (!info)
  649. return -EINVAL;
  650. memset(&tmp, 0, sizeof(tmp));
  651. tmp.flags = ASYNC_LOW_LATENCY;
  652. tmp.xmit_fifo_size = acm->writesize;
  653. tmp.baud_base = le32_to_cpu(acm->line.dwDTERate);
  654. tmp.close_delay = acm->port.close_delay / 10;
  655. tmp.closing_wait = acm->port.closing_wait == ASYNC_CLOSING_WAIT_NONE ?
  656. ASYNC_CLOSING_WAIT_NONE :
  657. acm->port.closing_wait / 10;
  658. if (copy_to_user(info, &tmp, sizeof(tmp)))
  659. return -EFAULT;
  660. else
  661. return 0;
  662. }
  663. static int set_serial_info(struct acm *acm,
  664. struct serial_struct __user *newinfo)
  665. {
  666. struct serial_struct new_serial;
  667. unsigned int closing_wait, close_delay;
  668. int retval = 0;
  669. if (copy_from_user(&new_serial, newinfo, sizeof(new_serial)))
  670. return -EFAULT;
  671. close_delay = new_serial.close_delay * 10;
  672. closing_wait = new_serial.closing_wait == ASYNC_CLOSING_WAIT_NONE ?
  673. ASYNC_CLOSING_WAIT_NONE : new_serial.closing_wait * 10;
  674. mutex_lock(&acm->port.mutex);
  675. if (!capable(CAP_SYS_ADMIN)) {
  676. if ((close_delay != acm->port.close_delay) ||
  677. (closing_wait != acm->port.closing_wait))
  678. retval = -EPERM;
  679. else
  680. retval = -EOPNOTSUPP;
  681. } else {
  682. acm->port.close_delay = close_delay;
  683. acm->port.closing_wait = closing_wait;
  684. }
  685. mutex_unlock(&acm->port.mutex);
  686. return retval;
  687. }
  688. static int acm_tty_ioctl(struct tty_struct *tty,
  689. unsigned int cmd, unsigned long arg)
  690. {
  691. struct acm *acm = tty->driver_data;
  692. int rv = -ENOIOCTLCMD;
  693. switch (cmd) {
  694. case TIOCGSERIAL: /* gets serial port data */
  695. rv = get_serial_info(acm, (struct serial_struct __user *) arg);
  696. break;
  697. case TIOCSSERIAL:
  698. rv = set_serial_info(acm, (struct serial_struct __user *) arg);
  699. break;
  700. }
  701. return rv;
  702. }
  703. static void acm_tty_set_termios(struct tty_struct *tty,
  704. struct ktermios *termios_old)
  705. {
  706. struct acm *acm = tty->driver_data;
  707. struct ktermios *termios = &tty->termios;
  708. struct usb_cdc_line_coding newline;
  709. int newctrl = acm->ctrlout;
  710. newline.dwDTERate = cpu_to_le32(tty_get_baud_rate(tty));
  711. newline.bCharFormat = termios->c_cflag & CSTOPB ? 2 : 0;
  712. newline.bParityType = termios->c_cflag & PARENB ?
  713. (termios->c_cflag & PARODD ? 1 : 2) +
  714. (termios->c_cflag & CMSPAR ? 2 : 0) : 0;
  715. switch (termios->c_cflag & CSIZE) {
  716. case CS5:
  717. newline.bDataBits = 5;
  718. break;
  719. case CS6:
  720. newline.bDataBits = 6;
  721. break;
  722. case CS7:
  723. newline.bDataBits = 7;
  724. break;
  725. case CS8:
  726. default:
  727. newline.bDataBits = 8;
  728. break;
  729. }
  730. /* FIXME: Needs to clear unsupported bits in the termios */
  731. acm->clocal = ((termios->c_cflag & CLOCAL) != 0);
  732. if (!newline.dwDTERate) {
  733. newline.dwDTERate = acm->line.dwDTERate;
  734. newctrl &= ~ACM_CTRL_DTR;
  735. } else
  736. newctrl |= ACM_CTRL_DTR;
  737. if (newctrl != acm->ctrlout)
  738. acm_set_control(acm, acm->ctrlout = newctrl);
  739. if (memcmp(&acm->line, &newline, sizeof newline)) {
  740. memcpy(&acm->line, &newline, sizeof newline);
  741. dev_dbg(&acm->control->dev, "%s - set line: %d %d %d %d\n",
  742. __func__,
  743. le32_to_cpu(newline.dwDTERate),
  744. newline.bCharFormat, newline.bParityType,
  745. newline.bDataBits);
  746. acm_set_line(acm, &acm->line);
  747. }
  748. }
  749. static const struct tty_port_operations acm_port_ops = {
  750. .shutdown = acm_port_shutdown,
  751. .activate = acm_port_activate,
  752. .destruct = acm_port_destruct,
  753. };
  754. /*
  755. * USB probe and disconnect routines.
  756. */
  757. /* Little helpers: write/read buffers free */
  758. static void acm_write_buffers_free(struct acm *acm)
  759. {
  760. int i;
  761. struct acm_wb *wb;
  762. struct usb_device *usb_dev = interface_to_usbdev(acm->control);
  763. for (wb = &acm->wb[0], i = 0; i < ACM_NW; i++, wb++)
  764. usb_free_coherent(usb_dev, acm->writesize, wb->buf, wb->dmah);
  765. }
  766. static void acm_read_buffers_free(struct acm *acm)
  767. {
  768. struct usb_device *usb_dev = interface_to_usbdev(acm->control);
  769. int i;
  770. for (i = 0; i < acm->rx_buflimit; i++)
  771. usb_free_coherent(usb_dev, acm->readsize,
  772. acm->read_buffers[i].base, acm->read_buffers[i].dma);
  773. }
  774. /* Little helper: write buffers allocate */
  775. static int acm_write_buffers_alloc(struct acm *acm)
  776. {
  777. int i;
  778. struct acm_wb *wb;
  779. for (wb = &acm->wb[0], i = 0; i < ACM_NW; i++, wb++) {
  780. wb->buf = usb_alloc_coherent(acm->dev, acm->writesize, GFP_KERNEL,
  781. &wb->dmah);
  782. if (!wb->buf) {
  783. while (i != 0) {
  784. --i;
  785. --wb;
  786. usb_free_coherent(acm->dev, acm->writesize,
  787. wb->buf, wb->dmah);
  788. }
  789. return -ENOMEM;
  790. }
  791. }
  792. return 0;
  793. }
  794. static int acm_probe(struct usb_interface *intf,
  795. const struct usb_device_id *id)
  796. {
  797. struct usb_cdc_union_desc *union_header = NULL;
  798. struct usb_cdc_country_functional_desc *cfd = NULL;
  799. unsigned char *buffer = intf->altsetting->extra;
  800. int buflen = intf->altsetting->extralen;
  801. struct usb_interface *control_interface;
  802. struct usb_interface *data_interface;
  803. struct usb_endpoint_descriptor *epctrl = NULL;
  804. struct usb_endpoint_descriptor *epread = NULL;
  805. struct usb_endpoint_descriptor *epwrite = NULL;
  806. struct usb_device *usb_dev = interface_to_usbdev(intf);
  807. struct acm *acm;
  808. int minor;
  809. int ctrlsize, readsize;
  810. u8 *buf;
  811. u8 ac_management_function = 0;
  812. u8 call_management_function = 0;
  813. int call_interface_num = -1;
  814. int data_interface_num = -1;
  815. unsigned long quirks;
  816. int num_rx_buf;
  817. int i;
  818. int combined_interfaces = 0;
  819. struct device *tty_dev;
  820. int rv = -ENOMEM;
  821. /* normal quirks */
  822. quirks = (unsigned long)id->driver_info;
  823. num_rx_buf = (quirks == SINGLE_RX_URB) ? 1 : ACM_NR;
  824. /* handle quirks deadly to normal probing*/
  825. if (quirks == NO_UNION_NORMAL) {
  826. data_interface = usb_ifnum_to_if(usb_dev, 1);
  827. control_interface = usb_ifnum_to_if(usb_dev, 0);
  828. goto skip_normal_probe;
  829. }
  830. /* normal probing*/
  831. if (!buffer) {
  832. dev_err(&intf->dev, "Weird descriptor references\n");
  833. return -EINVAL;
  834. }
  835. if (!buflen) {
  836. if (intf->cur_altsetting->endpoint &&
  837. intf->cur_altsetting->endpoint->extralen &&
  838. intf->cur_altsetting->endpoint->extra) {
  839. dev_dbg(&intf->dev,
  840. "Seeking extra descriptors on endpoint\n");
  841. buflen = intf->cur_altsetting->endpoint->extralen;
  842. buffer = intf->cur_altsetting->endpoint->extra;
  843. } else {
  844. dev_err(&intf->dev,
  845. "Zero length descriptor references\n");
  846. return -EINVAL;
  847. }
  848. }
  849. while (buflen > 0) {
  850. if (buffer[1] != USB_DT_CS_INTERFACE) {
  851. dev_err(&intf->dev, "skipping garbage\n");
  852. goto next_desc;
  853. }
  854. switch (buffer[2]) {
  855. case USB_CDC_UNION_TYPE: /* we've found it */
  856. if (union_header) {
  857. dev_err(&intf->dev, "More than one "
  858. "union descriptor, skipping ...\n");
  859. goto next_desc;
  860. }
  861. union_header = (struct usb_cdc_union_desc *)buffer;
  862. break;
  863. case USB_CDC_COUNTRY_TYPE: /* export through sysfs*/
  864. cfd = (struct usb_cdc_country_functional_desc *)buffer;
  865. break;
  866. case USB_CDC_HEADER_TYPE: /* maybe check version */
  867. break; /* for now we ignore it */
  868. case USB_CDC_ACM_TYPE:
  869. ac_management_function = buffer[3];
  870. break;
  871. case USB_CDC_CALL_MANAGEMENT_TYPE:
  872. call_management_function = buffer[3];
  873. call_interface_num = buffer[4];
  874. if ((quirks & NOT_A_MODEM) == 0 && (call_management_function & 3) != 3)
  875. dev_err(&intf->dev, "This device cannot do calls on its own. It is not a modem.\n");
  876. break;
  877. default:
  878. /* there are LOTS more CDC descriptors that
  879. * could legitimately be found here.
  880. */
  881. dev_dbg(&intf->dev, "Ignoring descriptor: "
  882. "type %02x, length %d\n",
  883. buffer[2], buffer[0]);
  884. break;
  885. }
  886. next_desc:
  887. buflen -= buffer[0];
  888. buffer += buffer[0];
  889. }
  890. if (!union_header) {
  891. if (call_interface_num > 0) {
  892. dev_dbg(&intf->dev, "No union descriptor, using call management descriptor\n");
  893. /* quirks for Droids MuIn LCD */
  894. if (quirks & NO_DATA_INTERFACE)
  895. data_interface = usb_ifnum_to_if(usb_dev, 0);
  896. else
  897. data_interface = usb_ifnum_to_if(usb_dev, (data_interface_num = call_interface_num));
  898. control_interface = intf;
  899. } else {
  900. if (intf->cur_altsetting->desc.bNumEndpoints != 3) {
  901. dev_dbg(&intf->dev,"No union descriptor, giving up\n");
  902. return -ENODEV;
  903. } else {
  904. dev_warn(&intf->dev,"No union descriptor, testing for castrated device\n");
  905. combined_interfaces = 1;
  906. control_interface = data_interface = intf;
  907. goto look_for_collapsed_interface;
  908. }
  909. }
  910. } else {
  911. control_interface = usb_ifnum_to_if(usb_dev, union_header->bMasterInterface0);
  912. data_interface = usb_ifnum_to_if(usb_dev, (data_interface_num = union_header->bSlaveInterface0));
  913. if (!control_interface || !data_interface) {
  914. dev_dbg(&intf->dev, "no interfaces\n");
  915. return -ENODEV;
  916. }
  917. }
  918. if (data_interface_num != call_interface_num)
  919. dev_dbg(&intf->dev, "Separate call control interface. That is not fully supported.\n");
  920. if (control_interface == data_interface) {
  921. /* some broken devices designed for windows work this way */
  922. dev_warn(&intf->dev,"Control and data interfaces are not separated!\n");
  923. combined_interfaces = 1;
  924. /* a popular other OS doesn't use it */
  925. quirks |= NO_CAP_LINE;
  926. if (data_interface->cur_altsetting->desc.bNumEndpoints != 3) {
  927. dev_err(&intf->dev, "This needs exactly 3 endpoints\n");
  928. return -EINVAL;
  929. }
  930. look_for_collapsed_interface:
  931. for (i = 0; i < 3; i++) {
  932. struct usb_endpoint_descriptor *ep;
  933. ep = &data_interface->cur_altsetting->endpoint[i].desc;
  934. if (usb_endpoint_is_int_in(ep))
  935. epctrl = ep;
  936. else if (usb_endpoint_is_bulk_out(ep))
  937. epwrite = ep;
  938. else if (usb_endpoint_is_bulk_in(ep))
  939. epread = ep;
  940. else
  941. return -EINVAL;
  942. }
  943. if (!epctrl || !epread || !epwrite)
  944. return -ENODEV;
  945. else
  946. goto made_compressed_probe;
  947. }
  948. skip_normal_probe:
  949. /*workaround for switched interfaces */
  950. if (data_interface->cur_altsetting->desc.bInterfaceClass
  951. != CDC_DATA_INTERFACE_TYPE) {
  952. if (control_interface->cur_altsetting->desc.bInterfaceClass
  953. == CDC_DATA_INTERFACE_TYPE) {
  954. struct usb_interface *t;
  955. dev_dbg(&intf->dev,
  956. "Your device has switched interfaces.\n");
  957. t = control_interface;
  958. control_interface = data_interface;
  959. data_interface = t;
  960. } else {
  961. return -EINVAL;
  962. }
  963. }
  964. /* Accept probe requests only for the control interface */
  965. if (!combined_interfaces && intf != control_interface)
  966. return -ENODEV;
  967. if (!combined_interfaces && usb_interface_claimed(data_interface)) {
  968. /* valid in this context */
  969. dev_dbg(&intf->dev, "The data interface isn't available\n");
  970. return -EBUSY;
  971. }
  972. if (data_interface->cur_altsetting->desc.bNumEndpoints < 2 ||
  973. control_interface->cur_altsetting->desc.bNumEndpoints == 0)
  974. return -EINVAL;
  975. epctrl = &control_interface->cur_altsetting->endpoint[0].desc;
  976. epread = &data_interface->cur_altsetting->endpoint[0].desc;
  977. epwrite = &data_interface->cur_altsetting->endpoint[1].desc;
  978. /* workaround for switched endpoints */
  979. if (!usb_endpoint_dir_in(epread)) {
  980. /* descriptors are swapped */
  981. struct usb_endpoint_descriptor *t;
  982. dev_dbg(&intf->dev,
  983. "The data interface has switched endpoints\n");
  984. t = epread;
  985. epread = epwrite;
  986. epwrite = t;
  987. }
  988. made_compressed_probe:
  989. dev_dbg(&intf->dev, "interfaces are valid\n");
  990. acm = kzalloc(sizeof(struct acm), GFP_KERNEL);
  991. if (acm == NULL) {
  992. dev_err(&intf->dev, "out of memory (acm kzalloc)\n");
  993. goto alloc_fail;
  994. }
  995. minor = acm_alloc_minor(acm);
  996. if (minor == ACM_TTY_MINORS) {
  997. dev_err(&intf->dev, "no more free acm devices\n");
  998. kfree(acm);
  999. return -ENODEV;
  1000. }
  1001. ctrlsize = usb_endpoint_maxp(epctrl);
  1002. readsize = usb_endpoint_maxp(epread) *
  1003. (quirks == SINGLE_RX_URB ? 1 : 2);
  1004. acm->combined_interfaces = combined_interfaces;
  1005. acm->writesize = usb_endpoint_maxp(epwrite) * 20;
  1006. acm->control = control_interface;
  1007. acm->data = data_interface;
  1008. acm->minor = minor;
  1009. acm->dev = usb_dev;
  1010. acm->ctrl_caps = ac_management_function;
  1011. if (quirks & NO_CAP_LINE)
  1012. acm->ctrl_caps &= ~USB_CDC_CAP_LINE;
  1013. acm->ctrlsize = ctrlsize;
  1014. acm->readsize = readsize;
  1015. acm->rx_buflimit = num_rx_buf;
  1016. INIT_WORK(&acm->work, acm_softint);
  1017. spin_lock_init(&acm->write_lock);
  1018. spin_lock_init(&acm->read_lock);
  1019. mutex_init(&acm->mutex);
  1020. acm->rx_endpoint = usb_rcvbulkpipe(usb_dev, epread->bEndpointAddress);
  1021. acm->is_int_ep = usb_endpoint_xfer_int(epread);
  1022. if (acm->is_int_ep)
  1023. acm->bInterval = epread->bInterval;
  1024. tty_port_init(&acm->port);
  1025. acm->port.ops = &acm_port_ops;
  1026. buf = usb_alloc_coherent(usb_dev, ctrlsize, GFP_KERNEL, &acm->ctrl_dma);
  1027. if (!buf) {
  1028. dev_err(&intf->dev, "out of memory (ctrl buffer alloc)\n");
  1029. goto alloc_fail2;
  1030. }
  1031. acm->ctrl_buffer = buf;
  1032. if (acm_write_buffers_alloc(acm) < 0) {
  1033. dev_err(&intf->dev, "out of memory (write buffer alloc)\n");
  1034. goto alloc_fail4;
  1035. }
  1036. acm->ctrlurb = usb_alloc_urb(0, GFP_KERNEL);
  1037. if (!acm->ctrlurb) {
  1038. dev_err(&intf->dev, "out of memory (ctrlurb kmalloc)\n");
  1039. goto alloc_fail5;
  1040. }
  1041. for (i = 0; i < num_rx_buf; i++) {
  1042. struct acm_rb *rb = &(acm->read_buffers[i]);
  1043. struct urb *urb;
  1044. rb->base = usb_alloc_coherent(acm->dev, readsize, GFP_KERNEL,
  1045. &rb->dma);
  1046. if (!rb->base) {
  1047. dev_err(&intf->dev, "out of memory "
  1048. "(read bufs usb_alloc_coherent)\n");
  1049. goto alloc_fail6;
  1050. }
  1051. rb->index = i;
  1052. rb->instance = acm;
  1053. urb = usb_alloc_urb(0, GFP_KERNEL);
  1054. if (!urb) {
  1055. dev_err(&intf->dev,
  1056. "out of memory (read urbs usb_alloc_urb)\n");
  1057. goto alloc_fail6;
  1058. }
  1059. urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  1060. urb->transfer_dma = rb->dma;
  1061. if (acm->is_int_ep) {
  1062. usb_fill_int_urb(urb, acm->dev,
  1063. acm->rx_endpoint,
  1064. rb->base,
  1065. acm->readsize,
  1066. acm_read_bulk_callback, rb,
  1067. acm->bInterval);
  1068. } else {
  1069. usb_fill_bulk_urb(urb, acm->dev,
  1070. acm->rx_endpoint,
  1071. rb->base,
  1072. acm->readsize,
  1073. acm_read_bulk_callback, rb);
  1074. }
  1075. acm->read_urbs[i] = urb;
  1076. __set_bit(i, &acm->read_urbs_free);
  1077. }
  1078. for (i = 0; i < ACM_NW; i++) {
  1079. struct acm_wb *snd = &(acm->wb[i]);
  1080. snd->urb = usb_alloc_urb(0, GFP_KERNEL);
  1081. if (snd->urb == NULL) {
  1082. dev_err(&intf->dev,
  1083. "out of memory (write urbs usb_alloc_urb)\n");
  1084. goto alloc_fail7;
  1085. }
  1086. if (usb_endpoint_xfer_int(epwrite))
  1087. usb_fill_int_urb(snd->urb, usb_dev,
  1088. usb_sndintpipe(usb_dev, epwrite->bEndpointAddress),
  1089. NULL, acm->writesize, acm_write_bulk, snd, epwrite->bInterval);
  1090. else
  1091. usb_fill_bulk_urb(snd->urb, usb_dev,
  1092. usb_sndbulkpipe(usb_dev, epwrite->bEndpointAddress),
  1093. NULL, acm->writesize, acm_write_bulk, snd);
  1094. snd->urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  1095. snd->instance = acm;
  1096. }
  1097. usb_set_intfdata(intf, acm);
  1098. i = device_create_file(&intf->dev, &dev_attr_bmCapabilities);
  1099. if (i < 0)
  1100. goto alloc_fail7;
  1101. if (cfd) { /* export the country data */
  1102. acm->country_codes = kmalloc(cfd->bLength - 4, GFP_KERNEL);
  1103. if (!acm->country_codes)
  1104. goto skip_countries;
  1105. acm->country_code_size = cfd->bLength - 4;
  1106. memcpy(acm->country_codes, (u8 *)&cfd->wCountyCode0,
  1107. cfd->bLength - 4);
  1108. acm->country_rel_date = cfd->iCountryCodeRelDate;
  1109. i = device_create_file(&intf->dev, &dev_attr_wCountryCodes);
  1110. if (i < 0) {
  1111. kfree(acm->country_codes);
  1112. acm->country_codes = NULL;
  1113. acm->country_code_size = 0;
  1114. goto skip_countries;
  1115. }
  1116. i = device_create_file(&intf->dev,
  1117. &dev_attr_iCountryCodeRelDate);
  1118. if (i < 0) {
  1119. device_remove_file(&intf->dev, &dev_attr_wCountryCodes);
  1120. kfree(acm->country_codes);
  1121. acm->country_codes = NULL;
  1122. acm->country_code_size = 0;
  1123. goto skip_countries;
  1124. }
  1125. }
  1126. skip_countries:
  1127. usb_fill_int_urb(acm->ctrlurb, usb_dev,
  1128. usb_rcvintpipe(usb_dev, epctrl->bEndpointAddress),
  1129. acm->ctrl_buffer, ctrlsize, acm_ctrl_irq, acm,
  1130. /* works around buggy devices */
  1131. epctrl->bInterval ? epctrl->bInterval : 0xff);
  1132. acm->ctrlurb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  1133. acm->ctrlurb->transfer_dma = acm->ctrl_dma;
  1134. dev_info(&intf->dev, "ttyACM%d: USB ACM device\n", minor);
  1135. acm_set_control(acm, acm->ctrlout);
  1136. acm->line.dwDTERate = cpu_to_le32(9600);
  1137. acm->line.bDataBits = 8;
  1138. acm_set_line(acm, &acm->line);
  1139. usb_driver_claim_interface(&acm_driver, data_interface, acm);
  1140. usb_set_intfdata(data_interface, acm);
  1141. usb_get_intf(control_interface);
  1142. tty_dev = tty_port_register_device(&acm->port, acm_tty_driver, minor,
  1143. &control_interface->dev);
  1144. if (IS_ERR(tty_dev)) {
  1145. rv = PTR_ERR(tty_dev);
  1146. goto alloc_fail8;
  1147. }
  1148. return 0;
  1149. alloc_fail8:
  1150. if (acm->country_codes) {
  1151. device_remove_file(&acm->control->dev,
  1152. &dev_attr_wCountryCodes);
  1153. device_remove_file(&acm->control->dev,
  1154. &dev_attr_iCountryCodeRelDate);
  1155. }
  1156. device_remove_file(&acm->control->dev, &dev_attr_bmCapabilities);
  1157. alloc_fail7:
  1158. usb_set_intfdata(intf, NULL);
  1159. for (i = 0; i < ACM_NW; i++)
  1160. usb_free_urb(acm->wb[i].urb);
  1161. alloc_fail6:
  1162. for (i = 0; i < num_rx_buf; i++)
  1163. usb_free_urb(acm->read_urbs[i]);
  1164. acm_read_buffers_free(acm);
  1165. usb_free_urb(acm->ctrlurb);
  1166. alloc_fail5:
  1167. acm_write_buffers_free(acm);
  1168. alloc_fail4:
  1169. usb_free_coherent(usb_dev, ctrlsize, acm->ctrl_buffer, acm->ctrl_dma);
  1170. alloc_fail2:
  1171. acm_release_minor(acm);
  1172. kfree(acm);
  1173. alloc_fail:
  1174. return rv;
  1175. }
  1176. static void stop_data_traffic(struct acm *acm)
  1177. {
  1178. int i;
  1179. dev_dbg(&acm->control->dev, "%s\n", __func__);
  1180. usb_kill_urb(acm->ctrlurb);
  1181. for (i = 0; i < ACM_NW; i++)
  1182. usb_kill_urb(acm->wb[i].urb);
  1183. for (i = 0; i < acm->rx_buflimit; i++)
  1184. usb_kill_urb(acm->read_urbs[i]);
  1185. cancel_work_sync(&acm->work);
  1186. }
  1187. static void acm_disconnect(struct usb_interface *intf)
  1188. {
  1189. struct acm *acm = usb_get_intfdata(intf);
  1190. struct usb_device *usb_dev = interface_to_usbdev(intf);
  1191. struct tty_struct *tty;
  1192. int i;
  1193. dev_dbg(&intf->dev, "%s\n", __func__);
  1194. /* sibling interface is already cleaning up */
  1195. if (!acm)
  1196. return;
  1197. mutex_lock(&acm->mutex);
  1198. acm->disconnected = true;
  1199. if (acm->country_codes) {
  1200. device_remove_file(&acm->control->dev,
  1201. &dev_attr_wCountryCodes);
  1202. device_remove_file(&acm->control->dev,
  1203. &dev_attr_iCountryCodeRelDate);
  1204. }
  1205. device_remove_file(&acm->control->dev, &dev_attr_bmCapabilities);
  1206. usb_set_intfdata(acm->control, NULL);
  1207. usb_set_intfdata(acm->data, NULL);
  1208. mutex_unlock(&acm->mutex);
  1209. tty = tty_port_tty_get(&acm->port);
  1210. if (tty) {
  1211. tty_vhangup(tty);
  1212. tty_kref_put(tty);
  1213. }
  1214. stop_data_traffic(acm);
  1215. tty_unregister_device(acm_tty_driver, acm->minor);
  1216. usb_free_urb(acm->ctrlurb);
  1217. for (i = 0; i < ACM_NW; i++)
  1218. usb_free_urb(acm->wb[i].urb);
  1219. for (i = 0; i < acm->rx_buflimit; i++)
  1220. usb_free_urb(acm->read_urbs[i]);
  1221. acm_write_buffers_free(acm);
  1222. usb_free_coherent(usb_dev, acm->ctrlsize, acm->ctrl_buffer, acm->ctrl_dma);
  1223. acm_read_buffers_free(acm);
  1224. if (!acm->combined_interfaces)
  1225. usb_driver_release_interface(&acm_driver, intf == acm->control ?
  1226. acm->data : acm->control);
  1227. tty_port_put(&acm->port);
  1228. }
  1229. #ifdef CONFIG_PM
  1230. static int acm_suspend(struct usb_interface *intf, pm_message_t message)
  1231. {
  1232. struct acm *acm = usb_get_intfdata(intf);
  1233. int cnt;
  1234. if (PMSG_IS_AUTO(message)) {
  1235. int b;
  1236. spin_lock_irq(&acm->write_lock);
  1237. b = acm->transmitting;
  1238. spin_unlock_irq(&acm->write_lock);
  1239. if (b)
  1240. return -EBUSY;
  1241. }
  1242. spin_lock_irq(&acm->read_lock);
  1243. spin_lock(&acm->write_lock);
  1244. cnt = acm->susp_count++;
  1245. spin_unlock(&acm->write_lock);
  1246. spin_unlock_irq(&acm->read_lock);
  1247. if (cnt)
  1248. return 0;
  1249. if (test_bit(ASYNCB_INITIALIZED, &acm->port.flags))
  1250. stop_data_traffic(acm);
  1251. return 0;
  1252. }
  1253. static int acm_resume(struct usb_interface *intf)
  1254. {
  1255. struct acm *acm = usb_get_intfdata(intf);
  1256. struct acm_wb *wb;
  1257. int rv = 0;
  1258. int cnt;
  1259. spin_lock_irq(&acm->read_lock);
  1260. acm->susp_count -= 1;
  1261. cnt = acm->susp_count;
  1262. spin_unlock_irq(&acm->read_lock);
  1263. if (cnt)
  1264. return 0;
  1265. if (test_bit(ASYNCB_INITIALIZED, &acm->port.flags)) {
  1266. rv = usb_submit_urb(acm->ctrlurb, GFP_NOIO);
  1267. spin_lock_irq(&acm->write_lock);
  1268. if (acm->delayed_wb) {
  1269. wb = acm->delayed_wb;
  1270. acm->delayed_wb = NULL;
  1271. spin_unlock_irq(&acm->write_lock);
  1272. acm_start_wb(acm, wb);
  1273. } else {
  1274. spin_unlock_irq(&acm->write_lock);
  1275. }
  1276. /*
  1277. * delayed error checking because we must
  1278. * do the write path at all cost
  1279. */
  1280. if (rv < 0)
  1281. goto err_out;
  1282. rv = acm_submit_read_urbs(acm, GFP_NOIO);
  1283. }
  1284. err_out:
  1285. return rv;
  1286. }
  1287. static int acm_reset_resume(struct usb_interface *intf)
  1288. {
  1289. struct acm *acm = usb_get_intfdata(intf);
  1290. struct tty_struct *tty;
  1291. if (test_bit(ASYNCB_INITIALIZED, &acm->port.flags)) {
  1292. tty = tty_port_tty_get(&acm->port);
  1293. if (tty) {
  1294. tty_hangup(tty);
  1295. tty_kref_put(tty);
  1296. }
  1297. }
  1298. return acm_resume(intf);
  1299. }
  1300. #endif /* CONFIG_PM */
  1301. #define NOKIA_PCSUITE_ACM_INFO(x) \
  1302. USB_DEVICE_AND_INTERFACE_INFO(0x0421, x, \
  1303. USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM, \
  1304. USB_CDC_ACM_PROTO_VENDOR)
  1305. #define SAMSUNG_PCSUITE_ACM_INFO(x) \
  1306. USB_DEVICE_AND_INTERFACE_INFO(0x04e7, x, \
  1307. USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM, \
  1308. USB_CDC_ACM_PROTO_VENDOR)
  1309. /*
  1310. * USB driver structure.
  1311. */
  1312. static const struct usb_device_id acm_ids[] = {
  1313. /* quirky and broken devices */
  1314. { USB_DEVICE(0x0870, 0x0001), /* Metricom GS Modem */
  1315. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1316. },
  1317. { USB_DEVICE(0x0e8d, 0x0003), /* FIREFLY, MediaTek Inc; andrey.arapov@gmail.com */
  1318. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1319. },
  1320. { USB_DEVICE(0x0e8d, 0x3329), /* MediaTek Inc GPS */
  1321. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1322. },
  1323. { USB_DEVICE(0x0482, 0x0203), /* KYOCERA AH-K3001V */
  1324. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1325. },
  1326. { USB_DEVICE(0x079b, 0x000f), /* BT On-Air USB MODEM */
  1327. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1328. },
  1329. { USB_DEVICE(0x0ace, 0x1602), /* ZyDAS 56K USB MODEM */
  1330. .driver_info = SINGLE_RX_URB,
  1331. },
  1332. { USB_DEVICE(0x0ace, 0x1608), /* ZyDAS 56K USB MODEM */
  1333. .driver_info = SINGLE_RX_URB, /* firmware bug */
  1334. },
  1335. { USB_DEVICE(0x0ace, 0x1611), /* ZyDAS 56K USB MODEM - new version */
  1336. .driver_info = SINGLE_RX_URB, /* firmware bug */
  1337. },
  1338. { USB_DEVICE(0x22b8, 0x7000), /* Motorola Q Phone */
  1339. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1340. },
  1341. { USB_DEVICE(0x0803, 0x3095), /* Zoom Telephonics Model 3095F USB MODEM */
  1342. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1343. },
  1344. { USB_DEVICE(0x0572, 0x1321), /* Conexant USB MODEM CX93010 */
  1345. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1346. },
  1347. { USB_DEVICE(0x0572, 0x1324), /* Conexant USB MODEM RD02-D400 */
  1348. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1349. },
  1350. { USB_DEVICE(0x0572, 0x1328), /* Shiro / Aztech USB MODEM UM-3100 */
  1351. .driver_info = NO_UNION_NORMAL, /* has no union descriptor */
  1352. },
  1353. { USB_DEVICE(0x22b8, 0x6425), /* Motorola MOTOMAGX phones */
  1354. },
  1355. /* Motorola H24 HSPA module: */
  1356. { USB_DEVICE(0x22b8, 0x2d91) }, /* modem */
  1357. { USB_DEVICE(0x22b8, 0x2d92) }, /* modem + diagnostics */
  1358. { USB_DEVICE(0x22b8, 0x2d93) }, /* modem + AT port */
  1359. { USB_DEVICE(0x22b8, 0x2d95) }, /* modem + AT port + diagnostics */
  1360. { USB_DEVICE(0x22b8, 0x2d96) }, /* modem + NMEA */
  1361. { USB_DEVICE(0x22b8, 0x2d97) }, /* modem + diagnostics + NMEA */
  1362. { USB_DEVICE(0x22b8, 0x2d99) }, /* modem + AT port + NMEA */
  1363. { USB_DEVICE(0x22b8, 0x2d9a) }, /* modem + AT port + diagnostics + NMEA */
  1364. { USB_DEVICE(0x0572, 0x1329), /* Hummingbird huc56s (Conexant) */
  1365. .driver_info = NO_UNION_NORMAL, /* union descriptor misplaced on
  1366. data interface instead of
  1367. communications interface.
  1368. Maybe we should define a new
  1369. quirk for this. */
  1370. },
  1371. { USB_DEVICE(0x0572, 0x1340), /* Conexant CX93010-2x UCMxx */
  1372. .driver_info = NO_UNION_NORMAL,
  1373. },
  1374. { USB_DEVICE(0x05f9, 0x4002), /* PSC Scanning, Magellan 800i */
  1375. .driver_info = NO_UNION_NORMAL,
  1376. },
  1377. { USB_DEVICE(0x1bbb, 0x0003), /* Alcatel OT-I650 */
  1378. .driver_info = NO_UNION_NORMAL, /* reports zero length descriptor */
  1379. },
  1380. { USB_DEVICE(0x1576, 0x03b1), /* Maretron USB100 */
  1381. .driver_info = NO_UNION_NORMAL, /* reports zero length descriptor */
  1382. },
  1383. /* Nokia S60 phones expose two ACM channels. The first is
  1384. * a modem and is picked up by the standard AT-command
  1385. * information below. The second is 'vendor-specific' but
  1386. * is treated as a serial device at the S60 end, so we want
  1387. * to expose it on Linux too. */
  1388. { NOKIA_PCSUITE_ACM_INFO(0x042D), }, /* Nokia 3250 */
  1389. { NOKIA_PCSUITE_ACM_INFO(0x04D8), }, /* Nokia 5500 Sport */
  1390. { NOKIA_PCSUITE_ACM_INFO(0x04C9), }, /* Nokia E50 */
  1391. { NOKIA_PCSUITE_ACM_INFO(0x0419), }, /* Nokia E60 */
  1392. { NOKIA_PCSUITE_ACM_INFO(0x044D), }, /* Nokia E61 */
  1393. { NOKIA_PCSUITE_ACM_INFO(0x0001), }, /* Nokia E61i */
  1394. { NOKIA_PCSUITE_ACM_INFO(0x0475), }, /* Nokia E62 */
  1395. { NOKIA_PCSUITE_ACM_INFO(0x0508), }, /* Nokia E65 */
  1396. { NOKIA_PCSUITE_ACM_INFO(0x0418), }, /* Nokia E70 */
  1397. { NOKIA_PCSUITE_ACM_INFO(0x0425), }, /* Nokia N71 */
  1398. { NOKIA_PCSUITE_ACM_INFO(0x0486), }, /* Nokia N73 */
  1399. { NOKIA_PCSUITE_ACM_INFO(0x04DF), }, /* Nokia N75 */
  1400. { NOKIA_PCSUITE_ACM_INFO(0x000e), }, /* Nokia N77 */
  1401. { NOKIA_PCSUITE_ACM_INFO(0x0445), }, /* Nokia N80 */
  1402. { NOKIA_PCSUITE_ACM_INFO(0x042F), }, /* Nokia N91 & N91 8GB */
  1403. { NOKIA_PCSUITE_ACM_INFO(0x048E), }, /* Nokia N92 */
  1404. { NOKIA_PCSUITE_ACM_INFO(0x0420), }, /* Nokia N93 */
  1405. { NOKIA_PCSUITE_ACM_INFO(0x04E6), }, /* Nokia N93i */
  1406. { NOKIA_PCSUITE_ACM_INFO(0x04B2), }, /* Nokia 5700 XpressMusic */
  1407. { NOKIA_PCSUITE_ACM_INFO(0x0134), }, /* Nokia 6110 Navigator (China) */
  1408. { NOKIA_PCSUITE_ACM_INFO(0x046E), }, /* Nokia 6110 Navigator */
  1409. { NOKIA_PCSUITE_ACM_INFO(0x002f), }, /* Nokia 6120 classic & */
  1410. { NOKIA_PCSUITE_ACM_INFO(0x0088), }, /* Nokia 6121 classic */
  1411. { NOKIA_PCSUITE_ACM_INFO(0x00fc), }, /* Nokia 6124 classic */
  1412. { NOKIA_PCSUITE_ACM_INFO(0x0042), }, /* Nokia E51 */
  1413. { NOKIA_PCSUITE_ACM_INFO(0x00b0), }, /* Nokia E66 */
  1414. { NOKIA_PCSUITE_ACM_INFO(0x00ab), }, /* Nokia E71 */
  1415. { NOKIA_PCSUITE_ACM_INFO(0x0481), }, /* Nokia N76 */
  1416. { NOKIA_PCSUITE_ACM_INFO(0x0007), }, /* Nokia N81 & N81 8GB */
  1417. { NOKIA_PCSUITE_ACM_INFO(0x0071), }, /* Nokia N82 */
  1418. { NOKIA_PCSUITE_ACM_INFO(0x04F0), }, /* Nokia N95 & N95-3 NAM */
  1419. { NOKIA_PCSUITE_ACM_INFO(0x0070), }, /* Nokia N95 8GB */
  1420. { NOKIA_PCSUITE_ACM_INFO(0x00e9), }, /* Nokia 5320 XpressMusic */
  1421. { NOKIA_PCSUITE_ACM_INFO(0x0099), }, /* Nokia 6210 Navigator, RM-367 */
  1422. { NOKIA_PCSUITE_ACM_INFO(0x0128), }, /* Nokia 6210 Navigator, RM-419 */
  1423. { NOKIA_PCSUITE_ACM_INFO(0x008f), }, /* Nokia 6220 Classic */
  1424. { NOKIA_PCSUITE_ACM_INFO(0x00a0), }, /* Nokia 6650 */
  1425. { NOKIA_PCSUITE_ACM_INFO(0x007b), }, /* Nokia N78 */
  1426. { NOKIA_PCSUITE_ACM_INFO(0x0094), }, /* Nokia N85 */
  1427. { NOKIA_PCSUITE_ACM_INFO(0x003a), }, /* Nokia N96 & N96-3 */
  1428. { NOKIA_PCSUITE_ACM_INFO(0x00e9), }, /* Nokia 5320 XpressMusic */
  1429. { NOKIA_PCSUITE_ACM_INFO(0x0108), }, /* Nokia 5320 XpressMusic 2G */
  1430. { NOKIA_PCSUITE_ACM_INFO(0x01f5), }, /* Nokia N97, RM-505 */
  1431. { NOKIA_PCSUITE_ACM_INFO(0x02e3), }, /* Nokia 5230, RM-588 */
  1432. { NOKIA_PCSUITE_ACM_INFO(0x0178), }, /* Nokia E63 */
  1433. { NOKIA_PCSUITE_ACM_INFO(0x010e), }, /* Nokia E75 */
  1434. { NOKIA_PCSUITE_ACM_INFO(0x02d9), }, /* Nokia 6760 Slide */
  1435. { NOKIA_PCSUITE_ACM_INFO(0x01d0), }, /* Nokia E52 */
  1436. { NOKIA_PCSUITE_ACM_INFO(0x0223), }, /* Nokia E72 */
  1437. { NOKIA_PCSUITE_ACM_INFO(0x0275), }, /* Nokia X6 */
  1438. { NOKIA_PCSUITE_ACM_INFO(0x026c), }, /* Nokia N97 Mini */
  1439. { NOKIA_PCSUITE_ACM_INFO(0x0154), }, /* Nokia 5800 XpressMusic */
  1440. { NOKIA_PCSUITE_ACM_INFO(0x04ce), }, /* Nokia E90 */
  1441. { NOKIA_PCSUITE_ACM_INFO(0x01d4), }, /* Nokia E55 */
  1442. { NOKIA_PCSUITE_ACM_INFO(0x0302), }, /* Nokia N8 */
  1443. { NOKIA_PCSUITE_ACM_INFO(0x0335), }, /* Nokia E7 */
  1444. { NOKIA_PCSUITE_ACM_INFO(0x03cd), }, /* Nokia C7 */
  1445. { SAMSUNG_PCSUITE_ACM_INFO(0x6651), }, /* Samsung GTi8510 (INNOV8) */
  1446. /* Support for Owen devices */
  1447. { USB_DEVICE(0x03eb, 0x0030), }, /* Owen SI30 */
  1448. /* NOTE: non-Nokia COMM/ACM/0xff is likely MSFT RNDIS... NOT a modem! */
  1449. /* Support Lego NXT using pbLua firmware */
  1450. { USB_DEVICE(0x0694, 0xff00),
  1451. .driver_info = NOT_A_MODEM,
  1452. },
  1453. /* Support for Droids MuIn LCD */
  1454. { USB_DEVICE(0x04d8, 0x000b),
  1455. .driver_info = NO_DATA_INTERFACE,
  1456. },
  1457. /* control interfaces without any protocol set */
  1458. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1459. USB_CDC_PROTO_NONE) },
  1460. /* control interfaces with various AT-command sets */
  1461. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1462. USB_CDC_ACM_PROTO_AT_V25TER) },
  1463. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1464. USB_CDC_ACM_PROTO_AT_PCCA101) },
  1465. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1466. USB_CDC_ACM_PROTO_AT_PCCA101_WAKE) },
  1467. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1468. USB_CDC_ACM_PROTO_AT_GSM) },
  1469. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1470. USB_CDC_ACM_PROTO_AT_3G) },
  1471. { USB_INTERFACE_INFO(USB_CLASS_COMM, USB_CDC_SUBCLASS_ACM,
  1472. USB_CDC_ACM_PROTO_AT_CDMA) },
  1473. { }
  1474. };
  1475. MODULE_DEVICE_TABLE(usb, acm_ids);
  1476. static struct usb_driver acm_driver = {
  1477. .name = "cdc_acm",
  1478. .probe = acm_probe,
  1479. .disconnect = acm_disconnect,
  1480. #ifdef CONFIG_PM
  1481. .suspend = acm_suspend,
  1482. .resume = acm_resume,
  1483. .reset_resume = acm_reset_resume,
  1484. #endif
  1485. .id_table = acm_ids,
  1486. #ifdef CONFIG_PM
  1487. .supports_autosuspend = 1,
  1488. #endif
  1489. .disable_hub_initiated_lpm = 1,
  1490. };
  1491. /*
  1492. * TTY driver structures.
  1493. */
  1494. static const struct tty_operations acm_ops = {
  1495. .install = acm_tty_install,
  1496. .open = acm_tty_open,
  1497. .close = acm_tty_close,
  1498. .cleanup = acm_tty_cleanup,
  1499. .hangup = acm_tty_hangup,
  1500. .write = acm_tty_write,
  1501. .write_room = acm_tty_write_room,
  1502. .ioctl = acm_tty_ioctl,
  1503. .throttle = acm_tty_throttle,
  1504. .unthrottle = acm_tty_unthrottle,
  1505. .chars_in_buffer = acm_tty_chars_in_buffer,
  1506. .break_ctl = acm_tty_break_ctl,
  1507. .set_termios = acm_tty_set_termios,
  1508. .tiocmget = acm_tty_tiocmget,
  1509. .tiocmset = acm_tty_tiocmset,
  1510. };
  1511. /*
  1512. * Init / exit.
  1513. */
  1514. static int __init acm_init(void)
  1515. {
  1516. int retval;
  1517. acm_tty_driver = alloc_tty_driver(ACM_TTY_MINORS);
  1518. if (!acm_tty_driver)
  1519. return -ENOMEM;
  1520. acm_tty_driver->driver_name = "acm",
  1521. acm_tty_driver->name = "ttyACM",
  1522. acm_tty_driver->major = ACM_TTY_MAJOR,
  1523. acm_tty_driver->minor_start = 0,
  1524. acm_tty_driver->type = TTY_DRIVER_TYPE_SERIAL,
  1525. acm_tty_driver->subtype = SERIAL_TYPE_NORMAL,
  1526. acm_tty_driver->flags = TTY_DRIVER_REAL_RAW | TTY_DRIVER_DYNAMIC_DEV;
  1527. acm_tty_driver->init_termios = tty_std_termios;
  1528. acm_tty_driver->init_termios.c_cflag = B9600 | CS8 | CREAD |
  1529. HUPCL | CLOCAL;
  1530. tty_set_operations(acm_tty_driver, &acm_ops);
  1531. retval = tty_register_driver(acm_tty_driver);
  1532. if (retval) {
  1533. put_tty_driver(acm_tty_driver);
  1534. return retval;
  1535. }
  1536. retval = usb_register(&acm_driver);
  1537. if (retval) {
  1538. tty_unregister_driver(acm_tty_driver);
  1539. put_tty_driver(acm_tty_driver);
  1540. return retval;
  1541. }
  1542. printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "\n");
  1543. return 0;
  1544. }
  1545. static void __exit acm_exit(void)
  1546. {
  1547. usb_deregister(&acm_driver);
  1548. tty_unregister_driver(acm_tty_driver);
  1549. put_tty_driver(acm_tty_driver);
  1550. }
  1551. module_init(acm_init);
  1552. module_exit(acm_exit);
  1553. MODULE_AUTHOR(DRIVER_AUTHOR);
  1554. MODULE_DESCRIPTION(DRIVER_DESC);
  1555. MODULE_LICENSE("GPL");
  1556. MODULE_ALIAS_CHARDEV_MAJOR(ACM_TTY_MAJOR);