opticon.c 15 KB

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  1. /*
  2. * Opticon USB barcode to serial driver
  3. *
  4. * Copyright (C) 2011 Martin Jansen <martin.jansen@opticon.com>
  5. * Copyright (C) 2008 - 2009 Greg Kroah-Hartman <gregkh@suse.de>
  6. * Copyright (C) 2008 - 2009 Novell Inc.
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License version
  10. * 2 as published by the Free Software Foundation.
  11. */
  12. #include <linux/kernel.h>
  13. #include <linux/init.h>
  14. #include <linux/tty.h>
  15. #include <linux/tty_driver.h>
  16. #include <linux/slab.h>
  17. #include <linux/tty_flip.h>
  18. #include <linux/serial.h>
  19. #include <linux/module.h>
  20. #include <linux/usb.h>
  21. #include <linux/usb/serial.h>
  22. #include <linux/uaccess.h>
  23. #define CONTROL_RTS 0x02
  24. #define RESEND_CTS_STATE 0x03
  25. /* max number of write urbs in flight */
  26. #define URB_UPPER_LIMIT 8
  27. /* This driver works for the Opticon 1D barcode reader
  28. * an examples of 1D barcode types are EAN, UPC, Code39, IATA etc.. */
  29. #define DRIVER_DESC "Opticon USB barcode to serial driver (1D)"
  30. static const struct usb_device_id id_table[] = {
  31. { USB_DEVICE(0x065a, 0x0009) },
  32. { },
  33. };
  34. MODULE_DEVICE_TABLE(usb, id_table);
  35. /* This structure holds all of the individual device information */
  36. struct opticon_private {
  37. struct usb_device *udev;
  38. struct usb_serial *serial;
  39. struct usb_serial_port *port;
  40. unsigned char *bulk_in_buffer;
  41. struct urb *bulk_read_urb;
  42. int buffer_size;
  43. u8 bulk_address;
  44. spinlock_t lock; /* protects the following flags */
  45. bool throttled;
  46. bool actually_throttled;
  47. bool rts;
  48. bool cts;
  49. int outstanding_urbs;
  50. };
  51. static void opticon_read_bulk_callback(struct urb *urb)
  52. {
  53. struct opticon_private *priv = urb->context;
  54. unsigned char *data = urb->transfer_buffer;
  55. struct usb_serial_port *port = priv->port;
  56. int status = urb->status;
  57. struct tty_struct *tty;
  58. int result;
  59. int data_length;
  60. unsigned long flags;
  61. switch (status) {
  62. case 0:
  63. /* success */
  64. break;
  65. case -ECONNRESET:
  66. case -ENOENT:
  67. case -ESHUTDOWN:
  68. /* this urb is terminated, clean up */
  69. dev_dbg(&priv->udev->dev, "%s - urb shutting down with status: %d\n",
  70. __func__, status);
  71. return;
  72. default:
  73. dev_dbg(&priv->udev->dev, "%s - nonzero urb status received: %d\n",
  74. __func__, status);
  75. goto exit;
  76. }
  77. usb_serial_debug_data(&port->dev, __func__, urb->actual_length, data);
  78. if (urb->actual_length > 2) {
  79. data_length = urb->actual_length - 2;
  80. /*
  81. * Data from the device comes with a 2 byte header:
  82. *
  83. * <0x00><0x00>data...
  84. * This is real data to be sent to the tty layer
  85. * <0x00><0x01)level
  86. * This is a CTS level change, the third byte is the CTS
  87. * value (0 for low, 1 for high).
  88. */
  89. if ((data[0] == 0x00) && (data[1] == 0x00)) {
  90. /* real data, send it to the tty layer */
  91. tty = tty_port_tty_get(&port->port);
  92. if (tty) {
  93. tty_insert_flip_string(tty, data + 2,
  94. data_length);
  95. tty_flip_buffer_push(tty);
  96. tty_kref_put(tty);
  97. }
  98. } else {
  99. if ((data[0] == 0x00) && (data[1] == 0x01)) {
  100. spin_lock_irqsave(&priv->lock, flags);
  101. /* CTS status information package */
  102. if (data[2] == 0x00)
  103. priv->cts = false;
  104. else
  105. priv->cts = true;
  106. spin_unlock_irqrestore(&priv->lock, flags);
  107. } else {
  108. dev_dbg(&priv->udev->dev,
  109. "Unknown data packet received from the device:"
  110. " %2x %2x\n",
  111. data[0], data[1]);
  112. }
  113. }
  114. } else {
  115. dev_dbg(&priv->udev->dev,
  116. "Improper amount of data received from the device, "
  117. "%d bytes", urb->actual_length);
  118. }
  119. exit:
  120. spin_lock(&priv->lock);
  121. /* Continue trying to always read if we should */
  122. if (!priv->throttled) {
  123. result = usb_submit_urb(priv->bulk_read_urb, GFP_ATOMIC);
  124. if (result)
  125. dev_err(&port->dev,
  126. "%s - failed resubmitting read urb, error %d\n",
  127. __func__, result);
  128. } else
  129. priv->actually_throttled = true;
  130. spin_unlock(&priv->lock);
  131. }
  132. static int send_control_msg(struct usb_serial_port *port, u8 requesttype,
  133. u8 val)
  134. {
  135. struct usb_serial *serial = port->serial;
  136. int retval;
  137. u8 *buffer;
  138. buffer = kzalloc(1, GFP_KERNEL);
  139. if (!buffer)
  140. return -ENOMEM;
  141. buffer[0] = val;
  142. /* Send the message to the vendor control endpoint
  143. * of the connected device */
  144. retval = usb_control_msg(serial->dev, usb_sndctrlpipe(serial->dev, 0),
  145. requesttype,
  146. USB_DIR_OUT|USB_TYPE_VENDOR|USB_RECIP_INTERFACE,
  147. 0, 0, buffer, 1, 0);
  148. kfree(buffer);
  149. return retval;
  150. }
  151. static int opticon_open(struct tty_struct *tty, struct usb_serial_port *port)
  152. {
  153. struct opticon_private *priv = usb_get_serial_data(port->serial);
  154. unsigned long flags;
  155. int result = 0;
  156. spin_lock_irqsave(&priv->lock, flags);
  157. priv->throttled = false;
  158. priv->actually_throttled = false;
  159. priv->port = port;
  160. priv->rts = false;
  161. spin_unlock_irqrestore(&priv->lock, flags);
  162. /* Clear RTS line */
  163. send_control_msg(port, CONTROL_RTS, 0);
  164. /* clear the halt status of the enpoint */
  165. usb_clear_halt(priv->udev, priv->bulk_read_urb->pipe);
  166. result = usb_submit_urb(priv->bulk_read_urb, GFP_KERNEL);
  167. if (result)
  168. dev_err(&port->dev,
  169. "%s - failed resubmitting read urb, error %d\n",
  170. __func__, result);
  171. /* Request CTS line state, sometimes during opening the current
  172. * CTS state can be missed. */
  173. send_control_msg(port, RESEND_CTS_STATE, 1);
  174. return result;
  175. }
  176. static void opticon_close(struct usb_serial_port *port)
  177. {
  178. struct opticon_private *priv = usb_get_serial_data(port->serial);
  179. /* shutdown our urbs */
  180. usb_kill_urb(priv->bulk_read_urb);
  181. }
  182. static void opticon_write_control_callback(struct urb *urb)
  183. {
  184. struct opticon_private *priv = urb->context;
  185. int status = urb->status;
  186. unsigned long flags;
  187. /* free up the transfer buffer, as usb_free_urb() does not do this */
  188. kfree(urb->transfer_buffer);
  189. /* setup packet may be set if we're using it for writing */
  190. kfree(urb->setup_packet);
  191. if (status)
  192. dev_dbg(&priv->udev->dev, "%s - nonzero write bulk status received: %d\n",
  193. __func__, status);
  194. spin_lock_irqsave(&priv->lock, flags);
  195. --priv->outstanding_urbs;
  196. spin_unlock_irqrestore(&priv->lock, flags);
  197. usb_serial_port_softint(priv->port);
  198. }
  199. static int opticon_write(struct tty_struct *tty, struct usb_serial_port *port,
  200. const unsigned char *buf, int count)
  201. {
  202. struct opticon_private *priv = usb_get_serial_data(port->serial);
  203. struct usb_serial *serial = port->serial;
  204. struct urb *urb;
  205. unsigned char *buffer;
  206. unsigned long flags;
  207. int status;
  208. struct usb_ctrlrequest *dr;
  209. spin_lock_irqsave(&priv->lock, flags);
  210. if (priv->outstanding_urbs > URB_UPPER_LIMIT) {
  211. spin_unlock_irqrestore(&priv->lock, flags);
  212. dev_dbg(&port->dev, "%s - write limit hit\n", __func__);
  213. return 0;
  214. }
  215. priv->outstanding_urbs++;
  216. spin_unlock_irqrestore(&priv->lock, flags);
  217. buffer = kmalloc(count, GFP_ATOMIC);
  218. if (!buffer) {
  219. dev_err(&port->dev, "out of memory\n");
  220. count = -ENOMEM;
  221. goto error_no_buffer;
  222. }
  223. urb = usb_alloc_urb(0, GFP_ATOMIC);
  224. if (!urb) {
  225. dev_err(&port->dev, "no more free urbs\n");
  226. count = -ENOMEM;
  227. goto error_no_urb;
  228. }
  229. memcpy(buffer, buf, count);
  230. usb_serial_debug_data(&port->dev, __func__, count, buffer);
  231. /* The conncected devices do not have a bulk write endpoint,
  232. * to transmit data to de barcode device the control endpoint is used */
  233. dr = kmalloc(sizeof(struct usb_ctrlrequest), GFP_NOIO);
  234. if (!dr) {
  235. dev_err(&port->dev, "out of memory\n");
  236. count = -ENOMEM;
  237. goto error_no_dr;
  238. }
  239. dr->bRequestType = USB_TYPE_VENDOR | USB_RECIP_INTERFACE | USB_DIR_OUT;
  240. dr->bRequest = 0x01;
  241. dr->wValue = 0;
  242. dr->wIndex = 0;
  243. dr->wLength = cpu_to_le16(count);
  244. usb_fill_control_urb(urb, serial->dev,
  245. usb_sndctrlpipe(serial->dev, 0),
  246. (unsigned char *)dr, buffer, count,
  247. opticon_write_control_callback, priv);
  248. /* send it down the pipe */
  249. status = usb_submit_urb(urb, GFP_ATOMIC);
  250. if (status) {
  251. dev_err(&port->dev,
  252. "%s - usb_submit_urb(write endpoint) failed status = %d\n",
  253. __func__, status);
  254. count = status;
  255. goto error;
  256. }
  257. /* we are done with this urb, so let the host driver
  258. * really free it when it is finished with it */
  259. usb_free_urb(urb);
  260. return count;
  261. error:
  262. kfree(dr);
  263. error_no_dr:
  264. usb_free_urb(urb);
  265. error_no_urb:
  266. kfree(buffer);
  267. error_no_buffer:
  268. spin_lock_irqsave(&priv->lock, flags);
  269. --priv->outstanding_urbs;
  270. spin_unlock_irqrestore(&priv->lock, flags);
  271. return count;
  272. }
  273. static int opticon_write_room(struct tty_struct *tty)
  274. {
  275. struct usb_serial_port *port = tty->driver_data;
  276. struct opticon_private *priv = usb_get_serial_data(port->serial);
  277. unsigned long flags;
  278. /*
  279. * We really can take almost anything the user throws at us
  280. * but let's pick a nice big number to tell the tty
  281. * layer that we have lots of free space, unless we don't.
  282. */
  283. spin_lock_irqsave(&priv->lock, flags);
  284. if (priv->outstanding_urbs > URB_UPPER_LIMIT * 2 / 3) {
  285. spin_unlock_irqrestore(&priv->lock, flags);
  286. dev_dbg(&port->dev, "%s - write limit hit\n", __func__);
  287. return 0;
  288. }
  289. spin_unlock_irqrestore(&priv->lock, flags);
  290. return 2048;
  291. }
  292. static void opticon_throttle(struct tty_struct *tty)
  293. {
  294. struct usb_serial_port *port = tty->driver_data;
  295. struct opticon_private *priv = usb_get_serial_data(port->serial);
  296. unsigned long flags;
  297. spin_lock_irqsave(&priv->lock, flags);
  298. priv->throttled = true;
  299. spin_unlock_irqrestore(&priv->lock, flags);
  300. }
  301. static void opticon_unthrottle(struct tty_struct *tty)
  302. {
  303. struct usb_serial_port *port = tty->driver_data;
  304. struct opticon_private *priv = usb_get_serial_data(port->serial);
  305. unsigned long flags;
  306. int result, was_throttled;
  307. spin_lock_irqsave(&priv->lock, flags);
  308. priv->throttled = false;
  309. was_throttled = priv->actually_throttled;
  310. priv->actually_throttled = false;
  311. spin_unlock_irqrestore(&priv->lock, flags);
  312. if (was_throttled) {
  313. result = usb_submit_urb(priv->bulk_read_urb, GFP_ATOMIC);
  314. if (result)
  315. dev_err(&port->dev,
  316. "%s - failed submitting read urb, error %d\n",
  317. __func__, result);
  318. }
  319. }
  320. static int opticon_tiocmget(struct tty_struct *tty)
  321. {
  322. struct usb_serial_port *port = tty->driver_data;
  323. struct opticon_private *priv = usb_get_serial_data(port->serial);
  324. unsigned long flags;
  325. int result = 0;
  326. spin_lock_irqsave(&priv->lock, flags);
  327. if (priv->rts)
  328. result |= TIOCM_RTS;
  329. if (priv->cts)
  330. result |= TIOCM_CTS;
  331. spin_unlock_irqrestore(&priv->lock, flags);
  332. dev_dbg(&port->dev, "%s - %x\n", __func__, result);
  333. return result;
  334. }
  335. static int opticon_tiocmset(struct tty_struct *tty,
  336. unsigned int set, unsigned int clear)
  337. {
  338. struct usb_serial_port *port = tty->driver_data;
  339. struct usb_serial *serial = port->serial;
  340. struct opticon_private *priv = usb_get_serial_data(port->serial);
  341. unsigned long flags;
  342. bool rts;
  343. bool changed = false;
  344. int ret;
  345. /* We only support RTS so we only handle that */
  346. spin_lock_irqsave(&priv->lock, flags);
  347. rts = priv->rts;
  348. if (set & TIOCM_RTS)
  349. priv->rts = true;
  350. if (clear & TIOCM_RTS)
  351. priv->rts = false;
  352. changed = rts ^ priv->rts;
  353. spin_unlock_irqrestore(&priv->lock, flags);
  354. if (!changed)
  355. return 0;
  356. /* Send the new RTS state to the connected device */
  357. mutex_lock(&serial->disc_mutex);
  358. if (!serial->disconnected)
  359. ret = send_control_msg(port, CONTROL_RTS, !rts);
  360. else
  361. ret = -ENODEV;
  362. mutex_unlock(&serial->disc_mutex);
  363. return ret;
  364. }
  365. static int get_serial_info(struct opticon_private *priv,
  366. struct serial_struct __user *serial)
  367. {
  368. struct serial_struct tmp;
  369. if (!serial)
  370. return -EFAULT;
  371. memset(&tmp, 0x00, sizeof(tmp));
  372. /* fake emulate a 16550 uart to make userspace code happy */
  373. tmp.type = PORT_16550A;
  374. tmp.line = priv->serial->minor;
  375. tmp.port = 0;
  376. tmp.irq = 0;
  377. tmp.flags = ASYNC_SKIP_TEST | ASYNC_AUTO_IRQ;
  378. tmp.xmit_fifo_size = 1024;
  379. tmp.baud_base = 9600;
  380. tmp.close_delay = 5*HZ;
  381. tmp.closing_wait = 30*HZ;
  382. if (copy_to_user(serial, &tmp, sizeof(*serial)))
  383. return -EFAULT;
  384. return 0;
  385. }
  386. static int opticon_ioctl(struct tty_struct *tty,
  387. unsigned int cmd, unsigned long arg)
  388. {
  389. struct usb_serial_port *port = tty->driver_data;
  390. struct opticon_private *priv = usb_get_serial_data(port->serial);
  391. dev_dbg(&port->dev, "%s - port %d, cmd = 0x%x\n", __func__, port->number, cmd);
  392. switch (cmd) {
  393. case TIOCGSERIAL:
  394. return get_serial_info(priv,
  395. (struct serial_struct __user *)arg);
  396. }
  397. return -ENOIOCTLCMD;
  398. }
  399. static int opticon_startup(struct usb_serial *serial)
  400. {
  401. struct opticon_private *priv;
  402. struct usb_host_interface *intf;
  403. int i;
  404. int retval = -ENOMEM;
  405. bool bulk_in_found = false;
  406. /* create our private serial structure */
  407. priv = kzalloc(sizeof(*priv), GFP_KERNEL);
  408. if (priv == NULL) {
  409. dev_err(&serial->dev->dev, "%s - Out of memory\n", __func__);
  410. return -ENOMEM;
  411. }
  412. spin_lock_init(&priv->lock);
  413. priv->serial = serial;
  414. priv->port = serial->port[0];
  415. priv->udev = serial->dev;
  416. priv->outstanding_urbs = 0; /* Init the outstanding urbs */
  417. /* find our bulk endpoint */
  418. intf = serial->interface->altsetting;
  419. for (i = 0; i < intf->desc.bNumEndpoints; ++i) {
  420. struct usb_endpoint_descriptor *endpoint;
  421. endpoint = &intf->endpoint[i].desc;
  422. if (!usb_endpoint_is_bulk_in(endpoint))
  423. continue;
  424. priv->bulk_read_urb = usb_alloc_urb(0, GFP_KERNEL);
  425. if (!priv->bulk_read_urb) {
  426. dev_err(&priv->udev->dev, "out of memory\n");
  427. goto error;
  428. }
  429. priv->buffer_size = usb_endpoint_maxp(endpoint) * 2;
  430. priv->bulk_in_buffer = kmalloc(priv->buffer_size, GFP_KERNEL);
  431. if (!priv->bulk_in_buffer) {
  432. dev_err(&priv->udev->dev, "out of memory\n");
  433. goto error;
  434. }
  435. priv->bulk_address = endpoint->bEndpointAddress;
  436. bulk_in_found = true;
  437. break;
  438. }
  439. if (!bulk_in_found) {
  440. dev_err(&priv->udev->dev,
  441. "Error - the proper endpoints were not found!\n");
  442. goto error;
  443. }
  444. usb_fill_bulk_urb(priv->bulk_read_urb, serial->dev,
  445. usb_rcvbulkpipe(serial->dev,
  446. priv->bulk_address),
  447. priv->bulk_in_buffer, priv->buffer_size,
  448. opticon_read_bulk_callback, priv);
  449. usb_set_serial_data(serial, priv);
  450. return 0;
  451. error:
  452. usb_free_urb(priv->bulk_read_urb);
  453. kfree(priv->bulk_in_buffer);
  454. kfree(priv);
  455. return retval;
  456. }
  457. static void opticon_disconnect(struct usb_serial *serial)
  458. {
  459. struct opticon_private *priv = usb_get_serial_data(serial);
  460. usb_kill_urb(priv->bulk_read_urb);
  461. usb_free_urb(priv->bulk_read_urb);
  462. }
  463. static void opticon_release(struct usb_serial *serial)
  464. {
  465. struct opticon_private *priv = usb_get_serial_data(serial);
  466. kfree(priv->bulk_in_buffer);
  467. kfree(priv);
  468. }
  469. static int opticon_suspend(struct usb_serial *serial, pm_message_t message)
  470. {
  471. struct opticon_private *priv = usb_get_serial_data(serial);
  472. usb_kill_urb(priv->bulk_read_urb);
  473. return 0;
  474. }
  475. static int opticon_resume(struct usb_serial *serial)
  476. {
  477. struct opticon_private *priv = usb_get_serial_data(serial);
  478. struct usb_serial_port *port = serial->port[0];
  479. int result;
  480. mutex_lock(&port->port.mutex);
  481. /* This is protected by the port mutex against close/open */
  482. if (test_bit(ASYNCB_INITIALIZED, &port->port.flags))
  483. result = usb_submit_urb(priv->bulk_read_urb, GFP_NOIO);
  484. else
  485. result = 0;
  486. mutex_unlock(&port->port.mutex);
  487. return result;
  488. }
  489. static struct usb_serial_driver opticon_device = {
  490. .driver = {
  491. .owner = THIS_MODULE,
  492. .name = "opticon",
  493. },
  494. .id_table = id_table,
  495. .num_ports = 1,
  496. .attach = opticon_startup,
  497. .open = opticon_open,
  498. .close = opticon_close,
  499. .write = opticon_write,
  500. .write_room = opticon_write_room,
  501. .disconnect = opticon_disconnect,
  502. .release = opticon_release,
  503. .throttle = opticon_throttle,
  504. .unthrottle = opticon_unthrottle,
  505. .ioctl = opticon_ioctl,
  506. .tiocmget = opticon_tiocmget,
  507. .tiocmset = opticon_tiocmset,
  508. .suspend = opticon_suspend,
  509. .resume = opticon_resume,
  510. };
  511. static struct usb_serial_driver * const serial_drivers[] = {
  512. &opticon_device, NULL
  513. };
  514. module_usb_serial_driver(serial_drivers, id_table);
  515. MODULE_DESCRIPTION(DRIVER_DESC);
  516. MODULE_LICENSE("GPL");