ssu100.c 19 KB

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  1. /*
  2. * usb-serial driver for Quatech SSU-100
  3. *
  4. * based on ftdi_sio.c and the original serqt_usb.c from Quatech
  5. *
  6. */
  7. #include <linux/errno.h>
  8. #include <linux/init.h>
  9. #include <linux/slab.h>
  10. #include <linux/tty.h>
  11. #include <linux/tty_driver.h>
  12. #include <linux/tty_flip.h>
  13. #include <linux/module.h>
  14. #include <linux/serial.h>
  15. #include <linux/usb.h>
  16. #include <linux/usb/serial.h>
  17. #include <linux/serial_reg.h>
  18. #include <linux/uaccess.h>
  19. #define QT_OPEN_CLOSE_CHANNEL 0xca
  20. #define QT_SET_GET_DEVICE 0xc2
  21. #define QT_SET_GET_REGISTER 0xc0
  22. #define QT_GET_SET_PREBUF_TRIG_LVL 0xcc
  23. #define QT_SET_ATF 0xcd
  24. #define QT_GET_SET_UART 0xc1
  25. #define QT_TRANSFER_IN 0xc0
  26. #define QT_HW_FLOW_CONTROL_MASK 0xc5
  27. #define QT_SW_FLOW_CONTROL_MASK 0xc6
  28. #define SERIAL_MSR_MASK 0xf0
  29. #define SERIAL_CRTSCTS ((UART_MCR_RTS << 8) | UART_MSR_CTS)
  30. #define SERIAL_EVEN_PARITY (UART_LCR_PARITY | UART_LCR_EPAR)
  31. #define MAX_BAUD_RATE 460800
  32. #define ATC_DISABLED 0x00
  33. #define DUPMODE_BITS 0xc0
  34. #define RR_BITS 0x03
  35. #define LOOPMODE_BITS 0x41
  36. #define RS232_MODE 0x00
  37. #define RTSCTS_TO_CONNECTOR 0x40
  38. #define CLKS_X4 0x02
  39. #define FULLPWRBIT 0x00000080
  40. #define NEXT_BOARD_POWER_BIT 0x00000004
  41. static int debug;
  42. /* Version Information */
  43. #define DRIVER_VERSION "v0.1"
  44. #define DRIVER_DESC "Quatech SSU-100 USB to Serial Driver"
  45. #define USB_VENDOR_ID_QUATECH 0x061d /* Quatech VID */
  46. #define QUATECH_SSU100 0xC020 /* SSU100 */
  47. static const struct usb_device_id id_table[] = {
  48. {USB_DEVICE(USB_VENDOR_ID_QUATECH, QUATECH_SSU100)},
  49. {} /* Terminating entry */
  50. };
  51. MODULE_DEVICE_TABLE(usb, id_table);
  52. static struct usb_driver ssu100_driver = {
  53. .name = "ssu100",
  54. .probe = usb_serial_probe,
  55. .disconnect = usb_serial_disconnect,
  56. .id_table = id_table,
  57. .suspend = usb_serial_suspend,
  58. .resume = usb_serial_resume,
  59. .no_dynamic_id = 1,
  60. .supports_autosuspend = 1,
  61. };
  62. struct ssu100_port_private {
  63. spinlock_t status_lock;
  64. u8 shadowLSR;
  65. u8 shadowMSR;
  66. wait_queue_head_t delta_msr_wait; /* Used for TIOCMIWAIT */
  67. unsigned short max_packet_size;
  68. struct async_icount icount;
  69. };
  70. static void ssu100_release(struct usb_serial *serial)
  71. {
  72. struct ssu100_port_private *priv = usb_get_serial_port_data(*serial->port);
  73. dbg("%s", __func__);
  74. kfree(priv);
  75. }
  76. static inline int ssu100_control_msg(struct usb_device *dev,
  77. u8 request, u16 data, u16 index)
  78. {
  79. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  80. request, 0x40, data, index,
  81. NULL, 0, 300);
  82. }
  83. static inline int ssu100_setdevice(struct usb_device *dev, u8 *data)
  84. {
  85. u16 x = ((u16)(data[1] << 8) | (u16)(data[0]));
  86. return ssu100_control_msg(dev, QT_SET_GET_DEVICE, x, 0);
  87. }
  88. static inline int ssu100_getdevice(struct usb_device *dev, u8 *data)
  89. {
  90. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  91. QT_SET_GET_DEVICE, 0xc0, 0, 0,
  92. data, 3, 300);
  93. }
  94. static inline int ssu100_getregister(struct usb_device *dev,
  95. unsigned short uart,
  96. unsigned short reg,
  97. u8 *data)
  98. {
  99. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  100. QT_SET_GET_REGISTER, 0xc0, reg,
  101. uart, data, sizeof(*data), 300);
  102. }
  103. static inline int ssu100_setregister(struct usb_device *dev,
  104. unsigned short uart,
  105. unsigned short reg,
  106. u16 data)
  107. {
  108. u16 value = (data << 8) | reg;
  109. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  110. QT_SET_GET_REGISTER, 0x40, value, uart,
  111. NULL, 0, 300);
  112. }
  113. #define set_mctrl(dev, set) update_mctrl((dev), (set), 0)
  114. #define clear_mctrl(dev, clear) update_mctrl((dev), 0, (clear))
  115. /* these do not deal with device that have more than 1 port */
  116. static inline int update_mctrl(struct usb_device *dev, unsigned int set,
  117. unsigned int clear)
  118. {
  119. unsigned urb_value;
  120. int result;
  121. if (((set | clear) & (TIOCM_DTR | TIOCM_RTS)) == 0) {
  122. dbg("%s - DTR|RTS not being set|cleared", __func__);
  123. return 0; /* no change */
  124. }
  125. clear &= ~set; /* 'set' takes precedence over 'clear' */
  126. urb_value = 0;
  127. if (set & TIOCM_DTR)
  128. urb_value |= UART_MCR_DTR;
  129. if (set & TIOCM_RTS)
  130. urb_value |= UART_MCR_RTS;
  131. result = ssu100_setregister(dev, 0, UART_MCR, urb_value);
  132. if (result < 0)
  133. dbg("%s Error from MODEM_CTRL urb", __func__);
  134. return result;
  135. }
  136. static int ssu100_initdevice(struct usb_device *dev)
  137. {
  138. u8 *data;
  139. int result = 0;
  140. dbg("%s", __func__);
  141. data = kzalloc(3, GFP_KERNEL);
  142. if (!data)
  143. return -ENOMEM;
  144. result = ssu100_getdevice(dev, data);
  145. if (result < 0) {
  146. dbg("%s - get_device failed %i", __func__, result);
  147. goto out;
  148. }
  149. data[1] &= ~FULLPWRBIT;
  150. result = ssu100_setdevice(dev, data);
  151. if (result < 0) {
  152. dbg("%s - setdevice failed %i", __func__, result);
  153. goto out;
  154. }
  155. result = ssu100_control_msg(dev, QT_GET_SET_PREBUF_TRIG_LVL, 128, 0);
  156. if (result < 0) {
  157. dbg("%s - set prebuffer level failed %i", __func__, result);
  158. goto out;
  159. }
  160. result = ssu100_control_msg(dev, QT_SET_ATF, ATC_DISABLED, 0);
  161. if (result < 0) {
  162. dbg("%s - set ATFprebuffer level failed %i", __func__, result);
  163. goto out;
  164. }
  165. result = ssu100_getdevice(dev, data);
  166. if (result < 0) {
  167. dbg("%s - get_device failed %i", __func__, result);
  168. goto out;
  169. }
  170. data[0] &= ~(RR_BITS | DUPMODE_BITS);
  171. data[0] |= CLKS_X4;
  172. data[1] &= ~(LOOPMODE_BITS);
  173. data[1] |= RS232_MODE;
  174. result = ssu100_setdevice(dev, data);
  175. if (result < 0) {
  176. dbg("%s - setdevice failed %i", __func__, result);
  177. goto out;
  178. }
  179. out: kfree(data);
  180. return result;
  181. }
  182. static void ssu100_set_termios(struct tty_struct *tty,
  183. struct usb_serial_port *port,
  184. struct ktermios *old_termios)
  185. {
  186. struct usb_device *dev = port->serial->dev;
  187. struct ktermios *termios = tty->termios;
  188. u16 baud, divisor, remainder;
  189. unsigned int cflag = termios->c_cflag;
  190. u16 urb_value = 0; /* will hold the new flags */
  191. int result;
  192. dbg("%s", __func__);
  193. if (cflag & PARENB) {
  194. if (cflag & PARODD)
  195. urb_value |= UART_LCR_PARITY;
  196. else
  197. urb_value |= SERIAL_EVEN_PARITY;
  198. }
  199. switch (cflag & CSIZE) {
  200. case CS5:
  201. urb_value |= UART_LCR_WLEN5;
  202. break;
  203. case CS6:
  204. urb_value |= UART_LCR_WLEN6;
  205. break;
  206. case CS7:
  207. urb_value |= UART_LCR_WLEN7;
  208. break;
  209. default:
  210. case CS8:
  211. urb_value |= UART_LCR_WLEN8;
  212. break;
  213. }
  214. baud = tty_get_baud_rate(tty);
  215. if (!baud)
  216. baud = 9600;
  217. dbg("%s - got baud = %d\n", __func__, baud);
  218. divisor = MAX_BAUD_RATE / baud;
  219. remainder = MAX_BAUD_RATE % baud;
  220. if (((remainder * 2) >= baud) && (baud != 110))
  221. divisor++;
  222. urb_value = urb_value << 8;
  223. result = ssu100_control_msg(dev, QT_GET_SET_UART, divisor, urb_value);
  224. if (result < 0)
  225. dbg("%s - set uart failed", __func__);
  226. if (cflag & CRTSCTS)
  227. result = ssu100_control_msg(dev, QT_HW_FLOW_CONTROL_MASK,
  228. SERIAL_CRTSCTS, 0);
  229. else
  230. result = ssu100_control_msg(dev, QT_HW_FLOW_CONTROL_MASK,
  231. 0, 0);
  232. if (result < 0)
  233. dbg("%s - set HW flow control failed", __func__);
  234. if (I_IXOFF(tty) || I_IXON(tty)) {
  235. u16 x = ((u16)(START_CHAR(tty) << 8) | (u16)(STOP_CHAR(tty)));
  236. result = ssu100_control_msg(dev, QT_SW_FLOW_CONTROL_MASK,
  237. x, 0);
  238. } else
  239. result = ssu100_control_msg(dev, QT_SW_FLOW_CONTROL_MASK,
  240. 0, 0);
  241. if (result < 0)
  242. dbg("%s - set SW flow control failed", __func__);
  243. }
  244. static int ssu100_open(struct tty_struct *tty, struct usb_serial_port *port)
  245. {
  246. struct usb_device *dev = port->serial->dev;
  247. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  248. u8 *data;
  249. int result;
  250. unsigned long flags;
  251. dbg("%s - port %d", __func__, port->number);
  252. data = kzalloc(2, GFP_KERNEL);
  253. if (!data)
  254. return -ENOMEM;
  255. result = usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  256. QT_OPEN_CLOSE_CHANNEL,
  257. QT_TRANSFER_IN, 0x01,
  258. 0, data, 2, 300);
  259. if (result < 0) {
  260. dbg("%s - open failed %i", __func__, result);
  261. kfree(data);
  262. return result;
  263. }
  264. spin_lock_irqsave(&priv->status_lock, flags);
  265. priv->shadowLSR = data[0];
  266. priv->shadowMSR = data[1];
  267. spin_unlock_irqrestore(&priv->status_lock, flags);
  268. kfree(data);
  269. /* set to 9600 */
  270. result = ssu100_control_msg(dev, QT_GET_SET_UART, 0x30, 0x0300);
  271. if (result < 0)
  272. dbg("%s - set uart failed", __func__);
  273. if (tty)
  274. ssu100_set_termios(tty, port, tty->termios);
  275. return usb_serial_generic_open(tty, port);
  276. }
  277. static void ssu100_close(struct usb_serial_port *port)
  278. {
  279. dbg("%s", __func__);
  280. usb_serial_generic_close(port);
  281. }
  282. static int get_serial_info(struct usb_serial_port *port,
  283. struct serial_struct __user *retinfo)
  284. {
  285. struct serial_struct tmp;
  286. if (!retinfo)
  287. return -EFAULT;
  288. memset(&tmp, 0, sizeof(tmp));
  289. tmp.line = port->serial->minor;
  290. tmp.port = 0;
  291. tmp.irq = 0;
  292. tmp.flags = ASYNC_SKIP_TEST | ASYNC_AUTO_IRQ;
  293. tmp.xmit_fifo_size = port->bulk_out_size;
  294. tmp.baud_base = 9600;
  295. tmp.close_delay = 5*HZ;
  296. tmp.closing_wait = 30*HZ;
  297. if (copy_to_user(retinfo, &tmp, sizeof(*retinfo)))
  298. return -EFAULT;
  299. return 0;
  300. }
  301. static int wait_modem_info(struct usb_serial_port *port, unsigned int arg)
  302. {
  303. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  304. struct async_icount prev, cur;
  305. unsigned long flags;
  306. spin_lock_irqsave(&priv->status_lock, flags);
  307. prev = priv->icount;
  308. spin_unlock_irqrestore(&priv->status_lock, flags);
  309. while (1) {
  310. wait_event_interruptible(priv->delta_msr_wait,
  311. ((priv->icount.rng != prev.rng) ||
  312. (priv->icount.dsr != prev.dsr) ||
  313. (priv->icount.dcd != prev.dcd) ||
  314. (priv->icount.cts != prev.cts)));
  315. if (signal_pending(current))
  316. return -ERESTARTSYS;
  317. spin_lock_irqsave(&priv->status_lock, flags);
  318. cur = priv->icount;
  319. spin_unlock_irqrestore(&priv->status_lock, flags);
  320. if ((prev.rng == cur.rng) &&
  321. (prev.dsr == cur.dsr) &&
  322. (prev.dcd == cur.dcd) &&
  323. (prev.cts == cur.cts))
  324. return -EIO;
  325. if ((arg & TIOCM_RNG && (prev.rng != cur.rng)) ||
  326. (arg & TIOCM_DSR && (prev.dsr != cur.dsr)) ||
  327. (arg & TIOCM_CD && (prev.dcd != cur.dcd)) ||
  328. (arg & TIOCM_CTS && (prev.cts != cur.cts)))
  329. return 0;
  330. }
  331. return 0;
  332. }
  333. static int ssu100_ioctl(struct tty_struct *tty, struct file *file,
  334. unsigned int cmd, unsigned long arg)
  335. {
  336. struct usb_serial_port *port = tty->driver_data;
  337. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  338. void __user *user_arg = (void __user *)arg;
  339. dbg("%s cmd 0x%04x", __func__, cmd);
  340. switch (cmd) {
  341. case TIOCGSERIAL:
  342. return get_serial_info(port,
  343. (struct serial_struct __user *) arg);
  344. case TIOCMIWAIT:
  345. return wait_modem_info(port, arg);
  346. case TIOCGICOUNT:
  347. {
  348. struct serial_icounter_struct icount;
  349. struct async_icount cnow = priv->icount;
  350. memset(&icount, 0, sizeof(icount));
  351. icount.cts = cnow.cts;
  352. icount.dsr = cnow.dsr;
  353. icount.rng = cnow.rng;
  354. icount.dcd = cnow.dcd;
  355. icount.rx = cnow.rx;
  356. icount.tx = cnow.tx;
  357. icount.frame = cnow.frame;
  358. icount.overrun = cnow.overrun;
  359. icount.parity = cnow.parity;
  360. icount.brk = cnow.brk;
  361. icount.buf_overrun = cnow.buf_overrun;
  362. if (copy_to_user(user_arg, &icount, sizeof(icount)))
  363. return -EFAULT;
  364. return 0;
  365. }
  366. default:
  367. break;
  368. }
  369. dbg("%s arg not supported", __func__);
  370. return -ENOIOCTLCMD;
  371. }
  372. static void ssu100_set_max_packet_size(struct usb_serial_port *port)
  373. {
  374. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  375. struct usb_serial *serial = port->serial;
  376. struct usb_device *udev = serial->dev;
  377. struct usb_interface *interface = serial->interface;
  378. struct usb_endpoint_descriptor *ep_desc = &interface->cur_altsetting->endpoint[1].desc;
  379. unsigned num_endpoints;
  380. int i;
  381. unsigned long flags;
  382. num_endpoints = interface->cur_altsetting->desc.bNumEndpoints;
  383. dev_info(&udev->dev, "Number of endpoints %d\n", num_endpoints);
  384. for (i = 0; i < num_endpoints; i++) {
  385. dev_info(&udev->dev, "Endpoint %d MaxPacketSize %d\n", i+1,
  386. interface->cur_altsetting->endpoint[i].desc.wMaxPacketSize);
  387. ep_desc = &interface->cur_altsetting->endpoint[i].desc;
  388. }
  389. /* set max packet size based on descriptor */
  390. spin_lock_irqsave(&priv->status_lock, flags);
  391. priv->max_packet_size = ep_desc->wMaxPacketSize;
  392. spin_unlock_irqrestore(&priv->status_lock, flags);
  393. dev_info(&udev->dev, "Setting MaxPacketSize %d\n", priv->max_packet_size);
  394. }
  395. static int ssu100_attach(struct usb_serial *serial)
  396. {
  397. struct ssu100_port_private *priv;
  398. struct usb_serial_port *port = *serial->port;
  399. dbg("%s", __func__);
  400. priv = kzalloc(sizeof(*priv), GFP_KERNEL);
  401. if (!priv) {
  402. dev_err(&port->dev, "%s- kmalloc(%Zd) failed.\n", __func__,
  403. sizeof(*priv));
  404. return -ENOMEM;
  405. }
  406. spin_lock_init(&priv->status_lock);
  407. init_waitqueue_head(&priv->delta_msr_wait);
  408. usb_set_serial_port_data(port, priv);
  409. ssu100_set_max_packet_size(port);
  410. return ssu100_initdevice(serial->dev);
  411. }
  412. static int ssu100_tiocmget(struct tty_struct *tty, struct file *file)
  413. {
  414. struct usb_serial_port *port = tty->driver_data;
  415. struct usb_device *dev = port->serial->dev;
  416. u8 *d;
  417. int r;
  418. dbg("%s\n", __func__);
  419. d = kzalloc(2, GFP_KERNEL);
  420. if (!d)
  421. return -ENOMEM;
  422. r = ssu100_getregister(dev, 0, UART_MCR, d);
  423. if (r < 0)
  424. goto mget_out;
  425. r = ssu100_getregister(dev, 0, UART_MSR, d+1);
  426. if (r < 0)
  427. goto mget_out;
  428. r = (d[0] & UART_MCR_DTR ? TIOCM_DTR : 0) |
  429. (d[0] & UART_MCR_RTS ? TIOCM_RTS : 0) |
  430. (d[1] & UART_MSR_CTS ? TIOCM_CTS : 0) |
  431. (d[1] & UART_MSR_DCD ? TIOCM_CAR : 0) |
  432. (d[1] & UART_MSR_RI ? TIOCM_RI : 0) |
  433. (d[1] & UART_MSR_DSR ? TIOCM_DSR : 0);
  434. mget_out:
  435. kfree(d);
  436. return r;
  437. }
  438. static int ssu100_tiocmset(struct tty_struct *tty, struct file *file,
  439. unsigned int set, unsigned int clear)
  440. {
  441. struct usb_serial_port *port = tty->driver_data;
  442. struct usb_device *dev = port->serial->dev;
  443. dbg("%s\n", __func__);
  444. return update_mctrl(dev, set, clear);
  445. }
  446. static void ssu100_dtr_rts(struct usb_serial_port *port, int on)
  447. {
  448. struct usb_device *dev = port->serial->dev;
  449. dbg("%s\n", __func__);
  450. mutex_lock(&port->serial->disc_mutex);
  451. if (!port->serial->disconnected) {
  452. /* Disable flow control */
  453. if (!on &&
  454. ssu100_setregister(dev, 0, UART_MCR, 0) < 0)
  455. dev_err(&port->dev, "error from flowcontrol urb\n");
  456. /* drop RTS and DTR */
  457. if (on)
  458. set_mctrl(dev, TIOCM_DTR | TIOCM_RTS);
  459. else
  460. clear_mctrl(dev, TIOCM_DTR | TIOCM_RTS);
  461. }
  462. mutex_unlock(&port->serial->disc_mutex);
  463. }
  464. static void ssu100_update_msr(struct usb_serial_port *port, u8 msr)
  465. {
  466. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  467. unsigned long flags;
  468. spin_lock_irqsave(&priv->status_lock, flags);
  469. priv->shadowMSR = msr;
  470. spin_unlock_irqrestore(&priv->status_lock, flags);
  471. if (msr & UART_MSR_ANY_DELTA) {
  472. /* update input line counters */
  473. if (msr & UART_MSR_DCTS)
  474. priv->icount.cts++;
  475. if (msr & UART_MSR_DDSR)
  476. priv->icount.dsr++;
  477. if (msr & UART_MSR_DDCD)
  478. priv->icount.dcd++;
  479. if (msr & UART_MSR_TERI)
  480. priv->icount.rng++;
  481. wake_up_interruptible(&priv->delta_msr_wait);
  482. }
  483. }
  484. static void ssu100_update_lsr(struct usb_serial_port *port, u8 lsr,
  485. char *tty_flag)
  486. {
  487. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  488. unsigned long flags;
  489. spin_lock_irqsave(&priv->status_lock, flags);
  490. priv->shadowLSR = lsr;
  491. spin_unlock_irqrestore(&priv->status_lock, flags);
  492. *tty_flag = TTY_NORMAL;
  493. if (lsr & UART_LSR_BRK_ERROR_BITS) {
  494. /* we always want to update icount, but we only want to
  495. * update tty_flag for one case */
  496. if (lsr & UART_LSR_BI) {
  497. priv->icount.brk++;
  498. *tty_flag = TTY_BREAK;
  499. usb_serial_handle_break(port);
  500. }
  501. if (lsr & UART_LSR_PE) {
  502. priv->icount.parity++;
  503. if (*tty_flag == TTY_NORMAL)
  504. *tty_flag = TTY_PARITY;
  505. }
  506. if (lsr & UART_LSR_FE) {
  507. priv->icount.frame++;
  508. if (*tty_flag == TTY_NORMAL)
  509. *tty_flag = TTY_FRAME;
  510. }
  511. if (lsr & UART_LSR_OE){
  512. priv->icount.overrun++;
  513. if (*tty_flag == TTY_NORMAL)
  514. *tty_flag = TTY_OVERRUN;
  515. }
  516. }
  517. }
  518. static int ssu100_process_packet(struct tty_struct *tty,
  519. struct usb_serial_port *port,
  520. struct ssu100_port_private *priv,
  521. char *packet, int len)
  522. {
  523. int i;
  524. char flag = TTY_NORMAL;
  525. char *ch;
  526. dbg("%s - port %d", __func__, port->number);
  527. if ((len >= 4) &&
  528. (packet[0] == 0x1b) && (packet[1] == 0x1b) &&
  529. ((packet[2] == 0x00) || (packet[2] == 0x01))) {
  530. if (packet[2] == 0x00) {
  531. ssu100_update_lsr(port, packet[3], &flag);
  532. if (flag == TTY_OVERRUN)
  533. tty_insert_flip_char(tty, 0, TTY_OVERRUN);
  534. }
  535. if (packet[2] == 0x01)
  536. ssu100_update_msr(port, packet[3]);
  537. len -= 4;
  538. ch = packet + 4;
  539. } else
  540. ch = packet;
  541. if (!len)
  542. return 0; /* status only */
  543. if (port->port.console && port->sysrq) {
  544. for (i = 0; i < len; i++, ch++) {
  545. if (!usb_serial_handle_sysrq_char(port, *ch))
  546. tty_insert_flip_char(tty, *ch, flag);
  547. }
  548. } else
  549. tty_insert_flip_string_fixed_flag(tty, ch, flag, len);
  550. return len;
  551. }
  552. static void ssu100_process_read_urb(struct urb *urb)
  553. {
  554. struct usb_serial_port *port = urb->context;
  555. struct ssu100_port_private *priv = usb_get_serial_port_data(port);
  556. char *data = (char *)urb->transfer_buffer;
  557. struct tty_struct *tty;
  558. int count = 0;
  559. int i;
  560. int len;
  561. dbg("%s", __func__);
  562. tty = tty_port_tty_get(&port->port);
  563. if (!tty)
  564. return;
  565. for (i = 0; i < urb->actual_length; i += priv->max_packet_size) {
  566. len = min_t(int, urb->actual_length - i, priv->max_packet_size);
  567. count += ssu100_process_packet(tty, port, priv, &data[i], len);
  568. }
  569. if (count)
  570. tty_flip_buffer_push(tty);
  571. tty_kref_put(tty);
  572. }
  573. static struct usb_serial_driver ssu100_device = {
  574. .driver = {
  575. .owner = THIS_MODULE,
  576. .name = "ssu100",
  577. },
  578. .description = DRIVER_DESC,
  579. .id_table = id_table,
  580. .usb_driver = &ssu100_driver,
  581. .num_ports = 1,
  582. .bulk_in_size = 256,
  583. .bulk_out_size = 256,
  584. .open = ssu100_open,
  585. .close = ssu100_close,
  586. .attach = ssu100_attach,
  587. .release = ssu100_release,
  588. .dtr_rts = ssu100_dtr_rts,
  589. .process_read_urb = ssu100_process_read_urb,
  590. .tiocmget = ssu100_tiocmget,
  591. .tiocmset = ssu100_tiocmset,
  592. .ioctl = ssu100_ioctl,
  593. .set_termios = ssu100_set_termios,
  594. .disconnect = usb_serial_generic_disconnect,
  595. };
  596. static int __init ssu100_init(void)
  597. {
  598. int retval;
  599. dbg("%s", __func__);
  600. /* register with usb-serial */
  601. retval = usb_serial_register(&ssu100_device);
  602. if (retval)
  603. goto failed_usb_sio_register;
  604. retval = usb_register(&ssu100_driver);
  605. if (retval)
  606. goto failed_usb_register;
  607. printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
  608. DRIVER_DESC "\n");
  609. return 0;
  610. failed_usb_register:
  611. usb_serial_deregister(&ssu100_device);
  612. failed_usb_sio_register:
  613. return retval;
  614. }
  615. static void __exit ssu100_exit(void)
  616. {
  617. usb_deregister(&ssu100_driver);
  618. usb_serial_deregister(&ssu100_device);
  619. }
  620. module_init(ssu100_init);
  621. module_exit(ssu100_exit);
  622. MODULE_DESCRIPTION(DRIVER_DESC);
  623. MODULE_LICENSE("GPL");
  624. module_param(debug, bool, S_IRUGO | S_IWUSR);
  625. MODULE_PARM_DESC(debug, "Debug enabled or not");