bas-gigaset.c 69 KB

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  1. /*
  2. * USB driver for Gigaset 307x base via direct USB connection.
  3. *
  4. * Copyright (c) 2001 by Hansjoerg Lipp <hjlipp@web.de>,
  5. * Tilman Schmidt <tilman@imap.cc>,
  6. * Stefan Eilers.
  7. *
  8. * =====================================================================
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License as
  11. * published by the Free Software Foundation; either version 2 of
  12. * the License, or (at your option) any later version.
  13. * =====================================================================
  14. */
  15. #include "gigaset.h"
  16. #include <linux/usb.h>
  17. #include <linux/module.h>
  18. #include <linux/moduleparam.h>
  19. /* Version Information */
  20. #define DRIVER_AUTHOR "Tilman Schmidt <tilman@imap.cc>, Hansjoerg Lipp <hjlipp@web.de>, Stefan Eilers"
  21. #define DRIVER_DESC "USB Driver for Gigaset 307x"
  22. /* Module parameters */
  23. static int startmode = SM_ISDN;
  24. static int cidmode = 1;
  25. module_param(startmode, int, S_IRUGO);
  26. module_param(cidmode, int, S_IRUGO);
  27. MODULE_PARM_DESC(startmode, "start in isdn4linux mode");
  28. MODULE_PARM_DESC(cidmode, "Call-ID mode");
  29. #define GIGASET_MINORS 1
  30. #define GIGASET_MINOR 16
  31. #define GIGASET_MODULENAME "bas_gigaset"
  32. #define GIGASET_DEVNAME "ttyGB"
  33. /* length limit according to Siemens 3070usb-protokoll.doc ch. 2.1 */
  34. #define IF_WRITEBUF 264
  35. /* interrupt pipe message size according to ibid. ch. 2.2 */
  36. #define IP_MSGSIZE 3
  37. /* Values for the Gigaset 307x */
  38. #define USB_GIGA_VENDOR_ID 0x0681
  39. #define USB_3070_PRODUCT_ID 0x0001
  40. #define USB_3075_PRODUCT_ID 0x0002
  41. #define USB_SX303_PRODUCT_ID 0x0021
  42. #define USB_SX353_PRODUCT_ID 0x0022
  43. /* table of devices that work with this driver */
  44. static const struct usb_device_id gigaset_table[] = {
  45. { USB_DEVICE(USB_GIGA_VENDOR_ID, USB_3070_PRODUCT_ID) },
  46. { USB_DEVICE(USB_GIGA_VENDOR_ID, USB_3075_PRODUCT_ID) },
  47. { USB_DEVICE(USB_GIGA_VENDOR_ID, USB_SX303_PRODUCT_ID) },
  48. { USB_DEVICE(USB_GIGA_VENDOR_ID, USB_SX353_PRODUCT_ID) },
  49. { } /* Terminating entry */
  50. };
  51. MODULE_DEVICE_TABLE(usb, gigaset_table);
  52. /*======================= local function prototypes ==========================*/
  53. /* function called if a new device belonging to this driver is connected */
  54. static int gigaset_probe(struct usb_interface *interface,
  55. const struct usb_device_id *id);
  56. /* Function will be called if the device is unplugged */
  57. static void gigaset_disconnect(struct usb_interface *interface);
  58. /* functions called before/after suspend */
  59. static int gigaset_suspend(struct usb_interface *intf, pm_message_t message);
  60. static int gigaset_resume(struct usb_interface *intf);
  61. /* functions called before/after device reset */
  62. static int gigaset_pre_reset(struct usb_interface *intf);
  63. static int gigaset_post_reset(struct usb_interface *intf);
  64. static int atread_submit(struct cardstate *, int);
  65. static void stopurbs(struct bas_bc_state *);
  66. static int req_submit(struct bc_state *, int, int, int);
  67. static int atwrite_submit(struct cardstate *, unsigned char *, int);
  68. static int start_cbsend(struct cardstate *);
  69. /*============================================================================*/
  70. struct bas_cardstate {
  71. struct usb_device *udev; /* USB device pointer */
  72. struct usb_interface *interface; /* interface for this device */
  73. unsigned char minor; /* starting minor number */
  74. struct urb *urb_ctrl; /* control pipe default URB */
  75. struct usb_ctrlrequest dr_ctrl;
  76. struct timer_list timer_ctrl; /* control request timeout */
  77. int retry_ctrl;
  78. struct timer_list timer_atrdy; /* AT command ready timeout */
  79. struct urb *urb_cmd_out; /* for sending AT commands */
  80. struct usb_ctrlrequest dr_cmd_out;
  81. int retry_cmd_out;
  82. struct urb *urb_cmd_in; /* for receiving AT replies */
  83. struct usb_ctrlrequest dr_cmd_in;
  84. struct timer_list timer_cmd_in; /* receive request timeout */
  85. unsigned char *rcvbuf; /* AT reply receive buffer */
  86. struct urb *urb_int_in; /* URB for interrupt pipe */
  87. unsigned char *int_in_buf;
  88. spinlock_t lock; /* locks all following */
  89. int basstate; /* bitmap (BS_*) */
  90. int pending; /* uncompleted base request */
  91. wait_queue_head_t waitqueue;
  92. int rcvbuf_size; /* size of AT receive buffer */
  93. /* 0: no receive in progress */
  94. int retry_cmd_in; /* receive req retry count */
  95. };
  96. /* status of direct USB connection to 307x base (bits in basstate) */
  97. #define BS_ATOPEN 0x001 /* AT channel open */
  98. #define BS_B1OPEN 0x002 /* B channel 1 open */
  99. #define BS_B2OPEN 0x004 /* B channel 2 open */
  100. #define BS_ATREADY 0x008 /* base ready for AT command */
  101. #define BS_INIT 0x010 /* base has signalled INIT_OK */
  102. #define BS_ATTIMER 0x020 /* waiting for HD_READY_SEND_ATDATA */
  103. #define BS_ATRDPEND 0x040 /* urb_cmd_in in use */
  104. #define BS_ATWRPEND 0x080 /* urb_cmd_out in use */
  105. #define BS_SUSPEND 0x100 /* USB port suspended */
  106. #define BS_RESETTING 0x200 /* waiting for HD_RESET_INTERRUPT_PIPE_ACK */
  107. static struct gigaset_driver *driver;
  108. /* usb specific object needed to register this driver with the usb subsystem */
  109. static struct usb_driver gigaset_usb_driver = {
  110. .name = GIGASET_MODULENAME,
  111. .probe = gigaset_probe,
  112. .disconnect = gigaset_disconnect,
  113. .id_table = gigaset_table,
  114. .suspend = gigaset_suspend,
  115. .resume = gigaset_resume,
  116. .reset_resume = gigaset_post_reset,
  117. .pre_reset = gigaset_pre_reset,
  118. .post_reset = gigaset_post_reset,
  119. };
  120. /* get message text for usb_submit_urb return code
  121. */
  122. static char *get_usb_rcmsg(int rc)
  123. {
  124. static char unkmsg[28];
  125. switch (rc) {
  126. case 0:
  127. return "success";
  128. case -ENOMEM:
  129. return "out of memory";
  130. case -ENODEV:
  131. return "device not present";
  132. case -ENOENT:
  133. return "endpoint not present";
  134. case -ENXIO:
  135. return "URB type not supported";
  136. case -EINVAL:
  137. return "invalid argument";
  138. case -EAGAIN:
  139. return "start frame too early or too much scheduled";
  140. case -EFBIG:
  141. return "too many isochronous frames requested";
  142. case -EPIPE:
  143. return "endpoint stalled";
  144. case -EMSGSIZE:
  145. return "invalid packet size";
  146. case -ENOSPC:
  147. return "would overcommit USB bandwidth";
  148. case -ESHUTDOWN:
  149. return "device shut down";
  150. case -EPERM:
  151. return "reject flag set";
  152. case -EHOSTUNREACH:
  153. return "device suspended";
  154. default:
  155. snprintf(unkmsg, sizeof(unkmsg), "unknown error %d", rc);
  156. return unkmsg;
  157. }
  158. }
  159. /* get message text for USB status code
  160. */
  161. static char *get_usb_statmsg(int status)
  162. {
  163. static char unkmsg[28];
  164. switch (status) {
  165. case 0:
  166. return "success";
  167. case -ENOENT:
  168. return "unlinked (sync)";
  169. case -EINPROGRESS:
  170. return "pending";
  171. case -EPROTO:
  172. return "bit stuffing error, timeout, or unknown USB error";
  173. case -EILSEQ:
  174. return "CRC mismatch, timeout, or unknown USB error";
  175. case -ETIME:
  176. return "timed out";
  177. case -EPIPE:
  178. return "endpoint stalled";
  179. case -ECOMM:
  180. return "IN buffer overrun";
  181. case -ENOSR:
  182. return "OUT buffer underrun";
  183. case -EOVERFLOW:
  184. return "too much data";
  185. case -EREMOTEIO:
  186. return "short packet detected";
  187. case -ENODEV:
  188. return "device removed";
  189. case -EXDEV:
  190. return "partial isochronous transfer";
  191. case -EINVAL:
  192. return "invalid argument";
  193. case -ECONNRESET:
  194. return "unlinked (async)";
  195. case -ESHUTDOWN:
  196. return "device shut down";
  197. default:
  198. snprintf(unkmsg, sizeof(unkmsg), "unknown status %d", status);
  199. return unkmsg;
  200. }
  201. }
  202. /* usb_pipetype_str
  203. * retrieve string representation of USB pipe type
  204. */
  205. static inline char *usb_pipetype_str(int pipe)
  206. {
  207. if (usb_pipeisoc(pipe))
  208. return "Isoc";
  209. if (usb_pipeint(pipe))
  210. return "Int";
  211. if (usb_pipecontrol(pipe))
  212. return "Ctrl";
  213. if (usb_pipebulk(pipe))
  214. return "Bulk";
  215. return "?";
  216. }
  217. /* dump_urb
  218. * write content of URB to syslog for debugging
  219. */
  220. static inline void dump_urb(enum debuglevel level, const char *tag,
  221. struct urb *urb)
  222. {
  223. #ifdef CONFIG_GIGASET_DEBUG
  224. int i;
  225. gig_dbg(level, "%s urb(0x%08lx)->{", tag, (unsigned long) urb);
  226. if (urb) {
  227. gig_dbg(level,
  228. " dev=0x%08lx, pipe=%s:EP%d/DV%d:%s, "
  229. "hcpriv=0x%08lx, transfer_flags=0x%x,",
  230. (unsigned long) urb->dev,
  231. usb_pipetype_str(urb->pipe),
  232. usb_pipeendpoint(urb->pipe), usb_pipedevice(urb->pipe),
  233. usb_pipein(urb->pipe) ? "in" : "out",
  234. (unsigned long) urb->hcpriv,
  235. urb->transfer_flags);
  236. gig_dbg(level,
  237. " transfer_buffer=0x%08lx[%d], actual_length=%d, "
  238. "setup_packet=0x%08lx,",
  239. (unsigned long) urb->transfer_buffer,
  240. urb->transfer_buffer_length, urb->actual_length,
  241. (unsigned long) urb->setup_packet);
  242. gig_dbg(level,
  243. " start_frame=%d, number_of_packets=%d, interval=%d, "
  244. "error_count=%d,",
  245. urb->start_frame, urb->number_of_packets, urb->interval,
  246. urb->error_count);
  247. gig_dbg(level,
  248. " context=0x%08lx, complete=0x%08lx, "
  249. "iso_frame_desc[]={",
  250. (unsigned long) urb->context,
  251. (unsigned long) urb->complete);
  252. for (i = 0; i < urb->number_of_packets; i++) {
  253. struct usb_iso_packet_descriptor *pifd
  254. = &urb->iso_frame_desc[i];
  255. gig_dbg(level,
  256. " {offset=%u, length=%u, actual_length=%u, "
  257. "status=%u}",
  258. pifd->offset, pifd->length, pifd->actual_length,
  259. pifd->status);
  260. }
  261. }
  262. gig_dbg(level, "}}");
  263. #endif
  264. }
  265. /* read/set modem control bits etc. (m10x only) */
  266. static int gigaset_set_modem_ctrl(struct cardstate *cs, unsigned old_state,
  267. unsigned new_state)
  268. {
  269. return -EINVAL;
  270. }
  271. static int gigaset_baud_rate(struct cardstate *cs, unsigned cflag)
  272. {
  273. return -EINVAL;
  274. }
  275. static int gigaset_set_line_ctrl(struct cardstate *cs, unsigned cflag)
  276. {
  277. return -EINVAL;
  278. }
  279. /* set/clear bits in base connection state, return previous state
  280. */
  281. static inline int update_basstate(struct bas_cardstate *ucs,
  282. int set, int clear)
  283. {
  284. unsigned long flags;
  285. int state;
  286. spin_lock_irqsave(&ucs->lock, flags);
  287. state = ucs->basstate;
  288. ucs->basstate = (state & ~clear) | set;
  289. spin_unlock_irqrestore(&ucs->lock, flags);
  290. return state;
  291. }
  292. /* error_hangup
  293. * hang up any existing connection because of an unrecoverable error
  294. * This function may be called from any context and takes care of scheduling
  295. * the necessary actions for execution outside of interrupt context.
  296. * cs->lock must not be held.
  297. * argument:
  298. * B channel control structure
  299. */
  300. static inline void error_hangup(struct bc_state *bcs)
  301. {
  302. struct cardstate *cs = bcs->cs;
  303. gigaset_add_event(cs, &bcs->at_state, EV_HUP, NULL, 0, NULL);
  304. gigaset_schedule_event(cs);
  305. }
  306. /* error_reset
  307. * reset Gigaset device because of an unrecoverable error
  308. * This function may be called from any context, and takes care of
  309. * scheduling the necessary actions for execution outside of interrupt context.
  310. * cs->lock must not be held.
  311. * argument:
  312. * controller state structure
  313. */
  314. static inline void error_reset(struct cardstate *cs)
  315. {
  316. /* reset interrupt pipe to recover (ignore errors) */
  317. update_basstate(cs->hw.bas, BS_RESETTING, 0);
  318. req_submit(cs->bcs, HD_RESET_INTERRUPT_PIPE, 0, BAS_TIMEOUT);
  319. }
  320. /* check_pending
  321. * check for completion of pending control request
  322. * parameter:
  323. * ucs hardware specific controller state structure
  324. */
  325. static void check_pending(struct bas_cardstate *ucs)
  326. {
  327. unsigned long flags;
  328. spin_lock_irqsave(&ucs->lock, flags);
  329. switch (ucs->pending) {
  330. case 0:
  331. break;
  332. case HD_OPEN_ATCHANNEL:
  333. if (ucs->basstate & BS_ATOPEN)
  334. ucs->pending = 0;
  335. break;
  336. case HD_OPEN_B1CHANNEL:
  337. if (ucs->basstate & BS_B1OPEN)
  338. ucs->pending = 0;
  339. break;
  340. case HD_OPEN_B2CHANNEL:
  341. if (ucs->basstate & BS_B2OPEN)
  342. ucs->pending = 0;
  343. break;
  344. case HD_CLOSE_ATCHANNEL:
  345. if (!(ucs->basstate & BS_ATOPEN))
  346. ucs->pending = 0;
  347. break;
  348. case HD_CLOSE_B1CHANNEL:
  349. if (!(ucs->basstate & BS_B1OPEN))
  350. ucs->pending = 0;
  351. break;
  352. case HD_CLOSE_B2CHANNEL:
  353. if (!(ucs->basstate & BS_B2OPEN))
  354. ucs->pending = 0;
  355. break;
  356. case HD_DEVICE_INIT_ACK: /* no reply expected */
  357. ucs->pending = 0;
  358. break;
  359. case HD_RESET_INTERRUPT_PIPE:
  360. if (!(ucs->basstate & BS_RESETTING))
  361. ucs->pending = 0;
  362. break;
  363. /*
  364. * HD_READ_ATMESSAGE and HD_WRITE_ATMESSAGE are handled separately
  365. * and should never end up here
  366. */
  367. default:
  368. dev_warn(&ucs->interface->dev,
  369. "unknown pending request 0x%02x cleared\n",
  370. ucs->pending);
  371. ucs->pending = 0;
  372. }
  373. if (!ucs->pending)
  374. del_timer(&ucs->timer_ctrl);
  375. spin_unlock_irqrestore(&ucs->lock, flags);
  376. }
  377. /* cmd_in_timeout
  378. * timeout routine for command input request
  379. * argument:
  380. * controller state structure
  381. */
  382. static void cmd_in_timeout(unsigned long data)
  383. {
  384. struct cardstate *cs = (struct cardstate *) data;
  385. struct bas_cardstate *ucs = cs->hw.bas;
  386. int rc;
  387. if (!ucs->rcvbuf_size) {
  388. gig_dbg(DEBUG_USBREQ, "%s: no receive in progress", __func__);
  389. return;
  390. }
  391. if (ucs->retry_cmd_in++ < BAS_RETRY) {
  392. dev_notice(cs->dev, "control read: timeout, retry %d\n",
  393. ucs->retry_cmd_in);
  394. rc = atread_submit(cs, BAS_TIMEOUT);
  395. if (rc >= 0 || rc == -ENODEV)
  396. /* resubmitted or disconnected */
  397. /* - bypass regular exit block */
  398. return;
  399. } else {
  400. dev_err(cs->dev,
  401. "control read: timeout, giving up after %d tries\n",
  402. ucs->retry_cmd_in);
  403. }
  404. kfree(ucs->rcvbuf);
  405. ucs->rcvbuf = NULL;
  406. ucs->rcvbuf_size = 0;
  407. error_reset(cs);
  408. }
  409. /* read_ctrl_callback
  410. * USB completion handler for control pipe input
  411. * called by the USB subsystem in interrupt context
  412. * parameter:
  413. * urb USB request block
  414. * urb->context = inbuf structure for controller state
  415. */
  416. static void read_ctrl_callback(struct urb *urb)
  417. {
  418. struct inbuf_t *inbuf = urb->context;
  419. struct cardstate *cs = inbuf->cs;
  420. struct bas_cardstate *ucs = cs->hw.bas;
  421. int status = urb->status;
  422. int have_data = 0;
  423. unsigned numbytes;
  424. int rc;
  425. update_basstate(ucs, 0, BS_ATRDPEND);
  426. wake_up(&ucs->waitqueue);
  427. if (!ucs->rcvbuf_size) {
  428. dev_warn(cs->dev, "%s: no receive in progress\n", __func__);
  429. return;
  430. }
  431. del_timer(&ucs->timer_cmd_in);
  432. switch (status) {
  433. case 0: /* normal completion */
  434. numbytes = urb->actual_length;
  435. if (unlikely(numbytes != ucs->rcvbuf_size)) {
  436. dev_warn(cs->dev,
  437. "control read: received %d chars, expected %d\n",
  438. numbytes, ucs->rcvbuf_size);
  439. if (numbytes > ucs->rcvbuf_size)
  440. numbytes = ucs->rcvbuf_size;
  441. }
  442. /* copy received bytes to inbuf */
  443. have_data = gigaset_fill_inbuf(inbuf, ucs->rcvbuf, numbytes);
  444. if (unlikely(numbytes < ucs->rcvbuf_size)) {
  445. /* incomplete - resubmit for remaining bytes */
  446. ucs->rcvbuf_size -= numbytes;
  447. ucs->retry_cmd_in = 0;
  448. rc = atread_submit(cs, BAS_TIMEOUT);
  449. if (rc >= 0 || rc == -ENODEV)
  450. /* resubmitted or disconnected */
  451. /* - bypass regular exit block */
  452. return;
  453. error_reset(cs);
  454. }
  455. break;
  456. case -ENOENT: /* cancelled */
  457. case -ECONNRESET: /* cancelled (async) */
  458. case -EINPROGRESS: /* pending */
  459. case -ENODEV: /* device removed */
  460. case -ESHUTDOWN: /* device shut down */
  461. /* no action necessary */
  462. gig_dbg(DEBUG_USBREQ, "%s: %s",
  463. __func__, get_usb_statmsg(status));
  464. break;
  465. default: /* severe trouble */
  466. dev_warn(cs->dev, "control read: %s\n",
  467. get_usb_statmsg(status));
  468. if (ucs->retry_cmd_in++ < BAS_RETRY) {
  469. dev_notice(cs->dev, "control read: retry %d\n",
  470. ucs->retry_cmd_in);
  471. rc = atread_submit(cs, BAS_TIMEOUT);
  472. if (rc >= 0 || rc == -ENODEV)
  473. /* resubmitted or disconnected */
  474. /* - bypass regular exit block */
  475. return;
  476. } else {
  477. dev_err(cs->dev,
  478. "control read: giving up after %d tries\n",
  479. ucs->retry_cmd_in);
  480. }
  481. error_reset(cs);
  482. }
  483. kfree(ucs->rcvbuf);
  484. ucs->rcvbuf = NULL;
  485. ucs->rcvbuf_size = 0;
  486. if (have_data) {
  487. gig_dbg(DEBUG_INTR, "%s-->BH", __func__);
  488. gigaset_schedule_event(cs);
  489. }
  490. }
  491. /* atread_submit
  492. * submit an HD_READ_ATMESSAGE command URB and optionally start a timeout
  493. * parameters:
  494. * cs controller state structure
  495. * timeout timeout in 1/10 sec., 0: none
  496. * return value:
  497. * 0 on success
  498. * -EBUSY if another request is pending
  499. * any URB submission error code
  500. */
  501. static int atread_submit(struct cardstate *cs, int timeout)
  502. {
  503. struct bas_cardstate *ucs = cs->hw.bas;
  504. int basstate;
  505. int ret;
  506. gig_dbg(DEBUG_USBREQ, "-------> HD_READ_ATMESSAGE (%d)",
  507. ucs->rcvbuf_size);
  508. basstate = update_basstate(ucs, BS_ATRDPEND, 0);
  509. if (basstate & BS_ATRDPEND) {
  510. dev_err(cs->dev,
  511. "could not submit HD_READ_ATMESSAGE: URB busy\n");
  512. return -EBUSY;
  513. }
  514. if (basstate & BS_SUSPEND) {
  515. dev_notice(cs->dev,
  516. "HD_READ_ATMESSAGE not submitted, "
  517. "suspend in progress\n");
  518. update_basstate(ucs, 0, BS_ATRDPEND);
  519. /* treat like disconnect */
  520. return -ENODEV;
  521. }
  522. ucs->dr_cmd_in.bRequestType = IN_VENDOR_REQ;
  523. ucs->dr_cmd_in.bRequest = HD_READ_ATMESSAGE;
  524. ucs->dr_cmd_in.wValue = 0;
  525. ucs->dr_cmd_in.wIndex = 0;
  526. ucs->dr_cmd_in.wLength = cpu_to_le16(ucs->rcvbuf_size);
  527. usb_fill_control_urb(ucs->urb_cmd_in, ucs->udev,
  528. usb_rcvctrlpipe(ucs->udev, 0),
  529. (unsigned char *) &ucs->dr_cmd_in,
  530. ucs->rcvbuf, ucs->rcvbuf_size,
  531. read_ctrl_callback, cs->inbuf);
  532. ret = usb_submit_urb(ucs->urb_cmd_in, GFP_ATOMIC);
  533. if (ret != 0) {
  534. update_basstate(ucs, 0, BS_ATRDPEND);
  535. dev_err(cs->dev, "could not submit HD_READ_ATMESSAGE: %s\n",
  536. get_usb_rcmsg(ret));
  537. return ret;
  538. }
  539. if (timeout > 0) {
  540. gig_dbg(DEBUG_USBREQ, "setting timeout of %d/10 secs", timeout);
  541. ucs->timer_cmd_in.expires = jiffies + timeout * HZ / 10;
  542. ucs->timer_cmd_in.data = (unsigned long) cs;
  543. ucs->timer_cmd_in.function = cmd_in_timeout;
  544. add_timer(&ucs->timer_cmd_in);
  545. }
  546. return 0;
  547. }
  548. /* read_int_callback
  549. * USB completion handler for interrupt pipe input
  550. * called by the USB subsystem in interrupt context
  551. * parameter:
  552. * urb USB request block
  553. * urb->context = controller state structure
  554. */
  555. static void read_int_callback(struct urb *urb)
  556. {
  557. struct cardstate *cs = urb->context;
  558. struct bas_cardstate *ucs = cs->hw.bas;
  559. struct bc_state *bcs;
  560. int status = urb->status;
  561. unsigned long flags;
  562. int rc;
  563. unsigned l;
  564. int channel;
  565. switch (status) {
  566. case 0: /* success */
  567. break;
  568. case -ENOENT: /* cancelled */
  569. case -ECONNRESET: /* cancelled (async) */
  570. case -EINPROGRESS: /* pending */
  571. /* ignore silently */
  572. gig_dbg(DEBUG_USBREQ, "%s: %s",
  573. __func__, get_usb_statmsg(status));
  574. return;
  575. case -ENODEV: /* device removed */
  576. case -ESHUTDOWN: /* device shut down */
  577. gig_dbg(DEBUG_USBREQ, "%s: device disconnected", __func__);
  578. return;
  579. default: /* severe trouble */
  580. dev_warn(cs->dev, "interrupt read: %s\n",
  581. get_usb_statmsg(status));
  582. goto resubmit;
  583. }
  584. /* drop incomplete packets even if the missing bytes wouldn't matter */
  585. if (unlikely(urb->actual_length < IP_MSGSIZE)) {
  586. dev_warn(cs->dev, "incomplete interrupt packet (%d bytes)\n",
  587. urb->actual_length);
  588. goto resubmit;
  589. }
  590. l = (unsigned) ucs->int_in_buf[1] +
  591. (((unsigned) ucs->int_in_buf[2]) << 8);
  592. gig_dbg(DEBUG_USBREQ, "<-------%d: 0x%02x (%u [0x%02x 0x%02x])",
  593. urb->actual_length, (int)ucs->int_in_buf[0], l,
  594. (int)ucs->int_in_buf[1], (int)ucs->int_in_buf[2]);
  595. channel = 0;
  596. switch (ucs->int_in_buf[0]) {
  597. case HD_DEVICE_INIT_OK:
  598. update_basstate(ucs, BS_INIT, 0);
  599. break;
  600. case HD_READY_SEND_ATDATA:
  601. del_timer(&ucs->timer_atrdy);
  602. update_basstate(ucs, BS_ATREADY, BS_ATTIMER);
  603. start_cbsend(cs);
  604. break;
  605. case HD_OPEN_B2CHANNEL_ACK:
  606. ++channel;
  607. case HD_OPEN_B1CHANNEL_ACK:
  608. bcs = cs->bcs + channel;
  609. update_basstate(ucs, BS_B1OPEN << channel, 0);
  610. gigaset_bchannel_up(bcs);
  611. break;
  612. case HD_OPEN_ATCHANNEL_ACK:
  613. update_basstate(ucs, BS_ATOPEN, 0);
  614. start_cbsend(cs);
  615. break;
  616. case HD_CLOSE_B2CHANNEL_ACK:
  617. ++channel;
  618. case HD_CLOSE_B1CHANNEL_ACK:
  619. bcs = cs->bcs + channel;
  620. update_basstate(ucs, 0, BS_B1OPEN << channel);
  621. stopurbs(bcs->hw.bas);
  622. gigaset_bchannel_down(bcs);
  623. break;
  624. case HD_CLOSE_ATCHANNEL_ACK:
  625. update_basstate(ucs, 0, BS_ATOPEN);
  626. break;
  627. case HD_B2_FLOW_CONTROL:
  628. ++channel;
  629. case HD_B1_FLOW_CONTROL:
  630. bcs = cs->bcs + channel;
  631. atomic_add((l - BAS_NORMFRAME) * BAS_CORRFRAMES,
  632. &bcs->hw.bas->corrbytes);
  633. gig_dbg(DEBUG_ISO,
  634. "Flow control (channel %d, sub %d): 0x%02x => %d",
  635. channel, bcs->hw.bas->numsub, l,
  636. atomic_read(&bcs->hw.bas->corrbytes));
  637. break;
  638. case HD_RECEIVEATDATA_ACK: /* AT response ready to be received */
  639. if (!l) {
  640. dev_warn(cs->dev,
  641. "HD_RECEIVEATDATA_ACK with length 0 ignored\n");
  642. break;
  643. }
  644. spin_lock_irqsave(&cs->lock, flags);
  645. if (ucs->rcvbuf_size) {
  646. /* throw away previous buffer - we have no queue */
  647. dev_err(cs->dev,
  648. "receive AT data overrun, %d bytes lost\n",
  649. ucs->rcvbuf_size);
  650. kfree(ucs->rcvbuf);
  651. ucs->rcvbuf_size = 0;
  652. }
  653. ucs->rcvbuf = kmalloc(l, GFP_ATOMIC);
  654. if (ucs->rcvbuf == NULL) {
  655. spin_unlock_irqrestore(&cs->lock, flags);
  656. dev_err(cs->dev, "out of memory receiving AT data\n");
  657. error_reset(cs);
  658. break;
  659. }
  660. ucs->rcvbuf_size = l;
  661. ucs->retry_cmd_in = 0;
  662. rc = atread_submit(cs, BAS_TIMEOUT);
  663. if (rc < 0) {
  664. kfree(ucs->rcvbuf);
  665. ucs->rcvbuf = NULL;
  666. ucs->rcvbuf_size = 0;
  667. if (rc != -ENODEV) {
  668. spin_unlock_irqrestore(&cs->lock, flags);
  669. error_reset(cs);
  670. break;
  671. }
  672. }
  673. spin_unlock_irqrestore(&cs->lock, flags);
  674. break;
  675. case HD_RESET_INTERRUPT_PIPE_ACK:
  676. update_basstate(ucs, 0, BS_RESETTING);
  677. dev_notice(cs->dev, "interrupt pipe reset\n");
  678. break;
  679. case HD_SUSPEND_END:
  680. gig_dbg(DEBUG_USBREQ, "HD_SUSPEND_END");
  681. break;
  682. default:
  683. dev_warn(cs->dev,
  684. "unknown Gigaset signal 0x%02x (%u) ignored\n",
  685. (int) ucs->int_in_buf[0], l);
  686. }
  687. check_pending(ucs);
  688. wake_up(&ucs->waitqueue);
  689. resubmit:
  690. rc = usb_submit_urb(urb, GFP_ATOMIC);
  691. if (unlikely(rc != 0 && rc != -ENODEV)) {
  692. dev_err(cs->dev, "could not resubmit interrupt URB: %s\n",
  693. get_usb_rcmsg(rc));
  694. error_reset(cs);
  695. }
  696. }
  697. /* read_iso_callback
  698. * USB completion handler for B channel isochronous input
  699. * called by the USB subsystem in interrupt context
  700. * parameter:
  701. * urb USB request block of completed request
  702. * urb->context = bc_state structure
  703. */
  704. static void read_iso_callback(struct urb *urb)
  705. {
  706. struct bc_state *bcs;
  707. struct bas_bc_state *ubc;
  708. int status = urb->status;
  709. unsigned long flags;
  710. int i, rc;
  711. /* status codes not worth bothering the tasklet with */
  712. if (unlikely(status == -ENOENT ||
  713. status == -ECONNRESET ||
  714. status == -EINPROGRESS ||
  715. status == -ENODEV ||
  716. status == -ESHUTDOWN)) {
  717. gig_dbg(DEBUG_ISO, "%s: %s",
  718. __func__, get_usb_statmsg(status));
  719. return;
  720. }
  721. bcs = urb->context;
  722. ubc = bcs->hw.bas;
  723. spin_lock_irqsave(&ubc->isoinlock, flags);
  724. if (likely(ubc->isoindone == NULL)) {
  725. /* pass URB to tasklet */
  726. ubc->isoindone = urb;
  727. ubc->isoinstatus = status;
  728. tasklet_hi_schedule(&ubc->rcvd_tasklet);
  729. } else {
  730. /* tasklet still busy, drop data and resubmit URB */
  731. ubc->loststatus = status;
  732. for (i = 0; i < BAS_NUMFRAMES; i++) {
  733. ubc->isoinlost += urb->iso_frame_desc[i].actual_length;
  734. if (unlikely(urb->iso_frame_desc[i].status != 0 &&
  735. urb->iso_frame_desc[i].status !=
  736. -EINPROGRESS))
  737. ubc->loststatus = urb->iso_frame_desc[i].status;
  738. urb->iso_frame_desc[i].status = 0;
  739. urb->iso_frame_desc[i].actual_length = 0;
  740. }
  741. if (likely(ubc->running)) {
  742. /* urb->dev is clobbered by USB subsystem */
  743. urb->dev = bcs->cs->hw.bas->udev;
  744. urb->transfer_flags = URB_ISO_ASAP;
  745. urb->number_of_packets = BAS_NUMFRAMES;
  746. gig_dbg(DEBUG_ISO, "%s: isoc read overrun/resubmit",
  747. __func__);
  748. rc = usb_submit_urb(urb, GFP_ATOMIC);
  749. if (unlikely(rc != 0 && rc != -ENODEV)) {
  750. dev_err(bcs->cs->dev,
  751. "could not resubmit isochronous read "
  752. "URB: %s\n", get_usb_rcmsg(rc));
  753. dump_urb(DEBUG_ISO, "isoc read", urb);
  754. error_hangup(bcs);
  755. }
  756. }
  757. }
  758. spin_unlock_irqrestore(&ubc->isoinlock, flags);
  759. }
  760. /* write_iso_callback
  761. * USB completion handler for B channel isochronous output
  762. * called by the USB subsystem in interrupt context
  763. * parameter:
  764. * urb USB request block of completed request
  765. * urb->context = isow_urbctx_t structure
  766. */
  767. static void write_iso_callback(struct urb *urb)
  768. {
  769. struct isow_urbctx_t *ucx;
  770. struct bas_bc_state *ubc;
  771. int status = urb->status;
  772. unsigned long flags;
  773. /* status codes not worth bothering the tasklet with */
  774. if (unlikely(status == -ENOENT ||
  775. status == -ECONNRESET ||
  776. status == -EINPROGRESS ||
  777. status == -ENODEV ||
  778. status == -ESHUTDOWN)) {
  779. gig_dbg(DEBUG_ISO, "%s: %s",
  780. __func__, get_usb_statmsg(status));
  781. return;
  782. }
  783. /* pass URB context to tasklet */
  784. ucx = urb->context;
  785. ubc = ucx->bcs->hw.bas;
  786. ucx->status = status;
  787. spin_lock_irqsave(&ubc->isooutlock, flags);
  788. ubc->isooutovfl = ubc->isooutdone;
  789. ubc->isooutdone = ucx;
  790. spin_unlock_irqrestore(&ubc->isooutlock, flags);
  791. tasklet_hi_schedule(&ubc->sent_tasklet);
  792. }
  793. /* starturbs
  794. * prepare and submit USB request blocks for isochronous input and output
  795. * argument:
  796. * B channel control structure
  797. * return value:
  798. * 0 on success
  799. * < 0 on error (no URBs submitted)
  800. */
  801. static int starturbs(struct bc_state *bcs)
  802. {
  803. struct bas_bc_state *ubc = bcs->hw.bas;
  804. struct urb *urb;
  805. int j, k;
  806. int rc;
  807. /* initialize L2 reception */
  808. if (bcs->proto2 == L2_HDLC)
  809. bcs->inputstate |= INS_flag_hunt;
  810. /* submit all isochronous input URBs */
  811. ubc->running = 1;
  812. for (k = 0; k < BAS_INURBS; k++) {
  813. urb = ubc->isoinurbs[k];
  814. if (!urb) {
  815. rc = -EFAULT;
  816. goto error;
  817. }
  818. urb->dev = bcs->cs->hw.bas->udev;
  819. urb->pipe = usb_rcvisocpipe(urb->dev, 3 + 2 * bcs->channel);
  820. urb->transfer_flags = URB_ISO_ASAP;
  821. urb->transfer_buffer = ubc->isoinbuf + k * BAS_INBUFSIZE;
  822. urb->transfer_buffer_length = BAS_INBUFSIZE;
  823. urb->number_of_packets = BAS_NUMFRAMES;
  824. urb->interval = BAS_FRAMETIME;
  825. urb->complete = read_iso_callback;
  826. urb->context = bcs;
  827. for (j = 0; j < BAS_NUMFRAMES; j++) {
  828. urb->iso_frame_desc[j].offset = j * BAS_MAXFRAME;
  829. urb->iso_frame_desc[j].length = BAS_MAXFRAME;
  830. urb->iso_frame_desc[j].status = 0;
  831. urb->iso_frame_desc[j].actual_length = 0;
  832. }
  833. dump_urb(DEBUG_ISO, "Initial isoc read", urb);
  834. rc = usb_submit_urb(urb, GFP_ATOMIC);
  835. if (rc != 0)
  836. goto error;
  837. }
  838. /* initialize L2 transmission */
  839. gigaset_isowbuf_init(ubc->isooutbuf, PPP_FLAG);
  840. /* set up isochronous output URBs for flag idling */
  841. for (k = 0; k < BAS_OUTURBS; ++k) {
  842. urb = ubc->isoouturbs[k].urb;
  843. if (!urb) {
  844. rc = -EFAULT;
  845. goto error;
  846. }
  847. urb->dev = bcs->cs->hw.bas->udev;
  848. urb->pipe = usb_sndisocpipe(urb->dev, 4 + 2 * bcs->channel);
  849. urb->transfer_flags = URB_ISO_ASAP;
  850. urb->transfer_buffer = ubc->isooutbuf->data;
  851. urb->transfer_buffer_length = sizeof(ubc->isooutbuf->data);
  852. urb->number_of_packets = BAS_NUMFRAMES;
  853. urb->interval = BAS_FRAMETIME;
  854. urb->complete = write_iso_callback;
  855. urb->context = &ubc->isoouturbs[k];
  856. for (j = 0; j < BAS_NUMFRAMES; ++j) {
  857. urb->iso_frame_desc[j].offset = BAS_OUTBUFSIZE;
  858. urb->iso_frame_desc[j].length = BAS_NORMFRAME;
  859. urb->iso_frame_desc[j].status = 0;
  860. urb->iso_frame_desc[j].actual_length = 0;
  861. }
  862. ubc->isoouturbs[k].limit = -1;
  863. }
  864. /* keep one URB free, submit the others */
  865. for (k = 0; k < BAS_OUTURBS-1; ++k) {
  866. dump_urb(DEBUG_ISO, "Initial isoc write", urb);
  867. rc = usb_submit_urb(ubc->isoouturbs[k].urb, GFP_ATOMIC);
  868. if (rc != 0)
  869. goto error;
  870. }
  871. dump_urb(DEBUG_ISO, "Initial isoc write (free)", urb);
  872. ubc->isooutfree = &ubc->isoouturbs[BAS_OUTURBS-1];
  873. ubc->isooutdone = ubc->isooutovfl = NULL;
  874. return 0;
  875. error:
  876. stopurbs(ubc);
  877. return rc;
  878. }
  879. /* stopurbs
  880. * cancel the USB request blocks for isochronous input and output
  881. * errors are silently ignored
  882. * argument:
  883. * B channel control structure
  884. */
  885. static void stopurbs(struct bas_bc_state *ubc)
  886. {
  887. int k, rc;
  888. ubc->running = 0;
  889. for (k = 0; k < BAS_INURBS; ++k) {
  890. rc = usb_unlink_urb(ubc->isoinurbs[k]);
  891. gig_dbg(DEBUG_ISO,
  892. "%s: isoc input URB %d unlinked, result = %s",
  893. __func__, k, get_usb_rcmsg(rc));
  894. }
  895. for (k = 0; k < BAS_OUTURBS; ++k) {
  896. rc = usb_unlink_urb(ubc->isoouturbs[k].urb);
  897. gig_dbg(DEBUG_ISO,
  898. "%s: isoc output URB %d unlinked, result = %s",
  899. __func__, k, get_usb_rcmsg(rc));
  900. }
  901. }
  902. /* Isochronous Write - Bottom Half */
  903. /* =============================== */
  904. /* submit_iso_write_urb
  905. * fill and submit the next isochronous write URB
  906. * parameters:
  907. * ucx context structure containing URB
  908. * return value:
  909. * number of frames submitted in URB
  910. * 0 if URB not submitted because no data available (isooutbuf busy)
  911. * error code < 0 on error
  912. */
  913. static int submit_iso_write_urb(struct isow_urbctx_t *ucx)
  914. {
  915. struct urb *urb = ucx->urb;
  916. struct bas_bc_state *ubc = ucx->bcs->hw.bas;
  917. struct usb_iso_packet_descriptor *ifd;
  918. int corrbytes, nframe, rc;
  919. /* urb->dev is clobbered by USB subsystem */
  920. urb->dev = ucx->bcs->cs->hw.bas->udev;
  921. urb->transfer_flags = URB_ISO_ASAP;
  922. urb->transfer_buffer = ubc->isooutbuf->data;
  923. urb->transfer_buffer_length = sizeof(ubc->isooutbuf->data);
  924. for (nframe = 0; nframe < BAS_NUMFRAMES; nframe++) {
  925. ifd = &urb->iso_frame_desc[nframe];
  926. /* compute frame length according to flow control */
  927. ifd->length = BAS_NORMFRAME;
  928. corrbytes = atomic_read(&ubc->corrbytes);
  929. if (corrbytes != 0) {
  930. gig_dbg(DEBUG_ISO, "%s: corrbytes=%d",
  931. __func__, corrbytes);
  932. if (corrbytes > BAS_HIGHFRAME - BAS_NORMFRAME)
  933. corrbytes = BAS_HIGHFRAME - BAS_NORMFRAME;
  934. else if (corrbytes < BAS_LOWFRAME - BAS_NORMFRAME)
  935. corrbytes = BAS_LOWFRAME - BAS_NORMFRAME;
  936. ifd->length += corrbytes;
  937. atomic_add(-corrbytes, &ubc->corrbytes);
  938. }
  939. /* retrieve block of data to send */
  940. rc = gigaset_isowbuf_getbytes(ubc->isooutbuf, ifd->length);
  941. if (rc < 0) {
  942. if (rc == -EBUSY) {
  943. gig_dbg(DEBUG_ISO,
  944. "%s: buffer busy at frame %d",
  945. __func__, nframe);
  946. /* tasklet will be restarted from
  947. gigaset_isoc_send_skb() */
  948. } else {
  949. dev_err(ucx->bcs->cs->dev,
  950. "%s: buffer error %d at frame %d\n",
  951. __func__, rc, nframe);
  952. return rc;
  953. }
  954. break;
  955. }
  956. ifd->offset = rc;
  957. ucx->limit = ubc->isooutbuf->nextread;
  958. ifd->status = 0;
  959. ifd->actual_length = 0;
  960. }
  961. if (unlikely(nframe == 0))
  962. return 0; /* no data to send */
  963. urb->number_of_packets = nframe;
  964. rc = usb_submit_urb(urb, GFP_ATOMIC);
  965. if (unlikely(rc)) {
  966. if (rc == -ENODEV)
  967. /* device removed - give up silently */
  968. gig_dbg(DEBUG_ISO, "%s: disconnected", __func__);
  969. else
  970. dev_err(ucx->bcs->cs->dev,
  971. "could not submit isochronous write URB: %s\n",
  972. get_usb_rcmsg(rc));
  973. return rc;
  974. }
  975. ++ubc->numsub;
  976. return nframe;
  977. }
  978. /* write_iso_tasklet
  979. * tasklet scheduled when an isochronous output URB from the Gigaset device
  980. * has completed
  981. * parameter:
  982. * data B channel state structure
  983. */
  984. static void write_iso_tasklet(unsigned long data)
  985. {
  986. struct bc_state *bcs = (struct bc_state *) data;
  987. struct bas_bc_state *ubc = bcs->hw.bas;
  988. struct cardstate *cs = bcs->cs;
  989. struct isow_urbctx_t *done, *next, *ovfl;
  990. struct urb *urb;
  991. int status;
  992. struct usb_iso_packet_descriptor *ifd;
  993. int offset;
  994. unsigned long flags;
  995. int i;
  996. struct sk_buff *skb;
  997. int len;
  998. int rc;
  999. /* loop while completed URBs arrive in time */
  1000. for (;;) {
  1001. if (unlikely(!(ubc->running))) {
  1002. gig_dbg(DEBUG_ISO, "%s: not running", __func__);
  1003. return;
  1004. }
  1005. /* retrieve completed URBs */
  1006. spin_lock_irqsave(&ubc->isooutlock, flags);
  1007. done = ubc->isooutdone;
  1008. ubc->isooutdone = NULL;
  1009. ovfl = ubc->isooutovfl;
  1010. ubc->isooutovfl = NULL;
  1011. spin_unlock_irqrestore(&ubc->isooutlock, flags);
  1012. if (ovfl) {
  1013. dev_err(cs->dev, "isochronous write buffer underrun\n");
  1014. error_hangup(bcs);
  1015. break;
  1016. }
  1017. if (!done)
  1018. break;
  1019. /* submit free URB if available */
  1020. spin_lock_irqsave(&ubc->isooutlock, flags);
  1021. next = ubc->isooutfree;
  1022. ubc->isooutfree = NULL;
  1023. spin_unlock_irqrestore(&ubc->isooutlock, flags);
  1024. if (next) {
  1025. rc = submit_iso_write_urb(next);
  1026. if (unlikely(rc <= 0 && rc != -ENODEV)) {
  1027. /* could not submit URB, put it back */
  1028. spin_lock_irqsave(&ubc->isooutlock, flags);
  1029. if (ubc->isooutfree == NULL) {
  1030. ubc->isooutfree = next;
  1031. next = NULL;
  1032. }
  1033. spin_unlock_irqrestore(&ubc->isooutlock, flags);
  1034. if (next) {
  1035. /* couldn't put it back */
  1036. dev_err(cs->dev,
  1037. "losing isochronous write URB\n");
  1038. error_hangup(bcs);
  1039. }
  1040. }
  1041. }
  1042. /* process completed URB */
  1043. urb = done->urb;
  1044. status = done->status;
  1045. switch (status) {
  1046. case -EXDEV: /* partial completion */
  1047. gig_dbg(DEBUG_ISO, "%s: URB partially completed",
  1048. __func__);
  1049. /* fall through - what's the difference anyway? */
  1050. case 0: /* normal completion */
  1051. /* inspect individual frames
  1052. * assumptions (for lack of documentation):
  1053. * - actual_length bytes of first frame in error are
  1054. * successfully sent
  1055. * - all following frames are not sent at all
  1056. */
  1057. offset = done->limit; /* default (no error) */
  1058. for (i = 0; i < BAS_NUMFRAMES; i++) {
  1059. ifd = &urb->iso_frame_desc[i];
  1060. if (ifd->status ||
  1061. ifd->actual_length != ifd->length) {
  1062. dev_warn(cs->dev,
  1063. "isochronous write: frame %d: %s, "
  1064. "only %d of %d bytes sent\n",
  1065. i, get_usb_statmsg(ifd->status),
  1066. ifd->actual_length, ifd->length);
  1067. offset = (ifd->offset +
  1068. ifd->actual_length)
  1069. % BAS_OUTBUFSIZE;
  1070. break;
  1071. }
  1072. }
  1073. #ifdef CONFIG_GIGASET_DEBUG
  1074. /* check assumption on remaining frames */
  1075. for (; i < BAS_NUMFRAMES; i++) {
  1076. ifd = &urb->iso_frame_desc[i];
  1077. if (ifd->status != -EINPROGRESS
  1078. || ifd->actual_length != 0) {
  1079. dev_warn(cs->dev,
  1080. "isochronous write: frame %d: %s, "
  1081. "%d of %d bytes sent\n",
  1082. i, get_usb_statmsg(ifd->status),
  1083. ifd->actual_length, ifd->length);
  1084. offset = (ifd->offset +
  1085. ifd->actual_length)
  1086. % BAS_OUTBUFSIZE;
  1087. break;
  1088. }
  1089. }
  1090. #endif
  1091. break;
  1092. case -EPIPE: /* stall - probably underrun */
  1093. dev_err(cs->dev, "isochronous write stalled\n");
  1094. error_hangup(bcs);
  1095. break;
  1096. default: /* severe trouble */
  1097. dev_warn(cs->dev, "isochronous write: %s\n",
  1098. get_usb_statmsg(status));
  1099. }
  1100. /* mark the write buffer area covered by this URB as free */
  1101. if (done->limit >= 0)
  1102. ubc->isooutbuf->read = done->limit;
  1103. /* mark URB as free */
  1104. spin_lock_irqsave(&ubc->isooutlock, flags);
  1105. next = ubc->isooutfree;
  1106. ubc->isooutfree = done;
  1107. spin_unlock_irqrestore(&ubc->isooutlock, flags);
  1108. if (next) {
  1109. /* only one URB still active - resubmit one */
  1110. rc = submit_iso_write_urb(next);
  1111. if (unlikely(rc <= 0 && rc != -ENODEV)) {
  1112. /* couldn't submit */
  1113. error_hangup(bcs);
  1114. }
  1115. }
  1116. }
  1117. /* process queued SKBs */
  1118. while ((skb = skb_dequeue(&bcs->squeue))) {
  1119. /* copy to output buffer, doing L2 encapsulation */
  1120. len = skb->len;
  1121. if (gigaset_isoc_buildframe(bcs, skb->data, len) == -EAGAIN) {
  1122. /* insufficient buffer space, push back onto queue */
  1123. skb_queue_head(&bcs->squeue, skb);
  1124. gig_dbg(DEBUG_ISO, "%s: skb requeued, qlen=%d",
  1125. __func__, skb_queue_len(&bcs->squeue));
  1126. break;
  1127. }
  1128. skb_pull(skb, len);
  1129. gigaset_skb_sent(bcs, skb);
  1130. dev_kfree_skb_any(skb);
  1131. }
  1132. }
  1133. /* Isochronous Read - Bottom Half */
  1134. /* ============================== */
  1135. /* read_iso_tasklet
  1136. * tasklet scheduled when an isochronous input URB from the Gigaset device
  1137. * has completed
  1138. * parameter:
  1139. * data B channel state structure
  1140. */
  1141. static void read_iso_tasklet(unsigned long data)
  1142. {
  1143. struct bc_state *bcs = (struct bc_state *) data;
  1144. struct bas_bc_state *ubc = bcs->hw.bas;
  1145. struct cardstate *cs = bcs->cs;
  1146. struct urb *urb;
  1147. int status;
  1148. char *rcvbuf;
  1149. unsigned long flags;
  1150. int totleft, numbytes, offset, frame, rc;
  1151. /* loop while more completed URBs arrive in the meantime */
  1152. for (;;) {
  1153. /* retrieve URB */
  1154. spin_lock_irqsave(&ubc->isoinlock, flags);
  1155. urb = ubc->isoindone;
  1156. if (!urb) {
  1157. spin_unlock_irqrestore(&ubc->isoinlock, flags);
  1158. return;
  1159. }
  1160. status = ubc->isoinstatus;
  1161. ubc->isoindone = NULL;
  1162. if (unlikely(ubc->loststatus != -EINPROGRESS)) {
  1163. dev_warn(cs->dev,
  1164. "isochronous read overrun, "
  1165. "dropped URB with status: %s, %d bytes lost\n",
  1166. get_usb_statmsg(ubc->loststatus),
  1167. ubc->isoinlost);
  1168. ubc->loststatus = -EINPROGRESS;
  1169. }
  1170. spin_unlock_irqrestore(&ubc->isoinlock, flags);
  1171. if (unlikely(!(ubc->running))) {
  1172. gig_dbg(DEBUG_ISO,
  1173. "%s: channel not running, "
  1174. "dropped URB with status: %s",
  1175. __func__, get_usb_statmsg(status));
  1176. return;
  1177. }
  1178. switch (status) {
  1179. case 0: /* normal completion */
  1180. break;
  1181. case -EXDEV: /* inspect individual frames
  1182. (we do that anyway) */
  1183. gig_dbg(DEBUG_ISO, "%s: URB partially completed",
  1184. __func__);
  1185. break;
  1186. case -ENOENT:
  1187. case -ECONNRESET:
  1188. case -EINPROGRESS:
  1189. gig_dbg(DEBUG_ISO, "%s: %s",
  1190. __func__, get_usb_statmsg(status));
  1191. continue; /* -> skip */
  1192. case -EPIPE:
  1193. dev_err(cs->dev, "isochronous read stalled\n");
  1194. error_hangup(bcs);
  1195. continue; /* -> skip */
  1196. default: /* severe trouble */
  1197. dev_warn(cs->dev, "isochronous read: %s\n",
  1198. get_usb_statmsg(status));
  1199. goto error;
  1200. }
  1201. rcvbuf = urb->transfer_buffer;
  1202. totleft = urb->actual_length;
  1203. for (frame = 0; totleft > 0 && frame < BAS_NUMFRAMES; frame++) {
  1204. numbytes = urb->iso_frame_desc[frame].actual_length;
  1205. if (unlikely(urb->iso_frame_desc[frame].status))
  1206. dev_warn(cs->dev,
  1207. "isochronous read: frame %d[%d]: %s\n",
  1208. frame, numbytes,
  1209. get_usb_statmsg(
  1210. urb->iso_frame_desc[frame].status));
  1211. if (unlikely(numbytes > BAS_MAXFRAME))
  1212. dev_warn(cs->dev,
  1213. "isochronous read: frame %d: "
  1214. "numbytes (%d) > BAS_MAXFRAME\n",
  1215. frame, numbytes);
  1216. if (unlikely(numbytes > totleft)) {
  1217. dev_warn(cs->dev,
  1218. "isochronous read: frame %d: "
  1219. "numbytes (%d) > totleft (%d)\n",
  1220. frame, numbytes, totleft);
  1221. numbytes = totleft;
  1222. }
  1223. offset = urb->iso_frame_desc[frame].offset;
  1224. if (unlikely(offset + numbytes > BAS_INBUFSIZE)) {
  1225. dev_warn(cs->dev,
  1226. "isochronous read: frame %d: "
  1227. "offset (%d) + numbytes (%d) "
  1228. "> BAS_INBUFSIZE\n",
  1229. frame, offset, numbytes);
  1230. numbytes = BAS_INBUFSIZE - offset;
  1231. }
  1232. gigaset_isoc_receive(rcvbuf + offset, numbytes, bcs);
  1233. totleft -= numbytes;
  1234. }
  1235. if (unlikely(totleft > 0))
  1236. dev_warn(cs->dev,
  1237. "isochronous read: %d data bytes missing\n",
  1238. totleft);
  1239. error:
  1240. /* URB processed, resubmit */
  1241. for (frame = 0; frame < BAS_NUMFRAMES; frame++) {
  1242. urb->iso_frame_desc[frame].status = 0;
  1243. urb->iso_frame_desc[frame].actual_length = 0;
  1244. }
  1245. /* urb->dev is clobbered by USB subsystem */
  1246. urb->dev = bcs->cs->hw.bas->udev;
  1247. urb->transfer_flags = URB_ISO_ASAP;
  1248. urb->number_of_packets = BAS_NUMFRAMES;
  1249. rc = usb_submit_urb(urb, GFP_ATOMIC);
  1250. if (unlikely(rc != 0 && rc != -ENODEV)) {
  1251. dev_err(cs->dev,
  1252. "could not resubmit isochronous read URB: %s\n",
  1253. get_usb_rcmsg(rc));
  1254. dump_urb(DEBUG_ISO, "resubmit iso read", urb);
  1255. error_hangup(bcs);
  1256. }
  1257. }
  1258. }
  1259. /* Channel Operations */
  1260. /* ================== */
  1261. /* req_timeout
  1262. * timeout routine for control output request
  1263. * argument:
  1264. * B channel control structure
  1265. */
  1266. static void req_timeout(unsigned long data)
  1267. {
  1268. struct bc_state *bcs = (struct bc_state *) data;
  1269. struct bas_cardstate *ucs = bcs->cs->hw.bas;
  1270. int pending;
  1271. unsigned long flags;
  1272. check_pending(ucs);
  1273. spin_lock_irqsave(&ucs->lock, flags);
  1274. pending = ucs->pending;
  1275. ucs->pending = 0;
  1276. spin_unlock_irqrestore(&ucs->lock, flags);
  1277. switch (pending) {
  1278. case 0: /* no pending request */
  1279. gig_dbg(DEBUG_USBREQ, "%s: no request pending", __func__);
  1280. break;
  1281. case HD_OPEN_ATCHANNEL:
  1282. dev_err(bcs->cs->dev, "timeout opening AT channel\n");
  1283. error_reset(bcs->cs);
  1284. break;
  1285. case HD_OPEN_B2CHANNEL:
  1286. case HD_OPEN_B1CHANNEL:
  1287. dev_err(bcs->cs->dev, "timeout opening channel %d\n",
  1288. bcs->channel + 1);
  1289. error_hangup(bcs);
  1290. break;
  1291. case HD_CLOSE_ATCHANNEL:
  1292. dev_err(bcs->cs->dev, "timeout closing AT channel\n");
  1293. error_reset(bcs->cs);
  1294. break;
  1295. case HD_CLOSE_B2CHANNEL:
  1296. case HD_CLOSE_B1CHANNEL:
  1297. dev_err(bcs->cs->dev, "timeout closing channel %d\n",
  1298. bcs->channel + 1);
  1299. error_reset(bcs->cs);
  1300. break;
  1301. case HD_RESET_INTERRUPT_PIPE:
  1302. /* error recovery escalation */
  1303. dev_err(bcs->cs->dev,
  1304. "reset interrupt pipe timeout, attempting USB reset\n");
  1305. usb_queue_reset_device(bcs->cs->hw.bas->interface);
  1306. break;
  1307. default:
  1308. dev_warn(bcs->cs->dev, "request 0x%02x timed out, clearing\n",
  1309. pending);
  1310. }
  1311. wake_up(&ucs->waitqueue);
  1312. }
  1313. /* write_ctrl_callback
  1314. * USB completion handler for control pipe output
  1315. * called by the USB subsystem in interrupt context
  1316. * parameter:
  1317. * urb USB request block of completed request
  1318. * urb->context = hardware specific controller state structure
  1319. */
  1320. static void write_ctrl_callback(struct urb *urb)
  1321. {
  1322. struct bas_cardstate *ucs = urb->context;
  1323. int status = urb->status;
  1324. int rc;
  1325. unsigned long flags;
  1326. /* check status */
  1327. switch (status) {
  1328. case 0: /* normal completion */
  1329. spin_lock_irqsave(&ucs->lock, flags);
  1330. switch (ucs->pending) {
  1331. case HD_DEVICE_INIT_ACK: /* no reply expected */
  1332. del_timer(&ucs->timer_ctrl);
  1333. ucs->pending = 0;
  1334. break;
  1335. }
  1336. spin_unlock_irqrestore(&ucs->lock, flags);
  1337. return;
  1338. case -ENOENT: /* cancelled */
  1339. case -ECONNRESET: /* cancelled (async) */
  1340. case -EINPROGRESS: /* pending */
  1341. case -ENODEV: /* device removed */
  1342. case -ESHUTDOWN: /* device shut down */
  1343. /* ignore silently */
  1344. gig_dbg(DEBUG_USBREQ, "%s: %s",
  1345. __func__, get_usb_statmsg(status));
  1346. break;
  1347. default: /* any failure */
  1348. /* don't retry if suspend requested */
  1349. if (++ucs->retry_ctrl > BAS_RETRY ||
  1350. (ucs->basstate & BS_SUSPEND)) {
  1351. dev_err(&ucs->interface->dev,
  1352. "control request 0x%02x failed: %s\n",
  1353. ucs->dr_ctrl.bRequest,
  1354. get_usb_statmsg(status));
  1355. break; /* give up */
  1356. }
  1357. dev_notice(&ucs->interface->dev,
  1358. "control request 0x%02x: %s, retry %d\n",
  1359. ucs->dr_ctrl.bRequest, get_usb_statmsg(status),
  1360. ucs->retry_ctrl);
  1361. /* urb->dev is clobbered by USB subsystem */
  1362. urb->dev = ucs->udev;
  1363. rc = usb_submit_urb(urb, GFP_ATOMIC);
  1364. if (unlikely(rc)) {
  1365. dev_err(&ucs->interface->dev,
  1366. "could not resubmit request 0x%02x: %s\n",
  1367. ucs->dr_ctrl.bRequest, get_usb_rcmsg(rc));
  1368. break;
  1369. }
  1370. /* resubmitted */
  1371. return;
  1372. }
  1373. /* failed, clear pending request */
  1374. spin_lock_irqsave(&ucs->lock, flags);
  1375. del_timer(&ucs->timer_ctrl);
  1376. ucs->pending = 0;
  1377. spin_unlock_irqrestore(&ucs->lock, flags);
  1378. wake_up(&ucs->waitqueue);
  1379. }
  1380. /* req_submit
  1381. * submit a control output request without message buffer to the Gigaset base
  1382. * and optionally start a timeout
  1383. * parameters:
  1384. * bcs B channel control structure
  1385. * req control request code (HD_*)
  1386. * val control request parameter value (set to 0 if unused)
  1387. * timeout timeout in seconds (0: no timeout)
  1388. * return value:
  1389. * 0 on success
  1390. * -EBUSY if another request is pending
  1391. * any URB submission error code
  1392. */
  1393. static int req_submit(struct bc_state *bcs, int req, int val, int timeout)
  1394. {
  1395. struct bas_cardstate *ucs = bcs->cs->hw.bas;
  1396. int ret;
  1397. unsigned long flags;
  1398. gig_dbg(DEBUG_USBREQ, "-------> 0x%02x (%d)", req, val);
  1399. spin_lock_irqsave(&ucs->lock, flags);
  1400. if (ucs->pending) {
  1401. spin_unlock_irqrestore(&ucs->lock, flags);
  1402. dev_err(bcs->cs->dev,
  1403. "submission of request 0x%02x failed: "
  1404. "request 0x%02x still pending\n",
  1405. req, ucs->pending);
  1406. return -EBUSY;
  1407. }
  1408. ucs->dr_ctrl.bRequestType = OUT_VENDOR_REQ;
  1409. ucs->dr_ctrl.bRequest = req;
  1410. ucs->dr_ctrl.wValue = cpu_to_le16(val);
  1411. ucs->dr_ctrl.wIndex = 0;
  1412. ucs->dr_ctrl.wLength = 0;
  1413. usb_fill_control_urb(ucs->urb_ctrl, ucs->udev,
  1414. usb_sndctrlpipe(ucs->udev, 0),
  1415. (unsigned char *) &ucs->dr_ctrl, NULL, 0,
  1416. write_ctrl_callback, ucs);
  1417. ucs->retry_ctrl = 0;
  1418. ret = usb_submit_urb(ucs->urb_ctrl, GFP_ATOMIC);
  1419. if (unlikely(ret)) {
  1420. dev_err(bcs->cs->dev, "could not submit request 0x%02x: %s\n",
  1421. req, get_usb_rcmsg(ret));
  1422. spin_unlock_irqrestore(&ucs->lock, flags);
  1423. return ret;
  1424. }
  1425. ucs->pending = req;
  1426. if (timeout > 0) {
  1427. gig_dbg(DEBUG_USBREQ, "setting timeout of %d/10 secs", timeout);
  1428. ucs->timer_ctrl.expires = jiffies + timeout * HZ / 10;
  1429. ucs->timer_ctrl.data = (unsigned long) bcs;
  1430. ucs->timer_ctrl.function = req_timeout;
  1431. add_timer(&ucs->timer_ctrl);
  1432. }
  1433. spin_unlock_irqrestore(&ucs->lock, flags);
  1434. return 0;
  1435. }
  1436. /* gigaset_init_bchannel
  1437. * called by common.c to connect a B channel
  1438. * initialize isochronous I/O and tell the Gigaset base to open the channel
  1439. * argument:
  1440. * B channel control structure
  1441. * return value:
  1442. * 0 on success, error code < 0 on error
  1443. */
  1444. static int gigaset_init_bchannel(struct bc_state *bcs)
  1445. {
  1446. struct cardstate *cs = bcs->cs;
  1447. int req, ret;
  1448. unsigned long flags;
  1449. spin_lock_irqsave(&cs->lock, flags);
  1450. if (unlikely(!cs->connected)) {
  1451. gig_dbg(DEBUG_USBREQ, "%s: not connected", __func__);
  1452. spin_unlock_irqrestore(&cs->lock, flags);
  1453. return -ENODEV;
  1454. }
  1455. if (cs->hw.bas->basstate & BS_SUSPEND) {
  1456. dev_notice(cs->dev,
  1457. "not starting isochronous I/O, "
  1458. "suspend in progress\n");
  1459. spin_unlock_irqrestore(&cs->lock, flags);
  1460. return -EHOSTUNREACH;
  1461. }
  1462. ret = starturbs(bcs);
  1463. if (ret < 0) {
  1464. dev_err(cs->dev,
  1465. "could not start isochronous I/O for channel B%d: %s\n",
  1466. bcs->channel + 1,
  1467. ret == -EFAULT ? "null URB" : get_usb_rcmsg(ret));
  1468. if (ret != -ENODEV)
  1469. error_hangup(bcs);
  1470. spin_unlock_irqrestore(&cs->lock, flags);
  1471. return ret;
  1472. }
  1473. req = bcs->channel ? HD_OPEN_B2CHANNEL : HD_OPEN_B1CHANNEL;
  1474. ret = req_submit(bcs, req, 0, BAS_TIMEOUT);
  1475. if (ret < 0) {
  1476. dev_err(cs->dev, "could not open channel B%d\n",
  1477. bcs->channel + 1);
  1478. stopurbs(bcs->hw.bas);
  1479. if (ret != -ENODEV)
  1480. error_hangup(bcs);
  1481. }
  1482. spin_unlock_irqrestore(&cs->lock, flags);
  1483. return ret;
  1484. }
  1485. /* gigaset_close_bchannel
  1486. * called by common.c to disconnect a B channel
  1487. * tell the Gigaset base to close the channel
  1488. * stopping isochronous I/O and LL notification will be done when the
  1489. * acknowledgement for the close arrives
  1490. * argument:
  1491. * B channel control structure
  1492. * return value:
  1493. * 0 on success, error code < 0 on error
  1494. */
  1495. static int gigaset_close_bchannel(struct bc_state *bcs)
  1496. {
  1497. struct cardstate *cs = bcs->cs;
  1498. int req, ret;
  1499. unsigned long flags;
  1500. spin_lock_irqsave(&cs->lock, flags);
  1501. if (unlikely(!cs->connected)) {
  1502. spin_unlock_irqrestore(&cs->lock, flags);
  1503. gig_dbg(DEBUG_USBREQ, "%s: not connected", __func__);
  1504. return -ENODEV;
  1505. }
  1506. if (!(cs->hw.bas->basstate & (bcs->channel ? BS_B2OPEN : BS_B1OPEN))) {
  1507. /* channel not running: just signal common.c */
  1508. spin_unlock_irqrestore(&cs->lock, flags);
  1509. gigaset_bchannel_down(bcs);
  1510. return 0;
  1511. }
  1512. /* channel running: tell device to close it */
  1513. req = bcs->channel ? HD_CLOSE_B2CHANNEL : HD_CLOSE_B1CHANNEL;
  1514. ret = req_submit(bcs, req, 0, BAS_TIMEOUT);
  1515. if (ret < 0)
  1516. dev_err(cs->dev, "closing channel B%d failed\n",
  1517. bcs->channel + 1);
  1518. spin_unlock_irqrestore(&cs->lock, flags);
  1519. return ret;
  1520. }
  1521. /* Device Operations */
  1522. /* ================= */
  1523. /* complete_cb
  1524. * unqueue first command buffer from queue, waking any sleepers
  1525. * must be called with cs->cmdlock held
  1526. * parameter:
  1527. * cs controller state structure
  1528. */
  1529. static void complete_cb(struct cardstate *cs)
  1530. {
  1531. struct cmdbuf_t *cb = cs->cmdbuf;
  1532. /* unqueue completed buffer */
  1533. cs->cmdbytes -= cs->curlen;
  1534. gig_dbg(DEBUG_OUTPUT, "write_command: sent %u bytes, %u left",
  1535. cs->curlen, cs->cmdbytes);
  1536. if (cb->next != NULL) {
  1537. cs->cmdbuf = cb->next;
  1538. cs->cmdbuf->prev = NULL;
  1539. cs->curlen = cs->cmdbuf->len;
  1540. } else {
  1541. cs->cmdbuf = NULL;
  1542. cs->lastcmdbuf = NULL;
  1543. cs->curlen = 0;
  1544. }
  1545. if (cb->wake_tasklet)
  1546. tasklet_schedule(cb->wake_tasklet);
  1547. kfree(cb);
  1548. }
  1549. /* write_command_callback
  1550. * USB completion handler for AT command transmission
  1551. * called by the USB subsystem in interrupt context
  1552. * parameter:
  1553. * urb USB request block of completed request
  1554. * urb->context = controller state structure
  1555. */
  1556. static void write_command_callback(struct urb *urb)
  1557. {
  1558. struct cardstate *cs = urb->context;
  1559. struct bas_cardstate *ucs = cs->hw.bas;
  1560. int status = urb->status;
  1561. unsigned long flags;
  1562. update_basstate(ucs, 0, BS_ATWRPEND);
  1563. wake_up(&ucs->waitqueue);
  1564. /* check status */
  1565. switch (status) {
  1566. case 0: /* normal completion */
  1567. break;
  1568. case -ENOENT: /* cancelled */
  1569. case -ECONNRESET: /* cancelled (async) */
  1570. case -EINPROGRESS: /* pending */
  1571. case -ENODEV: /* device removed */
  1572. case -ESHUTDOWN: /* device shut down */
  1573. /* ignore silently */
  1574. gig_dbg(DEBUG_USBREQ, "%s: %s",
  1575. __func__, get_usb_statmsg(status));
  1576. return;
  1577. default: /* any failure */
  1578. if (++ucs->retry_cmd_out > BAS_RETRY) {
  1579. dev_warn(cs->dev,
  1580. "command write: %s, "
  1581. "giving up after %d retries\n",
  1582. get_usb_statmsg(status),
  1583. ucs->retry_cmd_out);
  1584. break;
  1585. }
  1586. if (ucs->basstate & BS_SUSPEND) {
  1587. dev_warn(cs->dev,
  1588. "command write: %s, "
  1589. "won't retry - suspend requested\n",
  1590. get_usb_statmsg(status));
  1591. break;
  1592. }
  1593. if (cs->cmdbuf == NULL) {
  1594. dev_warn(cs->dev,
  1595. "command write: %s, "
  1596. "cannot retry - cmdbuf gone\n",
  1597. get_usb_statmsg(status));
  1598. break;
  1599. }
  1600. dev_notice(cs->dev, "command write: %s, retry %d\n",
  1601. get_usb_statmsg(status), ucs->retry_cmd_out);
  1602. if (atwrite_submit(cs, cs->cmdbuf->buf, cs->cmdbuf->len) >= 0)
  1603. /* resubmitted - bypass regular exit block */
  1604. return;
  1605. /* command send failed, assume base still waiting */
  1606. update_basstate(ucs, BS_ATREADY, 0);
  1607. }
  1608. spin_lock_irqsave(&cs->cmdlock, flags);
  1609. if (cs->cmdbuf != NULL)
  1610. complete_cb(cs);
  1611. spin_unlock_irqrestore(&cs->cmdlock, flags);
  1612. }
  1613. /* atrdy_timeout
  1614. * timeout routine for AT command transmission
  1615. * argument:
  1616. * controller state structure
  1617. */
  1618. static void atrdy_timeout(unsigned long data)
  1619. {
  1620. struct cardstate *cs = (struct cardstate *) data;
  1621. struct bas_cardstate *ucs = cs->hw.bas;
  1622. dev_warn(cs->dev, "timeout waiting for HD_READY_SEND_ATDATA\n");
  1623. /* fake the missing signal - what else can I do? */
  1624. update_basstate(ucs, BS_ATREADY, BS_ATTIMER);
  1625. start_cbsend(cs);
  1626. }
  1627. /* atwrite_submit
  1628. * submit an HD_WRITE_ATMESSAGE command URB
  1629. * parameters:
  1630. * cs controller state structure
  1631. * buf buffer containing command to send
  1632. * len length of command to send
  1633. * return value:
  1634. * 0 on success
  1635. * -EBUSY if another request is pending
  1636. * any URB submission error code
  1637. */
  1638. static int atwrite_submit(struct cardstate *cs, unsigned char *buf, int len)
  1639. {
  1640. struct bas_cardstate *ucs = cs->hw.bas;
  1641. int rc;
  1642. gig_dbg(DEBUG_USBREQ, "-------> HD_WRITE_ATMESSAGE (%d)", len);
  1643. if (update_basstate(ucs, BS_ATWRPEND, 0) & BS_ATWRPEND) {
  1644. dev_err(cs->dev,
  1645. "could not submit HD_WRITE_ATMESSAGE: URB busy\n");
  1646. return -EBUSY;
  1647. }
  1648. ucs->dr_cmd_out.bRequestType = OUT_VENDOR_REQ;
  1649. ucs->dr_cmd_out.bRequest = HD_WRITE_ATMESSAGE;
  1650. ucs->dr_cmd_out.wValue = 0;
  1651. ucs->dr_cmd_out.wIndex = 0;
  1652. ucs->dr_cmd_out.wLength = cpu_to_le16(len);
  1653. usb_fill_control_urb(ucs->urb_cmd_out, ucs->udev,
  1654. usb_sndctrlpipe(ucs->udev, 0),
  1655. (unsigned char *) &ucs->dr_cmd_out, buf, len,
  1656. write_command_callback, cs);
  1657. rc = usb_submit_urb(ucs->urb_cmd_out, GFP_ATOMIC);
  1658. if (unlikely(rc)) {
  1659. update_basstate(ucs, 0, BS_ATWRPEND);
  1660. dev_err(cs->dev, "could not submit HD_WRITE_ATMESSAGE: %s\n",
  1661. get_usb_rcmsg(rc));
  1662. return rc;
  1663. }
  1664. /* submitted successfully, start timeout if necessary */
  1665. if (!(update_basstate(ucs, BS_ATTIMER, BS_ATREADY) & BS_ATTIMER)) {
  1666. gig_dbg(DEBUG_OUTPUT, "setting ATREADY timeout of %d/10 secs",
  1667. ATRDY_TIMEOUT);
  1668. ucs->timer_atrdy.expires = jiffies + ATRDY_TIMEOUT * HZ / 10;
  1669. ucs->timer_atrdy.data = (unsigned long) cs;
  1670. ucs->timer_atrdy.function = atrdy_timeout;
  1671. add_timer(&ucs->timer_atrdy);
  1672. }
  1673. return 0;
  1674. }
  1675. /* start_cbsend
  1676. * start transmission of AT command queue if necessary
  1677. * parameter:
  1678. * cs controller state structure
  1679. * return value:
  1680. * 0 on success
  1681. * error code < 0 on error
  1682. */
  1683. static int start_cbsend(struct cardstate *cs)
  1684. {
  1685. struct cmdbuf_t *cb;
  1686. struct bas_cardstate *ucs = cs->hw.bas;
  1687. unsigned long flags;
  1688. int rc;
  1689. int retval = 0;
  1690. /* check if suspend requested */
  1691. if (ucs->basstate & BS_SUSPEND) {
  1692. gig_dbg(DEBUG_OUTPUT, "suspending");
  1693. return -EHOSTUNREACH;
  1694. }
  1695. /* check if AT channel is open */
  1696. if (!(ucs->basstate & BS_ATOPEN)) {
  1697. gig_dbg(DEBUG_OUTPUT, "AT channel not open");
  1698. rc = req_submit(cs->bcs, HD_OPEN_ATCHANNEL, 0, BAS_TIMEOUT);
  1699. if (rc < 0) {
  1700. /* flush command queue */
  1701. spin_lock_irqsave(&cs->cmdlock, flags);
  1702. while (cs->cmdbuf != NULL)
  1703. complete_cb(cs);
  1704. spin_unlock_irqrestore(&cs->cmdlock, flags);
  1705. }
  1706. return rc;
  1707. }
  1708. /* try to send first command in queue */
  1709. spin_lock_irqsave(&cs->cmdlock, flags);
  1710. while ((cb = cs->cmdbuf) != NULL && (ucs->basstate & BS_ATREADY)) {
  1711. ucs->retry_cmd_out = 0;
  1712. rc = atwrite_submit(cs, cb->buf, cb->len);
  1713. if (unlikely(rc)) {
  1714. retval = rc;
  1715. complete_cb(cs);
  1716. }
  1717. }
  1718. spin_unlock_irqrestore(&cs->cmdlock, flags);
  1719. return retval;
  1720. }
  1721. /* gigaset_write_cmd
  1722. * This function is called by the device independent part of the driver
  1723. * to transmit an AT command string to the Gigaset device.
  1724. * It encapsulates the device specific method for transmission over the
  1725. * direct USB connection to the base.
  1726. * The command string is added to the queue of commands to send, and
  1727. * USB transmission is started if necessary.
  1728. * parameters:
  1729. * cs controller state structure
  1730. * buf command string to send
  1731. * len number of bytes to send (max. IF_WRITEBUF)
  1732. * wake_tasklet tasklet to run when transmission is completed
  1733. * (NULL if none)
  1734. * return value:
  1735. * number of bytes queued on success
  1736. * error code < 0 on error
  1737. */
  1738. static int gigaset_write_cmd(struct cardstate *cs,
  1739. const unsigned char *buf, int len,
  1740. struct tasklet_struct *wake_tasklet)
  1741. {
  1742. struct cmdbuf_t *cb;
  1743. unsigned long flags;
  1744. int rc;
  1745. gigaset_dbg_buffer(cs->mstate != MS_LOCKED ?
  1746. DEBUG_TRANSCMD : DEBUG_LOCKCMD,
  1747. "CMD Transmit", len, buf);
  1748. if (len <= 0) {
  1749. /* nothing to do */
  1750. rc = 0;
  1751. goto notqueued;
  1752. }
  1753. /* translate "+++" escape sequence sent as a single separate command
  1754. * into "close AT channel" command for error recovery
  1755. * The next command will reopen the AT channel automatically.
  1756. */
  1757. if (len == 3 && !memcmp(buf, "+++", 3)) {
  1758. rc = req_submit(cs->bcs, HD_CLOSE_ATCHANNEL, 0, BAS_TIMEOUT);
  1759. goto notqueued;
  1760. }
  1761. if (len > IF_WRITEBUF)
  1762. len = IF_WRITEBUF;
  1763. cb = kmalloc(sizeof(struct cmdbuf_t) + len, GFP_ATOMIC);
  1764. if (!cb) {
  1765. dev_err(cs->dev, "%s: out of memory\n", __func__);
  1766. rc = -ENOMEM;
  1767. goto notqueued;
  1768. }
  1769. memcpy(cb->buf, buf, len);
  1770. cb->len = len;
  1771. cb->offset = 0;
  1772. cb->next = NULL;
  1773. cb->wake_tasklet = wake_tasklet;
  1774. spin_lock_irqsave(&cs->cmdlock, flags);
  1775. cb->prev = cs->lastcmdbuf;
  1776. if (cs->lastcmdbuf)
  1777. cs->lastcmdbuf->next = cb;
  1778. else {
  1779. cs->cmdbuf = cb;
  1780. cs->curlen = len;
  1781. }
  1782. cs->cmdbytes += len;
  1783. cs->lastcmdbuf = cb;
  1784. spin_unlock_irqrestore(&cs->cmdlock, flags);
  1785. spin_lock_irqsave(&cs->lock, flags);
  1786. if (unlikely(!cs->connected)) {
  1787. spin_unlock_irqrestore(&cs->lock, flags);
  1788. gig_dbg(DEBUG_USBREQ, "%s: not connected", __func__);
  1789. /* flush command queue */
  1790. spin_lock_irqsave(&cs->cmdlock, flags);
  1791. while (cs->cmdbuf != NULL)
  1792. complete_cb(cs);
  1793. spin_unlock_irqrestore(&cs->cmdlock, flags);
  1794. return -ENODEV;
  1795. }
  1796. rc = start_cbsend(cs);
  1797. spin_unlock_irqrestore(&cs->lock, flags);
  1798. return rc < 0 ? rc : len;
  1799. notqueued: /* request handled without queuing */
  1800. if (wake_tasklet)
  1801. tasklet_schedule(wake_tasklet);
  1802. return rc;
  1803. }
  1804. /* gigaset_write_room
  1805. * tty_driver.write_room interface routine
  1806. * return number of characters the driver will accept to be written via
  1807. * gigaset_write_cmd
  1808. * parameter:
  1809. * controller state structure
  1810. * return value:
  1811. * number of characters
  1812. */
  1813. static int gigaset_write_room(struct cardstate *cs)
  1814. {
  1815. return IF_WRITEBUF;
  1816. }
  1817. /* gigaset_chars_in_buffer
  1818. * tty_driver.chars_in_buffer interface routine
  1819. * return number of characters waiting to be sent
  1820. * parameter:
  1821. * controller state structure
  1822. * return value:
  1823. * number of characters
  1824. */
  1825. static int gigaset_chars_in_buffer(struct cardstate *cs)
  1826. {
  1827. return cs->cmdbytes;
  1828. }
  1829. /* gigaset_brkchars
  1830. * implementation of ioctl(GIGASET_BRKCHARS)
  1831. * parameter:
  1832. * controller state structure
  1833. * return value:
  1834. * -EINVAL (unimplemented function)
  1835. */
  1836. static int gigaset_brkchars(struct cardstate *cs, const unsigned char buf[6])
  1837. {
  1838. return -EINVAL;
  1839. }
  1840. /* Device Initialization/Shutdown */
  1841. /* ============================== */
  1842. /* Free hardware dependent part of the B channel structure
  1843. * parameter:
  1844. * bcs B channel structure
  1845. * return value:
  1846. * !=0 on success
  1847. */
  1848. static int gigaset_freebcshw(struct bc_state *bcs)
  1849. {
  1850. struct bas_bc_state *ubc = bcs->hw.bas;
  1851. int i;
  1852. if (!ubc)
  1853. return 0;
  1854. /* kill URBs and tasklets before freeing - better safe than sorry */
  1855. ubc->running = 0;
  1856. gig_dbg(DEBUG_INIT, "%s: killing iso URBs", __func__);
  1857. for (i = 0; i < BAS_OUTURBS; ++i) {
  1858. usb_kill_urb(ubc->isoouturbs[i].urb);
  1859. usb_free_urb(ubc->isoouturbs[i].urb);
  1860. }
  1861. for (i = 0; i < BAS_INURBS; ++i) {
  1862. usb_kill_urb(ubc->isoinurbs[i]);
  1863. usb_free_urb(ubc->isoinurbs[i]);
  1864. }
  1865. tasklet_kill(&ubc->sent_tasklet);
  1866. tasklet_kill(&ubc->rcvd_tasklet);
  1867. kfree(ubc->isooutbuf);
  1868. kfree(ubc);
  1869. bcs->hw.bas = NULL;
  1870. return 1;
  1871. }
  1872. /* Initialize hardware dependent part of the B channel structure
  1873. * parameter:
  1874. * bcs B channel structure
  1875. * return value:
  1876. * !=0 on success
  1877. */
  1878. static int gigaset_initbcshw(struct bc_state *bcs)
  1879. {
  1880. int i;
  1881. struct bas_bc_state *ubc;
  1882. bcs->hw.bas = ubc = kmalloc(sizeof(struct bas_bc_state), GFP_KERNEL);
  1883. if (!ubc) {
  1884. pr_err("out of memory\n");
  1885. return 0;
  1886. }
  1887. ubc->running = 0;
  1888. atomic_set(&ubc->corrbytes, 0);
  1889. spin_lock_init(&ubc->isooutlock);
  1890. for (i = 0; i < BAS_OUTURBS; ++i) {
  1891. ubc->isoouturbs[i].urb = NULL;
  1892. ubc->isoouturbs[i].bcs = bcs;
  1893. }
  1894. ubc->isooutdone = ubc->isooutfree = ubc->isooutovfl = NULL;
  1895. ubc->numsub = 0;
  1896. ubc->isooutbuf = kmalloc(sizeof(struct isowbuf_t), GFP_KERNEL);
  1897. if (!ubc->isooutbuf) {
  1898. pr_err("out of memory\n");
  1899. kfree(ubc);
  1900. bcs->hw.bas = NULL;
  1901. return 0;
  1902. }
  1903. tasklet_init(&ubc->sent_tasklet,
  1904. write_iso_tasklet, (unsigned long) bcs);
  1905. spin_lock_init(&ubc->isoinlock);
  1906. for (i = 0; i < BAS_INURBS; ++i)
  1907. ubc->isoinurbs[i] = NULL;
  1908. ubc->isoindone = NULL;
  1909. ubc->loststatus = -EINPROGRESS;
  1910. ubc->isoinlost = 0;
  1911. ubc->seqlen = 0;
  1912. ubc->inbyte = 0;
  1913. ubc->inbits = 0;
  1914. ubc->goodbytes = 0;
  1915. ubc->alignerrs = 0;
  1916. ubc->fcserrs = 0;
  1917. ubc->frameerrs = 0;
  1918. ubc->giants = 0;
  1919. ubc->runts = 0;
  1920. ubc->aborts = 0;
  1921. ubc->shared0s = 0;
  1922. ubc->stolen0s = 0;
  1923. tasklet_init(&ubc->rcvd_tasklet,
  1924. read_iso_tasklet, (unsigned long) bcs);
  1925. return 1;
  1926. }
  1927. static void gigaset_reinitbcshw(struct bc_state *bcs)
  1928. {
  1929. struct bas_bc_state *ubc = bcs->hw.bas;
  1930. bcs->hw.bas->running = 0;
  1931. atomic_set(&bcs->hw.bas->corrbytes, 0);
  1932. bcs->hw.bas->numsub = 0;
  1933. spin_lock_init(&ubc->isooutlock);
  1934. spin_lock_init(&ubc->isoinlock);
  1935. ubc->loststatus = -EINPROGRESS;
  1936. }
  1937. static void gigaset_freecshw(struct cardstate *cs)
  1938. {
  1939. /* timers, URBs and rcvbuf are disposed of in disconnect */
  1940. kfree(cs->hw.bas->int_in_buf);
  1941. kfree(cs->hw.bas);
  1942. cs->hw.bas = NULL;
  1943. }
  1944. static int gigaset_initcshw(struct cardstate *cs)
  1945. {
  1946. struct bas_cardstate *ucs;
  1947. cs->hw.bas = ucs = kmalloc(sizeof *ucs, GFP_KERNEL);
  1948. if (!ucs) {
  1949. pr_err("out of memory\n");
  1950. return 0;
  1951. }
  1952. ucs->int_in_buf = kmalloc(IP_MSGSIZE, GFP_KERNEL);
  1953. if (!ucs->int_in_buf) {
  1954. kfree(ucs);
  1955. pr_err("out of memory\n");
  1956. return 0;
  1957. }
  1958. ucs->urb_cmd_in = NULL;
  1959. ucs->urb_cmd_out = NULL;
  1960. ucs->rcvbuf = NULL;
  1961. ucs->rcvbuf_size = 0;
  1962. spin_lock_init(&ucs->lock);
  1963. ucs->pending = 0;
  1964. ucs->basstate = 0;
  1965. init_timer(&ucs->timer_ctrl);
  1966. init_timer(&ucs->timer_atrdy);
  1967. init_timer(&ucs->timer_cmd_in);
  1968. init_waitqueue_head(&ucs->waitqueue);
  1969. return 1;
  1970. }
  1971. /* freeurbs
  1972. * unlink and deallocate all URBs unconditionally
  1973. * caller must make sure that no commands are still in progress
  1974. * parameter:
  1975. * cs controller state structure
  1976. */
  1977. static void freeurbs(struct cardstate *cs)
  1978. {
  1979. struct bas_cardstate *ucs = cs->hw.bas;
  1980. struct bas_bc_state *ubc;
  1981. int i, j;
  1982. gig_dbg(DEBUG_INIT, "%s: killing URBs", __func__);
  1983. for (j = 0; j < BAS_CHANNELS; ++j) {
  1984. ubc = cs->bcs[j].hw.bas;
  1985. for (i = 0; i < BAS_OUTURBS; ++i) {
  1986. usb_kill_urb(ubc->isoouturbs[i].urb);
  1987. usb_free_urb(ubc->isoouturbs[i].urb);
  1988. ubc->isoouturbs[i].urb = NULL;
  1989. }
  1990. for (i = 0; i < BAS_INURBS; ++i) {
  1991. usb_kill_urb(ubc->isoinurbs[i]);
  1992. usb_free_urb(ubc->isoinurbs[i]);
  1993. ubc->isoinurbs[i] = NULL;
  1994. }
  1995. }
  1996. usb_kill_urb(ucs->urb_int_in);
  1997. usb_free_urb(ucs->urb_int_in);
  1998. ucs->urb_int_in = NULL;
  1999. usb_kill_urb(ucs->urb_cmd_out);
  2000. usb_free_urb(ucs->urb_cmd_out);
  2001. ucs->urb_cmd_out = NULL;
  2002. usb_kill_urb(ucs->urb_cmd_in);
  2003. usb_free_urb(ucs->urb_cmd_in);
  2004. ucs->urb_cmd_in = NULL;
  2005. usb_kill_urb(ucs->urb_ctrl);
  2006. usb_free_urb(ucs->urb_ctrl);
  2007. ucs->urb_ctrl = NULL;
  2008. }
  2009. /* gigaset_probe
  2010. * This function is called when a new USB device is connected.
  2011. * It checks whether the new device is handled by this driver.
  2012. */
  2013. static int gigaset_probe(struct usb_interface *interface,
  2014. const struct usb_device_id *id)
  2015. {
  2016. struct usb_host_interface *hostif;
  2017. struct usb_device *udev = interface_to_usbdev(interface);
  2018. struct cardstate *cs = NULL;
  2019. struct bas_cardstate *ucs = NULL;
  2020. struct bas_bc_state *ubc;
  2021. struct usb_endpoint_descriptor *endpoint;
  2022. int i, j;
  2023. int rc;
  2024. gig_dbg(DEBUG_INIT,
  2025. "%s: Check if device matches .. (Vendor: 0x%x, Product: 0x%x)",
  2026. __func__, le16_to_cpu(udev->descriptor.idVendor),
  2027. le16_to_cpu(udev->descriptor.idProduct));
  2028. /* set required alternate setting */
  2029. hostif = interface->cur_altsetting;
  2030. if (hostif->desc.bAlternateSetting != 3) {
  2031. gig_dbg(DEBUG_INIT,
  2032. "%s: wrong alternate setting %d - trying to switch",
  2033. __func__, hostif->desc.bAlternateSetting);
  2034. if (usb_set_interface(udev, hostif->desc.bInterfaceNumber, 3)
  2035. < 0) {
  2036. dev_warn(&udev->dev, "usb_set_interface failed, "
  2037. "device %d interface %d altsetting %d\n",
  2038. udev->devnum, hostif->desc.bInterfaceNumber,
  2039. hostif->desc.bAlternateSetting);
  2040. return -ENODEV;
  2041. }
  2042. hostif = interface->cur_altsetting;
  2043. }
  2044. /* Reject application specific interfaces
  2045. */
  2046. if (hostif->desc.bInterfaceClass != 255) {
  2047. dev_warn(&udev->dev, "%s: bInterfaceClass == %d\n",
  2048. __func__, hostif->desc.bInterfaceClass);
  2049. return -ENODEV;
  2050. }
  2051. dev_info(&udev->dev,
  2052. "%s: Device matched (Vendor: 0x%x, Product: 0x%x)\n",
  2053. __func__, le16_to_cpu(udev->descriptor.idVendor),
  2054. le16_to_cpu(udev->descriptor.idProduct));
  2055. /* allocate memory for our device state and intialize it */
  2056. cs = gigaset_initcs(driver, BAS_CHANNELS, 0, 0, cidmode,
  2057. GIGASET_MODULENAME);
  2058. if (!cs)
  2059. return -ENODEV;
  2060. ucs = cs->hw.bas;
  2061. /* save off device structure ptrs for later use */
  2062. usb_get_dev(udev);
  2063. ucs->udev = udev;
  2064. ucs->interface = interface;
  2065. cs->dev = &interface->dev;
  2066. /* allocate URBs:
  2067. * - one for the interrupt pipe
  2068. * - three for the different uses of the default control pipe
  2069. * - three for each isochronous pipe
  2070. */
  2071. if (!(ucs->urb_int_in = usb_alloc_urb(0, GFP_KERNEL)) ||
  2072. !(ucs->urb_cmd_in = usb_alloc_urb(0, GFP_KERNEL)) ||
  2073. !(ucs->urb_cmd_out = usb_alloc_urb(0, GFP_KERNEL)) ||
  2074. !(ucs->urb_ctrl = usb_alloc_urb(0, GFP_KERNEL)))
  2075. goto allocerr;
  2076. for (j = 0; j < BAS_CHANNELS; ++j) {
  2077. ubc = cs->bcs[j].hw.bas;
  2078. for (i = 0; i < BAS_OUTURBS; ++i)
  2079. if (!(ubc->isoouturbs[i].urb =
  2080. usb_alloc_urb(BAS_NUMFRAMES, GFP_KERNEL)))
  2081. goto allocerr;
  2082. for (i = 0; i < BAS_INURBS; ++i)
  2083. if (!(ubc->isoinurbs[i] =
  2084. usb_alloc_urb(BAS_NUMFRAMES, GFP_KERNEL)))
  2085. goto allocerr;
  2086. }
  2087. ucs->rcvbuf = NULL;
  2088. ucs->rcvbuf_size = 0;
  2089. /* Fill the interrupt urb and send it to the core */
  2090. endpoint = &hostif->endpoint[0].desc;
  2091. usb_fill_int_urb(ucs->urb_int_in, udev,
  2092. usb_rcvintpipe(udev,
  2093. (endpoint->bEndpointAddress) & 0x0f),
  2094. ucs->int_in_buf, IP_MSGSIZE, read_int_callback, cs,
  2095. endpoint->bInterval);
  2096. rc = usb_submit_urb(ucs->urb_int_in, GFP_KERNEL);
  2097. if (rc != 0) {
  2098. dev_err(cs->dev, "could not submit interrupt URB: %s\n",
  2099. get_usb_rcmsg(rc));
  2100. goto error;
  2101. }
  2102. /* tell the device that the driver is ready */
  2103. rc = req_submit(cs->bcs, HD_DEVICE_INIT_ACK, 0, 0);
  2104. if (rc != 0)
  2105. goto error;
  2106. /* tell common part that the device is ready */
  2107. if (startmode == SM_LOCKED)
  2108. cs->mstate = MS_LOCKED;
  2109. /* save address of controller structure */
  2110. usb_set_intfdata(interface, cs);
  2111. if (!gigaset_start(cs))
  2112. goto error;
  2113. return 0;
  2114. allocerr:
  2115. dev_err(cs->dev, "could not allocate URBs\n");
  2116. error:
  2117. freeurbs(cs);
  2118. usb_set_intfdata(interface, NULL);
  2119. gigaset_freecs(cs);
  2120. return -ENODEV;
  2121. }
  2122. /* gigaset_disconnect
  2123. * This function is called when the Gigaset base is unplugged.
  2124. */
  2125. static void gigaset_disconnect(struct usb_interface *interface)
  2126. {
  2127. struct cardstate *cs;
  2128. struct bas_cardstate *ucs;
  2129. int j;
  2130. cs = usb_get_intfdata(interface);
  2131. ucs = cs->hw.bas;
  2132. dev_info(cs->dev, "disconnecting Gigaset base\n");
  2133. /* mark base as not ready, all channels disconnected */
  2134. ucs->basstate = 0;
  2135. /* tell LL all channels are down */
  2136. for (j = 0; j < BAS_CHANNELS; ++j)
  2137. gigaset_bchannel_down(cs->bcs + j);
  2138. /* stop driver (common part) */
  2139. gigaset_stop(cs);
  2140. /* stop timers and URBs, free ressources */
  2141. del_timer_sync(&ucs->timer_ctrl);
  2142. del_timer_sync(&ucs->timer_atrdy);
  2143. del_timer_sync(&ucs->timer_cmd_in);
  2144. freeurbs(cs);
  2145. usb_set_intfdata(interface, NULL);
  2146. kfree(ucs->rcvbuf);
  2147. ucs->rcvbuf = NULL;
  2148. ucs->rcvbuf_size = 0;
  2149. usb_put_dev(ucs->udev);
  2150. ucs->interface = NULL;
  2151. ucs->udev = NULL;
  2152. cs->dev = NULL;
  2153. gigaset_freecs(cs);
  2154. }
  2155. /* gigaset_suspend
  2156. * This function is called before the USB connection is suspended.
  2157. */
  2158. static int gigaset_suspend(struct usb_interface *intf, pm_message_t message)
  2159. {
  2160. struct cardstate *cs = usb_get_intfdata(intf);
  2161. struct bas_cardstate *ucs = cs->hw.bas;
  2162. int rc;
  2163. /* set suspend flag; this stops AT command/response traffic */
  2164. if (update_basstate(ucs, BS_SUSPEND, 0) & BS_SUSPEND) {
  2165. gig_dbg(DEBUG_SUSPEND, "already suspended");
  2166. return 0;
  2167. }
  2168. /* wait a bit for blocking conditions to go away */
  2169. rc = wait_event_timeout(ucs->waitqueue,
  2170. !(ucs->basstate &
  2171. (BS_B1OPEN|BS_B2OPEN|BS_ATRDPEND|BS_ATWRPEND)),
  2172. BAS_TIMEOUT*HZ/10);
  2173. gig_dbg(DEBUG_SUSPEND, "wait_event_timeout() -> %d", rc);
  2174. /* check for conditions preventing suspend */
  2175. if (ucs->basstate & (BS_B1OPEN|BS_B2OPEN|BS_ATRDPEND|BS_ATWRPEND)) {
  2176. dev_warn(cs->dev, "cannot suspend:\n");
  2177. if (ucs->basstate & BS_B1OPEN)
  2178. dev_warn(cs->dev, " B channel 1 open\n");
  2179. if (ucs->basstate & BS_B2OPEN)
  2180. dev_warn(cs->dev, " B channel 2 open\n");
  2181. if (ucs->basstate & BS_ATRDPEND)
  2182. dev_warn(cs->dev, " receiving AT reply\n");
  2183. if (ucs->basstate & BS_ATWRPEND)
  2184. dev_warn(cs->dev, " sending AT command\n");
  2185. update_basstate(ucs, 0, BS_SUSPEND);
  2186. return -EBUSY;
  2187. }
  2188. /* close AT channel if open */
  2189. if (ucs->basstate & BS_ATOPEN) {
  2190. gig_dbg(DEBUG_SUSPEND, "closing AT channel");
  2191. rc = req_submit(cs->bcs, HD_CLOSE_ATCHANNEL, 0, 0);
  2192. if (rc) {
  2193. update_basstate(ucs, 0, BS_SUSPEND);
  2194. return rc;
  2195. }
  2196. wait_event_timeout(ucs->waitqueue, !ucs->pending,
  2197. BAS_TIMEOUT*HZ/10);
  2198. /* in case of timeout, proceed anyway */
  2199. }
  2200. /* kill all URBs and timers that might still be pending */
  2201. usb_kill_urb(ucs->urb_ctrl);
  2202. usb_kill_urb(ucs->urb_int_in);
  2203. del_timer_sync(&ucs->timer_ctrl);
  2204. gig_dbg(DEBUG_SUSPEND, "suspend complete");
  2205. return 0;
  2206. }
  2207. /* gigaset_resume
  2208. * This function is called after the USB connection has been resumed.
  2209. */
  2210. static int gigaset_resume(struct usb_interface *intf)
  2211. {
  2212. struct cardstate *cs = usb_get_intfdata(intf);
  2213. struct bas_cardstate *ucs = cs->hw.bas;
  2214. int rc;
  2215. /* resubmit interrupt URB for spontaneous messages from base */
  2216. rc = usb_submit_urb(ucs->urb_int_in, GFP_KERNEL);
  2217. if (rc) {
  2218. dev_err(cs->dev, "could not resubmit interrupt URB: %s\n",
  2219. get_usb_rcmsg(rc));
  2220. return rc;
  2221. }
  2222. /* clear suspend flag to reallow activity */
  2223. update_basstate(ucs, 0, BS_SUSPEND);
  2224. gig_dbg(DEBUG_SUSPEND, "resume complete");
  2225. return 0;
  2226. }
  2227. /* gigaset_pre_reset
  2228. * This function is called before the USB connection is reset.
  2229. */
  2230. static int gigaset_pre_reset(struct usb_interface *intf)
  2231. {
  2232. /* handle just like suspend */
  2233. return gigaset_suspend(intf, PMSG_ON);
  2234. }
  2235. /* gigaset_post_reset
  2236. * This function is called after the USB connection has been reset.
  2237. */
  2238. static int gigaset_post_reset(struct usb_interface *intf)
  2239. {
  2240. /* FIXME: send HD_DEVICE_INIT_ACK? */
  2241. /* resume operations */
  2242. return gigaset_resume(intf);
  2243. }
  2244. static const struct gigaset_ops gigops = {
  2245. gigaset_write_cmd,
  2246. gigaset_write_room,
  2247. gigaset_chars_in_buffer,
  2248. gigaset_brkchars,
  2249. gigaset_init_bchannel,
  2250. gigaset_close_bchannel,
  2251. gigaset_initbcshw,
  2252. gigaset_freebcshw,
  2253. gigaset_reinitbcshw,
  2254. gigaset_initcshw,
  2255. gigaset_freecshw,
  2256. gigaset_set_modem_ctrl,
  2257. gigaset_baud_rate,
  2258. gigaset_set_line_ctrl,
  2259. gigaset_isoc_send_skb,
  2260. gigaset_isoc_input,
  2261. };
  2262. /* bas_gigaset_init
  2263. * This function is called after the kernel module is loaded.
  2264. */
  2265. static int __init bas_gigaset_init(void)
  2266. {
  2267. int result;
  2268. /* allocate memory for our driver state and intialize it */
  2269. driver = gigaset_initdriver(GIGASET_MINOR, GIGASET_MINORS,
  2270. GIGASET_MODULENAME, GIGASET_DEVNAME,
  2271. &gigops, THIS_MODULE);
  2272. if (driver == NULL)
  2273. goto error;
  2274. /* register this driver with the USB subsystem */
  2275. result = usb_register(&gigaset_usb_driver);
  2276. if (result < 0) {
  2277. pr_err("error %d registering USB driver\n", -result);
  2278. goto error;
  2279. }
  2280. pr_info(DRIVER_DESC "\n");
  2281. return 0;
  2282. error:
  2283. if (driver)
  2284. gigaset_freedriver(driver);
  2285. driver = NULL;
  2286. return -1;
  2287. }
  2288. /* bas_gigaset_exit
  2289. * This function is called before the kernel module is unloaded.
  2290. */
  2291. static void __exit bas_gigaset_exit(void)
  2292. {
  2293. struct bas_cardstate *ucs;
  2294. int i;
  2295. gigaset_blockdriver(driver); /* => probe will fail
  2296. * => no gigaset_start any more
  2297. */
  2298. /* stop all connected devices */
  2299. for (i = 0; i < driver->minors; i++) {
  2300. if (gigaset_shutdown(driver->cs + i) < 0)
  2301. continue; /* no device */
  2302. /* from now on, no isdn callback should be possible */
  2303. /* close all still open channels */
  2304. ucs = driver->cs[i].hw.bas;
  2305. if (ucs->basstate & BS_B1OPEN) {
  2306. gig_dbg(DEBUG_INIT, "closing B1 channel");
  2307. usb_control_msg(ucs->udev,
  2308. usb_sndctrlpipe(ucs->udev, 0),
  2309. HD_CLOSE_B1CHANNEL, OUT_VENDOR_REQ,
  2310. 0, 0, NULL, 0, BAS_TIMEOUT);
  2311. }
  2312. if (ucs->basstate & BS_B2OPEN) {
  2313. gig_dbg(DEBUG_INIT, "closing B2 channel");
  2314. usb_control_msg(ucs->udev,
  2315. usb_sndctrlpipe(ucs->udev, 0),
  2316. HD_CLOSE_B2CHANNEL, OUT_VENDOR_REQ,
  2317. 0, 0, NULL, 0, BAS_TIMEOUT);
  2318. }
  2319. if (ucs->basstate & BS_ATOPEN) {
  2320. gig_dbg(DEBUG_INIT, "closing AT channel");
  2321. usb_control_msg(ucs->udev,
  2322. usb_sndctrlpipe(ucs->udev, 0),
  2323. HD_CLOSE_ATCHANNEL, OUT_VENDOR_REQ,
  2324. 0, 0, NULL, 0, BAS_TIMEOUT);
  2325. }
  2326. ucs->basstate = 0;
  2327. }
  2328. /* deregister this driver with the USB subsystem */
  2329. usb_deregister(&gigaset_usb_driver);
  2330. /* this will call the disconnect-callback */
  2331. /* from now on, no disconnect/probe callback should be running */
  2332. gigaset_freedriver(driver);
  2333. driver = NULL;
  2334. }
  2335. module_init(bas_gigaset_init);
  2336. module_exit(bas_gigaset_exit);
  2337. MODULE_AUTHOR(DRIVER_AUTHOR);
  2338. MODULE_DESCRIPTION(DRIVER_DESC);
  2339. MODULE_LICENSE("GPL");