devices.c 18 KB

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  1. /*
  2. * devices.c
  3. * (C) Copyright 1999 Randy Dunlap.
  4. * (C) Copyright 1999,2000 Thomas Sailer <sailer@ife.ee.ethz.ch>. (proc file per device)
  5. * (C) Copyright 1999 Deti Fliegl (new USB architecture)
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  20. *
  21. *************************************************************
  22. *
  23. * <mountpoint>/devices contains USB topology, device, config, class,
  24. * interface, & endpoint data.
  25. *
  26. * I considered using /proc/bus/usb/devices/device# for each device
  27. * as it is attached or detached, but I didn't like this for some
  28. * reason -- maybe it's just too deep of a directory structure.
  29. * I also don't like looking in multiple places to gather and view
  30. * the data. Having only one file for ./devices also prevents race
  31. * conditions that could arise if a program was reading device info
  32. * for devices that are being removed (unplugged). (That is, the
  33. * program may find a directory for devnum_12 then try to open it,
  34. * but it was just unplugged, so the directory is now deleted.
  35. * But programs would just have to be prepared for situations like
  36. * this in any plug-and-play environment.)
  37. *
  38. * 1999-12-16: Thomas Sailer <sailer@ife.ee.ethz.ch>
  39. * Converted the whole proc stuff to real
  40. * read methods. Now not the whole device list needs to fit
  41. * into one page, only the device list for one bus.
  42. * Added a poll method to /proc/bus/usb/devices, to wake
  43. * up an eventual usbd
  44. * 2000-01-04: Thomas Sailer <sailer@ife.ee.ethz.ch>
  45. * Turned into its own filesystem
  46. * 2000-07-05: Ashley Montanaro <ashley@compsoc.man.ac.uk>
  47. * Converted file reading routine to dump to buffer once
  48. * per device, not per bus
  49. *
  50. * $Id: devices.c,v 1.5 2000/01/11 13:58:21 tom Exp $
  51. */
  52. #include <linux/fs.h>
  53. #include <linux/mm.h>
  54. #include <linux/slab.h>
  55. #include <linux/poll.h>
  56. #include <linux/usb.h>
  57. #include <linux/smp_lock.h>
  58. #include <linux/usbdevice_fs.h>
  59. #include <linux/mutex.h>
  60. #include <asm/uaccess.h>
  61. #include "usb.h"
  62. #include "hcd.h"
  63. #define MAX_TOPO_LEVEL 6
  64. /* Define ALLOW_SERIAL_NUMBER if you want to see the serial number of devices */
  65. #define ALLOW_SERIAL_NUMBER
  66. static const char *format_topo =
  67. /* T: Bus=dd Lev=dd Prnt=dd Port=dd Cnt=dd Dev#=ddd Spd=ddd MxCh=dd */
  68. "\nT: Bus=%2.2d Lev=%2.2d Prnt=%2.2d Port=%2.2d Cnt=%2.2d Dev#=%3d Spd=%3s MxCh=%2d\n";
  69. static const char *format_string_manufacturer =
  70. /* S: Manufacturer=xxxx */
  71. "S: Manufacturer=%.100s\n";
  72. static const char *format_string_product =
  73. /* S: Product=xxxx */
  74. "S: Product=%.100s\n";
  75. #ifdef ALLOW_SERIAL_NUMBER
  76. static const char *format_string_serialnumber =
  77. /* S: SerialNumber=xxxx */
  78. "S: SerialNumber=%.100s\n";
  79. #endif
  80. static const char *format_bandwidth =
  81. /* B: Alloc=ddd/ddd us (xx%), #Int=ddd, #Iso=ddd */
  82. "B: Alloc=%3d/%3d us (%2d%%), #Int=%3d, #Iso=%3d\n";
  83. static const char *format_device1 =
  84. /* D: Ver=xx.xx Cls=xx(sssss) Sub=xx Prot=xx MxPS=dd #Cfgs=dd */
  85. "D: Ver=%2x.%02x Cls=%02x(%-5s) Sub=%02x Prot=%02x MxPS=%2d #Cfgs=%3d\n";
  86. static const char *format_device2 =
  87. /* P: Vendor=xxxx ProdID=xxxx Rev=xx.xx */
  88. "P: Vendor=%04x ProdID=%04x Rev=%2x.%02x\n";
  89. static const char *format_config =
  90. /* C: #Ifs=dd Cfg#=dd Atr=xx MPwr=dddmA */
  91. "C:%c #Ifs=%2d Cfg#=%2d Atr=%02x MxPwr=%3dmA\n";
  92. static const char *format_iface =
  93. /* I: If#=dd Alt=dd #EPs=dd Cls=xx(sssss) Sub=xx Prot=xx Driver=xxxx*/
  94. "I:%c If#=%2d Alt=%2d #EPs=%2d Cls=%02x(%-5s) Sub=%02x Prot=%02x Driver=%s\n";
  95. static const char *format_endpt =
  96. /* E: Ad=xx(s) Atr=xx(ssss) MxPS=dddd Ivl=D?s */
  97. "E: Ad=%02x(%c) Atr=%02x(%-4s) MxPS=%4d Ivl=%d%cs\n";
  98. /*
  99. * Need access to the driver and USB bus lists.
  100. * extern struct list_head usb_bus_list;
  101. * However, these will come from functions that return ptrs to each of them.
  102. */
  103. static DECLARE_WAIT_QUEUE_HEAD(deviceconndiscwq);
  104. static unsigned int conndiscevcnt = 0;
  105. /* this struct stores the poll state for <mountpoint>/devices pollers */
  106. struct usb_device_status {
  107. unsigned int lastev;
  108. };
  109. struct class_info {
  110. int class;
  111. char *class_name;
  112. };
  113. static const struct class_info clas_info[] =
  114. { /* max. 5 chars. per name string */
  115. {USB_CLASS_PER_INTERFACE, ">ifc"},
  116. {USB_CLASS_AUDIO, "audio"},
  117. {USB_CLASS_COMM, "comm."},
  118. {USB_CLASS_HID, "HID"},
  119. {USB_CLASS_HUB, "hub"},
  120. {USB_CLASS_PHYSICAL, "PID"},
  121. {USB_CLASS_PRINTER, "print"},
  122. {USB_CLASS_MASS_STORAGE, "stor."},
  123. {USB_CLASS_CDC_DATA, "data"},
  124. {USB_CLASS_APP_SPEC, "app."},
  125. {USB_CLASS_VENDOR_SPEC, "vend."},
  126. {USB_CLASS_STILL_IMAGE, "still"},
  127. {USB_CLASS_CSCID, "scard"},
  128. {USB_CLASS_CONTENT_SEC, "c-sec"},
  129. {-1, "unk."} /* leave as last */
  130. };
  131. /*****************************************************************/
  132. void usbfs_conn_disc_event(void)
  133. {
  134. conndiscevcnt++;
  135. wake_up(&deviceconndiscwq);
  136. }
  137. static const char *class_decode(const int class)
  138. {
  139. int ix;
  140. for (ix = 0; clas_info[ix].class != -1; ix++)
  141. if (clas_info[ix].class == class)
  142. break;
  143. return clas_info[ix].class_name;
  144. }
  145. static char *usb_dump_endpoint_descriptor(
  146. int speed,
  147. char *start,
  148. char *end,
  149. const struct usb_endpoint_descriptor *desc
  150. )
  151. {
  152. char dir, unit, *type;
  153. unsigned interval, bandwidth = 1;
  154. if (start > end)
  155. return start;
  156. dir = usb_endpoint_dir_in(desc) ? 'I' : 'O';
  157. if (speed == USB_SPEED_HIGH) {
  158. switch (le16_to_cpu(desc->wMaxPacketSize) & (0x03 << 11)) {
  159. case 1 << 11: bandwidth = 2; break;
  160. case 2 << 11: bandwidth = 3; break;
  161. }
  162. }
  163. /* this isn't checking for illegal values */
  164. switch (desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) {
  165. case USB_ENDPOINT_XFER_CONTROL:
  166. type = "Ctrl";
  167. if (speed == USB_SPEED_HIGH) /* uframes per NAK */
  168. interval = desc->bInterval;
  169. else
  170. interval = 0;
  171. dir = 'B'; /* ctrl is bidirectional */
  172. break;
  173. case USB_ENDPOINT_XFER_ISOC:
  174. type = "Isoc";
  175. interval = 1 << (desc->bInterval - 1);
  176. break;
  177. case USB_ENDPOINT_XFER_BULK:
  178. type = "Bulk";
  179. if (speed == USB_SPEED_HIGH && dir == 'O') /* uframes per NAK */
  180. interval = desc->bInterval;
  181. else
  182. interval = 0;
  183. break;
  184. case USB_ENDPOINT_XFER_INT:
  185. type = "Int.";
  186. if (speed == USB_SPEED_HIGH)
  187. interval = 1 << (desc->bInterval - 1);
  188. else
  189. interval = desc->bInterval;
  190. break;
  191. default: /* "can't happen" */
  192. return start;
  193. }
  194. interval *= (speed == USB_SPEED_HIGH) ? 125 : 1000;
  195. if (interval % 1000)
  196. unit = 'u';
  197. else {
  198. unit = 'm';
  199. interval /= 1000;
  200. }
  201. start += sprintf(start, format_endpt, desc->bEndpointAddress, dir,
  202. desc->bmAttributes, type,
  203. (le16_to_cpu(desc->wMaxPacketSize) & 0x07ff) * bandwidth,
  204. interval, unit);
  205. return start;
  206. }
  207. static char *usb_dump_interface_descriptor(char *start, char *end,
  208. const struct usb_interface_cache *intfc,
  209. const struct usb_interface *iface,
  210. int setno)
  211. {
  212. const struct usb_interface_descriptor *desc = &intfc->altsetting[setno].desc;
  213. const char *driver_name = "";
  214. int active = 0;
  215. if (start > end)
  216. return start;
  217. down_read(&usb_bus_type.subsys.rwsem);
  218. if (iface) {
  219. driver_name = (iface->dev.driver
  220. ? iface->dev.driver->name
  221. : "(none)");
  222. active = (desc == &iface->cur_altsetting->desc);
  223. }
  224. start += sprintf(start, format_iface,
  225. active ? '*' : ' ', /* mark active altsetting */
  226. desc->bInterfaceNumber,
  227. desc->bAlternateSetting,
  228. desc->bNumEndpoints,
  229. desc->bInterfaceClass,
  230. class_decode(desc->bInterfaceClass),
  231. desc->bInterfaceSubClass,
  232. desc->bInterfaceProtocol,
  233. driver_name);
  234. up_read(&usb_bus_type.subsys.rwsem);
  235. return start;
  236. }
  237. static char *usb_dump_interface(
  238. int speed,
  239. char *start,
  240. char *end,
  241. const struct usb_interface_cache *intfc,
  242. const struct usb_interface *iface,
  243. int setno
  244. ) {
  245. const struct usb_host_interface *desc = &intfc->altsetting[setno];
  246. int i;
  247. start = usb_dump_interface_descriptor(start, end, intfc, iface, setno);
  248. for (i = 0; i < desc->desc.bNumEndpoints; i++) {
  249. if (start > end)
  250. return start;
  251. start = usb_dump_endpoint_descriptor(speed,
  252. start, end, &desc->endpoint[i].desc);
  253. }
  254. return start;
  255. }
  256. /* TBD:
  257. * 0. TBDs
  258. * 1. marking active interface altsettings (code lists all, but should mark
  259. * which ones are active, if any)
  260. */
  261. static char *usb_dump_config_descriptor(char *start, char *end, const struct usb_config_descriptor *desc, int active)
  262. {
  263. if (start > end)
  264. return start;
  265. start += sprintf(start, format_config,
  266. active ? '*' : ' ', /* mark active/actual/current cfg. */
  267. desc->bNumInterfaces,
  268. desc->bConfigurationValue,
  269. desc->bmAttributes,
  270. desc->bMaxPower * 2);
  271. return start;
  272. }
  273. static char *usb_dump_config (
  274. int speed,
  275. char *start,
  276. char *end,
  277. const struct usb_host_config *config,
  278. int active
  279. )
  280. {
  281. int i, j;
  282. struct usb_interface_cache *intfc;
  283. struct usb_interface *interface;
  284. if (start > end)
  285. return start;
  286. if (!config) /* getting these some in 2.3.7; none in 2.3.6 */
  287. return start + sprintf(start, "(null Cfg. desc.)\n");
  288. start = usb_dump_config_descriptor(start, end, &config->desc, active);
  289. for (i = 0; i < config->desc.bNumInterfaces; i++) {
  290. intfc = config->intf_cache[i];
  291. interface = config->interface[i];
  292. for (j = 0; j < intfc->num_altsetting; j++) {
  293. if (start > end)
  294. return start;
  295. start = usb_dump_interface(speed,
  296. start, end, intfc, interface, j);
  297. }
  298. }
  299. return start;
  300. }
  301. /*
  302. * Dump the different USB descriptors.
  303. */
  304. static char *usb_dump_device_descriptor(char *start, char *end, const struct usb_device_descriptor *desc)
  305. {
  306. u16 bcdUSB = le16_to_cpu(desc->bcdUSB);
  307. u16 bcdDevice = le16_to_cpu(desc->bcdDevice);
  308. if (start > end)
  309. return start;
  310. start += sprintf(start, format_device1,
  311. bcdUSB >> 8, bcdUSB & 0xff,
  312. desc->bDeviceClass,
  313. class_decode (desc->bDeviceClass),
  314. desc->bDeviceSubClass,
  315. desc->bDeviceProtocol,
  316. desc->bMaxPacketSize0,
  317. desc->bNumConfigurations);
  318. if (start > end)
  319. return start;
  320. start += sprintf(start, format_device2,
  321. le16_to_cpu(desc->idVendor),
  322. le16_to_cpu(desc->idProduct),
  323. bcdDevice >> 8, bcdDevice & 0xff);
  324. return start;
  325. }
  326. /*
  327. * Dump the different strings that this device holds.
  328. */
  329. static char *usb_dump_device_strings(char *start, char *end, struct usb_device *dev)
  330. {
  331. if (start > end)
  332. return start;
  333. if (dev->manufacturer)
  334. start += sprintf(start, format_string_manufacturer, dev->manufacturer);
  335. if (start > end)
  336. goto out;
  337. if (dev->product)
  338. start += sprintf(start, format_string_product, dev->product);
  339. if (start > end)
  340. goto out;
  341. #ifdef ALLOW_SERIAL_NUMBER
  342. if (dev->serial)
  343. start += sprintf(start, format_string_serialnumber, dev->serial);
  344. #endif
  345. out:
  346. return start;
  347. }
  348. static char *usb_dump_desc(char *start, char *end, struct usb_device *dev)
  349. {
  350. int i;
  351. if (start > end)
  352. return start;
  353. start = usb_dump_device_descriptor(start, end, &dev->descriptor);
  354. if (start > end)
  355. return start;
  356. start = usb_dump_device_strings(start, end, dev);
  357. for (i = 0; i < dev->descriptor.bNumConfigurations; i++) {
  358. if (start > end)
  359. return start;
  360. start = usb_dump_config(dev->speed,
  361. start, end, dev->config + i,
  362. /* active ? */
  363. (dev->config + i) == dev->actconfig);
  364. }
  365. return start;
  366. }
  367. #ifdef PROC_EXTRA /* TBD: may want to add this code later */
  368. static char *usb_dump_hub_descriptor(char *start, char *end, const struct usb_hub_descriptor * desc)
  369. {
  370. int leng = USB_DT_HUB_NONVAR_SIZE;
  371. unsigned char *ptr = (unsigned char *)desc;
  372. if (start > end)
  373. return start;
  374. start += sprintf(start, "Interface:");
  375. while (leng && start <= end) {
  376. start += sprintf(start, " %02x", *ptr);
  377. ptr++; leng--;
  378. }
  379. *start++ = '\n';
  380. return start;
  381. }
  382. static char *usb_dump_string(char *start, char *end, const struct usb_device *dev, char *id, int index)
  383. {
  384. if (start > end)
  385. return start;
  386. start += sprintf(start, "Interface:");
  387. if (index <= dev->maxstring && dev->stringindex && dev->stringindex[index])
  388. start += sprintf(start, "%s: %.100s ", id, dev->stringindex[index]);
  389. return start;
  390. }
  391. #endif /* PROC_EXTRA */
  392. /*****************************************************************/
  393. /* This is a recursive function. Parameters:
  394. * buffer - the user-space buffer to write data into
  395. * nbytes - the maximum number of bytes to write
  396. * skip_bytes - the number of bytes to skip before writing anything
  397. * file_offset - the offset into the devices file on completion
  398. * The caller must own the device lock.
  399. */
  400. static ssize_t usb_device_dump(char __user **buffer, size_t *nbytes, loff_t *skip_bytes, loff_t *file_offset,
  401. struct usb_device *usbdev, struct usb_bus *bus, int level, int index, int count)
  402. {
  403. int chix;
  404. int ret, cnt = 0;
  405. int parent_devnum = 0;
  406. char *pages_start, *data_end, *speed;
  407. unsigned int length;
  408. ssize_t total_written = 0;
  409. /* don't bother with anything else if we're not writing any data */
  410. if (*nbytes <= 0)
  411. return 0;
  412. if (level > MAX_TOPO_LEVEL)
  413. return 0;
  414. /* allocate 2^1 pages = 8K (on i386); should be more than enough for one device */
  415. if (!(pages_start = (char*) __get_free_pages(GFP_KERNEL,1)))
  416. return -ENOMEM;
  417. if (usbdev->parent && usbdev->parent->devnum != -1)
  418. parent_devnum = usbdev->parent->devnum;
  419. /*
  420. * So the root hub's parent is 0 and any device that is
  421. * plugged into the root hub has a parent of 0.
  422. */
  423. switch (usbdev->speed) {
  424. case USB_SPEED_LOW:
  425. speed = "1.5"; break;
  426. case USB_SPEED_UNKNOWN: /* usb 1.1 root hub code */
  427. case USB_SPEED_FULL:
  428. speed = "12 "; break;
  429. case USB_SPEED_HIGH:
  430. speed = "480"; break;
  431. default:
  432. speed = "?? ";
  433. }
  434. data_end = pages_start + sprintf(pages_start, format_topo,
  435. bus->busnum, level, parent_devnum,
  436. index, count, usbdev->devnum,
  437. speed, usbdev->maxchild);
  438. /*
  439. * level = topology-tier level;
  440. * parent_devnum = parent device number;
  441. * index = parent's connector number;
  442. * count = device count at this level
  443. */
  444. /* If this is the root hub, display the bandwidth information */
  445. if (level == 0) {
  446. int max;
  447. /* high speed reserves 80%, full/low reserves 90% */
  448. if (usbdev->speed == USB_SPEED_HIGH)
  449. max = 800;
  450. else
  451. max = FRAME_TIME_MAX_USECS_ALLOC;
  452. /* report "average" periodic allocation over a microsecond.
  453. * the schedules are actually bursty, HCDs need to deal with
  454. * that and just compute/report this average.
  455. */
  456. data_end += sprintf(data_end, format_bandwidth,
  457. bus->bandwidth_allocated, max,
  458. (100 * bus->bandwidth_allocated + max / 2)
  459. / max,
  460. bus->bandwidth_int_reqs,
  461. bus->bandwidth_isoc_reqs);
  462. }
  463. data_end = usb_dump_desc(data_end, pages_start + (2 * PAGE_SIZE) - 256, usbdev);
  464. if (data_end > (pages_start + (2 * PAGE_SIZE) - 256))
  465. data_end += sprintf(data_end, "(truncated)\n");
  466. length = data_end - pages_start;
  467. /* if we can start copying some data to the user */
  468. if (length > *skip_bytes) {
  469. length -= *skip_bytes;
  470. if (length > *nbytes)
  471. length = *nbytes;
  472. if (copy_to_user(*buffer, pages_start + *skip_bytes, length)) {
  473. free_pages((unsigned long)pages_start, 1);
  474. return -EFAULT;
  475. }
  476. *nbytes -= length;
  477. *file_offset += length;
  478. total_written += length;
  479. *buffer += length;
  480. *skip_bytes = 0;
  481. } else
  482. *skip_bytes -= length;
  483. free_pages((unsigned long)pages_start, 1);
  484. /* Now look at all of this device's children. */
  485. for (chix = 0; chix < usbdev->maxchild; chix++) {
  486. struct usb_device *childdev = usbdev->children[chix];
  487. if (childdev) {
  488. usb_lock_device(childdev);
  489. ret = usb_device_dump(buffer, nbytes, skip_bytes, file_offset, childdev,
  490. bus, level + 1, chix, ++cnt);
  491. usb_unlock_device(childdev);
  492. if (ret == -EFAULT)
  493. return total_written;
  494. total_written += ret;
  495. }
  496. }
  497. return total_written;
  498. }
  499. static ssize_t usb_device_read(struct file *file, char __user *buf, size_t nbytes, loff_t *ppos)
  500. {
  501. struct usb_bus *bus;
  502. ssize_t ret, total_written = 0;
  503. loff_t skip_bytes = *ppos;
  504. if (*ppos < 0)
  505. return -EINVAL;
  506. if (nbytes <= 0)
  507. return 0;
  508. if (!access_ok(VERIFY_WRITE, buf, nbytes))
  509. return -EFAULT;
  510. mutex_lock(&usb_bus_list_lock);
  511. /* print devices for all busses */
  512. list_for_each_entry(bus, &usb_bus_list, bus_list) {
  513. /* recurse through all children of the root hub */
  514. if (!bus->root_hub)
  515. continue;
  516. usb_lock_device(bus->root_hub);
  517. ret = usb_device_dump(&buf, &nbytes, &skip_bytes, ppos, bus->root_hub, bus, 0, 0, 0);
  518. usb_unlock_device(bus->root_hub);
  519. if (ret < 0) {
  520. mutex_unlock(&usb_bus_list_lock);
  521. return ret;
  522. }
  523. total_written += ret;
  524. }
  525. mutex_unlock(&usb_bus_list_lock);
  526. return total_written;
  527. }
  528. /* Kernel lock for "lastev" protection */
  529. static unsigned int usb_device_poll(struct file *file, struct poll_table_struct *wait)
  530. {
  531. struct usb_device_status *st = file->private_data;
  532. unsigned int mask = 0;
  533. lock_kernel();
  534. if (!st) {
  535. st = kmalloc(sizeof(struct usb_device_status), GFP_KERNEL);
  536. if (!st) {
  537. unlock_kernel();
  538. return POLLIN;
  539. }
  540. /* we may have dropped BKL - need to check for having lost the race */
  541. if (file->private_data) {
  542. kfree(st);
  543. st = file->private_data;
  544. goto lost_race;
  545. }
  546. /*
  547. * need to prevent the module from being unloaded, since
  548. * proc_unregister does not call the release method and
  549. * we would have a memory leak
  550. */
  551. st->lastev = conndiscevcnt;
  552. file->private_data = st;
  553. mask = POLLIN;
  554. }
  555. lost_race:
  556. if (file->f_mode & FMODE_READ)
  557. poll_wait(file, &deviceconndiscwq, wait);
  558. if (st->lastev != conndiscevcnt)
  559. mask |= POLLIN;
  560. st->lastev = conndiscevcnt;
  561. unlock_kernel();
  562. return mask;
  563. }
  564. static int usb_device_open(struct inode *inode, struct file *file)
  565. {
  566. file->private_data = NULL;
  567. return 0;
  568. }
  569. static int usb_device_release(struct inode *inode, struct file *file)
  570. {
  571. kfree(file->private_data);
  572. file->private_data = NULL;
  573. return 0;
  574. }
  575. static loff_t usb_device_lseek(struct file * file, loff_t offset, int orig)
  576. {
  577. loff_t ret;
  578. lock_kernel();
  579. switch (orig) {
  580. case 0:
  581. file->f_pos = offset;
  582. ret = file->f_pos;
  583. break;
  584. case 1:
  585. file->f_pos += offset;
  586. ret = file->f_pos;
  587. break;
  588. case 2:
  589. default:
  590. ret = -EINVAL;
  591. }
  592. unlock_kernel();
  593. return ret;
  594. }
  595. const struct file_operations usbfs_devices_fops = {
  596. .llseek = usb_device_lseek,
  597. .read = usb_device_read,
  598. .poll = usb_device_poll,
  599. .open = usb_device_open,
  600. .release = usb_device_release,
  601. };