hub.c 81 KB

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  1. /*
  2. * USB hub driver.
  3. *
  4. * (C) Copyright 1999 Linus Torvalds
  5. * (C) Copyright 1999 Johannes Erdfelt
  6. * (C) Copyright 1999 Gregory P. Smith
  7. * (C) Copyright 2001 Brad Hards (bhards@bigpond.net.au)
  8. *
  9. */
  10. #include <linux/kernel.h>
  11. #include <linux/errno.h>
  12. #include <linux/module.h>
  13. #include <linux/moduleparam.h>
  14. #include <linux/completion.h>
  15. #include <linux/sched.h>
  16. #include <linux/list.h>
  17. #include <linux/slab.h>
  18. #include <linux/smp_lock.h>
  19. #include <linux/ioctl.h>
  20. #include <linux/usb.h>
  21. #include <linux/usbdevice_fs.h>
  22. #include <linux/kthread.h>
  23. #include <linux/mutex.h>
  24. #include <asm/semaphore.h>
  25. #include <asm/uaccess.h>
  26. #include <asm/byteorder.h>
  27. #include "usb.h"
  28. #include "hcd.h"
  29. #include "hub.h"
  30. /* Protect struct usb_device->state and ->children members
  31. * Note: Both are also protected by ->dev.sem, except that ->state can
  32. * change to USB_STATE_NOTATTACHED even when the semaphore isn't held. */
  33. static DEFINE_SPINLOCK(device_state_lock);
  34. /* khubd's worklist and its lock */
  35. static DEFINE_SPINLOCK(hub_event_lock);
  36. static LIST_HEAD(hub_event_list); /* List of hubs needing servicing */
  37. /* Wakes up khubd */
  38. static DECLARE_WAIT_QUEUE_HEAD(khubd_wait);
  39. static struct task_struct *khubd_task;
  40. /* cycle leds on hubs that aren't blinking for attention */
  41. static int blinkenlights = 0;
  42. module_param (blinkenlights, bool, S_IRUGO);
  43. MODULE_PARM_DESC (blinkenlights, "true to cycle leds on hubs");
  44. /*
  45. * As of 2.6.10 we introduce a new USB device initialization scheme which
  46. * closely resembles the way Windows works. Hopefully it will be compatible
  47. * with a wider range of devices than the old scheme. However some previously
  48. * working devices may start giving rise to "device not accepting address"
  49. * errors; if that happens the user can try the old scheme by adjusting the
  50. * following module parameters.
  51. *
  52. * For maximum flexibility there are two boolean parameters to control the
  53. * hub driver's behavior. On the first initialization attempt, if the
  54. * "old_scheme_first" parameter is set then the old scheme will be used,
  55. * otherwise the new scheme is used. If that fails and "use_both_schemes"
  56. * is set, then the driver will make another attempt, using the other scheme.
  57. */
  58. static int old_scheme_first = 0;
  59. module_param(old_scheme_first, bool, S_IRUGO | S_IWUSR);
  60. MODULE_PARM_DESC(old_scheme_first,
  61. "start with the old device initialization scheme");
  62. static int use_both_schemes = 1;
  63. module_param(use_both_schemes, bool, S_IRUGO | S_IWUSR);
  64. MODULE_PARM_DESC(use_both_schemes,
  65. "try the other device initialization scheme if the "
  66. "first one fails");
  67. #ifdef DEBUG
  68. static inline char *portspeed (int portstatus)
  69. {
  70. if (portstatus & (1 << USB_PORT_FEAT_HIGHSPEED))
  71. return "480 Mb/s";
  72. else if (portstatus & (1 << USB_PORT_FEAT_LOWSPEED))
  73. return "1.5 Mb/s";
  74. else
  75. return "12 Mb/s";
  76. }
  77. #endif
  78. /* Note that hdev or one of its children must be locked! */
  79. static inline struct usb_hub *hdev_to_hub(struct usb_device *hdev)
  80. {
  81. return usb_get_intfdata(hdev->actconfig->interface[0]);
  82. }
  83. /* USB 2.0 spec Section 11.24.4.5 */
  84. static int get_hub_descriptor(struct usb_device *hdev, void *data, int size)
  85. {
  86. int i, ret;
  87. for (i = 0; i < 3; i++) {
  88. ret = usb_control_msg(hdev, usb_rcvctrlpipe(hdev, 0),
  89. USB_REQ_GET_DESCRIPTOR, USB_DIR_IN | USB_RT_HUB,
  90. USB_DT_HUB << 8, 0, data, size,
  91. USB_CTRL_GET_TIMEOUT);
  92. if (ret >= (USB_DT_HUB_NONVAR_SIZE + 2))
  93. return ret;
  94. }
  95. return -EINVAL;
  96. }
  97. /*
  98. * USB 2.0 spec Section 11.24.2.1
  99. */
  100. static int clear_hub_feature(struct usb_device *hdev, int feature)
  101. {
  102. return usb_control_msg(hdev, usb_sndctrlpipe(hdev, 0),
  103. USB_REQ_CLEAR_FEATURE, USB_RT_HUB, feature, 0, NULL, 0, 1000);
  104. }
  105. /*
  106. * USB 2.0 spec Section 11.24.2.2
  107. */
  108. static int clear_port_feature(struct usb_device *hdev, int port1, int feature)
  109. {
  110. return usb_control_msg(hdev, usb_sndctrlpipe(hdev, 0),
  111. USB_REQ_CLEAR_FEATURE, USB_RT_PORT, feature, port1,
  112. NULL, 0, 1000);
  113. }
  114. /*
  115. * USB 2.0 spec Section 11.24.2.13
  116. */
  117. static int set_port_feature(struct usb_device *hdev, int port1, int feature)
  118. {
  119. return usb_control_msg(hdev, usb_sndctrlpipe(hdev, 0),
  120. USB_REQ_SET_FEATURE, USB_RT_PORT, feature, port1,
  121. NULL, 0, 1000);
  122. }
  123. /*
  124. * USB 2.0 spec Section 11.24.2.7.1.10 and table 11-7
  125. * for info about using port indicators
  126. */
  127. static void set_port_led(
  128. struct usb_hub *hub,
  129. int port1,
  130. int selector
  131. )
  132. {
  133. int status = set_port_feature(hub->hdev, (selector << 8) | port1,
  134. USB_PORT_FEAT_INDICATOR);
  135. if (status < 0)
  136. dev_dbg (hub->intfdev,
  137. "port %d indicator %s status %d\n",
  138. port1,
  139. ({ char *s; switch (selector) {
  140. case HUB_LED_AMBER: s = "amber"; break;
  141. case HUB_LED_GREEN: s = "green"; break;
  142. case HUB_LED_OFF: s = "off"; break;
  143. case HUB_LED_AUTO: s = "auto"; break;
  144. default: s = "??"; break;
  145. }; s; }),
  146. status);
  147. }
  148. #define LED_CYCLE_PERIOD ((2*HZ)/3)
  149. static void led_work (void *__hub)
  150. {
  151. struct usb_hub *hub = __hub;
  152. struct usb_device *hdev = hub->hdev;
  153. unsigned i;
  154. unsigned changed = 0;
  155. int cursor = -1;
  156. if (hdev->state != USB_STATE_CONFIGURED || hub->quiescing)
  157. return;
  158. for (i = 0; i < hub->descriptor->bNbrPorts; i++) {
  159. unsigned selector, mode;
  160. /* 30%-50% duty cycle */
  161. switch (hub->indicator[i]) {
  162. /* cycle marker */
  163. case INDICATOR_CYCLE:
  164. cursor = i;
  165. selector = HUB_LED_AUTO;
  166. mode = INDICATOR_AUTO;
  167. break;
  168. /* blinking green = sw attention */
  169. case INDICATOR_GREEN_BLINK:
  170. selector = HUB_LED_GREEN;
  171. mode = INDICATOR_GREEN_BLINK_OFF;
  172. break;
  173. case INDICATOR_GREEN_BLINK_OFF:
  174. selector = HUB_LED_OFF;
  175. mode = INDICATOR_GREEN_BLINK;
  176. break;
  177. /* blinking amber = hw attention */
  178. case INDICATOR_AMBER_BLINK:
  179. selector = HUB_LED_AMBER;
  180. mode = INDICATOR_AMBER_BLINK_OFF;
  181. break;
  182. case INDICATOR_AMBER_BLINK_OFF:
  183. selector = HUB_LED_OFF;
  184. mode = INDICATOR_AMBER_BLINK;
  185. break;
  186. /* blink green/amber = reserved */
  187. case INDICATOR_ALT_BLINK:
  188. selector = HUB_LED_GREEN;
  189. mode = INDICATOR_ALT_BLINK_OFF;
  190. break;
  191. case INDICATOR_ALT_BLINK_OFF:
  192. selector = HUB_LED_AMBER;
  193. mode = INDICATOR_ALT_BLINK;
  194. break;
  195. default:
  196. continue;
  197. }
  198. if (selector != HUB_LED_AUTO)
  199. changed = 1;
  200. set_port_led(hub, i + 1, selector);
  201. hub->indicator[i] = mode;
  202. }
  203. if (!changed && blinkenlights) {
  204. cursor++;
  205. cursor %= hub->descriptor->bNbrPorts;
  206. set_port_led(hub, cursor + 1, HUB_LED_GREEN);
  207. hub->indicator[cursor] = INDICATOR_CYCLE;
  208. changed++;
  209. }
  210. if (changed)
  211. schedule_delayed_work(&hub->leds, LED_CYCLE_PERIOD);
  212. }
  213. /* use a short timeout for hub/port status fetches */
  214. #define USB_STS_TIMEOUT 1000
  215. #define USB_STS_RETRIES 5
  216. /*
  217. * USB 2.0 spec Section 11.24.2.6
  218. */
  219. static int get_hub_status(struct usb_device *hdev,
  220. struct usb_hub_status *data)
  221. {
  222. int i, status = -ETIMEDOUT;
  223. for (i = 0; i < USB_STS_RETRIES && status == -ETIMEDOUT; i++) {
  224. status = usb_control_msg(hdev, usb_rcvctrlpipe(hdev, 0),
  225. USB_REQ_GET_STATUS, USB_DIR_IN | USB_RT_HUB, 0, 0,
  226. data, sizeof(*data), USB_STS_TIMEOUT);
  227. }
  228. return status;
  229. }
  230. /*
  231. * USB 2.0 spec Section 11.24.2.7
  232. */
  233. static int get_port_status(struct usb_device *hdev, int port1,
  234. struct usb_port_status *data)
  235. {
  236. int i, status = -ETIMEDOUT;
  237. for (i = 0; i < USB_STS_RETRIES && status == -ETIMEDOUT; i++) {
  238. status = usb_control_msg(hdev, usb_rcvctrlpipe(hdev, 0),
  239. USB_REQ_GET_STATUS, USB_DIR_IN | USB_RT_PORT, 0, port1,
  240. data, sizeof(*data), USB_STS_TIMEOUT);
  241. }
  242. return status;
  243. }
  244. static void kick_khubd(struct usb_hub *hub)
  245. {
  246. unsigned long flags;
  247. spin_lock_irqsave(&hub_event_lock, flags);
  248. if (list_empty(&hub->event_list)) {
  249. list_add_tail(&hub->event_list, &hub_event_list);
  250. wake_up(&khubd_wait);
  251. }
  252. spin_unlock_irqrestore(&hub_event_lock, flags);
  253. }
  254. void usb_kick_khubd(struct usb_device *hdev)
  255. {
  256. kick_khubd(hdev_to_hub(hdev));
  257. }
  258. /* completion function, fires on port status changes and various faults */
  259. static void hub_irq(struct urb *urb)
  260. {
  261. struct usb_hub *hub = urb->context;
  262. int status;
  263. int i;
  264. unsigned long bits;
  265. switch (urb->status) {
  266. case -ENOENT: /* synchronous unlink */
  267. case -ECONNRESET: /* async unlink */
  268. case -ESHUTDOWN: /* hardware going away */
  269. return;
  270. default: /* presumably an error */
  271. /* Cause a hub reset after 10 consecutive errors */
  272. dev_dbg (hub->intfdev, "transfer --> %d\n", urb->status);
  273. if ((++hub->nerrors < 10) || hub->error)
  274. goto resubmit;
  275. hub->error = urb->status;
  276. /* FALL THROUGH */
  277. /* let khubd handle things */
  278. case 0: /* we got data: port status changed */
  279. bits = 0;
  280. for (i = 0; i < urb->actual_length; ++i)
  281. bits |= ((unsigned long) ((*hub->buffer)[i]))
  282. << (i*8);
  283. hub->event_bits[0] = bits;
  284. break;
  285. }
  286. hub->nerrors = 0;
  287. /* Something happened, let khubd figure it out */
  288. kick_khubd(hub);
  289. resubmit:
  290. if (hub->quiescing)
  291. return;
  292. if ((status = usb_submit_urb (hub->urb, GFP_ATOMIC)) != 0
  293. && status != -ENODEV && status != -EPERM)
  294. dev_err (hub->intfdev, "resubmit --> %d\n", status);
  295. }
  296. /* USB 2.0 spec Section 11.24.2.3 */
  297. static inline int
  298. hub_clear_tt_buffer (struct usb_device *hdev, u16 devinfo, u16 tt)
  299. {
  300. return usb_control_msg(hdev, usb_rcvctrlpipe(hdev, 0),
  301. HUB_CLEAR_TT_BUFFER, USB_RT_PORT, devinfo,
  302. tt, NULL, 0, 1000);
  303. }
  304. /*
  305. * enumeration blocks khubd for a long time. we use keventd instead, since
  306. * long blocking there is the exception, not the rule. accordingly, HCDs
  307. * talking to TTs must queue control transfers (not just bulk and iso), so
  308. * both can talk to the same hub concurrently.
  309. */
  310. static void hub_tt_kevent (void *arg)
  311. {
  312. struct usb_hub *hub = arg;
  313. unsigned long flags;
  314. spin_lock_irqsave (&hub->tt.lock, flags);
  315. while (!list_empty (&hub->tt.clear_list)) {
  316. struct list_head *temp;
  317. struct usb_tt_clear *clear;
  318. struct usb_device *hdev = hub->hdev;
  319. int status;
  320. temp = hub->tt.clear_list.next;
  321. clear = list_entry (temp, struct usb_tt_clear, clear_list);
  322. list_del (&clear->clear_list);
  323. /* drop lock so HCD can concurrently report other TT errors */
  324. spin_unlock_irqrestore (&hub->tt.lock, flags);
  325. status = hub_clear_tt_buffer (hdev, clear->devinfo, clear->tt);
  326. spin_lock_irqsave (&hub->tt.lock, flags);
  327. if (status)
  328. dev_err (&hdev->dev,
  329. "clear tt %d (%04x) error %d\n",
  330. clear->tt, clear->devinfo, status);
  331. kfree(clear);
  332. }
  333. spin_unlock_irqrestore (&hub->tt.lock, flags);
  334. }
  335. /**
  336. * usb_hub_tt_clear_buffer - clear control/bulk TT state in high speed hub
  337. * @udev: the device whose split transaction failed
  338. * @pipe: identifies the endpoint of the failed transaction
  339. *
  340. * High speed HCDs use this to tell the hub driver that some split control or
  341. * bulk transaction failed in a way that requires clearing internal state of
  342. * a transaction translator. This is normally detected (and reported) from
  343. * interrupt context.
  344. *
  345. * It may not be possible for that hub to handle additional full (or low)
  346. * speed transactions until that state is fully cleared out.
  347. */
  348. void usb_hub_tt_clear_buffer (struct usb_device *udev, int pipe)
  349. {
  350. struct usb_tt *tt = udev->tt;
  351. unsigned long flags;
  352. struct usb_tt_clear *clear;
  353. /* we've got to cope with an arbitrary number of pending TT clears,
  354. * since each TT has "at least two" buffers that can need it (and
  355. * there can be many TTs per hub). even if they're uncommon.
  356. */
  357. if ((clear = kmalloc (sizeof *clear, SLAB_ATOMIC)) == NULL) {
  358. dev_err (&udev->dev, "can't save CLEAR_TT_BUFFER state\n");
  359. /* FIXME recover somehow ... RESET_TT? */
  360. return;
  361. }
  362. /* info that CLEAR_TT_BUFFER needs */
  363. clear->tt = tt->multi ? udev->ttport : 1;
  364. clear->devinfo = usb_pipeendpoint (pipe);
  365. clear->devinfo |= udev->devnum << 4;
  366. clear->devinfo |= usb_pipecontrol (pipe)
  367. ? (USB_ENDPOINT_XFER_CONTROL << 11)
  368. : (USB_ENDPOINT_XFER_BULK << 11);
  369. if (usb_pipein (pipe))
  370. clear->devinfo |= 1 << 15;
  371. /* tell keventd to clear state for this TT */
  372. spin_lock_irqsave (&tt->lock, flags);
  373. list_add_tail (&clear->clear_list, &tt->clear_list);
  374. schedule_work (&tt->kevent);
  375. spin_unlock_irqrestore (&tt->lock, flags);
  376. }
  377. static void hub_power_on(struct usb_hub *hub)
  378. {
  379. int port1;
  380. unsigned pgood_delay = hub->descriptor->bPwrOn2PwrGood * 2;
  381. u16 wHubCharacteristics =
  382. le16_to_cpu(hub->descriptor->wHubCharacteristics);
  383. /* Enable power on each port. Some hubs have reserved values
  384. * of LPSM (> 2) in their descriptors, even though they are
  385. * USB 2.0 hubs. Some hubs do not implement port-power switching
  386. * but only emulate it. In all cases, the ports won't work
  387. * unless we send these messages to the hub.
  388. */
  389. if ((wHubCharacteristics & HUB_CHAR_LPSM) < 2)
  390. dev_dbg(hub->intfdev, "enabling power on all ports\n");
  391. else
  392. dev_dbg(hub->intfdev, "trying to enable port power on "
  393. "non-switchable hub\n");
  394. for (port1 = 1; port1 <= hub->descriptor->bNbrPorts; port1++)
  395. set_port_feature(hub->hdev, port1, USB_PORT_FEAT_POWER);
  396. /* Wait at least 100 msec for power to become stable */
  397. msleep(max(pgood_delay, (unsigned) 100));
  398. }
  399. static void hub_quiesce(struct usb_hub *hub)
  400. {
  401. /* (nonblocking) khubd and related activity won't re-trigger */
  402. hub->quiescing = 1;
  403. hub->activating = 0;
  404. hub->resume_root_hub = 0;
  405. /* (blocking) stop khubd and related activity */
  406. usb_kill_urb(hub->urb);
  407. if (hub->has_indicators)
  408. cancel_delayed_work(&hub->leds);
  409. if (hub->has_indicators || hub->tt.hub)
  410. flush_scheduled_work();
  411. }
  412. static void hub_activate(struct usb_hub *hub)
  413. {
  414. int status;
  415. hub->quiescing = 0;
  416. hub->activating = 1;
  417. hub->resume_root_hub = 0;
  418. status = usb_submit_urb(hub->urb, GFP_NOIO);
  419. if (status < 0)
  420. dev_err(hub->intfdev, "activate --> %d\n", status);
  421. if (hub->has_indicators && blinkenlights)
  422. schedule_delayed_work(&hub->leds, LED_CYCLE_PERIOD);
  423. /* scan all ports ASAP */
  424. kick_khubd(hub);
  425. }
  426. static int hub_hub_status(struct usb_hub *hub,
  427. u16 *status, u16 *change)
  428. {
  429. int ret;
  430. ret = get_hub_status(hub->hdev, &hub->status->hub);
  431. if (ret < 0)
  432. dev_err (hub->intfdev,
  433. "%s failed (err = %d)\n", __FUNCTION__, ret);
  434. else {
  435. *status = le16_to_cpu(hub->status->hub.wHubStatus);
  436. *change = le16_to_cpu(hub->status->hub.wHubChange);
  437. ret = 0;
  438. }
  439. return ret;
  440. }
  441. static int hub_port_disable(struct usb_hub *hub, int port1, int set_state)
  442. {
  443. struct usb_device *hdev = hub->hdev;
  444. int ret;
  445. if (hdev->children[port1-1] && set_state) {
  446. usb_set_device_state(hdev->children[port1-1],
  447. USB_STATE_NOTATTACHED);
  448. }
  449. ret = clear_port_feature(hdev, port1, USB_PORT_FEAT_ENABLE);
  450. if (ret)
  451. dev_err(hub->intfdev, "cannot disable port %d (err = %d)\n",
  452. port1, ret);
  453. return ret;
  454. }
  455. /* caller has locked the hub device */
  456. static void hub_pre_reset(struct usb_interface *intf)
  457. {
  458. struct usb_hub *hub = usb_get_intfdata(intf);
  459. struct usb_device *hdev = hub->hdev;
  460. int port1;
  461. for (port1 = 1; port1 <= hdev->maxchild; ++port1) {
  462. if (hdev->children[port1 - 1]) {
  463. usb_disconnect(&hdev->children[port1 - 1]);
  464. if (hub->error == 0)
  465. hub_port_disable(hub, port1, 0);
  466. }
  467. }
  468. hub_quiesce(hub);
  469. }
  470. /* caller has locked the hub device */
  471. static void hub_post_reset(struct usb_interface *intf)
  472. {
  473. struct usb_hub *hub = usb_get_intfdata(intf);
  474. hub_activate(hub);
  475. hub_power_on(hub);
  476. }
  477. static int hub_configure(struct usb_hub *hub,
  478. struct usb_endpoint_descriptor *endpoint)
  479. {
  480. struct usb_device *hdev = hub->hdev;
  481. struct device *hub_dev = hub->intfdev;
  482. u16 hubstatus, hubchange;
  483. u16 wHubCharacteristics;
  484. unsigned int pipe;
  485. int maxp, ret;
  486. char *message;
  487. hub->buffer = usb_buffer_alloc(hdev, sizeof(*hub->buffer), GFP_KERNEL,
  488. &hub->buffer_dma);
  489. if (!hub->buffer) {
  490. message = "can't allocate hub irq buffer";
  491. ret = -ENOMEM;
  492. goto fail;
  493. }
  494. hub->status = kmalloc(sizeof(*hub->status), GFP_KERNEL);
  495. if (!hub->status) {
  496. message = "can't kmalloc hub status buffer";
  497. ret = -ENOMEM;
  498. goto fail;
  499. }
  500. hub->descriptor = kmalloc(sizeof(*hub->descriptor), GFP_KERNEL);
  501. if (!hub->descriptor) {
  502. message = "can't kmalloc hub descriptor";
  503. ret = -ENOMEM;
  504. goto fail;
  505. }
  506. /* Request the entire hub descriptor.
  507. * hub->descriptor can handle USB_MAXCHILDREN ports,
  508. * but the hub can/will return fewer bytes here.
  509. */
  510. ret = get_hub_descriptor(hdev, hub->descriptor,
  511. sizeof(*hub->descriptor));
  512. if (ret < 0) {
  513. message = "can't read hub descriptor";
  514. goto fail;
  515. } else if (hub->descriptor->bNbrPorts > USB_MAXCHILDREN) {
  516. message = "hub has too many ports!";
  517. ret = -ENODEV;
  518. goto fail;
  519. }
  520. hdev->maxchild = hub->descriptor->bNbrPorts;
  521. dev_info (hub_dev, "%d port%s detected\n", hdev->maxchild,
  522. (hdev->maxchild == 1) ? "" : "s");
  523. wHubCharacteristics = le16_to_cpu(hub->descriptor->wHubCharacteristics);
  524. if (wHubCharacteristics & HUB_CHAR_COMPOUND) {
  525. int i;
  526. char portstr [USB_MAXCHILDREN + 1];
  527. for (i = 0; i < hdev->maxchild; i++)
  528. portstr[i] = hub->descriptor->DeviceRemovable
  529. [((i + 1) / 8)] & (1 << ((i + 1) % 8))
  530. ? 'F' : 'R';
  531. portstr[hdev->maxchild] = 0;
  532. dev_dbg(hub_dev, "compound device; port removable status: %s\n", portstr);
  533. } else
  534. dev_dbg(hub_dev, "standalone hub\n");
  535. switch (wHubCharacteristics & HUB_CHAR_LPSM) {
  536. case 0x00:
  537. dev_dbg(hub_dev, "ganged power switching\n");
  538. break;
  539. case 0x01:
  540. dev_dbg(hub_dev, "individual port power switching\n");
  541. break;
  542. case 0x02:
  543. case 0x03:
  544. dev_dbg(hub_dev, "no power switching (usb 1.0)\n");
  545. break;
  546. }
  547. switch (wHubCharacteristics & HUB_CHAR_OCPM) {
  548. case 0x00:
  549. dev_dbg(hub_dev, "global over-current protection\n");
  550. break;
  551. case 0x08:
  552. dev_dbg(hub_dev, "individual port over-current protection\n");
  553. break;
  554. case 0x10:
  555. case 0x18:
  556. dev_dbg(hub_dev, "no over-current protection\n");
  557. break;
  558. }
  559. spin_lock_init (&hub->tt.lock);
  560. INIT_LIST_HEAD (&hub->tt.clear_list);
  561. INIT_WORK (&hub->tt.kevent, hub_tt_kevent, hub);
  562. switch (hdev->descriptor.bDeviceProtocol) {
  563. case 0:
  564. break;
  565. case 1:
  566. dev_dbg(hub_dev, "Single TT\n");
  567. hub->tt.hub = hdev;
  568. break;
  569. case 2:
  570. ret = usb_set_interface(hdev, 0, 1);
  571. if (ret == 0) {
  572. dev_dbg(hub_dev, "TT per port\n");
  573. hub->tt.multi = 1;
  574. } else
  575. dev_err(hub_dev, "Using single TT (err %d)\n",
  576. ret);
  577. hub->tt.hub = hdev;
  578. break;
  579. default:
  580. dev_dbg(hub_dev, "Unrecognized hub protocol %d\n",
  581. hdev->descriptor.bDeviceProtocol);
  582. break;
  583. }
  584. /* Note 8 FS bit times == (8 bits / 12000000 bps) ~= 666ns */
  585. switch (wHubCharacteristics & HUB_CHAR_TTTT) {
  586. case HUB_TTTT_8_BITS:
  587. if (hdev->descriptor.bDeviceProtocol != 0) {
  588. hub->tt.think_time = 666;
  589. dev_dbg(hub_dev, "TT requires at most %d "
  590. "FS bit times (%d ns)\n",
  591. 8, hub->tt.think_time);
  592. }
  593. break;
  594. case HUB_TTTT_16_BITS:
  595. hub->tt.think_time = 666 * 2;
  596. dev_dbg(hub_dev, "TT requires at most %d "
  597. "FS bit times (%d ns)\n",
  598. 16, hub->tt.think_time);
  599. break;
  600. case HUB_TTTT_24_BITS:
  601. hub->tt.think_time = 666 * 3;
  602. dev_dbg(hub_dev, "TT requires at most %d "
  603. "FS bit times (%d ns)\n",
  604. 24, hub->tt.think_time);
  605. break;
  606. case HUB_TTTT_32_BITS:
  607. hub->tt.think_time = 666 * 4;
  608. dev_dbg(hub_dev, "TT requires at most %d "
  609. "FS bit times (%d ns)\n",
  610. 32, hub->tt.think_time);
  611. break;
  612. }
  613. /* probe() zeroes hub->indicator[] */
  614. if (wHubCharacteristics & HUB_CHAR_PORTIND) {
  615. hub->has_indicators = 1;
  616. dev_dbg(hub_dev, "Port indicators are supported\n");
  617. }
  618. dev_dbg(hub_dev, "power on to power good time: %dms\n",
  619. hub->descriptor->bPwrOn2PwrGood * 2);
  620. /* power budgeting mostly matters with bus-powered hubs,
  621. * and battery-powered root hubs (may provide just 8 mA).
  622. */
  623. ret = usb_get_status(hdev, USB_RECIP_DEVICE, 0, &hubstatus);
  624. if (ret < 2) {
  625. message = "can't get hub status";
  626. goto fail;
  627. }
  628. le16_to_cpus(&hubstatus);
  629. if (hdev == hdev->bus->root_hub) {
  630. if (hdev->bus_mA == 0 || hdev->bus_mA >= 500)
  631. hub->mA_per_port = 500;
  632. else {
  633. hub->mA_per_port = hdev->bus_mA;
  634. hub->limited_power = 1;
  635. }
  636. } else if ((hubstatus & (1 << USB_DEVICE_SELF_POWERED)) == 0) {
  637. dev_dbg(hub_dev, "hub controller current requirement: %dmA\n",
  638. hub->descriptor->bHubContrCurrent);
  639. hub->limited_power = 1;
  640. if (hdev->maxchild > 0) {
  641. int remaining = hdev->bus_mA -
  642. hub->descriptor->bHubContrCurrent;
  643. if (remaining < hdev->maxchild * 100)
  644. dev_warn(hub_dev,
  645. "insufficient power available "
  646. "to use all downstream ports\n");
  647. hub->mA_per_port = 100; /* 7.2.1.1 */
  648. }
  649. } else { /* Self-powered external hub */
  650. /* FIXME: What about battery-powered external hubs that
  651. * provide less current per port? */
  652. hub->mA_per_port = 500;
  653. }
  654. if (hub->mA_per_port < 500)
  655. dev_dbg(hub_dev, "%umA bus power budget for each child\n",
  656. hub->mA_per_port);
  657. ret = hub_hub_status(hub, &hubstatus, &hubchange);
  658. if (ret < 0) {
  659. message = "can't get hub status";
  660. goto fail;
  661. }
  662. /* local power status reports aren't always correct */
  663. if (hdev->actconfig->desc.bmAttributes & USB_CONFIG_ATT_SELFPOWER)
  664. dev_dbg(hub_dev, "local power source is %s\n",
  665. (hubstatus & HUB_STATUS_LOCAL_POWER)
  666. ? "lost (inactive)" : "good");
  667. if ((wHubCharacteristics & HUB_CHAR_OCPM) == 0)
  668. dev_dbg(hub_dev, "%sover-current condition exists\n",
  669. (hubstatus & HUB_STATUS_OVERCURRENT) ? "" : "no ");
  670. /* set up the interrupt endpoint */
  671. pipe = usb_rcvintpipe(hdev, endpoint->bEndpointAddress);
  672. maxp = usb_maxpacket(hdev, pipe, usb_pipeout(pipe));
  673. if (maxp > sizeof(*hub->buffer))
  674. maxp = sizeof(*hub->buffer);
  675. hub->urb = usb_alloc_urb(0, GFP_KERNEL);
  676. if (!hub->urb) {
  677. message = "couldn't allocate interrupt urb";
  678. ret = -ENOMEM;
  679. goto fail;
  680. }
  681. usb_fill_int_urb(hub->urb, hdev, pipe, *hub->buffer, maxp, hub_irq,
  682. hub, endpoint->bInterval);
  683. hub->urb->transfer_dma = hub->buffer_dma;
  684. hub->urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  685. /* maybe cycle the hub leds */
  686. if (hub->has_indicators && blinkenlights)
  687. hub->indicator [0] = INDICATOR_CYCLE;
  688. hub_power_on(hub);
  689. hub_activate(hub);
  690. return 0;
  691. fail:
  692. dev_err (hub_dev, "config failed, %s (err %d)\n",
  693. message, ret);
  694. /* hub_disconnect() frees urb and descriptor */
  695. return ret;
  696. }
  697. static unsigned highspeed_hubs;
  698. static void hub_disconnect(struct usb_interface *intf)
  699. {
  700. struct usb_hub *hub = usb_get_intfdata (intf);
  701. struct usb_device *hdev;
  702. /* Disconnect all children and quiesce the hub */
  703. hub->error = 0;
  704. hub_pre_reset(intf);
  705. usb_set_intfdata (intf, NULL);
  706. hdev = hub->hdev;
  707. if (hdev->speed == USB_SPEED_HIGH)
  708. highspeed_hubs--;
  709. usb_free_urb(hub->urb);
  710. hub->urb = NULL;
  711. spin_lock_irq(&hub_event_lock);
  712. list_del_init(&hub->event_list);
  713. spin_unlock_irq(&hub_event_lock);
  714. kfree(hub->descriptor);
  715. hub->descriptor = NULL;
  716. kfree(hub->status);
  717. hub->status = NULL;
  718. if (hub->buffer) {
  719. usb_buffer_free(hdev, sizeof(*hub->buffer), hub->buffer,
  720. hub->buffer_dma);
  721. hub->buffer = NULL;
  722. }
  723. kfree(hub);
  724. }
  725. static int hub_probe(struct usb_interface *intf, const struct usb_device_id *id)
  726. {
  727. struct usb_host_interface *desc;
  728. struct usb_endpoint_descriptor *endpoint;
  729. struct usb_device *hdev;
  730. struct usb_hub *hub;
  731. desc = intf->cur_altsetting;
  732. hdev = interface_to_usbdev(intf);
  733. #ifdef CONFIG_USB_OTG_BLACKLIST_HUB
  734. if (hdev->parent) {
  735. dev_warn(&intf->dev, "ignoring external hub\n");
  736. return -ENODEV;
  737. }
  738. #endif
  739. /* Some hubs have a subclass of 1, which AFAICT according to the */
  740. /* specs is not defined, but it works */
  741. if ((desc->desc.bInterfaceSubClass != 0) &&
  742. (desc->desc.bInterfaceSubClass != 1)) {
  743. descriptor_error:
  744. dev_err (&intf->dev, "bad descriptor, ignoring hub\n");
  745. return -EIO;
  746. }
  747. /* Multiple endpoints? What kind of mutant ninja-hub is this? */
  748. if (desc->desc.bNumEndpoints != 1)
  749. goto descriptor_error;
  750. endpoint = &desc->endpoint[0].desc;
  751. /* If it's not an interrupt in endpoint, we'd better punt! */
  752. if (!usb_endpoint_is_int_in(endpoint))
  753. goto descriptor_error;
  754. /* We found a hub */
  755. dev_info (&intf->dev, "USB hub found\n");
  756. hub = kzalloc(sizeof(*hub), GFP_KERNEL);
  757. if (!hub) {
  758. dev_dbg (&intf->dev, "couldn't kmalloc hub struct\n");
  759. return -ENOMEM;
  760. }
  761. INIT_LIST_HEAD(&hub->event_list);
  762. hub->intfdev = &intf->dev;
  763. hub->hdev = hdev;
  764. INIT_WORK(&hub->leds, led_work, hub);
  765. usb_set_intfdata (intf, hub);
  766. if (hdev->speed == USB_SPEED_HIGH)
  767. highspeed_hubs++;
  768. if (hub_configure(hub, endpoint) >= 0)
  769. return 0;
  770. hub_disconnect (intf);
  771. return -ENODEV;
  772. }
  773. static int
  774. hub_ioctl(struct usb_interface *intf, unsigned int code, void *user_data)
  775. {
  776. struct usb_device *hdev = interface_to_usbdev (intf);
  777. /* assert ifno == 0 (part of hub spec) */
  778. switch (code) {
  779. case USBDEVFS_HUB_PORTINFO: {
  780. struct usbdevfs_hub_portinfo *info = user_data;
  781. int i;
  782. spin_lock_irq(&device_state_lock);
  783. if (hdev->devnum <= 0)
  784. info->nports = 0;
  785. else {
  786. info->nports = hdev->maxchild;
  787. for (i = 0; i < info->nports; i++) {
  788. if (hdev->children[i] == NULL)
  789. info->port[i] = 0;
  790. else
  791. info->port[i] =
  792. hdev->children[i]->devnum;
  793. }
  794. }
  795. spin_unlock_irq(&device_state_lock);
  796. return info->nports + 1;
  797. }
  798. default:
  799. return -ENOSYS;
  800. }
  801. }
  802. /* grab device/port lock, returning index of that port (zero based).
  803. * protects the upstream link used by this device from concurrent
  804. * tree operations like suspend, resume, reset, and disconnect, which
  805. * apply to everything downstream of a given port.
  806. */
  807. static int locktree(struct usb_device *udev)
  808. {
  809. int t;
  810. struct usb_device *hdev;
  811. if (!udev)
  812. return -ENODEV;
  813. /* root hub is always the first lock in the series */
  814. hdev = udev->parent;
  815. if (!hdev) {
  816. usb_lock_device(udev);
  817. return 0;
  818. }
  819. /* on the path from root to us, lock everything from
  820. * top down, dropping parent locks when not needed
  821. */
  822. t = locktree(hdev);
  823. if (t < 0)
  824. return t;
  825. /* everything is fail-fast once disconnect
  826. * processing starts
  827. */
  828. if (udev->state == USB_STATE_NOTATTACHED) {
  829. usb_unlock_device(hdev);
  830. return -ENODEV;
  831. }
  832. /* when everyone grabs locks top->bottom,
  833. * non-overlapping work may be concurrent
  834. */
  835. usb_lock_device(udev);
  836. usb_unlock_device(hdev);
  837. return udev->portnum;
  838. }
  839. static void recursively_mark_NOTATTACHED(struct usb_device *udev)
  840. {
  841. int i;
  842. for (i = 0; i < udev->maxchild; ++i) {
  843. if (udev->children[i])
  844. recursively_mark_NOTATTACHED(udev->children[i]);
  845. }
  846. udev->state = USB_STATE_NOTATTACHED;
  847. }
  848. /**
  849. * usb_set_device_state - change a device's current state (usbcore, hcds)
  850. * @udev: pointer to device whose state should be changed
  851. * @new_state: new state value to be stored
  852. *
  853. * udev->state is _not_ fully protected by the device lock. Although
  854. * most transitions are made only while holding the lock, the state can
  855. * can change to USB_STATE_NOTATTACHED at almost any time. This
  856. * is so that devices can be marked as disconnected as soon as possible,
  857. * without having to wait for any semaphores to be released. As a result,
  858. * all changes to any device's state must be protected by the
  859. * device_state_lock spinlock.
  860. *
  861. * Once a device has been added to the device tree, all changes to its state
  862. * should be made using this routine. The state should _not_ be set directly.
  863. *
  864. * If udev->state is already USB_STATE_NOTATTACHED then no change is made.
  865. * Otherwise udev->state is set to new_state, and if new_state is
  866. * USB_STATE_NOTATTACHED then all of udev's descendants' states are also set
  867. * to USB_STATE_NOTATTACHED.
  868. */
  869. void usb_set_device_state(struct usb_device *udev,
  870. enum usb_device_state new_state)
  871. {
  872. unsigned long flags;
  873. spin_lock_irqsave(&device_state_lock, flags);
  874. if (udev->state == USB_STATE_NOTATTACHED)
  875. ; /* do nothing */
  876. else if (new_state != USB_STATE_NOTATTACHED) {
  877. /* root hub wakeup capabilities are managed out-of-band
  878. * and may involve silicon errata ... ignore them here.
  879. */
  880. if (udev->parent) {
  881. if (udev->state == USB_STATE_SUSPENDED
  882. || new_state == USB_STATE_SUSPENDED)
  883. ; /* No change to wakeup settings */
  884. else if (new_state == USB_STATE_CONFIGURED)
  885. device_init_wakeup(&udev->dev,
  886. (udev->actconfig->desc.bmAttributes
  887. & USB_CONFIG_ATT_WAKEUP));
  888. else
  889. device_init_wakeup(&udev->dev, 0);
  890. }
  891. udev->state = new_state;
  892. } else
  893. recursively_mark_NOTATTACHED(udev);
  894. spin_unlock_irqrestore(&device_state_lock, flags);
  895. }
  896. #ifdef CONFIG_PM
  897. /**
  898. * usb_root_hub_lost_power - called by HCD if the root hub lost Vbus power
  899. * @rhdev: struct usb_device for the root hub
  900. *
  901. * The USB host controller driver calls this function when its root hub
  902. * is resumed and Vbus power has been interrupted or the controller
  903. * has been reset. The routine marks all the children of the root hub
  904. * as NOTATTACHED and marks logical connect-change events on their ports.
  905. */
  906. void usb_root_hub_lost_power(struct usb_device *rhdev)
  907. {
  908. struct usb_hub *hub;
  909. int port1;
  910. unsigned long flags;
  911. dev_warn(&rhdev->dev, "root hub lost power or was reset\n");
  912. /* Make sure no potential wakeup events get lost,
  913. * by forcing the root hub to be resumed.
  914. */
  915. rhdev->dev.power.prev_state.event = PM_EVENT_ON;
  916. spin_lock_irqsave(&device_state_lock, flags);
  917. hub = hdev_to_hub(rhdev);
  918. for (port1 = 1; port1 <= rhdev->maxchild; ++port1) {
  919. if (rhdev->children[port1 - 1]) {
  920. recursively_mark_NOTATTACHED(
  921. rhdev->children[port1 - 1]);
  922. set_bit(port1, hub->change_bits);
  923. }
  924. }
  925. spin_unlock_irqrestore(&device_state_lock, flags);
  926. }
  927. EXPORT_SYMBOL_GPL(usb_root_hub_lost_power);
  928. #endif /* CONFIG_PM */
  929. static void choose_address(struct usb_device *udev)
  930. {
  931. int devnum;
  932. struct usb_bus *bus = udev->bus;
  933. /* If khubd ever becomes multithreaded, this will need a lock */
  934. /* Try to allocate the next devnum beginning at bus->devnum_next. */
  935. devnum = find_next_zero_bit(bus->devmap.devicemap, 128,
  936. bus->devnum_next);
  937. if (devnum >= 128)
  938. devnum = find_next_zero_bit(bus->devmap.devicemap, 128, 1);
  939. bus->devnum_next = ( devnum >= 127 ? 1 : devnum + 1);
  940. if (devnum < 128) {
  941. set_bit(devnum, bus->devmap.devicemap);
  942. udev->devnum = devnum;
  943. }
  944. }
  945. static void release_address(struct usb_device *udev)
  946. {
  947. if (udev->devnum > 0) {
  948. clear_bit(udev->devnum, udev->bus->devmap.devicemap);
  949. udev->devnum = -1;
  950. }
  951. }
  952. /**
  953. * usb_disconnect - disconnect a device (usbcore-internal)
  954. * @pdev: pointer to device being disconnected
  955. * Context: !in_interrupt ()
  956. *
  957. * Something got disconnected. Get rid of it and all of its children.
  958. *
  959. * If *pdev is a normal device then the parent hub must already be locked.
  960. * If *pdev is a root hub then this routine will acquire the
  961. * usb_bus_list_lock on behalf of the caller.
  962. *
  963. * Only hub drivers (including virtual root hub drivers for host
  964. * controllers) should ever call this.
  965. *
  966. * This call is synchronous, and may not be used in an interrupt context.
  967. */
  968. void usb_disconnect(struct usb_device **pdev)
  969. {
  970. struct usb_device *udev = *pdev;
  971. int i;
  972. if (!udev) {
  973. pr_debug ("%s nodev\n", __FUNCTION__);
  974. return;
  975. }
  976. /* mark the device as inactive, so any further urb submissions for
  977. * this device (and any of its children) will fail immediately.
  978. * this quiesces everyting except pending urbs.
  979. */
  980. usb_set_device_state(udev, USB_STATE_NOTATTACHED);
  981. dev_info (&udev->dev, "USB disconnect, address %d\n", udev->devnum);
  982. usb_lock_device(udev);
  983. /* Free up all the children before we remove this device */
  984. for (i = 0; i < USB_MAXCHILDREN; i++) {
  985. if (udev->children[i])
  986. usb_disconnect(&udev->children[i]);
  987. }
  988. /* deallocate hcd/hardware state ... nuking all pending urbs and
  989. * cleaning up all state associated with the current configuration
  990. * so that the hardware is now fully quiesced.
  991. */
  992. dev_dbg (&udev->dev, "unregistering device\n");
  993. usb_disable_device(udev, 0);
  994. usb_unlock_device(udev);
  995. /* Unregister the device. The device driver is responsible
  996. * for removing the device files from usbfs and sysfs and for
  997. * de-configuring the device.
  998. */
  999. device_del(&udev->dev);
  1000. /* Free the device number and delete the parent's children[]
  1001. * (or root_hub) pointer.
  1002. */
  1003. release_address(udev);
  1004. /* Avoid races with recursively_mark_NOTATTACHED() */
  1005. spin_lock_irq(&device_state_lock);
  1006. *pdev = NULL;
  1007. spin_unlock_irq(&device_state_lock);
  1008. put_device(&udev->dev);
  1009. }
  1010. #ifdef DEBUG
  1011. static void show_string(struct usb_device *udev, char *id, char *string)
  1012. {
  1013. if (!string)
  1014. return;
  1015. dev_printk(KERN_INFO, &udev->dev, "%s: %s\n", id, string);
  1016. }
  1017. #else
  1018. static inline void show_string(struct usb_device *udev, char *id, char *string)
  1019. {}
  1020. #endif
  1021. #ifdef CONFIG_USB_OTG
  1022. #include "otg_whitelist.h"
  1023. static int __usb_port_suspend(struct usb_device *, int port1);
  1024. #endif
  1025. /**
  1026. * usb_new_device - perform initial device setup (usbcore-internal)
  1027. * @udev: newly addressed device (in ADDRESS state)
  1028. *
  1029. * This is called with devices which have been enumerated, but not yet
  1030. * configured. The device descriptor is available, but not descriptors
  1031. * for any device configuration. The caller must have locked either
  1032. * the parent hub (if udev is a normal device) or else the
  1033. * usb_bus_list_lock (if udev is a root hub). The parent's pointer to
  1034. * udev has already been installed, but udev is not yet visible through
  1035. * sysfs or other filesystem code.
  1036. *
  1037. * Returns 0 for success (device is configured and listed, with its
  1038. * interfaces, in sysfs); else a negative errno value.
  1039. *
  1040. * This call is synchronous, and may not be used in an interrupt context.
  1041. *
  1042. * Only the hub driver or root-hub registrar should ever call this.
  1043. */
  1044. int usb_new_device(struct usb_device *udev)
  1045. {
  1046. int err;
  1047. err = usb_get_configuration(udev);
  1048. if (err < 0) {
  1049. dev_err(&udev->dev, "can't read configurations, error %d\n",
  1050. err);
  1051. goto fail;
  1052. }
  1053. /* read the standard strings and cache them if present */
  1054. udev->product = usb_cache_string(udev, udev->descriptor.iProduct);
  1055. udev->manufacturer = usb_cache_string(udev,
  1056. udev->descriptor.iManufacturer);
  1057. udev->serial = usb_cache_string(udev, udev->descriptor.iSerialNumber);
  1058. /* Tell the world! */
  1059. dev_dbg(&udev->dev, "new device strings: Mfr=%d, Product=%d, "
  1060. "SerialNumber=%d\n",
  1061. udev->descriptor.iManufacturer,
  1062. udev->descriptor.iProduct,
  1063. udev->descriptor.iSerialNumber);
  1064. show_string(udev, "Product", udev->product);
  1065. show_string(udev, "Manufacturer", udev->manufacturer);
  1066. show_string(udev, "SerialNumber", udev->serial);
  1067. #ifdef CONFIG_USB_OTG
  1068. /*
  1069. * OTG-aware devices on OTG-capable root hubs may be able to use SRP,
  1070. * to wake us after we've powered off VBUS; and HNP, switching roles
  1071. * "host" to "peripheral". The OTG descriptor helps figure this out.
  1072. */
  1073. if (!udev->bus->is_b_host
  1074. && udev->config
  1075. && udev->parent == udev->bus->root_hub) {
  1076. struct usb_otg_descriptor *desc = 0;
  1077. struct usb_bus *bus = udev->bus;
  1078. /* descriptor may appear anywhere in config */
  1079. if (__usb_get_extra_descriptor (udev->rawdescriptors[0],
  1080. le16_to_cpu(udev->config[0].desc.wTotalLength),
  1081. USB_DT_OTG, (void **) &desc) == 0) {
  1082. if (desc->bmAttributes & USB_OTG_HNP) {
  1083. unsigned port1 = udev->portnum;
  1084. dev_info(&udev->dev,
  1085. "Dual-Role OTG device on %sHNP port\n",
  1086. (port1 == bus->otg_port)
  1087. ? "" : "non-");
  1088. /* enable HNP before suspend, it's simpler */
  1089. if (port1 == bus->otg_port)
  1090. bus->b_hnp_enable = 1;
  1091. err = usb_control_msg(udev,
  1092. usb_sndctrlpipe(udev, 0),
  1093. USB_REQ_SET_FEATURE, 0,
  1094. bus->b_hnp_enable
  1095. ? USB_DEVICE_B_HNP_ENABLE
  1096. : USB_DEVICE_A_ALT_HNP_SUPPORT,
  1097. 0, NULL, 0, USB_CTRL_SET_TIMEOUT);
  1098. if (err < 0) {
  1099. /* OTG MESSAGE: report errors here,
  1100. * customize to match your product.
  1101. */
  1102. dev_info(&udev->dev,
  1103. "can't set HNP mode; %d\n",
  1104. err);
  1105. bus->b_hnp_enable = 0;
  1106. }
  1107. }
  1108. }
  1109. }
  1110. if (!is_targeted(udev)) {
  1111. /* Maybe it can talk to us, though we can't talk to it.
  1112. * (Includes HNP test device.)
  1113. */
  1114. if (udev->bus->b_hnp_enable || udev->bus->is_b_host) {
  1115. err = __usb_port_suspend(udev, udev->bus->otg_port);
  1116. if (err < 0)
  1117. dev_dbg(&udev->dev, "HNP fail, %d\n", err);
  1118. }
  1119. err = -ENODEV;
  1120. goto fail;
  1121. }
  1122. #endif
  1123. /* Register the device. The device driver is responsible
  1124. * for adding the device files to usbfs and sysfs and for
  1125. * configuring the device.
  1126. */
  1127. err = device_add (&udev->dev);
  1128. if (err) {
  1129. dev_err(&udev->dev, "can't device_add, error %d\n", err);
  1130. goto fail;
  1131. }
  1132. return 0;
  1133. fail:
  1134. usb_set_device_state(udev, USB_STATE_NOTATTACHED);
  1135. return err;
  1136. }
  1137. static int hub_port_status(struct usb_hub *hub, int port1,
  1138. u16 *status, u16 *change)
  1139. {
  1140. int ret;
  1141. ret = get_port_status(hub->hdev, port1, &hub->status->port);
  1142. if (ret < 0)
  1143. dev_err (hub->intfdev,
  1144. "%s failed (err = %d)\n", __FUNCTION__, ret);
  1145. else {
  1146. *status = le16_to_cpu(hub->status->port.wPortStatus);
  1147. *change = le16_to_cpu(hub->status->port.wPortChange);
  1148. ret = 0;
  1149. }
  1150. return ret;
  1151. }
  1152. /* Returns 1 if @hub is a WUSB root hub, 0 otherwise */
  1153. static unsigned hub_is_wusb(struct usb_hub *hub)
  1154. {
  1155. struct usb_hcd *hcd;
  1156. if (hub->hdev->parent != NULL) /* not a root hub? */
  1157. return 0;
  1158. hcd = container_of(hub->hdev->bus, struct usb_hcd, self);
  1159. return hcd->wireless;
  1160. }
  1161. #define PORT_RESET_TRIES 5
  1162. #define SET_ADDRESS_TRIES 2
  1163. #define GET_DESCRIPTOR_TRIES 2
  1164. #define SET_CONFIG_TRIES (2 * (use_both_schemes + 1))
  1165. #define USE_NEW_SCHEME(i) ((i) / 2 == old_scheme_first)
  1166. #define HUB_ROOT_RESET_TIME 50 /* times are in msec */
  1167. #define HUB_SHORT_RESET_TIME 10
  1168. #define HUB_LONG_RESET_TIME 200
  1169. #define HUB_RESET_TIMEOUT 500
  1170. static int hub_port_wait_reset(struct usb_hub *hub, int port1,
  1171. struct usb_device *udev, unsigned int delay)
  1172. {
  1173. int delay_time, ret;
  1174. u16 portstatus;
  1175. u16 portchange;
  1176. for (delay_time = 0;
  1177. delay_time < HUB_RESET_TIMEOUT;
  1178. delay_time += delay) {
  1179. /* wait to give the device a chance to reset */
  1180. msleep(delay);
  1181. /* read and decode port status */
  1182. ret = hub_port_status(hub, port1, &portstatus, &portchange);
  1183. if (ret < 0)
  1184. return ret;
  1185. /* Device went away? */
  1186. if (!(portstatus & USB_PORT_STAT_CONNECTION))
  1187. return -ENOTCONN;
  1188. /* bomb out completely if something weird happened */
  1189. if ((portchange & USB_PORT_STAT_C_CONNECTION))
  1190. return -EINVAL;
  1191. /* if we`ve finished resetting, then break out of the loop */
  1192. if (!(portstatus & USB_PORT_STAT_RESET) &&
  1193. (portstatus & USB_PORT_STAT_ENABLE)) {
  1194. if (hub_is_wusb(hub))
  1195. udev->speed = USB_SPEED_VARIABLE;
  1196. else if (portstatus & USB_PORT_STAT_HIGH_SPEED)
  1197. udev->speed = USB_SPEED_HIGH;
  1198. else if (portstatus & USB_PORT_STAT_LOW_SPEED)
  1199. udev->speed = USB_SPEED_LOW;
  1200. else
  1201. udev->speed = USB_SPEED_FULL;
  1202. return 0;
  1203. }
  1204. /* switch to the long delay after two short delay failures */
  1205. if (delay_time >= 2 * HUB_SHORT_RESET_TIME)
  1206. delay = HUB_LONG_RESET_TIME;
  1207. dev_dbg (hub->intfdev,
  1208. "port %d not reset yet, waiting %dms\n",
  1209. port1, delay);
  1210. }
  1211. return -EBUSY;
  1212. }
  1213. static int hub_port_reset(struct usb_hub *hub, int port1,
  1214. struct usb_device *udev, unsigned int delay)
  1215. {
  1216. int i, status;
  1217. /* Reset the port */
  1218. for (i = 0; i < PORT_RESET_TRIES; i++) {
  1219. status = set_port_feature(hub->hdev,
  1220. port1, USB_PORT_FEAT_RESET);
  1221. if (status)
  1222. dev_err(hub->intfdev,
  1223. "cannot reset port %d (err = %d)\n",
  1224. port1, status);
  1225. else {
  1226. status = hub_port_wait_reset(hub, port1, udev, delay);
  1227. if (status && status != -ENOTCONN)
  1228. dev_dbg(hub->intfdev,
  1229. "port_wait_reset: err = %d\n",
  1230. status);
  1231. }
  1232. /* return on disconnect or reset */
  1233. switch (status) {
  1234. case 0:
  1235. /* TRSTRCY = 10 ms; plus some extra */
  1236. msleep(10 + 40);
  1237. /* FALL THROUGH */
  1238. case -ENOTCONN:
  1239. case -ENODEV:
  1240. clear_port_feature(hub->hdev,
  1241. port1, USB_PORT_FEAT_C_RESET);
  1242. /* FIXME need disconnect() for NOTATTACHED device */
  1243. usb_set_device_state(udev, status
  1244. ? USB_STATE_NOTATTACHED
  1245. : USB_STATE_DEFAULT);
  1246. return status;
  1247. }
  1248. dev_dbg (hub->intfdev,
  1249. "port %d not enabled, trying reset again...\n",
  1250. port1);
  1251. delay = HUB_LONG_RESET_TIME;
  1252. }
  1253. dev_err (hub->intfdev,
  1254. "Cannot enable port %i. Maybe the USB cable is bad?\n",
  1255. port1);
  1256. return status;
  1257. }
  1258. /*
  1259. * Disable a port and mark a logical connnect-change event, so that some
  1260. * time later khubd will disconnect() any existing usb_device on the port
  1261. * and will re-enumerate if there actually is a device attached.
  1262. */
  1263. static void hub_port_logical_disconnect(struct usb_hub *hub, int port1)
  1264. {
  1265. dev_dbg(hub->intfdev, "logical disconnect on port %d\n", port1);
  1266. hub_port_disable(hub, port1, 1);
  1267. /* FIXME let caller ask to power down the port:
  1268. * - some devices won't enumerate without a VBUS power cycle
  1269. * - SRP saves power that way
  1270. * - ... new call, TBD ...
  1271. * That's easy if this hub can switch power per-port, and
  1272. * khubd reactivates the port later (timer, SRP, etc).
  1273. * Powerdown must be optional, because of reset/DFU.
  1274. */
  1275. set_bit(port1, hub->change_bits);
  1276. kick_khubd(hub);
  1277. }
  1278. #ifdef CONFIG_PM
  1279. #ifdef CONFIG_USB_SUSPEND
  1280. /*
  1281. * Selective port suspend reduces power; most suspended devices draw
  1282. * less than 500 uA. It's also used in OTG, along with remote wakeup.
  1283. * All devices below the suspended port are also suspended.
  1284. *
  1285. * Devices leave suspend state when the host wakes them up. Some devices
  1286. * also support "remote wakeup", where the device can activate the USB
  1287. * tree above them to deliver data, such as a keypress or packet. In
  1288. * some cases, this wakes the USB host.
  1289. */
  1290. static int hub_port_suspend(struct usb_hub *hub, int port1,
  1291. struct usb_device *udev)
  1292. {
  1293. int status;
  1294. // dev_dbg(hub->intfdev, "suspend port %d\n", port1);
  1295. /* enable remote wakeup when appropriate; this lets the device
  1296. * wake up the upstream hub (including maybe the root hub).
  1297. *
  1298. * NOTE: OTG devices may issue remote wakeup (or SRP) even when
  1299. * we don't explicitly enable it here.
  1300. */
  1301. if (udev->do_remote_wakeup) {
  1302. status = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  1303. USB_REQ_SET_FEATURE, USB_RECIP_DEVICE,
  1304. USB_DEVICE_REMOTE_WAKEUP, 0,
  1305. NULL, 0,
  1306. USB_CTRL_SET_TIMEOUT);
  1307. if (status)
  1308. dev_dbg(&udev->dev,
  1309. "won't remote wakeup, status %d\n",
  1310. status);
  1311. }
  1312. /* see 7.1.7.6 */
  1313. status = set_port_feature(hub->hdev, port1, USB_PORT_FEAT_SUSPEND);
  1314. if (status) {
  1315. dev_dbg(hub->intfdev,
  1316. "can't suspend port %d, status %d\n",
  1317. port1, status);
  1318. /* paranoia: "should not happen" */
  1319. (void) usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  1320. USB_REQ_CLEAR_FEATURE, USB_RECIP_DEVICE,
  1321. USB_DEVICE_REMOTE_WAKEUP, 0,
  1322. NULL, 0,
  1323. USB_CTRL_SET_TIMEOUT);
  1324. } else {
  1325. /* device has up to 10 msec to fully suspend */
  1326. dev_dbg(&udev->dev, "usb %ssuspend\n",
  1327. udev->auto_pm ? "auto-" : "");
  1328. usb_set_device_state(udev, USB_STATE_SUSPENDED);
  1329. msleep(10);
  1330. }
  1331. return status;
  1332. }
  1333. /*
  1334. * Devices on USB hub ports have only one "suspend" state, corresponding
  1335. * to ACPI D2, "may cause the device to lose some context".
  1336. * State transitions include:
  1337. *
  1338. * - suspend, resume ... when the VBUS power link stays live
  1339. * - suspend, disconnect ... VBUS lost
  1340. *
  1341. * Once VBUS drop breaks the circuit, the port it's using has to go through
  1342. * normal re-enumeration procedures, starting with enabling VBUS power.
  1343. * Other than re-initializing the hub (plug/unplug, except for root hubs),
  1344. * Linux (2.6) currently has NO mechanisms to initiate that: no khubd
  1345. * timer, no SRP, no requests through sysfs.
  1346. *
  1347. * If CONFIG_USB_SUSPEND isn't enabled, devices only really suspend when
  1348. * the root hub for their bus goes into global suspend ... so we don't
  1349. * (falsely) update the device power state to say it suspended.
  1350. */
  1351. static int __usb_port_suspend (struct usb_device *udev, int port1)
  1352. {
  1353. int status = 0;
  1354. /* caller owns the udev device lock */
  1355. if (port1 < 0)
  1356. return port1;
  1357. /* we change the device's upstream USB link,
  1358. * but root hubs have no upstream USB link.
  1359. */
  1360. if (udev->parent)
  1361. status = hub_port_suspend(hdev_to_hub(udev->parent), port1,
  1362. udev);
  1363. else {
  1364. dev_dbg(&udev->dev, "usb %ssuspend\n",
  1365. udev->auto_pm ? "auto-" : "");
  1366. usb_set_device_state(udev, USB_STATE_SUSPENDED);
  1367. }
  1368. return status;
  1369. }
  1370. /*
  1371. * usb_port_suspend - suspend a usb device's upstream port
  1372. * @udev: device that's no longer in active use
  1373. * Context: must be able to sleep; device not locked; pm locks held
  1374. *
  1375. * Suspends a USB device that isn't in active use, conserving power.
  1376. * Devices may wake out of a suspend, if anything important happens,
  1377. * using the remote wakeup mechanism. They may also be taken out of
  1378. * suspend by the host, using usb_port_resume(). It's also routine
  1379. * to disconnect devices while they are suspended.
  1380. *
  1381. * This only affects the USB hardware for a device; its interfaces
  1382. * (and, for hubs, child devices) must already have been suspended.
  1383. *
  1384. * Suspending OTG devices may trigger HNP, if that's been enabled
  1385. * between a pair of dual-role devices. That will change roles, such
  1386. * as from A-Host to A-Peripheral or from B-Host back to B-Peripheral.
  1387. *
  1388. * Returns 0 on success, else negative errno.
  1389. */
  1390. int usb_port_suspend(struct usb_device *udev)
  1391. {
  1392. return __usb_port_suspend(udev, udev->portnum);
  1393. }
  1394. /*
  1395. * If the USB "suspend" state is in use (rather than "global suspend"),
  1396. * many devices will be individually taken out of suspend state using
  1397. * special" resume" signaling. These routines kick in shortly after
  1398. * hardware resume signaling is finished, either because of selective
  1399. * resume (by host) or remote wakeup (by device) ... now see what changed
  1400. * in the tree that's rooted at this device.
  1401. */
  1402. static int finish_port_resume(struct usb_device *udev)
  1403. {
  1404. int status;
  1405. u16 devstatus;
  1406. /* caller owns the udev device lock */
  1407. dev_dbg(&udev->dev, "finish resume\n");
  1408. /* usb ch9 identifies four variants of SUSPENDED, based on what
  1409. * state the device resumes to. Linux currently won't see the
  1410. * first two on the host side; they'd be inside hub_port_init()
  1411. * during many timeouts, but khubd can't suspend until later.
  1412. */
  1413. usb_set_device_state(udev, udev->actconfig
  1414. ? USB_STATE_CONFIGURED
  1415. : USB_STATE_ADDRESS);
  1416. /* 10.5.4.5 says be sure devices in the tree are still there.
  1417. * For now let's assume the device didn't go crazy on resume,
  1418. * and device drivers will know about any resume quirks.
  1419. */
  1420. status = usb_get_status(udev, USB_RECIP_DEVICE, 0, &devstatus);
  1421. if (status >= 0)
  1422. status = (status == 2 ? 0 : -ENODEV);
  1423. if (status)
  1424. dev_dbg(&udev->dev,
  1425. "gone after usb resume? status %d\n",
  1426. status);
  1427. else if (udev->actconfig) {
  1428. le16_to_cpus(&devstatus);
  1429. if ((devstatus & (1 << USB_DEVICE_REMOTE_WAKEUP))
  1430. && udev->parent) {
  1431. status = usb_control_msg(udev,
  1432. usb_sndctrlpipe(udev, 0),
  1433. USB_REQ_CLEAR_FEATURE,
  1434. USB_RECIP_DEVICE,
  1435. USB_DEVICE_REMOTE_WAKEUP, 0,
  1436. NULL, 0,
  1437. USB_CTRL_SET_TIMEOUT);
  1438. if (status)
  1439. dev_dbg(&udev->dev, "disable remote "
  1440. "wakeup, status %d\n", status);
  1441. }
  1442. status = 0;
  1443. } else if (udev->devnum <= 0) {
  1444. dev_dbg(&udev->dev, "bogus resume!\n");
  1445. status = -EINVAL;
  1446. }
  1447. return status;
  1448. }
  1449. static int
  1450. hub_port_resume(struct usb_hub *hub, int port1, struct usb_device *udev)
  1451. {
  1452. int status;
  1453. // dev_dbg(hub->intfdev, "resume port %d\n", port1);
  1454. set_bit(port1, hub->busy_bits);
  1455. /* see 7.1.7.7; affects power usage, but not budgeting */
  1456. status = clear_port_feature(hub->hdev,
  1457. port1, USB_PORT_FEAT_SUSPEND);
  1458. if (status) {
  1459. dev_dbg(hub->intfdev,
  1460. "can't resume port %d, status %d\n",
  1461. port1, status);
  1462. } else {
  1463. u16 devstatus;
  1464. u16 portchange;
  1465. /* drive resume for at least 20 msec */
  1466. if (udev)
  1467. dev_dbg(&udev->dev, "usb %sresume\n",
  1468. udev->auto_pm ? "auto-" : "");
  1469. msleep(25);
  1470. #define LIVE_FLAGS ( USB_PORT_STAT_POWER \
  1471. | USB_PORT_STAT_ENABLE \
  1472. | USB_PORT_STAT_CONNECTION)
  1473. /* Virtual root hubs can trigger on GET_PORT_STATUS to
  1474. * stop resume signaling. Then finish the resume
  1475. * sequence.
  1476. */
  1477. devstatus = portchange = 0;
  1478. status = hub_port_status(hub, port1,
  1479. &devstatus, &portchange);
  1480. if (status < 0
  1481. || (devstatus & LIVE_FLAGS) != LIVE_FLAGS
  1482. || (devstatus & USB_PORT_STAT_SUSPEND) != 0
  1483. ) {
  1484. dev_dbg(hub->intfdev,
  1485. "port %d status %04x.%04x after resume, %d\n",
  1486. port1, portchange, devstatus, status);
  1487. if (status >= 0)
  1488. status = -ENODEV;
  1489. } else {
  1490. if (portchange & USB_PORT_STAT_C_SUSPEND)
  1491. clear_port_feature(hub->hdev, port1,
  1492. USB_PORT_FEAT_C_SUSPEND);
  1493. /* TRSMRCY = 10 msec */
  1494. msleep(10);
  1495. if (udev)
  1496. status = finish_port_resume(udev);
  1497. }
  1498. }
  1499. if (status < 0)
  1500. hub_port_logical_disconnect(hub, port1);
  1501. clear_bit(port1, hub->busy_bits);
  1502. if (!hub->hdev->parent && !hub->busy_bits[0])
  1503. usb_enable_root_hub_irq(hub->hdev->bus);
  1504. return status;
  1505. }
  1506. /*
  1507. * usb_port_resume - re-activate a suspended usb device's upstream port
  1508. * @udev: device to re-activate
  1509. * Context: must be able to sleep; device not locked; pm locks held
  1510. *
  1511. * This will re-activate the suspended device, increasing power usage
  1512. * while letting drivers communicate again with its endpoints.
  1513. * USB resume explicitly guarantees that the power session between
  1514. * the host and the device is the same as it was when the device
  1515. * suspended.
  1516. *
  1517. * Returns 0 on success, else negative errno.
  1518. */
  1519. int usb_port_resume(struct usb_device *udev)
  1520. {
  1521. int status;
  1522. /* we change the device's upstream USB link,
  1523. * but root hubs have no upstream USB link.
  1524. */
  1525. if (udev->parent) {
  1526. // NOTE this fails if parent is also suspended...
  1527. status = hub_port_resume(hdev_to_hub(udev->parent),
  1528. udev->portnum, udev);
  1529. } else {
  1530. dev_dbg(&udev->dev, "usb %sresume\n",
  1531. udev->auto_pm ? "auto-" : "");
  1532. status = finish_port_resume(udev);
  1533. }
  1534. if (status < 0)
  1535. dev_dbg(&udev->dev, "can't resume, status %d\n", status);
  1536. return status;
  1537. }
  1538. static int remote_wakeup(struct usb_device *udev)
  1539. {
  1540. int status = 0;
  1541. /* All this just to avoid sending a port-resume message
  1542. * to the parent hub! */
  1543. usb_lock_device(udev);
  1544. usb_pm_lock(udev);
  1545. if (udev->state == USB_STATE_SUSPENDED) {
  1546. dev_dbg(&udev->dev, "usb %sresume\n", "wakeup-");
  1547. /* TRSMRCY = 10 msec */
  1548. msleep(10);
  1549. status = finish_port_resume(udev);
  1550. if (status == 0)
  1551. udev->dev.power.power_state.event = PM_EVENT_ON;
  1552. }
  1553. usb_pm_unlock(udev);
  1554. if (status == 0)
  1555. usb_autoresume_device(udev, 0);
  1556. usb_unlock_device(udev);
  1557. return status;
  1558. }
  1559. #else /* CONFIG_USB_SUSPEND */
  1560. /* When CONFIG_USB_SUSPEND isn't set, we never suspend or resume any ports. */
  1561. int usb_port_suspend(struct usb_device *udev)
  1562. {
  1563. return 0;
  1564. }
  1565. static inline int
  1566. finish_port_resume(struct usb_device *udev)
  1567. {
  1568. return 0;
  1569. }
  1570. static inline int
  1571. hub_port_resume(struct usb_hub *hub, int port1, struct usb_device *udev)
  1572. {
  1573. return 0;
  1574. }
  1575. int usb_port_resume(struct usb_device *udev)
  1576. {
  1577. return 0;
  1578. }
  1579. static inline int remote_wakeup(struct usb_device *udev)
  1580. {
  1581. return 0;
  1582. }
  1583. #endif
  1584. static int hub_suspend(struct usb_interface *intf, pm_message_t msg)
  1585. {
  1586. struct usb_hub *hub = usb_get_intfdata (intf);
  1587. struct usb_device *hdev = hub->hdev;
  1588. unsigned port1;
  1589. /* fail if children aren't already suspended */
  1590. for (port1 = 1; port1 <= hdev->maxchild; port1++) {
  1591. struct usb_device *udev;
  1592. udev = hdev->children [port1-1];
  1593. if (udev && msg.event == PM_EVENT_SUSPEND &&
  1594. #ifdef CONFIG_USB_SUSPEND
  1595. udev->state != USB_STATE_SUSPENDED
  1596. #else
  1597. udev->dev.power.power_state.event
  1598. == PM_EVENT_ON
  1599. #endif
  1600. ) {
  1601. if (!hdev->auto_pm)
  1602. dev_dbg(&intf->dev, "port %d nyet suspended\n",
  1603. port1);
  1604. return -EBUSY;
  1605. }
  1606. }
  1607. /* "global suspend" of the downstream HC-to-USB interface */
  1608. if (!hdev->parent) {
  1609. struct usb_bus *bus = hdev->bus;
  1610. if (bus) {
  1611. int status = hcd_bus_suspend (bus);
  1612. if (status != 0) {
  1613. dev_dbg(&hdev->dev, "'global' suspend %d\n",
  1614. status);
  1615. return status;
  1616. }
  1617. } else
  1618. return -EOPNOTSUPP;
  1619. }
  1620. /* stop khubd and related activity */
  1621. hub_quiesce(hub);
  1622. return 0;
  1623. }
  1624. static int hub_resume(struct usb_interface *intf)
  1625. {
  1626. struct usb_device *hdev = interface_to_usbdev(intf);
  1627. struct usb_hub *hub = usb_get_intfdata (intf);
  1628. int status;
  1629. /* "global resume" of the downstream HC-to-USB interface */
  1630. if (!hdev->parent) {
  1631. struct usb_bus *bus = hdev->bus;
  1632. if (bus) {
  1633. status = hcd_bus_resume (bus);
  1634. if (status) {
  1635. dev_dbg(&intf->dev, "'global' resume %d\n",
  1636. status);
  1637. return status;
  1638. }
  1639. } else
  1640. return -EOPNOTSUPP;
  1641. if (status == 0) {
  1642. /* TRSMRCY = 10 msec */
  1643. msleep(10);
  1644. }
  1645. }
  1646. /* tell khubd to look for changes on this hub */
  1647. hub_activate(hub);
  1648. return 0;
  1649. }
  1650. #else /* CONFIG_PM */
  1651. static inline int remote_wakeup(struct usb_device *udev)
  1652. {
  1653. return 0;
  1654. }
  1655. #define hub_suspend NULL
  1656. #define hub_resume NULL
  1657. #endif
  1658. void usb_resume_root_hub(struct usb_device *hdev)
  1659. {
  1660. struct usb_hub *hub = hdev_to_hub(hdev);
  1661. hub->resume_root_hub = 1;
  1662. kick_khubd(hub);
  1663. }
  1664. /* USB 2.0 spec, 7.1.7.3 / fig 7-29:
  1665. *
  1666. * Between connect detection and reset signaling there must be a delay
  1667. * of 100ms at least for debounce and power-settling. The corresponding
  1668. * timer shall restart whenever the downstream port detects a disconnect.
  1669. *
  1670. * Apparently there are some bluetooth and irda-dongles and a number of
  1671. * low-speed devices for which this debounce period may last over a second.
  1672. * Not covered by the spec - but easy to deal with.
  1673. *
  1674. * This implementation uses a 1500ms total debounce timeout; if the
  1675. * connection isn't stable by then it returns -ETIMEDOUT. It checks
  1676. * every 25ms for transient disconnects. When the port status has been
  1677. * unchanged for 100ms it returns the port status.
  1678. */
  1679. #define HUB_DEBOUNCE_TIMEOUT 1500
  1680. #define HUB_DEBOUNCE_STEP 25
  1681. #define HUB_DEBOUNCE_STABLE 100
  1682. static int hub_port_debounce(struct usb_hub *hub, int port1)
  1683. {
  1684. int ret;
  1685. int total_time, stable_time = 0;
  1686. u16 portchange, portstatus;
  1687. unsigned connection = 0xffff;
  1688. for (total_time = 0; ; total_time += HUB_DEBOUNCE_STEP) {
  1689. ret = hub_port_status(hub, port1, &portstatus, &portchange);
  1690. if (ret < 0)
  1691. return ret;
  1692. if (!(portchange & USB_PORT_STAT_C_CONNECTION) &&
  1693. (portstatus & USB_PORT_STAT_CONNECTION) == connection) {
  1694. stable_time += HUB_DEBOUNCE_STEP;
  1695. if (stable_time >= HUB_DEBOUNCE_STABLE)
  1696. break;
  1697. } else {
  1698. stable_time = 0;
  1699. connection = portstatus & USB_PORT_STAT_CONNECTION;
  1700. }
  1701. if (portchange & USB_PORT_STAT_C_CONNECTION) {
  1702. clear_port_feature(hub->hdev, port1,
  1703. USB_PORT_FEAT_C_CONNECTION);
  1704. }
  1705. if (total_time >= HUB_DEBOUNCE_TIMEOUT)
  1706. break;
  1707. msleep(HUB_DEBOUNCE_STEP);
  1708. }
  1709. dev_dbg (hub->intfdev,
  1710. "debounce: port %d: total %dms stable %dms status 0x%x\n",
  1711. port1, total_time, stable_time, portstatus);
  1712. if (stable_time < HUB_DEBOUNCE_STABLE)
  1713. return -ETIMEDOUT;
  1714. return portstatus;
  1715. }
  1716. static void ep0_reinit(struct usb_device *udev)
  1717. {
  1718. usb_disable_endpoint(udev, 0 + USB_DIR_IN);
  1719. usb_disable_endpoint(udev, 0 + USB_DIR_OUT);
  1720. udev->ep_in[0] = udev->ep_out[0] = &udev->ep0;
  1721. }
  1722. #define usb_sndaddr0pipe() (PIPE_CONTROL << 30)
  1723. #define usb_rcvaddr0pipe() ((PIPE_CONTROL << 30) | USB_DIR_IN)
  1724. static int hub_set_address(struct usb_device *udev)
  1725. {
  1726. int retval;
  1727. if (udev->devnum == 0)
  1728. return -EINVAL;
  1729. if (udev->state == USB_STATE_ADDRESS)
  1730. return 0;
  1731. if (udev->state != USB_STATE_DEFAULT)
  1732. return -EINVAL;
  1733. retval = usb_control_msg(udev, usb_sndaddr0pipe(),
  1734. USB_REQ_SET_ADDRESS, 0, udev->devnum, 0,
  1735. NULL, 0, USB_CTRL_SET_TIMEOUT);
  1736. if (retval == 0) {
  1737. usb_set_device_state(udev, USB_STATE_ADDRESS);
  1738. ep0_reinit(udev);
  1739. }
  1740. return retval;
  1741. }
  1742. /* Reset device, (re)assign address, get device descriptor.
  1743. * Device connection must be stable, no more debouncing needed.
  1744. * Returns device in USB_STATE_ADDRESS, except on error.
  1745. *
  1746. * If this is called for an already-existing device (as part of
  1747. * usb_reset_device), the caller must own the device lock. For a
  1748. * newly detected device that is not accessible through any global
  1749. * pointers, it's not necessary to lock the device.
  1750. */
  1751. static int
  1752. hub_port_init (struct usb_hub *hub, struct usb_device *udev, int port1,
  1753. int retry_counter)
  1754. {
  1755. static DEFINE_MUTEX(usb_address0_mutex);
  1756. struct usb_device *hdev = hub->hdev;
  1757. int i, j, retval;
  1758. unsigned delay = HUB_SHORT_RESET_TIME;
  1759. enum usb_device_speed oldspeed = udev->speed;
  1760. char *speed, *type;
  1761. /* root hub ports have a slightly longer reset period
  1762. * (from USB 2.0 spec, section 7.1.7.5)
  1763. */
  1764. if (!hdev->parent) {
  1765. delay = HUB_ROOT_RESET_TIME;
  1766. if (port1 == hdev->bus->otg_port)
  1767. hdev->bus->b_hnp_enable = 0;
  1768. }
  1769. /* Some low speed devices have problems with the quick delay, so */
  1770. /* be a bit pessimistic with those devices. RHbug #23670 */
  1771. if (oldspeed == USB_SPEED_LOW)
  1772. delay = HUB_LONG_RESET_TIME;
  1773. mutex_lock(&usb_address0_mutex);
  1774. /* Reset the device; full speed may morph to high speed */
  1775. retval = hub_port_reset(hub, port1, udev, delay);
  1776. if (retval < 0) /* error or disconnect */
  1777. goto fail;
  1778. /* success, speed is known */
  1779. retval = -ENODEV;
  1780. if (oldspeed != USB_SPEED_UNKNOWN && oldspeed != udev->speed) {
  1781. dev_dbg(&udev->dev, "device reset changed speed!\n");
  1782. goto fail;
  1783. }
  1784. oldspeed = udev->speed;
  1785. /* USB 2.0 section 5.5.3 talks about ep0 maxpacket ...
  1786. * it's fixed size except for full speed devices.
  1787. * For Wireless USB devices, ep0 max packet is always 512 (tho
  1788. * reported as 0xff in the device descriptor). WUSB1.0[4.8.1].
  1789. */
  1790. switch (udev->speed) {
  1791. case USB_SPEED_VARIABLE: /* fixed at 512 */
  1792. udev->ep0.desc.wMaxPacketSize = __constant_cpu_to_le16(512);
  1793. break;
  1794. case USB_SPEED_HIGH: /* fixed at 64 */
  1795. udev->ep0.desc.wMaxPacketSize = __constant_cpu_to_le16(64);
  1796. break;
  1797. case USB_SPEED_FULL: /* 8, 16, 32, or 64 */
  1798. /* to determine the ep0 maxpacket size, try to read
  1799. * the device descriptor to get bMaxPacketSize0 and
  1800. * then correct our initial guess.
  1801. */
  1802. udev->ep0.desc.wMaxPacketSize = __constant_cpu_to_le16(64);
  1803. break;
  1804. case USB_SPEED_LOW: /* fixed at 8 */
  1805. udev->ep0.desc.wMaxPacketSize = __constant_cpu_to_le16(8);
  1806. break;
  1807. default:
  1808. goto fail;
  1809. }
  1810. type = "";
  1811. switch (udev->speed) {
  1812. case USB_SPEED_LOW: speed = "low"; break;
  1813. case USB_SPEED_FULL: speed = "full"; break;
  1814. case USB_SPEED_HIGH: speed = "high"; break;
  1815. case USB_SPEED_VARIABLE:
  1816. speed = "variable";
  1817. type = "Wireless ";
  1818. break;
  1819. default: speed = "?"; break;
  1820. }
  1821. dev_info (&udev->dev,
  1822. "%s %s speed %sUSB device using %s and address %d\n",
  1823. (udev->config) ? "reset" : "new", speed, type,
  1824. udev->bus->controller->driver->name, udev->devnum);
  1825. /* Set up TT records, if needed */
  1826. if (hdev->tt) {
  1827. udev->tt = hdev->tt;
  1828. udev->ttport = hdev->ttport;
  1829. } else if (udev->speed != USB_SPEED_HIGH
  1830. && hdev->speed == USB_SPEED_HIGH) {
  1831. udev->tt = &hub->tt;
  1832. udev->ttport = port1;
  1833. }
  1834. /* Why interleave GET_DESCRIPTOR and SET_ADDRESS this way?
  1835. * Because device hardware and firmware is sometimes buggy in
  1836. * this area, and this is how Linux has done it for ages.
  1837. * Change it cautiously.
  1838. *
  1839. * NOTE: If USE_NEW_SCHEME() is true we will start by issuing
  1840. * a 64-byte GET_DESCRIPTOR request. This is what Windows does,
  1841. * so it may help with some non-standards-compliant devices.
  1842. * Otherwise we start with SET_ADDRESS and then try to read the
  1843. * first 8 bytes of the device descriptor to get the ep0 maxpacket
  1844. * value.
  1845. */
  1846. for (i = 0; i < GET_DESCRIPTOR_TRIES; (++i, msleep(100))) {
  1847. if (USE_NEW_SCHEME(retry_counter)) {
  1848. struct usb_device_descriptor *buf;
  1849. int r = 0;
  1850. #define GET_DESCRIPTOR_BUFSIZE 64
  1851. buf = kmalloc(GET_DESCRIPTOR_BUFSIZE, GFP_NOIO);
  1852. if (!buf) {
  1853. retval = -ENOMEM;
  1854. continue;
  1855. }
  1856. /* Use a short timeout the first time through,
  1857. * so that recalcitrant full-speed devices with
  1858. * 8- or 16-byte ep0-maxpackets won't slow things
  1859. * down tremendously by NAKing the unexpectedly
  1860. * early status stage. Also, retry on all errors;
  1861. * some devices are flakey.
  1862. * 255 is for WUSB devices, we actually need to use 512.
  1863. * WUSB1.0[4.8.1].
  1864. */
  1865. for (j = 0; j < 3; ++j) {
  1866. buf->bMaxPacketSize0 = 0;
  1867. r = usb_control_msg(udev, usb_rcvaddr0pipe(),
  1868. USB_REQ_GET_DESCRIPTOR, USB_DIR_IN,
  1869. USB_DT_DEVICE << 8, 0,
  1870. buf, GET_DESCRIPTOR_BUFSIZE,
  1871. (i ? USB_CTRL_GET_TIMEOUT : 1000));
  1872. switch (buf->bMaxPacketSize0) {
  1873. case 8: case 16: case 32: case 64: case 255:
  1874. if (buf->bDescriptorType ==
  1875. USB_DT_DEVICE) {
  1876. r = 0;
  1877. break;
  1878. }
  1879. /* FALL THROUGH */
  1880. default:
  1881. if (r == 0)
  1882. r = -EPROTO;
  1883. break;
  1884. }
  1885. if (r == 0)
  1886. break;
  1887. }
  1888. udev->descriptor.bMaxPacketSize0 =
  1889. buf->bMaxPacketSize0;
  1890. kfree(buf);
  1891. retval = hub_port_reset(hub, port1, udev, delay);
  1892. if (retval < 0) /* error or disconnect */
  1893. goto fail;
  1894. if (oldspeed != udev->speed) {
  1895. dev_dbg(&udev->dev,
  1896. "device reset changed speed!\n");
  1897. retval = -ENODEV;
  1898. goto fail;
  1899. }
  1900. if (r) {
  1901. dev_err(&udev->dev, "device descriptor "
  1902. "read/%s, error %d\n",
  1903. "64", r);
  1904. retval = -EMSGSIZE;
  1905. continue;
  1906. }
  1907. #undef GET_DESCRIPTOR_BUFSIZE
  1908. }
  1909. for (j = 0; j < SET_ADDRESS_TRIES; ++j) {
  1910. retval = hub_set_address(udev);
  1911. if (retval >= 0)
  1912. break;
  1913. msleep(200);
  1914. }
  1915. if (retval < 0) {
  1916. dev_err(&udev->dev,
  1917. "device not accepting address %d, error %d\n",
  1918. udev->devnum, retval);
  1919. goto fail;
  1920. }
  1921. /* cope with hardware quirkiness:
  1922. * - let SET_ADDRESS settle, some device hardware wants it
  1923. * - read ep0 maxpacket even for high and low speed,
  1924. */
  1925. msleep(10);
  1926. if (USE_NEW_SCHEME(retry_counter))
  1927. break;
  1928. retval = usb_get_device_descriptor(udev, 8);
  1929. if (retval < 8) {
  1930. dev_err(&udev->dev, "device descriptor "
  1931. "read/%s, error %d\n",
  1932. "8", retval);
  1933. if (retval >= 0)
  1934. retval = -EMSGSIZE;
  1935. } else {
  1936. retval = 0;
  1937. break;
  1938. }
  1939. }
  1940. if (retval)
  1941. goto fail;
  1942. i = udev->descriptor.bMaxPacketSize0 == 0xff?
  1943. 512 : udev->descriptor.bMaxPacketSize0;
  1944. if (le16_to_cpu(udev->ep0.desc.wMaxPacketSize) != i) {
  1945. if (udev->speed != USB_SPEED_FULL ||
  1946. !(i == 8 || i == 16 || i == 32 || i == 64)) {
  1947. dev_err(&udev->dev, "ep0 maxpacket = %d\n", i);
  1948. retval = -EMSGSIZE;
  1949. goto fail;
  1950. }
  1951. dev_dbg(&udev->dev, "ep0 maxpacket = %d\n", i);
  1952. udev->ep0.desc.wMaxPacketSize = cpu_to_le16(i);
  1953. ep0_reinit(udev);
  1954. }
  1955. retval = usb_get_device_descriptor(udev, USB_DT_DEVICE_SIZE);
  1956. if (retval < (signed)sizeof(udev->descriptor)) {
  1957. dev_err(&udev->dev, "device descriptor read/%s, error %d\n",
  1958. "all", retval);
  1959. if (retval >= 0)
  1960. retval = -ENOMSG;
  1961. goto fail;
  1962. }
  1963. retval = 0;
  1964. fail:
  1965. if (retval)
  1966. hub_port_disable(hub, port1, 0);
  1967. mutex_unlock(&usb_address0_mutex);
  1968. return retval;
  1969. }
  1970. static void
  1971. check_highspeed (struct usb_hub *hub, struct usb_device *udev, int port1)
  1972. {
  1973. struct usb_qualifier_descriptor *qual;
  1974. int status;
  1975. qual = kmalloc (sizeof *qual, SLAB_KERNEL);
  1976. if (qual == NULL)
  1977. return;
  1978. status = usb_get_descriptor (udev, USB_DT_DEVICE_QUALIFIER, 0,
  1979. qual, sizeof *qual);
  1980. if (status == sizeof *qual) {
  1981. dev_info(&udev->dev, "not running at top speed; "
  1982. "connect to a high speed hub\n");
  1983. /* hub LEDs are probably harder to miss than syslog */
  1984. if (hub->has_indicators) {
  1985. hub->indicator[port1-1] = INDICATOR_GREEN_BLINK;
  1986. schedule_work (&hub->leds);
  1987. }
  1988. }
  1989. kfree(qual);
  1990. }
  1991. static unsigned
  1992. hub_power_remaining (struct usb_hub *hub)
  1993. {
  1994. struct usb_device *hdev = hub->hdev;
  1995. int remaining;
  1996. int port1;
  1997. if (!hub->limited_power)
  1998. return 0;
  1999. remaining = hdev->bus_mA - hub->descriptor->bHubContrCurrent;
  2000. for (port1 = 1; port1 <= hdev->maxchild; ++port1) {
  2001. struct usb_device *udev = hdev->children[port1 - 1];
  2002. int delta;
  2003. if (!udev)
  2004. continue;
  2005. /* Unconfigured devices may not use more than 100mA,
  2006. * or 8mA for OTG ports */
  2007. if (udev->actconfig)
  2008. delta = udev->actconfig->desc.bMaxPower * 2;
  2009. else if (port1 != udev->bus->otg_port || hdev->parent)
  2010. delta = 100;
  2011. else
  2012. delta = 8;
  2013. if (delta > hub->mA_per_port)
  2014. dev_warn(&udev->dev, "%dmA is over %umA budget "
  2015. "for port %d!\n",
  2016. delta, hub->mA_per_port, port1);
  2017. remaining -= delta;
  2018. }
  2019. if (remaining < 0) {
  2020. dev_warn(hub->intfdev, "%dmA over power budget!\n",
  2021. - remaining);
  2022. remaining = 0;
  2023. }
  2024. return remaining;
  2025. }
  2026. /* Handle physical or logical connection change events.
  2027. * This routine is called when:
  2028. * a port connection-change occurs;
  2029. * a port enable-change occurs (often caused by EMI);
  2030. * usb_reset_device() encounters changed descriptors (as from
  2031. * a firmware download)
  2032. * caller already locked the hub
  2033. */
  2034. static void hub_port_connect_change(struct usb_hub *hub, int port1,
  2035. u16 portstatus, u16 portchange)
  2036. {
  2037. struct usb_device *hdev = hub->hdev;
  2038. struct device *hub_dev = hub->intfdev;
  2039. u16 wHubCharacteristics = le16_to_cpu(hub->descriptor->wHubCharacteristics);
  2040. int status, i;
  2041. dev_dbg (hub_dev,
  2042. "port %d, status %04x, change %04x, %s\n",
  2043. port1, portstatus, portchange, portspeed (portstatus));
  2044. if (hub->has_indicators) {
  2045. set_port_led(hub, port1, HUB_LED_AUTO);
  2046. hub->indicator[port1-1] = INDICATOR_AUTO;
  2047. }
  2048. /* Disconnect any existing devices under this port */
  2049. if (hdev->children[port1-1])
  2050. usb_disconnect(&hdev->children[port1-1]);
  2051. clear_bit(port1, hub->change_bits);
  2052. #ifdef CONFIG_USB_OTG
  2053. /* during HNP, don't repeat the debounce */
  2054. if (hdev->bus->is_b_host)
  2055. portchange &= ~USB_PORT_STAT_C_CONNECTION;
  2056. #endif
  2057. if (portchange & USB_PORT_STAT_C_CONNECTION) {
  2058. status = hub_port_debounce(hub, port1);
  2059. if (status < 0) {
  2060. dev_err (hub_dev,
  2061. "connect-debounce failed, port %d disabled\n",
  2062. port1);
  2063. goto done;
  2064. }
  2065. portstatus = status;
  2066. }
  2067. /* Return now if nothing is connected */
  2068. if (!(portstatus & USB_PORT_STAT_CONNECTION)) {
  2069. /* maybe switch power back on (e.g. root hub was reset) */
  2070. if ((wHubCharacteristics & HUB_CHAR_LPSM) < 2
  2071. && !(portstatus & (1 << USB_PORT_FEAT_POWER)))
  2072. set_port_feature(hdev, port1, USB_PORT_FEAT_POWER);
  2073. if (portstatus & USB_PORT_STAT_ENABLE)
  2074. goto done;
  2075. return;
  2076. }
  2077. #ifdef CONFIG_USB_SUSPEND
  2078. /* If something is connected, but the port is suspended, wake it up. */
  2079. if (portstatus & USB_PORT_STAT_SUSPEND) {
  2080. status = hub_port_resume(hub, port1, NULL);
  2081. if (status < 0) {
  2082. dev_dbg(hub_dev,
  2083. "can't clear suspend on port %d; %d\n",
  2084. port1, status);
  2085. goto done;
  2086. }
  2087. }
  2088. #endif
  2089. for (i = 0; i < SET_CONFIG_TRIES; i++) {
  2090. struct usb_device *udev;
  2091. /* reallocate for each attempt, since references
  2092. * to the previous one can escape in various ways
  2093. */
  2094. udev = usb_alloc_dev(hdev, hdev->bus, port1);
  2095. if (!udev) {
  2096. dev_err (hub_dev,
  2097. "couldn't allocate port %d usb_device\n",
  2098. port1);
  2099. goto done;
  2100. }
  2101. usb_set_device_state(udev, USB_STATE_POWERED);
  2102. udev->speed = USB_SPEED_UNKNOWN;
  2103. udev->bus_mA = hub->mA_per_port;
  2104. udev->level = hdev->level + 1;
  2105. /* set the address */
  2106. choose_address(udev);
  2107. if (udev->devnum <= 0) {
  2108. status = -ENOTCONN; /* Don't retry */
  2109. goto loop;
  2110. }
  2111. /* reset and get descriptor */
  2112. status = hub_port_init(hub, udev, port1, i);
  2113. if (status < 0)
  2114. goto loop;
  2115. /* consecutive bus-powered hubs aren't reliable; they can
  2116. * violate the voltage drop budget. if the new child has
  2117. * a "powered" LED, users should notice we didn't enable it
  2118. * (without reading syslog), even without per-port LEDs
  2119. * on the parent.
  2120. */
  2121. if (udev->descriptor.bDeviceClass == USB_CLASS_HUB
  2122. && udev->bus_mA <= 100) {
  2123. u16 devstat;
  2124. status = usb_get_status(udev, USB_RECIP_DEVICE, 0,
  2125. &devstat);
  2126. if (status < 2) {
  2127. dev_dbg(&udev->dev, "get status %d ?\n", status);
  2128. goto loop_disable;
  2129. }
  2130. le16_to_cpus(&devstat);
  2131. if ((devstat & (1 << USB_DEVICE_SELF_POWERED)) == 0) {
  2132. dev_err(&udev->dev,
  2133. "can't connect bus-powered hub "
  2134. "to this port\n");
  2135. if (hub->has_indicators) {
  2136. hub->indicator[port1-1] =
  2137. INDICATOR_AMBER_BLINK;
  2138. schedule_work (&hub->leds);
  2139. }
  2140. status = -ENOTCONN; /* Don't retry */
  2141. goto loop_disable;
  2142. }
  2143. }
  2144. /* check for devices running slower than they could */
  2145. if (le16_to_cpu(udev->descriptor.bcdUSB) >= 0x0200
  2146. && udev->speed == USB_SPEED_FULL
  2147. && highspeed_hubs != 0)
  2148. check_highspeed (hub, udev, port1);
  2149. /* Store the parent's children[] pointer. At this point
  2150. * udev becomes globally accessible, although presumably
  2151. * no one will look at it until hdev is unlocked.
  2152. */
  2153. status = 0;
  2154. /* We mustn't add new devices if the parent hub has
  2155. * been disconnected; we would race with the
  2156. * recursively_mark_NOTATTACHED() routine.
  2157. */
  2158. spin_lock_irq(&device_state_lock);
  2159. if (hdev->state == USB_STATE_NOTATTACHED)
  2160. status = -ENOTCONN;
  2161. else
  2162. hdev->children[port1-1] = udev;
  2163. spin_unlock_irq(&device_state_lock);
  2164. /* Run it through the hoops (find a driver, etc) */
  2165. if (!status) {
  2166. status = usb_new_device(udev);
  2167. if (status) {
  2168. spin_lock_irq(&device_state_lock);
  2169. hdev->children[port1-1] = NULL;
  2170. spin_unlock_irq(&device_state_lock);
  2171. }
  2172. }
  2173. if (status)
  2174. goto loop_disable;
  2175. status = hub_power_remaining(hub);
  2176. if (status)
  2177. dev_dbg(hub_dev, "%dmA power budget left\n", status);
  2178. return;
  2179. loop_disable:
  2180. hub_port_disable(hub, port1, 1);
  2181. loop:
  2182. ep0_reinit(udev);
  2183. release_address(udev);
  2184. usb_put_dev(udev);
  2185. if (status == -ENOTCONN)
  2186. break;
  2187. }
  2188. done:
  2189. hub_port_disable(hub, port1, 1);
  2190. }
  2191. static void hub_events(void)
  2192. {
  2193. struct list_head *tmp;
  2194. struct usb_device *hdev;
  2195. struct usb_interface *intf;
  2196. struct usb_hub *hub;
  2197. struct device *hub_dev;
  2198. u16 hubstatus;
  2199. u16 hubchange;
  2200. u16 portstatus;
  2201. u16 portchange;
  2202. int i, ret;
  2203. int connect_change;
  2204. /*
  2205. * We restart the list every time to avoid a deadlock with
  2206. * deleting hubs downstream from this one. This should be
  2207. * safe since we delete the hub from the event list.
  2208. * Not the most efficient, but avoids deadlocks.
  2209. */
  2210. while (1) {
  2211. /* Grab the first entry at the beginning of the list */
  2212. spin_lock_irq(&hub_event_lock);
  2213. if (list_empty(&hub_event_list)) {
  2214. spin_unlock_irq(&hub_event_lock);
  2215. break;
  2216. }
  2217. tmp = hub_event_list.next;
  2218. list_del_init(tmp);
  2219. hub = list_entry(tmp, struct usb_hub, event_list);
  2220. hdev = hub->hdev;
  2221. intf = to_usb_interface(hub->intfdev);
  2222. hub_dev = &intf->dev;
  2223. i = hub->resume_root_hub;
  2224. dev_dbg(hub_dev, "state %d ports %d chg %04x evt %04x%s\n",
  2225. hdev->state, hub->descriptor
  2226. ? hub->descriptor->bNbrPorts
  2227. : 0,
  2228. /* NOTE: expects max 15 ports... */
  2229. (u16) hub->change_bits[0],
  2230. (u16) hub->event_bits[0],
  2231. i ? ", resume root" : "");
  2232. usb_get_intf(intf);
  2233. spin_unlock_irq(&hub_event_lock);
  2234. /* Lock the device, then check to see if we were
  2235. * disconnected while waiting for the lock to succeed. */
  2236. if (locktree(hdev) < 0) {
  2237. usb_put_intf(intf);
  2238. continue;
  2239. }
  2240. if (hub != usb_get_intfdata(intf))
  2241. goto loop;
  2242. /* If the hub has died, clean up after it */
  2243. if (hdev->state == USB_STATE_NOTATTACHED) {
  2244. hub->error = -ENODEV;
  2245. hub_pre_reset(intf);
  2246. goto loop;
  2247. }
  2248. /* Is this is a root hub wanting to reactivate the downstream
  2249. * ports? If so, be sure the interface resumes even if its
  2250. * stub "device" node was never suspended.
  2251. */
  2252. if (i)
  2253. usb_autoresume_device(hdev, 0);
  2254. /* If this is an inactive or suspended hub, do nothing */
  2255. if (hub->quiescing)
  2256. goto loop;
  2257. if (hub->error) {
  2258. dev_dbg (hub_dev, "resetting for error %d\n",
  2259. hub->error);
  2260. ret = usb_reset_composite_device(hdev, intf);
  2261. if (ret) {
  2262. dev_dbg (hub_dev,
  2263. "error resetting hub: %d\n", ret);
  2264. goto loop;
  2265. }
  2266. hub->nerrors = 0;
  2267. hub->error = 0;
  2268. }
  2269. /* deal with port status changes */
  2270. for (i = 1; i <= hub->descriptor->bNbrPorts; i++) {
  2271. if (test_bit(i, hub->busy_bits))
  2272. continue;
  2273. connect_change = test_bit(i, hub->change_bits);
  2274. if (!test_and_clear_bit(i, hub->event_bits) &&
  2275. !connect_change && !hub->activating)
  2276. continue;
  2277. ret = hub_port_status(hub, i,
  2278. &portstatus, &portchange);
  2279. if (ret < 0)
  2280. continue;
  2281. if (hub->activating && !hdev->children[i-1] &&
  2282. (portstatus &
  2283. USB_PORT_STAT_CONNECTION))
  2284. connect_change = 1;
  2285. if (portchange & USB_PORT_STAT_C_CONNECTION) {
  2286. clear_port_feature(hdev, i,
  2287. USB_PORT_FEAT_C_CONNECTION);
  2288. connect_change = 1;
  2289. }
  2290. if (portchange & USB_PORT_STAT_C_ENABLE) {
  2291. if (!connect_change)
  2292. dev_dbg (hub_dev,
  2293. "port %d enable change, "
  2294. "status %08x\n",
  2295. i, portstatus);
  2296. clear_port_feature(hdev, i,
  2297. USB_PORT_FEAT_C_ENABLE);
  2298. /*
  2299. * EM interference sometimes causes badly
  2300. * shielded USB devices to be shutdown by
  2301. * the hub, this hack enables them again.
  2302. * Works at least with mouse driver.
  2303. */
  2304. if (!(portstatus & USB_PORT_STAT_ENABLE)
  2305. && !connect_change
  2306. && hdev->children[i-1]) {
  2307. dev_err (hub_dev,
  2308. "port %i "
  2309. "disabled by hub (EMI?), "
  2310. "re-enabling...\n",
  2311. i);
  2312. connect_change = 1;
  2313. }
  2314. }
  2315. if (portchange & USB_PORT_STAT_C_SUSPEND) {
  2316. clear_port_feature(hdev, i,
  2317. USB_PORT_FEAT_C_SUSPEND);
  2318. if (hdev->children[i-1]) {
  2319. ret = remote_wakeup(hdev->
  2320. children[i-1]);
  2321. if (ret < 0)
  2322. connect_change = 1;
  2323. } else {
  2324. ret = -ENODEV;
  2325. hub_port_disable(hub, i, 1);
  2326. }
  2327. dev_dbg (hub_dev,
  2328. "resume on port %d, status %d\n",
  2329. i, ret);
  2330. }
  2331. if (portchange & USB_PORT_STAT_C_OVERCURRENT) {
  2332. dev_err (hub_dev,
  2333. "over-current change on port %d\n",
  2334. i);
  2335. clear_port_feature(hdev, i,
  2336. USB_PORT_FEAT_C_OVER_CURRENT);
  2337. hub_power_on(hub);
  2338. }
  2339. if (portchange & USB_PORT_STAT_C_RESET) {
  2340. dev_dbg (hub_dev,
  2341. "reset change on port %d\n",
  2342. i);
  2343. clear_port_feature(hdev, i,
  2344. USB_PORT_FEAT_C_RESET);
  2345. }
  2346. if (connect_change)
  2347. hub_port_connect_change(hub, i,
  2348. portstatus, portchange);
  2349. } /* end for i */
  2350. /* deal with hub status changes */
  2351. if (test_and_clear_bit(0, hub->event_bits) == 0)
  2352. ; /* do nothing */
  2353. else if (hub_hub_status(hub, &hubstatus, &hubchange) < 0)
  2354. dev_err (hub_dev, "get_hub_status failed\n");
  2355. else {
  2356. if (hubchange & HUB_CHANGE_LOCAL_POWER) {
  2357. dev_dbg (hub_dev, "power change\n");
  2358. clear_hub_feature(hdev, C_HUB_LOCAL_POWER);
  2359. if (hubstatus & HUB_STATUS_LOCAL_POWER)
  2360. /* FIXME: Is this always true? */
  2361. hub->limited_power = 0;
  2362. else
  2363. hub->limited_power = 1;
  2364. }
  2365. if (hubchange & HUB_CHANGE_OVERCURRENT) {
  2366. dev_dbg (hub_dev, "overcurrent change\n");
  2367. msleep(500); /* Cool down */
  2368. clear_hub_feature(hdev, C_HUB_OVER_CURRENT);
  2369. hub_power_on(hub);
  2370. }
  2371. }
  2372. hub->activating = 0;
  2373. /* If this is a root hub, tell the HCD it's okay to
  2374. * re-enable port-change interrupts now. */
  2375. if (!hdev->parent && !hub->busy_bits[0])
  2376. usb_enable_root_hub_irq(hdev->bus);
  2377. loop:
  2378. usb_unlock_device(hdev);
  2379. usb_put_intf(intf);
  2380. } /* end while (1) */
  2381. }
  2382. static int hub_thread(void *__unused)
  2383. {
  2384. do {
  2385. hub_events();
  2386. wait_event_interruptible(khubd_wait,
  2387. !list_empty(&hub_event_list) ||
  2388. kthread_should_stop());
  2389. try_to_freeze();
  2390. } while (!kthread_should_stop() || !list_empty(&hub_event_list));
  2391. pr_debug("%s: khubd exiting\n", usbcore_name);
  2392. return 0;
  2393. }
  2394. static struct usb_device_id hub_id_table [] = {
  2395. { .match_flags = USB_DEVICE_ID_MATCH_DEV_CLASS,
  2396. .bDeviceClass = USB_CLASS_HUB},
  2397. { .match_flags = USB_DEVICE_ID_MATCH_INT_CLASS,
  2398. .bInterfaceClass = USB_CLASS_HUB},
  2399. { } /* Terminating entry */
  2400. };
  2401. MODULE_DEVICE_TABLE (usb, hub_id_table);
  2402. static struct usb_driver hub_driver = {
  2403. .name = "hub",
  2404. .probe = hub_probe,
  2405. .disconnect = hub_disconnect,
  2406. .suspend = hub_suspend,
  2407. .resume = hub_resume,
  2408. .pre_reset = hub_pre_reset,
  2409. .post_reset = hub_post_reset,
  2410. .ioctl = hub_ioctl,
  2411. .id_table = hub_id_table,
  2412. };
  2413. int usb_hub_init(void)
  2414. {
  2415. if (usb_register(&hub_driver) < 0) {
  2416. printk(KERN_ERR "%s: can't register hub driver\n",
  2417. usbcore_name);
  2418. return -1;
  2419. }
  2420. khubd_task = kthread_run(hub_thread, NULL, "khubd");
  2421. if (!IS_ERR(khubd_task))
  2422. return 0;
  2423. /* Fall through if kernel_thread failed */
  2424. usb_deregister(&hub_driver);
  2425. printk(KERN_ERR "%s: can't start khubd\n", usbcore_name);
  2426. return -1;
  2427. }
  2428. void usb_hub_cleanup(void)
  2429. {
  2430. kthread_stop(khubd_task);
  2431. /*
  2432. * Hub resources are freed for us by usb_deregister. It calls
  2433. * usb_driver_purge on every device which in turn calls that
  2434. * devices disconnect function if it is using this driver.
  2435. * The hub_disconnect function takes care of releasing the
  2436. * individual hub resources. -greg
  2437. */
  2438. usb_deregister(&hub_driver);
  2439. } /* usb_hub_cleanup() */
  2440. static int config_descriptors_changed(struct usb_device *udev)
  2441. {
  2442. unsigned index;
  2443. unsigned len = 0;
  2444. struct usb_config_descriptor *buf;
  2445. for (index = 0; index < udev->descriptor.bNumConfigurations; index++) {
  2446. if (len < le16_to_cpu(udev->config[index].desc.wTotalLength))
  2447. len = le16_to_cpu(udev->config[index].desc.wTotalLength);
  2448. }
  2449. buf = kmalloc (len, SLAB_KERNEL);
  2450. if (buf == NULL) {
  2451. dev_err(&udev->dev, "no mem to re-read configs after reset\n");
  2452. /* assume the worst */
  2453. return 1;
  2454. }
  2455. for (index = 0; index < udev->descriptor.bNumConfigurations; index++) {
  2456. int length;
  2457. int old_length = le16_to_cpu(udev->config[index].desc.wTotalLength);
  2458. length = usb_get_descriptor(udev, USB_DT_CONFIG, index, buf,
  2459. old_length);
  2460. if (length < old_length) {
  2461. dev_dbg(&udev->dev, "config index %d, error %d\n",
  2462. index, length);
  2463. break;
  2464. }
  2465. if (memcmp (buf, udev->rawdescriptors[index], old_length)
  2466. != 0) {
  2467. dev_dbg(&udev->dev, "config index %d changed (#%d)\n",
  2468. index, buf->bConfigurationValue);
  2469. break;
  2470. }
  2471. }
  2472. kfree(buf);
  2473. return index != udev->descriptor.bNumConfigurations;
  2474. }
  2475. /**
  2476. * usb_reset_device - perform a USB port reset to reinitialize a device
  2477. * @udev: device to reset (not in SUSPENDED or NOTATTACHED state)
  2478. *
  2479. * WARNING - don't use this routine to reset a composite device
  2480. * (one with multiple interfaces owned by separate drivers)!
  2481. * Use usb_reset_composite_device() instead.
  2482. *
  2483. * Do a port reset, reassign the device's address, and establish its
  2484. * former operating configuration. If the reset fails, or the device's
  2485. * descriptors change from their values before the reset, or the original
  2486. * configuration and altsettings cannot be restored, a flag will be set
  2487. * telling khubd to pretend the device has been disconnected and then
  2488. * re-connected. All drivers will be unbound, and the device will be
  2489. * re-enumerated and probed all over again.
  2490. *
  2491. * Returns 0 if the reset succeeded, -ENODEV if the device has been
  2492. * flagged for logical disconnection, or some other negative error code
  2493. * if the reset wasn't even attempted.
  2494. *
  2495. * The caller must own the device lock. For example, it's safe to use
  2496. * this from a driver probe() routine after downloading new firmware.
  2497. * For calls that might not occur during probe(), drivers should lock
  2498. * the device using usb_lock_device_for_reset().
  2499. */
  2500. int usb_reset_device(struct usb_device *udev)
  2501. {
  2502. struct usb_device *parent_hdev = udev->parent;
  2503. struct usb_hub *parent_hub;
  2504. struct usb_device_descriptor descriptor = udev->descriptor;
  2505. int i, ret = 0;
  2506. int port1 = udev->portnum;
  2507. if (udev->state == USB_STATE_NOTATTACHED ||
  2508. udev->state == USB_STATE_SUSPENDED) {
  2509. dev_dbg(&udev->dev, "device reset not allowed in state %d\n",
  2510. udev->state);
  2511. return -EINVAL;
  2512. }
  2513. if (!parent_hdev) {
  2514. /* this requires hcd-specific logic; see OHCI hc_restart() */
  2515. dev_dbg(&udev->dev, "%s for root hub!\n", __FUNCTION__);
  2516. return -EISDIR;
  2517. }
  2518. parent_hub = hdev_to_hub(parent_hdev);
  2519. set_bit(port1, parent_hub->busy_bits);
  2520. for (i = 0; i < SET_CONFIG_TRIES; ++i) {
  2521. /* ep0 maxpacket size may change; let the HCD know about it.
  2522. * Other endpoints will be handled by re-enumeration. */
  2523. ep0_reinit(udev);
  2524. ret = hub_port_init(parent_hub, udev, port1, i);
  2525. if (ret >= 0)
  2526. break;
  2527. }
  2528. clear_bit(port1, parent_hub->busy_bits);
  2529. if (!parent_hdev->parent && !parent_hub->busy_bits[0])
  2530. usb_enable_root_hub_irq(parent_hdev->bus);
  2531. if (ret < 0)
  2532. goto re_enumerate;
  2533. /* Device might have changed firmware (DFU or similar) */
  2534. if (memcmp(&udev->descriptor, &descriptor, sizeof descriptor)
  2535. || config_descriptors_changed (udev)) {
  2536. dev_info(&udev->dev, "device firmware changed\n");
  2537. udev->descriptor = descriptor; /* for disconnect() calls */
  2538. goto re_enumerate;
  2539. }
  2540. if (!udev->actconfig)
  2541. goto done;
  2542. ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  2543. USB_REQ_SET_CONFIGURATION, 0,
  2544. udev->actconfig->desc.bConfigurationValue, 0,
  2545. NULL, 0, USB_CTRL_SET_TIMEOUT);
  2546. if (ret < 0) {
  2547. dev_err(&udev->dev,
  2548. "can't restore configuration #%d (error=%d)\n",
  2549. udev->actconfig->desc.bConfigurationValue, ret);
  2550. goto re_enumerate;
  2551. }
  2552. usb_set_device_state(udev, USB_STATE_CONFIGURED);
  2553. for (i = 0; i < udev->actconfig->desc.bNumInterfaces; i++) {
  2554. struct usb_interface *intf = udev->actconfig->interface[i];
  2555. struct usb_interface_descriptor *desc;
  2556. /* set_interface resets host side toggle even
  2557. * for altsetting zero. the interface may have no driver.
  2558. */
  2559. desc = &intf->cur_altsetting->desc;
  2560. ret = usb_set_interface(udev, desc->bInterfaceNumber,
  2561. desc->bAlternateSetting);
  2562. if (ret < 0) {
  2563. dev_err(&udev->dev, "failed to restore interface %d "
  2564. "altsetting %d (error=%d)\n",
  2565. desc->bInterfaceNumber,
  2566. desc->bAlternateSetting,
  2567. ret);
  2568. goto re_enumerate;
  2569. }
  2570. }
  2571. done:
  2572. return 0;
  2573. re_enumerate:
  2574. hub_port_logical_disconnect(parent_hub, port1);
  2575. return -ENODEV;
  2576. }
  2577. EXPORT_SYMBOL(usb_reset_device);
  2578. /**
  2579. * usb_reset_composite_device - warn interface drivers and perform a USB port reset
  2580. * @udev: device to reset (not in SUSPENDED or NOTATTACHED state)
  2581. * @iface: interface bound to the driver making the request (optional)
  2582. *
  2583. * Warns all drivers bound to registered interfaces (using their pre_reset
  2584. * method), performs the port reset, and then lets the drivers know that
  2585. * the reset is over (using their post_reset method).
  2586. *
  2587. * Return value is the same as for usb_reset_device().
  2588. *
  2589. * The caller must own the device lock. For example, it's safe to use
  2590. * this from a driver probe() routine after downloading new firmware.
  2591. * For calls that might not occur during probe(), drivers should lock
  2592. * the device using usb_lock_device_for_reset().
  2593. *
  2594. * The interface locks are acquired during the pre_reset stage and released
  2595. * during the post_reset stage. However if iface is not NULL and is
  2596. * currently being probed, we assume that the caller already owns its
  2597. * lock.
  2598. */
  2599. int usb_reset_composite_device(struct usb_device *udev,
  2600. struct usb_interface *iface)
  2601. {
  2602. int ret;
  2603. struct usb_host_config *config = udev->actconfig;
  2604. if (udev->state == USB_STATE_NOTATTACHED ||
  2605. udev->state == USB_STATE_SUSPENDED) {
  2606. dev_dbg(&udev->dev, "device reset not allowed in state %d\n",
  2607. udev->state);
  2608. return -EINVAL;
  2609. }
  2610. /* Prevent autosuspend during the reset */
  2611. usb_autoresume_device(udev, 1);
  2612. if (iface && iface->condition != USB_INTERFACE_BINDING)
  2613. iface = NULL;
  2614. if (config) {
  2615. int i;
  2616. struct usb_interface *cintf;
  2617. struct usb_driver *drv;
  2618. for (i = 0; i < config->desc.bNumInterfaces; ++i) {
  2619. cintf = config->interface[i];
  2620. if (cintf != iface)
  2621. down(&cintf->dev.sem);
  2622. if (device_is_registered(&cintf->dev) &&
  2623. cintf->dev.driver) {
  2624. drv = to_usb_driver(cintf->dev.driver);
  2625. if (drv->pre_reset)
  2626. (drv->pre_reset)(cintf);
  2627. }
  2628. }
  2629. }
  2630. ret = usb_reset_device(udev);
  2631. if (config) {
  2632. int i;
  2633. struct usb_interface *cintf;
  2634. struct usb_driver *drv;
  2635. for (i = config->desc.bNumInterfaces - 1; i >= 0; --i) {
  2636. cintf = config->interface[i];
  2637. if (device_is_registered(&cintf->dev) &&
  2638. cintf->dev.driver) {
  2639. drv = to_usb_driver(cintf->dev.driver);
  2640. if (drv->post_reset)
  2641. (drv->post_reset)(cintf);
  2642. }
  2643. if (cintf != iface)
  2644. up(&cintf->dev.sem);
  2645. }
  2646. }
  2647. usb_autosuspend_device(udev, 1);
  2648. return ret;
  2649. }
  2650. EXPORT_SYMBOL(usb_reset_composite_device);