usbnet.c 55 KB

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  1. /*
  2. * USB Network driver infrastructure
  3. * Copyright (C) 2000-2005 by David Brownell
  4. * Copyright (C) 2003-2005 David Hollis <dhollis@davehollis.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, see <http://www.gnu.org/licenses/>.
  18. */
  19. /*
  20. * This is a generic "USB networking" framework that works with several
  21. * kinds of full and high speed networking devices: host-to-host cables,
  22. * smart usb peripherals, and actual Ethernet adapters.
  23. *
  24. * These devices usually differ in terms of control protocols (if they
  25. * even have one!) and sometimes they define new framing to wrap or batch
  26. * Ethernet packets. Otherwise, they talk to USB pretty much the same,
  27. * so interface (un)binding, endpoint I/O queues, fault handling, and other
  28. * issues can usefully be addressed by this framework.
  29. */
  30. // #define DEBUG // error path messages, extra info
  31. // #define VERBOSE // more; success messages
  32. #include <linux/module.h>
  33. #include <linux/init.h>
  34. #include <linux/netdevice.h>
  35. #include <linux/etherdevice.h>
  36. #include <linux/ctype.h>
  37. #include <linux/ethtool.h>
  38. #include <linux/workqueue.h>
  39. #include <linux/mii.h>
  40. #include <linux/usb.h>
  41. #include <linux/usb/usbnet.h>
  42. #include <linux/slab.h>
  43. #include <linux/kernel.h>
  44. #include <linux/pm_runtime.h>
  45. #define DRIVER_VERSION "22-Aug-2005"
  46. /*-------------------------------------------------------------------------*/
  47. /*
  48. * Nineteen USB 1.1 max size bulk transactions per frame (ms), max.
  49. * Several dozen bytes of IPv4 data can fit in two such transactions.
  50. * One maximum size Ethernet packet takes twenty four of them.
  51. * For high speed, each frame comfortably fits almost 36 max size
  52. * Ethernet packets (so queues should be bigger).
  53. *
  54. * The goal is to let the USB host controller be busy for 5msec or
  55. * more before an irq is required, under load. Jumbograms change
  56. * the equation.
  57. */
  58. #define MAX_QUEUE_MEMORY (60 * 1518)
  59. #define RX_QLEN(dev) ((dev)->rx_qlen)
  60. #define TX_QLEN(dev) ((dev)->tx_qlen)
  61. // reawaken network queue this soon after stopping; else watchdog barks
  62. #define TX_TIMEOUT_JIFFIES (5*HZ)
  63. /* throttle rx/tx briefly after some faults, so hub_wq might disconnect()
  64. * us (it polls at HZ/4 usually) before we report too many false errors.
  65. */
  66. #define THROTTLE_JIFFIES (HZ/8)
  67. // between wakeups
  68. #define UNLINK_TIMEOUT_MS 3
  69. /*-------------------------------------------------------------------------*/
  70. // randomly generated ethernet address
  71. static u8 node_id [ETH_ALEN];
  72. static const char driver_name [] = "usbnet";
  73. /* use ethtool to change the level for any given device */
  74. static int msg_level = -1;
  75. module_param (msg_level, int, 0);
  76. MODULE_PARM_DESC (msg_level, "Override default message level");
  77. /*-------------------------------------------------------------------------*/
  78. /* handles CDC Ethernet and many other network "bulk data" interfaces */
  79. int usbnet_get_endpoints(struct usbnet *dev, struct usb_interface *intf)
  80. {
  81. int tmp;
  82. struct usb_host_interface *alt = NULL;
  83. struct usb_host_endpoint *in = NULL, *out = NULL;
  84. struct usb_host_endpoint *status = NULL;
  85. for (tmp = 0; tmp < intf->num_altsetting; tmp++) {
  86. unsigned ep;
  87. in = out = status = NULL;
  88. alt = intf->altsetting + tmp;
  89. /* take the first altsetting with in-bulk + out-bulk;
  90. * remember any status endpoint, just in case;
  91. * ignore other endpoints and altsettings.
  92. */
  93. for (ep = 0; ep < alt->desc.bNumEndpoints; ep++) {
  94. struct usb_host_endpoint *e;
  95. int intr = 0;
  96. e = alt->endpoint + ep;
  97. switch (e->desc.bmAttributes) {
  98. case USB_ENDPOINT_XFER_INT:
  99. if (!usb_endpoint_dir_in(&e->desc))
  100. continue;
  101. intr = 1;
  102. /* FALLTHROUGH */
  103. case USB_ENDPOINT_XFER_BULK:
  104. break;
  105. default:
  106. continue;
  107. }
  108. if (usb_endpoint_dir_in(&e->desc)) {
  109. if (!intr && !in)
  110. in = e;
  111. else if (intr && !status)
  112. status = e;
  113. } else {
  114. if (!out)
  115. out = e;
  116. }
  117. }
  118. if (in && out)
  119. break;
  120. }
  121. if (!alt || !in || !out)
  122. return -EINVAL;
  123. if (alt->desc.bAlternateSetting != 0 ||
  124. !(dev->driver_info->flags & FLAG_NO_SETINT)) {
  125. tmp = usb_set_interface (dev->udev, alt->desc.bInterfaceNumber,
  126. alt->desc.bAlternateSetting);
  127. if (tmp < 0)
  128. return tmp;
  129. }
  130. dev->in = usb_rcvbulkpipe (dev->udev,
  131. in->desc.bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
  132. dev->out = usb_sndbulkpipe (dev->udev,
  133. out->desc.bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
  134. dev->status = status;
  135. return 0;
  136. }
  137. EXPORT_SYMBOL_GPL(usbnet_get_endpoints);
  138. int usbnet_get_ethernet_addr(struct usbnet *dev, int iMACAddress)
  139. {
  140. int tmp = -1, ret;
  141. unsigned char buf [13];
  142. ret = usb_string(dev->udev, iMACAddress, buf, sizeof buf);
  143. if (ret == 12)
  144. tmp = hex2bin(dev->net->dev_addr, buf, 6);
  145. if (tmp < 0) {
  146. dev_dbg(&dev->udev->dev,
  147. "bad MAC string %d fetch, %d\n", iMACAddress, tmp);
  148. if (ret >= 0)
  149. ret = -EINVAL;
  150. return ret;
  151. }
  152. return 0;
  153. }
  154. EXPORT_SYMBOL_GPL(usbnet_get_ethernet_addr);
  155. static void intr_complete (struct urb *urb)
  156. {
  157. struct usbnet *dev = urb->context;
  158. int status = urb->status;
  159. switch (status) {
  160. /* success */
  161. case 0:
  162. dev->driver_info->status(dev, urb);
  163. break;
  164. /* software-driven interface shutdown */
  165. case -ENOENT: /* urb killed */
  166. case -ESHUTDOWN: /* hardware gone */
  167. netif_dbg(dev, ifdown, dev->net,
  168. "intr shutdown, code %d\n", status);
  169. return;
  170. /* NOTE: not throttling like RX/TX, since this endpoint
  171. * already polls infrequently
  172. */
  173. default:
  174. netdev_dbg(dev->net, "intr status %d\n", status);
  175. break;
  176. }
  177. status = usb_submit_urb (urb, GFP_ATOMIC);
  178. if (status != 0)
  179. netif_err(dev, timer, dev->net,
  180. "intr resubmit --> %d\n", status);
  181. }
  182. static int init_status (struct usbnet *dev, struct usb_interface *intf)
  183. {
  184. char *buf = NULL;
  185. unsigned pipe = 0;
  186. unsigned maxp;
  187. unsigned period;
  188. if (!dev->driver_info->status)
  189. return 0;
  190. pipe = usb_rcvintpipe (dev->udev,
  191. dev->status->desc.bEndpointAddress
  192. & USB_ENDPOINT_NUMBER_MASK);
  193. maxp = usb_maxpacket (dev->udev, pipe, 0);
  194. /* avoid 1 msec chatter: min 8 msec poll rate */
  195. period = max ((int) dev->status->desc.bInterval,
  196. (dev->udev->speed == USB_SPEED_HIGH) ? 7 : 3);
  197. buf = kmalloc (maxp, GFP_KERNEL);
  198. if (buf) {
  199. dev->interrupt = usb_alloc_urb (0, GFP_KERNEL);
  200. if (!dev->interrupt) {
  201. kfree (buf);
  202. return -ENOMEM;
  203. } else {
  204. usb_fill_int_urb(dev->interrupt, dev->udev, pipe,
  205. buf, maxp, intr_complete, dev, period);
  206. dev->interrupt->transfer_flags |= URB_FREE_BUFFER;
  207. dev_dbg(&intf->dev,
  208. "status ep%din, %d bytes period %d\n",
  209. usb_pipeendpoint(pipe), maxp, period);
  210. }
  211. }
  212. return 0;
  213. }
  214. /* Submit the interrupt URB if not previously submitted, increasing refcount */
  215. int usbnet_status_start(struct usbnet *dev, gfp_t mem_flags)
  216. {
  217. int ret = 0;
  218. WARN_ON_ONCE(dev->interrupt == NULL);
  219. if (dev->interrupt) {
  220. mutex_lock(&dev->interrupt_mutex);
  221. if (++dev->interrupt_count == 1)
  222. ret = usb_submit_urb(dev->interrupt, mem_flags);
  223. dev_dbg(&dev->udev->dev, "incremented interrupt URB count to %d\n",
  224. dev->interrupt_count);
  225. mutex_unlock(&dev->interrupt_mutex);
  226. }
  227. return ret;
  228. }
  229. EXPORT_SYMBOL_GPL(usbnet_status_start);
  230. /* For resume; submit interrupt URB if previously submitted */
  231. static int __usbnet_status_start_force(struct usbnet *dev, gfp_t mem_flags)
  232. {
  233. int ret = 0;
  234. mutex_lock(&dev->interrupt_mutex);
  235. if (dev->interrupt_count) {
  236. ret = usb_submit_urb(dev->interrupt, mem_flags);
  237. dev_dbg(&dev->udev->dev,
  238. "submitted interrupt URB for resume\n");
  239. }
  240. mutex_unlock(&dev->interrupt_mutex);
  241. return ret;
  242. }
  243. /* Kill the interrupt URB if all submitters want it killed */
  244. void usbnet_status_stop(struct usbnet *dev)
  245. {
  246. if (dev->interrupt) {
  247. mutex_lock(&dev->interrupt_mutex);
  248. WARN_ON(dev->interrupt_count == 0);
  249. if (dev->interrupt_count && --dev->interrupt_count == 0)
  250. usb_kill_urb(dev->interrupt);
  251. dev_dbg(&dev->udev->dev,
  252. "decremented interrupt URB count to %d\n",
  253. dev->interrupt_count);
  254. mutex_unlock(&dev->interrupt_mutex);
  255. }
  256. }
  257. EXPORT_SYMBOL_GPL(usbnet_status_stop);
  258. /* For suspend; always kill interrupt URB */
  259. static void __usbnet_status_stop_force(struct usbnet *dev)
  260. {
  261. if (dev->interrupt) {
  262. mutex_lock(&dev->interrupt_mutex);
  263. usb_kill_urb(dev->interrupt);
  264. dev_dbg(&dev->udev->dev, "killed interrupt URB for suspend\n");
  265. mutex_unlock(&dev->interrupt_mutex);
  266. }
  267. }
  268. /* Passes this packet up the stack, updating its accounting.
  269. * Some link protocols batch packets, so their rx_fixup paths
  270. * can return clones as well as just modify the original skb.
  271. */
  272. void usbnet_skb_return (struct usbnet *dev, struct sk_buff *skb)
  273. {
  274. int status;
  275. if (test_bit(EVENT_RX_PAUSED, &dev->flags)) {
  276. skb_queue_tail(&dev->rxq_pause, skb);
  277. return;
  278. }
  279. skb->protocol = eth_type_trans (skb, dev->net);
  280. dev->net->stats.rx_packets++;
  281. dev->net->stats.rx_bytes += skb->len;
  282. netif_dbg(dev, rx_status, dev->net, "< rx, len %zu, type 0x%x\n",
  283. skb->len + sizeof (struct ethhdr), skb->protocol);
  284. memset (skb->cb, 0, sizeof (struct skb_data));
  285. if (skb_defer_rx_timestamp(skb))
  286. return;
  287. status = netif_rx (skb);
  288. if (status != NET_RX_SUCCESS)
  289. netif_dbg(dev, rx_err, dev->net,
  290. "netif_rx status %d\n", status);
  291. }
  292. EXPORT_SYMBOL_GPL(usbnet_skb_return);
  293. /* must be called if hard_mtu or rx_urb_size changed */
  294. void usbnet_update_max_qlen(struct usbnet *dev)
  295. {
  296. enum usb_device_speed speed = dev->udev->speed;
  297. switch (speed) {
  298. case USB_SPEED_HIGH:
  299. dev->rx_qlen = MAX_QUEUE_MEMORY / dev->rx_urb_size;
  300. dev->tx_qlen = MAX_QUEUE_MEMORY / dev->hard_mtu;
  301. break;
  302. case USB_SPEED_SUPER:
  303. /*
  304. * Not take default 5ms qlen for super speed HC to
  305. * save memory, and iperf tests show 2.5ms qlen can
  306. * work well
  307. */
  308. dev->rx_qlen = 5 * MAX_QUEUE_MEMORY / dev->rx_urb_size;
  309. dev->tx_qlen = 5 * MAX_QUEUE_MEMORY / dev->hard_mtu;
  310. break;
  311. default:
  312. dev->rx_qlen = dev->tx_qlen = 4;
  313. }
  314. }
  315. EXPORT_SYMBOL_GPL(usbnet_update_max_qlen);
  316. /*-------------------------------------------------------------------------
  317. *
  318. * Network Device Driver (peer link to "Host Device", from USB host)
  319. *
  320. *-------------------------------------------------------------------------*/
  321. int usbnet_change_mtu (struct net_device *net, int new_mtu)
  322. {
  323. struct usbnet *dev = netdev_priv(net);
  324. int ll_mtu = new_mtu + net->hard_header_len;
  325. int old_hard_mtu = dev->hard_mtu;
  326. int old_rx_urb_size = dev->rx_urb_size;
  327. if (new_mtu <= 0)
  328. return -EINVAL;
  329. // no second zero-length packet read wanted after mtu-sized packets
  330. if ((ll_mtu % dev->maxpacket) == 0)
  331. return -EDOM;
  332. net->mtu = new_mtu;
  333. dev->hard_mtu = net->mtu + net->hard_header_len;
  334. if (dev->rx_urb_size == old_hard_mtu) {
  335. dev->rx_urb_size = dev->hard_mtu;
  336. if (dev->rx_urb_size > old_rx_urb_size)
  337. usbnet_unlink_rx_urbs(dev);
  338. }
  339. /* max qlen depend on hard_mtu and rx_urb_size */
  340. usbnet_update_max_qlen(dev);
  341. return 0;
  342. }
  343. EXPORT_SYMBOL_GPL(usbnet_change_mtu);
  344. /* The caller must hold list->lock */
  345. static void __usbnet_queue_skb(struct sk_buff_head *list,
  346. struct sk_buff *newsk, enum skb_state state)
  347. {
  348. struct skb_data *entry = (struct skb_data *) newsk->cb;
  349. __skb_queue_tail(list, newsk);
  350. entry->state = state;
  351. }
  352. /*-------------------------------------------------------------------------*/
  353. /* some LK 2.4 HCDs oopsed if we freed or resubmitted urbs from
  354. * completion callbacks. 2.5 should have fixed those bugs...
  355. */
  356. static enum skb_state defer_bh(struct usbnet *dev, struct sk_buff *skb,
  357. struct sk_buff_head *list, enum skb_state state)
  358. {
  359. unsigned long flags;
  360. enum skb_state old_state;
  361. struct skb_data *entry = (struct skb_data *) skb->cb;
  362. spin_lock_irqsave(&list->lock, flags);
  363. old_state = entry->state;
  364. entry->state = state;
  365. __skb_unlink(skb, list);
  366. /* defer_bh() is never called with list == &dev->done.
  367. * spin_lock_nested() tells lockdep that it is OK to take
  368. * dev->done.lock here with list->lock held.
  369. */
  370. spin_lock_nested(&dev->done.lock, SINGLE_DEPTH_NESTING);
  371. __skb_queue_tail(&dev->done, skb);
  372. if (dev->done.qlen == 1)
  373. tasklet_schedule(&dev->bh);
  374. spin_unlock(&dev->done.lock);
  375. spin_unlock_irqrestore(&list->lock, flags);
  376. return old_state;
  377. }
  378. /* some work can't be done in tasklets, so we use keventd
  379. *
  380. * NOTE: annoying asymmetry: if it's active, schedule_work() fails,
  381. * but tasklet_schedule() doesn't. hope the failure is rare.
  382. */
  383. void usbnet_defer_kevent (struct usbnet *dev, int work)
  384. {
  385. set_bit (work, &dev->flags);
  386. if (!schedule_work (&dev->kevent)) {
  387. if (net_ratelimit())
  388. netdev_err(dev->net, "kevent %d may have been dropped\n", work);
  389. } else {
  390. netdev_dbg(dev->net, "kevent %d scheduled\n", work);
  391. }
  392. }
  393. EXPORT_SYMBOL_GPL(usbnet_defer_kevent);
  394. /*-------------------------------------------------------------------------*/
  395. static void rx_complete (struct urb *urb);
  396. static int rx_submit (struct usbnet *dev, struct urb *urb, gfp_t flags)
  397. {
  398. struct sk_buff *skb;
  399. struct skb_data *entry;
  400. int retval = 0;
  401. unsigned long lockflags;
  402. size_t size = dev->rx_urb_size;
  403. /* prevent rx skb allocation when error ratio is high */
  404. if (test_bit(EVENT_RX_KILL, &dev->flags)) {
  405. usb_free_urb(urb);
  406. return -ENOLINK;
  407. }
  408. skb = __netdev_alloc_skb_ip_align(dev->net, size, flags);
  409. if (!skb) {
  410. netif_dbg(dev, rx_err, dev->net, "no rx skb\n");
  411. usbnet_defer_kevent (dev, EVENT_RX_MEMORY);
  412. usb_free_urb (urb);
  413. return -ENOMEM;
  414. }
  415. entry = (struct skb_data *) skb->cb;
  416. entry->urb = urb;
  417. entry->dev = dev;
  418. entry->length = 0;
  419. usb_fill_bulk_urb (urb, dev->udev, dev->in,
  420. skb->data, size, rx_complete, skb);
  421. spin_lock_irqsave (&dev->rxq.lock, lockflags);
  422. if (netif_running (dev->net) &&
  423. netif_device_present (dev->net) &&
  424. !test_bit (EVENT_RX_HALT, &dev->flags) &&
  425. !test_bit (EVENT_DEV_ASLEEP, &dev->flags)) {
  426. switch (retval = usb_submit_urb (urb, GFP_ATOMIC)) {
  427. case -EPIPE:
  428. usbnet_defer_kevent (dev, EVENT_RX_HALT);
  429. break;
  430. case -ENOMEM:
  431. usbnet_defer_kevent (dev, EVENT_RX_MEMORY);
  432. break;
  433. case -ENODEV:
  434. netif_dbg(dev, ifdown, dev->net, "device gone\n");
  435. netif_device_detach (dev->net);
  436. break;
  437. case -EHOSTUNREACH:
  438. retval = -ENOLINK;
  439. break;
  440. default:
  441. netif_dbg(dev, rx_err, dev->net,
  442. "rx submit, %d\n", retval);
  443. tasklet_schedule (&dev->bh);
  444. break;
  445. case 0:
  446. __usbnet_queue_skb(&dev->rxq, skb, rx_start);
  447. }
  448. } else {
  449. netif_dbg(dev, ifdown, dev->net, "rx: stopped\n");
  450. retval = -ENOLINK;
  451. }
  452. spin_unlock_irqrestore (&dev->rxq.lock, lockflags);
  453. if (retval) {
  454. dev_kfree_skb_any (skb);
  455. usb_free_urb (urb);
  456. }
  457. return retval;
  458. }
  459. /*-------------------------------------------------------------------------*/
  460. static inline void rx_process (struct usbnet *dev, struct sk_buff *skb)
  461. {
  462. if (dev->driver_info->rx_fixup &&
  463. !dev->driver_info->rx_fixup (dev, skb)) {
  464. /* With RX_ASSEMBLE, rx_fixup() must update counters */
  465. if (!(dev->driver_info->flags & FLAG_RX_ASSEMBLE))
  466. dev->net->stats.rx_errors++;
  467. goto done;
  468. }
  469. // else network stack removes extra byte if we forced a short packet
  470. /* all data was already cloned from skb inside the driver */
  471. if (dev->driver_info->flags & FLAG_MULTI_PACKET)
  472. goto done;
  473. if (skb->len < ETH_HLEN) {
  474. dev->net->stats.rx_errors++;
  475. dev->net->stats.rx_length_errors++;
  476. netif_dbg(dev, rx_err, dev->net, "rx length %d\n", skb->len);
  477. } else {
  478. usbnet_skb_return(dev, skb);
  479. return;
  480. }
  481. done:
  482. skb_queue_tail(&dev->done, skb);
  483. }
  484. /*-------------------------------------------------------------------------*/
  485. static void rx_complete (struct urb *urb)
  486. {
  487. struct sk_buff *skb = (struct sk_buff *) urb->context;
  488. struct skb_data *entry = (struct skb_data *) skb->cb;
  489. struct usbnet *dev = entry->dev;
  490. int urb_status = urb->status;
  491. enum skb_state state;
  492. skb_put (skb, urb->actual_length);
  493. state = rx_done;
  494. entry->urb = NULL;
  495. switch (urb_status) {
  496. /* success */
  497. case 0:
  498. break;
  499. /* stalls need manual reset. this is rare ... except that
  500. * when going through USB 2.0 TTs, unplug appears this way.
  501. * we avoid the highspeed version of the ETIMEDOUT/EILSEQ
  502. * storm, recovering as needed.
  503. */
  504. case -EPIPE:
  505. dev->net->stats.rx_errors++;
  506. usbnet_defer_kevent (dev, EVENT_RX_HALT);
  507. // FALLTHROUGH
  508. /* software-driven interface shutdown */
  509. case -ECONNRESET: /* async unlink */
  510. case -ESHUTDOWN: /* hardware gone */
  511. netif_dbg(dev, ifdown, dev->net,
  512. "rx shutdown, code %d\n", urb_status);
  513. goto block;
  514. /* we get controller i/o faults during hub_wq disconnect() delays.
  515. * throttle down resubmits, to avoid log floods; just temporarily,
  516. * so we still recover when the fault isn't a hub_wq delay.
  517. */
  518. case -EPROTO:
  519. case -ETIME:
  520. case -EILSEQ:
  521. dev->net->stats.rx_errors++;
  522. if (!timer_pending (&dev->delay)) {
  523. mod_timer (&dev->delay, jiffies + THROTTLE_JIFFIES);
  524. netif_dbg(dev, link, dev->net,
  525. "rx throttle %d\n", urb_status);
  526. }
  527. block:
  528. state = rx_cleanup;
  529. entry->urb = urb;
  530. urb = NULL;
  531. break;
  532. /* data overrun ... flush fifo? */
  533. case -EOVERFLOW:
  534. dev->net->stats.rx_over_errors++;
  535. // FALLTHROUGH
  536. default:
  537. state = rx_cleanup;
  538. dev->net->stats.rx_errors++;
  539. netif_dbg(dev, rx_err, dev->net, "rx status %d\n", urb_status);
  540. break;
  541. }
  542. /* stop rx if packet error rate is high */
  543. if (++dev->pkt_cnt > 30) {
  544. dev->pkt_cnt = 0;
  545. dev->pkt_err = 0;
  546. } else {
  547. if (state == rx_cleanup)
  548. dev->pkt_err++;
  549. if (dev->pkt_err > 20)
  550. set_bit(EVENT_RX_KILL, &dev->flags);
  551. }
  552. state = defer_bh(dev, skb, &dev->rxq, state);
  553. if (urb) {
  554. if (netif_running (dev->net) &&
  555. !test_bit (EVENT_RX_HALT, &dev->flags) &&
  556. state != unlink_start) {
  557. rx_submit (dev, urb, GFP_ATOMIC);
  558. usb_mark_last_busy(dev->udev);
  559. return;
  560. }
  561. usb_free_urb (urb);
  562. }
  563. netif_dbg(dev, rx_err, dev->net, "no read resubmitted\n");
  564. }
  565. /*-------------------------------------------------------------------------*/
  566. void usbnet_pause_rx(struct usbnet *dev)
  567. {
  568. set_bit(EVENT_RX_PAUSED, &dev->flags);
  569. netif_dbg(dev, rx_status, dev->net, "paused rx queue enabled\n");
  570. }
  571. EXPORT_SYMBOL_GPL(usbnet_pause_rx);
  572. void usbnet_resume_rx(struct usbnet *dev)
  573. {
  574. struct sk_buff *skb;
  575. int num = 0;
  576. clear_bit(EVENT_RX_PAUSED, &dev->flags);
  577. while ((skb = skb_dequeue(&dev->rxq_pause)) != NULL) {
  578. usbnet_skb_return(dev, skb);
  579. num++;
  580. }
  581. tasklet_schedule(&dev->bh);
  582. netif_dbg(dev, rx_status, dev->net,
  583. "paused rx queue disabled, %d skbs requeued\n", num);
  584. }
  585. EXPORT_SYMBOL_GPL(usbnet_resume_rx);
  586. void usbnet_purge_paused_rxq(struct usbnet *dev)
  587. {
  588. skb_queue_purge(&dev->rxq_pause);
  589. }
  590. EXPORT_SYMBOL_GPL(usbnet_purge_paused_rxq);
  591. /*-------------------------------------------------------------------------*/
  592. // unlink pending rx/tx; completion handlers do all other cleanup
  593. static int unlink_urbs (struct usbnet *dev, struct sk_buff_head *q)
  594. {
  595. unsigned long flags;
  596. struct sk_buff *skb;
  597. int count = 0;
  598. spin_lock_irqsave (&q->lock, flags);
  599. while (!skb_queue_empty(q)) {
  600. struct skb_data *entry;
  601. struct urb *urb;
  602. int retval;
  603. skb_queue_walk(q, skb) {
  604. entry = (struct skb_data *) skb->cb;
  605. if (entry->state != unlink_start)
  606. goto found;
  607. }
  608. break;
  609. found:
  610. entry->state = unlink_start;
  611. urb = entry->urb;
  612. /*
  613. * Get reference count of the URB to avoid it to be
  614. * freed during usb_unlink_urb, which may trigger
  615. * use-after-free problem inside usb_unlink_urb since
  616. * usb_unlink_urb is always racing with .complete
  617. * handler(include defer_bh).
  618. */
  619. usb_get_urb(urb);
  620. spin_unlock_irqrestore(&q->lock, flags);
  621. // during some PM-driven resume scenarios,
  622. // these (async) unlinks complete immediately
  623. retval = usb_unlink_urb (urb);
  624. if (retval != -EINPROGRESS && retval != 0)
  625. netdev_dbg(dev->net, "unlink urb err, %d\n", retval);
  626. else
  627. count++;
  628. usb_put_urb(urb);
  629. spin_lock_irqsave(&q->lock, flags);
  630. }
  631. spin_unlock_irqrestore (&q->lock, flags);
  632. return count;
  633. }
  634. // Flush all pending rx urbs
  635. // minidrivers may need to do this when the MTU changes
  636. void usbnet_unlink_rx_urbs(struct usbnet *dev)
  637. {
  638. if (netif_running(dev->net)) {
  639. (void) unlink_urbs (dev, &dev->rxq);
  640. tasklet_schedule(&dev->bh);
  641. }
  642. }
  643. EXPORT_SYMBOL_GPL(usbnet_unlink_rx_urbs);
  644. /*-------------------------------------------------------------------------*/
  645. static void wait_skb_queue_empty(struct sk_buff_head *q)
  646. {
  647. unsigned long flags;
  648. spin_lock_irqsave(&q->lock, flags);
  649. while (!skb_queue_empty(q)) {
  650. spin_unlock_irqrestore(&q->lock, flags);
  651. schedule_timeout(msecs_to_jiffies(UNLINK_TIMEOUT_MS));
  652. set_current_state(TASK_UNINTERRUPTIBLE);
  653. spin_lock_irqsave(&q->lock, flags);
  654. }
  655. spin_unlock_irqrestore(&q->lock, flags);
  656. }
  657. // precondition: never called in_interrupt
  658. static void usbnet_terminate_urbs(struct usbnet *dev)
  659. {
  660. DECLARE_WAITQUEUE(wait, current);
  661. int temp;
  662. /* ensure there are no more active urbs */
  663. add_wait_queue(&dev->wait, &wait);
  664. set_current_state(TASK_UNINTERRUPTIBLE);
  665. temp = unlink_urbs(dev, &dev->txq) +
  666. unlink_urbs(dev, &dev->rxq);
  667. /* maybe wait for deletions to finish. */
  668. wait_skb_queue_empty(&dev->rxq);
  669. wait_skb_queue_empty(&dev->txq);
  670. wait_skb_queue_empty(&dev->done);
  671. netif_dbg(dev, ifdown, dev->net,
  672. "waited for %d urb completions\n", temp);
  673. set_current_state(TASK_RUNNING);
  674. remove_wait_queue(&dev->wait, &wait);
  675. }
  676. int usbnet_stop (struct net_device *net)
  677. {
  678. struct usbnet *dev = netdev_priv(net);
  679. struct driver_info *info = dev->driver_info;
  680. int retval, pm, mpn;
  681. clear_bit(EVENT_DEV_OPEN, &dev->flags);
  682. netif_stop_queue (net);
  683. netif_info(dev, ifdown, dev->net,
  684. "stop stats: rx/tx %lu/%lu, errs %lu/%lu\n",
  685. net->stats.rx_packets, net->stats.tx_packets,
  686. net->stats.rx_errors, net->stats.tx_errors);
  687. /* to not race resume */
  688. pm = usb_autopm_get_interface(dev->intf);
  689. /* allow minidriver to stop correctly (wireless devices to turn off
  690. * radio etc) */
  691. if (info->stop) {
  692. retval = info->stop(dev);
  693. if (retval < 0)
  694. netif_info(dev, ifdown, dev->net,
  695. "stop fail (%d) usbnet usb-%s-%s, %s\n",
  696. retval,
  697. dev->udev->bus->bus_name, dev->udev->devpath,
  698. info->description);
  699. }
  700. if (!(info->flags & FLAG_AVOID_UNLINK_URBS))
  701. usbnet_terminate_urbs(dev);
  702. usbnet_status_stop(dev);
  703. usbnet_purge_paused_rxq(dev);
  704. mpn = !test_and_clear_bit(EVENT_NO_RUNTIME_PM, &dev->flags);
  705. /* deferred work (task, timer, softirq) must also stop.
  706. * can't flush_scheduled_work() until we drop rtnl (later),
  707. * else workers could deadlock; so make workers a NOP.
  708. */
  709. dev->flags = 0;
  710. del_timer_sync (&dev->delay);
  711. tasklet_kill (&dev->bh);
  712. if (!pm)
  713. usb_autopm_put_interface(dev->intf);
  714. if (info->manage_power && mpn)
  715. info->manage_power(dev, 0);
  716. else
  717. usb_autopm_put_interface(dev->intf);
  718. return 0;
  719. }
  720. EXPORT_SYMBOL_GPL(usbnet_stop);
  721. /*-------------------------------------------------------------------------*/
  722. // posts reads, and enables write queuing
  723. // precondition: never called in_interrupt
  724. int usbnet_open (struct net_device *net)
  725. {
  726. struct usbnet *dev = netdev_priv(net);
  727. int retval;
  728. struct driver_info *info = dev->driver_info;
  729. if ((retval = usb_autopm_get_interface(dev->intf)) < 0) {
  730. netif_info(dev, ifup, dev->net,
  731. "resumption fail (%d) usbnet usb-%s-%s, %s\n",
  732. retval,
  733. dev->udev->bus->bus_name,
  734. dev->udev->devpath,
  735. info->description);
  736. goto done_nopm;
  737. }
  738. // put into "known safe" state
  739. if (info->reset && (retval = info->reset (dev)) < 0) {
  740. netif_info(dev, ifup, dev->net,
  741. "open reset fail (%d) usbnet usb-%s-%s, %s\n",
  742. retval,
  743. dev->udev->bus->bus_name,
  744. dev->udev->devpath,
  745. info->description);
  746. goto done;
  747. }
  748. /* hard_mtu or rx_urb_size may change in reset() */
  749. usbnet_update_max_qlen(dev);
  750. // insist peer be connected
  751. if (info->check_connect && (retval = info->check_connect (dev)) < 0) {
  752. netif_dbg(dev, ifup, dev->net, "can't open; %d\n", retval);
  753. goto done;
  754. }
  755. /* start any status interrupt transfer */
  756. if (dev->interrupt) {
  757. retval = usbnet_status_start(dev, GFP_KERNEL);
  758. if (retval < 0) {
  759. netif_err(dev, ifup, dev->net,
  760. "intr submit %d\n", retval);
  761. goto done;
  762. }
  763. }
  764. set_bit(EVENT_DEV_OPEN, &dev->flags);
  765. netif_start_queue (net);
  766. netif_info(dev, ifup, dev->net,
  767. "open: enable queueing (rx %d, tx %d) mtu %d %s framing\n",
  768. (int)RX_QLEN(dev), (int)TX_QLEN(dev),
  769. dev->net->mtu,
  770. (dev->driver_info->flags & FLAG_FRAMING_NC) ? "NetChip" :
  771. (dev->driver_info->flags & FLAG_FRAMING_GL) ? "GeneSys" :
  772. (dev->driver_info->flags & FLAG_FRAMING_Z) ? "Zaurus" :
  773. (dev->driver_info->flags & FLAG_FRAMING_RN) ? "RNDIS" :
  774. (dev->driver_info->flags & FLAG_FRAMING_AX) ? "ASIX" :
  775. "simple");
  776. /* reset rx error state */
  777. dev->pkt_cnt = 0;
  778. dev->pkt_err = 0;
  779. clear_bit(EVENT_RX_KILL, &dev->flags);
  780. // delay posting reads until we're fully open
  781. tasklet_schedule (&dev->bh);
  782. if (info->manage_power) {
  783. retval = info->manage_power(dev, 1);
  784. if (retval < 0) {
  785. retval = 0;
  786. set_bit(EVENT_NO_RUNTIME_PM, &dev->flags);
  787. } else {
  788. usb_autopm_put_interface(dev->intf);
  789. }
  790. }
  791. return retval;
  792. done:
  793. usb_autopm_put_interface(dev->intf);
  794. done_nopm:
  795. return retval;
  796. }
  797. EXPORT_SYMBOL_GPL(usbnet_open);
  798. /*-------------------------------------------------------------------------*/
  799. /* ethtool methods; minidrivers may need to add some more, but
  800. * they'll probably want to use this base set.
  801. */
  802. int usbnet_get_settings (struct net_device *net, struct ethtool_cmd *cmd)
  803. {
  804. struct usbnet *dev = netdev_priv(net);
  805. if (!dev->mii.mdio_read)
  806. return -EOPNOTSUPP;
  807. return mii_ethtool_gset(&dev->mii, cmd);
  808. }
  809. EXPORT_SYMBOL_GPL(usbnet_get_settings);
  810. int usbnet_set_settings (struct net_device *net, struct ethtool_cmd *cmd)
  811. {
  812. struct usbnet *dev = netdev_priv(net);
  813. int retval;
  814. if (!dev->mii.mdio_write)
  815. return -EOPNOTSUPP;
  816. retval = mii_ethtool_sset(&dev->mii, cmd);
  817. /* link speed/duplex might have changed */
  818. if (dev->driver_info->link_reset)
  819. dev->driver_info->link_reset(dev);
  820. /* hard_mtu or rx_urb_size may change in link_reset() */
  821. usbnet_update_max_qlen(dev);
  822. return retval;
  823. }
  824. EXPORT_SYMBOL_GPL(usbnet_set_settings);
  825. u32 usbnet_get_link (struct net_device *net)
  826. {
  827. struct usbnet *dev = netdev_priv(net);
  828. /* If a check_connect is defined, return its result */
  829. if (dev->driver_info->check_connect)
  830. return dev->driver_info->check_connect (dev) == 0;
  831. /* if the device has mii operations, use those */
  832. if (dev->mii.mdio_read)
  833. return mii_link_ok(&dev->mii);
  834. /* Otherwise, dtrt for drivers calling netif_carrier_{on,off} */
  835. return ethtool_op_get_link(net);
  836. }
  837. EXPORT_SYMBOL_GPL(usbnet_get_link);
  838. int usbnet_nway_reset(struct net_device *net)
  839. {
  840. struct usbnet *dev = netdev_priv(net);
  841. if (!dev->mii.mdio_write)
  842. return -EOPNOTSUPP;
  843. return mii_nway_restart(&dev->mii);
  844. }
  845. EXPORT_SYMBOL_GPL(usbnet_nway_reset);
  846. void usbnet_get_drvinfo (struct net_device *net, struct ethtool_drvinfo *info)
  847. {
  848. struct usbnet *dev = netdev_priv(net);
  849. strlcpy (info->driver, dev->driver_name, sizeof info->driver);
  850. strlcpy (info->version, DRIVER_VERSION, sizeof info->version);
  851. strlcpy (info->fw_version, dev->driver_info->description,
  852. sizeof info->fw_version);
  853. usb_make_path (dev->udev, info->bus_info, sizeof info->bus_info);
  854. }
  855. EXPORT_SYMBOL_GPL(usbnet_get_drvinfo);
  856. u32 usbnet_get_msglevel (struct net_device *net)
  857. {
  858. struct usbnet *dev = netdev_priv(net);
  859. return dev->msg_enable;
  860. }
  861. EXPORT_SYMBOL_GPL(usbnet_get_msglevel);
  862. void usbnet_set_msglevel (struct net_device *net, u32 level)
  863. {
  864. struct usbnet *dev = netdev_priv(net);
  865. dev->msg_enable = level;
  866. }
  867. EXPORT_SYMBOL_GPL(usbnet_set_msglevel);
  868. /* drivers may override default ethtool_ops in their bind() routine */
  869. static const struct ethtool_ops usbnet_ethtool_ops = {
  870. .get_settings = usbnet_get_settings,
  871. .set_settings = usbnet_set_settings,
  872. .get_link = usbnet_get_link,
  873. .nway_reset = usbnet_nway_reset,
  874. .get_drvinfo = usbnet_get_drvinfo,
  875. .get_msglevel = usbnet_get_msglevel,
  876. .set_msglevel = usbnet_set_msglevel,
  877. .get_ts_info = ethtool_op_get_ts_info,
  878. };
  879. /*-------------------------------------------------------------------------*/
  880. static void __handle_link_change(struct usbnet *dev)
  881. {
  882. if (!test_bit(EVENT_DEV_OPEN, &dev->flags))
  883. return;
  884. if (!netif_carrier_ok(dev->net)) {
  885. /* kill URBs for reading packets to save bus bandwidth */
  886. unlink_urbs(dev, &dev->rxq);
  887. /*
  888. * tx_timeout will unlink URBs for sending packets and
  889. * tx queue is stopped by netcore after link becomes off
  890. */
  891. } else {
  892. /* submitting URBs for reading packets */
  893. tasklet_schedule(&dev->bh);
  894. }
  895. /* hard_mtu or rx_urb_size may change during link change */
  896. usbnet_update_max_qlen(dev);
  897. clear_bit(EVENT_LINK_CHANGE, &dev->flags);
  898. }
  899. static void usbnet_set_rx_mode(struct net_device *net)
  900. {
  901. struct usbnet *dev = netdev_priv(net);
  902. usbnet_defer_kevent(dev, EVENT_SET_RX_MODE);
  903. }
  904. static void __handle_set_rx_mode(struct usbnet *dev)
  905. {
  906. if (dev->driver_info->set_rx_mode)
  907. (dev->driver_info->set_rx_mode)(dev);
  908. clear_bit(EVENT_SET_RX_MODE, &dev->flags);
  909. }
  910. /* work that cannot be done in interrupt context uses keventd.
  911. *
  912. * NOTE: with 2.5 we could do more of this using completion callbacks,
  913. * especially now that control transfers can be queued.
  914. */
  915. static void
  916. usbnet_deferred_kevent (struct work_struct *work)
  917. {
  918. struct usbnet *dev =
  919. container_of(work, struct usbnet, kevent);
  920. int status;
  921. /* usb_clear_halt() needs a thread context */
  922. if (test_bit (EVENT_TX_HALT, &dev->flags)) {
  923. unlink_urbs (dev, &dev->txq);
  924. status = usb_autopm_get_interface(dev->intf);
  925. if (status < 0)
  926. goto fail_pipe;
  927. status = usb_clear_halt (dev->udev, dev->out);
  928. usb_autopm_put_interface(dev->intf);
  929. if (status < 0 &&
  930. status != -EPIPE &&
  931. status != -ESHUTDOWN) {
  932. if (netif_msg_tx_err (dev))
  933. fail_pipe:
  934. netdev_err(dev->net, "can't clear tx halt, status %d\n",
  935. status);
  936. } else {
  937. clear_bit (EVENT_TX_HALT, &dev->flags);
  938. if (status != -ESHUTDOWN)
  939. netif_wake_queue (dev->net);
  940. }
  941. }
  942. if (test_bit (EVENT_RX_HALT, &dev->flags)) {
  943. unlink_urbs (dev, &dev->rxq);
  944. status = usb_autopm_get_interface(dev->intf);
  945. if (status < 0)
  946. goto fail_halt;
  947. status = usb_clear_halt (dev->udev, dev->in);
  948. usb_autopm_put_interface(dev->intf);
  949. if (status < 0 &&
  950. status != -EPIPE &&
  951. status != -ESHUTDOWN) {
  952. if (netif_msg_rx_err (dev))
  953. fail_halt:
  954. netdev_err(dev->net, "can't clear rx halt, status %d\n",
  955. status);
  956. } else {
  957. clear_bit (EVENT_RX_HALT, &dev->flags);
  958. tasklet_schedule (&dev->bh);
  959. }
  960. }
  961. /* tasklet could resubmit itself forever if memory is tight */
  962. if (test_bit (EVENT_RX_MEMORY, &dev->flags)) {
  963. struct urb *urb = NULL;
  964. int resched = 1;
  965. if (netif_running (dev->net))
  966. urb = usb_alloc_urb (0, GFP_KERNEL);
  967. else
  968. clear_bit (EVENT_RX_MEMORY, &dev->flags);
  969. if (urb != NULL) {
  970. clear_bit (EVENT_RX_MEMORY, &dev->flags);
  971. status = usb_autopm_get_interface(dev->intf);
  972. if (status < 0) {
  973. usb_free_urb(urb);
  974. goto fail_lowmem;
  975. }
  976. if (rx_submit (dev, urb, GFP_KERNEL) == -ENOLINK)
  977. resched = 0;
  978. usb_autopm_put_interface(dev->intf);
  979. fail_lowmem:
  980. if (resched)
  981. tasklet_schedule (&dev->bh);
  982. }
  983. }
  984. if (test_bit (EVENT_LINK_RESET, &dev->flags)) {
  985. struct driver_info *info = dev->driver_info;
  986. int retval = 0;
  987. clear_bit (EVENT_LINK_RESET, &dev->flags);
  988. status = usb_autopm_get_interface(dev->intf);
  989. if (status < 0)
  990. goto skip_reset;
  991. if(info->link_reset && (retval = info->link_reset(dev)) < 0) {
  992. usb_autopm_put_interface(dev->intf);
  993. skip_reset:
  994. netdev_info(dev->net, "link reset failed (%d) usbnet usb-%s-%s, %s\n",
  995. retval,
  996. dev->udev->bus->bus_name,
  997. dev->udev->devpath,
  998. info->description);
  999. } else {
  1000. usb_autopm_put_interface(dev->intf);
  1001. }
  1002. /* handle link change from link resetting */
  1003. __handle_link_change(dev);
  1004. }
  1005. if (test_bit (EVENT_LINK_CHANGE, &dev->flags))
  1006. __handle_link_change(dev);
  1007. if (test_bit (EVENT_SET_RX_MODE, &dev->flags))
  1008. __handle_set_rx_mode(dev);
  1009. if (dev->flags)
  1010. netdev_dbg(dev->net, "kevent done, flags = 0x%lx\n", dev->flags);
  1011. }
  1012. /*-------------------------------------------------------------------------*/
  1013. static void tx_complete (struct urb *urb)
  1014. {
  1015. struct sk_buff *skb = (struct sk_buff *) urb->context;
  1016. struct skb_data *entry = (struct skb_data *) skb->cb;
  1017. struct usbnet *dev = entry->dev;
  1018. if (urb->status == 0) {
  1019. dev->net->stats.tx_packets += entry->packets;
  1020. dev->net->stats.tx_bytes += entry->length;
  1021. } else {
  1022. dev->net->stats.tx_errors++;
  1023. switch (urb->status) {
  1024. case -EPIPE:
  1025. usbnet_defer_kevent (dev, EVENT_TX_HALT);
  1026. break;
  1027. /* software-driven interface shutdown */
  1028. case -ECONNRESET: // async unlink
  1029. case -ESHUTDOWN: // hardware gone
  1030. break;
  1031. /* like rx, tx gets controller i/o faults during hub_wq
  1032. * delays and so it uses the same throttling mechanism.
  1033. */
  1034. case -EPROTO:
  1035. case -ETIME:
  1036. case -EILSEQ:
  1037. usb_mark_last_busy(dev->udev);
  1038. if (!timer_pending (&dev->delay)) {
  1039. mod_timer (&dev->delay,
  1040. jiffies + THROTTLE_JIFFIES);
  1041. netif_dbg(dev, link, dev->net,
  1042. "tx throttle %d\n", urb->status);
  1043. }
  1044. netif_stop_queue (dev->net);
  1045. break;
  1046. default:
  1047. netif_dbg(dev, tx_err, dev->net,
  1048. "tx err %d\n", entry->urb->status);
  1049. break;
  1050. }
  1051. }
  1052. usb_autopm_put_interface_async(dev->intf);
  1053. (void) defer_bh(dev, skb, &dev->txq, tx_done);
  1054. }
  1055. /*-------------------------------------------------------------------------*/
  1056. void usbnet_tx_timeout (struct net_device *net)
  1057. {
  1058. struct usbnet *dev = netdev_priv(net);
  1059. unlink_urbs (dev, &dev->txq);
  1060. tasklet_schedule (&dev->bh);
  1061. /* this needs to be handled individually because the generic layer
  1062. * doesn't know what is sufficient and could not restore private
  1063. * information if a remedy of an unconditional reset were used.
  1064. */
  1065. if (dev->driver_info->recover)
  1066. (dev->driver_info->recover)(dev);
  1067. }
  1068. EXPORT_SYMBOL_GPL(usbnet_tx_timeout);
  1069. /*-------------------------------------------------------------------------*/
  1070. static int build_dma_sg(const struct sk_buff *skb, struct urb *urb)
  1071. {
  1072. unsigned num_sgs, total_len = 0;
  1073. int i, s = 0;
  1074. num_sgs = skb_shinfo(skb)->nr_frags + 1;
  1075. if (num_sgs == 1)
  1076. return 0;
  1077. /* reserve one for zero packet */
  1078. urb->sg = kmalloc((num_sgs + 1) * sizeof(struct scatterlist),
  1079. GFP_ATOMIC);
  1080. if (!urb->sg)
  1081. return -ENOMEM;
  1082. urb->num_sgs = num_sgs;
  1083. sg_init_table(urb->sg, urb->num_sgs + 1);
  1084. sg_set_buf(&urb->sg[s++], skb->data, skb_headlen(skb));
  1085. total_len += skb_headlen(skb);
  1086. for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
  1087. struct skb_frag_struct *f = &skb_shinfo(skb)->frags[i];
  1088. total_len += skb_frag_size(f);
  1089. sg_set_page(&urb->sg[i + s], f->page.p, f->size,
  1090. f->page_offset);
  1091. }
  1092. urb->transfer_buffer_length = total_len;
  1093. return 1;
  1094. }
  1095. netdev_tx_t usbnet_start_xmit (struct sk_buff *skb,
  1096. struct net_device *net)
  1097. {
  1098. struct usbnet *dev = netdev_priv(net);
  1099. unsigned int length;
  1100. struct urb *urb = NULL;
  1101. struct skb_data *entry;
  1102. struct driver_info *info = dev->driver_info;
  1103. unsigned long flags;
  1104. int retval;
  1105. if (skb)
  1106. skb_tx_timestamp(skb);
  1107. // some devices want funky USB-level framing, for
  1108. // win32 driver (usually) and/or hardware quirks
  1109. if (info->tx_fixup) {
  1110. skb = info->tx_fixup (dev, skb, GFP_ATOMIC);
  1111. if (!skb) {
  1112. /* packet collected; minidriver waiting for more */
  1113. if (info->flags & FLAG_MULTI_PACKET)
  1114. goto not_drop;
  1115. netif_dbg(dev, tx_err, dev->net, "can't tx_fixup skb\n");
  1116. goto drop;
  1117. }
  1118. }
  1119. if (!(urb = usb_alloc_urb (0, GFP_ATOMIC))) {
  1120. netif_dbg(dev, tx_err, dev->net, "no urb\n");
  1121. goto drop;
  1122. }
  1123. entry = (struct skb_data *) skb->cb;
  1124. entry->urb = urb;
  1125. entry->dev = dev;
  1126. usb_fill_bulk_urb (urb, dev->udev, dev->out,
  1127. skb->data, skb->len, tx_complete, skb);
  1128. if (dev->can_dma_sg) {
  1129. if (build_dma_sg(skb, urb) < 0)
  1130. goto drop;
  1131. }
  1132. length = urb->transfer_buffer_length;
  1133. /* don't assume the hardware handles USB_ZERO_PACKET
  1134. * NOTE: strictly conforming cdc-ether devices should expect
  1135. * the ZLP here, but ignore the one-byte packet.
  1136. * NOTE2: CDC NCM specification is different from CDC ECM when
  1137. * handling ZLP/short packets, so cdc_ncm driver will make short
  1138. * packet itself if needed.
  1139. */
  1140. if (length % dev->maxpacket == 0) {
  1141. if (!(info->flags & FLAG_SEND_ZLP)) {
  1142. if (!(info->flags & FLAG_MULTI_PACKET)) {
  1143. length++;
  1144. if (skb_tailroom(skb) && !urb->num_sgs) {
  1145. skb->data[skb->len] = 0;
  1146. __skb_put(skb, 1);
  1147. } else if (urb->num_sgs)
  1148. sg_set_buf(&urb->sg[urb->num_sgs++],
  1149. dev->padding_pkt, 1);
  1150. }
  1151. } else
  1152. urb->transfer_flags |= URB_ZERO_PACKET;
  1153. }
  1154. urb->transfer_buffer_length = length;
  1155. if (info->flags & FLAG_MULTI_PACKET) {
  1156. /* Driver has set number of packets and a length delta.
  1157. * Calculate the complete length and ensure that it's
  1158. * positive.
  1159. */
  1160. entry->length += length;
  1161. if (WARN_ON_ONCE(entry->length <= 0))
  1162. entry->length = length;
  1163. } else {
  1164. usbnet_set_skb_tx_stats(skb, 1, length);
  1165. }
  1166. spin_lock_irqsave(&dev->txq.lock, flags);
  1167. retval = usb_autopm_get_interface_async(dev->intf);
  1168. if (retval < 0) {
  1169. spin_unlock_irqrestore(&dev->txq.lock, flags);
  1170. goto drop;
  1171. }
  1172. #ifdef CONFIG_PM
  1173. /* if this triggers the device is still a sleep */
  1174. if (test_bit(EVENT_DEV_ASLEEP, &dev->flags)) {
  1175. /* transmission will be done in resume */
  1176. usb_anchor_urb(urb, &dev->deferred);
  1177. /* no use to process more packets */
  1178. netif_stop_queue(net);
  1179. usb_put_urb(urb);
  1180. spin_unlock_irqrestore(&dev->txq.lock, flags);
  1181. netdev_dbg(dev->net, "Delaying transmission for resumption\n");
  1182. goto deferred;
  1183. }
  1184. #endif
  1185. switch ((retval = usb_submit_urb (urb, GFP_ATOMIC))) {
  1186. case -EPIPE:
  1187. netif_stop_queue (net);
  1188. usbnet_defer_kevent (dev, EVENT_TX_HALT);
  1189. usb_autopm_put_interface_async(dev->intf);
  1190. break;
  1191. default:
  1192. usb_autopm_put_interface_async(dev->intf);
  1193. netif_dbg(dev, tx_err, dev->net,
  1194. "tx: submit urb err %d\n", retval);
  1195. break;
  1196. case 0:
  1197. net->trans_start = jiffies;
  1198. __usbnet_queue_skb(&dev->txq, skb, tx_start);
  1199. if (dev->txq.qlen >= TX_QLEN (dev))
  1200. netif_stop_queue (net);
  1201. }
  1202. spin_unlock_irqrestore (&dev->txq.lock, flags);
  1203. if (retval) {
  1204. netif_dbg(dev, tx_err, dev->net, "drop, code %d\n", retval);
  1205. drop:
  1206. dev->net->stats.tx_dropped++;
  1207. not_drop:
  1208. if (skb)
  1209. dev_kfree_skb_any (skb);
  1210. if (urb) {
  1211. kfree(urb->sg);
  1212. usb_free_urb(urb);
  1213. }
  1214. } else
  1215. netif_dbg(dev, tx_queued, dev->net,
  1216. "> tx, len %u, type 0x%x\n", length, skb->protocol);
  1217. #ifdef CONFIG_PM
  1218. deferred:
  1219. #endif
  1220. return NETDEV_TX_OK;
  1221. }
  1222. EXPORT_SYMBOL_GPL(usbnet_start_xmit);
  1223. static int rx_alloc_submit(struct usbnet *dev, gfp_t flags)
  1224. {
  1225. struct urb *urb;
  1226. int i;
  1227. int ret = 0;
  1228. /* don't refill the queue all at once */
  1229. for (i = 0; i < 10 && dev->rxq.qlen < RX_QLEN(dev); i++) {
  1230. urb = usb_alloc_urb(0, flags);
  1231. if (urb != NULL) {
  1232. ret = rx_submit(dev, urb, flags);
  1233. if (ret)
  1234. goto err;
  1235. } else {
  1236. ret = -ENOMEM;
  1237. goto err;
  1238. }
  1239. }
  1240. err:
  1241. return ret;
  1242. }
  1243. /*-------------------------------------------------------------------------*/
  1244. // tasklet (work deferred from completions, in_irq) or timer
  1245. static void usbnet_bh (unsigned long param)
  1246. {
  1247. struct usbnet *dev = (struct usbnet *) param;
  1248. struct sk_buff *skb;
  1249. struct skb_data *entry;
  1250. while ((skb = skb_dequeue (&dev->done))) {
  1251. entry = (struct skb_data *) skb->cb;
  1252. switch (entry->state) {
  1253. case rx_done:
  1254. entry->state = rx_cleanup;
  1255. rx_process (dev, skb);
  1256. continue;
  1257. case tx_done:
  1258. kfree(entry->urb->sg);
  1259. case rx_cleanup:
  1260. usb_free_urb (entry->urb);
  1261. dev_kfree_skb (skb);
  1262. continue;
  1263. default:
  1264. netdev_dbg(dev->net, "bogus skb state %d\n", entry->state);
  1265. }
  1266. }
  1267. /* restart RX again after disabling due to high error rate */
  1268. clear_bit(EVENT_RX_KILL, &dev->flags);
  1269. /* waiting for all pending urbs to complete?
  1270. * only then can we forgo submitting anew
  1271. */
  1272. if (waitqueue_active(&dev->wait)) {
  1273. if (dev->txq.qlen + dev->rxq.qlen + dev->done.qlen == 0)
  1274. wake_up_all(&dev->wait);
  1275. // or are we maybe short a few urbs?
  1276. } else if (netif_running (dev->net) &&
  1277. netif_device_present (dev->net) &&
  1278. netif_carrier_ok(dev->net) &&
  1279. !timer_pending (&dev->delay) &&
  1280. !test_bit (EVENT_RX_HALT, &dev->flags)) {
  1281. int temp = dev->rxq.qlen;
  1282. if (temp < RX_QLEN(dev)) {
  1283. if (rx_alloc_submit(dev, GFP_ATOMIC) == -ENOLINK)
  1284. return;
  1285. if (temp != dev->rxq.qlen)
  1286. netif_dbg(dev, link, dev->net,
  1287. "rxqlen %d --> %d\n",
  1288. temp, dev->rxq.qlen);
  1289. if (dev->rxq.qlen < RX_QLEN(dev))
  1290. tasklet_schedule (&dev->bh);
  1291. }
  1292. if (dev->txq.qlen < TX_QLEN (dev))
  1293. netif_wake_queue (dev->net);
  1294. }
  1295. }
  1296. /*-------------------------------------------------------------------------
  1297. *
  1298. * USB Device Driver support
  1299. *
  1300. *-------------------------------------------------------------------------*/
  1301. // precondition: never called in_interrupt
  1302. void usbnet_disconnect (struct usb_interface *intf)
  1303. {
  1304. struct usbnet *dev;
  1305. struct usb_device *xdev;
  1306. struct net_device *net;
  1307. dev = usb_get_intfdata(intf);
  1308. usb_set_intfdata(intf, NULL);
  1309. if (!dev)
  1310. return;
  1311. xdev = interface_to_usbdev (intf);
  1312. netif_info(dev, probe, dev->net, "unregister '%s' usb-%s-%s, %s\n",
  1313. intf->dev.driver->name,
  1314. xdev->bus->bus_name, xdev->devpath,
  1315. dev->driver_info->description);
  1316. net = dev->net;
  1317. unregister_netdev (net);
  1318. cancel_work_sync(&dev->kevent);
  1319. usb_scuttle_anchored_urbs(&dev->deferred);
  1320. if (dev->driver_info->unbind)
  1321. dev->driver_info->unbind (dev, intf);
  1322. usb_kill_urb(dev->interrupt);
  1323. usb_free_urb(dev->interrupt);
  1324. kfree(dev->padding_pkt);
  1325. free_netdev(net);
  1326. }
  1327. EXPORT_SYMBOL_GPL(usbnet_disconnect);
  1328. static const struct net_device_ops usbnet_netdev_ops = {
  1329. .ndo_open = usbnet_open,
  1330. .ndo_stop = usbnet_stop,
  1331. .ndo_start_xmit = usbnet_start_xmit,
  1332. .ndo_tx_timeout = usbnet_tx_timeout,
  1333. .ndo_set_rx_mode = usbnet_set_rx_mode,
  1334. .ndo_change_mtu = usbnet_change_mtu,
  1335. .ndo_set_mac_address = eth_mac_addr,
  1336. .ndo_validate_addr = eth_validate_addr,
  1337. };
  1338. /*-------------------------------------------------------------------------*/
  1339. // precondition: never called in_interrupt
  1340. static struct device_type wlan_type = {
  1341. .name = "wlan",
  1342. };
  1343. static struct device_type wwan_type = {
  1344. .name = "wwan",
  1345. };
  1346. int
  1347. usbnet_probe (struct usb_interface *udev, const struct usb_device_id *prod)
  1348. {
  1349. struct usbnet *dev;
  1350. struct net_device *net;
  1351. struct usb_host_interface *interface;
  1352. struct driver_info *info;
  1353. struct usb_device *xdev;
  1354. int status;
  1355. const char *name;
  1356. struct usb_driver *driver = to_usb_driver(udev->dev.driver);
  1357. /* usbnet already took usb runtime pm, so have to enable the feature
  1358. * for usb interface, otherwise usb_autopm_get_interface may return
  1359. * failure if RUNTIME_PM is enabled.
  1360. */
  1361. if (!driver->supports_autosuspend) {
  1362. driver->supports_autosuspend = 1;
  1363. pm_runtime_enable(&udev->dev);
  1364. }
  1365. name = udev->dev.driver->name;
  1366. info = (struct driver_info *) prod->driver_info;
  1367. if (!info) {
  1368. dev_dbg (&udev->dev, "blacklisted by %s\n", name);
  1369. return -ENODEV;
  1370. }
  1371. xdev = interface_to_usbdev (udev);
  1372. interface = udev->cur_altsetting;
  1373. status = -ENOMEM;
  1374. // set up our own records
  1375. net = alloc_etherdev(sizeof(*dev));
  1376. if (!net)
  1377. goto out;
  1378. /* netdev_printk() needs this so do it as early as possible */
  1379. SET_NETDEV_DEV(net, &udev->dev);
  1380. dev = netdev_priv(net);
  1381. dev->udev = xdev;
  1382. dev->intf = udev;
  1383. dev->driver_info = info;
  1384. dev->driver_name = name;
  1385. dev->msg_enable = netif_msg_init (msg_level, NETIF_MSG_DRV
  1386. | NETIF_MSG_PROBE | NETIF_MSG_LINK);
  1387. init_waitqueue_head(&dev->wait);
  1388. skb_queue_head_init (&dev->rxq);
  1389. skb_queue_head_init (&dev->txq);
  1390. skb_queue_head_init (&dev->done);
  1391. skb_queue_head_init(&dev->rxq_pause);
  1392. dev->bh.func = usbnet_bh;
  1393. dev->bh.data = (unsigned long) dev;
  1394. INIT_WORK (&dev->kevent, usbnet_deferred_kevent);
  1395. init_usb_anchor(&dev->deferred);
  1396. dev->delay.function = usbnet_bh;
  1397. dev->delay.data = (unsigned long) dev;
  1398. init_timer (&dev->delay);
  1399. mutex_init (&dev->phy_mutex);
  1400. mutex_init(&dev->interrupt_mutex);
  1401. dev->interrupt_count = 0;
  1402. dev->net = net;
  1403. strcpy (net->name, "usb%d");
  1404. memcpy (net->dev_addr, node_id, sizeof node_id);
  1405. /* rx and tx sides can use different message sizes;
  1406. * bind() should set rx_urb_size in that case.
  1407. */
  1408. dev->hard_mtu = net->mtu + net->hard_header_len;
  1409. #if 0
  1410. // dma_supported() is deeply broken on almost all architectures
  1411. // possible with some EHCI controllers
  1412. if (dma_supported (&udev->dev, DMA_BIT_MASK(64)))
  1413. net->features |= NETIF_F_HIGHDMA;
  1414. #endif
  1415. net->netdev_ops = &usbnet_netdev_ops;
  1416. net->watchdog_timeo = TX_TIMEOUT_JIFFIES;
  1417. net->ethtool_ops = &usbnet_ethtool_ops;
  1418. // allow device-specific bind/init procedures
  1419. // NOTE net->name still not usable ...
  1420. if (info->bind) {
  1421. status = info->bind (dev, udev);
  1422. if (status < 0)
  1423. goto out1;
  1424. // heuristic: "usb%d" for links we know are two-host,
  1425. // else "eth%d" when there's reasonable doubt. userspace
  1426. // can rename the link if it knows better.
  1427. if ((dev->driver_info->flags & FLAG_ETHER) != 0 &&
  1428. ((dev->driver_info->flags & FLAG_POINTTOPOINT) == 0 ||
  1429. (net->dev_addr [0] & 0x02) == 0))
  1430. strcpy (net->name, "eth%d");
  1431. /* WLAN devices should always be named "wlan%d" */
  1432. if ((dev->driver_info->flags & FLAG_WLAN) != 0)
  1433. strcpy(net->name, "wlan%d");
  1434. /* WWAN devices should always be named "wwan%d" */
  1435. if ((dev->driver_info->flags & FLAG_WWAN) != 0)
  1436. strcpy(net->name, "wwan%d");
  1437. /* devices that cannot do ARP */
  1438. if ((dev->driver_info->flags & FLAG_NOARP) != 0)
  1439. net->flags |= IFF_NOARP;
  1440. /* maybe the remote can't receive an Ethernet MTU */
  1441. if (net->mtu > (dev->hard_mtu - net->hard_header_len))
  1442. net->mtu = dev->hard_mtu - net->hard_header_len;
  1443. } else if (!info->in || !info->out)
  1444. status = usbnet_get_endpoints (dev, udev);
  1445. else {
  1446. dev->in = usb_rcvbulkpipe (xdev, info->in);
  1447. dev->out = usb_sndbulkpipe (xdev, info->out);
  1448. if (!(info->flags & FLAG_NO_SETINT))
  1449. status = usb_set_interface (xdev,
  1450. interface->desc.bInterfaceNumber,
  1451. interface->desc.bAlternateSetting);
  1452. else
  1453. status = 0;
  1454. }
  1455. if (status >= 0 && dev->status)
  1456. status = init_status (dev, udev);
  1457. if (status < 0)
  1458. goto out3;
  1459. if (!dev->rx_urb_size)
  1460. dev->rx_urb_size = dev->hard_mtu;
  1461. dev->maxpacket = usb_maxpacket (dev->udev, dev->out, 1);
  1462. /* let userspace know we have a random address */
  1463. if (ether_addr_equal(net->dev_addr, node_id))
  1464. net->addr_assign_type = NET_ADDR_RANDOM;
  1465. if ((dev->driver_info->flags & FLAG_WLAN) != 0)
  1466. SET_NETDEV_DEVTYPE(net, &wlan_type);
  1467. if ((dev->driver_info->flags & FLAG_WWAN) != 0)
  1468. SET_NETDEV_DEVTYPE(net, &wwan_type);
  1469. /* initialize max rx_qlen and tx_qlen */
  1470. usbnet_update_max_qlen(dev);
  1471. if (dev->can_dma_sg && !(info->flags & FLAG_SEND_ZLP) &&
  1472. !(info->flags & FLAG_MULTI_PACKET)) {
  1473. dev->padding_pkt = kzalloc(1, GFP_KERNEL);
  1474. if (!dev->padding_pkt) {
  1475. status = -ENOMEM;
  1476. goto out4;
  1477. }
  1478. }
  1479. status = register_netdev (net);
  1480. if (status)
  1481. goto out5;
  1482. netif_info(dev, probe, dev->net,
  1483. "register '%s' at usb-%s-%s, %s, %pM\n",
  1484. udev->dev.driver->name,
  1485. xdev->bus->bus_name, xdev->devpath,
  1486. dev->driver_info->description,
  1487. net->dev_addr);
  1488. // ok, it's ready to go.
  1489. usb_set_intfdata (udev, dev);
  1490. netif_device_attach (net);
  1491. if (dev->driver_info->flags & FLAG_LINK_INTR)
  1492. usbnet_link_change(dev, 0, 0);
  1493. return 0;
  1494. out5:
  1495. kfree(dev->padding_pkt);
  1496. out4:
  1497. usb_free_urb(dev->interrupt);
  1498. out3:
  1499. if (info->unbind)
  1500. info->unbind (dev, udev);
  1501. out1:
  1502. free_netdev(net);
  1503. out:
  1504. return status;
  1505. }
  1506. EXPORT_SYMBOL_GPL(usbnet_probe);
  1507. /*-------------------------------------------------------------------------*/
  1508. /*
  1509. * suspend the whole driver as soon as the first interface is suspended
  1510. * resume only when the last interface is resumed
  1511. */
  1512. int usbnet_suspend (struct usb_interface *intf, pm_message_t message)
  1513. {
  1514. struct usbnet *dev = usb_get_intfdata(intf);
  1515. if (!dev->suspend_count++) {
  1516. spin_lock_irq(&dev->txq.lock);
  1517. /* don't autosuspend while transmitting */
  1518. if (dev->txq.qlen && PMSG_IS_AUTO(message)) {
  1519. dev->suspend_count--;
  1520. spin_unlock_irq(&dev->txq.lock);
  1521. return -EBUSY;
  1522. } else {
  1523. set_bit(EVENT_DEV_ASLEEP, &dev->flags);
  1524. spin_unlock_irq(&dev->txq.lock);
  1525. }
  1526. /*
  1527. * accelerate emptying of the rx and queues, to avoid
  1528. * having everything error out.
  1529. */
  1530. netif_device_detach (dev->net);
  1531. usbnet_terminate_urbs(dev);
  1532. __usbnet_status_stop_force(dev);
  1533. /*
  1534. * reattach so runtime management can use and
  1535. * wake the device
  1536. */
  1537. netif_device_attach (dev->net);
  1538. }
  1539. return 0;
  1540. }
  1541. EXPORT_SYMBOL_GPL(usbnet_suspend);
  1542. int usbnet_resume (struct usb_interface *intf)
  1543. {
  1544. struct usbnet *dev = usb_get_intfdata(intf);
  1545. struct sk_buff *skb;
  1546. struct urb *res;
  1547. int retval;
  1548. if (!--dev->suspend_count) {
  1549. /* resume interrupt URB if it was previously submitted */
  1550. __usbnet_status_start_force(dev, GFP_NOIO);
  1551. spin_lock_irq(&dev->txq.lock);
  1552. while ((res = usb_get_from_anchor(&dev->deferred))) {
  1553. skb = (struct sk_buff *)res->context;
  1554. retval = usb_submit_urb(res, GFP_ATOMIC);
  1555. if (retval < 0) {
  1556. dev_kfree_skb_any(skb);
  1557. kfree(res->sg);
  1558. usb_free_urb(res);
  1559. usb_autopm_put_interface_async(dev->intf);
  1560. } else {
  1561. dev->net->trans_start = jiffies;
  1562. __skb_queue_tail(&dev->txq, skb);
  1563. }
  1564. }
  1565. smp_mb();
  1566. clear_bit(EVENT_DEV_ASLEEP, &dev->flags);
  1567. spin_unlock_irq(&dev->txq.lock);
  1568. if (test_bit(EVENT_DEV_OPEN, &dev->flags)) {
  1569. /* handle remote wakeup ASAP
  1570. * we cannot race against stop
  1571. */
  1572. if (netif_device_present(dev->net) &&
  1573. !timer_pending(&dev->delay) &&
  1574. !test_bit(EVENT_RX_HALT, &dev->flags))
  1575. rx_alloc_submit(dev, GFP_NOIO);
  1576. if (!(dev->txq.qlen >= TX_QLEN(dev)))
  1577. netif_tx_wake_all_queues(dev->net);
  1578. tasklet_schedule (&dev->bh);
  1579. }
  1580. }
  1581. if (test_and_clear_bit(EVENT_DEVICE_REPORT_IDLE, &dev->flags))
  1582. usb_autopm_get_interface_no_resume(intf);
  1583. return 0;
  1584. }
  1585. EXPORT_SYMBOL_GPL(usbnet_resume);
  1586. /*
  1587. * Either a subdriver implements manage_power, then it is assumed to always
  1588. * be ready to be suspended or it reports the readiness to be suspended
  1589. * explicitly
  1590. */
  1591. void usbnet_device_suggests_idle(struct usbnet *dev)
  1592. {
  1593. if (!test_and_set_bit(EVENT_DEVICE_REPORT_IDLE, &dev->flags)) {
  1594. dev->intf->needs_remote_wakeup = 1;
  1595. usb_autopm_put_interface_async(dev->intf);
  1596. }
  1597. }
  1598. EXPORT_SYMBOL(usbnet_device_suggests_idle);
  1599. /*
  1600. * For devices that can do without special commands
  1601. */
  1602. int usbnet_manage_power(struct usbnet *dev, int on)
  1603. {
  1604. dev->intf->needs_remote_wakeup = on;
  1605. return 0;
  1606. }
  1607. EXPORT_SYMBOL(usbnet_manage_power);
  1608. void usbnet_link_change(struct usbnet *dev, bool link, bool need_reset)
  1609. {
  1610. /* update link after link is reseted */
  1611. if (link && !need_reset)
  1612. netif_carrier_on(dev->net);
  1613. else
  1614. netif_carrier_off(dev->net);
  1615. if (need_reset && link)
  1616. usbnet_defer_kevent(dev, EVENT_LINK_RESET);
  1617. else
  1618. usbnet_defer_kevent(dev, EVENT_LINK_CHANGE);
  1619. }
  1620. EXPORT_SYMBOL(usbnet_link_change);
  1621. /*-------------------------------------------------------------------------*/
  1622. static int __usbnet_read_cmd(struct usbnet *dev, u8 cmd, u8 reqtype,
  1623. u16 value, u16 index, void *data, u16 size)
  1624. {
  1625. void *buf = NULL;
  1626. int err = -ENOMEM;
  1627. netdev_dbg(dev->net, "usbnet_read_cmd cmd=0x%02x reqtype=%02x"
  1628. " value=0x%04x index=0x%04x size=%d\n",
  1629. cmd, reqtype, value, index, size);
  1630. if (data) {
  1631. buf = kmalloc(size, GFP_KERNEL);
  1632. if (!buf)
  1633. goto out;
  1634. }
  1635. err = usb_control_msg(dev->udev, usb_rcvctrlpipe(dev->udev, 0),
  1636. cmd, reqtype, value, index, buf, size,
  1637. USB_CTRL_GET_TIMEOUT);
  1638. if (err > 0 && err <= size)
  1639. memcpy(data, buf, err);
  1640. kfree(buf);
  1641. out:
  1642. return err;
  1643. }
  1644. static int __usbnet_write_cmd(struct usbnet *dev, u8 cmd, u8 reqtype,
  1645. u16 value, u16 index, const void *data,
  1646. u16 size)
  1647. {
  1648. void *buf = NULL;
  1649. int err = -ENOMEM;
  1650. netdev_dbg(dev->net, "usbnet_write_cmd cmd=0x%02x reqtype=%02x"
  1651. " value=0x%04x index=0x%04x size=%d\n",
  1652. cmd, reqtype, value, index, size);
  1653. if (data) {
  1654. buf = kmemdup(data, size, GFP_KERNEL);
  1655. if (!buf)
  1656. goto out;
  1657. }
  1658. err = usb_control_msg(dev->udev, usb_sndctrlpipe(dev->udev, 0),
  1659. cmd, reqtype, value, index, buf, size,
  1660. USB_CTRL_SET_TIMEOUT);
  1661. kfree(buf);
  1662. out:
  1663. return err;
  1664. }
  1665. /*
  1666. * The function can't be called inside suspend/resume callback,
  1667. * otherwise deadlock will be caused.
  1668. */
  1669. int usbnet_read_cmd(struct usbnet *dev, u8 cmd, u8 reqtype,
  1670. u16 value, u16 index, void *data, u16 size)
  1671. {
  1672. int ret;
  1673. if (usb_autopm_get_interface(dev->intf) < 0)
  1674. return -ENODEV;
  1675. ret = __usbnet_read_cmd(dev, cmd, reqtype, value, index,
  1676. data, size);
  1677. usb_autopm_put_interface(dev->intf);
  1678. return ret;
  1679. }
  1680. EXPORT_SYMBOL_GPL(usbnet_read_cmd);
  1681. /*
  1682. * The function can't be called inside suspend/resume callback,
  1683. * otherwise deadlock will be caused.
  1684. */
  1685. int usbnet_write_cmd(struct usbnet *dev, u8 cmd, u8 reqtype,
  1686. u16 value, u16 index, const void *data, u16 size)
  1687. {
  1688. int ret;
  1689. if (usb_autopm_get_interface(dev->intf) < 0)
  1690. return -ENODEV;
  1691. ret = __usbnet_write_cmd(dev, cmd, reqtype, value, index,
  1692. data, size);
  1693. usb_autopm_put_interface(dev->intf);
  1694. return ret;
  1695. }
  1696. EXPORT_SYMBOL_GPL(usbnet_write_cmd);
  1697. /*
  1698. * The function can be called inside suspend/resume callback safely
  1699. * and should only be called by suspend/resume callback generally.
  1700. */
  1701. int usbnet_read_cmd_nopm(struct usbnet *dev, u8 cmd, u8 reqtype,
  1702. u16 value, u16 index, void *data, u16 size)
  1703. {
  1704. return __usbnet_read_cmd(dev, cmd, reqtype, value, index,
  1705. data, size);
  1706. }
  1707. EXPORT_SYMBOL_GPL(usbnet_read_cmd_nopm);
  1708. /*
  1709. * The function can be called inside suspend/resume callback safely
  1710. * and should only be called by suspend/resume callback generally.
  1711. */
  1712. int usbnet_write_cmd_nopm(struct usbnet *dev, u8 cmd, u8 reqtype,
  1713. u16 value, u16 index, const void *data,
  1714. u16 size)
  1715. {
  1716. return __usbnet_write_cmd(dev, cmd, reqtype, value, index,
  1717. data, size);
  1718. }
  1719. EXPORT_SYMBOL_GPL(usbnet_write_cmd_nopm);
  1720. static void usbnet_async_cmd_cb(struct urb *urb)
  1721. {
  1722. struct usb_ctrlrequest *req = (struct usb_ctrlrequest *)urb->context;
  1723. int status = urb->status;
  1724. if (status < 0)
  1725. dev_dbg(&urb->dev->dev, "%s failed with %d",
  1726. __func__, status);
  1727. kfree(req);
  1728. usb_free_urb(urb);
  1729. }
  1730. /*
  1731. * The caller must make sure that device can't be put into suspend
  1732. * state until the control URB completes.
  1733. */
  1734. int usbnet_write_cmd_async(struct usbnet *dev, u8 cmd, u8 reqtype,
  1735. u16 value, u16 index, const void *data, u16 size)
  1736. {
  1737. struct usb_ctrlrequest *req = NULL;
  1738. struct urb *urb;
  1739. int err = -ENOMEM;
  1740. void *buf = NULL;
  1741. netdev_dbg(dev->net, "usbnet_write_cmd cmd=0x%02x reqtype=%02x"
  1742. " value=0x%04x index=0x%04x size=%d\n",
  1743. cmd, reqtype, value, index, size);
  1744. urb = usb_alloc_urb(0, GFP_ATOMIC);
  1745. if (!urb) {
  1746. netdev_err(dev->net, "Error allocating URB in"
  1747. " %s!\n", __func__);
  1748. goto fail;
  1749. }
  1750. if (data) {
  1751. buf = kmemdup(data, size, GFP_ATOMIC);
  1752. if (!buf) {
  1753. netdev_err(dev->net, "Error allocating buffer"
  1754. " in %s!\n", __func__);
  1755. goto fail_free;
  1756. }
  1757. }
  1758. req = kmalloc(sizeof(struct usb_ctrlrequest), GFP_ATOMIC);
  1759. if (!req)
  1760. goto fail_free_buf;
  1761. req->bRequestType = reqtype;
  1762. req->bRequest = cmd;
  1763. req->wValue = cpu_to_le16(value);
  1764. req->wIndex = cpu_to_le16(index);
  1765. req->wLength = cpu_to_le16(size);
  1766. usb_fill_control_urb(urb, dev->udev,
  1767. usb_sndctrlpipe(dev->udev, 0),
  1768. (void *)req, buf, size,
  1769. usbnet_async_cmd_cb, req);
  1770. urb->transfer_flags |= URB_FREE_BUFFER;
  1771. err = usb_submit_urb(urb, GFP_ATOMIC);
  1772. if (err < 0) {
  1773. netdev_err(dev->net, "Error submitting the control"
  1774. " message: status=%d\n", err);
  1775. goto fail_free;
  1776. }
  1777. return 0;
  1778. fail_free_buf:
  1779. kfree(buf);
  1780. fail_free:
  1781. kfree(req);
  1782. usb_free_urb(urb);
  1783. fail:
  1784. return err;
  1785. }
  1786. EXPORT_SYMBOL_GPL(usbnet_write_cmd_async);
  1787. /*-------------------------------------------------------------------------*/
  1788. static int __init usbnet_init(void)
  1789. {
  1790. /* Compiler should optimize this out. */
  1791. BUILD_BUG_ON(
  1792. FIELD_SIZEOF(struct sk_buff, cb) < sizeof(struct skb_data));
  1793. eth_random_addr(node_id);
  1794. return 0;
  1795. }
  1796. module_init(usbnet_init);
  1797. static void __exit usbnet_exit(void)
  1798. {
  1799. }
  1800. module_exit(usbnet_exit);
  1801. MODULE_AUTHOR("David Brownell");
  1802. MODULE_DESCRIPTION("USB network driver framework");
  1803. MODULE_LICENSE("GPL");