usbatm.c 37 KB

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  1. /******************************************************************************
  2. * usbatm.c - Generic USB xDSL driver core
  3. *
  4. * Copyright (C) 2001, Alcatel
  5. * Copyright (C) 2003, Duncan Sands, SolNegro, Josep Comas
  6. * Copyright (C) 2004, David Woodhouse, Roman Kagan
  7. *
  8. * This program is free software; you can redistribute it and/or modify it
  9. * under the terms of the GNU General Public License as published by the Free
  10. * Software Foundation; either version 2 of the License, or (at your option)
  11. * any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful, but WITHOUT
  14. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  15. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  16. * more details.
  17. *
  18. * You should have received a copy of the GNU General Public License along with
  19. * this program; if not, write to the Free Software Foundation, Inc., 59
  20. * Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  21. *
  22. ******************************************************************************/
  23. /*
  24. * Written by Johan Verrept, Duncan Sands (duncan.sands@free.fr) and David Woodhouse
  25. *
  26. * 1.7+: - See the check-in logs
  27. *
  28. * 1.6: - No longer opens a connection if the firmware is not loaded
  29. * - Added support for the speedtouch 330
  30. * - Removed the limit on the number of devices
  31. * - Module now autoloads on device plugin
  32. * - Merged relevant parts of sarlib
  33. * - Replaced the kernel thread with a tasklet
  34. * - New packet transmission code
  35. * - Changed proc file contents
  36. * - Fixed all known SMP races
  37. * - Many fixes and cleanups
  38. * - Various fixes by Oliver Neukum (oliver@neukum.name)
  39. *
  40. * 1.5A: - Version for inclusion in 2.5 series kernel
  41. * - Modifications by Richard Purdie (rpurdie@rpsys.net)
  42. * - made compatible with kernel 2.5.6 onwards by changing
  43. * usbatm_usb_send_data_context->urb to a pointer and adding code
  44. * to alloc and free it
  45. * - remove_wait_queue() added to usbatm_atm_processqueue_thread()
  46. *
  47. * 1.5: - fixed memory leak when atmsar_decode_aal5 returned NULL.
  48. * (reported by stephen.robinson@zen.co.uk)
  49. *
  50. * 1.4: - changed the spin_lock() under interrupt to spin_lock_irqsave()
  51. * - unlink all active send urbs of a vcc that is being closed.
  52. *
  53. * 1.3.1: - added the version number
  54. *
  55. * 1.3: - Added multiple send urb support
  56. * - fixed memory leak and vcc->tx_inuse starvation bug
  57. * when not enough memory left in vcc.
  58. *
  59. * 1.2: - Fixed race condition in usbatm_usb_send_data()
  60. * 1.1: - Turned off packet debugging
  61. *
  62. */
  63. #include "usbatm.h"
  64. #include <asm/uaccess.h>
  65. #include <linux/crc32.h>
  66. #include <linux/errno.h>
  67. #include <linux/init.h>
  68. #include <linux/interrupt.h>
  69. #include <linux/kernel.h>
  70. #include <linux/module.h>
  71. #include <linux/moduleparam.h>
  72. #include <linux/netdevice.h>
  73. #include <linux/proc_fs.h>
  74. #include <linux/sched.h>
  75. #include <linux/signal.h>
  76. #include <linux/slab.h>
  77. #include <linux/smp_lock.h>
  78. #include <linux/stat.h>
  79. #include <linux/timer.h>
  80. #include <linux/wait.h>
  81. #ifdef VERBOSE_DEBUG
  82. static int usbatm_print_packet(const unsigned char *data, int len);
  83. #define PACKETDEBUG(arg...) usbatm_print_packet (arg)
  84. #define vdbg(arg...) dbg (arg)
  85. #else
  86. #define PACKETDEBUG(arg...)
  87. #define vdbg(arg...)
  88. #endif
  89. #define DRIVER_AUTHOR "Johan Verrept, Duncan Sands <duncan.sands@free.fr>"
  90. #define DRIVER_VERSION "1.10"
  91. #define DRIVER_DESC "Generic USB ATM/DSL I/O, version " DRIVER_VERSION
  92. static const char usbatm_driver_name[] = "usbatm";
  93. #define UDSL_MAX_RCV_URBS 16
  94. #define UDSL_MAX_SND_URBS 16
  95. #define UDSL_MAX_BUF_SIZE 64 * 1024 /* bytes */
  96. #define UDSL_DEFAULT_RCV_URBS 4
  97. #define UDSL_DEFAULT_SND_URBS 4
  98. #define UDSL_DEFAULT_RCV_BUF_SIZE 64 * ATM_CELL_SIZE /* bytes */
  99. #define UDSL_DEFAULT_SND_BUF_SIZE 64 * ATM_CELL_SIZE /* bytes */
  100. #define ATM_CELL_HEADER (ATM_CELL_SIZE - ATM_CELL_PAYLOAD)
  101. #define THROTTLE_MSECS 100 /* delay to recover processing after urb submission fails */
  102. static unsigned int num_rcv_urbs = UDSL_DEFAULT_RCV_URBS;
  103. static unsigned int num_snd_urbs = UDSL_DEFAULT_SND_URBS;
  104. static unsigned int rcv_buf_bytes = UDSL_DEFAULT_RCV_BUF_SIZE;
  105. static unsigned int snd_buf_bytes = UDSL_DEFAULT_SND_BUF_SIZE;
  106. module_param(num_rcv_urbs, uint, S_IRUGO);
  107. MODULE_PARM_DESC(num_rcv_urbs,
  108. "Number of urbs used for reception (range: 0-"
  109. __MODULE_STRING(UDSL_MAX_RCV_URBS) ", default: "
  110. __MODULE_STRING(UDSL_DEFAULT_RCV_URBS) ")");
  111. module_param(num_snd_urbs, uint, S_IRUGO);
  112. MODULE_PARM_DESC(num_snd_urbs,
  113. "Number of urbs used for transmission (range: 0-"
  114. __MODULE_STRING(UDSL_MAX_SND_URBS) ", default: "
  115. __MODULE_STRING(UDSL_DEFAULT_SND_URBS) ")");
  116. module_param(rcv_buf_bytes, uint, S_IRUGO);
  117. MODULE_PARM_DESC(rcv_buf_bytes,
  118. "Size of the buffers used for reception, in bytes (range: 1-"
  119. __MODULE_STRING(UDSL_MAX_BUF_SIZE) ", default: "
  120. __MODULE_STRING(UDSL_DEFAULT_RCV_BUF_SIZE) ")");
  121. module_param(snd_buf_bytes, uint, S_IRUGO);
  122. MODULE_PARM_DESC(snd_buf_bytes,
  123. "Size of the buffers used for transmission, in bytes (range: 1-"
  124. __MODULE_STRING(UDSL_MAX_SND_BUF_SIZE) ", default: "
  125. __MODULE_STRING(UDSL_DEFAULT_SND_BUF_SIZE) ")");
  126. /* receive */
  127. struct usbatm_vcc_data {
  128. /* vpi/vci lookup */
  129. struct list_head list;
  130. short vpi;
  131. int vci;
  132. struct atm_vcc *vcc;
  133. /* raw cell reassembly */
  134. struct sk_buff *sarb;
  135. };
  136. /* send */
  137. struct usbatm_control {
  138. struct atm_skb_data atm;
  139. u32 len;
  140. u32 crc;
  141. };
  142. #define UDSL_SKB(x) ((struct usbatm_control *)(x)->cb)
  143. /* ATM */
  144. static void usbatm_atm_dev_close(struct atm_dev *atm_dev);
  145. static int usbatm_atm_open(struct atm_vcc *vcc);
  146. static void usbatm_atm_close(struct atm_vcc *vcc);
  147. static int usbatm_atm_ioctl(struct atm_dev *atm_dev, unsigned int cmd, void __user * arg);
  148. static int usbatm_atm_send(struct atm_vcc *vcc, struct sk_buff *skb);
  149. static int usbatm_atm_proc_read(struct atm_dev *atm_dev, loff_t * pos, char *page);
  150. static struct atmdev_ops usbatm_atm_devops = {
  151. .dev_close = usbatm_atm_dev_close,
  152. .open = usbatm_atm_open,
  153. .close = usbatm_atm_close,
  154. .ioctl = usbatm_atm_ioctl,
  155. .send = usbatm_atm_send,
  156. .proc_read = usbatm_atm_proc_read,
  157. .owner = THIS_MODULE,
  158. };
  159. /***********
  160. ** misc **
  161. ***********/
  162. static inline unsigned int usbatm_pdu_length(unsigned int length)
  163. {
  164. length += ATM_CELL_PAYLOAD - 1 + ATM_AAL5_TRAILER;
  165. return length - length % ATM_CELL_PAYLOAD;
  166. }
  167. static inline void usbatm_pop(struct atm_vcc *vcc, struct sk_buff *skb)
  168. {
  169. if (vcc->pop)
  170. vcc->pop(vcc, skb);
  171. else
  172. dev_kfree_skb_any(skb);
  173. }
  174. /***********
  175. ** urbs **
  176. ************/
  177. static struct urb *usbatm_pop_urb(struct usbatm_channel *channel)
  178. {
  179. struct urb *urb;
  180. spin_lock_irq(&channel->lock);
  181. if (list_empty(&channel->list)) {
  182. spin_unlock_irq(&channel->lock);
  183. return NULL;
  184. }
  185. urb = list_entry(channel->list.next, struct urb, urb_list);
  186. list_del(&urb->urb_list);
  187. spin_unlock_irq(&channel->lock);
  188. return urb;
  189. }
  190. static int usbatm_submit_urb(struct urb *urb)
  191. {
  192. struct usbatm_channel *channel = urb->context;
  193. int ret;
  194. vdbg("%s: submitting urb 0x%p, size %u",
  195. __func__, urb, urb->transfer_buffer_length);
  196. ret = usb_submit_urb(urb, GFP_ATOMIC);
  197. if (ret) {
  198. if (printk_ratelimit())
  199. atm_warn(channel->usbatm, "%s: urb 0x%p submission failed (%d)!\n",
  200. __func__, urb, ret);
  201. /* consider all errors transient and return the buffer back to the queue */
  202. urb->status = -EAGAIN;
  203. spin_lock_irq(&channel->lock);
  204. /* must add to the front when sending; doesn't matter when receiving */
  205. list_add(&urb->urb_list, &channel->list);
  206. spin_unlock_irq(&channel->lock);
  207. /* make sure the channel doesn't stall */
  208. mod_timer(&channel->delay, jiffies + msecs_to_jiffies(THROTTLE_MSECS));
  209. }
  210. return ret;
  211. }
  212. static void usbatm_complete(struct urb *urb, struct pt_regs *regs)
  213. {
  214. struct usbatm_channel *channel = urb->context;
  215. unsigned long flags;
  216. vdbg("%s: urb 0x%p, status %d, actual_length %d",
  217. __func__, urb, urb->status, urb->actual_length);
  218. /* usually in_interrupt(), but not always */
  219. spin_lock_irqsave(&channel->lock, flags);
  220. /* must add to the back when receiving; doesn't matter when sending */
  221. list_add_tail(&urb->urb_list, &channel->list);
  222. spin_unlock_irqrestore(&channel->lock, flags);
  223. if (unlikely(urb->status) &&
  224. (!(channel->usbatm->flags & UDSL_IGNORE_EILSEQ) ||
  225. urb->status != -EILSEQ ))
  226. {
  227. if (printk_ratelimit())
  228. atm_warn(channel->usbatm, "%s: urb 0x%p failed (%d)!\n",
  229. __func__, urb, urb->status);
  230. /* throttle processing in case of an error */
  231. mod_timer(&channel->delay, jiffies + msecs_to_jiffies(THROTTLE_MSECS));
  232. } else
  233. tasklet_schedule(&channel->tasklet);
  234. }
  235. /*************
  236. ** decode **
  237. *************/
  238. static inline struct usbatm_vcc_data *usbatm_find_vcc(struct usbatm_data *instance,
  239. short vpi, int vci)
  240. {
  241. struct usbatm_vcc_data *vcc_data;
  242. list_for_each_entry(vcc_data, &instance->vcc_list, list)
  243. if ((vcc_data->vci == vci) && (vcc_data->vpi == vpi))
  244. return vcc_data;
  245. return NULL;
  246. }
  247. static void usbatm_extract_one_cell(struct usbatm_data *instance, unsigned char *source)
  248. {
  249. struct atm_vcc *vcc;
  250. struct sk_buff *sarb;
  251. short vpi = ((source[0] & 0x0f) << 4) | (source[1] >> 4);
  252. int vci = ((source[1] & 0x0f) << 12) | (source[2] << 4) | (source[3] >> 4);
  253. u8 pti = ((source[3] & 0xe) >> 1);
  254. vdbg("%s: vpi %hd, vci %d, pti %d", __func__, vpi, vci, pti);
  255. if ((vci != instance->cached_vci) || (vpi != instance->cached_vpi)) {
  256. instance->cached_vpi = vpi;
  257. instance->cached_vci = vci;
  258. instance->cached_vcc = usbatm_find_vcc(instance, vpi, vci);
  259. if (!instance->cached_vcc)
  260. atm_rldbg(instance, "%s: unknown vpi/vci (%hd/%d)!\n", __func__, vpi, vci);
  261. }
  262. if (!instance->cached_vcc)
  263. return;
  264. vcc = instance->cached_vcc->vcc;
  265. /* OAM F5 end-to-end */
  266. if (pti == ATM_PTI_E2EF5) {
  267. if (printk_ratelimit())
  268. atm_warn(instance, "%s: OAM not supported (vpi %d, vci %d)!\n",
  269. __func__, vpi, vci);
  270. atomic_inc(&vcc->stats->rx_err);
  271. return;
  272. }
  273. sarb = instance->cached_vcc->sarb;
  274. if (sarb->tail + ATM_CELL_PAYLOAD > sarb->end) {
  275. atm_rldbg(instance, "%s: buffer overrun (sarb->len %u, vcc: 0x%p)!\n",
  276. __func__, sarb->len, vcc);
  277. /* discard cells already received */
  278. skb_trim(sarb, 0);
  279. UDSL_ASSERT(sarb->tail + ATM_CELL_PAYLOAD <= sarb->end);
  280. }
  281. memcpy(sarb->tail, source + ATM_CELL_HEADER, ATM_CELL_PAYLOAD);
  282. __skb_put(sarb, ATM_CELL_PAYLOAD);
  283. if (pti & 1) {
  284. struct sk_buff *skb;
  285. unsigned int length;
  286. unsigned int pdu_length;
  287. length = (source[ATM_CELL_SIZE - 6] << 8) + source[ATM_CELL_SIZE - 5];
  288. /* guard against overflow */
  289. if (length > ATM_MAX_AAL5_PDU) {
  290. atm_rldbg(instance, "%s: bogus length %u (vcc: 0x%p)!\n",
  291. __func__, length, vcc);
  292. atomic_inc(&vcc->stats->rx_err);
  293. goto out;
  294. }
  295. pdu_length = usbatm_pdu_length(length);
  296. if (sarb->len < pdu_length) {
  297. atm_rldbg(instance, "%s: bogus pdu_length %u (sarb->len: %u, vcc: 0x%p)!\n",
  298. __func__, pdu_length, sarb->len, vcc);
  299. atomic_inc(&vcc->stats->rx_err);
  300. goto out;
  301. }
  302. if (crc32_be(~0, sarb->tail - pdu_length, pdu_length) != 0xc704dd7b) {
  303. atm_rldbg(instance, "%s: packet failed crc check (vcc: 0x%p)!\n",
  304. __func__, vcc);
  305. atomic_inc(&vcc->stats->rx_err);
  306. goto out;
  307. }
  308. vdbg("%s: got packet (length: %u, pdu_length: %u, vcc: 0x%p)", __func__, length, pdu_length, vcc);
  309. if (!(skb = dev_alloc_skb(length))) {
  310. if (printk_ratelimit())
  311. atm_err(instance, "%s: no memory for skb (length: %u)!\n",
  312. __func__, length);
  313. atomic_inc(&vcc->stats->rx_drop);
  314. goto out;
  315. }
  316. vdbg("%s: allocated new sk_buff (skb: 0x%p, skb->truesize: %u)", __func__, skb, skb->truesize);
  317. if (!atm_charge(vcc, skb->truesize)) {
  318. atm_rldbg(instance, "%s: failed atm_charge (skb->truesize: %u)!\n",
  319. __func__, skb->truesize);
  320. dev_kfree_skb_any(skb);
  321. goto out; /* atm_charge increments rx_drop */
  322. }
  323. memcpy(skb->data, sarb->tail - pdu_length, length);
  324. __skb_put(skb, length);
  325. vdbg("%s: sending skb 0x%p, skb->len %u, skb->truesize %u",
  326. __func__, skb, skb->len, skb->truesize);
  327. PACKETDEBUG(skb->data, skb->len);
  328. vcc->push(vcc, skb);
  329. atomic_inc(&vcc->stats->rx);
  330. out:
  331. skb_trim(sarb, 0);
  332. }
  333. }
  334. static void usbatm_extract_cells(struct usbatm_data *instance,
  335. unsigned char *source, unsigned int avail_data)
  336. {
  337. unsigned int stride = instance->rx_channel.stride;
  338. unsigned int buf_usage = instance->buf_usage;
  339. /* extract cells from incoming data, taking into account that
  340. * the length of avail data may not be a multiple of stride */
  341. if (buf_usage > 0) {
  342. /* we have a partially received atm cell */
  343. unsigned char *cell_buf = instance->cell_buf;
  344. unsigned int space_left = stride - buf_usage;
  345. UDSL_ASSERT(buf_usage <= stride);
  346. if (avail_data >= space_left) {
  347. /* add new data and process cell */
  348. memcpy(cell_buf + buf_usage, source, space_left);
  349. source += space_left;
  350. avail_data -= space_left;
  351. usbatm_extract_one_cell(instance, cell_buf);
  352. instance->buf_usage = 0;
  353. } else {
  354. /* not enough data to fill the cell */
  355. memcpy(cell_buf + buf_usage, source, avail_data);
  356. instance->buf_usage = buf_usage + avail_data;
  357. return;
  358. }
  359. }
  360. for (; avail_data >= stride; avail_data -= stride, source += stride)
  361. usbatm_extract_one_cell(instance, source);
  362. if (avail_data > 0) {
  363. /* length was not a multiple of stride -
  364. * save remaining data for next call */
  365. memcpy(instance->cell_buf, source, avail_data);
  366. instance->buf_usage = avail_data;
  367. }
  368. }
  369. /*************
  370. ** encode **
  371. *************/
  372. static unsigned int usbatm_write_cells(struct usbatm_data *instance,
  373. struct sk_buff *skb,
  374. u8 *target, unsigned int avail_space)
  375. {
  376. struct usbatm_control *ctrl = UDSL_SKB(skb);
  377. struct atm_vcc *vcc = ctrl->atm.vcc;
  378. unsigned int bytes_written;
  379. unsigned int stride = instance->tx_channel.stride;
  380. vdbg("%s: skb->len=%d, avail_space=%u", __func__, skb->len, avail_space);
  381. UDSL_ASSERT(!(avail_space % stride));
  382. for (bytes_written = 0; bytes_written < avail_space && ctrl->len;
  383. bytes_written += stride, target += stride) {
  384. unsigned int data_len = min_t(unsigned int, skb->len, ATM_CELL_PAYLOAD);
  385. unsigned int left = ATM_CELL_PAYLOAD - data_len;
  386. u8 *ptr = target;
  387. ptr[0] = vcc->vpi >> 4;
  388. ptr[1] = (vcc->vpi << 4) | (vcc->vci >> 12);
  389. ptr[2] = vcc->vci >> 4;
  390. ptr[3] = vcc->vci << 4;
  391. ptr[4] = 0xec;
  392. ptr += ATM_CELL_HEADER;
  393. memcpy(ptr, skb->data, data_len);
  394. ptr += data_len;
  395. __skb_pull(skb, data_len);
  396. if(!left)
  397. continue;
  398. memset(ptr, 0, left);
  399. if (left >= ATM_AAL5_TRAILER) { /* trailer will go in this cell */
  400. u8 *trailer = target + ATM_CELL_SIZE - ATM_AAL5_TRAILER;
  401. /* trailer[0] = 0; UU = 0 */
  402. /* trailer[1] = 0; CPI = 0 */
  403. trailer[2] = ctrl->len >> 8;
  404. trailer[3] = ctrl->len;
  405. ctrl->crc = ~ crc32_be(ctrl->crc, ptr, left - 4);
  406. trailer[4] = ctrl->crc >> 24;
  407. trailer[5] = ctrl->crc >> 16;
  408. trailer[6] = ctrl->crc >> 8;
  409. trailer[7] = ctrl->crc;
  410. target[3] |= 0x2; /* adjust PTI */
  411. ctrl->len = 0; /* tag this skb finished */
  412. }
  413. else
  414. ctrl->crc = crc32_be(ctrl->crc, ptr, left);
  415. }
  416. return bytes_written;
  417. }
  418. /**************
  419. ** receive **
  420. **************/
  421. static void usbatm_rx_process(unsigned long data)
  422. {
  423. struct usbatm_data *instance = (struct usbatm_data *)data;
  424. struct urb *urb;
  425. while ((urb = usbatm_pop_urb(&instance->rx_channel))) {
  426. vdbg("%s: processing urb 0x%p", __func__, urb);
  427. if (usb_pipeisoc(urb->pipe)) {
  428. unsigned char *merge_start = NULL;
  429. unsigned int merge_length = 0;
  430. const unsigned int packet_size = instance->rx_channel.packet_size;
  431. int i;
  432. for (i = 0; i < urb->number_of_packets; i++) {
  433. if (!urb->iso_frame_desc[i].status) {
  434. unsigned int actual_length = urb->iso_frame_desc[i].actual_length;
  435. UDSL_ASSERT(actual_length <= packet_size);
  436. if (!merge_length)
  437. merge_start = (unsigned char *)urb->transfer_buffer + urb->iso_frame_desc[i].offset;
  438. merge_length += actual_length;
  439. if (merge_length && (actual_length < packet_size)) {
  440. usbatm_extract_cells(instance, merge_start, merge_length);
  441. merge_length = 0;
  442. }
  443. } else {
  444. atm_rldbg(instance, "%s: status %d in frame %d!\n", __func__, urb->status, i);
  445. if (merge_length)
  446. usbatm_extract_cells(instance, merge_start, merge_length);
  447. merge_length = 0;
  448. instance->buf_usage = 0;
  449. }
  450. }
  451. if (merge_length)
  452. usbatm_extract_cells(instance, merge_start, merge_length);
  453. } else
  454. if (!urb->status)
  455. usbatm_extract_cells(instance, urb->transfer_buffer, urb->actual_length);
  456. else
  457. instance->buf_usage = 0;
  458. if (usbatm_submit_urb(urb))
  459. return;
  460. }
  461. }
  462. /***********
  463. ** send **
  464. ***********/
  465. static void usbatm_tx_process(unsigned long data)
  466. {
  467. struct usbatm_data *instance = (struct usbatm_data *)data;
  468. struct sk_buff *skb = instance->current_skb;
  469. struct urb *urb = NULL;
  470. const unsigned int buf_size = instance->tx_channel.buf_size;
  471. unsigned int bytes_written = 0;
  472. u8 *buffer = NULL;
  473. if (!skb)
  474. skb = skb_dequeue(&instance->sndqueue);
  475. while (skb) {
  476. if (!urb) {
  477. urb = usbatm_pop_urb(&instance->tx_channel);
  478. if (!urb)
  479. break; /* no more senders */
  480. buffer = urb->transfer_buffer;
  481. bytes_written = (urb->status == -EAGAIN) ?
  482. urb->transfer_buffer_length : 0;
  483. }
  484. bytes_written += usbatm_write_cells(instance, skb,
  485. buffer + bytes_written,
  486. buf_size - bytes_written);
  487. vdbg("%s: wrote %u bytes from skb 0x%p to urb 0x%p",
  488. __func__, bytes_written, skb, urb);
  489. if (!UDSL_SKB(skb)->len) {
  490. struct atm_vcc *vcc = UDSL_SKB(skb)->atm.vcc;
  491. usbatm_pop(vcc, skb);
  492. atomic_inc(&vcc->stats->tx);
  493. skb = skb_dequeue(&instance->sndqueue);
  494. }
  495. if (bytes_written == buf_size || (!skb && bytes_written)) {
  496. urb->transfer_buffer_length = bytes_written;
  497. if (usbatm_submit_urb(urb))
  498. break;
  499. urb = NULL;
  500. }
  501. }
  502. instance->current_skb = skb;
  503. }
  504. static void usbatm_cancel_send(struct usbatm_data *instance,
  505. struct atm_vcc *vcc)
  506. {
  507. struct sk_buff *skb, *n;
  508. atm_dbg(instance, "%s entered\n", __func__);
  509. spin_lock_irq(&instance->sndqueue.lock);
  510. for (skb = instance->sndqueue.next, n = skb->next;
  511. skb != (struct sk_buff *)&instance->sndqueue;
  512. skb = n, n = skb->next)
  513. if (UDSL_SKB(skb)->atm.vcc == vcc) {
  514. atm_dbg(instance, "%s: popping skb 0x%p\n", __func__, skb);
  515. __skb_unlink(skb, &instance->sndqueue);
  516. usbatm_pop(vcc, skb);
  517. }
  518. spin_unlock_irq(&instance->sndqueue.lock);
  519. tasklet_disable(&instance->tx_channel.tasklet);
  520. if ((skb = instance->current_skb) && (UDSL_SKB(skb)->atm.vcc == vcc)) {
  521. atm_dbg(instance, "%s: popping current skb (0x%p)\n", __func__, skb);
  522. instance->current_skb = NULL;
  523. usbatm_pop(vcc, skb);
  524. }
  525. tasklet_enable(&instance->tx_channel.tasklet);
  526. atm_dbg(instance, "%s done\n", __func__);
  527. }
  528. static int usbatm_atm_send(struct atm_vcc *vcc, struct sk_buff *skb)
  529. {
  530. struct usbatm_data *instance = vcc->dev->dev_data;
  531. struct usbatm_control *ctrl = UDSL_SKB(skb);
  532. int err;
  533. vdbg("%s called (skb 0x%p, len %u)", __func__, skb, skb->len);
  534. /* racy disconnection check - fine */
  535. if (!instance || instance->disconnected) {
  536. #ifdef DEBUG
  537. if (printk_ratelimit())
  538. printk(KERN_DEBUG "%s: %s!\n", __func__, instance ? "disconnected" : "NULL instance");
  539. #endif
  540. err = -ENODEV;
  541. goto fail;
  542. }
  543. if (vcc->qos.aal != ATM_AAL5) {
  544. atm_rldbg(instance, "%s: unsupported ATM type %d!\n", __func__, vcc->qos.aal);
  545. err = -EINVAL;
  546. goto fail;
  547. }
  548. if (skb->len > ATM_MAX_AAL5_PDU) {
  549. atm_rldbg(instance, "%s: packet too long (%d vs %d)!\n",
  550. __func__, skb->len, ATM_MAX_AAL5_PDU);
  551. err = -EINVAL;
  552. goto fail;
  553. }
  554. PACKETDEBUG(skb->data, skb->len);
  555. /* initialize the control block */
  556. ctrl->atm.vcc = vcc;
  557. ctrl->len = skb->len;
  558. ctrl->crc = crc32_be(~0, skb->data, skb->len);
  559. skb_queue_tail(&instance->sndqueue, skb);
  560. tasklet_schedule(&instance->tx_channel.tasklet);
  561. return 0;
  562. fail:
  563. usbatm_pop(vcc, skb);
  564. return err;
  565. }
  566. /********************
  567. ** bean counting **
  568. ********************/
  569. static void usbatm_destroy_instance(struct kref *kref)
  570. {
  571. struct usbatm_data *instance = container_of(kref, struct usbatm_data, refcount);
  572. dbg("%s", __func__);
  573. tasklet_kill(&instance->rx_channel.tasklet);
  574. tasklet_kill(&instance->tx_channel.tasklet);
  575. usb_put_dev(instance->usb_dev);
  576. kfree(instance);
  577. }
  578. static void usbatm_get_instance(struct usbatm_data *instance)
  579. {
  580. dbg("%s", __func__);
  581. kref_get(&instance->refcount);
  582. }
  583. static void usbatm_put_instance(struct usbatm_data *instance)
  584. {
  585. dbg("%s", __func__);
  586. kref_put(&instance->refcount, usbatm_destroy_instance);
  587. }
  588. /**********
  589. ** ATM **
  590. **********/
  591. static void usbatm_atm_dev_close(struct atm_dev *atm_dev)
  592. {
  593. struct usbatm_data *instance = atm_dev->dev_data;
  594. dbg("%s", __func__);
  595. if (!instance)
  596. return;
  597. atm_dev->dev_data = NULL; /* catch bugs */
  598. usbatm_put_instance(instance); /* taken in usbatm_atm_init */
  599. }
  600. static int usbatm_atm_proc_read(struct atm_dev *atm_dev, loff_t * pos, char *page)
  601. {
  602. struct usbatm_data *instance = atm_dev->dev_data;
  603. int left = *pos;
  604. if (!instance) {
  605. dbg("%s: NULL instance!", __func__);
  606. return -ENODEV;
  607. }
  608. if (!left--)
  609. return sprintf(page, "%s\n", instance->description);
  610. if (!left--)
  611. return sprintf(page, "MAC: %02x:%02x:%02x:%02x:%02x:%02x\n",
  612. atm_dev->esi[0], atm_dev->esi[1],
  613. atm_dev->esi[2], atm_dev->esi[3],
  614. atm_dev->esi[4], atm_dev->esi[5]);
  615. if (!left--)
  616. return sprintf(page,
  617. "AAL5: tx %d ( %d err ), rx %d ( %d err, %d drop )\n",
  618. atomic_read(&atm_dev->stats.aal5.tx),
  619. atomic_read(&atm_dev->stats.aal5.tx_err),
  620. atomic_read(&atm_dev->stats.aal5.rx),
  621. atomic_read(&atm_dev->stats.aal5.rx_err),
  622. atomic_read(&atm_dev->stats.aal5.rx_drop));
  623. if (!left--) {
  624. if (instance->disconnected)
  625. return sprintf(page, "Disconnected\n");
  626. else
  627. switch (atm_dev->signal) {
  628. case ATM_PHY_SIG_FOUND:
  629. return sprintf(page, "Line up\n");
  630. case ATM_PHY_SIG_LOST:
  631. return sprintf(page, "Line down\n");
  632. default:
  633. return sprintf(page, "Line state unknown\n");
  634. }
  635. }
  636. return 0;
  637. }
  638. static int usbatm_atm_open(struct atm_vcc *vcc)
  639. {
  640. struct usbatm_data *instance = vcc->dev->dev_data;
  641. struct usbatm_vcc_data *new = NULL;
  642. int ret;
  643. int vci = vcc->vci;
  644. short vpi = vcc->vpi;
  645. if (!instance) {
  646. dbg("%s: NULL data!", __func__);
  647. return -ENODEV;
  648. }
  649. atm_dbg(instance, "%s: vpi %hd, vci %d\n", __func__, vpi, vci);
  650. /* only support AAL5 */
  651. if ((vcc->qos.aal != ATM_AAL5)) {
  652. atm_warn(instance, "%s: unsupported ATM type %d!\n", __func__, vcc->qos.aal);
  653. return -EINVAL;
  654. }
  655. /* sanity checks */
  656. if ((vcc->qos.rxtp.max_sdu < 0) || (vcc->qos.rxtp.max_sdu > ATM_MAX_AAL5_PDU)) {
  657. atm_dbg(instance, "%s: max_sdu %d out of range!\n", __func__, vcc->qos.rxtp.max_sdu);
  658. return -EINVAL;
  659. }
  660. mutex_lock(&instance->serialize); /* vs self, usbatm_atm_close, usbatm_usb_disconnect */
  661. if (instance->disconnected) {
  662. atm_dbg(instance, "%s: disconnected!\n", __func__);
  663. ret = -ENODEV;
  664. goto fail;
  665. }
  666. if (usbatm_find_vcc(instance, vpi, vci)) {
  667. atm_dbg(instance, "%s: %hd/%d already in use!\n", __func__, vpi, vci);
  668. ret = -EADDRINUSE;
  669. goto fail;
  670. }
  671. if (!(new = kzalloc(sizeof(struct usbatm_vcc_data), GFP_KERNEL))) {
  672. atm_err(instance, "%s: no memory for vcc_data!\n", __func__);
  673. ret = -ENOMEM;
  674. goto fail;
  675. }
  676. new->vcc = vcc;
  677. new->vpi = vpi;
  678. new->vci = vci;
  679. new->sarb = alloc_skb(usbatm_pdu_length(vcc->qos.rxtp.max_sdu), GFP_KERNEL);
  680. if (!new->sarb) {
  681. atm_err(instance, "%s: no memory for SAR buffer!\n", __func__);
  682. ret = -ENOMEM;
  683. goto fail;
  684. }
  685. vcc->dev_data = new;
  686. tasklet_disable(&instance->rx_channel.tasklet);
  687. instance->cached_vcc = new;
  688. instance->cached_vpi = vpi;
  689. instance->cached_vci = vci;
  690. list_add(&new->list, &instance->vcc_list);
  691. tasklet_enable(&instance->rx_channel.tasklet);
  692. set_bit(ATM_VF_ADDR, &vcc->flags);
  693. set_bit(ATM_VF_PARTIAL, &vcc->flags);
  694. set_bit(ATM_VF_READY, &vcc->flags);
  695. mutex_unlock(&instance->serialize);
  696. atm_dbg(instance, "%s: allocated vcc data 0x%p\n", __func__, new);
  697. return 0;
  698. fail:
  699. kfree(new);
  700. mutex_unlock(&instance->serialize);
  701. return ret;
  702. }
  703. static void usbatm_atm_close(struct atm_vcc *vcc)
  704. {
  705. struct usbatm_data *instance = vcc->dev->dev_data;
  706. struct usbatm_vcc_data *vcc_data = vcc->dev_data;
  707. if (!instance || !vcc_data) {
  708. dbg("%s: NULL data!", __func__);
  709. return;
  710. }
  711. atm_dbg(instance, "%s entered\n", __func__);
  712. atm_dbg(instance, "%s: deallocating vcc 0x%p with vpi %d vci %d\n",
  713. __func__, vcc_data, vcc_data->vpi, vcc_data->vci);
  714. usbatm_cancel_send(instance, vcc);
  715. mutex_lock(&instance->serialize); /* vs self, usbatm_atm_open, usbatm_usb_disconnect */
  716. tasklet_disable(&instance->rx_channel.tasklet);
  717. if (instance->cached_vcc == vcc_data) {
  718. instance->cached_vcc = NULL;
  719. instance->cached_vpi = ATM_VPI_UNSPEC;
  720. instance->cached_vci = ATM_VCI_UNSPEC;
  721. }
  722. list_del(&vcc_data->list);
  723. tasklet_enable(&instance->rx_channel.tasklet);
  724. kfree_skb(vcc_data->sarb);
  725. vcc_data->sarb = NULL;
  726. kfree(vcc_data);
  727. vcc->dev_data = NULL;
  728. vcc->vpi = ATM_VPI_UNSPEC;
  729. vcc->vci = ATM_VCI_UNSPEC;
  730. clear_bit(ATM_VF_READY, &vcc->flags);
  731. clear_bit(ATM_VF_PARTIAL, &vcc->flags);
  732. clear_bit(ATM_VF_ADDR, &vcc->flags);
  733. mutex_unlock(&instance->serialize);
  734. atm_dbg(instance, "%s successful\n", __func__);
  735. }
  736. static int usbatm_atm_ioctl(struct atm_dev *atm_dev, unsigned int cmd,
  737. void __user * arg)
  738. {
  739. struct usbatm_data *instance = atm_dev->dev_data;
  740. if (!instance || instance->disconnected) {
  741. dbg("%s: %s!", __func__, instance ? "disconnected" : "NULL instance");
  742. return -ENODEV;
  743. }
  744. switch (cmd) {
  745. case ATM_QUERYLOOP:
  746. return put_user(ATM_LM_NONE, (int __user *)arg) ? -EFAULT : 0;
  747. default:
  748. return -ENOIOCTLCMD;
  749. }
  750. }
  751. static int usbatm_atm_init(struct usbatm_data *instance)
  752. {
  753. struct atm_dev *atm_dev;
  754. int ret, i;
  755. /* ATM init. The ATM initialization scheme suffers from an intrinsic race
  756. * condition: callbacks we register can be executed at once, before we have
  757. * initialized the struct atm_dev. To protect against this, all callbacks
  758. * abort if atm_dev->dev_data is NULL. */
  759. atm_dev = atm_dev_register(instance->driver_name, &usbatm_atm_devops, -1, NULL);
  760. if (!atm_dev) {
  761. usb_err(instance, "%s: failed to register ATM device!\n", __func__);
  762. return -1;
  763. }
  764. instance->atm_dev = atm_dev;
  765. atm_dev->ci_range.vpi_bits = ATM_CI_MAX;
  766. atm_dev->ci_range.vci_bits = ATM_CI_MAX;
  767. atm_dev->signal = ATM_PHY_SIG_UNKNOWN;
  768. /* temp init ATM device, set to 128kbit */
  769. atm_dev->link_rate = 128 * 1000 / 424;
  770. if (instance->driver->atm_start && ((ret = instance->driver->atm_start(instance, atm_dev)) < 0)) {
  771. atm_err(instance, "%s: atm_start failed: %d!\n", __func__, ret);
  772. goto fail;
  773. }
  774. usbatm_get_instance(instance); /* dropped in usbatm_atm_dev_close */
  775. /* ready for ATM callbacks */
  776. mb();
  777. atm_dev->dev_data = instance;
  778. /* submit all rx URBs */
  779. for (i = 0; i < num_rcv_urbs; i++)
  780. usbatm_submit_urb(instance->urbs[i]);
  781. return 0;
  782. fail:
  783. instance->atm_dev = NULL;
  784. atm_dev_deregister(atm_dev); /* usbatm_atm_dev_close will eventually be called */
  785. return ret;
  786. }
  787. /**********
  788. ** USB **
  789. **********/
  790. static int usbatm_do_heavy_init(void *arg)
  791. {
  792. struct usbatm_data *instance = arg;
  793. int ret;
  794. daemonize(instance->driver->driver_name);
  795. allow_signal(SIGTERM);
  796. complete(&instance->thread_started);
  797. ret = instance->driver->heavy_init(instance, instance->usb_intf);
  798. if (!ret)
  799. ret = usbatm_atm_init(instance);
  800. mutex_lock(&instance->serialize);
  801. instance->thread_pid = -1;
  802. mutex_unlock(&instance->serialize);
  803. complete_and_exit(&instance->thread_exited, ret);
  804. }
  805. static int usbatm_heavy_init(struct usbatm_data *instance)
  806. {
  807. int ret = kernel_thread(usbatm_do_heavy_init, instance, CLONE_KERNEL);
  808. if (ret < 0) {
  809. usb_err(instance, "%s: failed to create kernel_thread (%d)!\n", __func__, ret);
  810. return ret;
  811. }
  812. mutex_lock(&instance->serialize);
  813. instance->thread_pid = ret;
  814. mutex_unlock(&instance->serialize);
  815. wait_for_completion(&instance->thread_started);
  816. return 0;
  817. }
  818. static void usbatm_tasklet_schedule(unsigned long data)
  819. {
  820. tasklet_schedule((struct tasklet_struct *) data);
  821. }
  822. static inline void usbatm_init_channel(struct usbatm_channel *channel)
  823. {
  824. spin_lock_init(&channel->lock);
  825. INIT_LIST_HEAD(&channel->list);
  826. channel->delay.function = usbatm_tasklet_schedule;
  827. channel->delay.data = (unsigned long) &channel->tasklet;
  828. init_timer(&channel->delay);
  829. }
  830. int usbatm_usb_probe(struct usb_interface *intf, const struct usb_device_id *id,
  831. struct usbatm_driver *driver)
  832. {
  833. struct device *dev = &intf->dev;
  834. struct usb_device *usb_dev = interface_to_usbdev(intf);
  835. struct usbatm_data *instance;
  836. char *buf;
  837. int error = -ENOMEM;
  838. int i, length;
  839. unsigned int maxpacket, num_packets;
  840. dev_dbg(dev, "%s: trying driver %s with vendor=%04x, product=%04x, ifnum %2d\n",
  841. __func__, driver->driver_name,
  842. le16_to_cpu(usb_dev->descriptor.idVendor),
  843. le16_to_cpu(usb_dev->descriptor.idProduct),
  844. intf->altsetting->desc.bInterfaceNumber);
  845. /* instance init */
  846. instance = kzalloc(sizeof(*instance) + sizeof(struct urb *) * (num_rcv_urbs + num_snd_urbs), GFP_KERNEL);
  847. if (!instance) {
  848. dev_err(dev, "%s: no memory for instance data!\n", __func__);
  849. return -ENOMEM;
  850. }
  851. /* public fields */
  852. instance->driver = driver;
  853. snprintf(instance->driver_name, sizeof(instance->driver_name), driver->driver_name);
  854. instance->usb_dev = usb_dev;
  855. instance->usb_intf = intf;
  856. buf = instance->description;
  857. length = sizeof(instance->description);
  858. if ((i = usb_string(usb_dev, usb_dev->descriptor.iProduct, buf, length)) < 0)
  859. goto bind;
  860. buf += i;
  861. length -= i;
  862. i = scnprintf(buf, length, " (");
  863. buf += i;
  864. length -= i;
  865. if (length <= 0 || (i = usb_make_path(usb_dev, buf, length)) < 0)
  866. goto bind;
  867. buf += i;
  868. length -= i;
  869. snprintf(buf, length, ")");
  870. bind:
  871. if (driver->bind && (error = driver->bind(instance, intf, id)) < 0) {
  872. dev_err(dev, "%s: bind failed: %d!\n", __func__, error);
  873. goto fail_free;
  874. }
  875. /* private fields */
  876. kref_init(&instance->refcount); /* dropped in usbatm_usb_disconnect */
  877. mutex_init(&instance->serialize);
  878. instance->thread_pid = -1;
  879. init_completion(&instance->thread_started);
  880. init_completion(&instance->thread_exited);
  881. INIT_LIST_HEAD(&instance->vcc_list);
  882. skb_queue_head_init(&instance->sndqueue);
  883. usbatm_init_channel(&instance->rx_channel);
  884. usbatm_init_channel(&instance->tx_channel);
  885. tasklet_init(&instance->rx_channel.tasklet, usbatm_rx_process, (unsigned long)instance);
  886. tasklet_init(&instance->tx_channel.tasklet, usbatm_tx_process, (unsigned long)instance);
  887. instance->rx_channel.stride = ATM_CELL_SIZE + driver->rx_padding;
  888. instance->tx_channel.stride = ATM_CELL_SIZE + driver->tx_padding;
  889. instance->rx_channel.usbatm = instance->tx_channel.usbatm = instance;
  890. if ((instance->flags & UDSL_USE_ISOC) && driver->isoc_in)
  891. instance->rx_channel.endpoint = usb_rcvisocpipe(usb_dev, driver->isoc_in);
  892. else
  893. instance->rx_channel.endpoint = usb_rcvbulkpipe(usb_dev, driver->bulk_in);
  894. instance->tx_channel.endpoint = usb_sndbulkpipe(usb_dev, driver->bulk_out);
  895. /* tx buffer size must be a positive multiple of the stride */
  896. instance->tx_channel.buf_size = max (instance->tx_channel.stride,
  897. snd_buf_bytes - (snd_buf_bytes % instance->tx_channel.stride));
  898. /* rx buffer size must be a positive multiple of the endpoint maxpacket */
  899. maxpacket = usb_maxpacket(usb_dev, instance->rx_channel.endpoint, 0);
  900. if ((maxpacket < 1) || (maxpacket > UDSL_MAX_BUF_SIZE)) {
  901. dev_err(dev, "%s: invalid endpoint %02x!\n", __func__,
  902. usb_pipeendpoint(instance->rx_channel.endpoint));
  903. error = -EINVAL;
  904. goto fail_unbind;
  905. }
  906. num_packets = max (1U, (rcv_buf_bytes + maxpacket / 2) / maxpacket); /* round */
  907. if (num_packets * maxpacket > UDSL_MAX_BUF_SIZE)
  908. num_packets--;
  909. instance->rx_channel.buf_size = num_packets * maxpacket;
  910. instance->rx_channel.packet_size = maxpacket;
  911. #ifdef DEBUG
  912. for (i = 0; i < 2; i++) {
  913. struct usbatm_channel *channel = i ?
  914. &instance->tx_channel : &instance->rx_channel;
  915. dev_dbg(dev, "%s: using %d byte buffer for %s channel 0x%p\n", __func__, channel->buf_size, i ? "tx" : "rx", channel);
  916. }
  917. #endif
  918. /* initialize urbs */
  919. for (i = 0; i < num_rcv_urbs + num_snd_urbs; i++) {
  920. u8 *buffer;
  921. struct usbatm_channel *channel = i < num_rcv_urbs ?
  922. &instance->rx_channel : &instance->tx_channel;
  923. struct urb *urb;
  924. unsigned int iso_packets = usb_pipeisoc(channel->endpoint) ? channel->buf_size / channel->packet_size : 0;
  925. UDSL_ASSERT(!usb_pipeisoc(channel->endpoint) || usb_pipein(channel->endpoint));
  926. urb = usb_alloc_urb(iso_packets, GFP_KERNEL);
  927. if (!urb) {
  928. dev_err(dev, "%s: no memory for urb %d!\n", __func__, i);
  929. error = -ENOMEM;
  930. goto fail_unbind;
  931. }
  932. instance->urbs[i] = urb;
  933. /* zero the tx padding to avoid leaking information */
  934. buffer = kzalloc(channel->buf_size, GFP_KERNEL);
  935. if (!buffer) {
  936. dev_err(dev, "%s: no memory for buffer %d!\n", __func__, i);
  937. error = -ENOMEM;
  938. goto fail_unbind;
  939. }
  940. usb_fill_bulk_urb(urb, instance->usb_dev, channel->endpoint,
  941. buffer, channel->buf_size, usbatm_complete, channel);
  942. if (iso_packets) {
  943. int j;
  944. urb->interval = 1;
  945. urb->transfer_flags = URB_ISO_ASAP;
  946. urb->number_of_packets = iso_packets;
  947. for (j = 0; j < iso_packets; j++) {
  948. urb->iso_frame_desc[j].offset = channel->packet_size * j;
  949. urb->iso_frame_desc[j].length = channel->packet_size;
  950. }
  951. }
  952. /* put all tx URBs on the list of spares */
  953. if (i >= num_rcv_urbs)
  954. list_add_tail(&urb->urb_list, &channel->list);
  955. vdbg("%s: alloced buffer 0x%p buf size %u urb 0x%p",
  956. __func__, urb->transfer_buffer, urb->transfer_buffer_length, urb);
  957. }
  958. instance->cached_vpi = ATM_VPI_UNSPEC;
  959. instance->cached_vci = ATM_VCI_UNSPEC;
  960. instance->cell_buf = kmalloc(instance->rx_channel.stride, GFP_KERNEL);
  961. if (!instance->cell_buf) {
  962. dev_err(dev, "%s: no memory for cell buffer!\n", __func__);
  963. error = -ENOMEM;
  964. goto fail_unbind;
  965. }
  966. if (!(instance->flags & UDSL_SKIP_HEAVY_INIT) && driver->heavy_init) {
  967. error = usbatm_heavy_init(instance);
  968. } else {
  969. complete(&instance->thread_exited); /* pretend that heavy_init was run */
  970. error = usbatm_atm_init(instance);
  971. }
  972. if (error < 0)
  973. goto fail_unbind;
  974. usb_get_dev(usb_dev);
  975. usb_set_intfdata(intf, instance);
  976. return 0;
  977. fail_unbind:
  978. if (instance->driver->unbind)
  979. instance->driver->unbind(instance, intf);
  980. fail_free:
  981. kfree(instance->cell_buf);
  982. for (i = 0; i < num_rcv_urbs + num_snd_urbs; i++) {
  983. if (instance->urbs[i])
  984. kfree(instance->urbs[i]->transfer_buffer);
  985. usb_free_urb(instance->urbs[i]);
  986. }
  987. kfree (instance);
  988. return error;
  989. }
  990. EXPORT_SYMBOL_GPL(usbatm_usb_probe);
  991. void usbatm_usb_disconnect(struct usb_interface *intf)
  992. {
  993. struct device *dev = &intf->dev;
  994. struct usbatm_data *instance = usb_get_intfdata(intf);
  995. struct usbatm_vcc_data *vcc_data;
  996. int i;
  997. dev_dbg(dev, "%s entered\n", __func__);
  998. if (!instance) {
  999. dev_dbg(dev, "%s: NULL instance!\n", __func__);
  1000. return;
  1001. }
  1002. usb_set_intfdata(intf, NULL);
  1003. mutex_lock(&instance->serialize);
  1004. instance->disconnected = 1;
  1005. if (instance->thread_pid >= 0)
  1006. kill_proc(instance->thread_pid, SIGTERM, 1);
  1007. mutex_unlock(&instance->serialize);
  1008. wait_for_completion(&instance->thread_exited);
  1009. mutex_lock(&instance->serialize);
  1010. list_for_each_entry(vcc_data, &instance->vcc_list, list)
  1011. vcc_release_async(vcc_data->vcc, -EPIPE);
  1012. mutex_unlock(&instance->serialize);
  1013. tasklet_disable(&instance->rx_channel.tasklet);
  1014. tasklet_disable(&instance->tx_channel.tasklet);
  1015. for (i = 0; i < num_rcv_urbs + num_snd_urbs; i++)
  1016. usb_kill_urb(instance->urbs[i]);
  1017. del_timer_sync(&instance->rx_channel.delay);
  1018. del_timer_sync(&instance->tx_channel.delay);
  1019. /* turn usbatm_[rt]x_process into something close to a no-op */
  1020. /* no need to take the spinlock */
  1021. INIT_LIST_HEAD(&instance->rx_channel.list);
  1022. INIT_LIST_HEAD(&instance->tx_channel.list);
  1023. tasklet_enable(&instance->rx_channel.tasklet);
  1024. tasklet_enable(&instance->tx_channel.tasklet);
  1025. if (instance->atm_dev && instance->driver->atm_stop)
  1026. instance->driver->atm_stop(instance, instance->atm_dev);
  1027. if (instance->driver->unbind)
  1028. instance->driver->unbind(instance, intf);
  1029. instance->driver_data = NULL;
  1030. for (i = 0; i < num_rcv_urbs + num_snd_urbs; i++) {
  1031. kfree(instance->urbs[i]->transfer_buffer);
  1032. usb_free_urb(instance->urbs[i]);
  1033. }
  1034. kfree(instance->cell_buf);
  1035. /* ATM finalize */
  1036. if (instance->atm_dev)
  1037. atm_dev_deregister(instance->atm_dev);
  1038. usbatm_put_instance(instance); /* taken in usbatm_usb_probe */
  1039. }
  1040. EXPORT_SYMBOL_GPL(usbatm_usb_disconnect);
  1041. /***********
  1042. ** init **
  1043. ***********/
  1044. static int __init usbatm_usb_init(void)
  1045. {
  1046. dbg("%s: driver version %s", __func__, DRIVER_VERSION);
  1047. if (sizeof(struct usbatm_control) > sizeof(((struct sk_buff *) 0)->cb)) {
  1048. printk(KERN_ERR "%s unusable with this kernel!\n", usbatm_driver_name);
  1049. return -EIO;
  1050. }
  1051. if ((num_rcv_urbs > UDSL_MAX_RCV_URBS)
  1052. || (num_snd_urbs > UDSL_MAX_SND_URBS)
  1053. || (rcv_buf_bytes < 1)
  1054. || (rcv_buf_bytes > UDSL_MAX_BUF_SIZE)
  1055. || (snd_buf_bytes < 1)
  1056. || (snd_buf_bytes > UDSL_MAX_BUF_SIZE))
  1057. return -EINVAL;
  1058. return 0;
  1059. }
  1060. module_init(usbatm_usb_init);
  1061. static void __exit usbatm_usb_exit(void)
  1062. {
  1063. dbg("%s", __func__);
  1064. }
  1065. module_exit(usbatm_usb_exit);
  1066. MODULE_AUTHOR(DRIVER_AUTHOR);
  1067. MODULE_DESCRIPTION(DRIVER_DESC);
  1068. MODULE_LICENSE("GPL");
  1069. MODULE_VERSION(DRIVER_VERSION);
  1070. /************
  1071. ** debug **
  1072. ************/
  1073. #ifdef VERBOSE_DEBUG
  1074. static int usbatm_print_packet(const unsigned char *data, int len)
  1075. {
  1076. unsigned char buffer[256];
  1077. int i = 0, j = 0;
  1078. for (i = 0; i < len;) {
  1079. buffer[0] = '\0';
  1080. sprintf(buffer, "%.3d :", i);
  1081. for (j = 0; (j < 16) && (i < len); j++, i++) {
  1082. sprintf(buffer, "%s %2.2x", buffer, data[i]);
  1083. }
  1084. dbg("%s", buffer);
  1085. }
  1086. return i;
  1087. }
  1088. #endif