cxacru.c 36 KB

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  1. /******************************************************************************
  2. * cxacru.c - driver for USB ADSL modems based on
  3. * Conexant AccessRunner chipset
  4. *
  5. * Copyright (C) 2004 David Woodhouse, Duncan Sands, Roman Kagan
  6. * Copyright (C) 2005 Duncan Sands, Roman Kagan (rkagan % mail ! ru)
  7. * Copyright (C) 2007 Simon Arlott
  8. *
  9. * This program is free software; you can redistribute it and/or modify it
  10. * under the terms of the GNU General Public License as published by the Free
  11. * Software Foundation; either version 2 of the License, or (at your option)
  12. * any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful, but WITHOUT
  15. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  16. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  17. * more details.
  18. *
  19. * You should have received a copy of the GNU General Public License along with
  20. * this program; if not, write to the Free Software Foundation, Inc., 59
  21. * Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  22. *
  23. ******************************************************************************/
  24. /*
  25. * Credit is due for Josep Comas, who created the original patch to speedtch.c
  26. * to support the different padding used by the AccessRunner (now generalized
  27. * into usbatm), and the userspace firmware loading utility.
  28. */
  29. #include <linux/module.h>
  30. #include <linux/moduleparam.h>
  31. #include <linux/kernel.h>
  32. #include <linux/timer.h>
  33. #include <linux/errno.h>
  34. #include <linux/slab.h>
  35. #include <linux/init.h>
  36. #include <linux/device.h>
  37. #include <linux/firmware.h>
  38. #include <linux/mutex.h>
  39. #include "usbatm.h"
  40. #define DRIVER_AUTHOR "Roman Kagan, David Woodhouse, Duncan Sands, Simon Arlott"
  41. #define DRIVER_VERSION "0.3"
  42. #define DRIVER_DESC "Conexant AccessRunner ADSL USB modem driver"
  43. static const char cxacru_driver_name[] = "cxacru";
  44. #define CXACRU_EP_CMD 0x01 /* Bulk/interrupt in/out */
  45. #define CXACRU_EP_DATA 0x02 /* Bulk in/out */
  46. #define CMD_PACKET_SIZE 64 /* Should be maxpacket(ep)? */
  47. /* Addresses */
  48. #define PLLFCLK_ADDR 0x00350068
  49. #define PLLBCLK_ADDR 0x0035006c
  50. #define SDRAMEN_ADDR 0x00350010
  51. #define FW_ADDR 0x00801000
  52. #define BR_ADDR 0x00180600
  53. #define SIG_ADDR 0x00180500
  54. #define BR_STACK_ADDR 0x00187f10
  55. /* Values */
  56. #define SDRAM_ENA 0x1
  57. #define CMD_TIMEOUT 2000 /* msecs */
  58. #define POLL_INTERVAL 1 /* secs */
  59. /* commands for interaction with the modem through the control channel before
  60. * firmware is loaded */
  61. enum cxacru_fw_request {
  62. FW_CMD_ERR,
  63. FW_GET_VER,
  64. FW_READ_MEM,
  65. FW_WRITE_MEM,
  66. FW_RMW_MEM,
  67. FW_CHECKSUM_MEM,
  68. FW_GOTO_MEM,
  69. };
  70. /* commands for interaction with the modem through the control channel once
  71. * firmware is loaded */
  72. enum cxacru_cm_request {
  73. CM_REQUEST_UNDEFINED = 0x80,
  74. CM_REQUEST_TEST,
  75. CM_REQUEST_CHIP_GET_MAC_ADDRESS,
  76. CM_REQUEST_CHIP_GET_DP_VERSIONS,
  77. CM_REQUEST_CHIP_ADSL_LINE_START,
  78. CM_REQUEST_CHIP_ADSL_LINE_STOP,
  79. CM_REQUEST_CHIP_ADSL_LINE_GET_STATUS,
  80. CM_REQUEST_CHIP_ADSL_LINE_GET_SPEED,
  81. CM_REQUEST_CARD_INFO_GET,
  82. CM_REQUEST_CARD_DATA_GET,
  83. CM_REQUEST_CARD_DATA_SET,
  84. CM_REQUEST_COMMAND_HW_IO,
  85. CM_REQUEST_INTERFACE_HW_IO,
  86. CM_REQUEST_CARD_SERIAL_DATA_PATH_GET,
  87. CM_REQUEST_CARD_SERIAL_DATA_PATH_SET,
  88. CM_REQUEST_CARD_CONTROLLER_VERSION_GET,
  89. CM_REQUEST_CARD_GET_STATUS,
  90. CM_REQUEST_CARD_GET_MAC_ADDRESS,
  91. CM_REQUEST_CARD_GET_DATA_LINK_STATUS,
  92. CM_REQUEST_MAX,
  93. };
  94. /* reply codes to the commands above */
  95. enum cxacru_cm_status {
  96. CM_STATUS_UNDEFINED,
  97. CM_STATUS_SUCCESS,
  98. CM_STATUS_ERROR,
  99. CM_STATUS_UNSUPPORTED,
  100. CM_STATUS_UNIMPLEMENTED,
  101. CM_STATUS_PARAMETER_ERROR,
  102. CM_STATUS_DBG_LOOPBACK,
  103. CM_STATUS_MAX,
  104. };
  105. /* indices into CARD_INFO_GET return array */
  106. enum cxacru_info_idx {
  107. CXINF_DOWNSTREAM_RATE,
  108. CXINF_UPSTREAM_RATE,
  109. CXINF_LINK_STATUS,
  110. CXINF_LINE_STATUS,
  111. CXINF_MAC_ADDRESS_HIGH,
  112. CXINF_MAC_ADDRESS_LOW,
  113. CXINF_UPSTREAM_SNR_MARGIN,
  114. CXINF_DOWNSTREAM_SNR_MARGIN,
  115. CXINF_UPSTREAM_ATTENUATION,
  116. CXINF_DOWNSTREAM_ATTENUATION,
  117. CXINF_TRANSMITTER_POWER,
  118. CXINF_UPSTREAM_BITS_PER_FRAME,
  119. CXINF_DOWNSTREAM_BITS_PER_FRAME,
  120. CXINF_STARTUP_ATTEMPTS,
  121. CXINF_UPSTREAM_CRC_ERRORS,
  122. CXINF_DOWNSTREAM_CRC_ERRORS,
  123. CXINF_UPSTREAM_FEC_ERRORS,
  124. CXINF_DOWNSTREAM_FEC_ERRORS,
  125. CXINF_UPSTREAM_HEC_ERRORS,
  126. CXINF_DOWNSTREAM_HEC_ERRORS,
  127. CXINF_LINE_STARTABLE,
  128. CXINF_MODULATION,
  129. CXINF_ADSL_HEADEND,
  130. CXINF_ADSL_HEADEND_ENVIRONMENT,
  131. CXINF_CONTROLLER_VERSION,
  132. /* dunno what the missing two mean */
  133. CXINF_MAX = 0x1c,
  134. };
  135. enum cxacru_poll_state {
  136. CXPOLL_STOPPING,
  137. CXPOLL_STOPPED,
  138. CXPOLL_POLLING,
  139. CXPOLL_SHUTDOWN
  140. };
  141. struct cxacru_modem_type {
  142. u32 pll_f_clk;
  143. u32 pll_b_clk;
  144. int boot_rom_patch;
  145. };
  146. struct cxacru_data {
  147. struct usbatm_data *usbatm;
  148. const struct cxacru_modem_type *modem_type;
  149. int line_status;
  150. struct mutex adsl_state_serialize;
  151. int adsl_status;
  152. struct delayed_work poll_work;
  153. u32 card_info[CXINF_MAX];
  154. struct mutex poll_state_serialize;
  155. enum cxacru_poll_state poll_state;
  156. /* contol handles */
  157. struct mutex cm_serialize;
  158. u8 *rcv_buf;
  159. u8 *snd_buf;
  160. struct urb *rcv_urb;
  161. struct urb *snd_urb;
  162. struct completion rcv_done;
  163. struct completion snd_done;
  164. };
  165. static int cxacru_cm(struct cxacru_data *instance, enum cxacru_cm_request cm,
  166. u8 *wdata, int wsize, u8 *rdata, int rsize);
  167. static void cxacru_poll_status(struct work_struct *work);
  168. /* Card info exported through sysfs */
  169. #define CXACRU__ATTR_INIT(_name) \
  170. static DEVICE_ATTR(_name, S_IRUGO, cxacru_sysfs_show_##_name, NULL)
  171. #define CXACRU_CMD_INIT(_name) \
  172. static DEVICE_ATTR(_name, S_IWUSR | S_IRUGO, \
  173. cxacru_sysfs_show_##_name, cxacru_sysfs_store_##_name)
  174. #define CXACRU_ATTR_INIT(_value, _type, _name) \
  175. static ssize_t cxacru_sysfs_show_##_name(struct device *dev, \
  176. struct device_attribute *attr, char *buf) \
  177. { \
  178. struct usb_interface *intf = to_usb_interface(dev); \
  179. struct usbatm_data *usbatm_instance = usb_get_intfdata(intf); \
  180. struct cxacru_data *instance = usbatm_instance->driver_data; \
  181. return cxacru_sysfs_showattr_##_type(instance->card_info[_value], buf); \
  182. } \
  183. CXACRU__ATTR_INIT(_name)
  184. #define CXACRU_ATTR_CREATE(_v, _t, _name) CXACRU_DEVICE_CREATE_FILE(_name)
  185. #define CXACRU_CMD_CREATE(_name) CXACRU_DEVICE_CREATE_FILE(_name)
  186. #define CXACRU__ATTR_CREATE(_name) CXACRU_DEVICE_CREATE_FILE(_name)
  187. #define CXACRU_ATTR_REMOVE(_v, _t, _name) CXACRU_DEVICE_REMOVE_FILE(_name)
  188. #define CXACRU_CMD_REMOVE(_name) CXACRU_DEVICE_REMOVE_FILE(_name)
  189. #define CXACRU__ATTR_REMOVE(_name) CXACRU_DEVICE_REMOVE_FILE(_name)
  190. static ssize_t cxacru_sysfs_showattr_u32(u32 value, char *buf)
  191. {
  192. return snprintf(buf, PAGE_SIZE, "%u\n", value);
  193. }
  194. static ssize_t cxacru_sysfs_showattr_s8(s8 value, char *buf)
  195. {
  196. return snprintf(buf, PAGE_SIZE, "%d\n", value);
  197. }
  198. static ssize_t cxacru_sysfs_showattr_dB(s16 value, char *buf)
  199. {
  200. return snprintf(buf, PAGE_SIZE, "%d.%02u\n",
  201. value / 100, abs(value) % 100);
  202. }
  203. static ssize_t cxacru_sysfs_showattr_bool(u32 value, char *buf)
  204. {
  205. static char *str[] = { "no", "yes" };
  206. if (unlikely(value >= ARRAY_SIZE(str)))
  207. return snprintf(buf, PAGE_SIZE, "%u\n", value);
  208. return snprintf(buf, PAGE_SIZE, "%s\n", str[value]);
  209. }
  210. static ssize_t cxacru_sysfs_showattr_LINK(u32 value, char *buf)
  211. {
  212. static char *str[] = { NULL, "not connected", "connected", "lost" };
  213. if (unlikely(value >= ARRAY_SIZE(str) || str[value] == NULL))
  214. return snprintf(buf, PAGE_SIZE, "%u\n", value);
  215. return snprintf(buf, PAGE_SIZE, "%s\n", str[value]);
  216. }
  217. static ssize_t cxacru_sysfs_showattr_LINE(u32 value, char *buf)
  218. {
  219. static char *str[] = { "down", "attempting to activate",
  220. "training", "channel analysis", "exchange", "up",
  221. "waiting", "initialising"
  222. };
  223. if (unlikely(value >= ARRAY_SIZE(str)))
  224. return snprintf(buf, PAGE_SIZE, "%u\n", value);
  225. return snprintf(buf, PAGE_SIZE, "%s\n", str[value]);
  226. }
  227. static ssize_t cxacru_sysfs_showattr_MODU(u32 value, char *buf)
  228. {
  229. static char *str[] = {
  230. NULL,
  231. "ANSI T1.413",
  232. "ITU-T G.992.1 (G.DMT)",
  233. "ITU-T G.992.2 (G.LITE)"
  234. };
  235. if (unlikely(value >= ARRAY_SIZE(str) || str[value] == NULL))
  236. return snprintf(buf, PAGE_SIZE, "%u\n", value);
  237. return snprintf(buf, PAGE_SIZE, "%s\n", str[value]);
  238. }
  239. /*
  240. * This could use MAC_ADDRESS_HIGH and MAC_ADDRESS_LOW, but since
  241. * this data is already in atm_dev there's no point.
  242. *
  243. * MAC_ADDRESS_HIGH = 0x????5544
  244. * MAC_ADDRESS_LOW = 0x33221100
  245. * Where 00-55 are bytes 0-5 of the MAC.
  246. */
  247. static ssize_t cxacru_sysfs_show_mac_address(struct device *dev,
  248. struct device_attribute *attr, char *buf)
  249. {
  250. struct usb_interface *intf = to_usb_interface(dev);
  251. struct usbatm_data *usbatm_instance = usb_get_intfdata(intf);
  252. struct atm_dev *atm_dev = usbatm_instance->atm_dev;
  253. return snprintf(buf, PAGE_SIZE, "%02x:%02x:%02x:%02x:%02x:%02x\n",
  254. atm_dev->esi[0], atm_dev->esi[1], atm_dev->esi[2],
  255. atm_dev->esi[3], atm_dev->esi[4], atm_dev->esi[5]);
  256. }
  257. static ssize_t cxacru_sysfs_show_adsl_state(struct device *dev,
  258. struct device_attribute *attr, char *buf)
  259. {
  260. struct usb_interface *intf = to_usb_interface(dev);
  261. struct usbatm_data *usbatm_instance = usb_get_intfdata(intf);
  262. struct cxacru_data *instance = usbatm_instance->driver_data;
  263. u32 value = instance->card_info[CXINF_LINE_STARTABLE];
  264. static char *str[] = { "running", "stopped" };
  265. if (unlikely(value >= ARRAY_SIZE(str)))
  266. return snprintf(buf, PAGE_SIZE, "%u\n", value);
  267. return snprintf(buf, PAGE_SIZE, "%s\n", str[value]);
  268. }
  269. static ssize_t cxacru_sysfs_store_adsl_state(struct device *dev,
  270. struct device_attribute *attr, const char *buf, size_t count)
  271. {
  272. struct usb_interface *intf = to_usb_interface(dev);
  273. struct usbatm_data *usbatm_instance = usb_get_intfdata(intf);
  274. struct cxacru_data *instance = usbatm_instance->driver_data;
  275. int ret;
  276. int poll = -1;
  277. char str_cmd[8];
  278. int len = strlen(buf);
  279. if (!capable(CAP_NET_ADMIN))
  280. return -EACCES;
  281. ret = sscanf(buf, "%7s", str_cmd);
  282. if (ret != 1)
  283. return -EINVAL;
  284. ret = 0;
  285. if (mutex_lock_interruptible(&instance->adsl_state_serialize))
  286. return -ERESTARTSYS;
  287. if (!strcmp(str_cmd, "stop") || !strcmp(str_cmd, "restart")) {
  288. ret = cxacru_cm(instance, CM_REQUEST_CHIP_ADSL_LINE_STOP, NULL, 0, NULL, 0);
  289. if (ret < 0) {
  290. atm_err(usbatm_instance, "change adsl state:"
  291. " CHIP_ADSL_LINE_STOP returned %d\n", ret);
  292. ret = -EIO;
  293. } else {
  294. ret = len;
  295. poll = CXPOLL_STOPPED;
  296. }
  297. }
  298. /* Line status is only updated every second
  299. * and the device appears to only react to
  300. * START/STOP every second too. Wait 1.5s to
  301. * be sure that restart will have an effect. */
  302. if (!strcmp(str_cmd, "restart"))
  303. msleep(1500);
  304. if (!strcmp(str_cmd, "start") || !strcmp(str_cmd, "restart")) {
  305. ret = cxacru_cm(instance, CM_REQUEST_CHIP_ADSL_LINE_START, NULL, 0, NULL, 0);
  306. if (ret < 0) {
  307. atm_err(usbatm_instance, "change adsl state:"
  308. " CHIP_ADSL_LINE_START returned %d\n", ret);
  309. ret = -EIO;
  310. } else {
  311. ret = len;
  312. poll = CXPOLL_POLLING;
  313. }
  314. }
  315. if (!strcmp(str_cmd, "poll")) {
  316. ret = len;
  317. poll = CXPOLL_POLLING;
  318. }
  319. if (ret == 0) {
  320. ret = -EINVAL;
  321. poll = -1;
  322. }
  323. if (poll == CXPOLL_POLLING) {
  324. mutex_lock(&instance->poll_state_serialize);
  325. switch (instance->poll_state) {
  326. case CXPOLL_STOPPED:
  327. /* start polling */
  328. instance->poll_state = CXPOLL_POLLING;
  329. break;
  330. case CXPOLL_STOPPING:
  331. /* abort stop request */
  332. instance->poll_state = CXPOLL_POLLING;
  333. case CXPOLL_POLLING:
  334. case CXPOLL_SHUTDOWN:
  335. /* don't start polling */
  336. poll = -1;
  337. }
  338. mutex_unlock(&instance->poll_state_serialize);
  339. } else if (poll == CXPOLL_STOPPED) {
  340. mutex_lock(&instance->poll_state_serialize);
  341. /* request stop */
  342. if (instance->poll_state == CXPOLL_POLLING)
  343. instance->poll_state = CXPOLL_STOPPING;
  344. mutex_unlock(&instance->poll_state_serialize);
  345. }
  346. mutex_unlock(&instance->adsl_state_serialize);
  347. if (poll == CXPOLL_POLLING)
  348. cxacru_poll_status(&instance->poll_work.work);
  349. return ret;
  350. }
  351. /*
  352. * All device attributes are included in CXACRU_ALL_FILES
  353. * so that the same list can be used multiple times:
  354. * INIT (define the device attributes)
  355. * CREATE (create all the device files)
  356. * REMOVE (remove all the device files)
  357. *
  358. * With the last two being defined as needed in the functions
  359. * they are used in before calling CXACRU_ALL_FILES()
  360. */
  361. #define CXACRU_ALL_FILES(_action) \
  362. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_RATE, u32, downstream_rate); \
  363. CXACRU_ATTR_##_action(CXINF_UPSTREAM_RATE, u32, upstream_rate); \
  364. CXACRU_ATTR_##_action(CXINF_LINK_STATUS, LINK, link_status); \
  365. CXACRU_ATTR_##_action(CXINF_LINE_STATUS, LINE, line_status); \
  366. CXACRU__ATTR_##_action( mac_address); \
  367. CXACRU_ATTR_##_action(CXINF_UPSTREAM_SNR_MARGIN, dB, upstream_snr_margin); \
  368. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_SNR_MARGIN, dB, downstream_snr_margin); \
  369. CXACRU_ATTR_##_action(CXINF_UPSTREAM_ATTENUATION, dB, upstream_attenuation); \
  370. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_ATTENUATION, dB, downstream_attenuation); \
  371. CXACRU_ATTR_##_action(CXINF_TRANSMITTER_POWER, s8, transmitter_power); \
  372. CXACRU_ATTR_##_action(CXINF_UPSTREAM_BITS_PER_FRAME, u32, upstream_bits_per_frame); \
  373. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_BITS_PER_FRAME, u32, downstream_bits_per_frame); \
  374. CXACRU_ATTR_##_action(CXINF_STARTUP_ATTEMPTS, u32, startup_attempts); \
  375. CXACRU_ATTR_##_action(CXINF_UPSTREAM_CRC_ERRORS, u32, upstream_crc_errors); \
  376. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_CRC_ERRORS, u32, downstream_crc_errors); \
  377. CXACRU_ATTR_##_action(CXINF_UPSTREAM_FEC_ERRORS, u32, upstream_fec_errors); \
  378. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_FEC_ERRORS, u32, downstream_fec_errors); \
  379. CXACRU_ATTR_##_action(CXINF_UPSTREAM_HEC_ERRORS, u32, upstream_hec_errors); \
  380. CXACRU_ATTR_##_action(CXINF_DOWNSTREAM_HEC_ERRORS, u32, downstream_hec_errors); \
  381. CXACRU_ATTR_##_action(CXINF_LINE_STARTABLE, bool, line_startable); \
  382. CXACRU_ATTR_##_action(CXINF_MODULATION, MODU, modulation); \
  383. CXACRU_ATTR_##_action(CXINF_ADSL_HEADEND, u32, adsl_headend); \
  384. CXACRU_ATTR_##_action(CXINF_ADSL_HEADEND_ENVIRONMENT, u32, adsl_headend_environment); \
  385. CXACRU_ATTR_##_action(CXINF_CONTROLLER_VERSION, u32, adsl_controller_version); \
  386. CXACRU_CMD_##_action( adsl_state);
  387. CXACRU_ALL_FILES(INIT);
  388. /* the following three functions are stolen from drivers/usb/core/message.c */
  389. static void cxacru_blocking_completion(struct urb *urb)
  390. {
  391. complete((struct completion *)urb->context);
  392. }
  393. static void cxacru_timeout_kill(unsigned long data)
  394. {
  395. usb_unlink_urb((struct urb *) data);
  396. }
  397. static int cxacru_start_wait_urb(struct urb *urb, struct completion *done,
  398. int* actual_length)
  399. {
  400. struct timer_list timer;
  401. init_timer(&timer);
  402. timer.expires = jiffies + msecs_to_jiffies(CMD_TIMEOUT);
  403. timer.data = (unsigned long) urb;
  404. timer.function = cxacru_timeout_kill;
  405. add_timer(&timer);
  406. wait_for_completion(done);
  407. del_timer_sync(&timer);
  408. if (actual_length)
  409. *actual_length = urb->actual_length;
  410. return urb->status; /* must read status after completion */
  411. }
  412. static int cxacru_cm(struct cxacru_data *instance, enum cxacru_cm_request cm,
  413. u8 *wdata, int wsize, u8 *rdata, int rsize)
  414. {
  415. int ret, actlen;
  416. int offb, offd;
  417. const int stride = CMD_PACKET_SIZE - 4;
  418. u8 *wbuf = instance->snd_buf;
  419. u8 *rbuf = instance->rcv_buf;
  420. int wbuflen = ((wsize - 1) / stride + 1) * CMD_PACKET_SIZE;
  421. int rbuflen = ((rsize - 1) / stride + 1) * CMD_PACKET_SIZE;
  422. if (wbuflen > PAGE_SIZE || rbuflen > PAGE_SIZE) {
  423. if (printk_ratelimit())
  424. usb_err(instance->usbatm, "requested transfer size too large (%d, %d)\n",
  425. wbuflen, rbuflen);
  426. ret = -ENOMEM;
  427. goto fail;
  428. }
  429. mutex_lock(&instance->cm_serialize);
  430. /* submit reading urb before the writing one */
  431. init_completion(&instance->rcv_done);
  432. ret = usb_submit_urb(instance->rcv_urb, GFP_KERNEL);
  433. if (ret < 0) {
  434. if (printk_ratelimit())
  435. usb_err(instance->usbatm, "submit of read urb for cm %#x failed (%d)\n",
  436. cm, ret);
  437. goto fail;
  438. }
  439. memset(wbuf, 0, wbuflen);
  440. /* handle wsize == 0 */
  441. wbuf[0] = cm;
  442. for (offb = offd = 0; offd < wsize; offd += stride, offb += CMD_PACKET_SIZE) {
  443. wbuf[offb] = cm;
  444. memcpy(wbuf + offb + 4, wdata + offd, min_t(int, stride, wsize - offd));
  445. }
  446. instance->snd_urb->transfer_buffer_length = wbuflen;
  447. init_completion(&instance->snd_done);
  448. ret = usb_submit_urb(instance->snd_urb, GFP_KERNEL);
  449. if (ret < 0) {
  450. if (printk_ratelimit())
  451. usb_err(instance->usbatm, "submit of write urb for cm %#x failed (%d)\n",
  452. cm, ret);
  453. goto fail;
  454. }
  455. ret = cxacru_start_wait_urb(instance->snd_urb, &instance->snd_done, NULL);
  456. if (ret < 0) {
  457. if (printk_ratelimit())
  458. usb_err(instance->usbatm, "send of cm %#x failed (%d)\n", cm, ret);
  459. goto fail;
  460. }
  461. ret = cxacru_start_wait_urb(instance->rcv_urb, &instance->rcv_done, &actlen);
  462. if (ret < 0) {
  463. if (printk_ratelimit())
  464. usb_err(instance->usbatm, "receive of cm %#x failed (%d)\n", cm, ret);
  465. goto fail;
  466. }
  467. if (actlen % CMD_PACKET_SIZE || !actlen) {
  468. if (printk_ratelimit())
  469. usb_err(instance->usbatm, "invalid response length to cm %#x: %d\n",
  470. cm, actlen);
  471. ret = -EIO;
  472. goto fail;
  473. }
  474. /* check the return status and copy the data to the output buffer, if needed */
  475. for (offb = offd = 0; offd < rsize && offb < actlen; offb += CMD_PACKET_SIZE) {
  476. if (rbuf[offb] != cm) {
  477. if (printk_ratelimit())
  478. usb_err(instance->usbatm, "wrong cm %#x in response to cm %#x\n",
  479. rbuf[offb], cm);
  480. ret = -EIO;
  481. goto fail;
  482. }
  483. if (rbuf[offb + 1] != CM_STATUS_SUCCESS) {
  484. if (printk_ratelimit())
  485. usb_err(instance->usbatm, "response to cm %#x failed: %#x\n",
  486. cm, rbuf[offb + 1]);
  487. ret = -EIO;
  488. goto fail;
  489. }
  490. if (offd >= rsize)
  491. break;
  492. memcpy(rdata + offd, rbuf + offb + 4, min_t(int, stride, rsize - offd));
  493. offd += stride;
  494. }
  495. ret = offd;
  496. dbg("cm %#x", cm);
  497. fail:
  498. mutex_unlock(&instance->cm_serialize);
  499. return ret;
  500. }
  501. static int cxacru_cm_get_array(struct cxacru_data *instance, enum cxacru_cm_request cm,
  502. u32 *data, int size)
  503. {
  504. int ret, len;
  505. u32 *buf;
  506. int offb, offd;
  507. const int stride = CMD_PACKET_SIZE / (4 * 2) - 1;
  508. int buflen = ((size - 1) / stride + 1 + size * 2) * 4;
  509. buf = kmalloc(buflen, GFP_KERNEL);
  510. if (!buf)
  511. return -ENOMEM;
  512. ret = cxacru_cm(instance, cm, NULL, 0, (u8 *) buf, buflen);
  513. if (ret < 0)
  514. goto cleanup;
  515. /* len > 0 && len % 4 == 0 guaranteed by cxacru_cm() */
  516. len = ret / 4;
  517. for (offb = 0; offb < len; ) {
  518. int l = le32_to_cpu(buf[offb++]);
  519. if (l > stride || l > (len - offb) / 2) {
  520. if (printk_ratelimit())
  521. usb_err(instance->usbatm, "invalid data length from cm %#x: %d\n",
  522. cm, l);
  523. ret = -EIO;
  524. goto cleanup;
  525. }
  526. while (l--) {
  527. offd = le32_to_cpu(buf[offb++]);
  528. if (offd >= size) {
  529. if (printk_ratelimit())
  530. usb_err(instance->usbatm, "wrong index #%x in response to cm #%x\n",
  531. offd, cm);
  532. ret = -EIO;
  533. goto cleanup;
  534. }
  535. data[offd] = le32_to_cpu(buf[offb++]);
  536. }
  537. }
  538. ret = 0;
  539. cleanup:
  540. kfree(buf);
  541. return ret;
  542. }
  543. static int cxacru_card_status(struct cxacru_data *instance)
  544. {
  545. int ret = cxacru_cm(instance, CM_REQUEST_CARD_GET_STATUS, NULL, 0, NULL, 0);
  546. if (ret < 0) { /* firmware not loaded */
  547. dbg("cxacru_adsl_start: CARD_GET_STATUS returned %d", ret);
  548. return ret;
  549. }
  550. return 0;
  551. }
  552. static void cxacru_remove_device_files(struct usbatm_data *usbatm_instance,
  553. struct atm_dev *atm_dev)
  554. {
  555. struct usb_interface *intf = usbatm_instance->usb_intf;
  556. #define CXACRU_DEVICE_REMOVE_FILE(_name) \
  557. device_remove_file(&intf->dev, &dev_attr_##_name);
  558. CXACRU_ALL_FILES(REMOVE);
  559. #undef CXACRU_DEVICE_REMOVE_FILE
  560. }
  561. static int cxacru_atm_start(struct usbatm_data *usbatm_instance,
  562. struct atm_dev *atm_dev)
  563. {
  564. struct cxacru_data *instance = usbatm_instance->driver_data;
  565. struct usb_interface *intf = usbatm_instance->usb_intf;
  566. /*
  567. struct atm_dev *atm_dev = usbatm_instance->atm_dev;
  568. */
  569. int ret;
  570. int start_polling = 1;
  571. dbg("cxacru_atm_start");
  572. /* Read MAC address */
  573. ret = cxacru_cm(instance, CM_REQUEST_CARD_GET_MAC_ADDRESS, NULL, 0,
  574. atm_dev->esi, sizeof(atm_dev->esi));
  575. if (ret < 0) {
  576. atm_err(usbatm_instance, "cxacru_atm_start: CARD_GET_MAC_ADDRESS returned %d\n", ret);
  577. return ret;
  578. }
  579. #define CXACRU_DEVICE_CREATE_FILE(_name) \
  580. ret = device_create_file(&intf->dev, &dev_attr_##_name); \
  581. if (unlikely(ret)) \
  582. goto fail_sysfs;
  583. CXACRU_ALL_FILES(CREATE);
  584. #undef CXACRU_DEVICE_CREATE_FILE
  585. /* start ADSL */
  586. mutex_lock(&instance->adsl_state_serialize);
  587. ret = cxacru_cm(instance, CM_REQUEST_CHIP_ADSL_LINE_START, NULL, 0, NULL, 0);
  588. if (ret < 0)
  589. atm_err(usbatm_instance, "cxacru_atm_start: CHIP_ADSL_LINE_START returned %d\n", ret);
  590. /* Start status polling */
  591. mutex_lock(&instance->poll_state_serialize);
  592. switch (instance->poll_state) {
  593. case CXPOLL_STOPPED:
  594. /* start polling */
  595. instance->poll_state = CXPOLL_POLLING;
  596. break;
  597. case CXPOLL_STOPPING:
  598. /* abort stop request */
  599. instance->poll_state = CXPOLL_POLLING;
  600. case CXPOLL_POLLING:
  601. case CXPOLL_SHUTDOWN:
  602. /* don't start polling */
  603. start_polling = 0;
  604. }
  605. mutex_unlock(&instance->poll_state_serialize);
  606. mutex_unlock(&instance->adsl_state_serialize);
  607. if (start_polling)
  608. cxacru_poll_status(&instance->poll_work.work);
  609. return 0;
  610. fail_sysfs:
  611. usb_err(usbatm_instance, "cxacru_atm_start: device_create_file failed (%d)\n", ret);
  612. cxacru_remove_device_files(usbatm_instance, atm_dev);
  613. return ret;
  614. }
  615. static void cxacru_poll_status(struct work_struct *work)
  616. {
  617. struct cxacru_data *instance =
  618. container_of(work, struct cxacru_data, poll_work.work);
  619. u32 buf[CXINF_MAX] = {};
  620. struct usbatm_data *usbatm = instance->usbatm;
  621. struct atm_dev *atm_dev = usbatm->atm_dev;
  622. int keep_polling = 1;
  623. int ret;
  624. ret = cxacru_cm_get_array(instance, CM_REQUEST_CARD_INFO_GET, buf, CXINF_MAX);
  625. if (ret < 0) {
  626. if (ret != -ESHUTDOWN)
  627. atm_warn(usbatm, "poll status: error %d\n", ret);
  628. mutex_lock(&instance->poll_state_serialize);
  629. if (instance->poll_state != CXPOLL_SHUTDOWN) {
  630. instance->poll_state = CXPOLL_STOPPED;
  631. if (ret != -ESHUTDOWN)
  632. atm_warn(usbatm, "polling disabled, set adsl_state"
  633. " to 'start' or 'poll' to resume\n");
  634. }
  635. mutex_unlock(&instance->poll_state_serialize);
  636. goto reschedule;
  637. }
  638. memcpy(instance->card_info, buf, sizeof(instance->card_info));
  639. if (instance->adsl_status != buf[CXINF_LINE_STARTABLE]) {
  640. instance->adsl_status = buf[CXINF_LINE_STARTABLE];
  641. switch (instance->adsl_status) {
  642. case 0:
  643. atm_printk(KERN_INFO, usbatm, "ADSL state: running\n");
  644. break;
  645. case 1:
  646. atm_printk(KERN_INFO, usbatm, "ADSL state: stopped\n");
  647. break;
  648. default:
  649. atm_printk(KERN_INFO, usbatm, "Unknown adsl status %02x\n", instance->adsl_status);
  650. break;
  651. }
  652. }
  653. if (instance->line_status == buf[CXINF_LINE_STATUS])
  654. goto reschedule;
  655. instance->line_status = buf[CXINF_LINE_STATUS];
  656. switch (instance->line_status) {
  657. case 0:
  658. atm_dev->signal = ATM_PHY_SIG_LOST;
  659. atm_info(usbatm, "ADSL line: down\n");
  660. break;
  661. case 1:
  662. atm_dev->signal = ATM_PHY_SIG_LOST;
  663. atm_info(usbatm, "ADSL line: attempting to activate\n");
  664. break;
  665. case 2:
  666. atm_dev->signal = ATM_PHY_SIG_LOST;
  667. atm_info(usbatm, "ADSL line: training\n");
  668. break;
  669. case 3:
  670. atm_dev->signal = ATM_PHY_SIG_LOST;
  671. atm_info(usbatm, "ADSL line: channel analysis\n");
  672. break;
  673. case 4:
  674. atm_dev->signal = ATM_PHY_SIG_LOST;
  675. atm_info(usbatm, "ADSL line: exchange\n");
  676. break;
  677. case 5:
  678. atm_dev->link_rate = buf[CXINF_DOWNSTREAM_RATE] * 1000 / 424;
  679. atm_dev->signal = ATM_PHY_SIG_FOUND;
  680. atm_info(usbatm, "ADSL line: up (%d kb/s down | %d kb/s up)\n",
  681. buf[CXINF_DOWNSTREAM_RATE], buf[CXINF_UPSTREAM_RATE]);
  682. break;
  683. case 6:
  684. atm_dev->signal = ATM_PHY_SIG_LOST;
  685. atm_info(usbatm, "ADSL line: waiting\n");
  686. break;
  687. case 7:
  688. atm_dev->signal = ATM_PHY_SIG_LOST;
  689. atm_info(usbatm, "ADSL line: initializing\n");
  690. break;
  691. default:
  692. atm_dev->signal = ATM_PHY_SIG_UNKNOWN;
  693. atm_info(usbatm, "Unknown line state %02x\n", instance->line_status);
  694. break;
  695. }
  696. reschedule:
  697. mutex_lock(&instance->poll_state_serialize);
  698. if (instance->poll_state == CXPOLL_STOPPING &&
  699. instance->adsl_status == 1 && /* stopped */
  700. instance->line_status == 0) /* down */
  701. instance->poll_state = CXPOLL_STOPPED;
  702. if (instance->poll_state == CXPOLL_STOPPED)
  703. keep_polling = 0;
  704. mutex_unlock(&instance->poll_state_serialize);
  705. if (keep_polling)
  706. schedule_delayed_work(&instance->poll_work,
  707. round_jiffies_relative(POLL_INTERVAL*HZ));
  708. }
  709. static int cxacru_fw(struct usb_device *usb_dev, enum cxacru_fw_request fw,
  710. u8 code1, u8 code2, u32 addr, u8 *data, int size)
  711. {
  712. int ret;
  713. u8 *buf;
  714. int offd, offb;
  715. const int stride = CMD_PACKET_SIZE - 8;
  716. buf = (u8 *) __get_free_page(GFP_KERNEL);
  717. if (!buf)
  718. return -ENOMEM;
  719. offb = offd = 0;
  720. do {
  721. int l = min_t(int, stride, size - offd);
  722. buf[offb++] = fw;
  723. buf[offb++] = l;
  724. buf[offb++] = code1;
  725. buf[offb++] = code2;
  726. *((u32 *) (buf + offb)) = cpu_to_le32(addr);
  727. offb += 4;
  728. addr += l;
  729. if(l)
  730. memcpy(buf + offb, data + offd, l);
  731. if (l < stride)
  732. memset(buf + offb + l, 0, stride - l);
  733. offb += stride;
  734. offd += stride;
  735. if ((offb >= PAGE_SIZE) || (offd >= size)) {
  736. ret = usb_bulk_msg(usb_dev, usb_sndbulkpipe(usb_dev, CXACRU_EP_CMD),
  737. buf, offb, NULL, CMD_TIMEOUT);
  738. if (ret < 0) {
  739. dbg("sending fw %#x failed", fw);
  740. goto cleanup;
  741. }
  742. offb = 0;
  743. }
  744. } while(offd < size);
  745. dbg("sent fw %#x", fw);
  746. ret = 0;
  747. cleanup:
  748. free_page((unsigned long) buf);
  749. return ret;
  750. }
  751. static void cxacru_upload_firmware(struct cxacru_data *instance,
  752. const struct firmware *fw,
  753. const struct firmware *bp,
  754. const struct firmware *cf)
  755. {
  756. int ret;
  757. int off;
  758. struct usbatm_data *usbatm = instance->usbatm;
  759. struct usb_device *usb_dev = usbatm->usb_dev;
  760. u16 signature[] = { usb_dev->descriptor.idVendor, usb_dev->descriptor.idProduct };
  761. u32 val;
  762. dbg("cxacru_upload_firmware");
  763. /* FirmwarePllFClkValue */
  764. val = cpu_to_le32(instance->modem_type->pll_f_clk);
  765. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, PLLFCLK_ADDR, (u8 *) &val, 4);
  766. if (ret) {
  767. usb_err(usbatm, "FirmwarePllFClkValue failed: %d\n", ret);
  768. return;
  769. }
  770. /* FirmwarePllBClkValue */
  771. val = cpu_to_le32(instance->modem_type->pll_b_clk);
  772. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, PLLBCLK_ADDR, (u8 *) &val, 4);
  773. if (ret) {
  774. usb_err(usbatm, "FirmwarePllBClkValue failed: %d\n", ret);
  775. return;
  776. }
  777. /* Enable SDRAM */
  778. val = cpu_to_le32(SDRAM_ENA);
  779. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, SDRAMEN_ADDR, (u8 *) &val, 4);
  780. if (ret) {
  781. usb_err(usbatm, "Enable SDRAM failed: %d\n", ret);
  782. return;
  783. }
  784. /* Firmware */
  785. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, FW_ADDR, fw->data, fw->size);
  786. if (ret) {
  787. usb_err(usbatm, "Firmware upload failed: %d\n", ret);
  788. return;
  789. }
  790. /* Boot ROM patch */
  791. if (instance->modem_type->boot_rom_patch) {
  792. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, BR_ADDR, bp->data, bp->size);
  793. if (ret) {
  794. usb_err(usbatm, "Boot ROM patching failed: %d\n", ret);
  795. return;
  796. }
  797. }
  798. /* Signature */
  799. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, SIG_ADDR, (u8 *) signature, 4);
  800. if (ret) {
  801. usb_err(usbatm, "Signature storing failed: %d\n", ret);
  802. return;
  803. }
  804. if (instance->modem_type->boot_rom_patch) {
  805. val = cpu_to_le32(BR_ADDR);
  806. ret = cxacru_fw(usb_dev, FW_WRITE_MEM, 0x2, 0x0, BR_STACK_ADDR, (u8 *) &val, 4);
  807. }
  808. else {
  809. ret = cxacru_fw(usb_dev, FW_GOTO_MEM, 0x0, 0x0, FW_ADDR, NULL, 0);
  810. }
  811. if (ret) {
  812. usb_err(usbatm, "Passing control to firmware failed: %d\n", ret);
  813. return;
  814. }
  815. /* Delay to allow firmware to start up. */
  816. msleep_interruptible(1000);
  817. usb_clear_halt(usb_dev, usb_sndbulkpipe(usb_dev, CXACRU_EP_CMD));
  818. usb_clear_halt(usb_dev, usb_rcvbulkpipe(usb_dev, CXACRU_EP_CMD));
  819. usb_clear_halt(usb_dev, usb_sndbulkpipe(usb_dev, CXACRU_EP_DATA));
  820. usb_clear_halt(usb_dev, usb_rcvbulkpipe(usb_dev, CXACRU_EP_DATA));
  821. ret = cxacru_cm(instance, CM_REQUEST_CARD_GET_STATUS, NULL, 0, NULL, 0);
  822. if (ret < 0) {
  823. usb_err(usbatm, "modem failed to initialize: %d\n", ret);
  824. return;
  825. }
  826. /* Load config data (le32), doing one packet at a time */
  827. if (cf)
  828. for (off = 0; off < cf->size / 4; ) {
  829. u32 buf[CMD_PACKET_SIZE / 4 - 1];
  830. int i, len = min_t(int, cf->size / 4 - off, CMD_PACKET_SIZE / 4 / 2 - 1);
  831. buf[0] = cpu_to_le32(len);
  832. for (i = 0; i < len; i++, off++) {
  833. buf[i * 2 + 1] = cpu_to_le32(off);
  834. memcpy(buf + i * 2 + 2, cf->data + off * 4, 4);
  835. }
  836. ret = cxacru_cm(instance, CM_REQUEST_CARD_DATA_SET,
  837. (u8 *) buf, len, NULL, 0);
  838. if (ret < 0) {
  839. usb_err(usbatm, "load config data failed: %d\n", ret);
  840. return;
  841. }
  842. }
  843. msleep_interruptible(4000);
  844. }
  845. static int cxacru_find_firmware(struct cxacru_data *instance,
  846. char* phase, const struct firmware **fw_p)
  847. {
  848. struct usbatm_data *usbatm = instance->usbatm;
  849. struct device *dev = &usbatm->usb_intf->dev;
  850. char buf[16];
  851. sprintf(buf, "cxacru-%s.bin", phase);
  852. dbg("cxacru_find_firmware: looking for %s", buf);
  853. if (request_firmware(fw_p, buf, dev)) {
  854. usb_dbg(usbatm, "no stage %s firmware found\n", phase);
  855. return -ENOENT;
  856. }
  857. usb_info(usbatm, "found firmware %s\n", buf);
  858. return 0;
  859. }
  860. static int cxacru_heavy_init(struct usbatm_data *usbatm_instance,
  861. struct usb_interface *usb_intf)
  862. {
  863. const struct firmware *fw, *bp, *cf;
  864. struct cxacru_data *instance = usbatm_instance->driver_data;
  865. int ret = cxacru_find_firmware(instance, "fw", &fw);
  866. if (ret) {
  867. usb_warn(usbatm_instance, "firmware (cxacru-fw.bin) unavailable (system misconfigured?)\n");
  868. return ret;
  869. }
  870. if (instance->modem_type->boot_rom_patch) {
  871. ret = cxacru_find_firmware(instance, "bp", &bp);
  872. if (ret) {
  873. usb_warn(usbatm_instance, "boot ROM patch (cxacru-bp.bin) unavailable (system misconfigured?)\n");
  874. release_firmware(fw);
  875. return ret;
  876. }
  877. }
  878. if (cxacru_find_firmware(instance, "cf", &cf)) /* optional */
  879. cf = NULL;
  880. cxacru_upload_firmware(instance, fw, bp, cf);
  881. if (cf)
  882. release_firmware(cf);
  883. if (instance->modem_type->boot_rom_patch)
  884. release_firmware(bp);
  885. release_firmware(fw);
  886. ret = cxacru_card_status(instance);
  887. if (ret)
  888. dbg("modem initialisation failed");
  889. else
  890. dbg("done setting up the modem");
  891. return ret;
  892. }
  893. static int cxacru_bind(struct usbatm_data *usbatm_instance,
  894. struct usb_interface *intf, const struct usb_device_id *id)
  895. {
  896. struct cxacru_data *instance;
  897. struct usb_device *usb_dev = interface_to_usbdev(intf);
  898. int ret;
  899. /* instance init */
  900. instance = kzalloc(sizeof(*instance), GFP_KERNEL);
  901. if (!instance) {
  902. dbg("cxacru_bind: no memory for instance data");
  903. return -ENOMEM;
  904. }
  905. instance->usbatm = usbatm_instance;
  906. instance->modem_type = (struct cxacru_modem_type *) id->driver_info;
  907. memset(instance->card_info, 0, sizeof(instance->card_info));
  908. mutex_init(&instance->poll_state_serialize);
  909. instance->poll_state = CXPOLL_STOPPED;
  910. instance->line_status = -1;
  911. instance->adsl_status = -1;
  912. mutex_init(&instance->adsl_state_serialize);
  913. instance->rcv_buf = (u8 *) __get_free_page(GFP_KERNEL);
  914. if (!instance->rcv_buf) {
  915. dbg("cxacru_bind: no memory for rcv_buf");
  916. ret = -ENOMEM;
  917. goto fail;
  918. }
  919. instance->snd_buf = (u8 *) __get_free_page(GFP_KERNEL);
  920. if (!instance->snd_buf) {
  921. dbg("cxacru_bind: no memory for snd_buf");
  922. ret = -ENOMEM;
  923. goto fail;
  924. }
  925. instance->rcv_urb = usb_alloc_urb(0, GFP_KERNEL);
  926. if (!instance->rcv_urb) {
  927. dbg("cxacru_bind: no memory for rcv_urb");
  928. ret = -ENOMEM;
  929. goto fail;
  930. }
  931. instance->snd_urb = usb_alloc_urb(0, GFP_KERNEL);
  932. if (!instance->snd_urb) {
  933. dbg("cxacru_bind: no memory for snd_urb");
  934. ret = -ENOMEM;
  935. goto fail;
  936. }
  937. usb_fill_int_urb(instance->rcv_urb,
  938. usb_dev, usb_rcvintpipe(usb_dev, CXACRU_EP_CMD),
  939. instance->rcv_buf, PAGE_SIZE,
  940. cxacru_blocking_completion, &instance->rcv_done, 1);
  941. usb_fill_int_urb(instance->snd_urb,
  942. usb_dev, usb_sndintpipe(usb_dev, CXACRU_EP_CMD),
  943. instance->snd_buf, PAGE_SIZE,
  944. cxacru_blocking_completion, &instance->snd_done, 4);
  945. mutex_init(&instance->cm_serialize);
  946. INIT_DELAYED_WORK(&instance->poll_work, cxacru_poll_status);
  947. usbatm_instance->driver_data = instance;
  948. usbatm_instance->flags = (cxacru_card_status(instance) ? 0 : UDSL_SKIP_HEAVY_INIT);
  949. return 0;
  950. fail:
  951. free_page((unsigned long) instance->snd_buf);
  952. free_page((unsigned long) instance->rcv_buf);
  953. usb_free_urb(instance->snd_urb);
  954. usb_free_urb(instance->rcv_urb);
  955. kfree(instance);
  956. return ret;
  957. }
  958. static void cxacru_unbind(struct usbatm_data *usbatm_instance,
  959. struct usb_interface *intf)
  960. {
  961. struct cxacru_data *instance = usbatm_instance->driver_data;
  962. int is_polling = 1;
  963. dbg("cxacru_unbind entered");
  964. if (!instance) {
  965. dbg("cxacru_unbind: NULL instance!");
  966. return;
  967. }
  968. mutex_lock(&instance->poll_state_serialize);
  969. BUG_ON(instance->poll_state == CXPOLL_SHUTDOWN);
  970. /* ensure that status polling continues unless
  971. * it has already stopped */
  972. if (instance->poll_state == CXPOLL_STOPPED)
  973. is_polling = 0;
  974. /* stop polling from being stopped or started */
  975. instance->poll_state = CXPOLL_SHUTDOWN;
  976. mutex_unlock(&instance->poll_state_serialize);
  977. if (is_polling)
  978. cancel_rearming_delayed_work(&instance->poll_work);
  979. usb_kill_urb(instance->snd_urb);
  980. usb_kill_urb(instance->rcv_urb);
  981. usb_free_urb(instance->snd_urb);
  982. usb_free_urb(instance->rcv_urb);
  983. free_page((unsigned long) instance->snd_buf);
  984. free_page((unsigned long) instance->rcv_buf);
  985. kfree(instance);
  986. usbatm_instance->driver_data = NULL;
  987. }
  988. static const struct cxacru_modem_type cxacru_cafe = {
  989. .pll_f_clk = 0x02d874df,
  990. .pll_b_clk = 0x0196a51a,
  991. .boot_rom_patch = 1,
  992. };
  993. static const struct cxacru_modem_type cxacru_cb00 = {
  994. .pll_f_clk = 0x5,
  995. .pll_b_clk = 0x3,
  996. .boot_rom_patch = 0,
  997. };
  998. static const struct usb_device_id cxacru_usb_ids[] = {
  999. { /* V = Conexant P = ADSL modem (Euphrates project) */
  1000. USB_DEVICE(0x0572, 0xcafe), .driver_info = (unsigned long) &cxacru_cafe
  1001. },
  1002. { /* V = Conexant P = ADSL modem (Hasbani project) */
  1003. USB_DEVICE(0x0572, 0xcb00), .driver_info = (unsigned long) &cxacru_cb00
  1004. },
  1005. { /* V = Conexant P = ADSL modem */
  1006. USB_DEVICE(0x0572, 0xcb01), .driver_info = (unsigned long) &cxacru_cb00
  1007. },
  1008. { /* V = Conexant P = ADSL modem (Well PTI-800) */
  1009. USB_DEVICE(0x0572, 0xcb02), .driver_info = (unsigned long) &cxacru_cb00
  1010. },
  1011. { /* V = Conexant P = ADSL modem */
  1012. USB_DEVICE(0x0572, 0xcb06), .driver_info = (unsigned long) &cxacru_cb00
  1013. },
  1014. { /* V = Conexant P = ADSL modem (ZTE ZXDSL 852) */
  1015. USB_DEVICE(0x0572, 0xcb07), .driver_info = (unsigned long) &cxacru_cb00
  1016. },
  1017. { /* V = Olitec P = ADSL modem version 2 */
  1018. USB_DEVICE(0x08e3, 0x0100), .driver_info = (unsigned long) &cxacru_cafe
  1019. },
  1020. { /* V = Olitec P = ADSL modem version 3 */
  1021. USB_DEVICE(0x08e3, 0x0102), .driver_info = (unsigned long) &cxacru_cb00
  1022. },
  1023. { /* V = Trust/Amigo Technology Co. P = AMX-CA86U */
  1024. USB_DEVICE(0x0eb0, 0x3457), .driver_info = (unsigned long) &cxacru_cafe
  1025. },
  1026. { /* V = Zoom P = 5510 */
  1027. USB_DEVICE(0x1803, 0x5510), .driver_info = (unsigned long) &cxacru_cb00
  1028. },
  1029. { /* V = Draytek P = Vigor 318 */
  1030. USB_DEVICE(0x0675, 0x0200), .driver_info = (unsigned long) &cxacru_cb00
  1031. },
  1032. { /* V = Zyxel P = 630-C1 aka OMNI ADSL USB (Annex A) */
  1033. USB_DEVICE(0x0586, 0x330a), .driver_info = (unsigned long) &cxacru_cb00
  1034. },
  1035. { /* V = Zyxel P = 630-C3 aka OMNI ADSL USB (Annex B) */
  1036. USB_DEVICE(0x0586, 0x330b), .driver_info = (unsigned long) &cxacru_cb00
  1037. },
  1038. { /* V = Aethra P = Starmodem UM1020 */
  1039. USB_DEVICE(0x0659, 0x0020), .driver_info = (unsigned long) &cxacru_cb00
  1040. },
  1041. { /* V = Aztech Systems P = ? AKA Pirelli AUA-010 */
  1042. USB_DEVICE(0x0509, 0x0812), .driver_info = (unsigned long) &cxacru_cb00
  1043. },
  1044. { /* V = Netopia P = Cayman 3341(Annex A)/3351(Annex B) */
  1045. USB_DEVICE(0x100d, 0xcb01), .driver_info = (unsigned long) &cxacru_cb00
  1046. },
  1047. { /* V = Netopia P = Cayman 3342(Annex A)/3352(Annex B) */
  1048. USB_DEVICE(0x100d, 0x3342), .driver_info = (unsigned long) &cxacru_cb00
  1049. },
  1050. {}
  1051. };
  1052. MODULE_DEVICE_TABLE(usb, cxacru_usb_ids);
  1053. static struct usbatm_driver cxacru_driver = {
  1054. .driver_name = cxacru_driver_name,
  1055. .bind = cxacru_bind,
  1056. .heavy_init = cxacru_heavy_init,
  1057. .unbind = cxacru_unbind,
  1058. .atm_start = cxacru_atm_start,
  1059. .atm_stop = cxacru_remove_device_files,
  1060. .bulk_in = CXACRU_EP_DATA,
  1061. .bulk_out = CXACRU_EP_DATA,
  1062. .rx_padding = 3,
  1063. .tx_padding = 11,
  1064. };
  1065. static int cxacru_usb_probe(struct usb_interface *intf, const struct usb_device_id *id)
  1066. {
  1067. return usbatm_usb_probe(intf, id, &cxacru_driver);
  1068. }
  1069. static struct usb_driver cxacru_usb_driver = {
  1070. .name = cxacru_driver_name,
  1071. .probe = cxacru_usb_probe,
  1072. .disconnect = usbatm_usb_disconnect,
  1073. .id_table = cxacru_usb_ids
  1074. };
  1075. static int __init cxacru_init(void)
  1076. {
  1077. return usb_register(&cxacru_usb_driver);
  1078. }
  1079. static void __exit cxacru_cleanup(void)
  1080. {
  1081. usb_deregister(&cxacru_usb_driver);
  1082. }
  1083. module_init(cxacru_init);
  1084. module_exit(cxacru_cleanup);
  1085. MODULE_AUTHOR(DRIVER_AUTHOR);
  1086. MODULE_DESCRIPTION(DRIVER_DESC);
  1087. MODULE_LICENSE("GPL");
  1088. MODULE_VERSION(DRIVER_VERSION);