usb_8dev.c 24 KB

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  1. /*
  2. * CAN driver for "8 devices" USB2CAN converter
  3. *
  4. * Copyright (C) 2012 Bernd Krumboeck (krumboeck@universalnet.at)
  5. *
  6. * This program is free software; you can redistribute it and/or modify it
  7. * under the terms of the GNU General Public License as published
  8. * by the Free Software Foundation; version 2 of the License.
  9. *
  10. * This program is distributed in the hope that it will be useful, but
  11. * WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  13. * General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License along
  16. * with this program.
  17. *
  18. * This driver is inspired by the 3.2.0 version of drivers/net/can/usb/ems_usb.c
  19. * and drivers/net/can/usb/esd_usb2.c
  20. *
  21. * Many thanks to Gerhard Bertelsmann (info@gerhard-bertelsmann.de)
  22. * for testing and fixing this driver. Also many thanks to "8 devices",
  23. * who were very cooperative and answered my questions.
  24. */
  25. #include <linux/init.h>
  26. #include <linux/signal.h>
  27. #include <linux/slab.h>
  28. #include <linux/module.h>
  29. #include <linux/netdevice.h>
  30. #include <linux/usb.h>
  31. #include <linux/can.h>
  32. #include <linux/can/dev.h>
  33. #include <linux/can/error.h>
  34. /* driver constants */
  35. #define MAX_RX_URBS 20
  36. #define MAX_TX_URBS 20
  37. #define RX_BUFFER_SIZE 64
  38. /* vendor and product id */
  39. #define USB_8DEV_VENDOR_ID 0x0483
  40. #define USB_8DEV_PRODUCT_ID 0x1234
  41. /* endpoints */
  42. enum usb_8dev_endpoint {
  43. USB_8DEV_ENDP_DATA_RX = 1,
  44. USB_8DEV_ENDP_DATA_TX,
  45. USB_8DEV_ENDP_CMD_RX,
  46. USB_8DEV_ENDP_CMD_TX
  47. };
  48. /* device CAN clock */
  49. #define USB_8DEV_ABP_CLOCK 32000000
  50. /* setup flags */
  51. #define USB_8DEV_SILENT 0x01
  52. #define USB_8DEV_LOOPBACK 0x02
  53. #define USB_8DEV_DISABLE_AUTO_RESTRANS 0x04
  54. #define USB_8DEV_STATUS_FRAME 0x08
  55. /* commands */
  56. enum usb_8dev_cmd {
  57. USB_8DEV_RESET = 1,
  58. USB_8DEV_OPEN,
  59. USB_8DEV_CLOSE,
  60. USB_8DEV_SET_SPEED,
  61. USB_8DEV_SET_MASK_FILTER,
  62. USB_8DEV_GET_STATUS,
  63. USB_8DEV_GET_STATISTICS,
  64. USB_8DEV_GET_SERIAL,
  65. USB_8DEV_GET_SOFTW_VER,
  66. USB_8DEV_GET_HARDW_VER,
  67. USB_8DEV_RESET_TIMESTAMP,
  68. USB_8DEV_GET_SOFTW_HARDW_VER
  69. };
  70. /* command options */
  71. #define USB_8DEV_BAUD_MANUAL 0x09
  72. #define USB_8DEV_CMD_START 0x11
  73. #define USB_8DEV_CMD_END 0x22
  74. #define USB_8DEV_CMD_SUCCESS 0
  75. #define USB_8DEV_CMD_ERROR 255
  76. #define USB_8DEV_CMD_TIMEOUT 1000
  77. /* frames */
  78. #define USB_8DEV_DATA_START 0x55
  79. #define USB_8DEV_DATA_END 0xAA
  80. #define USB_8DEV_TYPE_CAN_FRAME 0
  81. #define USB_8DEV_TYPE_ERROR_FRAME 3
  82. #define USB_8DEV_EXTID 0x01
  83. #define USB_8DEV_RTR 0x02
  84. #define USB_8DEV_ERR_FLAG 0x04
  85. /* status */
  86. #define USB_8DEV_STATUSMSG_OK 0x00 /* Normal condition. */
  87. #define USB_8DEV_STATUSMSG_OVERRUN 0x01 /* Overrun occured when sending */
  88. #define USB_8DEV_STATUSMSG_BUSLIGHT 0x02 /* Error counter has reached 96 */
  89. #define USB_8DEV_STATUSMSG_BUSHEAVY 0x03 /* Error count. has reached 128 */
  90. #define USB_8DEV_STATUSMSG_BUSOFF 0x04 /* Device is in BUSOFF */
  91. #define USB_8DEV_STATUSMSG_STUFF 0x20 /* Stuff Error */
  92. #define USB_8DEV_STATUSMSG_FORM 0x21 /* Form Error */
  93. #define USB_8DEV_STATUSMSG_ACK 0x23 /* Ack Error */
  94. #define USB_8DEV_STATUSMSG_BIT0 0x24 /* Bit1 Error */
  95. #define USB_8DEV_STATUSMSG_BIT1 0x25 /* Bit0 Error */
  96. #define USB_8DEV_STATUSMSG_CRC 0x27 /* CRC Error */
  97. #define USB_8DEV_RP_MASK 0x7F /* Mask for Receive Error Bit */
  98. /* table of devices that work with this driver */
  99. static const struct usb_device_id usb_8dev_table[] = {
  100. { USB_DEVICE(USB_8DEV_VENDOR_ID, USB_8DEV_PRODUCT_ID) },
  101. { } /* Terminating entry */
  102. };
  103. MODULE_DEVICE_TABLE(usb, usb_8dev_table);
  104. struct usb_8dev_tx_urb_context {
  105. struct usb_8dev_priv *priv;
  106. u32 echo_index;
  107. u8 dlc;
  108. };
  109. /* Structure to hold all of our device specific stuff */
  110. struct usb_8dev_priv {
  111. struct can_priv can; /* must be the first member */
  112. struct sk_buff *echo_skb[MAX_TX_URBS];
  113. struct usb_device *udev;
  114. struct net_device *netdev;
  115. atomic_t active_tx_urbs;
  116. struct usb_anchor tx_submitted;
  117. struct usb_8dev_tx_urb_context tx_contexts[MAX_TX_URBS];
  118. struct usb_anchor rx_submitted;
  119. struct can_berr_counter bec;
  120. u8 *cmd_msg_buffer;
  121. struct mutex usb_8dev_cmd_lock;
  122. };
  123. /* tx frame */
  124. struct __packed usb_8dev_tx_msg {
  125. u8 begin;
  126. u8 flags; /* RTR and EXT_ID flag */
  127. __be32 id; /* upper 3 bits not used */
  128. u8 dlc; /* data length code 0-8 bytes */
  129. u8 data[8]; /* 64-bit data */
  130. u8 end;
  131. };
  132. /* rx frame */
  133. struct __packed usb_8dev_rx_msg {
  134. u8 begin;
  135. u8 type; /* frame type */
  136. u8 flags; /* RTR and EXT_ID flag */
  137. __be32 id; /* upper 3 bits not used */
  138. u8 dlc; /* data length code 0-8 bytes */
  139. u8 data[8]; /* 64-bit data */
  140. __be32 timestamp; /* 32-bit timestamp */
  141. u8 end;
  142. };
  143. /* command frame */
  144. struct __packed usb_8dev_cmd_msg {
  145. u8 begin;
  146. u8 channel; /* unkown - always 0 */
  147. u8 command; /* command to execute */
  148. u8 opt1; /* optional parameter / return value */
  149. u8 opt2; /* optional parameter 2 */
  150. u8 data[10]; /* optional parameter and data */
  151. u8 end;
  152. };
  153. static int usb_8dev_send_cmd_msg(struct usb_8dev_priv *priv, u8 *msg, int size)
  154. {
  155. int actual_length;
  156. return usb_bulk_msg(priv->udev,
  157. usb_sndbulkpipe(priv->udev, USB_8DEV_ENDP_CMD_TX),
  158. msg, size, &actual_length, USB_8DEV_CMD_TIMEOUT);
  159. }
  160. static int usb_8dev_wait_cmd_msg(struct usb_8dev_priv *priv, u8 *msg, int size,
  161. int *actual_length)
  162. {
  163. return usb_bulk_msg(priv->udev,
  164. usb_rcvbulkpipe(priv->udev, USB_8DEV_ENDP_CMD_RX),
  165. msg, size, actual_length, USB_8DEV_CMD_TIMEOUT);
  166. }
  167. /* Send command to device and receive result.
  168. * Command was successful when opt1 = 0.
  169. */
  170. static int usb_8dev_send_cmd(struct usb_8dev_priv *priv,
  171. struct usb_8dev_cmd_msg *out,
  172. struct usb_8dev_cmd_msg *in)
  173. {
  174. int err;
  175. int num_bytes_read;
  176. struct net_device *netdev;
  177. netdev = priv->netdev;
  178. out->begin = USB_8DEV_CMD_START;
  179. out->end = USB_8DEV_CMD_END;
  180. mutex_lock(&priv->usb_8dev_cmd_lock);
  181. memcpy(priv->cmd_msg_buffer, out,
  182. sizeof(struct usb_8dev_cmd_msg));
  183. err = usb_8dev_send_cmd_msg(priv, priv->cmd_msg_buffer,
  184. sizeof(struct usb_8dev_cmd_msg));
  185. if (err < 0) {
  186. netdev_err(netdev, "sending command message failed\n");
  187. goto failed;
  188. }
  189. err = usb_8dev_wait_cmd_msg(priv, priv->cmd_msg_buffer,
  190. sizeof(struct usb_8dev_cmd_msg),
  191. &num_bytes_read);
  192. if (err < 0) {
  193. netdev_err(netdev, "no command message answer\n");
  194. goto failed;
  195. }
  196. memcpy(in, priv->cmd_msg_buffer, sizeof(struct usb_8dev_cmd_msg));
  197. if (in->begin != USB_8DEV_CMD_START || in->end != USB_8DEV_CMD_END ||
  198. num_bytes_read != 16 || in->opt1 != 0)
  199. err = -EPROTO;
  200. failed:
  201. mutex_unlock(&priv->usb_8dev_cmd_lock);
  202. return err;
  203. }
  204. /* Send open command to device */
  205. static int usb_8dev_cmd_open(struct usb_8dev_priv *priv)
  206. {
  207. struct can_bittiming *bt = &priv->can.bittiming;
  208. struct usb_8dev_cmd_msg outmsg;
  209. struct usb_8dev_cmd_msg inmsg;
  210. u32 ctrlmode = priv->can.ctrlmode;
  211. u32 flags = USB_8DEV_STATUS_FRAME;
  212. __be32 beflags;
  213. __be16 bebrp;
  214. memset(&outmsg, 0, sizeof(outmsg));
  215. outmsg.command = USB_8DEV_OPEN;
  216. outmsg.opt1 = USB_8DEV_BAUD_MANUAL;
  217. outmsg.data[0] = bt->prop_seg + bt->phase_seg1;
  218. outmsg.data[1] = bt->phase_seg2;
  219. outmsg.data[2] = bt->sjw;
  220. /* BRP */
  221. bebrp = cpu_to_be16((u16)bt->brp);
  222. memcpy(&outmsg.data[3], &bebrp, sizeof(bebrp));
  223. /* flags */
  224. if (ctrlmode & CAN_CTRLMODE_LOOPBACK)
  225. flags |= USB_8DEV_LOOPBACK;
  226. if (ctrlmode & CAN_CTRLMODE_LISTENONLY)
  227. flags |= USB_8DEV_SILENT;
  228. if (ctrlmode & CAN_CTRLMODE_ONE_SHOT)
  229. flags |= USB_8DEV_DISABLE_AUTO_RESTRANS;
  230. beflags = cpu_to_be32(flags);
  231. memcpy(&outmsg.data[5], &beflags, sizeof(beflags));
  232. return usb_8dev_send_cmd(priv, &outmsg, &inmsg);
  233. }
  234. /* Send close command to device */
  235. static int usb_8dev_cmd_close(struct usb_8dev_priv *priv)
  236. {
  237. struct usb_8dev_cmd_msg inmsg;
  238. struct usb_8dev_cmd_msg outmsg = {
  239. .channel = 0,
  240. .command = USB_8DEV_CLOSE,
  241. .opt1 = 0,
  242. .opt2 = 0
  243. };
  244. return usb_8dev_send_cmd(priv, &outmsg, &inmsg);
  245. }
  246. /* Get firmware and hardware version */
  247. static int usb_8dev_cmd_version(struct usb_8dev_priv *priv, u32 *res)
  248. {
  249. struct usb_8dev_cmd_msg inmsg;
  250. struct usb_8dev_cmd_msg outmsg = {
  251. .channel = 0,
  252. .command = USB_8DEV_GET_SOFTW_HARDW_VER,
  253. .opt1 = 0,
  254. .opt2 = 0
  255. };
  256. int err = usb_8dev_send_cmd(priv, &outmsg, &inmsg);
  257. if (err)
  258. return err;
  259. *res = be32_to_cpup((__be32 *)inmsg.data);
  260. return err;
  261. }
  262. /* Set network device mode
  263. *
  264. * Maybe we should leave this function empty, because the device
  265. * set mode variable with open command.
  266. */
  267. static int usb_8dev_set_mode(struct net_device *netdev, enum can_mode mode)
  268. {
  269. struct usb_8dev_priv *priv = netdev_priv(netdev);
  270. int err = 0;
  271. switch (mode) {
  272. case CAN_MODE_START:
  273. err = usb_8dev_cmd_open(priv);
  274. if (err)
  275. netdev_warn(netdev, "couldn't start device");
  276. break;
  277. default:
  278. return -EOPNOTSUPP;
  279. }
  280. return err;
  281. }
  282. /* Read error/status frames */
  283. static void usb_8dev_rx_err_msg(struct usb_8dev_priv *priv,
  284. struct usb_8dev_rx_msg *msg)
  285. {
  286. struct can_frame *cf;
  287. struct sk_buff *skb;
  288. struct net_device_stats *stats = &priv->netdev->stats;
  289. /* Error message:
  290. * byte 0: Status
  291. * byte 1: bit 7: Receive Passive
  292. * byte 1: bit 0-6: Receive Error Counter
  293. * byte 2: Transmit Error Counter
  294. * byte 3: Always 0 (maybe reserved for future use)
  295. */
  296. u8 state = msg->data[0];
  297. u8 rxerr = msg->data[1] & USB_8DEV_RP_MASK;
  298. u8 txerr = msg->data[2];
  299. int rx_errors = 0;
  300. int tx_errors = 0;
  301. skb = alloc_can_err_skb(priv->netdev, &cf);
  302. if (!skb)
  303. return;
  304. switch (state) {
  305. case USB_8DEV_STATUSMSG_OK:
  306. priv->can.state = CAN_STATE_ERROR_ACTIVE;
  307. cf->can_id |= CAN_ERR_PROT;
  308. cf->data[2] = CAN_ERR_PROT_ACTIVE;
  309. break;
  310. case USB_8DEV_STATUSMSG_BUSOFF:
  311. priv->can.state = CAN_STATE_BUS_OFF;
  312. cf->can_id |= CAN_ERR_BUSOFF;
  313. can_bus_off(priv->netdev);
  314. break;
  315. case USB_8DEV_STATUSMSG_OVERRUN:
  316. case USB_8DEV_STATUSMSG_BUSLIGHT:
  317. case USB_8DEV_STATUSMSG_BUSHEAVY:
  318. cf->can_id |= CAN_ERR_CRTL;
  319. break;
  320. default:
  321. priv->can.state = CAN_STATE_ERROR_WARNING;
  322. cf->can_id |= CAN_ERR_PROT | CAN_ERR_BUSERROR;
  323. priv->can.can_stats.bus_error++;
  324. break;
  325. }
  326. switch (state) {
  327. case USB_8DEV_STATUSMSG_OK:
  328. case USB_8DEV_STATUSMSG_BUSOFF:
  329. break;
  330. case USB_8DEV_STATUSMSG_ACK:
  331. cf->can_id |= CAN_ERR_ACK;
  332. tx_errors = 1;
  333. break;
  334. case USB_8DEV_STATUSMSG_CRC:
  335. cf->data[2] |= CAN_ERR_PROT_UNSPEC;
  336. cf->data[3] |= CAN_ERR_PROT_LOC_CRC_SEQ |
  337. CAN_ERR_PROT_LOC_CRC_DEL;
  338. rx_errors = 1;
  339. break;
  340. case USB_8DEV_STATUSMSG_BIT0:
  341. cf->data[2] |= CAN_ERR_PROT_BIT0;
  342. tx_errors = 1;
  343. break;
  344. case USB_8DEV_STATUSMSG_BIT1:
  345. cf->data[2] |= CAN_ERR_PROT_BIT1;
  346. tx_errors = 1;
  347. break;
  348. case USB_8DEV_STATUSMSG_FORM:
  349. cf->data[2] |= CAN_ERR_PROT_FORM;
  350. rx_errors = 1;
  351. break;
  352. case USB_8DEV_STATUSMSG_STUFF:
  353. cf->data[2] |= CAN_ERR_PROT_STUFF;
  354. rx_errors = 1;
  355. break;
  356. case USB_8DEV_STATUSMSG_OVERRUN:
  357. cf->data[1] = CAN_ERR_CRTL_RX_OVERFLOW;
  358. stats->rx_over_errors++;
  359. rx_errors = 1;
  360. break;
  361. case USB_8DEV_STATUSMSG_BUSLIGHT:
  362. priv->can.state = CAN_STATE_ERROR_WARNING;
  363. cf->data[1] = (txerr > rxerr) ?
  364. CAN_ERR_CRTL_TX_WARNING :
  365. CAN_ERR_CRTL_RX_WARNING;
  366. priv->can.can_stats.error_warning++;
  367. break;
  368. case USB_8DEV_STATUSMSG_BUSHEAVY:
  369. priv->can.state = CAN_STATE_ERROR_PASSIVE;
  370. cf->data[1] = (txerr > rxerr) ?
  371. CAN_ERR_CRTL_TX_PASSIVE :
  372. CAN_ERR_CRTL_RX_PASSIVE;
  373. priv->can.can_stats.error_passive++;
  374. break;
  375. default:
  376. netdev_warn(priv->netdev,
  377. "Unknown status/error message (%d)\n", state);
  378. break;
  379. }
  380. if (tx_errors) {
  381. cf->data[2] |= CAN_ERR_PROT_TX;
  382. stats->tx_errors++;
  383. }
  384. if (rx_errors)
  385. stats->rx_errors++;
  386. cf->data[6] = txerr;
  387. cf->data[7] = rxerr;
  388. priv->bec.txerr = txerr;
  389. priv->bec.rxerr = rxerr;
  390. netif_rx(skb);
  391. stats->rx_packets++;
  392. stats->rx_bytes += cf->can_dlc;
  393. }
  394. /* Read data and status frames */
  395. static void usb_8dev_rx_can_msg(struct usb_8dev_priv *priv,
  396. struct usb_8dev_rx_msg *msg)
  397. {
  398. struct can_frame *cf;
  399. struct sk_buff *skb;
  400. struct net_device_stats *stats = &priv->netdev->stats;
  401. if (msg->type == USB_8DEV_TYPE_ERROR_FRAME &&
  402. msg->flags == USB_8DEV_ERR_FLAG) {
  403. usb_8dev_rx_err_msg(priv, msg);
  404. } else if (msg->type == USB_8DEV_TYPE_CAN_FRAME) {
  405. skb = alloc_can_skb(priv->netdev, &cf);
  406. if (!skb)
  407. return;
  408. cf->can_id = be32_to_cpu(msg->id);
  409. cf->can_dlc = get_can_dlc(msg->dlc & 0xF);
  410. if (msg->flags & USB_8DEV_EXTID)
  411. cf->can_id |= CAN_EFF_FLAG;
  412. if (msg->flags & USB_8DEV_RTR)
  413. cf->can_id |= CAN_RTR_FLAG;
  414. else
  415. memcpy(cf->data, msg->data, cf->can_dlc);
  416. netif_rx(skb);
  417. stats->rx_packets++;
  418. stats->rx_bytes += cf->can_dlc;
  419. } else {
  420. netdev_warn(priv->netdev, "frame type %d unknown",
  421. msg->type);
  422. }
  423. }
  424. /* Callback for reading data from device
  425. *
  426. * Check urb status, call read function and resubmit urb read operation.
  427. */
  428. static void usb_8dev_read_bulk_callback(struct urb *urb)
  429. {
  430. struct usb_8dev_priv *priv = urb->context;
  431. struct net_device *netdev;
  432. int retval;
  433. int pos = 0;
  434. netdev = priv->netdev;
  435. if (!netif_device_present(netdev))
  436. return;
  437. switch (urb->status) {
  438. case 0: /* success */
  439. break;
  440. case -ENOENT:
  441. case -ESHUTDOWN:
  442. return;
  443. default:
  444. netdev_info(netdev, "Rx URB aborted (%d)\n",
  445. urb->status);
  446. goto resubmit_urb;
  447. }
  448. while (pos < urb->actual_length) {
  449. struct usb_8dev_rx_msg *msg;
  450. if (pos + sizeof(struct usb_8dev_rx_msg) > urb->actual_length) {
  451. netdev_err(priv->netdev, "format error\n");
  452. break;
  453. }
  454. msg = (struct usb_8dev_rx_msg *)(urb->transfer_buffer + pos);
  455. usb_8dev_rx_can_msg(priv, msg);
  456. pos += sizeof(struct usb_8dev_rx_msg);
  457. }
  458. resubmit_urb:
  459. usb_fill_bulk_urb(urb, priv->udev,
  460. usb_rcvbulkpipe(priv->udev, USB_8DEV_ENDP_DATA_RX),
  461. urb->transfer_buffer, RX_BUFFER_SIZE,
  462. usb_8dev_read_bulk_callback, priv);
  463. retval = usb_submit_urb(urb, GFP_ATOMIC);
  464. if (retval == -ENODEV)
  465. netif_device_detach(netdev);
  466. else if (retval)
  467. netdev_err(netdev,
  468. "failed resubmitting read bulk urb: %d\n", retval);
  469. }
  470. /* Callback handler for write operations
  471. *
  472. * Free allocated buffers, check transmit status and
  473. * calculate statistic.
  474. */
  475. static void usb_8dev_write_bulk_callback(struct urb *urb)
  476. {
  477. struct usb_8dev_tx_urb_context *context = urb->context;
  478. struct usb_8dev_priv *priv;
  479. struct net_device *netdev;
  480. BUG_ON(!context);
  481. priv = context->priv;
  482. netdev = priv->netdev;
  483. /* free up our allocated buffer */
  484. usb_free_coherent(urb->dev, urb->transfer_buffer_length,
  485. urb->transfer_buffer, urb->transfer_dma);
  486. atomic_dec(&priv->active_tx_urbs);
  487. if (!netif_device_present(netdev))
  488. return;
  489. if (urb->status)
  490. netdev_info(netdev, "Tx URB aborted (%d)\n",
  491. urb->status);
  492. netdev->stats.tx_packets++;
  493. netdev->stats.tx_bytes += context->dlc;
  494. can_get_echo_skb(netdev, context->echo_index);
  495. /* Release context */
  496. context->echo_index = MAX_TX_URBS;
  497. netif_wake_queue(netdev);
  498. }
  499. /* Send data to device */
  500. static netdev_tx_t usb_8dev_start_xmit(struct sk_buff *skb,
  501. struct net_device *netdev)
  502. {
  503. struct usb_8dev_priv *priv = netdev_priv(netdev);
  504. struct net_device_stats *stats = &netdev->stats;
  505. struct can_frame *cf = (struct can_frame *) skb->data;
  506. struct usb_8dev_tx_msg *msg;
  507. struct urb *urb;
  508. struct usb_8dev_tx_urb_context *context = NULL;
  509. u8 *buf;
  510. int i, err;
  511. size_t size = sizeof(struct usb_8dev_tx_msg);
  512. if (can_dropped_invalid_skb(netdev, skb))
  513. return NETDEV_TX_OK;
  514. /* create a URB, and a buffer for it, and copy the data to the URB */
  515. urb = usb_alloc_urb(0, GFP_ATOMIC);
  516. if (!urb) {
  517. netdev_err(netdev, "No memory left for URBs\n");
  518. goto nomem;
  519. }
  520. buf = usb_alloc_coherent(priv->udev, size, GFP_ATOMIC,
  521. &urb->transfer_dma);
  522. if (!buf) {
  523. netdev_err(netdev, "No memory left for USB buffer\n");
  524. goto nomembuf;
  525. }
  526. memset(buf, 0, size);
  527. msg = (struct usb_8dev_tx_msg *)buf;
  528. msg->begin = USB_8DEV_DATA_START;
  529. msg->flags = 0x00;
  530. if (cf->can_id & CAN_RTR_FLAG)
  531. msg->flags |= USB_8DEV_RTR;
  532. if (cf->can_id & CAN_EFF_FLAG)
  533. msg->flags |= USB_8DEV_EXTID;
  534. msg->id = cpu_to_be32(cf->can_id & CAN_ERR_MASK);
  535. msg->dlc = cf->can_dlc;
  536. memcpy(msg->data, cf->data, cf->can_dlc);
  537. msg->end = USB_8DEV_DATA_END;
  538. for (i = 0; i < MAX_TX_URBS; i++) {
  539. if (priv->tx_contexts[i].echo_index == MAX_TX_URBS) {
  540. context = &priv->tx_contexts[i];
  541. break;
  542. }
  543. }
  544. /* May never happen! When this happens we'd more URBs in flight as
  545. * allowed (MAX_TX_URBS).
  546. */
  547. if (!context)
  548. goto nofreecontext;
  549. context->priv = priv;
  550. context->echo_index = i;
  551. context->dlc = cf->can_dlc;
  552. usb_fill_bulk_urb(urb, priv->udev,
  553. usb_sndbulkpipe(priv->udev, USB_8DEV_ENDP_DATA_TX),
  554. buf, size, usb_8dev_write_bulk_callback, context);
  555. urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  556. usb_anchor_urb(urb, &priv->tx_submitted);
  557. can_put_echo_skb(skb, netdev, context->echo_index);
  558. atomic_inc(&priv->active_tx_urbs);
  559. err = usb_submit_urb(urb, GFP_ATOMIC);
  560. if (unlikely(err))
  561. goto failed;
  562. else if (atomic_read(&priv->active_tx_urbs) >= MAX_TX_URBS)
  563. /* Slow down tx path */
  564. netif_stop_queue(netdev);
  565. /* Release our reference to this URB, the USB core will eventually free
  566. * it entirely.
  567. */
  568. usb_free_urb(urb);
  569. return NETDEV_TX_OK;
  570. nofreecontext:
  571. usb_unanchor_urb(urb);
  572. usb_free_coherent(priv->udev, size, buf, urb->transfer_dma);
  573. netdev_warn(netdev, "couldn't find free context");
  574. return NETDEV_TX_BUSY;
  575. failed:
  576. can_free_echo_skb(netdev, context->echo_index);
  577. usb_unanchor_urb(urb);
  578. usb_free_coherent(priv->udev, size, buf, urb->transfer_dma);
  579. atomic_dec(&priv->active_tx_urbs);
  580. if (err == -ENODEV)
  581. netif_device_detach(netdev);
  582. else
  583. netdev_warn(netdev, "failed tx_urb %d\n", err);
  584. nomembuf:
  585. usb_free_urb(urb);
  586. nomem:
  587. dev_kfree_skb(skb);
  588. stats->tx_dropped++;
  589. return NETDEV_TX_OK;
  590. }
  591. static int usb_8dev_get_berr_counter(const struct net_device *netdev,
  592. struct can_berr_counter *bec)
  593. {
  594. struct usb_8dev_priv *priv = netdev_priv(netdev);
  595. bec->txerr = priv->bec.txerr;
  596. bec->rxerr = priv->bec.rxerr;
  597. return 0;
  598. }
  599. /* Start USB device */
  600. static int usb_8dev_start(struct usb_8dev_priv *priv)
  601. {
  602. struct net_device *netdev = priv->netdev;
  603. int err, i;
  604. for (i = 0; i < MAX_RX_URBS; i++) {
  605. struct urb *urb = NULL;
  606. u8 *buf;
  607. /* create a URB, and a buffer for it */
  608. urb = usb_alloc_urb(0, GFP_KERNEL);
  609. if (!urb) {
  610. netdev_err(netdev, "No memory left for URBs\n");
  611. err = -ENOMEM;
  612. break;
  613. }
  614. buf = usb_alloc_coherent(priv->udev, RX_BUFFER_SIZE, GFP_KERNEL,
  615. &urb->transfer_dma);
  616. if (!buf) {
  617. netdev_err(netdev, "No memory left for USB buffer\n");
  618. usb_free_urb(urb);
  619. err = -ENOMEM;
  620. break;
  621. }
  622. usb_fill_bulk_urb(urb, priv->udev,
  623. usb_rcvbulkpipe(priv->udev,
  624. USB_8DEV_ENDP_DATA_RX),
  625. buf, RX_BUFFER_SIZE,
  626. usb_8dev_read_bulk_callback, priv);
  627. urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  628. usb_anchor_urb(urb, &priv->rx_submitted);
  629. err = usb_submit_urb(urb, GFP_KERNEL);
  630. if (err) {
  631. usb_unanchor_urb(urb);
  632. usb_free_coherent(priv->udev, RX_BUFFER_SIZE, buf,
  633. urb->transfer_dma);
  634. break;
  635. }
  636. /* Drop reference, USB core will take care of freeing it */
  637. usb_free_urb(urb);
  638. }
  639. /* Did we submit any URBs */
  640. if (i == 0) {
  641. netdev_warn(netdev, "couldn't setup read URBs\n");
  642. return err;
  643. }
  644. /* Warn if we've couldn't transmit all the URBs */
  645. if (i < MAX_RX_URBS)
  646. netdev_warn(netdev, "rx performance may be slow\n");
  647. err = usb_8dev_cmd_open(priv);
  648. if (err)
  649. goto failed;
  650. priv->can.state = CAN_STATE_ERROR_ACTIVE;
  651. return 0;
  652. failed:
  653. if (err == -ENODEV)
  654. netif_device_detach(priv->netdev);
  655. netdev_warn(netdev, "couldn't submit control: %d\n", err);
  656. return err;
  657. }
  658. /* Open USB device */
  659. static int usb_8dev_open(struct net_device *netdev)
  660. {
  661. struct usb_8dev_priv *priv = netdev_priv(netdev);
  662. int err;
  663. /* common open */
  664. err = open_candev(netdev);
  665. if (err)
  666. return err;
  667. /* finally start device */
  668. err = usb_8dev_start(priv);
  669. if (err) {
  670. if (err == -ENODEV)
  671. netif_device_detach(priv->netdev);
  672. netdev_warn(netdev, "couldn't start device: %d\n",
  673. err);
  674. close_candev(netdev);
  675. return err;
  676. }
  677. netif_start_queue(netdev);
  678. return 0;
  679. }
  680. static void unlink_all_urbs(struct usb_8dev_priv *priv)
  681. {
  682. int i;
  683. usb_kill_anchored_urbs(&priv->rx_submitted);
  684. usb_kill_anchored_urbs(&priv->tx_submitted);
  685. atomic_set(&priv->active_tx_urbs, 0);
  686. for (i = 0; i < MAX_TX_URBS; i++)
  687. priv->tx_contexts[i].echo_index = MAX_TX_URBS;
  688. }
  689. /* Close USB device */
  690. static int usb_8dev_close(struct net_device *netdev)
  691. {
  692. struct usb_8dev_priv *priv = netdev_priv(netdev);
  693. int err = 0;
  694. /* Send CLOSE command to CAN controller */
  695. err = usb_8dev_cmd_close(priv);
  696. if (err)
  697. netdev_warn(netdev, "couldn't stop device");
  698. priv->can.state = CAN_STATE_STOPPED;
  699. netif_stop_queue(netdev);
  700. /* Stop polling */
  701. unlink_all_urbs(priv);
  702. close_candev(netdev);
  703. return err;
  704. }
  705. static const struct net_device_ops usb_8dev_netdev_ops = {
  706. .ndo_open = usb_8dev_open,
  707. .ndo_stop = usb_8dev_close,
  708. .ndo_start_xmit = usb_8dev_start_xmit,
  709. };
  710. static const struct can_bittiming_const usb_8dev_bittiming_const = {
  711. .name = "usb_8dev",
  712. .tseg1_min = 1,
  713. .tseg1_max = 16,
  714. .tseg2_min = 1,
  715. .tseg2_max = 8,
  716. .sjw_max = 4,
  717. .brp_min = 1,
  718. .brp_max = 1024,
  719. .brp_inc = 1,
  720. };
  721. /* Probe USB device
  722. *
  723. * Check device and firmware.
  724. * Set supported modes and bittiming constants.
  725. * Allocate some memory.
  726. */
  727. static int usb_8dev_probe(struct usb_interface *intf,
  728. const struct usb_device_id *id)
  729. {
  730. struct net_device *netdev;
  731. struct usb_8dev_priv *priv;
  732. int i, err = -ENOMEM;
  733. u32 version;
  734. char buf[18];
  735. struct usb_device *usbdev = interface_to_usbdev(intf);
  736. /* product id looks strange, better we also check iProduct string */
  737. if (usb_string(usbdev, usbdev->descriptor.iProduct, buf,
  738. sizeof(buf)) > 0 && strcmp(buf, "USB2CAN converter")) {
  739. dev_info(&usbdev->dev, "ignoring: not an USB2CAN converter\n");
  740. return -ENODEV;
  741. }
  742. netdev = alloc_candev(sizeof(struct usb_8dev_priv), MAX_TX_URBS);
  743. if (!netdev) {
  744. dev_err(&intf->dev, "Couldn't alloc candev\n");
  745. return -ENOMEM;
  746. }
  747. priv = netdev_priv(netdev);
  748. priv->udev = usbdev;
  749. priv->netdev = netdev;
  750. priv->can.state = CAN_STATE_STOPPED;
  751. priv->can.clock.freq = USB_8DEV_ABP_CLOCK;
  752. priv->can.bittiming_const = &usb_8dev_bittiming_const;
  753. priv->can.do_set_mode = usb_8dev_set_mode;
  754. priv->can.do_get_berr_counter = usb_8dev_get_berr_counter;
  755. priv->can.ctrlmode_supported = CAN_CTRLMODE_LOOPBACK |
  756. CAN_CTRLMODE_LISTENONLY |
  757. CAN_CTRLMODE_ONE_SHOT;
  758. netdev->netdev_ops = &usb_8dev_netdev_ops;
  759. netdev->flags |= IFF_ECHO; /* we support local echo */
  760. init_usb_anchor(&priv->rx_submitted);
  761. init_usb_anchor(&priv->tx_submitted);
  762. atomic_set(&priv->active_tx_urbs, 0);
  763. for (i = 0; i < MAX_TX_URBS; i++)
  764. priv->tx_contexts[i].echo_index = MAX_TX_URBS;
  765. priv->cmd_msg_buffer = kzalloc(sizeof(struct usb_8dev_cmd_msg),
  766. GFP_KERNEL);
  767. if (!priv->cmd_msg_buffer) {
  768. netdev_err(netdev, "Couldn't alloc Tx buffer\n");
  769. goto cleanup_candev;
  770. }
  771. usb_set_intfdata(intf, priv);
  772. SET_NETDEV_DEV(netdev, &intf->dev);
  773. mutex_init(&priv->usb_8dev_cmd_lock);
  774. err = register_candev(netdev);
  775. if (err) {
  776. netdev_err(netdev,
  777. "couldn't register CAN device: %d\n", err);
  778. goto cleanup_cmd_msg_buffer;
  779. }
  780. err = usb_8dev_cmd_version(priv, &version);
  781. if (err) {
  782. netdev_err(netdev, "can't get firmware version\n");
  783. goto cleanup_cmd_msg_buffer;
  784. } else {
  785. netdev_info(netdev,
  786. "firmware: %d.%d, hardware: %d.%d\n",
  787. (version>>24) & 0xff, (version>>16) & 0xff,
  788. (version>>8) & 0xff, version & 0xff);
  789. }
  790. return 0;
  791. cleanup_cmd_msg_buffer:
  792. kfree(priv->cmd_msg_buffer);
  793. cleanup_candev:
  794. free_candev(netdev);
  795. return err;
  796. }
  797. /* Called by the usb core when driver is unloaded or device is removed */
  798. static void usb_8dev_disconnect(struct usb_interface *intf)
  799. {
  800. struct usb_8dev_priv *priv = usb_get_intfdata(intf);
  801. usb_set_intfdata(intf, NULL);
  802. if (priv) {
  803. netdev_info(priv->netdev, "device disconnected\n");
  804. unregister_netdev(priv->netdev);
  805. free_candev(priv->netdev);
  806. unlink_all_urbs(priv);
  807. }
  808. }
  809. static struct usb_driver usb_8dev_driver = {
  810. .name = "usb_8dev",
  811. .probe = usb_8dev_probe,
  812. .disconnect = usb_8dev_disconnect,
  813. .id_table = usb_8dev_table,
  814. };
  815. module_usb_driver(usb_8dev_driver);
  816. MODULE_AUTHOR("Bernd Krumboeck <krumboeck@universalnet.at>");
  817. MODULE_DESCRIPTION("CAN driver for 8 devices USB2CAN interfaces");
  818. MODULE_LICENSE("GPL v2");