kvaser_usb_leaf.c 33 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /* Parts of this driver are based on the following:
  3. * - Kvaser linux leaf driver (version 4.78)
  4. * - CAN driver for esd CAN-USB/2
  5. * - Kvaser linux usbcanII driver (version 5.3)
  6. *
  7. * Copyright (C) 2002-2018 KVASER AB, Sweden. All rights reserved.
  8. * Copyright (C) 2010 Matthias Fuchs <matthias.fuchs@esd.eu>, esd gmbh
  9. * Copyright (C) 2012 Olivier Sobrie <olivier@sobrie.be>
  10. * Copyright (C) 2015 Valeo S.A.
  11. */
  12. #include <linux/completion.h>
  13. #include <linux/device.h>
  14. #include <linux/gfp.h>
  15. #include <linux/jiffies.h>
  16. #include <linux/kernel.h>
  17. #include <linux/netdevice.h>
  18. #include <linux/spinlock.h>
  19. #include <linux/string.h>
  20. #include <linux/types.h>
  21. #include <linux/usb.h>
  22. #include <linux/can.h>
  23. #include <linux/can/dev.h>
  24. #include <linux/can/error.h>
  25. #include <linux/can/netlink.h>
  26. #include "kvaser_usb.h"
  27. /* Forward declaration */
  28. static const struct kvaser_usb_dev_cfg kvaser_usb_leaf_dev_cfg;
  29. #define CAN_USB_CLOCK 8000000
  30. #define MAX_USBCAN_NET_DEVICES 2
  31. /* Command header size */
  32. #define CMD_HEADER_LEN 2
  33. /* Kvaser CAN message flags */
  34. #define MSG_FLAG_ERROR_FRAME BIT(0)
  35. #define MSG_FLAG_OVERRUN BIT(1)
  36. #define MSG_FLAG_NERR BIT(2)
  37. #define MSG_FLAG_WAKEUP BIT(3)
  38. #define MSG_FLAG_REMOTE_FRAME BIT(4)
  39. #define MSG_FLAG_RESERVED BIT(5)
  40. #define MSG_FLAG_TX_ACK BIT(6)
  41. #define MSG_FLAG_TX_REQUEST BIT(7)
  42. /* CAN states (M16C CxSTRH register) */
  43. #define M16C_STATE_BUS_RESET BIT(0)
  44. #define M16C_STATE_BUS_ERROR BIT(4)
  45. #define M16C_STATE_BUS_PASSIVE BIT(5)
  46. #define M16C_STATE_BUS_OFF BIT(6)
  47. /* Leaf/usbcan command ids */
  48. #define CMD_RX_STD_MESSAGE 12
  49. #define CMD_TX_STD_MESSAGE 13
  50. #define CMD_RX_EXT_MESSAGE 14
  51. #define CMD_TX_EXT_MESSAGE 15
  52. #define CMD_SET_BUS_PARAMS 16
  53. #define CMD_CHIP_STATE_EVENT 20
  54. #define CMD_SET_CTRL_MODE 21
  55. #define CMD_RESET_CHIP 24
  56. #define CMD_START_CHIP 26
  57. #define CMD_START_CHIP_REPLY 27
  58. #define CMD_STOP_CHIP 28
  59. #define CMD_STOP_CHIP_REPLY 29
  60. #define CMD_USBCAN_CLOCK_OVERFLOW_EVENT 33
  61. #define CMD_GET_CARD_INFO 34
  62. #define CMD_GET_CARD_INFO_REPLY 35
  63. #define CMD_GET_SOFTWARE_INFO 38
  64. #define CMD_GET_SOFTWARE_INFO_REPLY 39
  65. #define CMD_FLUSH_QUEUE 48
  66. #define CMD_TX_ACKNOWLEDGE 50
  67. #define CMD_CAN_ERROR_EVENT 51
  68. #define CMD_FLUSH_QUEUE_REPLY 68
  69. #define CMD_LEAF_LOG_MESSAGE 106
  70. /* error factors */
  71. #define M16C_EF_ACKE BIT(0)
  72. #define M16C_EF_CRCE BIT(1)
  73. #define M16C_EF_FORME BIT(2)
  74. #define M16C_EF_STFE BIT(3)
  75. #define M16C_EF_BITE0 BIT(4)
  76. #define M16C_EF_BITE1 BIT(5)
  77. #define M16C_EF_RCVE BIT(6)
  78. #define M16C_EF_TRE BIT(7)
  79. /* Only Leaf-based devices can report M16C error factors,
  80. * thus define our own error status flags for USBCANII
  81. */
  82. #define USBCAN_ERROR_STATE_NONE 0
  83. #define USBCAN_ERROR_STATE_TX_ERROR BIT(0)
  84. #define USBCAN_ERROR_STATE_RX_ERROR BIT(1)
  85. #define USBCAN_ERROR_STATE_BUSERROR BIT(2)
  86. /* bittiming parameters */
  87. #define KVASER_USB_TSEG1_MIN 1
  88. #define KVASER_USB_TSEG1_MAX 16
  89. #define KVASER_USB_TSEG2_MIN 1
  90. #define KVASER_USB_TSEG2_MAX 8
  91. #define KVASER_USB_SJW_MAX 4
  92. #define KVASER_USB_BRP_MIN 1
  93. #define KVASER_USB_BRP_MAX 64
  94. #define KVASER_USB_BRP_INC 1
  95. /* ctrl modes */
  96. #define KVASER_CTRL_MODE_NORMAL 1
  97. #define KVASER_CTRL_MODE_SILENT 2
  98. #define KVASER_CTRL_MODE_SELFRECEPTION 3
  99. #define KVASER_CTRL_MODE_OFF 4
  100. /* Extended CAN identifier flag */
  101. #define KVASER_EXTENDED_FRAME BIT(31)
  102. struct kvaser_cmd_simple {
  103. u8 tid;
  104. u8 channel;
  105. } __packed;
  106. struct kvaser_cmd_cardinfo {
  107. u8 tid;
  108. u8 nchannels;
  109. __le32 serial_number;
  110. __le32 padding0;
  111. __le32 clock_resolution;
  112. __le32 mfgdate;
  113. u8 ean[8];
  114. u8 hw_revision;
  115. union {
  116. struct {
  117. u8 usb_hs_mode;
  118. } __packed leaf1;
  119. struct {
  120. u8 padding;
  121. } __packed usbcan1;
  122. } __packed;
  123. __le16 padding1;
  124. } __packed;
  125. struct leaf_cmd_softinfo {
  126. u8 tid;
  127. u8 padding0;
  128. __le32 sw_options;
  129. __le32 fw_version;
  130. __le16 max_outstanding_tx;
  131. __le16 padding1[9];
  132. } __packed;
  133. struct usbcan_cmd_softinfo {
  134. u8 tid;
  135. u8 fw_name[5];
  136. __le16 max_outstanding_tx;
  137. u8 padding[6];
  138. __le32 fw_version;
  139. __le16 checksum;
  140. __le16 sw_options;
  141. } __packed;
  142. struct kvaser_cmd_busparams {
  143. u8 tid;
  144. u8 channel;
  145. __le32 bitrate;
  146. u8 tseg1;
  147. u8 tseg2;
  148. u8 sjw;
  149. u8 no_samp;
  150. } __packed;
  151. struct kvaser_cmd_tx_can {
  152. u8 channel;
  153. u8 tid;
  154. u8 data[14];
  155. union {
  156. struct {
  157. u8 padding;
  158. u8 flags;
  159. } __packed leaf;
  160. struct {
  161. u8 flags;
  162. u8 padding;
  163. } __packed usbcan;
  164. } __packed;
  165. } __packed;
  166. struct kvaser_cmd_rx_can_header {
  167. u8 channel;
  168. u8 flag;
  169. } __packed;
  170. struct leaf_cmd_rx_can {
  171. u8 channel;
  172. u8 flag;
  173. __le16 time[3];
  174. u8 data[14];
  175. } __packed;
  176. struct usbcan_cmd_rx_can {
  177. u8 channel;
  178. u8 flag;
  179. u8 data[14];
  180. __le16 time;
  181. } __packed;
  182. struct leaf_cmd_chip_state_event {
  183. u8 tid;
  184. u8 channel;
  185. __le16 time[3];
  186. u8 tx_errors_count;
  187. u8 rx_errors_count;
  188. u8 status;
  189. u8 padding[3];
  190. } __packed;
  191. struct usbcan_cmd_chip_state_event {
  192. u8 tid;
  193. u8 channel;
  194. u8 tx_errors_count;
  195. u8 rx_errors_count;
  196. __le16 time;
  197. u8 status;
  198. u8 padding[3];
  199. } __packed;
  200. struct kvaser_cmd_tx_acknowledge_header {
  201. u8 channel;
  202. u8 tid;
  203. } __packed;
  204. struct leaf_cmd_error_event {
  205. u8 tid;
  206. u8 flags;
  207. __le16 time[3];
  208. u8 channel;
  209. u8 padding;
  210. u8 tx_errors_count;
  211. u8 rx_errors_count;
  212. u8 status;
  213. u8 error_factor;
  214. } __packed;
  215. struct usbcan_cmd_error_event {
  216. u8 tid;
  217. u8 padding;
  218. u8 tx_errors_count_ch0;
  219. u8 rx_errors_count_ch0;
  220. u8 tx_errors_count_ch1;
  221. u8 rx_errors_count_ch1;
  222. u8 status_ch0;
  223. u8 status_ch1;
  224. __le16 time;
  225. } __packed;
  226. struct kvaser_cmd_ctrl_mode {
  227. u8 tid;
  228. u8 channel;
  229. u8 ctrl_mode;
  230. u8 padding[3];
  231. } __packed;
  232. struct kvaser_cmd_flush_queue {
  233. u8 tid;
  234. u8 channel;
  235. u8 flags;
  236. u8 padding[3];
  237. } __packed;
  238. struct leaf_cmd_log_message {
  239. u8 channel;
  240. u8 flags;
  241. __le16 time[3];
  242. u8 dlc;
  243. u8 time_offset;
  244. __le32 id;
  245. u8 data[8];
  246. } __packed;
  247. struct kvaser_cmd {
  248. u8 len;
  249. u8 id;
  250. union {
  251. struct kvaser_cmd_simple simple;
  252. struct kvaser_cmd_cardinfo cardinfo;
  253. struct kvaser_cmd_busparams busparams;
  254. struct kvaser_cmd_rx_can_header rx_can_header;
  255. struct kvaser_cmd_tx_acknowledge_header tx_acknowledge_header;
  256. union {
  257. struct leaf_cmd_softinfo softinfo;
  258. struct leaf_cmd_rx_can rx_can;
  259. struct leaf_cmd_chip_state_event chip_state_event;
  260. struct leaf_cmd_error_event error_event;
  261. struct leaf_cmd_log_message log_message;
  262. } __packed leaf;
  263. union {
  264. struct usbcan_cmd_softinfo softinfo;
  265. struct usbcan_cmd_rx_can rx_can;
  266. struct usbcan_cmd_chip_state_event chip_state_event;
  267. struct usbcan_cmd_error_event error_event;
  268. } __packed usbcan;
  269. struct kvaser_cmd_tx_can tx_can;
  270. struct kvaser_cmd_ctrl_mode ctrl_mode;
  271. struct kvaser_cmd_flush_queue flush_queue;
  272. } u;
  273. } __packed;
  274. /* Summary of a kvaser error event, for a unified Leaf/Usbcan error
  275. * handling. Some discrepancies between the two families exist:
  276. *
  277. * - USBCAN firmware does not report M16C "error factors"
  278. * - USBCAN controllers has difficulties reporting if the raised error
  279. * event is for ch0 or ch1. They leave such arbitration to the OS
  280. * driver by letting it compare error counters with previous values
  281. * and decide the error event's channel. Thus for USBCAN, the channel
  282. * field is only advisory.
  283. */
  284. struct kvaser_usb_err_summary {
  285. u8 channel, status, txerr, rxerr;
  286. union {
  287. struct {
  288. u8 error_factor;
  289. } leaf;
  290. struct {
  291. u8 other_ch_status;
  292. u8 error_state;
  293. } usbcan;
  294. };
  295. };
  296. static void *
  297. kvaser_usb_leaf_frame_to_cmd(const struct kvaser_usb_net_priv *priv,
  298. const struct sk_buff *skb, int *frame_len,
  299. int *cmd_len, u16 transid)
  300. {
  301. struct kvaser_usb *dev = priv->dev;
  302. struct kvaser_cmd *cmd;
  303. u8 *cmd_tx_can_flags = NULL; /* GCC */
  304. struct can_frame *cf = (struct can_frame *)skb->data;
  305. *frame_len = cf->can_dlc;
  306. cmd = kmalloc(sizeof(*cmd), GFP_ATOMIC);
  307. if (cmd) {
  308. cmd->u.tx_can.tid = transid & 0xff;
  309. cmd->len = *cmd_len = CMD_HEADER_LEN +
  310. sizeof(struct kvaser_cmd_tx_can);
  311. cmd->u.tx_can.channel = priv->channel;
  312. switch (dev->card_data.leaf.family) {
  313. case KVASER_LEAF:
  314. cmd_tx_can_flags = &cmd->u.tx_can.leaf.flags;
  315. break;
  316. case KVASER_USBCAN:
  317. cmd_tx_can_flags = &cmd->u.tx_can.usbcan.flags;
  318. break;
  319. }
  320. *cmd_tx_can_flags = 0;
  321. if (cf->can_id & CAN_EFF_FLAG) {
  322. cmd->id = CMD_TX_EXT_MESSAGE;
  323. cmd->u.tx_can.data[0] = (cf->can_id >> 24) & 0x1f;
  324. cmd->u.tx_can.data[1] = (cf->can_id >> 18) & 0x3f;
  325. cmd->u.tx_can.data[2] = (cf->can_id >> 14) & 0x0f;
  326. cmd->u.tx_can.data[3] = (cf->can_id >> 6) & 0xff;
  327. cmd->u.tx_can.data[4] = cf->can_id & 0x3f;
  328. } else {
  329. cmd->id = CMD_TX_STD_MESSAGE;
  330. cmd->u.tx_can.data[0] = (cf->can_id >> 6) & 0x1f;
  331. cmd->u.tx_can.data[1] = cf->can_id & 0x3f;
  332. }
  333. cmd->u.tx_can.data[5] = cf->can_dlc;
  334. memcpy(&cmd->u.tx_can.data[6], cf->data, cf->can_dlc);
  335. if (cf->can_id & CAN_RTR_FLAG)
  336. *cmd_tx_can_flags |= MSG_FLAG_REMOTE_FRAME;
  337. }
  338. return cmd;
  339. }
  340. static int kvaser_usb_leaf_wait_cmd(const struct kvaser_usb *dev, u8 id,
  341. struct kvaser_cmd *cmd)
  342. {
  343. struct kvaser_cmd *tmp;
  344. void *buf;
  345. int actual_len;
  346. int err;
  347. int pos;
  348. unsigned long to = jiffies + msecs_to_jiffies(KVASER_USB_TIMEOUT);
  349. buf = kzalloc(KVASER_USB_RX_BUFFER_SIZE, GFP_KERNEL);
  350. if (!buf)
  351. return -ENOMEM;
  352. do {
  353. err = kvaser_usb_recv_cmd(dev, buf, KVASER_USB_RX_BUFFER_SIZE,
  354. &actual_len);
  355. if (err < 0)
  356. goto end;
  357. pos = 0;
  358. while (pos <= actual_len - CMD_HEADER_LEN) {
  359. tmp = buf + pos;
  360. /* Handle commands crossing the USB endpoint max packet
  361. * size boundary. Check kvaser_usb_read_bulk_callback()
  362. * for further details.
  363. */
  364. if (tmp->len == 0) {
  365. pos = round_up(pos,
  366. le16_to_cpu
  367. (dev->bulk_in->wMaxPacketSize));
  368. continue;
  369. }
  370. if (pos + tmp->len > actual_len) {
  371. dev_err_ratelimited(&dev->intf->dev,
  372. "Format error\n");
  373. break;
  374. }
  375. if (tmp->id == id) {
  376. memcpy(cmd, tmp, tmp->len);
  377. goto end;
  378. }
  379. pos += tmp->len;
  380. }
  381. } while (time_before(jiffies, to));
  382. err = -EINVAL;
  383. end:
  384. kfree(buf);
  385. return err;
  386. }
  387. static int kvaser_usb_leaf_send_simple_cmd(const struct kvaser_usb *dev,
  388. u8 cmd_id, int channel)
  389. {
  390. struct kvaser_cmd *cmd;
  391. int rc;
  392. cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
  393. if (!cmd)
  394. return -ENOMEM;
  395. cmd->id = cmd_id;
  396. cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_simple);
  397. cmd->u.simple.channel = channel;
  398. cmd->u.simple.tid = 0xff;
  399. rc = kvaser_usb_send_cmd(dev, cmd, cmd->len);
  400. kfree(cmd);
  401. return rc;
  402. }
  403. static int kvaser_usb_leaf_get_software_info_inner(struct kvaser_usb *dev)
  404. {
  405. struct kvaser_cmd cmd;
  406. int err;
  407. err = kvaser_usb_leaf_send_simple_cmd(dev, CMD_GET_SOFTWARE_INFO, 0);
  408. if (err)
  409. return err;
  410. err = kvaser_usb_leaf_wait_cmd(dev, CMD_GET_SOFTWARE_INFO_REPLY, &cmd);
  411. if (err)
  412. return err;
  413. switch (dev->card_data.leaf.family) {
  414. case KVASER_LEAF:
  415. dev->fw_version = le32_to_cpu(cmd.u.leaf.softinfo.fw_version);
  416. dev->max_tx_urbs =
  417. le16_to_cpu(cmd.u.leaf.softinfo.max_outstanding_tx);
  418. break;
  419. case KVASER_USBCAN:
  420. dev->fw_version = le32_to_cpu(cmd.u.usbcan.softinfo.fw_version);
  421. dev->max_tx_urbs =
  422. le16_to_cpu(cmd.u.usbcan.softinfo.max_outstanding_tx);
  423. break;
  424. }
  425. return 0;
  426. }
  427. static int kvaser_usb_leaf_get_software_info(struct kvaser_usb *dev)
  428. {
  429. int err;
  430. int retry = 3;
  431. /* On some x86 laptops, plugging a Kvaser device again after
  432. * an unplug makes the firmware always ignore the very first
  433. * command. For such a case, provide some room for retries
  434. * instead of completely exiting the driver.
  435. */
  436. do {
  437. err = kvaser_usb_leaf_get_software_info_inner(dev);
  438. } while (--retry && err == -ETIMEDOUT);
  439. return err;
  440. }
  441. static int kvaser_usb_leaf_get_card_info(struct kvaser_usb *dev)
  442. {
  443. struct kvaser_cmd cmd;
  444. int err;
  445. err = kvaser_usb_leaf_send_simple_cmd(dev, CMD_GET_CARD_INFO, 0);
  446. if (err)
  447. return err;
  448. err = kvaser_usb_leaf_wait_cmd(dev, CMD_GET_CARD_INFO_REPLY, &cmd);
  449. if (err)
  450. return err;
  451. dev->nchannels = cmd.u.cardinfo.nchannels;
  452. if (dev->nchannels > KVASER_USB_MAX_NET_DEVICES ||
  453. (dev->card_data.leaf.family == KVASER_USBCAN &&
  454. dev->nchannels > MAX_USBCAN_NET_DEVICES))
  455. return -EINVAL;
  456. return 0;
  457. }
  458. static void kvaser_usb_leaf_tx_acknowledge(const struct kvaser_usb *dev,
  459. const struct kvaser_cmd *cmd)
  460. {
  461. struct net_device_stats *stats;
  462. struct kvaser_usb_tx_urb_context *context;
  463. struct kvaser_usb_net_priv *priv;
  464. unsigned long flags;
  465. u8 channel, tid;
  466. channel = cmd->u.tx_acknowledge_header.channel;
  467. tid = cmd->u.tx_acknowledge_header.tid;
  468. if (channel >= dev->nchannels) {
  469. dev_err(&dev->intf->dev,
  470. "Invalid channel number (%d)\n", channel);
  471. return;
  472. }
  473. priv = dev->nets[channel];
  474. if (!netif_device_present(priv->netdev))
  475. return;
  476. stats = &priv->netdev->stats;
  477. context = &priv->tx_contexts[tid % dev->max_tx_urbs];
  478. /* Sometimes the state change doesn't come after a bus-off event */
  479. if (priv->can.restart_ms && priv->can.state >= CAN_STATE_BUS_OFF) {
  480. struct sk_buff *skb;
  481. struct can_frame *cf;
  482. skb = alloc_can_err_skb(priv->netdev, &cf);
  483. if (skb) {
  484. cf->can_id |= CAN_ERR_RESTARTED;
  485. stats->rx_packets++;
  486. stats->rx_bytes += cf->can_dlc;
  487. netif_rx(skb);
  488. } else {
  489. netdev_err(priv->netdev,
  490. "No memory left for err_skb\n");
  491. }
  492. priv->can.can_stats.restarts++;
  493. netif_carrier_on(priv->netdev);
  494. priv->can.state = CAN_STATE_ERROR_ACTIVE;
  495. }
  496. stats->tx_packets++;
  497. stats->tx_bytes += context->dlc;
  498. spin_lock_irqsave(&priv->tx_contexts_lock, flags);
  499. can_get_echo_skb(priv->netdev, context->echo_index);
  500. context->echo_index = dev->max_tx_urbs;
  501. --priv->active_tx_contexts;
  502. netif_wake_queue(priv->netdev);
  503. spin_unlock_irqrestore(&priv->tx_contexts_lock, flags);
  504. }
  505. static int kvaser_usb_leaf_simple_cmd_async(struct kvaser_usb_net_priv *priv,
  506. u8 cmd_id)
  507. {
  508. struct kvaser_cmd *cmd;
  509. int err;
  510. cmd = kmalloc(sizeof(*cmd), GFP_ATOMIC);
  511. if (!cmd)
  512. return -ENOMEM;
  513. cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_simple);
  514. cmd->id = cmd_id;
  515. cmd->u.simple.channel = priv->channel;
  516. err = kvaser_usb_send_cmd_async(priv, cmd, cmd->len);
  517. if (err)
  518. kfree(cmd);
  519. return err;
  520. }
  521. static void
  522. kvaser_usb_leaf_rx_error_update_can_state(struct kvaser_usb_net_priv *priv,
  523. const struct kvaser_usb_err_summary *es,
  524. struct can_frame *cf)
  525. {
  526. struct kvaser_usb *dev = priv->dev;
  527. struct net_device_stats *stats = &priv->netdev->stats;
  528. enum can_state cur_state, new_state, tx_state, rx_state;
  529. netdev_dbg(priv->netdev, "Error status: 0x%02x\n", es->status);
  530. new_state = priv->can.state;
  531. cur_state = priv->can.state;
  532. if (es->status & (M16C_STATE_BUS_OFF | M16C_STATE_BUS_RESET)) {
  533. new_state = CAN_STATE_BUS_OFF;
  534. } else if (es->status & M16C_STATE_BUS_PASSIVE) {
  535. new_state = CAN_STATE_ERROR_PASSIVE;
  536. } else if (es->status & M16C_STATE_BUS_ERROR) {
  537. /* Guard against spurious error events after a busoff */
  538. if (cur_state < CAN_STATE_BUS_OFF) {
  539. if (es->txerr >= 128 || es->rxerr >= 128)
  540. new_state = CAN_STATE_ERROR_PASSIVE;
  541. else if (es->txerr >= 96 || es->rxerr >= 96)
  542. new_state = CAN_STATE_ERROR_WARNING;
  543. else if (cur_state > CAN_STATE_ERROR_ACTIVE)
  544. new_state = CAN_STATE_ERROR_ACTIVE;
  545. }
  546. }
  547. if (!es->status)
  548. new_state = CAN_STATE_ERROR_ACTIVE;
  549. if (new_state != cur_state) {
  550. tx_state = (es->txerr >= es->rxerr) ? new_state : 0;
  551. rx_state = (es->txerr <= es->rxerr) ? new_state : 0;
  552. can_change_state(priv->netdev, cf, tx_state, rx_state);
  553. }
  554. if (priv->can.restart_ms &&
  555. cur_state >= CAN_STATE_BUS_OFF &&
  556. new_state < CAN_STATE_BUS_OFF)
  557. priv->can.can_stats.restarts++;
  558. switch (dev->card_data.leaf.family) {
  559. case KVASER_LEAF:
  560. if (es->leaf.error_factor) {
  561. priv->can.can_stats.bus_error++;
  562. stats->rx_errors++;
  563. }
  564. break;
  565. case KVASER_USBCAN:
  566. if (es->usbcan.error_state & USBCAN_ERROR_STATE_TX_ERROR)
  567. stats->tx_errors++;
  568. if (es->usbcan.error_state & USBCAN_ERROR_STATE_RX_ERROR)
  569. stats->rx_errors++;
  570. if (es->usbcan.error_state & USBCAN_ERROR_STATE_BUSERROR)
  571. priv->can.can_stats.bus_error++;
  572. break;
  573. }
  574. priv->bec.txerr = es->txerr;
  575. priv->bec.rxerr = es->rxerr;
  576. }
  577. static void kvaser_usb_leaf_rx_error(const struct kvaser_usb *dev,
  578. const struct kvaser_usb_err_summary *es)
  579. {
  580. struct can_frame *cf;
  581. struct can_frame tmp_cf = { .can_id = CAN_ERR_FLAG,
  582. .can_dlc = CAN_ERR_DLC };
  583. struct sk_buff *skb;
  584. struct net_device_stats *stats;
  585. struct kvaser_usb_net_priv *priv;
  586. enum can_state old_state, new_state;
  587. if (es->channel >= dev->nchannels) {
  588. dev_err(&dev->intf->dev,
  589. "Invalid channel number (%d)\n", es->channel);
  590. return;
  591. }
  592. priv = dev->nets[es->channel];
  593. stats = &priv->netdev->stats;
  594. /* Update all of the CAN interface's state and error counters before
  595. * trying any memory allocation that can actually fail with -ENOMEM.
  596. *
  597. * We send a temporary stack-allocated error CAN frame to
  598. * can_change_state() for the very same reason.
  599. *
  600. * TODO: Split can_change_state() responsibility between updating the
  601. * CAN interface's state and counters, and the setting up of CAN error
  602. * frame ID and data to userspace. Remove stack allocation afterwards.
  603. */
  604. old_state = priv->can.state;
  605. kvaser_usb_leaf_rx_error_update_can_state(priv, es, &tmp_cf);
  606. new_state = priv->can.state;
  607. skb = alloc_can_err_skb(priv->netdev, &cf);
  608. if (!skb) {
  609. stats->rx_dropped++;
  610. return;
  611. }
  612. memcpy(cf, &tmp_cf, sizeof(*cf));
  613. if (new_state != old_state) {
  614. if (es->status &
  615. (M16C_STATE_BUS_OFF | M16C_STATE_BUS_RESET)) {
  616. if (!priv->can.restart_ms)
  617. kvaser_usb_leaf_simple_cmd_async(priv,
  618. CMD_STOP_CHIP);
  619. netif_carrier_off(priv->netdev);
  620. }
  621. if (priv->can.restart_ms &&
  622. old_state >= CAN_STATE_BUS_OFF &&
  623. new_state < CAN_STATE_BUS_OFF) {
  624. cf->can_id |= CAN_ERR_RESTARTED;
  625. netif_carrier_on(priv->netdev);
  626. }
  627. }
  628. switch (dev->card_data.leaf.family) {
  629. case KVASER_LEAF:
  630. if (es->leaf.error_factor) {
  631. cf->can_id |= CAN_ERR_BUSERROR | CAN_ERR_PROT;
  632. if (es->leaf.error_factor & M16C_EF_ACKE)
  633. cf->data[3] = CAN_ERR_PROT_LOC_ACK;
  634. if (es->leaf.error_factor & M16C_EF_CRCE)
  635. cf->data[3] = CAN_ERR_PROT_LOC_CRC_SEQ;
  636. if (es->leaf.error_factor & M16C_EF_FORME)
  637. cf->data[2] |= CAN_ERR_PROT_FORM;
  638. if (es->leaf.error_factor & M16C_EF_STFE)
  639. cf->data[2] |= CAN_ERR_PROT_STUFF;
  640. if (es->leaf.error_factor & M16C_EF_BITE0)
  641. cf->data[2] |= CAN_ERR_PROT_BIT0;
  642. if (es->leaf.error_factor & M16C_EF_BITE1)
  643. cf->data[2] |= CAN_ERR_PROT_BIT1;
  644. if (es->leaf.error_factor & M16C_EF_TRE)
  645. cf->data[2] |= CAN_ERR_PROT_TX;
  646. }
  647. break;
  648. case KVASER_USBCAN:
  649. if (es->usbcan.error_state & USBCAN_ERROR_STATE_BUSERROR)
  650. cf->can_id |= CAN_ERR_BUSERROR;
  651. break;
  652. }
  653. cf->data[6] = es->txerr;
  654. cf->data[7] = es->rxerr;
  655. stats->rx_packets++;
  656. stats->rx_bytes += cf->can_dlc;
  657. netif_rx(skb);
  658. }
  659. /* For USBCAN, report error to userspace if the channels's errors counter
  660. * has changed, or we're the only channel seeing a bus error state.
  661. */
  662. static void
  663. kvaser_usb_leaf_usbcan_conditionally_rx_error(const struct kvaser_usb *dev,
  664. struct kvaser_usb_err_summary *es)
  665. {
  666. struct kvaser_usb_net_priv *priv;
  667. unsigned int channel;
  668. bool report_error;
  669. channel = es->channel;
  670. if (channel >= dev->nchannels) {
  671. dev_err(&dev->intf->dev,
  672. "Invalid channel number (%d)\n", channel);
  673. return;
  674. }
  675. priv = dev->nets[channel];
  676. report_error = false;
  677. if (es->txerr != priv->bec.txerr) {
  678. es->usbcan.error_state |= USBCAN_ERROR_STATE_TX_ERROR;
  679. report_error = true;
  680. }
  681. if (es->rxerr != priv->bec.rxerr) {
  682. es->usbcan.error_state |= USBCAN_ERROR_STATE_RX_ERROR;
  683. report_error = true;
  684. }
  685. if ((es->status & M16C_STATE_BUS_ERROR) &&
  686. !(es->usbcan.other_ch_status & M16C_STATE_BUS_ERROR)) {
  687. es->usbcan.error_state |= USBCAN_ERROR_STATE_BUSERROR;
  688. report_error = true;
  689. }
  690. if (report_error)
  691. kvaser_usb_leaf_rx_error(dev, es);
  692. }
  693. static void kvaser_usb_leaf_usbcan_rx_error(const struct kvaser_usb *dev,
  694. const struct kvaser_cmd *cmd)
  695. {
  696. struct kvaser_usb_err_summary es = { };
  697. switch (cmd->id) {
  698. /* Sometimes errors are sent as unsolicited chip state events */
  699. case CMD_CHIP_STATE_EVENT:
  700. es.channel = cmd->u.usbcan.chip_state_event.channel;
  701. es.status = cmd->u.usbcan.chip_state_event.status;
  702. es.txerr = cmd->u.usbcan.chip_state_event.tx_errors_count;
  703. es.rxerr = cmd->u.usbcan.chip_state_event.rx_errors_count;
  704. kvaser_usb_leaf_usbcan_conditionally_rx_error(dev, &es);
  705. break;
  706. case CMD_CAN_ERROR_EVENT:
  707. es.channel = 0;
  708. es.status = cmd->u.usbcan.error_event.status_ch0;
  709. es.txerr = cmd->u.usbcan.error_event.tx_errors_count_ch0;
  710. es.rxerr = cmd->u.usbcan.error_event.rx_errors_count_ch0;
  711. es.usbcan.other_ch_status =
  712. cmd->u.usbcan.error_event.status_ch1;
  713. kvaser_usb_leaf_usbcan_conditionally_rx_error(dev, &es);
  714. /* The USBCAN firmware supports up to 2 channels.
  715. * Now that ch0 was checked, check if ch1 has any errors.
  716. */
  717. if (dev->nchannels == MAX_USBCAN_NET_DEVICES) {
  718. es.channel = 1;
  719. es.status = cmd->u.usbcan.error_event.status_ch1;
  720. es.txerr =
  721. cmd->u.usbcan.error_event.tx_errors_count_ch1;
  722. es.rxerr =
  723. cmd->u.usbcan.error_event.rx_errors_count_ch1;
  724. es.usbcan.other_ch_status =
  725. cmd->u.usbcan.error_event.status_ch0;
  726. kvaser_usb_leaf_usbcan_conditionally_rx_error(dev, &es);
  727. }
  728. break;
  729. default:
  730. dev_err(&dev->intf->dev, "Invalid cmd id (%d)\n", cmd->id);
  731. }
  732. }
  733. static void kvaser_usb_leaf_leaf_rx_error(const struct kvaser_usb *dev,
  734. const struct kvaser_cmd *cmd)
  735. {
  736. struct kvaser_usb_err_summary es = { };
  737. switch (cmd->id) {
  738. case CMD_CAN_ERROR_EVENT:
  739. es.channel = cmd->u.leaf.error_event.channel;
  740. es.status = cmd->u.leaf.error_event.status;
  741. es.txerr = cmd->u.leaf.error_event.tx_errors_count;
  742. es.rxerr = cmd->u.leaf.error_event.rx_errors_count;
  743. es.leaf.error_factor = cmd->u.leaf.error_event.error_factor;
  744. break;
  745. case CMD_LEAF_LOG_MESSAGE:
  746. es.channel = cmd->u.leaf.log_message.channel;
  747. es.status = cmd->u.leaf.log_message.data[0];
  748. es.txerr = cmd->u.leaf.log_message.data[2];
  749. es.rxerr = cmd->u.leaf.log_message.data[3];
  750. es.leaf.error_factor = cmd->u.leaf.log_message.data[1];
  751. break;
  752. case CMD_CHIP_STATE_EVENT:
  753. es.channel = cmd->u.leaf.chip_state_event.channel;
  754. es.status = cmd->u.leaf.chip_state_event.status;
  755. es.txerr = cmd->u.leaf.chip_state_event.tx_errors_count;
  756. es.rxerr = cmd->u.leaf.chip_state_event.rx_errors_count;
  757. es.leaf.error_factor = 0;
  758. break;
  759. default:
  760. dev_err(&dev->intf->dev, "Invalid cmd id (%d)\n", cmd->id);
  761. return;
  762. }
  763. kvaser_usb_leaf_rx_error(dev, &es);
  764. }
  765. static void kvaser_usb_leaf_rx_can_err(const struct kvaser_usb_net_priv *priv,
  766. const struct kvaser_cmd *cmd)
  767. {
  768. if (cmd->u.rx_can_header.flag & (MSG_FLAG_ERROR_FRAME |
  769. MSG_FLAG_NERR)) {
  770. struct net_device_stats *stats = &priv->netdev->stats;
  771. netdev_err(priv->netdev, "Unknown error (flags: 0x%02x)\n",
  772. cmd->u.rx_can_header.flag);
  773. stats->rx_errors++;
  774. return;
  775. }
  776. if (cmd->u.rx_can_header.flag & MSG_FLAG_OVERRUN)
  777. kvaser_usb_can_rx_over_error(priv->netdev);
  778. }
  779. static void kvaser_usb_leaf_rx_can_msg(const struct kvaser_usb *dev,
  780. const struct kvaser_cmd *cmd)
  781. {
  782. struct kvaser_usb_net_priv *priv;
  783. struct can_frame *cf;
  784. struct sk_buff *skb;
  785. struct net_device_stats *stats;
  786. u8 channel = cmd->u.rx_can_header.channel;
  787. const u8 *rx_data = NULL; /* GCC */
  788. if (channel >= dev->nchannels) {
  789. dev_err(&dev->intf->dev,
  790. "Invalid channel number (%d)\n", channel);
  791. return;
  792. }
  793. priv = dev->nets[channel];
  794. stats = &priv->netdev->stats;
  795. if ((cmd->u.rx_can_header.flag & MSG_FLAG_ERROR_FRAME) &&
  796. (dev->card_data.leaf.family == KVASER_LEAF &&
  797. cmd->id == CMD_LEAF_LOG_MESSAGE)) {
  798. kvaser_usb_leaf_leaf_rx_error(dev, cmd);
  799. return;
  800. } else if (cmd->u.rx_can_header.flag & (MSG_FLAG_ERROR_FRAME |
  801. MSG_FLAG_NERR |
  802. MSG_FLAG_OVERRUN)) {
  803. kvaser_usb_leaf_rx_can_err(priv, cmd);
  804. return;
  805. } else if (cmd->u.rx_can_header.flag & ~MSG_FLAG_REMOTE_FRAME) {
  806. netdev_warn(priv->netdev,
  807. "Unhandled frame (flags: 0x%02x)\n",
  808. cmd->u.rx_can_header.flag);
  809. return;
  810. }
  811. switch (dev->card_data.leaf.family) {
  812. case KVASER_LEAF:
  813. rx_data = cmd->u.leaf.rx_can.data;
  814. break;
  815. case KVASER_USBCAN:
  816. rx_data = cmd->u.usbcan.rx_can.data;
  817. break;
  818. }
  819. skb = alloc_can_skb(priv->netdev, &cf);
  820. if (!skb) {
  821. stats->rx_dropped++;
  822. return;
  823. }
  824. if (dev->card_data.leaf.family == KVASER_LEAF && cmd->id ==
  825. CMD_LEAF_LOG_MESSAGE) {
  826. cf->can_id = le32_to_cpu(cmd->u.leaf.log_message.id);
  827. if (cf->can_id & KVASER_EXTENDED_FRAME)
  828. cf->can_id &= CAN_EFF_MASK | CAN_EFF_FLAG;
  829. else
  830. cf->can_id &= CAN_SFF_MASK;
  831. cf->can_dlc = get_can_dlc(cmd->u.leaf.log_message.dlc);
  832. if (cmd->u.leaf.log_message.flags & MSG_FLAG_REMOTE_FRAME)
  833. cf->can_id |= CAN_RTR_FLAG;
  834. else
  835. memcpy(cf->data, &cmd->u.leaf.log_message.data,
  836. cf->can_dlc);
  837. } else {
  838. cf->can_id = ((rx_data[0] & 0x1f) << 6) | (rx_data[1] & 0x3f);
  839. if (cmd->id == CMD_RX_EXT_MESSAGE) {
  840. cf->can_id <<= 18;
  841. cf->can_id |= ((rx_data[2] & 0x0f) << 14) |
  842. ((rx_data[3] & 0xff) << 6) |
  843. (rx_data[4] & 0x3f);
  844. cf->can_id |= CAN_EFF_FLAG;
  845. }
  846. cf->can_dlc = get_can_dlc(rx_data[5]);
  847. if (cmd->u.rx_can_header.flag & MSG_FLAG_REMOTE_FRAME)
  848. cf->can_id |= CAN_RTR_FLAG;
  849. else
  850. memcpy(cf->data, &rx_data[6], cf->can_dlc);
  851. }
  852. stats->rx_packets++;
  853. stats->rx_bytes += cf->can_dlc;
  854. netif_rx(skb);
  855. }
  856. static void kvaser_usb_leaf_start_chip_reply(const struct kvaser_usb *dev,
  857. const struct kvaser_cmd *cmd)
  858. {
  859. struct kvaser_usb_net_priv *priv;
  860. u8 channel = cmd->u.simple.channel;
  861. if (channel >= dev->nchannels) {
  862. dev_err(&dev->intf->dev,
  863. "Invalid channel number (%d)\n", channel);
  864. return;
  865. }
  866. priv = dev->nets[channel];
  867. if (completion_done(&priv->start_comp) &&
  868. netif_queue_stopped(priv->netdev)) {
  869. netif_wake_queue(priv->netdev);
  870. } else {
  871. netif_start_queue(priv->netdev);
  872. complete(&priv->start_comp);
  873. }
  874. }
  875. static void kvaser_usb_leaf_stop_chip_reply(const struct kvaser_usb *dev,
  876. const struct kvaser_cmd *cmd)
  877. {
  878. struct kvaser_usb_net_priv *priv;
  879. u8 channel = cmd->u.simple.channel;
  880. if (channel >= dev->nchannels) {
  881. dev_err(&dev->intf->dev,
  882. "Invalid channel number (%d)\n", channel);
  883. return;
  884. }
  885. priv = dev->nets[channel];
  886. complete(&priv->stop_comp);
  887. }
  888. static void kvaser_usb_leaf_handle_command(const struct kvaser_usb *dev,
  889. const struct kvaser_cmd *cmd)
  890. {
  891. switch (cmd->id) {
  892. case CMD_START_CHIP_REPLY:
  893. kvaser_usb_leaf_start_chip_reply(dev, cmd);
  894. break;
  895. case CMD_STOP_CHIP_REPLY:
  896. kvaser_usb_leaf_stop_chip_reply(dev, cmd);
  897. break;
  898. case CMD_RX_STD_MESSAGE:
  899. case CMD_RX_EXT_MESSAGE:
  900. kvaser_usb_leaf_rx_can_msg(dev, cmd);
  901. break;
  902. case CMD_LEAF_LOG_MESSAGE:
  903. if (dev->card_data.leaf.family != KVASER_LEAF)
  904. goto warn;
  905. kvaser_usb_leaf_rx_can_msg(dev, cmd);
  906. break;
  907. case CMD_CHIP_STATE_EVENT:
  908. case CMD_CAN_ERROR_EVENT:
  909. if (dev->card_data.leaf.family == KVASER_LEAF)
  910. kvaser_usb_leaf_leaf_rx_error(dev, cmd);
  911. else
  912. kvaser_usb_leaf_usbcan_rx_error(dev, cmd);
  913. break;
  914. case CMD_TX_ACKNOWLEDGE:
  915. kvaser_usb_leaf_tx_acknowledge(dev, cmd);
  916. break;
  917. /* Ignored commands */
  918. case CMD_USBCAN_CLOCK_OVERFLOW_EVENT:
  919. if (dev->card_data.leaf.family != KVASER_USBCAN)
  920. goto warn;
  921. break;
  922. case CMD_FLUSH_QUEUE_REPLY:
  923. if (dev->card_data.leaf.family != KVASER_LEAF)
  924. goto warn;
  925. break;
  926. default:
  927. warn: dev_warn(&dev->intf->dev, "Unhandled command (%d)\n", cmd->id);
  928. break;
  929. }
  930. }
  931. static void kvaser_usb_leaf_read_bulk_callback(struct kvaser_usb *dev,
  932. void *buf, int len)
  933. {
  934. struct kvaser_cmd *cmd;
  935. int pos = 0;
  936. while (pos <= len - CMD_HEADER_LEN) {
  937. cmd = buf + pos;
  938. /* The Kvaser firmware can only read and write commands that
  939. * does not cross the USB's endpoint wMaxPacketSize boundary.
  940. * If a follow-up command crosses such boundary, firmware puts
  941. * a placeholder zero-length command in its place then aligns
  942. * the real command to the next max packet size.
  943. *
  944. * Handle such cases or we're going to miss a significant
  945. * number of events in case of a heavy rx load on the bus.
  946. */
  947. if (cmd->len == 0) {
  948. pos = round_up(pos, le16_to_cpu
  949. (dev->bulk_in->wMaxPacketSize));
  950. continue;
  951. }
  952. if (pos + cmd->len > len) {
  953. dev_err_ratelimited(&dev->intf->dev, "Format error\n");
  954. break;
  955. }
  956. kvaser_usb_leaf_handle_command(dev, cmd);
  957. pos += cmd->len;
  958. }
  959. }
  960. static int kvaser_usb_leaf_set_opt_mode(const struct kvaser_usb_net_priv *priv)
  961. {
  962. struct kvaser_cmd *cmd;
  963. int rc;
  964. cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
  965. if (!cmd)
  966. return -ENOMEM;
  967. cmd->id = CMD_SET_CTRL_MODE;
  968. cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_ctrl_mode);
  969. cmd->u.ctrl_mode.tid = 0xff;
  970. cmd->u.ctrl_mode.channel = priv->channel;
  971. if (priv->can.ctrlmode & CAN_CTRLMODE_LISTENONLY)
  972. cmd->u.ctrl_mode.ctrl_mode = KVASER_CTRL_MODE_SILENT;
  973. else
  974. cmd->u.ctrl_mode.ctrl_mode = KVASER_CTRL_MODE_NORMAL;
  975. rc = kvaser_usb_send_cmd(priv->dev, cmd, cmd->len);
  976. kfree(cmd);
  977. return rc;
  978. }
  979. static int kvaser_usb_leaf_start_chip(struct kvaser_usb_net_priv *priv)
  980. {
  981. int err;
  982. init_completion(&priv->start_comp);
  983. err = kvaser_usb_leaf_send_simple_cmd(priv->dev, CMD_START_CHIP,
  984. priv->channel);
  985. if (err)
  986. return err;
  987. if (!wait_for_completion_timeout(&priv->start_comp,
  988. msecs_to_jiffies(KVASER_USB_TIMEOUT)))
  989. return -ETIMEDOUT;
  990. return 0;
  991. }
  992. static int kvaser_usb_leaf_stop_chip(struct kvaser_usb_net_priv *priv)
  993. {
  994. int err;
  995. init_completion(&priv->stop_comp);
  996. err = kvaser_usb_leaf_send_simple_cmd(priv->dev, CMD_STOP_CHIP,
  997. priv->channel);
  998. if (err)
  999. return err;
  1000. if (!wait_for_completion_timeout(&priv->stop_comp,
  1001. msecs_to_jiffies(KVASER_USB_TIMEOUT)))
  1002. return -ETIMEDOUT;
  1003. return 0;
  1004. }
  1005. static int kvaser_usb_leaf_reset_chip(struct kvaser_usb *dev, int channel)
  1006. {
  1007. return kvaser_usb_leaf_send_simple_cmd(dev, CMD_RESET_CHIP, channel);
  1008. }
  1009. static int kvaser_usb_leaf_flush_queue(struct kvaser_usb_net_priv *priv)
  1010. {
  1011. struct kvaser_cmd *cmd;
  1012. int rc;
  1013. cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
  1014. if (!cmd)
  1015. return -ENOMEM;
  1016. cmd->id = CMD_FLUSH_QUEUE;
  1017. cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_flush_queue);
  1018. cmd->u.flush_queue.channel = priv->channel;
  1019. cmd->u.flush_queue.flags = 0x00;
  1020. rc = kvaser_usb_send_cmd(priv->dev, cmd, cmd->len);
  1021. kfree(cmd);
  1022. return rc;
  1023. }
  1024. static int kvaser_usb_leaf_init_card(struct kvaser_usb *dev)
  1025. {
  1026. struct kvaser_usb_dev_card_data *card_data = &dev->card_data;
  1027. dev->cfg = &kvaser_usb_leaf_dev_cfg;
  1028. card_data->ctrlmode_supported |= CAN_CTRLMODE_3_SAMPLES;
  1029. return 0;
  1030. }
  1031. static const struct can_bittiming_const kvaser_usb_leaf_bittiming_const = {
  1032. .name = "kvaser_usb",
  1033. .tseg1_min = KVASER_USB_TSEG1_MIN,
  1034. .tseg1_max = KVASER_USB_TSEG1_MAX,
  1035. .tseg2_min = KVASER_USB_TSEG2_MIN,
  1036. .tseg2_max = KVASER_USB_TSEG2_MAX,
  1037. .sjw_max = KVASER_USB_SJW_MAX,
  1038. .brp_min = KVASER_USB_BRP_MIN,
  1039. .brp_max = KVASER_USB_BRP_MAX,
  1040. .brp_inc = KVASER_USB_BRP_INC,
  1041. };
  1042. static int kvaser_usb_leaf_set_bittiming(struct net_device *netdev)
  1043. {
  1044. struct kvaser_usb_net_priv *priv = netdev_priv(netdev);
  1045. struct can_bittiming *bt = &priv->can.bittiming;
  1046. struct kvaser_usb *dev = priv->dev;
  1047. struct kvaser_cmd *cmd;
  1048. int rc;
  1049. cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
  1050. if (!cmd)
  1051. return -ENOMEM;
  1052. cmd->id = CMD_SET_BUS_PARAMS;
  1053. cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_busparams);
  1054. cmd->u.busparams.channel = priv->channel;
  1055. cmd->u.busparams.tid = 0xff;
  1056. cmd->u.busparams.bitrate = cpu_to_le32(bt->bitrate);
  1057. cmd->u.busparams.sjw = bt->sjw;
  1058. cmd->u.busparams.tseg1 = bt->prop_seg + bt->phase_seg1;
  1059. cmd->u.busparams.tseg2 = bt->phase_seg2;
  1060. if (priv->can.ctrlmode & CAN_CTRLMODE_3_SAMPLES)
  1061. cmd->u.busparams.no_samp = 3;
  1062. else
  1063. cmd->u.busparams.no_samp = 1;
  1064. rc = kvaser_usb_send_cmd(dev, cmd, cmd->len);
  1065. kfree(cmd);
  1066. return rc;
  1067. }
  1068. static int kvaser_usb_leaf_set_mode(struct net_device *netdev,
  1069. enum can_mode mode)
  1070. {
  1071. struct kvaser_usb_net_priv *priv = netdev_priv(netdev);
  1072. int err;
  1073. switch (mode) {
  1074. case CAN_MODE_START:
  1075. err = kvaser_usb_leaf_simple_cmd_async(priv, CMD_START_CHIP);
  1076. if (err)
  1077. return err;
  1078. break;
  1079. default:
  1080. return -EOPNOTSUPP;
  1081. }
  1082. return 0;
  1083. }
  1084. static int kvaser_usb_leaf_get_berr_counter(const struct net_device *netdev,
  1085. struct can_berr_counter *bec)
  1086. {
  1087. struct kvaser_usb_net_priv *priv = netdev_priv(netdev);
  1088. *bec = priv->bec;
  1089. return 0;
  1090. }
  1091. static int kvaser_usb_leaf_setup_endpoints(struct kvaser_usb *dev)
  1092. {
  1093. const struct usb_host_interface *iface_desc;
  1094. struct usb_endpoint_descriptor *endpoint;
  1095. int i;
  1096. iface_desc = &dev->intf->altsetting[0];
  1097. for (i = 0; i < iface_desc->desc.bNumEndpoints; ++i) {
  1098. endpoint = &iface_desc->endpoint[i].desc;
  1099. if (!dev->bulk_in && usb_endpoint_is_bulk_in(endpoint))
  1100. dev->bulk_in = endpoint;
  1101. if (!dev->bulk_out && usb_endpoint_is_bulk_out(endpoint))
  1102. dev->bulk_out = endpoint;
  1103. /* use first bulk endpoint for in and out */
  1104. if (dev->bulk_in && dev->bulk_out)
  1105. return 0;
  1106. }
  1107. return -ENODEV;
  1108. }
  1109. const struct kvaser_usb_dev_ops kvaser_usb_leaf_dev_ops = {
  1110. .dev_set_mode = kvaser_usb_leaf_set_mode,
  1111. .dev_set_bittiming = kvaser_usb_leaf_set_bittiming,
  1112. .dev_set_data_bittiming = NULL,
  1113. .dev_get_berr_counter = kvaser_usb_leaf_get_berr_counter,
  1114. .dev_setup_endpoints = kvaser_usb_leaf_setup_endpoints,
  1115. .dev_init_card = kvaser_usb_leaf_init_card,
  1116. .dev_get_software_info = kvaser_usb_leaf_get_software_info,
  1117. .dev_get_software_details = NULL,
  1118. .dev_get_card_info = kvaser_usb_leaf_get_card_info,
  1119. .dev_get_capabilities = NULL,
  1120. .dev_set_opt_mode = kvaser_usb_leaf_set_opt_mode,
  1121. .dev_start_chip = kvaser_usb_leaf_start_chip,
  1122. .dev_stop_chip = kvaser_usb_leaf_stop_chip,
  1123. .dev_reset_chip = kvaser_usb_leaf_reset_chip,
  1124. .dev_flush_queue = kvaser_usb_leaf_flush_queue,
  1125. .dev_read_bulk_callback = kvaser_usb_leaf_read_bulk_callback,
  1126. .dev_frame_to_cmd = kvaser_usb_leaf_frame_to_cmd,
  1127. };
  1128. static const struct kvaser_usb_dev_cfg kvaser_usb_leaf_dev_cfg = {
  1129. .clock = {
  1130. .freq = CAN_USB_CLOCK,
  1131. },
  1132. .timestamp_freq = 1,
  1133. .bittiming_const = &kvaser_usb_leaf_bittiming_const,
  1134. };