1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * CAN driver for PEAK System PCAN-USB FD / PCAN-USB Pro FD adapter
4 *
5 * Copyright (C) 2013-2014 Stephane Grosjean <s.grosjean@peak-system.com>
6 */
7 #include <linux/netdevice.h>
8 #include <linux/usb.h>
9 #include <linux/module.h>
10 #include <linux/ethtool.h>
11
12 #include <linux/can.h>
13 #include <linux/can/dev.h>
14 #include <linux/can/error.h>
15 #include <linux/can/dev/peak_canfd.h>
16
17 #include "pcan_usb_core.h"
18 #include "pcan_usb_pro.h"
19
20 #define PCAN_USBPROFD_CHANNEL_COUNT 2
21 #define PCAN_USBFD_CHANNEL_COUNT 1
22
23 /* PCAN-USB Pro FD adapter internal clock (Hz) */
24 #define PCAN_UFD_CRYSTAL_HZ 80000000
25
26 #define PCAN_UFD_CMD_BUFFER_SIZE 512
27 #define PCAN_UFD_LOSPD_PKT_SIZE 64
28
29 /* PCAN-USB Pro FD command timeout (ms.) */
30 #define PCAN_UFD_CMD_TIMEOUT_MS 1000
31
32 /* PCAN-USB Pro FD rx/tx buffers size */
33 #define PCAN_UFD_RX_BUFFER_SIZE 2048
34 #define PCAN_UFD_TX_BUFFER_SIZE 512
35
36 /* struct pcan_ufd_fw_info::type */
37 #define PCAN_USBFD_TYPE_STD 1
38 #define PCAN_USBFD_TYPE_EXT 2 /* includes EP numbers */
39
40 /* read some versions info from the hw device */
41 struct __packed pcan_ufd_fw_info {
42 __le16 size_of; /* sizeof this */
43 __le16 type; /* type of this structure */
44 u8 hw_type; /* Type of hardware (HW_TYPE_xxx) */
45 u8 bl_version[3]; /* Bootloader version */
46 u8 hw_version; /* Hardware version (PCB) */
47 u8 fw_version[3]; /* Firmware version */
48 __le32 dev_id[2]; /* "device id" per CAN */
49 __le32 ser_no; /* S/N */
50 __le32 flags; /* special functions */
51
52 /* extended data when type == PCAN_USBFD_TYPE_EXT */
53 u8 cmd_out_ep; /* ep for cmd */
54 u8 cmd_in_ep; /* ep for replies */
55 u8 data_out_ep[2]; /* ep for CANx TX */
56 u8 data_in_ep; /* ep for CAN RX */
57 u8 dummy[3];
58 };
59
60 /* handle device specific info used by the netdevices */
61 struct pcan_usb_fd_if {
62 struct peak_usb_device *dev[PCAN_USB_MAX_CHANNEL];
63 struct pcan_ufd_fw_info fw_info;
64 struct peak_time_ref time_ref;
65 int cm_ignore_count;
66 int dev_opened_count;
67 };
68
69 /* device information */
70 struct pcan_usb_fd_device {
71 struct peak_usb_device dev;
72 struct can_berr_counter bec;
73 struct pcan_usb_fd_if *usb_if;
74 u8 *cmd_buffer_addr;
75 };
76
77 /* Extended USB commands (non uCAN commands) */
78
79 /* Clock Modes command */
80 #define PCAN_UFD_CMD_CLK_SET 0x80
81
82 #define PCAN_UFD_CLK_80MHZ 0x0
83 #define PCAN_UFD_CLK_60MHZ 0x1
84 #define PCAN_UFD_CLK_40MHZ 0x2
85 #define PCAN_UFD_CLK_30MHZ 0x3
86 #define PCAN_UFD_CLK_24MHZ 0x4
87 #define PCAN_UFD_CLK_20MHZ 0x5
88 #define PCAN_UFD_CLK_DEF PCAN_UFD_CLK_80MHZ
89
90 struct __packed pcan_ufd_clock {
91 __le16 opcode_channel;
92
93 u8 mode;
94 u8 unused[5];
95 };
96
97 /* LED control command */
98 #define PCAN_UFD_CMD_LED_SET 0x86
99
100 #define PCAN_UFD_LED_DEV 0x00
101 #define PCAN_UFD_LED_FAST 0x01
102 #define PCAN_UFD_LED_SLOW 0x02
103 #define PCAN_UFD_LED_ON 0x03
104 #define PCAN_UFD_LED_OFF 0x04
105 #define PCAN_UFD_LED_DEF PCAN_UFD_LED_DEV
106
107 struct __packed pcan_ufd_led {
108 __le16 opcode_channel;
109
110 u8 mode;
111 u8 unused[5];
112 };
113
114 /* Extended usage of uCAN commands CMD_xxx_xx_OPTION for PCAN-USB Pro FD */
115 #define PCAN_UFD_FLTEXT_CALIBRATION 0x8000
116
117 struct __packed pcan_ufd_options {
118 __le16 opcode_channel;
119
120 __le16 ucan_mask;
121 u16 unused;
122 __le16 usb_mask;
123 };
124
125 /* Extended usage of uCAN messages for PCAN-USB Pro FD */
126 #define PCAN_UFD_MSG_CALIBRATION 0x100
127
128 struct __packed pcan_ufd_ts_msg {
129 __le16 size;
130 __le16 type;
131 __le32 ts_low;
132 __le32 ts_high;
133 __le16 usb_frame_index;
134 u16 unused;
135 };
136
137 #define PCAN_UFD_MSG_OVERRUN 0x101
138
139 #define PCAN_UFD_OVMSG_CHANNEL(o) ((o)->channel & 0xf)
140
141 struct __packed pcan_ufd_ovr_msg {
142 __le16 size;
143 __le16 type;
144 __le32 ts_low;
145 __le32 ts_high;
146 u8 channel;
147 u8 unused[3];
148 };
149
pufd_omsg_get_channel(struct pcan_ufd_ovr_msg * om)150 static inline int pufd_omsg_get_channel(struct pcan_ufd_ovr_msg *om)
151 {
152 return om->channel & 0xf;
153 }
154
155 /* Clock mode frequency values */
156 static const u32 pcan_usb_fd_clk_freq[6] = {
157 [PCAN_UFD_CLK_80MHZ] = 80000000,
158 [PCAN_UFD_CLK_60MHZ] = 60000000,
159 [PCAN_UFD_CLK_40MHZ] = 40000000,
160 [PCAN_UFD_CLK_30MHZ] = 30000000,
161 [PCAN_UFD_CLK_24MHZ] = 24000000,
162 [PCAN_UFD_CLK_20MHZ] = 20000000
163 };
164
165 /* return a device USB interface */
166 static inline
pcan_usb_fd_dev_if(struct peak_usb_device * dev)167 struct pcan_usb_fd_if *pcan_usb_fd_dev_if(struct peak_usb_device *dev)
168 {
169 struct pcan_usb_fd_device *pdev =
170 container_of(dev, struct pcan_usb_fd_device, dev);
171 return pdev->usb_if;
172 }
173
174 /* return a device USB commands buffer */
pcan_usb_fd_cmd_buffer(struct peak_usb_device * dev)175 static inline void *pcan_usb_fd_cmd_buffer(struct peak_usb_device *dev)
176 {
177 struct pcan_usb_fd_device *pdev =
178 container_of(dev, struct pcan_usb_fd_device, dev);
179 return pdev->cmd_buffer_addr;
180 }
181
182 /* send PCAN-USB Pro FD commands synchronously */
pcan_usb_fd_send_cmd(struct peak_usb_device * dev,void * cmd_tail)183 static int pcan_usb_fd_send_cmd(struct peak_usb_device *dev, void *cmd_tail)
184 {
185 struct pcan_usb_fd_device *pdev =
186 container_of(dev, struct pcan_usb_fd_device, dev);
187 struct pcan_ufd_fw_info *fw_info = &pdev->usb_if->fw_info;
188 void *cmd_head = pcan_usb_fd_cmd_buffer(dev);
189 int err = 0;
190 u8 *packet_ptr;
191 int packet_len;
192 ptrdiff_t cmd_len;
193
194 /* usb device unregistered? */
195 if (!(dev->state & PCAN_USB_STATE_CONNECTED))
196 return 0;
197
198 /* if a packet is not filled completely by commands, the command list
199 * is terminated with an "end of collection" record.
200 */
201 cmd_len = cmd_tail - cmd_head;
202 if (cmd_len <= (PCAN_UFD_CMD_BUFFER_SIZE - sizeof(u64))) {
203 memset(cmd_tail, 0xff, sizeof(u64));
204 cmd_len += sizeof(u64);
205 }
206
207 packet_ptr = cmd_head;
208 packet_len = cmd_len;
209
210 /* firmware is not able to re-assemble 512 bytes buffer in full-speed */
211 if (unlikely(dev->udev->speed != USB_SPEED_HIGH))
212 packet_len = min(packet_len, PCAN_UFD_LOSPD_PKT_SIZE);
213
214 do {
215 err = usb_bulk_msg(dev->udev,
216 usb_sndbulkpipe(dev->udev,
217 fw_info->cmd_out_ep),
218 packet_ptr, packet_len,
219 NULL, PCAN_UFD_CMD_TIMEOUT_MS);
220 if (err) {
221 netdev_err(dev->netdev,
222 "sending command failure: %d\n", err);
223 break;
224 }
225
226 packet_ptr += packet_len;
227 cmd_len -= packet_len;
228
229 if (cmd_len < PCAN_UFD_LOSPD_PKT_SIZE)
230 packet_len = cmd_len;
231
232 } while (packet_len > 0);
233
234 return err;
235 }
236
237 /* build the commands list in the given buffer, to enter operational mode */
pcan_usb_fd_build_restart_cmd(struct peak_usb_device * dev,u8 * buf)238 static int pcan_usb_fd_build_restart_cmd(struct peak_usb_device *dev, u8 *buf)
239 {
240 struct pucan_wr_err_cnt *prc;
241 struct pucan_command *cmd;
242 u8 *pc = buf;
243
244 /* 1st, reset error counters: */
245 prc = (struct pucan_wr_err_cnt *)pc;
246 prc->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
247 PUCAN_CMD_WR_ERR_CNT);
248
249 /* select both counters */
250 prc->sel_mask = cpu_to_le16(PUCAN_WRERRCNT_TE|PUCAN_WRERRCNT_RE);
251
252 /* and reset their values */
253 prc->tx_counter = 0;
254 prc->rx_counter = 0;
255
256 /* moves the pointer forward */
257 pc += sizeof(struct pucan_wr_err_cnt);
258
259 /* add command to switch from ISO to non-ISO mode, if fw allows it */
260 if (dev->can.ctrlmode_supported & CAN_CTRLMODE_FD_NON_ISO) {
261 struct pucan_options *puo = (struct pucan_options *)pc;
262
263 puo->opcode_channel =
264 (dev->can.ctrlmode & CAN_CTRLMODE_FD_NON_ISO) ?
265 pucan_cmd_opcode_channel(dev->ctrl_idx,
266 PUCAN_CMD_CLR_DIS_OPTION) :
267 pucan_cmd_opcode_channel(dev->ctrl_idx,
268 PUCAN_CMD_SET_EN_OPTION);
269
270 puo->options = cpu_to_le16(PUCAN_OPTION_CANDFDISO);
271
272 /* to be sure that no other extended bits will be taken into
273 * account
274 */
275 puo->unused = 0;
276
277 /* moves the pointer forward */
278 pc += sizeof(struct pucan_options);
279 }
280
281 /* next, go back to operational mode */
282 cmd = (struct pucan_command *)pc;
283 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
284 (dev->can.ctrlmode & CAN_CTRLMODE_LISTENONLY) ?
285 PUCAN_CMD_LISTEN_ONLY_MODE :
286 PUCAN_CMD_NORMAL_MODE);
287 pc += sizeof(struct pucan_command);
288
289 return pc - buf;
290 }
291
292 /* set CAN bus on/off */
pcan_usb_fd_set_bus(struct peak_usb_device * dev,u8 onoff)293 static int pcan_usb_fd_set_bus(struct peak_usb_device *dev, u8 onoff)
294 {
295 u8 *pc = pcan_usb_fd_cmd_buffer(dev);
296 int l;
297
298 if (onoff) {
299 /* build the cmds list to enter operational mode */
300 l = pcan_usb_fd_build_restart_cmd(dev, pc);
301 } else {
302 struct pucan_command *cmd = (struct pucan_command *)pc;
303
304 /* build cmd to go back to reset mode */
305 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
306 PUCAN_CMD_RESET_MODE);
307 l = sizeof(struct pucan_command);
308 }
309
310 /* send the command */
311 return pcan_usb_fd_send_cmd(dev, pc + l);
312 }
313
314 /* set filtering masks:
315 *
316 * idx in range [0..63] selects a row #idx, all rows otherwise
317 * mask in range [0..0xffffffff] defines up to 32 CANIDs in the row(s)
318 *
319 * Each bit of this 64 x 32 bits array defines a CANID value:
320 *
321 * bit[i,j] = 1 implies that CANID=(i x 32)+j will be received, while
322 * bit[i,j] = 0 implies that CANID=(i x 32)+j will be discarded.
323 */
pcan_usb_fd_set_filter_std(struct peak_usb_device * dev,int idx,u32 mask)324 static int pcan_usb_fd_set_filter_std(struct peak_usb_device *dev, int idx,
325 u32 mask)
326 {
327 struct pucan_filter_std *cmd = pcan_usb_fd_cmd_buffer(dev);
328 int i, n;
329
330 /* select all rows when idx is out of range [0..63] */
331 if ((idx < 0) || (idx >= (1 << PUCAN_FLTSTD_ROW_IDX_BITS))) {
332 n = 1 << PUCAN_FLTSTD_ROW_IDX_BITS;
333 idx = 0;
334
335 /* select the row (and only the row) otherwise */
336 } else {
337 n = idx + 1;
338 }
339
340 for (i = idx; i < n; i++, cmd++) {
341 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
342 PUCAN_CMD_FILTER_STD);
343 cmd->idx = cpu_to_le16(i);
344 cmd->mask = cpu_to_le32(mask);
345 }
346
347 /* send the command */
348 return pcan_usb_fd_send_cmd(dev, cmd);
349 }
350
351 /* set/unset options
352 *
353 * onoff set(1)/unset(0) options
354 * mask each bit defines a kind of options to set/unset
355 */
pcan_usb_fd_set_options(struct peak_usb_device * dev,bool onoff,u16 ucan_mask,u16 usb_mask)356 static int pcan_usb_fd_set_options(struct peak_usb_device *dev,
357 bool onoff, u16 ucan_mask, u16 usb_mask)
358 {
359 struct pcan_ufd_options *cmd = pcan_usb_fd_cmd_buffer(dev);
360
361 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
362 (onoff) ? PUCAN_CMD_SET_EN_OPTION :
363 PUCAN_CMD_CLR_DIS_OPTION);
364
365 cmd->ucan_mask = cpu_to_le16(ucan_mask);
366 cmd->usb_mask = cpu_to_le16(usb_mask);
367
368 /* send the command */
369 return pcan_usb_fd_send_cmd(dev, ++cmd);
370 }
371
372 /* setup LED control */
pcan_usb_fd_set_can_led(struct peak_usb_device * dev,u8 led_mode)373 static int pcan_usb_fd_set_can_led(struct peak_usb_device *dev, u8 led_mode)
374 {
375 struct pcan_ufd_led *cmd = pcan_usb_fd_cmd_buffer(dev);
376
377 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
378 PCAN_UFD_CMD_LED_SET);
379 cmd->mode = led_mode;
380
381 /* send the command */
382 return pcan_usb_fd_send_cmd(dev, ++cmd);
383 }
384
385 /* set CAN clock domain */
pcan_usb_fd_set_clock_domain(struct peak_usb_device * dev,u8 clk_mode)386 static int pcan_usb_fd_set_clock_domain(struct peak_usb_device *dev,
387 u8 clk_mode)
388 {
389 struct pcan_ufd_clock *cmd = pcan_usb_fd_cmd_buffer(dev);
390
391 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
392 PCAN_UFD_CMD_CLK_SET);
393 cmd->mode = clk_mode;
394
395 /* send the command */
396 return pcan_usb_fd_send_cmd(dev, ++cmd);
397 }
398
399 /* set bittiming for CAN and CAN-FD header */
pcan_usb_fd_set_bittiming_slow(struct peak_usb_device * dev,struct can_bittiming * bt)400 static int pcan_usb_fd_set_bittiming_slow(struct peak_usb_device *dev,
401 struct can_bittiming *bt)
402 {
403 struct pucan_timing_slow *cmd = pcan_usb_fd_cmd_buffer(dev);
404
405 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
406 PUCAN_CMD_TIMING_SLOW);
407 cmd->sjw_t = PUCAN_TSLOW_SJW_T(bt->sjw - 1,
408 dev->can.ctrlmode & CAN_CTRLMODE_3_SAMPLES);
409
410 cmd->tseg2 = PUCAN_TSLOW_TSEG2(bt->phase_seg2 - 1);
411 cmd->tseg1 = PUCAN_TSLOW_TSEG1(bt->prop_seg + bt->phase_seg1 - 1);
412 cmd->brp = cpu_to_le16(PUCAN_TSLOW_BRP(bt->brp - 1));
413
414 cmd->ewl = 96; /* default */
415
416 /* send the command */
417 return pcan_usb_fd_send_cmd(dev, ++cmd);
418 }
419
420 /* set CAN-FD bittiming for data */
pcan_usb_fd_set_bittiming_fast(struct peak_usb_device * dev,struct can_bittiming * bt)421 static int pcan_usb_fd_set_bittiming_fast(struct peak_usb_device *dev,
422 struct can_bittiming *bt)
423 {
424 struct pucan_timing_fast *cmd = pcan_usb_fd_cmd_buffer(dev);
425
426 cmd->opcode_channel = pucan_cmd_opcode_channel(dev->ctrl_idx,
427 PUCAN_CMD_TIMING_FAST);
428 cmd->sjw = PUCAN_TFAST_SJW(bt->sjw - 1);
429 cmd->tseg2 = PUCAN_TFAST_TSEG2(bt->phase_seg2 - 1);
430 cmd->tseg1 = PUCAN_TFAST_TSEG1(bt->prop_seg + bt->phase_seg1 - 1);
431 cmd->brp = cpu_to_le16(PUCAN_TFAST_BRP(bt->brp - 1));
432
433 /* send the command */
434 return pcan_usb_fd_send_cmd(dev, ++cmd);
435 }
436
437 /* handle restart but in asynchronously way
438 * (uses PCAN-USB Pro code to complete asynchronous request)
439 */
pcan_usb_fd_restart_async(struct peak_usb_device * dev,struct urb * urb,u8 * buf)440 static int pcan_usb_fd_restart_async(struct peak_usb_device *dev,
441 struct urb *urb, u8 *buf)
442 {
443 struct pcan_usb_fd_device *pdev =
444 container_of(dev, struct pcan_usb_fd_device, dev);
445 struct pcan_ufd_fw_info *fw_info = &pdev->usb_if->fw_info;
446 u8 *pc = buf;
447
448 /* build the entire cmds list in the provided buffer, to go back into
449 * operational mode.
450 */
451 pc += pcan_usb_fd_build_restart_cmd(dev, pc);
452
453 /* add EOC */
454 memset(pc, 0xff, sizeof(struct pucan_command));
455 pc += sizeof(struct pucan_command);
456
457 /* complete the URB */
458 usb_fill_bulk_urb(urb, dev->udev,
459 usb_sndbulkpipe(dev->udev, fw_info->cmd_out_ep),
460 buf, pc - buf,
461 pcan_usb_pro_restart_complete, dev);
462
463 /* and submit it. */
464 return usb_submit_urb(urb, GFP_ATOMIC);
465 }
466
pcan_usb_fd_drv_loaded(struct peak_usb_device * dev,bool loaded)467 static int pcan_usb_fd_drv_loaded(struct peak_usb_device *dev, bool loaded)
468 {
469 struct pcan_usb_fd_device *pdev =
470 container_of(dev, struct pcan_usb_fd_device, dev);
471
472 pdev->cmd_buffer_addr[0] = 0;
473 pdev->cmd_buffer_addr[1] = !!loaded;
474
475 return pcan_usb_pro_send_req(dev,
476 PCAN_USBPRO_REQ_FCT,
477 PCAN_USBPRO_FCT_DRVLD,
478 pdev->cmd_buffer_addr,
479 PCAN_USBPRO_FCT_DRVLD_REQ_LEN);
480 }
481
pcan_usb_fd_decode_canmsg(struct pcan_usb_fd_if * usb_if,struct pucan_msg * rx_msg)482 static int pcan_usb_fd_decode_canmsg(struct pcan_usb_fd_if *usb_if,
483 struct pucan_msg *rx_msg)
484 {
485 struct pucan_rx_msg *rm = (struct pucan_rx_msg *)rx_msg;
486 struct peak_usb_device *dev;
487 struct net_device *netdev;
488 struct canfd_frame *cfd;
489 struct sk_buff *skb;
490 const u16 rx_msg_flags = le16_to_cpu(rm->flags);
491
492 if (pucan_msg_get_channel(rm) >= ARRAY_SIZE(usb_if->dev))
493 return -ENOMEM;
494
495 dev = usb_if->dev[pucan_msg_get_channel(rm)];
496 netdev = dev->netdev;
497
498 if (rx_msg_flags & PUCAN_MSG_EXT_DATA_LEN) {
499 /* CANFD frame case */
500 skb = alloc_canfd_skb(netdev, &cfd);
501 if (!skb)
502 return -ENOMEM;
503
504 if (rx_msg_flags & PUCAN_MSG_BITRATE_SWITCH)
505 cfd->flags |= CANFD_BRS;
506
507 if (rx_msg_flags & PUCAN_MSG_ERROR_STATE_IND)
508 cfd->flags |= CANFD_ESI;
509
510 cfd->len = can_fd_dlc2len(pucan_msg_get_dlc(rm));
511 } else {
512 /* CAN 2.0 frame case */
513 skb = alloc_can_skb(netdev, (struct can_frame **)&cfd);
514 if (!skb)
515 return -ENOMEM;
516
517 can_frame_set_cc_len((struct can_frame *)cfd,
518 pucan_msg_get_dlc(rm),
519 dev->can.ctrlmode);
520 }
521
522 cfd->can_id = le32_to_cpu(rm->can_id);
523
524 if (rx_msg_flags & PUCAN_MSG_EXT_ID)
525 cfd->can_id |= CAN_EFF_FLAG;
526
527 if (rx_msg_flags & PUCAN_MSG_RTR) {
528 cfd->can_id |= CAN_RTR_FLAG;
529 } else {
530 memcpy(cfd->data, rm->d, cfd->len);
531 netdev->stats.rx_bytes += cfd->len;
532 }
533 netdev->stats.rx_packets++;
534
535 peak_usb_netif_rx_64(skb, le32_to_cpu(rm->ts_low),
536 le32_to_cpu(rm->ts_high));
537
538 return 0;
539 }
540
541 /* handle uCAN status message */
pcan_usb_fd_decode_status(struct pcan_usb_fd_if * usb_if,struct pucan_msg * rx_msg)542 static int pcan_usb_fd_decode_status(struct pcan_usb_fd_if *usb_if,
543 struct pucan_msg *rx_msg)
544 {
545 struct pucan_status_msg *sm = (struct pucan_status_msg *)rx_msg;
546 struct pcan_usb_fd_device *pdev;
547 enum can_state new_state = CAN_STATE_ERROR_ACTIVE;
548 enum can_state rx_state, tx_state;
549 struct peak_usb_device *dev;
550 struct net_device *netdev;
551 struct can_frame *cf;
552 struct sk_buff *skb;
553
554 if (pucan_stmsg_get_channel(sm) >= ARRAY_SIZE(usb_if->dev))
555 return -ENOMEM;
556
557 dev = usb_if->dev[pucan_stmsg_get_channel(sm)];
558 pdev = container_of(dev, struct pcan_usb_fd_device, dev);
559 netdev = dev->netdev;
560
561 /* nothing should be sent while in BUS_OFF state */
562 if (dev->can.state == CAN_STATE_BUS_OFF)
563 return 0;
564
565 if (sm->channel_p_w_b & PUCAN_BUS_BUSOFF) {
566 new_state = CAN_STATE_BUS_OFF;
567 } else if (sm->channel_p_w_b & PUCAN_BUS_PASSIVE) {
568 new_state = CAN_STATE_ERROR_PASSIVE;
569 } else if (sm->channel_p_w_b & PUCAN_BUS_WARNING) {
570 new_state = CAN_STATE_ERROR_WARNING;
571 } else {
572 /* back to (or still in) ERROR_ACTIVE state */
573 new_state = CAN_STATE_ERROR_ACTIVE;
574 pdev->bec.txerr = 0;
575 pdev->bec.rxerr = 0;
576 }
577
578 /* state hasn't changed */
579 if (new_state == dev->can.state)
580 return 0;
581
582 /* handle bus state change */
583 tx_state = (pdev->bec.txerr >= pdev->bec.rxerr) ? new_state : 0;
584 rx_state = (pdev->bec.txerr <= pdev->bec.rxerr) ? new_state : 0;
585
586 /* allocate an skb to store the error frame */
587 skb = alloc_can_err_skb(netdev, &cf);
588 can_change_state(netdev, cf, tx_state, rx_state);
589
590 /* things must be done even in case of OOM */
591 if (new_state == CAN_STATE_BUS_OFF)
592 can_bus_off(netdev);
593
594 if (!skb)
595 return -ENOMEM;
596
597 peak_usb_netif_rx_64(skb, le32_to_cpu(sm->ts_low),
598 le32_to_cpu(sm->ts_high));
599
600 return 0;
601 }
602
603 /* handle uCAN error message */
pcan_usb_fd_decode_error(struct pcan_usb_fd_if * usb_if,struct pucan_msg * rx_msg)604 static int pcan_usb_fd_decode_error(struct pcan_usb_fd_if *usb_if,
605 struct pucan_msg *rx_msg)
606 {
607 struct pucan_error_msg *er = (struct pucan_error_msg *)rx_msg;
608 struct pcan_usb_fd_device *pdev;
609 struct peak_usb_device *dev;
610
611 if (pucan_ermsg_get_channel(er) >= ARRAY_SIZE(usb_if->dev))
612 return -EINVAL;
613
614 dev = usb_if->dev[pucan_ermsg_get_channel(er)];
615 pdev = container_of(dev, struct pcan_usb_fd_device, dev);
616
617 /* keep a trace of tx and rx error counters for later use */
618 pdev->bec.txerr = er->tx_err_cnt;
619 pdev->bec.rxerr = er->rx_err_cnt;
620
621 return 0;
622 }
623
624 /* handle uCAN overrun message */
pcan_usb_fd_decode_overrun(struct pcan_usb_fd_if * usb_if,struct pucan_msg * rx_msg)625 static int pcan_usb_fd_decode_overrun(struct pcan_usb_fd_if *usb_if,
626 struct pucan_msg *rx_msg)
627 {
628 struct pcan_ufd_ovr_msg *ov = (struct pcan_ufd_ovr_msg *)rx_msg;
629 struct peak_usb_device *dev;
630 struct net_device *netdev;
631 struct can_frame *cf;
632 struct sk_buff *skb;
633
634 if (pufd_omsg_get_channel(ov) >= ARRAY_SIZE(usb_if->dev))
635 return -EINVAL;
636
637 dev = usb_if->dev[pufd_omsg_get_channel(ov)];
638 netdev = dev->netdev;
639
640 /* allocate an skb to store the error frame */
641 skb = alloc_can_err_skb(netdev, &cf);
642 if (!skb)
643 return -ENOMEM;
644
645 cf->can_id |= CAN_ERR_CRTL;
646 cf->data[1] |= CAN_ERR_CRTL_RX_OVERFLOW;
647
648 peak_usb_netif_rx_64(skb, le32_to_cpu(ov->ts_low),
649 le32_to_cpu(ov->ts_high));
650
651 netdev->stats.rx_over_errors++;
652 netdev->stats.rx_errors++;
653
654 return 0;
655 }
656
657 /* handle USB calibration message */
pcan_usb_fd_decode_ts(struct pcan_usb_fd_if * usb_if,struct pucan_msg * rx_msg)658 static void pcan_usb_fd_decode_ts(struct pcan_usb_fd_if *usb_if,
659 struct pucan_msg *rx_msg)
660 {
661 struct pcan_ufd_ts_msg *ts = (struct pcan_ufd_ts_msg *)rx_msg;
662
663 /* should wait until clock is stabilized */
664 if (usb_if->cm_ignore_count > 0)
665 usb_if->cm_ignore_count--;
666 else
667 peak_usb_set_ts_now(&usb_if->time_ref, le32_to_cpu(ts->ts_low));
668 }
669
670 /* callback for bulk IN urb */
pcan_usb_fd_decode_buf(struct peak_usb_device * dev,struct urb * urb)671 static int pcan_usb_fd_decode_buf(struct peak_usb_device *dev, struct urb *urb)
672 {
673 struct pcan_usb_fd_if *usb_if = pcan_usb_fd_dev_if(dev);
674 struct net_device *netdev = dev->netdev;
675 struct pucan_msg *rx_msg;
676 u8 *msg_ptr, *msg_end;
677 int err = 0;
678
679 /* loop reading all the records from the incoming message */
680 msg_ptr = urb->transfer_buffer;
681 msg_end = urb->transfer_buffer + urb->actual_length;
682 for (; msg_ptr < msg_end;) {
683 u16 rx_msg_type, rx_msg_size;
684
685 rx_msg = (struct pucan_msg *)msg_ptr;
686 if (!rx_msg->size) {
687 /* null packet found: end of list */
688 break;
689 }
690
691 rx_msg_size = le16_to_cpu(rx_msg->size);
692 rx_msg_type = le16_to_cpu(rx_msg->type);
693
694 /* check if the record goes out of current packet */
695 if (msg_ptr + rx_msg_size > msg_end) {
696 netdev_err(netdev,
697 "got frag rec: should inc usb rx buf sze\n");
698 err = -EBADMSG;
699 break;
700 }
701
702 switch (rx_msg_type) {
703 case PUCAN_MSG_CAN_RX:
704 err = pcan_usb_fd_decode_canmsg(usb_if, rx_msg);
705 if (err < 0)
706 goto fail;
707 break;
708
709 case PCAN_UFD_MSG_CALIBRATION:
710 pcan_usb_fd_decode_ts(usb_if, rx_msg);
711 break;
712
713 case PUCAN_MSG_ERROR:
714 err = pcan_usb_fd_decode_error(usb_if, rx_msg);
715 if (err < 0)
716 goto fail;
717 break;
718
719 case PUCAN_MSG_STATUS:
720 err = pcan_usb_fd_decode_status(usb_if, rx_msg);
721 if (err < 0)
722 goto fail;
723 break;
724
725 case PCAN_UFD_MSG_OVERRUN:
726 err = pcan_usb_fd_decode_overrun(usb_if, rx_msg);
727 if (err < 0)
728 goto fail;
729 break;
730
731 default:
732 netdev_err(netdev,
733 "unhandled msg type 0x%02x (%d): ignored\n",
734 rx_msg_type, rx_msg_type);
735 break;
736 }
737
738 msg_ptr += rx_msg_size;
739 }
740
741 fail:
742 if (err)
743 pcan_dump_mem("received msg",
744 urb->transfer_buffer, urb->actual_length);
745 return err;
746 }
747
748 /* CAN/CANFD frames encoding callback */
pcan_usb_fd_encode_msg(struct peak_usb_device * dev,struct sk_buff * skb,u8 * obuf,size_t * size)749 static int pcan_usb_fd_encode_msg(struct peak_usb_device *dev,
750 struct sk_buff *skb, u8 *obuf, size_t *size)
751 {
752 struct pucan_tx_msg *tx_msg = (struct pucan_tx_msg *)obuf;
753 struct canfd_frame *cfd = (struct canfd_frame *)skb->data;
754 u16 tx_msg_size, tx_msg_flags;
755 u8 dlc;
756
757 if (cfd->len > CANFD_MAX_DLEN)
758 return -EINVAL;
759
760 tx_msg_size = ALIGN(sizeof(struct pucan_tx_msg) + cfd->len, 4);
761 tx_msg->size = cpu_to_le16(tx_msg_size);
762 tx_msg->type = cpu_to_le16(PUCAN_MSG_CAN_TX);
763
764 tx_msg_flags = 0;
765 if (cfd->can_id & CAN_EFF_FLAG) {
766 tx_msg_flags |= PUCAN_MSG_EXT_ID;
767 tx_msg->can_id = cpu_to_le32(cfd->can_id & CAN_EFF_MASK);
768 } else {
769 tx_msg->can_id = cpu_to_le32(cfd->can_id & CAN_SFF_MASK);
770 }
771
772 if (can_is_canfd_skb(skb)) {
773 /* considering a CANFD frame */
774 dlc = can_fd_len2dlc(cfd->len);
775
776 tx_msg_flags |= PUCAN_MSG_EXT_DATA_LEN;
777
778 if (cfd->flags & CANFD_BRS)
779 tx_msg_flags |= PUCAN_MSG_BITRATE_SWITCH;
780
781 if (cfd->flags & CANFD_ESI)
782 tx_msg_flags |= PUCAN_MSG_ERROR_STATE_IND;
783 } else {
784 /* CAND 2.0 frames */
785 dlc = can_get_cc_dlc((struct can_frame *)cfd,
786 dev->can.ctrlmode);
787
788 if (cfd->can_id & CAN_RTR_FLAG)
789 tx_msg_flags |= PUCAN_MSG_RTR;
790 }
791
792 /* Single-Shot frame */
793 if (dev->can.ctrlmode & CAN_CTRLMODE_ONE_SHOT)
794 tx_msg_flags |= PUCAN_MSG_SINGLE_SHOT;
795
796 tx_msg->flags = cpu_to_le16(tx_msg_flags);
797 tx_msg->channel_dlc = PUCAN_MSG_CHANNEL_DLC(dev->ctrl_idx, dlc);
798 memcpy(tx_msg->d, cfd->data, cfd->len);
799
800 /* add null size message to tag the end (messages are 32-bits aligned)
801 */
802 tx_msg = (struct pucan_tx_msg *)(obuf + tx_msg_size);
803
804 tx_msg->size = 0;
805
806 /* set the whole size of the USB packet to send */
807 *size = tx_msg_size + sizeof(u32);
808
809 return 0;
810 }
811
812 /* start the interface (last chance before set bus on) */
pcan_usb_fd_start(struct peak_usb_device * dev)813 static int pcan_usb_fd_start(struct peak_usb_device *dev)
814 {
815 struct pcan_usb_fd_device *pdev =
816 container_of(dev, struct pcan_usb_fd_device, dev);
817 int err;
818
819 /* set filter mode: all acceptance */
820 err = pcan_usb_fd_set_filter_std(dev, -1, 0xffffffff);
821 if (err)
822 return err;
823
824 /* opening first device: */
825 if (pdev->usb_if->dev_opened_count == 0) {
826 /* reset time_ref */
827 peak_usb_init_time_ref(&pdev->usb_if->time_ref,
828 &pcan_usb_pro_fd);
829
830 /* enable USB calibration messages */
831 err = pcan_usb_fd_set_options(dev, 1,
832 PUCAN_OPTION_ERROR,
833 PCAN_UFD_FLTEXT_CALIBRATION);
834 }
835
836 pdev->usb_if->dev_opened_count++;
837
838 /* reset cached error counters */
839 pdev->bec.txerr = 0;
840 pdev->bec.rxerr = 0;
841
842 return err;
843 }
844
845 /* socket callback used to copy berr counters values received through USB */
pcan_usb_fd_get_berr_counter(const struct net_device * netdev,struct can_berr_counter * bec)846 static int pcan_usb_fd_get_berr_counter(const struct net_device *netdev,
847 struct can_berr_counter *bec)
848 {
849 struct peak_usb_device *dev = netdev_priv(netdev);
850 struct pcan_usb_fd_device *pdev =
851 container_of(dev, struct pcan_usb_fd_device, dev);
852
853 *bec = pdev->bec;
854
855 /* must return 0 */
856 return 0;
857 }
858
859 /* probe function for all PCAN-USB FD family usb interfaces */
pcan_usb_fd_probe(struct usb_interface * intf)860 static int pcan_usb_fd_probe(struct usb_interface *intf)
861 {
862 struct usb_host_interface *iface_desc = &intf->altsetting[0];
863
864 /* CAN interface is always interface #0 */
865 return iface_desc->desc.bInterfaceNumber;
866 }
867
868 /* stop interface (last chance before set bus off) */
pcan_usb_fd_stop(struct peak_usb_device * dev)869 static int pcan_usb_fd_stop(struct peak_usb_device *dev)
870 {
871 struct pcan_usb_fd_device *pdev =
872 container_of(dev, struct pcan_usb_fd_device, dev);
873
874 /* turn off special msgs for that interface if no other dev opened */
875 if (pdev->usb_if->dev_opened_count == 1)
876 pcan_usb_fd_set_options(dev, 0,
877 PUCAN_OPTION_ERROR,
878 PCAN_UFD_FLTEXT_CALIBRATION);
879 pdev->usb_if->dev_opened_count--;
880
881 return 0;
882 }
883
884 /* called when probing, to initialize a device object */
pcan_usb_fd_init(struct peak_usb_device * dev)885 static int pcan_usb_fd_init(struct peak_usb_device *dev)
886 {
887 struct pcan_usb_fd_device *pdev =
888 container_of(dev, struct pcan_usb_fd_device, dev);
889 struct pcan_ufd_fw_info *fw_info;
890 int i, err = -ENOMEM;
891
892 /* do this for 1st channel only */
893 if (!dev->prev_siblings) {
894 /* allocate netdevices common structure attached to first one */
895 pdev->usb_if = kzalloc(sizeof(*pdev->usb_if), GFP_KERNEL);
896 if (!pdev->usb_if)
897 goto err_out;
898
899 /* allocate command buffer once for all for the interface */
900 pdev->cmd_buffer_addr = kzalloc(PCAN_UFD_CMD_BUFFER_SIZE,
901 GFP_KERNEL);
902 if (!pdev->cmd_buffer_addr)
903 goto err_out_1;
904
905 /* number of ts msgs to ignore before taking one into account */
906 pdev->usb_if->cm_ignore_count = 5;
907
908 fw_info = &pdev->usb_if->fw_info;
909
910 err = pcan_usb_pro_send_req(dev, PCAN_USBPRO_REQ_INFO,
911 PCAN_USBPRO_INFO_FW,
912 fw_info,
913 sizeof(*fw_info));
914 if (err) {
915 dev_err(dev->netdev->dev.parent,
916 "unable to read %s firmware info (err %d)\n",
917 dev->adapter->name, err);
918 goto err_out_2;
919 }
920
921 /* explicit use of dev_xxx() instead of netdev_xxx() here:
922 * information displayed are related to the device itself, not
923 * to the canx (channel) device.
924 */
925 dev_info(dev->netdev->dev.parent,
926 "PEAK-System %s v%u fw v%u.%u.%u (%u channels)\n",
927 dev->adapter->name, fw_info->hw_version,
928 fw_info->fw_version[0],
929 fw_info->fw_version[1],
930 fw_info->fw_version[2],
931 dev->adapter->ctrl_count);
932
933 /* check for ability to switch between ISO/non-ISO modes */
934 if (fw_info->fw_version[0] >= 2) {
935 /* firmware >= 2.x supports ISO/non-ISO switching */
936 dev->can.ctrlmode_supported |= CAN_CTRLMODE_FD_NON_ISO;
937 } else {
938 /* firmware < 2.x only supports fixed(!) non-ISO */
939 dev->can.ctrlmode |= CAN_CTRLMODE_FD_NON_ISO;
940 }
941
942 /* if vendor rsp is of type 2, then it contains EP numbers to
943 * use for cmds pipes. If not, then default EP should be used.
944 */
945 if (fw_info->type != cpu_to_le16(PCAN_USBFD_TYPE_EXT)) {
946 fw_info->cmd_out_ep = PCAN_USBPRO_EP_CMDOUT;
947 fw_info->cmd_in_ep = PCAN_USBPRO_EP_CMDIN;
948 }
949
950 /* tell the hardware the can driver is running */
951 err = pcan_usb_fd_drv_loaded(dev, 1);
952 if (err) {
953 dev_err(dev->netdev->dev.parent,
954 "unable to tell %s driver is loaded (err %d)\n",
955 dev->adapter->name, err);
956 goto err_out_2;
957 }
958 } else {
959 /* otherwise, simply copy previous sibling's values */
960 struct pcan_usb_fd_device *ppdev =
961 container_of(dev->prev_siblings,
962 struct pcan_usb_fd_device, dev);
963
964 pdev->usb_if = ppdev->usb_if;
965 pdev->cmd_buffer_addr = ppdev->cmd_buffer_addr;
966
967 /* do a copy of the ctrlmode[_supported] too */
968 dev->can.ctrlmode = ppdev->dev.can.ctrlmode;
969 dev->can.ctrlmode_supported = ppdev->dev.can.ctrlmode_supported;
970
971 fw_info = &pdev->usb_if->fw_info;
972 }
973
974 pdev->usb_if->dev[dev->ctrl_idx] = dev;
975 dev->device_number =
976 le32_to_cpu(pdev->usb_if->fw_info.dev_id[dev->ctrl_idx]);
977
978 /* if vendor rsp is of type 2, then it contains EP numbers to
979 * use for data pipes. If not, then statically defined EP are used
980 * (see peak_usb_create_dev()).
981 */
982 if (fw_info->type == cpu_to_le16(PCAN_USBFD_TYPE_EXT)) {
983 dev->ep_msg_in = fw_info->data_in_ep;
984 dev->ep_msg_out = fw_info->data_out_ep[dev->ctrl_idx];
985 }
986
987 /* set clock domain */
988 for (i = 0; i < ARRAY_SIZE(pcan_usb_fd_clk_freq); i++)
989 if (dev->adapter->clock.freq == pcan_usb_fd_clk_freq[i])
990 break;
991
992 if (i >= ARRAY_SIZE(pcan_usb_fd_clk_freq)) {
993 dev_warn(dev->netdev->dev.parent,
994 "incompatible clock frequencies\n");
995 err = -EINVAL;
996 goto err_out_2;
997 }
998
999 pcan_usb_fd_set_clock_domain(dev, i);
1000
1001 /* set LED in default state (end of init phase) */
1002 pcan_usb_fd_set_can_led(dev, PCAN_UFD_LED_DEF);
1003
1004 return 0;
1005
1006 err_out_2:
1007 kfree(pdev->cmd_buffer_addr);
1008 err_out_1:
1009 kfree(pdev->usb_if);
1010 err_out:
1011 return err;
1012 }
1013
1014 /* called when driver module is being unloaded */
pcan_usb_fd_exit(struct peak_usb_device * dev)1015 static void pcan_usb_fd_exit(struct peak_usb_device *dev)
1016 {
1017 struct pcan_usb_fd_device *pdev =
1018 container_of(dev, struct pcan_usb_fd_device, dev);
1019
1020 /* when rmmod called before unplug and if down, should reset things
1021 * before leaving
1022 */
1023 if (dev->can.state != CAN_STATE_STOPPED) {
1024 /* set bus off on the corresponding channel */
1025 pcan_usb_fd_set_bus(dev, 0);
1026 }
1027
1028 /* switch off corresponding CAN LEDs */
1029 pcan_usb_fd_set_can_led(dev, PCAN_UFD_LED_OFF);
1030
1031 /* if channel #0 (only) */
1032 if (dev->ctrl_idx == 0) {
1033 /* turn off calibration message if any device were opened */
1034 if (pdev->usb_if->dev_opened_count > 0)
1035 pcan_usb_fd_set_options(dev, 0,
1036 PUCAN_OPTION_ERROR,
1037 PCAN_UFD_FLTEXT_CALIBRATION);
1038
1039 /* tell USB adapter that the driver is being unloaded */
1040 pcan_usb_fd_drv_loaded(dev, 0);
1041 }
1042 }
1043
1044 /* called when the USB adapter is unplugged */
pcan_usb_fd_free(struct peak_usb_device * dev)1045 static void pcan_usb_fd_free(struct peak_usb_device *dev)
1046 {
1047 /* last device: can free shared objects now */
1048 if (!dev->prev_siblings && !dev->next_siblings) {
1049 struct pcan_usb_fd_device *pdev =
1050 container_of(dev, struct pcan_usb_fd_device, dev);
1051
1052 /* free commands buffer */
1053 kfree(pdev->cmd_buffer_addr);
1054
1055 /* free usb interface object */
1056 kfree(pdev->usb_if);
1057 }
1058 }
1059
1060 /* blink LED's */
pcan_usb_fd_set_phys_id(struct net_device * netdev,enum ethtool_phys_id_state state)1061 static int pcan_usb_fd_set_phys_id(struct net_device *netdev,
1062 enum ethtool_phys_id_state state)
1063 {
1064 struct peak_usb_device *dev = netdev_priv(netdev);
1065 int err = 0;
1066
1067 switch (state) {
1068 case ETHTOOL_ID_ACTIVE:
1069 err = pcan_usb_fd_set_can_led(dev, PCAN_UFD_LED_FAST);
1070 break;
1071 case ETHTOOL_ID_INACTIVE:
1072 err = pcan_usb_fd_set_can_led(dev, PCAN_UFD_LED_DEF);
1073 break;
1074 default:
1075 break;
1076 }
1077
1078 return err;
1079 }
1080
1081 static const struct ethtool_ops pcan_usb_fd_ethtool_ops = {
1082 .set_phys_id = pcan_usb_fd_set_phys_id,
1083 .get_ts_info = pcan_get_ts_info,
1084 };
1085
1086 /* describes the PCAN-USB FD adapter */
1087 static const struct can_bittiming_const pcan_usb_fd_const = {
1088 .name = "pcan_usb_fd",
1089 .tseg1_min = 1,
1090 .tseg1_max = (1 << PUCAN_TSLOW_TSGEG1_BITS),
1091 .tseg2_min = 1,
1092 .tseg2_max = (1 << PUCAN_TSLOW_TSGEG2_BITS),
1093 .sjw_max = (1 << PUCAN_TSLOW_SJW_BITS),
1094 .brp_min = 1,
1095 .brp_max = (1 << PUCAN_TSLOW_BRP_BITS),
1096 .brp_inc = 1,
1097 };
1098
1099 static const struct can_bittiming_const pcan_usb_fd_data_const = {
1100 .name = "pcan_usb_fd",
1101 .tseg1_min = 1,
1102 .tseg1_max = (1 << PUCAN_TFAST_TSGEG1_BITS),
1103 .tseg2_min = 1,
1104 .tseg2_max = (1 << PUCAN_TFAST_TSGEG2_BITS),
1105 .sjw_max = (1 << PUCAN_TFAST_SJW_BITS),
1106 .brp_min = 1,
1107 .brp_max = (1 << PUCAN_TFAST_BRP_BITS),
1108 .brp_inc = 1,
1109 };
1110
1111 const struct peak_usb_adapter pcan_usb_fd = {
1112 .name = "PCAN-USB FD",
1113 .device_id = PCAN_USBFD_PRODUCT_ID,
1114 .ctrl_count = PCAN_USBFD_CHANNEL_COUNT,
1115 .ctrlmode_supported = CAN_CTRLMODE_FD |
1116 CAN_CTRLMODE_3_SAMPLES | CAN_CTRLMODE_LISTENONLY |
1117 CAN_CTRLMODE_ONE_SHOT | CAN_CTRLMODE_CC_LEN8_DLC,
1118 .clock = {
1119 .freq = PCAN_UFD_CRYSTAL_HZ,
1120 },
1121 .bittiming_const = &pcan_usb_fd_const,
1122 .data_bittiming_const = &pcan_usb_fd_data_const,
1123
1124 /* size of device private data */
1125 .sizeof_dev_private = sizeof(struct pcan_usb_fd_device),
1126
1127 .ethtool_ops = &pcan_usb_fd_ethtool_ops,
1128
1129 /* timestamps usage */
1130 .ts_used_bits = 32,
1131 .us_per_ts_scale = 1, /* us = (ts * scale) >> shift */
1132 .us_per_ts_shift = 0,
1133
1134 /* give here messages in/out endpoints */
1135 .ep_msg_in = PCAN_USBPRO_EP_MSGIN,
1136 .ep_msg_out = {PCAN_USBPRO_EP_MSGOUT_0},
1137
1138 /* size of rx/tx usb buffers */
1139 .rx_buffer_size = PCAN_UFD_RX_BUFFER_SIZE,
1140 .tx_buffer_size = PCAN_UFD_TX_BUFFER_SIZE,
1141
1142 /* device callbacks */
1143 .intf_probe = pcan_usb_fd_probe,
1144 .dev_init = pcan_usb_fd_init,
1145
1146 .dev_exit = pcan_usb_fd_exit,
1147 .dev_free = pcan_usb_fd_free,
1148 .dev_set_bus = pcan_usb_fd_set_bus,
1149 .dev_set_bittiming = pcan_usb_fd_set_bittiming_slow,
1150 .dev_set_data_bittiming = pcan_usb_fd_set_bittiming_fast,
1151 .dev_decode_buf = pcan_usb_fd_decode_buf,
1152 .dev_start = pcan_usb_fd_start,
1153 .dev_stop = pcan_usb_fd_stop,
1154 .dev_restart_async = pcan_usb_fd_restart_async,
1155 .dev_encode_msg = pcan_usb_fd_encode_msg,
1156
1157 .do_get_berr_counter = pcan_usb_fd_get_berr_counter,
1158 };
1159
1160 /* describes the PCAN-CHIP USB */
1161 static const struct can_bittiming_const pcan_usb_chip_const = {
1162 .name = "pcan_chip_usb",
1163 .tseg1_min = 1,
1164 .tseg1_max = (1 << PUCAN_TSLOW_TSGEG1_BITS),
1165 .tseg2_min = 1,
1166 .tseg2_max = (1 << PUCAN_TSLOW_TSGEG2_BITS),
1167 .sjw_max = (1 << PUCAN_TSLOW_SJW_BITS),
1168 .brp_min = 1,
1169 .brp_max = (1 << PUCAN_TSLOW_BRP_BITS),
1170 .brp_inc = 1,
1171 };
1172
1173 static const struct can_bittiming_const pcan_usb_chip_data_const = {
1174 .name = "pcan_chip_usb",
1175 .tseg1_min = 1,
1176 .tseg1_max = (1 << PUCAN_TFAST_TSGEG1_BITS),
1177 .tseg2_min = 1,
1178 .tseg2_max = (1 << PUCAN_TFAST_TSGEG2_BITS),
1179 .sjw_max = (1 << PUCAN_TFAST_SJW_BITS),
1180 .brp_min = 1,
1181 .brp_max = (1 << PUCAN_TFAST_BRP_BITS),
1182 .brp_inc = 1,
1183 };
1184
1185 const struct peak_usb_adapter pcan_usb_chip = {
1186 .name = "PCAN-Chip USB",
1187 .device_id = PCAN_USBCHIP_PRODUCT_ID,
1188 .ctrl_count = PCAN_USBFD_CHANNEL_COUNT,
1189 .ctrlmode_supported = CAN_CTRLMODE_FD |
1190 CAN_CTRLMODE_3_SAMPLES | CAN_CTRLMODE_LISTENONLY |
1191 CAN_CTRLMODE_ONE_SHOT | CAN_CTRLMODE_CC_LEN8_DLC,
1192 .clock = {
1193 .freq = PCAN_UFD_CRYSTAL_HZ,
1194 },
1195 .bittiming_const = &pcan_usb_chip_const,
1196 .data_bittiming_const = &pcan_usb_chip_data_const,
1197
1198 /* size of device private data */
1199 .sizeof_dev_private = sizeof(struct pcan_usb_fd_device),
1200
1201 .ethtool_ops = &pcan_usb_fd_ethtool_ops,
1202
1203 /* timestamps usage */
1204 .ts_used_bits = 32,
1205 .us_per_ts_scale = 1, /* us = (ts * scale) >> shift */
1206 .us_per_ts_shift = 0,
1207
1208 /* give here messages in/out endpoints */
1209 .ep_msg_in = PCAN_USBPRO_EP_MSGIN,
1210 .ep_msg_out = {PCAN_USBPRO_EP_MSGOUT_0},
1211
1212 /* size of rx/tx usb buffers */
1213 .rx_buffer_size = PCAN_UFD_RX_BUFFER_SIZE,
1214 .tx_buffer_size = PCAN_UFD_TX_BUFFER_SIZE,
1215
1216 /* device callbacks */
1217 .intf_probe = pcan_usb_pro_probe, /* same as PCAN-USB Pro */
1218 .dev_init = pcan_usb_fd_init,
1219
1220 .dev_exit = pcan_usb_fd_exit,
1221 .dev_free = pcan_usb_fd_free,
1222 .dev_set_bus = pcan_usb_fd_set_bus,
1223 .dev_set_bittiming = pcan_usb_fd_set_bittiming_slow,
1224 .dev_set_data_bittiming = pcan_usb_fd_set_bittiming_fast,
1225 .dev_decode_buf = pcan_usb_fd_decode_buf,
1226 .dev_start = pcan_usb_fd_start,
1227 .dev_stop = pcan_usb_fd_stop,
1228 .dev_restart_async = pcan_usb_fd_restart_async,
1229 .dev_encode_msg = pcan_usb_fd_encode_msg,
1230
1231 .do_get_berr_counter = pcan_usb_fd_get_berr_counter,
1232 };
1233
1234 /* describes the PCAN-USB Pro FD adapter */
1235 static const struct can_bittiming_const pcan_usb_pro_fd_const = {
1236 .name = "pcan_usb_pro_fd",
1237 .tseg1_min = 1,
1238 .tseg1_max = (1 << PUCAN_TSLOW_TSGEG1_BITS),
1239 .tseg2_min = 1,
1240 .tseg2_max = (1 << PUCAN_TSLOW_TSGEG2_BITS),
1241 .sjw_max = (1 << PUCAN_TSLOW_SJW_BITS),
1242 .brp_min = 1,
1243 .brp_max = (1 << PUCAN_TSLOW_BRP_BITS),
1244 .brp_inc = 1,
1245 };
1246
1247 static const struct can_bittiming_const pcan_usb_pro_fd_data_const = {
1248 .name = "pcan_usb_pro_fd",
1249 .tseg1_min = 1,
1250 .tseg1_max = (1 << PUCAN_TFAST_TSGEG1_BITS),
1251 .tseg2_min = 1,
1252 .tseg2_max = (1 << PUCAN_TFAST_TSGEG2_BITS),
1253 .sjw_max = (1 << PUCAN_TFAST_SJW_BITS),
1254 .brp_min = 1,
1255 .brp_max = (1 << PUCAN_TFAST_BRP_BITS),
1256 .brp_inc = 1,
1257 };
1258
1259 const struct peak_usb_adapter pcan_usb_pro_fd = {
1260 .name = "PCAN-USB Pro FD",
1261 .device_id = PCAN_USBPROFD_PRODUCT_ID,
1262 .ctrl_count = PCAN_USBPROFD_CHANNEL_COUNT,
1263 .ctrlmode_supported = CAN_CTRLMODE_FD |
1264 CAN_CTRLMODE_3_SAMPLES | CAN_CTRLMODE_LISTENONLY |
1265 CAN_CTRLMODE_ONE_SHOT | CAN_CTRLMODE_CC_LEN8_DLC,
1266 .clock = {
1267 .freq = PCAN_UFD_CRYSTAL_HZ,
1268 },
1269 .bittiming_const = &pcan_usb_pro_fd_const,
1270 .data_bittiming_const = &pcan_usb_pro_fd_data_const,
1271
1272 /* size of device private data */
1273 .sizeof_dev_private = sizeof(struct pcan_usb_fd_device),
1274
1275 .ethtool_ops = &pcan_usb_fd_ethtool_ops,
1276
1277 /* timestamps usage */
1278 .ts_used_bits = 32,
1279 .us_per_ts_scale = 1, /* us = (ts * scale) >> shift */
1280 .us_per_ts_shift = 0,
1281
1282 /* give here messages in/out endpoints */
1283 .ep_msg_in = PCAN_USBPRO_EP_MSGIN,
1284 .ep_msg_out = {PCAN_USBPRO_EP_MSGOUT_0, PCAN_USBPRO_EP_MSGOUT_1},
1285
1286 /* size of rx/tx usb buffers */
1287 .rx_buffer_size = PCAN_UFD_RX_BUFFER_SIZE,
1288 .tx_buffer_size = PCAN_UFD_TX_BUFFER_SIZE,
1289
1290 /* device callbacks */
1291 .intf_probe = pcan_usb_pro_probe, /* same as PCAN-USB Pro */
1292 .dev_init = pcan_usb_fd_init,
1293
1294 .dev_exit = pcan_usb_fd_exit,
1295 .dev_free = pcan_usb_fd_free,
1296 .dev_set_bus = pcan_usb_fd_set_bus,
1297 .dev_set_bittiming = pcan_usb_fd_set_bittiming_slow,
1298 .dev_set_data_bittiming = pcan_usb_fd_set_bittiming_fast,
1299 .dev_decode_buf = pcan_usb_fd_decode_buf,
1300 .dev_start = pcan_usb_fd_start,
1301 .dev_stop = pcan_usb_fd_stop,
1302 .dev_restart_async = pcan_usb_fd_restart_async,
1303 .dev_encode_msg = pcan_usb_fd_encode_msg,
1304
1305 .do_get_berr_counter = pcan_usb_fd_get_berr_counter,
1306 };
1307
1308 /* describes the PCAN-USB X6 adapter */
1309 static const struct can_bittiming_const pcan_usb_x6_const = {
1310 .name = "pcan_usb_x6",
1311 .tseg1_min = 1,
1312 .tseg1_max = (1 << PUCAN_TSLOW_TSGEG1_BITS),
1313 .tseg2_min = 1,
1314 .tseg2_max = (1 << PUCAN_TSLOW_TSGEG2_BITS),
1315 .sjw_max = (1 << PUCAN_TSLOW_SJW_BITS),
1316 .brp_min = 1,
1317 .brp_max = (1 << PUCAN_TSLOW_BRP_BITS),
1318 .brp_inc = 1,
1319 };
1320
1321 static const struct can_bittiming_const pcan_usb_x6_data_const = {
1322 .name = "pcan_usb_x6",
1323 .tseg1_min = 1,
1324 .tseg1_max = (1 << PUCAN_TFAST_TSGEG1_BITS),
1325 .tseg2_min = 1,
1326 .tseg2_max = (1 << PUCAN_TFAST_TSGEG2_BITS),
1327 .sjw_max = (1 << PUCAN_TFAST_SJW_BITS),
1328 .brp_min = 1,
1329 .brp_max = (1 << PUCAN_TFAST_BRP_BITS),
1330 .brp_inc = 1,
1331 };
1332
1333 const struct peak_usb_adapter pcan_usb_x6 = {
1334 .name = "PCAN-USB X6",
1335 .device_id = PCAN_USBX6_PRODUCT_ID,
1336 .ctrl_count = PCAN_USBPROFD_CHANNEL_COUNT,
1337 .ctrlmode_supported = CAN_CTRLMODE_FD |
1338 CAN_CTRLMODE_3_SAMPLES | CAN_CTRLMODE_LISTENONLY |
1339 CAN_CTRLMODE_ONE_SHOT | CAN_CTRLMODE_CC_LEN8_DLC,
1340 .clock = {
1341 .freq = PCAN_UFD_CRYSTAL_HZ,
1342 },
1343 .bittiming_const = &pcan_usb_x6_const,
1344 .data_bittiming_const = &pcan_usb_x6_data_const,
1345
1346 /* size of device private data */
1347 .sizeof_dev_private = sizeof(struct pcan_usb_fd_device),
1348
1349 .ethtool_ops = &pcan_usb_fd_ethtool_ops,
1350
1351 /* timestamps usage */
1352 .ts_used_bits = 32,
1353 .us_per_ts_scale = 1, /* us = (ts * scale) >> shift */
1354 .us_per_ts_shift = 0,
1355
1356 /* give here messages in/out endpoints */
1357 .ep_msg_in = PCAN_USBPRO_EP_MSGIN,
1358 .ep_msg_out = {PCAN_USBPRO_EP_MSGOUT_0, PCAN_USBPRO_EP_MSGOUT_1},
1359
1360 /* size of rx/tx usb buffers */
1361 .rx_buffer_size = PCAN_UFD_RX_BUFFER_SIZE,
1362 .tx_buffer_size = PCAN_UFD_TX_BUFFER_SIZE,
1363
1364 /* device callbacks */
1365 .intf_probe = pcan_usb_pro_probe, /* same as PCAN-USB Pro */
1366 .dev_init = pcan_usb_fd_init,
1367
1368 .dev_exit = pcan_usb_fd_exit,
1369 .dev_free = pcan_usb_fd_free,
1370 .dev_set_bus = pcan_usb_fd_set_bus,
1371 .dev_set_bittiming = pcan_usb_fd_set_bittiming_slow,
1372 .dev_set_data_bittiming = pcan_usb_fd_set_bittiming_fast,
1373 .dev_decode_buf = pcan_usb_fd_decode_buf,
1374 .dev_start = pcan_usb_fd_start,
1375 .dev_stop = pcan_usb_fd_stop,
1376 .dev_restart_async = pcan_usb_fd_restart_async,
1377 .dev_encode_msg = pcan_usb_fd_encode_msg,
1378
1379 .do_get_berr_counter = pcan_usb_fd_get_berr_counter,
1380 };
1381