2 * Janz MODULbus VMOD-ICAN3 CAN Interface Driver
4 * Copyright (c) 2010 Ira W. Snyder <iws@ovro.caltech.edu>
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 by the
8 * Free Software Foundation; either version 2 of the License, or (at your
9 * option) any later version.
12 #include <linux/kernel.h>
13 #include <linux/module.h>
14 #include <linux/interrupt.h>
15 #include <linux/delay.h>
16 #include <linux/platform_device.h>
18 #include <linux/netdevice.h>
19 #include <linux/can.h>
20 #include <linux/can/dev.h>
21 #include <linux/can/skb.h>
22 #include <linux/can/error.h>
24 #include <linux/mfd/janz.h>
27 /* the DPM has 64k of memory, organized into 256x 256 byte pages */
28 #define DPM_NUM_PAGES 256
29 #define DPM_PAGE_SIZE 256
30 #define DPM_PAGE_ADDR(p) ((p) * DPM_PAGE_SIZE)
32 /* JANZ ICAN3 "old-style" host interface queue page numbers */
33 #define QUEUE_OLD_CONTROL 0
34 #define QUEUE_OLD_RB0 1
35 #define QUEUE_OLD_RB1 2
36 #define QUEUE_OLD_WB0 3
37 #define QUEUE_OLD_WB1 4
39 /* Janz ICAN3 "old-style" host interface control registers */
40 #define MSYNC_PEER 0x00 /* ICAN only */
41 #define MSYNC_LOCL 0x01 /* host only */
42 #define TARGET_RUNNING 0x02
44 #define MSYNC_RB0 0x01
45 #define MSYNC_RB1 0x02
46 #define MSYNC_RBLW 0x04
47 #define MSYNC_RB_MASK (MSYNC_RB0 | MSYNC_RB1)
49 #define MSYNC_WB0 0x10
50 #define MSYNC_WB1 0x20
51 #define MSYNC_WBLW 0x40
52 #define MSYNC_WB_MASK (MSYNC_WB0 | MSYNC_WB1)
54 /* Janz ICAN3 "new-style" host interface queue page numbers */
55 #define QUEUE_TOHOST 5
56 #define QUEUE_FROMHOST_MID 6
57 #define QUEUE_FROMHOST_HIGH 7
58 #define QUEUE_FROMHOST_LOW 8
60 /* The first free page in the DPM is #9 */
61 #define DPM_FREE_START 9
63 /* Janz ICAN3 "new-style" and "fast" host interface descriptor flags */
64 #define DESC_VALID 0x80
65 #define DESC_WRAP 0x40
66 #define DESC_INTERRUPT 0x20
67 #define DESC_IVALID 0x10
68 #define DESC_LEN(len) (len)
70 /* Janz ICAN3 Firmware Messages */
71 #define MSG_CONNECTI 0x02
72 #define MSG_DISCONNECT 0x03
73 #define MSG_IDVERS 0x04
74 #define MSG_MSGLOST 0x05
75 #define MSG_NEWHOSTIF 0x08
76 #define MSG_INQUIRY 0x0a
77 #define MSG_SETAFILMASK 0x10
78 #define MSG_INITFDPMQUEUE 0x11
79 #define MSG_HWCONF 0x12
80 #define MSG_FMSGLOST 0x15
81 #define MSG_CEVTIND 0x37
82 #define MSG_CBTRREQ 0x41
83 #define MSG_COFFREQ 0x42
84 #define MSG_CONREQ 0x43
85 #define MSG_CCONFREQ 0x47
88 * Janz ICAN3 CAN Inquiry Message Types
90 * NOTE: there appears to be a firmware bug here. You must send
91 * NOTE: INQUIRY_STATUS and expect to receive an INQUIRY_EXTENDED
92 * NOTE: response. The controller never responds to a message with
93 * NOTE: the INQUIRY_EXTENDED subspec :(
95 #define INQUIRY_STATUS 0x00
96 #define INQUIRY_TERMINATION 0x01
97 #define INQUIRY_EXTENDED 0x04
99 /* Janz ICAN3 CAN Set Acceptance Filter Mask Message Types */
100 #define SETAFILMASK_REJECT 0x00
101 #define SETAFILMASK_FASTIF 0x02
103 /* Janz ICAN3 CAN Hardware Configuration Message Types */
104 #define HWCONF_TERMINATE_ON 0x01
105 #define HWCONF_TERMINATE_OFF 0x00
107 /* Janz ICAN3 CAN Event Indication Message Types */
108 #define CEVTIND_EI 0x01
109 #define CEVTIND_DOI 0x02
110 #define CEVTIND_LOST 0x04
111 #define CEVTIND_FULL 0x08
112 #define CEVTIND_BEI 0x10
114 #define CEVTIND_CHIP_SJA1000 0x02
116 #define ICAN3_BUSERR_QUOTA_MAX 255
118 /* Janz ICAN3 CAN Frame Conversion */
119 #define ICAN3_SNGL 0x02
120 #define ICAN3_ECHO 0x10
121 #define ICAN3_EFF_RTR 0x40
122 #define ICAN3_SFF_RTR 0x10
123 #define ICAN3_EFF 0x80
125 #define ICAN3_CAN_TYPE_MASK 0x0f
126 #define ICAN3_CAN_TYPE_SFF 0x00
127 #define ICAN3_CAN_TYPE_EFF 0x01
129 #define ICAN3_CAN_DLC_MASK 0x0f
132 * SJA1000 Status and Error Register Definitions
134 * Copied from drivers/net/can/sja1000/sja1000.h
137 /* status register content */
147 #define SR_CRIT (SR_BS|SR_ES)
154 #define ECC_FORM 0x40
155 #define ECC_STUFF 0x80
156 #define ECC_MASK 0xc0
158 /* Number of buffers for use in the "new-style" host interface */
159 #define ICAN3_NEW_BUFFERS 16
161 /* Number of buffers for use in the "fast" host interface */
162 #define ICAN3_TX_BUFFERS 512
163 #define ICAN3_RX_BUFFERS 1024
165 /* SJA1000 Clock Input */
166 #define ICAN3_CAN_CLOCK 8000000
169 #define DRV_NAME "janz-ican3"
171 /* DPM Control Registers -- starts at offset 0x100 in the MODULbus registers */
172 struct ican3_dpm_control
{
173 /* window address register */
178 * Read access: clear interrupt from microcontroller
179 * Write access: send interrupt to microcontroller
184 /* write-only: reset all hardware on the module */
188 /* write-only: generate an interrupt to the TPU */
194 /* must be the first member */
197 /* CAN network device */
198 struct net_device
*ndev
;
199 struct napi_struct napi
;
204 /* base address of registers and IRQ */
205 struct janz_cmodio_onboard_regs __iomem
*ctrl
;
206 struct ican3_dpm_control __iomem
*dpmctrl
;
210 /* CAN bus termination status */
211 struct completion termination_comp
;
212 bool termination_enabled
;
214 /* CAN bus error status registers */
215 struct completion buserror_comp
;
216 struct can_berr_counter bec
;
218 /* old and new style host interface */
221 /* queue for echo packets */
222 struct sk_buff_head echoq
;
225 * Any function which changes the current DPM page must hold this
226 * lock while it is performing data accesses. This ensures that the
227 * function will not be preempted and end up reading data from a
228 * different DPM page than it expects.
232 /* new host interface */
237 /* fast host interface */
238 unsigned int fastrx_start
;
239 unsigned int fastrx_num
;
240 unsigned int fasttx_start
;
241 unsigned int fasttx_num
;
243 /* first free DPM page */
244 unsigned int free_page
;
254 struct ican3_new_desc
{
259 struct ican3_fast_desc
{
265 /* write to the window basic address register */
266 static inline void ican3_set_page(struct ican3_dev
*mod
, unsigned int page
)
268 BUG_ON(page
>= DPM_NUM_PAGES
);
269 iowrite8(page
, &mod
->dpmctrl
->window_address
);
273 * ICAN3 "old-style" host interface
277 * Receive a message from the ICAN3 "old-style" firmware interface
279 * LOCKING: must hold mod->lock
281 * returns 0 on success, -ENOMEM when no message exists
283 static int ican3_old_recv_msg(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
285 unsigned int mbox
, mbox_page
;
288 /* get the MSYNC registers */
289 ican3_set_page(mod
, QUEUE_OLD_CONTROL
);
290 peer
= ioread8(mod
->dpm
+ MSYNC_PEER
);
291 locl
= ioread8(mod
->dpm
+ MSYNC_LOCL
);
294 if ((xord
& MSYNC_RB_MASK
) == 0x00) {
295 netdev_dbg(mod
->ndev
, "no mbox for reading\n");
299 /* find the first free mbox to read */
300 if ((xord
& MSYNC_RB_MASK
) == MSYNC_RB_MASK
)
301 mbox
= (xord
& MSYNC_RBLW
) ? MSYNC_RB0
: MSYNC_RB1
;
303 mbox
= (xord
& MSYNC_RB0
) ? MSYNC_RB0
: MSYNC_RB1
;
305 /* copy the message */
306 mbox_page
= (mbox
== MSYNC_RB0
) ? QUEUE_OLD_RB0
: QUEUE_OLD_RB1
;
307 ican3_set_page(mod
, mbox_page
);
308 memcpy_fromio(msg
, mod
->dpm
, sizeof(*msg
));
311 * notify the firmware that the read buffer is available
312 * for it to fill again
316 ican3_set_page(mod
, QUEUE_OLD_CONTROL
);
317 iowrite8(locl
, mod
->dpm
+ MSYNC_LOCL
);
322 * Send a message through the "old-style" firmware interface
324 * LOCKING: must hold mod->lock
326 * returns 0 on success, -ENOMEM when no free space exists
328 static int ican3_old_send_msg(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
330 unsigned int mbox
, mbox_page
;
333 /* get the MSYNC registers */
334 ican3_set_page(mod
, QUEUE_OLD_CONTROL
);
335 peer
= ioread8(mod
->dpm
+ MSYNC_PEER
);
336 locl
= ioread8(mod
->dpm
+ MSYNC_LOCL
);
339 if ((xord
& MSYNC_WB_MASK
) == MSYNC_WB_MASK
) {
340 netdev_err(mod
->ndev
, "no mbox for writing\n");
344 /* calculate a free mbox to use */
345 mbox
= (xord
& MSYNC_WB0
) ? MSYNC_WB1
: MSYNC_WB0
;
347 /* copy the message to the DPM */
348 mbox_page
= (mbox
== MSYNC_WB0
) ? QUEUE_OLD_WB0
: QUEUE_OLD_WB1
;
349 ican3_set_page(mod
, mbox_page
);
350 memcpy_toio(mod
->dpm
, msg
, sizeof(*msg
));
353 if (mbox
== MSYNC_WB1
)
356 ican3_set_page(mod
, QUEUE_OLD_CONTROL
);
357 iowrite8(locl
, mod
->dpm
+ MSYNC_LOCL
);
362 * ICAN3 "new-style" Host Interface Setup
365 static void ican3_init_new_host_interface(struct ican3_dev
*mod
)
367 struct ican3_new_desc desc
;
372 spin_lock_irqsave(&mod
->lock
, flags
);
374 /* setup the internal datastructures for RX */
378 /* tohost queue descriptors are in page 5 */
379 ican3_set_page(mod
, QUEUE_TOHOST
);
382 /* initialize the tohost (rx) queue descriptors: pages 9-24 */
383 for (i
= 0; i
< ICAN3_NEW_BUFFERS
; i
++) {
384 desc
.control
= DESC_INTERRUPT
| DESC_LEN(1); /* I L=1 */
385 desc
.pointer
= mod
->free_page
;
387 /* set wrap flag on last buffer */
388 if (i
== ICAN3_NEW_BUFFERS
- 1)
389 desc
.control
|= DESC_WRAP
;
391 memcpy_toio(dst
, &desc
, sizeof(desc
));
396 /* fromhost (tx) mid queue descriptors are in page 6 */
397 ican3_set_page(mod
, QUEUE_FROMHOST_MID
);
400 /* setup the internal datastructures for TX */
403 /* initialize the fromhost mid queue descriptors: pages 25-40 */
404 for (i
= 0; i
< ICAN3_NEW_BUFFERS
; i
++) {
405 desc
.control
= DESC_VALID
| DESC_LEN(1); /* V L=1 */
406 desc
.pointer
= mod
->free_page
;
408 /* set wrap flag on last buffer */
409 if (i
== ICAN3_NEW_BUFFERS
- 1)
410 desc
.control
|= DESC_WRAP
;
412 memcpy_toio(dst
, &desc
, sizeof(desc
));
417 /* fromhost hi queue descriptors are in page 7 */
418 ican3_set_page(mod
, QUEUE_FROMHOST_HIGH
);
421 /* initialize only a single buffer in the fromhost hi queue (unused) */
422 desc
.control
= DESC_VALID
| DESC_WRAP
| DESC_LEN(1); /* VW L=1 */
423 desc
.pointer
= mod
->free_page
;
424 memcpy_toio(dst
, &desc
, sizeof(desc
));
427 /* fromhost low queue descriptors are in page 8 */
428 ican3_set_page(mod
, QUEUE_FROMHOST_LOW
);
431 /* initialize only a single buffer in the fromhost low queue (unused) */
432 desc
.control
= DESC_VALID
| DESC_WRAP
| DESC_LEN(1); /* VW L=1 */
433 desc
.pointer
= mod
->free_page
;
434 memcpy_toio(dst
, &desc
, sizeof(desc
));
437 spin_unlock_irqrestore(&mod
->lock
, flags
);
441 * ICAN3 Fast Host Interface Setup
444 static void ican3_init_fast_host_interface(struct ican3_dev
*mod
)
446 struct ican3_fast_desc desc
;
452 spin_lock_irqsave(&mod
->lock
, flags
);
454 /* save the start recv page */
455 mod
->fastrx_start
= mod
->free_page
;
458 /* build a single fast tohost queue descriptor */
459 memset(&desc
, 0, sizeof(desc
));
463 /* build the tohost queue descriptor ring in memory */
465 for (i
= 0; i
< ICAN3_RX_BUFFERS
; i
++) {
467 /* set the wrap bit on the last buffer */
468 if (i
== ICAN3_RX_BUFFERS
- 1)
469 desc
.control
|= DESC_WRAP
;
471 /* switch to the correct page */
472 ican3_set_page(mod
, mod
->free_page
);
474 /* copy the descriptor to the DPM */
475 dst
= mod
->dpm
+ addr
;
476 memcpy_toio(dst
, &desc
, sizeof(desc
));
477 addr
+= sizeof(desc
);
479 /* move to the next page if necessary */
480 if (addr
>= DPM_PAGE_SIZE
) {
486 /* make sure we page-align the next queue */
490 /* save the start xmit page */
491 mod
->fasttx_start
= mod
->free_page
;
494 /* build a single fast fromhost queue descriptor */
495 memset(&desc
, 0, sizeof(desc
));
496 desc
.control
= DESC_VALID
;
499 /* build the fromhost queue descriptor ring in memory */
501 for (i
= 0; i
< ICAN3_TX_BUFFERS
; i
++) {
503 /* set the wrap bit on the last buffer */
504 if (i
== ICAN3_TX_BUFFERS
- 1)
505 desc
.control
|= DESC_WRAP
;
507 /* switch to the correct page */
508 ican3_set_page(mod
, mod
->free_page
);
510 /* copy the descriptor to the DPM */
511 dst
= mod
->dpm
+ addr
;
512 memcpy_toio(dst
, &desc
, sizeof(desc
));
513 addr
+= sizeof(desc
);
515 /* move to the next page if necessary */
516 if (addr
>= DPM_PAGE_SIZE
) {
522 spin_unlock_irqrestore(&mod
->lock
, flags
);
526 * ICAN3 "new-style" Host Interface Message Helpers
530 * LOCKING: must hold mod->lock
532 static int ican3_new_send_msg(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
534 struct ican3_new_desc desc
;
535 void __iomem
*desc_addr
= mod
->dpm
+ (mod
->tx_num
* sizeof(desc
));
537 /* switch to the fromhost mid queue, and read the buffer descriptor */
538 ican3_set_page(mod
, QUEUE_FROMHOST_MID
);
539 memcpy_fromio(&desc
, desc_addr
, sizeof(desc
));
541 if (!(desc
.control
& DESC_VALID
)) {
542 netdev_dbg(mod
->ndev
, "%s: no free buffers\n", __func__
);
546 /* switch to the data page, copy the data */
547 ican3_set_page(mod
, desc
.pointer
);
548 memcpy_toio(mod
->dpm
, msg
, sizeof(*msg
));
550 /* switch back to the descriptor, set the valid bit, write it back */
551 ican3_set_page(mod
, QUEUE_FROMHOST_MID
);
552 desc
.control
^= DESC_VALID
;
553 memcpy_toio(desc_addr
, &desc
, sizeof(desc
));
555 /* update the tx number */
556 mod
->tx_num
= (desc
.control
& DESC_WRAP
) ? 0 : (mod
->tx_num
+ 1);
561 * LOCKING: must hold mod->lock
563 static int ican3_new_recv_msg(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
565 struct ican3_new_desc desc
;
566 void __iomem
*desc_addr
= mod
->dpm
+ (mod
->rx_num
* sizeof(desc
));
568 /* switch to the tohost queue, and read the buffer descriptor */
569 ican3_set_page(mod
, QUEUE_TOHOST
);
570 memcpy_fromio(&desc
, desc_addr
, sizeof(desc
));
572 if (!(desc
.control
& DESC_VALID
)) {
573 netdev_dbg(mod
->ndev
, "%s: no buffers to recv\n", __func__
);
577 /* switch to the data page, copy the data */
578 ican3_set_page(mod
, desc
.pointer
);
579 memcpy_fromio(msg
, mod
->dpm
, sizeof(*msg
));
581 /* switch back to the descriptor, toggle the valid bit, write it back */
582 ican3_set_page(mod
, QUEUE_TOHOST
);
583 desc
.control
^= DESC_VALID
;
584 memcpy_toio(desc_addr
, &desc
, sizeof(desc
));
586 /* update the rx number */
587 mod
->rx_num
= (desc
.control
& DESC_WRAP
) ? 0 : (mod
->rx_num
+ 1);
592 * Message Send / Recv Helpers
595 static int ican3_send_msg(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
600 spin_lock_irqsave(&mod
->lock
, flags
);
602 if (mod
->iftype
== 0)
603 ret
= ican3_old_send_msg(mod
, msg
);
605 ret
= ican3_new_send_msg(mod
, msg
);
607 spin_unlock_irqrestore(&mod
->lock
, flags
);
611 static int ican3_recv_msg(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
616 spin_lock_irqsave(&mod
->lock
, flags
);
618 if (mod
->iftype
== 0)
619 ret
= ican3_old_recv_msg(mod
, msg
);
621 ret
= ican3_new_recv_msg(mod
, msg
);
623 spin_unlock_irqrestore(&mod
->lock
, flags
);
628 * Quick Pre-constructed Messages
631 static int ican3_msg_connect(struct ican3_dev
*mod
)
633 struct ican3_msg msg
;
635 memset(&msg
, 0, sizeof(msg
));
636 msg
.spec
= MSG_CONNECTI
;
637 msg
.len
= cpu_to_le16(0);
639 return ican3_send_msg(mod
, &msg
);
642 static int ican3_msg_disconnect(struct ican3_dev
*mod
)
644 struct ican3_msg msg
;
646 memset(&msg
, 0, sizeof(msg
));
647 msg
.spec
= MSG_DISCONNECT
;
648 msg
.len
= cpu_to_le16(0);
650 return ican3_send_msg(mod
, &msg
);
653 static int ican3_msg_newhostif(struct ican3_dev
*mod
)
655 struct ican3_msg msg
;
658 memset(&msg
, 0, sizeof(msg
));
659 msg
.spec
= MSG_NEWHOSTIF
;
660 msg
.len
= cpu_to_le16(0);
662 /* If we're not using the old interface, switching seems bogus */
663 WARN_ON(mod
->iftype
!= 0);
665 ret
= ican3_send_msg(mod
, &msg
);
669 /* mark the module as using the new host interface */
674 static int ican3_msg_fasthostif(struct ican3_dev
*mod
)
676 struct ican3_msg msg
;
679 memset(&msg
, 0, sizeof(msg
));
680 msg
.spec
= MSG_INITFDPMQUEUE
;
681 msg
.len
= cpu_to_le16(8);
683 /* write the tohost queue start address */
684 addr
= DPM_PAGE_ADDR(mod
->fastrx_start
);
685 msg
.data
[0] = addr
& 0xff;
686 msg
.data
[1] = (addr
>> 8) & 0xff;
687 msg
.data
[2] = (addr
>> 16) & 0xff;
688 msg
.data
[3] = (addr
>> 24) & 0xff;
690 /* write the fromhost queue start address */
691 addr
= DPM_PAGE_ADDR(mod
->fasttx_start
);
692 msg
.data
[4] = addr
& 0xff;
693 msg
.data
[5] = (addr
>> 8) & 0xff;
694 msg
.data
[6] = (addr
>> 16) & 0xff;
695 msg
.data
[7] = (addr
>> 24) & 0xff;
697 /* If we're not using the new interface yet, we cannot do this */
698 WARN_ON(mod
->iftype
!= 1);
700 return ican3_send_msg(mod
, &msg
);
704 * Setup the CAN filter to either accept or reject all
705 * messages from the CAN bus.
707 static int ican3_set_id_filter(struct ican3_dev
*mod
, bool accept
)
709 struct ican3_msg msg
;
712 /* Standard Frame Format */
713 memset(&msg
, 0, sizeof(msg
));
714 msg
.spec
= MSG_SETAFILMASK
;
715 msg
.len
= cpu_to_le16(5);
716 msg
.data
[0] = 0x00; /* IDLo LSB */
717 msg
.data
[1] = 0x00; /* IDLo MSB */
718 msg
.data
[2] = 0xff; /* IDHi LSB */
719 msg
.data
[3] = 0x07; /* IDHi MSB */
721 /* accept all frames for fast host if, or reject all frames */
722 msg
.data
[4] = accept
? SETAFILMASK_FASTIF
: SETAFILMASK_REJECT
;
724 ret
= ican3_send_msg(mod
, &msg
);
728 /* Extended Frame Format */
729 memset(&msg
, 0, sizeof(msg
));
730 msg
.spec
= MSG_SETAFILMASK
;
731 msg
.len
= cpu_to_le16(13);
732 msg
.data
[0] = 0; /* MUX = 0 */
733 msg
.data
[1] = 0x00; /* IDLo LSB */
736 msg
.data
[4] = 0x20; /* IDLo MSB */
737 msg
.data
[5] = 0xff; /* IDHi LSB */
740 msg
.data
[8] = 0x3f; /* IDHi MSB */
742 /* accept all frames for fast host if, or reject all frames */
743 msg
.data
[9] = accept
? SETAFILMASK_FASTIF
: SETAFILMASK_REJECT
;
745 return ican3_send_msg(mod
, &msg
);
749 * Bring the CAN bus online or offline
751 static int ican3_set_bus_state(struct ican3_dev
*mod
, bool on
)
753 struct ican3_msg msg
;
755 memset(&msg
, 0, sizeof(msg
));
756 msg
.spec
= on
? MSG_CONREQ
: MSG_COFFREQ
;
757 msg
.len
= cpu_to_le16(0);
759 return ican3_send_msg(mod
, &msg
);
762 static int ican3_set_termination(struct ican3_dev
*mod
, bool on
)
764 struct ican3_msg msg
;
766 memset(&msg
, 0, sizeof(msg
));
767 msg
.spec
= MSG_HWCONF
;
768 msg
.len
= cpu_to_le16(2);
770 msg
.data
[1] = on
? HWCONF_TERMINATE_ON
: HWCONF_TERMINATE_OFF
;
772 return ican3_send_msg(mod
, &msg
);
775 static int ican3_send_inquiry(struct ican3_dev
*mod
, u8 subspec
)
777 struct ican3_msg msg
;
779 memset(&msg
, 0, sizeof(msg
));
780 msg
.spec
= MSG_INQUIRY
;
781 msg
.len
= cpu_to_le16(2);
782 msg
.data
[0] = subspec
;
785 return ican3_send_msg(mod
, &msg
);
788 static int ican3_set_buserror(struct ican3_dev
*mod
, u8 quota
)
790 struct ican3_msg msg
;
792 memset(&msg
, 0, sizeof(msg
));
793 msg
.spec
= MSG_CCONFREQ
;
794 msg
.len
= cpu_to_le16(2);
798 return ican3_send_msg(mod
, &msg
);
802 * ICAN3 to Linux CAN Frame Conversion
805 static void ican3_to_can_frame(struct ican3_dev
*mod
,
806 struct ican3_fast_desc
*desc
,
807 struct can_frame
*cf
)
809 if ((desc
->command
& ICAN3_CAN_TYPE_MASK
) == ICAN3_CAN_TYPE_SFF
) {
810 if (desc
->data
[1] & ICAN3_SFF_RTR
)
811 cf
->can_id
|= CAN_RTR_FLAG
;
813 cf
->can_id
|= desc
->data
[0] << 3;
814 cf
->can_id
|= (desc
->data
[1] & 0xe0) >> 5;
815 cf
->can_dlc
= get_can_dlc(desc
->data
[1] & ICAN3_CAN_DLC_MASK
);
816 memcpy(cf
->data
, &desc
->data
[2], cf
->can_dlc
);
818 cf
->can_dlc
= get_can_dlc(desc
->data
[0] & ICAN3_CAN_DLC_MASK
);
819 if (desc
->data
[0] & ICAN3_EFF_RTR
)
820 cf
->can_id
|= CAN_RTR_FLAG
;
822 if (desc
->data
[0] & ICAN3_EFF
) {
823 cf
->can_id
|= CAN_EFF_FLAG
;
824 cf
->can_id
|= desc
->data
[2] << 21; /* 28-21 */
825 cf
->can_id
|= desc
->data
[3] << 13; /* 20-13 */
826 cf
->can_id
|= desc
->data
[4] << 5; /* 12-5 */
827 cf
->can_id
|= (desc
->data
[5] & 0xf8) >> 3;
829 cf
->can_id
|= desc
->data
[2] << 3; /* 10-3 */
830 cf
->can_id
|= desc
->data
[3] >> 5; /* 2-0 */
833 memcpy(cf
->data
, &desc
->data
[6], cf
->can_dlc
);
837 static void can_frame_to_ican3(struct ican3_dev
*mod
,
838 struct can_frame
*cf
,
839 struct ican3_fast_desc
*desc
)
841 /* clear out any stale data in the descriptor */
842 memset(desc
->data
, 0, sizeof(desc
->data
));
844 /* we always use the extended format, with the ECHO flag set */
845 desc
->command
= ICAN3_CAN_TYPE_EFF
;
846 desc
->data
[0] |= cf
->can_dlc
;
847 desc
->data
[1] |= ICAN3_ECHO
;
849 /* support single transmission (no retries) mode */
850 if (mod
->can
.ctrlmode
& CAN_CTRLMODE_ONE_SHOT
)
851 desc
->data
[1] |= ICAN3_SNGL
;
853 if (cf
->can_id
& CAN_RTR_FLAG
)
854 desc
->data
[0] |= ICAN3_EFF_RTR
;
856 /* pack the id into the correct places */
857 if (cf
->can_id
& CAN_EFF_FLAG
) {
858 desc
->data
[0] |= ICAN3_EFF
;
859 desc
->data
[2] = (cf
->can_id
& 0x1fe00000) >> 21; /* 28-21 */
860 desc
->data
[3] = (cf
->can_id
& 0x001fe000) >> 13; /* 20-13 */
861 desc
->data
[4] = (cf
->can_id
& 0x00001fe0) >> 5; /* 12-5 */
862 desc
->data
[5] = (cf
->can_id
& 0x0000001f) << 3; /* 4-0 */
864 desc
->data
[2] = (cf
->can_id
& 0x7F8) >> 3; /* bits 10-3 */
865 desc
->data
[3] = (cf
->can_id
& 0x007) << 5; /* bits 2-0 */
868 /* copy the data bits into the descriptor */
869 memcpy(&desc
->data
[6], cf
->data
, cf
->can_dlc
);
877 * Handle an ID + Version message response from the firmware. We never generate
878 * this message in production code, but it is very useful when debugging to be
879 * able to display this message.
881 static void ican3_handle_idvers(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
883 netdev_dbg(mod
->ndev
, "IDVERS response: %s\n", msg
->data
);
886 static void ican3_handle_msglost(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
888 struct net_device
*dev
= mod
->ndev
;
889 struct net_device_stats
*stats
= &dev
->stats
;
890 struct can_frame
*cf
;
894 * Report that communication messages with the microcontroller firmware
895 * are being lost. These are never CAN frames, so we do not generate an
896 * error frame for userspace
898 if (msg
->spec
== MSG_MSGLOST
) {
899 netdev_err(mod
->ndev
, "lost %d control messages\n", msg
->data
[0]);
904 * Oops, this indicates that we have lost messages in the fast queue,
905 * which are exclusively CAN messages. Our driver isn't reading CAN
906 * frames fast enough.
908 * We'll pretend that the SJA1000 told us that it ran out of buffer
909 * space, because there is not a better message for this.
911 skb
= alloc_can_err_skb(dev
, &cf
);
913 cf
->can_id
|= CAN_ERR_CRTL
;
914 cf
->data
[1] = CAN_ERR_CRTL_RX_OVERFLOW
;
915 stats
->rx_over_errors
++;
922 * Handle CAN Event Indication Messages from the firmware
924 * The ICAN3 firmware provides the values of some SJA1000 registers when it
925 * generates this message. The code below is largely copied from the
926 * drivers/net/can/sja1000/sja1000.c file, and adapted as necessary
928 static int ican3_handle_cevtind(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
930 struct net_device
*dev
= mod
->ndev
;
931 struct net_device_stats
*stats
= &dev
->stats
;
932 enum can_state state
= mod
->can
.state
;
933 u8 isrc
, ecc
, status
, rxerr
, txerr
;
934 struct can_frame
*cf
;
937 /* we can only handle the SJA1000 part */
938 if (msg
->data
[1] != CEVTIND_CHIP_SJA1000
) {
939 netdev_err(mod
->ndev
, "unable to handle errors on non-SJA1000\n");
943 /* check the message length for sanity */
944 if (le16_to_cpu(msg
->len
) < 6) {
945 netdev_err(mod
->ndev
, "error message too short\n");
951 status
= msg
->data
[3];
952 rxerr
= msg
->data
[4];
953 txerr
= msg
->data
[5];
956 * This hardware lacks any support other than bus error messages to
957 * determine if packet transmission has failed.
959 * When TX errors happen, one echo skb needs to be dropped from the
960 * front of the queue.
962 * A small bit of code is duplicated here and below, to avoid error
963 * skb allocation when it will just be freed immediately.
965 if (isrc
== CEVTIND_BEI
) {
967 netdev_dbg(mod
->ndev
, "bus error interrupt\n");
970 if (!(ecc
& ECC_DIR
)) {
971 kfree_skb(skb_dequeue(&mod
->echoq
));
978 * The controller automatically disables bus-error interrupts
979 * and therefore we must re-enable them.
981 ret
= ican3_set_buserror(mod
, 1);
983 netdev_err(mod
->ndev
, "unable to re-enable bus-error\n");
987 /* bus error reporting is off, return immediately */
988 if (!(mod
->can
.ctrlmode
& CAN_CTRLMODE_BERR_REPORTING
))
992 skb
= alloc_can_err_skb(dev
, &cf
);
996 /* data overrun interrupt */
997 if (isrc
== CEVTIND_DOI
|| isrc
== CEVTIND_LOST
) {
998 netdev_dbg(mod
->ndev
, "data overrun interrupt\n");
999 cf
->can_id
|= CAN_ERR_CRTL
;
1000 cf
->data
[1] = CAN_ERR_CRTL_RX_OVERFLOW
;
1001 stats
->rx_over_errors
++;
1005 /* error warning + passive interrupt */
1006 if (isrc
== CEVTIND_EI
) {
1007 netdev_dbg(mod
->ndev
, "error warning + passive interrupt\n");
1008 if (status
& SR_BS
) {
1009 state
= CAN_STATE_BUS_OFF
;
1010 cf
->can_id
|= CAN_ERR_BUSOFF
;
1012 } else if (status
& SR_ES
) {
1013 if (rxerr
>= 128 || txerr
>= 128)
1014 state
= CAN_STATE_ERROR_PASSIVE
;
1016 state
= CAN_STATE_ERROR_WARNING
;
1018 state
= CAN_STATE_ERROR_ACTIVE
;
1022 /* bus error interrupt */
1023 if (isrc
== CEVTIND_BEI
) {
1024 mod
->can
.can_stats
.bus_error
++;
1025 cf
->can_id
|= CAN_ERR_PROT
| CAN_ERR_BUSERROR
;
1027 switch (ecc
& ECC_MASK
) {
1029 cf
->data
[2] |= CAN_ERR_PROT_BIT
;
1032 cf
->data
[2] |= CAN_ERR_PROT_FORM
;
1035 cf
->data
[2] |= CAN_ERR_PROT_STUFF
;
1038 cf
->data
[2] |= CAN_ERR_PROT_UNSPEC
;
1039 cf
->data
[3] = ecc
& ECC_SEG
;
1043 if (!(ecc
& ECC_DIR
))
1044 cf
->data
[2] |= CAN_ERR_PROT_TX
;
1046 cf
->data
[6] = txerr
;
1047 cf
->data
[7] = rxerr
;
1050 if (state
!= mod
->can
.state
&& (state
== CAN_STATE_ERROR_WARNING
||
1051 state
== CAN_STATE_ERROR_PASSIVE
)) {
1052 cf
->can_id
|= CAN_ERR_CRTL
;
1053 if (state
== CAN_STATE_ERROR_WARNING
) {
1054 mod
->can
.can_stats
.error_warning
++;
1055 cf
->data
[1] = (txerr
> rxerr
) ?
1056 CAN_ERR_CRTL_TX_WARNING
:
1057 CAN_ERR_CRTL_RX_WARNING
;
1059 mod
->can
.can_stats
.error_passive
++;
1060 cf
->data
[1] = (txerr
> rxerr
) ?
1061 CAN_ERR_CRTL_TX_PASSIVE
:
1062 CAN_ERR_CRTL_RX_PASSIVE
;
1065 cf
->data
[6] = txerr
;
1066 cf
->data
[7] = rxerr
;
1069 mod
->can
.state
= state
;
1074 static void ican3_handle_inquiry(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
1076 switch (msg
->data
[0]) {
1077 case INQUIRY_STATUS
:
1078 case INQUIRY_EXTENDED
:
1079 mod
->bec
.rxerr
= msg
->data
[5];
1080 mod
->bec
.txerr
= msg
->data
[6];
1081 complete(&mod
->buserror_comp
);
1083 case INQUIRY_TERMINATION
:
1084 mod
->termination_enabled
= msg
->data
[6] & HWCONF_TERMINATE_ON
;
1085 complete(&mod
->termination_comp
);
1088 netdev_err(mod
->ndev
, "received an unknown inquiry response\n");
1093 static void ican3_handle_unknown_message(struct ican3_dev
*mod
,
1094 struct ican3_msg
*msg
)
1096 netdev_warn(mod
->ndev
, "received unknown message: spec 0x%.2x length %d\n",
1097 msg
->spec
, le16_to_cpu(msg
->len
));
1101 * Handle a control message from the firmware
1103 static void ican3_handle_message(struct ican3_dev
*mod
, struct ican3_msg
*msg
)
1105 netdev_dbg(mod
->ndev
, "%s: modno %d spec 0x%.2x len %d bytes\n", __func__
,
1106 mod
->num
, msg
->spec
, le16_to_cpu(msg
->len
));
1108 switch (msg
->spec
) {
1110 ican3_handle_idvers(mod
, msg
);
1114 ican3_handle_msglost(mod
, msg
);
1117 ican3_handle_cevtind(mod
, msg
);
1120 ican3_handle_inquiry(mod
, msg
);
1123 ican3_handle_unknown_message(mod
, msg
);
1129 * The ican3 needs to store all echo skbs, and therefore cannot
1130 * use the generic infrastructure for this.
1132 static void ican3_put_echo_skb(struct ican3_dev
*mod
, struct sk_buff
*skb
)
1134 skb
= can_create_echo_skb(skb
);
1138 /* save this skb for tx interrupt echo handling */
1139 skb_queue_tail(&mod
->echoq
, skb
);
1142 static unsigned int ican3_get_echo_skb(struct ican3_dev
*mod
)
1144 struct sk_buff
*skb
= skb_dequeue(&mod
->echoq
);
1145 struct can_frame
*cf
;
1148 /* this should never trigger unless there is a driver bug */
1150 netdev_err(mod
->ndev
, "BUG: echo skb not occupied\n");
1154 cf
= (struct can_frame
*)skb
->data
;
1157 /* check flag whether this packet has to be looped back */
1158 if (skb
->pkt_type
!= PACKET_LOOPBACK
) {
1163 skb
->protocol
= htons(ETH_P_CAN
);
1164 skb
->pkt_type
= PACKET_BROADCAST
;
1165 skb
->ip_summed
= CHECKSUM_UNNECESSARY
;
1166 skb
->dev
= mod
->ndev
;
1167 netif_receive_skb(skb
);
1172 * Compare an skb with an existing echo skb
1174 * This function will be used on devices which have a hardware loopback.
1175 * On these devices, this function can be used to compare a received skb
1176 * with the saved echo skbs so that the hardware echo skb can be dropped.
1178 * Returns true if the skb's are identical, false otherwise.
1180 static bool ican3_echo_skb_matches(struct ican3_dev
*mod
, struct sk_buff
*skb
)
1182 struct can_frame
*cf
= (struct can_frame
*)skb
->data
;
1183 struct sk_buff
*echo_skb
= skb_peek(&mod
->echoq
);
1184 struct can_frame
*echo_cf
;
1189 echo_cf
= (struct can_frame
*)echo_skb
->data
;
1190 if (cf
->can_id
!= echo_cf
->can_id
)
1193 if (cf
->can_dlc
!= echo_cf
->can_dlc
)
1196 return memcmp(cf
->data
, echo_cf
->data
, cf
->can_dlc
) == 0;
1200 * Check that there is room in the TX ring to transmit another skb
1202 * LOCKING: must hold mod->lock
1204 static bool ican3_txok(struct ican3_dev
*mod
)
1206 struct ican3_fast_desc __iomem
*desc
;
1209 /* check that we have echo queue space */
1210 if (skb_queue_len(&mod
->echoq
) >= ICAN3_TX_BUFFERS
)
1213 /* copy the control bits of the descriptor */
1214 ican3_set_page(mod
, mod
->fasttx_start
+ (mod
->fasttx_num
/ 16));
1215 desc
= mod
->dpm
+ ((mod
->fasttx_num
% 16) * sizeof(*desc
));
1216 control
= ioread8(&desc
->control
);
1218 /* if the control bits are not valid, then we have no more space */
1219 if (!(control
& DESC_VALID
))
1226 * Receive one CAN frame from the hardware
1228 * CONTEXT: must be called from user context
1230 static int ican3_recv_skb(struct ican3_dev
*mod
)
1232 struct net_device
*ndev
= mod
->ndev
;
1233 struct net_device_stats
*stats
= &ndev
->stats
;
1234 struct ican3_fast_desc desc
;
1235 void __iomem
*desc_addr
;
1236 struct can_frame
*cf
;
1237 struct sk_buff
*skb
;
1238 unsigned long flags
;
1240 spin_lock_irqsave(&mod
->lock
, flags
);
1242 /* copy the whole descriptor */
1243 ican3_set_page(mod
, mod
->fastrx_start
+ (mod
->fastrx_num
/ 16));
1244 desc_addr
= mod
->dpm
+ ((mod
->fastrx_num
% 16) * sizeof(desc
));
1245 memcpy_fromio(&desc
, desc_addr
, sizeof(desc
));
1247 spin_unlock_irqrestore(&mod
->lock
, flags
);
1249 /* check that we actually have a CAN frame */
1250 if (!(desc
.control
& DESC_VALID
))
1253 /* allocate an skb */
1254 skb
= alloc_can_skb(ndev
, &cf
);
1255 if (unlikely(skb
== NULL
)) {
1256 stats
->rx_dropped
++;
1260 /* convert the ICAN3 frame into Linux CAN format */
1261 ican3_to_can_frame(mod
, &desc
, cf
);
1264 * If this is an ECHO frame received from the hardware loopback
1265 * feature, use the skb saved in the ECHO stack instead. This allows
1266 * the Linux CAN core to support CAN_RAW_RECV_OWN_MSGS correctly.
1268 * Since this is a confirmation of a successfully transmitted packet
1269 * sent from this host, update the transmit statistics.
1271 * Also, the netdevice queue needs to be allowed to send packets again.
1273 if (ican3_echo_skb_matches(mod
, skb
)) {
1274 stats
->tx_packets
++;
1275 stats
->tx_bytes
+= ican3_get_echo_skb(mod
);
1280 /* update statistics, receive the skb */
1281 stats
->rx_packets
++;
1282 stats
->rx_bytes
+= cf
->can_dlc
;
1283 netif_receive_skb(skb
);
1286 /* toggle the valid bit and return the descriptor to the ring */
1287 desc
.control
^= DESC_VALID
;
1289 spin_lock_irqsave(&mod
->lock
, flags
);
1291 ican3_set_page(mod
, mod
->fastrx_start
+ (mod
->fastrx_num
/ 16));
1292 memcpy_toio(desc_addr
, &desc
, 1);
1294 /* update the next buffer pointer */
1295 mod
->fastrx_num
= (desc
.control
& DESC_WRAP
) ? 0
1296 : (mod
->fastrx_num
+ 1);
1298 /* there are still more buffers to process */
1299 spin_unlock_irqrestore(&mod
->lock
, flags
);
1303 static int ican3_napi(struct napi_struct
*napi
, int budget
)
1305 struct ican3_dev
*mod
= container_of(napi
, struct ican3_dev
, napi
);
1306 unsigned long flags
;
1310 /* process all communication messages */
1312 struct ican3_msg
uninitialized_var(msg
);
1313 ret
= ican3_recv_msg(mod
, &msg
);
1317 ican3_handle_message(mod
, &msg
);
1320 /* process all CAN frames from the fast interface */
1321 while (received
< budget
) {
1322 ret
= ican3_recv_skb(mod
);
1329 /* We have processed all packets that the adapter had, but it
1330 * was less than our budget, stop polling */
1331 if (received
< budget
)
1332 napi_complete(napi
);
1334 spin_lock_irqsave(&mod
->lock
, flags
);
1336 /* Wake up the transmit queue if necessary */
1337 if (netif_queue_stopped(mod
->ndev
) && ican3_txok(mod
))
1338 netif_wake_queue(mod
->ndev
);
1340 spin_unlock_irqrestore(&mod
->lock
, flags
);
1342 /* re-enable interrupt generation */
1343 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_enable
);
1347 static irqreturn_t
ican3_irq(int irq
, void *dev_id
)
1349 struct ican3_dev
*mod
= dev_id
;
1353 * The interrupt status register on this device reports interrupts
1354 * as zeroes instead of using ones like most other devices
1356 stat
= ioread8(&mod
->ctrl
->int_disable
) & (1 << mod
->num
);
1357 if (stat
== (1 << mod
->num
))
1360 /* clear the MODULbus interrupt from the microcontroller */
1361 ioread8(&mod
->dpmctrl
->interrupt
);
1363 /* disable interrupt generation, schedule the NAPI poller */
1364 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_disable
);
1365 napi_schedule(&mod
->napi
);
1370 * Firmware reset, startup, and shutdown
1374 * Reset an ICAN module to its power-on state
1376 * CONTEXT: no network device registered
1378 static int ican3_reset_module(struct ican3_dev
*mod
)
1380 unsigned long start
;
1383 /* disable interrupts so no more work is scheduled */
1384 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_disable
);
1386 /* the first unallocated page in the DPM is #9 */
1387 mod
->free_page
= DPM_FREE_START
;
1389 ican3_set_page(mod
, QUEUE_OLD_CONTROL
);
1390 runold
= ioread8(mod
->dpm
+ TARGET_RUNNING
);
1392 /* reset the module */
1393 iowrite8(0x00, &mod
->dpmctrl
->hwreset
);
1395 /* wait until the module has finished resetting and is running */
1398 ican3_set_page(mod
, QUEUE_OLD_CONTROL
);
1399 runnew
= ioread8(mod
->dpm
+ TARGET_RUNNING
);
1400 if (runnew
== (runold
^ 0xff))
1404 } while (time_before(jiffies
, start
+ HZ
/ 4));
1406 netdev_err(mod
->ndev
, "failed to reset CAN module\n");
1410 static void ican3_shutdown_module(struct ican3_dev
*mod
)
1412 ican3_msg_disconnect(mod
);
1413 ican3_reset_module(mod
);
1417 * Startup an ICAN module, bringing it into fast mode
1419 static int ican3_startup_module(struct ican3_dev
*mod
)
1423 ret
= ican3_reset_module(mod
);
1425 netdev_err(mod
->ndev
, "unable to reset module\n");
1429 /* re-enable interrupts so we can send messages */
1430 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_enable
);
1432 ret
= ican3_msg_connect(mod
);
1434 netdev_err(mod
->ndev
, "unable to connect to module\n");
1438 ican3_init_new_host_interface(mod
);
1439 ret
= ican3_msg_newhostif(mod
);
1441 netdev_err(mod
->ndev
, "unable to switch to new-style interface\n");
1445 /* default to "termination on" */
1446 ret
= ican3_set_termination(mod
, true);
1448 netdev_err(mod
->ndev
, "unable to enable termination\n");
1452 /* default to "bus errors enabled" */
1453 ret
= ican3_set_buserror(mod
, 1);
1455 netdev_err(mod
->ndev
, "unable to set bus-error\n");
1459 ican3_init_fast_host_interface(mod
);
1460 ret
= ican3_msg_fasthostif(mod
);
1462 netdev_err(mod
->ndev
, "unable to switch to fast host interface\n");
1466 ret
= ican3_set_id_filter(mod
, true);
1468 netdev_err(mod
->ndev
, "unable to set acceptance filter\n");
1476 * CAN Network Device
1479 static int ican3_open(struct net_device
*ndev
)
1481 struct ican3_dev
*mod
= netdev_priv(ndev
);
1484 /* open the CAN layer */
1485 ret
= open_candev(ndev
);
1487 netdev_err(mod
->ndev
, "unable to start CAN layer\n");
1491 /* bring the bus online */
1492 ret
= ican3_set_bus_state(mod
, true);
1494 netdev_err(mod
->ndev
, "unable to set bus-on\n");
1499 /* start up the network device */
1500 mod
->can
.state
= CAN_STATE_ERROR_ACTIVE
;
1501 netif_start_queue(ndev
);
1506 static int ican3_stop(struct net_device
*ndev
)
1508 struct ican3_dev
*mod
= netdev_priv(ndev
);
1511 /* stop the network device xmit routine */
1512 netif_stop_queue(ndev
);
1513 mod
->can
.state
= CAN_STATE_STOPPED
;
1515 /* bring the bus offline, stop receiving packets */
1516 ret
= ican3_set_bus_state(mod
, false);
1518 netdev_err(mod
->ndev
, "unable to set bus-off\n");
1522 /* drop all outstanding echo skbs */
1523 skb_queue_purge(&mod
->echoq
);
1525 /* close the CAN layer */
1530 static int ican3_xmit(struct sk_buff
*skb
, struct net_device
*ndev
)
1532 struct ican3_dev
*mod
= netdev_priv(ndev
);
1533 struct can_frame
*cf
= (struct can_frame
*)skb
->data
;
1534 struct ican3_fast_desc desc
;
1535 void __iomem
*desc_addr
;
1536 unsigned long flags
;
1538 if (can_dropped_invalid_skb(ndev
, skb
))
1539 return NETDEV_TX_OK
;
1541 spin_lock_irqsave(&mod
->lock
, flags
);
1543 /* check that we can actually transmit */
1544 if (!ican3_txok(mod
)) {
1545 netdev_err(mod
->ndev
, "BUG: no free descriptors\n");
1546 spin_unlock_irqrestore(&mod
->lock
, flags
);
1547 return NETDEV_TX_BUSY
;
1550 /* copy the control bits of the descriptor */
1551 ican3_set_page(mod
, mod
->fasttx_start
+ (mod
->fasttx_num
/ 16));
1552 desc_addr
= mod
->dpm
+ ((mod
->fasttx_num
% 16) * sizeof(desc
));
1553 memset(&desc
, 0, sizeof(desc
));
1554 memcpy_fromio(&desc
, desc_addr
, 1);
1556 /* convert the Linux CAN frame into ICAN3 format */
1557 can_frame_to_ican3(mod
, cf
, &desc
);
1560 * This hardware doesn't have TX-done notifications, so we'll try and
1561 * emulate it the best we can using ECHO skbs. Add the skb to the ECHO
1562 * stack. Upon packet reception, check if the ECHO skb and received
1563 * skb match, and use that to wake the queue.
1565 ican3_put_echo_skb(mod
, skb
);
1568 * the programming manual says that you must set the IVALID bit, then
1569 * interrupt, then set the valid bit. Quite weird, but it seems to be
1570 * required for this to work
1572 desc
.control
|= DESC_IVALID
;
1573 memcpy_toio(desc_addr
, &desc
, sizeof(desc
));
1575 /* generate a MODULbus interrupt to the microcontroller */
1576 iowrite8(0x01, &mod
->dpmctrl
->interrupt
);
1578 desc
.control
^= DESC_VALID
;
1579 memcpy_toio(desc_addr
, &desc
, sizeof(desc
));
1581 /* update the next buffer pointer */
1582 mod
->fasttx_num
= (desc
.control
& DESC_WRAP
) ? 0
1583 : (mod
->fasttx_num
+ 1);
1585 /* if there is no free descriptor space, stop the transmit queue */
1586 if (!ican3_txok(mod
))
1587 netif_stop_queue(ndev
);
1589 spin_unlock_irqrestore(&mod
->lock
, flags
);
1590 return NETDEV_TX_OK
;
1593 static const struct net_device_ops ican3_netdev_ops
= {
1594 .ndo_open
= ican3_open
,
1595 .ndo_stop
= ican3_stop
,
1596 .ndo_start_xmit
= ican3_xmit
,
1597 .ndo_change_mtu
= can_change_mtu
,
1601 * Low-level CAN Device
1604 /* This structure was stolen from drivers/net/can/sja1000/sja1000.c */
1605 static const struct can_bittiming_const ican3_bittiming_const
= {
1618 * This routine was stolen from drivers/net/can/sja1000/sja1000.c
1620 * The bittiming register command for the ICAN3 just sets the bit timing
1621 * registers on the SJA1000 chip directly
1623 static int ican3_set_bittiming(struct net_device
*ndev
)
1625 struct ican3_dev
*mod
= netdev_priv(ndev
);
1626 struct can_bittiming
*bt
= &mod
->can
.bittiming
;
1627 struct ican3_msg msg
;
1630 btr0
= ((bt
->brp
- 1) & 0x3f) | (((bt
->sjw
- 1) & 0x3) << 6);
1631 btr1
= ((bt
->prop_seg
+ bt
->phase_seg1
- 1) & 0xf) |
1632 (((bt
->phase_seg2
- 1) & 0x7) << 4);
1633 if (mod
->can
.ctrlmode
& CAN_CTRLMODE_3_SAMPLES
)
1636 memset(&msg
, 0, sizeof(msg
));
1637 msg
.spec
= MSG_CBTRREQ
;
1638 msg
.len
= cpu_to_le16(4);
1644 return ican3_send_msg(mod
, &msg
);
1647 static int ican3_set_mode(struct net_device
*ndev
, enum can_mode mode
)
1649 struct ican3_dev
*mod
= netdev_priv(ndev
);
1652 if (mode
!= CAN_MODE_START
)
1655 /* bring the bus online */
1656 ret
= ican3_set_bus_state(mod
, true);
1658 netdev_err(ndev
, "unable to set bus-on\n");
1662 /* start up the network device */
1663 mod
->can
.state
= CAN_STATE_ERROR_ACTIVE
;
1665 if (netif_queue_stopped(ndev
))
1666 netif_wake_queue(ndev
);
1671 static int ican3_get_berr_counter(const struct net_device
*ndev
,
1672 struct can_berr_counter
*bec
)
1674 struct ican3_dev
*mod
= netdev_priv(ndev
);
1677 ret
= ican3_send_inquiry(mod
, INQUIRY_STATUS
);
1681 ret
= wait_for_completion_timeout(&mod
->buserror_comp
, HZ
);
1683 netdev_info(mod
->ndev
, "%s timed out\n", __func__
);
1687 bec
->rxerr
= mod
->bec
.rxerr
;
1688 bec
->txerr
= mod
->bec
.txerr
;
1696 static ssize_t
ican3_sysfs_show_term(struct device
*dev
,
1697 struct device_attribute
*attr
,
1700 struct ican3_dev
*mod
= netdev_priv(to_net_dev(dev
));
1703 ret
= ican3_send_inquiry(mod
, INQUIRY_TERMINATION
);
1707 ret
= wait_for_completion_timeout(&mod
->termination_comp
, HZ
);
1709 netdev_info(mod
->ndev
, "%s timed out\n", __func__
);
1713 return snprintf(buf
, PAGE_SIZE
, "%u\n", mod
->termination_enabled
);
1716 static ssize_t
ican3_sysfs_set_term(struct device
*dev
,
1717 struct device_attribute
*attr
,
1718 const char *buf
, size_t count
)
1720 struct ican3_dev
*mod
= netdev_priv(to_net_dev(dev
));
1721 unsigned long enable
;
1724 if (kstrtoul(buf
, 0, &enable
))
1727 ret
= ican3_set_termination(mod
, enable
);
1734 static DEVICE_ATTR(termination
, S_IWUSR
| S_IRUGO
, ican3_sysfs_show_term
,
1735 ican3_sysfs_set_term
);
1737 static struct attribute
*ican3_sysfs_attrs
[] = {
1738 &dev_attr_termination
.attr
,
1742 static struct attribute_group ican3_sysfs_attr_group
= {
1743 .attrs
= ican3_sysfs_attrs
,
1750 static int ican3_probe(struct platform_device
*pdev
)
1752 struct janz_platform_data
*pdata
;
1753 struct net_device
*ndev
;
1754 struct ican3_dev
*mod
;
1755 struct resource
*res
;
1759 pdata
= dev_get_platdata(&pdev
->dev
);
1763 dev_dbg(&pdev
->dev
, "probe: module number %d\n", pdata
->modno
);
1765 /* save the struct device for printing */
1768 /* allocate the CAN device and private data */
1769 ndev
= alloc_candev(sizeof(*mod
), 0);
1771 dev_err(dev
, "unable to allocate CANdev\n");
1776 platform_set_drvdata(pdev
, ndev
);
1777 mod
= netdev_priv(ndev
);
1779 mod
->num
= pdata
->modno
;
1780 netif_napi_add(ndev
, &mod
->napi
, ican3_napi
, ICAN3_RX_BUFFERS
);
1781 skb_queue_head_init(&mod
->echoq
);
1782 spin_lock_init(&mod
->lock
);
1783 init_completion(&mod
->termination_comp
);
1784 init_completion(&mod
->buserror_comp
);
1786 /* setup device-specific sysfs attributes */
1787 ndev
->sysfs_groups
[0] = &ican3_sysfs_attr_group
;
1789 /* the first unallocated page in the DPM is 9 */
1790 mod
->free_page
= DPM_FREE_START
;
1792 ndev
->netdev_ops
= &ican3_netdev_ops
;
1793 ndev
->flags
|= IFF_ECHO
;
1794 SET_NETDEV_DEV(ndev
, &pdev
->dev
);
1796 mod
->can
.clock
.freq
= ICAN3_CAN_CLOCK
;
1797 mod
->can
.bittiming_const
= &ican3_bittiming_const
;
1798 mod
->can
.do_set_bittiming
= ican3_set_bittiming
;
1799 mod
->can
.do_set_mode
= ican3_set_mode
;
1800 mod
->can
.do_get_berr_counter
= ican3_get_berr_counter
;
1801 mod
->can
.ctrlmode_supported
= CAN_CTRLMODE_3_SAMPLES
1802 | CAN_CTRLMODE_BERR_REPORTING
1803 | CAN_CTRLMODE_ONE_SHOT
;
1805 /* find our IRQ number */
1806 mod
->irq
= platform_get_irq(pdev
, 0);
1808 dev_err(dev
, "IRQ line not found\n");
1813 ndev
->irq
= mod
->irq
;
1815 /* get access to the MODULbus registers for this module */
1816 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
1818 dev_err(dev
, "MODULbus registers not found\n");
1823 mod
->dpm
= ioremap(res
->start
, resource_size(res
));
1825 dev_err(dev
, "MODULbus registers not ioremap\n");
1830 mod
->dpmctrl
= mod
->dpm
+ DPM_PAGE_SIZE
;
1832 /* get access to the control registers for this module */
1833 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 1);
1835 dev_err(dev
, "CONTROL registers not found\n");
1837 goto out_iounmap_dpm
;
1840 mod
->ctrl
= ioremap(res
->start
, resource_size(res
));
1842 dev_err(dev
, "CONTROL registers not ioremap\n");
1844 goto out_iounmap_dpm
;
1847 /* disable our IRQ, then hookup the IRQ handler */
1848 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_disable
);
1849 ret
= request_irq(mod
->irq
, ican3_irq
, IRQF_SHARED
, DRV_NAME
, mod
);
1851 dev_err(dev
, "unable to request IRQ\n");
1852 goto out_iounmap_ctrl
;
1855 /* reset and initialize the CAN controller into fast mode */
1856 napi_enable(&mod
->napi
);
1857 ret
= ican3_startup_module(mod
);
1859 dev_err(dev
, "%s: unable to start CANdev\n", __func__
);
1863 /* register with the Linux CAN layer */
1864 ret
= register_candev(ndev
);
1866 dev_err(dev
, "%s: unable to register CANdev\n", __func__
);
1870 dev_info(dev
, "module %d: registered CAN device\n", pdata
->modno
);
1874 napi_disable(&mod
->napi
);
1875 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_disable
);
1876 free_irq(mod
->irq
, mod
);
1887 static int ican3_remove(struct platform_device
*pdev
)
1889 struct net_device
*ndev
= platform_get_drvdata(pdev
);
1890 struct ican3_dev
*mod
= netdev_priv(ndev
);
1892 /* unregister the netdevice, stop interrupts */
1893 unregister_netdev(ndev
);
1894 napi_disable(&mod
->napi
);
1895 iowrite8(1 << mod
->num
, &mod
->ctrl
->int_disable
);
1896 free_irq(mod
->irq
, mod
);
1898 /* put the module into reset */
1899 ican3_shutdown_module(mod
);
1901 /* unmap all registers */
1910 static struct platform_driver ican3_driver
= {
1913 .owner
= THIS_MODULE
,
1915 .probe
= ican3_probe
,
1916 .remove
= ican3_remove
,
1919 module_platform_driver(ican3_driver
);
1921 MODULE_AUTHOR("Ira W. Snyder <iws@ovro.caltech.edu>");
1922 MODULE_DESCRIPTION("Janz MODULbus VMOD-ICAN3 Driver");
1923 MODULE_LICENSE("GPL");
1924 MODULE_ALIAS("platform:janz-ican3");