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1/*
2 * slcan.c - serial line CAN interface driver (using tty line discipline)
3 *
3396c782 4 * This file is derived from linux/drivers/net/slip/slip.c
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5 *
6 * slip.c Authors : Laurence Culhane <loz@holmes.demon.co.uk>
7 * Fred N. van Kempen <waltje@uwalt.nl.mugnet.org>
8 * slcan.c Author : Oliver Hartkopp <socketcan@hartkopp.net>
9 *
10 * This program is free software; you can redistribute it and/or modify it
11 * under the terms of the GNU General Public License as published by the
12 * Free Software Foundation; either version 2 of the License, or (at your
13 * option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful, but
16 * WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License along
05780d98 21 * with this program; if not, see http://www.gnu.org/licenses/gpl.html
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22 *
23 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
24 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
25 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
26 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
27 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
28 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
29 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
33 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
34 * DAMAGE.
35 *
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36 */
37
38#include <linux/module.h>
39#include <linux/moduleparam.h>
40
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41#include <linux/uaccess.h>
42#include <linux/bitops.h>
43#include <linux/string.h>
44#include <linux/tty.h>
45#include <linux/errno.h>
46#include <linux/netdevice.h>
47#include <linux/skbuff.h>
48#include <linux/rtnetlink.h>
49#include <linux/if_arp.h>
50#include <linux/if_ether.h>
84b3cdc3 51#include <linux/sched.h>
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52#include <linux/delay.h>
53#include <linux/init.h>
81fc70d8 54#include <linux/kernel.h>
a8e83b17 55#include <linux/workqueue.h>
a1044e36 56#include <linux/can.h>
156c2bb9 57#include <linux/can/skb.h>
a1044e36 58
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59MODULE_ALIAS_LDISC(N_SLCAN);
60MODULE_DESCRIPTION("serial line CAN interface");
61MODULE_LICENSE("GPL");
62MODULE_AUTHOR("Oliver Hartkopp <socketcan@hartkopp.net>");
63
64#define SLCAN_MAGIC 0x53CA
65
66static int maxdev = 10; /* MAX number of SLCAN channels;
67 This can be overridden with
68 insmod slcan.ko maxdev=nnn */
69module_param(maxdev, int, 0);
70MODULE_PARM_DESC(maxdev, "Maximum number of slcan interfaces");
71
72/* maximum rx buffer len: extended CAN frame with timestamp */
73#define SLC_MTU (sizeof("T1111222281122334455667788EA5F\r")+1)
74
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75#define SLC_CMD_LEN 1
76#define SLC_SFF_ID_LEN 3
77#define SLC_EFF_ID_LEN 8
78
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79struct slcan {
80 int magic;
81
82 /* Various fields. */
83 struct tty_struct *tty; /* ptr to TTY structure */
84 struct net_device *dev; /* easy for intr handling */
85 spinlock_t lock;
a8e83b17 86 struct work_struct tx_work; /* Flushes transmit buffer */
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87
88 /* These are pointers to the malloc()ed frame buffers. */
89 unsigned char rbuff[SLC_MTU]; /* receiver buffer */
90 int rcount; /* received chars counter */
91 unsigned char xbuff[SLC_MTU]; /* transmitter buffer */
92 unsigned char *xhead; /* pointer to next XMIT byte */
93 int xleft; /* bytes left in XMIT queue */
94
95 unsigned long flags; /* Flag values/ mode etc */
96#define SLF_INUSE 0 /* Channel in use */
97#define SLF_ERROR 1 /* Parity, etc. error */
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98};
99
100static struct net_device **slcan_devs;
101
102 /************************************************************************
103 * SLCAN ENCAPSULATION FORMAT *
104 ************************************************************************/
105
106/*
107 * A CAN frame has a can_id (11 bit standard frame format OR 29 bit extended
108 * frame format) a data length code (can_dlc) which can be from 0 to 8
109 * and up to <can_dlc> data bytes as payload.
110 * Additionally a CAN frame may become a remote transmission frame if the
111 * RTR-bit is set. This causes another ECU to send a CAN frame with the
112 * given can_id.
113 *
114 * The SLCAN ASCII representation of these different frame types is:
115 * <type> <id> <dlc> <data>*
116 *
117 * Extended frames (29 bit) are defined by capital characters in the type.
118 * RTR frames are defined as 'r' types - normal frames have 't' type:
119 * t => 11 bit data frame
120 * r => 11 bit RTR frame
121 * T => 29 bit data frame
122 * R => 29 bit RTR frame
123 *
124 * The <id> is 3 (standard) or 8 (extended) bytes in ASCII Hex (base64).
125 * The <dlc> is a one byte ASCII number ('0' - '8')
126 * The <data> section has at much ASCII Hex bytes as defined by the <dlc>
127 *
128 * Examples:
129 *
130 * t1230 : can_id 0x123, can_dlc 0, no data
131 * t4563112233 : can_id 0x456, can_dlc 3, data 0x11 0x22 0x33
132 * T12ABCDEF2AA55 : extended can_id 0x12ABCDEF, can_dlc 2, data 0xAA 0x55
133 * r1230 : can_id 0x123, can_dlc 0, no data, remote transmission request
134 *
135 */
136
137 /************************************************************************
138 * STANDARD SLCAN DECAPSULATION *
139 ************************************************************************/
140
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141/* Send one completely decapsulated can_frame to the network layer */
142static void slc_bump(struct slcan *sl)
143{
144 struct sk_buff *skb;
145 struct can_frame cf;
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146 int i, tmp;
147 u32 tmpid;
148 char *cmd = sl->rbuff;
149
150 cf.can_id = 0;
151
152 switch (*cmd) {
153 case 'r':
154 cf.can_id = CAN_RTR_FLAG;
155 /* fallthrough */
156 case 't':
157 /* store dlc ASCII value and terminate SFF CAN ID string */
158 cf.can_dlc = sl->rbuff[SLC_CMD_LEN + SLC_SFF_ID_LEN];
159 sl->rbuff[SLC_CMD_LEN + SLC_SFF_ID_LEN] = 0;
160 /* point to payload data behind the dlc */
161 cmd += SLC_CMD_LEN + SLC_SFF_ID_LEN + 1;
162 break;
163 case 'R':
164 cf.can_id = CAN_RTR_FLAG;
165 /* fallthrough */
166 case 'T':
167 cf.can_id |= CAN_EFF_FLAG;
168 /* store dlc ASCII value and terminate EFF CAN ID string */
169 cf.can_dlc = sl->rbuff[SLC_CMD_LEN + SLC_EFF_ID_LEN];
170 sl->rbuff[SLC_CMD_LEN + SLC_EFF_ID_LEN] = 0;
171 /* point to payload data behind the dlc */
172 cmd += SLC_CMD_LEN + SLC_EFF_ID_LEN + 1;
173 break;
174 default:
a1044e36 175 return;
87397fe1 176 }
a1044e36 177
87397fe1 178 if (kstrtou32(sl->rbuff + SLC_CMD_LEN, 16, &tmpid))
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179 return;
180
87397fe1 181 cf.can_id |= tmpid;
a1044e36 182
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AN
183 /* get can_dlc from sanitized ASCII value */
184 if (cf.can_dlc >= '0' && cf.can_dlc < '9')
185 cf.can_dlc -= '0';
186 else
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187 return;
188
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189 *(u64 *) (&cf.data) = 0; /* clear payload */
190
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AN
191 /* RTR frames may have a dlc > 0 but they never have any data bytes */
192 if (!(cf.can_id & CAN_RTR_FLAG)) {
193 for (i = 0; i < cf.can_dlc; i++) {
194 tmp = hex_to_bin(*cmd++);
195 if (tmp < 0)
196 return;
197 cf.data[i] = (tmp << 4);
198 tmp = hex_to_bin(*cmd++);
199 if (tmp < 0)
200 return;
201 cf.data[i] |= tmp;
202 }
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203 }
204
156c2bb9
OH
205 skb = dev_alloc_skb(sizeof(struct can_frame) +
206 sizeof(struct can_skb_priv));
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OH
207 if (!skb)
208 return;
209
210 skb->dev = sl->dev;
211 skb->protocol = htons(ETH_P_CAN);
212 skb->pkt_type = PACKET_BROADCAST;
213 skb->ip_summed = CHECKSUM_UNNECESSARY;
156c2bb9 214
2bf3440d
OH
215 can_skb_reserve(skb);
216 can_skb_prv(skb)->ifindex = sl->dev->ifindex;
d3b58c47 217 can_skb_prv(skb)->skbcnt = 0;
156c2bb9 218
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219 memcpy(skb_put(skb, sizeof(struct can_frame)),
220 &cf, sizeof(struct can_frame));
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221
222 sl->dev->stats.rx_packets++;
223 sl->dev->stats.rx_bytes += cf.can_dlc;
a2e78cf7 224 netif_rx_ni(skb);
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225}
226
227/* parse tty input stream */
228static void slcan_unesc(struct slcan *sl, unsigned char s)
229{
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230 if ((s == '\r') || (s == '\a')) { /* CR or BEL ends the pdu */
231 if (!test_and_clear_bit(SLF_ERROR, &sl->flags) &&
232 (sl->rcount > 4)) {
233 slc_bump(sl);
234 }
235 sl->rcount = 0;
236 } else {
237 if (!test_bit(SLF_ERROR, &sl->flags)) {
238 if (sl->rcount < SLC_MTU) {
239 sl->rbuff[sl->rcount++] = s;
240 return;
241 } else {
242 sl->dev->stats.rx_over_errors++;
243 set_bit(SLF_ERROR, &sl->flags);
244 }
245 }
246 }
247}
248
249 /************************************************************************
250 * STANDARD SLCAN ENCAPSULATION *
251 ************************************************************************/
252
253/* Encapsulate one can_frame and stuff into a TTY queue. */
254static void slc_encaps(struct slcan *sl, struct can_frame *cf)
255{
87397fe1
AN
256 int actual, i;
257 unsigned char *pos;
258 unsigned char *endpos;
259 canid_t id = cf->can_id;
260
261 pos = sl->xbuff;
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262
263 if (cf->can_id & CAN_RTR_FLAG)
87397fe1 264 *pos = 'R'; /* becomes 'r' in standard frame format (SFF) */
a1044e36 265 else
87397fe1 266 *pos = 'T'; /* becomes 't' in standard frame format (SSF) */
a1044e36 267
87397fe1
AN
268 /* determine number of chars for the CAN-identifier */
269 if (cf->can_id & CAN_EFF_FLAG) {
270 id &= CAN_EFF_MASK;
271 endpos = pos + SLC_EFF_ID_LEN;
272 } else {
273 *pos |= 0x20; /* convert R/T to lower case for SFF */
274 id &= CAN_SFF_MASK;
275 endpos = pos + SLC_SFF_ID_LEN;
276 }
277
278 /* build 3 (SFF) or 8 (EFF) digit CAN identifier */
279 pos++;
280 while (endpos >= pos) {
281 *endpos-- = hex_asc_upper[id & 0xf];
282 id >>= 4;
283 }
284
285 pos += (cf->can_id & CAN_EFF_FLAG) ? SLC_EFF_ID_LEN : SLC_SFF_ID_LEN;
a1044e36 286
87397fe1 287 *pos++ = cf->can_dlc + '0';
a1044e36 288
87397fe1
AN
289 /* RTR frames may have a dlc > 0 but they never have any data bytes */
290 if (!(cf->can_id & CAN_RTR_FLAG)) {
291 for (i = 0; i < cf->can_dlc; i++)
292 pos = hex_byte_pack_upper(pos, cf->data[i]);
293 }
a1044e36 294
87397fe1 295 *pos++ = '\r';
a1044e36
OH
296
297 /* Order of next two lines is *very* important.
298 * When we are sending a little amount of data,
299 * the transfer may be completed inside the ops->write()
300 * routine, because it's running with interrupts enabled.
301 * In this case we *never* got WRITE_WAKEUP event,
302 * if we did not request it before write operation.
303 * 14 Oct 1994 Dmitry Gorodchanin.
304 */
305 set_bit(TTY_DO_WRITE_WAKEUP, &sl->tty->flags);
87397fe1
AN
306 actual = sl->tty->ops->write(sl->tty, sl->xbuff, pos - sl->xbuff);
307 sl->xleft = (pos - sl->xbuff) - actual;
a1044e36
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308 sl->xhead = sl->xbuff + actual;
309 sl->dev->stats.tx_bytes += cf->can_dlc;
310}
311
a8e83b17
TH
312/* Write out any remaining transmit buffer. Scheduled when tty is writable */
313static void slcan_transmit(struct work_struct *work)
a1044e36 314{
a8e83b17 315 struct slcan *sl = container_of(work, struct slcan, tx_work);
a1044e36 316 int actual;
a1044e36 317
a8e83b17 318 spin_lock_bh(&sl->lock);
a1044e36 319 /* First make sure we're connected. */
a8e83b17
TH
320 if (!sl->tty || sl->magic != SLCAN_MAGIC || !netif_running(sl->dev)) {
321 spin_unlock_bh(&sl->lock);
a1044e36 322 return;
a8e83b17 323 }
a1044e36
OH
324
325 if (sl->xleft <= 0) {
326 /* Now serial buffer is almost free & we can start
327 * transmission of another packet */
328 sl->dev->stats.tx_packets++;
a8e83b17 329 clear_bit(TTY_DO_WRITE_WAKEUP, &sl->tty->flags);
367525c8 330 spin_unlock_bh(&sl->lock);
a1044e36
OH
331 netif_wake_queue(sl->dev);
332 return;
333 }
334
a8e83b17 335 actual = sl->tty->ops->write(sl->tty, sl->xhead, sl->xleft);
a1044e36
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336 sl->xleft -= actual;
337 sl->xhead += actual;
367525c8 338 spin_unlock_bh(&sl->lock);
a1044e36
OH
339}
340
a8e83b17
TH
341/*
342 * Called by the driver when there's room for more data.
343 * Schedule the transmit.
344 */
345static void slcan_write_wakeup(struct tty_struct *tty)
346{
347 struct slcan *sl = tty->disc_data;
348
349 schedule_work(&sl->tx_work);
350}
351
a1044e36
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352/* Send a can_frame to a TTY queue. */
353static netdev_tx_t slc_xmit(struct sk_buff *skb, struct net_device *dev)
354{
355 struct slcan *sl = netdev_priv(dev);
356
21aedfdf 357 if (skb->len != CAN_MTU)
a1044e36
OH
358 goto out;
359
360 spin_lock(&sl->lock);
361 if (!netif_running(dev)) {
362 spin_unlock(&sl->lock);
363 printk(KERN_WARNING "%s: xmit: iface is down\n", dev->name);
364 goto out;
365 }
366 if (sl->tty == NULL) {
367 spin_unlock(&sl->lock);
368 goto out;
369 }
370
371 netif_stop_queue(sl->dev);
372 slc_encaps(sl, (struct can_frame *) skb->data); /* encaps & send */
373 spin_unlock(&sl->lock);
374
375out:
376 kfree_skb(skb);
377 return NETDEV_TX_OK;
378}
379
380
381/******************************************
382 * Routines looking at netdevice side.
383 ******************************************/
384
385/* Netdevice UP -> DOWN routine */
386static int slc_close(struct net_device *dev)
387{
388 struct slcan *sl = netdev_priv(dev);
389
390 spin_lock_bh(&sl->lock);
391 if (sl->tty) {
392 /* TTY discipline is running. */
393 clear_bit(TTY_DO_WRITE_WAKEUP, &sl->tty->flags);
394 }
395 netif_stop_queue(dev);
396 sl->rcount = 0;
397 sl->xleft = 0;
398 spin_unlock_bh(&sl->lock);
399
400 return 0;
401}
402
403/* Netdevice DOWN -> UP routine */
404static int slc_open(struct net_device *dev)
405{
406 struct slcan *sl = netdev_priv(dev);
407
408 if (sl->tty == NULL)
409 return -ENODEV;
410
411 sl->flags &= (1 << SLF_INUSE);
412 netif_start_queue(dev);
413 return 0;
414}
415
416/* Hook the destructor so we can free slcan devs at the right point in time */
417static void slc_free_netdev(struct net_device *dev)
418{
419 int i = dev->base_addr;
cf124db5 420
a1044e36
OH
421 slcan_devs[i] = NULL;
422}
423
c971fa2a
OH
424static int slcan_change_mtu(struct net_device *dev, int new_mtu)
425{
426 return -EINVAL;
427}
428
a1044e36
OH
429static const struct net_device_ops slc_netdev_ops = {
430 .ndo_open = slc_open,
431 .ndo_stop = slc_close,
432 .ndo_start_xmit = slc_xmit,
c971fa2a 433 .ndo_change_mtu = slcan_change_mtu,
a1044e36
OH
434};
435
436static void slc_setup(struct net_device *dev)
437{
438 dev->netdev_ops = &slc_netdev_ops;
cf124db5
DM
439 dev->needs_free_netdev = true;
440 dev->priv_destructor = slc_free_netdev;
a1044e36
OH
441
442 dev->hard_header_len = 0;
443 dev->addr_len = 0;
444 dev->tx_queue_len = 10;
445
21aedfdf 446 dev->mtu = CAN_MTU;
a1044e36
OH
447 dev->type = ARPHRD_CAN;
448
449 /* New-style flags. */
450 dev->flags = IFF_NOARP;
34324dc2 451 dev->features = NETIF_F_HW_CSUM;
a1044e36
OH
452}
453
454/******************************************
455 Routines looking at TTY side.
456 ******************************************/
457
458/*
459 * Handle the 'receiver data ready' interrupt.
460 * This function is called by the 'tty_io' module in the kernel when
461 * a block of SLCAN data has been received, which can now be decapsulated
462 * and sent on to some IP layer for further processing. This will not
463 * be re-entered while running but other ldisc functions may be called
464 * in parallel
465 */
466
55db4c64 467static void slcan_receive_buf(struct tty_struct *tty,
a1044e36
OH
468 const unsigned char *cp, char *fp, int count)
469{
470 struct slcan *sl = (struct slcan *) tty->disc_data;
471
472 if (!sl || sl->magic != SLCAN_MAGIC || !netif_running(sl->dev))
55db4c64 473 return;
a1044e36
OH
474
475 /* Read the characters out of the buffer */
55db4c64 476 while (count--) {
a1044e36
OH
477 if (fp && *fp++) {
478 if (!test_and_set_bit(SLF_ERROR, &sl->flags))
479 sl->dev->stats.rx_errors++;
480 cp++;
481 continue;
482 }
483 slcan_unesc(sl, *cp++);
484 }
485}
486
487/************************************
488 * slcan_open helper routines.
489 ************************************/
490
491/* Collect hanged up channels */
492static void slc_sync(void)
493{
494 int i;
495 struct net_device *dev;
496 struct slcan *sl;
497
498 for (i = 0; i < maxdev; i++) {
499 dev = slcan_devs[i];
500 if (dev == NULL)
501 break;
502
503 sl = netdev_priv(dev);
7ad711b4 504 if (sl->tty)
a1044e36
OH
505 continue;
506 if (dev->flags & IFF_UP)
507 dev_close(dev);
508 }
509}
510
511/* Find a free SLCAN channel, and link in this `tty' line. */
512static struct slcan *slc_alloc(dev_t line)
513{
514 int i;
2af4ba85 515 char name[IFNAMSIZ];
a1044e36
OH
516 struct net_device *dev = NULL;
517 struct slcan *sl;
518
a1044e36
OH
519 for (i = 0; i < maxdev; i++) {
520 dev = slcan_devs[i];
521 if (dev == NULL)
522 break;
523
524 }
525
526 /* Sorry, too many, all slots in use */
527 if (i >= maxdev)
528 return NULL;
529
2af4ba85 530 sprintf(name, "slcan%d", i);
c835a677 531 dev = alloc_netdev(sizeof(*sl), name, NET_NAME_UNKNOWN, slc_setup);
2af4ba85
OH
532 if (!dev)
533 return NULL;
a1044e36 534
2af4ba85 535 dev->base_addr = i;
a1044e36
OH
536 sl = netdev_priv(dev);
537
538 /* Initialize channel control data */
539 sl->magic = SLCAN_MAGIC;
540 sl->dev = dev;
541 spin_lock_init(&sl->lock);
a8e83b17 542 INIT_WORK(&sl->tx_work, slcan_transmit);
a1044e36
OH
543 slcan_devs[i] = dev;
544
545 return sl;
546}
547
548/*
549 * Open the high-level part of the SLCAN channel.
550 * This function is called by the TTY module when the
551 * SLCAN line discipline is called for. Because we are
552 * sure the tty line exists, we only have to link it to
553 * a free SLCAN channel...
554 *
555 * Called in process context serialized from other ldisc calls.
556 */
557
558static int slcan_open(struct tty_struct *tty)
559{
560 struct slcan *sl;
561 int err;
562
563 if (!capable(CAP_NET_ADMIN))
564 return -EPERM;
565
566 if (tty->ops->write == NULL)
567 return -EOPNOTSUPP;
568
569 /* RTnetlink lock is misused here to serialize concurrent
570 opens of slcan channels. There are better ways, but it is
571 the simplest one.
572 */
573 rtnl_lock();
574
575 /* Collect hanged up channels. */
576 slc_sync();
577
578 sl = tty->disc_data;
579
580 err = -EEXIST;
581 /* First make sure we're not already connected. */
582 if (sl && sl->magic == SLCAN_MAGIC)
583 goto err_exit;
584
585 /* OK. Find a free SLCAN channel to use. */
586 err = -ENFILE;
587 sl = slc_alloc(tty_devnum(tty));
588 if (sl == NULL)
589 goto err_exit;
590
591 sl->tty = tty;
592 tty->disc_data = sl;
a1044e36
OH
593
594 if (!test_bit(SLF_INUSE, &sl->flags)) {
595 /* Perform the low-level SLCAN initialization. */
596 sl->rcount = 0;
597 sl->xleft = 0;
598
599 set_bit(SLF_INUSE, &sl->flags);
600
601 err = register_netdevice(sl->dev);
602 if (err)
603 goto err_free_chan;
604 }
605
606 /* Done. We have linked the TTY line to a channel. */
607 rtnl_unlock();
608 tty->receive_room = 65536; /* We don't flow control */
0d4420a9
OH
609
610 /* TTY layer expects 0 on success */
611 return 0;
a1044e36
OH
612
613err_free_chan:
614 sl->tty = NULL;
615 tty->disc_data = NULL;
616 clear_bit(SLF_INUSE, &sl->flags);
617
618err_exit:
619 rtnl_unlock();
620
621 /* Count references from TTY module */
622 return err;
623}
624
625/*
626 * Close down a SLCAN channel.
627 * This means flushing out any pending queues, and then returning. This
628 * call is serialized against other ldisc functions.
629 *
630 * We also use this method for a hangup event.
631 */
632
633static void slcan_close(struct tty_struct *tty)
634{
635 struct slcan *sl = (struct slcan *) tty->disc_data;
636
637 /* First make sure we're connected. */
638 if (!sl || sl->magic != SLCAN_MAGIC || sl->tty != tty)
639 return;
640
a8e83b17 641 spin_lock_bh(&sl->lock);
a1044e36
OH
642 tty->disc_data = NULL;
643 sl->tty = NULL;
a8e83b17
TH
644 spin_unlock_bh(&sl->lock);
645
646 flush_work(&sl->tx_work);
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647
648 /* Flush network side */
649 unregister_netdev(sl->dev);
650 /* This will complete via sl_free_netdev */
651}
652
653static int slcan_hangup(struct tty_struct *tty)
654{
655 slcan_close(tty);
656 return 0;
657}
658
659/* Perform I/O control on an active SLCAN channel. */
660static int slcan_ioctl(struct tty_struct *tty, struct file *file,
661 unsigned int cmd, unsigned long arg)
662{
663 struct slcan *sl = (struct slcan *) tty->disc_data;
664 unsigned int tmp;
665
666 /* First make sure we're connected. */
667 if (!sl || sl->magic != SLCAN_MAGIC)
668 return -EINVAL;
669
670 switch (cmd) {
671 case SIOCGIFNAME:
672 tmp = strlen(sl->dev->name) + 1;
673 if (copy_to_user((void __user *)arg, sl->dev->name, tmp))
674 return -EFAULT;
675 return 0;
676
677 case SIOCSIFHWADDR:
678 return -EINVAL;
679
680 default:
681 return tty_mode_ioctl(tty, file, cmd, arg);
682 }
683}
684
685static struct tty_ldisc_ops slc_ldisc = {
686 .owner = THIS_MODULE,
687 .magic = TTY_LDISC_MAGIC,
688 .name = "slcan",
689 .open = slcan_open,
690 .close = slcan_close,
691 .hangup = slcan_hangup,
692 .ioctl = slcan_ioctl,
693 .receive_buf = slcan_receive_buf,
694 .write_wakeup = slcan_write_wakeup,
695};
696
697static int __init slcan_init(void)
698{
699 int status;
700
701 if (maxdev < 4)
702 maxdev = 4; /* Sanity */
703
ace9bb22
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704 pr_info("slcan: serial line CAN interface driver\n");
705 pr_info("slcan: %d dynamic interface channels.\n", maxdev);
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706
707 slcan_devs = kzalloc(sizeof(struct net_device *)*maxdev, GFP_KERNEL);
e404decb 708 if (!slcan_devs)
a1044e36 709 return -ENOMEM;
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710
711 /* Fill in our line protocol discipline, and register it */
712 status = tty_register_ldisc(N_SLCAN, &slc_ldisc);
713 if (status) {
714 printk(KERN_ERR "slcan: can't register line discipline\n");
715 kfree(slcan_devs);
716 }
717 return status;
718}
719
720static void __exit slcan_exit(void)
721{
722 int i;
723 struct net_device *dev;
724 struct slcan *sl;
725 unsigned long timeout = jiffies + HZ;
726 int busy = 0;
727
728 if (slcan_devs == NULL)
729 return;
730
731 /* First of all: check for active disciplines and hangup them.
732 */
733 do {
734 if (busy)
735 msleep_interruptible(100);
736
737 busy = 0;
738 for (i = 0; i < maxdev; i++) {
739 dev = slcan_devs[i];
740 if (!dev)
741 continue;
742 sl = netdev_priv(dev);
743 spin_lock_bh(&sl->lock);
744 if (sl->tty) {
745 busy++;
746 tty_hangup(sl->tty);
747 }
748 spin_unlock_bh(&sl->lock);
749 }
750 } while (busy && time_before(jiffies, timeout));
751
752 /* FIXME: hangup is async so we should wait when doing this second
753 phase */
754
755 for (i = 0; i < maxdev; i++) {
756 dev = slcan_devs[i];
757 if (!dev)
758 continue;
759 slcan_devs[i] = NULL;
760
761 sl = netdev_priv(dev);
762 if (sl->tty) {
763 printk(KERN_ERR "%s: tty discipline still running\n",
764 dev->name);
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765 }
766
767 unregister_netdev(dev);
768 }
769
770 kfree(slcan_devs);
771 slcan_devs = NULL;
772
773 i = tty_unregister_ldisc(N_SLCAN);
774 if (i)
775 printk(KERN_ERR "slcan: can't unregister ldisc (err %d)\n", i);
776}
777
778module_init(slcan_init);
779module_exit(slcan_exit);