blob: 2c935babe466d927f180993fa796be819fedcb77 [file] [log] [blame]
Oliver Hartkopp0d665482007-11-16 15:52:17 -08001/*
2 * af_can.c - Protocol family CAN core module
3 * (used by different CAN protocol modules)
4 *
5 * Copyright (c) 2002-2007 Volkswagen Group Electronic Research
6 * All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. Neither the name of Volkswagen nor the names of its contributors
17 * may be used to endorse or promote products derived from this software
18 * without specific prior written permission.
19 *
20 * Alternatively, provided that this notice is retained in full, this
21 * software may be distributed under the terms of the GNU General
22 * Public License ("GPL") version 2, in which case the provisions of the
23 * GPL apply INSTEAD OF those given above.
24 *
25 * The provided data structures and external interfaces from this code
26 * are not restricted to be used by modules with a GPL compatible license.
27 *
28 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
29 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
30 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
31 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
32 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
33 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
34 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
35 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
36 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
37 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
38 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
39 * DAMAGE.
40 *
Oliver Hartkopp0d665482007-11-16 15:52:17 -080041 */
42
43#include <linux/module.h>
Oliver Hartkopp7c941632012-06-13 20:04:33 +020044#include <linux/stddef.h>
Oliver Hartkopp0d665482007-11-16 15:52:17 -080045#include <linux/init.h>
46#include <linux/kmod.h>
47#include <linux/slab.h>
48#include <linux/list.h>
49#include <linux/spinlock.h>
50#include <linux/rcupdate.h>
51#include <linux/uaccess.h>
52#include <linux/net.h>
53#include <linux/netdevice.h>
54#include <linux/socket.h>
55#include <linux/if_ether.h>
56#include <linux/if_arp.h>
57#include <linux/skbuff.h>
58#include <linux/can.h>
59#include <linux/can/core.h>
Oliver Hartkopp0ae89be2014-01-30 10:11:28 +010060#include <linux/can/skb.h>
Manuel Zerpiesd751e622011-06-16 02:08:01 +000061#include <linux/ratelimit.h>
Oliver Hartkopp0d665482007-11-16 15:52:17 -080062#include <net/net_namespace.h>
63#include <net/sock.h>
64
65#include "af_can.h"
66
Oliver Hartkopp0d665482007-11-16 15:52:17 -080067MODULE_DESCRIPTION("Controller Area Network PF_CAN core");
68MODULE_LICENSE("Dual BSD/GPL");
69MODULE_AUTHOR("Urs Thuermann <urs.thuermann@volkswagen.de>, "
70 "Oliver Hartkopp <oliver.hartkopp@volkswagen.de>");
71
72MODULE_ALIAS_NETPROTO(PF_CAN);
73
74static int stats_timer __read_mostly = 1;
75module_param(stats_timer, int, S_IRUGO);
76MODULE_PARM_DESC(stats_timer, "enable timer for statistics (default:on)");
77
Mario Kicherer8e8cda62017-02-21 12:19:47 +010078static int can_net_id;
Oliver Hartkopp0d665482007-11-16 15:52:17 -080079
80static struct kmem_cache *rcv_cache __read_mostly;
81
82/* table of registered CAN protocols */
Kurt Van Dijck16506292011-05-03 18:40:57 +000083static const struct can_proto *proto_tab[CAN_NPROTO] __read_mostly;
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +000084static DEFINE_MUTEX(proto_tab_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -080085
86struct timer_list can_stattimer; /* timer for statistics update */
87struct s_stats can_stats; /* packet statistics */
88struct s_pstats can_pstats; /* receive list statistics */
89
Oliver Hartkoppd3b58c42015-06-26 11:58:19 +020090static atomic_t skbcounter = ATOMIC_INIT(0);
91
Oliver Hartkopp0d665482007-11-16 15:52:17 -080092/*
93 * af_can socket functions
94 */
95
Oliver Hartkopp53914b62011-03-22 08:27:25 +000096int can_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg)
Oliver Hartkopp0d665482007-11-16 15:52:17 -080097{
98 struct sock *sk = sock->sk;
99
100 switch (cmd) {
101
102 case SIOCGSTAMP:
103 return sock_get_timestamp(sk, (struct timeval __user *)arg);
104
105 default:
106 return -ENOIOCTLCMD;
107 }
108}
Oliver Hartkopp53914b62011-03-22 08:27:25 +0000109EXPORT_SYMBOL(can_ioctl);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800110
111static void can_sock_destruct(struct sock *sk)
112{
113 skb_queue_purge(&sk->sk_receive_queue);
114}
115
Kurt Van Dijckc8d55a92011-05-03 18:42:04 +0000116static const struct can_proto *can_get_proto(int protocol)
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000117{
Kurt Van Dijck16506292011-05-03 18:40:57 +0000118 const struct can_proto *cp;
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000119
120 rcu_read_lock();
121 cp = rcu_dereference(proto_tab[protocol]);
122 if (cp && !try_module_get(cp->prot->owner))
123 cp = NULL;
124 rcu_read_unlock();
125
126 return cp;
127}
128
Kurt Van Dijckc8d55a92011-05-03 18:42:04 +0000129static inline void can_put_proto(const struct can_proto *cp)
130{
131 module_put(cp->prot->owner);
132}
133
Eric Paris3f378b62009-11-05 22:18:14 -0800134static int can_create(struct net *net, struct socket *sock, int protocol,
135 int kern)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800136{
137 struct sock *sk;
Kurt Van Dijck16506292011-05-03 18:40:57 +0000138 const struct can_proto *cp;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800139 int err = 0;
140
141 sock->state = SS_UNCONNECTED;
142
143 if (protocol < 0 || protocol >= CAN_NPROTO)
144 return -EINVAL;
145
Kurt Van Dijckc8d55a92011-05-03 18:42:04 +0000146 cp = can_get_proto(protocol);
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000147
Johannes Berg95a5afc2008-10-16 15:24:51 -0700148#ifdef CONFIG_MODULES
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000149 if (!cp) {
150 /* try to load protocol module if kernel is modular */
151
Urs Thuermann5423dd62008-02-07 18:04:21 -0800152 err = request_module("can-proto-%d", protocol);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800153
154 /*
155 * In case of error we only print a message but don't
156 * return the error code immediately. Below we will
157 * return -EPROTONOSUPPORT
158 */
Manuel Zerpiesd751e622011-06-16 02:08:01 +0000159 if (err)
160 printk_ratelimited(KERN_ERR "can: request_module "
Urs Thuermann5423dd62008-02-07 18:04:21 -0800161 "(can-proto-%d) failed.\n", protocol);
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000162
Kurt Van Dijckc8d55a92011-05-03 18:42:04 +0000163 cp = can_get_proto(protocol);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800164 }
Urs Thuermann5423dd62008-02-07 18:04:21 -0800165#endif
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800166
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800167 /* check for available protocol and correct usage */
168
169 if (!cp)
170 return -EPROTONOSUPPORT;
171
172 if (cp->type != sock->type) {
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000173 err = -EPROTOTYPE;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800174 goto errout;
175 }
176
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800177 sock->ops = cp->ops;
178
Eric W. Biederman11aa9c22015-05-08 21:09:13 -0500179 sk = sk_alloc(net, PF_CAN, GFP_KERNEL, cp->prot, kern);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800180 if (!sk) {
181 err = -ENOMEM;
182 goto errout;
183 }
184
185 sock_init_data(sock, sk);
186 sk->sk_destruct = can_sock_destruct;
187
188 if (sk->sk_prot->init)
189 err = sk->sk_prot->init(sk);
190
191 if (err) {
192 /* release sk on errors */
193 sock_orphan(sk);
194 sock_put(sk);
195 }
196
197 errout:
Kurt Van Dijckc8d55a92011-05-03 18:42:04 +0000198 can_put_proto(cp);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800199 return err;
200}
201
202/*
203 * af_can tx path
204 */
205
206/**
207 * can_send - transmit a CAN frame (optional with local loopback)
208 * @skb: pointer to socket buffer with CAN frame in data section
209 * @loop: loopback for listeners on local CAN sockets (recommended default!)
210 *
Oliver Hartkopp481a8192009-09-15 01:31:34 -0700211 * Due to the loopback this routine must not be called from hardirq context.
212 *
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800213 * Return:
214 * 0 on success
215 * -ENETDOWN when the selected interface is down
216 * -ENOBUFS on full driver queue (see net_xmit_errno())
217 * -ENOMEM when local loopback failed at calling skb_clone()
218 * -EPERM when trying to send on a non-CAN interface
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200219 * -EMSGSIZE CAN frame size is bigger than CAN interface MTU
Oliver Hartkopp7f2d38e2008-07-05 23:38:43 -0700220 * -EINVAL when the skb->data does not contain a valid CAN frame
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800221 */
222int can_send(struct sk_buff *skb, int loop)
223{
Oliver Hartkoppc2ab7ac2008-05-08 02:49:55 -0700224 struct sk_buff *newskb = NULL;
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200225 struct canfd_frame *cfd = (struct canfd_frame *)skb->data;
226 int err = -EINVAL;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800227
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200228 if (skb->len == CAN_MTU) {
229 skb->protocol = htons(ETH_P_CAN);
230 if (unlikely(cfd->len > CAN_MAX_DLEN))
231 goto inval_skb;
232 } else if (skb->len == CANFD_MTU) {
233 skb->protocol = htons(ETH_P_CANFD);
234 if (unlikely(cfd->len > CANFD_MAX_DLEN))
235 goto inval_skb;
236 } else
237 goto inval_skb;
238
239 /*
240 * Make sure the CAN frame can pass the selected CAN netdevice.
241 * As structs can_frame and canfd_frame are similar, we can provide
242 * CAN FD frames to legacy CAN drivers as long as the length is <= 8
243 */
244 if (unlikely(skb->len > skb->dev->mtu && cfd->len > CAN_MAX_DLEN)) {
245 err = -EMSGSIZE;
246 goto inval_skb;
Oliver Hartkopp7f2d38e2008-07-05 23:38:43 -0700247 }
248
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200249 if (unlikely(skb->dev->type != ARPHRD_CAN)) {
250 err = -EPERM;
251 goto inval_skb;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800252 }
253
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200254 if (unlikely(!(skb->dev->flags & IFF_UP))) {
255 err = -ENETDOWN;
256 goto inval_skb;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800257 }
258
Oliver Hartkopp9694390162015-02-23 20:37:54 +0100259 skb->ip_summed = CHECKSUM_UNNECESSARY;
260
261 skb_reset_mac_header(skb);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800262 skb_reset_network_header(skb);
263 skb_reset_transport_header(skb);
264
265 if (loop) {
266 /* local loopback of sent CAN frames */
267
268 /* indication for the CAN driver: do loopback */
269 skb->pkt_type = PACKET_LOOPBACK;
270
271 /*
272 * The reference to the originating sock may be required
273 * by the receiving socket to check whether the frame is
274 * its own. Example: can_raw sockopt CAN_RAW_RECV_OWN_MSGS
275 * Therefore we have to ensure that skb->sk remains the
276 * reference to the originating sock by restoring skb->sk
277 * after each skb_clone() or skb_orphan() usage.
278 */
279
280 if (!(skb->dev->flags & IFF_ECHO)) {
281 /*
282 * If the interface is not capable to do loopback
283 * itself, we do it here.
284 */
Oliver Hartkoppc2ab7ac2008-05-08 02:49:55 -0700285 newskb = skb_clone(skb, GFP_ATOMIC);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800286 if (!newskb) {
287 kfree_skb(skb);
288 return -ENOMEM;
289 }
290
Oliver Hartkopp0ae89be2014-01-30 10:11:28 +0100291 can_skb_set_owner(newskb, skb->sk);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800292 newskb->ip_summed = CHECKSUM_UNNECESSARY;
293 newskb->pkt_type = PACKET_BROADCAST;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800294 }
295 } else {
296 /* indication for the CAN driver: no loopback required */
297 skb->pkt_type = PACKET_HOST;
298 }
299
300 /* send to netdevice */
301 err = dev_queue_xmit(skb);
302 if (err > 0)
303 err = net_xmit_errno(err);
304
Oliver Hartkoppc2ab7ac2008-05-08 02:49:55 -0700305 if (err) {
Wei Yongjunce030ed2009-02-25 00:35:44 +0000306 kfree_skb(newskb);
Oliver Hartkoppc2ab7ac2008-05-08 02:49:55 -0700307 return err;
308 }
309
Oliver Hartkoppd3b58c42015-06-26 11:58:19 +0200310 if (newskb)
Oliver Hartkopp481a8192009-09-15 01:31:34 -0700311 netif_rx_ni(newskb);
Oliver Hartkoppc2ab7ac2008-05-08 02:49:55 -0700312
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800313 /* update statistics */
314 can_stats.tx_frames++;
315 can_stats.tx_frames_delta++;
316
Oliver Hartkoppc2ab7ac2008-05-08 02:49:55 -0700317 return 0;
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200318
319inval_skb:
320 kfree_skb(skb);
321 return err;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800322}
323EXPORT_SYMBOL(can_send);
324
325/*
326 * af_can rx path
327 */
328
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100329static struct dev_rcv_lists *find_dev_rcv_lists(struct net *net,
330 struct net_device *dev)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800331{
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000332 if (!dev)
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100333 return net->can.can_rx_alldev_list;
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000334 else
335 return (struct dev_rcv_lists *)dev->ml_priv;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800336}
337
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800338/**
Oliver Hartkopp45c70022014-04-02 20:25:26 +0200339 * effhash - hash function for 29 bit CAN identifier reduction
340 * @can_id: 29 bit CAN identifier
341 *
342 * Description:
343 * To reduce the linear traversal in one linked list of _single_ EFF CAN
344 * frame subscriptions the 29 bit identifier is mapped to 10 bits.
345 * (see CAN_EFF_RCV_HASH_BITS definition)
346 *
347 * Return:
348 * Hash value from 0x000 - 0x3FF ( enforced by CAN_EFF_RCV_HASH_BITS mask )
349 */
350static unsigned int effhash(canid_t can_id)
351{
352 unsigned int hash;
353
354 hash = can_id;
355 hash ^= can_id >> CAN_EFF_RCV_HASH_BITS;
356 hash ^= can_id >> (2 * CAN_EFF_RCV_HASH_BITS);
357
358 return hash & ((1 << CAN_EFF_RCV_HASH_BITS) - 1);
359}
360
361/**
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800362 * find_rcv_list - determine optimal filterlist inside device filter struct
363 * @can_id: pointer to CAN identifier of a given can_filter
364 * @mask: pointer to CAN mask of a given can_filter
365 * @d: pointer to the device filter struct
366 *
367 * Description:
368 * Returns the optimal filterlist to reduce the filter handling in the
369 * receive path. This function is called by service functions that need
370 * to register or unregister a can_filter in the filter lists.
371 *
372 * A filter matches in general, when
373 *
374 * <received_can_id> & mask == can_id & mask
375 *
376 * so every bit set in the mask (even CAN_EFF_FLAG, CAN_RTR_FLAG) describe
377 * relevant bits for the filter.
378 *
379 * The filter can be inverted (CAN_INV_FILTER bit set in can_id) or it can
Oliver Hartkoppd6e640f2012-05-08 22:20:33 +0200380 * filter for error messages (CAN_ERR_FLAG bit set in mask). For error msg
381 * frames there is a special filterlist and a special rx path filter handling.
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800382 *
383 * Return:
384 * Pointer to optimal filterlist for the given can_id/mask pair.
385 * Constistency checked mask.
386 * Reduced can_id to have a preprocessed filter compare value.
387 */
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800388static struct hlist_head *find_rcv_list(canid_t *can_id, canid_t *mask,
389 struct dev_rcv_lists *d)
390{
391 canid_t inv = *can_id & CAN_INV_FILTER; /* save flag before masking */
392
Oliver Hartkoppd6e640f2012-05-08 22:20:33 +0200393 /* filter for error message frames in extra filterlist */
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800394 if (*mask & CAN_ERR_FLAG) {
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800395 /* clear CAN_ERR_FLAG in filter entry */
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800396 *mask &= CAN_ERR_MASK;
397 return &d->rx[RX_ERR];
398 }
399
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800400 /* with cleared CAN_ERR_FLAG we have a simple mask/value filterpair */
401
402#define CAN_EFF_RTR_FLAGS (CAN_EFF_FLAG | CAN_RTR_FLAG)
403
404 /* ensure valid values in can_mask for 'SFF only' frame filtering */
405 if ((*mask & CAN_EFF_FLAG) && !(*can_id & CAN_EFF_FLAG))
406 *mask &= (CAN_SFF_MASK | CAN_EFF_RTR_FLAGS);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800407
408 /* reduce condition testing at receive time */
409 *can_id &= *mask;
410
411 /* inverse can_id/can_mask filter */
412 if (inv)
413 return &d->rx[RX_INV];
414
415 /* mask == 0 => no condition testing at receive time */
416 if (!(*mask))
417 return &d->rx[RX_ALL];
418
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800419 /* extra filterlists for the subscription of a single non-RTR can_id */
Joe Perchesf64f9e72009-11-29 16:55:45 -0800420 if (((*mask & CAN_EFF_RTR_FLAGS) == CAN_EFF_RTR_FLAGS) &&
421 !(*can_id & CAN_RTR_FLAG)) {
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800422
423 if (*can_id & CAN_EFF_FLAG) {
Oliver Hartkopp45c70022014-04-02 20:25:26 +0200424 if (*mask == (CAN_EFF_MASK | CAN_EFF_RTR_FLAGS))
425 return &d->rx_eff[effhash(*can_id)];
Oliver Hartkoppd253eee2008-12-03 15:52:35 -0800426 } else {
427 if (*mask == (CAN_SFF_MASK | CAN_EFF_RTR_FLAGS))
428 return &d->rx_sff[*can_id];
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800429 }
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800430 }
431
432 /* default: filter via can_id/can_mask */
433 return &d->rx[RX_FIL];
434}
435
436/**
437 * can_rx_register - subscribe CAN frames from a specific interface
438 * @dev: pointer to netdevice (NULL => subcribe from 'all' CAN devices list)
439 * @can_id: CAN identifier (see description)
440 * @mask: CAN mask (see description)
441 * @func: callback function on filter match
442 * @data: returned parameter for callback function
Maxime Jayat3f794102013-10-12 01:29:46 +0200443 * @ident: string for calling module identification
Eric Dumazetf1712c72017-01-27 08:11:44 -0800444 * @sk: socket pointer (might be NULL)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800445 *
446 * Description:
447 * Invokes the callback function with the received sk_buff and the given
448 * parameter 'data' on a matching receive filter. A filter matches, when
449 *
450 * <received_can_id> & mask == can_id & mask
451 *
452 * The filter can be inverted (CAN_INV_FILTER bit set in can_id) or it can
Oliver Hartkoppd6e640f2012-05-08 22:20:33 +0200453 * filter for error message frames (CAN_ERR_FLAG bit set in mask).
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800454 *
Oliver Hartkopp1fa17d42009-01-06 11:07:54 -0800455 * The provided pointer to the sk_buff is guaranteed to be valid as long as
456 * the callback function is running. The callback function must *not* free
457 * the given sk_buff while processing it's task. When the given sk_buff is
458 * needed after the end of the callback function it must be cloned inside
459 * the callback function with skb_clone().
460 *
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800461 * Return:
462 * 0 on success
463 * -ENOMEM on missing cache mem to create subscription entry
464 * -ENODEV unknown device
465 */
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100466int can_rx_register(struct net *net, struct net_device *dev, canid_t can_id,
467 canid_t mask, void (*func)(struct sk_buff *, void *),
468 void *data, char *ident, struct sock *sk)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800469{
470 struct receiver *r;
471 struct hlist_head *rl;
472 struct dev_rcv_lists *d;
473 int err = 0;
474
475 /* insert new receiver (dev,canid,mask) -> (func,data) */
476
Oliver Hartkopp8b640562010-02-02 07:21:34 -0800477 if (dev && dev->type != ARPHRD_CAN)
478 return -ENODEV;
479
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100480 if (dev && !net_eq(net, dev_net(dev)))
481 return -ENODEV;
482
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800483 r = kmem_cache_alloc(rcv_cache, GFP_KERNEL);
484 if (!r)
485 return -ENOMEM;
486
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100487 spin_lock(&net->can.can_rcvlists_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800488
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100489 d = find_dev_rcv_lists(net, dev);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800490 if (d) {
491 rl = find_rcv_list(&can_id, &mask, d);
492
493 r->can_id = can_id;
494 r->mask = mask;
495 r->matches = 0;
496 r->func = func;
497 r->data = data;
498 r->ident = ident;
Eric Dumazetf1712c72017-01-27 08:11:44 -0800499 r->sk = sk;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800500
501 hlist_add_head_rcu(&r->list, rl);
502 d->entries++;
503
504 can_pstats.rcv_entries++;
505 if (can_pstats.rcv_entries_max < can_pstats.rcv_entries)
506 can_pstats.rcv_entries_max = can_pstats.rcv_entries;
507 } else {
508 kmem_cache_free(rcv_cache, r);
509 err = -ENODEV;
510 }
511
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100512 spin_unlock(&net->can.can_rcvlists_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800513
514 return err;
515}
516EXPORT_SYMBOL(can_rx_register);
517
518/*
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800519 * can_rx_delete_receiver - rcu callback for single receiver entry removal
520 */
521static void can_rx_delete_receiver(struct rcu_head *rp)
522{
523 struct receiver *r = container_of(rp, struct receiver, rcu);
Eric Dumazetf1712c72017-01-27 08:11:44 -0800524 struct sock *sk = r->sk;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800525
526 kmem_cache_free(rcv_cache, r);
Eric Dumazetf1712c72017-01-27 08:11:44 -0800527 if (sk)
528 sock_put(sk);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800529}
530
531/**
532 * can_rx_unregister - unsubscribe CAN frames from a specific interface
Jeremiah Mahler069f8452014-12-05 09:54:38 -0800533 * @dev: pointer to netdevice (NULL => unsubscribe from 'all' CAN devices list)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800534 * @can_id: CAN identifier
535 * @mask: CAN mask
536 * @func: callback function on filter match
537 * @data: returned parameter for callback function
538 *
539 * Description:
540 * Removes subscription entry depending on given (subscription) values.
541 */
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100542void can_rx_unregister(struct net *net, struct net_device *dev, canid_t can_id,
543 canid_t mask, void (*func)(struct sk_buff *, void *),
544 void *data)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800545{
546 struct receiver *r = NULL;
547 struct hlist_head *rl;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800548 struct dev_rcv_lists *d;
549
Oliver Hartkopp8b640562010-02-02 07:21:34 -0800550 if (dev && dev->type != ARPHRD_CAN)
551 return;
552
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100553 if (dev && !net_eq(net, dev_net(dev)))
554 return;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800555
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100556 spin_lock(&net->can.can_rcvlists_lock);
557
558 d = find_dev_rcv_lists(net, dev);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800559 if (!d) {
Valentin Ilief4f3efd2013-03-10 11:15:13 +0000560 pr_err("BUG: receive list not found for "
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800561 "dev %s, id %03X, mask %03X\n",
562 DNAME(dev), can_id, mask);
563 goto out;
564 }
565
566 rl = find_rcv_list(&can_id, &mask, d);
567
568 /*
569 * Search the receiver list for the item to delete. This should
570 * exist, since no receiver may be unregistered that hasn't
571 * been registered before.
572 */
573
Sasha Levinb67bfe02013-02-27 17:06:00 -0800574 hlist_for_each_entry_rcu(r, rl, list) {
Joe Perchesf64f9e72009-11-29 16:55:45 -0800575 if (r->can_id == can_id && r->mask == mask &&
576 r->func == func && r->data == data)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800577 break;
578 }
579
580 /*
Oliver Hartkoppc9bbb752013-03-18 07:52:06 +0000581 * Check for bugs in CAN protocol implementations using af_can.c:
582 * 'r' will be NULL if no matching list item was found for removal.
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800583 */
584
Sasha Levinb67bfe02013-02-27 17:06:00 -0800585 if (!r) {
Oliver Hartkoppc9bbb752013-03-18 07:52:06 +0000586 WARN(1, "BUG: receive list entry not found for dev %s, "
587 "id %03X, mask %03X\n", DNAME(dev), can_id, mask);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800588 goto out;
589 }
590
591 hlist_del_rcu(&r->list);
592 d->entries--;
593
594 if (can_pstats.rcv_entries > 0)
595 can_pstats.rcv_entries--;
596
597 /* remove device structure requested by NETDEV_UNREGISTER */
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000598 if (d->remove_on_zero_entries && !d->entries) {
599 kfree(d);
600 dev->ml_priv = NULL;
601 }
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800602
603 out:
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100604 spin_unlock(&net->can.can_rcvlists_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800605
606 /* schedule the receiver item for deletion */
Eric Dumazetf1712c72017-01-27 08:11:44 -0800607 if (r) {
608 if (r->sk)
609 sock_hold(r->sk);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800610 call_rcu(&r->rcu, can_rx_delete_receiver);
Eric Dumazetf1712c72017-01-27 08:11:44 -0800611 }
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800612}
613EXPORT_SYMBOL(can_rx_unregister);
614
615static inline void deliver(struct sk_buff *skb, struct receiver *r)
616{
Oliver Hartkopp1fa17d42009-01-06 11:07:54 -0800617 r->func(skb, r->data);
618 r->matches++;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800619}
620
621static int can_rcv_filter(struct dev_rcv_lists *d, struct sk_buff *skb)
622{
623 struct receiver *r;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800624 int matches = 0;
625 struct can_frame *cf = (struct can_frame *)skb->data;
626 canid_t can_id = cf->can_id;
627
628 if (d->entries == 0)
629 return 0;
630
631 if (can_id & CAN_ERR_FLAG) {
Oliver Hartkoppd6e640f2012-05-08 22:20:33 +0200632 /* check for error message frame entries only */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800633 hlist_for_each_entry_rcu(r, &d->rx[RX_ERR], list) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800634 if (can_id & r->mask) {
635 deliver(skb, r);
636 matches++;
637 }
638 }
639 return matches;
640 }
641
642 /* check for unfiltered entries */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800643 hlist_for_each_entry_rcu(r, &d->rx[RX_ALL], list) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800644 deliver(skb, r);
645 matches++;
646 }
647
648 /* check for can_id/mask entries */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800649 hlist_for_each_entry_rcu(r, &d->rx[RX_FIL], list) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800650 if ((can_id & r->mask) == r->can_id) {
651 deliver(skb, r);
652 matches++;
653 }
654 }
655
656 /* check for inverted can_id/mask entries */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800657 hlist_for_each_entry_rcu(r, &d->rx[RX_INV], list) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800658 if ((can_id & r->mask) != r->can_id) {
659 deliver(skb, r);
660 matches++;
661 }
662 }
663
Oliver Hartkoppf706644d2008-12-04 15:01:08 -0800664 /* check filterlists for single non-RTR can_ids */
665 if (can_id & CAN_RTR_FLAG)
666 return matches;
667
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800668 if (can_id & CAN_EFF_FLAG) {
Oliver Hartkopp45c70022014-04-02 20:25:26 +0200669 hlist_for_each_entry_rcu(r, &d->rx_eff[effhash(can_id)], list) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800670 if (r->can_id == can_id) {
671 deliver(skb, r);
672 matches++;
673 }
674 }
675 } else {
676 can_id &= CAN_SFF_MASK;
Sasha Levinb67bfe02013-02-27 17:06:00 -0800677 hlist_for_each_entry_rcu(r, &d->rx_sff[can_id], list) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800678 deliver(skb, r);
679 matches++;
680 }
681 }
682
683 return matches;
684}
685
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200686static void can_receive(struct sk_buff *skb, struct net_device *dev)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800687{
688 struct dev_rcv_lists *d;
689 int matches;
690
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800691 /* update statistics */
692 can_stats.rx_frames++;
693 can_stats.rx_frames_delta++;
694
Oliver Hartkoppd3b58c42015-06-26 11:58:19 +0200695 /* create non-zero unique skb identifier together with *skb */
696 while (!(can_skb_prv(skb)->skbcnt))
697 can_skb_prv(skb)->skbcnt = atomic_inc_return(&skbcounter);
698
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800699 rcu_read_lock();
700
701 /* deliver the packet to sockets listening on all devices */
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100702 matches = can_rcv_filter(dev_net(dev)->can.can_rx_alldev_list, skb);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800703
704 /* find receive list for this device */
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100705 d = find_dev_rcv_lists(dev_net(dev), dev);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800706 if (d)
707 matches += can_rcv_filter(d, skb);
708
709 rcu_read_unlock();
710
Oliver Hartkopp62bcaa12009-04-17 01:38:46 -0700711 /* consume the skbuff allocated by the netdevice driver */
712 consume_skb(skb);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800713
714 if (matches > 0) {
715 can_stats.matches++;
716 can_stats.matches_delta++;
717 }
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200718}
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800719
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200720static int can_rcv(struct sk_buff *skb, struct net_device *dev,
721 struct packet_type *pt, struct net_device *orig_dev)
722{
723 struct canfd_frame *cfd = (struct canfd_frame *)skb->data;
724
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200725 if (WARN_ONCE(dev->type != ARPHRD_CAN ||
726 skb->len != CAN_MTU ||
727 cfd->len > CAN_MAX_DLEN,
728 "PF_CAN: dropped non conform CAN skbuf: "
729 "dev type %d, len %d, datalen %d\n",
730 dev->type, skb->len, cfd->len))
731 goto drop;
732
733 can_receive(skb, dev);
734 return NET_RX_SUCCESS;
735
736drop:
737 kfree_skb(skb);
738 return NET_RX_DROP;
739}
740
741static int canfd_rcv(struct sk_buff *skb, struct net_device *dev,
742 struct packet_type *pt, struct net_device *orig_dev)
743{
744 struct canfd_frame *cfd = (struct canfd_frame *)skb->data;
745
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200746 if (WARN_ONCE(dev->type != ARPHRD_CAN ||
747 skb->len != CANFD_MTU ||
748 cfd->len > CANFD_MAX_DLEN,
749 "PF_CAN: dropped non conform CAN FD skbuf: "
750 "dev type %d, len %d, datalen %d\n",
751 dev->type, skb->len, cfd->len))
752 goto drop;
753
754 can_receive(skb, dev);
Oliver Hartkopp6ca8b992009-08-29 06:45:09 +0000755 return NET_RX_SUCCESS;
Oliver Hartkopp1758c092009-08-13 22:54:25 +0000756
757drop:
758 kfree_skb(skb);
Oliver Hartkopp6ca8b992009-08-29 06:45:09 +0000759 return NET_RX_DROP;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800760}
761
762/*
763 * af_can protocol functions
764 */
765
766/**
767 * can_proto_register - register CAN transport protocol
768 * @cp: pointer to CAN protocol structure
769 *
770 * Return:
771 * 0 on success
772 * -EINVAL invalid (out of range) protocol number
773 * -EBUSY protocol already in use
774 * -ENOBUF if proto_register() fails
775 */
Kurt Van Dijck16506292011-05-03 18:40:57 +0000776int can_proto_register(const struct can_proto *cp)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800777{
778 int proto = cp->protocol;
779 int err = 0;
780
781 if (proto < 0 || proto >= CAN_NPROTO) {
Valentin Ilief4f3efd2013-03-10 11:15:13 +0000782 pr_err("can: protocol number %d out of range\n", proto);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800783 return -EINVAL;
784 }
785
Urs Thuermanna2fea5f2008-02-07 18:04:45 -0800786 err = proto_register(cp->prot, 0);
787 if (err < 0)
788 return err;
789
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000790 mutex_lock(&proto_tab_lock);
791
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800792 if (proto_tab[proto]) {
Valentin Ilief4f3efd2013-03-10 11:15:13 +0000793 pr_err("can: protocol %d already registered\n", proto);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800794 err = -EBUSY;
Oliver Hartkopp53914b62011-03-22 08:27:25 +0000795 } else
Stephen Hemmingera9b3cd72011-08-01 16:19:00 +0000796 RCU_INIT_POINTER(proto_tab[proto], cp);
Urs Thuermanna2fea5f2008-02-07 18:04:45 -0800797
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000798 mutex_unlock(&proto_tab_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800799
Urs Thuermanna2fea5f2008-02-07 18:04:45 -0800800 if (err < 0)
801 proto_unregister(cp->prot);
802
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800803 return err;
804}
805EXPORT_SYMBOL(can_proto_register);
806
807/**
808 * can_proto_unregister - unregister CAN transport protocol
809 * @cp: pointer to CAN protocol structure
810 */
Kurt Van Dijck16506292011-05-03 18:40:57 +0000811void can_proto_unregister(const struct can_proto *cp)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800812{
813 int proto = cp->protocol;
814
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000815 mutex_lock(&proto_tab_lock);
816 BUG_ON(proto_tab[proto] != cp);
Stephen Hemmingera9b3cd72011-08-01 16:19:00 +0000817 RCU_INIT_POINTER(proto_tab[proto], NULL);
Oliver Hartkopp1ca050d2011-04-05 08:01:16 +0000818 mutex_unlock(&proto_tab_lock);
819
820 synchronize_rcu();
Urs Thuermanna2fea5f2008-02-07 18:04:45 -0800821
822 proto_unregister(cp->prot);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800823}
824EXPORT_SYMBOL(can_proto_unregister);
825
826/*
827 * af_can notifier to create/remove CAN netdevice specific structs
828 */
829static int can_notifier(struct notifier_block *nb, unsigned long msg,
Jiri Pirko351638e2013-05-28 01:30:21 +0000830 void *ptr)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800831{
Jiri Pirko351638e2013-05-28 01:30:21 +0000832 struct net_device *dev = netdev_notifier_info_to_dev(ptr);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800833 struct dev_rcv_lists *d;
834
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800835 if (dev->type != ARPHRD_CAN)
836 return NOTIFY_DONE;
837
838 switch (msg) {
839
840 case NETDEV_REGISTER:
841
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000842 /* create new dev_rcv_lists for this device */
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800843 d = kzalloc(sizeof(*d), GFP_KERNEL);
Valentin Ilief4f3efd2013-03-10 11:15:13 +0000844 if (!d)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800845 return NOTIFY_DONE;
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000846 BUG_ON(dev->ml_priv);
847 dev->ml_priv = d;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800848
849 break;
850
851 case NETDEV_UNREGISTER:
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100852 spin_lock(&dev_net(dev)->can.can_rcvlists_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800853
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000854 d = dev->ml_priv;
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800855 if (d) {
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000856 if (d->entries)
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800857 d->remove_on_zero_entries = 1;
Oliver Hartkopp20dd3852009-12-25 06:47:47 +0000858 else {
859 kfree(d);
860 dev->ml_priv = NULL;
861 }
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800862 } else
Valentin Ilief4f3efd2013-03-10 11:15:13 +0000863 pr_err("can: notifier: receive list not found for dev "
864 "%s\n", dev->name);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800865
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100866 spin_unlock(&dev_net(dev)->can.can_rcvlists_lock);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800867
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800868 break;
869 }
870
871 return NOTIFY_DONE;
872}
873
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100874static int can_pernet_init(struct net *net)
875{
876 net->can.can_rcvlists_lock =
877 __SPIN_LOCK_UNLOCKED(net->can.can_rcvlists_lock);
878 net->can.can_rx_alldev_list =
879 kzalloc(sizeof(struct dev_rcv_lists), GFP_KERNEL);
880
881 if (IS_ENABLED(CONFIG_PROC_FS))
882 can_init_proc(net);
883
884 return 0;
885}
886
887static void can_pernet_exit(struct net *net)
888{
889 struct net_device *dev;
890
891 if (IS_ENABLED(CONFIG_PROC_FS))
892 can_remove_proc(net);
893
894 /* remove created dev_rcv_lists from still registered CAN devices */
895 rcu_read_lock();
896 for_each_netdev_rcu(net, dev) {
897 if (dev->type == ARPHRD_CAN && dev->ml_priv) {
898 struct dev_rcv_lists *d = dev->ml_priv;
899
900 BUG_ON(d->entries);
901 kfree(d);
902 dev->ml_priv = NULL;
903 }
904 }
905 rcu_read_unlock();
Oliver Hartkoppa7bbd282017-04-25 08:19:38 +0200906
907 kfree(net->can.can_rx_alldev_list);
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100908}
909
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800910/*
911 * af_can module init/exit functions
912 */
913
914static struct packet_type can_packet __read_mostly = {
Harvey Harrison09640e632009-02-01 00:45:17 -0800915 .type = cpu_to_be16(ETH_P_CAN),
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800916 .func = can_rcv,
917};
918
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200919static struct packet_type canfd_packet __read_mostly = {
920 .type = cpu_to_be16(ETH_P_CANFD),
921 .func = canfd_rcv,
922};
923
Stephen Hemmingerec1b4cf2009-10-05 05:58:39 +0000924static const struct net_proto_family can_family_ops = {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800925 .family = PF_CAN,
926 .create = can_create,
927 .owner = THIS_MODULE,
928};
929
930/* notifier block for netdevice event */
931static struct notifier_block can_netdev_notifier __read_mostly = {
932 .notifier_call = can_notifier,
933};
934
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100935static struct pernet_operations can_pernet_ops __read_mostly = {
936 .init = can_pernet_init,
937 .exit = can_pernet_exit,
938 .id = &can_net_id,
939 .size = 0,
940};
941
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800942static __init int can_init(void)
943{
Oliver Hartkopp7c941632012-06-13 20:04:33 +0200944 /* check for correct padding to be able to use the structs similarly */
945 BUILD_BUG_ON(offsetof(struct can_frame, can_dlc) !=
946 offsetof(struct canfd_frame, len) ||
947 offsetof(struct can_frame, data) !=
948 offsetof(struct canfd_frame, data));
949
Jeremiah Mahlerb111b782014-11-21 23:42:35 -0800950 pr_info("can: controller area network core (" CAN_VERSION_STRING ")\n");
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800951
952 rcv_cache = kmem_cache_create("can_receiver", sizeof(struct receiver),
953 0, 0, NULL);
954 if (!rcv_cache)
955 return -ENOMEM;
956
Arnd Bergmann2781ff52016-06-20 17:51:52 +0200957 if (IS_ENABLED(CONFIG_PROC_FS)) {
958 if (stats_timer) {
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800959 /* the statistics are updated every second (timer triggered) */
Arnd Bergmann2781ff52016-06-20 17:51:52 +0200960 setup_timer(&can_stattimer, can_stat_update, 0);
961 mod_timer(&can_stattimer, round_jiffies(jiffies + HZ));
962 }
Arnd Bergmann2781ff52016-06-20 17:51:52 +0200963 }
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800964
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100965 register_pernet_subsys(&can_pernet_ops);
966
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800967 /* protocol register */
968 sock_register(&can_family_ops);
969 register_netdevice_notifier(&can_netdev_notifier);
970 dev_add_pack(&can_packet);
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200971 dev_add_pack(&canfd_packet);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800972
973 return 0;
974}
975
976static __exit void can_exit(void)
977{
Arnd Bergmann2781ff52016-06-20 17:51:52 +0200978 if (IS_ENABLED(CONFIG_PROC_FS)) {
979 if (stats_timer)
980 del_timer_sync(&can_stattimer);
Arnd Bergmann2781ff52016-06-20 17:51:52 +0200981 }
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800982
983 /* protocol unregister */
Oliver Hartkopp8b019392012-06-13 20:33:02 +0200984 dev_remove_pack(&canfd_packet);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800985 dev_remove_pack(&can_packet);
986 unregister_netdevice_notifier(&can_netdev_notifier);
987 sock_unregister(PF_CAN);
988
Mario Kicherer8e8cda62017-02-21 12:19:47 +0100989 unregister_pernet_subsys(&can_pernet_ops);
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800990
Jesper Dangaard Brouer382bfee2009-06-08 03:11:38 +0000991 rcu_barrier(); /* Wait for completion of call_rcu()'s */
992
Oliver Hartkopp0d665482007-11-16 15:52:17 -0800993 kmem_cache_destroy(rcv_cache);
994}
995
996module_init(can_init);
997module_exit(can_exit);