1 // SPDX-License-Identifier: GPL-2.0
2 // Copyright (c) 2010-2011 EIA Electronics,
3 // Pieter Beyens <pieter.beyens@eia.be>
4 // Copyright (c) 2010-2011 EIA Electronics,
5 // Kurt Van Dijck <kurt.van.dijck@eia.be>
6 // Copyright (c) 2018 Protonic,
7 // Robin van der Gracht <robin@protonic.nl>
8 // Copyright (c) 2017-2019 Pengutronix,
9 // Marc Kleine-Budde <kernel@pengutronix.de>
10 // Copyright (c) 2017-2019 Pengutronix,
11 // Oleksij Rempel <kernel@pengutronix.de>
12
13 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
14
15 #include <linux/can/can-ml.h>
16 #include <linux/can/core.h>
17 #include <linux/can/skb.h>
18 #include <linux/errqueue.h>
19 #include <linux/if_arp.h>
20
21 #include "j1939-priv.h"
22
23 #define J1939_MIN_NAMELEN CAN_REQUIRED_SIZE(struct sockaddr_can, can_addr.j1939)
24
25 /* conversion function between struct sock::sk_priority from linux and
26 * j1939 priority field
27 */
j1939_prio(u32 sk_priority)28 static inline priority_t j1939_prio(u32 sk_priority)
29 {
30 sk_priority = min(sk_priority, 7U);
31
32 return 7 - sk_priority;
33 }
34
j1939_to_sk_priority(priority_t prio)35 static inline u32 j1939_to_sk_priority(priority_t prio)
36 {
37 return 7 - prio;
38 }
39
40 /* function to see if pgn is to be evaluated */
j1939_pgn_is_valid(pgn_t pgn)41 static inline bool j1939_pgn_is_valid(pgn_t pgn)
42 {
43 return pgn <= J1939_PGN_MAX;
44 }
45
46 /* test function to avoid non-zero DA placeholder for pdu1 pgn's */
j1939_pgn_is_clean_pdu(pgn_t pgn)47 static inline bool j1939_pgn_is_clean_pdu(pgn_t pgn)
48 {
49 if (j1939_pgn_is_pdu1(pgn))
50 return !(pgn & 0xff);
51 else
52 return true;
53 }
54
j1939_sock_pending_add(struct sock * sk)55 static inline void j1939_sock_pending_add(struct sock *sk)
56 {
57 struct j1939_sock *jsk = j1939_sk(sk);
58
59 atomic_inc(&jsk->skb_pending);
60 }
61
j1939_sock_pending_get(struct sock * sk)62 static int j1939_sock_pending_get(struct sock *sk)
63 {
64 struct j1939_sock *jsk = j1939_sk(sk);
65
66 return atomic_read(&jsk->skb_pending);
67 }
68
j1939_sock_pending_del(struct sock * sk)69 void j1939_sock_pending_del(struct sock *sk)
70 {
71 struct j1939_sock *jsk = j1939_sk(sk);
72
73 /* atomic_dec_return returns the new value */
74 if (!atomic_dec_return(&jsk->skb_pending))
75 wake_up(&jsk->waitq); /* no pending SKB's */
76 }
77
j1939_jsk_add(struct j1939_priv * priv,struct j1939_sock * jsk)78 static void j1939_jsk_add(struct j1939_priv *priv, struct j1939_sock *jsk)
79 {
80 jsk->state |= J1939_SOCK_BOUND;
81 j1939_priv_get(priv);
82
83 write_lock_bh(&priv->j1939_socks_lock);
84 list_add_tail(&jsk->list, &priv->j1939_socks);
85 write_unlock_bh(&priv->j1939_socks_lock);
86 }
87
j1939_jsk_del(struct j1939_priv * priv,struct j1939_sock * jsk)88 static void j1939_jsk_del(struct j1939_priv *priv, struct j1939_sock *jsk)
89 {
90 write_lock_bh(&priv->j1939_socks_lock);
91 list_del_init(&jsk->list);
92 write_unlock_bh(&priv->j1939_socks_lock);
93
94 j1939_priv_put(priv);
95 jsk->state &= ~J1939_SOCK_BOUND;
96 }
97
j1939_sk_queue_session(struct j1939_session * session)98 static bool j1939_sk_queue_session(struct j1939_session *session)
99 {
100 struct j1939_sock *jsk = j1939_sk(session->sk);
101 bool empty;
102
103 spin_lock_bh(&jsk->sk_session_queue_lock);
104 empty = list_empty(&jsk->sk_session_queue);
105 j1939_session_get(session);
106 list_add_tail(&session->sk_session_queue_entry, &jsk->sk_session_queue);
107 spin_unlock_bh(&jsk->sk_session_queue_lock);
108 j1939_sock_pending_add(&jsk->sk);
109
110 return empty;
111 }
112
113 static struct
j1939_sk_get_incomplete_session(struct j1939_sock * jsk)114 j1939_session *j1939_sk_get_incomplete_session(struct j1939_sock *jsk)
115 {
116 struct j1939_session *session = NULL;
117
118 spin_lock_bh(&jsk->sk_session_queue_lock);
119 if (!list_empty(&jsk->sk_session_queue)) {
120 session = list_last_entry(&jsk->sk_session_queue,
121 struct j1939_session,
122 sk_session_queue_entry);
123 if (session->total_queued_size == session->total_message_size)
124 session = NULL;
125 else
126 j1939_session_get(session);
127 }
128 spin_unlock_bh(&jsk->sk_session_queue_lock);
129
130 return session;
131 }
132
j1939_sk_queue_drop_all(struct j1939_priv * priv,struct j1939_sock * jsk,int err)133 static void j1939_sk_queue_drop_all(struct j1939_priv *priv,
134 struct j1939_sock *jsk, int err)
135 {
136 struct j1939_session *session, *tmp;
137
138 netdev_dbg(priv->ndev, "%s: err: %i\n", __func__, err);
139 spin_lock_bh(&jsk->sk_session_queue_lock);
140 list_for_each_entry_safe(session, tmp, &jsk->sk_session_queue,
141 sk_session_queue_entry) {
142 list_del_init(&session->sk_session_queue_entry);
143 session->err = err;
144 j1939_session_put(session);
145 }
146 spin_unlock_bh(&jsk->sk_session_queue_lock);
147 }
148
j1939_sk_queue_activate_next_locked(struct j1939_session * session)149 static void j1939_sk_queue_activate_next_locked(struct j1939_session *session)
150 {
151 struct j1939_sock *jsk;
152 struct j1939_session *first;
153 int err;
154
155 /* RX-Session don't have a socket (yet) */
156 if (!session->sk)
157 return;
158
159 jsk = j1939_sk(session->sk);
160 lockdep_assert_held(&jsk->sk_session_queue_lock);
161
162 err = session->err;
163
164 first = list_first_entry_or_null(&jsk->sk_session_queue,
165 struct j1939_session,
166 sk_session_queue_entry);
167
168 /* Some else has already activated the next session */
169 if (first != session)
170 return;
171
172 activate_next:
173 list_del_init(&first->sk_session_queue_entry);
174 j1939_session_put(first);
175 first = list_first_entry_or_null(&jsk->sk_session_queue,
176 struct j1939_session,
177 sk_session_queue_entry);
178 if (!first)
179 return;
180
181 if (j1939_session_activate(first)) {
182 netdev_warn_once(first->priv->ndev,
183 "%s: 0x%p: Identical session is already activated.\n",
184 __func__, first);
185 first->err = -EBUSY;
186 goto activate_next;
187 } else {
188 /* Give receiver some time (arbitrary chosen) to recover */
189 int time_ms = 0;
190
191 if (err)
192 time_ms = 10 + get_random_u32_below(16);
193
194 j1939_tp_schedule_txtimer(first, time_ms);
195 }
196 }
197
j1939_sk_queue_activate_next(struct j1939_session * session)198 void j1939_sk_queue_activate_next(struct j1939_session *session)
199 {
200 struct j1939_sock *jsk;
201
202 if (!session->sk)
203 return;
204
205 jsk = j1939_sk(session->sk);
206
207 spin_lock_bh(&jsk->sk_session_queue_lock);
208 j1939_sk_queue_activate_next_locked(session);
209 spin_unlock_bh(&jsk->sk_session_queue_lock);
210 }
211
j1939_sk_match_dst(struct j1939_sock * jsk,const struct j1939_sk_buff_cb * skcb)212 static bool j1939_sk_match_dst(struct j1939_sock *jsk,
213 const struct j1939_sk_buff_cb *skcb)
214 {
215 if ((jsk->state & J1939_SOCK_PROMISC))
216 return true;
217
218 /* Destination address filter */
219 if (jsk->addr.src_name && skcb->addr.dst_name) {
220 if (jsk->addr.src_name != skcb->addr.dst_name)
221 return false;
222 } else {
223 /* receive (all sockets) if
224 * - all packages that match our bind() address
225 * - all broadcast on a socket if SO_BROADCAST
226 * is set
227 */
228 if (j1939_address_is_unicast(skcb->addr.da)) {
229 if (jsk->addr.sa != skcb->addr.da)
230 return false;
231 } else if (!sock_flag(&jsk->sk, SOCK_BROADCAST)) {
232 /* receiving broadcast without SO_BROADCAST
233 * flag is not allowed
234 */
235 return false;
236 }
237 }
238
239 /* Source address filter */
240 if (jsk->state & J1939_SOCK_CONNECTED) {
241 /* receive (all sockets) if
242 * - all packages that match our connect() name or address
243 */
244 if (jsk->addr.dst_name && skcb->addr.src_name) {
245 if (jsk->addr.dst_name != skcb->addr.src_name)
246 return false;
247 } else {
248 if (jsk->addr.da != skcb->addr.sa)
249 return false;
250 }
251 }
252
253 /* PGN filter */
254 if (j1939_pgn_is_valid(jsk->pgn_rx_filter) &&
255 jsk->pgn_rx_filter != skcb->addr.pgn)
256 return false;
257
258 return true;
259 }
260
261 /* matches skb control buffer (addr) with a j1939 filter */
j1939_sk_match_filter(struct j1939_sock * jsk,const struct j1939_sk_buff_cb * skcb)262 static bool j1939_sk_match_filter(struct j1939_sock *jsk,
263 const struct j1939_sk_buff_cb *skcb)
264 {
265 const struct j1939_filter *f;
266 int nfilter;
267
268 spin_lock_bh(&jsk->filters_lock);
269
270 f = jsk->filters;
271 nfilter = jsk->nfilters;
272
273 if (!nfilter)
274 /* receive all when no filters are assigned */
275 goto filter_match_found;
276
277 for (; nfilter; ++f, --nfilter) {
278 if ((skcb->addr.pgn & f->pgn_mask) != f->pgn)
279 continue;
280 if ((skcb->addr.sa & f->addr_mask) != f->addr)
281 continue;
282 if ((skcb->addr.src_name & f->name_mask) != f->name)
283 continue;
284 goto filter_match_found;
285 }
286
287 spin_unlock_bh(&jsk->filters_lock);
288 return false;
289
290 filter_match_found:
291 spin_unlock_bh(&jsk->filters_lock);
292 return true;
293 }
294
j1939_sk_recv_match_one(struct j1939_sock * jsk,const struct j1939_sk_buff_cb * skcb)295 static bool j1939_sk_recv_match_one(struct j1939_sock *jsk,
296 const struct j1939_sk_buff_cb *skcb)
297 {
298 if (!(jsk->state & J1939_SOCK_BOUND))
299 return false;
300
301 if (!j1939_sk_match_dst(jsk, skcb))
302 return false;
303
304 if (!j1939_sk_match_filter(jsk, skcb))
305 return false;
306
307 return true;
308 }
309
j1939_sk_recv_one(struct j1939_sock * jsk,struct sk_buff * oskb)310 static void j1939_sk_recv_one(struct j1939_sock *jsk, struct sk_buff *oskb)
311 {
312 const struct j1939_sk_buff_cb *oskcb = j1939_skb_to_cb(oskb);
313 struct j1939_sk_buff_cb *skcb;
314 struct sk_buff *skb;
315
316 if (oskb->sk == &jsk->sk)
317 return;
318
319 if (!j1939_sk_recv_match_one(jsk, oskcb))
320 return;
321
322 skb = skb_clone(oskb, GFP_ATOMIC);
323 if (!skb) {
324 pr_warn("skb clone failed\n");
325 return;
326 }
327 can_skb_set_owner(skb, oskb->sk);
328
329 skcb = j1939_skb_to_cb(skb);
330 skcb->msg_flags &= ~(MSG_DONTROUTE);
331 if (skb->sk)
332 skcb->msg_flags |= MSG_DONTROUTE;
333
334 if (sock_queue_rcv_skb(&jsk->sk, skb) < 0)
335 kfree_skb(skb);
336 }
337
j1939_sk_recv_match(struct j1939_priv * priv,struct j1939_sk_buff_cb * skcb)338 bool j1939_sk_recv_match(struct j1939_priv *priv, struct j1939_sk_buff_cb *skcb)
339 {
340 struct j1939_sock *jsk;
341 bool match = false;
342
343 read_lock_bh(&priv->j1939_socks_lock);
344 list_for_each_entry(jsk, &priv->j1939_socks, list) {
345 match = j1939_sk_recv_match_one(jsk, skcb);
346 if (match)
347 break;
348 }
349 read_unlock_bh(&priv->j1939_socks_lock);
350
351 return match;
352 }
353
j1939_sk_recv(struct j1939_priv * priv,struct sk_buff * skb)354 void j1939_sk_recv(struct j1939_priv *priv, struct sk_buff *skb)
355 {
356 struct j1939_sock *jsk;
357
358 read_lock_bh(&priv->j1939_socks_lock);
359 list_for_each_entry(jsk, &priv->j1939_socks, list) {
360 j1939_sk_recv_one(jsk, skb);
361 }
362 read_unlock_bh(&priv->j1939_socks_lock);
363 }
364
j1939_sk_sock_destruct(struct sock * sk)365 static void j1939_sk_sock_destruct(struct sock *sk)
366 {
367 struct j1939_sock *jsk = j1939_sk(sk);
368
369 /* This function will be called by the generic networking code, when
370 * the socket is ultimately closed (sk->sk_destruct).
371 *
372 * The race between
373 * - processing a received CAN frame
374 * (can_receive -> j1939_can_recv)
375 * and accessing j1939_priv
376 * ... and ...
377 * - closing a socket
378 * (j1939_can_rx_unregister -> can_rx_unregister)
379 * and calling the final j1939_priv_put()
380 *
381 * is avoided by calling the final j1939_priv_put() from this
382 * RCU deferred cleanup call.
383 */
384 if (jsk->priv) {
385 j1939_priv_put(jsk->priv);
386 jsk->priv = NULL;
387 }
388
389 /* call generic CAN sock destruct */
390 can_sock_destruct(sk);
391 }
392
j1939_sk_init(struct sock * sk)393 static int j1939_sk_init(struct sock *sk)
394 {
395 struct j1939_sock *jsk = j1939_sk(sk);
396
397 /* Ensure that "sk" is first member in "struct j1939_sock", so that we
398 * can skip it during memset().
399 */
400 BUILD_BUG_ON(offsetof(struct j1939_sock, sk) != 0);
401 memset((void *)jsk + sizeof(jsk->sk), 0x0,
402 sizeof(*jsk) - sizeof(jsk->sk));
403
404 INIT_LIST_HEAD(&jsk->list);
405 init_waitqueue_head(&jsk->waitq);
406 jsk->sk.sk_priority = j1939_to_sk_priority(6);
407 jsk->sk.sk_reuse = 1; /* per default */
408 jsk->addr.sa = J1939_NO_ADDR;
409 jsk->addr.da = J1939_NO_ADDR;
410 jsk->addr.pgn = J1939_NO_PGN;
411 jsk->pgn_rx_filter = J1939_NO_PGN;
412 atomic_set(&jsk->skb_pending, 0);
413 spin_lock_init(&jsk->sk_session_queue_lock);
414 INIT_LIST_HEAD(&jsk->sk_session_queue);
415 spin_lock_init(&jsk->filters_lock);
416
417 /* j1939_sk_sock_destruct() depends on SOCK_RCU_FREE flag */
418 sock_set_flag(sk, SOCK_RCU_FREE);
419 sk->sk_destruct = j1939_sk_sock_destruct;
420 sk->sk_protocol = CAN_J1939;
421
422 return 0;
423 }
424
j1939_sk_sanity_check(struct sockaddr_can * addr,int len)425 static int j1939_sk_sanity_check(struct sockaddr_can *addr, int len)
426 {
427 if (!addr)
428 return -EDESTADDRREQ;
429 if (len < J1939_MIN_NAMELEN)
430 return -EINVAL;
431 if (addr->can_family != AF_CAN)
432 return -EINVAL;
433 if (!addr->can_ifindex)
434 return -ENODEV;
435 if (j1939_pgn_is_valid(addr->can_addr.j1939.pgn) &&
436 !j1939_pgn_is_clean_pdu(addr->can_addr.j1939.pgn))
437 return -EINVAL;
438
439 return 0;
440 }
441
j1939_sk_bind(struct socket * sock,struct sockaddr * uaddr,int len)442 static int j1939_sk_bind(struct socket *sock, struct sockaddr *uaddr, int len)
443 {
444 struct sockaddr_can *addr = (struct sockaddr_can *)uaddr;
445 struct j1939_sock *jsk = j1939_sk(sock->sk);
446 struct j1939_priv *priv;
447 struct sock *sk;
448 struct net *net;
449 int ret = 0;
450
451 ret = j1939_sk_sanity_check(addr, len);
452 if (ret)
453 return ret;
454
455 lock_sock(sock->sk);
456
457 priv = jsk->priv;
458 sk = sock->sk;
459 net = sock_net(sk);
460
461 /* Already bound to an interface? */
462 if (jsk->state & J1939_SOCK_BOUND) {
463 /* A re-bind() to a different interface is not
464 * supported.
465 */
466 if (jsk->ifindex != addr->can_ifindex) {
467 ret = -EINVAL;
468 goto out_release_sock;
469 }
470
471 /* drop old references */
472 j1939_jsk_del(priv, jsk);
473 j1939_local_ecu_put(priv, jsk->addr.src_name, jsk->addr.sa);
474 } else {
475 struct can_ml_priv *can_ml;
476 struct net_device *ndev;
477
478 ndev = dev_get_by_index(net, addr->can_ifindex);
479 if (!ndev) {
480 ret = -ENODEV;
481 goto out_release_sock;
482 }
483
484 can_ml = can_get_ml_priv(ndev);
485 if (!can_ml) {
486 dev_put(ndev);
487 ret = -ENODEV;
488 goto out_release_sock;
489 }
490
491 if (!(ndev->flags & IFF_UP)) {
492 dev_put(ndev);
493 ret = -ENETDOWN;
494 goto out_release_sock;
495 }
496
497 priv = j1939_netdev_start(ndev);
498 dev_put(ndev);
499 if (IS_ERR(priv)) {
500 ret = PTR_ERR(priv);
501 goto out_release_sock;
502 }
503
504 jsk->ifindex = addr->can_ifindex;
505
506 /* the corresponding j1939_priv_put() is called via
507 * sk->sk_destruct, which points to j1939_sk_sock_destruct()
508 */
509 j1939_priv_get(priv);
510 jsk->priv = priv;
511 }
512
513 /* set default transmit pgn */
514 if (j1939_pgn_is_valid(addr->can_addr.j1939.pgn))
515 jsk->pgn_rx_filter = addr->can_addr.j1939.pgn;
516 jsk->addr.src_name = addr->can_addr.j1939.name;
517 jsk->addr.sa = addr->can_addr.j1939.addr;
518
519 /* get new references */
520 ret = j1939_local_ecu_get(priv, jsk->addr.src_name, jsk->addr.sa);
521 if (ret) {
522 j1939_netdev_stop(priv);
523 jsk->priv = NULL;
524 synchronize_rcu();
525 j1939_priv_put(priv);
526 goto out_release_sock;
527 }
528
529 j1939_jsk_add(priv, jsk);
530
531 out_release_sock: /* fall through */
532 release_sock(sock->sk);
533
534 return ret;
535 }
536
j1939_sk_connect(struct socket * sock,struct sockaddr * uaddr,int len,int flags)537 static int j1939_sk_connect(struct socket *sock, struct sockaddr *uaddr,
538 int len, int flags)
539 {
540 struct sockaddr_can *addr = (struct sockaddr_can *)uaddr;
541 struct j1939_sock *jsk = j1939_sk(sock->sk);
542 int ret = 0;
543
544 ret = j1939_sk_sanity_check(addr, len);
545 if (ret)
546 return ret;
547
548 lock_sock(sock->sk);
549
550 /* bind() before connect() is mandatory */
551 if (!(jsk->state & J1939_SOCK_BOUND)) {
552 ret = -EINVAL;
553 goto out_release_sock;
554 }
555
556 /* A connect() to a different interface is not supported. */
557 if (jsk->ifindex != addr->can_ifindex) {
558 ret = -EINVAL;
559 goto out_release_sock;
560 }
561
562 if (!addr->can_addr.j1939.name &&
563 addr->can_addr.j1939.addr == J1939_NO_ADDR &&
564 !sock_flag(&jsk->sk, SOCK_BROADCAST)) {
565 /* broadcast, but SO_BROADCAST not set */
566 ret = -EACCES;
567 goto out_release_sock;
568 }
569
570 jsk->addr.dst_name = addr->can_addr.j1939.name;
571 jsk->addr.da = addr->can_addr.j1939.addr;
572
573 if (j1939_pgn_is_valid(addr->can_addr.j1939.pgn))
574 jsk->addr.pgn = addr->can_addr.j1939.pgn;
575
576 jsk->state |= J1939_SOCK_CONNECTED;
577
578 out_release_sock: /* fall through */
579 release_sock(sock->sk);
580
581 return ret;
582 }
583
j1939_sk_sock2sockaddr_can(struct sockaddr_can * addr,const struct j1939_sock * jsk,int peer)584 static void j1939_sk_sock2sockaddr_can(struct sockaddr_can *addr,
585 const struct j1939_sock *jsk, int peer)
586 {
587 /* There are two holes (2 bytes and 3 bytes) to clear to avoid
588 * leaking kernel information to user space.
589 */
590 memset(addr, 0, J1939_MIN_NAMELEN);
591
592 addr->can_family = AF_CAN;
593 addr->can_ifindex = jsk->ifindex;
594 addr->can_addr.j1939.pgn = jsk->addr.pgn;
595 if (peer) {
596 addr->can_addr.j1939.name = jsk->addr.dst_name;
597 addr->can_addr.j1939.addr = jsk->addr.da;
598 } else {
599 addr->can_addr.j1939.name = jsk->addr.src_name;
600 addr->can_addr.j1939.addr = jsk->addr.sa;
601 }
602 }
603
j1939_sk_getname(struct socket * sock,struct sockaddr * uaddr,int peer)604 static int j1939_sk_getname(struct socket *sock, struct sockaddr *uaddr,
605 int peer)
606 {
607 struct sockaddr_can *addr = (struct sockaddr_can *)uaddr;
608 struct sock *sk = sock->sk;
609 struct j1939_sock *jsk = j1939_sk(sk);
610 int ret = 0;
611
612 lock_sock(sk);
613
614 if (peer && !(jsk->state & J1939_SOCK_CONNECTED)) {
615 ret = -EADDRNOTAVAIL;
616 goto failure;
617 }
618
619 j1939_sk_sock2sockaddr_can(addr, jsk, peer);
620 ret = J1939_MIN_NAMELEN;
621
622 failure:
623 release_sock(sk);
624
625 return ret;
626 }
627
j1939_sk_release(struct socket * sock)628 static int j1939_sk_release(struct socket *sock)
629 {
630 struct sock *sk = sock->sk;
631 struct j1939_sock *jsk;
632
633 if (!sk)
634 return 0;
635
636 lock_sock(sk);
637 jsk = j1939_sk(sk);
638
639 if (jsk->state & J1939_SOCK_BOUND) {
640 struct j1939_priv *priv = jsk->priv;
641
642 if (wait_event_interruptible(jsk->waitq,
643 !j1939_sock_pending_get(&jsk->sk))) {
644 j1939_cancel_active_session(priv, sk);
645 j1939_sk_queue_drop_all(priv, jsk, ESHUTDOWN);
646 }
647
648 j1939_jsk_del(priv, jsk);
649
650 j1939_local_ecu_put(priv, jsk->addr.src_name,
651 jsk->addr.sa);
652
653 j1939_netdev_stop(priv);
654 }
655
656 kfree(jsk->filters);
657 sock_orphan(sk);
658 sock->sk = NULL;
659
660 release_sock(sk);
661 sock_put(sk);
662
663 return 0;
664 }
665
j1939_sk_setsockopt_flag(struct j1939_sock * jsk,sockptr_t optval,unsigned int optlen,int flag)666 static int j1939_sk_setsockopt_flag(struct j1939_sock *jsk, sockptr_t optval,
667 unsigned int optlen, int flag)
668 {
669 int tmp;
670
671 if (optlen != sizeof(tmp))
672 return -EINVAL;
673 if (copy_from_sockptr(&tmp, optval, optlen))
674 return -EFAULT;
675 lock_sock(&jsk->sk);
676 if (tmp)
677 jsk->state |= flag;
678 else
679 jsk->state &= ~flag;
680 release_sock(&jsk->sk);
681 return tmp;
682 }
683
j1939_sk_setsockopt(struct socket * sock,int level,int optname,sockptr_t optval,unsigned int optlen)684 static int j1939_sk_setsockopt(struct socket *sock, int level, int optname,
685 sockptr_t optval, unsigned int optlen)
686 {
687 struct sock *sk = sock->sk;
688 struct j1939_sock *jsk = j1939_sk(sk);
689 int tmp, count = 0, ret = 0;
690 struct j1939_filter *filters = NULL, *ofilters;
691
692 if (level != SOL_CAN_J1939)
693 return -EINVAL;
694
695 switch (optname) {
696 case SO_J1939_FILTER:
697 if (!sockptr_is_null(optval) && optlen != 0) {
698 struct j1939_filter *f;
699 int c;
700
701 if (optlen % sizeof(*filters) != 0)
702 return -EINVAL;
703
704 if (optlen > J1939_FILTER_MAX *
705 sizeof(struct j1939_filter))
706 return -EINVAL;
707
708 count = optlen / sizeof(*filters);
709 filters = memdup_sockptr(optval, optlen);
710 if (IS_ERR(filters))
711 return PTR_ERR(filters);
712
713 for (f = filters, c = count; c; f++, c--) {
714 f->name &= f->name_mask;
715 f->pgn &= f->pgn_mask;
716 f->addr &= f->addr_mask;
717 }
718 }
719
720 lock_sock(&jsk->sk);
721 spin_lock_bh(&jsk->filters_lock);
722 ofilters = jsk->filters;
723 jsk->filters = filters;
724 jsk->nfilters = count;
725 spin_unlock_bh(&jsk->filters_lock);
726 release_sock(&jsk->sk);
727 kfree(ofilters);
728 return 0;
729 case SO_J1939_PROMISC:
730 return j1939_sk_setsockopt_flag(jsk, optval, optlen,
731 J1939_SOCK_PROMISC);
732 case SO_J1939_ERRQUEUE:
733 ret = j1939_sk_setsockopt_flag(jsk, optval, optlen,
734 J1939_SOCK_ERRQUEUE);
735 if (ret < 0)
736 return ret;
737
738 if (!(jsk->state & J1939_SOCK_ERRQUEUE))
739 skb_queue_purge(&sk->sk_error_queue);
740 return ret;
741 case SO_J1939_SEND_PRIO:
742 if (optlen != sizeof(tmp))
743 return -EINVAL;
744 if (copy_from_sockptr(&tmp, optval, optlen))
745 return -EFAULT;
746 if (tmp < 0 || tmp > 7)
747 return -EDOM;
748 if (tmp < 2 && !capable(CAP_NET_ADMIN))
749 return -EPERM;
750 lock_sock(&jsk->sk);
751 jsk->sk.sk_priority = j1939_to_sk_priority(tmp);
752 release_sock(&jsk->sk);
753 return 0;
754 default:
755 return -ENOPROTOOPT;
756 }
757 }
758
j1939_sk_getsockopt(struct socket * sock,int level,int optname,char __user * optval,int __user * optlen)759 static int j1939_sk_getsockopt(struct socket *sock, int level, int optname,
760 char __user *optval, int __user *optlen)
761 {
762 struct sock *sk = sock->sk;
763 struct j1939_sock *jsk = j1939_sk(sk);
764 int ret, ulen;
765 /* set defaults for using 'int' properties */
766 int tmp = 0;
767 int len = sizeof(tmp);
768 void *val = &tmp;
769
770 if (level != SOL_CAN_J1939)
771 return -EINVAL;
772 if (get_user(ulen, optlen))
773 return -EFAULT;
774 if (ulen < 0)
775 return -EINVAL;
776
777 lock_sock(&jsk->sk);
778 switch (optname) {
779 case SO_J1939_PROMISC:
780 tmp = (jsk->state & J1939_SOCK_PROMISC) ? 1 : 0;
781 break;
782 case SO_J1939_ERRQUEUE:
783 tmp = (jsk->state & J1939_SOCK_ERRQUEUE) ? 1 : 0;
784 break;
785 case SO_J1939_SEND_PRIO:
786 tmp = j1939_prio(jsk->sk.sk_priority);
787 break;
788 default:
789 ret = -ENOPROTOOPT;
790 goto no_copy;
791 }
792
793 /* copy to user, based on 'len' & 'val'
794 * but most sockopt's are 'int' properties, and have 'len' & 'val'
795 * left unchanged, but instead modified 'tmp'
796 */
797 if (len > ulen)
798 ret = -EFAULT;
799 else if (put_user(len, optlen))
800 ret = -EFAULT;
801 else if (copy_to_user(optval, val, len))
802 ret = -EFAULT;
803 else
804 ret = 0;
805 no_copy:
806 release_sock(&jsk->sk);
807 return ret;
808 }
809
j1939_sk_recvmsg(struct socket * sock,struct msghdr * msg,size_t size,int flags)810 static int j1939_sk_recvmsg(struct socket *sock, struct msghdr *msg,
811 size_t size, int flags)
812 {
813 struct sock *sk = sock->sk;
814 struct sk_buff *skb;
815 struct j1939_sk_buff_cb *skcb;
816 int ret = 0;
817
818 if (flags & ~(MSG_DONTWAIT | MSG_ERRQUEUE | MSG_CMSG_COMPAT))
819 return -EINVAL;
820
821 if (flags & MSG_ERRQUEUE)
822 return sock_recv_errqueue(sock->sk, msg, size, SOL_CAN_J1939,
823 SCM_J1939_ERRQUEUE);
824
825 skb = skb_recv_datagram(sk, flags, &ret);
826 if (!skb)
827 return ret;
828
829 if (size < skb->len)
830 msg->msg_flags |= MSG_TRUNC;
831 else
832 size = skb->len;
833
834 ret = memcpy_to_msg(msg, skb->data, size);
835 if (ret < 0) {
836 skb_free_datagram(sk, skb);
837 return ret;
838 }
839
840 skcb = j1939_skb_to_cb(skb);
841 if (j1939_address_is_valid(skcb->addr.da))
842 put_cmsg(msg, SOL_CAN_J1939, SCM_J1939_DEST_ADDR,
843 sizeof(skcb->addr.da), &skcb->addr.da);
844
845 if (skcb->addr.dst_name)
846 put_cmsg(msg, SOL_CAN_J1939, SCM_J1939_DEST_NAME,
847 sizeof(skcb->addr.dst_name), &skcb->addr.dst_name);
848
849 put_cmsg(msg, SOL_CAN_J1939, SCM_J1939_PRIO,
850 sizeof(skcb->priority), &skcb->priority);
851
852 if (msg->msg_name) {
853 struct sockaddr_can *paddr = msg->msg_name;
854
855 msg->msg_namelen = J1939_MIN_NAMELEN;
856 memset(msg->msg_name, 0, msg->msg_namelen);
857 paddr->can_family = AF_CAN;
858 paddr->can_ifindex = skb->skb_iif;
859 paddr->can_addr.j1939.name = skcb->addr.src_name;
860 paddr->can_addr.j1939.addr = skcb->addr.sa;
861 paddr->can_addr.j1939.pgn = skcb->addr.pgn;
862 }
863
864 sock_recv_cmsgs(msg, sk, skb);
865 msg->msg_flags |= skcb->msg_flags;
866 skb_free_datagram(sk, skb);
867
868 return size;
869 }
870
j1939_sk_alloc_skb(struct net_device * ndev,struct sock * sk,struct msghdr * msg,size_t size,int * errcode)871 static struct sk_buff *j1939_sk_alloc_skb(struct net_device *ndev,
872 struct sock *sk,
873 struct msghdr *msg, size_t size,
874 int *errcode)
875 {
876 struct j1939_sock *jsk = j1939_sk(sk);
877 struct j1939_sk_buff_cb *skcb;
878 struct sk_buff *skb;
879 int ret;
880
881 skb = sock_alloc_send_skb(sk,
882 size +
883 sizeof(struct can_frame) -
884 sizeof(((struct can_frame *)NULL)->data) +
885 sizeof(struct can_skb_priv),
886 msg->msg_flags & MSG_DONTWAIT, &ret);
887 if (!skb)
888 goto failure;
889
890 can_skb_reserve(skb);
891 can_skb_prv(skb)->ifindex = ndev->ifindex;
892 can_skb_prv(skb)->skbcnt = 0;
893 skb_reserve(skb, offsetof(struct can_frame, data));
894
895 ret = memcpy_from_msg(skb_put(skb, size), msg, size);
896 if (ret < 0)
897 goto free_skb;
898
899 skb->dev = ndev;
900
901 skcb = j1939_skb_to_cb(skb);
902 memset(skcb, 0, sizeof(*skcb));
903 skcb->addr = jsk->addr;
904 skcb->priority = j1939_prio(READ_ONCE(sk->sk_priority));
905
906 if (msg->msg_name) {
907 struct sockaddr_can *addr = msg->msg_name;
908
909 if (addr->can_addr.j1939.name ||
910 addr->can_addr.j1939.addr != J1939_NO_ADDR) {
911 skcb->addr.dst_name = addr->can_addr.j1939.name;
912 skcb->addr.da = addr->can_addr.j1939.addr;
913 }
914 if (j1939_pgn_is_valid(addr->can_addr.j1939.pgn))
915 skcb->addr.pgn = addr->can_addr.j1939.pgn;
916 }
917
918 *errcode = ret;
919 return skb;
920
921 free_skb:
922 kfree_skb(skb);
923 failure:
924 *errcode = ret;
925 return NULL;
926 }
927
j1939_sk_opt_stats_get_size(enum j1939_sk_errqueue_type type)928 static size_t j1939_sk_opt_stats_get_size(enum j1939_sk_errqueue_type type)
929 {
930 switch (type) {
931 case J1939_ERRQUEUE_RX_RTS:
932 return
933 nla_total_size(sizeof(u32)) + /* J1939_NLA_TOTAL_SIZE */
934 nla_total_size(sizeof(u32)) + /* J1939_NLA_PGN */
935 nla_total_size(sizeof(u64)) + /* J1939_NLA_SRC_NAME */
936 nla_total_size(sizeof(u64)) + /* J1939_NLA_DEST_NAME */
937 nla_total_size(sizeof(u8)) + /* J1939_NLA_SRC_ADDR */
938 nla_total_size(sizeof(u8)) + /* J1939_NLA_DEST_ADDR */
939 0;
940 default:
941 return
942 nla_total_size(sizeof(u32)) + /* J1939_NLA_BYTES_ACKED */
943 0;
944 }
945 }
946
947 static struct sk_buff *
j1939_sk_get_timestamping_opt_stats(struct j1939_session * session,enum j1939_sk_errqueue_type type)948 j1939_sk_get_timestamping_opt_stats(struct j1939_session *session,
949 enum j1939_sk_errqueue_type type)
950 {
951 struct sk_buff *stats;
952 u32 size;
953
954 stats = alloc_skb(j1939_sk_opt_stats_get_size(type), GFP_ATOMIC);
955 if (!stats)
956 return NULL;
957
958 if (session->skcb.addr.type == J1939_SIMPLE)
959 size = session->total_message_size;
960 else
961 size = min(session->pkt.tx_acked * 7,
962 session->total_message_size);
963
964 switch (type) {
965 case J1939_ERRQUEUE_RX_RTS:
966 nla_put_u32(stats, J1939_NLA_TOTAL_SIZE,
967 session->total_message_size);
968 nla_put_u32(stats, J1939_NLA_PGN,
969 session->skcb.addr.pgn);
970 nla_put_u64_64bit(stats, J1939_NLA_SRC_NAME,
971 session->skcb.addr.src_name, J1939_NLA_PAD);
972 nla_put_u64_64bit(stats, J1939_NLA_DEST_NAME,
973 session->skcb.addr.dst_name, J1939_NLA_PAD);
974 nla_put_u8(stats, J1939_NLA_SRC_ADDR,
975 session->skcb.addr.sa);
976 nla_put_u8(stats, J1939_NLA_DEST_ADDR,
977 session->skcb.addr.da);
978 break;
979 default:
980 nla_put_u32(stats, J1939_NLA_BYTES_ACKED, size);
981 }
982
983 return stats;
984 }
985
__j1939_sk_errqueue(struct j1939_session * session,struct sock * sk,enum j1939_sk_errqueue_type type)986 static void __j1939_sk_errqueue(struct j1939_session *session, struct sock *sk,
987 enum j1939_sk_errqueue_type type)
988 {
989 struct j1939_priv *priv = session->priv;
990 struct j1939_sock *jsk;
991 struct sock_exterr_skb *serr;
992 struct sk_buff *skb;
993 char *state = "UNK";
994 u32 tsflags;
995 int err;
996
997 jsk = j1939_sk(sk);
998
999 if (!(jsk->state & J1939_SOCK_ERRQUEUE))
1000 return;
1001
1002 tsflags = READ_ONCE(sk->sk_tsflags);
1003 switch (type) {
1004 case J1939_ERRQUEUE_TX_ACK:
1005 if (!(tsflags & SOF_TIMESTAMPING_TX_ACK))
1006 return;
1007 break;
1008 case J1939_ERRQUEUE_TX_SCHED:
1009 if (!(tsflags & SOF_TIMESTAMPING_TX_SCHED))
1010 return;
1011 break;
1012 case J1939_ERRQUEUE_TX_ABORT:
1013 break;
1014 case J1939_ERRQUEUE_RX_RTS:
1015 fallthrough;
1016 case J1939_ERRQUEUE_RX_DPO:
1017 fallthrough;
1018 case J1939_ERRQUEUE_RX_ABORT:
1019 if (!(tsflags & SOF_TIMESTAMPING_RX_SOFTWARE))
1020 return;
1021 break;
1022 default:
1023 netdev_err(priv->ndev, "Unknown errqueue type %i\n", type);
1024 }
1025
1026 skb = j1939_sk_get_timestamping_opt_stats(session, type);
1027 if (!skb)
1028 return;
1029
1030 skb->tstamp = ktime_get_real();
1031
1032 BUILD_BUG_ON(sizeof(struct sock_exterr_skb) > sizeof(skb->cb));
1033
1034 serr = SKB_EXT_ERR(skb);
1035 memset(serr, 0, sizeof(*serr));
1036 switch (type) {
1037 case J1939_ERRQUEUE_TX_ACK:
1038 serr->ee.ee_errno = ENOMSG;
1039 serr->ee.ee_origin = SO_EE_ORIGIN_TIMESTAMPING;
1040 serr->ee.ee_info = SCM_TSTAMP_ACK;
1041 state = "TX ACK";
1042 break;
1043 case J1939_ERRQUEUE_TX_SCHED:
1044 serr->ee.ee_errno = ENOMSG;
1045 serr->ee.ee_origin = SO_EE_ORIGIN_TIMESTAMPING;
1046 serr->ee.ee_info = SCM_TSTAMP_SCHED;
1047 state = "TX SCH";
1048 break;
1049 case J1939_ERRQUEUE_TX_ABORT:
1050 serr->ee.ee_errno = session->err;
1051 serr->ee.ee_origin = SO_EE_ORIGIN_LOCAL;
1052 serr->ee.ee_info = J1939_EE_INFO_TX_ABORT;
1053 state = "TX ABT";
1054 break;
1055 case J1939_ERRQUEUE_RX_RTS:
1056 serr->ee.ee_errno = ENOMSG;
1057 serr->ee.ee_origin = SO_EE_ORIGIN_LOCAL;
1058 serr->ee.ee_info = J1939_EE_INFO_RX_RTS;
1059 state = "RX RTS";
1060 break;
1061 case J1939_ERRQUEUE_RX_DPO:
1062 serr->ee.ee_errno = ENOMSG;
1063 serr->ee.ee_origin = SO_EE_ORIGIN_LOCAL;
1064 serr->ee.ee_info = J1939_EE_INFO_RX_DPO;
1065 state = "RX DPO";
1066 break;
1067 case J1939_ERRQUEUE_RX_ABORT:
1068 serr->ee.ee_errno = session->err;
1069 serr->ee.ee_origin = SO_EE_ORIGIN_LOCAL;
1070 serr->ee.ee_info = J1939_EE_INFO_RX_ABORT;
1071 state = "RX ABT";
1072 break;
1073 }
1074
1075 serr->opt_stats = true;
1076 if (tsflags & SOF_TIMESTAMPING_OPT_ID)
1077 serr->ee.ee_data = session->tskey;
1078
1079 netdev_dbg(session->priv->ndev, "%s: 0x%p tskey: %i, state: %s\n",
1080 __func__, session, session->tskey, state);
1081 err = sock_queue_err_skb(sk, skb);
1082
1083 if (err)
1084 kfree_skb(skb);
1085 };
1086
j1939_sk_errqueue(struct j1939_session * session,enum j1939_sk_errqueue_type type)1087 void j1939_sk_errqueue(struct j1939_session *session,
1088 enum j1939_sk_errqueue_type type)
1089 {
1090 struct j1939_priv *priv = session->priv;
1091 struct j1939_sock *jsk;
1092
1093 if (session->sk) {
1094 /* send TX notifications to the socket of origin */
1095 __j1939_sk_errqueue(session, session->sk, type);
1096 return;
1097 }
1098
1099 /* spread RX notifications to all sockets subscribed to this session */
1100 read_lock_bh(&priv->j1939_socks_lock);
1101 list_for_each_entry(jsk, &priv->j1939_socks, list) {
1102 if (j1939_sk_recv_match_one(jsk, &session->skcb))
1103 __j1939_sk_errqueue(session, &jsk->sk, type);
1104 }
1105 read_unlock_bh(&priv->j1939_socks_lock);
1106 };
1107
j1939_sk_send_loop_abort(struct sock * sk,int err)1108 void j1939_sk_send_loop_abort(struct sock *sk, int err)
1109 {
1110 struct j1939_sock *jsk = j1939_sk(sk);
1111
1112 if (jsk->state & J1939_SOCK_ERRQUEUE)
1113 return;
1114
1115 sk->sk_err = err;
1116
1117 sk_error_report(sk);
1118 }
1119
j1939_sk_send_loop(struct j1939_priv * priv,struct sock * sk,struct msghdr * msg,size_t size)1120 static int j1939_sk_send_loop(struct j1939_priv *priv, struct sock *sk,
1121 struct msghdr *msg, size_t size)
1122
1123 {
1124 struct j1939_sock *jsk = j1939_sk(sk);
1125 struct j1939_session *session = j1939_sk_get_incomplete_session(jsk);
1126 struct sk_buff *skb;
1127 size_t segment_size, todo_size;
1128 int ret = 0;
1129
1130 if (session &&
1131 session->total_message_size != session->total_queued_size + size) {
1132 j1939_session_put(session);
1133 return -EIO;
1134 }
1135
1136 todo_size = size;
1137
1138 do {
1139 struct j1939_sk_buff_cb *skcb;
1140
1141 segment_size = min_t(size_t, J1939_MAX_TP_PACKET_SIZE,
1142 todo_size);
1143
1144 /* Allocate skb for one segment */
1145 skb = j1939_sk_alloc_skb(priv->ndev, sk, msg, segment_size,
1146 &ret);
1147 if (ret)
1148 break;
1149
1150 skcb = j1939_skb_to_cb(skb);
1151
1152 if (!session) {
1153 /* at this point the size should be full size
1154 * of the session
1155 */
1156 skcb->offset = 0;
1157 session = j1939_tp_send(priv, skb, size);
1158 if (IS_ERR(session)) {
1159 ret = PTR_ERR(session);
1160 goto kfree_skb;
1161 }
1162 if (j1939_sk_queue_session(session)) {
1163 /* try to activate session if we a
1164 * fist in the queue
1165 */
1166 if (!j1939_session_activate(session)) {
1167 j1939_tp_schedule_txtimer(session, 0);
1168 } else {
1169 ret = -EBUSY;
1170 session->err = ret;
1171 j1939_sk_queue_drop_all(priv, jsk,
1172 EBUSY);
1173 break;
1174 }
1175 }
1176 } else {
1177 skcb->offset = session->total_queued_size;
1178 j1939_session_skb_queue(session, skb);
1179 }
1180
1181 todo_size -= segment_size;
1182 session->total_queued_size += segment_size;
1183 } while (todo_size);
1184
1185 switch (ret) {
1186 case 0: /* OK */
1187 if (todo_size)
1188 netdev_warn(priv->ndev,
1189 "no error found and not completely queued?! %zu\n",
1190 todo_size);
1191 ret = size;
1192 break;
1193 case -ERESTARTSYS:
1194 ret = -EINTR;
1195 fallthrough;
1196 case -EAGAIN: /* OK */
1197 if (todo_size != size)
1198 ret = size - todo_size;
1199 break;
1200 default: /* ERROR */
1201 break;
1202 }
1203
1204 if (session)
1205 j1939_session_put(session);
1206
1207 return ret;
1208
1209 kfree_skb:
1210 kfree_skb(skb);
1211 return ret;
1212 }
1213
j1939_sk_sendmsg(struct socket * sock,struct msghdr * msg,size_t size)1214 static int j1939_sk_sendmsg(struct socket *sock, struct msghdr *msg,
1215 size_t size)
1216 {
1217 struct sock *sk = sock->sk;
1218 struct j1939_sock *jsk = j1939_sk(sk);
1219 struct j1939_priv *priv;
1220 int ifindex;
1221 int ret;
1222
1223 lock_sock(sock->sk);
1224 /* various socket state tests */
1225 if (!(jsk->state & J1939_SOCK_BOUND)) {
1226 ret = -EBADFD;
1227 goto sendmsg_done;
1228 }
1229
1230 priv = jsk->priv;
1231 ifindex = jsk->ifindex;
1232
1233 if (!jsk->addr.src_name && jsk->addr.sa == J1939_NO_ADDR) {
1234 /* no source address assigned yet */
1235 ret = -EBADFD;
1236 goto sendmsg_done;
1237 }
1238
1239 /* deal with provided destination address info */
1240 if (msg->msg_name) {
1241 struct sockaddr_can *addr = msg->msg_name;
1242
1243 if (msg->msg_namelen < J1939_MIN_NAMELEN) {
1244 ret = -EINVAL;
1245 goto sendmsg_done;
1246 }
1247
1248 if (addr->can_family != AF_CAN) {
1249 ret = -EINVAL;
1250 goto sendmsg_done;
1251 }
1252
1253 if (addr->can_ifindex && addr->can_ifindex != ifindex) {
1254 ret = -EBADFD;
1255 goto sendmsg_done;
1256 }
1257
1258 if (j1939_pgn_is_valid(addr->can_addr.j1939.pgn) &&
1259 !j1939_pgn_is_clean_pdu(addr->can_addr.j1939.pgn)) {
1260 ret = -EINVAL;
1261 goto sendmsg_done;
1262 }
1263
1264 if (!addr->can_addr.j1939.name &&
1265 addr->can_addr.j1939.addr == J1939_NO_ADDR &&
1266 !sock_flag(sk, SOCK_BROADCAST)) {
1267 /* broadcast, but SO_BROADCAST not set */
1268 ret = -EACCES;
1269 goto sendmsg_done;
1270 }
1271 } else {
1272 if (!jsk->addr.dst_name && jsk->addr.da == J1939_NO_ADDR &&
1273 !sock_flag(sk, SOCK_BROADCAST)) {
1274 /* broadcast, but SO_BROADCAST not set */
1275 ret = -EACCES;
1276 goto sendmsg_done;
1277 }
1278 }
1279
1280 ret = j1939_sk_send_loop(priv, sk, msg, size);
1281
1282 sendmsg_done:
1283 release_sock(sock->sk);
1284
1285 return ret;
1286 }
1287
j1939_sk_netdev_event_netdown(struct j1939_priv * priv)1288 void j1939_sk_netdev_event_netdown(struct j1939_priv *priv)
1289 {
1290 struct j1939_sock *jsk;
1291 int error_code = ENETDOWN;
1292
1293 read_lock_bh(&priv->j1939_socks_lock);
1294 list_for_each_entry(jsk, &priv->j1939_socks, list) {
1295 jsk->sk.sk_err = error_code;
1296 if (!sock_flag(&jsk->sk, SOCK_DEAD))
1297 sk_error_report(&jsk->sk);
1298
1299 j1939_sk_queue_drop_all(priv, jsk, error_code);
1300 }
1301 read_unlock_bh(&priv->j1939_socks_lock);
1302 }
1303
j1939_sk_no_ioctlcmd(struct socket * sock,unsigned int cmd,unsigned long arg)1304 static int j1939_sk_no_ioctlcmd(struct socket *sock, unsigned int cmd,
1305 unsigned long arg)
1306 {
1307 /* no ioctls for socket layer -> hand it down to NIC layer */
1308 return -ENOIOCTLCMD;
1309 }
1310
1311 static const struct proto_ops j1939_ops = {
1312 .family = PF_CAN,
1313 .release = j1939_sk_release,
1314 .bind = j1939_sk_bind,
1315 .connect = j1939_sk_connect,
1316 .socketpair = sock_no_socketpair,
1317 .accept = sock_no_accept,
1318 .getname = j1939_sk_getname,
1319 .poll = datagram_poll,
1320 .ioctl = j1939_sk_no_ioctlcmd,
1321 .listen = sock_no_listen,
1322 .shutdown = sock_no_shutdown,
1323 .setsockopt = j1939_sk_setsockopt,
1324 .getsockopt = j1939_sk_getsockopt,
1325 .sendmsg = j1939_sk_sendmsg,
1326 .recvmsg = j1939_sk_recvmsg,
1327 .mmap = sock_no_mmap,
1328 };
1329
1330 static struct proto j1939_proto __read_mostly = {
1331 .name = "CAN_J1939",
1332 .owner = THIS_MODULE,
1333 .obj_size = sizeof(struct j1939_sock),
1334 .init = j1939_sk_init,
1335 };
1336
1337 const struct can_proto j1939_can_proto = {
1338 .type = SOCK_DGRAM,
1339 .protocol = CAN_J1939,
1340 .ops = &j1939_ops,
1341 .prot = &j1939_proto,
1342 };
1343