1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Forwarding database
4 * Linux ethernet bridge
5 *
6 * Authors:
7 * Lennert Buytenhek <buytenh@gnu.org>
8 */
9
10 #include <linux/kernel.h>
11 #include <linux/init.h>
12 #include <linux/rculist.h>
13 #include <linux/spinlock.h>
14 #include <linux/times.h>
15 #include <linux/netdevice.h>
16 #include <linux/etherdevice.h>
17 #include <linux/jhash.h>
18 #include <linux/random.h>
19 #include <linux/slab.h>
20 #include <linux/atomic.h>
21 #include <linux/unaligned.h>
22 #include <linux/if_vlan.h>
23 #include <net/switchdev.h>
24 #include <trace/events/bridge.h>
25 #include "br_private.h"
26
27 static const struct rhashtable_params br_fdb_rht_params = {
28 .head_offset = offsetof(struct net_bridge_fdb_entry, rhnode),
29 .key_offset = offsetof(struct net_bridge_fdb_entry, key),
30 .key_len = sizeof(struct net_bridge_fdb_key),
31 .automatic_shrinking = true,
32 };
33
34 static struct kmem_cache *br_fdb_cache __read_mostly;
35
br_fdb_init(void)36 int __init br_fdb_init(void)
37 {
38 br_fdb_cache = KMEM_CACHE(net_bridge_fdb_entry, SLAB_HWCACHE_ALIGN);
39 if (!br_fdb_cache)
40 return -ENOMEM;
41
42 return 0;
43 }
44
br_fdb_fini(void)45 void br_fdb_fini(void)
46 {
47 kmem_cache_destroy(br_fdb_cache);
48 }
49
br_fdb_hash_init(struct net_bridge * br)50 int br_fdb_hash_init(struct net_bridge *br)
51 {
52 return rhashtable_init(&br->fdb_hash_tbl, &br_fdb_rht_params);
53 }
54
br_fdb_hash_fini(struct net_bridge * br)55 void br_fdb_hash_fini(struct net_bridge *br)
56 {
57 rhashtable_destroy(&br->fdb_hash_tbl);
58 }
59
60 /* if topology_changing then use forward_delay (default 15 sec)
61 * otherwise keep longer (default 5 minutes)
62 */
hold_time(const struct net_bridge * br)63 static inline unsigned long hold_time(const struct net_bridge *br)
64 {
65 return br->topology_change ? br->forward_delay : br->ageing_time;
66 }
67
has_expired(const struct net_bridge * br,const struct net_bridge_fdb_entry * fdb)68 static inline int has_expired(const struct net_bridge *br,
69 const struct net_bridge_fdb_entry *fdb)
70 {
71 return !test_bit(BR_FDB_STATIC, &fdb->flags) &&
72 !test_bit(BR_FDB_ADDED_BY_EXT_LEARN, &fdb->flags) &&
73 time_before_eq(READ_ONCE(fdb->updated) + hold_time(br), jiffies);
74 }
75
fdb_to_nud(const struct net_bridge * br,const struct net_bridge_fdb_entry * fdb)76 static int fdb_to_nud(const struct net_bridge *br,
77 const struct net_bridge_fdb_entry *fdb)
78 {
79 if (test_bit(BR_FDB_LOCAL, &fdb->flags))
80 return NUD_PERMANENT;
81 else if (test_bit(BR_FDB_STATIC, &fdb->flags))
82 return NUD_NOARP;
83 else if (has_expired(br, fdb))
84 return NUD_STALE;
85 else
86 return NUD_REACHABLE;
87 }
88
fdb_fill_info(struct sk_buff * skb,const struct net_bridge * br,const struct net_bridge_fdb_entry * fdb,u32 portid,u32 seq,int type,unsigned int flags)89 static int fdb_fill_info(struct sk_buff *skb, const struct net_bridge *br,
90 const struct net_bridge_fdb_entry *fdb,
91 u32 portid, u32 seq, int type, unsigned int flags)
92 {
93 const struct net_bridge_port *dst = READ_ONCE(fdb->dst);
94 unsigned long now = jiffies;
95 struct nda_cacheinfo ci;
96 struct nlmsghdr *nlh;
97 struct ndmsg *ndm;
98 u32 ext_flags = 0;
99
100 nlh = nlmsg_put(skb, portid, seq, type, sizeof(*ndm), flags);
101 if (nlh == NULL)
102 return -EMSGSIZE;
103
104 ndm = nlmsg_data(nlh);
105 ndm->ndm_family = AF_BRIDGE;
106 ndm->ndm_pad1 = 0;
107 ndm->ndm_pad2 = 0;
108 ndm->ndm_flags = 0;
109 ndm->ndm_type = 0;
110 ndm->ndm_ifindex = dst ? dst->dev->ifindex : br->dev->ifindex;
111 ndm->ndm_state = fdb_to_nud(br, fdb);
112
113 if (test_bit(BR_FDB_OFFLOADED, &fdb->flags))
114 ndm->ndm_flags |= NTF_OFFLOADED;
115 if (test_bit(BR_FDB_ADDED_BY_EXT_LEARN, &fdb->flags))
116 ndm->ndm_flags |= NTF_EXT_LEARNED;
117 if (test_bit(BR_FDB_STICKY, &fdb->flags))
118 ndm->ndm_flags |= NTF_STICKY;
119 if (test_bit(BR_FDB_LOCKED, &fdb->flags))
120 ext_flags |= NTF_EXT_LOCKED;
121
122 if (nla_put(skb, NDA_LLADDR, ETH_ALEN, &fdb->key.addr))
123 goto nla_put_failure;
124 if (nla_put_u32(skb, NDA_MASTER, br->dev->ifindex))
125 goto nla_put_failure;
126 if (nla_put_u32(skb, NDA_FLAGS_EXT, ext_flags))
127 goto nla_put_failure;
128
129 ci.ndm_used = jiffies_to_clock_t(now - READ_ONCE(fdb->used));
130 ci.ndm_confirmed = 0;
131 ci.ndm_updated = jiffies_to_clock_t(now - READ_ONCE(fdb->updated));
132 ci.ndm_refcnt = 0;
133 if (nla_put(skb, NDA_CACHEINFO, sizeof(ci), &ci))
134 goto nla_put_failure;
135
136 if (fdb->key.vlan_id && nla_put(skb, NDA_VLAN, sizeof(u16),
137 &fdb->key.vlan_id))
138 goto nla_put_failure;
139
140 if (test_bit(BR_FDB_NOTIFY, &fdb->flags)) {
141 struct nlattr *nest = nla_nest_start(skb, NDA_FDB_EXT_ATTRS);
142 u8 notify_bits = FDB_NOTIFY_BIT;
143
144 if (!nest)
145 goto nla_put_failure;
146 if (test_bit(BR_FDB_NOTIFY_INACTIVE, &fdb->flags))
147 notify_bits |= FDB_NOTIFY_INACTIVE_BIT;
148
149 if (nla_put_u8(skb, NFEA_ACTIVITY_NOTIFY, notify_bits)) {
150 nla_nest_cancel(skb, nest);
151 goto nla_put_failure;
152 }
153
154 nla_nest_end(skb, nest);
155 }
156
157 nlmsg_end(skb, nlh);
158 return 0;
159
160 nla_put_failure:
161 nlmsg_cancel(skb, nlh);
162 return -EMSGSIZE;
163 }
164
fdb_nlmsg_size(void)165 static inline size_t fdb_nlmsg_size(void)
166 {
167 return NLMSG_ALIGN(sizeof(struct ndmsg))
168 + nla_total_size(ETH_ALEN) /* NDA_LLADDR */
169 + nla_total_size(sizeof(u32)) /* NDA_MASTER */
170 + nla_total_size(sizeof(u32)) /* NDA_FLAGS_EXT */
171 + nla_total_size(sizeof(u16)) /* NDA_VLAN */
172 + nla_total_size(sizeof(struct nda_cacheinfo))
173 + nla_total_size(0) /* NDA_FDB_EXT_ATTRS */
174 + nla_total_size(sizeof(u8)); /* NFEA_ACTIVITY_NOTIFY */
175 }
176
fdb_notify(struct net_bridge * br,const struct net_bridge_fdb_entry * fdb,int type,bool swdev_notify)177 static void fdb_notify(struct net_bridge *br,
178 const struct net_bridge_fdb_entry *fdb, int type,
179 bool swdev_notify)
180 {
181 struct net *net = dev_net(br->dev);
182 struct sk_buff *skb;
183 int err = -ENOBUFS;
184
185 if (swdev_notify)
186 br_switchdev_fdb_notify(br, fdb, type);
187
188 skb = nlmsg_new(fdb_nlmsg_size(), GFP_ATOMIC);
189 if (skb == NULL)
190 goto errout;
191
192 err = fdb_fill_info(skb, br, fdb, 0, 0, type, 0);
193 if (err < 0) {
194 /* -EMSGSIZE implies BUG in fdb_nlmsg_size() */
195 WARN_ON(err == -EMSGSIZE);
196 kfree_skb(skb);
197 goto errout;
198 }
199 rtnl_notify(skb, net, 0, RTNLGRP_NEIGH, NULL, GFP_ATOMIC);
200 return;
201 errout:
202 rtnl_set_sk_err(net, RTNLGRP_NEIGH, err);
203 }
204
fdb_find_rcu(struct rhashtable * tbl,const unsigned char * addr,__u16 vid)205 static struct net_bridge_fdb_entry *fdb_find_rcu(struct rhashtable *tbl,
206 const unsigned char *addr,
207 __u16 vid)
208 {
209 struct net_bridge_fdb_key key;
210
211 WARN_ON_ONCE(!rcu_read_lock_held());
212
213 key.vlan_id = vid;
214 memcpy(key.addr.addr, addr, sizeof(key.addr.addr));
215
216 return rhashtable_lookup(tbl, &key, br_fdb_rht_params);
217 }
218
219 /* requires bridge hash_lock */
br_fdb_find(struct net_bridge * br,const unsigned char * addr,__u16 vid)220 static struct net_bridge_fdb_entry *br_fdb_find(struct net_bridge *br,
221 const unsigned char *addr,
222 __u16 vid)
223 {
224 struct net_bridge_fdb_entry *fdb;
225
226 lockdep_assert_held_once(&br->hash_lock);
227
228 rcu_read_lock();
229 fdb = fdb_find_rcu(&br->fdb_hash_tbl, addr, vid);
230 rcu_read_unlock();
231
232 return fdb;
233 }
234
br_fdb_find_port(const struct net_device * br_dev,const unsigned char * addr,__u16 vid)235 struct net_device *br_fdb_find_port(const struct net_device *br_dev,
236 const unsigned char *addr,
237 __u16 vid)
238 {
239 struct net_bridge_fdb_entry *f;
240 struct net_device *dev = NULL;
241 struct net_bridge *br;
242
243 ASSERT_RTNL();
244
245 if (!netif_is_bridge_master(br_dev))
246 return NULL;
247
248 br = netdev_priv(br_dev);
249 rcu_read_lock();
250 f = br_fdb_find_rcu(br, addr, vid);
251 if (f && f->dst)
252 dev = f->dst->dev;
253 rcu_read_unlock();
254
255 return dev;
256 }
257 EXPORT_SYMBOL_GPL(br_fdb_find_port);
258
br_fdb_find_rcu(struct net_bridge * br,const unsigned char * addr,__u16 vid)259 struct net_bridge_fdb_entry *br_fdb_find_rcu(struct net_bridge *br,
260 const unsigned char *addr,
261 __u16 vid)
262 {
263 return fdb_find_rcu(&br->fdb_hash_tbl, addr, vid);
264 }
265
266 /* When a static FDB entry is added, the mac address from the entry is
267 * added to the bridge private HW address list and all required ports
268 * are then updated with the new information.
269 * Called under RTNL.
270 */
fdb_add_hw_addr(struct net_bridge * br,const unsigned char * addr)271 static void fdb_add_hw_addr(struct net_bridge *br, const unsigned char *addr)
272 {
273 int err;
274 struct net_bridge_port *p;
275
276 ASSERT_RTNL();
277
278 list_for_each_entry(p, &br->port_list, list) {
279 if (!br_promisc_port(p)) {
280 err = dev_uc_add(p->dev, addr);
281 if (err)
282 goto undo;
283 }
284 }
285
286 return;
287 undo:
288 list_for_each_entry_continue_reverse(p, &br->port_list, list) {
289 if (!br_promisc_port(p))
290 dev_uc_del(p->dev, addr);
291 }
292 }
293
294 /* When a static FDB entry is deleted, the HW address from that entry is
295 * also removed from the bridge private HW address list and updates all
296 * the ports with needed information.
297 * Called under RTNL.
298 */
fdb_del_hw_addr(struct net_bridge * br,const unsigned char * addr)299 static void fdb_del_hw_addr(struct net_bridge *br, const unsigned char *addr)
300 {
301 struct net_bridge_port *p;
302
303 ASSERT_RTNL();
304
305 list_for_each_entry(p, &br->port_list, list) {
306 if (!br_promisc_port(p))
307 dev_uc_del(p->dev, addr);
308 }
309 }
310
fdb_delete(struct net_bridge * br,struct net_bridge_fdb_entry * f,bool swdev_notify)311 static void fdb_delete(struct net_bridge *br, struct net_bridge_fdb_entry *f,
312 bool swdev_notify)
313 {
314 trace_fdb_delete(br, f);
315
316 if (test_bit(BR_FDB_STATIC, &f->flags))
317 fdb_del_hw_addr(br, f->key.addr.addr);
318
319 hlist_del_init_rcu(&f->fdb_node);
320 rhashtable_remove_fast(&br->fdb_hash_tbl, &f->rhnode,
321 br_fdb_rht_params);
322 if (test_and_clear_bit(BR_FDB_DYNAMIC_LEARNED, &f->flags))
323 atomic_dec(&br->fdb_n_learned);
324 fdb_notify(br, f, RTM_DELNEIGH, swdev_notify);
325 kfree_rcu(f, rcu);
326 }
327
328 /* Delete a local entry if no other port had the same address.
329 *
330 * This function should only be called on entries with BR_FDB_LOCAL set,
331 * so even with BR_FDB_ADDED_BY_USER cleared we never need to increase
332 * the accounting for dynamically learned entries again.
333 */
fdb_delete_local(struct net_bridge * br,const struct net_bridge_port * p,struct net_bridge_fdb_entry * f)334 static void fdb_delete_local(struct net_bridge *br,
335 const struct net_bridge_port *p,
336 struct net_bridge_fdb_entry *f)
337 {
338 const unsigned char *addr = f->key.addr.addr;
339 struct net_bridge_vlan_group *vg;
340 const struct net_bridge_vlan *v;
341 struct net_bridge_port *op;
342 u16 vid = f->key.vlan_id;
343
344 /* Maybe another port has same hw addr? */
345 list_for_each_entry(op, &br->port_list, list) {
346 vg = nbp_vlan_group(op);
347 if (op != p && ether_addr_equal(op->dev->dev_addr, addr) &&
348 (!vid || br_vlan_find(vg, vid))) {
349 f->dst = op;
350 clear_bit(BR_FDB_ADDED_BY_USER, &f->flags);
351 return;
352 }
353 }
354
355 vg = br_vlan_group(br);
356 v = br_vlan_find(vg, vid);
357 /* Maybe bridge device has same hw addr? */
358 if (p && ether_addr_equal(br->dev->dev_addr, addr) &&
359 (!vid || (v && br_vlan_should_use(v)))) {
360 f->dst = NULL;
361 clear_bit(BR_FDB_ADDED_BY_USER, &f->flags);
362 return;
363 }
364
365 fdb_delete(br, f, true);
366 }
367
br_fdb_find_delete_local(struct net_bridge * br,const struct net_bridge_port * p,const unsigned char * addr,u16 vid)368 void br_fdb_find_delete_local(struct net_bridge *br,
369 const struct net_bridge_port *p,
370 const unsigned char *addr, u16 vid)
371 {
372 struct net_bridge_fdb_entry *f;
373
374 spin_lock_bh(&br->hash_lock);
375 f = br_fdb_find(br, addr, vid);
376 if (f && test_bit(BR_FDB_LOCAL, &f->flags) &&
377 !test_bit(BR_FDB_ADDED_BY_USER, &f->flags) && f->dst == p)
378 fdb_delete_local(br, p, f);
379 spin_unlock_bh(&br->hash_lock);
380 }
381
fdb_create(struct net_bridge * br,struct net_bridge_port * source,const unsigned char * addr,__u16 vid,unsigned long flags)382 static struct net_bridge_fdb_entry *fdb_create(struct net_bridge *br,
383 struct net_bridge_port *source,
384 const unsigned char *addr,
385 __u16 vid,
386 unsigned long flags)
387 {
388 bool learned = !test_bit(BR_FDB_ADDED_BY_USER, &flags) &&
389 !test_bit(BR_FDB_LOCAL, &flags);
390 u32 max_learned = READ_ONCE(br->fdb_max_learned);
391 struct net_bridge_fdb_entry *fdb;
392 int err;
393
394 if (likely(learned)) {
395 int n_learned = atomic_read(&br->fdb_n_learned);
396
397 if (unlikely(max_learned && n_learned >= max_learned))
398 return NULL;
399 __set_bit(BR_FDB_DYNAMIC_LEARNED, &flags);
400 }
401
402 fdb = kmem_cache_alloc(br_fdb_cache, GFP_ATOMIC);
403 if (!fdb)
404 return NULL;
405
406 memcpy(fdb->key.addr.addr, addr, ETH_ALEN);
407 WRITE_ONCE(fdb->dst, source);
408 fdb->key.vlan_id = vid;
409 fdb->flags = flags;
410 fdb->updated = fdb->used = jiffies;
411 err = rhashtable_lookup_insert_fast(&br->fdb_hash_tbl, &fdb->rhnode,
412 br_fdb_rht_params);
413 if (err) {
414 kmem_cache_free(br_fdb_cache, fdb);
415 return NULL;
416 }
417
418 if (likely(learned))
419 atomic_inc(&br->fdb_n_learned);
420
421 hlist_add_head_rcu(&fdb->fdb_node, &br->fdb_list);
422
423 return fdb;
424 }
425
fdb_add_local(struct net_bridge * br,struct net_bridge_port * source,const unsigned char * addr,u16 vid)426 static int fdb_add_local(struct net_bridge *br, struct net_bridge_port *source,
427 const unsigned char *addr, u16 vid)
428 {
429 struct net_bridge_fdb_entry *fdb;
430
431 if (!is_valid_ether_addr(addr))
432 return -EINVAL;
433
434 fdb = br_fdb_find(br, addr, vid);
435 if (fdb) {
436 /* it is okay to have multiple ports with same
437 * address, just use the first one.
438 */
439 if (test_bit(BR_FDB_LOCAL, &fdb->flags))
440 return 0;
441 br_warn(br, "adding interface %s with same address as a received packet (addr:%pM, vlan:%u)\n",
442 source ? source->dev->name : br->dev->name, addr, vid);
443 fdb_delete(br, fdb, true);
444 }
445
446 fdb = fdb_create(br, source, addr, vid,
447 BIT(BR_FDB_LOCAL) | BIT(BR_FDB_STATIC));
448 if (!fdb)
449 return -ENOMEM;
450
451 fdb_add_hw_addr(br, addr);
452 fdb_notify(br, fdb, RTM_NEWNEIGH, true);
453 return 0;
454 }
455
br_fdb_changeaddr(struct net_bridge_port * p,const unsigned char * newaddr)456 void br_fdb_changeaddr(struct net_bridge_port *p, const unsigned char *newaddr)
457 {
458 struct net_bridge_vlan_group *vg;
459 struct net_bridge_fdb_entry *f;
460 struct net_bridge *br = p->br;
461 struct net_bridge_vlan *v;
462 bool local_vlan_0;
463
464 local_vlan_0 = br_opt_get(br, BROPT_FDB_LOCAL_VLAN_0);
465
466 spin_lock_bh(&br->hash_lock);
467 vg = nbp_vlan_group(p);
468 hlist_for_each_entry(f, &br->fdb_list, fdb_node) {
469 if (f->dst == p && test_bit(BR_FDB_LOCAL, &f->flags) &&
470 !test_bit(BR_FDB_ADDED_BY_USER, &f->flags)) {
471 /* delete old one */
472 fdb_delete_local(br, p, f);
473
474 /* if this port has no vlan information configured, or
475 * local entries are only kept on VLAN 0, we can safely
476 * be done at this point.
477 */
478 if (!vg || !vg->num_vlans || local_vlan_0)
479 goto insert;
480 }
481 }
482
483 insert:
484 /* insert new address, may fail if invalid address or dup. */
485 fdb_add_local(br, p, newaddr, 0);
486
487 if (!vg || !vg->num_vlans || local_vlan_0)
488 goto done;
489
490 /* Now add entries for every VLAN configured on the port.
491 * This function runs under RTNL so the bitmap will not change
492 * from under us.
493 */
494 list_for_each_entry(v, &vg->vlan_list, vlist)
495 fdb_add_local(br, p, newaddr, v->vid);
496
497 done:
498 spin_unlock_bh(&br->hash_lock);
499 }
500
br_fdb_change_mac_address(struct net_bridge * br,const u8 * newaddr)501 void br_fdb_change_mac_address(struct net_bridge *br, const u8 *newaddr)
502 {
503 struct net_bridge_vlan_group *vg;
504 struct net_bridge_fdb_entry *f;
505 struct net_bridge_vlan *v;
506 bool local_vlan_0;
507
508 local_vlan_0 = br_opt_get(br, BROPT_FDB_LOCAL_VLAN_0);
509
510 spin_lock_bh(&br->hash_lock);
511
512 /* If old entry was unassociated with any port, then delete it. */
513 f = br_fdb_find(br, br->dev->dev_addr, 0);
514 if (f && test_bit(BR_FDB_LOCAL, &f->flags) &&
515 !f->dst && !test_bit(BR_FDB_ADDED_BY_USER, &f->flags))
516 fdb_delete_local(br, NULL, f);
517
518 fdb_add_local(br, NULL, newaddr, 0);
519 vg = br_vlan_group(br);
520 if (!vg || !vg->num_vlans || local_vlan_0)
521 goto out;
522 /* Now remove and add entries for every VLAN configured on the
523 * bridge. This function runs under RTNL so the bitmap will not
524 * change from under us.
525 */
526 list_for_each_entry(v, &vg->vlan_list, vlist) {
527 if (!br_vlan_should_use(v))
528 continue;
529 f = br_fdb_find(br, br->dev->dev_addr, v->vid);
530 if (f && test_bit(BR_FDB_LOCAL, &f->flags) &&
531 !f->dst && !test_bit(BR_FDB_ADDED_BY_USER, &f->flags))
532 fdb_delete_local(br, NULL, f);
533 fdb_add_local(br, NULL, newaddr, v->vid);
534 }
535 out:
536 spin_unlock_bh(&br->hash_lock);
537 }
538
br_fdb_cleanup(struct work_struct * work)539 void br_fdb_cleanup(struct work_struct *work)
540 {
541 struct net_bridge *br = container_of(work, struct net_bridge,
542 gc_work.work);
543 struct net_bridge_fdb_entry *f = NULL;
544 unsigned long delay = hold_time(br);
545 unsigned long work_delay = delay;
546 unsigned long now = jiffies;
547
548 /* this part is tricky, in order to avoid blocking learning and
549 * consequently forwarding, we rely on rcu to delete objects with
550 * delayed freeing allowing us to continue traversing
551 */
552 rcu_read_lock();
553 hlist_for_each_entry_rcu(f, &br->fdb_list, fdb_node) {
554 unsigned long this_timer = READ_ONCE(f->updated) + delay;
555
556 if (test_bit(BR_FDB_STATIC, &f->flags) ||
557 test_bit(BR_FDB_ADDED_BY_EXT_LEARN, &f->flags)) {
558 if (test_bit(BR_FDB_NOTIFY, &f->flags)) {
559 if (time_after(this_timer, now))
560 work_delay = min(work_delay,
561 this_timer - now);
562 else if (!test_and_set_bit(BR_FDB_NOTIFY_INACTIVE,
563 &f->flags))
564 fdb_notify(br, f, RTM_NEWNEIGH, false);
565 }
566 continue;
567 }
568
569 if (time_after(this_timer, now)) {
570 work_delay = min(work_delay, this_timer - now);
571 } else {
572 spin_lock_bh(&br->hash_lock);
573 if (!hlist_unhashed(&f->fdb_node))
574 fdb_delete(br, f, true);
575 spin_unlock_bh(&br->hash_lock);
576 }
577 }
578 rcu_read_unlock();
579
580 /* Cleanup minimum 10 milliseconds apart */
581 work_delay = max_t(unsigned long, work_delay, msecs_to_jiffies(10));
582 mod_delayed_work(system_long_wq, &br->gc_work, work_delay);
583 }
584
br_fdb_delete_locals_per_vlan_port(struct net_bridge * br,struct net_bridge_port * p)585 static void br_fdb_delete_locals_per_vlan_port(struct net_bridge *br,
586 struct net_bridge_port *p)
587 {
588 struct net_bridge_vlan_group *vg;
589 struct net_bridge_vlan *v;
590 struct net_device *dev;
591
592 if (p) {
593 vg = nbp_vlan_group(p);
594 dev = p->dev;
595 } else {
596 vg = br_vlan_group(br);
597 dev = br->dev;
598 }
599
600 if (!vg)
601 return;
602
603 list_for_each_entry(v, &vg->vlan_list, vlist)
604 br_fdb_find_delete_local(br, p, dev->dev_addr, v->vid);
605 }
606
br_fdb_delete_locals_per_vlan(struct net_bridge * br)607 static void br_fdb_delete_locals_per_vlan(struct net_bridge *br)
608 {
609 struct net_bridge_port *p;
610
611 ASSERT_RTNL();
612
613 list_for_each_entry(p, &br->port_list, list)
614 br_fdb_delete_locals_per_vlan_port(br, p);
615
616 br_fdb_delete_locals_per_vlan_port(br, NULL);
617 }
618
br_fdb_insert_locals_per_vlan_port(struct net_bridge * br,struct net_bridge_port * p,struct netlink_ext_ack * extack)619 static int br_fdb_insert_locals_per_vlan_port(struct net_bridge *br,
620 struct net_bridge_port *p,
621 struct netlink_ext_ack *extack)
622 {
623 struct net_bridge_vlan_group *vg;
624 struct net_bridge_vlan *v;
625 struct net_device *dev;
626 int err;
627
628 if (p) {
629 vg = nbp_vlan_group(p);
630 dev = p->dev;
631 } else {
632 vg = br_vlan_group(br);
633 dev = br->dev;
634 }
635
636 if (!vg)
637 return 0;
638
639 list_for_each_entry(v, &vg->vlan_list, vlist) {
640 if (!br_vlan_should_use(v))
641 continue;
642
643 err = br_fdb_add_local(br, p, dev->dev_addr, v->vid);
644 if (err)
645 return err;
646 }
647
648 return 0;
649 }
650
br_fdb_insert_locals_per_vlan(struct net_bridge * br,struct netlink_ext_ack * extack)651 static int br_fdb_insert_locals_per_vlan(struct net_bridge *br,
652 struct netlink_ext_ack *extack)
653 {
654 struct net_bridge_port *p;
655 int err;
656
657 ASSERT_RTNL();
658
659 list_for_each_entry(p, &br->port_list, list) {
660 err = br_fdb_insert_locals_per_vlan_port(br, p, extack);
661 if (err)
662 goto rollback;
663 }
664
665 err = br_fdb_insert_locals_per_vlan_port(br, NULL, extack);
666 if (err)
667 goto rollback;
668
669 return 0;
670
671 rollback:
672 NL_SET_ERR_MSG_MOD(extack, "fdb_local_vlan_0 toggle: FDB entry insertion failed");
673 br_fdb_delete_locals_per_vlan(br);
674 return err;
675 }
676
br_fdb_toggle_local_vlan_0(struct net_bridge * br,bool on,struct netlink_ext_ack * extack)677 int br_fdb_toggle_local_vlan_0(struct net_bridge *br, bool on,
678 struct netlink_ext_ack *extack)
679 {
680 if (!on)
681 return br_fdb_insert_locals_per_vlan(br, extack);
682
683 br_fdb_delete_locals_per_vlan(br);
684 return 0;
685 }
686
__fdb_flush_matches(const struct net_bridge * br,const struct net_bridge_fdb_entry * f,const struct net_bridge_fdb_flush_desc * desc)687 static bool __fdb_flush_matches(const struct net_bridge *br,
688 const struct net_bridge_fdb_entry *f,
689 const struct net_bridge_fdb_flush_desc *desc)
690 {
691 const struct net_bridge_port *dst = READ_ONCE(f->dst);
692 int port_ifidx = dst ? dst->dev->ifindex : br->dev->ifindex;
693
694 if (desc->vlan_id && desc->vlan_id != f->key.vlan_id)
695 return false;
696 if (desc->port_ifindex && desc->port_ifindex != port_ifidx)
697 return false;
698 if (desc->flags_mask && (f->flags & desc->flags_mask) != desc->flags)
699 return false;
700
701 return true;
702 }
703
704 /* Flush forwarding database entries matching the description */
br_fdb_flush(struct net_bridge * br,const struct net_bridge_fdb_flush_desc * desc)705 void br_fdb_flush(struct net_bridge *br,
706 const struct net_bridge_fdb_flush_desc *desc)
707 {
708 struct net_bridge_fdb_entry *f;
709
710 rcu_read_lock();
711 hlist_for_each_entry_rcu(f, &br->fdb_list, fdb_node) {
712 if (!__fdb_flush_matches(br, f, desc))
713 continue;
714
715 spin_lock_bh(&br->hash_lock);
716 if (!hlist_unhashed(&f->fdb_node))
717 fdb_delete(br, f, true);
718 spin_unlock_bh(&br->hash_lock);
719 }
720 rcu_read_unlock();
721 }
722
__ndm_state_to_fdb_flags(u16 ndm_state)723 static unsigned long __ndm_state_to_fdb_flags(u16 ndm_state)
724 {
725 unsigned long flags = 0;
726
727 if (ndm_state & NUD_PERMANENT)
728 __set_bit(BR_FDB_LOCAL, &flags);
729 if (ndm_state & NUD_NOARP)
730 __set_bit(BR_FDB_STATIC, &flags);
731
732 return flags;
733 }
734
__ndm_flags_to_fdb_flags(u8 ndm_flags)735 static unsigned long __ndm_flags_to_fdb_flags(u8 ndm_flags)
736 {
737 unsigned long flags = 0;
738
739 if (ndm_flags & NTF_USE)
740 __set_bit(BR_FDB_ADDED_BY_USER, &flags);
741 if (ndm_flags & NTF_EXT_LEARNED)
742 __set_bit(BR_FDB_ADDED_BY_EXT_LEARN, &flags);
743 if (ndm_flags & NTF_OFFLOADED)
744 __set_bit(BR_FDB_OFFLOADED, &flags);
745 if (ndm_flags & NTF_STICKY)
746 __set_bit(BR_FDB_STICKY, &flags);
747
748 return flags;
749 }
750
__fdb_flush_validate_ifindex(const struct net_bridge * br,int ifindex,struct netlink_ext_ack * extack)751 static int __fdb_flush_validate_ifindex(const struct net_bridge *br,
752 int ifindex,
753 struct netlink_ext_ack *extack)
754 {
755 const struct net_device *dev;
756
757 dev = __dev_get_by_index(dev_net(br->dev), ifindex);
758 if (!dev) {
759 NL_SET_ERR_MSG_MOD(extack, "Unknown flush device ifindex");
760 return -ENODEV;
761 }
762 if (!netif_is_bridge_master(dev) && !netif_is_bridge_port(dev)) {
763 NL_SET_ERR_MSG_MOD(extack, "Flush device is not a bridge or bridge port");
764 return -EINVAL;
765 }
766 if (netif_is_bridge_master(dev) && dev != br->dev) {
767 NL_SET_ERR_MSG_MOD(extack,
768 "Flush bridge device does not match target bridge device");
769 return -EINVAL;
770 }
771 if (netif_is_bridge_port(dev)) {
772 struct net_bridge_port *p = br_port_get_rtnl(dev);
773
774 if (p->br != br) {
775 NL_SET_ERR_MSG_MOD(extack, "Port belongs to a different bridge device");
776 return -EINVAL;
777 }
778 }
779
780 return 0;
781 }
782
783 static const struct nla_policy br_fdb_del_bulk_policy[NDA_MAX + 1] = {
784 [NDA_VLAN] = NLA_POLICY_RANGE(NLA_U16, 1, VLAN_N_VID - 2),
785 [NDA_IFINDEX] = NLA_POLICY_MIN(NLA_S32, 1),
786 [NDA_NDM_STATE_MASK] = { .type = NLA_U16 },
787 [NDA_NDM_FLAGS_MASK] = { .type = NLA_U8 },
788 };
789
br_fdb_delete_bulk(struct nlmsghdr * nlh,struct net_device * dev,struct netlink_ext_ack * extack)790 int br_fdb_delete_bulk(struct nlmsghdr *nlh, struct net_device *dev,
791 struct netlink_ext_ack *extack)
792 {
793 struct net_bridge_fdb_flush_desc desc = {};
794 struct ndmsg *ndm = nlmsg_data(nlh);
795 struct net_bridge_port *p = NULL;
796 struct nlattr *tb[NDA_MAX + 1];
797 struct net_bridge *br;
798 u8 ndm_flags;
799 int err;
800
801 ndm_flags = ndm->ndm_flags & ~FDB_FLUSH_IGNORED_NDM_FLAGS;
802
803 err = nlmsg_parse(nlh, sizeof(*ndm), tb, NDA_MAX,
804 br_fdb_del_bulk_policy, extack);
805 if (err)
806 return err;
807
808 if (netif_is_bridge_master(dev)) {
809 br = netdev_priv(dev);
810 } else {
811 p = br_port_get_rtnl(dev);
812 if (!p) {
813 NL_SET_ERR_MSG_MOD(extack, "Device is not a bridge port");
814 return -EINVAL;
815 }
816 br = p->br;
817 }
818
819 if (tb[NDA_VLAN])
820 desc.vlan_id = nla_get_u16(tb[NDA_VLAN]);
821
822 if (ndm_flags & ~FDB_FLUSH_ALLOWED_NDM_FLAGS) {
823 NL_SET_ERR_MSG(extack, "Unsupported fdb flush ndm flag bits set");
824 return -EINVAL;
825 }
826 if (ndm->ndm_state & ~FDB_FLUSH_ALLOWED_NDM_STATES) {
827 NL_SET_ERR_MSG(extack, "Unsupported fdb flush ndm state bits set");
828 return -EINVAL;
829 }
830
831 desc.flags |= __ndm_state_to_fdb_flags(ndm->ndm_state);
832 desc.flags |= __ndm_flags_to_fdb_flags(ndm_flags);
833 if (tb[NDA_NDM_STATE_MASK]) {
834 u16 ndm_state_mask = nla_get_u16(tb[NDA_NDM_STATE_MASK]);
835
836 desc.flags_mask |= __ndm_state_to_fdb_flags(ndm_state_mask);
837 }
838 if (tb[NDA_NDM_FLAGS_MASK]) {
839 u8 ndm_flags_mask = nla_get_u8(tb[NDA_NDM_FLAGS_MASK]);
840
841 desc.flags_mask |= __ndm_flags_to_fdb_flags(ndm_flags_mask);
842 }
843 if (tb[NDA_IFINDEX]) {
844 int ifidx = nla_get_s32(tb[NDA_IFINDEX]);
845
846 err = __fdb_flush_validate_ifindex(br, ifidx, extack);
847 if (err)
848 return err;
849 desc.port_ifindex = ifidx;
850 } else if (p) {
851 /* flush was invoked with port device and NTF_MASTER */
852 desc.port_ifindex = p->dev->ifindex;
853 }
854
855 br_debug(br, "flushing port ifindex: %d vlan id: %u flags: 0x%lx flags mask: 0x%lx\n",
856 desc.port_ifindex, desc.vlan_id, desc.flags, desc.flags_mask);
857
858 br_fdb_flush(br, &desc);
859
860 return 0;
861 }
862
863 /* Flush all entries referring to a specific port.
864 * if do_all is set also flush static entries
865 * if vid is set delete all entries that match the vlan_id
866 */
br_fdb_delete_by_port(struct net_bridge * br,const struct net_bridge_port * p,u16 vid,int do_all)867 void br_fdb_delete_by_port(struct net_bridge *br,
868 const struct net_bridge_port *p,
869 u16 vid,
870 int do_all)
871 {
872 struct net_bridge_fdb_entry *f;
873 struct hlist_node *tmp;
874
875 spin_lock_bh(&br->hash_lock);
876 hlist_for_each_entry_safe(f, tmp, &br->fdb_list, fdb_node) {
877 if (f->dst != p)
878 continue;
879
880 if (!do_all)
881 if (test_bit(BR_FDB_STATIC, &f->flags) ||
882 (test_bit(BR_FDB_ADDED_BY_EXT_LEARN, &f->flags) &&
883 !test_bit(BR_FDB_OFFLOADED, &f->flags)) ||
884 (vid && f->key.vlan_id != vid))
885 continue;
886
887 if (test_bit(BR_FDB_LOCAL, &f->flags))
888 fdb_delete_local(br, p, f);
889 else
890 fdb_delete(br, f, true);
891 }
892 spin_unlock_bh(&br->hash_lock);
893 }
894
895 #if IS_ENABLED(CONFIG_ATM_LANE)
896 /* Interface used by ATM LANE hook to test
897 * if an addr is on some other bridge port */
br_fdb_test_addr(struct net_device * dev,unsigned char * addr)898 int br_fdb_test_addr(struct net_device *dev, unsigned char *addr)
899 {
900 struct net_bridge_fdb_entry *fdb;
901 struct net_bridge_port *port;
902 int ret;
903
904 rcu_read_lock();
905 port = br_port_get_rcu(dev);
906 if (!port)
907 ret = 0;
908 else {
909 const struct net_bridge_port *dst = NULL;
910
911 fdb = br_fdb_find_rcu(port->br, addr, 0);
912 if (fdb)
913 dst = READ_ONCE(fdb->dst);
914
915 ret = dst && dst->dev != dev &&
916 dst->state == BR_STATE_FORWARDING;
917 }
918 rcu_read_unlock();
919
920 return ret;
921 }
922 #endif /* CONFIG_ATM_LANE */
923
924 /*
925 * Fill buffer with forwarding table records in
926 * the API format.
927 */
br_fdb_fillbuf(struct net_bridge * br,void * buf,unsigned long maxnum,unsigned long skip)928 int br_fdb_fillbuf(struct net_bridge *br, void *buf,
929 unsigned long maxnum, unsigned long skip)
930 {
931 struct net_bridge_fdb_entry *f;
932 struct __fdb_entry *fe = buf;
933 unsigned long delta;
934 int num = 0;
935
936 memset(buf, 0, maxnum*sizeof(struct __fdb_entry));
937
938 rcu_read_lock();
939 hlist_for_each_entry_rcu(f, &br->fdb_list, fdb_node) {
940 if (num >= maxnum)
941 break;
942
943 if (has_expired(br, f))
944 continue;
945
946 /* ignore pseudo entry for local MAC address */
947 if (!f->dst)
948 continue;
949
950 if (skip) {
951 --skip;
952 continue;
953 }
954
955 /* convert from internal format to API */
956 memcpy(fe->mac_addr, f->key.addr.addr, ETH_ALEN);
957
958 /* due to ABI compat need to split into hi/lo */
959 fe->port_no = f->dst->port_no;
960 fe->port_hi = f->dst->port_no >> 8;
961
962 fe->is_local = test_bit(BR_FDB_LOCAL, &f->flags);
963 if (!test_bit(BR_FDB_STATIC, &f->flags)) {
964 delta = jiffies - READ_ONCE(f->updated);
965 fe->ageing_timer_value =
966 jiffies_delta_to_clock_t(delta);
967 }
968 ++fe;
969 ++num;
970 }
971 rcu_read_unlock();
972
973 return num;
974 }
975
976 /* Add entry for local address of interface */
br_fdb_add_local(struct net_bridge * br,struct net_bridge_port * source,const unsigned char * addr,u16 vid)977 int br_fdb_add_local(struct net_bridge *br, struct net_bridge_port *source,
978 const unsigned char *addr, u16 vid)
979 {
980 int ret;
981
982 spin_lock_bh(&br->hash_lock);
983 ret = fdb_add_local(br, source, addr, vid);
984 spin_unlock_bh(&br->hash_lock);
985 return ret;
986 }
987
988 /* returns true if the fdb was modified */
__fdb_mark_active(struct net_bridge_fdb_entry * fdb)989 static bool __fdb_mark_active(struct net_bridge_fdb_entry *fdb)
990 {
991 return !!(test_bit(BR_FDB_NOTIFY_INACTIVE, &fdb->flags) &&
992 test_and_clear_bit(BR_FDB_NOTIFY_INACTIVE, &fdb->flags));
993 }
994
br_fdb_update(struct net_bridge * br,struct net_bridge_port * source,const unsigned char * addr,u16 vid,unsigned long flags)995 void br_fdb_update(struct net_bridge *br, struct net_bridge_port *source,
996 const unsigned char *addr, u16 vid, unsigned long flags)
997 {
998 struct net_bridge_fdb_entry *fdb;
999
1000 /* some users want to always flood. */
1001 if (hold_time(br) == 0)
1002 return;
1003
1004 fdb = fdb_find_rcu(&br->fdb_hash_tbl, addr, vid);
1005 if (likely(fdb)) {
1006 /* attempt to update an entry for a local interface */
1007 if (unlikely(test_bit(BR_FDB_LOCAL, &fdb->flags))) {
1008 if (net_ratelimit())
1009 br_warn(br, "received packet on %s with own address as source address (addr:%pM, vlan:%u)\n",
1010 source->dev->name, addr, vid);
1011 } else {
1012 unsigned long now = jiffies;
1013 bool fdb_modified = false;
1014
1015 if (now != READ_ONCE(fdb->updated)) {
1016 WRITE_ONCE(fdb->updated, now);
1017 fdb_modified = __fdb_mark_active(fdb);
1018 }
1019
1020 /* fastpath: update of existing entry */
1021 if (unlikely(source != READ_ONCE(fdb->dst) &&
1022 !test_bit(BR_FDB_STICKY, &fdb->flags))) {
1023 br_switchdev_fdb_notify(br, fdb, RTM_DELNEIGH);
1024 WRITE_ONCE(fdb->dst, source);
1025 fdb_modified = true;
1026 /* Take over HW learned entry */
1027 if (unlikely(test_bit(BR_FDB_ADDED_BY_EXT_LEARN,
1028 &fdb->flags)))
1029 clear_bit(BR_FDB_ADDED_BY_EXT_LEARN,
1030 &fdb->flags);
1031 /* Clear locked flag when roaming to an
1032 * unlocked port.
1033 */
1034 if (unlikely(test_bit(BR_FDB_LOCKED, &fdb->flags)))
1035 clear_bit(BR_FDB_LOCKED, &fdb->flags);
1036 }
1037
1038 if (unlikely(test_bit(BR_FDB_ADDED_BY_USER, &flags))) {
1039 set_bit(BR_FDB_ADDED_BY_USER, &fdb->flags);
1040 if (test_and_clear_bit(BR_FDB_DYNAMIC_LEARNED,
1041 &fdb->flags))
1042 atomic_dec(&br->fdb_n_learned);
1043 }
1044 if (unlikely(fdb_modified)) {
1045 trace_br_fdb_update(br, source, addr, vid, flags);
1046 fdb_notify(br, fdb, RTM_NEWNEIGH, true);
1047 }
1048 }
1049 } else {
1050 spin_lock(&br->hash_lock);
1051 fdb = fdb_create(br, source, addr, vid, flags);
1052 if (fdb) {
1053 trace_br_fdb_update(br, source, addr, vid, flags);
1054 fdb_notify(br, fdb, RTM_NEWNEIGH, true);
1055 }
1056 /* else we lose race and someone else inserts
1057 * it first, don't bother updating
1058 */
1059 spin_unlock(&br->hash_lock);
1060 }
1061 }
1062
1063 /* Dump information about entries, in response to GETNEIGH */
br_fdb_dump(struct sk_buff * skb,struct netlink_callback * cb,struct net_device * dev,struct net_device * filter_dev,int * idx)1064 int br_fdb_dump(struct sk_buff *skb,
1065 struct netlink_callback *cb,
1066 struct net_device *dev,
1067 struct net_device *filter_dev,
1068 int *idx)
1069 {
1070 struct ndo_fdb_dump_context *ctx = (void *)cb->ctx;
1071 struct net_bridge *br = netdev_priv(dev);
1072 struct net_bridge_fdb_entry *f;
1073 int err = 0;
1074
1075 if (!netif_is_bridge_master(dev))
1076 return err;
1077
1078 if (!filter_dev) {
1079 err = ndo_dflt_fdb_dump(skb, cb, dev, NULL, idx);
1080 if (err < 0)
1081 return err;
1082 }
1083
1084 rcu_read_lock();
1085 hlist_for_each_entry_rcu(f, &br->fdb_list, fdb_node) {
1086 if (*idx < ctx->fdb_idx)
1087 goto skip;
1088 if (filter_dev && (!f->dst || f->dst->dev != filter_dev)) {
1089 if (filter_dev != dev)
1090 goto skip;
1091 /* !f->dst is a special case for bridge
1092 * It means the MAC belongs to the bridge
1093 * Therefore need a little more filtering
1094 * we only want to dump the !f->dst case
1095 */
1096 if (f->dst)
1097 goto skip;
1098 }
1099 if (!filter_dev && f->dst)
1100 goto skip;
1101
1102 err = fdb_fill_info(skb, br, f,
1103 NETLINK_CB(cb->skb).portid,
1104 cb->nlh->nlmsg_seq,
1105 RTM_NEWNEIGH,
1106 NLM_F_MULTI);
1107 if (err < 0)
1108 break;
1109 skip:
1110 *idx += 1;
1111 }
1112 rcu_read_unlock();
1113
1114 return err;
1115 }
1116
br_fdb_get(struct sk_buff * skb,struct nlattr * tb[],struct net_device * dev,const unsigned char * addr,u16 vid,u32 portid,u32 seq,struct netlink_ext_ack * extack)1117 int br_fdb_get(struct sk_buff *skb,
1118 struct nlattr *tb[],
1119 struct net_device *dev,
1120 const unsigned char *addr,
1121 u16 vid, u32 portid, u32 seq,
1122 struct netlink_ext_ack *extack)
1123 {
1124 struct net_bridge *br = netdev_priv(dev);
1125 struct net_bridge_fdb_entry *f;
1126 int err = 0;
1127
1128 rcu_read_lock();
1129 f = br_fdb_find_rcu(br, addr, vid);
1130 if (!f) {
1131 NL_SET_ERR_MSG(extack, "Fdb entry not found");
1132 err = -ENOENT;
1133 goto errout;
1134 }
1135
1136 err = fdb_fill_info(skb, br, f, portid, seq,
1137 RTM_NEWNEIGH, 0);
1138 errout:
1139 rcu_read_unlock();
1140 return err;
1141 }
1142
1143 /* returns true if the fdb is modified */
fdb_handle_notify(struct net_bridge_fdb_entry * fdb,u8 notify)1144 static bool fdb_handle_notify(struct net_bridge_fdb_entry *fdb, u8 notify)
1145 {
1146 bool modified = false;
1147
1148 /* allow to mark an entry as inactive, usually done on creation */
1149 if ((notify & FDB_NOTIFY_INACTIVE_BIT) &&
1150 !test_and_set_bit(BR_FDB_NOTIFY_INACTIVE, &fdb->flags))
1151 modified = true;
1152
1153 if ((notify & FDB_NOTIFY_BIT) &&
1154 !test_and_set_bit(BR_FDB_NOTIFY, &fdb->flags)) {
1155 /* enabled activity tracking */
1156 modified = true;
1157 } else if (!(notify & FDB_NOTIFY_BIT) &&
1158 test_and_clear_bit(BR_FDB_NOTIFY, &fdb->flags)) {
1159 /* disabled activity tracking, clear notify state */
1160 clear_bit(BR_FDB_NOTIFY_INACTIVE, &fdb->flags);
1161 modified = true;
1162 }
1163
1164 return modified;
1165 }
1166
1167 /* Update (create or replace) forwarding database entry */
fdb_add_entry(struct net_bridge * br,struct net_bridge_port * source,const u8 * addr,struct ndmsg * ndm,u16 flags,u16 vid,struct nlattr * nfea_tb[])1168 static int fdb_add_entry(struct net_bridge *br, struct net_bridge_port *source,
1169 const u8 *addr, struct ndmsg *ndm, u16 flags, u16 vid,
1170 struct nlattr *nfea_tb[])
1171 {
1172 bool is_sticky = !!(ndm->ndm_flags & NTF_STICKY);
1173 bool refresh = !nfea_tb[NFEA_DONT_REFRESH];
1174 struct net_bridge_fdb_entry *fdb;
1175 u16 state = ndm->ndm_state;
1176 bool modified = false;
1177 u8 notify = 0;
1178
1179 /* If the port cannot learn allow only local and static entries */
1180 if (source && !(state & NUD_PERMANENT) && !(state & NUD_NOARP) &&
1181 !(source->state == BR_STATE_LEARNING ||
1182 source->state == BR_STATE_FORWARDING))
1183 return -EPERM;
1184
1185 if (!source && !(state & NUD_PERMANENT)) {
1186 pr_info("bridge: RTM_NEWNEIGH %s without NUD_PERMANENT\n",
1187 br->dev->name);
1188 return -EINVAL;
1189 }
1190
1191 if (is_sticky && (state & NUD_PERMANENT))
1192 return -EINVAL;
1193
1194 if (nfea_tb[NFEA_ACTIVITY_NOTIFY]) {
1195 notify = nla_get_u8(nfea_tb[NFEA_ACTIVITY_NOTIFY]);
1196 if ((notify & ~BR_FDB_NOTIFY_SETTABLE_BITS) ||
1197 (notify & BR_FDB_NOTIFY_SETTABLE_BITS) == FDB_NOTIFY_INACTIVE_BIT)
1198 return -EINVAL;
1199 }
1200
1201 fdb = br_fdb_find(br, addr, vid);
1202 if (fdb == NULL) {
1203 if (!(flags & NLM_F_CREATE))
1204 return -ENOENT;
1205
1206 fdb = fdb_create(br, source, addr, vid,
1207 BIT(BR_FDB_ADDED_BY_USER));
1208 if (!fdb)
1209 return -ENOMEM;
1210
1211 modified = true;
1212 } else {
1213 if (flags & NLM_F_EXCL)
1214 return -EEXIST;
1215
1216 if (READ_ONCE(fdb->dst) != source) {
1217 WRITE_ONCE(fdb->dst, source);
1218 modified = true;
1219 }
1220
1221 set_bit(BR_FDB_ADDED_BY_USER, &fdb->flags);
1222 if (test_and_clear_bit(BR_FDB_DYNAMIC_LEARNED, &fdb->flags))
1223 atomic_dec(&br->fdb_n_learned);
1224 }
1225
1226 if (fdb_to_nud(br, fdb) != state) {
1227 if (state & NUD_PERMANENT) {
1228 set_bit(BR_FDB_LOCAL, &fdb->flags);
1229 if (!test_and_set_bit(BR_FDB_STATIC, &fdb->flags))
1230 fdb_add_hw_addr(br, addr);
1231 } else if (state & NUD_NOARP) {
1232 clear_bit(BR_FDB_LOCAL, &fdb->flags);
1233 if (!test_and_set_bit(BR_FDB_STATIC, &fdb->flags))
1234 fdb_add_hw_addr(br, addr);
1235 } else {
1236 clear_bit(BR_FDB_LOCAL, &fdb->flags);
1237 if (test_and_clear_bit(BR_FDB_STATIC, &fdb->flags))
1238 fdb_del_hw_addr(br, addr);
1239 }
1240
1241 modified = true;
1242 }
1243
1244 if (is_sticky != test_bit(BR_FDB_STICKY, &fdb->flags)) {
1245 change_bit(BR_FDB_STICKY, &fdb->flags);
1246 modified = true;
1247 }
1248
1249 if (test_and_clear_bit(BR_FDB_LOCKED, &fdb->flags))
1250 modified = true;
1251
1252 if (fdb_handle_notify(fdb, notify))
1253 modified = true;
1254
1255 WRITE_ONCE(fdb->used, jiffies);
1256 if (modified) {
1257 if (refresh)
1258 WRITE_ONCE(fdb->updated, jiffies);
1259 fdb_notify(br, fdb, RTM_NEWNEIGH, true);
1260 }
1261
1262 return 0;
1263 }
1264
__br_fdb_add(struct ndmsg * ndm,struct net_bridge * br,struct net_bridge_port * p,const unsigned char * addr,u16 nlh_flags,u16 vid,struct nlattr * nfea_tb[],bool * notified,struct netlink_ext_ack * extack)1265 static int __br_fdb_add(struct ndmsg *ndm, struct net_bridge *br,
1266 struct net_bridge_port *p, const unsigned char *addr,
1267 u16 nlh_flags, u16 vid, struct nlattr *nfea_tb[],
1268 bool *notified, struct netlink_ext_ack *extack)
1269 {
1270 int err = 0;
1271
1272 if (ndm->ndm_flags & NTF_USE) {
1273 if (!p) {
1274 pr_info("bridge: RTM_NEWNEIGH %s with NTF_USE is not supported\n",
1275 br->dev->name);
1276 return -EINVAL;
1277 }
1278 if (!nbp_state_should_learn(p))
1279 return 0;
1280
1281 local_bh_disable();
1282 rcu_read_lock();
1283 br_fdb_update(br, p, addr, vid, BIT(BR_FDB_ADDED_BY_USER));
1284 rcu_read_unlock();
1285 local_bh_enable();
1286 } else if (ndm->ndm_flags & NTF_EXT_LEARNED) {
1287 if (!p && !(ndm->ndm_state & NUD_PERMANENT)) {
1288 NL_SET_ERR_MSG_MOD(extack,
1289 "FDB entry towards bridge must be permanent");
1290 return -EINVAL;
1291 }
1292 err = br_fdb_external_learn_add(br, p, addr, vid, false, true);
1293 } else {
1294 spin_lock_bh(&br->hash_lock);
1295 err = fdb_add_entry(br, p, addr, ndm, nlh_flags, vid, nfea_tb);
1296 spin_unlock_bh(&br->hash_lock);
1297 }
1298
1299 if (!err)
1300 *notified = true;
1301 return err;
1302 }
1303
1304 static const struct nla_policy br_nda_fdb_pol[NFEA_MAX + 1] = {
1305 [NFEA_ACTIVITY_NOTIFY] = { .type = NLA_U8 },
1306 [NFEA_DONT_REFRESH] = { .type = NLA_FLAG },
1307 };
1308
1309 /* Add new permanent fdb entry with RTM_NEWNEIGH */
br_fdb_add(struct ndmsg * ndm,struct nlattr * tb[],struct net_device * dev,const unsigned char * addr,u16 vid,u16 nlh_flags,bool * notified,struct netlink_ext_ack * extack)1310 int br_fdb_add(struct ndmsg *ndm, struct nlattr *tb[],
1311 struct net_device *dev,
1312 const unsigned char *addr, u16 vid, u16 nlh_flags,
1313 bool *notified, struct netlink_ext_ack *extack)
1314 {
1315 struct nlattr *nfea_tb[NFEA_MAX + 1], *attr;
1316 struct net_bridge_vlan_group *vg;
1317 struct net_bridge_port *p = NULL;
1318 struct net_bridge_vlan *v;
1319 struct net_bridge *br = NULL;
1320 u32 ext_flags = 0;
1321 int err = 0;
1322
1323 trace_br_fdb_add(ndm, dev, addr, vid, nlh_flags);
1324
1325 if (!(ndm->ndm_state & (NUD_PERMANENT|NUD_NOARP|NUD_REACHABLE))) {
1326 pr_info("bridge: RTM_NEWNEIGH with invalid state %#x\n", ndm->ndm_state);
1327 return -EINVAL;
1328 }
1329
1330 if (is_zero_ether_addr(addr)) {
1331 pr_info("bridge: RTM_NEWNEIGH with invalid ether address\n");
1332 return -EINVAL;
1333 }
1334
1335 if (netif_is_bridge_master(dev)) {
1336 br = netdev_priv(dev);
1337 vg = br_vlan_group(br);
1338 } else {
1339 p = br_port_get_rtnl(dev);
1340 if (!p) {
1341 pr_info("bridge: RTM_NEWNEIGH %s not a bridge port\n",
1342 dev->name);
1343 return -EINVAL;
1344 }
1345 br = p->br;
1346 vg = nbp_vlan_group(p);
1347 }
1348
1349 if (tb[NDA_FLAGS_EXT])
1350 ext_flags = nla_get_u32(tb[NDA_FLAGS_EXT]);
1351
1352 if (ext_flags & NTF_EXT_LOCKED) {
1353 NL_SET_ERR_MSG_MOD(extack, "Cannot add FDB entry with \"locked\" flag set");
1354 return -EINVAL;
1355 }
1356
1357 if (tb[NDA_FDB_EXT_ATTRS]) {
1358 attr = tb[NDA_FDB_EXT_ATTRS];
1359 err = nla_parse_nested(nfea_tb, NFEA_MAX, attr,
1360 br_nda_fdb_pol, extack);
1361 if (err)
1362 return err;
1363 } else {
1364 memset(nfea_tb, 0, sizeof(struct nlattr *) * (NFEA_MAX + 1));
1365 }
1366
1367 if (vid) {
1368 v = br_vlan_find(vg, vid);
1369 if (!v || !br_vlan_should_use(v)) {
1370 pr_info("bridge: RTM_NEWNEIGH with unconfigured vlan %d on %s\n", vid, dev->name);
1371 return -EINVAL;
1372 }
1373
1374 /* VID was specified, so use it. */
1375 err = __br_fdb_add(ndm, br, p, addr, nlh_flags, vid, nfea_tb,
1376 notified, extack);
1377 } else {
1378 err = __br_fdb_add(ndm, br, p, addr, nlh_flags, 0, nfea_tb,
1379 notified, extack);
1380 if (err || !vg || !vg->num_vlans)
1381 goto out;
1382
1383 /* We have vlans configured on this port and user didn't
1384 * specify a VLAN. To be nice, add/update entry for every
1385 * vlan on this port.
1386 */
1387 list_for_each_entry(v, &vg->vlan_list, vlist) {
1388 if (!br_vlan_should_use(v))
1389 continue;
1390 err = __br_fdb_add(ndm, br, p, addr, nlh_flags, v->vid,
1391 nfea_tb, notified, extack);
1392 if (err)
1393 goto out;
1394 }
1395 }
1396
1397 out:
1398 return err;
1399 }
1400
fdb_delete_by_addr_and_port(struct net_bridge * br,const struct net_bridge_port * p,const u8 * addr,u16 vlan,bool * notified)1401 static int fdb_delete_by_addr_and_port(struct net_bridge *br,
1402 const struct net_bridge_port *p,
1403 const u8 *addr, u16 vlan, bool *notified)
1404 {
1405 struct net_bridge_fdb_entry *fdb;
1406
1407 fdb = br_fdb_find(br, addr, vlan);
1408 if (!fdb || READ_ONCE(fdb->dst) != p)
1409 return -ENOENT;
1410
1411 fdb_delete(br, fdb, true);
1412 *notified = true;
1413
1414 return 0;
1415 }
1416
__br_fdb_delete(struct net_bridge * br,const struct net_bridge_port * p,const unsigned char * addr,u16 vid,bool * notified)1417 static int __br_fdb_delete(struct net_bridge *br,
1418 const struct net_bridge_port *p,
1419 const unsigned char *addr, u16 vid, bool *notified)
1420 {
1421 int err;
1422
1423 spin_lock_bh(&br->hash_lock);
1424 err = fdb_delete_by_addr_and_port(br, p, addr, vid, notified);
1425 spin_unlock_bh(&br->hash_lock);
1426
1427 return err;
1428 }
1429
1430 /* Remove neighbor entry with RTM_DELNEIGH */
br_fdb_delete(struct ndmsg * ndm,struct nlattr * tb[],struct net_device * dev,const unsigned char * addr,u16 vid,bool * notified,struct netlink_ext_ack * extack)1431 int br_fdb_delete(struct ndmsg *ndm, struct nlattr *tb[],
1432 struct net_device *dev,
1433 const unsigned char *addr, u16 vid, bool *notified,
1434 struct netlink_ext_ack *extack)
1435 {
1436 struct net_bridge_vlan_group *vg;
1437 struct net_bridge_port *p = NULL;
1438 struct net_bridge *br;
1439 int err;
1440
1441 if (netif_is_bridge_master(dev)) {
1442 br = netdev_priv(dev);
1443 vg = br_vlan_group(br);
1444 } else {
1445 p = br_port_get_rtnl(dev);
1446 if (!p) {
1447 pr_info("bridge: RTM_DELNEIGH %s not a bridge port\n",
1448 dev->name);
1449 return -EINVAL;
1450 }
1451 vg = nbp_vlan_group(p);
1452 br = p->br;
1453 }
1454
1455 if (vid) {
1456 err = __br_fdb_delete(br, p, addr, vid, notified);
1457 } else {
1458 struct net_bridge_vlan *v;
1459
1460 err = -ENOENT;
1461 err &= __br_fdb_delete(br, p, addr, 0, notified);
1462 if (!vg || !vg->num_vlans)
1463 return err;
1464
1465 list_for_each_entry(v, &vg->vlan_list, vlist) {
1466 if (!br_vlan_should_use(v))
1467 continue;
1468 err &= __br_fdb_delete(br, p, addr, v->vid, notified);
1469 }
1470 }
1471
1472 return err;
1473 }
1474
br_fdb_sync_static(struct net_bridge * br,struct net_bridge_port * p)1475 int br_fdb_sync_static(struct net_bridge *br, struct net_bridge_port *p)
1476 {
1477 struct net_bridge_fdb_entry *f, *tmp;
1478 int err = 0;
1479
1480 ASSERT_RTNL();
1481
1482 /* the key here is that static entries change only under rtnl */
1483 rcu_read_lock();
1484 hlist_for_each_entry_rcu(f, &br->fdb_list, fdb_node) {
1485 /* We only care for static entries */
1486 if (!test_bit(BR_FDB_STATIC, &f->flags))
1487 continue;
1488 err = dev_uc_add(p->dev, f->key.addr.addr);
1489 if (err)
1490 goto rollback;
1491 }
1492 done:
1493 rcu_read_unlock();
1494
1495 return err;
1496
1497 rollback:
1498 hlist_for_each_entry_rcu(tmp, &br->fdb_list, fdb_node) {
1499 /* We only care for static entries */
1500 if (!test_bit(BR_FDB_STATIC, &tmp->flags))
1501 continue;
1502 if (tmp == f)
1503 break;
1504 dev_uc_del(p->dev, tmp->key.addr.addr);
1505 }
1506
1507 goto done;
1508 }
1509
br_fdb_unsync_static(struct net_bridge * br,struct net_bridge_port * p)1510 void br_fdb_unsync_static(struct net_bridge *br, struct net_bridge_port *p)
1511 {
1512 struct net_bridge_fdb_entry *f;
1513
1514 ASSERT_RTNL();
1515
1516 rcu_read_lock();
1517 hlist_for_each_entry_rcu(f, &br->fdb_list, fdb_node) {
1518 /* We only care for static entries */
1519 if (!test_bit(BR_FDB_STATIC, &f->flags))
1520 continue;
1521
1522 dev_uc_del(p->dev, f->key.addr.addr);
1523 }
1524 rcu_read_unlock();
1525 }
1526
br_fdb_external_learn_add(struct net_bridge * br,struct net_bridge_port * p,const unsigned char * addr,u16 vid,bool locked,bool swdev_notify)1527 int br_fdb_external_learn_add(struct net_bridge *br, struct net_bridge_port *p,
1528 const unsigned char *addr, u16 vid, bool locked,
1529 bool swdev_notify)
1530 {
1531 struct net_bridge_fdb_entry *fdb;
1532 bool modified = false;
1533 int err = 0;
1534
1535 trace_br_fdb_external_learn_add(br, p, addr, vid);
1536
1537 if (locked && (!p || !(p->flags & BR_PORT_MAB)))
1538 return -EINVAL;
1539
1540 spin_lock_bh(&br->hash_lock);
1541
1542 fdb = br_fdb_find(br, addr, vid);
1543 if (!fdb) {
1544 unsigned long flags = BIT(BR_FDB_ADDED_BY_EXT_LEARN);
1545
1546 if (swdev_notify)
1547 flags |= BIT(BR_FDB_ADDED_BY_USER);
1548
1549 if (!p)
1550 flags |= BIT(BR_FDB_LOCAL);
1551
1552 if (locked)
1553 flags |= BIT(BR_FDB_LOCKED);
1554
1555 fdb = fdb_create(br, p, addr, vid, flags);
1556 if (!fdb) {
1557 err = -ENOMEM;
1558 goto err_unlock;
1559 }
1560 fdb_notify(br, fdb, RTM_NEWNEIGH, swdev_notify);
1561 } else {
1562 if (locked &&
1563 (!test_bit(BR_FDB_LOCKED, &fdb->flags) ||
1564 READ_ONCE(fdb->dst) != p)) {
1565 err = -EINVAL;
1566 goto err_unlock;
1567 }
1568
1569 WRITE_ONCE(fdb->updated, jiffies);
1570
1571 if (READ_ONCE(fdb->dst) != p) {
1572 WRITE_ONCE(fdb->dst, p);
1573 modified = true;
1574 }
1575
1576 if (test_and_set_bit(BR_FDB_ADDED_BY_EXT_LEARN, &fdb->flags)) {
1577 /* Refresh entry */
1578 WRITE_ONCE(fdb->used, jiffies);
1579 } else {
1580 modified = true;
1581 }
1582
1583 if (locked != test_bit(BR_FDB_LOCKED, &fdb->flags)) {
1584 change_bit(BR_FDB_LOCKED, &fdb->flags);
1585 modified = true;
1586 }
1587
1588 if (swdev_notify)
1589 set_bit(BR_FDB_ADDED_BY_USER, &fdb->flags);
1590
1591 if (!p)
1592 set_bit(BR_FDB_LOCAL, &fdb->flags);
1593
1594 if ((swdev_notify || !p) &&
1595 test_and_clear_bit(BR_FDB_DYNAMIC_LEARNED, &fdb->flags))
1596 atomic_dec(&br->fdb_n_learned);
1597
1598 if (modified)
1599 fdb_notify(br, fdb, RTM_NEWNEIGH, swdev_notify);
1600 }
1601
1602 err_unlock:
1603 spin_unlock_bh(&br->hash_lock);
1604
1605 return err;
1606 }
1607
br_fdb_external_learn_del(struct net_bridge * br,struct net_bridge_port * p,const unsigned char * addr,u16 vid,bool swdev_notify)1608 int br_fdb_external_learn_del(struct net_bridge *br, struct net_bridge_port *p,
1609 const unsigned char *addr, u16 vid,
1610 bool swdev_notify)
1611 {
1612 struct net_bridge_fdb_entry *fdb;
1613 int err = 0;
1614
1615 spin_lock_bh(&br->hash_lock);
1616
1617 fdb = br_fdb_find(br, addr, vid);
1618 if (fdb && test_bit(BR_FDB_ADDED_BY_EXT_LEARN, &fdb->flags))
1619 fdb_delete(br, fdb, swdev_notify);
1620 else
1621 err = -ENOENT;
1622
1623 spin_unlock_bh(&br->hash_lock);
1624
1625 return err;
1626 }
1627
br_fdb_offloaded_set(struct net_bridge * br,struct net_bridge_port * p,const unsigned char * addr,u16 vid,bool offloaded)1628 void br_fdb_offloaded_set(struct net_bridge *br, struct net_bridge_port *p,
1629 const unsigned char *addr, u16 vid, bool offloaded)
1630 {
1631 struct net_bridge_fdb_entry *fdb;
1632
1633 spin_lock_bh(&br->hash_lock);
1634
1635 fdb = br_fdb_find(br, addr, vid);
1636 if (fdb && offloaded != test_bit(BR_FDB_OFFLOADED, &fdb->flags))
1637 change_bit(BR_FDB_OFFLOADED, &fdb->flags);
1638
1639 spin_unlock_bh(&br->hash_lock);
1640 }
1641
br_fdb_clear_offload(const struct net_device * dev,u16 vid)1642 void br_fdb_clear_offload(const struct net_device *dev, u16 vid)
1643 {
1644 struct net_bridge_fdb_entry *f;
1645 struct net_bridge_port *p;
1646
1647 ASSERT_RTNL();
1648
1649 p = br_port_get_rtnl(dev);
1650 if (!p)
1651 return;
1652
1653 spin_lock_bh(&p->br->hash_lock);
1654 hlist_for_each_entry(f, &p->br->fdb_list, fdb_node) {
1655 if (f->dst == p && f->key.vlan_id == vid)
1656 clear_bit(BR_FDB_OFFLOADED, &f->flags);
1657 }
1658 spin_unlock_bh(&p->br->hash_lock);
1659 }
1660 EXPORT_SYMBOL_GPL(br_fdb_clear_offload);
1661