1 #include <linux/kernel.h>
2 #include <linux/netdevice.h>
3 #include <linux/rtnetlink.h>
4 #include <linux/slab.h>
5 #include <net/switchdev.h>
6
7 #include "br_private.h"
8 #include "br_private_tunnel.h"
9
br_vlan_cmp(struct rhashtable_compare_arg * arg,const void * ptr)10 static inline int br_vlan_cmp(struct rhashtable_compare_arg *arg,
11 const void *ptr)
12 {
13 const struct net_bridge_vlan *vle = ptr;
14 u16 vid = *(u16 *)arg->key;
15
16 return vle->vid != vid;
17 }
18
19 static const struct rhashtable_params br_vlan_rht_params = {
20 .head_offset = offsetof(struct net_bridge_vlan, vnode),
21 .key_offset = offsetof(struct net_bridge_vlan, vid),
22 .key_len = sizeof(u16),
23 .nelem_hint = 3,
24 .locks_mul = 1,
25 .max_size = VLAN_N_VID,
26 .obj_cmpfn = br_vlan_cmp,
27 .automatic_shrinking = true,
28 };
29
br_vlan_lookup(struct rhashtable * tbl,u16 vid)30 static struct net_bridge_vlan *br_vlan_lookup(struct rhashtable *tbl, u16 vid)
31 {
32 return rhashtable_lookup_fast(tbl, &vid, br_vlan_rht_params);
33 }
34
__vlan_add_pvid(struct net_bridge_vlan_group * vg,u16 vid)35 static bool __vlan_add_pvid(struct net_bridge_vlan_group *vg, u16 vid)
36 {
37 if (vg->pvid == vid)
38 return false;
39
40 smp_wmb();
41 vg->pvid = vid;
42
43 return true;
44 }
45
__vlan_delete_pvid(struct net_bridge_vlan_group * vg,u16 vid)46 static bool __vlan_delete_pvid(struct net_bridge_vlan_group *vg, u16 vid)
47 {
48 if (vg->pvid != vid)
49 return false;
50
51 smp_wmb();
52 vg->pvid = 0;
53
54 return true;
55 }
56
57 /* return true if anything changed, false otherwise */
__vlan_add_flags(struct net_bridge_vlan * v,u16 flags)58 static bool __vlan_add_flags(struct net_bridge_vlan *v, u16 flags)
59 {
60 struct net_bridge_vlan_group *vg;
61 u16 old_flags = v->flags;
62 bool ret;
63
64 if (br_vlan_is_master(v))
65 vg = br_vlan_group(v->br);
66 else
67 vg = nbp_vlan_group(v->port);
68
69 if (flags & BRIDGE_VLAN_INFO_PVID)
70 ret = __vlan_add_pvid(vg, v->vid);
71 else
72 ret = __vlan_delete_pvid(vg, v->vid);
73
74 if (flags & BRIDGE_VLAN_INFO_UNTAGGED)
75 v->flags |= BRIDGE_VLAN_INFO_UNTAGGED;
76 else
77 v->flags &= ~BRIDGE_VLAN_INFO_UNTAGGED;
78
79 return ret || !!(old_flags ^ v->flags);
80 }
81
__vlan_vid_add(struct net_device * dev,struct net_bridge * br,u16 vid,u16 flags)82 static int __vlan_vid_add(struct net_device *dev, struct net_bridge *br,
83 u16 vid, u16 flags)
84 {
85 int err;
86
87 /* Try switchdev op first. In case it is not supported, fallback to
88 * 8021q add.
89 */
90 err = br_switchdev_port_vlan_add(dev, vid, flags);
91 if (err == -EOPNOTSUPP)
92 return vlan_vid_add(dev, br->vlan_proto, vid);
93 return err;
94 }
95
__vlan_add_list(struct net_bridge_vlan * v)96 static void __vlan_add_list(struct net_bridge_vlan *v)
97 {
98 struct net_bridge_vlan_group *vg;
99 struct list_head *headp, *hpos;
100 struct net_bridge_vlan *vent;
101
102 if (br_vlan_is_master(v))
103 vg = br_vlan_group(v->br);
104 else
105 vg = nbp_vlan_group(v->port);
106
107 headp = &vg->vlan_list;
108 list_for_each_prev(hpos, headp) {
109 vent = list_entry(hpos, struct net_bridge_vlan, vlist);
110 if (v->vid < vent->vid)
111 continue;
112 else
113 break;
114 }
115 list_add_rcu(&v->vlist, hpos);
116 }
117
__vlan_del_list(struct net_bridge_vlan * v)118 static void __vlan_del_list(struct net_bridge_vlan *v)
119 {
120 list_del_rcu(&v->vlist);
121 }
122
__vlan_vid_del(struct net_device * dev,struct net_bridge * br,u16 vid)123 static int __vlan_vid_del(struct net_device *dev, struct net_bridge *br,
124 u16 vid)
125 {
126 int err;
127
128 /* Try switchdev op first. In case it is not supported, fallback to
129 * 8021q del.
130 */
131 err = br_switchdev_port_vlan_del(dev, vid);
132 if (err == -EOPNOTSUPP) {
133 vlan_vid_del(dev, br->vlan_proto, vid);
134 return 0;
135 }
136 return err;
137 }
138
139 /* Returns a master vlan, if it didn't exist it gets created. In all cases a
140 * a reference is taken to the master vlan before returning.
141 */
br_vlan_get_master(struct net_bridge * br,u16 vid)142 static struct net_bridge_vlan *br_vlan_get_master(struct net_bridge *br, u16 vid)
143 {
144 struct net_bridge_vlan_group *vg;
145 struct net_bridge_vlan *masterv;
146
147 vg = br_vlan_group(br);
148 masterv = br_vlan_find(vg, vid);
149 if (!masterv) {
150 bool changed;
151
152 /* missing global ctx, create it now */
153 if (br_vlan_add(br, vid, 0, &changed))
154 return NULL;
155 masterv = br_vlan_find(vg, vid);
156 if (WARN_ON(!masterv))
157 return NULL;
158 refcount_set(&masterv->refcnt, 1);
159 return masterv;
160 }
161 refcount_inc(&masterv->refcnt);
162
163 return masterv;
164 }
165
br_master_vlan_rcu_free(struct rcu_head * rcu)166 static void br_master_vlan_rcu_free(struct rcu_head *rcu)
167 {
168 struct net_bridge_vlan *v;
169
170 v = container_of(rcu, struct net_bridge_vlan, rcu);
171 WARN_ON(!br_vlan_is_master(v));
172 free_percpu(v->stats);
173 v->stats = NULL;
174 kfree(v);
175 }
176
br_vlan_put_master(struct net_bridge_vlan * masterv)177 static void br_vlan_put_master(struct net_bridge_vlan *masterv)
178 {
179 struct net_bridge_vlan_group *vg;
180
181 if (!br_vlan_is_master(masterv))
182 return;
183
184 vg = br_vlan_group(masterv->br);
185 if (refcount_dec_and_test(&masterv->refcnt)) {
186 rhashtable_remove_fast(&vg->vlan_hash,
187 &masterv->vnode, br_vlan_rht_params);
188 __vlan_del_list(masterv);
189 call_rcu(&masterv->rcu, br_master_vlan_rcu_free);
190 }
191 }
192
193 /* This is the shared VLAN add function which works for both ports and bridge
194 * devices. There are four possible calls to this function in terms of the
195 * vlan entry type:
196 * 1. vlan is being added on a port (no master flags, global entry exists)
197 * 2. vlan is being added on a bridge (both master and brentry flags)
198 * 3. vlan is being added on a port, but a global entry didn't exist which
199 * is being created right now (master flag set, brentry flag unset), the
200 * global entry is used for global per-vlan features, but not for filtering
201 * 4. same as 3 but with both master and brentry flags set so the entry
202 * will be used for filtering in both the port and the bridge
203 */
__vlan_add(struct net_bridge_vlan * v,u16 flags)204 static int __vlan_add(struct net_bridge_vlan *v, u16 flags)
205 {
206 struct net_bridge_vlan *masterv = NULL;
207 struct net_bridge_port *p = NULL;
208 struct net_bridge_vlan_group *vg;
209 struct net_device *dev;
210 struct net_bridge *br;
211 int err;
212
213 if (br_vlan_is_master(v)) {
214 br = v->br;
215 dev = br->dev;
216 vg = br_vlan_group(br);
217 } else {
218 p = v->port;
219 br = p->br;
220 dev = p->dev;
221 vg = nbp_vlan_group(p);
222 }
223
224 if (p) {
225 /* Add VLAN to the device filter if it is supported.
226 * This ensures tagged traffic enters the bridge when
227 * promiscuous mode is disabled by br_manage_promisc().
228 */
229 err = __vlan_vid_add(dev, br, v->vid, flags);
230 if (err)
231 goto out;
232
233 /* need to work on the master vlan too */
234 if (flags & BRIDGE_VLAN_INFO_MASTER) {
235 bool changed;
236
237 err = br_vlan_add(br, v->vid,
238 flags | BRIDGE_VLAN_INFO_BRENTRY,
239 &changed);
240 if (err)
241 goto out_filt;
242 }
243
244 masterv = br_vlan_get_master(br, v->vid);
245 if (!masterv)
246 goto out_filt;
247 v->brvlan = masterv;
248 v->stats = masterv->stats;
249 } else {
250 err = br_switchdev_port_vlan_add(dev, v->vid, flags);
251 if (err && err != -EOPNOTSUPP)
252 goto out;
253 }
254
255 /* Add the dev mac and count the vlan only if it's usable */
256 if (br_vlan_should_use(v)) {
257 err = br_fdb_insert(br, p, dev->dev_addr, v->vid);
258 if (err) {
259 br_err(br, "failed insert local address into bridge forwarding table\n");
260 goto out_filt;
261 }
262 vg->num_vlans++;
263 }
264
265 err = rhashtable_lookup_insert_fast(&vg->vlan_hash, &v->vnode,
266 br_vlan_rht_params);
267 if (err)
268 goto out_fdb_insert;
269
270 __vlan_add_list(v);
271 __vlan_add_flags(v, flags);
272 out:
273 return err;
274
275 out_fdb_insert:
276 if (br_vlan_should_use(v)) {
277 br_fdb_find_delete_local(br, p, dev->dev_addr, v->vid);
278 vg->num_vlans--;
279 }
280
281 out_filt:
282 if (p) {
283 __vlan_vid_del(dev, br, v->vid);
284 if (masterv) {
285 br_vlan_put_master(masterv);
286 v->brvlan = NULL;
287 }
288 } else {
289 br_switchdev_port_vlan_del(dev, v->vid);
290 }
291
292 goto out;
293 }
294
__vlan_del(struct net_bridge_vlan * v)295 static int __vlan_del(struct net_bridge_vlan *v)
296 {
297 struct net_bridge_vlan *masterv = v;
298 struct net_bridge_vlan_group *vg;
299 struct net_bridge_port *p = NULL;
300 int err = 0;
301
302 if (br_vlan_is_master(v)) {
303 vg = br_vlan_group(v->br);
304 } else {
305 p = v->port;
306 vg = nbp_vlan_group(v->port);
307 masterv = v->brvlan;
308 }
309
310 __vlan_delete_pvid(vg, v->vid);
311 if (p) {
312 err = __vlan_vid_del(p->dev, p->br, v->vid);
313 if (err)
314 goto out;
315 } else {
316 err = br_switchdev_port_vlan_del(v->br->dev, v->vid);
317 if (err && err != -EOPNOTSUPP)
318 goto out;
319 err = 0;
320 }
321
322 if (br_vlan_should_use(v)) {
323 v->flags &= ~BRIDGE_VLAN_INFO_BRENTRY;
324 vg->num_vlans--;
325 }
326
327 if (masterv != v) {
328 vlan_tunnel_info_del(vg, v);
329 rhashtable_remove_fast(&vg->vlan_hash, &v->vnode,
330 br_vlan_rht_params);
331 __vlan_del_list(v);
332 kfree_rcu(v, rcu);
333 }
334
335 br_vlan_put_master(masterv);
336 out:
337 return err;
338 }
339
__vlan_group_free(struct net_bridge_vlan_group * vg)340 static void __vlan_group_free(struct net_bridge_vlan_group *vg)
341 {
342 WARN_ON(!list_empty(&vg->vlan_list));
343 rhashtable_destroy(&vg->vlan_hash);
344 vlan_tunnel_deinit(vg);
345 kfree(vg);
346 }
347
__vlan_flush(struct net_bridge_vlan_group * vg)348 static void __vlan_flush(struct net_bridge_vlan_group *vg)
349 {
350 struct net_bridge_vlan *vlan, *tmp;
351
352 __vlan_delete_pvid(vg, vg->pvid);
353 list_for_each_entry_safe(vlan, tmp, &vg->vlan_list, vlist)
354 __vlan_del(vlan);
355 }
356
br_handle_vlan(struct net_bridge * br,const struct net_bridge_port * p,struct net_bridge_vlan_group * vg,struct sk_buff * skb)357 struct sk_buff *br_handle_vlan(struct net_bridge *br,
358 const struct net_bridge_port *p,
359 struct net_bridge_vlan_group *vg,
360 struct sk_buff *skb)
361 {
362 struct br_vlan_stats *stats;
363 struct net_bridge_vlan *v;
364 u16 vid;
365
366 /* If this packet was not filtered at input, let it pass */
367 if (!BR_INPUT_SKB_CB(skb)->vlan_filtered)
368 goto out;
369
370 /* At this point, we know that the frame was filtered and contains
371 * a valid vlan id. If the vlan id has untagged flag set,
372 * send untagged; otherwise, send tagged.
373 */
374 br_vlan_get_tag(skb, &vid);
375 v = br_vlan_find(vg, vid);
376 /* Vlan entry must be configured at this point. The
377 * only exception is the bridge is set in promisc mode and the
378 * packet is destined for the bridge device. In this case
379 * pass the packet as is.
380 */
381 if (!v || !br_vlan_should_use(v)) {
382 if ((br->dev->flags & IFF_PROMISC) && skb->dev == br->dev) {
383 goto out;
384 } else {
385 kfree_skb(skb);
386 return NULL;
387 }
388 }
389 if (br->vlan_stats_enabled) {
390 stats = this_cpu_ptr(v->stats);
391 u64_stats_update_begin(&stats->syncp);
392 stats->tx_bytes += skb->len;
393 stats->tx_packets++;
394 u64_stats_update_end(&stats->syncp);
395 }
396
397 if (v->flags & BRIDGE_VLAN_INFO_UNTAGGED)
398 skb->vlan_tci = 0;
399
400 if (p && (p->flags & BR_VLAN_TUNNEL) &&
401 br_handle_egress_vlan_tunnel(skb, v)) {
402 kfree_skb(skb);
403 return NULL;
404 }
405 out:
406 return skb;
407 }
408
409 /* Called under RCU */
__allowed_ingress(const struct net_bridge * br,struct net_bridge_vlan_group * vg,struct sk_buff * skb,u16 * vid)410 static bool __allowed_ingress(const struct net_bridge *br,
411 struct net_bridge_vlan_group *vg,
412 struct sk_buff *skb, u16 *vid)
413 {
414 struct br_vlan_stats *stats;
415 struct net_bridge_vlan *v;
416 bool tagged;
417
418 BR_INPUT_SKB_CB(skb)->vlan_filtered = true;
419 /* If vlan tx offload is disabled on bridge device and frame was
420 * sent from vlan device on the bridge device, it does not have
421 * HW accelerated vlan tag.
422 */
423 if (unlikely(!skb_vlan_tag_present(skb) &&
424 skb->protocol == br->vlan_proto)) {
425 skb = skb_vlan_untag(skb);
426 if (unlikely(!skb))
427 return false;
428 }
429
430 if (!br_vlan_get_tag(skb, vid)) {
431 /* Tagged frame */
432 if (skb->vlan_proto != br->vlan_proto) {
433 /* Protocol-mismatch, empty out vlan_tci for new tag */
434 skb_push(skb, ETH_HLEN);
435 skb = vlan_insert_tag_set_proto(skb, skb->vlan_proto,
436 skb_vlan_tag_get(skb));
437 if (unlikely(!skb))
438 return false;
439
440 skb_pull(skb, ETH_HLEN);
441 skb_reset_mac_len(skb);
442 *vid = 0;
443 tagged = false;
444 } else {
445 tagged = true;
446 }
447 } else {
448 /* Untagged frame */
449 tagged = false;
450 }
451
452 if (!*vid) {
453 u16 pvid = br_get_pvid(vg);
454
455 /* Frame had a tag with VID 0 or did not have a tag.
456 * See if pvid is set on this port. That tells us which
457 * vlan untagged or priority-tagged traffic belongs to.
458 */
459 if (!pvid)
460 goto drop;
461
462 /* PVID is set on this port. Any untagged or priority-tagged
463 * ingress frame is considered to belong to this vlan.
464 */
465 *vid = pvid;
466 if (likely(!tagged))
467 /* Untagged Frame. */
468 __vlan_hwaccel_put_tag(skb, br->vlan_proto, pvid);
469 else
470 /* Priority-tagged Frame.
471 * At this point, We know that skb->vlan_tci had
472 * VLAN_TAG_PRESENT bit and its VID field was 0x000.
473 * We update only VID field and preserve PCP field.
474 */
475 skb->vlan_tci |= pvid;
476
477 /* if stats are disabled we can avoid the lookup */
478 if (!br->vlan_stats_enabled)
479 return true;
480 }
481 v = br_vlan_find(vg, *vid);
482 if (!v || !br_vlan_should_use(v))
483 goto drop;
484
485 if (br->vlan_stats_enabled) {
486 stats = this_cpu_ptr(v->stats);
487 u64_stats_update_begin(&stats->syncp);
488 stats->rx_bytes += skb->len;
489 stats->rx_packets++;
490 u64_stats_update_end(&stats->syncp);
491 }
492
493 return true;
494
495 drop:
496 kfree_skb(skb);
497 return false;
498 }
499
br_allowed_ingress(const struct net_bridge * br,struct net_bridge_vlan_group * vg,struct sk_buff * skb,u16 * vid)500 bool br_allowed_ingress(const struct net_bridge *br,
501 struct net_bridge_vlan_group *vg, struct sk_buff *skb,
502 u16 *vid)
503 {
504 /* If VLAN filtering is disabled on the bridge, all packets are
505 * permitted.
506 */
507 if (!br->vlan_enabled) {
508 BR_INPUT_SKB_CB(skb)->vlan_filtered = false;
509 return true;
510 }
511
512 return __allowed_ingress(br, vg, skb, vid);
513 }
514
515 /* Called under RCU. */
br_allowed_egress(struct net_bridge_vlan_group * vg,const struct sk_buff * skb)516 bool br_allowed_egress(struct net_bridge_vlan_group *vg,
517 const struct sk_buff *skb)
518 {
519 const struct net_bridge_vlan *v;
520 u16 vid;
521
522 /* If this packet was not filtered at input, let it pass */
523 if (!BR_INPUT_SKB_CB(skb)->vlan_filtered)
524 return true;
525
526 br_vlan_get_tag(skb, &vid);
527 v = br_vlan_find(vg, vid);
528 if (v && br_vlan_should_use(v))
529 return true;
530
531 return false;
532 }
533
534 /* Called under RCU */
br_should_learn(struct net_bridge_port * p,struct sk_buff * skb,u16 * vid)535 bool br_should_learn(struct net_bridge_port *p, struct sk_buff *skb, u16 *vid)
536 {
537 struct net_bridge_vlan_group *vg;
538 struct net_bridge *br = p->br;
539
540 /* If filtering was disabled at input, let it pass. */
541 if (!br->vlan_enabled)
542 return true;
543
544 vg = nbp_vlan_group_rcu(p);
545 if (!vg || !vg->num_vlans)
546 return false;
547
548 if (!br_vlan_get_tag(skb, vid) && skb->vlan_proto != br->vlan_proto)
549 *vid = 0;
550
551 if (!*vid) {
552 *vid = br_get_pvid(vg);
553 if (!*vid)
554 return false;
555
556 return true;
557 }
558
559 if (br_vlan_find(vg, *vid))
560 return true;
561
562 return false;
563 }
564
br_vlan_add_existing(struct net_bridge * br,struct net_bridge_vlan_group * vg,struct net_bridge_vlan * vlan,u16 flags,bool * changed)565 static int br_vlan_add_existing(struct net_bridge *br,
566 struct net_bridge_vlan_group *vg,
567 struct net_bridge_vlan *vlan,
568 u16 flags, bool *changed)
569 {
570 int err;
571
572 err = br_switchdev_port_vlan_add(br->dev, vlan->vid, flags);
573 if (err && err != -EOPNOTSUPP)
574 return err;
575
576 if (!br_vlan_is_brentry(vlan)) {
577 /* Trying to change flags of non-existent bridge vlan */
578 if (!(flags & BRIDGE_VLAN_INFO_BRENTRY)) {
579 err = -EINVAL;
580 goto err_flags;
581 }
582 /* It was only kept for port vlans, now make it real */
583 err = br_fdb_insert(br, NULL, br->dev->dev_addr,
584 vlan->vid);
585 if (err) {
586 br_err(br, "failed to insert local address into bridge forwarding table\n");
587 goto err_fdb_insert;
588 }
589
590 refcount_inc(&vlan->refcnt);
591 vlan->flags |= BRIDGE_VLAN_INFO_BRENTRY;
592 vg->num_vlans++;
593 *changed = true;
594 }
595
596 if (__vlan_add_flags(vlan, flags))
597 *changed = true;
598
599 return 0;
600
601 err_fdb_insert:
602 err_flags:
603 br_switchdev_port_vlan_del(br->dev, vlan->vid);
604 return err;
605 }
606
607 /* Must be protected by RTNL.
608 * Must be called with vid in range from 1 to 4094 inclusive.
609 * changed must be true only if the vlan was created or updated
610 */
br_vlan_add(struct net_bridge * br,u16 vid,u16 flags,bool * changed)611 int br_vlan_add(struct net_bridge *br, u16 vid, u16 flags, bool *changed)
612 {
613 struct net_bridge_vlan_group *vg;
614 struct net_bridge_vlan *vlan;
615 int ret;
616
617 ASSERT_RTNL();
618
619 *changed = false;
620 vg = br_vlan_group(br);
621 vlan = br_vlan_find(vg, vid);
622 if (vlan)
623 return br_vlan_add_existing(br, vg, vlan, flags, changed);
624
625 vlan = kzalloc(sizeof(*vlan), GFP_KERNEL);
626 if (!vlan)
627 return -ENOMEM;
628
629 vlan->stats = netdev_alloc_pcpu_stats(struct br_vlan_stats);
630 if (!vlan->stats) {
631 kfree(vlan);
632 return -ENOMEM;
633 }
634 vlan->vid = vid;
635 vlan->flags = flags | BRIDGE_VLAN_INFO_MASTER;
636 vlan->flags &= ~BRIDGE_VLAN_INFO_PVID;
637 vlan->br = br;
638 if (flags & BRIDGE_VLAN_INFO_BRENTRY)
639 refcount_set(&vlan->refcnt, 1);
640 ret = __vlan_add(vlan, flags);
641 if (ret) {
642 free_percpu(vlan->stats);
643 kfree(vlan);
644 } else {
645 *changed = true;
646 }
647
648 return ret;
649 }
650
651 /* Must be protected by RTNL.
652 * Must be called with vid in range from 1 to 4094 inclusive.
653 */
br_vlan_delete(struct net_bridge * br,u16 vid)654 int br_vlan_delete(struct net_bridge *br, u16 vid)
655 {
656 struct net_bridge_vlan_group *vg;
657 struct net_bridge_vlan *v;
658
659 ASSERT_RTNL();
660
661 vg = br_vlan_group(br);
662 v = br_vlan_find(vg, vid);
663 if (!v || !br_vlan_is_brentry(v))
664 return -ENOENT;
665
666 br_fdb_find_delete_local(br, NULL, br->dev->dev_addr, vid);
667 br_fdb_delete_by_port(br, NULL, vid, 0);
668
669 vlan_tunnel_info_del(vg, v);
670
671 return __vlan_del(v);
672 }
673
br_vlan_flush(struct net_bridge * br)674 void br_vlan_flush(struct net_bridge *br)
675 {
676 struct net_bridge_vlan_group *vg;
677
678 ASSERT_RTNL();
679
680 /* delete auto-added default pvid local fdb before flushing vlans
681 * otherwise it will be leaked on bridge device init failure
682 */
683 br_fdb_delete_by_port(br, NULL, 0, 1);
684
685 vg = br_vlan_group(br);
686 __vlan_flush(vg);
687 RCU_INIT_POINTER(br->vlgrp, NULL);
688 synchronize_rcu();
689 __vlan_group_free(vg);
690 }
691
br_vlan_find(struct net_bridge_vlan_group * vg,u16 vid)692 struct net_bridge_vlan *br_vlan_find(struct net_bridge_vlan_group *vg, u16 vid)
693 {
694 if (!vg)
695 return NULL;
696
697 return br_vlan_lookup(&vg->vlan_hash, vid);
698 }
699
700 /* Must be protected by RTNL. */
recalculate_group_addr(struct net_bridge * br)701 static void recalculate_group_addr(struct net_bridge *br)
702 {
703 if (br->group_addr_set)
704 return;
705
706 spin_lock_bh(&br->lock);
707 if (!br->vlan_enabled || br->vlan_proto == htons(ETH_P_8021Q)) {
708 /* Bridge Group Address */
709 br->group_addr[5] = 0x00;
710 } else { /* vlan_enabled && ETH_P_8021AD */
711 /* Provider Bridge Group Address */
712 br->group_addr[5] = 0x08;
713 }
714 spin_unlock_bh(&br->lock);
715 }
716
717 /* Must be protected by RTNL. */
br_recalculate_fwd_mask(struct net_bridge * br)718 void br_recalculate_fwd_mask(struct net_bridge *br)
719 {
720 if (!br->vlan_enabled || br->vlan_proto == htons(ETH_P_8021Q))
721 br->group_fwd_mask_required = BR_GROUPFWD_DEFAULT;
722 else /* vlan_enabled && ETH_P_8021AD */
723 br->group_fwd_mask_required = BR_GROUPFWD_8021AD &
724 ~(1u << br->group_addr[5]);
725 }
726
__br_vlan_filter_toggle(struct net_bridge * br,unsigned long val)727 int __br_vlan_filter_toggle(struct net_bridge *br, unsigned long val)
728 {
729 struct switchdev_attr attr = {
730 .orig_dev = br->dev,
731 .id = SWITCHDEV_ATTR_ID_BRIDGE_VLAN_FILTERING,
732 .flags = SWITCHDEV_F_SKIP_EOPNOTSUPP,
733 .u.vlan_filtering = val,
734 };
735 int err;
736
737 if (br->vlan_enabled == val)
738 return 0;
739
740 err = switchdev_port_attr_set(br->dev, &attr);
741 if (err && err != -EOPNOTSUPP)
742 return err;
743
744 br->vlan_enabled = val;
745 br_manage_promisc(br);
746 recalculate_group_addr(br);
747 br_recalculate_fwd_mask(br);
748
749 return 0;
750 }
751
br_vlan_filter_toggle(struct net_bridge * br,unsigned long val)752 int br_vlan_filter_toggle(struct net_bridge *br, unsigned long val)
753 {
754 return __br_vlan_filter_toggle(br, val);
755 }
756
br_vlan_enabled(const struct net_device * dev)757 bool br_vlan_enabled(const struct net_device *dev)
758 {
759 struct net_bridge *br = netdev_priv(dev);
760
761 return !!br->vlan_enabled;
762 }
763 EXPORT_SYMBOL_GPL(br_vlan_enabled);
764
__br_vlan_set_proto(struct net_bridge * br,__be16 proto)765 int __br_vlan_set_proto(struct net_bridge *br, __be16 proto)
766 {
767 int err = 0;
768 struct net_bridge_port *p;
769 struct net_bridge_vlan *vlan;
770 struct net_bridge_vlan_group *vg;
771 __be16 oldproto;
772
773 if (br->vlan_proto == proto)
774 return 0;
775
776 /* Add VLANs for the new proto to the device filter. */
777 list_for_each_entry(p, &br->port_list, list) {
778 vg = nbp_vlan_group(p);
779 list_for_each_entry(vlan, &vg->vlan_list, vlist) {
780 err = vlan_vid_add(p->dev, proto, vlan->vid);
781 if (err)
782 goto err_filt;
783 }
784 }
785
786 oldproto = br->vlan_proto;
787 br->vlan_proto = proto;
788
789 recalculate_group_addr(br);
790 br_recalculate_fwd_mask(br);
791
792 /* Delete VLANs for the old proto from the device filter. */
793 list_for_each_entry(p, &br->port_list, list) {
794 vg = nbp_vlan_group(p);
795 list_for_each_entry(vlan, &vg->vlan_list, vlist)
796 vlan_vid_del(p->dev, oldproto, vlan->vid);
797 }
798
799 return 0;
800
801 err_filt:
802 list_for_each_entry_continue_reverse(vlan, &vg->vlan_list, vlist)
803 vlan_vid_del(p->dev, proto, vlan->vid);
804
805 list_for_each_entry_continue_reverse(p, &br->port_list, list) {
806 vg = nbp_vlan_group(p);
807 list_for_each_entry(vlan, &vg->vlan_list, vlist)
808 vlan_vid_del(p->dev, proto, vlan->vid);
809 }
810
811 return err;
812 }
813
br_vlan_set_proto(struct net_bridge * br,unsigned long val)814 int br_vlan_set_proto(struct net_bridge *br, unsigned long val)
815 {
816 if (val != ETH_P_8021Q && val != ETH_P_8021AD)
817 return -EPROTONOSUPPORT;
818
819 return __br_vlan_set_proto(br, htons(val));
820 }
821
br_vlan_set_stats(struct net_bridge * br,unsigned long val)822 int br_vlan_set_stats(struct net_bridge *br, unsigned long val)
823 {
824 switch (val) {
825 case 0:
826 case 1:
827 br->vlan_stats_enabled = val;
828 break;
829 default:
830 return -EINVAL;
831 }
832
833 return 0;
834 }
835
vlan_default_pvid(struct net_bridge_vlan_group * vg,u16 vid)836 static bool vlan_default_pvid(struct net_bridge_vlan_group *vg, u16 vid)
837 {
838 struct net_bridge_vlan *v;
839
840 if (vid != vg->pvid)
841 return false;
842
843 v = br_vlan_lookup(&vg->vlan_hash, vid);
844 if (v && br_vlan_should_use(v) &&
845 (v->flags & BRIDGE_VLAN_INFO_UNTAGGED))
846 return true;
847
848 return false;
849 }
850
br_vlan_disable_default_pvid(struct net_bridge * br)851 static void br_vlan_disable_default_pvid(struct net_bridge *br)
852 {
853 struct net_bridge_port *p;
854 u16 pvid = br->default_pvid;
855
856 /* Disable default_pvid on all ports where it is still
857 * configured.
858 */
859 if (vlan_default_pvid(br_vlan_group(br), pvid))
860 br_vlan_delete(br, pvid);
861
862 list_for_each_entry(p, &br->port_list, list) {
863 if (vlan_default_pvid(nbp_vlan_group(p), pvid))
864 nbp_vlan_delete(p, pvid);
865 }
866
867 br->default_pvid = 0;
868 }
869
__br_vlan_set_default_pvid(struct net_bridge * br,u16 pvid)870 int __br_vlan_set_default_pvid(struct net_bridge *br, u16 pvid)
871 {
872 const struct net_bridge_vlan *pvent;
873 struct net_bridge_vlan_group *vg;
874 struct net_bridge_port *p;
875 unsigned long *changed;
876 bool vlchange;
877 u16 old_pvid;
878 int err = 0;
879
880 if (!pvid) {
881 br_vlan_disable_default_pvid(br);
882 return 0;
883 }
884
885 changed = kcalloc(BITS_TO_LONGS(BR_MAX_PORTS), sizeof(unsigned long),
886 GFP_KERNEL);
887 if (!changed)
888 return -ENOMEM;
889
890 old_pvid = br->default_pvid;
891
892 /* Update default_pvid config only if we do not conflict with
893 * user configuration.
894 */
895 vg = br_vlan_group(br);
896 pvent = br_vlan_find(vg, pvid);
897 if ((!old_pvid || vlan_default_pvid(vg, old_pvid)) &&
898 (!pvent || !br_vlan_should_use(pvent))) {
899 err = br_vlan_add(br, pvid,
900 BRIDGE_VLAN_INFO_PVID |
901 BRIDGE_VLAN_INFO_UNTAGGED |
902 BRIDGE_VLAN_INFO_BRENTRY,
903 &vlchange);
904 if (err)
905 goto out;
906 br_vlan_delete(br, old_pvid);
907 set_bit(0, changed);
908 }
909
910 list_for_each_entry(p, &br->port_list, list) {
911 /* Update default_pvid config only if we do not conflict with
912 * user configuration.
913 */
914 vg = nbp_vlan_group(p);
915 if ((old_pvid &&
916 !vlan_default_pvid(vg, old_pvid)) ||
917 br_vlan_find(vg, pvid))
918 continue;
919
920 err = nbp_vlan_add(p, pvid,
921 BRIDGE_VLAN_INFO_PVID |
922 BRIDGE_VLAN_INFO_UNTAGGED,
923 &vlchange);
924 if (err)
925 goto err_port;
926 nbp_vlan_delete(p, old_pvid);
927 set_bit(p->port_no, changed);
928 }
929
930 br->default_pvid = pvid;
931
932 out:
933 kfree(changed);
934 return err;
935
936 err_port:
937 list_for_each_entry_continue_reverse(p, &br->port_list, list) {
938 if (!test_bit(p->port_no, changed))
939 continue;
940
941 if (old_pvid)
942 nbp_vlan_add(p, old_pvid,
943 BRIDGE_VLAN_INFO_PVID |
944 BRIDGE_VLAN_INFO_UNTAGGED,
945 &vlchange);
946 nbp_vlan_delete(p, pvid);
947 }
948
949 if (test_bit(0, changed)) {
950 if (old_pvid)
951 br_vlan_add(br, old_pvid,
952 BRIDGE_VLAN_INFO_PVID |
953 BRIDGE_VLAN_INFO_UNTAGGED |
954 BRIDGE_VLAN_INFO_BRENTRY,
955 &vlchange);
956 br_vlan_delete(br, pvid);
957 }
958 goto out;
959 }
960
br_vlan_set_default_pvid(struct net_bridge * br,unsigned long val)961 int br_vlan_set_default_pvid(struct net_bridge *br, unsigned long val)
962 {
963 u16 pvid = val;
964 int err = 0;
965
966 if (val >= VLAN_VID_MASK)
967 return -EINVAL;
968
969 if (pvid == br->default_pvid)
970 goto out;
971
972 /* Only allow default pvid change when filtering is disabled */
973 if (br->vlan_enabled) {
974 pr_info_once("Please disable vlan filtering to change default_pvid\n");
975 err = -EPERM;
976 goto out;
977 }
978 err = __br_vlan_set_default_pvid(br, pvid);
979 out:
980 return err;
981 }
982
br_vlan_init(struct net_bridge * br)983 int br_vlan_init(struct net_bridge *br)
984 {
985 struct net_bridge_vlan_group *vg;
986 int ret = -ENOMEM;
987 bool changed;
988
989 vg = kzalloc(sizeof(*vg), GFP_KERNEL);
990 if (!vg)
991 goto out;
992 ret = rhashtable_init(&vg->vlan_hash, &br_vlan_rht_params);
993 if (ret)
994 goto err_rhtbl;
995 ret = vlan_tunnel_init(vg);
996 if (ret)
997 goto err_tunnel_init;
998 INIT_LIST_HEAD(&vg->vlan_list);
999 br->vlan_proto = htons(ETH_P_8021Q);
1000 br->default_pvid = 1;
1001 rcu_assign_pointer(br->vlgrp, vg);
1002 ret = br_vlan_add(br, 1,
1003 BRIDGE_VLAN_INFO_PVID | BRIDGE_VLAN_INFO_UNTAGGED |
1004 BRIDGE_VLAN_INFO_BRENTRY, &changed);
1005 if (ret)
1006 goto err_vlan_add;
1007
1008 out:
1009 return ret;
1010
1011 err_vlan_add:
1012 vlan_tunnel_deinit(vg);
1013 err_tunnel_init:
1014 rhashtable_destroy(&vg->vlan_hash);
1015 err_rhtbl:
1016 kfree(vg);
1017
1018 goto out;
1019 }
1020
nbp_vlan_init(struct net_bridge_port * p)1021 int nbp_vlan_init(struct net_bridge_port *p)
1022 {
1023 struct switchdev_attr attr = {
1024 .orig_dev = p->br->dev,
1025 .id = SWITCHDEV_ATTR_ID_BRIDGE_VLAN_FILTERING,
1026 .flags = SWITCHDEV_F_SKIP_EOPNOTSUPP,
1027 .u.vlan_filtering = p->br->vlan_enabled,
1028 };
1029 struct net_bridge_vlan_group *vg;
1030 int ret = -ENOMEM;
1031
1032 vg = kzalloc(sizeof(struct net_bridge_vlan_group), GFP_KERNEL);
1033 if (!vg)
1034 goto out;
1035
1036 ret = switchdev_port_attr_set(p->dev, &attr);
1037 if (ret && ret != -EOPNOTSUPP)
1038 goto err_vlan_enabled;
1039
1040 ret = rhashtable_init(&vg->vlan_hash, &br_vlan_rht_params);
1041 if (ret)
1042 goto err_rhtbl;
1043 ret = vlan_tunnel_init(vg);
1044 if (ret)
1045 goto err_tunnel_init;
1046 INIT_LIST_HEAD(&vg->vlan_list);
1047 rcu_assign_pointer(p->vlgrp, vg);
1048 if (p->br->default_pvid) {
1049 bool changed;
1050
1051 ret = nbp_vlan_add(p, p->br->default_pvid,
1052 BRIDGE_VLAN_INFO_PVID |
1053 BRIDGE_VLAN_INFO_UNTAGGED,
1054 &changed);
1055 if (ret)
1056 goto err_vlan_add;
1057 }
1058 out:
1059 return ret;
1060
1061 err_vlan_add:
1062 RCU_INIT_POINTER(p->vlgrp, NULL);
1063 synchronize_rcu();
1064 vlan_tunnel_deinit(vg);
1065 err_tunnel_init:
1066 rhashtable_destroy(&vg->vlan_hash);
1067 err_rhtbl:
1068 err_vlan_enabled:
1069 kfree(vg);
1070
1071 goto out;
1072 }
1073
1074 /* Must be protected by RTNL.
1075 * Must be called with vid in range from 1 to 4094 inclusive.
1076 * changed must be true only if the vlan was created or updated
1077 */
nbp_vlan_add(struct net_bridge_port * port,u16 vid,u16 flags,bool * changed)1078 int nbp_vlan_add(struct net_bridge_port *port, u16 vid, u16 flags,
1079 bool *changed)
1080 {
1081 struct net_bridge_vlan *vlan;
1082 int ret;
1083
1084 ASSERT_RTNL();
1085
1086 *changed = false;
1087 vlan = br_vlan_find(nbp_vlan_group(port), vid);
1088 if (vlan) {
1089 /* Pass the flags to the hardware bridge */
1090 ret = br_switchdev_port_vlan_add(port->dev, vid, flags);
1091 if (ret && ret != -EOPNOTSUPP)
1092 return ret;
1093 *changed = __vlan_add_flags(vlan, flags);
1094
1095 return 0;
1096 }
1097
1098 vlan = kzalloc(sizeof(*vlan), GFP_KERNEL);
1099 if (!vlan)
1100 return -ENOMEM;
1101
1102 vlan->vid = vid;
1103 vlan->port = port;
1104 ret = __vlan_add(vlan, flags);
1105 if (ret)
1106 kfree(vlan);
1107 else
1108 *changed = true;
1109
1110 return ret;
1111 }
1112
1113 /* Must be protected by RTNL.
1114 * Must be called with vid in range from 1 to 4094 inclusive.
1115 */
nbp_vlan_delete(struct net_bridge_port * port,u16 vid)1116 int nbp_vlan_delete(struct net_bridge_port *port, u16 vid)
1117 {
1118 struct net_bridge_vlan *v;
1119
1120 ASSERT_RTNL();
1121
1122 v = br_vlan_find(nbp_vlan_group(port), vid);
1123 if (!v)
1124 return -ENOENT;
1125 br_fdb_find_delete_local(port->br, port, port->dev->dev_addr, vid);
1126 br_fdb_delete_by_port(port->br, port, vid, 0);
1127
1128 return __vlan_del(v);
1129 }
1130
nbp_vlan_flush(struct net_bridge_port * port)1131 void nbp_vlan_flush(struct net_bridge_port *port)
1132 {
1133 struct net_bridge_vlan_group *vg;
1134
1135 ASSERT_RTNL();
1136
1137 vg = nbp_vlan_group(port);
1138 __vlan_flush(vg);
1139 RCU_INIT_POINTER(port->vlgrp, NULL);
1140 synchronize_rcu();
1141 __vlan_group_free(vg);
1142 }
1143
br_vlan_get_stats(const struct net_bridge_vlan * v,struct br_vlan_stats * stats)1144 void br_vlan_get_stats(const struct net_bridge_vlan *v,
1145 struct br_vlan_stats *stats)
1146 {
1147 int i;
1148
1149 memset(stats, 0, sizeof(*stats));
1150 for_each_possible_cpu(i) {
1151 u64 rxpackets, rxbytes, txpackets, txbytes;
1152 struct br_vlan_stats *cpu_stats;
1153 unsigned int start;
1154
1155 cpu_stats = per_cpu_ptr(v->stats, i);
1156 do {
1157 start = u64_stats_fetch_begin_irq(&cpu_stats->syncp);
1158 rxpackets = cpu_stats->rx_packets;
1159 rxbytes = cpu_stats->rx_bytes;
1160 txbytes = cpu_stats->tx_bytes;
1161 txpackets = cpu_stats->tx_packets;
1162 } while (u64_stats_fetch_retry_irq(&cpu_stats->syncp, start));
1163
1164 stats->rx_packets += rxpackets;
1165 stats->rx_bytes += rxbytes;
1166 stats->tx_bytes += txbytes;
1167 stats->tx_packets += txpackets;
1168 }
1169 }
1170
br_vlan_get_pvid(const struct net_device * dev,u16 * p_pvid)1171 int br_vlan_get_pvid(const struct net_device *dev, u16 *p_pvid)
1172 {
1173 struct net_bridge_vlan_group *vg;
1174
1175 ASSERT_RTNL();
1176 if (netif_is_bridge_master(dev))
1177 vg = br_vlan_group(netdev_priv(dev));
1178 else
1179 return -EINVAL;
1180
1181 *p_pvid = br_get_pvid(vg);
1182 return 0;
1183 }
1184 EXPORT_SYMBOL_GPL(br_vlan_get_pvid);
1185
br_vlan_get_info(const struct net_device * dev,u16 vid,struct bridge_vlan_info * p_vinfo)1186 int br_vlan_get_info(const struct net_device *dev, u16 vid,
1187 struct bridge_vlan_info *p_vinfo)
1188 {
1189 struct net_bridge_vlan_group *vg;
1190 struct net_bridge_vlan *v;
1191 struct net_bridge_port *p;
1192
1193 ASSERT_RTNL();
1194 p = br_port_get_check_rtnl(dev);
1195 if (p)
1196 vg = nbp_vlan_group(p);
1197 else if (netif_is_bridge_master(dev))
1198 vg = br_vlan_group(netdev_priv(dev));
1199 else
1200 return -EINVAL;
1201
1202 v = br_vlan_find(vg, vid);
1203 if (!v)
1204 return -ENOENT;
1205
1206 p_vinfo->vid = vid;
1207 p_vinfo->flags = v->flags;
1208 return 0;
1209 }
1210 EXPORT_SYMBOL_GPL(br_vlan_get_info);
1211