1 // SPDX-License-Identifier: GPL-2.0-or-later
2
3 #include <linux/mrp_bridge.h>
4 #include "br_private_mrp.h"
5
6 static const u8 mrp_test_dmac[ETH_ALEN] = { 0x1, 0x15, 0x4e, 0x0, 0x0, 0x1 };
7 static const u8 mrp_in_test_dmac[ETH_ALEN] = { 0x1, 0x15, 0x4e, 0x0, 0x0, 0x3 };
8
br_mrp_is_ring_port(struct net_bridge_port * p_port,struct net_bridge_port * s_port,struct net_bridge_port * port)9 static bool br_mrp_is_ring_port(struct net_bridge_port *p_port,
10 struct net_bridge_port *s_port,
11 struct net_bridge_port *port)
12 {
13 if (port == p_port ||
14 port == s_port)
15 return true;
16
17 return false;
18 }
19
br_mrp_is_in_port(struct net_bridge_port * i_port,struct net_bridge_port * port)20 static bool br_mrp_is_in_port(struct net_bridge_port *i_port,
21 struct net_bridge_port *port)
22 {
23 if (port == i_port)
24 return true;
25
26 return false;
27 }
28
br_mrp_get_port(struct net_bridge * br,u32 ifindex)29 static struct net_bridge_port *br_mrp_get_port(struct net_bridge *br,
30 u32 ifindex)
31 {
32 struct net_bridge_port *res = NULL;
33 struct net_bridge_port *port;
34
35 list_for_each_entry(port, &br->port_list, list) {
36 if (port->dev->ifindex == ifindex) {
37 res = port;
38 break;
39 }
40 }
41
42 return res;
43 }
44
br_mrp_find_id(struct net_bridge * br,u32 ring_id)45 static struct br_mrp *br_mrp_find_id(struct net_bridge *br, u32 ring_id)
46 {
47 struct br_mrp *res = NULL;
48 struct br_mrp *mrp;
49
50 list_for_each_entry_rcu(mrp, &br->mrp_list, list,
51 lockdep_rtnl_is_held()) {
52 if (mrp->ring_id == ring_id) {
53 res = mrp;
54 break;
55 }
56 }
57
58 return res;
59 }
60
br_mrp_find_in_id(struct net_bridge * br,u32 in_id)61 static struct br_mrp *br_mrp_find_in_id(struct net_bridge *br, u32 in_id)
62 {
63 struct br_mrp *res = NULL;
64 struct br_mrp *mrp;
65
66 list_for_each_entry_rcu(mrp, &br->mrp_list, list,
67 lockdep_rtnl_is_held()) {
68 if (mrp->in_id == in_id) {
69 res = mrp;
70 break;
71 }
72 }
73
74 return res;
75 }
76
br_mrp_unique_ifindex(struct net_bridge * br,u32 ifindex)77 static bool br_mrp_unique_ifindex(struct net_bridge *br, u32 ifindex)
78 {
79 struct br_mrp *mrp;
80
81 list_for_each_entry_rcu(mrp, &br->mrp_list, list,
82 lockdep_rtnl_is_held()) {
83 struct net_bridge_port *p;
84
85 p = rtnl_dereference(mrp->p_port);
86 if (p && p->dev->ifindex == ifindex)
87 return false;
88
89 p = rtnl_dereference(mrp->s_port);
90 if (p && p->dev->ifindex == ifindex)
91 return false;
92
93 p = rtnl_dereference(mrp->i_port);
94 if (p && p->dev->ifindex == ifindex)
95 return false;
96 }
97
98 return true;
99 }
100
br_mrp_find_port(struct net_bridge * br,struct net_bridge_port * p)101 static struct br_mrp *br_mrp_find_port(struct net_bridge *br,
102 struct net_bridge_port *p)
103 {
104 struct br_mrp *res = NULL;
105 struct br_mrp *mrp;
106
107 list_for_each_entry_rcu(mrp, &br->mrp_list, list,
108 lockdep_rtnl_is_held()) {
109 if (rcu_access_pointer(mrp->p_port) == p ||
110 rcu_access_pointer(mrp->s_port) == p ||
111 rcu_access_pointer(mrp->i_port) == p) {
112 res = mrp;
113 break;
114 }
115 }
116
117 return res;
118 }
119
br_mrp_next_seq(struct br_mrp * mrp)120 static int br_mrp_next_seq(struct br_mrp *mrp)
121 {
122 mrp->seq_id++;
123 return mrp->seq_id;
124 }
125
br_mrp_skb_alloc(struct net_bridge_port * p,const u8 * src,const u8 * dst)126 static struct sk_buff *br_mrp_skb_alloc(struct net_bridge_port *p,
127 const u8 *src, const u8 *dst)
128 {
129 struct ethhdr *eth_hdr;
130 struct sk_buff *skb;
131 __be16 *version;
132
133 skb = dev_alloc_skb(MRP_MAX_FRAME_LENGTH);
134 if (!skb)
135 return NULL;
136
137 skb->dev = p->dev;
138 skb->protocol = htons(ETH_P_MRP);
139 skb->priority = MRP_FRAME_PRIO;
140 skb_reserve(skb, sizeof(*eth_hdr));
141
142 eth_hdr = skb_push(skb, sizeof(*eth_hdr));
143 ether_addr_copy(eth_hdr->h_dest, dst);
144 ether_addr_copy(eth_hdr->h_source, src);
145 eth_hdr->h_proto = htons(ETH_P_MRP);
146
147 version = skb_put(skb, sizeof(*version));
148 *version = cpu_to_be16(MRP_VERSION);
149
150 return skb;
151 }
152
br_mrp_skb_tlv(struct sk_buff * skb,enum br_mrp_tlv_header_type type,u8 length)153 static void br_mrp_skb_tlv(struct sk_buff *skb,
154 enum br_mrp_tlv_header_type type,
155 u8 length)
156 {
157 struct br_mrp_tlv_hdr *hdr;
158
159 hdr = skb_put(skb, sizeof(*hdr));
160 hdr->type = type;
161 hdr->length = length;
162 }
163
br_mrp_skb_common(struct sk_buff * skb,struct br_mrp * mrp)164 static void br_mrp_skb_common(struct sk_buff *skb, struct br_mrp *mrp)
165 {
166 struct br_mrp_common_hdr *hdr;
167
168 br_mrp_skb_tlv(skb, BR_MRP_TLV_HEADER_COMMON, sizeof(*hdr));
169
170 hdr = skb_put(skb, sizeof(*hdr));
171 hdr->seq_id = cpu_to_be16(br_mrp_next_seq(mrp));
172 memset(hdr->domain, 0xff, MRP_DOMAIN_UUID_LENGTH);
173 }
174
br_mrp_alloc_test_skb(struct br_mrp * mrp,struct net_bridge_port * p,enum br_mrp_port_role_type port_role)175 static struct sk_buff *br_mrp_alloc_test_skb(struct br_mrp *mrp,
176 struct net_bridge_port *p,
177 enum br_mrp_port_role_type port_role)
178 {
179 struct br_mrp_ring_test_hdr *hdr = NULL;
180 struct sk_buff *skb = NULL;
181
182 if (!p)
183 return NULL;
184
185 skb = br_mrp_skb_alloc(p, p->dev->dev_addr, mrp_test_dmac);
186 if (!skb)
187 return NULL;
188
189 br_mrp_skb_tlv(skb, BR_MRP_TLV_HEADER_RING_TEST, sizeof(*hdr));
190 hdr = skb_put(skb, sizeof(*hdr));
191
192 hdr->prio = cpu_to_be16(mrp->prio);
193 ether_addr_copy(hdr->sa, p->br->dev->dev_addr);
194 hdr->port_role = cpu_to_be16(port_role);
195 hdr->state = cpu_to_be16(mrp->ring_state);
196 hdr->transitions = cpu_to_be16(mrp->ring_transitions);
197 hdr->timestamp = cpu_to_be32(jiffies_to_msecs(jiffies));
198
199 br_mrp_skb_common(skb, mrp);
200 br_mrp_skb_tlv(skb, BR_MRP_TLV_HEADER_END, 0x0);
201
202 return skb;
203 }
204
br_mrp_alloc_in_test_skb(struct br_mrp * mrp,struct net_bridge_port * p,enum br_mrp_port_role_type port_role)205 static struct sk_buff *br_mrp_alloc_in_test_skb(struct br_mrp *mrp,
206 struct net_bridge_port *p,
207 enum br_mrp_port_role_type port_role)
208 {
209 struct br_mrp_in_test_hdr *hdr = NULL;
210 struct sk_buff *skb = NULL;
211
212 if (!p)
213 return NULL;
214
215 skb = br_mrp_skb_alloc(p, p->dev->dev_addr, mrp_in_test_dmac);
216 if (!skb)
217 return NULL;
218
219 br_mrp_skb_tlv(skb, BR_MRP_TLV_HEADER_IN_TEST, sizeof(*hdr));
220 hdr = skb_put(skb, sizeof(*hdr));
221
222 hdr->id = cpu_to_be16(mrp->in_id);
223 ether_addr_copy(hdr->sa, p->br->dev->dev_addr);
224 hdr->port_role = cpu_to_be16(port_role);
225 hdr->state = cpu_to_be16(mrp->in_state);
226 hdr->transitions = cpu_to_be16(mrp->in_transitions);
227 hdr->timestamp = cpu_to_be32(jiffies_to_msecs(jiffies));
228
229 br_mrp_skb_common(skb, mrp);
230 br_mrp_skb_tlv(skb, BR_MRP_TLV_HEADER_END, 0x0);
231
232 return skb;
233 }
234
235 /* This function is continuously called in the following cases:
236 * - when node role is MRM, in this case test_monitor is always set to false
237 * because it needs to notify the userspace that the ring is open and needs to
238 * send MRP_Test frames
239 * - when node role is MRA, there are 2 subcases:
240 * - when MRA behaves as MRM, in this case is similar with MRM role
241 * - when MRA behaves as MRC, in this case test_monitor is set to true,
242 * because it needs to detect when it stops seeing MRP_Test frames
243 * from MRM node but it doesn't need to send MRP_Test frames.
244 */
br_mrp_test_work_expired(struct work_struct * work)245 static void br_mrp_test_work_expired(struct work_struct *work)
246 {
247 struct delayed_work *del_work = to_delayed_work(work);
248 struct br_mrp *mrp = container_of(del_work, struct br_mrp, test_work);
249 struct net_bridge_port *p;
250 bool notify_open = false;
251 struct sk_buff *skb;
252
253 if (time_before_eq(mrp->test_end, jiffies))
254 return;
255
256 if (mrp->test_count_miss < mrp->test_max_miss) {
257 mrp->test_count_miss++;
258 } else {
259 /* Notify that the ring is open only if the ring state is
260 * closed, otherwise it would continue to notify at every
261 * interval.
262 * Also notify that the ring is open when the node has the
263 * role MRA and behaves as MRC. The reason is that the
264 * userspace needs to know when the MRM stopped sending
265 * MRP_Test frames so that the current node to try to take
266 * the role of a MRM.
267 */
268 if (mrp->ring_state == BR_MRP_RING_STATE_CLOSED ||
269 mrp->test_monitor)
270 notify_open = true;
271 }
272
273 rcu_read_lock();
274
275 p = rcu_dereference(mrp->p_port);
276 if (p) {
277 if (!mrp->test_monitor) {
278 skb = br_mrp_alloc_test_skb(mrp, p,
279 BR_MRP_PORT_ROLE_PRIMARY);
280 if (!skb)
281 goto out;
282
283 skb_reset_network_header(skb);
284 dev_queue_xmit(skb);
285 }
286
287 if (notify_open && !mrp->ring_role_offloaded)
288 br_mrp_ring_port_open(p->dev, true);
289 }
290
291 p = rcu_dereference(mrp->s_port);
292 if (p) {
293 if (!mrp->test_monitor) {
294 skb = br_mrp_alloc_test_skb(mrp, p,
295 BR_MRP_PORT_ROLE_SECONDARY);
296 if (!skb)
297 goto out;
298
299 skb_reset_network_header(skb);
300 dev_queue_xmit(skb);
301 }
302
303 if (notify_open && !mrp->ring_role_offloaded)
304 br_mrp_ring_port_open(p->dev, true);
305 }
306
307 out:
308 rcu_read_unlock();
309
310 queue_delayed_work(system_wq, &mrp->test_work,
311 usecs_to_jiffies(mrp->test_interval));
312 }
313
314 /* This function is continuously called when the node has the interconnect role
315 * MIM. It would generate interconnect test frames and will send them on all 3
316 * ports. But will also check if it stop receiving interconnect test frames.
317 */
br_mrp_in_test_work_expired(struct work_struct * work)318 static void br_mrp_in_test_work_expired(struct work_struct *work)
319 {
320 struct delayed_work *del_work = to_delayed_work(work);
321 struct br_mrp *mrp = container_of(del_work, struct br_mrp, in_test_work);
322 struct net_bridge_port *p;
323 bool notify_open = false;
324 struct sk_buff *skb;
325
326 if (time_before_eq(mrp->in_test_end, jiffies))
327 return;
328
329 if (mrp->in_test_count_miss < mrp->in_test_max_miss) {
330 mrp->in_test_count_miss++;
331 } else {
332 /* Notify that the interconnect ring is open only if the
333 * interconnect ring state is closed, otherwise it would
334 * continue to notify at every interval.
335 */
336 if (mrp->in_state == BR_MRP_IN_STATE_CLOSED)
337 notify_open = true;
338 }
339
340 rcu_read_lock();
341
342 p = rcu_dereference(mrp->p_port);
343 if (p) {
344 skb = br_mrp_alloc_in_test_skb(mrp, p,
345 BR_MRP_PORT_ROLE_PRIMARY);
346 if (!skb)
347 goto out;
348
349 skb_reset_network_header(skb);
350 dev_queue_xmit(skb);
351
352 if (notify_open && !mrp->in_role_offloaded)
353 br_mrp_in_port_open(p->dev, true);
354 }
355
356 p = rcu_dereference(mrp->s_port);
357 if (p) {
358 skb = br_mrp_alloc_in_test_skb(mrp, p,
359 BR_MRP_PORT_ROLE_SECONDARY);
360 if (!skb)
361 goto out;
362
363 skb_reset_network_header(skb);
364 dev_queue_xmit(skb);
365
366 if (notify_open && !mrp->in_role_offloaded)
367 br_mrp_in_port_open(p->dev, true);
368 }
369
370 p = rcu_dereference(mrp->i_port);
371 if (p) {
372 skb = br_mrp_alloc_in_test_skb(mrp, p,
373 BR_MRP_PORT_ROLE_INTER);
374 if (!skb)
375 goto out;
376
377 skb_reset_network_header(skb);
378 dev_queue_xmit(skb);
379
380 if (notify_open && !mrp->in_role_offloaded)
381 br_mrp_in_port_open(p->dev, true);
382 }
383
384 out:
385 rcu_read_unlock();
386
387 queue_delayed_work(system_wq, &mrp->in_test_work,
388 usecs_to_jiffies(mrp->in_test_interval));
389 }
390
391 /* Deletes the MRP instance.
392 * note: called under rtnl_lock
393 */
br_mrp_del_impl(struct net_bridge * br,struct br_mrp * mrp)394 static void br_mrp_del_impl(struct net_bridge *br, struct br_mrp *mrp)
395 {
396 struct net_bridge_port *p;
397 u8 state;
398
399 /* Stop sending MRP_Test frames */
400 cancel_delayed_work_sync(&mrp->test_work);
401 br_mrp_switchdev_send_ring_test(br, mrp, 0, 0, 0, 0);
402
403 /* Stop sending MRP_InTest frames if has an interconnect role */
404 cancel_delayed_work_sync(&mrp->in_test_work);
405 br_mrp_switchdev_send_in_test(br, mrp, 0, 0, 0);
406
407 br_mrp_switchdev_del(br, mrp);
408
409 /* Reset the ports */
410 p = rtnl_dereference(mrp->p_port);
411 if (p) {
412 spin_lock_bh(&br->lock);
413 state = netif_running(br->dev) ?
414 BR_STATE_FORWARDING : BR_STATE_DISABLED;
415 p->state = state;
416 p->flags &= ~BR_MRP_AWARE;
417 spin_unlock_bh(&br->lock);
418 br_mrp_port_switchdev_set_state(p, state);
419 rcu_assign_pointer(mrp->p_port, NULL);
420 }
421
422 p = rtnl_dereference(mrp->s_port);
423 if (p) {
424 spin_lock_bh(&br->lock);
425 state = netif_running(br->dev) ?
426 BR_STATE_FORWARDING : BR_STATE_DISABLED;
427 p->state = state;
428 p->flags &= ~BR_MRP_AWARE;
429 spin_unlock_bh(&br->lock);
430 br_mrp_port_switchdev_set_state(p, state);
431 rcu_assign_pointer(mrp->s_port, NULL);
432 }
433
434 p = rtnl_dereference(mrp->i_port);
435 if (p) {
436 spin_lock_bh(&br->lock);
437 state = netif_running(br->dev) ?
438 BR_STATE_FORWARDING : BR_STATE_DISABLED;
439 p->state = state;
440 p->flags &= ~BR_MRP_AWARE;
441 spin_unlock_bh(&br->lock);
442 br_mrp_port_switchdev_set_state(p, state);
443 rcu_assign_pointer(mrp->i_port, NULL);
444 }
445
446 list_del_rcu(&mrp->list);
447 kfree_rcu(mrp, rcu);
448 }
449
450 /* Adds a new MRP instance.
451 * note: called under rtnl_lock
452 */
br_mrp_add(struct net_bridge * br,struct br_mrp_instance * instance)453 int br_mrp_add(struct net_bridge *br, struct br_mrp_instance *instance)
454 {
455 struct net_bridge_port *p;
456 struct br_mrp *mrp;
457 int err;
458
459 /* If the ring exists, it is not possible to create another one with the
460 * same ring_id
461 */
462 mrp = br_mrp_find_id(br, instance->ring_id);
463 if (mrp)
464 return -EINVAL;
465
466 if (!br_mrp_get_port(br, instance->p_ifindex) ||
467 !br_mrp_get_port(br, instance->s_ifindex))
468 return -EINVAL;
469
470 /* It is not possible to have the same port part of multiple rings */
471 if (!br_mrp_unique_ifindex(br, instance->p_ifindex) ||
472 !br_mrp_unique_ifindex(br, instance->s_ifindex))
473 return -EINVAL;
474
475 mrp = kzalloc(sizeof(*mrp), GFP_KERNEL);
476 if (!mrp)
477 return -ENOMEM;
478
479 mrp->ring_id = instance->ring_id;
480 mrp->prio = instance->prio;
481
482 p = br_mrp_get_port(br, instance->p_ifindex);
483 spin_lock_bh(&br->lock);
484 p->state = BR_STATE_FORWARDING;
485 p->flags |= BR_MRP_AWARE;
486 spin_unlock_bh(&br->lock);
487 rcu_assign_pointer(mrp->p_port, p);
488
489 p = br_mrp_get_port(br, instance->s_ifindex);
490 spin_lock_bh(&br->lock);
491 p->state = BR_STATE_FORWARDING;
492 p->flags |= BR_MRP_AWARE;
493 spin_unlock_bh(&br->lock);
494 rcu_assign_pointer(mrp->s_port, p);
495
496 INIT_DELAYED_WORK(&mrp->test_work, br_mrp_test_work_expired);
497 INIT_DELAYED_WORK(&mrp->in_test_work, br_mrp_in_test_work_expired);
498 list_add_tail_rcu(&mrp->list, &br->mrp_list);
499
500 err = br_mrp_switchdev_add(br, mrp);
501 if (err)
502 goto delete_mrp;
503
504 return 0;
505
506 delete_mrp:
507 br_mrp_del_impl(br, mrp);
508
509 return err;
510 }
511
512 /* Deletes the MRP instance from which the port is part of
513 * note: called under rtnl_lock
514 */
br_mrp_port_del(struct net_bridge * br,struct net_bridge_port * p)515 void br_mrp_port_del(struct net_bridge *br, struct net_bridge_port *p)
516 {
517 struct br_mrp *mrp = br_mrp_find_port(br, p);
518
519 /* If the port is not part of a MRP instance just bail out */
520 if (!mrp)
521 return;
522
523 br_mrp_del_impl(br, mrp);
524 }
525
526 /* Deletes existing MRP instance based on ring_id
527 * note: called under rtnl_lock
528 */
br_mrp_del(struct net_bridge * br,struct br_mrp_instance * instance)529 int br_mrp_del(struct net_bridge *br, struct br_mrp_instance *instance)
530 {
531 struct br_mrp *mrp = br_mrp_find_id(br, instance->ring_id);
532
533 if (!mrp)
534 return -EINVAL;
535
536 br_mrp_del_impl(br, mrp);
537
538 return 0;
539 }
540
541 /* Set port state, port state can be forwarding, blocked or disabled
542 * note: already called with rtnl_lock
543 */
br_mrp_set_port_state(struct net_bridge_port * p,enum br_mrp_port_state_type state)544 int br_mrp_set_port_state(struct net_bridge_port *p,
545 enum br_mrp_port_state_type state)
546 {
547 u32 port_state;
548
549 if (!p || !(p->flags & BR_MRP_AWARE))
550 return -EINVAL;
551
552 spin_lock_bh(&p->br->lock);
553
554 if (state == BR_MRP_PORT_STATE_FORWARDING)
555 port_state = BR_STATE_FORWARDING;
556 else
557 port_state = BR_STATE_BLOCKING;
558
559 p->state = port_state;
560 spin_unlock_bh(&p->br->lock);
561
562 br_mrp_port_switchdev_set_state(p, port_state);
563
564 return 0;
565 }
566
567 /* Set port role, port role can be primary or secondary
568 * note: already called with rtnl_lock
569 */
br_mrp_set_port_role(struct net_bridge_port * p,enum br_mrp_port_role_type role)570 int br_mrp_set_port_role(struct net_bridge_port *p,
571 enum br_mrp_port_role_type role)
572 {
573 struct br_mrp *mrp;
574
575 if (!p || !(p->flags & BR_MRP_AWARE))
576 return -EINVAL;
577
578 mrp = br_mrp_find_port(p->br, p);
579
580 if (!mrp)
581 return -EINVAL;
582
583 switch (role) {
584 case BR_MRP_PORT_ROLE_PRIMARY:
585 rcu_assign_pointer(mrp->p_port, p);
586 break;
587 case BR_MRP_PORT_ROLE_SECONDARY:
588 rcu_assign_pointer(mrp->s_port, p);
589 break;
590 default:
591 return -EINVAL;
592 }
593
594 br_mrp_port_switchdev_set_role(p, role);
595
596 return 0;
597 }
598
599 /* Set ring state, ring state can be only Open or Closed
600 * note: already called with rtnl_lock
601 */
br_mrp_set_ring_state(struct net_bridge * br,struct br_mrp_ring_state * state)602 int br_mrp_set_ring_state(struct net_bridge *br,
603 struct br_mrp_ring_state *state)
604 {
605 struct br_mrp *mrp = br_mrp_find_id(br, state->ring_id);
606
607 if (!mrp)
608 return -EINVAL;
609
610 if (mrp->ring_state != state->ring_state)
611 mrp->ring_transitions++;
612
613 mrp->ring_state = state->ring_state;
614
615 br_mrp_switchdev_set_ring_state(br, mrp, state->ring_state);
616
617 return 0;
618 }
619
620 /* Set ring role, ring role can be only MRM(Media Redundancy Manager) or
621 * MRC(Media Redundancy Client).
622 * note: already called with rtnl_lock
623 */
br_mrp_set_ring_role(struct net_bridge * br,struct br_mrp_ring_role * role)624 int br_mrp_set_ring_role(struct net_bridge *br,
625 struct br_mrp_ring_role *role)
626 {
627 struct br_mrp *mrp = br_mrp_find_id(br, role->ring_id);
628 int err;
629
630 if (!mrp)
631 return -EINVAL;
632
633 mrp->ring_role = role->ring_role;
634
635 /* If there is an error just bailed out */
636 err = br_mrp_switchdev_set_ring_role(br, mrp, role->ring_role);
637 if (err && err != -EOPNOTSUPP)
638 return err;
639
640 /* Now detect if the HW actually applied the role or not. If the HW
641 * applied the role it means that the SW will not to do those operations
642 * anymore. For example if the role ir MRM then the HW will notify the
643 * SW when ring is open, but if the is not pushed to the HW the SW will
644 * need to detect when the ring is open
645 */
646 mrp->ring_role_offloaded = err == -EOPNOTSUPP ? 0 : 1;
647
648 return 0;
649 }
650
651 /* Start to generate or monitor MRP test frames, the frames are generated by
652 * HW and if it fails, they are generated by the SW.
653 * note: already called with rtnl_lock
654 */
br_mrp_start_test(struct net_bridge * br,struct br_mrp_start_test * test)655 int br_mrp_start_test(struct net_bridge *br,
656 struct br_mrp_start_test *test)
657 {
658 struct br_mrp *mrp = br_mrp_find_id(br, test->ring_id);
659
660 if (!mrp)
661 return -EINVAL;
662
663 /* Try to push it to the HW and if it fails then continue with SW
664 * implementation and if that also fails then return error.
665 */
666 if (!br_mrp_switchdev_send_ring_test(br, mrp, test->interval,
667 test->max_miss, test->period,
668 test->monitor))
669 return 0;
670
671 mrp->test_interval = test->interval;
672 mrp->test_end = jiffies + usecs_to_jiffies(test->period);
673 mrp->test_max_miss = test->max_miss;
674 mrp->test_monitor = test->monitor;
675 mrp->test_count_miss = 0;
676 queue_delayed_work(system_wq, &mrp->test_work,
677 usecs_to_jiffies(test->interval));
678
679 return 0;
680 }
681
682 /* Set in state, int state can be only Open or Closed
683 * note: already called with rtnl_lock
684 */
br_mrp_set_in_state(struct net_bridge * br,struct br_mrp_in_state * state)685 int br_mrp_set_in_state(struct net_bridge *br, struct br_mrp_in_state *state)
686 {
687 struct br_mrp *mrp = br_mrp_find_in_id(br, state->in_id);
688
689 if (!mrp)
690 return -EINVAL;
691
692 if (mrp->in_state != state->in_state)
693 mrp->in_transitions++;
694
695 mrp->in_state = state->in_state;
696
697 br_mrp_switchdev_set_in_state(br, mrp, state->in_state);
698
699 return 0;
700 }
701
702 /* Set in role, in role can be only MIM(Media Interconnection Manager) or
703 * MIC(Media Interconnection Client).
704 * note: already called with rtnl_lock
705 */
br_mrp_set_in_role(struct net_bridge * br,struct br_mrp_in_role * role)706 int br_mrp_set_in_role(struct net_bridge *br, struct br_mrp_in_role *role)
707 {
708 struct br_mrp *mrp = br_mrp_find_id(br, role->ring_id);
709 struct net_bridge_port *p;
710 int err;
711
712 if (!mrp)
713 return -EINVAL;
714
715 if (!br_mrp_get_port(br, role->i_ifindex))
716 return -EINVAL;
717
718 if (role->in_role == BR_MRP_IN_ROLE_DISABLED) {
719 u8 state;
720
721 /* It is not allowed to disable a port that doesn't exist */
722 p = rtnl_dereference(mrp->i_port);
723 if (!p)
724 return -EINVAL;
725
726 /* Stop the generating MRP_InTest frames */
727 cancel_delayed_work_sync(&mrp->in_test_work);
728 br_mrp_switchdev_send_in_test(br, mrp, 0, 0, 0);
729
730 /* Remove the port */
731 spin_lock_bh(&br->lock);
732 state = netif_running(br->dev) ?
733 BR_STATE_FORWARDING : BR_STATE_DISABLED;
734 p->state = state;
735 p->flags &= ~BR_MRP_AWARE;
736 spin_unlock_bh(&br->lock);
737 br_mrp_port_switchdev_set_state(p, state);
738 rcu_assign_pointer(mrp->i_port, NULL);
739
740 mrp->in_role = role->in_role;
741 mrp->in_id = 0;
742
743 return 0;
744 }
745
746 /* It is not possible to have the same port part of multiple rings */
747 if (!br_mrp_unique_ifindex(br, role->i_ifindex))
748 return -EINVAL;
749
750 /* It is not allowed to set a different interconnect port if the mrp
751 * instance has already one. First it needs to be disabled and after
752 * that set the new port
753 */
754 if (rcu_access_pointer(mrp->i_port))
755 return -EINVAL;
756
757 p = br_mrp_get_port(br, role->i_ifindex);
758 spin_lock_bh(&br->lock);
759 p->state = BR_STATE_FORWARDING;
760 p->flags |= BR_MRP_AWARE;
761 spin_unlock_bh(&br->lock);
762 rcu_assign_pointer(mrp->i_port, p);
763
764 mrp->in_role = role->in_role;
765 mrp->in_id = role->in_id;
766
767 /* If there is an error just bailed out */
768 err = br_mrp_switchdev_set_in_role(br, mrp, role->in_id,
769 role->ring_id, role->in_role);
770 if (err && err != -EOPNOTSUPP)
771 return err;
772
773 /* Now detect if the HW actually applied the role or not. If the HW
774 * applied the role it means that the SW will not to do those operations
775 * anymore. For example if the role is MIM then the HW will notify the
776 * SW when interconnect ring is open, but if the is not pushed to the HW
777 * the SW will need to detect when the interconnect ring is open.
778 */
779 mrp->in_role_offloaded = err == -EOPNOTSUPP ? 0 : 1;
780
781 return 0;
782 }
783
784 /* Start to generate MRP_InTest frames, the frames are generated by
785 * HW and if it fails, they are generated by the SW.
786 * note: already called with rtnl_lock
787 */
br_mrp_start_in_test(struct net_bridge * br,struct br_mrp_start_in_test * in_test)788 int br_mrp_start_in_test(struct net_bridge *br,
789 struct br_mrp_start_in_test *in_test)
790 {
791 struct br_mrp *mrp = br_mrp_find_in_id(br, in_test->in_id);
792
793 if (!mrp)
794 return -EINVAL;
795
796 if (mrp->in_role != BR_MRP_IN_ROLE_MIM)
797 return -EINVAL;
798
799 /* Try to push it to the HW and if it fails then continue with SW
800 * implementation and if that also fails then return error.
801 */
802 if (!br_mrp_switchdev_send_in_test(br, mrp, in_test->interval,
803 in_test->max_miss, in_test->period))
804 return 0;
805
806 mrp->in_test_interval = in_test->interval;
807 mrp->in_test_end = jiffies + usecs_to_jiffies(in_test->period);
808 mrp->in_test_max_miss = in_test->max_miss;
809 mrp->in_test_count_miss = 0;
810 queue_delayed_work(system_wq, &mrp->in_test_work,
811 usecs_to_jiffies(in_test->interval));
812
813 return 0;
814 }
815
816 /* Determin if the frame type is a ring frame */
br_mrp_ring_frame(struct sk_buff * skb)817 static bool br_mrp_ring_frame(struct sk_buff *skb)
818 {
819 const struct br_mrp_tlv_hdr *hdr;
820 struct br_mrp_tlv_hdr _hdr;
821
822 hdr = skb_header_pointer(skb, sizeof(uint16_t), sizeof(_hdr), &_hdr);
823 if (!hdr)
824 return false;
825
826 if (hdr->type == BR_MRP_TLV_HEADER_RING_TEST ||
827 hdr->type == BR_MRP_TLV_HEADER_RING_TOPO ||
828 hdr->type == BR_MRP_TLV_HEADER_RING_LINK_DOWN ||
829 hdr->type == BR_MRP_TLV_HEADER_RING_LINK_UP ||
830 hdr->type == BR_MRP_TLV_HEADER_OPTION)
831 return true;
832
833 return false;
834 }
835
836 /* Determin if the frame type is an interconnect frame */
br_mrp_in_frame(struct sk_buff * skb)837 static bool br_mrp_in_frame(struct sk_buff *skb)
838 {
839 const struct br_mrp_tlv_hdr *hdr;
840 struct br_mrp_tlv_hdr _hdr;
841
842 hdr = skb_header_pointer(skb, sizeof(uint16_t), sizeof(_hdr), &_hdr);
843 if (!hdr)
844 return false;
845
846 if (hdr->type == BR_MRP_TLV_HEADER_IN_TEST ||
847 hdr->type == BR_MRP_TLV_HEADER_IN_TOPO ||
848 hdr->type == BR_MRP_TLV_HEADER_IN_LINK_DOWN ||
849 hdr->type == BR_MRP_TLV_HEADER_IN_LINK_UP)
850 return true;
851
852 return false;
853 }
854
855 /* Process only MRP Test frame. All the other MRP frames are processed by
856 * userspace application
857 * note: already called with rcu_read_lock
858 */
br_mrp_mrm_process(struct br_mrp * mrp,struct net_bridge_port * port,struct sk_buff * skb)859 static void br_mrp_mrm_process(struct br_mrp *mrp, struct net_bridge_port *port,
860 struct sk_buff *skb)
861 {
862 const struct br_mrp_tlv_hdr *hdr;
863 struct br_mrp_tlv_hdr _hdr;
864
865 /* Each MRP header starts with a version field which is 16 bits.
866 * Therefore skip the version and get directly the TLV header.
867 */
868 hdr = skb_header_pointer(skb, sizeof(uint16_t), sizeof(_hdr), &_hdr);
869 if (!hdr)
870 return;
871
872 if (hdr->type != BR_MRP_TLV_HEADER_RING_TEST)
873 return;
874
875 mrp->test_count_miss = 0;
876
877 /* Notify the userspace that the ring is closed only when the ring is
878 * not closed
879 */
880 if (mrp->ring_state != BR_MRP_RING_STATE_CLOSED)
881 br_mrp_ring_port_open(port->dev, false);
882 }
883
884 /* Determin if the test hdr has a better priority than the node */
br_mrp_test_better_than_own(struct br_mrp * mrp,struct net_bridge * br,const struct br_mrp_ring_test_hdr * hdr)885 static bool br_mrp_test_better_than_own(struct br_mrp *mrp,
886 struct net_bridge *br,
887 const struct br_mrp_ring_test_hdr *hdr)
888 {
889 u16 prio = be16_to_cpu(hdr->prio);
890
891 if (prio < mrp->prio ||
892 (prio == mrp->prio &&
893 ether_addr_to_u64(hdr->sa) < ether_addr_to_u64(br->dev->dev_addr)))
894 return true;
895
896 return false;
897 }
898
899 /* Process only MRP Test frame. All the other MRP frames are processed by
900 * userspace application
901 * note: already called with rcu_read_lock
902 */
br_mrp_mra_process(struct br_mrp * mrp,struct net_bridge * br,struct net_bridge_port * port,struct sk_buff * skb)903 static void br_mrp_mra_process(struct br_mrp *mrp, struct net_bridge *br,
904 struct net_bridge_port *port,
905 struct sk_buff *skb)
906 {
907 const struct br_mrp_ring_test_hdr *test_hdr;
908 struct br_mrp_ring_test_hdr _test_hdr;
909 const struct br_mrp_tlv_hdr *hdr;
910 struct br_mrp_tlv_hdr _hdr;
911
912 /* Each MRP header starts with a version field which is 16 bits.
913 * Therefore skip the version and get directly the TLV header.
914 */
915 hdr = skb_header_pointer(skb, sizeof(uint16_t), sizeof(_hdr), &_hdr);
916 if (!hdr)
917 return;
918
919 if (hdr->type != BR_MRP_TLV_HEADER_RING_TEST)
920 return;
921
922 test_hdr = skb_header_pointer(skb, sizeof(uint16_t) + sizeof(_hdr),
923 sizeof(_test_hdr), &_test_hdr);
924 if (!test_hdr)
925 return;
926
927 /* Only frames that have a better priority than the node will
928 * clear the miss counter because otherwise the node will need to behave
929 * as MRM.
930 */
931 if (br_mrp_test_better_than_own(mrp, br, test_hdr))
932 mrp->test_count_miss = 0;
933 }
934
935 /* Process only MRP InTest frame. All the other MRP frames are processed by
936 * userspace application
937 * note: already called with rcu_read_lock
938 */
br_mrp_mim_process(struct br_mrp * mrp,struct net_bridge_port * port,struct sk_buff * skb)939 static bool br_mrp_mim_process(struct br_mrp *mrp, struct net_bridge_port *port,
940 struct sk_buff *skb)
941 {
942 const struct br_mrp_in_test_hdr *in_hdr;
943 struct br_mrp_in_test_hdr _in_hdr;
944 const struct br_mrp_tlv_hdr *hdr;
945 struct br_mrp_tlv_hdr _hdr;
946
947 /* Each MRP header starts with a version field which is 16 bits.
948 * Therefore skip the version and get directly the TLV header.
949 */
950 hdr = skb_header_pointer(skb, sizeof(uint16_t), sizeof(_hdr), &_hdr);
951 if (!hdr)
952 return false;
953
954 /* The check for InTest frame type was already done */
955 in_hdr = skb_header_pointer(skb, sizeof(uint16_t) + sizeof(_hdr),
956 sizeof(_in_hdr), &_in_hdr);
957 if (!in_hdr)
958 return false;
959
960 /* It needs to process only it's own InTest frames. */
961 if (mrp->in_id != ntohs(in_hdr->id))
962 return false;
963
964 mrp->in_test_count_miss = 0;
965
966 /* Notify the userspace that the ring is closed only when the ring is
967 * not closed
968 */
969 if (mrp->in_state != BR_MRP_IN_STATE_CLOSED)
970 br_mrp_in_port_open(port->dev, false);
971
972 return true;
973 }
974
975 /* Get the MRP frame type
976 * note: already called with rcu_read_lock
977 */
br_mrp_get_frame_type(struct sk_buff * skb)978 static u8 br_mrp_get_frame_type(struct sk_buff *skb)
979 {
980 const struct br_mrp_tlv_hdr *hdr;
981 struct br_mrp_tlv_hdr _hdr;
982
983 /* Each MRP header starts with a version field which is 16 bits.
984 * Therefore skip the version and get directly the TLV header.
985 */
986 hdr = skb_header_pointer(skb, sizeof(uint16_t), sizeof(_hdr), &_hdr);
987 if (!hdr)
988 return 0xff;
989
990 return hdr->type;
991 }
992
br_mrp_mrm_behaviour(struct br_mrp * mrp)993 static bool br_mrp_mrm_behaviour(struct br_mrp *mrp)
994 {
995 if (mrp->ring_role == BR_MRP_RING_ROLE_MRM ||
996 (mrp->ring_role == BR_MRP_RING_ROLE_MRA && !mrp->test_monitor))
997 return true;
998
999 return false;
1000 }
1001
br_mrp_mrc_behaviour(struct br_mrp * mrp)1002 static bool br_mrp_mrc_behaviour(struct br_mrp *mrp)
1003 {
1004 if (mrp->ring_role == BR_MRP_RING_ROLE_MRC ||
1005 (mrp->ring_role == BR_MRP_RING_ROLE_MRA && mrp->test_monitor))
1006 return true;
1007
1008 return false;
1009 }
1010
1011 /* This will just forward the frame to the other mrp ring ports, depending on
1012 * the frame type, ring role and interconnect role
1013 * note: already called with rcu_read_lock
1014 */
br_mrp_rcv(struct net_bridge_port * p,struct sk_buff * skb,struct net_device * dev)1015 static int br_mrp_rcv(struct net_bridge_port *p,
1016 struct sk_buff *skb, struct net_device *dev)
1017 {
1018 struct net_bridge_port *p_port, *s_port, *i_port = NULL;
1019 struct net_bridge_port *p_dst, *s_dst, *i_dst = NULL;
1020 struct net_bridge *br;
1021 struct br_mrp *mrp;
1022
1023 /* If port is disabled don't accept any frames */
1024 if (p->state == BR_STATE_DISABLED)
1025 return 0;
1026
1027 br = p->br;
1028 mrp = br_mrp_find_port(br, p);
1029 if (unlikely(!mrp))
1030 return 0;
1031
1032 p_port = rcu_dereference(mrp->p_port);
1033 if (!p_port)
1034 return 0;
1035 p_dst = p_port;
1036
1037 s_port = rcu_dereference(mrp->s_port);
1038 if (!s_port)
1039 return 0;
1040 s_dst = s_port;
1041
1042 /* If the frame is a ring frame then it is not required to check the
1043 * interconnect role and ports to process or forward the frame
1044 */
1045 if (br_mrp_ring_frame(skb)) {
1046 /* If the role is MRM then don't forward the frames */
1047 if (mrp->ring_role == BR_MRP_RING_ROLE_MRM) {
1048 br_mrp_mrm_process(mrp, p, skb);
1049 goto no_forward;
1050 }
1051
1052 /* If the role is MRA then don't forward the frames if it
1053 * behaves as MRM node
1054 */
1055 if (mrp->ring_role == BR_MRP_RING_ROLE_MRA) {
1056 if (!mrp->test_monitor) {
1057 br_mrp_mrm_process(mrp, p, skb);
1058 goto no_forward;
1059 }
1060
1061 br_mrp_mra_process(mrp, br, p, skb);
1062 }
1063
1064 goto forward;
1065 }
1066
1067 if (br_mrp_in_frame(skb)) {
1068 u8 in_type = br_mrp_get_frame_type(skb);
1069
1070 i_port = rcu_dereference(mrp->i_port);
1071 i_dst = i_port;
1072
1073 /* If the ring port is in block state it should not forward
1074 * In_Test frames
1075 */
1076 if (br_mrp_is_ring_port(p_port, s_port, p) &&
1077 p->state == BR_STATE_BLOCKING &&
1078 in_type == BR_MRP_TLV_HEADER_IN_TEST)
1079 goto no_forward;
1080
1081 /* Nodes that behaves as MRM needs to stop forwarding the
1082 * frames in case the ring is closed, otherwise will be a loop.
1083 * In this case the frame is no forward between the ring ports.
1084 */
1085 if (br_mrp_mrm_behaviour(mrp) &&
1086 br_mrp_is_ring_port(p_port, s_port, p) &&
1087 (s_port->state != BR_STATE_FORWARDING ||
1088 p_port->state != BR_STATE_FORWARDING)) {
1089 p_dst = NULL;
1090 s_dst = NULL;
1091 }
1092
1093 /* A node that behaves as MRC and doesn't have a interconnect
1094 * role then it should forward all frames between the ring ports
1095 * because it doesn't have an interconnect port
1096 */
1097 if (br_mrp_mrc_behaviour(mrp) &&
1098 mrp->in_role == BR_MRP_IN_ROLE_DISABLED)
1099 goto forward;
1100
1101 if (mrp->in_role == BR_MRP_IN_ROLE_MIM) {
1102 if (in_type == BR_MRP_TLV_HEADER_IN_TEST) {
1103 /* MIM should not forward it's own InTest
1104 * frames
1105 */
1106 if (br_mrp_mim_process(mrp, p, skb)) {
1107 goto no_forward;
1108 } else {
1109 if (br_mrp_is_ring_port(p_port, s_port,
1110 p))
1111 i_dst = NULL;
1112
1113 if (br_mrp_is_in_port(i_port, p))
1114 goto no_forward;
1115 }
1116 } else {
1117 /* MIM should forward IntLinkChange and
1118 * IntTopoChange between ring ports but MIM
1119 * should not forward IntLinkChange and
1120 * IntTopoChange if the frame was received at
1121 * the interconnect port
1122 */
1123 if (br_mrp_is_ring_port(p_port, s_port, p))
1124 i_dst = NULL;
1125
1126 if (br_mrp_is_in_port(i_port, p))
1127 goto no_forward;
1128 }
1129 }
1130
1131 if (mrp->in_role == BR_MRP_IN_ROLE_MIC) {
1132 /* MIC should forward InTest frames on all ports
1133 * regardless of the received port
1134 */
1135 if (in_type == BR_MRP_TLV_HEADER_IN_TEST)
1136 goto forward;
1137
1138 /* MIC should forward IntLinkChange frames only if they
1139 * are received on ring ports to all the ports
1140 */
1141 if (br_mrp_is_ring_port(p_port, s_port, p) &&
1142 (in_type == BR_MRP_TLV_HEADER_IN_LINK_UP ||
1143 in_type == BR_MRP_TLV_HEADER_IN_LINK_DOWN))
1144 goto forward;
1145
1146 /* Should forward the InTopo frames only between the
1147 * ring ports
1148 */
1149 if (in_type == BR_MRP_TLV_HEADER_IN_TOPO) {
1150 i_dst = NULL;
1151 goto forward;
1152 }
1153
1154 /* In all the other cases don't forward the frames */
1155 goto no_forward;
1156 }
1157 }
1158
1159 forward:
1160 if (p_dst)
1161 br_forward(p_dst, skb, true, false);
1162 if (s_dst)
1163 br_forward(s_dst, skb, true, false);
1164 if (i_dst)
1165 br_forward(i_dst, skb, true, false);
1166
1167 no_forward:
1168 return 1;
1169 }
1170
1171 /* Check if the frame was received on a port that is part of MRP ring
1172 * and if the frame has MRP eth. In that case process the frame otherwise do
1173 * normal forwarding.
1174 * note: already called with rcu_read_lock
1175 */
br_mrp_process(struct net_bridge_port * p,struct sk_buff * skb)1176 int br_mrp_process(struct net_bridge_port *p, struct sk_buff *skb)
1177 {
1178 /* If there is no MRP instance do normal forwarding */
1179 if (likely(!(p->flags & BR_MRP_AWARE)))
1180 goto out;
1181
1182 if (unlikely(skb->protocol == htons(ETH_P_MRP)))
1183 return br_mrp_rcv(p, skb, p->dev);
1184
1185 out:
1186 return 0;
1187 }
1188
br_mrp_enabled(struct net_bridge * br)1189 bool br_mrp_enabled(struct net_bridge *br)
1190 {
1191 return !list_empty(&br->mrp_list);
1192 }
1193