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[mirror_frr.git] / ospfd / ospf_interface.c
1 /*
2 * OSPF Interface functions.
3 * Copyright (C) 1999, 2000 Toshiaki Takada
4 *
5 * This file is part of GNU Zebra.
6 *
7 * GNU Zebra is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published
9 * by the Free Software Foundation; either version 2, or (at your
10 * option) any later version.
11 *
12 * GNU Zebra is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License along
18 * with this program; see the file COPYING; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
22 #include <zebra.h>
23
24 #include "thread.h"
25 #include "linklist.h"
26 #include "prefix.h"
27 #include "if.h"
28 #include "table.h"
29 #include "memory.h"
30 #include "command.h"
31 #include "stream.h"
32 #include "log.h"
33 #include "zclient.h"
34 #include "bfd.h"
35
36 #include "ospfd/ospfd.h"
37 #include "ospfd/ospf_spf.h"
38 #include "ospfd/ospf_interface.h"
39 #include "ospfd/ospf_ism.h"
40 #include "ospfd/ospf_asbr.h"
41 #include "ospfd/ospf_lsa.h"
42 #include "ospfd/ospf_lsdb.h"
43 #include "ospfd/ospf_neighbor.h"
44 #include "ospfd/ospf_nsm.h"
45 #include "ospfd/ospf_packet.h"
46 #include "ospfd/ospf_abr.h"
47 #include "ospfd/ospf_network.h"
48 #include "ospfd/ospf_dump.h"
49
50 DEFINE_QOBJ_TYPE(ospf_interface)
51 DEFINE_HOOK(ospf_vl_add, (struct ospf_vl_data * vd), (vd))
52 DEFINE_HOOK(ospf_vl_delete, (struct ospf_vl_data * vd), (vd))
53 DEFINE_HOOK(ospf_if_update, (struct interface * ifp), (ifp))
54 DEFINE_HOOK(ospf_if_delete, (struct interface * ifp), (ifp))
55
56 int ospf_interface_neighbor_count(struct ospf_interface *oi)
57 {
58 int count = 0;
59 struct route_node *rn;
60 struct ospf_neighbor *nbr = NULL;
61
62 for (rn = route_top(oi->nbrs); rn; rn = route_next(rn)) {
63 nbr = rn->info;
64 if (nbr) {
65 /* Do not show myself. */
66 if (nbr == oi->nbr_self)
67 continue;
68 /* Down state is not shown. */
69 if (nbr->state == NSM_Down)
70 continue;
71 count++;
72 }
73 }
74
75 return count;
76 }
77
78 int ospf_if_get_output_cost(struct ospf_interface *oi)
79 {
80 /* If all else fails, use default OSPF cost */
81 uint32_t cost;
82 uint32_t bw, refbw;
83
84 /* ifp speed and bw can be 0 in some platforms, use ospf default bw
85 if bw is configured under interface it would be used.
86 */
87 if (!oi->ifp->bandwidth && oi->ifp->speed)
88 bw = oi->ifp->speed;
89 else
90 bw = oi->ifp->bandwidth ? oi->ifp->bandwidth
91 : OSPF_DEFAULT_BANDWIDTH;
92 refbw = oi->ospf->ref_bandwidth;
93
94 /* A specifed ip ospf cost overrides a calculated one. */
95 if (OSPF_IF_PARAM_CONFIGURED(IF_DEF_PARAMS(oi->ifp), output_cost_cmd)
96 || OSPF_IF_PARAM_CONFIGURED(oi->params, output_cost_cmd))
97 cost = OSPF_IF_PARAM(oi, output_cost_cmd);
98 /* See if a cost can be calculated from the zebra processes
99 interface bandwidth field. */
100 else {
101 cost = (uint32_t)((double)refbw / (double)bw + (double)0.5);
102 if (cost < 1)
103 cost = 1;
104 else if (cost > 65535)
105 cost = 65535;
106 }
107
108 return cost;
109 }
110
111 void ospf_if_recalculate_output_cost(struct interface *ifp)
112 {
113 uint32_t newcost;
114 struct route_node *rn;
115
116 for (rn = route_top(IF_OIFS(ifp)); rn; rn = route_next(rn)) {
117 struct ospf_interface *oi;
118
119 if ((oi = rn->info) == NULL)
120 continue;
121
122 newcost = ospf_if_get_output_cost(oi);
123
124 /* Is actual output cost changed? */
125 if (oi->output_cost != newcost) {
126 oi->output_cost = newcost;
127 ospf_router_lsa_update_area(oi->area);
128 }
129 }
130 }
131
132 /* Simulate down/up on the interface. This is needed, for example, when
133 the MTU changes. */
134 void ospf_if_reset(struct interface *ifp)
135 {
136 struct route_node *rn;
137
138 for (rn = route_top(IF_OIFS(ifp)); rn; rn = route_next(rn)) {
139 struct ospf_interface *oi;
140
141 if ((oi = rn->info) == NULL)
142 continue;
143
144 ospf_if_down(oi);
145 ospf_if_up(oi);
146 }
147 }
148
149 void ospf_if_reset_variables(struct ospf_interface *oi)
150 {
151 /* Set default values. */
152 /* don't clear this flag. oi->flag = OSPF_IF_DISABLE; */
153
154 if (oi->vl_data)
155 oi->type = OSPF_IFTYPE_VIRTUALLINK;
156 else
157 /* preserve network-type */
158 if (oi->type != OSPF_IFTYPE_NBMA)
159 oi->type = OSPF_IFTYPE_BROADCAST;
160
161 oi->state = ISM_Down;
162
163 oi->crypt_seqnum = 0;
164
165 /* This must be short, (less than RxmtInterval)
166 - RFC 2328 Section 13.5 para 3. Set to 1 second to avoid Acks being
167 held back for too long - MAG */
168 oi->v_ls_ack = 1;
169 }
170
171 /* lookup oi for specified prefix/ifp */
172 struct ospf_interface *ospf_if_table_lookup(struct interface *ifp,
173 struct prefix *prefix)
174 {
175 struct prefix p;
176 struct route_node *rn;
177 struct ospf_interface *rninfo = NULL;
178
179 p = *prefix;
180 p.prefixlen = IPV4_MAX_PREFIXLEN;
181
182 /* route_node_get implicitely locks */
183 if ((rn = route_node_lookup(IF_OIFS(ifp), &p))) {
184 rninfo = (struct ospf_interface *)rn->info;
185 route_unlock_node(rn);
186 }
187
188 return rninfo;
189 }
190
191 static void ospf_add_to_if(struct interface *ifp, struct ospf_interface *oi)
192 {
193 struct route_node *rn;
194 struct prefix p;
195
196 p = *oi->address;
197 p.prefixlen = IPV4_MAX_PREFIXLEN;
198 apply_mask(&p);
199
200 rn = route_node_get(IF_OIFS(ifp), &p);
201 /* rn->info should either be NULL or equal to this oi
202 * as route_node_get may return an existing node
203 */
204 assert(!rn->info || rn->info == oi);
205 rn->info = oi;
206 }
207
208 static void ospf_delete_from_if(struct interface *ifp,
209 struct ospf_interface *oi)
210 {
211 struct route_node *rn;
212 struct prefix p;
213
214 p = *oi->address;
215 p.prefixlen = IPV4_MAX_PREFIXLEN;
216
217 rn = route_node_lookup(IF_OIFS(oi->ifp), &p);
218 assert(rn);
219 assert(rn->info);
220 rn->info = NULL;
221 route_unlock_node(rn);
222 route_unlock_node(rn);
223 }
224
225 struct ospf_interface *ospf_if_new(struct ospf *ospf, struct interface *ifp,
226 struct prefix *p)
227 {
228 struct ospf_interface *oi;
229
230 oi = ospf_if_table_lookup(ifp, p);
231 if (oi)
232 return oi;
233
234 oi = XCALLOC(MTYPE_OSPF_IF, sizeof(struct ospf_interface));
235
236 oi->obuf = ospf_fifo_new();
237
238 /* Set zebra interface pointer. */
239 oi->ifp = ifp;
240 oi->address = p;
241
242 ospf_add_to_if(ifp, oi);
243 listnode_add(ospf->oiflist, oi);
244
245 /* Initialize neighbor list. */
246 oi->nbrs = route_table_init();
247
248 /* Initialize static neighbor list. */
249 oi->nbr_nbma = list_new();
250
251 /* Initialize Link State Acknowledgment list. */
252 oi->ls_ack = list_new();
253 oi->ls_ack_direct.ls_ack = list_new();
254
255 /* Set default values. */
256 ospf_if_reset_variables(oi);
257
258 /* Set pseudo neighbor to Null */
259 oi->nbr_self = NULL;
260
261 oi->ls_upd_queue = route_table_init();
262 oi->t_ls_upd_event = NULL;
263 oi->t_ls_ack_direct = NULL;
264
265 oi->crypt_seqnum = time(NULL);
266
267 ospf_opaque_type9_lsa_init(oi);
268
269 oi->ospf = ospf;
270
271 QOBJ_REG(oi, ospf_interface);
272
273 if (IS_DEBUG_OSPF_EVENT)
274 zlog_debug("%s: ospf interface %s vrf %s id %u created",
275 __PRETTY_FUNCTION__, ifp->name,
276 ospf_get_name(ospf), ospf->vrf_id);
277
278 return oi;
279 }
280
281 /* Restore an interface to its pre UP state
282 Used from ism_interface_down only */
283 void ospf_if_cleanup(struct ospf_interface *oi)
284 {
285 struct route_node *rn;
286 struct listnode *node, *nnode;
287 struct ospf_neighbor *nbr;
288 struct ospf_nbr_nbma *nbr_nbma;
289 struct ospf_lsa *lsa;
290
291 /* oi->nbrs and oi->nbr_nbma should be deleted on InterfaceDown event */
292 /* delete all static neighbors attached to this interface */
293 for (ALL_LIST_ELEMENTS(oi->nbr_nbma, node, nnode, nbr_nbma)) {
294 OSPF_POLL_TIMER_OFF(nbr_nbma->t_poll);
295
296 if (nbr_nbma->nbr) {
297 nbr_nbma->nbr->nbr_nbma = NULL;
298 nbr_nbma->nbr = NULL;
299 }
300
301 nbr_nbma->oi = NULL;
302
303 listnode_delete(oi->nbr_nbma, nbr_nbma);
304 }
305
306 /* send Neighbor event KillNbr to all associated neighbors. */
307 for (rn = route_top(oi->nbrs); rn; rn = route_next(rn))
308 if ((nbr = rn->info) != NULL)
309 if (nbr != oi->nbr_self)
310 OSPF_NSM_EVENT_EXECUTE(nbr, NSM_KillNbr);
311
312 /* Cleanup Link State Acknowlegdment list. */
313 for (ALL_LIST_ELEMENTS(oi->ls_ack, node, nnode, lsa))
314 ospf_lsa_unlock(&lsa); /* oi->ls_ack */
315 list_delete_all_node(oi->ls_ack);
316
317 oi->crypt_seqnum = 0;
318
319 /* Empty link state update queue */
320 ospf_ls_upd_queue_empty(oi);
321
322 /* Reset pseudo neighbor. */
323 ospf_nbr_self_reset(oi, oi->ospf->router_id);
324 }
325
326 void ospf_if_free(struct ospf_interface *oi)
327 {
328 ospf_if_down(oi);
329
330 ospf_fifo_free(oi->obuf);
331
332 assert(oi->state == ISM_Down);
333
334 ospf_opaque_type9_lsa_term(oi);
335
336 QOBJ_UNREG(oi);
337
338 /* Free Pseudo Neighbour */
339 ospf_nbr_delete(oi->nbr_self);
340
341 route_table_finish(oi->nbrs);
342 route_table_finish(oi->ls_upd_queue);
343
344 /* Free any lists that should be freed */
345 list_delete(&oi->nbr_nbma);
346
347 list_delete(&oi->ls_ack);
348 list_delete(&oi->ls_ack_direct.ls_ack);
349
350 if (IS_DEBUG_OSPF_EVENT)
351 zlog_debug("%s: ospf interface %s vrf %s id %u deleted",
352 __PRETTY_FUNCTION__, oi->ifp->name,
353 ospf_vrf_id_to_name(oi->ifp->vrf_id),
354 oi->ifp->vrf_id);
355
356 ospf_delete_from_if(oi->ifp, oi);
357
358 listnode_delete(oi->ospf->oiflist, oi);
359 listnode_delete(oi->area->oiflist, oi);
360
361 thread_cancel_event(master, oi);
362
363 memset(oi, 0, sizeof(*oi));
364 XFREE(MTYPE_OSPF_IF, oi);
365 }
366
367 int ospf_if_is_up(struct ospf_interface *oi)
368 {
369 return if_is_up(oi->ifp);
370 }
371
372 struct ospf_interface *ospf_if_exists(struct ospf_interface *oic)
373 {
374 struct listnode *node;
375 struct ospf *ospf;
376 struct ospf_interface *oi;
377
378 if (!oic)
379 return NULL;
380
381 ospf = oic->ospf;
382 if (ospf == NULL)
383 return NULL;
384
385 for (ALL_LIST_ELEMENTS_RO(ospf->oiflist, node, oi))
386 if (oi == oic)
387 return oi;
388
389 return NULL;
390 }
391
392 /* Lookup OSPF interface by router LSA posistion */
393 struct ospf_interface *ospf_if_lookup_by_lsa_pos(struct ospf_area *area,
394 int lsa_pos)
395 {
396 struct listnode *node;
397 struct ospf_interface *oi;
398
399 for (ALL_LIST_ELEMENTS_RO(area->oiflist, node, oi)) {
400 if (lsa_pos >= oi->lsa_pos_beg && lsa_pos < oi->lsa_pos_end)
401 return oi;
402 }
403 return NULL;
404 }
405
406 struct ospf_interface *ospf_if_lookup_by_local_addr(struct ospf *ospf,
407 struct interface *ifp,
408 struct in_addr address)
409 {
410 struct listnode *node;
411 struct ospf_interface *oi;
412
413 for (ALL_LIST_ELEMENTS_RO(ospf->oiflist, node, oi))
414 if (oi->type != OSPF_IFTYPE_VIRTUALLINK) {
415 if (ifp && oi->ifp != ifp)
416 continue;
417
418 if (IPV4_ADDR_SAME(&address, &oi->address->u.prefix4))
419 return oi;
420 }
421
422 return NULL;
423 }
424
425 struct ospf_interface *ospf_if_lookup_by_prefix(struct ospf *ospf,
426 struct prefix_ipv4 *p)
427 {
428 struct listnode *node;
429 struct ospf_interface *oi;
430
431 /* Check each Interface. */
432 for (ALL_LIST_ELEMENTS_RO(ospf->oiflist, node, oi)) {
433 if (oi->type != OSPF_IFTYPE_VIRTUALLINK) {
434 struct prefix ptmp;
435
436 prefix_copy(&ptmp, CONNECTED_PREFIX(oi->connected));
437 apply_mask(&ptmp);
438 if (prefix_same(&ptmp, (struct prefix *)p))
439 return oi;
440 }
441 }
442 return NULL;
443 }
444
445 /* determine receiving interface by ifp and source address */
446 struct ospf_interface *ospf_if_lookup_recv_if(struct ospf *ospf,
447 struct in_addr src,
448 struct interface *ifp)
449 {
450 struct route_node *rn;
451 struct prefix_ipv4 addr;
452 struct ospf_interface *oi, *match;
453
454 addr.family = AF_INET;
455 addr.prefix = src;
456 addr.prefixlen = IPV4_MAX_BITLEN;
457
458 match = NULL;
459
460 for (rn = route_top(IF_OIFS(ifp)); rn; rn = route_next(rn)) {
461 oi = rn->info;
462
463 if (!oi) /* oi can be NULL for PtP aliases */
464 continue;
465
466 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
467 continue;
468
469 if (if_is_loopback(oi->ifp) || if_is_vrf(oi->ifp))
470 continue;
471
472 if (CHECK_FLAG(oi->connected->flags, ZEBRA_IFA_UNNUMBERED))
473 match = oi;
474 else if (prefix_match(CONNECTED_PREFIX(oi->connected),
475 (struct prefix *)&addr)) {
476 if ((match == NULL) || (match->address->prefixlen
477 < oi->address->prefixlen))
478 match = oi;
479 }
480 }
481
482 return match;
483 }
484
485 static void ospf_if_reset_stats(struct ospf_interface *oi)
486 {
487 oi->hello_in = oi->hello_out = 0;
488 oi->db_desc_in = oi->db_desc_out = 0;
489 oi->ls_req_in = oi->ls_req_out = 0;
490 oi->ls_upd_in = oi->ls_upd_out = 0;
491 oi->ls_ack_in = oi->ls_ack_out = 0;
492 }
493
494 void ospf_if_stream_unset(struct ospf_interface *oi)
495 {
496 struct ospf *ospf = oi->ospf;
497
498 /* flush the interface packet queue */
499 ospf_fifo_flush(oi->obuf);
500 /*reset protocol stats */
501 ospf_if_reset_stats(oi);
502
503 if (oi->on_write_q) {
504 listnode_delete(ospf->oi_write_q, oi);
505 if (list_isempty(ospf->oi_write_q))
506 OSPF_TIMER_OFF(ospf->t_write);
507 oi->on_write_q = 0;
508 }
509 }
510
511
512 static struct ospf_if_params *ospf_new_if_params(void)
513 {
514 struct ospf_if_params *oip;
515
516 oip = XCALLOC(MTYPE_OSPF_IF_PARAMS, sizeof(struct ospf_if_params));
517
518 UNSET_IF_PARAM(oip, output_cost_cmd);
519 UNSET_IF_PARAM(oip, transmit_delay);
520 UNSET_IF_PARAM(oip, retransmit_interval);
521 UNSET_IF_PARAM(oip, passive_interface);
522 UNSET_IF_PARAM(oip, v_hello);
523 UNSET_IF_PARAM(oip, fast_hello);
524 UNSET_IF_PARAM(oip, v_wait);
525 UNSET_IF_PARAM(oip, priority);
526 UNSET_IF_PARAM(oip, type);
527 UNSET_IF_PARAM(oip, auth_simple);
528 UNSET_IF_PARAM(oip, auth_crypt);
529 UNSET_IF_PARAM(oip, auth_type);
530
531 oip->auth_crypt = list_new();
532
533 oip->network_lsa_seqnum = htonl(OSPF_INITIAL_SEQUENCE_NUMBER);
534
535 return oip;
536 }
537
538 void ospf_del_if_params(struct ospf_if_params *oip)
539 {
540 list_delete(&oip->auth_crypt);
541 bfd_info_free(&(oip->bfd_info));
542 XFREE(MTYPE_OSPF_IF_PARAMS, oip);
543 }
544
545 void ospf_free_if_params(struct interface *ifp, struct in_addr addr)
546 {
547 struct ospf_if_params *oip;
548 struct prefix_ipv4 p;
549 struct route_node *rn;
550
551 p.family = AF_INET;
552 p.prefixlen = IPV4_MAX_PREFIXLEN;
553 p.prefix = addr;
554 rn = route_node_lookup(IF_OIFS_PARAMS(ifp), (struct prefix *)&p);
555 if (!rn || !rn->info)
556 return;
557
558 oip = rn->info;
559 route_unlock_node(rn);
560
561 if (!OSPF_IF_PARAM_CONFIGURED(oip, output_cost_cmd)
562 && !OSPF_IF_PARAM_CONFIGURED(oip, transmit_delay)
563 && !OSPF_IF_PARAM_CONFIGURED(oip, retransmit_interval)
564 && !OSPF_IF_PARAM_CONFIGURED(oip, passive_interface)
565 && !OSPF_IF_PARAM_CONFIGURED(oip, v_hello)
566 && !OSPF_IF_PARAM_CONFIGURED(oip, fast_hello)
567 && !OSPF_IF_PARAM_CONFIGURED(oip, v_wait)
568 && !OSPF_IF_PARAM_CONFIGURED(oip, priority)
569 && !OSPF_IF_PARAM_CONFIGURED(oip, type)
570 && !OSPF_IF_PARAM_CONFIGURED(oip, auth_simple)
571 && !OSPF_IF_PARAM_CONFIGURED(oip, auth_type)
572 && listcount(oip->auth_crypt) == 0
573 && ntohl(oip->network_lsa_seqnum) != OSPF_INITIAL_SEQUENCE_NUMBER) {
574 ospf_del_if_params(oip);
575 rn->info = NULL;
576 route_unlock_node(rn);
577 }
578 }
579
580 struct ospf_if_params *ospf_lookup_if_params(struct interface *ifp,
581 struct in_addr addr)
582 {
583 struct prefix_ipv4 p;
584 struct route_node *rn;
585
586 p.family = AF_INET;
587 p.prefixlen = IPV4_MAX_PREFIXLEN;
588 p.prefix = addr;
589
590 rn = route_node_lookup(IF_OIFS_PARAMS(ifp), (struct prefix *)&p);
591
592 if (rn) {
593 route_unlock_node(rn);
594 return rn->info;
595 }
596
597 return NULL;
598 }
599
600 struct ospf_if_params *ospf_get_if_params(struct interface *ifp,
601 struct in_addr addr)
602 {
603 struct prefix_ipv4 p;
604 struct route_node *rn;
605
606 p.family = AF_INET;
607 p.prefixlen = IPV4_MAX_PREFIXLEN;
608 p.prefix = addr;
609 apply_mask_ipv4(&p);
610
611 rn = route_node_get(IF_OIFS_PARAMS(ifp), (struct prefix *)&p);
612
613 if (rn->info == NULL)
614 rn->info = ospf_new_if_params();
615 else
616 route_unlock_node(rn);
617
618 return rn->info;
619 }
620
621 void ospf_if_update_params(struct interface *ifp, struct in_addr addr)
622 {
623 struct route_node *rn;
624 struct ospf_interface *oi;
625
626 for (rn = route_top(IF_OIFS(ifp)); rn; rn = route_next(rn)) {
627 if ((oi = rn->info) == NULL)
628 continue;
629
630 if (IPV4_ADDR_SAME(&oi->address->u.prefix4, &addr))
631 oi->params = ospf_lookup_if_params(
632 ifp, oi->address->u.prefix4);
633 }
634 }
635
636 int ospf_if_new_hook(struct interface *ifp)
637 {
638 int rc = 0;
639 struct ospf_if_info *oii;
640
641 ifp->info = XCALLOC(MTYPE_OSPF_IF_INFO, sizeof(struct ospf_if_info));
642
643 oii = ifp->info;
644 oii->curr_mtu = ifp->mtu;
645
646 IF_OIFS(ifp) = route_table_init();
647 IF_OIFS_PARAMS(ifp) = route_table_init();
648
649 IF_DEF_PARAMS(ifp) = ospf_new_if_params();
650
651 SET_IF_PARAM(IF_DEF_PARAMS(ifp), transmit_delay);
652 IF_DEF_PARAMS(ifp)->transmit_delay = OSPF_TRANSMIT_DELAY_DEFAULT;
653
654 SET_IF_PARAM(IF_DEF_PARAMS(ifp), retransmit_interval);
655 IF_DEF_PARAMS(ifp)->retransmit_interval =
656 OSPF_RETRANSMIT_INTERVAL_DEFAULT;
657
658 SET_IF_PARAM(IF_DEF_PARAMS(ifp), priority);
659 IF_DEF_PARAMS(ifp)->priority = OSPF_ROUTER_PRIORITY_DEFAULT;
660
661 IF_DEF_PARAMS(ifp)->mtu_ignore = OSPF_MTU_IGNORE_DEFAULT;
662
663 SET_IF_PARAM(IF_DEF_PARAMS(ifp), v_hello);
664 IF_DEF_PARAMS(ifp)->v_hello = OSPF_HELLO_INTERVAL_DEFAULT;
665
666 SET_IF_PARAM(IF_DEF_PARAMS(ifp), fast_hello);
667 IF_DEF_PARAMS(ifp)->fast_hello = OSPF_FAST_HELLO_DEFAULT;
668
669 SET_IF_PARAM(IF_DEF_PARAMS(ifp), v_wait);
670 IF_DEF_PARAMS(ifp)->v_wait = OSPF_ROUTER_DEAD_INTERVAL_DEFAULT;
671
672 SET_IF_PARAM(IF_DEF_PARAMS(ifp), auth_simple);
673 memset(IF_DEF_PARAMS(ifp)->auth_simple, 0, OSPF_AUTH_SIMPLE_SIZE);
674
675 SET_IF_PARAM(IF_DEF_PARAMS(ifp), auth_type);
676 IF_DEF_PARAMS(ifp)->auth_type = OSPF_AUTH_NOTSET;
677
678 rc = ospf_opaque_new_if(ifp);
679 return rc;
680 }
681
682 static int ospf_if_delete_hook(struct interface *ifp)
683 {
684 int rc = 0;
685 struct route_node *rn;
686 rc = ospf_opaque_del_if(ifp);
687
688 route_table_finish(IF_OIFS(ifp));
689
690 for (rn = route_top(IF_OIFS_PARAMS(ifp)); rn; rn = route_next(rn))
691 if (rn->info)
692 ospf_del_if_params(rn->info);
693 route_table_finish(IF_OIFS_PARAMS(ifp));
694
695 ospf_del_if_params((struct ospf_if_params *)IF_DEF_PARAMS(ifp));
696 XFREE(MTYPE_OSPF_IF_INFO, ifp->info);
697
698 return rc;
699 }
700
701 int ospf_if_is_enable(struct ospf_interface *oi)
702 {
703 if (!(if_is_loopback(oi->ifp) || if_is_vrf(oi->ifp)))
704 if (if_is_up(oi->ifp))
705 return 1;
706
707 return 0;
708 }
709
710 void ospf_if_set_multicast(struct ospf_interface *oi)
711 {
712 if ((oi->state > ISM_Loopback) && (oi->type != OSPF_IFTYPE_LOOPBACK)
713 && (oi->type != OSPF_IFTYPE_VIRTUALLINK)
714 && (OSPF_IF_PASSIVE_STATUS(oi) == OSPF_IF_ACTIVE)) {
715 /* The interface should belong to the OSPF-all-routers group. */
716 if (!OI_MEMBER_CHECK(oi, MEMBER_ALLROUTERS)
717 && (ospf_if_add_allspfrouters(oi->ospf, oi->address,
718 oi->ifp->ifindex)
719 >= 0))
720 /* Set the flag only if the system call to join
721 * succeeded. */
722 OI_MEMBER_JOINED(oi, MEMBER_ALLROUTERS);
723 } else {
724 /* The interface should NOT belong to the OSPF-all-routers
725 * group. */
726 if (OI_MEMBER_CHECK(oi, MEMBER_ALLROUTERS)) {
727 /* Only actually drop if this is the last reference */
728 if (OI_MEMBER_COUNT(oi, MEMBER_ALLROUTERS) == 1)
729 ospf_if_drop_allspfrouters(oi->ospf,
730 oi->address,
731 oi->ifp->ifindex);
732 /* Unset the flag regardless of whether the system call
733 to leave
734 the group succeeded, since it's much safer to assume
735 that
736 we are not a member. */
737 OI_MEMBER_LEFT(oi, MEMBER_ALLROUTERS);
738 }
739 }
740
741 if (((oi->type == OSPF_IFTYPE_BROADCAST)
742 || (oi->type == OSPF_IFTYPE_POINTOPOINT))
743 && ((oi->state == ISM_DR) || (oi->state == ISM_Backup))
744 && (OSPF_IF_PASSIVE_STATUS(oi) == OSPF_IF_ACTIVE)) {
745 /* The interface should belong to the OSPF-designated-routers
746 * group. */
747 if (!OI_MEMBER_CHECK(oi, MEMBER_DROUTERS)
748 && (ospf_if_add_alldrouters(oi->ospf, oi->address,
749 oi->ifp->ifindex)
750 >= 0))
751 /* Set the flag only if the system call to join
752 * succeeded. */
753 OI_MEMBER_JOINED(oi, MEMBER_DROUTERS);
754 } else {
755 /* The interface should NOT belong to the
756 * OSPF-designated-routers group */
757 if (OI_MEMBER_CHECK(oi, MEMBER_DROUTERS)) {
758 /* drop only if last reference */
759 if (OI_MEMBER_COUNT(oi, MEMBER_DROUTERS) == 1)
760 ospf_if_drop_alldrouters(oi->ospf, oi->address,
761 oi->ifp->ifindex);
762
763 /* Unset the flag regardless of whether the system call
764 to leave
765 the group succeeded, since it's much safer to assume
766 that
767 we are not a member. */
768 OI_MEMBER_LEFT(oi, MEMBER_DROUTERS);
769 }
770 }
771 }
772
773 int ospf_if_up(struct ospf_interface *oi)
774 {
775 if (oi == NULL)
776 return 0;
777
778 if (oi->type == OSPF_IFTYPE_LOOPBACK)
779 OSPF_ISM_EVENT_SCHEDULE(oi, ISM_LoopInd);
780 else {
781 OSPF_ISM_EVENT_SCHEDULE(oi, ISM_InterfaceUp);
782 }
783
784 return 1;
785 }
786
787 int ospf_if_down(struct ospf_interface *oi)
788 {
789 if (oi == NULL)
790 return 0;
791
792 OSPF_ISM_EVENT_EXECUTE(oi, ISM_InterfaceDown);
793 /* delete position in router LSA */
794 oi->lsa_pos_beg = 0;
795 oi->lsa_pos_end = 0;
796 /* Shutdown packet reception and sending */
797 ospf_if_stream_unset(oi);
798
799 return 1;
800 }
801
802
803 /* Virtual Link related functions. */
804
805 struct ospf_vl_data *ospf_vl_data_new(struct ospf_area *area,
806 struct in_addr vl_peer)
807 {
808 struct ospf_vl_data *vl_data;
809
810 vl_data = XCALLOC(MTYPE_OSPF_VL_DATA, sizeof(struct ospf_vl_data));
811
812 vl_data->vl_peer.s_addr = vl_peer.s_addr;
813 vl_data->vl_area_id = area->area_id;
814 vl_data->vl_area_id_fmt = area->area_id_fmt;
815
816 return vl_data;
817 }
818
819 void ospf_vl_data_free(struct ospf_vl_data *vl_data)
820 {
821 XFREE(MTYPE_OSPF_VL_DATA, vl_data);
822 }
823
824 unsigned int vlink_count = 0;
825
826 struct ospf_interface *ospf_vl_new(struct ospf *ospf,
827 struct ospf_vl_data *vl_data)
828 {
829 struct ospf_interface *voi;
830 struct interface *vi;
831 char ifname[INTERFACE_NAMSIZ];
832 struct ospf_area *area;
833 struct in_addr area_id;
834 struct connected *co;
835 struct prefix_ipv4 *p;
836
837 if (IS_DEBUG_OSPF_EVENT)
838 zlog_debug("ospf_vl_new()(%s): Start", ospf_get_name(ospf));
839 if (vlink_count == OSPF_VL_MAX_COUNT) {
840 if (IS_DEBUG_OSPF_EVENT)
841 zlog_debug(
842 "ospf_vl_new(): Alarm: "
843 "cannot create more than OSPF_MAX_VL_COUNT virtual links");
844 return NULL;
845 }
846
847 if (IS_DEBUG_OSPF_EVENT)
848 zlog_debug(
849 "ospf_vl_new(): creating pseudo zebra interface vrf id %u",
850 ospf->vrf_id);
851
852 snprintf(ifname, sizeof(ifname), "VLINK%u", vlink_count);
853 vi = if_create_name(ifname, ospf->vrf_id);
854 /*
855 * if_create_name sets ZEBRA_INTERFACE_LINKDETECTION
856 * virtual links don't need this.
857 */
858 UNSET_FLAG(vi->status, ZEBRA_INTERFACE_LINKDETECTION);
859 co = connected_new();
860 co->ifp = vi;
861 listnode_add(vi->connected, co);
862
863 p = prefix_ipv4_new();
864 p->family = AF_INET;
865 p->prefix.s_addr = INADDR_ANY;
866 p->prefixlen = 0;
867
868 co->address = (struct prefix *)p;
869
870 voi = ospf_if_new(ospf, vi, co->address);
871 if (voi == NULL) {
872 if (IS_DEBUG_OSPF_EVENT)
873 zlog_debug(
874 "ospf_vl_new(): Alarm: OSPF int structure is not created");
875 return NULL;
876 }
877 voi->connected = co;
878 voi->vl_data = vl_data;
879 voi->ifp->mtu = OSPF_VL_MTU;
880 voi->type = OSPF_IFTYPE_VIRTUALLINK;
881
882 vlink_count++;
883 if (IS_DEBUG_OSPF_EVENT)
884 zlog_debug("ospf_vl_new(): Created name: %s", ifname);
885 if (IS_DEBUG_OSPF_EVENT)
886 zlog_debug("ospf_vl_new(): set if->name to %s", vi->name);
887
888 area_id.s_addr = INADDR_ANY;
889 area = ospf_area_get(ospf, area_id);
890 voi->area = area;
891
892 if (IS_DEBUG_OSPF_EVENT)
893 zlog_debug(
894 "ospf_vl_new(): set associated area to the backbone");
895
896 /* Add pseudo neighbor. */
897 ospf_nbr_self_reset(voi, voi->ospf->router_id);
898
899 ospf_area_add_if(voi->area, voi);
900
901 if (IS_DEBUG_OSPF_EVENT)
902 zlog_debug("ospf_vl_new(): Stop");
903 return voi;
904 }
905
906 static void ospf_vl_if_delete(struct ospf_vl_data *vl_data)
907 {
908 struct interface *ifp = vl_data->vl_oi->ifp;
909
910 vl_data->vl_oi->address->u.prefix4.s_addr = INADDR_ANY;
911 vl_data->vl_oi->address->prefixlen = 0;
912 ospf_if_free(vl_data->vl_oi);
913 if_delete(&ifp);
914 vlink_count--;
915 }
916
917 /* for a defined area, count the number of configured vl
918 */
919 int ospf_vl_count(struct ospf *ospf, struct ospf_area *area)
920 {
921 int count = 0;
922 struct ospf_vl_data *vl_data;
923 struct listnode *node;
924
925 for (ALL_LIST_ELEMENTS_RO(ospf->vlinks, node, vl_data)) {
926 if (area
927 && !IPV4_ADDR_SAME(&vl_data->vl_area_id, &area->area_id))
928 continue;
929 count++;
930 }
931 return count;
932 }
933
934 /* Look up vl_data for given peer, optionally qualified to be in the
935 * specified area. NULL area returns first found..
936 */
937 struct ospf_vl_data *ospf_vl_lookup(struct ospf *ospf, struct ospf_area *area,
938 struct in_addr vl_peer)
939 {
940 struct ospf_vl_data *vl_data;
941 struct listnode *node;
942
943 if (IS_DEBUG_OSPF_EVENT) {
944 zlog_debug("%s: Looking for %s", __func__, inet_ntoa(vl_peer));
945 if (area)
946 zlog_debug("%s: in area %s", __func__,
947 inet_ntoa(area->area_id));
948 }
949
950 for (ALL_LIST_ELEMENTS_RO(ospf->vlinks, node, vl_data)) {
951 if (IS_DEBUG_OSPF_EVENT)
952 zlog_debug("%s: VL %s, peer %s", __func__,
953 vl_data->vl_oi->ifp->name,
954 inet_ntoa(vl_data->vl_peer));
955
956 if (area
957 && !IPV4_ADDR_SAME(&vl_data->vl_area_id, &area->area_id))
958 continue;
959
960 if (IPV4_ADDR_SAME(&vl_data->vl_peer, &vl_peer))
961 return vl_data;
962 }
963
964 return NULL;
965 }
966
967 static void ospf_vl_shutdown(struct ospf_vl_data *vl_data)
968 {
969 struct ospf_interface *oi;
970
971 if ((oi = vl_data->vl_oi) == NULL)
972 return;
973
974 oi->address->u.prefix4.s_addr = INADDR_ANY;
975 oi->address->prefixlen = 0;
976
977 UNSET_FLAG(oi->ifp->flags, IFF_UP);
978 /* OSPF_ISM_EVENT_SCHEDULE (oi, ISM_InterfaceDown); */
979 OSPF_ISM_EVENT_EXECUTE(oi, ISM_InterfaceDown);
980 }
981
982 void ospf_vl_add(struct ospf *ospf, struct ospf_vl_data *vl_data)
983 {
984 listnode_add(ospf->vlinks, vl_data);
985 hook_call(ospf_vl_add, vl_data);
986 }
987
988 void ospf_vl_delete(struct ospf *ospf, struct ospf_vl_data *vl_data)
989 {
990 ospf_vl_shutdown(vl_data);
991 ospf_vl_if_delete(vl_data);
992
993 hook_call(ospf_vl_delete, vl_data);
994 listnode_delete(ospf->vlinks, vl_data);
995
996 ospf_vl_data_free(vl_data);
997 }
998
999 static int ospf_vl_set_params(struct ospf_vl_data *vl_data, struct vertex *v)
1000 {
1001 int changed = 0;
1002 struct ospf_interface *voi;
1003 struct listnode *node;
1004 struct vertex_parent *vp = NULL;
1005 unsigned int i;
1006 struct router_lsa *rl;
1007
1008 voi = vl_data->vl_oi;
1009
1010 if (voi->output_cost != v->distance) {
1011
1012 voi->output_cost = v->distance;
1013 changed = 1;
1014 }
1015
1016 for (ALL_LIST_ELEMENTS_RO(v->parents, node, vp)) {
1017 vl_data->nexthop.oi = vp->nexthop->oi;
1018 vl_data->nexthop.router = vp->nexthop->router;
1019
1020 if (!IPV4_ADDR_SAME(&voi->address->u.prefix4,
1021 &vl_data->nexthop.oi->address->u.prefix4))
1022 changed = 1;
1023
1024 voi->address->u.prefix4 =
1025 vl_data->nexthop.oi->address->u.prefix4;
1026 voi->address->prefixlen =
1027 vl_data->nexthop.oi->address->prefixlen;
1028
1029 break; /* We take the first interface. */
1030 }
1031
1032 rl = (struct router_lsa *)v->lsa;
1033
1034 /* use SPF determined backlink index in struct vertex
1035 * for virtual link destination address
1036 */
1037 if (vp && vp->backlink >= 0) {
1038 if (!IPV4_ADDR_SAME(&vl_data->peer_addr,
1039 &rl->link[vp->backlink].link_data))
1040 changed = 1;
1041 vl_data->peer_addr = rl->link[vp->backlink].link_data;
1042 } else {
1043 /* This is highly odd, there is no backlink index
1044 * there should be due to the ospf_spf_has_link() check
1045 * in SPF. Lets warn and try pick a link anyway.
1046 */
1047 zlog_info("ospf_vl_set_params: No backlink for %s!",
1048 vl_data->vl_oi->ifp->name);
1049 for (i = 0; i < ntohs(rl->links); i++) {
1050 switch (rl->link[i].type) {
1051 case LSA_LINK_TYPE_VIRTUALLINK:
1052 if (IS_DEBUG_OSPF_EVENT)
1053 zlog_debug(
1054 "found back link through VL");
1055 /* fallthru */
1056 case LSA_LINK_TYPE_TRANSIT:
1057 case LSA_LINK_TYPE_POINTOPOINT:
1058 if (!IPV4_ADDR_SAME(&vl_data->peer_addr,
1059 &rl->link[i].link_data))
1060 changed = 1;
1061 vl_data->peer_addr = rl->link[i].link_data;
1062 }
1063 }
1064 }
1065
1066 if (IS_DEBUG_OSPF_EVENT)
1067 zlog_debug("%s: %s peer address: %s, cost: %d,%schanged",
1068 __func__, vl_data->vl_oi->ifp->name,
1069 inet_ntoa(vl_data->peer_addr), voi->output_cost,
1070 (changed ? " " : " un"));
1071
1072 return changed;
1073 }
1074
1075
1076 void ospf_vl_up_check(struct ospf_area *area, struct in_addr rid,
1077 struct vertex *v)
1078 {
1079 struct ospf *ospf = area->ospf;
1080 struct listnode *node;
1081 struct ospf_vl_data *vl_data;
1082 struct ospf_interface *oi;
1083
1084 if (IS_DEBUG_OSPF_EVENT) {
1085 zlog_debug("ospf_vl_up_check(): Start");
1086 zlog_debug("ospf_vl_up_check(): Router ID is %s",
1087 inet_ntoa(rid));
1088 zlog_debug("ospf_vl_up_check(): Area is %s",
1089 inet_ntoa(area->area_id));
1090 }
1091
1092 for (ALL_LIST_ELEMENTS_RO(ospf->vlinks, node, vl_data)) {
1093 if (IS_DEBUG_OSPF_EVENT) {
1094 zlog_debug("%s: considering VL, %s in area %s",
1095 __func__, vl_data->vl_oi->ifp->name,
1096 inet_ntoa(vl_data->vl_area_id));
1097 zlog_debug("%s: peer ID: %s", __func__,
1098 inet_ntoa(vl_data->vl_peer));
1099 }
1100
1101 if (IPV4_ADDR_SAME(&vl_data->vl_peer, &rid)
1102 && IPV4_ADDR_SAME(&vl_data->vl_area_id, &area->area_id)) {
1103 oi = vl_data->vl_oi;
1104 SET_FLAG(vl_data->flags, OSPF_VL_FLAG_APPROVED);
1105
1106 if (IS_DEBUG_OSPF_EVENT)
1107 zlog_debug(
1108 "ospf_vl_up_check(): this VL matched");
1109
1110 if (oi->state == ISM_Down) {
1111 if (IS_DEBUG_OSPF_EVENT)
1112 zlog_debug(
1113 "ospf_vl_up_check(): VL is down, waking it up");
1114 SET_FLAG(oi->ifp->flags, IFF_UP);
1115 OSPF_ISM_EVENT_EXECUTE(oi, ISM_InterfaceUp);
1116 }
1117
1118 if (ospf_vl_set_params(vl_data, v)) {
1119 if (IS_DEBUG_OSPF(ism, ISM_EVENTS))
1120 zlog_debug(
1121 "ospf_vl_up_check: VL cost change,"
1122 " scheduling router lsa refresh");
1123 if (ospf->backbone)
1124 ospf_router_lsa_update_area(
1125 ospf->backbone);
1126 else if (IS_DEBUG_OSPF(ism, ISM_EVENTS))
1127 zlog_debug(
1128 "ospf_vl_up_check: VL cost change, no backbone!");
1129 }
1130 }
1131 }
1132 }
1133
1134 void ospf_vl_unapprove(struct ospf *ospf)
1135 {
1136 struct listnode *node;
1137 struct ospf_vl_data *vl_data;
1138
1139 for (ALL_LIST_ELEMENTS_RO(ospf->vlinks, node, vl_data))
1140 UNSET_FLAG(vl_data->flags, OSPF_VL_FLAG_APPROVED);
1141 }
1142
1143 void ospf_vl_shut_unapproved(struct ospf *ospf)
1144 {
1145 struct listnode *node, *nnode;
1146 struct ospf_vl_data *vl_data;
1147
1148 for (ALL_LIST_ELEMENTS(ospf->vlinks, node, nnode, vl_data))
1149 if (!CHECK_FLAG(vl_data->flags, OSPF_VL_FLAG_APPROVED))
1150 ospf_vl_shutdown(vl_data);
1151 }
1152
1153 int ospf_full_virtual_nbrs(struct ospf_area *area)
1154 {
1155 if (IS_DEBUG_OSPF_EVENT) {
1156 zlog_debug(
1157 "counting fully adjacent virtual neighbors in area %s",
1158 inet_ntoa(area->area_id));
1159 zlog_debug("there are %d of them", area->full_vls);
1160 }
1161
1162 return area->full_vls;
1163 }
1164
1165 int ospf_vls_in_area(struct ospf_area *area)
1166 {
1167 struct listnode *node;
1168 struct ospf_vl_data *vl_data;
1169 int c = 0;
1170
1171 for (ALL_LIST_ELEMENTS_RO(area->ospf->vlinks, node, vl_data))
1172 if (IPV4_ADDR_SAME(&vl_data->vl_area_id, &area->area_id))
1173 c++;
1174
1175 return c;
1176 }
1177
1178
1179 struct crypt_key *ospf_crypt_key_new(void)
1180 {
1181 return XCALLOC(MTYPE_OSPF_CRYPT_KEY, sizeof(struct crypt_key));
1182 }
1183
1184 void ospf_crypt_key_add(struct list *crypt, struct crypt_key *ck)
1185 {
1186 listnode_add(crypt, ck);
1187 }
1188
1189 struct crypt_key *ospf_crypt_key_lookup(struct list *auth_crypt, uint8_t key_id)
1190 {
1191 struct listnode *node;
1192 struct crypt_key *ck;
1193
1194 for (ALL_LIST_ELEMENTS_RO(auth_crypt, node, ck))
1195 if (ck->key_id == key_id)
1196 return ck;
1197
1198 return NULL;
1199 }
1200
1201 int ospf_crypt_key_delete(struct list *auth_crypt, uint8_t key_id)
1202 {
1203 struct listnode *node, *nnode;
1204 struct crypt_key *ck;
1205
1206 for (ALL_LIST_ELEMENTS(auth_crypt, node, nnode, ck)) {
1207 if (ck->key_id == key_id) {
1208 listnode_delete(auth_crypt, ck);
1209 XFREE(MTYPE_OSPF_CRYPT_KEY, ck);
1210 return 1;
1211 }
1212 }
1213
1214 return 0;
1215 }
1216
1217 uint8_t ospf_default_iftype(struct interface *ifp)
1218 {
1219 if (if_is_pointopoint(ifp))
1220 return OSPF_IFTYPE_POINTOPOINT;
1221 else if (if_is_loopback(ifp) || if_is_vrf(ifp))
1222 return OSPF_IFTYPE_LOOPBACK;
1223 else
1224 return OSPF_IFTYPE_BROADCAST;
1225 }
1226
1227 void ospf_if_interface(struct interface *ifp)
1228 {
1229 hook_call(ospf_if_update, ifp);
1230 }
1231
1232 static int ospf_ifp_create(struct interface *ifp)
1233 {
1234 struct ospf *ospf = NULL;
1235
1236 if (IS_DEBUG_OSPF(zebra, ZEBRA_INTERFACE))
1237 zlog_debug(
1238 "Zebra: interface add %s vrf %s[%u] index %d flags %llx metric %d mtu %d speed %u",
1239 ifp->name, ospf_vrf_id_to_name(ifp->vrf_id),
1240 ifp->vrf_id, ifp->ifindex,
1241 (unsigned long long)ifp->flags, ifp->metric, ifp->mtu,
1242 ifp->speed);
1243
1244 assert(ifp->info);
1245
1246 if (IF_DEF_PARAMS(ifp)
1247 && !OSPF_IF_PARAM_CONFIGURED(IF_DEF_PARAMS(ifp), type)) {
1248 SET_IF_PARAM(IF_DEF_PARAMS(ifp), type);
1249 IF_DEF_PARAMS(ifp)->type = ospf_default_iftype(ifp);
1250 }
1251
1252 ospf = ospf_lookup_by_vrf_id(ifp->vrf_id);
1253 if (!ospf)
1254 return 0;
1255
1256 ospf_if_recalculate_output_cost(ifp);
1257
1258 ospf_if_update(ospf, ifp);
1259
1260 hook_call(ospf_if_update, ifp);
1261
1262 return 0;
1263 }
1264
1265 static int ospf_ifp_up(struct interface *ifp)
1266 {
1267 struct ospf_interface *oi;
1268 struct route_node *rn;
1269 struct ospf_if_info *oii = ifp->info;
1270
1271 ospf_if_recalculate_output_cost(ifp);
1272
1273 if (oii && oii->curr_mtu != ifp->mtu) {
1274 if (IS_DEBUG_OSPF(zebra, ZEBRA_INTERFACE))
1275 zlog_debug(
1276 "Zebra: Interface[%s] MTU change %u -> %u.",
1277 ifp->name, oii->curr_mtu, ifp->mtu);
1278
1279 oii->curr_mtu = ifp->mtu;
1280 /* Must reset the interface (simulate down/up) when MTU
1281 * changes. */
1282 ospf_if_reset(ifp);
1283
1284 return 0;
1285 }
1286
1287 if (IS_DEBUG_OSPF(zebra, ZEBRA_INTERFACE))
1288 zlog_debug("Zebra: Interface[%s] state change to up.",
1289 ifp->name);
1290
1291 for (rn = route_top(IF_OIFS(ifp)); rn; rn = route_next(rn)) {
1292 if ((oi = rn->info) == NULL)
1293 continue;
1294
1295 ospf_if_up(oi);
1296 }
1297
1298 return 0;
1299 }
1300
1301 static int ospf_ifp_down(struct interface *ifp)
1302 {
1303 struct ospf_interface *oi;
1304 struct route_node *node;
1305
1306 if (IS_DEBUG_OSPF(zebra, ZEBRA_INTERFACE))
1307 zlog_debug("Zebra: Interface[%s] state change to down.",
1308 ifp->name);
1309
1310 for (node = route_top(IF_OIFS(ifp)); node; node = route_next(node)) {
1311 if ((oi = node->info) == NULL)
1312 continue;
1313 ospf_if_down(oi);
1314 }
1315
1316 return 0;
1317 }
1318
1319 static int ospf_ifp_destroy(struct interface *ifp)
1320 {
1321 struct route_node *rn;
1322
1323 if (IS_DEBUG_OSPF(zebra, ZEBRA_INTERFACE))
1324 zlog_debug(
1325 "Zebra: interface delete %s vrf %s[%u] index %d flags %llx metric %d mtu %d",
1326 ifp->name, ospf_vrf_id_to_name(ifp->vrf_id),
1327 ifp->vrf_id, ifp->ifindex,
1328 (unsigned long long)ifp->flags, ifp->metric, ifp->mtu);
1329
1330 hook_call(ospf_if_delete, ifp);
1331
1332 for (rn = route_top(IF_OIFS(ifp)); rn; rn = route_next(rn))
1333 if (rn->info)
1334 ospf_if_free((struct ospf_interface *)rn->info);
1335
1336 return 0;
1337 }
1338
1339 void ospf_if_init(void)
1340 {
1341 if_zapi_callbacks(ospf_ifp_create, ospf_ifp_up,
1342 ospf_ifp_down, ospf_ifp_destroy);
1343
1344 /* Initialize Zebra interface data structure. */
1345 hook_register_prio(if_add, 0, ospf_if_new_hook);
1346 hook_register_prio(if_del, 0, ospf_if_delete_hook);
1347 }