blob: d7337c19fef2586d1a1ded22a60ec77c3ccd7119 [file] [log] [blame]
paul718e3742002-12-13 20:15:29 +00001/*
2 * OSPF Sending and Receiving OSPF Packets.
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 it
8 * under the terms of the GNU General Public License as published by the
9 * Free Software Foundation; either version 2, or (at your option) any
10 * 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
18 * along with GNU Zebra; see the file COPYING. If not, write to the Free
19 * Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
20 * 02111-1307, USA.
21 */
22
23#include <zebra.h>
24
25#include "thread.h"
26#include "memory.h"
27#include "linklist.h"
28#include "prefix.h"
29#include "if.h"
30#include "table.h"
31#include "sockunion.h"
32#include "stream.h"
33#include "log.h"
34#include "md5-gnu.h"
35
36#include "ospfd/ospfd.h"
37#include "ospfd/ospf_network.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_spf.h"
47#include "ospfd/ospf_flood.h"
48#include "ospfd/ospf_dump.h"
49
50static void ospf_ls_ack_send_list (struct ospf_interface *, list,
51 struct in_addr);
52
53/* Packet Type String. */
54char *ospf_packet_type_str[] =
55{
56 "unknown",
57 "Hello",
58 "Database Description",
59 "Link State Request",
60 "Link State Update",
61 "Link State Acknowledgment",
62};
63
64extern int in_cksum (void *ptr, int nbytes);
65
66/* OSPF authentication checking function */
67int
68ospf_auth_type (struct ospf_interface *oi)
69{
70 int auth_type;
71
72 if (OSPF_IF_PARAM (oi, auth_type) == OSPF_AUTH_NOTSET)
73 auth_type = oi->area->auth_type;
74 else
75 auth_type = OSPF_IF_PARAM (oi, auth_type);
76
77 /* Handle case where MD5 key list is not configured aka Cisco */
78 if (auth_type == OSPF_AUTH_CRYPTOGRAPHIC &&
79 list_isempty (OSPF_IF_PARAM (oi, auth_crypt)))
80 return OSPF_AUTH_NULL;
81
82 return auth_type;
83
84}
85
86/* forward output pointer. */
87void
88ospf_output_forward (struct stream *s, int size)
89{
90 s->putp += size;
91}
92
93struct ospf_packet *
94ospf_packet_new (size_t size)
95{
96 struct ospf_packet *new;
97
98 new = XCALLOC (MTYPE_OSPF_PACKET, sizeof (struct ospf_packet));
99 new->s = stream_new (size);
100
101 return new;
102}
103
104void
105ospf_packet_free (struct ospf_packet *op)
106{
107 if (op->s)
108 stream_free (op->s);
109
110 XFREE (MTYPE_OSPF_PACKET, op);
111
112 op = NULL;
113}
114
115struct ospf_fifo *
116ospf_fifo_new ()
117{
118 struct ospf_fifo *new;
119
120 new = XCALLOC (MTYPE_OSPF_FIFO, sizeof (struct ospf_fifo));
121 return new;
122}
123
124/* Add new packet to fifo. */
125void
126ospf_fifo_push (struct ospf_fifo *fifo, struct ospf_packet *op)
127{
128 if (fifo->tail)
129 fifo->tail->next = op;
130 else
131 fifo->head = op;
132
133 fifo->tail = op;
134
135 fifo->count++;
136}
137
138/* Delete first packet from fifo. */
139struct ospf_packet *
140ospf_fifo_pop (struct ospf_fifo *fifo)
141{
142 struct ospf_packet *op;
143
144 op = fifo->head;
145
146 if (op)
147 {
148 fifo->head = op->next;
149
150 if (fifo->head == NULL)
151 fifo->tail = NULL;
152
153 fifo->count--;
154 }
155
156 return op;
157}
158
159/* Return first fifo entry. */
160struct ospf_packet *
161ospf_fifo_head (struct ospf_fifo *fifo)
162{
163 return fifo->head;
164}
165
166/* Flush ospf packet fifo. */
167void
168ospf_fifo_flush (struct ospf_fifo *fifo)
169{
170 struct ospf_packet *op;
171 struct ospf_packet *next;
172
173 for (op = fifo->head; op; op = next)
174 {
175 next = op->next;
176 ospf_packet_free (op);
177 }
178 fifo->head = fifo->tail = NULL;
179 fifo->count = 0;
180}
181
182/* Free ospf packet fifo. */
183void
184ospf_fifo_free (struct ospf_fifo *fifo)
185{
186 ospf_fifo_flush (fifo);
187
188 XFREE (MTYPE_OSPF_FIFO, fifo);
189}
190
191void
192ospf_packet_add (struct ospf_interface *oi, struct ospf_packet *op)
193{
194 /* Add packet to end of queue. */
195 ospf_fifo_push (oi->obuf, op);
196
197 /* Debug of packet fifo*/
198 /* ospf_fifo_debug (oi->obuf); */
199}
200
201void
202ospf_packet_delete (struct ospf_interface *oi)
203{
204 struct ospf_packet *op;
205
206 op = ospf_fifo_pop (oi->obuf);
207
208 if (op)
209 ospf_packet_free (op);
210}
211
212struct stream *
213ospf_stream_copy (struct stream *new, struct stream *s)
214{
215 new->endp = s->endp;
216 new->putp = s->putp;
217 new->getp = s->getp;
218
219 memcpy (new->data, s->data, stream_get_endp (s));
220
221 return new;
222}
223
224struct ospf_packet *
225ospf_packet_dup (struct ospf_packet *op)
226{
227 struct ospf_packet *new;
228
paul37163d62003-02-03 18:40:56 +0000229 if (stream_get_endp(op->s) != op->length)
230 zlog_warn ("ospf_packet_dup stream %ld ospf_packet %d size mismatch",
paul30961a12002-12-13 20:56:48 +0000231 STREAM_SIZE(op->s), op->length);
paul30961a12002-12-13 20:56:48 +0000232
233 /* Reserve space for MD5 authentication that may be added later. */
234 new = ospf_packet_new (stream_get_endp(op->s) + OSPF_AUTH_MD5_SIZE);
paul718e3742002-12-13 20:15:29 +0000235 ospf_stream_copy (new->s, op->s);
236
237 new->dst = op->dst;
238 new->length = op->length;
239
240 return new;
241}
242
243int
244ospf_packet_max (struct ospf_interface *oi)
245{
246 int max;
247
248 if ( ospf_auth_type (oi) == OSPF_AUTH_CRYPTOGRAPHIC)
249 max = oi->ifp->mtu - OSPF_AUTH_MD5_SIZE - 88;
250 else
251 max = oi->ifp->mtu - 88;
252
253 return max;
254}
255
256
257int
258ospf_check_md5_digest (struct ospf_interface *oi, struct stream *s,
259 u_int16_t length)
260{
261 void *ibuf;
262 struct md5_ctx ctx;
263 unsigned char digest[OSPF_AUTH_MD5_SIZE];
264 unsigned char *pdigest;
265 struct crypt_key *ck;
266 struct ospf_header *ospfh;
267 struct ospf_neighbor *nbr;
268
269
270 ibuf = STREAM_PNT (s);
271 ospfh = (struct ospf_header *) ibuf;
272
273 /* Get pointer to the end of the packet. */
274 pdigest = ibuf + length;
275
276 /* Get secret key. */
277 ck = ospf_crypt_key_lookup (OSPF_IF_PARAM (oi, auth_crypt),
278 ospfh->u.crypt.key_id);
279 if (ck == NULL)
280 {
281 zlog_warn ("interface %s: ospf_check_md5 no key %d",
282 IF_NAME (oi), ospfh->u.crypt.key_id);
283 return 0;
284 }
285
286 /* check crypto seqnum. */
287 nbr = ospf_nbr_lookup_by_routerid (oi->nbrs, &ospfh->router_id);
288
289 if (nbr && ntohl(nbr->crypt_seqnum) > ntohl(ospfh->u.crypt.crypt_seqnum))
290 {
291 zlog_warn ("interface %s: ospf_check_md5 bad sequence %d (expect %d)",
292 IF_NAME (oi),
293 ntohl(ospfh->u.crypt.crypt_seqnum),
294 ntohl(nbr->crypt_seqnum));
295 return 0;
296 }
297
298 /* Generate a digest for the ospf packet - their digest + our digest. */
299 md5_init_ctx (&ctx);
300 md5_process_bytes (ibuf, length, &ctx);
301 md5_process_bytes (ck->auth_key, OSPF_AUTH_MD5_SIZE, &ctx);
302 md5_finish_ctx (&ctx, digest);
303
304 /* compare the two */
305 if (memcmp (pdigest, digest, OSPF_AUTH_MD5_SIZE))
306 {
307 zlog_warn ("interface %s: ospf_check_md5 checksum mismatch",
308 IF_NAME (oi));
309 return 0;
310 }
311
312 /* save neighbor's crypt_seqnum */
313 if (nbr)
314 nbr->crypt_seqnum = ospfh->u.crypt.crypt_seqnum;
315 return 1;
316}
317
318/* This function is called from ospf_write(), it will detect the
319 authentication scheme and if it is MD5, it will change the sequence
320 and update the MD5 digest. */
321int
322ospf_make_md5_digest (struct ospf_interface *oi, struct ospf_packet *op)
323{
324 struct ospf_header *ospfh;
325 unsigned char digest[OSPF_AUTH_MD5_SIZE];
326 struct md5_ctx ctx;
327 void *ibuf;
328 unsigned long oldputp;
paul9483e152002-12-13 20:55:25 +0000329 u_int32_t t;
paul718e3742002-12-13 20:15:29 +0000330 struct crypt_key *ck;
331 char *auth_key;
332
333 ibuf = STREAM_DATA (op->s);
334 ospfh = (struct ospf_header *) ibuf;
335
336 if (ntohs (ospfh->auth_type) != OSPF_AUTH_CRYPTOGRAPHIC)
337 return 0;
338
339 /* We do this here so when we dup a packet, we don't have to
340 waste CPU rewriting other headers. */
paul9483e152002-12-13 20:55:25 +0000341 t = (time(NULL) & 0xFFFFFFFF);
342 oi->crypt_seqnum = ( t > oi->crypt_seqnum ? t : oi->crypt_seqnum++);
343 ospfh->u.crypt.crypt_seqnum = htonl (oi->crypt_seqnum);
paul718e3742002-12-13 20:15:29 +0000344
345 /* Get MD5 Authentication key from auth_key list. */
346 if (list_isempty (OSPF_IF_PARAM (oi, auth_crypt)))
347 auth_key = "";
348 else
349 {
350 ck = getdata (OSPF_IF_PARAM (oi, auth_crypt)->tail);
351 auth_key = ck->auth_key;
352 }
353
354 /* Generate a digest for the entire packet + our secret key. */
355 md5_init_ctx (&ctx);
356 md5_process_bytes (ibuf, ntohs (ospfh->length), &ctx);
357 md5_process_bytes (auth_key, OSPF_AUTH_MD5_SIZE, &ctx);
358 md5_finish_ctx (&ctx, digest);
359
360 /* Append md5 digest to the end of the stream. */
361 oldputp = stream_get_putp (op->s);
362 stream_set_putp (op->s, ntohs (ospfh->length));
363 stream_put (op->s, digest, OSPF_AUTH_MD5_SIZE);
364 stream_set_putp (op->s, oldputp);
365
366 /* We do *NOT* increment the OSPF header length. */
paul30961a12002-12-13 20:56:48 +0000367 op->length = ntohs (ospfh->length) + OSPF_AUTH_MD5_SIZE;
368
paul37163d62003-02-03 18:40:56 +0000369 if (stream_get_endp(op->s) != op->length)
370 zlog_warn("ospf_make_md5_digest: length mismatch stream %ld ospf_packet %d", stream_get_endp(op->s), op->length);
paul718e3742002-12-13 20:15:29 +0000371
372 return OSPF_AUTH_MD5_SIZE;
373}
374
375
376int
377ospf_ls_req_timer (struct thread *thread)
378{
379 struct ospf_neighbor *nbr;
380
381 nbr = THREAD_ARG (thread);
382 nbr->t_ls_req = NULL;
383
384 /* Send Link State Request. */
385 if (ospf_ls_request_count (nbr))
386 ospf_ls_req_send (nbr);
387
388 /* Set Link State Request retransmission timer. */
389 OSPF_NSM_TIMER_ON (nbr->t_ls_req, ospf_ls_req_timer, nbr->v_ls_req);
390
391 return 0;
392}
393
394void
395ospf_ls_req_event (struct ospf_neighbor *nbr)
396{
397 if (nbr->t_ls_req)
398 {
399 thread_cancel (nbr->t_ls_req);
400 nbr->t_ls_req = NULL;
401 }
402 nbr->t_ls_req = thread_add_event (master, ospf_ls_req_timer, nbr, 0);
403}
404
405/* Cyclic timer function. Fist registered in ospf_nbr_new () in
406 ospf_neighbor.c */
407int
408ospf_ls_upd_timer (struct thread *thread)
409{
410 struct ospf_neighbor *nbr;
411
412 nbr = THREAD_ARG (thread);
413 nbr->t_ls_upd = NULL;
414
415 /* Send Link State Update. */
416 if (ospf_ls_retransmit_count (nbr) > 0)
417 {
418 list update;
419 struct ospf_lsdb *lsdb;
420 int i;
421 struct timeval now;
422 int retransmit_interval;
423
424 gettimeofday (&now, NULL);
425 retransmit_interval = OSPF_IF_PARAM (nbr->oi, retransmit_interval);
426
427 lsdb = &nbr->ls_rxmt;
428 update = list_new ();
429
430 for (i = OSPF_MIN_LSA; i < OSPF_MAX_LSA; i++)
431 {
432 struct route_table *table = lsdb->type[i].db;
433 struct route_node *rn;
434
435 for (rn = route_top (table); rn; rn = route_next (rn))
436 {
437 struct ospf_lsa *lsa;
438
439 if ((lsa = rn->info) != NULL)
440 /* Don't retransmit an LSA if we received it within
441 the last RxmtInterval seconds - this is to allow the
442 neighbour a chance to acknowledge the LSA as it may
443 have ben just received before the retransmit timer
444 fired. This is a small tweak to what is in the RFC,
445 but it will cut out out a lot of retransmit traffic
446 - MAG */
447 if (tv_cmp (tv_sub (now, lsa->tv_recv),
448 int2tv (retransmit_interval)) >= 0)
449 listnode_add (update, rn->info);
450 }
451 }
452
453 if (listcount (update) > 0)
454 ospf_ls_upd_send (nbr, update, OSPF_SEND_PACKET_DIRECT);
455 list_delete (update);
456 }
457
458 /* Set LS Update retransmission timer. */
459 OSPF_NSM_TIMER_ON (nbr->t_ls_upd, ospf_ls_upd_timer, nbr->v_ls_upd);
460
461 return 0;
462}
463
464int
465ospf_ls_ack_timer (struct thread *thread)
466{
467 struct ospf_interface *oi;
468
469 oi = THREAD_ARG (thread);
470 oi->t_ls_ack = NULL;
471
472 /* Send Link State Acknowledgment. */
473 if (listcount (oi->ls_ack) > 0)
474 ospf_ls_ack_send_delayed (oi);
475
476 /* Set LS Ack timer. */
477 OSPF_ISM_TIMER_ON (oi->t_ls_ack, ospf_ls_ack_timer, oi->v_ls_ack);
478
479 return 0;
480}
481
482int
483ospf_write (struct thread *thread)
484{
paul68980082003-03-25 05:07:42 +0000485 struct ospf *ospf = THREAD_ARG (thread);
paul718e3742002-12-13 20:15:29 +0000486 struct ospf_interface *oi;
487 struct ospf_packet *op;
488 struct sockaddr_in sa_dst;
paul718e3742002-12-13 20:15:29 +0000489 struct ip iph;
490 struct msghdr msg;
491 struct iovec iov[2];
paul68980082003-03-25 05:07:42 +0000492 u_char type;
493 int ret;
494 int flags = 0;
paul718e3742002-12-13 20:15:29 +0000495 listnode node;
496
paul68980082003-03-25 05:07:42 +0000497 ospf->t_write = NULL;
paul718e3742002-12-13 20:15:29 +0000498
paul68980082003-03-25 05:07:42 +0000499 node = listhead (ospf->oi_write_q);
paul718e3742002-12-13 20:15:29 +0000500 assert (node);
501 oi = getdata (node);
502 assert (oi);
503
504 /* Get one packet from queue. */
505 op = ospf_fifo_head (oi->obuf);
506 assert (op);
507 assert (op->length >= OSPF_HEADER_SIZE);
508
paul68980082003-03-25 05:07:42 +0000509 if (op->dst.s_addr == htonl (OSPF_ALLSPFROUTERS)
510 || op->dst.s_addr == htonl (OSPF_ALLDROUTERS))
511 ospf_if_ipmulticast (ospf, oi->address, oi->ifp->ifindex);
paul718e3742002-12-13 20:15:29 +0000512
513 /* Rewrite the md5 signature & update the seq */
514 ospf_make_md5_digest (oi, op);
515
516 memset (&sa_dst, 0, sizeof (sa_dst));
517 sa_dst.sin_family = AF_INET;
518#ifdef HAVE_SIN_LEN
519 sa_dst.sin_len = sizeof(sa_dst);
520#endif /* HAVE_SIN_LEN */
521 sa_dst.sin_addr = op->dst;
522 sa_dst.sin_port = htons (0);
523
524 /* Set DONTROUTE flag if dst is unicast. */
525 if (oi->type != OSPF_IFTYPE_VIRTUALLINK)
526 if (!IN_MULTICAST (htonl (op->dst.s_addr)))
527 flags = MSG_DONTROUTE;
528
529 iph.ip_hl = sizeof (struct ip) >> 2;
530 iph.ip_v = IPVERSION;
paul68980082003-03-25 05:07:42 +0000531 iph.ip_tos = IPTOS_PREC_INTERNETCONTROL;
paul718e3742002-12-13 20:15:29 +0000532#if defined(__NetBSD__) || defined(__FreeBSD__)
533 iph.ip_len = iph.ip_hl*4 + op->length;
534#else
535 iph.ip_len = htons (iph.ip_hl*4 + op->length);
536#endif
537 iph.ip_id = 0;
538 iph.ip_off = 0;
539 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
540 iph.ip_ttl = OSPF_VL_IP_TTL;
541 else
542 iph.ip_ttl = OSPF_IP_TTL;
543 iph.ip_p = IPPROTO_OSPFIGP;
544 iph.ip_sum = 0;
545 iph.ip_src.s_addr = oi->address->u.prefix4.s_addr;
546 iph.ip_dst.s_addr = op->dst.s_addr;
547
548 memset (&msg, 0, sizeof (msg));
549 msg.msg_name = &sa_dst;
550 msg.msg_namelen = sizeof (sa_dst);
551 msg.msg_iov = iov;
552 msg.msg_iovlen = 2;
553 iov[0].iov_base = (char*)&iph;
554 iov[0].iov_len = iph.ip_hl*4;
555 iov[1].iov_base = STREAM_DATA (op->s);
556 iov[1].iov_len = op->length;
557
paul68980082003-03-25 05:07:42 +0000558 ret = sendmsg (ospf->fd, &msg, flags);
paul718e3742002-12-13 20:15:29 +0000559
560 if (ret < 0)
paul4957f492003-06-27 01:28:45 +0000561 zlog_warn ("*** sendmsg in ospf_write to %s failed with %s",
562 inet_ntoa (iph.ip_dst), strerror (errno));
paul718e3742002-12-13 20:15:29 +0000563
564 /* Retrieve OSPF packet type. */
565 stream_set_getp (op->s, 1);
566 type = stream_getc (op->s);
567
568 /* Show debug sending packet. */
569 if (IS_DEBUG_OSPF_PACKET (type - 1, SEND))
570 {
571 if (IS_DEBUG_OSPF_PACKET (type - 1, DETAIL))
572 {
573 zlog_info ("-----------------------------------------------------");
574 stream_set_getp (op->s, 0);
575 ospf_packet_dump (op->s);
576 }
577
578 zlog_info ("%s sent to [%s] via [%s].",
579 ospf_packet_type_str[type], inet_ntoa (op->dst),
580 IF_NAME (oi));
581
582 if (IS_DEBUG_OSPF_PACKET (type - 1, DETAIL))
583 zlog_info ("-----------------------------------------------------");
584 }
585
586 /* Now delete packet from queue. */
587 ospf_packet_delete (oi);
588
589 if (ospf_fifo_head (oi->obuf) == NULL)
590 {
591 oi->on_write_q = 0;
paul68980082003-03-25 05:07:42 +0000592 list_delete_node (ospf->oi_write_q, node);
paul718e3742002-12-13 20:15:29 +0000593 }
594
595 /* If packets still remain in queue, call write thread. */
paul68980082003-03-25 05:07:42 +0000596 if (!list_isempty (ospf->oi_write_q))
597 ospf->t_write =
598 thread_add_write (master, ospf_write, ospf, ospf->fd);
paul718e3742002-12-13 20:15:29 +0000599
600 return 0;
601}
602
603/* OSPF Hello message read -- RFC2328 Section 10.5. */
604void
605ospf_hello (struct ip *iph, struct ospf_header *ospfh,
606 struct stream * s, struct ospf_interface *oi, int size)
607{
608 struct ospf_hello *hello;
609 struct ospf_neighbor *nbr;
610 struct route_node *rn;
611 struct prefix p, key;
612 int old_state;
613
614 /* increment statistics. */
615 oi->hello_in++;
616
617 hello = (struct ospf_hello *) STREAM_PNT (s);
618
619 /* If Hello is myself, silently discard. */
paul68980082003-03-25 05:07:42 +0000620 if (IPV4_ADDR_SAME (&ospfh->router_id, &oi->ospf->router_id))
pauld3241812003-09-29 12:42:39 +0000621 {
622 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
623 {
624 zlog_info ("ospf_header[%s/%s]: selforiginated, "
625 "dropping.",
626 ospf_packet_type_str[ospfh->type],
627 inet_ntoa (iph->ip_src));
628 }
629 return;
630 }
paul718e3742002-12-13 20:15:29 +0000631
632 /* If incoming interface is passive one, ignore Hello. */
paulf2c80652002-12-13 21:44:27 +0000633 if (OSPF_IF_PARAM (oi, passive_interface) == OSPF_IF_PASSIVE) {
paulc2191ea2003-04-18 23:59:35 +0000634 zlog_info ("Packet %s [HELLO:RECV]: oi is passive",
635 inet_ntoa (ospfh->router_id));
paul718e3742002-12-13 20:15:29 +0000636 return;
paulf2c80652002-12-13 21:44:27 +0000637 }
paul718e3742002-12-13 20:15:29 +0000638
639 /* get neighbor prefix. */
640 p.family = AF_INET;
641 p.prefixlen = ip_masklen (hello->network_mask);
642 p.u.prefix4 = iph->ip_src;
643
644 /* Compare network mask. */
645 /* Checking is ignored for Point-to-Point and Virtual link. */
646 if (oi->type != OSPF_IFTYPE_POINTOPOINT
647 && oi->type != OSPF_IFTYPE_VIRTUALLINK)
648 if (oi->address->prefixlen != p.prefixlen)
649 {
650 zlog_warn ("Packet %s [Hello:RECV]: NetworkMask mismatch.",
651 inet_ntoa (ospfh->router_id));
652 return;
653 }
654
655 /* Compare Hello Interval. */
656 if (OSPF_IF_PARAM (oi, v_hello) != ntohs (hello->hello_interval))
657 {
658 zlog_warn ("Packet %s [Hello:RECV]: HelloInterval mismatch.",
659 inet_ntoa (ospfh->router_id));
660 return;
661 }
662
663 /* Compare Router Dead Interval. */
664 if (OSPF_IF_PARAM (oi, v_wait) != ntohl (hello->dead_interval))
665 {
666 zlog_warn ("Packet %s [Hello:RECV]: RouterDeadInterval mismatch.",
667 inet_ntoa (ospfh->router_id));
668 return;
669 }
670
671 if (IS_DEBUG_OSPF_EVENT)
672 zlog_info ("Packet %s [Hello:RECV]: Options %s",
673 inet_ntoa (ospfh->router_id),
674 ospf_options_dump (hello->options));
675
676 /* Compare options. */
677#define REJECT_IF_TBIT_ON 1 /* XXX */
678#ifdef REJECT_IF_TBIT_ON
679 if (CHECK_FLAG (hello->options, OSPF_OPTION_T))
680 {
681 /*
682 * This router does not support non-zero TOS.
683 * Drop this Hello packet not to establish neighbor relationship.
684 */
685 zlog_warn ("Packet %s [Hello:RECV]: T-bit on, drop it.",
686 inet_ntoa (ospfh->router_id));
687 return;
688 }
689#endif /* REJECT_IF_TBIT_ON */
690
691#ifdef HAVE_OPAQUE_LSA
paul68980082003-03-25 05:07:42 +0000692 if (CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE)
paul718e3742002-12-13 20:15:29 +0000693 && CHECK_FLAG (hello->options, OSPF_OPTION_O))
694 {
695 /*
696 * This router does know the correct usage of O-bit
697 * the bit should be set in DD packet only.
698 */
699 zlog_warn ("Packet %s [Hello:RECV]: O-bit abuse?",
700 inet_ntoa (ospfh->router_id));
701#ifdef STRICT_OBIT_USAGE_CHECK
702 return; /* Reject this packet. */
703#else /* STRICT_OBIT_USAGE_CHECK */
704 UNSET_FLAG (hello->options, OSPF_OPTION_O); /* Ignore O-bit. */
705#endif /* STRICT_OBIT_USAGE_CHECK */
706 }
707#endif /* HAVE_OPAQUE_LSA */
708
709 /* new for NSSA is to ensure that NP is on and E is off */
710
711#ifdef HAVE_NSSA
712 if (oi->area->external_routing == OSPF_AREA_NSSA)
713 {
714 if (! (CHECK_FLAG (OPTIONS (oi), OSPF_OPTION_NP)
715 && CHECK_FLAG (hello->options, OSPF_OPTION_NP)
716 && ! CHECK_FLAG (OPTIONS (oi), OSPF_OPTION_E)
717 && ! CHECK_FLAG (hello->options, OSPF_OPTION_E)))
718 {
719 zlog_warn ("NSSA-Packet-%s[Hello:RECV]: my options: %x, his options %x", inet_ntoa (ospfh->router_id), OPTIONS (oi), hello->options);
720 return;
721 }
722 if (IS_DEBUG_OSPF_NSSA)
723 zlog_info ("NSSA-Hello:RECV:Packet from %s:", inet_ntoa(ospfh->router_id));
724 }
725 else
726#endif /* HAVE_NSSA */
727 /* The setting of the E-bit found in the Hello Packet's Options
728 field must match this area's ExternalRoutingCapability A
729 mismatch causes processing to stop and the packet to be
730 dropped. The setting of the rest of the bits in the Hello
731 Packet's Options field should be ignored. */
732 if (CHECK_FLAG (OPTIONS (oi), OSPF_OPTION_E) !=
733 CHECK_FLAG (hello->options, OSPF_OPTION_E))
734 {
735 zlog_warn ("Packet[Hello:RECV]: my options: %x, his options %x",
736 OPTIONS (oi), hello->options);
737 return;
738 }
739
740
741 /* Get neighbor information from table. */
742 key.family = AF_INET;
743 key.prefixlen = IPV4_MAX_BITLEN;
744 key.u.prefix4 = iph->ip_src;
745
746 rn = route_node_get (oi->nbrs, &key);
747 if (rn->info)
748 {
749 route_unlock_node (rn);
750 nbr = rn->info;
751
752 if (oi->type == OSPF_IFTYPE_NBMA && nbr->state == NSM_Attempt)
753 {
754 nbr->src = iph->ip_src;
755 nbr->address = p;
756 }
757 }
758 else
759 {
760 /* Create new OSPF Neighbor structure. */
761 nbr = ospf_nbr_new (oi);
762 nbr->state = NSM_Down;
763 nbr->src = iph->ip_src;
764 nbr->address = p;
765
766 rn->info = nbr;
767
768 nbr->nbr_nbma = NULL;
769
770 if (oi->type == OSPF_IFTYPE_NBMA)
771 {
772 struct ospf_nbr_nbma *nbr_nbma;
773 listnode node;
774
775 for (node = listhead (oi->nbr_nbma); node; nextnode (node))
776 {
777 nbr_nbma = getdata (node);
778 assert (nbr_nbma);
779
780 if (IPV4_ADDR_SAME(&nbr_nbma->addr, &iph->ip_src))
781 {
782 nbr_nbma->nbr = nbr;
783 nbr->nbr_nbma = nbr_nbma;
784
785 if (nbr_nbma->t_poll)
786 OSPF_POLL_TIMER_OFF (nbr_nbma->t_poll);
787
788 nbr->state_change = nbr_nbma->state_change + 1;
789 }
790 }
791 }
792
793 /* New nbr, save the crypto sequence number if necessary */
794 if (ntohs (ospfh->auth_type) == OSPF_AUTH_CRYPTOGRAPHIC)
795 nbr->crypt_seqnum = ospfh->u.crypt.crypt_seqnum;
796
797 if (IS_DEBUG_OSPF_EVENT)
798 zlog_info ("NSM[%s:%s]: start", IF_NAME (nbr->oi),
799 inet_ntoa (nbr->router_id));
800 }
801
802 nbr->router_id = ospfh->router_id;
803
804 old_state = nbr->state;
805
806 /* Add event to thread. */
807 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_HelloReceived);
808
809 /* RFC2328 Section 9.5.1
810 If the router is not eligible to become Designated Router,
811 (snip) It must also send an Hello Packet in reply to an
812 Hello Packet received from any eligible neighbor (other than
813 the current Designated Router and Backup Designated Router). */
814 if (oi->type == OSPF_IFTYPE_NBMA)
815 if (PRIORITY(oi) == 0 && hello->priority > 0
816 && IPV4_ADDR_CMP(&DR(oi), &iph->ip_src)
817 && IPV4_ADDR_CMP(&BDR(oi), &iph->ip_src))
818 OSPF_NSM_TIMER_ON (nbr->t_hello_reply, ospf_hello_reply_timer,
819 OSPF_HELLO_REPLY_DELAY);
820
821 /* on NBMA network type, it happens to receive bidirectional Hello packet
822 without advance 1-Way Received event.
823 To avoid incorrect DR-seletion, raise 1-Way Received event.*/
824 if (oi->type == OSPF_IFTYPE_NBMA &&
825 (old_state == NSM_Down || old_state == NSM_Attempt))
826 {
827 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_OneWayReceived);
828 nbr->priority = hello->priority;
829 nbr->d_router = hello->d_router;
830 nbr->bd_router = hello->bd_router;
831 return;
832 }
833
paul68980082003-03-25 05:07:42 +0000834 if (ospf_nbr_bidirectional (&oi->ospf->router_id, hello->neighbors,
paul718e3742002-12-13 20:15:29 +0000835 size - OSPF_HELLO_MIN_SIZE))
836 {
837 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_TwoWayReceived);
838 nbr->options |= hello->options;
839 }
840 else
841 {
842 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_OneWayReceived);
843 /* Set neighbor information. */
844 nbr->priority = hello->priority;
845 nbr->d_router = hello->d_router;
846 nbr->bd_router = hello->bd_router;
847 return;
848 }
849
850 /* If neighbor itself declares DR and no BDR exists,
851 cause event BackupSeen */
852 if (IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->d_router))
853 if (hello->bd_router.s_addr == 0 && oi->state == ISM_Waiting)
854 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_BackupSeen);
855
856 /* neighbor itself declares BDR. */
857 if (oi->state == ISM_Waiting &&
858 IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->bd_router))
859 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_BackupSeen);
860
861 /* had not previously. */
862 if ((IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->d_router) &&
863 IPV4_ADDR_CMP (&nbr->address.u.prefix4, &nbr->d_router)) ||
864 (IPV4_ADDR_CMP (&nbr->address.u.prefix4, &hello->d_router) &&
865 IPV4_ADDR_SAME (&nbr->address.u.prefix4, &nbr->d_router)))
866 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_NeighborChange);
867
868 /* had not previously. */
869 if ((IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->bd_router) &&
870 IPV4_ADDR_CMP (&nbr->address.u.prefix4, &nbr->bd_router)) ||
871 (IPV4_ADDR_CMP (&nbr->address.u.prefix4, &hello->bd_router) &&
872 IPV4_ADDR_SAME (&nbr->address.u.prefix4, &nbr->bd_router)))
873 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_NeighborChange);
874
875 /* Neighbor priority check. */
876 if (nbr->priority >= 0 && nbr->priority != hello->priority)
877 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_NeighborChange);
878
879 /* Set neighbor information. */
880 nbr->priority = hello->priority;
881 nbr->d_router = hello->d_router;
882 nbr->bd_router = hello->bd_router;
883}
884
885/* Save DD flags/options/Seqnum received. */
886void
887ospf_db_desc_save_current (struct ospf_neighbor *nbr,
888 struct ospf_db_desc *dd)
889{
890 nbr->last_recv.flags = dd->flags;
891 nbr->last_recv.options = dd->options;
892 nbr->last_recv.dd_seqnum = ntohl (dd->dd_seqnum);
893}
894
895/* Process rest of DD packet. */
896static void
897ospf_db_desc_proc (struct stream *s, struct ospf_interface *oi,
898 struct ospf_neighbor *nbr, struct ospf_db_desc *dd,
899 u_int16_t size)
900{
901 struct ospf_lsa *new, *find;
902 struct lsa_header *lsah;
903
904 stream_forward (s, OSPF_DB_DESC_MIN_SIZE);
905 for (size -= OSPF_DB_DESC_MIN_SIZE;
906 size >= OSPF_LSA_HEADER_SIZE; size -= OSPF_LSA_HEADER_SIZE)
907 {
908 lsah = (struct lsa_header *) STREAM_PNT (s);
909 stream_forward (s, OSPF_LSA_HEADER_SIZE);
910
911 /* Unknown LS type. */
912 if (lsah->type < OSPF_MIN_LSA || lsah->type >= OSPF_MAX_LSA)
913 {
914 zlog_warn ("Pakcet [DD:RECV]: Unknown LS type %d.", lsah->type);
915 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
916 return;
917 }
918
919#ifdef HAVE_OPAQUE_LSA
920 if (IS_OPAQUE_LSA (lsah->type)
921 && ! CHECK_FLAG (nbr->options, OSPF_OPTION_O))
922 {
923 zlog_warn ("LSA[Type%d:%s]: Opaque capability mismatch?", lsah->type, inet_ntoa (lsah->id));
924 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
925 return;
926 }
927#endif /* HAVE_OPAQUE_LSA */
928
929 switch (lsah->type)
930 {
931 case OSPF_AS_EXTERNAL_LSA:
932#ifdef HAVE_OPAQUE_LSA
933 case OSPF_OPAQUE_AS_LSA:
934#endif /* HAVE_OPAQUE_LSA */
935#ifdef HAVE_NSSA
936 /* Check for stub area. Reject if AS-External from stub but
937 allow if from NSSA. */
938 if (oi->area->external_routing == OSPF_AREA_STUB)
939#else /* ! HAVE_NSSA */
940 if (oi->area->external_routing != OSPF_AREA_DEFAULT)
941#endif /* HAVE_NSSA */
942 {
943 zlog_warn ("Packet [DD:RECV]: LSA[Type%d:%s] from %s area.",
944 lsah->type, inet_ntoa (lsah->id),
945 (oi->area->external_routing == OSPF_AREA_STUB) ?\
946 "STUB" : "NSSA");
947 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
948 return;
949 }
950 break;
951 default:
952 break;
953 }
954
955 /* Create LS-request object. */
956 new = ospf_ls_request_new (lsah);
957
958 /* Lookup received LSA, then add LS request list. */
959 find = ospf_lsa_lookup_by_header (oi->area, lsah);
960 if (!find || ospf_lsa_more_recent (find, new) < 0)
961 {
962 ospf_ls_request_add (nbr, new);
963 ospf_lsa_discard (new);
964 }
965 else
966 {
967 /* Received LSA is not recent. */
968 if (IS_DEBUG_OSPF_EVENT)
969 zlog_info ("Packet [DD:RECV]: LSA received Type %d, "
970 "ID %s is not recent.", lsah->type, inet_ntoa (lsah->id));
971 ospf_lsa_discard (new);
972 continue;
973 }
974 }
975
976 /* Master */
977 if (IS_SET_DD_MS (nbr->dd_flags))
978 {
979 nbr->dd_seqnum++;
980 /* Entire DD packet sent. */
981 if (!IS_SET_DD_M (dd->flags) && !IS_SET_DD_M (nbr->dd_flags))
982 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_ExchangeDone);
983 else
984 /* Send new DD packet. */
985 ospf_db_desc_send (nbr);
986 }
987 /* Slave */
988 else
989 {
990 nbr->dd_seqnum = ntohl (dd->dd_seqnum);
991
992 /* When master's more flags is not set. */
993 if (!IS_SET_DD_M (dd->flags) && ospf_db_summary_isempty (nbr))
994 {
995 nbr->dd_flags &= ~(OSPF_DD_FLAG_M);
996 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_ExchangeDone);
997 }
998
999 /* Send DD pakcet in reply. */
1000 ospf_db_desc_send (nbr);
1001 }
1002
1003 /* Save received neighbor values from DD. */
1004 ospf_db_desc_save_current (nbr, dd);
1005}
1006
1007int
1008ospf_db_desc_is_dup (struct ospf_db_desc *dd, struct ospf_neighbor *nbr)
1009{
1010 /* Is DD duplicated? */
1011 if (dd->options == nbr->last_recv.options &&
1012 dd->flags == nbr->last_recv.flags &&
1013 dd->dd_seqnum == htonl (nbr->last_recv.dd_seqnum))
1014 return 1;
1015
1016 return 0;
1017}
1018
1019/* OSPF Database Description message read -- RFC2328 Section 10.6. */
1020void
1021ospf_db_desc (struct ip *iph, struct ospf_header *ospfh,
1022 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1023{
1024 struct ospf_db_desc *dd;
1025 struct ospf_neighbor *nbr;
1026
1027 /* Increment statistics. */
1028 oi->db_desc_in++;
1029
1030 dd = (struct ospf_db_desc *) STREAM_PNT (s);
pauld363df22003-06-19 00:26:34 +00001031
paul718e3742002-12-13 20:15:29 +00001032 nbr = ospf_nbr_lookup_by_addr (oi->nbrs, &iph->ip_src);
1033 if (nbr == NULL)
1034 {
1035 zlog_warn ("Packet[DD]: Unknown Neighbor %s",
1036 inet_ntoa (ospfh->router_id));
1037 return;
1038 }
1039
1040 /* Check MTU. */
1041 if (ntohs (dd->mtu) > oi->ifp->mtu)
1042 {
1043 zlog_warn ("Packet[DD]: MTU is larger than [%s]'s MTU", IF_NAME (oi));
1044 return;
1045 }
1046
pauld363df22003-06-19 00:26:34 +00001047#ifdef HAVE_NSSA
1048 /*
1049 * XXX HACK by Hasso Tepper. Setting N/P bit in NSSA area DD packets is not
1050 * required. In fact at least JunOS sends DD packets with P bit clear.
1051 * Until proper solution is developped, this hack should help.
1052 *
1053 * Update: According to the RFCs, N bit is specified /only/ for Hello
1054 * options, unfortunately its use in DD options is not specified. Hence some
1055 * implementations follow E-bit semantics and set it in DD options, and some
1056 * treat it as unspecified and hence follow the directive "default for
1057 * options is clear", ie unset.
1058 *
1059 * Reset the flag, as ospfd follows E-bit semantics.
1060 */
1061 if ( (oi->area->external_routing == OSPF_AREA_NSSA)
1062 && (CHECK_FLAG (nbr->options, OSPF_OPTION_NP))
1063 && (!CHECK_FLAG (dd->options, OSPF_OPTION_NP)) )
1064 {
1065 if (IS_DEBUG_OSPF_EVENT)
paul3db0a772003-06-19 01:07:40 +00001066 zlog_notice ("Packet[DD]: Neighbour %s: Has NSSA capability, sends with N bit clear in DD options",
pauld363df22003-06-19 00:26:34 +00001067 inet_ntoa (nbr->router_id) );
1068 SET_FLAG (dd->options, OSPF_OPTION_NP);
1069 }
pauld363df22003-06-19 00:26:34 +00001070#endif /* HAVE_NSSA */
1071
paul718e3742002-12-13 20:15:29 +00001072#ifdef REJECT_IF_TBIT_ON
1073 if (CHECK_FLAG (dd->options, OSPF_OPTION_T))
1074 {
1075 /*
1076 * In Hello protocol, optional capability must have checked
1077 * to prevent this T-bit enabled router be my neighbor.
1078 */
1079 zlog_warn ("Packet[DD]: Neighbor %s: T-bit on?", inet_ntoa (nbr->router_id));
1080 return;
1081 }
1082#endif /* REJECT_IF_TBIT_ON */
1083
1084#ifdef HAVE_OPAQUE_LSA
1085 if (CHECK_FLAG (dd->options, OSPF_OPTION_O)
paul68980082003-03-25 05:07:42 +00001086 && !CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE))
paul718e3742002-12-13 20:15:29 +00001087 {
1088 /*
1089 * This node is not configured to handle O-bit, for now.
1090 * Clear it to ignore unsupported capability proposed by neighbor.
1091 */
1092 UNSET_FLAG (dd->options, OSPF_OPTION_O);
1093 }
1094#endif /* HAVE_OPAQUE_LSA */
1095
1096 /* Process DD packet by neighbor status. */
1097 switch (nbr->state)
1098 {
1099 case NSM_Down:
1100 case NSM_Attempt:
1101 case NSM_TwoWay:
1102 zlog_warn ("Packet[DD]: Neighbor state is %s, packet discarded.",
1103 LOOKUP (ospf_nsm_state_msg, nbr->state));
1104 break;
1105 case NSM_Init:
1106 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_TwoWayReceived);
1107 /* If the new state is ExStart, the processing of the current
1108 packet should then continue in this new state by falling
1109 through to case ExStart below. */
1110 if (nbr->state != NSM_ExStart)
1111 break;
1112 case NSM_ExStart:
1113 /* Initial DBD */
1114 if ((IS_SET_DD_ALL (dd->flags) == OSPF_DD_FLAG_ALL) &&
1115 (size == OSPF_DB_DESC_MIN_SIZE))
1116 {
paul68980082003-03-25 05:07:42 +00001117 if (IPV4_ADDR_CMP (&nbr->router_id, &oi->ospf->router_id) > 0)
paul718e3742002-12-13 20:15:29 +00001118 {
1119 /* We're Slave---obey */
1120 zlog_warn ("Packet[DD]: Negotiation done (Slave).");
1121 nbr->dd_seqnum = ntohl (dd->dd_seqnum);
1122 nbr->dd_flags &= ~(OSPF_DD_FLAG_MS|OSPF_DD_FLAG_I); /* Reset I/MS */
1123 }
1124 else
1125 {
1126 /* We're Master, ignore the initial DBD from Slave */
1127 zlog_warn ("Packet[DD]: Initial DBD from Slave, ignoring.");
1128 break;
1129 }
1130 }
1131 /* Ack from the Slave */
1132 else if (!IS_SET_DD_MS (dd->flags) && !IS_SET_DD_I (dd->flags) &&
1133 ntohl (dd->dd_seqnum) == nbr->dd_seqnum &&
paul68980082003-03-25 05:07:42 +00001134 IPV4_ADDR_CMP (&nbr->router_id, &oi->ospf->router_id) < 0)
paul718e3742002-12-13 20:15:29 +00001135 {
1136 zlog_warn ("Packet[DD]: Negotiation done (Master).");
1137 nbr->dd_flags &= ~OSPF_DD_FLAG_I;
1138 }
1139 else
1140 {
1141 zlog_warn ("Packet[DD]: Negotiation fails.");
1142 break;
1143 }
1144
1145 /* This is where the real Options are saved */
1146 nbr->options = dd->options;
1147
1148#ifdef HAVE_OPAQUE_LSA
paul68980082003-03-25 05:07:42 +00001149 if (CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE))
paul718e3742002-12-13 20:15:29 +00001150 {
1151 if (IS_DEBUG_OSPF_EVENT)
1152 zlog_info ("Neighbor[%s] is %sOpaque-capable.",
1153 inet_ntoa (nbr->router_id),
1154 CHECK_FLAG (nbr->options, OSPF_OPTION_O) ? "" : "NOT ");
1155
1156 if (! CHECK_FLAG (nbr->options, OSPF_OPTION_O)
1157 && IPV4_ADDR_SAME (&DR (oi), &nbr->address.u.prefix4))
1158 {
1159 zlog_warn ("DR-neighbor[%s] is NOT opaque-capable; Opaque-LSAs cannot be reliably advertised in this network.", inet_ntoa (nbr->router_id));
1160 /* This situation is undesirable, but not a real error. */
1161 }
1162 }
1163#endif /* HAVE_OPAQUE_LSA */
1164
1165 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_NegotiationDone);
1166
1167 /* continue processing rest of packet. */
1168 ospf_db_desc_proc (s, oi, nbr, dd, size);
1169 break;
1170 case NSM_Exchange:
1171 if (ospf_db_desc_is_dup (dd, nbr))
1172 {
1173 if (IS_SET_DD_MS (nbr->dd_flags))
1174 /* Master: discard duplicated DD packet. */
1175 zlog_warn ("Packet[DD] (Master): packet duplicated.");
1176 else
1177 /* Slave: cause to retransmit the last Database Description. */
1178 {
1179 zlog_warn ("Packet[DD] [Slave]: packet duplicated.");
1180 ospf_db_desc_resend (nbr);
1181 }
1182 break;
1183 }
1184
1185 /* Otherwise DD packet should be checked. */
1186 /* Check Master/Slave bit mismatch */
1187 if (IS_SET_DD_MS (dd->flags) != IS_SET_DD_MS (nbr->last_recv.flags))
1188 {
1189 zlog_warn ("Packet[DD]: MS-bit mismatch.");
1190 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1191 if (IS_DEBUG_OSPF_EVENT)
1192 zlog_info ("Packet[DD]: dd->flags=%d, nbr->dd_flags=%d",
1193 dd->flags, nbr->dd_flags);
1194 break;
1195 }
1196
1197 /* Check initialize bit is set. */
1198 if (IS_SET_DD_I (dd->flags))
1199 {
1200 zlog_warn ("Packet[DD]: I-bit set.");
1201 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1202 break;
1203 }
1204
1205 /* Check DD Options. */
1206 if (dd->options != nbr->options)
1207 {
1208#ifdef ORIGINAL_CODING
1209 /* Save the new options for debugging */
1210 nbr->options = dd->options;
1211#endif /* ORIGINAL_CODING */
1212 zlog_warn ("Packet[DD]: options mismatch.");
1213 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1214 break;
1215 }
1216
1217 /* Check DD sequence number. */
1218 if ((IS_SET_DD_MS (nbr->dd_flags) &&
1219 ntohl (dd->dd_seqnum) != nbr->dd_seqnum) ||
1220 (!IS_SET_DD_MS (nbr->dd_flags) &&
1221 ntohl (dd->dd_seqnum) != nbr->dd_seqnum + 1))
1222 {
1223 zlog_warn ("Pakcet[DD]: sequence number mismatch.");
1224 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1225 break;
1226 }
1227
1228 /* Continue processing rest of packet. */
1229 ospf_db_desc_proc (s, oi, nbr, dd, size);
1230 break;
1231 case NSM_Loading:
1232 case NSM_Full:
1233 if (ospf_db_desc_is_dup (dd, nbr))
1234 {
1235 if (IS_SET_DD_MS (nbr->dd_flags))
1236 {
1237 /* Master should discard duplicate DD packet. */
1238 zlog_warn ("Pakcet[DD]: duplicated, packet discarded.");
1239 break;
1240 }
1241 else
1242 {
1243 struct timeval t, now;
1244 gettimeofday (&now, NULL);
1245 t = tv_sub (now, nbr->last_send_ts);
1246 if (tv_cmp (t, int2tv (nbr->v_inactivity)) < 0)
1247 {
1248 /* In states Loading and Full the slave must resend
1249 its last Database Description packet in response to
1250 duplicate Database Description packets received
1251 from the master. For this reason the slave must
1252 wait RouterDeadInterval seconds before freeing the
1253 last Database Description packet. Reception of a
1254 Database Description packet from the master after
1255 this interval will generate a SeqNumberMismatch
1256 neighbor event. RFC2328 Section 10.8 */
1257 ospf_db_desc_resend (nbr);
1258 break;
1259 }
1260 }
1261 }
1262
1263 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1264 break;
1265 default:
1266 zlog_warn ("Packet[DD]: NSM illegal status.");
1267 break;
1268 }
1269}
1270
1271#define OSPF_LSA_KEY_SIZE 12 /* type(4) + id(4) + ar(4) */
1272
1273/* OSPF Link State Request Read -- RFC2328 Section 10.7. */
1274void
1275ospf_ls_req (struct ip *iph, struct ospf_header *ospfh,
1276 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1277{
1278 struct ospf_neighbor *nbr;
1279 u_int32_t ls_type;
1280 struct in_addr ls_id;
1281 struct in_addr adv_router;
1282 struct ospf_lsa *find;
1283 list ls_upd;
1284 int length;
1285
1286 /* Increment statistics. */
1287 oi->ls_req_in++;
1288
1289 nbr = ospf_nbr_lookup_by_addr (oi->nbrs, &iph->ip_src);
1290 if (nbr == NULL)
1291 {
1292 zlog_warn ("Link State Request: Unknown Neighbor %s.",
1293 inet_ntoa (ospfh->router_id));
1294 return;
1295 }
1296
1297 /* Neighbor State should be Exchange or later. */
1298 if (nbr->state != NSM_Exchange &&
1299 nbr->state != NSM_Loading &&
1300 nbr->state != NSM_Full)
1301 {
1302 zlog_warn ("Link State Request: Neighbor state is %s, packet discarded.",
1303 LOOKUP (ospf_nsm_state_msg, nbr->state));
1304 return;
1305 }
1306
1307 /* Send Link State Update for ALL requested LSAs. */
1308 ls_upd = list_new ();
1309 length = OSPF_HEADER_SIZE + OSPF_LS_UPD_MIN_SIZE;
1310
1311 while (size >= OSPF_LSA_KEY_SIZE)
1312 {
1313 /* Get one slice of Link State Request. */
1314 ls_type = stream_getl (s);
1315 ls_id.s_addr = stream_get_ipv4 (s);
1316 adv_router.s_addr = stream_get_ipv4 (s);
1317
1318 /* Verify LSA type. */
1319 if (ls_type < OSPF_MIN_LSA || ls_type >= OSPF_MAX_LSA)
1320 {
1321 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_BadLSReq);
1322 list_delete (ls_upd);
1323 return;
1324 }
1325
1326 /* Search proper LSA in LSDB. */
1327 find = ospf_lsa_lookup (oi->area, ls_type, ls_id, adv_router);
1328 if (find == NULL)
1329 {
1330 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_BadLSReq);
1331 list_delete (ls_upd);
1332 return;
1333 }
1334
1335 /* Packet overflows MTU size, send immediatly. */
1336 if (length + ntohs (find->data->length) > OSPF_PACKET_MAX (oi))
1337 {
1338 if (oi->type == OSPF_IFTYPE_NBMA)
1339 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_DIRECT);
1340 else
1341 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_INDIRECT);
1342
1343 /* Only remove list contents. Keep ls_upd. */
1344 list_delete_all_node (ls_upd);
1345
1346 length = OSPF_HEADER_SIZE + OSPF_LS_UPD_MIN_SIZE;
1347 }
1348
1349 /* Append LSA to update list. */
1350 listnode_add (ls_upd, find);
1351 length += ntohs (find->data->length);
1352
1353 size -= OSPF_LSA_KEY_SIZE;
1354 }
1355
1356 /* Send rest of Link State Update. */
1357 if (listcount (ls_upd) > 0)
1358 {
1359 if (oi->type == OSPF_IFTYPE_NBMA)
1360 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_DIRECT);
1361 else
1362 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_INDIRECT);
1363
1364 list_delete (ls_upd);
1365 }
1366 else
1367 list_free (ls_upd);
1368}
1369
1370/* Get the list of LSAs from Link State Update packet.
1371 And process some validation -- RFC2328 Section 13. (1)-(2). */
1372static list
1373ospf_ls_upd_list_lsa (struct ospf_neighbor *nbr, struct stream *s,
1374 struct ospf_interface *oi, size_t size)
1375{
1376 u_int16_t count, sum;
1377 u_int32_t length;
1378 struct lsa_header *lsah;
1379 struct ospf_lsa *lsa;
1380 list lsas;
1381
1382 lsas = list_new ();
1383
1384 count = stream_getl (s);
1385 size -= OSPF_LS_UPD_MIN_SIZE; /* # LSAs */
1386
1387 for (; size >= OSPF_LSA_HEADER_SIZE && count > 0;
1388 size -= length, stream_forward (s, length), count--)
1389 {
1390 lsah = (struct lsa_header *) STREAM_PNT (s);
1391 length = ntohs (lsah->length);
1392
1393 if (length > size)
1394 {
1395 zlog_warn ("Link State Update: LSA length exceeds packet size.");
1396 break;
1397 }
1398
1399 /* Validate the LSA's LS checksum. */
1400 sum = lsah->checksum;
1401 if (sum != ospf_lsa_checksum (lsah))
1402 {
1403 zlog_warn ("Link State Update: LSA checksum error %x, %x.",
1404 sum, lsah->checksum);
1405 continue;
1406 }
1407
1408 /* Examine the LSA's LS type. */
1409 if (lsah->type < OSPF_MIN_LSA || lsah->type >= OSPF_MAX_LSA)
1410 {
1411 zlog_warn ("Link State Update: Unknown LS type %d", lsah->type);
1412 continue;
1413 }
1414
1415 /*
1416 * What if the received LSA's age is greater than MaxAge?
1417 * Treat it as a MaxAge case -- endo.
1418 */
1419 if (ntohs (lsah->ls_age) > OSPF_LSA_MAXAGE)
1420 lsah->ls_age = htons (OSPF_LSA_MAXAGE);
1421
1422#ifdef HAVE_OPAQUE_LSA
1423 if (CHECK_FLAG (nbr->options, OSPF_OPTION_O))
1424 {
1425#ifdef STRICT_OBIT_USAGE_CHECK
1426 if ((IS_OPAQUE_LSA(lsah->type) &&
1427 ! CHECK_FLAG (lsah->options, OSPF_OPTION_O))
1428 || (! IS_OPAQUE_LSA(lsah->type) &&
1429 CHECK_FLAG (lsah->options, OSPF_OPTION_O)))
1430 {
1431 /*
1432 * This neighbor must know the exact usage of O-bit;
1433 * the bit will be set in Type-9,10,11 LSAs only.
1434 */
1435 zlog_warn ("LSA[Type%d:%s]: O-bit abuse?", lsah->type, inet_ntoa (lsah->id));
1436 continue;
1437 }
1438#endif /* STRICT_OBIT_USAGE_CHECK */
1439
1440 /* Do not take in AS External Opaque-LSAs if we are a stub. */
1441 if (lsah->type == OSPF_OPAQUE_AS_LSA
1442 && nbr->oi->area->external_routing != OSPF_AREA_DEFAULT)
1443 {
1444 if (IS_DEBUG_OSPF_EVENT)
1445 zlog_info ("LSA[Type%d:%s]: We are a stub, don't take this LSA.", lsah->type, inet_ntoa (lsah->id));
1446 continue;
1447 }
1448 }
1449 else if (IS_OPAQUE_LSA(lsah->type))
1450 {
1451 zlog_warn ("LSA[Type%d:%s]: Opaque capability mismatch?", lsah->type, inet_ntoa (lsah->id));
1452 continue;
1453 }
1454#endif /* HAVE_OPAQUE_LSA */
1455
1456 /* Create OSPF LSA instance. */
1457 lsa = ospf_lsa_new ();
1458
1459 /* We may wish to put some error checking if type NSSA comes in
1460 and area not in NSSA mode */
1461 switch (lsah->type)
1462 {
1463 case OSPF_AS_EXTERNAL_LSA:
1464#ifdef HAVE_OPAQUE_LSA
1465 case OSPF_OPAQUE_AS_LSA:
1466 lsa->area = NULL;
1467 break;
1468 case OSPF_OPAQUE_LINK_LSA:
1469 lsa->oi = oi; /* Remember incoming interface for flooding control. */
1470 /* Fallthrough */
1471#endif /* HAVE_OPAQUE_LSA */
1472 default:
1473 lsa->area = oi->area;
1474 break;
1475 }
1476
1477 lsa->data = ospf_lsa_data_new (length);
1478 memcpy (lsa->data, lsah, length);
1479
1480 if (IS_DEBUG_OSPF_EVENT)
1481 zlog_info("LSA[Type%d:%s]: %p new LSA created with Link State Update",
1482 lsa->data->type, inet_ntoa (lsa->data->id), lsa);
1483 listnode_add (lsas, lsa);
1484 }
1485
1486 return lsas;
1487}
1488
1489/* Cleanup Update list. */
1490void
1491ospf_upd_list_clean (list lsas)
1492{
1493 listnode node;
1494 struct ospf_lsa *lsa;
1495
1496 for (node = listhead (lsas); node; nextnode (node))
1497 if ((lsa = getdata (node)) != NULL)
1498 ospf_lsa_discard (lsa);
1499
1500 list_delete (lsas);
1501}
1502
1503/* OSPF Link State Update message read -- RFC2328 Section 13. */
1504void
1505ospf_ls_upd (struct ip *iph, struct ospf_header *ospfh,
1506 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1507{
1508 struct ospf_neighbor *nbr;
1509 list lsas;
1510#ifdef HAVE_OPAQUE_LSA
1511 list mylsa_acks, mylsa_upds;
1512#endif /* HAVE_OPAQUE_LSA */
1513 listnode node, next;
1514 struct ospf_lsa *lsa = NULL;
1515 /* unsigned long ls_req_found = 0; */
1516
1517 /* Dis-assemble the stream, update each entry, re-encapsulate for flooding */
1518
1519 /* Increment statistics. */
1520 oi->ls_upd_in++;
1521
1522 /* Check neighbor. */
1523 nbr = ospf_nbr_lookup_by_addr (oi->nbrs, &iph->ip_src);
1524 if (nbr == NULL)
1525 {
1526 zlog_warn ("Link State Update: Unknown Neighbor %s on int: %s",
1527 inet_ntoa (ospfh->router_id), IF_NAME (oi));
1528 return;
1529 }
1530
1531 /* Check neighbor state. */
1532 if (nbr->state < NSM_Exchange)
1533 {
1534 zlog_warn ("Link State Update: Neighbor[%s] state is less than Exchange",
1535 inet_ntoa (ospfh->router_id));
1536 return;
1537 }
1538
1539 /* Get list of LSAs from Link State Update packet. - Also perorms Stages
1540 * 1 (validate LSA checksum) and 2 (check for LSA consistent type)
1541 * of section 13.
1542 */
1543 lsas = ospf_ls_upd_list_lsa (nbr, s, oi, size);
1544
1545#ifdef HAVE_OPAQUE_LSA
1546 /*
1547 * Prepare two kinds of lists to clean up unwanted self-originated
1548 * Opaque-LSAs from the routing domain as soon as possible.
1549 */
1550 mylsa_acks = list_new (); /* Let the sender cease retransmission. */
1551 mylsa_upds = list_new (); /* Flush target LSAs if necessary. */
1552
1553 /*
1554 * If self-originated Opaque-LSAs that have flooded before restart
1555 * are contained in the received LSUpd message, corresponding LSReq
1556 * messages to be sent may have to be modified.
1557 * To eliminate possible race conditions such that flushing and normal
1558 * updating for the same LSA would take place alternately, this trick
1559 * must be done before entering to the loop below.
1560 */
1561 ospf_opaque_adjust_lsreq (nbr, lsas);
1562#endif /* HAVE_OPAQUE_LSA */
1563
1564#define DISCARD_LSA(L,N) {\
1565 if (IS_DEBUG_OSPF_EVENT) \
1566 zlog_info ("ospf_lsa_discard() in ospf_ls_upd() point %d: lsa %p Type-%d", N, lsa, (int) lsa->data->type); \
1567 ospf_lsa_discard (L); \
1568 continue; }
1569
1570 /* Process each LSA received in the one packet. */
1571 for (node = listhead (lsas); node; node = next)
1572 {
1573 struct ospf_lsa *ls_ret, *current;
1574 int ret = 1;
1575
1576 next = node->next;
1577
1578 lsa = getdata (node);
1579
1580#ifdef HAVE_NSSA
1581 if (IS_DEBUG_OSPF_NSSA)
1582 {
1583 char buf1[INET_ADDRSTRLEN];
1584 char buf2[INET_ADDRSTRLEN];
1585 char buf3[INET_ADDRSTRLEN];
1586
1587 zlog_info("LSA Type-%d from %s, ID: %s, ADV: %s",
1588 lsa->data->type,
1589 inet_ntop (AF_INET, &ospfh->router_id,
1590 buf1, INET_ADDRSTRLEN),
1591 inet_ntop (AF_INET, &lsa->data->id,
1592 buf2, INET_ADDRSTRLEN),
1593 inet_ntop (AF_INET, &lsa->data->adv_router,
1594 buf3, INET_ADDRSTRLEN));
1595 }
1596#endif /* HAVE_NSSA */
1597
1598 listnode_delete (lsas, lsa); /* We don't need it in list anymore */
1599
1600 /* Validate Checksum - Done above by ospf_ls_upd_list_lsa() */
1601
1602 /* LSA Type - Done above by ospf_ls_upd_list_lsa() */
1603
1604 /* Do not take in AS External LSAs if we are a stub or NSSA. */
1605
1606 /* Do not take in AS NSSA if this neighbor and we are not NSSA */
1607
1608 /* Do take in Type-7's if we are an NSSA */
1609
1610 /* If we are also an ABR, later translate them to a Type-5 packet */
1611
1612 /* Later, an NSSA Re-fresh can Re-fresh Type-7's and an ABR will
1613 translate them to a separate Type-5 packet. */
1614
1615 if (lsa->data->type == OSPF_AS_EXTERNAL_LSA)
1616 /* Reject from STUB or NSSA */
1617 if (nbr->oi->area->external_routing != OSPF_AREA_DEFAULT)
1618 {
1619 DISCARD_LSA (lsa, 1);
1620#ifdef HAVE_NSSA
1621 if (IS_DEBUG_OSPF_NSSA)
1622 zlog_info("Incoming External LSA Discarded: We are NSSA/STUB Area");
1623#endif /* HAVE_NSSA */
1624 }
1625
1626#ifdef HAVE_NSSA
1627 if (lsa->data->type == OSPF_AS_NSSA_LSA)
1628 if (nbr->oi->area->external_routing != OSPF_AREA_NSSA)
1629 {
1630 DISCARD_LSA (lsa,2);
1631 if (IS_DEBUG_OSPF_NSSA)
1632 zlog_info("Incoming NSSA LSA Discarded: Not NSSA Area");
1633 }
1634#endif /* HAVE_NSSA */
1635
1636 /* Find the LSA in the current database. */
1637
1638 current = ospf_lsa_lookup_by_header (oi->area, lsa->data);
1639
1640 /* If the LSA's LS age is equal to MaxAge, and there is currently
1641 no instance of the LSA in the router's link state database,
1642 and none of router's neighbors are in states Exchange or Loading,
1643 then take the following actions. */
1644
1645 if (IS_LSA_MAXAGE (lsa) && !current &&
paul68980082003-03-25 05:07:42 +00001646 (ospf_nbr_count (oi, NSM_Exchange) +
1647 ospf_nbr_count (oi, NSM_Loading)) == 0)
paul718e3742002-12-13 20:15:29 +00001648 {
1649 /* Response Link State Acknowledgment. */
1650 ospf_ls_ack_send (nbr, lsa);
1651
1652 /* Discard LSA. */
1653 zlog_warn ("Link State Update: LS age is equal to MaxAge.");
1654 DISCARD_LSA (lsa, 3);
1655 }
1656
1657#ifdef HAVE_OPAQUE_LSA
1658 if (IS_OPAQUE_LSA (lsa->data->type)
paul68980082003-03-25 05:07:42 +00001659 && IPV4_ADDR_SAME (&lsa->data->adv_router, &oi->ospf->router_id))
paul718e3742002-12-13 20:15:29 +00001660 {
1661 /*
1662 * Even if initial flushing seems to be completed, there might
1663 * be a case that self-originated LSA with MaxAge still remain
1664 * in the routing domain.
1665 * Just send an LSAck message to cease retransmission.
1666 */
1667 if (IS_LSA_MAXAGE (lsa))
1668 {
1669 zlog_warn ("LSA[%s]: Boomerang effect?", dump_lsa_key (lsa));
1670 ospf_ls_ack_send (nbr, lsa);
1671 ospf_lsa_discard (lsa);
1672
1673 if (current != NULL && ! IS_LSA_MAXAGE (current))
1674 ospf_opaque_lsa_refresh_schedule (current);
1675 continue;
1676 }
1677
1678 /*
1679 * If an instance of self-originated Opaque-LSA is not found
1680 * in the LSDB, there are some possible cases here.
1681 *
1682 * 1) This node lost opaque-capability after restart.
1683 * 2) Else, a part of opaque-type is no more supported.
1684 * 3) Else, a part of opaque-id is no more supported.
1685 *
1686 * Anyway, it is still this node's responsibility to flush it.
1687 * Otherwise, the LSA instance remains in the routing domain
1688 * until its age reaches to MaxAge.
1689 */
1690 if (current == NULL)
1691 {
1692 if (IS_DEBUG_OSPF_EVENT)
1693 zlog_info ("LSA[%s]: Previously originated Opaque-LSA, not found in the LSDB.", dump_lsa_key (lsa));
1694
1695 SET_FLAG (lsa->flags, OSPF_LSA_SELF);
1696 listnode_add (mylsa_upds, ospf_lsa_dup (lsa));
1697 listnode_add (mylsa_acks, ospf_lsa_lock (lsa));
1698 continue;
1699 }
1700 }
1701#endif /* HAVE_OPAQUE_LSA */
1702
1703 /* (5) Find the instance of this LSA that is currently contained
1704 in the router's link state database. If there is no
1705 database copy, or the received LSA is more recent than
1706 the database copy the following steps must be performed. */
1707
1708 if (current == NULL ||
1709 (ret = ospf_lsa_more_recent (current, lsa)) < 0)
1710 {
1711 /* Actual flooding procedure. */
paul68980082003-03-25 05:07:42 +00001712 if (ospf_flood (oi->ospf, nbr, current, lsa) < 0) /* Trap NSSA later. */
paul718e3742002-12-13 20:15:29 +00001713 DISCARD_LSA (lsa, 4);
1714 continue;
1715 }
1716
1717 /* (6) Else, If there is an instance of the LSA on the sending
1718 neighbor's Link state request list, an error has occurred in
1719 the Database Exchange process. In this case, restart the
1720 Database Exchange process by generating the neighbor event
1721 BadLSReq for the sending neighbor and stop processing the
1722 Link State Update packet. */
1723
1724 if (ospf_ls_request_lookup (nbr, lsa))
1725 {
1726 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_BadLSReq);
1727 zlog_warn ("LSA instance exists on Link state request list");
1728
1729 /* Clean list of LSAs. */
1730 ospf_upd_list_clean (lsas);
1731 /* this lsa is not on lsas list already. */
1732 ospf_lsa_discard (lsa);
1733#ifdef HAVE_OPAQUE_LSA
1734 list_delete (mylsa_acks);
1735 list_delete (mylsa_upds);
1736#endif /* HAVE_OPAQUE_LSA */
1737 return;
1738 }
1739
1740 /* If the received LSA is the same instance as the database copy
1741 (i.e., neither one is more recent) the following two steps
1742 should be performed: */
1743
1744 if (ret == 0)
1745 {
1746 /* If the LSA is listed in the Link state retransmission list
1747 for the receiving adjacency, the router itself is expecting
1748 an acknowledgment for this LSA. The router should treat the
1749 received LSA as an acknowledgment by removing the LSA from
1750 the Link state retransmission list. This is termed an
1751 "implied acknowledgment". */
1752
1753 ls_ret = ospf_ls_retransmit_lookup (nbr, lsa);
1754
1755 if (ls_ret != NULL)
1756 {
1757 ospf_ls_retransmit_delete (nbr, ls_ret);
1758
1759 /* Delayed acknowledgment sent if advertisement received
1760 from Designated Router, otherwise do nothing. */
1761 if (oi->state == ISM_Backup)
1762 if (NBR_IS_DR (nbr))
1763 listnode_add (oi->ls_ack, ospf_lsa_lock (lsa));
1764
1765 DISCARD_LSA (lsa, 5);
1766 }
1767 else
1768 /* Acknowledge the receipt of the LSA by sending a
1769 Link State Acknowledgment packet back out the receiving
1770 interface. */
1771 {
1772 ospf_ls_ack_send (nbr, lsa);
1773 DISCARD_LSA (lsa, 6);
1774 }
1775 }
1776
1777 /* The database copy is more recent. If the database copy
1778 has LS age equal to MaxAge and LS sequence number equal to
1779 MaxSequenceNumber, simply discard the received LSA without
1780 acknowledging it. (In this case, the LSA's LS sequence number is
1781 wrapping, and the MaxSequenceNumber LSA must be completely
1782 flushed before any new LSA instance can be introduced). */
1783
1784 else if (ret > 0) /* Database copy is more recent */
1785 {
1786 if (IS_LSA_MAXAGE (current) &&
1787 current->data->ls_seqnum == htonl (OSPF_MAX_SEQUENCE_NUMBER))
1788 {
1789 DISCARD_LSA (lsa, 7);
1790 }
1791 /* Otherwise, as long as the database copy has not been sent in a
1792 Link State Update within the last MinLSArrival seconds, send the
1793 database copy back to the sending neighbor, encapsulated within
1794 a Link State Update Packet. The Link State Update Packet should
1795 be sent directly to the neighbor. In so doing, do not put the
1796 database copy of the LSA on the neighbor's link state
1797 retransmission list, and do not acknowledge the received (less
1798 recent) LSA instance. */
1799 else
1800 {
1801 struct timeval now;
1802
1803 gettimeofday (&now, NULL);
1804
1805 if (tv_cmp (tv_sub (now, current->tv_orig),
1806 int2tv (OSPF_MIN_LS_ARRIVAL)) > 0)
1807 /* Trap NSSA type later.*/
1808 ospf_ls_upd_send_lsa (nbr, current, OSPF_SEND_PACKET_DIRECT);
1809 DISCARD_LSA (lsa, 8);
1810 }
1811 }
1812 }
1813
1814#ifdef HAVE_OPAQUE_LSA
1815 /*
1816 * Now that previously originated Opaque-LSAs those which not yet
1817 * installed into LSDB are captured, take several steps to clear
1818 * them completely from the routing domain, before proceeding to
1819 * origination for the current target Opaque-LSAs.
1820 */
1821 while (listcount (mylsa_acks) > 0)
1822 ospf_ls_ack_send_list (oi, mylsa_acks, nbr->address.u.prefix4);
1823
1824 if (listcount (mylsa_upds) > 0)
1825 ospf_opaque_self_originated_lsa_received (nbr, mylsa_upds);
1826
1827 list_delete (mylsa_upds);
paul683b2262003-03-28 00:43:48 +00001828 list_delete (mylsa_acks);
paul718e3742002-12-13 20:15:29 +00001829#endif /* HAVE_OPAQUE_LSA */
1830
1831 assert (listcount (lsas) == 0);
1832 list_delete (lsas);
1833}
1834
1835/* OSPF Link State Acknowledgment message read -- RFC2328 Section 13.7. */
1836void
1837ospf_ls_ack (struct ip *iph, struct ospf_header *ospfh,
1838 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1839{
1840 struct ospf_neighbor *nbr;
1841#ifdef HAVE_OPAQUE_LSA
1842 list opaque_acks;
1843#endif /* HAVE_OPAQUE_LSA */
1844
1845 /* increment statistics. */
1846 oi->ls_ack_in++;
1847
1848 nbr = ospf_nbr_lookup_by_addr (oi->nbrs, &iph->ip_src);
1849 if (nbr == NULL)
1850 {
1851 zlog_warn ("Link State Acknowledgment: Unknown Neighbor %s.",
1852 inet_ntoa (ospfh->router_id));
1853 return;
1854 }
1855
1856 if (nbr->state < NSM_Exchange)
1857 {
1858 zlog_warn ("Link State Acknowledgment: State is less than Exchange.");
1859 return;
1860 }
1861
1862#ifdef HAVE_OPAQUE_LSA
1863 opaque_acks = list_new ();
1864#endif /* HAVE_OPAQUE_LSA */
1865
1866 while (size >= OSPF_LSA_HEADER_SIZE)
1867 {
1868 struct ospf_lsa *lsa, *lsr;
1869
1870 lsa = ospf_lsa_new ();
1871 lsa->data = (struct lsa_header *) STREAM_PNT (s);
1872
1873 /* lsah = (struct lsa_header *) STREAM_PNT (s); */
1874 size -= OSPF_LSA_HEADER_SIZE;
1875 stream_forward (s, OSPF_LSA_HEADER_SIZE);
1876
1877 if (lsa->data->type < OSPF_MIN_LSA || lsa->data->type >= OSPF_MAX_LSA)
1878 {
1879 lsa->data = NULL;
1880 ospf_lsa_discard (lsa);
1881 continue;
1882 }
1883
1884 lsr = ospf_ls_retransmit_lookup (nbr, lsa);
1885
1886 if (lsr != NULL && lsr->data->ls_seqnum == lsa->data->ls_seqnum)
1887 {
1888#ifdef HAVE_OPAQUE_LSA
1889 /* Keep this LSA entry for later reference. */
1890 if (IS_OPAQUE_LSA (lsr->data->type))
1891 listnode_add (opaque_acks, ospf_lsa_dup (lsr));
1892#endif /* HAVE_OPAQUE_LSA */
1893
1894 ospf_ls_retransmit_delete (nbr, lsr);
1895 }
1896
1897 lsa->data = NULL;
1898 ospf_lsa_discard (lsa);
1899 }
1900
1901#ifdef HAVE_OPAQUE_LSA
1902 if (listcount (opaque_acks) > 0)
1903 ospf_opaque_ls_ack_received (nbr, opaque_acks);
1904
1905 list_delete (opaque_acks);
1906 return;
1907#endif /* HAVE_OPAQUE_LSA */
1908}
1909
1910struct stream *
1911ospf_recv_packet (int fd, struct interface **ifp)
1912{
1913 int ret;
1914 struct ip iph;
1915 u_int16_t ip_len;
1916 struct stream *ibuf;
1917 unsigned int ifindex = 0;
1918 struct iovec iov;
1919 struct cmsghdr *cmsg;
1920#if defined (IP_PKTINFO)
1921 struct in_pktinfo *pktinfo;
1922#elif defined (IP_RECVIF)
1923 struct sockaddr_dl *pktinfo;
1924#else
1925 char *pktinfo; /* dummy */
1926#endif
1927 char buff [sizeof (*cmsg) + sizeof (*pktinfo)];
1928 struct msghdr msgh = {NULL, 0, &iov, 1, buff,
1929 sizeof (*cmsg) + sizeof (*pktinfo), 0};
1930
1931 ret = recvfrom (fd, (void *)&iph, sizeof (iph), MSG_PEEK, NULL, 0);
1932
1933 if (ret != sizeof (iph))
1934 {
1935 zlog_warn ("ospf_recv_packet packet smaller than ip header");
1936 return NULL;
1937 }
1938
1939#if defined(__NetBSD__) || defined(__FreeBSD__) || defined(__OpenBSD__)
1940 ip_len = iph.ip_len;
1941#else
1942 ip_len = ntohs (iph.ip_len);
1943#endif
1944
1945#if !defined(GNU_LINUX)
1946 /*
1947 * Kernel network code touches incoming IP header parameters,
1948 * before protocol specific processing.
1949 *
1950 * 1) Convert byteorder to host representation.
1951 * --> ip_len, ip_id, ip_off
1952 *
1953 * 2) Adjust ip_len to strip IP header size!
1954 * --> If user process receives entire IP packet via RAW
1955 * socket, it must consider adding IP header size to
1956 * the "ip_len" field of "ip" structure.
1957 *
1958 * For more details, see <netinet/ip_input.c>.
1959 */
1960 ip_len = ip_len + (iph.ip_hl << 2);
1961#endif
1962
1963 ibuf = stream_new (ip_len);
1964 iov.iov_base = STREAM_DATA (ibuf);
1965 iov.iov_len = ip_len;
1966 ret = recvmsg (fd, &msgh, 0);
1967
1968 cmsg = CMSG_FIRSTHDR (&msgh);
1969
1970 if (cmsg != NULL && //cmsg->cmsg_len == sizeof (*pktinfo) &&
1971 cmsg->cmsg_level == IPPROTO_IP &&
1972#if defined (IP_PKTINFO)
1973 cmsg->cmsg_type == IP_PKTINFO
1974#elif defined (IP_RECVIF)
1975 cmsg->cmsg_type == IP_RECVIF
1976#else
1977 0
1978#endif
1979 )
1980 {
1981#if defined (IP_PKTINFO)
1982 pktinfo = (struct in_pktinfo *)CMSG_DATA(cmsg);
1983 ifindex = pktinfo->ipi_ifindex;
1984#elif defined (IP_RECVIF)
1985 pktinfo = (struct sockaddr_dl *)CMSG_DATA(cmsg);
1986 ifindex = pktinfo->sdl_index;
1987#else
1988 ifindex = 0;
1989#endif
1990 }
1991
1992 *ifp = if_lookup_by_index (ifindex);
1993
1994 if (ret != ip_len)
1995 {
1996 zlog_warn ("ospf_recv_packet short read. "
1997 "ip_len %d bytes read %d", ip_len, ret);
1998 stream_free (ibuf);
1999 return NULL;
2000 }
2001
2002 return ibuf;
2003}
2004
2005struct ospf_interface *
paul020709f2003-04-04 02:44:16 +00002006ospf_associate_packet_vl (struct ospf *ospf,
2007 struct interface *ifp, struct ospf_interface *oi,
paul718e3742002-12-13 20:15:29 +00002008 struct ip *iph, struct ospf_header *ospfh)
2009{
2010 struct ospf_interface *rcv_oi;
paul718e3742002-12-13 20:15:29 +00002011 struct ospf_vl_data *vl_data;
2012 struct ospf_area *vl_area;
paul68980082003-03-25 05:07:42 +00002013 listnode node;
paul718e3742002-12-13 20:15:29 +00002014
2015 if (IN_MULTICAST (ntohl (iph->ip_dst.s_addr)) ||
2016 !OSPF_IS_AREA_BACKBONE (ospfh))
2017 return oi;
2018
2019 if ((rcv_oi = oi) == NULL)
2020 {
paul2ca35dd2003-09-23 23:20:08 +00002021 if ((rcv_oi = ospf_if_lookup_by_local_addr (ospf, NULL,
2022 iph->ip_dst)) == NULL)
paul718e3742002-12-13 20:15:29 +00002023 return NULL;
2024 }
2025
paul020709f2003-04-04 02:44:16 +00002026 for (node = listhead (ospf->vlinks); node; nextnode (node))
paul718e3742002-12-13 20:15:29 +00002027 {
2028 if ((vl_data = getdata (node)) == NULL)
2029 continue;
2030
paul020709f2003-04-04 02:44:16 +00002031 vl_area = ospf_area_lookup_by_area_id (ospf, vl_data->vl_area_id);
paul718e3742002-12-13 20:15:29 +00002032 if (!vl_area)
2033 continue;
2034
2035 if (OSPF_AREA_SAME (&vl_area, &rcv_oi->area) &&
2036 IPV4_ADDR_SAME (&vl_data->vl_peer, &ospfh->router_id))
2037 {
2038 if (IS_DEBUG_OSPF_EVENT)
2039 zlog_info ("associating packet with %s",
2040 IF_NAME (vl_data->vl_oi));
2041 if (! CHECK_FLAG (vl_data->vl_oi->ifp->flags, IFF_UP))
2042 {
2043 if (IS_DEBUG_OSPF_EVENT)
2044 zlog_info ("This VL is not up yet, sorry");
2045 return NULL;
2046 }
2047
2048 return vl_data->vl_oi;
2049 }
2050 }
2051
2052 if (IS_DEBUG_OSPF_EVENT)
2053 zlog_info ("couldn't find any VL to associate the packet with");
2054
2055 return oi;
2056}
2057
2058int
2059ospf_check_area_id (struct ospf_interface *oi, struct ospf_header *ospfh)
2060{
2061 /* Check match the Area ID of the receiving interface. */
2062 if (OSPF_AREA_SAME (&oi->area, &ospfh))
2063 return 1;
2064
2065 return 0;
2066}
2067
2068/* Unbound socket will accept any Raw IP packets if proto is matched.
2069 To prevent it, compare src IP address and i/f address with masking
2070 i/f network mask. */
2071int
2072ospf_check_network_mask (struct ospf_interface *oi, struct in_addr ip_src)
2073{
2074 struct in_addr mask, me, him;
2075
2076 if (oi->type == OSPF_IFTYPE_POINTOPOINT ||
2077 oi->type == OSPF_IFTYPE_VIRTUALLINK)
2078 return 1;
2079
2080 masklen2ip (oi->address->prefixlen, &mask);
2081
2082 me.s_addr = oi->address->u.prefix4.s_addr & mask.s_addr;
2083 him.s_addr = ip_src.s_addr & mask.s_addr;
2084
2085 if (IPV4_ADDR_SAME (&me, &him))
2086 return 1;
2087
2088 return 0;
2089}
2090
2091int
2092ospf_check_auth (struct ospf_interface *oi, struct stream *ibuf,
2093 struct ospf_header *ospfh)
2094{
2095 int ret = 0;
2096 struct crypt_key *ck;
2097
2098 switch (ntohs (ospfh->auth_type))
2099 {
2100 case OSPF_AUTH_NULL:
2101 ret = 1;
2102 break;
2103 case OSPF_AUTH_SIMPLE:
2104 if (!memcmp (OSPF_IF_PARAM (oi, auth_simple), ospfh->u.auth_data, OSPF_AUTH_SIMPLE_SIZE))
2105 ret = 1;
2106 else
2107 ret = 0;
2108 break;
2109 case OSPF_AUTH_CRYPTOGRAPHIC:
2110 if ((ck = getdata (OSPF_IF_PARAM (oi,auth_crypt)->tail)) == NULL)
2111 {
2112 ret = 0;
2113 break;
2114 }
2115
2116 /* This is very basic, the digest processing is elsewhere */
2117 if (ospfh->u.crypt.auth_data_len == OSPF_AUTH_MD5_SIZE &&
2118 ospfh->u.crypt.key_id == ck->key_id &&
2119 ntohs (ospfh->length) + OSPF_AUTH_SIMPLE_SIZE <= stream_get_size (ibuf))
2120 ret = 1;
2121 else
2122 ret = 0;
2123 break;
2124 default:
2125 ret = 0;
2126 break;
2127 }
2128
2129 return ret;
2130}
2131
2132int
2133ospf_check_sum (struct ospf_header *ospfh)
2134{
2135 u_int32_t ret;
2136 u_int16_t sum;
2137 int in_cksum (void *ptr, int nbytes);
2138
2139 /* clear auth_data for checksum. */
2140 memset (ospfh->u.auth_data, 0, OSPF_AUTH_SIMPLE_SIZE);
2141
2142 /* keep checksum and clear. */
2143 sum = ospfh->checksum;
2144 memset (&ospfh->checksum, 0, sizeof (u_int16_t));
2145
2146 /* calculate checksum. */
2147 ret = in_cksum (ospfh, ntohs (ospfh->length));
2148
2149 if (ret != sum)
2150 {
2151 zlog_info ("ospf_check_sum(): checksum mismatch, my %X, his %X",
2152 ret, sum);
2153 return 0;
2154 }
2155
2156 return 1;
2157}
2158
2159/* OSPF Header verification. */
2160int
2161ospf_verify_header (struct stream *ibuf, struct ospf_interface *oi,
2162 struct ip *iph, struct ospf_header *ospfh)
2163{
2164 /* check version. */
2165 if (ospfh->version != OSPF_VERSION)
2166 {
2167 zlog_warn ("interface %s: ospf_read version number mismatch.",
2168 IF_NAME (oi));
2169 return -1;
2170 }
2171
2172 /* Check Area ID. */
2173 if (!ospf_check_area_id (oi, ospfh))
2174 {
2175 zlog_warn ("interface %s: ospf_read invalid Area ID %s.",
2176 IF_NAME (oi), inet_ntoa (ospfh->area_id));
2177 return -1;
2178 }
2179
2180 /* Check network mask, Silently discarded. */
2181 if (! ospf_check_network_mask (oi, iph->ip_src))
2182 {
2183 zlog_warn ("interface %s: ospf_read network address is not same [%s]",
2184 IF_NAME (oi), inet_ntoa (iph->ip_src));
2185 return -1;
2186 }
2187
2188 /* Check authentication. */
2189 if (ospf_auth_type (oi) != ntohs (ospfh->auth_type))
2190 {
2191 zlog_warn ("interface %s: ospf_read authentication type mismatch.",
2192 IF_NAME (oi));
2193 return -1;
2194 }
2195
2196 if (! ospf_check_auth (oi, ibuf, ospfh))
2197 {
2198 zlog_warn ("interface %s: ospf_read authentication failed.",
2199 IF_NAME (oi));
2200 return -1;
2201 }
2202
2203 /* if check sum is invalid, packet is discarded. */
2204 if (ntohs (ospfh->auth_type) != OSPF_AUTH_CRYPTOGRAPHIC)
2205 {
2206 if (! ospf_check_sum (ospfh))
2207 {
2208 zlog_warn ("interface %s: ospf_read packet checksum error %s",
2209 IF_NAME (oi), inet_ntoa (ospfh->router_id));
2210 return -1;
2211 }
2212 }
2213 else
2214 {
2215 if (ospfh->checksum != 0)
2216 return -1;
2217 if (ospf_check_md5_digest (oi, ibuf, ntohs (ospfh->length)) == 0)
2218 {
2219 zlog_warn ("interface %s: ospf_read md5 authentication failed.",
2220 IF_NAME (oi));
2221 return -1;
2222 }
2223 }
2224
2225 return 0;
2226}
2227
2228/* Starting point of packet process function. */
2229int
2230ospf_read (struct thread *thread)
2231{
2232 int ret;
2233 struct stream *ibuf;
paul68980082003-03-25 05:07:42 +00002234 struct ospf *ospf;
paul718e3742002-12-13 20:15:29 +00002235 struct ospf_interface *oi;
2236 struct ip *iph;
2237 struct ospf_header *ospfh;
2238 u_int16_t length;
2239 struct interface *ifp;
2240
2241 /* first of all get interface pointer. */
paul68980082003-03-25 05:07:42 +00002242 ospf = THREAD_ARG (thread);
2243 ospf->t_read = NULL;
paul718e3742002-12-13 20:15:29 +00002244
2245 /* read OSPF packet. */
paul68980082003-03-25 05:07:42 +00002246 ibuf = ospf_recv_packet (ospf->fd, &ifp);
paul718e3742002-12-13 20:15:29 +00002247 if (ibuf == NULL)
2248 return -1;
2249
2250 iph = (struct ip *) STREAM_DATA (ibuf);
2251
2252 /* prepare for next packet. */
paul68980082003-03-25 05:07:42 +00002253 ospf->t_read = thread_add_read (master, ospf_read, ospf, ospf->fd);
paul718e3742002-12-13 20:15:29 +00002254
2255 /* IP Header dump. */
paul17b78d32003-02-13 22:04:01 +00002256 if (IS_DEBUG_OSPF_PACKET(0, RECV))
paul7d95c612003-01-27 12:00:55 +00002257 ospf_ip_header_dump (ibuf);
2258
paul718e3742002-12-13 20:15:29 +00002259 /* Self-originated packet should be discarded silently. */
paul68980082003-03-25 05:07:42 +00002260 if (ospf_if_lookup_by_local_addr (ospf, NULL, iph->ip_src))
paul718e3742002-12-13 20:15:29 +00002261 {
pauld3241812003-09-29 12:42:39 +00002262 if (IS_DEBUG_OSPF_PACKET (0, RECV))
2263 {
2264 zlog_info ("ospf_read[%s]: Dropping self-originated packet",
2265 inet_ntoa (iph->ip_src));
2266 }
paul718e3742002-12-13 20:15:29 +00002267 stream_free (ibuf);
2268 return 0;
2269 }
2270
2271 /* Adjust size to message length. */
2272 stream_forward (ibuf, iph->ip_hl * 4);
2273
2274 /* Get ospf packet header. */
2275 ospfh = (struct ospf_header *) STREAM_PNT (ibuf);
2276
2277 /* associate packet with ospf interface */
paul68980082003-03-25 05:07:42 +00002278 oi = ospf_if_lookup_recv_if (ospf, iph->ip_src);
paul718e3742002-12-13 20:15:29 +00002279 if (ifp && oi && oi->ifp != ifp)
2280 {
2281 zlog_warn ("Packet from [%s] received on wrong link %s",
pauld3241812003-09-29 12:42:39 +00002282 inet_ntoa (iph->ip_src), ifp->name);
paul718e3742002-12-13 20:15:29 +00002283 stream_free (ibuf);
2284 return 0;
2285 }
2286
paul020709f2003-04-04 02:44:16 +00002287 if ((oi = ospf_associate_packet_vl (ospf, ifp, oi, iph, ospfh)) == NULL)
paul718e3742002-12-13 20:15:29 +00002288 {
pauld3241812003-09-29 12:42:39 +00002289 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
2290 {
2291 zlog_info ("ospf_read[%s/%s]: Could not associate packet with VL, "
2292 "dropping.",
2293 ospf_packet_type_str[ospfh->type],
2294 inet_ntoa (iph->ip_src));
2295 }
paul718e3742002-12-13 20:15:29 +00002296 stream_free (ibuf);
2297 return 0;
2298 }
2299
2300 /*
2301 * If the received packet is destined for AllDRouters, the packet
2302 * should be accepted only if the received ospf interface state is
2303 * either DR or Backup -- endo.
2304 */
2305 if (iph->ip_dst.s_addr == htonl (OSPF_ALLDROUTERS)
2306 && (oi->state != ISM_DR && oi->state != ISM_Backup))
2307 {
2308 zlog_info ("Packet for AllDRouters from [%s] via [%s] (ISM: %s)",
2309 inet_ntoa (iph->ip_src), IF_NAME (oi),
2310 LOOKUP (ospf_ism_state_msg, oi->state));
2311 stream_free (ibuf);
2312 return 0;
2313 }
2314
2315 /* Show debug receiving packet. */
paul1aa7b392003-04-08 08:51:58 +00002316 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
2317 {
paul718e3742002-12-13 20:15:29 +00002318 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, DETAIL))
paul1aa7b392003-04-08 08:51:58 +00002319 {
2320 zlog_info ("-----------------------------------------------------");
2321 ospf_packet_dump (ibuf);
2322 }
paul718e3742002-12-13 20:15:29 +00002323
2324 zlog_info ("%s received from [%s] via [%s]",
paul1aa7b392003-04-08 08:51:58 +00002325 ospf_packet_type_str[ospfh->type],
2326 inet_ntoa (ospfh->router_id), IF_NAME (oi));
paul718e3742002-12-13 20:15:29 +00002327 zlog_info (" src [%s],", inet_ntoa (iph->ip_src));
2328 zlog_info (" dst [%s]", inet_ntoa (iph->ip_dst));
2329
2330 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, DETAIL))
2331 zlog_info ("-----------------------------------------------------");
paul1aa7b392003-04-08 08:51:58 +00002332 }
paul718e3742002-12-13 20:15:29 +00002333
2334 /* Some header verification. */
2335 ret = ospf_verify_header (ibuf, oi, iph, ospfh);
2336 if (ret < 0)
2337 {
pauld3241812003-09-29 12:42:39 +00002338 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
2339 {
2340 zlog_info ("ospf_read[%s/%s]: Header check failed, "
2341 "dropping.",
2342 ospf_packet_type_str[ospfh->type],
2343 inet_ntoa (iph->ip_src));
2344 }
paul718e3742002-12-13 20:15:29 +00002345 stream_free (ibuf);
2346 return ret;
2347 }
2348
2349 stream_forward (ibuf, OSPF_HEADER_SIZE);
2350
2351 /* Adjust size to message length. */
2352 length = ntohs (ospfh->length) - OSPF_HEADER_SIZE;
2353
2354 /* Read rest of the packet and call each sort of packet routine. */
2355 switch (ospfh->type)
2356 {
2357 case OSPF_MSG_HELLO:
2358 ospf_hello (iph, ospfh, ibuf, oi, length);
2359 break;
2360 case OSPF_MSG_DB_DESC:
2361 ospf_db_desc (iph, ospfh, ibuf, oi, length);
2362 break;
2363 case OSPF_MSG_LS_REQ:
2364 ospf_ls_req (iph, ospfh, ibuf, oi, length);
2365 break;
2366 case OSPF_MSG_LS_UPD:
2367 ospf_ls_upd (iph, ospfh, ibuf, oi, length);
2368 break;
2369 case OSPF_MSG_LS_ACK:
2370 ospf_ls_ack (iph, ospfh, ibuf, oi, length);
2371 break;
2372 default:
2373 zlog (NULL, LOG_WARNING,
2374 "interface %s: OSPF packet header type %d is illegal",
2375 IF_NAME (oi), ospfh->type);
2376 break;
2377 }
2378
2379 stream_free (ibuf);
2380 return 0;
2381}
2382
2383/* Make OSPF header. */
2384void
2385ospf_make_header (int type, struct ospf_interface *oi, struct stream *s)
2386{
2387 struct ospf_header *ospfh;
2388
2389 ospfh = (struct ospf_header *) STREAM_DATA (s);
2390
2391 ospfh->version = (u_char) OSPF_VERSION;
2392 ospfh->type = (u_char) type;
2393
paul68980082003-03-25 05:07:42 +00002394 ospfh->router_id = oi->ospf->router_id;
paul718e3742002-12-13 20:15:29 +00002395
2396 ospfh->checksum = 0;
2397 ospfh->area_id = oi->area->area_id;
2398 ospfh->auth_type = htons (ospf_auth_type (oi));
2399
2400 memset (ospfh->u.auth_data, 0, OSPF_AUTH_SIMPLE_SIZE);
2401
2402 ospf_output_forward (s, OSPF_HEADER_SIZE);
2403}
2404
2405/* Make Authentication Data. */
2406int
2407ospf_make_auth (struct ospf_interface *oi, struct ospf_header *ospfh)
2408{
2409 struct crypt_key *ck;
2410
2411 switch (ospf_auth_type (oi))
2412 {
2413 case OSPF_AUTH_NULL:
2414 /* memset (ospfh->u.auth_data, 0, sizeof (ospfh->u.auth_data)); */
2415 break;
2416 case OSPF_AUTH_SIMPLE:
2417 memcpy (ospfh->u.auth_data, OSPF_IF_PARAM (oi, auth_simple),
2418 OSPF_AUTH_SIMPLE_SIZE);
2419 break;
2420 case OSPF_AUTH_CRYPTOGRAPHIC:
2421 /* If key is not set, then set 0. */
2422 if (list_isempty (OSPF_IF_PARAM (oi, auth_crypt)))
2423 {
2424 ospfh->u.crypt.zero = 0;
2425 ospfh->u.crypt.key_id = 0;
2426 ospfh->u.crypt.auth_data_len = OSPF_AUTH_MD5_SIZE;
2427 }
2428 else
2429 {
2430 ck = getdata (OSPF_IF_PARAM (oi, auth_crypt)->tail);
2431 ospfh->u.crypt.zero = 0;
2432 ospfh->u.crypt.key_id = ck->key_id;
2433 ospfh->u.crypt.auth_data_len = OSPF_AUTH_MD5_SIZE;
2434 }
2435 /* note: the seq is done in ospf_make_md5_digest() */
2436 break;
2437 default:
2438 /* memset (ospfh->u.auth_data, 0, sizeof (ospfh->u.auth_data)); */
2439 break;
2440 }
2441
2442 return 0;
2443}
2444
2445/* Fill rest of OSPF header. */
2446void
2447ospf_fill_header (struct ospf_interface *oi,
2448 struct stream *s, u_int16_t length)
2449{
2450 struct ospf_header *ospfh;
2451
2452 ospfh = (struct ospf_header *) STREAM_DATA (s);
2453
2454 /* Fill length. */
2455 ospfh->length = htons (length);
2456
2457 /* Calculate checksum. */
2458 if (ntohs (ospfh->auth_type) != OSPF_AUTH_CRYPTOGRAPHIC)
2459 ospfh->checksum = in_cksum (ospfh, length);
2460 else
2461 ospfh->checksum = 0;
2462
2463 /* Add Authentication Data. */
2464 ospf_make_auth (oi, ospfh);
2465}
2466
2467int
2468ospf_make_hello (struct ospf_interface *oi, struct stream *s)
2469{
2470 struct ospf_neighbor *nbr;
2471 struct route_node *rn;
2472 u_int16_t length = OSPF_HELLO_MIN_SIZE;
2473 struct in_addr mask;
2474 unsigned long p;
2475 int flag = 0;
2476
2477 /* Set netmask of interface. */
2478 if (oi->type != OSPF_IFTYPE_POINTOPOINT &&
2479 oi->type != OSPF_IFTYPE_VIRTUALLINK)
2480 masklen2ip (oi->address->prefixlen, &mask);
2481 else
2482 memset ((char *) &mask, 0, sizeof (struct in_addr));
2483 stream_put_ipv4 (s, mask.s_addr);
2484
2485 /* Set Hello Interval. */
2486 stream_putw (s, OSPF_IF_PARAM (oi, v_hello));
2487
2488 if (IS_DEBUG_OSPF_EVENT)
2489 zlog_info ("make_hello: options: %x, int: %s",
2490 OPTIONS(oi), IF_NAME (oi));
2491
2492 /* Set Options. */
2493 stream_putc (s, OPTIONS (oi));
2494
2495 /* Set Router Priority. */
2496 stream_putc (s, PRIORITY (oi));
2497
2498 /* Set Router Dead Interval. */
2499 stream_putl (s, OSPF_IF_PARAM (oi, v_wait));
2500
2501 /* Set Designated Router. */
2502 stream_put_ipv4 (s, DR (oi).s_addr);
2503
2504 p = s->putp;
2505
2506 /* Set Backup Designated Router. */
2507 stream_put_ipv4 (s, BDR (oi).s_addr);
2508
2509 /* Add neighbor seen. */
2510 for (rn = route_top (oi->nbrs); rn; rn = route_next (rn))
paul68980082003-03-25 05:07:42 +00002511 if ((nbr = rn->info))
2512 if (nbr->router_id.s_addr != 0) /* Ignore 0.0.0.0 node. */
2513 if (nbr->state != NSM_Attempt) /* Ignore Down neighbor. */
2514 if (nbr->state != NSM_Down) /* This is myself for DR election. */
2515 if (!IPV4_ADDR_SAME (&nbr->router_id, &oi->ospf->router_id))
paul718e3742002-12-13 20:15:29 +00002516 {
2517 /* Check neighbor is sane? */
paul68980082003-03-25 05:07:42 +00002518 if (nbr->d_router.s_addr != 0
2519 && IPV4_ADDR_SAME (&nbr->d_router, &oi->address->u.prefix4)
2520 && IPV4_ADDR_SAME (&nbr->bd_router, &oi->address->u.prefix4))
2521 flag = 1;
paul718e3742002-12-13 20:15:29 +00002522
2523 stream_put_ipv4 (s, nbr->router_id.s_addr);
2524 length += 4;
2525 }
2526
2527 /* Let neighbor generate BackupSeen. */
2528 if (flag == 1)
2529 {
2530 stream_set_putp (s, p);
2531 stream_put_ipv4 (s, 0);
2532 }
2533
2534 return length;
2535}
2536
2537int
2538ospf_make_db_desc (struct ospf_interface *oi, struct ospf_neighbor *nbr,
2539 struct stream *s)
2540{
2541 struct ospf_lsa *lsa;
2542 u_int16_t length = OSPF_DB_DESC_MIN_SIZE;
2543 u_char options;
2544 unsigned long pp;
2545 int i;
2546 struct ospf_lsdb *lsdb;
2547
2548 /* Set Interface MTU. */
2549 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
2550 stream_putw (s, 0);
2551 else
2552 stream_putw (s, oi->ifp->mtu);
2553
2554 /* Set Options. */
2555 options = OPTIONS (oi);
2556#ifdef HAVE_OPAQUE_LSA
paul68980082003-03-25 05:07:42 +00002557 if (CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE))
paul718e3742002-12-13 20:15:29 +00002558 {
2559 if (IS_SET_DD_I (nbr->dd_flags)
2560 || CHECK_FLAG (nbr->options, OSPF_OPTION_O))
2561 /*
2562 * Set O-bit in the outgoing DD packet for capablity negotiation,
2563 * if one of following case is applicable.
2564 *
2565 * 1) WaitTimer expiration event triggered the neighbor state to
2566 * change to Exstart, but no (valid) DD packet has received
2567 * from the neighbor yet.
2568 *
2569 * 2) At least one DD packet with O-bit on has received from the
2570 * neighbor.
2571 */
2572 SET_FLAG (options, OSPF_OPTION_O);
2573 }
2574#endif /* HAVE_OPAQUE_LSA */
2575 stream_putc (s, options);
2576
2577 /* Keep pointer to flags. */
2578 pp = stream_get_putp (s);
2579 stream_putc (s, nbr->dd_flags);
2580
2581 /* Set DD Sequence Number. */
2582 stream_putl (s, nbr->dd_seqnum);
2583
2584 if (ospf_db_summary_isempty (nbr))
2585 {
2586 if (nbr->state >= NSM_Exchange)
2587 {
2588 nbr->dd_flags &= ~OSPF_DD_FLAG_M;
2589 /* Set DD flags again */
2590 stream_set_putp (s, pp);
2591 stream_putc (s, nbr->dd_flags);
2592 }
2593 return length;
2594 }
2595
2596 /* Describe LSA Header from Database Summary List. */
2597 lsdb = &nbr->db_sum;
2598
2599 for (i = OSPF_MIN_LSA; i < OSPF_MAX_LSA; i++)
2600 {
2601 struct route_table *table = lsdb->type[i].db;
2602 struct route_node *rn;
2603
2604 for (rn = route_top (table); rn; rn = route_next (rn))
2605 if ((lsa = rn->info) != NULL)
2606 {
2607#ifdef HAVE_OPAQUE_LSA
2608 if (IS_OPAQUE_LSA (lsa->data->type)
2609 && (! CHECK_FLAG (options, OSPF_OPTION_O)))
2610 {
2611 /* Suppress advertising opaque-informations. */
2612 /* Remove LSA from DB summary list. */
2613 ospf_lsdb_delete (lsdb, lsa);
2614 continue;
2615 }
2616#endif /* HAVE_OPAQUE_LSA */
2617
2618 if (!CHECK_FLAG (lsa->flags, OSPF_LSA_DISCARD))
2619 {
2620 struct lsa_header *lsah;
2621 u_int16_t ls_age;
2622
2623 /* DD packet overflows interface MTU. */
2624 if (length + OSPF_LSA_HEADER_SIZE > OSPF_PACKET_MAX (oi))
2625 break;
2626
2627 /* Keep pointer to LS age. */
2628 lsah = (struct lsa_header *) (STREAM_DATA (s) +
2629 stream_get_putp (s));
2630
2631 /* Proceed stream pointer. */
2632 stream_put (s, lsa->data, OSPF_LSA_HEADER_SIZE);
2633 length += OSPF_LSA_HEADER_SIZE;
2634
2635 /* Set LS age. */
2636 ls_age = LS_AGE (lsa);
2637 lsah->ls_age = htons (ls_age);
2638
2639 }
2640
2641 /* Remove LSA from DB summary list. */
2642 ospf_lsdb_delete (lsdb, lsa);
2643 }
2644 }
2645
2646 return length;
2647}
2648
2649int
2650ospf_make_ls_req_func (struct stream *s, u_int16_t *length,
2651 unsigned long delta, struct ospf_neighbor *nbr,
2652 struct ospf_lsa *lsa)
2653{
2654 struct ospf_interface *oi;
2655
2656 oi = nbr->oi;
2657
2658 /* LS Request packet overflows interface MTU. */
2659 if (*length + delta > OSPF_PACKET_MAX(oi))
2660 return 0;
2661
2662 stream_putl (s, lsa->data->type);
2663 stream_put_ipv4 (s, lsa->data->id.s_addr);
2664 stream_put_ipv4 (s, lsa->data->adv_router.s_addr);
2665
2666 ospf_lsa_unlock (nbr->ls_req_last);
2667 nbr->ls_req_last = ospf_lsa_lock (lsa);
2668
2669 *length += 12;
2670 return 1;
2671}
2672
2673int
2674ospf_make_ls_req (struct ospf_neighbor *nbr, struct stream *s)
2675{
2676 struct ospf_lsa *lsa;
2677 u_int16_t length = OSPF_LS_REQ_MIN_SIZE;
2678 unsigned long delta = stream_get_putp(s)+12;
2679 struct route_table *table;
2680 struct route_node *rn;
2681 int i;
2682 struct ospf_lsdb *lsdb;
2683
2684 lsdb = &nbr->ls_req;
2685
2686 for (i = OSPF_MIN_LSA; i < OSPF_MAX_LSA; i++)
2687 {
2688 table = lsdb->type[i].db;
2689 for (rn = route_top (table); rn; rn = route_next (rn))
2690 if ((lsa = (rn->info)) != NULL)
2691 if (ospf_make_ls_req_func (s, &length, delta, nbr, lsa) == 0)
2692 {
2693 route_unlock_node (rn);
2694 break;
2695 }
2696 }
2697 return length;
2698}
2699
2700int
2701ls_age_increment (struct ospf_lsa *lsa, int delay)
2702{
2703 int age;
2704
2705 age = IS_LSA_MAXAGE (lsa) ? OSPF_LSA_MAXAGE : LS_AGE (lsa) + delay;
2706
2707 return (age > OSPF_LSA_MAXAGE ? OSPF_LSA_MAXAGE : age);
2708}
2709
2710int
2711ospf_make_ls_upd (struct ospf_interface *oi, list update, struct stream *s)
2712{
2713 struct ospf_lsa *lsa;
2714 listnode node;
2715 u_int16_t length = OSPF_LS_UPD_MIN_SIZE;
2716 unsigned long delta = stream_get_putp (s);
2717 unsigned long pp;
2718 int count = 0;
2719
2720 if (IS_DEBUG_OSPF_EVENT)
2721 zlog_info("ospf_make_ls_upd: Start");
2722
2723 pp = stream_get_putp (s);
2724 ospf_output_forward (s, 4);
2725
2726 while ((node = listhead (update)) != NULL)
2727 {
2728 struct lsa_header *lsah;
2729 u_int16_t ls_age;
2730
2731 if (IS_DEBUG_OSPF_EVENT)
2732 zlog_info("ospf_make_ls_upd: List Iteration");
2733
2734 lsa = getdata (node);
2735 assert (lsa);
2736 assert (lsa->data);
2737
2738 /* Check packet size. */
2739 if (length + delta + ntohs (lsa->data->length) > OSPF_PACKET_MAX (oi))
paul93fe5c52003-06-30 21:41:26 +00002740 break;
paul718e3742002-12-13 20:15:29 +00002741
2742 /* Keep pointer to LS age. */
2743 lsah = (struct lsa_header *) (STREAM_DATA (s) + stream_get_putp (s));
2744
2745 /* Put LSA to Link State Request. */
2746 stream_put (s, lsa->data, ntohs (lsa->data->length));
2747
2748 /* Set LS age. */
2749 /* each hop must increment an lsa_age by transmit_delay
2750 of OSPF interface */
2751 ls_age = ls_age_increment (lsa, OSPF_IF_PARAM (oi, transmit_delay));
2752 lsah->ls_age = htons (ls_age);
2753
2754 length += ntohs (lsa->data->length);
2755 count++;
2756
2757 list_delete_node (update, node);
2758 ospf_lsa_unlock (lsa);
2759 }
2760
2761 /* Now set #LSAs. */
2762 stream_set_putp (s, pp);
2763 stream_putl (s, count);
2764
2765 stream_set_putp (s, s->endp);
2766
2767 if (IS_DEBUG_OSPF_EVENT)
2768 zlog_info("ospf_make_ls_upd: Stop");
2769 return length;
2770}
2771
2772int
2773ospf_make_ls_ack (struct ospf_interface *oi, list ack, struct stream *s)
2774{
2775 list rm_list;
2776 listnode node;
2777 u_int16_t length = OSPF_LS_ACK_MIN_SIZE;
2778 unsigned long delta = stream_get_putp(s) + 24;
2779 struct ospf_lsa *lsa;
2780
2781 rm_list = list_new ();
2782
2783 for (node = listhead (ack); node; nextnode (node))
2784 {
2785 lsa = getdata (node);
2786 assert (lsa);
2787
2788 if (length + delta > OSPF_PACKET_MAX (oi))
2789 break;
2790
2791 stream_put (s, lsa->data, OSPF_LSA_HEADER_SIZE);
2792 length += OSPF_LSA_HEADER_SIZE;
2793
2794 listnode_add (rm_list, lsa);
2795 }
2796
2797 /* Remove LSA from LS-Ack list. */
2798 for (node = listhead (rm_list); node; nextnode (node))
2799 {
2800 lsa = (struct ospf_lsa *) getdata (node);
2801
2802 listnode_delete (ack, lsa);
2803 ospf_lsa_unlock (lsa);
2804 }
2805
2806 list_delete (rm_list);
2807
2808 return length;
2809}
2810
2811void
2812ospf_hello_send_sub (struct ospf_interface *oi, struct in_addr *addr)
2813{
2814 struct ospf_packet *op;
2815 u_int16_t length = OSPF_HEADER_SIZE;
2816
2817 op = ospf_packet_new (oi->ifp->mtu);
2818
2819 /* Prepare OSPF common header. */
2820 ospf_make_header (OSPF_MSG_HELLO, oi, op->s);
2821
2822 /* Prepare OSPF Hello body. */
2823 length += ospf_make_hello (oi, op->s);
2824
2825 /* Fill OSPF header. */
2826 ospf_fill_header (oi, op->s, length);
2827
2828 /* Set packet length. */
2829 op->length = length;
2830
2831 op->dst.s_addr = addr->s_addr;
2832
2833 /* Add packet to the interface output queue. */
2834 ospf_packet_add (oi, op);
2835
2836 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00002837 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00002838}
2839
2840void
2841ospf_poll_send (struct ospf_nbr_nbma *nbr_nbma)
2842{
2843 struct ospf_interface *oi;
2844
2845 oi = nbr_nbma->oi;
2846 assert(oi);
2847
2848 /* If this is passive interface, do not send OSPF Hello. */
2849 if (OSPF_IF_PARAM (oi, passive_interface) == OSPF_IF_PASSIVE)
2850 return;
2851
2852 if (oi->type != OSPF_IFTYPE_NBMA)
2853 return;
2854
2855 if (nbr_nbma->nbr != NULL && nbr_nbma->nbr->state != NSM_Down)
2856 return;
2857
2858 if (PRIORITY(oi) == 0)
2859 return;
2860
2861 if (nbr_nbma->priority == 0
2862 && oi->state != ISM_DR && oi->state != ISM_Backup)
2863 return;
2864
2865 ospf_hello_send_sub (oi, &nbr_nbma->addr);
2866}
2867
2868int
2869ospf_poll_timer (struct thread *thread)
2870{
2871 struct ospf_nbr_nbma *nbr_nbma;
2872
2873 nbr_nbma = THREAD_ARG (thread);
2874 nbr_nbma->t_poll = NULL;
2875
2876 if (IS_DEBUG_OSPF (nsm, NSM_TIMERS))
2877 zlog (NULL, LOG_INFO, "NSM[%s:%s]: Timer (Poll timer expire)",
2878 IF_NAME (nbr_nbma->oi), inet_ntoa (nbr_nbma->addr));
2879
2880 ospf_poll_send (nbr_nbma);
2881
2882 if (nbr_nbma->v_poll > 0)
2883 OSPF_POLL_TIMER_ON (nbr_nbma->t_poll, ospf_poll_timer,
2884 nbr_nbma->v_poll);
2885
2886 return 0;
2887}
2888
2889
2890int
2891ospf_hello_reply_timer (struct thread *thread)
2892{
2893 struct ospf_neighbor *nbr;
2894
2895 nbr = THREAD_ARG (thread);
2896 nbr->t_hello_reply = NULL;
2897
2898 assert (nbr->oi);
2899
2900 if (IS_DEBUG_OSPF (nsm, NSM_TIMERS))
2901 zlog (NULL, LOG_INFO, "NSM[%s:%s]: Timer (hello-reply timer expire)",
2902 IF_NAME (nbr->oi), inet_ntoa (nbr->router_id));
2903
2904 ospf_hello_send_sub (nbr->oi, &nbr->address.u.prefix4);
2905
2906 return 0;
2907}
2908
2909/* Send OSPF Hello. */
2910void
2911ospf_hello_send (struct ospf_interface *oi)
2912{
2913 struct ospf_packet *op;
2914 u_int16_t length = OSPF_HEADER_SIZE;
2915
2916 /* If this is passive interface, do not send OSPF Hello. */
2917 if (OSPF_IF_PARAM (oi, passive_interface) == OSPF_IF_PASSIVE)
2918 return;
2919
2920 op = ospf_packet_new (oi->ifp->mtu);
2921
2922 /* Prepare OSPF common header. */
2923 ospf_make_header (OSPF_MSG_HELLO, oi, op->s);
2924
2925 /* Prepare OSPF Hello body. */
2926 length += ospf_make_hello (oi, op->s);
2927
2928 /* Fill OSPF header. */
2929 ospf_fill_header (oi, op->s, length);
2930
2931 /* Set packet length. */
2932 op->length = length;
2933
2934 if (oi->type == OSPF_IFTYPE_NBMA)
2935 {
2936 struct ospf_neighbor *nbr;
2937 struct route_node *rn;
2938
2939 for (rn = route_top (oi->nbrs); rn; rn = route_next (rn))
2940 if ((nbr = rn->info))
2941 if (nbr != oi->nbr_self)
2942 if (nbr->state != NSM_Down)
2943 {
2944 /* RFC 2328 Section 9.5.1
2945 If the router is not eligible to become Designated Router,
2946 it must periodically send Hello Packets to both the
2947 Designated Router and the Backup Designated Router (if they
2948 exist). */
2949 if (PRIORITY(oi) == 0 &&
2950 IPV4_ADDR_CMP(&DR(oi), &nbr->address.u.prefix4) &&
2951 IPV4_ADDR_CMP(&BDR(oi), &nbr->address.u.prefix4))
2952 continue;
2953
2954 /* If the router is eligible to become Designated Router, it
2955 must periodically send Hello Packets to all neighbors that
2956 are also eligible. In addition, if the router is itself the
2957 Designated Router or Backup Designated Router, it must also
2958 send periodic Hello Packets to all other neighbors. */
2959
2960 if (nbr->priority == 0 && oi->state == ISM_DROther)
2961 continue;
2962 /* if oi->state == Waiting, send hello to all neighbors */
2963 {
2964 struct ospf_packet *op_dup;
2965
2966 op_dup = ospf_packet_dup(op);
2967 op_dup->dst = nbr->address.u.prefix4;
2968
2969 /* Add packet to the interface output queue. */
2970 ospf_packet_add (oi, op_dup);
2971
paul020709f2003-04-04 02:44:16 +00002972 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00002973 }
2974
2975 }
2976 ospf_packet_free (op);
2977 }
2978 else
2979 {
2980 /* Decide destination address. */
2981 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
2982 op->dst.s_addr = oi->vl_data->peer_addr.s_addr;
2983 else
2984 op->dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
2985
2986 /* Add packet to the interface output queue. */
2987 ospf_packet_add (oi, op);
2988
2989 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00002990 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00002991 }
2992}
2993
2994/* Send OSPF Database Description. */
2995void
2996ospf_db_desc_send (struct ospf_neighbor *nbr)
2997{
2998 struct ospf_interface *oi;
2999 struct ospf_packet *op;
3000 u_int16_t length = OSPF_HEADER_SIZE;
3001
3002 oi = nbr->oi;
3003 op = ospf_packet_new (oi->ifp->mtu);
3004
3005 /* Prepare OSPF common header. */
3006 ospf_make_header (OSPF_MSG_DB_DESC, oi, op->s);
3007
3008 /* Prepare OSPF Database Description body. */
3009 length += ospf_make_db_desc (oi, nbr, op->s);
3010
3011 /* Fill OSPF header. */
3012 ospf_fill_header (oi, op->s, length);
3013
3014 /* Set packet length. */
3015 op->length = length;
3016
3017 /* Decide destination address. */
3018 op->dst = nbr->address.u.prefix4;
3019
3020 /* Add packet to the interface output queue. */
3021 ospf_packet_add (oi, op);
3022
3023 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00003024 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00003025
3026 /* Remove old DD packet, then copy new one and keep in neighbor structure. */
3027 if (nbr->last_send)
3028 ospf_packet_free (nbr->last_send);
3029 nbr->last_send = ospf_packet_dup (op);
3030 gettimeofday (&nbr->last_send_ts, NULL);
3031}
3032
3033/* Re-send Database Description. */
3034void
3035ospf_db_desc_resend (struct ospf_neighbor *nbr)
3036{
3037 struct ospf_interface *oi;
3038
3039 oi = nbr->oi;
3040
3041 /* Add packet to the interface output queue. */
3042 ospf_packet_add (oi, ospf_packet_dup (nbr->last_send));
3043
3044 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00003045 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00003046}
3047
3048/* Send Link State Request. */
3049void
3050ospf_ls_req_send (struct ospf_neighbor *nbr)
3051{
3052 struct ospf_interface *oi;
3053 struct ospf_packet *op;
3054 u_int16_t length = OSPF_HEADER_SIZE;
3055
3056 oi = nbr->oi;
3057 op = ospf_packet_new (oi->ifp->mtu);
3058
3059 /* Prepare OSPF common header. */
3060 ospf_make_header (OSPF_MSG_LS_REQ, oi, op->s);
3061
3062 /* Prepare OSPF Link State Request body. */
3063 length += ospf_make_ls_req (nbr, op->s);
3064 if (length == OSPF_HEADER_SIZE)
3065 {
3066 ospf_packet_free (op);
3067 return;
3068 }
3069
3070 /* Fill OSPF header. */
3071 ospf_fill_header (oi, op->s, length);
3072
3073 /* Set packet length. */
3074 op->length = length;
3075
3076 /* Decide destination address. */
3077 op->dst = nbr->address.u.prefix4;
3078
3079 /* Add packet to the interface output queue. */
3080 ospf_packet_add (oi, op);
3081
3082 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00003083 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00003084
3085 /* Add Link State Request Retransmission Timer. */
3086 OSPF_NSM_TIMER_ON (nbr->t_ls_req, ospf_ls_req_timer, nbr->v_ls_req);
3087}
3088
3089/* Send Link State Update with an LSA. */
3090void
3091ospf_ls_upd_send_lsa (struct ospf_neighbor *nbr, struct ospf_lsa *lsa,
3092 int flag)
3093{
3094 list update;
3095
3096 update = list_new ();
3097
3098 listnode_add (update, lsa);
3099 ospf_ls_upd_send (nbr, update, flag);
3100
3101 list_delete (update);
3102}
3103
3104static void
3105ospf_ls_upd_queue_send (struct ospf_interface *oi, list update,
3106 struct in_addr addr)
3107{
3108 struct ospf_packet *op;
3109 u_int16_t length = OSPF_HEADER_SIZE;
3110
3111 if (IS_DEBUG_OSPF_EVENT)
3112 zlog_info ("listcount = %d, dst %s", listcount (update), inet_ntoa(addr));
3113
3114 op = ospf_packet_new (oi->ifp->mtu);
3115
3116 /* Prepare OSPF common header. */
3117 ospf_make_header (OSPF_MSG_LS_UPD, oi, op->s);
3118
3119 /* Prepare OSPF Link State Update body. */
3120 /* Includes Type-7 translation. */
3121 length += ospf_make_ls_upd (oi, update, op->s);
3122
3123 /* Fill OSPF header. */
3124 ospf_fill_header (oi, op->s, length);
3125
3126 /* Set packet length. */
3127 op->length = length;
3128
3129 /* Decide destination address. */
3130 op->dst.s_addr = addr.s_addr;
3131
3132 /* Add packet to the interface output queue. */
3133 ospf_packet_add (oi, op);
3134
3135 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00003136 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00003137}
3138
3139static int
3140ospf_ls_upd_send_queue_event (struct thread *thread)
3141{
3142 struct ospf_interface *oi = THREAD_ARG(thread);
3143 struct route_node *rn;
paul736d3442003-07-24 23:22:57 +00003144 struct route_node *rnext;
paul718e3742002-12-13 20:15:29 +00003145
3146 oi->t_ls_upd_event = NULL;
3147
3148 if (IS_DEBUG_OSPF_EVENT)
3149 zlog_info ("ospf_ls_upd_send_queue start");
3150
paul736d3442003-07-24 23:22:57 +00003151 for (rn = route_top (oi->ls_upd_queue); rn; rn = rnext)
paul718e3742002-12-13 20:15:29 +00003152 {
paul736d3442003-07-24 23:22:57 +00003153
3154 rnext = route_next (rn);
3155
paul718e3742002-12-13 20:15:29 +00003156 if (rn->info == NULL)
paul736d3442003-07-24 23:22:57 +00003157 continue;
paul718e3742002-12-13 20:15:29 +00003158
3159 while (!list_isempty ((list)rn->info))
paul736d3442003-07-24 23:22:57 +00003160 ospf_ls_upd_queue_send (oi, rn->info, rn->p.u.prefix4);
paul718e3742002-12-13 20:15:29 +00003161
3162 list_delete (rn->info);
3163 rn->info = NULL;
3164
3165 route_unlock_node (rn);
3166 }
3167
3168 if (IS_DEBUG_OSPF_EVENT)
3169 zlog_info ("ospf_ls_upd_send_queue stop");
3170 return 0;
3171}
3172
3173void
3174ospf_ls_upd_send (struct ospf_neighbor *nbr, list update, int flag)
3175{
3176 struct ospf_interface *oi;
3177 struct prefix_ipv4 p;
3178 struct route_node *rn;
3179 listnode n;
3180
3181 oi = nbr->oi;
3182
3183 p.family = AF_INET;
3184 p.prefixlen = IPV4_MAX_BITLEN;
3185
3186 /* Decide destination address. */
3187 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
3188 p.prefix = oi->vl_data->peer_addr;
3189 else if (flag == OSPF_SEND_PACKET_DIRECT)
3190 p.prefix = nbr->address.u.prefix4;
3191 else if (oi->state == ISM_DR || oi->state == ISM_Backup)
3192 p.prefix.s_addr = htonl (OSPF_ALLSPFROUTERS);
3193 else if ((oi->type == OSPF_IFTYPE_POINTOPOINT)
3194 && (flag == OSPF_SEND_PACKET_INDIRECT))
3195 p.prefix.s_addr = htonl (OSPF_ALLSPFROUTERS);
paul7afa08d2002-12-13 20:59:45 +00003196 else if (oi->type == OSPF_IFTYPE_POINTOMULTIPOINT)
3197 p.prefix.s_addr = htonl (OSPF_ALLSPFROUTERS);
paul718e3742002-12-13 20:15:29 +00003198 else
3199 p.prefix.s_addr = htonl (OSPF_ALLDROUTERS);
3200
3201 if (oi->type == OSPF_IFTYPE_NBMA)
3202 {
3203 if (flag == OSPF_SEND_PACKET_INDIRECT)
3204 zlog_warn ("* LS-Update is directly sent on NBMA network.");
3205 if (IPV4_ADDR_SAME(&oi->address->u.prefix4, &p.prefix.s_addr))
3206 zlog_warn ("* LS-Update is sent to myself.");
3207 }
3208
3209 rn = route_node_get (oi->ls_upd_queue, (struct prefix *) &p);
3210
3211 if (rn->info == NULL)
3212 rn->info = list_new ();
3213
3214 for (n = listhead (update); n; nextnode (n))
3215 listnode_add (rn->info, ospf_lsa_lock (getdata (n)));
3216
3217 if (oi->t_ls_upd_event == NULL)
3218 oi->t_ls_upd_event =
3219 thread_add_event (master, ospf_ls_upd_send_queue_event, oi, 0);
3220}
3221
3222static void
3223ospf_ls_ack_send_list (struct ospf_interface *oi, list ack, struct in_addr dst)
3224{
3225 struct ospf_packet *op;
3226 u_int16_t length = OSPF_HEADER_SIZE;
3227
3228 op = ospf_packet_new (oi->ifp->mtu);
3229
3230 /* Prepare OSPF common header. */
3231 ospf_make_header (OSPF_MSG_LS_ACK, oi, op->s);
3232
3233 /* Prepare OSPF Link State Acknowledgment body. */
3234 length += ospf_make_ls_ack (oi, ack, op->s);
3235
3236 /* Fill OSPF header. */
3237 ospf_fill_header (oi, op->s, length);
3238
3239 /* Set packet length. */
3240 op->length = length;
3241
3242 /* Set destination IP address. */
3243 op->dst = dst;
3244
3245 /* Add packet to the interface output queue. */
3246 ospf_packet_add (oi, op);
3247
3248 /* Hook thread to write packet. */
paul020709f2003-04-04 02:44:16 +00003249 OSPF_ISM_WRITE_ON (oi->ospf);
paul718e3742002-12-13 20:15:29 +00003250}
3251
3252static int
3253ospf_ls_ack_send_event (struct thread *thread)
3254{
3255 struct ospf_interface *oi = THREAD_ARG (thread);
3256
3257 oi->t_ls_ack_direct = NULL;
3258
3259 while (listcount (oi->ls_ack_direct.ls_ack))
3260 ospf_ls_ack_send_list (oi, oi->ls_ack_direct.ls_ack,
3261 oi->ls_ack_direct.dst);
3262
3263 return 0;
3264}
3265
3266void
3267ospf_ls_ack_send (struct ospf_neighbor *nbr, struct ospf_lsa *lsa)
3268{
3269 struct ospf_interface *oi = nbr->oi;
3270
3271 if (listcount (oi->ls_ack_direct.ls_ack) == 0)
3272 oi->ls_ack_direct.dst = nbr->address.u.prefix4;
3273
3274 listnode_add (oi->ls_ack_direct.ls_ack, ospf_lsa_lock (lsa));
3275
3276 if (oi->t_ls_ack_direct == NULL)
3277 oi->t_ls_ack_direct =
3278 thread_add_event (master, ospf_ls_ack_send_event, oi, 0);
3279}
3280
3281/* Send Link State Acknowledgment delayed. */
3282void
3283ospf_ls_ack_send_delayed (struct ospf_interface *oi)
3284{
3285 struct in_addr dst;
3286
3287 /* Decide destination address. */
3288 /* RFC2328 Section 13.5 On non-broadcast
3289 networks, delayed Link State Acknowledgment packets must be
3290 unicast separately over each adjacency (i.e., neighbor whose
3291 state is >= Exchange). */
3292 if (oi->type == OSPF_IFTYPE_NBMA)
3293 {
3294 struct ospf_neighbor *nbr;
3295 struct route_node *rn;
3296
3297 for (rn = route_top (oi->nbrs); rn; rn = route_next (rn))
3298 if ((nbr = rn->info) != NULL)
3299 if (nbr != oi->nbr_self && nbr->state >= NSM_Exchange)
3300 while (listcount (oi->ls_ack))
3301 ospf_ls_ack_send_list (oi, oi->ls_ack, nbr->address.u.prefix4);
3302 return;
3303 }
3304 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
3305 dst.s_addr = oi->vl_data->peer_addr.s_addr;
3306 else if (oi->state == ISM_DR || oi->state == ISM_Backup)
3307 dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3308 else if (oi->type == OSPF_IFTYPE_POINTOPOINT)
3309 dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3310 else
3311 dst.s_addr = htonl (OSPF_ALLDROUTERS);
3312
3313 while (listcount (oi->ls_ack))
3314 ospf_ls_ack_send_list (oi, oi->ls_ack, dst);
3315}