blob: 341a192cd2adad037047091d0c48e97c53bfd1ab [file] [log] [blame]
paul718e3742002-12-13 20:15:29 +00001/* BGP packet management routine.
2 Copyright (C) 1999 Kunihiro Ishiguro
3
4This file is part of GNU Zebra.
5
6GNU Zebra is free software; you can redistribute it and/or modify it
7under the terms of the GNU General Public License as published by the
8Free Software Foundation; either version 2, or (at your option) any
9later version.
10
11GNU Zebra is distributed in the hope that it will be useful, but
12WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14General Public License for more details.
15
16You should have received a copy of the GNU General Public License
17along with GNU Zebra; see the file COPYING. If not, write to the Free
18Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
1902111-1307, USA. */
20
21#include <zebra.h>
22
23#include "thread.h"
24#include "stream.h"
25#include "network.h"
26#include "prefix.h"
27#include "command.h"
28#include "log.h"
29#include "memory.h"
30#include "sockunion.h" /* for inet_ntop () */
31#include "linklist.h"
32#include "plist.h"
33
34#include "bgpd/bgpd.h"
35#include "bgpd/bgp_table.h"
36#include "bgpd/bgp_dump.h"
37#include "bgpd/bgp_attr.h"
38#include "bgpd/bgp_debug.h"
39#include "bgpd/bgp_fsm.h"
40#include "bgpd/bgp_route.h"
41#include "bgpd/bgp_packet.h"
42#include "bgpd/bgp_open.h"
43#include "bgpd/bgp_aspath.h"
44#include "bgpd/bgp_community.h"
45#include "bgpd/bgp_ecommunity.h"
46#include "bgpd/bgp_network.h"
47#include "bgpd/bgp_mplsvpn.h"
48#include "bgpd/bgp_advertise.h"
49
50int stream_put_prefix (struct stream *, struct prefix *);
51
52/* Set up BGP packet marker and packet type. */
53static int
54bgp_packet_set_marker (struct stream *s, u_char type)
55{
56 int i;
57
58 /* Fill in marker. */
59 for (i = 0; i < BGP_MARKER_SIZE; i++)
60 stream_putc (s, 0xff);
61
62 /* Dummy total length. This field is should be filled in later on. */
63 stream_putw (s, 0);
64
65 /* BGP packet type. */
66 stream_putc (s, type);
67
68 /* Return current stream size. */
69 return stream_get_putp (s);
70}
71
72/* Set BGP packet header size entry. If size is zero then use current
73 stream size. */
74static int
75bgp_packet_set_size (struct stream *s)
76{
77 int cp;
78
79 /* Preserve current pointer. */
80 cp = stream_get_putp (s);
81 stream_set_putp (s, BGP_MARKER_SIZE);
82 stream_putw (s, cp);
83
84 /* Write back current pointer. */
85 stream_set_putp (s, cp);
86
87 return cp;
88}
89
90/* Add new packet to the peer. */
91void
92bgp_packet_add (struct peer *peer, struct stream *s)
93{
94 /* Add packet to the end of list. */
95 stream_fifo_push (peer->obuf, s);
96}
97
98/* Free first packet. */
99void
100bgp_packet_delete (struct peer *peer)
101{
102 stream_free (stream_fifo_pop (peer->obuf));
103}
104
105/* Duplicate packet. */
106struct stream *
107bgp_packet_dup (struct stream *s)
108{
109 struct stream *new;
110
111 new = stream_new (stream_get_endp (s));
112
113 new->endp = s->endp;
114 new->putp = s->putp;
115 new->getp = s->getp;
116
117 memcpy (new->data, s->data, stream_get_endp (s));
118
119 return new;
120}
121
122/* Check file descriptor whether connect is established. */
123static void
124bgp_connect_check (struct peer *peer)
125{
126 int status;
127 int slen;
128 int ret;
129
130 /* Anyway I have to reset read and write thread. */
131 BGP_READ_OFF (peer->t_read);
132 BGP_WRITE_OFF (peer->t_write);
133
134 /* Check file descriptor. */
135 slen = sizeof (status);
pauleb821182004-05-01 08:44:08 +0000136 ret = getsockopt(peer->fd, SOL_SOCKET, SO_ERROR, (void *) &status, &slen);
paul718e3742002-12-13 20:15:29 +0000137
138 /* If getsockopt is fail, this is fatal error. */
139 if (ret < 0)
140 {
141 zlog (peer->log, LOG_INFO, "can't get sockopt for nonblocking connect");
142 BGP_EVENT_ADD (peer, TCP_fatal_error);
143 return;
144 }
145
146 /* When status is 0 then TCP connection is established. */
147 if (status == 0)
148 {
149 BGP_EVENT_ADD (peer, TCP_connection_open);
150 }
151 else
152 {
153 if (BGP_DEBUG (events, EVENTS))
154 plog_info (peer->log, "%s [Event] Connect failed (%s)",
155 peer->host, strerror (errno));
156 BGP_EVENT_ADD (peer, TCP_connection_open_failed);
157 }
158}
159
160/* Make BGP update packet. */
161struct stream *
162bgp_update_packet (struct peer *peer, afi_t afi, safi_t safi)
163{
164 struct stream *s;
165 struct bgp_adj_out *adj;
166 struct bgp_advertise *adv;
167 struct stream *packet;
168 struct bgp_node *rn = NULL;
169 struct bgp_info *binfo = NULL;
170 bgp_size_t total_attr_len = 0;
171 unsigned long pos;
172 char buf[BUFSIZ];
173 struct prefix_rd *prd = NULL;
174 char *tag = NULL;
175
176 s = peer->work;
177 stream_reset (s);
178
179 adv = FIFO_HEAD (&peer->sync[afi][safi]->update);
180
181 while (adv)
182 {
183 if (adv->rn)
184 rn = adv->rn;
185 adj = adv->adj;
186 if (adv->binfo)
187 binfo = adv->binfo;
188#ifdef MPLS_VPN
189 if (rn)
190 prd = (struct prefix_rd *) &rn->prn->p;
191 if (binfo)
192 tag = binfo->tag;
193#endif /* MPLS_VPN */
194
195 /* When remaining space can't include NLRI and it's length. */
196 if (rn && STREAM_REMAIN (s) <= BGP_NLRI_LENGTH + PSIZE (rn->p.prefixlen))
197 break;
198
199 /* If packet is empty, set attribute. */
200 if (stream_empty (s))
201 {
202 bgp_packet_set_marker (s, BGP_MSG_UPDATE);
203 stream_putw (s, 0);
204 pos = stream_get_putp (s);
205 stream_putw (s, 0);
206 total_attr_len = bgp_packet_attribute (NULL, peer, s,
207 adv->baa->attr,
208 &rn->p, afi, safi,
209 binfo->peer, prd, tag);
210 stream_putw_at (s, pos, total_attr_len);
211 }
212
213 if (afi == AFI_IP && safi == SAFI_UNICAST)
214 stream_put_prefix (s, &rn->p);
215
216 if (BGP_DEBUG (update, UPDATE_OUT))
217 zlog (peer->log, LOG_INFO, "%s send UPDATE %s/%d",
218 peer->host,
219 inet_ntop (rn->p.family, &(rn->p.u.prefix), buf, BUFSIZ),
220 rn->p.prefixlen);
221
222 /* Synchnorize attribute. */
223 if (adj->attr)
224 bgp_attr_unintern (adj->attr);
225 else
226 peer->scount[afi][safi]++;
227
228 adj->attr = bgp_attr_intern (adv->baa->attr);
229
230 adv = bgp_advertise_clean (peer, adj, afi, safi);
231
232 if (! (afi == AFI_IP && safi == SAFI_UNICAST))
233 break;
234 }
235
236 if (! stream_empty (s))
237 {
238 bgp_packet_set_size (s);
239 packet = bgp_packet_dup (s);
240 bgp_packet_add (peer, packet);
pauleb821182004-05-01 08:44:08 +0000241 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000242 stream_reset (s);
243 return packet;
244 }
245 return NULL;
246
247}
248
249/* Make BGP withdraw packet. */
250struct stream *
251bgp_withdraw_packet (struct peer *peer, afi_t afi, safi_t safi)
252{
253 struct stream *s;
254 struct stream *packet;
255 struct bgp_adj_out *adj;
256 struct bgp_advertise *adv;
257 struct bgp_node *rn;
258 unsigned long pos;
259 bgp_size_t unfeasible_len;
260 bgp_size_t total_attr_len;
261 char buf[BUFSIZ];
262 struct prefix_rd *prd = NULL;
263
264 s = peer->work;
265 stream_reset (s);
266
267 while ((adv = FIFO_HEAD (&peer->sync[afi][safi]->withdraw)) != NULL)
268 {
269 adj = adv->adj;
270 rn = adv->rn;
271#ifdef MPLS_VPN
272 prd = (struct prefix_rd *) &rn->prn->p;
273#endif /* MPLS_VPN */
274
275 if (STREAM_REMAIN (s)
hasso4372df72004-05-20 10:20:02 +0000276 < (BGP_NLRI_LENGTH + BGP_TOTAL_ATTR_LEN + PSIZE (rn->p.prefixlen)))
paul718e3742002-12-13 20:15:29 +0000277 break;
278
279 if (stream_empty (s))
280 {
281 bgp_packet_set_marker (s, BGP_MSG_UPDATE);
282 stream_putw (s, 0);
283 }
284
285 if (afi == AFI_IP && safi == SAFI_UNICAST)
286 stream_put_prefix (s, &rn->p);
287 else
288 {
289 pos = stream_get_putp (s);
290 stream_putw (s, 0);
291 total_attr_len
292 = bgp_packet_withdraw (peer, s, &rn->p, afi, safi, prd, NULL);
293
294 /* Set total path attribute length. */
295 stream_putw_at (s, pos, total_attr_len);
296 }
297
298 if (BGP_DEBUG (update, UPDATE_OUT))
299 zlog (peer->log, LOG_INFO, "%s send UPDATE %s/%d -- unreachable",
300 peer->host,
301 inet_ntop (rn->p.family, &(rn->p.u.prefix), buf, BUFSIZ),
302 rn->p.prefixlen);
303
304 peer->scount[afi][safi]--;
305
306 bgp_adj_out_remove (rn, adj, peer, afi, safi);
307 bgp_unlock_node (rn);
308
309 if (! (afi == AFI_IP && safi == SAFI_UNICAST))
310 break;
311 }
312
313 if (! stream_empty (s))
314 {
315 if (afi == AFI_IP && safi == SAFI_UNICAST)
316 {
317 unfeasible_len
318 = stream_get_putp (s) - BGP_HEADER_SIZE - BGP_UNFEASIBLE_LEN;
319 stream_putw_at (s, BGP_HEADER_SIZE, unfeasible_len);
320 stream_putw (s, 0);
321 }
322 bgp_packet_set_size (s);
323 packet = bgp_packet_dup (s);
324 bgp_packet_add (peer, packet);
325 stream_reset (s);
326 return packet;
327 }
328
329 return NULL;
330}
331
332void
333bgp_default_update_send (struct peer *peer, struct attr *attr,
334 afi_t afi, safi_t safi, struct peer *from)
335{
336 struct stream *s;
337 struct stream *packet;
338 struct prefix p;
339 unsigned long pos;
340 bgp_size_t total_attr_len;
341 char attrstr[BUFSIZ];
342 char buf[BUFSIZ];
343
344#ifdef DISABLE_BGP_ANNOUNCE
345 return;
346#endif /* DISABLE_BGP_ANNOUNCE */
347
348 if (afi == AFI_IP)
349 str2prefix ("0.0.0.0/0", &p);
350#ifdef HAVE_IPV6
351 else
352 str2prefix ("::/0", &p);
353#endif /* HAVE_IPV6 */
354
355 /* Logging the attribute. */
356 if (BGP_DEBUG (update, UPDATE_OUT))
357 {
358 bgp_dump_attr (peer, attr, attrstr, BUFSIZ);
359 zlog (peer->log, LOG_INFO, "%s send UPDATE %s/%d %s",
360 peer->host, inet_ntop(p.family, &(p.u.prefix), buf, BUFSIZ),
361 p.prefixlen, attrstr);
362 }
363
364 s = stream_new (BGP_MAX_PACKET_SIZE);
365
366 /* Make BGP update packet. */
367 bgp_packet_set_marker (s, BGP_MSG_UPDATE);
368
369 /* Unfeasible Routes Length. */
370 stream_putw (s, 0);
371
372 /* Make place for total attribute length. */
373 pos = stream_get_putp (s);
374 stream_putw (s, 0);
375 total_attr_len = bgp_packet_attribute (NULL, peer, s, attr, &p, afi, safi, from, NULL, NULL);
376
377 /* Set Total Path Attribute Length. */
378 stream_putw_at (s, pos, total_attr_len);
379
380 /* NLRI set. */
381 if (p.family == AF_INET && safi == SAFI_UNICAST)
382 stream_put_prefix (s, &p);
383
384 /* Set size. */
385 bgp_packet_set_size (s);
386
387 packet = bgp_packet_dup (s);
388 stream_free (s);
389
390 /* Dump packet if debug option is set. */
391#ifdef DEBUG
392 bgp_packet_dump (packet);
393#endif /* DEBUG */
394
395 /* Add packet to the peer. */
396 bgp_packet_add (peer, packet);
397
pauleb821182004-05-01 08:44:08 +0000398 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000399}
400
401void
402bgp_default_withdraw_send (struct peer *peer, afi_t afi, safi_t safi)
403{
404 struct stream *s;
405 struct stream *packet;
406 struct prefix p;
407 unsigned long pos;
408 unsigned long cp;
409 bgp_size_t unfeasible_len;
410 bgp_size_t total_attr_len;
411 char buf[BUFSIZ];
412
413#ifdef DISABLE_BGP_ANNOUNCE
414 return;
415#endif /* DISABLE_BGP_ANNOUNCE */
416
417 if (afi == AFI_IP)
418 str2prefix ("0.0.0.0/0", &p);
419#ifdef HAVE_IPV6
420 else
421 str2prefix ("::/0", &p);
422#endif /* HAVE_IPV6 */
423
424 total_attr_len = 0;
425 pos = 0;
426
427 if (BGP_DEBUG (update, UPDATE_OUT))
428 zlog (peer->log, LOG_INFO, "%s send UPDATE %s/%d -- unreachable",
429 peer->host, inet_ntop(p.family, &(p.u.prefix), buf, BUFSIZ),
430 p.prefixlen);
431
432 s = stream_new (BGP_MAX_PACKET_SIZE);
433
434 /* Make BGP update packet. */
435 bgp_packet_set_marker (s, BGP_MSG_UPDATE);
436
437 /* Unfeasible Routes Length. */;
438 cp = stream_get_putp (s);
439 stream_putw (s, 0);
440
441 /* Withdrawn Routes. */
442 if (p.family == AF_INET && safi == SAFI_UNICAST)
443 {
444 stream_put_prefix (s, &p);
445
446 unfeasible_len = stream_get_putp (s) - cp - 2;
447
448 /* Set unfeasible len. */
449 stream_putw_at (s, cp, unfeasible_len);
450
451 /* Set total path attribute length. */
452 stream_putw (s, 0);
453 }
454 else
455 {
456 pos = stream_get_putp (s);
457 stream_putw (s, 0);
458 total_attr_len = bgp_packet_withdraw (peer, s, &p, afi, safi, NULL, NULL);
459
460 /* Set total path attribute length. */
461 stream_putw_at (s, pos, total_attr_len);
462 }
463
464 bgp_packet_set_size (s);
465
466 packet = bgp_packet_dup (s);
467 stream_free (s);
468
469 /* Add packet to the peer. */
470 bgp_packet_add (peer, packet);
471
pauleb821182004-05-01 08:44:08 +0000472 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000473}
474
475/* Get next packet to be written. */
476struct stream *
477bgp_write_packet (struct peer *peer)
478{
479 afi_t afi;
480 safi_t safi;
481 struct stream *s = NULL;
482 struct bgp_advertise *adv;
483
484 s = stream_fifo_head (peer->obuf);
485 if (s)
486 return s;
487
488 for (afi = AFI_IP; afi < AFI_MAX; afi++)
489 for (safi = SAFI_UNICAST; safi < SAFI_MAX; safi++)
490 {
491 adv = FIFO_HEAD (&peer->sync[afi][safi]->withdraw);
492 if (adv)
493 {
494 s = bgp_withdraw_packet (peer, afi, safi);
495 if (s)
496 return s;
497 }
498 }
499
500 for (afi = AFI_IP; afi < AFI_MAX; afi++)
501 for (safi = SAFI_UNICAST; safi < SAFI_MAX; safi++)
502 {
503 adv = FIFO_HEAD (&peer->sync[afi][safi]->update);
504 if (adv)
505 {
506 if (adv->binfo && adv->binfo->uptime < peer->synctime)
507 s = bgp_update_packet (peer, afi, safi);
508
509 if (s)
510 return s;
511 }
512 }
513
514 return NULL;
515}
516
517/* Is there partially written packet or updates we can send right
518 now. */
519int
520bgp_write_proceed (struct peer *peer)
521{
522 afi_t afi;
523 safi_t safi;
524 struct bgp_advertise *adv;
525
526 if (stream_fifo_head (peer->obuf))
527 return 1;
528
529 for (afi = AFI_IP; afi < AFI_MAX; afi++)
530 for (safi = SAFI_UNICAST; safi < SAFI_MAX; safi++)
531 if (FIFO_HEAD (&peer->sync[afi][safi]->withdraw))
532 return 1;
533
534 for (afi = AFI_IP; afi < AFI_MAX; afi++)
535 for (safi = SAFI_UNICAST; safi < SAFI_MAX; safi++)
536 if ((adv = FIFO_HEAD (&peer->sync[afi][safi]->update)) != NULL)
537 if (adv->binfo->uptime < peer->synctime)
538 return 1;
539
540 return 0;
541}
542
543/* Write packet to the peer. */
544int
545bgp_write (struct thread *thread)
546{
547 struct peer *peer;
548 u_char type;
549 struct stream *s;
550 int num;
551 int count = 0;
552 int write_errno;
553
554 /* Yes first of all get peer pointer. */
555 peer = THREAD_ARG (thread);
556 peer->t_write = NULL;
557
558 /* For non-blocking IO check. */
559 if (peer->status == Connect)
560 {
561 bgp_connect_check (peer);
562 return 0;
563 }
564
565 /* Nonblocking write until TCP output buffer is full. */
566 while (1)
567 {
568 int writenum;
569
570 s = bgp_write_packet (peer);
571 if (! s)
572 return 0;
573
574 /* Number of bytes to be sent. */
575 writenum = stream_get_endp (s) - stream_get_getp (s);
576
577 /* Call write() system call. */
pauleb821182004-05-01 08:44:08 +0000578 num = write (peer->fd, STREAM_PNT (s), writenum);
paul718e3742002-12-13 20:15:29 +0000579 write_errno = errno;
580 if (num <= 0)
581 {
582 /* Partial write. */
583 if (write_errno == EWOULDBLOCK || write_errno == EAGAIN)
584 break;
585
586 bgp_stop (peer);
587 peer->status = Idle;
588 bgp_timer_set (peer);
589 return 0;
590 }
591 if (num != writenum)
592 {
593 stream_forward (s, num);
594
595 if (write_errno == EAGAIN)
596 break;
597
598 continue;
599 }
600
601 /* Retrieve BGP packet type. */
602 stream_set_getp (s, BGP_MARKER_SIZE + 2);
603 type = stream_getc (s);
604
605 switch (type)
606 {
607 case BGP_MSG_OPEN:
608 peer->open_out++;
609 break;
610 case BGP_MSG_UPDATE:
611 peer->update_out++;
612 break;
613 case BGP_MSG_NOTIFY:
614 peer->notify_out++;
615 /* Double start timer. */
616 peer->v_start *= 2;
617
618 /* Overflow check. */
619 if (peer->v_start >= (60 * 2))
620 peer->v_start = (60 * 2);
621
622 /* BGP_EVENT_ADD (peer, BGP_Stop); */
623 bgp_stop (peer);
624 peer->status = Idle;
625 bgp_timer_set (peer);
626 return 0;
627 break;
628 case BGP_MSG_KEEPALIVE:
629 peer->keepalive_out++;
630 break;
631 case BGP_MSG_ROUTE_REFRESH_NEW:
632 case BGP_MSG_ROUTE_REFRESH_OLD:
633 peer->refresh_out++;
634 break;
635 case BGP_MSG_CAPABILITY:
636 peer->dynamic_cap_out++;
637 break;
638 }
639
640 /* OK we send packet so delete it. */
641 bgp_packet_delete (peer);
642
643 if (++count >= BGP_WRITE_PACKET_MAX)
644 break;
645 }
646
647 if (bgp_write_proceed (peer))
pauleb821182004-05-01 08:44:08 +0000648 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000649
650 return 0;
651}
652
653/* This is only for sending NOTIFICATION message to neighbor. */
654int
655bgp_write_notify (struct peer *peer)
656{
657 int ret;
658 u_char type;
659 struct stream *s;
660
661 /* There should be at least one packet. */
662 s = stream_fifo_head (peer->obuf);
663 if (!s)
664 return 0;
665 assert (stream_get_endp (s) >= BGP_HEADER_SIZE);
666
667 /* I'm not sure fd is writable. */
pauleb821182004-05-01 08:44:08 +0000668 ret = writen (peer->fd, STREAM_DATA (s), stream_get_endp (s));
paul718e3742002-12-13 20:15:29 +0000669 if (ret <= 0)
670 {
671 bgp_stop (peer);
672 peer->status = Idle;
673 bgp_timer_set (peer);
674 return 0;
675 }
676
677 /* Retrieve BGP packet type. */
678 stream_set_getp (s, BGP_MARKER_SIZE + 2);
679 type = stream_getc (s);
680
681 assert (type == BGP_MSG_NOTIFY);
682
683 /* Type should be notify. */
684 peer->notify_out++;
685
686 /* Double start timer. */
687 peer->v_start *= 2;
688
689 /* Overflow check. */
690 if (peer->v_start >= (60 * 2))
691 peer->v_start = (60 * 2);
692
693 /* We don't call event manager at here for avoiding other events. */
694 bgp_stop (peer);
695 peer->status = Idle;
696 bgp_timer_set (peer);
697
698 return 0;
699}
700
701/* Make keepalive packet and send it to the peer. */
702void
703bgp_keepalive_send (struct peer *peer)
704{
705 struct stream *s;
706 int length;
707
708 s = stream_new (BGP_MAX_PACKET_SIZE);
709
710 /* Make keepalive packet. */
711 bgp_packet_set_marker (s, BGP_MSG_KEEPALIVE);
712
713 /* Set packet size. */
714 length = bgp_packet_set_size (s);
715
716 /* Dump packet if debug option is set. */
717 /* bgp_packet_dump (s); */
718
719 if (BGP_DEBUG (keepalive, KEEPALIVE))
720 zlog_info ("%s sending KEEPALIVE", peer->host);
721 if (BGP_DEBUG (normal, NORMAL))
722 zlog_info ("%s send message type %d, length (incl. header) %d",
723 peer->host, BGP_MSG_KEEPALIVE, length);
724
725 /* Add packet to the peer. */
726 bgp_packet_add (peer, s);
727
pauleb821182004-05-01 08:44:08 +0000728 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000729}
730
731/* Make open packet and send it to the peer. */
732void
733bgp_open_send (struct peer *peer)
734{
735 struct stream *s;
736 int length;
737 u_int16_t send_holdtime;
738 as_t local_as;
739
740 if (CHECK_FLAG (peer->config, PEER_CONFIG_TIMER))
741 send_holdtime = peer->holdtime;
742 else
743 send_holdtime = peer->bgp->default_holdtime;
744
745 /* local-as Change */
746 if (peer->change_local_as)
747 local_as = peer->change_local_as;
748 else
749 local_as = peer->local_as;
750
751 s = stream_new (BGP_MAX_PACKET_SIZE);
752
753 /* Make open packet. */
754 bgp_packet_set_marker (s, BGP_MSG_OPEN);
755
756 /* Set open packet values. */
757 stream_putc (s, BGP_VERSION_4); /* BGP version */
758 stream_putw (s, local_as); /* My Autonomous System*/
759 stream_putw (s, send_holdtime); /* Hold Time */
760 stream_put_in_addr (s, &peer->local_id); /* BGP Identifier */
761
762 /* Set capability code. */
763 bgp_open_capability (s, peer);
764
765 /* Set BGP packet length. */
766 length = bgp_packet_set_size (s);
767
768 if (BGP_DEBUG (normal, NORMAL))
769 zlog_info ("%s sending OPEN, version %d, my as %d, holdtime %d, id %s",
770 peer->host, BGP_VERSION_4, local_as,
771 send_holdtime, inet_ntoa (peer->local_id));
772
773 if (BGP_DEBUG (normal, NORMAL))
774 zlog_info ("%s send message type %d, length (incl. header) %d",
775 peer->host, BGP_MSG_OPEN, length);
776
777 /* Dump packet if debug option is set. */
778 /* bgp_packet_dump (s); */
779
780 /* Add packet to the peer. */
781 bgp_packet_add (peer, s);
782
pauleb821182004-05-01 08:44:08 +0000783 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000784}
785
786/* Send BGP notify packet with data potion. */
787void
788bgp_notify_send_with_data (struct peer *peer, u_char code, u_char sub_code,
789 u_char *data, size_t datalen)
790{
791 struct stream *s;
792 int length;
793
794 /* Allocate new stream. */
795 s = stream_new (BGP_MAX_PACKET_SIZE);
796
797 /* Make nitify packet. */
798 bgp_packet_set_marker (s, BGP_MSG_NOTIFY);
799
800 /* Set notify packet values. */
801 stream_putc (s, code); /* BGP notify code */
802 stream_putc (s, sub_code); /* BGP notify sub_code */
803
804 /* If notify data is present. */
805 if (data)
806 stream_write (s, data, datalen);
807
808 /* Set BGP packet length. */
809 length = bgp_packet_set_size (s);
810
811 /* Add packet to the peer. */
812 stream_fifo_clean (peer->obuf);
813 bgp_packet_add (peer, s);
814
815 /* For debug */
816 {
817 struct bgp_notify bgp_notify;
818 int first = 0;
819 int i;
820 char c[4];
821
822 bgp_notify.code = code;
823 bgp_notify.subcode = sub_code;
824 bgp_notify.data = NULL;
825 bgp_notify.length = length - BGP_MSG_NOTIFY_MIN_SIZE;
826
827 if (bgp_notify.length)
828 {
829 bgp_notify.data = XMALLOC (MTYPE_TMP, bgp_notify.length * 3);
830 for (i = 0; i < bgp_notify.length; i++)
831 if (first)
832 {
833 sprintf (c, " %02x", data[i]);
834 strcat (bgp_notify.data, c);
835 }
836 else
837 {
838 first = 1;
839 sprintf (c, "%02x", data[i]);
840 strcpy (bgp_notify.data, c);
841 }
842 }
843 bgp_notify_print (peer, &bgp_notify, "sending");
844 if (bgp_notify.data)
845 XFREE (MTYPE_TMP, bgp_notify.data);
846 }
847
848 if (BGP_DEBUG (normal, NORMAL))
849 zlog_info ("%s send message type %d, length (incl. header) %d",
850 peer->host, BGP_MSG_NOTIFY, length);
851
hassoe0701b72004-05-20 09:19:34 +0000852 /* peer reset cause */
853 if (sub_code != BGP_NOTIFY_CEASE_CONFIG_CHANGE)
854 {
855 if (sub_code == BGP_NOTIFY_CEASE_ADMIN_RESET)
856 peer->last_reset = PEER_DOWN_USER_RESET;
857 else if (sub_code == BGP_NOTIFY_CEASE_ADMIN_SHUTDOWN)
858 peer->last_reset = PEER_DOWN_USER_SHUTDOWN;
859 else
860 peer->last_reset = PEER_DOWN_NOTIFY_SEND;
861 }
862
paul718e3742002-12-13 20:15:29 +0000863 /* Call imidiately. */
864 BGP_WRITE_OFF (peer->t_write);
865
866 bgp_write_notify (peer);
867}
868
869/* Send BGP notify packet. */
870void
871bgp_notify_send (struct peer *peer, u_char code, u_char sub_code)
872{
873 bgp_notify_send_with_data (peer, code, sub_code, NULL, 0);
874}
875
876char *
877afi2str (afi_t afi)
878{
879 if (afi == AFI_IP)
880 return "AFI_IP";
881 else if (afi == AFI_IP6)
882 return "AFI_IP6";
883 else
884 return "Unknown AFI";
885}
886
887char *
888safi2str (safi_t safi)
889{
890 if (safi == SAFI_UNICAST)
891 return "SAFI_UNICAST";
892 else if (safi == SAFI_MULTICAST)
893 return "SAFI_MULTICAST";
894 else if (safi == SAFI_MPLS_VPN || safi == BGP_SAFI_VPNV4)
895 return "SAFI_MPLS_VPN";
896 else
897 return "Unknown SAFI";
898}
899
900/* Send route refresh message to the peer. */
901void
902bgp_route_refresh_send (struct peer *peer, afi_t afi, safi_t safi,
903 u_char orf_type, u_char when_to_refresh, int remove)
904{
905 struct stream *s;
906 struct stream *packet;
907 int length;
908 struct bgp_filter *filter;
909 int orf_refresh = 0;
910
911#ifdef DISABLE_BGP_ANNOUNCE
912 return;
913#endif /* DISABLE_BGP_ANNOUNCE */
914
915 filter = &peer->filter[afi][safi];
916
917 /* Adjust safi code. */
918 if (safi == SAFI_MPLS_VPN)
919 safi = BGP_SAFI_VPNV4;
920
921 s = stream_new (BGP_MAX_PACKET_SIZE);
922
923 /* Make BGP update packet. */
924 if (CHECK_FLAG (peer->cap, PEER_CAP_REFRESH_NEW_RCV))
925 bgp_packet_set_marker (s, BGP_MSG_ROUTE_REFRESH_NEW);
926 else
927 bgp_packet_set_marker (s, BGP_MSG_ROUTE_REFRESH_OLD);
928
929 /* Encode Route Refresh message. */
930 stream_putw (s, afi);
931 stream_putc (s, 0);
932 stream_putc (s, safi);
933
934 if (orf_type == ORF_TYPE_PREFIX
935 || orf_type == ORF_TYPE_PREFIX_OLD)
936 if (remove || filter->plist[FILTER_IN].plist)
937 {
938 u_int16_t orf_len;
939 unsigned long orfp;
940
941 orf_refresh = 1;
942 stream_putc (s, when_to_refresh);
943 stream_putc (s, orf_type);
944 orfp = stream_get_putp (s);
945 stream_putw (s, 0);
946
947 if (remove)
948 {
949 UNSET_FLAG (peer->af_sflags[afi][safi], PEER_STATUS_ORF_PREFIX_SEND);
950 stream_putc (s, ORF_COMMON_PART_REMOVE_ALL);
951 if (BGP_DEBUG (normal, NORMAL))
952 zlog_info ("%s sending REFRESH_REQ to remove ORF(%d) (%s) for afi/safi: %d/%d",
953 peer->host, orf_type,
954 (when_to_refresh == REFRESH_DEFER ? "defer" : "immediate"),
955 afi, safi);
956 }
957 else
958 {
959 SET_FLAG (peer->af_sflags[afi][safi], PEER_STATUS_ORF_PREFIX_SEND);
960 prefix_bgp_orf_entry (s, filter->plist[FILTER_IN].plist,
961 ORF_COMMON_PART_ADD, ORF_COMMON_PART_PERMIT,
962 ORF_COMMON_PART_DENY);
963 if (BGP_DEBUG (normal, NORMAL))
964 zlog_info ("%s sending REFRESH_REQ with pfxlist ORF(%d) (%s) for afi/safi: %d/%d",
965 peer->host, orf_type,
966 (when_to_refresh == REFRESH_DEFER ? "defer" : "immediate"),
967 afi, safi);
968 }
969
970 /* Total ORF Entry Len. */
971 orf_len = stream_get_putp (s) - orfp - 2;
972 stream_putw_at (s, orfp, orf_len);
973 }
974
975 /* Set packet size. */
976 length = bgp_packet_set_size (s);
977
978 if (BGP_DEBUG (normal, NORMAL))
979 {
980 if (! orf_refresh)
981 zlog_info ("%s sending REFRESH_REQ for afi/safi: %d/%d",
982 peer->host, afi, safi);
983 zlog_info ("%s send message type %d, length (incl. header) %d",
984 peer->host, CHECK_FLAG (peer->cap, PEER_CAP_REFRESH_NEW_RCV) ?
985 BGP_MSG_ROUTE_REFRESH_NEW : BGP_MSG_ROUTE_REFRESH_OLD, length);
986 }
987
988 /* Make real packet. */
989 packet = bgp_packet_dup (s);
990 stream_free (s);
991
992 /* Add packet to the peer. */
993 bgp_packet_add (peer, packet);
994
pauleb821182004-05-01 08:44:08 +0000995 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +0000996}
997
998/* Send capability message to the peer. */
999void
1000bgp_capability_send (struct peer *peer, afi_t afi, safi_t safi,
1001 int capability_code, int action)
1002{
1003 struct stream *s;
1004 struct stream *packet;
1005 int length;
1006
1007 /* Adjust safi code. */
1008 if (safi == SAFI_MPLS_VPN)
1009 safi = BGP_SAFI_VPNV4;
1010
1011 s = stream_new (BGP_MAX_PACKET_SIZE);
1012
1013 /* Make BGP update packet. */
1014 bgp_packet_set_marker (s, BGP_MSG_CAPABILITY);
1015
1016 /* Encode MP_EXT capability. */
1017 if (capability_code == CAPABILITY_CODE_MP)
1018 {
1019 stream_putc (s, action);
1020 stream_putc (s, CAPABILITY_CODE_MP);
1021 stream_putc (s, CAPABILITY_CODE_MP_LEN);
1022 stream_putw (s, afi);
1023 stream_putc (s, 0);
1024 stream_putc (s, safi);
1025
1026 if (BGP_DEBUG (normal, NORMAL))
1027 zlog_info ("%s sending CAPABILITY has %s MP_EXT CAP for afi/safi: %d/%d",
1028 peer->host, action == CAPABILITY_ACTION_SET ?
1029 "Advertising" : "Removing", afi, safi);
1030 }
1031
1032 /* Encode Route Refresh capability. */
1033 if (capability_code == CAPABILITY_CODE_REFRESH)
1034 {
1035 stream_putc (s, action);
1036 stream_putc (s, CAPABILITY_CODE_REFRESH);
1037 stream_putc (s, CAPABILITY_CODE_REFRESH_LEN);
1038 stream_putc (s, action);
1039 stream_putc (s, CAPABILITY_CODE_REFRESH_OLD);
1040 stream_putc (s, CAPABILITY_CODE_REFRESH_LEN);
1041
1042 if (BGP_DEBUG (normal, NORMAL))
1043 zlog_info ("%s sending CAPABILITY has %s ROUTE-REFRESH capability",
1044 peer->host, action == CAPABILITY_ACTION_SET ?
1045 "Advertising" : "Removing");
1046 }
1047
1048 /* Set packet size. */
1049 length = bgp_packet_set_size (s);
1050
1051 /* Make real packet. */
1052 packet = bgp_packet_dup (s);
1053 stream_free (s);
1054
1055 /* Add packet to the peer. */
1056 bgp_packet_add (peer, packet);
1057
1058 if (BGP_DEBUG (normal, NORMAL))
1059 zlog_info ("%s send message type %d, length (incl. header) %d",
1060 peer->host, BGP_MSG_CAPABILITY, length);
1061
pauleb821182004-05-01 08:44:08 +00001062 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
paul718e3742002-12-13 20:15:29 +00001063}
1064
1065/* RFC1771 6.8 Connection collision detection. */
1066int
pauleb821182004-05-01 08:44:08 +00001067bgp_collision_detect (struct peer *new, struct in_addr remote_id)
paul718e3742002-12-13 20:15:29 +00001068{
pauleb821182004-05-01 08:44:08 +00001069 struct peer *peer;
paul718e3742002-12-13 20:15:29 +00001070 struct listnode *nn;
1071 struct bgp *bgp;
1072
1073 bgp = bgp_get_default ();
1074 if (! bgp)
1075 return 0;
1076
1077 /* Upon receipt of an OPEN message, the local system must examine
1078 all of its connections that are in the OpenConfirm state. A BGP
1079 speaker may also examine connections in an OpenSent state if it
1080 knows the BGP Identifier of the peer by means outside of the
1081 protocol. If among these connections there is a connection to a
1082 remote BGP speaker whose BGP Identifier equals the one in the
1083 OPEN message, then the local system performs the following
1084 collision resolution procedure: */
1085
1086 LIST_LOOP (bgp->peer, peer, nn)
1087 {
1088 /* Under OpenConfirm status, local peer structure already hold
1089 remote router ID. */
pauleb821182004-05-01 08:44:08 +00001090
1091 if (peer != new
1092 && (peer->status == OpenConfirm || peer->status == OpenSent)
1093 && sockunion_same (&peer->su, &new->su))
1094 {
paul718e3742002-12-13 20:15:29 +00001095 /* 1. The BGP Identifier of the local system is compared to
1096 the BGP Identifier of the remote system (as specified in
1097 the OPEN message). */
1098
1099 if (ntohl (peer->local_id.s_addr) < ntohl (remote_id.s_addr))
1100 {
1101 /* 2. If the value of the local BGP Identifier is less
1102 than the remote one, the local system closes BGP
1103 connection that already exists (the one that is
1104 already in the OpenConfirm state), and accepts BGP
1105 connection initiated by the remote system. */
1106
pauleb821182004-05-01 08:44:08 +00001107 if (peer->fd >= 0)
hassoe0701b72004-05-20 09:19:34 +00001108 bgp_notify_send (peer, BGP_NOTIFY_CEASE, BGP_NOTIFY_CEASE_COLLISION_RESOLUTION);
paul718e3742002-12-13 20:15:29 +00001109 return 1;
1110 }
1111 else
1112 {
1113 /* 3. Otherwise, the local system closes newly created
1114 BGP connection (the one associated with the newly
1115 received OPEN message), and continues to use the
1116 existing one (the one that is already in the
1117 OpenConfirm state). */
1118
pauleb821182004-05-01 08:44:08 +00001119 if (new->fd >= 0)
hassoe0701b72004-05-20 09:19:34 +00001120 bgp_notify_send (peer, BGP_NOTIFY_CEASE, BGP_NOTIFY_CEASE_COLLISION_RESOLUTION);
paul718e3742002-12-13 20:15:29 +00001121 return -1;
1122 }
pauleb821182004-05-01 08:44:08 +00001123 }
1124 }
paul718e3742002-12-13 20:15:29 +00001125 return 0;
1126}
1127
1128int
1129bgp_open_receive (struct peer *peer, bgp_size_t size)
1130{
1131 int ret;
1132 u_char version;
1133 u_char optlen;
1134 u_int16_t holdtime;
1135 u_int16_t send_holdtime;
1136 as_t remote_as;
1137 struct peer *realpeer;
1138 struct in_addr remote_id;
1139 int capability;
1140 char notify_data_remote_as[2];
1141 char notify_data_remote_id[4];
1142
1143 realpeer = NULL;
1144
1145 /* Parse open packet. */
1146 version = stream_getc (peer->ibuf);
1147 memcpy (notify_data_remote_as, stream_pnt (peer->ibuf), 2);
1148 remote_as = stream_getw (peer->ibuf);
1149 holdtime = stream_getw (peer->ibuf);
1150 memcpy (notify_data_remote_id, stream_pnt (peer->ibuf), 4);
1151 remote_id.s_addr = stream_get_ipv4 (peer->ibuf);
1152
1153 /* Receive OPEN message log */
1154 if (BGP_DEBUG (normal, NORMAL))
1155 zlog_info ("%s rcv OPEN, version %d, remote-as %d, holdtime %d, id %s",
1156 peer->host, version, remote_as, holdtime,
1157 inet_ntoa (remote_id));
1158
1159 /* Lookup peer from Open packet. */
1160 if (CHECK_FLAG (peer->sflags, PEER_STATUS_ACCEPT_PEER))
1161 {
1162 int as = 0;
1163
1164 realpeer = peer_lookup_with_open (&peer->su, remote_as, &remote_id, &as);
1165
1166 if (! realpeer)
1167 {
1168 /* Peer's source IP address is check in bgp_accept(), so this
1169 must be AS number mismatch or remote-id configuration
1170 mismatch. */
1171 if (as)
1172 {
1173 if (BGP_DEBUG (normal, NORMAL))
1174 zlog_info ("%s bad OPEN, wrong router identifier %s",
1175 peer->host, inet_ntoa (remote_id));
1176 bgp_notify_send_with_data (peer,
1177 BGP_NOTIFY_OPEN_ERR,
1178 BGP_NOTIFY_OPEN_BAD_BGP_IDENT,
1179 notify_data_remote_id, 4);
1180 }
1181 else
1182 {
1183 if (BGP_DEBUG (normal, NORMAL))
1184 zlog_info ("%s bad OPEN, remote AS is %d, expected %d",
1185 peer->host, remote_as, peer->as);
1186 bgp_notify_send_with_data (peer,
1187 BGP_NOTIFY_OPEN_ERR,
1188 BGP_NOTIFY_OPEN_BAD_PEER_AS,
1189 notify_data_remote_as, 2);
1190 }
1191 return -1;
1192 }
1193 }
1194
1195 /* When collision is detected and this peer is closed. Retrun
1196 immidiately. */
1197 ret = bgp_collision_detect (peer, remote_id);
1198 if (ret < 0)
1199 return ret;
1200
pauleb821182004-05-01 08:44:08 +00001201 /* Hack part. */
1202 if (CHECK_FLAG (peer->sflags, PEER_STATUS_ACCEPT_PEER))
1203 {
1204 if (ret == 0 && realpeer->status != Active
1205 && realpeer->status != OpenSent
1206 && realpeer->status != OpenConfirm)
1207 {
1208 if (BGP_DEBUG (events, EVENTS))
1209 zlog_info ("%s [Event] peer's status is %s close connection",
1210 realpeer->host, LOOKUP (bgp_status_msg, peer->status));
1211 return -1;
1212 }
1213
1214 if (BGP_DEBUG (events, EVENTS))
1215 zlog_info ("%s [Event] Transfer temporary BGP peer to existing one",
1216 peer->host);
1217
1218 bgp_stop (realpeer);
1219
1220 /* Transfer file descriptor. */
1221 realpeer->fd = peer->fd;
1222 peer->fd = -1;
1223
1224 /* Transfer input buffer. */
1225 stream_free (realpeer->ibuf);
1226 realpeer->ibuf = peer->ibuf;
1227 realpeer->packet_size = peer->packet_size;
1228 peer->ibuf = NULL;
1229
1230 /* Transfer status. */
1231 realpeer->status = peer->status;
1232 bgp_stop (peer);
1233
1234 /* peer pointer change. Open packet send to neighbor. */
1235 peer = realpeer;
1236 bgp_open_send (peer);
1237 if (peer->fd < 0)
1238 {
1239 zlog_err ("bgp_open_receive peer's fd is negative value %d",
1240 peer->fd);
1241 return -1;
1242 }
1243 BGP_READ_ON (peer->t_read, bgp_read, peer->fd);
1244 }
1245
paul718e3742002-12-13 20:15:29 +00001246 /* remote router-id check. */
1247 if (remote_id.s_addr == 0
1248 || ntohl (remote_id.s_addr) >= 0xe0000000
1249 || ntohl (peer->local_id.s_addr) == ntohl (remote_id.s_addr))
1250 {
1251 if (BGP_DEBUG (normal, NORMAL))
1252 zlog_info ("%s bad OPEN, wrong router identifier %s",
1253 peer->host, inet_ntoa (remote_id));
1254 bgp_notify_send_with_data (peer,
1255 BGP_NOTIFY_OPEN_ERR,
1256 BGP_NOTIFY_OPEN_BAD_BGP_IDENT,
1257 notify_data_remote_id, 4);
1258 return -1;
1259 }
1260
1261 /* Set remote router-id */
1262 peer->remote_id = remote_id;
1263
1264 /* Peer BGP version check. */
1265 if (version != BGP_VERSION_4)
1266 {
1267 if (BGP_DEBUG (normal, NORMAL))
1268 zlog_info ("%s bad protocol version, remote requested %d, local request %d",
1269 peer->host, version, BGP_VERSION_4);
1270 bgp_notify_send_with_data (peer,
1271 BGP_NOTIFY_OPEN_ERR,
1272 BGP_NOTIFY_OPEN_UNSUP_VERSION,
1273 "\x04", 1);
1274 return -1;
1275 }
1276
1277 /* Check neighbor as number. */
1278 if (remote_as != peer->as)
1279 {
1280 if (BGP_DEBUG (normal, NORMAL))
1281 zlog_info ("%s bad OPEN, remote AS is %d, expected %d",
1282 peer->host, remote_as, peer->as);
1283 bgp_notify_send_with_data (peer,
1284 BGP_NOTIFY_OPEN_ERR,
1285 BGP_NOTIFY_OPEN_BAD_PEER_AS,
1286 notify_data_remote_as, 2);
1287 return -1;
1288 }
1289
1290 /* From the rfc: Upon receipt of an OPEN message, a BGP speaker MUST
1291 calculate the value of the Hold Timer by using the smaller of its
1292 configured Hold Time and the Hold Time received in the OPEN message.
1293 The Hold Time MUST be either zero or at least three seconds. An
1294 implementation may reject connections on the basis of the Hold Time. */
1295
1296 if (holdtime < 3 && holdtime != 0)
1297 {
1298 bgp_notify_send (peer,
1299 BGP_NOTIFY_OPEN_ERR,
1300 BGP_NOTIFY_OPEN_UNACEP_HOLDTIME);
1301 return -1;
1302 }
1303
1304 /* From the rfc: A reasonable maximum time between KEEPALIVE messages
1305 would be one third of the Hold Time interval. KEEPALIVE messages
1306 MUST NOT be sent more frequently than one per second. An
1307 implementation MAY adjust the rate at which it sends KEEPALIVE
1308 messages as a function of the Hold Time interval. */
1309
1310 if (CHECK_FLAG (peer->config, PEER_CONFIG_TIMER))
1311 send_holdtime = peer->holdtime;
1312 else
1313 send_holdtime = peer->bgp->default_holdtime;
1314
1315 if (holdtime < send_holdtime)
1316 peer->v_holdtime = holdtime;
1317 else
1318 peer->v_holdtime = send_holdtime;
1319
1320 peer->v_keepalive = peer->v_holdtime / 3;
1321
1322 /* Open option part parse. */
1323 capability = 0;
1324 optlen = stream_getc (peer->ibuf);
1325 if (optlen != 0)
1326 {
1327 ret = bgp_open_option_parse (peer, optlen, &capability);
1328 if (ret < 0)
1329 return ret;
1330
1331 stream_forward (peer->ibuf, optlen);
1332 }
1333 else
1334 {
1335 if (BGP_DEBUG (normal, NORMAL))
1336 zlog_info ("%s rcvd OPEN w/ OPTION parameter len: 0",
1337 peer->host);
1338 }
1339
1340 /* Override capability. */
1341 if (! capability || CHECK_FLAG (peer->flags, PEER_FLAG_OVERRIDE_CAPABILITY))
1342 {
1343 peer->afc_nego[AFI_IP][SAFI_UNICAST] = peer->afc[AFI_IP][SAFI_UNICAST];
1344 peer->afc_nego[AFI_IP][SAFI_MULTICAST] = peer->afc[AFI_IP][SAFI_MULTICAST];
1345 peer->afc_nego[AFI_IP6][SAFI_UNICAST] = peer->afc[AFI_IP6][SAFI_UNICAST];
1346 peer->afc_nego[AFI_IP6][SAFI_MULTICAST] = peer->afc[AFI_IP6][SAFI_MULTICAST];
1347 }
1348
1349 /* Get sockname. */
1350 bgp_getsockname (peer);
1351
1352 BGP_EVENT_ADD (peer, Receive_OPEN_message);
1353
1354 peer->packet_size = 0;
1355 if (peer->ibuf)
1356 stream_reset (peer->ibuf);
1357
1358 return 0;
1359}
1360
1361/* Parse BGP Update packet and make attribute object. */
1362int
1363bgp_update_receive (struct peer *peer, bgp_size_t size)
1364{
1365 int ret;
1366 u_char *end;
1367 struct stream *s;
1368 struct attr attr;
1369 bgp_size_t attribute_len;
1370 bgp_size_t update_len;
1371 bgp_size_t withdraw_len;
1372 struct bgp_nlri update;
1373 struct bgp_nlri withdraw;
1374 struct bgp_nlri mp_update;
1375 struct bgp_nlri mp_withdraw;
1376 char attrstr[BUFSIZ];
1377
1378 /* Status must be Established. */
1379 if (peer->status != Established)
1380 {
1381 zlog_err ("%s [FSM] Update packet received under status %s",
1382 peer->host, LOOKUP (bgp_status_msg, peer->status));
1383 bgp_notify_send (peer, BGP_NOTIFY_FSM_ERR, 0);
1384 return -1;
1385 }
1386
1387 /* Set initial values. */
1388 memset (&attr, 0, sizeof (struct attr));
1389 memset (&update, 0, sizeof (struct bgp_nlri));
1390 memset (&withdraw, 0, sizeof (struct bgp_nlri));
1391 memset (&mp_update, 0, sizeof (struct bgp_nlri));
1392 memset (&mp_withdraw, 0, sizeof (struct bgp_nlri));
1393
1394 s = peer->ibuf;
1395 end = stream_pnt (s) + size;
1396
1397 /* RFC1771 6.3 If the Unfeasible Routes Length or Total Attribute
1398 Length is too large (i.e., if Unfeasible Routes Length + Total
1399 Attribute Length + 23 exceeds the message Length), then the Error
1400 Subcode is set to Malformed Attribute List. */
1401 if (stream_pnt (s) + 2 > end)
1402 {
1403 zlog_err ("%s [Error] Update packet error"
1404 " (packet length is short for unfeasible length)",
1405 peer->host);
1406 bgp_notify_send (peer, BGP_NOTIFY_UPDATE_ERR,
1407 BGP_NOTIFY_UPDATE_MAL_ATTR);
1408 return -1;
1409 }
1410
1411 /* Unfeasible Route Length. */
1412 withdraw_len = stream_getw (s);
1413
1414 /* Unfeasible Route Length check. */
1415 if (stream_pnt (s) + withdraw_len > end)
1416 {
1417 zlog_err ("%s [Error] Update packet error"
1418 " (packet unfeasible length overflow %d)",
1419 peer->host, withdraw_len);
1420 bgp_notify_send (peer, BGP_NOTIFY_UPDATE_ERR,
1421 BGP_NOTIFY_UPDATE_MAL_ATTR);
1422 return -1;
1423 }
1424
1425 /* Unfeasible Route packet format check. */
1426 if (withdraw_len > 0)
1427 {
1428 ret = bgp_nlri_sanity_check (peer, AFI_IP, stream_pnt (s), withdraw_len);
1429 if (ret < 0)
1430 return -1;
1431
1432 if (BGP_DEBUG (packet, PACKET_RECV))
1433 zlog_info ("%s [Update:RECV] Unfeasible NLRI received", peer->host);
1434
1435 withdraw.afi = AFI_IP;
1436 withdraw.safi = SAFI_UNICAST;
1437 withdraw.nlri = stream_pnt (s);
1438 withdraw.length = withdraw_len;
1439 stream_forward (s, withdraw_len);
1440 }
1441
1442 /* Attribute total length check. */
1443 if (stream_pnt (s) + 2 > end)
1444 {
1445 zlog_warn ("%s [Error] Packet Error"
1446 " (update packet is short for attribute length)",
1447 peer->host);
1448 bgp_notify_send (peer, BGP_NOTIFY_UPDATE_ERR,
1449 BGP_NOTIFY_UPDATE_MAL_ATTR);
1450 return -1;
1451 }
1452
1453 /* Fetch attribute total length. */
1454 attribute_len = stream_getw (s);
1455
1456 /* Attribute length check. */
1457 if (stream_pnt (s) + attribute_len > end)
1458 {
1459 zlog_warn ("%s [Error] Packet Error"
1460 " (update packet attribute length overflow %d)",
1461 peer->host, attribute_len);
1462 bgp_notify_send (peer, BGP_NOTIFY_UPDATE_ERR,
1463 BGP_NOTIFY_UPDATE_MAL_ATTR);
1464 return -1;
1465 }
1466
1467 /* Parse attribute when it exists. */
1468 if (attribute_len)
1469 {
1470 ret = bgp_attr_parse (peer, &attr, attribute_len,
1471 &mp_update, &mp_withdraw);
1472 if (ret < 0)
1473 return -1;
1474 }
1475
1476 /* Logging the attribute. */
1477 if (BGP_DEBUG (update, UPDATE_IN))
1478 {
1479 bgp_dump_attr (peer, &attr, attrstr, BUFSIZ);
1480 zlog (peer->log, LOG_INFO, "%s rcvd UPDATE w/ attr: %s",
1481 peer->host, attrstr);
1482 }
1483
1484 /* Network Layer Reachability Information. */
1485 update_len = end - stream_pnt (s);
1486
1487 if (update_len)
1488 {
1489 /* Check NLRI packet format and prefix length. */
1490 ret = bgp_nlri_sanity_check (peer, AFI_IP, stream_pnt (s), update_len);
1491 if (ret < 0)
1492 return -1;
1493
1494 /* Set NLRI portion to structure. */
1495 update.afi = AFI_IP;
1496 update.safi = SAFI_UNICAST;
1497 update.nlri = stream_pnt (s);
1498 update.length = update_len;
1499 stream_forward (s, update_len);
1500 }
1501
1502 /* NLRI is processed only when the peer is configured specific
1503 Address Family and Subsequent Address Family. */
1504 if (peer->afc[AFI_IP][SAFI_UNICAST])
1505 {
1506 if (withdraw.length)
1507 bgp_nlri_parse (peer, NULL, &withdraw);
1508
1509 if (update.length)
1510 {
1511 /* We check well-known attribute only for IPv4 unicast
1512 update. */
1513 ret = bgp_attr_check (peer, &attr);
1514 if (ret < 0)
1515 return -1;
1516
1517 bgp_nlri_parse (peer, &attr, &update);
1518 }
1519 }
1520 if (peer->afc[AFI_IP][SAFI_MULTICAST])
1521 {
1522 if (mp_update.length
1523 && mp_update.afi == AFI_IP
1524 && mp_update.safi == SAFI_MULTICAST)
1525 bgp_nlri_parse (peer, &attr, &mp_update);
1526
1527 if (mp_withdraw.length
1528 && mp_withdraw.afi == AFI_IP
1529 && mp_withdraw.safi == SAFI_MULTICAST)
1530 bgp_nlri_parse (peer, NULL, &mp_withdraw);
1531 }
1532 if (peer->afc[AFI_IP6][SAFI_UNICAST])
1533 {
1534 if (mp_update.length
1535 && mp_update.afi == AFI_IP6
1536 && mp_update.safi == SAFI_UNICAST)
1537 bgp_nlri_parse (peer, &attr, &mp_update);
1538
1539 if (mp_withdraw.length
1540 && mp_withdraw.afi == AFI_IP6
1541 && mp_withdraw.safi == SAFI_UNICAST)
1542 bgp_nlri_parse (peer, NULL, &mp_withdraw);
1543 }
1544 if (peer->afc[AFI_IP6][SAFI_MULTICAST])
1545 {
1546 if (mp_update.length
1547 && mp_update.afi == AFI_IP6
1548 && mp_update.safi == SAFI_MULTICAST)
1549 bgp_nlri_parse (peer, &attr, &mp_update);
1550
1551 if (mp_withdraw.length
1552 && mp_withdraw.afi == AFI_IP6
1553 && mp_withdraw.safi == SAFI_MULTICAST)
1554 bgp_nlri_parse (peer, NULL, &mp_withdraw);
1555 }
1556 if (peer->afc[AFI_IP][SAFI_MPLS_VPN])
1557 {
1558 if (mp_update.length
1559 && mp_update.afi == AFI_IP
1560 && mp_update.safi == BGP_SAFI_VPNV4)
1561 bgp_nlri_parse_vpnv4 (peer, &attr, &mp_update);
1562
1563 if (mp_withdraw.length
1564 && mp_withdraw.afi == AFI_IP
1565 && mp_withdraw.safi == BGP_SAFI_VPNV4)
1566 bgp_nlri_parse_vpnv4 (peer, NULL, &mp_withdraw);
1567 }
1568
1569 /* Everything is done. We unintern temporary structures which
1570 interned in bgp_attr_parse(). */
1571 if (attr.aspath)
1572 aspath_unintern (attr.aspath);
1573 if (attr.community)
1574 community_unintern (attr.community);
1575 if (attr.ecommunity)
1576 ecommunity_unintern (attr.ecommunity);
1577 if (attr.cluster)
1578 cluster_unintern (attr.cluster);
1579 if (attr.transit)
1580 transit_unintern (attr.transit);
1581
1582 /* If peering is stopped due to some reason, do not generate BGP
1583 event. */
1584 if (peer->status != Established)
1585 return 0;
1586
1587 /* Increment packet counter. */
1588 peer->update_in++;
1589 peer->update_time = time (NULL);
1590
1591 /* Generate BGP event. */
1592 BGP_EVENT_ADD (peer, Receive_UPDATE_message);
1593
1594 return 0;
1595}
1596
1597/* Notify message treatment function. */
1598void
1599bgp_notify_receive (struct peer *peer, bgp_size_t size)
1600{
1601 struct bgp_notify bgp_notify;
1602
1603 if (peer->notify.data)
1604 {
1605 XFREE (MTYPE_TMP, peer->notify.data);
1606 peer->notify.data = NULL;
1607 peer->notify.length = 0;
1608 }
1609
1610 bgp_notify.code = stream_getc (peer->ibuf);
1611 bgp_notify.subcode = stream_getc (peer->ibuf);
1612 bgp_notify.length = size - 2;
1613 bgp_notify.data = NULL;
1614
1615 /* Preserv notify code and sub code. */
1616 peer->notify.code = bgp_notify.code;
1617 peer->notify.subcode = bgp_notify.subcode;
1618 /* For further diagnostic record returned Data. */
1619 if (bgp_notify.length)
1620 {
1621 peer->notify.length = size - 2;
1622 peer->notify.data = XMALLOC (MTYPE_TMP, size - 2);
1623 memcpy (peer->notify.data, stream_pnt (peer->ibuf), size - 2);
1624 }
1625
1626 /* For debug */
1627 {
1628 int i;
1629 int first = 0;
1630 char c[4];
1631
1632 if (bgp_notify.length)
1633 {
1634 bgp_notify.data = XMALLOC (MTYPE_TMP, bgp_notify.length * 3);
1635 for (i = 0; i < bgp_notify.length; i++)
1636 if (first)
1637 {
1638 sprintf (c, " %02x", stream_getc (peer->ibuf));
1639 strcat (bgp_notify.data, c);
1640 }
1641 else
1642 {
1643 first = 1;
1644 sprintf (c, "%02x", stream_getc (peer->ibuf));
1645 strcpy (bgp_notify.data, c);
1646 }
1647 }
1648
1649 bgp_notify_print(peer, &bgp_notify, "received");
1650 if (bgp_notify.data)
1651 XFREE (MTYPE_TMP, bgp_notify.data);
1652 }
1653
1654 /* peer count update */
1655 peer->notify_in++;
1656
hassoe0701b72004-05-20 09:19:34 +00001657 if (peer->status == Established)
1658 peer->last_reset = PEER_DOWN_NOTIFY_RECEIVED;
1659
paul718e3742002-12-13 20:15:29 +00001660 /* We have to check for Notify with Unsupported Optional Parameter.
1661 in that case we fallback to open without the capability option.
1662 But this done in bgp_stop. We just mark it here to avoid changing
1663 the fsm tables. */
1664 if (bgp_notify.code == BGP_NOTIFY_OPEN_ERR &&
1665 bgp_notify.subcode == BGP_NOTIFY_OPEN_UNSUP_PARAM )
1666 UNSET_FLAG (peer->sflags, PEER_STATUS_CAPABILITY_OPEN);
1667
1668 /* Also apply to Unsupported Capability until remote router support
1669 capability. */
1670 if (bgp_notify.code == BGP_NOTIFY_OPEN_ERR &&
1671 bgp_notify.subcode == BGP_NOTIFY_OPEN_UNSUP_CAPBL)
1672 UNSET_FLAG (peer->sflags, PEER_STATUS_CAPABILITY_OPEN);
1673
1674 BGP_EVENT_ADD (peer, Receive_NOTIFICATION_message);
1675}
1676
1677/* Keepalive treatment function -- get keepalive send keepalive */
1678void
1679bgp_keepalive_receive (struct peer *peer, bgp_size_t size)
1680{
1681 if (BGP_DEBUG (keepalive, KEEPALIVE))
1682 zlog_info ("%s KEEPALIVE rcvd", peer->host);
1683
1684 BGP_EVENT_ADD (peer, Receive_KEEPALIVE_message);
1685}
1686
1687/* Route refresh message is received. */
1688void
1689bgp_route_refresh_receive (struct peer *peer, bgp_size_t size)
1690{
1691 afi_t afi;
1692 safi_t safi;
1693 u_char reserved;
1694 struct stream *s;
1695
1696 /* If peer does not have the capability, send notification. */
1697 if (! CHECK_FLAG (peer->cap, PEER_CAP_REFRESH_ADV))
1698 {
1699 plog_err (peer->log, "%s [Error] BGP route refresh is not enabled",
1700 peer->host);
1701 bgp_notify_send (peer,
1702 BGP_NOTIFY_HEADER_ERR,
1703 BGP_NOTIFY_HEADER_BAD_MESTYPE);
1704 return;
1705 }
1706
1707 /* Status must be Established. */
1708 if (peer->status != Established)
1709 {
1710 plog_err (peer->log,
1711 "%s [Error] Route refresh packet received under status %s",
1712 peer->host, LOOKUP (bgp_status_msg, peer->status));
1713 bgp_notify_send (peer, BGP_NOTIFY_FSM_ERR, 0);
1714 return;
1715 }
1716
1717 s = peer->ibuf;
1718
1719 /* Parse packet. */
1720 afi = stream_getw (s);
1721 reserved = stream_getc (s);
1722 safi = stream_getc (s);
1723
1724 if (BGP_DEBUG (normal, NORMAL))
1725 zlog_info ("%s rcvd REFRESH_REQ for afi/safi: %d/%d",
1726 peer->host, afi, safi);
1727
1728 /* Check AFI and SAFI. */
1729 if ((afi != AFI_IP && afi != AFI_IP6)
1730 || (safi != SAFI_UNICAST && safi != SAFI_MULTICAST
1731 && safi != BGP_SAFI_VPNV4))
1732 {
1733 if (BGP_DEBUG (normal, NORMAL))
1734 {
1735 zlog_info ("%s REFRESH_REQ for unrecognized afi/safi: %d/%d - ignored",
1736 peer->host, afi, safi);
1737 }
1738 return;
1739 }
1740
1741 /* Adjust safi code. */
1742 if (safi == BGP_SAFI_VPNV4)
1743 safi = SAFI_MPLS_VPN;
1744
1745 if (size != BGP_MSG_ROUTE_REFRESH_MIN_SIZE - BGP_HEADER_SIZE)
1746 {
1747 u_char *end;
1748 u_char when_to_refresh;
1749 u_char orf_type;
1750 u_int16_t orf_len;
1751
1752 if (size - (BGP_MSG_ROUTE_REFRESH_MIN_SIZE - BGP_HEADER_SIZE) < 5)
1753 {
1754 zlog_info ("%s ORF route refresh length error", peer->host);
1755 bgp_notify_send (peer, BGP_NOTIFY_CEASE, 0);
1756 return;
1757 }
1758
1759 when_to_refresh = stream_getc (s);
1760 end = stream_pnt (s) + (size - 5);
1761
1762 while (stream_pnt (s) < end)
1763 {
1764 orf_type = stream_getc (s);
1765 orf_len = stream_getw (s);
1766
1767 if (orf_type == ORF_TYPE_PREFIX
1768 || orf_type == ORF_TYPE_PREFIX_OLD)
1769 {
1770 u_char *p_pnt = stream_pnt (s);
1771 u_char *p_end = stream_pnt (s) + orf_len;
1772 struct orf_prefix orfp;
1773 u_char common = 0;
1774 u_int32_t seq;
1775 int psize;
1776 char name[BUFSIZ];
1777 char buf[BUFSIZ];
1778 int ret;
1779
1780 if (BGP_DEBUG (normal, NORMAL))
1781 {
1782 zlog_info ("%s rcvd Prefixlist ORF(%d) length %d",
1783 peer->host, orf_type, orf_len);
1784 }
1785
1786 /* ORF prefix-list name */
1787 sprintf (name, "%s.%d.%d", peer->host, afi, safi);
1788
1789 while (p_pnt < p_end)
1790 {
1791 memset (&orfp, 0, sizeof (struct orf_prefix));
1792 common = *p_pnt++;
1793 if (common & ORF_COMMON_PART_REMOVE_ALL)
1794 {
1795 if (BGP_DEBUG (normal, NORMAL))
1796 zlog_info ("%s rcvd Remove-All pfxlist ORF request", peer->host);
1797 prefix_bgp_orf_remove_all (name);
1798 break;
1799 }
1800 memcpy (&seq, p_pnt, sizeof (u_int32_t));
1801 p_pnt += sizeof (u_int32_t);
1802 orfp.seq = ntohl (seq);
1803 orfp.ge = *p_pnt++;
1804 orfp.le = *p_pnt++;
1805 orfp.p.prefixlen = *p_pnt++;
1806 orfp.p.family = afi2family (afi);
1807 psize = PSIZE (orfp.p.prefixlen);
1808 memcpy (&orfp.p.u.prefix, p_pnt, psize);
1809 p_pnt += psize;
1810
1811 if (BGP_DEBUG (normal, NORMAL))
1812 zlog_info ("%s rcvd %s %s seq %u %s/%d ge %d le %d",
1813 peer->host,
1814 (common & ORF_COMMON_PART_REMOVE ? "Remove" : "Add"),
1815 (common & ORF_COMMON_PART_DENY ? "deny" : "permit"),
1816 orfp.seq,
1817 inet_ntop (orfp.p.family, &orfp.p.u.prefix, buf, BUFSIZ),
1818 orfp.p.prefixlen, orfp.ge, orfp.le);
1819
1820 ret = prefix_bgp_orf_set (name, afi, &orfp,
1821 (common & ORF_COMMON_PART_DENY ? 0 : 1 ),
1822 (common & ORF_COMMON_PART_REMOVE ? 0 : 1));
1823
1824 if (ret != CMD_SUCCESS)
1825 {
1826 if (BGP_DEBUG (normal, NORMAL))
1827 zlog_info ("%s Received misformatted prefixlist ORF. Remove All pfxlist", peer->host);
1828 prefix_bgp_orf_remove_all (name);
1829 break;
1830 }
1831 }
1832 peer->orf_plist[afi][safi] =
1833 prefix_list_lookup (AFI_ORF_PREFIX, name);
1834 }
1835 stream_forward (s, orf_len);
1836 }
1837 if (BGP_DEBUG (normal, NORMAL))
1838 zlog_info ("%s rcvd Refresh %s ORF request", peer->host,
1839 when_to_refresh == REFRESH_DEFER ? "Defer" : "Immediate");
1840 if (when_to_refresh == REFRESH_DEFER)
1841 return;
1842 }
1843
1844 /* First update is deferred until ORF or ROUTE-REFRESH is received */
1845 if (CHECK_FLAG (peer->af_sflags[afi][safi], PEER_STATUS_ORF_WAIT_REFRESH))
1846 UNSET_FLAG (peer->af_sflags[afi][safi], PEER_STATUS_ORF_WAIT_REFRESH);
1847
1848 /* Perform route refreshment to the peer */
1849 bgp_announce_route (peer, afi, safi);
1850}
1851
1852int
1853bgp_capability_msg_parse (struct peer *peer, u_char *pnt, bgp_size_t length)
1854{
1855 u_char *end;
1856 struct capability cap;
1857 u_char action;
1858 struct bgp *bgp;
1859 afi_t afi;
1860 safi_t safi;
1861
1862 bgp = peer->bgp;
1863 end = pnt + length;
1864
1865 while (pnt < end)
1866 {
1867 /* We need at least action, capability code and capability length. */
1868 if (pnt + 3 > end)
1869 {
1870 zlog_info ("%s Capability length error", peer->host);
1871 bgp_notify_send (peer, BGP_NOTIFY_CEASE, 0);
1872 return -1;
1873 }
1874
1875 action = *pnt;
1876
1877 /* Fetch structure to the byte stream. */
1878 memcpy (&cap, pnt + 1, sizeof (struct capability));
1879
1880 /* Action value check. */
1881 if (action != CAPABILITY_ACTION_SET
1882 && action != CAPABILITY_ACTION_UNSET)
1883 {
1884 zlog_info ("%s Capability Action Value error %d",
1885 peer->host, action);
1886 bgp_notify_send (peer, BGP_NOTIFY_CEASE, 0);
1887 return -1;
1888 }
1889
1890 if (BGP_DEBUG (normal, NORMAL))
1891 zlog_info ("%s CAPABILITY has action: %d, code: %u, length %u",
1892 peer->host, action, cap.code, cap.length);
1893
1894 /* Capability length check. */
1895 if (pnt + (cap.length + 3) > end)
1896 {
1897 zlog_info ("%s Capability length error", peer->host);
1898 bgp_notify_send (peer, BGP_NOTIFY_CEASE, 0);
1899 return -1;
1900 }
1901
1902 /* We know MP Capability Code. */
1903 if (cap.code == CAPABILITY_CODE_MP)
1904 {
1905 afi = ntohs (cap.mpc.afi);
1906 safi = cap.mpc.safi;
1907
1908 /* Ignore capability when override-capability is set. */
1909 if (CHECK_FLAG (peer->flags, PEER_FLAG_OVERRIDE_CAPABILITY))
1910 continue;
1911
1912 /* Address family check. */
1913 if ((afi == AFI_IP
1914 || afi == AFI_IP6)
1915 && (safi == SAFI_UNICAST
1916 || safi == SAFI_MULTICAST
1917 || safi == BGP_SAFI_VPNV4))
1918 {
1919 if (BGP_DEBUG (normal, NORMAL))
1920 zlog_info ("%s CAPABILITY has %s MP_EXT CAP for afi/safi: %u/%u",
1921 peer->host,
1922 action == CAPABILITY_ACTION_SET
1923 ? "Advertising" : "Removing",
1924 ntohs(cap.mpc.afi) , cap.mpc.safi);
1925
1926 /* Adjust safi code. */
1927 if (safi == BGP_SAFI_VPNV4)
1928 safi = SAFI_MPLS_VPN;
1929
1930 if (action == CAPABILITY_ACTION_SET)
1931 {
1932 peer->afc_recv[afi][safi] = 1;
1933 if (peer->afc[afi][safi])
1934 {
1935 peer->afc_nego[afi][safi] = 1;
1936 bgp_announce_route (peer, afi, safi);
1937 }
1938 }
1939 else
1940 {
1941 peer->afc_recv[afi][safi] = 0;
1942 peer->afc_nego[afi][safi] = 0;
1943
1944 if (peer_active_nego (peer))
1945 bgp_clear_route (peer, afi, safi);
1946 else
1947 BGP_EVENT_ADD (peer, BGP_Stop);
1948 }
1949 }
1950 }
1951 else if (cap.code == CAPABILITY_CODE_REFRESH
1952 || cap.code == CAPABILITY_CODE_REFRESH_OLD)
1953 {
1954 /* Check length. */
1955 if (cap.length != 0)
1956 {
1957 zlog_info ("%s Route Refresh Capability length error %d",
1958 peer->host, cap.length);
1959 bgp_notify_send (peer, BGP_NOTIFY_CEASE, 0);
1960 return -1;
1961 }
1962
1963 if (BGP_DEBUG (normal, NORMAL))
1964 zlog_info ("%s CAPABILITY has %s ROUTE-REFRESH capability(%s) for all address-families",
1965 peer->host,
1966 action == CAPABILITY_ACTION_SET
1967 ? "Advertising" : "Removing",
1968 cap.code == CAPABILITY_CODE_REFRESH_OLD
1969 ? "old" : "new");
1970
1971 /* BGP refresh capability */
1972 if (action == CAPABILITY_ACTION_SET)
1973 {
1974 if (cap.code == CAPABILITY_CODE_REFRESH_OLD)
1975 SET_FLAG (peer->cap, PEER_CAP_REFRESH_OLD_RCV);
1976 else
1977 SET_FLAG (peer->cap, PEER_CAP_REFRESH_NEW_RCV);
1978 }
1979 else
1980 {
1981 if (cap.code == CAPABILITY_CODE_REFRESH_OLD)
1982 UNSET_FLAG (peer->cap, PEER_CAP_REFRESH_OLD_RCV);
1983 else
1984 UNSET_FLAG (peer->cap, PEER_CAP_REFRESH_NEW_RCV);
1985 }
1986 }
1987 else
1988 {
1989 zlog_warn ("%s unrecognized capability code: %d - ignored",
1990 peer->host, cap.code);
1991 }
1992 pnt += cap.length + 3;
1993 }
1994 return 0;
1995}
1996
1997/* Dynamic Capability is received. */
1998void
1999bgp_capability_receive (struct peer *peer, bgp_size_t size)
2000{
2001 u_char *pnt;
2002 int ret;
2003
2004 /* Fetch pointer. */
2005 pnt = stream_pnt (peer->ibuf);
2006
2007 if (BGP_DEBUG (normal, NORMAL))
2008 zlog_info ("%s rcv CAPABILITY", peer->host);
2009
2010 /* If peer does not have the capability, send notification. */
2011 if (! CHECK_FLAG (peer->cap, PEER_CAP_DYNAMIC_ADV))
2012 {
2013 plog_err (peer->log, "%s [Error] BGP dynamic capability is not enabled",
2014 peer->host);
2015 bgp_notify_send (peer,
2016 BGP_NOTIFY_HEADER_ERR,
2017 BGP_NOTIFY_HEADER_BAD_MESTYPE);
2018 return;
2019 }
2020
2021 /* Status must be Established. */
2022 if (peer->status != Established)
2023 {
2024 plog_err (peer->log,
2025 "%s [Error] Dynamic capability packet received under status %s", peer->host, LOOKUP (bgp_status_msg, peer->status));
2026 bgp_notify_send (peer, BGP_NOTIFY_FSM_ERR, 0);
2027 return;
2028 }
2029
2030 /* Parse packet. */
2031 ret = bgp_capability_msg_parse (peer, pnt, size);
2032}
2033
2034/* BGP read utility function. */
2035int
2036bgp_read_packet (struct peer *peer)
2037{
2038 int nbytes;
2039 int readsize;
2040
2041 readsize = peer->packet_size - peer->ibuf->putp;
2042
2043 /* If size is zero then return. */
2044 if (! readsize)
2045 return 0;
2046
2047 /* Read packet from fd. */
pauleb821182004-05-01 08:44:08 +00002048 nbytes = stream_read_unblock (peer->ibuf, peer->fd, readsize);
paul718e3742002-12-13 20:15:29 +00002049
2050 /* If read byte is smaller than zero then error occured. */
2051 if (nbytes < 0)
2052 {
2053 if (errno == EAGAIN)
2054 return -1;
2055
2056 plog_err (peer->log, "%s [Error] bgp_read_packet error: %s",
2057 peer->host, strerror (errno));
2058 BGP_EVENT_ADD (peer, TCP_fatal_error);
2059 return -1;
2060 }
2061
2062 /* When read byte is zero : clear bgp peer and return */
2063 if (nbytes == 0)
2064 {
2065 if (BGP_DEBUG (events, EVENTS))
2066 plog_info (peer->log, "%s [Event] BGP connection closed fd %d",
pauleb821182004-05-01 08:44:08 +00002067 peer->host, peer->fd);
hassoe0701b72004-05-20 09:19:34 +00002068
2069 if (peer->status == Established)
2070 peer->last_reset = PEER_DOWN_CLOSE_SESSION;
2071
paul718e3742002-12-13 20:15:29 +00002072 BGP_EVENT_ADD (peer, TCP_connection_closed);
2073 return -1;
2074 }
2075
2076 /* We read partial packet. */
2077 if (peer->ibuf->putp != peer->packet_size)
2078 return -1;
2079
2080 return 0;
2081}
2082
2083/* Marker check. */
2084int
2085bgp_marker_all_one (struct stream *s, int length)
2086{
2087 int i;
2088
2089 for (i = 0; i < length; i++)
2090 if (s->data[i] != 0xff)
2091 return 0;
2092
2093 return 1;
2094}
2095
2096/* Starting point of packet process function. */
2097int
2098bgp_read (struct thread *thread)
2099{
2100 int ret;
2101 u_char type = 0;
2102 struct peer *peer;
2103 bgp_size_t size;
2104 char notify_data_length[2];
2105
2106 /* Yes first of all get peer pointer. */
2107 peer = THREAD_ARG (thread);
2108 peer->t_read = NULL;
2109
2110 /* For non-blocking IO check. */
2111 if (peer->status == Connect)
2112 {
2113 bgp_connect_check (peer);
2114 goto done;
2115 }
2116 else
2117 {
pauleb821182004-05-01 08:44:08 +00002118 if (peer->fd < 0)
paul718e3742002-12-13 20:15:29 +00002119 {
pauleb821182004-05-01 08:44:08 +00002120 zlog_err ("bgp_read peer's fd is negative value %d", peer->fd);
paul718e3742002-12-13 20:15:29 +00002121 return -1;
2122 }
pauleb821182004-05-01 08:44:08 +00002123 BGP_READ_ON (peer->t_read, bgp_read, peer->fd);
paul718e3742002-12-13 20:15:29 +00002124 }
2125
2126 /* Read packet header to determine type of the packet */
2127 if (peer->packet_size == 0)
2128 peer->packet_size = BGP_HEADER_SIZE;
2129
2130 if (peer->ibuf->putp < BGP_HEADER_SIZE)
2131 {
2132 ret = bgp_read_packet (peer);
2133
2134 /* Header read error or partial read packet. */
2135 if (ret < 0)
2136 goto done;
2137
2138 /* Get size and type. */
2139 stream_forward (peer->ibuf, BGP_MARKER_SIZE);
2140 memcpy (notify_data_length, stream_pnt (peer->ibuf), 2);
2141 size = stream_getw (peer->ibuf);
2142 type = stream_getc (peer->ibuf);
2143
2144 if (BGP_DEBUG (normal, NORMAL) && type != 2 && type != 0)
2145 zlog_info ("%s rcv message type %d, length (excl. header) %d",
2146 peer->host, type, size - BGP_HEADER_SIZE);
2147
2148 /* Marker check */
2149 if (type == BGP_MSG_OPEN
2150 && ! bgp_marker_all_one (peer->ibuf, BGP_MARKER_SIZE))
2151 {
2152 bgp_notify_send (peer,
2153 BGP_NOTIFY_HEADER_ERR,
2154 BGP_NOTIFY_HEADER_NOT_SYNC);
2155 goto done;
2156 }
2157
2158 /* BGP type check. */
2159 if (type != BGP_MSG_OPEN && type != BGP_MSG_UPDATE
2160 && type != BGP_MSG_NOTIFY && type != BGP_MSG_KEEPALIVE
2161 && type != BGP_MSG_ROUTE_REFRESH_NEW
2162 && type != BGP_MSG_ROUTE_REFRESH_OLD
2163 && type != BGP_MSG_CAPABILITY)
2164 {
2165 if (BGP_DEBUG (normal, NORMAL))
2166 plog_err (peer->log,
2167 "%s unknown message type 0x%02x",
2168 peer->host, type);
2169 bgp_notify_send_with_data (peer,
2170 BGP_NOTIFY_HEADER_ERR,
2171 BGP_NOTIFY_HEADER_BAD_MESTYPE,
2172 &type, 1);
2173 goto done;
2174 }
2175 /* Mimimum packet length check. */
2176 if ((size < BGP_HEADER_SIZE)
2177 || (size > BGP_MAX_PACKET_SIZE)
2178 || (type == BGP_MSG_OPEN && size < BGP_MSG_OPEN_MIN_SIZE)
2179 || (type == BGP_MSG_UPDATE && size < BGP_MSG_UPDATE_MIN_SIZE)
2180 || (type == BGP_MSG_NOTIFY && size < BGP_MSG_NOTIFY_MIN_SIZE)
2181 || (type == BGP_MSG_KEEPALIVE && size != BGP_MSG_KEEPALIVE_MIN_SIZE)
2182 || (type == BGP_MSG_ROUTE_REFRESH_NEW && size < BGP_MSG_ROUTE_REFRESH_MIN_SIZE)
2183 || (type == BGP_MSG_ROUTE_REFRESH_OLD && size < BGP_MSG_ROUTE_REFRESH_MIN_SIZE)
2184 || (type == BGP_MSG_CAPABILITY && size < BGP_MSG_CAPABILITY_MIN_SIZE))
2185 {
2186 if (BGP_DEBUG (normal, NORMAL))
2187 plog_err (peer->log,
2188 "%s bad message length - %d for %s",
2189 peer->host, size,
2190 type == 128 ? "ROUTE-REFRESH" :
2191 bgp_type_str[(int) type]);
2192 bgp_notify_send_with_data (peer,
2193 BGP_NOTIFY_HEADER_ERR,
2194 BGP_NOTIFY_HEADER_BAD_MESLEN,
2195 notify_data_length, 2);
2196 goto done;
2197 }
2198
2199 /* Adjust size to message length. */
2200 peer->packet_size = size;
2201 }
2202
2203 ret = bgp_read_packet (peer);
2204 if (ret < 0)
2205 goto done;
2206
2207 /* Get size and type again. */
2208 size = stream_getw_from (peer->ibuf, BGP_MARKER_SIZE);
2209 type = stream_getc_from (peer->ibuf, BGP_MARKER_SIZE + 2);
2210
2211 /* BGP packet dump function. */
2212 bgp_dump_packet (peer, type, peer->ibuf);
2213
2214 size = (peer->packet_size - BGP_HEADER_SIZE);
2215
2216 /* Read rest of the packet and call each sort of packet routine */
2217 switch (type)
2218 {
2219 case BGP_MSG_OPEN:
2220 peer->open_in++;
2221 bgp_open_receive (peer, size);
2222 break;
2223 case BGP_MSG_UPDATE:
2224 peer->readtime = time(NULL); /* Last read timer reset */
2225 bgp_update_receive (peer, size);
2226 break;
2227 case BGP_MSG_NOTIFY:
2228 bgp_notify_receive (peer, size);
2229 break;
2230 case BGP_MSG_KEEPALIVE:
2231 peer->readtime = time(NULL); /* Last read timer reset */
2232 bgp_keepalive_receive (peer, size);
2233 break;
2234 case BGP_MSG_ROUTE_REFRESH_NEW:
2235 case BGP_MSG_ROUTE_REFRESH_OLD:
2236 peer->refresh_in++;
2237 bgp_route_refresh_receive (peer, size);
2238 break;
2239 case BGP_MSG_CAPABILITY:
2240 peer->dynamic_cap_in++;
2241 bgp_capability_receive (peer, size);
2242 break;
2243 }
2244
2245 /* Clear input buffer. */
2246 peer->packet_size = 0;
2247 if (peer->ibuf)
2248 stream_reset (peer->ibuf);
2249
2250 done:
2251 if (CHECK_FLAG (peer->sflags, PEER_STATUS_ACCEPT_PEER))
2252 {
2253 if (BGP_DEBUG (events, EVENTS))
2254 zlog_info ("%s [Event] Accepting BGP peer delete", peer->host);
2255 peer_delete (peer);
2256 }
2257 return 0;
2258}