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1 /* BGP-4 Finite State Machine
2 From RFC1771 [A Border Gateway Protocol 4 (BGP-4)]
3 Copyright (C) 1996, 97, 98 Kunihiro Ishiguro
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 #include <zebra.h>
23
24 #include "linklist.h"
25 #include "prefix.h"
26 #include "vty.h"
27 #include "sockunion.h"
28 #include "thread.h"
29 #include "log.h"
30 #include "stream.h"
31 #include "memory.h"
32 #include "plist.h"
33 #include "workqueue.h"
34 #include "queue.h"
35 #include "filter.h"
36
37 #include "lib/json.h"
38 #include "bgpd/bgpd.h"
39 #include "bgpd/bgp_attr.h"
40 #include "bgpd/bgp_debug.h"
41 #include "bgpd/bgp_fsm.h"
42 #include "bgpd/bgp_packet.h"
43 #include "bgpd/bgp_network.h"
44 #include "bgpd/bgp_route.h"
45 #include "bgpd/bgp_dump.h"
46 #include "bgpd/bgp_open.h"
47 #include "bgpd/bgp_advertise.h"
48 #ifdef HAVE_SNMP
49 #include "bgpd/bgp_snmp.h"
50 #endif /* HAVE_SNMP */
51 #include "bgpd/bgp_updgrp.h"
52 #include "bgpd/bgp_nht.h"
53 #include "bgpd/bgp_bfd.h"
54 #include "bgpd/bgp_memory.h"
55
56 /* Definition of display strings corresponding to FSM events. This should be
57 * kept consistent with the events defined in bgpd.h
58 */
59 static const char *bgp_event_str[] =
60 {
61 NULL,
62 "BGP_Start",
63 "BGP_Stop",
64 "TCP_connection_open",
65 "TCP_connection_closed",
66 "TCP_connection_open_failed",
67 "TCP_fatal_error",
68 "ConnectRetry_timer_expired",
69 "Hold_Timer_expired",
70 "KeepAlive_timer_expired",
71 "Receive_OPEN_message",
72 "Receive_KEEPALIVE_message",
73 "Receive_UPDATE_message",
74 "Receive_NOTIFICATION_message",
75 "Clearing_Completed",
76 };
77
78 /* BGP FSM (finite state machine) has three types of functions. Type
79 one is thread functions. Type two is event functions. Type three
80 is FSM functions. Timer functions are set by bgp_timer_set
81 function. */
82
83 /* BGP event function. */
84 int bgp_event (struct thread *);
85
86 /* BGP thread functions. */
87 static int bgp_start_timer (struct thread *);
88 static int bgp_connect_timer (struct thread *);
89 static int bgp_holdtime_timer (struct thread *);
90 static int bgp_keepalive_timer (struct thread *);
91
92 /* BGP FSM functions. */
93 static int bgp_start (struct peer *);
94
95 static void
96 peer_xfer_stats (struct peer *peer_dst, struct peer *peer_src)
97 {
98 /* Copy stats over. These are only the pre-established state stats */
99 peer_dst->open_in += peer_src->open_in;
100 peer_dst->open_out += peer_src->open_out;
101 peer_dst->keepalive_in += peer_src->keepalive_in;
102 peer_dst->keepalive_out += peer_src->keepalive_out;
103 peer_dst->notify_in += peer_src->notify_in;
104 peer_dst->notify_out += peer_src->notify_out;
105 peer_dst->dynamic_cap_in += peer_src->dynamic_cap_in;
106 peer_dst->dynamic_cap_out += peer_src->dynamic_cap_out;
107 }
108
109 static struct peer *
110 peer_xfer_conn(struct peer *from_peer)
111 {
112 struct peer *peer;
113 afi_t afi;
114 safi_t safi;
115 int fd;
116 int status, pstatus;
117 unsigned char last_evt, last_maj_evt;
118
119 assert(from_peer != NULL);
120
121 peer = from_peer->doppelganger;
122
123 if (!peer || !CHECK_FLAG(peer->flags, PEER_FLAG_CONFIG_NODE))
124 return from_peer;
125
126 if (bgp_debug_neighbor_events(peer))
127 zlog_debug ("%s: peer transfer %p fd %d -> %p fd %d)", from_peer->host,
128 from_peer, from_peer->fd, peer, peer->fd);
129
130 BGP_WRITE_OFF(peer->t_write);
131 BGP_READ_OFF(peer->t_read);
132 BGP_WRITE_OFF(from_peer->t_write);
133 BGP_READ_OFF(from_peer->t_read);
134
135 BGP_TIMER_OFF(peer->t_routeadv);
136 BGP_TIMER_OFF(from_peer->t_routeadv);
137
138 fd = peer->fd;
139 peer->fd = from_peer->fd;
140 from_peer->fd = fd;
141 stream_reset(peer->ibuf);
142 stream_fifo_clean(peer->obuf);
143 stream_fifo_clean(from_peer->obuf);
144
145 peer->as = from_peer->as;
146 peer->v_holdtime = from_peer->v_holdtime;
147 peer->v_keepalive = from_peer->v_keepalive;
148 peer->routeadv = from_peer->routeadv;
149 peer->v_routeadv = from_peer->v_routeadv;
150 peer->v_gr_restart = from_peer->v_gr_restart;
151 peer->cap = from_peer->cap;
152 status = peer->status;
153 pstatus = peer->ostatus;
154 last_evt = peer->last_event;
155 last_maj_evt = peer->last_major_event;
156 peer->status = from_peer->status;
157 peer->ostatus = from_peer->ostatus;
158 peer->last_event = from_peer->last_event;
159 peer->last_major_event = from_peer->last_major_event;
160 from_peer->status = status;
161 from_peer->ostatus = pstatus;
162 from_peer->last_event = last_evt;
163 from_peer->last_major_event = last_maj_evt;
164 peer->remote_id = from_peer->remote_id;
165
166 if (from_peer->hostname != NULL)
167 {
168 if (peer->hostname)
169 {
170 XFREE(MTYPE_BGP_PEER_HOST, peer->hostname);
171 peer->hostname = NULL;
172 }
173
174 peer->hostname = from_peer->hostname;
175 from_peer->hostname = NULL;
176 }
177
178 if (from_peer->domainname != NULL)
179 {
180 if (peer->domainname)
181 {
182 XFREE(MTYPE_BGP_PEER_HOST, peer->domainname);
183 peer->domainname= NULL;
184 }
185
186 peer->domainname = from_peer->domainname;
187 from_peer->domainname = NULL;
188 }
189
190 for (afi = AFI_IP; afi < AFI_MAX; afi++)
191 for (safi = SAFI_UNICAST; safi < SAFI_MAX; safi++)
192 {
193 peer->af_flags[afi][safi] = from_peer->af_flags[afi][safi];
194 peer->af_sflags[afi][safi] = from_peer->af_sflags[afi][safi];
195 peer->af_cap[afi][safi] = from_peer->af_cap[afi][safi];
196 peer->afc_nego[afi][safi] = from_peer->afc_nego[afi][safi];
197 peer->afc_adv[afi][safi] = from_peer->afc_adv[afi][safi];
198 peer->afc_recv[afi][safi] = from_peer->afc_recv[afi][safi];
199 peer->orf_plist[afi][safi] = from_peer->orf_plist[afi][safi];
200 }
201
202 if (bgp_getsockname(peer) < 0)
203 {
204 zlog_err ("%%bgp_getsockname() failed for %s peer %s fd %d (from_peer fd %d)",
205 (CHECK_FLAG (peer->sflags, PEER_STATUS_ACCEPT_PEER) ? "accept" : ""),
206 peer->host, peer->fd, from_peer->fd);
207 bgp_stop(peer);
208 bgp_stop(from_peer);
209 return NULL;
210 }
211 if (from_peer->status > Active)
212 {
213 if (bgp_getsockname(from_peer) < 0)
214 {
215 zlog_err ("%%bgp_getsockname() failed for %s from_peer %s fd %d (peer fd %d)",
216 (CHECK_FLAG (from_peer->sflags, PEER_STATUS_ACCEPT_PEER) ? "accept" : ""),
217 from_peer->host, from_peer->fd, peer->fd);
218 bgp_stop(from_peer);
219 from_peer = NULL;
220 }
221 }
222
223 BGP_READ_ON(peer->t_read, bgp_read, peer->fd);
224 BGP_WRITE_ON(peer->t_write, bgp_write, peer->fd);
225
226 if (from_peer)
227 peer_xfer_stats(peer, from_peer);
228
229 return(peer);
230 }
231
232 /* Hook function called after bgp event is occered. And vty's
233 neighbor command invoke this function after making neighbor
234 structure. */
235 void
236 bgp_timer_set (struct peer *peer)
237 {
238 switch (peer->status)
239 {
240 case Idle:
241 /* First entry point of peer's finite state machine. In Idle
242 status start timer is on unless peer is shutdown or peer is
243 inactive. All other timer must be turned off */
244 if (BGP_PEER_START_SUPPRESSED (peer) || ! peer_active (peer))
245 {
246 BGP_TIMER_OFF (peer->t_start);
247 }
248 else
249 {
250 BGP_TIMER_ON (peer->t_start, bgp_start_timer,
251 peer->v_start);
252 }
253 BGP_TIMER_OFF (peer->t_connect);
254 BGP_TIMER_OFF (peer->t_holdtime);
255 BGP_TIMER_OFF (peer->t_keepalive);
256 BGP_TIMER_OFF (peer->t_routeadv);
257 break;
258
259 case Connect:
260 /* After start timer is expired, the peer moves to Connect
261 status. Make sure start timer is off and connect timer is
262 on. */
263 BGP_TIMER_OFF (peer->t_start);
264 BGP_TIMER_ON (peer->t_connect, bgp_connect_timer, peer->v_connect);
265 BGP_TIMER_OFF (peer->t_holdtime);
266 BGP_TIMER_OFF (peer->t_keepalive);
267 BGP_TIMER_OFF (peer->t_routeadv);
268 break;
269
270 case Active:
271 /* Active is waiting connection from remote peer. And if
272 connect timer is expired, change status to Connect. */
273 BGP_TIMER_OFF (peer->t_start);
274 /* If peer is passive mode, do not set connect timer. */
275 if (CHECK_FLAG (peer->flags, PEER_FLAG_PASSIVE)
276 || CHECK_FLAG (peer->sflags, PEER_STATUS_NSF_WAIT))
277 {
278 BGP_TIMER_OFF (peer->t_connect);
279 }
280 else
281 {
282 BGP_TIMER_ON (peer->t_connect, bgp_connect_timer, peer->v_connect);
283 }
284 BGP_TIMER_OFF (peer->t_holdtime);
285 BGP_TIMER_OFF (peer->t_keepalive);
286 BGP_TIMER_OFF (peer->t_routeadv);
287 break;
288
289 case OpenSent:
290 /* OpenSent status. */
291 BGP_TIMER_OFF (peer->t_start);
292 BGP_TIMER_OFF (peer->t_connect);
293 if (peer->v_holdtime != 0)
294 {
295 BGP_TIMER_ON (peer->t_holdtime, bgp_holdtime_timer,
296 peer->v_holdtime);
297 }
298 else
299 {
300 BGP_TIMER_OFF (peer->t_holdtime);
301 }
302 BGP_TIMER_OFF (peer->t_keepalive);
303 BGP_TIMER_OFF (peer->t_routeadv);
304 break;
305
306 case OpenConfirm:
307 /* OpenConfirm status. */
308 BGP_TIMER_OFF (peer->t_start);
309 BGP_TIMER_OFF (peer->t_connect);
310
311 /* If the negotiated Hold Time value is zero, then the Hold Time
312 timer and KeepAlive timers are not started. */
313 if (peer->v_holdtime == 0)
314 {
315 BGP_TIMER_OFF (peer->t_holdtime);
316 BGP_TIMER_OFF (peer->t_keepalive);
317 }
318 else
319 {
320 BGP_TIMER_ON (peer->t_holdtime, bgp_holdtime_timer,
321 peer->v_holdtime);
322 BGP_TIMER_ON (peer->t_keepalive, bgp_keepalive_timer,
323 peer->v_keepalive);
324 }
325 BGP_TIMER_OFF (peer->t_routeadv);
326 break;
327
328 case Established:
329 /* In Established status start and connect timer is turned
330 off. */
331 BGP_TIMER_OFF (peer->t_start);
332 BGP_TIMER_OFF (peer->t_connect);
333
334 /* Same as OpenConfirm, if holdtime is zero then both holdtime
335 and keepalive must be turned off. */
336 if (peer->v_holdtime == 0)
337 {
338 BGP_TIMER_OFF (peer->t_holdtime);
339 BGP_TIMER_OFF (peer->t_keepalive);
340 }
341 else
342 {
343 BGP_TIMER_ON (peer->t_holdtime, bgp_holdtime_timer,
344 peer->v_holdtime);
345 BGP_TIMER_ON (peer->t_keepalive, bgp_keepalive_timer,
346 peer->v_keepalive);
347 }
348 break;
349 case Deleted:
350 BGP_TIMER_OFF (peer->t_gr_restart);
351 BGP_TIMER_OFF (peer->t_gr_stale);
352 BGP_TIMER_OFF (peer->t_pmax_restart);
353 case Clearing:
354 BGP_TIMER_OFF (peer->t_start);
355 BGP_TIMER_OFF (peer->t_connect);
356 BGP_TIMER_OFF (peer->t_holdtime);
357 BGP_TIMER_OFF (peer->t_keepalive);
358 BGP_TIMER_OFF (peer->t_routeadv);
359 break;
360 }
361 }
362
363 /* BGP start timer. This function set BGP_Start event to thread value
364 and process event. */
365 static int
366 bgp_start_timer (struct thread *thread)
367 {
368 struct peer *peer;
369
370 peer = THREAD_ARG (thread);
371 peer->t_start = NULL;
372
373 if (bgp_debug_neighbor_events(peer))
374 zlog_debug("%s [FSM] Timer (start timer expire).", peer->host);
375
376 THREAD_VAL (thread) = BGP_Start;
377 bgp_event (thread); /* bgp_event unlocks peer */
378
379 return 0;
380 }
381
382 /* BGP connect retry timer. */
383 static int
384 bgp_connect_timer (struct thread *thread)
385 {
386 struct peer *peer;
387 int ret;
388
389 peer = THREAD_ARG (thread);
390 peer->t_connect = NULL;
391
392 if (bgp_debug_neighbor_events(peer))
393 zlog_debug("%s [FSM] Timer (connect timer expire)", peer->host);
394
395 if (CHECK_FLAG(peer->sflags, PEER_STATUS_ACCEPT_PEER))
396 {
397 bgp_stop(peer);
398 ret = -1;
399 }
400 else
401 {
402 THREAD_VAL (thread) = ConnectRetry_timer_expired;
403 bgp_event (thread); /* bgp_event unlocks peer */
404 ret = 0;
405 }
406
407 return ret;
408 }
409
410 /* BGP holdtime timer. */
411 static int
412 bgp_holdtime_timer (struct thread *thread)
413 {
414 struct peer *peer;
415
416 peer = THREAD_ARG (thread);
417 peer->t_holdtime = NULL;
418
419 if (bgp_debug_neighbor_events(peer))
420 zlog_debug ("%s [FSM] Timer (holdtime timer expire)", peer->host);
421
422 THREAD_VAL (thread) = Hold_Timer_expired;
423 bgp_event (thread); /* bgp_event unlocks peer */
424
425 return 0;
426 }
427
428 /* BGP keepalive fire ! */
429 static int
430 bgp_keepalive_timer (struct thread *thread)
431 {
432 struct peer *peer;
433
434 peer = THREAD_ARG (thread);
435 peer->t_keepalive = NULL;
436
437 if (bgp_debug_neighbor_events(peer))
438 zlog_debug ("%s [FSM] Timer (keepalive timer expire)", peer->host);
439
440 THREAD_VAL (thread) = KeepAlive_timer_expired;
441 bgp_event (thread); /* bgp_event unlocks peer */
442
443 return 0;
444 }
445
446 int
447 bgp_routeadv_timer (struct thread *thread)
448 {
449 struct peer *peer;
450
451 peer = THREAD_ARG (thread);
452 peer->t_routeadv = NULL;
453
454 if (bgp_debug_neighbor_events(peer))
455 zlog_debug ("%s [FSM] Timer (routeadv timer expire)", peer->host);
456
457 peer->synctime = bgp_clock ();
458
459 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
460
461 /* MRAI timer will be started again when FIFO is built, no need to
462 * do it here.
463 */
464 return 0;
465 }
466
467 /* BGP Peer Down Cause */
468 const char *peer_down_str[] =
469 {
470 "",
471 "Router ID changed",
472 "Remote AS changed",
473 "Local AS change",
474 "Cluster ID changed",
475 "Confederation identifier changed",
476 "Confederation peer changed",
477 "RR client config change",
478 "RS client config change",
479 "Update source change",
480 "Address family activated",
481 "Admin. shutdown",
482 "User reset",
483 "BGP Notification received",
484 "BGP Notification send",
485 "Peer closed the session",
486 "Neighbor deleted",
487 "Peer-group add member",
488 "Peer-group delete member",
489 "Capability changed",
490 "Passive config change",
491 "Multihop config change",
492 "NSF peer closed the session",
493 "Intf peering v6only config change",
494 "BFD down received",
495 "Interface down",
496 "Neighbor address lost"
497 };
498
499 static int
500 bgp_graceful_restart_timer_expire (struct thread *thread)
501 {
502 struct peer *peer;
503 afi_t afi;
504 safi_t safi;
505
506 peer = THREAD_ARG (thread);
507 peer->t_gr_restart = NULL;
508
509 /* NSF delete stale route */
510 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
511 for (safi = SAFI_UNICAST ; safi < SAFI_RESERVED_3 ; safi++)
512 if (peer->nsf[afi][safi])
513 bgp_clear_stale_route (peer, afi, safi);
514
515 UNSET_FLAG (peer->sflags, PEER_STATUS_NSF_WAIT);
516 BGP_TIMER_OFF (peer->t_gr_stale);
517
518 if (bgp_debug_neighbor_events(peer))
519 {
520 zlog_debug ("%s graceful restart timer expired", peer->host);
521 zlog_debug ("%s graceful restart stalepath timer stopped", peer->host);
522 }
523
524 bgp_timer_set (peer);
525
526 return 0;
527 }
528
529 static int
530 bgp_graceful_stale_timer_expire (struct thread *thread)
531 {
532 struct peer *peer;
533 afi_t afi;
534 safi_t safi;
535
536 peer = THREAD_ARG (thread);
537 peer->t_gr_stale = NULL;
538
539 if (bgp_debug_neighbor_events(peer))
540 zlog_debug ("%s graceful restart stalepath timer expired", peer->host);
541
542 /* NSF delete stale route */
543 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
544 for (safi = SAFI_UNICAST ; safi < SAFI_RESERVED_3 ; safi++)
545 if (peer->nsf[afi][safi])
546 bgp_clear_stale_route (peer, afi, safi);
547
548 return 0;
549 }
550
551 static int
552 bgp_update_delay_applicable (struct bgp *bgp)
553 {
554 /* update_delay_over flag should be reset (set to 0) for any new
555 applicability of the update-delay during BGP process lifetime.
556 And it should be set after an occurence of the update-delay is over)*/
557 if (!bgp->update_delay_over)
558 return 1;
559
560 return 0;
561 }
562
563 int
564 bgp_update_delay_active (struct bgp *bgp)
565 {
566 if (bgp->t_update_delay)
567 return 1;
568
569 return 0;
570 }
571
572 int
573 bgp_update_delay_configured (struct bgp *bgp)
574 {
575 if (bgp->v_update_delay)
576 return 1;
577
578 return 0;
579 }
580
581 /* Do the post-processing needed when bgp comes out of the read-only mode
582 on ending the update delay. */
583 void
584 bgp_update_delay_end (struct bgp *bgp)
585 {
586 THREAD_TIMER_OFF (bgp->t_update_delay);
587 THREAD_TIMER_OFF (bgp->t_establish_wait);
588
589 /* Reset update-delay related state */
590 bgp->update_delay_over = 1;
591 bgp->established = 0;
592 bgp->restarted_peers = 0;
593 bgp->implicit_eors = 0;
594 bgp->explicit_eors = 0;
595
596 quagga_timestamp(3, bgp->update_delay_end_time,
597 sizeof(bgp->update_delay_end_time));
598
599 /*
600 * Add an end-of-initial-update marker to the main process queues so that
601 * the route advertisement timer for the peers can be started. Also set
602 * the zebra and peer update hold flags. These flags are used to achieve
603 * three stages in the update-delay post processing:
604 * 1. Finish best-path selection for all the prefixes held on the queues.
605 * (routes in BGP are updated, and peers sync queues are populated too)
606 * 2. As the eoiu mark is reached in the bgp process routine, ship all the
607 * routes to zebra. With that zebra should see updates from BGP close
608 * to each other.
609 * 3. Unblock the peer update writes. With that peer update packing with
610 * the prefixes should be at its maximum.
611 */
612 bgp_add_eoiu_mark(bgp);
613 bgp->main_zebra_update_hold = 1;
614 bgp->main_peers_update_hold = 1;
615
616 /* Resume the queue processing. This should trigger the event that would take
617 care of processing any work that was queued during the read-only mode. */
618 work_queue_unplug(bm->process_main_queue);
619 }
620
621 /**
622 * see bgp_fsm.h
623 */
624 void
625 bgp_start_routeadv (struct bgp *bgp)
626 {
627 struct listnode *node, *nnode;
628 struct peer *peer;
629
630 zlog_info("bgp_start_routeadv(), update hold status %d",
631 bgp->main_peers_update_hold);
632
633 if (bgp->main_peers_update_hold)
634 return;
635
636 quagga_timestamp(3, bgp->update_delay_peers_resume_time,
637 sizeof(bgp->update_delay_peers_resume_time));
638
639 for (ALL_LIST_ELEMENTS (bgp->peer, node, nnode, peer))
640 {
641 if (peer->status != Established)
642 continue;
643 BGP_TIMER_OFF(peer->t_routeadv);
644 BGP_TIMER_ON(peer->t_routeadv, bgp_routeadv_timer, 0);
645 }
646 }
647
648 /**
649 * see bgp_fsm.h
650 */
651 void
652 bgp_adjust_routeadv (struct peer *peer)
653 {
654 time_t nowtime = bgp_clock();
655 double diff;
656 unsigned long remain;
657
658 /* Bypass checks for special case of MRAI being 0 */
659 if (peer->v_routeadv == 0)
660 {
661 /* Stop existing timer, just in case it is running for a different
662 * duration and schedule write thread immediately.
663 */
664 if (peer->t_routeadv)
665 BGP_TIMER_OFF(peer->t_routeadv);
666
667 peer->synctime = bgp_clock ();
668 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
669 return;
670 }
671
672
673 /*
674 * CASE I:
675 * If the last update was written more than MRAI back, expire the timer
676 * instantly so that we can send the update out sooner.
677 *
678 * <------- MRAI --------->
679 * |-----------------|-----------------------|
680 * <------------- m ------------>
681 * ^ ^ ^
682 * | | |
683 * | | current time
684 * | timer start
685 * last write
686 *
687 * m > MRAI
688 */
689 diff = difftime(nowtime, peer->last_update);
690 if (diff > (double) peer->v_routeadv)
691 {
692 BGP_TIMER_OFF(peer->t_routeadv);
693 BGP_TIMER_ON(peer->t_routeadv, bgp_routeadv_timer, 0);
694 return;
695 }
696
697 /*
698 * CASE II:
699 * - Find when to expire the MRAI timer.
700 * If MRAI timer is not active, assume we can start it now.
701 *
702 * <------- MRAI --------->
703 * |------------|-----------------------|
704 * <-------- m ----------><----- r ----->
705 * ^ ^ ^
706 * | | |
707 * | | current time
708 * | timer start
709 * last write
710 *
711 * (MRAI - m) < r
712 */
713 if (peer->t_routeadv)
714 remain = thread_timer_remain_second(peer->t_routeadv);
715 else
716 remain = peer->v_routeadv;
717 diff = peer->v_routeadv - diff;
718 if (diff <= (double) remain)
719 {
720 BGP_TIMER_OFF(peer->t_routeadv);
721 BGP_TIMER_ON(peer->t_routeadv, bgp_routeadv_timer, diff);
722 }
723 }
724
725 static int
726 bgp_maxmed_onstartup_applicable (struct bgp *bgp)
727 {
728 if (!bgp->maxmed_onstartup_over)
729 return 1;
730
731 return 0;
732 }
733
734 int
735 bgp_maxmed_onstartup_configured (struct bgp *bgp)
736 {
737 if (bgp->v_maxmed_onstartup != BGP_MAXMED_ONSTARTUP_UNCONFIGURED)
738 return 1;
739
740 return 0;
741 }
742
743 int
744 bgp_maxmed_onstartup_active (struct bgp *bgp)
745 {
746 if (bgp->t_maxmed_onstartup)
747 return 1;
748
749 return 0;
750 }
751
752 void
753 bgp_maxmed_update (struct bgp *bgp)
754 {
755 u_char maxmed_active;
756 u_int32_t maxmed_value;
757
758 if (bgp->v_maxmed_admin)
759 {
760 maxmed_active = 1;
761 maxmed_value = bgp->maxmed_admin_value;
762 }
763 else if (bgp->t_maxmed_onstartup)
764 {
765 maxmed_active = 1;
766 maxmed_value = bgp->maxmed_onstartup_value;
767 }
768 else
769 {
770 maxmed_active = 0;
771 maxmed_value = BGP_MAXMED_VALUE_DEFAULT;
772 }
773
774 if (bgp->maxmed_active != maxmed_active ||
775 bgp->maxmed_value != maxmed_value)
776 {
777 bgp->maxmed_active = maxmed_active;
778 bgp->maxmed_value = maxmed_value;
779
780 update_group_announce(bgp);
781 }
782 }
783
784 /* The maxmed onstartup timer expiry callback. */
785 static int
786 bgp_maxmed_onstartup_timer (struct thread *thread)
787 {
788 struct bgp *bgp;
789
790 zlog_info ("Max med on startup ended - timer expired.");
791
792 bgp = THREAD_ARG (thread);
793 THREAD_TIMER_OFF (bgp->t_maxmed_onstartup);
794 bgp->maxmed_onstartup_over = 1;
795
796 bgp_maxmed_update(bgp);
797
798 return 0;
799 }
800
801 static void
802 bgp_maxmed_onstartup_begin (struct bgp *bgp)
803 {
804 /* Applicable only once in the process lifetime on the startup */
805 if (bgp->maxmed_onstartup_over)
806 return;
807
808 zlog_info ("Begin maxmed onstartup mode - timer %d seconds",
809 bgp->v_maxmed_onstartup);
810
811 THREAD_TIMER_ON (bm->master, bgp->t_maxmed_onstartup,
812 bgp_maxmed_onstartup_timer,
813 bgp, bgp->v_maxmed_onstartup);
814
815 if (!bgp->v_maxmed_admin)
816 {
817 bgp->maxmed_active = 1;
818 bgp->maxmed_value = bgp->maxmed_onstartup_value;
819 }
820
821 /* Route announce to all peers should happen after this in bgp_establish() */
822 }
823
824 static void
825 bgp_maxmed_onstartup_process_status_change(struct peer *peer)
826 {
827 if (peer->status == Established && !peer->bgp->established)
828 {
829 bgp_maxmed_onstartup_begin(peer->bgp);
830 }
831 }
832
833 /* The update delay timer expiry callback. */
834 static int
835 bgp_update_delay_timer (struct thread *thread)
836 {
837 struct bgp *bgp;
838
839 zlog_info ("Update delay ended - timer expired.");
840
841 bgp = THREAD_ARG (thread);
842 THREAD_TIMER_OFF (bgp->t_update_delay);
843 bgp_update_delay_end(bgp);
844
845 return 0;
846 }
847
848 /* The establish wait timer expiry callback. */
849 static int
850 bgp_establish_wait_timer (struct thread *thread)
851 {
852 struct bgp *bgp;
853
854 zlog_info ("Establish wait - timer expired.");
855
856 bgp = THREAD_ARG (thread);
857 THREAD_TIMER_OFF (bgp->t_establish_wait);
858 bgp_check_update_delay(bgp);
859
860 return 0;
861 }
862
863 /* Steps to begin the update delay:
864 - initialize queues if needed
865 - stop the queue processing
866 - start the timer */
867 static void
868 bgp_update_delay_begin (struct bgp *bgp)
869 {
870 struct listnode *node, *nnode;
871 struct peer *peer;
872
873 /* Stop the processing of queued work. Enqueue shall continue */
874 work_queue_plug(bm->process_main_queue);
875
876 for (ALL_LIST_ELEMENTS (bgp->peer, node, nnode, peer))
877 peer->update_delay_over = 0;
878
879 /* Start the update-delay timer */
880 THREAD_TIMER_ON (bm->master, bgp->t_update_delay, bgp_update_delay_timer,
881 bgp, bgp->v_update_delay);
882
883 if (bgp->v_establish_wait != bgp->v_update_delay)
884 THREAD_TIMER_ON (bm->master, bgp->t_establish_wait, bgp_establish_wait_timer,
885 bgp, bgp->v_establish_wait);
886
887 quagga_timestamp(3, bgp->update_delay_begin_time,
888 sizeof(bgp->update_delay_begin_time));
889 }
890
891 static void
892 bgp_update_delay_process_status_change(struct peer *peer)
893 {
894 if (peer->status == Established)
895 {
896 if (!peer->bgp->established++)
897 {
898 bgp_update_delay_begin(peer->bgp);
899 zlog_info ("Begin read-only mode - update-delay timer %d seconds",
900 peer->bgp->v_update_delay);
901 }
902 if (CHECK_FLAG (peer->cap, PEER_CAP_RESTART_BIT_RCV))
903 bgp_update_restarted_peers(peer);
904 }
905 if (peer->ostatus == Established && bgp_update_delay_active(peer->bgp))
906 {
907 /* Adjust the update-delay state to account for this flap.
908 NOTE: Intentionally skipping adjusting implicit_eors or explicit_eors
909 counters. Extra sanity check in bgp_check_update_delay() should
910 be enough to take care of any additive discrepancy in bgp eor
911 counters */
912 peer->bgp->established--;
913 peer->update_delay_over = 0;
914 }
915 }
916
917 /* Called after event occured, this function change status and reset
918 read/write and timer thread. */
919 void
920 bgp_fsm_change_status (struct peer *peer, int status)
921 {
922
923 bgp_dump_state (peer, peer->status, status);
924
925 /* Transition into Clearing or Deleted must /always/ clear all routes..
926 * (and must do so before actually changing into Deleted..
927 */
928 if (status >= Clearing)
929 {
930 bgp_clear_route_all (peer);
931
932 /* If no route was queued for the clear-node processing, generate the
933 * completion event here. This is needed because if there are no routes
934 * to trigger the background clear-node thread, the event won't get
935 * generated and the peer would be stuck in Clearing. Note that this
936 * event is for the peer and helps the peer transition out of Clearing
937 * state; it should not be generated per (AFI,SAFI). The event is
938 * directly posted here without calling clear_node_complete() as we
939 * shouldn't do an extra unlock. This event will get processed after
940 * the state change that happens below, so peer will be in Clearing
941 * (or Deleted).
942 */
943 if (!work_queue_is_scheduled (peer->clear_node_queue))
944 BGP_EVENT_ADD (peer, Clearing_Completed);
945 }
946
947 /* Preserve old status and change into new status. */
948 peer->ostatus = peer->status;
949 peer->status = status;
950
951 /* Save event that caused status change. */
952 peer->last_major_event = peer->cur_event;
953
954 if (status == Established)
955 UNSET_FLAG(peer->sflags, PEER_STATUS_ACCEPT_PEER);
956
957 /* If max-med processing is applicable, do the necessary. */
958 if (status == Established)
959 {
960 if (bgp_maxmed_onstartup_configured(peer->bgp) &&
961 bgp_maxmed_onstartup_applicable(peer->bgp))
962 bgp_maxmed_onstartup_process_status_change(peer);
963 else
964 peer->bgp->maxmed_onstartup_over = 1;
965 }
966
967 /* If update-delay processing is applicable, do the necessary. */
968 if (bgp_update_delay_configured(peer->bgp) &&
969 bgp_update_delay_applicable(peer->bgp))
970 bgp_update_delay_process_status_change(peer);
971
972 if (bgp_debug_neighbor_events(peer))
973 zlog_debug ("%s went from %s to %s",
974 peer->host,
975 LOOKUP (bgp_status_msg, peer->ostatus),
976 LOOKUP (bgp_status_msg, peer->status));
977 }
978
979 /* Flush the event queue and ensure the peer is shut down */
980 static int
981 bgp_clearing_completed (struct peer *peer)
982 {
983 int rc = bgp_stop(peer);
984
985 if (rc >= 0)
986 BGP_EVENT_FLUSH (peer);
987
988 return rc;
989 }
990
991 /* Administrative BGP peer stop event. */
992 /* May be called multiple times for the same peer */
993 int
994 bgp_stop (struct peer *peer)
995 {
996 afi_t afi;
997 safi_t safi;
998 char orf_name[BUFSIZ];
999 int ret = 0;
1000
1001 if (peer_dynamic_neighbor(peer) &&
1002 !(CHECK_FLAG(peer->flags, PEER_FLAG_DELETE)))
1003 {
1004 if (bgp_debug_neighbor_events(peer))
1005 zlog_debug ("%s (dynamic neighbor) deleted", peer->host);
1006 peer_delete (peer);
1007 return -1;
1008 }
1009
1010 /* Can't do this in Clearing; events are used for state transitions */
1011 if (peer->status != Clearing)
1012 {
1013 /* Delete all existing events of the peer */
1014 BGP_EVENT_FLUSH (peer);
1015 }
1016
1017 /* Increment Dropped count. */
1018 if (peer->status == Established)
1019 {
1020 peer->dropped++;
1021
1022 /* bgp log-neighbor-changes of neighbor Down */
1023 if (bgp_flag_check (peer->bgp, BGP_FLAG_LOG_NEIGHBOR_CHANGES))
1024 {
1025 struct vrf *vrf = vrf_lookup_by_id (peer->bgp->vrf_id);
1026 zlog_info ("%%ADJCHANGE: neighbor %s(%s) in vrf %s Down %s",
1027 peer->host,
1028 (peer->hostname) ? peer->hostname : "Unknown",
1029 vrf ? ((vrf->vrf_id != VRF_DEFAULT) ? vrf->name : "Default") : "",
1030 peer_down_str [(int) peer->last_reset]);
1031 }
1032
1033 /* graceful restart */
1034 if (peer->t_gr_stale)
1035 {
1036 BGP_TIMER_OFF (peer->t_gr_stale);
1037 if (bgp_debug_neighbor_events(peer))
1038 zlog_debug ("%s graceful restart stalepath timer stopped", peer->host);
1039 }
1040 if (CHECK_FLAG (peer->sflags, PEER_STATUS_NSF_WAIT))
1041 {
1042 if (bgp_debug_neighbor_events(peer))
1043 {
1044 zlog_debug ("%s graceful restart timer started for %d sec",
1045 peer->host, peer->v_gr_restart);
1046 zlog_debug ("%s graceful restart stalepath timer started for %d sec",
1047 peer->host, peer->bgp->stalepath_time);
1048 }
1049 BGP_TIMER_ON (peer->t_gr_restart, bgp_graceful_restart_timer_expire,
1050 peer->v_gr_restart);
1051 BGP_TIMER_ON (peer->t_gr_stale, bgp_graceful_stale_timer_expire,
1052 peer->bgp->stalepath_time);
1053 }
1054 else
1055 {
1056 UNSET_FLAG (peer->sflags, PEER_STATUS_NSF_MODE);
1057
1058 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
1059 for (safi = SAFI_UNICAST ; safi < SAFI_RESERVED_3 ; safi++)
1060 peer->nsf[afi][safi] = 0;
1061 }
1062
1063 /* set last reset time */
1064 peer->resettime = peer->uptime = bgp_clock ();
1065
1066 if (BGP_DEBUG (update_groups, UPDATE_GROUPS))
1067 zlog_debug ("%s remove from all update group", peer->host);
1068 update_group_remove_peer_afs(peer);
1069
1070 #ifdef HAVE_SNMP
1071 bgpTrapBackwardTransition (peer);
1072 #endif /* HAVE_SNMP */
1073
1074 /* Reset peer synctime */
1075 peer->synctime = 0;
1076
1077 bgp_bfd_deregister_peer(peer);
1078 }
1079
1080 /* Stop read and write threads when exists. */
1081 BGP_READ_OFF (peer->t_read);
1082 BGP_WRITE_OFF (peer->t_write);
1083
1084 /* Stop all timers. */
1085 BGP_TIMER_OFF (peer->t_start);
1086 BGP_TIMER_OFF (peer->t_connect);
1087 BGP_TIMER_OFF (peer->t_holdtime);
1088 BGP_TIMER_OFF (peer->t_keepalive);
1089 BGP_TIMER_OFF (peer->t_routeadv);
1090
1091 /* Stream reset. */
1092 peer->packet_size = 0;
1093
1094 /* Clear input and output buffer. */
1095 if (peer->ibuf)
1096 stream_reset (peer->ibuf);
1097 if (peer->work)
1098 stream_reset (peer->work);
1099 if (peer->obuf)
1100 stream_fifo_clean (peer->obuf);
1101
1102 /* Close of file descriptor. */
1103 if (peer->fd >= 0)
1104 {
1105 close (peer->fd);
1106 peer->fd = -1;
1107 }
1108
1109 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
1110 for (safi = SAFI_UNICAST ; safi < SAFI_MAX ; safi++)
1111 {
1112 /* Reset all negotiated variables */
1113 peer->afc_nego[afi][safi] = 0;
1114 peer->afc_adv[afi][safi] = 0;
1115 peer->afc_recv[afi][safi] = 0;
1116
1117 /* peer address family capability flags*/
1118 peer->af_cap[afi][safi] = 0;
1119
1120 /* peer address family status flags*/
1121 peer->af_sflags[afi][safi] = 0;
1122
1123 /* Received ORF prefix-filter */
1124 peer->orf_plist[afi][safi] = NULL;
1125
1126 if ((peer->status == OpenConfirm) || (peer->status == Established)) {
1127 /* ORF received prefix-filter pnt */
1128 sprintf (orf_name, "%s.%d.%d", peer->host, afi, safi);
1129 prefix_bgp_orf_remove_all (afi, orf_name);
1130 }
1131 }
1132
1133 /* Reset keepalive and holdtime */
1134 if (CHECK_FLAG (peer->config, PEER_CONFIG_TIMER))
1135 {
1136 peer->v_keepalive = peer->keepalive;
1137 peer->v_holdtime = peer->holdtime;
1138 }
1139 else
1140 {
1141 peer->v_keepalive = peer->bgp->default_keepalive;
1142 peer->v_holdtime = peer->bgp->default_holdtime;
1143 }
1144
1145 peer->update_time = 0;
1146
1147 /* Until we are sure that there is no problem about prefix count
1148 this should be commented out.*/
1149 #if 0
1150 /* Reset prefix count */
1151 peer->pcount[AFI_IP][SAFI_UNICAST] = 0;
1152 peer->pcount[AFI_IP][SAFI_MULTICAST] = 0;
1153 peer->pcount[AFI_IP][SAFI_MPLS_VPN] = 0;
1154 peer->pcount[AFI_IP6][SAFI_UNICAST] = 0;
1155 peer->pcount[AFI_IP6][SAFI_MULTICAST] = 0;
1156 #endif /* 0 */
1157
1158 if (!CHECK_FLAG(peer->flags, PEER_FLAG_CONFIG_NODE) &&
1159 !(CHECK_FLAG(peer->flags, PEER_FLAG_DELETE)))
1160 {
1161 peer_delete(peer);
1162 ret = -1;
1163 }
1164 else
1165 {
1166 bgp_peer_conf_if_to_su_update(peer);
1167 }
1168
1169 return ret;
1170 }
1171
1172 /* BGP peer is stoped by the error. */
1173 static int
1174 bgp_stop_with_error (struct peer *peer)
1175 {
1176 /* Double start timer. */
1177 peer->v_start *= 2;
1178
1179 /* Overflow check. */
1180 if (peer->v_start >= (60 * 2))
1181 peer->v_start = (60 * 2);
1182
1183 if (peer_dynamic_neighbor(peer))
1184 {
1185 if (bgp_debug_neighbor_events(peer))
1186 zlog_debug ("%s (dynamic neighbor) deleted", peer->host);
1187 peer_delete (peer);
1188 return -1;
1189 }
1190
1191 return(bgp_stop (peer));
1192 }
1193
1194
1195 /* something went wrong, send notify and tear down */
1196 static int
1197 bgp_stop_with_notify (struct peer *peer, u_char code, u_char sub_code)
1198 {
1199 /* Send notify to remote peer */
1200 bgp_notify_send (peer, code, sub_code);
1201
1202 if (peer_dynamic_neighbor(peer))
1203 {
1204 if (bgp_debug_neighbor_events(peer))
1205 zlog_debug ("%s (dynamic neighbor) deleted", peer->host);
1206 peer_delete (peer);
1207 return -1;
1208 }
1209
1210 /* Clear start timer value to default. */
1211 peer->v_start = BGP_INIT_START_TIMER;
1212
1213 return(bgp_stop(peer));
1214 }
1215
1216
1217 /* TCP connection open. Next we send open message to remote peer. And
1218 add read thread for reading open message. */
1219 static int
1220 bgp_connect_success (struct peer *peer)
1221 {
1222 if (peer->fd < 0)
1223 {
1224 zlog_err ("bgp_connect_success peer's fd is negative value %d",
1225 peer->fd);
1226 bgp_stop(peer);
1227 return -1;
1228 }
1229
1230 if (bgp_getsockname (peer) < 0)
1231 {
1232 zlog_err ("%s: bgp_getsockname(): failed for peer %s, fd %d", __FUNCTION__,
1233 peer->host, peer->fd);
1234 bgp_notify_send(peer, BGP_NOTIFY_FSM_ERR, 0); /* internal error */
1235 return -1;
1236 }
1237
1238 BGP_READ_ON (peer->t_read, bgp_read, peer->fd);
1239
1240 if (bgp_debug_neighbor_events(peer))
1241 {
1242 char buf1[SU_ADDRSTRLEN];
1243
1244 if (! CHECK_FLAG (peer->sflags, PEER_STATUS_ACCEPT_PEER))
1245 zlog_debug ("%s open active, local address %s", peer->host,
1246 sockunion2str (peer->su_local, buf1, SU_ADDRSTRLEN));
1247 else
1248 zlog_debug ("%s passive open", peer->host);
1249 }
1250
1251 bgp_open_send (peer);
1252
1253 return 0;
1254 }
1255
1256 /* TCP connect fail */
1257 static int
1258 bgp_connect_fail (struct peer *peer)
1259 {
1260 if (peer_dynamic_neighbor(peer))
1261 {
1262 if (bgp_debug_neighbor_events(peer))
1263 zlog_debug ("%s (dynamic neighbor) deleted", peer->host);
1264 peer_delete (peer);
1265 return -1;
1266 }
1267
1268 return (bgp_stop (peer));
1269 }
1270
1271 /* This function is the first starting point of all BGP connection. It
1272 try to connect to remote peer with non-blocking IO. */
1273 int
1274 bgp_start (struct peer *peer)
1275 {
1276 int status;
1277 int connected = 0;
1278
1279 bgp_peer_conf_if_to_su_update(peer);
1280
1281 if (peer->su.sa.sa_family == AF_UNSPEC)
1282 {
1283 if (bgp_debug_neighbor_events(peer))
1284 zlog_debug ("%s [FSM] Unable to get neighbor's IP address, waiting...",
1285 peer->host);
1286 return -1;
1287 }
1288
1289 if (BGP_PEER_START_SUPPRESSED (peer))
1290 {
1291 if (bgp_debug_neighbor_events(peer))
1292 zlog_err ("%s [FSM] Trying to start suppressed peer"
1293 " - this is never supposed to happen!", peer->host);
1294 return -1;
1295 }
1296
1297 /* Scrub some information that might be left over from a previous,
1298 * session
1299 */
1300 /* Connection information. */
1301 if (peer->su_local)
1302 {
1303 sockunion_free (peer->su_local);
1304 peer->su_local = NULL;
1305 }
1306
1307 if (peer->su_remote)
1308 {
1309 sockunion_free (peer->su_remote);
1310 peer->su_remote = NULL;
1311 }
1312
1313 /* Clear remote router-id. */
1314 peer->remote_id.s_addr = 0;
1315
1316 /* Clear peer capability flag. */
1317 peer->cap = 0;
1318
1319 /* If the peer is passive mode, force to move to Active mode. */
1320 if (CHECK_FLAG (peer->flags, PEER_FLAG_PASSIVE))
1321 {
1322 BGP_EVENT_ADD (peer, TCP_connection_open_failed);
1323 return 0;
1324 }
1325
1326 /* Register to be notified on peer up */
1327 if (peer->sort == BGP_PEER_EBGP && peer->ttl == 1 &&
1328 ! CHECK_FLAG (peer->flags, PEER_FLAG_DISABLE_CONNECTED_CHECK)
1329 && ! bgp_flag_check(peer->bgp, BGP_FLAG_DISABLE_NH_CONNECTED_CHK))
1330 connected = 1;
1331 else
1332 connected = 0;
1333
1334 if (!bgp_find_or_add_nexthop(peer->bgp, family2afi(peer->su.sa.sa_family),
1335 NULL, peer, connected))
1336 {
1337 #if defined (HAVE_CUMULUS)
1338 if (bgp_debug_neighbor_events(peer))
1339 zlog_debug ("%s [FSM] Waiting for NHT", peer->host);
1340
1341 BGP_EVENT_ADD(peer, TCP_connection_open_failed);
1342 return 0;
1343 #endif
1344 }
1345
1346 status = bgp_connect (peer);
1347
1348 switch (status)
1349 {
1350 case connect_error:
1351 if (bgp_debug_neighbor_events(peer))
1352 zlog_debug ("%s [FSM] Connect error", peer->host);
1353 BGP_EVENT_ADD (peer, TCP_connection_open_failed);
1354 break;
1355 case connect_success:
1356 if (bgp_debug_neighbor_events(peer))
1357 zlog_debug ("%s [FSM] Connect immediately success, fd %d",
1358 peer->host, peer->fd);
1359 BGP_EVENT_ADD (peer, TCP_connection_open);
1360 break;
1361 case connect_in_progress:
1362 /* To check nonblocking connect, we wait until socket is
1363 readable or writable. */
1364 if (bgp_debug_neighbor_events(peer))
1365 zlog_debug ("%s [FSM] Non blocking connect waiting result, fd %d",
1366 peer->host, peer->fd);
1367 if (peer->fd < 0)
1368 {
1369 zlog_err ("bgp_start peer's fd is negative value %d",
1370 peer->fd);
1371 return -1;
1372 }
1373 BGP_READ_ON (peer->t_read, bgp_read, peer->fd);
1374 BGP_WRITE_ON (peer->t_write, bgp_write, peer->fd);
1375 break;
1376 }
1377 return 0;
1378 }
1379
1380 /* Connect retry timer is expired when the peer status is Connect. */
1381 static int
1382 bgp_reconnect (struct peer *peer)
1383 {
1384 if (bgp_stop (peer) < 0)
1385 return -1;
1386
1387 bgp_start (peer);
1388 return 0;
1389 }
1390
1391 static int
1392 bgp_fsm_open (struct peer *peer)
1393 {
1394 /* Send keepalive and make keepalive timer */
1395 bgp_keepalive_send (peer);
1396
1397 /* Reset holdtimer value. */
1398 BGP_TIMER_OFF (peer->t_holdtime);
1399
1400 return 0;
1401 }
1402
1403 /* Keepalive send to peer. */
1404 static int
1405 bgp_fsm_keepalive_expire (struct peer *peer)
1406 {
1407 bgp_keepalive_send (peer);
1408 return 0;
1409 }
1410
1411 /* FSM error, unexpected event. This is error of BGP connection. So cut the
1412 peer and change to Idle status. */
1413 static int
1414 bgp_fsm_event_error (struct peer *peer)
1415 {
1416 zlog_err ("%s [FSM] unexpected packet received in state %s",
1417 peer->host, LOOKUP (bgp_status_msg, peer->status));
1418
1419 return bgp_stop_with_notify (peer, BGP_NOTIFY_FSM_ERR, 0);
1420 }
1421
1422 /* Hold timer expire. This is error of BGP connection. So cut the
1423 peer and change to Idle status. */
1424 static int
1425 bgp_fsm_holdtime_expire (struct peer *peer)
1426 {
1427 if (bgp_debug_neighbor_events(peer))
1428 zlog_debug ("%s [FSM] Hold timer expire", peer->host);
1429
1430 return bgp_stop_with_notify (peer, BGP_NOTIFY_HOLD_ERR, 0);
1431 }
1432
1433 /* Status goes to Established. Send keepalive packet then make first
1434 update information. */
1435 static int
1436 bgp_establish (struct peer *peer)
1437 {
1438 afi_t afi;
1439 safi_t safi;
1440 int nsf_af_count = 0;
1441 int ret = 0;
1442 struct peer *other;
1443
1444 other = peer->doppelganger;
1445 peer = peer_xfer_conn(peer);
1446 if (!peer)
1447 {
1448 zlog_err ("%%Neighbor failed in xfer_conn");
1449 return -1;
1450 }
1451
1452 if (other == peer)
1453 ret = 1; /* bgp_establish specific code when xfer_conn happens. */
1454
1455 /* Reset capability open status flag. */
1456 if (! CHECK_FLAG (peer->sflags, PEER_STATUS_CAPABILITY_OPEN))
1457 SET_FLAG (peer->sflags, PEER_STATUS_CAPABILITY_OPEN);
1458
1459 /* Clear start timer value to default. */
1460 peer->v_start = BGP_INIT_START_TIMER;
1461
1462 /* Increment established count. */
1463 peer->established++;
1464 bgp_fsm_change_status (peer, Established);
1465
1466 /* bgp log-neighbor-changes of neighbor Up */
1467 if (bgp_flag_check (peer->bgp, BGP_FLAG_LOG_NEIGHBOR_CHANGES))
1468 {
1469 struct vrf *vrf = vrf_lookup_by_id (peer->bgp->vrf_id);
1470 zlog_info ("%%ADJCHANGE: neighbor %s(%s) in vrf %s Up",
1471 peer->host,
1472 (peer->hostname) ? peer->hostname : "Unknown",
1473 vrf ? ((vrf->vrf_id != VRF_DEFAULT ) ? vrf->name : "Default") : "");
1474 }
1475 /* assign update-group/subgroup */
1476 update_group_adjust_peer_afs(peer);
1477
1478 /* graceful restart */
1479 UNSET_FLAG (peer->sflags, PEER_STATUS_NSF_WAIT);
1480 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
1481 for (safi = SAFI_UNICAST ; safi < SAFI_RESERVED_3 ; safi++)
1482 {
1483 if (peer->afc_nego[afi][safi]
1484 && CHECK_FLAG (peer->cap, PEER_CAP_RESTART_ADV)
1485 && CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_RESTART_AF_RCV))
1486 {
1487 if (peer->nsf[afi][safi]
1488 && ! CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_RESTART_AF_PRESERVE_RCV))
1489 bgp_clear_stale_route (peer, afi, safi);
1490
1491 peer->nsf[afi][safi] = 1;
1492 nsf_af_count++;
1493 }
1494 else
1495 {
1496 if (peer->nsf[afi][safi])
1497 bgp_clear_stale_route (peer, afi, safi);
1498 peer->nsf[afi][safi] = 0;
1499 }
1500 }
1501
1502 if (nsf_af_count)
1503 SET_FLAG (peer->sflags, PEER_STATUS_NSF_MODE);
1504 else
1505 {
1506 UNSET_FLAG (peer->sflags, PEER_STATUS_NSF_MODE);
1507 if (peer->t_gr_stale)
1508 {
1509 BGP_TIMER_OFF (peer->t_gr_stale);
1510 if (bgp_debug_neighbor_events(peer))
1511 zlog_debug ("%s graceful restart stalepath timer stopped", peer->host);
1512 }
1513 }
1514
1515 if (peer->t_gr_restart)
1516 {
1517 BGP_TIMER_OFF (peer->t_gr_restart);
1518 if (bgp_debug_neighbor_events(peer))
1519 zlog_debug ("%s graceful restart timer stopped", peer->host);
1520 }
1521
1522 #ifdef HAVE_SNMP
1523 bgpTrapEstablished (peer);
1524 #endif /* HAVE_SNMP */
1525
1526 /* Reset uptime, send keepalive, send current table. */
1527 peer->uptime = bgp_clock ();
1528
1529 /* Send route-refresh when ORF is enabled */
1530 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
1531 for (safi = SAFI_UNICAST ; safi < SAFI_MAX ; safi++)
1532 if (CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_ORF_PREFIX_SM_ADV))
1533 {
1534 if (CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_ORF_PREFIX_RM_RCV))
1535 bgp_route_refresh_send (peer, afi, safi, ORF_TYPE_PREFIX,
1536 REFRESH_IMMEDIATE, 0);
1537 else if (CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_ORF_PREFIX_RM_OLD_RCV))
1538 bgp_route_refresh_send (peer, afi, safi, ORF_TYPE_PREFIX_OLD,
1539 REFRESH_IMMEDIATE, 0);
1540 }
1541
1542 /* First update is deferred until ORF or ROUTE-REFRESH is received */
1543 for (afi = AFI_IP ; afi < AFI_MAX ; afi++)
1544 for (safi = SAFI_UNICAST ; safi < SAFI_MAX ; safi++)
1545 if (CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_ORF_PREFIX_RM_ADV))
1546 if (CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_ORF_PREFIX_SM_RCV)
1547 || CHECK_FLAG (peer->af_cap[afi][safi], PEER_CAP_ORF_PREFIX_SM_OLD_RCV))
1548 SET_FLAG (peer->af_sflags[afi][safi], PEER_STATUS_ORF_WAIT_REFRESH);
1549
1550 bgp_announce_peer (peer);
1551
1552 /* Start the route advertisement timer to send updates to the peer - if BGP
1553 * is not in read-only mode. If it is, the timer will be started at the end
1554 * of read-only mode.
1555 */
1556 if (!bgp_update_delay_active(peer->bgp))
1557 {
1558 BGP_TIMER_OFF(peer->t_routeadv);
1559 BGP_TIMER_ON (peer->t_routeadv, bgp_routeadv_timer, 0);
1560 }
1561
1562 if (peer->doppelganger && (peer->doppelganger->status != Deleted))
1563 {
1564 if (bgp_debug_neighbor_events(peer))
1565 zlog_debug("[Event] Deleting stub connection for peer %s", peer->host);
1566
1567 if (peer->doppelganger->status > Active)
1568 bgp_notify_send (peer->doppelganger, BGP_NOTIFY_CEASE,
1569 BGP_NOTIFY_CEASE_COLLISION_RESOLUTION);
1570 else
1571 peer_delete(peer->doppelganger);
1572 }
1573
1574 bgp_bfd_register_peer(peer);
1575 return ret;
1576 }
1577
1578 /* Keepalive packet is received. */
1579 static int
1580 bgp_fsm_keepalive (struct peer *peer)
1581 {
1582 bgp_update_implicit_eors(peer);
1583
1584 /* peer count update */
1585 peer->keepalive_in++;
1586
1587 BGP_TIMER_OFF (peer->t_holdtime);
1588 return 0;
1589 }
1590
1591 /* Update packet is received. */
1592 static int
1593 bgp_fsm_update (struct peer *peer)
1594 {
1595 BGP_TIMER_OFF (peer->t_holdtime);
1596 return 0;
1597 }
1598
1599 /* This is empty event. */
1600 static int
1601 bgp_ignore (struct peer *peer)
1602 {
1603 zlog_err ("%s [FSM] Ignoring event %s in state %s, prior events %s, %s, fd %d",
1604 peer->host, bgp_event_str[peer->cur_event],
1605 LOOKUP (bgp_status_msg, peer->status),
1606 bgp_event_str[peer->last_event],
1607 bgp_event_str[peer->last_major_event], peer->fd);
1608 return 0;
1609 }
1610
1611 /* This is to handle unexpected events.. */
1612 static int
1613 bgp_fsm_exeption (struct peer *peer)
1614 {
1615 zlog_err ("%s [FSM] Unexpected event %s in state %s, prior events %s, %s, fd %d",
1616 peer->host, bgp_event_str[peer->cur_event],
1617 LOOKUP (bgp_status_msg, peer->status),
1618 bgp_event_str[peer->last_event],
1619 bgp_event_str[peer->last_major_event], peer->fd);
1620 return(bgp_stop (peer));
1621 }
1622
1623 void
1624 bgp_fsm_nht_update(struct peer *peer, int valid)
1625 {
1626 if (!peer)
1627 return;
1628
1629 switch (peer->status)
1630 {
1631 case Idle:
1632 if (valid)
1633 BGP_EVENT_ADD(peer, BGP_Start);
1634 break;
1635 case Connect:
1636 if (!valid)
1637 {
1638 BGP_TIMER_OFF(peer->t_connect);
1639 BGP_EVENT_ADD(peer, TCP_fatal_error);
1640 }
1641 break;
1642 case Active:
1643 if (valid)
1644 {
1645 BGP_TIMER_OFF(peer->t_connect);
1646 BGP_EVENT_ADD(peer, ConnectRetry_timer_expired);
1647 }
1648 break;
1649 case OpenSent:
1650 case OpenConfirm:
1651 case Established:
1652 if (!valid && (peer->gtsm_hops == 1))
1653 BGP_EVENT_ADD(peer, TCP_fatal_error);
1654 case Clearing:
1655 case Deleted:
1656 default:
1657 break;
1658 }
1659 }
1660
1661
1662 /* Finite State Machine structure */
1663 static const struct {
1664 int (*func) (struct peer *);
1665 int next_state;
1666 } FSM [BGP_STATUS_MAX - 1][BGP_EVENTS_MAX - 1] =
1667 {
1668 {
1669 /* Idle state: In Idle state, all events other than BGP_Start is
1670 ignored. With BGP_Start event, finite state machine calls
1671 bgp_start(). */
1672 {bgp_start, Connect}, /* BGP_Start */
1673 {bgp_stop, Idle}, /* BGP_Stop */
1674 {bgp_stop, Idle}, /* TCP_connection_open */
1675 {bgp_stop, Idle}, /* TCP_connection_closed */
1676 {bgp_ignore, Idle}, /* TCP_connection_open_failed */
1677 {bgp_stop, Idle}, /* TCP_fatal_error */
1678 {bgp_ignore, Idle}, /* ConnectRetry_timer_expired */
1679 {bgp_ignore, Idle}, /* Hold_Timer_expired */
1680 {bgp_ignore, Idle}, /* KeepAlive_timer_expired */
1681 {bgp_ignore, Idle}, /* Receive_OPEN_message */
1682 {bgp_ignore, Idle}, /* Receive_KEEPALIVE_message */
1683 {bgp_ignore, Idle}, /* Receive_UPDATE_message */
1684 {bgp_ignore, Idle}, /* Receive_NOTIFICATION_message */
1685 {bgp_ignore, Idle}, /* Clearing_Completed */
1686 },
1687 {
1688 /* Connect */
1689 {bgp_ignore, Connect}, /* BGP_Start */
1690 {bgp_stop, Idle}, /* BGP_Stop */
1691 {bgp_connect_success, OpenSent}, /* TCP_connection_open */
1692 {bgp_stop, Idle}, /* TCP_connection_closed */
1693 {bgp_connect_fail, Active}, /* TCP_connection_open_failed */
1694 {bgp_connect_fail, Idle}, /* TCP_fatal_error */
1695 {bgp_reconnect, Connect}, /* ConnectRetry_timer_expired */
1696 {bgp_fsm_exeption, Idle}, /* Hold_Timer_expired */
1697 {bgp_fsm_exeption, Idle}, /* KeepAlive_timer_expired */
1698 {bgp_fsm_exeption, Idle}, /* Receive_OPEN_message */
1699 {bgp_fsm_exeption, Idle}, /* Receive_KEEPALIVE_message */
1700 {bgp_fsm_exeption, Idle}, /* Receive_UPDATE_message */
1701 {bgp_stop, Idle}, /* Receive_NOTIFICATION_message */
1702 {bgp_fsm_exeption, Idle}, /* Clearing_Completed */
1703 },
1704 {
1705 /* Active, */
1706 {bgp_ignore, Active}, /* BGP_Start */
1707 {bgp_stop, Idle}, /* BGP_Stop */
1708 {bgp_connect_success, OpenSent}, /* TCP_connection_open */
1709 {bgp_stop, Idle}, /* TCP_connection_closed */
1710 {bgp_ignore, Active}, /* TCP_connection_open_failed */
1711 {bgp_fsm_exeption, Idle}, /* TCP_fatal_error */
1712 {bgp_start, Connect}, /* ConnectRetry_timer_expired */
1713 {bgp_fsm_exeption, Idle}, /* Hold_Timer_expired */
1714 {bgp_fsm_exeption, Idle}, /* KeepAlive_timer_expired */
1715 {bgp_fsm_exeption, Idle}, /* Receive_OPEN_message */
1716 {bgp_fsm_exeption, Idle}, /* Receive_KEEPALIVE_message */
1717 {bgp_fsm_exeption, Idle}, /* Receive_UPDATE_message */
1718 {bgp_fsm_exeption, Idle}, /* Receive_NOTIFICATION_message */
1719 {bgp_fsm_exeption, Idle}, /* Clearing_Completed */
1720 },
1721 {
1722 /* OpenSent, */
1723 {bgp_ignore, OpenSent}, /* BGP_Start */
1724 {bgp_stop, Idle}, /* BGP_Stop */
1725 {bgp_stop, Active}, /* TCP_connection_open */
1726 {bgp_stop, Active}, /* TCP_connection_closed */
1727 {bgp_stop, Active}, /* TCP_connection_open_failed */
1728 {bgp_stop, Active}, /* TCP_fatal_error */
1729 {bgp_fsm_exeption, Idle}, /* ConnectRetry_timer_expired */
1730 {bgp_fsm_holdtime_expire, Idle}, /* Hold_Timer_expired */
1731 {bgp_fsm_exeption, Idle}, /* KeepAlive_timer_expired */
1732 {bgp_fsm_open, OpenConfirm}, /* Receive_OPEN_message */
1733 {bgp_fsm_event_error, Idle}, /* Receive_KEEPALIVE_message */
1734 {bgp_fsm_event_error, Idle}, /* Receive_UPDATE_message */
1735 {bgp_stop_with_error, Idle}, /* Receive_NOTIFICATION_message */
1736 {bgp_fsm_exeption, Idle}, /* Clearing_Completed */
1737 },
1738 {
1739 /* OpenConfirm, */
1740 {bgp_ignore, OpenConfirm}, /* BGP_Start */
1741 {bgp_stop, Idle}, /* BGP_Stop */
1742 {bgp_stop, Idle}, /* TCP_connection_open */
1743 {bgp_stop, Idle}, /* TCP_connection_closed */
1744 {bgp_stop, Idle}, /* TCP_connection_open_failed */
1745 {bgp_stop, Idle}, /* TCP_fatal_error */
1746 {bgp_fsm_exeption, Idle}, /* ConnectRetry_timer_expired */
1747 {bgp_fsm_holdtime_expire, Idle}, /* Hold_Timer_expired */
1748 {bgp_ignore, OpenConfirm}, /* KeepAlive_timer_expired */
1749 {bgp_fsm_exeption, Idle}, /* Receive_OPEN_message */
1750 {bgp_establish, Established}, /* Receive_KEEPALIVE_message */
1751 {bgp_fsm_exeption, Idle}, /* Receive_UPDATE_message */
1752 {bgp_stop_with_error, Idle}, /* Receive_NOTIFICATION_message */
1753 {bgp_fsm_exeption, Idle}, /* Clearing_Completed */
1754 },
1755 {
1756 /* Established, */
1757 {bgp_ignore, Established}, /* BGP_Start */
1758 {bgp_stop, Clearing}, /* BGP_Stop */
1759 {bgp_stop, Clearing}, /* TCP_connection_open */
1760 {bgp_stop, Clearing}, /* TCP_connection_closed */
1761 {bgp_stop, Clearing}, /* TCP_connection_open_failed */
1762 {bgp_stop, Clearing}, /* TCP_fatal_error */
1763 {bgp_stop, Clearing}, /* ConnectRetry_timer_expired */
1764 {bgp_fsm_holdtime_expire, Clearing}, /* Hold_Timer_expired */
1765 {bgp_fsm_keepalive_expire, Established}, /* KeepAlive_timer_expired */
1766 {bgp_stop, Clearing}, /* Receive_OPEN_message */
1767 {bgp_fsm_keepalive, Established}, /* Receive_KEEPALIVE_message */
1768 {bgp_fsm_update, Established}, /* Receive_UPDATE_message */
1769 {bgp_stop_with_error, Clearing}, /* Receive_NOTIFICATION_message */
1770 {bgp_fsm_exeption, Idle}, /* Clearing_Completed */
1771 },
1772 {
1773 /* Clearing, */
1774 {bgp_ignore, Clearing}, /* BGP_Start */
1775 {bgp_stop, Clearing}, /* BGP_Stop */
1776 {bgp_stop, Clearing}, /* TCP_connection_open */
1777 {bgp_stop, Clearing}, /* TCP_connection_closed */
1778 {bgp_stop, Clearing}, /* TCP_connection_open_failed */
1779 {bgp_stop, Clearing}, /* TCP_fatal_error */
1780 {bgp_stop, Clearing}, /* ConnectRetry_timer_expired */
1781 {bgp_stop, Clearing}, /* Hold_Timer_expired */
1782 {bgp_stop, Clearing}, /* KeepAlive_timer_expired */
1783 {bgp_stop, Clearing}, /* Receive_OPEN_message */
1784 {bgp_stop, Clearing}, /* Receive_KEEPALIVE_message */
1785 {bgp_stop, Clearing}, /* Receive_UPDATE_message */
1786 {bgp_stop, Clearing}, /* Receive_NOTIFICATION_message */
1787 {bgp_clearing_completed, Idle}, /* Clearing_Completed */
1788 },
1789 {
1790 /* Deleted, */
1791 {bgp_ignore, Deleted}, /* BGP_Start */
1792 {bgp_ignore, Deleted}, /* BGP_Stop */
1793 {bgp_ignore, Deleted}, /* TCP_connection_open */
1794 {bgp_ignore, Deleted}, /* TCP_connection_closed */
1795 {bgp_ignore, Deleted}, /* TCP_connection_open_failed */
1796 {bgp_ignore, Deleted}, /* TCP_fatal_error */
1797 {bgp_ignore, Deleted}, /* ConnectRetry_timer_expired */
1798 {bgp_ignore, Deleted}, /* Hold_Timer_expired */
1799 {bgp_ignore, Deleted}, /* KeepAlive_timer_expired */
1800 {bgp_ignore, Deleted}, /* Receive_OPEN_message */
1801 {bgp_ignore, Deleted}, /* Receive_KEEPALIVE_message */
1802 {bgp_ignore, Deleted}, /* Receive_UPDATE_message */
1803 {bgp_ignore, Deleted}, /* Receive_NOTIFICATION_message */
1804 {bgp_ignore, Deleted}, /* Clearing_Completed */
1805 },
1806 };
1807
1808 /* Execute event process. */
1809 int
1810 bgp_event (struct thread *thread)
1811 {
1812 int event;
1813 struct peer *peer;
1814 int ret;
1815
1816 peer = THREAD_ARG (thread);
1817 event = THREAD_VAL (thread);
1818
1819 ret = bgp_event_update(peer, event);
1820
1821 return (ret);
1822 }
1823
1824 int
1825 bgp_event_update (struct peer *peer, int event)
1826 {
1827 int next;
1828 int ret = 0;
1829 struct peer *other;
1830 int passive_conn = 0;
1831 int dyn_nbr;
1832
1833 other = peer->doppelganger;
1834 passive_conn = (CHECK_FLAG(peer->sflags, PEER_STATUS_ACCEPT_PEER)) ? 1 : 0;
1835 dyn_nbr = peer_dynamic_neighbor(peer);
1836
1837 /* Logging this event. */
1838 next = FSM [peer->status -1][event - 1].next_state;
1839
1840 if (bgp_debug_neighbor_events(peer) && peer->status != next)
1841 zlog_debug ("%s [FSM] %s (%s->%s), fd %d", peer->host,
1842 bgp_event_str[event],
1843 LOOKUP (bgp_status_msg, peer->status),
1844 LOOKUP (bgp_status_msg, next), peer->fd);
1845
1846 peer->last_event = peer->cur_event;
1847 peer->cur_event = event;
1848
1849 /* Call function. */
1850 if (FSM [peer->status -1][event - 1].func)
1851 ret = (*(FSM [peer->status - 1][event - 1].func))(peer);
1852
1853 /* When function do not want proceed next job return -1. */
1854 if (ret >= 0)
1855 {
1856 if (ret == 1 && next == Established)
1857 {
1858 /* The case when doppelganger swap accurred in bgp_establish.
1859 Update the peer pointer accordingly */
1860 peer = other;
1861 }
1862
1863 /* If status is changed. */
1864 if (next != peer->status)
1865 bgp_fsm_change_status (peer, next);
1866
1867 /* Make sure timer is set. */
1868 bgp_timer_set (peer);
1869
1870 }
1871 else if (!dyn_nbr && !passive_conn && peer->bgp)
1872 {
1873 /* If we got a return value of -1, that means there was an error, restart
1874 * the FSM. If the peer structure was deleted
1875 */
1876 zlog_err ("%s [FSM] Failure handling event %s in state %s, "
1877 "prior events %s, %s, fd %d",
1878 peer->host, bgp_event_str[peer->cur_event],
1879 LOOKUP (bgp_status_msg, peer->status),
1880 bgp_event_str[peer->last_event],
1881 bgp_event_str[peer->last_major_event], peer->fd);
1882 bgp_stop (peer);
1883 bgp_fsm_change_status(peer, Idle);
1884 bgp_timer_set(peer);
1885 }
1886 return ret;
1887 }