blob: cd899841edff35426a6a7357719f0c7b7b246def [file] [log] [blame]
paul718e3742002-12-13 20:15:29 +00001/* BGP nexthop scan
2 Copyright (C) 2000 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 "command.h"
24#include "thread.h"
25#include "prefix.h"
26#include "zclient.h"
27#include "stream.h"
28#include "network.h"
29#include "log.h"
30#include "memory.h"
31
32#include "bgpd/bgpd.h"
33#include "bgpd/bgp_table.h"
34#include "bgpd/bgp_route.h"
35#include "bgpd/bgp_attr.h"
36#include "bgpd/bgp_nexthop.h"
37#include "bgpd/bgp_debug.h"
38#include "bgpd/bgp_damp.h"
39#include "zebra/rib.h"
40#include "zebra/zserv.h" /* For ZEBRA_SERV_PATH. */
41
42struct bgp_nexthop_cache *zlookup_query (struct in_addr);
43#ifdef HAVE_IPV6
44struct bgp_nexthop_cache *zlookup_query_ipv6 (struct in6_addr *);
45#endif /* HAVE_IPV6 */
46
47/* Only one BGP scan thread are activated at the same time. */
48struct thread *bgp_scan_thread = NULL;
49
50/* BGP import thread */
51struct thread *bgp_import_thread = NULL;
52
53/* BGP scan interval. */
54int bgp_scan_interval;
55
56/* BGP import interval. */
57int bgp_import_interval;
58
59/* Route table for next-hop lookup cache. */
paul59320202004-11-09 01:54:03 +000060struct bgp_table *bgp_nexthop_cache_table[AFI_MAX];
61struct bgp_table *cache1_table[AFI_MAX];
62struct bgp_table *cache2_table[AFI_MAX];
paul718e3742002-12-13 20:15:29 +000063
64/* Route table for connected route. */
paul59320202004-11-09 01:54:03 +000065struct bgp_table *bgp_connected_table[AFI_MAX];
paul718e3742002-12-13 20:15:29 +000066
67/* BGP nexthop lookup query client. */
68static struct zclient *zlookup = NULL;
69
70/* BGP process function. */
71int bgp_process (struct bgp *, struct bgp_node *, afi_t, safi_t);
72
73/* Add nexthop to the end of the list. */
74void
75bnc_nexthop_add (struct bgp_nexthop_cache *bnc, struct nexthop *nexthop)
76{
77 struct nexthop *last;
78
79 for (last = bnc->nexthop; last && last->next; last = last->next)
80 ;
81 if (last)
82 last->next = nexthop;
83 else
84 bnc->nexthop = nexthop;
85 nexthop->prev = last;
86}
87
88void
89bnc_nexthop_free (struct bgp_nexthop_cache *bnc)
90{
91 struct nexthop *nexthop;
92 struct nexthop *next = NULL;
93
94 for (nexthop = bnc->nexthop; nexthop; nexthop = next)
95 {
96 next = nexthop->next;
97 XFREE (MTYPE_NEXTHOP, nexthop);
98 }
99}
100
101struct bgp_nexthop_cache *
102bnc_new ()
103{
104 struct bgp_nexthop_cache *new;
105
106 new = XMALLOC (MTYPE_BGP_NEXTHOP_CACHE, sizeof (struct bgp_nexthop_cache));
107 memset (new, 0, sizeof (struct bgp_nexthop_cache));
108 return new;
109}
110
111void
112bnc_free (struct bgp_nexthop_cache *bnc)
113{
114 bnc_nexthop_free (bnc);
115 XFREE (MTYPE_BGP_NEXTHOP_CACHE, bnc);
116}
117
118int
119bgp_nexthop_same (struct nexthop *next1, struct nexthop *next2)
120{
121 if (next1->type != next2->type)
122 return 0;
123
124 switch (next1->type)
125 {
126 case ZEBRA_NEXTHOP_IPV4:
127 if (! IPV4_ADDR_SAME (&next1->gate.ipv4, &next2->gate.ipv4))
128 return 0;
129 break;
130 case ZEBRA_NEXTHOP_IFINDEX:
131 case ZEBRA_NEXTHOP_IFNAME:
132 if (next1->ifindex != next2->ifindex)
133 return 0;
134 break;
135#ifdef HAVE_IPV6
136 case ZEBRA_NEXTHOP_IPV6:
137 if (! IPV6_ADDR_SAME (&next1->gate.ipv6, &next2->gate.ipv6))
138 return 0;
139 break;
140 case ZEBRA_NEXTHOP_IPV6_IFINDEX:
141 case ZEBRA_NEXTHOP_IPV6_IFNAME:
142 if (! IPV6_ADDR_SAME (&next1->gate.ipv6, &next2->gate.ipv6))
143 return 0;
144 if (next1->ifindex != next2->ifindex)
145 return 0;
146 break;
147#endif /* HAVE_IPV6 */
hassofa2b17e2004-03-04 17:45:00 +0000148 default:
149 /* do nothing */
150 break;
paul718e3742002-12-13 20:15:29 +0000151 }
152 return 1;
153}
154
155int
156bgp_nexthop_cache_changed (struct bgp_nexthop_cache *bnc1,
157 struct bgp_nexthop_cache *bnc2)
158{
159 int i;
160 struct nexthop *next1, *next2;
161
162 if (bnc1->nexthop_num != bnc2->nexthop_num)
163 return 1;
164
165 next1 = bnc1->nexthop;
166 next2 = bnc2->nexthop;
167
168 for (i = 0; i < bnc1->nexthop_num; i++)
169 {
170 if (! bgp_nexthop_same (next1, next2))
171 return 1;
172
173 next1 = next1->next;
174 next2 = next2->next;
175 }
176 return 0;
177}
178
179/* If nexthop exists on connected network return 1. */
180int
181bgp_nexthop_check_ebgp (afi_t afi, struct attr *attr)
182{
183 struct bgp_node *rn;
184
185 /* If zebra is not enabled return */
186 if (zlookup->sock < 0)
187 return 1;
188
189 /* Lookup the address is onlink or not. */
190 if (afi == AFI_IP)
191 {
paul59320202004-11-09 01:54:03 +0000192 rn = bgp_node_match_ipv4 (bgp_connected_table[AFI_IP], &attr->nexthop);
paul718e3742002-12-13 20:15:29 +0000193 if (rn)
194 {
195 bgp_unlock_node (rn);
196 return 1;
197 }
198 }
199#ifdef HAVE_IPV6
200 else if (afi == AFI_IP6)
201 {
202 if (attr->mp_nexthop_len == 32)
203 return 1;
204 else if (attr->mp_nexthop_len == 16)
205 {
206 if (IN6_IS_ADDR_LINKLOCAL (&attr->mp_nexthop_global))
207 return 1;
208
paul59320202004-11-09 01:54:03 +0000209 rn = bgp_node_match_ipv6 (bgp_connected_table[AFI_IP6],
paul718e3742002-12-13 20:15:29 +0000210 &attr->mp_nexthop_global);
211 if (rn)
212 {
213 bgp_unlock_node (rn);
214 return 1;
215 }
216 }
217 }
218#endif /* HAVE_IPV6 */
219 return 0;
220}
221
222#ifdef HAVE_IPV6
223/* Check specified next-hop is reachable or not. */
224int
225bgp_nexthop_lookup_ipv6 (struct peer *peer, struct bgp_info *ri, int *changed,
226 int *metricchanged)
227{
228 struct bgp_node *rn;
229 struct prefix p;
230 struct bgp_nexthop_cache *bnc;
231 struct attr *attr;
232
233 /* If lookup is not enabled, return valid. */
234 if (zlookup->sock < 0)
235 {
236 ri->igpmetric = 0;
237 return 1;
238 }
239
240 /* Only check IPv6 global address only nexthop. */
241 attr = ri->attr;
242
243 if (attr->mp_nexthop_len != 16
244 || IN6_IS_ADDR_LINKLOCAL (&attr->mp_nexthop_global))
245 return 1;
246
247 memset (&p, 0, sizeof (struct prefix));
248 p.family = AF_INET6;
249 p.prefixlen = IPV6_MAX_BITLEN;
250 p.u.prefix6 = attr->mp_nexthop_global;
251
252 /* IBGP or ebgp-multihop */
paul59320202004-11-09 01:54:03 +0000253 rn = bgp_node_get (bgp_nexthop_cache_table[AFI_IP6], &p);
paul718e3742002-12-13 20:15:29 +0000254
255 if (rn->info)
256 {
257 bnc = rn->info;
258 bgp_unlock_node (rn);
259 }
260 else
261 {
262 bnc = zlookup_query_ipv6 (&attr->mp_nexthop_global);
263 if (bnc)
264 {
265 struct bgp_table *old;
266 struct bgp_node *oldrn;
267 struct bgp_nexthop_cache *oldbnc;
268
269 if (changed)
270 {
paul59320202004-11-09 01:54:03 +0000271 if (bgp_nexthop_cache_table[AFI_IP6] == cache1_table[AFI_IP6])
272 old = cache2_table[AFI_IP6];
paul718e3742002-12-13 20:15:29 +0000273 else
paul59320202004-11-09 01:54:03 +0000274 old = cache1_table[AFI_IP6];
paul718e3742002-12-13 20:15:29 +0000275
276 oldrn = bgp_node_lookup (old, &p);
277 if (oldrn)
278 {
279 oldbnc = oldrn->info;
280
281 bnc->changed = bgp_nexthop_cache_changed (bnc, oldbnc);
282
283 if (bnc->metric != oldbnc->metric)
284 bnc->metricchanged = 1;
285 }
286 }
287 }
288 else
289 {
290 bnc = bnc_new ();
291 bnc->valid = 0;
292 }
293 rn->info = bnc;
294 }
295
296 if (changed)
297 *changed = bnc->changed;
298
299 if (metricchanged)
300 *metricchanged = bnc->metricchanged;
301
302 if (bnc->valid)
303 ri->igpmetric = bnc->metric;
304 else
305 ri->igpmetric = 0;
306
307 return bnc->valid;
308}
309#endif /* HAVE_IPV6 */
310
311/* Check specified next-hop is reachable or not. */
312int
313bgp_nexthop_lookup (afi_t afi, struct peer *peer, struct bgp_info *ri,
314 int *changed, int *metricchanged)
315{
316 struct bgp_node *rn;
317 struct prefix p;
318 struct bgp_nexthop_cache *bnc;
319 struct in_addr addr;
320
321 /* If lookup is not enabled, return valid. */
322 if (zlookup->sock < 0)
323 {
324 ri->igpmetric = 0;
325 return 1;
326 }
327
328#ifdef HAVE_IPV6
329 if (afi == AFI_IP6)
330 return bgp_nexthop_lookup_ipv6 (peer, ri, changed, metricchanged);
331#endif /* HAVE_IPV6 */
332
333 addr = ri->attr->nexthop;
334
335 memset (&p, 0, sizeof (struct prefix));
336 p.family = AF_INET;
337 p.prefixlen = IPV4_MAX_BITLEN;
338 p.u.prefix4 = addr;
339
340 /* IBGP or ebgp-multihop */
paul59320202004-11-09 01:54:03 +0000341 rn = bgp_node_get (bgp_nexthop_cache_table[AFI_IP], &p);
paul718e3742002-12-13 20:15:29 +0000342
343 if (rn->info)
344 {
345 bnc = rn->info;
346 bgp_unlock_node (rn);
347 }
348 else
349 {
350 bnc = zlookup_query (addr);
351 if (bnc)
352 {
353 struct bgp_table *old;
354 struct bgp_node *oldrn;
355 struct bgp_nexthop_cache *oldbnc;
356
357 if (changed)
358 {
paul59320202004-11-09 01:54:03 +0000359 if (bgp_nexthop_cache_table[AFI_IP] == cache1_table[AFI_IP])
360 old = cache2_table[AFI_IP];
paul718e3742002-12-13 20:15:29 +0000361 else
paul59320202004-11-09 01:54:03 +0000362 old = cache1_table[AFI_IP];
paul718e3742002-12-13 20:15:29 +0000363
364 oldrn = bgp_node_lookup (old, &p);
365 if (oldrn)
366 {
367 oldbnc = oldrn->info;
368
369 bnc->changed = bgp_nexthop_cache_changed (bnc, oldbnc);
370
371 if (bnc->metric != oldbnc->metric)
372 bnc->metricchanged = 1;
373 }
374 }
375 }
376 else
377 {
378 bnc = bnc_new ();
379 bnc->valid = 0;
380 }
381 rn->info = bnc;
382 }
383
384 if (changed)
385 *changed = bnc->changed;
386
387 if (metricchanged)
388 *metricchanged = bnc->metricchanged;
389
390 if (bnc->valid)
391 ri->igpmetric = bnc->metric;
392 else
393 ri->igpmetric = 0;
394
395 return bnc->valid;
396}
397
398/* Reset and free all BGP nexthop cache. */
399void
400bgp_nexthop_cache_reset (struct bgp_table *table)
401{
402 struct bgp_node *rn;
403 struct bgp_nexthop_cache *bnc;
404
405 for (rn = bgp_table_top (table); rn; rn = bgp_route_next (rn))
406 if ((bnc = rn->info) != NULL)
407 {
408 bnc_free (bnc);
409 rn->info = NULL;
410 bgp_unlock_node (rn);
411 }
412}
413
414void
paul59320202004-11-09 01:54:03 +0000415bgp_scan (afi_t afi, safi_t safi)
paul718e3742002-12-13 20:15:29 +0000416{
417 struct bgp_node *rn;
418 struct bgp *bgp;
419 struct bgp_info *bi;
420 struct bgp_info *next;
421 struct peer *peer;
422 struct listnode *nn;
423 int valid;
424 int current;
425 int changed;
426 int metricchanged;
427
428 /* Change cache. */
paul59320202004-11-09 01:54:03 +0000429 if (bgp_nexthop_cache_table[afi] == cache1_table[afi])
430 bgp_nexthop_cache_table[afi] = cache2_table[afi];
paul718e3742002-12-13 20:15:29 +0000431 else
paul59320202004-11-09 01:54:03 +0000432 bgp_nexthop_cache_table[afi] = cache1_table[afi];
paul718e3742002-12-13 20:15:29 +0000433
434 /* Get default bgp. */
435 bgp = bgp_get_default ();
436 if (bgp == NULL)
437 return;
438
439 /* Maximum prefix check */
440 LIST_LOOP (bgp->peer, peer, nn)
441 {
442 if (peer->status != Established)
443 continue;
444
paul59320202004-11-09 01:54:03 +0000445 if (peer->afc[afi][SAFI_UNICAST])
446 bgp_maximum_prefix_overflow (peer, afi, SAFI_UNICAST, 1);
447 if (peer->afc[afi][SAFI_MULTICAST])
448 bgp_maximum_prefix_overflow (peer, afi, SAFI_MULTICAST, 1);
449 if (peer->afc[afi][SAFI_MPLS_VPN])
450 bgp_maximum_prefix_overflow (peer, afi, SAFI_MPLS_VPN, 1);
paul718e3742002-12-13 20:15:29 +0000451 }
452
paul59320202004-11-09 01:54:03 +0000453 for (rn = bgp_table_top (bgp->rib[afi][SAFI_UNICAST]); rn;
paul718e3742002-12-13 20:15:29 +0000454 rn = bgp_route_next (rn))
455 {
456 for (bi = rn->info; bi; bi = next)
457 {
458 next = bi->next;
459
460 if (bi->type == ZEBRA_ROUTE_BGP && bi->sub_type == BGP_ROUTE_NORMAL)
461 {
462 changed = 0;
463 metricchanged = 0;
464
465 if (peer_sort (bi->peer) == BGP_PEER_EBGP && bi->peer->ttl == 1)
paul59320202004-11-09 01:54:03 +0000466 valid = bgp_nexthop_check_ebgp (afi, bi->attr);
paul718e3742002-12-13 20:15:29 +0000467 else
paul59320202004-11-09 01:54:03 +0000468 valid = bgp_nexthop_lookup (afi, bi->peer, bi,
paul718e3742002-12-13 20:15:29 +0000469 &changed, &metricchanged);
470
471 current = CHECK_FLAG (bi->flags, BGP_INFO_VALID) ? 1 : 0;
472
473 if (changed)
474 SET_FLAG (bi->flags, BGP_INFO_IGP_CHANGED);
475 else
476 UNSET_FLAG (bi->flags, BGP_INFO_IGP_CHANGED);
477
478 if (valid != current)
479 {
480 if (CHECK_FLAG (bi->flags, BGP_INFO_VALID))
481 {
482 bgp_aggregate_decrement (bgp, &rn->p, bi,
paul59320202004-11-09 01:54:03 +0000483 afi, SAFI_UNICAST);
paul718e3742002-12-13 20:15:29 +0000484 UNSET_FLAG (bi->flags, BGP_INFO_VALID);
485 }
486 else
487 {
488 SET_FLAG (bi->flags, BGP_INFO_VALID);
489 bgp_aggregate_increment (bgp, &rn->p, bi,
paul59320202004-11-09 01:54:03 +0000490 afi, SAFI_UNICAST);
paul718e3742002-12-13 20:15:29 +0000491 }
492 }
493
paul59320202004-11-09 01:54:03 +0000494 if (CHECK_FLAG (bgp->af_flags[afi][SAFI_UNICAST],
paul718e3742002-12-13 20:15:29 +0000495 BGP_CONFIG_DAMPENING)
496 && bi->damp_info )
paul59320202004-11-09 01:54:03 +0000497 if (bgp_damp_scan (bi, afi, SAFI_UNICAST))
paul718e3742002-12-13 20:15:29 +0000498 bgp_aggregate_increment (bgp, &rn->p, bi,
paul59320202004-11-09 01:54:03 +0000499 afi, SAFI_UNICAST);
paul718e3742002-12-13 20:15:29 +0000500 }
501 }
paul59320202004-11-09 01:54:03 +0000502 bgp_process (bgp, rn, afi, SAFI_UNICAST);
paul718e3742002-12-13 20:15:29 +0000503 }
504
505 /* Flash old cache. */
paul59320202004-11-09 01:54:03 +0000506 if (bgp_nexthop_cache_table[afi] == cache1_table[afi])
507 bgp_nexthop_cache_reset (cache2_table[afi]);
paul718e3742002-12-13 20:15:29 +0000508 else
paul59320202004-11-09 01:54:03 +0000509 bgp_nexthop_cache_reset (cache1_table[afi]);
paul718e3742002-12-13 20:15:29 +0000510}
511
paul718e3742002-12-13 20:15:29 +0000512/* BGP scan thread. This thread check nexthop reachability. */
513int
paul59320202004-11-09 01:54:03 +0000514bgp_scan_timer (struct thread *t)
paul718e3742002-12-13 20:15:29 +0000515{
516 bgp_scan_thread =
paul59320202004-11-09 01:54:03 +0000517 thread_add_timer (master, bgp_scan_timer, NULL, bgp_scan_interval);
paul718e3742002-12-13 20:15:29 +0000518
519 if (BGP_DEBUG (normal, NORMAL))
520 zlog_info ("Performing BGP general scanning");
521
paul59320202004-11-09 01:54:03 +0000522 bgp_scan (AFI_IP, SAFI_UNICAST);
paul718e3742002-12-13 20:15:29 +0000523
524#ifdef HAVE_IPV6
paul59320202004-11-09 01:54:03 +0000525 bgp_scan (AFI_IP6, SAFI_UNICAST);
paul718e3742002-12-13 20:15:29 +0000526#endif /* HAVE_IPV6 */
527
528 return 0;
529}
530
paul59320202004-11-09 01:54:03 +0000531struct bgp_connected_ref
paul718e3742002-12-13 20:15:29 +0000532{
533 unsigned int refcnt;
534};
535
536void
537bgp_connected_add (struct connected *ifc)
538{
539 struct prefix p;
540 struct prefix *addr;
541 struct prefix *dest;
542 struct interface *ifp;
543 struct bgp_node *rn;
paul59320202004-11-09 01:54:03 +0000544 struct bgp_connected_ref *bc;
paul718e3742002-12-13 20:15:29 +0000545
546 ifp = ifc->ifp;
547
548 if (! ifp)
549 return;
550
551 if (if_is_loopback (ifp))
552 return;
553
554 addr = ifc->address;
555 dest = ifc->destination;
556
557 if (addr->family == AF_INET)
558 {
559 memset (&p, 0, sizeof (struct prefix));
560 p.family = AF_INET;
561 p.prefixlen = addr->prefixlen;
562
hasso3fb9cd62004-10-19 19:44:43 +0000563 if (CONNECTED_POINTOPOINT_HOST(ifc))
paul718e3742002-12-13 20:15:29 +0000564 p.u.prefix4 = dest->u.prefix4;
565 else
566 p.u.prefix4 = addr->u.prefix4;
567
568 apply_mask_ipv4 ((struct prefix_ipv4 *) &p);
569
570 if (prefix_ipv4_any ((struct prefix_ipv4 *) &p))
571 return;
572
paul59320202004-11-09 01:54:03 +0000573 rn = bgp_node_get (bgp_connected_table[AFI_IP], (struct prefix *) &p);
paul718e3742002-12-13 20:15:29 +0000574 if (rn->info)
575 {
576 bc = rn->info;
577 bc->refcnt++;
578 }
579 else
580 {
paul59320202004-11-09 01:54:03 +0000581 bc = XMALLOC (0, sizeof (struct bgp_connected_ref));
582 memset (bc, 0, sizeof (struct bgp_connected_ref));
paul718e3742002-12-13 20:15:29 +0000583 bc->refcnt = 1;
584 rn->info = bc;
585 }
586 }
587#ifdef HAVE_IPV6
588 if (addr->family == AF_INET6)
589 {
590 memset (&p, 0, sizeof (struct prefix));
591 p.family = AF_INET6;
592 p.prefixlen = addr->prefixlen;
593
hasso3fb9cd62004-10-19 19:44:43 +0000594 if (if_is_pointopoint (ifp) && dest)
paul718e3742002-12-13 20:15:29 +0000595 p.u.prefix6 = dest->u.prefix6;
596 else
597 p.u.prefix6 = addr->u.prefix6;
598
599 apply_mask_ipv6 ((struct prefix_ipv6 *) &p);
600
601 if (IN6_IS_ADDR_UNSPECIFIED (&p.u.prefix6))
602 return;
603
604 if (IN6_IS_ADDR_LINKLOCAL (&p.u.prefix6))
605 return;
606
paul59320202004-11-09 01:54:03 +0000607 rn = bgp_node_get (bgp_connected_table[AFI_IP6], (struct prefix *) &p);
paul718e3742002-12-13 20:15:29 +0000608 if (rn->info)
609 {
610 bc = rn->info;
611 bc->refcnt++;
612 }
613 else
614 {
paul59320202004-11-09 01:54:03 +0000615 bc = XMALLOC (0, sizeof (struct bgp_connected_ref));
616 memset (bc, 0, sizeof (struct bgp_connected_ref));
paul718e3742002-12-13 20:15:29 +0000617 bc->refcnt = 1;
618 rn->info = bc;
619 }
620 }
621#endif /* HAVE_IPV6 */
622}
623
624void
625bgp_connected_delete (struct connected *ifc)
626{
627 struct prefix p;
628 struct prefix *addr;
629 struct prefix *dest;
630 struct interface *ifp;
631 struct bgp_node *rn;
paul59320202004-11-09 01:54:03 +0000632 struct bgp_connected_ref *bc;
paul718e3742002-12-13 20:15:29 +0000633
634 ifp = ifc->ifp;
635
636 if (if_is_loopback (ifp))
637 return;
638
639 addr = ifc->address;
640 dest = ifc->destination;
641
642 if (addr->family == AF_INET)
643 {
644 memset (&p, 0, sizeof (struct prefix));
645 p.family = AF_INET;
646 p.prefixlen = addr->prefixlen;
647
hasso3fb9cd62004-10-19 19:44:43 +0000648 if (CONNECTED_POINTOPOINT_HOST(ifc))
paul718e3742002-12-13 20:15:29 +0000649 p.u.prefix4 = dest->u.prefix4;
650 else
651 p.u.prefix4 = addr->u.prefix4;
652
653 apply_mask_ipv4 ((struct prefix_ipv4 *) &p);
654
655 if (prefix_ipv4_any ((struct prefix_ipv4 *) &p))
656 return;
657
paul59320202004-11-09 01:54:03 +0000658 rn = bgp_node_lookup (bgp_connected_table[AFI_IP], &p);
paul718e3742002-12-13 20:15:29 +0000659 if (! rn)
660 return;
661
662 bc = rn->info;
663 bc->refcnt--;
664 if (bc->refcnt == 0)
665 {
666 XFREE (0, bc);
667 rn->info = NULL;
668 }
669 bgp_unlock_node (rn);
670 bgp_unlock_node (rn);
671 }
672#ifdef HAVE_IPV6
673 else if (addr->family == AF_INET6)
674 {
675 memset (&p, 0, sizeof (struct prefix));
676 p.family = AF_INET6;
677 p.prefixlen = addr->prefixlen;
678
hasso3fb9cd62004-10-19 19:44:43 +0000679 if (if_is_pointopoint (ifp) && dest)
paul718e3742002-12-13 20:15:29 +0000680 p.u.prefix6 = dest->u.prefix6;
681 else
682 p.u.prefix6 = addr->u.prefix6;
683
684 apply_mask_ipv6 ((struct prefix_ipv6 *) &p);
685
686 if (IN6_IS_ADDR_UNSPECIFIED (&p.u.prefix6))
687 return;
688
689 if (IN6_IS_ADDR_LINKLOCAL (&p.u.prefix6))
690 return;
691
paul59320202004-11-09 01:54:03 +0000692 rn = bgp_node_lookup (bgp_connected_table[AFI_IP6], (struct prefix *) &p);
paul718e3742002-12-13 20:15:29 +0000693 if (! rn)
694 return;
695
696 bc = rn->info;
697 bc->refcnt--;
698 if (bc->refcnt == 0)
699 {
700 XFREE (0, bc);
701 rn->info = NULL;
702 }
703 bgp_unlock_node (rn);
704 bgp_unlock_node (rn);
705 }
706#endif /* HAVE_IPV6 */
707}
708
709int
710bgp_nexthop_self (afi_t afi, struct attr *attr)
711{
hasso52dc7ee2004-09-23 19:18:23 +0000712 struct listnode *node;
713 struct listnode *node2;
paul718e3742002-12-13 20:15:29 +0000714 struct interface *ifp;
715 struct connected *ifc;
716 struct prefix *p;
717
718 for (node = listhead (iflist); node; nextnode (node))
719 {
720 ifp = getdata (node);
721
722 for (node2 = listhead (ifp->connected); node2; nextnode (node2))
723 {
724 ifc = getdata (node2);
725 p = ifc->address;
726
727 if (p && p->family == AF_INET
728 && IPV4_ADDR_SAME (&p->u.prefix4, &attr->nexthop))
729 return 1;
730 }
731 }
732 return 0;
733}
734
735struct bgp_nexthop_cache *
736zlookup_read ()
737{
738 struct stream *s;
739 u_int16_t length;
740 u_char command;
741 int nbytes;
742 struct in_addr raddr;
743 u_int32_t metric;
744 int i;
745 u_char nexthop_num;
746 struct nexthop *nexthop;
747 struct bgp_nexthop_cache *bnc;
748
749 s = zlookup->ibuf;
750 stream_reset (s);
751
752 nbytes = stream_read (s, zlookup->sock, 2);
753 length = stream_getw (s);
754
755 nbytes = stream_read (s, zlookup->sock, length - 2);
756 command = stream_getc (s);
757 raddr.s_addr = stream_get_ipv4 (s);
758 metric = stream_getl (s);
759 nexthop_num = stream_getc (s);
760
761 if (nexthop_num)
762 {
763 bnc = bnc_new ();
764 bnc->valid = 1;
765 bnc->metric = metric;
766 bnc->nexthop_num = nexthop_num;
767
768 for (i = 0; i < nexthop_num; i++)
769 {
770 nexthop = XMALLOC (MTYPE_NEXTHOP, sizeof (struct nexthop));
771 memset (nexthop, 0, sizeof (struct nexthop));
772 nexthop->type = stream_getc (s);
773 switch (nexthop->type)
774 {
775 case ZEBRA_NEXTHOP_IPV4:
776 nexthop->gate.ipv4.s_addr = stream_get_ipv4 (s);
777 break;
778 case ZEBRA_NEXTHOP_IFINDEX:
779 case ZEBRA_NEXTHOP_IFNAME:
780 nexthop->ifindex = stream_getl (s);
781 break;
hassofa2b17e2004-03-04 17:45:00 +0000782 default:
783 /* do nothing */
784 break;
paul718e3742002-12-13 20:15:29 +0000785 }
786 bnc_nexthop_add (bnc, nexthop);
787 }
788 }
789 else
790 return NULL;
791
792 return bnc;
793}
794
795struct bgp_nexthop_cache *
796zlookup_query (struct in_addr addr)
797{
798 int ret;
799 struct stream *s;
800
801 /* Check socket. */
802 if (zlookup->sock < 0)
803 return NULL;
804
805 s = zlookup->obuf;
806 stream_reset (s);
807 stream_putw (s, 7);
808 stream_putc (s, ZEBRA_IPV4_NEXTHOP_LOOKUP);
809 stream_put_in_addr (s, &addr);
810
811 ret = writen (zlookup->sock, s->data, 7);
812 if (ret < 0)
813 {
814 zlog_err ("can't write to zlookup->sock");
815 close (zlookup->sock);
816 zlookup->sock = -1;
817 return NULL;
818 }
819 if (ret == 0)
820 {
821 zlog_err ("zlookup->sock connection closed");
822 close (zlookup->sock);
823 zlookup->sock = -1;
824 return NULL;
825 }
826
827 return zlookup_read ();
828}
829
830#ifdef HAVE_IPV6
831struct bgp_nexthop_cache *
832zlookup_read_ipv6 ()
833{
834 struct stream *s;
835 u_int16_t length;
836 u_char command;
837 int nbytes;
838 struct in6_addr raddr;
839 u_int32_t metric;
840 int i;
841 u_char nexthop_num;
842 struct nexthop *nexthop;
843 struct bgp_nexthop_cache *bnc;
844
845 s = zlookup->ibuf;
846 stream_reset (s);
847
848 nbytes = stream_read (s, zlookup->sock, 2);
849 length = stream_getw (s);
850
851 nbytes = stream_read (s, zlookup->sock, length - 2);
852 command = stream_getc (s);
853
854 stream_get (&raddr, s, 16);
855
856 metric = stream_getl (s);
857 nexthop_num = stream_getc (s);
858
859 if (nexthop_num)
860 {
861 bnc = bnc_new ();
862 bnc->valid = 1;
863 bnc->metric = metric;
864 bnc->nexthop_num = nexthop_num;
865
866 for (i = 0; i < nexthop_num; i++)
867 {
868 nexthop = XMALLOC (MTYPE_NEXTHOP, sizeof (struct nexthop));
869 memset (nexthop, 0, sizeof (struct nexthop));
870 nexthop->type = stream_getc (s);
871 switch (nexthop->type)
872 {
873 case ZEBRA_NEXTHOP_IPV6:
874 stream_get (&nexthop->gate.ipv6, s, 16);
875 break;
876 case ZEBRA_NEXTHOP_IPV6_IFINDEX:
877 case ZEBRA_NEXTHOP_IPV6_IFNAME:
878 stream_get (&nexthop->gate.ipv6, s, 16);
879 nexthop->ifindex = stream_getl (s);
880 break;
881 case ZEBRA_NEXTHOP_IFINDEX:
882 case ZEBRA_NEXTHOP_IFNAME:
883 nexthop->ifindex = stream_getl (s);
884 break;
hassofa2b17e2004-03-04 17:45:00 +0000885 default:
886 /* do nothing */
887 break;
paul718e3742002-12-13 20:15:29 +0000888 }
889 bnc_nexthop_add (bnc, nexthop);
890 }
891 }
892 else
893 return NULL;
894
895 return bnc;
896}
897
898struct bgp_nexthop_cache *
899zlookup_query_ipv6 (struct in6_addr *addr)
900{
901 int ret;
902 struct stream *s;
903
904 /* Check socket. */
905 if (zlookup->sock < 0)
906 return NULL;
907
908 s = zlookup->obuf;
909 stream_reset (s);
910 stream_putw (s, 19);
911 stream_putc (s, ZEBRA_IPV6_NEXTHOP_LOOKUP);
912 stream_put (s, addr, 16);
913
914 ret = writen (zlookup->sock, s->data, 19);
915 if (ret < 0)
916 {
917 zlog_err ("can't write to zlookup->sock");
918 close (zlookup->sock);
919 zlookup->sock = -1;
920 return NULL;
921 }
922 if (ret == 0)
923 {
924 zlog_err ("zlookup->sock connection closed");
925 close (zlookup->sock);
926 zlookup->sock = -1;
927 return NULL;
928 }
929
930 return zlookup_read_ipv6 ();
931}
932#endif /* HAVE_IPV6 */
933
934int
935bgp_import_check (struct prefix *p, u_int32_t *igpmetric, struct in_addr *igpnexthop)
936{
937 struct stream *s;
938 int ret;
939 u_int16_t length;
940 u_char command;
941 int nbytes;
942 struct in_addr addr;
943 struct in_addr nexthop;
944 u_int32_t metric = 0;
945 u_char nexthop_num;
946 u_char nexthop_type;
947
948 /* If lookup connection is not available return valid. */
949 if (zlookup->sock < 0)
950 {
951 if (igpmetric)
952 *igpmetric = 0;
953 return 1;
954 }
955
956 /* Send query to the lookup connection */
957 s = zlookup->obuf;
958 stream_reset (s);
959 stream_putw (s, 8);
960 stream_putc (s, ZEBRA_IPV4_IMPORT_LOOKUP);
961 stream_putc (s, p->prefixlen);
962 stream_put_in_addr (s, &p->u.prefix4);
963
964 /* Write the packet. */
965 ret = writen (zlookup->sock, s->data, 8);
966
967 if (ret < 0)
968 {
969 zlog_err ("can't write to zlookup->sock");
970 close (zlookup->sock);
971 zlookup->sock = -1;
972 return 1;
973 }
974 if (ret == 0)
975 {
976 zlog_err ("zlookup->sock connection closed");
977 close (zlookup->sock);
978 zlookup->sock = -1;
979 return 1;
980 }
981
982 /* Get result. */
983 stream_reset (s);
984
985 /* Fetch length. */
986 nbytes = stream_read (s, zlookup->sock, 2);
987 length = stream_getw (s);
988
989 /* Fetch whole data. */
990 nbytes = stream_read (s, zlookup->sock, length - 2);
991 command = stream_getc (s);
992 addr.s_addr = stream_get_ipv4 (s);
993 metric = stream_getl (s);
994 nexthop_num = stream_getc (s);
995
996 /* Set IGP metric value. */
997 if (igpmetric)
998 *igpmetric = metric;
999
1000 /* If there is nexthop then this is active route. */
1001 if (nexthop_num)
1002 {
1003 nexthop.s_addr = 0;
1004 nexthop_type = stream_getc (s);
1005 if (nexthop_type == ZEBRA_NEXTHOP_IPV4)
1006 {
1007 nexthop.s_addr = stream_get_ipv4 (s);
1008 if (igpnexthop)
1009 *igpnexthop = nexthop;
1010 }
1011 else
1012 *igpnexthop = nexthop;
1013
1014 return 1;
1015 }
1016 else
1017 return 0;
1018}
1019
1020/* Scan all configured BGP route then check the route exists in IGP or
1021 not. */
1022int
1023bgp_import (struct thread *t)
1024{
paul6cbbc3c2003-04-28 17:11:02 +00001025 struct bgp_master *bm;
paul718e3742002-12-13 20:15:29 +00001026 struct bgp *bgp;
1027 struct bgp_node *rn;
1028 struct bgp_static *bgp_static;
paul6cbbc3c2003-04-28 17:11:02 +00001029 struct listnode *nn;
paul718e3742002-12-13 20:15:29 +00001030 int valid;
1031 u_int32_t metric;
1032 struct in_addr nexthop;
1033 afi_t afi;
1034 safi_t safi;
1035
1036 bgp_import_thread =
1037 thread_add_timer (master, bgp_import, NULL, bgp_import_interval);
1038
paul6cbbc3c2003-04-28 17:11:02 +00001039 bm = bgp_get_master ();
1040 if (! bm)
paul718e3742002-12-13 20:15:29 +00001041 return 0;
1042
paul6cbbc3c2003-04-28 17:11:02 +00001043 LIST_LOOP (bm->bgp, bgp, nn)
1044 {
1045 for (afi = AFI_IP; afi < AFI_MAX; afi++)
1046 for (safi = SAFI_UNICAST; safi < SAFI_MPLS_VPN; safi++)
1047 for (rn = bgp_table_top (bgp->route[afi][safi]); rn;
1048 rn = bgp_route_next (rn))
1049 if ((bgp_static = rn->info) != NULL)
paul718e3742002-12-13 20:15:29 +00001050 {
paul6cbbc3c2003-04-28 17:11:02 +00001051 if (bgp_static->backdoor)
1052 continue;
paul718e3742002-12-13 20:15:29 +00001053
paul6cbbc3c2003-04-28 17:11:02 +00001054 valid = bgp_static->valid;
1055 metric = bgp_static->igpmetric;
1056 nexthop = bgp_static->igpnexthop;
1057
1058 if (bgp_flag_check (bgp, BGP_FLAG_IMPORT_CHECK)
1059 && afi == AFI_IP && safi == SAFI_UNICAST)
1060 bgp_static->valid = bgp_import_check (&rn->p, &bgp_static->igpmetric,
1061 &bgp_static->igpnexthop);
paul718e3742002-12-13 20:15:29 +00001062 else
paul6cbbc3c2003-04-28 17:11:02 +00001063 {
1064 bgp_static->valid = 1;
1065 bgp_static->igpmetric = 0;
1066 bgp_static->igpnexthop.s_addr = 0;
1067 }
1068
1069 if (bgp_static->valid != valid)
1070 {
1071 if (bgp_static->valid)
1072 bgp_static_update (bgp, &rn->p, bgp_static, afi, safi);
1073 else
1074 bgp_static_withdraw (bgp, &rn->p, afi, safi);
1075 }
1076 else if (bgp_static->valid)
1077 {
1078 if (bgp_static->igpmetric != metric
1079 || bgp_static->igpnexthop.s_addr != nexthop.s_addr
1080 || bgp_static->rmap.name)
1081 bgp_static_update (bgp, &rn->p, bgp_static, afi, safi);
1082 }
paul718e3742002-12-13 20:15:29 +00001083 }
paul6cbbc3c2003-04-28 17:11:02 +00001084 }
paul718e3742002-12-13 20:15:29 +00001085 return 0;
1086}
1087
1088/* Connect to zebra for nexthop lookup. */
1089int
1090zlookup_connect (struct thread *t)
1091{
1092 struct zclient *zlookup;
1093
1094 zlookup = THREAD_ARG (t);
1095 zlookup->t_connect = NULL;
1096
1097 if (zlookup->sock != -1)
1098 return 0;
1099
1100#ifdef HAVE_TCP_ZEBRA
1101 zlookup->sock = zclient_socket ();
1102#else
1103 zlookup->sock = zclient_socket_un (ZEBRA_SERV_PATH);
1104#endif /* HAVE_TCP_ZEBRA */
1105 if (zlookup->sock < 0)
1106 return -1;
1107
paul718e3742002-12-13 20:15:29 +00001108 return 0;
1109}
1110
1111/* Check specified multiaccess next-hop. */
1112int
1113bgp_multiaccess_check_v4 (struct in_addr nexthop, char *peer)
1114{
1115 struct bgp_node *rn1;
1116 struct bgp_node *rn2;
1117 struct prefix p1;
1118 struct prefix p2;
1119 struct in_addr addr;
1120 int ret;
1121
1122 ret = inet_aton (peer, &addr);
1123 if (! ret)
1124 return 0;
1125
1126 memset (&p1, 0, sizeof (struct prefix));
1127 p1.family = AF_INET;
1128 p1.prefixlen = IPV4_MAX_BITLEN;
1129 p1.u.prefix4 = nexthop;
1130 memset (&p2, 0, sizeof (struct prefix));
1131 p2.family = AF_INET;
1132 p2.prefixlen = IPV4_MAX_BITLEN;
1133 p2.u.prefix4 = addr;
1134
1135 /* If bgp scan is not enabled, return invalid. */
1136 if (zlookup->sock < 0)
1137 return 0;
1138
paul59320202004-11-09 01:54:03 +00001139 rn1 = bgp_node_match (bgp_connected_table[AFI_IP], &p1);
paul718e3742002-12-13 20:15:29 +00001140 if (! rn1)
1141 return 0;
1142
paul59320202004-11-09 01:54:03 +00001143 rn2 = bgp_node_match (bgp_connected_table[AFI_IP], &p2);
paul718e3742002-12-13 20:15:29 +00001144 if (! rn2)
1145 return 0;
1146
1147 if (rn1 == rn2)
1148 return 1;
1149
1150 return 0;
1151}
1152
1153DEFUN (bgp_scan_time,
1154 bgp_scan_time_cmd,
1155 "bgp scan-time <5-60>",
1156 "BGP specific commands\n"
1157 "Configure background scanner interval\n"
1158 "Scanner interval (seconds)\n")
1159{
1160 bgp_scan_interval = atoi (argv[0]);
1161
1162 if (bgp_scan_thread)
1163 {
1164 thread_cancel (bgp_scan_thread);
1165 bgp_scan_thread =
paul59320202004-11-09 01:54:03 +00001166 thread_add_timer (master, bgp_scan_timer, NULL, bgp_scan_interval);
paul718e3742002-12-13 20:15:29 +00001167 }
1168
1169 return CMD_SUCCESS;
1170}
1171
1172DEFUN (no_bgp_scan_time,
1173 no_bgp_scan_time_cmd,
1174 "no bgp scan-time",
1175 NO_STR
1176 "BGP specific commands\n"
1177 "Configure background scanner interval\n")
1178{
1179 bgp_scan_interval = BGP_SCAN_INTERVAL_DEFAULT;
1180
1181 if (bgp_scan_thread)
1182 {
1183 thread_cancel (bgp_scan_thread);
1184 bgp_scan_thread =
paul59320202004-11-09 01:54:03 +00001185 thread_add_timer (master, bgp_scan_timer, NULL, bgp_scan_interval);
paul718e3742002-12-13 20:15:29 +00001186 }
1187
1188 return CMD_SUCCESS;
1189}
1190
1191ALIAS (no_bgp_scan_time,
1192 no_bgp_scan_time_val_cmd,
1193 "no bgp scan-time <5-60>",
1194 NO_STR
1195 "BGP specific commands\n"
1196 "Configure background scanner interval\n"
1197 "Scanner interval (seconds)\n")
1198
1199DEFUN (show_ip_bgp_scan,
1200 show_ip_bgp_scan_cmd,
1201 "show ip bgp scan",
1202 SHOW_STR
1203 IP_STR
1204 BGP_STR
1205 "BGP scan status\n")
1206{
1207 struct bgp_node *rn;
1208 struct bgp_nexthop_cache *bnc;
1209
1210 if (bgp_scan_thread)
1211 vty_out (vty, "BGP scan is running%s", VTY_NEWLINE);
1212 else
1213 vty_out (vty, "BGP scan is not running%s", VTY_NEWLINE);
1214 vty_out (vty, "BGP scan interval is %d%s", bgp_scan_interval, VTY_NEWLINE);
1215
1216 vty_out (vty, "Current BGP nexthop cache:%s", VTY_NEWLINE);
paul59320202004-11-09 01:54:03 +00001217 for (rn = bgp_table_top (bgp_nexthop_cache_table[AFI_IP]); rn; rn = bgp_route_next (rn))
paul718e3742002-12-13 20:15:29 +00001218 if ((bnc = rn->info) != NULL)
1219 {
1220 if (bnc->valid)
1221 vty_out (vty, " %s valid [IGP metric %d]%s",
1222 inet_ntoa (rn->p.u.prefix4), bnc->metric, VTY_NEWLINE);
1223 else
1224 vty_out (vty, " %s invalid%s",
1225 inet_ntoa (rn->p.u.prefix4), VTY_NEWLINE);
1226 }
1227
1228#ifdef HAVE_IPV6
1229 {
1230 char buf[BUFSIZ];
paul59320202004-11-09 01:54:03 +00001231 for (rn = bgp_table_top (bgp_nexthop_cache_table[AFI_IP6]);
1232 rn;
1233 rn = bgp_route_next (rn))
paul718e3742002-12-13 20:15:29 +00001234 if ((bnc = rn->info) != NULL)
1235 {
1236 if (bnc->valid)
1237 vty_out (vty, " %s valid [IGP metric %d]%s",
1238 inet_ntop (AF_INET6, &rn->p.u.prefix6, buf, BUFSIZ),
1239 bnc->metric, VTY_NEWLINE);
1240 else
1241 vty_out (vty, " %s invalid%s",
1242 inet_ntop (AF_INET6, &rn->p.u.prefix6, buf, BUFSIZ),
1243 VTY_NEWLINE);
1244 }
1245 }
1246#endif /* HAVE_IPV6 */
1247
1248 vty_out (vty, "BGP connected route:%s", VTY_NEWLINE);
paul59320202004-11-09 01:54:03 +00001249 for (rn = bgp_table_top (bgp_connected_table[AFI_IP]);
1250 rn;
1251 rn = bgp_route_next (rn))
paul718e3742002-12-13 20:15:29 +00001252 if (rn->info != NULL)
1253 vty_out (vty, " %s/%d%s", inet_ntoa (rn->p.u.prefix4), rn->p.prefixlen,
1254 VTY_NEWLINE);
1255
1256#ifdef HAVE_IPV6
1257 {
1258 char buf[BUFSIZ];
1259
paul59320202004-11-09 01:54:03 +00001260 for (rn = bgp_table_top (bgp_connected_table[AFI_IP6]);
1261 rn;
1262 rn = bgp_route_next (rn))
paul718e3742002-12-13 20:15:29 +00001263 if (rn->info != NULL)
1264 vty_out (vty, " %s/%d%s",
1265 inet_ntop (AF_INET6, &rn->p.u.prefix6, buf, BUFSIZ),
1266 rn->p.prefixlen,
1267 VTY_NEWLINE);
1268 }
1269#endif /* HAVE_IPV6 */
1270
1271 return CMD_SUCCESS;
1272}
1273
1274int
1275bgp_config_write_scan_time (struct vty *vty)
1276{
1277 if (bgp_scan_interval != BGP_SCAN_INTERVAL_DEFAULT)
1278 vty_out (vty, " bgp scan-time %d%s", bgp_scan_interval, VTY_NEWLINE);
1279 return CMD_SUCCESS;
1280}
1281
1282void
1283bgp_scan_init ()
1284{
1285 zlookup = zclient_new ();
1286 zlookup->sock = -1;
1287 zlookup->ibuf = stream_new (ZEBRA_MAX_PACKET_SIZ);
1288 zlookup->obuf = stream_new (ZEBRA_MAX_PACKET_SIZ);
1289 zlookup->t_connect = thread_add_event (master, zlookup_connect, zlookup, 0);
1290
1291 bgp_scan_interval = BGP_SCAN_INTERVAL_DEFAULT;
1292 bgp_import_interval = BGP_IMPORT_INTERVAL_DEFAULT;
1293
paul59320202004-11-09 01:54:03 +00001294 cache1_table[AFI_IP] = bgp_table_init ();
1295 cache2_table[AFI_IP] = bgp_table_init ();
1296 bgp_nexthop_cache_table[AFI_IP] = cache1_table[AFI_IP];
paul718e3742002-12-13 20:15:29 +00001297
paul59320202004-11-09 01:54:03 +00001298 bgp_connected_table[AFI_IP] = bgp_table_init ();
paul718e3742002-12-13 20:15:29 +00001299
1300#ifdef HAVE_IPV6
paul59320202004-11-09 01:54:03 +00001301 cache1_table[AFI_IP6] = bgp_table_init ();
1302 cache2_table[AFI_IP6] = bgp_table_init ();
1303 bgp_nexthop_cache_table[AFI_IP6] = cache1_table[AFI_IP6];
1304 bgp_connected_table[AFI_IP6] = bgp_table_init ();
paul718e3742002-12-13 20:15:29 +00001305#endif /* HAVE_IPV6 */
1306
1307 /* Make BGP scan thread. */
paul59320202004-11-09 01:54:03 +00001308 bgp_scan_thread = thread_add_timer (master, bgp_scan_timer,
1309 NULL, bgp_scan_interval);
paul6cbbc3c2003-04-28 17:11:02 +00001310 /* Make BGP import there. */
1311 bgp_import_thread = thread_add_timer (master, bgp_import, NULL, 0);
paul718e3742002-12-13 20:15:29 +00001312
1313 install_element (BGP_NODE, &bgp_scan_time_cmd);
1314 install_element (BGP_NODE, &no_bgp_scan_time_cmd);
1315 install_element (BGP_NODE, &no_bgp_scan_time_val_cmd);
1316 install_element (VIEW_NODE, &show_ip_bgp_scan_cmd);
1317 install_element (ENABLE_NODE, &show_ip_bgp_scan_cmd);
1318}