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Merge pull request #10081 from ckishimo/ospf6d_type4
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CommitLineData
3f9c7369
DS
1/**
2 * bgp_updgrp_packet.c: BGP update group packet handling routines
3 *
4 * @copyright Copyright (C) 2014 Cumulus Networks, Inc.
5 *
6 * @author Avneesh Sachdev <avneesh@sproute.net>
7 * @author Rajesh Varadarajan <rajesh@sproute.net>
8 * @author Pradosh Mohapatra <pradosh@sproute.net>
9 *
10 * This file is part of GNU Zebra.
11 *
12 * GNU Zebra is free software; you can redistribute it and/or modify it
13 * under the terms of the GNU General Public License as published by the
14 * Free Software Foundation; either version 2, or (at your option) any
15 * later version.
16 *
17 * GNU Zebra is distributed in the hope that it will be useful, but
18 * WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 * General Public License for more details.
21 *
896014f4
DL
22 * You should have received a copy of the GNU General Public License along
23 * with this program; see the file COPYING; if not, write to the Free Software
24 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
3f9c7369
DS
25 */
26
27#include <zebra.h>
28
29#include "prefix.h"
30#include "thread.h"
31#include "buffer.h"
32#include "stream.h"
33#include "command.h"
34#include "sockunion.h"
35#include "network.h"
36#include "memory.h"
37#include "filter.h"
38#include "routemap.h"
3f9c7369
DS
39#include "log.h"
40#include "plist.h"
41#include "linklist.h"
42#include "workqueue.h"
43#include "hash.h"
44#include "queue.h"
cd1964ff 45#include "mpls.h"
3f9c7369
DS
46
47#include "bgpd/bgpd.h"
48#include "bgpd/bgp_debug.h"
14454c9f 49#include "bgpd/bgp_errors.h"
3f9c7369
DS
50#include "bgpd/bgp_fsm.h"
51#include "bgpd/bgp_route.h"
52#include "bgpd/bgp_packet.h"
53#include "bgpd/bgp_advertise.h"
54#include "bgpd/bgp_updgrp.h"
55#include "bgpd/bgp_nexthop.h"
56#include "bgpd/bgp_nht.h"
906ad49b 57#include "bgpd/bgp_mplsvpn.h"
cd1964ff 58#include "bgpd/bgp_label.h"
dcc68b5e 59#include "bgpd/bgp_addpath.h"
3f9c7369
DS
60
61/********************
62 * PRIVATE FUNCTIONS
63 ********************/
64
65/********************
66 * PUBLIC FUNCTIONS
67 ********************/
4d762f26 68struct bpacket *bpacket_alloc(void)
3f9c7369 69{
d62a17ae 70 struct bpacket *pkt;
3f9c7369 71
9f5dc319 72 pkt = XCALLOC(MTYPE_BGP_PACKET, sizeof(struct bpacket));
3f9c7369 73
d62a17ae 74 return pkt;
3f9c7369
DS
75}
76
d62a17ae 77void bpacket_free(struct bpacket *pkt)
3f9c7369 78{
d62a17ae 79 if (pkt->buffer)
80 stream_free(pkt->buffer);
81 pkt->buffer = NULL;
82 XFREE(MTYPE_BGP_PACKET, pkt);
3f9c7369
DS
83}
84
d62a17ae 85void bpacket_queue_init(struct bpacket_queue *q)
3f9c7369 86{
d62a17ae 87 TAILQ_INIT(&(q->pkts));
3f9c7369
DS
88}
89
3f9c7369
DS
90/*
91 * bpacket_queue_add_packet
92 *
93 * Internal function of bpacket_queue - and adds a
94 * packet entry to the end of the list.
95 *
96 * Users of bpacket_queue should use bpacket_queue_add instead.
97 */
d62a17ae 98static void bpacket_queue_add_packet(struct bpacket_queue *q,
99 struct bpacket *pkt)
3f9c7369 100{
d62a17ae 101 struct bpacket *last_pkt;
3f9c7369 102
d62a17ae 103 if (TAILQ_EMPTY(&(q->pkts)))
104 TAILQ_INSERT_TAIL(&(q->pkts), pkt, pkt_train);
105 else {
106 last_pkt = bpacket_queue_last(q);
107 TAILQ_INSERT_AFTER(&(q->pkts), last_pkt, pkt, pkt_train);
108 }
109 q->curr_count++;
110 if (q->hwm_count < q->curr_count)
111 q->hwm_count = q->curr_count;
3f9c7369
DS
112}
113
114/*
115 * Adds a packet to the bpacket_queue.
116 *
117 * The stream passed is consumed by this function. So, the caller should
118 * not free or use the stream after
119 * invoking this function.
120 */
d62a17ae 121struct bpacket *bpacket_queue_add(struct bpacket_queue *q, struct stream *s,
122 struct bpacket_attr_vec_arr *vecarrp)
3f9c7369 123{
d62a17ae 124 struct bpacket *pkt;
125 struct bpacket *last_pkt;
126
127
128 pkt = bpacket_alloc();
129 if (TAILQ_EMPTY(&(q->pkts))) {
130 pkt->ver = 1;
131 pkt->buffer = s;
132 if (vecarrp)
133 memcpy(&pkt->arr, vecarrp,
134 sizeof(struct bpacket_attr_vec_arr));
135 else
136 bpacket_attr_vec_arr_reset(&pkt->arr);
137 bpacket_queue_add_packet(q, pkt);
d62a17ae 138 return pkt;
139 }
3f9c7369 140
d62a17ae 141 /*
142 * Fill in the new information into the current sentinel and create a
143 * new sentinel.
144 */
d62a17ae 145 last_pkt = bpacket_queue_last(q);
146 assert(last_pkt->buffer == NULL);
147 last_pkt->buffer = s;
148 if (vecarrp)
149 memcpy(&last_pkt->arr, vecarrp,
150 sizeof(struct bpacket_attr_vec_arr));
151 else
152 bpacket_attr_vec_arr_reset(&last_pkt->arr);
153
154 pkt->ver = last_pkt->ver;
155 pkt->ver++;
156 bpacket_queue_add_packet(q, pkt);
157
d62a17ae 158 return last_pkt;
3f9c7369
DS
159}
160
d62a17ae 161struct bpacket *bpacket_queue_first(struct bpacket_queue *q)
3f9c7369 162{
d62a17ae 163 return (TAILQ_FIRST(&(q->pkts)));
3f9c7369
DS
164}
165
d62a17ae 166struct bpacket *bpacket_queue_last(struct bpacket_queue *q)
3f9c7369 167{
d62a17ae 168 return TAILQ_LAST(&(q->pkts), pkt_queue);
3f9c7369
DS
169}
170
d62a17ae 171struct bpacket *bpacket_queue_remove(struct bpacket_queue *q)
3f9c7369 172{
d62a17ae 173 struct bpacket *first;
3f9c7369 174
d62a17ae 175 first = bpacket_queue_first(q);
176 if (first) {
177 TAILQ_REMOVE(&(q->pkts), first, pkt_train);
178 q->curr_count--;
179 }
180 return first;
3f9c7369
DS
181}
182
d62a17ae 183unsigned int bpacket_queue_length(struct bpacket_queue *q)
3f9c7369 184{
d62a17ae 185 return q->curr_count - 1;
3f9c7369
DS
186}
187
d62a17ae 188unsigned int bpacket_queue_hwm_length(struct bpacket_queue *q)
3f9c7369 189{
d62a17ae 190 return q->hwm_count - 1;
3f9c7369
DS
191}
192
3dc339cd 193bool bpacket_queue_is_full(struct bgp *bgp, struct bpacket_queue *q)
3f9c7369 194{
d62a17ae 195 if (q->curr_count >= bgp->default_subgroup_pkt_queue_max)
3dc339cd
DA
196 return true;
197 return false;
3f9c7369
DS
198}
199
d62a17ae 200void bpacket_add_peer(struct bpacket *pkt, struct peer_af *paf)
3f9c7369 201{
d62a17ae 202 if (!pkt || !paf)
203 return;
3f9c7369 204
d62a17ae 205 LIST_INSERT_HEAD(&(pkt->peers), paf, pkt_train);
206 paf->next_pkt_to_send = pkt;
3f9c7369
DS
207}
208
209/*
210 * bpacket_queue_cleanup
211 */
d62a17ae 212void bpacket_queue_cleanup(struct bpacket_queue *q)
3f9c7369 213{
d62a17ae 214 struct bpacket *pkt;
3f9c7369 215
d62a17ae 216 while ((pkt = bpacket_queue_remove(q))) {
217 bpacket_free(pkt);
218 }
3f9c7369
DS
219}
220
221/*
222 * bpacket_queue_compact
223 *
224 * Delete packets that do not need to be transmitted to any peer from
225 * the queue.
226 *
227 * @return the number of packets deleted.
228 */
d62a17ae 229static int bpacket_queue_compact(struct bpacket_queue *q)
3f9c7369 230{
d62a17ae 231 int num_deleted;
232 struct bpacket *pkt, *removed_pkt;
3f9c7369 233
d62a17ae 234 num_deleted = 0;
3f9c7369 235
d62a17ae 236 while (1) {
237 pkt = bpacket_queue_first(q);
238 if (!pkt)
239 break;
3f9c7369 240
d62a17ae 241 /*
242 * Don't delete the sentinel.
243 */
244 if (!pkt->buffer)
245 break;
3f9c7369 246
d62a17ae 247 if (!LIST_EMPTY(&(pkt->peers)))
248 break;
3f9c7369 249
d62a17ae 250 removed_pkt = bpacket_queue_remove(q);
251 assert(pkt == removed_pkt);
252 bpacket_free(removed_pkt);
3f9c7369 253
d62a17ae 254 num_deleted++;
255 }
3f9c7369 256
d62a17ae 257 return num_deleted;
3f9c7369
DS
258}
259
d62a17ae 260void bpacket_queue_advance_peer(struct peer_af *paf)
3f9c7369 261{
d62a17ae 262 struct bpacket *pkt;
263 struct bpacket *old_pkt;
264
265 old_pkt = paf->next_pkt_to_send;
266 if (old_pkt->buffer == NULL)
267 /* Already at end of list */
268 return;
269
270 LIST_REMOVE(paf, pkt_train);
271 pkt = TAILQ_NEXT(old_pkt, pkt_train);
272 bpacket_add_peer(pkt, paf);
273
274 if (!bpacket_queue_compact(PAF_PKTQ(paf)))
275 return;
276
277 /*
278 * Deleted one or more packets. Check if we can now merge this
279 * peer's subgroup into another subgroup.
280 */
281 update_subgroup_check_merge(paf->subgroup, "advanced peer in queue");
3f9c7369
DS
282}
283
284/*
285 * bpacket_queue_remove_peer
286 *
287 * Remove the peer from the packet queue of the subgroup it belongs
288 * to.
289 */
d62a17ae 290void bpacket_queue_remove_peer(struct peer_af *paf)
3f9c7369 291{
d62a17ae 292 struct bpacket_queue *q;
3f9c7369 293
d62a17ae 294 q = PAF_PKTQ(paf);
295 assert(q);
3f9c7369 296
d62a17ae 297 LIST_REMOVE(paf, pkt_train);
298 paf->next_pkt_to_send = NULL;
3f9c7369 299
d62a17ae 300 bpacket_queue_compact(q);
3f9c7369
DS
301}
302
d62a17ae 303unsigned int bpacket_queue_virtual_length(struct peer_af *paf)
3f9c7369 304{
d62a17ae 305 struct bpacket *pkt;
306 struct bpacket *last;
307 struct bpacket_queue *q;
3f9c7369 308
d62a17ae 309 pkt = paf->next_pkt_to_send;
310 if (!pkt || (pkt->buffer == NULL))
311 /* Already at end of list */
312 return 0;
3f9c7369 313
d62a17ae 314 q = PAF_PKTQ(paf);
315 if (TAILQ_EMPTY(&(q->pkts)))
316 return 0;
3f9c7369 317
d62a17ae 318 last = TAILQ_LAST(&(q->pkts), pkt_queue);
319 if (last->ver >= pkt->ver)
320 return last->ver - pkt->ver;
3f9c7369 321
d62a17ae 322 /* sequence # rolled over */
323 return (UINT_MAX - pkt->ver + 1) + last->ver;
3f9c7369
DS
324}
325
326/*
327 * Dump the bpacket queue
328 */
d62a17ae 329void bpacket_queue_show_vty(struct bpacket_queue *q, struct vty *vty)
3f9c7369 330{
d62a17ae 331 struct bpacket *pkt;
332 struct peer_af *paf;
333
334 pkt = bpacket_queue_first(q);
335 while (pkt) {
336 vty_out(vty, " Packet %p ver %u buffer %p\n", pkt, pkt->ver,
337 pkt->buffer);
338
a2addae8 339 LIST_FOREACH (paf, &(pkt->peers), pkt_train) {
d62a17ae 340 vty_out(vty, " - %s\n", paf->peer->host);
341 }
342 pkt = bpacket_next(pkt);
343 }
344 return;
3f9c7369
DS
345}
346
d62a17ae 347struct stream *bpacket_reformat_for_peer(struct bpacket *pkt,
348 struct peer_af *paf)
3f9c7369 349{
d62a17ae 350 struct stream *s = NULL;
351 bpacket_attr_vec *vec;
352 struct peer *peer;
1c875ddb 353 struct bgp_filter *filter;
d62a17ae 354
355 s = stream_dup(pkt->buffer);
356 peer = PAF_PEER(paf);
357
358 vec = &pkt->arr.entries[BGP_ATTR_VEC_NH];
d62a17ae 359
f041034e
DS
360 if (!CHECK_FLAG(vec->flags, BPKT_ATTRVEC_FLAGS_UPDATED))
361 return s;
362
363 uint8_t nhlen;
364 afi_t nhafi;
365 int route_map_sets_nh;
366
367 nhlen = stream_getc_from(s, vec->offset);
368 filter = &peer->filter[paf->afi][paf->safi];
369
370 if (peer_cap_enhe(peer, paf->afi, paf->safi))
371 nhafi = AFI_IP6;
372 else
373 nhafi = BGP_NEXTHOP_AFI_FROM_NHLEN(nhlen);
374
375 if (nhafi == AFI_IP) {
376 struct in_addr v4nh, *mod_v4nh;
377 int nh_modified = 0;
378 size_t offset_nh = vec->offset + 1;
379
380 route_map_sets_nh =
381 (CHECK_FLAG(vec->flags,
382 BPKT_ATTRVEC_FLAGS_RMAP_IPV4_NH_CHANGED)
383 || CHECK_FLAG(
384 vec->flags,
385 BPKT_ATTRVEC_FLAGS_RMAP_NH_PEER_ADDRESS));
386
387 switch (nhlen) {
388 case BGP_ATTR_NHLEN_IPV4:
389 break;
390 case BGP_ATTR_NHLEN_VPNV4:
391 offset_nh += 8;
392 break;
393 default:
394 /* TODO: handle IPv6 nexthops */
395 flog_warn(
396 EC_BGP_INVALID_NEXTHOP_LENGTH,
397 "%s: %s: invalid MP nexthop length (AFI IP): %u",
398 __func__, peer->host, nhlen);
399 stream_free(s);
400 return NULL;
401 }
402
403 stream_get_from(&v4nh, s, offset_nh, IPV4_MAX_BYTELEN);
404 mod_v4nh = &v4nh;
405
406 /*
407 * If route-map has set the nexthop, that is normally
408 * used; if it is specified as peer-address, the peering
409 * address is picked up. Otherwise, if NH is unavailable
410 * from attribute, the peering addr is picked up; the
411 * "NH unavailable" case also covers next-hop-self and
412 * some other scenarios - see subgroup_announce_check().
413 * In all other cases, use the nexthop carried in the
414 * attribute unless it is EBGP non-multiaccess and there
415 * is no next-hop-unchanged setting or the peer is EBGP
416 * and the route-map that changed the next-hop value
417 * was applied inbound rather than outbound. Updates to
418 * an EBGP peer should only modify the next-hop if it
419 * was set in an outbound route-map to that peer.
420 * Note: It is assumed route-map cannot set the nexthop
421 * to an invalid value.
422 */
423 if (route_map_sets_nh
424 && ((peer->sort != BGP_PEER_EBGP)
425 || ROUTE_MAP_OUT(filter))) {
426 if (CHECK_FLAG(
427 vec->flags,
428 BPKT_ATTRVEC_FLAGS_RMAP_NH_PEER_ADDRESS)) {
d62a17ae 429 mod_v4nh = &peer->nexthop.v4;
430 nh_modified = 1;
431 }
f041034e
DS
432 } else if (v4nh.s_addr == INADDR_ANY) {
433 mod_v4nh = &peer->nexthop.v4;
434 nh_modified = 1;
435 } else if (peer->sort == BGP_PEER_EBGP
436 && (bgp_multiaccess_check_v4(v4nh, peer) == 0)
437 && !CHECK_FLAG(vec->flags,
438 BPKT_ATTRVEC_FLAGS_RMAP_NH_UNCHANGED)
439 && !peer_af_flag_check(
440 peer, paf->afi, paf->safi,
441 PEER_FLAG_NEXTHOP_UNCHANGED)) {
442 /* NOTE: not handling case where NH has new AFI
443 */
444 mod_v4nh = &peer->nexthop.v4;
445 nh_modified = 1;
446 }
d62a17ae 447
f041034e
DS
448 if (nh_modified) /* allow for VPN RD */
449 stream_put_in_addr_at(s, offset_nh, mod_v4nh);
450
451 if (bgp_debug_update(peer, NULL, NULL, 0))
23d0a753
DA
452 zlog_debug("u%" PRIu64 ":s%" PRIu64
453 " %s send UPDATE w/ nexthop %pI4%s",
f041034e 454 PAF_SUBGRP(paf)->update_group->id,
23d0a753 455 PAF_SUBGRP(paf)->id, peer->host, mod_v4nh,
3ddd6994
DA
456 (nhlen == BGP_ATTR_NHLEN_VPNV4 ? " and RD"
457 : ""));
f041034e
DS
458 } else if (nhafi == AFI_IP6) {
459 struct in6_addr v6nhglobal, *mod_v6nhg;
460 struct in6_addr v6nhlocal, *mod_v6nhl;
461 int gnh_modified, lnh_modified;
462 size_t offset_nhglobal = vec->offset + 1;
463 size_t offset_nhlocal = vec->offset + 1;
464
465 gnh_modified = lnh_modified = 0;
466 mod_v6nhg = &v6nhglobal;
467 mod_v6nhl = &v6nhlocal;
468
469 route_map_sets_nh =
470 (CHECK_FLAG(vec->flags,
471 BPKT_ATTRVEC_FLAGS_RMAP_IPV6_GNH_CHANGED)
472 || CHECK_FLAG(
473 vec->flags,
474 BPKT_ATTRVEC_FLAGS_RMAP_NH_PEER_ADDRESS));
d62a17ae 475
f041034e
DS
476 /*
477 * The logic here is rather similar to that for IPv4, the
478 * additional work being to handle 1 or 2 nexthops.
479 * Also, 3rd party nexthop is not propagated for EBGP
480 * right now.
481 */
482 switch (nhlen) {
483 case BGP_ATTR_NHLEN_IPV6_GLOBAL:
484 break;
485 case BGP_ATTR_NHLEN_IPV6_GLOBAL_AND_LL:
486 offset_nhlocal += IPV6_MAX_BYTELEN;
487 break;
488 case BGP_ATTR_NHLEN_VPNV6_GLOBAL:
489 offset_nhglobal += 8;
490 break;
491 case BGP_ATTR_NHLEN_VPNV6_GLOBAL_AND_LL:
492 offset_nhglobal += 8;
493 offset_nhlocal += 8 * 2 + IPV6_MAX_BYTELEN;
494 break;
495 default:
496 /* TODO: handle IPv4 nexthops */
497 flog_warn(
498 EC_BGP_INVALID_NEXTHOP_LENGTH,
499 "%s: %s: invalid MP nexthop length (AFI IP6): %u",
500 __func__, peer->host, nhlen);
501 stream_free(s);
502 return NULL;
503 }
d62a17ae 504
f041034e
DS
505 stream_get_from(&v6nhglobal, s, offset_nhglobal,
506 IPV6_MAX_BYTELEN);
1c875ddb 507
f041034e
DS
508 /*
509 * Updates to an EBGP peer should only modify the
510 * next-hop if it was set in an outbound route-map
511 * to that peer.
512 */
513 if (route_map_sets_nh
514 && ((peer->sort != BGP_PEER_EBGP)
515 || ROUTE_MAP_OUT(filter))) {
516 if (CHECK_FLAG(
517 vec->flags,
518 BPKT_ATTRVEC_FLAGS_RMAP_NH_PEER_ADDRESS)) {
d62a17ae 519 mod_v6nhg = &peer->nexthop.v6_global;
520 gnh_modified = 1;
521 }
f041034e
DS
522 } else if (IN6_IS_ADDR_UNSPECIFIED(&v6nhglobal)) {
523 mod_v6nhg = &peer->nexthop.v6_global;
524 gnh_modified = 1;
525 } else if ((peer->sort == BGP_PEER_EBGP)
526 && (!bgp_multiaccess_check_v6(v6nhglobal, peer))
527 && !CHECK_FLAG(vec->flags,
528 BPKT_ATTRVEC_FLAGS_RMAP_NH_UNCHANGED)
529 && !peer_af_flag_check(
530 peer, nhafi, paf->safi,
531 PEER_FLAG_NEXTHOP_UNCHANGED)) {
532 /* NOTE: not handling case where NH has new AFI
533 */
534 mod_v6nhg = &peer->nexthop.v6_global;
535 gnh_modified = 1;
536 }
d62a17ae 537
92d6f769 538 if (IN6_IS_ADDR_UNSPECIFIED(mod_v6nhg)) {
3a6290bd 539 if (peer->nexthop.v4.s_addr != INADDR_ANY) {
92d6f769
K
540 ipv4_to_ipv4_mapped_ipv6(mod_v6nhg,
541 peer->nexthop.v4);
542 }
543 }
544
545 if (IS_MAPPED_IPV6(&peer->nexthop.v6_global)) {
546 mod_v6nhg = &peer->nexthop.v6_global;
547 gnh_modified = 1;
548 }
549
f041034e
DS
550 if (nhlen == BGP_ATTR_NHLEN_IPV6_GLOBAL_AND_LL
551 || nhlen == BGP_ATTR_NHLEN_VPNV6_GLOBAL_AND_LL) {
552 stream_get_from(&v6nhlocal, s, offset_nhlocal,
553 IPV6_MAX_BYTELEN);
554 if (IN6_IS_ADDR_UNSPECIFIED(&v6nhlocal)) {
555 mod_v6nhl = &peer->nexthop.v6_local;
556 lnh_modified = 1;
d62a17ae 557 }
f041034e 558 }
d62a17ae 559
f041034e
DS
560 if (gnh_modified)
561 stream_put_in6_addr_at(s, offset_nhglobal, mod_v6nhg);
562 if (lnh_modified)
563 stream_put_in6_addr_at(s, offset_nhlocal, mod_v6nhl);
564
565 if (bgp_debug_update(peer, NULL, NULL, 0)) {
3ddd6994
DA
566 if (nhlen == BGP_ATTR_NHLEN_IPV6_GLOBAL_AND_LL
567 || nhlen == BGP_ATTR_NHLEN_VPNV6_GLOBAL_AND_LL)
f041034e 568 zlog_debug(
c0d72166
DS
569 "u%" PRIu64 ":s%" PRIu64
570 " %s send UPDATE w/ mp_nexthops %pI6, %pI6%s",
f041034e
DS
571 PAF_SUBGRP(paf)->update_group->id,
572 PAF_SUBGRP(paf)->id, peer->host,
c0d72166 573 mod_v6nhg, mod_v6nhl,
3ddd6994
DA
574 (nhlen == BGP_ATTR_NHLEN_VPNV6_GLOBAL_AND_LL
575 ? " and RD"
576 : ""));
f041034e 577 else
c0d72166
DS
578 zlog_debug(
579 "u%" PRIu64 ":s%" PRIu64
580 " %s send UPDATE w/ mp_nexthop %pI6%s",
581 PAF_SUBGRP(paf)->update_group->id,
582 PAF_SUBGRP(paf)->id, peer->host,
583 mod_v6nhg,
584 (nhlen == BGP_ATTR_NHLEN_VPNV6_GLOBAL
585 ? " and RD"
586 : ""));
f041034e
DS
587 }
588 } else if (paf->afi == AFI_L2VPN) {
589 struct in_addr v4nh, *mod_v4nh;
590 int nh_modified = 0;
591
592 stream_get_from(&v4nh, s, vec->offset + 1, 4);
593 mod_v4nh = &v4nh;
594
595 /* No route-map changes allowed for EVPN nexthops. */
596 if (v4nh.s_addr == INADDR_ANY) {
597 mod_v4nh = &peer->nexthop.v4;
598 nh_modified = 1;
d62a17ae 599 }
f041034e
DS
600
601 if (nh_modified)
602 stream_put_in_addr_at(s, vec->offset + 1, mod_v4nh);
603
604 if (bgp_debug_update(peer, NULL, NULL, 0))
23d0a753
DA
605 zlog_debug("u%" PRIu64 ":s%" PRIu64
606 " %s send UPDATE w/ nexthop %pI4",
f041034e 607 PAF_SUBGRP(paf)->update_group->id,
23d0a753 608 PAF_SUBGRP(paf)->id, peer->host, mod_v4nh);
3f9c7369 609 }
3f9c7369 610
d62a17ae 611 return s;
3f9c7369
DS
612}
613
614/*
615 * Update the vecarr offsets to go beyond 'pos' bytes, i.e. add 'pos'
616 * to each offset.
617 */
d62a17ae 618static void bpacket_attr_vec_arr_update(struct bpacket_attr_vec_arr *vecarr,
619 size_t pos)
3f9c7369 620{
d62a17ae 621 int i;
3f9c7369 622
d62a17ae 623 if (!vecarr)
624 return;
3f9c7369 625
d62a17ae 626 for (i = 0; i < BGP_ATTR_VEC_MAX; i++)
627 vecarr->entries[i].offset += pos;
3f9c7369
DS
628}
629
630/*
631 * Return if there are packets to build for this subgroup.
632 */
3dc339cd 633bool subgroup_packets_to_build(struct update_subgroup *subgrp)
3f9c7369 634{
d62a17ae 635 struct bgp_advertise *adv;
3f9c7369 636
d62a17ae 637 if (!subgrp)
3dc339cd 638 return false;
3f9c7369 639
a274fef8 640 adv = bgp_adv_fifo_first(&subgrp->sync->withdraw);
d62a17ae 641 if (adv)
3dc339cd 642 return true;
3f9c7369 643
a274fef8 644 adv = bgp_adv_fifo_first(&subgrp->sync->update);
d62a17ae 645 if (adv)
3dc339cd 646 return true;
3f9c7369 647
3dc339cd 648 return false;
3f9c7369
DS
649}
650
651/* Make BGP update packet. */
d62a17ae 652struct bpacket *subgroup_update_packet(struct update_subgroup *subgrp)
3f9c7369 653{
d62a17ae 654 struct bpacket_attr_vec_arr vecarr;
655 struct bpacket *pkt;
656 struct peer *peer;
657 struct stream *s;
658 struct stream *snlri;
659 struct stream *packet;
660 struct bgp_adj_out *adj;
661 struct bgp_advertise *adv;
9bcb3eef 662 struct bgp_dest *dest = NULL;
9b6d8fcf 663 struct bgp_path_info *path = NULL;
d62a17ae 664 bgp_size_t total_attr_len = 0;
665 unsigned long attrlen_pos = 0;
666 size_t mpattrlen_pos = 0;
667 size_t mpattr_pos = 0;
668 afi_t afi;
669 safi_t safi;
670 int space_remaining = 0;
671 int space_needed = 0;
672 char send_attr_str[BUFSIZ];
673 int send_attr_printed = 0;
674 int num_pfx = 0;
675 int addpath_encode = 0;
e386c1d5 676 int addpath_overhead = 0;
d7c0a89a 677 uint32_t addpath_tx_id = 0;
d62a17ae 678 struct prefix_rd *prd = NULL;
b57ba6d2 679 mpls_label_t label = MPLS_INVALID_LABEL, *label_pnt = NULL;
d7c0a89a 680 uint32_t num_labels = 0;
d62a17ae 681
682 if (!subgrp)
683 return NULL;
3f9c7369 684
d62a17ae 685 if (bpacket_queue_is_full(SUBGRP_INST(subgrp), SUBGRP_PKTQ(subgrp)))
686 return NULL;
3f9c7369 687
d62a17ae 688 peer = SUBGRP_PEER(subgrp);
689 afi = SUBGRP_AFI(subgrp);
690 safi = SUBGRP_SAFI(subgrp);
691 s = subgrp->work;
692 stream_reset(s);
693 snlri = subgrp->scratch;
694 stream_reset(snlri);
695
696 bpacket_attr_vec_arr_reset(&vecarr);
697
698 addpath_encode = bgp_addpath_encode_tx(peer, afi, safi);
e386c1d5 699 addpath_overhead = addpath_encode ? BGP_ADDPATH_ID_LEN : 0;
d62a17ae 700
a274fef8 701 adv = bgp_adv_fifo_first(&subgrp->sync->update);
d62a17ae 702 while (adv) {
9bcb3eef 703 const struct prefix *dest_p;
b54892e0 704
9bcb3eef
DS
705 assert(adv->dest);
706 dest = adv->dest;
707 dest_p = bgp_dest_get_prefix(dest);
d62a17ae 708 adj = adv->adj;
709 addpath_tx_id = adj->addpath_tx_id;
9b6d8fcf 710 path = adv->pathi;
d62a17ae 711
fde246e8
DA
712 /* Check if we need to add a prefix to the packet if
713 * maximum-prefix-out is set for the peer.
714 */
715 if (CHECK_FLAG(peer->af_flags[afi][safi],
716 PEER_FLAG_MAX_PREFIX_OUT)
717 && subgrp->scount >= peer->pmax_out[afi][safi]) {
718 if (BGP_DEBUG(update, UPDATE_OUT)
719 || BGP_DEBUG(update, UPDATE_PREFIX)) {
720 zlog_debug(
6cde4b45 721 "%s reached maximum prefix to be send (%u)",
fde246e8
DA
722 peer->host, peer->pmax_out[afi][safi]);
723 }
724 goto next;
725 }
726
d62a17ae 727 space_remaining = STREAM_CONCAT_REMAIN(s, snlri, STREAM_SIZE(s))
728 - BGP_MAX_PACKET_SIZE_OVERFLOW;
9bcb3eef
DS
729 space_needed =
730 BGP_NLRI_LENGTH + addpath_overhead
731 + bgp_packet_mpattr_prefix_size(afi, safi, dest_p);
d62a17ae 732
733 /* When remaining space can't include NLRI and it's length. */
734 if (space_remaining < space_needed)
735 break;
736
737 /* If packet is empty, set attribute. */
738 if (stream_empty(s)) {
739 struct peer *from = NULL;
740
9b6d8fcf
DS
741 if (path)
742 from = path->peer;
d62a17ae 743
744 /* 1: Write the BGP message header - 16 bytes marker, 2
745 * bytes length,
746 * one byte message type.
747 */
748 bgp_packet_set_marker(s, BGP_MSG_UPDATE);
749
750 /* 2: withdrawn routes length */
751 stream_putw(s, 0);
752
753 /* 3: total attributes length - attrlen_pos stores the
754 * position */
755 attrlen_pos = stream_get_endp(s);
756 stream_putw(s, 0);
757
758 /* 4: if there is MP_REACH_NLRI attribute, that should
759 * be the first
760 * attribute, according to
761 * draft-ietf-idr-error-handling. Save the
762 * position.
763 */
764 mpattr_pos = stream_get_endp(s);
765
766 /* 5: Encode all the attributes, except MP_REACH_NLRI
767 * attr. */
768 total_attr_len = bgp_packet_attribute(
769 NULL, peer, s, adv->baa->attr, &vecarr, NULL,
b57ba6d2 770 afi, safi, from, NULL, NULL, 0, 0, 0);
d62a17ae 771
772 space_remaining =
773 STREAM_CONCAT_REMAIN(s, snlri, STREAM_SIZE(s))
774 - BGP_MAX_PACKET_SIZE_OVERFLOW;
996c9314
LB
775 space_needed = BGP_NLRI_LENGTH + addpath_overhead
776 + bgp_packet_mpattr_prefix_size(
9bcb3eef 777 afi, safi, dest_p);
d62a17ae 778
779 /* If the attributes alone do not leave any room for
780 * NLRI then
781 * return */
782 if (space_remaining < space_needed) {
af4c2728 783 flog_err(
e50f7cfd 784 EC_BGP_UPDGRP_ATTR_LEN,
6cde4b45 785 "u%" PRIu64 ":s%" PRIu64" attributes too long, cannot send UPDATE",
d62a17ae 786 subgrp->update_group->id, subgrp->id);
787
788 /* Flush the FIFO update queue */
789 while (adv)
790 adv = bgp_advertise_clean_subgroup(
791 subgrp, adj);
792 return NULL;
793 }
794
795 if (BGP_DEBUG(update, UPDATE_OUT)
796 || BGP_DEBUG(update, UPDATE_PREFIX)) {
797 memset(send_attr_str, 0, BUFSIZ);
798 send_attr_printed = 0;
799 bgp_dump_attr(adv->baa->attr, send_attr_str,
5022c833 800 sizeof(send_attr_str));
d62a17ae 801 }
802 }
803
804 if ((afi == AFI_IP && safi == SAFI_UNICAST)
805 && !peer_cap_enhe(peer, afi, safi))
9bcb3eef 806 stream_put_prefix_addpath(s, dest_p, addpath_encode,
d62a17ae 807 addpath_tx_id);
808 else {
809 /* Encode the prefix in MP_REACH_NLRI attribute */
9bcb3eef
DS
810 if (dest->pdest)
811 prd = (struct prefix_rd *)bgp_dest_get_prefix(
812 dest->pdest);
d62a17ae 813
b57ba6d2 814 if (safi == SAFI_LABELED_UNICAST) {
9bcb3eef 815 label = bgp_adv_label(dest, path, peer, afi,
d62a17ae 816 safi);
b57ba6d2
MK
817 label_pnt = &label;
818 num_labels = 1;
9b6d8fcf
DS
819 } else if (path && path->extra) {
820 label_pnt = &path->extra->label[0];
821 num_labels = path->extra->num_labels;
b57ba6d2 822 }
d62a17ae 823
824 if (stream_empty(snlri))
825 mpattrlen_pos = bgp_packet_mpattr_start(
826 snlri, peer, afi, safi, &vecarr,
827 adv->baa->attr);
828
9bcb3eef 829 bgp_packet_mpattr_prefix(snlri, afi, safi, dest_p, prd,
b57ba6d2
MK
830 label_pnt, num_labels,
831 addpath_encode, addpath_tx_id,
832 adv->baa->attr);
d62a17ae 833 }
834
835 num_pfx++;
836
9bcb3eef 837 if (bgp_debug_update(NULL, dest_p, subgrp->update_group, 0)) {
d62a17ae 838 char pfx_buf[BGP_PRD_PATH_STRLEN];
839
840 if (!send_attr_printed) {
6cde4b45 841 zlog_debug("u%" PRIu64 ":s%" PRIu64" send UPDATE w/ attr: %s",
d62a17ae 842 subgrp->update_group->id, subgrp->id,
843 send_attr_str);
844 if (!stream_empty(snlri)) {
845 iana_afi_t pkt_afi;
5c525538 846 iana_safi_t pkt_safi;
d62a17ae 847
848 pkt_afi = afi_int2iana(afi);
849 pkt_safi = safi_int2iana(safi);
850 zlog_debug(
adf086ec
DA
851 "u%" PRIu64 ":s%" PRIu64
852 " send MP_REACH for afi/safi %s/%s",
d62a17ae 853 subgrp->update_group->id,
adf086ec
DA
854 subgrp->id,
855 iana_afi2str(pkt_afi),
856 iana_safi2str(pkt_safi));
d62a17ae 857 }
858
859 send_attr_printed = 1;
860 }
861
9bcb3eef
DS
862 bgp_debug_rdpfxpath2str(afi, safi, prd, dest_p,
863 label_pnt, num_labels,
864 addpath_encode, addpath_tx_id,
6c995628 865 &adv->baa->attr->evpn_overlay,
9bcb3eef 866 pfx_buf, sizeof(pfx_buf));
d62a17ae 867 zlog_debug("u%" PRIu64 ":s%" PRIu64 " send UPDATE %s",
868 subgrp->update_group->id, subgrp->id,
869 pfx_buf);
870 }
871
872 /* Synchnorize attribute. */
873 if (adj->attr)
874 bgp_attr_unintern(&adj->attr);
875 else
876 subgrp->scount++;
877
878 adj->attr = bgp_attr_intern(adv->baa->attr);
fde246e8 879next:
d62a17ae 880 adv = bgp_advertise_clean_subgroup(subgrp, adj);
3f9c7369
DS
881 }
882
d62a17ae 883 if (!stream_empty(s)) {
884 if (!stream_empty(snlri)) {
885 bgp_packet_mpattr_end(snlri, mpattrlen_pos);
886 total_attr_len += stream_get_endp(snlri);
887 }
888
889 /* set the total attribute length correctly */
890 stream_putw_at(s, attrlen_pos, total_attr_len);
891
892 if (!stream_empty(snlri)) {
893 packet = stream_dupcat(s, snlri, mpattr_pos);
894 bpacket_attr_vec_arr_update(&vecarr, mpattr_pos);
895 } else
896 packet = stream_dup(s);
897 bgp_packet_set_size(packet);
898 if (bgp_debug_update(NULL, NULL, subgrp->update_group, 0))
ef56aee4
DA
899 zlog_debug(
900 "u%" PRIu64 ":s%" PRIu64
901 " send UPDATE len %zd (max message len: %hu) numpfx %d",
902 subgrp->update_group->id, subgrp->id,
903 (stream_get_endp(packet)
904 - stream_get_getp(packet)),
905 peer->max_packet_size, num_pfx);
d62a17ae 906 pkt = bpacket_queue_add(SUBGRP_PKTQ(subgrp), packet, &vecarr);
907 stream_reset(s);
908 stream_reset(snlri);
909 return pkt;
3f9c7369 910 }
d62a17ae 911 return NULL;
3f9c7369
DS
912}
913
914/* Make BGP withdraw packet. */
915/* For ipv4 unicast:
916 16-octet marker | 2-octet length | 1-octet type |
917 2-octet withdrawn route length | withdrawn prefixes | 2-octet attrlen (=0)
918*/
919/* For other afi/safis:
920 16-octet marker | 2-octet length | 1-octet type |
921 2-octet withdrawn route length (=0) | 2-octet attrlen |
922 mp_unreach attr type | attr len | afi | safi | withdrawn prefixes
923*/
d62a17ae 924struct bpacket *subgroup_withdraw_packet(struct update_subgroup *subgrp)
3f9c7369 925{
d62a17ae 926 struct bpacket *pkt;
927 struct stream *s;
928 struct bgp_adj_out *adj;
929 struct bgp_advertise *adv;
930 struct peer *peer;
9bcb3eef 931 struct bgp_dest *dest;
d62a17ae 932 bgp_size_t unfeasible_len;
933 bgp_size_t total_attr_len;
934 size_t mp_start = 0;
935 size_t attrlen_pos = 0;
936 size_t mplen_pos = 0;
d7c0a89a 937 uint8_t first_time = 1;
d62a17ae 938 afi_t afi;
939 safi_t safi;
940 int space_remaining = 0;
941 int space_needed = 0;
942 int num_pfx = 0;
943 int addpath_encode = 0;
e386c1d5 944 int addpath_overhead = 0;
d7c0a89a 945 uint32_t addpath_tx_id = 0;
b54892e0 946 const struct prefix_rd *prd = NULL;
d62a17ae 947
948
949 if (!subgrp)
950 return NULL;
3f9c7369 951
d62a17ae 952 if (bpacket_queue_is_full(SUBGRP_INST(subgrp), SUBGRP_PKTQ(subgrp)))
953 return NULL;
906ad49b 954
d62a17ae 955 peer = SUBGRP_PEER(subgrp);
956 afi = SUBGRP_AFI(subgrp);
957 safi = SUBGRP_SAFI(subgrp);
958 s = subgrp->work;
959 stream_reset(s);
960 addpath_encode = bgp_addpath_encode_tx(peer, afi, safi);
e386c1d5 961 addpath_overhead = addpath_encode ? BGP_ADDPATH_ID_LEN : 0;
d62a17ae 962
a274fef8 963 while ((adv = bgp_adv_fifo_first(&subgrp->sync->withdraw)) != NULL) {
9bcb3eef 964 const struct prefix *dest_p;
b54892e0 965
9bcb3eef 966 assert(adv->dest);
d62a17ae 967 adj = adv->adj;
9bcb3eef
DS
968 dest = adv->dest;
969 dest_p = bgp_dest_get_prefix(dest);
d62a17ae 970 addpath_tx_id = adj->addpath_tx_id;
971
972 space_remaining =
2d34fb80 973 STREAM_WRITEABLE(s) - BGP_MAX_PACKET_SIZE_OVERFLOW;
9bcb3eef
DS
974 space_needed =
975 BGP_NLRI_LENGTH + addpath_overhead + BGP_TOTAL_ATTR_LEN
976 + bgp_packet_mpattr_prefix_size(afi, safi, dest_p);
d62a17ae 977
978 if (space_remaining < space_needed)
979 break;
980
981 if (stream_empty(s)) {
982 bgp_packet_set_marker(s, BGP_MSG_UPDATE);
983 stream_putw(s, 0); /* unfeasible routes length */
984 } else
985 first_time = 0;
986
987 if (afi == AFI_IP && safi == SAFI_UNICAST
988 && !peer_cap_enhe(peer, afi, safi))
9bcb3eef 989 stream_put_prefix_addpath(s, dest_p, addpath_encode,
d62a17ae 990 addpath_tx_id);
991 else {
9bcb3eef
DS
992 if (dest->pdest)
993 prd = (struct prefix_rd *)bgp_dest_get_prefix(
994 dest->pdest);
d62a17ae 995
b54892e0
DS
996 /* If first time, format the MP_UNREACH header
997 */
d62a17ae 998 if (first_time) {
999 iana_afi_t pkt_afi;
5c525538 1000 iana_safi_t pkt_safi;
d62a17ae 1001
1002 pkt_afi = afi_int2iana(afi);
1003 pkt_safi = safi_int2iana(safi);
1004
1005 attrlen_pos = stream_get_endp(s);
b54892e0
DS
1006 /* total attr length = 0 for now.
1007 * reevaluate later */
d62a17ae 1008 stream_putw(s, 0);
1009 mp_start = stream_get_endp(s);
1010 mplen_pos = bgp_packet_mpunreach_start(s, afi,
1011 safi);
1012 if (bgp_debug_update(NULL, NULL,
1013 subgrp->update_group, 0))
1014 zlog_debug(
adf086ec
DA
1015 "u%" PRIu64 ":s%" PRIu64
1016 " send MP_UNREACH for afi/safi %s/%s",
d62a17ae 1017 subgrp->update_group->id,
adf086ec
DA
1018 subgrp->id,
1019 iana_afi2str(pkt_afi),
1020 iana_safi2str(pkt_safi));
d62a17ae 1021 }
1022
9bcb3eef 1023 bgp_packet_mpunreach_prefix(s, dest_p, afi, safi, prd,
b57ba6d2 1024 NULL, 0, addpath_encode,
d62a17ae 1025 addpath_tx_id, NULL);
1026 }
1027
1028 num_pfx++;
1029
9bcb3eef 1030 if (bgp_debug_update(NULL, dest_p, subgrp->update_group, 0)) {
d62a17ae 1031 char pfx_buf[BGP_PRD_PATH_STRLEN];
1032
9bcb3eef 1033 bgp_debug_rdpfxpath2str(afi, safi, prd, dest_p, NULL, 0,
d62a17ae 1034 addpath_encode, addpath_tx_id,
6c995628 1035 NULL, pfx_buf, sizeof(pfx_buf));
6cde4b45 1036 zlog_debug("u%" PRIu64 ":s%" PRIu64" send UPDATE %s -- unreachable",
d62a17ae 1037 subgrp->update_group->id, subgrp->id,
1038 pfx_buf);
1039 }
1040
1041 subgrp->scount--;
1042
9bcb3eef 1043 bgp_adj_out_remove_subgroup(dest, adj, subgrp);
3f9c7369
DS
1044 }
1045
d62a17ae 1046 if (!stream_empty(s)) {
1047 if (afi == AFI_IP && safi == SAFI_UNICAST
1048 && !peer_cap_enhe(peer, afi, safi)) {
1049 unfeasible_len = stream_get_endp(s) - BGP_HEADER_SIZE
1050 - BGP_UNFEASIBLE_LEN;
1051 stream_putw_at(s, BGP_HEADER_SIZE, unfeasible_len);
1052 stream_putw(s, 0);
1053 } else {
1054 /* Set the mp_unreach attr's length */
1055 bgp_packet_mpunreach_end(s, mplen_pos);
1056
1057 /* Set total path attribute length. */
1058 total_attr_len = stream_get_endp(s) - mp_start;
1059 stream_putw_at(s, attrlen_pos, total_attr_len);
1060 }
1061 bgp_packet_set_size(s);
1062 if (bgp_debug_update(NULL, NULL, subgrp->update_group, 0))
6cde4b45 1063 zlog_debug("u%" PRIu64 ":s%" PRIu64" send UPDATE (withdraw) len %zd numpfx %d",
d62a17ae 1064 subgrp->update_group->id, subgrp->id,
1065 (stream_get_endp(s) - stream_get_getp(s)),
1066 num_pfx);
1067 pkt = bpacket_queue_add(SUBGRP_PKTQ(subgrp), stream_dup(s),
1068 NULL);
1069 stream_reset(s);
1070 return pkt;
3f9c7369 1071 }
3f9c7369 1072
d62a17ae 1073 return NULL;
3f9c7369
DS
1074}
1075
d62a17ae 1076void subgroup_default_update_packet(struct update_subgroup *subgrp,
1077 struct attr *attr, struct peer *from)
3f9c7369 1078{
d62a17ae 1079 struct stream *s;
1080 struct peer *peer;
1081 struct prefix p;
1082 unsigned long pos;
1083 bgp_size_t total_attr_len;
1084 afi_t afi;
1085 safi_t safi;
1086 struct bpacket_attr_vec_arr vecarr;
1087 int addpath_encode = 0;
1088
1089 if (DISABLE_BGP_ANNOUNCE)
1090 return;
1091
1092 if (!subgrp)
1093 return;
1094
1095 peer = SUBGRP_PEER(subgrp);
1096 afi = SUBGRP_AFI(subgrp);
1097 safi = SUBGRP_SAFI(subgrp);
1098 bpacket_attr_vec_arr_reset(&vecarr);
1099 addpath_encode = bgp_addpath_encode_tx(peer, afi, safi);
1100
cbb65f5e
RW
1101 memset(&p, 0, sizeof(p));
1102 p.family = afi2family(afi);
1103 p.prefixlen = 0;
d62a17ae 1104
1105 /* Logging the attribute. */
1106 if (bgp_debug_update(NULL, &p, subgrp->update_group, 0)) {
1107 char attrstr[BUFSIZ];
d62a17ae 1108 /* ' with addpath ID ' 17
1109 * max strlen of uint32 + 10
1110 * +/- (just in case) + 1
1111 * null terminator + 1
1112 * ============================ 29 */
1113 char tx_id_buf[30];
1114
1115 attrstr[0] = '\0';
1116
5022c833 1117 bgp_dump_attr(attr, attrstr, sizeof(attrstr));
d62a17ae 1118
1119 if (addpath_encode)
1120 snprintf(tx_id_buf, sizeof(tx_id_buf),
1121 " with addpath ID %u",
1122 BGP_ADDPATH_TX_ID_FOR_DEFAULT_ORIGINATE);
cbb263cf
DS
1123 else
1124 tx_id_buf[0] = '\0';
d62a17ae 1125
2dbe669b
DA
1126 zlog_debug("u%" PRIu64 ":s%" PRIu64 " send UPDATE %pFX%s %s",
1127 (SUBGRP_UPDGRP(subgrp))->id, subgrp->id, &p,
1128 tx_id_buf, attrstr);
d62a17ae 1129 }
3f9c7369 1130
ef56aee4 1131 s = stream_new(peer->max_packet_size);
3f9c7369 1132
d62a17ae 1133 /* Make BGP update packet. */
1134 bgp_packet_set_marker(s, BGP_MSG_UPDATE);
3f9c7369 1135
d62a17ae 1136 /* Unfeasible Routes Length. */
1137 stream_putw(s, 0);
3f9c7369 1138
d62a17ae 1139 /* Make place for total attribute length. */
1140 pos = stream_get_endp(s);
1141 stream_putw(s, 0);
1142 total_attr_len = bgp_packet_attribute(
1143 NULL, peer, s, attr, &vecarr, &p, afi, safi, from, NULL, NULL,
b57ba6d2 1144 0, addpath_encode, BGP_ADDPATH_TX_ID_FOR_DEFAULT_ORIGINATE);
3f9c7369 1145
d62a17ae 1146 /* Set Total Path Attribute Length. */
1147 stream_putw_at(s, pos, total_attr_len);
3f9c7369 1148
d62a17ae 1149 /* NLRI set. */
1150 if (p.family == AF_INET && safi == SAFI_UNICAST
1151 && !peer_cap_enhe(peer, afi, safi))
1152 stream_put_prefix_addpath(
1153 s, &p, addpath_encode,
1154 BGP_ADDPATH_TX_ID_FOR_DEFAULT_ORIGINATE);
3f9c7369 1155
d62a17ae 1156 /* Set size. */
1157 bgp_packet_set_size(s);
3f9c7369 1158
d62a17ae 1159 (void)bpacket_queue_add(SUBGRP_PKTQ(subgrp), s, &vecarr);
2fc102e1 1160 subgroup_trigger_write(subgrp);
fea96c55 1161 subgrp->scount++;
3f9c7369
DS
1162}
1163
d62a17ae 1164void subgroup_default_withdraw_packet(struct update_subgroup *subgrp)
3f9c7369 1165{
d62a17ae 1166 struct peer *peer;
1167 struct stream *s;
1168 struct prefix p;
1169 unsigned long attrlen_pos = 0;
1170 unsigned long cp;
1171 bgp_size_t unfeasible_len;
1172 bgp_size_t total_attr_len = 0;
1173 size_t mp_start = 0;
1174 size_t mplen_pos = 0;
1175 afi_t afi;
1176 safi_t safi;
1177 int addpath_encode = 0;
1178
1179 if (DISABLE_BGP_ANNOUNCE)
1180 return;
1181
1182 peer = SUBGRP_PEER(subgrp);
1183 afi = SUBGRP_AFI(subgrp);
1184 safi = SUBGRP_SAFI(subgrp);
1185 addpath_encode = bgp_addpath_encode_tx(peer, afi, safi);
1186
cbb65f5e
RW
1187 memset(&p, 0, sizeof(p));
1188 p.family = afi2family(afi);
1189 p.prefixlen = 0;
d62a17ae 1190
1191 if (bgp_debug_update(NULL, &p, subgrp->update_group, 0)) {
d62a17ae 1192 /* ' with addpath ID ' 17
1193 * max strlen of uint32 + 10
1194 * +/- (just in case) + 1
1195 * null terminator + 1
1196 * ============================ 29 */
1197 char tx_id_buf[30];
1198
1199 if (addpath_encode)
1200 snprintf(tx_id_buf, sizeof(tx_id_buf),
1201 " with addpath ID %u",
1202 BGP_ADDPATH_TX_ID_FOR_DEFAULT_ORIGINATE);
1203
2dbe669b
DA
1204 zlog_debug("u%" PRIu64 ":s%" PRIu64
1205 " send UPDATE %pFX%s -- unreachable",
1206 (SUBGRP_UPDGRP(subgrp))->id, subgrp->id, &p,
1207 tx_id_buf);
d62a17ae 1208 }
3f9c7369 1209
ef56aee4 1210 s = stream_new(peer->max_packet_size);
3f9c7369 1211
d62a17ae 1212 /* Make BGP update packet. */
1213 bgp_packet_set_marker(s, BGP_MSG_UPDATE);
3f9c7369 1214
d62a17ae 1215 /* Unfeasible Routes Length. */;
1216 cp = stream_get_endp(s);
1217 stream_putw(s, 0);
3f9c7369 1218
d62a17ae 1219 /* Withdrawn Routes. */
1220 if (p.family == AF_INET && safi == SAFI_UNICAST
1221 && !peer_cap_enhe(peer, afi, safi)) {
1222 stream_put_prefix_addpath(
1223 s, &p, addpath_encode,
1224 BGP_ADDPATH_TX_ID_FOR_DEFAULT_ORIGINATE);
3f9c7369 1225
d62a17ae 1226 unfeasible_len = stream_get_endp(s) - cp - 2;
3f9c7369 1227
d62a17ae 1228 /* Set unfeasible len. */
1229 stream_putw_at(s, cp, unfeasible_len);
3f9c7369 1230
d62a17ae 1231 /* Set total path attribute length. */
1232 stream_putw(s, 0);
1233 } else {
1234 attrlen_pos = stream_get_endp(s);
1235 stream_putw(s, 0);
1236 mp_start = stream_get_endp(s);
1237 mplen_pos = bgp_packet_mpunreach_start(s, afi, safi);
1238 bgp_packet_mpunreach_prefix(
b57ba6d2 1239 s, &p, afi, safi, NULL, NULL, 0, addpath_encode,
d62a17ae 1240 BGP_ADDPATH_TX_ID_FOR_DEFAULT_ORIGINATE, NULL);
3f9c7369 1241
d62a17ae 1242 /* Set the mp_unreach attr's length */
1243 bgp_packet_mpunreach_end(s, mplen_pos);
3f9c7369 1244
d62a17ae 1245 /* Set total path attribute length. */
1246 total_attr_len = stream_get_endp(s) - mp_start;
1247 stream_putw_at(s, attrlen_pos, total_attr_len);
1248 }
1249
1250 bgp_packet_set_size(s);
1251
1252 (void)bpacket_queue_add(SUBGRP_PKTQ(subgrp), s, NULL);
2fc102e1 1253 subgroup_trigger_write(subgrp);
fea96c55 1254 subgrp->scount--;
3f9c7369
DS
1255}
1256
1257static void
d62a17ae 1258bpacket_vec_arr_inherit_attr_flags(struct bpacket_attr_vec_arr *vecarr,
1259 bpacket_attr_vec_type type,
1260 struct attr *attr)
3f9c7369 1261{
d62a17ae 1262 if (CHECK_FLAG(attr->rmap_change_flags,
1263 BATTR_RMAP_NEXTHOP_PEER_ADDRESS))
1264 SET_FLAG(vecarr->entries[BGP_ATTR_VEC_NH].flags,
1265 BPKT_ATTRVEC_FLAGS_RMAP_NH_PEER_ADDRESS);
1266
1267 if (CHECK_FLAG(attr->rmap_change_flags, BATTR_REFLECTED))
1268 SET_FLAG(vecarr->entries[BGP_ATTR_VEC_NH].flags,
1269 BPKT_ATTRVEC_FLAGS_REFLECTED);
1270
1271 if (CHECK_FLAG(attr->rmap_change_flags, BATTR_RMAP_NEXTHOP_UNCHANGED))
1272 SET_FLAG(vecarr->entries[BGP_ATTR_VEC_NH].flags,
1273 BPKT_ATTRVEC_FLAGS_RMAP_NH_UNCHANGED);
1274
1275 if (CHECK_FLAG(attr->rmap_change_flags, BATTR_RMAP_IPV4_NHOP_CHANGED))
1276 SET_FLAG(vecarr->entries[BGP_ATTR_VEC_NH].flags,
1277 BPKT_ATTRVEC_FLAGS_RMAP_IPV4_NH_CHANGED);
1278
1279 if (CHECK_FLAG(attr->rmap_change_flags,
1280 BATTR_RMAP_IPV6_GLOBAL_NHOP_CHANGED))
1281 SET_FLAG(vecarr->entries[BGP_ATTR_VEC_NH].flags,
1282 BPKT_ATTRVEC_FLAGS_RMAP_IPV6_GNH_CHANGED);
1283
1284 if (CHECK_FLAG(attr->rmap_change_flags,
1285 BATTR_RMAP_IPV6_LL_NHOP_CHANGED))
1286 SET_FLAG(vecarr->entries[BGP_ATTR_VEC_NH].flags,
1287 BPKT_ATTRVEC_FLAGS_RMAP_IPV6_LNH_CHANGED);
3f9c7369
DS
1288}
1289
1290/* Reset the Attributes vector array. The vector array is used to override
1291 * certain output parameters in the packet for a particular peer
1292 */
d62a17ae 1293void bpacket_attr_vec_arr_reset(struct bpacket_attr_vec_arr *vecarr)
3f9c7369 1294{
d62a17ae 1295 int i;
3f9c7369 1296
d62a17ae 1297 if (!vecarr)
1298 return;
3f9c7369 1299
d62a17ae 1300 i = 0;
1301 while (i < BGP_ATTR_VEC_MAX) {
1302 vecarr->entries[i].flags = 0;
1303 vecarr->entries[i].offset = 0;
1304 i++;
1305 }
3f9c7369
DS
1306}
1307
1308/* Setup a particular node entry in the vecarr */
d62a17ae 1309void bpacket_attr_vec_arr_set_vec(struct bpacket_attr_vec_arr *vecarr,
1310 bpacket_attr_vec_type type, struct stream *s,
1311 struct attr *attr)
3f9c7369 1312{
d62a17ae 1313 if (!vecarr)
1314 return;
1315 assert(type < BGP_ATTR_VEC_MAX);
1316
1317 SET_FLAG(vecarr->entries[type].flags, BPKT_ATTRVEC_FLAGS_UPDATED);
1318 vecarr->entries[type].offset = stream_get_endp(s);
1319 if (attr)
1320 bpacket_vec_arr_inherit_attr_flags(vecarr, type, attr);
3f9c7369 1321}