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718e3744 1/* zebra client
896014f4
DL
2 * Copyright (C) 1997, 98, 99 Kunihiro Ishiguro
3 *
4 * This file is part of GNU Zebra.
5 *
6 * GNU Zebra is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; either version 2, or (at your option) any
9 * later version.
10 *
11 * GNU Zebra is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License along
17 * with this program; see the file COPYING; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19 */
718e3744 20
21#include <zebra.h>
22
23#include "command.h"
24#include "stream.h"
25#include "network.h"
26#include "prefix.h"
27#include "log.h"
28#include "sockunion.h"
29#include "zclient.h"
30#include "routemap.h"
31#include "thread.h"
3f9c7369 32#include "queue.h"
6e919709 33#include "memory.h"
856ca177 34#include "lib/json.h"
2376c3f2 35#include "lib/bfd.h"
94effaf0 36#include "lib/route_opaque.h"
039f3a34 37#include "filter.h"
cd1964ff 38#include "mpls.h"
128ea8ab 39#include "vxlan.h"
6cfe5d15 40#include "pbr.h"
718e3744 41
42#include "bgpd/bgpd.h"
43#include "bgpd/bgp_route.h"
44#include "bgpd/bgp_attr.h"
e46723a5 45#include "bgpd/bgp_aspath.h"
718e3744 46#include "bgpd/bgp_nexthop.h"
47#include "bgpd/bgp_zebra.h"
48#include "bgpd/bgp_fsm.h"
a39275d7 49#include "bgpd/bgp_debug.h"
14454c9f 50#include "bgpd/bgp_errors.h"
8196f13d 51#include "bgpd/bgp_mpath.h"
fb018d25 52#include "bgpd/bgp_nexthop.h"
ffd0c037 53#include "bgpd/bgp_nht.h"
8c4f6381 54#include "bgpd/bgp_bfd.h"
cd1964ff 55#include "bgpd/bgp_label.h"
49e5a4a0 56#ifdef ENABLE_BGP_VNC
d62a17ae 57#include "bgpd/rfapi/rfapi_backend.h"
58#include "bgpd/rfapi/vnc_export_bgp.h"
65efcfce 59#endif
128ea8ab 60#include "bgpd/bgp_evpn.h"
ddb5b488 61#include "bgpd/bgp_mplsvpn.h"
955bfd98 62#include "bgpd/bgp_labelpool.h"
30d50e6d 63#include "bgpd/bgp_pbr.h"
0b9d9cd0 64#include "bgpd/bgp_evpn_private.h"
c44ab6f1 65#include "bgpd/bgp_evpn_mh.h"
6a69ac51 66#include "bgpd/bgp_mac.h"
a383bfc7 67#include "bgpd/bgp_trace.h"
959331a3
RW
68#include "bgpd/bgp_community.h"
69#include "bgpd/bgp_lcommunity.h"
6b0655a2 70
718e3744 71/* All information about zebra. */
228da428 72struct zclient *zclient = NULL;
718e3744 73
0d020cd6
PR
74/* hook to indicate vrf status change for SNMP */
75DEFINE_HOOK(bgp_vrf_status_changed, (struct bgp *bgp, struct interface *ifp),
8451921b 76 (bgp, ifp));
0d020cd6 77
ad4cbda1 78/* Can we install into zebra? */
3dc339cd 79static inline bool bgp_install_info_to_zebra(struct bgp *bgp)
ad4cbda1 80{
d62a17ae 81 if (zclient->sock <= 0)
3dc339cd 82 return false;
ad4cbda1 83
bb4ef1ae 84 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp)) {
15569c58
DA
85 zlog_debug(
86 "%s: No zebra instance to talk to, not installing information",
87 __func__);
3dc339cd 88 return false;
bb4ef1ae 89 }
ad4cbda1 90
3dc339cd 91 return true;
ad4cbda1 92}
93
afbb1c59
LB
94int zclient_num_connects;
95
18a6dce6 96/* Router-id update message from zebra. */
121f9dee 97static int bgp_router_id_update(ZAPI_CALLBACK_ARGS)
718e3744 98{
d62a17ae 99 struct prefix router_id;
718e3744 100
d62a17ae 101 zebra_router_id_update_read(zclient->ibuf, &router_id);
a39275d7 102
2dbe669b
DA
103 if (BGP_DEBUG(zebra, ZEBRA))
104 zlog_debug("Rx Router Id update VRF %u Id %pFX", vrf_id,
105 &router_id);
a39275d7 106
d62a17ae 107 bgp_router_id_zebra_bump(vrf_id, &router_id);
108 return 0;
718e3744 109}
110
fb018d25 111/* Nexthop update message from zebra. */
121f9dee 112static int bgp_read_nexthop_update(ZAPI_CALLBACK_ARGS)
fb018d25 113{
121f9dee 114 bgp_parse_nexthop_update(cmd, vrf_id);
d62a17ae 115 return 0;
078430f6
DS
116}
117
4a04e5f7 118/* Set or clear interface on which unnumbered neighbor is configured. This
119 * would in turn cause BGP to initiate or turn off IPv6 RAs on this
120 * interface.
121 */
d62a17ae 122static void bgp_update_interface_nbrs(struct bgp *bgp, struct interface *ifp,
123 struct interface *upd_ifp)
4a04e5f7 124{
d62a17ae 125 struct listnode *node, *nnode;
126 struct peer *peer;
127
128 for (ALL_LIST_ELEMENTS(bgp->peer, node, nnode, peer)) {
129 if (peer->conf_if && (strcmp(peer->conf_if, ifp->name) == 0)) {
130 if (upd_ifp) {
131 peer->ifp = upd_ifp;
132 bgp_zebra_initiate_radv(bgp, peer);
133 } else {
134 bgp_zebra_terminate_radv(bgp, peer);
135 peer->ifp = upd_ifp;
136 }
137 }
138 }
4a04e5f7 139}
140
a243d1db 141static int bgp_read_fec_update(ZAPI_CALLBACK_ARGS)
cd1964ff 142{
d62a17ae 143 bgp_parse_fec_update();
144 return 0;
cd1964ff
DS
145}
146
d62a17ae 147static void bgp_start_interface_nbrs(struct bgp *bgp, struct interface *ifp)
a80beece 148{
d62a17ae 149 struct listnode *node, *nnode;
150 struct peer *peer;
151
152 for (ALL_LIST_ELEMENTS(bgp->peer, node, nnode, peer)) {
153 if (peer->conf_if && (strcmp(peer->conf_if, ifp->name) == 0)
feb17238 154 && !peer_established(peer)) {
d62a17ae 155 if (peer_active(peer))
156 BGP_EVENT_ADD(peer, BGP_Stop);
157 BGP_EVENT_ADD(peer, BGP_Start);
158 }
159 }
a80beece
DS
160}
161
d62a17ae 162static void bgp_nbr_connected_add(struct bgp *bgp, struct nbr_connected *ifc)
a197c47c 163{
d62a17ae 164 struct listnode *node;
165 struct connected *connected;
166 struct interface *ifp;
167 struct prefix *p;
168
169 /* Kick-off the FSM for any relevant peers only if there is a
170 * valid local address on the interface.
171 */
172 ifp = ifc->ifp;
173 for (ALL_LIST_ELEMENTS_RO(ifp->connected, node, connected)) {
174 p = connected->address;
175 if (p->family == AF_INET6
176 && IN6_IS_ADDR_LINKLOCAL(&p->u.prefix6))
177 break;
178 }
179 if (!connected)
180 return;
181
182 bgp_start_interface_nbrs(bgp, ifp);
a197c47c
DS
183}
184
d62a17ae 185static void bgp_nbr_connected_delete(struct bgp *bgp, struct nbr_connected *ifc,
186 int del)
a80beece 187{
d62a17ae 188 struct listnode *node, *nnode;
189 struct peer *peer;
190 struct interface *ifp;
191
192 for (ALL_LIST_ELEMENTS(bgp->peer, node, nnode, peer)) {
193 if (peer->conf_if
194 && (strcmp(peer->conf_if, ifc->ifp->name) == 0)) {
195 peer->last_reset = PEER_DOWN_NBR_ADDR_DEL;
196 BGP_EVENT_ADD(peer, BGP_Stop);
197 }
198 }
199 /* Free neighbor also, if we're asked to. */
200 if (del) {
201 ifp = ifc->ifp;
202 listnode_delete(ifp->nbr_connected, ifc);
203 nbr_connected_free(ifc);
204 }
a80beece
DS
205}
206
3c3c3252 207static int bgp_ifp_destroy(struct interface *ifp)
718e3744 208{
d62a17ae 209 struct bgp *bgp;
718e3744 210
096f7609 211 bgp = ifp->vrf->info;
a4499b83 212
d62a17ae 213 if (BGP_DEBUG(zebra, ZEBRA))
096f7609
IR
214 zlog_debug("Rx Intf del VRF %u IF %s", ifp->vrf->vrf_id,
215 ifp->name);
a39275d7 216
0d020cd6 217 if (bgp) {
85751d1d 218 bgp_update_interface_nbrs(bgp, ifp, NULL);
0d020cd6
PR
219 hook_call(bgp_vrf_status_changed, bgp, ifp);
220 }
64745052 221
6a69ac51
DS
222 bgp_mac_del_mac_entry(ifp);
223
d62a17ae 224 return 0;
718e3744 225}
226
ddbf3e60 227static int bgp_ifp_up(struct interface *ifp)
718e3744 228{
d62a17ae 229 struct connected *c;
230 struct nbr_connected *nc;
231 struct listnode *node, *nnode;
232 struct bgp *bgp;
6aeb9e78 233
096f7609 234 bgp = ifp->vrf->info;
718e3744 235
6a69ac51
DS
236 bgp_mac_add_mac_entry(ifp);
237
d62a17ae 238 if (BGP_DEBUG(zebra, ZEBRA))
096f7609
IR
239 zlog_debug("Rx Intf up VRF %u IF %s", ifp->vrf->vrf_id,
240 ifp->name);
ad4cbda1 241
85751d1d
DS
242 if (!bgp)
243 return 0;
244
d62a17ae 245 for (ALL_LIST_ELEMENTS(ifp->connected, node, nnode, c))
246 bgp_connected_add(bgp, c);
718e3744 247
d62a17ae 248 for (ALL_LIST_ELEMENTS(ifp->nbr_connected, node, nnode, nc))
249 bgp_nbr_connected_add(bgp, nc);
a80beece 250
0d020cd6 251 hook_call(bgp_vrf_status_changed, bgp, ifp);
8761cd6d
DS
252 bgp_nht_ifp_up(ifp);
253
d62a17ae 254 return 0;
718e3744 255}
256
b0b69e59 257static int bgp_ifp_down(struct interface *ifp)
718e3744 258{
d62a17ae 259 struct connected *c;
260 struct nbr_connected *nc;
261 struct listnode *node, *nnode;
262 struct bgp *bgp;
c19fe3c7 263 struct peer *peer;
6aeb9e78 264
096f7609 265 bgp = ifp->vrf->info;
718e3744 266
6a69ac51
DS
267 bgp_mac_del_mac_entry(ifp);
268
d62a17ae 269 if (BGP_DEBUG(zebra, ZEBRA))
096f7609
IR
270 zlog_debug("Rx Intf down VRF %u IF %s", ifp->vrf->vrf_id,
271 ifp->name);
ad4cbda1 272
85751d1d
DS
273 if (!bgp)
274 return 0;
275
d62a17ae 276 for (ALL_LIST_ELEMENTS(ifp->connected, node, nnode, c))
277 bgp_connected_delete(bgp, c);
718e3744 278
d62a17ae 279 for (ALL_LIST_ELEMENTS(ifp->nbr_connected, node, nnode, nc))
280 bgp_nbr_connected_delete(bgp, nc, 1);
a80beece 281
d62a17ae 282 /* Fast external-failover */
c19fe3c7 283 if (!CHECK_FLAG(bgp->flags, BGP_FLAG_NO_FAST_EXT_FAILOVER)) {
718e3744 284
d62a17ae 285 for (ALL_LIST_ELEMENTS(bgp->peer, node, nnode, peer)) {
50bd8995 286 /* Take down directly connected peers. */
c8d6f0d6 287 if ((peer->ttl != BGP_DEFAULT_TTL)
e2521429 288 && (peer->gtsm_hops != BGP_GTSM_HOPS_CONNECTED))
d62a17ae 289 continue;
718e3744 290
d62a17ae 291 if (ifp == peer->nexthop.ifp) {
292 BGP_EVENT_ADD(peer, BGP_Stop);
293 peer->last_reset = PEER_DOWN_IF_DOWN;
294 }
295 }
296 }
718e3744 297
0d020cd6 298 hook_call(bgp_vrf_status_changed, bgp, ifp);
8761cd6d
DS
299 bgp_nht_ifp_down(ifp);
300
d62a17ae 301 return 0;
718e3744 302}
303
121f9dee 304static int bgp_interface_address_add(ZAPI_CALLBACK_ARGS)
718e3744 305{
d62a17ae 306 struct connected *ifc;
2f9123e0
DS
307 struct bgp *bgp;
308
309 bgp = bgp_lookup_by_vrf_id(vrf_id);
d62a17ae 310
121f9dee 311 ifc = zebra_interface_address_read(cmd, zclient->ibuf, vrf_id);
d62a17ae 312
313 if (ifc == NULL)
314 return 0;
315
2dbe669b
DA
316 if (bgp_debug_zebra(ifc->address))
317 zlog_debug("Rx Intf address add VRF %u IF %s addr %pFX", vrf_id,
318 ifc->ifp->name, ifc->address);
d62a17ae 319
85751d1d
DS
320 if (!bgp)
321 return 0;
322
d62a17ae 323 if (if_is_operative(ifc->ifp)) {
d62a17ae 324 bgp_connected_add(bgp, ifc);
2f9123e0 325
d62a17ae 326 /* If we have learnt of any neighbors on this interface,
327 * check to kick off any BGP interface-based neighbors,
328 * but only if this is a link-local address.
329 */
330 if (IN6_IS_ADDR_LINKLOCAL(&ifc->address->u.prefix6)
331 && !list_isempty(ifc->ifp->nbr_connected))
332 bgp_start_interface_nbrs(bgp, ifc->ifp);
333 }
334
335 return 0;
718e3744 336}
337
121f9dee 338static int bgp_interface_address_delete(ZAPI_CALLBACK_ARGS)
718e3744 339{
f3d20a2a 340 struct listnode *node, *nnode;
d62a17ae 341 struct connected *ifc;
f3d20a2a 342 struct peer *peer;
d62a17ae 343 struct bgp *bgp;
f3d20a2a 344 struct prefix *addr;
6aeb9e78 345
2f9123e0 346 bgp = bgp_lookup_by_vrf_id(vrf_id);
2f9123e0 347
121f9dee 348 ifc = zebra_interface_address_read(cmd, zclient->ibuf, vrf_id);
718e3744 349
d62a17ae 350 if (ifc == NULL)
351 return 0;
718e3744 352
2dbe669b
DA
353 if (bgp_debug_zebra(ifc->address))
354 zlog_debug("Rx Intf address del VRF %u IF %s addr %pFX", vrf_id,
355 ifc->ifp->name, ifc->address);
a39275d7 356
85751d1d 357 if (bgp && if_is_operative(ifc->ifp)) {
2f9123e0 358 bgp_connected_delete(bgp, ifc);
d62a17ae 359 }
718e3744 360
f3d20a2a
DS
361 addr = ifc->address;
362
363 if (bgp) {
364 /*
365 * When we are using the v6 global as part of the peering
366 * nexthops and we are removing it, then we need to
367 * clear the peer data saved for that nexthop and
368 * cause a re-announcement of the route. Since
369 * we do not want the peering to bounce.
370 */
371 for (ALL_LIST_ELEMENTS(bgp->peer, node, nnode, peer)) {
372 afi_t afi;
373 safi_t safi;
374
375 if (addr->family == AF_INET)
376 continue;
377
378 if (!IN6_IS_ADDR_LINKLOCAL(&addr->u.prefix6)
379 && memcmp(&peer->nexthop.v6_global,
380 &addr->u.prefix6, 16)
381 == 0) {
382 memset(&peer->nexthop.v6_global, 0, 16);
383 FOREACH_AFI_SAFI (afi, safi)
384 bgp_announce_route(peer, afi, safi,
385 true);
386 }
387 }
388 }
389
721c0857 390 connected_free(&ifc);
718e3744 391
d62a17ae 392 return 0;
718e3744 393}
394
121f9dee 395static int bgp_interface_nbr_address_add(ZAPI_CALLBACK_ARGS)
a80beece 396{
d62a17ae 397 struct nbr_connected *ifc = NULL;
398 struct bgp *bgp;
399
121f9dee 400 ifc = zebra_interface_nbr_address_read(cmd, zclient->ibuf, vrf_id);
d62a17ae 401
402 if (ifc == NULL)
403 return 0;
404
2dbe669b
DA
405 if (bgp_debug_zebra(ifc->address))
406 zlog_debug("Rx Intf neighbor add VRF %u IF %s addr %pFX",
407 vrf_id, ifc->ifp->name, ifc->address);
d62a17ae 408
409 if (if_is_operative(ifc->ifp)) {
410 bgp = bgp_lookup_by_vrf_id(vrf_id);
411 if (bgp)
412 bgp_nbr_connected_add(bgp, ifc);
413 }
414
415 return 0;
a80beece
DS
416}
417
121f9dee 418static int bgp_interface_nbr_address_delete(ZAPI_CALLBACK_ARGS)
a80beece 419{
d62a17ae 420 struct nbr_connected *ifc = NULL;
421 struct bgp *bgp;
6aeb9e78 422
121f9dee 423 ifc = zebra_interface_nbr_address_read(cmd, zclient->ibuf, vrf_id);
a80beece 424
d62a17ae 425 if (ifc == NULL)
426 return 0;
a80beece 427
2dbe669b
DA
428 if (bgp_debug_zebra(ifc->address))
429 zlog_debug("Rx Intf neighbor del VRF %u IF %s addr %pFX",
430 vrf_id, ifc->ifp->name, ifc->address);
a80beece 431
d62a17ae 432 if (if_is_operative(ifc->ifp)) {
433 bgp = bgp_lookup_by_vrf_id(vrf_id);
434 if (bgp)
435 bgp_nbr_connected_delete(bgp, ifc, 0);
436 }
a80beece 437
d62a17ae 438 nbr_connected_free(ifc);
a80beece 439
d62a17ae 440 return 0;
a80beece
DS
441}
442
bfcd43b2 443/* VRF update for an interface. */
121f9dee 444static int bgp_interface_vrf_update(ZAPI_CALLBACK_ARGS)
bfcd43b2 445{
d62a17ae 446 struct interface *ifp;
447 vrf_id_t new_vrf_id;
448 struct connected *c;
449 struct nbr_connected *nc;
450 struct listnode *node, *nnode;
451 struct bgp *bgp;
c19fe3c7 452 struct peer *peer;
bfcd43b2 453
d62a17ae 454 ifp = zebra_interface_vrf_update_read(zclient->ibuf, vrf_id,
455 &new_vrf_id);
456 if (!ifp)
457 return 0;
bfcd43b2 458
d62a17ae 459 if (BGP_DEBUG(zebra, ZEBRA) && ifp)
460 zlog_debug("Rx Intf VRF change VRF %u IF %s NewVRF %u", vrf_id,
461 ifp->name, new_vrf_id);
bfcd43b2 462
d62a17ae 463 bgp = bgp_lookup_by_vrf_id(vrf_id);
bfcd43b2 464
85751d1d
DS
465 if (bgp) {
466 for (ALL_LIST_ELEMENTS(ifp->connected, node, nnode, c))
467 bgp_connected_delete(bgp, c);
bfcd43b2 468
85751d1d
DS
469 for (ALL_LIST_ELEMENTS(ifp->nbr_connected, node, nnode, nc))
470 bgp_nbr_connected_delete(bgp, nc, 1);
bfcd43b2 471
85751d1d
DS
472 /* Fast external-failover */
473 if (!CHECK_FLAG(bgp->flags, BGP_FLAG_NO_FAST_EXT_FAILOVER)) {
474 for (ALL_LIST_ELEMENTS(bgp->peer, node, nnode, peer)) {
c8d6f0d6 475 if ((peer->ttl != BGP_DEFAULT_TTL)
e2521429
DA
476 && (peer->gtsm_hops
477 != BGP_GTSM_HOPS_CONNECTED))
85751d1d 478 continue;
bfcd43b2 479
85751d1d
DS
480 if (ifp == peer->nexthop.ifp)
481 BGP_EVENT_ADD(peer, BGP_Stop);
482 }
d62a17ae 483 }
484 }
bfcd43b2 485
a36898e7 486 if_update_to_new_vrf(ifp, new_vrf_id);
bfcd43b2 487
d62a17ae 488 bgp = bgp_lookup_by_vrf_id(new_vrf_id);
489 if (!bgp)
490 return 0;
bfcd43b2 491
d62a17ae 492 for (ALL_LIST_ELEMENTS(ifp->connected, node, nnode, c))
493 bgp_connected_add(bgp, c);
bfcd43b2 494
d62a17ae 495 for (ALL_LIST_ELEMENTS(ifp->nbr_connected, node, nnode, nc))
496 bgp_nbr_connected_add(bgp, nc);
0d020cd6
PR
497
498 hook_call(bgp_vrf_status_changed, bgp, ifp);
d62a17ae 499 return 0;
bfcd43b2 500}
501
718e3744 502/* Zebra route add and delete treatment. */
121f9dee 503static int zebra_read_route(ZAPI_CALLBACK_ARGS)
718e3744 504{
9de1f7ff 505 enum nexthop_types_t nhtype;
0789eb69 506 enum blackhole_type bhtype = BLACKHOLE_UNSPEC;
74489921 507 struct zapi_route api;
0789eb69 508 union g_addr nexthop = {};
9de1f7ff 509 ifindex_t ifindex;
74489921 510 int add, i;
d62a17ae 511 struct bgp *bgp;
512
513 bgp = bgp_lookup_by_vrf_id(vrf_id);
514 if (!bgp)
515 return 0;
516
74489921
RW
517 if (zapi_route_decode(zclient->ibuf, &api) < 0)
518 return -1;
d62a17ae 519
74489921
RW
520 /* we completely ignore srcdest routes for now. */
521 if (CHECK_FLAG(api.message, ZAPI_MESSAGE_SRCPFX))
522 return 0;
d62a17ae 523
74489921
RW
524 /* ignore link-local address. */
525 if (api.prefix.family == AF_INET6
526 && IN6_IS_ADDR_LINKLOCAL(&api.prefix.u.prefix6))
527 return 0;
d62a17ae 528
74489921 529 ifindex = api.nexthops[0].ifindex;
9de1f7ff 530 nhtype = api.nexthops[0].type;
d62a17ae 531
0789eb69
KM
532 /* api_nh structure has union of gate and bh_type */
533 if (nhtype == NEXTHOP_TYPE_BLACKHOLE) {
534 /* bh_type is only applicable if NEXTHOP_TYPE_BLACKHOLE*/
535 bhtype = api.nexthops[0].bh_type;
536 } else
537 nexthop = api.nexthops[0].gate;
538
121f9dee 539 add = (cmd == ZEBRA_REDISTRIBUTE_ROUTE_ADD);
74489921 540 if (add) {
d62a17ae 541 /*
542 * The ADD message is actually an UPDATE and there is no
543 * explicit DEL
544 * for a prior redistributed route, if any. So, perform an
545 * implicit
546 * DEL processing for the same redistributed route from any
547 * other
548 * source type.
549 */
550 for (i = 0; i < ZEBRA_ROUTE_MAX; i++) {
551 if (i != api.type)
74489921 552 bgp_redistribute_delete(bgp, &api.prefix, i,
d62a17ae 553 api.instance);
554 }
555
556 /* Now perform the add/update. */
74489921 557 bgp_redistribute_add(bgp, &api.prefix, &nexthop, ifindex,
0789eb69
KM
558 nhtype, bhtype, api.distance, api.metric,
559 api.type, api.instance, api.tag);
d62a17ae 560 } else {
74489921
RW
561 bgp_redistribute_delete(bgp, &api.prefix, api.type,
562 api.instance);
a39275d7 563 }
d62a17ae 564
74489921 565 if (bgp_debug_zebra(&api.prefix)) {
2dbe669b 566 char buf[PREFIX_STRLEN];
74489921 567
77e62f2b 568 if (add) {
2dbe669b
DA
569 inet_ntop(api.prefix.family, &nexthop, buf,
570 sizeof(buf));
77e62f2b 571 zlog_debug(
801bb996 572 "Rx route ADD VRF %u %s[%d] %pFX nexthop %s (type %d if %u) metric %u distance %u tag %" ROUTE_TAG_PRI,
77e62f2b 573 vrf_id, zebra_route_string(api.type),
2dbe669b 574 api.instance, &api.prefix, buf, nhtype, ifindex,
801bb996 575 api.metric, api.distance, api.tag);
77e62f2b 576 } else {
6bdbcbf1 577 zlog_debug("Rx route DEL VRF %u %s[%d] %pFX", vrf_id,
2dbe669b 578 zebra_route_string(api.type), api.instance,
6bdbcbf1 579 &api.prefix);
77e62f2b 580 }
d62a17ae 581 }
582
583 return 0;
718e3744 584}
6b0655a2 585
d62a17ae 586struct interface *if_lookup_by_ipv4(struct in_addr *addr, vrf_id_t vrf_id)
718e3744 587{
f4e14fdb 588 struct vrf *vrf;
d62a17ae 589 struct listnode *cnode;
590 struct interface *ifp;
591 struct connected *connected;
592 struct prefix_ipv4 p;
593 struct prefix *cp;
594
f4e14fdb
RW
595 vrf = vrf_lookup_by_id(vrf_id);
596 if (!vrf)
597 return NULL;
598
d62a17ae 599 p.family = AF_INET;
600 p.prefix = *addr;
601 p.prefixlen = IPV4_MAX_BITLEN;
602
451fda4f 603 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 604 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
605 cp = connected->address;
606
607 if (cp->family == AF_INET)
608 if (prefix_match(cp, (struct prefix *)&p))
609 return ifp;
610 }
718e3744 611 }
d62a17ae 612 return NULL;
718e3744 613}
614
d62a17ae 615struct interface *if_lookup_by_ipv4_exact(struct in_addr *addr, vrf_id_t vrf_id)
718e3744 616{
f4e14fdb 617 struct vrf *vrf;
d62a17ae 618 struct listnode *cnode;
619 struct interface *ifp;
620 struct connected *connected;
621 struct prefix *cp;
622
f4e14fdb
RW
623 vrf = vrf_lookup_by_id(vrf_id);
624 if (!vrf)
625 return NULL;
626
451fda4f 627 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 628 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
629 cp = connected->address;
630
631 if (cp->family == AF_INET)
632 if (IPV4_ADDR_SAME(&cp->u.prefix4, addr))
633 return ifp;
634 }
718e3744 635 }
d62a17ae 636 return NULL;
718e3744 637}
638
d62a17ae 639struct interface *if_lookup_by_ipv6(struct in6_addr *addr, ifindex_t ifindex,
640 vrf_id_t vrf_id)
718e3744 641{
f4e14fdb 642 struct vrf *vrf;
d62a17ae 643 struct listnode *cnode;
644 struct interface *ifp;
645 struct connected *connected;
646 struct prefix_ipv6 p;
647 struct prefix *cp;
648
f4e14fdb
RW
649 vrf = vrf_lookup_by_id(vrf_id);
650 if (!vrf)
651 return NULL;
652
d62a17ae 653 p.family = AF_INET6;
654 p.prefix = *addr;
655 p.prefixlen = IPV6_MAX_BITLEN;
656
451fda4f 657 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 658 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
659 cp = connected->address;
660
661 if (cp->family == AF_INET6)
662 if (prefix_match(cp, (struct prefix *)&p)) {
663 if (IN6_IS_ADDR_LINKLOCAL(
664 &cp->u.prefix6)) {
665 if (ifindex == ifp->ifindex)
666 return ifp;
667 } else
668 return ifp;
669 }
670 }
718e3744 671 }
d62a17ae 672 return NULL;
718e3744 673}
674
d62a17ae 675struct interface *if_lookup_by_ipv6_exact(struct in6_addr *addr,
676 ifindex_t ifindex, vrf_id_t vrf_id)
718e3744 677{
f4e14fdb 678 struct vrf *vrf;
d62a17ae 679 struct listnode *cnode;
680 struct interface *ifp;
681 struct connected *connected;
682 struct prefix *cp;
683
f4e14fdb
RW
684 vrf = vrf_lookup_by_id(vrf_id);
685 if (!vrf)
686 return NULL;
687
451fda4f 688 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 689 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
690 cp = connected->address;
691
692 if (cp->family == AF_INET6)
693 if (IPV6_ADDR_SAME(&cp->u.prefix6, addr)) {
694 if (IN6_IS_ADDR_LINKLOCAL(
695 &cp->u.prefix6)) {
696 if (ifindex == ifp->ifindex)
697 return ifp;
698 } else
699 return ifp;
700 }
701 }
718e3744 702 }
d62a17ae 703 return NULL;
718e3744 704}
705
d62a17ae 706static int if_get_ipv6_global(struct interface *ifp, struct in6_addr *addr)
718e3744 707{
d62a17ae 708 struct listnode *cnode;
709 struct connected *connected;
710 struct prefix *cp;
711
712 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
713 cp = connected->address;
714
715 if (cp->family == AF_INET6)
716 if (!IN6_IS_ADDR_LINKLOCAL(&cp->u.prefix6)) {
717 memcpy(addr, &cp->u.prefix6, IPV6_MAX_BYTELEN);
718 return 1;
719 }
720 }
721 return 0;
718e3744 722}
723
dac42f2e 724static bool if_get_ipv6_local(struct interface *ifp, struct in6_addr *addr)
718e3744 725{
d62a17ae 726 struct listnode *cnode;
727 struct connected *connected;
728 struct prefix *cp;
729
730 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
731 cp = connected->address;
732
733 if (cp->family == AF_INET6)
734 if (IN6_IS_ADDR_LINKLOCAL(&cp->u.prefix6)) {
735 memcpy(addr, &cp->u.prefix6, IPV6_MAX_BYTELEN);
dac42f2e 736 return true;
d62a17ae 737 }
738 }
dac42f2e 739 return false;
718e3744 740}
718e3744 741
d62a17ae 742static int if_get_ipv4_address(struct interface *ifp, struct in_addr *addr)
6ee06fa9 743{
d62a17ae 744 struct listnode *cnode;
745 struct connected *connected;
746 struct prefix *cp;
747
748 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
749 cp = connected->address;
750 if ((cp->family == AF_INET)
751 && !ipv4_martian(&(cp->u.prefix4))) {
752 *addr = cp->u.prefix4;
753 return 1;
754 }
755 }
756 return 0;
6ee06fa9
PM
757}
758
17cdd31e
DS
759
760bool bgp_zebra_nexthop_set(union sockunion *local, union sockunion *remote,
761 struct bgp_nexthop *nexthop, struct peer *peer)
718e3744 762{
d62a17ae 763 int ret = 0;
764 struct interface *ifp = NULL;
dac42f2e 765 bool v6_ll_avail = true;
d62a17ae 766
767 memset(nexthop, 0, sizeof(struct bgp_nexthop));
768
769 if (!local)
17cdd31e 770 return false;
d62a17ae 771 if (!remote)
17cdd31e 772 return false;
d62a17ae 773
774 if (local->sa.sa_family == AF_INET) {
775 nexthop->v4 = local->sin.sin_addr;
776 if (peer->update_if)
777 ifp = if_lookup_by_name(peer->update_if,
a36898e7 778 peer->bgp->vrf_id);
d62a17ae 779 else
780 ifp = if_lookup_by_ipv4_exact(&local->sin.sin_addr,
781 peer->bgp->vrf_id);
718e3744 782 }
d62a17ae 783 if (local->sa.sa_family == AF_INET6) {
8f2b2139 784 memcpy(&nexthop->v6_global, &local->sin6.sin6_addr, IPV6_MAX_BYTELEN);
d62a17ae 785 if (IN6_IS_ADDR_LINKLOCAL(&local->sin6.sin6_addr)) {
786 if (peer->conf_if || peer->ifname)
787 ifp = if_lookup_by_name(peer->conf_if
788 ? peer->conf_if
789 : peer->ifname,
a36898e7 790 peer->bgp->vrf_id);
abe68054
PG
791 else if (peer->update_if)
792 ifp = if_lookup_by_name(peer->update_if,
793 peer->bgp->vrf_id);
d62a17ae 794 } else if (peer->update_if)
795 ifp = if_lookup_by_name(peer->update_if,
a36898e7 796 peer->bgp->vrf_id);
d62a17ae 797 else
798 ifp = if_lookup_by_ipv6_exact(&local->sin6.sin6_addr,
799 local->sin6.sin6_scope_id,
800 peer->bgp->vrf_id);
718e3744 801 }
d62a17ae 802
17cdd31e
DS
803 if (!ifp) {
804 /*
805 * BGP views do not currently get proper data
806 * from zebra( when attached ) to be able to
807 * properly resolve nexthops, so give this
808 * instance type a pass.
809 */
810 if (peer->bgp->inst_type == BGP_INSTANCE_TYPE_VIEW)
811 return true;
812 /*
813 * If we have no interface data but we have established
814 * some connection w/ zebra than something has gone
815 * terribly terribly wrong here, so say this failed
816 * If we do not any zebra connection then not
817 * having a ifp pointer is ok.
818 */
819 return zclient_num_connects ? false : true;
820 }
d62a17ae 821
822 nexthop->ifp = ifp;
823
824 /* IPv4 connection, fetch and store IPv6 local address(es) if any. */
825 if (local->sa.sa_family == AF_INET) {
826 /* IPv6 nexthop*/
827 ret = if_get_ipv6_global(ifp, &nexthop->v6_global);
828
829 if (!ret) {
830 /* There is no global nexthop. Use link-local address as
831 * both the
832 * global and link-local nexthop. In this scenario, the
833 * expectation
834 * for interop is that the network admin would use a
835 * route-map to
836 * specify the global IPv6 nexthop.
837 */
dac42f2e
DS
838 v6_ll_avail =
839 if_get_ipv6_local(ifp, &nexthop->v6_global);
d62a17ae 840 memcpy(&nexthop->v6_local, &nexthop->v6_global,
841 IPV6_MAX_BYTELEN);
842 } else
dac42f2e
DS
843 v6_ll_avail =
844 if_get_ipv6_local(ifp, &nexthop->v6_local);
d62a17ae 845
dac42f2e
DS
846 /*
847 * If we are a v4 connection and we are not doing unnumbered
848 * not having a v6 LL address is ok
849 */
850 if (!v6_ll_avail && !peer->conf_if)
851 v6_ll_avail = true;
d62a17ae 852 if (if_lookup_by_ipv4(&remote->sin.sin_addr, peer->bgp->vrf_id))
853 peer->shared_network = 1;
854 else
855 peer->shared_network = 0;
718e3744 856 }
718e3744 857
d62a17ae 858 /* IPv6 connection, fetch and store IPv4 local address if any. */
859 if (local->sa.sa_family == AF_INET6) {
860 struct interface *direct = NULL;
861
862 /* IPv4 nexthop. */
863 ret = if_get_ipv4_address(ifp, &nexthop->v4);
975a328e 864 if (!ret && peer->local_id.s_addr != INADDR_ANY)
d62a17ae 865 nexthop->v4 = peer->local_id;
866
867 /* Global address*/
868 if (!IN6_IS_ADDR_LINKLOCAL(&local->sin6.sin6_addr)) {
869 memcpy(&nexthop->v6_global, &local->sin6.sin6_addr,
870 IPV6_MAX_BYTELEN);
871
872 /* If directory connected set link-local address. */
873 direct = if_lookup_by_ipv6(&remote->sin6.sin6_addr,
874 remote->sin6.sin6_scope_id,
875 peer->bgp->vrf_id);
876 if (direct)
dac42f2e
DS
877 v6_ll_avail = if_get_ipv6_local(
878 ifp, &nexthop->v6_local);
2ebb354c
IR
879 /*
880 * It's fine to not have a v6 LL when using
881 * update-source loopback/vrf
882 */
608c8870 883 if (!v6_ll_avail && if_is_loopback(ifp))
2ebb354c 884 v6_ll_avail = true;
75ba864c
DS
885 else {
886 flog_warn(
887 EC_BGP_NO_LL_ADDRESS_AVAILABLE,
888 "Interface: %s does not have a v6 LL address associated with it, waiting until one is created for it",
889 ifp->name);
890 }
d62a17ae 891 } else
892 /* Link-local address. */
893 {
894 ret = if_get_ipv6_global(ifp, &nexthop->v6_global);
895
896 /* If there is no global address. Set link-local
897 address as
898 global. I know this break RFC specification... */
899 /* In this scenario, the expectation for interop is that
900 * the
901 * network admin would use a route-map to specify the
902 * global
903 * IPv6 nexthop.
904 */
905 if (!ret)
906 memcpy(&nexthop->v6_global,
907 &local->sin6.sin6_addr,
908 IPV6_MAX_BYTELEN);
909 /* Always set the link-local address */
910 memcpy(&nexthop->v6_local, &local->sin6.sin6_addr,
911 IPV6_MAX_BYTELEN);
912 }
913
914 if (IN6_IS_ADDR_LINKLOCAL(&local->sin6.sin6_addr)
915 || if_lookup_by_ipv6(&remote->sin6.sin6_addr,
916 remote->sin6.sin6_scope_id,
917 peer->bgp->vrf_id))
918 peer->shared_network = 1;
919 else
920 peer->shared_network = 0;
921 }
718e3744 922
d62a17ae 923/* KAME stack specific treatment. */
718e3744 924#ifdef KAME
d62a17ae 925 if (IN6_IS_ADDR_LINKLOCAL(&nexthop->v6_global)
926 && IN6_LINKLOCAL_IFINDEX(nexthop->v6_global)) {
927 SET_IN6_LINKLOCAL_IFINDEX(nexthop->v6_global, 0);
928 }
929 if (IN6_IS_ADDR_LINKLOCAL(&nexthop->v6_local)
930 && IN6_LINKLOCAL_IFINDEX(nexthop->v6_local)) {
931 SET_IN6_LINKLOCAL_IFINDEX(nexthop->v6_local, 0);
932 }
718e3744 933#endif /* KAME */
e33a4880 934
d62a17ae 935 /* If we have identified the local interface, there is no error for now.
936 */
dac42f2e 937 return v6_ll_avail;
718e3744 938}
939
18ee8310 940static struct in6_addr *
40381db7 941bgp_path_info_to_ipv6_nexthop(struct bgp_path_info *path, ifindex_t *ifindex)
73ac8160 942{
d62a17ae 943 struct in6_addr *nexthop = NULL;
944
945 /* Only global address nexthop exists. */
dc94fe42
RW
946 if (path->attr->mp_nexthop_len == BGP_ATTR_NHLEN_IPV6_GLOBAL
947 || path->attr->mp_nexthop_len == BGP_ATTR_NHLEN_VPNV6_GLOBAL) {
40381db7 948 nexthop = &path->attr->mp_nexthop_global;
77e62f2b 949 if (IN6_IS_ADDR_LINKLOCAL(nexthop))
40381db7 950 *ifindex = path->attr->nh_ifindex;
77e62f2b 951 }
d62a17ae 952
953 /* If both global and link-local address present. */
dc94fe42
RW
954 if (path->attr->mp_nexthop_len == BGP_ATTR_NHLEN_IPV6_GLOBAL_AND_LL
955 || path->attr->mp_nexthop_len
956 == BGP_ATTR_NHLEN_VPNV6_GLOBAL_AND_LL) {
d62a17ae 957 /* Check if route-map is set to prefer global over link-local */
40381db7
DS
958 if (path->attr->mp_nexthop_prefer_global) {
959 nexthop = &path->attr->mp_nexthop_global;
77e62f2b 960 if (IN6_IS_ADDR_LINKLOCAL(nexthop))
40381db7 961 *ifindex = path->attr->nh_ifindex;
77e62f2b 962 } else {
d62a17ae 963 /* Workaround for Cisco's nexthop bug. */
964 if (IN6_IS_ADDR_UNSPECIFIED(
40381db7 965 &path->attr->mp_nexthop_global)
ab0e0f73 966 && path->peer->su_remote
40381db7 967 && path->peer->su_remote->sa.sa_family
59a0f1cb 968 == AF_INET6) {
d62a17ae 969 nexthop =
40381db7 970 &path->peer->su_remote->sin6.sin6_addr;
77e62f2b 971 if (IN6_IS_ADDR_LINKLOCAL(nexthop))
40381db7 972 *ifindex = path->peer->nexthop.ifp
59a0f1cb 973 ->ifindex;
77e62f2b 974 } else {
40381db7 975 nexthop = &path->attr->mp_nexthop_local;
77e62f2b 976 if (IN6_IS_ADDR_LINKLOCAL(nexthop))
40381db7 977 *ifindex = path->attr->nh_lla_ifindex;
77e62f2b 978 }
d62a17ae 979 }
980 }
981
982 return nexthop;
73ac8160
DS
983}
984
b8685f9b 985static bool bgp_table_map_apply(struct route_map *map, const struct prefix *p,
3dc339cd 986 struct bgp_path_info *path)
73ac8160 987{
b4cb15c6
DL
988 route_map_result_t ret;
989
1782514f 990 ret = route_map_apply(map, p, path);
40381db7 991 bgp_attr_flush(path->attr);
b4cb15c6
DL
992
993 if (ret != RMAP_DENYMATCH)
3dc339cd 994 return true;
d62a17ae 995
996 if (bgp_debug_zebra(p)) {
997 if (p->family == AF_INET) {
d62a17ae 998 zlog_debug(
c0d72166
DS
999 "Zebra rmap deny: IPv4 route %pFX nexthop %pI4",
1000 p, &path->attr->nexthop);
d62a17ae 1001 }
1002 if (p->family == AF_INET6) {
1003 char buf[2][INET6_ADDRSTRLEN];
77e62f2b 1004 ifindex_t ifindex;
1005 struct in6_addr *nexthop;
1006
40381db7 1007 nexthop = bgp_path_info_to_ipv6_nexthop(path, &ifindex);
d62a17ae 1008 zlog_debug(
8228a9a7
DS
1009 "Zebra rmap deny: IPv6 route %pFX nexthop %s",
1010 p,
6b9265a3
DA
1011 nexthop ? inet_ntop(AF_INET6, nexthop, buf[1],
1012 sizeof(buf[1]))
1013 : inet_ntop(AF_INET,
1014 &path->attr->nexthop,
1015 buf[1], sizeof(buf[1])));
d62a17ae 1016 }
1017 }
3dc339cd 1018 return false;
73ac8160
DS
1019}
1020
b98f7728
PG
1021static struct thread *bgp_tm_thread_connect;
1022static bool bgp_tm_status_connected;
31c28cd7
PG
1023static bool bgp_tm_chunk_obtained;
1024#define BGP_FLOWSPEC_TABLE_CHUNK 100000
1025static uint32_t bgp_tm_min, bgp_tm_max, bgp_tm_chunk_size;
6818e7e5 1026struct bgp *bgp_tm_bgp;
b98f7728 1027
cc9f21da 1028static void bgp_zebra_tm_connect(struct thread *t)
b98f7728
PG
1029{
1030 struct zclient *zclient;
1031 int delay = 10, ret = 0;
1032
1033 zclient = THREAD_ARG(t);
1034 if (bgp_tm_status_connected && zclient->sock > 0)
1035 delay = 60;
1036 else {
1037 bgp_tm_status_connected = false;
1038 ret = tm_table_manager_connect(zclient);
1039 }
1040 if (ret < 0) {
b7cd3069 1041 zlog_info("Error connecting to table manager!");
b98f7728
PG
1042 bgp_tm_status_connected = false;
1043 } else {
1044 if (!bgp_tm_status_connected)
1045 zlog_debug("Connecting to table manager. Success");
1046 bgp_tm_status_connected = true;
31c28cd7
PG
1047 if (!bgp_tm_chunk_obtained) {
1048 if (bgp_zebra_get_table_range(bgp_tm_chunk_size,
1049 &bgp_tm_min,
6818e7e5 1050 &bgp_tm_max) >= 0) {
31c28cd7 1051 bgp_tm_chunk_obtained = true;
6818e7e5
PG
1052 /* parse non installed entries */
1053 bgp_zebra_announce_table(bgp_tm_bgp, AFI_IP, SAFI_FLOWSPEC);
1054 }
31c28cd7 1055 }
b98f7728
PG
1056 }
1057 thread_add_timer(bm->master, bgp_zebra_tm_connect, zclient, delay,
1058 &bgp_tm_thread_connect);
b98f7728
PG
1059}
1060
6818e7e5
PG
1061bool bgp_zebra_tm_chunk_obtained(void)
1062{
1063 return bgp_tm_chunk_obtained;
1064}
1065
31c28cd7
PG
1066uint32_t bgp_zebra_tm_get_id(void)
1067{
1068 static int table_id;
1069
1070 if (!bgp_tm_chunk_obtained)
1071 return ++table_id;
1072 return bgp_tm_min++;
1073}
1074
6818e7e5 1075void bgp_zebra_init_tm_connect(struct bgp *bgp)
b98f7728
PG
1076{
1077 int delay = 1;
1078
1079 /* if already set, do nothing
1080 */
1081 if (bgp_tm_thread_connect != NULL)
1082 return;
1083 bgp_tm_status_connected = false;
31c28cd7
PG
1084 bgp_tm_chunk_obtained = false;
1085 bgp_tm_min = bgp_tm_max = 0;
1086 bgp_tm_chunk_size = BGP_FLOWSPEC_TABLE_CHUNK;
6818e7e5 1087 bgp_tm_bgp = bgp;
b98f7728
PG
1088 thread_add_timer(bm->master, bgp_zebra_tm_connect, zclient, delay,
1089 &bgp_tm_thread_connect);
1090}
1091
1092int bgp_zebra_get_table_range(uint32_t chunk_size,
1093 uint32_t *start, uint32_t *end)
1094{
1095 int ret;
1096
1097 if (!bgp_tm_status_connected)
1098 return -1;
1099 ret = tm_get_table_chunk(zclient, chunk_size, start, end);
1100 if (ret < 0) {
e50f7cfd 1101 flog_err(EC_BGP_TABLE_CHUNK,
1c50c1c0 1102 "BGP: Error getting table chunk %u", chunk_size);
b98f7728
PG
1103 return -1;
1104 }
1105 zlog_info("BGP: Table Manager returns range from chunk %u is [%u %u]",
1106 chunk_size, *start, *end);
1107 return 0;
1108}
1109
3dc339cd
DA
1110static bool update_ipv4nh_for_route_install(int nh_othervrf, struct bgp *nh_bgp,
1111 struct in_addr *nexthop,
1112 struct attr *attr, bool is_evpn,
1113 struct zapi_nexthop *api_nh)
77e62f2b 1114{
1115 api_nh->gate.ipv4 = *nexthop;
e1e71450 1116 api_nh->vrf_id = nh_bgp->vrf_id;
77e62f2b 1117
1118 /* Need to set fields appropriately for EVPN routes imported into
1119 * a VRF (which are programmed as onlink on l3-vni SVI) as well as
1120 * connected routes leaked into a VRF.
1121 */
0789eb69
KM
1122 if (attr->nh_type == NEXTHOP_TYPE_BLACKHOLE) {
1123 api_nh->type = attr->nh_type;
1124 api_nh->bh_type = attr->bh_type;
1125 } else if (is_evpn) {
a2299aba
AD
1126 /*
1127 * If the nexthop is EVPN overlay index gateway IP,
1128 * treat the nexthop as NEXTHOP_TYPE_IPV4
1129 * Else, mark the nexthop as onlink.
1130 */
1131 if (attr->evpn_overlay.type == OVERLAY_INDEX_GATEWAY_IP)
1132 api_nh->type = NEXTHOP_TYPE_IPV4;
1133 else {
1134 api_nh->type = NEXTHOP_TYPE_IPV4_IFINDEX;
1135 SET_FLAG(api_nh->flags, ZAPI_NEXTHOP_FLAG_ONLINK);
1136 api_nh->ifindex = nh_bgp->l3vni_svi_ifindex;
1137 }
0789eb69 1138 } else if (nh_othervrf && api_nh->gate.ipv4.s_addr == INADDR_ANY) {
77e62f2b 1139 api_nh->type = NEXTHOP_TYPE_IFINDEX;
1140 api_nh->ifindex = attr->nh_ifindex;
1141 } else
1142 api_nh->type = NEXTHOP_TYPE_IPV4;
1143
3dc339cd 1144 return true;
77e62f2b 1145}
1146
3dc339cd
DA
1147static bool update_ipv6nh_for_route_install(int nh_othervrf, struct bgp *nh_bgp,
1148 struct in6_addr *nexthop,
1149 ifindex_t ifindex,
1150 struct bgp_path_info *pi,
1151 struct bgp_path_info *best_pi,
1152 bool is_evpn,
1153 struct zapi_nexthop *api_nh)
77e62f2b 1154{
1155 struct attr *attr;
1156
40381db7 1157 attr = pi->attr;
e1e71450 1158 api_nh->vrf_id = nh_bgp->vrf_id;
77e62f2b 1159
0789eb69
KM
1160 if (attr->nh_type == NEXTHOP_TYPE_BLACKHOLE) {
1161 api_nh->type = attr->nh_type;
1162 api_nh->bh_type = attr->bh_type;
1163 } else if (is_evpn) {
a2299aba
AD
1164 /*
1165 * If the nexthop is EVPN overlay index gateway IP,
1166 * treat the nexthop as NEXTHOP_TYPE_IPV4
1167 * Else, mark the nexthop as onlink.
1168 */
1169 if (attr->evpn_overlay.type == OVERLAY_INDEX_GATEWAY_IP)
1170 api_nh->type = NEXTHOP_TYPE_IPV6;
1171 else {
1172 api_nh->type = NEXTHOP_TYPE_IPV6_IFINDEX;
1173 SET_FLAG(api_nh->flags, ZAPI_NEXTHOP_FLAG_ONLINK);
1174 api_nh->ifindex = nh_bgp->l3vni_svi_ifindex;
1175 }
e1e71450 1176 } else if (nh_othervrf) {
77e62f2b 1177 if (IN6_IS_ADDR_UNSPECIFIED(nexthop)) {
1178 api_nh->type = NEXTHOP_TYPE_IFINDEX;
1179 api_nh->ifindex = attr->nh_ifindex;
1180 } else if (IN6_IS_ADDR_LINKLOCAL(nexthop)) {
1181 if (ifindex == 0)
3dc339cd 1182 return false;
77e62f2b 1183 api_nh->type = NEXTHOP_TYPE_IPV6_IFINDEX;
1184 api_nh->ifindex = ifindex;
1185 } else {
1186 api_nh->type = NEXTHOP_TYPE_IPV6;
1187 api_nh->ifindex = 0;
1188 }
1189 } else {
1190 if (IN6_IS_ADDR_LINKLOCAL(nexthop)) {
40381db7
DS
1191 if (pi == best_pi
1192 && attr->mp_nexthop_len
1193 == BGP_ATTR_NHLEN_IPV6_GLOBAL_AND_LL)
1194 if (pi->peer->nexthop.ifp)
1195 ifindex =
1196 pi->peer->nexthop.ifp->ifindex;
77e62f2b 1197 if (!ifindex) {
40381db7
DS
1198 if (pi->peer->conf_if)
1199 ifindex = pi->peer->ifp->ifindex;
1200 else if (pi->peer->ifname)
77e62f2b 1201 ifindex = ifname2ifindex(
40381db7
DS
1202 pi->peer->ifname,
1203 pi->peer->bgp->vrf_id);
1204 else if (pi->peer->nexthop.ifp)
1205 ifindex =
1206 pi->peer->nexthop.ifp->ifindex;
77e62f2b 1207 }
1208
1209 if (ifindex == 0)
3dc339cd 1210 return false;
77e62f2b 1211 api_nh->type = NEXTHOP_TYPE_IPV6_IFINDEX;
1212 api_nh->ifindex = ifindex;
1213 } else {
1214 api_nh->type = NEXTHOP_TYPE_IPV6;
1215 api_nh->ifindex = 0;
1216 }
1217 }
0789eb69
KM
1218 /* api_nh structure has union of gate and bh_type */
1219 if (nexthop && api_nh->type != NEXTHOP_TYPE_BLACKHOLE)
c2ca3e25 1220 api_nh->gate.ipv6 = *nexthop;
77e62f2b 1221
3dc339cd 1222 return true;
77e62f2b 1223}
1224
f7e1c681 1225static bool bgp_zebra_use_nhop_weighted(struct bgp *bgp, struct attr *attr,
1226 uint64_t tot_bw, uint32_t *nh_weight)
4e30bc2b 1227{
f7e1c681 1228 uint32_t bw;
1229 uint64_t tmp;
1230
1231 bw = attr->link_bw;
1232 /* zero link-bandwidth and link-bandwidth not present are treated
1233 * as the same situation.
1234 */
1235 if (!bw) {
1236 /* the only situations should be if we're either told
1237 * to skip or use default weight.
1238 */
1239 if (bgp->lb_handling == BGP_LINK_BW_SKIP_MISSING)
1240 return false;
1241 *nh_weight = BGP_ZEBRA_DEFAULT_NHOP_WEIGHT;
1242 } else {
1243 tmp = (uint64_t)bw * 100;
1244 *nh_weight = ((uint32_t)(tmp / tot_bw));
1245 }
1246
1247 return true;
4e30bc2b 1248}
1249
9bcb3eef 1250void bgp_zebra_announce(struct bgp_dest *dest, const struct prefix *p,
4b7e6066 1251 struct bgp_path_info *info, struct bgp *bgp, afi_t afi,
d62a17ae 1252 safi_t safi)
718e3744 1253{
7cc27d41 1254 struct zapi_route api = { 0 };
9913029c 1255 struct zapi_nexthop *api_nh;
2ad4f093 1256 int nh_family;
a74e593b 1257 unsigned int valid_nh_count = 0;
1a9cb083 1258 bool allow_recursion = false;
d7c0a89a 1259 uint8_t distance;
d62a17ae 1260 struct peer *peer;
4b7e6066 1261 struct bgp_path_info *mpinfo;
ad1844f7 1262 struct bgp *bgp_orig;
d7c0a89a 1263 uint32_t metric;
b4cb15c6 1264 struct attr local_attr;
4b7e6066
DS
1265 struct bgp_path_info local_info;
1266 struct bgp_path_info *mpinfo_cp = &local_info;
d62a17ae 1267 route_tag_t tag;
1268 mpls_label_t label;
ea7cd161 1269 struct bgp_sid_info *sid_info;
ddb5b488 1270 int nh_othervrf = 0;
3f54c705 1271 bool is_evpn;
06f16b2c 1272 bool nh_updated = false;
4e30bc2b 1273 bool do_wt_ecmp;
1274 uint64_t cum_bw = 0;
6348981a
AK
1275 uint32_t nhg_id = 0;
1276 bool is_add;
67f67ba4
DA
1277 uint32_t ttl = 0;
1278 uint32_t bos = 0;
1279 uint32_t exp = 0;
d62a17ae 1280
1281 /* Don't try to install if we're not connected to Zebra or Zebra doesn't
1282 * know of this instance.
1283 */
1284 if (!bgp_install_info_to_zebra(bgp))
1285 return;
1286
d62a17ae 1287 if (bgp->main_zebra_update_hold)
1288 return;
1289
d90b788e 1290 if (safi == SAFI_FLOWSPEC) {
9bcb3eef
DS
1291 bgp_pbr_update_entry(bgp, bgp_dest_get_prefix(dest), info, afi,
1292 safi, true);
d90b788e
A
1293 return;
1294 }
529efa23 1295
ddb5b488
PZ
1296 /*
1297 * vrf leaking support (will have only one nexthop)
1298 */
1299 if (info->extra && info->extra->bgp_orig)
1300 nh_othervrf = 1;
1301
9913029c 1302 /* Make Zebra API structure. */
9913029c
RW
1303 api.vrf_id = bgp->vrf_id;
1304 api.type = ZEBRA_ROUTE_BGP;
1305 api.safi = safi;
1306 api.prefix = *p;
1307 SET_FLAG(api.message, ZAPI_MESSAGE_NEXTHOP);
1308
d62a17ae 1309 peer = info->peer;
1310
ddb5b488
PZ
1311 if (info->type == ZEBRA_ROUTE_BGP
1312 && info->sub_type == BGP_ROUTE_IMPORTED) {
1313
1ec90b5e 1314 /* Obtain peer from parent */
1315 if (info->extra && info->extra->parent)
4b7e6066
DS
1316 peer = ((struct bgp_path_info *)(info->extra->parent))
1317 ->peer;
ddb5b488
PZ
1318 }
1319
d62a17ae 1320 tag = info->attr->tag;
1321
88493076 1322 /* If the route's source is EVPN, flag as such. */
77e62f2b 1323 is_evpn = is_route_parent_evpn(info);
1324 if (is_evpn)
90264d64 1325 SET_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE);
d3135ba3 1326
d62a17ae 1327 if (peer->sort == BGP_PEER_IBGP || peer->sort == BGP_PEER_CONFED
1328 || info->sub_type == BGP_ROUTE_AGGREGATE) {
9913029c 1329 SET_FLAG(api.flags, ZEBRA_FLAG_IBGP);
4e8b02f4 1330 SET_FLAG(api.flags, ZEBRA_FLAG_ALLOW_RECURSION);
718e3744 1331 }
a39275d7 1332
c8d6f0d6 1333 if ((peer->sort == BGP_PEER_EBGP && peer->ttl != BGP_DEFAULT_TTL)
d62a17ae 1334 || CHECK_FLAG(peer->flags, PEER_FLAG_DISABLE_CONNECTED_CHECK)
892fedb6 1335 || CHECK_FLAG(bgp->flags, BGP_FLAG_DISABLE_NH_CONNECTED_CHK))
d62a17ae 1336
1a9cb083 1337 allow_recursion = true;
d62a17ae 1338
951745bd
PG
1339 if (info->attr->rmap_table_id) {
1340 SET_FLAG(api.message, ZAPI_MESSAGE_TABLEID);
1341 api.tableid = info->attr->rmap_table_id;
1342 }
1343
ef3e0d04
SM
1344 if (CHECK_FLAG(info->attr->flag, ATTR_FLAG_BIT(BGP_ATTR_SRTE_COLOR)))
1345 SET_FLAG(api.message, ZAPI_MESSAGE_SRTE);
1346
2ad4f093
RW
1347 /* Metric is currently based on the best-path only */
1348 metric = info->attr->med;
4e30bc2b 1349
1350 /* Determine if we're doing weighted ECMP or not */
f7e1c681 1351 do_wt_ecmp = bgp_path_info_mpath_chkwtd(bgp, info);
4e30bc2b 1352 if (do_wt_ecmp)
1353 cum_bw = bgp_path_info_mpath_cumbw(info);
1354
6348981a 1355 /* EVPN MAC-IP routes are installed with a L3 NHG id */
8bcb09a1 1356 if (bgp_evpn_path_es_use_nhg(bgp, info, &nhg_id)) {
6348981a 1357 mpinfo = NULL;
8bcb09a1
AK
1358 api.nhgid = nhg_id;
1359 if (nhg_id)
1360 SET_FLAG(api.message, ZAPI_MESSAGE_NHG);
1361 } else {
6348981a 1362 mpinfo = info;
8bcb09a1 1363 }
6348981a
AK
1364
1365 for (; mpinfo; mpinfo = bgp_path_info_mpath_next(mpinfo)) {
f7e1c681 1366 uint32_t nh_weight;
1367
a74e593b
RW
1368 if (valid_nh_count >= multipath_num)
1369 break;
1370
b4cb15c6 1371 *mpinfo_cp = *mpinfo;
f7e1c681 1372 nh_weight = 0;
b4cb15c6 1373
d0d695f4
RW
1374 /* Get nexthop address-family */
1375 if (p->family == AF_INET
1376 && !BGP_ATTR_NEXTHOP_AFI_IP6(mpinfo_cp->attr))
1377 nh_family = AF_INET;
1378 else if (p->family == AF_INET6
1379 || (p->family == AF_INET
1380 && BGP_ATTR_NEXTHOP_AFI_IP6(mpinfo_cp->attr)))
1381 nh_family = AF_INET6;
1382 else
1383 continue;
1384
f7e1c681 1385 /* If processing for weighted ECMP, determine the next hop's
1386 * weight. Based on user setting, we may skip the next hop
1387 * in some situations.
1388 */
1389 if (do_wt_ecmp) {
1390 if (!bgp_zebra_use_nhop_weighted(bgp, mpinfo->attr,
1391 cum_bw, &nh_weight))
1392 continue;
1393 }
1374aec9 1394 api_nh = &api.nexthops[valid_nh_count];
ef3e0d04
SM
1395
1396 if (CHECK_FLAG(info->attr->flag,
1397 ATTR_FLAG_BIT(BGP_ATTR_SRTE_COLOR)))
1398 api_nh->srte_color = info->attr->srte_color;
1399
257b7b6e
DS
1400 if (bgp_debug_zebra(&api.prefix)) {
1401 if (mpinfo->extra) {
70492dea
DS
1402 zlog_debug("%s: p=%pFX, bgp_is_valid_label: %d",
1403 __func__, p,
257b7b6e
DS
1404 bgp_is_valid_label(
1405 &mpinfo->extra->label[0]));
1406 } else {
70492dea
DS
1407 zlog_debug(
1408 "%s: p=%pFX, extra is NULL, no label",
1409 __func__, p);
ddb5b488 1410 }
257b7b6e 1411 }
ddb5b488 1412
257b7b6e
DS
1413 if (bgp->table_map[afi][safi].name) {
1414 /* Copy info and attributes, so the route-map
1415 apply doesn't modify the BGP route info. */
1416 local_attr = *mpinfo->attr;
1417 mpinfo_cp->attr = &local_attr;
1418 if (!bgp_table_map_apply(bgp->table_map[afi][safi].map,
1419 p, mpinfo_cp))
1420 continue;
b4cb15c6 1421
257b7b6e
DS
1422 /* metric/tag is only allowed to be
1423 * overridden on 1st nexthop */
1424 if (mpinfo == info) {
1425 metric = mpinfo_cp->attr->med;
1426 tag = mpinfo_cp->attr->tag;
b4cb15c6 1427 }
257b7b6e 1428 }
d62a17ae 1429
ad1844f7
IS
1430 BGP_ORIGINAL_UPDATE(bgp_orig, mpinfo, bgp);
1431
257b7b6e 1432 if (nh_family == AF_INET) {
77e62f2b 1433 nh_updated = update_ipv4nh_for_route_install(
ad1844f7
IS
1434 nh_othervrf, bgp_orig,
1435 &mpinfo_cp->attr->nexthop, mpinfo_cp->attr,
1436 is_evpn, api_nh);
2ad4f093 1437 } else {
f220da99 1438 ifindex_t ifindex = IFINDEX_INTERNAL;
2ad4f093 1439 struct in6_addr *nexthop;
9913029c 1440
18ee8310
DS
1441 nexthop = bgp_path_info_to_ipv6_nexthop(mpinfo_cp,
1442 &ifindex);
00c10664
DA
1443
1444 if (!nexthop)
1445 nh_updated = update_ipv4nh_for_route_install(
ad1844f7 1446 nh_othervrf, bgp_orig,
00c10664
DA
1447 &mpinfo_cp->attr->nexthop,
1448 mpinfo_cp->attr, is_evpn, api_nh);
1449 else
1450 nh_updated = update_ipv6nh_for_route_install(
ad1844f7
IS
1451 nh_othervrf, bgp_orig, nexthop, ifindex,
1452 mpinfo, info, is_evpn, api_nh);
2ad4f093 1453 }
d62a17ae 1454
77e62f2b 1455 /* Did we get proper nexthop info to update zebra? */
1456 if (!nh_updated)
1457 continue;
1458
1a9cb083
JM
1459 /* Allow recursion if it is a multipath group with both
1460 * eBGP and iBGP paths.
1461 */
1462 if (!allow_recursion
1463 && CHECK_FLAG(bgp->flags, BGP_FLAG_PEERTYPE_MULTIPATH_RELAX)
1464 && (mpinfo->peer->sort == BGP_PEER_IBGP
1465 || mpinfo->peer->sort == BGP_PEER_CONFED))
1466 allow_recursion = true;
1467
a4d82a8a
PZ
1468 if (mpinfo->extra
1469 && bgp_is_valid_label(&mpinfo->extra->label[0])
90264d64 1470 && !CHECK_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE)) {
67f67ba4
DA
1471 mpls_lse_decode(mpinfo->extra->label[0], &label, &ttl,
1472 &exp, &bos);
9913029c 1473
68a02e06
MS
1474 SET_FLAG(api_nh->flags, ZAPI_NEXTHOP_FLAG_LABEL);
1475
2ad4f093
RW
1476 api_nh->label_num = 1;
1477 api_nh->labels[0] = label;
d62a17ae 1478 }
a2299aba
AD
1479
1480 if (is_evpn
1481 && mpinfo->attr->evpn_overlay.type
1482 != OVERLAY_INDEX_GATEWAY_IP)
1483 memcpy(&api_nh->rmac, &(mpinfo->attr->rmac),
1484 sizeof(struct ethaddr));
1485
f7e1c681 1486 api_nh->weight = nh_weight;
4e30bc2b 1487
16f3db2d 1488 if (mpinfo->extra && !sid_zero(&mpinfo->extra->sid[0].sid)
53a4de82 1489 && !CHECK_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE)) {
ea7cd161
RS
1490 sid_info = &mpinfo->extra->sid[0];
1491
1492 memcpy(&api_nh->seg6_segs, &sid_info->sid,
53a4de82 1493 sizeof(api_nh->seg6_segs));
09e06fcf 1494
ea7cd161
RS
1495 if (sid_info->transposition_len != 0) {
1496 if (!bgp_is_valid_label(
1497 &mpinfo->extra->label[0]))
1498 continue;
1499
67f67ba4
DA
1500 mpls_lse_decode(mpinfo->extra->label[0], &label,
1501 &ttl, &exp, &bos);
ea7cd161
RS
1502 transpose_sid(&api_nh->seg6_segs, label,
1503 sid_info->transposition_offset,
1504 sid_info->transposition_len);
1505 }
1506
09e06fcf 1507 SET_FLAG(api_nh->flags, ZAPI_NEXTHOP_FLAG_SEG6);
53a4de82
HS
1508 }
1509
2ad4f093
RW
1510 valid_nh_count++;
1511 }
d62a17ae 1512
6348981a
AK
1513 is_add = (valid_nh_count || nhg_id) ? true : false;
1514
ec0acb80 1515 if (is_add && CHECK_FLAG(bm->flags, BM_FLAG_SEND_EXTRA_DATA_TO_ZEBRA)) {
94effaf0 1516 struct bgp_zebra_opaque bzo = {};
1d7260a1
DA
1517 const char *reason =
1518 bgp_path_selection_reason2str(dest->reason);
94effaf0
DA
1519
1520 strlcpy(bzo.aspath, info->attr->aspath->str,
1521 sizeof(bzo.aspath));
1522
1523 if (info->attr->flag & ATTR_FLAG_BIT(BGP_ATTR_COMMUNITIES))
9a706b42
DA
1524 strlcpy(bzo.community,
1525 bgp_attr_get_community(info->attr)->str,
94effaf0
DA
1526 sizeof(bzo.community));
1527
1528 if (info->attr->flag
1529 & ATTR_FLAG_BIT(BGP_ATTR_LARGE_COMMUNITIES))
1bcf3a96
DA
1530 strlcpy(bzo.lcommunity,
1531 bgp_attr_get_lcommunity(info->attr)->str,
94effaf0 1532 sizeof(bzo.lcommunity));
e46723a5 1533
1d7260a1
DA
1534 strlcpy(bzo.selection_reason, reason,
1535 sizeof(bzo.selection_reason));
1536
e46723a5 1537 SET_FLAG(api.message, ZAPI_MESSAGE_OPAQUE);
94effaf0
DA
1538 api.opaque.length = MIN(sizeof(struct bgp_zebra_opaque),
1539 ZAPI_MESSAGE_OPAQUE_LENGTH);
1540 memcpy(api.opaque.data, &bzo, api.opaque.length);
e46723a5
DS
1541 }
1542
1a9cb083
JM
1543 if (allow_recursion)
1544 SET_FLAG(api.flags, ZEBRA_FLAG_ALLOW_RECURSION);
1545
5cc347c4
DS
1546 /*
1547 * When we create an aggregate route we must also
1548 * install a Null0 route in the RIB, so overwrite
1549 * what was written into api with a blackhole route
1550 */
1551 if (info->sub_type == BGP_ROUTE_AGGREGATE)
1552 zapi_route_set_blackhole(&api, BLACKHOLE_NULL);
1553 else
2ad4f093 1554 api.nexthop_num = valid_nh_count;
d62a17ae 1555
2ad4f093
RW
1556 SET_FLAG(api.message, ZAPI_MESSAGE_METRIC);
1557 api.metric = metric;
d62a17ae 1558
2ad4f093
RW
1559 if (tag) {
1560 SET_FLAG(api.message, ZAPI_MESSAGE_TAG);
1561 api.tag = tag;
1562 }
d62a17ae 1563
2ad4f093
RW
1564 distance = bgp_distance_apply(p, info, afi, safi, bgp);
1565 if (distance) {
1566 SET_FLAG(api.message, ZAPI_MESSAGE_DISTANCE);
1567 api.distance = distance;
1568 }
d62a17ae 1569
2ad4f093 1570 if (bgp_debug_zebra(p)) {
2ad4f093 1571 char nh_buf[INET6_ADDRSTRLEN];
d8744f72
CS
1572 char eth_buf[ETHER_ADDR_STRLEN + 7] = {'\0'};
1573 char buf1[ETHER_ADDR_STRLEN];
2ad4f093 1574 char label_buf[20];
53a4de82
HS
1575 char sid_buf[20];
1576 char segs_buf[256];
2ad4f093
RW
1577 int i;
1578
2dbe669b
DA
1579 zlog_debug(
1580 "Tx route %s VRF %u %pFX metric %u tag %" ROUTE_TAG_PRI
6348981a 1581 " count %d nhg %d",
2dbe669b 1582 valid_nh_count ? "add" : "delete", bgp->vrf_id,
6348981a
AK
1583 &api.prefix, api.metric, api.tag, api.nexthop_num,
1584 nhg_id);
2ad4f093
RW
1585 for (i = 0; i < api.nexthop_num; i++) {
1586 api_nh = &api.nexthops[i];
1587
1ee069db
CS
1588 switch (api_nh->type) {
1589 case NEXTHOP_TYPE_IFINDEX:
77e62f2b 1590 nh_buf[0] = '\0';
1ee069db
CS
1591 break;
1592 case NEXTHOP_TYPE_IPV4:
1593 case NEXTHOP_TYPE_IPV4_IFINDEX:
1594 nh_family = AF_INET;
77e62f2b 1595 inet_ntop(nh_family, &api_nh->gate, nh_buf,
1596 sizeof(nh_buf));
1ee069db
CS
1597 break;
1598 case NEXTHOP_TYPE_IPV6:
1599 case NEXTHOP_TYPE_IPV6_IFINDEX:
1600 nh_family = AF_INET6;
1601 inet_ntop(nh_family, &api_nh->gate, nh_buf,
1602 sizeof(nh_buf));
1603 break;
1604 case NEXTHOP_TYPE_BLACKHOLE:
1605 strlcpy(nh_buf, "blackhole", sizeof(nh_buf));
1606 break;
1607 default:
1608 /* Note: add new nexthop case */
1609 assert(0);
1610 break;
77e62f2b 1611 }
2ad4f093
RW
1612
1613 label_buf[0] = '\0';
d8744f72 1614 eth_buf[0] = '\0';
bbf32574 1615 segs_buf[0] = '\0';
cd18af00 1616 if (CHECK_FLAG(api_nh->flags, ZAPI_NEXTHOP_FLAG_LABEL)
a4d82a8a 1617 && !CHECK_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE))
a7799788
CS
1618 snprintf(label_buf, sizeof(label_buf),
1619 "label %u", api_nh->labels[0]);
09e06fcf 1620 if (CHECK_FLAG(api_nh->flags, ZAPI_NEXTHOP_FLAG_SEG6)
53a4de82
HS
1621 && !CHECK_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE)) {
1622 inet_ntop(AF_INET6, &api_nh->seg6_segs,
1623 sid_buf, sizeof(sid_buf));
1624 snprintf(segs_buf, sizeof(segs_buf), "segs %s",
1625 sid_buf);
1626 }
d8744f72
CS
1627 if (CHECK_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE)
1628 && !is_zero_mac(&api_nh->rmac))
a7799788
CS
1629 snprintf(eth_buf, sizeof(eth_buf), " RMAC %s",
1630 prefix_mac2str(&api_nh->rmac,
1631 buf1, sizeof(buf1)));
53a4de82 1632 zlog_debug(" nhop [%d]: %s if %u VRF %u wt %u %s %s %s",
77e62f2b 1633 i + 1, nh_buf, api_nh->ifindex,
4e30bc2b 1634 api_nh->vrf_id, api_nh->weight,
53a4de82 1635 label_buf, segs_buf, eth_buf);
d62a17ae 1636 }
2ad4f093 1637
960035b2
PZ
1638 int recursion_flag = 0;
1639
1640 if (CHECK_FLAG(api.flags, ZEBRA_FLAG_ALLOW_RECURSION))
1641 recursion_flag = 1;
1642
70492dea
DS
1643 zlog_debug("%s: %pFX: announcing to zebra (recursion %sset)",
1644 __func__, p, (recursion_flag ? "" : "NOT "));
960035b2 1645 }
6348981a 1646 zclient_route_send(is_add ? ZEBRA_ROUTE_ADD : ZEBRA_ROUTE_DELETE,
2ad4f093 1647 zclient, &api);
718e3744 1648}
1649
73ac8160 1650/* Announce all routes of a table to zebra */
d62a17ae 1651void bgp_zebra_announce_table(struct bgp *bgp, afi_t afi, safi_t safi)
73ac8160 1652{
9bcb3eef 1653 struct bgp_dest *dest;
d62a17ae 1654 struct bgp_table *table;
40381db7 1655 struct bgp_path_info *pi;
d62a17ae 1656
1657 /* Don't try to install if we're not connected to Zebra or Zebra doesn't
1658 * know of this instance.
1659 */
1660 if (!bgp_install_info_to_zebra(bgp))
1661 return;
1662
1663 table = bgp->rib[afi][safi];
1664 if (!table)
1665 return;
1666
9bcb3eef
DS
1667 for (dest = bgp_table_top(table); dest; dest = bgp_route_next(dest))
1668 for (pi = bgp_dest_get_bgp_path_info(dest); pi; pi = pi->next)
40381db7 1669 if (CHECK_FLAG(pi->flags, BGP_PATH_SELECTED) &&
ddb5b488 1670
40381db7
DS
1671 (pi->type == ZEBRA_ROUTE_BGP
1672 && (pi->sub_type == BGP_ROUTE_NORMAL
1673 || pi->sub_type == BGP_ROUTE_IMPORTED)))
ddb5b488 1674
9bcb3eef
DS
1675 bgp_zebra_announce(dest,
1676 bgp_dest_get_prefix(dest),
b54892e0 1677 pi, bgp, afi, safi);
73ac8160
DS
1678}
1679
c163f297
DS
1680/* Announce routes of any bgp subtype of a table to zebra */
1681void bgp_zebra_announce_table_all_subtypes(struct bgp *bgp, afi_t afi,
1682 safi_t safi)
1683{
1684 struct bgp_dest *dest;
1685 struct bgp_table *table;
1686 struct bgp_path_info *pi;
1687
1688 if (!bgp_install_info_to_zebra(bgp))
1689 return;
1690
1691 table = bgp->rib[afi][safi];
1692 if (!table)
1693 return;
1694
1695 for (dest = bgp_table_top(table); dest; dest = bgp_route_next(dest))
1696 for (pi = bgp_dest_get_bgp_path_info(dest); pi; pi = pi->next)
1697 if (CHECK_FLAG(pi->flags, BGP_PATH_SELECTED) &&
1698 pi->type == ZEBRA_ROUTE_BGP)
1699 bgp_zebra_announce(dest,
1700 bgp_dest_get_prefix(dest),
1701 pi, bgp, afi, safi);
1702}
1703
5a1ae2c2 1704void bgp_zebra_withdraw(const struct prefix *p, struct bgp_path_info *info,
568e10ca 1705 struct bgp *bgp, safi_t safi)
718e3744 1706{
2ad4f093 1707 struct zapi_route api;
f7df1907 1708 struct peer *peer;
ddb5b488 1709
d62a17ae 1710 /* Don't try to install if we're not connected to Zebra or Zebra doesn't
1711 * know of this instance.
1712 */
568e10ca 1713 if (!bgp_install_info_to_zebra(bgp))
d62a17ae 1714 return;
1715
f7df1907
PG
1716 if (safi == SAFI_FLOWSPEC) {
1717 peer = info->peer;
d90b788e
A
1718 bgp_pbr_update_entry(peer->bgp, p, info, AFI_IP, safi, false);
1719 return;
f7df1907 1720 }
529efa23 1721
2ad4f093 1722 memset(&api, 0, sizeof(api));
568e10ca 1723 api.vrf_id = bgp->vrf_id;
2ad4f093
RW
1724 api.type = ZEBRA_ROUTE_BGP;
1725 api.safi = safi;
1726 api.prefix = *p;
d62a17ae 1727
1276ce38
PG
1728 if (info->attr->rmap_table_id) {
1729 SET_FLAG(api.message, ZAPI_MESSAGE_TABLEID);
1730 api.tableid = info->attr->rmap_table_id;
1731 }
1732
88493076 1733 /* If the route's source is EVPN, flag as such. */
1734 if (is_route_parent_evpn(info))
90264d64 1735 SET_FLAG(api.flags, ZEBRA_FLAG_EVPN_ROUTE);
01740ff4 1736
2dbe669b
DA
1737 if (bgp_debug_zebra(p))
1738 zlog_debug("Tx route delete VRF %u %pFX", bgp->vrf_id,
1739 &api.prefix);
d62a17ae 1740
2ad4f093 1741 zclient_route_send(ZEBRA_ROUTE_DELETE, zclient, &api);
718e3744 1742}
56c1f7d8 1743
c163f297
DS
1744/* Withdraw all entries in a BGP instances RIB table from Zebra */
1745void bgp_zebra_withdraw_table_all_subtypes(struct bgp *bgp, afi_t afi, safi_t safi)
1746{
1747 struct bgp_dest *dest;
1748 struct bgp_table *table;
1749 struct bgp_path_info *pi;
1750
1751 if (!bgp_install_info_to_zebra(bgp))
1752 return;
1753
1754 table = bgp->rib[afi][safi];
1755 if (!table)
1756 return;
1757
1758 for (dest = bgp_table_top(table); dest; dest = bgp_route_next(dest)) {
1759 for (pi = bgp_dest_get_bgp_path_info(dest); pi; pi = pi->next) {
1760 if (CHECK_FLAG(pi->flags, BGP_PATH_SELECTED)
1761 && (pi->type == ZEBRA_ROUTE_BGP))
1762 bgp_zebra_withdraw(bgp_dest_get_prefix(dest),
1763 pi, bgp, safi);
1764 }
1765 }
1766}
1767
d7c0a89a
QY
1768struct bgp_redist *bgp_redist_lookup(struct bgp *bgp, afi_t afi, uint8_t type,
1769 unsigned short instance)
7c8ff89e 1770{
d62a17ae 1771 struct list *red_list;
1772 struct listnode *node;
1773 struct bgp_redist *red;
7c8ff89e 1774
d62a17ae 1775 red_list = bgp->redist[afi][type];
1776 if (!red_list)
1777 return (NULL);
7c8ff89e 1778
d62a17ae 1779 for (ALL_LIST_ELEMENTS_RO(red_list, node, red))
1780 if (red->instance == instance)
1781 return red;
7c8ff89e 1782
d62a17ae 1783 return NULL;
7c8ff89e
DS
1784}
1785
d7c0a89a
QY
1786struct bgp_redist *bgp_redist_add(struct bgp *bgp, afi_t afi, uint8_t type,
1787 unsigned short instance)
7c8ff89e 1788{
d62a17ae 1789 struct list *red_list;
1790 struct bgp_redist *red;
7c8ff89e 1791
d62a17ae 1792 red = bgp_redist_lookup(bgp, afi, type, instance);
1793 if (red)
1794 return red;
7c8ff89e 1795
d62a17ae 1796 if (!bgp->redist[afi][type])
1797 bgp->redist[afi][type] = list_new();
7c8ff89e 1798
d62a17ae 1799 red_list = bgp->redist[afi][type];
9f5dc319 1800 red = XCALLOC(MTYPE_BGP_REDIST, sizeof(struct bgp_redist));
d62a17ae 1801 red->instance = instance;
7c8ff89e 1802
d62a17ae 1803 listnode_add(red_list, red);
7c8ff89e 1804
d62a17ae 1805 return red;
7c8ff89e
DS
1806}
1807
d7c0a89a
QY
1808static void bgp_redist_del(struct bgp *bgp, afi_t afi, uint8_t type,
1809 unsigned short instance)
7c8ff89e 1810{
d62a17ae 1811 struct bgp_redist *red;
1812
1813 red = bgp_redist_lookup(bgp, afi, type, instance);
1814
1815 if (red) {
1816 listnode_delete(bgp->redist[afi][type], red);
1817 XFREE(MTYPE_BGP_REDIST, red);
acdf5e25 1818 if (!bgp->redist[afi][type]->count)
6a154c88 1819 list_delete(&bgp->redist[afi][type]);
d62a17ae 1820 }
7c8ff89e 1821}
6b0655a2 1822
718e3744 1823/* Other routes redistribution into BGP. */
d7c0a89a 1824int bgp_redistribute_set(struct bgp *bgp, afi_t afi, int type,
e923dd62 1825 unsigned short instance, bool changed)
718e3744 1826{
e923dd62 1827 /* If redistribute options are changed call
1828 * bgp_redistribute_unreg() to reset the option and withdraw
1829 * the routes
1830 */
1831 if (changed)
1832 bgp_redistribute_unreg(bgp, afi, type, instance);
718e3744 1833
d62a17ae 1834 /* Return if already redistribute flag is set. */
1835 if (instance) {
1836 if (redist_check_instance(&zclient->mi_redist[afi][type],
1837 instance))
1838 return CMD_WARNING;
718e3744 1839
d62a17ae 1840 redist_add_instance(&zclient->mi_redist[afi][type], instance);
1841 } else {
d9083050
IR
1842 if (vrf_bitmap_check(zclient->redist[afi][type], bgp->vrf_id))
1843 return CMD_WARNING;
1844
49e5a4a0 1845#ifdef ENABLE_BGP_VNC
f920dd6d 1846 if (EVPN_ENABLED(bgp) && type == ZEBRA_ROUTE_VNC_DIRECT) {
d62a17ae 1847 vnc_export_bgp_enable(
1848 bgp, afi); /* only enables if mode bits cfg'd */
1849 }
65efcfce
LB
1850#endif
1851
d62a17ae 1852 vrf_bitmap_set(zclient->redist[afi][type], bgp->vrf_id);
1853 }
718e3744 1854
ea12cf11
DS
1855 /*
1856 * Don't try to register if we're not connected to Zebra or Zebra
1857 * doesn't know of this instance.
1858 *
1859 * When we come up later well resend if needed.
d62a17ae 1860 */
1861 if (!bgp_install_info_to_zebra(bgp))
ea12cf11 1862 return CMD_SUCCESS;
a39275d7 1863
d62a17ae 1864 if (BGP_DEBUG(zebra, ZEBRA))
1865 zlog_debug("Tx redistribute add VRF %u afi %d %s %d",
1866 bgp->vrf_id, afi, zebra_route_string(type),
1867 instance);
518f0eb1 1868
d62a17ae 1869 /* Send distribute add message to zebra. */
1870 zebra_redistribute_send(ZEBRA_REDISTRIBUTE_ADD, zclient, afi, type,
1871 instance, bgp->vrf_id);
718e3744 1872
d62a17ae 1873 return CMD_SUCCESS;
718e3744 1874}
1875
d62a17ae 1876int bgp_redistribute_resend(struct bgp *bgp, afi_t afi, int type,
d7c0a89a 1877 unsigned short instance)
518f0eb1 1878{
d62a17ae 1879 /* Don't try to send if we're not connected to Zebra or Zebra doesn't
1880 * know of this instance.
1881 */
1882 if (!bgp_install_info_to_zebra(bgp))
1883 return -1;
1884
1885 if (BGP_DEBUG(zebra, ZEBRA))
1886 zlog_debug("Tx redistribute del/add VRF %u afi %d %s %d",
1887 bgp->vrf_id, afi, zebra_route_string(type),
1888 instance);
1889
1890 /* Send distribute add message to zebra. */
1891 zebra_redistribute_send(ZEBRA_REDISTRIBUTE_DELETE, zclient, afi, type,
1892 instance, bgp->vrf_id);
1893 zebra_redistribute_send(ZEBRA_REDISTRIBUTE_ADD, zclient, afi, type,
1894 instance, bgp->vrf_id);
1895
1896 return 0;
518f0eb1
DS
1897}
1898
718e3744 1899/* Redistribute with route-map specification. */
3dc339cd
DA
1900bool bgp_redistribute_rmap_set(struct bgp_redist *red, const char *name,
1901 struct route_map *route_map)
718e3744 1902{
d62a17ae 1903 if (red->rmap.name && (strcmp(red->rmap.name, name) == 0))
3dc339cd 1904 return false;
718e3744 1905
0a22ddfb 1906 XFREE(MTYPE_ROUTE_MAP_NAME, red->rmap.name);
b4897fa5 1907 /* Decrement the count for existing routemap and
1908 * increment the count for new route map.
1909 */
1910 route_map_counter_decrement(red->rmap.map);
d62a17ae 1911 red->rmap.name = XSTRDUP(MTYPE_ROUTE_MAP_NAME, name);
1de27621 1912 red->rmap.map = route_map;
b4897fa5 1913 route_map_counter_increment(red->rmap.map);
718e3744 1914
3dc339cd 1915 return true;
718e3744 1916}
1917
1918/* Redistribute with metric specification. */
3dc339cd
DA
1919bool bgp_redistribute_metric_set(struct bgp *bgp, struct bgp_redist *red,
1920 afi_t afi, int type, uint32_t metric)
718e3744 1921{
9bcb3eef 1922 struct bgp_dest *dest;
40381db7 1923 struct bgp_path_info *pi;
d62a17ae 1924
1925 if (red->redist_metric_flag && red->redist_metric == metric)
3dc339cd 1926 return false;
d62a17ae 1927
1928 red->redist_metric_flag = 1;
1929 red->redist_metric = metric;
1930
9bcb3eef
DS
1931 for (dest = bgp_table_top(bgp->rib[afi][SAFI_UNICAST]); dest;
1932 dest = bgp_route_next(dest)) {
1933 for (pi = bgp_dest_get_bgp_path_info(dest); pi; pi = pi->next) {
40381db7
DS
1934 if (pi->sub_type == BGP_ROUTE_REDISTRIBUTE
1935 && pi->type == type
1936 && pi->instance == red->instance) {
d62a17ae 1937 struct attr *old_attr;
1938 struct attr new_attr;
1939
6f4f49b2 1940 new_attr = *pi->attr;
d62a17ae 1941 new_attr.med = red->redist_metric;
40381db7
DS
1942 old_attr = pi->attr;
1943 pi->attr = bgp_attr_intern(&new_attr);
d62a17ae 1944 bgp_attr_unintern(&old_attr);
1945
9bcb3eef 1946 bgp_path_info_set_flag(dest, pi,
18ee8310 1947 BGP_PATH_ATTR_CHANGED);
9bcb3eef 1948 bgp_process(bgp, dest, afi, SAFI_UNICAST);
d62a17ae 1949 }
1950 }
1951 }
1952
3dc339cd 1953 return true;
718e3744 1954}
1955
1956/* Unset redistribution. */
d62a17ae 1957int bgp_redistribute_unreg(struct bgp *bgp, afi_t afi, int type,
d7c0a89a 1958 unsigned short instance)
718e3744 1959{
d62a17ae 1960 struct bgp_redist *red;
1961
1962 red = bgp_redist_lookup(bgp, afi, type, instance);
1963 if (!red)
1964 return CMD_SUCCESS;
1965
1966 /* Return if zebra connection is disabled. */
1967 if (instance) {
1968 if (!redist_check_instance(&zclient->mi_redist[afi][type],
1969 instance))
1970 return CMD_WARNING;
1971 redist_del_instance(&zclient->mi_redist[afi][type], instance);
1972 } else {
1973 if (!vrf_bitmap_check(zclient->redist[afi][type], bgp->vrf_id))
1974 return CMD_WARNING;
1975 vrf_bitmap_unset(zclient->redist[afi][type], bgp->vrf_id);
1976 }
718e3744 1977
d62a17ae 1978 if (bgp_install_info_to_zebra(bgp)) {
1979 /* Send distribute delete message to zebra. */
1980 if (BGP_DEBUG(zebra, ZEBRA))
1981 zlog_debug("Tx redistribute del VRF %u afi %d %s %d",
1982 bgp->vrf_id, afi, zebra_route_string(type),
1983 instance);
1984 zebra_redistribute_send(ZEBRA_REDISTRIBUTE_DELETE, zclient, afi,
1985 type, instance, bgp->vrf_id);
1986 }
1987
1988 /* Withdraw redistributed routes from current BGP's routing table. */
1989 bgp_redistribute_withdraw(bgp, afi, type, instance);
1990
1991 return CMD_SUCCESS;
718e3744 1992}
1993
6aeb9e78 1994/* Unset redistribution. */
d62a17ae 1995int bgp_redistribute_unset(struct bgp *bgp, afi_t afi, int type,
d7c0a89a 1996 unsigned short instance)
6aeb9e78 1997{
d62a17ae 1998 struct bgp_redist *red;
6aeb9e78 1999
ddb5b488
PZ
2000/*
2001 * vnc and vpn->vrf checks must be before red check because
2002 * they operate within bgpd irrespective of zebra connection
2003 * status. red lookup fails if there is no zebra connection.
2004 */
49e5a4a0 2005#ifdef ENABLE_BGP_VNC
f920dd6d 2006 if (EVPN_ENABLED(bgp) && type == ZEBRA_ROUTE_VNC_DIRECT) {
ddb5b488
PZ
2007 vnc_export_bgp_disable(bgp, afi);
2008 }
2009#endif
ddb5b488 2010
d62a17ae 2011 red = bgp_redist_lookup(bgp, afi, type, instance);
2012 if (!red)
2013 return CMD_SUCCESS;
6aeb9e78 2014
d62a17ae 2015 bgp_redistribute_unreg(bgp, afi, type, instance);
6aeb9e78 2016
d62a17ae 2017 /* Unset route-map. */
0a22ddfb 2018 XFREE(MTYPE_ROUTE_MAP_NAME, red->rmap.name);
b4897fa5 2019 route_map_counter_decrement(red->rmap.map);
d62a17ae 2020 red->rmap.map = NULL;
6aeb9e78 2021
d62a17ae 2022 /* Unset metric. */
2023 red->redist_metric_flag = 0;
2024 red->redist_metric = 0;
6aeb9e78 2025
d62a17ae 2026 bgp_redist_del(bgp, afi, type, instance);
6aeb9e78 2027
d62a17ae 2028 return CMD_SUCCESS;
6aeb9e78
DS
2029}
2030
fc2408ec
DS
2031void bgp_redistribute_redo(struct bgp *bgp)
2032{
2033 afi_t afi;
2034 int i;
2035 struct list *red_list;
2036 struct listnode *node;
2037 struct bgp_redist *red;
2038
2039 for (afi = AFI_IP; afi < AFI_MAX; afi++) {
2040 for (i = 0; i < ZEBRA_ROUTE_MAX; i++) {
2041
2042 red_list = bgp->redist[afi][i];
2043 if (!red_list)
2044 continue;
2045
2046 for (ALL_LIST_ELEMENTS_RO(red_list, node, red)) {
2047 bgp_redistribute_resend(bgp, afi, i,
2048 red->instance);
2049 }
2050 }
2051 }
2052}
2053
d62a17ae 2054void bgp_zclient_reset(void)
718e3744 2055{
d62a17ae 2056 zclient_reset(zclient);
718e3744 2057}
2058
ad4cbda1 2059/* Register this instance with Zebra. Invoked upon connect (for
2060 * default instance) and when other VRFs are learnt (or created and
2061 * already learnt).
2062 */
d62a17ae 2063void bgp_zebra_instance_register(struct bgp *bgp)
ad4cbda1 2064{
d62a17ae 2065 /* Don't try to register if we're not connected to Zebra */
2066 if (!zclient || zclient->sock < 0)
2067 return;
ad4cbda1 2068
d62a17ae 2069 if (BGP_DEBUG(zebra, ZEBRA))
2070 zlog_debug("Registering VRF %u", bgp->vrf_id);
ad4cbda1 2071
d62a17ae 2072 /* Register for router-id, interfaces, redistributed routes. */
2073 zclient_send_reg_requests(zclient, bgp->vrf_id);
7724c0a1 2074
e2f3a930
T
2075 /* For EVPN instance, register to learn about VNIs, if appropriate. */
2076 if (bgp->advertise_all_vni)
d62a17ae 2077 bgp_zebra_advertise_all_vni(bgp, 1);
1ee0a2df
DS
2078
2079 bgp_nht_register_nexthops(bgp);
ad4cbda1 2080}
2081
2082/* Deregister this instance with Zebra. Invoked upon the instance
2083 * being deleted (default or VRF) and it is already registered.
2084 */
d62a17ae 2085void bgp_zebra_instance_deregister(struct bgp *bgp)
ad4cbda1 2086{
d62a17ae 2087 /* Don't try to deregister if we're not connected to Zebra */
2088 if (zclient->sock < 0)
2089 return;
ad4cbda1 2090
d62a17ae 2091 if (BGP_DEBUG(zebra, ZEBRA))
2092 zlog_debug("Deregistering VRF %u", bgp->vrf_id);
ad4cbda1 2093
e2f3a930
T
2094 /* For EVPN instance, unregister learning about VNIs, if appropriate. */
2095 if (bgp->advertise_all_vni)
d62a17ae 2096 bgp_zebra_advertise_all_vni(bgp, 0);
7724c0a1 2097
d62a17ae 2098 /* Deregister for router-id, interfaces, redistributed routes. */
2099 zclient_send_dereg_requests(zclient, bgp->vrf_id);
ad4cbda1 2100}
2101
d62a17ae 2102void bgp_zebra_initiate_radv(struct bgp *bgp, struct peer *peer)
4a04e5f7 2103{
bbad0276 2104 uint32_t ra_interval = BGP_UNNUM_DEFAULT_RA_INTERVAL;
5c81b96a 2105
d62a17ae 2106 /* Don't try to initiate if we're not connected to Zebra */
2107 if (zclient->sock < 0)
2108 return;
4a04e5f7 2109
d62a17ae 2110 if (BGP_DEBUG(zebra, ZEBRA))
2111 zlog_debug("%u: Initiating RA for peer %s", bgp->vrf_id,
2112 peer->host);
4a04e5f7 2113
b3a3290e
DS
2114 /*
2115 * If unnumbered peer (peer->ifp) call thru zapi to start RAs.
2116 * If we don't have an ifp pointer, call function to find the
2117 * ifps for a numbered enhe peer to turn RAs on.
2118 */
2119 peer->ifp ? zclient_send_interface_radv_req(zclient, bgp->vrf_id,
2120 peer->ifp, 1, ra_interval)
2121 : bgp_nht_reg_enhe_cap_intfs(peer);
4a04e5f7 2122}
2123
d62a17ae 2124void bgp_zebra_terminate_radv(struct bgp *bgp, struct peer *peer)
4a04e5f7 2125{
d62a17ae 2126 /* Don't try to terminate if we're not connected to Zebra */
2127 if (zclient->sock < 0)
2128 return;
4a04e5f7 2129
d62a17ae 2130 if (BGP_DEBUG(zebra, ZEBRA))
2131 zlog_debug("%u: Terminating RA for peer %s", bgp->vrf_id,
2132 peer->host);
4a04e5f7 2133
b3a3290e
DS
2134 /*
2135 * If unnumbered peer (peer->ifp) call thru zapi to stop RAs.
2136 * If we don't have an ifp pointer, call function to find the
2137 * ifps for a numbered enhe peer to turn RAs off.
2138 */
2139 peer->ifp ? zclient_send_interface_radv_req(zclient, bgp->vrf_id,
2140 peer->ifp, 0, 0)
2141 : bgp_nht_dereg_enhe_cap_intfs(peer);
4a04e5f7 2142}
2143
31310b25
MK
2144int bgp_zebra_advertise_subnet(struct bgp *bgp, int advertise, vni_t vni)
2145{
2146 struct stream *s = NULL;
2147
2148 /* Check socket. */
2149 if (!zclient || zclient->sock < 0)
2150 return 0;
2151
2152 /* Don't try to register if Zebra doesn't know of this instance. */
bb4ef1ae
DS
2153 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp)) {
2154 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
2155 zlog_debug(
2156 "%s: No zebra instance to talk to, cannot advertise subnet",
2157 __func__);
31310b25 2158 return 0;
bb4ef1ae 2159 }
31310b25
MK
2160
2161 s = zclient->obuf;
2162 stream_reset(s);
2163
2164 zclient_create_header(s, ZEBRA_ADVERTISE_SUBNET, bgp->vrf_id);
2165 stream_putc(s, advertise);
2166 stream_put3(s, vni);
2167 stream_putw_at(s, 0, stream_get_endp(s));
2168
2169 return zclient_send_message(zclient);
2170}
2171
a8016157
CS
2172int bgp_zebra_advertise_svi_macip(struct bgp *bgp, int advertise, vni_t vni)
2173{
2174 struct stream *s = NULL;
2175
2176 /* Check socket. */
2177 if (!zclient || zclient->sock < 0)
2178 return 0;
2179
2180 /* Don't try to register if Zebra doesn't know of this instance. */
2181 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp))
2182 return 0;
2183
2184 s = zclient->obuf;
2185 stream_reset(s);
2186
2187 zclient_create_header(s, ZEBRA_ADVERTISE_SVI_MACIP, bgp->vrf_id);
2188 stream_putc(s, advertise);
2189 stream_putl(s, vni);
2190 stream_putw_at(s, 0, stream_get_endp(s));
2191
2192 return zclient_send_message(zclient);
2193}
2194
1a98c087
MK
2195int bgp_zebra_advertise_gw_macip(struct bgp *bgp, int advertise, vni_t vni)
2196{
2197 struct stream *s = NULL;
2198
2199 /* Check socket. */
2200 if (!zclient || zclient->sock < 0)
2201 return 0;
2202
2203 /* Don't try to register if Zebra doesn't know of this instance. */
bb4ef1ae
DS
2204 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp)) {
2205 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
2206 zlog_debug(
2207 "%s: No zebra instance to talk to, not installing gw_macip",
2208 __func__);
1a98c087 2209 return 0;
bb4ef1ae 2210 }
1a98c087
MK
2211
2212 s = zclient->obuf;
2213 stream_reset(s);
2214
2215 zclient_create_header(s, ZEBRA_ADVERTISE_DEFAULT_GW, bgp->vrf_id);
2216 stream_putc(s, advertise);
cc6d5476 2217 stream_putl(s, vni);
1a98c087
MK
2218 stream_putw_at(s, 0, stream_get_endp(s));
2219
2220 return zclient_send_message(zclient);
2221}
2222
fd069644
DS
2223int bgp_zebra_vxlan_flood_control(struct bgp *bgp,
2224 enum vxlan_flood_control flood_ctrl)
2225{
2226 struct stream *s;
2227
2228 /* Check socket. */
2229 if (!zclient || zclient->sock < 0)
2230 return 0;
2231
2232 /* Don't try to register if Zebra doesn't know of this instance. */
bb4ef1ae
DS
2233 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp)) {
2234 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
2235 zlog_debug(
2236 "%s: No zebra instance to talk to, not installing all vni",
2237 __func__);
fd069644 2238 return 0;
bb4ef1ae 2239 }
fd069644
DS
2240
2241 s = zclient->obuf;
2242 stream_reset(s);
2243
2244 zclient_create_header(s, ZEBRA_VXLAN_FLOOD_CONTROL, bgp->vrf_id);
2245 stream_putc(s, flood_ctrl);
2246 stream_putw_at(s, 0, stream_get_endp(s));
2247
2248 return zclient_send_message(zclient);
2249}
2250
d62a17ae 2251int bgp_zebra_advertise_all_vni(struct bgp *bgp, int advertise)
7724c0a1 2252{
d62a17ae 2253 struct stream *s;
7724c0a1 2254
d62a17ae 2255 /* Check socket. */
2256 if (!zclient || zclient->sock < 0)
2257 return 0;
7724c0a1 2258
d62a17ae 2259 /* Don't try to register if Zebra doesn't know of this instance. */
2260 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp))
2261 return 0;
7724c0a1 2262
d62a17ae 2263 s = zclient->obuf;
2264 stream_reset(s);
7724c0a1 2265
d62a17ae 2266 zclient_create_header(s, ZEBRA_ADVERTISE_ALL_VNI, bgp->vrf_id);
2267 stream_putc(s, advertise);
fbac9605
DS
2268 /* Also inform current BUM handling setting. This is really
2269 * relevant only when 'advertise' is set.
2270 */
fd069644 2271 stream_putc(s, bgp->vxlan_flood_ctrl);
d62a17ae 2272 stream_putw_at(s, 0, stream_get_endp(s));
7724c0a1 2273
d62a17ae 2274 return zclient_send_message(zclient);
7724c0a1 2275}
2276
0b9d9cd0
CS
2277int bgp_zebra_dup_addr_detection(struct bgp *bgp)
2278{
2279 struct stream *s;
2280
2281 /* Check socket. */
2282 if (!zclient || zclient->sock < 0)
2283 return 0;
2284
2285 /* Don't try to register if Zebra doesn't know of this instance. */
2286 if (!IS_BGP_INST_KNOWN_TO_ZEBRA(bgp))
2287 return 0;
2288
2289 if (BGP_DEBUG(zebra, ZEBRA))
2290 zlog_debug("dup addr detect %s max_moves %u time %u freeze %s freeze_time %u",
2291 bgp->evpn_info->dup_addr_detect ?
2292 "enable" : "disable",
2293 bgp->evpn_info->dad_max_moves,
2294 bgp->evpn_info->dad_time,
2295 bgp->evpn_info->dad_freeze ?
2296 "enable" : "disable",
2297 bgp->evpn_info->dad_freeze_time);
2298
2299 s = zclient->obuf;
2300 stream_reset(s);
2301 zclient_create_header(s, ZEBRA_DUPLICATE_ADDR_DETECTION,
2302 bgp->vrf_id);
2303 stream_putl(s, bgp->evpn_info->dup_addr_detect);
2304 stream_putl(s, bgp->evpn_info->dad_time);
2305 stream_putl(s, bgp->evpn_info->dad_max_moves);
2306 stream_putl(s, bgp->evpn_info->dad_freeze);
2307 stream_putl(s, bgp->evpn_info->dad_freeze_time);
2308 stream_putw_at(s, 0, stream_get_endp(s));
2309
2310 return zclient_send_message(zclient);
2311}
2312
121f9dee 2313static int rule_notify_owner(ZAPI_CALLBACK_ARGS)
30d50e6d
PG
2314{
2315 uint32_t seqno, priority, unique;
2316 enum zapi_rule_notify_owner note;
2317 struct bgp_pbr_action *bgp_pbra;
ffee150e 2318 struct bgp_pbr_rule *bgp_pbr = NULL;
58a1d249 2319 char ifname[INTERFACE_NAMSIZ + 1];
30d50e6d
PG
2320
2321 if (!zapi_rule_notify_decode(zclient->ibuf, &seqno, &priority, &unique,
58a1d249 2322 ifname, &note))
30d50e6d
PG
2323 return -1;
2324
70eabd12 2325 bgp_pbra = bgp_pbr_action_rule_lookup(vrf_id, unique);
30d50e6d 2326 if (!bgp_pbra) {
ffee150e
PG
2327 /* look in bgp pbr rule */
2328 bgp_pbr = bgp_pbr_rule_lookup(vrf_id, unique);
2329 if (!bgp_pbr && note != ZAPI_RULE_REMOVED) {
2330 if (BGP_DEBUG(zebra, ZEBRA))
2331 zlog_debug("%s: Fail to look BGP rule (%u)",
15569c58 2332 __func__, unique);
ffee150e
PG
2333 return 0;
2334 }
30d50e6d
PG
2335 }
2336
2337 switch (note) {
2338 case ZAPI_RULE_FAIL_INSTALL:
2339 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2340 zlog_debug("%s: Received RULE_FAIL_INSTALL", __func__);
ffee150e
PG
2341 if (bgp_pbra) {
2342 bgp_pbra->installed = false;
2343 bgp_pbra->install_in_progress = false;
2344 } else {
2345 bgp_pbr->installed = false;
2346 bgp_pbr->install_in_progress = false;
2347 }
30d50e6d
PG
2348 break;
2349 case ZAPI_RULE_INSTALLED:
ffee150e
PG
2350 if (bgp_pbra) {
2351 bgp_pbra->installed = true;
2352 bgp_pbra->install_in_progress = false;
2353 } else {
ce3c0614
PG
2354 struct bgp_path_info *path;
2355 struct bgp_path_info_extra *extra;
2356
ffee150e
PG
2357 bgp_pbr->installed = true;
2358 bgp_pbr->install_in_progress = false;
2359 bgp_pbr->action->refcnt++;
ce3c0614
PG
2360 /* link bgp_info to bgp_pbr */
2361 path = (struct bgp_path_info *)bgp_pbr->path;
2362 extra = bgp_path_info_extra_get(path);
f5925234
PG
2363 listnode_add_force(&extra->bgp_fs_iprule,
2364 bgp_pbr);
ffee150e 2365 }
30d50e6d 2366 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2367 zlog_debug("%s: Received RULE_INSTALLED", __func__);
30d50e6d 2368 break;
f18a08f5 2369 case ZAPI_RULE_FAIL_REMOVE:
30d50e6d
PG
2370 case ZAPI_RULE_REMOVED:
2371 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2372 zlog_debug("%s: Received RULE REMOVED", __func__);
30d50e6d
PG
2373 break;
2374 }
2375
2376 return 0;
2377}
2378
121f9dee 2379static int ipset_notify_owner(ZAPI_CALLBACK_ARGS)
30d50e6d
PG
2380{
2381 uint32_t unique;
2382 enum zapi_ipset_notify_owner note;
2383 struct bgp_pbr_match *bgp_pbim;
2384
2385 if (!zapi_ipset_notify_decode(zclient->ibuf,
2386 &unique,
2387 &note))
2388 return -1;
2389
2390 bgp_pbim = bgp_pbr_match_ipset_lookup(vrf_id, unique);
2391 if (!bgp_pbim) {
2392 if (BGP_DEBUG(zebra, ZEBRA))
88055124 2393 zlog_debug("%s: Fail to look BGP match ( %u, ID %u)",
15569c58 2394 __func__, note, unique);
30d50e6d
PG
2395 return 0;
2396 }
2397
2398 switch (note) {
2399 case ZAPI_IPSET_FAIL_INSTALL:
2400 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2401 zlog_debug("%s: Received IPSET_FAIL_INSTALL", __func__);
30d50e6d
PG
2402 bgp_pbim->installed = false;
2403 bgp_pbim->install_in_progress = false;
2404 break;
2405 case ZAPI_IPSET_INSTALLED:
2406 bgp_pbim->installed = true;
2407 bgp_pbim->install_in_progress = false;
2408 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2409 zlog_debug("%s: Received IPSET_INSTALLED", __func__);
30d50e6d 2410 break;
f18a08f5 2411 case ZAPI_IPSET_FAIL_REMOVE:
30d50e6d
PG
2412 case ZAPI_IPSET_REMOVED:
2413 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2414 zlog_debug("%s: Received IPSET REMOVED", __func__);
30d50e6d
PG
2415 break;
2416 }
2417
2418 return 0;
2419}
2420
121f9dee 2421static int ipset_entry_notify_owner(ZAPI_CALLBACK_ARGS)
30d50e6d
PG
2422{
2423 uint32_t unique;
2424 char ipset_name[ZEBRA_IPSET_NAME_SIZE];
2425 enum zapi_ipset_entry_notify_owner note;
2426 struct bgp_pbr_match_entry *bgp_pbime;
2427
2428 if (!zapi_ipset_entry_notify_decode(
2429 zclient->ibuf,
2430 &unique,
2431 ipset_name,
2432 &note))
2433 return -1;
2434 bgp_pbime = bgp_pbr_match_ipset_entry_lookup(vrf_id,
2435 ipset_name,
2436 unique);
2437 if (!bgp_pbime) {
2438 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
2439 zlog_debug(
2440 "%s: Fail to look BGP match entry (%u, ID %u)",
2441 __func__, note, unique);
30d50e6d
PG
2442 return 0;
2443 }
2444
2445 switch (note) {
2446 case ZAPI_IPSET_ENTRY_FAIL_INSTALL:
2447 if (BGP_DEBUG(zebra, ZEBRA))
2448 zlog_debug("%s: Received IPSET_ENTRY_FAIL_INSTALL",
15569c58 2449 __func__);
30d50e6d
PG
2450 bgp_pbime->installed = false;
2451 bgp_pbime->install_in_progress = false;
2452 break;
2453 case ZAPI_IPSET_ENTRY_INSTALLED:
b588b642 2454 {
9b6d8fcf 2455 struct bgp_path_info *path;
4b7e6066
DS
2456 struct bgp_path_info_extra *extra;
2457
2458 bgp_pbime->installed = true;
2459 bgp_pbime->install_in_progress = false;
2460 if (BGP_DEBUG(zebra, ZEBRA))
2461 zlog_debug("%s: Received IPSET_ENTRY_INSTALLED",
15569c58 2462 __func__);
9b6d8fcf
DS
2463 /* link bgp_path_info to bpme */
2464 path = (struct bgp_path_info *)bgp_pbime->path;
2465 extra = bgp_path_info_extra_get(path);
f5925234 2466 listnode_add_force(&extra->bgp_fs_pbr, bgp_pbime);
b588b642 2467 }
30d50e6d 2468 break;
f18a08f5 2469 case ZAPI_IPSET_ENTRY_FAIL_REMOVE:
30d50e6d
PG
2470 case ZAPI_IPSET_ENTRY_REMOVED:
2471 if (BGP_DEBUG(zebra, ZEBRA))
2472 zlog_debug("%s: Received IPSET_ENTRY_REMOVED",
15569c58 2473 __func__);
30d50e6d
PG
2474 break;
2475 }
2476 return 0;
2477}
2478
121f9dee 2479static int iptable_notify_owner(ZAPI_CALLBACK_ARGS)
c16a0a62
PG
2480{
2481 uint32_t unique;
2482 enum zapi_iptable_notify_owner note;
2483 struct bgp_pbr_match *bgpm;
2484
2485 if (!zapi_iptable_notify_decode(
2486 zclient->ibuf,
2487 &unique,
2488 &note))
2489 return -1;
2490 bgpm = bgp_pbr_match_iptable_lookup(vrf_id, unique);
2491 if (!bgpm) {
2492 if (BGP_DEBUG(zebra, ZEBRA))
82e194ed 2493 zlog_debug("%s: Fail to look BGP iptable (%u %u)",
15569c58 2494 __func__, note, unique);
c16a0a62
PG
2495 return 0;
2496 }
2497 switch (note) {
2498 case ZAPI_IPTABLE_FAIL_INSTALL:
2499 if (BGP_DEBUG(zebra, ZEBRA))
2500 zlog_debug("%s: Received IPTABLE_FAIL_INSTALL",
15569c58 2501 __func__);
c16a0a62
PG
2502 bgpm->installed_in_iptable = false;
2503 bgpm->install_iptable_in_progress = false;
2504 break;
2505 case ZAPI_IPTABLE_INSTALLED:
2506 bgpm->installed_in_iptable = true;
2507 bgpm->install_iptable_in_progress = false;
2508 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2509 zlog_debug("%s: Received IPTABLE_INSTALLED", __func__);
a6b07429 2510 bgpm->action->refcnt++;
c16a0a62 2511 break;
f18a08f5 2512 case ZAPI_IPTABLE_FAIL_REMOVE:
c16a0a62
PG
2513 case ZAPI_IPTABLE_REMOVED:
2514 if (BGP_DEBUG(zebra, ZEBRA))
15569c58 2515 zlog_debug("%s: Received IPTABLE REMOVED", __func__);
c16a0a62
PG
2516 break;
2517 }
2518 return 0;
2519}
2520
a77e2f4b
S
2521/* Process route notification messages from RIB */
2522static int bgp_zebra_route_notify_owner(int command, struct zclient *zclient,
2523 zebra_size_t length, vrf_id_t vrf_id)
2524{
2525 struct prefix p;
2526 enum zapi_route_notify_owner note;
2527 uint32_t table_id;
a77e2f4b
S
2528 afi_t afi;
2529 safi_t safi;
2530 struct bgp_dest *dest;
2531 struct bgp *bgp;
2532 struct bgp_path_info *pi, *new_select;
2533
2534 if (!zapi_route_notify_decode(zclient->ibuf, &p, &table_id, &note,
2535 &afi, &safi)) {
cc42c4f0 2536 zlog_err("%s : error in msg decode", __func__);
a77e2f4b
S
2537 return -1;
2538 }
2539
2540 /* Get the bgp instance */
2541 bgp = bgp_lookup_by_vrf_id(vrf_id);
2542 if (!bgp) {
2543 flog_err(EC_BGP_INVALID_BGP_INSTANCE,
cc42c4f0
DS
2544 "%s : bgp instance not found vrf %d", __func__,
2545 vrf_id);
a77e2f4b
S
2546 return -1;
2547 }
2548
a77e2f4b
S
2549 /* Find the bgp route node */
2550 dest = bgp_afi_node_lookup(bgp->rib[afi][safi], afi, safi, &p,
2551 &bgp->vrf_prd);
2552 if (!dest)
2553 return -1;
2554
a77e2f4b
S
2555 switch (note) {
2556 case ZAPI_ROUTE_INSTALLED:
2557 new_select = NULL;
2558 /* Clear the flags so that route can be processed */
be785e35
DS
2559 UNSET_FLAG(dest->flags, BGP_NODE_FIB_INSTALL_PENDING);
2560 SET_FLAG(dest->flags, BGP_NODE_FIB_INSTALLED);
2561 if (BGP_DEBUG(zebra, ZEBRA))
2562 zlog_debug("route %pRN : INSTALLED", dest);
2563 /* Find the best route */
2564 for (pi = dest->info; pi; pi = pi->next) {
2565 /* Process aggregate route */
2566 bgp_aggregate_increment(bgp, &p, pi, afi, safi);
2567 if (CHECK_FLAG(pi->flags, BGP_PATH_SELECTED))
2568 new_select = pi;
2569 }
2570 /* Advertise the route */
2571 if (new_select)
2572 group_announce_route(bgp, afi, safi, dest, new_select);
2573 else {
2574 flog_err(EC_BGP_INVALID_ROUTE,
2575 "selected route %pRN not found", dest);
2576
2577 bgp_dest_unlock_node(dest);
2578 return -1;
a77e2f4b
S
2579 }
2580 break;
2581 case ZAPI_ROUTE_REMOVED:
2582 /* Route deleted from dataplane, reset the installed flag
2583 * so that route can be reinstalled when client sends
2584 * route add later
2585 */
2586 UNSET_FLAG(dest->flags, BGP_NODE_FIB_INSTALLED);
1a3519b6
DS
2587 if (BGP_DEBUG(zebra, ZEBRA))
2588 zlog_debug("route %pRN: Removed from Fib", dest);
a77e2f4b
S
2589 break;
2590 case ZAPI_ROUTE_FAIL_INSTALL:
be785e35 2591 new_select = NULL;
1a3519b6
DS
2592 if (BGP_DEBUG(zebra, ZEBRA))
2593 zlog_debug("route: %pRN Failed to Install into Fib",
2594 dest);
be785e35
DS
2595 UNSET_FLAG(dest->flags, BGP_NODE_FIB_INSTALL_PENDING);
2596 UNSET_FLAG(dest->flags, BGP_NODE_FIB_INSTALLED);
2597 for (pi = bgp_dest_get_bgp_path_info(dest); pi; pi = pi->next) {
2598 if (CHECK_FLAG(pi->flags, BGP_PATH_SELECTED))
2599 new_select = pi;
2600 }
2601 if (new_select)
2602 group_announce_route(bgp, afi, safi, dest, new_select);
a77e2f4b
S
2603 /* Error will be logged by zebra module */
2604 break;
2605 case ZAPI_ROUTE_BETTER_ADMIN_WON:
1a3519b6
DS
2606 if (BGP_DEBUG(zebra, ZEBRA))
2607 zlog_debug("route: %pRN removed due to better admin won",
2608 dest);
be785e35
DS
2609 new_select = NULL;
2610 UNSET_FLAG(dest->flags, BGP_NODE_FIB_INSTALL_PENDING);
2611 UNSET_FLAG(dest->flags, BGP_NODE_FIB_INSTALLED);
2612 for (pi = bgp_dest_get_bgp_path_info(dest); pi; pi = pi->next) {
2613 bgp_aggregate_decrement(bgp, &p, pi, afi, safi);
2614 if (CHECK_FLAG(pi->flags, BGP_PATH_SELECTED))
2615 new_select = pi;
2616 }
2617 if (new_select)
2618 group_announce_route(bgp, afi, safi, dest, new_select);
a77e2f4b
S
2619 /* No action required */
2620 break;
2621 case ZAPI_ROUTE_REMOVE_FAIL:
1a3519b6
DS
2622 zlog_warn("%s: Route %pRN failure to remove",
2623 __func__, dest);
a77e2f4b
S
2624 break;
2625 }
e71ad4b6
DA
2626
2627 bgp_dest_unlock_node(dest);
a77e2f4b
S
2628 return 0;
2629}
2630
6cfe5d15
PG
2631/* this function is used to forge ip rule,
2632 * - either for iptable/ipset using fwmark id
121f9dee 2633 * - or for sample ip rule cmd
6cfe5d15 2634 */
30d50e6d 2635static void bgp_encode_pbr_rule_action(struct stream *s,
6cfe5d15
PG
2636 struct bgp_pbr_action *pbra,
2637 struct bgp_pbr_rule *pbr)
30d50e6d 2638{
6cfe5d15 2639 struct prefix pfx;
f01e580f 2640 uint8_t fam = AF_INET;
e95666cb 2641 char ifname[INTERFACE_NAMSIZ];
30d50e6d 2642
9f1f03ec 2643 if (pbra->nh.type == NEXTHOP_TYPE_IPV6)
f01e580f 2644 fam = AF_INET6;
30d50e6d 2645 stream_putl(s, 0); /* seqno unused */
8112a7a0
PG
2646 if (pbr)
2647 stream_putl(s, pbr->priority);
2648 else
2649 stream_putl(s, 0);
2650 /* ruleno unused - priority change
2651 * ruleno permits distinguishing various FS PBR entries
2652 * - FS PBR entries based on ipset/iptables
2653 * - FS PBR entries based on iprule
2654 * the latter may contain default routing information injected by FS
2655 */
6cfe5d15
PG
2656 if (pbr)
2657 stream_putl(s, pbr->unique);
2658 else
2659 stream_putl(s, pbra->unique);
f56697ef 2660 stream_putc(s, 0); /* ip protocol being used */
6cfe5d15
PG
2661 if (pbr && pbr->flags & MATCH_IP_SRC_SET)
2662 memcpy(&pfx, &(pbr->src), sizeof(struct prefix));
2663 else {
2664 memset(&pfx, 0, sizeof(pfx));
f01e580f 2665 pfx.family = fam;
6cfe5d15
PG
2666 }
2667 stream_putc(s, pfx.family);
2668 stream_putc(s, pfx.prefixlen);
2669 stream_put(s, &pfx.u.prefix, prefix_blen(&pfx));
30d50e6d
PG
2670
2671 stream_putw(s, 0); /* src port */
2672
6cfe5d15
PG
2673 if (pbr && pbr->flags & MATCH_IP_DST_SET)
2674 memcpy(&pfx, &(pbr->dst), sizeof(struct prefix));
2675 else {
2676 memset(&pfx, 0, sizeof(pfx));
f01e580f 2677 pfx.family = fam;
6cfe5d15
PG
2678 }
2679 stream_putc(s, pfx.family);
2680 stream_putc(s, pfx.prefixlen);
2681 stream_put(s, &pfx.u.prefix, prefix_blen(&pfx));
30d50e6d
PG
2682
2683 stream_putw(s, 0); /* dst port */
e95666cb 2684 stream_putc(s, 0); /* dsfield */
6cfe5d15
PG
2685 /* if pbr present, fwmark is not used */
2686 if (pbr)
2687 stream_putl(s, 0);
2688 else
2689 stream_putl(s, pbra->fwmark); /* fwmark */
30d50e6d
PG
2690
2691 stream_putl(s, pbra->table_id);
2692
e95666cb
DS
2693 memset(ifname, 0, sizeof(ifname));
2694 stream_put(s, ifname, INTERFACE_NAMSIZ); /* ifname unused */
30d50e6d
PG
2695}
2696
2697static void bgp_encode_pbr_ipset_match(struct stream *s,
2698 struct bgp_pbr_match *pbim)
2699{
2700 stream_putl(s, pbim->unique);
2701 stream_putl(s, pbim->type);
a60b7031 2702 stream_putc(s, pbim->family);
30d50e6d
PG
2703 stream_put(s, pbim->ipset_name,
2704 ZEBRA_IPSET_NAME_SIZE);
30d50e6d
PG
2705}
2706
2707static void bgp_encode_pbr_ipset_entry_match(struct stream *s,
2708 struct bgp_pbr_match_entry *pbime)
2709{
2710 stream_putl(s, pbime->unique);
2711 /* check that back pointer is not null */
2712 stream_put(s, pbime->backpointer->ipset_name,
2713 ZEBRA_IPSET_NAME_SIZE);
2714
2715 stream_putc(s, pbime->src.family);
2716 stream_putc(s, pbime->src.prefixlen);
2717 stream_put(s, &pbime->src.u.prefix, prefix_blen(&pbime->src));
2718
2719 stream_putc(s, pbime->dst.family);
2720 stream_putc(s, pbime->dst.prefixlen);
2721 stream_put(s, &pbime->dst.u.prefix, prefix_blen(&pbime->dst));
f730e566
PG
2722
2723 stream_putw(s, pbime->src_port_min);
2724 stream_putw(s, pbime->src_port_max);
2725 stream_putw(s, pbime->dst_port_min);
2726 stream_putw(s, pbime->dst_port_max);
2727 stream_putc(s, pbime->proto);
30d50e6d
PG
2728}
2729
c16a0a62
PG
2730static void bgp_encode_pbr_iptable_match(struct stream *s,
2731 struct bgp_pbr_action *bpa,
2732 struct bgp_pbr_match *pbm)
2733{
2734 stream_putl(s, pbm->unique2);
2735
2736 stream_putl(s, pbm->type);
2737
2738 stream_putl(s, pbm->flags);
2739
2740 /* TODO: correlate with what is contained
2741 * into bgp_pbr_action.
2742 * currently only forward supported
2743 */
2744 if (bpa->nh.type == NEXTHOP_TYPE_BLACKHOLE)
2745 stream_putl(s, ZEBRA_IPTABLES_DROP);
2746 else
2747 stream_putl(s, ZEBRA_IPTABLES_FORWARD);
2748 stream_putl(s, bpa->fwmark);
2749 stream_put(s, pbm->ipset_name,
2750 ZEBRA_IPSET_NAME_SIZE);
a60b7031 2751 stream_putc(s, pbm->family);
83360720
PG
2752 stream_putw(s, pbm->pkt_len_min);
2753 stream_putw(s, pbm->pkt_len_max);
2da7d62e
PG
2754 stream_putw(s, pbm->tcp_flags);
2755 stream_putw(s, pbm->tcp_mask_flags);
4977bd6c 2756 stream_putc(s, pbm->dscp_value);
6f5617d8 2757 stream_putc(s, pbm->fragment);
f449d223 2758 stream_putc(s, pbm->protocol);
a60b7031 2759 stream_putw(s, pbm->flow_label);
c16a0a62
PG
2760}
2761
ad4cbda1 2762/* BGP has established connection with Zebra. */
d62a17ae 2763static void bgp_zebra_connected(struct zclient *zclient)
7076bb2f 2764{
d62a17ae 2765 struct bgp *bgp;
7076bb2f 2766
d62a17ae 2767 zclient_num_connects++; /* increment even if not responding */
afbb1c59 2768
6bfcd0f1
IR
2769 /* Send the client registration */
2770 bfd_client_sendmsg(zclient, ZEBRA_BFD_CLIENT_REGISTER, VRF_DEFAULT);
2771
d62a17ae 2772 /* At this point, we may or may not have BGP instances configured, but
2773 * we're only interested in the default VRF (others wouldn't have learnt
2774 * the VRF from Zebra yet.)
2775 */
2776 bgp = bgp_get_default();
2777 if (!bgp)
2778 return;
ad4cbda1 2779
d62a17ae 2780 bgp_zebra_instance_register(bgp);
ad4cbda1 2781
955bfd98 2782 /* tell label pool that zebra is connected */
e70e9f8e 2783 bgp_lp_event_zebra_up();
955bfd98 2784
d62a17ae 2785 /* TODO - What if we have peers and networks configured, do we have to
2786 * kick-start them?
2787 */
85ef4179 2788 BGP_GR_ROUTER_DETECT_AND_SEND_CAPABILITY_TO_ZEBRA(bgp, bgp->peer);
7076bb2f
FL
2789}
2790
c44ab6f1
AK
2791static int bgp_zebra_process_local_es_add(ZAPI_CALLBACK_ARGS)
2792{
2793 esi_t esi;
2794 struct bgp *bgp = NULL;
2795 struct stream *s = NULL;
2796 char buf[ESI_STR_LEN];
2797 struct in_addr originator_ip;
2798 uint8_t active;
74be8313 2799 uint8_t bypass;
74e2bd89 2800 uint16_t df_pref;
c44ab6f1
AK
2801
2802 bgp = bgp_lookup_by_vrf_id(vrf_id);
2803 if (!bgp)
2804 return 0;
2805
2806 s = zclient->ibuf;
2807 stream_get(&esi, s, sizeof(esi_t));
2808 originator_ip.s_addr = stream_get_ipv4(s);
2809 active = stream_getc(s);
74e2bd89 2810 df_pref = stream_getw(s);
74be8313 2811 bypass = stream_getc(s);
c44ab6f1
AK
2812
2813 if (BGP_DEBUG(zebra, ZEBRA))
74e2bd89 2814 zlog_debug(
74be8313
AK
2815 "Rx add ESI %s originator-ip %pI4 active %u df_pref %u %s",
2816 esi_to_str(&esi, buf, sizeof(buf)), &originator_ip,
2817 active, df_pref, bypass ? "bypass" : "");
c44ab6f1 2818
a383bfc7
AK
2819 frrtrace(5, frr_bgp, evpn_mh_local_es_add_zrecv, &esi, originator_ip,
2820 active, bypass, df_pref);
2821
74be8313
AK
2822 bgp_evpn_local_es_add(bgp, &esi, originator_ip, active, df_pref,
2823 !!bypass);
c44ab6f1
AK
2824
2825 return 0;
2826}
2827
2828static int bgp_zebra_process_local_es_del(ZAPI_CALLBACK_ARGS)
50f74cf1 2829{
2830 esi_t esi;
2831 struct bgp *bgp = NULL;
2832 struct stream *s = NULL;
2833 char buf[ESI_STR_LEN];
50f74cf1 2834
2835 memset(&esi, 0, sizeof(esi_t));
c44ab6f1
AK
2836 bgp = bgp_lookup_by_vrf_id(vrf_id);
2837 if (!bgp)
2838 return 0;
2839
2840 s = zclient->ibuf;
2841 stream_get(&esi, s, sizeof(esi_t));
2842
2843 if (BGP_DEBUG(zebra, ZEBRA))
2844 zlog_debug("Rx del ESI %s",
2845 esi_to_str(&esi, buf, sizeof(buf)));
2846
a383bfc7
AK
2847 frrtrace(1, frr_bgp, evpn_mh_local_es_del_zrecv, &esi);
2848
c44ab6f1
AK
2849 bgp_evpn_local_es_del(bgp, &esi);
2850
2851 return 0;
2852}
2853
2854static int bgp_zebra_process_local_es_evi(ZAPI_CALLBACK_ARGS)
2855{
2856 esi_t esi;
2857 vni_t vni;
2858 struct bgp *bgp;
2859 struct stream *s;
2860 char buf[ESI_STR_LEN];
50f74cf1 2861
2862 bgp = bgp_lookup_by_vrf_id(vrf_id);
2863 if (!bgp)
2864 return 0;
2865
2866 s = zclient->ibuf;
2867 stream_get(&esi, s, sizeof(esi_t));
c44ab6f1 2868 vni = stream_getl(s);
50f74cf1 2869
2870 if (BGP_DEBUG(zebra, ZEBRA))
c44ab6f1 2871 zlog_debug("Rx %s ESI %s VNI %u",
3756b9ac
IS
2872 (cmd == ZEBRA_VNI_ADD) ? "add" : "del",
2873 esi_to_str(&esi, buf, sizeof(buf)), vni);
50f74cf1 2874
a383bfc7
AK
2875 if (cmd == ZEBRA_LOCAL_ES_EVI_ADD) {
2876 frrtrace(2, frr_bgp, evpn_mh_local_es_evi_add_zrecv, &esi, vni);
2877
c44ab6f1 2878 bgp_evpn_local_es_evi_add(bgp, &esi, vni);
a383bfc7
AK
2879 } else {
2880 frrtrace(2, frr_bgp, evpn_mh_local_es_evi_del_zrecv, &esi, vni);
2881
c44ab6f1 2882 bgp_evpn_local_es_evi_del(bgp, &esi, vni);
a383bfc7 2883 }
c44ab6f1 2884
50f74cf1 2885 return 0;
2886}
2887
121f9dee 2888static int bgp_zebra_process_local_l3vni(ZAPI_CALLBACK_ARGS)
fe1dc5a3 2889{
c48d9f5f 2890 int filter = 0;
b67a60d2 2891 vni_t l3vni = 0;
14e814ea 2892 struct ethaddr svi_rmac, vrr_rmac = {.octet = {0} };
b67a60d2 2893 struct in_addr originator_ip;
fe1dc5a3 2894 struct stream *s;
0483af6e 2895 ifindex_t svi_ifindex;
14e814ea 2896 bool is_anycast_mac = false;
fe1dc5a3 2897
6006b807
DA
2898 memset(&svi_rmac, 0, sizeof(svi_rmac));
2899 memset(&originator_ip, 0, sizeof(originator_ip));
fe1dc5a3
MK
2900 s = zclient->ibuf;
2901 l3vni = stream_getl(s);
b67a60d2 2902 if (cmd == ZEBRA_L3VNI_ADD) {
14e814ea 2903 stream_get(&svi_rmac, s, sizeof(struct ethaddr));
b67a60d2 2904 originator_ip.s_addr = stream_get_ipv4(s);
c48d9f5f 2905 stream_get(&filter, s, sizeof(int));
0483af6e 2906 svi_ifindex = stream_getl(s);
14e814ea
CS
2907 stream_get(&vrr_rmac, s, sizeof(struct ethaddr));
2908 is_anycast_mac = stream_getl(s);
fe1dc5a3 2909
0483af6e 2910 if (BGP_DEBUG(zebra, ZEBRA))
c0d72166
DS
2911 zlog_debug(
2912 "Rx L3-VNI ADD VRF %s VNI %u RMAC svi-mac %pEA vrr-mac %pEA filter %s svi-if %u",
2913 vrf_id_to_name(vrf_id), l3vni, &svi_rmac,
2914 &vrr_rmac,
2915 filter ? "prefix-routes-only" : "none",
2916 svi_ifindex);
fe1dc5a3 2917
a383bfc7
AK
2918 frrtrace(8, frr_bgp, evpn_local_l3vni_add_zrecv, l3vni, vrf_id,
2919 &svi_rmac, &vrr_rmac, filter, originator_ip,
2920 svi_ifindex, is_anycast_mac);
2921
14e814ea
CS
2922 bgp_evpn_local_l3vni_add(l3vni, vrf_id, &svi_rmac, &vrr_rmac,
2923 originator_ip, filter, svi_ifindex,
2924 is_anycast_mac);
0483af6e 2925 } else {
2926 if (BGP_DEBUG(zebra, ZEBRA))
2927 zlog_debug("Rx L3-VNI DEL VRF %s VNI %u",
2928 vrf_id_to_name(vrf_id), l3vni);
2929
a383bfc7
AK
2930 frrtrace(2, frr_bgp, evpn_local_l3vni_del_zrecv, l3vni, vrf_id);
2931
fe1dc5a3 2932 bgp_evpn_local_l3vni_del(l3vni, vrf_id);
0483af6e 2933 }
fe1dc5a3
MK
2934
2935 return 0;
2936}
2937
121f9dee 2938static int bgp_zebra_process_local_vni(ZAPI_CALLBACK_ARGS)
128ea8ab 2939{
d62a17ae 2940 struct stream *s;
2941 vni_t vni;
2942 struct bgp *bgp;
a4d82a8a 2943 struct in_addr vtep_ip = {INADDR_ANY};
29c53922 2944 vrf_id_t tenant_vrf_id = VRF_DEFAULT;
76d07c7a 2945 struct in_addr mcast_grp = {INADDR_ANY};
9daa5d47 2946 ifindex_t svi_ifindex = 0;
d62a17ae 2947
2948 s = zclient->ibuf;
2949 vni = stream_getl(s);
121f9dee 2950 if (cmd == ZEBRA_VNI_ADD) {
d62a17ae 2951 vtep_ip.s_addr = stream_get_ipv4(s);
29c53922 2952 stream_get(&tenant_vrf_id, s, sizeof(vrf_id_t));
76d07c7a 2953 mcast_grp.s_addr = stream_get_ipv4(s);
9daa5d47 2954 stream_get(&svi_ifindex, s, sizeof(ifindex_t));
29c53922
MK
2955 }
2956
d62a17ae 2957 bgp = bgp_lookup_by_vrf_id(vrf_id);
2958 if (!bgp)
2959 return 0;
2960
2961 if (BGP_DEBUG(zebra, ZEBRA))
9daa5d47
AD
2962 zlog_debug(
2963 "Rx VNI %s VRF %s VNI %u tenant-vrf %s SVI ifindex %u",
2964 (cmd == ZEBRA_VNI_ADD) ? "add" : "del",
2965 vrf_id_to_name(vrf_id), vni,
2966 vrf_id_to_name(tenant_vrf_id), svi_ifindex);
d62a17ae 2967
a383bfc7
AK
2968 if (cmd == ZEBRA_VNI_ADD) {
2969 frrtrace(4, frr_bgp, evpn_local_vni_add_zrecv, vni, vtep_ip,
2970 tenant_vrf_id, mcast_grp);
2971
d62a17ae 2972 return bgp_evpn_local_vni_add(
975a328e
DA
2973 bgp, vni,
2974 vtep_ip.s_addr != INADDR_ANY ? vtep_ip : bgp->router_id,
9daa5d47 2975 tenant_vrf_id, mcast_grp, svi_ifindex);
a383bfc7
AK
2976 } else {
2977 frrtrace(1, frr_bgp, evpn_local_vni_del_zrecv, vni);
2978
d62a17ae 2979 return bgp_evpn_local_vni_del(bgp, vni);
a383bfc7 2980 }
128ea8ab 2981}
2982
121f9dee 2983static int bgp_zebra_process_local_macip(ZAPI_CALLBACK_ARGS)
128ea8ab 2984{
d62a17ae 2985 struct stream *s;
2986 vni_t vni;
2987 struct bgp *bgp;
2988 struct ethaddr mac;
2989 struct ipaddr ip;
2990 int ipa_len;
f07e1c99 2991 uint8_t flags = 0;
2992 uint32_t seqnum = 0;
ec0ab544 2993 int state = 0;
c44ab6f1
AK
2994 char buf2[ESI_STR_LEN];
2995 esi_t esi;
d62a17ae 2996
2997 memset(&ip, 0, sizeof(ip));
2998 s = zclient->ibuf;
2999 vni = stream_getl(s);
28328ea9 3000 stream_get(&mac.octet, s, ETH_ALEN);
d62a17ae 3001 ipa_len = stream_getl(s);
3002 if (ipa_len != 0 && ipa_len != IPV4_MAX_BYTELEN
3003 && ipa_len != IPV6_MAX_BYTELEN) {
e50f7cfd 3004 flog_err(EC_BGP_MACIP_LEN,
1c50c1c0 3005 "%u:Recv MACIP %s with invalid IP addr length %d",
121f9dee 3006 vrf_id, (cmd == ZEBRA_MACIP_ADD) ? "Add" : "Del",
1c50c1c0 3007 ipa_len);
d62a17ae 3008 return -1;
3009 }
3010
3011 if (ipa_len) {
3012 ip.ipa_type =
3013 (ipa_len == IPV4_MAX_BYTELEN) ? IPADDR_V4 : IPADDR_V6;
3014 stream_get(&ip.ip.addr, s, ipa_len);
3015 }
121f9dee 3016 if (cmd == ZEBRA_MACIP_ADD) {
f07e1c99 3017 flags = stream_getc(s);
3018 seqnum = stream_getl(s);
c44ab6f1 3019 stream_get(&esi, s, sizeof(esi_t));
ec0ab544
AK
3020 } else {
3021 state = stream_getl(s);
35fb444b 3022 memset(&esi, 0, sizeof(esi_t));
f07e1c99 3023 }
d62a17ae 3024
3025 bgp = bgp_lookup_by_vrf_id(vrf_id);
3026 if (!bgp)
3027 return 0;
3028
3029 if (BGP_DEBUG(zebra, ZEBRA))
c0d72166 3030 zlog_debug(
2dd0dde7 3031 "%u:Recv MACIP %s f 0x%x MAC %pEA IP %pIA VNI %u seq %u state %d ESI %s",
c0d72166
DS
3032 vrf_id, (cmd == ZEBRA_MACIP_ADD) ? "Add" : "Del", flags,
3033 &mac, &ip, vni, seqnum, state,
3034 esi_to_str(&esi, buf2, sizeof(buf2)));
d62a17ae 3035
a383bfc7
AK
3036 if (cmd == ZEBRA_MACIP_ADD) {
3037 frrtrace(6, frr_bgp, evpn_local_macip_add_zrecv, vni, &mac, &ip,
3038 flags, seqnum, &esi);
3039
f07e1c99 3040 return bgp_evpn_local_macip_add(bgp, vni, &mac, &ip,
c44ab6f1 3041 flags, seqnum, &esi);
a383bfc7
AK
3042 } else {
3043 frrtrace(4, frr_bgp, evpn_local_macip_del_zrecv, vni, &mac, &ip,
3044 state);
3045
ec0ab544 3046 return bgp_evpn_local_macip_del(bgp, vni, &mac, &ip, state);
a383bfc7 3047 }
128ea8ab 3048}
6aeb9e78 3049
a243d1db 3050static int bgp_zebra_process_local_ip_prefix(ZAPI_CALLBACK_ARGS)
31310b25
MK
3051{
3052 struct stream *s = NULL;
3053 struct bgp *bgp_vrf = NULL;
3054 struct prefix p;
31310b25 3055
6006b807 3056 memset(&p, 0, sizeof(p));
31310b25
MK
3057 s = zclient->ibuf;
3058 stream_get(&p, s, sizeof(struct prefix));
3059
3060 bgp_vrf = bgp_lookup_by_vrf_id(vrf_id);
3061 if (!bgp_vrf)
a243d1db 3062 return 0;
31310b25
MK
3063
3064 if (BGP_DEBUG(zebra, ZEBRA))
2dbe669b 3065 zlog_debug("Recv prefix %pFX %s on vrf %s", &p,
31310b25
MK
3066 (cmd == ZEBRA_IP_PREFIX_ROUTE_ADD) ? "ADD" : "DEL",
3067 vrf_id_to_name(vrf_id));
3068
3069 if (cmd == ZEBRA_IP_PREFIX_ROUTE_ADD) {
3070
3071 if (p.family == AF_INET)
d90b788e
A
3072 bgp_evpn_advertise_type5_route(bgp_vrf, &p, NULL,
3073 AFI_IP, SAFI_UNICAST);
31310b25 3074 else
d90b788e
A
3075 bgp_evpn_advertise_type5_route(bgp_vrf, &p, NULL,
3076 AFI_IP6, SAFI_UNICAST);
31310b25
MK
3077
3078 } else {
3079 if (p.family == AF_INET)
d90b788e
A
3080 bgp_evpn_withdraw_type5_route(bgp_vrf, &p, AFI_IP,
3081 SAFI_UNICAST);
31310b25 3082 else
d90b788e
A
3083 bgp_evpn_withdraw_type5_route(bgp_vrf, &p, AFI_IP6,
3084 SAFI_UNICAST);
31310b25 3085 }
a243d1db 3086 return 0;
31310b25
MK
3087}
3088
a243d1db 3089static int bgp_zebra_process_label_chunk(ZAPI_CALLBACK_ARGS)
955bfd98
PZ
3090{
3091 struct stream *s = NULL;
3092 uint8_t response_keep;
3093 uint32_t first;
3094 uint32_t last;
aec865e4
FR
3095 uint8_t proto;
3096 unsigned short instance;
955bfd98
PZ
3097
3098 s = zclient->ibuf;
aec865e4
FR
3099 STREAM_GETC(s, proto);
3100 STREAM_GETW(s, instance);
955bfd98
PZ
3101 STREAM_GETC(s, response_keep);
3102 STREAM_GETL(s, first);
3103 STREAM_GETL(s, last);
3104
aec865e4 3105 if (zclient->redist_default != proto) {
e50f7cfd 3106 flog_err(EC_BGP_LM_ERROR, "Got LM msg with wrong proto %u",
1c50c1c0 3107 proto);
a243d1db 3108 return 0;
aec865e4
FR
3109 }
3110 if (zclient->instance != instance) {
e50f7cfd 3111 flog_err(EC_BGP_LM_ERROR, "Got LM msg with wrong instance %u",
1c50c1c0 3112 proto);
a243d1db 3113 return 0;
aec865e4
FR
3114 }
3115
955bfd98
PZ
3116 if (first > last ||
3117 first < MPLS_LABEL_UNRESERVED_MIN ||
3118 last > MPLS_LABEL_UNRESERVED_MAX) {
3119
e50f7cfd 3120 flog_err(EC_BGP_LM_ERROR, "%s: Invalid Label chunk: %u - %u",
1c50c1c0 3121 __func__, first, last);
a243d1db 3122 return 0;
955bfd98
PZ
3123 }
3124 if (BGP_DEBUG(zebra, ZEBRA)) {
3125 zlog_debug("Label Chunk assign: %u - %u (%u) ",
3126 first, last, response_keep);
3127 }
3128
e70e9f8e 3129 bgp_lp_event_chunk(response_keep, first, last);
955bfd98 3130
a243d1db
DL
3131 return 0;
3132
955bfd98 3133stream_failure: /* for STREAM_GETX */
a243d1db 3134 return -1;
955bfd98
PZ
3135}
3136
342213ea
DS
3137extern struct zebra_privs_t bgpd_privs;
3138
138c5a74
DS
3139static int bgp_ifp_create(struct interface *ifp)
3140{
ef7bd2a3
DS
3141 struct bgp *bgp;
3142
3143 if (BGP_DEBUG(zebra, ZEBRA))
096f7609
IR
3144 zlog_debug("Rx Intf add VRF %u IF %s", ifp->vrf->vrf_id,
3145 ifp->name);
ef7bd2a3 3146
096f7609 3147 bgp = ifp->vrf->info;
ef7bd2a3
DS
3148 if (!bgp)
3149 return 0;
3150
3151 bgp_mac_add_mac_entry(ifp);
3152
3153 bgp_update_interface_nbrs(bgp, ifp, ifp);
0d020cd6 3154 hook_call(bgp_vrf_status_changed, bgp, ifp);
138c5a74
DS
3155 return 0;
3156}
3157
a243d1db 3158static int bgp_zebra_process_srv6_locator_chunk(ZAPI_CALLBACK_ARGS)
a0281b2e
HS
3159{
3160 struct stream *s = NULL;
7de4c885
HS
3161 struct bgp *bgp = bgp_get_default();
3162 struct listnode *node;
1c21a234
NM
3163 struct srv6_locator_chunk *c;
3164 struct srv6_locator_chunk *chunk = srv6_locator_chunk_alloc();
a0281b2e
HS
3165
3166 s = zclient->ibuf;
1c21a234 3167 zapi_srv6_locator_chunk_decode(s, chunk);
a0281b2e 3168
1c21a234 3169 if (strcmp(bgp->srv6_locator_name, chunk->locator_name) != 0) {
3a0220e4 3170 zlog_err("%s: Locator name unmatch %s:%s", __func__,
1c21a234
NM
3171 bgp->srv6_locator_name, chunk->locator_name);
3172 srv6_locator_chunk_free(chunk);
a243d1db 3173 return 0;
a0281b2e
HS
3174 }
3175
a0281b2e 3176 for (ALL_LIST_ELEMENTS_RO(bgp->srv6_locator_chunks, node, c)) {
1c21a234
NM
3177 if (!prefix_cmp(&c->prefix, &chunk->prefix)) {
3178 srv6_locator_chunk_free(chunk);
a243d1db 3179 return 0;
1c21a234 3180 }
a0281b2e
HS
3181 }
3182
3183 listnode_add(bgp->srv6_locator_chunks, chunk);
3184 vpn_leak_postchange_all();
a243d1db 3185 return 0;
a0281b2e
HS
3186}
3187
d79ff732
HS
3188static int bgp_zebra_process_srv6_locator_add(ZAPI_CALLBACK_ARGS)
3189{
3190 struct srv6_locator loc = {};
3191 struct bgp *bgp = bgp_get_default();
3192 const char *loc_name = bgp->srv6_locator_name;
3193
3194 if (zapi_srv6_locator_decode(zclient->ibuf, &loc) < 0)
3195 return -1;
3196
3197 if (!bgp || !bgp->srv6_enabled)
3198 return 0;
3199
3200 if (bgp_zebra_srv6_manager_get_locator_chunk(loc_name) < 0)
3201 return -1;
3202
3203 return 0;
3204}
3205
3206static int bgp_zebra_process_srv6_locator_delete(ZAPI_CALLBACK_ARGS)
3207{
3208 struct srv6_locator loc = {};
3209 struct bgp *bgp = bgp_get_default();
3210 struct listnode *node, *nnode;
1c21a234 3211 struct srv6_locator_chunk *chunk;
d79ff732
HS
3212 struct bgp_srv6_function *func;
3213 struct bgp *bgp_vrf;
3214 struct in6_addr *tovpn_sid;
3215 struct prefix_ipv6 tmp_prefi;
3216
3217 if (zapi_srv6_locator_decode(zclient->ibuf, &loc) < 0)
3218 return -1;
3219
3220 // refresh chunks
3221 for (ALL_LIST_ELEMENTS(bgp->srv6_locator_chunks, node, nnode, chunk))
3222 if (prefix_match((struct prefix *)&loc.prefix,
1c21a234 3223 (struct prefix *)&chunk->prefix))
d79ff732
HS
3224 listnode_delete(bgp->srv6_locator_chunks, chunk);
3225
3226 // refresh functions
3227 for (ALL_LIST_ELEMENTS(bgp->srv6_functions, node, nnode, func)) {
3228 tmp_prefi.family = AF_INET6;
3229 tmp_prefi.prefixlen = 128;
3230 tmp_prefi.prefix = func->sid;
3231 if (prefix_match((struct prefix *)&loc.prefix,
3232 (struct prefix *)&tmp_prefi))
3233 listnode_delete(bgp->srv6_functions, func);
3234 }
3235
3236 // refresh tovpn_sid
3237 for (ALL_LIST_ELEMENTS_RO(bm->bgp, node, bgp_vrf)) {
3238 if (bgp_vrf->inst_type != BGP_INSTANCE_TYPE_VRF)
3239 continue;
3240
3241 // refresh vpnv4 tovpn_sid
3242 tovpn_sid = bgp_vrf->vpn_policy[AFI_IP].tovpn_sid;
3243 if (tovpn_sid) {
3244 tmp_prefi.family = AF_INET6;
3245 tmp_prefi.prefixlen = 128;
3246 tmp_prefi.prefix = *tovpn_sid;
3247 if (prefix_match((struct prefix *)&loc.prefix,
3248 (struct prefix *)&tmp_prefi))
3249 XFREE(MTYPE_BGP_SRV6_SID,
3250 bgp_vrf->vpn_policy[AFI_IP].tovpn_sid);
3251 }
3252
3253 // refresh vpnv6 tovpn_sid
3254 tovpn_sid = bgp_vrf->vpn_policy[AFI_IP6].tovpn_sid;
3255 if (tovpn_sid) {
3256 tmp_prefi.family = AF_INET6;
3257 tmp_prefi.prefixlen = 128;
3258 tmp_prefi.prefix = *tovpn_sid;
3259 if (prefix_match((struct prefix *)&loc.prefix,
3260 (struct prefix *)&tmp_prefi))
3261 XFREE(MTYPE_BGP_SRV6_SID,
3262 bgp_vrf->vpn_policy[AFI_IP6].tovpn_sid);
3263 }
3264 }
3265
3266 vpn_leak_postchange_all();
3267 return 0;
3268}
3269
a243d1db
DL
3270static zclient_handler *const bgp_handlers[] = {
3271 [ZEBRA_ROUTER_ID_UPDATE] = bgp_router_id_update,
3272 [ZEBRA_INTERFACE_ADDRESS_ADD] = bgp_interface_address_add,
3273 [ZEBRA_INTERFACE_ADDRESS_DELETE] = bgp_interface_address_delete,
3274 [ZEBRA_INTERFACE_NBR_ADDRESS_ADD] = bgp_interface_nbr_address_add,
3275 [ZEBRA_INTERFACE_NBR_ADDRESS_DELETE] = bgp_interface_nbr_address_delete,
3276 [ZEBRA_INTERFACE_VRF_UPDATE] = bgp_interface_vrf_update,
3277 [ZEBRA_REDISTRIBUTE_ROUTE_ADD] = zebra_read_route,
3278 [ZEBRA_REDISTRIBUTE_ROUTE_DEL] = zebra_read_route,
3279 [ZEBRA_NEXTHOP_UPDATE] = bgp_read_nexthop_update,
3280 [ZEBRA_FEC_UPDATE] = bgp_read_fec_update,
3281 [ZEBRA_LOCAL_ES_ADD] = bgp_zebra_process_local_es_add,
3282 [ZEBRA_LOCAL_ES_DEL] = bgp_zebra_process_local_es_del,
3283 [ZEBRA_VNI_ADD] = bgp_zebra_process_local_vni,
3284 [ZEBRA_LOCAL_ES_EVI_ADD] = bgp_zebra_process_local_es_evi,
3285 [ZEBRA_LOCAL_ES_EVI_DEL] = bgp_zebra_process_local_es_evi,
3286 [ZEBRA_VNI_DEL] = bgp_zebra_process_local_vni,
3287 [ZEBRA_MACIP_ADD] = bgp_zebra_process_local_macip,
3288 [ZEBRA_MACIP_DEL] = bgp_zebra_process_local_macip,
3289 [ZEBRA_L3VNI_ADD] = bgp_zebra_process_local_l3vni,
3290 [ZEBRA_L3VNI_DEL] = bgp_zebra_process_local_l3vni,
3291 [ZEBRA_IP_PREFIX_ROUTE_ADD] = bgp_zebra_process_local_ip_prefix,
3292 [ZEBRA_IP_PREFIX_ROUTE_DEL] = bgp_zebra_process_local_ip_prefix,
3293 [ZEBRA_GET_LABEL_CHUNK] = bgp_zebra_process_label_chunk,
3294 [ZEBRA_RULE_NOTIFY_OWNER] = rule_notify_owner,
3295 [ZEBRA_IPSET_NOTIFY_OWNER] = ipset_notify_owner,
3296 [ZEBRA_IPSET_ENTRY_NOTIFY_OWNER] = ipset_entry_notify_owner,
3297 [ZEBRA_IPTABLE_NOTIFY_OWNER] = iptable_notify_owner,
3298 [ZEBRA_ROUTE_NOTIFY_OWNER] = bgp_zebra_route_notify_owner,
3299 [ZEBRA_SRV6_LOCATOR_ADD] = bgp_zebra_process_srv6_locator_add,
3300 [ZEBRA_SRV6_LOCATOR_DELETE] = bgp_zebra_process_srv6_locator_delete,
3301 [ZEBRA_SRV6_MANAGER_GET_LOCATOR_CHUNK] =
3302 bgp_zebra_process_srv6_locator_chunk,
3303};
3304
f533be73 3305void bgp_zebra_init(struct thread_master *master, unsigned short instance)
718e3744 3306{
d62a17ae 3307 zclient_num_connects = 0;
3308
138c5a74
DS
3309 if_zapi_callbacks(bgp_ifp_create, bgp_ifp_up,
3310 bgp_ifp_down, bgp_ifp_destroy);
3311
d62a17ae 3312 /* Set default values. */
a243d1db
DL
3313 zclient = zclient_new(master, &zclient_options_default, bgp_handlers,
3314 array_size(bgp_handlers));
342213ea 3315 zclient_init(zclient, ZEBRA_ROUTE_BGP, 0, &bgpd_privs);
d62a17ae 3316 zclient->zebra_connected = bgp_zebra_connected;
f533be73 3317 zclient->instance = instance;
718e3744 3318}
bb86c601 3319
d62a17ae 3320void bgp_zebra_destroy(void)
bb86c601 3321{
d62a17ae 3322 if (zclient == NULL)
3323 return;
3324 zclient_stop(zclient);
3325 zclient_free(zclient);
3326 zclient = NULL;
bb86c601 3327}
afbb1c59 3328
d62a17ae 3329int bgp_zebra_num_connects(void)
afbb1c59 3330{
d62a17ae 3331 return zclient_num_connects;
afbb1c59 3332}
30d50e6d 3333
6cfe5d15
PG
3334void bgp_send_pbr_rule_action(struct bgp_pbr_action *pbra,
3335 struct bgp_pbr_rule *pbr,
3336 bool install)
30d50e6d
PG
3337{
3338 struct stream *s;
3339
6cfe5d15 3340 if (pbra->install_in_progress && !pbr)
30d50e6d 3341 return;
6cfe5d15
PG
3342 if (pbr && pbr->install_in_progress)
3343 return;
3344 if (BGP_DEBUG(zebra, ZEBRA)) {
3345 if (pbr)
15569c58 3346 zlog_debug("%s: table %d (ip rule) %d", __func__,
6cfe5d15
PG
3347 pbra->table_id, install);
3348 else
15569c58 3349 zlog_debug("%s: table %d fwmark %d %d", __func__,
6cfe5d15
PG
3350 pbra->table_id, pbra->fwmark, install);
3351 }
30d50e6d
PG
3352 s = zclient->obuf;
3353 stream_reset(s);
3354
3355 zclient_create_header(s,
3356 install ? ZEBRA_RULE_ADD : ZEBRA_RULE_DELETE,
3357 VRF_DEFAULT);
3358 stream_putl(s, 1); /* send one pbr action */
3359
6cfe5d15 3360 bgp_encode_pbr_rule_action(s, pbra, pbr);
30d50e6d
PG
3361
3362 stream_putw_at(s, 0, stream_get_endp(s));
8a3f8f2e
DS
3363 if ((zclient_send_message(zclient) != ZCLIENT_SEND_FAILURE)
3364 && install) {
6cfe5d15
PG
3365 if (!pbr)
3366 pbra->install_in_progress = true;
3367 else
3368 pbr->install_in_progress = true;
3369 }
30d50e6d
PG
3370}
3371
3372void bgp_send_pbr_ipset_match(struct bgp_pbr_match *pbrim, bool install)
3373{
3374 struct stream *s;
3375
3376 if (pbrim->install_in_progress)
3377 return;
f0936054 3378 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
3379 zlog_debug("%s: name %s type %d %d, ID %u", __func__,
3380 pbrim->ipset_name, pbrim->type, install,
3381 pbrim->unique);
30d50e6d
PG
3382 s = zclient->obuf;
3383 stream_reset(s);
3384
3385 zclient_create_header(s,
3386 install ? ZEBRA_IPSET_CREATE :
3387 ZEBRA_IPSET_DESTROY,
3388 VRF_DEFAULT);
3389
3390 stream_putl(s, 1); /* send one pbr action */
3391
3392 bgp_encode_pbr_ipset_match(s, pbrim);
3393
3394 stream_putw_at(s, 0, stream_get_endp(s));
8a3f8f2e 3395 if ((zclient_send_message(zclient) != ZCLIENT_SEND_FAILURE) && install)
30d50e6d
PG
3396 pbrim->install_in_progress = true;
3397}
3398
3399void bgp_send_pbr_ipset_entry_match(struct bgp_pbr_match_entry *pbrime,
3400 bool install)
3401{
3402 struct stream *s;
3403
3404 if (pbrime->install_in_progress)
3405 return;
f0936054 3406 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
3407 zlog_debug("%s: name %s %d %d, ID %u", __func__,
3408 pbrime->backpointer->ipset_name, pbrime->unique,
3409 install, pbrime->unique);
30d50e6d
PG
3410 s = zclient->obuf;
3411 stream_reset(s);
3412
3413 zclient_create_header(s,
3414 install ? ZEBRA_IPSET_ENTRY_ADD :
3415 ZEBRA_IPSET_ENTRY_DELETE,
3416 VRF_DEFAULT);
3417
3418 stream_putl(s, 1); /* send one pbr action */
3419
3420 bgp_encode_pbr_ipset_entry_match(s, pbrime);
3421
3422 stream_putw_at(s, 0, stream_get_endp(s));
8a3f8f2e 3423 if ((zclient_send_message(zclient) != ZCLIENT_SEND_FAILURE) && install)
30d50e6d
PG
3424 pbrime->install_in_progress = true;
3425}
c16a0a62 3426
8f242187
PG
3427static void bgp_encode_pbr_interface_list(struct bgp *bgp, struct stream *s,
3428 uint8_t family)
4762c213
PG
3429{
3430 struct bgp_pbr_config *bgp_pbr_cfg = bgp->bgp_pbr_cfg;
3431 struct bgp_pbr_interface_head *head;
3432 struct bgp_pbr_interface *pbr_if;
3433 struct interface *ifp;
3434
3435 if (!bgp_pbr_cfg)
3436 return;
8f242187
PG
3437 if (family == AF_INET)
3438 head = &(bgp_pbr_cfg->ifaces_by_name_ipv4);
3439 else
3440 head = &(bgp_pbr_cfg->ifaces_by_name_ipv6);
4762c213 3441 RB_FOREACH (pbr_if, bgp_pbr_interface_head, head) {
a36898e7 3442 ifp = if_lookup_by_name(pbr_if->name, bgp->vrf_id);
4762c213
PG
3443 if (ifp)
3444 stream_putl(s, ifp->ifindex);
3445 }
3446}
3447
8f242187 3448static int bgp_pbr_get_ifnumber(struct bgp *bgp, uint8_t family)
4762c213
PG
3449{
3450 struct bgp_pbr_config *bgp_pbr_cfg = bgp->bgp_pbr_cfg;
3451 struct bgp_pbr_interface_head *head;
3452 struct bgp_pbr_interface *pbr_if;
3453 int cnt = 0;
3454
3455 if (!bgp_pbr_cfg)
3456 return 0;
8f242187
PG
3457 if (family == AF_INET)
3458 head = &(bgp_pbr_cfg->ifaces_by_name_ipv4);
3459 else
3460 head = &(bgp_pbr_cfg->ifaces_by_name_ipv6);
4762c213 3461 RB_FOREACH (pbr_if, bgp_pbr_interface_head, head) {
a36898e7 3462 if (if_lookup_by_name(pbr_if->name, bgp->vrf_id))
4762c213
PG
3463 cnt++;
3464 }
3465 return cnt;
3466}
3467
c16a0a62
PG
3468void bgp_send_pbr_iptable(struct bgp_pbr_action *pba,
3469 struct bgp_pbr_match *pbm,
3470 bool install)
3471{
3472 struct stream *s;
b5c40105 3473 int ret = 0;
4762c213 3474 int nb_interface;
c16a0a62
PG
3475
3476 if (pbm->install_iptable_in_progress)
3477 return;
f0936054 3478 if (BGP_DEBUG(zebra, ZEBRA))
15569c58
DA
3479 zlog_debug("%s: name %s type %d mark %d %d, ID %u", __func__,
3480 pbm->ipset_name, pbm->type, pba->fwmark, install,
88055124 3481 pbm->unique2);
c16a0a62
PG
3482 s = zclient->obuf;
3483 stream_reset(s);
3484
3485 zclient_create_header(s,
3486 install ? ZEBRA_IPTABLE_ADD :
3487 ZEBRA_IPTABLE_DELETE,
3488 VRF_DEFAULT);
3489
3490 bgp_encode_pbr_iptable_match(s, pba, pbm);
8f242187 3491 nb_interface = bgp_pbr_get_ifnumber(pba->bgp, pbm->family);
4762c213
PG
3492 stream_putl(s, nb_interface);
3493 if (nb_interface)
8f242187 3494 bgp_encode_pbr_interface_list(pba->bgp, s, pbm->family);
c16a0a62 3495 stream_putw_at(s, 0, stream_get_endp(s));
b5c40105
PG
3496 ret = zclient_send_message(zclient);
3497 if (install) {
8a3f8f2e 3498 if (ret != ZCLIENT_SEND_FAILURE)
b5c40105
PG
3499 pba->refcnt++;
3500 else
3501 pbm->install_iptable_in_progress = true;
a6b07429 3502 }
c16a0a62 3503}
f7df1907
PG
3504
3505/* inject in table <table_id> a default route to:
3506 * - if nexthop IP is present : to this nexthop
3507 * - if vrf is different from local : to the matching VRF
3508 */
3509void bgp_zebra_announce_default(struct bgp *bgp, struct nexthop *nh,
3510 afi_t afi, uint32_t table_id, bool announce)
3511{
3512 struct zapi_nexthop *api_nh;
3513 struct zapi_route api;
3514 struct prefix p;
3515
f01e580f
PG
3516 if (!nh || (nh->type != NEXTHOP_TYPE_IPV4
3517 && nh->type != NEXTHOP_TYPE_IPV6)
f7df1907
PG
3518 || nh->vrf_id == VRF_UNKNOWN)
3519 return;
7afeaffa
PG
3520
3521 /* in vrf-lite, no default route has to be announced
3522 * the table id of vrf is directly used to divert traffic
3523 */
3524 if (!vrf_is_backend_netns() && bgp->vrf_id != nh->vrf_id)
3525 return;
3526
6006b807 3527 memset(&p, 0, sizeof(p));
f01e580f 3528 if (afi != AFI_IP && afi != AFI_IP6)
f7df1907 3529 return;
f01e580f 3530 p.family = afi2family(afi);
f7df1907
PG
3531 memset(&api, 0, sizeof(api));
3532 api.vrf_id = bgp->vrf_id;
3533 api.type = ZEBRA_ROUTE_BGP;
3534 api.safi = SAFI_UNICAST;
3535 api.prefix = p;
3536 api.tableid = table_id;
3537 api.nexthop_num = 1;
3538 SET_FLAG(api.message, ZAPI_MESSAGE_TABLEID);
3539 SET_FLAG(api.message, ZAPI_MESSAGE_NEXTHOP);
3540 api_nh = &api.nexthops[0];
3541
38a8c751
DS
3542 api.distance = ZEBRA_EBGP_DISTANCE_DEFAULT;
3543 SET_FLAG(api.message, ZAPI_MESSAGE_DISTANCE);
3544
f7df1907 3545 /* redirect IP */
f01e580f 3546 if (afi == AFI_IP && nh->gate.ipv4.s_addr != INADDR_ANY) {
f7df1907
PG
3547 char buff[PREFIX_STRLEN];
3548
3549 api_nh->vrf_id = nh->vrf_id;
3550 api_nh->gate.ipv4 = nh->gate.ipv4;
3551 api_nh->type = NEXTHOP_TYPE_IPV4;
3552
3553 inet_ntop(AF_INET, &(nh->gate.ipv4), buff, INET_ADDRSTRLEN);
3554 if (BGP_DEBUG(zebra, ZEBRA))
f01e580f
PG
3555 zlog_debug("BGP: %s default route to %s table %d (redirect IP)",
3556 announce ? "adding" : "withdrawing",
3557 buff, table_id);
3558 zclient_route_send(announce ? ZEBRA_ROUTE_ADD
3559 : ZEBRA_ROUTE_DELETE,
3560 zclient, &api);
3561 } else if (afi == AFI_IP6 &&
3562 memcmp(&nh->gate.ipv6,
3563 &in6addr_any, sizeof(struct in6_addr))) {
3564 char buff[PREFIX_STRLEN];
3565
3566 api_nh->vrf_id = nh->vrf_id;
3567 memcpy(&api_nh->gate.ipv6, &nh->gate.ipv6,
3568 sizeof(struct in6_addr));
3569 api_nh->type = NEXTHOP_TYPE_IPV6;
3570
3571 inet_ntop(AF_INET6, &(nh->gate.ipv6), buff, INET_ADDRSTRLEN);
3572 if (BGP_DEBUG(zebra, ZEBRA))
3573 zlog_debug("BGP: %s default route to %s table %d (redirect IP)",
d887503c 3574 announce ? "adding" : "withdrawing",
f7df1907
PG
3575 buff, table_id);
3576 zclient_route_send(announce ? ZEBRA_ROUTE_ADD
3577 : ZEBRA_ROUTE_DELETE,
3578 zclient, &api);
3579 } else if (nh->vrf_id != bgp->vrf_id) {
3580 struct vrf *vrf;
eb4244f8 3581 struct interface *ifp;
f7df1907 3582
eb4244f8 3583 vrf = vrf_lookup_by_id(nh->vrf_id);
f7df1907
PG
3584 if (!vrf)
3585 return;
eb4244f8
PG
3586 /* create default route with interface <VRF>
3587 * with nexthop-vrf <VRF>
f7df1907 3588 */
de4f1a66 3589 ifp = if_lookup_by_name_vrf(vrf->name, vrf);
eb4244f8
PG
3590 if (!ifp)
3591 return;
3592 api_nh->vrf_id = nh->vrf_id;
3593 api_nh->type = NEXTHOP_TYPE_IFINDEX;
3594 api_nh->ifindex = ifp->ifindex;
3595 if (BGP_DEBUG(zebra, ZEBRA))
d887503c
PG
3596 zlog_info("BGP: %s default route to %s table %d (redirect VRF)",
3597 announce ? "adding" : "withdrawing",
eb4244f8
PG
3598 vrf->name, table_id);
3599 zclient_route_send(announce ? ZEBRA_ROUTE_ADD
3600 : ZEBRA_ROUTE_DELETE,
3601 zclient, &api);
f7df1907
PG
3602 return;
3603 }
3604}
85ef4179 3605
3606/* Send capabilities to RIB */
3607int bgp_zebra_send_capabilities(struct bgp *bgp, bool disable)
3608{
3609 struct zapi_cap api;
3610 int ret = BGP_GR_SUCCESS;
3611
3612 if (zclient == NULL) {
3613 if (BGP_DEBUG(zebra, ZEBRA))
3614 zlog_debug("zclient invalid");
3615 return BGP_GR_FAILURE;
3616 }
3617
3618 /* Check if the client is connected */
3619 if ((zclient->sock < 0) || (zclient->t_connect)) {
3620 if (BGP_DEBUG(zebra, ZEBRA))
3621 zlog_debug("client not connected");
3622 return BGP_GR_FAILURE;
3623 }
3624
3625 /* Check if capability is already sent. If the flag force is set
3626 * send the capability since this can be initial bgp configuration
3627 */
6006b807 3628 memset(&api, 0, sizeof(api));
85ef4179 3629 if (disable) {
3630 api.cap = ZEBRA_CLIENT_GR_DISABLE;
3631 api.vrf_id = bgp->vrf_id;
3632 } else {
3633 api.cap = ZEBRA_CLIENT_GR_CAPABILITIES;
3634 api.stale_removal_time = bgp->rib_stale_time;
3635 api.vrf_id = bgp->vrf_id;
3636 }
3637
36235319 3638 if (zclient_capabilities_send(ZEBRA_CLIENT_CAPABILITIES, zclient, &api)
7cfdb485 3639 == ZCLIENT_SEND_FAILURE) {
2ba1fe69 3640 zlog_err("error sending capability");
85ef4179 3641 ret = BGP_GR_FAILURE;
3642 } else {
3643 if (disable)
3644 bgp->present_zebra_gr_state = ZEBRA_GR_DISABLE;
3645 else
3646 bgp->present_zebra_gr_state = ZEBRA_GR_ENABLE;
3647
3648 if (BGP_DEBUG(zebra, ZEBRA))
3649 zlog_debug("send capabilty success");
3650 ret = BGP_GR_SUCCESS;
3651 }
3652 return ret;
3653}
3654
3655/* Send route update pesding or completed status to RIB for the
3656 * specific AFI, SAFI
3657 */
3658int bgp_zebra_update(afi_t afi, safi_t safi, vrf_id_t vrf_id, int type)
3659{
2ba1fe69 3660 struct zapi_cap api = {0};
85ef4179 3661
3662 if (zclient == NULL) {
3663 if (BGP_DEBUG(zebra, ZEBRA))
2ba1fe69 3664 zlog_debug("zclient == NULL, invalid");
85ef4179 3665 return BGP_GR_FAILURE;
3666 }
3667
3668 /* Check if the client is connected */
3669 if ((zclient->sock < 0) || (zclient->t_connect)) {
3670 if (BGP_DEBUG(zebra, ZEBRA))
3671 zlog_debug("client not connected");
3672 return BGP_GR_FAILURE;
3673 }
3674
85ef4179 3675 api.afi = afi;
3676 api.safi = safi;
3677 api.vrf_id = vrf_id;
3678 api.cap = type;
3679
36235319 3680 if (zclient_capabilities_send(ZEBRA_CLIENT_CAPABILITIES, zclient, &api)
7cfdb485 3681 == ZCLIENT_SEND_FAILURE) {
85ef4179 3682 if (BGP_DEBUG(zebra, ZEBRA))
3683 zlog_debug("error sending capability");
3684 return BGP_GR_FAILURE;
3685 }
3686 return BGP_GR_SUCCESS;
3687}
3688
3689
85ef4179 3690/* Send RIB stale timer update */
3691int bgp_zebra_stale_timer_update(struct bgp *bgp)
3692{
3693 struct zapi_cap api;
3694
3695 if (zclient == NULL) {
3696 if (BGP_DEBUG(zebra, ZEBRA))
3697 zlog_debug("zclient invalid");
3698 return BGP_GR_FAILURE;
3699 }
3700
3701 /* Check if the client is connected */
3702 if ((zclient->sock < 0) || (zclient->t_connect)) {
3703 if (BGP_DEBUG(zebra, ZEBRA))
3704 zlog_debug("client not connected");
3705 return BGP_GR_FAILURE;
3706 }
3707
6006b807 3708 memset(&api, 0, sizeof(api));
85ef4179 3709 api.cap = ZEBRA_CLIENT_RIB_STALE_TIME;
3710 api.stale_removal_time = bgp->rib_stale_time;
3711 api.vrf_id = bgp->vrf_id;
36235319 3712 if (zclient_capabilities_send(ZEBRA_CLIENT_CAPABILITIES, zclient, &api)
7cfdb485 3713 == ZCLIENT_SEND_FAILURE) {
85ef4179 3714 if (BGP_DEBUG(zebra, ZEBRA))
3715 zlog_debug("error sending capability");
3716 return BGP_GR_FAILURE;
3717 }
3718 if (BGP_DEBUG(zebra, ZEBRA))
3719 zlog_debug("send capabilty success");
3720 return BGP_GR_SUCCESS;
3721}
a0281b2e
HS
3722
3723int bgp_zebra_srv6_manager_get_locator_chunk(const char *name)
3724{
3725 return srv6_manager_get_locator_chunk(zclient, name);
3726}
0249b8b6
HS
3727
3728int bgp_zebra_srv6_manager_release_locator_chunk(const char *name)
3729{
3730 return srv6_manager_release_locator_chunk(zclient, name);
3731}