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718e3744 1/* Interface related function for RIP.
2 * Copyright (C) 1997, 98 Kunihiro Ishiguro <kunihiro@zebra.org>
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 *
896014f4
DL
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
718e3744 19 */
20
21#include <zebra.h>
22
23#include "command.h"
24#include "if.h"
25#include "sockunion.h"
26#include "prefix.h"
27#include "memory.h"
28#include "network.h"
29#include "table.h"
30#include "log.h"
31#include "stream.h"
32#include "thread.h"
33#include "zclient.h"
34#include "filter.h"
35#include "sockopt.h"
edd7c245 36#include "privs.h"
77cbe4a1 37#include "lib_errors.h"
f0ab22fb 38#include "northbound_cli.h"
718e3744 39
40#include "zebra/connected.h"
41
42#include "ripd/ripd.h"
43#include "ripd/rip_debug.h"
dc63bfd4 44#include "ripd/rip_interface.h"
6b0655a2 45
814a2585
DL
46DEFINE_MTYPE_STATIC(RIPD, RIP_INTERFACE, "RIP interface")
47DEFINE_MTYPE(RIPD, RIP_INTERFACE_STRING, "RIP Interface String")
d62a17ae 48DEFINE_HOOK(rip_ifaddr_add, (struct connected * ifc), (ifc))
49DEFINE_HOOK(rip_ifaddr_del, (struct connected * ifc), (ifc))
3012671f 50
dc63bfd4 51/* static prototypes */
d62a17ae 52static void rip_enable_apply(struct interface *);
53static void rip_passive_interface_apply(struct interface *);
dc63bfd4 54static int rip_if_down(struct interface *ifp);
045c5389 55static int rip_enable_if_lookup(struct rip *rip, const char *ifname);
d62a17ae 56static int rip_enable_network_lookup2(struct connected *connected);
045c5389 57static void rip_enable_apply_all(struct rip *rip);
6b0655a2 58
d62a17ae 59const struct message ri_version_msg[] = {{RI_RIP_VERSION_1, "1"},
60 {RI_RIP_VERSION_2, "2"},
61 {RI_RIP_VERSION_1_AND_2, "1 2"},
62 {RI_RIP_VERSION_NONE, "none"},
63 {0}};
718e3744 64
718e3744 65/* Join to the RIP version 2 multicast group. */
d62a17ae 66static int ipv4_multicast_join(int sock, struct in_addr group,
67 struct in_addr ifa, ifindex_t ifindex)
718e3744 68{
d62a17ae 69 int ret;
718e3744 70
d62a17ae 71 ret = setsockopt_ipv4_multicast(sock, IP_ADD_MEMBERSHIP, ifa,
72 group.s_addr, ifindex);
718e3744 73
d62a17ae 74 if (ret < 0)
75 zlog_info("can't setsockopt IP_ADD_MEMBERSHIP %s",
76 safe_strerror(errno));
718e3744 77
d62a17ae 78 return ret;
718e3744 79}
80
81/* Leave from the RIP version 2 multicast group. */
d62a17ae 82static int ipv4_multicast_leave(int sock, struct in_addr group,
83 struct in_addr ifa, ifindex_t ifindex)
718e3744 84{
d62a17ae 85 int ret;
718e3744 86
d62a17ae 87 ret = setsockopt_ipv4_multicast(sock, IP_DROP_MEMBERSHIP, ifa,
88 group.s_addr, ifindex);
718e3744 89
d62a17ae 90 if (ret < 0)
91 zlog_info("can't setsockopt IP_DROP_MEMBERSHIP");
718e3744 92
d62a17ae 93 return ret;
718e3744 94}
6b0655a2 95
d62a17ae 96static void rip_interface_reset(struct rip_interface *);
1dec2166 97
718e3744 98/* Allocate new RIP's interface configuration. */
d62a17ae 99static struct rip_interface *rip_interface_new(void)
718e3744 100{
d62a17ae 101 struct rip_interface *ri;
718e3744 102
d62a17ae 103 ri = XCALLOC(MTYPE_RIP_INTERFACE, sizeof(struct rip_interface));
718e3744 104
d62a17ae 105 rip_interface_reset(ri);
718e3744 106
d62a17ae 107 return ri;
718e3744 108}
109
d62a17ae 110void rip_interface_multicast_set(int sock, struct connected *connected)
718e3744 111{
d62a17ae 112 struct in_addr addr;
4a3867d0 113
d62a17ae 114 assert(connected != NULL);
4a3867d0 115
d62a17ae 116 addr = CONNECTED_ID(connected)->u.prefix4;
117
118 if (setsockopt_ipv4_multicast_if(sock, addr, connected->ifp->ifindex)
119 < 0) {
120 zlog_warn(
121 "Can't setsockopt IP_MULTICAST_IF on fd %d to "
122 "ifindex %d for interface %s",
123 sock, connected->ifp->ifindex, connected->ifp->name);
124 }
4a3867d0 125
d62a17ae 126 return;
3fb9cd6e 127}
718e3744 128
129/* Send RIP request packet to specified interface. */
d7c0a89a 130static void rip_request_interface_send(struct interface *ifp, uint8_t version)
718e3744 131{
d62a17ae 132 struct sockaddr_in to;
718e3744 133
d62a17ae 134 /* RIPv2 support multicast. */
135 if (version == RIPv2 && if_is_multicast(ifp)) {
718e3744 136
d62a17ae 137 if (IS_RIP_DEBUG_EVENT)
138 zlog_debug("multicast request on %s", ifp->name);
718e3744 139
d62a17ae 140 rip_request_send(NULL, ifp, version, NULL);
141 return;
142 }
718e3744 143
d62a17ae 144 /* RIPv1 and non multicast interface. */
145 if (if_is_pointopoint(ifp) || if_is_broadcast(ifp)) {
146 struct listnode *cnode, *cnnode;
147 struct connected *connected;
148
149 if (IS_RIP_DEBUG_EVENT)
150 zlog_debug("broadcast request to %s", ifp->name);
151
152 for (ALL_LIST_ELEMENTS(ifp->connected, cnode, cnnode,
153 connected)) {
2e37ad7f
RW
154 if (connected->address->family != AF_INET)
155 continue;
156
157 memset(&to, 0, sizeof(struct sockaddr_in));
158 to.sin_port = htons(RIP_PORT_DEFAULT);
159 if (connected->destination)
160 /* use specified broadcast or peer
161 * destination addr */
162 to.sin_addr = connected->destination->u.prefix4;
163 else if (connected->address->prefixlen
164 < IPV4_MAX_PREFIXLEN)
165 /* calculate the appropriate broadcast
166 * address */
167 to.sin_addr.s_addr = ipv4_broadcast_addr(
168 connected->address->u.prefix4.s_addr,
169 connected->address->prefixlen);
170 else
171 /* do not know where to send the packet
172 */
173 continue;
174
175 if (IS_RIP_DEBUG_EVENT)
176 zlog_debug("SEND request to %s",
177 inet_ntoa(to.sin_addr));
178
179 rip_request_send(&to, ifp, version, connected);
d62a17ae 180 }
718e3744 181 }
718e3744 182}
183
184/* This will be executed when interface goes up. */
d62a17ae 185static void rip_request_interface(struct interface *ifp)
718e3744 186{
d62a17ae 187 struct rip_interface *ri;
2e37ad7f 188 int vsend;
718e3744 189
d62a17ae 190 /* In default ripd doesn't send RIP_REQUEST to the loopback interface.
191 */
192 if (if_is_loopback(ifp))
193 return;
718e3744 194
d62a17ae 195 /* If interface is down, don't send RIP packet. */
196 if (!if_is_operative(ifp))
197 return;
718e3744 198
d62a17ae 199 /* Fetch RIP interface information. */
200 ri = ifp->info;
718e3744 201
d62a17ae 202 /* If there is no version configuration in the interface,
203 use rip's version setting. */
045c5389 204 vsend = ((ri->ri_send == RI_RIP_UNSPEC) ? ri->rip->version_send
2e37ad7f
RW
205 : ri->ri_send);
206 if (vsend & RIPv1)
207 rip_request_interface_send(ifp, RIPv1);
208 if (vsend & RIPv2)
209 rip_request_interface_send(ifp, RIPv2);
718e3744 210}
211
2c239705 212#if 0
718e3744 213/* Send RIP request to the neighbor. */
dc63bfd4 214static void
718e3744 215rip_request_neighbor (struct in_addr addr)
216{
217 struct sockaddr_in to;
218
219 memset (&to, 0, sizeof (struct sockaddr_in));
220 to.sin_port = htons (RIP_PORT_DEFAULT);
221 to.sin_addr = addr;
222
931cd54d 223 rip_request_send (&to, NULL, rip->version_send, NULL);
718e3744 224}
225
226/* Request routes at all interfaces. */
dc63bfd4 227static void
228rip_request_neighbor_all (void)
718e3744 229{
230 struct route_node *rp;
231
232 if (! rip)
233 return;
234
235 if (IS_RIP_DEBUG_EVENT)
5d6c3779 236 zlog_debug ("request to the all neighbor");
718e3744 237
238 /* Send request to all neighbor. */
239 for (rp = route_top (rip->neighbor); rp; rp = route_next (rp))
240 if (rp->info)
241 rip_request_neighbor (rp->p.u.prefix4);
242}
2c239705 243#endif
718e3744 244
245/* Multicast packet receive socket. */
d62a17ae 246static int rip_multicast_join(struct interface *ifp, int sock)
718e3744 247{
d62a17ae 248 struct listnode *cnode;
249 struct connected *ifc;
718e3744 250
d62a17ae 251 if (if_is_operative(ifp) && if_is_multicast(ifp)) {
252 if (IS_RIP_DEBUG_EVENT)
253 zlog_debug("multicast join at %s", ifp->name);
718e3744 254
d62a17ae 255 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, ifc)) {
256 struct prefix_ipv4 *p;
257 struct in_addr group;
258
259 p = (struct prefix_ipv4 *)ifc->address;
260
261 if (p->family != AF_INET)
262 continue;
263
264 group.s_addr = htonl(INADDR_RIP_GROUP);
265 if (ipv4_multicast_join(sock, group, p->prefix,
266 ifp->ifindex)
267 < 0)
268 return -1;
269 else
270 return 0;
271 }
718e3744 272 }
d62a17ae 273 return 0;
718e3744 274}
275
276/* Leave from multicast group. */
d62a17ae 277static void rip_multicast_leave(struct interface *ifp, int sock)
718e3744 278{
d62a17ae 279 struct listnode *cnode;
280 struct connected *connected;
718e3744 281
d62a17ae 282 if (if_is_up(ifp) && if_is_multicast(ifp)) {
283 if (IS_RIP_DEBUG_EVENT)
284 zlog_debug("multicast leave from %s", ifp->name);
718e3744 285
d62a17ae 286 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
287 struct prefix_ipv4 *p;
288 struct in_addr group;
289
290 p = (struct prefix_ipv4 *)connected->address;
291
292 if (p->family != AF_INET)
293 continue;
294
295 group.s_addr = htonl(INADDR_RIP_GROUP);
296 if (ipv4_multicast_leave(sock, group, p->prefix,
297 ifp->ifindex)
298 == 0)
299 return;
300 }
301 }
718e3744 302}
303
304/* Is there and address on interface that I could use ? */
d62a17ae 305static int rip_if_ipv4_address_check(struct interface *ifp)
718e3744 306{
d62a17ae 307 struct listnode *nn;
308 struct connected *connected;
309 int count = 0;
718e3744 310
d62a17ae 311 for (ALL_LIST_ELEMENTS_RO(ifp->connected, nn, connected)) {
312 struct prefix *p;
718e3744 313
d62a17ae 314 p = connected->address;
315
316 if (p->family == AF_INET)
317 count++;
318 }
718e3744 319
d62a17ae 320 return count;
718e3744 321}
d62a17ae 322
31a476c7 323
324/* Does this address belongs to me ? */
045c5389 325int if_check_address(struct rip *rip, struct in_addr addr)
d62a17ae 326{
d62a17ae 327 struct interface *ifp;
31a476c7 328
ae7b826a 329 FOR_ALL_INTERFACES (rip->vrf, ifp) {
d62a17ae 330 struct listnode *cnode;
331 struct connected *connected;
31a476c7 332
d62a17ae 333 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, connected)) {
334 struct prefix_ipv4 *p;
31a476c7 335
d62a17ae 336 p = (struct prefix_ipv4 *)connected->address;
337
338 if (p->family != AF_INET)
339 continue;
340
341 if (IPV4_ADDR_CMP(&p->prefix, &addr) == 0)
342 return 1;
343 }
31a476c7 344 }
d62a17ae 345 return 0;
31a476c7 346}
347
718e3744 348/* Inteface link down message processing. */
b0b69e59 349static int rip_ifp_down(struct interface *ifp)
718e3744 350{
ae7b826a 351 rip_interface_sync(ifp);
d62a17ae 352 rip_if_down(ifp);
718e3744 353
d62a17ae 354 if (IS_RIP_DEBUG_ZEBRA)
355 zlog_debug(
ae7b826a 356 "interface %s vrf %u index %d flags %llx metric %d mtu %d is down",
a36898e7 357 ifp->name, ifp->vrf_id, ifp->ifindex,
ae7b826a 358 (unsigned long long)ifp->flags, ifp->metric, ifp->mtu);
d62a17ae 359
360 return 0;
718e3744 361}
362
363/* Inteface link up message processing */
ddbf3e60 364static int rip_ifp_up(struct interface *ifp)
718e3744 365{
d62a17ae 366 if (IS_RIP_DEBUG_ZEBRA)
367 zlog_debug(
ae7b826a 368 "interface %s vrf %u index %d flags %#llx metric %d mtu %d is up",
a36898e7 369 ifp->name, ifp->vrf_id, ifp->ifindex,
ae7b826a
RW
370 (unsigned long long)ifp->flags, ifp->metric, ifp->mtu);
371
372 rip_interface_sync(ifp);
718e3744 373
d62a17ae 374 /* Check if this interface is RIP enabled or not.*/
375 rip_enable_apply(ifp);
718e3744 376
d62a17ae 377 /* Check for a passive interface */
378 rip_passive_interface_apply(ifp);
718e3744 379
d62a17ae 380 /* Apply distribute list to the all interface. */
381 rip_distribute_update_interface(ifp);
718e3744 382
d62a17ae 383 return 0;
718e3744 384}
385
386/* Inteface addition message from zebra. */
ef7bd2a3 387static int rip_ifp_create(struct interface *ifp)
718e3744 388{
ae7b826a 389 rip_interface_sync(ifp);
718e3744 390
d62a17ae 391 if (IS_RIP_DEBUG_ZEBRA)
392 zlog_debug(
ae7b826a 393 "interface add %s vrf %u index %d flags %#llx metric %d mtu %d",
a36898e7 394 ifp->name, ifp->vrf_id, ifp->ifindex,
ae7b826a 395 (unsigned long long)ifp->flags, ifp->metric, ifp->mtu);
718e3744 396
d62a17ae 397 /* Check if this interface is RIP enabled or not.*/
398 rip_enable_apply(ifp);
718e3744 399
d62a17ae 400 /* Check for a passive interface */
401 rip_passive_interface_apply(ifp);
718e3744 402
d62a17ae 403 /* Apply distribute list to the all interface. */
404 rip_distribute_update_interface(ifp);
718e3744 405
d62a17ae 406 /* rip_request_neighbor_all (); */
16705130 407
d62a17ae 408 /* Check interface routemap. */
409 rip_if_rmap_update_interface(ifp);
410
411 return 0;
718e3744 412}
413
3c3c3252 414static int rip_ifp_destroy(struct interface *ifp)
718e3744 415{
ae7b826a 416 rip_interface_sync(ifp);
d62a17ae 417 if (if_is_up(ifp)) {
418 rip_if_down(ifp);
419 }
718e3744 420
ae7b826a
RW
421 zlog_info(
422 "interface delete %s vrf %u index %d flags %#llx metric %d mtu %d",
a36898e7 423 ifp->name, ifp->vrf_id, ifp->ifindex,
ae7b826a 424 (unsigned long long)ifp->flags, ifp->metric, ifp->mtu);
718e3744 425
d62a17ae 426 return 0;
718e3744 427}
428
ae7b826a 429/* VRF update for an interface. */
121f9dee 430int rip_interface_vrf_update(ZAPI_CALLBACK_ARGS)
ae7b826a
RW
431{
432 struct interface *ifp;
433 vrf_id_t new_vrf_id;
434
435 ifp = zebra_interface_vrf_update_read(zclient->ibuf, vrf_id,
436 &new_vrf_id);
437 if (!ifp)
438 return 0;
439
440 if (IS_RIP_DEBUG_ZEBRA)
441 zlog_debug("interface %s VRF change vrf_id %u new vrf id %u",
442 ifp->name, vrf_id, new_vrf_id);
443
a36898e7 444 if_update_to_new_vrf(ifp, new_vrf_id);
ae7b826a
RW
445 rip_interface_sync(ifp);
446
447 return 0;
448}
449
d62a17ae 450static void rip_interface_clean(struct rip_interface *ri)
4305dfd1 451{
d62a17ae 452 ri->enable_network = 0;
453 ri->enable_interface = 0;
454 ri->running = 0;
718e3744 455
d62a17ae 456 if (ri->t_wakeup) {
457 thread_cancel(ri->t_wakeup);
458 ri->t_wakeup = NULL;
459 }
4305dfd1 460}
718e3744 461
045c5389 462void rip_interfaces_clean(struct rip *rip)
718e3744 463{
d62a17ae 464 struct interface *ifp;
718e3744 465
ae7b826a 466 FOR_ALL_INTERFACES (rip->vrf, ifp)
d62a17ae 467 rip_interface_clean(ifp->info);
1dec2166 468}
718e3744 469
d62a17ae 470static void rip_interface_reset(struct rip_interface *ri)
4305dfd1 471{
94b117b2
RW
472 ri->auth_type = yang_get_default_enum("%s/authentication-scheme/mode",
473 RIP_IFACE);
474 ri->md5_auth_len = yang_get_default_enum(
475 "%s/authentication-scheme/md5-auth-length", RIP_IFACE);
718e3744 476
d62a17ae 477 /* Set default split-horizon behavior. If the interface is Frame
478 Relay or SMDS is enabled, the default value for split-horizon is
479 off. But currently Zebra does detect Frame Relay or SMDS
480 interface. So all interface is set to split horizon. */
94b117b2
RW
481 ri->split_horizon =
482 yang_get_default_enum("%s/split-horizon", RIP_IFACE);
718e3744 483
94b117b2
RW
484 ri->ri_send = yang_get_default_enum("%s/version-send", RIP_IFACE);
485 ri->ri_receive = yang_get_default_enum("%s/version-receive", RIP_IFACE);
486 ri->v2_broadcast = yang_get_default_bool("%s/v2-broadcast", RIP_IFACE);
f90310cf 487
0a22ddfb 488 XFREE(MTYPE_RIP_INTERFACE_STRING, ri->auth_str);
03c20031 489
0a22ddfb 490 XFREE(MTYPE_RIP_INTERFACE_STRING, ri->key_chain);
03c20031 491
d62a17ae 492 ri->list[RIP_FILTER_IN] = NULL;
493 ri->list[RIP_FILTER_OUT] = NULL;
718e3744 494
d62a17ae 495 ri->prefix[RIP_FILTER_IN] = NULL;
496 ri->prefix[RIP_FILTER_OUT] = NULL;
718e3744 497
d62a17ae 498 ri->recv_badpackets = 0;
499 ri->recv_badroutes = 0;
500 ri->sent_updates = 0;
4305dfd1 501
d62a17ae 502 ri->passive = 0;
718e3744 503
d62a17ae 504 rip_interface_clean(ri);
4305dfd1 505}
718e3744 506
d62a17ae 507int rip_if_down(struct interface *ifp)
718e3744 508{
045c5389 509 struct rip *rip;
d62a17ae 510 struct route_node *rp;
511 struct rip_info *rinfo;
512 struct rip_interface *ri = NULL;
513 struct list *list = NULL;
514 struct listnode *listnode = NULL, *nextnode = NULL;
045c5389
RW
515
516 ri = ifp->info;
517 rip = ri->rip;
d62a17ae 518 if (rip) {
519 for (rp = route_top(rip->table); rp; rp = route_next(rp))
520 if ((list = rp->info) != NULL)
521 for (ALL_LIST_ELEMENTS(list, listnode, nextnode,
522 rinfo))
dd127197 523 if (rinfo->nh.ifindex == ifp->ifindex)
045c5389 524 rip_ecmp_delete(rip, rinfo);
d62a17ae 525
526 if (ri->running) {
527 if (IS_RIP_DEBUG_EVENT)
528 zlog_debug("turn off %s", ifp->name);
529
530 /* Leave from multicast group. */
531 rip_multicast_leave(ifp, rip->sock);
532
533 ri->running = 0;
534 }
535 }
536
537 return 0;
718e3744 538}
539
d62a17ae 540static void rip_apply_address_add(struct connected *ifc)
dc63bfd4 541{
045c5389
RW
542 struct rip_interface *ri = ifc->ifp->info;
543 struct rip *rip = ri->rip;
d62a17ae 544 struct prefix_ipv4 address;
3f5682c8 545 struct nexthop nh;
d62a17ae 546 struct prefix *p;
16705130 547
d62a17ae 548 if (!rip)
549 return;
16705130 550
d62a17ae 551 if (!if_is_up(ifc->ifp))
552 return;
16705130 553
d62a17ae 554 p = ifc->address;
16705130 555
d62a17ae 556 memset(&address, 0, sizeof(address));
3f5682c8
DS
557 memset(&nh, 0, sizeof(nh));
558
d62a17ae 559 address.family = p->family;
560 address.prefix = p->u.prefix4;
561 address.prefixlen = p->prefixlen;
562 apply_mask_ipv4(&address);
16705130 563
3f5682c8
DS
564 nh.ifindex = ifc->ifp->ifindex;
565 nh.type = NEXTHOP_TYPE_IFINDEX;
566
d62a17ae 567 /* Check if this interface is RIP enabled or not
568 or Check if this address's prefix is RIP enabled */
045c5389 569 if ((rip_enable_if_lookup(rip, ifc->ifp->name) >= 0)
d62a17ae 570 || (rip_enable_network_lookup2(ifc) >= 0))
045c5389
RW
571 rip_redistribute_add(rip, ZEBRA_ROUTE_CONNECT,
572 RIP_ROUTE_INTERFACE, &address, &nh, 0, 0,
573 0);
16705130 574}
575
121f9dee 576int rip_interface_address_add(ZAPI_CALLBACK_ARGS)
718e3744 577{
d62a17ae 578 struct connected *ifc;
579 struct prefix *p;
718e3744 580
d62a17ae 581 ifc = zebra_interface_address_read(ZEBRA_INTERFACE_ADDRESS_ADD,
582 zclient->ibuf, vrf_id);
718e3744 583
d62a17ae 584 if (ifc == NULL)
585 return 0;
718e3744 586
d62a17ae 587 p = ifc->address;
718e3744 588
d62a17ae 589 if (p->family == AF_INET) {
590 if (IS_RIP_DEBUG_ZEBRA)
591 zlog_debug("connected address %s/%d is added",
592 inet_ntoa(p->u.prefix4), p->prefixlen);
16705130 593
d62a17ae 594 rip_enable_apply(ifc->ifp);
595 /* Check if this prefix needs to be redistributed */
596 rip_apply_address_add(ifc);
718e3744 597
d62a17ae 598 hook_call(rip_ifaddr_add, ifc);
599 }
718e3744 600
d62a17ae 601 return 0;
718e3744 602}
603
d62a17ae 604static void rip_apply_address_del(struct connected *ifc)
605{
045c5389
RW
606 struct rip_interface *ri = ifc->ifp->info;
607 struct rip *rip = ri->rip;
d62a17ae 608 struct prefix_ipv4 address;
609 struct prefix *p;
16705130 610
d62a17ae 611 if (!rip)
612 return;
16705130 613
d62a17ae 614 if (!if_is_up(ifc->ifp))
615 return;
16705130 616
d62a17ae 617 p = ifc->address;
16705130 618
d62a17ae 619 memset(&address, 0, sizeof(address));
620 address.family = p->family;
621 address.prefix = p->u.prefix4;
622 address.prefixlen = p->prefixlen;
623 apply_mask_ipv4(&address);
16705130 624
045c5389 625 rip_redistribute_delete(rip, ZEBRA_ROUTE_CONNECT, RIP_ROUTE_INTERFACE,
d62a17ae 626 &address, ifc->ifp->ifindex);
16705130 627}
628
121f9dee 629int rip_interface_address_delete(ZAPI_CALLBACK_ARGS)
718e3744 630{
d62a17ae 631 struct connected *ifc;
632 struct prefix *p;
718e3744 633
d62a17ae 634 ifc = zebra_interface_address_read(ZEBRA_INTERFACE_ADDRESS_DELETE,
635 zclient->ibuf, vrf_id);
718e3744 636
d62a17ae 637 if (ifc) {
638 p = ifc->address;
639 if (p->family == AF_INET) {
640 if (IS_RIP_DEBUG_ZEBRA)
641 zlog_debug("connected address %s/%d is deleted",
642 inet_ntoa(p->u.prefix4),
643 p->prefixlen);
16705130 644
d62a17ae 645 hook_call(rip_ifaddr_del, ifc);
718e3744 646
d62a17ae 647 /* Chech wether this prefix needs to be removed */
648 rip_apply_address_del(ifc);
649 }
718e3744 650
721c0857 651 connected_free(&ifc);
d62a17ae 652 }
718e3744 653
d62a17ae 654 return 0;
718e3744 655}
6b0655a2 656
718e3744 657/* Check interface is enabled by network statement. */
16705130 658/* Check wether the interface has at least a connected prefix that
659 * is within the ripng_enable_network table. */
d62a17ae 660static int rip_enable_network_lookup_if(struct interface *ifp)
661{
045c5389
RW
662 struct rip_interface *ri = ifp->info;
663 struct rip *rip = ri->rip;
d62a17ae 664 struct listnode *node, *nnode;
665 struct connected *connected;
666 struct prefix_ipv4 address;
667
1205fdc4
RW
668 if (!rip)
669 return -1;
670
d62a17ae 671 for (ALL_LIST_ELEMENTS(ifp->connected, node, nnode, connected)) {
672 struct prefix *p;
dc7204b7 673 struct route_node *n;
d62a17ae 674
675 p = connected->address;
676
677 if (p->family == AF_INET) {
678 address.family = AF_INET;
679 address.prefix = p->u.prefix4;
680 address.prefixlen = IPV4_MAX_BITLEN;
681
1205fdc4 682 n = route_node_match(rip->enable_network,
dc7204b7
A
683 (struct prefix *)&address);
684 if (n) {
685 route_unlock_node(n);
d62a17ae 686 return 1;
687 }
688 }
689 }
690 return -1;
718e3744 691}
692
16705130 693/* Check wether connected is within the ripng_enable_network table. */
045c5389 694static int rip_enable_network_lookup2(struct connected *connected)
16705130 695{
045c5389
RW
696 struct rip_interface *ri = connected->ifp->info;
697 struct rip *rip = ri->rip;
d62a17ae 698 struct prefix_ipv4 address;
699 struct prefix *p;
16705130 700
d62a17ae 701 p = connected->address;
16705130 702
d62a17ae 703 if (p->family == AF_INET) {
704 struct route_node *node;
16705130 705
d62a17ae 706 address.family = p->family;
707 address.prefix = p->u.prefix4;
708 address.prefixlen = IPV4_MAX_BITLEN;
16705130 709
d62a17ae 710 /* LPM on p->family, p->u.prefix4/IPV4_MAX_BITLEN within
1205fdc4
RW
711 * rip->enable_network */
712 node = route_node_match(rip->enable_network,
d62a17ae 713 (struct prefix *)&address);
16705130 714
d62a17ae 715 if (node) {
716 route_unlock_node(node);
717 return 1;
718 }
719 }
16705130 720
d62a17ae 721 return -1;
16705130 722}
718e3744 723/* Add RIP enable network. */
045c5389 724int rip_enable_network_add(struct rip *rip, struct prefix *p)
718e3744 725{
d62a17ae 726 struct route_node *node;
718e3744 727
1205fdc4 728 node = route_node_get(rip->enable_network, p);
718e3744 729
d62a17ae 730 if (node->info) {
731 route_unlock_node(node);
3d7a1be8 732 return NB_ERR_INCONSISTENCY;
d62a17ae 733 } else
734 node->info = (void *)1;
718e3744 735
d62a17ae 736 /* XXX: One should find a better solution than a generic one */
045c5389 737 rip_enable_apply_all(rip);
16705130 738
3d7a1be8 739 return NB_OK;
718e3744 740}
741
742/* Delete RIP enable network. */
045c5389 743int rip_enable_network_delete(struct rip *rip, struct prefix *p)
718e3744 744{
d62a17ae 745 struct route_node *node;
718e3744 746
1205fdc4 747 node = route_node_lookup(rip->enable_network, p);
d62a17ae 748 if (node) {
749 node->info = NULL;
718e3744 750
d62a17ae 751 /* Unlock info lock. */
752 route_unlock_node(node);
718e3744 753
d62a17ae 754 /* Unlock lookup lock. */
755 route_unlock_node(node);
718e3744 756
d62a17ae 757 /* XXX: One should find a better solution than a generic one */
045c5389 758 rip_enable_apply_all(rip);
16705130 759
3d7a1be8 760 return NB_OK;
d62a17ae 761 }
3d7a1be8
RW
762
763 return NB_ERR_INCONSISTENCY;
718e3744 764}
765
766/* Check interface is enabled by ifname statement. */
045c5389 767static int rip_enable_if_lookup(struct rip *rip, const char *ifname)
718e3744 768{
d62a17ae 769 unsigned int i;
770 char *str;
718e3744 771
ca046902
RW
772 if (!rip)
773 return -1;
774
775 for (i = 0; i < vector_active(rip->enable_interface); i++)
776 if ((str = vector_slot(rip->enable_interface, i)) != NULL)
d62a17ae 777 if (strcmp(str, ifname) == 0)
778 return i;
779 return -1;
718e3744 780}
781
782/* Add interface to rip_enable_if. */
045c5389 783int rip_enable_if_add(struct rip *rip, const char *ifname)
718e3744 784{
d62a17ae 785 int ret;
718e3744 786
045c5389 787 ret = rip_enable_if_lookup(rip, ifname);
d62a17ae 788 if (ret >= 0)
3d7a1be8 789 return NB_ERR_INCONSISTENCY;
718e3744 790
ca046902 791 vector_set(rip->enable_interface,
03c20031 792 XSTRDUP(MTYPE_RIP_INTERFACE_STRING, ifname));
718e3744 793
045c5389 794 rip_enable_apply_all(rip); /* TODOVJ */
16705130 795
3d7a1be8 796 return NB_OK;
718e3744 797}
798
799/* Delete interface from rip_enable_if. */
045c5389 800int rip_enable_if_delete(struct rip *rip, const char *ifname)
718e3744 801{
d62a17ae 802 int index;
803 char *str;
718e3744 804
045c5389 805 index = rip_enable_if_lookup(rip, ifname);
d62a17ae 806 if (index < 0)
3d7a1be8 807 return NB_ERR_INCONSISTENCY;
718e3744 808
ca046902 809 str = vector_slot(rip->enable_interface, index);
03c20031 810 XFREE(MTYPE_RIP_INTERFACE_STRING, str);
ca046902 811 vector_unset(rip->enable_interface, index);
718e3744 812
045c5389 813 rip_enable_apply_all(rip); /* TODOVJ */
16705130 814
3d7a1be8 815 return NB_OK;
718e3744 816}
817
818/* Join to multicast group and send request to the interface. */
d62a17ae 819static int rip_interface_wakeup(struct thread *t)
718e3744 820{
d62a17ae 821 struct interface *ifp;
822 struct rip_interface *ri;
718e3744 823
d62a17ae 824 /* Get interface. */
825 ifp = THREAD_ARG(t);
718e3744 826
d62a17ae 827 ri = ifp->info;
828 ri->t_wakeup = NULL;
718e3744 829
d62a17ae 830 /* Join to multicast group. */
045c5389 831 if (rip_multicast_join(ifp, ri->rip->sock) < 0) {
450971aa 832 flog_err_sys(EC_LIB_SOCKET,
09c866e3
QY
833 "multicast join failed, interface %s not running",
834 ifp->name);
d62a17ae 835 return 0;
836 }
718e3744 837
d62a17ae 838 /* Set running flag. */
839 ri->running = 1;
840
841 /* Send RIP request to the interface. */
842 rip_request_interface(ifp);
843
844 return 0;
845}
846
847static void rip_connect_set(struct interface *ifp, int set)
848{
045c5389
RW
849 struct rip_interface *ri = ifp->info;
850 struct rip *rip = ri->rip;
d62a17ae 851 struct listnode *node, *nnode;
852 struct connected *connected;
853 struct prefix_ipv4 address;
3f5682c8
DS
854 struct nexthop nh;
855
856 memset(&nh, 0, sizeof(nh));
d62a17ae 857
858 for (ALL_LIST_ELEMENTS(ifp->connected, node, nnode, connected)) {
859 struct prefix *p;
860 p = connected->address;
861
862 if (p->family != AF_INET)
863 continue;
864
865 address.family = AF_INET;
866 address.prefix = p->u.prefix4;
867 address.prefixlen = p->prefixlen;
868 apply_mask_ipv4(&address);
869
3f5682c8
DS
870 nh.ifindex = connected->ifp->ifindex;
871 nh.type = NEXTHOP_TYPE_IFINDEX;
d62a17ae 872 if (set) {
873 /* Check once more wether this prefix is within a
874 * "network IF_OR_PREF" one */
045c5389
RW
875 if ((rip_enable_if_lookup(rip, connected->ifp->name)
876 >= 0)
d62a17ae 877 || (rip_enable_network_lookup2(connected) >= 0))
045c5389 878 rip_redistribute_add(rip, ZEBRA_ROUTE_CONNECT,
996c9314
LB
879 RIP_ROUTE_INTERFACE,
880 &address, &nh, 0, 0, 0);
d62a17ae 881 } else {
045c5389 882 rip_redistribute_delete(rip, ZEBRA_ROUTE_CONNECT,
d62a17ae 883 RIP_ROUTE_INTERFACE, &address,
884 connected->ifp->ifindex);
045c5389
RW
885 if (rip_redistribute_check(rip, ZEBRA_ROUTE_CONNECT))
886 rip_redistribute_add(rip, ZEBRA_ROUTE_CONNECT,
996c9314
LB
887 RIP_ROUTE_REDISTRIBUTE,
888 &address, &nh, 0, 0, 0);
d62a17ae 889 }
890 }
718e3744 891}
892
893/* Update interface status. */
d62a17ae 894void rip_enable_apply(struct interface *ifp)
718e3744 895{
d62a17ae 896 int ret;
897 struct rip_interface *ri = NULL;
718e3744 898
d62a17ae 899 /* Check interface. */
900 if (!if_is_operative(ifp))
901 return;
718e3744 902
d62a17ae 903 ri = ifp->info;
904
905 /* Check network configuration. */
906 ret = rip_enable_network_lookup_if(ifp);
907
908 /* If the interface is matched. */
909 if (ret > 0)
910 ri->enable_network = 1;
911 else
912 ri->enable_network = 0;
913
914 /* Check interface name configuration. */
045c5389 915 ret = rip_enable_if_lookup(ri->rip, ifp->name);
d62a17ae 916 if (ret >= 0)
917 ri->enable_interface = 1;
918 else
919 ri->enable_interface = 0;
718e3744 920
d62a17ae 921 /* any interface MUST have an IPv4 address */
922 if (!rip_if_ipv4_address_check(ifp)) {
923 ri->enable_network = 0;
924 ri->enable_interface = 0;
718e3744 925 }
718e3744 926
d62a17ae 927 /* Update running status of the interface. */
928 if (ri->enable_network || ri->enable_interface) {
2e37ad7f
RW
929 if (IS_RIP_DEBUG_EVENT)
930 zlog_debug("turn on %s", ifp->name);
931
932 /* Add interface wake up thread. */
933 thread_add_timer(master, rip_interface_wakeup, ifp, 1,
934 &ri->t_wakeup);
935 rip_connect_set(ifp, 1);
936 } else if (ri->running) {
937 /* Might as well clean up the route table as well
938 * rip_if_down sets to 0 ri->running, and displays "turn
939 *off %s"
940 **/
941 rip_if_down(ifp);
d62a17ae 942
2e37ad7f 943 rip_connect_set(ifp, 0);
718e3744 944 }
718e3744 945}
946
947/* Apply network configuration to all interface. */
045c5389 948static void rip_enable_apply_all(struct rip *rip)
718e3744 949{
d62a17ae 950 struct interface *ifp;
718e3744 951
d62a17ae 952 /* Check each interface. */
ae7b826a 953 FOR_ALL_INTERFACES (rip->vrf, ifp)
d62a17ae 954 rip_enable_apply(ifp);
718e3744 955}
956
045c5389 957int rip_neighbor_lookup(struct rip *rip, struct sockaddr_in *from)
718e3744 958{
d62a17ae 959 struct prefix_ipv4 p;
960 struct route_node *node;
718e3744 961
d62a17ae 962 memset(&p, 0, sizeof(struct prefix_ipv4));
963 p.family = AF_INET;
964 p.prefix = from->sin_addr;
965 p.prefixlen = IPV4_MAX_BITLEN;
718e3744 966
d62a17ae 967 node = route_node_lookup(rip->neighbor, (struct prefix *)&p);
968 if (node) {
969 route_unlock_node(node);
970 return 1;
971 }
972 return 0;
718e3744 973}
974
975/* Add new RIP neighbor to the neighbor tree. */
045c5389 976int rip_neighbor_add(struct rip *rip, struct prefix_ipv4 *p)
718e3744 977{
d62a17ae 978 struct route_node *node;
718e3744 979
d62a17ae 980 node = route_node_get(rip->neighbor, (struct prefix *)p);
718e3744 981
d62a17ae 982 if (node->info)
f0ab22fb 983 return NB_ERR_INCONSISTENCY;
718e3744 984
d62a17ae 985 node->info = rip->neighbor;
718e3744 986
f0ab22fb 987 return NB_OK;
718e3744 988}
989
990/* Delete RIP neighbor from the neighbor tree. */
045c5389 991int rip_neighbor_delete(struct rip *rip, struct prefix_ipv4 *p)
718e3744 992{
d62a17ae 993 struct route_node *node;
718e3744 994
d62a17ae 995 /* Lock for look up. */
996 node = route_node_lookup(rip->neighbor, (struct prefix *)p);
997 if (!node)
f0ab22fb 998 return NB_ERR_INCONSISTENCY;
718e3744 999
d62a17ae 1000 node->info = NULL;
718e3744 1001
d62a17ae 1002 /* Unlock lookup lock. */
1003 route_unlock_node(node);
718e3744 1004
d62a17ae 1005 /* Unlock real neighbor information lock. */
1006 route_unlock_node(node);
1007
f0ab22fb 1008 return NB_OK;
718e3744 1009}
1010
1011/* Clear all network and neighbor configuration. */
045c5389 1012void rip_clean_network(struct rip *rip)
d62a17ae 1013{
1014 unsigned int i;
1015 char *str;
1016 struct route_node *rn;
1017
1205fdc4
RW
1018 /* rip->enable_network. */
1019 for (rn = route_top(rip->enable_network); rn; rn = route_next(rn))
d62a17ae 1020 if (rn->info) {
1021 rn->info = NULL;
1022 route_unlock_node(rn);
1023 }
1024
ca046902
RW
1025 /* rip->enable_interface. */
1026 for (i = 0; i < vector_active(rip->enable_interface); i++)
1027 if ((str = vector_slot(rip->enable_interface, i)) != NULL) {
03c20031 1028 XFREE(MTYPE_RIP_INTERFACE_STRING, str);
ca046902 1029 vector_slot(rip->enable_interface, i) = NULL;
d62a17ae 1030 }
718e3744 1031}
6b0655a2 1032
718e3744 1033/* Utility function for looking up passive interface settings. */
045c5389 1034static int rip_passive_nondefault_lookup(struct rip *rip, const char *ifname)
718e3744 1035{
d62a17ae 1036 unsigned int i;
1037 char *str;
718e3744 1038
5a29c0d5
RW
1039 for (i = 0; i < vector_active(rip->passive_nondefault); i++)
1040 if ((str = vector_slot(rip->passive_nondefault, i)) != NULL)
d62a17ae 1041 if (strcmp(str, ifname) == 0)
1042 return i;
1043 return -1;
718e3744 1044}
1045
045c5389 1046static void rip_passive_interface_apply(struct interface *ifp)
718e3744 1047{
045c5389 1048 struct rip *rip;
d62a17ae 1049 struct rip_interface *ri;
718e3744 1050
045c5389
RW
1051 ri = ifp->info;
1052 rip = ri->rip;
44f2f852
RW
1053 if (rip == NULL)
1054 return;
1055
045c5389 1056 ri->passive = ((rip_passive_nondefault_lookup(rip, ifp->name) < 0)
44f2f852
RW
1057 ? rip->passive_default
1058 : !rip->passive_default);
4aaff3f8 1059
d62a17ae 1060 if (IS_RIP_DEBUG_ZEBRA)
1061 zlog_debug("interface %s: passive = %d", ifp->name,
1062 ri->passive);
718e3744 1063}
1064
045c5389 1065static void rip_passive_interface_apply_all(struct rip *rip)
718e3744 1066{
d62a17ae 1067 struct interface *ifp;
718e3744 1068
ae7b826a 1069 FOR_ALL_INTERFACES (rip->vrf, ifp)
d62a17ae 1070 rip_passive_interface_apply(ifp);
718e3744 1071}
1072
1073/* Passive interface. */
045c5389 1074int rip_passive_nondefault_set(struct rip *rip, const char *ifname)
718e3744 1075{
045c5389 1076 if (rip_passive_nondefault_lookup(rip, ifname) >= 0)
44f2f852
RW
1077 /*
1078 * Don't return an error, this can happen after changing
1079 * 'passive-default'.
1080 */
1081 return NB_OK;
718e3744 1082
5a29c0d5 1083 vector_set(rip->passive_nondefault,
03c20031 1084 XSTRDUP(MTYPE_RIP_INTERFACE_STRING, ifname));
718e3744 1085
045c5389 1086 rip_passive_interface_apply_all(rip);
718e3744 1087
44f2f852 1088 return NB_OK;
718e3744 1089}
1090
045c5389 1091int rip_passive_nondefault_unset(struct rip *rip, const char *ifname)
718e3744 1092{
d62a17ae 1093 int i;
1094 char *str;
718e3744 1095
045c5389 1096 i = rip_passive_nondefault_lookup(rip, ifname);
d62a17ae 1097 if (i < 0)
44f2f852
RW
1098 /*
1099 * Don't return an error, this can happen after changing
1100 * 'passive-default'.
1101 */
1102 return NB_OK;
718e3744 1103
5a29c0d5 1104 str = vector_slot(rip->passive_nondefault, i);
03c20031 1105 XFREE(MTYPE_RIP_INTERFACE_STRING, str);
5a29c0d5 1106 vector_unset(rip->passive_nondefault, i);
718e3744 1107
045c5389 1108 rip_passive_interface_apply_all(rip);
718e3744 1109
44f2f852 1110 return NB_OK;
718e3744 1111}
1112
1113/* Free all configured RIP passive-interface settings. */
045c5389 1114void rip_passive_nondefault_clean(struct rip *rip)
718e3744 1115{
d62a17ae 1116 unsigned int i;
1117 char *str;
718e3744 1118
5a29c0d5
RW
1119 for (i = 0; i < vector_active(rip->passive_nondefault); i++)
1120 if ((str = vector_slot(rip->passive_nondefault, i)) != NULL) {
03c20031 1121 XFREE(MTYPE_RIP_INTERFACE_STRING, str);
5a29c0d5 1122 vector_slot(rip->passive_nondefault, i) = NULL;
d62a17ae 1123 }
045c5389 1124 rip_passive_interface_apply_all(rip);
718e3744 1125}
6b0655a2 1126
718e3744 1127/* Write rip configuration of each interface. */
d62a17ae 1128static int rip_interface_config_write(struct vty *vty)
1129{
ae7b826a 1130 struct vrf *vrf;
94b117b2 1131 int write = 0;
d62a17ae 1132
ae7b826a
RW
1133 RB_FOREACH (vrf, vrf_name_head, &vrfs_by_name) {
1134 struct interface *ifp;
d62a17ae 1135
ae7b826a
RW
1136 FOR_ALL_INTERFACES (vrf, ifp) {
1137 struct lyd_node *dnode;
1138
1139 dnode = yang_dnode_get(
1140 running_config->dnode,
1141 "/frr-interface:lib/interface[name='%s'][vrf='%s']",
1142 ifp->name, vrf->name);
1143 if (dnode == NULL)
1144 continue;
d62a17ae 1145
ae7b826a
RW
1146 write = 1;
1147 nb_cli_show_dnode_cmds(vty, dnode, false);
1148 }
d62a17ae 1149 }
94b117b2
RW
1150
1151 return write;
d62a17ae 1152}
1153
045c5389 1154int rip_show_network_config(struct vty *vty, struct rip *rip)
d62a17ae 1155{
1156 unsigned int i;
1157 char *ifname;
1158 struct route_node *node;
1159
1160 /* Network type RIP enable interface statement. */
1205fdc4 1161 for (node = route_top(rip->enable_network); node;
d62a17ae 1162 node = route_next(node))
1163 if (node->info)
44f2f852 1164 vty_out(vty, " %s/%u\n",
d62a17ae 1165 inet_ntoa(node->p.u.prefix4),
1166 node->p.prefixlen);
1167
1168 /* Interface name RIP enable statement. */
ca046902
RW
1169 for (i = 0; i < vector_active(rip->enable_interface); i++)
1170 if ((ifname = vector_slot(rip->enable_interface, i)) != NULL)
44f2f852 1171 vty_out(vty, " %s\n", ifname);
d62a17ae 1172
1173 /* RIP neighbors listing. */
1174 for (node = route_top(rip->neighbor); node; node = route_next(node))
1175 if (node->info)
44f2f852 1176 vty_out(vty, " %s\n", inet_ntoa(node->p.u.prefix4));
718e3744 1177
d62a17ae 1178 return 0;
1179}
1180
1181static struct cmd_node interface_node = {
9d303b37 1182 INTERFACE_NODE, "%s(config-if)# ", 1,
718e3744 1183};
1184
ae7b826a
RW
1185void rip_interface_sync(struct interface *ifp)
1186{
1187 struct vrf *vrf;
1188
a36898e7 1189 vrf = vrf_lookup_by_id(ifp->vrf_id);
ae7b826a
RW
1190 if (vrf) {
1191 struct rip_interface *ri;
1192
1193 ri = ifp->info;
1194 if (ri)
1195 ri->rip = vrf->info;
1196 }
1197}
1198
718e3744 1199/* Called when interface structure allocated. */
d62a17ae 1200static int rip_interface_new_hook(struct interface *ifp)
718e3744 1201{
d62a17ae 1202 ifp->info = rip_interface_new();
ae7b826a
RW
1203 rip_interface_sync(ifp);
1204
d62a17ae 1205 return 0;
718e3744 1206}
1207
1208/* Called when interface structure deleted. */
d62a17ae 1209static int rip_interface_delete_hook(struct interface *ifp)
718e3744 1210{
72010aca 1211 rip_interface_reset(ifp->info);
d62a17ae 1212 XFREE(MTYPE_RIP_INTERFACE, ifp->info);
d62a17ae 1213 return 0;
718e3744 1214}
1215
1216/* Allocate and initialize interface vector. */
d62a17ae 1217void rip_if_init(void)
718e3744 1218{
d62a17ae 1219 /* Default initial size of interface vector. */
ce19a04a
DL
1220 hook_register_prio(if_add, 0, rip_interface_new_hook);
1221 hook_register_prio(if_del, 0, rip_interface_delete_hook);
d62a17ae 1222
d62a17ae 1223 /* Install interface node. */
1224 install_node(&interface_node, rip_interface_config_write);
1225 if_cmd_init();
138c5a74
DS
1226 if_zapi_callbacks(rip_ifp_create, rip_ifp_up,
1227 rip_ifp_down, rip_ifp_destroy);
718e3744 1228}