mpls_routes.c revision 1.14 1 1.14 kefren /* $NetBSD: mpls_routes.c,v 1.14 2013/07/12 08:55:52 kefren Exp $ */
2 1.1 kefren
3 1.1 kefren /*-
4 1.1 kefren * Copyright (c) 2010 The NetBSD Foundation, Inc.
5 1.1 kefren * All rights reserved.
6 1.1 kefren *
7 1.1 kefren * This code is derived from software contributed to The NetBSD Foundation
8 1.1 kefren * by Mihai Chelaru <kefren (at) NetBSD.org>
9 1.1 kefren *
10 1.1 kefren * Redistribution and use in source and binary forms, with or without
11 1.1 kefren * modification, are permitted provided that the following conditions
12 1.1 kefren * are met:
13 1.1 kefren * 1. Redistributions of source code must retain the above copyright
14 1.1 kefren * notice, this list of conditions and the following disclaimer.
15 1.1 kefren * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 kefren * notice, this list of conditions and the following disclaimer in the
17 1.1 kefren * documentation and/or other materials provided with the distribution.
18 1.1 kefren *
19 1.1 kefren * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 kefren * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 kefren * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 kefren * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 kefren * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 kefren * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 kefren * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 kefren * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 kefren * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 kefren * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 kefren * POSSIBILITY OF SUCH DAMAGE.
30 1.1 kefren */
31 1.1 kefren
32 1.1 kefren #include <sys/types.h>
33 1.1 kefren #include <sys/socket.h>
34 1.1 kefren #include <sys/param.h>
35 1.1 kefren #include <sys/sysctl.h>
36 1.1 kefren #include <net/if.h>
37 1.1 kefren #include <net/route.h>
38 1.1 kefren #include <netinet/in.h>
39 1.1 kefren #include <netmpls/mpls.h>
40 1.1 kefren
41 1.1 kefren #include <arpa/inet.h>
42 1.1 kefren
43 1.1 kefren #include <assert.h>
44 1.1 kefren #include <stdlib.h>
45 1.1 kefren #include <errno.h>
46 1.1 kefren #include <stdio.h>
47 1.1 kefren #include <string.h>
48 1.1 kefren #include <unistd.h>
49 1.1 kefren
50 1.1 kefren #include "ldp.h"
51 1.1 kefren #include "ldp_errors.h"
52 1.1 kefren #include "ldp_peer.h"
53 1.1 kefren #include "mpls_interface.h"
54 1.1 kefren #include "tlv_stack.h"
55 1.1 kefren #include "label.h"
56 1.1 kefren #include "mpls_routes.h"
57 1.13 kefren #include "socketops.h"
58 1.1 kefren
59 1.1 kefren extern int route_socket;
60 1.1 kefren int rt_seq = 0;
61 1.1 kefren int dont_catch = 0;
62 1.6 kefren extern int no_default_route;
63 1.7 kefren extern int debug_f, warn_f;
64 1.1 kefren
65 1.1 kefren struct rt_msg replay_rt[REPLAY_MAX];
66 1.1 kefren int replay_index = 0;
67 1.1 kefren
68 1.7 kefren static int read_route_socket(char *, int);
69 1.1 kefren void mask_addr(union sockunion *);
70 1.12 kefren int compare_sockunion(const union sockunion *, const union sockunion *);
71 1.1 kefren char * mpls_ntoa(union mpls_shim);
72 1.14 kefren static int check_if_addr_updown(struct rt_msg *, uint);
73 1.1 kefren
74 1.1 kefren extern struct sockaddr mplssockaddr;
75 1.1 kefren
76 1.1 kefren /* Many lines inspired or shamelessly stolen from sbin/route/route.c */
77 1.1 kefren
78 1.1 kefren #define NEXTADDR(u) \
79 1.14 kefren do { l = RT_ROUNDUP(u->sa.sa_len); memcpy(cp, u, l); cp += l;} while(0);
80 1.1 kefren #define NEXTADDR2(u) \
81 1.4 kefren do { l = RT_ROUNDUP(u.sa_len); memcpy(cp, &u, l); cp += l; } while(0);
82 1.1 kefren #define GETNEXT(sunion) \
83 1.14 kefren (union sockunion *) ((char *) (sunion) + \
84 1.14 kefren RT_ROUNDUP((sunion)->sa.sa_len))
85 1.1 kefren
86 1.7 kefren static int
87 1.1 kefren read_route_socket(char *s, int max)
88 1.1 kefren {
89 1.1 kefren int rv, to_read;
90 1.1 kefren fd_set fs;
91 1.1 kefren struct timeval tv;
92 1.1 kefren struct rt_msghdr *rhdr;
93 1.1 kefren
94 1.1 kefren tv.tv_sec = 0;
95 1.1 kefren tv.tv_usec = 5000;
96 1.1 kefren
97 1.1 kefren FD_ZERO(&fs);
98 1.1 kefren FD_SET(route_socket, &fs);
99 1.1 kefren
100 1.1 kefren errno = 0;
101 1.1 kefren
102 1.1 kefren do {
103 1.1 kefren rv = select(route_socket + 1, &fs, NULL, &fs, &tv);
104 1.1 kefren } while ((rv == -1) && (errno == EINTR));
105 1.1 kefren
106 1.1 kefren if (rv < 1) {
107 1.1 kefren if (rv == 0) {
108 1.1 kefren fatalp("read_route_socket: select timeout\n");
109 1.1 kefren } else
110 1.1 kefren fatalp("read_route_socket: select: %s",
111 1.1 kefren strerror(errno));
112 1.1 kefren return 0;
113 1.1 kefren }
114 1.1 kefren
115 1.1 kefren do {
116 1.1 kefren rv = recv(route_socket, s, max, MSG_PEEK);
117 1.1 kefren } while((rv == -1) && (errno == EINTR));
118 1.1 kefren
119 1.1 kefren if (rv < 1) {
120 1.1 kefren debugp("read_route_socket: recv error\n");
121 1.1 kefren return 0;
122 1.1 kefren }
123 1.1 kefren if (rv > max) {
124 1.1 kefren rv = max;
125 1.1 kefren debugp("read_route_socket: rv > max\n");
126 1.1 kefren }
127 1.1 kefren
128 1.1 kefren rhdr = (struct rt_msghdr *)s;
129 1.1 kefren to_read = rhdr->rtm_msglen > max ? max : rhdr->rtm_msglen;
130 1.1 kefren rv = 0;
131 1.1 kefren
132 1.1 kefren do {
133 1.1 kefren rv += recv(route_socket, s, to_read - rv, 0);
134 1.1 kefren } while (rv != to_read);
135 1.1 kefren
136 1.1 kefren return rv;
137 1.1 kefren }
138 1.1 kefren
139 1.1 kefren /* Recalculate length */
140 1.1 kefren void
141 1.1 kefren mask_addr(union sockunion * su)
142 1.1 kefren {
143 1.1 kefren /*
144 1.1 kefren int olen = su->sa.sa_len;
145 1.1 kefren char *cp1 = olen + (char *) su;
146 1.1 kefren
147 1.1 kefren for (su->sa.sa_len = 0; cp1 > (char *) su;)
148 1.1 kefren if (*--cp1 != 0) {
149 1.1 kefren su->sa.sa_len = 1 + cp1 - (char *) su;
150 1.1 kefren break;
151 1.1 kefren }
152 1.1 kefren */
153 1.1 kefren /* Let's use INET only version for the moment */
154 1.1 kefren su->sa.sa_len = 4 + from_union_to_cidr(su) / 8 +
155 1.1 kefren ( from_union_to_cidr(su) % 8 ? 1 : 0 );
156 1.1 kefren }
157 1.1 kefren
158 1.1 kefren /* creates a sockunion from an IP address */
159 1.1 kefren union sockunion *
160 1.10 kefren make_inet_union(const char *s)
161 1.1 kefren {
162 1.1 kefren union sockunion *so_inet;
163 1.1 kefren
164 1.2 christos so_inet = calloc(1, sizeof(*so_inet));
165 1.1 kefren
166 1.1 kefren if (!so_inet) {
167 1.1 kefren fatalp("make_inet_union: malloc problem\n");
168 1.1 kefren return NULL;
169 1.2 christos }
170 1.1 kefren
171 1.1 kefren so_inet->sin.sin_len = sizeof(struct sockaddr_in);
172 1.1 kefren so_inet->sin.sin_family = AF_INET;
173 1.1 kefren inet_aton(s, &so_inet->sin.sin_addr);
174 1.1 kefren
175 1.1 kefren return so_inet;
176 1.1 kefren }
177 1.1 kefren
178 1.1 kefren /* creates a sockunion from a label */
179 1.1 kefren union sockunion *
180 1.1 kefren make_mpls_union(uint32_t label)
181 1.1 kefren {
182 1.1 kefren union sockunion *so_mpls;
183 1.1 kefren
184 1.2 christos so_mpls = calloc(1, sizeof(*so_mpls));
185 1.1 kefren
186 1.1 kefren if (!so_mpls) {
187 1.1 kefren fatalp("make_mpls_union: malloc problem\n");
188 1.1 kefren return NULL;
189 1.2 christos }
190 1.1 kefren
191 1.1 kefren so_mpls->smpls.smpls_len = sizeof(struct sockaddr_mpls);
192 1.1 kefren so_mpls->smpls.smpls_family = AF_MPLS;
193 1.1 kefren so_mpls->smpls.smpls_addr.shim.label = label;
194 1.1 kefren
195 1.1 kefren so_mpls->smpls.smpls_addr.s_addr =
196 1.1 kefren htonl(so_mpls->smpls.smpls_addr.s_addr);
197 1.1 kefren
198 1.1 kefren return so_mpls;
199 1.1 kefren }
200 1.1 kefren
201 1.1 kefren int
202 1.12 kefren compare_sockunion(const union sockunion * __restrict a,
203 1.12 kefren const union sockunion * __restrict b)
204 1.1 kefren {
205 1.1 kefren if (a->sa.sa_len != b->sa.sa_len)
206 1.1 kefren return 1;
207 1.1 kefren return memcmp(a, b, a->sa.sa_len);
208 1.1 kefren }
209 1.1 kefren
210 1.1 kefren union sockunion *
211 1.1 kefren from_cidr_to_union(uint8_t prefixlen)
212 1.1 kefren {
213 1.1 kefren union sockunion *u;
214 1.8 kefren uint32_t m = 0xFFFFFFFF;
215 1.1 kefren
216 1.2 christos u = calloc(1, sizeof(*u));
217 1.1 kefren
218 1.1 kefren if (!u) {
219 1.1 kefren fatalp("from_cidr_to_union: malloc problem\n");
220 1.1 kefren return NULL;
221 1.1 kefren }
222 1.1 kefren u->sin.sin_len = sizeof(struct sockaddr_in);
223 1.1 kefren u->sin.sin_family = AF_INET;
224 1.8 kefren if (prefixlen != 0) {
225 1.8 kefren m = (m >> (32 - prefixlen) ) << (32 - prefixlen);
226 1.8 kefren m = ntohl(m);
227 1.8 kefren u->sin.sin_addr.s_addr = m;
228 1.8 kefren }
229 1.1 kefren return u;
230 1.1 kefren }
231 1.1 kefren
232 1.1 kefren uint8_t
233 1.12 kefren from_mask_to_cidr(const char *mask)
234 1.1 kefren {
235 1.11 kefren struct in_addr addr;
236 1.11 kefren uint8_t plen = 0;
237 1.11 kefren
238 1.11 kefren if (inet_aton(mask, &addr) != 0)
239 1.11 kefren for (; addr.s_addr; plen++)
240 1.11 kefren addr.s_addr &= addr.s_addr - 1;
241 1.11 kefren return plen;
242 1.1 kefren }
243 1.1 kefren
244 1.1 kefren uint8_t
245 1.12 kefren from_union_to_cidr(const union sockunion *so_pref)
246 1.1 kefren {
247 1.12 kefren const struct sockaddr_in *sin = (const struct sockaddr_in*) so_pref;
248 1.1 kefren uint32_t a;
249 1.1 kefren uint8_t r;
250 1.1 kefren
251 1.1 kefren a = ntohl(sin->sin_addr.s_addr);
252 1.1 kefren for (r=0; a ; a = a << 1, r++);
253 1.1 kefren
254 1.1 kefren return r;
255 1.1 kefren }
256 1.1 kefren
257 1.1 kefren /* returns in mask the netmask created from CIDR prefixlen */
258 1.1 kefren void
259 1.1 kefren from_cidr_to_mask(uint8_t prefixlen, char *mask)
260 1.1 kefren {
261 1.11 kefren uint32_t a = 0;
262 1.11 kefren uint8_t plen = prefixlen < 32 ? prefixlen : 32;
263 1.1 kefren
264 1.11 kefren if (plen != 0)
265 1.11 kefren a = (0xffffffff >> (32 - plen)) << (32 - plen);
266 1.1 kefren snprintf(mask, 16, "%d.%d.%d.%d", a >> 24, (a << 8) >> 24,
267 1.11 kefren (a << 16) >> 24, (a << 24) >> 24);
268 1.1 kefren }
269 1.1 kefren
270 1.1 kefren char *
271 1.12 kefren mpls_ntoa(const union mpls_shim ms)
272 1.1 kefren {
273 1.1 kefren static char ret[255];
274 1.1 kefren union mpls_shim ms2;
275 1.1 kefren
276 1.1 kefren ms2.s_addr = ntohl(ms.s_addr);
277 1.1 kefren snprintf(ret, sizeof(ret), "%d", ms2.shim.label);
278 1.1 kefren return ret;
279 1.1 kefren }
280 1.1 kefren
281 1.12 kefren char *
282 1.12 kefren union_ntoa(const union sockunion * so)
283 1.1 kefren {
284 1.12 kefren static char defret[] = "Unknown family address";
285 1.12 kefren
286 1.1 kefren switch (so->sa.sa_family) {
287 1.1 kefren case AF_INET:
288 1.1 kefren return inet_ntoa(so->sin.sin_addr);
289 1.1 kefren case AF_LINK:
290 1.1 kefren return link_ntoa(&so->sdl);
291 1.1 kefren case AF_MPLS:
292 1.1 kefren return mpls_ntoa(so->smpls.smpls_addr);
293 1.1 kefren }
294 1.1 kefren fatalp("Unknown family address in union_ntoa: %d\n",
295 1.1 kefren so->sa.sa_family);
296 1.1 kefren return defret;
297 1.1 kefren }
298 1.1 kefren
299 1.1 kefren /* From src/sbin/route/route.c */
300 1.1 kefren static const char *
301 1.1 kefren route_strerror(int error)
302 1.1 kefren {
303 1.1 kefren
304 1.1 kefren switch (error) {
305 1.1 kefren case ESRCH:
306 1.1 kefren return "not in table";
307 1.1 kefren case EBUSY:
308 1.1 kefren return "entry in use";
309 1.1 kefren case ENOBUFS:
310 1.1 kefren return "routing table overflow";
311 1.1 kefren default:
312 1.1 kefren return strerror(error);
313 1.1 kefren }
314 1.1 kefren }
315 1.1 kefren
316 1.1 kefren
317 1.1 kefren /* Adds a route. Or changes it. */
318 1.1 kefren int
319 1.1 kefren add_route(union sockunion *so_dest, union sockunion *so_prefix,
320 1.12 kefren union sockunion *so_gate, union sockunion *so_ifa,
321 1.12 kefren union sockunion *so_tag, int fr, int optype)
322 1.1 kefren {
323 1.1 kefren int l, rlen, rv = LDP_E_OK;
324 1.1 kefren struct rt_msg rm;
325 1.1 kefren char *cp;
326 1.1 kefren
327 1.1 kefren if(dont_catch)
328 1.1 kefren return LDP_E_OK;
329 1.1 kefren
330 1.1 kefren memset(&rm, 0, sizeof(rm));
331 1.1 kefren cp = rm.m_space;
332 1.1 kefren
333 1.1 kefren rm.m_rtm.rtm_type = (optype == RTM_READD) ? RTM_ADD : optype;
334 1.1 kefren rm.m_rtm.rtm_flags = RTF_UP | RTF_GATEWAY | RTF_STATIC;
335 1.1 kefren
336 1.1 kefren rm.m_rtm.rtm_version = RTM_VERSION;
337 1.1 kefren rm.m_rtm.rtm_seq = ++rt_seq;
338 1.1 kefren rm.m_rtm.rtm_addrs = RTA_DST;
339 1.1 kefren if (so_gate)
340 1.1 kefren rm.m_rtm.rtm_addrs |= RTA_GATEWAY;
341 1.1 kefren
342 1.1 kefren assert(so_dest);
343 1.1 kefren
344 1.1 kefren /* Order is: destination, gateway, netmask, genmask, ifp, ifa, tag */
345 1.1 kefren NEXTADDR(so_dest);
346 1.1 kefren if (so_gate)
347 1.1 kefren NEXTADDR(so_gate);
348 1.1 kefren
349 1.1 kefren if (so_prefix) {
350 1.12 kefren union sockunion *so_prefix_temp = so_prefix;
351 1.12 kefren
352 1.12 kefren if (fr != FREESO) {
353 1.12 kefren /* don't modify so_prefix */
354 1.12 kefren so_prefix_temp = calloc(1, so_prefix->sa.sa_len);
355 1.12 kefren if (so_prefix_temp == NULL)
356 1.12 kefren return LDP_E_MEMORY;
357 1.12 kefren memcpy(so_prefix_temp, so_prefix, so_prefix->sa.sa_len);
358 1.12 kefren }
359 1.12 kefren mask_addr(so_prefix_temp);
360 1.12 kefren NEXTADDR(so_prefix_temp);
361 1.12 kefren if (fr != FREESO)
362 1.12 kefren free(so_prefix_temp);
363 1.1 kefren /* XXX: looks like nobody cares about this */
364 1.1 kefren rm.m_rtm.rtm_flags |= RTF_MASK;
365 1.1 kefren rm.m_rtm.rtm_addrs |= RTA_NETMASK;
366 1.1 kefren } else
367 1.1 kefren rm.m_rtm.rtm_flags |= RTF_HOST;
368 1.1 kefren
369 1.1 kefren /* route to mpls interface */
370 1.1 kefren if (optype != RTM_READD && so_dest->sa.sa_family != AF_MPLS) {
371 1.1 kefren NEXTADDR2(mplssockaddr);
372 1.1 kefren rm.m_rtm.rtm_addrs |= RTA_IFP;
373 1.1 kefren }
374 1.1 kefren
375 1.1 kefren if (so_ifa != NULL) {
376 1.1 kefren NEXTADDR(so_ifa);
377 1.1 kefren rm.m_rtm.rtm_addrs |= RTA_IFA;
378 1.1 kefren }
379 1.1 kefren
380 1.1 kefren if (so_tag) {
381 1.1 kefren NEXTADDR(so_tag);
382 1.1 kefren rm.m_rtm.rtm_addrs |= RTA_TAG;
383 1.1 kefren }
384 1.1 kefren
385 1.1 kefren rm.m_rtm.rtm_msglen = l = cp - (char *) &rm;
386 1.1 kefren
387 1.1 kefren if ((rlen = write(route_socket, (char *) &rm, l)) < l) {
388 1.1 kefren warnp("Error adding a route: %s\n", route_strerror(errno));
389 1.1 kefren warnp("Destination was: %s\n", union_ntoa(so_dest));
390 1.1 kefren if (so_prefix)
391 1.1 kefren warnp("Prefix was: %s\n", union_ntoa(so_prefix));
392 1.1 kefren if (so_gate)
393 1.1 kefren warnp("Gateway was: %s\n", union_ntoa(so_gate));
394 1.1 kefren rv = LDP_E_ROUTE_ERROR;
395 1.1 kefren }
396 1.12 kefren if (fr == FREESO) {
397 1.1 kefren free(so_dest);
398 1.1 kefren if (so_prefix)
399 1.1 kefren free(so_prefix);
400 1.1 kefren if (so_gate)
401 1.1 kefren free(so_gate);
402 1.1 kefren if (so_ifa)
403 1.1 kefren free(so_ifa);
404 1.1 kefren if (so_tag)
405 1.1 kefren free(so_tag);
406 1.1 kefren }
407 1.1 kefren
408 1.1 kefren return rv;
409 1.1 kefren }
410 1.1 kefren
411 1.1 kefren /* Deletes a route */
412 1.1 kefren int
413 1.1 kefren delete_route(union sockunion * so_dest, union sockunion * so_pref, int freeso)
414 1.1 kefren {
415 1.1 kefren int l, rlen;
416 1.1 kefren struct rt_msg rm;
417 1.1 kefren char *cp;
418 1.1 kefren
419 1.1 kefren if(dont_catch)
420 1.1 kefren return LDP_E_OK;
421 1.1 kefren
422 1.1 kefren memset(&rm, 0, sizeof(struct rt_msg));
423 1.1 kefren cp = rm.m_space;
424 1.1 kefren
425 1.1 kefren rm.m_rtm.rtm_type = RTM_DELETE;
426 1.1 kefren rm.m_rtm.rtm_version = RTM_VERSION;
427 1.1 kefren rm.m_rtm.rtm_seq = ++rt_seq;
428 1.1 kefren if (so_pref)
429 1.1 kefren rm.m_rtm.rtm_addrs = RTA_DST | RTA_NETMASK;
430 1.1 kefren else
431 1.1 kefren rm.m_rtm.rtm_addrs = RTA_DST;
432 1.1 kefren
433 1.1 kefren /* destination, gateway, netmask, genmask, ifp, ifa */
434 1.1 kefren
435 1.1 kefren NEXTADDR(so_dest);
436 1.1 kefren
437 1.1 kefren if (so_pref) {
438 1.12 kefren union sockunion *so_pref_temp = so_pref;
439 1.12 kefren if (freeso != FREESO) {
440 1.12 kefren /* don't modify the original prefix */
441 1.12 kefren so_pref_temp = calloc(1, so_pref->sa.sa_len);
442 1.12 kefren if (so_pref_temp == NULL)
443 1.12 kefren return LDP_E_MEMORY;
444 1.12 kefren memcpy(so_pref_temp, so_pref, so_pref->sa.sa_len);
445 1.12 kefren }
446 1.12 kefren mask_addr(so_pref_temp);
447 1.12 kefren NEXTADDR(so_pref_temp);
448 1.12 kefren if (freeso != FREESO)
449 1.12 kefren free(so_pref_temp);
450 1.1 kefren }
451 1.1 kefren rm.m_rtm.rtm_msglen = l = cp - (char *) &rm;
452 1.1 kefren
453 1.1 kefren if (freeso == FREESO) {
454 1.1 kefren free(so_dest);
455 1.1 kefren if (so_pref)
456 1.1 kefren free(so_pref);
457 1.1 kefren }
458 1.1 kefren if ((rlen = write(route_socket, (char *) &rm, l)) < l) {
459 1.1 kefren if(so_pref) {
460 1.1 kefren char spreftmp[INET_ADDRSTRLEN];
461 1.1 kefren strlcpy(spreftmp, inet_ntoa(so_pref->sin.sin_addr),
462 1.1 kefren INET_ADDRSTRLEN);
463 1.1 kefren warnp("Error deleting route(%s): %s/%s",
464 1.1 kefren route_strerror(errno), union_ntoa(so_dest),
465 1.1 kefren spreftmp);
466 1.1 kefren } else
467 1.1 kefren warnp("Error deleting route(%s) : %s",
468 1.1 kefren route_strerror(errno), union_ntoa(so_dest));
469 1.1 kefren return LDP_E_NO_SUCH_ROUTE;
470 1.1 kefren }
471 1.1 kefren return LDP_E_OK;
472 1.1 kefren }
473 1.1 kefren
474 1.1 kefren /*
475 1.1 kefren * Check for a route and returns it in rg
476 1.1 kefren * If exact_match is set it compares also the so_dest and so_pref
477 1.1 kefren * with the returned result
478 1.1 kefren */
479 1.1 kefren int
480 1.12 kefren get_route(struct rt_msg * rg, const union sockunion * so_dest,
481 1.12 kefren const union sockunion * so_pref, int exact_match)
482 1.1 kefren {
483 1.1 kefren int l, rlen, myseq;
484 1.1 kefren struct rt_msg rm;
485 1.1 kefren char *cp;
486 1.1 kefren union sockunion *su;
487 1.1 kefren
488 1.1 kefren memset(&rm, 0, sizeof(struct rt_msg));
489 1.1 kefren cp = rm.m_space;
490 1.1 kefren
491 1.1 kefren myseq = ++rt_seq;
492 1.1 kefren
493 1.1 kefren rm.m_rtm.rtm_type = RTM_GET;
494 1.1 kefren rm.m_rtm.rtm_version = RTM_VERSION;
495 1.1 kefren rm.m_rtm.rtm_seq = myseq;
496 1.1 kefren
497 1.1 kefren /*
498 1.1 kefren * rtm_addrs should contain what we provide into this message but
499 1.1 kefren * RTA_DST | RTA_IFP trick is allowed in order to find out the
500 1.1 kefren * interface.
501 1.1 kefren */
502 1.1 kefren
503 1.1 kefren rm.m_rtm.rtm_addrs = RTA_DST | RTA_IFP;
504 1.1 kefren
505 1.1 kefren /*
506 1.1 kefren * ORDER of fields is: destination, gateway, netmask, genmask, ifp,
507 1.1 kefren * ifa
508 1.1 kefren */
509 1.1 kefren
510 1.1 kefren NEXTADDR(so_dest);
511 1.1 kefren if (so_pref) {
512 1.12 kefren union sockunion *so_pref_temp = calloc(1, so_pref->sa.sa_len);
513 1.12 kefren
514 1.12 kefren if (so_pref_temp == NULL)
515 1.12 kefren return LDP_E_MEMORY;
516 1.1 kefren rm.m_rtm.rtm_addrs |= RTA_NETMASK;
517 1.12 kefren memcpy(so_pref_temp, so_pref, so_pref->sa.sa_len);
518 1.12 kefren mask_addr(so_pref_temp);
519 1.12 kefren NEXTADDR(so_pref_temp);
520 1.12 kefren free(so_pref_temp);
521 1.1 kefren }
522 1.1 kefren rm.m_rtm.rtm_msglen = l = cp - (char *) &rm;
523 1.1 kefren
524 1.1 kefren if ((rlen = write(route_socket, (char *) &rm, l)) < l) {
525 1.1 kefren debugp("Cannot get a route !(rlen=%d instead of %d) - %s\n",
526 1.1 kefren rlen, l, strerror(errno));
527 1.1 kefren return LDP_E_NO_SUCH_ROUTE;
528 1.1 kefren } else
529 1.7 kefren for ( ; ; ) {
530 1.1 kefren rlen = read_route_socket((char *) rg,
531 1.1 kefren sizeof(struct rt_msg));
532 1.1 kefren if (rlen < 1)
533 1.1 kefren break;
534 1.1 kefren /*
535 1.1 kefren * We might lose important messages here. WORKAROUND:
536 1.1 kefren * For now I just try to save this messages and replay
537 1.1 kefren * them later
538 1.1 kefren */
539 1.7 kefren if (rg->m_rtm.rtm_pid == getpid() &&
540 1.7 kefren rg->m_rtm.rtm_seq == myseq)
541 1.7 kefren break;
542 1.7 kefren debugp("Added to replay PID: %d, SEQ: %d\n",
543 1.7 kefren rg->m_rtm.rtm_pid, rg->m_rtm.rtm_seq);
544 1.7 kefren memcpy(&replay_rt[replay_index], rg,
545 1.7 kefren sizeof(struct rt_msg));
546 1.7 kefren if (replay_index < REPLAY_MAX - 1)
547 1.7 kefren replay_index++;
548 1.7 kefren else
549 1.7 kefren fatalp("Replay index is full\n");
550 1.7 kefren }
551 1.1 kefren
552 1.7 kefren if (rlen <= (int)sizeof(struct rt_msghdr)) {
553 1.9 joerg debugp("Got only %d bytes, expecting at least %zu\n", rlen,
554 1.1 kefren sizeof(struct rt_msghdr));
555 1.1 kefren return LDP_E_ROUTE_ERROR;
556 1.1 kefren }
557 1.1 kefren
558 1.1 kefren /* Check if we don't have a less specific route */
559 1.1 kefren if (exact_match) {
560 1.1 kefren su = (union sockunion*)(rg->m_space);
561 1.1 kefren if (compare_sockunion(so_dest, su)) {
562 1.1 kefren debugp("Dest %s ", union_ntoa(so_dest));
563 1.1 kefren debugp("not like %s\n", union_ntoa(su));
564 1.1 kefren return LDP_E_NO_SUCH_ROUTE;
565 1.1 kefren }
566 1.1 kefren }
567 1.1 kefren
568 1.1 kefren return LDP_E_OK;
569 1.1 kefren }
570 1.1 kefren
571 1.1 kefren /* triggered when a route event occurs */
572 1.1 kefren int
573 1.1 kefren check_route(struct rt_msg * rg, uint rlen)
574 1.1 kefren {
575 1.1 kefren union sockunion *so_dest = NULL, *so_gate = NULL, *so_pref = NULL;
576 1.1 kefren int so_pref_allocated = 0;
577 1.1 kefren int prefixlen;
578 1.1 kefren struct peer_map *pm;
579 1.1 kefren struct label *lab;
580 1.1 kefren char dest[50], gate[50], pref[50], oper[50];
581 1.1 kefren dest[0] = 0;
582 1.1 kefren gate[0] = 0;
583 1.1 kefren pref[0] = 0;
584 1.1 kefren
585 1.14 kefren if (rlen < 3 || rg->m_rtm.rtm_version != RTM_VERSION)
586 1.1 kefren return LDP_E_ROUTE_ERROR;
587 1.1 kefren
588 1.13 kefren if (rg->m_rtm.rtm_type == RTM_NEWADDR ||
589 1.13 kefren rg->m_rtm.rtm_type == RTM_DELADDR)
590 1.14 kefren return check_if_addr_updown(rg, rlen);
591 1.14 kefren
592 1.14 kefren if (rlen < sizeof(struct rt_msghdr))
593 1.14 kefren return LDP_E_ROUTE_ERROR;
594 1.14 kefren
595 1.13 kefren if (rg->m_rtm.rtm_pid == getpid() ||
596 1.13 kefren ((rg->m_rtm.rtm_flags & RTF_DONE) == 0))
597 1.1 kefren return LDP_E_OK;
598 1.1 kefren
599 1.13 kefren debugp("Check route triggered by PID: %d\n", rg->m_rtm.rtm_pid);
600 1.1 kefren
601 1.1 kefren so_dest = (union sockunion *) rg->m_space;
602 1.1 kefren
603 1.1 kefren if (so_dest->sa.sa_family != AF_INET)
604 1.1 kefren return LDP_E_OK;/* We don't care about non-IP changes */
605 1.1 kefren
606 1.1 kefren if (rg->m_rtm.rtm_addrs & RTA_GATEWAY) {
607 1.1 kefren so_gate = GETNEXT(so_dest);
608 1.1 kefren if ((so_gate->sa.sa_family != AF_INET) &&
609 1.1 kefren (so_gate->sa.sa_family != AF_MPLS))
610 1.1 kefren return LDP_E_OK;
611 1.1 kefren }
612 1.1 kefren if (rg->m_rtm.rtm_addrs & RTA_NETMASK) {
613 1.1 kefren if (so_gate)
614 1.1 kefren so_pref = so_gate;
615 1.1 kefren else
616 1.1 kefren so_pref = so_dest;
617 1.1 kefren so_pref = GETNEXT(so_pref);
618 1.1 kefren }
619 1.1 kefren if (!(rg->m_rtm.rtm_flags & RTF_GATEWAY)) {
620 1.1 kefren if (rg->m_rtm.rtm_addrs & RTA_GENMASK) {
621 1.1 kefren debugp("Used GENMASK\n");
622 1.1 kefren } else
623 1.1 kefren debugp("No GENMASK to use\n");
624 1.1 kefren }
625 1.1 kefren /* Calculate prefixlen */
626 1.1 kefren if (so_pref)
627 1.1 kefren prefixlen = from_mask_to_cidr(inet_ntoa(so_pref->sin.sin_addr));
628 1.1 kefren else {
629 1.1 kefren prefixlen = 32;
630 1.3 kefren if ((so_pref = from_cidr_to_union(32)) == NULL)
631 1.3 kefren return LDP_E_MEMORY;
632 1.1 kefren so_pref_allocated = 1;
633 1.1 kefren }
634 1.1 kefren
635 1.1 kefren so_pref->sa.sa_family = AF_INET;
636 1.1 kefren so_pref->sa.sa_len = sizeof(struct sockaddr_in);
637 1.1 kefren
638 1.1 kefren switch (rg->m_rtm.rtm_type) {
639 1.1 kefren case RTM_CHANGE:
640 1.6 kefren lab = label_get(so_dest, so_pref);
641 1.6 kefren if (lab) {
642 1.10 kefren send_withdraw_tlv_to_all(&so_dest->sa,
643 1.6 kefren prefixlen);
644 1.6 kefren label_reattach_route(lab, LDP_READD_NODEL);
645 1.6 kefren label_del(lab);
646 1.6 kefren }
647 1.1 kefren /* Fallthrough */
648 1.1 kefren case RTM_ADD:
649 1.1 kefren /*
650 1.1 kefren * Check if the route is connected. If so, bind it to
651 1.1 kefren * POP_LABEL and send announce. If not, check if the prefix
652 1.1 kefren * was announced by a LDP neighbour and route it there
653 1.1 kefren */
654 1.1 kefren
655 1.1 kefren /* First of all check if we already know this one */
656 1.5 kefren if (label_get(so_dest, so_pref) == NULL) {
657 1.1 kefren if (!(rg->m_rtm.rtm_flags & RTF_GATEWAY))
658 1.5 kefren label_add(so_dest, so_pref, NULL,
659 1.1 kefren MPLS_LABEL_IMPLNULL, NULL, 0);
660 1.1 kefren else {
661 1.10 kefren pm = ldp_test_mapping(&so_dest->sa,
662 1.10 kefren prefixlen, &so_gate->sa);
663 1.1 kefren if (pm) {
664 1.5 kefren label_add(so_dest, so_pref,
665 1.1 kefren so_gate, 0, NULL, 0);
666 1.1 kefren mpls_add_label(pm->peer, rg,
667 1.10 kefren &so_dest->sa, prefixlen,
668 1.1 kefren pm->lm->label, ROUTE_LOOKUP_LOOP);
669 1.1 kefren free(pm);
670 1.1 kefren } else
671 1.5 kefren label_add(so_dest, so_pref, so_gate,
672 1.5 kefren MPLS_LABEL_IMPLNULL, NULL, 0);
673 1.1 kefren }
674 1.1 kefren } else /* We already know about this prefix */
675 1.1 kefren debugp("Binding already there for prefix %s/%d !\n",
676 1.1 kefren union_ntoa(so_dest), prefixlen);
677 1.1 kefren break;
678 1.1 kefren case RTM_DELETE:
679 1.1 kefren if (!so_gate)
680 1.1 kefren break; /* Non-existent route XXX ?! */
681 1.1 kefren /*
682 1.1 kefren * Send withdraw check the binding, delete the route, delete
683 1.1 kefren * the binding
684 1.1 kefren */
685 1.1 kefren lab = label_get(so_dest, so_pref);
686 1.1 kefren if (!lab)
687 1.1 kefren break;
688 1.10 kefren send_withdraw_tlv_to_all(&so_dest->sa, prefixlen);
689 1.6 kefren /* No readd or delete IP route. Just delete the MPLS route */
690 1.1 kefren label_reattach_route(lab, LDP_READD_NODEL);
691 1.1 kefren label_del(lab);
692 1.1 kefren break;
693 1.1 kefren }
694 1.1 kefren
695 1.7 kefren if (!debug_f && !warn_f) {
696 1.7 kefren if(so_pref_allocated)
697 1.7 kefren free(so_pref);
698 1.7 kefren return LDP_E_OK;
699 1.7 kefren }
700 1.7 kefren
701 1.1 kefren /* Rest is just for debug */
702 1.1 kefren
703 1.1 kefren if (so_dest)
704 1.1 kefren strlcpy(dest, union_ntoa(so_dest), 16);
705 1.1 kefren if (so_pref)
706 1.1 kefren snprintf(pref, 3, "%d", prefixlen);
707 1.1 kefren if (so_gate)
708 1.1 kefren strlcpy(gate, union_ntoa(so_gate), 16);
709 1.1 kefren
710 1.1 kefren switch (rg->m_rtm.rtm_type) {
711 1.1 kefren case RTM_ADD:
712 1.1 kefren strlcpy(oper, "added", 20);
713 1.1 kefren break;
714 1.1 kefren case RTM_DELETE:
715 1.1 kefren strlcpy(oper, "delete", 20);
716 1.1 kefren break;
717 1.1 kefren case RTM_GET:
718 1.1 kefren strlcpy(oper, "get", 20);
719 1.1 kefren break;
720 1.1 kefren case RTM_CHANGE:
721 1.1 kefren strlcpy(oper, "change", 20);
722 1.1 kefren break;
723 1.1 kefren case RTM_LOSING:
724 1.1 kefren strlcpy(oper, "losing", 20);
725 1.1 kefren break;
726 1.14 kefren case RTM_REDIRECT:
727 1.14 kefren strlcpy(oper, "redirect", 20);
728 1.14 kefren break;
729 1.1 kefren case RTM_NEWADDR:
730 1.1 kefren strlcpy(oper, "new address", 20);
731 1.1 kefren break;
732 1.1 kefren case RTM_DELADDR:
733 1.1 kefren strlcpy(oper, "del address", 20);
734 1.1 kefren break;
735 1.1 kefren default:
736 1.14 kefren snprintf(oper, sizeof(oper), "unknown 0x%X operation",
737 1.1 kefren rg->m_rtm.rtm_type);
738 1.1 kefren }
739 1.1 kefren
740 1.1 kefren warnp("[check_route] Route %s: %s / %s -> %s by PID:%d\n", oper, dest,
741 1.1 kefren pref, gate, rg->m_rtm.rtm_pid);
742 1.1 kefren
743 1.1 kefren if(so_pref_allocated)
744 1.1 kefren free(so_pref);
745 1.1 kefren return LDP_E_OK;
746 1.1 kefren }
747 1.1 kefren
748 1.13 kefren /*
749 1.13 kefren * Checks NEWADDR and DELADDR messages and sends announcements accordingly
750 1.13 kefren */
751 1.13 kefren static int
752 1.14 kefren check_if_addr_updown(struct rt_msg * rg, uint rlen)
753 1.13 kefren {
754 1.13 kefren union sockunion *ifa, *netmask;
755 1.13 kefren struct ldp_peer *p;
756 1.13 kefren struct address_list_tlv al_tlv;
757 1.14 kefren struct ifa_msghdr *msghdr = (struct ifa_msghdr *)&rg->m_rtm;
758 1.13 kefren
759 1.14 kefren if (rlen < sizeof(struct ifa_msghdr) ||
760 1.14 kefren (msghdr->ifam_addrs & RTA_NETMASK) == 0 ||
761 1.14 kefren (msghdr->ifam_addrs & RTA_IFA) == 0)
762 1.13 kefren return LDP_E_ROUTE_ERROR;
763 1.13 kefren
764 1.14 kefren /* we should have RTA_NETMASK, RTA_IFP, RTA_IFA and RTA_BRD */
765 1.14 kefren ifa = netmask = (union sockunion *)(msghdr + 1);
766 1.13 kefren if (netmask->sa.sa_family != AF_INET)
767 1.13 kefren return LDP_E_OK;
768 1.13 kefren
769 1.14 kefren if (msghdr->ifam_addrs & RTA_IFP)
770 1.14 kefren ifa = GETNEXT(ifa);
771 1.13 kefren ifa = GETNEXT(ifa);
772 1.13 kefren
773 1.14 kefren if (ifa->sa.sa_family != AF_INET ||
774 1.14 kefren ntohl(ifa->sin.sin_addr.s_addr) >> 24 == IN_LOOPBACKNET)
775 1.13 kefren return LDP_E_OK;
776 1.13 kefren
777 1.13 kefren memset(&al_tlv, 0, sizeof(al_tlv));
778 1.13 kefren al_tlv.type = rg->m_rtm.rtm_type == RTM_NEWADDR ? htons(LDP_ADDRESS) :
779 1.13 kefren htons(LDP_ADDRESS_WITHDRAW);
780 1.13 kefren al_tlv.length = htons(sizeof(al_tlv) - TLV_TYPE_LENGTH);
781 1.13 kefren al_tlv.messageid = htonl(get_message_id());
782 1.13 kefren al_tlv.a_type = htons(TLV_ADDRESS_LIST);
783 1.13 kefren al_tlv.a_length = htons(sizeof(al_tlv.a_af) + sizeof(al_tlv.a_address));
784 1.13 kefren al_tlv.a_af = htons(LDP_AF_INET);
785 1.13 kefren memcpy(&al_tlv.a_address, &ifa->sin.sin_addr, sizeof(al_tlv.a_address));
786 1.13 kefren
787 1.13 kefren SLIST_FOREACH(p, &ldp_peer_head, peers)
788 1.13 kefren if (p->state == LDP_PEER_ESTABLISHED)
789 1.13 kefren send_tlv(p, (struct tlv *)&al_tlv);
790 1.13 kefren
791 1.13 kefren return LDP_E_OK;
792 1.13 kefren }
793 1.13 kefren
794 1.1 kefren int
795 1.1 kefren bind_current_routes()
796 1.1 kefren {
797 1.1 kefren size_t needed;
798 1.1 kefren int mib[6];
799 1.1 kefren char *buf, *next, *lim;
800 1.1 kefren struct rt_msghdr *rtmes;
801 1.1 kefren union sockunion *so_dst, *so_pref, *so_gate;
802 1.1 kefren
803 1.1 kefren mib[0] = CTL_NET;
804 1.1 kefren mib[1] = PF_ROUTE;
805 1.1 kefren mib[2] = 0;
806 1.1 kefren mib[3] = 0;
807 1.1 kefren mib[4] = NET_RT_DUMP;
808 1.1 kefren mib[5] = 0;
809 1.1 kefren if (sysctl(mib, 6, NULL, &needed, NULL, 0) < 0) {
810 1.1 kefren fatalp("route-sysctl-estimate: %s",
811 1.1 kefren strerror(errno));
812 1.1 kefren return LDP_E_ROUTE_ERROR;
813 1.1 kefren }
814 1.1 kefren if ((buf = malloc(needed)) == 0)
815 1.1 kefren return LDP_E_ROUTE_ERROR;
816 1.1 kefren if (sysctl(mib, 6, buf, &needed, NULL, 0) < 0) {
817 1.1 kefren free(buf);
818 1.1 kefren return LDP_E_ROUTE_ERROR;
819 1.1 kefren }
820 1.1 kefren lim = buf + needed;
821 1.1 kefren
822 1.1 kefren for (next = buf; next < lim; next += rtmes->rtm_msglen) {
823 1.1 kefren rtmes = (struct rt_msghdr *) next;
824 1.1 kefren so_pref = NULL;
825 1.1 kefren so_gate = NULL;
826 1.1 kefren if (rtmes->rtm_flags & RTF_LLINFO) /* No need for arps */
827 1.1 kefren continue;
828 1.1 kefren if (!(rtmes->rtm_addrs & RTA_DST)) {
829 1.1 kefren debugp("No dst\n");
830 1.1 kefren continue;
831 1.1 kefren }
832 1.1 kefren
833 1.1 kefren so_dst = (union sockunion *) & rtmes[1];
834 1.1 kefren
835 1.1 kefren /*
836 1.10 kefren * This function is called only at startup, so use
837 1.10 kefren * this ocassion to delete all MPLS routes
838 1.1 kefren */
839 1.1 kefren if (so_dst->sa.sa_family == AF_MPLS) {
840 1.1 kefren delete_route(so_dst, NULL, NO_FREESO);
841 1.1 kefren debugp("MPLS route deleted.\n");
842 1.1 kefren continue;
843 1.1 kefren }
844 1.1 kefren
845 1.1 kefren if (so_dst->sa.sa_family != AF_INET) {
846 1.10 kefren /*debugp("sa_dst is not AF_INET\n");*/
847 1.1 kefren continue;
848 1.1 kefren }
849 1.1 kefren
850 1.1 kefren /* Check if it's the default gateway */
851 1.6 kefren if (so_dst->sin.sin_addr.s_addr == 0 && no_default_route != 0)
852 1.1 kefren continue;
853 1.1 kefren
854 1.1 kefren /* XXX: Check if it's loopback */
855 1.1 kefren if ((ntohl(so_dst->sin.sin_addr.s_addr) >> 24)==IN_LOOPBACKNET)
856 1.1 kefren continue;
857 1.1 kefren
858 1.1 kefren /* Get Gateway */
859 1.1 kefren if (rtmes->rtm_addrs & RTA_GATEWAY)
860 1.1 kefren so_gate = GETNEXT(so_dst);
861 1.1 kefren
862 1.1 kefren /* Get prefix */
863 1.3 kefren if (rtmes->rtm_flags & RTF_HOST) {
864 1.3 kefren if ((so_pref = from_cidr_to_union(32)) == NULL)
865 1.3 kefren return LDP_E_MEMORY;
866 1.3 kefren } else if (rtmes->rtm_addrs & RTA_GATEWAY)
867 1.1 kefren so_pref = GETNEXT(so_gate);
868 1.1 kefren else
869 1.1 kefren so_pref = GETNEXT(so_dst);
870 1.1 kefren
871 1.1 kefren so_pref->sa.sa_family = AF_INET;
872 1.1 kefren so_pref->sa.sa_len = sizeof(struct sockaddr_in);
873 1.1 kefren
874 1.1 kefren /* Also deletes when dest is IPv4 and gateway MPLS */
875 1.1 kefren if ((rtmes->rtm_addrs & RTA_GATEWAY) &&
876 1.1 kefren (so_gate->sa.sa_family == AF_MPLS)) {
877 1.1 kefren debugp("MPLS route to %s deleted.\n",
878 1.1 kefren inet_ntoa(so_dst->sin.sin_addr));
879 1.1 kefren delete_route(so_dst, so_pref, NO_FREESO);
880 1.1 kefren if (rtmes->rtm_flags & RTF_HOST)
881 1.1 kefren free(so_pref);
882 1.1 kefren continue;
883 1.1 kefren }
884 1.1 kefren if (so_gate->sa.sa_family == AF_INET)
885 1.5 kefren label_add(so_dst, so_pref, so_gate,
886 1.1 kefren MPLS_LABEL_IMPLNULL, NULL, 0);
887 1.1 kefren
888 1.1 kefren if (rtmes->rtm_flags & RTF_HOST)
889 1.1 kefren free(so_pref);
890 1.1 kefren }
891 1.1 kefren free(buf);
892 1.1 kefren return LDP_E_OK;
893 1.1 kefren }
894 1.1 kefren
895 1.1 kefren int
896 1.1 kefren flush_mpls_routes()
897 1.1 kefren {
898 1.1 kefren size_t needed;
899 1.1 kefren int mib[6];
900 1.1 kefren char *buf, *next, *lim;
901 1.1 kefren struct rt_msghdr *rtm;
902 1.1 kefren union sockunion *so_dst, *so_pref, *so_gate;
903 1.1 kefren
904 1.1 kefren mib[0] = CTL_NET;
905 1.1 kefren mib[1] = PF_ROUTE;
906 1.1 kefren mib[2] = 0;
907 1.1 kefren mib[3] = 0;
908 1.1 kefren mib[4] = NET_RT_DUMP;
909 1.1 kefren mib[5] = 0;
910 1.1 kefren if (sysctl(mib, 6, NULL, &needed, NULL, 0) < 0) {
911 1.1 kefren fatalp("route-sysctl-estimate: %s", strerror(errno));
912 1.1 kefren return LDP_E_ROUTE_ERROR;
913 1.1 kefren }
914 1.2 christos if ((buf = malloc(needed)) == NULL) {
915 1.2 christos fatalp("route-sysctl-estimate: %s", strerror(errno));
916 1.2 christos return LDP_E_MEMORY;
917 1.2 christos }
918 1.1 kefren if (sysctl(mib, 6, buf, &needed, NULL, 0) < 0) {
919 1.1 kefren free(buf);
920 1.1 kefren return LDP_E_ROUTE_ERROR;
921 1.1 kefren }
922 1.1 kefren lim = buf + needed;
923 1.1 kefren
924 1.1 kefren for (next = buf; next < lim; next += rtm->rtm_msglen) {
925 1.1 kefren rtm = (struct rt_msghdr *) next;
926 1.1 kefren so_pref = NULL;
927 1.1 kefren so_gate = NULL;
928 1.1 kefren if (rtm->rtm_flags & RTF_LLINFO) /* No need for arps */
929 1.1 kefren continue;
930 1.1 kefren if (!(rtm->rtm_addrs & RTA_DST)) {
931 1.1 kefren debugp("No dst\n");
932 1.1 kefren continue;
933 1.1 kefren }
934 1.1 kefren so_dst = (union sockunion *) & rtm[1];
935 1.1 kefren
936 1.1 kefren if (so_dst->sa.sa_family == AF_MPLS) {
937 1.1 kefren delete_route(so_dst, NULL, NO_FREESO);
938 1.1 kefren debugp("MPLS route deleted.\n");
939 1.1 kefren continue;
940 1.1 kefren }
941 1.1 kefren
942 1.1 kefren if (rtm->rtm_addrs & RTA_GATEWAY) {
943 1.1 kefren so_gate = GETNEXT(so_dst);
944 1.1 kefren so_pref = GETNEXT(so_gate);
945 1.1 kefren } else
946 1.1 kefren so_pref = GETNEXT(so_dst);
947 1.1 kefren
948 1.1 kefren if (so_gate->sa.sa_family == AF_MPLS) {
949 1.7 kefren if (so_dst->sa.sa_family == AF_INET)
950 1.7 kefren debugp("MPLS route to %s deleted.\n",
951 1.7 kefren inet_ntoa(so_dst->sin.sin_addr));
952 1.1 kefren delete_route(so_dst, so_pref, NO_FREESO);
953 1.1 kefren continue;
954 1.1 kefren }
955 1.1 kefren
956 1.1 kefren }
957 1.1 kefren free(buf);
958 1.1 kefren return LDP_E_OK;
959 1.1 kefren }
960