ldp_peer.c revision 1.10 1 1.10 kefren /* $NetBSD: ldp_peer.c,v 1.10 2013/02/04 17:14:31 kefren Exp $ */
2 1.1 kefren
3 1.5 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 <netinet/in.h>
35 1.3 kefren #include <netinet/tcp.h>
36 1.1 kefren #include <netmpls/mpls.h>
37 1.1 kefren #include <arpa/inet.h>
38 1.1 kefren
39 1.5 kefren #include <assert.h>
40 1.5 kefren #include <errno.h>
41 1.1 kefren #include <stdlib.h>
42 1.1 kefren #include <strings.h>
43 1.1 kefren #include <stdio.h>
44 1.1 kefren #include <unistd.h>
45 1.3 kefren
46 1.3 kefren #include "conffile.h"
47 1.1 kefren #include "socketops.h"
48 1.1 kefren #include "ldp_errors.h"
49 1.1 kefren #include "ldp.h"
50 1.1 kefren #include "tlv_stack.h"
51 1.1 kefren #include "mpls_interface.h"
52 1.1 kefren #include "notifications.h"
53 1.1 kefren #include "ldp_peer.h"
54 1.1 kefren
55 1.3 kefren extern int ldp_holddown_time;
56 1.3 kefren
57 1.1 kefren struct in_addr *myaddresses;
58 1.1 kefren
59 1.1 kefren void
60 1.1 kefren ldp_peer_init(void)
61 1.1 kefren {
62 1.1 kefren SLIST_INIT(&ldp_peer_head);
63 1.1 kefren myaddresses = NULL;
64 1.1 kefren }
65 1.1 kefren
66 1.10 kefren int
67 1.5 kefren sockaddr_cmp(const struct sockaddr *a, const struct sockaddr *b)
68 1.5 kefren {
69 1.9 kefren if (a->sa_len != b->sa_len || a->sa_family != b->sa_family)
70 1.5 kefren return -1;
71 1.9 kefren return memcmp(a, b, a->sa_len);
72 1.5 kefren }
73 1.1 kefren /*
74 1.1 kefren * soc should be > 1 if there is already a TCP socket for this else we'll
75 1.1 kefren * initiate a new one
76 1.1 kefren */
77 1.1 kefren struct ldp_peer *
78 1.5 kefren ldp_peer_new(const struct in_addr * ldp_id, struct sockaddr * padd,
79 1.5 kefren struct sockaddr * tradd, uint16_t holdtime, int soc)
80 1.1 kefren {
81 1.1 kefren struct ldp_peer *p;
82 1.3 kefren int s = soc;
83 1.5 kefren struct sockaddr *connecting_sa = NULL;
84 1.3 kefren struct conf_neighbour *cn;
85 1.6 kefren
86 1.5 kefren if (tradd != NULL)
87 1.5 kefren assert(tradd->sa_family == padd->sa_family);
88 1.1 kefren
89 1.5 kefren if (soc < 1) {
90 1.1 kefren s = socket(PF_INET, SOCK_STREAM, 0);
91 1.5 kefren if (s < 0) {
92 1.5 kefren fatalp("ldp_peer_new: cannot create socket\n");
93 1.5 kefren return NULL;
94 1.5 kefren }
95 1.5 kefren if (tradd != NULL)
96 1.5 kefren connecting_sa = tradd;
97 1.5 kefren else
98 1.5 kefren connecting_sa = padd;
99 1.5 kefren
100 1.5 kefren assert(connecting_sa->sa_family == AF_INET ||
101 1.5 kefren connecting_sa->sa_family == AF_INET6);
102 1.5 kefren
103 1.5 kefren if (connecting_sa->sa_family == AF_INET)
104 1.5 kefren ((struct sockaddr_in*)connecting_sa)->sin_port =
105 1.5 kefren htons(LDP_PORT);
106 1.1 kefren else
107 1.5 kefren ((struct sockaddr_in6*)connecting_sa)->sin6_port =
108 1.5 kefren htons(LDP_PORT);
109 1.1 kefren
110 1.1 kefren set_ttl(s);
111 1.1 kefren }
112 1.1 kefren
113 1.3 kefren /* MD5 authentication needed ? */
114 1.3 kefren SLIST_FOREACH(cn, &conei_head, neilist)
115 1.6 kefren if (cn->authenticate != 0 &&
116 1.6 kefren ldp_id->s_addr == cn->address.s_addr) {
117 1.3 kefren if (setsockopt(s, IPPROTO_TCP, TCP_MD5SIG, &(int){1},
118 1.3 kefren sizeof(int)) != 0)
119 1.3 kefren fatalp("setsockopt TCP_MD5SIG: %s\n",
120 1.3 kefren strerror(errno));
121 1.3 kefren break;
122 1.3 kefren }
123 1.6 kefren
124 1.1 kefren /* Set the peer in CONNECTING/CONNECTED state */
125 1.2 christos p = calloc(1, sizeof(*p));
126 1.1 kefren
127 1.1 kefren if (!p) {
128 1.3 kefren fatalp("ldp_peer_new: calloc problem\n");
129 1.1 kefren return NULL;
130 1.2 christos }
131 1.1 kefren
132 1.1 kefren SLIST_INSERT_HEAD(&ldp_peer_head, p, peers);
133 1.5 kefren p->address = (struct sockaddr *)malloc(padd->sa_len);
134 1.5 kefren memcpy(p->address, padd, padd->sa_len);
135 1.1 kefren memcpy(&p->ldp_id, ldp_id, sizeof(struct in_addr));
136 1.7 kefren if (tradd != NULL) {
137 1.7 kefren p->transport_address = (struct sockaddr *)malloc(tradd->sa_len);
138 1.5 kefren memcpy(p->transport_address, tradd, tradd->sa_len);
139 1.7 kefren } else {
140 1.7 kefren p->transport_address = (struct sockaddr *)malloc(padd->sa_len);
141 1.5 kefren memcpy(p->transport_address, padd, padd->sa_len);
142 1.7 kefren }
143 1.5 kefren p->holdtime=holdtime > ldp_holddown_time ? holdtime : ldp_holddown_time;
144 1.1 kefren p->socket = s;
145 1.1 kefren if (soc < 1) {
146 1.1 kefren p->state = LDP_PEER_CONNECTING;
147 1.1 kefren p->master = 1;
148 1.1 kefren } else {
149 1.1 kefren p->state = LDP_PEER_CONNECTED;
150 1.1 kefren p->master = 0;
151 1.1 kefren set_ttl(p->socket);
152 1.1 kefren }
153 1.1 kefren SLIST_INIT(&p->ldp_peer_address_head);
154 1.1 kefren SLIST_INIT(&p->label_mapping_head);
155 1.1 kefren p->timeout = p->holdtime;
156 1.1 kefren
157 1.1 kefren /* And connect to peer */
158 1.1 kefren if (soc < 1)
159 1.5 kefren if (connect(s, connecting_sa, connecting_sa->sa_len) == -1) {
160 1.1 kefren if (errno == EINTR) {
161 1.1 kefren return p; /* We take care of this in
162 1.1 kefren * big_loop */
163 1.1 kefren }
164 1.1 kefren warnp("connect to %s failed: %s\n",
165 1.5 kefren satos(connecting_sa), strerror(errno));
166 1.1 kefren ldp_peer_holddown(p);
167 1.1 kefren return NULL;
168 1.1 kefren }
169 1.1 kefren p->state = LDP_PEER_CONNECTED;
170 1.1 kefren return p;
171 1.1 kefren }
172 1.1 kefren
173 1.1 kefren void
174 1.1 kefren ldp_peer_holddown(struct ldp_peer * p)
175 1.1 kefren {
176 1.1 kefren if (!p)
177 1.1 kefren return;
178 1.1 kefren if (p->state == LDP_PEER_ESTABLISHED)
179 1.1 kefren mpls_delete_ldp_peer(p);
180 1.1 kefren p->state = LDP_PEER_HOLDDOWN;
181 1.3 kefren p->timeout = ldp_holddown_time;
182 1.1 kefren shutdown(p->socket, SHUT_RDWR);
183 1.1 kefren ldp_peer_delete_all_mappings(p);
184 1.1 kefren del_all_ifaddr(p);
185 1.1 kefren fatalp("LDP Neighbour %s is DOWN\n", inet_ntoa(p->ldp_id));
186 1.1 kefren }
187 1.1 kefren
188 1.1 kefren void
189 1.1 kefren ldp_peer_holddown_all()
190 1.1 kefren {
191 1.1 kefren struct ldp_peer *p;
192 1.1 kefren
193 1.1 kefren SLIST_FOREACH(p, &ldp_peer_head, peers) {
194 1.1 kefren if ((p->state == LDP_PEER_ESTABLISHED) ||
195 1.1 kefren (p->state == LDP_PEER_CONNECTED))
196 1.8 kefren send_notification(p, get_message_id(),
197 1.8 kefren NOTIF_FATAL | NOTIF_SHUTDOWN);
198 1.1 kefren ldp_peer_holddown(p);
199 1.1 kefren }
200 1.1 kefren }
201 1.1 kefren
202 1.1 kefren void
203 1.1 kefren ldp_peer_delete(struct ldp_peer * p)
204 1.1 kefren {
205 1.1 kefren
206 1.1 kefren if (!p)
207 1.1 kefren return;
208 1.1 kefren
209 1.1 kefren SLIST_REMOVE(&ldp_peer_head, p, ldp_peer, peers);
210 1.1 kefren close(p->socket);
211 1.1 kefren warnp("LDP Neighbor %s holddown timer expired\n", inet_ntoa(p->ldp_id));
212 1.5 kefren free(p->address);
213 1.5 kefren free(p->transport_address);
214 1.1 kefren free(p);
215 1.1 kefren }
216 1.1 kefren
217 1.1 kefren struct ldp_peer *
218 1.5 kefren get_ldp_peer(const struct sockaddr * a)
219 1.1 kefren {
220 1.1 kefren struct ldp_peer *p;
221 1.5 kefren const struct sockaddr_in *a_inet = (const struct sockaddr_in *)a;
222 1.1 kefren
223 1.1 kefren SLIST_FOREACH(p, &ldp_peer_head, peers) {
224 1.5 kefren if (a->sa_family == AF_INET &&
225 1.5 kefren memcmp((const void *) &a_inet->sin_addr,
226 1.5 kefren (const void *) &p->ldp_id,
227 1.5 kefren sizeof(struct in_addr)) == 0)
228 1.1 kefren return p;
229 1.5 kefren if (sockaddr_cmp(a, p->address) == 0)
230 1.1 kefren return p;
231 1.5 kefren if (a->sa_family == AF_INET && check_ifaddr(p,a))
232 1.1 kefren return p;
233 1.1 kefren }
234 1.1 kefren return NULL;
235 1.1 kefren }
236 1.1 kefren
237 1.1 kefren struct ldp_peer *
238 1.5 kefren get_ldp_peer_by_id(const struct in_addr *a)
239 1.5 kefren {
240 1.5 kefren struct ldp_peer *p;
241 1.5 kefren
242 1.5 kefren SLIST_FOREACH(p, &ldp_peer_head, peers)
243 1.5 kefren if (memcmp((const void*)a,
244 1.5 kefren (const void*)&p->ldp_id, sizeof(*a)) == 0)
245 1.5 kefren return p;
246 1.5 kefren return NULL;
247 1.5 kefren }
248 1.5 kefren
249 1.5 kefren struct ldp_peer *
250 1.1 kefren get_ldp_peer_by_socket(int s)
251 1.1 kefren {
252 1.1 kefren struct ldp_peer *p;
253 1.1 kefren
254 1.1 kefren SLIST_FOREACH(p, &ldp_peer_head, peers)
255 1.1 kefren if (p->socket == s)
256 1.1 kefren return p;
257 1.1 kefren return NULL;
258 1.1 kefren }
259 1.1 kefren
260 1.1 kefren /*
261 1.1 kefren * Adds address list bounded to a specific peer
262 1.1 kefren * Returns the number of addresses inserted successfuly
263 1.1 kefren */
264 1.1 kefren int
265 1.1 kefren add_ifaddresses(struct ldp_peer * p, struct al_tlv * a)
266 1.1 kefren {
267 1.1 kefren int i, c, n;
268 1.1 kefren struct in_addr *ia;
269 1.5 kefren struct sockaddr_in ipa;
270 1.1 kefren
271 1.5 kefren memset(&ipa, 0, sizeof(ipa));
272 1.5 kefren ipa.sin_len = sizeof(ipa);
273 1.5 kefren ipa.sin_family = AF_INET;
274 1.1 kefren /*
275 1.1 kefren * Check if tlv is Address type, if it's correct size (at least one
276 1.1 kefren * address) and if it's IPv4
277 1.1 kefren */
278 1.1 kefren
279 1.1 kefren if ((ntohs(a->type) != TLV_ADDRESS_LIST) ||
280 1.1 kefren (ntohs(a->length) < sizeof(a->af) + sizeof(struct in_addr)) ||
281 1.1 kefren (ntohs(a->af) != LDP_AF_INET))
282 1.1 kefren return 0;
283 1.1 kefren
284 1.1 kefren /* Number of addresses to insert */
285 1.1 kefren n = (ntohs(a->length) - sizeof(a->af)) / sizeof(struct in_addr);
286 1.1 kefren
287 1.1 kefren debugp("Trying to add %d addresses to peer %s ... \n", n,
288 1.1 kefren inet_ntoa(p->ldp_id));
289 1.1 kefren
290 1.1 kefren for (ia = (struct in_addr *) & a->address, c = 0, i = 0; i < n; i++) {
291 1.5 kefren memcpy(&ipa.sin_addr, &ia[i], sizeof(ipa.sin_addr));
292 1.5 kefren if (add_ifaddr(p, (struct sockaddr *)&ipa) == LDP_E_OK)
293 1.1 kefren c++;
294 1.1 kefren }
295 1.1 kefren
296 1.1 kefren debugp("Added %d addresses\n", c);
297 1.1 kefren
298 1.1 kefren return c;
299 1.1 kefren }
300 1.1 kefren
301 1.1 kefren int
302 1.1 kefren del_ifaddresses(struct ldp_peer * p, struct al_tlv * a)
303 1.1 kefren {
304 1.1 kefren int i, c, n;
305 1.1 kefren struct in_addr *ia;
306 1.5 kefren struct sockaddr_in ipa;
307 1.1 kefren
308 1.5 kefren memset(&ipa, 0, sizeof(ipa));
309 1.5 kefren ipa.sin_len = sizeof(ipa);
310 1.5 kefren ipa.sin_family = AF_INET;
311 1.1 kefren /*
312 1.1 kefren * Check if tlv is Address type, if it's correct size (at least one
313 1.1 kefren * address) and if it's IPv4
314 1.1 kefren */
315 1.1 kefren
316 1.1 kefren if (ntohs(a->type) != TLV_ADDRESS_LIST ||
317 1.1 kefren ntohs(a->length) > sizeof(a->af) + sizeof(struct in_addr) ||
318 1.1 kefren ntohs(a->af) != LDP_AF_INET)
319 1.1 kefren return -1;
320 1.1 kefren
321 1.1 kefren n = (ntohs(a->length) - sizeof(a->af)) / sizeof(struct in_addr);
322 1.1 kefren
323 1.1 kefren debugp("Trying to delete %d addresses from peer %s ... \n", n,
324 1.1 kefren inet_ntoa(p->ldp_id));
325 1.1 kefren
326 1.1 kefren for (ia = (struct in_addr *) & a[1], c = 0, i = 0; i < n; i++) {
327 1.5 kefren memcpy(&ipa.sin_addr, &ia[i], sizeof(ipa.sin_addr));
328 1.5 kefren if (del_ifaddr(p, (struct sockaddr *)&ipa) == LDP_E_OK)
329 1.1 kefren c++;
330 1.1 kefren }
331 1.1 kefren
332 1.1 kefren debugp("Deleted %d addresses\n", c);
333 1.1 kefren
334 1.1 kefren return c;
335 1.1 kefren }
336 1.1 kefren
337 1.1 kefren
338 1.5 kefren /* Adds a _SINGLE_ INET address to a specific peer */
339 1.1 kefren int
340 1.5 kefren add_ifaddr(struct ldp_peer * p, struct sockaddr * a)
341 1.1 kefren {
342 1.1 kefren struct ldp_peer_address *lpa;
343 1.1 kefren
344 1.1 kefren /* Is it already there ? */
345 1.1 kefren if (check_ifaddr(p, a))
346 1.1 kefren return LDP_E_ALREADY_DONE;
347 1.1 kefren
348 1.2 christos lpa = calloc(1, sizeof(*lpa));
349 1.1 kefren
350 1.1 kefren if (!lpa) {
351 1.1 kefren fatalp("add_ifaddr: malloc problem\n");
352 1.1 kefren return LDP_E_MEMORY;
353 1.2 christos }
354 1.1 kefren
355 1.5 kefren assert(a->sa_len <= sizeof(union sockunion));
356 1.5 kefren
357 1.5 kefren memcpy(&lpa->address.sa, a, a->sa_len);
358 1.1 kefren
359 1.1 kefren SLIST_INSERT_HEAD(&p->ldp_peer_address_head, lpa, addresses);
360 1.1 kefren return LDP_E_OK;
361 1.1 kefren }
362 1.1 kefren
363 1.1 kefren /* Deletes an address bounded to a specific peer */
364 1.1 kefren int
365 1.5 kefren del_ifaddr(struct ldp_peer * p, struct sockaddr * a)
366 1.1 kefren {
367 1.1 kefren struct ldp_peer_address *wp;
368 1.1 kefren
369 1.1 kefren wp = check_ifaddr(p, a);
370 1.1 kefren if (!wp)
371 1.1 kefren return LDP_E_NOENT;
372 1.1 kefren
373 1.1 kefren SLIST_REMOVE(&p->ldp_peer_address_head, wp, ldp_peer_address,
374 1.1 kefren addresses);
375 1.1 kefren free(wp);
376 1.1 kefren return LDP_E_OK;
377 1.1 kefren }
378 1.1 kefren
379 1.1 kefren /* Checks if an address is already bounded */
380 1.1 kefren struct ldp_peer_address *
381 1.5 kefren check_ifaddr(struct ldp_peer * p, const struct sockaddr * a)
382 1.1 kefren {
383 1.1 kefren struct ldp_peer_address *wp;
384 1.1 kefren
385 1.1 kefren SLIST_FOREACH(wp, &p->ldp_peer_address_head, addresses)
386 1.5 kefren if (sockaddr_cmp(a, &wp->address.sa) == 0)
387 1.1 kefren return wp;
388 1.1 kefren return NULL;
389 1.1 kefren }
390 1.1 kefren
391 1.1 kefren void
392 1.1 kefren del_all_ifaddr(struct ldp_peer * p)
393 1.1 kefren {
394 1.1 kefren struct ldp_peer_address *wp;
395 1.1 kefren
396 1.1 kefren while (!SLIST_EMPTY(&p->ldp_peer_address_head)) {
397 1.1 kefren wp = SLIST_FIRST(&p->ldp_peer_address_head);
398 1.1 kefren SLIST_REMOVE_HEAD(&p->ldp_peer_address_head, addresses);
399 1.1 kefren free(wp);
400 1.1 kefren }
401 1.1 kefren }
402 1.1 kefren
403 1.1 kefren void
404 1.1 kefren print_bounded_addresses(struct ldp_peer * p)
405 1.1 kefren {
406 1.1 kefren struct ldp_peer_address *wp;
407 1.7 kefren char abuf[512];
408 1.1 kefren
409 1.1 kefren snprintf(abuf, sizeof(abuf), "Addresses bounded to peer %s: ",
410 1.7 kefren satos(p->address));
411 1.1 kefren SLIST_FOREACH(wp, &p->ldp_peer_address_head, addresses) {
412 1.5 kefren strncat(abuf, satos(&wp->address.sa),
413 1.5 kefren sizeof(abuf) -1);
414 1.1 kefren strncat(abuf, " ", sizeof(abuf) -1);
415 1.1 kefren }
416 1.1 kefren warnp("%s\n", abuf);
417 1.1 kefren }
418 1.1 kefren
419 1.1 kefren void
420 1.1 kefren add_my_if_addrs(struct in_addr * a, int count)
421 1.1 kefren {
422 1.2 christos myaddresses = calloc((count + 1), sizeof(*myaddresses));
423 1.1 kefren
424 1.1 kefren if (!myaddresses) {
425 1.1 kefren fatalp("add_my_if_addrs: malloc problem\n");
426 1.1 kefren return;
427 1.1 kefren }
428 1.1 kefren memcpy(myaddresses, a, count * sizeof(struct in_addr));
429 1.1 kefren myaddresses[count].s_addr = 0;
430 1.1 kefren }
431 1.1 kefren
432 1.1 kefren /* Adds a label and a prefix to a specific peer */
433 1.1 kefren int
434 1.5 kefren ldp_peer_add_mapping(struct ldp_peer * p, struct sockaddr * a, int prefix,
435 1.1 kefren int label)
436 1.1 kefren {
437 1.1 kefren struct label_mapping *lma;
438 1.1 kefren
439 1.1 kefren if (!p)
440 1.1 kefren return -1;
441 1.1 kefren if (ldp_peer_get_lm(p, a, prefix))
442 1.1 kefren return LDP_E_ALREADY_DONE;
443 1.1 kefren
444 1.2 christos lma = malloc(sizeof(*lma));
445 1.1 kefren
446 1.1 kefren if (!lma) {
447 1.1 kefren fatalp("ldp_peer_add_mapping: malloc problem\n");
448 1.1 kefren return LDP_E_MEMORY;
449 1.1 kefren }
450 1.1 kefren
451 1.5 kefren memcpy(&lma->address, a, a->sa_len);
452 1.1 kefren lma->prefix = prefix;
453 1.1 kefren lma->label = label;
454 1.1 kefren
455 1.1 kefren SLIST_INSERT_HEAD(&p->label_mapping_head, lma, mappings);
456 1.1 kefren
457 1.1 kefren return LDP_E_OK;
458 1.1 kefren }
459 1.1 kefren
460 1.1 kefren int
461 1.5 kefren ldp_peer_delete_mapping(struct ldp_peer * p, struct sockaddr * a, int prefix)
462 1.1 kefren {
463 1.1 kefren struct label_mapping *lma;
464 1.1 kefren
465 1.1 kefren if (!a)
466 1.1 kefren return ldp_peer_delete_all_mappings(p);
467 1.1 kefren
468 1.1 kefren lma = ldp_peer_get_lm(p, a, prefix);
469 1.1 kefren if (!lma)
470 1.1 kefren return LDP_E_NOENT;
471 1.1 kefren
472 1.1 kefren SLIST_REMOVE(&p->label_mapping_head, lma, label_mapping, mappings);
473 1.1 kefren free(lma);
474 1.1 kefren
475 1.1 kefren return LDP_E_OK;
476 1.1 kefren }
477 1.1 kefren
478 1.1 kefren struct label_mapping *
479 1.5 kefren ldp_peer_get_lm(struct ldp_peer * p, struct sockaddr * a, uint prefix)
480 1.1 kefren {
481 1.1 kefren struct label_mapping *rv;
482 1.1 kefren
483 1.1 kefren if (!p)
484 1.1 kefren return NULL;
485 1.1 kefren
486 1.1 kefren SLIST_FOREACH(rv, &p->label_mapping_head, mappings)
487 1.5 kefren if (rv->prefix == prefix && sockaddr_cmp(a, &rv->address.sa)==0)
488 1.1 kefren break;
489 1.1 kefren
490 1.1 kefren return rv;
491 1.1 kefren
492 1.1 kefren }
493 1.1 kefren
494 1.1 kefren int
495 1.1 kefren ldp_peer_delete_all_mappings(struct ldp_peer * p)
496 1.1 kefren {
497 1.1 kefren struct label_mapping *lma;
498 1.1 kefren
499 1.1 kefren while(!SLIST_EMPTY(&p->label_mapping_head)) {
500 1.1 kefren lma = SLIST_FIRST(&p->label_mapping_head);
501 1.1 kefren SLIST_REMOVE_HEAD(&p->label_mapping_head, mappings);
502 1.1 kefren free(lma);
503 1.1 kefren }
504 1.1 kefren
505 1.1 kefren return LDP_E_OK;
506 1.1 kefren }
507 1.1 kefren
508 1.1 kefren /* returns a mapping and its peer */
509 1.1 kefren struct peer_map *
510 1.5 kefren ldp_test_mapping(struct sockaddr * a, int prefix, struct sockaddr * gate)
511 1.1 kefren {
512 1.1 kefren struct ldp_peer *lpeer;
513 1.1 kefren struct peer_map *rv = NULL;
514 1.1 kefren struct label_mapping *lm = NULL;
515 1.1 kefren
516 1.1 kefren /* Checks if it's LPDID, else checks if it's an interface */
517 1.1 kefren
518 1.1 kefren lpeer = get_ldp_peer(gate);
519 1.1 kefren if (!lpeer) {
520 1.5 kefren debugp("ldp_test_mapping: Gateway is not an LDP peer\n");
521 1.1 kefren return NULL;
522 1.1 kefren }
523 1.1 kefren if (lpeer->state != LDP_PEER_ESTABLISHED) {
524 1.9 kefren fatalp("ldp_test_mapping: peer is down ?!\n");
525 1.1 kefren return NULL;
526 1.1 kefren }
527 1.1 kefren lm = ldp_peer_get_lm(lpeer, a, prefix);
528 1.1 kefren
529 1.1 kefren if (!lm) {
530 1.9 kefren debugp("Cannot match prefix %s/%d to the specified peer\n",
531 1.9 kefren satos(a), prefix);
532 1.1 kefren return NULL;
533 1.1 kefren }
534 1.2 christos rv = malloc(sizeof(*rv));
535 1.1 kefren
536 1.1 kefren if (!rv) {
537 1.1 kefren fatalp("ldp_test_mapping: malloc problem\n");
538 1.1 kefren return NULL;
539 1.1 kefren }
540 1.1 kefren
541 1.1 kefren rv->lm = lm;
542 1.1 kefren rv->peer = lpeer;
543 1.1 kefren
544 1.1 kefren return rv;
545 1.1 kefren }
546 1.1 kefren
547 1.1 kefren /* Name from state */
548 1.1 kefren const char * ldp_state_to_name(int state)
549 1.1 kefren {
550 1.1 kefren switch(state) {
551 1.1 kefren case LDP_PEER_CONNECTING:
552 1.1 kefren return "CONNECTING";
553 1.1 kefren case LDP_PEER_CONNECTED:
554 1.1 kefren return "CONNECTED";
555 1.1 kefren case LDP_PEER_ESTABLISHED:
556 1.1 kefren return "ESTABLISHED";
557 1.1 kefren case LDP_PEER_HOLDDOWN:
558 1.1 kefren return "HOLDDOWN";
559 1.1 kefren }
560 1.1 kefren return "UNKNOWN";
561 1.1 kefren }
562