faf9e9d03c6be3d8ce0c659e4a193b9127d43242
[project/odhcpd.git] / src / router.c
1 /**
2 * Copyright (C) 2012-2013 Steven Barth <steven@midlink.org>
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License v2 as published by
6 * the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 */
14
15 #include <errno.h>
16 #include <fcntl.h>
17 #include <signal.h>
18 #include <resolv.h>
19 #include <stdio.h>
20 #include <stdlib.h>
21 #include <unistd.h>
22 #include <stdbool.h>
23 #include <arpa/inet.h>
24 #include <net/route.h>
25
26 #include "router.h"
27 #include "odhcpd.h"
28
29
30 static void forward_router_solicitation(const struct interface *iface);
31 static void forward_router_advertisement(uint8_t *data, size_t len);
32
33 static void handle_icmpv6(void *addr, void *data, size_t len,
34 struct interface *iface, void *dest);
35 static void trigger_router_advert(struct uloop_timeout *event);
36 static void sigusr1_refresh(int signal);
37
38 static struct odhcpd_event router_event = {.uloop = {.fd = -1}, .handle_dgram = handle_icmpv6, };
39
40 static FILE *fp_route = NULL;
41 #define RA_IOV_LEN 6
42
43 #define TIME_LEFT(t1, now) ((t1) != UINT32_MAX ? (t1) - (now) : UINT32_MAX)
44
45 int init_router(void)
46 {
47 // Open ICMPv6 socket
48 int sock = socket(AF_INET6, SOCK_RAW | SOCK_CLOEXEC, IPPROTO_ICMPV6);
49 if (sock < 0 && errno != EAFNOSUPPORT) {
50 syslog(LOG_ERR, "Failed to open RAW-socket: %s", strerror(errno));
51 return -1;
52 }
53
54 // Let the kernel compute our checksums
55 int val = 2;
56 setsockopt(sock, IPPROTO_RAW, IPV6_CHECKSUM, &val, sizeof(val));
57
58 // This is required by RFC 4861
59 val = 255;
60 setsockopt(sock, IPPROTO_IPV6, IPV6_MULTICAST_HOPS, &val, sizeof(val));
61 setsockopt(sock, IPPROTO_IPV6, IPV6_UNICAST_HOPS, &val, sizeof(val));
62
63 // We need to know the source interface
64 val = 1;
65 setsockopt(sock, IPPROTO_IPV6, IPV6_RECVPKTINFO, &val, sizeof(val));
66 setsockopt(sock, IPPROTO_IPV6, IPV6_RECVHOPLIMIT, &val, sizeof(val));
67
68 // Don't loop back
69 val = 0;
70 setsockopt(sock, IPPROTO_IPV6, IPV6_MULTICAST_LOOP, &val, sizeof(val));
71
72 // Filter ICMPv6 package types
73 struct icmp6_filter filt;
74 ICMP6_FILTER_SETBLOCKALL(&filt);
75 ICMP6_FILTER_SETPASS(ND_ROUTER_ADVERT, &filt);
76 ICMP6_FILTER_SETPASS(ND_ROUTER_SOLICIT, &filt);
77 setsockopt(sock, IPPROTO_ICMPV6, ICMP6_FILTER, &filt, sizeof(filt));
78
79 // Register socket
80 router_event.uloop.fd = sock;
81 odhcpd_register(&router_event);
82
83 if (!(fp_route = fopen("/proc/net/ipv6_route", "r")))
84 syslog(LOG_ERR, "Failed to open routing table: %s",
85 strerror(errno));
86
87 signal(SIGUSR1, sigusr1_refresh);
88 return 0;
89 }
90
91
92 int setup_router_interface(struct interface *iface, bool enable)
93 {
94 if (!fp_route || router_event.uloop.fd < 0)
95 return -1;
96
97 struct ipv6_mreq all_nodes = {ALL_IPV6_NODES, iface->ifindex};
98 struct ipv6_mreq all_routers = {ALL_IPV6_ROUTERS, iface->ifindex};
99
100 uloop_timeout_cancel(&iface->timer_rs);
101 iface->timer_rs.cb = NULL;
102
103 if (iface->ifindex <= 0)
104 return -1;
105
106 setsockopt(router_event.uloop.fd, IPPROTO_IPV6, IPV6_DROP_MEMBERSHIP,
107 &all_nodes, sizeof(all_nodes));
108 setsockopt(router_event.uloop.fd, IPPROTO_IPV6, IPV6_DROP_MEMBERSHIP,
109 &all_routers, sizeof(all_routers));
110
111 if (!enable) {
112 if (iface->ra)
113 trigger_router_advert(&iface->timer_rs);
114 } else {
115 void *mreq = &all_routers;
116
117 if (iface->ra == RELAYD_RELAY && iface->master) {
118 mreq = &all_nodes;
119 forward_router_solicitation(iface);
120 } else if (iface->ra == RELAYD_SERVER && !iface->master) {
121 iface->timer_rs.cb = trigger_router_advert;
122 uloop_timeout_set(&iface->timer_rs, 1000);
123 ndp_rqs_addr6_dump();
124 }
125
126 if (iface->ra == RELAYD_RELAY || (iface->ra == RELAYD_SERVER && !iface->master))
127 setsockopt(router_event.uloop.fd, IPPROTO_IPV6,
128 IPV6_ADD_MEMBERSHIP, mreq, sizeof(all_nodes));
129 }
130 return 0;
131 }
132
133
134 // Signal handler to resend all RDs
135 static void sigusr1_refresh(_unused int signal)
136 {
137 struct interface *iface;
138 list_for_each_entry(iface, &interfaces, head)
139 if (iface->ra == RELAYD_SERVER && !iface->master)
140 uloop_timeout_set(&iface->timer_rs, 1000);
141 }
142
143 static bool router_icmpv6_valid(struct sockaddr_in6 *source, uint8_t *data, size_t len)
144 {
145 struct icmp6_hdr *hdr = (struct icmp6_hdr *)data;
146 struct icmpv6_opt *opt, *end = (struct icmpv6_opt*)&data[len];
147
148 /* Hoplimit is already checked in odhcpd_receive_packets */
149 if (len < sizeof(*hdr) || hdr->icmp6_code)
150 return false;
151
152 switch (hdr->icmp6_type) {
153 case ND_ROUTER_ADVERT:
154 if (!IN6_IS_ADDR_LINKLOCAL(&source->sin6_addr))
155 return false;
156
157 opt = (struct icmpv6_opt *)((struct nd_router_advert *)data + 1);
158 break;
159
160 case ND_ROUTER_SOLICIT:
161 opt = (struct icmpv6_opt *)((struct nd_router_solicit *)data + 1);
162 break;
163
164 default:
165 return false;
166 }
167
168 icmpv6_for_each_option(opt, opt, end)
169 if (opt->type == ND_OPT_SOURCE_LINKADDR &&
170 IN6_IS_ADDR_UNSPECIFIED(&source->sin6_addr) &&
171 hdr->icmp6_type == ND_ROUTER_SOLICIT)
172 return false;
173
174 // Check all options parsed successfully
175 return opt == end;
176 }
177
178
179 // Detect whether a default route exists, also find the source prefixes
180 static bool parse_routes(struct odhcpd_ipaddr *n, ssize_t len)
181 {
182 rewind(fp_route);
183
184 char line[512], ifname[16];
185 bool found_default = false;
186 struct odhcpd_ipaddr p = {IN6ADDR_ANY_INIT, 0, 0, 0, 0};
187 while (fgets(line, sizeof(line), fp_route)) {
188 uint32_t rflags;
189 if (sscanf(line, "00000000000000000000000000000000 00 "
190 "%*s %*s %*s %*s %*s %*s %*s %15s", ifname) &&
191 strcmp(ifname, "lo")) {
192 found_default = true;
193 } else if (sscanf(line, "%8" SCNx32 "%8" SCNx32 "%*8" SCNx32 "%*8" SCNx32 " %hhx %*s "
194 "%*s 00000000000000000000000000000000 %*s %*s %*s %" SCNx32 " lo",
195 &p.addr.s6_addr32[0], &p.addr.s6_addr32[1], &p.prefix, &rflags) &&
196 p.prefix > 0 && (rflags & RTF_NONEXTHOP) && (rflags & RTF_REJECT)) {
197 // Find source prefixes by scanning through unreachable-routes
198 p.addr.s6_addr32[0] = htonl(p.addr.s6_addr32[0]);
199 p.addr.s6_addr32[1] = htonl(p.addr.s6_addr32[1]);
200
201 for (ssize_t i = 0; i < len; ++i) {
202 if (n[i].prefix <= 64 && n[i].prefix >= p.prefix &&
203 !odhcpd_bmemcmp(&p.addr, &n[i].addr, p.prefix)) {
204 n[i].dprefix = p.prefix;
205 break;
206 }
207 }
208
209 }
210 }
211
212 return found_default;
213 }
214
215 static int calc_adv_interval(struct interface *iface, uint32_t minvalid,
216 uint32_t *maxival)
217 {
218 uint32_t minival = iface->ra_mininterval;
219 int msecs;
220
221 *maxival = iface->ra_maxinterval;
222
223 if (*maxival > minvalid/3)
224 *maxival = minvalid/3;
225
226 if (*maxival > MaxRtrAdvInterval)
227 *maxival = MaxRtrAdvInterval;
228 else if (*maxival < 4)
229 *maxival = 4;
230
231 if (minival < MinRtrAdvInterval)
232 minival = MinRtrAdvInterval;
233 else if (minival > (*maxival * 3)/4)
234 minival = (*maxival >= 9 ? *maxival/3 : *maxival);
235
236 odhcpd_urandom(&msecs, sizeof(msecs));
237 msecs = (labs(msecs) % ((*maxival != minival) ? (*maxival - minival)*1000 : 500)) +
238 minival*1000;
239
240 return msecs;
241 }
242
243 static uint16_t calc_ra_lifetime(struct interface *iface, uint32_t maxival)
244 {
245 uint16_t lifetime = 3*maxival;
246
247 if (iface->ra_lifetime >= 0) {
248 lifetime = iface->ra_lifetime;
249 if (lifetime < maxival)
250 lifetime = maxival;
251 else if (lifetime > 9000)
252 lifetime = 9000;
253 }
254
255 return lifetime;
256 }
257
258 // Router Advert server mode
259 static uint64_t send_router_advert(struct interface *iface, const struct in6_addr *from)
260 {
261 time_t now = odhcpd_time();
262 uint32_t mtu = iface->ra_mtu;
263 int hlim = iface->ra_hoplimit;
264
265 if (mtu == 0)
266 mtu = odhcpd_get_interface_config(iface->ifname, "mtu");
267
268 if (mtu < 1280)
269 mtu = 1280;
270
271 if (hlim == 0)
272 hlim = odhcpd_get_interface_config(iface->ifname, "hop_limit");
273
274 struct {
275 struct nd_router_advert h;
276 struct icmpv6_opt lladdr;
277 struct nd_opt_mtu mtu;
278 struct nd_opt_prefix_info prefix[sizeof(iface->ia_addr) / sizeof(*iface->ia_addr)];
279 } adv = {
280 .h = {{.icmp6_type = ND_ROUTER_ADVERT, .icmp6_code = 0}, 0, 0},
281 .lladdr = {ND_OPT_SOURCE_LINKADDR, 1, {0}},
282 .mtu = {ND_OPT_MTU, 1, 0, htonl(mtu)},
283 };
284
285 if (hlim > 0)
286 adv.h.nd_ra_curhoplimit = hlim;
287
288 if (iface->dhcpv6)
289 adv.h.nd_ra_flags_reserved = ND_RA_FLAG_OTHER;
290
291 if (iface->managed >= RELAYD_MANAGED_MFLAG)
292 adv.h.nd_ra_flags_reserved |= ND_RA_FLAG_MANAGED;
293
294 if (iface->route_preference < 0)
295 adv.h.nd_ra_flags_reserved |= ND_RA_PREF_LOW;
296 else if (iface->route_preference > 0)
297 adv.h.nd_ra_flags_reserved |= ND_RA_PREF_HIGH;
298 odhcpd_get_mac(iface, adv.lladdr.data);
299
300 // If not currently shutting down
301 struct odhcpd_ipaddr addrs[RELAYD_MAX_ADDRS];
302 ssize_t ipcnt = 0;
303 uint32_t minvalid = UINT32_MAX;
304 bool default_route = false;
305 bool valid_prefix = false;
306
307 // If not shutdown
308 if (iface->timer_rs.cb) {
309 ipcnt = iface->ia_addr_len;
310 memcpy(addrs, iface->ia_addr, ipcnt * sizeof(*addrs));
311
312 // Check default route
313 if (iface->default_router) {
314 default_route = true;
315
316 if (iface->default_router > 1)
317 valid_prefix = true;
318 } else if (parse_routes(addrs, ipcnt))
319 default_route = true;
320 }
321
322 // Construct Prefix Information options
323 size_t cnt = 0;
324
325 struct in6_addr dns_pref, *dns_addr = &dns_pref;
326 size_t dns_cnt = 1;
327
328 odhcpd_get_interface_dns_addr(iface, &dns_pref);
329
330 for (ssize_t i = 0; i < ipcnt; ++i) {
331 struct odhcpd_ipaddr *addr = &addrs[i];
332 uint32_t preferred = 0;
333 uint32_t valid = 0;
334
335 if (addr->prefix > 96 || addr->valid <= (uint32_t)now) {
336 char namebuf[INET6_ADDRSTRLEN];
337
338 inet_ntop(AF_INET6, addr, namebuf, sizeof(namebuf));
339 syslog(LOG_INFO, "Address %s (prefix %d, valid %u) not suitable as RA prefix on %s",
340 namebuf, addr->prefix, addr->valid, iface->ifname);
341 continue;
342 }
343
344 struct nd_opt_prefix_info *p = NULL;
345 for (size_t i = 0; i < cnt; ++i) {
346 if (addr->prefix == adv.prefix[i].nd_opt_pi_prefix_len &&
347 !odhcpd_bmemcmp(&adv.prefix[i].nd_opt_pi_prefix,
348 &addr->addr, addr->prefix))
349 p = &adv.prefix[i];
350 }
351
352 if (!p) {
353 if (cnt >= ARRAY_SIZE(adv.prefix))
354 break;
355
356 p = &adv.prefix[cnt++];
357 }
358
359 if (addr->preferred > (uint32_t)now) {
360 preferred = TIME_LEFT(addr->preferred, now);
361
362 if (iface->ra_useleasetime &&
363 preferred > iface->dhcpv4_leasetime)
364 preferred = iface->dhcpv4_leasetime;
365 }
366
367 valid = TIME_LEFT(addr->valid, now);
368 if (iface->ra_useleasetime && valid > iface->dhcpv4_leasetime)
369 valid = iface->dhcpv4_leasetime;
370
371 if (minvalid > valid)
372 minvalid = valid;
373
374 if (!IN6_IS_ADDR_ULA(&addr->addr) || iface->default_router)
375 valid_prefix = true;
376
377 odhcpd_bmemcpy(&p->nd_opt_pi_prefix, &addr->addr,
378 (iface->ra_advrouter) ? 128 : addr->prefix);
379 p->nd_opt_pi_type = ND_OPT_PREFIX_INFORMATION;
380 p->nd_opt_pi_len = 4;
381 p->nd_opt_pi_prefix_len = (addr->prefix < 64) ? 64 : addr->prefix;
382 p->nd_opt_pi_flags_reserved = 0;
383 if (!iface->ra_not_onlink)
384 p->nd_opt_pi_flags_reserved |= ND_OPT_PI_FLAG_ONLINK;
385 if (iface->managed < RELAYD_MANAGED_NO_AFLAG && addr->prefix <= 64)
386 p->nd_opt_pi_flags_reserved |= ND_OPT_PI_FLAG_AUTO;
387 if (iface->ra_advrouter)
388 p->nd_opt_pi_flags_reserved |= ND_OPT_PI_FLAG_RADDR;
389 p->nd_opt_pi_preferred_time = htonl(preferred);
390 p->nd_opt_pi_valid_time = htonl(valid);
391 }
392
393 // Calculate periodic transmit
394 uint32_t maxival;
395 int msecs = calc_adv_interval(iface, minvalid, &maxival);
396
397 if (default_route) {
398 if (!valid_prefix) {
399 syslog(LOG_WARNING, "A default route is present but there is no public prefix "
400 "on %s thus we don't announce a default route!", iface->ifname);
401 adv.h.nd_ra_router_lifetime = 0;
402 } else
403 adv.h.nd_ra_router_lifetime = htons(calc_ra_lifetime(iface, maxival));
404
405 } else
406 adv.h.nd_ra_router_lifetime = 0;
407
408 syslog(LOG_INFO, "Using a RA lifetime of %d seconds on %s", ntohs(adv.h.nd_ra_router_lifetime), iface->ifname);
409
410 // DNS Recursive DNS
411 if (iface->dns_cnt > 0) {
412 dns_addr = iface->dns;
413 dns_cnt = iface->dns_cnt;
414 }
415
416 if (!dns_addr || IN6_IS_ADDR_UNSPECIFIED(dns_addr))
417 dns_cnt = 0;
418
419 struct {
420 uint8_t type;
421 uint8_t len;
422 uint8_t pad;
423 uint8_t pad2;
424 uint32_t lifetime;
425 } dns = {ND_OPT_RECURSIVE_DNS, (1 + (2 * dns_cnt)), 0, 0, 0};
426
427
428
429 // DNS Search options
430 uint8_t search_buf[256], *search_domain = iface->search;
431 size_t search_len = iface->search_len, search_padded = 0;
432
433 if (!search_domain && !res_init() && _res.dnsrch[0] && _res.dnsrch[0][0]) {
434 int len = dn_comp(_res.dnsrch[0], search_buf,
435 sizeof(search_buf), NULL, NULL);
436 if (len > 0) {
437 search_domain = search_buf;
438 search_len = len;
439 }
440 }
441
442 if (search_len > 0)
443 search_padded = ((search_len + 7) & (~7)) + 8;
444
445 struct {
446 uint8_t type;
447 uint8_t len;
448 uint8_t pad;
449 uint8_t pad2;
450 uint32_t lifetime;
451 uint8_t name[];
452 } *search = alloca(sizeof(*search) + search_padded);
453
454 search->type = ND_OPT_DNS_SEARCH;
455 search->len = search_len ? ((sizeof(*search) + search_padded) / 8) : 0;
456 search->pad = 0;
457 search->pad2 = 0;
458 memcpy(search->name, search_domain, search_len);
459 memset(&search->name[search_len], 0, search_padded - search_len);
460
461
462 size_t routes_cnt = 0;
463 struct {
464 uint8_t type;
465 uint8_t len;
466 uint8_t prefix;
467 uint8_t flags;
468 uint32_t lifetime;
469 uint32_t addr[4];
470 } routes[RELAYD_MAX_PREFIXES];
471
472 for (ssize_t i = 0; i < ipcnt; ++i) {
473 struct odhcpd_ipaddr *addr = &addrs[i];
474 if (addr->dprefix > 64 || addr->dprefix == 0 || addr->valid <= (uint32_t)now ||
475 (addr->dprefix == 64 && addr->prefix == 64)) {
476 continue; // Address not suitable
477 } else if (addr->dprefix > 32) {
478 addr->addr.s6_addr32[1] &= htonl(~((1U << (64 - addr->dprefix)) - 1));
479 } else if (addr->dprefix <= 32) {
480 addr->addr.s6_addr32[0] &= htonl(~((1U << (32 - addr->dprefix)) - 1));
481 addr->addr.s6_addr32[1] = 0;
482 }
483
484 routes[routes_cnt].type = ND_OPT_ROUTE_INFO;
485 routes[routes_cnt].len = sizeof(*routes) / 8;
486 routes[routes_cnt].prefix = addr->dprefix;
487 routes[routes_cnt].flags = 0;
488 if (iface->route_preference < 0)
489 routes[routes_cnt].flags |= ND_RA_PREF_LOW;
490 else if (iface->route_preference > 0)
491 routes[routes_cnt].flags |= ND_RA_PREF_HIGH;
492 routes[routes_cnt].lifetime = htonl(TIME_LEFT(addr->valid, now));
493 routes[routes_cnt].addr[0] = addr->addr.s6_addr32[0];
494 routes[routes_cnt].addr[1] = addr->addr.s6_addr32[1];
495 routes[routes_cnt].addr[2] = 0;
496 routes[routes_cnt].addr[3] = 0;
497
498 ++routes_cnt;
499 }
500
501 search->lifetime = htonl(maxival*10);
502 dns.lifetime = search->lifetime;
503
504 struct icmpv6_opt adv_interval = {
505 .type = ND_OPT_RTR_ADV_INTERVAL,
506 .len = 1,
507 .data = {0, 0, (maxival*1000) >> 24, (maxival*1000) >> 16, (maxival*1000) >> 8, maxival*1000}
508 };
509
510 struct iovec iov[RA_IOV_LEN] = {
511 {&adv, (uint8_t*)&adv.prefix[cnt] - (uint8_t*)&adv},
512 {&routes, routes_cnt * sizeof(*routes)},
513 {&dns, (dns_cnt) ? sizeof(dns) : 0},
514 {dns_addr, dns_cnt * sizeof(*dns_addr)},
515 {search, search->len * 8},
516 {&adv_interval, adv_interval.len * 8}};
517 struct sockaddr_in6 dest = {AF_INET6, 0, 0, ALL_IPV6_NODES, 0};
518
519 if (from && !IN6_IS_ADDR_UNSPECIFIED(from))
520 dest.sin6_addr = *from;
521
522 odhcpd_send(router_event.uloop.fd,
523 &dest, iov, ARRAY_SIZE(iov), iface);
524
525 return msecs;
526 }
527
528
529 static void trigger_router_advert(struct uloop_timeout *event)
530 {
531 struct interface *iface = container_of(event, struct interface, timer_rs);
532 int msecs = send_router_advert(iface, NULL);
533
534 // Rearm timer if not shut down
535 if (event->cb)
536 uloop_timeout_set(event, msecs);
537 }
538
539
540 // Event handler for incoming ICMPv6 packets
541 static void handle_icmpv6(void *addr, void *data, size_t len,
542 struct interface *iface, _unused void *dest)
543 {
544 struct icmp6_hdr *hdr = data;
545 struct sockaddr_in6 *from = addr;
546
547 if (!router_icmpv6_valid(addr, data, len))
548 return;
549
550 if ((iface->ra == RELAYD_SERVER && !iface->master)) { // Server mode
551 if (hdr->icmp6_type == ND_ROUTER_SOLICIT)
552 send_router_advert(iface, &from->sin6_addr);
553 } else if (iface->ra == RELAYD_RELAY) { // Relay mode
554 if (hdr->icmp6_type == ND_ROUTER_ADVERT && iface->master)
555 forward_router_advertisement(data, len);
556 else if (hdr->icmp6_type == ND_ROUTER_SOLICIT && !iface->master)
557 forward_router_solicitation(odhcpd_get_master_interface());
558 }
559 }
560
561
562 // Forward router solicitation
563 static void forward_router_solicitation(const struct interface *iface)
564 {
565 if (!iface)
566 return;
567
568 struct icmp6_hdr rs = {ND_ROUTER_SOLICIT, 0, 0, {{0}}};
569 struct iovec iov = {&rs, sizeof(rs)};
570 struct sockaddr_in6 all_routers =
571 {AF_INET6, 0, 0, ALL_IPV6_ROUTERS, iface->ifindex};
572
573 syslog(LOG_NOTICE, "Sending RS to %s", iface->ifname);
574 odhcpd_send(router_event.uloop.fd, &all_routers, &iov, 1, iface);
575 }
576
577
578 // Handler for incoming router solicitations on slave interfaces
579 static void forward_router_advertisement(uint8_t *data, size_t len)
580 {
581 struct nd_router_advert *adv = (struct nd_router_advert *)data;
582
583 // Rewrite options
584 uint8_t *end = data + len;
585 uint8_t *mac_ptr = NULL;
586 struct in6_addr *dns_ptr = NULL;
587 size_t dns_count = 0;
588
589 struct icmpv6_opt *opt;
590 icmpv6_for_each_option(opt, &adv[1], end) {
591 if (opt->type == ND_OPT_SOURCE_LINKADDR) {
592 // Store address of source MAC-address
593 mac_ptr = opt->data;
594 } else if (opt->type == ND_OPT_RECURSIVE_DNS && opt->len > 1) {
595 // Check if we have to rewrite DNS
596 dns_ptr = (struct in6_addr*)&opt->data[6];
597 dns_count = (opt->len - 1) / 2;
598 }
599 }
600
601 syslog(LOG_NOTICE, "Got a RA");
602
603 // Indicate a proxy, however we don't follow the rest of RFC 4389 yet
604 adv->nd_ra_flags_reserved |= ND_RA_FLAG_PROXY;
605
606 // Forward advertisement to all slave interfaces
607 struct sockaddr_in6 all_nodes = {AF_INET6, 0, 0, ALL_IPV6_NODES, 0};
608 struct iovec iov = {data, len};
609
610 struct interface *iface;
611 list_for_each_entry(iface, &interfaces, head) {
612 if (iface->ra != RELAYD_RELAY || iface->master)
613 continue;
614
615 // Fixup source hardware address option
616 if (mac_ptr)
617 odhcpd_get_mac(iface, mac_ptr);
618
619 // If we have to rewrite DNS entries
620 if (iface->always_rewrite_dns && dns_ptr && dns_count > 0) {
621 const struct in6_addr *rewrite = iface->dns;
622 struct in6_addr addr;
623 size_t rewrite_cnt = iface->dns_cnt;
624
625 if (rewrite_cnt == 0) {
626 if (odhcpd_get_interface_dns_addr(iface, &addr))
627 continue; // Unable to comply
628
629 rewrite = &addr;
630 rewrite_cnt = 1;
631 }
632
633 // Copy over any other addresses
634 for (size_t i = 0; i < dns_count; ++i) {
635 size_t j = (i < rewrite_cnt) ? i : rewrite_cnt - 1;
636 dns_ptr[i] = rewrite[j];
637 }
638 }
639
640 odhcpd_send(router_event.uloop.fd, &all_nodes, &iov, 1, iface);
641 }
642 }