implement local ip access through policy routing
[project/relayd.git] / main.c
1 /*
2  *   Copyright (C) 2010 Felix Fietkau <nbd@openwrt.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  *   You should have received a copy of the GNU General Public License
14  *   along with this program; if not, write to the Free Software
15  *   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA.
16  *
17  */
18 #include <sys/ioctl.h>
19 #include <sys/socket.h>
20
21 #include <stdio.h>
22 #include <unistd.h>
23 #include <fcntl.h>
24 #include <stddef.h>
25 #include <stdlib.h>
26 #include <stdint.h>
27 #include <stdbool.h>
28 #include <errno.h>
29 #include <signal.h>
30 #include <string.h>
31
32 #include "relayd.h"
33
34 static LIST_HEAD(pending_routes);
35 LIST_HEAD(interfaces);
36 int debug;
37
38 static int host_timeout;
39 static int inet_sock;
40 static int forward_bcast;
41 static int forward_dhcp;
42
43 uint8_t local_addr[4];
44 int local_route_table;
45
46 struct relayd_pending_route {
47         struct relayd_route rt;
48         struct uloop_timeout timeout;
49         uint8_t gateway[4];
50 };
51
52 static struct relayd_host *find_host_by_ipaddr(struct relayd_interface *rif, const uint8_t *ipaddr)
53 {
54         struct relayd_host *host;
55
56         if (!rif) {
57                 list_for_each_entry(rif, &interfaces, list) {
58                         host = find_host_by_ipaddr(rif, ipaddr);
59                         if (!host)
60                                 continue;
61
62                         return host;
63                 }
64                 return NULL;
65         }
66
67         list_for_each_entry(host, &rif->hosts, list) {
68                 if (memcmp(ipaddr, host->ipaddr, sizeof(host->ipaddr)) != 0)
69                         continue;
70
71                 return host;
72         }
73         return NULL;
74 }
75
76 static void add_arp(struct relayd_host *host)
77 {
78         struct sockaddr_in *sin;
79         struct arpreq arp;
80
81         strncpy(arp.arp_dev, host->rif->ifname, sizeof(arp.arp_dev));
82         arp.arp_flags = ATF_COM;
83
84         arp.arp_ha.sa_family = ARPHRD_ETHER;
85         memcpy(arp.arp_ha.sa_data, host->lladdr, ETH_ALEN);
86
87         sin = (struct sockaddr_in *) &arp.arp_pa;
88         sin->sin_family = AF_INET;
89         memcpy(&sin->sin_addr, host->ipaddr, sizeof(host->ipaddr));
90
91         ioctl(inet_sock, SIOCSARP, &arp);
92 }
93
94 static void timeout_host_route(struct uloop_timeout *timeout)
95 {
96         struct relayd_pending_route *rt;
97
98         rt = container_of(timeout, struct relayd_pending_route, timeout);
99         list_del(&rt->rt.list);
100         free(rt);
101 }
102
103 void relayd_add_host_route(struct relayd_host *host, const uint8_t *dest, uint8_t mask)
104 {
105         struct relayd_route *rt;
106
107         list_for_each_entry(rt, &host->routes, list) {
108                 if (!memcmp(rt->dest, dest, sizeof(rt->dest)) && rt->mask == mask)
109                         return;
110         }
111
112         rt = calloc(1, sizeof(*rt));
113         if (!rt)
114                 return;
115
116         list_add(&rt->list, &host->routes);
117         memcpy(rt->dest, dest, sizeof(rt->dest));
118         rt->mask = mask;
119         relayd_add_route(host, rt);
120 }
121
122 static void del_host(struct relayd_host *host)
123 {
124         struct relayd_route *route, *tmp;
125
126         DPRINTF(1, "%s: deleting host "IP_FMT" ("MAC_FMT")\n", host->rif->ifname,
127                 IP_BUF(host->ipaddr), MAC_BUF(host->lladdr));
128
129         list_for_each_entry_safe(route, tmp, &host->routes, list) {
130                 relayd_del_route(host, route);
131                 list_del(&route->list);
132                 free(route);
133         }
134         if (host->rif->managed)
135                 relayd_del_route(host, NULL);
136         uloop_timeout_cancel(&host->timeout);
137         list_del(&host->list);
138         free(host);
139 }
140
141 static void fill_arp_request(struct arp_packet *pkt, struct relayd_interface *rif,
142                              const uint8_t spa[4], const uint8_t tpa[4])
143 {
144         memset(pkt, 0, sizeof(*pkt));
145
146         pkt->eth.ether_type = htons(ETHERTYPE_ARP);
147         memcpy(pkt->eth.ether_shost, rif->sll.sll_addr, ETH_ALEN);
148
149         memcpy(pkt->arp.arp_sha, rif->sll.sll_addr, ETH_ALEN);
150         memcpy(pkt->arp.arp_spa, spa, 4);
151         memcpy(pkt->arp.arp_tpa, tpa, 4);
152
153         pkt->arp.arp_hrd = htons(ARPHRD_ETHER);
154         pkt->arp.arp_pro = htons(ETH_P_IP);
155         pkt->arp.arp_hln = ETH_ALEN;
156         pkt->arp.arp_pln = 4;
157 }
158
159 static void send_arp_request(struct relayd_interface *rif, const uint8_t *ipaddr)
160 {
161         struct arp_packet pkt;
162
163         fill_arp_request(&pkt, rif, rif->src_ip, ipaddr);
164
165         pkt.arp.arp_op = htons(ARPOP_REQUEST);
166         memcpy(pkt.arp.arp_spa, rif->src_ip, ETH_ALEN);
167         memset(pkt.arp.arp_tha, 0, ETH_ALEN);
168         memset(pkt.eth.ether_dhost, 0xff, ETH_ALEN);
169
170         DPRINTF(2, "%s: sending ARP who-has "IP_FMT", tell "IP_FMT" ("MAC_FMT")\n",
171                 rif->ifname, IP_BUF(pkt.arp.arp_tpa),
172                 IP_BUF(pkt.arp.arp_spa), MAC_BUF(pkt.eth.ether_shost));
173
174         sendto(rif->fd.fd, &pkt, sizeof(pkt), 0,
175                 (struct sockaddr *) &rif->sll, sizeof(rif->sll));
176 }
177
178 void relayd_add_pending_route(const uint8_t *gateway, const uint8_t *dest, uint8_t mask, int timeout)
179 {
180         struct relayd_pending_route *rt;
181         struct relayd_interface *rif;
182         struct relayd_host *host;
183
184         host = find_host_by_ipaddr(NULL, gateway);
185         if (host) {
186                 relayd_add_host_route(host, dest, mask);
187                 return;
188         }
189
190         rt = calloc(1, sizeof(*rt));
191         if (!rt)
192                 return;
193
194         memcpy(rt->gateway, gateway, sizeof(rt->gateway));
195         memcpy(rt->rt.dest, dest, sizeof(rt->rt.dest));
196         rt->rt.mask = mask;
197         list_add(&rt->rt.list, &pending_routes);
198         if (timeout <= 0)
199                 return;
200
201         rt->timeout.cb = timeout_host_route;
202         uloop_timeout_set(&rt->timeout, 10000);
203         list_for_each_entry(rif, &interfaces, list) {
204                 send_arp_request(rif, gateway);
205         }
206 }
207
208 static void send_arp_reply(struct relayd_interface *rif, uint8_t spa[4],
209                            uint8_t tha[ETH_ALEN], uint8_t tpa[4])
210 {
211         struct arp_packet pkt;
212
213         fill_arp_request(&pkt, rif, spa, tpa);
214
215         pkt.arp.arp_op = htons(ARPOP_REPLY);
216         memcpy(pkt.eth.ether_dhost, tha, ETH_ALEN);
217         memcpy(pkt.arp.arp_tha, tha, ETH_ALEN);
218
219         DPRINTF(2, "%s: sending ARP reply to "IP_FMT", "IP_FMT" is at ("MAC_FMT")\n",
220                 rif->ifname, IP_BUF(pkt.arp.arp_tpa),
221                 IP_BUF(pkt.arp.arp_spa), MAC_BUF(pkt.eth.ether_shost));
222
223         sendto(rif->fd.fd, &pkt, sizeof(pkt), 0,
224                 (struct sockaddr *) &rif->sll, sizeof(rif->sll));
225 }
226
227 static void host_entry_timeout(struct uloop_timeout *timeout)
228 {
229         struct relayd_host *host = container_of(timeout, struct relayd_host, timeout);
230
231         /*
232          * When a host is behind a managed interface, we must not expire its host
233          * entry prematurely, as this will cause routes to the node to expire,
234          * leading to loss of connectivity from the other side.
235          * When the timeout is reached, try pinging the host a few times before
236          * giving up on it.
237          */
238         if (host->rif->managed && host->cleanup_pending < 2) {
239                 send_arp_request(host->rif, host->ipaddr);
240                 host->cleanup_pending++;
241                 uloop_timeout_set(&host->timeout, 1000);
242                 return;
243         }
244         del_host(host);
245 }
246
247 static struct relayd_host *add_host(struct relayd_interface *rif, const uint8_t *lladdr, const uint8_t *ipaddr)
248 {
249         struct relayd_host *host;
250         struct relayd_pending_route *route, *rtmp;
251
252         DPRINTF(1, "%s: adding host "IP_FMT" ("MAC_FMT")\n", rif->ifname,
253                         IP_BUF(ipaddr), MAC_BUF(lladdr));
254
255         host = calloc(1, sizeof(*host));
256         INIT_LIST_HEAD(&host->routes);
257         host->rif = rif;
258         memcpy(host->ipaddr, ipaddr, sizeof(host->ipaddr));
259         memcpy(host->lladdr, lladdr, sizeof(host->lladdr));
260         list_add(&host->list, &rif->hosts);
261         host->timeout.cb = host_entry_timeout;
262         uloop_timeout_set(&host->timeout, host_timeout * 1000);
263
264         add_arp(host);
265         if (rif->managed)
266                 relayd_add_route(host, NULL);
267
268         list_for_each_entry_safe(route, rtmp, &pending_routes, rt.list) {
269                 if (memcmp(route->gateway, ipaddr, 4) != 0)
270                         continue;
271
272                 relayd_add_host_route(host, route->rt.dest, route->rt.mask);
273                 if (!route->timeout.pending)
274                         continue;
275
276                 uloop_timeout_cancel(&route->timeout);
277                 list_del(&route->rt.list);
278                 free(route);
279         }
280
281         return host;
282 }
283
284 struct relayd_host *relayd_refresh_host(struct relayd_interface *rif, const uint8_t *lladdr, const uint8_t *ipaddr)
285 {
286         struct relayd_host *host;
287
288         host = find_host_by_ipaddr(rif, ipaddr);
289         if (!host) {
290                 host = find_host_by_ipaddr(NULL, ipaddr);
291
292                 /* 
293                  * When we suddenly see the host appearing on a different interface,
294                  * reduce the timeout to make the old entry expire faster, in case the
295                  * host has moved.
296                  * If the old entry is behind a managed interface, it will be pinged
297                  * before we expire it
298                  */
299                 if (host && !host->cleanup_pending) {
300                         uloop_timeout_set(&host->timeout, 1);
301                         return NULL;
302                 }
303
304                 host = add_host(rif, lladdr, ipaddr);
305         } else {
306                 host->cleanup_pending = false;
307                 uloop_timeout_set(&host->timeout, host_timeout * 1000);
308         }
309
310         return host;
311 }
312
313 static void relay_arp_request(struct relayd_interface *from_rif, struct arp_packet *pkt)
314 {
315         struct relayd_interface *rif;
316         struct arp_packet reqpkt;
317
318         memcpy(&reqpkt, pkt, sizeof(reqpkt));
319         list_for_each_entry(rif, &interfaces, list) {
320                 if (rif == from_rif)
321                         continue;
322
323                 memcpy(reqpkt.eth.ether_shost, rif->sll.sll_addr, ETH_ALEN);
324                 memcpy(reqpkt.arp.arp_sha, rif->sll.sll_addr, ETH_ALEN);
325
326                 DPRINTF(2, "%s: sending ARP who-has "IP_FMT", tell "IP_FMT" ("MAC_FMT")\n",
327                         rif->ifname, IP_BUF(reqpkt.arp.arp_tpa),
328                         IP_BUF(reqpkt.arp.arp_spa), MAC_BUF(reqpkt.eth.ether_shost));
329
330                 sendto(rif->fd.fd, &reqpkt, sizeof(reqpkt), 0,
331                         (struct sockaddr *) &rif->sll, sizeof(rif->sll));
332         }
333 }
334
335 static void recv_arp_request(struct relayd_interface *rif, struct arp_packet *pkt)
336 {
337         struct relayd_host *host;
338
339         DPRINTF(2, "%s: ARP who-has "IP_FMT", tell "IP_FMT" ("MAC_FMT")\n",
340                 rif->ifname,
341                 IP_BUF(pkt->arp.arp_tpa),
342                 IP_BUF(pkt->arp.arp_spa),
343                 MAC_BUF(pkt->eth.ether_shost));
344
345         if (!memcmp(pkt->arp.arp_spa, "\x00\x00\x00\x00", 4))
346                 return;
347
348         relayd_refresh_host(rif, pkt->eth.ether_shost, pkt->arp.arp_spa);
349
350         host = find_host_by_ipaddr(NULL, pkt->arp.arp_tpa);
351
352         /*
353          * If a host is being pinged because of a timeout, do not use the cached
354          * entry here. That way we can avoid giving out stale data in case the node
355          * has moved. We shouldn't relay requests here either, as we might miss our
356          * chance to create a host route.
357          */
358         if (host && host->cleanup_pending)
359                 return;
360
361         relay_arp_request(rif, pkt);
362 }
363
364
365 static void recv_arp_reply(struct relayd_interface *rif, struct arp_packet *pkt)
366 {
367         struct relayd_host *host;
368
369         DPRINTF(2, "%s: received ARP reply for "IP_FMT" from "MAC_FMT", deliver to "IP_FMT"\n",
370                 rif->ifname,
371                 IP_BUF(pkt->arp.arp_spa),
372                 MAC_BUF(pkt->eth.ether_shost),
373                 IP_BUF(pkt->arp.arp_tpa));
374
375         if (memcmp(pkt->arp.arp_sha, rif->sll.sll_addr, ETH_ALEN) != 0)
376                 relayd_refresh_host(rif, pkt->arp.arp_sha, pkt->arp.arp_spa);
377
378         if (!memcmp(pkt->arp.arp_tpa, rif->src_ip, 4))
379                 return;
380
381         host = find_host_by_ipaddr(NULL, pkt->arp.arp_tpa);
382         if (!host)
383                 return;
384
385         if (host->rif == rif)
386                 return;
387
388         send_arp_reply(host->rif, pkt->arp.arp_spa, host->lladdr, host->ipaddr);
389 }
390
391 static void recv_packet(struct uloop_fd *fd, unsigned int events)
392 {
393         struct relayd_interface *rif = container_of(fd, struct relayd_interface, fd);
394         struct arp_packet *pkt;
395         static char pktbuf[4096];
396         int pktlen;
397
398         do {
399                 if (rif->fd.error)
400                         uloop_end();
401
402                 pktlen = recv(rif->fd.fd, pktbuf, sizeof(pktbuf), 0);
403                 if (pktlen < 0) {
404                         if (errno == EINTR)
405                                 continue;
406
407                         break;
408                 }
409
410                 if (!pktlen)
411                         break;
412
413                 pkt = (void *)pktbuf;
414                 if (pkt->arp.arp_op == htons(ARPOP_REPLY))
415                         recv_arp_reply(rif, pkt);
416                 else if (pkt->arp.arp_op == htons(ARPOP_REQUEST))
417                         recv_arp_request(rif, pkt);
418                 else
419                         DPRINTF(1, "received unknown packet type: %04x\n", ntohs(pkt->arp.arp_op));
420
421         } while (1);
422 }
423
424 void relayd_forward_bcast_packet(struct relayd_interface *from_rif, void *packet, int len)
425 {
426         struct relayd_interface *rif;
427         struct ether_header *eth = packet;
428
429         list_for_each_entry(rif, &interfaces, list) {
430                 if (rif == from_rif)
431                         continue;
432
433                 DPRINTF(3, "%s: forwarding broadcast packet to %s\n", from_rif->ifname, rif->ifname);
434                 memcpy(eth->ether_shost, rif->sll.sll_addr, ETH_ALEN);
435                 send(rif->bcast_fd.fd, packet, len, 0);
436         }
437 }
438
439 static void recv_bcast_packet(struct uloop_fd *fd, unsigned int events)
440 {
441         struct relayd_interface *rif = container_of(fd, struct relayd_interface, bcast_fd);
442         static char pktbuf[4096];
443         int pktlen;
444
445         do {
446                 if (rif->fd.error)
447                         uloop_end();
448
449                 pktlen = recv(rif->bcast_fd.fd, pktbuf, sizeof(pktbuf), 0);
450                 if (pktlen < 0) {
451                         if (errno == EINTR)
452                                 continue;
453
454                         break;
455                 }
456
457                 if (!pktlen)
458                         break;
459
460                 if (!forward_bcast && !forward_dhcp)
461                         continue;
462
463                 if (relayd_handle_dhcp_packet(rif, pktbuf, pktlen, forward_dhcp))
464                         continue;
465
466                 if (forward_bcast)
467                         relayd_forward_bcast_packet(rif, pktbuf, pktlen);
468         } while (1);
469 }
470
471
472 static int init_interface(struct relayd_interface *rif)
473 {
474         struct sockaddr_ll *sll = &rif->sll;
475         struct sockaddr_in *sin;
476         struct ifreq ifr;
477         int fd = rif->fd.fd;
478 #ifdef PACKET_RECV_TYPE
479         unsigned int pkt_type;
480 #endif
481
482         fd = socket(AF_PACKET, SOCK_RAW, htons(ETH_P_ARP));
483         if (fd < 0)
484                 return -1;
485
486         rif->fd.fd = fd;
487
488         memset(&ifr, 0, sizeof(ifr));
489         strcpy(ifr.ifr_name, rif->ifname);
490
491         if (ioctl(fd, SIOCGIFHWADDR, &ifr) < 0) {
492                 perror("ioctl(SIOCGIFHWADDR)");
493                 return -1;
494         }
495
496         memcpy(sll->sll_addr, ifr.ifr_hwaddr.sa_data, ETH_ALEN);
497         sll->sll_family = AF_PACKET;
498         sll->sll_protocol = htons(ETH_P_ARP);
499         sll->sll_pkttype = PACKET_BROADCAST;
500         sll->sll_hatype = ARPHRD_ETHER;
501         sll->sll_halen = ETH_ALEN;
502
503         if (ioctl(fd, SIOCGIFINDEX, &ifr) < 0) {
504                 perror("ioctl(SIOCGIFINDEX)");
505                 return -1;
506         }
507
508         sll->sll_ifindex = ifr.ifr_ifindex;
509
510         if (ioctl(fd, SIOCGIFADDR, &ifr) < 0) {
511                 memcpy(rif->src_ip, DUMMY_IP, sizeof(rif->src_ip));
512         } else {
513                 sin = (struct sockaddr_in *) &ifr.ifr_addr;
514                 memcpy(rif->src_ip, &sin->sin_addr.s_addr, sizeof(rif->src_ip));
515         }
516
517         if (bind(fd, (struct sockaddr *)sll, sizeof(struct sockaddr_ll)) < 0) {
518                 perror("bind(ETH_P_ARP)");
519                 return -1;
520         }
521
522         rif->fd.cb = recv_packet;
523         uloop_fd_add(&rif->fd, ULOOP_READ | ULOOP_EDGE_TRIGGER);
524
525         if (!forward_bcast && !forward_dhcp)
526                 return 0;
527
528         fd = socket(AF_PACKET, SOCK_RAW, htons(ETH_P_IP));
529         if (fd < 0)
530                 return 0;
531
532         rif->bcast_fd.fd = fd;
533         rif->bcast_fd.cb = recv_bcast_packet;
534
535         memcpy(&rif->bcast_sll, &rif->sll, sizeof(rif->bcast_sll));
536         sll = &rif->bcast_sll;
537         sll->sll_protocol = htons(ETH_P_IP);
538
539         if (bind(fd, (struct sockaddr *)sll, sizeof(struct sockaddr_ll)) < 0) {
540                 perror("bind(ETH_P_IP)");
541                 return 0;
542         }
543
544 #ifdef PACKET_RECV_TYPE
545         pkt_type = (1 << PACKET_BROADCAST);
546         setsockopt(fd, SOL_PACKET, PACKET_RECV_TYPE, &pkt_type, sizeof(pkt_type));
547 #endif
548
549         uloop_fd_add(&rif->bcast_fd, ULOOP_READ | ULOOP_EDGE_TRIGGER);
550         relayd_add_interface_routes(rif);
551         return 0;
552 }
553
554 static void ping_static_routes(void)
555 {
556         struct relayd_pending_route *rt;
557         struct relayd_interface *rif;
558
559         list_for_each_entry(rt, &pending_routes, rt.list)
560                 list_for_each_entry(rif, &interfaces, list)
561                         send_arp_request(rif, rt->gateway);
562 }
563
564 static int init_interfaces(void)
565 {
566         struct relayd_interface *rif;
567         int ret;
568
569         list_for_each_entry(rif, &interfaces, list) {
570                 ret = init_interface(rif);
571                 if (ret < 0)
572                         return ret;
573         }
574
575         return 0;
576 }
577
578 static void cleanup_hosts(void)
579 {
580         struct relayd_interface *rif;
581         struct relayd_host *host, *tmp;
582
583         list_for_each_entry(rif, &interfaces, list) {
584                 list_for_each_entry_safe(host, tmp, &rif->hosts, list) {
585                         del_host(host);
586                 }
587         }
588 }
589
590 static void free_interfaces(void)
591 {
592         struct relayd_interface *rif, *rtmp;
593
594         list_for_each_entry_safe(rif, rtmp, &interfaces, list) {
595                 relayd_del_interface_routes(rif);
596                 list_del(&rif->list);
597                 free(rif);
598         }
599 }
600
601 static struct relayd_interface *alloc_interface(const char *ifname, bool managed)
602 {
603         struct relayd_interface *rif;
604
605         if (strlen(ifname) >= IFNAMSIZ)
606                 return NULL;
607
608         rif = calloc(1, sizeof(*rif));
609         if (!rif)
610                 return NULL;
611
612         INIT_LIST_HEAD(&rif->hosts);
613         strcpy(rif->ifname, ifname);
614         list_add(&rif->list, &interfaces);
615         rif->managed = managed;
616
617         return rif;
618 }
619
620 static void die(int signo)
621 {
622         /*
623          * When we hit SIGTERM, clean up interfaces directly, so that we
624          * won't leave our routing in an invalid state.
625          */
626         cleanup_hosts();
627         free_interfaces();
628         exit(1);
629 }
630
631 static int usage(const char *progname)
632 {
633         fprintf(stderr, "Usage: %s <options>\n"
634                         "\n"
635                         "Options:\n"
636                         "       -d              Enable debug messages\n"
637                         "       -i <ifname>     Add an interface for relaying\n"
638                         "       -I <ifname>     Same as -i, except with ARP cache and host route management\n"
639                         "                       You need to specify at least two interfaces\n"
640                         "       -G <ip>         Set a gateway IP for clients\n"
641                         "       -R <gateway>:<net>/<mask>\n"
642                         "                       Add a static route for <net>/<mask> via <gateway>\n"
643                         "       -t <timeout>    Host entry expiry timeout\n"
644                         "       -T <table>      Set routing table number for automatically added routes\n"
645                         "       -B              Enable broadcast forwarding\n"
646                         "       -D              Enable DHCP forwarding\n"
647                         "       -L <ipaddr>     Enable local access using <ipaddr> as source address\n"
648                         "\n",
649                 progname);
650         return -1;
651 }
652
653 int main(int argc, char **argv)
654 {
655         struct relayd_interface *rif = NULL;
656         struct in_addr addr, addr2;
657         bool local_addr_valid = false;
658         bool managed;
659         int ifnum = 0;
660         char *s, *s2;
661         int mask;
662         int ch;
663
664         debug = 0;
665         inet_sock = socket(AF_INET, SOCK_DGRAM, 0);
666         if (inet_sock < 0) {
667                 perror("socket(AF_INET)");
668                 return 1;
669         }
670
671         host_timeout = 60;
672         forward_bcast = 0;
673         local_route_table = 0;
674         uloop_init();
675
676         while ((ch = getopt(argc, argv, "I:i:t:BDdT:G:R:L:")) != -1) {
677                 switch(ch) {
678                 case 'I':
679                         managed = true;
680                         /* fall through */
681                 case 'i':
682                         ifnum++;
683                         rif = alloc_interface(optarg, managed);
684                         if (!rif)
685                                 return 1;
686
687                         managed = false;
688                         break;
689                 case 't':
690                         host_timeout = atoi(optarg);
691                         if (host_timeout <= 0)
692                                 return usage(argv[0]);
693                         break;
694                 case 'd':
695                         debug++;
696                         break;
697                 case 'B':
698                         forward_bcast = 1;
699                         break;
700                 case 'D':
701                         forward_dhcp = 1;
702                         break;
703                 case 'T':
704                         route_table = atoi(optarg);
705                         if (route_table <= 0)
706                                 return usage(argv[0]);
707                         break;
708                 case 'G':
709                         if (!inet_aton(optarg, &addr)) {
710                                 fprintf(stderr, "Address '%s' not found\n", optarg);
711                                 return 1;
712                         }
713                         relayd_add_pending_route((uint8_t *) &addr.s_addr, (const uint8_t *) "\x00\x00\x00\x00", 0, 0);
714                         break;
715                 case 'L':
716                         if (!inet_aton(optarg, &addr)) {
717                                 fprintf(stderr, "Address '%s' not found\n", optarg);
718                                 return 1;
719                         }
720                         memcpy(&local_addr, &addr.s_addr, sizeof(local_addr));
721                         local_addr_valid = true;
722                         break;
723                 case 'R':
724                         s = strchr(optarg, ':');
725                         if (!s)
726                                 return usage(argv[0]);
727
728                         *(s++) = 0;
729                         if (!inet_aton(optarg, &addr)) {
730                                 fprintf(stderr, "Address '%s' not found\n", optarg);
731                                 return 1;
732                         }
733
734                         s2 = strchr(s, '/');
735                         if (!s2)
736                                 return usage(argv[0]);
737
738                         *(s2++) = 0;
739                         if (!inet_aton(s, &addr2)) {
740                                 fprintf(stderr, "Address '%s' not found\n", s);
741                                 return 1;
742                         }
743
744                         mask = atoi(s2);
745                         if (mask < 0 || mask > 32)
746                                 return usage(argv[0]);
747
748                         relayd_add_pending_route((uint8_t *) &addr.s_addr, (uint8_t *) &addr2.s_addr, mask, 0);
749                         break;
750                 case '?':
751                 default:
752                         return usage(argv[0]);
753                 }
754         }
755
756         if (list_empty(&interfaces))
757                 return usage(argv[0]);
758
759         if (ifnum < 2) {
760                 fprintf(stderr, "ERROR: Need at least 2 interfaces for relaying\n");
761                 return -1;
762         }
763
764         argc -= optind;
765         argv += optind;
766
767         signal(SIGTERM, die);
768         signal(SIGHUP, die);
769         signal(SIGUSR1, die);
770         signal(SIGUSR2, die);
771
772         if (local_addr_valid)
773                 local_route_table = route_table++;
774
775         if (relayd_rtnl_init() < 0)
776                 return 1;
777
778         if (init_interfaces() < 0)
779                 return 1;
780
781         ping_static_routes();
782
783         uloop_run();
784         uloop_done();
785
786         cleanup_hosts();
787         free_interfaces();
788         relayd_rtnl_done();
789         close(inet_sock);
790
791         return 0;
792 }