]> git.decadent.org.uk Git - odhcp6c.git/blob - src/odhcp6c.c
Make -F and -P arguments position independent
[odhcp6c.git] / src / odhcp6c.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 <time.h>
16 #include <errno.h>
17 #include <fcntl.h>
18 #include <stdio.h>
19 #include <stdlib.h>
20 #include <stddef.h>
21 #include <unistd.h>
22 #include <syslog.h>
23 #include <signal.h>
24 #include <string.h>
25 #include <stdbool.h>
26
27 #include <net/if.h>
28 #include <sys/wait.h>
29 #include <sys/syscall.h>
30 #include <arpa/inet.h>
31
32 #include "odhcp6c.h"
33 #include "ra.h"
34
35
36 static void sighandler(int signal);
37 static int usage(void);
38
39 static uint8_t *state_data[_STATE_MAX] = {NULL};
40 static size_t state_len[_STATE_MAX] = {0};
41
42 static volatile int do_signal = 0;
43 static int urandom_fd = -1, allow_slaac_only = 0;
44 static bool bound = false, release = true;
45 static time_t last_update = 0;
46
47
48 int main(_unused int argc, char* const argv[])
49 {
50         // Allocate ressources
51         const char *pidfile = NULL;
52         const char *script = "/usr/sbin/odhcp6c-update";
53         ssize_t l;
54         uint8_t buf[134];
55         char *optpos;
56         uint16_t opttype;
57         enum odhcp6c_ia_mode ia_na_mode = IA_MODE_TRY;
58         enum odhcp6c_ia_mode ia_pd_mode = IA_MODE_TRY;
59         static struct in6_addr ifid = IN6ADDR_ANY_INIT;
60         int sol_timeout = 120;
61
62         bool help = false, daemonize = false;
63         int logopt = LOG_PID;
64         int c, request_pd = 0;
65         while ((c = getopt(argc, argv, "S::N:P:Fc:i:r:s:kt:hedp:")) != -1) {
66                 switch (c) {
67                 case 'S':
68                         allow_slaac_only = (optarg) ? atoi(optarg) : -1;
69                         break;
70
71                 case 'N':
72                         if (!strcmp(optarg, "force")) {
73                                 ia_na_mode = IA_MODE_FORCE;
74                                 allow_slaac_only = -1;
75                         } else if (!strcmp(optarg, "none")) {
76                                 ia_na_mode = IA_MODE_NONE;
77                         } else if (!strcmp(optarg, "try")) {
78                                 ia_na_mode = IA_MODE_TRY;
79                         } else{
80                                 help = true;
81                         }
82                         break;
83
84                 case 'P':
85                         if (allow_slaac_only >= 0 && allow_slaac_only < 10)
86                                 allow_slaac_only = 10;
87
88                         request_pd = strtoul(optarg, NULL, 10);
89                         if (request_pd == 0)
90                                 request_pd = -1;
91
92                         break;
93
94                 case 'F':
95                         allow_slaac_only = -1;
96                         ia_pd_mode = IA_MODE_FORCE;
97                         break;
98
99                 case 'c':
100                         l = script_unhexlify(&buf[4], sizeof(buf) - 4, optarg);
101                         if (l > 0) {
102                                 buf[0] = 0;
103                                 buf[1] = DHCPV6_OPT_CLIENTID;
104                                 buf[2] = 0;
105                                 buf[3] = l;
106                                 odhcp6c_add_state(STATE_CLIENT_ID, buf, l + 4);
107                         } else {
108                                 help = true;
109                         }
110                         break;
111
112                 case 'i':
113                         if (inet_pton(AF_INET6, optarg, &ifid) != 1)
114                                 help = true;
115                         break;
116
117                 case 'r':
118                         optpos = optarg;
119                         while (optpos[0]) {
120                                 opttype = htons(strtoul(optarg, &optpos, 10));
121                                 if (optpos == optarg)
122                                         break;
123                                 else if (optpos[0])
124                                         optarg = &optpos[1];
125                                 odhcp6c_add_state(STATE_ORO, &opttype, 2);
126                         }
127                         break;
128
129                 case 's':
130                         script = optarg;
131                         break;
132
133                 case 'k':
134                         release = false;
135                         break;
136
137                 case 't':
138                         sol_timeout = atoi(optarg);
139                         break;
140
141                 case 'e':
142                         logopt |= LOG_PERROR;
143                         break;
144
145                 case 'd':
146                         daemonize = true;
147                         break;
148
149                 case 'p':
150                         pidfile = optarg;
151                         break;
152
153                 default:
154                         help = true;
155                         break;
156                 }
157         }
158
159         openlog("odhcp6c", logopt, LOG_DAEMON);
160         const char *ifname = argv[optind];
161
162         if (help || !ifname)
163                 return usage();
164
165         signal(SIGIO, sighandler);
166         signal(SIGHUP, sighandler);
167         signal(SIGINT, sighandler);
168         signal(SIGCHLD, sighandler);
169         signal(SIGTERM, sighandler);
170         signal(SIGUSR1, sighandler);
171         signal(SIGUSR2, sighandler);
172
173         if ((urandom_fd = open("/dev/urandom", O_CLOEXEC | O_RDONLY)) < 0 ||
174                         init_dhcpv6(ifname, request_pd, sol_timeout) ||
175                         ra_init(ifname, &ifid) || script_init(script, ifname)) {
176                 syslog(LOG_ERR, "failed to initialize: %s", strerror(errno));
177                 return 3;
178         }
179
180         if (daemonize) {
181                 openlog("odhcp6c", LOG_PID, LOG_DAEMON); // Disable LOG_PERROR
182                 if (daemon(0, 0)) {
183                         syslog(LOG_ERR, "Failed to daemonize: %s",
184                                         strerror(errno));
185                         return 4;
186                 }
187
188                 char pidbuf[128];
189                 if (!pidfile) {
190                         snprintf(pidbuf, sizeof(pidbuf),
191                                         "/var/run/odhcp6c.%s.pid", ifname);
192                         pidfile = pidbuf;
193                 }
194
195                 int fd = open(pidfile, O_WRONLY | O_CREAT);
196                 if (fd >= 0) {
197                         char buf[8];
198                         int len = snprintf(buf, sizeof(buf), "%i\n", getpid());
199                         write(fd, buf, len);
200                         close(fd);
201                 }
202         }
203
204         script_call("started");
205
206         while (do_signal != SIGTERM) { // Main logic
207                 odhcp6c_clear_state(STATE_SERVER_ID);
208                 odhcp6c_clear_state(STATE_IA_NA);
209                 odhcp6c_clear_state(STATE_IA_PD);
210                 odhcp6c_clear_state(STATE_SNTP_IP);
211                 odhcp6c_clear_state(STATE_SNTP_FQDN);
212                 odhcp6c_clear_state(STATE_SIP_IP);
213                 odhcp6c_clear_state(STATE_SIP_FQDN);
214                 dhcpv6_set_ia_mode(ia_na_mode, ia_pd_mode);
215                 bound = false;
216
217                 // Server candidates need deep-delete
218                 size_t cand_len;
219                 struct dhcpv6_server_cand *cand = odhcp6c_get_state(STATE_SERVER_CAND, &cand_len);
220                 for (size_t i = 0; i < cand_len / sizeof(*cand); ++i) {
221                         free(cand[i].ia_na);
222                         free(cand[i].ia_pd);
223                 }
224                 odhcp6c_clear_state(STATE_SERVER_CAND);
225
226                 syslog(LOG_NOTICE, "(re)starting transaction on %s", ifname);
227
228                 do_signal = 0;
229                 int res = dhcpv6_request(DHCPV6_MSG_SOLICIT);
230                 odhcp6c_signal_process();
231
232                 if (res <= 0) {
233                         continue; // Might happen if we got a signal
234                 } else if (res == DHCPV6_STATELESS) { // Stateless mode
235                         while (do_signal == 0 || do_signal == SIGUSR1) {
236                                 do_signal = 0;
237
238                                 res = dhcpv6_request(DHCPV6_MSG_INFO_REQ);
239                                 odhcp6c_signal_process();
240                                 if (do_signal == SIGUSR1)
241                                         continue;
242                                 else if (res < 0)
243                                         break;
244                                 else if (res > 0)
245                                         script_call("informed");
246
247                                 bound = true;
248                                 syslog(LOG_NOTICE, "entering stateless-mode on %s", ifname);
249
250                                 if (dhcpv6_poll_reconfigure() > 0)
251                                         script_call("informed");
252                         }
253
254                         continue;
255                 }
256
257                 // Stateful mode
258                 if (dhcpv6_request(DHCPV6_MSG_REQUEST) <= 0)
259                         continue;
260
261                 odhcp6c_signal_process();
262                 script_call("bound");
263                 bound = true;
264                 syslog(LOG_NOTICE, "entering stateful-mode on %s", ifname);
265
266                 while (do_signal == 0 || do_signal == SIGUSR1) {
267                         // Renew Cycle
268                         // Wait for T1 to expire or until we get a reconfigure
269                         int res = dhcpv6_poll_reconfigure();
270                         odhcp6c_signal_process();
271                         if (res > 0) {
272                                 script_call("updated");
273                                 continue;
274                         }
275
276                         // Handle signal, if necessary
277                         if (do_signal == SIGUSR1)
278                                 do_signal = 0; // Acknowledged
279                         else if (do_signal > 0)
280                                 break; // Other signal type
281
282                         size_t ia_pd_len, ia_na_len, ia_pd_new, ia_na_new;
283                         odhcp6c_get_state(STATE_IA_PD, &ia_pd_len);
284                         odhcp6c_get_state(STATE_IA_NA, &ia_na_len);
285
286                         // If we have any IAs, send renew, otherwise request
287                         int r;
288                         if (ia_pd_len == 0 && ia_na_len == 0)
289                                 r = dhcpv6_request(DHCPV6_MSG_REQUEST);
290                         else
291                                 r = dhcpv6_request(DHCPV6_MSG_RENEW);
292                         odhcp6c_signal_process();
293                         if (r > 0) { // Renew was succesfull
294                                 // Publish updates
295                                 script_call("updated");
296                                 continue; // Renew was successful
297                         }
298
299                         odhcp6c_clear_state(STATE_SERVER_ID); // Remove binding
300
301                         // If we have IAs, try rebind otherwise restart
302                         res = dhcpv6_request(DHCPV6_MSG_REBIND);
303                         odhcp6c_signal_process();
304
305                         odhcp6c_get_state(STATE_IA_PD, &ia_pd_new);
306                         odhcp6c_get_state(STATE_IA_NA, &ia_na_new);
307                         if (res <= 0 || (ia_pd_new == 0 && ia_pd_len) ||
308                                         (ia_na_new == 0 && ia_na_len))
309                                 break; // We lost all our IAs, restart
310                         else if (res > 0)
311                                 script_call("rebound");
312                 }
313
314
315                 size_t ia_pd_len, ia_na_len, server_id_len;
316                 odhcp6c_get_state(STATE_IA_PD, &ia_pd_len);
317                 odhcp6c_get_state(STATE_IA_NA, &ia_na_len);
318                 odhcp6c_get_state(STATE_SERVER_ID, &server_id_len);
319
320                 // Add all prefixes to lost prefixes
321                 bound = false;
322                 script_call("unbound");
323
324                 if (server_id_len > 0 && (ia_pd_len > 0 || ia_na_len > 0) && release)
325                         dhcpv6_request(DHCPV6_MSG_RELEASE);
326
327                 odhcp6c_clear_state(STATE_IA_NA);
328                 odhcp6c_clear_state(STATE_IA_PD);
329         }
330
331         script_call("stopped");
332         return 0;
333 }
334
335
336 static int usage(void)
337 {
338         const char buf[] =
339         "Usage: odhcp6c [options] <interface>\n"
340         "\nFeature options:\n"
341         "       -S <time>       Wait at least <time> sec for a DHCP-server (0)\n"
342         "       -N <mode>       Mode for requesting addresses [try|force|none]\n"
343         "       -P <length>     Request IPv6-Prefix (0 = auto)\n"
344         "       -F              Force IPv6-Prefix\n"
345         "       -c <clientid>   Override client-ID (base-16 encoded)\n"
346         "       -i <iface-id>   Use a custom interface identifier for RA handling\n"
347         "       -r <options>    Options to be requested (comma-separated)\n"
348         "       -s <script>     Status update script (/usr/sbin/odhcp6c-update)\n"
349         "       -k              Don't send a RELEASE when stopping\n"
350         "       -t <seconds>    Maximum timeout for DHCPv6-SOLICIT (120)\n"
351         "\nInvocation options:\n"
352         "       -p <pidfile>    Set pidfile (/var/run/6relayd.pid)\n"
353         "       -d              Daemonize\n"
354         "       -e              Write logmessages to stderr\n"
355         //"     -v              Increase logging verbosity\n"
356         "       -h              Show this help\n\n";
357         write(STDERR_FILENO, buf, sizeof(buf));
358         return 1;
359 }
360
361
362 // Don't want to pull-in librt and libpthread just for a monotonic clock...
363 uint64_t odhcp6c_get_milli_time(void)
364 {
365         struct timespec t = {0, 0};
366         syscall(SYS_clock_gettime, CLOCK_MONOTONIC, &t);
367         return t.tv_sec * 1000 + t.tv_nsec / 1000000;
368 }
369
370
371 static uint8_t* odhcp6c_resize_state(enum odhcp6c_state state, ssize_t len)
372 {
373         if (len == 0)
374                 return state_data[state] + state_len[state];
375         else if (state_len[state] + len > 1024)
376                 return NULL;
377
378         uint8_t *n = realloc(state_data[state], state_len[state] + len);
379         if (n || state_len[state] + len == 0) {
380                 state_data[state] = n;
381                 n += state_len[state];
382                 state_len[state] += len;
383         }
384         return n;
385 }
386
387
388 bool odhcp6c_signal_process(void)
389 {
390         if (do_signal == SIGIO) {
391                 do_signal = 0;
392                 bool ra_updated = ra_process();
393
394                 if (ra_updated && (bound || allow_slaac_only == 0))
395                         script_call("ra-updated"); // Immediate process urgent events
396                 else if (ra_updated && !bound && allow_slaac_only > 0)
397                         script_delay_call("ra-updated", allow_slaac_only);
398         }
399
400         return do_signal != 0;
401 }
402
403
404 void odhcp6c_clear_state(enum odhcp6c_state state)
405 {
406         state_len[state] = 0;
407 }
408
409
410 void odhcp6c_add_state(enum odhcp6c_state state, const void *data, size_t len)
411 {
412         uint8_t *n = odhcp6c_resize_state(state, len);
413         if (n)
414                 memcpy(n, data, len);
415 }
416
417
418 size_t odhcp6c_remove_state(enum odhcp6c_state state, size_t offset, size_t len)
419 {
420         uint8_t *data = state_data[state];
421         ssize_t len_after = state_len[state] - (offset + len);
422         if (len_after < 0)
423                 return state_len[state];
424
425         memmove(data + offset, data + offset + len, len_after);
426         return state_len[state] -= len;
427 }
428
429
430 void* odhcp6c_move_state(enum odhcp6c_state state, size_t *len)
431 {
432         *len = state_len[state];
433         void *data = state_data[state];
434
435         state_len[state] = 0;
436         state_data[state] = NULL;
437
438         return data;
439 }
440
441
442 void* odhcp6c_get_state(enum odhcp6c_state state, size_t *len)
443 {
444         *len = state_len[state];
445         return state_data[state];
446 }
447
448
449 struct odhcp6c_entry* odhcp6c_find_entry(enum odhcp6c_state state, const struct odhcp6c_entry *new)
450 {
451         size_t len, cmplen = offsetof(struct odhcp6c_entry, target) + new->length / 8;
452         struct odhcp6c_entry *start = odhcp6c_get_state(state, &len);
453         struct odhcp6c_entry *x = NULL;
454
455         for (struct odhcp6c_entry *c = start; !x && c < &start[len/sizeof(*c)]; ++c)
456                 if (!memcmp(c, new, cmplen))
457                         return c;
458
459         return NULL;
460 }
461
462
463 bool odhcp6c_update_entry_safe(enum odhcp6c_state state, struct odhcp6c_entry *new, uint32_t safe)
464 {
465         size_t len;
466         struct odhcp6c_entry *x = odhcp6c_find_entry(state, new);
467         struct odhcp6c_entry *start = odhcp6c_get_state(state, &len);
468
469         if (x && x->valid > new->valid && new->valid < safe)
470                 new->valid = safe;
471
472         if (new->valid > 0) {
473                 if (x) {
474                         if (new->valid >= x->valid && new->valid - x->valid < 60 &&
475                                         new->preferred >= x->preferred &&
476                                         new->preferred - x->preferred < 60 &&
477                                         x->class == new->class)
478                                 return false;
479                         x->valid = new->valid;
480                         x->preferred = new->preferred;
481                         x->t1 = new->t1;
482                         x->t2 = new->t2;
483                         x->class = new->class;
484                 } else {
485                         odhcp6c_add_state(state, new, sizeof(*new));
486                 }
487         } else if (x) {
488                 odhcp6c_remove_state(state, (x - start) * sizeof(*x), sizeof(*x));
489         }
490         return true;
491 }
492
493
494 bool odhcp6c_update_entry(enum odhcp6c_state state, struct odhcp6c_entry *new)
495 {
496         return odhcp6c_update_entry_safe(state, new, 0);
497 }
498
499
500 static void odhcp6c_expire_list(enum odhcp6c_state state, uint32_t elapsed)
501 {
502         size_t len;
503         struct odhcp6c_entry *start = odhcp6c_get_state(state, &len);
504         for (struct odhcp6c_entry *c = start; c < &start[len / sizeof(*c)]; ++c) {
505                 if (c->t1 < elapsed)
506                         c->t1 = 0;
507                 else if (c->t1 != UINT32_MAX)
508                         c->t1 -= elapsed;
509
510                 if (c->t2 < elapsed)
511                         c->t2 = 0;
512                 else if (c->t2 != UINT32_MAX)
513                         c->t2 -= elapsed;
514
515                 if (c->preferred < elapsed)
516                         c->preferred = 0;
517                 else if (c->preferred != UINT32_MAX)
518                         c->preferred -= elapsed;
519
520                 if (c->valid < elapsed)
521                         c->valid = 0;
522                 else if (c->valid != UINT32_MAX)
523                         c->valid -= elapsed;
524
525                 if (!c->valid)
526                         odhcp6c_remove_state(state, (c - start) * sizeof(*c), sizeof(*c));
527         }
528 }
529
530
531 void odhcp6c_expire(void)
532 {
533         time_t now = odhcp6c_get_milli_time() / 1000;
534         uint32_t elapsed = (last_update > 0) ? now - last_update : 0;
535         last_update = now;
536
537         odhcp6c_expire_list(STATE_RA_PREFIX, elapsed);
538         odhcp6c_expire_list(STATE_RA_ROUTE, elapsed);
539         odhcp6c_expire_list(STATE_RA_DNS, elapsed);
540         odhcp6c_expire_list(STATE_IA_NA, elapsed);
541         odhcp6c_expire_list(STATE_IA_PD, elapsed);
542 }
543
544
545 uint32_t odhcp6c_elapsed(void)
546 {
547         return odhcp6c_get_milli_time() / 1000 - last_update;
548 }
549
550
551 void odhcp6c_random(void *buf, size_t len)
552 {
553         read(urandom_fd, buf, len);
554 }
555
556 bool odhcp6c_is_bound(void)
557 {
558         return bound;
559 }
560
561 static void sighandler(int signal)
562 {
563         if (signal == SIGCHLD)
564                 while (waitpid(-1, NULL, WNOHANG) > 0);
565         else if (signal == SIGUSR1)
566                 do_signal = SIGUSR1;
567         else if (signal == SIGUSR2)
568                 do_signal = SIGUSR2;
569         else if (signal == SIGIO)
570                 do_signal = SIGIO;
571         else
572                 do_signal = SIGTERM;
573 }