60335fd08df50955cc243f54217de043a6143d05
[oweals/tinc.git] / src / net_setup.c
1 /*
2     net_setup.c -- Setup.
3     Copyright (C) 1998-2005 Ivo Timmermans,
4                   2000-2013 Guus Sliepen <guus@tinc-vpn.org>
5                   2006      Scott Lamb <slamb@slamb.org>
6                   2010      Brandon Black <blblack@gmail.com>
7
8     This program is free software; you can redistribute it and/or modify
9     it under the terms of the GNU General Public License as published by
10     the Free Software Foundation; either version 2 of the License, or
11     (at your option) any later version.
12
13     This program is distributed in the hope that it will be useful,
14     but WITHOUT ANY WARRANTY; without even the implied warranty of
15     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16     GNU General Public License for more details.
17
18     You should have received a copy of the GNU General Public License along
19     with this program; if not, write to the Free Software Foundation, Inc.,
20     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21 */
22
23 #include "system.h"
24
25 #include <openssl/pem.h>
26 #include <openssl/rsa.h>
27 #include <openssl/rand.h>
28 #include <openssl/err.h>
29 #include <openssl/evp.h>
30
31 #include "avl_tree.h"
32 #include "conf.h"
33 #include "connection.h"
34 #include "device.h"
35 #include "event.h"
36 #include "graph.h"
37 #include "logger.h"
38 #include "net.h"
39 #include "netutl.h"
40 #include "process.h"
41 #include "protocol.h"
42 #include "route.h"
43 #include "subnet.h"
44 #include "utils.h"
45 #include "xalloc.h"
46
47 char *myport;
48 devops_t devops;
49
50 char *proxyhost;
51 char *proxyport;
52 char *proxyuser;
53 char *proxypass;
54 proxytype_t proxytype;
55
56 bool read_rsa_public_key(connection_t *c) {
57         FILE *fp;
58         char *pubname;
59         char *hcfname;
60         char *key;
61
62         if(!c->rsa_key) {
63                 c->rsa_key = RSA_new();
64 //              RSA_blinding_on(c->rsa_key, NULL);
65         }
66
67         /* First, check for simple PublicKey statement */
68
69         if(get_config_string(lookup_config(c->config_tree, "PublicKey"), &key)) {
70                 if(BN_hex2bn(&c->rsa_key->n, key) != strlen(key)) {
71                         logger(LOG_ERR, "Invalid PublicKey for %s!", c->name);
72                         return false;
73                 }
74                 BN_hex2bn(&c->rsa_key->e, "FFFF");
75                 free(key);
76                 return true;
77         }
78
79         /* Else, check for PublicKeyFile statement and read it */
80
81         if(get_config_string(lookup_config(c->config_tree, "PublicKeyFile"), &pubname)) {
82                 fp = fopen(pubname, "r");
83
84                 if(!fp) {
85                         logger(LOG_ERR, "Error reading RSA public key file `%s': %s", pubname, strerror(errno));
86                         free(pubname);
87                         return false;
88                 }
89
90                 c->rsa_key = PEM_read_RSAPublicKey(fp, &c->rsa_key, NULL, NULL);
91                 fclose(fp);
92
93                 if(c->rsa_key) {
94                         free(pubname);
95                         return true;            /* Woohoo. */
96                 }
97
98                 /* If it fails, try PEM_read_RSA_PUBKEY. */
99                 fp = fopen(pubname, "r");
100
101                 if(!fp) {
102                         logger(LOG_ERR, "Error reading RSA public key file `%s': %s", pubname, strerror(errno));
103                         free(pubname);
104                         return false;
105                 }
106
107                 c->rsa_key = PEM_read_RSA_PUBKEY(fp, &c->rsa_key, NULL, NULL);
108                 fclose(fp);
109
110                 if(c->rsa_key) {
111 //                              RSA_blinding_on(c->rsa_key, NULL);
112                         free(pubname);
113                         return true;
114                 }
115
116                 logger(LOG_ERR, "Reading RSA public key file `%s' failed: %s", pubname, strerror(errno));
117                 free(pubname);
118                 return false;
119         }
120
121         /* Else, check if a harnessed public key is in the config file */
122
123         xasprintf(&hcfname, "%s/hosts/%s", confbase, c->name);
124         fp = fopen(hcfname, "r");
125
126         if(!fp) {
127                 logger(LOG_ERR, "Error reading RSA public key file `%s': %s", hcfname, strerror(errno));
128                 free(hcfname);
129                 return false;
130         }
131
132         c->rsa_key = PEM_read_RSAPublicKey(fp, &c->rsa_key, NULL, NULL);
133         fclose(fp);
134
135         if(c->rsa_key) {
136                 free(hcfname);
137                 return true;
138         }
139
140         /* Try again with PEM_read_RSA_PUBKEY. */
141
142         fp = fopen(hcfname, "r");
143
144         if(!fp) {
145                 logger(LOG_ERR, "Error reading RSA public key file `%s': %s", hcfname, strerror(errno));
146                 free(hcfname);
147                 return false;
148         }
149
150         free(hcfname);
151         c->rsa_key = PEM_read_RSA_PUBKEY(fp, &c->rsa_key, NULL, NULL);
152 //      RSA_blinding_on(c->rsa_key, NULL);
153         fclose(fp);
154
155         if(c->rsa_key)
156                 return true;
157
158         logger(LOG_ERR, "No public key for %s specified!", c->name);
159
160         return false;
161 }
162
163 static bool read_rsa_private_key(void) {
164         FILE *fp;
165         char *fname, *key, *pubkey;
166
167         if(get_config_string(lookup_config(config_tree, "PrivateKey"), &key)) {
168                 myself->connection->rsa_key = RSA_new();
169 //              RSA_blinding_on(myself->connection->rsa_key, NULL);
170                 if(BN_hex2bn(&myself->connection->rsa_key->d, key) != strlen(key)) {
171                         logger(LOG_ERR, "Invalid PrivateKey for myself!");
172                         free(key);
173                         return false;
174                 }
175                 free(key);
176                 if(!get_config_string(lookup_config(config_tree, "PublicKey"), &pubkey)) {
177                         logger(LOG_ERR, "PrivateKey used but no PublicKey found!");
178                         return false;
179                 }
180                 if(BN_hex2bn(&myself->connection->rsa_key->n, pubkey) != strlen(pubkey)) {
181                         logger(LOG_ERR, "Invalid PublicKey for myself!");
182                         free(pubkey);
183                         return false;
184                 }
185                 free(pubkey);
186                 BN_hex2bn(&myself->connection->rsa_key->e, "FFFF");
187                 return true;
188         }
189
190         if(!get_config_string(lookup_config(config_tree, "PrivateKeyFile"), &fname))
191                 xasprintf(&fname, "%s/rsa_key.priv", confbase);
192
193         fp = fopen(fname, "r");
194
195         if(!fp) {
196                 logger(LOG_ERR, "Error reading RSA private key file `%s': %s",
197                            fname, strerror(errno));
198                 free(fname);
199                 return false;
200         }
201
202 #if !defined(HAVE_MINGW) && !defined(HAVE_CYGWIN)
203         struct stat s;
204
205         if(!fstat(fileno(fp), &s)) {
206                 if(s.st_mode & ~0100700)
207                         logger(LOG_WARNING, "Warning: insecure file permissions for RSA private key file `%s'!", fname);
208         } else {
209                 logger(LOG_WARNING, "Could not stat RSA private key file `%s': %s'", fname, strerror(errno));
210         }
211 #endif
212
213         myself->connection->rsa_key = PEM_read_RSAPrivateKey(fp, NULL, NULL, NULL);
214         fclose(fp);
215
216         if(!myself->connection->rsa_key) {
217                 logger(LOG_ERR, "Reading RSA private key file `%s' failed: %s",
218                            fname, strerror(errno));
219                 free(fname);
220                 return false;
221         }
222
223         free(fname);
224         return true;
225 }
226
227 /*
228   Read Subnets from all host config files
229 */
230 void load_all_subnets(void) {
231         DIR *dir;
232         struct dirent *ent;
233         char *dname;
234         char *fname;
235         avl_tree_t *config_tree;
236         config_t *cfg;
237         subnet_t *s, *s2;
238         node_t *n;
239
240         xasprintf(&dname, "%s/hosts", confbase);
241         dir = opendir(dname);
242         if(!dir) {
243                 logger(LOG_ERR, "Could not open %s: %s", dname, strerror(errno));
244                 free(dname);
245                 return;
246         }
247
248         while((ent = readdir(dir))) {
249                 if(!check_id(ent->d_name))
250                         continue;
251
252                 n = lookup_node(ent->d_name);
253                 #ifdef _DIRENT_HAVE_D_TYPE
254                 //if(ent->d_type != DT_REG)
255                 //      continue;
256                 #endif
257
258                 xasprintf(&fname, "%s/hosts/%s", confbase, ent->d_name);
259                 init_configuration(&config_tree);
260                 read_config_options(config_tree, ent->d_name);
261                 read_config_file(config_tree, fname);
262                 free(fname);
263
264                 if(!n) {
265                         n = new_node();
266                         n->name = xstrdup(ent->d_name);
267                         node_add(n);
268                 }
269
270                 for(cfg = lookup_config(config_tree, "Subnet"); cfg; cfg = lookup_config_next(config_tree, cfg)) {
271                         if(!get_config_subnet(cfg, &s))
272                                 continue;
273
274                         if((s2 = lookup_subnet(n, s))) {
275                                 s2->expires = -1;
276                         } else {
277                                 subnet_add(n, s);
278                         }
279                 }
280
281                 exit_configuration(&config_tree);
282         }
283
284         closedir(dir);
285 }
286
287 char *get_name(void) {
288         char *name = NULL;
289
290         get_config_string(lookup_config(config_tree, "Name"), &name);
291
292         if(!name)
293                 return NULL;
294
295         if(*name == '$') {
296                 char *envname = getenv(name + 1);
297                 char hostname[32] = "";
298                 if(!envname) {
299                         if(strcmp(name + 1, "HOST")) {
300                                 fprintf(stderr, "Invalid Name: environment variable %s does not exist\n", name + 1);
301                                 free(name);
302                                 return false;
303                         }
304                         if(gethostname(hostname, sizeof hostname) || !*hostname) {
305                                 fprintf(stderr, "Could not get hostname: %s\n", strerror(errno));
306                                 free(name);
307                                 return false;
308                         }
309                         hostname[31] = 0;
310                         envname = hostname;
311                 }
312                 free(name);
313                 name = xstrdup(envname);
314                 for(char *c = name; *c; c++)
315                         if(!isalnum(*c))
316                                 *c = '_';
317         }
318
319         if(!check_id(name)) {
320                 logger(LOG_ERR, "Invalid name for myself!");
321                 free(name);
322                 return false;
323         }
324
325         return name;
326 }
327
328 /*
329   Configure node_t myself and set up the local sockets (listen only)
330 */
331 static bool setup_myself(void) {
332         config_t *cfg;
333         subnet_t *subnet;
334         char *name, *hostname, *mode, *afname, *cipher, *digest, *type;
335         char *fname = NULL;
336         char *address = NULL;
337         char *proxy = NULL;
338         char *space;
339         char *envp[5] = {NULL};
340         struct addrinfo *ai, *aip, hint = {0};
341         bool choice;
342         int i, err;
343         int replaywin_int;
344         bool port_specified = false;
345
346         myself = new_node();
347         myself->connection = new_connection();
348
349         myself->hostname = xstrdup("MYSELF");
350         myself->connection->hostname = xstrdup("MYSELF");
351
352         myself->connection->options = 0;
353         myself->connection->protocol_version = PROT_CURRENT;
354
355         if(!(name = get_name())) {
356                 logger(LOG_ERR, "Name for tinc daemon required!");
357                 return false;
358         }
359
360         /* Read tinc.conf and our own host config file */
361
362         myself->name = name;
363         myself->connection->name = xstrdup(name);
364         xasprintf(&fname, "%s/hosts/%s", confbase, name);
365         read_config_options(config_tree, name);
366         read_config_file(config_tree, fname);
367         free(fname);
368
369         if(!read_rsa_private_key())
370                 return false;
371
372         if(!get_config_string(lookup_config(config_tree, "Port"), &myport))
373                 myport = xstrdup("655");
374         else
375                 port_specified = true;
376
377         /* Ensure myport is numeric */
378
379         if(!atoi(myport)) {
380                 struct addrinfo *ai = str2addrinfo("localhost", myport, SOCK_DGRAM);
381                 sockaddr_t sa;
382                 if(!ai || !ai->ai_addr)
383                         return false;
384                 free(myport);
385                 memcpy(&sa, ai->ai_addr, ai->ai_addrlen);
386                 sockaddr2str(&sa, NULL, &myport);
387         }
388
389         if(get_config_string(lookup_config(config_tree, "Proxy"), &proxy)) {
390                 if((space = strchr(proxy, ' ')))
391                         *space++ = 0;
392
393                 if(!strcasecmp(proxy, "none")) {
394                         proxytype = PROXY_NONE;
395                 } else if(!strcasecmp(proxy, "socks4")) {
396                         proxytype = PROXY_SOCKS4;
397                 } else if(!strcasecmp(proxy, "socks4a")) {
398                         proxytype = PROXY_SOCKS4A;
399                 } else if(!strcasecmp(proxy, "socks5")) {
400                         proxytype = PROXY_SOCKS5;
401                 } else if(!strcasecmp(proxy, "http")) {
402                         proxytype = PROXY_HTTP;
403                 } else if(!strcasecmp(proxy, "exec")) {
404                         proxytype = PROXY_EXEC;
405                 } else {
406                         logger(LOG_ERR, "Unknown proxy type %s!", proxy);
407                         return false;
408                 }
409
410                 switch(proxytype) {
411                         case PROXY_NONE:
412                         default:
413                                 break;
414
415                         case PROXY_EXEC:
416                                 if(!space || !*space) {
417                                         logger(LOG_ERR, "Argument expected for proxy type exec!");
418                                         return false;
419                                 }
420                                 proxyhost =  xstrdup(space);
421                                 break;
422
423                         case PROXY_SOCKS4:
424                         case PROXY_SOCKS4A:
425                         case PROXY_SOCKS5:
426                         case PROXY_HTTP:
427                                 proxyhost = space;
428                                 if(space && (space = strchr(space, ' ')))
429                                         *space++ = 0, proxyport = space;
430                                 if(space && (space = strchr(space, ' ')))
431                                         *space++ = 0, proxyuser = space;
432                                 if(space && (space = strchr(space, ' ')))
433                                         *space++ = 0, proxypass = space;
434                                 if(!proxyhost || !*proxyhost || !proxyport || !*proxyport) {
435                                         logger(LOG_ERR, "Host and port argument expected for proxy!");
436                                         return false;
437                                 }
438                                 proxyhost = xstrdup(proxyhost);
439                                 proxyport = xstrdup(proxyport);
440                                 if(proxyuser && *proxyuser)
441                                         proxyuser = xstrdup(proxyuser);
442                                 if(proxypass && *proxypass)
443                                         proxypass = xstrdup(proxypass);
444                                 break;
445                 }
446
447                 free(proxy);
448         }
449
450         /* Read in all the subnets specified in the host configuration file */
451
452         cfg = lookup_config(config_tree, "Subnet");
453
454         while(cfg) {
455                 if(!get_config_subnet(cfg, &subnet))
456                         return false;
457
458                 subnet_add(myself, subnet);
459
460                 cfg = lookup_config_next(config_tree, cfg);
461         }
462
463         /* Check some options */
464
465         if(get_config_bool(lookup_config(config_tree, "IndirectData"), &choice) && choice)
466                 myself->options |= OPTION_INDIRECT;
467
468         if(get_config_bool(lookup_config(config_tree, "TCPOnly"), &choice) && choice)
469                 myself->options |= OPTION_TCPONLY;
470
471         if(myself->options & OPTION_TCPONLY)
472                 myself->options |= OPTION_INDIRECT;
473
474         get_config_bool(lookup_config(config_tree, "DirectOnly"), &directonly);
475         get_config_bool(lookup_config(config_tree, "StrictSubnets"), &strictsubnets);
476         get_config_bool(lookup_config(config_tree, "TunnelServer"), &tunnelserver);
477         get_config_bool(lookup_config(config_tree, "LocalDiscovery"), &localdiscovery);
478         strictsubnets |= tunnelserver;
479
480         if(get_config_string(lookup_config(config_tree, "Mode"), &mode)) {
481                 if(!strcasecmp(mode, "router"))
482                         routing_mode = RMODE_ROUTER;
483                 else if(!strcasecmp(mode, "switch"))
484                         routing_mode = RMODE_SWITCH;
485                 else if(!strcasecmp(mode, "hub"))
486                         routing_mode = RMODE_HUB;
487                 else {
488                         logger(LOG_ERR, "Invalid routing mode!");
489                         return false;
490                 }
491                 free(mode);
492         }
493
494         if(get_config_string(lookup_config(config_tree, "Forwarding"), &mode)) {
495                 if(!strcasecmp(mode, "off"))
496                         forwarding_mode = FMODE_OFF;
497                 else if(!strcasecmp(mode, "internal"))
498                         forwarding_mode = FMODE_INTERNAL;
499                 else if(!strcasecmp(mode, "kernel"))
500                         forwarding_mode = FMODE_KERNEL;
501                 else {
502                         logger(LOG_ERR, "Invalid forwarding mode!");
503                         return false;
504                 }
505                 free(mode);
506         }
507
508         choice = true;
509         get_config_bool(lookup_config(config_tree, "PMTUDiscovery"), &choice);
510         if(choice)
511                 myself->options |= OPTION_PMTU_DISCOVERY;
512
513         choice = true;
514         get_config_bool(lookup_config(config_tree, "ClampMSS"), &choice);
515         if(choice)
516                 myself->options |= OPTION_CLAMP_MSS;
517
518         get_config_bool(lookup_config(config_tree, "PriorityInheritance"), &priorityinheritance);
519         get_config_bool(lookup_config(config_tree, "DecrementTTL"), &decrement_ttl);
520         if(get_config_string(lookup_config(config_tree, "Broadcast"), &mode)) {
521                 if(!strcasecmp(mode, "no"))
522                         broadcast_mode = BMODE_NONE;
523                 else if(!strcasecmp(mode, "yes") || !strcasecmp(mode, "mst"))
524                         broadcast_mode = BMODE_MST;
525                 else if(!strcasecmp(mode, "direct"))
526                         broadcast_mode = BMODE_DIRECT;
527                 else {
528                         logger(LOG_ERR, "Invalid broadcast mode!");
529                         return false;
530                 }
531                 free(mode);
532         }
533
534 #if !defined(SOL_IP) || !defined(IP_TOS)
535         if(priorityinheritance)
536                 logger(LOG_WARNING, "%s not supported on this platform", "PriorityInheritance");
537 #endif
538
539         if(!get_config_int(lookup_config(config_tree, "MACExpire"), &macexpire))
540                 macexpire = 600;
541
542         if(get_config_int(lookup_config(config_tree, "MaxTimeout"), &maxtimeout)) {
543                 if(maxtimeout <= 0) {
544                         logger(LOG_ERR, "Bogus maximum timeout!");
545                         return false;
546                 }
547         } else
548                 maxtimeout = 900;
549
550         if(get_config_int(lookup_config(config_tree, "UDPRcvBuf"), &udp_rcvbuf)) {
551                 if(udp_rcvbuf <= 0) {
552                         logger(LOG_ERR, "UDPRcvBuf cannot be negative!");
553                         return false;
554                 }
555         }
556
557         if(get_config_int(lookup_config(config_tree, "UDPSndBuf"), &udp_sndbuf)) {
558                 if(udp_sndbuf <= 0) {
559                         logger(LOG_ERR, "UDPSndBuf cannot be negative!");
560                         return false;
561                 }
562         }
563
564         if(get_config_int(lookup_config(config_tree, "ReplayWindow"), &replaywin_int)) {
565                 if(replaywin_int < 0) {
566                         logger(LOG_ERR, "ReplayWindow cannot be negative!");
567                         return false;
568                 }
569                 replaywin = (unsigned)replaywin_int;
570         }
571
572         if(get_config_string(lookup_config(config_tree, "AddressFamily"), &afname)) {
573                 if(!strcasecmp(afname, "IPv4"))
574                         addressfamily = AF_INET;
575                 else if(!strcasecmp(afname, "IPv6"))
576                         addressfamily = AF_INET6;
577                 else if(!strcasecmp(afname, "any"))
578                         addressfamily = AF_UNSPEC;
579                 else {
580                         logger(LOG_ERR, "Invalid address family!");
581                         free(afname);
582                         return false;
583                 }
584                 free(afname);
585         }
586
587         get_config_bool(lookup_config(config_tree, "Hostnames"), &hostnames);
588
589         /* Generate packet encryption key */
590
591         if(get_config_string(lookup_config(config_tree, "Cipher"), &cipher)) {
592                 if(!strcasecmp(cipher, "none")) {
593                         myself->incipher = NULL;
594                 } else {
595                         myself->incipher = EVP_get_cipherbyname(cipher);
596
597                         if(!myself->incipher) {
598                                 logger(LOG_ERR, "Unrecognized cipher type!");
599                                 free(cipher);
600                                 return false;
601                         }
602                 }
603                 free(cipher);
604         } else
605                 myself->incipher = EVP_bf_cbc();
606
607         if(myself->incipher)
608                 myself->inkeylength = myself->incipher->key_len + myself->incipher->iv_len;
609         else
610                 myself->inkeylength = 1;
611
612         myself->connection->outcipher = EVP_bf_ofb();
613
614         if(!get_config_int(lookup_config(config_tree, "KeyExpire"), &keylifetime))
615                 keylifetime = 3600;
616
617         keyexpires = now + keylifetime;
618         
619         /* Check if we want to use message authentication codes... */
620
621         if(get_config_string(lookup_config(config_tree, "Digest"), &digest)) {
622                 if(!strcasecmp(digest, "none")) {
623                         myself->indigest = NULL;
624                 } else {
625                         myself->indigest = EVP_get_digestbyname(digest);
626
627                         if(!myself->indigest) {
628                                 logger(LOG_ERR, "Unrecognized digest type!");
629                                 free(digest);
630                                 return false;
631                         }
632                 }
633
634                 free(digest);
635         } else
636                 myself->indigest = EVP_sha1();
637
638         myself->connection->outdigest = EVP_sha1();
639
640         if(get_config_int(lookup_config(config_tree, "MACLength"), &myself->inmaclength)) {
641                 if(myself->indigest) {
642                         if(myself->inmaclength > myself->indigest->md_size) {
643                                 logger(LOG_ERR, "MAC length exceeds size of digest!");
644                                 return false;
645                         } else if(myself->inmaclength < 0) {
646                                 logger(LOG_ERR, "Bogus MAC length!");
647                                 return false;
648                         }
649                 }
650         } else
651                 myself->inmaclength = 4;
652
653         myself->connection->outmaclength = 0;
654
655         /* Compression */
656
657         if(get_config_int(lookup_config(config_tree, "Compression"), &myself->incompression)) {
658                 if(myself->incompression < 0 || myself->incompression > 11) {
659                         logger(LOG_ERR, "Bogus compression level!");
660                         return false;
661                 }
662         } else
663                 myself->incompression = 0;
664
665         myself->connection->outcompression = 0;
666
667         /* Done */
668
669         myself->nexthop = myself;
670         myself->via = myself;
671         myself->status.reachable = true;
672         node_add(myself);
673
674         graph();
675
676         if(strictsubnets)
677                 load_all_subnets();
678
679         /* Open device */
680
681         devops = os_devops;
682
683         if(get_config_string(lookup_config(config_tree, "DeviceType"), &type)) {
684                 if(!strcasecmp(type, "dummy"))
685                         devops = dummy_devops;
686                 else if(!strcasecmp(type, "raw_socket"))
687                         devops = raw_socket_devops;
688                 else if(!strcasecmp(type, "multicast"))
689                         devops = multicast_devops;
690 #ifdef ENABLE_UML
691                 else if(!strcasecmp(type, "uml"))
692                         devops = uml_devops;
693 #endif
694 #ifdef ENABLE_VDE
695                 else if(!strcasecmp(type, "vde"))
696                         devops = vde_devops;
697 #endif
698                 free(type);
699         }
700
701         if(!devops.setup())
702                 return false;
703
704         /* Run tinc-up script to further initialize the tap interface */
705         xasprintf(&envp[0], "NETNAME=%s", netname ? : "");
706         xasprintf(&envp[1], "DEVICE=%s", device ? : "");
707         xasprintf(&envp[2], "INTERFACE=%s", iface ? : "");
708         xasprintf(&envp[3], "NAME=%s", myself->name);
709
710         execute_script("tinc-up", envp);
711
712         for(i = 0; i < 4; i++)
713                 free(envp[i]);
714
715         /* Run subnet-up scripts for our own subnets */
716
717         subnet_update(myself, NULL, true);
718
719         /* Open sockets */
720
721         if(!do_detach && getenv("LISTEN_FDS")) {
722                 sockaddr_t sa;
723                 socklen_t salen;
724
725                 listen_sockets = atoi(getenv("LISTEN_FDS"));
726 #ifdef HAVE_UNSETENV
727                 unsetenv("LISTEN_FDS");
728 #endif
729
730                 if(listen_sockets > MAXSOCKETS) {
731                         logger(LOG_ERR, "Too many listening sockets");
732                         return false;
733                 }
734
735                 for(i = 0; i < listen_sockets; i++) {
736                         salen = sizeof sa;
737                         if(getsockname(i + 3, &sa.sa, &salen) < 0) {
738                                 logger(LOG_ERR, "Could not get address of listen fd %d: %s", i + 3, sockstrerror(errno));
739                                 return false;
740                         }
741
742                         listen_socket[i].tcp = i + 3;
743
744 #ifdef FD_CLOEXEC
745                         fcntl(i + 3, F_SETFD, FD_CLOEXEC);
746 #endif
747
748                         listen_socket[i].udp = setup_vpn_in_socket(&sa);
749                         if(listen_socket[i].udp < 0)
750                                 return false;
751
752                         ifdebug(CONNECTIONS) {
753                                 hostname = sockaddr2hostname(&sa);
754                                 logger(LOG_NOTICE, "Listening on %s", hostname);
755                                 free(hostname);
756                         }
757
758                         memcpy(&listen_socket[i].sa, &sa, salen);
759                 }
760         } else {
761                 listen_sockets = 0;
762                 cfg = lookup_config(config_tree, "BindToAddress");
763
764                 do {
765                         get_config_string(cfg, &address);
766                         if(cfg)
767                                 cfg = lookup_config_next(config_tree, cfg);
768
769                         char *port = myport;
770
771                         if(address) {
772                                 char *space = strchr(address, ' ');
773                                 if(space) {
774                                         *space++ = 0;
775                                         port = space;
776                                 }
777
778                                 if(!strcmp(address, "*"))
779                                         *address = 0;
780                         }
781
782                         hint.ai_family = addressfamily;
783                         hint.ai_socktype = SOCK_STREAM;
784                         hint.ai_protocol = IPPROTO_TCP;
785                         hint.ai_flags = AI_PASSIVE;
786
787                         err = getaddrinfo(address && *address ? address : NULL, port, &hint, &ai);
788                         free(address);
789
790                         if(err || !ai) {
791                                 logger(LOG_ERR, "System call `%s' failed: %s", "getaddrinfo",
792                                            gai_strerror(err));
793                                 return false;
794                         }
795
796                         for(aip = ai; aip; aip = aip->ai_next) {
797                                 if(listen_sockets >= MAXSOCKETS) {
798                                         logger(LOG_ERR, "Too many listening sockets");
799                                         return false;
800                                 }
801
802                                 listen_socket[listen_sockets].tcp =
803                                         setup_listen_socket((sockaddr_t *) aip->ai_addr);
804
805                                 if(listen_socket[listen_sockets].tcp < 0)
806                                         continue;
807
808                                 listen_socket[listen_sockets].udp =
809                                         setup_vpn_in_socket((sockaddr_t *) aip->ai_addr);
810
811                                 if(listen_socket[listen_sockets].udp < 0)
812                                         continue;
813
814                                 ifdebug(CONNECTIONS) {
815                                         hostname = sockaddr2hostname((sockaddr_t *) aip->ai_addr);
816                                         logger(LOG_NOTICE, "Listening on %s", hostname);
817                                         free(hostname);
818                                 }
819
820                                 memcpy(&listen_socket[listen_sockets].sa, aip->ai_addr, aip->ai_addrlen);
821                                 listen_sockets++;
822                         }
823
824                         freeaddrinfo(ai);
825                 } while(cfg);
826         }
827
828         if(!listen_sockets) {
829                 logger(LOG_ERR, "Unable to create any listening socket!");
830                 return false;
831         }
832
833         /* If no Port option was specified, set myport to the port used by the first listening socket. */
834
835         if(!port_specified) {
836                 sockaddr_t sa;
837                 socklen_t salen = sizeof sa;
838                 if(!getsockname(listen_socket[0].udp, &sa.sa, &salen)) {
839                         free(myport);
840                         sockaddr2str(&sa, NULL, &myport);
841                         if(!myport)
842                                 myport = xstrdup("655");
843                 }
844         }
845
846         /* Done. */
847
848         logger(LOG_NOTICE, "Ready");
849         return true;
850 }
851
852 /*
853   initialize network
854 */
855 bool setup_network(void) {
856         now = time(NULL);
857
858         init_events();
859         init_connections();
860         init_subnets();
861         init_nodes();
862         init_edges();
863         init_requests();
864
865         if(get_config_int(lookup_config(config_tree, "PingInterval"), &pinginterval)) {
866                 if(pinginterval < 1) {
867                         pinginterval = 86400;
868                 }
869         } else
870                 pinginterval = 60;
871
872         if(!get_config_int(lookup_config(config_tree, "PingTimeout"), &pingtimeout))
873                 pingtimeout = 5;
874         if(pingtimeout < 1 || pingtimeout > pinginterval)
875                 pingtimeout = pinginterval;
876
877         if(!get_config_int(lookup_config(config_tree, "MaxOutputBufferSize"), &maxoutbufsize))
878                 maxoutbufsize = 10 * MTU;
879
880         if(!setup_myself())
881                 return false;
882
883         return true;
884 }
885
886 /*
887   close all open network connections
888 */
889 void close_network_connections(void) {
890         avl_node_t *node, *next;
891         connection_t *c;
892         char *envp[5] = {NULL};
893         int i;
894
895         for(node = connection_tree->head; node; node = next) {
896                 next = node->next;
897                 c = node->data;
898                 c->outgoing = NULL;
899                 terminate_connection(c, false);
900         }
901
902         for(list_node_t *node = outgoing_list->head; node; node = node->next) {
903                 outgoing_t *outgoing = node->data;
904
905                 if(outgoing->event)
906                         event_del(outgoing->event);
907         }
908
909         list_delete_list(outgoing_list);
910
911         if(myself && myself->connection) {
912                 subnet_update(myself, NULL, false);
913                 terminate_connection(myself->connection, false);
914                 free_connection(myself->connection);
915         }
916
917         for(i = 0; i < listen_sockets; i++) {
918                 close(listen_socket[i].tcp);
919                 close(listen_socket[i].udp);
920         }
921
922         xasprintf(&envp[0], "NETNAME=%s", netname ? : "");
923         xasprintf(&envp[1], "DEVICE=%s", device ? : "");
924         xasprintf(&envp[2], "INTERFACE=%s", iface ? : "");
925         xasprintf(&envp[3], "NAME=%s", myself->name);
926
927         exit_requests();
928         exit_edges();
929         exit_subnets();
930         exit_nodes();
931         exit_connections();
932         exit_events();
933
934         execute_script("tinc-down", envp);
935
936         if(myport) free(myport);
937
938         for(i = 0; i < 4; i++)
939                 free(envp[i]);
940
941         devops.close();
942
943         return;
944 }