2 protocol_auth.c -- handle the meta-protocol, authentication
3 Copyright (C) 1999-2005 Ivo Timmermans,
4 2000-2022 Guus Sliepen <guus@tinc-vpn.org>
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2 of the License, or
9 (at your option) any later version.
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License along
17 with this program; if not, write to the Free Software Foundation, Inc.,
18 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
24 #include "connection.h"
26 #include "control_common.h"
46 #include "ed25519/sha512.h"
49 int invitation_lifetime;
50 ecdsa_t *invitation_key = NULL;
52 static bool send_proxyrequest(connection_t *c) {
58 sockaddr2str(&c->address, &host, &port);
59 send_request(c, "CONNECT %s:%s HTTP/1.1\r\n\r", host, port);
66 if(c->address.sa.sa_family != AF_INET) {
67 logger(DEBUG_ALWAYS, LOG_ERR, "Cannot connect to an IPv6 host through a SOCKS 4 proxy!");
71 uint8_t s4req[9 + (proxyuser ? strlen(proxyuser) : 0)];
74 memcpy(s4req + 2, &c->address.in.sin_port, 2);
75 memcpy(s4req + 4, &c->address.in.sin_addr, 4);
78 memcpy(s4req + 8, proxyuser, strlen(proxyuser));
81 s4req[sizeof(s4req) - 1] = 0;
83 return send_meta(c, s4req, sizeof(s4req));
87 size_t len = 3 + 6 + (c->address.sa.sa_family == AF_INET ? 4 : 16);
91 len += 3 + strlen(proxyuser) + strlen(proxypass);
102 s5req[i++] = strlen(proxyuser);
103 memcpy(s5req + i, proxyuser, strlen(proxyuser));
104 i += strlen(proxyuser);
105 s5req[i++] = strlen(proxypass);
106 memcpy(s5req + i, proxypass, strlen(proxypass));
107 i += strlen(proxypass);
117 if(c->address.sa.sa_family == AF_INET) {
119 memcpy(s5req + i, &c->address.in.sin_addr, 4);
121 memcpy(s5req + i, &c->address.in.sin_port, 2);
124 } else if(c->address.sa.sa_family == AF_INET6) {
126 memcpy(s5req + i, &c->address.in6.sin6_addr, 16);
128 memcpy(s5req + i, &c->address.in6.sin6_port, 2);
132 logger(DEBUG_ALWAYS, LOG_ERR, "Address family %x not supported for SOCKS 5 proxies!", c->address.sa.sa_family);
140 return send_meta(c, s5req, sizeof(s5req));
144 logger(DEBUG_ALWAYS, LOG_ERR, "Proxy type not implemented yet");
151 logger(DEBUG_ALWAYS, LOG_ERR, "Unknown proxy type");
156 bool send_id(connection_t *c) {
157 gettimeofday(&c->start, NULL);
162 if(c->outgoing && !read_ecdsa_public_key(&c->ecdsa, &c->config_tree, c->name)) {
165 minor = myself->connection->protocol_minor;
169 if(proxytype && c->outgoing)
170 if(!send_proxyrequest(c)) {
174 return send_request(c, "%d %s %d.%d", ID, myself->connection->name, myself->connection->protocol_major, minor);
177 static bool finalize_invitation(connection_t *c, const char *data, uint16_t len) {
180 if(strchr(data, '\n')) {
181 logger(DEBUG_ALWAYS, LOG_ERR, "Received invalid key from invited node %s (%s)!\n", c->name, c->hostname);
185 // Create a new host config file
186 char filename[PATH_MAX];
187 snprintf(filename, sizeof(filename), "%s" SLASH "hosts" SLASH "%s", confbase, c->name);
189 if(!access(filename, F_OK)) {
190 logger(DEBUG_ALWAYS, LOG_ERR, "Host config file for %s (%s) already exists!\n", c->name, c->hostname);
194 FILE *f = fopen(filename, "w");
197 logger(DEBUG_ALWAYS, LOG_ERR, "Error trying to create %s: %s\n", filename, strerror(errno));
201 fprintf(f, "Ed25519PublicKey = %s\n", data);
204 logger(DEBUG_CONNECTIONS, LOG_INFO, "Key successfully received from %s (%s)", c->name, c->hostname);
206 // Call invitation-accepted script
208 char *address, *port;
210 environment_init(&env);
211 environment_add(&env, "NODE=%s", c->name);
212 sockaddr2str(&c->address, &address, &port);
213 environment_add(&env, "REMOTEADDRESS=%s", address);
214 environment_add(&env, "NAME=%s", myself->name);
219 execute_script("invitation-accepted", &env);
221 environment_exit(&env);
223 sptps_send_record(&c->sptps, 2, data, 0);
227 static bool receive_invitation_sptps(void *handle, uint8_t type, const void *data, uint16_t len) {
228 connection_t *c = handle;
234 if(type == 1 && c->status.invitation_used) {
235 return finalize_invitation(c, data, len);
238 if(type != 0 || len != 18 || c->status.invitation_used) {
242 // Recover the filename from the cookie and the key
243 char *fingerprint = ecdsa_get_base64_public_key(invitation_key);
244 char hashbuf[18 + strlen(fingerprint)];
246 memcpy(hashbuf, data, 18);
247 memcpy(hashbuf + 18, fingerprint, sizeof(hashbuf) - 18);
248 sha512(hashbuf, sizeof(hashbuf), cookie);
249 b64encode_tinc_urlsafe(cookie, cookie, 18);
252 char filename[PATH_MAX], usedname[PATH_MAX];
253 snprintf(filename, sizeof(filename), "%s" SLASH "invitations" SLASH "%s", confbase, cookie);
254 snprintf(usedname, sizeof(usedname), "%s" SLASH "invitations" SLASH "%s.used", confbase, cookie);
256 // Atomically rename the invitation file
257 if(rename(filename, usedname)) {
258 if(errno == ENOENT) {
259 logger(DEBUG_ALWAYS, LOG_ERR, "Peer %s tried to use non-existing invitation %s\n", c->hostname, cookie);
261 logger(DEBUG_ALWAYS, LOG_ERR, "Error trying to rename invitation %s\n", cookie);
267 // Check the timestamp of the invitation
270 if(stat(usedname, &st)) {
271 logger(DEBUG_ALWAYS, LOG_ERR, "Could not stat %s", usedname);
275 if(st.st_mtime + invitation_lifetime < now.tv_sec) {
276 logger(DEBUG_ALWAYS, LOG_ERR, "Peer %s tried to use expired invitation %s", c->hostname, cookie);
280 // Open the renamed file
281 FILE *f = fopen(usedname, "r");
284 logger(DEBUG_ALWAYS, LOG_ERR, "Error trying to open invitation %s\n", cookie);
288 // Read the new node's Name from the file
291 if(!fgets(buf, sizeof(buf), f)) {
292 logger(DEBUG_ALWAYS, LOG_ERR, "Could not read invitation file %s\n", cookie);
296 size_t buflen = strlen(buf);
298 // Strip whitespace at the end
299 while(buflen && strchr(" \t\r\n", buf[buflen - 1])) {
303 // Split the first line into variable and value
304 len = strcspn(buf, " \t=");
305 char *name = buf + len;
306 name += strspn(name, " \t");
310 name += strspn(name, " \t");
315 // Check that it is a valid Name
316 if(!*buf || !*name || strcasecmp(buf, "Name") || !check_id(name) || !strcmp(name, myself->name)) {
317 logger(DEBUG_ALWAYS, LOG_ERR, "Invalid invitation file %s\n", cookie);
323 c->name = xstrdup(name);
325 // Send the node the contents of the invitation file
329 while((result = fread(buf, 1, sizeof(buf), f))) {
330 sptps_send_record(&c->sptps, 0, buf, result);
333 sptps_send_record(&c->sptps, 1, buf, 0);
337 c->status.invitation_used = true;
339 logger(DEBUG_CONNECTIONS, LOG_INFO, "Invitation %s successfully sent to %s (%s)", cookie, c->name, c->hostname);
343 bool id_h(connection_t *c, const char *request) {
344 char name[MAX_STRING_SIZE];
346 if(sscanf(request, "%*d " MAX_STRING " %2d.%3d", name, &c->protocol_major, &c->protocol_minor) < 2) {
347 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "ID", c->name,
352 /* Check if this is a control connection */
354 if(name[0] == '^' && !strcmp(name + 1, controlcookie)) {
355 c->status.control = true;
356 c->allow_request = CONTROL;
357 c->last_ping_time = now.tv_sec + 3600;
360 c->name = xstrdup("<control>");
366 return send_request(c, "%d %d %d", ACK, TINC_CTL_VERSION_CURRENT, getpid());
370 if(!invitation_key) {
371 logger(DEBUG_ALWAYS, LOG_ERR, "Got invitation from %s but we don't have an invitation key", c->hostname);
375 c->ecdsa = ecdsa_set_base64_public_key(name + 1);
378 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad invitation from %s", c->hostname);
382 c->status.invitation = true;
383 char *mykey = ecdsa_get_base64_public_key(invitation_key);
393 if(!send_request(c, "%d %s", ACK, mykey)) {
399 c->protocol_minor = 2;
401 return sptps_start(&c->sptps, c, false, false, invitation_key, c->ecdsa, "tinc invitation", 15, send_meta_sptps, receive_invitation_sptps);
404 /* Check if identity is a valid name */
406 if(!check_id(name) || !strcmp(name, myself->name)) {
407 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s): %s", "ID", c->name,
408 c->hostname, "invalid name");
412 /* If this is an outgoing connection, make sure we are connected to the right host */
415 if(strcmp(c->name, name)) {
416 logger(DEBUG_ALWAYS, LOG_ERR, "Peer %s is %s instead of %s", c->hostname, name,
422 c->name = xstrdup(name);
425 /* Check if version matches */
427 if(c->protocol_major != myself->connection->protocol_major) {
428 logger(DEBUG_ALWAYS, LOG_ERR, "Peer %s (%s) uses incompatible version %d.%d",
429 c->name, c->hostname, c->protocol_major, c->protocol_minor);
433 if(bypass_security) {
434 if(!c->config_tree) {
435 c->config_tree = create_configuration();
438 c->allow_request = ACK;
448 c->protocol_minor = 0;
451 if(!c->config_tree) {
452 c->config_tree = create_configuration();
454 if(!read_host_config(c->config_tree, c->name, false)) {
455 logger(DEBUG_ALWAYS, LOG_ERR, "Peer %s had unknown identity (%s)", c->hostname, c->name);
460 read_ecdsa_public_key(&c->ecdsa, &c->config_tree, c->name);
463 /* Ignore failures if no key known yet */
466 if(c->protocol_minor && !ecdsa_active(c->ecdsa)) {
467 c->protocol_minor = 1;
470 /* Forbid version rollback for nodes whose Ed25519 key we know */
472 if(ecdsa_active(c->ecdsa) && c->protocol_minor < 1) {
473 logger(DEBUG_ALWAYS, LOG_ERR, "Peer %s (%s) tries to roll back protocol version to %d.%d",
474 c->name, c->hostname, c->protocol_major, c->protocol_minor);
478 c->allow_request = METAKEY;
484 if(c->protocol_minor >= 2) {
485 c->allow_request = ACK;
486 char label[25 + strlen(myself->name) + strlen(c->name)];
489 snprintf(label, sizeof(label), "tinc TCP key expansion %s %s", myself->name, c->name);
491 snprintf(label, sizeof(label), "tinc TCP key expansion %s %s", c->name, myself->name);
494 return sptps_start(&c->sptps, c, c->outgoing, false, myself->connection->ecdsa, c->ecdsa, label, sizeof(label), send_meta_sptps, receive_meta_sptps);
496 return send_metakey(c);
500 #ifndef DISABLE_LEGACY
501 bool send_metakey(connection_t *c) {
502 if(!myself->connection->rsa) {
503 logger(DEBUG_CONNECTIONS, LOG_ERR, "Peer %s (%s) uses legacy protocol which we don't support", c->name, c->hostname);
507 if(!read_rsa_public_key(&c->rsa, c->config_tree, c->name)) {
511 /* We need to use a stream mode for the meta protocol. Use AES for this,
512 but try to match the key size with the one from the cipher selected
516 size_t keylen = cipher_keylength(myself->incipher);
517 const char *cipher_name;
520 cipher_name = "aes-128-cfb";
521 } else if(keylen <= 24) {
522 cipher_name = "aes-192-cfb";
524 cipher_name = "aes-256-cfb";
527 if(!cipher_open_by_name(&c->outcipher, cipher_name)) {
531 c->outbudget = cipher_budget(&c->outcipher);
533 if(!digest_open_by_name(&c->outdigest, "sha256", DIGEST_ALGO_SIZE)) {
534 cipher_close(&c->outcipher);
538 const size_t len = rsa_size(c->rsa);
541 char hexkey[2 * len + 1];
543 /* Create a random key */
547 /* The message we send must be smaller than the modulus of the RSA key.
548 By definition, for a key of k bits, the following formula holds:
550 2^(k-1) <= modulus < 2^(k)
552 Where ^ means "to the power of", not "xor".
553 This means that to be sure, we must choose our message < 2^(k-1).
554 This can be done by setting the most significant bit to zero.
559 if(!cipher_set_key_from_rsa(&c->outcipher, key, len, true)) {
563 if(debug_level >= DEBUG_SCARY_THINGS) {
564 bin2hex(key, hexkey, len);
565 logger(DEBUG_SCARY_THINGS, LOG_DEBUG, "Generated random meta key (unencrypted): %s", hexkey);
568 /* Encrypt the random data
570 We do not use one of the PKCS padding schemes here.
571 This is allowed, because we encrypt a totally random string
572 with a length equal to that of the modulus of the RSA key.
575 if(!rsa_public_encrypt(c->rsa, key, len, enckey)) {
576 logger(DEBUG_ALWAYS, LOG_ERR, "Error during encryption of meta key for %s (%s)", c->name, c->hostname);
580 /* Convert the encrypted random data to a hexadecimal formatted string */
582 bin2hex(enckey, hexkey, len);
584 /* Send the meta key */
586 bool result = send_request(c, "%d %d %d %d %d %s", METAKEY,
587 cipher_get_nid(&c->outcipher),
588 digest_get_nid(&c->outdigest), c->outmaclength,
589 c->outcompression, hexkey);
591 c->status.encryptout = true;
595 bool metakey_h(connection_t *c, const char *request) {
596 if(!myself->connection->rsa) {
600 char hexkey[MAX_STRING_SIZE];
601 int cipher, digest, maclength, compression;
602 const size_t len = rsa_size(myself->connection->rsa);
606 if(sscanf(request, "%*d %d %d %d %d " MAX_STRING, &cipher, &digest, &maclength, &compression, hexkey) != 5) {
607 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "METAKEY", c->name, c->hostname);
611 /* Convert the challenge from hexadecimal back to binary */
613 size_t inlen = hex2bin(hexkey, enckey, sizeof(enckey));
615 /* Check if the length of the meta key is all right */
618 logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong keylength");
622 /* Decrypt the meta key */
624 if(!rsa_private_decrypt(myself->connection->rsa, enckey, len, key)) {
625 logger(DEBUG_ALWAYS, LOG_ERR, "Error during decryption of meta key for %s (%s)", c->name, c->hostname);
629 if(debug_level >= DEBUG_SCARY_THINGS) {
630 bin2hex(key, hexkey, len);
631 logger(DEBUG_SCARY_THINGS, LOG_DEBUG, "Received random meta key (unencrypted): %s", hexkey);
634 /* Check and lookup cipher and digest algorithms */
637 if(!cipher_open_by_nid(&c->incipher, cipher) || !cipher_set_key_from_rsa(&c->incipher, key, len, false)) {
638 logger(DEBUG_ALWAYS, LOG_ERR, "Error during initialisation of cipher from %s (%s)", c->name, c->hostname);
642 logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "null cipher");
646 c->inbudget = cipher_budget(&c->incipher);
649 if(!digest_open_by_nid(&c->indigest, digest, DIGEST_ALGO_SIZE)) {
650 logger(DEBUG_ALWAYS, LOG_ERR, "Error during initialisation of digest from %s (%s)", c->name, c->hostname);
654 logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "null digest");
658 c->status.decryptin = true;
660 c->allow_request = CHALLENGE;
662 return send_challenge(c);
665 bool send_challenge(connection_t *c) {
666 const size_t len = rsa_size(c->rsa);
667 char buffer[len * 2 + 1];
669 c->hischallenge = xrealloc(c->hischallenge, len);
671 /* Copy random data to the buffer */
673 randomize(c->hischallenge, len);
677 bin2hex(c->hischallenge, buffer, len);
679 /* Send the challenge */
681 return send_request(c, "%d %s", CHALLENGE, buffer);
684 bool challenge_h(connection_t *c, const char *request) {
685 if(!myself->connection->rsa) {
689 char buffer[MAX_STRING_SIZE];
690 const size_t len = rsa_size(myself->connection->rsa);
692 if(sscanf(request, "%*d " MAX_STRING, buffer) != 1) {
693 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "CHALLENGE", c->name, c->hostname);
697 /* Check if the length of the challenge is all right */
699 if(strlen(buffer) != (size_t)len * 2) {
700 logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong challenge length");
704 c->mychallenge = xrealloc(c->mychallenge, len);
706 /* Convert the challenge from hexadecimal back to binary */
708 hex2bin(buffer, c->mychallenge, len);
710 /* The rest is done by send_chal_reply() */
712 c->allow_request = CHAL_REPLY;
715 return send_chal_reply(c);
721 bool send_chal_reply(connection_t *c) {
722 const size_t len = rsa_size(myself->connection->rsa);
723 size_t digestlen = digest_length(&c->indigest);
724 char digest[digestlen * 2 + 1];
726 /* Calculate the hash from the challenge we received */
728 if(!digest_create(&c->indigest, c->mychallenge, len, digest)) {
732 free(c->mychallenge);
733 c->mychallenge = NULL;
735 /* Convert the hash to a hexadecimal formatted string */
737 bin2hex(digest, digest, digestlen);
741 return send_request(c, "%d %s", CHAL_REPLY, digest);
744 bool chal_reply_h(connection_t *c, const char *request) {
745 char hishash[MAX_STRING_SIZE];
747 if(sscanf(request, "%*d " MAX_STRING, hishash) != 1) {
748 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "CHAL_REPLY", c->name,
753 /* Convert the hash to binary format */
755 size_t inlen = hex2bin(hishash, hishash, sizeof(hishash));
757 /* Check if the length of the hash is all right */
759 if(inlen != digest_length(&c->outdigest)) {
760 logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong challenge reply length");
765 /* Verify the hash */
767 if(!digest_verify(&c->outdigest, c->hischallenge, rsa_size(c->rsa), hishash)) {
768 logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong challenge reply");
772 /* Identity has now been positively verified.
773 Send an acknowledgement with the rest of the information needed.
776 free(c->hischallenge);
777 c->hischallenge = NULL;
778 c->allow_request = ACK;
787 static bool send_upgrade(connection_t *c) {
788 /* Special case when protocol_minor is 1: the other end is Ed25519 capable,
789 * but doesn't know our key yet. So send it now. */
791 char *pubkey = ecdsa_get_base64_public_key(myself->connection->ecdsa);
797 bool result = send_request(c, "%d %s", ACK, pubkey);
802 bool send_metakey(connection_t *c) {
807 bool metakey_h(connection_t *c, const char *request) {
813 bool send_challenge(connection_t *c) {
818 bool challenge_h(connection_t *c, const char *request) {
824 bool send_chal_reply(connection_t *c) {
829 bool chal_reply_h(connection_t *c, const char *request) {
835 static bool send_upgrade(connection_t *c) {
841 bool send_ack(connection_t *c) {
842 if(c->protocol_minor == 1) {
843 return send_upgrade(c);
846 /* ACK message contains rest of the information the other end needs
847 to create node_t and edge_t structures. */
852 /* Estimate weight */
854 gettimeofday(&now, NULL);
855 c->estimated_weight = (int)((now.tv_sec - c->start.tv_sec) * 1000 + (now.tv_usec - c->start.tv_usec) / 1000);
857 /* Check some options */
859 if((get_config_bool(lookup_config(c->config_tree, "IndirectData"), &choice) && choice) || myself->options & OPTION_INDIRECT) {
860 c->options |= OPTION_INDIRECT;
863 if((get_config_bool(lookup_config(c->config_tree, "TCPOnly"), &choice) && choice) || myself->options & OPTION_TCPONLY) {
864 c->options |= OPTION_TCPONLY | OPTION_INDIRECT;
867 if(myself->options & OPTION_PMTU_DISCOVERY && !(c->options & OPTION_TCPONLY)) {
868 c->options |= OPTION_PMTU_DISCOVERY;
871 choice = myself->options & OPTION_CLAMP_MSS;
872 get_config_bool(lookup_config(c->config_tree, "ClampMSS"), &choice);
875 c->options |= OPTION_CLAMP_MSS;
878 if(!get_config_int(lookup_config(c->config_tree, "Weight"), &c->estimated_weight)) {
879 get_config_int(lookup_config(&config_tree, "Weight"), &c->estimated_weight);
882 return send_request(c, "%d %s %d %x", ACK, myport, c->estimated_weight, (c->options & 0xffffff) | (experimental ? (PROT_MINOR << 24) : 0));
885 static void send_everything(connection_t *c) {
886 /* Send all known subnets and edges */
888 if(disablebuggypeers) {
891 char pad[MAXBUFSIZE - MAXSIZE];
894 memset(&zeropkt, 0, sizeof(zeropkt));
895 zeropkt.pkt.len = MAXBUFSIZE;
896 send_tcppacket(c, &zeropkt.pkt);
900 for splay_each(subnet_t, s, &myself->subnet_tree) {
901 send_add_subnet(c, s);
907 for splay_each(node_t, n, &node_tree) {
908 for splay_each(subnet_t, s, &n->subnet_tree) {
909 send_add_subnet(c, s);
912 for splay_each(edge_t, e, &n->edge_tree) {
918 static bool upgrade_h(connection_t *c, const char *request) {
919 char pubkey[MAX_STRING_SIZE];
921 if(sscanf(request, "%*d " MAX_STRING, pubkey) != 1) {
922 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "ACK", c->name, c->hostname);
926 if(ecdsa_active(c->ecdsa) || read_ecdsa_public_key(&c->ecdsa, &c->config_tree, c->name)) {
927 char *knownkey = ecdsa_get_base64_public_key(c->ecdsa);
928 bool different = strcmp(knownkey, pubkey);
932 logger(DEBUG_ALWAYS, LOG_ERR, "Already have an Ed25519 public key from %s (%s) which is different from the one presented now!", c->name, c->hostname);
936 logger(DEBUG_ALWAYS, LOG_INFO, "Already have Ed25519 public key from %s (%s), ignoring.", c->name, c->hostname);
937 c->allow_request = TERMREQ;
938 return send_termreq(c);
941 c->ecdsa = ecdsa_set_base64_public_key(pubkey);
944 logger(DEBUG_ALWAYS, LOG_INFO, "Got bad Ed25519 public key from %s (%s), not upgrading.", c->name, c->hostname);
948 logger(DEBUG_ALWAYS, LOG_INFO, "Got Ed25519 public key from %s (%s), upgrading!", c->name, c->hostname);
949 append_config_file(c->name, "Ed25519PublicKey", pubkey);
950 c->allow_request = TERMREQ;
953 c->outgoing->timeout = 0;
956 return send_termreq(c);
959 bool ack_h(connection_t *c, const char *request) {
960 if(c->protocol_minor == 1) {
961 return upgrade_h(c, request);
964 char hisport[MAX_STRING_SIZE];
970 if(sscanf(request, "%*d " MAX_STRING " %d %x", hisport, &weight, &options) != 3) {
971 logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "ACK", c->name,
976 /* Check if we already have a node_t for him */
978 n = lookup_node(c->name);
982 n->name = xstrdup(c->name);
986 /* Oh dear, we already have a connection to this node. */
987 logger(DEBUG_CONNECTIONS, LOG_DEBUG, "Established a second connection with %s (%s), closing old connection", n->connection->name, n->connection->hostname);
989 if(n->connection->outgoing) {
991 logger(DEBUG_ALWAYS, LOG_WARNING, "Two outgoing connections to the same node!");
993 c->outgoing = n->connection->outgoing;
996 n->connection->outgoing = NULL;
999 terminate_connection(n->connection, false);
1000 /* Run graph algorithm to purge key and make sure up/down scripts are rerun with new IP addresses and stuff */
1008 if(!(c->options & options & OPTION_PMTU_DISCOVERY)) {
1009 c->options &= ~OPTION_PMTU_DISCOVERY;
1010 options &= ~OPTION_PMTU_DISCOVERY;
1013 c->options |= options;
1015 if(get_config_int(lookup_config(c->config_tree, "PMTU"), &mtu) && mtu < n->mtu) {
1019 if(get_config_int(lookup_config(&config_tree, "PMTU"), &mtu) && mtu < n->mtu) {
1023 if(get_config_bool(lookup_config(c->config_tree, "ClampMSS"), &choice)) {
1025 c->options |= OPTION_CLAMP_MSS;
1027 c->options &= ~OPTION_CLAMP_MSS;
1031 /* Activate this connection */
1033 c->allow_request = ALL;
1035 logger(DEBUG_CONNECTIONS, LOG_NOTICE, "Connection with %s (%s) activated", c->name,
1038 /* Send him everything we know */
1042 /* Create an edge_t for this connection */
1044 c->edge = new_edge();
1045 c->edge->from = myself;
1047 sockaddrcpy(&c->edge->address, &c->address);
1048 sockaddr_setport(&c->edge->address, hisport);
1049 sockaddr_t local_sa;
1050 socklen_t local_salen = sizeof(local_sa);
1052 if(getsockname(c->socket, &local_sa.sa, &local_salen) < 0) {
1053 logger(DEBUG_ALWAYS, LOG_WARNING, "Could not get local socket address for connection with %s", c->name);
1055 sockaddr_setport(&local_sa, myport);
1056 c->edge->local_address = local_sa;
1059 c->edge->weight = (weight + c->estimated_weight) / 2;
1060 c->edge->connection = c;
1061 c->edge->options = c->options;
1065 /* Notify everyone of the new edge */
1068 send_add_edge(c, c->edge);
1070 send_add_edge(everyone, c->edge);
1073 /* Run MST and SSSP algorithms */