503 lines
13 KiB
C
503 lines
13 KiB
C
/*
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protocol_auth.c -- handle the meta-protocol, authentication
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Copyright (C) 1999-2005 Ivo Timmermans,
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2000-2010 Guus Sliepen <guus@tinc-vpn.org>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "system.h"
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#include "splay_tree.h"
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#include "conf.h"
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#include "connection.h"
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#include "control.h"
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#include "control_common.h"
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#include "crypto.h"
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#include "edge.h"
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#include "graph.h"
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#include "logger.h"
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#include "net.h"
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#include "netutl.h"
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#include "node.h"
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#include "protocol.h"
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#include "rsa.h"
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#include "utils.h"
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#include "xalloc.h"
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bool send_id(connection_t *c) {
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gettimeofday(&c->start, NULL);
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return send_request(c, "%d %s %d", ID, myself->connection->name,
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myself->connection->protocol_version);
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}
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bool id_h(connection_t *c, char *request) {
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char name[MAX_STRING_SIZE];
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if(sscanf(request, "%*d " MAX_STRING " %d", name, &c->protocol_version) != 2) {
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logger(LOG_ERR, "Got bad %s from %s (%s)", "ID", c->name,
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c->hostname);
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return false;
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}
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/* Check if this is a control connection */
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if(name[0] == '^' && !strcmp(name + 1, controlcookie)) {
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c->status.control = true;
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c->allow_request = CONTROL;
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c->last_ping_time = time(NULL) + 3600;
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return send_request(c, "%d %d %d", ACK, TINC_CTL_VERSION_CURRENT, getpid());
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}
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/* Check if identity is a valid name */
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if(!check_id(name)) {
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logger(LOG_ERR, "Got bad %s from %s (%s): %s", "ID", c->name,
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c->hostname, "invalid name");
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return false;
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}
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/* If this is an outgoing connection, make sure we are connected to the right host */
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if(c->outgoing) {
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if(strcmp(c->name, name)) {
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logger(LOG_ERR, "Peer %s is %s instead of %s", c->hostname, name,
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c->name);
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return false;
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}
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} else {
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if(c->name)
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free(c->name);
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c->name = xstrdup(name);
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}
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/* Check if version matches */
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if(c->protocol_version != myself->connection->protocol_version) {
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logger(LOG_ERR, "Peer %s (%s) uses incompatible version %d",
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c->name, c->hostname, c->protocol_version);
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return false;
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}
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if(bypass_security) {
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if(!c->config_tree)
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init_configuration(&c->config_tree);
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c->allow_request = ACK;
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return send_ack(c);
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}
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if(!c->config_tree) {
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init_configuration(&c->config_tree);
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if(!read_connection_config(c)) {
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logger(LOG_ERR, "Peer %s had unknown identity (%s)", c->hostname,
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c->name);
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return false;
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}
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}
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if(!read_rsa_public_key(c)) {
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return false;
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}
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c->allow_request = METAKEY;
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return send_metakey(c);
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}
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bool send_metakey(connection_t *c) {
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size_t len = rsa_size(&c->rsa);
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char key[len];
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char enckey[len];
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char hexkey[2 * len + 1];
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if(!cipher_open_blowfish_ofb(&c->outcipher))
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return false;
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if(!digest_open_sha1(&c->outdigest, -1))
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return false;
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/* Create a random key */
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randomize(key, len);
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/* The message we send must be smaller than the modulus of the RSA key.
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By definition, for a key of k bits, the following formula holds:
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2^(k-1) <= modulus < 2^(k)
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Where ^ means "to the power of", not "xor".
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This means that to be sure, we must choose our message < 2^(k-1).
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This can be done by setting the most significant bit to zero.
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*/
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key[0] &= 0x7F;
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cipher_set_key_from_rsa(&c->outcipher, key, len, true);
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ifdebug(SCARY_THINGS) {
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bin2hex(key, hexkey, len);
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hexkey[len * 2] = '\0';
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logger(LOG_DEBUG, "Generated random meta key (unencrypted): %s", hexkey);
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}
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/* Encrypt the random data
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We do not use one of the PKCS padding schemes here.
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This is allowed, because we encrypt a totally random string
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with a length equal to that of the modulus of the RSA key.
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*/
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if(!rsa_public_encrypt(&c->rsa, key, len, enckey)) {
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logger(LOG_ERR, "Error during encryption of meta key for %s (%s)", c->name, c->hostname);
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return false;
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}
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/* Convert the encrypted random data to a hexadecimal formatted string */
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bin2hex(enckey, hexkey, len);
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hexkey[len * 2] = '\0';
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/* Send the meta key */
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bool result = send_request(c, "%d %d %d %d %d %s", METAKEY,
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cipher_get_nid(&c->outcipher),
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digest_get_nid(&c->outdigest), c->outmaclength,
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c->outcompression, hexkey);
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c->status.encryptout = true;
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return result;
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}
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bool metakey_h(connection_t *c, char *request) {
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char hexkey[MAX_STRING_SIZE];
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int cipher, digest, maclength, compression;
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size_t len = rsa_size(&myself->connection->rsa);
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char enckey[len];
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char key[len];
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if(sscanf(request, "%*d %d %d %d %d " MAX_STRING, &cipher, &digest, &maclength, &compression, hexkey) != 5) {
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logger(LOG_ERR, "Got bad %s from %s (%s)", "METAKEY", c->name, c->hostname);
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return false;
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}
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/* Check if the length of the meta key is all right */
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if(strlen(hexkey) != len * 2) {
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logger(LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong keylength");
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return false;
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}
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/* Convert the challenge from hexadecimal back to binary */
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hex2bin(hexkey, enckey, len);
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/* Decrypt the meta key */
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if(!rsa_private_decrypt(&myself->connection->rsa, enckey, len, key)) {
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logger(LOG_ERR, "Error during decryption of meta key for %s (%s)", c->name, c->hostname);
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return false;
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}
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ifdebug(SCARY_THINGS) {
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bin2hex(key, hexkey, len);
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hexkey[len * 2] = '\0';
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logger(LOG_DEBUG, "Received random meta key (unencrypted): %s", hexkey);
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}
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/* Check and lookup cipher and digest algorithms */
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if(!cipher_open_by_nid(&c->incipher, cipher) || !cipher_set_key_from_rsa(&c->incipher, key, len, false)) {
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logger(LOG_ERR, "Error during initialisation of cipher from %s (%s)", c->name, c->hostname);
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return false;
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}
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if(!digest_open_by_nid(&c->indigest, digest, -1)) {
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logger(LOG_ERR, "Error during initialisation of digest from %s (%s)", c->name, c->hostname);
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return false;
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}
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c->status.decryptin = true;
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c->allow_request = CHALLENGE;
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return send_challenge(c);
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}
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bool send_challenge(connection_t *c) {
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size_t len = rsa_size(&c->rsa);
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char buffer[len * 2 + 1];
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if(!c->hischallenge)
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c->hischallenge = xrealloc(c->hischallenge, len);
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/* Copy random data to the buffer */
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randomize(c->hischallenge, len);
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/* Convert to hex */
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bin2hex(c->hischallenge, buffer, len);
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buffer[len * 2] = '\0';
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/* Send the challenge */
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return send_request(c, "%d %s", CHALLENGE, buffer);
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}
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bool challenge_h(connection_t *c, char *request) {
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char buffer[MAX_STRING_SIZE];
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size_t len = rsa_size(&myself->connection->rsa);
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size_t digestlen = digest_length(&c->indigest);
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char digest[digestlen];
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if(sscanf(request, "%*d " MAX_STRING, buffer) != 1) {
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logger(LOG_ERR, "Got bad %s from %s (%s)", "CHALLENGE", c->name, c->hostname);
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return false;
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}
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/* Check if the length of the challenge is all right */
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if(strlen(buffer) != len * 2) {
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logger(LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong challenge length");
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return false;
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}
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/* Convert the challenge from hexadecimal back to binary */
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hex2bin(buffer, buffer, len);
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c->allow_request = CHAL_REPLY;
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/* Calculate the hash from the challenge we received */
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digest_create(&c->indigest, buffer, len, digest);
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/* Convert the hash to a hexadecimal formatted string */
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bin2hex(digest, buffer, digestlen);
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buffer[digestlen * 2] = '\0';
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/* Send the reply */
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return send_request(c, "%d %s", CHAL_REPLY, buffer);
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}
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bool chal_reply_h(connection_t *c, char *request) {
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char hishash[MAX_STRING_SIZE];
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if(sscanf(request, "%*d " MAX_STRING, hishash) != 1) {
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logger(LOG_ERR, "Got bad %s from %s (%s)", "CHAL_REPLY", c->name,
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c->hostname);
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return false;
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}
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/* Check if the length of the hash is all right */
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if(strlen(hishash) != digest_length(&c->outdigest) * 2) {
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logger(LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong challenge reply length");
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return false;
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}
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/* Convert the hash to binary format */
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hex2bin(hishash, hishash, digest_length(&c->outdigest));
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/* Verify the hash */
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if(!digest_verify(&c->outdigest, c->hischallenge, rsa_size(&c->rsa), hishash)) {
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logger(LOG_ERR, "Possible intruder %s (%s): %s", c->name, c->hostname, "wrong challenge reply");
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return false;
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}
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/* Identity has now been positively verified.
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Send an acknowledgement with the rest of the information needed.
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*/
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free(c->hischallenge);
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c->hischallenge = NULL;
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c->allow_request = ACK;
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return send_ack(c);
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}
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bool send_ack(connection_t *c) {
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/* ACK message contains rest of the information the other end needs
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to create node_t and edge_t structures. */
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struct timeval now;
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bool choice;
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/* Estimate weight */
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gettimeofday(&now, NULL);
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c->estimated_weight = (now.tv_sec - c->start.tv_sec) * 1000 + (now.tv_usec - c->start.tv_usec) / 1000;
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/* Check some options */
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if((get_config_bool(lookup_config(c->config_tree, "IndirectData"), &choice) && choice) || myself->options & OPTION_INDIRECT)
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c->options |= OPTION_INDIRECT;
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if((get_config_bool(lookup_config(c->config_tree, "TCPOnly"), &choice) && choice) || myself->options & OPTION_TCPONLY)
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c->options |= OPTION_TCPONLY | OPTION_INDIRECT;
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if(myself->options & OPTION_PMTU_DISCOVERY)
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c->options |= OPTION_PMTU_DISCOVERY;
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choice = myself->options & OPTION_CLAMP_MSS;
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get_config_bool(lookup_config(c->config_tree, "ClampMSS"), &choice);
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if(choice)
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c->options |= OPTION_CLAMP_MSS;
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get_config_int(lookup_config(c->config_tree, "Weight"), &c->estimated_weight);
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return send_request(c, "%d %s %d %x", ACK, myport, c->estimated_weight, c->options);
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}
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static void send_everything(connection_t *c) {
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splay_node_t *node, *node2;
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node_t *n;
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subnet_t *s;
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edge_t *e;
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/* Send all known subnets and edges */
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if(tunnelserver) {
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for(node = myself->subnet_tree->head; node; node = node->next) {
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s = node->data;
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send_add_subnet(c, s);
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}
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return;
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}
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for(node = node_tree->head; node; node = node->next) {
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n = node->data;
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for(node2 = n->subnet_tree->head; node2; node2 = node2->next) {
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s = node2->data;
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send_add_subnet(c, s);
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}
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for(node2 = n->edge_tree->head; node2; node2 = node2->next) {
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e = node2->data;
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send_add_edge(c, e);
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}
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}
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}
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bool ack_h(connection_t *c, char *request) {
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char hisport[MAX_STRING_SIZE];
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char *hisaddress;
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int weight, mtu;
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uint32_t options;
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node_t *n;
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bool choice;
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if(sscanf(request, "%*d " MAX_STRING " %d %x", hisport, &weight, &options) != 3) {
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logger(LOG_ERR, "Got bad %s from %s (%s)", "ACK", c->name,
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c->hostname);
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return false;
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}
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/* Check if we already have a node_t for him */
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n = lookup_node(c->name);
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if(!n) {
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n = new_node();
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n->name = xstrdup(c->name);
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node_add(n);
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} else {
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if(n->connection) {
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/* Oh dear, we already have a connection to this node. */
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ifdebug(CONNECTIONS) logger(LOG_DEBUG, "Established a second connection with %s (%s), closing old connection", n->connection->name, n->connection->hostname);
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if(n->connection->outgoing) {
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if(c->outgoing)
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logger(LOG_WARNING, "Two outgoing connections to the same node!");
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else
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c->outgoing = n->connection->outgoing;
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n->connection->outgoing = NULL;
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}
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terminate_connection(n->connection, false);
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/* Run graph algorithm to purge key and make sure up/down scripts are rerun with new IP addresses and stuff */
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graph();
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}
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}
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n->connection = c;
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c->node = n;
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if(!(c->options & options & OPTION_PMTU_DISCOVERY)) {
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c->options &= ~OPTION_PMTU_DISCOVERY;
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options &= ~OPTION_PMTU_DISCOVERY;
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}
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c->options |= options;
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if(get_config_int(lookup_config(c->config_tree, "PMTU"), &mtu) && mtu < n->mtu)
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n->mtu = mtu;
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if(get_config_int(lookup_config(config_tree, "PMTU"), &mtu) && mtu < n->mtu)
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n->mtu = mtu;
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if(get_config_bool(lookup_config(c->config_tree, "ClampMSS"), &choice)) {
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if(choice)
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c->options |= OPTION_CLAMP_MSS;
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else
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c->options &= ~OPTION_CLAMP_MSS;
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}
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/* Activate this connection */
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c->allow_request = ALL;
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c->status.active = true;
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ifdebug(CONNECTIONS) logger(LOG_NOTICE, "Connection with %s (%s) activated", c->name,
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c->hostname);
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/* Send him everything we know */
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send_everything(c);
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/* Create an edge_t for this connection */
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c->edge = new_edge();
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c->edge->from = myself;
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c->edge->to = n;
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sockaddr2str(&c->address, &hisaddress, NULL);
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c->edge->address = str2sockaddr(hisaddress, hisport);
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free(hisaddress);
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c->edge->weight = (weight + c->estimated_weight) / 2;
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c->edge->connection = c;
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c->edge->options = c->options;
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edge_add(c->edge);
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/* Notify everyone of the new edge */
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if(tunnelserver)
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send_add_edge(c, c->edge);
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else
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send_add_edge(broadcast, c->edge);
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/* Run MST and SSSP algorithms */
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graph();
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return true;
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}
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