toxcore/other/bootstrap_daemon/src/tox-bootstrapd.c

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/* tox-bootstrapd.c
*
* Tox DHT bootstrap daemon.
*
* Copyright (C) 2014 Tox project All Rights Reserved.
*
* This file is part of Tox.
*
* Tox is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* Tox is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with Tox. If not, see <http://www.gnu.org/licenses/>.
*
*/
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// system provided
#include <arpa/inet.h>
#include <getopt.h>
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#include <syslog.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <unistd.h>
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// C
#include <stdio.h>
#include <stdlib.h>
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#include <string.h>
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// 3rd party
#include <libconfig.h>
// ./configure
#ifdef HAVE_CONFIG_H
#include "config.h"
#endif
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// toxcore
#include "../../toxcore/LAN_discovery.h"
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#include "../../toxcore/onion_announce.h"
#include "../../toxcore/TCP_server.h"
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#include "../../toxcore/util.h"
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// misc
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#include "../bootstrap_node_packets.c"
#include "../../testing/misc_tools.c"
#include "global.h"
#include "log.h"
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#define SLEEP_TIME_MILLISECONDS 30
#define sleep usleep(1000*SLEEP_TIME_MILLISECONDS)
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#define DEFAULT_PID_FILE_PATH "tox-bootstrapd.pid"
#define DEFAULT_KEYS_FILE_PATH "tox-bootstrapd.keys"
#define DEFAULT_PORT 33445
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#define DEFAULT_ENABLE_IPV6 1 // 1 - true, 0 - false
#define DEFAULT_ENABLE_IPV4_FALLBACK 1 // 1 - true, 0 - false
#define DEFAULT_ENABLE_LAN_DISCOVERY 1 // 1 - true, 0 - false
#define DEFAULT_ENABLE_TCP_RELAY 1 // 1 - true, 0 - false
#define DEFAULT_TCP_RELAY_PORTS 443, 3389, 33445 // comma-separated list of ports. make sure to adjust DEFAULT_TCP_RELAY_PORTS_COUNT accordingly
#define DEFAULT_TCP_RELAY_PORTS_COUNT 3
#define DEFAULT_ENABLE_MOTD 1 // 1 - true, 0 - false
#define DEFAULT_MOTD DAEMON_NAME
#define MIN_ALLOWED_PORT 1
#define MAX_ALLOWED_PORT 65535
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// Uses the already existing key or creates one if it didn't exist
//
// retirns 1 on success
// 0 on failure - no keys were read or stored
int manage_keys(DHT *dht, char *keys_file_path)
{
const uint32_t KEYS_SIZE = crypto_box_PUBLICKEYBYTES + crypto_box_SECRETKEYBYTES;
uint8_t keys[KEYS_SIZE];
FILE *keys_file;
// Check if file exits, proceed to open and load keys
keys_file = fopen(keys_file_path, "r");
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if (keys_file != NULL) {
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const size_t read_size = fread(keys, sizeof(uint8_t), KEYS_SIZE, keys_file);
if (read_size != KEYS_SIZE) {
fclose(keys_file);
return 0;
}
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memcpy(dht->self_public_key, keys, crypto_box_PUBLICKEYBYTES);
memcpy(dht->self_secret_key, keys + crypto_box_PUBLICKEYBYTES, crypto_box_SECRETKEYBYTES);
} else {
// Otherwise save new keys
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memcpy(keys, dht->self_public_key, crypto_box_PUBLICKEYBYTES);
memcpy(keys + crypto_box_PUBLICKEYBYTES, dht->self_secret_key, crypto_box_SECRETKEYBYTES);
keys_file = fopen(keys_file_path, "w");
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if (!keys_file)
return 0;
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const size_t write_size = fwrite(keys, sizeof(uint8_t), KEYS_SIZE, keys_file);
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if (write_size != KEYS_SIZE) {
fclose(keys_file);
return 0;
}
}
fclose(keys_file);
return 1;
}
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// Parses tcp relay ports from `cfg` and puts them into `tcp_relay_ports` array
//
// Supposed to be called from get_general_config only
//
// Important: iff `tcp_relay_port_count` > 0, then you are responsible for freeing `tcp_relay_ports`
void parse_tcp_relay_ports_config(config_t *cfg, uint16_t **tcp_relay_ports, int *tcp_relay_port_count)
{
const char *NAME_TCP_RELAY_PORTS = "tcp_relay_ports";
*tcp_relay_port_count = 0;
config_setting_t *ports_array = config_lookup(cfg, NAME_TCP_RELAY_PORTS);
if (ports_array == NULL) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in the configuration file.\n", NAME_TCP_RELAY_PORTS);
write_log(LOG_LEVEL_WARNING, "Using default '%s':\n", NAME_TCP_RELAY_PORTS);
uint16_t default_ports[DEFAULT_TCP_RELAY_PORTS_COUNT] = {DEFAULT_TCP_RELAY_PORTS};
int i;
for (i = 0; i < DEFAULT_TCP_RELAY_PORTS_COUNT; i ++) {
write_log(LOG_LEVEL_INFO, "Port #%d: %u\n", i, default_ports[i]);
}
// similar procedure to the one of reading config file below
*tcp_relay_ports = malloc(DEFAULT_TCP_RELAY_PORTS_COUNT * sizeof(uint16_t));
for (i = 0; i < DEFAULT_TCP_RELAY_PORTS_COUNT; i ++) {
(*tcp_relay_ports)[*tcp_relay_port_count] = default_ports[i];
if ((*tcp_relay_ports)[*tcp_relay_port_count] < MIN_ALLOWED_PORT
|| (*tcp_relay_ports)[*tcp_relay_port_count] > MAX_ALLOWED_PORT) {
write_log(LOG_LEVEL_WARNING, "Port #%d: Invalid port: %u, should be in [%d, %d]. Skipping.\n", i,
(*tcp_relay_ports)[*tcp_relay_port_count], MIN_ALLOWED_PORT, MAX_ALLOWED_PORT);
continue;
}
(*tcp_relay_port_count) ++;
}
// the loop above skips invalid ports, so we adjust the allocated memory size
if ((*tcp_relay_port_count) > 0) {
*tcp_relay_ports = realloc(*tcp_relay_ports, (*tcp_relay_port_count) * sizeof(uint16_t));
} else {
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free(*tcp_relay_ports);
*tcp_relay_ports = NULL;
}
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return;
}
if (config_setting_is_array(ports_array) == CONFIG_FALSE) {
write_log(LOG_LEVEL_ERROR, "'%s' setting should be an array. Array syntax: 'setting = [value1, value2, ...]'.\n",
NAME_TCP_RELAY_PORTS);
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return;
}
int config_port_count = config_setting_length(ports_array);
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if (config_port_count == 0) {
write_log(LOG_LEVEL_ERROR, "'%s' is empty.\n", NAME_TCP_RELAY_PORTS);
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return;
}
*tcp_relay_ports = malloc(config_port_count * sizeof(uint16_t));
int i;
for (i = 0; i < config_port_count; i ++) {
config_setting_t *elem = config_setting_get_elem(ports_array, i);
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if (elem == NULL) {
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// it's NULL if `ports_array` is not an array (we have that check earlier) or if `i` is out of range, which should not be
write_log(LOG_LEVEL_WARNING, "Port #%d: Something went wrong while parsing the port. Stopping reading ports.\n", i);
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break;
}
if (config_setting_is_number(elem) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "Port #%d: Not a number. Skipping.\n", i);
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continue;
}
(*tcp_relay_ports)[*tcp_relay_port_count] = config_setting_get_int(elem);
if ((*tcp_relay_ports)[*tcp_relay_port_count] < MIN_ALLOWED_PORT
|| (*tcp_relay_ports)[*tcp_relay_port_count] > MAX_ALLOWED_PORT) {
write_log(LOG_LEVEL_WARNING, "Port #%d: Invalid port: %u, should be in [%d, %d]. Skipping.\n", i,
(*tcp_relay_ports)[*tcp_relay_port_count], MIN_ALLOWED_PORT, MAX_ALLOWED_PORT);
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continue;
}
(*tcp_relay_port_count) ++;
}
// the loop above skips invalid ports, so we adjust the allocated memory size
if ((*tcp_relay_port_count) > 0) {
*tcp_relay_ports = realloc(*tcp_relay_ports, (*tcp_relay_port_count) * sizeof(uint16_t));
} else {
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free(*tcp_relay_ports);
*tcp_relay_ports = NULL;
}
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}
// Gets general config options
//
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// Important: you are responsible for freeing `pid_file_path` and `keys_file_path`
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// also, iff `tcp_relay_ports_count` > 0, then you are responsible for freeing `tcp_relay_ports`
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// and also `motd` iff `enable_motd` is set
//
// returns 1 on success
// 0 on failure, doesn't modify any data pointed by arguments
int get_general_config(const char *cfg_file_path, char **pid_file_path, char **keys_file_path, int *port,
int *enable_ipv6,
int *enable_ipv4_fallback, int *enable_lan_discovery, int *enable_tcp_relay, uint16_t **tcp_relay_ports,
int *tcp_relay_port_count, int *enable_motd, char **motd)
{
config_t cfg;
const char *NAME_PORT = "port";
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const char *NAME_PID_FILE_PATH = "pid_file_path";
const char *NAME_KEYS_FILE_PATH = "keys_file_path";
const char *NAME_ENABLE_IPV6 = "enable_ipv6";
const char *NAME_ENABLE_IPV4_FALLBACK = "enable_ipv4_fallback";
const char *NAME_ENABLE_LAN_DISCOVERY = "enable_lan_discovery";
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const char *NAME_ENABLE_TCP_RELAY = "enable_tcp_relay";
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const char *NAME_ENABLE_MOTD = "enable_motd";
const char *NAME_MOTD = "motd";
config_init(&cfg);
// Read the file. If there is an error, report it and exit.
if (config_read_file(&cfg, cfg_file_path) == CONFIG_FALSE) {
write_log(LOG_LEVEL_ERROR, "%s:%d - %s\n", config_error_file(&cfg), config_error_line(&cfg), config_error_text(&cfg));
config_destroy(&cfg);
return 0;
}
// Get port
if (config_lookup_int(&cfg, NAME_PORT, port) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_PORT);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %d\n", NAME_PORT, DEFAULT_PORT);
*port = DEFAULT_PORT;
}
// Get PID file location
const char *tmp_pid_file;
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if (config_lookup_string(&cfg, NAME_PID_FILE_PATH, &tmp_pid_file) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_PID_FILE_PATH);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_PID_FILE_PATH, DEFAULT_PID_FILE_PATH);
tmp_pid_file = DEFAULT_PID_FILE_PATH;
}
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*pid_file_path = malloc(strlen(tmp_pid_file) + 1);
strcpy(*pid_file_path, tmp_pid_file);
// Get keys file location
const char *tmp_keys_file;
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if (config_lookup_string(&cfg, NAME_KEYS_FILE_PATH, &tmp_keys_file) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_KEYS_FILE_PATH);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_KEYS_FILE_PATH, DEFAULT_KEYS_FILE_PATH);
tmp_keys_file = DEFAULT_KEYS_FILE_PATH;
}
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*keys_file_path = malloc(strlen(tmp_keys_file) + 1);
strcpy(*keys_file_path, tmp_keys_file);
// Get IPv6 option
if (config_lookup_bool(&cfg, NAME_ENABLE_IPV6, enable_ipv6) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_ENABLE_IPV6);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_ENABLE_IPV6, DEFAULT_ENABLE_IPV6 ? "true" : "false");
*enable_ipv6 = DEFAULT_ENABLE_IPV6;
}
// Get IPv4 fallback option
if (config_lookup_bool(&cfg, NAME_ENABLE_IPV4_FALLBACK, enable_ipv4_fallback) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_ENABLE_IPV4_FALLBACK);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_ENABLE_IPV4_FALLBACK,
DEFAULT_ENABLE_IPV4_FALLBACK ? "true" : "false");
*enable_ipv4_fallback = DEFAULT_ENABLE_IPV4_FALLBACK;
}
// Get LAN discovery option
if (config_lookup_bool(&cfg, NAME_ENABLE_LAN_DISCOVERY, enable_lan_discovery) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_ENABLE_LAN_DISCOVERY);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_ENABLE_LAN_DISCOVERY,
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DEFAULT_ENABLE_LAN_DISCOVERY ? "true" : "false");
*enable_lan_discovery = DEFAULT_ENABLE_LAN_DISCOVERY;
}
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// Get TCP relay option
if (config_lookup_bool(&cfg, NAME_ENABLE_TCP_RELAY, enable_tcp_relay) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_ENABLE_TCP_RELAY);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_ENABLE_TCP_RELAY,
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DEFAULT_ENABLE_TCP_RELAY ? "true" : "false");
*enable_tcp_relay = DEFAULT_ENABLE_TCP_RELAY;
}
if (*enable_tcp_relay) {
parse_tcp_relay_ports_config(&cfg, tcp_relay_ports, tcp_relay_port_count);
} else {
*tcp_relay_port_count = 0;
}
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// Get MOTD option
if (config_lookup_bool(&cfg, NAME_ENABLE_MOTD, enable_motd) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_ENABLE_MOTD);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_ENABLE_MOTD,
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DEFAULT_ENABLE_MOTD ? "true" : "false");
*enable_motd = DEFAULT_ENABLE_MOTD;
}
if (*enable_motd) {
// Get MOTD
const char *tmp_motd;
if (config_lookup_string(&cfg, NAME_MOTD, &tmp_motd) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in configuration file.\n", NAME_MOTD);
write_log(LOG_LEVEL_WARNING, "Using default '%s': %s\n", NAME_MOTD, DEFAULT_MOTD);
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tmp_motd = DEFAULT_MOTD;
}
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size_t tmp_motd_length = strlen(tmp_motd) + 1;
size_t motd_length = tmp_motd_length > MAX_MOTD_LENGTH ? MAX_MOTD_LENGTH : tmp_motd_length;
*motd = malloc(motd_length);
strncpy(*motd, tmp_motd, motd_length);
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(*motd)[motd_length - 1] = '\0';
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}
config_destroy(&cfg);
write_log(LOG_LEVEL_INFO, "Successfully read:\n");
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_PID_FILE_PATH, *pid_file_path);
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_KEYS_FILE_PATH, *keys_file_path);
write_log(LOG_LEVEL_INFO, "'%s': %d\n", NAME_PORT, *port);
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_ENABLE_IPV6, *enable_ipv6 ? "true" : "false");
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_ENABLE_IPV4_FALLBACK, *enable_ipv4_fallback ? "true" : "false");
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_ENABLE_LAN_DISCOVERY, *enable_lan_discovery ? "true" : "false");
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write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_ENABLE_TCP_RELAY, *enable_tcp_relay ? "true" : "false");
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// show info about tcp ports only if tcp relay is enabled
if (*enable_tcp_relay) {
if (*tcp_relay_port_count == 0) {
write_log(LOG_LEVEL_ERROR, "No TCP ports could be read.\n");
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} else {
write_log(LOG_LEVEL_INFO, "Read %d TCP ports:\n", *tcp_relay_port_count);
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int i;
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for (i = 0; i < *tcp_relay_port_count; i ++) {
write_log(LOG_LEVEL_INFO, "Port #%d: %u\n", i, (*tcp_relay_ports)[i]);
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}
}
}
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_ENABLE_MOTD, *enable_motd ? "true" : "false");
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if (*enable_motd) {
write_log(LOG_LEVEL_INFO, "'%s': %s\n", NAME_MOTD, *motd);
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}
return 1;
}
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// Bootstraps nodes listed in the config file
//
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// returns 1 on success, some or no bootstrap nodes were added
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// 0 on failure, a error accured while parsing config file
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int bootstrap_from_config(const char *cfg_file_path, DHT *dht, int enable_ipv6)
{
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const char *NAME_BOOTSTRAP_NODES = "bootstrap_nodes";
const char *NAME_PUBLIC_KEY = "public_key";
const char *NAME_PORT = "port";
const char *NAME_ADDRESS = "address";
config_t cfg;
config_init(&cfg);
if (config_read_file(&cfg, cfg_file_path) == CONFIG_FALSE) {
write_log(LOG_LEVEL_ERROR, "%s:%d - %s\n", config_error_file(&cfg), config_error_line(&cfg), config_error_text(&cfg));
config_destroy(&cfg);
return 0;
}
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config_setting_t *node_list = config_lookup(&cfg, NAME_BOOTSTRAP_NODES);
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if (node_list == NULL) {
write_log(LOG_LEVEL_WARNING, "No '%s' setting in the configuration file. Skipping bootstrapping.\n", NAME_BOOTSTRAP_NODES);
config_destroy(&cfg);
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return 1;
}
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if (config_setting_length(node_list) == 0) {
write_log(LOG_LEVEL_WARNING, "No bootstrap nodes found. Skipping bootstrapping.\n");
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config_destroy(&cfg);
return 1;
}
int bs_port;
const char *bs_address;
const char *bs_public_key;
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config_setting_t *node;
int i = 0;
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while (config_setting_length(node_list)) {
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node = config_setting_get_elem(node_list, 0);
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if (node == NULL) {
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config_destroy(&cfg);
return 0;
}
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// Check that all settings are present
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if (config_setting_lookup_string(node, NAME_PUBLIC_KEY, &bs_public_key) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "Bootstrap node #%d: Couldn't find '%s' setting. Skipping the node.\n", i, NAME_PUBLIC_KEY);
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goto next;
}
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if (config_setting_lookup_int(node, NAME_PORT, &bs_port) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "Bootstrap node #%d: Couldn't find '%s' setting. Skipping the node.\n", i, NAME_PORT);
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goto next;
}
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if (config_setting_lookup_string(node, NAME_ADDRESS, &bs_address) == CONFIG_FALSE) {
write_log(LOG_LEVEL_WARNING, "Bootstrap node #%d: Couldn't find '%s' setting. Skipping the node.\n", i, NAME_ADDRESS);
goto next;
}
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// Process settings
if (strlen(bs_public_key) != crypto_box_PUBLICKEYBYTES * 2) {
write_log(LOG_LEVEL_WARNING, "Bootstrap node #%d: Invalid '%s': %s. Skipping the node.\n", i, NAME_PUBLIC_KEY,
bs_public_key);
goto next;
}
if (bs_port < MIN_ALLOWED_PORT || bs_port > MAX_ALLOWED_PORT) {
write_log(LOG_LEVEL_WARNING, "Bootstrap node #%d: Invalid '%s': %d, should be in [%d, %d]. Skipping the node.\n", i, NAME_PORT,
bs_port, MIN_ALLOWED_PORT, MAX_ALLOWED_PORT);
goto next;
}
uint8_t *bs_public_key_bin = hex_string_to_bin((char *)bs_public_key);
const int address_resolved = DHT_bootstrap_from_address(dht, bs_address, enable_ipv6, htons(bs_port),
bs_public_key_bin);
free(bs_public_key_bin);
if (!address_resolved) {
write_log(LOG_LEVEL_WARNING, "Bootstrap node #%d: Invalid '%s': %s. Skipping the node.\n", i, NAME_ADDRESS, bs_address);
goto next;
}
write_log(LOG_LEVEL_INFO, "Successfully added bootstrap node #%d: %s:%d %s\n", i, bs_address, bs_port, bs_public_key);
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next:
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// config_setting_lookup_string() allocates string inside and doesn't allow us to free it direcly
// though it's freed when the element is removed, so we free it right away in order to keep memory
// consumption minimal
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config_setting_remove_elem(node_list, 0);
i++;
}
config_destroy(&cfg);
return 1;
}
// Prints public key
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void print_public_key(const uint8_t *public_key)
{
char buffer[2 * crypto_box_PUBLICKEYBYTES + 1];
int index = 0;
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size_t i;
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for (i = 0; i < crypto_box_PUBLICKEYBYTES; i++) {
index += sprintf(buffer + index, "%02hhX", public_key[i]);
}
write_log(LOG_LEVEL_INFO, "Public Key: %s\n", buffer);
return;
}
// Prints --help message
bool print_help()
{
// 2 space ident
// make sure all lines fit into 80 columns
write_log(LOG_LEVEL_INFO,
"Usage: tox-bootstrapd [OPTION]... --config=FILE_PATH\n"
"\n"
"Options:\n"
" --config=FILE_PATH Specify path to the config file.\n"
" This is a required option.\n"
" Set FILE_PATH to a path to an empty file in order to\n"
" use default settings.\n"
" --help Print this help message.\n"
" --log-backend=BACKEND Specify which logging backend to use.\n"
" Valid BACKEND values (case sensetive):\n"
" syslog Writes log messages to syslog.\n"
" Default option when no --log-backend is\n"
" specified.\n"
" stdout Writes log messages to stdout/stderr.\n"
" --version Print version information.\n");
}
// Handels command line arguments, setting cfg_file_path and log_backend.
// Terminates the application if incorrect arguments are specified.
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void handle_command_line_arguments(int argc, char *argv[], char **cfg_file_path, LOG_BACKEND *log_backend)
{
if (argc < 2) {
write_log(LOG_LEVEL_ERROR, "Error: No arguments provided.\n\n");
print_help();
exit(1);
}
opterr = 0;
static struct option long_options[] = {
{"help", no_argument, 0, 'h'},
{"config", required_argument, 0, 'c'}, // required option
{"log-backend", required_argument, 0, 'l'}, // optional, defaults to syslog
{"version", no_argument, 0, 'v'},
{0, 0, 0, 0 }
};
bool cfg_file_path_set = false;
bool log_backend_set = false;
int opt;
while ((opt = getopt_long(argc, argv, ":", long_options, NULL)) != -1) {
switch (opt) {
case 'h':
print_help();
exit(0);
case 'c':
*cfg_file_path = optarg;
cfg_file_path_set = true;
break;
case 'l':
if (strcmp(optarg, "syslog") == 0) {
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*log_backend = LOG_BACKEND_SYSLOG;
log_backend_set = true;
} else if (strcmp(optarg, "stdout") == 0) {
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*log_backend = LOG_BACKEND_STDOUT;
log_backend_set = true;
} else {
write_log(LOG_LEVEL_ERROR, "Error: Invalid BACKEND value for --log-backend option passed: %s\n\n", optarg);
print_help();
exit(1);
}
break;
case 'v':
write_log(LOG_LEVEL_INFO, "Version: %lu\n", DAEMON_VERSION_NUMBER);
exit(0);
case '?':
write_log(LOG_LEVEL_ERROR, "Error: Unrecognized option %s\n\n", argv[optind-1]);
print_help();
exit(1);
case ':':
write_log(LOG_LEVEL_ERROR, "Error: No argument provided for option %s\n\n", argv[optind-1]);
print_help();
exit(1);
}
}
if (!log_backend_set) {
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*log_backend = LOG_BACKEND_SYSLOG;
}
if (!cfg_file_path_set) {
write_log(LOG_LEVEL_ERROR, "Error: The required --config option wasn't specified\n\n");
print_help();
exit(1);
}
}
int main(int argc, char *argv[])
{
char *cfg_file_path;
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LOG_BACKEND log_backend;
// choose backend for printing command line argument parsing output based on whether the daemon is being run from a terminal
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log_backend = isatty(STDOUT_FILENO) ? LOG_BACKEND_STDOUT : LOG_BACKEND_SYSLOG;
open_log(log_backend);
handle_command_line_arguments(argc, argv, &cfg_file_path, &log_backend);
close_log();
open_log(log_backend);
write_log(LOG_LEVEL_INFO, "Running \"%s\" version %lu.\n", DAEMON_NAME, DAEMON_VERSION_NUMBER);
char *pid_file_path, *keys_file_path;
int port;
int enable_ipv6;
int enable_ipv4_fallback;
int enable_lan_discovery;
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int enable_tcp_relay;
uint16_t *tcp_relay_ports;
int tcp_relay_port_count;
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int enable_motd;
char *motd;
if (get_general_config(cfg_file_path, &pid_file_path, &keys_file_path, &port, &enable_ipv6, &enable_ipv4_fallback,
&enable_lan_discovery, &enable_tcp_relay, &tcp_relay_ports, &tcp_relay_port_count, &enable_motd, &motd)) {
write_log(LOG_LEVEL_INFO, "General config read successfully\n");
} else {
write_log(LOG_LEVEL_ERROR, "Couldn't read config file: %s. Exiting.\n", cfg_file_path);
return 1;
}
if (port < MIN_ALLOWED_PORT || port > MAX_ALLOWED_PORT) {
write_log(LOG_LEVEL_ERROR, "Invalid port: %d, should be in [%d, %d]. Exiting.\n", port, MIN_ALLOWED_PORT, MAX_ALLOWED_PORT);
return 1;
}
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// Check if the PID file exists
FILE *pid_file;
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if ((pid_file = fopen(pid_file_path, "r"))) {
write_log(LOG_LEVEL_WARNING, "Another instance of the daemon is already running, PID file %s exists.\n", pid_file_path);
fclose(pid_file);
}
IP ip;
ip_init(&ip, enable_ipv6);
Networking_Core *net = new_networking(ip, port);
if (net == NULL) {
if (enable_ipv6 && enable_ipv4_fallback) {
write_log(LOG_LEVEL_WARNING, "Couldn't initialize IPv6 networking. Falling back to using IPv4.\n");
enable_ipv6 = 0;
ip_init(&ip, enable_ipv6);
net = new_networking(ip, port);
if (net == NULL) {
write_log(LOG_LEVEL_ERROR, "Couldn't fallback to IPv4. Exiting.\n");
return 1;
}
} else {
write_log(LOG_LEVEL_ERROR, "Couldn't initialize networking. Exiting.\n");
return 1;
}
}
DHT *dht = new_DHT(net);
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if (dht == NULL) {
write_log(LOG_LEVEL_ERROR, "Couldn't initialize Tox DHT instance. Exiting.\n");
return 1;
}
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Onion *onion = new_onion(dht);
Onion_Announce *onion_a = new_onion_announce(dht);
if (!(onion && onion_a)) {
write_log(LOG_LEVEL_ERROR, "Couldn't initialize Tox Onion. Exiting.\n");
return 1;
}
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if (enable_motd) {
if (bootstrap_set_callbacks(dht->net, DAEMON_VERSION_NUMBER, (uint8_t *)motd, strlen(motd) + 1) == 0) {
write_log(LOG_LEVEL_INFO, "Set MOTD successfully.\n");
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} else {
write_log(LOG_LEVEL_ERROR, "Couldn't set MOTD: %s. Exiting.\n", motd);
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return 1;
}
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free(motd);
}
if (manage_keys(dht, keys_file_path)) {
write_log(LOG_LEVEL_INFO, "Keys are managed successfully.\n");
} else {
write_log(LOG_LEVEL_ERROR, "Couldn't read/write: %s. Exiting.\n", keys_file_path);
return 1;
}
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TCP_Server *tcp_server = NULL;
if (enable_tcp_relay) {
if (tcp_relay_port_count == 0) {
write_log(LOG_LEVEL_ERROR, "No TCP relay ports read. Exiting.\n");
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return 1;
}
tcp_server = new_TCP_server(enable_ipv6, tcp_relay_port_count, tcp_relay_ports, dht->self_secret_key, onion);
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// tcp_relay_port_count != 0 at this point
free(tcp_relay_ports);
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if (tcp_server != NULL) {
write_log(LOG_LEVEL_INFO, "Initialized Tox TCP server successfully.\n");
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} else {
write_log(LOG_LEVEL_ERROR, "Couldn't initialize Tox TCP server. Exiting.\n");
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return 1;
}
}
if (bootstrap_from_config(cfg_file_path, dht, enable_ipv6)) {
write_log(LOG_LEVEL_INFO, "List of bootstrap nodes read successfully.\n");
} else {
write_log(LOG_LEVEL_ERROR, "Couldn't read list of bootstrap nodes in %s. Exiting.\n", cfg_file_path);
return 1;
}
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print_public_key(dht->self_public_key);
// Write the PID file
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FILE *pidf = fopen(pid_file_path, "a+");
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if (pidf == NULL) {
write_log(LOG_LEVEL_ERROR, "Couldn't open the PID file for writing: %s. Exiting.\n", pid_file_path);
return 1;
}
free(pid_file_path);
free(keys_file_path);
// Fork off from the parent process
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const pid_t pid = fork();
if (pid > 0) {
fprintf(pidf, "%d", pid);
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fclose(pidf);
write_log(LOG_LEVEL_INFO, "Forked successfully: PID: %d.\n", pid);
return 0;
} else {
fclose(pidf);
}
if (pid < 0) {
write_log(LOG_LEVEL_ERROR, "Forking failed. Exiting.\n");
return 1;
}
// Change the file mode mask
umask(0);
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// Create a new SID for the child process
if (setsid() < 0) {
write_log(LOG_LEVEL_ERROR, "SID creation failure. Exiting.\n");
return 1;
}
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// Change the current working directory
if ((chdir("/")) < 0) {
write_log(LOG_LEVEL_ERROR, "Couldn't change working directory to '/'. Exiting.\n");
return 1;
}
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// Go quiet
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if (log_backend != LOG_BACKEND_STDOUT) {
close(STDOUT_FILENO);
close(STDIN_FILENO);
close(STDERR_FILENO);
}
uint64_t last_LANdiscovery = 0;
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const uint16_t htons_port = htons(port);
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int waiting_for_dht_connection = 1;
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if (enable_lan_discovery) {
LANdiscovery_init(dht);
write_log(LOG_LEVEL_INFO, "Initialized LAN discovery.\n");
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}
while (1) {
do_DHT(dht);
if (enable_lan_discovery && is_timeout(last_LANdiscovery, LAN_DISCOVERY_INTERVAL)) {
send_LANdiscovery(htons_port, dht);
last_LANdiscovery = unix_time();
}
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if (enable_tcp_relay) {
do_TCP_server(tcp_server);
}
networking_poll(dht->net);
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if (waiting_for_dht_connection && DHT_isconnected(dht)) {
write_log(LOG_LEVEL_INFO, "Connected to other bootstrap node successfully.\n");
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waiting_for_dht_connection = 0;
}
sleep;
}
return 1;
}