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https://github.com/irungentoo/toxcore.git
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e49a477a84
This is the "server-side" part of the new friend finding system, allowing DHT nodes to store small amounts of data and permit searching for it. A forwarding (proxying) mechanism allows this to be used by TCP clients, and deals with non-transitivity in the network.
251 lines
7.2 KiB
C
251 lines
7.2 KiB
C
/* SPDX-License-Identifier: GPL-3.0-or-later
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* Copyright © 2016-2018 The TokTok team.
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* Copyright © 2013 Tox project.
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*/
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/*
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* DHT bootstrap
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*
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* A simple DHT boostrap node for tox.
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*/
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "../toxcore/DHT.h"
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#include "../toxcore/LAN_discovery.h"
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#include "../toxcore/ccompat.h"
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#include "../toxcore/friend_requests.h"
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#include "../toxcore/logger.h"
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#include "../toxcore/mono_time.h"
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#include "../toxcore/tox.h"
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#include "../toxcore/util.h"
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#define TCP_RELAY_ENABLED
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#ifdef TCP_RELAY_ENABLED
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#include "../toxcore/TCP_server.h"
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#endif
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#include "../testing/misc_tools.h"
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#ifdef DHT_NODE_EXTRA_PACKETS
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#include "./bootstrap_node_packets.h"
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#define DHT_VERSION_NUMBER 1
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#define DHT_MOTD "This is a test motd"
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#endif
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#define PORT 33445
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static void manage_keys(DHT *dht)
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{
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enum { KEYS_SIZE = CRYPTO_PUBLIC_KEY_SIZE + CRYPTO_SECRET_KEY_SIZE };
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uint8_t keys[KEYS_SIZE];
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FILE *keys_file = fopen("key", "rb");
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if (keys_file != nullptr) {
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/* If file was opened successfully -- load keys,
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otherwise save new keys */
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size_t read_size = fread(keys, sizeof(uint8_t), KEYS_SIZE, keys_file);
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if (read_size != KEYS_SIZE) {
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printf("Error while reading the key file\nExiting.\n");
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exit(1);
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}
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dht_set_self_public_key(dht, keys);
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dht_set_self_secret_key(dht, keys + CRYPTO_PUBLIC_KEY_SIZE);
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printf("Keys loaded successfully.\n");
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} else {
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memcpy(keys, dht_get_self_public_key(dht), CRYPTO_PUBLIC_KEY_SIZE);
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memcpy(keys + CRYPTO_PUBLIC_KEY_SIZE, dht_get_self_secret_key(dht), CRYPTO_SECRET_KEY_SIZE);
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keys_file = fopen("key", "wb");
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if (keys_file == nullptr) {
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printf("Error opening key file in write mode.\nKeys will not be saved.\n");
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return;
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}
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if (fwrite(keys, sizeof(uint8_t), KEYS_SIZE, keys_file) != KEYS_SIZE) {
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printf("Error while writing the key file.\nExiting.\n");
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exit(1);
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}
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printf("Keys saved successfully.\n");
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}
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fclose(keys_file);
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}
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static void print_log(void *context, Logger_Level level, const char *file, int line,
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const char *func, const char *message, void *userdata)
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{
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const char *strlevel;
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switch (level) {
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case LOGGER_LEVEL_TRACE:
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strlevel = "TRACE";
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break;
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case LOGGER_LEVEL_DEBUG:
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strlevel = "DEBUG";
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break;
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case LOGGER_LEVEL_INFO:
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strlevel = "INFO";
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break;
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case LOGGER_LEVEL_WARNING:
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strlevel = "WARNING";
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break;
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case LOGGER_LEVEL_ERROR:
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strlevel = "ERROR";
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break;
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default:
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strlevel = "<unknown>";
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break;
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}
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fprintf(stderr, "[%s] %s:%d(%s) %s\n", strlevel, file, line, func, message);
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}
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int main(int argc, char *argv[])
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{
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if (argc == 2 && !tox_strncasecmp(argv[1], "-h", 3)) {
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printf("Usage (connected) : %s [--ipv4|--ipv6] IP PORT KEY\n", argv[0]);
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printf("Usage (unconnected): %s [--ipv4|--ipv6]\n", argv[0]);
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exit(0);
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}
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/* let user override default by cmdline */
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bool ipv6enabled = TOX_ENABLE_IPV6_DEFAULT; /* x */
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int argvoffset = cmdline_parsefor_ipv46(argc, argv, &ipv6enabled);
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if (argvoffset < 0) {
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exit(1);
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}
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/* Initialize networking -
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Bind to ip 0.0.0.0 / [::] : PORT */
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IP ip;
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ip_init(&ip, ipv6enabled);
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Logger *logger = logger_new();
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if (MIN_LOGGER_LEVEL == LOGGER_LEVEL_TRACE || MIN_LOGGER_LEVEL == LOGGER_LEVEL_DEBUG) {
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logger_callback_log(logger, print_log, nullptr, nullptr);
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}
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Mono_Time *mono_time = mono_time_new();
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const Random *rng = system_random();
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const uint16_t start_port = PORT;
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const uint16_t end_port = start_port + (TOX_PORTRANGE_TO - TOX_PORTRANGE_FROM);
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const Network *ns = system_network();
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DHT *dht = new_dht(logger, rng, ns, mono_time, new_networking_ex(logger, ns, &ip, start_port, end_port, nullptr), true, true);
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Onion *onion = new_onion(logger, mono_time, rng, dht);
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Forwarding *forwarding = new_forwarding(logger, rng, mono_time, dht);
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const Onion_Announce *onion_a = new_onion_announce(logger, rng, mono_time, dht);
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#ifdef DHT_NODE_EXTRA_PACKETS
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bootstrap_set_callbacks(dht_get_net(dht), DHT_VERSION_NUMBER, DHT_MOTD, sizeof(DHT_MOTD));
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#endif
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if (!(onion && forwarding && onion_a)) {
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printf("Something failed to initialize.\n");
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exit(1);
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}
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perror("Initialization");
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manage_keys(dht);
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printf("Public key: ");
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#ifdef TCP_RELAY_ENABLED
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#define NUM_PORTS 3
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uint16_t ports[NUM_PORTS] = {443, 3389, PORT};
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TCP_Server *tcp_s = new_TCP_server(logger, rng, ns, ipv6enabled, NUM_PORTS, ports, dht_get_self_secret_key(dht), onion, forwarding);
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if (tcp_s == nullptr) {
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printf("TCP server failed to initialize.\n");
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exit(1);
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}
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#endif
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const char *const public_id_filename = "PUBLIC_ID.txt";
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FILE *file = fopen(public_id_filename, "w");
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if (file == nullptr) {
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printf("Could not open file \"%s\" for writing. Exiting...\n", public_id_filename);
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exit(1);
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}
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for (uint32_t i = 0; i < 32; ++i) {
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const uint8_t *const self_public_key = dht_get_self_public_key(dht);
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printf("%02X", self_public_key[i]);
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fprintf(file, "%02X", self_public_key[i]);
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}
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fclose(file);
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printf("\n");
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printf("Port: %u\n", net_ntohs(net_port(dht_get_net(dht))));
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if (argc > argvoffset + 3) {
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printf("Trying to bootstrap into the network...\n");
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const long int port_conv = strtol(argv[argvoffset + 2], nullptr, 10);
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if (port_conv <= 0 || port_conv > UINT16_MAX) {
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printf("Failed to convert \"%s\" into a valid port. Exiting...\n", argv[argvoffset + 2]);
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exit(1);
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}
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const uint16_t port = net_htons((uint16_t)port_conv);
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uint8_t *bootstrap_key = hex_string_to_bin(argv[argvoffset + 3]);
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int res = dht_bootstrap_from_address(dht, argv[argvoffset + 1],
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ipv6enabled, port, bootstrap_key);
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free(bootstrap_key);
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if (!res) {
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printf("Failed to convert \"%s\" into an IP address. Exiting...\n", argv[argvoffset + 1]);
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exit(1);
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}
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}
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int is_waiting_for_dht_connection = 1;
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uint64_t last_LANdiscovery = 0;
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const Broadcast_Info *broadcast = lan_discovery_init(ns);
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while (1) {
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mono_time_update(mono_time);
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if (is_waiting_for_dht_connection && dht_isconnected(dht)) {
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printf("Connected to other bootstrap node successfully.\n");
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is_waiting_for_dht_connection = 0;
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}
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do_dht(dht);
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if (mono_time_is_timeout(mono_time, last_LANdiscovery, is_waiting_for_dht_connection ? 5 : LAN_DISCOVERY_INTERVAL)) {
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lan_discovery_send(dht_get_net(dht), broadcast, dht_get_self_public_key(dht), net_htons(PORT));
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last_LANdiscovery = mono_time_get(mono_time);
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}
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#ifdef TCP_RELAY_ENABLED
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do_TCP_server(tcp_s, mono_time);
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#endif
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networking_poll(dht_get_net(dht), nullptr);
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c_sleep(1);
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}
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}
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