tomato/other/DHT_bootstrap.c
Green Sky 261d2e53b7 Squashed 'external/toxcore/c-toxcore/' changes from 55752a2e2ef..11ab1d2a723
11ab1d2a723 fix: reduce memory usage in group chats by 75% Significantly reduced the memory usage of groups since all message slots are preallocated for every peer for send and receive buffers of buffer size (hundreds of MiB peak when save contained alot of peers to try to connect to)
4f09f4e147c chore: Fix tsan build by moving it to GitHub CI.
6460c25c9e0 refactor: Use `merge_sort` instead of `qsort` for sorting.
c660bbe8c95 test: Fix crypto_test to initialise its plain text buffer.
0204db6184b cleanup: Fix layering check warnings.
df2211e1548 refactor: Use tox memory allocator for temporary buffers in crypto.
ac812871a2e feat: implement the last 2 missing network struct functions and make use of them
29d1043be0b test: friend request test now tests min/max message sizes
93aafd78c1f fix: friend requests with very long messages are no longer dropped
819aa2b2618 feat: Add option to disable DNS lookups in toxcore.
0ac23cee035 fix: windows use of REUSEADDR
7d2811d302d chore(ci): make bazel server shutdown faster
1dc399ba20d chore: Use vcpkg instead of conan in the MSVC build.
14d823165d9 chore: Migrate to conan 2.
bdd17c16787 cleanup: Allocate logger using tox memory allocator.
b396c061515 chore(deps): bump third_party/cmp from `2ac6bca` to `52bfcfa`
2e94da60d09 feat(net): add missing connect to network struct
41fb1839c7b chore: Add check to ensure version numbers agree.
934a8301113 chore: Release 0.2.20
3acef4bf044 fix: Add missing free in dht_get_nodes_response event.

git-subtree-dir: external/toxcore/c-toxcore
git-subtree-split: 11ab1d2a7232eee19b51ce126ccce267d6578903
2024-12-19 16:27:40 +01:00

273 lines
8.2 KiB
C

/* SPDX-License-Identifier: GPL-3.0-or-later
* Copyright © 2016-2018 The TokTok team.
* Copyright © 2013 Tox project.
*/
/*
* DHT bootstrap
*
* A simple DHT boostrap node for tox.
*/
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include "../toxcore/DHT.h"
#include "../toxcore/LAN_discovery.h"
#include "../toxcore/ccompat.h"
#include "../toxcore/crypto_core.h"
#include "../toxcore/forwarding.h"
#include "../toxcore/group_announce.h"
#include "../toxcore/group_onion_announce.h"
#include "../toxcore/logger.h"
#include "../toxcore/mem.h"
#include "../toxcore/mono_time.h"
#include "../toxcore/network.h"
#include "../toxcore/onion.h"
#include "../toxcore/onion_announce.h"
#include "../toxcore/tox.h"
#define TCP_RELAY_ENABLED
#ifdef TCP_RELAY_ENABLED
#include "../toxcore/TCP_server.h"
#endif
#include "../testing/misc_tools.h"
#define DHT_NODE_EXTRA_PACKETS
#ifdef DHT_NODE_EXTRA_PACKETS
#include "./bootstrap_node_packets.h"
#ifndef DAEMON_VERSION_NUMBER
#define DAEMON_VERSION_NUMBER (1000000000UL + TOX_VERSION_MAJOR*1000000UL + TOX_VERSION_MINOR*1000UL + TOX_VERSION_PATCH*1UL)
#endif
static const char *motd_str = ""; //Change this to anything within 256 bytes(but 96 bytes maximum prefered)
#endif
#define PORT 33445
static bool manage_keys(DHT *dht)
{
enum { KEYS_SIZE = CRYPTO_PUBLIC_KEY_SIZE + CRYPTO_SECRET_KEY_SIZE };
uint8_t keys[KEYS_SIZE];
FILE *keys_file = fopen("key", "rb");
if (keys_file != nullptr) {
/* If file was opened successfully -- load keys,
otherwise save new keys */
const size_t read_size = fread(keys, sizeof(uint8_t), KEYS_SIZE, keys_file);
if (read_size != KEYS_SIZE) {
printf("Error while reading the key file\nExiting.\n");
fclose(keys_file);
return false;
}
dht_set_self_public_key(dht, keys);
dht_set_self_secret_key(dht, keys + CRYPTO_PUBLIC_KEY_SIZE);
printf("Keys loaded successfully.\n");
} else {
memcpy(keys, dht_get_self_public_key(dht), CRYPTO_PUBLIC_KEY_SIZE);
memcpy(keys + CRYPTO_PUBLIC_KEY_SIZE, dht_get_self_secret_key(dht), CRYPTO_SECRET_KEY_SIZE);
keys_file = fopen("key", "wb");
if (keys_file == nullptr) {
printf("Error opening key file in write mode.\nKeys will not be saved.\n");
return false;
}
if (fwrite(keys, sizeof(uint8_t), KEYS_SIZE, keys_file) != KEYS_SIZE) {
printf("Error while writing the key file.\nExiting.\n");
fclose(keys_file);
return false;
}
printf("Keys saved successfully.\n");
}
fclose(keys_file);
return true;
}
static const char *strlevel(Logger_Level level)
{
switch (level) {
case LOGGER_LEVEL_TRACE:
return "TRACE";
case LOGGER_LEVEL_DEBUG:
return "DEBUG";
case LOGGER_LEVEL_INFO:
return "INFO";
case LOGGER_LEVEL_WARNING:
return "WARNING";
case LOGGER_LEVEL_ERROR:
return "ERROR";
default:
return "<unknown>";
}
}
static void print_log(void *context, Logger_Level level, const char *file, int line,
const char *func, const char *message, void *userdata)
{
fprintf(stderr, "[%s] %s:%d(%s) %s\n", strlevel(level), file, line, func, message);
}
int main(int argc, char *argv[])
{
if (argc == 2 && tox_strncasecmp(argv[1], "-h", 3) == 0) {
printf("Usage (connected) : %s [--ipv4|--ipv6] IP PORT KEY\n", argv[0]);
printf("Usage (unconnected): %s [--ipv4|--ipv6]\n", argv[0]);
return 0;
}
/* let user override default by cmdline */
bool ipv6enabled = TOX_ENABLE_IPV6_DEFAULT; /* x */
const int argvoffset = cmdline_parsefor_ipv46(argc, argv, &ipv6enabled);
if (argvoffset < 0) {
return 1;
}
/* Initialize networking -
Bind to ip 0.0.0.0 / [::] : PORT */
IP ip;
ip_init(&ip, ipv6enabled);
const Random *rng = os_random();
const Network *ns = os_network();
const Memory *mem = os_memory();
Logger *logger = logger_new(mem);
if (MIN_LOGGER_LEVEL <= LOGGER_LEVEL_DEBUG) {
logger_callback_log(logger, print_log, nullptr, nullptr);
}
Mono_Time *mono_time = mono_time_new(mem, nullptr, nullptr);
const uint16_t start_port = PORT;
const uint16_t end_port = start_port + (TOX_PORTRANGE_TO - TOX_PORTRANGE_FROM);
DHT *dht = new_dht(logger, mem, rng, ns, mono_time, new_networking_ex(logger, mem, ns, &ip, start_port, end_port, nullptr), true, true);
Onion *onion = new_onion(logger, mem, mono_time, rng, dht);
Forwarding *forwarding = new_forwarding(logger, rng, mono_time, dht);
GC_Announces_List *gc_announces_list = new_gca_list();
Onion_Announce *onion_a = new_onion_announce(logger, mem, rng, mono_time, dht);
#ifdef DHT_NODE_EXTRA_PACKETS
bootstrap_set_callbacks(dht_get_net(dht), (uint32_t)DAEMON_VERSION_NUMBER, (const uint8_t *) motd_str, strlen(motd_str) + 1);
#endif
if (onion == nullptr || forwarding == nullptr || onion_a == nullptr) {
printf("Something failed to initialize.\n");
// cppcheck-suppress resourceLeak
return 1;
}
gca_onion_init(gc_announces_list, onion_a);
perror("Initialization");
if (!manage_keys(dht)) {
// cppcheck-suppress resourceLeak
return 1;
}
printf("Public key: ");
#ifdef TCP_RELAY_ENABLED
#define NUM_PORTS 3
const uint16_t ports[NUM_PORTS] = {443, 3389, PORT};
TCP_Server *tcp_s = new_tcp_server(logger, mem, rng, ns, ipv6enabled, NUM_PORTS, ports, dht_get_self_secret_key(dht), onion, forwarding);
if (tcp_s == nullptr) {
printf("TCP server failed to initialize.\n");
// cppcheck-suppress resourceLeak
return 1;
}
#endif
const char *const public_id_filename = "PUBLIC_ID.txt";
FILE *file = fopen(public_id_filename, "w");
if (file == nullptr) {
printf("Could not open file \"%s\" for writing. Exiting...\n", public_id_filename);
// cppcheck-suppress resourceLeak
return 1;
}
for (uint32_t i = 0; i < 32; ++i) {
const uint8_t *const self_public_key = dht_get_self_public_key(dht);
printf("%02X", self_public_key[i]);
fprintf(file, "%02X", self_public_key[i]);
}
fclose(file);
printf("\n");
printf("Port: %u\n", net_ntohs(net_port(dht_get_net(dht))));
if (argc > argvoffset + 3) {
printf("Trying to bootstrap into the network...\n");
const long int port_conv = strtol(argv[argvoffset + 2], nullptr, 10);
if (port_conv <= 0 || port_conv > UINT16_MAX) {
printf("Failed to convert \"%s\" into a valid port. Exiting...\n", argv[argvoffset + 2]);
return 1;
}
const uint16_t port = net_htons((uint16_t)port_conv);
// TODO(iphydf): Maybe disable and only use IP addresses?
const bool dns_enabled = true;
uint8_t *bootstrap_key = hex_string_to_bin(argv[argvoffset + 3]);
const bool res = dht_bootstrap_from_address(dht, argv[argvoffset + 1],
ipv6enabled, dns_enabled, port, bootstrap_key);
free(bootstrap_key);
if (!res) {
printf("Failed to convert \"%s\" into an IP address. Exiting...\n", argv[argvoffset + 1]);
return 1;
}
}
bool is_waiting_for_dht_connection = true;
uint64_t last_lan_discovery = 0;
const Broadcast_Info *broadcast = lan_discovery_init(ns);
while (true) {
mono_time_update(mono_time);
if (is_waiting_for_dht_connection && dht_isconnected(dht)) {
printf("Connected to other bootstrap node successfully.\n");
is_waiting_for_dht_connection = false;
}
do_dht(dht);
if (mono_time_is_timeout(mono_time, last_lan_discovery, is_waiting_for_dht_connection ? 5 : LAN_DISCOVERY_INTERVAL)) {
lan_discovery_send(dht_get_net(dht), broadcast, dht_get_self_public_key(dht), net_htons(PORT));
last_lan_discovery = mono_time_get(mono_time);
}
#ifdef TCP_RELAY_ENABLED
do_tcp_server(tcp_s, mono_time);
#endif
networking_poll(dht_get_net(dht), nullptr);
c_sleep(1);
}
}