mirror of
https://github.com/TokTok/c-toxcore
synced 2026-06-04 03:51:38 +00:00
0ec4978de5
It makes no sense to include it in the public API as clients can't make any meaningful use of it via public API, it can only be used if one also includes other internal/private headers that we don't install. It's used only in the testing code, which has access to the internal headers. Fixes #2739, at least to some degree. I decided against moving things to a separate `tox_testing.h` and leaving only things in `tox_private.h` that we are fine with clients using, as otherwise `tox_lock()` / `tox_unlock()` would have to be moved out of `tox_private.h` to somewhere else, but `tox_private.h` actually sounds like the right place for them, naming-wise. So perhaps it's fine if we have things in `tox_private.h` that we don't want clients to use.
188 lines
7.5 KiB
C++
188 lines
7.5 KiB
C++
#include <cassert>
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#include <cstdio>
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#include "../../toxcore/tox.h"
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#include "../../toxcore/tox_dispatch.h"
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#include "../../toxcore/tox_events.h"
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#include "fuzz_support.hh"
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#include "fuzz_tox.hh"
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namespace {
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void setup_callbacks(Tox_Dispatch *dispatch)
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{
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tox_events_callback_conference_connected(
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dispatch, [](const Tox_Event_Conference_Connected *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_conference_connected(
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dispatch, [](const Tox_Event_Conference_Connected *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_conference_invite(
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dispatch, [](const Tox_Event_Conference_Invite *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_conference_message(
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dispatch, [](const Tox_Event_Conference_Message *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_conference_peer_list_changed(
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dispatch, [](const Tox_Event_Conference_Peer_List_Changed *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_conference_peer_name(
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dispatch, [](const Tox_Event_Conference_Peer_Name *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_conference_title(dispatch,
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[](const Tox_Event_Conference_Title *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_file_chunk_request(
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dispatch, [](const Tox_Event_File_Chunk_Request *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_file_recv(dispatch,
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[](const Tox_Event_File_Recv *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_file_recv_chunk(dispatch,
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[](const Tox_Event_File_Recv_Chunk *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_file_recv_control(
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dispatch, [](const Tox_Event_File_Recv_Control *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_friend_connection_status(
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dispatch, [](const Tox_Event_Friend_Connection_Status *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_friend_lossless_packet(
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dispatch, [](const Tox_Event_Friend_Lossless_Packet *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_friend_lossy_packet(
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dispatch, [](const Tox_Event_Friend_Lossy_Packet *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_friend_message(dispatch,
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[](const Tox_Event_Friend_Message *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_friend_name(dispatch,
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[](const Tox_Event_Friend_Name *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_friend_read_receipt(
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dispatch, [](const Tox_Event_Friend_Read_Receipt *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_friend_request(
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dispatch, [](const Tox_Event_Friend_Request *event, void *user_data) {
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Tox *tox = static_cast<Tox *>(user_data);
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Tox_Err_Friend_Add err;
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tox_friend_add_norequest(tox, tox_event_friend_request_get_public_key(event), &err);
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if (!(err == TOX_ERR_FRIEND_ADD_OK || err == TOX_ERR_FRIEND_ADD_OWN_KEY
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|| err == TOX_ERR_FRIEND_ADD_ALREADY_SENT
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|| err == TOX_ERR_FRIEND_ADD_BAD_CHECKSUM
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|| err == TOX_ERR_FRIEND_ADD_MALLOC)) {
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printf("unexpected error: %s\n", tox_err_friend_add_to_string(err));
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}
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});
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tox_events_callback_friend_status(dispatch,
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[](const Tox_Event_Friend_Status *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_friend_status_message(
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dispatch, [](const Tox_Event_Friend_Status_Message *event, void *user_data) {
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assert(event == nullptr);
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});
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tox_events_callback_friend_typing(dispatch,
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[](const Tox_Event_Friend_Typing *event, void *user_data) { assert(event == nullptr); });
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tox_events_callback_self_connection_status(
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dispatch, [](const Tox_Event_Self_Connection_Status *event, void *user_data) {
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assert(event == nullptr);
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});
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}
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void TestBootstrap(Fuzz_Data &input)
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{
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// Null system for regularly working memory allocations needed in
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// tox_events_equal.
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Null_System null_sys;
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Fuzz_System sys(input);
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Ptr<Tox_Options> opts(tox_options_new(nullptr), tox_options_free);
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assert(opts != nullptr);
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tox_options_set_log_callback(opts.get(),
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[](Tox *tox, Tox_Log_Level level, const char *file, uint32_t line, const char *func,
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const char *message, void *user_data) {
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// Log to stdout.
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if (Fuzz_Data::DEBUG) {
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std::printf("[tox1] %c %s:%d(%s): %s\n", tox_log_level_name(level), file, line,
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func, message);
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}
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});
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CONSUME1_OR_RETURN(const uint8_t, proxy_type, input);
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if (proxy_type == 0) {
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tox_options_set_proxy_type(opts.get(), TOX_PROXY_TYPE_NONE);
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} else if (proxy_type == 1) {
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tox_options_set_proxy_type(opts.get(), TOX_PROXY_TYPE_SOCKS5);
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tox_options_set_proxy_host(opts.get(), "127.0.0.1");
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tox_options_set_proxy_port(opts.get(), 8080);
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} else if (proxy_type == 2) {
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tox_options_set_proxy_type(opts.get(), TOX_PROXY_TYPE_HTTP);
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tox_options_set_proxy_host(opts.get(), "127.0.0.1");
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tox_options_set_proxy_port(opts.get(), 8080);
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}
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CONSUME1_OR_RETURN(const uint8_t, tcp_relay_enabled, input);
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if (tcp_relay_enabled >= (UINT8_MAX / 2)) {
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tox_options_set_tcp_port(opts.get(), 33445);
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}
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Tox_Options_Testing tox_options_testing;
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tox_options_testing.operating_system = sys.sys.get();
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Tox_Err_New error_new;
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Tox_Err_New_Testing error_new_testing;
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Tox *tox = tox_new_testing(opts.get(), &error_new, &tox_options_testing, &error_new_testing);
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if (tox == nullptr) {
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// It might fail, because some I/O happens in tox_new, and the fuzzer
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// might do things that make that I/O fail.
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return;
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}
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assert(error_new == TOX_ERR_NEW_OK);
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assert(error_new_testing == TOX_ERR_NEW_TESTING_OK);
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uint8_t pub_key[TOX_PUBLIC_KEY_SIZE] = {0};
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// These may fail, but that's ok. We ignore their return values.
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tox_bootstrap(tox, "127.0.0.2", 33446, pub_key, nullptr);
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tox_add_tcp_relay(tox, "127.0.0.2", 33446, pub_key, nullptr);
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tox_events_init(tox);
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Tox_Dispatch *dispatch = tox_dispatch_new(nullptr);
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assert(dispatch != nullptr);
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setup_callbacks(dispatch);
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while (!input.empty()) {
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Tox_Err_Events_Iterate error_iterate;
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Tox_Events *events = tox_events_iterate(tox, true, &error_iterate);
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assert(tox_events_equal(null_sys.sys.get(), events, events));
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tox_dispatch_invoke(dispatch, events, tox);
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tox_events_free(events);
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// Move the clock forward a decent amount so all the time-based checks
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// trigger more quickly.
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sys.clock += 200;
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}
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tox_dispatch_free(dispatch);
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tox_kill(tox);
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}
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}
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extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size);
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extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size)
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{
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Fuzz_Data input{data, size};
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TestBootstrap(input);
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return 0; // Non-zero return values are reserved for future use.
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}
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