forked from Green-Sky/tomato
Green Sky
47ad96e2b6
da438763d5 chore: Release 0.2.19 f90417987c chore: Add cmake flag to disable unit tests. 7df3f99417 docs: Document that group topic lock is default on. 9e9ed77390 docs: Add missing param docs for callbacks. 0ec4978de5 refactor: Don't expose Tox_System in the public API a3d1b8595c docs: Public headers, Core/toxcore -> Tox/the Tox library f78d0f3f39 docs: Public headers, events_alloc -> internal 817518949e docs: Public headers, NULL-terminated -> NUL-terminated be085db191 docs: Public headers, spellcheck 4c902955f3 docs: Public headers, 80 column width comments be8a82a818 docs: Public headers, null -> NULL 419d783d95 docs: Public headers, tox -> Tox 5c8aa65e41 docs: Update user data API explanation ad4921dbaa cleanup: A more descriptive error for group invite accept function git-subtree-dir: external/toxcore/c-toxcore git-subtree-split: da438763d5b8e071de6e061a1dcaddd2177dff7d
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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