mirror of
https://github.com/arvidn/libtorrent.git
synced 2026-07-27 22:41:18 -04:00
482 lines
13 KiB
C++
482 lines
13 KiB
C++
/*
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Copyright (c) 2008-2010, 2012-2022, Arvid Norberg
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Copyright (c) 2016, 2018, Alden Torres
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All rights reserved.
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You may use, distribute and modify this code under the terms of the BSD license,
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see LICENSE file.
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*/
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#include "libtorrent/session.hpp"
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#include "libtorrent/session_settings.hpp"
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#include "libtorrent/session_params.hpp"
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#include "libtorrent/alert_types.hpp"
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#include "libtorrent/time.hpp"
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#include "libtorrent/aux_/path.hpp"
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#include "libtorrent/torrent_info.hpp"
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#include "test.hpp"
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#include "disk_io_test.hpp"
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#include "setup_transfer.hpp"
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#include "settings.hpp" // for settings()
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#include "test_utils.hpp"
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#include <tuple>
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#include <functional>
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#include <fstream>
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#include <iostream>
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using namespace lt;
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using std::ignore;
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namespace {
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int peer_disconnects = 0;
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int read_piece_alerts = 0;
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bool on_alert(alert const* a)
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{
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auto const* const pd = alert_cast<peer_disconnected_alert>(a);
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if (pd && pd->error != make_error_code(errors::self_connection))
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++peer_disconnects;
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else if (alert_cast<peer_error_alert>(a))
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++peer_disconnects;
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else if (auto rp = alert_cast<read_piece_alert>(a))
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{
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++read_piece_alerts;
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TEST_CHECK(!rp->error);
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}
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return false;
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}
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struct transfer_tag;
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using transfer_flags_t = lt::flags::bitfield_flag<std::uint8_t, transfer_tag>;
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constexpr transfer_flags_t disable_v1_hashes = 0_bit;
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constexpr transfer_flags_t delete_files = 2_bit;
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constexpr transfer_flags_t move_storage = 3_bit;
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constexpr transfer_flags_t piece_deadline = 4_bit;
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constexpr transfer_flags_t large_piece_size = 5_bit;
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// bad_v1_hashes: create a hybrid torrent with wrong v1 SHA1 hashes but correct
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// v2 SHA256 hashes.
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constexpr transfer_flags_t bad_v1_hashes = 6_bit;
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// expect_inconsistent_error: expect a torrent_error_alert with
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// torrent_inconsistent_hashes instead of the torrent completing as a seed.
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constexpr transfer_flags_t expect_inconsistent_error = 7_bit;
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void test_transfer(int const proxy_type, settings_pack const& sett
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, transfer_flags_t flags = {}
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, storage_mode_t const storage_mode = storage_mode_sparse
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, disk_io_constructor_type disk_io = default_disk_io_constructor)
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{
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char const* test_name[] = {"no", "SOCKS4", "SOCKS5", "SOCKS5 password", "HTTP", "HTTP password"};
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std::printf("::group::%s-%s\n", test_name[proxy_type], (flags & move_storage) ? "move" : "nomove");
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std::printf("\n\n ==== TESTING %s proxy ==== move-storage: %s\n\n\n"
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, test_name[proxy_type]
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, (flags & move_storage) ? "true": "false"
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);
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// in case the previous run was terminated
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error_code ec;
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remove_all("tmp1_transfer", ec);
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remove_all("tmp2_transfer", ec);
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remove_all("tmp1_transfer_moved", ec);
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remove_all("tmp2_transfer_moved", ec);
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// these are declared before the session objects
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// so that they are destructed last. This enables
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// the sessions to destruct in parallel
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session_proxy p1;
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session_proxy p2;
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settings_pack pack = settings();
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pack.set_str(settings_pack::listen_interfaces, test_listen_interface());
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pack.set_bool(settings_pack::enable_upnp, false);
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pack.set_bool(settings_pack::enable_natpmp, false);
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pack.set_bool(settings_pack::enable_lsd, false);
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pack.set_bool(settings_pack::enable_dht, false);
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#if TORRENT_ABI_VERSION == 1
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pack.set_bool(settings_pack::rate_limit_utp, true);
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#endif
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lt::session_params sp(pack);
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sp.disk_io_constructor = disk_io;
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lt::session ses1(sp);
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pack.set_str(settings_pack::listen_interfaces, test_listen_interface());
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sp.settings = pack;
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lt::session ses2(sp);
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int proxy_port = 0;
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if (proxy_type)
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{
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proxy_port = start_proxy(proxy_type);
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settings_pack pack_p;
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pack_p.set_str(settings_pack::proxy_username, "testuser");
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pack_p.set_str(settings_pack::proxy_password, "testpass");
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pack_p.set_int(settings_pack::proxy_type, proxy_type);
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pack_p.set_int(settings_pack::proxy_port, proxy_port);
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// test resetting the proxy in quick succession.
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// specifically the udp_socket connecting to a new
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// socks5 proxy while having one connection attempt
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// in progress.
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pack_p.set_str(settings_pack::proxy_hostname, "5.6.7.8");
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ses1.apply_settings(pack_p);
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pack_p.set_str(settings_pack::proxy_hostname, "127.0.0.1");
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ses1.apply_settings(pack_p);
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}
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pack = sett;
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// we need a short reconnect time since we
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// finish the torrent and then restart it
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// immediately to complete the second half.
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// using a reconnect time > 0 will just add
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// to the time it will take to complete the test
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pack.set_int(settings_pack::min_reconnect_time, 0);
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pack.set_int(settings_pack::stop_tracker_timeout, 1);
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pack.set_bool(settings_pack::announce_to_all_trackers, true);
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pack.set_bool(settings_pack::announce_to_all_tiers, true);
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// make sure we announce to both http and udp trackers
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pack.set_bool(settings_pack::prefer_udp_trackers, false);
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pack.set_bool(settings_pack::enable_outgoing_utp, false);
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pack.set_bool(settings_pack::enable_incoming_utp, false);
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pack.set_bool(settings_pack::enable_lsd, false);
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pack.set_bool(settings_pack::enable_natpmp, false);
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pack.set_bool(settings_pack::enable_upnp, false);
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pack.set_bool(settings_pack::enable_dht, false);
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pack.set_int(settings_pack::out_enc_policy, settings_pack::pe_disabled);
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pack.set_int(settings_pack::in_enc_policy, settings_pack::pe_disabled);
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pack.set_bool(settings_pack::allow_multiple_connections_per_ip, false);
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// TODO: these settings_pack tests belong in their own test
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pack.set_int(settings_pack::unchoke_slots_limit, 0);
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ses1.apply_settings(pack);
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TEST_CHECK(ses1.get_settings().get_int(settings_pack::unchoke_slots_limit) == 0);
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pack.set_int(settings_pack::unchoke_slots_limit, -1);
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ses1.apply_settings(pack);
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TEST_CHECK(ses1.get_settings().get_int(settings_pack::unchoke_slots_limit) == -1);
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pack.set_int(settings_pack::unchoke_slots_limit, 8);
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ses1.apply_settings(pack);
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TEST_CHECK(ses1.get_settings().get_int(settings_pack::unchoke_slots_limit) == 8);
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ses2.apply_settings(pack);
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torrent_handle tor1;
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torrent_handle tor2;
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int piece_size = 32 * 1024;
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int timeout = 10;
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if (flags & large_piece_size)
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{
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piece_size = 1024 * 1024;
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timeout = 90;
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}
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create_directory("tmp1_transfer", ec);
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std::ofstream file("tmp1_transfer/temporary");
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add_torrent_params atp = ::create_torrent(&file, "temporary", piece_size, 13, false
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, {}, "", bool(flags & bad_v1_hashes));
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file.close();
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if (flags & disable_v1_hashes)
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atp.flags |= torrent_flags::disable_v1_hashes;
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// The seeder needs disable_v1_hashes when v1 hashes are corrupted: even in
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// seed_mode it can exit and recheck, and without the flag it would get
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// torrent_inconsistent_hashes before the downloader can detect the inconsistency.
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torrent_flags_t const seeder_extra = (flags & bad_v1_hashes)
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? torrent_flags::disable_v1_hashes : torrent_flags_t{};
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TEST_CHECK(exists(combine_path("tmp1_transfer", "temporary")));
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atp.storage_mode = storage_mode;
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atp.flags &= ~torrent_flags::paused;
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atp.flags &= ~torrent_flags::auto_managed;
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wait_for_listen(ses1, "ses1");
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wait_for_listen(ses2, "ses2");
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peer_disconnects = 0;
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read_piece_alerts = 0;
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bool got_inconsistent_error = false;
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// test using piece sizes smaller than 16kB
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std::tie(tor1, tor2, ignore) = setup_transfer(&ses1, &ses2, nullptr
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, true, false, true, "_transfer", 1024 * 1024, &atp, false
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, true, false, nullptr, {}, seeder_extra);
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int num_pieces = tor2.torrent_file()->num_pieces();
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std::vector<int> priorities(std::size_t(num_pieces), 1);
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if (flags & piece_deadline)
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{
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int deadline = 1;
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for (auto const p : atp.ti->piece_range())
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{
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++deadline;
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tor2.set_piece_deadline(p, deadline, lt::torrent_handle::alert_when_available);
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}
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}
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auto const start_time = lt::clock_type::now();
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static char const* state_str[] =
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{"checking (q)", "checking", "dl metadata"
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, "downloading", "finished", "seeding", "allocating", "checking (r)"};
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for (int i = 0; i < 30000; ++i)
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{
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if (lt::clock_type::now() - start_time > seconds(timeout))
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{
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std::cout << "timeout\n";
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break;
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}
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// sleep a bit
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ses2.wait_for_alert(lt::milliseconds(100));
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torrent_status const st1 = tor1.status();
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torrent_status const st2 = tor2.status();
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print_alerts(ses1, "ses1", true, true, &on_alert);
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print_alerts(ses2, "ses2", true, true, [&](alert const* a) {
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if (auto const* te = alert_cast<torrent_error_alert>(a))
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if (te->error == errors::torrent_inconsistent_hashes)
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got_inconsistent_error = true;
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return on_alert(a);
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});
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if (i % 10 == 0)
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{
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print_ses_rate(start_time, &st1, &st2);
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}
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std::cout << "st1-progress: " << (st1.progress * 100.f) << "% state: " << state_str[st1.state] << "\n";
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std::cout << "st2-progress: " << (st2.progress * 100.f) << "% state: " << state_str[st2.state] << "\n";
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if ((flags & move_storage) && st2.progress > 0.1f)
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{
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flags &= ~move_storage;
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tor1.move_storage("tmp1_transfer_moved");
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tor2.move_storage("tmp2_transfer_moved");
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std::cout << "moving storage" << std::endl;
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}
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if ((flags & delete_files) && st2.progress > 0.1f)
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{
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ses1.remove_torrent(tor1, session::delete_files);
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std::cout << "deleting files" << std::endl;
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std::this_thread::sleep_for(lt::seconds(1));
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break;
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}
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// wait 10 loops before we restart the torrent. This lets
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// us catch all events that failed (and would put the torrent
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// back into upload mode) before we restart it.
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if (st2.is_seeding) break;
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if ((flags & expect_inconsistent_error) && got_inconsistent_error) break;
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if (!(flags & expect_inconsistent_error))
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{
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TEST_CHECK(st1.state == torrent_status::seeding
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|| st1.state == torrent_status::checking_files
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|| st1.state == torrent_status::checking_resume_data);
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TEST_CHECK(st2.state == torrent_status::downloading
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|| st2.state == torrent_status::checking_resume_data);
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}
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if (peer_disconnects >= 2) break;
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std::this_thread::sleep_for(lt::milliseconds(500));
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}
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if (flags & piece_deadline)
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{
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TEST_CHECK(read_piece_alerts > 0);
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}
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if (flags & expect_inconsistent_error)
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{
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TEST_CHECK(got_inconsistent_error);
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TEST_CHECK(!tor2.status().is_seeding);
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}
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else if (!(flags & delete_files))
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{
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TEST_CHECK(tor2.status().is_seeding);
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}
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// this allows shutting down the sessions in parallel
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p1 = ses1.abort();
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p2 = ses2.abort();
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if (proxy_type) stop_proxy(proxy_port);
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std::printf("::endgroup::");
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}
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void cleanup()
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{
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error_code ec;
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remove_all("tmp1_transfer", ec);
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remove_all("tmp2_transfer", ec);
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remove_all("tmp1_transfer_moved", ec);
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remove_all("tmp2_transfer_moved", ec);
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}
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} // anonymous namespace
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#if TORRENT_ABI_VERSION == 1
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TORRENT_TEST(no_contiguous_buffers)
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{
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using namespace lt;
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// test no contiguous_recv_buffers
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settings_pack p = settings();
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p.set_bool(settings_pack::contiguous_recv_buffer, false);
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test_transfer(0, p);
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cleanup();
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}
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#endif
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// test with all kinds of proxies
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TORRENT_TEST(socks5_pw)
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{
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using namespace lt;
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test_transfer(settings_pack::socks5_pw, settings_pack());
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cleanup();
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}
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TORRENT_TEST(http)
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{
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using namespace lt;
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test_transfer(settings_pack::http, settings_pack());
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cleanup();
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}
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TORRENT_TEST(http_pw)
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{
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using namespace lt;
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test_transfer(settings_pack::http_pw, settings_pack());
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cleanup();
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}
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/*
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TORRENT_TEST(i2p)
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{
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using namespace lt;
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test_transfer(settings_pack::i2p_proxy, settings_pack());
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cleanup();
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}
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*/
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TORRENT_TEST_DISK_IO(move_storage)
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{
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using namespace lt;
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test_transfer(0, settings_pack(), move_storage, storage_mode_sparse, disk_io);
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cleanup();
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}
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TORRENT_TEST(piece_deadline)
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{
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using namespace lt;
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test_transfer(0, settings_pack(), piece_deadline);
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cleanup();
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}
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TORRENT_TEST_DISK_IO(delete_files)
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{
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using namespace lt;
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settings_pack p = settings_pack();
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p.set_int(settings_pack::aio_threads, 10);
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test_transfer(0, p, delete_files, storage_mode_sparse, disk_io);
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cleanup();
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}
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TORRENT_TEST(allow_fast)
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{
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using namespace lt;
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// test allowed fast
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settings_pack p = settings();
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p.set_int(settings_pack::allowed_fast_set_size, 2000);
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test_transfer(0, p);
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cleanup();
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}
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TORRENT_TEST_DISK_IO(large_pieces)
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{
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using namespace lt;
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std::printf("large pieces\n");
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test_transfer(0, settings_pack(), large_piece_size, storage_mode_sparse, disk_io);
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cleanup();
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}
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TORRENT_TEST_DISK_IO(allocate)
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{
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using namespace lt;
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// test storage_mode_allocate
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std::printf("full allocation mode\n");
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test_transfer(0, settings_pack(), {}, storage_mode_allocate, disk_io);
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cleanup();
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}
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TORRENT_TEST(suggest)
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{
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using namespace lt;
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settings_pack p = settings();
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p.set_int(settings_pack::suggest_mode, settings_pack::suggest_read_cache);
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test_transfer(0, p);
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cleanup();
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}
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TORRENT_TEST_DISK_IO(disable_os_cache)
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{
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using namespace lt;
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settings_pack p = settings();
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p.set_int(settings_pack::disk_io_write_mode, settings_pack::disable_os_cache);
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test_transfer(0, p, {}, storage_mode_allocate, disk_io);
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cleanup();
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}
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TORRENT_TEST_DISK_IO(write_through)
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{
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using namespace lt;
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settings_pack p = settings();
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p.set_int(settings_pack::disk_io_write_mode, settings_pack::write_through);
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test_transfer(0, p, {}, storage_mode_allocate, disk_io);
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cleanup();
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}
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// bad v1 hashes + disable_v1_hashes -> transfer completes (v1 validation is skipped)
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TORRENT_TEST(corrupt_v1_hashes_disable_v1_hashes)
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{
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test_transfer(0, {}, bad_v1_hashes | disable_v1_hashes);
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cleanup();
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}
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// bad v1 hashes -> torrent_error_alert with torrent_inconsistent_hashes
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TORRENT_TEST(corrupt_v1_hashes)
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{
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test_transfer(0, {}, bad_v1_hashes | expect_inconsistent_error);
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cleanup();
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}
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