forked from premiere/premiere-libtorrent
332 lines
9.7 KiB
C++
332 lines
9.7 KiB
C++
/*
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Copyright (c) 2013, Arvid Norberg
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in
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the documentation and/or other materials provided with the distribution.
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* Neither the name of the author nor the names of its
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contributors may be used to endorse or promote products derived
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from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "test.hpp"
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#include "setup_transfer.hpp"
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#include "dht_server.hpp"
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#include "peer_server.hpp"
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#include "udp_tracker.hpp"
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#include "test_utils.hpp"
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#include "settings.hpp"
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#include "libtorrent/alert.hpp"
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#include "libtorrent/random.hpp"
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#include "libtorrent/alert_types.hpp"
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#include "libtorrent/torrent_info.hpp"
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#include "libtorrent/aux_/path.hpp"
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#include "libtorrent/flags.hpp"
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#include <fstream>
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using namespace lt;
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namespace {
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char const* proxy_name[] = {
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"none",
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"socks4",
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"socks5",
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"socks5_pw",
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"http",
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"http_pw",
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"i2p_proxy"
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};
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using flags_t = flags::bitfield_flag<std::uint32_t, struct test_proxy_tag>;
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constexpr flags_t expect_http_connection = 1_bit;
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constexpr flags_t expect_udp_connection = 2_bit;
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//constexpr flags_t expect_http_reject = 3_bit;
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//constexpr flags_t expect_udp_reject = 4_bit;
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constexpr flags_t expect_dht_msg = 5_bit;
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constexpr flags_t expect_peer_connection = 6_bit;
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constexpr flags_t dont_proxy_peers = 10_bit;
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constexpr flags_t dont_proxy_trackers = 11_bit;
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session_proxy test_proxy(settings_pack::proxy_type_t proxy_type, flags_t flags)
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{
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#ifdef TORRENT_DISABLE_DHT
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// if DHT is disabled, we won't get any requests to it
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flags &= ~expect_dht_msg;
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#endif
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std::printf("\n=== TEST == proxy: %s \n\n", proxy_name[proxy_type]);
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int const http_port = start_web_server();
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int const udp_port = start_udp_tracker();
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int const dht_port = start_dht();
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int const peer_port = start_peer();
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int const prev_udp_announces = num_udp_announces();
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settings_pack sett = settings();
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sett.set_int(settings_pack::stop_tracker_timeout, 2);
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sett.set_int(settings_pack::tracker_completion_timeout, 2);
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sett.set_int(settings_pack::tracker_receive_timeout, 2);
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sett.set_bool(settings_pack::announce_to_all_trackers, true);
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sett.set_bool(settings_pack::announce_to_all_tiers, true);
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sett.set_bool(settings_pack::enable_upnp, false);
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sett.set_bool(settings_pack::enable_natpmp, false);
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sett.set_bool(settings_pack::enable_lsd, false);
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sett.set_bool(settings_pack::enable_dht, true);
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// since multiple sessions may exist simultaneously (because of the
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// pipelining of the tests) they actually need to use different ports
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static int listen_port = 10000 + int(lt::random(50000));
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char iface[200];
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std::snprintf(iface, sizeof(iface), "127.0.0.1:%d", listen_port);
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listen_port += lt::random(10) + 1;
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sett.set_str(settings_pack::listen_interfaces, iface);
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// if we don't do this, the peer connection test
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// will be delayed by several seconds, by first
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// trying uTP
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sett.set_bool(settings_pack::enable_outgoing_utp, false);
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// in non-anonymous mode we circumvent/ignore the proxy if it fails
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// wheras in anonymous mode, we just fail
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sett.set_str(settings_pack::proxy_hostname, "non-existing.com");
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sett.set_int(settings_pack::proxy_type, proxy_type);
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sett.set_bool(settings_pack::proxy_peer_connections, !(flags & dont_proxy_peers));
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sett.set_bool(settings_pack::proxy_tracker_connections, !(flags & dont_proxy_trackers));
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sett.set_int(settings_pack::proxy_port, 4444);
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std::unique_ptr<lt::session> s(new lt::session(sett));
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error_code ec;
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remove_all("tmp1_privacy", ec);
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create_directory("tmp1_privacy", ec);
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std::ofstream file(combine_path("tmp1_privacy", "temporary").c_str());
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std::shared_ptr<torrent_info> t = ::create_torrent(&file, "temporary", 16 * 1024, 13, false);
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file.close();
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char http_tracker_url[200];
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std::snprintf(http_tracker_url, sizeof(http_tracker_url)
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, "http://127.0.0.1:%d/announce", http_port);
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t->add_tracker(http_tracker_url, 0);
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std::printf("http tracker: %s\n", http_tracker_url);
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char udp_tracker_url[200];
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std::snprintf(udp_tracker_url, sizeof(udp_tracker_url)
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, "udp://127.0.0.1:%d/announce", udp_port);
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t->add_tracker(udp_tracker_url, 1);
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std::printf("udp tracker: %s\n", udp_tracker_url);
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add_torrent_params addp;
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addp.flags &= ~torrent_flags::paused;
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addp.flags &= ~torrent_flags::auto_managed;
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// we don't want to waste time checking the torrent, just go straight into
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// seeding it, announcing to trackers and connecting to peers
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addp.flags |= torrent_flags::seed_mode;
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addp.ti = t;
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addp.save_path = "tmp1_privacy";
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addp.dht_nodes.push_back(std::pair<std::string, int>("127.0.0.1", dht_port));
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torrent_handle h = s->add_torrent(addp);
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std::printf("connect_peer: 127.0.0.1:%d\n", peer_port);
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h.connect_peer({address_v4::from_string("127.0.0.1"), std::uint16_t(peer_port)});
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std::vector<std::string> accepted_trackers;
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const int timeout = 30;
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for (int i = 0; i < timeout; ++i)
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{
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print_alerts(*s, "s", false, false
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, [&](lt::alert const* a)
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{
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if (auto const* ta = alert_cast<tracker_reply_alert>(a))
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accepted_trackers.push_back(ta->tracker_url());
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return false;
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});
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std::this_thread::sleep_for(lt::milliseconds(100));
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if (num_udp_announces() >= prev_udp_announces + 1
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&& num_peer_hits() > 0
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&& !accepted_trackers.empty())
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break;
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}
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// we should have announced to the tracker by now
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TEST_EQUAL(num_udp_announces(), prev_udp_announces
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+ ((flags & expect_udp_connection) ? 1 : 0));
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if (flags & expect_dht_msg)
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{
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TEST_CHECK(num_dht_hits() > 0);
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}
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else
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{
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TEST_EQUAL(num_dht_hits(), 0);
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}
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if (flags & expect_peer_connection)
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{
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TEST_CHECK(num_peer_hits() > 0);
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}
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else
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{
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TEST_EQUAL(num_peer_hits(), 0);
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}
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if (flags & expect_http_connection)
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{
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TEST_CHECK(std::find(accepted_trackers.begin(), accepted_trackers.end()
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, http_tracker_url) != accepted_trackers.end());
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}
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else
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{
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TEST_CHECK(std::find(accepted_trackers.begin(), accepted_trackers.end()
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, http_tracker_url) == accepted_trackers.end());
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}
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if (flags & expect_udp_connection)
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{
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TEST_CHECK(std::find(accepted_trackers.begin(), accepted_trackers.end()
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, udp_tracker_url) != accepted_trackers.end());
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}
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else
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{
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TEST_CHECK(std::find(accepted_trackers.begin(), accepted_trackers.end()
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, udp_tracker_url) == accepted_trackers.end());
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}
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std::printf("%s: ~session\n", time_now_string());
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session_proxy pr = s->abort();
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s.reset();
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stop_peer();
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stop_dht();
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stop_udp_tracker();
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stop_web_server();
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return pr;
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}
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} // anonymous namespace
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// not using anonymous mode
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// UDP fails open if we can't connect to the proxy
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// or if the proxy doesn't support UDP
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TORRENT_TEST(no_proxy)
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{
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test_proxy(settings_pack::none, expect_udp_connection
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| expect_http_connection | expect_dht_msg | expect_peer_connection);
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}
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// since we don't actually have a proxy in this test, make sure libtorrent
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// doesn't send any outgoing packets to either tracker or the peer
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TORRENT_TEST(socks4)
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{
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test_proxy(settings_pack::socks4, {});
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}
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TORRENT_TEST(socks5)
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{
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test_proxy(settings_pack::socks5, {});
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}
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TORRENT_TEST(socks5_pw)
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{
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test_proxy(settings_pack::socks5_pw, {});
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}
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TORRENT_TEST(http)
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{
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test_proxy(settings_pack::http, {});
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}
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TORRENT_TEST(http_pw)
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{
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test_proxy(settings_pack::http_pw, {});
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}
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// if we configure trackers to not be proxied, they should be let through
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TORRENT_TEST(socks4_tracker)
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{
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test_proxy(settings_pack::socks4, dont_proxy_trackers | expect_http_connection | expect_udp_connection);
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}
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TORRENT_TEST(socks5_tracker)
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{
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test_proxy(settings_pack::socks5, dont_proxy_trackers | expect_http_connection | expect_udp_connection);
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}
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TORRENT_TEST(socks5_pw_tracker)
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{
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test_proxy(settings_pack::socks5_pw, dont_proxy_trackers | expect_http_connection | expect_udp_connection);
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}
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TORRENT_TEST(http_tracker)
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{
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test_proxy(settings_pack::http, dont_proxy_trackers | expect_http_connection | expect_udp_connection);
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}
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TORRENT_TEST(http_pw_tracker)
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{
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test_proxy(settings_pack::http_pw, dont_proxy_trackers | expect_http_connection | expect_udp_connection);
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}
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// if we configure peers to not be proxied, they should be let through
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TORRENT_TEST(socks4_peer)
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{
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test_proxy(settings_pack::socks4, dont_proxy_peers | expect_peer_connection);
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}
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TORRENT_TEST(socks5_peer)
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{
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test_proxy(settings_pack::socks5, dont_proxy_peers | expect_peer_connection);
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}
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TORRENT_TEST(socks5_pw_peer)
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{
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test_proxy(settings_pack::socks5_pw, dont_proxy_peers | expect_peer_connection);
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}
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TORRENT_TEST(http_peer)
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{
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test_proxy(settings_pack::http, dont_proxy_peers | expect_peer_connection);
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}
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TORRENT_TEST(http_pw_peer)
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{
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test_proxy(settings_pack::http_pw, dont_proxy_peers | expect_peer_connection);
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}
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#if TORRENT_USE_I2P
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TORRENT_TEST(i2p)
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{
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test_proxy(settings_pack::i2p_proxy, {});
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}
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#endif
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