forked from premiere/premiere-libtorrent
236 lines
6.0 KiB
C++
236 lines
6.0 KiB
C++
#include <fstream>
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#include <sstream>
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#include "libtorrent/session.hpp"
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#include "libtorrent/hasher.hpp"
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#include <boost/thread.hpp>
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#include <boost/tuple/tuple.hpp>
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#include <boost/filesystem/operations.hpp>
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#include <boost/filesystem/convenience.hpp>
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#include "test.hpp"
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#include "libtorrent/assert.hpp"
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#include "libtorrent/alert_types.hpp"
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using boost::filesystem::remove_all;
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using boost::filesystem::create_directory;
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using namespace libtorrent;
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void print_alerts(libtorrent::session& ses, char const* name, bool allow_disconnects, bool allow_no_torrents)
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{
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std::vector<torrent_handle> handles = ses.get_torrents();
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TEST_CHECK(!handles.empty() || allow_no_torrents);
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torrent_handle h;
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if (!handles.empty()) h = handles[0];
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std::auto_ptr<alert> a;
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a = ses.pop_alert();
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while (a.get())
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{
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std::cerr << name << ": " << a->msg() << "\n";
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TEST_CHECK(dynamic_cast<peer_error_alert*>(a.get()) == 0
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|| (!handles.empty() && h.is_seed())
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|| a->msg() == "connecting to peer"
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|| a->msg() == "closing connection to ourself"
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|| a->msg() == "duplicate connection"
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|| (allow_disconnects && a->msg() == "End of file."));
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a = ses.pop_alert();
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}
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}
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void test_sleep(int millisec)
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{
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boost::xtime xt;
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boost::xtime_get(&xt, boost::TIME_UTC);
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boost::uint64_t nanosec = (millisec % 1000) * 1000000 + xt.nsec;
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int sec = millisec / 1000;
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if (nanosec > 1000000000)
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{
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nanosec -= 1000000000;
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sec++;
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}
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xt.nsec = nanosec;
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xt.sec += sec;
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boost::thread::sleep(xt);
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}
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void stop_web_server(int port)
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{
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std::stringstream cmd;
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cmd << "kill `cat ./lighty" << port << ".pid` >/dev/null";
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system(cmd.str().c_str());
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}
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void start_web_server(int port)
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{
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stop_web_server(port);
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std::ofstream f("./lighty_config");
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f << "server.modules = (\"mod_access\")\n"
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"server.document-root = \"" << boost::filesystem::initial_path().string() << "\"\n"
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"server.range-requests = \"enable\"\n"
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"server.port = " << port << "\n"
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"server.pid-file = \"./lighty" << port << ".pid\"\n";
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f.close();
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system("lighttpd -f lighty_config &");
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test_sleep(1000);
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}
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void stop_proxy(int port)
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{
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std::stringstream cmd;
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cmd << "delegated -P" << port << " -Fkill";
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system(cmd.str().c_str());
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}
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void start_proxy(int port, int proxy_type)
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{
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using namespace libtorrent;
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stop_proxy(port);
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std::stringstream cmd;
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// we need to echo n since dg will ask us to configure it
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cmd << "echo n | delegated -P" << port << " ADMIN=test@test.com";
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switch (proxy_type)
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{
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case proxy_settings::socks4:
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cmd << " SERVER=socks4";
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break;
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case proxy_settings::socks5:
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cmd << " SERVER=socks5";
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break;
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case proxy_settings::socks5_pw:
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cmd << " SERVER=socks5 AUTHORIZER=-list{testuser:testpass}";
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break;
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case proxy_settings::http:
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cmd << " SERVER=http";
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break;
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case proxy_settings::http_pw:
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cmd << " SERVER=http AUTHORIZER=-list{testuser:testpass}";
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break;
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}
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system(cmd.str().c_str());
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}
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using namespace libtorrent;
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template <class T>
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boost::intrusive_ptr<T> clone_ptr(boost::intrusive_ptr<T> const& ptr)
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{
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return boost::intrusive_ptr<T>(new T(*ptr));
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}
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boost::intrusive_ptr<torrent_info> create_torrent(std::ostream* file)
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{
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char const* tracker_url = "http://non-existent-name.com/announce";
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using namespace boost::filesystem;
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boost::intrusive_ptr<torrent_info> t(new torrent_info);
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int total_size = 2 * 1024 * 1024;
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t->add_file(path("temporary"), total_size);
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t->set_piece_size(16 * 1024);
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t->add_tracker(tracker_url);
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std::vector<char> piece(16 * 1024);
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for (int i = 0; i < int(piece.size()); ++i)
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piece[i] = (i % 26) + 'A';
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// calculate the hash for all pieces
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int num = t->num_pieces();
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sha1_hash ph = hasher(&piece[0], piece.size()).final();
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for (int i = 0; i < num; ++i)
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t->set_hash(i, ph);
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t->create_torrent();
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if (file)
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{
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while (total_size > 0)
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{
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file->write(&piece[0], (std::min)(int(piece.size()), total_size));
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total_size -= piece.size();
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}
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}
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return t;
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}
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boost::tuple<torrent_handle, torrent_handle, torrent_handle>
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setup_transfer(session* ses1, session* ses2, session* ses3
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, bool clear_files, bool use_metadata_transfer, bool connect_peers
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, std::string suffix)
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{
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using namespace boost::filesystem;
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assert(ses1);
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assert(ses2);
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assert(ses1->id() != ses2->id());
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if (ses3)
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assert(ses3->id() != ses2->id());
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create_directory("./tmp1" + suffix);
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std::ofstream file(("./tmp1" + suffix + "/temporary").c_str());
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boost::intrusive_ptr<torrent_info> t = create_torrent(&file);
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file.close();
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if (clear_files)
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{
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remove_all("./tmp2" + suffix + "/temporary");
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remove_all("./tmp3" + suffix + "/temporary");
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}
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std::cerr << "generated torrent: " << t->info_hash() << std::endl;
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ses1->set_severity_level(alert::debug);
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ses2->set_severity_level(alert::debug);
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// they should not use the same save dir, because the
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// file pool will complain if two torrents are trying to
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// use the same files
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sha1_hash info_hash = t->info_hash();
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torrent_handle tor1 = ses1->add_torrent(clone_ptr(t), "./tmp1" + suffix);
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TEST_CHECK(!ses1->get_torrents().empty());
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torrent_handle tor2;
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torrent_handle tor3;
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if (ses3)
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{
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tor3 = ses3->add_torrent(clone_ptr(t), "./tmp3" + suffix);
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TEST_CHECK(!ses3->get_torrents().empty());
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}
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if (use_metadata_transfer)
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tor2 = ses2->add_torrent("http://non-existent-name.com/announce"
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, t->info_hash(), 0, "./tmp2" + suffix);
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else
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tor2 = ses2->add_torrent(clone_ptr(t), "./tmp2" + suffix);
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TEST_CHECK(!ses2->get_torrents().empty());
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assert(ses1->get_torrents().size() == 1);
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assert(ses2->get_torrents().size() == 1);
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test_sleep(100);
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if (connect_peers)
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{
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std::cerr << "connecting peer\n";
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tor1.connect_peer(tcp::endpoint(address::from_string("127.0.0.1")
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, ses2->listen_port()));
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if (ses3)
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{
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// give the other peers some time to get an initial
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// set of pieces before they start sharing with each-other
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tor3.connect_peer(tcp::endpoint(
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address::from_string("127.0.0.1")
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, ses2->listen_port()));
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tor3.connect_peer(tcp::endpoint(
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address::from_string("127.0.0.1")
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, ses1->listen_port()));
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}
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}
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return boost::make_tuple(tor1, tor2, tor3);
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}
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