/* Copyright (c) 2013, Arvid Norberg All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: * Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. * Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. * Neither the name of the author nor the names of its contributors may be used to endorse or promote products derived from this software without specific prior written permission. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include // for chmod #include "libtorrent/session.hpp" #include "test.hpp" #include "settings.hpp" #include "setup_transfer.hpp" #include "test_utils.hpp" #include "libtorrent/create_torrent.hpp" #include "libtorrent/alert_types.hpp" #include "libtorrent/torrent_info.hpp" #include "libtorrent/torrent_status.hpp" #include "libtorrent/hex.hpp" // to_hex #include "libtorrent/aux_/path.hpp" namespace { namespace { bool is_checking(int const state) { return state == lt::torrent_status::checking_files #if TORRENT_ABI_VERSION == 1 || state == lt::torrent_status::queued_for_checking #endif || state == lt::torrent_status::checking_resume_data; } } enum { // make sure we don't accidentally require files to be writable just to // check their hashes read_only_files = 1, // make sure we detect corrupt files and mark the appropriate pieces // as not had corrupt_files = 2, incomplete_files = 4, // make the files not be there when starting up, move the files in place and // force-recheck. Make sure the stat cache is cleared and let us pick up the // new files force_recheck = 8, }; void test_checking(int flags) { using namespace lt; std::printf("\n==== TEST CHECKING %s%s%s%s=====\n\n" , (flags & read_only_files) ? "read-only-files ":"" , (flags & corrupt_files) ? "corrupt ":"" , (flags & incomplete_files) ? "incomplete ":"" , (flags & force_recheck) ? "force_recheck ":""); error_code ec; create_directory("test_torrent_dir", ec); if (ec) fprintf(stdout, "ERROR: creating directory test_torrent_dir: (%d) %s\n" , ec.value(), ec.message().c_str()); file_storage fs; std::srand(10); int piece_size = 0x4000; static std::array const file_sizes {{ 0, 5, 16 - 5, 16000, 17, 10, 8000, 8000, 1,1,1,1,1,100,1,1,1,1,100,1,1,1,1,1,1 ,1,1,1,1,1,1,13,65000,34,75,2,30,400,500,23000,900,43000,400,4300,6, 4 }}; create_random_files("test_torrent_dir", file_sizes, &fs); lt::create_torrent t(fs, piece_size, 0x4000 , lt::create_torrent::optimize_alignment); // calculate the hash for all pieces set_piece_hashes(t, ".", ec); if (ec) std::printf("ERROR: set_piece_hashes: (%d) %s\n" , ec.value(), ec.message().c_str()); std::vector buf; bencode(std::back_inserter(buf), t.generate()); auto ti = std::make_shared(buf, ec, from_span); std::printf("generated torrent: %s test_torrent_dir\n" , aux::to_hex(ti->info_hash()).c_str()); // truncate every file in half if (flags & incomplete_files) { for (std::size_t i = 0; i < file_sizes.size(); ++i) { char name[1024]; std::snprintf(name, sizeof(name), "test%d", int(i)); char dirname[200]; std::snprintf(dirname, sizeof(dirname), "test_dir%d", int(i) / 5); std::string path = combine_path("test_torrent_dir", dirname); path = combine_path(path, name); file f(path, open_mode::read_write, ec); if (ec) std::printf("ERROR: opening file \"%s\": (%d) %s\n" , path.c_str(), ec.value(), ec.message().c_str()); f.set_size(file_sizes[i] / 2, ec); if (ec) std::printf("ERROR: truncating file \"%s\": (%d) %s\n" , path.c_str(), ec.value(), ec.message().c_str()); } } // overwrite the files with new random data if (flags & corrupt_files) { std::printf("corrupt file test. overwriting files\n"); // increase the size of some files. When they're read only that forces // the checker to open them in write-mode to truncate them static std::array const file_sizes2 {{ 0, 5, 16 - 5, 16001, 30, 10, 8000, 8000, 1,1,1,1,1,100,1,1,1,1,100,1,1,1,1,1,1 ,1,1,1,1,1,1,13,65000,34,75,2,30,400,500,23000,900,43000,400,4300,6, 4}}; create_random_files("test_torrent_dir", file_sizes2); } // make the files read only if (flags & read_only_files) { std::printf("making files read-only\n"); for (std::size_t i = 0; i < file_sizes.size(); ++i) { char name[1024]; std::snprintf(name, sizeof(name), "test%d", int(i)); char dirname[200]; std::snprintf(dirname, sizeof(dirname), "test_dir%d", int(i) / 5); std::string path = combine_path("test_torrent_dir", dirname); path = combine_path(path, name); std::printf(" %s\n", path.c_str()); #ifdef TORRENT_WINDOWS SetFileAttributesA(path.c_str(), FILE_ATTRIBUTE_READONLY); #else chmod(path.c_str(), S_IRUSR); #endif } } if (flags & force_recheck) { remove_all("test_torrent_dir_tmp", ec); if (ec) std::printf("ERROR: removing \"test_torrent_dir_tmp\": (%d) %s\n" , ec.value(), ec.message().c_str()); rename("test_torrent_dir", "test_torrent_dir_tmp", ec); if (ec) std::printf("ERROR: renaming dir \"test_torrent_dir\": (%d) %s\n" , ec.value(), ec.message().c_str()); } lt::session ses1(settings()); add_torrent_params p; p.save_path = "."; p.ti = ti; torrent_handle tor1 = ses1.add_torrent(p, ec); TEST_CHECK(!ec); if (flags & force_recheck) { // first make sure the session tries to check for the file and can't find // them libtorrent::alert const* a = wait_for_alert( ses1, torrent_checked_alert::alert_type, "checking"); TEST_CHECK(a); // now, move back the files and force-recheck. make sure we pick up the // files this time remove_all("test_torrent_dir", ec); if (ec) fprintf(stdout, "ERROR: removing \"test_torrent_dir\": (%d) %s\n" , ec.value(), ec.message().c_str()); rename("test_torrent_dir_tmp", "test_torrent_dir", ec); if (ec) fprintf(stdout, "ERROR: renaming dir \"test_torrent_dir_tmp\": (%d) %s\n" , ec.value(), ec.message().c_str()); tor1.force_recheck(); } torrent_status st; for (int i = 0; i < 20; ++i) { print_alerts(ses1, "ses1"); st = tor1.status(); std::printf("%d %f %s\n", st.state, st.progress_ppm / 10000.0, st.errc.message().c_str()); if (!is_checking(st.state) || st.errc) break; std::this_thread::sleep_for(lt::milliseconds(500)); } if (flags & incomplete_files) { TEST_CHECK(!st.is_seeding); std::this_thread::sleep_for(lt::milliseconds(500)); st = tor1.status(); TEST_CHECK(!st.is_seeding); } if (flags & corrupt_files) { TEST_CHECK(!st.is_seeding); TEST_CHECK(!st.errc); if (st.errc) std::printf("error: %s\n", st.errc.message().c_str()); } if ((flags & (incomplete_files | corrupt_files)) == 0) { TEST_CHECK(st.is_seeding); if (st.errc) std::printf("error: %s\n", st.errc.message().c_str()); } // make the files writable again if (flags & read_only_files) { for (std::size_t i = 0; i < file_sizes.size(); ++i) { char name[1024]; std::snprintf(name, sizeof(name), "test%d", int(i)); char dirname[200]; std::snprintf(dirname, sizeof(dirname), "test_dir%d", int(i) / 5); std::string path = combine_path("test_torrent_dir", dirname); path = combine_path(path, name); #ifdef TORRENT_WINDOWS SetFileAttributesA(path.c_str(), FILE_ATTRIBUTE_NORMAL); #else chmod(path.c_str(), S_IRUSR | S_IWUSR); #endif } } remove_all("test_torrent_dir", ec); if (ec) std::printf("ERROR: removing test_torrent_dir: (%d) %s\n" , ec.value(), ec.message().c_str()); } } // anonymous namespace TORRENT_TEST(checking) { test_checking(0); } TORRENT_TEST(read_only_corrupt) { test_checking(read_only_files | corrupt_files); } TORRENT_TEST(read_only) { test_checking(read_only_files); } TORRENT_TEST(incomplete) { test_checking(incomplete_files); } TORRENT_TEST(corrupt) { test_checking(corrupt_files); } TORRENT_TEST(force_recheck) { test_checking(force_recheck); } TORRENT_TEST(discrete_checking) { using namespace lt; printf("\n==== TEST CHECKING discrete =====\n\n"); error_code ec; create_directory("test_torrent_dir", ec); if (ec) printf("ERROR: creating directory test_torrent_dir: (%d) %s\n", ec.value(), ec.message().c_str()); int const megabyte = 0x100000; int const piece_size = 2 * megabyte; static std::array const file_sizes{{ 9 * megabyte, 3 * megabyte }}; file_storage fs; create_random_files("test_torrent_dir", file_sizes, &fs); TEST_EQUAL(fs.num_files(), 2); lt::create_torrent t(fs, piece_size, 1, lt::create_torrent::optimize_alignment); set_piece_hashes(t, ".", ec); if (ec) printf("ERROR: set_piece_hashes: (%d) %s\n", ec.value(), ec.message().c_str()); std::vector buf; bencode(std::back_inserter(buf), t.generate()); auto ti = std::make_shared(buf, ec, from_span); printf("generated torrent: %s test_torrent_dir\n", aux::to_hex(ti->info_hash().to_string()).c_str()); // we have two files, but there's a padfile now too TEST_EQUAL(ti->num_files(), 3); { session ses1(settings()); add_torrent_params p; p.file_priorities.resize(std::size_t(ti->num_files())); p.file_priorities[0] = 1_pri; p.save_path = "."; p.ti = ti; torrent_handle tor1 = ses1.add_torrent(p, ec); // change the priority of a file while checking and make sure it doesn't interrupt the checking. std::vector prio(std::size_t(ti->num_files()), 0_pri); prio[2] = 1_pri; tor1.prioritize_files(prio); TEST_CHECK(wait_for_alert(ses1, torrent_checked_alert::alert_type , "torrent checked", pop_alerts::pop_all, seconds(50))); TEST_CHECK(tor1.status({}).is_seeding); } remove_all("test_torrent_dir", ec); if (ec) fprintf(stdout, "ERROR: removing test_torrent_dir: (%d) %s\n", ec.value(), ec.message().c_str()); }