283 lines
7.5 KiB
C++
283 lines
7.5 KiB
C++
// This file Copyright © 2007-2022 Mnemosyne LLC.
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// It may be used under GPLv2 (SPDX: GPL-2.0-only), GPLv3 (SPDX: GPL-3.0-only),
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// or any future license endorsed by Mnemosyne LLC.
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// License text can be found in the licenses/ folder.
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#include <algorithm>
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#include <ctime>
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#include <mutex>
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#include <optional>
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#include <set>
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#include <thread>
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#include <vector>
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#include <fmt/core.h>
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#include "transmission.h"
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#include "completion.h"
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#include "crypto-utils.h"
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#include "file.h"
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#include "log.h"
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#include "torrent.h"
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#include "tr-assert.h"
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#include "utils.h" // tr_time(), tr_wait_msec()
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#include "verify.h"
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namespace
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{
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auto constexpr MsecToSleepPerSecondDuringVerify = int{ 100 };
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}
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int tr_verify_worker::Node::compare(tr_verify_worker::Node const& that) const
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{
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// higher priority comes before lower priority
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auto const pa = tr_torrentGetPriority(torrent);
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auto const pb = tr_torrentGetPriority(that.torrent);
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if (pa != pb)
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{
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return pa > pb ? -1 : 1;
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}
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// smaller torrents come before larger ones because they verify faster
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if (current_size != that.current_size)
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{
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return current_size < that.current_size ? -1 : 1;
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}
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// tertiary compare just to ensure they don't compare equal
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if (torrent->id() != that.torrent->id())
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{
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return torrent->id() < that.torrent->id() ? -1 : 1;
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}
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return 0;
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}
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bool tr_verify_worker::verifyTorrent(tr_torrent* tor, std::atomic<bool>& stop_flag)
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{
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auto const begin = tr_time();
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tr_sys_file_t fd = TR_BAD_SYS_FILE;
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uint64_t file_pos = 0;
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bool changed = false;
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bool had_piece = false;
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time_t last_slept_at = 0;
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uint32_t piece_pos = 0;
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tr_file_index_t file_index = 0;
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tr_file_index_t prev_file_index = ~file_index;
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tr_piece_index_t piece = 0;
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auto buffer = std::vector<std::byte>(1024 * 256);
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auto sha = tr_sha1::create();
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tr_logAddDebugTor(tor, "verifying torrent...");
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while (!stop_flag && piece < tor->pieceCount())
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{
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auto const file_length = tor->fileSize(file_index);
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/* if we're starting a new piece... */
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if (piece_pos == 0)
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{
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had_piece = tor->hasPiece(piece);
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}
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/* if we're starting a new file... */
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if (file_pos == 0 && fd == TR_BAD_SYS_FILE && file_index != prev_file_index)
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{
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auto const found = tor->findFile(file_index);
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fd = !found ? TR_BAD_SYS_FILE : tr_sys_file_open(found->filename(), TR_SYS_FILE_READ | TR_SYS_FILE_SEQUENTIAL, 0);
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prev_file_index = file_index;
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}
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/* figure out how much we can read this pass */
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uint64_t left_in_piece = tor->pieceSize(piece) - piece_pos;
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uint64_t left_in_file = file_length - file_pos;
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uint64_t bytes_this_pass = std::min(left_in_file, left_in_piece);
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bytes_this_pass = std::min(bytes_this_pass, uint64_t(std::size(buffer)));
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/* read a bit */
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if (fd != TR_BAD_SYS_FILE)
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{
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auto num_read = uint64_t{};
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if (tr_sys_file_read_at(fd, std::data(buffer), bytes_this_pass, file_pos, &num_read) && num_read > 0)
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{
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bytes_this_pass = num_read;
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sha->add(std::data(buffer), bytes_this_pass);
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tr_sys_file_advise(fd, file_pos, bytes_this_pass, TR_SYS_FILE_ADVICE_DONT_NEED);
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}
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}
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/* move our offsets */
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left_in_piece -= bytes_this_pass;
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left_in_file -= bytes_this_pass;
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piece_pos += bytes_this_pass;
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file_pos += bytes_this_pass;
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/* if we're finishing a piece... */
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if (left_in_piece == 0)
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{
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auto const has_piece = sha->finish() == tor->pieceHash(piece);
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if (has_piece || had_piece)
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{
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tor->setHasPiece(piece, has_piece);
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changed |= has_piece != had_piece;
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}
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tor->checked_pieces_.set(piece, true);
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tor->markChanged();
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/* sleeping even just a few msec per second goes a long
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* way towards reducing IO load... */
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if (auto const now = tr_time(); last_slept_at != now)
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{
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last_slept_at = now;
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tr_wait_msec(MsecToSleepPerSecondDuringVerify);
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}
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sha->clear();
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++piece;
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tor->setVerifyProgress(piece / float(tor->pieceCount()));
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piece_pos = 0;
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}
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/* if we're finishing a file... */
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if (left_in_file == 0)
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{
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if (fd != TR_BAD_SYS_FILE)
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{
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tr_sys_file_close(fd);
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fd = TR_BAD_SYS_FILE;
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}
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++file_index;
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file_pos = 0;
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}
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}
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/* cleanup */
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if (fd != TR_BAD_SYS_FILE)
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{
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tr_sys_file_close(fd);
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}
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/* stopwatch */
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time_t const end = tr_time();
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tr_logAddDebugTor(
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tor,
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fmt::format(
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"Verification is done. It took {} seconds to verify {} bytes ({} bytes per second)",
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end - begin,
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tor->totalSize(),
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tor->totalSize() / (1 + (end - begin))));
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return changed;
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}
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void tr_verify_worker::verifyThreadFunc()
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{
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for (;;)
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{
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{
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auto const lock = std::lock_guard(verify_mutex_);
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if (stop_current_)
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{
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stop_current_ = false;
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stop_current_cv_.notify_one();
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}
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if (std::empty(todo_))
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{
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current_node_.reset();
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verify_thread_id_.reset();
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return;
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}
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auto const it = std::begin(todo_);
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current_node_ = *it;
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todo_.erase(it);
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}
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auto* const tor = current_node_->torrent;
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tr_logAddTraceTor(tor, "Verifying torrent");
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tor->setVerifyState(TR_VERIFY_NOW);
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auto const changed = verifyTorrent(tor, stop_current_);
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tor->setVerifyState(TR_VERIFY_NONE);
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TR_ASSERT(tr_isTorrent(tor));
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if (!stop_current_ && changed)
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{
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tor->setDirty();
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}
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callCallback(tor, stop_current_);
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}
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}
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void tr_verify_worker::add(tr_torrent* tor)
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{
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TR_ASSERT(tr_isTorrent(tor));
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tr_logAddTraceTor(tor, "Queued for verification");
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auto node = Node{};
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node.torrent = tor;
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node.current_size = tor->hasTotal();
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auto const lock = std::lock_guard(verify_mutex_);
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tor->setVerifyState(TR_VERIFY_WAIT);
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todo_.insert(node);
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if (!verify_thread_id_)
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{
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auto thread = std::thread(&tr_verify_worker::verifyThreadFunc, this);
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verify_thread_id_ = thread.get_id();
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thread.detach();
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}
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}
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void tr_verify_worker::remove(tr_torrent* tor)
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{
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TR_ASSERT(tr_isTorrent(tor));
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auto lock = std::unique_lock(verify_mutex_);
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if (current_node_ && current_node_->torrent == tor)
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{
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stop_current_ = true;
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stop_current_cv_.wait(lock, [this]() { return !stop_current_; });
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}
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else
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{
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auto const iter = std::find_if(
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std::begin(todo_),
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std::end(todo_),
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[tor](auto const& task) { return tor == task.torrent; });
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tor->setVerifyState(TR_VERIFY_NONE);
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if (iter != std::end(todo_))
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{
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callCallback(tor, true);
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todo_.erase(iter);
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}
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}
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}
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tr_verify_worker::~tr_verify_worker()
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{
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{
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auto const lock = std::lock_guard(verify_mutex_);
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stop_current_ = true;
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todo_.clear();
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}
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while (verify_thread_id_.has_value())
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{
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tr_wait_msec(20);
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}
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}
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