mirror of
https://github.com/MaaAssistantArknights/MaaAssistantArknights.git
synced 2026-07-15 17:30:27 +08:00
236 lines
5.9 KiB
C++
236 lines
5.9 KiB
C++
#include "Assistance.h"
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#include "WinMacro.h"
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#include "Configer.h"
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#include "Identify.h"
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using namespace asst;
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Assistance::Assistance()
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{
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DebugTraceFunction;
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Configer::reload();
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m_pIder = std::make_shared<Identify>();
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for (auto&& [name, info] : Configer::m_tasks)
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{
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m_pIder->addImage(name, GetResourceDir() + info.filename);
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}
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m_pIder->setUseCache(Configer::m_options.cache);
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m_working_thread = std::thread(workingProc, this);
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}
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Assistance::~Assistance()
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{
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DebugTraceFunction;
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if (m_pWindow != nullptr) {
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m_pWindow->showWindow();
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}
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m_thread_exit = true;
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m_thread_running = false;
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m_condvar.notify_one();
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if (m_working_thread.joinable()) {
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m_working_thread.join();
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}
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}
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std::optional<std::string> Assistance::setSimulator(const std::string& simulator_name)
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{
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DebugTraceFunction;
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stop();
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auto create_handles = [&](const std::string& name) -> bool {
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m_pWindow = std::make_shared<WinMacro>(name, HandleType::Window);
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m_pView = std::make_shared<WinMacro>(name, HandleType::View);
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m_pCtrl = std::make_shared<WinMacro>(name, HandleType::Control);
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return m_pWindow->captured() && m_pView->captured() && m_pCtrl->captured();
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};
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bool ret = false;
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std::string cor_name = simulator_name;
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std::unique_lock<std::mutex> lock(m_mutex);
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if (simulator_name.empty()) {
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for (auto&& [name, value] : Configer::m_handles)
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{
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ret = create_handles(name);
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if (ret) {
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cor_name = name;
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break;
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}
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}
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}
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else {
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ret = create_handles(simulator_name);
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}
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if (ret && m_pWindow->showWindow() && m_pWindow->resizeWindow()) {
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m_inited = true;
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return cor_name;
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}
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else {
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m_inited = false;
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return std::nullopt;
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}
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}
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void Assistance::start(const std::string& task)
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{
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DebugTraceFunction;
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DebugTrace("Start |", task);
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if (m_thread_running || !m_inited) {
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return;
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}
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std::unique_lock<std::mutex> lock(m_mutex);
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Configer::clearExecTimes();
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m_pIder->clear_cache();
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m_next_tasks.clear();
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m_next_tasks.emplace_back(task);
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m_thread_running = true;
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m_condvar.notify_one();
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}
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void Assistance::stop(bool block)
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{
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DebugTraceFunction;
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DebugTrace("Stop |", block);
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std::unique_lock<std::mutex> lock;
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if (block) { // Íⲿµ÷ÓÃ
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lock = std::unique_lock<std::mutex>(m_mutex);
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Configer::clearExecTimes();
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}
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m_thread_running = false;
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m_next_tasks.clear();
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m_pIder->clear_cache();
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}
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bool Assistance::setParam(const std::string& type, const std::string& param, const std::string& value)
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{
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DebugTraceFunction;
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DebugTrace("SetParam |", type, param, value);
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return Configer::setParam(type, param, value);
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}
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std::optional<std::string> Assistance::getParam(const std::string& type, const std::string& param)
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{
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// DebugTraceFunction;
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return Configer::getParam(type, param);
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}
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void Assistance::workingProc(Assistance* pThis)
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{
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DebugTraceFunction;
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while (!pThis->m_thread_exit) {
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std::unique_lock<std::mutex> lock(pThis->m_mutex);
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if (pThis->m_thread_running) {
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auto curImg = pThis->m_pView->getImage(pThis->m_pView->getWindowRect());
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std::string matched_task;
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Rect matched_rect;
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for (auto&& task_name : pThis->m_next_tasks) {
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auto&& task = Configer::m_tasks[task_name];
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double threshold = task.threshold;
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auto&& [algorithm, value, rect] = pThis->m_pIder->findImage(curImg, task_name, threshold);
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DebugTrace(task_name, "Type:", algorithm, "Value:", value);
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if (algorithm == 0 ||
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(algorithm == 1 && value >= threshold)
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|| (algorithm == 2 && value >= task.cache_threshold)) {
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matched_task = task_name;
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matched_rect = rect;
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break;
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}
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}
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if (!matched_task.empty()) {
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auto&& task = Configer::m_tasks[matched_task];
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DebugTraceInfo("***Matched***", matched_task, "Type:", task.type);
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if (task.pre_delay > 0) {
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DebugTrace("PreDelay", task.pre_delay);
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// std::this_thread::sleep_for(std::chrono::milliseconds(task.pre_delay));
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auto cv_ret = pThis->m_condvar.wait_for(lock, std::chrono::milliseconds(task.pre_delay),
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[&]() -> bool { return !pThis->m_thread_running; });
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if (cv_ret == true) {
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continue;
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}
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}
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if (task.max_times != INT_MAX) {
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DebugTrace("CurTimes:", task.exec_times, "MaxTimes:", task.max_times);
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}
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if (task.exec_times < task.max_times) {
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switch (task.type) {
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case TaskType::ClickRect:
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matched_rect = task.specific_area;
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[[fallthrough]];
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case TaskType::ClickSelf:
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pThis->m_pCtrl->clickRange(matched_rect);
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break;
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case TaskType::ClickRand:
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pThis->m_pCtrl->clickRange(pThis->m_pCtrl->getWindowRect());
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break;
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case TaskType::DoNothing:
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break;
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case TaskType::Stop:
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DebugTrace("TaskType is Stop");
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pThis->stop(false);
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continue;
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break;
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default:
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DebugTraceError("Unknown option type:", task.type);
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break;
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}
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++task.exec_times;
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for (auto&& reduce : task.reduce_other_times) {
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--Configer::m_tasks[reduce].exec_times;
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DebugTrace("Reduce exec times", reduce, Configer::m_tasks[reduce].exec_times);
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}
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if (task.rear_delay > 0) {
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DebugTrace("RearDelay", task.rear_delay);
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// std::this_thread::sleep_for(std::chrono::milliseconds(task.rear_delay));
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auto cv_ret = pThis->m_condvar.wait_for(lock, std::chrono::milliseconds(task.rear_delay),
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[&]() -> bool { return !pThis->m_thread_running; });
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if (cv_ret == true) {
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continue;
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}
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}
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pThis->m_next_tasks = Configer::m_tasks[matched_task].next;
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}
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else {
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DebugTraceInfo("Reached limit");
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pThis->m_next_tasks = Configer::m_tasks[matched_task].exceeded_next;
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}
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std::string nexts_str;
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for (auto&& name : pThis->m_next_tasks) {
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nexts_str += name + ",";
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}
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if (nexts_str.back() == ',') {
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nexts_str.pop_back();
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}
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DebugTrace("Next:", nexts_str);
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}
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pThis->m_condvar.wait_for(lock,
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std::chrono::milliseconds(Configer::m_options.delayFixedTime),
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[&]() -> bool { return !pThis->m_thread_running; });
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}
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else {
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pThis->m_condvar.wait(lock);
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}
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}
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}
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