XNSim/XNCore/XNTimeManager.cpp
2025-04-28 12:25:20 +08:00

173 lines
4.0 KiB
C++
Executable File

/**
* @file XNTimeManager.cpp
* @author jinchao
* @brief 时间管理器类源文件
* @version 1.0
* @date 2024-11-07
*
* @copyright Copyright (c) 2024 XN
*
*/
#include "XNTimeManager.h"
#include "XNTimeManager_p.h"
#include "XNDDSManager.h"
#include "XNThreadManager.h"
#include "XNIDL/XNSimStatusPubSubTypes.hpp"
typedef std::shared_ptr<XNThread> XNThreadPtr;
XNTimeManager::XNTimeManager(QObject *parent)
: XNBaseFrameObject(*new XNTimeManagerPrivate(this), parent)
{
setUniqueId(2);
setObjectName("XNTimeManager");
}
XNTimeManager::~XNTimeManager()
{
}
XNTimeManager::XNTimeManager(XNTimeManagerPrivate &dd, QObject *parent)
: XNBaseFrameObject(dd, parent)
{
}
QDateTime XNTimeManager::GetSimTime()
{
Q_D(XNTimeManager);
pthread_mutex_lock(&(d->_mtx));
QDateTime sSimTime = d->_SimTime;
pthread_mutex_unlock(&(d->_mtx));
return sSimTime;
}
void XNTimeManager::OnSetStartTime(const timespec &simTime)
{
Q_D(XNTimeManager);
d->_SimStartTime = QDateTime::fromSecsSinceEpoch(simTime.tv_sec);
d->_SimStartTime = d->_SimStartTime.addMSecs(simTime.tv_nsec / 1000000.0);
//d->_TimeManagerThread->OnSetStartTime(simTime);
//d->_TimeManagerThread->Initialize();
}
void XNTimeManager::OnStart()
{
Q_D(XNTimeManager);
if (d->_eRunStatus == RunStatus::NotStart) {
LOG_INFO("XNSim Start!");
d->_eRunStatus = RunStatus::Runing;
} else {
LOG_WARNING("XNSim Already Start!");
}
}
void XNTimeManager::OnAbort()
{
Q_D(XNTimeManager);
if (d->_eRunStatus != RunStatus::Aborted) {
LOG_INFO("XNSim Abort!");
d->_eRunStatus = RunStatus::Aborted;
} else {
LOG_WARNING("XNSim Already Abort!");
}
}
void XNTimeManager::OnPause()
{
Q_D(XNTimeManager);
if (d->_eRunStatus == RunStatus::Runing) {
LOG_INFO("XNSim Pause!");
d->_eRunStatus = RunStatus::Suspend;
} else {
LOG_WARNING("XNSim is not in Runing status!");
}
}
void XNTimeManager::OnContinue()
{
Q_D(XNTimeManager);
if (d->_eRunStatus == RunStatus::Suspend) {
LOG_INFO("XNSim Continue!");
d->_eRunStatus = RunStatus::Runing;
} else {
LOG_WARNING("XNSim is not in Pause status!");
}
}
RunStatus XNTimeManager::GetStatus()
{
Q_D(XNTimeManager);
return d->_eRunStatus;
}
void XNTimeManager::OnSimControl(quint32 objectId, SimControlCmd cmd)
{
if (objectId == 0) {
switch (cmd) {
case SimControlCmd::Start:
OnStart();
break;
case SimControlCmd::Abort:
OnAbort();
break;
case SimControlCmd::Continue:
OnContinue();
break;
case SimControlCmd::Suspend:
OnPause();
break;
}
}
emit SimControl(objectId, cmd);
}
void XNTimeManager::OnInitialize()
{
Q_D(XNTimeManager);
// 初始化锁
pthread_mutex_init(&(d->_mtx), NULL);
// 时间管理器线程初始化
// XNThreadManager *threadManager = parent()->findChild<XNThreadManager *>("XNThreadManager");
// if (threadManager) {
// double dRunInter = threadManager->GetBaseInter() * 32;
// d->_TimeManagerThread =
// new XNThread(this, "TimeManagerThread", FreqLevel::ThirtyTwothFreq, 10, 0, dRunInter);
// } else {
// d->_status = XNFrameObjectStatus::Unknown;
// LOG_ERROR("XNTimeManager Initialize Failed!");
// return;
// }
// d->_TimeManagerThread->AddFunction(std::bind(&XNTimeManager::StepExecute, this),
// FreqLevel::ThirtyTwothFreq, 0, 90);
// connect(this, &XNTimeManager::SimControl, d->_TimeManagerThread, &XNThread::OnSimControl);
// 运行状态初始化
d->_eRunStatus = RunStatus::NotStart; //d->_TimeManagerThread->GetRunStatus();
// 仿真时间初始化
d->_SimTime = d->_SimStartTime;
LOG_INFO("XNTimeManager Initialize Success!");
d->_status = XNFrameObjectStatus::Initialized;
emit Initialize();
}
void XNTimeManager::OnPrepareForExecute()
{
Q_D(XNTimeManager);
d->_status = XNFrameObjectStatus::Ready;
LOG_INFO("XNTimeManager is prepared!");
emit PrepareForExecute();
}
void XNTimeManager::StepExecute()
{
Q_D(XNTimeManager);
// TODO 提交事件
// 时间推进
pthread_mutex_lock(&(d->_mtx));
d->_SimTime = d->_SimTime.addMSecs(BASE_RUN_INTER * 1.0E6);
pthread_mutex_unlock(&(d->_mtx));
}