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https://port.numenaute.org/aleajactaest/khanat-opennel-code.git
synced 2024-12-29 20:30:54 +00:00
Changed: #865 make the mutex working on Linux
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parent
3b33efae5c
commit
86eb5705d9
4 changed files with 15 additions and 15 deletions
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@ -611,13 +611,13 @@ public:
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CAccessor(CUnfairSynchronized<T> *cs)
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CAccessor(CUnfairSynchronized<T> *cs)
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{
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{
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Synchronized = cs;
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Synchronized = cs;
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const_cast<CMutex&>(Synchronized->_Mutex).enter();
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const_cast<CUnfairMutex&>(Synchronized->_Mutex).enter();
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}
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}
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/// release the mutex
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/// release the mutex
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~CAccessor()
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~CAccessor()
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{
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{
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const_cast<CMutex&>(Synchronized->_Mutex).leave();
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const_cast<CUnfairMutex&>(Synchronized->_Mutex).leave();
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}
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}
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/// access to the Value
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/// access to the Value
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@ -140,7 +140,7 @@ protected:
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/// queue of tasks, using list container instead of queue for DeleteTask methode
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/// queue of tasks, using list container instead of queue for DeleteTask methode
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CSynchronized<std::string> _RunningTask;
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CSynchronized<std::string> _RunningTask;
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CSynchronized<std::list<CWaitingTask> > _TaskQueue;
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CUnfairSynchronized<std::list<CWaitingTask> > _TaskQueue;
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CSynchronized<std::deque<std::string> > _DoneTaskQueue;
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CSynchronized<std::deque<std::string> > _DoneTaskQueue;
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/// thread pointer
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/// thread pointer
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@ -67,7 +67,7 @@ void CAsyncFileManager::addLoadTask(IRunnable *ploadTask)
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bool CAsyncFileManager::cancelLoadTask(const CAsyncFileManager::ICancelCallback &callback)
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bool CAsyncFileManager::cancelLoadTask(const CAsyncFileManager::ICancelCallback &callback)
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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list<CWaitingTask> &rTaskQueue = acces.value ();
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list<CWaitingTask> &rTaskQueue = acces.value ();
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list<CWaitingTask>::iterator it = rTaskQueue.begin();
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list<CWaitingTask>::iterator it = rTaskQueue.begin();
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@ -87,7 +87,7 @@ bool CAsyncFileManager::cancelLoadTask(const CAsyncFileManager::ICancelCallback
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}
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}
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// If not found, the current running task may be the one we want to cancel. Must wait it.
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// If not found, the current running task may be the one we want to cancel. Must wait it.
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// Beware that this code works because of the CSynchronized access we made above (ensure that the
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// Beware that this code works because of the CUnfairSynchronized access we made above (ensure that the
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// taskmanager will end just the current task async (if any) and won't start an other one.
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// taskmanager will end just the current task async (if any) and won't start an other one.
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waitCurrentTaskToComplete ();
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waitCurrentTaskToComplete ();
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@ -105,7 +105,7 @@ void CAsyncFileManager::loadMesh(const std::string& meshName, IShape **ppShp, ID
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/*
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/*
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bool CAsyncFileManager::cancelLoadMesh(const std::string& sMeshName)
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bool CAsyncFileManager::cancelLoadMesh(const std::string& sMeshName)
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{
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{
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CSynchronized<list<IRunnable *> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<IRunnable *> >::CAccessor acces(&_TaskQueue);
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list<IRunnable*> &rTaskQueue = acces.value ();
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list<IRunnable*> &rTaskQueue = acces.value ();
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list<IRunnable*>::iterator it = rTaskQueue.begin();
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list<IRunnable*>::iterator it = rTaskQueue.begin();
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@ -167,7 +167,7 @@ void CAsyncFileManager::signal (bool *pSgn)
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void CAsyncFileManager::cancelSignal (bool *pSgn)
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void CAsyncFileManager::cancelSignal (bool *pSgn)
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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list<CWaitingTask> &rTaskQueue = acces.value ();
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list<CWaitingTask> &rTaskQueue = acces.value ();
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list<CWaitingTask>::iterator it = rTaskQueue.begin();
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list<CWaitingTask>::iterator it = rTaskQueue.begin();
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@ -49,7 +49,7 @@ CTaskManager::~CTaskManager()
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nlSleep(10);
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nlSleep(10);
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// There should be no remaining Tasks
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// There should be no remaining Tasks
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CSynchronized<std::list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<std::list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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nlassert(acces.value().empty());
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nlassert(acces.value().empty());
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_Thread->wait();
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_Thread->wait();
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delete _Thread;
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delete _Thread;
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@ -65,7 +65,7 @@ void CTaskManager::run(void)
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while(_ThreadRunning)
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while(_ThreadRunning)
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{
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{
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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if(acces.value().empty())
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if(acces.value().empty())
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{
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{
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runnableTask = NULL;
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runnableTask = NULL;
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@ -126,14 +126,14 @@ void CTaskManager::run(void)
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// Add a task to TaskManager
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// Add a task to TaskManager
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void CTaskManager::addTask(IRunnable *r, float priority)
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void CTaskManager::addTask(IRunnable *r, float priority)
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{
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{
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CSynchronized<std::list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<std::list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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acces.value().push_back(CWaitingTask(r, priority));
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acces.value().push_back(CWaitingTask(r, priority));
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}
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}
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/// Delete a task, only if task is not running, return true if found and deleted
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/// Delete a task, only if task is not running, return true if found and deleted
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bool CTaskManager::deleteTask(IRunnable *r)
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bool CTaskManager::deleteTask(IRunnable *r)
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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for(list<CWaitingTask>::iterator it = acces.value().begin(); it != acces.value().end(); it++)
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for(list<CWaitingTask>::iterator it = acces.value().begin(); it != acces.value().end(); it++)
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{
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{
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if(it->Task == r)
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if(it->Task == r)
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@ -148,7 +148,7 @@ bool CTaskManager::deleteTask(IRunnable *r)
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/// Task list size
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/// Task list size
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uint CTaskManager::taskListSize(void)
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uint CTaskManager::taskListSize(void)
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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return acces.value().size();
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return acces.value().size();
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}
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}
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@ -164,7 +164,7 @@ void CTaskManager::waitCurrentTaskToComplete ()
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void CTaskManager::dump (std::vector<std::string> &result)
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void CTaskManager::dump (std::vector<std::string> &result)
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{
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{
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CSynchronized<string>::CAccessor accesCurrent(&_RunningTask);
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CSynchronized<string>::CAccessor accesCurrent(&_RunningTask);
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CSynchronized<deque<string> >::CAccessor accesDone(&_DoneTaskQueue);
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CSynchronized<deque<string> >::CAccessor accesDone(&_DoneTaskQueue);
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const list<CWaitingTask> &taskList = acces.value();
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const list<CWaitingTask> &taskList = acces.value();
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@ -215,7 +215,7 @@ void CTaskManager::clearDump()
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uint CTaskManager::getNumWaitingTasks()
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uint CTaskManager::getNumWaitingTasks()
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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return acces.value().size();
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return acces.value().size();
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}
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}
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@ -225,7 +225,7 @@ void CTaskManager::changeTaskPriority ()
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{
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{
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if (_ChangePriorityCallback)
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if (_ChangePriorityCallback)
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{
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{
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CSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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CUnfairSynchronized<list<CWaitingTask> >::CAccessor acces(&_TaskQueue);
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list<CWaitingTask> &taskList = acces.value();
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list<CWaitingTask> &taskList = acces.value();
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list<CWaitingTask>::iterator ite = taskList.begin();
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list<CWaitingTask>::iterator ite = taskList.begin();
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