Kernel: Renamed some functions for clarity.
- ReleaseNextThread->WakeupNextThread - ReleaseAllWaitingThreads->WakeupAllWaitingThreads.
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15b6a4d9ad
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f09806aed2
7 changed files with 10 additions and 10 deletions
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@ -47,7 +47,7 @@ ResultCode SignalEvent(const Handle handle) {
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return InvalidHandle(ErrorModule::Kernel);
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return InvalidHandle(ErrorModule::Kernel);
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evt->signaled = true;
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evt->signaled = true;
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evt->ReleaseAllWaitingThreads();
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evt->WakeupAllWaitingThreads();
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return RESULT_SUCCESS;
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return RESULT_SUCCESS;
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}
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}
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@ -30,7 +30,7 @@ void WaitObject::RemoveWaitingThread(Thread* thread) {
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waiting_threads.erase(itr);
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waiting_threads.erase(itr);
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}
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}
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Thread* WaitObject::ReleaseNextThread() {
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Thread* WaitObject::WakeupNextThread() {
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if (waiting_threads.empty())
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if (waiting_threads.empty())
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return nullptr;
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return nullptr;
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@ -138,13 +138,13 @@ public:
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void RemoveWaitingThread(Thread* thead);
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void RemoveWaitingThread(Thread* thead);
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/**
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/**
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* Releases (and removes) the next thread waiting on this object
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* Wake up the next thread waiting on this object
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* @return Pointer to the thread that was resumed, nullptr if no threads are waiting
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* @return Pointer to the thread that was resumed, nullptr if no threads are waiting
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*/
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*/
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Thread* ReleaseNextThread();
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Thread* WakeupNextThread();
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/// Releases all threads waiting on this object
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/// Wake up all threads waiting on this object
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void ReleaseAllWaitingThreads();
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void WakeupAllWaitingThreads();
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private:
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private:
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std::vector<Thread*> waiting_threads; ///< Threads waiting for this object to become available
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std::vector<Thread*> waiting_threads; ///< Threads waiting for this object to become available
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@ -53,7 +53,7 @@ void MutexAcquireLock(Mutex* mutex, Handle thread = GetCurrentThread()->GetHandl
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*/
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*/
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void ResumeWaitingThread(Mutex* mutex) {
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void ResumeWaitingThread(Mutex* mutex) {
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// Find the next waiting thread for the mutex...
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// Find the next waiting thread for the mutex...
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auto next_thread = mutex->ReleaseNextThread();
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auto next_thread = mutex->WakeupNextThread();
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if (next_thread != nullptr) {
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if (next_thread != nullptr) {
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MutexAcquireLock(mutex, next_thread->GetHandle());
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MutexAcquireLock(mutex, next_thread->GetHandle());
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} else {
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} else {
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@ -70,7 +70,7 @@ ResultCode ReleaseSemaphore(s32* count, Handle handle, s32 release_count) {
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// Notify some of the threads that the semaphore has been released
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// Notify some of the threads that the semaphore has been released
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// stop once the semaphore is full again or there are no more waiting threads
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// stop once the semaphore is full again or there are no more waiting threads
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while (!semaphore->ShouldWait() && semaphore->ReleaseNextThread() != nullptr) {
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while (!semaphore->ShouldWait() && semaphore->WakeupNextThread() != nullptr) {
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semaphore->Acquire();
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semaphore->Acquire();
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}
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}
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@ -104,7 +104,7 @@ void Thread::Stop(const char* reason) {
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ChangeReadyState(this, false);
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ChangeReadyState(this, false);
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status = THREADSTATUS_DORMANT;
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status = THREADSTATUS_DORMANT;
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ReleaseAllWaitingThreads();
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WakeupAllWaitingThreads();
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// Stopped threads are never waiting.
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// Stopped threads are never waiting.
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wait_objects.clear();
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wait_objects.clear();
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@ -90,7 +90,7 @@ static void TimerCallback(u64 timer_handle, int cycles_late) {
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timer->signaled = true;
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timer->signaled = true;
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// Resume all waiting threads
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// Resume all waiting threads
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timer->ReleaseAllWaitingThreads();
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timer->WakeupAllWaitingThreads();
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if (timer->reset_type == RESETTYPE_ONESHOT)
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if (timer->reset_type == RESETTYPE_ONESHOT)
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timer->signaled = false;
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timer->signaled = false;
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