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https://git.suyu.dev/suyu/suyu.git
synced 2024-11-23 15:22:45 +01:00
hle: kernel: thread: Preserve thread wait reason for debugging only.
- This is decoupled from core functionality and used for debugging only.
This commit is contained in:
parent
81c1bfafea
commit
03dfc8d8e7
8 changed files with 74 additions and 4 deletions
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@ -276,6 +276,7 @@ ResultCode KAddressArbiter::WaitIfLessThan(VAddr addr, s32 value, bool decrement
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cur_thread->SetAddressArbiter(std::addressof(thread_tree), addr);
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cur_thread->SetAddressArbiter(std::addressof(thread_tree), addr);
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thread_tree.insert(*cur_thread);
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thread_tree.insert(*cur_thread);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::Arbitration);
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}
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}
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// Cancel the timer wait.
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// Cancel the timer wait.
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@ -339,6 +340,7 @@ ResultCode KAddressArbiter::WaitIfEqual(VAddr addr, s32 value, s64 timeout) {
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cur_thread->SetAddressArbiter(std::addressof(thread_tree), addr);
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cur_thread->SetAddressArbiter(std::addressof(thread_tree), addr);
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thread_tree.insert(*cur_thread);
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thread_tree.insert(*cur_thread);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::Arbitration);
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}
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}
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// Cancel the timer wait.
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// Cancel the timer wait.
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@ -133,6 +133,7 @@ ResultCode KConditionVariable::WaitForAddress(Handle handle, VAddr addr, u32 val
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cur_thread->SetAddressKey(addr, value);
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cur_thread->SetAddressKey(addr, value);
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owner_thread->AddWaiter(cur_thread);
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owner_thread->AddWaiter(cur_thread);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::ConditionVar);
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cur_thread->SetMutexWaitAddressForDebugging(addr);
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cur_thread->SetMutexWaitAddressForDebugging(addr);
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}
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}
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}
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}
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@ -315,6 +316,7 @@ ResultCode KConditionVariable::Wait(VAddr addr, u64 key, u32 value, s64 timeout)
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// If the timeout is non-zero, set the thread as waiting.
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// If the timeout is non-zero, set the thread as waiting.
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if (timeout != 0) {
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if (timeout != 0) {
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::ConditionVar);
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cur_thread->SetMutexWaitAddressForDebugging(addr);
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cur_thread->SetMutexWaitAddressForDebugging(addr);
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}
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}
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}
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}
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@ -78,6 +78,7 @@ ResultCode KSynchronizationObject::Wait(KernelCore& kernel, s32* out_index,
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thread->SetCancellable();
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thread->SetCancellable();
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thread->SetSyncedObject(nullptr, Svc::ResultTimedOut);
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thread->SetSyncedObject(nullptr, Svc::ResultTimedOut);
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thread->SetState(ThreadState::Waiting);
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thread->SetState(ThreadState::Waiting);
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thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::Synchronization);
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}
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}
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// The lock/sleep is done, so we should be able to get our result.
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// The lock/sleep is done, so we should be able to get our result.
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@ -605,6 +605,8 @@ void KernelCore::Suspend(bool in_suspention) {
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const auto state = should_suspend ? ThreadState::Runnable : ThreadState::Waiting;
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const auto state = should_suspend ? ThreadState::Runnable : ThreadState::Waiting;
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for (std::size_t i = 0; i < Core::Hardware::NUM_CPU_CORES; i++) {
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for (std::size_t i = 0; i < Core::Hardware::NUM_CPU_CORES; i++) {
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impl->suspend_threads[i]->SetState(state);
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impl->suspend_threads[i]->SetState(state);
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impl->suspend_threads[i]->SetWaitReasonForDebugging(
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ThreadWaitReasonForDebugging::Suspended);
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}
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}
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}
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}
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}
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}
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@ -347,6 +347,7 @@ static ResultCode SendSyncRequest(Core::System& system, Handle handle) {
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{
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{
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KScopedSchedulerLock lock(kernel);
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KScopedSchedulerLock lock(kernel);
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thread->SetState(ThreadState::Waiting);
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thread->SetState(ThreadState::Waiting);
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thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::IPC);
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session->SendSyncRequest(SharedFrom(thread), system.Memory(), system.CoreTiming());
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session->SendSyncRequest(SharedFrom(thread), system.Memory(), system.CoreTiming());
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}
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}
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@ -215,7 +215,10 @@ VAddr Thread::GetCommandBufferAddress() const {
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void Thread::SetState(ThreadState state) {
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void Thread::SetState(ThreadState state) {
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KScopedSchedulerLock sl(kernel);
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KScopedSchedulerLock sl(kernel);
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SetMutexWaitAddressForDebugging(0);
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// Clear debugging state
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SetMutexWaitAddressForDebugging({});
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SetWaitReasonForDebugging({});
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const ThreadState old_state = thread_state;
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const ThreadState old_state = thread_state;
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thread_state =
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thread_state =
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static_cast<ThreadState>((old_state & ~ThreadState::Mask) | (state & ThreadState::Mask));
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static_cast<ThreadState>((old_state & ~ThreadState::Mask) | (state & ThreadState::Mask));
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@ -386,6 +389,7 @@ ResultCode Thread::Sleep(s64 nanoseconds) {
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{
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{
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KScopedSchedulerLockAndSleep lock(kernel, event_handle, this, nanoseconds);
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KScopedSchedulerLockAndSleep lock(kernel, event_handle, this, nanoseconds);
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SetState(ThreadState::Waiting);
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SetState(ThreadState::Waiting);
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SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::Sleep);
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}
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}
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if (event_handle != InvalidHandle) {
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if (event_handle != InvalidHandle) {
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@ -114,6 +114,16 @@ enum class ThreadSchedFlags : u32 {
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KernelInitPauseFlag = 1 << 8,
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KernelInitPauseFlag = 1 << 8,
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};
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};
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enum class ThreadWaitReasonForDebugging : u32 {
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None, ///< Thread is not waiting
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Sleep, ///< Thread is waiting due to a SleepThread SVC
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IPC, ///< Thread is waiting for the reply from an IPC request
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Synchronization, ///< Thread is waiting due to a WaitSynchronization SVC
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ConditionVar, ///< Thread is waiting due to a WaitProcessWideKey SVC
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Arbitration, ///< Thread is waiting due to a SignalToAddress/WaitForAddress SVC
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Suspended, ///< Thread is waiting due to process suspension
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};
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class Thread final : public KSynchronizationObject, public boost::intrusive::list_base_hook<> {
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class Thread final : public KSynchronizationObject, public boost::intrusive::list_base_hook<> {
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friend class KScheduler;
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friend class KScheduler;
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friend class Process;
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friend class Process;
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@ -515,6 +525,14 @@ public:
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disable_count--;
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disable_count--;
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}
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}
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void SetWaitReasonForDebugging(ThreadWaitReasonForDebugging reason) {
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wait_reason_for_debugging = reason;
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}
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[[nodiscard]] ThreadWaitReasonForDebugging GetWaitReasonForDebugging() const {
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return wait_reason_for_debugging;
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}
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void SetWaitObjectsForDebugging(const std::span<KSynchronizationObject*>& objects) {
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void SetWaitObjectsForDebugging(const std::span<KSynchronizationObject*>& objects) {
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wait_objects_for_debugging.clear();
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wait_objects_for_debugging.clear();
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wait_objects_for_debugging.reserve(objects.size());
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wait_objects_for_debugging.reserve(objects.size());
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@ -708,6 +726,9 @@ private:
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/// The current mutex wait address. This is used for debugging only.
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/// The current mutex wait address. This is used for debugging only.
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VAddr mutex_wait_address_for_debugging{};
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VAddr mutex_wait_address_for_debugging{};
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/// The reason the thread is waiting. This is used for debugging only.
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ThreadWaitReasonForDebugging wait_reason_for_debugging{};
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KSynchronizationObject* signaling_object;
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KSynchronizationObject* signaling_object;
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ResultCode signaling_result{RESULT_SUCCESS};
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ResultCode signaling_result{RESULT_SUCCESS};
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@ -251,7 +251,29 @@ QString WaitTreeThread::GetText() const {
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}
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}
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break;
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break;
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case Kernel::ThreadState::Waiting:
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case Kernel::ThreadState::Waiting:
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status = tr("waiting");
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switch (thread.GetWaitReasonForDebugging()) {
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case Kernel::ThreadWaitReasonForDebugging::Sleep:
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status = tr("sleeping");
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break;
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case Kernel::ThreadWaitReasonForDebugging::IPC:
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status = tr("waiting for IPC reply");
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break;
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case Kernel::ThreadWaitReasonForDebugging::Synchronization:
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status = tr("waiting for objects");
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break;
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case Kernel::ThreadWaitReasonForDebugging::ConditionVar:
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status = tr("waiting for condition variable");
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break;
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case Kernel::ThreadWaitReasonForDebugging::Arbitration:
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status = tr("waiting for address arbiter");
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break;
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case Kernel::ThreadWaitReasonForDebugging::Suspended:
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status = tr("waiting for suspend resume");
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break;
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default:
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status = tr("waiting");
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break;
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}
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break;
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break;
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case Kernel::ThreadState::Initialized:
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case Kernel::ThreadState::Initialized:
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status = tr("initialized");
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status = tr("initialized");
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@ -288,7 +310,20 @@ QColor WaitTreeThread::GetColor() const {
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return QColor(WaitTreeColors[2][color_index]);
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return QColor(WaitTreeColors[2][color_index]);
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}
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}
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case Kernel::ThreadState::Waiting:
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case Kernel::ThreadState::Waiting:
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return QColor(WaitTreeColors[3][color_index]);
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switch (thread.GetWaitReasonForDebugging()) {
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case Kernel::ThreadWaitReasonForDebugging::IPC:
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return QColor(WaitTreeColors[4][color_index]);
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case Kernel::ThreadWaitReasonForDebugging::Sleep:
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return QColor(WaitTreeColors[5][color_index]);
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case Kernel::ThreadWaitReasonForDebugging::Synchronization:
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case Kernel::ThreadWaitReasonForDebugging::ConditionVar:
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case Kernel::ThreadWaitReasonForDebugging::Arbitration:
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case Kernel::ThreadWaitReasonForDebugging::Suspended:
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return QColor(WaitTreeColors[6][color_index]);
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break;
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default:
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return QColor(WaitTreeColors[3][color_index]);
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}
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case Kernel::ThreadState::Initialized:
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case Kernel::ThreadState::Initialized:
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return QColor(WaitTreeColors[7][color_index]);
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return QColor(WaitTreeColors[7][color_index]);
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case Kernel::ThreadState::Terminated:
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case Kernel::ThreadState::Terminated:
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@ -339,7 +374,9 @@ std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeThread::GetChildren() const {
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list.push_back(std::make_unique<WaitTreeText>(tr("not waiting for mutex")));
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list.push_back(std::make_unique<WaitTreeText>(tr("not waiting for mutex")));
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}
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}
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if (thread.GetState() == Kernel::ThreadState::Waiting) {
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if (thread.GetState() == Kernel::ThreadState::Waiting &&
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thread.GetWaitReasonForDebugging() ==
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Kernel::ThreadWaitReasonForDebugging::Synchronization) {
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list.push_back(std::make_unique<WaitTreeObjectList>(thread.GetWaitObjectsForDebugging(),
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list.push_back(std::make_unique<WaitTreeObjectList>(thread.GetWaitObjectsForDebugging(),
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thread.IsCancellable()));
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thread.IsCancellable()));
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}
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}
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