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hle: kernel: KConditionVariable: Migrate to updated KThreadQueue.
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@ -11,6 +11,7 @@
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#include "core/hle/kernel/k_scoped_scheduler_lock_and_sleep.h"
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#include "core/hle/kernel/k_synchronization_object.h"
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#include "core/hle/kernel/k_thread.h"
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#include "core/hle/kernel/k_thread_queue.h"
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#include "core/hle/kernel/kernel.h"
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#include "core/hle/kernel/svc_common.h"
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#include "core/hle/kernel/svc_results.h"
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@ -57,6 +58,48 @@ bool UpdateLockAtomic(Core::System& system, u32* out, VAddr address, u32 if_zero
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return true;
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}
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class ThreadQueueImplForKConditionVariableWaitForAddress final : public KThreadQueue {
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public:
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explicit ThreadQueueImplForKConditionVariableWaitForAddress(KernelCore& kernel_)
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: KThreadQueue(kernel_) {}
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virtual void CancelWait(KThread* waiting_thread, ResultCode wait_result,
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bool cancel_timer_task) override {
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// Remove the thread as a waiter from its owner.
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waiting_thread->GetLockOwner()->RemoveWaiter(waiting_thread);
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// Invoke the base cancel wait handler.
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KThreadQueue::CancelWait(waiting_thread, wait_result, cancel_timer_task);
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}
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};
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class ThreadQueueImplForKConditionVariableWaitConditionVariable final : public KThreadQueue {
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private:
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KConditionVariable::ThreadTree* m_tree;
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public:
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explicit ThreadQueueImplForKConditionVariableWaitConditionVariable(
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KernelCore& kernel_, KConditionVariable::ThreadTree* t)
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: KThreadQueue(kernel_), m_tree(t) {}
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virtual void CancelWait(KThread* waiting_thread, ResultCode wait_result,
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bool cancel_timer_task) override {
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// Remove the thread as a waiter from its owner.
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if (KThread* owner = waiting_thread->GetLockOwner(); owner != nullptr) {
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owner->RemoveWaiter(waiting_thread);
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}
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// If the thread is waiting on a condvar, remove it from the tree.
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if (waiting_thread->IsWaitingForConditionVariable()) {
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m_tree->erase(m_tree->iterator_to(*waiting_thread));
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waiting_thread->ClearConditionVariable();
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}
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// Invoke the base cancel wait handler.
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KThreadQueue::CancelWait(waiting_thread, wait_result, cancel_timer_task);
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}
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};
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} // namespace
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KConditionVariable::KConditionVariable(Core::System& system_)
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@ -84,8 +127,7 @@ ResultCode KConditionVariable::SignalToAddress(VAddr addr) {
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next_value |= Svc::HandleWaitMask;
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}
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next_owner_thread->SetWaitResult(ResultSuccess);
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next_owner_thread->Wakeup();
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next_owner_thread->EndWait(ResultSuccess);
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}
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// Write the value to userspace.
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@ -103,6 +145,7 @@ ResultCode KConditionVariable::SignalToAddress(VAddr addr) {
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ResultCode KConditionVariable::WaitForAddress(Handle handle, VAddr addr, u32 value) {
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KThread* cur_thread = kernel.CurrentScheduler()->GetCurrentThread();
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ThreadQueueImplForKConditionVariableWaitForAddress wait_queue(kernel);
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// Wait for the address.
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{
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@ -133,7 +176,9 @@ ResultCode KConditionVariable::WaitForAddress(Handle handle, VAddr addr, u32 val
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// Update the lock.
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cur_thread->SetAddressKey(addr, value);
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owner_thread->AddWaiter(cur_thread);
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cur_thread->SetState(ThreadState::Waiting);
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// Begin waiting.
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cur_thread->BeginWait(std::addressof(wait_queue));
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cur_thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::ConditionVar);
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cur_thread->SetMutexWaitAddressForDebugging(addr);
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}
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@ -178,8 +223,7 @@ KThread* KConditionVariable::SignalImpl(KThread* thread) {
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if (can_access) {
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if (prev_tag == Svc::InvalidHandle) {
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// If nobody held the lock previously, we're all good.
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thread->SetWaitResult(ResultSuccess);
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thread->Wakeup();
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thread->EndWait(ResultSuccess);
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} else {
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// Get the previous owner.
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KThread* owner_thread = kernel.CurrentProcess()
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@ -194,14 +238,12 @@ KThread* KConditionVariable::SignalImpl(KThread* thread) {
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thread_to_close = owner_thread;
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} else {
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// The lock was tagged with a thread that doesn't exist.
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thread->SetWaitResult(ResultInvalidState);
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thread->Wakeup();
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thread->EndWait(ResultInvalidState);
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}
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}
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} else {
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// If the address wasn't accessible, note so.
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thread->SetWaitResult(ResultInvalidCurrentMemory);
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thread->Wakeup();
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thread->EndWait(ResultInvalidCurrentMemory);
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}
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return thread_to_close;
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@ -259,6 +301,8 @@ void KConditionVariable::Signal(u64 cv_key, s32 count) {
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ResultCode KConditionVariable::Wait(VAddr addr, u64 key, u32 value, s64 timeout) {
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// Prepare to wait.
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KThread* cur_thread = kernel.CurrentScheduler()->GetCurrentThread();
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ThreadQueueImplForKConditionVariableWaitConditionVariable wait_queue(
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kernel, std::addressof(thread_tree));
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{
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KScopedSchedulerLockAndSleep slp{kernel, cur_thread, timeout};
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@ -289,8 +333,7 @@ ResultCode KConditionVariable::Wait(VAddr addr, u64 key, u32 value, s64 timeout)
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}
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// Wake up the next owner.
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next_owner_thread->SetWaitResult(ResultSuccess);
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next_owner_thread->Wakeup();
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next_owner_thread->EndWait(ResultSuccess);
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}
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// Write to the cv key.
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@ -315,7 +358,7 @@ 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 (timeout != 0) {
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cur_thread->SetState(ThreadState::Waiting);
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cur_thread->BeginWait(std::addressof(wait_queue));
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cur_thread->SetWaitReasonForDebugging(ThreadWaitReasonForDebugging::ConditionVar);
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cur_thread->SetMutexWaitAddressForDebugging(addr);
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}
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