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https://github.com/starr-dusT/yuzu-mainline
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Merge pull request #2314 from lioncash/const
kernel/thread: Minor interface cleanup
This commit is contained in:
commit
74a4a50470
@ -257,7 +257,7 @@ void Process::Acquire(Thread* thread) {
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ASSERT_MSG(!ShouldWait(thread), "Object unavailable!");
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ASSERT_MSG(!ShouldWait(thread), "Object unavailable!");
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}
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}
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bool Process::ShouldWait(Thread* thread) const {
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bool Process::ShouldWait(const Thread* thread) const {
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return !is_signaled;
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return !is_signaled;
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}
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}
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@ -251,7 +251,7 @@ private:
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~Process() override;
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~Process() override;
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/// Checks if the specified thread should wait until this process is available.
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/// Checks if the specified thread should wait until this process is available.
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bool ShouldWait(Thread* thread) const override;
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bool ShouldWait(const Thread* thread) const override;
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/// Acquires/locks this process for the specified thread if it's available.
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/// Acquires/locks this process for the specified thread if it's available.
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void Acquire(Thread* thread) override;
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void Acquire(Thread* thread) override;
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@ -14,7 +14,7 @@ namespace Kernel {
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ReadableEvent::ReadableEvent(KernelCore& kernel) : WaitObject{kernel} {}
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ReadableEvent::ReadableEvent(KernelCore& kernel) : WaitObject{kernel} {}
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ReadableEvent::~ReadableEvent() = default;
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ReadableEvent::~ReadableEvent() = default;
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bool ReadableEvent::ShouldWait(Thread* thread) const {
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bool ReadableEvent::ShouldWait(const Thread* thread) const {
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return !signaled;
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return !signaled;
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}
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}
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@ -36,7 +36,7 @@ public:
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return HANDLE_TYPE;
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return HANDLE_TYPE;
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}
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}
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bool ShouldWait(Thread* thread) const override;
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bool ShouldWait(const Thread* thread) const override;
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void Acquire(Thread* thread) override;
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void Acquire(Thread* thread) override;
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/// Unconditionally clears the readable event's state.
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/// Unconditionally clears the readable event's state.
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@ -30,7 +30,7 @@ void ServerPort::AppendPendingSession(SharedPtr<ServerSession> pending_session)
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pending_sessions.push_back(std::move(pending_session));
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pending_sessions.push_back(std::move(pending_session));
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}
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}
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bool ServerPort::ShouldWait(Thread* thread) const {
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bool ServerPort::ShouldWait(const Thread* thread) const {
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// If there are no pending sessions, we wait until a new one is added.
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// If there are no pending sessions, we wait until a new one is added.
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return pending_sessions.empty();
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return pending_sessions.empty();
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}
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}
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@ -75,7 +75,7 @@ public:
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/// waiting to be accepted by this port.
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/// waiting to be accepted by this port.
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void AppendPendingSession(SharedPtr<ServerSession> pending_session);
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void AppendPendingSession(SharedPtr<ServerSession> pending_session);
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bool ShouldWait(Thread* thread) const override;
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bool ShouldWait(const Thread* thread) const override;
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void Acquire(Thread* thread) override;
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void Acquire(Thread* thread) override;
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private:
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private:
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@ -46,7 +46,7 @@ ResultVal<SharedPtr<ServerSession>> ServerSession::Create(KernelCore& kernel, st
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return MakeResult(std::move(server_session));
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return MakeResult(std::move(server_session));
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}
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}
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bool ServerSession::ShouldWait(Thread* thread) const {
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bool ServerSession::ShouldWait(const Thread* thread) const {
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// Closed sessions should never wait, an error will be returned from svcReplyAndReceive.
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// Closed sessions should never wait, an error will be returned from svcReplyAndReceive.
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if (parent->client == nullptr)
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if (parent->client == nullptr)
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return false;
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return false;
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@ -82,7 +82,7 @@ public:
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*/
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*/
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ResultCode HandleSyncRequest(SharedPtr<Thread> thread);
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ResultCode HandleSyncRequest(SharedPtr<Thread> thread);
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bool ShouldWait(Thread* thread) const override;
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bool ShouldWait(const Thread* thread) const override;
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void Acquire(Thread* thread) override;
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void Acquire(Thread* thread) override;
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@ -28,7 +28,7 @@
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namespace Kernel {
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namespace Kernel {
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bool Thread::ShouldWait(Thread* thread) const {
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bool Thread::ShouldWait(const Thread* thread) const {
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return status != ThreadStatus::Dead;
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return status != ThreadStatus::Dead;
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}
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}
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@ -233,16 +233,16 @@ void Thread::SetWaitSynchronizationOutput(s32 output) {
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context.cpu_registers[1] = output;
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context.cpu_registers[1] = output;
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}
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}
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s32 Thread::GetWaitObjectIndex(WaitObject* object) const {
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s32 Thread::GetWaitObjectIndex(const WaitObject* object) const {
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ASSERT_MSG(!wait_objects.empty(), "Thread is not waiting for anything");
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ASSERT_MSG(!wait_objects.empty(), "Thread is not waiting for anything");
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auto match = std::find(wait_objects.rbegin(), wait_objects.rend(), object);
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const auto match = std::find(wait_objects.rbegin(), wait_objects.rend(), object);
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return static_cast<s32>(std::distance(match, wait_objects.rend()) - 1);
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return static_cast<s32>(std::distance(match, wait_objects.rend()) - 1);
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}
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}
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VAddr Thread::GetCommandBufferAddress() const {
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VAddr Thread::GetCommandBufferAddress() const {
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// Offset from the start of TLS at which the IPC command buffer begins.
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// Offset from the start of TLS at which the IPC command buffer begins.
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static constexpr int CommandHeaderOffset = 0x80;
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constexpr u64 command_header_offset = 0x80;
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return GetTLSAddress() + CommandHeaderOffset;
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return GetTLSAddress() + command_header_offset;
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}
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}
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void Thread::SetStatus(ThreadStatus new_status) {
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void Thread::SetStatus(ThreadStatus new_status) {
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@ -371,7 +371,7 @@ void Thread::ChangeScheduler() {
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system.CpuCore(processor_id).PrepareReschedule();
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system.CpuCore(processor_id).PrepareReschedule();
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}
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}
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bool Thread::AllWaitObjectsReady() {
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bool Thread::AllWaitObjectsReady() const {
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return std::none_of(
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return std::none_of(
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wait_objects.begin(), wait_objects.end(),
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wait_objects.begin(), wait_objects.end(),
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[this](const SharedPtr<WaitObject>& object) { return object->ShouldWait(this); });
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[this](const SharedPtr<WaitObject>& object) { return object->ShouldWait(this); });
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@ -111,7 +111,7 @@ public:
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return HANDLE_TYPE;
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return HANDLE_TYPE;
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}
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}
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bool ShouldWait(Thread* thread) const override;
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bool ShouldWait(const Thread* thread) const override;
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void Acquire(Thread* thread) override;
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void Acquire(Thread* thread) override;
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/**
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/**
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@ -205,7 +205,7 @@ public:
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* object in the list.
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* object in the list.
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* @param object Object to query the index of.
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* @param object Object to query the index of.
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*/
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*/
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s32 GetWaitObjectIndex(WaitObject* object) const;
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s32 GetWaitObjectIndex(const WaitObject* object) const;
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/**
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/**
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* Stops a thread, invalidating it from further use
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* Stops a thread, invalidating it from further use
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@ -299,7 +299,7 @@ public:
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}
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}
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/// Determines whether all the objects this thread is waiting on are ready.
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/// Determines whether all the objects this thread is waiting on are ready.
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bool AllWaitObjectsReady();
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bool AllWaitObjectsReady() const;
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const MutexWaitingThreads& GetMutexWaitingThreads() const {
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const MutexWaitingThreads& GetMutexWaitingThreads() const {
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return wait_mutex_threads;
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return wait_mutex_threads;
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@ -24,7 +24,7 @@ public:
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* @param thread The thread about which we're deciding.
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* @param thread The thread about which we're deciding.
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* @return True if the current thread should wait due to this object being unavailable
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* @return True if the current thread should wait due to this object being unavailable
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*/
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*/
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virtual bool ShouldWait(Thread* thread) const = 0;
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virtual bool ShouldWait(const Thread* thread) const = 0;
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/// Acquire/lock the object for the specified thread if it is available
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/// Acquire/lock the object for the specified thread if it is available
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virtual void Acquire(Thread* thread) = 0;
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virtual void Acquire(Thread* thread) = 0;
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