CPU: Save and restore the TPIDR_EL0 system register on every context switch.
Note that there's currently a dynarmic bug preventing this register from being written.
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f36affdbe3
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@ -104,6 +104,10 @@ public:
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virtual void SetTlsAddress(VAddr address) = 0;
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virtual u64 GetTPIDR_EL0() const = 0;
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virtual void SetTPIDR_EL0(u64 value) = 0;
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/**
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* Saves the current CPU context
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* @param ctx Thread context to save
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@ -196,6 +196,14 @@ void ARM_Dynarmic::SetTlsAddress(u64 address) {
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cb->tpidrro_el0 = address;
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}
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u64 ARM_Dynarmic::GetTPIDR_EL0() const {
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return cb->tpidr_el0;
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}
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void ARM_Dynarmic::SetTPIDR_EL0(u64 value) {
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cb->tpidr_el0 = value;
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}
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void ARM_Dynarmic::SaveContext(ARM_Interface::ThreadContext& ctx) {
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ctx.cpu_registers = jit->GetRegisters();
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ctx.sp = jit->GetSP();
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@ -34,6 +34,8 @@ public:
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void SetCPSR(u32 cpsr) override;
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VAddr GetTlsAddress() const override;
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void SetTlsAddress(VAddr address) override;
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void SetTPIDR_EL0(u64 value) override;
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u64 GetTPIDR_EL0() const override;
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void SaveContext(ThreadContext& ctx) override;
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void LoadContext(const ThreadContext& ctx) override;
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@ -169,6 +169,16 @@ void ARM_Unicorn::SetTlsAddress(VAddr base) {
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CHECKED(uc_reg_write(uc, UC_ARM64_REG_TPIDRRO_EL0, &base));
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}
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u64 ARM_Unicorn::GetTPIDR_EL0() const {
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u64 value{};
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CHECKED(uc_reg_read(uc, UC_ARM64_REG_TPIDR_EL0, &value));
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return value;
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}
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void ARM_Unicorn::SetTPIDR_EL0(u64 value) {
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CHECKED(uc_reg_write(uc, UC_ARM64_REG_TPIDR_EL0, &value));
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}
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void ARM_Unicorn::Run() {
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if (GDBStub::IsServerEnabled()) {
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ExecuteInstructions(std::max(4000000, 0));
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@ -28,6 +28,8 @@ public:
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void SetCPSR(u32 cpsr) override;
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VAddr GetTlsAddress() const override;
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void SetTlsAddress(VAddr address) override;
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void SetTPIDR_EL0(u64 value) override;
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u64 GetTPIDR_EL0() const override;
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void SaveContext(ThreadContext& ctx) override;
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void LoadContext(const ThreadContext& ctx) override;
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void PrepareReschedule() override;
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@ -56,6 +56,8 @@ void Scheduler::SwitchContext(Thread* new_thread) {
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if (previous_thread) {
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previous_thread->last_running_ticks = CoreTiming::GetTicks();
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cpu_core->SaveContext(previous_thread->context);
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// Save the TPIDR_EL0 system register in case it was modified.
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previous_thread->tpidr_el0 = cpu_core->GetTPIDR_EL0();
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if (previous_thread->status == THREADSTATUS_RUNNING) {
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// This is only the case when a reschedule is triggered without the current thread
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@ -87,6 +89,7 @@ void Scheduler::SwitchContext(Thread* new_thread) {
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cpu_core->LoadContext(new_thread->context);
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cpu_core->SetTlsAddress(new_thread->GetTLSAddress());
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cpu_core->SetTPIDR_EL0(new_thread->GetTPIDR_EL0());
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cpu_core->ClearExclusiveState();
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} else {
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current_thread = nullptr;
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@ -313,6 +313,7 @@ ResultVal<SharedPtr<Thread>> Thread::Create(std::string name, VAddr entry_point,
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thread->status = THREADSTATUS_DORMANT;
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thread->entry_point = entry_point;
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thread->stack_top = stack_top;
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thread->tpidr_el0 = 0;
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thread->nominal_priority = thread->current_priority = priority;
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thread->last_running_ticks = CoreTiming::GetTicks();
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thread->processor_id = processor_id;
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@ -182,6 +182,14 @@ public:
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return tls_address;
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}
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/*
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* Returns the value of the TPIDR_EL0 Read/Write system register for this thread.
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* @returns The value of the TPIDR_EL0 register.
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*/
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u64 GetTPIDR_EL0() const {
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return tpidr_el0;
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}
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/*
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* Returns the address of the current thread's command buffer, located in the TLS.
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* @returns VAddr of the thread's command buffer.
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@ -213,6 +221,7 @@ public:
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s32 processor_id;
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VAddr tls_address; ///< Virtual address of the Thread Local Storage of the thread
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u64 tpidr_el0; ///< TPIDR_EL0 read/write system register.
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SharedPtr<Process> owner_process; ///< Process that owns this thread
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