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https://github.com/yuzu-emu/yuzu-android
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core: hle: kernel: k_process: Change Status -> State.
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113a5ed68f
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@ -72,7 +72,7 @@ Result KProcess::Initialize(KProcess* process, Core::System& system, std::string
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process->name = std::move(process_name);
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process->name = std::move(process_name);
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process->resource_limit = res_limit;
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process->resource_limit = res_limit;
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process->status = ProcessStatus::Created;
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process->state = State::Created;
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process->program_id = 0;
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process->program_id = 0;
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process->process_id = type == ProcessType::KernelInternal ? kernel.CreateNewKernelProcessID()
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process->process_id = type == ProcessType::KernelInternal ? kernel.CreateNewKernelProcessID()
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: kernel.CreateNewUserProcessID();
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: kernel.CreateNewUserProcessID();
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@ -289,7 +289,7 @@ Result KProcess::Reset() {
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KScopedSchedulerLock sl{kernel};
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KScopedSchedulerLock sl{kernel};
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// Validate that we're in a state that we can reset.
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// Validate that we're in a state that we can reset.
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R_UNLESS(status != ProcessStatus::Exited, ResultInvalidState);
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R_UNLESS(state != State::Terminated, ResultInvalidState);
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R_UNLESS(is_signaled, ResultInvalidState);
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R_UNLESS(is_signaled, ResultInvalidState);
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// Clear signaled.
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// Clear signaled.
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@ -304,8 +304,8 @@ Result KProcess::SetActivity(ProcessActivity activity) {
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KScopedSchedulerLock sl{kernel};
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KScopedSchedulerLock sl{kernel};
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// Validate our state.
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// Validate our state.
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R_UNLESS(status != ProcessStatus::Exiting, ResultInvalidState);
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R_UNLESS(state != State::Terminating, ResultInvalidState);
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R_UNLESS(status != ProcessStatus::Exited, ResultInvalidState);
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R_UNLESS(state != State::Terminated, ResultInvalidState);
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// Either pause or resume.
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// Either pause or resume.
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if (activity == ProcessActivity::Paused) {
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if (activity == ProcessActivity::Paused) {
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@ -411,13 +411,13 @@ void KProcess::Run(s32 main_thread_priority, u64 stack_size) {
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const std::size_t heap_capacity{memory_usage_capacity - (main_thread_stack_size + image_size)};
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const std::size_t heap_capacity{memory_usage_capacity - (main_thread_stack_size + image_size)};
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ASSERT(!page_table->SetMaxHeapSize(heap_capacity).IsError());
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ASSERT(!page_table->SetMaxHeapSize(heap_capacity).IsError());
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ChangeStatus(ProcessStatus::Running);
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ChangeState(State::Running);
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SetupMainThread(kernel.System(), *this, main_thread_priority, main_thread_stack_top);
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SetupMainThread(kernel.System(), *this, main_thread_priority, main_thread_stack_top);
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}
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}
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void KProcess::PrepareForTermination() {
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void KProcess::PrepareForTermination() {
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ChangeStatus(ProcessStatus::Exiting);
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ChangeState(State::Terminating);
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const auto stop_threads = [this](const std::vector<KThread*>& in_thread_list) {
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const auto stop_threads = [this](const std::vector<KThread*>& in_thread_list) {
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for (auto* thread : in_thread_list) {
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for (auto* thread : in_thread_list) {
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@ -445,7 +445,7 @@ void KProcess::PrepareForTermination() {
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main_thread_stack_size + image_size);
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main_thread_stack_size + image_size);
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}
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}
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ChangeStatus(ProcessStatus::Exited);
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ChangeState(State::Terminated);
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}
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}
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void KProcess::Finalize() {
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void KProcess::Finalize() {
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@ -652,12 +652,12 @@ KProcess::KProcess(KernelCore& kernel_)
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KProcess::~KProcess() = default;
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KProcess::~KProcess() = default;
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void KProcess::ChangeStatus(ProcessStatus new_status) {
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void KProcess::ChangeState(State new_state) {
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if (status == new_status) {
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if (state == new_state) {
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return;
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return;
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}
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}
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status = new_status;
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state = new_state;
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is_signaled = true;
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is_signaled = true;
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NotifyAvailable();
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NotifyAvailable();
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}
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}
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@ -45,24 +45,6 @@ enum class MemoryRegion : u16 {
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BASE = 3,
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BASE = 3,
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};
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};
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/**
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* Indicates the status of a Process instance.
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*
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* @note These match the values as used by kernel,
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* so new entries should only be added if RE
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* shows that a new value has been introduced.
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*/
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enum class ProcessStatus {
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Created,
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CreatedWithDebuggerAttached,
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Running,
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WaitingForDebuggerToAttach,
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DebuggerAttached,
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Exiting,
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Exited,
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DebugBreak,
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};
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enum class ProcessActivity : u32 {
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enum class ProcessActivity : u32 {
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Runnable,
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Runnable,
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Paused,
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Paused,
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@ -89,6 +71,17 @@ public:
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explicit KProcess(KernelCore& kernel_);
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explicit KProcess(KernelCore& kernel_);
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~KProcess() override;
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~KProcess() override;
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enum class State {
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Created = Svc::ProcessState_Created,
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CreatedAttached = Svc::ProcessState_CreatedAttached,
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Running = Svc::ProcessState_Running,
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Crashed = Svc::ProcessState_Crashed,
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RunningAttached = Svc::ProcessState_RunningAttached,
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Terminating = Svc::ProcessState_Terminating,
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Terminated = Svc::ProcessState_Terminated,
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DebugBreak = Svc::ProcessState_DebugBreak,
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};
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enum : u64 {
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enum : u64 {
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/// Lowest allowed process ID for a kernel initial process.
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/// Lowest allowed process ID for a kernel initial process.
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InitialKIPIDMin = 1,
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InitialKIPIDMin = 1,
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@ -163,8 +156,8 @@ public:
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}
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}
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/// Gets the current status of the process
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/// Gets the current status of the process
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ProcessStatus GetStatus() const {
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State GetState() const {
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return status;
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return state;
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}
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}
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/// Gets the unique ID that identifies this particular process.
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/// Gets the unique ID that identifies this particular process.
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@ -415,10 +408,7 @@ private:
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pinned_threads[core_id] = nullptr;
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pinned_threads[core_id] = nullptr;
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}
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}
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/// Changes the process status. If the status is different
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void ChangeState(State new_state);
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/// from the current process status, then this will trigger
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/// a process signal.
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void ChangeStatus(ProcessStatus new_status);
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/// Allocates the main thread stack for the process, given the stack size in bytes.
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/// Allocates the main thread stack for the process, given the stack size in bytes.
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Result AllocateMainThreadStack(std::size_t stack_size);
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Result AllocateMainThreadStack(std::size_t stack_size);
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@ -427,7 +417,7 @@ private:
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std::unique_ptr<KPageTable> page_table;
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std::unique_ptr<KPageTable> page_table;
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/// Current status of the process
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/// Current status of the process
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ProcessStatus status{};
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State state{};
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/// The ID of this process
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/// The ID of this process
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u64 process_id = 0;
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u64 process_id = 0;
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@ -1888,7 +1888,7 @@ static void ExitProcess(Core::System& system) {
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auto* current_process = system.Kernel().CurrentProcess();
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auto* current_process = system.Kernel().CurrentProcess();
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LOG_INFO(Kernel_SVC, "Process {} exiting", current_process->GetProcessID());
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LOG_INFO(Kernel_SVC, "Process {} exiting", current_process->GetProcessID());
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ASSERT_MSG(current_process->GetStatus() == ProcessStatus::Running,
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ASSERT_MSG(current_process->GetState() == KProcess::State::Running,
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"Process has already exited");
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"Process has already exited");
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system.Exit();
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system.Exit();
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@ -2557,7 +2557,7 @@ static Result GetProcessInfo(Core::System& system, u64* out, Handle process_hand
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return ResultInvalidEnumValue;
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return ResultInvalidEnumValue;
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}
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}
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*out = static_cast<u64>(process->GetStatus());
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*out = static_cast<u64>(process->GetState());
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return ResultSuccess;
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return ResultSuccess;
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}
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}
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