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	hle: kernel: Migrate KThread to KAutoObject.
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				@ -62,7 +62,7 @@ static void ResetThreadContext64(Core::ARM_Interface::ThreadContext64& context,
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namespace Kernel {
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KThread::KThread(KernelCore& kernel)
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    : KSynchronizationObject{kernel}, activity_pause_lock{kernel} {}
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    : KAutoObjectWithSlabHeapAndContainer{kernel}, activity_pause_lock{kernel} {}
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KThread::~KThread() = default;
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ResultCode KThread::Initialize(KThreadFunction func, uintptr_t arg, VAddr user_stack_top, s32 prio,
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@ -177,6 +177,7 @@ ResultCode KThread::Initialize(KThreadFunction func, uintptr_t arg, VAddr user_s
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    // Set parent, if relevant.
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    if (owner != nullptr) {
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        parent = owner;
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        parent->Open();
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        parent->IncrementThreadCount();
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    }
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@ -210,13 +211,55 @@ ResultCode KThread::Initialize(KThreadFunction func, uintptr_t arg, VAddr user_s
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ResultCode KThread::InitializeThread(KThread* thread, KThreadFunction func, uintptr_t arg,
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                                     VAddr user_stack_top, s32 prio, s32 core, Process* owner,
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                                     ThreadType type) {
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                                     ThreadType type, std::function<void(void*)>&& init_func,
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                                     void* init_func_parameter) {
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    // Initialize the thread.
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    R_TRY(thread->Initialize(func, arg, user_stack_top, prio, core, owner, type));
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    // Initialize host context.
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    thread->host_context =
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        std::make_shared<Common::Fiber>(std::move(init_func), init_func_parameter);
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    return RESULT_SUCCESS;
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}
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ResultCode KThread::InitializeDummyThread(KThread* thread) {
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    return thread->Initialize({}, {}, {}, DefaultThreadPriority, 3, {}, ThreadType::Main);
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}
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ResultCode KThread::InitializeIdleThread(Core::System& system, KThread* thread, s32 virt_core) {
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    return InitializeThread(thread, {}, {}, {}, IdleThreadPriority, virt_core, {}, ThreadType::Main,
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                            Core::CpuManager::GetIdleThreadStartFunc(),
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                            system.GetCpuManager().GetStartFuncParamater());
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}
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ResultCode KThread::InitializeHighPriorityThread(Core::System& system, KThread* thread,
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                                                 KThreadFunction func, uintptr_t arg,
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                                                 s32 virt_core) {
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    return InitializeThread(thread, func, arg, {}, {}, virt_core, nullptr, ThreadType::HighPriority,
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                            Core::CpuManager::GetSuspendThreadStartFunc(),
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                            system.GetCpuManager().GetStartFuncParamater());
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}
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ResultCode KThread::InitializeUserThread(Core::System& system, KThread* thread,
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                                         KThreadFunction func, uintptr_t arg, VAddr user_stack_top,
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                                         s32 prio, s32 virt_core, Process* owner) {
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    system.Kernel().GlobalSchedulerContext().AddThread(thread);
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    return InitializeThread(thread, func, arg, user_stack_top, prio, virt_core, owner,
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                            ThreadType::User, Core::CpuManager::GetGuestThreadStartFunc(),
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                            system.GetCpuManager().GetStartFuncParamater());
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}
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void KThread::PostDestroy(uintptr_t arg) {
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    Process* owner = reinterpret_cast<Process*>(arg & ~1ULL);
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    const bool resource_limit_release_hint = (arg & 1);
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    const s64 hint_value = (resource_limit_release_hint ? 0 : 1);
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    if (owner != nullptr) {
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        owner->GetResourceLimit()->Release(Kernel::LimitableResource::Threads, 1, hint_value);
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        owner->Close();
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    }
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}
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void KThread::Finalize() {
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    // If the thread has an owner process, unregister it.
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    if (parent != nullptr) {
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@ -294,6 +337,9 @@ void KThread::StartTermination() {
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    // Register terminated dpc flag.
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    RegisterDpc(DpcFlag::Terminated);
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    // Close the thread.
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    this->Close();
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}
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void KThread::Pin() {
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@ -995,56 +1041,6 @@ std::shared_ptr<Common::Fiber>& KThread::GetHostContext() {
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    return host_context;
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}
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ResultVal<std::shared_ptr<KThread>> KThread::CreateThread(Core::System& system,
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                                                          ThreadType type_flags, std::string name,
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                                                          VAddr entry_point, u32 priority, u64 arg,
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                                                          s32 processor_id, VAddr stack_top,
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                                                          Process* owner_process) {
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    auto& kernel = system.Kernel();
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    std::shared_ptr<KThread> thread = std::make_shared<KThread>(kernel);
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    if (const auto result =
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            thread->InitializeThread(thread.get(), entry_point, arg, stack_top, priority,
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                                     processor_id, owner_process, type_flags);
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        result.IsError()) {
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        return result;
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    }
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    thread->name = name;
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    auto& scheduler = kernel.GlobalSchedulerContext();
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    scheduler.AddThread(thread);
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    return MakeResult<std::shared_ptr<KThread>>(std::move(thread));
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}
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ResultVal<std::shared_ptr<KThread>> KThread::CreateThread(
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    Core::System& system, ThreadType type_flags, std::string name, VAddr entry_point, u32 priority,
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    u64 arg, s32 processor_id, VAddr stack_top, Process* owner_process,
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    std::function<void(void*)>&& thread_start_func, void* thread_start_parameter) {
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    auto thread_result = CreateThread(system, type_flags, name, entry_point, priority, arg,
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                                      processor_id, stack_top, owner_process);
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    if (thread_result.Succeeded()) {
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        (*thread_result)->host_context =
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            std::make_shared<Common::Fiber>(std::move(thread_start_func), thread_start_parameter);
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    }
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    return thread_result;
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}
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ResultVal<std::shared_ptr<KThread>> KThread::CreateUserThread(
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    Core::System& system, ThreadType type_flags, std::string name, VAddr entry_point, u32 priority,
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    u64 arg, s32 processor_id, VAddr stack_top, Process* owner_process) {
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    std::function<void(void*)> init_func = Core::CpuManager::GetGuestThreadStartFunc();
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    void* init_func_parameter = system.GetCpuManager().GetStartFuncParamater();
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    return CreateThread(system, type_flags, name, entry_point, priority, arg, processor_id,
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                        stack_top, owner_process, std::move(init_func), init_func_parameter);
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}
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KThread* GetCurrentThreadPointer(KernelCore& kernel) {
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    return kernel.GetCurrentEmuThread();
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}
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@ -20,6 +20,7 @@
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#include "core/hle/kernel/k_spin_lock.h"
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#include "core/hle/kernel/k_synchronization_object.h"
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#include "core/hle/kernel/object.h"
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#include "core/hle/kernel/slab_helpers.h"
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#include "core/hle/kernel/svc_common.h"
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#include "core/hle/kernel/svc_types.h"
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#include "core/hle/result.h"
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@ -99,7 +100,11 @@ enum class ThreadWaitReasonForDebugging : u32 {
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[[nodiscard]] KThread& GetCurrentThread(KernelCore& kernel);
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[[nodiscard]] s32 GetCurrentCoreId(KernelCore& kernel);
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class KThread final : public KSynchronizationObject, public boost::intrusive::list_base_hook<> {
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class KThread final : public KAutoObjectWithSlabHeapAndContainer<KThread, KSynchronizationObject>,
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                      public boost::intrusive::list_base_hook<> {
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    KERNEL_AUTOOBJECT_TRAITS(KThread, KSynchronizationObject);
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private:
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    friend class KScheduler;
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    friend class Process;
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@ -115,57 +120,6 @@ public:
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    using ThreadContext64 = Core::ARM_Interface::ThreadContext64;
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    using WaiterList = boost::intrusive::list<KThread>;
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    /**
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     * Creates and returns a new thread.
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     * @param system The instance of the whole system
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     * @param name The friendly name desired for the thread
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     * @param entry_point The address at which the thread should start execution
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     * @param priority The thread's priority
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     * @param arg User data to pass to the thread
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     * @param processor_id The ID(s) of the processors on which the thread is desired to be run
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     * @param stack_top The address of the thread's stack top
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     * @param owner_process The parent process for the thread, if null, it's a kernel thread
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     * @return A shared pointer to the newly created thread
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     */
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    [[nodiscard]] static ResultVal<std::shared_ptr<KThread>> CreateThread(
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        Core::System& system, ThreadType type_flags, std::string name, VAddr entry_point,
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        u32 priority, u64 arg, s32 processor_id, VAddr stack_top, Process* owner_process);
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    /**
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     * Creates and returns a new thread, with a specified entry point.
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     * @param system The instance of the whole system
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     * @param name The friendly name desired for the thread
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     * @param entry_point The address at which the thread should start execution
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     * @param priority The thread's priority
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     * @param arg User data to pass to the thread
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     * @param processor_id The ID(s) of the processors on which the thread is desired to be run
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     * @param stack_top The address of the thread's stack top
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     * @param owner_process The parent process for the thread, if null, it's a kernel thread
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     * @param thread_start_func The function where the host context will start.
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     * @param thread_start_parameter The parameter which will passed to host context on init
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     * @return A shared pointer to the newly created thread
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     */
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    [[nodiscard]] static ResultVal<std::shared_ptr<KThread>> CreateThread(
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        Core::System& system, ThreadType type_flags, std::string name, VAddr entry_point,
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        u32 priority, u64 arg, s32 processor_id, VAddr stack_top, Process* owner_process,
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        std::function<void(void*)>&& thread_start_func, void* thread_start_parameter);
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    /**
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     * Creates and returns a new thread for the emulated "user" process.
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     * @param system The instance of the whole system
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     * @param name The friendly name desired for the thread
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     * @param entry_point The address at which the thread should start execution
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     * @param priority The thread's priority
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     * @param arg User data to pass to the thread
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     * @param processor_id The ID(s) of the processors on which the thread is desired to be run
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     * @param stack_top The address of the thread's stack top
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     * @param owner_process The parent process for the thread, if null, it's a kernel thread
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     * @return A shared pointer to the newly created thread
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     */
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    [[nodiscard]] static ResultVal<std::shared_ptr<KThread>> CreateUserThread(
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        Core::System& system, ThreadType type_flags, std::string name, VAddr entry_point,
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        u32 priority, u64 arg, s32 processor_id, VAddr stack_top, Process* owner_process);
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    [[nodiscard]] std::string GetName() const override {
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        return name;
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    }
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@ -257,10 +211,6 @@ public:
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    void Suspend();
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    void Finalize() override;
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    bool IsSignaled() const override;
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    void SetSyncedObject(KSynchronizationObject* obj, ResultCode wait_res) {
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        synced_object = obj;
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        wait_result = wait_res;
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@ -422,6 +372,40 @@ public:
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        return termination_requested || GetRawState() == ThreadState::Terminated;
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    }
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    [[nodiscard]] virtual u64 GetId() const override final {
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        return this->GetThreadID();
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    }
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    [[nodiscard]] virtual bool IsInitialized() const override {
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        return initialized;
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    }
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    [[nodiscard]] virtual uintptr_t GetPostDestroyArgument() const override {
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        return reinterpret_cast<uintptr_t>(parent) | (resource_limit_release_hint ? 1 : 0);
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    }
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    virtual void Finalize() override;
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    [[nodiscard]] virtual bool IsSignaled() const override;
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    static void PostDestroy(uintptr_t arg);
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    [[nodiscard]] static ResultCode InitializeDummyThread(KThread* thread);
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    [[nodiscard]] static ResultCode InitializeIdleThread(Core::System& system, KThread* thread,
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                                                         s32 virt_core);
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    [[nodiscard]] static ResultCode InitializeHighPriorityThread(Core::System& system,
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                                                                 KThread* thread,
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                                                                 KThreadFunction func,
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                                                                 uintptr_t arg, s32 virt_core);
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    [[nodiscard]] static ResultCode InitializeUserThread(Core::System& system, KThread* thread,
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                                                         KThreadFunction func, uintptr_t arg,
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                                                         VAddr user_stack_top, s32 prio,
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                                                         s32 virt_core, Process* owner);
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public:
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    struct StackParameters {
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        u8 svc_permission[0x10];
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        std::atomic<u8> dpc_flags;
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@ -675,7 +659,9 @@ private:
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    [[nodiscard]] static ResultCode InitializeThread(KThread* thread, KThreadFunction func,
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                                                     uintptr_t arg, VAddr user_stack_top, s32 prio,
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                                                     s32 core, Process* owner, ThreadType type);
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                                                     s32 core, Process* owner, ThreadType type,
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                                                     std::function<void(void*)>&& init_func,
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                                                     void* init_func_parameter);
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    static void RestorePriority(KernelCore& kernel, KThread* thread);
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