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	core: hle: kernel: k_handle_table: Refresh.
This commit is contained in:
		@@ -5,14 +5,11 @@
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namespace Kernel {
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KHandleTable::KHandleTable(KernelCore& kernel_) : kernel{kernel_} {}
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KHandleTable::~KHandleTable() = default;
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Result KHandleTable::Finalize() {
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    // Get the table and clear our record of it.
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    u16 saved_table_size = 0;
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    {
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        KScopedDisableDispatch dd(kernel);
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        KScopedDisableDispatch dd{m_kernel};
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        KScopedSpinLock lk(m_lock);
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        std::swap(m_table_size, saved_table_size);
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@@ -25,28 +22,28 @@ Result KHandleTable::Finalize() {
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        }
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    }
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    return ResultSuccess;
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    R_SUCCEED();
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}
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bool KHandleTable::Remove(Handle handle) {
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    // Don't allow removal of a pseudo-handle.
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    if (Svc::IsPseudoHandle(handle)) {
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    if (Svc::IsPseudoHandle(handle)) [[unlikely]] {
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        return false;
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    }
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    // Handles must not have reserved bits set.
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    const auto handle_pack = HandlePack(handle);
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    if (handle_pack.reserved != 0) {
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    if (handle_pack.reserved != 0) [[unlikely]] {
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        return false;
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    }
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    // Find the object and free the entry.
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    KAutoObject* obj = nullptr;
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    {
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        KScopedDisableDispatch dd(kernel);
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        KScopedDisableDispatch dd{m_kernel};
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        KScopedSpinLock lk(m_lock);
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        if (this->IsValidHandle(handle)) {
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        if (this->IsValidHandle(handle)) [[likely]] {
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            const auto index = handle_pack.index;
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            obj = m_objects[index];
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@@ -57,13 +54,13 @@ bool KHandleTable::Remove(Handle handle) {
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    }
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    // Close the object.
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    kernel.UnregisterInUseObject(obj);
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    m_kernel.UnregisterInUseObject(obj);
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    obj->Close();
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    return true;
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}
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Result KHandleTable::Add(Handle* out_handle, KAutoObject* obj) {
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    KScopedDisableDispatch dd(kernel);
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    KScopedDisableDispatch dd{m_kernel};
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    KScopedSpinLock lk(m_lock);
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    // Never exceed our capacity.
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@@ -82,22 +79,22 @@ Result KHandleTable::Add(Handle* out_handle, KAutoObject* obj) {
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        *out_handle = EncodeHandle(static_cast<u16>(index), linear_id);
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    }
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    return ResultSuccess;
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    R_SUCCEED();
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}
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Result KHandleTable::Reserve(Handle* out_handle) {
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    KScopedDisableDispatch dd(kernel);
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    KScopedDisableDispatch dd{m_kernel};
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    KScopedSpinLock lk(m_lock);
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    // Never exceed our capacity.
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    R_UNLESS(m_count < m_table_size, ResultOutOfHandles);
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    *out_handle = EncodeHandle(static_cast<u16>(this->AllocateEntry()), this->AllocateLinearId());
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    return ResultSuccess;
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    R_SUCCEED();
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}
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void KHandleTable::Unreserve(Handle handle) {
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    KScopedDisableDispatch dd(kernel);
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    KScopedDisableDispatch dd{m_kernel};
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    KScopedSpinLock lk(m_lock);
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    // Unpack the handle.
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@@ -108,7 +105,7 @@ void KHandleTable::Unreserve(Handle handle) {
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    ASSERT(reserved == 0);
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    ASSERT(linear_id != 0);
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    if (index < m_table_size) {
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    if (index < m_table_size) [[likely]] {
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        // NOTE: This code does not check the linear id.
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        ASSERT(m_objects[index] == nullptr);
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        this->FreeEntry(index);
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@@ -116,7 +113,7 @@ void KHandleTable::Unreserve(Handle handle) {
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}
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void KHandleTable::Register(Handle handle, KAutoObject* obj) {
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    KScopedDisableDispatch dd(kernel);
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    KScopedDisableDispatch dd{m_kernel};
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    KScopedSpinLock lk(m_lock);
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    // Unpack the handle.
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@@ -127,7 +124,7 @@ void KHandleTable::Register(Handle handle, KAutoObject* obj) {
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    ASSERT(reserved == 0);
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    ASSERT(linear_id != 0);
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    if (index < m_table_size) {
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    if (index < m_table_size) [[likely]] {
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        // Set the entry.
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        ASSERT(m_objects[index] == nullptr);
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@@ -21,33 +21,38 @@ namespace Kernel {
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class KernelCore;
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class KHandleTable {
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public:
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    YUZU_NON_COPYABLE(KHandleTable);
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    YUZU_NON_MOVEABLE(KHandleTable);
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public:
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    static constexpr size_t MaxTableSize = 1024;
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    explicit KHandleTable(KernelCore& kernel_);
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    ~KHandleTable();
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public:
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    explicit KHandleTable(KernelCore& kernel) : m_kernel(kernel) {}
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    Result Initialize(s32 size) {
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        // Check that the table size is valid.
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        R_UNLESS(size <= static_cast<s32>(MaxTableSize), ResultOutOfMemory);
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        // Lock.
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        KScopedDisableDispatch dd{m_kernel};
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        KScopedSpinLock lk(m_lock);
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        // Initialize all fields.
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        m_max_count = 0;
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        m_table_size = static_cast<u16>((size <= 0) ? MaxTableSize : size);
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        m_table_size = static_cast<s16>((size <= 0) ? MaxTableSize : size);
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        m_next_linear_id = MinLinearId;
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        m_count = 0;
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        m_free_head_index = -1;
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        // Free all entries.
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        for (s16 i = 0; i < static_cast<s16>(m_table_size); ++i) {
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        for (s32 i = 0; i < static_cast<s32>(m_table_size); ++i) {
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            m_objects[i] = nullptr;
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            m_entry_infos[i].next_free_index = i - 1;
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            m_entry_infos[i].next_free_index = static_cast<s16>(i - 1);
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            m_free_head_index = i;
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        }
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        return ResultSuccess;
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        R_SUCCEED();
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    }
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    size_t GetTableSize() const {
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@@ -66,13 +71,13 @@ public:
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    template <typename T = KAutoObject>
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    KScopedAutoObject<T> GetObjectWithoutPseudoHandle(Handle handle) const {
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        // Lock and look up in table.
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        KScopedDisableDispatch dd(kernel);
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        KScopedDisableDispatch dd{m_kernel};
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        KScopedSpinLock lk(m_lock);
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        if constexpr (std::is_same_v<T, KAutoObject>) {
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        if constexpr (std::is_same<T, KAutoObject>::value) {
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            return this->GetObjectImpl(handle);
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        } else {
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            if (auto* obj = this->GetObjectImpl(handle); obj != nullptr) {
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            if (auto* obj = this->GetObjectImpl(handle); obj != nullptr) [[likely]] {
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                return obj->DynamicCast<T*>();
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            } else {
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                return nullptr;
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@@ -85,13 +90,13 @@ public:
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        // Handle pseudo-handles.
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        if constexpr (std::derived_from<KProcess, T>) {
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            if (handle == Svc::PseudoHandle::CurrentProcess) {
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                auto* const cur_process = kernel.CurrentProcess();
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                auto* const cur_process = m_kernel.CurrentProcess();
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                ASSERT(cur_process != nullptr);
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                return cur_process;
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            }
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        } else if constexpr (std::derived_from<KThread, T>) {
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            if (handle == Svc::PseudoHandle::CurrentThread) {
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                auto* const cur_thread = GetCurrentThreadPointer(kernel);
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                auto* const cur_thread = GetCurrentThreadPointer(m_kernel);
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                ASSERT(cur_thread != nullptr);
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                return cur_thread;
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            }
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@@ -100,6 +105,37 @@ public:
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        return this->template GetObjectWithoutPseudoHandle<T>(handle);
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    }
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    KScopedAutoObject<KAutoObject> GetObjectForIpcWithoutPseudoHandle(Handle handle) const {
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        // Lock and look up in table.
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        KScopedDisableDispatch dd{m_kernel};
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        KScopedSpinLock lk(m_lock);
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        return this->GetObjectImpl(handle);
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    }
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    KScopedAutoObject<KAutoObject> GetObjectForIpc(Handle handle, KThread* cur_thread) const {
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        // Handle pseudo-handles.
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        ASSERT(cur_thread != nullptr);
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        if (handle == Svc::PseudoHandle::CurrentProcess) {
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            auto* const cur_process =
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                static_cast<KAutoObject*>(static_cast<void*>(cur_thread->GetOwnerProcess()));
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            ASSERT(cur_process != nullptr);
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            return cur_process;
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        }
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        if (handle == Svc::PseudoHandle::CurrentThread) {
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            return static_cast<KAutoObject*>(cur_thread);
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        }
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        return GetObjectForIpcWithoutPseudoHandle(handle);
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    }
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    KScopedAutoObject<KAutoObject> GetObjectByIndex(Handle* out_handle, size_t index) const {
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        KScopedDisableDispatch dd{m_kernel};
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        KScopedSpinLock lk(m_lock);
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        return this->GetObjectByIndexImpl(out_handle, index);
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    }
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    Result Reserve(Handle* out_handle);
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    void Unreserve(Handle handle);
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@@ -112,7 +148,7 @@ public:
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        size_t num_opened;
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        {
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            // Lock the table.
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            KScopedDisableDispatch dd(kernel);
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            KScopedDisableDispatch dd{m_kernel};
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            KScopedSpinLock lk(m_lock);
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            for (num_opened = 0; num_opened < num_handles; num_opened++) {
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                // Get the current handle.
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@@ -120,13 +156,13 @@ public:
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                // Get the object for the current handle.
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                KAutoObject* cur_object = this->GetObjectImpl(cur_handle);
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                if (cur_object == nullptr) {
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                if (cur_object == nullptr) [[unlikely]] {
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                    break;
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                }
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                // Cast the current object to the desired type.
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                T* cur_t = cur_object->DynamicCast<T*>();
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                if (cur_t == nullptr) {
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                if (cur_t == nullptr) [[unlikely]] {
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                    break;
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                }
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@@ -137,7 +173,7 @@ public:
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        }
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        // If we converted every object, succeed.
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        if (num_opened == num_handles) {
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        if (num_opened == num_handles) [[likely]] {
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            return true;
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        }
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@@ -191,21 +227,21 @@ private:
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        ASSERT(reserved == 0);
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        // Validate our indexing information.
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        if (raw_value == 0) {
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        if (raw_value == 0) [[unlikely]] {
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            return false;
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        }
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        if (linear_id == 0) {
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        if (linear_id == 0) [[unlikely]] {
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            return false;
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        }
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        if (index >= m_table_size) {
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        if (index >= m_table_size) [[unlikely]] {
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            return false;
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        }
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        // Check that there's an object, and our serial id is correct.
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        if (m_objects[index] == nullptr) {
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        if (m_objects[index] == nullptr) [[unlikely]] {
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            return false;
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        }
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        if (m_entry_infos[index].GetLinearId() != linear_id) {
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        if (m_entry_infos[index].GetLinearId() != linear_id) [[unlikely]] {
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            return false;
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        }
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@@ -215,11 +251,11 @@ private:
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    KAutoObject* GetObjectImpl(Handle handle) const {
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        // Handles must not have reserved bits set.
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        const auto handle_pack = HandlePack(handle);
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        if (handle_pack.reserved != 0) {
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        if (handle_pack.reserved != 0) [[unlikely]] {
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            return nullptr;
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        }
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        if (this->IsValidHandle(handle)) {
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        if (this->IsValidHandle(handle)) [[likely]] {
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            return m_objects[handle_pack.index];
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        } else {
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            return nullptr;
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@@ -227,9 +263,8 @@ private:
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    }
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    KAutoObject* GetObjectByIndexImpl(Handle* out_handle, size_t index) const {
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        // Index must be in bounds.
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        if (index >= m_table_size) {
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        if (index >= m_table_size) [[unlikely]] {
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            return nullptr;
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		||||
        }
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@@ -244,18 +279,15 @@ private:
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private:
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    union HandlePack {
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        HandlePack() = default;
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        HandlePack(Handle handle) : raw{static_cast<u32>(handle)} {}
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        constexpr HandlePack() = default;
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        constexpr HandlePack(Handle handle) : raw{static_cast<u32>(handle)} {}
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        u32 raw;
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        u32 raw{};
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        BitField<0, 15, u32> index;
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        BitField<15, 15, u32> linear_id;
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        BitField<30, 2, u32> reserved;
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    };
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    static constexpr u16 MinLinearId = 1;
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    static constexpr u16 MaxLinearId = 0x7FFF;
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    static constexpr Handle EncodeHandle(u16 index, u16 linear_id) {
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        HandlePack handle{};
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        handle.index.Assign(index);
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@@ -264,6 +296,10 @@ private:
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        return handle.raw;
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    }
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private:
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    static constexpr u16 MinLinearId = 1;
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    static constexpr u16 MaxLinearId = 0x7FFF;
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    union EntryInfo {
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        u16 linear_id;
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        s16 next_free_index;
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@@ -271,21 +307,21 @@ private:
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        constexpr u16 GetLinearId() const {
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            return linear_id;
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        }
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        constexpr s16 GetNextFreeIndex() const {
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        constexpr s32 GetNextFreeIndex() const {
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            return next_free_index;
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		||||
        }
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		||||
    };
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private:
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    KernelCore& m_kernel;
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		||||
    std::array<EntryInfo, MaxTableSize> m_entry_infos{};
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    std::array<KAutoObject*, MaxTableSize> m_objects{};
 | 
			
		||||
    s32 m_free_head_index{-1};
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		||||
    mutable KSpinLock m_lock;
 | 
			
		||||
    s32 m_free_head_index{};
 | 
			
		||||
    u16 m_table_size{};
 | 
			
		||||
    u16 m_max_count{};
 | 
			
		||||
    u16 m_next_linear_id{MinLinearId};
 | 
			
		||||
    u16 m_next_linear_id{};
 | 
			
		||||
    u16 m_count{};
 | 
			
		||||
    mutable KSpinLock m_lock;
 | 
			
		||||
    KernelCore& kernel;
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
} // namespace Kernel
 | 
			
		||||
 
 | 
			
		||||
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	Block a user