kernel: remove gratitutous attribute usage
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91fd4e30f2
commit
9368e17a92
@ -44,7 +44,7 @@ public:
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/// Returns a list of all threads managed by the scheduler
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/// Returns a list of all threads managed by the scheduler
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/// This is only safe to iterate while holding the scheduler lock
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/// This is only safe to iterate while holding the scheduler lock
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[[nodiscard]] const std::vector<KThread*>& GetThreadList() const {
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const std::vector<KThread*>& GetThreadList() const {
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return m_thread_list;
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return m_thread_list;
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}
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}
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@ -64,7 +64,7 @@ public:
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void RegisterDummyThreadForWakeup(KThread* thread);
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void RegisterDummyThreadForWakeup(KThread* thread);
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void WakeupWaitingDummyThreads();
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void WakeupWaitingDummyThreads();
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[[nodiscard]] LockType& SchedulerLock() {
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LockType& SchedulerLock() {
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return m_scheduler_lock;
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return m_scheduler_lock;
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}
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}
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@ -42,7 +42,7 @@ public:
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bool IsInitialized() const override {
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bool IsInitialized() const override {
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return m_is_initialized;
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return m_is_initialized;
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}
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}
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static void PostDestroy([[maybe_unused]] uintptr_t arg) {}
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static void PostDestroy(uintptr_t arg) {}
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KProcess* GetOwner() const override {
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KProcess* GetOwner() const override {
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return m_owner;
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return m_owner;
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@ -14,7 +14,7 @@ class KDebug final : public KAutoObjectWithSlabHeapAndContainer<KDebug, KAutoObj
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public:
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public:
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explicit KDebug(KernelCore& kernel_) : KAutoObjectWithSlabHeapAndContainer{kernel_} {}
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explicit KDebug(KernelCore& kernel_) : KAutoObjectWithSlabHeapAndContainer{kernel_} {}
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static void PostDestroy([[maybe_unused]] uintptr_t arg) {}
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static void PostDestroy(uintptr_t arg) {}
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};
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};
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} // namespace Kernel
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} // namespace Kernel
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@ -471,8 +471,8 @@ public:
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m_disable_merge_attribute & KMemoryBlockDisableMergeAttribute::AllRight);
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m_disable_merge_attribute & KMemoryBlockDisableMergeAttribute::AllRight);
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}
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}
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constexpr void UpdateDeviceDisableMergeStateForShareLeft(
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constexpr void UpdateDeviceDisableMergeStateForShareLeft(KMemoryPermission new_perm, bool left,
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[[maybe_unused]] KMemoryPermission new_perm, bool left, [[maybe_unused]] bool right) {
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bool right) {
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// New permission/right aren't used.
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// New permission/right aren't used.
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if (left) {
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if (left) {
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m_disable_merge_attribute = static_cast<KMemoryBlockDisableMergeAttribute>(
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m_disable_merge_attribute = static_cast<KMemoryBlockDisableMergeAttribute>(
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@ -482,8 +482,8 @@ public:
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}
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}
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}
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}
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constexpr void UpdateDeviceDisableMergeStateForShareRight(
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constexpr void UpdateDeviceDisableMergeStateForShareRight(KMemoryPermission new_perm, bool left,
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[[maybe_unused]] KMemoryPermission new_perm, [[maybe_unused]] bool left, bool right) {
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bool right) {
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// New permission/left aren't used.
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// New permission/left aren't used.
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if (right) {
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if (right) {
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m_disable_merge_attribute = static_cast<KMemoryBlockDisableMergeAttribute>(
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m_disable_merge_attribute = static_cast<KMemoryBlockDisableMergeAttribute>(
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@ -499,8 +499,7 @@ public:
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this->UpdateDeviceDisableMergeStateForShareRight(new_perm, left, right);
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this->UpdateDeviceDisableMergeStateForShareRight(new_perm, left, right);
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}
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}
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constexpr void ShareToDevice([[maybe_unused]] KMemoryPermission new_perm, bool left,
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constexpr void ShareToDevice(KMemoryPermission new_perm, bool left, bool right) {
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bool right) {
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// New permission isn't used.
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// New permission isn't used.
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// We must either be shared or have a zero lock count.
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// We must either be shared or have a zero lock count.
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@ -516,8 +515,8 @@ public:
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this->UpdateDeviceDisableMergeStateForShare(new_perm, left, right);
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this->UpdateDeviceDisableMergeStateForShare(new_perm, left, right);
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}
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}
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constexpr void UpdateDeviceDisableMergeStateForUnshareLeft(
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constexpr void UpdateDeviceDisableMergeStateForUnshareLeft(KMemoryPermission new_perm,
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[[maybe_unused]] KMemoryPermission new_perm, bool left, [[maybe_unused]] bool right) {
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bool left, bool right) {
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// New permission/right aren't used.
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// New permission/right aren't used.
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if (left) {
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if (left) {
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@ -536,8 +535,8 @@ public:
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}
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}
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}
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}
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constexpr void UpdateDeviceDisableMergeStateForUnshareRight(
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constexpr void UpdateDeviceDisableMergeStateForUnshareRight(KMemoryPermission new_perm,
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[[maybe_unused]] KMemoryPermission new_perm, [[maybe_unused]] bool left, bool right) {
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bool left, bool right) {
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// New permission/left aren't used.
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// New permission/left aren't used.
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if (right) {
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if (right) {
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@ -556,8 +555,7 @@ public:
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this->UpdateDeviceDisableMergeStateForUnshareRight(new_perm, left, right);
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this->UpdateDeviceDisableMergeStateForUnshareRight(new_perm, left, right);
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}
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}
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constexpr void UnshareToDevice([[maybe_unused]] KMemoryPermission new_perm, bool left,
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constexpr void UnshareToDevice(KMemoryPermission new_perm, bool left, bool right) {
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bool right) {
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// New permission isn't used.
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// New permission isn't used.
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// We must be shared.
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// We must be shared.
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@ -575,8 +573,7 @@ public:
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this->UpdateDeviceDisableMergeStateForUnshare(new_perm, left, right);
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this->UpdateDeviceDisableMergeStateForUnshare(new_perm, left, right);
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}
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}
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constexpr void UnshareToDeviceRight([[maybe_unused]] KMemoryPermission new_perm, bool left,
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constexpr void UnshareToDeviceRight(KMemoryPermission new_perm, bool left, bool right) {
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bool right) {
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// New permission isn't used.
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// New permission isn't used.
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// We must be shared.
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// We must be shared.
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@ -594,7 +591,7 @@ public:
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this->UpdateDeviceDisableMergeStateForUnshareRight(new_perm, left, right);
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this->UpdateDeviceDisableMergeStateForUnshareRight(new_perm, left, right);
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}
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}
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constexpr void LockForIpc(KMemoryPermission new_perm, bool left, [[maybe_unused]] bool right) {
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constexpr void LockForIpc(KMemoryPermission new_perm, bool left, bool right) {
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// We must either be locked or have a zero lock count.
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// We must either be locked or have a zero lock count.
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ASSERT((m_attribute & KMemoryAttribute::IpcLocked) == KMemoryAttribute::IpcLocked ||
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ASSERT((m_attribute & KMemoryAttribute::IpcLocked) == KMemoryAttribute::IpcLocked ||
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m_ipc_lock_count == 0);
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m_ipc_lock_count == 0);
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@ -626,8 +623,7 @@ public:
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}
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}
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}
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}
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constexpr void UnlockForIpc([[maybe_unused]] KMemoryPermission new_perm, bool left,
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constexpr void UnlockForIpc(KMemoryPermission new_perm, bool left, bool right) {
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[[maybe_unused]] bool right) {
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// New permission isn't used.
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// New permission isn't used.
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// We must be locked.
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// We must be locked.
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@ -29,7 +29,7 @@ public:
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static KPageBuffer* FromPhysicalAddress(Core::System& system, PAddr phys_addr);
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static KPageBuffer* FromPhysicalAddress(Core::System& system, PAddr phys_addr);
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private:
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private:
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[[maybe_unused]] alignas(PageSize) std::array<u8, PageSize> m_buffer{};
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alignas(PageSize) std::array<u8, PageSize> m_buffer{};
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};
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};
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static_assert(sizeof(KPageBuffer) == KPageBufferSlabHeap::BufferSize);
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static_assert(sizeof(KPageBuffer) == KPageBufferSlabHeap::BufferSize);
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@ -46,7 +46,7 @@ public:
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void Release(LimitableResource which, s64 value);
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void Release(LimitableResource which, s64 value);
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void Release(LimitableResource which, s64 value, s64 hint);
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void Release(LimitableResource which, s64 value, s64 hint);
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static void PostDestroy([[maybe_unused]] uintptr_t arg) {}
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static void PostDestroy(uintptr_t arg) {}
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private:
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private:
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using ResourceArray = std::array<s64, static_cast<std::size_t>(LimitableResource::Count)>;
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using ResourceArray = std::array<s64, static_cast<std::size_t>(LimitableResource::Count)>;
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@ -5,9 +5,8 @@
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namespace Kernel {
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namespace Kernel {
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Result KSecureSystemResource::Initialize([[maybe_unused]] size_t size,
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Result KSecureSystemResource::Initialize(size_t size, KResourceLimit* resource_limit,
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[[maybe_unused]] KResourceLimit* resource_limit,
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KMemoryManager::Pool pool) {
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[[maybe_unused]] KMemoryManager::Pool pool) {
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// Unimplemented
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// Unimplemented
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UNREACHABLE();
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UNREACHABLE();
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}
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}
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@ -17,8 +16,8 @@ void KSecureSystemResource::Finalize() {
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UNREACHABLE();
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UNREACHABLE();
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}
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}
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size_t KSecureSystemResource::CalculateRequiredSecureMemorySize(
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size_t KSecureSystemResource::CalculateRequiredSecureMemorySize(size_t size,
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[[maybe_unused]] size_t size, [[maybe_unused]] KMemoryManager::Pool pool) {
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KMemoryManager::Pool pool) {
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// Unimplemented
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// Unimplemented
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UNREACHABLE();
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UNREACHABLE();
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}
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}
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@ -99,7 +99,7 @@ public:
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bool IsInitialized() const {
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bool IsInitialized() const {
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return m_is_initialized;
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return m_is_initialized;
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}
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}
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static void PostDestroy([[maybe_unused]] uintptr_t arg) {}
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static void PostDestroy(uintptr_t arg) {}
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size_t CalculateRequiredSecureMemorySize() const {
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size_t CalculateRequiredSecureMemorySize() const {
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return CalculateRequiredSecureMemorySize(m_resource_size, m_resource_pool);
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return CalculateRequiredSecureMemorySize(m_resource_size, m_resource_pool);
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