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https://github.com/Atmosphere-NX/Atmosphere.git
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fssystem: revise allocator logic for latest semantics
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@ -16,50 +16,100 @@
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#pragma once
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#include <vapours.hpp>
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/* Forward declare ams::fs allocate shared. */
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namespace ams::fs::impl {
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template<typename T, template<typename, typename> class AllocatorTemplateT, typename Impl, typename... Args>
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std::shared_ptr<T> AllocateSharedImpl(Args &&... args);
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}
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namespace ams::fssystem {
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using AllocateFunction = void *(*)(size_t size);
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using DeallocateFunction = void (*)(void *ptr, size_t size);
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void InitializeAllocator(AllocateFunction allocate_func, DeallocateFunction deallocate_func);
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void InitializeAllocatorForSystem(AllocateFunction allocate_func, DeallocateFunction deallocate_func);
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void *Allocate(size_t size);
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void Deallocate(void *ptr, size_t size);
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template<typename T>
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class StdAllocator : public std::allocator<T> {
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public:
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StdAllocator() = default;
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StdAllocator(const StdAllocator &) = default;
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template<class U>
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StdAllocator(const StdAllocator<U> &) : std::allocator<T>() { /* ... */ };
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namespace impl {
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template<typename U>
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struct rebind {
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using other = StdAllocator<U>;
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};
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template<bool ForSystem>
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class AllocatorFunctionSet {
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public:
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static void *Allocate(size_t size);
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static void *AllocateUnsafe(size_t size);
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T *Allocate(size_t size, const T *hint = nullptr) {
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AMS_UNUSED(hint);
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return static_cast<T *>(::ams::fssystem::Allocate(sizeof(T) * size));
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}
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static void Deallocate(void *ptr, size_t size);
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static void DeallocateUnsafe(void *ptr, size_t size);
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void Deallocate(T *ptr, size_t size) {
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return ::ams::fssystem::Deallocate(ptr, sizeof(T) * size);
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}
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static void LockAllocatorMutex();
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static void UnlockAllocatorMutex();
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};
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ALWAYS_INLINE T *allocate(size_t size, const T *hint = nullptr) { return this->Allocate(size, hint); }
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ALWAYS_INLINE void deallocate(T *ptr, size_t size) { return this->Deallocate(ptr, size); }
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};
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using AllocatorFunctionSetForNormal = AllocatorFunctionSet<false>;
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using AllocatorFunctionSetForSystem = AllocatorFunctionSet<true>;
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template<typename T, typename Impl, bool RequireNonNull, bool AllocateWhileLocked>
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class AllocatorTemplate : public std::allocator<T> {
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public:
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template<typename U>
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struct rebind {
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using other = AllocatorTemplate<U, Impl, RequireNonNull, AllocateWhileLocked>;
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};
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private:
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static ALWAYS_INLINE T *AllocateImpl(::std::size_t n) {
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if constexpr (AllocateWhileLocked) {
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auto * const p = Impl::AllocateUnsafe(sizeof(T) * n);
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Impl::UnlockAllocatorMutex();
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return static_cast<T *>(p);
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} else {
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return static_cast<T *>(Impl::Allocate(sizeof(T) * n));
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}
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}
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public:
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AllocatorTemplate() { /* ... */ }
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template<typename U>
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AllocatorTemplate(const AllocatorTemplate<U, Impl, RequireNonNull, AllocateWhileLocked> &) { /* ... */ }
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[[nodiscard]] T *allocate(::std::size_t n) {
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auto * const p = AllocateImpl(n);
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if constexpr (RequireNonNull) {
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AMS_ABORT_UNLESS(p != nullptr);
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}
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return p;
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}
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void deallocate(T *p, ::std::size_t n) {
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Impl::Deallocate(p, sizeof(T) * n);
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}
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};
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template<typename T, typename Impl>
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using AllocatorTemplateForAllocateShared = AllocatorTemplate<T, Impl, true, true>;
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template<typename T>
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std::shared_ptr<T> AllocateShared() {
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return std::allocate_shared<T>(StdAllocator<T>{});
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}
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template<typename T, typename... Args>
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std::shared_ptr<T> AllocateShared(Args &&... args) {
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return std::allocate_shared<T>(StdAllocator<T>{}, std::forward<Args>(args)...);
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return ::ams::fs::impl::AllocateSharedImpl<T, impl::AllocatorTemplateForAllocateShared, impl::AllocatorFunctionSetForNormal>(std::forward<Args>(args)...);
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}
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template<typename TImpl, typename ErrorResult, typename TIntf, typename... Args>
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Result AllocateSharedForSystem(std::shared_ptr<TIntf> *out, Args &&... args) {
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/* Allocate the object. */
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auto p = ::ams::fs::impl::AllocateSharedImpl<TImpl, impl::AllocatorTemplateForAllocateShared, impl::AllocatorFunctionSetForSystem>(std::forward<Args>(args)...);
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/* Check that allocation succeeded. */
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R_UNLESS(p != nullptr, ErrorResult());
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/* Return the allocated object. */
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*out = std::move(p);
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return ResultSuccess();
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}
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}
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@ -21,37 +21,110 @@ namespace ams::fssystem {
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constexpr bool UseDefaultAllocators = false;
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bool g_used_default_allocator;
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constinit bool g_used_default_allocator = false;
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void *DefaultAllocate(size_t size) {
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g_used_default_allocator = true;
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return std::malloc(size);
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return ams::Malloc(size);
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}
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void DefaultDeallocate(void *ptr, size_t size) {
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AMS_UNUSED(size);
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std::free(ptr);
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ams::Free(ptr);
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}
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AllocateFunction g_allocate_func = UseDefaultAllocators ? DefaultAllocate : nullptr;
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DeallocateFunction g_deallocate_func = UseDefaultAllocators ? DefaultDeallocate : nullptr;
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constinit os::SdkMutex g_allocate_mutex;
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constinit os::SdkMutex g_allocate_mutex_for_system;
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constinit AllocateFunction g_allocate_func = UseDefaultAllocators ? DefaultAllocate : nullptr;
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constinit DeallocateFunction g_deallocate_func = UseDefaultAllocators ? DefaultDeallocate : nullptr;
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constinit AllocateFunction g_allocate_func_for_system = nullptr;
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constinit DeallocateFunction g_deallocate_func_for_system = nullptr;
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void *AllocateUnsafe(size_t size) {
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/* Check pre-conditions. */
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AMS_ASSERT(g_allocate_mutex.IsLockedByCurrentThread());
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AMS_ASSERT(g_allocate_func != nullptr);
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/* Allocate memory. */
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return g_allocate_func(size);
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}
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void DeallocateUnsafe(void *ptr, size_t size) {
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/* Check pre-conditions. */
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AMS_ASSERT(g_allocate_mutex.IsLockedByCurrentThread());
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AMS_ASSERT(g_deallocate_func != nullptr);
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/* Deallocate the pointer. */
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g_deallocate_func(ptr, size);
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}
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}
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namespace impl {
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/* Normal allocator set. */
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template<> void *AllocatorFunctionSet<false>::Allocate(size_t size) { return ::ams::fssystem::Allocate(size); }
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template<> void *AllocatorFunctionSet<false>::AllocateUnsafe(size_t size) { return ::ams::fssystem::AllocateUnsafe(size); }
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template<> void AllocatorFunctionSet<false>::Deallocate(void *ptr, size_t size) { return ::ams::fssystem::Deallocate(ptr, size); }
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template<> void AllocatorFunctionSet<false>::DeallocateUnsafe(void *ptr, size_t size) { return ::ams::fssystem::DeallocateUnsafe(ptr, size); }
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template<> void AllocatorFunctionSet<false>::LockAllocatorMutex() { ::ams::fssystem::g_allocate_mutex.Lock(); }
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template<> void AllocatorFunctionSet<false>::UnlockAllocatorMutex() { ::ams::fssystem::g_allocate_mutex.Unlock(); }
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/* System allocator set. */
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template<> void *AllocatorFunctionSet<true>::AllocateUnsafe(size_t size) {
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/* Check pre-conditions. */
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AMS_ASSERT(::ams::fssystem::g_allocate_mutex_for_system.IsLockedByCurrentThread());
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AMS_ASSERT(::ams::fssystem::g_allocate_func_for_system != nullptr);
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/* Allocate memory. */
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return g_allocate_func_for_system(size);
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}
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template<> void AllocatorFunctionSet<true>::DeallocateUnsafe(void *ptr, size_t size) {
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/* Check pre-conditions. */
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AMS_ASSERT(::ams::fssystem::g_allocate_mutex_for_system.IsLockedByCurrentThread());
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AMS_ASSERT(::ams::fssystem::g_deallocate_func_for_system != nullptr);
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/* Deallocate the pointer. */
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::ams::fssystem::g_deallocate_func_for_system(ptr, size);
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}
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template<> void *AllocatorFunctionSet<true>::Allocate(size_t size) {
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std::scoped_lock lk(::ams::fssystem::g_allocate_mutex_for_system);
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return ::ams::fssystem::impl::AllocatorFunctionSet<true>::AllocateUnsafe(size);
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}
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template<> void AllocatorFunctionSet<true>::Deallocate(void *ptr, size_t size) {
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std::scoped_lock lk(::ams::fssystem::g_allocate_mutex_for_system);
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return ::ams::fssystem::impl::AllocatorFunctionSet<true>::DeallocateUnsafe(ptr, size);
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}
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template<> void AllocatorFunctionSet<true>::LockAllocatorMutex() { ::ams::fssystem::g_allocate_mutex_for_system.Lock(); }
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template<> void AllocatorFunctionSet<true>::UnlockAllocatorMutex() { ::ams::fssystem::g_allocate_mutex_for_system.Unlock(); }
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}
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void *Allocate(size_t size) {
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AMS_ASSERT(g_allocate_func != nullptr);
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return g_allocate_func(size);
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std::scoped_lock lk(g_allocate_mutex);
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return AllocateUnsafe(size);
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}
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void Deallocate(void *ptr, size_t size) {
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AMS_ASSERT(g_deallocate_func != nullptr);
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return g_deallocate_func(ptr, size);
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std::scoped_lock lk(g_allocate_mutex);
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return DeallocateUnsafe(ptr, size);
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}
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void InitializeAllocator(AllocateFunction allocate_func, DeallocateFunction deallocate_func) {
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/* Check pre-conditions. */
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AMS_ASSERT(allocate_func != nullptr);
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AMS_ASSERT(deallocate_func != nullptr);
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/* Check that we can initialize. */
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if constexpr (UseDefaultAllocators) {
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AMS_ASSERT(g_used_default_allocator == false);
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} else {
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@ -59,8 +132,23 @@ namespace ams::fssystem {
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AMS_ASSERT(g_deallocate_func == nullptr);
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}
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/* Set the allocator functions. */
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g_allocate_func = allocate_func;
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g_deallocate_func = deallocate_func;
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}
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void InitializeAllocatorForSystem(AllocateFunction allocate_func, DeallocateFunction deallocate_func) {
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/* Check pre-conditions. */
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AMS_ASSERT(allocate_func != nullptr);
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AMS_ASSERT(deallocate_func != nullptr);
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/* Check that we can initialize. */
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AMS_ASSERT(g_allocate_func_for_system == nullptr);
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AMS_ASSERT(g_deallocate_func_for_system == nullptr);
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/* Set the system allocator functions. */
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g_allocate_func_for_system = allocate_func;
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g_deallocate_func_for_system = deallocate_func;
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}
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}
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@ -124,6 +124,7 @@ namespace ams::fssystem {
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/* TODO FS-REIMPL: sf::SetGlobalDefaultMemoryResource() */
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fs::SetAllocator(AllocateForFileSystemProxy, DeallocateForFileSystemProxy);
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fssystem::InitializeAllocator(AllocateForFileSystemProxy, DeallocateForFileSystemProxy);
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fssystem::InitializeAllocatorForSystem(AllocateForFileSystemProxy, DeallocateForFileSystemProxy);
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/* Initialize the buffer manager. */
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/* TODO FS-REIMPL: os::AllocateMemoryBlock(...); */
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