device_memory_manager.h 5.7 KB

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  1. // SPDX-FileCopyrightText: Copyright 2023 yuzu Emulator Project
  2. // SPDX-License-Identifier: GPL-2.0-or-later
  3. #pragma once
  4. #include <array>
  5. #include <atomic>
  6. #include <deque>
  7. #include <memory>
  8. #include <mutex>
  9. #include "common/common_types.h"
  10. #include "common/virtual_buffer.h"
  11. namespace Core {
  12. class DeviceMemory;
  13. namespace Memory {
  14. class Memory;
  15. }
  16. template <typename DTraits>
  17. struct DeviceMemoryManagerAllocator;
  18. template <typename Traits>
  19. class DeviceMemoryManager {
  20. using DeviceInterface = typename Traits::DeviceInterface;
  21. using DeviceMethods = Traits::DeviceMethods;
  22. public:
  23. DeviceMemoryManager(const DeviceMemory& device_memory);
  24. ~DeviceMemoryManager();
  25. void BindInterface(DeviceInterface* interface);
  26. DAddr Allocate(size_t size);
  27. void AllocateFixed(DAddr start, size_t size);
  28. DAddr AllocatePinned(size_t size);
  29. void Free(DAddr start, size_t size);
  30. void Map(DAddr address, VAddr virtual_address, size_t size, size_t process_id);
  31. void Unmap(DAddr address, size_t size);
  32. // Write / Read
  33. template <typename T>
  34. T* GetPointer(DAddr address);
  35. template <typename T>
  36. const T* GetPointer(DAddr address) const;
  37. DAddr GetAddressFromPAddr(PAddr address) const {
  38. DAddr subbits = static_cast<DAddr>(address & page_mask);
  39. return (static_cast<DAddr>(compressed_device_addr[(address >> page_bits)]) << page_bits) + subbits;
  40. }
  41. PAddr GetPhysicalRawAddressFromDAddr(DAddr address) const {
  42. PAddr subbits = static_cast<PAddr>(address & page_mask);
  43. auto paddr = compressed_physical_ptr[(address >> page_bits)];
  44. if (paddr == 0) {
  45. return 0;
  46. }
  47. return (static_cast<PAddr>(paddr - 1) << page_bits) + subbits;
  48. }
  49. template <typename T>
  50. void Write(DAddr address, T value);
  51. template <typename T>
  52. T Read(DAddr address) const;
  53. const u8* GetSpan(const DAddr src_addr, const std::size_t size) const {
  54. return nullptr;
  55. }
  56. u8* GetSpan(const DAddr src_addr, const std::size_t size) {
  57. return nullptr;
  58. }
  59. void ReadBlock(DAddr address, void* dest_pointer, size_t size);
  60. void ReadBlockUnsafe(DAddr address, void* dest_pointer, size_t size);
  61. void WriteBlock(DAddr address, const void* src_pointer, size_t size);
  62. void WriteBlockUnsafe(DAddr address, const void* src_pointer, size_t size);
  63. size_t RegisterProcess(Memory::Memory* memory);
  64. void UnregisterProcess(size_t id);
  65. void UpdatePagesCachedCount(DAddr addr, size_t size, s32 delta);
  66. static constexpr size_t AS_BITS = Traits::device_virtual_bits;
  67. private:
  68. static constexpr bool supports_pinning = Traits::supports_pinning;
  69. static constexpr size_t device_virtual_bits = Traits::device_virtual_bits;
  70. static constexpr size_t device_as_size = 1ULL << device_virtual_bits;
  71. static constexpr size_t physical_max_bits = 33;
  72. static constexpr size_t page_bits = 12;
  73. static constexpr size_t page_size = 1ULL << page_bits;
  74. static constexpr size_t page_mask = page_size - 1ULL;
  75. static constexpr u32 physical_address_base = 1U << page_bits;
  76. template <typename T>
  77. T* GetPointerFromRaw(PAddr addr) {
  78. return reinterpret_cast<T*>(physical_base + addr);
  79. }
  80. template <typename T>
  81. const T* GetPointerFromRaw(PAddr addr) const {
  82. return reinterpret_cast<T*>(physical_base + addr);
  83. }
  84. template <typename T>
  85. PAddr GetRawPhysicalAddr(const T* ptr) const {
  86. return static_cast<PAddr>(reinterpret_cast<uintptr_t>(ptr) - physical_base);
  87. }
  88. void WalkBlock(const DAddr addr, const std::size_t size, auto on_unmapped, auto on_memory,
  89. auto increment);
  90. std::unique_ptr<DeviceMemoryManagerAllocator<Traits>> impl;
  91. const uintptr_t physical_base;
  92. DeviceInterface* interface;
  93. Common::VirtualBuffer<u32> compressed_physical_ptr;
  94. Common::VirtualBuffer<u32> compressed_device_addr;
  95. // Process memory interfaces
  96. std::deque<size_t> id_pool;
  97. std::deque<Memory::Memory*> registered_processes;
  98. // Memory protection management
  99. static constexpr size_t guest_max_as_bits = 39;
  100. static constexpr size_t guest_as_size = 1ULL << guest_max_as_bits;
  101. static constexpr size_t guest_mask = guest_as_size - 1ULL;
  102. static constexpr size_t process_id_start_bit = guest_max_as_bits;
  103. std::pair<size_t, VAddr> ExtractCPUBacking(size_t page_index) {
  104. auto content = cpu_backing_address[page_index];
  105. const VAddr address = content & guest_mask;
  106. const size_t process_id = static_cast<size_t>(content >> process_id_start_bit);
  107. return std::make_pair(process_id, address);
  108. }
  109. void InsertCPUBacking(size_t page_index, VAddr address, size_t process_id) {
  110. cpu_backing_address[page_index] = address | (process_id << page_index);
  111. }
  112. Common::VirtualBuffer<VAddr> cpu_backing_address;
  113. static constexpr size_t subentries = 4;
  114. static constexpr size_t subentries_mask = subentries - 1;
  115. class CounterEntry final {
  116. public:
  117. CounterEntry() = default;
  118. std::atomic_uint16_t& Count(std::size_t page) {
  119. return values[page & subentries_mask];
  120. }
  121. const std::atomic_uint16_t& Count(std::size_t page) const {
  122. return values[page & subentries_mask];
  123. }
  124. private:
  125. std::array<std::atomic_uint16_t, subentries> values{};
  126. };
  127. static_assert(sizeof(CounterEntry) == subentries * sizeof(u16),
  128. "CounterEntry should be 8 bytes!");
  129. static constexpr size_t num_counter_entries =
  130. (1ULL << (device_virtual_bits - page_bits)) / subentries;
  131. using CachedPages = std::array<CounterEntry, num_counter_entries>;
  132. std::unique_ptr<CachedPages> cached_pages;
  133. std::mutex counter_guard;
  134. std::mutex mapping_guard;
  135. };
  136. } // namespace Core