k_page_table.h 16 KB

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  1. // SPDX-FileCopyrightText: Copyright 2020 yuzu Emulator Project
  2. // SPDX-License-Identifier: GPL-2.0-or-later
  3. #pragma once
  4. #include <memory>
  5. #include "common/common_funcs.h"
  6. #include "common/common_types.h"
  7. #include "common/page_table.h"
  8. #include "core/file_sys/program_metadata.h"
  9. #include "core/hle/kernel/k_dynamic_resource_manager.h"
  10. #include "core/hle/kernel/k_light_lock.h"
  11. #include "core/hle/kernel/k_memory_block.h"
  12. #include "core/hle/kernel/k_memory_block_manager.h"
  13. #include "core/hle/kernel/k_memory_layout.h"
  14. #include "core/hle/kernel/k_memory_manager.h"
  15. #include "core/hle/result.h"
  16. namespace Core {
  17. class System;
  18. }
  19. namespace Kernel {
  20. class KMemoryBlockManager;
  21. class KPageTable final {
  22. public:
  23. enum class ICacheInvalidationStrategy : u32 { InvalidateRange, InvalidateAll };
  24. YUZU_NON_COPYABLE(KPageTable);
  25. YUZU_NON_MOVEABLE(KPageTable);
  26. explicit KPageTable(Core::System& system_);
  27. ~KPageTable();
  28. Result InitializeForProcess(FileSys::ProgramAddressSpaceType as_type, bool enable_aslr,
  29. VAddr code_addr, size_t code_size,
  30. KMemoryBlockSlabManager* mem_block_slab_manager,
  31. KMemoryManager::Pool pool);
  32. void Finalize();
  33. Result MapProcessCode(VAddr addr, size_t pages_count, KMemoryState state,
  34. KMemoryPermission perm);
  35. Result MapCodeMemory(VAddr dst_address, VAddr src_address, size_t size);
  36. Result UnmapCodeMemory(VAddr dst_address, VAddr src_address, size_t size,
  37. ICacheInvalidationStrategy icache_invalidation_strategy);
  38. Result UnmapProcessMemory(VAddr dst_addr, size_t size, KPageTable& src_page_table,
  39. VAddr src_addr);
  40. Result MapPhysicalMemory(VAddr addr, size_t size);
  41. Result UnmapPhysicalMemory(VAddr addr, size_t size);
  42. Result MapMemory(VAddr dst_addr, VAddr src_addr, size_t size);
  43. Result UnmapMemory(VAddr dst_addr, VAddr src_addr, size_t size);
  44. Result MapPages(VAddr addr, KPageGroup& page_linked_list, KMemoryState state,
  45. KMemoryPermission perm);
  46. Result MapPages(VAddr* out_addr, size_t num_pages, size_t alignment, PAddr phys_addr,
  47. KMemoryState state, KMemoryPermission perm) {
  48. return this->MapPages(out_addr, num_pages, alignment, phys_addr, true,
  49. this->GetRegionAddress(state), this->GetRegionSize(state) / PageSize,
  50. state, perm);
  51. }
  52. Result UnmapPages(VAddr addr, KPageGroup& page_linked_list, KMemoryState state);
  53. Result UnmapPages(VAddr address, size_t num_pages, KMemoryState state);
  54. Result SetProcessMemoryPermission(VAddr addr, size_t size, Svc::MemoryPermission svc_perm);
  55. KMemoryInfo QueryInfo(VAddr addr);
  56. Result SetMemoryPermission(VAddr addr, size_t size, Svc::MemoryPermission perm);
  57. Result SetMemoryAttribute(VAddr addr, size_t size, u32 mask, u32 attr);
  58. Result SetMaxHeapSize(size_t size);
  59. Result SetHeapSize(VAddr* out, size_t size);
  60. ResultVal<VAddr> AllocateAndMapMemory(size_t needed_num_pages, size_t align, bool is_map_only,
  61. VAddr region_start, size_t region_num_pages,
  62. KMemoryState state, KMemoryPermission perm,
  63. PAddr map_addr = 0);
  64. Result LockForMapDeviceAddressSpace(VAddr address, size_t size, KMemoryPermission perm,
  65. bool is_aligned);
  66. Result LockForUnmapDeviceAddressSpace(VAddr address, size_t size);
  67. Result UnlockForDeviceAddressSpace(VAddr addr, size_t size);
  68. Result LockForCodeMemory(KPageGroup* out, VAddr addr, size_t size);
  69. Result UnlockForCodeMemory(VAddr addr, size_t size, const KPageGroup& pg);
  70. Result MakeAndOpenPageGroup(KPageGroup* out, VAddr address, size_t num_pages,
  71. KMemoryState state_mask, KMemoryState state,
  72. KMemoryPermission perm_mask, KMemoryPermission perm,
  73. KMemoryAttribute attr_mask, KMemoryAttribute attr);
  74. Common::PageTable& PageTableImpl() {
  75. return *m_page_table_impl;
  76. }
  77. const Common::PageTable& PageTableImpl() const {
  78. return *m_page_table_impl;
  79. }
  80. bool CanContain(VAddr addr, size_t size, KMemoryState state) const;
  81. private:
  82. enum class OperationType : u32 {
  83. Map,
  84. MapGroup,
  85. Unmap,
  86. ChangePermissions,
  87. ChangePermissionsAndRefresh,
  88. };
  89. static constexpr KMemoryAttribute DefaultMemoryIgnoreAttr =
  90. KMemoryAttribute::IpcLocked | KMemoryAttribute::DeviceShared;
  91. Result MapPages(VAddr addr, const KPageGroup& page_linked_list, KMemoryPermission perm);
  92. Result MapPages(VAddr* out_addr, size_t num_pages, size_t alignment, PAddr phys_addr,
  93. bool is_pa_valid, VAddr region_start, size_t region_num_pages,
  94. KMemoryState state, KMemoryPermission perm);
  95. Result UnmapPages(VAddr addr, const KPageGroup& page_linked_list);
  96. bool IsRegionContiguous(VAddr addr, u64 size) const;
  97. void AddRegionToPages(VAddr start, size_t num_pages, KPageGroup& page_linked_list);
  98. KMemoryInfo QueryInfoImpl(VAddr addr);
  99. VAddr AllocateVirtualMemory(VAddr start, size_t region_num_pages, u64 needed_num_pages,
  100. size_t align);
  101. Result Operate(VAddr addr, size_t num_pages, const KPageGroup& page_group,
  102. OperationType operation);
  103. Result Operate(VAddr addr, size_t num_pages, KMemoryPermission perm, OperationType operation,
  104. PAddr map_addr = 0);
  105. VAddr GetRegionAddress(KMemoryState state) const;
  106. size_t GetRegionSize(KMemoryState state) const;
  107. VAddr FindFreeArea(VAddr region_start, size_t region_num_pages, size_t num_pages,
  108. size_t alignment, size_t offset, size_t guard_pages);
  109. Result CheckMemoryStateContiguous(size_t* out_blocks_needed, VAddr addr, size_t size,
  110. KMemoryState state_mask, KMemoryState state,
  111. KMemoryPermission perm_mask, KMemoryPermission perm,
  112. KMemoryAttribute attr_mask, KMemoryAttribute attr) const;
  113. Result CheckMemoryStateContiguous(VAddr addr, size_t size, KMemoryState state_mask,
  114. KMemoryState state, KMemoryPermission perm_mask,
  115. KMemoryPermission perm, KMemoryAttribute attr_mask,
  116. KMemoryAttribute attr) const {
  117. return this->CheckMemoryStateContiguous(nullptr, addr, size, state_mask, state, perm_mask,
  118. perm, attr_mask, attr);
  119. }
  120. Result CheckMemoryState(const KMemoryInfo& info, KMemoryState state_mask, KMemoryState state,
  121. KMemoryPermission perm_mask, KMemoryPermission perm,
  122. KMemoryAttribute attr_mask, KMemoryAttribute attr) const;
  123. Result CheckMemoryState(KMemoryState* out_state, KMemoryPermission* out_perm,
  124. KMemoryAttribute* out_attr, size_t* out_blocks_needed, VAddr addr,
  125. size_t size, KMemoryState state_mask, KMemoryState state,
  126. KMemoryPermission perm_mask, KMemoryPermission perm,
  127. KMemoryAttribute attr_mask, KMemoryAttribute attr,
  128. KMemoryAttribute ignore_attr = DefaultMemoryIgnoreAttr) const;
  129. Result CheckMemoryState(size_t* out_blocks_needed, VAddr addr, size_t size,
  130. KMemoryState state_mask, KMemoryState state,
  131. KMemoryPermission perm_mask, KMemoryPermission perm,
  132. KMemoryAttribute attr_mask, KMemoryAttribute attr,
  133. KMemoryAttribute ignore_attr = DefaultMemoryIgnoreAttr) const {
  134. return CheckMemoryState(nullptr, nullptr, nullptr, out_blocks_needed, addr, size,
  135. state_mask, state, perm_mask, perm, attr_mask, attr, ignore_attr);
  136. }
  137. Result CheckMemoryState(VAddr addr, size_t size, KMemoryState state_mask, KMemoryState state,
  138. KMemoryPermission perm_mask, KMemoryPermission perm,
  139. KMemoryAttribute attr_mask, KMemoryAttribute attr,
  140. KMemoryAttribute ignore_attr = DefaultMemoryIgnoreAttr) const {
  141. return this->CheckMemoryState(nullptr, addr, size, state_mask, state, perm_mask, perm,
  142. attr_mask, attr, ignore_attr);
  143. }
  144. Result LockMemoryAndOpen(KPageGroup* out_pg, PAddr* out_paddr, VAddr addr, size_t size,
  145. KMemoryState state_mask, KMemoryState state,
  146. KMemoryPermission perm_mask, KMemoryPermission perm,
  147. KMemoryAttribute attr_mask, KMemoryAttribute attr,
  148. KMemoryPermission new_perm, KMemoryAttribute lock_attr);
  149. Result UnlockMemory(VAddr addr, size_t size, KMemoryState state_mask, KMemoryState state,
  150. KMemoryPermission perm_mask, KMemoryPermission perm,
  151. KMemoryAttribute attr_mask, KMemoryAttribute attr,
  152. KMemoryPermission new_perm, KMemoryAttribute lock_attr,
  153. const KPageGroup* pg);
  154. Result MakePageGroup(KPageGroup& pg, VAddr addr, size_t num_pages);
  155. bool IsValidPageGroup(const KPageGroup& pg, VAddr addr, size_t num_pages);
  156. bool IsLockedByCurrentThread() const {
  157. return m_general_lock.IsLockedByCurrentThread();
  158. }
  159. bool IsHeapPhysicalAddress(const KMemoryLayout& layout, PAddr phys_addr) {
  160. ASSERT(this->IsLockedByCurrentThread());
  161. return layout.IsHeapPhysicalAddress(m_cached_physical_heap_region, phys_addr);
  162. }
  163. bool GetPhysicalAddressLocked(PAddr* out, VAddr virt_addr) const {
  164. ASSERT(this->IsLockedByCurrentThread());
  165. *out = GetPhysicalAddr(virt_addr);
  166. return *out != 0;
  167. }
  168. mutable KLightLock m_general_lock;
  169. mutable KLightLock m_map_physical_memory_lock;
  170. public:
  171. constexpr VAddr GetAddressSpaceStart() const {
  172. return m_address_space_start;
  173. }
  174. constexpr VAddr GetAddressSpaceEnd() const {
  175. return m_address_space_end;
  176. }
  177. constexpr size_t GetAddressSpaceSize() const {
  178. return m_address_space_end - m_address_space_start;
  179. }
  180. constexpr VAddr GetHeapRegionStart() const {
  181. return m_heap_region_start;
  182. }
  183. constexpr VAddr GetHeapRegionEnd() const {
  184. return m_heap_region_end;
  185. }
  186. constexpr size_t GetHeapRegionSize() const {
  187. return m_heap_region_end - m_heap_region_start;
  188. }
  189. constexpr VAddr GetAliasRegionStart() const {
  190. return m_alias_region_start;
  191. }
  192. constexpr VAddr GetAliasRegionEnd() const {
  193. return m_alias_region_end;
  194. }
  195. constexpr size_t GetAliasRegionSize() const {
  196. return m_alias_region_end - m_alias_region_start;
  197. }
  198. constexpr VAddr GetStackRegionStart() const {
  199. return m_stack_region_start;
  200. }
  201. constexpr VAddr GetStackRegionEnd() const {
  202. return m_stack_region_end;
  203. }
  204. constexpr size_t GetStackRegionSize() const {
  205. return m_stack_region_end - m_stack_region_start;
  206. }
  207. constexpr VAddr GetKernelMapRegionStart() const {
  208. return m_kernel_map_region_start;
  209. }
  210. constexpr VAddr GetKernelMapRegionEnd() const {
  211. return m_kernel_map_region_end;
  212. }
  213. constexpr VAddr GetCodeRegionStart() const {
  214. return m_code_region_start;
  215. }
  216. constexpr VAddr GetCodeRegionEnd() const {
  217. return m_code_region_end;
  218. }
  219. constexpr VAddr GetAliasCodeRegionStart() const {
  220. return m_alias_code_region_start;
  221. }
  222. constexpr VAddr GetAliasCodeRegionSize() const {
  223. return m_alias_code_region_end - m_alias_code_region_start;
  224. }
  225. size_t GetNormalMemorySize() {
  226. KScopedLightLock lk(m_general_lock);
  227. return GetHeapSize() + m_mapped_physical_memory_size;
  228. }
  229. constexpr size_t GetAddressSpaceWidth() const {
  230. return m_address_space_width;
  231. }
  232. constexpr size_t GetHeapSize() const {
  233. return m_current_heap_end - m_heap_region_start;
  234. }
  235. constexpr bool IsInsideAddressSpace(VAddr address, size_t size) const {
  236. return m_address_space_start <= address && address + size - 1 <= m_address_space_end - 1;
  237. }
  238. constexpr bool IsOutsideAliasRegion(VAddr address, size_t size) const {
  239. return m_alias_region_start > address || address + size - 1 > m_alias_region_end - 1;
  240. }
  241. constexpr bool IsOutsideStackRegion(VAddr address, size_t size) const {
  242. return m_stack_region_start > address || address + size - 1 > m_stack_region_end - 1;
  243. }
  244. constexpr bool IsInvalidRegion(VAddr address, size_t size) const {
  245. return address + size - 1 > GetAliasCodeRegionStart() + GetAliasCodeRegionSize() - 1;
  246. }
  247. constexpr bool IsInsideHeapRegion(VAddr address, size_t size) const {
  248. return address + size > m_heap_region_start && m_heap_region_end > address;
  249. }
  250. constexpr bool IsInsideAliasRegion(VAddr address, size_t size) const {
  251. return address + size > m_alias_region_start && m_alias_region_end > address;
  252. }
  253. constexpr bool IsOutsideASLRRegion(VAddr address, size_t size) const {
  254. if (IsInvalidRegion(address, size)) {
  255. return true;
  256. }
  257. if (IsInsideHeapRegion(address, size)) {
  258. return true;
  259. }
  260. if (IsInsideAliasRegion(address, size)) {
  261. return true;
  262. }
  263. return {};
  264. }
  265. constexpr bool IsInsideASLRRegion(VAddr address, size_t size) const {
  266. return !IsOutsideASLRRegion(address, size);
  267. }
  268. constexpr size_t GetNumGuardPages() const {
  269. return IsKernel() ? 1 : 4;
  270. }
  271. PAddr GetPhysicalAddr(VAddr addr) const {
  272. const auto backing_addr = m_page_table_impl->backing_addr[addr >> PageBits];
  273. ASSERT(backing_addr);
  274. return backing_addr + addr;
  275. }
  276. constexpr bool Contains(VAddr addr) const {
  277. return m_address_space_start <= addr && addr <= m_address_space_end - 1;
  278. }
  279. constexpr bool Contains(VAddr addr, size_t size) const {
  280. return m_address_space_start <= addr && addr < addr + size &&
  281. addr + size - 1 <= m_address_space_end - 1;
  282. }
  283. private:
  284. constexpr bool IsKernel() const {
  285. return m_is_kernel;
  286. }
  287. constexpr bool IsAslrEnabled() const {
  288. return m_enable_aslr;
  289. }
  290. constexpr bool ContainsPages(VAddr addr, size_t num_pages) const {
  291. return (m_address_space_start <= addr) &&
  292. (num_pages <= (m_address_space_end - m_address_space_start) / PageSize) &&
  293. (addr + num_pages * PageSize - 1 <= m_address_space_end - 1);
  294. }
  295. private:
  296. VAddr m_address_space_start{};
  297. VAddr m_address_space_end{};
  298. VAddr m_heap_region_start{};
  299. VAddr m_heap_region_end{};
  300. VAddr m_current_heap_end{};
  301. VAddr m_alias_region_start{};
  302. VAddr m_alias_region_end{};
  303. VAddr m_stack_region_start{};
  304. VAddr m_stack_region_end{};
  305. VAddr m_kernel_map_region_start{};
  306. VAddr m_kernel_map_region_end{};
  307. VAddr m_code_region_start{};
  308. VAddr m_code_region_end{};
  309. VAddr m_alias_code_region_start{};
  310. VAddr m_alias_code_region_end{};
  311. size_t m_mapped_physical_memory_size{};
  312. size_t m_max_heap_size{};
  313. size_t m_max_physical_memory_size{};
  314. size_t m_address_space_width{};
  315. KMemoryBlockManager m_memory_block_manager;
  316. bool m_is_kernel{};
  317. bool m_enable_aslr{};
  318. bool m_enable_device_address_space_merge{};
  319. KMemoryBlockSlabManager* m_memory_block_slab_manager{};
  320. u32 m_heap_fill_value{};
  321. const KMemoryRegion* m_cached_physical_heap_region{};
  322. KMemoryManager::Pool m_memory_pool{KMemoryManager::Pool::Application};
  323. KMemoryManager::Direction m_allocation_option{KMemoryManager::Direction::FromFront};
  324. std::unique_ptr<Common::PageTable> m_page_table_impl;
  325. Core::System& m_system;
  326. };
  327. } // namespace Kernel