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| author | 2017-10-09 23:56:20 -0400 | |
|---|---|---|
| committer | 2017-10-09 23:56:20 -0400 | |
| commit | b1d5db1cf60344b6b081c9d03cb6ccc3264326cd (patch) | |
| tree | fde377c4ba3c0f92c032e6f5ec8627aae37270ef /src/core/memory.cpp | |
| parent | loader: Various improvements for NSO/NRO loaders. (diff) | |
| parent | Merge pull request #2996 from MerryMage/split-travis (diff) | |
| download | yuzu-b1d5db1cf60344b6b081c9d03cb6ccc3264326cd.tar.gz yuzu-b1d5db1cf60344b6b081c9d03cb6ccc3264326cd.tar.xz yuzu-b1d5db1cf60344b6b081c9d03cb6ccc3264326cd.zip | |
Merge remote-tracking branch 'upstream/master' into nx
# Conflicts:
# src/core/CMakeLists.txt
# src/core/arm/dynarmic/arm_dynarmic.cpp
# src/core/arm/dyncom/arm_dyncom.cpp
# src/core/hle/kernel/process.cpp
# src/core/hle/kernel/thread.cpp
# src/core/hle/kernel/thread.h
# src/core/hle/kernel/vm_manager.cpp
# src/core/loader/3dsx.cpp
# src/core/loader/elf.cpp
# src/core/loader/ncch.cpp
# src/core/memory.cpp
# src/core/memory.h
# src/core/memory_setup.h
Diffstat (limited to 'src/core/memory.cpp')
| -rw-r--r-- | src/core/memory.cpp | 354 |
1 files changed, 211 insertions, 143 deletions
diff --git a/src/core/memory.cpp b/src/core/memory.cpp index ebe16b030..462d68386 100644 --- a/src/core/memory.cpp +++ b/src/core/memory.cpp | |||
| @@ -4,95 +4,53 @@ | |||
| 4 | 4 | ||
| 5 | #include <array> | 5 | #include <array> |
| 6 | #include <cstring> | 6 | #include <cstring> |
| 7 | #include "audio_core/audio_core.h" | ||
| 7 | #include "common/assert.h" | 8 | #include "common/assert.h" |
| 8 | #include "common/common_types.h" | 9 | #include "common/common_types.h" |
| 9 | #include "common/logging/log.h" | 10 | #include "common/logging/log.h" |
| 10 | #include "common/swap.h" | 11 | #include "common/swap.h" |
| 12 | #include "core/arm/arm_interface.h" | ||
| 13 | #include "core/core.h" | ||
| 14 | #include "core/hle/kernel/memory.h" | ||
| 11 | #include "core/hle/kernel/process.h" | 15 | #include "core/hle/kernel/process.h" |
| 16 | #include "core/hle/lock.h" | ||
| 12 | #include "core/memory.h" | 17 | #include "core/memory.h" |
| 13 | #include "core/memory_setup.h" | 18 | #include "core/memory_setup.h" |
| 14 | #include "core/mmio.h" | ||
| 15 | #include "video_core/renderer_base.h" | 19 | #include "video_core/renderer_base.h" |
| 16 | #include "video_core/video_core.h" | 20 | #include "video_core/video_core.h" |
| 17 | 21 | ||
| 18 | namespace Memory { | 22 | namespace Memory { |
| 19 | 23 | ||
| 20 | enum class PageType { | 24 | static std::array<u8, Memory::VRAM_SIZE> vram; |
| 21 | /// Page is unmapped and should cause an access error. | 25 | static std::array<u8, Memory::N3DS_EXTRA_RAM_SIZE> n3ds_extra_ram; |
| 22 | Unmapped, | ||
| 23 | /// Page is mapped to regular memory. This is the only type you can get pointers to. | ||
| 24 | Memory, | ||
| 25 | /// Page is mapped to regular memory, but also needs to check for rasterizer cache flushing and | ||
| 26 | /// invalidation | ||
| 27 | RasterizerCachedMemory, | ||
| 28 | /// Page is mapped to a I/O region. Writing and reading to this page is handled by functions. | ||
| 29 | Special, | ||
| 30 | /// Page is mapped to a I/O region, but also needs to check for rasterizer cache flushing and | ||
| 31 | /// invalidation | ||
| 32 | RasterizerCachedSpecial, | ||
| 33 | }; | ||
| 34 | |||
| 35 | struct SpecialRegion { | ||
| 36 | VAddr base; | ||
| 37 | u64 size; | ||
| 38 | MMIORegionPointer handler; | ||
| 39 | }; | ||
| 40 | 26 | ||
| 41 | /** | 27 | static PageTable* current_page_table = nullptr; |
| 42 | * A (reasonably) fast way of allowing switchable and remappable process address spaces. It loosely | 28 | |
| 43 | * mimics the way a real CPU page table works, but instead is optimized for minimal decoding and | 29 | void SetCurrentPageTable(PageTable* page_table) { |
| 44 | * fetching requirements when accessing. In the usual case of an access to regular memory, it only | 30 | current_page_table = page_table; |
| 45 | * requires an indexed fetch and a check for NULL. | 31 | if (Core::System::GetInstance().IsPoweredOn()) { |
| 46 | */ | 32 | Core::CPU().PageTableChanged(); |
| 47 | struct PageTable { | 33 | } |
| 48 | /** | 34 | } |
| 49 | * Array of memory pointers backing each page. An entry can only be non-null if the | 35 | |
| 50 | * corresponding entry in the `attributes` array is of type `Memory`. | 36 | PageTable* GetCurrentPageTable() { |
| 51 | */ | 37 | return current_page_table; |
| 52 | std::map<u64, u8*> pointers; | 38 | } |
| 53 | 39 | ||
| 54 | /** | 40 | static void MapPages(PageTable& page_table, VAddr base, u32 size, u8* memory, PageType type) { |
| 55 | * Contains MMIO handlers that back memory regions whose entries in the `attribute` array is of | ||
| 56 | * type `Special`. | ||
| 57 | */ | ||
| 58 | std::vector<SpecialRegion> special_regions; | ||
| 59 | |||
| 60 | /** | ||
| 61 | * Array of fine grained page attributes. If it is set to any value other than `Memory`, then | ||
| 62 | * the corresponding entry in `pointers` MUST be set to null. | ||
| 63 | */ | ||
| 64 | std::map<u64, PageType> attributes; | ||
| 65 | |||
| 66 | /** | ||
| 67 | * Indicates the number of externally cached resources touching a page that should be | ||
| 68 | * flushed before the memory is accessed | ||
| 69 | */ | ||
| 70 | std::map<u64, u8> cached_res_count; | ||
| 71 | }; | ||
| 72 | |||
| 73 | /// Singular page table used for the singleton process | ||
| 74 | static PageTable main_page_table; | ||
| 75 | /// Currently active page table | ||
| 76 | static PageTable* current_page_table = &main_page_table; | ||
| 77 | |||
| 78 | //std::array<u8*, PAGE_TABLE_NUM_ENTRIES>* GetCurrentPageTablePointers() { | ||
| 79 | // return ¤t_page_table->pointers; | ||
| 80 | //} | ||
| 81 | |||
| 82 | static void MapPages(u64 base, u64 size, u8* memory, PageType type) { | ||
| 83 | LOG_DEBUG(HW_Memory, "Mapping %p onto %08X-%08X", memory, base * PAGE_SIZE, | 41 | LOG_DEBUG(HW_Memory, "Mapping %p onto %08X-%08X", memory, base * PAGE_SIZE, |
| 84 | (base + size) * PAGE_SIZE); | 42 | (base + size) * PAGE_SIZE); |
| 85 | 43 | ||
| 86 | RasterizerFlushVirtualRegion(base << PAGE_BITS, size * PAGE_SIZE, | 44 | RasterizerFlushVirtualRegion(base << PAGE_BITS, size * PAGE_SIZE, |
| 87 | FlushMode::FlushAndInvalidate); | 45 | FlushMode::FlushAndInvalidate); |
| 88 | 46 | ||
| 89 | u64 end = base + size; | 47 | VAddr end = base + size; |
| 90 | while (base != end) { | 48 | while (base != end) { |
| 91 | ASSERT_MSG(base < PAGE_TABLE_NUM_ENTRIES, "out of range mapping at %08X", base); | 49 | ASSERT_MSG(base < PAGE_TABLE_NUM_ENTRIES, "out of range mapping at %08X", base); |
| 92 | 50 | ||
| 93 | current_page_table->attributes[base] = type; | 51 | page_table.attributes[base] = type; |
| 94 | current_page_table->pointers[base] = memory; | 52 | page_table.pointers[base] = memory; |
| 95 | current_page_table->cached_res_count[base] = 0; | 53 | page_table.cached_res_count[base] = 0; |
| 96 | 54 | ||
| 97 | base += 1; | 55 | base += 1; |
| 98 | if (memory != nullptr) | 56 | if (memory != nullptr) |
| @@ -100,40 +58,34 @@ static void MapPages(u64 base, u64 size, u8* memory, PageType type) { | |||
| 100 | } | 58 | } |
| 101 | } | 59 | } |
| 102 | 60 | ||
| 103 | void InitMemoryMap() { | 61 | void MapMemoryRegion(PageTable& page_table, VAddr base, u32 size, u8* target) { |
| 104 | //main_page_table.pointers.fill(nullptr); | ||
| 105 | //main_page_table.attributes.fill(PageType::Unmapped); | ||
| 106 | //main_page_table.cached_res_count.fill(0); | ||
| 107 | } | ||
| 108 | |||
| 109 | void MapMemoryRegion(VAddr base, u64 size, u8* target) { | ||
| 110 | ASSERT_MSG((size & PAGE_MASK) == 0, "non-page aligned size: %08X", size); | 62 | ASSERT_MSG((size & PAGE_MASK) == 0, "non-page aligned size: %08X", size); |
| 111 | ASSERT_MSG((base & PAGE_MASK) == 0, "non-page aligned base: %08X", base); | 63 | ASSERT_MSG((base & PAGE_MASK) == 0, "non-page aligned base: %08X", base); |
| 112 | MapPages(base / PAGE_SIZE, size / PAGE_SIZE, target, PageType::Memory); | 64 | MapPages(page_table, base / PAGE_SIZE, size / PAGE_SIZE, target, PageType::Memory); |
| 113 | } | 65 | } |
| 114 | 66 | ||
| 115 | void MapIoRegion(VAddr base, u64 size, MMIORegionPointer mmio_handler) { | 67 | void MapIoRegion(PageTable& page_table, VAddr base, u32 size, MMIORegionPointer mmio_handler) { |
| 116 | ASSERT_MSG((size & PAGE_MASK) == 0, "non-page aligned size: %08X", size); | 68 | ASSERT_MSG((size & PAGE_MASK) == 0, "non-page aligned size: %08X", size); |
| 117 | ASSERT_MSG((base & PAGE_MASK) == 0, "non-page aligned base: %08X", base); | 69 | ASSERT_MSG((base & PAGE_MASK) == 0, "non-page aligned base: %08X", base); |
| 118 | MapPages(base / PAGE_SIZE, size / PAGE_SIZE, nullptr, PageType::Special); | 70 | MapPages(page_table, base / PAGE_SIZE, size / PAGE_SIZE, nullptr, PageType::Special); |
| 119 | 71 | ||
| 120 | current_page_table->special_regions.emplace_back(SpecialRegion{base, size, mmio_handler}); | 72 | page_table.special_regions.emplace_back(SpecialRegion{base, size, mmio_handler}); |
| 121 | } | 73 | } |
| 122 | 74 | ||
| 123 | void UnmapRegion(VAddr base, u64 size) { | 75 | void UnmapRegion(PageTable& page_table, VAddr base, u32 size) { |
| 124 | ASSERT_MSG((size & PAGE_MASK) == 0, "non-page aligned size: %08X", size); | 76 | ASSERT_MSG((size & PAGE_MASK) == 0, "non-page aligned size: %08X", size); |
| 125 | ASSERT_MSG((base & PAGE_MASK) == 0, "non-page aligned base: %08X", base); | 77 | ASSERT_MSG((base & PAGE_MASK) == 0, "non-page aligned base: %08X", base); |
| 126 | MapPages(base / PAGE_SIZE, size / PAGE_SIZE, nullptr, PageType::Unmapped); | 78 | MapPages(page_table, base / PAGE_SIZE, size / PAGE_SIZE, nullptr, PageType::Unmapped); |
| 127 | } | 79 | } |
| 128 | 80 | ||
| 129 | /** | 81 | /** |
| 130 | * Gets a pointer to the exact memory at the virtual address (i.e. not page aligned) | 82 | * Gets a pointer to the exact memory at the virtual address (i.e. not page aligned) |
| 131 | * using a VMA from the current process | 83 | * using a VMA from the current process |
| 132 | */ | 84 | */ |
| 133 | static u8* GetPointerFromVMA(VAddr vaddr) { | 85 | static u8* GetPointerFromVMA(const Kernel::Process& process, VAddr vaddr) { |
| 134 | u8* direct_pointer = nullptr; | 86 | u8* direct_pointer = nullptr; |
| 135 | 87 | ||
| 136 | auto& vm_manager = Kernel::g_current_process->vm_manager; | 88 | auto& vm_manager = process.vm_manager; |
| 137 | 89 | ||
| 138 | auto it = vm_manager.FindVMA(vaddr); | 90 | auto it = vm_manager.FindVMA(vaddr); |
| 139 | ASSERT(it != vm_manager.vma_map.end()); | 91 | ASSERT(it != vm_manager.vma_map.end()); |
| @@ -156,10 +108,18 @@ static u8* GetPointerFromVMA(VAddr vaddr) { | |||
| 156 | } | 108 | } |
| 157 | 109 | ||
| 158 | /** | 110 | /** |
| 111 | * Gets a pointer to the exact memory at the virtual address (i.e. not page aligned) | ||
| 112 | * using a VMA from the current process. | ||
| 113 | */ | ||
| 114 | static u8* GetPointerFromVMA(VAddr vaddr) { | ||
| 115 | return GetPointerFromVMA(*Kernel::g_current_process, vaddr); | ||
| 116 | } | ||
| 117 | |||
| 118 | /** | ||
| 159 | * This function should only be called for virtual addreses with attribute `PageType::Special`. | 119 | * This function should only be called for virtual addreses with attribute `PageType::Special`. |
| 160 | */ | 120 | */ |
| 161 | static MMIORegionPointer GetMMIOHandler(VAddr vaddr) { | 121 | static MMIORegionPointer GetMMIOHandler(const PageTable& page_table, VAddr vaddr) { |
| 162 | for (const auto& region : current_page_table->special_regions) { | 122 | for (const auto& region : page_table.special_regions) { |
| 163 | if (vaddr >= region.base && vaddr < (region.base + region.size)) { | 123 | if (vaddr >= region.base && vaddr < (region.base + region.size)) { |
| 164 | return region.handler; | 124 | return region.handler; |
| 165 | } | 125 | } |
| @@ -168,6 +128,11 @@ static MMIORegionPointer GetMMIOHandler(VAddr vaddr) { | |||
| 168 | return nullptr; // Should never happen | 128 | return nullptr; // Should never happen |
| 169 | } | 129 | } |
| 170 | 130 | ||
| 131 | static MMIORegionPointer GetMMIOHandler(VAddr vaddr) { | ||
| 132 | const PageTable& page_table = Kernel::g_current_process->vm_manager.page_table; | ||
| 133 | return GetMMIOHandler(page_table, vaddr); | ||
| 134 | } | ||
| 135 | |||
| 171 | template <typename T> | 136 | template <typename T> |
| 172 | T ReadMMIO(MMIORegionPointer mmio_handler, VAddr addr); | 137 | T ReadMMIO(MMIORegionPointer mmio_handler, VAddr addr); |
| 173 | 138 | ||
| @@ -181,10 +146,13 @@ T Read(const VAddr vaddr) { | |||
| 181 | return value; | 146 | return value; |
| 182 | } | 147 | } |
| 183 | 148 | ||
| 149 | // The memory access might do an MMIO or cached access, so we have to lock the HLE kernel state | ||
| 150 | std::lock_guard<std::recursive_mutex> lock(HLE::g_hle_lock); | ||
| 151 | |||
| 184 | PageType type = current_page_table->attributes[vaddr >> PAGE_BITS]; | 152 | PageType type = current_page_table->attributes[vaddr >> PAGE_BITS]; |
| 185 | switch (type) { | 153 | switch (type) { |
| 186 | case PageType::Unmapped: | 154 | case PageType::Unmapped: |
| 187 | LOG_ERROR(HW_Memory, "unmapped Read%lu @ 0x%llx", sizeof(T) * 8, vaddr); | 155 | LOG_ERROR(HW_Memory, "unmapped Read%lu @ 0x%08X", sizeof(T) * 8, vaddr); |
| 188 | return 0; | 156 | return 0; |
| 189 | case PageType::Memory: | 157 | case PageType::Memory: |
| 190 | ASSERT_MSG(false, "Mapped memory page without a pointer @ %08X", vaddr); | 158 | ASSERT_MSG(false, "Mapped memory page without a pointer @ %08X", vaddr); |
| @@ -219,10 +187,13 @@ void Write(const VAddr vaddr, const T data) { | |||
| 219 | return; | 187 | return; |
| 220 | } | 188 | } |
| 221 | 189 | ||
| 190 | // The memory access might do an MMIO or cached access, so we have to lock the HLE kernel state | ||
| 191 | std::lock_guard<std::recursive_mutex> lock(HLE::g_hle_lock); | ||
| 192 | |||
| 222 | PageType type = current_page_table->attributes[vaddr >> PAGE_BITS]; | 193 | PageType type = current_page_table->attributes[vaddr >> PAGE_BITS]; |
| 223 | switch (type) { | 194 | switch (type) { |
| 224 | case PageType::Unmapped: | 195 | case PageType::Unmapped: |
| 225 | LOG_ERROR(HW_Memory, "unmapped Write%lu 0x%llx @ 0x%llx", sizeof(data) * 8, (u64)data, | 196 | LOG_ERROR(HW_Memory, "unmapped Write%lu 0x%08X @ 0x%08X", sizeof(data) * 8, (u32)data, |
| 226 | vaddr); | 197 | vaddr); |
| 227 | return; | 198 | return; |
| 228 | case PageType::Memory: | 199 | case PageType::Memory: |
| @@ -246,18 +217,20 @@ void Write(const VAddr vaddr, const T data) { | |||
| 246 | } | 217 | } |
| 247 | } | 218 | } |
| 248 | 219 | ||
| 249 | bool IsValidVirtualAddress(const VAddr vaddr) { | 220 | bool IsValidVirtualAddress(const Kernel::Process& process, const VAddr vaddr) { |
| 250 | const u8* page_pointer = current_page_table->pointers[vaddr >> PAGE_BITS]; | 221 | auto& page_table = process.vm_manager.page_table; |
| 222 | |||
| 223 | const u8* page_pointer = page_table.pointers[vaddr >> PAGE_BITS]; | ||
| 251 | if (page_pointer) | 224 | if (page_pointer) |
| 252 | return true; | 225 | return true; |
| 253 | 226 | ||
| 254 | if (current_page_table->attributes[vaddr >> PAGE_BITS] == PageType::RasterizerCachedMemory) | 227 | if (page_table.attributes[vaddr >> PAGE_BITS] == PageType::RasterizerCachedMemory) |
| 255 | return true; | 228 | return true; |
| 256 | 229 | ||
| 257 | if (current_page_table->attributes[vaddr >> PAGE_BITS] != PageType::Special) | 230 | if (page_table.attributes[vaddr >> PAGE_BITS] != PageType::Special) |
| 258 | return false; | 231 | return false; |
| 259 | 232 | ||
| 260 | MMIORegionPointer mmio_region = GetMMIOHandler(vaddr); | 233 | MMIORegionPointer mmio_region = GetMMIOHandler(page_table, vaddr); |
| 261 | if (mmio_region) { | 234 | if (mmio_region) { |
| 262 | return mmio_region->IsValidAddress(vaddr); | 235 | return mmio_region->IsValidAddress(vaddr); |
| 263 | } | 236 | } |
| @@ -265,9 +238,12 @@ bool IsValidVirtualAddress(const VAddr vaddr) { | |||
| 265 | return false; | 238 | return false; |
| 266 | } | 239 | } |
| 267 | 240 | ||
| 241 | bool IsValidVirtualAddress(const VAddr vaddr) { | ||
| 242 | return IsValidVirtualAddress(*Kernel::g_current_process, vaddr); | ||
| 243 | } | ||
| 244 | |||
| 268 | bool IsValidPhysicalAddress(const PAddr paddr) { | 245 | bool IsValidPhysicalAddress(const PAddr paddr) { |
| 269 | boost::optional<VAddr> vaddr = PhysicalToVirtualAddress(paddr); | 246 | return GetPhysicalPointer(paddr) != nullptr; |
| 270 | return vaddr && IsValidVirtualAddress(*vaddr); | ||
| 271 | } | 247 | } |
| 272 | 248 | ||
| 273 | u8* GetPointer(const VAddr vaddr) { | 249 | u8* GetPointer(const VAddr vaddr) { |
| @@ -280,7 +256,7 @@ u8* GetPointer(const VAddr vaddr) { | |||
| 280 | return GetPointerFromVMA(vaddr); | 256 | return GetPointerFromVMA(vaddr); |
| 281 | } | 257 | } |
| 282 | 258 | ||
| 283 | LOG_ERROR(HW_Memory, "unknown GetPointer @ 0x%llx", vaddr); | 259 | LOG_ERROR(HW_Memory, "unknown GetPointer @ 0x%08x", vaddr); |
| 284 | return nullptr; | 260 | return nullptr; |
| 285 | } | 261 | } |
| 286 | 262 | ||
| @@ -299,12 +275,66 @@ std::string ReadCString(VAddr vaddr, std::size_t max_length) { | |||
| 299 | } | 275 | } |
| 300 | 276 | ||
| 301 | u8* GetPhysicalPointer(PAddr address) { | 277 | u8* GetPhysicalPointer(PAddr address) { |
| 302 | // TODO(Subv): This call should not go through the application's memory mapping. | 278 | struct MemoryArea { |
| 303 | boost::optional<VAddr> vaddr = PhysicalToVirtualAddress(address); | 279 | PAddr paddr_base; |
| 304 | return vaddr ? GetPointer(*vaddr) : nullptr; | 280 | u32 size; |
| 281 | }; | ||
| 282 | |||
| 283 | static constexpr MemoryArea memory_areas[] = { | ||
| 284 | {VRAM_PADDR, VRAM_SIZE}, | ||
| 285 | {IO_AREA_PADDR, IO_AREA_SIZE}, | ||
| 286 | {DSP_RAM_PADDR, DSP_RAM_SIZE}, | ||
| 287 | {FCRAM_PADDR, FCRAM_N3DS_SIZE}, | ||
| 288 | {N3DS_EXTRA_RAM_PADDR, N3DS_EXTRA_RAM_SIZE}, | ||
| 289 | }; | ||
| 290 | |||
| 291 | const auto area = | ||
| 292 | std::find_if(std::begin(memory_areas), std::end(memory_areas), [&](const auto& area) { | ||
| 293 | return address >= area.paddr_base && address < area.paddr_base + area.size; | ||
| 294 | }); | ||
| 295 | |||
| 296 | if (area == std::end(memory_areas)) { | ||
| 297 | LOG_ERROR(HW_Memory, "unknown GetPhysicalPointer @ 0x%08X", address); | ||
| 298 | return nullptr; | ||
| 299 | } | ||
| 300 | |||
| 301 | if (area->paddr_base == IO_AREA_PADDR) { | ||
| 302 | LOG_ERROR(HW_Memory, "MMIO mappings are not supported yet. phys_addr=0x%08X", address); | ||
| 303 | return nullptr; | ||
| 304 | } | ||
| 305 | |||
| 306 | u64 offset_into_region = address - area->paddr_base; | ||
| 307 | |||
| 308 | u8* target_pointer = nullptr; | ||
| 309 | switch (area->paddr_base) { | ||
| 310 | case VRAM_PADDR: | ||
| 311 | target_pointer = vram.data() + offset_into_region; | ||
| 312 | break; | ||
| 313 | case DSP_RAM_PADDR: | ||
| 314 | target_pointer = AudioCore::GetDspMemory().data() + offset_into_region; | ||
| 315 | break; | ||
| 316 | case FCRAM_PADDR: | ||
| 317 | for (const auto& region : Kernel::memory_regions) { | ||
| 318 | if (offset_into_region >= region.base && | ||
| 319 | offset_into_region < region.base + region.size) { | ||
| 320 | target_pointer = | ||
| 321 | region.linear_heap_memory->data() + offset_into_region - region.base; | ||
| 322 | break; | ||
| 323 | } | ||
| 324 | } | ||
| 325 | ASSERT_MSG(target_pointer != nullptr, "Invalid FCRAM address"); | ||
| 326 | break; | ||
| 327 | case N3DS_EXTRA_RAM_PADDR: | ||
| 328 | target_pointer = n3ds_extra_ram.data() + offset_into_region; | ||
| 329 | break; | ||
| 330 | default: | ||
| 331 | UNREACHABLE(); | ||
| 332 | } | ||
| 333 | |||
| 334 | return target_pointer; | ||
| 305 | } | 335 | } |
| 306 | 336 | ||
| 307 | void RasterizerMarkRegionCached(PAddr start, u64 size, int count_delta) { | 337 | void RasterizerMarkRegionCached(PAddr start, u32 size, int count_delta) { |
| 308 | if (start == 0) { | 338 | if (start == 0) { |
| 309 | return; | 339 | return; |
| 310 | } | 340 | } |
| @@ -314,8 +344,15 @@ void RasterizerMarkRegionCached(PAddr start, u64 size, int count_delta) { | |||
| 314 | 344 | ||
| 315 | for (unsigned i = 0; i < num_pages; ++i, paddr += PAGE_SIZE) { | 345 | for (unsigned i = 0; i < num_pages; ++i, paddr += PAGE_SIZE) { |
| 316 | boost::optional<VAddr> maybe_vaddr = PhysicalToVirtualAddress(paddr); | 346 | boost::optional<VAddr> maybe_vaddr = PhysicalToVirtualAddress(paddr); |
| 317 | if (!maybe_vaddr) | 347 | // While the physical <-> virtual mapping is 1:1 for the regions supported by the cache, |
| 348 | // some games (like Pokemon Super Mystery Dungeon) will try to use textures that go beyond | ||
| 349 | // the end address of VRAM, causing the Virtual->Physical translation to fail when flushing | ||
| 350 | // parts of the texture. | ||
| 351 | if (!maybe_vaddr) { | ||
| 352 | LOG_ERROR(HW_Memory, | ||
| 353 | "Trying to flush a cached region to an invalid physical address %08X", paddr); | ||
| 318 | continue; | 354 | continue; |
| 355 | } | ||
| 319 | VAddr vaddr = *maybe_vaddr; | 356 | VAddr vaddr = *maybe_vaddr; |
| 320 | 357 | ||
| 321 | u8& res_count = current_page_table->cached_res_count[vaddr >> PAGE_BITS]; | 358 | u8& res_count = current_page_table->cached_res_count[vaddr >> PAGE_BITS]; |
| @@ -327,6 +364,10 @@ void RasterizerMarkRegionCached(PAddr start, u64 size, int count_delta) { | |||
| 327 | if (res_count == 0) { | 364 | if (res_count == 0) { |
| 328 | PageType& page_type = current_page_table->attributes[vaddr >> PAGE_BITS]; | 365 | PageType& page_type = current_page_table->attributes[vaddr >> PAGE_BITS]; |
| 329 | switch (page_type) { | 366 | switch (page_type) { |
| 367 | case PageType::Unmapped: | ||
| 368 | // It is not necessary for a process to have this region mapped into its address | ||
| 369 | // space, for example, a system module need not have a VRAM mapping. | ||
| 370 | break; | ||
| 330 | case PageType::Memory: | 371 | case PageType::Memory: |
| 331 | page_type = PageType::RasterizerCachedMemory; | 372 | page_type = PageType::RasterizerCachedMemory; |
| 332 | current_page_table->pointers[vaddr >> PAGE_BITS] = nullptr; | 373 | current_page_table->pointers[vaddr >> PAGE_BITS] = nullptr; |
| @@ -345,6 +386,10 @@ void RasterizerMarkRegionCached(PAddr start, u64 size, int count_delta) { | |||
| 345 | if (res_count == 0) { | 386 | if (res_count == 0) { |
| 346 | PageType& page_type = current_page_table->attributes[vaddr >> PAGE_BITS]; | 387 | PageType& page_type = current_page_table->attributes[vaddr >> PAGE_BITS]; |
| 347 | switch (page_type) { | 388 | switch (page_type) { |
| 389 | case PageType::Unmapped: | ||
| 390 | // It is not necessary for a process to have this region mapped into its address | ||
| 391 | // space, for example, a system module need not have a VRAM mapping. | ||
| 392 | break; | ||
| 348 | case PageType::RasterizerCachedMemory: { | 393 | case PageType::RasterizerCachedMemory: { |
| 349 | u8* pointer = GetPointerFromVMA(vaddr & ~PAGE_MASK); | 394 | u8* pointer = GetPointerFromVMA(vaddr & ~PAGE_MASK); |
| 350 | if (pointer == nullptr) { | 395 | if (pointer == nullptr) { |
| @@ -368,13 +413,13 @@ void RasterizerMarkRegionCached(PAddr start, u64 size, int count_delta) { | |||
| 368 | } | 413 | } |
| 369 | } | 414 | } |
| 370 | 415 | ||
| 371 | void RasterizerFlushRegion(PAddr start, u64 size) { | 416 | void RasterizerFlushRegion(PAddr start, u32 size) { |
| 372 | if (VideoCore::g_renderer != nullptr) { | 417 | if (VideoCore::g_renderer != nullptr) { |
| 373 | VideoCore::g_renderer->Rasterizer()->FlushRegion(start, size); | 418 | VideoCore::g_renderer->Rasterizer()->FlushRegion(start, size); |
| 374 | } | 419 | } |
| 375 | } | 420 | } |
| 376 | 421 | ||
| 377 | void RasterizerFlushAndInvalidateRegion(PAddr start, u64 size) { | 422 | void RasterizerFlushAndInvalidateRegion(PAddr start, u32 size) { |
| 378 | // Since pages are unmapped on shutdown after video core is shutdown, the renderer may be | 423 | // Since pages are unmapped on shutdown after video core is shutdown, the renderer may be |
| 379 | // null here | 424 | // null here |
| 380 | if (VideoCore::g_renderer != nullptr) { | 425 | if (VideoCore::g_renderer != nullptr) { |
| @@ -382,7 +427,7 @@ void RasterizerFlushAndInvalidateRegion(PAddr start, u64 size) { | |||
| 382 | } | 427 | } |
| 383 | } | 428 | } |
| 384 | 429 | ||
| 385 | void RasterizerFlushVirtualRegion(VAddr start, u64 size, FlushMode mode) { | 430 | void RasterizerFlushVirtualRegion(VAddr start, u32 size, FlushMode mode) { |
| 386 | // Since pages are unmapped on shutdown after video core is shutdown, the renderer may be | 431 | // Since pages are unmapped on shutdown after video core is shutdown, the renderer may be |
| 387 | // null here | 432 | // null here |
| 388 | if (VideoCore::g_renderer != nullptr) { | 433 | if (VideoCore::g_renderer != nullptr) { |
| @@ -398,7 +443,7 @@ void RasterizerFlushVirtualRegion(VAddr start, u64 size, FlushMode mode) { | |||
| 398 | VAddr overlap_end = std::min(end, region_end); | 443 | VAddr overlap_end = std::min(end, region_end); |
| 399 | 444 | ||
| 400 | PAddr physical_start = TryVirtualToPhysicalAddress(overlap_start).value(); | 445 | PAddr physical_start = TryVirtualToPhysicalAddress(overlap_start).value(); |
| 401 | u64 overlap_size = overlap_end - overlap_start; | 446 | u32 overlap_size = static_cast<u32>(overlap_end - overlap_start); |
| 402 | 447 | ||
| 403 | auto* rasterizer = VideoCore::g_renderer->Rasterizer(); | 448 | auto* rasterizer = VideoCore::g_renderer->Rasterizer(); |
| 404 | switch (mode) { | 449 | switch (mode) { |
| @@ -433,44 +478,50 @@ u64 Read64(const VAddr addr) { | |||
| 433 | return Read<u64_le>(addr); | 478 | return Read<u64_le>(addr); |
| 434 | } | 479 | } |
| 435 | 480 | ||
| 436 | void ReadBlock(const VAddr src_addr, void* dest_buffer, const size_t size) { | 481 | void ReadBlock(const Kernel::Process& process, const VAddr src_addr, void* dest_buffer, |
| 482 | const size_t size) { | ||
| 483 | auto& page_table = process.vm_manager.page_table; | ||
| 484 | |||
| 437 | size_t remaining_size = size; | 485 | size_t remaining_size = size; |
| 438 | size_t page_index = src_addr >> PAGE_BITS; | 486 | size_t page_index = src_addr >> PAGE_BITS; |
| 439 | size_t page_offset = src_addr & PAGE_MASK; | 487 | size_t page_offset = src_addr & PAGE_MASK; |
| 440 | 488 | ||
| 441 | while (remaining_size > 0) { | 489 | while (remaining_size > 0) { |
| 442 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); | 490 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); |
| 443 | const VAddr current_vaddr = (page_index << PAGE_BITS) + page_offset; | 491 | const VAddr current_vaddr = static_cast<VAddr>((page_index << PAGE_BITS) + page_offset); |
| 444 | 492 | ||
| 445 | switch (current_page_table->attributes[page_index]) { | 493 | switch (page_table.attributes[page_index]) { |
| 446 | case PageType::Unmapped: { | 494 | case PageType::Unmapped: { |
| 447 | LOG_ERROR(HW_Memory, "unmapped ReadBlock @ 0x%llx (start address = 0x%llx, size = %zu)", | 495 | LOG_ERROR(HW_Memory, "unmapped ReadBlock @ 0x%08X (start address = 0x%08X, size = %zu)", |
| 448 | current_vaddr, src_addr, size); | 496 | current_vaddr, src_addr, size); |
| 449 | std::memset(dest_buffer, 0, copy_amount); | 497 | std::memset(dest_buffer, 0, copy_amount); |
| 450 | break; | 498 | break; |
| 451 | } | 499 | } |
| 452 | case PageType::Memory: { | 500 | case PageType::Memory: { |
| 453 | DEBUG_ASSERT(current_page_table->pointers[page_index]); | 501 | DEBUG_ASSERT(page_table.pointers[page_index]); |
| 454 | 502 | ||
| 455 | const u8* src_ptr = current_page_table->pointers[page_index] + page_offset; | 503 | const u8* src_ptr = page_table.pointers[page_index] + page_offset; |
| 456 | std::memcpy(dest_buffer, src_ptr, copy_amount); | 504 | std::memcpy(dest_buffer, src_ptr, copy_amount); |
| 457 | break; | 505 | break; |
| 458 | } | 506 | } |
| 459 | case PageType::Special: { | 507 | case PageType::Special: { |
| 460 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); | 508 | MMIORegionPointer handler = GetMMIOHandler(page_table, current_vaddr); |
| 461 | 509 | DEBUG_ASSERT(handler); | |
| 462 | GetMMIOHandler(current_vaddr)->ReadBlock(current_vaddr, dest_buffer, copy_amount); | 510 | handler->ReadBlock(current_vaddr, dest_buffer, copy_amount); |
| 463 | break; | 511 | break; |
| 464 | } | 512 | } |
| 465 | case PageType::RasterizerCachedMemory: { | 513 | case PageType::RasterizerCachedMemory: { |
| 466 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::Flush); | 514 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 467 | std::memcpy(dest_buffer, GetPointerFromVMA(current_vaddr), copy_amount); | 515 | FlushMode::Flush); |
| 516 | std::memcpy(dest_buffer, GetPointerFromVMA(process, current_vaddr), copy_amount); | ||
| 468 | break; | 517 | break; |
| 469 | } | 518 | } |
| 470 | case PageType::RasterizerCachedSpecial: { | 519 | case PageType::RasterizerCachedSpecial: { |
| 471 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); | 520 | MMIORegionPointer handler = GetMMIOHandler(page_table, current_vaddr); |
| 472 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::Flush); | 521 | DEBUG_ASSERT(handler); |
| 473 | GetMMIOHandler(current_vaddr)->ReadBlock(current_vaddr, dest_buffer, copy_amount); | 522 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 523 | FlushMode::Flush); | ||
| 524 | handler->ReadBlock(current_vaddr, dest_buffer, copy_amount); | ||
| 474 | break; | 525 | break; |
| 475 | } | 526 | } |
| 476 | default: | 527 | default: |
| @@ -484,6 +535,10 @@ void ReadBlock(const VAddr src_addr, void* dest_buffer, const size_t size) { | |||
| 484 | } | 535 | } |
| 485 | } | 536 | } |
| 486 | 537 | ||
| 538 | void ReadBlock(const VAddr src_addr, void* dest_buffer, const size_t size) { | ||
| 539 | ReadBlock(*Kernel::g_current_process, src_addr, dest_buffer, size); | ||
| 540 | } | ||
| 541 | |||
| 487 | void Write8(const VAddr addr, const u8 data) { | 542 | void Write8(const VAddr addr, const u8 data) { |
| 488 | Write<u8>(addr, data); | 543 | Write<u8>(addr, data); |
| 489 | } | 544 | } |
| @@ -500,44 +555,49 @@ void Write64(const VAddr addr, const u64 data) { | |||
| 500 | Write<u64_le>(addr, data); | 555 | Write<u64_le>(addr, data); |
| 501 | } | 556 | } |
| 502 | 557 | ||
| 503 | void WriteBlock(const VAddr dest_addr, const void* src_buffer, const size_t size) { | 558 | void WriteBlock(const Kernel::Process& process, const VAddr dest_addr, const void* src_buffer, |
| 559 | const size_t size) { | ||
| 560 | auto& page_table = process.vm_manager.page_table; | ||
| 504 | size_t remaining_size = size; | 561 | size_t remaining_size = size; |
| 505 | size_t page_index = dest_addr >> PAGE_BITS; | 562 | size_t page_index = dest_addr >> PAGE_BITS; |
| 506 | size_t page_offset = dest_addr & PAGE_MASK; | 563 | size_t page_offset = dest_addr & PAGE_MASK; |
| 507 | 564 | ||
| 508 | while (remaining_size > 0) { | 565 | while (remaining_size > 0) { |
| 509 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); | 566 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); |
| 510 | const VAddr current_vaddr = (page_index << PAGE_BITS) + page_offset; | 567 | const VAddr current_vaddr = static_cast<VAddr>((page_index << PAGE_BITS) + page_offset); |
| 511 | 568 | ||
| 512 | switch (current_page_table->attributes[page_index]) { | 569 | switch (page_table.attributes[page_index]) { |
| 513 | case PageType::Unmapped: { | 570 | case PageType::Unmapped: { |
| 514 | LOG_ERROR(HW_Memory, | 571 | LOG_ERROR(HW_Memory, |
| 515 | "unmapped WriteBlock @ 0x%llx (start address = 0x%llx, size = %zu)", | 572 | "unmapped WriteBlock @ 0x%08X (start address = 0x%08X, size = %zu)", |
| 516 | current_vaddr, dest_addr, size); | 573 | current_vaddr, dest_addr, size); |
| 517 | break; | 574 | break; |
| 518 | } | 575 | } |
| 519 | case PageType::Memory: { | 576 | case PageType::Memory: { |
| 520 | DEBUG_ASSERT(current_page_table->pointers[page_index]); | 577 | DEBUG_ASSERT(page_table.pointers[page_index]); |
| 521 | 578 | ||
| 522 | u8* dest_ptr = current_page_table->pointers[page_index] + page_offset; | 579 | u8* dest_ptr = page_table.pointers[page_index] + page_offset; |
| 523 | std::memcpy(dest_ptr, src_buffer, copy_amount); | 580 | std::memcpy(dest_ptr, src_buffer, copy_amount); |
| 524 | break; | 581 | break; |
| 525 | } | 582 | } |
| 526 | case PageType::Special: { | 583 | case PageType::Special: { |
| 527 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); | 584 | MMIORegionPointer handler = GetMMIOHandler(page_table, current_vaddr); |
| 528 | 585 | DEBUG_ASSERT(handler); | |
| 529 | GetMMIOHandler(current_vaddr)->WriteBlock(current_vaddr, src_buffer, copy_amount); | 586 | handler->WriteBlock(current_vaddr, src_buffer, copy_amount); |
| 530 | break; | 587 | break; |
| 531 | } | 588 | } |
| 532 | case PageType::RasterizerCachedMemory: { | 589 | case PageType::RasterizerCachedMemory: { |
| 533 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::FlushAndInvalidate); | 590 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 534 | std::memcpy(GetPointerFromVMA(current_vaddr), src_buffer, copy_amount); | 591 | FlushMode::FlushAndInvalidate); |
| 592 | std::memcpy(GetPointerFromVMA(process, current_vaddr), src_buffer, copy_amount); | ||
| 535 | break; | 593 | break; |
| 536 | } | 594 | } |
| 537 | case PageType::RasterizerCachedSpecial: { | 595 | case PageType::RasterizerCachedSpecial: { |
| 538 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); | 596 | MMIORegionPointer handler = GetMMIOHandler(page_table, current_vaddr); |
| 539 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::FlushAndInvalidate); | 597 | DEBUG_ASSERT(handler); |
| 540 | GetMMIOHandler(current_vaddr)->WriteBlock(current_vaddr, src_buffer, copy_amount); | 598 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 599 | FlushMode::FlushAndInvalidate); | ||
| 600 | handler->WriteBlock(current_vaddr, src_buffer, copy_amount); | ||
| 541 | break; | 601 | break; |
| 542 | } | 602 | } |
| 543 | default: | 603 | default: |
| @@ -551,6 +611,10 @@ void WriteBlock(const VAddr dest_addr, const void* src_buffer, const size_t size | |||
| 551 | } | 611 | } |
| 552 | } | 612 | } |
| 553 | 613 | ||
| 614 | void WriteBlock(const VAddr dest_addr, const void* src_buffer, const size_t size) { | ||
| 615 | WriteBlock(*Kernel::g_current_process, dest_addr, src_buffer, size); | ||
| 616 | } | ||
| 617 | |||
| 554 | void ZeroBlock(const VAddr dest_addr, const size_t size) { | 618 | void ZeroBlock(const VAddr dest_addr, const size_t size) { |
| 555 | size_t remaining_size = size; | 619 | size_t remaining_size = size; |
| 556 | size_t page_index = dest_addr >> PAGE_BITS; | 620 | size_t page_index = dest_addr >> PAGE_BITS; |
| @@ -560,11 +624,11 @@ void ZeroBlock(const VAddr dest_addr, const size_t size) { | |||
| 560 | 624 | ||
| 561 | while (remaining_size > 0) { | 625 | while (remaining_size > 0) { |
| 562 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); | 626 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); |
| 563 | const VAddr current_vaddr = (page_index << PAGE_BITS) + page_offset; | 627 | const VAddr current_vaddr = static_cast<VAddr>((page_index << PAGE_BITS) + page_offset); |
| 564 | 628 | ||
| 565 | switch (current_page_table->attributes[page_index]) { | 629 | switch (current_page_table->attributes[page_index]) { |
| 566 | case PageType::Unmapped: { | 630 | case PageType::Unmapped: { |
| 567 | LOG_ERROR(HW_Memory, "unmapped ZeroBlock @ 0x%llx (start address = 0x%llx, size = %zu)", | 631 | LOG_ERROR(HW_Memory, "unmapped ZeroBlock @ 0x%08X (start address = 0x%08X, size = %zu)", |
| 568 | current_vaddr, dest_addr, size); | 632 | current_vaddr, dest_addr, size); |
| 569 | break; | 633 | break; |
| 570 | } | 634 | } |
| @@ -582,13 +646,15 @@ void ZeroBlock(const VAddr dest_addr, const size_t size) { | |||
| 582 | break; | 646 | break; |
| 583 | } | 647 | } |
| 584 | case PageType::RasterizerCachedMemory: { | 648 | case PageType::RasterizerCachedMemory: { |
| 585 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::FlushAndInvalidate); | 649 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 650 | FlushMode::FlushAndInvalidate); | ||
| 586 | std::memset(GetPointerFromVMA(current_vaddr), 0, copy_amount); | 651 | std::memset(GetPointerFromVMA(current_vaddr), 0, copy_amount); |
| 587 | break; | 652 | break; |
| 588 | } | 653 | } |
| 589 | case PageType::RasterizerCachedSpecial: { | 654 | case PageType::RasterizerCachedSpecial: { |
| 590 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); | 655 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); |
| 591 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::FlushAndInvalidate); | 656 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 657 | FlushMode::FlushAndInvalidate); | ||
| 592 | GetMMIOHandler(current_vaddr)->WriteBlock(current_vaddr, zeros.data(), copy_amount); | 658 | GetMMIOHandler(current_vaddr)->WriteBlock(current_vaddr, zeros.data(), copy_amount); |
| 593 | break; | 659 | break; |
| 594 | } | 660 | } |
| @@ -609,11 +675,11 @@ void CopyBlock(VAddr dest_addr, VAddr src_addr, const size_t size) { | |||
| 609 | 675 | ||
| 610 | while (remaining_size > 0) { | 676 | while (remaining_size > 0) { |
| 611 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); | 677 | const size_t copy_amount = std::min(PAGE_SIZE - page_offset, remaining_size); |
| 612 | const VAddr current_vaddr = (page_index << PAGE_BITS) + page_offset; | 678 | const VAddr current_vaddr = static_cast<VAddr>((page_index << PAGE_BITS) + page_offset); |
| 613 | 679 | ||
| 614 | switch (current_page_table->attributes[page_index]) { | 680 | switch (current_page_table->attributes[page_index]) { |
| 615 | case PageType::Unmapped: { | 681 | case PageType::Unmapped: { |
| 616 | LOG_ERROR(HW_Memory, "unmapped CopyBlock @ 0x%llx (start address = 0x%llx, size = %zu)", | 682 | LOG_ERROR(HW_Memory, "unmapped CopyBlock @ 0x%08X (start address = 0x%08X, size = %zu)", |
| 617 | current_vaddr, src_addr, size); | 683 | current_vaddr, src_addr, size); |
| 618 | ZeroBlock(dest_addr, copy_amount); | 684 | ZeroBlock(dest_addr, copy_amount); |
| 619 | break; | 685 | break; |
| @@ -633,13 +699,15 @@ void CopyBlock(VAddr dest_addr, VAddr src_addr, const size_t size) { | |||
| 633 | break; | 699 | break; |
| 634 | } | 700 | } |
| 635 | case PageType::RasterizerCachedMemory: { | 701 | case PageType::RasterizerCachedMemory: { |
| 636 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::Flush); | 702 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 703 | FlushMode::Flush); | ||
| 637 | WriteBlock(dest_addr, GetPointerFromVMA(current_vaddr), copy_amount); | 704 | WriteBlock(dest_addr, GetPointerFromVMA(current_vaddr), copy_amount); |
| 638 | break; | 705 | break; |
| 639 | } | 706 | } |
| 640 | case PageType::RasterizerCachedSpecial: { | 707 | case PageType::RasterizerCachedSpecial: { |
| 641 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); | 708 | DEBUG_ASSERT(GetMMIOHandler(current_vaddr)); |
| 642 | RasterizerFlushVirtualRegion(current_vaddr, copy_amount, FlushMode::Flush); | 709 | RasterizerFlushVirtualRegion(current_vaddr, static_cast<u32>(copy_amount), |
| 710 | FlushMode::Flush); | ||
| 643 | 711 | ||
| 644 | std::vector<u8> buffer(copy_amount); | 712 | std::vector<u8> buffer(copy_amount); |
| 645 | GetMMIOHandler(current_vaddr)->ReadBlock(current_vaddr, buffer.data(), buffer.size()); | 713 | GetMMIOHandler(current_vaddr)->ReadBlock(current_vaddr, buffer.data(), buffer.size()); |
| @@ -652,8 +720,8 @@ void CopyBlock(VAddr dest_addr, VAddr src_addr, const size_t size) { | |||
| 652 | 720 | ||
| 653 | page_index++; | 721 | page_index++; |
| 654 | page_offset = 0; | 722 | page_offset = 0; |
| 655 | dest_addr += copy_amount; | 723 | dest_addr += static_cast<VAddr>(copy_amount); |
| 656 | src_addr += copy_amount; | 724 | src_addr += static_cast<VAddr>(copy_amount); |
| 657 | remaining_size -= copy_amount; | 725 | remaining_size -= copy_amount; |
| 658 | } | 726 | } |
| 659 | } | 727 | } |
| @@ -721,7 +789,7 @@ boost::optional<PAddr> TryVirtualToPhysicalAddress(const VAddr addr) { | |||
| 721 | PAddr VirtualToPhysicalAddress(const VAddr addr) { | 789 | PAddr VirtualToPhysicalAddress(const VAddr addr) { |
| 722 | auto paddr = TryVirtualToPhysicalAddress(addr); | 790 | auto paddr = TryVirtualToPhysicalAddress(addr); |
| 723 | if (!paddr) { | 791 | if (!paddr) { |
| 724 | LOG_ERROR(HW_Memory, "Unknown virtual address @ 0x%llx", addr); | 792 | LOG_ERROR(HW_Memory, "Unknown virtual address @ 0x%08X", addr); |
| 725 | // To help with debugging, set bit on address so that it's obviously invalid. | 793 | // To help with debugging, set bit on address so that it's obviously invalid. |
| 726 | return addr | 0x80000000; | 794 | return addr | 0x80000000; |
| 727 | } | 795 | } |
| @@ -746,4 +814,4 @@ boost::optional<VAddr> PhysicalToVirtualAddress(const PAddr addr) { | |||
| 746 | return boost::none; | 814 | return boost::none; |
| 747 | } | 815 | } |
| 748 | 816 | ||
| 749 | } // namespace | 817 | } // namespace Memory |