mirror of https://git.suyu.dev/suyu/suyu
Merge pull request #908 from lioncash/memory
core/memory: Get rid of 3DS leftoversmerge-requests/60/head
commit
40e63ede6d
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// Copyright 2014 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <algorithm>
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#include <cinttypes>
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#include <memory>
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#include <utility>
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#include <vector>
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#include "common/assert.h"
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#include "common/common_types.h"
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#include "common/logging/log.h"
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#include "core/hle/kernel/memory.h"
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#include "core/hle/kernel/process.h"
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#include "core/hle/kernel/vm_manager.h"
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#include "core/memory.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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namespace Kernel {
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MemoryRegionInfo memory_regions[3];
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/// Size of the APPLICATION, SYSTEM and BASE memory regions (respectively) for each system
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/// memory configuration type.
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static const u32 memory_region_sizes[8][3] = {
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// Old 3DS layouts
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{0x04000000, 0x02C00000, 0x01400000}, // 0
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{/* This appears to be unused. */}, // 1
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{0x06000000, 0x00C00000, 0x01400000}, // 2
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{0x05000000, 0x01C00000, 0x01400000}, // 3
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{0x04800000, 0x02400000, 0x01400000}, // 4
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{0x02000000, 0x04C00000, 0x01400000}, // 5
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// New 3DS layouts
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{0x07C00000, 0x06400000, 0x02000000}, // 6
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{0x0B200000, 0x02E00000, 0x02000000}, // 7
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};
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void MemoryInit(u32 mem_type) {
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// TODO(yuriks): On the n3DS, all o3DS configurations (<=5) are forced to 6 instead.
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ASSERT_MSG(mem_type <= 5, "New 3DS memory configuration aren't supported yet!");
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ASSERT(mem_type != 1);
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// The kernel allocation regions (APPLICATION, SYSTEM and BASE) are laid out in sequence, with
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// the sizes specified in the memory_region_sizes table.
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VAddr base = 0;
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for (int i = 0; i < 3; ++i) {
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memory_regions[i].base = base;
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memory_regions[i].size = memory_region_sizes[mem_type][i];
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memory_regions[i].used = 0;
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memory_regions[i].linear_heap_memory = std::make_shared<std::vector<u8>>();
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// Reserve enough space for this region of FCRAM.
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// We do not want this block of memory to be relocated when allocating from it.
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memory_regions[i].linear_heap_memory->reserve(memory_regions[i].size);
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base += memory_regions[i].size;
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}
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// We must've allocated the entire FCRAM by the end
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ASSERT(base == Memory::FCRAM_SIZE);
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}
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void MemoryShutdown() {
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for (auto& region : memory_regions) {
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region.base = 0;
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region.size = 0;
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region.used = 0;
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region.linear_heap_memory = nullptr;
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}
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}
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MemoryRegionInfo* GetMemoryRegion(MemoryRegion region) {
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switch (region) {
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case MemoryRegion::APPLICATION:
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return &memory_regions[0];
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case MemoryRegion::SYSTEM:
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return &memory_regions[1];
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case MemoryRegion::BASE:
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return &memory_regions[2];
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default:
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UNREACHABLE();
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}
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}
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void HandleSpecialMapping(VMManager& address_space, const AddressMapping& mapping) {}
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void MapSharedPages(VMManager& address_space) {}
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} // namespace Kernel
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@ -1,34 +0,0 @@
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// Copyright 2014 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#pragma once
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#include <memory>
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#include <vector>
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#include "common/common_types.h"
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namespace Kernel {
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class VMManager;
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enum class MemoryRegion : u16;
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struct AddressMapping;
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struct MemoryRegionInfo {
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u64 base; // Not an address, but offset from start of FCRAM
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u64 size;
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u64 used;
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std::shared_ptr<std::vector<u8>> linear_heap_memory;
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};
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void MemoryInit(u32 mem_type);
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void MemoryShutdown();
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MemoryRegionInfo* GetMemoryRegion(MemoryRegion region);
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void HandleSpecialMapping(VMManager& address_space, const AddressMapping& mapping);
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void MapSharedPages(VMManager& address_space);
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extern MemoryRegionInfo memory_regions[3];
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} // namespace Kernel
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@ -1,56 +0,0 @@
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// Copyright 2017 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <catch.hpp>
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#include "core/hle/kernel/memory.h"
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#include "core/hle/kernel/process.h"
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#include "core/memory.h"
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TEST_CASE("Memory::IsValidVirtualAddress", "[core][memory][!hide]") {
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SECTION("these regions should not be mapped on an empty process") {
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auto process = Kernel::Process::Create("");
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::PROCESS_IMAGE_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::HEAP_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::LINEAR_HEAP_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::VRAM_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::SHARED_PAGE_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::TLS_AREA_VADDR) == false);
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}
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SECTION("CONFIG_MEMORY_VADDR and SHARED_PAGE_VADDR should be valid after mapping them") {
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auto process = Kernel::Process::Create("");
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Kernel::MapSharedPages(process->vm_manager);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == true);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::SHARED_PAGE_VADDR) == true);
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}
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SECTION("special regions should be valid after mapping them") {
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auto process = Kernel::Process::Create("");
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SECTION("VRAM") {
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Kernel::HandleSpecialMapping(process->vm_manager,
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{Memory::VRAM_VADDR, Memory::VRAM_SIZE, false, false});
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::VRAM_VADDR) == true);
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}
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SECTION("IO (Not yet implemented)") {
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Kernel::HandleSpecialMapping(
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process->vm_manager, {Memory::IO_AREA_VADDR, Memory::IO_AREA_SIZE, false, false});
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CHECK_FALSE(Memory::IsValidVirtualAddress(*process, Memory::IO_AREA_VADDR) == true);
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}
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SECTION("DSP") {
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Kernel::HandleSpecialMapping(
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process->vm_manager, {Memory::DSP_RAM_VADDR, Memory::DSP_RAM_SIZE, false, false});
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::DSP_RAM_VADDR) == true);
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}
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}
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SECTION("Unmapping a VAddr should make it invalid") {
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auto process = Kernel::Process::Create("");
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Kernel::MapSharedPages(process->vm_manager);
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process->vm_manager.UnmapRange(Memory::CONFIG_MEMORY_VADDR, Memory::CONFIG_MEMORY_SIZE);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == false);
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}
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}
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