kernel: memory: Add MemoryBlockManager class, to manage memory blocks.
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@ -157,6 +157,8 @@ add_library(core STATIC
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hle/kernel/memory/address_space_info.cpp
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hle/kernel/memory/address_space_info.h
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hle/kernel/memory/memory_block.h
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hle/kernel/memory/memory_block_manager.cpp
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hle/kernel/memory/memory_block_manager.h
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hle/kernel/memory/memory_types.h
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hle/kernel/memory/page_linked_list.h
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hle/kernel/memory/page_heap.cpp
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190
src/core/hle/kernel/memory/memory_block_manager.cpp
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190
src/core/hle/kernel/memory/memory_block_manager.cpp
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// Copyright 2020 yuzu 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 "core/hle/kernel/memory/memory_block_manager.h"
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#include "core/hle/kernel/memory/memory_types.h"
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namespace Kernel::Memory {
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MemoryBlockManager::MemoryBlockManager(VAddr start_addr, VAddr end_addr)
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: start_addr{start_addr}, end_addr{end_addr} {
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const u64 num_pages{(end_addr - start_addr) / PageSize};
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memory_block_tree.emplace_back(start_addr, num_pages, MemoryState::Free, MemoryPermission::None,
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MemoryAttribute::None);
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}
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MemoryBlockManager::iterator MemoryBlockManager::FindIterator(VAddr addr) {
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iterator node{memory_block_tree.begin()};
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while (node != end()) {
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const VAddr end_addr{node->GetNumPages() * PageSize + node->GetAddress()};
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if (node->GetAddress() <= addr && end_addr - 1 >= addr) {
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return node;
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}
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node = std::next(node);
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}
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return end();
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}
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VAddr MemoryBlockManager::FindFreeArea(VAddr region_start, std::size_t region_num_pages,
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std::size_t num_pages, std::size_t align, std::size_t offset,
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std::size_t guard_pages) {
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if (num_pages == 0) {
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return {};
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}
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const VAddr region_end{region_start + region_num_pages * PageSize};
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const VAddr region_last{region_end - 1};
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for (const_iterator it{FindIterator(region_start)}; it != memory_block_tree.cend(); it++) {
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const MemoryInfo info{it->GetMemoryInfo()};
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if (region_last < info.GetAddress()) {
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break;
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}
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if (info.state != MemoryState::Free) {
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continue;
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}
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VAddr area{(info.GetAddress() <= region_start) ? region_start : info.GetAddress()};
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area += guard_pages * PageSize;
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const VAddr offset_area{Common::AlignDown(area, align) + offset};
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area = (area <= offset_area) ? offset_area : offset_area + align;
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const VAddr area_end{area + num_pages * PageSize + guard_pages * PageSize};
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const VAddr area_last{area_end - 1};
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if (info.GetAddress() <= area && area < area_last && area_last <= region_last &&
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area_last <= info.GetLastAddress()) {
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return area;
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}
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}
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return {};
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}
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void MemoryBlockManager::Update(VAddr addr, std::size_t num_pages, MemoryState prev_state,
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MemoryPermission prev_perm, MemoryAttribute prev_attribute,
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MemoryState state, MemoryPermission perm,
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MemoryAttribute attribute) {
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const std::size_t prev_count{memory_block_tree.size()};
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const VAddr end_addr{addr + num_pages * PageSize};
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iterator node{memory_block_tree.begin()};
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prev_attribute |= MemoryAttribute::IpcAndDeviceMapped;
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while (node != memory_block_tree.end()) {
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MemoryBlock* block{&(*node)};
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iterator next_node{std::next(node)};
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const VAddr cur_addr{block->GetAddress()};
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const VAddr cur_end_addr{block->GetNumPages() * PageSize + cur_addr};
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if (addr < cur_end_addr && cur_addr < end_addr) {
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if (!block->HasProperties(prev_state, prev_perm, prev_attribute)) {
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node = next_node;
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continue;
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}
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iterator new_node{node};
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if (addr > cur_addr) {
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memory_block_tree.insert(node, block->Split(addr));
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}
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if (end_addr < cur_end_addr) {
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new_node = memory_block_tree.insert(node, block->Split(end_addr));
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}
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new_node->Update(state, perm, attribute);
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MergeAdjacent(new_node, next_node);
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}
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if (cur_end_addr - 1 >= end_addr - 1) {
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break;
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}
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node = next_node;
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}
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}
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void MemoryBlockManager::Update(VAddr addr, std::size_t num_pages, MemoryState state,
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MemoryPermission perm, MemoryAttribute attribute) {
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const std::size_t prev_count{memory_block_tree.size()};
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const VAddr end_addr{addr + num_pages * PageSize};
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iterator node{memory_block_tree.begin()};
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while (node != memory_block_tree.end()) {
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MemoryBlock* block{&(*node)};
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iterator next_node{std::next(node)};
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const VAddr cur_addr{block->GetAddress()};
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const VAddr cur_end_addr{block->GetNumPages() * PageSize + cur_addr};
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if (addr < cur_end_addr && cur_addr < end_addr) {
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iterator new_node{node};
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if (addr > cur_addr) {
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memory_block_tree.insert(node, block->Split(addr));
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}
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if (end_addr < cur_end_addr) {
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new_node = memory_block_tree.insert(node, block->Split(end_addr));
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}
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new_node->Update(state, perm, attribute);
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MergeAdjacent(new_node, next_node);
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}
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if (cur_end_addr - 1 >= end_addr - 1) {
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break;
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}
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node = next_node;
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}
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}
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void MemoryBlockManager::IterateForRange(VAddr start, VAddr end, IterateFunc&& func) {
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const_iterator it{FindIterator(start)};
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MemoryInfo info{};
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do {
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info = it->GetMemoryInfo();
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func(info);
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it = std::next(it);
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} while (info.addr + info.size - 1 < end - 1 && it != cend());
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}
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void MemoryBlockManager::MergeAdjacent(iterator it, iterator& next_it) {
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MemoryBlock* block{&(*it)};
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auto EraseIt = [&](const iterator it_to_erase) {
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if (next_it == it_to_erase) {
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next_it = std::next(next_it);
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}
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memory_block_tree.erase(it_to_erase);
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};
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if (it != memory_block_tree.begin()) {
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MemoryBlock* prev{&(*std::prev(it))};
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if (block->HasSameProperties(*prev)) {
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const iterator prev_it{std::prev(it)};
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prev->Add(block->GetNumPages());
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EraseIt(it);
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it = prev_it;
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block = prev;
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}
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}
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if (it != cend()) {
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const MemoryBlock* const next{&(*std::next(it))};
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if (block->HasSameProperties(*next)) {
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block->Add(next->GetNumPages());
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EraseIt(std::next(it));
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}
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}
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}
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} // namespace Kernel::Memory
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src/core/hle/kernel/memory/memory_block_manager.h
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64
src/core/hle/kernel/memory/memory_block_manager.h
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@ -0,0 +1,64 @@
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// Copyright 2020 yuzu 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 <functional>
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#include <list>
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#include <memory>
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#include "common/common_types.h"
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#include "core/hle/kernel/memory/memory_block.h"
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namespace Kernel::Memory {
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class MemoryBlockManager final {
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public:
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using MemoryBlockTree = std::list<MemoryBlock>;
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using iterator = MemoryBlockTree::iterator;
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using const_iterator = MemoryBlockTree::const_iterator;
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public:
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MemoryBlockManager(VAddr start_addr, VAddr end_addr);
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iterator end() {
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return memory_block_tree.end();
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}
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const_iterator end() const {
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return memory_block_tree.end();
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}
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const_iterator cend() const {
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return memory_block_tree.cend();
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}
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iterator FindIterator(VAddr addr);
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VAddr FindFreeArea(VAddr region_start, std::size_t region_num_pages, std::size_t num_pages,
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std::size_t align, std::size_t offset, std::size_t guard_pages);
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void Update(VAddr addr, std::size_t num_pages, MemoryState prev_state,
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MemoryPermission prev_perm, MemoryAttribute prev_attribute, MemoryState state,
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MemoryPermission perm, MemoryAttribute attribute);
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void Update(VAddr addr, std::size_t num_pages, MemoryState state,
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MemoryPermission perm = MemoryPermission::None,
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MemoryAttribute attribute = MemoryAttribute::None);
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using IterateFunc = std::function<void(const MemoryInfo&)>;
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void IterateForRange(VAddr start, VAddr end, IterateFunc&& func);
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MemoryBlock& FindBlock(VAddr addr) {
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return *FindIterator(addr);
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}
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private:
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void MergeAdjacent(iterator it, iterator& next_it);
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const VAddr start_addr;
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const VAddr end_addr;
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MemoryBlockTree memory_block_tree;
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};
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} // namespace Kernel::Memory
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