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@@ -100,7 +100,7 @@ constexpr size_t GetAddressSpaceWidthFromType(FileSys::ProgramAddressSpaceType a
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KPageTable::KPageTable(Core::System& system_)
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: m_general_lock{system_.Kernel()},
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- m_map_physical_memory_lock{system_.Kernel()}, m_system{system_} {}
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+ m_map_physical_memory_lock{system_.Kernel()}, m_system{system_}, m_kernel{system_.Kernel()} {}
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KPageTable::~KPageTable() = default;
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@@ -373,7 +373,7 @@ Result KPageTable::MapProcessCode(VAddr addr, size_t num_pages, KMemoryState sta
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m_memory_block_slab_manager);
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// Allocate and open.
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- KPageGroup pg;
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+ KPageGroup pg{m_kernel, m_block_info_manager};
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R_TRY(m_system.Kernel().MemoryManager().AllocateAndOpen(
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&pg, num_pages,
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KMemoryManager::EncodeOption(KMemoryManager::Pool::Application, m_allocation_option)));
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@@ -432,7 +432,7 @@ Result KPageTable::MapCodeMemory(VAddr dst_address, VAddr src_address, size_t si
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const size_t num_pages = size / PageSize;
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// Create page groups for the memory being mapped.
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- KPageGroup pg;
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+ KPageGroup pg{m_kernel, m_block_info_manager};
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AddRegionToPages(src_address, num_pages, pg);
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// Reprotect the source as kernel-read/not mapped.
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@@ -593,7 +593,7 @@ Result KPageTable::MakePageGroup(KPageGroup& pg, VAddr addr, size_t num_pages) {
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const size_t size = num_pages * PageSize;
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// We're making a new group, not adding to an existing one.
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- R_UNLESS(pg.Empty(), ResultInvalidCurrentMemory);
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+ R_UNLESS(pg.empty(), ResultInvalidCurrentMemory);
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// Begin traversal.
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Common::PageTable::TraversalContext context;
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@@ -640,11 +640,10 @@ Result KPageTable::MakePageGroup(KPageGroup& pg, VAddr addr, size_t num_pages) {
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R_SUCCEED();
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}
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-bool KPageTable::IsValidPageGroup(const KPageGroup& pg_ll, VAddr addr, size_t num_pages) {
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+bool KPageTable::IsValidPageGroup(const KPageGroup& pg, VAddr addr, size_t num_pages) {
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ASSERT(this->IsLockedByCurrentThread());
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const size_t size = num_pages * PageSize;
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- const auto& pg = pg_ll.Nodes();
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const auto& memory_layout = m_system.Kernel().MemoryLayout();
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// Empty groups are necessarily invalid.
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@@ -1572,7 +1571,7 @@ Result KPageTable::MapPhysicalMemory(VAddr address, size_t size) {
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R_UNLESS(memory_reservation.Succeeded(), ResultLimitReached);
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// Allocate pages for the new memory.
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- KPageGroup pg;
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+ KPageGroup pg{m_kernel, m_block_info_manager};
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R_TRY(m_system.Kernel().MemoryManager().AllocateForProcess(
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&pg, (size - mapped_size) / PageSize, m_allocate_option, 0, 0));
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@@ -1650,7 +1649,7 @@ Result KPageTable::MapPhysicalMemory(VAddr address, size_t size) {
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KScopedPageTableUpdater updater(this);
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// Prepare to iterate over the memory.
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- auto pg_it = pg.Nodes().begin();
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+ auto pg_it = pg.begin();
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PAddr pg_phys_addr = pg_it->GetAddress();
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size_t pg_pages = pg_it->GetNumPages();
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@@ -1703,7 +1702,7 @@ Result KPageTable::MapPhysicalMemory(VAddr address, size_t size) {
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// Release any remaining unmapped memory.
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m_system.Kernel().MemoryManager().OpenFirst(pg_phys_addr, pg_pages);
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m_system.Kernel().MemoryManager().Close(pg_phys_addr, pg_pages);
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- for (++pg_it; pg_it != pg.Nodes().end(); ++pg_it) {
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+ for (++pg_it; pg_it != pg.end(); ++pg_it) {
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m_system.Kernel().MemoryManager().OpenFirst(pg_it->GetAddress(),
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pg_it->GetNumPages());
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m_system.Kernel().MemoryManager().Close(pg_it->GetAddress(),
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@@ -1731,7 +1730,7 @@ Result KPageTable::MapPhysicalMemory(VAddr address, size_t size) {
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// Check if we're at the end of the physical block.
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if (pg_pages == 0) {
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// Ensure there are more pages to map.
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- ASSERT(pg_it != pg.Nodes().end());
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+ ASSERT(pg_it != pg.end());
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// Advance our physical block.
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++pg_it;
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@@ -1955,7 +1954,7 @@ Result KPageTable::MapMemory(VAddr dst_address, VAddr src_address, size_t size)
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R_TRY(dst_allocator_result);
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// Map the memory.
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- KPageGroup page_linked_list;
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+ KPageGroup page_linked_list{m_kernel, m_block_info_manager};
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const size_t num_pages{size / PageSize};
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const KMemoryPermission new_src_perm = static_cast<KMemoryPermission>(
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KMemoryPermission::KernelRead | KMemoryPermission::NotMapped);
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@@ -2022,14 +2021,14 @@ Result KPageTable::UnmapMemory(VAddr dst_address, VAddr src_address, size_t size
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num_dst_allocator_blocks);
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R_TRY(dst_allocator_result);
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- KPageGroup src_pages;
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- KPageGroup dst_pages;
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+ KPageGroup src_pages{m_kernel, m_block_info_manager};
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+ KPageGroup dst_pages{m_kernel, m_block_info_manager};
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const size_t num_pages{size / PageSize};
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AddRegionToPages(src_address, num_pages, src_pages);
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AddRegionToPages(dst_address, num_pages, dst_pages);
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- R_UNLESS(dst_pages.IsEqual(src_pages), ResultInvalidMemoryRegion);
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+ R_UNLESS(dst_pages.IsEquivalentTo(src_pages), ResultInvalidMemoryRegion);
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{
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auto block_guard = detail::ScopeExit([&] { MapPages(dst_address, dst_pages, dst_perm); });
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@@ -2060,7 +2059,7 @@ Result KPageTable::MapPages(VAddr addr, const KPageGroup& page_linked_list,
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VAddr cur_addr{addr};
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- for (const auto& node : page_linked_list.Nodes()) {
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+ for (const auto& node : page_linked_list) {
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if (const auto result{
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Operate(cur_addr, node.GetNumPages(), perm, OperationType::Map, node.GetAddress())};
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result.IsError()) {
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@@ -2160,7 +2159,7 @@ Result KPageTable::UnmapPages(VAddr addr, const KPageGroup& page_linked_list) {
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VAddr cur_addr{addr};
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- for (const auto& node : page_linked_list.Nodes()) {
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+ for (const auto& node : page_linked_list) {
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if (const auto result{Operate(cur_addr, node.GetNumPages(), KMemoryPermission::None,
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OperationType::Unmap)};
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result.IsError()) {
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@@ -2527,13 +2526,13 @@ Result KPageTable::SetHeapSize(VAddr* out, size_t size) {
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R_UNLESS(memory_reservation.Succeeded(), ResultLimitReached);
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// Allocate pages for the heap extension.
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- KPageGroup pg;
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+ KPageGroup pg{m_kernel, m_block_info_manager};
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R_TRY(m_system.Kernel().MemoryManager().AllocateAndOpen(
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&pg, allocation_size / PageSize,
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KMemoryManager::EncodeOption(m_memory_pool, m_allocation_option)));
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// Clear all the newly allocated pages.
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- for (const auto& it : pg.Nodes()) {
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+ for (const auto& it : pg) {
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std::memset(m_system.DeviceMemory().GetPointer<void>(it.GetAddress()), m_heap_fill_value,
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it.GetSize());
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}
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@@ -2610,7 +2609,7 @@ ResultVal<VAddr> KPageTable::AllocateAndMapMemory(size_t needed_num_pages, size_
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if (is_map_only) {
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R_TRY(Operate(addr, needed_num_pages, perm, OperationType::Map, map_addr));
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} else {
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- KPageGroup page_group;
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+ KPageGroup page_group{m_kernel, m_block_info_manager};
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R_TRY(m_system.Kernel().MemoryManager().AllocateForProcess(
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&page_group, needed_num_pages,
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KMemoryManager::EncodeOption(m_memory_pool, m_allocation_option), 0, 0));
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@@ -2795,7 +2794,7 @@ Result KPageTable::Operate(VAddr addr, size_t num_pages, const KPageGroup& page_
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ASSERT(num_pages > 0);
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ASSERT(num_pages == page_group.GetNumPages());
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- for (const auto& node : page_group.Nodes()) {
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+ for (const auto& node : page_group) {
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const size_t size{node.GetNumPages() * PageSize};
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switch (operation) {
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