kernel: reshuffle ini1 size, add slab clear note
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85a89ca3e3
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22afa2c7a3
4 changed files with 18 additions and 10 deletions
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@ -106,7 +106,7 @@ static_assert(KernelPageBufferAdditionalSize ==
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/// memory.
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/// memory.
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static KPhysicalAddress TranslateSlabAddrToPhysical(KMemoryLayout& memory_layout,
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static KPhysicalAddress TranslateSlabAddrToPhysical(KMemoryLayout& memory_layout,
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KVirtualAddress slab_addr) {
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KVirtualAddress slab_addr) {
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slab_addr -= GetInteger(memory_layout.GetSlabRegionAddress());
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slab_addr -= memory_layout.GetSlabRegion().GetAddress();
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return GetInteger(slab_addr) + Core::DramMemoryMap::SlabHeapBase;
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return GetInteger(slab_addr) + Core::DramMemoryMap::SlabHeapBase;
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}
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}
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@ -196,7 +196,12 @@ void InitializeSlabHeaps(Core::System& system, KMemoryLayout& memory_layout) {
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auto& kernel = system.Kernel();
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auto& kernel = system.Kernel();
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// Get the start of the slab region, since that's where we'll be working.
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// Get the start of the slab region, since that's where we'll be working.
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KVirtualAddress address = memory_layout.GetSlabRegionAddress();
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const KMemoryRegion& slab_region = memory_layout.GetSlabRegion();
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KVirtualAddress address = slab_region.GetAddress();
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// Clear the slab region.
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// TODO: implement access to kernel VAs.
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// std::memset(device_ptr, 0, slab_region.GetSize());
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// Initialize slab type array to be in sorted order.
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// Initialize slab type array to be in sorted order.
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std::array<KSlabType, KSlabType_Count> slab_types;
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std::array<KSlabType, KSlabType_Count> slab_types;
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@ -19,4 +19,8 @@ static inline KPhysicalAddress GetInitialProcessBinaryPhysicalAddress() {
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MainMemoryAddress);
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MainMemoryAddress);
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}
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}
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static inline size_t GetInitialProcessBinarySize() {
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return InitialProcessBinarySizeMax;
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}
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} // namespace Kernel
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} // namespace Kernel
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@ -137,11 +137,9 @@ public:
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return GetStackTopAddress(core_id, KMemoryRegionType_KernelMiscExceptionStack);
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return GetStackTopAddress(core_id, KMemoryRegionType_KernelMiscExceptionStack);
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}
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}
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KVirtualAddress GetSlabRegionAddress() const {
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const KMemoryRegion& GetSlabRegion() const {
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return Dereference(GetVirtualMemoryRegionTree().FindByType(KMemoryRegionType_KernelSlab))
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return Dereference(GetVirtualMemoryRegionTree().FindByType(KMemoryRegionType_KernelSlab));
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.GetAddress();
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}
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}
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const KMemoryRegion& GetDeviceRegion(KMemoryRegionType type) const {
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const KMemoryRegion& GetDeviceRegion(KMemoryRegionType type) const {
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return Dereference(GetPhysicalMemoryRegionTree().FindFirstDerived(type));
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return Dereference(GetPhysicalMemoryRegionTree().FindFirstDerived(type));
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}
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}
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@ -119,7 +119,8 @@ void KMemoryManager::Initialize(KVirtualAddress management_region, size_t manage
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// Free each region to its corresponding heap.
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// Free each region to its corresponding heap.
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size_t reserved_sizes[MaxManagerCount] = {};
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size_t reserved_sizes[MaxManagerCount] = {};
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const KPhysicalAddress ini_start = GetInitialProcessBinaryPhysicalAddress();
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const KPhysicalAddress ini_start = GetInitialProcessBinaryPhysicalAddress();
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const KPhysicalAddress ini_end = ini_start + InitialProcessBinarySizeMax;
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const size_t ini_size = GetInitialProcessBinarySize();
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const KPhysicalAddress ini_end = ini_start + ini_size;
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const KPhysicalAddress ini_last = ini_end - 1;
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const KPhysicalAddress ini_last = ini_end - 1;
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for (const auto& it : m_system.Kernel().MemoryLayout().GetPhysicalMemoryRegionTree()) {
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for (const auto& it : m_system.Kernel().MemoryLayout().GetPhysicalMemoryRegionTree()) {
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if (it.IsDerivedFrom(KMemoryRegionType_DramUserPool)) {
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if (it.IsDerivedFrom(KMemoryRegionType_DramUserPool)) {
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@ -137,13 +138,13 @@ void KMemoryManager::Initialize(KVirtualAddress management_region, size_t manage
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}
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}
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// Open/reserve the ini memory.
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// Open/reserve the ini memory.
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manager.OpenFirst(ini_start, InitialProcessBinarySizeMax / PageSize);
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manager.OpenFirst(ini_start, ini_size / PageSize);
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reserved_sizes[it.GetAttributes()] += InitialProcessBinarySizeMax;
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reserved_sizes[it.GetAttributes()] += ini_size;
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// Free memory after the ini to the heap.
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// Free memory after the ini to the heap.
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if (ini_last != cur_last) {
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if (ini_last != cur_last) {
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ASSERT(cur_end != 0);
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ASSERT(cur_end != 0);
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manager.Free(ini_end, cur_end - ini_end);
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manager.Free(ini_end, (cur_end - ini_end) / PageSize);
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}
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}
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} else {
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} else {
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// Ensure there's no partial overlap with the ini image.
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// Ensure there's no partial overlap with the ini image.
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