Track valid physical memory pages using a PFN bitmap
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Все проверки выполнены успешно
Builds / ExectOS (i686, debug) (push) Successful in 28s
Builds / ExectOS (amd64, debug) (push) Successful in 29s
Builds / ExectOS (amd64, release) (push) Successful in 47s
Builds / ExectOS (i686, release) (push) Successful in 44s
Этот коммит содержится в:
@@ -177,4 +177,19 @@ typedef struct _MMPFNLIST
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PFN_NUMBER Blink;
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} MMPFNLIST, *PMMPFNLIST;
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/* Physical memory run structure definition */
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typedef struct _PHYSICAL_MEMORY_RUN
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{
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PFN_NUMBER BasePage;
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PFN_NUMBER PageCount;
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} PHYSICAL_MEMORY_RUN, *PPHYSICAL_MEMORY_RUN;
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/* Physical memory descriptor structure definition */
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typedef struct _PHYSICAL_MEMORY_DESCRIPTOR
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{
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ULONG NumberOfRuns;
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PFN_NUMBER NumberOfPages;
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PHYSICAL_MEMORY_RUN Run[1];
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} PHYSICAL_MEMORY_DESCRIPTOR, *PPHYSICAL_MEMORY_DESCRIPTOR;
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#endif /* __XTDK_MMTYPES_H */
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@@ -310,6 +310,8 @@ typedef struct _PECOFF_IMAGE_ROM_HEADER PECOFF_IMAGE_ROM_HEADER, *PPECOFF_IMAGE_
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typedef struct _PECOFF_IMAGE_ROM_OPTIONAL_HEADER PECOFF_IMAGE_ROM_OPTIONAL_HEADER, *PPECOFF_IMAGE_ROM_OPTIONAL_HEADER;
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typedef struct _PECOFF_IMAGE_SECTION_HEADER PECOFF_IMAGE_SECTION_HEADER, *PPECOFF_IMAGE_SECTION_HEADER;
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typedef struct _PECOFF_IMAGE_VXD_HEADER PECOFF_IMAGE_VXD_HEADER, *PPECOFF_IMAGE_VXD_HEADER;
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typedef struct _PHYSICAL_MEMORY_DESCRIPTOR PHYSICAL_MEMORY_DESCRIPTOR, *PPHYSICAL_MEMORY_DESCRIPTOR;
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typedef struct _PHYSICAL_MEMORY_RUN PHYSICAL_MEMORY_RUN, *PPHYSICAL_MEMORY_RUN;
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typedef struct _PROCESSOR_IDENTITY PROCESSOR_IDENTITY, *PPROCESSOR_IDENTITY;
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typedef struct _PROCESSOR_POWER_STATE PROCESSOR_POWER_STATE, *PPROCESSOR_POWER_STATE;
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typedef struct _RTL_BITMAP RTL_BITMAP, *PRTL_BITMAP;
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@@ -20,11 +20,13 @@ namespace MM
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private:
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STATIC MMMEMORY_LAYOUT MemoryLayout;
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STATIC PFN_NUMBER NumberOfSystemPtes;
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STATIC PPHYSICAL_MEMORY_DESCRIPTOR PhysicalMemoryBlock;
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public:
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STATIC XTAPI ULONG_PTR GetInstalledMemorySize(VOID);
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STATIC XTAPI PMMMEMORY_LAYOUT GetMemoryLayout(VOID);
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STATIC XTAPI PFN_NUMBER GetNumberOfSystemPtes();
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STATIC XTAPI PFN_NUMBER GetNumberOfSystemPtes(VOID);
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STATIC XTAPI PPHYSICAL_MEMORY_DESCRIPTOR GetPhysicalMemoryBlock(VOID);
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STATIC XTAPI VOID InitializeMemoryLayout(VOID);
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STATIC XTAPI VOID InitializeMemoryManager(VOID);
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STATIC XTAPI BOOLEAN VerifyMemoryTypeFree(IN LOADER_MEMORY_TYPE MemoryType);
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@@ -30,6 +30,7 @@ namespace MM
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STATIC ULONGLONG NumberOfPhysicalPages;
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STATIC LOADER_MEMORY_DESCRIPTOR OriginalFreeDescriptor;
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STATIC PMMPFNLIST PageLocationList[];
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STATIC RTL_BITMAP PfnBitMap;
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STATIC MMPFNLIST RomPagesList;
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STATIC MMPFNLIST StandbyPagesList;
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STATIC MMPFNLIST ZeroedPagesList;
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@@ -49,6 +50,7 @@ namespace MM
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STATIC XTAPI ULONG_PTR GetHighestPhysicalPage(VOID);
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STATIC XTAPI ULONGLONG GetNumberOfPhysicalPages(VOID);
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STATIC XTAPI PMMPFN GetPfnEntry(IN PFN_NUMBER Pfn);
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STATIC XTAPI VOID InitializePfnBitmap(VOID);
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STATIC XTAPI VOID InitializePfnDatabase(VOID);
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STATIC XTAPI VOID LinkPfn(IN PFN_NUMBER PageFrameIndex,
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IN PMMPTE PointerPte,
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@@ -48,6 +48,9 @@ MMMEMORY_LAYOUT MM::Manager::MemoryLayout;
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/* Total number of PTEs reserved for system space mapping */
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PFN_NUMBER MM::Manager::NumberOfSystemPtes;
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/* Physical memory block descriptor */
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PPHYSICAL_MEMORY_DESCRIPTOR MM::Manager::PhysicalMemoryBlock;
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/* Instance of the page map routines for the current PML level */
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MM::PPAGEMAP MM::Paging::PmlRoutines;
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@@ -91,6 +94,9 @@ PMMPFNLIST MM::Pfn::PageLocationList[] = {&ZeroedPagesList,
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NULLPTR,
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NULLPTR};
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/* Bitmap used to track physical pages */
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RTL_BITMAP MM::Pfn::PfnBitMap;
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/* List containing pages mapped as Read-Only (ROM) */
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MMPFNLIST MM::Pfn::RomPagesList = {0, StandbyPageList, MAXULONG_PTR, MAXULONG_PTR};
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@@ -81,11 +81,146 @@ MM::Manager::GetMemoryLayout(VOID)
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*/
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XTAPI
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PFN_NUMBER
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MM::Manager::GetNumberOfSystemPtes()
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MM::Manager::GetNumberOfSystemPtes(VOID)
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{
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return NumberOfSystemPtes;
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}
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/**
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* Initializes and returns the system physical memory descriptor block.
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*
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* @return This routine returns a pointer to the structure representing the system usable physical memory block.
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*
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* @since XT 1.0
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*/
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XTAPI
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PPHYSICAL_MEMORY_DESCRIPTOR
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MM::Manager::GetPhysicalMemoryBlock(VOID)
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{
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PPHYSICAL_MEMORY_DESCRIPTOR PrimaryBuffer, SecondaryBuffer;
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PKERNEL_INITIALIZATION_BLOCK InitializationBlock;
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PLOADER_MEMORY_DESCRIPTOR MemoryDescriptor;
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PFN_NUMBER PageFrameNumer, NumberOfPages;
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ULONG DescriptorCount, RunCount;
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PLIST_ENTRY ListEntry;
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XTSTATUS Status;
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/* Check if the physical memory block has already been initialized */
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if(!PhysicalMemoryBlock)
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{
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/* Reset local tracking variables */
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DescriptorCount = 0;
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NumberOfPages = 0;
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PageFrameNumer = -1;
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RunCount = 0;
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/* Retrieve the kernel initialization block */
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InitializationBlock = KE::BootInformation::GetInitializationBlock();
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/* Iterate through the loader memory descriptor list to determine its size */
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ListEntry = InitializationBlock->MemoryDescriptorListHead.Flink;
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while(ListEntry != &InitializationBlock->MemoryDescriptorListHead)
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{
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/* Count this descriptor */
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DescriptorCount++;
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/* Go to the next descriptor */
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ListEntry = ListEntry->Flink;
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}
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/* Ensure the memory descriptor list is not empty */
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if(DescriptorCount == 0)
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{
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/* Fail gracefully if no memory descriptors were found, by returning NULLPTR */
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return NULLPTR;
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}
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/* Allocate a primary buffer sized for the maximum possible number of runs */
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Status = MM::Allocator::AllocatePool(NonPagedPool,
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sizeof(PHYSICAL_MEMORY_DESCRIPTOR) +
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sizeof(PHYSICAL_MEMORY_RUN) *
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(DescriptorCount - 1),
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(PVOID*)&PrimaryBuffer,
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SIGNATURE32('M', 'M', 'g', 'r'));
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if(Status != STATUS_SUCCESS || !PrimaryBuffer)
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{
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/* Primary pool allocation failed, return NULLPTR */
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return NULLPTR;
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}
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/* Traverse the memory descriptor list a second time to build the map */
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ListEntry = InitializationBlock->MemoryDescriptorListHead.Flink;
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while(ListEntry != &InitializationBlock->MemoryDescriptorListHead)
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{
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/* Resolve the memory descriptor record from the current list entry */
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MemoryDescriptor = CONTAIN_RECORD(ListEntry, LOADER_MEMORY_DESCRIPTOR, ListEntry);
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/* Filter out bad, reserved, or invisible memory types */
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if((MemoryDescriptor->MemoryType < LoaderMaximum) &&
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(MemoryDescriptor->MemoryType != LoaderBad) &&
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!VerifyMemoryTypeInvisible(MemoryDescriptor->MemoryType))
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{
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/* Accumulate the total number of usable physical pages */
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NumberOfPages += MemoryDescriptor->PageCount;
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/* Check if the current descriptor is contiguous with the previous run */
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if(RunCount > 0 && MemoryDescriptor->BasePage == PageFrameNumer)
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{
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/* Coalesce the contiguous descriptor into the existing physical run */
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PrimaryBuffer->Run[RunCount - 1].PageCount += MemoryDescriptor->PageCount;
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PageFrameNumer += MemoryDescriptor->PageCount;
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}
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else
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{
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/* Start a new physical run with the new descriptor's boundaries */
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PrimaryBuffer->Run[RunCount].BasePage = MemoryDescriptor->BasePage;
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PrimaryBuffer->Run[RunCount].PageCount = MemoryDescriptor->PageCount;
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/* Update the expected next page frame number for future contiguity checks */
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PageFrameNumer = PrimaryBuffer->Run[RunCount].BasePage + PrimaryBuffer->Run[RunCount].PageCount;
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/* Increment the total number of distinct physical memory runs */
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RunCount++;
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}
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}
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/* Go to the next descriptor */
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ListEntry = ListEntry->Flink;
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}
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/* Check if the buffer can be shrunk due to coalesced memory runs */
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if(DescriptorCount > RunCount)
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{
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/* Allocate a secondary, more tightly sized buffer to reduce memory footprint */
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Status = MM::Allocator::AllocatePool(NonPagedPool,
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sizeof(PHYSICAL_MEMORY_DESCRIPTOR) +
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sizeof(PHYSICAL_MEMORY_RUN) *
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(RunCount - 1),
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(PVOID*)&SecondaryBuffer,
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SIGNATURE32('M', 'M', 'g', 'r'));
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if(Status == STATUS_SUCCESS && SecondaryBuffer)
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{
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/* Copy the coalesced runs from the oversized primary buffer */
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RtlCopyMemory(SecondaryBuffer->Run, PrimaryBuffer->Run, sizeof(PHYSICAL_MEMORY_RUN) * RunCount);
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/* Free the primary buffer */
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MM::Allocator::FreePool(PrimaryBuffer, SIGNATURE32('M', 'M', 'g', 'r'));
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/* Update the primary buffer pointer */
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PrimaryBuffer = SecondaryBuffer;
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}
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}
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/* Populate the final metadata and save the physical memory block globally */
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PrimaryBuffer->NumberOfRuns = RunCount;
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PrimaryBuffer->NumberOfPages = NumberOfPages;
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PhysicalMemoryBlock = PrimaryBuffer;
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}
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/* Return a pointer to the physical memory block */
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return PhysicalMemoryBlock;
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}
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/**
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* Performs an early initialization of the XTOS Memory Manager.
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*
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@@ -130,6 +265,9 @@ MM::Manager::InitializeMemoryManager(VOID)
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/* Initialize PFN database */
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MM::Pfn::InitializePfnDatabase();
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/* Initialize PFN bitmap */
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MM::Pfn::InitializePfnBitmap();
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/* Initialize paged pool */
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MM::Allocator::InitializePagedPool();
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@@ -423,6 +423,13 @@ MM::Pfn::GetPfnEntry(IN PFN_NUMBER Pfn)
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return NULLPTR;
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}
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/* Make sure this page has a PFN entry set */
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if(PfnBitMap.Buffer && !RTL::BitMap::TestBit(&PfnBitMap, Pfn))
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{
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/* The requested page number is not set in the bitmap, return NULLPTR */
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return NULLPTR;
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}
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/* Get the memory layout */
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MemoryLayout = MM::Manager::GetMemoryLayout();
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@@ -445,6 +452,60 @@ MM::Pfn::IncrementAvailablePages(VOID)
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AvailablePages++;
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}
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/**
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* Initializes the PFN bitmap to track available physical memory.
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*
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* @return This routine does not return any value.
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*
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* @since XT 1.0
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*/
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XTAPI
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VOID
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MM::Pfn::InitializePfnBitmap(VOID)
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{
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PPHYSICAL_MEMORY_DESCRIPTOR PhysicalMemoryBlock;
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XTSTATUS Status;
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PVOID BitMap;
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ULONG Index;
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/* Retrieve the global physical memory descriptor block */
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PhysicalMemoryBlock = MM::Manager::GetPhysicalMemoryBlock();
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if(!PhysicalMemoryBlock)
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{
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/* Physical memory layout unavailable, kernel panic */
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KE::Crash::Panic(0x7D, NumberOfPhysicalPages, LowestPhysicalPage, HighestPhysicalPage, 0x100);
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}
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/* Calculate the required bitmap size and allocate memory */
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Status = MM::Allocator::AllocatePool(NonPagedPool,
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(((HighestPhysicalPage + 1) + 31) / 32) * 4,
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(PVOID *)&BitMap,
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SIGNATURE32('M', 'M', 'g', 'r'));
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if(Status != STATUS_SUCCESS || !BitMap)
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{
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/* Memory allocation failed, kernel panic */
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DebugPrint(L"Insufficient physical pages! Install additional memory\n");
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KE::Crash::Panic(0x7D, NumberOfPhysicalPages, LowestPhysicalPage, HighestPhysicalPage, 0x101);
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}
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/* Initialize the PFN bitmap structure and clear all bits by default */
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RTL::BitMap::InitializeBitMap(&PfnBitMap, (PULONG_PTR)BitMap, (ULONG)HighestPhysicalPage + 1);
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RTL::BitMap::ClearAllBits(&PfnBitMap);
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/* Iterate through all contiguous physical memory runs to populate the availability map */
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for(Index = 0; Index < PhysicalMemoryBlock->NumberOfRuns; Index++)
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{
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/* Ensure the current memory run contains at least one valid page frame */
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if((&PhysicalMemoryBlock->Run[Index])->PageCount)
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{
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/* Set the corresponding bits to mark these physical pages as available for allocation */
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RtlSetBits(&PfnBitMap,
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(ULONG)(&PhysicalMemoryBlock->Run[Index])->BasePage,
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(ULONG)(&PhysicalMemoryBlock->Run[Index])->PageCount);
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}
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}
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}
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/**
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* Links a physical page to the appropriate free lists.
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*
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