Map memory for hardware layer on i686
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@ -28,6 +28,9 @@
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#define MM_PDI_SHIFT 21
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#define MM_PDI_SHIFT 21
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#define MM_PPI_SHIFT 30
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#define MM_PPI_SHIFT 30
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/* PTE legacy shift values */
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#define MM_PDI_LEGACY_SHIFT 22
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/* Minimum number of physical pages needed by the system */
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/* Minimum number of physical pages needed by the system */
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#define MM_MINIMUM_PHYSICAL_PAGES 1100
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#define MM_MINIMUM_PHYSICAL_PAGES 1100
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@ -9,20 +9,68 @@
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#include <xtos.h>
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#include <xtos.h>
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#define HAL_MEMORY 0xFFC00000
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/**
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* Maps the page table for hardware layer addess space.
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*
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* @param PageMap
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* Supplies a pointer to the page mapping structure.
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*
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* @return This routine returns a status code.
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*
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* @since XT 1.0
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*/
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XTCDECL
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EFI_STATUS
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XtMapHalMemory(IN PXTBL_PAGE_MAPPING PageMap)
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{
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XTSTATUS Status;
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EFI_PHYSICAL_ADDRESS Address;
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PHARDWARE_PTE Pml3;
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ULONGLONG PmlIndex;
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ULONG Index;
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PHARDWARE_PTE PdeBase;
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/* Allocate memory */
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Status = XtLdrProtocol->Memory.AllocatePages(1, &Address);
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if(Status != STATUS_EFI_SUCCESS)
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{
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/* Memory allocation failure, return error */
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return Status;
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}
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/* Zero fill allocated memory */
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RtlZeroMemory((PVOID)Address, EFI_PAGE_SIZE);
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/* Check page map level */
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if(PageMap->PageMapLevel == 3)
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{
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/* Get PDE base address (PAE enabled) */
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PdeBase = (PHARDWARE_PTE)(((PHARDWARE_PTE)PageMap->PtePointer)[MM_HAL_VA_START >> MM_PPI_SHIFT].PageFrameNumber << MM_PAGE_SHIFT);
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/* Make PDE valid */
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PdeBase[(MM_HAL_VA_START >> MM_PDI_SHIFT) & 0x1FF].PageFrameNumber = Address >> MM_PAGE_SHIFT;
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PdeBase[(MM_HAL_VA_START >> MM_PDI_SHIFT) & 0x1FF].Valid = 1;
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PdeBase[(MM_HAL_VA_START >> MM_PDI_SHIFT) & 0x1FF].Writable = 1;
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}
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else
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{
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/* Make PDE valid (PAE disabled) */
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((PHARDWARE_LEGACY_PTE)PageMap->PtePointer)[MM_HAL_VA_START >> MM_PDI_LEGACY_SHIFT].Valid = 1;
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((PHARDWARE_LEGACY_PTE)PageMap->PtePointer)[MM_HAL_VA_START >> MM_PDI_LEGACY_SHIFT].PageFrameNumber = Address >> MM_PAGE_SHIFT;
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((PHARDWARE_LEGACY_PTE)PageMap->PtePointer)[MM_HAL_VA_START >> MM_PDI_LEGACY_SHIFT].Writable = 1;
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}
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/* Return success */
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return STATUS_EFI_SUCCESS;
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}
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/**
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/**
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* Builds the actual memory mapping page table and enables paging. This routine exits EFI boot services as well.
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* Builds the actual memory mapping page table and enables paging. This routine exits EFI boot services as well.
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*
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*
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* @param MemoryMappings
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* @param PageMap
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* Supplies a pointer to linked list containing all memory mappings.
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* Supplies a pointer to the page mapping structure.
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*
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* @param VirtualAddress
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* Supplies a pointer to the next valid, free and available virtual address.
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*
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* @param ImageProtocol
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* A pointer to the EFI loaded image protocol with information about where in memory the loader code was placed.
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*
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* @param PtePointer
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* Supplies a pointer to memory area containing a Page Table Entries (PTE).
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*
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*
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* @return This routine returns a status code.
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* @return This routine returns a status code.
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*
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*
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@ -63,6 +111,15 @@ XtEnablePaging(IN PXTBL_PAGE_MAPPING PageMap)
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return Status;
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return Status;
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}
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}
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/* Map memory for hardware layer */
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Status = XtMapHalMemory(PageMap);
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if(Status != STATUS_EFI_SUCCESS)
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{
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/* Failed to map memory for hardware layer */
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XtLdrProtocol->Debug.Print(L"Failed to map memory for hardware leyer (Status code: %zX)\n", Status);
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return Status;
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}
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/* Exit EFI Boot Services */
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/* Exit EFI Boot Services */
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XtLdrProtocol->Debug.Print(L"Exiting EFI boot services\n");
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XtLdrProtocol->Debug.Print(L"Exiting EFI boot services\n");
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Status = XtLdrProtocol->Util.ExitBootServices();
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Status = XtLdrProtocol->Util.ExitBootServices();
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