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	Contributed-under: TianoCore Contribution Agreement 1.0 Signed-off-by: Elvin Li <elvin.li@intel.com> Signed-off-by: Liming Gao <liming.gao@intel.com> git-svn-id: https://svn.code.sf.net/p/edk2/code/trunk/edk2@15977 6f19259b-4bc3-4df7-8a09-765794883524
		
			
				
	
	
		
			232 lines
		
	
	
		
			7.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			232 lines
		
	
	
		
			7.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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  Create the variable to save the base address of page table and stack
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  for transferring into long mode in IA32 capsule PEI.
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Copyright (c) 2011 - 2014, Intel Corporation. All rights reserved.<BR>
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This program and the accompanying materials
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are licensed and made available under the terms and conditions of the BSD License
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which accompanies this distribution.  The full text of the license may be found at
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http://opensource.org/licenses/bsd-license.php
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THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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**/
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#include <Uefi.h>
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#include <Protocol/Capsule.h>
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#include <Protocol/DxeSmmReadyToLock.h>
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#include <Protocol/VariableLock.h>
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#include <Guid/CapsuleVendor.h>
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#include <Guid/AcpiS3Context.h>
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#include <Library/DebugLib.h>
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#include <Library/PcdLib.h>
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#include <Library/UefiBootServicesTableLib.h>
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#include <Library/UefiRuntimeServicesTableLib.h>
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#include <Library/UefiRuntimeLib.h>
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#include <Library/BaseLib.h>
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#include <Library/UefiLib.h>
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#include <Library/BaseMemoryLib.h>
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#include <Library/HobLib.h>
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/**
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  Allocate EfiReservedMemoryType below 4G memory address.
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  This function allocates EfiReservedMemoryType below 4G memory address.
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  @param  Size      Size of memory to allocate.
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  @return Allocated Address for output.
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**/
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VOID*
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AllocateReservedMemoryBelow4G (
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  IN   UINTN   Size
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  )
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{
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  UINTN                 Pages;
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  EFI_PHYSICAL_ADDRESS  Address;
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  EFI_STATUS            Status;
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  VOID*                 Buffer;
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  Pages = EFI_SIZE_TO_PAGES (Size);
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  Address = 0xffffffff;
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  Status  = gBS->AllocatePages (
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                   AllocateMaxAddress,
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                   EfiReservedMemoryType,
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                   Pages,
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                   &Address
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                   );
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  ASSERT_EFI_ERROR (Status);
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  Buffer = (VOID *) (UINTN) Address;
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  ZeroMem (Buffer, Size);
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  return Buffer;
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}
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/**
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  Register callback function upon VariableLockProtocol
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  to lock EFI_CAPSULE_LONG_MODE_BUFFER_NAME variable to avoid malicious code to update it.
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  @param[in] Event    Event whose notification function is being invoked.
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  @param[in] Context  Pointer to the notification function's context.
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**/
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VOID
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EFIAPI
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VariableLockCapsuleLongModeBufferVariable (
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  IN  EFI_EVENT                             Event,
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  IN  VOID                                  *Context
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  )
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{
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  EFI_STATUS                    Status;
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  EDKII_VARIABLE_LOCK_PROTOCOL  *VariableLock;
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  //
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  // Mark EFI_CAPSULE_LONG_MODE_BUFFER_NAME variable to read-only if the Variable Lock protocol exists
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  //
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  Status = gBS->LocateProtocol (&gEdkiiVariableLockProtocolGuid, NULL, (VOID **) &VariableLock);
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  if (!EFI_ERROR (Status)) {
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    Status = VariableLock->RequestToLock (VariableLock, EFI_CAPSULE_LONG_MODE_BUFFER_NAME, &gEfiCapsuleVendorGuid);
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    ASSERT_EFI_ERROR (Status);
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  }
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}
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/**
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  1. Allocate Reserved memory for capsule PEIM to establish a 1:1 Virtual to Physical mapping.
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  2. Allocate Reserved memroy as a stack for capsule PEIM to transfer from 32-bit mdoe to 64-bit mode.
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**/
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VOID
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EFIAPI
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PrepareContextForCapsulePei (
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  VOID
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  )
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{
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  UINT32                                        RegEax;
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  UINT32                                        RegEdx;
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  UINTN                                         TotalPagesNum;
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  UINT8                                         PhysicalAddressBits;
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  VOID                                          *Hob;
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  UINT32                                        NumberOfPml4EntriesNeeded;
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  UINT32                                        NumberOfPdpEntriesNeeded;
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  BOOLEAN                                       Page1GSupport;
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  EFI_CAPSULE_LONG_MODE_BUFFER                  LongModeBuffer;
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  EFI_STATUS                                    Status;
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  VOID                                          *Registration;
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  LongModeBuffer.PageTableAddress = (EFI_PHYSICAL_ADDRESS) PcdGet64 (PcdIdentifyMappingPageTablePtr);
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  if (LongModeBuffer.PageTableAddress == 0x0) {
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    //
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    // Calculate the size of page table, allocate the memory, and set PcdIdentifyMappingPageTablePtr.
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    //
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    Page1GSupport = FALSE;
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    if (PcdGetBool(PcdUse1GPageTable)) {
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      AsmCpuid (0x80000000, &RegEax, NULL, NULL, NULL);
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      if (RegEax >= 0x80000001) {
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        AsmCpuid (0x80000001, NULL, NULL, NULL, &RegEdx);
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        if ((RegEdx & BIT26) != 0) {
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          Page1GSupport = TRUE;
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        }
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      }
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    }
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    //
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    // Get physical address bits supported.
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    //
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    Hob = GetFirstHob (EFI_HOB_TYPE_CPU);
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    if (Hob != NULL) {
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      PhysicalAddressBits = ((EFI_HOB_CPU *) Hob)->SizeOfMemorySpace;
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    } else {
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      AsmCpuid (0x80000000, &RegEax, NULL, NULL, NULL);
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      if (RegEax >= 0x80000008) {
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        AsmCpuid (0x80000008, &RegEax, NULL, NULL, NULL);
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        PhysicalAddressBits = (UINT8) RegEax;
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      } else {
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        PhysicalAddressBits = 36;
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      }
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    }
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    //
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    // IA-32e paging translates 48-bit linear addresses to 52-bit physical addresses.
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    //
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    ASSERT (PhysicalAddressBits <= 52);
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    if (PhysicalAddressBits > 48) {
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      PhysicalAddressBits = 48;
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    }
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    //
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    // Calculate the table entries needed.
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    //
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    if (PhysicalAddressBits <= 39 ) {
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      NumberOfPml4EntriesNeeded = 1;
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      NumberOfPdpEntriesNeeded = (UINT32)LShiftU64 (1, (PhysicalAddressBits - 30));
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    } else {
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      NumberOfPml4EntriesNeeded = (UINT32)LShiftU64 (1, (PhysicalAddressBits - 39));
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      NumberOfPdpEntriesNeeded = 512;
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    }
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    if (!Page1GSupport) {
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      TotalPagesNum = (NumberOfPdpEntriesNeeded + 1) * NumberOfPml4EntriesNeeded + 1;
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    } else {
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      TotalPagesNum = NumberOfPml4EntriesNeeded + 1;
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    }
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    LongModeBuffer.PageTableAddress = (EFI_PHYSICAL_ADDRESS)(UINTN)AllocateReservedMemoryBelow4G (EFI_PAGES_TO_SIZE (TotalPagesNum));
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    ASSERT (LongModeBuffer.PageTableAddress != 0);
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    PcdSet64 (PcdIdentifyMappingPageTablePtr, LongModeBuffer.PageTableAddress); 
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  }
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  //
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  // Allocate stack
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  //
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  LongModeBuffer.StackSize        = PcdGet32 (PcdCapsulePeiLongModeStackSize);
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  LongModeBuffer.StackBaseAddress = (EFI_PHYSICAL_ADDRESS)(UINTN)AllocateReservedMemoryBelow4G (PcdGet32 (PcdCapsulePeiLongModeStackSize));
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  ASSERT (LongModeBuffer.StackBaseAddress != 0);  
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  Status = gRT->SetVariable (
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                  EFI_CAPSULE_LONG_MODE_BUFFER_NAME,
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                  &gEfiCapsuleVendorGuid,
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                  EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_BOOTSERVICE_ACCESS,
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                  sizeof (EFI_CAPSULE_LONG_MODE_BUFFER),
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                  &LongModeBuffer
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                  );
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  if (!EFI_ERROR (Status)) {
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      //
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      // Register callback function upon VariableLockProtocol
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      // to lock EFI_CAPSULE_LONG_MODE_BUFFER_NAME variable to avoid malicious code to update it.
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      //
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      EfiCreateProtocolNotifyEvent (
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        &gEdkiiVariableLockProtocolGuid,
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        TPL_CALLBACK,
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        VariableLockCapsuleLongModeBufferVariable,
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        NULL,
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        &Registration
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        );    
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  } else {
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      DEBUG ((EFI_D_ERROR, "FATAL ERROR: CapsuleLongModeBuffer cannot be saved: %r. Capsule in PEI may fail!\n", Status));
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      gBS->FreePages (LongModeBuffer.StackBaseAddress, EFI_SIZE_TO_PAGES (LongModeBuffer.StackSize));
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  }
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}
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/**
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  Create the variable to save the base address of page table and stack
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  for transferring into long mode in IA32 capsule PEI.
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**/
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VOID
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SaveLongModeContext (
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  VOID
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  )
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{
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  if ((FeaturePcdGet(PcdSupportUpdateCapsuleReset)) && (FeaturePcdGet (PcdDxeIplSwitchToLongMode))) {
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    //
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    // Allocate memory for Capsule IA32 PEIM, it will create page table to transfer to long mode to access capsule above 4GB.
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    //
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    PrepareContextForCapsulePei ();
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  }
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}
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