-- Add BootLoaderTolumSize support -- Extend FspApiCallingCheck with ApiParam for BootLoaderTolumSize -- Rename all Bootloader to BootLoader as official name -- Rename Ucode to Microcode -- Remove FspSelfCheck API, because it is merged into SecPlatformInit -- Add GetFspVpdDataPointer() in FspCommonLib.h -- Document FspSecPlatformLib.h -- Reorg FSP_PLAT_DATA data structure to let it match FSP spec. -- Move helper function in FspSecCore to reduce platform enabling effort -- Fix LibraryClasses declaration in DEC file. -- Enhance PatchFv to check if it is valid FSP bin. Contributed-under: TianoCore Contribution Agreement 1.0 Signed-off-by: "Yao, Jiewen" <Jiewen.Yao@intel.com> Reviewed-by: "Ma, Maurice" <maurice.ma@intel.com> Reviewed-by: "Rangarajan, Ravi P" <ravi.p.rangarajan@intel.com> Reviewed-by: "Mudusuru, Giri P" <giri.p.mudusuru@intel.com> git-svn-id: https://svn.code.sf.net/p/edk2/code/trunk/edk2@17196 6f19259b-4bc3-4df7-8a09-765794883524
		
			
				
	
	
		
			213 lines
		
	
	
		
			6.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			213 lines
		
	
	
		
			6.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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  Copyright (c) 2014 - 2015, 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 "SecMain.h"
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#include "SecFsp.h"
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EFI_PEI_TEMPORARY_RAM_SUPPORT_PPI gSecTemporaryRamSupportPpi = {
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  SecTemporaryRamSupport
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};
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EFI_PEI_PPI_DESCRIPTOR            mPeiSecPlatformInformationPpi[] = {
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  {
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    (EFI_PEI_PPI_DESCRIPTOR_PPI | EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST),
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    &gEfiTemporaryRamSupportPpiGuid,
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    &gSecTemporaryRamSupportPpi
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  }
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};
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//
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// These are IDT entries pointing to 08:FFFFFFE4h.
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//
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UINT64  mIdtEntryTemplate = 0xffff8e000008ffe4ULL;
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/**
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  Entry point to the C language phase of SEC. After the SEC assembly
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  code has initialized some temporary memory and set up the stack,
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  the control is transferred to this function.
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  @param[in] SizeOfRam          Size of the temporary memory available for use.
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  @param[in] TempRamBase        Base address of tempory ram
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  @param[in] BootFirmwareVolume Base address of the Boot Firmware Volume.
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  @param[in] PeiCore            PeiCore entry point.
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  @param[in] BootLoaderStack    BootLoader stack.
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  @param[in] ApiIdx             the index of API.
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  @return This function never returns.
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**/
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VOID
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EFIAPI
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SecStartup (
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  IN UINT32                   SizeOfRam,
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  IN UINT32                   TempRamBase,
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  IN VOID                    *BootFirmwareVolume,
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  IN PEI_CORE_ENTRY           PeiCore,
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  IN UINT32                   BootLoaderStack,
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  IN UINT32                   ApiIdx
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  )
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{
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  EFI_SEC_PEI_HAND_OFF        SecCoreData;
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  IA32_DESCRIPTOR             IdtDescriptor;
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  SEC_IDT_TABLE               IdtTableInStack;
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  UINT32                      Index;
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  FSP_GLOBAL_DATA             PeiFspData;
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  UINT64                      ExceptionHandler;
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  //
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  // Process all libraries constructor function linked to SecCore.
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  //
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  ProcessLibraryConstructorList ();
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  //
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  // Initialize floating point operating environment
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  // to be compliant with UEFI spec.
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  //
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  InitializeFloatingPointUnits ();
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  // |-------------------|---->
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  // |Idt Table          |
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  // |-------------------|
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  // |PeiService Pointer |    PeiStackSize
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  // |-------------------|
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  // |                   |
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  // |      Stack        |
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  // |-------------------|---->
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  // |                   |
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  // |                   |
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  // |      Heap         |    PeiTemporayRamSize
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  // |                   |
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  // |                   |
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  // |-------------------|---->  TempRamBase
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  IdtTableInStack.PeiService  = NULL;
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  ExceptionHandler = FspGetExceptionHandler(mIdtEntryTemplate);
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  for (Index = 0; Index < SEC_IDT_ENTRY_COUNT; Index ++) {
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    CopyMem ((VOID*)&IdtTableInStack.IdtTable[Index], (VOID*)&ExceptionHandler, sizeof (UINT64));
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  }
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  IdtDescriptor.Base  = (UINTN) &IdtTableInStack.IdtTable;
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  IdtDescriptor.Limit = (UINT16)(sizeof (IdtTableInStack.IdtTable) - 1);
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  AsmWriteIdtr (&IdtDescriptor);
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  //
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  // Iniitalize the global FSP data region
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  //
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  FspGlobalDataInit (&PeiFspData, BootLoaderStack, (UINT8)ApiIdx);
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  //
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  // Update the base address and length of Pei temporary memory
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  //
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  SecCoreData.DataSize               = sizeof (EFI_SEC_PEI_HAND_OFF);
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  SecCoreData.BootFirmwareVolumeBase = BootFirmwareVolume;
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  SecCoreData.BootFirmwareVolumeSize = (UINT32)((EFI_FIRMWARE_VOLUME_HEADER *)BootFirmwareVolume)->FvLength;
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  SecCoreData.TemporaryRamBase       = (VOID*)(UINTN) TempRamBase;
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  SecCoreData.TemporaryRamSize       = SizeOfRam;
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  SecCoreData.PeiTemporaryRamBase    = SecCoreData.TemporaryRamBase;
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  SecCoreData.PeiTemporaryRamSize    = SizeOfRam >> 1;
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  SecCoreData.StackBase              = (VOID*)(UINTN)(TempRamBase + SecCoreData.PeiTemporaryRamSize);
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  SecCoreData.StackSize              = SizeOfRam >> 1;
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  //
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  // Call PeiCore Entry
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  //  
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  PeiCore (&SecCoreData, mPeiSecPlatformInformationPpi);
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  //
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  // Should never be here
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  //
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  CpuDeadLoop ();
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}
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/**
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  This service of the TEMPORARY_RAM_SUPPORT_PPI that migrates temporary RAM into
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  permanent memory.
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  @param[in] PeiServices            Pointer to the PEI Services Table.
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  @param[in] TemporaryMemoryBase    Source Address in temporary memory from which the SEC or PEIM will copy the
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                                Temporary RAM contents.
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  @param[in] PermanentMemoryBase    Destination Address in permanent memory into which the SEC or PEIM will copy the
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                                Temporary RAM contents.
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  @param[in] CopySize               Amount of memory to migrate from temporary to permanent memory.
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  @retval EFI_SUCCESS           The data was successfully returned.
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  @retval EFI_INVALID_PARAMETER PermanentMemoryBase + CopySize > TemporaryMemoryBase when
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                                TemporaryMemoryBase > PermanentMemoryBase.
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**/
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EFI_STATUS
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EFIAPI
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SecTemporaryRamSupport (
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  IN CONST EFI_PEI_SERVICES   **PeiServices,
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  IN EFI_PHYSICAL_ADDRESS     TemporaryMemoryBase,
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  IN EFI_PHYSICAL_ADDRESS     PermanentMemoryBase,
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  IN UINTN                    CopySize
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  )
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{
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  IA32_DESCRIPTOR   IdtDescriptor;
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  VOID*             OldHeap;
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  VOID*             NewHeap;
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  VOID*             OldStack;
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  VOID*             NewStack;
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  OldHeap = (VOID*)(UINTN)TemporaryMemoryBase;
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  NewHeap = (VOID*)((UINTN)PermanentMemoryBase + CopySize / 2);
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  OldStack = (VOID*)((UINTN)TemporaryMemoryBase + CopySize / 2);
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  NewStack = (VOID*)(UINTN)PermanentMemoryBase;
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  //
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  // Migrate Heap
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  //
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  CopyMem (NewHeap, OldHeap, CopySize / 2);
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  //
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  // Migrate Stack
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  //
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  CopyMem (NewStack, OldStack, CopySize / 2);
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  //
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  // We need *not* fix the return address because currently,
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  // The PeiCore is executed in flash.
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  //
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  //
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  // Rebase IDT table in permanent memory
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  //
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  AsmReadIdtr (&IdtDescriptor);
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  IdtDescriptor.Base = IdtDescriptor.Base - (UINTN)OldStack + (UINTN)NewStack;
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  AsmWriteIdtr (&IdtDescriptor);
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  //
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  // Fixed the FSP data pointer
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  //
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  FspDataPointerFixUp ((UINTN)NewStack - (UINTN)OldStack);
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  //
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  // SecSwitchStack function must be invoked after the memory migration
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  // immediatly, also we need fixup the stack change caused by new call into
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  // permenent memory.
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  //
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  SecSwitchStack (
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    (UINT32) (UINTN) OldStack,
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    (UINT32) (UINTN) NewStack
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    );
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  return EFI_SUCCESS;
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}
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