BZ: https://bugzilla.tianocore.org/show_bug.cgi?id=4123 APIs which are defined in CcExitLib.h are added with the CcExit prefix. This is to make the APIs' name more meaningful. This change impacts OvmfPkg/UefiCpuPkg. Cc: Eric Dong <eric.dong@intel.com> Cc: Ray Ni <ray.ni@intel.com> Cc: Brijesh Singh <brijesh.singh@amd.com> Cc: Erdem Aktas <erdemaktas@google.com> Cc: Gerd Hoffmann <kraxel@redhat.com> Cc: James Bottomley <jejb@linux.ibm.com> Cc: Jiewen Yao <jiewen.yao@intel.com> Cc: Tom Lendacky <thomas.lendacky@amd.com> Reviewed-by: Jiewen Yao <jiewen.yao@intel.com> Reviewed-by: Ray Ni <ray.ni@intel.com> Signed-off-by: Min Xu <min.m.xu@intel.com>
		
			
				
	
	
		
			338 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			338 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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  CPU Exception Library provides PEI/DXE/SMM CPU common exception handler.
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Copyright (c) 2012 - 2022, Intel Corporation. All rights reserved.<BR>
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SPDX-License-Identifier: BSD-2-Clause-Patent
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**/
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#include <Library/DebugLib.h>
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#include <Library/CcExitLib.h>
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#include "CpuExceptionCommon.h"
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/**
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  Internal worker function for common exception handler.
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  @param ExceptionType         Exception type.
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  @param SystemContext         Pointer to EFI_SYSTEM_CONTEXT.
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  @param ExceptionHandlerData  Pointer to exception handler data.
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**/
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VOID
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CommonExceptionHandlerWorker (
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  IN EFI_EXCEPTION_TYPE      ExceptionType,
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  IN EFI_SYSTEM_CONTEXT      SystemContext,
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  IN EXCEPTION_HANDLER_DATA  *ExceptionHandlerData
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  )
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{
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  EFI_STATUS                 Status;
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  EXCEPTION_HANDLER_CONTEXT  *ExceptionHandlerContext;
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  RESERVED_VECTORS_DATA      *ReservedVectors;
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  EFI_CPU_INTERRUPT_HANDLER  *ExternalInterruptHandler;
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  switch (ExceptionType) {
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    case VC_EXCEPTION:
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      //
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      // #VC needs to be handled immediately upon enabling exception handling
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      // and therefore can't use the RegisterCpuInterruptHandler() interface.
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      //
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      // Handle the #VC:
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      //   On EFI_SUCCESS - Exception has been handled, return
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      //   On other       - ExceptionType contains (possibly new) exception
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      //                    value
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      //
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      Status = CcExitHandleVc (&ExceptionType, SystemContext);
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      if (!EFI_ERROR (Status)) {
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        return;
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      }
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      break;
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    case VE_EXCEPTION:
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      //
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      // #VE needs to be handled immediately upon enabling exception handling
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      // and therefore can't use the RegisterCpuInterruptHandler() interface.
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      //
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      // Handle the #VE:
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      //   On EFI_SUCCESS - Exception has been handled, return
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      //   On other       - ExceptionType contains (possibly new) exception
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      //                    value
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      //
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      Status = CcExitHandleVe (&ExceptionType, SystemContext);
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      if (!EFI_ERROR (Status)) {
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        return;
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      }
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      break;
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    default:
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      break;
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  }
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  ExceptionHandlerContext  = (EXCEPTION_HANDLER_CONTEXT *)(UINTN)(SystemContext.SystemContextIa32);
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  ReservedVectors          = ExceptionHandlerData->ReservedVectors;
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  ExternalInterruptHandler = ExceptionHandlerData->ExternalInterruptHandler;
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  switch (ReservedVectors[ExceptionType].Attribute) {
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    case EFI_VECTOR_HANDOFF_HOOK_BEFORE:
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      //
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      // The new exception handler registered by RegisterCpuInterruptHandler() is executed BEFORE original handler.
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      // Save the original handler to stack so the assembly code can jump to it instead of returning from handler.
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      //
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      ExceptionHandlerContext->ExceptionDataFlag = (mErrorCodeFlag & (1 << ExceptionType)) ? TRUE : FALSE;
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      ExceptionHandlerContext->OldIdtHandler     = ReservedVectors[ExceptionType].ExceptonHandler;
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      break;
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    case EFI_VECTOR_HANDOFF_HOOK_AFTER:
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      while (TRUE) {
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        //
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        // If spin-lock can be acquired, it's the first time entering here.
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        //
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        if (AcquireSpinLockOrFail (&ReservedVectors[ExceptionType].SpinLock)) {
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          //
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          // The new exception handler registered by RegisterCpuInterruptHandler() is executed AFTER original handler.
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          // Save the original handler to stack but skip running the new handler so the original handler is executed
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          // firstly.
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          //
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          ReservedVectors[ExceptionType].ApicId = GetApicId ();
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          ArchSaveExceptionContext (ExceptionType, SystemContext, ExceptionHandlerData);
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          ExceptionHandlerContext->ExceptionDataFlag = (mErrorCodeFlag & (1 << ExceptionType)) ? TRUE : FALSE;
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          ExceptionHandlerContext->OldIdtHandler     = ReservedVectors[ExceptionType].ExceptonHandler;
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          return;
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        }
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        //
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        // If spin-lock cannot be acquired, it's the second time entering here.
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        // 'break' instead of 'return' is used so the new exception handler can be executed.
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        //
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        if (ReservedVectors[ExceptionType].ApicId == GetApicId ()) {
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          //
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          // Old IDT handler has been executed, then restore CPU exception content to
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          // run new exception handler.
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          //
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          ArchRestoreExceptionContext (ExceptionType, SystemContext, ExceptionHandlerData);
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          //
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          // Release spin lock for ApicId
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          //
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          ReleaseSpinLock (&ReservedVectors[ExceptionType].SpinLock);
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          break;
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        }
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        CpuPause ();
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      }
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      break;
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    case 0xffffffff:
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      break;
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    default:
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      //
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      // It should never reach here
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      //
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      CpuDeadLoop ();
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      break;
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  }
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  if ((ExternalInterruptHandler != NULL) &&
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      (ExternalInterruptHandler[ExceptionType] != NULL))
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  {
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    (ExternalInterruptHandler[ExceptionType])(ExceptionType, SystemContext);
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  } else if (ExceptionType < CPU_EXCEPTION_NUM) {
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    //
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    // Get Spinlock to display CPU information
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    //
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    while (!AcquireSpinLockOrFail (&ExceptionHandlerData->DisplayMessageSpinLock)) {
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      CpuPause ();
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    }
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    //
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    // Initialize the serial port before dumping.
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    //
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    SerialPortInitialize ();
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    //
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    // Display ExceptionType, CPU information and Image information
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    //
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    DumpImageAndCpuContent (ExceptionType, SystemContext);
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    //
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    // Release Spinlock of output message
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    //
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    ReleaseSpinLock (&ExceptionHandlerData->DisplayMessageSpinLock);
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    //
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    // Enter a dead loop if needn't to execute old IDT handler further
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    //
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    if (ReservedVectors[ExceptionType].Attribute != EFI_VECTOR_HANDOFF_HOOK_BEFORE) {
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      CpuDeadLoop ();
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    }
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  }
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}
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/**
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  Internal worker function to update IDT entries accordling to vector attributes.
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  @param[in] IdtTable              Pointer to IDT table.
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  @param[in] TemplateMap           Pointer to a buffer where the address map is
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                                   returned.
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  @param[in] ExceptionHandlerData  Pointer to exception handler data.
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**/
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VOID
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UpdateIdtTable (
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  IN IA32_IDT_GATE_DESCRIPTOR        *IdtTable,
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  IN EXCEPTION_HANDLER_TEMPLATE_MAP  *TemplateMap,
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  IN EXCEPTION_HANDLER_DATA          *ExceptionHandlerData
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  )
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{
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  UINT16                 CodeSegment;
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  UINTN                  Index;
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  UINTN                  InterruptHandler;
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  RESERVED_VECTORS_DATA  *ReservedVectors;
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  ReservedVectors = ExceptionHandlerData->ReservedVectors;
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  //
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  // Use current CS as the segment selector of interrupt gate in IDT
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  //
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  CodeSegment = AsmReadCs ();
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  for (Index = 0; Index < ExceptionHandlerData->IdtEntryCount; Index++) {
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    IdtTable[Index].Bits.Selector = CodeSegment;
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    //
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    // Check reserved vectors attributes
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    //
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    switch (ReservedVectors[Index].Attribute) {
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      case EFI_VECTOR_HANDOFF_DO_NOT_HOOK:
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        //
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        // Keep original IDT entry
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        //
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        continue;
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      case EFI_VECTOR_HANDOFF_HOOK_AFTER:
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        InitializeSpinLock (&ReservedVectors[Index].SpinLock);
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        CopyMem (
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          (VOID *)ReservedVectors[Index].HookAfterStubHeaderCode,
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          (VOID *)TemplateMap->HookAfterStubHeaderStart,
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          TemplateMap->ExceptionStubHeaderSize
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          );
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        AsmVectorNumFixup (
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          (VOID *)ReservedVectors[Index].HookAfterStubHeaderCode,
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          (UINT8)Index,
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          (VOID *)TemplateMap->HookAfterStubHeaderStart
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          );
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      //
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      // Go on the following code
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      //
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      case EFI_VECTOR_HANDOFF_HOOK_BEFORE:
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        //
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        // Save original IDT handler address
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        //
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        ReservedVectors[Index].ExceptonHandler = ArchGetIdtHandler (&IdtTable[Index]);
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      //
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      // Go on the following code
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      //
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      default:
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        //
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        // Update new IDT entry
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        //
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        InterruptHandler = TemplateMap->ExceptionStart + Index * TemplateMap->ExceptionStubHeaderSize;
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        ArchUpdateIdtEntry (&IdtTable[Index], InterruptHandler);
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        break;
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    }
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  }
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}
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/**
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  Internal worker function to initialize exception handler.
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  @param[in]      VectorInfo            Pointer to reserved vector list.
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  @param[in, out] ExceptionHandlerData  Pointer to exception handler data.
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  @retval EFI_SUCCESS           CPU Exception Entries have been successfully initialized
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                                with default exception handlers.
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  @retval EFI_INVALID_PARAMETER VectorInfo includes the invalid content if VectorInfo is not NULL.
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  @retval EFI_UNSUPPORTED       This function is not supported.
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**/
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EFI_STATUS
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InitializeCpuExceptionHandlersWorker (
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  IN EFI_VECTOR_HANDOFF_INFO     *VectorInfo OPTIONAL,
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  IN OUT EXCEPTION_HANDLER_DATA  *ExceptionHandlerData
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  )
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{
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  EFI_STATUS                      Status;
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  IA32_DESCRIPTOR                 IdtDescriptor;
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  UINTN                           IdtEntryCount;
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  EXCEPTION_HANDLER_TEMPLATE_MAP  TemplateMap;
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  IA32_IDT_GATE_DESCRIPTOR        *IdtTable;
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  RESERVED_VECTORS_DATA           *ReservedVectors;
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  ReservedVectors = ExceptionHandlerData->ReservedVectors;
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  SetMem ((VOID *)ReservedVectors, sizeof (RESERVED_VECTORS_DATA) * ExceptionHandlerData->IdtEntryCount, 0xff);
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  if (VectorInfo != NULL) {
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    Status = ReadAndVerifyVectorInfo (VectorInfo, ReservedVectors, ExceptionHandlerData->IdtEntryCount);
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    if (EFI_ERROR (Status)) {
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      return EFI_INVALID_PARAMETER;
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    }
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  }
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  //
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  // Setup the exception handlers according to IDT size, but no more than
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  //   ExceptionHandlerData->IdtEntryCount (32 in PEI and SMM, 256 in DXE) handlers.
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  //
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  AsmReadIdtr (&IdtDescriptor);
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  IdtEntryCount                       = (IdtDescriptor.Limit + 1) / sizeof (IA32_IDT_GATE_DESCRIPTOR);
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  ExceptionHandlerData->IdtEntryCount = MIN (IdtEntryCount, ExceptionHandlerData->IdtEntryCount);
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  IdtTable = (IA32_IDT_GATE_DESCRIPTOR *)IdtDescriptor.Base;
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  AsmGetTemplateAddressMap (&TemplateMap);
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  ASSERT (TemplateMap.ExceptionStubHeaderSize <= HOOKAFTER_STUB_SIZE);
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  UpdateIdtTable (IdtTable, &TemplateMap, ExceptionHandlerData);
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  return EFI_SUCCESS;
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}
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/**
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  Registers a function to be called from the processor interrupt handler.
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  @param[in]  InterruptType        Defines which interrupt or exception to hook.
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  @param[in]  InterruptHandler     A pointer to a function of type EFI_CPU_INTERRUPT_HANDLER that is called
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                                   when a processor interrupt occurs. If this parameter is NULL, then the handler
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                                   will be uninstalled
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  @param[in] ExceptionHandlerData  Pointer to exception handler data.
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  @retval EFI_SUCCESS           The handler for the processor interrupt was successfully installed or uninstalled.
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  @retval EFI_ALREADY_STARTED   InterruptHandler is not NULL, and a handler for InterruptType was
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                                previously installed.
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  @retval EFI_INVALID_PARAMETER InterruptHandler is NULL, and a handler for InterruptType was not
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                                previously installed.
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  @retval EFI_UNSUPPORTED       The interrupt specified by InterruptType is not supported,
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                                or this function is not supported.
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**/
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EFI_STATUS
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RegisterCpuInterruptHandlerWorker (
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  IN EFI_EXCEPTION_TYPE         InterruptType,
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  IN EFI_CPU_INTERRUPT_HANDLER  InterruptHandler,
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  IN EXCEPTION_HANDLER_DATA     *ExceptionHandlerData
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  )
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{
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  UINTN                      EnabledInterruptNum;
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  RESERVED_VECTORS_DATA      *ReservedVectors;
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  EFI_CPU_INTERRUPT_HANDLER  *ExternalInterruptHandler;
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  EnabledInterruptNum      = ExceptionHandlerData->IdtEntryCount;
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  ReservedVectors          = ExceptionHandlerData->ReservedVectors;
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  ExternalInterruptHandler = ExceptionHandlerData->ExternalInterruptHandler;
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  if ((InterruptType < 0) || (InterruptType >= (EFI_EXCEPTION_TYPE)EnabledInterruptNum) ||
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      (ReservedVectors[InterruptType].Attribute == EFI_VECTOR_HANDOFF_DO_NOT_HOOK))
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  {
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    return EFI_UNSUPPORTED;
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  }
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  if ((InterruptHandler == NULL) && (ExternalInterruptHandler[InterruptType] == NULL)) {
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    return EFI_INVALID_PARAMETER;
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  }
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  if ((InterruptHandler != NULL) && (ExternalInterruptHandler[InterruptType] != NULL)) {
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    return EFI_ALREADY_STARTED;
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  }
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  ExternalInterruptHandler[InterruptType] = InterruptHandler;
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  return EFI_SUCCESS;
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}
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