Currently, we only attempt to walk the call stack and print a backtrace if the program counter refers to a location covered by a PE/COFF image. However, regardless of the value of PC, the frame pointer may still have a meaningful value, and so we can still produce the remainder of the backtrace. Contributed-under: TianoCore Contribution Agreement 1.0 Signed-off-by: Ard Biesheuvel <ard.biesheuvel@linaro.org> Reviewed-by: Leif Lindholm <leif.lindholm@linaro.org>
		
			
				
	
	
		
			274 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			274 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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  Default exception handler
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  Copyright (c) 2008 - 2010, Apple Inc. All rights reserved.<BR>
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  Copyright (c) 2011 - 2014, ARM Ltd. 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 <Library/UefiLib.h>
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#include <Library/BaseLib.h>
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#include <Library/DebugLib.h>
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#include <Library/PeCoffGetEntryPointLib.h>
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#include <Library/PrintLib.h>
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#include <Library/ArmDisassemblerLib.h>
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#include <Library/SerialPortLib.h>
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#include <Guid/DebugImageInfoTable.h>
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#include <Protocol/DebugSupport.h>
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#include <Protocol/LoadedImage.h>
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STATIC CHAR8 *gExceptionTypeString[] = {
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  "Synchronous",
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  "IRQ",
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  "FIQ",
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  "SError"
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};
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STATIC BOOLEAN mRecursiveException;
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CHAR8 *
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GetImageName (
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  IN  UINTN  FaultAddress,
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  OUT UINTN  *ImageBase,
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  OUT UINTN  *PeCoffSizeOfHeaders
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  );
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STATIC
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VOID
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DescribeInstructionOrDataAbort (
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  IN CHAR8 *AbortType,
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  IN UINTN Iss
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  )
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{
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  CHAR8 *AbortCause;
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  switch (Iss & 0x3f) {
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    case 0x0: AbortCause = "Address size fault, zeroth level of translation or translation table base register";  break;
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    case 0x1: AbortCause = "Address size fault, first level";  break;
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    case 0x2: AbortCause = "Address size fault, second level";  break;
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    case 0x3: AbortCause = "Address size fault, third level";  break;
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    case 0x4: AbortCause = "Translation fault, zeroth level";  break;
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    case 0x5: AbortCause = "Translation fault, first level";  break;
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    case 0x6: AbortCause = "Translation fault, second level";  break;
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    case 0x7: AbortCause = "Translation fault, third level";  break;
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    case 0x9: AbortCause = "Access flag fault, first level";  break;
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    case 0xa: AbortCause = "Access flag fault, second level";  break;
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    case 0xb: AbortCause = "Access flag fault, third level";  break;
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    case 0xd: AbortCause = "Permission fault, first level";  break;
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    case 0xe: AbortCause = "Permission fault, second level";  break;
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    case 0xf: AbortCause = "Permission fault, third level";  break;
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    case 0x10: AbortCause = "Synchronous external abort";  break;
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    case 0x18: AbortCause = "Synchronous parity error on memory access";  break;
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    case 0x11: AbortCause = "Asynchronous external abort";  break;
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    case 0x19: AbortCause = "Asynchronous parity error on memory access";  break;
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    case 0x14: AbortCause = "Synchronous external abort on translation table walk, zeroth level";  break;
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    case 0x15: AbortCause = "Synchronous external abort on translation table walk, first level";  break;
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    case 0x16: AbortCause = "Synchronous external abort on translation table walk, second level";  break;
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    case 0x17: AbortCause = "Synchronous external abort on translation table walk, third level";  break;
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    case 0x1c: AbortCause = "Synchronous parity error on memory access on translation table walk, zeroth level";  break;
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    case 0x1d: AbortCause = "Synchronous parity error on memory access on translation table walk, first level";  break;
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    case 0x1e: AbortCause = "Synchronous parity error on memory access on translation table walk, second level";  break;
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    case 0x1f: AbortCause = "Synchronous parity error on memory access on translation table walk, third level";  break;
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    case 0x21: AbortCause = "Alignment fault";  break;
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    case 0x22: AbortCause = "Debug event";  break;
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    case 0x30: AbortCause = "TLB conflict abort";  break;
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    case 0x33:
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    case 0x34: AbortCause = "IMPLEMENTATION DEFINED";  break;
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    case 0x35:
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    case 0x36: AbortCause = "Domain fault"; break;
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    default: AbortCause = ""; break;
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  }
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  DEBUG ((EFI_D_ERROR, "\n%a: %a\n", AbortType, AbortCause));
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}
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STATIC
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VOID
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DescribeExceptionSyndrome (
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  IN UINT32 Esr
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  )
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{
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  CHAR8 *Message;
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  UINTN Ec;
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  UINTN Iss;
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  Ec = Esr >> 26;
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  Iss = Esr & 0x00ffffff;
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  switch (Ec) {
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    case 0x15: Message = "SVC executed in AArch64"; break;
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    case 0x20:
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    case 0x21: DescribeInstructionOrDataAbort ("Instruction abort", Iss); return;
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    case 0x22: Message = "PC alignment fault"; break;
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    case 0x23: Message = "SP alignment fault"; break;
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    case 0x24:
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    case 0x25: DescribeInstructionOrDataAbort ("Data abort", Iss); return;
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    default: return;
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  }
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  DEBUG ((EFI_D_ERROR, "\n %a \n", Message));
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}
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#ifndef MDEPKG_NDEBUG
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STATIC
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CONST CHAR8 *
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BaseName (
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  IN  CONST CHAR8 *FullName
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  )
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{
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  CONST CHAR8 *Str;
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  Str = FullName + AsciiStrLen (FullName);
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  while (--Str > FullName) {
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    if (*Str == '/' || *Str == '\\') {
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      return Str + 1;
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    }
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  }
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  return Str;
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}
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#endif
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/**
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  This is the default action to take on an unexpected exception
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  Since this is exception context don't do anything crazy like try to allcoate memory.
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  @param  ExceptionType    Type of the exception
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  @param  SystemContext    Register state at the time of the Exception
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**/
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VOID
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DefaultExceptionHandler (
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  IN     EFI_EXCEPTION_TYPE           ExceptionType,
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  IN OUT EFI_SYSTEM_CONTEXT           SystemContext
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  )
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{
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  CHAR8  Buffer[100];
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  UINTN  CharCount;
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  INT32  Offset;
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  if (mRecursiveException) {
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    CharCount = AsciiSPrint (Buffer, sizeof (Buffer),"\nRecursive exception occurred while dumping the CPU state\n");
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    SerialPortWrite ((UINT8 *) Buffer, CharCount);
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    CpuDeadLoop ();
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  }
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  mRecursiveException = TRUE;
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  CharCount = AsciiSPrint (Buffer,sizeof (Buffer),"\n\n%a Exception at 0x%016lx\n", gExceptionTypeString[ExceptionType], SystemContext.SystemContextAArch64->ELR);
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  SerialPortWrite ((UINT8 *) Buffer, CharCount);
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  DEBUG_CODE_BEGIN ();
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    CHAR8  *Pdb, *PrevPdb;
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    UINTN  ImageBase;
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    UINTN  PeCoffSizeOfHeader;
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    UINT64 *Fp;
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    UINT64 RootFp[2];
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    UINTN  Idx;
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    PrevPdb = Pdb = GetImageName (SystemContext.SystemContextAArch64->ELR, &ImageBase, &PeCoffSizeOfHeader);
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    if (Pdb != NULL) {
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      DEBUG ((EFI_D_ERROR, "PC 0x%012lx (0x%012lx+0x%08x) [ 0] %a\n",
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        SystemContext.SystemContextAArch64->ELR, ImageBase,
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        SystemContext.SystemContextAArch64->ELR - ImageBase, BaseName (Pdb)));
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    } else {
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      DEBUG ((EFI_D_ERROR, "PC 0x%012lx\n", SystemContext.SystemContextAArch64->ELR));
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    }
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    if ((UINT64 *)SystemContext.SystemContextAArch64->FP != 0) {
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      Idx = 0;
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      RootFp[0] = ((UINT64 *)SystemContext.SystemContextAArch64->FP)[0];
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      RootFp[1] = ((UINT64 *)SystemContext.SystemContextAArch64->FP)[1];
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      if (RootFp[1] != SystemContext.SystemContextAArch64->LR) {
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        RootFp[0] = SystemContext.SystemContextAArch64->FP;
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        RootFp[1] = SystemContext.SystemContextAArch64->LR;
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      }
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      for (Fp = RootFp; Fp[0] != 0; Fp = (UINT64 *)Fp[0]) {
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        Pdb = GetImageName (Fp[1], &ImageBase, &PeCoffSizeOfHeader);
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        if (Pdb != NULL) {
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          if (Pdb != PrevPdb) {
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            Idx++;
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            PrevPdb = Pdb;
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          }
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          DEBUG ((EFI_D_ERROR, "PC 0x%012lx (0x%012lx+0x%08x) [% 2d] %a\n",
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            Fp[1], ImageBase, Fp[1] - ImageBase, Idx, BaseName (Pdb)));
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        } else {
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          DEBUG ((EFI_D_ERROR, "PC 0x%012lx\n", Fp[1]));
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        }
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      }
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      PrevPdb = Pdb = GetImageName (SystemContext.SystemContextAArch64->ELR, &ImageBase, &PeCoffSizeOfHeader);
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      if (Pdb != NULL) {
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        DEBUG ((EFI_D_ERROR, "\n[ 0] %a\n", Pdb));
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      }
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      Idx = 0;
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      for (Fp = RootFp; Fp[0] != 0; Fp = (UINT64 *)Fp[0]) {
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        Pdb = GetImageName (Fp[1], &ImageBase, &PeCoffSizeOfHeader);
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        if (Pdb != NULL && Pdb != PrevPdb) {
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          DEBUG ((EFI_D_ERROR, "[% 2d] %a\n", ++Idx, Pdb));
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          PrevPdb = Pdb;
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        }
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      }
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    }
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  DEBUG_CODE_END ();
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  DEBUG ((EFI_D_ERROR, "\n  X0 0x%016lx   X1 0x%016lx   X2 0x%016lx   X3 0x%016lx\n", SystemContext.SystemContextAArch64->X0, SystemContext.SystemContextAArch64->X1, SystemContext.SystemContextAArch64->X2, SystemContext.SystemContextAArch64->X3));
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  DEBUG ((EFI_D_ERROR, "  X4 0x%016lx   X5 0x%016lx   X6 0x%016lx   X7 0x%016lx\n", SystemContext.SystemContextAArch64->X4, SystemContext.SystemContextAArch64->X5, SystemContext.SystemContextAArch64->X6, SystemContext.SystemContextAArch64->X7));
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  DEBUG ((EFI_D_ERROR, "  X8 0x%016lx   X9 0x%016lx  X10 0x%016lx  X11 0x%016lx\n", SystemContext.SystemContextAArch64->X8, SystemContext.SystemContextAArch64->X9, SystemContext.SystemContextAArch64->X10, SystemContext.SystemContextAArch64->X11));
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  DEBUG ((EFI_D_ERROR, " X12 0x%016lx  X13 0x%016lx  X14 0x%016lx  X15 0x%016lx\n", SystemContext.SystemContextAArch64->X12, SystemContext.SystemContextAArch64->X13, SystemContext.SystemContextAArch64->X14, SystemContext.SystemContextAArch64->X15));
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  DEBUG ((EFI_D_ERROR, " X16 0x%016lx  X17 0x%016lx  X18 0x%016lx  X19 0x%016lx\n", SystemContext.SystemContextAArch64->X16, SystemContext.SystemContextAArch64->X17, SystemContext.SystemContextAArch64->X18, SystemContext.SystemContextAArch64->X19));
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  DEBUG ((EFI_D_ERROR, " X20 0x%016lx  X21 0x%016lx  X22 0x%016lx  X23 0x%016lx\n", SystemContext.SystemContextAArch64->X20, SystemContext.SystemContextAArch64->X21, SystemContext.SystemContextAArch64->X22, SystemContext.SystemContextAArch64->X23));
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  DEBUG ((EFI_D_ERROR, " X24 0x%016lx  X25 0x%016lx  X26 0x%016lx  X27 0x%016lx\n", SystemContext.SystemContextAArch64->X24, SystemContext.SystemContextAArch64->X25, SystemContext.SystemContextAArch64->X26, SystemContext.SystemContextAArch64->X27));
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  DEBUG ((EFI_D_ERROR, " X28 0x%016lx   FP 0x%016lx   LR 0x%016lx  \n", SystemContext.SystemContextAArch64->X28, SystemContext.SystemContextAArch64->FP, SystemContext.SystemContextAArch64->LR));
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  /* We save these as 128bit numbers, but have to print them as two 64bit numbers,
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     so swap the 64bit words to correctly represent a 128bit number.  */
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  DEBUG ((EFI_D_ERROR, "\n  V0 0x%016lx %016lx   V1 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V0[1], SystemContext.SystemContextAArch64->V0[0], SystemContext.SystemContextAArch64->V1[1], SystemContext.SystemContextAArch64->V1[0]));
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  DEBUG ((EFI_D_ERROR, "  V2 0x%016lx %016lx   V3 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V2[1], SystemContext.SystemContextAArch64->V2[0], SystemContext.SystemContextAArch64->V3[1], SystemContext.SystemContextAArch64->V3[0]));
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  DEBUG ((EFI_D_ERROR, "  V4 0x%016lx %016lx   V5 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V4[1], SystemContext.SystemContextAArch64->V4[0], SystemContext.SystemContextAArch64->V5[1], SystemContext.SystemContextAArch64->V5[0]));
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  DEBUG ((EFI_D_ERROR, "  V6 0x%016lx %016lx   V7 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V6[1], SystemContext.SystemContextAArch64->V6[0], SystemContext.SystemContextAArch64->V7[1], SystemContext.SystemContextAArch64->V7[0]));
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  DEBUG ((EFI_D_ERROR, "  V8 0x%016lx %016lx   V9 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V8[1], SystemContext.SystemContextAArch64->V8[0], SystemContext.SystemContextAArch64->V9[1], SystemContext.SystemContextAArch64->V9[0]));
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  DEBUG ((EFI_D_ERROR, " V10 0x%016lx %016lx  V11 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V10[1], SystemContext.SystemContextAArch64->V10[0], SystemContext.SystemContextAArch64->V11[1], SystemContext.SystemContextAArch64->V11[0]));
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  DEBUG ((EFI_D_ERROR, " V12 0x%016lx %016lx  V13 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V12[1], SystemContext.SystemContextAArch64->V12[0], SystemContext.SystemContextAArch64->V13[1], SystemContext.SystemContextAArch64->V13[0]));
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  DEBUG ((EFI_D_ERROR, " V14 0x%016lx %016lx  V15 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V14[1], SystemContext.SystemContextAArch64->V14[0], SystemContext.SystemContextAArch64->V15[1], SystemContext.SystemContextAArch64->V15[0]));
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  DEBUG ((EFI_D_ERROR, " V16 0x%016lx %016lx  V17 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V16[1], SystemContext.SystemContextAArch64->V16[0], SystemContext.SystemContextAArch64->V17[1], SystemContext.SystemContextAArch64->V17[0]));
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  DEBUG ((EFI_D_ERROR, " V18 0x%016lx %016lx  V19 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V18[1], SystemContext.SystemContextAArch64->V18[0], SystemContext.SystemContextAArch64->V19[1], SystemContext.SystemContextAArch64->V19[0]));
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  DEBUG ((EFI_D_ERROR, " V20 0x%016lx %016lx  V21 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V20[1], SystemContext.SystemContextAArch64->V20[0], SystemContext.SystemContextAArch64->V21[1], SystemContext.SystemContextAArch64->V21[0]));
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  DEBUG ((EFI_D_ERROR, " V22 0x%016lx %016lx  V23 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V22[1], SystemContext.SystemContextAArch64->V22[0], SystemContext.SystemContextAArch64->V23[1], SystemContext.SystemContextAArch64->V23[0]));
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  DEBUG ((EFI_D_ERROR, " V24 0x%016lx %016lx  V25 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V24[1], SystemContext.SystemContextAArch64->V24[0], SystemContext.SystemContextAArch64->V25[1], SystemContext.SystemContextAArch64->V25[0]));
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  DEBUG ((EFI_D_ERROR, " V26 0x%016lx %016lx  V27 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V26[1], SystemContext.SystemContextAArch64->V26[0], SystemContext.SystemContextAArch64->V27[1], SystemContext.SystemContextAArch64->V27[0]));
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  DEBUG ((EFI_D_ERROR, " V28 0x%016lx %016lx  V29 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V28[1], SystemContext.SystemContextAArch64->V28[0], SystemContext.SystemContextAArch64->V29[1], SystemContext.SystemContextAArch64->V29[0]));
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  DEBUG ((EFI_D_ERROR, " V30 0x%016lx %016lx  V31 0x%016lx %016lx\n", SystemContext.SystemContextAArch64->V30[1], SystemContext.SystemContextAArch64->V30[0], SystemContext.SystemContextAArch64->V31[1], SystemContext.SystemContextAArch64->V31[0]));
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  DEBUG ((EFI_D_ERROR, "\n  SP 0x%016lx  ELR 0x%016lx  SPSR 0x%08lx  FPSR 0x%08lx\n ESR 0x%08lx          FAR 0x%016lx\n", SystemContext.SystemContextAArch64->SP, SystemContext.SystemContextAArch64->ELR, SystemContext.SystemContextAArch64->SPSR, SystemContext.SystemContextAArch64->FPSR, SystemContext.SystemContextAArch64->ESR, SystemContext.SystemContextAArch64->FAR));
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  DEBUG ((EFI_D_ERROR, "\n ESR : EC 0x%02x  IL 0x%x  ISS 0x%08x\n", (SystemContext.SystemContextAArch64->ESR & 0xFC000000) >> 26, (SystemContext.SystemContextAArch64->ESR >> 25) & 0x1, SystemContext.SystemContextAArch64->ESR & 0x1FFFFFF ));
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  DescribeExceptionSyndrome (SystemContext.SystemContextAArch64->ESR);
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  DEBUG ((EFI_D_ERROR, "\nStack dump:\n"));
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  for (Offset = -256; Offset < 256; Offset += 32) {
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    DEBUG  ((EFI_D_ERROR, "%c %013lx: %016lx %016lx %016lx %016lx\n",
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      Offset == 0 ? '>' : ' ',
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      SystemContext.SystemContextAArch64->SP + Offset,
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      *(UINT64 *)(SystemContext.SystemContextAArch64->SP + Offset),
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      *(UINT64 *)(SystemContext.SystemContextAArch64->SP + Offset + 8),
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      *(UINT64 *)(SystemContext.SystemContextAArch64->SP + Offset + 16),
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						|
      *(UINT64 *)(SystemContext.SystemContextAArch64->SP + Offset + 24)));
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  }
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  ASSERT (FALSE);
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  CpuDeadLoop ();
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}
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