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			511 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			511 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /*++
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| 
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| Copyright (c) 2004, Intel Corporation                                                         
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| All rights reserved. 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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|                                                                                           
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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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| Module Name:
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| 
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|     fwimage.c
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| 
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| Abstract:
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| 
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|     Converts a pe32+ image to an FW image type
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| 
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| --*/
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| 
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| #include "WinNtInclude.h"
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| 
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| #ifndef __GNUC__
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| #include <windows.h>
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| #endif
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| #include <stdio.h>
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| #include <stdlib.h>
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| #include <string.h>
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| #include <time.h>
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| 
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| #include <Common/UefiBaseTypes.h>
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| #include <Common/EfiImage.h>
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| 
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| #include "CommonLib.h"
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| #include "EfiUtilityMsgs.c"
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| 
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| #define UTILITY_NAME  "FwImage"
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| 
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| #ifdef __GNUC__
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| typedef unsigned long ULONG;
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| typedef unsigned char UCHAR;
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| typedef unsigned char *PUCHAR;
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| typedef unsigned short USHORT;
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| #endif
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| 
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| VOID
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| Usage (
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|   VOID
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|   )
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| {
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|   printf ("Usage: " UTILITY_NAME "  {-t time-date} [BASE|SEC|PEI_CORE|PEIM|DXE_CORE|DXE_DRIVER|DXE_RUNTIME_DRIVER|DXE_SAL_DRIVER|DXE_SMM_DRIVER|TOOL|UEFI_DRIVER|UEFI_APPLICATION|USER_DEFINED] peimage [outimage]");
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| }
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| 
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| static
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| STATUS
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| FCopyFile (
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|   FILE    *in,
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|   FILE    *out
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|   )
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| {
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|   ULONG filesize;
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|   ULONG offset;
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|   ULONG length;
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|   UCHAR Buffer[8 * 1024];
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| 
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|   fseek (in, 0, SEEK_END);
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|   filesize = ftell (in);
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| 
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|   fseek (in, 0, SEEK_SET);
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|   fseek (out, 0, SEEK_SET);
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| 
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|   offset = 0;
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|   while (offset < filesize) {
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|     length = sizeof (Buffer);
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|     if (filesize - offset < length) {
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|       length = filesize - offset;
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|     }
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| 
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|     fread (Buffer, length, 1, in);
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|     fwrite (Buffer, length, 1, out);
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|     offset += length;
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|   }
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| 
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|   if ((ULONG) ftell (out) != filesize) {
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|     Error (NULL, 0, 0, "write error", NULL);
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|     return STATUS_ERROR;
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|   }
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| 
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|   return STATUS_SUCCESS;
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| }
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| 
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| static
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| STATUS
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| FReadFile (
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|   FILE    *in,
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|   VOID    **Buffer,
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|   UINTN   *Length
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|   )
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| {
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|   fseek (in, 0, SEEK_END);
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|   *Length = ftell (in);
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|   *Buffer = malloc (*Length);
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|   fseek (in, 0, SEEK_SET);
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|   fread (*Buffer, *Length, 1, in);
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|   return STATUS_SUCCESS;
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| }
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| 
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| static
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| STATUS
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| FWriteFile (
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|   FILE    *out,
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|   VOID    *Buffer,
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|   UINTN   Length
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|   )
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| {
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|   fseek (out, 0, SEEK_SET);
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|   fwrite (Buffer, Length, 1, out);
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|   if ((ULONG) ftell (out) != Length) {
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|     Error (NULL, 0, 0, "write error", NULL);
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|     return STATUS_ERROR;
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|   }
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|   free (Buffer);
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|   return STATUS_SUCCESS;
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| }
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| 
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| int
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| main (
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|   int  argc,
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|   char *argv[]
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|   )
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| /*++
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| 
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| Routine Description:
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| 
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|   Main function.
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| 
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| Arguments:
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| 
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|   argc - Number of command line parameters.
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|   argv - Array of pointers to command line parameter strings.
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| 
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| Returns:
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|   STATUS_SUCCESS - Utility exits successfully.
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|   STATUS_ERROR   - Some error occurred during execution.
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| 
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| --*/
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| {
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|   ULONG             Type;
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|   PUCHAR            Ext;
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|   PUCHAR            p;
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|   PUCHAR            pe;
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|   PUCHAR            OutImageName;
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|   UCHAR             outname[500];
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|   FILE              *fpIn;
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|   FILE              *fpOut;
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|   VOID              *ZeroBuffer;
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|   EFI_IMAGE_DOS_HEADER  *DosHdr;
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|   EFI_IMAGE_NT_HEADERS  *PeHdr;
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|   EFI_IMAGE_OPTIONAL_HEADER32  *Optional32;
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|   EFI_IMAGE_OPTIONAL_HEADER64  *Optional64;
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|   time_t            TimeStamp;
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|   struct tm         TimeStruct;
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|   EFI_IMAGE_DOS_HEADER  BackupDosHdr;
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|   ULONG             Index;
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|   ULONG             Index1;
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|   ULONG             Index2;
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|   ULONG             Index3;
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|   BOOLEAN           TimeStampPresent;
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|   UINTN                                 AllignedRelocSize;
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|   UINTN                                 Delta;
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|   EFI_IMAGE_SECTION_HEADER              *SectionHeader;
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|   UINT8      *FileBuffer;
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|   UINTN      FileLength;
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|   RUNTIME_FUNCTION  *RuntimeFunction;
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|   UNWIND_INFO       *UnwindInfo;
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| 
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|   SetUtilityName (UTILITY_NAME);
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|   //
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|   // Assign to fix compile warning
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|   //
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|   OutImageName      = NULL;
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|   Type              = 0;
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|   Ext               = 0;
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|   TimeStamp         = 0;
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|   TimeStampPresent  = FALSE;
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| 
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|   //
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|   // Look for -t time-date option first. If the time is "0", then
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|   // skip it.
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|   //
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|   if ((argc > 2) && !strcmp (argv[1], "-t")) {
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|     TimeStampPresent = TRUE;
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|     if (strcmp (argv[2], "0") != 0) {
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|       //
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|       // Convert the string to a value
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|       //
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|       memset ((char *) &TimeStruct, 0, sizeof (TimeStruct));
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|       if (sscanf(
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|           argv[2], "%d/%d/%d,%d:%d:%d",
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|           &TimeStruct.tm_mon,   /* months since January - [0,11] */
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|           &TimeStruct.tm_mday,  /* day of the month - [1,31] */
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|           &TimeStruct.tm_year,  /* years since 1900 */
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|           &TimeStruct.tm_hour,  /* hours since midnight - [0,23] */
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|           &TimeStruct.tm_min,   /* minutes after the hour - [0,59] */
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|           &TimeStruct.tm_sec    /* seconds after the minute - [0,59] */
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|             ) != 6) {
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|         Error (NULL, 0, 0, argv[2], "failed to convert to mm/dd/yyyy,hh:mm:ss format");
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|         return STATUS_ERROR;
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|       }
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|       //
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|       // Now fixup some of the fields
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|       //
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|       TimeStruct.tm_mon--;
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|       TimeStruct.tm_year -= 1900;
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|       //
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|       // Sanity-check values?
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|       // Convert
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|       //
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|       TimeStamp = mktime (&TimeStruct);
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|       if (TimeStamp == (time_t) - 1) {
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|         Error (NULL, 0, 0, argv[2], "failed to convert time");
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|         return STATUS_ERROR;
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|       }
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|     }
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|     //
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|     // Skip over the args
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|     //
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|     argc -= 2;
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|     argv += 2;
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|   }
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|   //
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|   // Check for enough args
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|   //
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|   if (argc < 3) {
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|     Usage ();
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|     return STATUS_ERROR;
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|   }
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| 
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|   if (argc == 4) {
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|     OutImageName = argv[3];
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|   }
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|   //
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|   // Get new image type
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|   //
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|   p = argv[1];
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|   if (*p == '/' || *p == '\\') {
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|     p += 1;
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|   }
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| 
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|   if (stricmp (p, "app") == 0 || stricmp (p, "UEFI_APPLICATION") == 0) {
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|     Type  = EFI_IMAGE_SUBSYSTEM_EFI_APPLICATION;
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|     Ext   = ".efi";
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| 
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|   } else if (stricmp (p, "bsdrv") == 0 || stricmp (p, "DXE_DRIVER") == 0) {
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|     Type  = EFI_IMAGE_SUBSYSTEM_EFI_BOOT_SERVICE_DRIVER;
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|     Ext   = ".efi";
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| 
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|   } else if (stricmp (p, "rtdrv") == 0 || stricmp (p, "DXE_RUNTIME_DRIVER") == 0) {
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|     Type  = EFI_IMAGE_SUBSYSTEM_EFI_RUNTIME_DRIVER;
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|     Ext   = ".efi";
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| 
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|   } else if (stricmp (p, "rtdrv") == 0 || stricmp (p, "DXE_SAL_DRIVER") == 0) {
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|     Type  = EFI_IMAGE_SUBSYSTEM_SAL_RUNTIME_DRIVER;
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|     Ext   = ".efi";
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|   } else if (stricmp (p, "SEC") == 0) {
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|     Type  = EFI_IMAGE_SUBSYSTEM_EFI_BOOT_SERVICE_DRIVER;
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|     Ext   = ".sec";
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|   } else if (stricmp (p, "peim") == 0 ||
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|            stricmp (p, "BASE") == 0 ||
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|            stricmp (p, "PEI_CORE") == 0 ||
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|            stricmp (p, "PEIM") == 0 ||
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|            stricmp (p, "DXE_SMM_DRIVER") == 0 ||
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|            stricmp (p, "TOOL") == 0 ||
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|            stricmp (p, "UEFI_APPLICATION") == 0 ||
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|            stricmp (p, "USER_DEFINED") == 0 ||
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|            stricmp (p, "UEFI_DRIVER") == 0 ||
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|            stricmp (p, "DXE_CORE") == 0
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|           ) {
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|     Type  = EFI_IMAGE_SUBSYSTEM_EFI_BOOT_SERVICE_DRIVER;
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|     Ext   = ".pei";
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|   } else {
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|   	printf ("%s", p);
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|     Usage ();
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|     return STATUS_ERROR;
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|   }
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|   //
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|   // open source file
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|   //
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|   fpIn = fopen (argv[2], "rb");
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|   if (!fpIn) {
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|     Error (NULL, 0, 0, argv[2], "failed to open input file for reading");
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|     return STATUS_ERROR;
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|   }
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| 
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|   FReadFile (fpIn, (VOID **)&FileBuffer, &FileLength);
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| 
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|   //
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|   // Read the dos & pe hdrs of the image
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|   //
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|   DosHdr = (EFI_IMAGE_DOS_HEADER *)FileBuffer;
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|   if (DosHdr->e_magic != EFI_IMAGE_DOS_SIGNATURE) {
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|     Error (NULL, 0, 0, argv[2], "DOS header signature not found in source image");
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|     fclose (fpIn);
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|     return STATUS_ERROR;
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|   }
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| 
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|   PeHdr = (EFI_IMAGE_NT_HEADERS *)(FileBuffer + DosHdr->e_lfanew);
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|   if (PeHdr->Signature != EFI_IMAGE_NT_SIGNATURE) {
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|     Error (NULL, 0, 0, argv[2], "PE header signature not found in source image");
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|     fclose (fpIn);
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|     return STATUS_ERROR;
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|   }
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| 
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|   //
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|   // open output file
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|   //
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|   strcpy (outname, argv[2]);
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|   pe = NULL;
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|   for (p = outname; *p; p++) {
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|     if (*p == '.') {
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|       pe = p;
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|     }
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|   }
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| 
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|   if (!pe) {
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|     pe = p;
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|   }
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| 
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|   strcpy (pe, Ext);
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| 
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|   if (!OutImageName) {
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|     OutImageName = outname;
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|   }
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| 
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|   fpOut = fopen (OutImageName, "w+b");
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|   if (!fpOut) {
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|     Error (NULL, 0, 0, OutImageName, "could not open output file for writing");
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|     fclose (fpIn);
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|     return STATUS_ERROR;
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|   }
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| 
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|   //
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|   // Zero all unused fields of the DOS header
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|   //
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|   memcpy (&BackupDosHdr, DosHdr, sizeof (EFI_IMAGE_DOS_HEADER));
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|   memset (DosHdr, 0, sizeof (EFI_IMAGE_DOS_HEADER));
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|   DosHdr->e_magic  = BackupDosHdr.e_magic;
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|   DosHdr->e_lfanew = BackupDosHdr.e_lfanew;
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| 
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|   for (Index = sizeof (EFI_IMAGE_DOS_HEADER); Index < (ULONG) DosHdr->e_lfanew; Index++) {
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|     FileBuffer[Index] = DosHdr->e_cp;
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|   }
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| 
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|   //
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|   // Path the PE header
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|   //
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|   PeHdr->OptionalHeader.Subsystem = (USHORT) Type;
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|   if (TimeStampPresent) {
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|     PeHdr->FileHeader.TimeDateStamp = (UINT32) TimeStamp;
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|   }
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| 
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|   if (PeHdr->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
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|     Optional32 = (EFI_IMAGE_OPTIONAL_HEADER32 *)&PeHdr->OptionalHeader;
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|     Optional32->MajorLinkerVersion          = 0;
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|     Optional32->MinorLinkerVersion          = 0;
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|     Optional32->MajorOperatingSystemVersion = 0;
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|     Optional32->MinorOperatingSystemVersion = 0;
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|     Optional32->MajorImageVersion           = 0;
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|     Optional32->MinorImageVersion           = 0;
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|     Optional32->MajorSubsystemVersion       = 0;
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|     Optional32->MinorSubsystemVersion       = 0;
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|     Optional32->Win32VersionValue           = 0;
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|     Optional32->CheckSum                    = 0;
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|     Optional32->SizeOfStackReserve = 0;
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|     Optional32->SizeOfStackCommit  = 0;
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|     Optional32->SizeOfHeapReserve  = 0;
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|     Optional32->SizeOfHeapCommit   = 0;
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| 
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|     //
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|     // Strip zero padding at the end of the .reloc section 
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|     //
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|     if (Optional32->NumberOfRvaAndSizes >= 6) {
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|       if (Optional32->DataDirectory[5].Size != 0) {
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|         SectionHeader = (EFI_IMAGE_SECTION_HEADER *)(FileBuffer + DosHdr->e_lfanew + sizeof(UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + PeHdr->FileHeader.SizeOfOptionalHeader);
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|         for (Index = 0; Index < PeHdr->FileHeader.NumberOfSections; Index++, SectionHeader++) {
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|           //
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|           // Look for the Section Header that starts as the same virtual address as the Base Relocation Data Directory
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|           //
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|           if (SectionHeader->VirtualAddress == Optional32->DataDirectory[5].VirtualAddress) {
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|             SectionHeader->Misc.VirtualSize = Optional32->DataDirectory[5].Size;
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|             AllignedRelocSize = (Optional32->DataDirectory[5].Size + Optional32->FileAlignment - 1) & (~(Optional32->FileAlignment - 1));
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|             //
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|             // Check to see if there is zero padding at the end of the base relocations
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|             //
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|             if (AllignedRelocSize < SectionHeader->SizeOfRawData) {
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|               //
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|               // Check to see if the base relocations are at the end of the file
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|               //
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|               if (SectionHeader->PointerToRawData + SectionHeader->SizeOfRawData == Optional32->SizeOfImage) {
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|                 //
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|                 // All the required conditions are met to strip the zero padding of the end of the base relocations section
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|                 //
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|                 Optional32->SizeOfImage -= (SectionHeader->SizeOfRawData - AllignedRelocSize);
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|                 Optional32->SizeOfInitializedData -= (SectionHeader->SizeOfRawData - AllignedRelocSize);
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|                 SectionHeader->SizeOfRawData = AllignedRelocSize;
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|                 FileLength = Optional32->SizeOfImage;
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|               }
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|             }
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|           }
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|         }
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|       }
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|     }
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|   } 
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|   if (PeHdr->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR64_MAGIC) {
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|     Optional64 = (EFI_IMAGE_OPTIONAL_HEADER64 *)&PeHdr->OptionalHeader;
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|     Optional64->MajorLinkerVersion          = 0;
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|     Optional64->MinorLinkerVersion          = 0;
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|     Optional64->MajorOperatingSystemVersion = 0;
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|     Optional64->MinorOperatingSystemVersion = 0;
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|     Optional64->MajorImageVersion           = 0;
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|     Optional64->MinorImageVersion           = 0;
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|     Optional64->MajorSubsystemVersion       = 0;
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|     Optional64->MinorSubsystemVersion       = 0;
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|     Optional64->Win32VersionValue           = 0;
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|     Optional64->CheckSum                    = 0;
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|     Optional64->SizeOfStackReserve = 0;
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|     Optional64->SizeOfStackCommit  = 0;
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|     Optional64->SizeOfHeapReserve  = 0;
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|     Optional64->SizeOfHeapCommit   = 0;
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| 
 | |
|     //
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|     // Zero the .pdata section if the machine type is X64 and the Debug Directory is empty
 | |
|     //
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|     if (PeHdr->FileHeader.Machine == 0x8664) { // X64
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|       if (Optional64->NumberOfRvaAndSizes >= 4) {
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|         if (Optional64->NumberOfRvaAndSizes < 7 || (Optional64->NumberOfRvaAndSizes >= 7 && Optional64->DataDirectory[6].Size == 0)) {
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|           SectionHeader = (EFI_IMAGE_SECTION_HEADER *)(FileBuffer + DosHdr->e_lfanew + sizeof(UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + PeHdr->FileHeader.SizeOfOptionalHeader);
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|           for (Index = 0; Index < PeHdr->FileHeader.NumberOfSections; Index++, SectionHeader++) {
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|             if (SectionHeader->VirtualAddress == Optional64->DataDirectory[3].VirtualAddress) {
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|               RuntimeFunction = (RUNTIME_FUNCTION *)(FileBuffer + SectionHeader->PointerToRawData);
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|               for (Index1 = 0; Index1 < Optional64->DataDirectory[3].Size / sizeof (RUNTIME_FUNCTION); Index1++, RuntimeFunction++) {
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|                 SectionHeader = (EFI_IMAGE_SECTION_HEADER *)(FileBuffer + DosHdr->e_lfanew + sizeof(UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + PeHdr->FileHeader.SizeOfOptionalHeader);
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|                 for (Index2 = 0; Index2 < PeHdr->FileHeader.NumberOfSections; Index2++, SectionHeader++) {
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|                   if (RuntimeFunction->UnwindInfoAddress > SectionHeader->VirtualAddress && RuntimeFunction->UnwindInfoAddress < (SectionHeader->VirtualAddress + SectionHeader->SizeOfRawData)) {
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|                     UnwindInfo = (UNWIND_INFO *)(FileBuffer + SectionHeader->PointerToRawData + (RuntimeFunction->UnwindInfoAddress - SectionHeader->VirtualAddress));
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|                     if (UnwindInfo->Version == 1) {
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|                       memset (UnwindInfo + 1, 0, UnwindInfo->CountOfUnwindCodes * sizeof (UINT16));
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|                       memset (UnwindInfo, 0, sizeof (UNWIND_INFO));
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|                     }
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|                   }
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|                 }
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|                 memset (RuntimeFunction, 0, sizeof (RUNTIME_FUNCTION));
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|               }
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|             }
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|           }
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|           Optional64->DataDirectory[3].Size = 0;
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|           Optional64->DataDirectory[3].VirtualAddress = 0;
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|         }
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|       }
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|     }
 | |
| 
 | |
|     //
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|     // Strip zero padding at the end of the .reloc section 
 | |
|     //
 | |
|     if (Optional64->NumberOfRvaAndSizes >= 6) {
 | |
|       if (Optional64->DataDirectory[5].Size != 0) {
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|         SectionHeader = (EFI_IMAGE_SECTION_HEADER *)(FileBuffer + DosHdr->e_lfanew + sizeof(UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + PeHdr->FileHeader.SizeOfOptionalHeader);
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|         for (Index = 0; Index < PeHdr->FileHeader.NumberOfSections; Index++, SectionHeader++) {
 | |
|           //
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|           // Look for the Section Header that starts as the same virtual address as the Base Relocation Data Directory
 | |
|           //
 | |
|           if (SectionHeader->VirtualAddress == Optional64->DataDirectory[5].VirtualAddress) {
 | |
|             SectionHeader->Misc.VirtualSize = Optional64->DataDirectory[5].Size;
 | |
|             AllignedRelocSize = (Optional64->DataDirectory[5].Size + Optional64->FileAlignment - 1) & (~(Optional64->FileAlignment - 1));
 | |
|             //
 | |
|             // Check to see if there is zero padding at the end of the base relocations
 | |
|             //
 | |
|             if (AllignedRelocSize < SectionHeader->SizeOfRawData) {
 | |
|               //
 | |
|               // Check to see if the base relocations are at the end of the file
 | |
|               //
 | |
|               if (SectionHeader->PointerToRawData + SectionHeader->SizeOfRawData == Optional64->SizeOfImage) {
 | |
|                 //
 | |
|                 // All the required conditions are met to strip the zero padding of the end of the base relocations section
 | |
|                 //
 | |
|                 Optional64->SizeOfImage -= (SectionHeader->SizeOfRawData - AllignedRelocSize);
 | |
|                 Optional64->SizeOfInitializedData -= (SectionHeader->SizeOfRawData - AllignedRelocSize);
 | |
|                 SectionHeader->SizeOfRawData = AllignedRelocSize;
 | |
|                 FileLength = Optional64->SizeOfImage;
 | |
|               }
 | |
|             }
 | |
|           }
 | |
|         }
 | |
|       }
 | |
|     }
 | |
|   }
 | |
| 
 | |
|   FWriteFile (fpOut, FileBuffer, FileLength);
 | |
| 
 | |
|   //
 | |
|   // Done
 | |
|   //
 | |
|   fclose (fpIn);
 | |
|   fclose (fpOut);
 | |
|   //
 | |
|   // printf ("Created %s\n", OutImageName);
 | |
|   //
 | |
|   return STATUS_SUCCESS;
 | |
| }
 |