The BaseTools/Scripts/ConvertMasmToNasm.py script was used to convert Ia32/EbcLowLevel.asm to Ia32/EbcLowLevel.nasm Contributed-under: TianoCore Contribution Agreement 1.0 Signed-off-by: Jordan Justen <jordan.l.justen@intel.com>
		
			
				
	
	
		
			198 lines
		
	
	
		
			5.4 KiB
		
	
	
	
		
			NASM
		
	
	
	
	
	
			
		
		
	
	
			198 lines
		
	
	
		
			5.4 KiB
		
	
	
	
		
			NASM
		
	
	
	
	
	
| ;/** @file
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| ;
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| ;    This code provides low level routines that support the Virtual Machine
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| ;    for option ROMs.
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| ;
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| ;  Copyright (c) 2006 - 2011, Intel Corporation. All rights reserved.<BR>
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| ;  This program and the accompanying materials
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| ;  are licensed and made available under the terms and conditions of the BSD License
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| ;  which accompanies this distribution.  The full text of the license may be found at
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| ;  http://opensource.org/licenses/bsd-license.php
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| ;
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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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| ;**/
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| 
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| ;---------------------------------------------------------------------------
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| ; Equate files needed.
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| ;---------------------------------------------------------------------------
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| 
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| ;---------------------------------------------------------------------------
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| ; Assembler options
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| ;---------------------------------------------------------------------------
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| 
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| SECTION .text
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| extern ASM_PFX(CopyMem)
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| extern ASM_PFX(EbcInterpret)
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| extern ASM_PFX(ExecuteEbcImageEntryPoint)
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| 
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| ;****************************************************************************
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| ; EbcLLCALLEXNative
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| ;
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| ; This function is called to execute an EBC CALLEX instruction
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| ; to native code.
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| ; This instruction requires that we thunk out to external native
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| ; code. For IA32, we simply switch stacks and jump to the
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| ; specified function. On return, we restore the stack pointer
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| ; to its original location.
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| ;
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| ; Destroys no working registers.
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| ;****************************************************************************
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| ; INT64 EbcLLCALLEXNative(UINTN FuncAddr, UINTN NewStackPointer, VOID *FramePtr)
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| global ASM_PFX(EbcLLCALLEXNative)
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| ASM_PFX(EbcLLCALLEXNative):
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|       push   ebp
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|       push   ebx
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|       mov    ebp, esp              ; standard function prolog
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| 
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|       ; Get function address in a register
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|       ; mov ecx, FuncAddr => mov ecx, dword ptr [FuncAddr]
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|       mov    ecx, dword [esp + 0xC]
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| 
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|       ; Set stack pointer to new value
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|       ; mov eax, NewStackPointer => mov eax, dword ptr [NewSp]
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|       mov    eax, dword [esp + 0x14]
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|       mov    edx, dword [esp + 0x10]
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|       sub    eax, edx
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|       sub    esp, eax
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|       mov    ebx, esp
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|       push   ecx
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|       push   eax
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|       push   edx
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|       push   ebx
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|       call   ASM_PFX(CopyMem)
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|       pop    eax
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|       pop    eax
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|       pop    eax
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|       pop    ecx
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| 
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|       ; Now call the external routine
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|       call  ecx
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| 
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|       ; ebp is preserved by the callee. In this function it
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|       ; equals the original esp, so set them equal
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|       mov    esp, ebp
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| 
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|       ; Standard function epilog
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|       mov      esp, ebp
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|       pop      ebx
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|       pop      ebp
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|       ret
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| 
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| ;****************************************************************************
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| ; EbcLLEbcInterpret
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| ;
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| ; Begin executing an EBC image.
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| ;****************************************************************************
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| ; UINT64 EbcLLEbcInterpret(VOID)
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| global ASM_PFX(EbcLLEbcInterpret)
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| ASM_PFX(EbcLLEbcInterpret):
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|     ;
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|     ;; mov eax, 0xca112ebc
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|     ;; mov eax, EbcEntryPoint
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|     ;; mov ecx, EbcLLEbcInterpret
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|     ;; jmp ecx
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|     ;
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|     ; Caller uses above instruction to jump here
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|     ; The stack is below:
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|     ; +-----------+
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|     ; |  RetAddr  |
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|     ; +-----------+
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|     ; |EntryPoint | (EAX)
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|     ; +-----------+
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|     ; |   Arg1    | <- EDI
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|     ; +-----------+
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|     ; |   Arg2    |
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|     ; +-----------+
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|     ; |   ...     |
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|     ; +-----------+
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|     ; |   Arg16   |
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|     ; +-----------+
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|     ; |   EDI     |
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|     ; +-----------+
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|     ; |   ESI     |
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|     ; +-----------+
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|     ; |   EBP     | <- EBP
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|     ; +-----------+
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|     ; |  RetAddr  | <- ESP is here
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|     ; +-----------+
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|     ; |   Arg1    | <- ESI
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|     ; +-----------+
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|     ; |   Arg2    |
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|     ; +-----------+
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|     ; |   ...     |
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|     ; +-----------+
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|     ; |   Arg16   |
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|     ; +-----------+
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|     ;
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| 
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|     ; Construct new stack
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|     push ebp
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|     mov  ebp, esp
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|     push esi
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|     push edi
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|     sub  esp, 0x40
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|     push eax
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|     mov  esi, ebp
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|     add  esi, 8
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|     mov  edi, esp
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|     add  edi, 4
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|     mov  ecx, 16
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|     rep  movsd
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| 
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|     ; call C-code
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|     call ASM_PFX(EbcInterpret)
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|     add  esp, 0x44
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|     pop  edi
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|     pop  esi
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|     pop  ebp
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|     ret
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| 
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| ;****************************************************************************
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| ; EbcLLExecuteEbcImageEntryPoint
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| ;
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| ; Begin executing an EBC image.
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| ;****************************************************************************
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| ; UINT64 EbcLLExecuteEbcImageEntryPoint(VOID)
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| global ASM_PFX(EbcLLExecuteEbcImageEntryPoint)
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| ASM_PFX(EbcLLExecuteEbcImageEntryPoint):
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|     ;
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|     ;; mov eax, 0xca112ebc
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|     ;; mov eax, EbcEntryPoint
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|     ;; mov ecx, EbcLLExecuteEbcImageEntryPoint
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|     ;; jmp ecx
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|     ;
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|     ; Caller uses above instruction to jump here
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|     ; The stack is below:
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|     ; +-----------+
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|     ; |  RetAddr  |
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|     ; +-----------+
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|     ; |EntryPoint | (EAX)
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|     ; +-----------+
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|     ; |ImageHandle|
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|     ; +-----------+
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|     ; |SystemTable|
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|     ; +-----------+
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|     ; |  RetAddr  | <- ESP is here
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|     ; +-----------+
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|     ; |ImageHandle|
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|     ; +-----------+
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|     ; |SystemTable|
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|     ; +-----------+
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|     ;
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| 
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|     ; Construct new stack
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|     mov  [esp - 0xC], eax
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|     mov  eax, [esp + 0x4]
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|     mov  [esp - 0x8], eax
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|     mov  eax, [esp + 0x8]
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|     mov  [esp - 0x4], eax
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| 
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|     ; call C-code
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|     sub  esp, 0xC
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|     call ASM_PFX(ExecuteEbcImageEntryPoint)
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|     add  esp, 0xC
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|     ret
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| 
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