Port EdkUnixPkg to UnixPkg. The changes are listed as follows:
1. change *.msa to *.inf, and create platform configuration files .dec&.dsc&.fdf to comply with Edk2 build process 2. using PCD mechanism to replace macro. 3. change Sec code to cowork with PI1.0 Pei Core and produce temparory memory ppi. git-svn-id: https://edk2.svn.sourceforge.net/svnroot/edk2/trunk/edk2@5380 6f19259b-4bc3-4df7-8a09-765794883524
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/** @file
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OEM hook status code library functions with no library constructor/destructor
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Copyright (c) 2006, 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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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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Module Name: UnixOemHookStatusCodeLib.c
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**/
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#include "PiDxe.h"
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#include <Guid/StatusCodeDataTypeId.h>
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#include "UnixDxe.h"
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#include <Library/OemHookStatusCodeLib.h>
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#include <Library/DebugLib.h>
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#include <Library/HobLib.h>
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#include <Library/PrintLib.h>
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#include <Library/BaseMemoryLib.h>
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#include <Library/ReportStatusCodeLib.h>
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#include <FrameworkModuleBase.h>
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#include <DebugInfo.h>
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//
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// Cache of UnixThunk protocol
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//
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STATIC
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EFI_UNIX_THUNK_PROTOCOL *mUnix;
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//
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// Cache of standard output handle .
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//
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STATIC
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int mStdOut;
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/**
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Initialize OEM status code device .
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@return Always return EFI_SUCCESS.
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**/
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EFI_STATUS
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EFIAPI
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OemHookStatusCodeInitialize (
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VOID
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)
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{
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EFI_HOB_GUID_TYPE *GuidHob;
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//
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// Retrieve UnixThunkProtocol from GUID'ed HOB
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//
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GuidHob = GetFirstGuidHob (&gEfiUnixThunkProtocolGuid);
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ASSERT (GuidHob != NULL);
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mUnix = (EFI_UNIX_THUNK_PROTOCOL *)(*(UINTN *)(GET_GUID_HOB_DATA (GuidHob)));
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ASSERT (mUnix != NULL);
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//
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// Cache standard output handle.
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//
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mStdOut = 1;
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return EFI_SUCCESS;
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}
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/**
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Report status code to OEM device.
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@param CodeType Indicates the type of status code being reported. Type EFI_STATUS_CODE_TYPE is defined in "Related Definitions" below.
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@param Value Describes the current status of a hardware or software entity.
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This included information about the class and subclass that is used to classify the entity
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as well as an operation. For progress codes, the operation is the current activity.
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For error codes, it is the exception. For debug codes, it is not defined at this time.
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Type EFI_STATUS_CODE_VALUE is defined in "Related Definitions" below.
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Specific values are discussed in the Intel? Platform Innovation Framework for EFI Status Code Specification.
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@param Instance The enumeration of a hardware or software entity within the system.
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A system may contain multiple entities that match a class/subclass pairing.
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The instance differentiates between them. An instance of 0 indicates that instance information is unavailable,
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not meaningful, or not relevant. Valid instance numbers start with 1.
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@param CallerId This optional parameter may be used to identify the caller.
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This parameter allows the status code driver to apply different rules to different callers.
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Type EFI_GUID is defined in InstallProtocolInterface() in the EFI 1.10 Specification.
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@param Data This optional parameter may be used to pass additional data
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@return The function always return EFI_SUCCESS.
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**/
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EFI_STATUS
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EFIAPI
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OemHookStatusCodeReport (
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IN EFI_STATUS_CODE_TYPE CodeType,
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IN EFI_STATUS_CODE_VALUE Value,
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IN UINT32 Instance,
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IN EFI_GUID *CallerId, OPTIONAL
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IN EFI_STATUS_CODE_DATA *Data OPTIONAL
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)
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{
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CHAR8 *Filename;
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CHAR8 *Description;
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CHAR8 *Format;
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CHAR8 Buffer[EFI_STATUS_CODE_DATA_MAX_SIZE];
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UINT32 ErrorLevel;
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UINT32 LineNumber;
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UINTN CharCount;
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VA_LIST Marker;
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EFI_DEBUG_INFO *DebugInfo;
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Buffer[0] = '\0';
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if (Data != NULL &&
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ReportStatusCodeExtractAssertInfo (CodeType, Value, Data, &Filename, &Description, &LineNumber)) {
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//
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// Print ASSERT() information into output buffer.
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//
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CharCount = AsciiSPrint (
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Buffer,
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EFI_STATUS_CODE_DATA_MAX_SIZE,
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"\n\rASSERT!: %a (%d): %a\n\r",
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Filename,
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LineNumber,
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Description
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);
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//
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// Callout to standard output.
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//
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mUnix->Write (
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mStdOut,
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Buffer,
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CharCount
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);
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return EFI_SUCCESS;
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} else if (Data != NULL &&
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ReportStatusCodeExtractDebugInfo (Data, &ErrorLevel, &Marker, &Format)) {
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//
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// Print DEBUG() information into output buffer.
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//
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CharCount = AsciiVSPrint (
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Buffer,
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EFI_STATUS_CODE_DATA_MAX_SIZE,
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Format,
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Marker
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);
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} else if (Data != NULL &&
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CompareGuid (&Data->Type, &gEfiStatusCodeSpecificDataGuid) &&
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(CodeType & EFI_STATUS_CODE_TYPE_MASK) == EFI_DEBUG_CODE) {
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//
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// Print specific data into output buffer.
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//
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DebugInfo = (EFI_DEBUG_INFO *) (Data + 1);
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Marker = (VA_LIST) (DebugInfo + 1);
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Format = (CHAR8 *) (((UINT64 *) Marker) + 12);
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CharCount = AsciiVSPrint (Buffer, EFI_STATUS_CODE_DATA_MAX_SIZE, Format, Marker);
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} else if ((CodeType & EFI_STATUS_CODE_TYPE_MASK) == EFI_ERROR_CODE) {
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//
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// Print ERROR information into output buffer.
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//
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CharCount = AsciiSPrint (
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Buffer,
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EFI_STATUS_CODE_DATA_MAX_SIZE,
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"ERROR: C%x:V%x I%x",
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CodeType,
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Value,
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Instance
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);
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//
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// Make sure we don't try to print values that weren't intended to be printed, especially NULL GUID pointers.
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//
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if (CallerId != NULL) {
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CharCount += AsciiSPrint (
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&Buffer[CharCount - 1],
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(EFI_STATUS_CODE_DATA_MAX_SIZE - (sizeof (Buffer[0]) * CharCount)),
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" %g",
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CallerId
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);
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}
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if (Data != NULL) {
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CharCount += AsciiSPrint (
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&Buffer[CharCount - 1],
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(EFI_STATUS_CODE_DATA_MAX_SIZE - (sizeof (Buffer[0]) * CharCount)),
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" %x",
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Data
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);
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}
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CharCount += AsciiSPrint (
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&Buffer[CharCount - 1],
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(EFI_STATUS_CODE_DATA_MAX_SIZE - (sizeof (Buffer[0]) * CharCount)),
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"\n\r"
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);
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} else if ((CodeType & EFI_STATUS_CODE_TYPE_MASK) == EFI_PROGRESS_CODE) {
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CharCount = AsciiSPrint (
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Buffer,
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EFI_STATUS_CODE_DATA_MAX_SIZE,
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"PROGRESS CODE: V%x I%x\n\r",
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Value,
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Instance
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);
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} else {
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CharCount = AsciiSPrint (
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Buffer,
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EFI_STATUS_CODE_DATA_MAX_SIZE,
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"Undefined: C%x:V%x I%x\n\r",
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CodeType,
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Value,
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Instance
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);
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}
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//
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// Callout to standard output.
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//
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mUnix->Write (
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mStdOut,
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Buffer,
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CharCount
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);
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return EFI_SUCCESS;
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}
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