mirror of https://github.com/acidanthera/audk.git
Integrated FV memory map into R9
git-svn-id: https://edk2.svn.sourceforge.net/svnroot/edk2/trunk/edk2@2158 6f19259b-4bc3-4df7-8a09-765794883524
This commit is contained in:
parent
8733430b83
commit
a3ab2a47d9
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@ -219,8 +219,8 @@ Returns:
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if (!EFI_IMAGE_MACHINE_TYPE_SUPPORTED (Image->ImageContext.Machine)) {
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//
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// The PE/COFF loader can support loading image types that can be executed.
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// If we loaded an image type that we can not execute return EFI_UNSUPORTED.
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// The PE/COFF loader can support loading image types that can be executed.
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// If we loaded an image type that we can not execute return EFI_UNSUPORTED.
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//
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return EFI_UNSUPPORTED;
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}
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@ -247,17 +247,30 @@ Returns:
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// If the image relocations have not been stripped, then load at any address.
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// Otherwise load at the address at which it was linked.
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//
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Status = CoreAllocatePages (
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(Image->ImageContext.RelocationsStripped) ? AllocateAddress : AllocateAnyPages,
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Image->ImageContext.ImageCodeMemoryType,
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Image->NumberOfPages,
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&Image->ImageContext.ImageAddress
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);
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// Memory below 1MB should be treated reserved for CSM and there should be
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// no modules whose preferred load addresses are below 1MB.
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//
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Status = EFI_OUT_OF_RESOURCES;
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if (Image->ImageContext.ImageAddress >= 0x100000 || Image->ImageContext.RelocationsStripped) {
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Status = CoreAllocatePages (
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AllocateAddress,
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Image->ImageContext.ImageCodeMemoryType,
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Image->NumberOfPages,
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&Image->ImageContext.ImageAddress
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);
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}
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if (EFI_ERROR (Status) && !Image->ImageContext.RelocationsStripped) {
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Status = CoreAllocatePages (
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AllocateAnyPages,
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Image->ImageContext.ImageCodeMemoryType,
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Image->NumberOfPages,
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&Image->ImageContext.ImageAddress
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);
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}
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if (EFI_ERROR (Status)) {
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return Status;
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}
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DstBufAlocated = TRUE;
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} else {
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//
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// Caller provided the destination buffer
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@ -394,7 +407,7 @@ Returns:
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InsertTailList (&gRuntime->ImageHead, &Image->RuntimeData->Link);
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}
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}
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//
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// Fill in the entry point of the image if it is available
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//
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@ -407,7 +420,7 @@ Returns:
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//
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DEBUG_CODE_BEGIN ();
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UINTN Index;
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UINTN StartIndex;
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CHAR8 EfiFileName[256];
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@ -439,7 +452,7 @@ Returns:
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DEBUG ((EFI_D_INFO | EFI_D_LOAD, "%a", EfiFileName)); // &Image->ImageContext.PdbPointer[StartIndex]));
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}
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DEBUG ((EFI_D_INFO | EFI_D_LOAD, "\n"));
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DEBUG_CODE_END ();
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return EFI_SUCCESS;
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@ -449,11 +462,11 @@ Done:
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//
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// Free memory.
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//
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if (DstBufAlocated) {
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CoreFreePages (Image->ImageContext.ImageAddress, Image->NumberOfPages);
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}
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if (Image->ImageContext.FixupData != NULL) {
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CoreFreePool (Image->ImageContext.FixupData);
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}
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@ -927,8 +940,8 @@ Returns:
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SetJumpFlag = SetJump (Image->JumpContext);
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//
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// The initial call to SetJump() must always return 0.
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// Subsequent calls to LongJump() cause a non-zero value to be returned by SetJump().
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// The initial call to SetJump() must always return 0.
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// Subsequent calls to LongJump() cause a non-zero value to be returned by SetJump().
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//
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if (!SetJumpFlag) {
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//
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@ -1142,7 +1155,7 @@ Returns:
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}
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CoreFreePool (Image->RuntimeData);
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}
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//
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// Free the Image from memory
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//
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@ -1,10 +1,10 @@
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//****************************************************************************
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//**
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//** Copyright (C) 2006 Intel Corporation. All rights reserved.
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//** Copyright (C) 2006 Intel Corporation. All rights reserved.
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//**
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//** The information and source code contained herein is the exclusive
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//** The information and source code contained herein is the exclusive
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//** property of Intel Corporation and may not be disclosed, examined
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//** or reproduced in whole or in part without explicit written authorization
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//** or reproduced in whole or in part without explicit written authorization
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//** from the company.
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//**
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//****************************************************************************
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@ -78,6 +78,7 @@ public:
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bool operator < (const CIdentity&) const;
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friend istream& operator >> (istream&, CIdentity&);
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friend ostream& operator << (ostream&, const CIdentity&);
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static const string::size_type s_nIdStrLen;
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@ -134,6 +135,16 @@ istream& operator >> (istream& is, CIdentity& idRight)
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return is;
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}
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ostream& operator << (ostream& os, const CIdentity& idRight)
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{
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return os << hex << setfill('0')
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<< setw(8) << (unsigned long)(idRight.m_ullId[0] >> 32) << '-'
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<< setw(4) << (unsigned short)(idRight.m_ullId[0] >> 16) << '-'
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<< setw(4) << (unsigned short)idRight.m_ullId[0] << '-'
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<< setw(4) << (unsigned short)(idRight.m_ullId[1] >> 48) << '-'
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<< setw(12) << (idRight.m_ullId[1] & 0xffffffffffff);
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}
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class CInputFile : public CObjRoot
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{
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protected:
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@ -183,74 +194,22 @@ istream& CInputFile::GetLine(string& strALine)
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return m_is;
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}
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class CIdAddressMap : public CInputFile, public map<CIdentity, ulonglong_t>
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class CIdAddressPathMap : public CInputFile, public map<CIdentity, pair<ulonglong_t, string> >
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{
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public:
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CIdAddressMap(istream&);
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CIdAddressPathMap(istream&);
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};
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CIdAddressMap::CIdAddressMap(istream& is)
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CIdAddressPathMap::CIdAddressPathMap(istream& is)
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: CInputFile(is)
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{
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CIdentity id;
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ulonglong_t ullBase;
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while (!!(m_is >> hex >> id >> ullBase))
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if (!insert(value_type(id, ullBase)).second)
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key_type k;
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mapped_type m;
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while (!!(m_is >> hex >> k >> m.first) && !!GetLine(m.second))
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if (!insert(value_type(k, m)).second)
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throw runtime_error(__FUNCTION__ ": Duplicated files");
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}
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class CIdPathMap : public CInputFile, public map<CIdentity, string>
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{
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public:
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CIdPathMap(istream&);
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};
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CIdPathMap::CIdPathMap(istream& is)
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: CInputFile(is)
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{
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static const char cszFileSec[] = "[files]";
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static const char cszFfsFile[] = "EFI_FILE_NAME";
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string strALine;
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// Find the [files] section
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while (!!GetLine(strALine) && strALine.compare(0, sizeof(cszFileSec) - 1, cszFileSec));
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// m_is error means no FFS files listed in this INF file
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if (!m_is)
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return;
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// Parse FFS files one by one
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while (!!GetLine(strALine))
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{
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// Test if this begins a new section
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if (strALine[0] == '[')
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break;
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// Is it a line of FFS file?
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if (strALine.compare(0, sizeof(cszFfsFile) - 1, cszFfsFile))
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continue;
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string::size_type pos = strALine.find_first_not_of(' ', sizeof(cszFfsFile) - 1);
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if (pos == string::npos || strALine[pos] != '=')
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throw runtime_error(__FUNCTION__ ": Invalid FV INF format");
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pos = strALine.find_first_not_of(' ', pos + 1);
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if (pos == string::npos)
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throw runtime_error(__FUNCTION__ ": Incomplete line");
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strALine.erase(0, pos);
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pos = strALine.rfind('\\');
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if (pos == string::npos)
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pos = 0;
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else pos++;
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CIdentity id(strALine.substr(pos, CIdentity::s_nIdStrLen));
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if (!insert(value_type(id, strALine)).second)
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throw runtime_error(__FUNCTION__ ": Duplicated FFS files");
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}
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}
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class CSymbol : public CObjRoot
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{
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public:
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@ -286,7 +245,7 @@ ostream& operator << (ostream& os, const CSymbol& symbol)
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os << hex << setw(16) << setfill('0') << symbol.m_ullRva << setw(0);
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os << ' ' << (symbol.m_bFunction ? 'F' : ' ')
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<< (symbol.m_bStatic ? 'S' : ' ') << ' ';
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return os << symbol.m_strName << endl;
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return os << symbol.m_strName;
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}
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class CMapFile : public CInputFile, public list<CSymbol>
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@ -295,7 +254,6 @@ public:
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CMapFile(const string&);
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void SetLoadAddress(ulonglong_t);
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friend ostream& operator << (ostream&, const CMapFile&);
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string m_strModuleName;
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ulonglong_t m_ullLoadAddr;
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@ -344,32 +302,11 @@ CMapFile::CMapFile(const string& strFName)
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void CMapFile::SetLoadAddress(ulonglong_t ullLoadAddr)
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{
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for (iterator i = begin(); i != end(); i++)
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if (i->m_ullRva != 0)
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if (i->m_ullRva >= m_ullLoadAddr)
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i->m_ullRva += ullLoadAddr - m_ullLoadAddr;
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m_ullLoadAddr = ullLoadAddr;
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}
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ostream& operator << (ostream& os, const CMapFile& mapFile)
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{
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CMapFile::const_iterator i = mapFile.begin();
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while (i != mapFile.end() && i->m_strAddress != mapFile.m_strEntryPoint)
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i++;
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if (i == mapFile.end())
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throw runtime_error(
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__FUNCTION__ ": Entry point not found for module " +
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mapFile.m_strModuleName);
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os << endl << hex
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<< mapFile.m_strModuleName << " (EP=" << i->m_ullRva
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<< ", BA=" << mapFile.m_ullLoadAddr << ')' << endl
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<< endl;
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for (i = mapFile.begin(); i != mapFile.end(); i++)
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os << " " << *i;
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return os << endl;
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}
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class COutputFile : public CObjRoot
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{
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protected:
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class CFvMapFile : public CObjRoot, public map<CIdentity, CMapFile*>
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{
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public:
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CFvMapFile(const CIdAddressMap&, const CIdPathMap&);
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CFvMapFile(const CIdAddressPathMap&);
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~CFvMapFile(void);
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friend ostream& operator << (ostream&, const CFvMapFile&);
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@ -393,27 +330,16 @@ private:
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void Cleanup(void);
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};
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CFvMapFile::CFvMapFile(const CIdAddressMap& idAddr, const CIdPathMap& idPath)
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CFvMapFile::CFvMapFile(const CIdAddressPathMap& idAddrPath)
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{
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for (CIdAddressMap::const_iterator i = idAddr.begin(); i != idAddr.end(); i++)
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for (CIdAddressPathMap::const_iterator i = idAddrPath.begin(); i != idAddrPath.end(); i++)
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{
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CIdPathMap::const_iterator j = idPath.find(i->first);
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if (j == idPath.end())
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throw runtime_error(__FUNCTION__ ": Map file not found");
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if (i->second.second == "*")
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continue;
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try
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{
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pair<iterator, bool> k = insert(value_type(i->first,
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new CMapFile(j->second.substr(0, j->second.rfind('.')) + ".map")));
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if (!k.second)
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throw logic_error(__FUNCTION__ ": Duplicated file found in rebase log");
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k.first->second->SetLoadAddress(i->second);
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}
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catch (const runtime_error& e)
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{
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cerr << e.what() << endl;
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}
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pair<iterator, bool> r = insert(value_type(i->first,
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new CMapFile(i->second.second.substr(0, i->second.second.rfind('.')) + ".map")));
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r.first->second->SetLoadAddress(i->second.first);
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}
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}
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@ -426,7 +352,27 @@ void CFvMapFile::Cleanup(void)
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ostream& operator << (ostream& os, const CFvMapFile& fvMap)
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{
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for (CFvMapFile::const_iterator i = fvMap.begin(); !!os && i != fvMap.end(); i++)
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os << *i->second;
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{
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CMapFile::const_iterator j = i->second->begin();
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while (j != i->second->end() && j->m_strAddress != i->second->m_strEntryPoint) j++;
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if (j == i->second->end())
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throw runtime_error(
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__FUNCTION__ ":Entry point not found for module " +
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i->second->m_strModuleName);
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os << hex
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<< i->second->m_strModuleName
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<< " (EP=" << j->m_ullRva
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<< ", BA=" << i->second->m_ullLoadAddr
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<< ", GUID=" << i->first
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<< ")" << endl << endl;
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for (j = i->second->begin(); j != i->second->end(); j++)
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os << " " << *j << endl;
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os << endl << endl;
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}
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return os;
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}
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@ -446,7 +392,7 @@ private:
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static const char s_szUsage[];
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};
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const char CGenFvMapUsage::s_szUsage[] = "Usage: GenFvMap <LOG> <INF> <MAP>";
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const char CGenFvMapUsage::s_szUsage[] = "Usage: GenFvMap <LOG> <MAP>";
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class CGenFvMapApp : public CObjRoot
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{
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@ -465,7 +411,7 @@ CGenFvMapApp::CGenFvMapApp(int cArgc, char *ppszArgv[])
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: m_cArgc(cArgc)
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, m_ppszArgv(ppszArgv)
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{
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if (cArgc != 4)
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if (cArgc != 3)
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throw CGenFvMapUsage();
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}
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@ -476,14 +422,10 @@ CGenFvMapApp::~CGenFvMapApp(void)
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int CGenFvMapApp::Run(void)
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{
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ifstream isLog(m_ppszArgv[1]);
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ifstream isInf(m_ppszArgv[2]);
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CIdAddressPathMap idAddrPath(isLog);
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CFvMapFile fvMap(idAddrPath);
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CIdAddressMap idAddress(isLog);
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CIdPathMap idPath(isInf);
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CFvMapFile fvMap(idAddress, idPath);
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ofstream osMap(m_ppszArgv[3], ios_base::out | ios_base::trunc);
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ofstream osMap(m_ppszArgv[2], ios_base::out | ios_base::trunc);
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osMap << fvMap;
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if (!osMap)
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|
|
|
@ -40,6 +40,7 @@ WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
|
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optimize="speed">
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<compilerarg value="${ExtraArgus}" if="ExtraArgus" />
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<compilerarg value="/EHsc" unless="GCC"/>
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<compilerarg value="/Za" unless="GCC"/>
|
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<fileset dir="${basedir}/${ToolName}"
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includes="${FileSet}"
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|
|
|
@ -799,9 +799,10 @@ Returns:
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//
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fprintf (
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LogFile,
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"%s %016I64X\n",
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"%s %016I64X %s\n",
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FileGuidString,
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ImageContext.DestinationAddress
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ImageContext.DestinationAddress,
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ImageContext.PdbPointer == NULL ? "*" : ImageContext.PdbPointer
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);
|
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*BaseToUpdate += EFI_SIZE_TO_PAGES (ImageContext.ImageSize) * EFI_PAGE_SIZE;
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|
@ -1136,8 +1137,6 @@ Returns:
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GetLength (CurrentPe32Section.Pe32Section->CommonHeader.Size) - sizeof (EFI_PE32_SECTION) -
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sizeof (EFI_TE_IMAGE_HEADER)
|
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);
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free ((VOID *) MemoryImagePointer);
|
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free (TEBuffer);
|
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if (FfsFile->Attributes & FFS_ATTRIB_TAIL_PRESENT) {
|
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TailSize = sizeof (EFI_FFS_FILE_TAIL);
|
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} else {
|
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|
@ -1171,10 +1170,17 @@ Returns:
|
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fprintf (
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LogFile,
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"%s %016I64X\n",
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"%s %016I64X %s\n",
|
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FileGuidString,
|
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ImageContext.DestinationAddress
|
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ImageContext.DestinationAddress,
|
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ImageContext.PdbPointer == NULL ? "*" : ImageContext.PdbPointer
|
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);
|
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|
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//
|
||||
// Free buffers
|
||||
//
|
||||
free ((VOID *) MemoryImagePointer);
|
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free (TEBuffer);
|
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}
|
||||
|
||||
return EFI_SUCCESS;
|
||||
|
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