2018-12-19 15:24:38 +08:00
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//===- Writer.cpp ---------------------------------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "Writer.h"
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#include "Object.h"
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#include "llvm-objcopy.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/BinaryFormat/COFF.h"
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#include "llvm/Object/COFF.h"
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#include "llvm/Support/ErrorHandling.h"
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#include <cstddef>
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#include <cstdint>
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namespace llvm {
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namespace objcopy {
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namespace coff {
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using namespace object;
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using namespace COFF;
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Writer::~Writer() {}
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void COFFWriter::layoutSections() {
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for (auto &S : Obj.Sections) {
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if (S.Header.SizeOfRawData > 0)
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S.Header.PointerToRawData = FileSize;
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FileSize += S.Header.SizeOfRawData; // For executables, this is already
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// aligned to FileAlignment.
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if (S.Header.NumberOfRelocations > 0)
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S.Header.PointerToRelocations = FileSize;
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FileSize += S.Relocs.size() * sizeof(coff_relocation);
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FileSize = alignTo(FileSize, FileAlignment);
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if (S.Header.Characteristics & IMAGE_SCN_CNT_INITIALIZED_DATA)
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SizeOfInitializedData += S.Header.SizeOfRawData;
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}
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}
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size_t COFFWriter::finalizeStringTable() {
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for (auto &S : Obj.Sections)
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if (S.Name.size() > COFF::NameSize)
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StrTabBuilder.add(S.Name);
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for (const auto &S : Obj.Symbols)
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if (S.Name.size() > COFF::NameSize)
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StrTabBuilder.add(S.Name);
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StrTabBuilder.finalize();
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for (auto &S : Obj.Sections) {
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if (S.Name.size() > COFF::NameSize) {
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snprintf(S.Header.Name, sizeof(S.Header.Name), "/%d",
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(int)StrTabBuilder.getOffset(S.Name));
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} else {
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strncpy(S.Header.Name, S.Name.data(), COFF::NameSize);
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}
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}
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for (auto &S : Obj.Symbols) {
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if (S.Name.size() > COFF::NameSize) {
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S.Sym.Name.Offset.Zeroes = 0;
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S.Sym.Name.Offset.Offset = StrTabBuilder.getOffset(S.Name);
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} else {
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strncpy(S.Sym.Name.ShortName, S.Name.data(), COFF::NameSize);
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}
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}
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return StrTabBuilder.getSize();
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}
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template <class SymbolTy>
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std::pair<size_t, size_t> COFFWriter::finalizeSymbolTable() {
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size_t SymTabSize = Obj.Symbols.size() * sizeof(SymbolTy);
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for (const auto &S : Obj.Symbols)
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SymTabSize += S.AuxData.size();
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return std::make_pair(SymTabSize, sizeof(SymbolTy));
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}
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void COFFWriter::finalize(bool IsBigObj) {
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size_t SizeOfHeaders = 0;
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FileAlignment = 1;
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size_t PeHeaderSize = 0;
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if (Obj.IsPE) {
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Obj.DosHeader.AddressOfNewExeHeader =
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sizeof(Obj.DosHeader) + Obj.DosStub.size();
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SizeOfHeaders += Obj.DosHeader.AddressOfNewExeHeader + sizeof(PEMagic);
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FileAlignment = Obj.PeHeader.FileAlignment;
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Obj.PeHeader.NumberOfRvaAndSize = Obj.DataDirectories.size();
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PeHeaderSize = Obj.Is64 ? sizeof(pe32plus_header) : sizeof(pe32_header);
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SizeOfHeaders +=
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PeHeaderSize + sizeof(data_directory) * Obj.DataDirectories.size();
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}
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Obj.CoffFileHeader.NumberOfSections = Obj.Sections.size();
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SizeOfHeaders +=
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IsBigObj ? sizeof(coff_bigobj_file_header) : sizeof(coff_file_header);
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SizeOfHeaders += sizeof(coff_section) * Obj.Sections.size();
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SizeOfHeaders = alignTo(SizeOfHeaders, FileAlignment);
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Obj.CoffFileHeader.SizeOfOptionalHeader =
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PeHeaderSize + sizeof(data_directory) * Obj.DataDirectories.size();
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FileSize = SizeOfHeaders;
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SizeOfInitializedData = 0;
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layoutSections();
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if (Obj.IsPE) {
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Obj.PeHeader.SizeOfHeaders = SizeOfHeaders;
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Obj.PeHeader.SizeOfInitializedData = SizeOfInitializedData;
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if (!Obj.Sections.empty()) {
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const Section &S = Obj.Sections.back();
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Obj.PeHeader.SizeOfImage =
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alignTo(S.Header.VirtualAddress + S.Header.VirtualSize,
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Obj.PeHeader.SectionAlignment);
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}
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// If the PE header had a checksum, clear it, since it isn't valid
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// any longer. (We don't calculate a new one.)
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Obj.PeHeader.CheckSum = 0;
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}
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size_t StrTabSize = finalizeStringTable();
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size_t SymTabSize, SymbolSize;
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std::tie(SymTabSize, SymbolSize) = IsBigObj
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? finalizeSymbolTable<coff_symbol32>()
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: finalizeSymbolTable<coff_symbol16>();
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size_t PointerToSymbolTable = FileSize;
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// StrTabSize <= 4 is the size of an empty string table, only consisting
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// of the length field.
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if (SymTabSize == 0 && StrTabSize <= 4) {
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// Don't point to the symbol table if empty.
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PointerToSymbolTable = 0;
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// For executables, skip the length field of an empty string table.
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if (Obj.IsPE)
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StrTabSize = 0;
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}
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size_t NumRawSymbols = SymTabSize / SymbolSize;
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Obj.CoffFileHeader.PointerToSymbolTable = PointerToSymbolTable;
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Obj.CoffFileHeader.NumberOfSymbols = NumRawSymbols;
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FileSize += SymTabSize + StrTabSize;
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FileSize = alignTo(FileSize, FileAlignment);
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}
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void COFFWriter::writeHeaders(bool IsBigObj) {
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uint8_t *Ptr = Buf.getBufferStart();
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if (Obj.IsPE) {
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memcpy(Ptr, &Obj.DosHeader, sizeof(Obj.DosHeader));
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Ptr += sizeof(Obj.DosHeader);
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memcpy(Ptr, Obj.DosStub.data(), Obj.DosStub.size());
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Ptr += Obj.DosStub.size();
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memcpy(Ptr, PEMagic, sizeof(PEMagic));
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Ptr += sizeof(PEMagic);
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}
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if (!IsBigObj) {
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memcpy(Ptr, &Obj.CoffFileHeader, sizeof(Obj.CoffFileHeader));
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Ptr += sizeof(Obj.CoffFileHeader);
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} else {
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// Generate a coff_bigobj_file_header, filling it in with the values
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// from Obj.CoffFileHeader. All extra fields that don't exist in
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// coff_file_header can be set to hardcoded values.
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coff_bigobj_file_header BigObjHeader;
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BigObjHeader.Sig1 = IMAGE_FILE_MACHINE_UNKNOWN;
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BigObjHeader.Sig2 = 0xffff;
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BigObjHeader.Version = BigObjHeader::MinBigObjectVersion;
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BigObjHeader.Machine = Obj.CoffFileHeader.Machine;
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BigObjHeader.TimeDateStamp = Obj.CoffFileHeader.TimeDateStamp;
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memcpy(BigObjHeader.UUID, BigObjMagic, sizeof(BigObjMagic));
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BigObjHeader.unused1 = 0;
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BigObjHeader.unused2 = 0;
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BigObjHeader.unused3 = 0;
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BigObjHeader.unused4 = 0;
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// The value in Obj.CoffFileHeader.NumberOfSections is truncated, thus
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// get the original one instead.
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BigObjHeader.NumberOfSections = Obj.Sections.size();
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BigObjHeader.PointerToSymbolTable = Obj.CoffFileHeader.PointerToSymbolTable;
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BigObjHeader.NumberOfSymbols = Obj.CoffFileHeader.NumberOfSymbols;
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memcpy(Ptr, &BigObjHeader, sizeof(BigObjHeader));
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Ptr += sizeof(BigObjHeader);
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}
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if (Obj.IsPE) {
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if (Obj.Is64) {
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memcpy(Ptr, &Obj.PeHeader, sizeof(Obj.PeHeader));
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Ptr += sizeof(Obj.PeHeader);
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} else {
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pe32_header PeHeader;
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copyPeHeader(PeHeader, Obj.PeHeader);
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// The pe32plus_header (stored in Object) lacks the BaseOfData field.
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PeHeader.BaseOfData = Obj.BaseOfData;
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memcpy(Ptr, &PeHeader, sizeof(PeHeader));
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Ptr += sizeof(PeHeader);
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}
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for (const auto &DD : Obj.DataDirectories) {
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memcpy(Ptr, &DD, sizeof(DD));
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Ptr += sizeof(DD);
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}
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}
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for (const auto &S : Obj.Sections) {
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memcpy(Ptr, &S.Header, sizeof(S.Header));
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Ptr += sizeof(S.Header);
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}
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}
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void COFFWriter::writeSections() {
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for (const auto &S : Obj.Sections) {
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uint8_t *Ptr = Buf.getBufferStart() + S.Header.PointerToRawData;
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2018-12-21 05:35:59 +08:00
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std::copy(S.Contents.begin(), S.Contents.end(), Ptr);
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2018-12-19 15:24:38 +08:00
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// For executable sections, pad the remainder of the raw data size with
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// 0xcc, which is int3 on x86.
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if ((S.Header.Characteristics & IMAGE_SCN_CNT_CODE) &&
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S.Header.SizeOfRawData > S.Contents.size())
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memset(Ptr + S.Contents.size(), 0xcc,
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S.Header.SizeOfRawData - S.Contents.size());
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Ptr += S.Header.SizeOfRawData;
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2018-12-21 05:35:59 +08:00
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std::copy(S.Relocs.begin(), S.Relocs.end(),
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reinterpret_cast<coff_relocation *>(Ptr));
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2018-12-19 15:24:38 +08:00
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}
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}
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template <class SymbolTy> void COFFWriter::writeSymbolStringTables() {
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uint8_t *Ptr = Buf.getBufferStart() + Obj.CoffFileHeader.PointerToSymbolTable;
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for (const auto &S : Obj.Symbols) {
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// Convert symbols back to the right size, from coff_symbol32.
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copySymbol<SymbolTy, coff_symbol32>(*reinterpret_cast<SymbolTy *>(Ptr),
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S.Sym);
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Ptr += sizeof(SymbolTy);
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2018-12-21 05:35:59 +08:00
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std::copy(S.AuxData.begin(), S.AuxData.end(), Ptr);
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2018-12-19 15:24:38 +08:00
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Ptr += S.AuxData.size();
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}
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if (StrTabBuilder.getSize() > 4 || !Obj.IsPE) {
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// Always write a string table in object files, even an empty one.
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StrTabBuilder.write(Ptr);
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Ptr += StrTabBuilder.getSize();
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}
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}
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2018-12-31 04:35:43 +08:00
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Error COFFWriter::write(bool IsBigObj) {
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finalize(IsBigObj);
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Buf.allocate(FileSize);
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writeHeaders(IsBigObj);
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writeSections();
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if (IsBigObj)
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writeSymbolStringTables<coff_symbol32>();
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else
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writeSymbolStringTables<coff_symbol16>();
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if (Obj.IsPE)
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2018-12-31 04:35:43 +08:00
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if (Error E = patchDebugDirectory())
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return E;
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2018-12-31 04:35:43 +08:00
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return Buf.commit();
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2018-12-19 15:24:38 +08:00
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}
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// Locate which sections contain the debug directories, iterate over all
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// the debug_directory structs in there, and set the PointerToRawData field
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// in all of them, according to their new physical location in the file.
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2018-12-31 04:35:43 +08:00
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Error COFFWriter::patchDebugDirectory() {
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2018-12-19 15:24:38 +08:00
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if (Obj.DataDirectories.size() < DEBUG_DIRECTORY)
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return Error::success();
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2018-12-19 15:24:38 +08:00
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const data_directory *Dir = &Obj.DataDirectories[DEBUG_DIRECTORY];
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if (Dir->Size <= 0)
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2018-12-31 04:35:43 +08:00
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return Error::success();
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2018-12-19 15:24:38 +08:00
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for (const auto &S : Obj.Sections) {
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if (Dir->RelativeVirtualAddress >= S.Header.VirtualAddress &&
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Dir->RelativeVirtualAddress <
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S.Header.VirtualAddress + S.Header.SizeOfRawData) {
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if (Dir->RelativeVirtualAddress + Dir->Size >
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S.Header.VirtualAddress + S.Header.SizeOfRawData)
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2018-12-31 04:35:43 +08:00
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return make_error<StringError>(
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"Debug directory extends past end of section",
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object_error::parse_failed);
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2018-12-19 15:24:38 +08:00
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size_t Offset = Dir->RelativeVirtualAddress - S.Header.VirtualAddress;
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uint8_t *Ptr = Buf.getBufferStart() + S.Header.PointerToRawData + Offset;
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uint8_t *End = Ptr + Dir->Size;
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while (Ptr < End) {
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debug_directory *Debug = reinterpret_cast<debug_directory *>(Ptr);
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Debug->PointerToRawData =
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S.Header.PointerToRawData + Offset + sizeof(debug_directory);
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Ptr += sizeof(debug_directory) + Debug->SizeOfData;
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Offset += sizeof(debug_directory) + Debug->SizeOfData;
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}
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// Debug directory found and patched, all done.
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2018-12-31 04:35:43 +08:00
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return Error::success();
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}
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}
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2018-12-31 04:35:43 +08:00
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return make_error<StringError>("Debug directory not found",
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object_error::parse_failed);
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2018-12-19 15:24:38 +08:00
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}
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2018-12-31 04:35:43 +08:00
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Error COFFWriter::write() {
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2018-12-19 15:24:38 +08:00
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bool IsBigObj = Obj.Sections.size() > MaxNumberOfSections16;
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if (IsBigObj && Obj.IsPE)
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2018-12-31 04:35:43 +08:00
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return make_error<StringError>("Too many sections for executable",
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object_error::parse_failed);
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return write(IsBigObj);
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2018-12-19 15:24:38 +08:00
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}
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} // end namespace coff
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} // end namespace objcopy
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} // end namespace llvm
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