to reflect the new license. We understand that people may be surprised that we're moving the header entirely to discuss the new license. We checked this carefully with the Foundation's lawyer and we believe this is the correct approach. Essentially, all code in the project is now made available by the LLVM project under our new license, so you will see that the license headers include that license only. Some of our contributors have contributed code under our old license, and accordingly, we have retained a copy of our old license notice in the top-level files in each project and repository. llvm-svn: 351636
456 lines
15 KiB
C++
456 lines
15 KiB
C++
//===- DbiStreamBuilder.cpp - PDB Dbi Stream Creation -----------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/DebugInfo/PDB/Native/DbiStreamBuilder.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/BinaryFormat/COFF.h"
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#include "llvm/DebugInfo/CodeView/DebugFrameDataSubsection.h"
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#include "llvm/DebugInfo/MSF/MSFBuilder.h"
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#include "llvm/DebugInfo/MSF/MappedBlockStream.h"
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#include "llvm/DebugInfo/PDB/Native/DbiModuleDescriptorBuilder.h"
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#include "llvm/DebugInfo/PDB/Native/DbiStream.h"
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#include "llvm/DebugInfo/PDB/Native/RawError.h"
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#include "llvm/Object/COFF.h"
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#include "llvm/Support/BinaryStreamWriter.h"
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using namespace llvm;
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using namespace llvm::codeview;
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using namespace llvm::msf;
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using namespace llvm::pdb;
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DbiStreamBuilder::DbiStreamBuilder(msf::MSFBuilder &Msf)
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: Msf(Msf), Allocator(Msf.getAllocator()), Age(1), BuildNumber(0),
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PdbDllVersion(0), PdbDllRbld(0), Flags(0), MachineType(PDB_Machine::x86),
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Header(nullptr) {}
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DbiStreamBuilder::~DbiStreamBuilder() {}
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void DbiStreamBuilder::setVersionHeader(PdbRaw_DbiVer V) { VerHeader = V; }
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void DbiStreamBuilder::setAge(uint32_t A) { Age = A; }
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void DbiStreamBuilder::setBuildNumber(uint16_t B) { BuildNumber = B; }
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void DbiStreamBuilder::setBuildNumber(uint8_t Major, uint8_t Minor) {
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BuildNumber = (uint16_t(Major) << DbiBuildNo::BuildMajorShift) &
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DbiBuildNo::BuildMajorMask;
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BuildNumber |= (uint16_t(Minor) << DbiBuildNo::BuildMinorShift) &
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DbiBuildNo::BuildMinorMask;
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BuildNumber |= DbiBuildNo::NewVersionFormatMask;
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}
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void DbiStreamBuilder::setPdbDllVersion(uint16_t V) { PdbDllVersion = V; }
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void DbiStreamBuilder::setPdbDllRbld(uint16_t R) { PdbDllRbld = R; }
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void DbiStreamBuilder::setFlags(uint16_t F) { Flags = F; }
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void DbiStreamBuilder::setMachineType(PDB_Machine M) { MachineType = M; }
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void DbiStreamBuilder::setMachineType(COFF::MachineTypes M) {
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// These enums are mirrors of each other, so we can just cast the value.
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MachineType = static_cast<pdb::PDB_Machine>(static_cast<unsigned>(M));
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}
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void DbiStreamBuilder::setSectionMap(ArrayRef<SecMapEntry> SecMap) {
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SectionMap = SecMap;
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}
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void DbiStreamBuilder::setGlobalsStreamIndex(uint32_t Index) {
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GlobalsStreamIndex = Index;
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}
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void DbiStreamBuilder::setSymbolRecordStreamIndex(uint32_t Index) {
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SymRecordStreamIndex = Index;
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}
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void DbiStreamBuilder::setPublicsStreamIndex(uint32_t Index) {
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PublicsStreamIndex = Index;
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}
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void DbiStreamBuilder::addNewFpoData(const codeview::FrameData &FD) {
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if (!NewFpoData.hasValue())
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NewFpoData.emplace(false);
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NewFpoData->addFrameData(FD);
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}
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void DbiStreamBuilder::addOldFpoData(const object::FpoData &FD) {
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OldFpoData.push_back(FD);
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}
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Error DbiStreamBuilder::addDbgStream(pdb::DbgHeaderType Type,
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ArrayRef<uint8_t> Data) {
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assert(Type != DbgHeaderType::NewFPO &&
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"NewFPO data should be written via addFrameData()!");
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DbgStreams[(int)Type].emplace();
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DbgStreams[(int)Type]->Size = Data.size();
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DbgStreams[(int)Type]->WriteFn = [Data](BinaryStreamWriter &Writer) {
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return Writer.writeArray(Data);
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};
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return Error::success();
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}
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uint32_t DbiStreamBuilder::addECName(StringRef Name) {
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return ECNamesBuilder.insert(Name);
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}
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uint32_t DbiStreamBuilder::calculateSerializedLength() const {
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// For now we only support serializing the header.
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return sizeof(DbiStreamHeader) + calculateFileInfoSubstreamSize() +
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calculateModiSubstreamSize() + calculateSectionContribsStreamSize() +
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calculateSectionMapStreamSize() + calculateDbgStreamsSize() +
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ECNamesBuilder.calculateSerializedSize();
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}
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Expected<DbiModuleDescriptorBuilder &>
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DbiStreamBuilder::addModuleInfo(StringRef ModuleName) {
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uint32_t Index = ModiList.size();
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ModiList.push_back(
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llvm::make_unique<DbiModuleDescriptorBuilder>(ModuleName, Index, Msf));
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return *ModiList.back();
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}
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Error DbiStreamBuilder::addModuleSourceFile(DbiModuleDescriptorBuilder &Module,
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StringRef File) {
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uint32_t Index = SourceFileNames.size();
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SourceFileNames.insert(std::make_pair(File, Index));
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Module.addSourceFile(File);
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return Error::success();
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}
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Expected<uint32_t> DbiStreamBuilder::getSourceFileNameIndex(StringRef File) {
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auto NameIter = SourceFileNames.find(File);
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if (NameIter == SourceFileNames.end())
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return make_error<RawError>(raw_error_code::no_entry,
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"The specified source file was not found");
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return NameIter->getValue();
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}
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uint32_t DbiStreamBuilder::calculateModiSubstreamSize() const {
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uint32_t Size = 0;
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for (const auto &M : ModiList)
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Size += M->calculateSerializedLength();
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return Size;
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}
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uint32_t DbiStreamBuilder::calculateSectionContribsStreamSize() const {
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if (SectionContribs.empty())
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return 0;
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return sizeof(enum PdbRaw_DbiSecContribVer) +
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sizeof(SectionContribs[0]) * SectionContribs.size();
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}
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uint32_t DbiStreamBuilder::calculateSectionMapStreamSize() const {
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if (SectionMap.empty())
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return 0;
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return sizeof(SecMapHeader) + sizeof(SecMapEntry) * SectionMap.size();
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}
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uint32_t DbiStreamBuilder::calculateNamesOffset() const {
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uint32_t Offset = 0;
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Offset += sizeof(ulittle16_t); // NumModules
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Offset += sizeof(ulittle16_t); // NumSourceFiles
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Offset += ModiList.size() * sizeof(ulittle16_t); // ModIndices
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Offset += ModiList.size() * sizeof(ulittle16_t); // ModFileCounts
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uint32_t NumFileInfos = 0;
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for (const auto &M : ModiList)
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NumFileInfos += M->source_files().size();
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Offset += NumFileInfos * sizeof(ulittle32_t); // FileNameOffsets
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return Offset;
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}
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uint32_t DbiStreamBuilder::calculateFileInfoSubstreamSize() const {
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uint32_t Size = calculateNamesOffset();
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Size += calculateNamesBufferSize();
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return alignTo(Size, sizeof(uint32_t));
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}
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uint32_t DbiStreamBuilder::calculateNamesBufferSize() const {
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uint32_t Size = 0;
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for (const auto &F : SourceFileNames) {
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Size += F.getKeyLength() + 1; // Names[I];
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}
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return Size;
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}
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uint32_t DbiStreamBuilder::calculateDbgStreamsSize() const {
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return DbgStreams.size() * sizeof(uint16_t);
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}
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Error DbiStreamBuilder::generateFileInfoSubstream() {
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uint32_t Size = calculateFileInfoSubstreamSize();
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auto Data = Allocator.Allocate<uint8_t>(Size);
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uint32_t NamesOffset = calculateNamesOffset();
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FileInfoBuffer = MutableBinaryByteStream(MutableArrayRef<uint8_t>(Data, Size),
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llvm::support::little);
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WritableBinaryStreamRef MetadataBuffer =
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WritableBinaryStreamRef(FileInfoBuffer).keep_front(NamesOffset);
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BinaryStreamWriter MetadataWriter(MetadataBuffer);
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uint16_t ModiCount = std::min<uint32_t>(UINT16_MAX, ModiList.size());
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uint16_t FileCount = std::min<uint32_t>(UINT16_MAX, SourceFileNames.size());
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if (auto EC = MetadataWriter.writeInteger(ModiCount)) // NumModules
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return EC;
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if (auto EC = MetadataWriter.writeInteger(FileCount)) // NumSourceFiles
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return EC;
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for (uint16_t I = 0; I < ModiCount; ++I) {
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if (auto EC = MetadataWriter.writeInteger(I)) // Mod Indices
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return EC;
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}
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for (const auto &MI : ModiList) {
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FileCount = static_cast<uint16_t>(MI->source_files().size());
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if (auto EC = MetadataWriter.writeInteger(FileCount)) // Mod File Counts
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return EC;
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}
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// Before writing the FileNameOffsets array, write the NamesBuffer array.
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// A side effect of this is that this will actually compute the various
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// file name offsets, so we can then go back and write the FileNameOffsets
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// array to the other substream.
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NamesBuffer = WritableBinaryStreamRef(FileInfoBuffer).drop_front(NamesOffset);
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BinaryStreamWriter NameBufferWriter(NamesBuffer);
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for (auto &Name : SourceFileNames) {
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Name.second = NameBufferWriter.getOffset();
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if (auto EC = NameBufferWriter.writeCString(Name.getKey()))
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return EC;
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}
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for (const auto &MI : ModiList) {
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for (StringRef Name : MI->source_files()) {
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auto Result = SourceFileNames.find(Name);
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if (Result == SourceFileNames.end())
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return make_error<RawError>(raw_error_code::no_entry,
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"The source file was not found.");
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if (auto EC = MetadataWriter.writeInteger(Result->second))
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return EC;
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}
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}
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if (auto EC = NameBufferWriter.padToAlignment(sizeof(uint32_t)))
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return EC;
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if (NameBufferWriter.bytesRemaining() > 0)
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return make_error<RawError>(raw_error_code::invalid_format,
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"The names buffer contained unexpected data.");
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if (MetadataWriter.bytesRemaining() > sizeof(uint32_t))
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return make_error<RawError>(
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raw_error_code::invalid_format,
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"The metadata buffer contained unexpected data.");
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return Error::success();
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}
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Error DbiStreamBuilder::finalize() {
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if (Header)
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return Error::success();
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for (auto &MI : ModiList)
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MI->finalize();
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if (auto EC = generateFileInfoSubstream())
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return EC;
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DbiStreamHeader *H = Allocator.Allocate<DbiStreamHeader>();
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::memset(H, 0, sizeof(DbiStreamHeader));
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H->VersionHeader = *VerHeader;
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H->VersionSignature = -1;
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H->Age = Age;
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H->BuildNumber = BuildNumber;
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H->Flags = Flags;
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H->PdbDllRbld = PdbDllRbld;
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H->PdbDllVersion = PdbDllVersion;
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H->MachineType = static_cast<uint16_t>(MachineType);
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H->ECSubstreamSize = ECNamesBuilder.calculateSerializedSize();
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H->FileInfoSize = FileInfoBuffer.getLength();
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H->ModiSubstreamSize = calculateModiSubstreamSize();
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H->OptionalDbgHdrSize = DbgStreams.size() * sizeof(uint16_t);
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H->SecContrSubstreamSize = calculateSectionContribsStreamSize();
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H->SectionMapSize = calculateSectionMapStreamSize();
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H->TypeServerSize = 0;
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H->SymRecordStreamIndex = SymRecordStreamIndex;
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H->PublicSymbolStreamIndex = PublicsStreamIndex;
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H->MFCTypeServerIndex = 0; // Not sure what this is, but link.exe writes 0.
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H->GlobalSymbolStreamIndex = GlobalsStreamIndex;
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Header = H;
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return Error::success();
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}
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Error DbiStreamBuilder::finalizeMsfLayout() {
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if (NewFpoData.hasValue()) {
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DbgStreams[(int)DbgHeaderType::NewFPO].emplace();
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DbgStreams[(int)DbgHeaderType::NewFPO]->Size =
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NewFpoData->calculateSerializedSize();
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DbgStreams[(int)DbgHeaderType::NewFPO]->WriteFn =
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[this](BinaryStreamWriter &Writer) {
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return NewFpoData->commit(Writer);
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};
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}
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if (!OldFpoData.empty()) {
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DbgStreams[(int)DbgHeaderType::FPO].emplace();
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DbgStreams[(int)DbgHeaderType::FPO]->Size =
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sizeof(object::FpoData) * OldFpoData.size();
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DbgStreams[(int)DbgHeaderType::FPO]->WriteFn =
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[this](BinaryStreamWriter &Writer) {
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return Writer.writeArray(makeArrayRef(OldFpoData));
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};
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}
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for (auto &S : DbgStreams) {
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if (!S.hasValue())
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continue;
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auto ExpectedIndex = Msf.addStream(S->Size);
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if (!ExpectedIndex)
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return ExpectedIndex.takeError();
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S->StreamNumber = *ExpectedIndex;
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}
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for (auto &MI : ModiList) {
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if (auto EC = MI->finalizeMsfLayout())
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return EC;
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}
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uint32_t Length = calculateSerializedLength();
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if (auto EC = Msf.setStreamSize(StreamDBI, Length))
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return EC;
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return Error::success();
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}
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static uint16_t toSecMapFlags(uint32_t Flags) {
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uint16_t Ret = 0;
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if (Flags & COFF::IMAGE_SCN_MEM_READ)
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Ret |= static_cast<uint16_t>(OMFSegDescFlags::Read);
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if (Flags & COFF::IMAGE_SCN_MEM_WRITE)
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Ret |= static_cast<uint16_t>(OMFSegDescFlags::Write);
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if (Flags & COFF::IMAGE_SCN_MEM_EXECUTE)
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Ret |= static_cast<uint16_t>(OMFSegDescFlags::Execute);
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if (Flags & COFF::IMAGE_SCN_MEM_EXECUTE)
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Ret |= static_cast<uint16_t>(OMFSegDescFlags::Execute);
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if (!(Flags & COFF::IMAGE_SCN_MEM_16BIT))
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Ret |= static_cast<uint16_t>(OMFSegDescFlags::AddressIs32Bit);
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// This seems always 1.
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Ret |= static_cast<uint16_t>(OMFSegDescFlags::IsSelector);
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return Ret;
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}
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// A utility function to create a Section Map for a given list of COFF sections.
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//
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// A Section Map seem to be a copy of a COFF section list in other format.
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// I don't know why a PDB file contains both a COFF section header and
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// a Section Map, but it seems it must be present in a PDB.
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std::vector<SecMapEntry> DbiStreamBuilder::createSectionMap(
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ArrayRef<llvm::object::coff_section> SecHdrs) {
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std::vector<SecMapEntry> Ret;
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int Idx = 0;
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auto Add = [&]() -> SecMapEntry & {
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Ret.emplace_back();
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auto &Entry = Ret.back();
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memset(&Entry, 0, sizeof(Entry));
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Entry.Frame = Idx + 1;
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// We don't know the meaning of these fields yet.
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Entry.SecName = UINT16_MAX;
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Entry.ClassName = UINT16_MAX;
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return Entry;
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};
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for (auto &Hdr : SecHdrs) {
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auto &Entry = Add();
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Entry.Flags = toSecMapFlags(Hdr.Characteristics);
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Entry.SecByteLength = Hdr.VirtualSize;
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++Idx;
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}
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// The last entry is for absolute symbols.
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auto &Entry = Add();
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Entry.Flags = static_cast<uint16_t>(OMFSegDescFlags::AddressIs32Bit) |
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static_cast<uint16_t>(OMFSegDescFlags::IsAbsoluteAddress);
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Entry.SecByteLength = UINT32_MAX;
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return Ret;
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}
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Error DbiStreamBuilder::commit(const msf::MSFLayout &Layout,
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WritableBinaryStreamRef MsfBuffer) {
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if (auto EC = finalize())
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return EC;
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auto DbiS = WritableMappedBlockStream::createIndexedStream(
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Layout, MsfBuffer, StreamDBI, Allocator);
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BinaryStreamWriter Writer(*DbiS);
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if (auto EC = Writer.writeObject(*Header))
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return EC;
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for (auto &M : ModiList) {
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if (auto EC = M->commit(Writer, Layout, MsfBuffer))
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return EC;
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}
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if (!SectionContribs.empty()) {
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if (auto EC = Writer.writeEnum(DbiSecContribVer60))
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return EC;
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if (auto EC = Writer.writeArray(makeArrayRef(SectionContribs)))
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return EC;
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}
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if (!SectionMap.empty()) {
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ulittle16_t Size = static_cast<ulittle16_t>(SectionMap.size());
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SecMapHeader SMHeader = {Size, Size};
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if (auto EC = Writer.writeObject(SMHeader))
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return EC;
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if (auto EC = Writer.writeArray(SectionMap))
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return EC;
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}
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if (auto EC = Writer.writeStreamRef(FileInfoBuffer))
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return EC;
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if (auto EC = ECNamesBuilder.commit(Writer))
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return EC;
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for (auto &Stream : DbgStreams) {
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uint16_t StreamNumber = kInvalidStreamIndex;
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if (Stream.hasValue())
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StreamNumber = Stream->StreamNumber;
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if (auto EC = Writer.writeInteger(StreamNumber))
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return EC;
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}
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for (auto &Stream : DbgStreams) {
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if (!Stream.hasValue())
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continue;
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assert(Stream->StreamNumber != kInvalidStreamIndex);
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auto WritableStream = WritableMappedBlockStream::createIndexedStream(
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Layout, MsfBuffer, Stream->StreamNumber, Allocator);
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BinaryStreamWriter DbgStreamWriter(*WritableStream);
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if (auto EC = Stream->WriteFn(DbgStreamWriter))
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return EC;
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}
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if (Writer.bytesRemaining() > 0)
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return make_error<RawError>(raw_error_code::invalid_format,
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"Unexpected bytes found in DBI Stream");
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return Error::success();
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}
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