forked from OSchip/llvm-project
305 lines
10 KiB
C++
305 lines
10 KiB
C++
//===- InputFiles.cpp -----------------------------------------------------===//
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//
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// The LLVM Linker
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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 "Chunks.h"
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#include "Error.h"
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#include "InputFiles.h"
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#include "Writer.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/LTO/LTOModule.h"
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#include "llvm/Object/COFF.h"
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#include "llvm/Support/COFF.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/Endian.h"
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#include "llvm/Support/raw_ostream.h"
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using namespace llvm::object;
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using namespace llvm::support::endian;
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using llvm::COFF::ImportHeader;
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using llvm::COFF::IMAGE_COMDAT_SELECT_ASSOCIATIVE;
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using llvm::COFF::IMAGE_FILE_MACHINE_AMD64;
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using llvm::COFF::IMAGE_FILE_MACHINE_UNKNOWN;
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using llvm::RoundUpToAlignment;
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using llvm::sys::fs::identify_magic;
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using llvm::sys::fs::file_magic;
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namespace lld {
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namespace coff {
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// Returns the last element of a path, which is supposed to be a filename.
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static StringRef getBasename(StringRef Path) {
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size_t Pos = Path.find_last_of("\\/");
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if (Pos == StringRef::npos)
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return Path;
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return Path.substr(Pos + 1);
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}
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// Returns a string in the format of "foo.obj" or "foo.obj(bar.lib)".
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std::string InputFile::getShortName() {
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if (ParentName == "")
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return getName().lower();
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std::string Res = (getBasename(ParentName) + "(" +
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getBasename(getName()) + ")").str();
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return StringRef(Res).lower();
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}
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std::error_code ArchiveFile::parse() {
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// Parse a MemoryBufferRef as an archive file.
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auto ArchiveOrErr = Archive::create(MB);
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if (auto EC = ArchiveOrErr.getError())
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return EC;
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File = std::move(ArchiveOrErr.get());
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// Allocate a buffer for Lazy objects.
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size_t NumSyms = File->getNumberOfSymbols();
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size_t BufSize = NumSyms * sizeof(Lazy);
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Lazy *Buf = (Lazy *)Alloc.Allocate(BufSize, llvm::alignOf<Lazy>());
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LazySymbols.reserve(NumSyms);
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// Read the symbol table to construct Lazy objects.
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uint32_t I = 0;
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for (const Archive::Symbol &Sym : File->symbols()) {
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auto *B = new (&Buf[I++]) Lazy(this, Sym);
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// Skip special symbol exists in import library files.
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if (B->getName() != "__NULL_IMPORT_DESCRIPTOR")
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LazySymbols.push_back(B);
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}
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return std::error_code();
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}
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// Returns a buffer pointing to a member file containing a given symbol.
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ErrorOr<MemoryBufferRef> ArchiveFile::getMember(const Archive::Symbol *Sym) {
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auto ItOrErr = Sym->getMember();
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if (auto EC = ItOrErr.getError())
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return EC;
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Archive::child_iterator It = ItOrErr.get();
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// Return an empty buffer if we have already returned the same buffer.
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const char *StartAddr = It->getBuffer().data();
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auto Pair = Seen.insert(StartAddr);
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if (!Pair.second)
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return MemoryBufferRef();
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return It->getMemoryBufferRef();
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}
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std::error_code ObjectFile::parse() {
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// Parse a memory buffer as a COFF file.
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auto BinOrErr = createBinary(MB);
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if (auto EC = BinOrErr.getError())
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return EC;
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std::unique_ptr<Binary> Bin = std::move(BinOrErr.get());
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if (auto *Obj = dyn_cast<COFFObjectFile>(Bin.get())) {
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Bin.release();
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COFFObj.reset(Obj);
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} else {
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llvm::errs() << getName() << " is not a COFF file.\n";
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return make_error_code(LLDError::InvalidFile);
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}
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if (COFFObj->getMachine() != IMAGE_FILE_MACHINE_AMD64 &&
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COFFObj->getMachine() != IMAGE_FILE_MACHINE_UNKNOWN) {
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llvm::errs() << getName() << " is not an x64 object file.\n";
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return make_error_code(LLDError::InvalidFile);
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}
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// Read section and symbol tables.
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if (auto EC = initializeChunks())
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return EC;
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return initializeSymbols();
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}
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std::error_code ObjectFile::initializeChunks() {
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uint32_t NumSections = COFFObj->getNumberOfSections();
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Chunks.reserve(NumSections);
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SparseChunks.resize(NumSections + 1);
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for (uint32_t I = 1; I < NumSections + 1; ++I) {
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const coff_section *Sec;
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StringRef Name;
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if (auto EC = COFFObj->getSection(I, Sec)) {
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llvm::errs() << "getSection failed: " << Name << ": "
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<< EC.message() << "\n";
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return make_error_code(LLDError::BrokenFile);
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}
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if (auto EC = COFFObj->getSectionName(Sec, Name)) {
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llvm::errs() << "getSectionName failed: " << Name << ": "
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<< EC.message() << "\n";
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return make_error_code(LLDError::BrokenFile);
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}
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if (Name == ".drectve") {
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ArrayRef<uint8_t> Data;
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COFFObj->getSectionContents(Sec, Data);
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Directives = std::string((const char *)Data.data(), Data.size());
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continue;
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}
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if (Name.startswith(".debug"))
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continue;
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if (Sec->Characteristics & llvm::COFF::IMAGE_SCN_LNK_REMOVE)
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continue;
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auto *C = new (Alloc) SectionChunk(this, Sec);
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Chunks.push_back(C);
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SparseChunks[I] = C;
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}
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return std::error_code();
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}
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std::error_code ObjectFile::initializeSymbols() {
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uint32_t NumSymbols = COFFObj->getNumberOfSymbols();
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SymbolBodies.reserve(NumSymbols);
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SparseSymbolBodies.resize(NumSymbols);
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int32_t LastSectionNumber = 0;
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for (uint32_t I = 0; I < NumSymbols; ++I) {
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// Get a COFFSymbolRef object.
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auto SymOrErr = COFFObj->getSymbol(I);
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if (auto EC = SymOrErr.getError()) {
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llvm::errs() << "broken object file: " << getName() << ": "
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<< EC.message() << "\n";
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return make_error_code(LLDError::BrokenFile);
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}
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COFFSymbolRef Sym = SymOrErr.get();
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const void *AuxP = nullptr;
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if (Sym.getNumberOfAuxSymbols())
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AuxP = COFFObj->getSymbol(I + 1)->getRawPtr();
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bool IsFirst = (LastSectionNumber != Sym.getSectionNumber());
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SymbolBody *Body = nullptr;
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if (Sym.isUndefined()) {
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Body = createUndefined(Sym);
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} else if (Sym.isWeakExternal()) {
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Body = createWeakExternal(Sym, AuxP);
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} else {
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Body = createDefined(Sym, AuxP, IsFirst);
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}
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if (Body) {
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SymbolBodies.push_back(Body);
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SparseSymbolBodies[I] = Body;
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}
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I += Sym.getNumberOfAuxSymbols();
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LastSectionNumber = Sym.getSectionNumber();
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}
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return std::error_code();
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}
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Undefined *ObjectFile::createUndefined(COFFSymbolRef Sym) {
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StringRef Name;
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COFFObj->getSymbolName(Sym, Name);
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return new (Alloc) Undefined(Name);
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}
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Undefined *ObjectFile::createWeakExternal(COFFSymbolRef Sym, const void *AuxP) {
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StringRef Name;
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COFFObj->getSymbolName(Sym, Name);
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auto *Aux = (const coff_aux_weak_external *)AuxP;
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return new (Alloc) Undefined(Name, &SparseSymbolBodies[Aux->TagIndex]);
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}
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Defined *ObjectFile::createDefined(COFFSymbolRef Sym, const void *AuxP,
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bool IsFirst) {
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StringRef Name;
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if (Sym.isCommon()) {
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auto *C = new (Alloc) CommonChunk(Sym);
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Chunks.push_back(C);
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return new (Alloc) DefinedCommon(this, Sym, C);
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}
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if (Sym.isAbsolute()) {
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COFFObj->getSymbolName(Sym, Name);
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// Skip special symbols.
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if (Name == "@comp.id" || Name == "@feat.00")
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return nullptr;
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return new (Alloc) DefinedAbsolute(Name, Sym);
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}
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if (Sym.getSectionNumber() == llvm::COFF::IMAGE_SYM_DEBUG)
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return nullptr;
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// Nothing else to do without a section chunk.
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auto *SC = cast_or_null<SectionChunk>(SparseChunks[Sym.getSectionNumber()]);
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if (!SC)
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return nullptr;
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// Handle associative sections
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if (IsFirst && AuxP) {
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auto *Aux = reinterpret_cast<const coff_aux_section_definition *>(AuxP);
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if (Aux->Selection == IMAGE_COMDAT_SELECT_ASSOCIATIVE)
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if (auto *ParentSC = cast_or_null<SectionChunk>(
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SparseChunks[Aux->getNumber(Sym.isBigObj())]))
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ParentSC->addAssociative(SC);
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}
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auto *B = new (Alloc) DefinedRegular(this, Sym, SC);
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if (SC->isCOMDAT() && Sym.getValue() == 0 && !AuxP)
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SC->setSymbol(B);
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return B;
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}
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std::error_code ImportFile::parse() {
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const char *Buf = MB.getBufferStart();
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const char *End = MB.getBufferEnd();
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const auto *Hdr = reinterpret_cast<const coff_import_header *>(Buf);
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// Check if the total size is valid.
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if ((size_t)(End - Buf) != (sizeof(*Hdr) + Hdr->SizeOfData)) {
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llvm::errs() << "broken import library\n";
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return make_error_code(LLDError::BrokenFile);
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}
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// Read names and create an __imp_ symbol.
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StringRef Name = StringAlloc.save(StringRef(Buf + sizeof(*Hdr)));
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StringRef ImpName = StringAlloc.save(Twine("__imp_") + Name);
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StringRef DLLName(Buf + sizeof(coff_import_header) + Name.size() + 1);
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StringRef ExternalName = Name;
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if (Hdr->getNameType() == llvm::COFF::IMPORT_ORDINAL)
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ExternalName = "";
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auto *ImpSym = new (Alloc) DefinedImportData(DLLName, ImpName, ExternalName,
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Hdr);
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SymbolBodies.push_back(ImpSym);
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// If type is function, we need to create a thunk which jump to an
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// address pointed by the __imp_ symbol. (This allows you to call
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// DLL functions just like regular non-DLL functions.)
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if (Hdr->getType() == llvm::COFF::IMPORT_CODE)
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SymbolBodies.push_back(new (Alloc) DefinedImportThunk(Name, ImpSym));
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return std::error_code();
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}
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std::error_code BitcodeFile::parse() {
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std::string Err;
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M.reset(LTOModule::createFromBuffer(MB.getBufferStart(),
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MB.getBufferSize(),
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llvm::TargetOptions(), Err));
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if (!Err.empty()) {
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llvm::errs() << Err << '\n';
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return make_error_code(LLDError::BrokenFile);
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}
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llvm::BumpPtrStringSaver Saver(Alloc);
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for (unsigned I = 0, E = M->getSymbolCount(); I != E; ++I) {
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lto_symbol_attributes Attrs = M->getSymbolAttributes(I);
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if ((Attrs & LTO_SYMBOL_SCOPE_MASK) == LTO_SYMBOL_SCOPE_INTERNAL)
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continue;
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StringRef SymName = Saver.save(M->getSymbolName(I));
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int SymbolDef = Attrs & LTO_SYMBOL_DEFINITION_MASK;
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if (SymbolDef == LTO_SYMBOL_DEFINITION_UNDEFINED) {
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SymbolBodies.push_back(new (Alloc) Undefined(SymName));
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} else {
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bool Replaceable = (SymbolDef == LTO_SYMBOL_DEFINITION_TENTATIVE ||
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(Attrs & LTO_SYMBOL_COMDAT));
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SymbolBodies.push_back(new (Alloc) DefinedBitcode(this, SymName,
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Replaceable));
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}
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}
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Directives = M->getLinkerOpts();
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return std::error_code();
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}
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} // namespace coff
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} // namespace lld
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