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https://github.com/intel/llvm.git
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Summary: The COFF linker previously implemented link-time optimization using an API which has now been marked as legacy. This change refactors the COFF linker to use the new LTO API, which is also used by the ELF linker. Reviewers: pcc, ruiu Reviewed By: pcc Subscribers: mgorny, mehdi_amini Differential Revision: https://reviews.llvm.org/D29059 llvm-svn: 293967
407 lines
13 KiB
C++
407 lines
13 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 "InputFiles.h"
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#include "Chunks.h"
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#include "Config.h"
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#include "Driver.h"
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#include "Error.h"
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#include "Memory.h"
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#include "SymbolTable.h"
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#include "Symbols.h"
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#include "llvm-c/lto.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/Triple.h"
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#include "llvm/ADT/Twine.h"
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#include "llvm/Bitcode/BitcodeReader.h"
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#include "llvm/Object/Binary.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/Casting.h"
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#include "llvm/Support/Endian.h"
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#include "llvm/Support/Error.h"
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#include "llvm/Support/ErrorOr.h"
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#include "llvm/Support/FileSystem.h"
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#include "llvm/Target/TargetOptions.h"
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#include <cstring>
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#include <system_error>
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#include <utility>
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using namespace llvm;
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using namespace llvm::COFF;
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using namespace llvm::object;
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using namespace llvm::support::endian;
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using llvm::Triple;
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using llvm::support::ulittle32_t;
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namespace lld {
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namespace coff {
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/// Checks that Source is compatible with being a weak alias to Target.
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/// If Source is Undefined and has no weak alias set, makes it a weak
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/// alias to Target.
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static void checkAndSetWeakAlias(SymbolTable *Symtab, InputFile *F,
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SymbolBody *Source, SymbolBody *Target) {
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auto *U = dyn_cast<Undefined>(Source);
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if (!U)
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return;
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else if (!U->WeakAlias)
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U->WeakAlias = Target;
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else if (U->WeakAlias != Target)
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Symtab->reportDuplicate(Source->symbol(), F);
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}
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ArchiveFile::ArchiveFile(MemoryBufferRef M) : InputFile(ArchiveKind, M) {}
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void ArchiveFile::parse() {
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// Parse a MemoryBufferRef as an archive file.
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File = check(Archive::create(MB), toString(this));
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// Read the symbol table to construct Lazy objects.
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for (const Archive::Symbol &Sym : File->symbols())
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Symtab->addLazy(this, Sym);
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}
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// Returns a buffer pointing to a member file containing a given symbol.
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void ArchiveFile::addMember(const Archive::Symbol *Sym) {
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const Archive::Child &C =
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check(Sym->getMember(),
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"could not get the member for symbol " + Sym->getName());
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// Return an empty buffer if we have already returned the same buffer.
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if (!Seen.insert(C.getChildOffset()).second)
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return;
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Driver->enqueueArchiveMember(C, Sym->getName(), getName());
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}
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void ObjectFile::parse() {
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// Parse a memory buffer as a COFF file.
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std::unique_ptr<Binary> Bin = check(createBinary(MB), toString(this));
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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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fatal(toString(this) + " is not a COFF file");
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}
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// Read section and symbol tables.
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initializeChunks();
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initializeSymbols();
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initializeSEH();
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}
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void 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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fatal(EC, "getSection failed: #" + Twine(I));
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if (auto EC = COFFObj->getSectionName(Sec, Name))
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fatal(EC, "getSectionName failed: #" + Twine(I));
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if (Name == ".sxdata") {
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SXData = Sec;
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continue;
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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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// Object files may have DWARF debug info or MS CodeView debug info
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// (or both).
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//
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// DWARF sections don't need any special handling from the perspective
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// of the linker; they are just a data section containing relocations.
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// We can just link them to complete debug info.
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//
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// CodeView needs a linker support. We need to interpret and debug
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// info, and then write it to a separate .pdb file.
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// Ignore debug info unless /debug is given.
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if (!Config->Debug && Name.startswith(".debug"))
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continue;
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// CodeView sections are stored to a different vector because they are
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// not linked in the regular manner.
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if (Name == ".debug" || Name.startswith(".debug$")) {
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DebugChunks.push_back(new (Alloc) SectionChunk(this, Sec));
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continue;
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}
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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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}
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void 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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SmallVector<std::pair<SymbolBody *, uint32_t>, 8> WeakAliases;
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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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ErrorOr<COFFSymbolRef> SymOrErr = COFFObj->getSymbol(I);
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if (!SymOrErr)
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fatal(SymOrErr.getError(), "broken object file: " + toString(this));
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COFFSymbolRef Sym = *SymOrErr;
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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 = createUndefined(Sym);
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uint32_t TagIndex =
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static_cast<const coff_aux_weak_external *>(AuxP)->TagIndex;
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WeakAliases.emplace_back(Body, TagIndex);
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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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for (auto WeakAlias : WeakAliases)
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checkAndSetWeakAlias(Symtab, this, WeakAlias.first,
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SparseSymbolBodies[WeakAlias.second]);
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}
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SymbolBody *ObjectFile::createUndefined(COFFSymbolRef Sym) {
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StringRef Name;
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COFFObj->getSymbolName(Sym, Name);
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return Symtab->addUndefined(Name, this, Sym.isWeakExternal())->body();
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}
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SymbolBody *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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COFFObj->getSymbolName(Sym, Name);
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Symbol *S =
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Symtab->addCommon(this, Name, Sym.getValue(), Sym.getGeneric(), C);
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return S->body();
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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")
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return nullptr;
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// COFF spec 5.10.1. The .sxdata section.
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if (Name == "@feat.00") {
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if (Sym.getValue() & 1)
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SEHCompat = true;
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return nullptr;
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}
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if (Sym.isExternal())
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return Symtab->addAbsolute(Name, Sym)->body();
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else
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return new (Alloc) DefinedAbsolute(Name, Sym);
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}
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int32_t SectionNumber = Sym.getSectionNumber();
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if (SectionNumber == llvm::COFF::IMAGE_SYM_DEBUG)
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return nullptr;
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// Reserved sections numbers don't have contents.
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if (llvm::COFF::isReservedSectionNumber(SectionNumber))
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fatal("broken object file: " + toString(this));
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// This symbol references a section which is not present in the section
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// header.
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if ((uint32_t)SectionNumber >= SparseChunks.size())
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fatal("broken object file: " + toString(this));
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// Nothing else to do without a section chunk.
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auto *SC = cast_or_null<SectionChunk>(SparseChunks[SectionNumber]);
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if (!SC)
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return nullptr;
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// Handle section definitions
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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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SC->Checksum = Aux->CheckSum;
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}
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DefinedRegular *B;
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if (Sym.isExternal()) {
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COFFObj->getSymbolName(Sym, Name);
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Symbol *S =
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Symtab->addRegular(this, Name, SC->isCOMDAT(), Sym.getGeneric(), SC);
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B = cast<DefinedRegular>(S->body());
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} else
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B = new (Alloc) DefinedRegular(this, /*Name*/ "", SC->isCOMDAT(),
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/*IsExternal*/ false, Sym.getGeneric(), 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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void ObjectFile::initializeSEH() {
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if (!SEHCompat || !SXData)
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return;
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ArrayRef<uint8_t> A;
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COFFObj->getSectionContents(SXData, A);
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if (A.size() % 4 != 0)
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fatal(".sxdata must be an array of symbol table indices");
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auto *I = reinterpret_cast<const ulittle32_t *>(A.data());
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auto *E = reinterpret_cast<const ulittle32_t *>(A.data() + A.size());
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for (; I != E; ++I)
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SEHandlers.insert(SparseSymbolBodies[*I]);
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}
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MachineTypes ObjectFile::getMachineType() {
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if (COFFObj)
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return static_cast<MachineTypes>(COFFObj->getMachine());
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return IMAGE_FILE_MACHINE_UNKNOWN;
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}
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StringRef ltrim1(StringRef S, const char *Chars) {
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if (!S.empty() && strchr(Chars, S[0]))
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return S.substr(1);
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return S;
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}
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void 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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fatal("broken import library");
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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("__imp_" + Name);
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const char *NameStart = Buf + sizeof(coff_import_header) + Name.size() + 1;
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DLLName = StringRef(NameStart);
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StringRef ExtName;
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switch (Hdr->getNameType()) {
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case IMPORT_ORDINAL:
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ExtName = "";
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break;
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case IMPORT_NAME:
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ExtName = Name;
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break;
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case IMPORT_NAME_NOPREFIX:
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ExtName = ltrim1(Name, "?@_");
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break;
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case IMPORT_NAME_UNDECORATE:
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ExtName = ltrim1(Name, "?@_");
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ExtName = ExtName.substr(0, ExtName.find('@'));
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break;
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}
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this->Hdr = Hdr;
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ExternalName = ExtName;
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ImpSym = cast<DefinedImportData>(
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Symtab->addImportData(ImpName, this)->body());
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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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return;
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ThunkSym = cast<DefinedImportThunk>(
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Symtab->addImportThunk(Name, ImpSym, Hdr->Machine)->body());
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}
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void BitcodeFile::parse() {
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Obj = check(lto::InputFile::create(
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MemoryBufferRef(MB.getBuffer(), Saver.save(MB.getBufferIdentifier()))));
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for (const lto::InputFile::Symbol &ObjSym : Obj->symbols()) {
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StringRef SymName = Saver.save(ObjSym.getName());
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auto Flags = ObjSym.getFlags();
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Symbol *Sym;
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if (Flags & object::BasicSymbolRef::SF_Undefined) {
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Sym = Symtab->addUndefined(SymName, this, false);
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} else if (Flags & object::BasicSymbolRef::SF_Common) {
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Sym = Symtab->addCommon(this, SymName, ObjSym.getCommonSize());
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} else if ((Flags & object::BasicSymbolRef::SF_Weak) &&
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(Flags & object::BasicSymbolRef::SF_Indirect)) {
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// Weak external.
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Sym = Symtab->addUndefined(SymName, this, true);
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std::string Fallback = ObjSym.getCOFFWeakExternalFallback();
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SymbolBody *Alias = Symtab->addUndefined(Saver.save(Fallback));
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checkAndSetWeakAlias(Symtab, this, Sym->body(), Alias);
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} else {
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Expected<int> ComdatIndex = ObjSym.getComdatIndex();
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bool IsCOMDAT = ComdatIndex && *ComdatIndex != -1;
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Sym = Symtab->addRegular(this, SymName, IsCOMDAT);
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}
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SymbolBodies.push_back(Sym->body());
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}
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Directives = check(Obj->getLinkerOpts());
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}
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MachineTypes BitcodeFile::getMachineType() {
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Expected<std::string> ET = getBitcodeTargetTriple(MB);
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if (!ET)
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return IMAGE_FILE_MACHINE_UNKNOWN;
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switch (Triple(*ET).getArch()) {
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case Triple::x86_64:
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return AMD64;
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case Triple::x86:
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return I386;
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case Triple::arm:
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return ARMNT;
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default:
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return IMAGE_FILE_MACHINE_UNKNOWN;
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}
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}
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} // namespace coff
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} // namespace lld
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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 lld::toString(coff::InputFile *File) {
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if (!File)
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return "(internal)";
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if (File->ParentName.empty())
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return File->getName().lower();
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std::string Res =
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(getBasename(File->ParentName) + "(" + getBasename(File->getName()) + ")")
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.str();
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return StringRef(Res).lower();
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}
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