524 lines
18 KiB
C++
524 lines
18 KiB
C++
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//===- MCMachOStreamer.cpp - MachO Streamer -------------------------------===//
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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/ADT/DenseMap.h"
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#include "llvm/ADT/SmallString.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/ADT/Triple.h"
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#include "llvm/MC/MCAsmBackend.h"
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#include "llvm/MC/MCAssembler.h"
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#include "llvm/MC/MCCodeEmitter.h"
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#include "llvm/MC/MCContext.h"
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#include "llvm/MC/MCDirectives.h"
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#include "llvm/MC/MCExpr.h"
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#include "llvm/MC/MCFixup.h"
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#include "llvm/MC/MCFragment.h"
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#include "llvm/MC/MCInst.h"
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#include "llvm/MC/MCLinkerOptimizationHint.h"
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#include "llvm/MC/MCObjectFileInfo.h"
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#include "llvm/MC/MCObjectStreamer.h"
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#include "llvm/MC/MCObjectWriter.h"
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#include "llvm/MC/MCSection.h"
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#include "llvm/MC/MCSectionMachO.h"
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#include "llvm/MC/MCStreamer.h"
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#include "llvm/MC/MCSymbol.h"
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#include "llvm/MC/MCSymbolMachO.h"
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#include "llvm/MC/MCValue.h"
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#include "llvm/Support/Casting.h"
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#include "llvm/Support/ErrorHandling.h"
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#include "llvm/Support/TargetRegistry.h"
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#include "llvm/Support/raw_ostream.h"
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#include <cassert>
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#include <vector>
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using namespace llvm;
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namespace {
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class MCMachOStreamer : public MCObjectStreamer {
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private:
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/// LabelSections - true if each section change should emit a linker local
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/// label for use in relocations for assembler local references. Obviates the
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/// need for local relocations. False by default.
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bool LabelSections;
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bool DWARFMustBeAtTheEnd;
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bool CreatedADWARFSection;
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/// HasSectionLabel - map of which sections have already had a non-local
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/// label emitted to them. Used so we don't emit extraneous linker local
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/// labels in the middle of the section.
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DenseMap<const MCSection*, bool> HasSectionLabel;
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void emitInstToData(const MCInst &Inst, const MCSubtargetInfo &STI) override;
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void emitDataRegion(DataRegionData::KindTy Kind);
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void emitDataRegionEnd();
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public:
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MCMachOStreamer(MCContext &Context, std::unique_ptr<MCAsmBackend> MAB,
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std::unique_ptr<MCObjectWriter> OW,
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std::unique_ptr<MCCodeEmitter> Emitter,
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bool DWARFMustBeAtTheEnd, bool label)
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: MCObjectStreamer(Context, std::move(MAB), std::move(OW),
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std::move(Emitter)),
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LabelSections(label), DWARFMustBeAtTheEnd(DWARFMustBeAtTheEnd),
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CreatedADWARFSection(false) {}
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/// state management
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void reset() override {
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CreatedADWARFSection = false;
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HasSectionLabel.clear();
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MCObjectStreamer::reset();
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}
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/// @name MCStreamer Interface
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/// @{
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void changeSection(MCSection *Sect, const MCExpr *Subsect) override;
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void emitLabel(MCSymbol *Symbol, SMLoc Loc = SMLoc()) override;
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void emitAssignment(MCSymbol *Symbol, const MCExpr *Value) override;
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void emitEHSymAttributes(const MCSymbol *Symbol, MCSymbol *EHSymbol) override;
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void emitAssemblerFlag(MCAssemblerFlag Flag) override;
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void emitLinkerOptions(ArrayRef<std::string> Options) override;
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void emitDataRegion(MCDataRegionType Kind) override;
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void emitVersionMin(MCVersionMinType Kind, unsigned Major, unsigned Minor,
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unsigned Update, VersionTuple SDKVersion) override;
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void emitBuildVersion(unsigned Platform, unsigned Major, unsigned Minor,
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unsigned Update, VersionTuple SDKVersion) override;
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void emitThumbFunc(MCSymbol *Func) override;
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bool emitSymbolAttribute(MCSymbol *Symbol, MCSymbolAttr Attribute) override;
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void emitSymbolDesc(MCSymbol *Symbol, unsigned DescValue) override;
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void emitCommonSymbol(MCSymbol *Symbol, uint64_t Size,
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unsigned ByteAlignment) override;
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void emitLocalCommonSymbol(MCSymbol *Symbol, uint64_t Size,
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unsigned ByteAlignment) override;
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void emitZerofill(MCSection *Section, MCSymbol *Symbol = nullptr,
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uint64_t Size = 0, unsigned ByteAlignment = 0,
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SMLoc Loc = SMLoc()) override;
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void emitTBSSSymbol(MCSection *Section, MCSymbol *Symbol, uint64_t Size,
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unsigned ByteAlignment = 0) override;
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void emitIdent(StringRef IdentString) override {
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llvm_unreachable("macho doesn't support this directive");
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}
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void emitLOHDirective(MCLOHType Kind, const MCLOHArgs &Args) override {
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getAssembler().getLOHContainer().addDirective(Kind, Args);
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}
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void finishImpl() override;
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};
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} // end anonymous namespace.
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static bool canGoAfterDWARF(const MCSectionMachO &MSec) {
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// These sections are created by the assembler itself after the end of
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// the .s file.
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StringRef SegName = MSec.getSegmentName();
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StringRef SecName = MSec.getName();
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if (SegName == "__LD" && SecName == "__compact_unwind")
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return true;
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if (SegName == "__IMPORT") {
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if (SecName == "__jump_table")
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return true;
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if (SecName == "__pointers")
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return true;
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}
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if (SegName == "__TEXT" && SecName == "__eh_frame")
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return true;
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if (SegName == "__DATA" && (SecName == "__nl_symbol_ptr" ||
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SecName == "__thread_ptr"))
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return true;
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return false;
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}
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void MCMachOStreamer::changeSection(MCSection *Section,
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const MCExpr *Subsection) {
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// Change the section normally.
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bool Created = changeSectionImpl(Section, Subsection);
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const MCSectionMachO &MSec = *cast<MCSectionMachO>(Section);
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StringRef SegName = MSec.getSegmentName();
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if (SegName == "__DWARF")
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CreatedADWARFSection = true;
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else if (Created && DWARFMustBeAtTheEnd && !canGoAfterDWARF(MSec))
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assert((!CreatedADWARFSection ||
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Section == getContext().getObjectFileInfo()->getStackMapSection())
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&& "Creating regular section after DWARF");
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// Output a linker-local symbol so we don't need section-relative local
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// relocations. The linker hates us when we do that.
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if (LabelSections && !HasSectionLabel[Section] &&
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!Section->getBeginSymbol()) {
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MCSymbol *Label = getContext().createLinkerPrivateTempSymbol();
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Section->setBeginSymbol(Label);
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HasSectionLabel[Section] = true;
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}
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}
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void MCMachOStreamer::emitEHSymAttributes(const MCSymbol *Symbol,
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MCSymbol *EHSymbol) {
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getAssembler().registerSymbol(*Symbol);
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if (Symbol->isExternal())
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emitSymbolAttribute(EHSymbol, MCSA_Global);
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if (cast<MCSymbolMachO>(Symbol)->isWeakDefinition())
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emitSymbolAttribute(EHSymbol, MCSA_WeakDefinition);
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if (Symbol->isPrivateExtern())
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emitSymbolAttribute(EHSymbol, MCSA_PrivateExtern);
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}
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void MCMachOStreamer::emitLabel(MCSymbol *Symbol, SMLoc Loc) {
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// We have to create a new fragment if this is an atom defining symbol,
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// fragments cannot span atoms.
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if (getAssembler().isSymbolLinkerVisible(*Symbol))
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insert(new MCDataFragment());
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MCObjectStreamer::emitLabel(Symbol, Loc);
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// This causes the reference type flag to be cleared. Darwin 'as' was "trying"
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// to clear the weak reference and weak definition bits too, but the
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// implementation was buggy. For now we just try to match 'as', for
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// diffability.
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//
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// FIXME: Cleanup this code, these bits should be emitted based on semantic
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// properties, not on the order of definition, etc.
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cast<MCSymbolMachO>(Symbol)->clearReferenceType();
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}
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void MCMachOStreamer::emitAssignment(MCSymbol *Symbol, const MCExpr *Value) {
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MCValue Res;
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if (Value->evaluateAsRelocatable(Res, nullptr, nullptr)) {
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if (const MCSymbolRefExpr *SymAExpr = Res.getSymA()) {
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const MCSymbol &SymA = SymAExpr->getSymbol();
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if (!Res.getSymB() && (SymA.getName() == "" || Res.getConstant() != 0))
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cast<MCSymbolMachO>(Symbol)->setAltEntry();
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}
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}
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MCObjectStreamer::emitAssignment(Symbol, Value);
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}
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void MCMachOStreamer::emitDataRegion(DataRegionData::KindTy Kind) {
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// Create a temporary label to mark the start of the data region.
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MCSymbol *Start = getContext().createTempSymbol();
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emitLabel(Start);
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// Record the region for the object writer to use.
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DataRegionData Data = { Kind, Start, nullptr };
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std::vector<DataRegionData> &Regions = getAssembler().getDataRegions();
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Regions.push_back(Data);
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}
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void MCMachOStreamer::emitDataRegionEnd() {
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std::vector<DataRegionData> &Regions = getAssembler().getDataRegions();
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assert(!Regions.empty() && "Mismatched .end_data_region!");
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DataRegionData &Data = Regions.back();
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assert(!Data.End && "Mismatched .end_data_region!");
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// Create a temporary label to mark the end of the data region.
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Data.End = getContext().createTempSymbol();
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emitLabel(Data.End);
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}
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void MCMachOStreamer::emitAssemblerFlag(MCAssemblerFlag Flag) {
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// Let the target do whatever target specific stuff it needs to do.
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getAssembler().getBackend().handleAssemblerFlag(Flag);
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// Do any generic stuff we need to do.
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switch (Flag) {
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case MCAF_SyntaxUnified: return; // no-op here.
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case MCAF_Code16: return; // Change parsing mode; no-op here.
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case MCAF_Code32: return; // Change parsing mode; no-op here.
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case MCAF_Code64: return; // Change parsing mode; no-op here.
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case MCAF_SubsectionsViaSymbols:
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getAssembler().setSubsectionsViaSymbols(true);
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return;
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}
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}
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void MCMachOStreamer::emitLinkerOptions(ArrayRef<std::string> Options) {
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getAssembler().getLinkerOptions().push_back(Options);
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}
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void MCMachOStreamer::emitDataRegion(MCDataRegionType Kind) {
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switch (Kind) {
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case MCDR_DataRegion:
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emitDataRegion(DataRegionData::Data);
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return;
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case MCDR_DataRegionJT8:
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emitDataRegion(DataRegionData::JumpTable8);
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return;
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case MCDR_DataRegionJT16:
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emitDataRegion(DataRegionData::JumpTable16);
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return;
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case MCDR_DataRegionJT32:
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emitDataRegion(DataRegionData::JumpTable32);
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return;
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case MCDR_DataRegionEnd:
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emitDataRegionEnd();
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return;
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}
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}
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void MCMachOStreamer::emitVersionMin(MCVersionMinType Kind, unsigned Major,
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unsigned Minor, unsigned Update,
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VersionTuple SDKVersion) {
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getAssembler().setVersionMin(Kind, Major, Minor, Update, SDKVersion);
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}
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void MCMachOStreamer::emitBuildVersion(unsigned Platform, unsigned Major,
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unsigned Minor, unsigned Update,
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VersionTuple SDKVersion) {
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getAssembler().setBuildVersion((MachO::PlatformType)Platform, Major, Minor,
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Update, SDKVersion);
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}
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void MCMachOStreamer::emitThumbFunc(MCSymbol *Symbol) {
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// Remember that the function is a thumb function. Fixup and relocation
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// values will need adjusted.
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getAssembler().setIsThumbFunc(Symbol);
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cast<MCSymbolMachO>(Symbol)->setThumbFunc();
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}
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bool MCMachOStreamer::emitSymbolAttribute(MCSymbol *Sym,
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MCSymbolAttr Attribute) {
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MCSymbolMachO *Symbol = cast<MCSymbolMachO>(Sym);
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// Indirect symbols are handled differently, to match how 'as' handles
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// them. This makes writing matching .o files easier.
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if (Attribute == MCSA_IndirectSymbol) {
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// Note that we intentionally cannot use the symbol data here; this is
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// important for matching the string table that 'as' generates.
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IndirectSymbolData ISD;
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ISD.Symbol = Symbol;
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ISD.Section = getCurrentSectionOnly();
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getAssembler().getIndirectSymbols().push_back(ISD);
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return true;
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}
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// Adding a symbol attribute always introduces the symbol, note that an
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// important side effect of calling registerSymbol here is to register
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// the symbol with the assembler.
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getAssembler().registerSymbol(*Symbol);
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// The implementation of symbol attributes is designed to match 'as', but it
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// leaves much to desired. It doesn't really make sense to arbitrarily add and
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// remove flags, but 'as' allows this (in particular, see .desc).
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//
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// In the future it might be worth trying to make these operations more well
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// defined.
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switch (Attribute) {
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case MCSA_Invalid:
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case MCSA_ELF_TypeFunction:
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case MCSA_ELF_TypeIndFunction:
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case MCSA_ELF_TypeObject:
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case MCSA_ELF_TypeTLS:
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case MCSA_ELF_TypeCommon:
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case MCSA_ELF_TypeNoType:
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case MCSA_ELF_TypeGnuUniqueObject:
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case MCSA_Extern:
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case MCSA_Hidden:
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case MCSA_IndirectSymbol:
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case MCSA_Internal:
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case MCSA_Protected:
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case MCSA_Weak:
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case MCSA_Local:
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case MCSA_LGlobal:
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return false;
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case MCSA_Global:
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Symbol->setExternal(true);
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// This effectively clears the undefined lazy bit, in Darwin 'as', although
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// it isn't very consistent because it implements this as part of symbol
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// lookup.
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//
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// FIXME: Cleanup this code, these bits should be emitted based on semantic
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// properties, not on the order of definition, etc.
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Symbol->setReferenceTypeUndefinedLazy(false);
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break;
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case MCSA_LazyReference:
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// FIXME: This requires -dynamic.
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Symbol->setNoDeadStrip();
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if (Symbol->isUndefined())
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Symbol->setReferenceTypeUndefinedLazy(true);
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break;
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// Since .reference sets the no dead strip bit, it is equivalent to
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// .no_dead_strip in practice.
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case MCSA_Reference:
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case MCSA_NoDeadStrip:
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Symbol->setNoDeadStrip();
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break;
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case MCSA_SymbolResolver:
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Symbol->setSymbolResolver();
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break;
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case MCSA_AltEntry:
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Symbol->setAltEntry();
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break;
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case MCSA_PrivateExtern:
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Symbol->setExternal(true);
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Symbol->setPrivateExtern(true);
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break;
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case MCSA_WeakReference:
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// FIXME: This requires -dynamic.
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if (Symbol->isUndefined())
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Symbol->setWeakReference();
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break;
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case MCSA_WeakDefinition:
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// FIXME: 'as' enforces that this is defined and global. The manual claims
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// it has to be in a coalesced section, but this isn't enforced.
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Symbol->setWeakDefinition();
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break;
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case MCSA_WeakDefAutoPrivate:
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Symbol->setWeakDefinition();
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Symbol->setWeakReference();
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break;
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case MCSA_Cold:
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Symbol->setCold();
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break;
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}
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return true;
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}
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void MCMachOStreamer::emitSymbolDesc(MCSymbol *Symbol, unsigned DescValue) {
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// Encode the 'desc' value into the lowest implementation defined bits.
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getAssembler().registerSymbol(*Symbol);
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cast<MCSymbolMachO>(Symbol)->setDesc(DescValue);
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}
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void MCMachOStreamer::emitCommonSymbol(MCSymbol *Symbol, uint64_t Size,
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unsigned ByteAlignment) {
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// FIXME: Darwin 'as' does appear to allow redef of a .comm by itself.
|
||
|
assert(Symbol->isUndefined() && "Cannot define a symbol twice!");
|
||
|
|
||
|
getAssembler().registerSymbol(*Symbol);
|
||
|
Symbol->setExternal(true);
|
||
|
Symbol->setCommon(Size, ByteAlignment);
|
||
|
}
|
||
|
|
||
|
void MCMachOStreamer::emitLocalCommonSymbol(MCSymbol *Symbol, uint64_t Size,
|
||
|
unsigned ByteAlignment) {
|
||
|
// '.lcomm' is equivalent to '.zerofill'.
|
||
|
return emitZerofill(getContext().getObjectFileInfo()->getDataBSSSection(),
|
||
|
Symbol, Size, ByteAlignment);
|
||
|
}
|
||
|
|
||
|
void MCMachOStreamer::emitZerofill(MCSection *Section, MCSymbol *Symbol,
|
||
|
uint64_t Size, unsigned ByteAlignment,
|
||
|
SMLoc Loc) {
|
||
|
// On darwin all virtual sections have zerofill type. Disallow the usage of
|
||
|
// .zerofill in non-virtual functions. If something similar is needed, use
|
||
|
// .space or .zero.
|
||
|
if (!Section->isVirtualSection()) {
|
||
|
getContext().reportError(
|
||
|
Loc, "The usage of .zerofill is restricted to sections of "
|
||
|
"ZEROFILL type. Use .zero or .space instead.");
|
||
|
return; // Early returning here shouldn't harm. EmitZeros should work on any
|
||
|
// section.
|
||
|
}
|
||
|
|
||
|
PushSection();
|
||
|
SwitchSection(Section);
|
||
|
|
||
|
// The symbol may not be present, which only creates the section.
|
||
|
if (Symbol) {
|
||
|
emitValueToAlignment(ByteAlignment, 0, 1, 0);
|
||
|
emitLabel(Symbol);
|
||
|
emitZeros(Size);
|
||
|
}
|
||
|
PopSection();
|
||
|
}
|
||
|
|
||
|
// This should always be called with the thread local bss section. Like the
|
||
|
// .zerofill directive this doesn't actually switch sections on us.
|
||
|
void MCMachOStreamer::emitTBSSSymbol(MCSection *Section, MCSymbol *Symbol,
|
||
|
uint64_t Size, unsigned ByteAlignment) {
|
||
|
emitZerofill(Section, Symbol, Size, ByteAlignment);
|
||
|
}
|
||
|
|
||
|
void MCMachOStreamer::emitInstToData(const MCInst &Inst,
|
||
|
const MCSubtargetInfo &STI) {
|
||
|
MCDataFragment *DF = getOrCreateDataFragment();
|
||
|
|
||
|
SmallVector<MCFixup, 4> Fixups;
|
||
|
SmallString<256> Code;
|
||
|
raw_svector_ostream VecOS(Code);
|
||
|
getAssembler().getEmitter().encodeInstruction(Inst, VecOS, Fixups, STI);
|
||
|
|
||
|
// Add the fixups and data.
|
||
|
for (MCFixup &Fixup : Fixups) {
|
||
|
Fixup.setOffset(Fixup.getOffset() + DF->getContents().size());
|
||
|
DF->getFixups().push_back(Fixup);
|
||
|
}
|
||
|
DF->setHasInstructions(STI);
|
||
|
DF->getContents().append(Code.begin(), Code.end());
|
||
|
}
|
||
|
|
||
|
void MCMachOStreamer::finishImpl() {
|
||
|
emitFrames(&getAssembler().getBackend());
|
||
|
|
||
|
// We have to set the fragment atom associations so we can relax properly for
|
||
|
// Mach-O.
|
||
|
|
||
|
// First, scan the symbol table to build a lookup table from fragments to
|
||
|
// defining symbols.
|
||
|
DenseMap<const MCFragment *, const MCSymbol *> DefiningSymbolMap;
|
||
|
for (const MCSymbol &Symbol : getAssembler().symbols()) {
|
||
|
if (getAssembler().isSymbolLinkerVisible(Symbol) && Symbol.isInSection() &&
|
||
|
!Symbol.isVariable()) {
|
||
|
// An atom defining symbol should never be internal to a fragment.
|
||
|
assert(Symbol.getOffset() == 0 &&
|
||
|
"Invalid offset in atom defining symbol!");
|
||
|
DefiningSymbolMap[Symbol.getFragment()] = &Symbol;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
// Set the fragment atom associations by tracking the last seen atom defining
|
||
|
// symbol.
|
||
|
for (MCSection &Sec : getAssembler()) {
|
||
|
const MCSymbol *CurrentAtom = nullptr;
|
||
|
for (MCFragment &Frag : Sec) {
|
||
|
if (const MCSymbol *Symbol = DefiningSymbolMap.lookup(&Frag))
|
||
|
CurrentAtom = Symbol;
|
||
|
Frag.setAtom(CurrentAtom);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
this->MCObjectStreamer::finishImpl();
|
||
|
}
|
||
|
|
||
|
MCStreamer *llvm::createMachOStreamer(MCContext &Context,
|
||
|
std::unique_ptr<MCAsmBackend> &&MAB,
|
||
|
std::unique_ptr<MCObjectWriter> &&OW,
|
||
|
std::unique_ptr<MCCodeEmitter> &&CE,
|
||
|
bool RelaxAll, bool DWARFMustBeAtTheEnd,
|
||
|
bool LabelSections) {
|
||
|
MCMachOStreamer *S =
|
||
|
new MCMachOStreamer(Context, std::move(MAB), std::move(OW), std::move(CE),
|
||
|
DWARFMustBeAtTheEnd, LabelSections);
|
||
|
const Triple &Target = Context.getObjectFileInfo()->getTargetTriple();
|
||
|
S->emitVersionForTarget(Target, Context.getObjectFileInfo()->getSDKVersion());
|
||
|
if (RelaxAll)
|
||
|
S->getAssembler().setRelaxAll(true);
|
||
|
return S;
|
||
|
}
|