//
// FIXME: This could all be kept private to the assembler implementation.
- /// HasInstructions - Whether this section has had instructions emitted into
- /// it.
- unsigned HasInstructions : 1;
-
/// Mapping from subsection number to insertion point for subsection numbers
/// below that number.
SmallVector<std::pair<unsigned, MCFragment *>, 1> SubsectionFragmentMap;
MCSection &getSection() const { return *Section; }
- bool hasInstructions() const { return HasInstructions; }
- void setHasInstructions(bool Value) { HasInstructions = Value; }
-
/// \name Fragment Access
/// @{
bool emitAbsoluteSymbolDiff(const MCSymbol *Hi, const MCSymbol *Lo,
unsigned Size) override;
- bool mayHaveInstructions(MCSection &Sec) const override {
- return Assembler->getOrCreateSectionData(Sec).hasInstructions();
- }
+ bool mayHaveInstructions(MCSection &Sec) const override;
};
} // end namespace llvm
/// yet.
bool BundleGroupBeforeFirstInst = false;
+ /// Whether this section has had instructions emitted into it.
+ unsigned HasInstructions : 1;
+
protected:
MCSection(SectionVariant V, SectionKind K, MCSymbol *Begin)
- : Begin(Begin), Variant(V), Kind(K) {}
+ : Begin(Begin), HasInstructions(false), Variant(V), Kind(K) {}
SectionVariant Variant;
SectionKind Kind;
BundleGroupBeforeFirstInst = IsFirst;
}
+ bool hasInstructions() const { return HasInstructions; }
+ void setHasInstructions(bool Value) { HasInstructions = Value; }
+
virtual void PrintSwitchToSection(const MCAsmInfo &MAI, raw_ostream &OS,
const MCExpr *Subsection) const = 0;
MCSectionData::MCSectionData() : Section(nullptr) {}
MCSectionData::MCSectionData(MCSection &Section, MCAssembler *A)
- : Section(&Section), HasInstructions(false) {
+ : Section(&Section) {
if (A)
A->getSectionList().push_back(this);
}
// If bundle aligment is used and there are any instructions in the section, it
// needs to be aligned to at least the bundle size.
-static void setSectionAlignmentForBundling(
- const MCAssembler &Assembler, MCSectionData *Section) {
- if (Assembler.isBundlingEnabled() && Section && Section->hasInstructions() &&
- Section->getSection().getAlignment() < Assembler.getBundleAlignSize())
- Section->getSection().setAlignment(Assembler.getBundleAlignSize());
+static void setSectionAlignmentForBundling(const MCAssembler &Assembler,
+ MCSectionData *SD) {
+ if (!SD)
+ return;
+ MCSection &Section = SD->getSection();
+ if (Assembler.isBundlingEnabled() && Section.hasInstructions() &&
+ Section.getAlignment() < Assembler.getBundleAlignSize())
+ Section.setAlignment(Assembler.getBundleAlignSize());
}
void MCELFStreamer::ChangeSection(MCSection *Section,
MCStreamer::EmitAssignment(Symbol, Value);
}
+bool MCObjectStreamer::mayHaveInstructions(MCSection &Sec) const {
+ return Sec.hasInstructions();
+}
+
void MCObjectStreamer::EmitInstruction(const MCInst &Inst,
const MCSubtargetInfo &STI) {
MCStreamer::EmitInstruction(Inst, STI);
MCSectionData *SD = getCurrentSectionData();
- SD->setHasInstructions(true);
+ SD->getSection().setHasInstructions(true);
// Now that a machine instruction has been assembled into this section, make
// a line entry for any .loc directive that has been seen.
Write32(FileOffset);
unsigned Flags = Section.getTypeAndAttributes();
- if (SD.hasInstructions())
+ if (Section.hasInstructions())
Flags |= MachO::S_ATTR_SOME_INSTRUCTIONS;
assert(isPowerOf2_32(Section.getAlignment()) && "Invalid alignment!");