MCExpr(const MCExpr&); // DO NOT IMPLEMENT
void operator=(const MCExpr&); // DO NOT IMPLEMENT
+ bool EvaluateAsAbsolute(int64_t &Res, const MCAssembler *Asm,
+ const MCAsmLayout *Layout) const;
protected:
explicit MCExpr(ExprKind _Kind) : Kind(_Kind) {}
/// evaluated.
/// @result - True on success.
bool EvaluateAsAbsolute(int64_t &Res) const;
- bool EvaluateAsAbsolute(int64_t &Res, const MCAssembler *Asm) const;
- bool EvaluateAsAbsolute(int64_t &Res, const MCAsmLayout *Layout) const;
- bool EvaluateAsAbsolute(int64_t &Res, const MCAssembler *Asm,
- const MCAsmLayout *Layout) const;
+ bool EvaluateAsAbsolute(int64_t &Res, const MCAssembler &Asm) const;
+ bool EvaluateAsAbsolute(int64_t &Res, const MCAsmLayout &Layout) const;
/// EvaluateAsRelocatable - Try to evaluate the expression to a relocatable
/// value, i.e. an expression of the fixed form (a - b + constant).
MCAsmLayout &Layout,
MCOrgFragment &OF) {
int64_t TargetLocation;
- if (!OF.getOffset().EvaluateAsAbsolute(TargetLocation, &Layout))
+ if (!OF.getOffset().EvaluateAsAbsolute(TargetLocation, Layout))
report_fatal_error("expected assembly-time absolute expression");
// FIXME: We need a way to communicate this error.
MCLEBFragment &LF) {
int64_t Value = 0;
uint64_t OldSize = LF.getContents().size();
- LF.getValue().EvaluateAsAbsolute(Value, &Layout);
+ LF.getValue().EvaluateAsAbsolute(Value, Layout);
SmallString<8> &Data = LF.getContents();
Data.clear();
raw_svector_ostream OSE(Data);
MCDwarfLineAddrFragment &DF) {
int64_t AddrDelta = 0;
uint64_t OldSize = DF.getContents().size();
- DF.getAddrDelta().EvaluateAsAbsolute(AddrDelta, &Layout);
+ DF.getAddrDelta().EvaluateAsAbsolute(AddrDelta, Layout);
int64_t LineDelta;
LineDelta = DF.getLineDelta();
SmallString<8> &Data = DF.getContents();
}
bool MCExpr::EvaluateAsAbsolute(int64_t &Res,
- const MCAsmLayout *Layout) const {
- if (Layout)
- return EvaluateAsAbsolute(Res, &Layout->getAssembler(), Layout);
- else
- return EvaluateAsAbsolute(Res, 0, 0);
+ const MCAsmLayout &Layout) const {
+ return EvaluateAsAbsolute(Res, &Layout.getAssembler(), &Layout);
}
-bool MCExpr::EvaluateAsAbsolute(int64_t &Res, const MCAssembler *Asm) const {
- return EvaluateAsAbsolute(Res, Asm, 0);
+bool MCExpr::EvaluateAsAbsolute(int64_t &Res, const MCAssembler &Asm) const {
+ return EvaluateAsAbsolute(Res, &Asm, 0);
}
bool MCExpr::EvaluateAsAbsolute(int64_t &Res, const MCAssembler *Asm,
// Avoid fixups when possible.
int64_t AbsValue;
- if (AddValueSymbols(Value)->EvaluateAsAbsolute(AbsValue, &getAssembler())) {
+ if (AddValueSymbols(Value)->EvaluateAsAbsolute(AbsValue, getAssembler())) {
EmitIntValue(AbsValue, Size, AddrSpace);
return;
}
void MCObjectStreamer::EmitULEB128Value(const MCExpr *Value,
unsigned AddrSpace) {
int64_t IntValue;
- if (Value->EvaluateAsAbsolute(IntValue, &getAssembler())) {
+ if (Value->EvaluateAsAbsolute(IntValue, getAssembler())) {
EmitULEB128IntValue(IntValue, AddrSpace);
return;
}
void MCObjectStreamer::EmitSLEB128Value(const MCExpr *Value,
unsigned AddrSpace) {
int64_t IntValue;
- if (Value->EvaluateAsAbsolute(IntValue, &getAssembler())) {
+ if (Value->EvaluateAsAbsolute(IntValue, getAssembler())) {
EmitSLEB128IntValue(IntValue, AddrSpace);
return;
}
MCBinaryExpr::Create(MCBinaryExpr::Sub, LabelRef, LastLabelRef,
getContext());
int64_t Res;
- if (AddrDelta->EvaluateAsAbsolute(Res, &getAssembler())) {
+ if (AddrDelta->EvaluateAsAbsolute(Res, getAssembler())) {
MCDwarfLineAddr::Emit(this, LineDelta, Res);
return;
}