if (AI.isIndirect()) {
assert(!AI.getPaddingType() &&
- "Unepxected PaddingType seen in arginfo in generic VAArg emitter!");
+ "Unexpected PaddingType seen in arginfo in generic VAArg emitter!");
assert(
!AI.getIndirectRealign() &&
- "Unepxected IndirectRealign seen in arginfo in generic VAArg emitter!");
+ "Unexpected IndirectRealign seen in arginfo in generic VAArg emitter!");
auto TyInfo = CGF.getContext().getTypeInfoInChars(Ty);
CharUnits TyAlignForABI = TyInfo.second;
"Unexpected ArgInfo Kind in generic VAArg emitter!");
assert(!AI.getInReg() &&
- "Unepxected InReg seen in arginfo in generic VAArg emitter!");
+ "Unexpected InReg seen in arginfo in generic VAArg emitter!");
assert(!AI.getPaddingType() &&
- "Unepxected PaddingType seen in arginfo in generic VAArg emitter!");
+ "Unexpected PaddingType seen in arginfo in generic VAArg emitter!");
assert(!AI.getDirectOffset() &&
- "Unepxected DirectOffset seen in arginfo in generic VAArg emitter!");
+ "Unexpected DirectOffset seen in arginfo in generic VAArg emitter!");
assert(!AI.getCoerceToType() &&
- "Unepxected CoerceToType seen in arginfo in generic VAArg emitter!");
+ "Unexpected CoerceToType seen in arginfo in generic VAArg emitter!");
Address Temp = CGF.CreateMemTemp(Ty, "varet");
Val = CGF.Builder.CreateVAArg(VAListAddr.getPointer(), CGF.ConvertType(Ty));
ABIArgInfo classifyArgumentType(QualType Ty) const;
// DefaultABIInfo's classifyReturnType and classifyArgumentType are
- // non-virtual, but computeInfo and EmitVAArg is virtual, so we
+ // non-virtual, but computeInfo and EmitVAArg are virtual, so we
// overload them.
void computeInfo(CGFunctionInfo &FI) const override {
if (!getCXXABI().classifyReturnType(FI))