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Implement: isLosslesslyConvertableTo and new CompositeType base class
llvm-svn: 1347
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@ -67,6 +67,57 @@ const Type *Type::getPrimitiveType(PrimitiveID IDNumber) {
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}
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}
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// isLosslesslyConvertableTo - Return true if this type can be converted to
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// 'Ty' without any reinterpretation of bits. For example, uint to int.
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//
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bool Type::isLosslesslyConvertableTo(const Type *Ty) const {
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if (this == Ty) return true;
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if ((!isPrimitiveType() && !Ty->isPointerType()) ||
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(!isPointerType() && !Ty->isPrimitiveType())) return false;
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if (getPrimitiveID() == Ty->getPrimitiveID())
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return true; // Handles identity cast, and cast of differing pointer types
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// Now we know that they are two differing primitive or pointer types
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switch (getPrimitiveID()) {
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case Type::UByteTyID: return Ty == Type::SByteTy;
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case Type::SByteTyID: return Ty == Type::UByteTy;
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case Type::UShortTyID: return Ty == Type::ShortTy;
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case Type::ShortTyID: return Ty == Type::UShortTy;
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case Type::UIntTyID: return Ty == Type::IntTy;
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case Type::IntTyID: return Ty == Type::UIntTy;
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case Type::ULongTyID:
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case Type::LongTyID:
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case Type::PointerTyID:
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return Ty == Type::ULongTy || Ty == Type::LongTy ||
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Ty->getPrimitiveID() == Type::PointerTyID;
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default:
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return false; // Other types have no identity values
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}
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}
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bool StructType::indexValid(const Value *V) const {
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if (!isa<ConstPoolVal>(V)) return false;
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if (V->getType() != Type::UByteTy) return false;
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unsigned Idx = cast<ConstPoolUInt>(V)->getValue();
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return Idx < ETypes.size();
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}
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// getTypeAtIndex - Given an index value into the type, return the type of the
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// element. For a structure type, this must be a constant value...
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//
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const Type *StructType::getTypeAtIndex(const Value *V) const {
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assert(isa<ConstPoolVal>(V) && "Structure index must be a constant!!");
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assert(V->getType() == Type::UByteTy && "Structure index must be ubyte!");
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unsigned Idx = cast<ConstPoolUInt>(V)->getValue();
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assert(Idx < ETypes.size() && "Structure index out of range!");
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assert(indexValid(V) && "Invalid structure index!"); // Duplicate check
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return ETypes[Idx];
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}
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//===----------------------------------------------------------------------===//
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// Auxilliary classes
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//===----------------------------------------------------------------------===//
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@ -147,13 +198,13 @@ MethodType::MethodType(const Type *Result, const vector<const Type*> &Params,
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}
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ArrayType::ArrayType(const Type *ElType, int NumEl)
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: DerivedType("", ArrayTyID), ElementType(PATypeHandle<Type>(ElType, this)) {
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: CompositeType("", ArrayTyID), ElementType(PATypeHandle<Type>(ElType, this)){
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NumElements = NumEl;
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setDerivedTypeProperties();
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}
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StructType::StructType(const vector<const Type*> &Types)
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: DerivedType("", StructTyID) {
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: CompositeType("", StructTyID) {
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ETypes.reserve(Types.size());
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for (unsigned i = 0; i < Types.size(); ++i) {
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assert(Types[i] != Type::VoidTy && "Void type in method prototype!!");
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