//
//===----------------------------------------------------------------------===//
-
#ifndef LLVM_TYPE_H
#define LLVM_TYPE_H
#include "llvm/AbstractTypeUser.h"
-#include "llvm/LLVMContext.h"
#include "llvm/Support/Casting.h"
-#include "llvm/Support/DataTypes.h"
-#include "llvm/System/Atomic.h"
#include "llvm/ADT/GraphTraits.h"
#include <string>
#include <vector>
class TypeMapBase;
class raw_ostream;
class Module;
+class LLVMContext;
/// This file contains the declaration of the Type class. For more "Type" type
/// stuff, look in DerivedTypes.h.
PPC_FP128TyID, ///< 5: 128 bit floating point type (two 64-bits)
LabelTyID, ///< 6: Labels
MetadataTyID, ///< 7: Metadata
+ X86_MMXTyID, ///< 8: MMX vectors (64 bits)
// Derived types... see DerivedTypes.h file...
// Make sure FirstDerivedTyID stays up to date!!!
- IntegerTyID, ///< 8: Arbitrary bit width integers
- FunctionTyID, ///< 9: Functions
- StructTyID, ///< 10: Structures
- ArrayTyID, ///< 11: Arrays
- PointerTyID, ///< 12: Pointers
- OpaqueTyID, ///< 13: Opaque: type with unknown structure
- VectorTyID, ///< 14: SIMD 'packed' format, or other vector type
+ IntegerTyID, ///< 9: Arbitrary bit width integers
+ FunctionTyID, ///< 10: Functions
+ StructTyID, ///< 11: Structures
+ ArrayTyID, ///< 12: Arrays
+ PointerTyID, ///< 13: Pointers
+ OpaqueTyID, ///< 14: Opaque: type with unknown structure
+ VectorTyID, ///< 15: SIMD 'packed' format, or other vector type
NumTypeIDs, // Must remain as last defined ID
- LastPrimitiveTyID = LabelTyID,
+ LastPrimitiveTyID = X86_MMXTyID,
FirstDerivedTyID = IntegerTyID
};
/// has no AbstractTypeUsers, the type is deleted. This is only sensical for
/// derived types.
///
- mutable sys::cas_flag RefCount;
+ mutable unsigned RefCount;
/// Context - This refers to the LLVMContext in which this type was uniqued.
LLVMContext &Context;
// are defined in private classes defined in Type.cpp for primitive types.
//
+ /// getDescription - Return the string representation of the type.
+ std::string getDescription() const;
+
/// getTypeID - Return the type id for the type. This will return one
/// of the TypeID enum elements defined above.
///
/// isPPC_FP128Ty - Return true if this is powerpc long double.
bool isPPC_FP128Ty() const { return ID == PPC_FP128TyID; }
+ /// isFloatingPointTy - Return true if this is one of the five floating point
+ /// types
+ bool isFloatingPointTy() const { return ID == FloatTyID || ID == DoubleTyID ||
+ ID == X86_FP80TyID || ID == FP128TyID || ID == PPC_FP128TyID; }
+
+ /// isX86_MMXTy - Return true if this is X86 MMX.
+ bool isX86_MMXTy() const { return ID == X86_MMXTyID; }
+
+ /// isFPOrFPVectorTy - Return true if this is a FP type or a vector of FP.
+ ///
+ bool isFPOrFPVectorTy() const;
+
/// isLabelTy - Return true if this is 'label'.
bool isLabelTy() const { return ID == LabelTyID; }
/// isMetadataTy - Return true if this is 'metadata'.
bool isMetadataTy() const { return ID == MetadataTyID; }
- /// getDescription - Return the string representation of the type.
- std::string getDescription() const;
-
- /// isInteger - True if this is an instance of IntegerType.
+ /// isIntegerTy - True if this is an instance of IntegerType.
///
- bool isInteger() const { return ID == IntegerTyID; }
+ bool isIntegerTy() const { return ID == IntegerTyID; }
- /// isIntOrIntVector - Return true if this is an integer type or a vector of
+ /// isIntegerTy - Return true if this is an IntegerType of the given width.
+ bool isIntegerTy(unsigned Bitwidth) const;
+
+ /// isIntOrIntVectorTy - Return true if this is an integer type or a vector of
/// integer types.
///
- bool isIntOrIntVector() const;
+ bool isIntOrIntVectorTy() const;
- /// isFloatingPoint - Return true if this is one of the five floating point
- /// types
- bool isFloatingPoint() const { return ID == FloatTyID || ID == DoubleTyID ||
- ID == X86_FP80TyID || ID == FP128TyID || ID == PPC_FP128TyID; }
+ /// isFunctionTy - True if this is an instance of FunctionType.
+ ///
+ bool isFunctionTy() const { return ID == FunctionTyID; }
- /// isFPOrFPVector - Return true if this is a FP type or a vector of FP types.
+ /// isStructTy - True if this is an instance of StructType.
///
- bool isFPOrFPVector() const;
-
+ bool isStructTy() const { return ID == StructTyID; }
+
+ /// isArrayTy - True if this is an instance of ArrayType.
+ ///
+ bool isArrayTy() const { return ID == ArrayTyID; }
+
+ /// isPointerTy - True if this is an instance of PointerType.
+ ///
+ bool isPointerTy() const { return ID == PointerTyID; }
+
+ /// isOpaqueTy - True if this is an instance of OpaqueType.
+ ///
+ bool isOpaqueTy() const { return ID == OpaqueTyID; }
+
+ /// isVectorTy - True if this is an instance of VectorType.
+ ///
+ bool isVectorTy() const { return ID == VectorTyID; }
+
/// isAbstract - True if the type is either an Opaque type, or is a derived
/// type that includes an opaque type somewhere in it.
///
///
bool isSized() const {
// If it's a primitive, it is always sized.
- if (ID == IntegerTyID || isFloatingPoint() || ID == PointerTyID)
+ if (ID == IntegerTyID || isFloatingPointTy() || ID == PointerTyID ||
+ ID == X86_MMXTyID)
return true;
// If it is not something that can have a size (e.g. a function or label),
// it doesn't have a size.
static const Type *getX86_FP80Ty(LLVMContext &C);
static const Type *getFP128Ty(LLVMContext &C);
static const Type *getPPC_FP128Ty(LLVMContext &C);
+ static const Type *getX86_MMXTy(LLVMContext &C);
+ static const IntegerType *getIntNTy(LLVMContext &C, unsigned N);
static const IntegerType *getInt1Ty(LLVMContext &C);
static const IntegerType *getInt8Ty(LLVMContext &C);
static const IntegerType *getInt16Ty(LLVMContext &C);
static const PointerType *getX86_FP80PtrTy(LLVMContext &C, unsigned AS = 0);
static const PointerType *getFP128PtrTy(LLVMContext &C, unsigned AS = 0);
static const PointerType *getPPC_FP128PtrTy(LLVMContext &C, unsigned AS = 0);
+ static const PointerType *getX86_MMXPtrTy(LLVMContext &C, unsigned AS = 0);
+ static const PointerType *getIntNPtrTy(LLVMContext &C, unsigned N,
+ unsigned AS = 0);
static const PointerType *getInt1PtrTy(LLVMContext &C, unsigned AS = 0);
static const PointerType *getInt8PtrTy(LLVMContext &C, unsigned AS = 0);
static const PointerType *getInt16PtrTy(LLVMContext &C, unsigned AS = 0);
void addRef() const {
assert(isAbstract() && "Cannot add a reference to a non-abstract type!");
- sys::AtomicIncrement(&RefCount);
+ ++RefCount;
}
void dropRef() const {
// If this is the last PATypeHolder using this object, and there are no
// PATypeHandles using it, the type is dead, delete it now.
- sys::cas_flag OldCount = sys::AtomicDecrement(&RefCount);
- if (OldCount == 0 && AbstractTypeUsers.empty())
+ if (--RefCount == 0 && AbstractTypeUsers.empty())
this->destroy();
}
/// getPointerTo - Return a pointer to the current type. This is equivalent
/// to PointerType::get(Foo, AddrSpace).
- PointerType *getPointerTo(unsigned AddrSpace = 0) const;
+ const PointerType *getPointerTo(unsigned AddrSpace = 0) const;
private:
/// isSizedDerivedType - Derived types like structures and arrays are sized
/// reference to the type.
///
inline Type* PATypeHolder::get() const {
+ if (Ty == 0) return 0;
const Type *NewTy = Ty->getForwardedType();
if (!NewTy) return const_cast<Type*>(Ty);
return *const_cast<PATypeHolder*>(this) = NewTy;
}
inline void PATypeHolder::addRef() {
- assert(Ty && "Type Holder has a null type!");
- if (Ty->isAbstract())
+ if (Ty && Ty->isAbstract())
Ty->addRef();
}
inline void PATypeHolder::dropRef() {
- if (Ty->isAbstract())
+ if (Ty && Ty->isAbstract())
Ty->dropRef();
}
}
};
-template <> inline bool isa_impl<PointerType, Type>(const Type &Ty) {
- return Ty.getTypeID() == Type::PointerTyID;
-}
+template <> struct isa_impl<PointerType, Type> {
+ static inline bool doit(const Type &Ty) {
+ return Ty.getTypeID() == Type::PointerTyID;
+ }
+};
raw_ostream &operator<<(raw_ostream &OS, const Type &T);