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Revert r161371. Removing the 'const' before Type is a "good thing".
--- Reverse-merging r161371 into '.': U include/llvm/Target/TargetData.h U lib/Target/TargetData.cpp git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@161394 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -100,9 +100,9 @@ private:
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void setAlignment(AlignTypeEnum align_type, unsigned abi_align,
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unsigned pref_align, uint32_t bit_width);
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unsigned getAlignmentInfo(AlignTypeEnum align_type, uint32_t bit_width,
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bool ABIAlign, const Type *Ty) const;
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bool ABIAlign, Type *Ty) const;
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//! Internal helper method that returns requested alignment for type.
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unsigned getAlignment(const Type *Ty, bool abi_or_pref) const;
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unsigned getAlignment(Type *Ty, bool abi_or_pref) const;
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/// Valid alignment predicate.
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///
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@ -223,19 +223,19 @@ public:
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/// getTypeSizeInBits - Return the number of bits necessary to hold the
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/// specified type. For example, returns 36 for i36 and 80 for x86_fp80.
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uint64_t getTypeSizeInBits(const Type* Ty) const;
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uint64_t getTypeSizeInBits(Type* Ty) const;
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/// getTypeStoreSize - Return the maximum number of bytes that may be
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/// overwritten by storing the specified type. For example, returns 5
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/// for i36 and 10 for x86_fp80.
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uint64_t getTypeStoreSize(const Type *Ty) const {
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uint64_t getTypeStoreSize(Type *Ty) const {
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return (getTypeSizeInBits(Ty)+7)/8;
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}
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/// getTypeStoreSizeInBits - Return the maximum number of bits that may be
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/// overwritten by storing the specified type; always a multiple of 8. For
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/// example, returns 40 for i36 and 80 for x86_fp80.
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uint64_t getTypeStoreSizeInBits(const Type *Ty) const {
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uint64_t getTypeStoreSizeInBits(Type *Ty) const {
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return 8*getTypeStoreSize(Ty);
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}
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@ -243,7 +243,7 @@ public:
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/// of the specified type, including alignment padding. This is the amount
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/// that alloca reserves for this type. For example, returns 12 or 16 for
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/// x86_fp80, depending on alignment.
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uint64_t getTypeAllocSize(const Type* Ty) const {
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uint64_t getTypeAllocSize(Type* Ty) const {
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// Round up to the next alignment boundary.
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return RoundUpAlignment(getTypeStoreSize(Ty), getABITypeAlignment(Ty));
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}
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@ -252,13 +252,13 @@ public:
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/// objects of the specified type, including alignment padding; always a
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/// multiple of 8. This is the amount that alloca reserves for this type.
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/// For example, returns 96 or 128 for x86_fp80, depending on alignment.
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uint64_t getTypeAllocSizeInBits(const Type* Ty) const {
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uint64_t getTypeAllocSizeInBits(Type* Ty) const {
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return 8*getTypeAllocSize(Ty);
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}
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/// getABITypeAlignment - Return the minimum ABI-required alignment for the
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/// specified type.
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unsigned getABITypeAlignment(const Type *Ty) const;
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unsigned getABITypeAlignment(Type *Ty) const;
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/// getABIIntegerTypeAlignment - Return the minimum ABI-required alignment for
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/// an integer type of the specified bitwidth.
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@ -267,17 +267,17 @@ public:
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/// getCallFrameTypeAlignment - Return the minimum ABI-required alignment
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/// for the specified type when it is part of a call frame.
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unsigned getCallFrameTypeAlignment(const Type *Ty) const;
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unsigned getCallFrameTypeAlignment(Type *Ty) const;
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/// getPrefTypeAlignment - Return the preferred stack/global alignment for
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/// the specified type. This is always at least as good as the ABI alignment.
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unsigned getPrefTypeAlignment(const Type *Ty) const;
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unsigned getPrefTypeAlignment(Type *Ty) const;
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/// getPreferredTypeAlignmentShift - Return the preferred alignment for the
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/// specified type, returned as log2 of the value (a shift amount).
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///
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unsigned getPreferredTypeAlignmentShift(const Type *Ty) const;
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unsigned getPreferredTypeAlignmentShift(Type *Ty) const;
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/// getIntPtrType - Return an unsigned integer type that is the same size or
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/// greater to the host pointer size.
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@ -292,7 +292,7 @@ public:
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/// getStructLayout - Return a StructLayout object, indicating the alignment
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/// of the struct, its size, and the offsets of its fields. Note that this
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/// information is lazily cached.
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const StructLayout *getStructLayout(const StructType *Ty) const;
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const StructLayout *getStructLayout(StructType *Ty) const;
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/// getPreferredAlignment - Return the preferred alignment of the specified
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/// global. This includes an explicitly requested alignment (if the global
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@ -355,7 +355,7 @@ public:
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private:
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friend class TargetData; // Only TargetData can create this class
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StructLayout(const StructType *ST, const TargetData &TD);
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StructLayout(StructType *ST, const TargetData &TD);
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};
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} // End llvm namespace
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@ -41,7 +41,7 @@ char TargetData::ID = 0;
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// Support for StructLayout
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//===----------------------------------------------------------------------===//
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StructLayout::StructLayout(const StructType *ST, const TargetData &TD) {
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StructLayout::StructLayout(StructType *ST, const TargetData &TD) {
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assert(!ST->isOpaque() && "Cannot get layout of opaque structs");
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StructAlignment = 0;
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StructSize = 0;
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@ -332,7 +332,7 @@ TargetData::setAlignment(AlignTypeEnum align_type, unsigned abi_align,
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/// preferred if ABIInfo = false) the target wants for the specified datatype.
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unsigned TargetData::getAlignmentInfo(AlignTypeEnum AlignType,
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uint32_t BitWidth, bool ABIInfo,
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const Type *Ty) const {
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Type *Ty) const {
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// Check to see if we have an exact match and remember the best match we see.
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int BestMatchIdx = -1;
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int LargestInt = -1;
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@ -386,7 +386,7 @@ unsigned TargetData::getAlignmentInfo(AlignTypeEnum AlignType,
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namespace {
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class StructLayoutMap {
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typedef DenseMap<const StructType*, StructLayout*> LayoutInfoTy;
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typedef DenseMap<StructType*, StructLayout*> LayoutInfoTy;
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LayoutInfoTy LayoutInfo;
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public:
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@ -400,7 +400,7 @@ public:
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}
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}
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StructLayout *&operator[](const StructType *STy) {
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StructLayout *&operator[](StructType *STy) {
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return LayoutInfo[STy];
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}
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@ -414,7 +414,7 @@ TargetData::~TargetData() {
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delete static_cast<StructLayoutMap*>(LayoutMap);
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}
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const StructLayout *TargetData::getStructLayout(const StructType *Ty) const {
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const StructLayout *TargetData::getStructLayout(StructType *Ty) const {
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if (!LayoutMap)
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LayoutMap = new StructLayoutMap();
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@ -462,14 +462,14 @@ std::string TargetData::getStringRepresentation() const {
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}
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uint64_t TargetData::getTypeSizeInBits(const Type *Ty) const {
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uint64_t TargetData::getTypeSizeInBits(Type *Ty) const {
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assert(Ty->isSized() && "Cannot getTypeInfo() on a type that is unsized!");
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switch (Ty->getTypeID()) {
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case Type::LabelTyID:
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case Type::PointerTyID:
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return getPointerSizeInBits();
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case Type::ArrayTyID: {
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const ArrayType *ATy = cast<ArrayType>(Ty);
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ArrayType *ATy = cast<ArrayType>(Ty);
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return getTypeAllocSizeInBits(ATy->getElementType())*ATy->getNumElements();
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}
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case Type::StructTyID:
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@ -508,7 +508,7 @@ uint64_t TargetData::getTypeSizeInBits(const Type *Ty) const {
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Get the ABI (\a abi_or_pref == true) or preferred alignment (\a abi_or_pref
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== false) for the requested type \a Ty.
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*/
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unsigned TargetData::getAlignment(const Type *Ty, bool abi_or_pref) const {
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unsigned TargetData::getAlignment(Type *Ty, bool abi_or_pref) const {
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int AlignType = -1;
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assert(Ty->isSized() && "Cannot getTypeInfo() on a type that is unsized!");
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@ -558,7 +558,7 @@ unsigned TargetData::getAlignment(const Type *Ty, bool abi_or_pref) const {
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abi_or_pref, Ty);
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}
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unsigned TargetData::getABITypeAlignment(const Type *Ty) const {
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unsigned TargetData::getABITypeAlignment(Type *Ty) const {
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return getAlignment(Ty, true);
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}
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@ -569,7 +569,7 @@ unsigned TargetData::getABIIntegerTypeAlignment(unsigned BitWidth) const {
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}
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unsigned TargetData::getCallFrameTypeAlignment(const Type *Ty) const {
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unsigned TargetData::getCallFrameTypeAlignment(Type *Ty) const {
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for (unsigned i = 0, e = Alignments.size(); i != e; ++i)
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if (Alignments[i].AlignType == STACK_ALIGN)
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return Alignments[i].ABIAlign;
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@ -577,11 +577,11 @@ unsigned TargetData::getCallFrameTypeAlignment(const Type *Ty) const {
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return getABITypeAlignment(Ty);
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}
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unsigned TargetData::getPrefTypeAlignment(const Type *Ty) const {
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unsigned TargetData::getPrefTypeAlignment(Type *Ty) const {
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return getAlignment(Ty, false);
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}
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unsigned TargetData::getPreferredTypeAlignmentShift(const Type *Ty) const {
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unsigned TargetData::getPreferredTypeAlignmentShift(Type *Ty) const {
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unsigned Align = getPrefTypeAlignment(Ty);
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assert(!(Align & (Align-1)) && "Alignment is not a power of two!");
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return Log2_32(Align);
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