| //===- SLPUtils.h - SLP Vectorizer free utility helpers --------*- C++ -*-===// |
| // |
| // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
| // See https://llvm.org/LICENSE.txt for license information. |
| // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception |
| // |
| //===----------------------------------------------------------------------===// |
| // |
| // Internal header used by SLPVectorizer.cpp. It declares free helper |
| // functions that do not depend on BoUpSLP, InstructionsState, or any other |
| // SLP-private type. Splitting them out keeps SLPVectorizer.cpp focused on |
| // the build / legality / cost / codegen pipeline. |
| // |
| //===----------------------------------------------------------------------===// |
| |
| #ifndef LLVM_LIB_TRANSFORMS_VECTORIZE_SLPVECTORIZER_SLPUTILS_H |
| #define LLVM_LIB_TRANSFORMS_VECTORIZE_SLPVECTORIZER_SLPUTILS_H |
| |
| #include "llvm/ADT/ArrayRef.h" |
| #include "llvm/ADT/SmallBitVector.h" |
| #include "llvm/ADT/SmallVector.h" |
| #include "llvm/Analysis/MemoryLocation.h" |
| |
| #include <optional> |
| #include <string> |
| |
| namespace llvm { |
| class Constant; |
| class Instruction; |
| class TargetLibraryInfo; |
| class TargetTransformInfo; |
| class Type; |
| class Value; |
| } // namespace llvm |
| |
| namespace llvm::slpvectorizer { |
| |
| /// Limit of the number of uses for potentially transformed instructions/values, |
| /// used in checks to avoid compile-time explode. |
| inline constexpr int UsesLimit = 64; |
| |
| /// \returns True if the value is a constant (but not globals/constant |
| /// expressions). |
| bool isConstant(Value *V); |
| |
| /// Checks if \p V is one of vector-like instructions, i.e. undef, |
| /// insertelement/extractelement with constant indices for fixed vector type |
| /// or extractvalue instruction. |
| bool isVectorLikeInstWithConstOps(Value *V); |
| |
| /// \returns the number of elements for Ty. |
| unsigned getNumElements(Type *Ty); |
| |
| /// Returns power-of-2 number of elements in a single register (part), given |
| /// the total number of elements \p Size and number of registers (parts) \p |
| /// NumParts. |
| unsigned getPartNumElems(unsigned Size, unsigned NumParts); |
| |
| /// Returns correct remaining number of elements, considering total amount |
| /// \p Size, (power-of-2 number) of elements in a single register |
| /// \p PartNumElems and current register (part) \p Part. |
| unsigned getNumElems(unsigned Size, unsigned PartNumElems, unsigned Part); |
| |
| #if !defined(NDEBUG) |
| /// Print a short descriptor of the instruction bundle suitable for debug |
| /// output. |
| std::string shortBundleName(ArrayRef<Value *> VL, int Idx = -1); |
| #endif |
| |
| /// \returns True if all of the instructions in \p VL are in the same block. |
| bool allSameBlock(ArrayRef<Value *> VL); |
| |
| /// \returns True if all of the values in \p VL are constants (but not |
| /// globals/constant expressions). |
| bool allConstant(ArrayRef<Value *> VL); |
| |
| /// \returns True if all of the values in \p VL are identical or some of them |
| /// are UndefValue. |
| bool isSplat(ArrayRef<Value *> VL); |
| |
| /// \returns True if \p I is commutative, handles CmpInst and BinaryOperator. |
| /// For BinaryOperator, it also checks if \p ValWithUses is used in specific |
| /// patterns that make it effectively commutative (like equality comparisons |
| /// with zero). |
| /// In most cases, users should not call this function directly (since \p I and |
| /// \p ValWithUses are the same). However, when analyzing interchangeable |
| /// instructions, we need to use the converted opcode along with the original |
| /// uses. |
| /// \param I The instruction to check for commutativity |
| /// \param ValWithUses The value whose uses are analyzed for special |
| /// patterns |
| bool isCommutative(const Instruction *I, const Value *ValWithUses, |
| bool IsCopyable = false); |
| |
| /// This is a helper function to check whether \p I is commutative. |
| /// This is a convenience wrapper that calls the two-parameter version of |
| /// isCommutative with the same instruction for both parameters. This is |
| /// the common case where the instruction being checked for commutativity |
| /// is the same as the instruction whose uses are analyzed for special |
| /// patterns (see the two-parameter version above for details). |
| /// \param I The instruction to check for commutativity |
| /// \returns true if the instruction is commutative, false otherwise |
| bool isCommutative(const Instruction *I); |
| |
| /// Checks if the operand is commutative. In commutative operations, not all |
| /// operands might commutable, e.g. for fmuladd only 2 first operands are |
| /// commutable. |
| bool isCommutableOperand(const Instruction *I, Value *ValWithUses, unsigned Op, |
| bool IsCopyable = false); |
| |
| /// \returns number of operands of \p I, considering commutativity. Returns 2 |
| /// for commutative intrinsics. |
| /// \param I The instruction to check for commutativity |
| unsigned getNumberOfPotentiallyCommutativeOps(Instruction *I); |
| |
| /// \returns inserting or extracting index of InsertElement, ExtractElement |
| /// or InsertValue instruction, using \p Offset as base offset for index. |
| /// \returns std::nullopt if the index is not an immediate. |
| std::optional<unsigned> getElementIndex(const Value *Inst, unsigned Offset = 0); |
| |
| /// \returns True if all of the values in \p VL use the same opcode. |
| /// For comparison instructions, also checks if predicates match. |
| /// PoisonValues are considered matching. Interchangeable instructions are |
| /// not considered. |
| bool allSameOpcode(ArrayRef<Value *> VL); |
| |
| /// \returns Optional element Idx for Extract{Value,Element} instructions. |
| std::optional<unsigned> getExtractIndex(const Instruction *E); |
| |
| /// Compute the inverse permutation \p Mask of \p Indices. |
| void inversePermutation(ArrayRef<unsigned> Indices, SmallVectorImpl<int> &Mask); |
| |
| /// Reorders the list of scalars in accordance with the given \p Mask. |
| void reorderScalars(SmallVectorImpl<Value *> &Scalars, ArrayRef<int> Mask); |
| |
| /// \returns True iff every value in \p VL has the same Type as the first. |
| bool allSameType(ArrayRef<Value *> VL); |
| |
| /// Checks if the provided value does not require scheduling. It does not |
| /// require scheduling if this is not an instruction or it is an instruction |
| /// that does not read/write memory and all operands are either not |
| /// instructions or phi nodes or instructions from different blocks. |
| bool areAllOperandsNonInsts(Value *V); |
| |
| /// Checks if the provided value does not require scheduling. It does not |
| /// require scheduling if this is not an instruction or it is an instruction |
| /// that does not read/write memory and all users are phi nodes or |
| /// instructions from different blocks. |
| bool isUsedOutsideBlock(Value *V); |
| |
| /// Checks if the specified value does not require scheduling. It does not |
| /// require scheduling if all operands and all users do not need to be |
| /// scheduled in the current basic block. |
| bool doesNotNeedToBeScheduled(Value *V); |
| |
| /// Checks if the specified array of instructions does not require scheduling. |
| /// It is so if all either instructions have operands that do not require |
| /// scheduling or their users do not require scheduling since they are phis or |
| /// in other basic blocks. |
| bool doesNotNeedToSchedule(ArrayRef<Value *> VL); |
| |
| /// \returns inserting or extracting index of InsertElement / ExtractElement |
| /// instruction, using \p Offset as base offset for index. Only instantiated |
| /// for InsertElementInst and ExtractElementInst (see SLPUtils.cpp). |
| template <typename T> |
| std::optional<unsigned> getInsertExtractIndex(const Value *Inst, |
| unsigned Offset); |
| |
| void transformScalarShuffleIndiciesToVector(unsigned VecTyNumElements, |
| SmallVectorImpl<int> &Mask); |
| |
| /// \returns the number of groups of shufflevector |
| /// A group has the following features |
| /// 1. All of value in a group are shufflevector. |
| /// 2. The mask of all shufflevector is isExtractSubvectorMask. |
| /// 3. The mask of all shufflevector uses all of the elements of the source. |
| /// e.g., it is 1 group (%0) |
| /// %1 = shufflevector <16 x i8> %0, <16 x i8> poison, |
| /// <8 x i32> <i32 0, i32 1, i32 2, i32 3, i32 4, i32 5, i32 6, i32 7> |
| /// %2 = shufflevector <16 x i8> %0, <16 x i8> poison, |
| /// <8 x i32> <i32 8, i32 9, i32 10, i32 11, i32 12, i32 13, i32 14, i32 15> |
| /// it is 2 groups (%3 and %4) |
| /// %5 = shufflevector <8 x i16> %3, <8 x i16> poison, |
| /// <4 x i32> <i32 0, i32 1, i32 2, i32 3> |
| /// %6 = shufflevector <8 x i16> %3, <8 x i16> poison, |
| /// <4 x i32> <i32 4, i32 5, i32 6, i32 7> |
| /// %7 = shufflevector <8 x i16> %4, <8 x i16> poison, |
| /// <4 x i32> <i32 0, i32 1, i32 2, i32 3> |
| /// %8 = shufflevector <8 x i16> %4, <8 x i16> poison, |
| /// <4 x i32> <i32 4, i32 5, i32 6, i32 7> |
| /// it is 0 group |
| /// %12 = shufflevector <8 x i16> %10, <8 x i16> poison, |
| /// <4 x i32> <i32 0, i32 1, i32 2, i32 3> |
| /// %13 = shufflevector <8 x i16> %11, <8 x i16> poison, |
| /// <4 x i32> <i32 0, i32 1, i32 2, i32 3> |
| unsigned getShufflevectorNumGroups(ArrayRef<Value *> VL); |
| |
| /// \returns a shufflevector mask which is used to vectorize shufflevectors |
| /// e.g., |
| /// %5 = shufflevector <8 x i16> %3, <8 x i16> poison, |
| /// <4 x i32> <i32 0, i32 1, i32 2, i32 3> |
| /// %6 = shufflevector <8 x i16> %3, <8 x i16> poison, |
| /// <4 x i32> <i32 4, i32 5, i32 6, i32 7> |
| /// %7 = shufflevector <8 x i16> %4, <8 x i16> poison, |
| /// <4 x i32> <i32 0, i32 1, i32 2, i32 3> |
| /// %8 = shufflevector <8 x i16> %4, <8 x i16> poison, |
| /// <4 x i32> <i32 4, i32 5, i32 6, i32 7> |
| /// the result is |
| /// <0, 1, 2, 3, 12, 13, 14, 15, 16, 17, 18, 19, 28, 29, 30, 31> |
| SmallVector<int> calculateShufflevectorMask(ArrayRef<Value *> VL); |
| |
| /// Specifies the way the mask should be analyzed for undefs/poisonous elements |
| /// in the shuffle mask. |
| enum class UseMask { |
| FirstArg, ///< The mask is expected to be for permutation of 1-2 vectors, |
| ///< check for the mask elements for the first argument (mask |
| ///< indices are in range [0:VF)). |
| SecondArg, ///< The mask is expected to be for permutation of 2 vectors, check |
| ///< for the mask elements for the second argument (mask indices |
| ///< are in range [VF:2*VF)) |
| UndefsAsMask ///< Consider undef mask elements (-1) as placeholders for |
| ///< future shuffle elements and mark them as ones as being used |
| ///< in future. Non-undef elements are considered as unused since |
| ///< they're already marked as used in the mask. |
| }; |
| |
| /// Prepares a use bitset for the given mask either for the first argument or |
| /// for the second. |
| SmallBitVector buildUseMask(int VF, ArrayRef<int> Mask, UseMask MaskArg); |
| |
| /// Checks if the given value is actually an undefined constant vector. |
| /// Also, if the \p UseMask is not empty, tries to check if the non-masked |
| /// elements actually mask the insertelement buildvector, if any. |
| template <bool IsPoisonOnly = false> |
| SmallBitVector isUndefVector(const Value *V, |
| const SmallBitVector &UseMask = {}); |
| |
| /// \returns True if in-tree use also needs extract. This refers to |
| /// possible scalar operand in vectorized instruction. |
| bool doesInTreeUserNeedToExtract(Value *Scalar, Instruction *UserInst, |
| TargetLibraryInfo *TLI, |
| const TargetTransformInfo *TTI); |
| |
| /// \returns the AA location that is being access by the instruction. |
| MemoryLocation getLocation(Instruction *I); |
| |
| /// \returns True if the instruction is not a volatile or atomic load/store. |
| bool isSimple(Instruction *I); |
| |
| /// Shuffles \p Mask in accordance with the given \p SubMask. |
| /// \param ExtendingManyInputs Supports reshuffling of the mask with not only |
| /// one but two input vectors. |
| void addMask(SmallVectorImpl<int> &Mask, ArrayRef<int> SubMask, |
| bool ExtendingManyInputs = false); |
| |
| /// Order may have elements assigned special value (size) which is out of |
| /// bounds. Such indices only appear on places which correspond to undef values |
| /// (see canReuseExtract for details) and used in order to avoid undef values |
| /// have effect on operands ordering. |
| /// The first loop below simply finds all unused indices and then the next loop |
| /// nest assigns these indices for undef values positions. |
| /// As an example below Order has two undef positions and they have assigned |
| /// values 3 and 7 respectively: |
| /// before: 6 9 5 4 9 2 1 0 |
| /// after: 6 3 5 4 7 2 1 0 |
| void fixupOrderingIndices(MutableArrayRef<unsigned> Order); |
| |
| /// \returns a bitset for selecting opcodes. false for Opcode0 and true for |
| /// Opcode1. |
| SmallBitVector getAltInstrMask(ArrayRef<Value *> VL, Type *ScalarTy, |
| unsigned Opcode0, unsigned Opcode1); |
| |
| /// Replicates the given \p Val \p VF times. |
| SmallVector<Constant *> replicateMask(ArrayRef<Constant *> Val, unsigned VF); |
| |
| } // namespace llvm::slpvectorizer |
| |
| #endif // LLVM_LIB_TRANSFORMS_VECTORIZE_SLPVECTORIZER_SLPUTILS_H |