Move SubclassID to VPRecipeBase, and store VPRecipeBase directly in VPRecipeValue, instead of VPDef. This allows for some additional simplifications and VPDef now just holds various helpers to deal with removing and adding VPValues. This reverts commit 16395da0ff577750571b99fe28281ce6fb6a3ae8. PR: https://github.com/llvm/llvm-project/pull/174282
433 lines
15 KiB
C++
433 lines
15 KiB
C++
//===- VPlanValue.h - Represent Values in Vectorizer Plan -----------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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///
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/// \file
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/// This file contains the declarations of the entities induced by Vectorization
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/// Plans, e.g. the instructions the VPlan intends to generate if executed.
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/// VPlan models the following entities:
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/// VPValue VPUser VPDef
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/// | |
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/// VPInstruction
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/// These are documented in docs/VectorizationPlan.rst.
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///
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_TRANSFORMS_VECTORIZE_VPLAN_VALUE_H
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#define LLVM_TRANSFORMS_VECTORIZE_VPLAN_VALUE_H
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/TinyPtrVector.h"
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#include "llvm/ADT/iterator_range.h"
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#include "llvm/IR/Constants.h"
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#include "llvm/Support/Casting.h"
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#include "llvm/Support/Compiler.h"
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namespace llvm {
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// Forward declarations.
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class raw_ostream;
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class Type;
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class Value;
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class VPDef;
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class VPSlotTracker;
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class VPUser;
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class VPRecipeBase;
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class VPPhiAccessors;
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/// This is the base class of the VPlan Def/Use graph, used for modeling the
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/// data flow into, within and out of the VPlan. VPValues can stand for live-ins
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/// coming from the input IR, symbolic values and values defined by recipes.
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class LLVM_ABI_FOR_TEST VPValue {
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friend class VPlan;
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friend struct VPIRValue;
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friend struct VPSymbolicValue;
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friend class VPRecipeValue;
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const unsigned char SubclassID; ///< Subclass identifier (for isa/dyn_cast).
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SmallVector<VPUser *, 1> Users;
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/// Hold the underlying Value, if any, attached to this VPValue.
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Value *UnderlyingVal;
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VPValue(const unsigned char SC, Value *UV = nullptr)
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: SubclassID(SC), UnderlyingVal(UV) {}
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// DESIGN PRINCIPLE: Access to the underlying IR must be strictly limited to
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// the front-end and back-end of VPlan so that the middle-end is as
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// independent as possible of the underlying IR. We grant access to the
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// underlying IR using friendship. In that way, we should be able to use VPlan
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// for multiple underlying IRs (Polly?) by providing a new VPlan front-end,
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// back-end and analysis information for the new IR.
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public:
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/// Return the underlying Value attached to this VPValue.
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Value *getUnderlyingValue() const { return UnderlyingVal; }
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/// Return the underlying IR value for a VPIRValue.
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Value *getLiveInIRValue() const;
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/// An enumeration for keeping track of the concrete subclass of VPValue that
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/// are actually instantiated.
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enum {
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VPVIRValueSC, /// A live-in VPValue wrapping an IR Value.
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VPVSymbolicSC, /// A symbolic live-in VPValue without IR backing.
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VPVRecipeValueSC, /// A VPValue defined by a recipe.
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};
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VPValue(const VPValue &) = delete;
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VPValue &operator=(const VPValue &) = delete;
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virtual ~VPValue() {
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assert(Users.empty() && "trying to delete a VPValue with remaining users");
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}
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/// \return an ID for the concrete type of this object.
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/// This is used to implement the classof checks. This should not be used
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/// for any other purpose, as the values may change as LLVM evolves.
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unsigned getVPValueID() const { return SubclassID; }
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#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
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void printAsOperand(raw_ostream &OS, VPSlotTracker &Tracker) const;
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void print(raw_ostream &OS, VPSlotTracker &Tracker) const;
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/// Dump the value to stderr (for debugging).
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void dump() const;
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#endif
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unsigned getNumUsers() const { return Users.size(); }
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void addUser(VPUser &User) { Users.push_back(&User); }
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/// Remove a single \p User from the list of users.
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void removeUser(VPUser &User) {
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// The same user can be added multiple times, e.g. because the same VPValue
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// is used twice by the same VPUser. Remove a single one.
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auto *I = find(Users, &User);
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if (I != Users.end())
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Users.erase(I);
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}
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typedef SmallVectorImpl<VPUser *>::iterator user_iterator;
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typedef SmallVectorImpl<VPUser *>::const_iterator const_user_iterator;
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typedef iterator_range<user_iterator> user_range;
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typedef iterator_range<const_user_iterator> const_user_range;
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user_iterator user_begin() { return Users.begin(); }
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const_user_iterator user_begin() const { return Users.begin(); }
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user_iterator user_end() { return Users.end(); }
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const_user_iterator user_end() const { return Users.end(); }
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user_range users() { return user_range(user_begin(), user_end()); }
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const_user_range users() const {
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return const_user_range(user_begin(), user_end());
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}
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/// Returns true if the value has more than one unique user.
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bool hasMoreThanOneUniqueUser() const {
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if (getNumUsers() == 0)
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return false;
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// Check if all users match the first user.
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auto Current = std::next(user_begin());
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while (Current != user_end() && *user_begin() == *Current)
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Current++;
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return Current != user_end();
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}
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bool hasOneUse() const { return getNumUsers() == 1; }
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/// Return the single user of this value, or nullptr if there is not exactly
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/// one user.
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VPUser *getSingleUser() { return hasOneUse() ? *user_begin() : nullptr; }
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const VPUser *getSingleUser() const {
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return hasOneUse() ? *user_begin() : nullptr;
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}
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void replaceAllUsesWith(VPValue *New);
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/// Go through the uses list for this VPValue and make each use point to \p
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/// New if the callback ShouldReplace returns true for the given use specified
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/// by a pair of (VPUser, the use index).
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void replaceUsesWithIf(
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VPValue *New,
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llvm::function_ref<bool(VPUser &U, unsigned Idx)> ShouldReplace);
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/// Returns the recipe defining this VPValue or nullptr if it is not defined
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/// by a recipe, i.e. is a live-in.
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VPRecipeBase *getDefiningRecipe();
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const VPRecipeBase *getDefiningRecipe() const;
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/// Returns true if this VPValue is defined by a recipe.
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bool hasDefiningRecipe() const { return getDefiningRecipe(); }
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/// Returns true if the VPValue is defined outside any loop.
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bool isDefinedOutsideLoopRegions() const;
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// Set \p Val as the underlying Value of this VPValue.
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void setUnderlyingValue(Value *Val) {
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assert(!UnderlyingVal && "Underlying Value is already set.");
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UnderlyingVal = Val;
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}
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};
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LLVM_ABI_FOR_TEST raw_ostream &operator<<(raw_ostream &OS,
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const VPRecipeBase &R);
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/// A VPValue representing a live-in from the input IR or a constant. It wraps
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/// an underlying IR Value.
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struct VPIRValue : public VPValue {
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VPIRValue(Value *UV) : VPValue(VPVIRValueSC, UV) {
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assert(UV && "VPIRValue requires an underlying IR value");
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}
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/// Returns the underlying IR value.
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Value *getValue() const { return getUnderlyingValue(); }
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/// Returns the type of the underlying IR value.
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Type *getType() const;
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static bool classof(const VPValue *V) {
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return V->getVPValueID() == VPVIRValueSC;
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}
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};
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/// An overlay on VPIRValue for VPValues that wrap a ConstantInt. Provides
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/// convenient accessors for the underlying constant.
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struct VPConstantInt : public VPIRValue {
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VPConstantInt(ConstantInt *CI) : VPIRValue(CI) {}
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static bool classof(const VPValue *V) {
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return isa<VPIRValue>(V) && isa<ConstantInt>(V->getUnderlyingValue());
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}
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bool isOne() const { return getAPInt().isOne(); }
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bool isZero() const { return getAPInt().isZero(); }
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const APInt &getAPInt() const {
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return cast<ConstantInt>(getValue())->getValue();
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}
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unsigned getBitWidth() const { return getAPInt().getBitWidth(); }
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uint64_t getZExtValue() const { return getAPInt().getZExtValue(); }
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};
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/// A symbolic live-in VPValue, used for values like vector trip count, VF, and
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/// VFxUF.
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struct VPSymbolicValue : public VPValue {
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VPSymbolicValue() : VPValue(VPVSymbolicSC, nullptr) {}
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static bool classof(const VPValue *V) {
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return V->getVPValueID() == VPVSymbolicSC;
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}
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};
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/// A VPValue defined by a recipe that produces one or more values.
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class VPRecipeValue : public VPValue {
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friend class VPValue;
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friend class VPDef;
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/// Pointer to the VPRecipeBase that defines this VPValue.
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VPRecipeBase *Def;
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#if !defined(NDEBUG)
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/// Returns true if this VPRecipeValue is defined by \p D.
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/// NOTE: Only used by VPDef to assert that VPRecipeValues added/removed from
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/// /p D are associated with its VPRecipeBase,
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bool isDefinedBy(const VPDef *D) const;
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#endif
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public:
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LLVM_ABI_FOR_TEST VPRecipeValue(VPRecipeBase *Def, Value *UV = nullptr);
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LLVM_ABI_FOR_TEST virtual ~VPRecipeValue();
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static bool classof(const VPValue *V) {
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return V->getVPValueID() == VPVRecipeValueSC;
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}
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};
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/// This class augments VPValue with operands which provide the inverse def-use
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/// edges from VPValue's users to their defs.
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class VPUser {
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/// Grant access to removeOperand for VPPhiAccessors, the only supported user.
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friend class VPPhiAccessors;
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SmallVector<VPValue *, 2> Operands;
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/// Removes the operand at index \p Idx. This also removes the VPUser from the
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/// use-list of the operand.
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void removeOperand(unsigned Idx) {
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getOperand(Idx)->removeUser(*this);
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Operands.erase(Operands.begin() + Idx);
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}
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protected:
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#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
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/// Print the operands to \p O.
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void printOperands(raw_ostream &O, VPSlotTracker &SlotTracker) const;
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#endif
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VPUser(ArrayRef<VPValue *> Operands) {
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for (VPValue *Operand : Operands)
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addOperand(Operand);
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}
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public:
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VPUser() = delete;
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VPUser(const VPUser &) = delete;
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VPUser &operator=(const VPUser &) = delete;
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virtual ~VPUser() {
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for (VPValue *Op : operands())
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Op->removeUser(*this);
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}
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void addOperand(VPValue *Operand) {
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Operands.push_back(Operand);
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Operand->addUser(*this);
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}
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unsigned getNumOperands() const { return Operands.size(); }
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inline VPValue *getOperand(unsigned N) const {
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assert(N < Operands.size() && "Operand index out of bounds");
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return Operands[N];
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}
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void setOperand(unsigned I, VPValue *New) {
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Operands[I]->removeUser(*this);
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Operands[I] = New;
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New->addUser(*this);
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}
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/// Swap operands of the VPUser. It must have exactly 2 operands.
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void swapOperands() {
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assert(Operands.size() == 2 && "must have 2 operands to swap");
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std::swap(Operands[0], Operands[1]);
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}
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/// Replaces all uses of \p From in the VPUser with \p To.
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void replaceUsesOfWith(VPValue *From, VPValue *To);
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typedef SmallVectorImpl<VPValue *>::iterator operand_iterator;
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typedef SmallVectorImpl<VPValue *>::const_iterator const_operand_iterator;
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typedef iterator_range<operand_iterator> operand_range;
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typedef iterator_range<const_operand_iterator> const_operand_range;
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operand_iterator op_begin() { return Operands.begin(); }
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const_operand_iterator op_begin() const { return Operands.begin(); }
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operand_iterator op_end() { return Operands.end(); }
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const_operand_iterator op_end() const { return Operands.end(); }
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operand_range operands() { return operand_range(op_begin(), op_end()); }
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const_operand_range operands() const {
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return const_operand_range(op_begin(), op_end());
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}
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/// Returns true if the VPUser uses scalars of operand \p Op. Conservatively
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/// returns if only first (scalar) lane is used, as default.
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virtual bool usesScalars(const VPValue *Op) const {
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assert(is_contained(operands(), Op) &&
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"Op must be an operand of the recipe");
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return usesFirstLaneOnly(Op);
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}
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/// Returns true if the VPUser only uses the first lane of operand \p Op.
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/// Conservatively returns false.
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virtual bool usesFirstLaneOnly(const VPValue *Op) const {
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assert(is_contained(operands(), Op) &&
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"Op must be an operand of the recipe");
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return false;
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}
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/// Returns true if the VPUser only uses the first part of operand \p Op.
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/// Conservatively returns false.
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virtual bool usesFirstPartOnly(const VPValue *Op) const {
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assert(is_contained(operands(), Op) &&
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"Op must be an operand of the recipe");
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return false;
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}
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};
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/// This class augments a recipe with a set of VPValues defined by the recipe.
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/// It allows recipes to define zero, one or multiple VPValues. A VPDef owns
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/// the VPValues it defines and is responsible for deleting its defined values.
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/// Single-value VPDefs that also inherit from VPValue must make sure to inherit
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/// from VPDef before VPValue.
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class VPDef {
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friend class VPRecipeValue;
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/// The VPValues defined by this VPDef.
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TinyPtrVector<VPRecipeValue *> DefinedValues;
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/// Add \p V as a defined value by this VPDef.
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void addDefinedValue(VPRecipeValue *V) {
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assert(V->isDefinedBy(this) &&
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"can only add VPValue already linked with this VPDef");
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DefinedValues.push_back(V);
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}
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/// Remove \p V from the values defined by this VPDef. \p V must be a defined
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/// value of this VPDef.
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void removeDefinedValue(VPRecipeValue *V) {
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assert(V->isDefinedBy(this) &&
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"can only remove VPValue linked with this VPDef");
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assert(is_contained(DefinedValues, V) &&
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"VPValue to remove must be in DefinedValues");
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llvm::erase(DefinedValues, V);
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V->Def = nullptr;
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}
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public:
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VPDef() {}
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virtual ~VPDef() {
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for (VPRecipeValue *D : to_vector(DefinedValues)) {
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assert(D->isDefinedBy(this) &&
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"all defined VPValues should point to the containing VPDef");
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assert(D->getNumUsers() == 0 &&
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"all defined VPValues should have no more users");
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delete D;
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}
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}
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/// Returns the only VPValue defined by the VPDef. Can only be called for
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/// VPDefs with a single defined value.
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VPValue *getVPSingleValue() {
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assert(DefinedValues.size() == 1 && "must have exactly one defined value");
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assert(DefinedValues[0] && "defined value must be non-null");
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return DefinedValues[0];
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}
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const VPValue *getVPSingleValue() const {
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assert(DefinedValues.size() == 1 && "must have exactly one defined value");
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assert(DefinedValues[0] && "defined value must be non-null");
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return DefinedValues[0];
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}
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/// Returns the VPValue with index \p I defined by the VPDef.
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VPValue *getVPValue(unsigned I) {
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assert(DefinedValues[I] && "defined value must be non-null");
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return DefinedValues[I];
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}
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const VPValue *getVPValue(unsigned I) const {
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assert(DefinedValues[I] && "defined value must be non-null");
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return DefinedValues[I];
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}
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/// Returns an ArrayRef of the values defined by the VPDef.
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ArrayRef<VPRecipeValue *> definedValues() { return DefinedValues; }
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/// Returns an ArrayRef of the values defined by the VPDef.
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ArrayRef<VPRecipeValue *> definedValues() const { return DefinedValues; }
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/// Returns the number of values defined by the VPDef.
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unsigned getNumDefinedValues() const { return DefinedValues.size(); }
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};
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} // namespace llvm
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#endif // LLVM_TRANSFORMS_VECTORIZE_VPLAN_VALUE_H
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