1 //===- VPlanValue.h - Represent Values in Vectorizer Plan -----------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 /// 9 /// \file 10 /// This file contains the declarations of the entities induced by Vectorization 11 /// Plans, e.g. the instructions the VPlan intends to generate if executed. 12 /// VPlan models the following entities: 13 /// VPValue VPUser VPDef 14 /// | | 15 /// VPInstruction 16 /// These are documented in docs/VectorizationPlan.rst. 17 /// 18 //===----------------------------------------------------------------------===// 19 20 #ifndef LLVM_TRANSFORMS_VECTORIZE_VPLAN_VALUE_H 21 #define LLVM_TRANSFORMS_VECTORIZE_VPLAN_VALUE_H 22 23 #include "llvm/ADT/DenseMap.h" 24 #include "llvm/ADT/STLExtras.h" 25 #include "llvm/ADT/SmallVector.h" 26 #include "llvm/ADT/StringMap.h" 27 #include "llvm/ADT/TinyPtrVector.h" 28 #include "llvm/ADT/iterator_range.h" 29 30 namespace llvm { 31 32 // Forward declarations. 33 class raw_ostream; 34 class Value; 35 class VPDef; 36 class VPSlotTracker; 37 class VPUser; 38 class VPRecipeBase; 39 40 // This is the base class of the VPlan Def/Use graph, used for modeling the data 41 // flow into, within and out of the VPlan. VPValues can stand for live-ins 42 // coming from the input IR and instructions which VPlan will generate if 43 // executed. 44 class VPValue { 45 friend class VPBuilder; 46 friend class VPDef; 47 friend class VPInstruction; 48 friend struct VPlanTransforms; 49 friend class VPBasicBlock; 50 friend class VPInterleavedAccessInfo; 51 friend class VPSlotTracker; 52 friend class VPRecipeBase; 53 54 const unsigned char SubclassID; ///< Subclass identifier (for isa/dyn_cast). 55 56 SmallVector<VPUser *, 1> Users; 57 58 protected: 59 // Hold the underlying Value, if any, attached to this VPValue. 60 Value *UnderlyingVal; 61 62 /// Pointer to the VPDef that defines this VPValue. If it is nullptr, the 63 /// VPValue is not defined by any recipe modeled in VPlan. 64 VPDef *Def; 65 66 VPValue(const unsigned char SC, Value *UV = nullptr, VPDef *Def = nullptr); 67 68 // DESIGN PRINCIPLE: Access to the underlying IR must be strictly limited to 69 // the front-end and back-end of VPlan so that the middle-end is as 70 // independent as possible of the underlying IR. We grant access to the 71 // underlying IR using friendship. In that way, we should be able to use VPlan 72 // for multiple underlying IRs (Polly?) by providing a new VPlan front-end, 73 // back-end and analysis information for the new IR. 74 75 public: 76 /// Return the underlying Value attached to this VPValue. 77 Value *getUnderlyingValue() const { return UnderlyingVal; } 78 79 /// An enumeration for keeping track of the concrete subclass of VPValue that 80 /// are actually instantiated. 81 enum { 82 VPValueSC, /// A generic VPValue, like live-in values or defined by a recipe 83 /// that defines multiple values. 84 VPVRecipeSC /// A VPValue sub-class that is a VPRecipeBase. 85 }; 86 87 /// Create a live-in VPValue. 88 VPValue(Value *UV = nullptr) : VPValue(VPValueSC, UV, nullptr) {} 89 /// Create a VPValue for a \p Def which is a subclass of VPValue. 90 VPValue(VPDef *Def, Value *UV = nullptr) : VPValue(VPVRecipeSC, UV, Def) {} 91 /// Create a VPValue for a \p Def which defines multiple values. 92 VPValue(Value *UV, VPDef *Def) : VPValue(VPValueSC, UV, Def) {} 93 VPValue(const VPValue &) = delete; 94 VPValue &operator=(const VPValue &) = delete; 95 96 virtual ~VPValue(); 97 98 /// \return an ID for the concrete type of this object. 99 /// This is used to implement the classof checks. This should not be used 100 /// for any other purpose, as the values may change as LLVM evolves. 101 unsigned getVPValueID() const { return SubclassID; } 102 103 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP) 104 void printAsOperand(raw_ostream &OS, VPSlotTracker &Tracker) const; 105 void print(raw_ostream &OS, VPSlotTracker &Tracker) const; 106 107 /// Dump the value to stderr (for debugging). 108 void dump() const; 109 #endif 110 111 unsigned getNumUsers() const { return Users.size(); } 112 void addUser(VPUser &User) { Users.push_back(&User); } 113 114 /// Remove a single \p User from the list of users. 115 void removeUser(VPUser &User) { 116 // The same user can be added multiple times, e.g. because the same VPValue 117 // is used twice by the same VPUser. Remove a single one. 118 auto *I = find(Users, &User); 119 if (I != Users.end()) 120 Users.erase(I); 121 } 122 123 typedef SmallVectorImpl<VPUser *>::iterator user_iterator; 124 typedef SmallVectorImpl<VPUser *>::const_iterator const_user_iterator; 125 typedef iterator_range<user_iterator> user_range; 126 typedef iterator_range<const_user_iterator> const_user_range; 127 128 user_iterator user_begin() { return Users.begin(); } 129 const_user_iterator user_begin() const { return Users.begin(); } 130 user_iterator user_end() { return Users.end(); } 131 const_user_iterator user_end() const { return Users.end(); } 132 user_range users() { return user_range(user_begin(), user_end()); } 133 const_user_range users() const { 134 return const_user_range(user_begin(), user_end()); 135 } 136 137 /// Returns true if the value has more than one unique user. 138 bool hasMoreThanOneUniqueUser() const { 139 if (getNumUsers() == 0) 140 return false; 141 142 // Check if all users match the first user. 143 auto Current = std::next(user_begin()); 144 while (Current != user_end() && *user_begin() == *Current) 145 Current++; 146 return Current != user_end(); 147 } 148 149 void replaceAllUsesWith(VPValue *New); 150 151 /// Go through the uses list for this VPValue and make each use point to \p 152 /// New if the callback ShouldReplace returns true for the given use specified 153 /// by a pair of (VPUser, the use index). 154 void replaceUsesWithIf( 155 VPValue *New, 156 llvm::function_ref<bool(VPUser &U, unsigned Idx)> ShouldReplace); 157 158 /// Returns the recipe defining this VPValue or nullptr if it is not defined 159 /// by a recipe, i.e. is a live-in. 160 VPRecipeBase *getDefiningRecipe(); 161 const VPRecipeBase *getDefiningRecipe() const; 162 163 /// Returns true if this VPValue is defined by a recipe. 164 bool hasDefiningRecipe() const { return getDefiningRecipe(); } 165 166 /// Returns true if this VPValue is a live-in, i.e. defined outside the VPlan. 167 bool isLiveIn() const { return !hasDefiningRecipe(); } 168 169 /// Returns the underlying IR value, if this VPValue is defined outside the 170 /// scope of VPlan. Returns nullptr if the VPValue is defined by a VPDef 171 /// inside a VPlan. 172 Value *getLiveInIRValue() { 173 assert(isLiveIn() && 174 "VPValue is not a live-in; it is defined by a VPDef inside a VPlan"); 175 return getUnderlyingValue(); 176 } 177 const Value *getLiveInIRValue() const { 178 assert(isLiveIn() && 179 "VPValue is not a live-in; it is defined by a VPDef inside a VPlan"); 180 return getUnderlyingValue(); 181 } 182 183 /// Returns true if the VPValue is defined outside any loop region. 184 bool isDefinedOutsideLoopRegions() const; 185 186 // Set \p Val as the underlying Value of this VPValue. 187 void setUnderlyingValue(Value *Val) { 188 assert(!UnderlyingVal && "Underlying Value is already set."); 189 UnderlyingVal = Val; 190 } 191 }; 192 193 typedef DenseMap<Value *, VPValue *> Value2VPValueTy; 194 typedef DenseMap<VPValue *, Value *> VPValue2ValueTy; 195 196 raw_ostream &operator<<(raw_ostream &OS, const VPValue &V); 197 198 /// This class augments VPValue with operands which provide the inverse def-use 199 /// edges from VPValue's users to their defs. 200 class VPUser { 201 SmallVector<VPValue *, 2> Operands; 202 203 protected: 204 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP) 205 /// Print the operands to \p O. 206 void printOperands(raw_ostream &O, VPSlotTracker &SlotTracker) const; 207 #endif 208 209 VPUser(ArrayRef<VPValue *> Operands) { 210 for (VPValue *Operand : Operands) 211 addOperand(Operand); 212 } 213 214 VPUser(std::initializer_list<VPValue *> Operands) 215 : VPUser(ArrayRef<VPValue *>(Operands)) {} 216 217 template <typename IterT> VPUser(iterator_range<IterT> Operands) { 218 for (VPValue *Operand : Operands) 219 addOperand(Operand); 220 } 221 222 public: 223 VPUser() = delete; 224 VPUser(const VPUser &) = delete; 225 VPUser &operator=(const VPUser &) = delete; 226 virtual ~VPUser() { 227 for (VPValue *Op : operands()) 228 Op->removeUser(*this); 229 } 230 231 void addOperand(VPValue *Operand) { 232 Operands.push_back(Operand); 233 Operand->addUser(*this); 234 } 235 236 unsigned getNumOperands() const { return Operands.size(); } 237 inline VPValue *getOperand(unsigned N) const { 238 assert(N < Operands.size() && "Operand index out of bounds"); 239 return Operands[N]; 240 } 241 242 void setOperand(unsigned I, VPValue *New) { 243 Operands[I]->removeUser(*this); 244 Operands[I] = New; 245 New->addUser(*this); 246 } 247 248 typedef SmallVectorImpl<VPValue *>::iterator operand_iterator; 249 typedef SmallVectorImpl<VPValue *>::const_iterator const_operand_iterator; 250 typedef iterator_range<operand_iterator> operand_range; 251 typedef iterator_range<const_operand_iterator> const_operand_range; 252 253 operand_iterator op_begin() { return Operands.begin(); } 254 const_operand_iterator op_begin() const { return Operands.begin(); } 255 operand_iterator op_end() { return Operands.end(); } 256 const_operand_iterator op_end() const { return Operands.end(); } 257 operand_range operands() { return operand_range(op_begin(), op_end()); } 258 const_operand_range operands() const { 259 return const_operand_range(op_begin(), op_end()); 260 } 261 262 /// Returns true if the VPUser uses scalars of operand \p Op. Conservatively 263 /// returns if only first (scalar) lane is used, as default. 264 virtual bool usesScalars(const VPValue *Op) const { 265 assert(is_contained(operands(), Op) && 266 "Op must be an operand of the recipe"); 267 return onlyFirstLaneUsed(Op); 268 } 269 270 /// Returns true if the VPUser only uses the first lane of operand \p Op. 271 /// Conservatively returns false. 272 virtual bool onlyFirstLaneUsed(const VPValue *Op) const { 273 assert(is_contained(operands(), Op) && 274 "Op must be an operand of the recipe"); 275 return false; 276 } 277 278 /// Returns true if the VPUser only uses the first part of operand \p Op. 279 /// Conservatively returns false. 280 virtual bool onlyFirstPartUsed(const VPValue *Op) const { 281 assert(is_contained(operands(), Op) && 282 "Op must be an operand of the recipe"); 283 return false; 284 } 285 }; 286 287 /// This class augments a recipe with a set of VPValues defined by the recipe. 288 /// It allows recipes to define zero, one or multiple VPValues. A VPDef owns 289 /// the VPValues it defines and is responsible for deleting its defined values. 290 /// Single-value VPDefs that also inherit from VPValue must make sure to inherit 291 /// from VPDef before VPValue. 292 class VPDef { 293 friend class VPValue; 294 295 /// Subclass identifier (for isa/dyn_cast). 296 const unsigned char SubclassID; 297 298 /// The VPValues defined by this VPDef. 299 TinyPtrVector<VPValue *> DefinedValues; 300 301 /// Add \p V as a defined value by this VPDef. 302 void addDefinedValue(VPValue *V) { 303 assert(V->Def == this && 304 "can only add VPValue already linked with this VPDef"); 305 DefinedValues.push_back(V); 306 } 307 308 /// Remove \p V from the values defined by this VPDef. \p V must be a defined 309 /// value of this VPDef. 310 void removeDefinedValue(VPValue *V) { 311 assert(V->Def == this && "can only remove VPValue linked with this VPDef"); 312 assert(is_contained(DefinedValues, V) && 313 "VPValue to remove must be in DefinedValues"); 314 llvm::erase(DefinedValues, V); 315 V->Def = nullptr; 316 } 317 318 public: 319 /// An enumeration for keeping track of the concrete subclass of VPRecipeBase 320 /// that is actually instantiated. Values of this enumeration are kept in the 321 /// SubclassID field of the VPRecipeBase objects. They are used for concrete 322 /// type identification. 323 using VPRecipeTy = enum { 324 VPBranchOnMaskSC, 325 VPDerivedIVSC, 326 VPExpandSCEVSC, 327 VPIRInstructionSC, 328 VPInstructionSC, 329 VPInterleaveSC, 330 VPReductionEVLSC, 331 VPReductionSC, 332 VPPartialReductionSC, 333 VPReplicateSC, 334 VPScalarCastSC, 335 VPScalarIVStepsSC, 336 VPVectorPointerSC, 337 VPReverseVectorPointerSC, 338 VPWidenCallSC, 339 VPWidenCanonicalIVSC, 340 VPWidenCastSC, 341 VPWidenGEPSC, 342 VPWidenIntrinsicSC, 343 VPWidenLoadEVLSC, 344 VPWidenLoadSC, 345 VPWidenStoreEVLSC, 346 VPWidenStoreSC, 347 VPWidenSC, 348 VPWidenEVLSC, 349 VPWidenSelectSC, 350 VPBlendSC, 351 VPHistogramSC, 352 // START: Phi-like recipes. Need to be kept together. 353 VPWidenPHISC, 354 VPPredInstPHISC, 355 // START: SubclassID for recipes that inherit VPHeaderPHIRecipe. 356 // VPHeaderPHIRecipe need to be kept together. 357 VPCanonicalIVPHISC, 358 VPActiveLaneMaskPHISC, 359 VPEVLBasedIVPHISC, 360 VPFirstOrderRecurrencePHISC, 361 VPWidenIntOrFpInductionSC, 362 VPWidenPointerInductionSC, 363 VPScalarPHISC, 364 VPReductionPHISC, 365 // END: SubclassID for recipes that inherit VPHeaderPHIRecipe 366 // END: Phi-like recipes 367 VPFirstPHISC = VPWidenPHISC, 368 VPFirstHeaderPHISC = VPCanonicalIVPHISC, 369 VPLastHeaderPHISC = VPReductionPHISC, 370 VPLastPHISC = VPReductionPHISC, 371 }; 372 373 VPDef(const unsigned char SC) : SubclassID(SC) {} 374 375 virtual ~VPDef() { 376 for (VPValue *D : make_early_inc_range(DefinedValues)) { 377 assert(D->Def == this && 378 "all defined VPValues should point to the containing VPDef"); 379 assert(D->getNumUsers() == 0 && 380 "all defined VPValues should have no more users"); 381 D->Def = nullptr; 382 delete D; 383 } 384 } 385 386 /// Returns the only VPValue defined by the VPDef. Can only be called for 387 /// VPDefs with a single defined value. 388 VPValue *getVPSingleValue() { 389 assert(DefinedValues.size() == 1 && "must have exactly one defined value"); 390 assert(DefinedValues[0] && "defined value must be non-null"); 391 return DefinedValues[0]; 392 } 393 const VPValue *getVPSingleValue() const { 394 assert(DefinedValues.size() == 1 && "must have exactly one defined value"); 395 assert(DefinedValues[0] && "defined value must be non-null"); 396 return DefinedValues[0]; 397 } 398 399 /// Returns the VPValue with index \p I defined by the VPDef. 400 VPValue *getVPValue(unsigned I) { 401 assert(DefinedValues[I] && "defined value must be non-null"); 402 return DefinedValues[I]; 403 } 404 const VPValue *getVPValue(unsigned I) const { 405 assert(DefinedValues[I] && "defined value must be non-null"); 406 return DefinedValues[I]; 407 } 408 409 /// Returns an ArrayRef of the values defined by the VPDef. 410 ArrayRef<VPValue *> definedValues() { return DefinedValues; } 411 /// Returns an ArrayRef of the values defined by the VPDef. 412 ArrayRef<VPValue *> definedValues() const { return DefinedValues; } 413 414 /// Returns the number of values defined by the VPDef. 415 unsigned getNumDefinedValues() const { return DefinedValues.size(); } 416 417 /// \return an ID for the concrete type of this object. 418 /// This is used to implement the classof checks. This should not be used 419 /// for any other purpose, as the values may change as LLVM evolves. 420 unsigned getVPDefID() const { return SubclassID; } 421 422 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP) 423 /// Dump the VPDef to stderr (for debugging). 424 void dump() const; 425 426 /// Each concrete VPDef prints itself. 427 virtual void print(raw_ostream &O, const Twine &Indent, 428 VPSlotTracker &SlotTracker) const = 0; 429 #endif 430 }; 431 432 class VPlan; 433 class VPBasicBlock; 434 435 /// This class can be used to assign names to VPValues. For VPValues without 436 /// underlying value, assign consecutive numbers and use those as names (wrapped 437 /// in vp<>). Otherwise, use the name from the underlying value (wrapped in 438 /// ir<>), appending a .V version number if there are multiple uses of the same 439 /// name. Allows querying names for VPValues for printing, similar to the 440 /// ModuleSlotTracker for IR values. 441 class VPSlotTracker { 442 /// Keep track of versioned names assigned to VPValues with underlying IR 443 /// values. 444 DenseMap<const VPValue *, std::string> VPValue2Name; 445 /// Keep track of the next number to use to version the base name. 446 StringMap<unsigned> BaseName2Version; 447 448 /// Number to assign to the next VPValue without underlying value. 449 unsigned NextSlot = 0; 450 451 void assignName(const VPValue *V); 452 void assignNames(const VPlan &Plan); 453 void assignNames(const VPBasicBlock *VPBB); 454 455 public: 456 VPSlotTracker(const VPlan *Plan = nullptr) { 457 if (Plan) 458 assignNames(*Plan); 459 } 460 461 /// Returns the name assigned to \p V, if there is one, otherwise try to 462 /// construct one from the underlying value, if there's one; else return 463 /// <badref>. 464 std::string getOrCreateName(const VPValue *V) const; 465 }; 466 467 } // namespace llvm 468 469 #endif // LLVM_TRANSFORMS_VECTORIZE_VPLAN_VALUE_H 470