1 //===- llvm/Attributes.h - Container for Attributes -------------*- C++ -*-===// 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 simple types necessary to represent the 11 /// attributes associated with functions and their calls. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #ifndef LLVM_IR_ATTRIBUTES_H 16 #define LLVM_IR_ATTRIBUTES_H 17 18 #include "llvm-c/Types.h" 19 #include "llvm/ADT/ArrayRef.h" 20 #include "llvm/ADT/BitmaskEnum.h" 21 #include "llvm/ADT/StringRef.h" 22 #include "llvm/Config/llvm-config.h" 23 #include "llvm/Support/Alignment.h" 24 #include "llvm/Support/CodeGen.h" 25 #include "llvm/Support/ModRef.h" 26 #include "llvm/Support/PointerLikeTypeTraits.h" 27 #include <cassert> 28 #include <cstdint> 29 #include <optional> 30 #include <string> 31 #include <utility> 32 33 namespace llvm { 34 35 class AttrBuilder; 36 class AttributeMask; 37 class AttributeImpl; 38 class AttributeListImpl; 39 class AttributeSetNode; 40 class FoldingSetNodeID; 41 class Function; 42 class LLVMContext; 43 class Type; 44 class raw_ostream; 45 enum FPClassTest : unsigned; 46 47 enum class AllocFnKind : uint64_t { 48 Unknown = 0, 49 Alloc = 1 << 0, // Allocator function returns a new allocation 50 Realloc = 1 << 1, // Allocator function resizes the `allocptr` argument 51 Free = 1 << 2, // Allocator function frees the `allocptr` argument 52 Uninitialized = 1 << 3, // Allocator function returns uninitialized memory 53 Zeroed = 1 << 4, // Allocator function returns zeroed memory 54 Aligned = 1 << 5, // Allocator function aligns allocations per the 55 // `allocalign` argument 56 LLVM_MARK_AS_BITMASK_ENUM(/* LargestValue = */ Aligned) 57 }; 58 59 //===----------------------------------------------------------------------===// 60 /// \class 61 /// Functions, function parameters, and return types can have attributes 62 /// to indicate how they should be treated by optimizations and code 63 /// generation. This class represents one of those attributes. It's light-weight 64 /// and should be passed around by-value. 65 class Attribute { 66 public: 67 /// This enumeration lists the attributes that can be associated with 68 /// parameters, function results, or the function itself. 69 /// 70 /// Note: The `uwtable' attribute is about the ABI or the user mandating an 71 /// entry in the unwind table. The `nounwind' attribute is about an exception 72 /// passing by the function. 73 /// 74 /// In a theoretical system that uses tables for profiling and SjLj for 75 /// exceptions, they would be fully independent. In a normal system that uses 76 /// tables for both, the semantics are: 77 /// 78 /// nil = Needs an entry because an exception might pass by. 79 /// nounwind = No need for an entry 80 /// uwtable = Needs an entry because the ABI says so and because 81 /// an exception might pass by. 82 /// uwtable + nounwind = Needs an entry because the ABI says so. 83 84 enum AttrKind { 85 // IR-Level Attributes 86 None, ///< No attributes have been set 87 #define GET_ATTR_ENUM 88 #include "llvm/IR/Attributes.inc" 89 EndAttrKinds, ///< Sentinal value useful for loops 90 EmptyKey, ///< Use as Empty key for DenseMap of AttrKind 91 TombstoneKey, ///< Use as Tombstone key for DenseMap of AttrKind 92 }; 93 94 static const unsigned NumIntAttrKinds = LastIntAttr - FirstIntAttr + 1; 95 static const unsigned NumTypeAttrKinds = LastTypeAttr - FirstTypeAttr + 1; 96 97 static bool isEnumAttrKind(AttrKind Kind) { 98 return Kind >= FirstEnumAttr && Kind <= LastEnumAttr; 99 } 100 static bool isIntAttrKind(AttrKind Kind) { 101 return Kind >= FirstIntAttr && Kind <= LastIntAttr; 102 } 103 static bool isTypeAttrKind(AttrKind Kind) { 104 return Kind >= FirstTypeAttr && Kind <= LastTypeAttr; 105 } 106 107 static bool canUseAsFnAttr(AttrKind Kind); 108 static bool canUseAsParamAttr(AttrKind Kind); 109 static bool canUseAsRetAttr(AttrKind Kind); 110 111 private: 112 AttributeImpl *pImpl = nullptr; 113 114 Attribute(AttributeImpl *A) : pImpl(A) {} 115 116 public: 117 Attribute() = default; 118 119 //===--------------------------------------------------------------------===// 120 // Attribute Construction 121 //===--------------------------------------------------------------------===// 122 123 /// Return a uniquified Attribute object. 124 static Attribute get(LLVMContext &Context, AttrKind Kind, uint64_t Val = 0); 125 static Attribute get(LLVMContext &Context, StringRef Kind, 126 StringRef Val = StringRef()); 127 static Attribute get(LLVMContext &Context, AttrKind Kind, Type *Ty); 128 129 /// Return a uniquified Attribute object that has the specific 130 /// alignment set. 131 static Attribute getWithAlignment(LLVMContext &Context, Align Alignment); 132 static Attribute getWithStackAlignment(LLVMContext &Context, Align Alignment); 133 static Attribute getWithDereferenceableBytes(LLVMContext &Context, 134 uint64_t Bytes); 135 static Attribute getWithDereferenceableOrNullBytes(LLVMContext &Context, 136 uint64_t Bytes); 137 static Attribute getWithAllocSizeArgs( 138 LLVMContext &Context, unsigned ElemSizeArg, 139 const std::optional<unsigned> &NumElemsArg); 140 static Attribute getWithVScaleRangeArgs(LLVMContext &Context, 141 unsigned MinValue, unsigned MaxValue); 142 static Attribute getWithByValType(LLVMContext &Context, Type *Ty); 143 static Attribute getWithStructRetType(LLVMContext &Context, Type *Ty); 144 static Attribute getWithByRefType(LLVMContext &Context, Type *Ty); 145 static Attribute getWithPreallocatedType(LLVMContext &Context, Type *Ty); 146 static Attribute getWithInAllocaType(LLVMContext &Context, Type *Ty); 147 static Attribute getWithUWTableKind(LLVMContext &Context, UWTableKind Kind); 148 static Attribute getWithMemoryEffects(LLVMContext &Context, MemoryEffects ME); 149 static Attribute getWithNoFPClass(LLVMContext &Context, FPClassTest Mask); 150 151 /// For a typed attribute, return the equivalent attribute with the type 152 /// changed to \p ReplacementTy. 153 Attribute getWithNewType(LLVMContext &Context, Type *ReplacementTy) { 154 assert(isTypeAttribute() && "this requires a typed attribute"); 155 return get(Context, getKindAsEnum(), ReplacementTy); 156 } 157 158 static Attribute::AttrKind getAttrKindFromName(StringRef AttrName); 159 160 static StringRef getNameFromAttrKind(Attribute::AttrKind AttrKind); 161 162 /// Return true if the provided string matches the IR name of an attribute. 163 /// example: "noalias" return true but not "NoAlias" 164 static bool isExistingAttribute(StringRef Name); 165 166 //===--------------------------------------------------------------------===// 167 // Attribute Accessors 168 //===--------------------------------------------------------------------===// 169 170 /// Return true if the attribute is an Attribute::AttrKind type. 171 bool isEnumAttribute() const; 172 173 /// Return true if the attribute is an integer attribute. 174 bool isIntAttribute() const; 175 176 /// Return true if the attribute is a string (target-dependent) 177 /// attribute. 178 bool isStringAttribute() const; 179 180 /// Return true if the attribute is a type attribute. 181 bool isTypeAttribute() const; 182 183 /// Return true if the attribute is any kind of attribute. 184 bool isValid() const { return pImpl; } 185 186 /// Return true if the attribute is present. 187 bool hasAttribute(AttrKind Val) const; 188 189 /// Return true if the target-dependent attribute is present. 190 bool hasAttribute(StringRef Val) const; 191 192 /// Return the attribute's kind as an enum (Attribute::AttrKind). This 193 /// requires the attribute to be an enum, integer, or type attribute. 194 Attribute::AttrKind getKindAsEnum() const; 195 196 /// Return the attribute's value as an integer. This requires that the 197 /// attribute be an integer attribute. 198 uint64_t getValueAsInt() const; 199 200 /// Return the attribute's value as a boolean. This requires that the 201 /// attribute be a string attribute. 202 bool getValueAsBool() const; 203 204 /// Return the attribute's kind as a string. This requires the 205 /// attribute to be a string attribute. 206 StringRef getKindAsString() const; 207 208 /// Return the attribute's value as a string. This requires the 209 /// attribute to be a string attribute. 210 StringRef getValueAsString() const; 211 212 /// Return the attribute's value as a Type. This requires the attribute to be 213 /// a type attribute. 214 Type *getValueAsType() const; 215 216 /// Returns the alignment field of an attribute as a byte alignment 217 /// value. 218 MaybeAlign getAlignment() const; 219 220 /// Returns the stack alignment field of an attribute as a byte 221 /// alignment value. 222 MaybeAlign getStackAlignment() const; 223 224 /// Returns the number of dereferenceable bytes from the 225 /// dereferenceable attribute. 226 uint64_t getDereferenceableBytes() const; 227 228 /// Returns the number of dereferenceable_or_null bytes from the 229 /// dereferenceable_or_null attribute. 230 uint64_t getDereferenceableOrNullBytes() const; 231 232 /// Returns the argument numbers for the allocsize attribute. 233 std::pair<unsigned, std::optional<unsigned>> getAllocSizeArgs() const; 234 235 /// Returns the minimum value for the vscale_range attribute. 236 unsigned getVScaleRangeMin() const; 237 238 /// Returns the maximum value for the vscale_range attribute or std::nullopt 239 /// when unknown. 240 std::optional<unsigned> getVScaleRangeMax() const; 241 242 // Returns the unwind table kind. 243 UWTableKind getUWTableKind() const; 244 245 // Returns the allocator function kind. 246 AllocFnKind getAllocKind() const; 247 248 /// Returns memory effects. 249 MemoryEffects getMemoryEffects() const; 250 251 /// Return the FPClassTest for nofpclass 252 FPClassTest getNoFPClass() const; 253 254 /// The Attribute is converted to a string of equivalent mnemonic. This 255 /// is, presumably, for writing out the mnemonics for the assembly writer. 256 std::string getAsString(bool InAttrGrp = false) const; 257 258 /// Return true if this attribute belongs to the LLVMContext. 259 bool hasParentContext(LLVMContext &C) const; 260 261 /// Equality and non-equality operators. 262 bool operator==(Attribute A) const { return pImpl == A.pImpl; } 263 bool operator!=(Attribute A) const { return pImpl != A.pImpl; } 264 265 /// Less-than operator. Useful for sorting the attributes list. 266 bool operator<(Attribute A) const; 267 268 void Profile(FoldingSetNodeID &ID) const; 269 270 /// Return a raw pointer that uniquely identifies this attribute. 271 void *getRawPointer() const { 272 return pImpl; 273 } 274 275 /// Get an attribute from a raw pointer created by getRawPointer. 276 static Attribute fromRawPointer(void *RawPtr) { 277 return Attribute(reinterpret_cast<AttributeImpl*>(RawPtr)); 278 } 279 }; 280 281 // Specialized opaque value conversions. 282 inline LLVMAttributeRef wrap(Attribute Attr) { 283 return reinterpret_cast<LLVMAttributeRef>(Attr.getRawPointer()); 284 } 285 286 // Specialized opaque value conversions. 287 inline Attribute unwrap(LLVMAttributeRef Attr) { 288 return Attribute::fromRawPointer(Attr); 289 } 290 291 //===----------------------------------------------------------------------===// 292 /// \class 293 /// This class holds the attributes for a particular argument, parameter, 294 /// function, or return value. It is an immutable value type that is cheap to 295 /// copy. Adding and removing enum attributes is intended to be fast, but adding 296 /// and removing string or integer attributes involves a FoldingSet lookup. 297 class AttributeSet { 298 friend AttributeListImpl; 299 template <typename Ty, typename Enable> friend struct DenseMapInfo; 300 301 // TODO: Extract AvailableAttrs from AttributeSetNode and store them here. 302 // This will allow an efficient implementation of addAttribute and 303 // removeAttribute for enum attrs. 304 305 /// Private implementation pointer. 306 AttributeSetNode *SetNode = nullptr; 307 308 private: 309 explicit AttributeSet(AttributeSetNode *ASN) : SetNode(ASN) {} 310 311 public: 312 /// AttributeSet is a trivially copyable value type. 313 AttributeSet() = default; 314 AttributeSet(const AttributeSet &) = default; 315 ~AttributeSet() = default; 316 317 static AttributeSet get(LLVMContext &C, const AttrBuilder &B); 318 static AttributeSet get(LLVMContext &C, ArrayRef<Attribute> Attrs); 319 320 bool operator==(const AttributeSet &O) const { return SetNode == O.SetNode; } 321 bool operator!=(const AttributeSet &O) const { return !(*this == O); } 322 323 /// Add an argument attribute. Returns a new set because attribute sets are 324 /// immutable. 325 [[nodiscard]] AttributeSet addAttribute(LLVMContext &C, 326 Attribute::AttrKind Kind) const; 327 328 /// Add a target-dependent attribute. Returns a new set because attribute sets 329 /// are immutable. 330 [[nodiscard]] AttributeSet addAttribute(LLVMContext &C, StringRef Kind, 331 StringRef Value = StringRef()) const; 332 333 /// Add attributes to the attribute set. Returns a new set because attribute 334 /// sets are immutable. 335 [[nodiscard]] AttributeSet addAttributes(LLVMContext &C, 336 AttributeSet AS) const; 337 338 /// Remove the specified attribute from this set. Returns a new set because 339 /// attribute sets are immutable. 340 [[nodiscard]] AttributeSet removeAttribute(LLVMContext &C, 341 Attribute::AttrKind Kind) const; 342 343 /// Remove the specified attribute from this set. Returns a new set because 344 /// attribute sets are immutable. 345 [[nodiscard]] AttributeSet removeAttribute(LLVMContext &C, 346 StringRef Kind) const; 347 348 /// Remove the specified attributes from this set. Returns a new set because 349 /// attribute sets are immutable. 350 [[nodiscard]] AttributeSet 351 removeAttributes(LLVMContext &C, const AttributeMask &AttrsToRemove) const; 352 353 /// Return the number of attributes in this set. 354 unsigned getNumAttributes() const; 355 356 /// Return true if attributes exists in this set. 357 bool hasAttributes() const { return SetNode != nullptr; } 358 359 /// Return true if the attribute exists in this set. 360 bool hasAttribute(Attribute::AttrKind Kind) const; 361 362 /// Return true if the attribute exists in this set. 363 bool hasAttribute(StringRef Kind) const; 364 365 /// Return the attribute object. 366 Attribute getAttribute(Attribute::AttrKind Kind) const; 367 368 /// Return the target-dependent attribute object. 369 Attribute getAttribute(StringRef Kind) const; 370 371 MaybeAlign getAlignment() const; 372 MaybeAlign getStackAlignment() const; 373 uint64_t getDereferenceableBytes() const; 374 uint64_t getDereferenceableOrNullBytes() const; 375 Type *getByValType() const; 376 Type *getStructRetType() const; 377 Type *getByRefType() const; 378 Type *getPreallocatedType() const; 379 Type *getInAllocaType() const; 380 Type *getElementType() const; 381 std::optional<std::pair<unsigned, std::optional<unsigned>>> getAllocSizeArgs() 382 const; 383 unsigned getVScaleRangeMin() const; 384 std::optional<unsigned> getVScaleRangeMax() const; 385 UWTableKind getUWTableKind() const; 386 AllocFnKind getAllocKind() const; 387 MemoryEffects getMemoryEffects() const; 388 FPClassTest getNoFPClass() const; 389 std::string getAsString(bool InAttrGrp = false) const; 390 391 /// Return true if this attribute set belongs to the LLVMContext. 392 bool hasParentContext(LLVMContext &C) const; 393 394 using iterator = const Attribute *; 395 396 iterator begin() const; 397 iterator end() const; 398 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP) 399 void dump() const; 400 #endif 401 }; 402 403 //===----------------------------------------------------------------------===// 404 /// \class 405 /// Provide DenseMapInfo for AttributeSet. 406 template <> struct DenseMapInfo<AttributeSet, void> { 407 static AttributeSet getEmptyKey() { 408 auto Val = static_cast<uintptr_t>(-1); 409 Val <<= PointerLikeTypeTraits<void *>::NumLowBitsAvailable; 410 return AttributeSet(reinterpret_cast<AttributeSetNode *>(Val)); 411 } 412 413 static AttributeSet getTombstoneKey() { 414 auto Val = static_cast<uintptr_t>(-2); 415 Val <<= PointerLikeTypeTraits<void *>::NumLowBitsAvailable; 416 return AttributeSet(reinterpret_cast<AttributeSetNode *>(Val)); 417 } 418 419 static unsigned getHashValue(AttributeSet AS) { 420 return (unsigned((uintptr_t)AS.SetNode) >> 4) ^ 421 (unsigned((uintptr_t)AS.SetNode) >> 9); 422 } 423 424 static bool isEqual(AttributeSet LHS, AttributeSet RHS) { return LHS == RHS; } 425 }; 426 427 //===----------------------------------------------------------------------===// 428 /// \class 429 /// This class holds the attributes for a function, its return value, and 430 /// its parameters. You access the attributes for each of them via an index into 431 /// the AttributeList object. The function attributes are at index 432 /// `AttributeList::FunctionIndex', the return value is at index 433 /// `AttributeList::ReturnIndex', and the attributes for the parameters start at 434 /// index `AttributeList::FirstArgIndex'. 435 class AttributeList { 436 public: 437 enum AttrIndex : unsigned { 438 ReturnIndex = 0U, 439 FunctionIndex = ~0U, 440 FirstArgIndex = 1, 441 }; 442 443 private: 444 friend class AttrBuilder; 445 friend class AttributeListImpl; 446 friend class AttributeSet; 447 friend class AttributeSetNode; 448 template <typename Ty, typename Enable> friend struct DenseMapInfo; 449 450 /// The attributes that we are managing. This can be null to represent 451 /// the empty attributes list. 452 AttributeListImpl *pImpl = nullptr; 453 454 public: 455 /// Create an AttributeList with the specified parameters in it. 456 static AttributeList get(LLVMContext &C, 457 ArrayRef<std::pair<unsigned, Attribute>> Attrs); 458 static AttributeList get(LLVMContext &C, 459 ArrayRef<std::pair<unsigned, AttributeSet>> Attrs); 460 461 /// Create an AttributeList from attribute sets for a function, its 462 /// return value, and all of its arguments. 463 static AttributeList get(LLVMContext &C, AttributeSet FnAttrs, 464 AttributeSet RetAttrs, 465 ArrayRef<AttributeSet> ArgAttrs); 466 467 private: 468 explicit AttributeList(AttributeListImpl *LI) : pImpl(LI) {} 469 470 static AttributeList getImpl(LLVMContext &C, ArrayRef<AttributeSet> AttrSets); 471 472 AttributeList setAttributesAtIndex(LLVMContext &C, unsigned Index, 473 AttributeSet Attrs) const; 474 475 public: 476 AttributeList() = default; 477 478 //===--------------------------------------------------------------------===// 479 // AttributeList Construction and Mutation 480 //===--------------------------------------------------------------------===// 481 482 /// Return an AttributeList with the specified parameters in it. 483 static AttributeList get(LLVMContext &C, ArrayRef<AttributeList> Attrs); 484 static AttributeList get(LLVMContext &C, unsigned Index, 485 ArrayRef<Attribute::AttrKind> Kinds); 486 static AttributeList get(LLVMContext &C, unsigned Index, 487 ArrayRef<Attribute::AttrKind> Kinds, 488 ArrayRef<uint64_t> Values); 489 static AttributeList get(LLVMContext &C, unsigned Index, 490 ArrayRef<StringRef> Kind); 491 static AttributeList get(LLVMContext &C, unsigned Index, 492 AttributeSet Attrs); 493 static AttributeList get(LLVMContext &C, unsigned Index, 494 const AttrBuilder &B); 495 496 // TODO: remove non-AtIndex versions of these methods. 497 /// Add an attribute to the attribute set at the given index. 498 /// Returns a new list because attribute lists are immutable. 499 [[nodiscard]] AttributeList 500 addAttributeAtIndex(LLVMContext &C, unsigned Index, 501 Attribute::AttrKind Kind) const; 502 503 /// Add an attribute to the attribute set at the given index. 504 /// Returns a new list because attribute lists are immutable. 505 [[nodiscard]] AttributeList 506 addAttributeAtIndex(LLVMContext &C, unsigned Index, StringRef Kind, 507 StringRef Value = StringRef()) const; 508 509 /// Add an attribute to the attribute set at the given index. 510 /// Returns a new list because attribute lists are immutable. 511 [[nodiscard]] AttributeList 512 addAttributeAtIndex(LLVMContext &C, unsigned Index, Attribute A) const; 513 514 /// Add attributes to the attribute set at the given index. 515 /// Returns a new list because attribute lists are immutable. 516 [[nodiscard]] AttributeList addAttributesAtIndex(LLVMContext &C, 517 unsigned Index, 518 const AttrBuilder &B) const; 519 520 /// Add a function attribute to the list. Returns a new list because 521 /// attribute lists are immutable. 522 [[nodiscard]] AttributeList addFnAttribute(LLVMContext &C, 523 Attribute::AttrKind Kind) const { 524 return addAttributeAtIndex(C, FunctionIndex, Kind); 525 } 526 527 /// Add a function attribute to the list. Returns a new list because 528 /// attribute lists are immutable. 529 [[nodiscard]] AttributeList addFnAttribute(LLVMContext &C, 530 Attribute Attr) const { 531 return addAttributeAtIndex(C, FunctionIndex, Attr); 532 } 533 534 /// Add a function attribute to the list. Returns a new list because 535 /// attribute lists are immutable. 536 [[nodiscard]] AttributeList 537 addFnAttribute(LLVMContext &C, StringRef Kind, 538 StringRef Value = StringRef()) const { 539 return addAttributeAtIndex(C, FunctionIndex, Kind, Value); 540 } 541 542 /// Add function attribute to the list. Returns a new list because 543 /// attribute lists are immutable. 544 [[nodiscard]] AttributeList addFnAttributes(LLVMContext &C, 545 const AttrBuilder &B) const { 546 return addAttributesAtIndex(C, FunctionIndex, B); 547 } 548 549 /// Add a return value attribute to the list. Returns a new list because 550 /// attribute lists are immutable. 551 [[nodiscard]] AttributeList addRetAttribute(LLVMContext &C, 552 Attribute::AttrKind Kind) const { 553 return addAttributeAtIndex(C, ReturnIndex, Kind); 554 } 555 556 /// Add a return value attribute to the list. Returns a new list because 557 /// attribute lists are immutable. 558 [[nodiscard]] AttributeList addRetAttribute(LLVMContext &C, 559 Attribute Attr) const { 560 return addAttributeAtIndex(C, ReturnIndex, Attr); 561 } 562 563 /// Add a return value attribute to the list. Returns a new list because 564 /// attribute lists are immutable. 565 [[nodiscard]] AttributeList addRetAttributes(LLVMContext &C, 566 const AttrBuilder &B) const { 567 return addAttributesAtIndex(C, ReturnIndex, B); 568 } 569 570 /// Add an argument attribute to the list. Returns a new list because 571 /// attribute lists are immutable. 572 [[nodiscard]] AttributeList 573 addParamAttribute(LLVMContext &C, unsigned ArgNo, 574 Attribute::AttrKind Kind) const { 575 return addAttributeAtIndex(C, ArgNo + FirstArgIndex, Kind); 576 } 577 578 /// Add an argument attribute to the list. Returns a new list because 579 /// attribute lists are immutable. 580 [[nodiscard]] AttributeList 581 addParamAttribute(LLVMContext &C, unsigned ArgNo, StringRef Kind, 582 StringRef Value = StringRef()) const { 583 return addAttributeAtIndex(C, ArgNo + FirstArgIndex, Kind, Value); 584 } 585 586 /// Add an attribute to the attribute list at the given arg indices. Returns a 587 /// new list because attribute lists are immutable. 588 [[nodiscard]] AttributeList addParamAttribute(LLVMContext &C, 589 ArrayRef<unsigned> ArgNos, 590 Attribute A) const; 591 592 /// Add an argument attribute to the list. Returns a new list because 593 /// attribute lists are immutable. 594 [[nodiscard]] AttributeList addParamAttributes(LLVMContext &C, unsigned ArgNo, 595 const AttrBuilder &B) const { 596 return addAttributesAtIndex(C, ArgNo + FirstArgIndex, B); 597 } 598 599 /// Remove the specified attribute at the specified index from this 600 /// attribute list. Returns a new list because attribute lists are immutable. 601 [[nodiscard]] AttributeList 602 removeAttributeAtIndex(LLVMContext &C, unsigned Index, 603 Attribute::AttrKind Kind) const; 604 605 /// Remove the specified attribute at the specified index from this 606 /// attribute list. Returns a new list because attribute lists are immutable. 607 [[nodiscard]] AttributeList 608 removeAttributeAtIndex(LLVMContext &C, unsigned Index, StringRef Kind) const; 609 [[nodiscard]] AttributeList removeAttribute(LLVMContext &C, unsigned Index, 610 StringRef Kind) const { 611 return removeAttributeAtIndex(C, Index, Kind); 612 } 613 614 /// Remove the specified attributes at the specified index from this 615 /// attribute list. Returns a new list because attribute lists are immutable. 616 [[nodiscard]] AttributeList 617 removeAttributesAtIndex(LLVMContext &C, unsigned Index, 618 const AttributeMask &AttrsToRemove) const; 619 620 /// Remove all attributes at the specified index from this 621 /// attribute list. Returns a new list because attribute lists are immutable. 622 [[nodiscard]] AttributeList removeAttributesAtIndex(LLVMContext &C, 623 unsigned Index) const; 624 625 /// Remove the specified attribute at the function index from this 626 /// attribute list. Returns a new list because attribute lists are immutable. 627 [[nodiscard]] AttributeList 628 removeFnAttribute(LLVMContext &C, Attribute::AttrKind Kind) const { 629 return removeAttributeAtIndex(C, FunctionIndex, Kind); 630 } 631 632 /// Remove the specified attribute at the function index from this 633 /// attribute list. Returns a new list because attribute lists are immutable. 634 [[nodiscard]] AttributeList removeFnAttribute(LLVMContext &C, 635 StringRef Kind) const { 636 return removeAttributeAtIndex(C, FunctionIndex, Kind); 637 } 638 639 /// Remove the specified attribute at the function index from this 640 /// attribute list. Returns a new list because attribute lists are immutable. 641 [[nodiscard]] AttributeList 642 removeFnAttributes(LLVMContext &C, const AttributeMask &AttrsToRemove) const { 643 return removeAttributesAtIndex(C, FunctionIndex, AttrsToRemove); 644 } 645 646 /// Remove the attributes at the function index from this 647 /// attribute list. Returns a new list because attribute lists are immutable. 648 [[nodiscard]] AttributeList removeFnAttributes(LLVMContext &C) const { 649 return removeAttributesAtIndex(C, FunctionIndex); 650 } 651 652 /// Remove the specified attribute at the return value index from this 653 /// attribute list. Returns a new list because attribute lists are immutable. 654 [[nodiscard]] AttributeList 655 removeRetAttribute(LLVMContext &C, Attribute::AttrKind Kind) const { 656 return removeAttributeAtIndex(C, ReturnIndex, Kind); 657 } 658 659 /// Remove the specified attribute at the return value index from this 660 /// attribute list. Returns a new list because attribute lists are immutable. 661 [[nodiscard]] AttributeList removeRetAttribute(LLVMContext &C, 662 StringRef Kind) const { 663 return removeAttributeAtIndex(C, ReturnIndex, Kind); 664 } 665 666 /// Remove the specified attribute at the return value index from this 667 /// attribute list. Returns a new list because attribute lists are immutable. 668 [[nodiscard]] AttributeList 669 removeRetAttributes(LLVMContext &C, 670 const AttributeMask &AttrsToRemove) const { 671 return removeAttributesAtIndex(C, ReturnIndex, AttrsToRemove); 672 } 673 674 /// Remove the specified attribute at the specified arg index from this 675 /// attribute list. Returns a new list because attribute lists are immutable. 676 [[nodiscard]] AttributeList 677 removeParamAttribute(LLVMContext &C, unsigned ArgNo, 678 Attribute::AttrKind Kind) const { 679 return removeAttributeAtIndex(C, ArgNo + FirstArgIndex, Kind); 680 } 681 682 /// Remove the specified attribute at the specified arg index from this 683 /// attribute list. Returns a new list because attribute lists are immutable. 684 [[nodiscard]] AttributeList 685 removeParamAttribute(LLVMContext &C, unsigned ArgNo, StringRef Kind) const { 686 return removeAttributeAtIndex(C, ArgNo + FirstArgIndex, Kind); 687 } 688 689 /// Remove the specified attribute at the specified arg index from this 690 /// attribute list. Returns a new list because attribute lists are immutable. 691 [[nodiscard]] AttributeList 692 removeParamAttributes(LLVMContext &C, unsigned ArgNo, 693 const AttributeMask &AttrsToRemove) const { 694 return removeAttributesAtIndex(C, ArgNo + FirstArgIndex, AttrsToRemove); 695 } 696 697 /// Remove all attributes at the specified arg index from this 698 /// attribute list. Returns a new list because attribute lists are immutable. 699 [[nodiscard]] AttributeList removeParamAttributes(LLVMContext &C, 700 unsigned ArgNo) const { 701 return removeAttributesAtIndex(C, ArgNo + FirstArgIndex); 702 } 703 704 /// Replace the type contained by attribute \p AttrKind at index \p ArgNo wih 705 /// \p ReplacementTy, preserving all other attributes. 706 [[nodiscard]] AttributeList 707 replaceAttributeTypeAtIndex(LLVMContext &C, unsigned ArgNo, 708 Attribute::AttrKind Kind, 709 Type *ReplacementTy) const { 710 Attribute Attr = getAttributeAtIndex(ArgNo, Kind); 711 auto Attrs = removeAttributeAtIndex(C, ArgNo, Kind); 712 return Attrs.addAttributeAtIndex(C, ArgNo, 713 Attr.getWithNewType(C, ReplacementTy)); 714 } 715 716 /// \brief Add the dereferenceable attribute to the attribute set at the given 717 /// index. Returns a new list because attribute lists are immutable. 718 [[nodiscard]] AttributeList addDereferenceableRetAttr(LLVMContext &C, 719 uint64_t Bytes) const; 720 721 /// \brief Add the dereferenceable attribute to the attribute set at the given 722 /// arg index. Returns a new list because attribute lists are immutable. 723 [[nodiscard]] AttributeList addDereferenceableParamAttr(LLVMContext &C, 724 unsigned ArgNo, 725 uint64_t Bytes) const; 726 727 /// Add the dereferenceable_or_null attribute to the attribute set at 728 /// the given arg index. Returns a new list because attribute lists are 729 /// immutable. 730 [[nodiscard]] AttributeList 731 addDereferenceableOrNullParamAttr(LLVMContext &C, unsigned ArgNo, 732 uint64_t Bytes) const; 733 734 /// Add the allocsize attribute to the attribute set at the given arg index. 735 /// Returns a new list because attribute lists are immutable. 736 [[nodiscard]] AttributeList 737 addAllocSizeParamAttr(LLVMContext &C, unsigned ArgNo, unsigned ElemSizeArg, 738 const std::optional<unsigned> &NumElemsArg); 739 740 //===--------------------------------------------------------------------===// 741 // AttributeList Accessors 742 //===--------------------------------------------------------------------===// 743 744 /// The attributes for the specified index are returned. 745 AttributeSet getAttributes(unsigned Index) const; 746 747 /// The attributes for the argument or parameter at the given index are 748 /// returned. 749 AttributeSet getParamAttrs(unsigned ArgNo) const; 750 751 /// The attributes for the ret value are returned. 752 AttributeSet getRetAttrs() const; 753 754 /// The function attributes are returned. 755 AttributeSet getFnAttrs() const; 756 757 /// Return true if the attribute exists at the given index. 758 bool hasAttributeAtIndex(unsigned Index, Attribute::AttrKind Kind) const; 759 760 /// Return true if the attribute exists at the given index. 761 bool hasAttributeAtIndex(unsigned Index, StringRef Kind) const; 762 763 /// Return true if attribute exists at the given index. 764 bool hasAttributesAtIndex(unsigned Index) const; 765 766 /// Return true if the attribute exists for the given argument 767 bool hasParamAttr(unsigned ArgNo, Attribute::AttrKind Kind) const { 768 return hasAttributeAtIndex(ArgNo + FirstArgIndex, Kind); 769 } 770 771 /// Return true if the attribute exists for the given argument 772 bool hasParamAttr(unsigned ArgNo, StringRef Kind) const { 773 return hasAttributeAtIndex(ArgNo + FirstArgIndex, Kind); 774 } 775 776 /// Return true if attributes exists for the given argument 777 bool hasParamAttrs(unsigned ArgNo) const { 778 return hasAttributesAtIndex(ArgNo + FirstArgIndex); 779 } 780 781 /// Return true if the attribute exists for the return value. 782 bool hasRetAttr(Attribute::AttrKind Kind) const { 783 return hasAttributeAtIndex(ReturnIndex, Kind); 784 } 785 786 /// Return true if the attribute exists for the return value. 787 bool hasRetAttr(StringRef Kind) const { 788 return hasAttributeAtIndex(ReturnIndex, Kind); 789 } 790 791 /// Return true if attributes exist for the return value. 792 bool hasRetAttrs() const { return hasAttributesAtIndex(ReturnIndex); } 793 794 /// Return true if the attribute exists for the function. 795 bool hasFnAttr(Attribute::AttrKind Kind) const; 796 797 /// Return true if the attribute exists for the function. 798 bool hasFnAttr(StringRef Kind) const; 799 800 /// Return true the attributes exist for the function. 801 bool hasFnAttrs() const { return hasAttributesAtIndex(FunctionIndex); } 802 803 /// Return true if the specified attribute is set for at least one 804 /// parameter or for the return value. If Index is not nullptr, the index 805 /// of a parameter with the specified attribute is provided. 806 bool hasAttrSomewhere(Attribute::AttrKind Kind, 807 unsigned *Index = nullptr) const; 808 809 /// Return the attribute object that exists at the given index. 810 Attribute getAttributeAtIndex(unsigned Index, Attribute::AttrKind Kind) const; 811 812 /// Return the attribute object that exists at the given index. 813 Attribute getAttributeAtIndex(unsigned Index, StringRef Kind) const; 814 815 /// Return the attribute object that exists at the arg index. 816 Attribute getParamAttr(unsigned ArgNo, Attribute::AttrKind Kind) const { 817 return getAttributeAtIndex(ArgNo + FirstArgIndex, Kind); 818 } 819 820 /// Return the attribute object that exists at the given index. 821 Attribute getParamAttr(unsigned ArgNo, StringRef Kind) const { 822 return getAttributeAtIndex(ArgNo + FirstArgIndex, Kind); 823 } 824 825 /// Return the attribute object that exists for the function. 826 Attribute getFnAttr(Attribute::AttrKind Kind) const { 827 return getAttributeAtIndex(FunctionIndex, Kind); 828 } 829 830 /// Return the attribute object that exists for the function. 831 Attribute getFnAttr(StringRef Kind) const { 832 return getAttributeAtIndex(FunctionIndex, Kind); 833 } 834 835 /// Return the alignment of the return value. 836 MaybeAlign getRetAlignment() const; 837 838 /// Return the alignment for the specified function parameter. 839 MaybeAlign getParamAlignment(unsigned ArgNo) const; 840 841 /// Return the stack alignment for the specified function parameter. 842 MaybeAlign getParamStackAlignment(unsigned ArgNo) const; 843 844 /// Return the byval type for the specified function parameter. 845 Type *getParamByValType(unsigned ArgNo) const; 846 847 /// Return the sret type for the specified function parameter. 848 Type *getParamStructRetType(unsigned ArgNo) const; 849 850 /// Return the byref type for the specified function parameter. 851 Type *getParamByRefType(unsigned ArgNo) const; 852 853 /// Return the preallocated type for the specified function parameter. 854 Type *getParamPreallocatedType(unsigned ArgNo) const; 855 856 /// Return the inalloca type for the specified function parameter. 857 Type *getParamInAllocaType(unsigned ArgNo) const; 858 859 /// Return the elementtype type for the specified function parameter. 860 Type *getParamElementType(unsigned ArgNo) const; 861 862 /// Get the stack alignment of the function. 863 MaybeAlign getFnStackAlignment() const; 864 865 /// Get the stack alignment of the return value. 866 MaybeAlign getRetStackAlignment() const; 867 868 /// Get the number of dereferenceable bytes (or zero if unknown) of the return 869 /// value. 870 uint64_t getRetDereferenceableBytes() const; 871 872 /// Get the number of dereferenceable bytes (or zero if unknown) of an arg. 873 uint64_t getParamDereferenceableBytes(unsigned Index) const; 874 875 /// Get the number of dereferenceable_or_null bytes (or zero if unknown) of 876 /// the return value. 877 uint64_t getRetDereferenceableOrNullBytes() const; 878 879 /// Get the number of dereferenceable_or_null bytes (or zero if unknown) of an 880 /// arg. 881 uint64_t getParamDereferenceableOrNullBytes(unsigned ArgNo) const; 882 883 /// Get the disallowed floating-point classes of the return value. 884 FPClassTest getRetNoFPClass() const; 885 886 /// Get the disallowed floating-point classes of the argument value. 887 FPClassTest getParamNoFPClass(unsigned ArgNo) const; 888 889 /// Get the unwind table kind requested for the function. 890 UWTableKind getUWTableKind() const; 891 892 AllocFnKind getAllocKind() const; 893 894 /// Returns memory effects of the function. 895 MemoryEffects getMemoryEffects() const; 896 897 /// Return the attributes at the index as a string. 898 std::string getAsString(unsigned Index, bool InAttrGrp = false) const; 899 900 /// Return true if this attribute list belongs to the LLVMContext. 901 bool hasParentContext(LLVMContext &C) const; 902 903 //===--------------------------------------------------------------------===// 904 // AttributeList Introspection 905 //===--------------------------------------------------------------------===// 906 907 using iterator = const AttributeSet *; 908 909 iterator begin() const; 910 iterator end() const; 911 912 unsigned getNumAttrSets() const; 913 914 // Implementation of indexes(). Produces iterators that wrap an index. Mostly 915 // to hide the awkwardness of unsigned wrapping when iterating over valid 916 // indexes. 917 struct index_iterator { 918 unsigned NumAttrSets; 919 index_iterator(int NumAttrSets) : NumAttrSets(NumAttrSets) {} 920 struct int_wrapper { 921 int_wrapper(unsigned i) : i(i) {} 922 unsigned i; 923 unsigned operator*() { return i; } 924 bool operator!=(const int_wrapper &Other) { return i != Other.i; } 925 int_wrapper &operator++() { 926 // This is expected to undergo unsigned wrapping since FunctionIndex is 927 // ~0 and that's where we start. 928 ++i; 929 return *this; 930 } 931 }; 932 933 int_wrapper begin() { return int_wrapper(AttributeList::FunctionIndex); } 934 935 int_wrapper end() { return int_wrapper(NumAttrSets - 1); } 936 }; 937 938 /// Use this to iterate over the valid attribute indexes. 939 index_iterator indexes() const { return index_iterator(getNumAttrSets()); } 940 941 /// operator==/!= - Provide equality predicates. 942 bool operator==(const AttributeList &RHS) const { return pImpl == RHS.pImpl; } 943 bool operator!=(const AttributeList &RHS) const { return pImpl != RHS.pImpl; } 944 945 /// Return a raw pointer that uniquely identifies this attribute list. 946 void *getRawPointer() const { 947 return pImpl; 948 } 949 950 /// Return true if there are no attributes. 951 bool isEmpty() const { return pImpl == nullptr; } 952 953 void print(raw_ostream &O) const; 954 955 void dump() const; 956 }; 957 958 //===----------------------------------------------------------------------===// 959 /// \class 960 /// Provide DenseMapInfo for AttributeList. 961 template <> struct DenseMapInfo<AttributeList, void> { 962 static AttributeList getEmptyKey() { 963 auto Val = static_cast<uintptr_t>(-1); 964 Val <<= PointerLikeTypeTraits<void*>::NumLowBitsAvailable; 965 return AttributeList(reinterpret_cast<AttributeListImpl *>(Val)); 966 } 967 968 static AttributeList getTombstoneKey() { 969 auto Val = static_cast<uintptr_t>(-2); 970 Val <<= PointerLikeTypeTraits<void*>::NumLowBitsAvailable; 971 return AttributeList(reinterpret_cast<AttributeListImpl *>(Val)); 972 } 973 974 static unsigned getHashValue(AttributeList AS) { 975 return (unsigned((uintptr_t)AS.pImpl) >> 4) ^ 976 (unsigned((uintptr_t)AS.pImpl) >> 9); 977 } 978 979 static bool isEqual(AttributeList LHS, AttributeList RHS) { 980 return LHS == RHS; 981 } 982 }; 983 984 //===----------------------------------------------------------------------===// 985 /// \class 986 /// This class is used in conjunction with the Attribute::get method to 987 /// create an Attribute object. The object itself is uniquified. The Builder's 988 /// value, however, is not. So this can be used as a quick way to test for 989 /// equality, presence of attributes, etc. 990 class AttrBuilder { 991 LLVMContext &Ctx; 992 SmallVector<Attribute, 8> Attrs; 993 994 public: 995 AttrBuilder(LLVMContext &Ctx) : Ctx(Ctx) {} 996 AttrBuilder(const AttrBuilder &) = delete; 997 AttrBuilder(AttrBuilder &&) = default; 998 999 AttrBuilder(LLVMContext &Ctx, const Attribute &A) : Ctx(Ctx) { 1000 addAttribute(A); 1001 } 1002 1003 AttrBuilder(LLVMContext &Ctx, AttributeSet AS); 1004 1005 void clear(); 1006 1007 /// Add an attribute to the builder. 1008 AttrBuilder &addAttribute(Attribute::AttrKind Val); 1009 1010 /// Add the Attribute object to the builder. 1011 AttrBuilder &addAttribute(Attribute A); 1012 1013 /// Add the target-dependent attribute to the builder. 1014 AttrBuilder &addAttribute(StringRef A, StringRef V = StringRef()); 1015 1016 /// Remove an attribute from the builder. 1017 AttrBuilder &removeAttribute(Attribute::AttrKind Val); 1018 1019 /// Remove the target-dependent attribute from the builder. 1020 AttrBuilder &removeAttribute(StringRef A); 1021 1022 /// Remove the target-dependent attribute from the builder. 1023 AttrBuilder &removeAttribute(Attribute A) { 1024 if (A.isStringAttribute()) 1025 return removeAttribute(A.getKindAsString()); 1026 else 1027 return removeAttribute(A.getKindAsEnum()); 1028 } 1029 1030 /// Add the attributes from the builder. Attributes in the passed builder 1031 /// overwrite attributes in this builder if they have the same key. 1032 AttrBuilder &merge(const AttrBuilder &B); 1033 1034 /// Remove the attributes from the builder. 1035 AttrBuilder &remove(const AttributeMask &AM); 1036 1037 /// Return true if the builder has any attribute that's in the 1038 /// specified builder. 1039 bool overlaps(const AttributeMask &AM) const; 1040 1041 /// Return true if the builder has the specified attribute. 1042 bool contains(Attribute::AttrKind A) const; 1043 1044 /// Return true if the builder has the specified target-dependent 1045 /// attribute. 1046 bool contains(StringRef A) const; 1047 1048 /// Return true if the builder has IR-level attributes. 1049 bool hasAttributes() const { return !Attrs.empty(); } 1050 1051 /// Return Attribute with the given Kind. The returned attribute will be 1052 /// invalid if the Kind is not present in the builder. 1053 Attribute getAttribute(Attribute::AttrKind Kind) const; 1054 1055 /// Return Attribute with the given Kind. The returned attribute will be 1056 /// invalid if the Kind is not present in the builder. 1057 Attribute getAttribute(StringRef Kind) const; 1058 1059 /// Return raw (possibly packed/encoded) value of integer attribute or 1060 /// std::nullopt if not set. 1061 std::optional<uint64_t> getRawIntAttr(Attribute::AttrKind Kind) const; 1062 1063 /// Retrieve the alignment attribute, if it exists. 1064 MaybeAlign getAlignment() const { 1065 return MaybeAlign(getRawIntAttr(Attribute::Alignment).value_or(0)); 1066 } 1067 1068 /// Retrieve the stack alignment attribute, if it exists. 1069 MaybeAlign getStackAlignment() const { 1070 return MaybeAlign(getRawIntAttr(Attribute::StackAlignment).value_or(0)); 1071 } 1072 1073 /// Retrieve the number of dereferenceable bytes, if the 1074 /// dereferenceable attribute exists (zero is returned otherwise). 1075 uint64_t getDereferenceableBytes() const { 1076 return getRawIntAttr(Attribute::Dereferenceable).value_or(0); 1077 } 1078 1079 /// Retrieve the number of dereferenceable_or_null bytes, if the 1080 /// dereferenceable_or_null attribute exists (zero is returned otherwise). 1081 uint64_t getDereferenceableOrNullBytes() const { 1082 return getRawIntAttr(Attribute::DereferenceableOrNull).value_or(0); 1083 } 1084 1085 /// Retrieve type for the given type attribute. 1086 Type *getTypeAttr(Attribute::AttrKind Kind) const; 1087 1088 /// Retrieve the byval type. 1089 Type *getByValType() const { return getTypeAttr(Attribute::ByVal); } 1090 1091 /// Retrieve the sret type. 1092 Type *getStructRetType() const { return getTypeAttr(Attribute::StructRet); } 1093 1094 /// Retrieve the byref type. 1095 Type *getByRefType() const { return getTypeAttr(Attribute::ByRef); } 1096 1097 /// Retrieve the preallocated type. 1098 Type *getPreallocatedType() const { 1099 return getTypeAttr(Attribute::Preallocated); 1100 } 1101 1102 /// Retrieve the inalloca type. 1103 Type *getInAllocaType() const { return getTypeAttr(Attribute::InAlloca); } 1104 1105 /// Retrieve the allocsize args, or std::nullopt if the attribute does not 1106 /// exist. 1107 std::optional<std::pair<unsigned, std::optional<unsigned>>> getAllocSizeArgs() 1108 const; 1109 1110 /// Add integer attribute with raw value (packed/encoded if necessary). 1111 AttrBuilder &addRawIntAttr(Attribute::AttrKind Kind, uint64_t Value); 1112 1113 /// This turns an alignment into the form used internally in Attribute. 1114 /// This call has no effect if Align is not set. 1115 AttrBuilder &addAlignmentAttr(MaybeAlign Align); 1116 1117 /// This turns an int alignment (which must be a power of 2) into the 1118 /// form used internally in Attribute. 1119 /// This call has no effect if Align is 0. 1120 /// Deprecated, use the version using a MaybeAlign. 1121 inline AttrBuilder &addAlignmentAttr(unsigned Align) { 1122 return addAlignmentAttr(MaybeAlign(Align)); 1123 } 1124 1125 /// This turns a stack alignment into the form used internally in Attribute. 1126 /// This call has no effect if Align is not set. 1127 AttrBuilder &addStackAlignmentAttr(MaybeAlign Align); 1128 1129 /// This turns an int stack alignment (which must be a power of 2) into 1130 /// the form used internally in Attribute. 1131 /// This call has no effect if Align is 0. 1132 /// Deprecated, use the version using a MaybeAlign. 1133 inline AttrBuilder &addStackAlignmentAttr(unsigned Align) { 1134 return addStackAlignmentAttr(MaybeAlign(Align)); 1135 } 1136 1137 /// This turns the number of dereferenceable bytes into the form used 1138 /// internally in Attribute. 1139 AttrBuilder &addDereferenceableAttr(uint64_t Bytes); 1140 1141 /// This turns the number of dereferenceable_or_null bytes into the 1142 /// form used internally in Attribute. 1143 AttrBuilder &addDereferenceableOrNullAttr(uint64_t Bytes); 1144 1145 /// This turns one (or two) ints into the form used internally in Attribute. 1146 AttrBuilder &addAllocSizeAttr(unsigned ElemSizeArg, 1147 const std::optional<unsigned> &NumElemsArg); 1148 1149 /// This turns two ints into the form used internally in Attribute. 1150 AttrBuilder &addVScaleRangeAttr(unsigned MinValue, 1151 std::optional<unsigned> MaxValue); 1152 1153 /// Add a type attribute with the given type. 1154 AttrBuilder &addTypeAttr(Attribute::AttrKind Kind, Type *Ty); 1155 1156 /// This turns a byval type into the form used internally in Attribute. 1157 AttrBuilder &addByValAttr(Type *Ty); 1158 1159 /// This turns a sret type into the form used internally in Attribute. 1160 AttrBuilder &addStructRetAttr(Type *Ty); 1161 1162 /// This turns a byref type into the form used internally in Attribute. 1163 AttrBuilder &addByRefAttr(Type *Ty); 1164 1165 /// This turns a preallocated type into the form used internally in Attribute. 1166 AttrBuilder &addPreallocatedAttr(Type *Ty); 1167 1168 /// This turns an inalloca type into the form used internally in Attribute. 1169 AttrBuilder &addInAllocaAttr(Type *Ty); 1170 1171 /// Add an allocsize attribute, using the representation returned by 1172 /// Attribute.getIntValue(). 1173 AttrBuilder &addAllocSizeAttrFromRawRepr(uint64_t RawAllocSizeRepr); 1174 1175 /// Add a vscale_range attribute, using the representation returned by 1176 /// Attribute.getIntValue(). 1177 AttrBuilder &addVScaleRangeAttrFromRawRepr(uint64_t RawVScaleRangeRepr); 1178 1179 /// This turns the unwind table kind into the form used internally in 1180 /// Attribute. 1181 AttrBuilder &addUWTableAttr(UWTableKind Kind); 1182 1183 // This turns the allocator kind into the form used internally in Attribute. 1184 AttrBuilder &addAllocKindAttr(AllocFnKind Kind); 1185 1186 /// Add memory effect attribute. 1187 AttrBuilder &addMemoryAttr(MemoryEffects ME); 1188 1189 // Add nofpclass attribute 1190 AttrBuilder &addNoFPClassAttr(FPClassTest NoFPClassMask); 1191 1192 ArrayRef<Attribute> attrs() const { return Attrs; } 1193 1194 bool operator==(const AttrBuilder &B) const; 1195 bool operator!=(const AttrBuilder &B) const { return !(*this == B); } 1196 }; 1197 1198 namespace AttributeFuncs { 1199 1200 enum AttributeSafetyKind : uint8_t { 1201 ASK_SAFE_TO_DROP = 1, 1202 ASK_UNSAFE_TO_DROP = 2, 1203 ASK_ALL = ASK_SAFE_TO_DROP | ASK_UNSAFE_TO_DROP, 1204 }; 1205 1206 /// Returns true if this is a type legal for the 'nofpclass' attribute. This 1207 /// follows the same type rules as FPMathOperator. 1208 bool isNoFPClassCompatibleType(Type *Ty); 1209 1210 /// Which attributes cannot be applied to a type. The argument \p ASK indicates, 1211 /// if only attributes that are known to be safely droppable are contained in 1212 /// the mask; only attributes that might be unsafe to drop (e.g., ABI-related 1213 /// attributes) are in the mask; or both. 1214 AttributeMask typeIncompatible(Type *Ty, AttributeSafetyKind ASK = ASK_ALL); 1215 1216 /// Get param/return attributes which imply immediate undefined behavior if an 1217 /// invalid value is passed. For example, this includes noundef (where undef 1218 /// implies UB), but not nonnull (where null implies poison). It also does not 1219 /// include attributes like nocapture, which constrain the function 1220 /// implementation rather than the passed value. 1221 AttributeMask getUBImplyingAttributes(); 1222 1223 /// \returns Return true if the two functions have compatible target-independent 1224 /// attributes for inlining purposes. 1225 bool areInlineCompatible(const Function &Caller, const Function &Callee); 1226 1227 1228 /// Checks if there are any incompatible function attributes between 1229 /// \p A and \p B. 1230 /// 1231 /// \param [in] A - The first function to be compared with. 1232 /// \param [in] B - The second function to be compared with. 1233 /// \returns true if the functions have compatible attributes. 1234 bool areOutlineCompatible(const Function &A, const Function &B); 1235 1236 /// Merge caller's and callee's attributes. 1237 void mergeAttributesForInlining(Function &Caller, const Function &Callee); 1238 1239 /// Merges the functions attributes from \p ToMerge into function \p Base. 1240 /// 1241 /// \param [in,out] Base - The function being merged into. 1242 /// \param [in] ToMerge - The function to merge attributes from. 1243 void mergeAttributesForOutlining(Function &Base, const Function &ToMerge); 1244 1245 /// Update min-legal-vector-width if it is in Attribute and less than Width. 1246 void updateMinLegalVectorWidthAttr(Function &Fn, uint64_t Width); 1247 1248 } // end namespace AttributeFuncs 1249 1250 } // end namespace llvm 1251 1252 #endif // LLVM_IR_ATTRIBUTES_H 1253