1 //===- ClangOpenCLBuiltinEmitter.cpp - Generate Clang OpenCL Builtin handling 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 6 // See https://llvm.org/LICENSE.txt for license information. 7 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 8 // 9 //===----------------------------------------------------------------------===// 10 // 11 // These backends consume the definitions of OpenCL builtin functions in 12 // clang/lib/Sema/OpenCLBuiltins.td and produce builtin handling code for 13 // inclusion in SemaLookup.cpp, or a test file that calls all declared builtins. 14 // 15 //===----------------------------------------------------------------------===// 16 17 #include "TableGenBackends.h" 18 #include "llvm/ADT/MapVector.h" 19 #include "llvm/ADT/STLExtras.h" 20 #include "llvm/ADT/SmallString.h" 21 #include "llvm/ADT/StringExtras.h" 22 #include "llvm/ADT/StringMap.h" 23 #include "llvm/ADT/StringRef.h" 24 #include "llvm/ADT/StringSwitch.h" 25 #include "llvm/Support/ErrorHandling.h" 26 #include "llvm/Support/raw_ostream.h" 27 #include "llvm/TableGen/Error.h" 28 #include "llvm/TableGen/Record.h" 29 #include "llvm/TableGen/StringMatcher.h" 30 #include "llvm/TableGen/TableGenBackend.h" 31 32 using namespace llvm; 33 34 namespace { 35 36 // A list of signatures that are shared by one or more builtin functions. 37 struct BuiltinTableEntries { 38 SmallVector<StringRef, 4> Names; 39 std::vector<std::pair<const Record *, unsigned>> Signatures; 40 }; 41 42 // This tablegen backend emits code for checking whether a function is an 43 // OpenCL builtin function. If so, all overloads of this function are 44 // added to the LookupResult. The generated include file is used by 45 // SemaLookup.cpp 46 // 47 // For a successful lookup of e.g. the "cos" builtin, isOpenCLBuiltin("cos") 48 // returns a pair <Index, Len>. 49 // BuiltinTable[Index] to BuiltinTable[Index + Len] contains the pairs 50 // <SigIndex, SigLen> of the overloads of "cos". 51 // SignatureTable[SigIndex] to SignatureTable[SigIndex + SigLen] contains 52 // one of the signatures of "cos". The SignatureTable entry can be 53 // referenced by other functions, e.g. "sin", to exploit the fact that 54 // many OpenCL builtins share the same signature. 55 // 56 // The file generated by this TableGen emitter contains the following: 57 // 58 // * Structs and enums to represent types and function signatures. 59 // 60 // * const char *FunctionExtensionTable[] 61 // List of space-separated OpenCL extensions. A builtin references an 62 // entry in this table when the builtin requires a particular (set of) 63 // extension(s) to be enabled. 64 // 65 // * OpenCLTypeStruct TypeTable[] 66 // Type information for return types and arguments. 67 // 68 // * unsigned SignatureTable[] 69 // A list of types representing function signatures. Each entry is an index 70 // into the above TypeTable. Multiple entries following each other form a 71 // signature, where the first entry is the return type and subsequent 72 // entries are the argument types. 73 // 74 // * OpenCLBuiltinStruct BuiltinTable[] 75 // Each entry represents one overload of an OpenCL builtin function and 76 // consists of an index into the SignatureTable and the number of arguments. 77 // 78 // * std::pair<unsigned, unsigned> isOpenCLBuiltin(llvm::StringRef Name) 79 // Find out whether a string matches an existing OpenCL builtin function 80 // name and return an index into BuiltinTable and the number of overloads. 81 // 82 // * void OCL2Qual(Sema&, OpenCLTypeStruct, std::vector<QualType>&) 83 // Convert an OpenCLTypeStruct type to a list of QualType instances. 84 // One OpenCLTypeStruct can represent multiple types, primarily when using 85 // GenTypes. 86 // 87 class BuiltinNameEmitter { 88 public: 89 BuiltinNameEmitter(RecordKeeper &Records, raw_ostream &OS) 90 : Records(Records), OS(OS) {} 91 92 // Entrypoint to generate the functions and structures for checking 93 // whether a function is an OpenCL builtin function. 94 void Emit(); 95 96 private: 97 // A list of indices into the builtin function table. 98 using BuiltinIndexListTy = SmallVector<unsigned, 11>; 99 100 // Contains OpenCL builtin functions and related information, stored as 101 // Record instances. They are coming from the associated TableGen file. 102 RecordKeeper &Records; 103 104 // The output file. 105 raw_ostream &OS; 106 107 // Helper function for BuiltinNameEmitter::EmitDeclarations. Generate enum 108 // definitions in the Output string parameter, and save their Record instances 109 // in the List parameter. 110 // \param Types (in) List containing the Types to extract. 111 // \param TypesSeen (inout) List containing the Types already extracted. 112 // \param Output (out) String containing the enums to emit in the output file. 113 // \param List (out) List containing the extracted Types, except the Types in 114 // TypesSeen. 115 void ExtractEnumTypes(std::vector<Record *> &Types, 116 StringMap<bool> &TypesSeen, std::string &Output, 117 std::vector<const Record *> &List); 118 119 // Emit the enum or struct used in the generated file. 120 // Populate the TypeList at the same time. 121 void EmitDeclarations(); 122 123 // Parse the Records generated by TableGen to populate the SignaturesList, 124 // FctOverloadMap and TypeMap. 125 void GetOverloads(); 126 127 // Compare two lists of signatures and check that e.g. the OpenCL version, 128 // function attributes, and extension are equal for each signature. 129 // \param Candidate (in) Entry in the SignatureListMap to check. 130 // \param SignatureList (in) List of signatures of the considered function. 131 // \returns true if the two lists of signatures are identical. 132 bool CanReuseSignature( 133 BuiltinIndexListTy *Candidate, 134 std::vector<std::pair<const Record *, unsigned>> &SignatureList); 135 136 // Group functions with the same list of signatures by populating the 137 // SignatureListMap. 138 // Some builtin functions have the same list of signatures, for example the 139 // "sin" and "cos" functions. To save space in the BuiltinTable, the 140 // "isOpenCLBuiltin" function will have the same output for these two 141 // function names. 142 void GroupBySignature(); 143 144 // Emit the FunctionExtensionTable that lists all function extensions. 145 void EmitExtensionTable(); 146 147 // Emit the TypeTable containing all types used by OpenCL builtins. 148 void EmitTypeTable(); 149 150 // Emit the SignatureTable. This table contains all the possible signatures. 151 // A signature is stored as a list of indexes of the TypeTable. 152 // The first index references the return type (mandatory), and the followings 153 // reference its arguments. 154 // E.g.: 155 // 15, 2, 15 can represent a function with the signature: 156 // int func(float, int) 157 // The "int" type being at the index 15 in the TypeTable. 158 void EmitSignatureTable(); 159 160 // Emit the BuiltinTable table. This table contains all the overloads of 161 // each function, and is a struct OpenCLBuiltinDecl. 162 // E.g.: 163 // // 891 convert_float2_rtn 164 // { 58, 2, 3, 100, 0 }, 165 // This means that the signature of this convert_float2_rtn overload has 166 // 1 argument (+1 for the return type), stored at index 58 in 167 // the SignatureTable. This prototype requires extension "3" in the 168 // FunctionExtensionTable. The last two values represent the minimum (1.0) 169 // and maximum (0, meaning no max version) OpenCL version in which this 170 // overload is supported. 171 void EmitBuiltinTable(); 172 173 // Emit a StringMatcher function to check whether a function name is an 174 // OpenCL builtin function name. 175 void EmitStringMatcher(); 176 177 // Emit a function returning the clang QualType instance associated with 178 // the TableGen Record Type. 179 void EmitQualTypeFinder(); 180 181 // Contains a list of the available signatures, without the name of the 182 // function. Each pair consists of a signature and a cumulative index. 183 // E.g.: <<float, float>, 0>, 184 // <<float, int, int, 2>>, 185 // <<float>, 5>, 186 // ... 187 // <<double, double>, 35>. 188 std::vector<std::pair<std::vector<Record *>, unsigned>> SignaturesList; 189 190 // Map the name of a builtin function to its prototypes (instances of the 191 // TableGen "Builtin" class). 192 // Each prototype is registered as a pair of: 193 // <pointer to the "Builtin" instance, 194 // cumulative index of the associated signature in the SignaturesList> 195 // E.g.: The function cos: (float cos(float), double cos(double), ...) 196 // <"cos", <<ptrToPrototype0, 5>, 197 // <ptrToPrototype1, 35>, 198 // <ptrToPrototype2, 79>> 199 // ptrToPrototype1 has the following signature: <double, double> 200 MapVector<StringRef, std::vector<std::pair<const Record *, unsigned>>> 201 FctOverloadMap; 202 203 // Contains the map of OpenCL types to their index in the TypeTable. 204 MapVector<const Record *, unsigned> TypeMap; 205 206 // List of OpenCL function extensions mapping extension strings to 207 // an index into the FunctionExtensionTable. 208 StringMap<unsigned> FunctionExtensionIndex; 209 210 // List of OpenCL type names in the same order as in enum OpenCLTypeID. 211 // This list does not contain generic types. 212 std::vector<const Record *> TypeList; 213 214 // Same as TypeList, but for generic types only. 215 std::vector<const Record *> GenTypeList; 216 217 // Map an ordered vector of signatures to their original Record instances, 218 // and to a list of function names that share these signatures. 219 // 220 // For example, suppose the "cos" and "sin" functions have only three 221 // signatures, and these signatures are at index Ix in the SignatureTable: 222 // cos | sin | Signature | Index 223 // float cos(float) | float sin(float) | Signature1 | I1 224 // double cos(double) | double sin(double) | Signature2 | I2 225 // half cos(half) | half sin(half) | Signature3 | I3 226 // 227 // Then we will create a mapping of the vector of signatures: 228 // SignatureListMap[<I1, I2, I3>] = < 229 // <"cos", "sin">, 230 // <Signature1, Signature2, Signature3>> 231 // The function "tan", having the same signatures, would be mapped to the 232 // same entry (<I1, I2, I3>). 233 MapVector<BuiltinIndexListTy *, BuiltinTableEntries> SignatureListMap; 234 }; 235 236 // OpenCL builtin test generator. This class processes the same TableGen input 237 // as BuiltinNameEmitter, but generates a .cl file that contains a call to each 238 // builtin function described in the .td input. 239 class OpenCLBuiltinTestEmitter { 240 public: 241 OpenCLBuiltinTestEmitter(RecordKeeper &Records, raw_ostream &OS) 242 : Records(Records), OS(OS) {} 243 244 // Entrypoint to generate the functions for testing all OpenCL builtin 245 // functions. 246 void emit(); 247 248 private: 249 struct TypeFlags { 250 TypeFlags() : IsConst(false), IsVolatile(false), IsPointer(false) {} 251 bool IsConst : 1; 252 bool IsVolatile : 1; 253 bool IsPointer : 1; 254 StringRef AddrSpace; 255 }; 256 257 // Return a string representation of the given type, such that it can be 258 // used as a type in OpenCL C code. 259 std::string getTypeString(const Record *Type, TypeFlags Flags, 260 int VectorSize) const; 261 262 // Return the type(s) and vector size(s) for the given type. For 263 // non-GenericTypes, the resulting vectors will contain 1 element. For 264 // GenericTypes, the resulting vectors typically contain multiple elements. 265 void getTypeLists(Record *Type, TypeFlags &Flags, 266 std::vector<Record *> &TypeList, 267 std::vector<int64_t> &VectorList) const; 268 269 // Expand the TableGen Records representing a builtin function signature into 270 // one or more function signatures. Return them as a vector of a vector of 271 // strings, with each string containing an OpenCL C type and optional 272 // qualifiers. 273 // 274 // The Records may contain GenericTypes, which expand into multiple 275 // signatures. Repeated occurrences of GenericType in a signature expand to 276 // the same types. For example [char, FGenType, FGenType] expands to: 277 // [char, float, float] 278 // [char, float2, float2] 279 // [char, float3, float3] 280 // ... 281 void 282 expandTypesInSignature(const std::vector<Record *> &Signature, 283 SmallVectorImpl<SmallVector<std::string, 2>> &Types); 284 285 // Contains OpenCL builtin functions and related information, stored as 286 // Record instances. They are coming from the associated TableGen file. 287 RecordKeeper &Records; 288 289 // The output file. 290 raw_ostream &OS; 291 }; 292 293 } // namespace 294 295 void BuiltinNameEmitter::Emit() { 296 emitSourceFileHeader("OpenCL Builtin handling", OS); 297 298 OS << "#include \"llvm/ADT/StringRef.h\"\n"; 299 OS << "using namespace clang;\n\n"; 300 301 // Emit enums and structs. 302 EmitDeclarations(); 303 304 // Parse the Records to populate the internal lists. 305 GetOverloads(); 306 GroupBySignature(); 307 308 // Emit tables. 309 EmitExtensionTable(); 310 EmitTypeTable(); 311 EmitSignatureTable(); 312 EmitBuiltinTable(); 313 314 // Emit functions. 315 EmitStringMatcher(); 316 EmitQualTypeFinder(); 317 } 318 319 void BuiltinNameEmitter::ExtractEnumTypes(std::vector<Record *> &Types, 320 StringMap<bool> &TypesSeen, 321 std::string &Output, 322 std::vector<const Record *> &List) { 323 raw_string_ostream SS(Output); 324 325 for (const auto *T : Types) { 326 if (TypesSeen.find(T->getValueAsString("Name")) == TypesSeen.end()) { 327 SS << " OCLT_" + T->getValueAsString("Name") << ",\n"; 328 // Save the type names in the same order as their enum value. Note that 329 // the Record can be a VectorType or something else, only the name is 330 // important. 331 List.push_back(T); 332 TypesSeen.insert(std::make_pair(T->getValueAsString("Name"), true)); 333 } 334 } 335 SS.flush(); 336 } 337 338 void BuiltinNameEmitter::EmitDeclarations() { 339 // Enum of scalar type names (float, int, ...) and generic type sets. 340 OS << "enum OpenCLTypeID {\n"; 341 342 StringMap<bool> TypesSeen; 343 std::string GenTypeEnums; 344 std::string TypeEnums; 345 346 // Extract generic types and non-generic types separately, to keep 347 // gentypes at the end of the enum which simplifies the special handling 348 // for gentypes in SemaLookup. 349 std::vector<Record *> GenTypes = 350 Records.getAllDerivedDefinitions("GenericType"); 351 ExtractEnumTypes(GenTypes, TypesSeen, GenTypeEnums, GenTypeList); 352 353 std::vector<Record *> Types = Records.getAllDerivedDefinitions("Type"); 354 ExtractEnumTypes(Types, TypesSeen, TypeEnums, TypeList); 355 356 OS << TypeEnums; 357 OS << GenTypeEnums; 358 OS << "};\n"; 359 360 // Structure definitions. 361 OS << R"( 362 // Image access qualifier. 363 enum OpenCLAccessQual : unsigned char { 364 OCLAQ_None, 365 OCLAQ_ReadOnly, 366 OCLAQ_WriteOnly, 367 OCLAQ_ReadWrite 368 }; 369 370 // Represents a return type or argument type. 371 struct OpenCLTypeStruct { 372 // A type (e.g. float, int, ...). 373 const OpenCLTypeID ID; 374 // Vector size (if applicable; 0 for scalars and generic types). 375 const unsigned VectorWidth; 376 // 0 if the type is not a pointer. 377 const bool IsPointer : 1; 378 // 0 if the type is not const. 379 const bool IsConst : 1; 380 // 0 if the type is not volatile. 381 const bool IsVolatile : 1; 382 // Access qualifier. 383 const OpenCLAccessQual AccessQualifier; 384 // Address space of the pointer (if applicable). 385 const LangAS AS; 386 }; 387 388 // One overload of an OpenCL builtin function. 389 struct OpenCLBuiltinStruct { 390 // Index of the signature in the OpenCLTypeStruct table. 391 const unsigned SigTableIndex; 392 // Entries between index SigTableIndex and (SigTableIndex + NumTypes - 1) in 393 // the SignatureTable represent the complete signature. The first type at 394 // index SigTableIndex is the return type. 395 const unsigned NumTypes; 396 // Function attribute __attribute__((pure)) 397 const bool IsPure : 1; 398 // Function attribute __attribute__((const)) 399 const bool IsConst : 1; 400 // Function attribute __attribute__((convergent)) 401 const bool IsConv : 1; 402 // OpenCL extension(s) required for this overload. 403 const unsigned short Extension; 404 // OpenCL versions in which this overload is available. 405 const unsigned short Versions; 406 }; 407 408 )"; 409 } 410 411 // Verify that the combination of GenTypes in a signature is supported. 412 // To simplify the logic for creating overloads in SemaLookup, only allow 413 // a signature to contain different GenTypes if these GenTypes represent 414 // the same number of actual scalar or vector types. 415 // 416 // Exit with a fatal error if an unsupported construct is encountered. 417 static void VerifySignature(const std::vector<Record *> &Signature, 418 const Record *BuiltinRec) { 419 unsigned GenTypeVecSizes = 1; 420 unsigned GenTypeTypes = 1; 421 422 for (const auto *T : Signature) { 423 // Check all GenericType arguments in this signature. 424 if (T->isSubClassOf("GenericType")) { 425 // Check number of vector sizes. 426 unsigned NVecSizes = 427 T->getValueAsDef("VectorList")->getValueAsListOfInts("List").size(); 428 if (NVecSizes != GenTypeVecSizes && NVecSizes != 1) { 429 if (GenTypeVecSizes > 1) { 430 // We already saw a gentype with a different number of vector sizes. 431 PrintFatalError(BuiltinRec->getLoc(), 432 "number of vector sizes should be equal or 1 for all gentypes " 433 "in a declaration"); 434 } 435 GenTypeVecSizes = NVecSizes; 436 } 437 438 // Check number of data types. 439 unsigned NTypes = 440 T->getValueAsDef("TypeList")->getValueAsListOfDefs("List").size(); 441 if (NTypes != GenTypeTypes && NTypes != 1) { 442 if (GenTypeTypes > 1) { 443 // We already saw a gentype with a different number of types. 444 PrintFatalError(BuiltinRec->getLoc(), 445 "number of types should be equal or 1 for all gentypes " 446 "in a declaration"); 447 } 448 GenTypeTypes = NTypes; 449 } 450 } 451 } 452 } 453 454 void BuiltinNameEmitter::GetOverloads() { 455 // Populate the TypeMap. 456 std::vector<Record *> Types = Records.getAllDerivedDefinitions("Type"); 457 unsigned I = 0; 458 for (const auto &T : Types) { 459 TypeMap.insert(std::make_pair(T, I++)); 460 } 461 462 // Populate the SignaturesList and the FctOverloadMap. 463 unsigned CumulativeSignIndex = 0; 464 std::vector<Record *> Builtins = Records.getAllDerivedDefinitions("Builtin"); 465 for (const auto *B : Builtins) { 466 StringRef BName = B->getValueAsString("Name"); 467 if (FctOverloadMap.find(BName) == FctOverloadMap.end()) { 468 FctOverloadMap.insert(std::make_pair( 469 BName, std::vector<std::pair<const Record *, unsigned>>{})); 470 } 471 472 auto Signature = B->getValueAsListOfDefs("Signature"); 473 // Reuse signatures to avoid unnecessary duplicates. 474 auto it = 475 std::find_if(SignaturesList.begin(), SignaturesList.end(), 476 [&](const std::pair<std::vector<Record *>, unsigned> &a) { 477 return a.first == Signature; 478 }); 479 unsigned SignIndex; 480 if (it == SignaturesList.end()) { 481 VerifySignature(Signature, B); 482 SignaturesList.push_back(std::make_pair(Signature, CumulativeSignIndex)); 483 SignIndex = CumulativeSignIndex; 484 CumulativeSignIndex += Signature.size(); 485 } else { 486 SignIndex = it->second; 487 } 488 FctOverloadMap[BName].push_back(std::make_pair(B, SignIndex)); 489 } 490 } 491 492 void BuiltinNameEmitter::EmitExtensionTable() { 493 OS << "static const char *FunctionExtensionTable[] = {\n"; 494 unsigned Index = 0; 495 std::vector<Record *> FuncExtensions = 496 Records.getAllDerivedDefinitions("FunctionExtension"); 497 498 for (const auto &FE : FuncExtensions) { 499 // Emit OpenCL extension table entry. 500 OS << " // " << Index << ": " << FE->getName() << "\n" 501 << " \"" << FE->getValueAsString("ExtName") << "\",\n"; 502 503 // Record index of this extension. 504 FunctionExtensionIndex[FE->getName()] = Index++; 505 } 506 OS << "};\n\n"; 507 } 508 509 void BuiltinNameEmitter::EmitTypeTable() { 510 OS << "static const OpenCLTypeStruct TypeTable[] = {\n"; 511 for (const auto &T : TypeMap) { 512 const char *AccessQual = 513 StringSwitch<const char *>(T.first->getValueAsString("AccessQualifier")) 514 .Case("RO", "OCLAQ_ReadOnly") 515 .Case("WO", "OCLAQ_WriteOnly") 516 .Case("RW", "OCLAQ_ReadWrite") 517 .Default("OCLAQ_None"); 518 519 OS << " // " << T.second << "\n" 520 << " {OCLT_" << T.first->getValueAsString("Name") << ", " 521 << T.first->getValueAsInt("VecWidth") << ", " 522 << T.first->getValueAsBit("IsPointer") << ", " 523 << T.first->getValueAsBit("IsConst") << ", " 524 << T.first->getValueAsBit("IsVolatile") << ", " 525 << AccessQual << ", " 526 << T.first->getValueAsString("AddrSpace") << "},\n"; 527 } 528 OS << "};\n\n"; 529 } 530 531 void BuiltinNameEmitter::EmitSignatureTable() { 532 // Store a type (e.g. int, float, int2, ...). The type is stored as an index 533 // of a struct OpenCLType table. Multiple entries following each other form a 534 // signature. 535 OS << "static const unsigned short SignatureTable[] = {\n"; 536 for (const auto &P : SignaturesList) { 537 OS << " // " << P.second << "\n "; 538 for (const Record *R : P.first) { 539 unsigned Entry = TypeMap.find(R)->second; 540 if (Entry > USHRT_MAX) { 541 // Report an error when seeing an entry that is too large for the 542 // current index type (unsigned short). When hitting this, the type 543 // of SignatureTable will need to be changed. 544 PrintFatalError("Entry in SignatureTable exceeds limit."); 545 } 546 OS << Entry << ", "; 547 } 548 OS << "\n"; 549 } 550 OS << "};\n\n"; 551 } 552 553 // Encode a range MinVersion..MaxVersion into a single bit mask that can be 554 // checked against LangOpts using isOpenCLVersionContainedInMask(). 555 // This must be kept in sync with OpenCLVersionID in OpenCLOptions.h. 556 // (Including OpenCLOptions.h here would be a layering violation.) 557 static unsigned short EncodeVersions(unsigned int MinVersion, 558 unsigned int MaxVersion) { 559 unsigned short Encoded = 0; 560 561 // A maximum version of 0 means available in all later versions. 562 if (MaxVersion == 0) { 563 MaxVersion = UINT_MAX; 564 } 565 566 unsigned VersionIDs[] = {100, 110, 120, 200, 300}; 567 for (unsigned I = 0; I < sizeof(VersionIDs) / sizeof(VersionIDs[0]); I++) { 568 if (VersionIDs[I] >= MinVersion && VersionIDs[I] < MaxVersion) { 569 Encoded |= 1 << I; 570 } 571 } 572 573 return Encoded; 574 } 575 576 void BuiltinNameEmitter::EmitBuiltinTable() { 577 unsigned Index = 0; 578 579 OS << "static const OpenCLBuiltinStruct BuiltinTable[] = {\n"; 580 for (const auto &SLM : SignatureListMap) { 581 582 OS << " // " << (Index + 1) << ": "; 583 for (const auto &Name : SLM.second.Names) { 584 OS << Name << ", "; 585 } 586 OS << "\n"; 587 588 for (const auto &Overload : SLM.second.Signatures) { 589 StringRef ExtName = Overload.first->getValueAsDef("Extension")->getName(); 590 unsigned int MinVersion = 591 Overload.first->getValueAsDef("MinVersion")->getValueAsInt("ID"); 592 unsigned int MaxVersion = 593 Overload.first->getValueAsDef("MaxVersion")->getValueAsInt("ID"); 594 595 OS << " { " << Overload.second << ", " 596 << Overload.first->getValueAsListOfDefs("Signature").size() << ", " 597 << (Overload.first->getValueAsBit("IsPure")) << ", " 598 << (Overload.first->getValueAsBit("IsConst")) << ", " 599 << (Overload.first->getValueAsBit("IsConv")) << ", " 600 << FunctionExtensionIndex[ExtName] << ", " 601 << EncodeVersions(MinVersion, MaxVersion) << " },\n"; 602 Index++; 603 } 604 } 605 OS << "};\n\n"; 606 } 607 608 bool BuiltinNameEmitter::CanReuseSignature( 609 BuiltinIndexListTy *Candidate, 610 std::vector<std::pair<const Record *, unsigned>> &SignatureList) { 611 assert(Candidate->size() == SignatureList.size() && 612 "signature lists should have the same size"); 613 614 auto &CandidateSigs = 615 SignatureListMap.find(Candidate)->second.Signatures; 616 for (unsigned Index = 0; Index < Candidate->size(); Index++) { 617 const Record *Rec = SignatureList[Index].first; 618 const Record *Rec2 = CandidateSigs[Index].first; 619 if (Rec->getValueAsBit("IsPure") == Rec2->getValueAsBit("IsPure") && 620 Rec->getValueAsBit("IsConst") == Rec2->getValueAsBit("IsConst") && 621 Rec->getValueAsBit("IsConv") == Rec2->getValueAsBit("IsConv") && 622 Rec->getValueAsDef("MinVersion")->getValueAsInt("ID") == 623 Rec2->getValueAsDef("MinVersion")->getValueAsInt("ID") && 624 Rec->getValueAsDef("MaxVersion")->getValueAsInt("ID") == 625 Rec2->getValueAsDef("MaxVersion")->getValueAsInt("ID") && 626 Rec->getValueAsDef("Extension")->getName() == 627 Rec2->getValueAsDef("Extension")->getName()) { 628 return true; 629 } 630 } 631 return false; 632 } 633 634 void BuiltinNameEmitter::GroupBySignature() { 635 // List of signatures known to be emitted. 636 std::vector<BuiltinIndexListTy *> KnownSignatures; 637 638 for (auto &Fct : FctOverloadMap) { 639 bool FoundReusableSig = false; 640 641 // Gather all signatures for the current function. 642 auto *CurSignatureList = new BuiltinIndexListTy(); 643 for (const auto &Signature : Fct.second) { 644 CurSignatureList->push_back(Signature.second); 645 } 646 // Sort the list to facilitate future comparisons. 647 llvm::sort(*CurSignatureList); 648 649 // Check if we have already seen another function with the same list of 650 // signatures. If so, just add the name of the function. 651 for (auto *Candidate : KnownSignatures) { 652 if (Candidate->size() == CurSignatureList->size() && 653 *Candidate == *CurSignatureList) { 654 if (CanReuseSignature(Candidate, Fct.second)) { 655 SignatureListMap.find(Candidate)->second.Names.push_back(Fct.first); 656 FoundReusableSig = true; 657 } 658 } 659 } 660 661 if (FoundReusableSig) { 662 delete CurSignatureList; 663 } else { 664 // Add a new entry. 665 SignatureListMap[CurSignatureList] = { 666 SmallVector<StringRef, 4>(1, Fct.first), Fct.second}; 667 KnownSignatures.push_back(CurSignatureList); 668 } 669 } 670 671 for (auto *I : KnownSignatures) { 672 delete I; 673 } 674 } 675 676 void BuiltinNameEmitter::EmitStringMatcher() { 677 std::vector<StringMatcher::StringPair> ValidBuiltins; 678 unsigned CumulativeIndex = 1; 679 680 for (const auto &SLM : SignatureListMap) { 681 const auto &Ovl = SLM.second.Signatures; 682 683 // A single signature list may be used by different builtins. Return the 684 // same <index, length> pair for each of those builtins. 685 for (const auto &FctName : SLM.second.Names) { 686 std::string RetStmt; 687 raw_string_ostream SS(RetStmt); 688 SS << "return std::make_pair(" << CumulativeIndex << ", " << Ovl.size() 689 << ");"; 690 SS.flush(); 691 ValidBuiltins.push_back( 692 StringMatcher::StringPair(std::string(FctName), RetStmt)); 693 } 694 CumulativeIndex += Ovl.size(); 695 } 696 697 OS << R"( 698 // Find out whether a string matches an existing OpenCL builtin function name. 699 // Returns: A pair <0, 0> if no name matches. 700 // A pair <Index, Len> indexing the BuiltinTable if the name is 701 // matching an OpenCL builtin function. 702 static std::pair<unsigned, unsigned> isOpenCLBuiltin(llvm::StringRef Name) { 703 704 )"; 705 706 StringMatcher("Name", ValidBuiltins, OS).Emit(0, true); 707 708 OS << " return std::make_pair(0, 0);\n"; 709 OS << "} // isOpenCLBuiltin\n"; 710 } 711 712 void BuiltinNameEmitter::EmitQualTypeFinder() { 713 OS << R"( 714 715 static QualType getOpenCLEnumType(Sema &S, llvm::StringRef Name); 716 static QualType getOpenCLTypedefType(Sema &S, llvm::StringRef Name); 717 718 // Convert an OpenCLTypeStruct type to a list of QualTypes. 719 // Generic types represent multiple types and vector sizes, thus a vector 720 // is returned. The conversion is done in two steps: 721 // Step 1: A switch statement fills a vector with scalar base types for the 722 // Cartesian product of (vector sizes) x (types) for generic types, 723 // or a single scalar type for non generic types. 724 // Step 2: Qualifiers and other type properties such as vector size are 725 // applied. 726 static void OCL2Qual(Sema &S, const OpenCLTypeStruct &Ty, 727 llvm::SmallVectorImpl<QualType> &QT) { 728 ASTContext &Context = S.Context; 729 // Number of scalar types in the GenType. 730 unsigned GenTypeNumTypes; 731 // Pointer to the list of vector sizes for the GenType. 732 llvm::ArrayRef<unsigned> GenVectorSizes; 733 )"; 734 735 // Generate list of vector sizes for each generic type. 736 for (const auto *VectList : Records.getAllDerivedDefinitions("IntList")) { 737 OS << " constexpr unsigned List" 738 << VectList->getValueAsString("Name") << "[] = {"; 739 for (const auto V : VectList->getValueAsListOfInts("List")) { 740 OS << V << ", "; 741 } 742 OS << "};\n"; 743 } 744 745 // Step 1. 746 // Start of switch statement over all types. 747 OS << "\n switch (Ty.ID) {\n"; 748 749 // Switch cases for image types (Image2d, Image3d, ...) 750 std::vector<Record *> ImageTypes = 751 Records.getAllDerivedDefinitions("ImageType"); 752 753 // Map an image type name to its 3 access-qualified types (RO, WO, RW). 754 StringMap<SmallVector<Record *, 3>> ImageTypesMap; 755 for (auto *IT : ImageTypes) { 756 auto Entry = ImageTypesMap.find(IT->getValueAsString("Name")); 757 if (Entry == ImageTypesMap.end()) { 758 SmallVector<Record *, 3> ImageList; 759 ImageList.push_back(IT); 760 ImageTypesMap.insert( 761 std::make_pair(IT->getValueAsString("Name"), ImageList)); 762 } else { 763 Entry->second.push_back(IT); 764 } 765 } 766 767 // Emit the cases for the image types. For an image type name, there are 3 768 // corresponding QualTypes ("RO", "WO", "RW"). The "AccessQualifier" field 769 // tells which one is needed. Emit a switch statement that puts the 770 // corresponding QualType into "QT". 771 for (const auto &ITE : ImageTypesMap) { 772 OS << " case OCLT_" << ITE.getKey() << ":\n" 773 << " switch (Ty.AccessQualifier) {\n" 774 << " case OCLAQ_None:\n" 775 << " llvm_unreachable(\"Image without access qualifier\");\n"; 776 for (const auto &Image : ITE.getValue()) { 777 OS << StringSwitch<const char *>( 778 Image->getValueAsString("AccessQualifier")) 779 .Case("RO", " case OCLAQ_ReadOnly:\n") 780 .Case("WO", " case OCLAQ_WriteOnly:\n") 781 .Case("RW", " case OCLAQ_ReadWrite:\n") 782 << " QT.push_back(" 783 << Image->getValueAsDef("QTExpr")->getValueAsString("TypeExpr") 784 << ");\n" 785 << " break;\n"; 786 } 787 OS << " }\n" 788 << " break;\n"; 789 } 790 791 // Switch cases for generic types. 792 for (const auto *GenType : Records.getAllDerivedDefinitions("GenericType")) { 793 OS << " case OCLT_" << GenType->getValueAsString("Name") << ": {\n"; 794 795 // Build the Cartesian product of (vector sizes) x (types). Only insert 796 // the plain scalar types for now; other type information such as vector 797 // size and type qualifiers will be added after the switch statement. 798 std::vector<Record *> BaseTypes = 799 GenType->getValueAsDef("TypeList")->getValueAsListOfDefs("List"); 800 801 // Collect all QualTypes for a single vector size into TypeList. 802 OS << " SmallVector<QualType, " << BaseTypes.size() << "> TypeList;\n"; 803 for (const auto *T : BaseTypes) { 804 StringRef Ext = 805 T->getValueAsDef("Extension")->getValueAsString("ExtName"); 806 if (!Ext.empty()) { 807 OS << " if (S.getPreprocessor().isMacroDefined(\"" << Ext 808 << "\")) {\n "; 809 } 810 OS << " TypeList.push_back(" 811 << T->getValueAsDef("QTExpr")->getValueAsString("TypeExpr") << ");\n"; 812 if (!Ext.empty()) { 813 OS << " }\n"; 814 } 815 } 816 OS << " GenTypeNumTypes = TypeList.size();\n"; 817 818 // Duplicate the TypeList for every vector size. 819 std::vector<int64_t> VectorList = 820 GenType->getValueAsDef("VectorList")->getValueAsListOfInts("List"); 821 OS << " QT.reserve(" << VectorList.size() * BaseTypes.size() << ");\n" 822 << " for (unsigned I = 0; I < " << VectorList.size() << "; I++) {\n" 823 << " QT.append(TypeList);\n" 824 << " }\n"; 825 826 // GenVectorSizes is the list of vector sizes for this GenType. 827 OS << " GenVectorSizes = List" 828 << GenType->getValueAsDef("VectorList")->getValueAsString("Name") 829 << ";\n" 830 << " break;\n" 831 << " }\n"; 832 } 833 834 // Switch cases for non generic, non image types (int, int4, float, ...). 835 // Only insert the plain scalar type; vector information and type qualifiers 836 // are added in step 2. 837 std::vector<Record *> Types = Records.getAllDerivedDefinitions("Type"); 838 StringMap<bool> TypesSeen; 839 840 for (const auto *T : Types) { 841 // Check this is not an image type 842 if (ImageTypesMap.find(T->getValueAsString("Name")) != ImageTypesMap.end()) 843 continue; 844 // Check we have not seen this Type 845 if (TypesSeen.find(T->getValueAsString("Name")) != TypesSeen.end()) 846 continue; 847 TypesSeen.insert(std::make_pair(T->getValueAsString("Name"), true)); 848 849 // Check the Type does not have an "abstract" QualType 850 auto QT = T->getValueAsDef("QTExpr"); 851 if (QT->getValueAsBit("IsAbstract") == 1) 852 continue; 853 // Emit the cases for non generic, non image types. 854 OS << " case OCLT_" << T->getValueAsString("Name") << ":\n"; 855 856 StringRef Ext = T->getValueAsDef("Extension")->getValueAsString("ExtName"); 857 // If this type depends on an extension, ensure the extension macro is 858 // defined. 859 if (!Ext.empty()) { 860 OS << " if (S.getPreprocessor().isMacroDefined(\"" << Ext 861 << "\")) {\n "; 862 } 863 OS << " QT.push_back(" << QT->getValueAsString("TypeExpr") << ");\n"; 864 if (!Ext.empty()) { 865 OS << " }\n"; 866 } 867 OS << " break;\n"; 868 } 869 870 // End of switch statement. 871 OS << " } // end of switch (Ty.ID)\n\n"; 872 873 // Step 2. 874 // Add ExtVector types if this was a generic type, as the switch statement 875 // above only populated the list with scalar types. This completes the 876 // construction of the Cartesian product of (vector sizes) x (types). 877 OS << " // Construct the different vector types for each generic type.\n"; 878 OS << " if (Ty.ID >= " << TypeList.size() << ") {"; 879 OS << R"( 880 for (unsigned I = 0; I < QT.size(); I++) { 881 // For scalars, size is 1. 882 if (GenVectorSizes[I / GenTypeNumTypes] != 1) { 883 QT[I] = Context.getExtVectorType(QT[I], 884 GenVectorSizes[I / GenTypeNumTypes]); 885 } 886 } 887 } 888 )"; 889 890 // Assign the right attributes to the types (e.g. vector size). 891 OS << R"( 892 // Set vector size for non-generic vector types. 893 if (Ty.VectorWidth > 1) { 894 for (unsigned Index = 0; Index < QT.size(); Index++) { 895 QT[Index] = Context.getExtVectorType(QT[Index], Ty.VectorWidth); 896 } 897 } 898 899 if (Ty.IsVolatile != 0) { 900 for (unsigned Index = 0; Index < QT.size(); Index++) { 901 QT[Index] = Context.getVolatileType(QT[Index]); 902 } 903 } 904 905 if (Ty.IsConst != 0) { 906 for (unsigned Index = 0; Index < QT.size(); Index++) { 907 QT[Index] = Context.getConstType(QT[Index]); 908 } 909 } 910 911 // Transform the type to a pointer as the last step, if necessary. 912 // Builtin functions only have pointers on [const|volatile], no 913 // [const|volatile] pointers, so this is ok to do it as a last step. 914 if (Ty.IsPointer != 0) { 915 for (unsigned Index = 0; Index < QT.size(); Index++) { 916 QT[Index] = Context.getAddrSpaceQualType(QT[Index], Ty.AS); 917 QT[Index] = Context.getPointerType(QT[Index]); 918 } 919 } 920 )"; 921 922 // End of the "OCL2Qual" function. 923 OS << "\n} // OCL2Qual\n"; 924 } 925 926 std::string OpenCLBuiltinTestEmitter::getTypeString(const Record *Type, 927 TypeFlags Flags, 928 int VectorSize) const { 929 std::string S; 930 if (Type->getValueAsBit("IsConst") || Flags.IsConst) { 931 S += "const "; 932 } 933 if (Type->getValueAsBit("IsVolatile") || Flags.IsVolatile) { 934 S += "volatile "; 935 } 936 937 auto PrintAddrSpace = [&S](StringRef AddrSpace) { 938 S += StringSwitch<const char *>(AddrSpace) 939 .Case("clang::LangAS::opencl_private", "__private") 940 .Case("clang::LangAS::opencl_global", "__global") 941 .Case("clang::LangAS::opencl_constant", "__constant") 942 .Case("clang::LangAS::opencl_local", "__local") 943 .Case("clang::LangAS::opencl_generic", "__generic") 944 .Default("__private"); 945 S += " "; 946 }; 947 if (Flags.IsPointer) { 948 PrintAddrSpace(Flags.AddrSpace); 949 } else if (Type->getValueAsBit("IsPointer")) { 950 PrintAddrSpace(Type->getValueAsString("AddrSpace")); 951 } 952 953 StringRef Acc = Type->getValueAsString("AccessQualifier"); 954 if (Acc != "") { 955 S += StringSwitch<const char *>(Acc) 956 .Case("RO", "__read_only ") 957 .Case("WO", "__write_only ") 958 .Case("RW", "__read_write "); 959 } 960 961 S += Type->getValueAsString("Name").str(); 962 if (VectorSize > 1) { 963 S += std::to_string(VectorSize); 964 } 965 966 if (Type->getValueAsBit("IsPointer") || Flags.IsPointer) { 967 S += " *"; 968 } 969 970 return S; 971 } 972 973 void OpenCLBuiltinTestEmitter::getTypeLists( 974 Record *Type, TypeFlags &Flags, std::vector<Record *> &TypeList, 975 std::vector<int64_t> &VectorList) const { 976 bool isGenType = Type->isSubClassOf("GenericType"); 977 if (isGenType) { 978 TypeList = Type->getValueAsDef("TypeList")->getValueAsListOfDefs("List"); 979 VectorList = 980 Type->getValueAsDef("VectorList")->getValueAsListOfInts("List"); 981 return; 982 } 983 984 if (Type->isSubClassOf("PointerType") || Type->isSubClassOf("ConstType") || 985 Type->isSubClassOf("VolatileType")) { 986 StringRef SubTypeName = Type->getValueAsString("Name"); 987 Record *PossibleGenType = Records.getDef(SubTypeName); 988 if (PossibleGenType && PossibleGenType->isSubClassOf("GenericType")) { 989 // When PointerType, ConstType, or VolatileType is applied to a 990 // GenericType, the flags need to be taken from the subtype, not from the 991 // GenericType. 992 Flags.IsPointer = Type->getValueAsBit("IsPointer"); 993 Flags.IsConst = Type->getValueAsBit("IsConst"); 994 Flags.IsVolatile = Type->getValueAsBit("IsVolatile"); 995 Flags.AddrSpace = Type->getValueAsString("AddrSpace"); 996 getTypeLists(PossibleGenType, Flags, TypeList, VectorList); 997 return; 998 } 999 } 1000 1001 // Not a GenericType, so just insert the single type. 1002 TypeList.push_back(Type); 1003 VectorList.push_back(Type->getValueAsInt("VecWidth")); 1004 } 1005 1006 void OpenCLBuiltinTestEmitter::expandTypesInSignature( 1007 const std::vector<Record *> &Signature, 1008 SmallVectorImpl<SmallVector<std::string, 2>> &Types) { 1009 // Find out if there are any GenTypes in this signature, and if so, calculate 1010 // into how many signatures they will expand. 1011 unsigned NumSignatures = 1; 1012 SmallVector<SmallVector<std::string, 4>, 4> ExpandedGenTypes; 1013 for (const auto &Arg : Signature) { 1014 SmallVector<std::string, 4> ExpandedArg; 1015 std::vector<Record *> TypeList; 1016 std::vector<int64_t> VectorList; 1017 TypeFlags Flags; 1018 1019 getTypeLists(Arg, Flags, TypeList, VectorList); 1020 1021 // Insert the Cartesian product of the types and vector sizes. 1022 for (const auto &Vector : VectorList) { 1023 for (const auto &Type : TypeList) { 1024 ExpandedArg.push_back(getTypeString(Type, Flags, Vector)); 1025 } 1026 } 1027 NumSignatures = std::max<unsigned>(NumSignatures, ExpandedArg.size()); 1028 ExpandedGenTypes.push_back(ExpandedArg); 1029 } 1030 1031 // Now the total number of signatures is known. Populate the return list with 1032 // all signatures. 1033 for (unsigned I = 0; I < NumSignatures; I++) { 1034 SmallVector<std::string, 2> Args; 1035 1036 // Process a single signature. 1037 for (unsigned ArgNum = 0; ArgNum < Signature.size(); ArgNum++) { 1038 // For differently-sized GenTypes in a parameter list, the smaller 1039 // GenTypes just repeat, so index modulo the number of expanded types. 1040 size_t TypeIndex = I % ExpandedGenTypes[ArgNum].size(); 1041 Args.push_back(ExpandedGenTypes[ArgNum][TypeIndex]); 1042 } 1043 Types.push_back(Args); 1044 } 1045 } 1046 1047 void OpenCLBuiltinTestEmitter::emit() { 1048 emitSourceFileHeader("OpenCL Builtin exhaustive testing", OS); 1049 1050 // Enable some extensions for testing. 1051 OS << R"( 1052 #pragma OPENCL EXTENSION cl_khr_fp16 : enable 1053 #pragma OPENCL EXTENSION cl_khr_fp64 : enable 1054 #pragma OPENCL EXTENSION cl_khr_int64_base_atomics : enable 1055 #pragma OPENCL EXTENSION cl_khr_int64_extended_atomics : enable 1056 #pragma OPENCL EXTENSION cl_khr_gl_msaa_sharing : enable 1057 #pragma OPENCL EXTENSION cl_khr_mipmap_image_writes : enable 1058 #pragma OPENCL EXTENSION cl_khr_3d_image_writes : enable 1059 1060 )"; 1061 1062 // Ensure each test has a unique name by numbering them. 1063 unsigned TestID = 0; 1064 1065 // Iterate over all builtins. 1066 std::vector<Record *> Builtins = Records.getAllDerivedDefinitions("Builtin"); 1067 for (const auto *B : Builtins) { 1068 StringRef Name = B->getValueAsString("Name"); 1069 1070 SmallVector<SmallVector<std::string, 2>, 4> FTypes; 1071 expandTypesInSignature(B->getValueAsListOfDefs("Signature"), FTypes); 1072 1073 OS << "// Test " << Name << "\n"; 1074 std::string OptionalEndif; 1075 StringRef Extensions = 1076 B->getValueAsDef("Extension")->getValueAsString("ExtName"); 1077 if (!Extensions.empty()) { 1078 OS << "#if"; 1079 OptionalEndif = "#endif // Extension\n"; 1080 1081 SmallVector<StringRef, 2> ExtVec; 1082 Extensions.split(ExtVec, " "); 1083 bool isFirst = true; 1084 for (StringRef Ext : ExtVec) { 1085 if (!isFirst) { 1086 OS << " &&"; 1087 } 1088 OS << " defined(" << Ext << ")"; 1089 isFirst = false; 1090 } 1091 OS << "\n"; 1092 } 1093 auto PrintOpenCLVersion = [this](int Version) { 1094 OS << "CL_VERSION_" << (Version / 100) << "_" << ((Version % 100) / 10); 1095 }; 1096 int MinVersion = B->getValueAsDef("MinVersion")->getValueAsInt("ID"); 1097 if (MinVersion != 100) { 1098 // OpenCL 1.0 is the default minimum version. 1099 OS << "#if __OPENCL_C_VERSION__ >= "; 1100 PrintOpenCLVersion(MinVersion); 1101 OS << "\n"; 1102 OptionalEndif = "#endif // MinVersion\n" + OptionalEndif; 1103 } 1104 int MaxVersion = B->getValueAsDef("MaxVersion")->getValueAsInt("ID"); 1105 if (MaxVersion) { 1106 OS << "#if __OPENCL_C_VERSION__ < "; 1107 PrintOpenCLVersion(MaxVersion); 1108 OS << "\n"; 1109 OptionalEndif = "#endif // MaxVersion\n" + OptionalEndif; 1110 } 1111 for (const auto &Signature : FTypes) { 1112 // Emit function declaration. 1113 OS << Signature[0] << " test" << TestID++ << "_" << Name << "("; 1114 if (Signature.size() > 1) { 1115 for (unsigned I = 1; I < Signature.size(); I++) { 1116 if (I != 1) 1117 OS << ", "; 1118 OS << Signature[I] << " arg" << I; 1119 } 1120 } 1121 OS << ") {\n"; 1122 1123 // Emit function body. 1124 OS << " "; 1125 if (Signature[0] != "void") { 1126 OS << "return "; 1127 } 1128 OS << Name << "("; 1129 for (unsigned I = 1; I < Signature.size(); I++) { 1130 if (I != 1) 1131 OS << ", "; 1132 OS << "arg" << I; 1133 } 1134 OS << ");\n"; 1135 1136 // End of function body. 1137 OS << "}\n"; 1138 } 1139 OS << OptionalEndif << "\n"; 1140 } 1141 } 1142 1143 void clang::EmitClangOpenCLBuiltins(RecordKeeper &Records, raw_ostream &OS) { 1144 BuiltinNameEmitter NameChecker(Records, OS); 1145 NameChecker.Emit(); 1146 } 1147 1148 void clang::EmitClangOpenCLBuiltinTests(RecordKeeper &Records, 1149 raw_ostream &OS) { 1150 OpenCLBuiltinTestEmitter TestFileGenerator(Records, OS); 1151 TestFileGenerator.emit(); 1152 } 1153