1 //===-- Core.cpp ----------------------------------------------------------===// 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 // This file implements the common infrastructure (including the C bindings) 10 // for libLLVMCore.a, which implements the LLVM intermediate representation. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm-c/Core.h" 15 #include "llvm/ADT/StringSwitch.h" 16 #include "llvm/IR/Attributes.h" 17 #include "llvm/IR/Constants.h" 18 #include "llvm/IR/DebugInfoMetadata.h" 19 #include "llvm/IR/DerivedTypes.h" 20 #include "llvm/IR/DiagnosticInfo.h" 21 #include "llvm/IR/DiagnosticPrinter.h" 22 #include "llvm/IR/GlobalAlias.h" 23 #include "llvm/IR/GlobalVariable.h" 24 #include "llvm/IR/IRBuilder.h" 25 #include "llvm/IR/InlineAsm.h" 26 #include "llvm/IR/IntrinsicInst.h" 27 #include "llvm/IR/LLVMContext.h" 28 #include "llvm/IR/LegacyPassManager.h" 29 #include "llvm/IR/Module.h" 30 #include "llvm/Support/Debug.h" 31 #include "llvm/Support/ErrorHandling.h" 32 #include "llvm/Support/FileSystem.h" 33 #include "llvm/Support/ManagedStatic.h" 34 #include "llvm/Support/MemoryBuffer.h" 35 #include "llvm/Support/Threading.h" 36 #include "llvm/Support/raw_ostream.h" 37 #include <cassert> 38 #include <cstdlib> 39 #include <cstring> 40 #include <system_error> 41 42 using namespace llvm; 43 44 #define DEBUG_TYPE "ir" 45 46 void llvm::initializeCore(PassRegistry &Registry) { 47 initializeDominatorTreeWrapperPassPass(Registry); 48 initializePrintModulePassWrapperPass(Registry); 49 initializePrintFunctionPassWrapperPass(Registry); 50 initializePrintBasicBlockPassPass(Registry); 51 initializeSafepointIRVerifierPass(Registry); 52 initializeVerifierLegacyPassPass(Registry); 53 } 54 55 void LLVMInitializeCore(LLVMPassRegistryRef R) { 56 initializeCore(*unwrap(R)); 57 } 58 59 void LLVMShutdown() { 60 llvm_shutdown(); 61 } 62 63 /*===-- Error handling ----------------------------------------------------===*/ 64 65 char *LLVMCreateMessage(const char *Message) { 66 return strdup(Message); 67 } 68 69 void LLVMDisposeMessage(char *Message) { 70 free(Message); 71 } 72 73 74 /*===-- Operations on contexts --------------------------------------------===*/ 75 76 static ManagedStatic<LLVMContext> GlobalContext; 77 78 LLVMContextRef LLVMContextCreate() { 79 return wrap(new LLVMContext()); 80 } 81 82 LLVMContextRef LLVMGetGlobalContext() { return wrap(&*GlobalContext); } 83 84 void LLVMContextSetDiagnosticHandler(LLVMContextRef C, 85 LLVMDiagnosticHandler Handler, 86 void *DiagnosticContext) { 87 unwrap(C)->setDiagnosticHandlerCallBack( 88 LLVM_EXTENSION reinterpret_cast<DiagnosticHandler::DiagnosticHandlerTy>( 89 Handler), 90 DiagnosticContext); 91 } 92 93 LLVMDiagnosticHandler LLVMContextGetDiagnosticHandler(LLVMContextRef C) { 94 return LLVM_EXTENSION reinterpret_cast<LLVMDiagnosticHandler>( 95 unwrap(C)->getDiagnosticHandlerCallBack()); 96 } 97 98 void *LLVMContextGetDiagnosticContext(LLVMContextRef C) { 99 return unwrap(C)->getDiagnosticContext(); 100 } 101 102 void LLVMContextSetYieldCallback(LLVMContextRef C, LLVMYieldCallback Callback, 103 void *OpaqueHandle) { 104 auto YieldCallback = 105 LLVM_EXTENSION reinterpret_cast<LLVMContext::YieldCallbackTy>(Callback); 106 unwrap(C)->setYieldCallback(YieldCallback, OpaqueHandle); 107 } 108 109 LLVMBool LLVMContextShouldDiscardValueNames(LLVMContextRef C) { 110 return unwrap(C)->shouldDiscardValueNames(); 111 } 112 113 void LLVMContextSetDiscardValueNames(LLVMContextRef C, LLVMBool Discard) { 114 unwrap(C)->setDiscardValueNames(Discard); 115 } 116 117 void LLVMContextDispose(LLVMContextRef C) { 118 delete unwrap(C); 119 } 120 121 unsigned LLVMGetMDKindIDInContext(LLVMContextRef C, const char *Name, 122 unsigned SLen) { 123 return unwrap(C)->getMDKindID(StringRef(Name, SLen)); 124 } 125 126 unsigned LLVMGetMDKindID(const char *Name, unsigned SLen) { 127 return LLVMGetMDKindIDInContext(LLVMGetGlobalContext(), Name, SLen); 128 } 129 130 #define GET_ATTR_KIND_FROM_NAME 131 #include "AttributesCompatFunc.inc" 132 133 unsigned LLVMGetEnumAttributeKindForName(const char *Name, size_t SLen) { 134 return getAttrKindFromName(StringRef(Name, SLen)); 135 } 136 137 unsigned LLVMGetLastEnumAttributeKind(void) { 138 return Attribute::AttrKind::EndAttrKinds; 139 } 140 141 LLVMAttributeRef LLVMCreateEnumAttribute(LLVMContextRef C, unsigned KindID, 142 uint64_t Val) { 143 return wrap(Attribute::get(*unwrap(C), (Attribute::AttrKind)KindID, Val)); 144 } 145 146 unsigned LLVMGetEnumAttributeKind(LLVMAttributeRef A) { 147 return unwrap(A).getKindAsEnum(); 148 } 149 150 uint64_t LLVMGetEnumAttributeValue(LLVMAttributeRef A) { 151 auto Attr = unwrap(A); 152 if (Attr.isEnumAttribute()) 153 return 0; 154 return Attr.getValueAsInt(); 155 } 156 157 LLVMAttributeRef LLVMCreateStringAttribute(LLVMContextRef C, 158 const char *K, unsigned KLength, 159 const char *V, unsigned VLength) { 160 return wrap(Attribute::get(*unwrap(C), StringRef(K, KLength), 161 StringRef(V, VLength))); 162 } 163 164 const char *LLVMGetStringAttributeKind(LLVMAttributeRef A, 165 unsigned *Length) { 166 auto S = unwrap(A).getKindAsString(); 167 *Length = S.size(); 168 return S.data(); 169 } 170 171 const char *LLVMGetStringAttributeValue(LLVMAttributeRef A, 172 unsigned *Length) { 173 auto S = unwrap(A).getValueAsString(); 174 *Length = S.size(); 175 return S.data(); 176 } 177 178 LLVMBool LLVMIsEnumAttribute(LLVMAttributeRef A) { 179 auto Attr = unwrap(A); 180 return Attr.isEnumAttribute() || Attr.isIntAttribute(); 181 } 182 183 LLVMBool LLVMIsStringAttribute(LLVMAttributeRef A) { 184 return unwrap(A).isStringAttribute(); 185 } 186 187 char *LLVMGetDiagInfoDescription(LLVMDiagnosticInfoRef DI) { 188 std::string MsgStorage; 189 raw_string_ostream Stream(MsgStorage); 190 DiagnosticPrinterRawOStream DP(Stream); 191 192 unwrap(DI)->print(DP); 193 Stream.flush(); 194 195 return LLVMCreateMessage(MsgStorage.c_str()); 196 } 197 198 LLVMDiagnosticSeverity LLVMGetDiagInfoSeverity(LLVMDiagnosticInfoRef DI) { 199 LLVMDiagnosticSeverity severity; 200 201 switch(unwrap(DI)->getSeverity()) { 202 default: 203 severity = LLVMDSError; 204 break; 205 case DS_Warning: 206 severity = LLVMDSWarning; 207 break; 208 case DS_Remark: 209 severity = LLVMDSRemark; 210 break; 211 case DS_Note: 212 severity = LLVMDSNote; 213 break; 214 } 215 216 return severity; 217 } 218 219 /*===-- Operations on modules ---------------------------------------------===*/ 220 221 LLVMModuleRef LLVMModuleCreateWithName(const char *ModuleID) { 222 return wrap(new Module(ModuleID, *GlobalContext)); 223 } 224 225 LLVMModuleRef LLVMModuleCreateWithNameInContext(const char *ModuleID, 226 LLVMContextRef C) { 227 return wrap(new Module(ModuleID, *unwrap(C))); 228 } 229 230 void LLVMDisposeModule(LLVMModuleRef M) { 231 delete unwrap(M); 232 } 233 234 const char *LLVMGetModuleIdentifier(LLVMModuleRef M, size_t *Len) { 235 auto &Str = unwrap(M)->getModuleIdentifier(); 236 *Len = Str.length(); 237 return Str.c_str(); 238 } 239 240 void LLVMSetModuleIdentifier(LLVMModuleRef M, const char *Ident, size_t Len) { 241 unwrap(M)->setModuleIdentifier(StringRef(Ident, Len)); 242 } 243 244 const char *LLVMGetSourceFileName(LLVMModuleRef M, size_t *Len) { 245 auto &Str = unwrap(M)->getSourceFileName(); 246 *Len = Str.length(); 247 return Str.c_str(); 248 } 249 250 void LLVMSetSourceFileName(LLVMModuleRef M, const char *Name, size_t Len) { 251 unwrap(M)->setSourceFileName(StringRef(Name, Len)); 252 } 253 254 /*--.. Data layout .........................................................--*/ 255 const char *LLVMGetDataLayoutStr(LLVMModuleRef M) { 256 return unwrap(M)->getDataLayoutStr().c_str(); 257 } 258 259 const char *LLVMGetDataLayout(LLVMModuleRef M) { 260 return LLVMGetDataLayoutStr(M); 261 } 262 263 void LLVMSetDataLayout(LLVMModuleRef M, const char *DataLayoutStr) { 264 unwrap(M)->setDataLayout(DataLayoutStr); 265 } 266 267 /*--.. Target triple .......................................................--*/ 268 const char * LLVMGetTarget(LLVMModuleRef M) { 269 return unwrap(M)->getTargetTriple().c_str(); 270 } 271 272 void LLVMSetTarget(LLVMModuleRef M, const char *Triple) { 273 unwrap(M)->setTargetTriple(Triple); 274 } 275 276 /*--.. Module flags ........................................................--*/ 277 struct LLVMOpaqueModuleFlagEntry { 278 LLVMModuleFlagBehavior Behavior; 279 const char *Key; 280 size_t KeyLen; 281 LLVMMetadataRef Metadata; 282 }; 283 284 static Module::ModFlagBehavior 285 map_to_llvmModFlagBehavior(LLVMModuleFlagBehavior Behavior) { 286 switch (Behavior) { 287 case LLVMModuleFlagBehaviorError: 288 return Module::ModFlagBehavior::Error; 289 case LLVMModuleFlagBehaviorWarning: 290 return Module::ModFlagBehavior::Warning; 291 case LLVMModuleFlagBehaviorRequire: 292 return Module::ModFlagBehavior::Require; 293 case LLVMModuleFlagBehaviorOverride: 294 return Module::ModFlagBehavior::Override; 295 case LLVMModuleFlagBehaviorAppend: 296 return Module::ModFlagBehavior::Append; 297 case LLVMModuleFlagBehaviorAppendUnique: 298 return Module::ModFlagBehavior::AppendUnique; 299 } 300 llvm_unreachable("Unknown LLVMModuleFlagBehavior"); 301 } 302 303 static LLVMModuleFlagBehavior 304 map_from_llvmModFlagBehavior(Module::ModFlagBehavior Behavior) { 305 switch (Behavior) { 306 case Module::ModFlagBehavior::Error: 307 return LLVMModuleFlagBehaviorError; 308 case Module::ModFlagBehavior::Warning: 309 return LLVMModuleFlagBehaviorWarning; 310 case Module::ModFlagBehavior::Require: 311 return LLVMModuleFlagBehaviorRequire; 312 case Module::ModFlagBehavior::Override: 313 return LLVMModuleFlagBehaviorOverride; 314 case Module::ModFlagBehavior::Append: 315 return LLVMModuleFlagBehaviorAppend; 316 case Module::ModFlagBehavior::AppendUnique: 317 return LLVMModuleFlagBehaviorAppendUnique; 318 default: 319 llvm_unreachable("Unhandled Flag Behavior"); 320 } 321 } 322 323 LLVMModuleFlagEntry *LLVMCopyModuleFlagsMetadata(LLVMModuleRef M, size_t *Len) { 324 SmallVector<Module::ModuleFlagEntry, 8> MFEs; 325 unwrap(M)->getModuleFlagsMetadata(MFEs); 326 327 LLVMOpaqueModuleFlagEntry *Result = static_cast<LLVMOpaqueModuleFlagEntry *>( 328 safe_malloc(MFEs.size() * sizeof(LLVMOpaqueModuleFlagEntry))); 329 for (unsigned i = 0; i < MFEs.size(); ++i) { 330 const auto &ModuleFlag = MFEs[i]; 331 Result[i].Behavior = map_from_llvmModFlagBehavior(ModuleFlag.Behavior); 332 Result[i].Key = ModuleFlag.Key->getString().data(); 333 Result[i].KeyLen = ModuleFlag.Key->getString().size(); 334 Result[i].Metadata = wrap(ModuleFlag.Val); 335 } 336 *Len = MFEs.size(); 337 return Result; 338 } 339 340 void LLVMDisposeModuleFlagsMetadata(LLVMModuleFlagEntry *Entries) { 341 free(Entries); 342 } 343 344 LLVMModuleFlagBehavior 345 LLVMModuleFlagEntriesGetFlagBehavior(LLVMModuleFlagEntry *Entries, 346 unsigned Index) { 347 LLVMOpaqueModuleFlagEntry MFE = 348 static_cast<LLVMOpaqueModuleFlagEntry>(Entries[Index]); 349 return MFE.Behavior; 350 } 351 352 const char *LLVMModuleFlagEntriesGetKey(LLVMModuleFlagEntry *Entries, 353 unsigned Index, size_t *Len) { 354 LLVMOpaqueModuleFlagEntry MFE = 355 static_cast<LLVMOpaqueModuleFlagEntry>(Entries[Index]); 356 *Len = MFE.KeyLen; 357 return MFE.Key; 358 } 359 360 LLVMMetadataRef LLVMModuleFlagEntriesGetMetadata(LLVMModuleFlagEntry *Entries, 361 unsigned Index) { 362 LLVMOpaqueModuleFlagEntry MFE = 363 static_cast<LLVMOpaqueModuleFlagEntry>(Entries[Index]); 364 return MFE.Metadata; 365 } 366 367 LLVMMetadataRef LLVMGetModuleFlag(LLVMModuleRef M, 368 const char *Key, size_t KeyLen) { 369 return wrap(unwrap(M)->getModuleFlag({Key, KeyLen})); 370 } 371 372 void LLVMAddModuleFlag(LLVMModuleRef M, LLVMModuleFlagBehavior Behavior, 373 const char *Key, size_t KeyLen, 374 LLVMMetadataRef Val) { 375 unwrap(M)->addModuleFlag(map_to_llvmModFlagBehavior(Behavior), 376 {Key, KeyLen}, unwrap(Val)); 377 } 378 379 /*--.. Printing modules ....................................................--*/ 380 381 void LLVMDumpModule(LLVMModuleRef M) { 382 unwrap(M)->print(errs(), nullptr, 383 /*ShouldPreserveUseListOrder=*/false, /*IsForDebug=*/true); 384 } 385 386 LLVMBool LLVMPrintModuleToFile(LLVMModuleRef M, const char *Filename, 387 char **ErrorMessage) { 388 std::error_code EC; 389 raw_fd_ostream dest(Filename, EC, sys::fs::F_Text); 390 if (EC) { 391 *ErrorMessage = strdup(EC.message().c_str()); 392 return true; 393 } 394 395 unwrap(M)->print(dest, nullptr); 396 397 dest.close(); 398 399 if (dest.has_error()) { 400 std::string E = "Error printing to file: " + dest.error().message(); 401 *ErrorMessage = strdup(E.c_str()); 402 return true; 403 } 404 405 return false; 406 } 407 408 char *LLVMPrintModuleToString(LLVMModuleRef M) { 409 std::string buf; 410 raw_string_ostream os(buf); 411 412 unwrap(M)->print(os, nullptr); 413 os.flush(); 414 415 return strdup(buf.c_str()); 416 } 417 418 /*--.. Operations on inline assembler ......................................--*/ 419 void LLVMSetModuleInlineAsm2(LLVMModuleRef M, const char *Asm, size_t Len) { 420 unwrap(M)->setModuleInlineAsm(StringRef(Asm, Len)); 421 } 422 423 void LLVMSetModuleInlineAsm(LLVMModuleRef M, const char *Asm) { 424 unwrap(M)->setModuleInlineAsm(StringRef(Asm)); 425 } 426 427 void LLVMAppendModuleInlineAsm(LLVMModuleRef M, const char *Asm, size_t Len) { 428 unwrap(M)->appendModuleInlineAsm(StringRef(Asm, Len)); 429 } 430 431 const char *LLVMGetModuleInlineAsm(LLVMModuleRef M, size_t *Len) { 432 auto &Str = unwrap(M)->getModuleInlineAsm(); 433 *Len = Str.length(); 434 return Str.c_str(); 435 } 436 437 LLVMValueRef LLVMGetInlineAsm(LLVMTypeRef Ty, 438 char *AsmString, size_t AsmStringSize, 439 char *Constraints, size_t ConstraintsSize, 440 LLVMBool HasSideEffects, LLVMBool IsAlignStack, 441 LLVMInlineAsmDialect Dialect) { 442 InlineAsm::AsmDialect AD; 443 switch (Dialect) { 444 case LLVMInlineAsmDialectATT: 445 AD = InlineAsm::AD_ATT; 446 break; 447 case LLVMInlineAsmDialectIntel: 448 AD = InlineAsm::AD_Intel; 449 break; 450 } 451 return wrap(InlineAsm::get(unwrap<FunctionType>(Ty), 452 StringRef(AsmString, AsmStringSize), 453 StringRef(Constraints, ConstraintsSize), 454 HasSideEffects, IsAlignStack, AD)); 455 } 456 457 458 /*--.. Operations on module contexts ......................................--*/ 459 LLVMContextRef LLVMGetModuleContext(LLVMModuleRef M) { 460 return wrap(&unwrap(M)->getContext()); 461 } 462 463 464 /*===-- Operations on types -----------------------------------------------===*/ 465 466 /*--.. Operations on all types (mostly) ....................................--*/ 467 468 LLVMTypeKind LLVMGetTypeKind(LLVMTypeRef Ty) { 469 switch (unwrap(Ty)->getTypeID()) { 470 case Type::VoidTyID: 471 return LLVMVoidTypeKind; 472 case Type::HalfTyID: 473 return LLVMHalfTypeKind; 474 case Type::FloatTyID: 475 return LLVMFloatTypeKind; 476 case Type::DoubleTyID: 477 return LLVMDoubleTypeKind; 478 case Type::X86_FP80TyID: 479 return LLVMX86_FP80TypeKind; 480 case Type::FP128TyID: 481 return LLVMFP128TypeKind; 482 case Type::PPC_FP128TyID: 483 return LLVMPPC_FP128TypeKind; 484 case Type::LabelTyID: 485 return LLVMLabelTypeKind; 486 case Type::MetadataTyID: 487 return LLVMMetadataTypeKind; 488 case Type::IntegerTyID: 489 return LLVMIntegerTypeKind; 490 case Type::FunctionTyID: 491 return LLVMFunctionTypeKind; 492 case Type::StructTyID: 493 return LLVMStructTypeKind; 494 case Type::ArrayTyID: 495 return LLVMArrayTypeKind; 496 case Type::PointerTyID: 497 return LLVMPointerTypeKind; 498 case Type::VectorTyID: 499 return LLVMVectorTypeKind; 500 case Type::X86_MMXTyID: 501 return LLVMX86_MMXTypeKind; 502 case Type::TokenTyID: 503 return LLVMTokenTypeKind; 504 } 505 llvm_unreachable("Unhandled TypeID."); 506 } 507 508 LLVMBool LLVMTypeIsSized(LLVMTypeRef Ty) 509 { 510 return unwrap(Ty)->isSized(); 511 } 512 513 LLVMContextRef LLVMGetTypeContext(LLVMTypeRef Ty) { 514 return wrap(&unwrap(Ty)->getContext()); 515 } 516 517 void LLVMDumpType(LLVMTypeRef Ty) { 518 return unwrap(Ty)->print(errs(), /*IsForDebug=*/true); 519 } 520 521 char *LLVMPrintTypeToString(LLVMTypeRef Ty) { 522 std::string buf; 523 raw_string_ostream os(buf); 524 525 if (unwrap(Ty)) 526 unwrap(Ty)->print(os); 527 else 528 os << "Printing <null> Type"; 529 530 os.flush(); 531 532 return strdup(buf.c_str()); 533 } 534 535 /*--.. Operations on integer types .........................................--*/ 536 537 LLVMTypeRef LLVMInt1TypeInContext(LLVMContextRef C) { 538 return (LLVMTypeRef) Type::getInt1Ty(*unwrap(C)); 539 } 540 LLVMTypeRef LLVMInt8TypeInContext(LLVMContextRef C) { 541 return (LLVMTypeRef) Type::getInt8Ty(*unwrap(C)); 542 } 543 LLVMTypeRef LLVMInt16TypeInContext(LLVMContextRef C) { 544 return (LLVMTypeRef) Type::getInt16Ty(*unwrap(C)); 545 } 546 LLVMTypeRef LLVMInt32TypeInContext(LLVMContextRef C) { 547 return (LLVMTypeRef) Type::getInt32Ty(*unwrap(C)); 548 } 549 LLVMTypeRef LLVMInt64TypeInContext(LLVMContextRef C) { 550 return (LLVMTypeRef) Type::getInt64Ty(*unwrap(C)); 551 } 552 LLVMTypeRef LLVMInt128TypeInContext(LLVMContextRef C) { 553 return (LLVMTypeRef) Type::getInt128Ty(*unwrap(C)); 554 } 555 LLVMTypeRef LLVMIntTypeInContext(LLVMContextRef C, unsigned NumBits) { 556 return wrap(IntegerType::get(*unwrap(C), NumBits)); 557 } 558 559 LLVMTypeRef LLVMInt1Type(void) { 560 return LLVMInt1TypeInContext(LLVMGetGlobalContext()); 561 } 562 LLVMTypeRef LLVMInt8Type(void) { 563 return LLVMInt8TypeInContext(LLVMGetGlobalContext()); 564 } 565 LLVMTypeRef LLVMInt16Type(void) { 566 return LLVMInt16TypeInContext(LLVMGetGlobalContext()); 567 } 568 LLVMTypeRef LLVMInt32Type(void) { 569 return LLVMInt32TypeInContext(LLVMGetGlobalContext()); 570 } 571 LLVMTypeRef LLVMInt64Type(void) { 572 return LLVMInt64TypeInContext(LLVMGetGlobalContext()); 573 } 574 LLVMTypeRef LLVMInt128Type(void) { 575 return LLVMInt128TypeInContext(LLVMGetGlobalContext()); 576 } 577 LLVMTypeRef LLVMIntType(unsigned NumBits) { 578 return LLVMIntTypeInContext(LLVMGetGlobalContext(), NumBits); 579 } 580 581 unsigned LLVMGetIntTypeWidth(LLVMTypeRef IntegerTy) { 582 return unwrap<IntegerType>(IntegerTy)->getBitWidth(); 583 } 584 585 /*--.. Operations on real types ............................................--*/ 586 587 LLVMTypeRef LLVMHalfTypeInContext(LLVMContextRef C) { 588 return (LLVMTypeRef) Type::getHalfTy(*unwrap(C)); 589 } 590 LLVMTypeRef LLVMFloatTypeInContext(LLVMContextRef C) { 591 return (LLVMTypeRef) Type::getFloatTy(*unwrap(C)); 592 } 593 LLVMTypeRef LLVMDoubleTypeInContext(LLVMContextRef C) { 594 return (LLVMTypeRef) Type::getDoubleTy(*unwrap(C)); 595 } 596 LLVMTypeRef LLVMX86FP80TypeInContext(LLVMContextRef C) { 597 return (LLVMTypeRef) Type::getX86_FP80Ty(*unwrap(C)); 598 } 599 LLVMTypeRef LLVMFP128TypeInContext(LLVMContextRef C) { 600 return (LLVMTypeRef) Type::getFP128Ty(*unwrap(C)); 601 } 602 LLVMTypeRef LLVMPPCFP128TypeInContext(LLVMContextRef C) { 603 return (LLVMTypeRef) Type::getPPC_FP128Ty(*unwrap(C)); 604 } 605 LLVMTypeRef LLVMX86MMXTypeInContext(LLVMContextRef C) { 606 return (LLVMTypeRef) Type::getX86_MMXTy(*unwrap(C)); 607 } 608 609 LLVMTypeRef LLVMHalfType(void) { 610 return LLVMHalfTypeInContext(LLVMGetGlobalContext()); 611 } 612 LLVMTypeRef LLVMFloatType(void) { 613 return LLVMFloatTypeInContext(LLVMGetGlobalContext()); 614 } 615 LLVMTypeRef LLVMDoubleType(void) { 616 return LLVMDoubleTypeInContext(LLVMGetGlobalContext()); 617 } 618 LLVMTypeRef LLVMX86FP80Type(void) { 619 return LLVMX86FP80TypeInContext(LLVMGetGlobalContext()); 620 } 621 LLVMTypeRef LLVMFP128Type(void) { 622 return LLVMFP128TypeInContext(LLVMGetGlobalContext()); 623 } 624 LLVMTypeRef LLVMPPCFP128Type(void) { 625 return LLVMPPCFP128TypeInContext(LLVMGetGlobalContext()); 626 } 627 LLVMTypeRef LLVMX86MMXType(void) { 628 return LLVMX86MMXTypeInContext(LLVMGetGlobalContext()); 629 } 630 631 /*--.. Operations on function types ........................................--*/ 632 633 LLVMTypeRef LLVMFunctionType(LLVMTypeRef ReturnType, 634 LLVMTypeRef *ParamTypes, unsigned ParamCount, 635 LLVMBool IsVarArg) { 636 ArrayRef<Type*> Tys(unwrap(ParamTypes), ParamCount); 637 return wrap(FunctionType::get(unwrap(ReturnType), Tys, IsVarArg != 0)); 638 } 639 640 LLVMBool LLVMIsFunctionVarArg(LLVMTypeRef FunctionTy) { 641 return unwrap<FunctionType>(FunctionTy)->isVarArg(); 642 } 643 644 LLVMTypeRef LLVMGetReturnType(LLVMTypeRef FunctionTy) { 645 return wrap(unwrap<FunctionType>(FunctionTy)->getReturnType()); 646 } 647 648 unsigned LLVMCountParamTypes(LLVMTypeRef FunctionTy) { 649 return unwrap<FunctionType>(FunctionTy)->getNumParams(); 650 } 651 652 void LLVMGetParamTypes(LLVMTypeRef FunctionTy, LLVMTypeRef *Dest) { 653 FunctionType *Ty = unwrap<FunctionType>(FunctionTy); 654 for (FunctionType::param_iterator I = Ty->param_begin(), 655 E = Ty->param_end(); I != E; ++I) 656 *Dest++ = wrap(*I); 657 } 658 659 /*--.. Operations on struct types ..........................................--*/ 660 661 LLVMTypeRef LLVMStructTypeInContext(LLVMContextRef C, LLVMTypeRef *ElementTypes, 662 unsigned ElementCount, LLVMBool Packed) { 663 ArrayRef<Type*> Tys(unwrap(ElementTypes), ElementCount); 664 return wrap(StructType::get(*unwrap(C), Tys, Packed != 0)); 665 } 666 667 LLVMTypeRef LLVMStructType(LLVMTypeRef *ElementTypes, 668 unsigned ElementCount, LLVMBool Packed) { 669 return LLVMStructTypeInContext(LLVMGetGlobalContext(), ElementTypes, 670 ElementCount, Packed); 671 } 672 673 LLVMTypeRef LLVMStructCreateNamed(LLVMContextRef C, const char *Name) 674 { 675 return wrap(StructType::create(*unwrap(C), Name)); 676 } 677 678 const char *LLVMGetStructName(LLVMTypeRef Ty) 679 { 680 StructType *Type = unwrap<StructType>(Ty); 681 if (!Type->hasName()) 682 return nullptr; 683 return Type->getName().data(); 684 } 685 686 void LLVMStructSetBody(LLVMTypeRef StructTy, LLVMTypeRef *ElementTypes, 687 unsigned ElementCount, LLVMBool Packed) { 688 ArrayRef<Type*> Tys(unwrap(ElementTypes), ElementCount); 689 unwrap<StructType>(StructTy)->setBody(Tys, Packed != 0); 690 } 691 692 unsigned LLVMCountStructElementTypes(LLVMTypeRef StructTy) { 693 return unwrap<StructType>(StructTy)->getNumElements(); 694 } 695 696 void LLVMGetStructElementTypes(LLVMTypeRef StructTy, LLVMTypeRef *Dest) { 697 StructType *Ty = unwrap<StructType>(StructTy); 698 for (StructType::element_iterator I = Ty->element_begin(), 699 E = Ty->element_end(); I != E; ++I) 700 *Dest++ = wrap(*I); 701 } 702 703 LLVMTypeRef LLVMStructGetTypeAtIndex(LLVMTypeRef StructTy, unsigned i) { 704 StructType *Ty = unwrap<StructType>(StructTy); 705 return wrap(Ty->getTypeAtIndex(i)); 706 } 707 708 LLVMBool LLVMIsPackedStruct(LLVMTypeRef StructTy) { 709 return unwrap<StructType>(StructTy)->isPacked(); 710 } 711 712 LLVMBool LLVMIsOpaqueStruct(LLVMTypeRef StructTy) { 713 return unwrap<StructType>(StructTy)->isOpaque(); 714 } 715 716 LLVMBool LLVMIsLiteralStruct(LLVMTypeRef StructTy) { 717 return unwrap<StructType>(StructTy)->isLiteral(); 718 } 719 720 LLVMTypeRef LLVMGetTypeByName(LLVMModuleRef M, const char *Name) { 721 return wrap(unwrap(M)->getTypeByName(Name)); 722 } 723 724 /*--.. Operations on array, pointer, and vector types (sequence types) .....--*/ 725 726 void LLVMGetSubtypes(LLVMTypeRef Tp, LLVMTypeRef *Arr) { 727 int i = 0; 728 for (auto *T : unwrap(Tp)->subtypes()) { 729 Arr[i] = wrap(T); 730 i++; 731 } 732 } 733 734 LLVMTypeRef LLVMArrayType(LLVMTypeRef ElementType, unsigned ElementCount) { 735 return wrap(ArrayType::get(unwrap(ElementType), ElementCount)); 736 } 737 738 LLVMTypeRef LLVMPointerType(LLVMTypeRef ElementType, unsigned AddressSpace) { 739 return wrap(PointerType::get(unwrap(ElementType), AddressSpace)); 740 } 741 742 LLVMTypeRef LLVMVectorType(LLVMTypeRef ElementType, unsigned ElementCount) { 743 return wrap(VectorType::get(unwrap(ElementType), ElementCount)); 744 } 745 746 LLVMTypeRef LLVMGetElementType(LLVMTypeRef WrappedTy) { 747 auto *Ty = unwrap<Type>(WrappedTy); 748 if (auto *PTy = dyn_cast<PointerType>(Ty)) 749 return wrap(PTy->getElementType()); 750 return wrap(cast<SequentialType>(Ty)->getElementType()); 751 } 752 753 unsigned LLVMGetNumContainedTypes(LLVMTypeRef Tp) { 754 return unwrap(Tp)->getNumContainedTypes(); 755 } 756 757 unsigned LLVMGetArrayLength(LLVMTypeRef ArrayTy) { 758 return unwrap<ArrayType>(ArrayTy)->getNumElements(); 759 } 760 761 unsigned LLVMGetPointerAddressSpace(LLVMTypeRef PointerTy) { 762 return unwrap<PointerType>(PointerTy)->getAddressSpace(); 763 } 764 765 unsigned LLVMGetVectorSize(LLVMTypeRef VectorTy) { 766 return unwrap<VectorType>(VectorTy)->getNumElements(); 767 } 768 769 /*--.. Operations on other types ...........................................--*/ 770 771 LLVMTypeRef LLVMVoidTypeInContext(LLVMContextRef C) { 772 return wrap(Type::getVoidTy(*unwrap(C))); 773 } 774 LLVMTypeRef LLVMLabelTypeInContext(LLVMContextRef C) { 775 return wrap(Type::getLabelTy(*unwrap(C))); 776 } 777 LLVMTypeRef LLVMTokenTypeInContext(LLVMContextRef C) { 778 return wrap(Type::getTokenTy(*unwrap(C))); 779 } 780 LLVMTypeRef LLVMMetadataTypeInContext(LLVMContextRef C) { 781 return wrap(Type::getMetadataTy(*unwrap(C))); 782 } 783 784 LLVMTypeRef LLVMVoidType(void) { 785 return LLVMVoidTypeInContext(LLVMGetGlobalContext()); 786 } 787 LLVMTypeRef LLVMLabelType(void) { 788 return LLVMLabelTypeInContext(LLVMGetGlobalContext()); 789 } 790 791 /*===-- Operations on values ----------------------------------------------===*/ 792 793 /*--.. Operations on all values ............................................--*/ 794 795 LLVMTypeRef LLVMTypeOf(LLVMValueRef Val) { 796 return wrap(unwrap(Val)->getType()); 797 } 798 799 LLVMValueKind LLVMGetValueKind(LLVMValueRef Val) { 800 switch(unwrap(Val)->getValueID()) { 801 #define HANDLE_VALUE(Name) \ 802 case Value::Name##Val: \ 803 return LLVM##Name##ValueKind; 804 #include "llvm/IR/Value.def" 805 default: 806 return LLVMInstructionValueKind; 807 } 808 } 809 810 const char *LLVMGetValueName2(LLVMValueRef Val, size_t *Length) { 811 auto *V = unwrap(Val); 812 *Length = V->getName().size(); 813 return V->getName().data(); 814 } 815 816 void LLVMSetValueName2(LLVMValueRef Val, const char *Name, size_t NameLen) { 817 unwrap(Val)->setName(StringRef(Name, NameLen)); 818 } 819 820 const char *LLVMGetValueName(LLVMValueRef Val) { 821 return unwrap(Val)->getName().data(); 822 } 823 824 void LLVMSetValueName(LLVMValueRef Val, const char *Name) { 825 unwrap(Val)->setName(Name); 826 } 827 828 void LLVMDumpValue(LLVMValueRef Val) { 829 unwrap(Val)->print(errs(), /*IsForDebug=*/true); 830 } 831 832 char* LLVMPrintValueToString(LLVMValueRef Val) { 833 std::string buf; 834 raw_string_ostream os(buf); 835 836 if (unwrap(Val)) 837 unwrap(Val)->print(os); 838 else 839 os << "Printing <null> Value"; 840 841 os.flush(); 842 843 return strdup(buf.c_str()); 844 } 845 846 void LLVMReplaceAllUsesWith(LLVMValueRef OldVal, LLVMValueRef NewVal) { 847 unwrap(OldVal)->replaceAllUsesWith(unwrap(NewVal)); 848 } 849 850 int LLVMHasMetadata(LLVMValueRef Inst) { 851 return unwrap<Instruction>(Inst)->hasMetadata(); 852 } 853 854 LLVMValueRef LLVMGetMetadata(LLVMValueRef Inst, unsigned KindID) { 855 auto *I = unwrap<Instruction>(Inst); 856 assert(I && "Expected instruction"); 857 if (auto *MD = I->getMetadata(KindID)) 858 return wrap(MetadataAsValue::get(I->getContext(), MD)); 859 return nullptr; 860 } 861 862 // MetadataAsValue uses a canonical format which strips the actual MDNode for 863 // MDNode with just a single constant value, storing just a ConstantAsMetadata 864 // This undoes this canonicalization, reconstructing the MDNode. 865 static MDNode *extractMDNode(MetadataAsValue *MAV) { 866 Metadata *MD = MAV->getMetadata(); 867 assert((isa<MDNode>(MD) || isa<ConstantAsMetadata>(MD)) && 868 "Expected a metadata node or a canonicalized constant"); 869 870 if (MDNode *N = dyn_cast<MDNode>(MD)) 871 return N; 872 873 return MDNode::get(MAV->getContext(), MD); 874 } 875 876 void LLVMSetMetadata(LLVMValueRef Inst, unsigned KindID, LLVMValueRef Val) { 877 MDNode *N = Val ? extractMDNode(unwrap<MetadataAsValue>(Val)) : nullptr; 878 879 unwrap<Instruction>(Inst)->setMetadata(KindID, N); 880 } 881 882 struct LLVMOpaqueValueMetadataEntry { 883 unsigned Kind; 884 LLVMMetadataRef Metadata; 885 }; 886 887 using MetadataEntries = SmallVectorImpl<std::pair<unsigned, MDNode *>>; 888 static LLVMValueMetadataEntry * 889 llvm_getMetadata(size_t *NumEntries, 890 llvm::function_ref<void(MetadataEntries &)> AccessMD) { 891 SmallVector<std::pair<unsigned, MDNode *>, 8> MVEs; 892 AccessMD(MVEs); 893 894 LLVMOpaqueValueMetadataEntry *Result = 895 static_cast<LLVMOpaqueValueMetadataEntry *>( 896 safe_malloc(MVEs.size() * sizeof(LLVMOpaqueValueMetadataEntry))); 897 for (unsigned i = 0; i < MVEs.size(); ++i) { 898 const auto &ModuleFlag = MVEs[i]; 899 Result[i].Kind = ModuleFlag.first; 900 Result[i].Metadata = wrap(ModuleFlag.second); 901 } 902 *NumEntries = MVEs.size(); 903 return Result; 904 } 905 906 LLVMValueMetadataEntry * 907 LLVMInstructionGetAllMetadataOtherThanDebugLoc(LLVMValueRef Value, 908 size_t *NumEntries) { 909 return llvm_getMetadata(NumEntries, [&Value](MetadataEntries &Entries) { 910 unwrap<Instruction>(Value)->getAllMetadata(Entries); 911 }); 912 } 913 914 /*--.. Conversion functions ................................................--*/ 915 916 #define LLVM_DEFINE_VALUE_CAST(name) \ 917 LLVMValueRef LLVMIsA##name(LLVMValueRef Val) { \ 918 return wrap(static_cast<Value*>(dyn_cast_or_null<name>(unwrap(Val)))); \ 919 } 920 921 LLVM_FOR_EACH_VALUE_SUBCLASS(LLVM_DEFINE_VALUE_CAST) 922 923 LLVMValueRef LLVMIsAMDNode(LLVMValueRef Val) { 924 if (auto *MD = dyn_cast_or_null<MetadataAsValue>(unwrap(Val))) 925 if (isa<MDNode>(MD->getMetadata()) || 926 isa<ValueAsMetadata>(MD->getMetadata())) 927 return Val; 928 return nullptr; 929 } 930 931 LLVMValueRef LLVMIsAMDString(LLVMValueRef Val) { 932 if (auto *MD = dyn_cast_or_null<MetadataAsValue>(unwrap(Val))) 933 if (isa<MDString>(MD->getMetadata())) 934 return Val; 935 return nullptr; 936 } 937 938 /*--.. Operations on Uses ..................................................--*/ 939 LLVMUseRef LLVMGetFirstUse(LLVMValueRef Val) { 940 Value *V = unwrap(Val); 941 Value::use_iterator I = V->use_begin(); 942 if (I == V->use_end()) 943 return nullptr; 944 return wrap(&*I); 945 } 946 947 LLVMUseRef LLVMGetNextUse(LLVMUseRef U) { 948 Use *Next = unwrap(U)->getNext(); 949 if (Next) 950 return wrap(Next); 951 return nullptr; 952 } 953 954 LLVMValueRef LLVMGetUser(LLVMUseRef U) { 955 return wrap(unwrap(U)->getUser()); 956 } 957 958 LLVMValueRef LLVMGetUsedValue(LLVMUseRef U) { 959 return wrap(unwrap(U)->get()); 960 } 961 962 /*--.. Operations on Users .................................................--*/ 963 964 static LLVMValueRef getMDNodeOperandImpl(LLVMContext &Context, const MDNode *N, 965 unsigned Index) { 966 Metadata *Op = N->getOperand(Index); 967 if (!Op) 968 return nullptr; 969 if (auto *C = dyn_cast<ConstantAsMetadata>(Op)) 970 return wrap(C->getValue()); 971 return wrap(MetadataAsValue::get(Context, Op)); 972 } 973 974 LLVMValueRef LLVMGetOperand(LLVMValueRef Val, unsigned Index) { 975 Value *V = unwrap(Val); 976 if (auto *MD = dyn_cast<MetadataAsValue>(V)) { 977 if (auto *L = dyn_cast<ValueAsMetadata>(MD->getMetadata())) { 978 assert(Index == 0 && "Function-local metadata can only have one operand"); 979 return wrap(L->getValue()); 980 } 981 return getMDNodeOperandImpl(V->getContext(), 982 cast<MDNode>(MD->getMetadata()), Index); 983 } 984 985 return wrap(cast<User>(V)->getOperand(Index)); 986 } 987 988 LLVMUseRef LLVMGetOperandUse(LLVMValueRef Val, unsigned Index) { 989 Value *V = unwrap(Val); 990 return wrap(&cast<User>(V)->getOperandUse(Index)); 991 } 992 993 void LLVMSetOperand(LLVMValueRef Val, unsigned Index, LLVMValueRef Op) { 994 unwrap<User>(Val)->setOperand(Index, unwrap(Op)); 995 } 996 997 int LLVMGetNumOperands(LLVMValueRef Val) { 998 Value *V = unwrap(Val); 999 if (isa<MetadataAsValue>(V)) 1000 return LLVMGetMDNodeNumOperands(Val); 1001 1002 return cast<User>(V)->getNumOperands(); 1003 } 1004 1005 /*--.. Operations on constants of any type .................................--*/ 1006 1007 LLVMValueRef LLVMConstNull(LLVMTypeRef Ty) { 1008 return wrap(Constant::getNullValue(unwrap(Ty))); 1009 } 1010 1011 LLVMValueRef LLVMConstAllOnes(LLVMTypeRef Ty) { 1012 return wrap(Constant::getAllOnesValue(unwrap(Ty))); 1013 } 1014 1015 LLVMValueRef LLVMGetUndef(LLVMTypeRef Ty) { 1016 return wrap(UndefValue::get(unwrap(Ty))); 1017 } 1018 1019 LLVMBool LLVMIsConstant(LLVMValueRef Ty) { 1020 return isa<Constant>(unwrap(Ty)); 1021 } 1022 1023 LLVMBool LLVMIsNull(LLVMValueRef Val) { 1024 if (Constant *C = dyn_cast<Constant>(unwrap(Val))) 1025 return C->isNullValue(); 1026 return false; 1027 } 1028 1029 LLVMBool LLVMIsUndef(LLVMValueRef Val) { 1030 return isa<UndefValue>(unwrap(Val)); 1031 } 1032 1033 LLVMValueRef LLVMConstPointerNull(LLVMTypeRef Ty) { 1034 return wrap(ConstantPointerNull::get(unwrap<PointerType>(Ty))); 1035 } 1036 1037 /*--.. Operations on metadata nodes ........................................--*/ 1038 1039 LLVMValueRef LLVMMDStringInContext(LLVMContextRef C, const char *Str, 1040 unsigned SLen) { 1041 LLVMContext &Context = *unwrap(C); 1042 return wrap(MetadataAsValue::get( 1043 Context, MDString::get(Context, StringRef(Str, SLen)))); 1044 } 1045 1046 LLVMValueRef LLVMMDString(const char *Str, unsigned SLen) { 1047 return LLVMMDStringInContext(LLVMGetGlobalContext(), Str, SLen); 1048 } 1049 1050 LLVMValueRef LLVMMDNodeInContext(LLVMContextRef C, LLVMValueRef *Vals, 1051 unsigned Count) { 1052 LLVMContext &Context = *unwrap(C); 1053 SmallVector<Metadata *, 8> MDs; 1054 for (auto *OV : makeArrayRef(Vals, Count)) { 1055 Value *V = unwrap(OV); 1056 Metadata *MD; 1057 if (!V) 1058 MD = nullptr; 1059 else if (auto *C = dyn_cast<Constant>(V)) 1060 MD = ConstantAsMetadata::get(C); 1061 else if (auto *MDV = dyn_cast<MetadataAsValue>(V)) { 1062 MD = MDV->getMetadata(); 1063 assert(!isa<LocalAsMetadata>(MD) && "Unexpected function-local metadata " 1064 "outside of direct argument to call"); 1065 } else { 1066 // This is function-local metadata. Pretend to make an MDNode. 1067 assert(Count == 1 && 1068 "Expected only one operand to function-local metadata"); 1069 return wrap(MetadataAsValue::get(Context, LocalAsMetadata::get(V))); 1070 } 1071 1072 MDs.push_back(MD); 1073 } 1074 return wrap(MetadataAsValue::get(Context, MDNode::get(Context, MDs))); 1075 } 1076 1077 LLVMValueRef LLVMMDNode(LLVMValueRef *Vals, unsigned Count) { 1078 return LLVMMDNodeInContext(LLVMGetGlobalContext(), Vals, Count); 1079 } 1080 1081 LLVMValueRef LLVMMetadataAsValue(LLVMContextRef C, LLVMMetadataRef MD) { 1082 return wrap(MetadataAsValue::get(*unwrap(C), unwrap(MD))); 1083 } 1084 1085 LLVMMetadataRef LLVMValueAsMetadata(LLVMValueRef Val) { 1086 auto *V = unwrap(Val); 1087 if (auto *C = dyn_cast<Constant>(V)) 1088 return wrap(ConstantAsMetadata::get(C)); 1089 if (auto *MAV = dyn_cast<MetadataAsValue>(V)) 1090 return wrap(MAV->getMetadata()); 1091 return wrap(ValueAsMetadata::get(V)); 1092 } 1093 1094 const char *LLVMGetMDString(LLVMValueRef V, unsigned *Length) { 1095 if (const auto *MD = dyn_cast<MetadataAsValue>(unwrap(V))) 1096 if (const MDString *S = dyn_cast<MDString>(MD->getMetadata())) { 1097 *Length = S->getString().size(); 1098 return S->getString().data(); 1099 } 1100 *Length = 0; 1101 return nullptr; 1102 } 1103 1104 unsigned LLVMGetMDNodeNumOperands(LLVMValueRef V) { 1105 auto *MD = cast<MetadataAsValue>(unwrap(V)); 1106 if (isa<ValueAsMetadata>(MD->getMetadata())) 1107 return 1; 1108 return cast<MDNode>(MD->getMetadata())->getNumOperands(); 1109 } 1110 1111 LLVMNamedMDNodeRef LLVMGetFirstNamedMetadata(LLVMModuleRef M) { 1112 Module *Mod = unwrap(M); 1113 Module::named_metadata_iterator I = Mod->named_metadata_begin(); 1114 if (I == Mod->named_metadata_end()) 1115 return nullptr; 1116 return wrap(&*I); 1117 } 1118 1119 LLVMNamedMDNodeRef LLVMGetLastNamedMetadata(LLVMModuleRef M) { 1120 Module *Mod = unwrap(M); 1121 Module::named_metadata_iterator I = Mod->named_metadata_end(); 1122 if (I == Mod->named_metadata_begin()) 1123 return nullptr; 1124 return wrap(&*--I); 1125 } 1126 1127 LLVMNamedMDNodeRef LLVMGetNextNamedMetadata(LLVMNamedMDNodeRef NMD) { 1128 NamedMDNode *NamedNode = unwrap<NamedMDNode>(NMD); 1129 Module::named_metadata_iterator I(NamedNode); 1130 if (++I == NamedNode->getParent()->named_metadata_end()) 1131 return nullptr; 1132 return wrap(&*I); 1133 } 1134 1135 LLVMNamedMDNodeRef LLVMGetPreviousNamedMetadata(LLVMNamedMDNodeRef NMD) { 1136 NamedMDNode *NamedNode = unwrap<NamedMDNode>(NMD); 1137 Module::named_metadata_iterator I(NamedNode); 1138 if (I == NamedNode->getParent()->named_metadata_begin()) 1139 return nullptr; 1140 return wrap(&*--I); 1141 } 1142 1143 LLVMNamedMDNodeRef LLVMGetNamedMetadata(LLVMModuleRef M, 1144 const char *Name, size_t NameLen) { 1145 return wrap(unwrap(M)->getNamedMetadata(StringRef(Name, NameLen))); 1146 } 1147 1148 LLVMNamedMDNodeRef LLVMGetOrInsertNamedMetadata(LLVMModuleRef M, 1149 const char *Name, size_t NameLen) { 1150 return wrap(unwrap(M)->getOrInsertNamedMetadata({Name, NameLen})); 1151 } 1152 1153 const char *LLVMGetNamedMetadataName(LLVMNamedMDNodeRef NMD, size_t *NameLen) { 1154 NamedMDNode *NamedNode = unwrap<NamedMDNode>(NMD); 1155 *NameLen = NamedNode->getName().size(); 1156 return NamedNode->getName().data(); 1157 } 1158 1159 void LLVMGetMDNodeOperands(LLVMValueRef V, LLVMValueRef *Dest) { 1160 auto *MD = cast<MetadataAsValue>(unwrap(V)); 1161 if (auto *MDV = dyn_cast<ValueAsMetadata>(MD->getMetadata())) { 1162 *Dest = wrap(MDV->getValue()); 1163 return; 1164 } 1165 const auto *N = cast<MDNode>(MD->getMetadata()); 1166 const unsigned numOperands = N->getNumOperands(); 1167 LLVMContext &Context = unwrap(V)->getContext(); 1168 for (unsigned i = 0; i < numOperands; i++) 1169 Dest[i] = getMDNodeOperandImpl(Context, N, i); 1170 } 1171 1172 unsigned LLVMGetNamedMetadataNumOperands(LLVMModuleRef M, const char *Name) { 1173 if (NamedMDNode *N = unwrap(M)->getNamedMetadata(Name)) { 1174 return N->getNumOperands(); 1175 } 1176 return 0; 1177 } 1178 1179 void LLVMGetNamedMetadataOperands(LLVMModuleRef M, const char *Name, 1180 LLVMValueRef *Dest) { 1181 NamedMDNode *N = unwrap(M)->getNamedMetadata(Name); 1182 if (!N) 1183 return; 1184 LLVMContext &Context = unwrap(M)->getContext(); 1185 for (unsigned i=0;i<N->getNumOperands();i++) 1186 Dest[i] = wrap(MetadataAsValue::get(Context, N->getOperand(i))); 1187 } 1188 1189 void LLVMAddNamedMetadataOperand(LLVMModuleRef M, const char *Name, 1190 LLVMValueRef Val) { 1191 NamedMDNode *N = unwrap(M)->getOrInsertNamedMetadata(Name); 1192 if (!N) 1193 return; 1194 if (!Val) 1195 return; 1196 N->addOperand(extractMDNode(unwrap<MetadataAsValue>(Val))); 1197 } 1198 1199 const char *LLVMGetDebugLocDirectory(LLVMValueRef Val, unsigned *Length) { 1200 if (!Length) return nullptr; 1201 StringRef S; 1202 if (const auto *I = unwrap<Instruction>(Val)) { 1203 S = I->getDebugLoc()->getDirectory(); 1204 } else if (const auto *GV = unwrap<GlobalVariable>(Val)) { 1205 SmallVector<DIGlobalVariableExpression *, 1> GVEs; 1206 GV->getDebugInfo(GVEs); 1207 if (GVEs.size()) 1208 if (const DIGlobalVariable *DGV = GVEs[0]->getVariable()) 1209 S = DGV->getDirectory(); 1210 } else if (const auto *F = unwrap<Function>(Val)) { 1211 if (const DISubprogram *DSP = F->getSubprogram()) 1212 S = DSP->getDirectory(); 1213 } else { 1214 assert(0 && "Expected Instruction, GlobalVariable or Function"); 1215 return nullptr; 1216 } 1217 *Length = S.size(); 1218 return S.data(); 1219 } 1220 1221 const char *LLVMGetDebugLocFilename(LLVMValueRef Val, unsigned *Length) { 1222 if (!Length) return nullptr; 1223 StringRef S; 1224 if (const auto *I = unwrap<Instruction>(Val)) { 1225 S = I->getDebugLoc()->getFilename(); 1226 } else if (const auto *GV = unwrap<GlobalVariable>(Val)) { 1227 SmallVector<DIGlobalVariableExpression *, 1> GVEs; 1228 GV->getDebugInfo(GVEs); 1229 if (GVEs.size()) 1230 if (const DIGlobalVariable *DGV = GVEs[0]->getVariable()) 1231 S = DGV->getFilename(); 1232 } else if (const auto *F = unwrap<Function>(Val)) { 1233 if (const DISubprogram *DSP = F->getSubprogram()) 1234 S = DSP->getFilename(); 1235 } else { 1236 assert(0 && "Expected Instruction, GlobalVariable or Function"); 1237 return nullptr; 1238 } 1239 *Length = S.size(); 1240 return S.data(); 1241 } 1242 1243 unsigned LLVMGetDebugLocLine(LLVMValueRef Val) { 1244 unsigned L = 0; 1245 if (const auto *I = unwrap<Instruction>(Val)) { 1246 L = I->getDebugLoc()->getLine(); 1247 } else if (const auto *GV = unwrap<GlobalVariable>(Val)) { 1248 SmallVector<DIGlobalVariableExpression *, 1> GVEs; 1249 GV->getDebugInfo(GVEs); 1250 if (GVEs.size()) 1251 if (const DIGlobalVariable *DGV = GVEs[0]->getVariable()) 1252 L = DGV->getLine(); 1253 } else if (const auto *F = unwrap<Function>(Val)) { 1254 if (const DISubprogram *DSP = F->getSubprogram()) 1255 L = DSP->getLine(); 1256 } else { 1257 assert(0 && "Expected Instruction, GlobalVariable or Function"); 1258 return -1; 1259 } 1260 return L; 1261 } 1262 1263 unsigned LLVMGetDebugLocColumn(LLVMValueRef Val) { 1264 unsigned C = 0; 1265 if (const auto *I = unwrap<Instruction>(Val)) 1266 if (const auto &L = I->getDebugLoc()) 1267 C = L->getColumn(); 1268 return C; 1269 } 1270 1271 /*--.. Operations on scalar constants ......................................--*/ 1272 1273 LLVMValueRef LLVMConstInt(LLVMTypeRef IntTy, unsigned long long N, 1274 LLVMBool SignExtend) { 1275 return wrap(ConstantInt::get(unwrap<IntegerType>(IntTy), N, SignExtend != 0)); 1276 } 1277 1278 LLVMValueRef LLVMConstIntOfArbitraryPrecision(LLVMTypeRef IntTy, 1279 unsigned NumWords, 1280 const uint64_t Words[]) { 1281 IntegerType *Ty = unwrap<IntegerType>(IntTy); 1282 return wrap(ConstantInt::get(Ty->getContext(), 1283 APInt(Ty->getBitWidth(), 1284 makeArrayRef(Words, NumWords)))); 1285 } 1286 1287 LLVMValueRef LLVMConstIntOfString(LLVMTypeRef IntTy, const char Str[], 1288 uint8_t Radix) { 1289 return wrap(ConstantInt::get(unwrap<IntegerType>(IntTy), StringRef(Str), 1290 Radix)); 1291 } 1292 1293 LLVMValueRef LLVMConstIntOfStringAndSize(LLVMTypeRef IntTy, const char Str[], 1294 unsigned SLen, uint8_t Radix) { 1295 return wrap(ConstantInt::get(unwrap<IntegerType>(IntTy), StringRef(Str, SLen), 1296 Radix)); 1297 } 1298 1299 LLVMValueRef LLVMConstReal(LLVMTypeRef RealTy, double N) { 1300 return wrap(ConstantFP::get(unwrap(RealTy), N)); 1301 } 1302 1303 LLVMValueRef LLVMConstRealOfString(LLVMTypeRef RealTy, const char *Text) { 1304 return wrap(ConstantFP::get(unwrap(RealTy), StringRef(Text))); 1305 } 1306 1307 LLVMValueRef LLVMConstRealOfStringAndSize(LLVMTypeRef RealTy, const char Str[], 1308 unsigned SLen) { 1309 return wrap(ConstantFP::get(unwrap(RealTy), StringRef(Str, SLen))); 1310 } 1311 1312 unsigned long long LLVMConstIntGetZExtValue(LLVMValueRef ConstantVal) { 1313 return unwrap<ConstantInt>(ConstantVal)->getZExtValue(); 1314 } 1315 1316 long long LLVMConstIntGetSExtValue(LLVMValueRef ConstantVal) { 1317 return unwrap<ConstantInt>(ConstantVal)->getSExtValue(); 1318 } 1319 1320 double LLVMConstRealGetDouble(LLVMValueRef ConstantVal, LLVMBool *LosesInfo) { 1321 ConstantFP *cFP = unwrap<ConstantFP>(ConstantVal) ; 1322 Type *Ty = cFP->getType(); 1323 1324 if (Ty->isFloatTy()) { 1325 *LosesInfo = false; 1326 return cFP->getValueAPF().convertToFloat(); 1327 } 1328 1329 if (Ty->isDoubleTy()) { 1330 *LosesInfo = false; 1331 return cFP->getValueAPF().convertToDouble(); 1332 } 1333 1334 bool APFLosesInfo; 1335 APFloat APF = cFP->getValueAPF(); 1336 APF.convert(APFloat::IEEEdouble(), APFloat::rmNearestTiesToEven, &APFLosesInfo); 1337 *LosesInfo = APFLosesInfo; 1338 return APF.convertToDouble(); 1339 } 1340 1341 /*--.. Operations on composite constants ...................................--*/ 1342 1343 LLVMValueRef LLVMConstStringInContext(LLVMContextRef C, const char *Str, 1344 unsigned Length, 1345 LLVMBool DontNullTerminate) { 1346 /* Inverted the sense of AddNull because ', 0)' is a 1347 better mnemonic for null termination than ', 1)'. */ 1348 return wrap(ConstantDataArray::getString(*unwrap(C), StringRef(Str, Length), 1349 DontNullTerminate == 0)); 1350 } 1351 1352 LLVMValueRef LLVMConstString(const char *Str, unsigned Length, 1353 LLVMBool DontNullTerminate) { 1354 return LLVMConstStringInContext(LLVMGetGlobalContext(), Str, Length, 1355 DontNullTerminate); 1356 } 1357 1358 LLVMValueRef LLVMGetElementAsConstant(LLVMValueRef C, unsigned idx) { 1359 return wrap(unwrap<ConstantDataSequential>(C)->getElementAsConstant(idx)); 1360 } 1361 1362 LLVMBool LLVMIsConstantString(LLVMValueRef C) { 1363 return unwrap<ConstantDataSequential>(C)->isString(); 1364 } 1365 1366 const char *LLVMGetAsString(LLVMValueRef C, size_t *Length) { 1367 StringRef Str = unwrap<ConstantDataSequential>(C)->getAsString(); 1368 *Length = Str.size(); 1369 return Str.data(); 1370 } 1371 1372 LLVMValueRef LLVMConstArray(LLVMTypeRef ElementTy, 1373 LLVMValueRef *ConstantVals, unsigned Length) { 1374 ArrayRef<Constant*> V(unwrap<Constant>(ConstantVals, Length), Length); 1375 return wrap(ConstantArray::get(ArrayType::get(unwrap(ElementTy), Length), V)); 1376 } 1377 1378 LLVMValueRef LLVMConstStructInContext(LLVMContextRef C, 1379 LLVMValueRef *ConstantVals, 1380 unsigned Count, LLVMBool Packed) { 1381 Constant **Elements = unwrap<Constant>(ConstantVals, Count); 1382 return wrap(ConstantStruct::getAnon(*unwrap(C), makeArrayRef(Elements, Count), 1383 Packed != 0)); 1384 } 1385 1386 LLVMValueRef LLVMConstStruct(LLVMValueRef *ConstantVals, unsigned Count, 1387 LLVMBool Packed) { 1388 return LLVMConstStructInContext(LLVMGetGlobalContext(), ConstantVals, Count, 1389 Packed); 1390 } 1391 1392 LLVMValueRef LLVMConstNamedStruct(LLVMTypeRef StructTy, 1393 LLVMValueRef *ConstantVals, 1394 unsigned Count) { 1395 Constant **Elements = unwrap<Constant>(ConstantVals, Count); 1396 StructType *Ty = cast<StructType>(unwrap(StructTy)); 1397 1398 return wrap(ConstantStruct::get(Ty, makeArrayRef(Elements, Count))); 1399 } 1400 1401 LLVMValueRef LLVMConstVector(LLVMValueRef *ScalarConstantVals, unsigned Size) { 1402 return wrap(ConstantVector::get(makeArrayRef( 1403 unwrap<Constant>(ScalarConstantVals, Size), Size))); 1404 } 1405 1406 /*-- Opcode mapping */ 1407 1408 static LLVMOpcode map_to_llvmopcode(int opcode) 1409 { 1410 switch (opcode) { 1411 default: llvm_unreachable("Unhandled Opcode."); 1412 #define HANDLE_INST(num, opc, clas) case num: return LLVM##opc; 1413 #include "llvm/IR/Instruction.def" 1414 #undef HANDLE_INST 1415 } 1416 } 1417 1418 static int map_from_llvmopcode(LLVMOpcode code) 1419 { 1420 switch (code) { 1421 #define HANDLE_INST(num, opc, clas) case LLVM##opc: return num; 1422 #include "llvm/IR/Instruction.def" 1423 #undef HANDLE_INST 1424 } 1425 llvm_unreachable("Unhandled Opcode."); 1426 } 1427 1428 /*--.. Constant expressions ................................................--*/ 1429 1430 LLVMOpcode LLVMGetConstOpcode(LLVMValueRef ConstantVal) { 1431 return map_to_llvmopcode(unwrap<ConstantExpr>(ConstantVal)->getOpcode()); 1432 } 1433 1434 LLVMValueRef LLVMAlignOf(LLVMTypeRef Ty) { 1435 return wrap(ConstantExpr::getAlignOf(unwrap(Ty))); 1436 } 1437 1438 LLVMValueRef LLVMSizeOf(LLVMTypeRef Ty) { 1439 return wrap(ConstantExpr::getSizeOf(unwrap(Ty))); 1440 } 1441 1442 LLVMValueRef LLVMConstNeg(LLVMValueRef ConstantVal) { 1443 return wrap(ConstantExpr::getNeg(unwrap<Constant>(ConstantVal))); 1444 } 1445 1446 LLVMValueRef LLVMConstNSWNeg(LLVMValueRef ConstantVal) { 1447 return wrap(ConstantExpr::getNSWNeg(unwrap<Constant>(ConstantVal))); 1448 } 1449 1450 LLVMValueRef LLVMConstNUWNeg(LLVMValueRef ConstantVal) { 1451 return wrap(ConstantExpr::getNUWNeg(unwrap<Constant>(ConstantVal))); 1452 } 1453 1454 1455 LLVMValueRef LLVMConstFNeg(LLVMValueRef ConstantVal) { 1456 return wrap(ConstantExpr::getFNeg(unwrap<Constant>(ConstantVal))); 1457 } 1458 1459 LLVMValueRef LLVMConstNot(LLVMValueRef ConstantVal) { 1460 return wrap(ConstantExpr::getNot(unwrap<Constant>(ConstantVal))); 1461 } 1462 1463 LLVMValueRef LLVMConstAdd(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1464 return wrap(ConstantExpr::getAdd(unwrap<Constant>(LHSConstant), 1465 unwrap<Constant>(RHSConstant))); 1466 } 1467 1468 LLVMValueRef LLVMConstNSWAdd(LLVMValueRef LHSConstant, 1469 LLVMValueRef RHSConstant) { 1470 return wrap(ConstantExpr::getNSWAdd(unwrap<Constant>(LHSConstant), 1471 unwrap<Constant>(RHSConstant))); 1472 } 1473 1474 LLVMValueRef LLVMConstNUWAdd(LLVMValueRef LHSConstant, 1475 LLVMValueRef RHSConstant) { 1476 return wrap(ConstantExpr::getNUWAdd(unwrap<Constant>(LHSConstant), 1477 unwrap<Constant>(RHSConstant))); 1478 } 1479 1480 LLVMValueRef LLVMConstFAdd(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1481 return wrap(ConstantExpr::getFAdd(unwrap<Constant>(LHSConstant), 1482 unwrap<Constant>(RHSConstant))); 1483 } 1484 1485 LLVMValueRef LLVMConstSub(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1486 return wrap(ConstantExpr::getSub(unwrap<Constant>(LHSConstant), 1487 unwrap<Constant>(RHSConstant))); 1488 } 1489 1490 LLVMValueRef LLVMConstNSWSub(LLVMValueRef LHSConstant, 1491 LLVMValueRef RHSConstant) { 1492 return wrap(ConstantExpr::getNSWSub(unwrap<Constant>(LHSConstant), 1493 unwrap<Constant>(RHSConstant))); 1494 } 1495 1496 LLVMValueRef LLVMConstNUWSub(LLVMValueRef LHSConstant, 1497 LLVMValueRef RHSConstant) { 1498 return wrap(ConstantExpr::getNUWSub(unwrap<Constant>(LHSConstant), 1499 unwrap<Constant>(RHSConstant))); 1500 } 1501 1502 LLVMValueRef LLVMConstFSub(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1503 return wrap(ConstantExpr::getFSub(unwrap<Constant>(LHSConstant), 1504 unwrap<Constant>(RHSConstant))); 1505 } 1506 1507 LLVMValueRef LLVMConstMul(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1508 return wrap(ConstantExpr::getMul(unwrap<Constant>(LHSConstant), 1509 unwrap<Constant>(RHSConstant))); 1510 } 1511 1512 LLVMValueRef LLVMConstNSWMul(LLVMValueRef LHSConstant, 1513 LLVMValueRef RHSConstant) { 1514 return wrap(ConstantExpr::getNSWMul(unwrap<Constant>(LHSConstant), 1515 unwrap<Constant>(RHSConstant))); 1516 } 1517 1518 LLVMValueRef LLVMConstNUWMul(LLVMValueRef LHSConstant, 1519 LLVMValueRef RHSConstant) { 1520 return wrap(ConstantExpr::getNUWMul(unwrap<Constant>(LHSConstant), 1521 unwrap<Constant>(RHSConstant))); 1522 } 1523 1524 LLVMValueRef LLVMConstFMul(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1525 return wrap(ConstantExpr::getFMul(unwrap<Constant>(LHSConstant), 1526 unwrap<Constant>(RHSConstant))); 1527 } 1528 1529 LLVMValueRef LLVMConstUDiv(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1530 return wrap(ConstantExpr::getUDiv(unwrap<Constant>(LHSConstant), 1531 unwrap<Constant>(RHSConstant))); 1532 } 1533 1534 LLVMValueRef LLVMConstExactUDiv(LLVMValueRef LHSConstant, 1535 LLVMValueRef RHSConstant) { 1536 return wrap(ConstantExpr::getExactUDiv(unwrap<Constant>(LHSConstant), 1537 unwrap<Constant>(RHSConstant))); 1538 } 1539 1540 LLVMValueRef LLVMConstSDiv(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1541 return wrap(ConstantExpr::getSDiv(unwrap<Constant>(LHSConstant), 1542 unwrap<Constant>(RHSConstant))); 1543 } 1544 1545 LLVMValueRef LLVMConstExactSDiv(LLVMValueRef LHSConstant, 1546 LLVMValueRef RHSConstant) { 1547 return wrap(ConstantExpr::getExactSDiv(unwrap<Constant>(LHSConstant), 1548 unwrap<Constant>(RHSConstant))); 1549 } 1550 1551 LLVMValueRef LLVMConstFDiv(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1552 return wrap(ConstantExpr::getFDiv(unwrap<Constant>(LHSConstant), 1553 unwrap<Constant>(RHSConstant))); 1554 } 1555 1556 LLVMValueRef LLVMConstURem(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1557 return wrap(ConstantExpr::getURem(unwrap<Constant>(LHSConstant), 1558 unwrap<Constant>(RHSConstant))); 1559 } 1560 1561 LLVMValueRef LLVMConstSRem(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1562 return wrap(ConstantExpr::getSRem(unwrap<Constant>(LHSConstant), 1563 unwrap<Constant>(RHSConstant))); 1564 } 1565 1566 LLVMValueRef LLVMConstFRem(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1567 return wrap(ConstantExpr::getFRem(unwrap<Constant>(LHSConstant), 1568 unwrap<Constant>(RHSConstant))); 1569 } 1570 1571 LLVMValueRef LLVMConstAnd(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1572 return wrap(ConstantExpr::getAnd(unwrap<Constant>(LHSConstant), 1573 unwrap<Constant>(RHSConstant))); 1574 } 1575 1576 LLVMValueRef LLVMConstOr(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1577 return wrap(ConstantExpr::getOr(unwrap<Constant>(LHSConstant), 1578 unwrap<Constant>(RHSConstant))); 1579 } 1580 1581 LLVMValueRef LLVMConstXor(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1582 return wrap(ConstantExpr::getXor(unwrap<Constant>(LHSConstant), 1583 unwrap<Constant>(RHSConstant))); 1584 } 1585 1586 LLVMValueRef LLVMConstICmp(LLVMIntPredicate Predicate, 1587 LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1588 return wrap(ConstantExpr::getICmp(Predicate, 1589 unwrap<Constant>(LHSConstant), 1590 unwrap<Constant>(RHSConstant))); 1591 } 1592 1593 LLVMValueRef LLVMConstFCmp(LLVMRealPredicate Predicate, 1594 LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1595 return wrap(ConstantExpr::getFCmp(Predicate, 1596 unwrap<Constant>(LHSConstant), 1597 unwrap<Constant>(RHSConstant))); 1598 } 1599 1600 LLVMValueRef LLVMConstShl(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1601 return wrap(ConstantExpr::getShl(unwrap<Constant>(LHSConstant), 1602 unwrap<Constant>(RHSConstant))); 1603 } 1604 1605 LLVMValueRef LLVMConstLShr(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1606 return wrap(ConstantExpr::getLShr(unwrap<Constant>(LHSConstant), 1607 unwrap<Constant>(RHSConstant))); 1608 } 1609 1610 LLVMValueRef LLVMConstAShr(LLVMValueRef LHSConstant, LLVMValueRef RHSConstant) { 1611 return wrap(ConstantExpr::getAShr(unwrap<Constant>(LHSConstant), 1612 unwrap<Constant>(RHSConstant))); 1613 } 1614 1615 LLVMValueRef LLVMConstGEP(LLVMValueRef ConstantVal, 1616 LLVMValueRef *ConstantIndices, unsigned NumIndices) { 1617 ArrayRef<Constant *> IdxList(unwrap<Constant>(ConstantIndices, NumIndices), 1618 NumIndices); 1619 Constant *Val = unwrap<Constant>(ConstantVal); 1620 Type *Ty = 1621 cast<PointerType>(Val->getType()->getScalarType())->getElementType(); 1622 return wrap(ConstantExpr::getGetElementPtr(Ty, Val, IdxList)); 1623 } 1624 1625 LLVMValueRef LLVMConstInBoundsGEP(LLVMValueRef ConstantVal, 1626 LLVMValueRef *ConstantIndices, 1627 unsigned NumIndices) { 1628 ArrayRef<Constant *> IdxList(unwrap<Constant>(ConstantIndices, NumIndices), 1629 NumIndices); 1630 Constant *Val = unwrap<Constant>(ConstantVal); 1631 Type *Ty = 1632 cast<PointerType>(Val->getType()->getScalarType())->getElementType(); 1633 return wrap(ConstantExpr::getInBoundsGetElementPtr(Ty, Val, IdxList)); 1634 } 1635 1636 LLVMValueRef LLVMConstTrunc(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1637 return wrap(ConstantExpr::getTrunc(unwrap<Constant>(ConstantVal), 1638 unwrap(ToType))); 1639 } 1640 1641 LLVMValueRef LLVMConstSExt(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1642 return wrap(ConstantExpr::getSExt(unwrap<Constant>(ConstantVal), 1643 unwrap(ToType))); 1644 } 1645 1646 LLVMValueRef LLVMConstZExt(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1647 return wrap(ConstantExpr::getZExt(unwrap<Constant>(ConstantVal), 1648 unwrap(ToType))); 1649 } 1650 1651 LLVMValueRef LLVMConstFPTrunc(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1652 return wrap(ConstantExpr::getFPTrunc(unwrap<Constant>(ConstantVal), 1653 unwrap(ToType))); 1654 } 1655 1656 LLVMValueRef LLVMConstFPExt(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1657 return wrap(ConstantExpr::getFPExtend(unwrap<Constant>(ConstantVal), 1658 unwrap(ToType))); 1659 } 1660 1661 LLVMValueRef LLVMConstUIToFP(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1662 return wrap(ConstantExpr::getUIToFP(unwrap<Constant>(ConstantVal), 1663 unwrap(ToType))); 1664 } 1665 1666 LLVMValueRef LLVMConstSIToFP(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1667 return wrap(ConstantExpr::getSIToFP(unwrap<Constant>(ConstantVal), 1668 unwrap(ToType))); 1669 } 1670 1671 LLVMValueRef LLVMConstFPToUI(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1672 return wrap(ConstantExpr::getFPToUI(unwrap<Constant>(ConstantVal), 1673 unwrap(ToType))); 1674 } 1675 1676 LLVMValueRef LLVMConstFPToSI(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1677 return wrap(ConstantExpr::getFPToSI(unwrap<Constant>(ConstantVal), 1678 unwrap(ToType))); 1679 } 1680 1681 LLVMValueRef LLVMConstPtrToInt(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1682 return wrap(ConstantExpr::getPtrToInt(unwrap<Constant>(ConstantVal), 1683 unwrap(ToType))); 1684 } 1685 1686 LLVMValueRef LLVMConstIntToPtr(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1687 return wrap(ConstantExpr::getIntToPtr(unwrap<Constant>(ConstantVal), 1688 unwrap(ToType))); 1689 } 1690 1691 LLVMValueRef LLVMConstBitCast(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1692 return wrap(ConstantExpr::getBitCast(unwrap<Constant>(ConstantVal), 1693 unwrap(ToType))); 1694 } 1695 1696 LLVMValueRef LLVMConstAddrSpaceCast(LLVMValueRef ConstantVal, 1697 LLVMTypeRef ToType) { 1698 return wrap(ConstantExpr::getAddrSpaceCast(unwrap<Constant>(ConstantVal), 1699 unwrap(ToType))); 1700 } 1701 1702 LLVMValueRef LLVMConstZExtOrBitCast(LLVMValueRef ConstantVal, 1703 LLVMTypeRef ToType) { 1704 return wrap(ConstantExpr::getZExtOrBitCast(unwrap<Constant>(ConstantVal), 1705 unwrap(ToType))); 1706 } 1707 1708 LLVMValueRef LLVMConstSExtOrBitCast(LLVMValueRef ConstantVal, 1709 LLVMTypeRef ToType) { 1710 return wrap(ConstantExpr::getSExtOrBitCast(unwrap<Constant>(ConstantVal), 1711 unwrap(ToType))); 1712 } 1713 1714 LLVMValueRef LLVMConstTruncOrBitCast(LLVMValueRef ConstantVal, 1715 LLVMTypeRef ToType) { 1716 return wrap(ConstantExpr::getTruncOrBitCast(unwrap<Constant>(ConstantVal), 1717 unwrap(ToType))); 1718 } 1719 1720 LLVMValueRef LLVMConstPointerCast(LLVMValueRef ConstantVal, 1721 LLVMTypeRef ToType) { 1722 return wrap(ConstantExpr::getPointerCast(unwrap<Constant>(ConstantVal), 1723 unwrap(ToType))); 1724 } 1725 1726 LLVMValueRef LLVMConstIntCast(LLVMValueRef ConstantVal, LLVMTypeRef ToType, 1727 LLVMBool isSigned) { 1728 return wrap(ConstantExpr::getIntegerCast(unwrap<Constant>(ConstantVal), 1729 unwrap(ToType), isSigned)); 1730 } 1731 1732 LLVMValueRef LLVMConstFPCast(LLVMValueRef ConstantVal, LLVMTypeRef ToType) { 1733 return wrap(ConstantExpr::getFPCast(unwrap<Constant>(ConstantVal), 1734 unwrap(ToType))); 1735 } 1736 1737 LLVMValueRef LLVMConstSelect(LLVMValueRef ConstantCondition, 1738 LLVMValueRef ConstantIfTrue, 1739 LLVMValueRef ConstantIfFalse) { 1740 return wrap(ConstantExpr::getSelect(unwrap<Constant>(ConstantCondition), 1741 unwrap<Constant>(ConstantIfTrue), 1742 unwrap<Constant>(ConstantIfFalse))); 1743 } 1744 1745 LLVMValueRef LLVMConstExtractElement(LLVMValueRef VectorConstant, 1746 LLVMValueRef IndexConstant) { 1747 return wrap(ConstantExpr::getExtractElement(unwrap<Constant>(VectorConstant), 1748 unwrap<Constant>(IndexConstant))); 1749 } 1750 1751 LLVMValueRef LLVMConstInsertElement(LLVMValueRef VectorConstant, 1752 LLVMValueRef ElementValueConstant, 1753 LLVMValueRef IndexConstant) { 1754 return wrap(ConstantExpr::getInsertElement(unwrap<Constant>(VectorConstant), 1755 unwrap<Constant>(ElementValueConstant), 1756 unwrap<Constant>(IndexConstant))); 1757 } 1758 1759 LLVMValueRef LLVMConstShuffleVector(LLVMValueRef VectorAConstant, 1760 LLVMValueRef VectorBConstant, 1761 LLVMValueRef MaskConstant) { 1762 return wrap(ConstantExpr::getShuffleVector(unwrap<Constant>(VectorAConstant), 1763 unwrap<Constant>(VectorBConstant), 1764 unwrap<Constant>(MaskConstant))); 1765 } 1766 1767 LLVMValueRef LLVMConstExtractValue(LLVMValueRef AggConstant, unsigned *IdxList, 1768 unsigned NumIdx) { 1769 return wrap(ConstantExpr::getExtractValue(unwrap<Constant>(AggConstant), 1770 makeArrayRef(IdxList, NumIdx))); 1771 } 1772 1773 LLVMValueRef LLVMConstInsertValue(LLVMValueRef AggConstant, 1774 LLVMValueRef ElementValueConstant, 1775 unsigned *IdxList, unsigned NumIdx) { 1776 return wrap(ConstantExpr::getInsertValue(unwrap<Constant>(AggConstant), 1777 unwrap<Constant>(ElementValueConstant), 1778 makeArrayRef(IdxList, NumIdx))); 1779 } 1780 1781 LLVMValueRef LLVMConstInlineAsm(LLVMTypeRef Ty, const char *AsmString, 1782 const char *Constraints, 1783 LLVMBool HasSideEffects, 1784 LLVMBool IsAlignStack) { 1785 return wrap(InlineAsm::get(dyn_cast<FunctionType>(unwrap(Ty)), AsmString, 1786 Constraints, HasSideEffects, IsAlignStack)); 1787 } 1788 1789 LLVMValueRef LLVMBlockAddress(LLVMValueRef F, LLVMBasicBlockRef BB) { 1790 return wrap(BlockAddress::get(unwrap<Function>(F), unwrap(BB))); 1791 } 1792 1793 /*--.. Operations on global variables, functions, and aliases (globals) ....--*/ 1794 1795 LLVMModuleRef LLVMGetGlobalParent(LLVMValueRef Global) { 1796 return wrap(unwrap<GlobalValue>(Global)->getParent()); 1797 } 1798 1799 LLVMBool LLVMIsDeclaration(LLVMValueRef Global) { 1800 return unwrap<GlobalValue>(Global)->isDeclaration(); 1801 } 1802 1803 LLVMLinkage LLVMGetLinkage(LLVMValueRef Global) { 1804 switch (unwrap<GlobalValue>(Global)->getLinkage()) { 1805 case GlobalValue::ExternalLinkage: 1806 return LLVMExternalLinkage; 1807 case GlobalValue::AvailableExternallyLinkage: 1808 return LLVMAvailableExternallyLinkage; 1809 case GlobalValue::LinkOnceAnyLinkage: 1810 return LLVMLinkOnceAnyLinkage; 1811 case GlobalValue::LinkOnceODRLinkage: 1812 return LLVMLinkOnceODRLinkage; 1813 case GlobalValue::WeakAnyLinkage: 1814 return LLVMWeakAnyLinkage; 1815 case GlobalValue::WeakODRLinkage: 1816 return LLVMWeakODRLinkage; 1817 case GlobalValue::AppendingLinkage: 1818 return LLVMAppendingLinkage; 1819 case GlobalValue::InternalLinkage: 1820 return LLVMInternalLinkage; 1821 case GlobalValue::PrivateLinkage: 1822 return LLVMPrivateLinkage; 1823 case GlobalValue::ExternalWeakLinkage: 1824 return LLVMExternalWeakLinkage; 1825 case GlobalValue::CommonLinkage: 1826 return LLVMCommonLinkage; 1827 } 1828 1829 llvm_unreachable("Invalid GlobalValue linkage!"); 1830 } 1831 1832 void LLVMSetLinkage(LLVMValueRef Global, LLVMLinkage Linkage) { 1833 GlobalValue *GV = unwrap<GlobalValue>(Global); 1834 1835 switch (Linkage) { 1836 case LLVMExternalLinkage: 1837 GV->setLinkage(GlobalValue::ExternalLinkage); 1838 break; 1839 case LLVMAvailableExternallyLinkage: 1840 GV->setLinkage(GlobalValue::AvailableExternallyLinkage); 1841 break; 1842 case LLVMLinkOnceAnyLinkage: 1843 GV->setLinkage(GlobalValue::LinkOnceAnyLinkage); 1844 break; 1845 case LLVMLinkOnceODRLinkage: 1846 GV->setLinkage(GlobalValue::LinkOnceODRLinkage); 1847 break; 1848 case LLVMLinkOnceODRAutoHideLinkage: 1849 LLVM_DEBUG( 1850 errs() << "LLVMSetLinkage(): LLVMLinkOnceODRAutoHideLinkage is no " 1851 "longer supported."); 1852 break; 1853 case LLVMWeakAnyLinkage: 1854 GV->setLinkage(GlobalValue::WeakAnyLinkage); 1855 break; 1856 case LLVMWeakODRLinkage: 1857 GV->setLinkage(GlobalValue::WeakODRLinkage); 1858 break; 1859 case LLVMAppendingLinkage: 1860 GV->setLinkage(GlobalValue::AppendingLinkage); 1861 break; 1862 case LLVMInternalLinkage: 1863 GV->setLinkage(GlobalValue::InternalLinkage); 1864 break; 1865 case LLVMPrivateLinkage: 1866 GV->setLinkage(GlobalValue::PrivateLinkage); 1867 break; 1868 case LLVMLinkerPrivateLinkage: 1869 GV->setLinkage(GlobalValue::PrivateLinkage); 1870 break; 1871 case LLVMLinkerPrivateWeakLinkage: 1872 GV->setLinkage(GlobalValue::PrivateLinkage); 1873 break; 1874 case LLVMDLLImportLinkage: 1875 LLVM_DEBUG( 1876 errs() 1877 << "LLVMSetLinkage(): LLVMDLLImportLinkage is no longer supported."); 1878 break; 1879 case LLVMDLLExportLinkage: 1880 LLVM_DEBUG( 1881 errs() 1882 << "LLVMSetLinkage(): LLVMDLLExportLinkage is no longer supported."); 1883 break; 1884 case LLVMExternalWeakLinkage: 1885 GV->setLinkage(GlobalValue::ExternalWeakLinkage); 1886 break; 1887 case LLVMGhostLinkage: 1888 LLVM_DEBUG( 1889 errs() << "LLVMSetLinkage(): LLVMGhostLinkage is no longer supported."); 1890 break; 1891 case LLVMCommonLinkage: 1892 GV->setLinkage(GlobalValue::CommonLinkage); 1893 break; 1894 } 1895 } 1896 1897 const char *LLVMGetSection(LLVMValueRef Global) { 1898 // Using .data() is safe because of how GlobalObject::setSection is 1899 // implemented. 1900 return unwrap<GlobalValue>(Global)->getSection().data(); 1901 } 1902 1903 void LLVMSetSection(LLVMValueRef Global, const char *Section) { 1904 unwrap<GlobalObject>(Global)->setSection(Section); 1905 } 1906 1907 LLVMVisibility LLVMGetVisibility(LLVMValueRef Global) { 1908 return static_cast<LLVMVisibility>( 1909 unwrap<GlobalValue>(Global)->getVisibility()); 1910 } 1911 1912 void LLVMSetVisibility(LLVMValueRef Global, LLVMVisibility Viz) { 1913 unwrap<GlobalValue>(Global) 1914 ->setVisibility(static_cast<GlobalValue::VisibilityTypes>(Viz)); 1915 } 1916 1917 LLVMDLLStorageClass LLVMGetDLLStorageClass(LLVMValueRef Global) { 1918 return static_cast<LLVMDLLStorageClass>( 1919 unwrap<GlobalValue>(Global)->getDLLStorageClass()); 1920 } 1921 1922 void LLVMSetDLLStorageClass(LLVMValueRef Global, LLVMDLLStorageClass Class) { 1923 unwrap<GlobalValue>(Global)->setDLLStorageClass( 1924 static_cast<GlobalValue::DLLStorageClassTypes>(Class)); 1925 } 1926 1927 LLVMUnnamedAddr LLVMGetUnnamedAddress(LLVMValueRef Global) { 1928 switch (unwrap<GlobalValue>(Global)->getUnnamedAddr()) { 1929 case GlobalVariable::UnnamedAddr::None: 1930 return LLVMNoUnnamedAddr; 1931 case GlobalVariable::UnnamedAddr::Local: 1932 return LLVMLocalUnnamedAddr; 1933 case GlobalVariable::UnnamedAddr::Global: 1934 return LLVMGlobalUnnamedAddr; 1935 } 1936 llvm_unreachable("Unknown UnnamedAddr kind!"); 1937 } 1938 1939 void LLVMSetUnnamedAddress(LLVMValueRef Global, LLVMUnnamedAddr UnnamedAddr) { 1940 GlobalValue *GV = unwrap<GlobalValue>(Global); 1941 1942 switch (UnnamedAddr) { 1943 case LLVMNoUnnamedAddr: 1944 return GV->setUnnamedAddr(GlobalVariable::UnnamedAddr::None); 1945 case LLVMLocalUnnamedAddr: 1946 return GV->setUnnamedAddr(GlobalVariable::UnnamedAddr::Local); 1947 case LLVMGlobalUnnamedAddr: 1948 return GV->setUnnamedAddr(GlobalVariable::UnnamedAddr::Global); 1949 } 1950 } 1951 1952 LLVMBool LLVMHasUnnamedAddr(LLVMValueRef Global) { 1953 return unwrap<GlobalValue>(Global)->hasGlobalUnnamedAddr(); 1954 } 1955 1956 void LLVMSetUnnamedAddr(LLVMValueRef Global, LLVMBool HasUnnamedAddr) { 1957 unwrap<GlobalValue>(Global)->setUnnamedAddr( 1958 HasUnnamedAddr ? GlobalValue::UnnamedAddr::Global 1959 : GlobalValue::UnnamedAddr::None); 1960 } 1961 1962 LLVMTypeRef LLVMGlobalGetValueType(LLVMValueRef Global) { 1963 return wrap(unwrap<GlobalValue>(Global)->getValueType()); 1964 } 1965 1966 /*--.. Operations on global variables, load and store instructions .........--*/ 1967 1968 unsigned LLVMGetAlignment(LLVMValueRef V) { 1969 Value *P = unwrap<Value>(V); 1970 if (GlobalValue *GV = dyn_cast<GlobalValue>(P)) 1971 return GV->getAlignment(); 1972 if (AllocaInst *AI = dyn_cast<AllocaInst>(P)) 1973 return AI->getAlignment(); 1974 if (LoadInst *LI = dyn_cast<LoadInst>(P)) 1975 return LI->getAlignment(); 1976 if (StoreInst *SI = dyn_cast<StoreInst>(P)) 1977 return SI->getAlignment(); 1978 1979 llvm_unreachable( 1980 "only GlobalValue, AllocaInst, LoadInst and StoreInst have alignment"); 1981 } 1982 1983 void LLVMSetAlignment(LLVMValueRef V, unsigned Bytes) { 1984 Value *P = unwrap<Value>(V); 1985 if (GlobalObject *GV = dyn_cast<GlobalObject>(P)) 1986 GV->setAlignment(Bytes); 1987 else if (AllocaInst *AI = dyn_cast<AllocaInst>(P)) 1988 AI->setAlignment(Bytes); 1989 else if (LoadInst *LI = dyn_cast<LoadInst>(P)) 1990 LI->setAlignment(Bytes); 1991 else if (StoreInst *SI = dyn_cast<StoreInst>(P)) 1992 SI->setAlignment(Bytes); 1993 else 1994 llvm_unreachable( 1995 "only GlobalValue, AllocaInst, LoadInst and StoreInst have alignment"); 1996 } 1997 1998 LLVMValueMetadataEntry *LLVMGlobalCopyAllMetadata(LLVMValueRef Value, 1999 size_t *NumEntries) { 2000 return llvm_getMetadata(NumEntries, [&Value](MetadataEntries &Entries) { 2001 if (Instruction *Instr = dyn_cast<Instruction>(unwrap(Value))) { 2002 Instr->getAllMetadata(Entries); 2003 } else { 2004 unwrap<GlobalObject>(Value)->getAllMetadata(Entries); 2005 } 2006 }); 2007 } 2008 2009 unsigned LLVMValueMetadataEntriesGetKind(LLVMValueMetadataEntry *Entries, 2010 unsigned Index) { 2011 LLVMOpaqueValueMetadataEntry MVE = 2012 static_cast<LLVMOpaqueValueMetadataEntry>(Entries[Index]); 2013 return MVE.Kind; 2014 } 2015 2016 LLVMMetadataRef 2017 LLVMValueMetadataEntriesGetMetadata(LLVMValueMetadataEntry *Entries, 2018 unsigned Index) { 2019 LLVMOpaqueValueMetadataEntry MVE = 2020 static_cast<LLVMOpaqueValueMetadataEntry>(Entries[Index]); 2021 return MVE.Metadata; 2022 } 2023 2024 void LLVMDisposeValueMetadataEntries(LLVMValueMetadataEntry *Entries) { 2025 free(Entries); 2026 } 2027 2028 void LLVMGlobalSetMetadata(LLVMValueRef Global, unsigned Kind, 2029 LLVMMetadataRef MD) { 2030 unwrap<GlobalObject>(Global)->setMetadata(Kind, unwrap<MDNode>(MD)); 2031 } 2032 2033 void LLVMGlobalEraseMetadata(LLVMValueRef Global, unsigned Kind) { 2034 unwrap<GlobalObject>(Global)->eraseMetadata(Kind); 2035 } 2036 2037 void LLVMGlobalClearMetadata(LLVMValueRef Global) { 2038 unwrap<GlobalObject>(Global)->clearMetadata(); 2039 } 2040 2041 /*--.. Operations on global variables ......................................--*/ 2042 2043 LLVMValueRef LLVMAddGlobal(LLVMModuleRef M, LLVMTypeRef Ty, const char *Name) { 2044 return wrap(new GlobalVariable(*unwrap(M), unwrap(Ty), false, 2045 GlobalValue::ExternalLinkage, nullptr, Name)); 2046 } 2047 2048 LLVMValueRef LLVMAddGlobalInAddressSpace(LLVMModuleRef M, LLVMTypeRef Ty, 2049 const char *Name, 2050 unsigned AddressSpace) { 2051 return wrap(new GlobalVariable(*unwrap(M), unwrap(Ty), false, 2052 GlobalValue::ExternalLinkage, nullptr, Name, 2053 nullptr, GlobalVariable::NotThreadLocal, 2054 AddressSpace)); 2055 } 2056 2057 LLVMValueRef LLVMGetNamedGlobal(LLVMModuleRef M, const char *Name) { 2058 return wrap(unwrap(M)->getNamedGlobal(Name)); 2059 } 2060 2061 LLVMValueRef LLVMGetFirstGlobal(LLVMModuleRef M) { 2062 Module *Mod = unwrap(M); 2063 Module::global_iterator I = Mod->global_begin(); 2064 if (I == Mod->global_end()) 2065 return nullptr; 2066 return wrap(&*I); 2067 } 2068 2069 LLVMValueRef LLVMGetLastGlobal(LLVMModuleRef M) { 2070 Module *Mod = unwrap(M); 2071 Module::global_iterator I = Mod->global_end(); 2072 if (I == Mod->global_begin()) 2073 return nullptr; 2074 return wrap(&*--I); 2075 } 2076 2077 LLVMValueRef LLVMGetNextGlobal(LLVMValueRef GlobalVar) { 2078 GlobalVariable *GV = unwrap<GlobalVariable>(GlobalVar); 2079 Module::global_iterator I(GV); 2080 if (++I == GV->getParent()->global_end()) 2081 return nullptr; 2082 return wrap(&*I); 2083 } 2084 2085 LLVMValueRef LLVMGetPreviousGlobal(LLVMValueRef GlobalVar) { 2086 GlobalVariable *GV = unwrap<GlobalVariable>(GlobalVar); 2087 Module::global_iterator I(GV); 2088 if (I == GV->getParent()->global_begin()) 2089 return nullptr; 2090 return wrap(&*--I); 2091 } 2092 2093 void LLVMDeleteGlobal(LLVMValueRef GlobalVar) { 2094 unwrap<GlobalVariable>(GlobalVar)->eraseFromParent(); 2095 } 2096 2097 LLVMValueRef LLVMGetInitializer(LLVMValueRef GlobalVar) { 2098 GlobalVariable* GV = unwrap<GlobalVariable>(GlobalVar); 2099 if ( !GV->hasInitializer() ) 2100 return nullptr; 2101 return wrap(GV->getInitializer()); 2102 } 2103 2104 void LLVMSetInitializer(LLVMValueRef GlobalVar, LLVMValueRef ConstantVal) { 2105 unwrap<GlobalVariable>(GlobalVar) 2106 ->setInitializer(unwrap<Constant>(ConstantVal)); 2107 } 2108 2109 LLVMBool LLVMIsThreadLocal(LLVMValueRef GlobalVar) { 2110 return unwrap<GlobalVariable>(GlobalVar)->isThreadLocal(); 2111 } 2112 2113 void LLVMSetThreadLocal(LLVMValueRef GlobalVar, LLVMBool IsThreadLocal) { 2114 unwrap<GlobalVariable>(GlobalVar)->setThreadLocal(IsThreadLocal != 0); 2115 } 2116 2117 LLVMBool LLVMIsGlobalConstant(LLVMValueRef GlobalVar) { 2118 return unwrap<GlobalVariable>(GlobalVar)->isConstant(); 2119 } 2120 2121 void LLVMSetGlobalConstant(LLVMValueRef GlobalVar, LLVMBool IsConstant) { 2122 unwrap<GlobalVariable>(GlobalVar)->setConstant(IsConstant != 0); 2123 } 2124 2125 LLVMThreadLocalMode LLVMGetThreadLocalMode(LLVMValueRef GlobalVar) { 2126 switch (unwrap<GlobalVariable>(GlobalVar)->getThreadLocalMode()) { 2127 case GlobalVariable::NotThreadLocal: 2128 return LLVMNotThreadLocal; 2129 case GlobalVariable::GeneralDynamicTLSModel: 2130 return LLVMGeneralDynamicTLSModel; 2131 case GlobalVariable::LocalDynamicTLSModel: 2132 return LLVMLocalDynamicTLSModel; 2133 case GlobalVariable::InitialExecTLSModel: 2134 return LLVMInitialExecTLSModel; 2135 case GlobalVariable::LocalExecTLSModel: 2136 return LLVMLocalExecTLSModel; 2137 } 2138 2139 llvm_unreachable("Invalid GlobalVariable thread local mode"); 2140 } 2141 2142 void LLVMSetThreadLocalMode(LLVMValueRef GlobalVar, LLVMThreadLocalMode Mode) { 2143 GlobalVariable *GV = unwrap<GlobalVariable>(GlobalVar); 2144 2145 switch (Mode) { 2146 case LLVMNotThreadLocal: 2147 GV->setThreadLocalMode(GlobalVariable::NotThreadLocal); 2148 break; 2149 case LLVMGeneralDynamicTLSModel: 2150 GV->setThreadLocalMode(GlobalVariable::GeneralDynamicTLSModel); 2151 break; 2152 case LLVMLocalDynamicTLSModel: 2153 GV->setThreadLocalMode(GlobalVariable::LocalDynamicTLSModel); 2154 break; 2155 case LLVMInitialExecTLSModel: 2156 GV->setThreadLocalMode(GlobalVariable::InitialExecTLSModel); 2157 break; 2158 case LLVMLocalExecTLSModel: 2159 GV->setThreadLocalMode(GlobalVariable::LocalExecTLSModel); 2160 break; 2161 } 2162 } 2163 2164 LLVMBool LLVMIsExternallyInitialized(LLVMValueRef GlobalVar) { 2165 return unwrap<GlobalVariable>(GlobalVar)->isExternallyInitialized(); 2166 } 2167 2168 void LLVMSetExternallyInitialized(LLVMValueRef GlobalVar, LLVMBool IsExtInit) { 2169 unwrap<GlobalVariable>(GlobalVar)->setExternallyInitialized(IsExtInit); 2170 } 2171 2172 /*--.. Operations on aliases ......................................--*/ 2173 2174 LLVMValueRef LLVMAddAlias(LLVMModuleRef M, LLVMTypeRef Ty, LLVMValueRef Aliasee, 2175 const char *Name) { 2176 auto *PTy = cast<PointerType>(unwrap(Ty)); 2177 return wrap(GlobalAlias::create(PTy->getElementType(), PTy->getAddressSpace(), 2178 GlobalValue::ExternalLinkage, Name, 2179 unwrap<Constant>(Aliasee), unwrap(M))); 2180 } 2181 2182 LLVMValueRef LLVMGetNamedGlobalAlias(LLVMModuleRef M, 2183 const char *Name, size_t NameLen) { 2184 return wrap(unwrap(M)->getNamedAlias(Name)); 2185 } 2186 2187 LLVMValueRef LLVMGetFirstGlobalAlias(LLVMModuleRef M) { 2188 Module *Mod = unwrap(M); 2189 Module::alias_iterator I = Mod->alias_begin(); 2190 if (I == Mod->alias_end()) 2191 return nullptr; 2192 return wrap(&*I); 2193 } 2194 2195 LLVMValueRef LLVMGetLastGlobalAlias(LLVMModuleRef M) { 2196 Module *Mod = unwrap(M); 2197 Module::alias_iterator I = Mod->alias_end(); 2198 if (I == Mod->alias_begin()) 2199 return nullptr; 2200 return wrap(&*--I); 2201 } 2202 2203 LLVMValueRef LLVMGetNextGlobalAlias(LLVMValueRef GA) { 2204 GlobalAlias *Alias = unwrap<GlobalAlias>(GA); 2205 Module::alias_iterator I(Alias); 2206 if (++I == Alias->getParent()->alias_end()) 2207 return nullptr; 2208 return wrap(&*I); 2209 } 2210 2211 LLVMValueRef LLVMGetPreviousGlobalAlias(LLVMValueRef GA) { 2212 GlobalAlias *Alias = unwrap<GlobalAlias>(GA); 2213 Module::alias_iterator I(Alias); 2214 if (I == Alias->getParent()->alias_begin()) 2215 return nullptr; 2216 return wrap(&*--I); 2217 } 2218 2219 LLVMValueRef LLVMAliasGetAliasee(LLVMValueRef Alias) { 2220 return wrap(unwrap<GlobalAlias>(Alias)->getAliasee()); 2221 } 2222 2223 void LLVMAliasSetAliasee(LLVMValueRef Alias, LLVMValueRef Aliasee) { 2224 unwrap<GlobalAlias>(Alias)->setAliasee(unwrap<Constant>(Aliasee)); 2225 } 2226 2227 /*--.. Operations on functions .............................................--*/ 2228 2229 LLVMValueRef LLVMAddFunction(LLVMModuleRef M, const char *Name, 2230 LLVMTypeRef FunctionTy) { 2231 return wrap(Function::Create(unwrap<FunctionType>(FunctionTy), 2232 GlobalValue::ExternalLinkage, Name, unwrap(M))); 2233 } 2234 2235 LLVMValueRef LLVMGetNamedFunction(LLVMModuleRef M, const char *Name) { 2236 return wrap(unwrap(M)->getFunction(Name)); 2237 } 2238 2239 LLVMValueRef LLVMGetFirstFunction(LLVMModuleRef M) { 2240 Module *Mod = unwrap(M); 2241 Module::iterator I = Mod->begin(); 2242 if (I == Mod->end()) 2243 return nullptr; 2244 return wrap(&*I); 2245 } 2246 2247 LLVMValueRef LLVMGetLastFunction(LLVMModuleRef M) { 2248 Module *Mod = unwrap(M); 2249 Module::iterator I = Mod->end(); 2250 if (I == Mod->begin()) 2251 return nullptr; 2252 return wrap(&*--I); 2253 } 2254 2255 LLVMValueRef LLVMGetNextFunction(LLVMValueRef Fn) { 2256 Function *Func = unwrap<Function>(Fn); 2257 Module::iterator I(Func); 2258 if (++I == Func->getParent()->end()) 2259 return nullptr; 2260 return wrap(&*I); 2261 } 2262 2263 LLVMValueRef LLVMGetPreviousFunction(LLVMValueRef Fn) { 2264 Function *Func = unwrap<Function>(Fn); 2265 Module::iterator I(Func); 2266 if (I == Func->getParent()->begin()) 2267 return nullptr; 2268 return wrap(&*--I); 2269 } 2270 2271 void LLVMDeleteFunction(LLVMValueRef Fn) { 2272 unwrap<Function>(Fn)->eraseFromParent(); 2273 } 2274 2275 LLVMBool LLVMHasPersonalityFn(LLVMValueRef Fn) { 2276 return unwrap<Function>(Fn)->hasPersonalityFn(); 2277 } 2278 2279 LLVMValueRef LLVMGetPersonalityFn(LLVMValueRef Fn) { 2280 return wrap(unwrap<Function>(Fn)->getPersonalityFn()); 2281 } 2282 2283 void LLVMSetPersonalityFn(LLVMValueRef Fn, LLVMValueRef PersonalityFn) { 2284 unwrap<Function>(Fn)->setPersonalityFn(unwrap<Constant>(PersonalityFn)); 2285 } 2286 2287 unsigned LLVMGetIntrinsicID(LLVMValueRef Fn) { 2288 if (Function *F = dyn_cast<Function>(unwrap(Fn))) 2289 return F->getIntrinsicID(); 2290 return 0; 2291 } 2292 2293 static Intrinsic::ID llvm_map_to_intrinsic_id(unsigned ID) { 2294 assert(ID < llvm::Intrinsic::num_intrinsics && "Intrinsic ID out of range"); 2295 return llvm::Intrinsic::ID(ID); 2296 } 2297 2298 LLVMValueRef LLVMGetIntrinsicDeclaration(LLVMModuleRef Mod, 2299 unsigned ID, 2300 LLVMTypeRef *ParamTypes, 2301 size_t ParamCount) { 2302 ArrayRef<Type*> Tys(unwrap(ParamTypes), ParamCount); 2303 auto IID = llvm_map_to_intrinsic_id(ID); 2304 return wrap(llvm::Intrinsic::getDeclaration(unwrap(Mod), IID, Tys)); 2305 } 2306 2307 const char *LLVMIntrinsicGetName(unsigned ID, size_t *NameLength) { 2308 auto IID = llvm_map_to_intrinsic_id(ID); 2309 auto Str = llvm::Intrinsic::getName(IID); 2310 *NameLength = Str.size(); 2311 return Str.data(); 2312 } 2313 2314 LLVMTypeRef LLVMIntrinsicGetType(LLVMContextRef Ctx, unsigned ID, 2315 LLVMTypeRef *ParamTypes, size_t ParamCount) { 2316 auto IID = llvm_map_to_intrinsic_id(ID); 2317 ArrayRef<Type*> Tys(unwrap(ParamTypes), ParamCount); 2318 return wrap(llvm::Intrinsic::getType(*unwrap(Ctx), IID, Tys)); 2319 } 2320 2321 const char *LLVMIntrinsicCopyOverloadedName(unsigned ID, 2322 LLVMTypeRef *ParamTypes, 2323 size_t ParamCount, 2324 size_t *NameLength) { 2325 auto IID = llvm_map_to_intrinsic_id(ID); 2326 ArrayRef<Type*> Tys(unwrap(ParamTypes), ParamCount); 2327 auto Str = llvm::Intrinsic::getName(IID, Tys); 2328 *NameLength = Str.length(); 2329 return strdup(Str.c_str()); 2330 } 2331 2332 unsigned LLVMLookupIntrinsicID(const char *Name, size_t NameLen) { 2333 return Function::lookupIntrinsicID({Name, NameLen}); 2334 } 2335 2336 LLVMBool LLVMIntrinsicIsOverloaded(unsigned ID) { 2337 auto IID = llvm_map_to_intrinsic_id(ID); 2338 return llvm::Intrinsic::isOverloaded(IID); 2339 } 2340 2341 unsigned LLVMGetFunctionCallConv(LLVMValueRef Fn) { 2342 return unwrap<Function>(Fn)->getCallingConv(); 2343 } 2344 2345 void LLVMSetFunctionCallConv(LLVMValueRef Fn, unsigned CC) { 2346 return unwrap<Function>(Fn)->setCallingConv( 2347 static_cast<CallingConv::ID>(CC)); 2348 } 2349 2350 const char *LLVMGetGC(LLVMValueRef Fn) { 2351 Function *F = unwrap<Function>(Fn); 2352 return F->hasGC()? F->getGC().c_str() : nullptr; 2353 } 2354 2355 void LLVMSetGC(LLVMValueRef Fn, const char *GC) { 2356 Function *F = unwrap<Function>(Fn); 2357 if (GC) 2358 F->setGC(GC); 2359 else 2360 F->clearGC(); 2361 } 2362 2363 void LLVMAddAttributeAtIndex(LLVMValueRef F, LLVMAttributeIndex Idx, 2364 LLVMAttributeRef A) { 2365 unwrap<Function>(F)->addAttribute(Idx, unwrap(A)); 2366 } 2367 2368 unsigned LLVMGetAttributeCountAtIndex(LLVMValueRef F, LLVMAttributeIndex Idx) { 2369 auto AS = unwrap<Function>(F)->getAttributes().getAttributes(Idx); 2370 return AS.getNumAttributes(); 2371 } 2372 2373 void LLVMGetAttributesAtIndex(LLVMValueRef F, LLVMAttributeIndex Idx, 2374 LLVMAttributeRef *Attrs) { 2375 auto AS = unwrap<Function>(F)->getAttributes().getAttributes(Idx); 2376 for (auto A : AS) 2377 *Attrs++ = wrap(A); 2378 } 2379 2380 LLVMAttributeRef LLVMGetEnumAttributeAtIndex(LLVMValueRef F, 2381 LLVMAttributeIndex Idx, 2382 unsigned KindID) { 2383 return wrap(unwrap<Function>(F)->getAttribute(Idx, 2384 (Attribute::AttrKind)KindID)); 2385 } 2386 2387 LLVMAttributeRef LLVMGetStringAttributeAtIndex(LLVMValueRef F, 2388 LLVMAttributeIndex Idx, 2389 const char *K, unsigned KLen) { 2390 return wrap(unwrap<Function>(F)->getAttribute(Idx, StringRef(K, KLen))); 2391 } 2392 2393 void LLVMRemoveEnumAttributeAtIndex(LLVMValueRef F, LLVMAttributeIndex Idx, 2394 unsigned KindID) { 2395 unwrap<Function>(F)->removeAttribute(Idx, (Attribute::AttrKind)KindID); 2396 } 2397 2398 void LLVMRemoveStringAttributeAtIndex(LLVMValueRef F, LLVMAttributeIndex Idx, 2399 const char *K, unsigned KLen) { 2400 unwrap<Function>(F)->removeAttribute(Idx, StringRef(K, KLen)); 2401 } 2402 2403 void LLVMAddTargetDependentFunctionAttr(LLVMValueRef Fn, const char *A, 2404 const char *V) { 2405 Function *Func = unwrap<Function>(Fn); 2406 Attribute Attr = Attribute::get(Func->getContext(), A, V); 2407 Func->addAttribute(AttributeList::FunctionIndex, Attr); 2408 } 2409 2410 /*--.. Operations on parameters ............................................--*/ 2411 2412 unsigned LLVMCountParams(LLVMValueRef FnRef) { 2413 // This function is strictly redundant to 2414 // LLVMCountParamTypes(LLVMGetElementType(LLVMTypeOf(FnRef))) 2415 return unwrap<Function>(FnRef)->arg_size(); 2416 } 2417 2418 void LLVMGetParams(LLVMValueRef FnRef, LLVMValueRef *ParamRefs) { 2419 Function *Fn = unwrap<Function>(FnRef); 2420 for (Function::arg_iterator I = Fn->arg_begin(), 2421 E = Fn->arg_end(); I != E; I++) 2422 *ParamRefs++ = wrap(&*I); 2423 } 2424 2425 LLVMValueRef LLVMGetParam(LLVMValueRef FnRef, unsigned index) { 2426 Function *Fn = unwrap<Function>(FnRef); 2427 return wrap(&Fn->arg_begin()[index]); 2428 } 2429 2430 LLVMValueRef LLVMGetParamParent(LLVMValueRef V) { 2431 return wrap(unwrap<Argument>(V)->getParent()); 2432 } 2433 2434 LLVMValueRef LLVMGetFirstParam(LLVMValueRef Fn) { 2435 Function *Func = unwrap<Function>(Fn); 2436 Function::arg_iterator I = Func->arg_begin(); 2437 if (I == Func->arg_end()) 2438 return nullptr; 2439 return wrap(&*I); 2440 } 2441 2442 LLVMValueRef LLVMGetLastParam(LLVMValueRef Fn) { 2443 Function *Func = unwrap<Function>(Fn); 2444 Function::arg_iterator I = Func->arg_end(); 2445 if (I == Func->arg_begin()) 2446 return nullptr; 2447 return wrap(&*--I); 2448 } 2449 2450 LLVMValueRef LLVMGetNextParam(LLVMValueRef Arg) { 2451 Argument *A = unwrap<Argument>(Arg); 2452 Function *Fn = A->getParent(); 2453 if (A->getArgNo() + 1 >= Fn->arg_size()) 2454 return nullptr; 2455 return wrap(&Fn->arg_begin()[A->getArgNo() + 1]); 2456 } 2457 2458 LLVMValueRef LLVMGetPreviousParam(LLVMValueRef Arg) { 2459 Argument *A = unwrap<Argument>(Arg); 2460 if (A->getArgNo() == 0) 2461 return nullptr; 2462 return wrap(&A->getParent()->arg_begin()[A->getArgNo() - 1]); 2463 } 2464 2465 void LLVMSetParamAlignment(LLVMValueRef Arg, unsigned align) { 2466 Argument *A = unwrap<Argument>(Arg); 2467 A->addAttr(Attribute::getWithAlignment(A->getContext(), align)); 2468 } 2469 2470 /*--.. Operations on ifuncs ................................................--*/ 2471 2472 LLVMValueRef LLVMAddGlobalIFunc(LLVMModuleRef M, 2473 const char *Name, size_t NameLen, 2474 LLVMTypeRef Ty, unsigned AddrSpace, 2475 LLVMValueRef Resolver) { 2476 return wrap(GlobalIFunc::create(unwrap(Ty), AddrSpace, 2477 GlobalValue::ExternalLinkage, 2478 StringRef(Name, NameLen), 2479 unwrap<Constant>(Resolver), unwrap(M))); 2480 } 2481 2482 LLVMValueRef LLVMGetNamedGlobalIFunc(LLVMModuleRef M, 2483 const char *Name, size_t NameLen) { 2484 return wrap(unwrap(M)->getNamedIFunc(StringRef(Name, NameLen))); 2485 } 2486 2487 LLVMValueRef LLVMGetFirstGlobalIFunc(LLVMModuleRef M) { 2488 Module *Mod = unwrap(M); 2489 Module::ifunc_iterator I = Mod->ifunc_begin(); 2490 if (I == Mod->ifunc_end()) 2491 return nullptr; 2492 return wrap(&*I); 2493 } 2494 2495 LLVMValueRef LLVMGetLastGlobalIFunc(LLVMModuleRef M) { 2496 Module *Mod = unwrap(M); 2497 Module::ifunc_iterator I = Mod->ifunc_end(); 2498 if (I == Mod->ifunc_begin()) 2499 return nullptr; 2500 return wrap(&*--I); 2501 } 2502 2503 LLVMValueRef LLVMGetNextGlobalIFunc(LLVMValueRef IFunc) { 2504 GlobalIFunc *GIF = unwrap<GlobalIFunc>(IFunc); 2505 Module::ifunc_iterator I(GIF); 2506 if (++I == GIF->getParent()->ifunc_end()) 2507 return nullptr; 2508 return wrap(&*I); 2509 } 2510 2511 LLVMValueRef LLVMGetPreviousGlobalIFunc(LLVMValueRef IFunc) { 2512 GlobalIFunc *GIF = unwrap<GlobalIFunc>(IFunc); 2513 Module::ifunc_iterator I(GIF); 2514 if (I == GIF->getParent()->ifunc_begin()) 2515 return nullptr; 2516 return wrap(&*--I); 2517 } 2518 2519 LLVMValueRef LLVMGetGlobalIFuncResolver(LLVMValueRef IFunc) { 2520 return wrap(unwrap<GlobalIFunc>(IFunc)->getResolver()); 2521 } 2522 2523 void LLVMSetGlobalIFuncResolver(LLVMValueRef IFunc, LLVMValueRef Resolver) { 2524 unwrap<GlobalIFunc>(IFunc)->setResolver(unwrap<Constant>(Resolver)); 2525 } 2526 2527 void LLVMEraseGlobalIFunc(LLVMValueRef IFunc) { 2528 unwrap<GlobalIFunc>(IFunc)->eraseFromParent(); 2529 } 2530 2531 void LLVMRemoveGlobalIFunc(LLVMValueRef IFunc) { 2532 unwrap<GlobalIFunc>(IFunc)->removeFromParent(); 2533 } 2534 2535 /*--.. Operations on basic blocks ..........................................--*/ 2536 2537 LLVMValueRef LLVMBasicBlockAsValue(LLVMBasicBlockRef BB) { 2538 return wrap(static_cast<Value*>(unwrap(BB))); 2539 } 2540 2541 LLVMBool LLVMValueIsBasicBlock(LLVMValueRef Val) { 2542 return isa<BasicBlock>(unwrap(Val)); 2543 } 2544 2545 LLVMBasicBlockRef LLVMValueAsBasicBlock(LLVMValueRef Val) { 2546 return wrap(unwrap<BasicBlock>(Val)); 2547 } 2548 2549 const char *LLVMGetBasicBlockName(LLVMBasicBlockRef BB) { 2550 return unwrap(BB)->getName().data(); 2551 } 2552 2553 LLVMValueRef LLVMGetBasicBlockParent(LLVMBasicBlockRef BB) { 2554 return wrap(unwrap(BB)->getParent()); 2555 } 2556 2557 LLVMValueRef LLVMGetBasicBlockTerminator(LLVMBasicBlockRef BB) { 2558 return wrap(unwrap(BB)->getTerminator()); 2559 } 2560 2561 unsigned LLVMCountBasicBlocks(LLVMValueRef FnRef) { 2562 return unwrap<Function>(FnRef)->size(); 2563 } 2564 2565 void LLVMGetBasicBlocks(LLVMValueRef FnRef, LLVMBasicBlockRef *BasicBlocksRefs){ 2566 Function *Fn = unwrap<Function>(FnRef); 2567 for (BasicBlock &BB : *Fn) 2568 *BasicBlocksRefs++ = wrap(&BB); 2569 } 2570 2571 LLVMBasicBlockRef LLVMGetEntryBasicBlock(LLVMValueRef Fn) { 2572 return wrap(&unwrap<Function>(Fn)->getEntryBlock()); 2573 } 2574 2575 LLVMBasicBlockRef LLVMGetFirstBasicBlock(LLVMValueRef Fn) { 2576 Function *Func = unwrap<Function>(Fn); 2577 Function::iterator I = Func->begin(); 2578 if (I == Func->end()) 2579 return nullptr; 2580 return wrap(&*I); 2581 } 2582 2583 LLVMBasicBlockRef LLVMGetLastBasicBlock(LLVMValueRef Fn) { 2584 Function *Func = unwrap<Function>(Fn); 2585 Function::iterator I = Func->end(); 2586 if (I == Func->begin()) 2587 return nullptr; 2588 return wrap(&*--I); 2589 } 2590 2591 LLVMBasicBlockRef LLVMGetNextBasicBlock(LLVMBasicBlockRef BB) { 2592 BasicBlock *Block = unwrap(BB); 2593 Function::iterator I(Block); 2594 if (++I == Block->getParent()->end()) 2595 return nullptr; 2596 return wrap(&*I); 2597 } 2598 2599 LLVMBasicBlockRef LLVMGetPreviousBasicBlock(LLVMBasicBlockRef BB) { 2600 BasicBlock *Block = unwrap(BB); 2601 Function::iterator I(Block); 2602 if (I == Block->getParent()->begin()) 2603 return nullptr; 2604 return wrap(&*--I); 2605 } 2606 2607 LLVMBasicBlockRef LLVMCreateBasicBlockInContext(LLVMContextRef C, 2608 const char *Name) { 2609 return wrap(llvm::BasicBlock::Create(*unwrap(C), Name)); 2610 } 2611 2612 LLVMBasicBlockRef LLVMAppendBasicBlockInContext(LLVMContextRef C, 2613 LLVMValueRef FnRef, 2614 const char *Name) { 2615 return wrap(BasicBlock::Create(*unwrap(C), Name, unwrap<Function>(FnRef))); 2616 } 2617 2618 LLVMBasicBlockRef LLVMAppendBasicBlock(LLVMValueRef FnRef, const char *Name) { 2619 return LLVMAppendBasicBlockInContext(LLVMGetGlobalContext(), FnRef, Name); 2620 } 2621 2622 LLVMBasicBlockRef LLVMInsertBasicBlockInContext(LLVMContextRef C, 2623 LLVMBasicBlockRef BBRef, 2624 const char *Name) { 2625 BasicBlock *BB = unwrap(BBRef); 2626 return wrap(BasicBlock::Create(*unwrap(C), Name, BB->getParent(), BB)); 2627 } 2628 2629 LLVMBasicBlockRef LLVMInsertBasicBlock(LLVMBasicBlockRef BBRef, 2630 const char *Name) { 2631 return LLVMInsertBasicBlockInContext(LLVMGetGlobalContext(), BBRef, Name); 2632 } 2633 2634 void LLVMDeleteBasicBlock(LLVMBasicBlockRef BBRef) { 2635 unwrap(BBRef)->eraseFromParent(); 2636 } 2637 2638 void LLVMRemoveBasicBlockFromParent(LLVMBasicBlockRef BBRef) { 2639 unwrap(BBRef)->removeFromParent(); 2640 } 2641 2642 void LLVMMoveBasicBlockBefore(LLVMBasicBlockRef BB, LLVMBasicBlockRef MovePos) { 2643 unwrap(BB)->moveBefore(unwrap(MovePos)); 2644 } 2645 2646 void LLVMMoveBasicBlockAfter(LLVMBasicBlockRef BB, LLVMBasicBlockRef MovePos) { 2647 unwrap(BB)->moveAfter(unwrap(MovePos)); 2648 } 2649 2650 /*--.. Operations on instructions ..........................................--*/ 2651 2652 LLVMBasicBlockRef LLVMGetInstructionParent(LLVMValueRef Inst) { 2653 return wrap(unwrap<Instruction>(Inst)->getParent()); 2654 } 2655 2656 LLVMValueRef LLVMGetFirstInstruction(LLVMBasicBlockRef BB) { 2657 BasicBlock *Block = unwrap(BB); 2658 BasicBlock::iterator I = Block->begin(); 2659 if (I == Block->end()) 2660 return nullptr; 2661 return wrap(&*I); 2662 } 2663 2664 LLVMValueRef LLVMGetLastInstruction(LLVMBasicBlockRef BB) { 2665 BasicBlock *Block = unwrap(BB); 2666 BasicBlock::iterator I = Block->end(); 2667 if (I == Block->begin()) 2668 return nullptr; 2669 return wrap(&*--I); 2670 } 2671 2672 LLVMValueRef LLVMGetNextInstruction(LLVMValueRef Inst) { 2673 Instruction *Instr = unwrap<Instruction>(Inst); 2674 BasicBlock::iterator I(Instr); 2675 if (++I == Instr->getParent()->end()) 2676 return nullptr; 2677 return wrap(&*I); 2678 } 2679 2680 LLVMValueRef LLVMGetPreviousInstruction(LLVMValueRef Inst) { 2681 Instruction *Instr = unwrap<Instruction>(Inst); 2682 BasicBlock::iterator I(Instr); 2683 if (I == Instr->getParent()->begin()) 2684 return nullptr; 2685 return wrap(&*--I); 2686 } 2687 2688 void LLVMInstructionRemoveFromParent(LLVMValueRef Inst) { 2689 unwrap<Instruction>(Inst)->removeFromParent(); 2690 } 2691 2692 void LLVMInstructionEraseFromParent(LLVMValueRef Inst) { 2693 unwrap<Instruction>(Inst)->eraseFromParent(); 2694 } 2695 2696 LLVMIntPredicate LLVMGetICmpPredicate(LLVMValueRef Inst) { 2697 if (ICmpInst *I = dyn_cast<ICmpInst>(unwrap(Inst))) 2698 return (LLVMIntPredicate)I->getPredicate(); 2699 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(unwrap(Inst))) 2700 if (CE->getOpcode() == Instruction::ICmp) 2701 return (LLVMIntPredicate)CE->getPredicate(); 2702 return (LLVMIntPredicate)0; 2703 } 2704 2705 LLVMRealPredicate LLVMGetFCmpPredicate(LLVMValueRef Inst) { 2706 if (FCmpInst *I = dyn_cast<FCmpInst>(unwrap(Inst))) 2707 return (LLVMRealPredicate)I->getPredicate(); 2708 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(unwrap(Inst))) 2709 if (CE->getOpcode() == Instruction::FCmp) 2710 return (LLVMRealPredicate)CE->getPredicate(); 2711 return (LLVMRealPredicate)0; 2712 } 2713 2714 LLVMOpcode LLVMGetInstructionOpcode(LLVMValueRef Inst) { 2715 if (Instruction *C = dyn_cast<Instruction>(unwrap(Inst))) 2716 return map_to_llvmopcode(C->getOpcode()); 2717 return (LLVMOpcode)0; 2718 } 2719 2720 LLVMValueRef LLVMInstructionClone(LLVMValueRef Inst) { 2721 if (Instruction *C = dyn_cast<Instruction>(unwrap(Inst))) 2722 return wrap(C->clone()); 2723 return nullptr; 2724 } 2725 2726 LLVMValueRef LLVMIsATerminatorInst(LLVMValueRef Inst) { 2727 Instruction *I = dyn_cast<Instruction>(unwrap(Inst)); 2728 return (I && I->isTerminator()) ? wrap(I) : nullptr; 2729 } 2730 2731 unsigned LLVMGetNumArgOperands(LLVMValueRef Instr) { 2732 if (FuncletPadInst *FPI = dyn_cast<FuncletPadInst>(unwrap(Instr))) { 2733 return FPI->getNumArgOperands(); 2734 } 2735 return unwrap<CallBase>(Instr)->getNumArgOperands(); 2736 } 2737 2738 /*--.. Call and invoke instructions ........................................--*/ 2739 2740 unsigned LLVMGetInstructionCallConv(LLVMValueRef Instr) { 2741 return unwrap<CallBase>(Instr)->getCallingConv(); 2742 } 2743 2744 void LLVMSetInstructionCallConv(LLVMValueRef Instr, unsigned CC) { 2745 return unwrap<CallBase>(Instr)->setCallingConv( 2746 static_cast<CallingConv::ID>(CC)); 2747 } 2748 2749 void LLVMSetInstrParamAlignment(LLVMValueRef Instr, unsigned index, 2750 unsigned align) { 2751 auto *Call = unwrap<CallBase>(Instr); 2752 Attribute AlignAttr = Attribute::getWithAlignment(Call->getContext(), align); 2753 Call->addAttribute(index, AlignAttr); 2754 } 2755 2756 void LLVMAddCallSiteAttribute(LLVMValueRef C, LLVMAttributeIndex Idx, 2757 LLVMAttributeRef A) { 2758 unwrap<CallBase>(C)->addAttribute(Idx, unwrap(A)); 2759 } 2760 2761 unsigned LLVMGetCallSiteAttributeCount(LLVMValueRef C, 2762 LLVMAttributeIndex Idx) { 2763 auto *Call = unwrap<CallBase>(C); 2764 auto AS = Call->getAttributes().getAttributes(Idx); 2765 return AS.getNumAttributes(); 2766 } 2767 2768 void LLVMGetCallSiteAttributes(LLVMValueRef C, LLVMAttributeIndex Idx, 2769 LLVMAttributeRef *Attrs) { 2770 auto *Call = unwrap<CallBase>(C); 2771 auto AS = Call->getAttributes().getAttributes(Idx); 2772 for (auto A : AS) 2773 *Attrs++ = wrap(A); 2774 } 2775 2776 LLVMAttributeRef LLVMGetCallSiteEnumAttribute(LLVMValueRef C, 2777 LLVMAttributeIndex Idx, 2778 unsigned KindID) { 2779 return wrap( 2780 unwrap<CallBase>(C)->getAttribute(Idx, (Attribute::AttrKind)KindID)); 2781 } 2782 2783 LLVMAttributeRef LLVMGetCallSiteStringAttribute(LLVMValueRef C, 2784 LLVMAttributeIndex Idx, 2785 const char *K, unsigned KLen) { 2786 return wrap(unwrap<CallBase>(C)->getAttribute(Idx, StringRef(K, KLen))); 2787 } 2788 2789 void LLVMRemoveCallSiteEnumAttribute(LLVMValueRef C, LLVMAttributeIndex Idx, 2790 unsigned KindID) { 2791 unwrap<CallBase>(C)->removeAttribute(Idx, (Attribute::AttrKind)KindID); 2792 } 2793 2794 void LLVMRemoveCallSiteStringAttribute(LLVMValueRef C, LLVMAttributeIndex Idx, 2795 const char *K, unsigned KLen) { 2796 unwrap<CallBase>(C)->removeAttribute(Idx, StringRef(K, KLen)); 2797 } 2798 2799 LLVMValueRef LLVMGetCalledValue(LLVMValueRef Instr) { 2800 return wrap(unwrap<CallBase>(Instr)->getCalledValue()); 2801 } 2802 2803 LLVMTypeRef LLVMGetCalledFunctionType(LLVMValueRef Instr) { 2804 return wrap(unwrap<CallBase>(Instr)->getFunctionType()); 2805 } 2806 2807 /*--.. Operations on call instructions (only) ..............................--*/ 2808 2809 LLVMBool LLVMIsTailCall(LLVMValueRef Call) { 2810 return unwrap<CallInst>(Call)->isTailCall(); 2811 } 2812 2813 void LLVMSetTailCall(LLVMValueRef Call, LLVMBool isTailCall) { 2814 unwrap<CallInst>(Call)->setTailCall(isTailCall); 2815 } 2816 2817 /*--.. Operations on invoke instructions (only) ............................--*/ 2818 2819 LLVMBasicBlockRef LLVMGetNormalDest(LLVMValueRef Invoke) { 2820 return wrap(unwrap<InvokeInst>(Invoke)->getNormalDest()); 2821 } 2822 2823 LLVMBasicBlockRef LLVMGetUnwindDest(LLVMValueRef Invoke) { 2824 if (CleanupReturnInst *CRI = dyn_cast<CleanupReturnInst>(unwrap(Invoke))) { 2825 return wrap(CRI->getUnwindDest()); 2826 } else if (CatchSwitchInst *CSI = dyn_cast<CatchSwitchInst>(unwrap(Invoke))) { 2827 return wrap(CSI->getUnwindDest()); 2828 } 2829 return wrap(unwrap<InvokeInst>(Invoke)->getUnwindDest()); 2830 } 2831 2832 void LLVMSetNormalDest(LLVMValueRef Invoke, LLVMBasicBlockRef B) { 2833 unwrap<InvokeInst>(Invoke)->setNormalDest(unwrap(B)); 2834 } 2835 2836 void LLVMSetUnwindDest(LLVMValueRef Invoke, LLVMBasicBlockRef B) { 2837 if (CleanupReturnInst *CRI = dyn_cast<CleanupReturnInst>(unwrap(Invoke))) { 2838 return CRI->setUnwindDest(unwrap(B)); 2839 } else if (CatchSwitchInst *CSI = dyn_cast<CatchSwitchInst>(unwrap(Invoke))) { 2840 return CSI->setUnwindDest(unwrap(B)); 2841 } 2842 unwrap<InvokeInst>(Invoke)->setUnwindDest(unwrap(B)); 2843 } 2844 2845 /*--.. Operations on terminators ...........................................--*/ 2846 2847 unsigned LLVMGetNumSuccessors(LLVMValueRef Term) { 2848 return unwrap<Instruction>(Term)->getNumSuccessors(); 2849 } 2850 2851 LLVMBasicBlockRef LLVMGetSuccessor(LLVMValueRef Term, unsigned i) { 2852 return wrap(unwrap<Instruction>(Term)->getSuccessor(i)); 2853 } 2854 2855 void LLVMSetSuccessor(LLVMValueRef Term, unsigned i, LLVMBasicBlockRef block) { 2856 return unwrap<Instruction>(Term)->setSuccessor(i, unwrap(block)); 2857 } 2858 2859 /*--.. Operations on branch instructions (only) ............................--*/ 2860 2861 LLVMBool LLVMIsConditional(LLVMValueRef Branch) { 2862 return unwrap<BranchInst>(Branch)->isConditional(); 2863 } 2864 2865 LLVMValueRef LLVMGetCondition(LLVMValueRef Branch) { 2866 return wrap(unwrap<BranchInst>(Branch)->getCondition()); 2867 } 2868 2869 void LLVMSetCondition(LLVMValueRef Branch, LLVMValueRef Cond) { 2870 return unwrap<BranchInst>(Branch)->setCondition(unwrap(Cond)); 2871 } 2872 2873 /*--.. Operations on switch instructions (only) ............................--*/ 2874 2875 LLVMBasicBlockRef LLVMGetSwitchDefaultDest(LLVMValueRef Switch) { 2876 return wrap(unwrap<SwitchInst>(Switch)->getDefaultDest()); 2877 } 2878 2879 /*--.. Operations on alloca instructions (only) ............................--*/ 2880 2881 LLVMTypeRef LLVMGetAllocatedType(LLVMValueRef Alloca) { 2882 return wrap(unwrap<AllocaInst>(Alloca)->getAllocatedType()); 2883 } 2884 2885 /*--.. Operations on gep instructions (only) ...............................--*/ 2886 2887 LLVMBool LLVMIsInBounds(LLVMValueRef GEP) { 2888 return unwrap<GetElementPtrInst>(GEP)->isInBounds(); 2889 } 2890 2891 void LLVMSetIsInBounds(LLVMValueRef GEP, LLVMBool InBounds) { 2892 return unwrap<GetElementPtrInst>(GEP)->setIsInBounds(InBounds); 2893 } 2894 2895 /*--.. Operations on phi nodes .............................................--*/ 2896 2897 void LLVMAddIncoming(LLVMValueRef PhiNode, LLVMValueRef *IncomingValues, 2898 LLVMBasicBlockRef *IncomingBlocks, unsigned Count) { 2899 PHINode *PhiVal = unwrap<PHINode>(PhiNode); 2900 for (unsigned I = 0; I != Count; ++I) 2901 PhiVal->addIncoming(unwrap(IncomingValues[I]), unwrap(IncomingBlocks[I])); 2902 } 2903 2904 unsigned LLVMCountIncoming(LLVMValueRef PhiNode) { 2905 return unwrap<PHINode>(PhiNode)->getNumIncomingValues(); 2906 } 2907 2908 LLVMValueRef LLVMGetIncomingValue(LLVMValueRef PhiNode, unsigned Index) { 2909 return wrap(unwrap<PHINode>(PhiNode)->getIncomingValue(Index)); 2910 } 2911 2912 LLVMBasicBlockRef LLVMGetIncomingBlock(LLVMValueRef PhiNode, unsigned Index) { 2913 return wrap(unwrap<PHINode>(PhiNode)->getIncomingBlock(Index)); 2914 } 2915 2916 /*--.. Operations on extractvalue and insertvalue nodes ....................--*/ 2917 2918 unsigned LLVMGetNumIndices(LLVMValueRef Inst) { 2919 auto *I = unwrap(Inst); 2920 if (auto *GEP = dyn_cast<GetElementPtrInst>(I)) 2921 return GEP->getNumIndices(); 2922 if (auto *EV = dyn_cast<ExtractValueInst>(I)) 2923 return EV->getNumIndices(); 2924 if (auto *IV = dyn_cast<InsertValueInst>(I)) 2925 return IV->getNumIndices(); 2926 if (auto *CE = dyn_cast<ConstantExpr>(I)) 2927 return CE->getIndices().size(); 2928 llvm_unreachable( 2929 "LLVMGetNumIndices applies only to extractvalue and insertvalue!"); 2930 } 2931 2932 const unsigned *LLVMGetIndices(LLVMValueRef Inst) { 2933 auto *I = unwrap(Inst); 2934 if (auto *EV = dyn_cast<ExtractValueInst>(I)) 2935 return EV->getIndices().data(); 2936 if (auto *IV = dyn_cast<InsertValueInst>(I)) 2937 return IV->getIndices().data(); 2938 if (auto *CE = dyn_cast<ConstantExpr>(I)) 2939 return CE->getIndices().data(); 2940 llvm_unreachable( 2941 "LLVMGetIndices applies only to extractvalue and insertvalue!"); 2942 } 2943 2944 2945 /*===-- Instruction builders ----------------------------------------------===*/ 2946 2947 LLVMBuilderRef LLVMCreateBuilderInContext(LLVMContextRef C) { 2948 return wrap(new IRBuilder<>(*unwrap(C))); 2949 } 2950 2951 LLVMBuilderRef LLVMCreateBuilder(void) { 2952 return LLVMCreateBuilderInContext(LLVMGetGlobalContext()); 2953 } 2954 2955 void LLVMPositionBuilder(LLVMBuilderRef Builder, LLVMBasicBlockRef Block, 2956 LLVMValueRef Instr) { 2957 BasicBlock *BB = unwrap(Block); 2958 auto I = Instr ? unwrap<Instruction>(Instr)->getIterator() : BB->end(); 2959 unwrap(Builder)->SetInsertPoint(BB, I); 2960 } 2961 2962 void LLVMPositionBuilderBefore(LLVMBuilderRef Builder, LLVMValueRef Instr) { 2963 Instruction *I = unwrap<Instruction>(Instr); 2964 unwrap(Builder)->SetInsertPoint(I->getParent(), I->getIterator()); 2965 } 2966 2967 void LLVMPositionBuilderAtEnd(LLVMBuilderRef Builder, LLVMBasicBlockRef Block) { 2968 BasicBlock *BB = unwrap(Block); 2969 unwrap(Builder)->SetInsertPoint(BB); 2970 } 2971 2972 LLVMBasicBlockRef LLVMGetInsertBlock(LLVMBuilderRef Builder) { 2973 return wrap(unwrap(Builder)->GetInsertBlock()); 2974 } 2975 2976 void LLVMClearInsertionPosition(LLVMBuilderRef Builder) { 2977 unwrap(Builder)->ClearInsertionPoint(); 2978 } 2979 2980 void LLVMInsertIntoBuilder(LLVMBuilderRef Builder, LLVMValueRef Instr) { 2981 unwrap(Builder)->Insert(unwrap<Instruction>(Instr)); 2982 } 2983 2984 void LLVMInsertIntoBuilderWithName(LLVMBuilderRef Builder, LLVMValueRef Instr, 2985 const char *Name) { 2986 unwrap(Builder)->Insert(unwrap<Instruction>(Instr), Name); 2987 } 2988 2989 void LLVMDisposeBuilder(LLVMBuilderRef Builder) { 2990 delete unwrap(Builder); 2991 } 2992 2993 /*--.. Metadata builders ...................................................--*/ 2994 2995 void LLVMSetCurrentDebugLocation(LLVMBuilderRef Builder, LLVMValueRef L) { 2996 MDNode *Loc = 2997 L ? cast<MDNode>(unwrap<MetadataAsValue>(L)->getMetadata()) : nullptr; 2998 unwrap(Builder)->SetCurrentDebugLocation(DebugLoc(Loc)); 2999 } 3000 3001 LLVMValueRef LLVMGetCurrentDebugLocation(LLVMBuilderRef Builder) { 3002 LLVMContext &Context = unwrap(Builder)->getContext(); 3003 return wrap(MetadataAsValue::get( 3004 Context, unwrap(Builder)->getCurrentDebugLocation().getAsMDNode())); 3005 } 3006 3007 void LLVMSetInstDebugLocation(LLVMBuilderRef Builder, LLVMValueRef Inst) { 3008 unwrap(Builder)->SetInstDebugLocation(unwrap<Instruction>(Inst)); 3009 } 3010 3011 3012 /*--.. Instruction builders ................................................--*/ 3013 3014 LLVMValueRef LLVMBuildRetVoid(LLVMBuilderRef B) { 3015 return wrap(unwrap(B)->CreateRetVoid()); 3016 } 3017 3018 LLVMValueRef LLVMBuildRet(LLVMBuilderRef B, LLVMValueRef V) { 3019 return wrap(unwrap(B)->CreateRet(unwrap(V))); 3020 } 3021 3022 LLVMValueRef LLVMBuildAggregateRet(LLVMBuilderRef B, LLVMValueRef *RetVals, 3023 unsigned N) { 3024 return wrap(unwrap(B)->CreateAggregateRet(unwrap(RetVals), N)); 3025 } 3026 3027 LLVMValueRef LLVMBuildBr(LLVMBuilderRef B, LLVMBasicBlockRef Dest) { 3028 return wrap(unwrap(B)->CreateBr(unwrap(Dest))); 3029 } 3030 3031 LLVMValueRef LLVMBuildCondBr(LLVMBuilderRef B, LLVMValueRef If, 3032 LLVMBasicBlockRef Then, LLVMBasicBlockRef Else) { 3033 return wrap(unwrap(B)->CreateCondBr(unwrap(If), unwrap(Then), unwrap(Else))); 3034 } 3035 3036 LLVMValueRef LLVMBuildSwitch(LLVMBuilderRef B, LLVMValueRef V, 3037 LLVMBasicBlockRef Else, unsigned NumCases) { 3038 return wrap(unwrap(B)->CreateSwitch(unwrap(V), unwrap(Else), NumCases)); 3039 } 3040 3041 LLVMValueRef LLVMBuildIndirectBr(LLVMBuilderRef B, LLVMValueRef Addr, 3042 unsigned NumDests) { 3043 return wrap(unwrap(B)->CreateIndirectBr(unwrap(Addr), NumDests)); 3044 } 3045 3046 LLVMValueRef LLVMBuildInvoke(LLVMBuilderRef B, LLVMValueRef Fn, 3047 LLVMValueRef *Args, unsigned NumArgs, 3048 LLVMBasicBlockRef Then, LLVMBasicBlockRef Catch, 3049 const char *Name) { 3050 Value *V = unwrap(Fn); 3051 FunctionType *FnT = 3052 cast<FunctionType>(cast<PointerType>(V->getType())->getElementType()); 3053 3054 return wrap( 3055 unwrap(B)->CreateInvoke(FnT, unwrap(Fn), unwrap(Then), unwrap(Catch), 3056 makeArrayRef(unwrap(Args), NumArgs), Name)); 3057 } 3058 3059 LLVMValueRef LLVMBuildInvoke2(LLVMBuilderRef B, LLVMTypeRef Ty, LLVMValueRef Fn, 3060 LLVMValueRef *Args, unsigned NumArgs, 3061 LLVMBasicBlockRef Then, LLVMBasicBlockRef Catch, 3062 const char *Name) { 3063 return wrap(unwrap(B)->CreateInvoke( 3064 unwrap<FunctionType>(Ty), unwrap(Fn), unwrap(Then), unwrap(Catch), 3065 makeArrayRef(unwrap(Args), NumArgs), Name)); 3066 } 3067 3068 LLVMValueRef LLVMBuildLandingPad(LLVMBuilderRef B, LLVMTypeRef Ty, 3069 LLVMValueRef PersFn, unsigned NumClauses, 3070 const char *Name) { 3071 // The personality used to live on the landingpad instruction, but now it 3072 // lives on the parent function. For compatibility, take the provided 3073 // personality and put it on the parent function. 3074 if (PersFn) 3075 unwrap(B)->GetInsertBlock()->getParent()->setPersonalityFn( 3076 cast<Function>(unwrap(PersFn))); 3077 return wrap(unwrap(B)->CreateLandingPad(unwrap(Ty), NumClauses, Name)); 3078 } 3079 3080 LLVMValueRef LLVMBuildCatchPad(LLVMBuilderRef B, LLVMValueRef ParentPad, 3081 LLVMValueRef *Args, unsigned NumArgs, 3082 const char *Name) { 3083 return wrap(unwrap(B)->CreateCatchPad(unwrap(ParentPad), 3084 makeArrayRef(unwrap(Args), NumArgs), 3085 Name)); 3086 } 3087 3088 LLVMValueRef LLVMBuildCleanupPad(LLVMBuilderRef B, LLVMValueRef ParentPad, 3089 LLVMValueRef *Args, unsigned NumArgs, 3090 const char *Name) { 3091 if (ParentPad == nullptr) { 3092 Type *Ty = Type::getTokenTy(unwrap(B)->getContext()); 3093 ParentPad = wrap(Constant::getNullValue(Ty)); 3094 } 3095 return wrap(unwrap(B)->CreateCleanupPad(unwrap(ParentPad), 3096 makeArrayRef(unwrap(Args), NumArgs), 3097 Name)); 3098 } 3099 3100 LLVMValueRef LLVMBuildResume(LLVMBuilderRef B, LLVMValueRef Exn) { 3101 return wrap(unwrap(B)->CreateResume(unwrap(Exn))); 3102 } 3103 3104 LLVMValueRef LLVMBuildCatchSwitch(LLVMBuilderRef B, LLVMValueRef ParentPad, 3105 LLVMBasicBlockRef UnwindBB, 3106 unsigned NumHandlers, const char *Name) { 3107 if (ParentPad == nullptr) { 3108 Type *Ty = Type::getTokenTy(unwrap(B)->getContext()); 3109 ParentPad = wrap(Constant::getNullValue(Ty)); 3110 } 3111 return wrap(unwrap(B)->CreateCatchSwitch(unwrap(ParentPad), unwrap(UnwindBB), 3112 NumHandlers, Name)); 3113 } 3114 3115 LLVMValueRef LLVMBuildCatchRet(LLVMBuilderRef B, LLVMValueRef CatchPad, 3116 LLVMBasicBlockRef BB) { 3117 return wrap(unwrap(B)->CreateCatchRet(unwrap<CatchPadInst>(CatchPad), 3118 unwrap(BB))); 3119 } 3120 3121 LLVMValueRef LLVMBuildCleanupRet(LLVMBuilderRef B, LLVMValueRef CatchPad, 3122 LLVMBasicBlockRef BB) { 3123 return wrap(unwrap(B)->CreateCleanupRet(unwrap<CleanupPadInst>(CatchPad), 3124 unwrap(BB))); 3125 } 3126 3127 LLVMValueRef LLVMBuildUnreachable(LLVMBuilderRef B) { 3128 return wrap(unwrap(B)->CreateUnreachable()); 3129 } 3130 3131 void LLVMAddCase(LLVMValueRef Switch, LLVMValueRef OnVal, 3132 LLVMBasicBlockRef Dest) { 3133 unwrap<SwitchInst>(Switch)->addCase(unwrap<ConstantInt>(OnVal), unwrap(Dest)); 3134 } 3135 3136 void LLVMAddDestination(LLVMValueRef IndirectBr, LLVMBasicBlockRef Dest) { 3137 unwrap<IndirectBrInst>(IndirectBr)->addDestination(unwrap(Dest)); 3138 } 3139 3140 unsigned LLVMGetNumClauses(LLVMValueRef LandingPad) { 3141 return unwrap<LandingPadInst>(LandingPad)->getNumClauses(); 3142 } 3143 3144 LLVMValueRef LLVMGetClause(LLVMValueRef LandingPad, unsigned Idx) { 3145 return wrap(unwrap<LandingPadInst>(LandingPad)->getClause(Idx)); 3146 } 3147 3148 void LLVMAddClause(LLVMValueRef LandingPad, LLVMValueRef ClauseVal) { 3149 unwrap<LandingPadInst>(LandingPad)-> 3150 addClause(cast<Constant>(unwrap(ClauseVal))); 3151 } 3152 3153 LLVMBool LLVMIsCleanup(LLVMValueRef LandingPad) { 3154 return unwrap<LandingPadInst>(LandingPad)->isCleanup(); 3155 } 3156 3157 void LLVMSetCleanup(LLVMValueRef LandingPad, LLVMBool Val) { 3158 unwrap<LandingPadInst>(LandingPad)->setCleanup(Val); 3159 } 3160 3161 void LLVMAddHandler(LLVMValueRef CatchSwitch, LLVMBasicBlockRef Dest) { 3162 unwrap<CatchSwitchInst>(CatchSwitch)->addHandler(unwrap(Dest)); 3163 } 3164 3165 unsigned LLVMGetNumHandlers(LLVMValueRef CatchSwitch) { 3166 return unwrap<CatchSwitchInst>(CatchSwitch)->getNumHandlers(); 3167 } 3168 3169 void LLVMGetHandlers(LLVMValueRef CatchSwitch, LLVMBasicBlockRef *Handlers) { 3170 CatchSwitchInst *CSI = unwrap<CatchSwitchInst>(CatchSwitch); 3171 for (CatchSwitchInst::handler_iterator I = CSI->handler_begin(), 3172 E = CSI->handler_end(); I != E; ++I) 3173 *Handlers++ = wrap(*I); 3174 } 3175 3176 LLVMValueRef LLVMGetParentCatchSwitch(LLVMValueRef CatchPad) { 3177 return wrap(unwrap<CatchPadInst>(CatchPad)->getCatchSwitch()); 3178 } 3179 3180 void LLVMSetParentCatchSwitch(LLVMValueRef CatchPad, LLVMValueRef CatchSwitch) { 3181 unwrap<CatchPadInst>(CatchPad) 3182 ->setCatchSwitch(unwrap<CatchSwitchInst>(CatchSwitch)); 3183 } 3184 3185 /*--.. Funclets ...........................................................--*/ 3186 3187 LLVMValueRef LLVMGetArgOperand(LLVMValueRef Funclet, unsigned i) { 3188 return wrap(unwrap<FuncletPadInst>(Funclet)->getArgOperand(i)); 3189 } 3190 3191 void LLVMSetArgOperand(LLVMValueRef Funclet, unsigned i, LLVMValueRef value) { 3192 unwrap<FuncletPadInst>(Funclet)->setArgOperand(i, unwrap(value)); 3193 } 3194 3195 /*--.. Arithmetic ..........................................................--*/ 3196 3197 LLVMValueRef LLVMBuildAdd(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3198 const char *Name) { 3199 return wrap(unwrap(B)->CreateAdd(unwrap(LHS), unwrap(RHS), Name)); 3200 } 3201 3202 LLVMValueRef LLVMBuildNSWAdd(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3203 const char *Name) { 3204 return wrap(unwrap(B)->CreateNSWAdd(unwrap(LHS), unwrap(RHS), Name)); 3205 } 3206 3207 LLVMValueRef LLVMBuildNUWAdd(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3208 const char *Name) { 3209 return wrap(unwrap(B)->CreateNUWAdd(unwrap(LHS), unwrap(RHS), Name)); 3210 } 3211 3212 LLVMValueRef LLVMBuildFAdd(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3213 const char *Name) { 3214 return wrap(unwrap(B)->CreateFAdd(unwrap(LHS), unwrap(RHS), Name)); 3215 } 3216 3217 LLVMValueRef LLVMBuildSub(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3218 const char *Name) { 3219 return wrap(unwrap(B)->CreateSub(unwrap(LHS), unwrap(RHS), Name)); 3220 } 3221 3222 LLVMValueRef LLVMBuildNSWSub(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3223 const char *Name) { 3224 return wrap(unwrap(B)->CreateNSWSub(unwrap(LHS), unwrap(RHS), Name)); 3225 } 3226 3227 LLVMValueRef LLVMBuildNUWSub(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3228 const char *Name) { 3229 return wrap(unwrap(B)->CreateNUWSub(unwrap(LHS), unwrap(RHS), Name)); 3230 } 3231 3232 LLVMValueRef LLVMBuildFSub(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3233 const char *Name) { 3234 return wrap(unwrap(B)->CreateFSub(unwrap(LHS), unwrap(RHS), Name)); 3235 } 3236 3237 LLVMValueRef LLVMBuildMul(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3238 const char *Name) { 3239 return wrap(unwrap(B)->CreateMul(unwrap(LHS), unwrap(RHS), Name)); 3240 } 3241 3242 LLVMValueRef LLVMBuildNSWMul(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3243 const char *Name) { 3244 return wrap(unwrap(B)->CreateNSWMul(unwrap(LHS), unwrap(RHS), Name)); 3245 } 3246 3247 LLVMValueRef LLVMBuildNUWMul(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3248 const char *Name) { 3249 return wrap(unwrap(B)->CreateNUWMul(unwrap(LHS), unwrap(RHS), Name)); 3250 } 3251 3252 LLVMValueRef LLVMBuildFMul(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3253 const char *Name) { 3254 return wrap(unwrap(B)->CreateFMul(unwrap(LHS), unwrap(RHS), Name)); 3255 } 3256 3257 LLVMValueRef LLVMBuildUDiv(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3258 const char *Name) { 3259 return wrap(unwrap(B)->CreateUDiv(unwrap(LHS), unwrap(RHS), Name)); 3260 } 3261 3262 LLVMValueRef LLVMBuildExactUDiv(LLVMBuilderRef B, LLVMValueRef LHS, 3263 LLVMValueRef RHS, const char *Name) { 3264 return wrap(unwrap(B)->CreateExactUDiv(unwrap(LHS), unwrap(RHS), Name)); 3265 } 3266 3267 LLVMValueRef LLVMBuildSDiv(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3268 const char *Name) { 3269 return wrap(unwrap(B)->CreateSDiv(unwrap(LHS), unwrap(RHS), Name)); 3270 } 3271 3272 LLVMValueRef LLVMBuildExactSDiv(LLVMBuilderRef B, LLVMValueRef LHS, 3273 LLVMValueRef RHS, const char *Name) { 3274 return wrap(unwrap(B)->CreateExactSDiv(unwrap(LHS), unwrap(RHS), Name)); 3275 } 3276 3277 LLVMValueRef LLVMBuildFDiv(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3278 const char *Name) { 3279 return wrap(unwrap(B)->CreateFDiv(unwrap(LHS), unwrap(RHS), Name)); 3280 } 3281 3282 LLVMValueRef LLVMBuildURem(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3283 const char *Name) { 3284 return wrap(unwrap(B)->CreateURem(unwrap(LHS), unwrap(RHS), Name)); 3285 } 3286 3287 LLVMValueRef LLVMBuildSRem(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3288 const char *Name) { 3289 return wrap(unwrap(B)->CreateSRem(unwrap(LHS), unwrap(RHS), Name)); 3290 } 3291 3292 LLVMValueRef LLVMBuildFRem(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3293 const char *Name) { 3294 return wrap(unwrap(B)->CreateFRem(unwrap(LHS), unwrap(RHS), Name)); 3295 } 3296 3297 LLVMValueRef LLVMBuildShl(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3298 const char *Name) { 3299 return wrap(unwrap(B)->CreateShl(unwrap(LHS), unwrap(RHS), Name)); 3300 } 3301 3302 LLVMValueRef LLVMBuildLShr(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3303 const char *Name) { 3304 return wrap(unwrap(B)->CreateLShr(unwrap(LHS), unwrap(RHS), Name)); 3305 } 3306 3307 LLVMValueRef LLVMBuildAShr(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3308 const char *Name) { 3309 return wrap(unwrap(B)->CreateAShr(unwrap(LHS), unwrap(RHS), Name)); 3310 } 3311 3312 LLVMValueRef LLVMBuildAnd(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3313 const char *Name) { 3314 return wrap(unwrap(B)->CreateAnd(unwrap(LHS), unwrap(RHS), Name)); 3315 } 3316 3317 LLVMValueRef LLVMBuildOr(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3318 const char *Name) { 3319 return wrap(unwrap(B)->CreateOr(unwrap(LHS), unwrap(RHS), Name)); 3320 } 3321 3322 LLVMValueRef LLVMBuildXor(LLVMBuilderRef B, LLVMValueRef LHS, LLVMValueRef RHS, 3323 const char *Name) { 3324 return wrap(unwrap(B)->CreateXor(unwrap(LHS), unwrap(RHS), Name)); 3325 } 3326 3327 LLVMValueRef LLVMBuildBinOp(LLVMBuilderRef B, LLVMOpcode Op, 3328 LLVMValueRef LHS, LLVMValueRef RHS, 3329 const char *Name) { 3330 return wrap(unwrap(B)->CreateBinOp(Instruction::BinaryOps(map_from_llvmopcode(Op)), unwrap(LHS), 3331 unwrap(RHS), Name)); 3332 } 3333 3334 LLVMValueRef LLVMBuildNeg(LLVMBuilderRef B, LLVMValueRef V, const char *Name) { 3335 return wrap(unwrap(B)->CreateNeg(unwrap(V), Name)); 3336 } 3337 3338 LLVMValueRef LLVMBuildNSWNeg(LLVMBuilderRef B, LLVMValueRef V, 3339 const char *Name) { 3340 return wrap(unwrap(B)->CreateNSWNeg(unwrap(V), Name)); 3341 } 3342 3343 LLVMValueRef LLVMBuildNUWNeg(LLVMBuilderRef B, LLVMValueRef V, 3344 const char *Name) { 3345 return wrap(unwrap(B)->CreateNUWNeg(unwrap(V), Name)); 3346 } 3347 3348 LLVMValueRef LLVMBuildFNeg(LLVMBuilderRef B, LLVMValueRef V, const char *Name) { 3349 return wrap(unwrap(B)->CreateFNeg(unwrap(V), Name)); 3350 } 3351 3352 LLVMValueRef LLVMBuildNot(LLVMBuilderRef B, LLVMValueRef V, const char *Name) { 3353 return wrap(unwrap(B)->CreateNot(unwrap(V), Name)); 3354 } 3355 3356 /*--.. Memory ..............................................................--*/ 3357 3358 LLVMValueRef LLVMBuildMalloc(LLVMBuilderRef B, LLVMTypeRef Ty, 3359 const char *Name) { 3360 Type* ITy = Type::getInt32Ty(unwrap(B)->GetInsertBlock()->getContext()); 3361 Constant* AllocSize = ConstantExpr::getSizeOf(unwrap(Ty)); 3362 AllocSize = ConstantExpr::getTruncOrBitCast(AllocSize, ITy); 3363 Instruction* Malloc = CallInst::CreateMalloc(unwrap(B)->GetInsertBlock(), 3364 ITy, unwrap(Ty), AllocSize, 3365 nullptr, nullptr, ""); 3366 return wrap(unwrap(B)->Insert(Malloc, Twine(Name))); 3367 } 3368 3369 LLVMValueRef LLVMBuildArrayMalloc(LLVMBuilderRef B, LLVMTypeRef Ty, 3370 LLVMValueRef Val, const char *Name) { 3371 Type* ITy = Type::getInt32Ty(unwrap(B)->GetInsertBlock()->getContext()); 3372 Constant* AllocSize = ConstantExpr::getSizeOf(unwrap(Ty)); 3373 AllocSize = ConstantExpr::getTruncOrBitCast(AllocSize, ITy); 3374 Instruction* Malloc = CallInst::CreateMalloc(unwrap(B)->GetInsertBlock(), 3375 ITy, unwrap(Ty), AllocSize, 3376 unwrap(Val), nullptr, ""); 3377 return wrap(unwrap(B)->Insert(Malloc, Twine(Name))); 3378 } 3379 3380 LLVMValueRef LLVMBuildMemSet(LLVMBuilderRef B, LLVMValueRef Ptr, 3381 LLVMValueRef Val, LLVMValueRef Len, 3382 unsigned Align) { 3383 return wrap(unwrap(B)->CreateMemSet(unwrap(Ptr), unwrap(Val), unwrap(Len), Align)); 3384 } 3385 3386 LLVMValueRef LLVMBuildMemCpy(LLVMBuilderRef B, 3387 LLVMValueRef Dst, unsigned DstAlign, 3388 LLVMValueRef Src, unsigned SrcAlign, 3389 LLVMValueRef Size) { 3390 return wrap(unwrap(B)->CreateMemCpy(unwrap(Dst), DstAlign, 3391 unwrap(Src), SrcAlign, 3392 unwrap(Size))); 3393 } 3394 3395 LLVMValueRef LLVMBuildMemMove(LLVMBuilderRef B, 3396 LLVMValueRef Dst, unsigned DstAlign, 3397 LLVMValueRef Src, unsigned SrcAlign, 3398 LLVMValueRef Size) { 3399 return wrap(unwrap(B)->CreateMemMove(unwrap(Dst), DstAlign, 3400 unwrap(Src), SrcAlign, 3401 unwrap(Size))); 3402 } 3403 3404 LLVMValueRef LLVMBuildAlloca(LLVMBuilderRef B, LLVMTypeRef Ty, 3405 const char *Name) { 3406 return wrap(unwrap(B)->CreateAlloca(unwrap(Ty), nullptr, Name)); 3407 } 3408 3409 LLVMValueRef LLVMBuildArrayAlloca(LLVMBuilderRef B, LLVMTypeRef Ty, 3410 LLVMValueRef Val, const char *Name) { 3411 return wrap(unwrap(B)->CreateAlloca(unwrap(Ty), unwrap(Val), Name)); 3412 } 3413 3414 LLVMValueRef LLVMBuildFree(LLVMBuilderRef B, LLVMValueRef PointerVal) { 3415 return wrap(unwrap(B)->Insert( 3416 CallInst::CreateFree(unwrap(PointerVal), unwrap(B)->GetInsertBlock()))); 3417 } 3418 3419 LLVMValueRef LLVMBuildLoad(LLVMBuilderRef B, LLVMValueRef PointerVal, 3420 const char *Name) { 3421 Value *V = unwrap(PointerVal); 3422 PointerType *Ty = cast<PointerType>(V->getType()); 3423 3424 return wrap(unwrap(B)->CreateLoad(Ty->getElementType(), V, Name)); 3425 } 3426 3427 LLVMValueRef LLVMBuildLoad2(LLVMBuilderRef B, LLVMTypeRef Ty, 3428 LLVMValueRef PointerVal, const char *Name) { 3429 return wrap(unwrap(B)->CreateLoad(unwrap(Ty), unwrap(PointerVal), Name)); 3430 } 3431 3432 LLVMValueRef LLVMBuildStore(LLVMBuilderRef B, LLVMValueRef Val, 3433 LLVMValueRef PointerVal) { 3434 return wrap(unwrap(B)->CreateStore(unwrap(Val), unwrap(PointerVal))); 3435 } 3436 3437 static AtomicOrdering mapFromLLVMOrdering(LLVMAtomicOrdering Ordering) { 3438 switch (Ordering) { 3439 case LLVMAtomicOrderingNotAtomic: return AtomicOrdering::NotAtomic; 3440 case LLVMAtomicOrderingUnordered: return AtomicOrdering::Unordered; 3441 case LLVMAtomicOrderingMonotonic: return AtomicOrdering::Monotonic; 3442 case LLVMAtomicOrderingAcquire: return AtomicOrdering::Acquire; 3443 case LLVMAtomicOrderingRelease: return AtomicOrdering::Release; 3444 case LLVMAtomicOrderingAcquireRelease: 3445 return AtomicOrdering::AcquireRelease; 3446 case LLVMAtomicOrderingSequentiallyConsistent: 3447 return AtomicOrdering::SequentiallyConsistent; 3448 } 3449 3450 llvm_unreachable("Invalid LLVMAtomicOrdering value!"); 3451 } 3452 3453 static LLVMAtomicOrdering mapToLLVMOrdering(AtomicOrdering Ordering) { 3454 switch (Ordering) { 3455 case AtomicOrdering::NotAtomic: return LLVMAtomicOrderingNotAtomic; 3456 case AtomicOrdering::Unordered: return LLVMAtomicOrderingUnordered; 3457 case AtomicOrdering::Monotonic: return LLVMAtomicOrderingMonotonic; 3458 case AtomicOrdering::Acquire: return LLVMAtomicOrderingAcquire; 3459 case AtomicOrdering::Release: return LLVMAtomicOrderingRelease; 3460 case AtomicOrdering::AcquireRelease: 3461 return LLVMAtomicOrderingAcquireRelease; 3462 case AtomicOrdering::SequentiallyConsistent: 3463 return LLVMAtomicOrderingSequentiallyConsistent; 3464 } 3465 3466 llvm_unreachable("Invalid AtomicOrdering value!"); 3467 } 3468 3469 // TODO: Should this and other atomic instructions support building with 3470 // "syncscope"? 3471 LLVMValueRef LLVMBuildFence(LLVMBuilderRef B, LLVMAtomicOrdering Ordering, 3472 LLVMBool isSingleThread, const char *Name) { 3473 return wrap( 3474 unwrap(B)->CreateFence(mapFromLLVMOrdering(Ordering), 3475 isSingleThread ? SyncScope::SingleThread 3476 : SyncScope::System, 3477 Name)); 3478 } 3479 3480 LLVMValueRef LLVMBuildGEP(LLVMBuilderRef B, LLVMValueRef Pointer, 3481 LLVMValueRef *Indices, unsigned NumIndices, 3482 const char *Name) { 3483 ArrayRef<Value *> IdxList(unwrap(Indices), NumIndices); 3484 Value *Val = unwrap(Pointer); 3485 Type *Ty = 3486 cast<PointerType>(Val->getType()->getScalarType())->getElementType(); 3487 return wrap(unwrap(B)->CreateGEP(Ty, Val, IdxList, Name)); 3488 } 3489 3490 LLVMValueRef LLVMBuildGEP2(LLVMBuilderRef B, LLVMTypeRef Ty, 3491 LLVMValueRef Pointer, LLVMValueRef *Indices, 3492 unsigned NumIndices, const char *Name) { 3493 ArrayRef<Value *> IdxList(unwrap(Indices), NumIndices); 3494 return wrap(unwrap(B)->CreateGEP(unwrap(Ty), unwrap(Pointer), IdxList, Name)); 3495 } 3496 3497 LLVMValueRef LLVMBuildInBoundsGEP(LLVMBuilderRef B, LLVMValueRef Pointer, 3498 LLVMValueRef *Indices, unsigned NumIndices, 3499 const char *Name) { 3500 ArrayRef<Value *> IdxList(unwrap(Indices), NumIndices); 3501 Value *Val = unwrap(Pointer); 3502 Type *Ty = 3503 cast<PointerType>(Val->getType()->getScalarType())->getElementType(); 3504 return wrap(unwrap(B)->CreateInBoundsGEP(Ty, Val, IdxList, Name)); 3505 } 3506 3507 LLVMValueRef LLVMBuildInBoundsGEP2(LLVMBuilderRef B, LLVMTypeRef Ty, 3508 LLVMValueRef Pointer, LLVMValueRef *Indices, 3509 unsigned NumIndices, const char *Name) { 3510 ArrayRef<Value *> IdxList(unwrap(Indices), NumIndices); 3511 return wrap( 3512 unwrap(B)->CreateInBoundsGEP(unwrap(Ty), unwrap(Pointer), IdxList, Name)); 3513 } 3514 3515 LLVMValueRef LLVMBuildStructGEP(LLVMBuilderRef B, LLVMValueRef Pointer, 3516 unsigned Idx, const char *Name) { 3517 Value *Val = unwrap(Pointer); 3518 Type *Ty = 3519 cast<PointerType>(Val->getType()->getScalarType())->getElementType(); 3520 return wrap(unwrap(B)->CreateStructGEP(Ty, Val, Idx, Name)); 3521 } 3522 3523 LLVMValueRef LLVMBuildStructGEP2(LLVMBuilderRef B, LLVMTypeRef Ty, 3524 LLVMValueRef Pointer, unsigned Idx, 3525 const char *Name) { 3526 return wrap( 3527 unwrap(B)->CreateStructGEP(unwrap(Ty), unwrap(Pointer), Idx, Name)); 3528 } 3529 3530 LLVMValueRef LLVMBuildGlobalString(LLVMBuilderRef B, const char *Str, 3531 const char *Name) { 3532 return wrap(unwrap(B)->CreateGlobalString(Str, Name)); 3533 } 3534 3535 LLVMValueRef LLVMBuildGlobalStringPtr(LLVMBuilderRef B, const char *Str, 3536 const char *Name) { 3537 return wrap(unwrap(B)->CreateGlobalStringPtr(Str, Name)); 3538 } 3539 3540 LLVMBool LLVMGetVolatile(LLVMValueRef MemAccessInst) { 3541 Value *P = unwrap<Value>(MemAccessInst); 3542 if (LoadInst *LI = dyn_cast<LoadInst>(P)) 3543 return LI->isVolatile(); 3544 return cast<StoreInst>(P)->isVolatile(); 3545 } 3546 3547 void LLVMSetVolatile(LLVMValueRef MemAccessInst, LLVMBool isVolatile) { 3548 Value *P = unwrap<Value>(MemAccessInst); 3549 if (LoadInst *LI = dyn_cast<LoadInst>(P)) 3550 return LI->setVolatile(isVolatile); 3551 return cast<StoreInst>(P)->setVolatile(isVolatile); 3552 } 3553 3554 LLVMAtomicOrdering LLVMGetOrdering(LLVMValueRef MemAccessInst) { 3555 Value *P = unwrap<Value>(MemAccessInst); 3556 AtomicOrdering O; 3557 if (LoadInst *LI = dyn_cast<LoadInst>(P)) 3558 O = LI->getOrdering(); 3559 else 3560 O = cast<StoreInst>(P)->getOrdering(); 3561 return mapToLLVMOrdering(O); 3562 } 3563 3564 void LLVMSetOrdering(LLVMValueRef MemAccessInst, LLVMAtomicOrdering Ordering) { 3565 Value *P = unwrap<Value>(MemAccessInst); 3566 AtomicOrdering O = mapFromLLVMOrdering(Ordering); 3567 3568 if (LoadInst *LI = dyn_cast<LoadInst>(P)) 3569 return LI->setOrdering(O); 3570 return cast<StoreInst>(P)->setOrdering(O); 3571 } 3572 3573 /*--.. Casts ...............................................................--*/ 3574 3575 LLVMValueRef LLVMBuildTrunc(LLVMBuilderRef B, LLVMValueRef Val, 3576 LLVMTypeRef DestTy, const char *Name) { 3577 return wrap(unwrap(B)->CreateTrunc(unwrap(Val), unwrap(DestTy), Name)); 3578 } 3579 3580 LLVMValueRef LLVMBuildZExt(LLVMBuilderRef B, LLVMValueRef Val, 3581 LLVMTypeRef DestTy, const char *Name) { 3582 return wrap(unwrap(B)->CreateZExt(unwrap(Val), unwrap(DestTy), Name)); 3583 } 3584 3585 LLVMValueRef LLVMBuildSExt(LLVMBuilderRef B, LLVMValueRef Val, 3586 LLVMTypeRef DestTy, const char *Name) { 3587 return wrap(unwrap(B)->CreateSExt(unwrap(Val), unwrap(DestTy), Name)); 3588 } 3589 3590 LLVMValueRef LLVMBuildFPToUI(LLVMBuilderRef B, LLVMValueRef Val, 3591 LLVMTypeRef DestTy, const char *Name) { 3592 return wrap(unwrap(B)->CreateFPToUI(unwrap(Val), unwrap(DestTy), Name)); 3593 } 3594 3595 LLVMValueRef LLVMBuildFPToSI(LLVMBuilderRef B, LLVMValueRef Val, 3596 LLVMTypeRef DestTy, const char *Name) { 3597 return wrap(unwrap(B)->CreateFPToSI(unwrap(Val), unwrap(DestTy), Name)); 3598 } 3599 3600 LLVMValueRef LLVMBuildUIToFP(LLVMBuilderRef B, LLVMValueRef Val, 3601 LLVMTypeRef DestTy, const char *Name) { 3602 return wrap(unwrap(B)->CreateUIToFP(unwrap(Val), unwrap(DestTy), Name)); 3603 } 3604 3605 LLVMValueRef LLVMBuildSIToFP(LLVMBuilderRef B, LLVMValueRef Val, 3606 LLVMTypeRef DestTy, const char *Name) { 3607 return wrap(unwrap(B)->CreateSIToFP(unwrap(Val), unwrap(DestTy), Name)); 3608 } 3609 3610 LLVMValueRef LLVMBuildFPTrunc(LLVMBuilderRef B, LLVMValueRef Val, 3611 LLVMTypeRef DestTy, const char *Name) { 3612 return wrap(unwrap(B)->CreateFPTrunc(unwrap(Val), unwrap(DestTy), Name)); 3613 } 3614 3615 LLVMValueRef LLVMBuildFPExt(LLVMBuilderRef B, LLVMValueRef Val, 3616 LLVMTypeRef DestTy, const char *Name) { 3617 return wrap(unwrap(B)->CreateFPExt(unwrap(Val), unwrap(DestTy), Name)); 3618 } 3619 3620 LLVMValueRef LLVMBuildPtrToInt(LLVMBuilderRef B, LLVMValueRef Val, 3621 LLVMTypeRef DestTy, const char *Name) { 3622 return wrap(unwrap(B)->CreatePtrToInt(unwrap(Val), unwrap(DestTy), Name)); 3623 } 3624 3625 LLVMValueRef LLVMBuildIntToPtr(LLVMBuilderRef B, LLVMValueRef Val, 3626 LLVMTypeRef DestTy, const char *Name) { 3627 return wrap(unwrap(B)->CreateIntToPtr(unwrap(Val), unwrap(DestTy), Name)); 3628 } 3629 3630 LLVMValueRef LLVMBuildBitCast(LLVMBuilderRef B, LLVMValueRef Val, 3631 LLVMTypeRef DestTy, const char *Name) { 3632 return wrap(unwrap(B)->CreateBitCast(unwrap(Val), unwrap(DestTy), Name)); 3633 } 3634 3635 LLVMValueRef LLVMBuildAddrSpaceCast(LLVMBuilderRef B, LLVMValueRef Val, 3636 LLVMTypeRef DestTy, const char *Name) { 3637 return wrap(unwrap(B)->CreateAddrSpaceCast(unwrap(Val), unwrap(DestTy), Name)); 3638 } 3639 3640 LLVMValueRef LLVMBuildZExtOrBitCast(LLVMBuilderRef B, LLVMValueRef Val, 3641 LLVMTypeRef DestTy, const char *Name) { 3642 return wrap(unwrap(B)->CreateZExtOrBitCast(unwrap(Val), unwrap(DestTy), 3643 Name)); 3644 } 3645 3646 LLVMValueRef LLVMBuildSExtOrBitCast(LLVMBuilderRef B, LLVMValueRef Val, 3647 LLVMTypeRef DestTy, const char *Name) { 3648 return wrap(unwrap(B)->CreateSExtOrBitCast(unwrap(Val), unwrap(DestTy), 3649 Name)); 3650 } 3651 3652 LLVMValueRef LLVMBuildTruncOrBitCast(LLVMBuilderRef B, LLVMValueRef Val, 3653 LLVMTypeRef DestTy, const char *Name) { 3654 return wrap(unwrap(B)->CreateTruncOrBitCast(unwrap(Val), unwrap(DestTy), 3655 Name)); 3656 } 3657 3658 LLVMValueRef LLVMBuildCast(LLVMBuilderRef B, LLVMOpcode Op, LLVMValueRef Val, 3659 LLVMTypeRef DestTy, const char *Name) { 3660 return wrap(unwrap(B)->CreateCast(Instruction::CastOps(map_from_llvmopcode(Op)), unwrap(Val), 3661 unwrap(DestTy), Name)); 3662 } 3663 3664 LLVMValueRef LLVMBuildPointerCast(LLVMBuilderRef B, LLVMValueRef Val, 3665 LLVMTypeRef DestTy, const char *Name) { 3666 return wrap(unwrap(B)->CreatePointerCast(unwrap(Val), unwrap(DestTy), Name)); 3667 } 3668 3669 LLVMValueRef LLVMBuildIntCast2(LLVMBuilderRef B, LLVMValueRef Val, 3670 LLVMTypeRef DestTy, LLVMBool IsSigned, 3671 const char *Name) { 3672 return wrap( 3673 unwrap(B)->CreateIntCast(unwrap(Val), unwrap(DestTy), IsSigned, Name)); 3674 } 3675 3676 LLVMValueRef LLVMBuildIntCast(LLVMBuilderRef B, LLVMValueRef Val, 3677 LLVMTypeRef DestTy, const char *Name) { 3678 return wrap(unwrap(B)->CreateIntCast(unwrap(Val), unwrap(DestTy), 3679 /*isSigned*/true, Name)); 3680 } 3681 3682 LLVMValueRef LLVMBuildFPCast(LLVMBuilderRef B, LLVMValueRef Val, 3683 LLVMTypeRef DestTy, const char *Name) { 3684 return wrap(unwrap(B)->CreateFPCast(unwrap(Val), unwrap(DestTy), Name)); 3685 } 3686 3687 /*--.. Comparisons .........................................................--*/ 3688 3689 LLVMValueRef LLVMBuildICmp(LLVMBuilderRef B, LLVMIntPredicate Op, 3690 LLVMValueRef LHS, LLVMValueRef RHS, 3691 const char *Name) { 3692 return wrap(unwrap(B)->CreateICmp(static_cast<ICmpInst::Predicate>(Op), 3693 unwrap(LHS), unwrap(RHS), Name)); 3694 } 3695 3696 LLVMValueRef LLVMBuildFCmp(LLVMBuilderRef B, LLVMRealPredicate Op, 3697 LLVMValueRef LHS, LLVMValueRef RHS, 3698 const char *Name) { 3699 return wrap(unwrap(B)->CreateFCmp(static_cast<FCmpInst::Predicate>(Op), 3700 unwrap(LHS), unwrap(RHS), Name)); 3701 } 3702 3703 /*--.. Miscellaneous instructions ..........................................--*/ 3704 3705 LLVMValueRef LLVMBuildPhi(LLVMBuilderRef B, LLVMTypeRef Ty, const char *Name) { 3706 return wrap(unwrap(B)->CreatePHI(unwrap(Ty), 0, Name)); 3707 } 3708 3709 LLVMValueRef LLVMBuildCall(LLVMBuilderRef B, LLVMValueRef Fn, 3710 LLVMValueRef *Args, unsigned NumArgs, 3711 const char *Name) { 3712 Value *V = unwrap(Fn); 3713 FunctionType *FnT = 3714 cast<FunctionType>(cast<PointerType>(V->getType())->getElementType()); 3715 3716 return wrap(unwrap(B)->CreateCall(FnT, unwrap(Fn), 3717 makeArrayRef(unwrap(Args), NumArgs), Name)); 3718 } 3719 3720 LLVMValueRef LLVMBuildCall2(LLVMBuilderRef B, LLVMTypeRef Ty, LLVMValueRef Fn, 3721 LLVMValueRef *Args, unsigned NumArgs, 3722 const char *Name) { 3723 FunctionType *FTy = unwrap<FunctionType>(Ty); 3724 return wrap(unwrap(B)->CreateCall(FTy, unwrap(Fn), 3725 makeArrayRef(unwrap(Args), NumArgs), Name)); 3726 } 3727 3728 LLVMValueRef LLVMBuildSelect(LLVMBuilderRef B, LLVMValueRef If, 3729 LLVMValueRef Then, LLVMValueRef Else, 3730 const char *Name) { 3731 return wrap(unwrap(B)->CreateSelect(unwrap(If), unwrap(Then), unwrap(Else), 3732 Name)); 3733 } 3734 3735 LLVMValueRef LLVMBuildVAArg(LLVMBuilderRef B, LLVMValueRef List, 3736 LLVMTypeRef Ty, const char *Name) { 3737 return wrap(unwrap(B)->CreateVAArg(unwrap(List), unwrap(Ty), Name)); 3738 } 3739 3740 LLVMValueRef LLVMBuildExtractElement(LLVMBuilderRef B, LLVMValueRef VecVal, 3741 LLVMValueRef Index, const char *Name) { 3742 return wrap(unwrap(B)->CreateExtractElement(unwrap(VecVal), unwrap(Index), 3743 Name)); 3744 } 3745 3746 LLVMValueRef LLVMBuildInsertElement(LLVMBuilderRef B, LLVMValueRef VecVal, 3747 LLVMValueRef EltVal, LLVMValueRef Index, 3748 const char *Name) { 3749 return wrap(unwrap(B)->CreateInsertElement(unwrap(VecVal), unwrap(EltVal), 3750 unwrap(Index), Name)); 3751 } 3752 3753 LLVMValueRef LLVMBuildShuffleVector(LLVMBuilderRef B, LLVMValueRef V1, 3754 LLVMValueRef V2, LLVMValueRef Mask, 3755 const char *Name) { 3756 return wrap(unwrap(B)->CreateShuffleVector(unwrap(V1), unwrap(V2), 3757 unwrap(Mask), Name)); 3758 } 3759 3760 LLVMValueRef LLVMBuildExtractValue(LLVMBuilderRef B, LLVMValueRef AggVal, 3761 unsigned Index, const char *Name) { 3762 return wrap(unwrap(B)->CreateExtractValue(unwrap(AggVal), Index, Name)); 3763 } 3764 3765 LLVMValueRef LLVMBuildInsertValue(LLVMBuilderRef B, LLVMValueRef AggVal, 3766 LLVMValueRef EltVal, unsigned Index, 3767 const char *Name) { 3768 return wrap(unwrap(B)->CreateInsertValue(unwrap(AggVal), unwrap(EltVal), 3769 Index, Name)); 3770 } 3771 3772 LLVMValueRef LLVMBuildIsNull(LLVMBuilderRef B, LLVMValueRef Val, 3773 const char *Name) { 3774 return wrap(unwrap(B)->CreateIsNull(unwrap(Val), Name)); 3775 } 3776 3777 LLVMValueRef LLVMBuildIsNotNull(LLVMBuilderRef B, LLVMValueRef Val, 3778 const char *Name) { 3779 return wrap(unwrap(B)->CreateIsNotNull(unwrap(Val), Name)); 3780 } 3781 3782 LLVMValueRef LLVMBuildPtrDiff(LLVMBuilderRef B, LLVMValueRef LHS, 3783 LLVMValueRef RHS, const char *Name) { 3784 return wrap(unwrap(B)->CreatePtrDiff(unwrap(LHS), unwrap(RHS), Name)); 3785 } 3786 3787 LLVMValueRef LLVMBuildAtomicRMW(LLVMBuilderRef B,LLVMAtomicRMWBinOp op, 3788 LLVMValueRef PTR, LLVMValueRef Val, 3789 LLVMAtomicOrdering ordering, 3790 LLVMBool singleThread) { 3791 AtomicRMWInst::BinOp intop; 3792 switch (op) { 3793 case LLVMAtomicRMWBinOpXchg: intop = AtomicRMWInst::Xchg; break; 3794 case LLVMAtomicRMWBinOpAdd: intop = AtomicRMWInst::Add; break; 3795 case LLVMAtomicRMWBinOpSub: intop = AtomicRMWInst::Sub; break; 3796 case LLVMAtomicRMWBinOpAnd: intop = AtomicRMWInst::And; break; 3797 case LLVMAtomicRMWBinOpNand: intop = AtomicRMWInst::Nand; break; 3798 case LLVMAtomicRMWBinOpOr: intop = AtomicRMWInst::Or; break; 3799 case LLVMAtomicRMWBinOpXor: intop = AtomicRMWInst::Xor; break; 3800 case LLVMAtomicRMWBinOpMax: intop = AtomicRMWInst::Max; break; 3801 case LLVMAtomicRMWBinOpMin: intop = AtomicRMWInst::Min; break; 3802 case LLVMAtomicRMWBinOpUMax: intop = AtomicRMWInst::UMax; break; 3803 case LLVMAtomicRMWBinOpUMin: intop = AtomicRMWInst::UMin; break; 3804 } 3805 return wrap(unwrap(B)->CreateAtomicRMW(intop, unwrap(PTR), unwrap(Val), 3806 mapFromLLVMOrdering(ordering), singleThread ? SyncScope::SingleThread 3807 : SyncScope::System)); 3808 } 3809 3810 LLVMValueRef LLVMBuildAtomicCmpXchg(LLVMBuilderRef B, LLVMValueRef Ptr, 3811 LLVMValueRef Cmp, LLVMValueRef New, 3812 LLVMAtomicOrdering SuccessOrdering, 3813 LLVMAtomicOrdering FailureOrdering, 3814 LLVMBool singleThread) { 3815 3816 return wrap(unwrap(B)->CreateAtomicCmpXchg(unwrap(Ptr), unwrap(Cmp), 3817 unwrap(New), mapFromLLVMOrdering(SuccessOrdering), 3818 mapFromLLVMOrdering(FailureOrdering), 3819 singleThread ? SyncScope::SingleThread : SyncScope::System)); 3820 } 3821 3822 3823 LLVMBool LLVMIsAtomicSingleThread(LLVMValueRef AtomicInst) { 3824 Value *P = unwrap<Value>(AtomicInst); 3825 3826 if (AtomicRMWInst *I = dyn_cast<AtomicRMWInst>(P)) 3827 return I->getSyncScopeID() == SyncScope::SingleThread; 3828 return cast<AtomicCmpXchgInst>(P)->getSyncScopeID() == 3829 SyncScope::SingleThread; 3830 } 3831 3832 void LLVMSetAtomicSingleThread(LLVMValueRef AtomicInst, LLVMBool NewValue) { 3833 Value *P = unwrap<Value>(AtomicInst); 3834 SyncScope::ID SSID = NewValue ? SyncScope::SingleThread : SyncScope::System; 3835 3836 if (AtomicRMWInst *I = dyn_cast<AtomicRMWInst>(P)) 3837 return I->setSyncScopeID(SSID); 3838 return cast<AtomicCmpXchgInst>(P)->setSyncScopeID(SSID); 3839 } 3840 3841 LLVMAtomicOrdering LLVMGetCmpXchgSuccessOrdering(LLVMValueRef CmpXchgInst) { 3842 Value *P = unwrap<Value>(CmpXchgInst); 3843 return mapToLLVMOrdering(cast<AtomicCmpXchgInst>(P)->getSuccessOrdering()); 3844 } 3845 3846 void LLVMSetCmpXchgSuccessOrdering(LLVMValueRef CmpXchgInst, 3847 LLVMAtomicOrdering Ordering) { 3848 Value *P = unwrap<Value>(CmpXchgInst); 3849 AtomicOrdering O = mapFromLLVMOrdering(Ordering); 3850 3851 return cast<AtomicCmpXchgInst>(P)->setSuccessOrdering(O); 3852 } 3853 3854 LLVMAtomicOrdering LLVMGetCmpXchgFailureOrdering(LLVMValueRef CmpXchgInst) { 3855 Value *P = unwrap<Value>(CmpXchgInst); 3856 return mapToLLVMOrdering(cast<AtomicCmpXchgInst>(P)->getFailureOrdering()); 3857 } 3858 3859 void LLVMSetCmpXchgFailureOrdering(LLVMValueRef CmpXchgInst, 3860 LLVMAtomicOrdering Ordering) { 3861 Value *P = unwrap<Value>(CmpXchgInst); 3862 AtomicOrdering O = mapFromLLVMOrdering(Ordering); 3863 3864 return cast<AtomicCmpXchgInst>(P)->setFailureOrdering(O); 3865 } 3866 3867 /*===-- Module providers --------------------------------------------------===*/ 3868 3869 LLVMModuleProviderRef 3870 LLVMCreateModuleProviderForExistingModule(LLVMModuleRef M) { 3871 return reinterpret_cast<LLVMModuleProviderRef>(M); 3872 } 3873 3874 void LLVMDisposeModuleProvider(LLVMModuleProviderRef MP) { 3875 delete unwrap(MP); 3876 } 3877 3878 3879 /*===-- Memory buffers ----------------------------------------------------===*/ 3880 3881 LLVMBool LLVMCreateMemoryBufferWithContentsOfFile( 3882 const char *Path, 3883 LLVMMemoryBufferRef *OutMemBuf, 3884 char **OutMessage) { 3885 3886 ErrorOr<std::unique_ptr<MemoryBuffer>> MBOrErr = MemoryBuffer::getFile(Path); 3887 if (std::error_code EC = MBOrErr.getError()) { 3888 *OutMessage = strdup(EC.message().c_str()); 3889 return 1; 3890 } 3891 *OutMemBuf = wrap(MBOrErr.get().release()); 3892 return 0; 3893 } 3894 3895 LLVMBool LLVMCreateMemoryBufferWithSTDIN(LLVMMemoryBufferRef *OutMemBuf, 3896 char **OutMessage) { 3897 ErrorOr<std::unique_ptr<MemoryBuffer>> MBOrErr = MemoryBuffer::getSTDIN(); 3898 if (std::error_code EC = MBOrErr.getError()) { 3899 *OutMessage = strdup(EC.message().c_str()); 3900 return 1; 3901 } 3902 *OutMemBuf = wrap(MBOrErr.get().release()); 3903 return 0; 3904 } 3905 3906 LLVMMemoryBufferRef LLVMCreateMemoryBufferWithMemoryRange( 3907 const char *InputData, 3908 size_t InputDataLength, 3909 const char *BufferName, 3910 LLVMBool RequiresNullTerminator) { 3911 3912 return wrap(MemoryBuffer::getMemBuffer(StringRef(InputData, InputDataLength), 3913 StringRef(BufferName), 3914 RequiresNullTerminator).release()); 3915 } 3916 3917 LLVMMemoryBufferRef LLVMCreateMemoryBufferWithMemoryRangeCopy( 3918 const char *InputData, 3919 size_t InputDataLength, 3920 const char *BufferName) { 3921 3922 return wrap( 3923 MemoryBuffer::getMemBufferCopy(StringRef(InputData, InputDataLength), 3924 StringRef(BufferName)).release()); 3925 } 3926 3927 const char *LLVMGetBufferStart(LLVMMemoryBufferRef MemBuf) { 3928 return unwrap(MemBuf)->getBufferStart(); 3929 } 3930 3931 size_t LLVMGetBufferSize(LLVMMemoryBufferRef MemBuf) { 3932 return unwrap(MemBuf)->getBufferSize(); 3933 } 3934 3935 void LLVMDisposeMemoryBuffer(LLVMMemoryBufferRef MemBuf) { 3936 delete unwrap(MemBuf); 3937 } 3938 3939 /*===-- Pass Registry -----------------------------------------------------===*/ 3940 3941 LLVMPassRegistryRef LLVMGetGlobalPassRegistry(void) { 3942 return wrap(PassRegistry::getPassRegistry()); 3943 } 3944 3945 /*===-- Pass Manager ------------------------------------------------------===*/ 3946 3947 LLVMPassManagerRef LLVMCreatePassManager() { 3948 return wrap(new legacy::PassManager()); 3949 } 3950 3951 LLVMPassManagerRef LLVMCreateFunctionPassManagerForModule(LLVMModuleRef M) { 3952 return wrap(new legacy::FunctionPassManager(unwrap(M))); 3953 } 3954 3955 LLVMPassManagerRef LLVMCreateFunctionPassManager(LLVMModuleProviderRef P) { 3956 return LLVMCreateFunctionPassManagerForModule( 3957 reinterpret_cast<LLVMModuleRef>(P)); 3958 } 3959 3960 LLVMBool LLVMRunPassManager(LLVMPassManagerRef PM, LLVMModuleRef M) { 3961 return unwrap<legacy::PassManager>(PM)->run(*unwrap(M)); 3962 } 3963 3964 LLVMBool LLVMInitializeFunctionPassManager(LLVMPassManagerRef FPM) { 3965 return unwrap<legacy::FunctionPassManager>(FPM)->doInitialization(); 3966 } 3967 3968 LLVMBool LLVMRunFunctionPassManager(LLVMPassManagerRef FPM, LLVMValueRef F) { 3969 return unwrap<legacy::FunctionPassManager>(FPM)->run(*unwrap<Function>(F)); 3970 } 3971 3972 LLVMBool LLVMFinalizeFunctionPassManager(LLVMPassManagerRef FPM) { 3973 return unwrap<legacy::FunctionPassManager>(FPM)->doFinalization(); 3974 } 3975 3976 void LLVMDisposePassManager(LLVMPassManagerRef PM) { 3977 delete unwrap(PM); 3978 } 3979 3980 /*===-- Threading ------------------------------------------------------===*/ 3981 3982 LLVMBool LLVMStartMultithreaded() { 3983 return LLVMIsMultithreaded(); 3984 } 3985 3986 void LLVMStopMultithreaded() { 3987 } 3988 3989 LLVMBool LLVMIsMultithreaded() { 3990 return llvm_is_multithreaded(); 3991 } 3992