1 //===--- CodeGenModule.cpp - Emit LLVM Code from ASTs for a Module --------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This coordinates the per-module state used while generating code. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "CodeGenModule.h" 15 #include "CodeGenFunction.h" 16 #include "clang/AST/ASTContext.h" 17 #include "clang/AST/Decl.h" 18 #include "clang/Basic/Diagnostic.h" 19 #include "clang/Basic/LangOptions.h" 20 #include "clang/Basic/SourceManager.h" 21 #include "clang/Basic/TargetInfo.h" 22 #include "llvm/CallingConv.h" 23 #include "llvm/Constants.h" 24 #include "llvm/DerivedTypes.h" 25 #include "llvm/Module.h" 26 #include "llvm/Intrinsics.h" 27 #include "llvm/Analysis/Verifier.h" 28 #include <algorithm> 29 using namespace clang; 30 using namespace CodeGen; 31 32 33 CodeGenModule::CodeGenModule(ASTContext &C, const LangOptions &LO, 34 llvm::Module &M, const llvm::TargetData &TD, 35 Diagnostic &diags) 36 : Context(C), Features(LO), TheModule(M), TheTargetData(TD), Diags(diags), 37 Types(C, M, TD), MemCpyFn(0), MemSetFn(0), CFConstantStringClassRef(0) { 38 //TODO: Make this selectable at runtime 39 Runtime = CreateObjCRuntime(M, 40 getTypes().ConvertType(getContext().IntTy), 41 getTypes().ConvertType(getContext().LongTy)); 42 } 43 44 CodeGenModule::~CodeGenModule() { 45 llvm::Function *ObjCInitFunction = Runtime->ModuleInitFunction(); 46 if (ObjCInitFunction) 47 AddGlobalCtor(ObjCInitFunction); 48 EmitStatics(); 49 EmitGlobalCtors(); 50 EmitAnnotations(); 51 delete Runtime; 52 53 // Run the verifier to check that the generated code is consistent. 54 assert(!verifyModule(TheModule)); 55 } 56 57 /// WarnUnsupported - Print out a warning that codegen doesn't support the 58 /// specified stmt yet. 59 void CodeGenModule::WarnUnsupported(const Stmt *S, const char *Type) { 60 unsigned DiagID = getDiags().getCustomDiagID(Diagnostic::Warning, 61 "cannot codegen this %0 yet"); 62 SourceRange Range = S->getSourceRange(); 63 std::string Msg = Type; 64 getDiags().Report(Context.getFullLoc(S->getLocStart()), DiagID, 65 &Msg, 1, &Range, 1); 66 } 67 68 /// WarnUnsupported - Print out a warning that codegen doesn't support the 69 /// specified decl yet. 70 void CodeGenModule::WarnUnsupported(const Decl *D, const char *Type) { 71 unsigned DiagID = getDiags().getCustomDiagID(Diagnostic::Warning, 72 "cannot codegen this %0 yet"); 73 std::string Msg = Type; 74 getDiags().Report(Context.getFullLoc(D->getLocation()), DiagID, 75 &Msg, 1); 76 } 77 78 /// AddGlobalCtor - Add a function to the list that will be called before 79 /// main() runs. 80 void CodeGenModule::AddGlobalCtor(llvm::Function * Ctor) { 81 // TODO: Type coercion of void()* types. 82 GlobalCtors.push_back(Ctor); 83 } 84 85 /// EmitGlobalCtors - Generates the array of contsturctor functions to be 86 /// called on module load, if any have been registered with AddGlobalCtor. 87 void CodeGenModule::EmitGlobalCtors() { 88 if (GlobalCtors.empty()) return; 89 90 // Get the type of @llvm.global_ctors 91 std::vector<const llvm::Type*> CtorFields; 92 CtorFields.push_back(llvm::IntegerType::get(32)); 93 // Constructor function type 94 std::vector<const llvm::Type*> VoidArgs; 95 llvm::FunctionType* CtorFuncTy = 96 llvm::FunctionType::get(llvm::Type::VoidTy, VoidArgs, false); 97 98 // i32, function type pair 99 const llvm::Type *FPType = llvm::PointerType::getUnqual(CtorFuncTy); 100 llvm::StructType* CtorStructTy = 101 llvm::StructType::get(llvm::Type::Int32Ty, FPType, NULL); 102 // Array of fields 103 llvm::ArrayType* GlobalCtorsTy = 104 llvm::ArrayType::get(CtorStructTy, GlobalCtors.size()); 105 106 // Define the global variable 107 llvm::GlobalVariable *GlobalCtorsVal = 108 new llvm::GlobalVariable(GlobalCtorsTy, false, 109 llvm::GlobalValue::AppendingLinkage, 110 (llvm::Constant*)0, "llvm.global_ctors", 111 &TheModule); 112 113 // Populate the array 114 std::vector<llvm::Constant*> CtorValues; 115 llvm::Constant *MagicNumber = 116 llvm::ConstantInt::get(llvm::Type::Int32Ty, 65535, false); 117 std::vector<llvm::Constant*> StructValues; 118 for (std::vector<llvm::Constant*>::iterator I = GlobalCtors.begin(), 119 E = GlobalCtors.end(); I != E; ++I) { 120 StructValues.clear(); 121 StructValues.push_back(MagicNumber); 122 StructValues.push_back(*I); 123 124 CtorValues.push_back(llvm::ConstantStruct::get(CtorStructTy, StructValues)); 125 } 126 127 GlobalCtorsVal->setInitializer(llvm::ConstantArray::get(GlobalCtorsTy, 128 CtorValues)); 129 } 130 131 132 133 void CodeGenModule::EmitAnnotations() { 134 if (Annotations.empty()) 135 return; 136 137 // Create a new global variable for the ConstantStruct in the Module. 138 llvm::Constant *Array = 139 llvm::ConstantArray::get(llvm::ArrayType::get(Annotations[0]->getType(), 140 Annotations.size()), 141 Annotations); 142 llvm::GlobalValue *gv = 143 new llvm::GlobalVariable(Array->getType(), false, 144 llvm::GlobalValue::AppendingLinkage, Array, 145 "llvm.global.annotations", &TheModule); 146 gv->setSection("llvm.metadata"); 147 } 148 149 /// ReplaceMapValuesWith - This is a really slow and bad function that 150 /// searches for any entries in GlobalDeclMap that point to OldVal, changing 151 /// them to point to NewVal. This is badbadbad, FIXME! 152 void CodeGenModule::ReplaceMapValuesWith(llvm::Constant *OldVal, 153 llvm::Constant *NewVal) { 154 for (llvm::DenseMap<const Decl*, llvm::Constant*>::iterator 155 I = GlobalDeclMap.begin(), E = GlobalDeclMap.end(); I != E; ++I) 156 if (I->second == OldVal) I->second = NewVal; 157 } 158 159 160 llvm::Constant *CodeGenModule::GetAddrOfFunctionDecl(const FunctionDecl *D, 161 bool isDefinition) { 162 // See if it is already in the map. If so, just return it. 163 llvm::Constant *&Entry = GlobalDeclMap[D]; 164 if (Entry) return Entry; 165 166 const llvm::Type *Ty = getTypes().ConvertType(D->getType()); 167 168 // Check to see if the function already exists. 169 llvm::Function *F = getModule().getFunction(D->getName()); 170 const llvm::FunctionType *FTy = cast<llvm::FunctionType>(Ty); 171 172 // If it doesn't already exist, just create and return an entry. 173 if (F == 0) { 174 // FIXME: param attributes for sext/zext etc. 175 F = llvm::Function::Create(FTy, llvm::Function::ExternalLinkage, 176 D->getName(), &getModule()); 177 178 // Set the appropriate calling convention for the Function. 179 if (D->getAttr<FastCallAttr>()) 180 F->setCallingConv(llvm::CallingConv::Fast); 181 return Entry = F; 182 } 183 184 // If the pointer type matches, just return it. 185 llvm::Type *PFTy = llvm::PointerType::getUnqual(Ty); 186 if (PFTy == F->getType()) return Entry = F; 187 188 // If this isn't a definition, just return it casted to the right type. 189 if (!isDefinition) 190 return Entry = llvm::ConstantExpr::getBitCast(F, PFTy); 191 192 // Otherwise, we have a definition after a prototype with the wrong type. 193 // F is the Function* for the one with the wrong type, we must make a new 194 // Function* and update everything that used F (a declaration) with the new 195 // Function* (which will be a definition). 196 // 197 // This happens if there is a prototype for a function (e.g. "int f()") and 198 // then a definition of a different type (e.g. "int f(int x)"). Start by 199 // making a new function of the correct type, RAUW, then steal the name. 200 llvm::Function *NewFn = llvm::Function::Create(FTy, 201 llvm::Function::ExternalLinkage, 202 "", &getModule()); 203 NewFn->takeName(F); 204 205 // Replace uses of F with the Function we will endow with a body. 206 llvm::Constant *NewPtrForOldDecl = 207 llvm::ConstantExpr::getBitCast(NewFn, F->getType()); 208 F->replaceAllUsesWith(NewPtrForOldDecl); 209 210 // FIXME: Update the globaldeclmap for the previous decl of this name. We 211 // really want a way to walk all of these, but we don't have it yet. This 212 // is incredibly slow! 213 ReplaceMapValuesWith(F, NewPtrForOldDecl); 214 215 // Ok, delete the old function now, which is dead. 216 assert(F->isDeclaration() && "Shouldn't replace non-declaration"); 217 F->eraseFromParent(); 218 219 // Return the new function which has the right type. 220 return Entry = NewFn; 221 } 222 223 static bool IsZeroElementArray(const llvm::Type *Ty) { 224 if (const llvm::ArrayType *ATy = dyn_cast<llvm::ArrayType>(Ty)) 225 return ATy->getNumElements() == 0; 226 return false; 227 } 228 229 llvm::Constant *CodeGenModule::GetAddrOfGlobalVar(const VarDecl *D, 230 bool isDefinition) { 231 assert(D->hasGlobalStorage() && "Not a global variable"); 232 233 // See if it is already in the map. 234 llvm::Constant *&Entry = GlobalDeclMap[D]; 235 if (Entry) return Entry; 236 237 QualType ASTTy = D->getType(); 238 const llvm::Type *Ty = getTypes().ConvertTypeForMem(ASTTy); 239 240 // Check to see if the global already exists. 241 llvm::GlobalVariable *GV = getModule().getGlobalVariable(D->getName(), true); 242 243 // If it doesn't already exist, just create and return an entry. 244 if (GV == 0) { 245 return Entry = new llvm::GlobalVariable(Ty, false, 246 llvm::GlobalValue::ExternalLinkage, 247 0, D->getName(), &getModule(), 0, 248 ASTTy.getAddressSpace()); 249 } 250 251 // If the pointer type matches, just return it. 252 llvm::Type *PTy = llvm::PointerType::getUnqual(Ty); 253 if (PTy == GV->getType()) return Entry = GV; 254 255 // If this isn't a definition, just return it casted to the right type. 256 if (!isDefinition) 257 return Entry = llvm::ConstantExpr::getBitCast(GV, PTy); 258 259 260 // Otherwise, we have a definition after a prototype with the wrong type. 261 // GV is the GlobalVariable* for the one with the wrong type, we must make a 262 /// new GlobalVariable* and update everything that used GV (a declaration) 263 // with the new GlobalVariable* (which will be a definition). 264 // 265 // This happens if there is a prototype for a global (e.g. "extern int x[];") 266 // and then a definition of a different type (e.g. "int x[10];"). Start by 267 // making a new global of the correct type, RAUW, then steal the name. 268 llvm::GlobalVariable *NewGV = 269 new llvm::GlobalVariable(Ty, false, llvm::GlobalValue::ExternalLinkage, 270 0, D->getName(), &getModule(), 0, 271 ASTTy.getAddressSpace()); 272 NewGV->takeName(GV); 273 274 // Replace uses of GV with the globalvalue we will endow with a body. 275 llvm::Constant *NewPtrForOldDecl = 276 llvm::ConstantExpr::getBitCast(NewGV, GV->getType()); 277 GV->replaceAllUsesWith(NewPtrForOldDecl); 278 279 // FIXME: Update the globaldeclmap for the previous decl of this name. We 280 // really want a way to walk all of these, but we don't have it yet. This 281 // is incredibly slow! 282 ReplaceMapValuesWith(GV, NewPtrForOldDecl); 283 284 // Verify that GV was a declaration or something like x[] which turns into 285 // [0 x type]. 286 assert((GV->isDeclaration() || 287 IsZeroElementArray(GV->getType()->getElementType())) && 288 "Shouldn't replace non-declaration"); 289 290 // Ok, delete the old global now, which is dead. 291 GV->eraseFromParent(); 292 293 // Return the new global which has the right type. 294 return Entry = NewGV; 295 } 296 297 298 void CodeGenModule::EmitObjCMethod(const ObjCMethodDecl *OMD) { 299 // If this is not a prototype, emit the body. 300 if (OMD->getBody()) 301 CodeGenFunction(*this).GenerateObjCMethod(OMD); 302 } 303 304 void CodeGenModule::EmitFunction(const FunctionDecl *FD) { 305 // If this is not a prototype, emit the body. 306 if (FD->getBody()) { 307 // If the function is a static, defer code generation until later so we can 308 // easily omit unused statics. 309 if (FD->getStorageClass() == FunctionDecl::Static) { 310 // We need to check the Module here to see if GetAddrOfFunctionDecl() has 311 // already added this function to the Module because the address of the 312 // function's prototype was taken. If this is the case, call 313 // GetAddrOfFunctionDecl to insert the static FunctionDecl into the used 314 // GlobalDeclsMap, so that EmitStatics will generate code for it later. 315 // 316 // Example: 317 // static int foo(); 318 // int bar() { return foo(); } 319 // static int foo() { return 5; } 320 if (getModule().getFunction(FD->getName())) 321 GetAddrOfFunctionDecl(FD, true); 322 323 StaticDecls.push_back(FD); 324 return; 325 } 326 CodeGenFunction(*this).GenerateCode(FD); 327 } 328 } 329 330 void CodeGenModule::EmitStatics() { 331 // Emit code for each used static decl encountered. Since a previously unused 332 // static decl may become used during the generation of code for a static 333 // function, iterate until no changes are made. 334 bool Changed; 335 do { 336 Changed = false; 337 for (unsigned i = 0, e = StaticDecls.size(); i != e; ++i) { 338 // Check the map of used decls for our static. If not found, continue. 339 const Decl *D = StaticDecls[i]; 340 if (!GlobalDeclMap.count(D)) 341 continue; 342 343 // If this is a function decl, generate code for the static function if it 344 // has a body. Otherwise, we must have a var decl for a static global 345 // variable. 346 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) { 347 if (FD->getBody()) 348 CodeGenFunction(*this).GenerateCode(FD); 349 } else { 350 EmitGlobalVarInit(cast<VarDecl>(D)); 351 } 352 // Erase the used decl from the list. 353 StaticDecls[i] = StaticDecls.back(); 354 StaticDecls.pop_back(); 355 --i; 356 --e; 357 358 // Remember that we made a change. 359 Changed = true; 360 } 361 } while (Changed); 362 } 363 364 llvm::Constant *CodeGenModule::EmitGlobalInit(const Expr *Expr) { 365 return EmitConstantExpr(Expr); 366 } 367 368 /// EmitAnnotateAttr - Generate the llvm::ConstantStruct which contains the 369 /// annotation information for a given GlobalValue. The annotation struct is 370 /// {i8 *, i8 *, i8 *, i32}. The first field is a constant expression, the 371 /// GlobalValue being annotated. The second filed is thee constant string 372 /// created from the AnnotateAttr's annotation. The third field is a constant 373 /// string containing the name of the translation unit. The fourth field is 374 /// the line number in the file of the annotated value declaration. 375 /// 376 /// FIXME: this does not unique the annotation string constants, as llvm-gcc 377 /// appears to. 378 /// 379 llvm::Constant *CodeGenModule::EmitAnnotateAttr(llvm::GlobalValue *GV, 380 const AnnotateAttr *AA, 381 unsigned LineNo) { 382 llvm::Module *M = &getModule(); 383 384 // get [N x i8] constants for the annotation string, and the filename string 385 // which are the 2nd and 3rd elements of the global annotation structure. 386 const llvm::Type *SBP = llvm::PointerType::getUnqual(llvm::Type::Int8Ty); 387 llvm::Constant *anno = llvm::ConstantArray::get(AA->getAnnotation(), true); 388 llvm::Constant *unit = llvm::ConstantArray::get(M->getModuleIdentifier(), 389 true); 390 391 // Get the two global values corresponding to the ConstantArrays we just 392 // created to hold the bytes of the strings. 393 llvm::GlobalValue *annoGV = 394 new llvm::GlobalVariable(anno->getType(), false, 395 llvm::GlobalValue::InternalLinkage, anno, 396 GV->getName() + ".str", M); 397 // translation unit name string, emitted into the llvm.metadata section. 398 llvm::GlobalValue *unitGV = 399 new llvm::GlobalVariable(unit->getType(), false, 400 llvm::GlobalValue::InternalLinkage, unit, ".str", M); 401 402 // Create the ConstantStruct that is the global annotion. 403 llvm::Constant *Fields[4] = { 404 llvm::ConstantExpr::getBitCast(GV, SBP), 405 llvm::ConstantExpr::getBitCast(annoGV, SBP), 406 llvm::ConstantExpr::getBitCast(unitGV, SBP), 407 llvm::ConstantInt::get(llvm::Type::Int32Ty, LineNo) 408 }; 409 return llvm::ConstantStruct::get(Fields, 4, false); 410 } 411 412 void CodeGenModule::EmitGlobalVar(const VarDecl *D) { 413 // If the VarDecl is a static, defer code generation until later so we can 414 // easily omit unused statics. 415 if (D->getStorageClass() == VarDecl::Static) { 416 StaticDecls.push_back(D); 417 return; 418 } 419 420 // If this is just a forward declaration of the variable, don't emit it now, 421 // allow it to be emitted lazily on its first use. 422 if (D->getStorageClass() == VarDecl::Extern && D->getInit() == 0) 423 return; 424 425 EmitGlobalVarInit(D); 426 } 427 428 void CodeGenModule::EmitGlobalVarInit(const VarDecl *D) { 429 // Get the global, forcing it to be a direct reference. 430 llvm::GlobalVariable *GV = 431 cast<llvm::GlobalVariable>(GetAddrOfGlobalVar(D, true)); 432 433 // Convert the initializer, or use zero if appropriate. 434 llvm::Constant *Init = 0; 435 if (D->getInit() == 0) { 436 Init = llvm::Constant::getNullValue(GV->getType()->getElementType()); 437 } else if (D->getType()->isIntegerType()) { 438 llvm::APSInt Value(static_cast<uint32_t>( 439 getContext().getTypeSize(D->getInit()->getType()))); 440 if (D->getInit()->isIntegerConstantExpr(Value, Context)) 441 Init = llvm::ConstantInt::get(Value); 442 } 443 444 if (!Init) 445 Init = EmitGlobalInit(D->getInit()); 446 447 if (const AnnotateAttr *AA = D->getAttr<AnnotateAttr>()) { 448 SourceManager &SM = Context.getSourceManager(); 449 AddAnnotation(EmitAnnotateAttr(GV, AA, 450 SM.getLogicalLineNumber(D->getLocation()))); 451 } 452 453 assert(GV->getType()->getElementType() == Init->getType() && 454 "Initializer codegen type mismatch!"); 455 GV->setInitializer(Init); 456 457 if (const VisibilityAttr *attr = D->getAttr<VisibilityAttr>()) 458 GV->setVisibility(attr->getVisibility()); 459 // FIXME: else handle -fvisibility 460 461 // Set the llvm linkage type as appropriate. 462 if (D->getStorageClass() == VarDecl::Static) 463 GV->setLinkage(llvm::Function::InternalLinkage); 464 else if (D->getAttr<DLLImportAttr>()) 465 GV->setLinkage(llvm::Function::DLLImportLinkage); 466 else if (D->getAttr<DLLExportAttr>()) 467 GV->setLinkage(llvm::Function::DLLExportLinkage); 468 else if (D->getAttr<WeakAttr>()) 469 GV->setLinkage(llvm::GlobalVariable::WeakLinkage); 470 else { 471 // FIXME: This isn't right. This should handle common linkage and other 472 // stuff. 473 switch (D->getStorageClass()) { 474 case VarDecl::Static: assert(0 && "This case handled above"); 475 case VarDecl::Auto: 476 case VarDecl::Register: 477 assert(0 && "Can't have auto or register globals"); 478 case VarDecl::None: 479 if (!D->getInit()) 480 GV->setLinkage(llvm::GlobalVariable::WeakLinkage); 481 break; 482 case VarDecl::Extern: 483 case VarDecl::PrivateExtern: 484 // todo: common 485 break; 486 } 487 } 488 } 489 490 /// EmitGlobalVarDeclarator - Emit all the global vars attached to the specified 491 /// declarator chain. 492 void CodeGenModule::EmitGlobalVarDeclarator(const VarDecl *D) { 493 for (; D; D = cast_or_null<VarDecl>(D->getNextDeclarator())) 494 if (D->isFileVarDecl()) 495 EmitGlobalVar(D); 496 } 497 498 void CodeGenModule::UpdateCompletedType(const TagDecl *TD) { 499 // Make sure that this type is translated. 500 Types.UpdateCompletedType(TD); 501 } 502 503 504 /// getBuiltinLibFunction 505 llvm::Function *CodeGenModule::getBuiltinLibFunction(unsigned BuiltinID) { 506 if (BuiltinID > BuiltinFunctions.size()) 507 BuiltinFunctions.resize(BuiltinID); 508 509 // Cache looked up functions. Since builtin id #0 is invalid we don't reserve 510 // a slot for it. 511 assert(BuiltinID && "Invalid Builtin ID"); 512 llvm::Function *&FunctionSlot = BuiltinFunctions[BuiltinID-1]; 513 if (FunctionSlot) 514 return FunctionSlot; 515 516 assert(Context.BuiltinInfo.isLibFunction(BuiltinID) && "isn't a lib fn"); 517 518 // Get the name, skip over the __builtin_ prefix. 519 const char *Name = Context.BuiltinInfo.GetName(BuiltinID)+10; 520 521 // Get the type for the builtin. 522 QualType Type = Context.BuiltinInfo.GetBuiltinType(BuiltinID, Context); 523 const llvm::FunctionType *Ty = 524 cast<llvm::FunctionType>(getTypes().ConvertType(Type)); 525 526 // FIXME: This has a serious problem with code like this: 527 // void abs() {} 528 // ... __builtin_abs(x); 529 // The two versions of abs will collide. The fix is for the builtin to win, 530 // and for the existing one to be turned into a constantexpr cast of the 531 // builtin. In the case where the existing one is a static function, it 532 // should just be renamed. 533 if (llvm::Function *Existing = getModule().getFunction(Name)) { 534 if (Existing->getFunctionType() == Ty && Existing->hasExternalLinkage()) 535 return FunctionSlot = Existing; 536 assert(Existing == 0 && "FIXME: Name collision"); 537 } 538 539 // FIXME: param attributes for sext/zext etc. 540 return FunctionSlot = 541 llvm::Function::Create(Ty, llvm::Function::ExternalLinkage, Name, 542 &getModule()); 543 } 544 545 llvm::Function *CodeGenModule::getIntrinsic(unsigned IID,const llvm::Type **Tys, 546 unsigned NumTys) { 547 return llvm::Intrinsic::getDeclaration(&getModule(), 548 (llvm::Intrinsic::ID)IID, Tys, NumTys); 549 } 550 551 llvm::Function *CodeGenModule::getMemCpyFn() { 552 if (MemCpyFn) return MemCpyFn; 553 llvm::Intrinsic::ID IID; 554 switch (Context.Target.getPointerWidth(0)) { 555 default: assert(0 && "Unknown ptr width"); 556 case 32: IID = llvm::Intrinsic::memcpy_i32; break; 557 case 64: IID = llvm::Intrinsic::memcpy_i64; break; 558 } 559 return MemCpyFn = getIntrinsic(IID); 560 } 561 562 llvm::Function *CodeGenModule::getMemSetFn() { 563 if (MemSetFn) return MemSetFn; 564 llvm::Intrinsic::ID IID; 565 switch (Context.Target.getPointerWidth(0)) { 566 default: assert(0 && "Unknown ptr width"); 567 case 32: IID = llvm::Intrinsic::memset_i32; break; 568 case 64: IID = llvm::Intrinsic::memset_i64; break; 569 } 570 return MemSetFn = getIntrinsic(IID); 571 } 572 573 llvm::Constant *CodeGenModule:: 574 GetAddrOfConstantCFString(const std::string &str) { 575 llvm::StringMapEntry<llvm::Constant *> &Entry = 576 CFConstantStringMap.GetOrCreateValue(&str[0], &str[str.length()]); 577 578 if (Entry.getValue()) 579 return Entry.getValue(); 580 581 std::vector<llvm::Constant*> Fields; 582 583 if (!CFConstantStringClassRef) { 584 const llvm::Type *Ty = getTypes().ConvertType(getContext().IntTy); 585 Ty = llvm::ArrayType::get(Ty, 0); 586 587 CFConstantStringClassRef = 588 new llvm::GlobalVariable(Ty, false, 589 llvm::GlobalVariable::ExternalLinkage, 0, 590 "__CFConstantStringClassReference", 591 &getModule()); 592 } 593 594 // Class pointer. 595 llvm::Constant *Zero = llvm::Constant::getNullValue(llvm::Type::Int32Ty); 596 llvm::Constant *Zeros[] = { Zero, Zero }; 597 llvm::Constant *C = 598 llvm::ConstantExpr::getGetElementPtr(CFConstantStringClassRef, Zeros, 2); 599 Fields.push_back(C); 600 601 // Flags. 602 const llvm::Type *Ty = getTypes().ConvertType(getContext().IntTy); 603 Fields.push_back(llvm::ConstantInt::get(Ty, 1992)); 604 605 // String pointer. 606 C = llvm::ConstantArray::get(str); 607 C = new llvm::GlobalVariable(C->getType(), true, 608 llvm::GlobalValue::InternalLinkage, 609 C, ".str", &getModule()); 610 611 C = llvm::ConstantExpr::getGetElementPtr(C, Zeros, 2); 612 Fields.push_back(C); 613 614 // String length. 615 Ty = getTypes().ConvertType(getContext().LongTy); 616 Fields.push_back(llvm::ConstantInt::get(Ty, str.length())); 617 618 // The struct. 619 Ty = getTypes().ConvertType(getContext().getCFConstantStringType()); 620 C = llvm::ConstantStruct::get(cast<llvm::StructType>(Ty), Fields); 621 llvm::GlobalVariable *GV = 622 new llvm::GlobalVariable(C->getType(), true, 623 llvm::GlobalVariable::InternalLinkage, 624 C, "", &getModule()); 625 GV->setSection("__DATA,__cfstring"); 626 Entry.setValue(GV); 627 return GV; 628 } 629 630 /// GenerateWritableString -- Creates storage for a string literal. 631 static llvm::Constant *GenerateStringLiteral(const std::string &str, 632 bool constant, 633 CodeGenModule &CGM) { 634 // Create Constant for this string literal 635 llvm::Constant *C=llvm::ConstantArray::get(str); 636 637 // Create a global variable for this string 638 C = new llvm::GlobalVariable(C->getType(), constant, 639 llvm::GlobalValue::InternalLinkage, 640 C, ".str", &CGM.getModule()); 641 return C; 642 } 643 644 /// CodeGenModule::GetAddrOfConstantString -- returns a pointer to the character 645 /// array containing the literal. The result is pointer to array type. 646 llvm::Constant *CodeGenModule::GetAddrOfConstantString(const std::string &str) { 647 // Don't share any string literals if writable-strings is turned on. 648 if (Features.WritableStrings) 649 return GenerateStringLiteral(str, false, *this); 650 651 llvm::StringMapEntry<llvm::Constant *> &Entry = 652 ConstantStringMap.GetOrCreateValue(&str[0], &str[str.length()]); 653 654 if (Entry.getValue()) 655 return Entry.getValue(); 656 657 // Create a global variable for this. 658 llvm::Constant *C = GenerateStringLiteral(str, true, *this); 659 Entry.setValue(C); 660 return C; 661 } 662