1 //===--- CGDebugInfo.cpp - Emit Debug Information 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 debug information generation while generating code. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "CGDebugInfo.h" 15 #include "CodeGenFunction.h" 16 #include "CodeGenModule.h" 17 #include "CGBlocks.h" 18 #include "clang/AST/ASTContext.h" 19 #include "clang/AST/DeclFriend.h" 20 #include "clang/AST/DeclObjC.h" 21 #include "clang/AST/DeclTemplate.h" 22 #include "clang/AST/Expr.h" 23 #include "clang/AST/RecordLayout.h" 24 #include "clang/Basic/SourceManager.h" 25 #include "clang/Basic/FileManager.h" 26 #include "clang/Basic/Version.h" 27 #include "clang/Frontend/CodeGenOptions.h" 28 #include "llvm/Constants.h" 29 #include "llvm/DerivedTypes.h" 30 #include "llvm/Instructions.h" 31 #include "llvm/Intrinsics.h" 32 #include "llvm/Module.h" 33 #include "llvm/ADT/StringExtras.h" 34 #include "llvm/ADT/SmallVector.h" 35 #include "llvm/Support/Dwarf.h" 36 #include "llvm/Support/FileSystem.h" 37 #include "llvm/Target/TargetData.h" 38 using namespace clang; 39 using namespace clang::CodeGen; 40 41 CGDebugInfo::CGDebugInfo(CodeGenModule &CGM) 42 : CGM(CGM), DBuilder(CGM.getModule()), 43 BlockLiteralGenericSet(false) { 44 CreateCompileUnit(); 45 } 46 47 CGDebugInfo::~CGDebugInfo() { 48 assert(LexicalBlockStack.empty() && 49 "Region stack mismatch, stack not empty!"); 50 } 51 52 void CGDebugInfo::setLocation(SourceLocation Loc) { 53 // If the new location isn't valid return. 54 if (!Loc.isValid()) return; 55 56 CurLoc = CGM.getContext().getSourceManager().getExpansionLoc(Loc); 57 58 // If we've changed files in the middle of a lexical scope go ahead 59 // and create a new lexical scope with file node if it's different 60 // from the one in the scope. 61 if (LexicalBlockStack.empty()) return; 62 63 SourceManager &SM = CGM.getContext().getSourceManager(); 64 PresumedLoc PCLoc = SM.getPresumedLoc(CurLoc); 65 PresumedLoc PPLoc = SM.getPresumedLoc(PrevLoc); 66 67 if (PCLoc.isInvalid() || PPLoc.isInvalid() || 68 !strcmp(PPLoc.getFilename(), PCLoc.getFilename())) 69 return; 70 71 llvm::MDNode *LB = LexicalBlockStack.back(); 72 llvm::DIScope Scope = llvm::DIScope(LB); 73 if (Scope.isLexicalBlockFile()) { 74 llvm::DILexicalBlockFile LBF = llvm::DILexicalBlockFile(LB); 75 llvm::DIDescriptor D 76 = DBuilder.createLexicalBlockFile(LBF.getScope(), 77 getOrCreateFile(CurLoc)); 78 llvm::MDNode *N = D; 79 LexicalBlockStack.pop_back(); 80 LexicalBlockStack.push_back(N); 81 } else if (Scope.isLexicalBlock()) { 82 llvm::DIDescriptor D 83 = DBuilder.createLexicalBlockFile(Scope, getOrCreateFile(CurLoc)); 84 llvm::MDNode *N = D; 85 LexicalBlockStack.pop_back(); 86 LexicalBlockStack.push_back(N); 87 } 88 } 89 90 /// getContextDescriptor - Get context info for the decl. 91 llvm::DIDescriptor CGDebugInfo::getContextDescriptor(const Decl *Context) { 92 if (!Context) 93 return TheCU; 94 95 llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator 96 I = RegionMap.find(Context); 97 if (I != RegionMap.end()) 98 return llvm::DIDescriptor(dyn_cast_or_null<llvm::MDNode>(&*I->second)); 99 100 // Check namespace. 101 if (const NamespaceDecl *NSDecl = dyn_cast<NamespaceDecl>(Context)) 102 return llvm::DIDescriptor(getOrCreateNameSpace(NSDecl)); 103 104 if (const RecordDecl *RDecl = dyn_cast<RecordDecl>(Context)) { 105 if (!RDecl->isDependentType()) { 106 llvm::DIType Ty = getOrCreateType(CGM.getContext().getTypeDeclType(RDecl), 107 getOrCreateMainFile()); 108 return llvm::DIDescriptor(Ty); 109 } 110 } 111 return TheCU; 112 } 113 114 /// getFunctionName - Get function name for the given FunctionDecl. If the 115 /// name is constructred on demand (e.g. C++ destructor) then the name 116 /// is stored on the side. 117 StringRef CGDebugInfo::getFunctionName(const FunctionDecl *FD) { 118 assert (FD && "Invalid FunctionDecl!"); 119 IdentifierInfo *FII = FD->getIdentifier(); 120 FunctionTemplateSpecializationInfo *Info 121 = FD->getTemplateSpecializationInfo(); 122 if (!Info && FII) 123 return FII->getName(); 124 125 // Otherwise construct human readable name for debug info. 126 std::string NS = FD->getNameAsString(); 127 128 // Add any template specialization args. 129 if (Info) { 130 const TemplateArgumentList *TArgs = Info->TemplateArguments; 131 const TemplateArgument *Args = TArgs->data(); 132 unsigned NumArgs = TArgs->size(); 133 PrintingPolicy Policy(CGM.getLangOpts()); 134 NS += TemplateSpecializationType::PrintTemplateArgumentList(Args, 135 NumArgs, 136 Policy); 137 } 138 139 // Copy this name on the side and use its reference. 140 char *StrPtr = DebugInfoNames.Allocate<char>(NS.length()); 141 memcpy(StrPtr, NS.data(), NS.length()); 142 return StringRef(StrPtr, NS.length()); 143 } 144 145 StringRef CGDebugInfo::getObjCMethodName(const ObjCMethodDecl *OMD) { 146 SmallString<256> MethodName; 147 llvm::raw_svector_ostream OS(MethodName); 148 OS << (OMD->isInstanceMethod() ? '-' : '+') << '['; 149 const DeclContext *DC = OMD->getDeclContext(); 150 if (const ObjCImplementationDecl *OID = 151 dyn_cast<const ObjCImplementationDecl>(DC)) { 152 OS << OID->getName(); 153 } else if (const ObjCInterfaceDecl *OID = 154 dyn_cast<const ObjCInterfaceDecl>(DC)) { 155 OS << OID->getName(); 156 } else if (const ObjCCategoryImplDecl *OCD = 157 dyn_cast<const ObjCCategoryImplDecl>(DC)){ 158 OS << ((NamedDecl *)OCD)->getIdentifier()->getNameStart() << '(' << 159 OCD->getIdentifier()->getNameStart() << ')'; 160 } 161 OS << ' ' << OMD->getSelector().getAsString() << ']'; 162 163 char *StrPtr = DebugInfoNames.Allocate<char>(OS.tell()); 164 memcpy(StrPtr, MethodName.begin(), OS.tell()); 165 return StringRef(StrPtr, OS.tell()); 166 } 167 168 /// getSelectorName - Return selector name. This is used for debugging 169 /// info. 170 StringRef CGDebugInfo::getSelectorName(Selector S) { 171 const std::string &SName = S.getAsString(); 172 char *StrPtr = DebugInfoNames.Allocate<char>(SName.size()); 173 memcpy(StrPtr, SName.data(), SName.size()); 174 return StringRef(StrPtr, SName.size()); 175 } 176 177 /// getClassName - Get class name including template argument list. 178 StringRef 179 CGDebugInfo::getClassName(const RecordDecl *RD) { 180 const ClassTemplateSpecializationDecl *Spec 181 = dyn_cast<ClassTemplateSpecializationDecl>(RD); 182 if (!Spec) 183 return RD->getName(); 184 185 const TemplateArgument *Args; 186 unsigned NumArgs; 187 if (TypeSourceInfo *TAW = Spec->getTypeAsWritten()) { 188 const TemplateSpecializationType *TST = 189 cast<TemplateSpecializationType>(TAW->getType()); 190 Args = TST->getArgs(); 191 NumArgs = TST->getNumArgs(); 192 } else { 193 const TemplateArgumentList &TemplateArgs = Spec->getTemplateArgs(); 194 Args = TemplateArgs.data(); 195 NumArgs = TemplateArgs.size(); 196 } 197 StringRef Name = RD->getIdentifier()->getName(); 198 PrintingPolicy Policy(CGM.getLangOpts()); 199 std::string TemplateArgList = 200 TemplateSpecializationType::PrintTemplateArgumentList(Args, NumArgs, Policy); 201 202 // Copy this name on the side and use its reference. 203 size_t Length = Name.size() + TemplateArgList.size(); 204 char *StrPtr = DebugInfoNames.Allocate<char>(Length); 205 memcpy(StrPtr, Name.data(), Name.size()); 206 memcpy(StrPtr + Name.size(), TemplateArgList.data(), TemplateArgList.size()); 207 return StringRef(StrPtr, Length); 208 } 209 210 /// getOrCreateFile - Get the file debug info descriptor for the input location. 211 llvm::DIFile CGDebugInfo::getOrCreateFile(SourceLocation Loc) { 212 if (!Loc.isValid()) 213 // If Location is not valid then use main input file. 214 return DBuilder.createFile(TheCU.getFilename(), TheCU.getDirectory()); 215 216 SourceManager &SM = CGM.getContext().getSourceManager(); 217 PresumedLoc PLoc = SM.getPresumedLoc(Loc); 218 219 if (PLoc.isInvalid() || StringRef(PLoc.getFilename()).empty()) 220 // If the location is not valid then use main input file. 221 return DBuilder.createFile(TheCU.getFilename(), TheCU.getDirectory()); 222 223 // Cache the results. 224 const char *fname = PLoc.getFilename(); 225 llvm::DenseMap<const char *, llvm::WeakVH>::iterator it = 226 DIFileCache.find(fname); 227 228 if (it != DIFileCache.end()) { 229 // Verify that the information still exists. 230 if (&*it->second) 231 return llvm::DIFile(cast<llvm::MDNode>(it->second)); 232 } 233 234 llvm::DIFile F = DBuilder.createFile(PLoc.getFilename(), getCurrentDirname()); 235 236 DIFileCache[fname] = F; 237 return F; 238 } 239 240 /// getOrCreateMainFile - Get the file info for main compile unit. 241 llvm::DIFile CGDebugInfo::getOrCreateMainFile() { 242 return DBuilder.createFile(TheCU.getFilename(), TheCU.getDirectory()); 243 } 244 245 /// getLineNumber - Get line number for the location. If location is invalid 246 /// then use current location. 247 unsigned CGDebugInfo::getLineNumber(SourceLocation Loc) { 248 if (Loc.isInvalid() && CurLoc.isInvalid()) 249 return 0; 250 SourceManager &SM = CGM.getContext().getSourceManager(); 251 PresumedLoc PLoc = SM.getPresumedLoc(Loc.isValid() ? Loc : CurLoc); 252 return PLoc.isValid()? PLoc.getLine() : 0; 253 } 254 255 /// getColumnNumber - Get column number for the location. If location is 256 /// invalid then use current location. 257 unsigned CGDebugInfo::getColumnNumber(SourceLocation Loc) { 258 if (Loc.isInvalid() && CurLoc.isInvalid()) 259 return 0; 260 SourceManager &SM = CGM.getContext().getSourceManager(); 261 PresumedLoc PLoc = SM.getPresumedLoc(Loc.isValid() ? Loc : CurLoc); 262 return PLoc.isValid()? PLoc.getColumn() : 0; 263 } 264 265 StringRef CGDebugInfo::getCurrentDirname() { 266 if (!CGM.getCodeGenOpts().DebugCompilationDir.empty()) 267 return CGM.getCodeGenOpts().DebugCompilationDir; 268 269 if (!CWDName.empty()) 270 return CWDName; 271 SmallString<256> CWD; 272 llvm::sys::fs::current_path(CWD); 273 char *CompDirnamePtr = DebugInfoNames.Allocate<char>(CWD.size()); 274 memcpy(CompDirnamePtr, CWD.data(), CWD.size()); 275 return CWDName = StringRef(CompDirnamePtr, CWD.size()); 276 } 277 278 /// CreateCompileUnit - Create new compile unit. 279 void CGDebugInfo::CreateCompileUnit() { 280 281 // Get absolute path name. 282 SourceManager &SM = CGM.getContext().getSourceManager(); 283 std::string MainFileName = CGM.getCodeGenOpts().MainFileName; 284 if (MainFileName.empty()) 285 MainFileName = "<unknown>"; 286 287 // The main file name provided via the "-main-file-name" option contains just 288 // the file name itself with no path information. This file name may have had 289 // a relative path, so we look into the actual file entry for the main 290 // file to determine the real absolute path for the file. 291 std::string MainFileDir; 292 if (const FileEntry *MainFile = SM.getFileEntryForID(SM.getMainFileID())) { 293 MainFileDir = MainFile->getDir()->getName(); 294 if (MainFileDir != ".") 295 MainFileName = MainFileDir + "/" + MainFileName; 296 } 297 298 // Save filename string. 299 char *FilenamePtr = DebugInfoNames.Allocate<char>(MainFileName.length()); 300 memcpy(FilenamePtr, MainFileName.c_str(), MainFileName.length()); 301 StringRef Filename(FilenamePtr, MainFileName.length()); 302 303 unsigned LangTag; 304 const LangOptions &LO = CGM.getLangOpts(); 305 if (LO.CPlusPlus) { 306 if (LO.ObjC1) 307 LangTag = llvm::dwarf::DW_LANG_ObjC_plus_plus; 308 else 309 LangTag = llvm::dwarf::DW_LANG_C_plus_plus; 310 } else if (LO.ObjC1) { 311 LangTag = llvm::dwarf::DW_LANG_ObjC; 312 } else if (LO.C99) { 313 LangTag = llvm::dwarf::DW_LANG_C99; 314 } else { 315 LangTag = llvm::dwarf::DW_LANG_C89; 316 } 317 318 std::string Producer = getClangFullVersion(); 319 320 // Figure out which version of the ObjC runtime we have. 321 unsigned RuntimeVers = 0; 322 if (LO.ObjC1) 323 RuntimeVers = LO.ObjCNonFragileABI ? 2 : 1; 324 325 // Create new compile unit. 326 DBuilder.createCompileUnit( 327 LangTag, Filename, getCurrentDirname(), 328 Producer, 329 LO.Optimize, CGM.getCodeGenOpts().DwarfDebugFlags, RuntimeVers); 330 // FIXME - Eliminate TheCU. 331 TheCU = llvm::DICompileUnit(DBuilder.getCU()); 332 } 333 334 /// CreateType - Get the Basic type from the cache or create a new 335 /// one if necessary. 336 llvm::DIType CGDebugInfo::CreateType(const BuiltinType *BT) { 337 unsigned Encoding = 0; 338 const char *BTName = NULL; 339 switch (BT->getKind()) { 340 #define BUILTIN_TYPE(Id, SingletonId) 341 #define PLACEHOLDER_TYPE(Id, SingletonId) \ 342 case BuiltinType::Id: 343 #include "clang/AST/BuiltinTypes.def" 344 case BuiltinType::Dependent: 345 llvm_unreachable("Unexpected builtin type"); 346 case BuiltinType::NullPtr: 347 return DBuilder. 348 createNullPtrType(BT->getName(CGM.getContext().getLangOpts())); 349 case BuiltinType::Void: 350 return llvm::DIType(); 351 case BuiltinType::ObjCClass: 352 return DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type, 353 "objc_class", TheCU, 354 getOrCreateMainFile(), 0); 355 case BuiltinType::ObjCId: { 356 // typedef struct objc_class *Class; 357 // typedef struct objc_object { 358 // Class isa; 359 // } *id; 360 361 // TODO: Cache these two types to avoid duplicates. 362 llvm::DIType OCTy = 363 DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type, 364 "objc_class", TheCU, getOrCreateMainFile(), 0); 365 unsigned Size = CGM.getContext().getTypeSize(CGM.getContext().VoidPtrTy); 366 367 llvm::DIType ISATy = DBuilder.createPointerType(OCTy, Size); 368 369 SmallVector<llvm::Value *, 16> EltTys; 370 llvm::DIType FieldTy = 371 DBuilder.createMemberType(getOrCreateMainFile(), "isa", 372 getOrCreateMainFile(), 0, Size, 373 0, 0, 0, ISATy); 374 EltTys.push_back(FieldTy); 375 llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys); 376 377 return DBuilder.createStructType(TheCU, "objc_object", 378 getOrCreateMainFile(), 379 0, 0, 0, 0, Elements); 380 } 381 case BuiltinType::ObjCSel: { 382 return 383 DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type, 384 "objc_selector", TheCU, getOrCreateMainFile(), 385 0); 386 } 387 case BuiltinType::UChar: 388 case BuiltinType::Char_U: Encoding = llvm::dwarf::DW_ATE_unsigned_char; break; 389 case BuiltinType::Char_S: 390 case BuiltinType::SChar: Encoding = llvm::dwarf::DW_ATE_signed_char; break; 391 case BuiltinType::Char16: 392 case BuiltinType::Char32: Encoding = llvm::dwarf::DW_ATE_UTF; break; 393 case BuiltinType::UShort: 394 case BuiltinType::UInt: 395 case BuiltinType::UInt128: 396 case BuiltinType::ULong: 397 case BuiltinType::WChar_U: 398 case BuiltinType::ULongLong: Encoding = llvm::dwarf::DW_ATE_unsigned; break; 399 case BuiltinType::Short: 400 case BuiltinType::Int: 401 case BuiltinType::Int128: 402 case BuiltinType::Long: 403 case BuiltinType::WChar_S: 404 case BuiltinType::LongLong: Encoding = llvm::dwarf::DW_ATE_signed; break; 405 case BuiltinType::Bool: Encoding = llvm::dwarf::DW_ATE_boolean; break; 406 case BuiltinType::Half: 407 case BuiltinType::Float: 408 case BuiltinType::LongDouble: 409 case BuiltinType::Double: Encoding = llvm::dwarf::DW_ATE_float; break; 410 } 411 412 switch (BT->getKind()) { 413 case BuiltinType::Long: BTName = "long int"; break; 414 case BuiltinType::LongLong: BTName = "long long int"; break; 415 case BuiltinType::ULong: BTName = "long unsigned int"; break; 416 case BuiltinType::ULongLong: BTName = "long long unsigned int"; break; 417 default: 418 BTName = BT->getName(CGM.getContext().getLangOpts()); 419 break; 420 } 421 // Bit size, align and offset of the type. 422 uint64_t Size = CGM.getContext().getTypeSize(BT); 423 uint64_t Align = CGM.getContext().getTypeAlign(BT); 424 llvm::DIType DbgTy = 425 DBuilder.createBasicType(BTName, Size, Align, Encoding); 426 return DbgTy; 427 } 428 429 llvm::DIType CGDebugInfo::CreateType(const ComplexType *Ty) { 430 // Bit size, align and offset of the type. 431 unsigned Encoding = llvm::dwarf::DW_ATE_complex_float; 432 if (Ty->isComplexIntegerType()) 433 Encoding = llvm::dwarf::DW_ATE_lo_user; 434 435 uint64_t Size = CGM.getContext().getTypeSize(Ty); 436 uint64_t Align = CGM.getContext().getTypeAlign(Ty); 437 llvm::DIType DbgTy = 438 DBuilder.createBasicType("complex", Size, Align, Encoding); 439 440 return DbgTy; 441 } 442 443 /// CreateCVRType - Get the qualified type from the cache or create 444 /// a new one if necessary. 445 llvm::DIType CGDebugInfo::CreateQualifiedType(QualType Ty, llvm::DIFile Unit) { 446 QualifierCollector Qc; 447 const Type *T = Qc.strip(Ty); 448 449 // Ignore these qualifiers for now. 450 Qc.removeObjCGCAttr(); 451 Qc.removeAddressSpace(); 452 Qc.removeObjCLifetime(); 453 454 // We will create one Derived type for one qualifier and recurse to handle any 455 // additional ones. 456 unsigned Tag; 457 if (Qc.hasConst()) { 458 Tag = llvm::dwarf::DW_TAG_const_type; 459 Qc.removeConst(); 460 } else if (Qc.hasVolatile()) { 461 Tag = llvm::dwarf::DW_TAG_volatile_type; 462 Qc.removeVolatile(); 463 } else if (Qc.hasRestrict()) { 464 Tag = llvm::dwarf::DW_TAG_restrict_type; 465 Qc.removeRestrict(); 466 } else { 467 assert(Qc.empty() && "Unknown type qualifier for debug info"); 468 return getOrCreateType(QualType(T, 0), Unit); 469 } 470 471 llvm::DIType FromTy = getOrCreateType(Qc.apply(CGM.getContext(), T), Unit); 472 473 // No need to fill in the Name, Line, Size, Alignment, Offset in case of 474 // CVR derived types. 475 llvm::DIType DbgTy = DBuilder.createQualifiedType(Tag, FromTy); 476 477 return DbgTy; 478 } 479 480 llvm::DIType CGDebugInfo::CreateType(const ObjCObjectPointerType *Ty, 481 llvm::DIFile Unit) { 482 llvm::DIType DbgTy = 483 CreatePointerLikeType(llvm::dwarf::DW_TAG_pointer_type, Ty, 484 Ty->getPointeeType(), Unit); 485 return DbgTy; 486 } 487 488 llvm::DIType CGDebugInfo::CreateType(const PointerType *Ty, 489 llvm::DIFile Unit) { 490 return CreatePointerLikeType(llvm::dwarf::DW_TAG_pointer_type, Ty, 491 Ty->getPointeeType(), Unit); 492 } 493 494 // Creates a forward declaration for a RecordDecl in the given context. 495 llvm::DIType CGDebugInfo::createRecordFwdDecl(const RecordDecl *RD, 496 llvm::DIDescriptor Ctx) { 497 llvm::DIFile DefUnit = getOrCreateFile(RD->getLocation()); 498 unsigned Line = getLineNumber(RD->getLocation()); 499 StringRef RDName = RD->getName(); 500 501 // Get the tag. 502 const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD); 503 unsigned Tag = 0; 504 if (CXXDecl) { 505 RDName = getClassName(RD); 506 Tag = llvm::dwarf::DW_TAG_class_type; 507 } 508 else if (RD->isStruct()) 509 Tag = llvm::dwarf::DW_TAG_structure_type; 510 else if (RD->isUnion()) 511 Tag = llvm::dwarf::DW_TAG_union_type; 512 else 513 llvm_unreachable("Unknown RecordDecl type!"); 514 515 // Create the type. 516 return DBuilder.createForwardDecl(Tag, RDName, Ctx, DefUnit, Line); 517 } 518 519 // Walk up the context chain and create forward decls for record decls, 520 // and normal descriptors for namespaces. 521 llvm::DIDescriptor CGDebugInfo::createContextChain(const Decl *Context) { 522 if (!Context) 523 return TheCU; 524 525 // See if we already have the parent. 526 llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator 527 I = RegionMap.find(Context); 528 if (I != RegionMap.end()) 529 return llvm::DIDescriptor(dyn_cast_or_null<llvm::MDNode>(&*I->second)); 530 531 // Check namespace. 532 if (const NamespaceDecl *NSDecl = dyn_cast<NamespaceDecl>(Context)) 533 return llvm::DIDescriptor(getOrCreateNameSpace(NSDecl)); 534 535 if (const RecordDecl *RD = dyn_cast<RecordDecl>(Context)) { 536 if (!RD->isDependentType()) { 537 llvm::DIType Ty = getOrCreateLimitedType(CGM.getContext().getTypeDeclType(RD), 538 getOrCreateMainFile()); 539 return llvm::DIDescriptor(Ty); 540 } 541 } 542 return TheCU; 543 } 544 545 /// CreatePointeeType - Create Pointee type. If Pointee is a record 546 /// then emit record's fwd if debug info size reduction is enabled. 547 llvm::DIType CGDebugInfo::CreatePointeeType(QualType PointeeTy, 548 llvm::DIFile Unit) { 549 if (CGM.getCodeGenOpts().DebugInfo != CodeGenOptions::LimitedDebugInfo) 550 return getOrCreateType(PointeeTy, Unit); 551 552 // Limit debug info for the pointee type. 553 554 // If we have an existing type, use that, it's still smaller than creating 555 // a new type. 556 llvm::DIType Ty = getTypeOrNull(PointeeTy); 557 if (Ty.Verify()) return Ty; 558 559 // Handle qualifiers. 560 if (PointeeTy.hasLocalQualifiers()) 561 return CreateQualifiedType(PointeeTy, Unit); 562 563 if (const RecordType *RTy = dyn_cast<RecordType>(PointeeTy)) { 564 RecordDecl *RD = RTy->getDecl(); 565 llvm::DIDescriptor FDContext = 566 getContextDescriptor(cast<Decl>(RD->getDeclContext())); 567 llvm::DIType RetTy = createRecordFwdDecl(RD, FDContext); 568 TypeCache[QualType(RTy, 0).getAsOpaquePtr()] = RetTy; 569 return RetTy; 570 } 571 return getOrCreateType(PointeeTy, Unit); 572 573 } 574 575 llvm::DIType CGDebugInfo::CreatePointerLikeType(unsigned Tag, 576 const Type *Ty, 577 QualType PointeeTy, 578 llvm::DIFile Unit) { 579 if (Tag == llvm::dwarf::DW_TAG_reference_type) 580 return DBuilder.createReferenceType(CreatePointeeType(PointeeTy, Unit)); 581 582 // Bit size, align and offset of the type. 583 // Size is always the size of a pointer. We can't use getTypeSize here 584 // because that does not return the correct value for references. 585 unsigned AS = CGM.getContext().getTargetAddressSpace(PointeeTy); 586 uint64_t Size = CGM.getContext().getTargetInfo().getPointerWidth(AS); 587 uint64_t Align = CGM.getContext().getTypeAlign(Ty); 588 589 return DBuilder.createPointerType(CreatePointeeType(PointeeTy, Unit), 590 Size, Align); 591 } 592 593 llvm::DIType CGDebugInfo::CreateType(const BlockPointerType *Ty, 594 llvm::DIFile Unit) { 595 if (BlockLiteralGenericSet) 596 return BlockLiteralGeneric; 597 598 SmallVector<llvm::Value *, 8> EltTys; 599 llvm::DIType FieldTy; 600 QualType FType; 601 uint64_t FieldSize, FieldOffset; 602 unsigned FieldAlign; 603 llvm::DIArray Elements; 604 llvm::DIType EltTy, DescTy; 605 606 FieldOffset = 0; 607 FType = CGM.getContext().UnsignedLongTy; 608 EltTys.push_back(CreateMemberType(Unit, FType, "reserved", &FieldOffset)); 609 EltTys.push_back(CreateMemberType(Unit, FType, "Size", &FieldOffset)); 610 611 Elements = DBuilder.getOrCreateArray(EltTys); 612 EltTys.clear(); 613 614 unsigned Flags = llvm::DIDescriptor::FlagAppleBlock; 615 unsigned LineNo = getLineNumber(CurLoc); 616 617 EltTy = DBuilder.createStructType(Unit, "__block_descriptor", 618 Unit, LineNo, FieldOffset, 0, 619 Flags, Elements); 620 621 // Bit size, align and offset of the type. 622 uint64_t Size = CGM.getContext().getTypeSize(Ty); 623 624 DescTy = DBuilder.createPointerType(EltTy, Size); 625 626 FieldOffset = 0; 627 FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy); 628 EltTys.push_back(CreateMemberType(Unit, FType, "__isa", &FieldOffset)); 629 FType = CGM.getContext().IntTy; 630 EltTys.push_back(CreateMemberType(Unit, FType, "__flags", &FieldOffset)); 631 EltTys.push_back(CreateMemberType(Unit, FType, "__reserved", &FieldOffset)); 632 FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy); 633 EltTys.push_back(CreateMemberType(Unit, FType, "__FuncPtr", &FieldOffset)); 634 635 FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy); 636 FieldTy = DescTy; 637 FieldSize = CGM.getContext().getTypeSize(Ty); 638 FieldAlign = CGM.getContext().getTypeAlign(Ty); 639 FieldTy = DBuilder.createMemberType(Unit, "__descriptor", Unit, 640 LineNo, FieldSize, FieldAlign, 641 FieldOffset, 0, FieldTy); 642 EltTys.push_back(FieldTy); 643 644 FieldOffset += FieldSize; 645 Elements = DBuilder.getOrCreateArray(EltTys); 646 647 EltTy = DBuilder.createStructType(Unit, "__block_literal_generic", 648 Unit, LineNo, FieldOffset, 0, 649 Flags, Elements); 650 651 BlockLiteralGenericSet = true; 652 BlockLiteralGeneric = DBuilder.createPointerType(EltTy, Size); 653 return BlockLiteralGeneric; 654 } 655 656 llvm::DIType CGDebugInfo::CreateType(const TypedefType *Ty, llvm::DIFile Unit) { 657 // Typedefs are derived from some other type. If we have a typedef of a 658 // typedef, make sure to emit the whole chain. 659 llvm::DIType Src = getOrCreateType(Ty->getDecl()->getUnderlyingType(), Unit); 660 if (!Src.Verify()) 661 return llvm::DIType(); 662 // We don't set size information, but do specify where the typedef was 663 // declared. 664 unsigned Line = getLineNumber(Ty->getDecl()->getLocation()); 665 const TypedefNameDecl *TyDecl = Ty->getDecl(); 666 667 llvm::DIDescriptor TypedefContext = 668 getContextDescriptor(cast<Decl>(Ty->getDecl()->getDeclContext())); 669 670 return 671 DBuilder.createTypedef(Src, TyDecl->getName(), Unit, Line, TypedefContext); 672 } 673 674 llvm::DIType CGDebugInfo::CreateType(const FunctionType *Ty, 675 llvm::DIFile Unit) { 676 SmallVector<llvm::Value *, 16> EltTys; 677 678 // Add the result type at least. 679 EltTys.push_back(getOrCreateType(Ty->getResultType(), Unit)); 680 681 // Set up remainder of arguments if there is a prototype. 682 // FIXME: IF NOT, HOW IS THIS REPRESENTED? llvm-gcc doesn't represent '...'! 683 if (isa<FunctionNoProtoType>(Ty)) 684 EltTys.push_back(DBuilder.createUnspecifiedParameter()); 685 else if (const FunctionProtoType *FTP = dyn_cast<FunctionProtoType>(Ty)) { 686 for (unsigned i = 0, e = FTP->getNumArgs(); i != e; ++i) 687 EltTys.push_back(getOrCreateType(FTP->getArgType(i), Unit)); 688 } 689 690 llvm::DIArray EltTypeArray = DBuilder.getOrCreateArray(EltTys); 691 692 llvm::DIType DbgTy = DBuilder.createSubroutineType(Unit, EltTypeArray); 693 return DbgTy; 694 } 695 696 697 void CGDebugInfo:: 698 CollectRecordStaticVars(const RecordDecl *RD, llvm::DIType FwdDecl) { 699 700 for (RecordDecl::decl_iterator I = RD->decls_begin(), E = RD->decls_end(); 701 I != E; ++I) 702 if (const VarDecl *V = dyn_cast<VarDecl>(*I)) { 703 if (V->getInit()) { 704 const APValue *Value = V->evaluateValue(); 705 if (Value && Value->isInt()) { 706 llvm::ConstantInt *CI 707 = llvm::ConstantInt::get(CGM.getLLVMContext(), Value->getInt()); 708 709 // Create the descriptor for static variable. 710 llvm::DIFile VUnit = getOrCreateFile(V->getLocation()); 711 StringRef VName = V->getName(); 712 llvm::DIType VTy = getOrCreateType(V->getType(), VUnit); 713 // Do not use DIGlobalVariable for enums. 714 if (VTy.getTag() != llvm::dwarf::DW_TAG_enumeration_type) { 715 DBuilder.createStaticVariable(FwdDecl, VName, VName, VUnit, 716 getLineNumber(V->getLocation()), 717 VTy, true, CI); 718 } 719 } 720 } 721 } 722 } 723 724 llvm::DIType CGDebugInfo::createFieldType(StringRef name, 725 QualType type, 726 uint64_t sizeInBitsOverride, 727 SourceLocation loc, 728 AccessSpecifier AS, 729 uint64_t offsetInBits, 730 llvm::DIFile tunit, 731 llvm::DIDescriptor scope) { 732 llvm::DIType debugType = getOrCreateType(type, tunit); 733 734 // Get the location for the field. 735 llvm::DIFile file = getOrCreateFile(loc); 736 unsigned line = getLineNumber(loc); 737 738 uint64_t sizeInBits = 0; 739 unsigned alignInBits = 0; 740 if (!type->isIncompleteArrayType()) { 741 llvm::tie(sizeInBits, alignInBits) = CGM.getContext().getTypeInfo(type); 742 743 if (sizeInBitsOverride) 744 sizeInBits = sizeInBitsOverride; 745 } 746 747 unsigned flags = 0; 748 if (AS == clang::AS_private) 749 flags |= llvm::DIDescriptor::FlagPrivate; 750 else if (AS == clang::AS_protected) 751 flags |= llvm::DIDescriptor::FlagProtected; 752 753 return DBuilder.createMemberType(scope, name, file, line, sizeInBits, 754 alignInBits, offsetInBits, flags, debugType); 755 } 756 757 /// CollectRecordFields - A helper function to collect debug info for 758 /// record fields. This is used while creating debug info entry for a Record. 759 void CGDebugInfo:: 760 CollectRecordFields(const RecordDecl *record, llvm::DIFile tunit, 761 SmallVectorImpl<llvm::Value *> &elements, 762 llvm::DIType RecordTy) { 763 unsigned fieldNo = 0; 764 const ASTRecordLayout &layout = CGM.getContext().getASTRecordLayout(record); 765 const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(record); 766 767 // For C++11 Lambdas a Fields will be the same as a Capture, but the Capture 768 // has the name and the location of the variable so we should iterate over 769 // both concurrently. 770 if (CXXDecl && CXXDecl->isLambda()) { 771 RecordDecl::field_iterator Field = CXXDecl->field_begin(); 772 unsigned fieldno = 0; 773 for (CXXRecordDecl::capture_const_iterator I = CXXDecl->captures_begin(), 774 E = CXXDecl->captures_end(); I != E; ++I, ++Field, ++fieldno) { 775 const LambdaExpr::Capture C = *I; 776 // TODO: Need to handle 'this' in some way by probably renaming the 777 // this of the lambda class and having a field member of 'this'. 778 if (C.capturesVariable()) { 779 VarDecl *V = C.getCapturedVar(); 780 llvm::DIFile VUnit = getOrCreateFile(C.getLocation()); 781 StringRef VName = V->getName(); 782 uint64_t SizeInBitsOverride = 0; 783 if (Field->isBitField()) { 784 SizeInBitsOverride = Field->getBitWidthValue(CGM.getContext()); 785 assert(SizeInBitsOverride && "found named 0-width bitfield"); 786 } 787 llvm::DIType fieldType 788 = createFieldType(VName, Field->getType(), SizeInBitsOverride, C.getLocation(), 789 Field->getAccess(), layout.getFieldOffset(fieldno), 790 VUnit, RecordTy); 791 elements.push_back(fieldType); 792 } 793 } 794 } else { 795 bool IsMsStruct = record->hasAttr<MsStructAttr>(); 796 const FieldDecl *LastFD = 0; 797 for (RecordDecl::field_iterator I = record->field_begin(), 798 E = record->field_end(); 799 I != E; ++I, ++fieldNo) { 800 FieldDecl *field = &*I; 801 802 if (IsMsStruct) { 803 // Zero-length bitfields following non-bitfield members are ignored 804 if (CGM.getContext().ZeroBitfieldFollowsNonBitfield((field), LastFD)) { 805 --fieldNo; 806 continue; 807 } 808 LastFD = field; 809 } 810 811 StringRef name = field->getName(); 812 QualType type = field->getType(); 813 814 // Ignore unnamed fields unless they're anonymous structs/unions. 815 if (name.empty() && !type->isRecordType()) { 816 LastFD = field; 817 continue; 818 } 819 820 uint64_t SizeInBitsOverride = 0; 821 if (field->isBitField()) { 822 SizeInBitsOverride = field->getBitWidthValue(CGM.getContext()); 823 assert(SizeInBitsOverride && "found named 0-width bitfield"); 824 } 825 826 llvm::DIType fieldType 827 = createFieldType(name, type, SizeInBitsOverride, 828 field->getLocation(), field->getAccess(), 829 layout.getFieldOffset(fieldNo), tunit, RecordTy); 830 831 elements.push_back(fieldType); 832 } 833 } 834 } 835 836 /// getOrCreateMethodType - CXXMethodDecl's type is a FunctionType. This 837 /// function type is not updated to include implicit "this" pointer. Use this 838 /// routine to get a method type which includes "this" pointer. 839 llvm::DIType 840 CGDebugInfo::getOrCreateMethodType(const CXXMethodDecl *Method, 841 llvm::DIFile Unit) { 842 llvm::DIType FnTy 843 = getOrCreateType(QualType(Method->getType()->getAs<FunctionProtoType>(), 844 0), 845 Unit); 846 847 // Add "this" pointer. 848 llvm::DIArray Args = llvm::DICompositeType(FnTy).getTypeArray(); 849 assert (Args.getNumElements() && "Invalid number of arguments!"); 850 851 SmallVector<llvm::Value *, 16> Elts; 852 853 // First element is always return type. For 'void' functions it is NULL. 854 Elts.push_back(Args.getElement(0)); 855 856 if (!Method->isStatic()) { 857 // "this" pointer is always first argument. 858 QualType ThisPtr = Method->getThisType(CGM.getContext()); 859 860 const CXXRecordDecl *RD = Method->getParent(); 861 if (isa<ClassTemplateSpecializationDecl>(RD)) { 862 // Create pointer type directly in this case. 863 const PointerType *ThisPtrTy = cast<PointerType>(ThisPtr); 864 QualType PointeeTy = ThisPtrTy->getPointeeType(); 865 unsigned AS = CGM.getContext().getTargetAddressSpace(PointeeTy); 866 uint64_t Size = CGM.getContext().getTargetInfo().getPointerWidth(AS); 867 uint64_t Align = CGM.getContext().getTypeAlign(ThisPtrTy); 868 llvm::DIType PointeeType = getOrCreateType(PointeeTy, Unit); 869 llvm::DIType ThisPtrType = DBuilder.createPointerType(PointeeType, Size, Align); 870 TypeCache[ThisPtr.getAsOpaquePtr()] = ThisPtrType; 871 // TODO: This and the artificial type below are misleading, the 872 // types aren't artificial the argument is, but the current 873 // metadata doesn't represent that. 874 ThisPtrType = DBuilder.createArtificialType(ThisPtrType); 875 Elts.push_back(ThisPtrType); 876 } else { 877 llvm::DIType ThisPtrType = getOrCreateType(ThisPtr, Unit); 878 TypeCache[ThisPtr.getAsOpaquePtr()] = ThisPtrType; 879 ThisPtrType = DBuilder.createArtificialType(ThisPtrType); 880 Elts.push_back(ThisPtrType); 881 } 882 } 883 884 // Copy rest of the arguments. 885 for (unsigned i = 1, e = Args.getNumElements(); i != e; ++i) 886 Elts.push_back(Args.getElement(i)); 887 888 llvm::DIArray EltTypeArray = DBuilder.getOrCreateArray(Elts); 889 890 return DBuilder.createSubroutineType(Unit, EltTypeArray); 891 } 892 893 /// isFunctionLocalClass - Return true if CXXRecordDecl is defined 894 /// inside a function. 895 static bool isFunctionLocalClass(const CXXRecordDecl *RD) { 896 if (const CXXRecordDecl *NRD = dyn_cast<CXXRecordDecl>(RD->getDeclContext())) 897 return isFunctionLocalClass(NRD); 898 if (isa<FunctionDecl>(RD->getDeclContext())) 899 return true; 900 return false; 901 } 902 903 /// CreateCXXMemberFunction - A helper function to create a DISubprogram for 904 /// a single member function GlobalDecl. 905 llvm::DISubprogram 906 CGDebugInfo::CreateCXXMemberFunction(const CXXMethodDecl *Method, 907 llvm::DIFile Unit, 908 llvm::DIType RecordTy) { 909 bool IsCtorOrDtor = 910 isa<CXXConstructorDecl>(Method) || isa<CXXDestructorDecl>(Method); 911 912 StringRef MethodName = getFunctionName(Method); 913 llvm::DIType MethodTy = getOrCreateMethodType(Method, Unit); 914 915 // Since a single ctor/dtor corresponds to multiple functions, it doesn't 916 // make sense to give a single ctor/dtor a linkage name. 917 StringRef MethodLinkageName; 918 if (!IsCtorOrDtor && !isFunctionLocalClass(Method->getParent())) 919 MethodLinkageName = CGM.getMangledName(Method); 920 921 // Get the location for the method. 922 llvm::DIFile MethodDefUnit = getOrCreateFile(Method->getLocation()); 923 unsigned MethodLine = getLineNumber(Method->getLocation()); 924 925 // Collect virtual method info. 926 llvm::DIType ContainingType; 927 unsigned Virtuality = 0; 928 unsigned VIndex = 0; 929 930 if (Method->isVirtual()) { 931 if (Method->isPure()) 932 Virtuality = llvm::dwarf::DW_VIRTUALITY_pure_virtual; 933 else 934 Virtuality = llvm::dwarf::DW_VIRTUALITY_virtual; 935 936 // It doesn't make sense to give a virtual destructor a vtable index, 937 // since a single destructor has two entries in the vtable. 938 if (!isa<CXXDestructorDecl>(Method)) 939 VIndex = CGM.getVTableContext().getMethodVTableIndex(Method); 940 ContainingType = RecordTy; 941 } 942 943 unsigned Flags = 0; 944 if (Method->isImplicit()) 945 Flags |= llvm::DIDescriptor::FlagArtificial; 946 AccessSpecifier Access = Method->getAccess(); 947 if (Access == clang::AS_private) 948 Flags |= llvm::DIDescriptor::FlagPrivate; 949 else if (Access == clang::AS_protected) 950 Flags |= llvm::DIDescriptor::FlagProtected; 951 if (const CXXConstructorDecl *CXXC = dyn_cast<CXXConstructorDecl>(Method)) { 952 if (CXXC->isExplicit()) 953 Flags |= llvm::DIDescriptor::FlagExplicit; 954 } else if (const CXXConversionDecl *CXXC = 955 dyn_cast<CXXConversionDecl>(Method)) { 956 if (CXXC->isExplicit()) 957 Flags |= llvm::DIDescriptor::FlagExplicit; 958 } 959 if (Method->hasPrototype()) 960 Flags |= llvm::DIDescriptor::FlagPrototyped; 961 962 llvm::DIArray TParamsArray = CollectFunctionTemplateParams(Method, Unit); 963 llvm::DISubprogram SP = 964 DBuilder.createMethod(RecordTy, MethodName, MethodLinkageName, 965 MethodDefUnit, MethodLine, 966 MethodTy, /*isLocalToUnit=*/false, 967 /* isDefinition=*/ false, 968 Virtuality, VIndex, ContainingType, 969 Flags, CGM.getLangOpts().Optimize, NULL, 970 TParamsArray); 971 972 SPCache[Method->getCanonicalDecl()] = llvm::WeakVH(SP); 973 974 return SP; 975 } 976 977 /// CollectCXXMemberFunctions - A helper function to collect debug info for 978 /// C++ member functions. This is used while creating debug info entry for 979 /// a Record. 980 void CGDebugInfo:: 981 CollectCXXMemberFunctions(const CXXRecordDecl *RD, llvm::DIFile Unit, 982 SmallVectorImpl<llvm::Value *> &EltTys, 983 llvm::DIType RecordTy) { 984 985 // Since we want more than just the individual member decls if we 986 // have templated functions iterate over every declaration to gather 987 // the functions. 988 for(DeclContext::decl_iterator I = RD->decls_begin(), 989 E = RD->decls_end(); I != E; ++I) { 990 Decl *D = *I; 991 if (D->isImplicit() && !D->isUsed()) 992 continue; 993 994 if (const CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(D)) 995 EltTys.push_back(CreateCXXMemberFunction(Method, Unit, RecordTy)); 996 else if (FunctionTemplateDecl *FTD = dyn_cast<FunctionTemplateDecl>(D)) 997 for (FunctionTemplateDecl::spec_iterator SI = FTD->spec_begin(), 998 SE = FTD->spec_end(); SI != SE; ++SI) { 999 FunctionDecl *FD = *SI; 1000 if (CXXMethodDecl *M = dyn_cast<CXXMethodDecl>(FD)) 1001 EltTys.push_back(CreateCXXMemberFunction(M, Unit, RecordTy)); 1002 } 1003 } 1004 } 1005 1006 /// CollectCXXFriends - A helper function to collect debug info for 1007 /// C++ base classes. This is used while creating debug info entry for 1008 /// a Record. 1009 void CGDebugInfo:: 1010 CollectCXXFriends(const CXXRecordDecl *RD, llvm::DIFile Unit, 1011 SmallVectorImpl<llvm::Value *> &EltTys, 1012 llvm::DIType RecordTy) { 1013 for (CXXRecordDecl::friend_iterator BI = RD->friend_begin(), 1014 BE = RD->friend_end(); BI != BE; ++BI) { 1015 if ((*BI)->isUnsupportedFriend()) 1016 continue; 1017 if (TypeSourceInfo *TInfo = (*BI)->getFriendType()) 1018 EltTys.push_back(DBuilder.createFriend(RecordTy, 1019 getOrCreateType(TInfo->getType(), 1020 Unit))); 1021 } 1022 } 1023 1024 /// CollectCXXBases - A helper function to collect debug info for 1025 /// C++ base classes. This is used while creating debug info entry for 1026 /// a Record. 1027 void CGDebugInfo:: 1028 CollectCXXBases(const CXXRecordDecl *RD, llvm::DIFile Unit, 1029 SmallVectorImpl<llvm::Value *> &EltTys, 1030 llvm::DIType RecordTy) { 1031 1032 const ASTRecordLayout &RL = CGM.getContext().getASTRecordLayout(RD); 1033 for (CXXRecordDecl::base_class_const_iterator BI = RD->bases_begin(), 1034 BE = RD->bases_end(); BI != BE; ++BI) { 1035 unsigned BFlags = 0; 1036 uint64_t BaseOffset; 1037 1038 const CXXRecordDecl *Base = 1039 cast<CXXRecordDecl>(BI->getType()->getAs<RecordType>()->getDecl()); 1040 1041 if (BI->isVirtual()) { 1042 // virtual base offset offset is -ve. The code generator emits dwarf 1043 // expression where it expects +ve number. 1044 BaseOffset = 1045 0 - CGM.getVTableContext() 1046 .getVirtualBaseOffsetOffset(RD, Base).getQuantity(); 1047 BFlags = llvm::DIDescriptor::FlagVirtual; 1048 } else 1049 BaseOffset = RL.getBaseClassOffsetInBits(Base); 1050 // FIXME: Inconsistent units for BaseOffset. It is in bytes when 1051 // BI->isVirtual() and bits when not. 1052 1053 AccessSpecifier Access = BI->getAccessSpecifier(); 1054 if (Access == clang::AS_private) 1055 BFlags |= llvm::DIDescriptor::FlagPrivate; 1056 else if (Access == clang::AS_protected) 1057 BFlags |= llvm::DIDescriptor::FlagProtected; 1058 1059 llvm::DIType DTy = 1060 DBuilder.createInheritance(RecordTy, 1061 getOrCreateType(BI->getType(), Unit), 1062 BaseOffset, BFlags); 1063 EltTys.push_back(DTy); 1064 } 1065 } 1066 1067 /// CollectTemplateParams - A helper function to collect template parameters. 1068 llvm::DIArray CGDebugInfo:: 1069 CollectTemplateParams(const TemplateParameterList *TPList, 1070 const TemplateArgumentList &TAList, 1071 llvm::DIFile Unit) { 1072 SmallVector<llvm::Value *, 16> TemplateParams; 1073 for (unsigned i = 0, e = TAList.size(); i != e; ++i) { 1074 const TemplateArgument &TA = TAList[i]; 1075 const NamedDecl *ND = TPList->getParam(i); 1076 if (TA.getKind() == TemplateArgument::Type) { 1077 llvm::DIType TTy = getOrCreateType(TA.getAsType(), Unit); 1078 llvm::DITemplateTypeParameter TTP = 1079 DBuilder.createTemplateTypeParameter(TheCU, ND->getName(), TTy); 1080 TemplateParams.push_back(TTP); 1081 } else if (TA.getKind() == TemplateArgument::Integral) { 1082 llvm::DIType TTy = getOrCreateType(TA.getIntegralType(), Unit); 1083 llvm::DITemplateValueParameter TVP = 1084 DBuilder.createTemplateValueParameter(TheCU, ND->getName(), TTy, 1085 TA.getAsIntegral()->getZExtValue()); 1086 TemplateParams.push_back(TVP); 1087 } 1088 } 1089 return DBuilder.getOrCreateArray(TemplateParams); 1090 } 1091 1092 /// CollectFunctionTemplateParams - A helper function to collect debug 1093 /// info for function template parameters. 1094 llvm::DIArray CGDebugInfo:: 1095 CollectFunctionTemplateParams(const FunctionDecl *FD, llvm::DIFile Unit) { 1096 if (FD->getTemplatedKind() == 1097 FunctionDecl::TK_FunctionTemplateSpecialization) { 1098 const TemplateParameterList *TList = 1099 FD->getTemplateSpecializationInfo()->getTemplate() 1100 ->getTemplateParameters(); 1101 return 1102 CollectTemplateParams(TList, *FD->getTemplateSpecializationArgs(), Unit); 1103 } 1104 return llvm::DIArray(); 1105 } 1106 1107 /// CollectCXXTemplateParams - A helper function to collect debug info for 1108 /// template parameters. 1109 llvm::DIArray CGDebugInfo:: 1110 CollectCXXTemplateParams(const ClassTemplateSpecializationDecl *TSpecial, 1111 llvm::DIFile Unit) { 1112 llvm::PointerUnion<ClassTemplateDecl *, 1113 ClassTemplatePartialSpecializationDecl *> 1114 PU = TSpecial->getSpecializedTemplateOrPartial(); 1115 1116 TemplateParameterList *TPList = PU.is<ClassTemplateDecl *>() ? 1117 PU.get<ClassTemplateDecl *>()->getTemplateParameters() : 1118 PU.get<ClassTemplatePartialSpecializationDecl *>()->getTemplateParameters(); 1119 const TemplateArgumentList &TAList = TSpecial->getTemplateInstantiationArgs(); 1120 return CollectTemplateParams(TPList, TAList, Unit); 1121 } 1122 1123 /// getOrCreateVTablePtrType - Return debug info descriptor for vtable. 1124 llvm::DIType CGDebugInfo::getOrCreateVTablePtrType(llvm::DIFile Unit) { 1125 if (VTablePtrType.isValid()) 1126 return VTablePtrType; 1127 1128 ASTContext &Context = CGM.getContext(); 1129 1130 /* Function type */ 1131 llvm::Value *STy = getOrCreateType(Context.IntTy, Unit); 1132 llvm::DIArray SElements = DBuilder.getOrCreateArray(STy); 1133 llvm::DIType SubTy = DBuilder.createSubroutineType(Unit, SElements); 1134 unsigned Size = Context.getTypeSize(Context.VoidPtrTy); 1135 llvm::DIType vtbl_ptr_type = DBuilder.createPointerType(SubTy, Size, 0, 1136 "__vtbl_ptr_type"); 1137 VTablePtrType = DBuilder.createPointerType(vtbl_ptr_type, Size); 1138 return VTablePtrType; 1139 } 1140 1141 /// getVTableName - Get vtable name for the given Class. 1142 StringRef CGDebugInfo::getVTableName(const CXXRecordDecl *RD) { 1143 // Construct gdb compatible name name. 1144 std::string Name = "_vptr$" + RD->getNameAsString(); 1145 1146 // Copy this name on the side and use its reference. 1147 char *StrPtr = DebugInfoNames.Allocate<char>(Name.length()); 1148 memcpy(StrPtr, Name.data(), Name.length()); 1149 return StringRef(StrPtr, Name.length()); 1150 } 1151 1152 1153 /// CollectVTableInfo - If the C++ class has vtable info then insert appropriate 1154 /// debug info entry in EltTys vector. 1155 void CGDebugInfo:: 1156 CollectVTableInfo(const CXXRecordDecl *RD, llvm::DIFile Unit, 1157 SmallVectorImpl<llvm::Value *> &EltTys) { 1158 const ASTRecordLayout &RL = CGM.getContext().getASTRecordLayout(RD); 1159 1160 // If there is a primary base then it will hold vtable info. 1161 if (RL.getPrimaryBase()) 1162 return; 1163 1164 // If this class is not dynamic then there is not any vtable info to collect. 1165 if (!RD->isDynamicClass()) 1166 return; 1167 1168 unsigned Size = CGM.getContext().getTypeSize(CGM.getContext().VoidPtrTy); 1169 llvm::DIType VPTR 1170 = DBuilder.createMemberType(Unit, getVTableName(RD), Unit, 1171 0, Size, 0, 0, 0, 1172 getOrCreateVTablePtrType(Unit)); 1173 EltTys.push_back(VPTR); 1174 } 1175 1176 /// getOrCreateRecordType - Emit record type's standalone debug info. 1177 llvm::DIType CGDebugInfo::getOrCreateRecordType(QualType RTy, 1178 SourceLocation Loc) { 1179 llvm::DIType T = getOrCreateType(RTy, getOrCreateFile(Loc)); 1180 return T; 1181 } 1182 1183 /// getOrCreateInterfaceType - Emit an objective c interface type standalone 1184 /// debug info. 1185 llvm::DIType CGDebugInfo::getOrCreateInterfaceType(QualType D, 1186 SourceLocation Loc) { 1187 llvm::DIType T = getOrCreateType(D, getOrCreateFile(Loc)); 1188 DBuilder.retainType(T); 1189 return T; 1190 } 1191 1192 /// CreateType - get structure or union type. 1193 llvm::DIType CGDebugInfo::CreateType(const RecordType *Ty) { 1194 RecordDecl *RD = Ty->getDecl(); 1195 1196 // Get overall information about the record type for the debug info. 1197 llvm::DIFile DefUnit = getOrCreateFile(RD->getLocation()); 1198 1199 // Records and classes and unions can all be recursive. To handle them, we 1200 // first generate a debug descriptor for the struct as a forward declaration. 1201 // Then (if it is a definition) we go through and get debug info for all of 1202 // its members. Finally, we create a descriptor for the complete type (which 1203 // may refer to the forward decl if the struct is recursive) and replace all 1204 // uses of the forward declaration with the final definition. 1205 1206 llvm::DIType FwdDecl = getOrCreateLimitedType(QualType(Ty, 0), DefUnit); 1207 1208 if (FwdDecl.isForwardDecl()) 1209 return FwdDecl; 1210 1211 llvm::TrackingVH<llvm::MDNode> FwdDeclNode(FwdDecl); 1212 1213 // Push the struct on region stack. 1214 LexicalBlockStack.push_back(FwdDeclNode); 1215 RegionMap[Ty->getDecl()] = llvm::WeakVH(FwdDecl); 1216 1217 // Add this to the completed types cache since we're completing it. 1218 CompletedTypeCache[QualType(Ty, 0).getAsOpaquePtr()] = FwdDecl; 1219 1220 // Convert all the elements. 1221 SmallVector<llvm::Value *, 16> EltTys; 1222 1223 // Note: The split of CXXDecl information here is intentional, the 1224 // gdb tests will depend on a certain ordering at printout. The debug 1225 // information offsets are still correct if we merge them all together 1226 // though. 1227 const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD); 1228 if (CXXDecl) { 1229 CollectCXXBases(CXXDecl, DefUnit, EltTys, FwdDecl); 1230 CollectVTableInfo(CXXDecl, DefUnit, EltTys); 1231 } 1232 1233 // Collect static variables with initializers and other fields. 1234 CollectRecordStaticVars(RD, FwdDecl); 1235 CollectRecordFields(RD, DefUnit, EltTys, FwdDecl); 1236 llvm::DIArray TParamsArray; 1237 if (CXXDecl) { 1238 CollectCXXMemberFunctions(CXXDecl, DefUnit, EltTys, FwdDecl); 1239 CollectCXXFriends(CXXDecl, DefUnit, EltTys, FwdDecl); 1240 if (const ClassTemplateSpecializationDecl *TSpecial 1241 = dyn_cast<ClassTemplateSpecializationDecl>(RD)) 1242 TParamsArray = CollectCXXTemplateParams(TSpecial, DefUnit); 1243 } 1244 1245 LexicalBlockStack.pop_back(); 1246 RegionMap.erase(Ty->getDecl()); 1247 1248 llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys); 1249 // FIXME: Magic numbers ahoy! These should be changed when we 1250 // get some enums in llvm/Analysis/DebugInfo.h to refer to 1251 // them. 1252 if (RD->isUnion()) 1253 FwdDeclNode->replaceOperandWith(10, Elements); 1254 else if (CXXDecl) { 1255 FwdDeclNode->replaceOperandWith(10, Elements); 1256 FwdDeclNode->replaceOperandWith(13, TParamsArray); 1257 } else 1258 FwdDeclNode->replaceOperandWith(10, Elements); 1259 1260 RegionMap[Ty->getDecl()] = llvm::WeakVH(FwdDeclNode); 1261 return llvm::DIType(FwdDeclNode); 1262 } 1263 1264 /// CreateType - get objective-c object type. 1265 llvm::DIType CGDebugInfo::CreateType(const ObjCObjectType *Ty, 1266 llvm::DIFile Unit) { 1267 // Ignore protocols. 1268 return getOrCreateType(Ty->getBaseType(), Unit); 1269 } 1270 1271 /// CreateType - get objective-c interface type. 1272 llvm::DIType CGDebugInfo::CreateType(const ObjCInterfaceType *Ty, 1273 llvm::DIFile Unit) { 1274 ObjCInterfaceDecl *ID = Ty->getDecl(); 1275 if (!ID) 1276 return llvm::DIType(); 1277 1278 // Get overall information about the record type for the debug info. 1279 llvm::DIFile DefUnit = getOrCreateFile(ID->getLocation()); 1280 unsigned Line = getLineNumber(ID->getLocation()); 1281 unsigned RuntimeLang = TheCU.getLanguage(); 1282 1283 // If this is just a forward declaration return a special forward-declaration 1284 // debug type since we won't be able to lay out the entire type. 1285 ObjCInterfaceDecl *Def = ID->getDefinition(); 1286 if (!Def) { 1287 llvm::DIType FwdDecl = 1288 DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type, 1289 ID->getName(), TheCU, DefUnit, Line, 1290 RuntimeLang); 1291 return FwdDecl; 1292 } 1293 1294 ID = Def; 1295 1296 // Bit size, align and offset of the type. 1297 uint64_t Size = CGM.getContext().getTypeSize(Ty); 1298 uint64_t Align = CGM.getContext().getTypeAlign(Ty); 1299 1300 unsigned Flags = 0; 1301 if (ID->getImplementation()) 1302 Flags |= llvm::DIDescriptor::FlagObjcClassComplete; 1303 1304 llvm::DIType RealDecl = 1305 DBuilder.createStructType(Unit, ID->getName(), DefUnit, 1306 Line, Size, Align, Flags, 1307 llvm::DIArray(), RuntimeLang); 1308 1309 // Otherwise, insert it into the CompletedTypeCache so that recursive uses 1310 // will find it and we're emitting the complete type. 1311 CompletedTypeCache[QualType(Ty, 0).getAsOpaquePtr()] = RealDecl; 1312 // Push the struct on region stack. 1313 llvm::TrackingVH<llvm::MDNode> FwdDeclNode(RealDecl); 1314 1315 LexicalBlockStack.push_back(FwdDeclNode); 1316 RegionMap[Ty->getDecl()] = llvm::WeakVH(RealDecl); 1317 1318 // Convert all the elements. 1319 SmallVector<llvm::Value *, 16> EltTys; 1320 1321 ObjCInterfaceDecl *SClass = ID->getSuperClass(); 1322 if (SClass) { 1323 llvm::DIType SClassTy = 1324 getOrCreateType(CGM.getContext().getObjCInterfaceType(SClass), Unit); 1325 if (!SClassTy.isValid()) 1326 return llvm::DIType(); 1327 1328 llvm::DIType InhTag = 1329 DBuilder.createInheritance(RealDecl, SClassTy, 0, 0); 1330 EltTys.push_back(InhTag); 1331 } 1332 1333 for (ObjCContainerDecl::prop_iterator I = ID->prop_begin(), 1334 E = ID->prop_end(); I != E; ++I) { 1335 const ObjCPropertyDecl *PD = &*I; 1336 SourceLocation Loc = PD->getLocation(); 1337 llvm::DIFile PUnit = getOrCreateFile(Loc); 1338 unsigned PLine = getLineNumber(Loc); 1339 ObjCMethodDecl *Getter = PD->getGetterMethodDecl(); 1340 ObjCMethodDecl *Setter = PD->getSetterMethodDecl(); 1341 llvm::MDNode *PropertyNode = 1342 DBuilder.createObjCProperty(PD->getName(), 1343 PUnit, PLine, 1344 (Getter && Getter->isImplicit()) ? "" : 1345 getSelectorName(PD->getGetterName()), 1346 (Setter && Setter->isImplicit()) ? "" : 1347 getSelectorName(PD->getSetterName()), 1348 PD->getPropertyAttributes(), 1349 getOrCreateType(PD->getType(), PUnit)); 1350 EltTys.push_back(PropertyNode); 1351 } 1352 1353 const ASTRecordLayout &RL = CGM.getContext().getASTObjCInterfaceLayout(ID); 1354 unsigned FieldNo = 0; 1355 for (ObjCIvarDecl *Field = ID->all_declared_ivar_begin(); Field; 1356 Field = Field->getNextIvar(), ++FieldNo) { 1357 llvm::DIType FieldTy = getOrCreateType(Field->getType(), Unit); 1358 if (!FieldTy.isValid()) 1359 return llvm::DIType(); 1360 1361 StringRef FieldName = Field->getName(); 1362 1363 // Ignore unnamed fields. 1364 if (FieldName.empty()) 1365 continue; 1366 1367 // Get the location for the field. 1368 llvm::DIFile FieldDefUnit = getOrCreateFile(Field->getLocation()); 1369 unsigned FieldLine = getLineNumber(Field->getLocation()); 1370 QualType FType = Field->getType(); 1371 uint64_t FieldSize = 0; 1372 unsigned FieldAlign = 0; 1373 1374 if (!FType->isIncompleteArrayType()) { 1375 1376 // Bit size, align and offset of the type. 1377 FieldSize = Field->isBitField() 1378 ? Field->getBitWidthValue(CGM.getContext()) 1379 : CGM.getContext().getTypeSize(FType); 1380 FieldAlign = CGM.getContext().getTypeAlign(FType); 1381 } 1382 1383 // We can't know the offset of our ivar in the structure if we're using 1384 // the non-fragile abi and the debugger should ignore the value anyways. 1385 // Call it the FieldNo+1 due to how debuggers use the information, 1386 // e.g. negating the value when it needs a lookup in the dynamic table. 1387 uint64_t FieldOffset = CGM.getLangOpts().ObjCNonFragileABI ? FieldNo+1 1388 : RL.getFieldOffset(FieldNo); 1389 1390 unsigned Flags = 0; 1391 if (Field->getAccessControl() == ObjCIvarDecl::Protected) 1392 Flags = llvm::DIDescriptor::FlagProtected; 1393 else if (Field->getAccessControl() == ObjCIvarDecl::Private) 1394 Flags = llvm::DIDescriptor::FlagPrivate; 1395 1396 llvm::MDNode *PropertyNode = NULL; 1397 if (ObjCImplementationDecl *ImpD = ID->getImplementation()) { 1398 if (ObjCPropertyImplDecl *PImpD = 1399 ImpD->FindPropertyImplIvarDecl(Field->getIdentifier())) { 1400 if (ObjCPropertyDecl *PD = PImpD->getPropertyDecl()) { 1401 SourceLocation Loc = PD->getLocation(); 1402 llvm::DIFile PUnit = getOrCreateFile(Loc); 1403 unsigned PLine = getLineNumber(Loc); 1404 ObjCMethodDecl *Getter = PD->getGetterMethodDecl(); 1405 ObjCMethodDecl *Setter = PD->getSetterMethodDecl(); 1406 PropertyNode = 1407 DBuilder.createObjCProperty(PD->getName(), 1408 PUnit, PLine, 1409 (Getter && Getter->isImplicit()) ? "" : 1410 getSelectorName(PD->getGetterName()), 1411 (Setter && Setter->isImplicit()) ? "" : 1412 getSelectorName(PD->getSetterName()), 1413 PD->getPropertyAttributes(), 1414 getOrCreateType(PD->getType(), PUnit)); 1415 } 1416 } 1417 } 1418 FieldTy = DBuilder.createObjCIVar(FieldName, FieldDefUnit, 1419 FieldLine, FieldSize, FieldAlign, 1420 FieldOffset, Flags, FieldTy, 1421 PropertyNode); 1422 EltTys.push_back(FieldTy); 1423 } 1424 1425 llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys); 1426 FwdDeclNode->replaceOperandWith(10, Elements); 1427 1428 LexicalBlockStack.pop_back(); 1429 return llvm::DIType(FwdDeclNode); 1430 } 1431 1432 llvm::DIType CGDebugInfo::CreateType(const VectorType *Ty, llvm::DIFile Unit) { 1433 llvm::DIType ElementTy = getOrCreateType(Ty->getElementType(), Unit); 1434 int64_t NumElems = Ty->getNumElements(); 1435 int64_t LowerBound = 0; 1436 if (NumElems == 0) 1437 // If number of elements are not known then this is an unbounded array. 1438 // Use Low = 1, Hi = 0 to express such arrays. 1439 LowerBound = 1; 1440 else 1441 --NumElems; 1442 1443 llvm::Value *Subscript = DBuilder.getOrCreateSubrange(LowerBound, NumElems); 1444 llvm::DIArray SubscriptArray = DBuilder.getOrCreateArray(Subscript); 1445 1446 uint64_t Size = CGM.getContext().getTypeSize(Ty); 1447 uint64_t Align = CGM.getContext().getTypeAlign(Ty); 1448 1449 return 1450 DBuilder.createVectorType(Size, Align, ElementTy, SubscriptArray); 1451 } 1452 1453 llvm::DIType CGDebugInfo::CreateType(const ArrayType *Ty, 1454 llvm::DIFile Unit) { 1455 uint64_t Size; 1456 uint64_t Align; 1457 1458 1459 // FIXME: make getTypeAlign() aware of VLAs and incomplete array types 1460 if (const VariableArrayType *VAT = dyn_cast<VariableArrayType>(Ty)) { 1461 Size = 0; 1462 Align = 1463 CGM.getContext().getTypeAlign(CGM.getContext().getBaseElementType(VAT)); 1464 } else if (Ty->isIncompleteArrayType()) { 1465 Size = 0; 1466 Align = CGM.getContext().getTypeAlign(Ty->getElementType()); 1467 } else if (Ty->isDependentSizedArrayType() || Ty->isIncompleteType()) { 1468 Size = 0; 1469 Align = 0; 1470 } else { 1471 // Size and align of the whole array, not the element type. 1472 Size = CGM.getContext().getTypeSize(Ty); 1473 Align = CGM.getContext().getTypeAlign(Ty); 1474 } 1475 1476 // Add the dimensions of the array. FIXME: This loses CV qualifiers from 1477 // interior arrays, do we care? Why aren't nested arrays represented the 1478 // obvious/recursive way? 1479 SmallVector<llvm::Value *, 8> Subscripts; 1480 QualType EltTy(Ty, 0); 1481 if (Ty->isIncompleteArrayType()) 1482 EltTy = Ty->getElementType(); 1483 else { 1484 while ((Ty = dyn_cast<ArrayType>(EltTy))) { 1485 int64_t UpperBound = 0; 1486 int64_t LowerBound = 0; 1487 if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(Ty)) { 1488 if (CAT->getSize().getZExtValue()) 1489 UpperBound = CAT->getSize().getZExtValue() - 1; 1490 } else 1491 // This is an unbounded array. Use Low = 1, Hi = 0 to express such 1492 // arrays. 1493 LowerBound = 1; 1494 1495 // FIXME: Verify this is right for VLAs. 1496 Subscripts.push_back(DBuilder.getOrCreateSubrange(LowerBound, 1497 UpperBound)); 1498 EltTy = Ty->getElementType(); 1499 } 1500 } 1501 1502 llvm::DIArray SubscriptArray = DBuilder.getOrCreateArray(Subscripts); 1503 1504 llvm::DIType DbgTy = 1505 DBuilder.createArrayType(Size, Align, getOrCreateType(EltTy, Unit), 1506 SubscriptArray); 1507 return DbgTy; 1508 } 1509 1510 llvm::DIType CGDebugInfo::CreateType(const LValueReferenceType *Ty, 1511 llvm::DIFile Unit) { 1512 return CreatePointerLikeType(llvm::dwarf::DW_TAG_reference_type, 1513 Ty, Ty->getPointeeType(), Unit); 1514 } 1515 1516 llvm::DIType CGDebugInfo::CreateType(const RValueReferenceType *Ty, 1517 llvm::DIFile Unit) { 1518 return CreatePointerLikeType(llvm::dwarf::DW_TAG_rvalue_reference_type, 1519 Ty, Ty->getPointeeType(), Unit); 1520 } 1521 1522 llvm::DIType CGDebugInfo::CreateType(const MemberPointerType *Ty, 1523 llvm::DIFile U) { 1524 QualType PointerDiffTy = CGM.getContext().getPointerDiffType(); 1525 llvm::DIType PointerDiffDITy = getOrCreateType(PointerDiffTy, U); 1526 1527 if (!Ty->getPointeeType()->isFunctionType()) { 1528 // We have a data member pointer type. 1529 return PointerDiffDITy; 1530 } 1531 1532 // We have a member function pointer type. Treat it as a struct with two 1533 // ptrdiff_t members. 1534 std::pair<uint64_t, unsigned> Info = CGM.getContext().getTypeInfo(Ty); 1535 1536 uint64_t FieldOffset = 0; 1537 llvm::Value *ElementTypes[2]; 1538 1539 // FIXME: This should probably be a function type instead. 1540 ElementTypes[0] = 1541 DBuilder.createMemberType(U, "ptr", U, 0, 1542 Info.first, Info.second, FieldOffset, 0, 1543 PointerDiffDITy); 1544 FieldOffset += Info.first; 1545 1546 ElementTypes[1] = 1547 DBuilder.createMemberType(U, "ptr", U, 0, 1548 Info.first, Info.second, FieldOffset, 0, 1549 PointerDiffDITy); 1550 1551 llvm::DIArray Elements = DBuilder.getOrCreateArray(ElementTypes); 1552 1553 return DBuilder.createStructType(U, StringRef("test"), 1554 U, 0, FieldOffset, 1555 0, 0, Elements); 1556 } 1557 1558 llvm::DIType CGDebugInfo::CreateType(const AtomicType *Ty, 1559 llvm::DIFile U) { 1560 // Ignore the atomic wrapping 1561 // FIXME: What is the correct representation? 1562 return getOrCreateType(Ty->getValueType(), U); 1563 } 1564 1565 /// CreateEnumType - get enumeration type. 1566 llvm::DIType CGDebugInfo::CreateEnumType(const EnumDecl *ED) { 1567 llvm::DIFile Unit = getOrCreateFile(ED->getLocation()); 1568 SmallVector<llvm::Value *, 16> Enumerators; 1569 1570 // Create DIEnumerator elements for each enumerator. 1571 for (EnumDecl::enumerator_iterator 1572 Enum = ED->enumerator_begin(), EnumEnd = ED->enumerator_end(); 1573 Enum != EnumEnd; ++Enum) { 1574 Enumerators.push_back( 1575 DBuilder.createEnumerator(Enum->getName(), 1576 Enum->getInitVal().getZExtValue())); 1577 } 1578 1579 // Return a CompositeType for the enum itself. 1580 llvm::DIArray EltArray = DBuilder.getOrCreateArray(Enumerators); 1581 1582 llvm::DIFile DefUnit = getOrCreateFile(ED->getLocation()); 1583 unsigned Line = getLineNumber(ED->getLocation()); 1584 uint64_t Size = 0; 1585 uint64_t Align = 0; 1586 if (!ED->getTypeForDecl()->isIncompleteType()) { 1587 Size = CGM.getContext().getTypeSize(ED->getTypeForDecl()); 1588 Align = CGM.getContext().getTypeAlign(ED->getTypeForDecl()); 1589 } 1590 llvm::DIDescriptor EnumContext = 1591 getContextDescriptor(cast<Decl>(ED->getDeclContext())); 1592 llvm::DIType DbgTy = 1593 DBuilder.createEnumerationType(EnumContext, ED->getName(), DefUnit, Line, 1594 Size, Align, EltArray); 1595 return DbgTy; 1596 } 1597 1598 static QualType UnwrapTypeForDebugInfo(QualType T) { 1599 do { 1600 QualType LastT = T; 1601 switch (T->getTypeClass()) { 1602 default: 1603 return T; 1604 case Type::TemplateSpecialization: 1605 T = cast<TemplateSpecializationType>(T)->desugar(); 1606 break; 1607 case Type::TypeOfExpr: 1608 T = cast<TypeOfExprType>(T)->getUnderlyingExpr()->getType(); 1609 break; 1610 case Type::TypeOf: 1611 T = cast<TypeOfType>(T)->getUnderlyingType(); 1612 break; 1613 case Type::Decltype: 1614 T = cast<DecltypeType>(T)->getUnderlyingType(); 1615 break; 1616 case Type::UnaryTransform: 1617 T = cast<UnaryTransformType>(T)->getUnderlyingType(); 1618 break; 1619 case Type::Attributed: 1620 T = cast<AttributedType>(T)->getEquivalentType(); 1621 break; 1622 case Type::Elaborated: 1623 T = cast<ElaboratedType>(T)->getNamedType(); 1624 break; 1625 case Type::Paren: 1626 T = cast<ParenType>(T)->getInnerType(); 1627 break; 1628 case Type::SubstTemplateTypeParm: 1629 T = cast<SubstTemplateTypeParmType>(T)->getReplacementType(); 1630 break; 1631 case Type::Auto: 1632 T = cast<AutoType>(T)->getDeducedType(); 1633 break; 1634 } 1635 1636 assert(T != LastT && "Type unwrapping failed to unwrap!"); 1637 if (T == LastT) 1638 return T; 1639 } while (true); 1640 } 1641 1642 /// getType - Get the type from the cache or return null type if it doesn't exist. 1643 llvm::DIType CGDebugInfo::getTypeOrNull(QualType Ty) { 1644 1645 // Unwrap the type as needed for debug information. 1646 Ty = UnwrapTypeForDebugInfo(Ty); 1647 1648 // Check for existing entry. 1649 llvm::DenseMap<void *, llvm::WeakVH>::iterator it = 1650 TypeCache.find(Ty.getAsOpaquePtr()); 1651 if (it != TypeCache.end()) { 1652 // Verify that the debug info still exists. 1653 if (&*it->second) 1654 return llvm::DIType(cast<llvm::MDNode>(it->second)); 1655 } 1656 1657 return llvm::DIType(); 1658 } 1659 1660 /// getCompletedTypeOrNull - Get the type from the cache or return null if it 1661 /// doesn't exist. 1662 llvm::DIType CGDebugInfo::getCompletedTypeOrNull(QualType Ty) { 1663 1664 // Unwrap the type as needed for debug information. 1665 Ty = UnwrapTypeForDebugInfo(Ty); 1666 1667 // Check for existing entry. 1668 llvm::DenseMap<void *, llvm::WeakVH>::iterator it = 1669 CompletedTypeCache.find(Ty.getAsOpaquePtr()); 1670 if (it != CompletedTypeCache.end()) { 1671 // Verify that the debug info still exists. 1672 if (&*it->second) 1673 return llvm::DIType(cast<llvm::MDNode>(it->second)); 1674 } 1675 1676 return llvm::DIType(); 1677 } 1678 1679 1680 /// getOrCreateType - Get the type from the cache or create a new 1681 /// one if necessary. 1682 llvm::DIType CGDebugInfo::getOrCreateType(QualType Ty, llvm::DIFile Unit) { 1683 if (Ty.isNull()) 1684 return llvm::DIType(); 1685 1686 // Unwrap the type as needed for debug information. 1687 Ty = UnwrapTypeForDebugInfo(Ty); 1688 1689 llvm::DIType T = getCompletedTypeOrNull(Ty); 1690 1691 if (T.Verify()) return T; 1692 1693 // Otherwise create the type. 1694 llvm::DIType Res = CreateTypeNode(Ty, Unit); 1695 1696 llvm::DIType TC = getTypeOrNull(Ty); 1697 if (TC.Verify() && TC.isForwardDecl()) 1698 ReplaceMap.push_back(std::make_pair(Ty.getAsOpaquePtr(), TC)); 1699 1700 // And update the type cache. 1701 TypeCache[Ty.getAsOpaquePtr()] = Res; 1702 1703 if (!Res.isForwardDecl()) 1704 CompletedTypeCache[Ty.getAsOpaquePtr()] = Res; 1705 return Res; 1706 } 1707 1708 /// CreateTypeNode - Create a new debug type node. 1709 llvm::DIType CGDebugInfo::CreateTypeNode(QualType Ty, llvm::DIFile Unit) { 1710 // Handle qualifiers, which recursively handles what they refer to. 1711 if (Ty.hasLocalQualifiers()) 1712 return CreateQualifiedType(Ty, Unit); 1713 1714 const char *Diag = 0; 1715 1716 // Work out details of type. 1717 switch (Ty->getTypeClass()) { 1718 #define TYPE(Class, Base) 1719 #define ABSTRACT_TYPE(Class, Base) 1720 #define NON_CANONICAL_TYPE(Class, Base) 1721 #define DEPENDENT_TYPE(Class, Base) case Type::Class: 1722 #include "clang/AST/TypeNodes.def" 1723 llvm_unreachable("Dependent types cannot show up in debug information"); 1724 1725 case Type::ExtVector: 1726 case Type::Vector: 1727 return CreateType(cast<VectorType>(Ty), Unit); 1728 case Type::ObjCObjectPointer: 1729 return CreateType(cast<ObjCObjectPointerType>(Ty), Unit); 1730 case Type::ObjCObject: 1731 return CreateType(cast<ObjCObjectType>(Ty), Unit); 1732 case Type::ObjCInterface: 1733 return CreateType(cast<ObjCInterfaceType>(Ty), Unit); 1734 case Type::Builtin: 1735 return CreateType(cast<BuiltinType>(Ty)); 1736 case Type::Complex: 1737 return CreateType(cast<ComplexType>(Ty)); 1738 case Type::Pointer: 1739 return CreateType(cast<PointerType>(Ty), Unit); 1740 case Type::BlockPointer: 1741 return CreateType(cast<BlockPointerType>(Ty), Unit); 1742 case Type::Typedef: 1743 return CreateType(cast<TypedefType>(Ty), Unit); 1744 case Type::Record: 1745 return CreateType(cast<RecordType>(Ty)); 1746 case Type::Enum: 1747 return CreateEnumType(cast<EnumType>(Ty)->getDecl()); 1748 case Type::FunctionProto: 1749 case Type::FunctionNoProto: 1750 return CreateType(cast<FunctionType>(Ty), Unit); 1751 case Type::ConstantArray: 1752 case Type::VariableArray: 1753 case Type::IncompleteArray: 1754 return CreateType(cast<ArrayType>(Ty), Unit); 1755 1756 case Type::LValueReference: 1757 return CreateType(cast<LValueReferenceType>(Ty), Unit); 1758 case Type::RValueReference: 1759 return CreateType(cast<RValueReferenceType>(Ty), Unit); 1760 1761 case Type::MemberPointer: 1762 return CreateType(cast<MemberPointerType>(Ty), Unit); 1763 1764 case Type::Atomic: 1765 return CreateType(cast<AtomicType>(Ty), Unit); 1766 1767 case Type::Attributed: 1768 case Type::TemplateSpecialization: 1769 case Type::Elaborated: 1770 case Type::Paren: 1771 case Type::SubstTemplateTypeParm: 1772 case Type::TypeOfExpr: 1773 case Type::TypeOf: 1774 case Type::Decltype: 1775 case Type::UnaryTransform: 1776 case Type::Auto: 1777 llvm_unreachable("type should have been unwrapped!"); 1778 } 1779 1780 assert(Diag && "Fall through without a diagnostic?"); 1781 unsigned DiagID = CGM.getDiags().getCustomDiagID(DiagnosticsEngine::Error, 1782 "debug information for %0 is not yet supported"); 1783 CGM.getDiags().Report(DiagID) 1784 << Diag; 1785 return llvm::DIType(); 1786 } 1787 1788 /// getOrCreateLimitedType - Get the type from the cache or create a new 1789 /// limited type if necessary. 1790 llvm::DIType CGDebugInfo::getOrCreateLimitedType(QualType Ty, 1791 llvm::DIFile Unit) { 1792 if (Ty.isNull()) 1793 return llvm::DIType(); 1794 1795 // Unwrap the type as needed for debug information. 1796 Ty = UnwrapTypeForDebugInfo(Ty); 1797 1798 llvm::DIType T = getTypeOrNull(Ty); 1799 1800 // We may have cached a forward decl when we could have created 1801 // a non-forward decl. Go ahead and create a non-forward decl 1802 // now. 1803 if (T.Verify() && !T.isForwardDecl()) return T; 1804 1805 // Otherwise create the type. 1806 llvm::DIType Res = CreateLimitedTypeNode(Ty, Unit); 1807 1808 if (T.Verify() && T.isForwardDecl()) 1809 ReplaceMap.push_back(std::make_pair(Ty.getAsOpaquePtr(), T)); 1810 1811 // And update the type cache. 1812 TypeCache[Ty.getAsOpaquePtr()] = Res; 1813 return Res; 1814 } 1815 1816 // TODO: Currently used for context chains when limiting debug info. 1817 llvm::DIType CGDebugInfo::CreateLimitedType(const RecordType *Ty) { 1818 RecordDecl *RD = Ty->getDecl(); 1819 1820 // Get overall information about the record type for the debug info. 1821 llvm::DIFile DefUnit = getOrCreateFile(RD->getLocation()); 1822 unsigned Line = getLineNumber(RD->getLocation()); 1823 StringRef RDName = RD->getName(); 1824 1825 llvm::DIDescriptor RDContext; 1826 if (CGM.getCodeGenOpts().DebugInfo == CodeGenOptions::LimitedDebugInfo) 1827 RDContext = createContextChain(cast<Decl>(RD->getDeclContext())); 1828 else 1829 RDContext = getContextDescriptor(cast<Decl>(RD->getDeclContext())); 1830 1831 // If this is just a forward declaration, construct an appropriately 1832 // marked node and just return it. 1833 if (!RD->getDefinition()) 1834 return createRecordFwdDecl(RD, RDContext); 1835 1836 uint64_t Size = CGM.getContext().getTypeSize(Ty); 1837 uint64_t Align = CGM.getContext().getTypeAlign(Ty); 1838 const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD); 1839 llvm::TrackingVH<llvm::MDNode> RealDecl; 1840 1841 if (RD->isUnion()) 1842 RealDecl = DBuilder.createUnionType(RDContext, RDName, DefUnit, Line, 1843 Size, Align, 0, llvm::DIArray()); 1844 else if (CXXDecl) { 1845 RDName = getClassName(RD); 1846 1847 // FIXME: This could be a struct type giving a default visibility different 1848 // than C++ class type, but needs llvm metadata changes first. 1849 RealDecl = DBuilder.createClassType(RDContext, RDName, DefUnit, Line, 1850 Size, Align, 0, 0, llvm::DIType(), 1851 llvm::DIArray(), llvm::DIType(), 1852 llvm::DIArray()); 1853 } else 1854 RealDecl = DBuilder.createStructType(RDContext, RDName, DefUnit, Line, 1855 Size, Align, 0, llvm::DIArray()); 1856 1857 RegionMap[Ty->getDecl()] = llvm::WeakVH(RealDecl); 1858 TypeCache[QualType(Ty, 0).getAsOpaquePtr()] = llvm::DIType(RealDecl); 1859 1860 if (CXXDecl) { 1861 // A class's primary base or the class itself contains the vtable. 1862 llvm::MDNode *ContainingType = NULL; 1863 const ASTRecordLayout &RL = CGM.getContext().getASTRecordLayout(RD); 1864 if (const CXXRecordDecl *PBase = RL.getPrimaryBase()) { 1865 // Seek non virtual primary base root. 1866 while (1) { 1867 const ASTRecordLayout &BRL = CGM.getContext().getASTRecordLayout(PBase); 1868 const CXXRecordDecl *PBT = BRL.getPrimaryBase(); 1869 if (PBT && !BRL.isPrimaryBaseVirtual()) 1870 PBase = PBT; 1871 else 1872 break; 1873 } 1874 ContainingType = 1875 getOrCreateType(QualType(PBase->getTypeForDecl(), 0), DefUnit); 1876 } 1877 else if (CXXDecl->isDynamicClass()) 1878 ContainingType = RealDecl; 1879 1880 RealDecl->replaceOperandWith(12, ContainingType); 1881 } 1882 return llvm::DIType(RealDecl); 1883 } 1884 1885 /// CreateLimitedTypeNode - Create a new debug type node, but only forward 1886 /// declare composite types that haven't been processed yet. 1887 llvm::DIType CGDebugInfo::CreateLimitedTypeNode(QualType Ty,llvm::DIFile Unit) { 1888 1889 // Work out details of type. 1890 switch (Ty->getTypeClass()) { 1891 #define TYPE(Class, Base) 1892 #define ABSTRACT_TYPE(Class, Base) 1893 #define NON_CANONICAL_TYPE(Class, Base) 1894 #define DEPENDENT_TYPE(Class, Base) case Type::Class: 1895 #include "clang/AST/TypeNodes.def" 1896 llvm_unreachable("Dependent types cannot show up in debug information"); 1897 1898 case Type::Record: 1899 return CreateLimitedType(cast<RecordType>(Ty)); 1900 default: 1901 return CreateTypeNode(Ty, Unit); 1902 } 1903 } 1904 1905 /// CreateMemberType - Create new member and increase Offset by FType's size. 1906 llvm::DIType CGDebugInfo::CreateMemberType(llvm::DIFile Unit, QualType FType, 1907 StringRef Name, 1908 uint64_t *Offset) { 1909 llvm::DIType FieldTy = CGDebugInfo::getOrCreateType(FType, Unit); 1910 uint64_t FieldSize = CGM.getContext().getTypeSize(FType); 1911 unsigned FieldAlign = CGM.getContext().getTypeAlign(FType); 1912 llvm::DIType Ty = DBuilder.createMemberType(Unit, Name, Unit, 0, 1913 FieldSize, FieldAlign, 1914 *Offset, 0, FieldTy); 1915 *Offset += FieldSize; 1916 return Ty; 1917 } 1918 1919 /// getFunctionDeclaration - Return debug info descriptor to describe method 1920 /// declaration for the given method definition. 1921 llvm::DISubprogram CGDebugInfo::getFunctionDeclaration(const Decl *D) { 1922 const FunctionDecl *FD = dyn_cast<FunctionDecl>(D); 1923 if (!FD) return llvm::DISubprogram(); 1924 1925 // Setup context. 1926 getContextDescriptor(cast<Decl>(D->getDeclContext())); 1927 1928 llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator 1929 MI = SPCache.find(FD->getCanonicalDecl()); 1930 if (MI != SPCache.end()) { 1931 llvm::DISubprogram SP(dyn_cast_or_null<llvm::MDNode>(&*MI->second)); 1932 if (SP.isSubprogram() && !llvm::DISubprogram(SP).isDefinition()) 1933 return SP; 1934 } 1935 1936 for (FunctionDecl::redecl_iterator I = FD->redecls_begin(), 1937 E = FD->redecls_end(); I != E; ++I) { 1938 const FunctionDecl *NextFD = *I; 1939 llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator 1940 MI = SPCache.find(NextFD->getCanonicalDecl()); 1941 if (MI != SPCache.end()) { 1942 llvm::DISubprogram SP(dyn_cast_or_null<llvm::MDNode>(&*MI->second)); 1943 if (SP.isSubprogram() && !llvm::DISubprogram(SP).isDefinition()) 1944 return SP; 1945 } 1946 } 1947 return llvm::DISubprogram(); 1948 } 1949 1950 // getOrCreateFunctionType - Construct DIType. If it is a c++ method, include 1951 // implicit parameter "this". 1952 llvm::DIType CGDebugInfo::getOrCreateFunctionType(const Decl * D, 1953 QualType FnType, 1954 llvm::DIFile F) { 1955 if (const CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(D)) 1956 return getOrCreateMethodType(Method, F); 1957 if (const ObjCMethodDecl *OMethod = dyn_cast<ObjCMethodDecl>(D)) { 1958 // Add "self" and "_cmd" 1959 SmallVector<llvm::Value *, 16> Elts; 1960 1961 // First element is always return type. For 'void' functions it is NULL. 1962 Elts.push_back(getOrCreateType(OMethod->getResultType(), F)); 1963 // "self" pointer is always first argument. 1964 Elts.push_back(getOrCreateType(OMethod->getSelfDecl()->getType(), F)); 1965 // "cmd" pointer is always second argument. 1966 Elts.push_back(getOrCreateType(OMethod->getCmdDecl()->getType(), F)); 1967 // Get rest of the arguments. 1968 for (ObjCMethodDecl::param_const_iterator PI = OMethod->param_begin(), 1969 PE = OMethod->param_end(); PI != PE; ++PI) 1970 Elts.push_back(getOrCreateType((*PI)->getType(), F)); 1971 1972 llvm::DIArray EltTypeArray = DBuilder.getOrCreateArray(Elts); 1973 return DBuilder.createSubroutineType(F, EltTypeArray); 1974 } 1975 return getOrCreateType(FnType, F); 1976 } 1977 1978 /// EmitFunctionStart - Constructs the debug code for entering a function. 1979 void CGDebugInfo::EmitFunctionStart(GlobalDecl GD, QualType FnType, 1980 llvm::Function *Fn, 1981 CGBuilderTy &Builder) { 1982 1983 StringRef Name; 1984 StringRef LinkageName; 1985 1986 FnBeginRegionCount.push_back(LexicalBlockStack.size()); 1987 1988 const Decl *D = GD.getDecl(); 1989 // Use the location of the declaration. 1990 SourceLocation Loc = D->getLocation(); 1991 1992 unsigned Flags = 0; 1993 llvm::DIFile Unit = getOrCreateFile(Loc); 1994 llvm::DIDescriptor FDContext(Unit); 1995 llvm::DIArray TParamsArray; 1996 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) { 1997 // If there is a DISubprogram for this function available then use it. 1998 llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator 1999 FI = SPCache.find(FD->getCanonicalDecl()); 2000 if (FI != SPCache.end()) { 2001 llvm::DIDescriptor SP(dyn_cast_or_null<llvm::MDNode>(&*FI->second)); 2002 if (SP.isSubprogram() && llvm::DISubprogram(SP).isDefinition()) { 2003 llvm::MDNode *SPN = SP; 2004 LexicalBlockStack.push_back(SPN); 2005 RegionMap[D] = llvm::WeakVH(SP); 2006 return; 2007 } 2008 } 2009 Name = getFunctionName(FD); 2010 // Use mangled name as linkage name for c/c++ functions. 2011 if (FD->hasPrototype()) { 2012 LinkageName = CGM.getMangledName(GD); 2013 Flags |= llvm::DIDescriptor::FlagPrototyped; 2014 } 2015 if (LinkageName == Name) 2016 LinkageName = StringRef(); 2017 2018 if (const NamespaceDecl *NSDecl = 2019 dyn_cast_or_null<NamespaceDecl>(FD->getDeclContext())) 2020 FDContext = getOrCreateNameSpace(NSDecl); 2021 else if (const RecordDecl *RDecl = 2022 dyn_cast_or_null<RecordDecl>(FD->getDeclContext())) 2023 FDContext = getContextDescriptor(cast<Decl>(RDecl->getDeclContext())); 2024 2025 // Collect template parameters. 2026 TParamsArray = CollectFunctionTemplateParams(FD, Unit); 2027 } else if (const ObjCMethodDecl *OMD = dyn_cast<ObjCMethodDecl>(D)) { 2028 Name = getObjCMethodName(OMD); 2029 Flags |= llvm::DIDescriptor::FlagPrototyped; 2030 } else { 2031 // Use llvm function name. 2032 Name = Fn->getName(); 2033 Flags |= llvm::DIDescriptor::FlagPrototyped; 2034 } 2035 if (!Name.empty() && Name[0] == '\01') 2036 Name = Name.substr(1); 2037 2038 unsigned LineNo = getLineNumber(Loc); 2039 if (D->isImplicit()) 2040 Flags |= llvm::DIDescriptor::FlagArtificial; 2041 2042 llvm::DISubprogram SPDecl = getFunctionDeclaration(D); 2043 llvm::DISubprogram SP = 2044 DBuilder.createFunction(FDContext, Name, LinkageName, Unit, 2045 LineNo, getOrCreateFunctionType(D, FnType, Unit), 2046 Fn->hasInternalLinkage(), true/*definition*/, 2047 getLineNumber(CurLoc), 2048 Flags, CGM.getLangOpts().Optimize, Fn, 2049 TParamsArray, SPDecl); 2050 2051 // Push function on region stack. 2052 llvm::MDNode *SPN = SP; 2053 LexicalBlockStack.push_back(SPN); 2054 RegionMap[D] = llvm::WeakVH(SP); 2055 } 2056 2057 /// EmitLocation - Emit metadata to indicate a change in line/column 2058 /// information in the source file. 2059 void CGDebugInfo::EmitLocation(CGBuilderTy &Builder, SourceLocation Loc) { 2060 2061 // Update our current location 2062 setLocation(Loc); 2063 2064 if (CurLoc.isInvalid() || CurLoc.isMacroID()) return; 2065 2066 // Don't bother if things are the same as last time. 2067 SourceManager &SM = CGM.getContext().getSourceManager(); 2068 if (CurLoc == PrevLoc || 2069 SM.getExpansionLoc(CurLoc) == SM.getExpansionLoc(PrevLoc)) 2070 // New Builder may not be in sync with CGDebugInfo. 2071 if (!Builder.getCurrentDebugLocation().isUnknown()) 2072 return; 2073 2074 // Update last state. 2075 PrevLoc = CurLoc; 2076 2077 llvm::MDNode *Scope = LexicalBlockStack.back(); 2078 Builder.SetCurrentDebugLocation(llvm::DebugLoc::get(getLineNumber(CurLoc), 2079 getColumnNumber(CurLoc), 2080 Scope)); 2081 } 2082 2083 /// CreateLexicalBlock - Creates a new lexical block node and pushes it on 2084 /// the stack. 2085 void CGDebugInfo::CreateLexicalBlock(SourceLocation Loc) { 2086 llvm::DIDescriptor D = 2087 DBuilder.createLexicalBlock(LexicalBlockStack.empty() ? 2088 llvm::DIDescriptor() : 2089 llvm::DIDescriptor(LexicalBlockStack.back()), 2090 getOrCreateFile(CurLoc), 2091 getLineNumber(CurLoc), 2092 getColumnNumber(CurLoc)); 2093 llvm::MDNode *DN = D; 2094 LexicalBlockStack.push_back(DN); 2095 } 2096 2097 /// EmitLexicalBlockStart - Constructs the debug code for entering a declarative 2098 /// region - beginning of a DW_TAG_lexical_block. 2099 void CGDebugInfo::EmitLexicalBlockStart(CGBuilderTy &Builder, SourceLocation Loc) { 2100 // Set our current location. 2101 setLocation(Loc); 2102 2103 // Create a new lexical block and push it on the stack. 2104 CreateLexicalBlock(Loc); 2105 2106 // Emit a line table change for the current location inside the new scope. 2107 Builder.SetCurrentDebugLocation(llvm::DebugLoc::get(getLineNumber(Loc), 2108 getColumnNumber(Loc), 2109 LexicalBlockStack.back())); 2110 } 2111 2112 /// EmitLexicalBlockEnd - Constructs the debug code for exiting a declarative 2113 /// region - end of a DW_TAG_lexical_block. 2114 void CGDebugInfo::EmitLexicalBlockEnd(CGBuilderTy &Builder, SourceLocation Loc) { 2115 assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!"); 2116 2117 // Provide an entry in the line table for the end of the block. 2118 EmitLocation(Builder, Loc); 2119 2120 LexicalBlockStack.pop_back(); 2121 } 2122 2123 /// EmitFunctionEnd - Constructs the debug code for exiting a function. 2124 void CGDebugInfo::EmitFunctionEnd(CGBuilderTy &Builder) { 2125 assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!"); 2126 unsigned RCount = FnBeginRegionCount.back(); 2127 assert(RCount <= LexicalBlockStack.size() && "Region stack mismatch"); 2128 2129 // Pop all regions for this function. 2130 while (LexicalBlockStack.size() != RCount) 2131 EmitLexicalBlockEnd(Builder, CurLoc); 2132 FnBeginRegionCount.pop_back(); 2133 } 2134 2135 // EmitTypeForVarWithBlocksAttr - Build up structure info for the byref. 2136 // See BuildByRefType. 2137 llvm::DIType CGDebugInfo::EmitTypeForVarWithBlocksAttr(const ValueDecl *VD, 2138 uint64_t *XOffset) { 2139 2140 SmallVector<llvm::Value *, 5> EltTys; 2141 QualType FType; 2142 uint64_t FieldSize, FieldOffset; 2143 unsigned FieldAlign; 2144 2145 llvm::DIFile Unit = getOrCreateFile(VD->getLocation()); 2146 QualType Type = VD->getType(); 2147 2148 FieldOffset = 0; 2149 FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy); 2150 EltTys.push_back(CreateMemberType(Unit, FType, "__isa", &FieldOffset)); 2151 EltTys.push_back(CreateMemberType(Unit, FType, "__forwarding", &FieldOffset)); 2152 FType = CGM.getContext().IntTy; 2153 EltTys.push_back(CreateMemberType(Unit, FType, "__flags", &FieldOffset)); 2154 EltTys.push_back(CreateMemberType(Unit, FType, "__size", &FieldOffset)); 2155 2156 bool HasCopyAndDispose = CGM.getContext().BlockRequiresCopying(Type); 2157 if (HasCopyAndDispose) { 2158 FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy); 2159 EltTys.push_back(CreateMemberType(Unit, FType, "__copy_helper", 2160 &FieldOffset)); 2161 EltTys.push_back(CreateMemberType(Unit, FType, "__destroy_helper", 2162 &FieldOffset)); 2163 } 2164 2165 CharUnits Align = CGM.getContext().getDeclAlign(VD); 2166 if (Align > CGM.getContext().toCharUnitsFromBits( 2167 CGM.getContext().getTargetInfo().getPointerAlign(0))) { 2168 CharUnits FieldOffsetInBytes 2169 = CGM.getContext().toCharUnitsFromBits(FieldOffset); 2170 CharUnits AlignedOffsetInBytes 2171 = FieldOffsetInBytes.RoundUpToAlignment(Align); 2172 CharUnits NumPaddingBytes 2173 = AlignedOffsetInBytes - FieldOffsetInBytes; 2174 2175 if (NumPaddingBytes.isPositive()) { 2176 llvm::APInt pad(32, NumPaddingBytes.getQuantity()); 2177 FType = CGM.getContext().getConstantArrayType(CGM.getContext().CharTy, 2178 pad, ArrayType::Normal, 0); 2179 EltTys.push_back(CreateMemberType(Unit, FType, "", &FieldOffset)); 2180 } 2181 } 2182 2183 FType = Type; 2184 llvm::DIType FieldTy = CGDebugInfo::getOrCreateType(FType, Unit); 2185 FieldSize = CGM.getContext().getTypeSize(FType); 2186 FieldAlign = CGM.getContext().toBits(Align); 2187 2188 *XOffset = FieldOffset; 2189 FieldTy = DBuilder.createMemberType(Unit, VD->getName(), Unit, 2190 0, FieldSize, FieldAlign, 2191 FieldOffset, 0, FieldTy); 2192 EltTys.push_back(FieldTy); 2193 FieldOffset += FieldSize; 2194 2195 llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys); 2196 2197 unsigned Flags = llvm::DIDescriptor::FlagBlockByrefStruct; 2198 2199 return DBuilder.createStructType(Unit, "", Unit, 0, FieldOffset, 0, Flags, 2200 Elements); 2201 } 2202 2203 /// EmitDeclare - Emit local variable declaration debug info. 2204 void CGDebugInfo::EmitDeclare(const VarDecl *VD, unsigned Tag, 2205 llvm::Value *Storage, 2206 unsigned ArgNo, CGBuilderTy &Builder) { 2207 assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!"); 2208 2209 llvm::DIFile Unit = getOrCreateFile(VD->getLocation()); 2210 llvm::DIType Ty; 2211 uint64_t XOffset = 0; 2212 if (VD->hasAttr<BlocksAttr>()) 2213 Ty = EmitTypeForVarWithBlocksAttr(VD, &XOffset); 2214 else 2215 Ty = getOrCreateType(VD->getType(), Unit); 2216 2217 // If there is not any debug info for type then do not emit debug info 2218 // for this variable. 2219 if (!Ty) 2220 return; 2221 2222 if (llvm::Argument *Arg = dyn_cast<llvm::Argument>(Storage)) { 2223 // If Storage is an aggregate returned as 'sret' then let debugger know 2224 // about this. 2225 if (Arg->hasStructRetAttr()) 2226 Ty = DBuilder.createReferenceType(Ty); 2227 else if (CXXRecordDecl *Record = VD->getType()->getAsCXXRecordDecl()) { 2228 // If an aggregate variable has non trivial destructor or non trivial copy 2229 // constructor than it is pass indirectly. Let debug info know about this 2230 // by using reference of the aggregate type as a argument type. 2231 if (!Record->hasTrivialCopyConstructor() || 2232 !Record->hasTrivialDestructor()) 2233 Ty = DBuilder.createReferenceType(Ty); 2234 } 2235 } 2236 2237 // Get location information. 2238 unsigned Line = getLineNumber(VD->getLocation()); 2239 unsigned Column = getColumnNumber(VD->getLocation()); 2240 unsigned Flags = 0; 2241 if (VD->isImplicit()) 2242 Flags |= llvm::DIDescriptor::FlagArtificial; 2243 llvm::MDNode *Scope = LexicalBlockStack.back(); 2244 2245 StringRef Name = VD->getName(); 2246 if (!Name.empty()) { 2247 if (VD->hasAttr<BlocksAttr>()) { 2248 CharUnits offset = CharUnits::fromQuantity(32); 2249 SmallVector<llvm::Value *, 9> addr; 2250 llvm::Type *Int64Ty = CGM.Int64Ty; 2251 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus)); 2252 // offset of __forwarding field 2253 offset = CGM.getContext().toCharUnitsFromBits( 2254 CGM.getContext().getTargetInfo().getPointerWidth(0)); 2255 addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity())); 2256 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref)); 2257 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus)); 2258 // offset of x field 2259 offset = CGM.getContext().toCharUnitsFromBits(XOffset); 2260 addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity())); 2261 2262 // Create the descriptor for the variable. 2263 llvm::DIVariable D = 2264 DBuilder.createComplexVariable(Tag, 2265 llvm::DIDescriptor(Scope), 2266 VD->getName(), Unit, Line, Ty, 2267 addr, ArgNo); 2268 2269 // Insert an llvm.dbg.declare into the current block. 2270 llvm::Instruction *Call = 2271 DBuilder.insertDeclare(Storage, D, Builder.GetInsertBlock()); 2272 Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, Scope)); 2273 return; 2274 } 2275 // Create the descriptor for the variable. 2276 llvm::DIVariable D = 2277 DBuilder.createLocalVariable(Tag, llvm::DIDescriptor(Scope), 2278 Name, Unit, Line, Ty, 2279 CGM.getLangOpts().Optimize, Flags, ArgNo); 2280 2281 // Insert an llvm.dbg.declare into the current block. 2282 llvm::Instruction *Call = 2283 DBuilder.insertDeclare(Storage, D, Builder.GetInsertBlock()); 2284 Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, Scope)); 2285 return; 2286 } 2287 2288 // If VD is an anonymous union then Storage represents value for 2289 // all union fields. 2290 if (const RecordType *RT = dyn_cast<RecordType>(VD->getType())) { 2291 const RecordDecl *RD = cast<RecordDecl>(RT->getDecl()); 2292 if (RD->isUnion()) { 2293 for (RecordDecl::field_iterator I = RD->field_begin(), 2294 E = RD->field_end(); 2295 I != E; ++I) { 2296 FieldDecl *Field = &*I; 2297 llvm::DIType FieldTy = getOrCreateType(Field->getType(), Unit); 2298 StringRef FieldName = Field->getName(); 2299 2300 // Ignore unnamed fields. Do not ignore unnamed records. 2301 if (FieldName.empty() && !isa<RecordType>(Field->getType())) 2302 continue; 2303 2304 // Use VarDecl's Tag, Scope and Line number. 2305 llvm::DIVariable D = 2306 DBuilder.createLocalVariable(Tag, llvm::DIDescriptor(Scope), 2307 FieldName, Unit, Line, FieldTy, 2308 CGM.getLangOpts().Optimize, Flags, 2309 ArgNo); 2310 2311 // Insert an llvm.dbg.declare into the current block. 2312 llvm::Instruction *Call = 2313 DBuilder.insertDeclare(Storage, D, Builder.GetInsertBlock()); 2314 Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, Scope)); 2315 } 2316 } 2317 } 2318 } 2319 2320 void CGDebugInfo::EmitDeclareOfAutoVariable(const VarDecl *VD, 2321 llvm::Value *Storage, 2322 CGBuilderTy &Builder) { 2323 EmitDeclare(VD, llvm::dwarf::DW_TAG_auto_variable, Storage, 0, Builder); 2324 } 2325 2326 void CGDebugInfo::EmitDeclareOfBlockDeclRefVariable( 2327 const VarDecl *VD, llvm::Value *Storage, CGBuilderTy &Builder, 2328 const CGBlockInfo &blockInfo) { 2329 assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!"); 2330 2331 if (Builder.GetInsertBlock() == 0) 2332 return; 2333 2334 bool isByRef = VD->hasAttr<BlocksAttr>(); 2335 2336 uint64_t XOffset = 0; 2337 llvm::DIFile Unit = getOrCreateFile(VD->getLocation()); 2338 llvm::DIType Ty; 2339 if (isByRef) 2340 Ty = EmitTypeForVarWithBlocksAttr(VD, &XOffset); 2341 else 2342 Ty = getOrCreateType(VD->getType(), Unit); 2343 2344 // Get location information. 2345 unsigned Line = getLineNumber(VD->getLocation()); 2346 unsigned Column = getColumnNumber(VD->getLocation()); 2347 2348 const llvm::TargetData &target = CGM.getTargetData(); 2349 2350 CharUnits offset = CharUnits::fromQuantity( 2351 target.getStructLayout(blockInfo.StructureType) 2352 ->getElementOffset(blockInfo.getCapture(VD).getIndex())); 2353 2354 SmallVector<llvm::Value *, 9> addr; 2355 llvm::Type *Int64Ty = CGM.Int64Ty; 2356 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus)); 2357 addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity())); 2358 if (isByRef) { 2359 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref)); 2360 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus)); 2361 // offset of __forwarding field 2362 offset = CGM.getContext() 2363 .toCharUnitsFromBits(target.getPointerSizeInBits()); 2364 addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity())); 2365 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref)); 2366 addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus)); 2367 // offset of x field 2368 offset = CGM.getContext().toCharUnitsFromBits(XOffset); 2369 addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity())); 2370 } 2371 2372 // Create the descriptor for the variable. 2373 llvm::DIVariable D = 2374 DBuilder.createComplexVariable(llvm::dwarf::DW_TAG_auto_variable, 2375 llvm::DIDescriptor(LexicalBlockStack.back()), 2376 VD->getName(), Unit, Line, Ty, addr); 2377 // Insert an llvm.dbg.declare into the current block. 2378 llvm::Instruction *Call = 2379 DBuilder.insertDeclare(Storage, D, Builder.GetInsertPoint()); 2380 Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, 2381 LexicalBlockStack.back())); 2382 } 2383 2384 /// EmitDeclareOfArgVariable - Emit call to llvm.dbg.declare for an argument 2385 /// variable declaration. 2386 void CGDebugInfo::EmitDeclareOfArgVariable(const VarDecl *VD, llvm::Value *AI, 2387 unsigned ArgNo, 2388 CGBuilderTy &Builder) { 2389 EmitDeclare(VD, llvm::dwarf::DW_TAG_arg_variable, AI, ArgNo, Builder); 2390 } 2391 2392 namespace { 2393 struct BlockLayoutChunk { 2394 uint64_t OffsetInBits; 2395 const BlockDecl::Capture *Capture; 2396 }; 2397 bool operator<(const BlockLayoutChunk &l, const BlockLayoutChunk &r) { 2398 return l.OffsetInBits < r.OffsetInBits; 2399 } 2400 } 2401 2402 void CGDebugInfo::EmitDeclareOfBlockLiteralArgVariable(const CGBlockInfo &block, 2403 llvm::Value *addr, 2404 CGBuilderTy &Builder) { 2405 ASTContext &C = CGM.getContext(); 2406 const BlockDecl *blockDecl = block.getBlockDecl(); 2407 2408 // Collect some general information about the block's location. 2409 SourceLocation loc = blockDecl->getCaretLocation(); 2410 llvm::DIFile tunit = getOrCreateFile(loc); 2411 unsigned line = getLineNumber(loc); 2412 unsigned column = getColumnNumber(loc); 2413 2414 // Build the debug-info type for the block literal. 2415 getContextDescriptor(cast<Decl>(blockDecl->getDeclContext())); 2416 2417 const llvm::StructLayout *blockLayout = 2418 CGM.getTargetData().getStructLayout(block.StructureType); 2419 2420 SmallVector<llvm::Value*, 16> fields; 2421 fields.push_back(createFieldType("__isa", C.VoidPtrTy, 0, loc, AS_public, 2422 blockLayout->getElementOffsetInBits(0), 2423 tunit, tunit)); 2424 fields.push_back(createFieldType("__flags", C.IntTy, 0, loc, AS_public, 2425 blockLayout->getElementOffsetInBits(1), 2426 tunit, tunit)); 2427 fields.push_back(createFieldType("__reserved", C.IntTy, 0, loc, AS_public, 2428 blockLayout->getElementOffsetInBits(2), 2429 tunit, tunit)); 2430 fields.push_back(createFieldType("__FuncPtr", C.VoidPtrTy, 0, loc, AS_public, 2431 blockLayout->getElementOffsetInBits(3), 2432 tunit, tunit)); 2433 fields.push_back(createFieldType("__descriptor", 2434 C.getPointerType(block.NeedsCopyDispose ? 2435 C.getBlockDescriptorExtendedType() : 2436 C.getBlockDescriptorType()), 2437 0, loc, AS_public, 2438 blockLayout->getElementOffsetInBits(4), 2439 tunit, tunit)); 2440 2441 // We want to sort the captures by offset, not because DWARF 2442 // requires this, but because we're paranoid about debuggers. 2443 SmallVector<BlockLayoutChunk, 8> chunks; 2444 2445 // 'this' capture. 2446 if (blockDecl->capturesCXXThis()) { 2447 BlockLayoutChunk chunk; 2448 chunk.OffsetInBits = 2449 blockLayout->getElementOffsetInBits(block.CXXThisIndex); 2450 chunk.Capture = 0; 2451 chunks.push_back(chunk); 2452 } 2453 2454 // Variable captures. 2455 for (BlockDecl::capture_const_iterator 2456 i = blockDecl->capture_begin(), e = blockDecl->capture_end(); 2457 i != e; ++i) { 2458 const BlockDecl::Capture &capture = *i; 2459 const VarDecl *variable = capture.getVariable(); 2460 const CGBlockInfo::Capture &captureInfo = block.getCapture(variable); 2461 2462 // Ignore constant captures. 2463 if (captureInfo.isConstant()) 2464 continue; 2465 2466 BlockLayoutChunk chunk; 2467 chunk.OffsetInBits = 2468 blockLayout->getElementOffsetInBits(captureInfo.getIndex()); 2469 chunk.Capture = &capture; 2470 chunks.push_back(chunk); 2471 } 2472 2473 // Sort by offset. 2474 llvm::array_pod_sort(chunks.begin(), chunks.end()); 2475 2476 for (SmallVectorImpl<BlockLayoutChunk>::iterator 2477 i = chunks.begin(), e = chunks.end(); i != e; ++i) { 2478 uint64_t offsetInBits = i->OffsetInBits; 2479 const BlockDecl::Capture *capture = i->Capture; 2480 2481 // If we have a null capture, this must be the C++ 'this' capture. 2482 if (!capture) { 2483 const CXXMethodDecl *method = 2484 cast<CXXMethodDecl>(blockDecl->getNonClosureContext()); 2485 QualType type = method->getThisType(C); 2486 2487 fields.push_back(createFieldType("this", type, 0, loc, AS_public, 2488 offsetInBits, tunit, tunit)); 2489 continue; 2490 } 2491 2492 const VarDecl *variable = capture->getVariable(); 2493 StringRef name = variable->getName(); 2494 2495 llvm::DIType fieldType; 2496 if (capture->isByRef()) { 2497 std::pair<uint64_t,unsigned> ptrInfo = C.getTypeInfo(C.VoidPtrTy); 2498 2499 // FIXME: this creates a second copy of this type! 2500 uint64_t xoffset; 2501 fieldType = EmitTypeForVarWithBlocksAttr(variable, &xoffset); 2502 fieldType = DBuilder.createPointerType(fieldType, ptrInfo.first); 2503 fieldType = DBuilder.createMemberType(tunit, name, tunit, line, 2504 ptrInfo.first, ptrInfo.second, 2505 offsetInBits, 0, fieldType); 2506 } else { 2507 fieldType = createFieldType(name, variable->getType(), 0, 2508 loc, AS_public, offsetInBits, tunit, tunit); 2509 } 2510 fields.push_back(fieldType); 2511 } 2512 2513 SmallString<36> typeName; 2514 llvm::raw_svector_ostream(typeName) 2515 << "__block_literal_" << CGM.getUniqueBlockCount(); 2516 2517 llvm::DIArray fieldsArray = DBuilder.getOrCreateArray(fields); 2518 2519 llvm::DIType type = 2520 DBuilder.createStructType(tunit, typeName.str(), tunit, line, 2521 CGM.getContext().toBits(block.BlockSize), 2522 CGM.getContext().toBits(block.BlockAlign), 2523 0, fieldsArray); 2524 type = DBuilder.createPointerType(type, CGM.PointerWidthInBits); 2525 2526 // Get overall information about the block. 2527 unsigned flags = llvm::DIDescriptor::FlagArtificial; 2528 llvm::MDNode *scope = LexicalBlockStack.back(); 2529 StringRef name = ".block_descriptor"; 2530 2531 // Create the descriptor for the parameter. 2532 llvm::DIVariable debugVar = 2533 DBuilder.createLocalVariable(llvm::dwarf::DW_TAG_arg_variable, 2534 llvm::DIDescriptor(scope), 2535 name, tunit, line, type, 2536 CGM.getLangOpts().Optimize, flags, 2537 cast<llvm::Argument>(addr)->getArgNo() + 1); 2538 2539 // Insert an llvm.dbg.value into the current block. 2540 llvm::Instruction *declare = 2541 DBuilder.insertDbgValueIntrinsic(addr, 0, debugVar, 2542 Builder.GetInsertBlock()); 2543 declare->setDebugLoc(llvm::DebugLoc::get(line, column, scope)); 2544 } 2545 2546 /// EmitGlobalVariable - Emit information about a global variable. 2547 void CGDebugInfo::EmitGlobalVariable(llvm::GlobalVariable *Var, 2548 const VarDecl *D) { 2549 // Create global variable debug descriptor. 2550 llvm::DIFile Unit = getOrCreateFile(D->getLocation()); 2551 unsigned LineNo = getLineNumber(D->getLocation()); 2552 2553 setLocation(D->getLocation()); 2554 2555 QualType T = D->getType(); 2556 if (T->isIncompleteArrayType()) { 2557 2558 // CodeGen turns int[] into int[1] so we'll do the same here. 2559 llvm::APSInt ConstVal(32); 2560 2561 ConstVal = 1; 2562 QualType ET = CGM.getContext().getAsArrayType(T)->getElementType(); 2563 2564 T = CGM.getContext().getConstantArrayType(ET, ConstVal, 2565 ArrayType::Normal, 0); 2566 } 2567 StringRef DeclName = D->getName(); 2568 StringRef LinkageName; 2569 if (D->getDeclContext() && !isa<FunctionDecl>(D->getDeclContext()) 2570 && !isa<ObjCMethodDecl>(D->getDeclContext())) 2571 LinkageName = Var->getName(); 2572 if (LinkageName == DeclName) 2573 LinkageName = StringRef(); 2574 llvm::DIDescriptor DContext = 2575 getContextDescriptor(dyn_cast<Decl>(D->getDeclContext())); 2576 DBuilder.createStaticVariable(DContext, DeclName, LinkageName, 2577 Unit, LineNo, getOrCreateType(T, Unit), 2578 Var->hasInternalLinkage(), Var); 2579 } 2580 2581 /// EmitGlobalVariable - Emit information about an objective-c interface. 2582 void CGDebugInfo::EmitGlobalVariable(llvm::GlobalVariable *Var, 2583 ObjCInterfaceDecl *ID) { 2584 // Create global variable debug descriptor. 2585 llvm::DIFile Unit = getOrCreateFile(ID->getLocation()); 2586 unsigned LineNo = getLineNumber(ID->getLocation()); 2587 2588 StringRef Name = ID->getName(); 2589 2590 QualType T = CGM.getContext().getObjCInterfaceType(ID); 2591 if (T->isIncompleteArrayType()) { 2592 2593 // CodeGen turns int[] into int[1] so we'll do the same here. 2594 llvm::APSInt ConstVal(32); 2595 2596 ConstVal = 1; 2597 QualType ET = CGM.getContext().getAsArrayType(T)->getElementType(); 2598 2599 T = CGM.getContext().getConstantArrayType(ET, ConstVal, 2600 ArrayType::Normal, 0); 2601 } 2602 2603 DBuilder.createGlobalVariable(Name, Unit, LineNo, 2604 getOrCreateType(T, Unit), 2605 Var->hasInternalLinkage(), Var); 2606 } 2607 2608 /// EmitGlobalVariable - Emit global variable's debug info. 2609 void CGDebugInfo::EmitGlobalVariable(const ValueDecl *VD, 2610 llvm::Constant *Init) { 2611 // Create the descriptor for the variable. 2612 llvm::DIFile Unit = getOrCreateFile(VD->getLocation()); 2613 StringRef Name = VD->getName(); 2614 llvm::DIType Ty = getOrCreateType(VD->getType(), Unit); 2615 if (const EnumConstantDecl *ECD = dyn_cast<EnumConstantDecl>(VD)) { 2616 if (const EnumDecl *ED = dyn_cast<EnumDecl>(ECD->getDeclContext())) 2617 Ty = CreateEnumType(ED); 2618 } 2619 // Do not use DIGlobalVariable for enums. 2620 if (Ty.getTag() == llvm::dwarf::DW_TAG_enumeration_type) 2621 return; 2622 DBuilder.createStaticVariable(Unit, Name, Name, Unit, 2623 getLineNumber(VD->getLocation()), 2624 Ty, true, Init); 2625 } 2626 2627 /// getOrCreateNamesSpace - Return namespace descriptor for the given 2628 /// namespace decl. 2629 llvm::DINameSpace 2630 CGDebugInfo::getOrCreateNameSpace(const NamespaceDecl *NSDecl) { 2631 llvm::DenseMap<const NamespaceDecl *, llvm::WeakVH>::iterator I = 2632 NameSpaceCache.find(NSDecl); 2633 if (I != NameSpaceCache.end()) 2634 return llvm::DINameSpace(cast<llvm::MDNode>(I->second)); 2635 2636 unsigned LineNo = getLineNumber(NSDecl->getLocation()); 2637 llvm::DIFile FileD = getOrCreateFile(NSDecl->getLocation()); 2638 llvm::DIDescriptor Context = 2639 getContextDescriptor(dyn_cast<Decl>(NSDecl->getDeclContext())); 2640 llvm::DINameSpace NS = 2641 DBuilder.createNameSpace(Context, NSDecl->getName(), FileD, LineNo); 2642 NameSpaceCache[NSDecl] = llvm::WeakVH(NS); 2643 return NS; 2644 } 2645 2646 void CGDebugInfo::finalize(void) { 2647 for (std::vector<std::pair<void *, llvm::WeakVH> >::const_iterator VI 2648 = ReplaceMap.begin(), VE = ReplaceMap.end(); VI != VE; ++VI) { 2649 llvm::DIType Ty, RepTy; 2650 // Verify that the debug info still exists. 2651 if (&*VI->second) 2652 Ty = llvm::DIType(cast<llvm::MDNode>(VI->second)); 2653 2654 llvm::DenseMap<void *, llvm::WeakVH>::iterator it = 2655 TypeCache.find(VI->first); 2656 if (it != TypeCache.end()) { 2657 // Verify that the debug info still exists. 2658 if (&*it->second) 2659 RepTy = llvm::DIType(cast<llvm::MDNode>(it->second)); 2660 } 2661 2662 if (Ty.Verify() && Ty.isForwardDecl() && RepTy.Verify()) { 2663 Ty.replaceAllUsesWith(RepTy); 2664 } 2665 } 2666 DBuilder.finalize(); 2667 } 2668