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 "CGBlocks.h"
16 #include "CGCXXABI.h"
17 #include "CGObjCRuntime.h"
18 #include "CodeGenFunction.h"
19 #include "CodeGenModule.h"
20 #include "clang/AST/ASTContext.h"
21 #include "clang/AST/DeclFriend.h"
22 #include "clang/AST/DeclObjC.h"
23 #include "clang/AST/DeclTemplate.h"
24 #include "clang/AST/Expr.h"
25 #include "clang/AST/RecordLayout.h"
26 #include "clang/Basic/FileManager.h"
27 #include "clang/Basic/SourceManager.h"
28 #include "clang/Basic/Version.h"
29 #include "clang/Frontend/CodeGenOptions.h"
30 #include "llvm/ADT/SmallVector.h"
31 #include "llvm/ADT/StringExtras.h"
32 #include "llvm/IR/Constants.h"
33 #include "llvm/IR/DataLayout.h"
34 #include "llvm/IR/DerivedTypes.h"
35 #include "llvm/IR/Instructions.h"
36 #include "llvm/IR/Intrinsics.h"
37 #include "llvm/IR/Module.h"
38 #include "llvm/Support/Dwarf.h"
39 #include "llvm/Support/FileSystem.h"
40 using namespace clang;
41 using namespace clang::CodeGen;
42 
43 CGDebugInfo::CGDebugInfo(CodeGenModule &CGM)
44     : CGM(CGM), DebugKind(CGM.getCodeGenOpts().getDebugInfo()),
45       DBuilder(CGM.getModule()) {
46   CreateCompileUnit();
47 }
48 
49 CGDebugInfo::~CGDebugInfo() {
50   assert(LexicalBlockStack.empty() &&
51          "Region stack mismatch, stack not empty!");
52 }
53 
54 
55 NoLocation::NoLocation(CodeGenFunction &CGF, CGBuilderTy &B)
56   : DI(CGF.getDebugInfo()), Builder(B) {
57   if (DI) {
58     SavedLoc = DI->getLocation();
59     DI->CurLoc = SourceLocation();
60     Builder.SetCurrentDebugLocation(llvm::DebugLoc());
61   }
62 }
63 
64 NoLocation::~NoLocation() {
65   if (DI) {
66     assert(Builder.getCurrentDebugLocation().isUnknown());
67     DI->CurLoc = SavedLoc;
68   }
69 }
70 
71 ArtificialLocation::ArtificialLocation(CodeGenFunction &CGF, CGBuilderTy &B)
72   : DI(CGF.getDebugInfo()), Builder(B) {
73   if (DI) {
74     SavedLoc = DI->getLocation();
75     DI->CurLoc = SourceLocation();
76     Builder.SetCurrentDebugLocation(llvm::DebugLoc());
77   }
78 }
79 
80 void ArtificialLocation::Emit() {
81   if (DI) {
82     // Sync the Builder.
83     DI->EmitLocation(Builder, SavedLoc);
84     DI->CurLoc = SourceLocation();
85     // Construct a location that has a valid scope, but no line info.
86     assert(!DI->LexicalBlockStack.empty());
87     llvm::DIDescriptor Scope(DI->LexicalBlockStack.back());
88     Builder.SetCurrentDebugLocation(llvm::DebugLoc::get(0, 0, Scope));
89   }
90 }
91 
92 ArtificialLocation::~ArtificialLocation() {
93   if (DI) {
94     assert(Builder.getCurrentDebugLocation().getLine() == 0);
95     DI->CurLoc = SavedLoc;
96   }
97 }
98 
99 void CGDebugInfo::setLocation(SourceLocation Loc) {
100   // If the new location isn't valid return.
101   if (Loc.isInvalid()) return;
102 
103   CurLoc = CGM.getContext().getSourceManager().getExpansionLoc(Loc);
104 
105   // If we've changed files in the middle of a lexical scope go ahead
106   // and create a new lexical scope with file node if it's different
107   // from the one in the scope.
108   if (LexicalBlockStack.empty()) return;
109 
110   SourceManager &SM = CGM.getContext().getSourceManager();
111   PresumedLoc PCLoc = SM.getPresumedLoc(CurLoc);
112   PresumedLoc PPLoc = SM.getPresumedLoc(PrevLoc);
113 
114   if (PCLoc.isInvalid() || PPLoc.isInvalid() ||
115       !strcmp(PPLoc.getFilename(), PCLoc.getFilename()))
116     return;
117 
118   llvm::MDNode *LB = LexicalBlockStack.back();
119   llvm::DIScope Scope = llvm::DIScope(LB);
120   if (Scope.isLexicalBlockFile()) {
121     llvm::DILexicalBlockFile LBF = llvm::DILexicalBlockFile(LB);
122     llvm::DIDescriptor D
123       = DBuilder.createLexicalBlockFile(LBF.getScope(),
124                                         getOrCreateFile(CurLoc));
125     llvm::MDNode *N = D;
126     LexicalBlockStack.pop_back();
127     LexicalBlockStack.push_back(N);
128   } else if (Scope.isLexicalBlock() || Scope.isSubprogram()) {
129     llvm::DIDescriptor D
130       = DBuilder.createLexicalBlockFile(Scope, getOrCreateFile(CurLoc));
131     llvm::MDNode *N = D;
132     LexicalBlockStack.pop_back();
133     LexicalBlockStack.push_back(N);
134   }
135 }
136 
137 /// getContextDescriptor - Get context info for the decl.
138 llvm::DIScope CGDebugInfo::getContextDescriptor(const Decl *Context) {
139   if (!Context)
140     return TheCU;
141 
142   llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator
143     I = RegionMap.find(Context);
144   if (I != RegionMap.end()) {
145     llvm::Value *V = I->second;
146     return llvm::DIScope(dyn_cast_or_null<llvm::MDNode>(V));
147   }
148 
149   // Check namespace.
150   if (const NamespaceDecl *NSDecl = dyn_cast<NamespaceDecl>(Context))
151     return getOrCreateNameSpace(NSDecl);
152 
153   if (const RecordDecl *RDecl = dyn_cast<RecordDecl>(Context))
154     if (!RDecl->isDependentType())
155       return getOrCreateType(CGM.getContext().getTypeDeclType(RDecl),
156                                         getOrCreateMainFile());
157   return TheCU;
158 }
159 
160 /// getFunctionName - Get function name for the given FunctionDecl. If the
161 /// name is constructred on demand (e.g. C++ destructor) then the name
162 /// is stored on the side.
163 StringRef CGDebugInfo::getFunctionName(const FunctionDecl *FD) {
164   assert (FD && "Invalid FunctionDecl!");
165   IdentifierInfo *FII = FD->getIdentifier();
166   FunctionTemplateSpecializationInfo *Info
167     = FD->getTemplateSpecializationInfo();
168   if (!Info && FII)
169     return FII->getName();
170 
171   // Otherwise construct human readable name for debug info.
172   SmallString<128> NS;
173   llvm::raw_svector_ostream OS(NS);
174   FD->printName(OS);
175 
176   // Add any template specialization args.
177   if (Info) {
178     const TemplateArgumentList *TArgs = Info->TemplateArguments;
179     const TemplateArgument *Args = TArgs->data();
180     unsigned NumArgs = TArgs->size();
181     PrintingPolicy Policy(CGM.getLangOpts());
182     TemplateSpecializationType::PrintTemplateArgumentList(OS, Args, NumArgs,
183                                                           Policy);
184   }
185 
186   // Copy this name on the side and use its reference.
187   OS.flush();
188   char *StrPtr = DebugInfoNames.Allocate<char>(NS.size());
189   memcpy(StrPtr, NS.data(), NS.size());
190   return StringRef(StrPtr, NS.size());
191 }
192 
193 StringRef CGDebugInfo::getObjCMethodName(const ObjCMethodDecl *OMD) {
194   SmallString<256> MethodName;
195   llvm::raw_svector_ostream OS(MethodName);
196   OS << (OMD->isInstanceMethod() ? '-' : '+') << '[';
197   const DeclContext *DC = OMD->getDeclContext();
198   if (const ObjCImplementationDecl *OID =
199       dyn_cast<const ObjCImplementationDecl>(DC)) {
200      OS << OID->getName();
201   } else if (const ObjCInterfaceDecl *OID =
202              dyn_cast<const ObjCInterfaceDecl>(DC)) {
203       OS << OID->getName();
204   } else if (const ObjCCategoryImplDecl *OCD =
205              dyn_cast<const ObjCCategoryImplDecl>(DC)){
206       OS << ((const NamedDecl *)OCD)->getIdentifier()->getNameStart() << '(' <<
207           OCD->getIdentifier()->getNameStart() << ')';
208   } else if (isa<ObjCProtocolDecl>(DC)) {
209     // We can extract the type of the class from the self pointer.
210     if (ImplicitParamDecl* SelfDecl = OMD->getSelfDecl()) {
211       QualType ClassTy =
212         cast<ObjCObjectPointerType>(SelfDecl->getType())->getPointeeType();
213       ClassTy.print(OS, PrintingPolicy(LangOptions()));
214     }
215   }
216   OS << ' ' << OMD->getSelector().getAsString() << ']';
217 
218   char *StrPtr = DebugInfoNames.Allocate<char>(OS.tell());
219   memcpy(StrPtr, MethodName.begin(), OS.tell());
220   return StringRef(StrPtr, OS.tell());
221 }
222 
223 /// getSelectorName - Return selector name. This is used for debugging
224 /// info.
225 StringRef CGDebugInfo::getSelectorName(Selector S) {
226   const std::string &SName = S.getAsString();
227   char *StrPtr = DebugInfoNames.Allocate<char>(SName.size());
228   memcpy(StrPtr, SName.data(), SName.size());
229   return StringRef(StrPtr, SName.size());
230 }
231 
232 /// getClassName - Get class name including template argument list.
233 StringRef
234 CGDebugInfo::getClassName(const RecordDecl *RD) {
235   const ClassTemplateSpecializationDecl *Spec
236     = dyn_cast<ClassTemplateSpecializationDecl>(RD);
237   if (!Spec)
238     return RD->getName();
239 
240   const TemplateArgument *Args;
241   unsigned NumArgs;
242   if (TypeSourceInfo *TAW = Spec->getTypeAsWritten()) {
243     const TemplateSpecializationType *TST =
244       cast<TemplateSpecializationType>(TAW->getType());
245     Args = TST->getArgs();
246     NumArgs = TST->getNumArgs();
247   } else {
248     const TemplateArgumentList &TemplateArgs = Spec->getTemplateArgs();
249     Args = TemplateArgs.data();
250     NumArgs = TemplateArgs.size();
251   }
252   StringRef Name = RD->getIdentifier()->getName();
253   PrintingPolicy Policy(CGM.getLangOpts());
254   SmallString<128> TemplateArgList;
255   {
256     llvm::raw_svector_ostream OS(TemplateArgList);
257     TemplateSpecializationType::PrintTemplateArgumentList(OS, Args, NumArgs,
258                                                           Policy);
259   }
260 
261   // Copy this name on the side and use its reference.
262   size_t Length = Name.size() + TemplateArgList.size();
263   char *StrPtr = DebugInfoNames.Allocate<char>(Length);
264   memcpy(StrPtr, Name.data(), Name.size());
265   memcpy(StrPtr + Name.size(), TemplateArgList.data(), TemplateArgList.size());
266   return StringRef(StrPtr, Length);
267 }
268 
269 /// getOrCreateFile - Get the file debug info descriptor for the input location.
270 llvm::DIFile CGDebugInfo::getOrCreateFile(SourceLocation Loc) {
271   if (!Loc.isValid())
272     // If Location is not valid then use main input file.
273     return DBuilder.createFile(TheCU.getFilename(), TheCU.getDirectory());
274 
275   SourceManager &SM = CGM.getContext().getSourceManager();
276   PresumedLoc PLoc = SM.getPresumedLoc(Loc);
277 
278   if (PLoc.isInvalid() || StringRef(PLoc.getFilename()).empty())
279     // If the location is not valid then use main input file.
280     return DBuilder.createFile(TheCU.getFilename(), TheCU.getDirectory());
281 
282   // Cache the results.
283   const char *fname = PLoc.getFilename();
284   llvm::DenseMap<const char *, llvm::WeakVH>::iterator it =
285     DIFileCache.find(fname);
286 
287   if (it != DIFileCache.end()) {
288     // Verify that the information still exists.
289     if (llvm::Value *V = it->second)
290       return llvm::DIFile(cast<llvm::MDNode>(V));
291   }
292 
293   llvm::DIFile F = DBuilder.createFile(PLoc.getFilename(), getCurrentDirname());
294 
295   DIFileCache[fname] = F;
296   return F;
297 }
298 
299 /// getOrCreateMainFile - Get the file info for main compile unit.
300 llvm::DIFile CGDebugInfo::getOrCreateMainFile() {
301   return DBuilder.createFile(TheCU.getFilename(), TheCU.getDirectory());
302 }
303 
304 /// getLineNumber - Get line number for the location. If location is invalid
305 /// then use current location.
306 unsigned CGDebugInfo::getLineNumber(SourceLocation Loc) {
307   if (Loc.isInvalid() && CurLoc.isInvalid())
308     return 0;
309   SourceManager &SM = CGM.getContext().getSourceManager();
310   PresumedLoc PLoc = SM.getPresumedLoc(Loc.isValid() ? Loc : CurLoc);
311   return PLoc.isValid()? PLoc.getLine() : 0;
312 }
313 
314 /// getColumnNumber - Get column number for the location.
315 unsigned CGDebugInfo::getColumnNumber(SourceLocation Loc, bool Force) {
316   // We may not want column information at all.
317   if (!Force && !CGM.getCodeGenOpts().DebugColumnInfo)
318     return 0;
319 
320   // If the location is invalid then use the current column.
321   if (Loc.isInvalid() && CurLoc.isInvalid())
322     return 0;
323   SourceManager &SM = CGM.getContext().getSourceManager();
324   PresumedLoc PLoc = SM.getPresumedLoc(Loc.isValid() ? Loc : CurLoc);
325   return PLoc.isValid()? PLoc.getColumn() : 0;
326 }
327 
328 StringRef CGDebugInfo::getCurrentDirname() {
329   if (!CGM.getCodeGenOpts().DebugCompilationDir.empty())
330     return CGM.getCodeGenOpts().DebugCompilationDir;
331 
332   if (!CWDName.empty())
333     return CWDName;
334   SmallString<256> CWD;
335   llvm::sys::fs::current_path(CWD);
336   char *CompDirnamePtr = DebugInfoNames.Allocate<char>(CWD.size());
337   memcpy(CompDirnamePtr, CWD.data(), CWD.size());
338   return CWDName = StringRef(CompDirnamePtr, CWD.size());
339 }
340 
341 /// CreateCompileUnit - Create new compile unit.
342 void CGDebugInfo::CreateCompileUnit() {
343 
344   // Get absolute path name.
345   SourceManager &SM = CGM.getContext().getSourceManager();
346   std::string MainFileName = CGM.getCodeGenOpts().MainFileName;
347   if (MainFileName.empty())
348     MainFileName = "<unknown>";
349 
350   // The main file name provided via the "-main-file-name" option contains just
351   // the file name itself with no path information. This file name may have had
352   // a relative path, so we look into the actual file entry for the main
353   // file to determine the real absolute path for the file.
354   std::string MainFileDir;
355   if (const FileEntry *MainFile = SM.getFileEntryForID(SM.getMainFileID())) {
356     MainFileDir = MainFile->getDir()->getName();
357     if (MainFileDir != ".")
358       MainFileName = MainFileDir + "/" + MainFileName;
359   }
360 
361   // Save filename string.
362   char *FilenamePtr = DebugInfoNames.Allocate<char>(MainFileName.length());
363   memcpy(FilenamePtr, MainFileName.c_str(), MainFileName.length());
364   StringRef Filename(FilenamePtr, MainFileName.length());
365 
366   // Save split dwarf file string.
367   std::string SplitDwarfFile = CGM.getCodeGenOpts().SplitDwarfFile;
368   char *SplitDwarfPtr = DebugInfoNames.Allocate<char>(SplitDwarfFile.length());
369   memcpy(SplitDwarfPtr, SplitDwarfFile.c_str(), SplitDwarfFile.length());
370   StringRef SplitDwarfFilename(SplitDwarfPtr, SplitDwarfFile.length());
371 
372   unsigned LangTag;
373   const LangOptions &LO = CGM.getLangOpts();
374   if (LO.CPlusPlus) {
375     if (LO.ObjC1)
376       LangTag = llvm::dwarf::DW_LANG_ObjC_plus_plus;
377     else
378       LangTag = llvm::dwarf::DW_LANG_C_plus_plus;
379   } else if (LO.ObjC1) {
380     LangTag = llvm::dwarf::DW_LANG_ObjC;
381   } else if (LO.C99) {
382     LangTag = llvm::dwarf::DW_LANG_C99;
383   } else {
384     LangTag = llvm::dwarf::DW_LANG_C89;
385   }
386 
387   std::string Producer = getClangFullVersion();
388 
389   // Figure out which version of the ObjC runtime we have.
390   unsigned RuntimeVers = 0;
391   if (LO.ObjC1)
392     RuntimeVers = LO.ObjCRuntime.isNonFragile() ? 2 : 1;
393 
394   // Create new compile unit.
395   // FIXME - Eliminate TheCU.
396   TheCU = DBuilder.createCompileUnit(LangTag, Filename, getCurrentDirname(),
397                                      Producer, LO.Optimize,
398                                      CGM.getCodeGenOpts().DwarfDebugFlags,
399                                      RuntimeVers, SplitDwarfFilename);
400 }
401 
402 /// CreateType - Get the Basic type from the cache or create a new
403 /// one if necessary.
404 llvm::DIType CGDebugInfo::CreateType(const BuiltinType *BT) {
405   unsigned Encoding = 0;
406   StringRef BTName;
407   switch (BT->getKind()) {
408 #define BUILTIN_TYPE(Id, SingletonId)
409 #define PLACEHOLDER_TYPE(Id, SingletonId) \
410   case BuiltinType::Id:
411 #include "clang/AST/BuiltinTypes.def"
412   case BuiltinType::Dependent:
413     llvm_unreachable("Unexpected builtin type");
414   case BuiltinType::NullPtr:
415     return DBuilder.createNullPtrType();
416   case BuiltinType::Void:
417     return llvm::DIType();
418   case BuiltinType::ObjCClass:
419     if (ClassTy)
420       return ClassTy;
421     ClassTy = DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type,
422                                          "objc_class", TheCU,
423                                          getOrCreateMainFile(), 0);
424     return ClassTy;
425   case BuiltinType::ObjCId: {
426     // typedef struct objc_class *Class;
427     // typedef struct objc_object {
428     //  Class isa;
429     // } *id;
430 
431     if (ObjTy)
432       return ObjTy;
433 
434     if (!ClassTy)
435       ClassTy = DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type,
436                                            "objc_class", TheCU,
437                                            getOrCreateMainFile(), 0);
438 
439     unsigned Size = CGM.getContext().getTypeSize(CGM.getContext().VoidPtrTy);
440 
441     llvm::DIType ISATy = DBuilder.createPointerType(ClassTy, Size);
442 
443     ObjTy =
444         DBuilder.createStructType(TheCU, "objc_object", getOrCreateMainFile(),
445                                   0, 0, 0, 0, llvm::DIType(), llvm::DIArray());
446 
447     ObjTy.setTypeArray(DBuilder.getOrCreateArray(&*DBuilder.createMemberType(
448         ObjTy, "isa", getOrCreateMainFile(), 0, Size, 0, 0, 0, ISATy)));
449     return ObjTy;
450   }
451   case BuiltinType::ObjCSel: {
452     if (SelTy)
453       return SelTy;
454     SelTy =
455       DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type,
456                                  "objc_selector", TheCU, getOrCreateMainFile(),
457                                  0);
458     return SelTy;
459   }
460 
461   case BuiltinType::OCLImage1d:
462     return getOrCreateStructPtrType("opencl_image1d_t",
463                                     OCLImage1dDITy);
464   case BuiltinType::OCLImage1dArray:
465     return getOrCreateStructPtrType("opencl_image1d_array_t",
466                                     OCLImage1dArrayDITy);
467   case BuiltinType::OCLImage1dBuffer:
468     return getOrCreateStructPtrType("opencl_image1d_buffer_t",
469                                     OCLImage1dBufferDITy);
470   case BuiltinType::OCLImage2d:
471     return getOrCreateStructPtrType("opencl_image2d_t",
472                                     OCLImage2dDITy);
473   case BuiltinType::OCLImage2dArray:
474     return getOrCreateStructPtrType("opencl_image2d_array_t",
475                                     OCLImage2dArrayDITy);
476   case BuiltinType::OCLImage3d:
477     return getOrCreateStructPtrType("opencl_image3d_t",
478                                     OCLImage3dDITy);
479   case BuiltinType::OCLSampler:
480     return DBuilder.createBasicType("opencl_sampler_t",
481                                     CGM.getContext().getTypeSize(BT),
482                                     CGM.getContext().getTypeAlign(BT),
483                                     llvm::dwarf::DW_ATE_unsigned);
484   case BuiltinType::OCLEvent:
485     return getOrCreateStructPtrType("opencl_event_t",
486                                     OCLEventDITy);
487 
488   case BuiltinType::UChar:
489   case BuiltinType::Char_U: Encoding = llvm::dwarf::DW_ATE_unsigned_char; break;
490   case BuiltinType::Char_S:
491   case BuiltinType::SChar: Encoding = llvm::dwarf::DW_ATE_signed_char; break;
492   case BuiltinType::Char16:
493   case BuiltinType::Char32: Encoding = llvm::dwarf::DW_ATE_UTF; break;
494   case BuiltinType::UShort:
495   case BuiltinType::UInt:
496   case BuiltinType::UInt128:
497   case BuiltinType::ULong:
498   case BuiltinType::WChar_U:
499   case BuiltinType::ULongLong: Encoding = llvm::dwarf::DW_ATE_unsigned; break;
500   case BuiltinType::Short:
501   case BuiltinType::Int:
502   case BuiltinType::Int128:
503   case BuiltinType::Long:
504   case BuiltinType::WChar_S:
505   case BuiltinType::LongLong:  Encoding = llvm::dwarf::DW_ATE_signed; break;
506   case BuiltinType::Bool:      Encoding = llvm::dwarf::DW_ATE_boolean; break;
507   case BuiltinType::Half:
508   case BuiltinType::Float:
509   case BuiltinType::LongDouble:
510   case BuiltinType::Double:    Encoding = llvm::dwarf::DW_ATE_float; break;
511   }
512 
513   switch (BT->getKind()) {
514   case BuiltinType::Long:      BTName = "long int"; break;
515   case BuiltinType::LongLong:  BTName = "long long int"; break;
516   case BuiltinType::ULong:     BTName = "long unsigned int"; break;
517   case BuiltinType::ULongLong: BTName = "long long unsigned int"; break;
518   default:
519     BTName = BT->getName(CGM.getLangOpts());
520     break;
521   }
522   // Bit size, align and offset of the type.
523   uint64_t Size = CGM.getContext().getTypeSize(BT);
524   uint64_t Align = CGM.getContext().getTypeAlign(BT);
525   llvm::DIType DbgTy =
526     DBuilder.createBasicType(BTName, Size, Align, Encoding);
527   return DbgTy;
528 }
529 
530 llvm::DIType CGDebugInfo::CreateType(const ComplexType *Ty) {
531   // Bit size, align and offset of the type.
532   unsigned Encoding = llvm::dwarf::DW_ATE_complex_float;
533   if (Ty->isComplexIntegerType())
534     Encoding = llvm::dwarf::DW_ATE_lo_user;
535 
536   uint64_t Size = CGM.getContext().getTypeSize(Ty);
537   uint64_t Align = CGM.getContext().getTypeAlign(Ty);
538   llvm::DIType DbgTy =
539     DBuilder.createBasicType("complex", Size, Align, Encoding);
540 
541   return DbgTy;
542 }
543 
544 /// CreateCVRType - Get the qualified type from the cache or create
545 /// a new one if necessary.
546 llvm::DIType CGDebugInfo::CreateQualifiedType(QualType Ty, llvm::DIFile Unit) {
547   QualifierCollector Qc;
548   const Type *T = Qc.strip(Ty);
549 
550   // Ignore these qualifiers for now.
551   Qc.removeObjCGCAttr();
552   Qc.removeAddressSpace();
553   Qc.removeObjCLifetime();
554 
555   // We will create one Derived type for one qualifier and recurse to handle any
556   // additional ones.
557   unsigned Tag;
558   if (Qc.hasConst()) {
559     Tag = llvm::dwarf::DW_TAG_const_type;
560     Qc.removeConst();
561   } else if (Qc.hasVolatile()) {
562     Tag = llvm::dwarf::DW_TAG_volatile_type;
563     Qc.removeVolatile();
564   } else if (Qc.hasRestrict()) {
565     Tag = llvm::dwarf::DW_TAG_restrict_type;
566     Qc.removeRestrict();
567   } else {
568     assert(Qc.empty() && "Unknown type qualifier for debug info");
569     return getOrCreateType(QualType(T, 0), Unit);
570   }
571 
572   llvm::DIType FromTy = getOrCreateType(Qc.apply(CGM.getContext(), T), Unit);
573 
574   // No need to fill in the Name, Line, Size, Alignment, Offset in case of
575   // CVR derived types.
576   llvm::DIType DbgTy = DBuilder.createQualifiedType(Tag, FromTy);
577 
578   return DbgTy;
579 }
580 
581 llvm::DIType CGDebugInfo::CreateType(const ObjCObjectPointerType *Ty,
582                                      llvm::DIFile Unit) {
583 
584   // The frontend treats 'id' as a typedef to an ObjCObjectType,
585   // whereas 'id<protocol>' is treated as an ObjCPointerType. For the
586   // debug info, we want to emit 'id' in both cases.
587   if (Ty->isObjCQualifiedIdType())
588       return getOrCreateType(CGM.getContext().getObjCIdType(), Unit);
589 
590   llvm::DIType DbgTy =
591     CreatePointerLikeType(llvm::dwarf::DW_TAG_pointer_type, Ty,
592                           Ty->getPointeeType(), Unit);
593   return DbgTy;
594 }
595 
596 llvm::DIType CGDebugInfo::CreateType(const PointerType *Ty,
597                                      llvm::DIFile Unit) {
598   return CreatePointerLikeType(llvm::dwarf::DW_TAG_pointer_type, Ty,
599                                Ty->getPointeeType(), Unit);
600 }
601 
602 /// In C++ mode, types have linkage, so we can rely on the ODR and
603 /// on their mangled names, if they're external.
604 static SmallString<256>
605 getUniqueTagTypeName(const TagType *Ty, CodeGenModule &CGM,
606                      llvm::DICompileUnit TheCU) {
607   SmallString<256> FullName;
608   // FIXME: ODR should apply to ObjC++ exactly the same wasy it does to C++.
609   // For now, only apply ODR with C++.
610   const TagDecl *TD = Ty->getDecl();
611   if (TheCU.getLanguage() != llvm::dwarf::DW_LANG_C_plus_plus ||
612       !TD->isExternallyVisible())
613     return FullName;
614   // Microsoft Mangler does not have support for mangleCXXRTTIName yet.
615   if (CGM.getTarget().getCXXABI().isMicrosoft())
616     return FullName;
617 
618   // TODO: This is using the RTTI name. Is there a better way to get
619   // a unique string for a type?
620   llvm::raw_svector_ostream Out(FullName);
621   CGM.getCXXABI().getMangleContext().mangleCXXRTTIName(QualType(Ty, 0), Out);
622   Out.flush();
623   return FullName;
624 }
625 
626 // Creates a forward declaration for a RecordDecl in the given context.
627 llvm::DICompositeType
628 CGDebugInfo::getOrCreateRecordFwdDecl(const RecordType *Ty,
629                                       llvm::DIDescriptor Ctx) {
630   const RecordDecl *RD = Ty->getDecl();
631   if (llvm::DIType T = getTypeOrNull(CGM.getContext().getRecordType(RD)))
632     return llvm::DICompositeType(T);
633   llvm::DIFile DefUnit = getOrCreateFile(RD->getLocation());
634   unsigned Line = getLineNumber(RD->getLocation());
635   StringRef RDName = getClassName(RD);
636 
637   unsigned Tag = 0;
638   if (RD->isStruct() || RD->isInterface())
639     Tag = llvm::dwarf::DW_TAG_structure_type;
640   else if (RD->isUnion())
641     Tag = llvm::dwarf::DW_TAG_union_type;
642   else {
643     assert(RD->isClass());
644     Tag = llvm::dwarf::DW_TAG_class_type;
645   }
646 
647   // Create the type.
648   SmallString<256> FullName = getUniqueTagTypeName(Ty, CGM, TheCU);
649   return DBuilder.createForwardDecl(Tag, RDName, Ctx, DefUnit, Line, 0, 0, 0,
650                                     FullName);
651 }
652 
653 // Walk up the context chain and create forward decls for record decls,
654 // and normal descriptors for namespaces.
655 llvm::DIDescriptor CGDebugInfo::createContextChain(const Decl *Context) {
656   if (!Context)
657     return TheCU;
658 
659   // See if we already have the parent.
660   llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator
661     I = RegionMap.find(Context);
662   if (I != RegionMap.end()) {
663     llvm::Value *V = I->second;
664     return llvm::DIDescriptor(dyn_cast_or_null<llvm::MDNode>(V));
665   }
666 
667   // Check namespace.
668   if (const NamespaceDecl *NSDecl = dyn_cast<NamespaceDecl>(Context))
669     return llvm::DIDescriptor(getOrCreateNameSpace(NSDecl));
670 
671   if (const RecordDecl *RD = dyn_cast<RecordDecl>(Context))
672     if (!RD->isDependentType())
673       return getOrCreateLimitedType(
674           CGM.getContext().getRecordType(RD)->castAs<RecordType>(),
675           getOrCreateMainFile());
676   return TheCU;
677 }
678 
679 llvm::DIType CGDebugInfo::CreatePointerLikeType(unsigned Tag,
680                                                 const Type *Ty,
681                                                 QualType PointeeTy,
682                                                 llvm::DIFile Unit) {
683   if (Tag == llvm::dwarf::DW_TAG_reference_type ||
684       Tag == llvm::dwarf::DW_TAG_rvalue_reference_type)
685     return DBuilder.createReferenceType(Tag, getOrCreateType(PointeeTy, Unit));
686 
687   // Bit size, align and offset of the type.
688   // Size is always the size of a pointer. We can't use getTypeSize here
689   // because that does not return the correct value for references.
690   unsigned AS = CGM.getContext().getTargetAddressSpace(PointeeTy);
691   uint64_t Size = CGM.getTarget().getPointerWidth(AS);
692   uint64_t Align = CGM.getContext().getTypeAlign(Ty);
693 
694   return DBuilder.createPointerType(getOrCreateType(PointeeTy, Unit), Size,
695                                     Align);
696 }
697 
698 llvm::DIType CGDebugInfo::getOrCreateStructPtrType(StringRef Name,
699                                                    llvm::DIType &Cache) {
700   if (Cache)
701     return Cache;
702   Cache = DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type, Name,
703                                      TheCU, getOrCreateMainFile(), 0);
704   unsigned Size = CGM.getContext().getTypeSize(CGM.getContext().VoidPtrTy);
705   Cache = DBuilder.createPointerType(Cache, Size);
706   return Cache;
707 }
708 
709 llvm::DIType CGDebugInfo::CreateType(const BlockPointerType *Ty,
710                                      llvm::DIFile Unit) {
711   if (BlockLiteralGeneric)
712     return BlockLiteralGeneric;
713 
714   SmallVector<llvm::Value *, 8> EltTys;
715   llvm::DIType FieldTy;
716   QualType FType;
717   uint64_t FieldSize, FieldOffset;
718   unsigned FieldAlign;
719   llvm::DIArray Elements;
720   llvm::DIType EltTy, DescTy;
721 
722   FieldOffset = 0;
723   FType = CGM.getContext().UnsignedLongTy;
724   EltTys.push_back(CreateMemberType(Unit, FType, "reserved", &FieldOffset));
725   EltTys.push_back(CreateMemberType(Unit, FType, "Size", &FieldOffset));
726 
727   Elements = DBuilder.getOrCreateArray(EltTys);
728   EltTys.clear();
729 
730   unsigned Flags = llvm::DIDescriptor::FlagAppleBlock;
731   unsigned LineNo = getLineNumber(CurLoc);
732 
733   EltTy = DBuilder.createStructType(Unit, "__block_descriptor",
734                                     Unit, LineNo, FieldOffset, 0,
735                                     Flags, llvm::DIType(), Elements);
736 
737   // Bit size, align and offset of the type.
738   uint64_t Size = CGM.getContext().getTypeSize(Ty);
739 
740   DescTy = DBuilder.createPointerType(EltTy, Size);
741 
742   FieldOffset = 0;
743   FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy);
744   EltTys.push_back(CreateMemberType(Unit, FType, "__isa", &FieldOffset));
745   FType = CGM.getContext().IntTy;
746   EltTys.push_back(CreateMemberType(Unit, FType, "__flags", &FieldOffset));
747   EltTys.push_back(CreateMemberType(Unit, FType, "__reserved", &FieldOffset));
748   FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy);
749   EltTys.push_back(CreateMemberType(Unit, FType, "__FuncPtr", &FieldOffset));
750 
751   FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy);
752   FieldTy = DescTy;
753   FieldSize = CGM.getContext().getTypeSize(Ty);
754   FieldAlign = CGM.getContext().getTypeAlign(Ty);
755   FieldTy = DBuilder.createMemberType(Unit, "__descriptor", Unit,
756                                       LineNo, FieldSize, FieldAlign,
757                                       FieldOffset, 0, FieldTy);
758   EltTys.push_back(FieldTy);
759 
760   FieldOffset += FieldSize;
761   Elements = DBuilder.getOrCreateArray(EltTys);
762 
763   EltTy = DBuilder.createStructType(Unit, "__block_literal_generic",
764                                     Unit, LineNo, FieldOffset, 0,
765                                     Flags, llvm::DIType(), Elements);
766 
767   BlockLiteralGeneric = DBuilder.createPointerType(EltTy, Size);
768   return BlockLiteralGeneric;
769 }
770 
771 llvm::DIType CGDebugInfo::CreateType(const TypedefType *Ty, llvm::DIFile Unit) {
772   // Typedefs are derived from some other type.  If we have a typedef of a
773   // typedef, make sure to emit the whole chain.
774   llvm::DIType Src = getOrCreateType(Ty->getDecl()->getUnderlyingType(), Unit);
775   if (!Src)
776     return llvm::DIType();
777   // We don't set size information, but do specify where the typedef was
778   // declared.
779   unsigned Line = getLineNumber(Ty->getDecl()->getLocation());
780   const TypedefNameDecl *TyDecl = Ty->getDecl();
781 
782   llvm::DIDescriptor TypedefContext =
783     getContextDescriptor(cast<Decl>(Ty->getDecl()->getDeclContext()));
784 
785   return
786     DBuilder.createTypedef(Src, TyDecl->getName(), Unit, Line, TypedefContext);
787 }
788 
789 llvm::DIType CGDebugInfo::CreateType(const FunctionType *Ty,
790                                      llvm::DIFile Unit) {
791   SmallVector<llvm::Value *, 16> EltTys;
792 
793   // Add the result type at least.
794   EltTys.push_back(getOrCreateType(Ty->getResultType(), Unit));
795 
796   // Set up remainder of arguments if there is a prototype.
797   // FIXME: IF NOT, HOW IS THIS REPRESENTED?  llvm-gcc doesn't represent '...'!
798   if (isa<FunctionNoProtoType>(Ty))
799     EltTys.push_back(DBuilder.createUnspecifiedParameter());
800   else if (const FunctionProtoType *FPT = dyn_cast<FunctionProtoType>(Ty)) {
801     for (unsigned i = 0, e = FPT->getNumArgs(); i != e; ++i)
802       EltTys.push_back(getOrCreateType(FPT->getArgType(i), Unit));
803   }
804 
805   llvm::DIArray EltTypeArray = DBuilder.getOrCreateArray(EltTys);
806   return DBuilder.createSubroutineType(Unit, EltTypeArray);
807 }
808 
809 
810 llvm::DIType CGDebugInfo::createFieldType(StringRef name,
811                                           QualType type,
812                                           uint64_t sizeInBitsOverride,
813                                           SourceLocation loc,
814                                           AccessSpecifier AS,
815                                           uint64_t offsetInBits,
816                                           llvm::DIFile tunit,
817                                           llvm::DIDescriptor scope) {
818   llvm::DIType debugType = getOrCreateType(type, tunit);
819 
820   // Get the location for the field.
821   llvm::DIFile file = getOrCreateFile(loc);
822   unsigned line = getLineNumber(loc);
823 
824   uint64_t sizeInBits = 0;
825   unsigned alignInBits = 0;
826   if (!type->isIncompleteArrayType()) {
827     llvm::tie(sizeInBits, alignInBits) = CGM.getContext().getTypeInfo(type);
828 
829     if (sizeInBitsOverride)
830       sizeInBits = sizeInBitsOverride;
831   }
832 
833   unsigned flags = 0;
834   if (AS == clang::AS_private)
835     flags |= llvm::DIDescriptor::FlagPrivate;
836   else if (AS == clang::AS_protected)
837     flags |= llvm::DIDescriptor::FlagProtected;
838 
839   return DBuilder.createMemberType(scope, name, file, line, sizeInBits,
840                                    alignInBits, offsetInBits, flags, debugType);
841 }
842 
843 /// CollectRecordLambdaFields - Helper for CollectRecordFields.
844 void CGDebugInfo::
845 CollectRecordLambdaFields(const CXXRecordDecl *CXXDecl,
846                           SmallVectorImpl<llvm::Value *> &elements,
847                           llvm::DIType RecordTy) {
848   // For C++11 Lambdas a Field will be the same as a Capture, but the Capture
849   // has the name and the location of the variable so we should iterate over
850   // both concurrently.
851   const ASTRecordLayout &layout = CGM.getContext().getASTRecordLayout(CXXDecl);
852   RecordDecl::field_iterator Field = CXXDecl->field_begin();
853   unsigned fieldno = 0;
854   for (CXXRecordDecl::capture_const_iterator I = CXXDecl->captures_begin(),
855          E = CXXDecl->captures_end(); I != E; ++I, ++Field, ++fieldno) {
856     const LambdaExpr::Capture C = *I;
857     if (C.capturesVariable()) {
858       VarDecl *V = C.getCapturedVar();
859       llvm::DIFile VUnit = getOrCreateFile(C.getLocation());
860       StringRef VName = V->getName();
861       uint64_t SizeInBitsOverride = 0;
862       if (Field->isBitField()) {
863         SizeInBitsOverride = Field->getBitWidthValue(CGM.getContext());
864         assert(SizeInBitsOverride && "found named 0-width bitfield");
865       }
866       llvm::DIType fieldType
867         = createFieldType(VName, Field->getType(), SizeInBitsOverride,
868                           C.getLocation(), Field->getAccess(),
869                           layout.getFieldOffset(fieldno), VUnit, RecordTy);
870       elements.push_back(fieldType);
871     } else {
872       // TODO: Need to handle 'this' in some way by probably renaming the
873       // this of the lambda class and having a field member of 'this' or
874       // by using AT_object_pointer for the function and having that be
875       // used as 'this' for semantic references.
876       assert(C.capturesThis() && "Field that isn't captured and isn't this?");
877       FieldDecl *f = *Field;
878       llvm::DIFile VUnit = getOrCreateFile(f->getLocation());
879       QualType type = f->getType();
880       llvm::DIType fieldType
881         = createFieldType("this", type, 0, f->getLocation(), f->getAccess(),
882                           layout.getFieldOffset(fieldno), VUnit, RecordTy);
883 
884       elements.push_back(fieldType);
885     }
886   }
887 }
888 
889 /// Helper for CollectRecordFields.
890 llvm::DIDerivedType
891 CGDebugInfo::CreateRecordStaticField(const VarDecl *Var,
892                                      llvm::DIType RecordTy) {
893   // Create the descriptor for the static variable, with or without
894   // constant initializers.
895   llvm::DIFile VUnit = getOrCreateFile(Var->getLocation());
896   llvm::DIType VTy = getOrCreateType(Var->getType(), VUnit);
897 
898   unsigned LineNumber = getLineNumber(Var->getLocation());
899   StringRef VName = Var->getName();
900   llvm::Constant *C = NULL;
901   if (Var->getInit()) {
902     const APValue *Value = Var->evaluateValue();
903     if (Value) {
904       if (Value->isInt())
905         C = llvm::ConstantInt::get(CGM.getLLVMContext(), Value->getInt());
906       if (Value->isFloat())
907         C = llvm::ConstantFP::get(CGM.getLLVMContext(), Value->getFloat());
908     }
909   }
910 
911   unsigned Flags = 0;
912   AccessSpecifier Access = Var->getAccess();
913   if (Access == clang::AS_private)
914     Flags |= llvm::DIDescriptor::FlagPrivate;
915   else if (Access == clang::AS_protected)
916     Flags |= llvm::DIDescriptor::FlagProtected;
917 
918   llvm::DIDerivedType GV = DBuilder.createStaticMemberType(
919       RecordTy, VName, VUnit, LineNumber, VTy, Flags, C);
920   StaticDataMemberCache[Var->getCanonicalDecl()] = llvm::WeakVH(GV);
921   return GV;
922 }
923 
924 /// CollectRecordNormalField - Helper for CollectRecordFields.
925 void CGDebugInfo::
926 CollectRecordNormalField(const FieldDecl *field, uint64_t OffsetInBits,
927                          llvm::DIFile tunit,
928                          SmallVectorImpl<llvm::Value *> &elements,
929                          llvm::DIType RecordTy) {
930   StringRef name = field->getName();
931   QualType type = field->getType();
932 
933   // Ignore unnamed fields unless they're anonymous structs/unions.
934   if (name.empty() && !type->isRecordType())
935     return;
936 
937   uint64_t SizeInBitsOverride = 0;
938   if (field->isBitField()) {
939     SizeInBitsOverride = field->getBitWidthValue(CGM.getContext());
940     assert(SizeInBitsOverride && "found named 0-width bitfield");
941   }
942 
943   llvm::DIType fieldType
944     = createFieldType(name, type, SizeInBitsOverride,
945                       field->getLocation(), field->getAccess(),
946                       OffsetInBits, tunit, RecordTy);
947 
948   elements.push_back(fieldType);
949 }
950 
951 /// CollectRecordFields - A helper function to collect debug info for
952 /// record fields. This is used while creating debug info entry for a Record.
953 void CGDebugInfo::CollectRecordFields(const RecordDecl *record,
954                                       llvm::DIFile tunit,
955                                       SmallVectorImpl<llvm::Value *> &elements,
956                                       llvm::DICompositeType RecordTy) {
957   const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(record);
958 
959   if (CXXDecl && CXXDecl->isLambda())
960     CollectRecordLambdaFields(CXXDecl, elements, RecordTy);
961   else {
962     const ASTRecordLayout &layout = CGM.getContext().getASTRecordLayout(record);
963 
964     // Field number for non-static fields.
965     unsigned fieldNo = 0;
966 
967     // Static and non-static members should appear in the same order as
968     // the corresponding declarations in the source program.
969     for (RecordDecl::decl_iterator I = record->decls_begin(),
970            E = record->decls_end(); I != E; ++I)
971       if (const VarDecl *V = dyn_cast<VarDecl>(*I)) {
972         // Reuse the existing static member declaration if one exists
973         llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator MI =
974             StaticDataMemberCache.find(V->getCanonicalDecl());
975         if (MI != StaticDataMemberCache.end()) {
976           assert(MI->second &&
977                  "Static data member declaration should still exist");
978           elements.push_back(
979               llvm::DIDerivedType(cast<llvm::MDNode>(MI->second)));
980         } else
981           elements.push_back(CreateRecordStaticField(V, RecordTy));
982       } else if (FieldDecl *field = dyn_cast<FieldDecl>(*I)) {
983         CollectRecordNormalField(field, layout.getFieldOffset(fieldNo),
984                                  tunit, elements, RecordTy);
985 
986         // Bump field number for next field.
987         ++fieldNo;
988       }
989   }
990 }
991 
992 /// getOrCreateMethodType - CXXMethodDecl's type is a FunctionType. This
993 /// function type is not updated to include implicit "this" pointer. Use this
994 /// routine to get a method type which includes "this" pointer.
995 llvm::DICompositeType
996 CGDebugInfo::getOrCreateMethodType(const CXXMethodDecl *Method,
997                                    llvm::DIFile Unit) {
998   const FunctionProtoType *Func = Method->getType()->getAs<FunctionProtoType>();
999   if (Method->isStatic())
1000     return llvm::DICompositeType(getOrCreateType(QualType(Func, 0), Unit));
1001   return getOrCreateInstanceMethodType(Method->getThisType(CGM.getContext()),
1002                                        Func, Unit);
1003 }
1004 
1005 llvm::DICompositeType CGDebugInfo::getOrCreateInstanceMethodType(
1006     QualType ThisPtr, const FunctionProtoType *Func, llvm::DIFile Unit) {
1007   // Add "this" pointer.
1008   llvm::DIArray Args = llvm::DICompositeType(
1009       getOrCreateType(QualType(Func, 0), Unit)).getTypeArray();
1010   assert (Args.getNumElements() && "Invalid number of arguments!");
1011 
1012   SmallVector<llvm::Value *, 16> Elts;
1013 
1014   // First element is always return type. For 'void' functions it is NULL.
1015   Elts.push_back(Args.getElement(0));
1016 
1017   // "this" pointer is always first argument.
1018   const CXXRecordDecl *RD = ThisPtr->getPointeeCXXRecordDecl();
1019   if (isa<ClassTemplateSpecializationDecl>(RD)) {
1020     // Create pointer type directly in this case.
1021     const PointerType *ThisPtrTy = cast<PointerType>(ThisPtr);
1022     QualType PointeeTy = ThisPtrTy->getPointeeType();
1023     unsigned AS = CGM.getContext().getTargetAddressSpace(PointeeTy);
1024     uint64_t Size = CGM.getTarget().getPointerWidth(AS);
1025     uint64_t Align = CGM.getContext().getTypeAlign(ThisPtrTy);
1026     llvm::DIType PointeeType = getOrCreateType(PointeeTy, Unit);
1027     llvm::DIType ThisPtrType =
1028       DBuilder.createPointerType(PointeeType, Size, Align);
1029     TypeCache[ThisPtr.getAsOpaquePtr()] = ThisPtrType;
1030     // TODO: This and the artificial type below are misleading, the
1031     // types aren't artificial the argument is, but the current
1032     // metadata doesn't represent that.
1033     ThisPtrType = DBuilder.createObjectPointerType(ThisPtrType);
1034     Elts.push_back(ThisPtrType);
1035   } else {
1036     llvm::DIType ThisPtrType = getOrCreateType(ThisPtr, Unit);
1037     TypeCache[ThisPtr.getAsOpaquePtr()] = ThisPtrType;
1038     ThisPtrType = DBuilder.createObjectPointerType(ThisPtrType);
1039     Elts.push_back(ThisPtrType);
1040   }
1041 
1042   // Copy rest of the arguments.
1043   for (unsigned i = 1, e = Args.getNumElements(); i != e; ++i)
1044     Elts.push_back(Args.getElement(i));
1045 
1046   llvm::DIArray EltTypeArray = DBuilder.getOrCreateArray(Elts);
1047 
1048   return DBuilder.createSubroutineType(Unit, EltTypeArray);
1049 }
1050 
1051 /// isFunctionLocalClass - Return true if CXXRecordDecl is defined
1052 /// inside a function.
1053 static bool isFunctionLocalClass(const CXXRecordDecl *RD) {
1054   if (const CXXRecordDecl *NRD = dyn_cast<CXXRecordDecl>(RD->getDeclContext()))
1055     return isFunctionLocalClass(NRD);
1056   if (isa<FunctionDecl>(RD->getDeclContext()))
1057     return true;
1058   return false;
1059 }
1060 
1061 /// CreateCXXMemberFunction - A helper function to create a DISubprogram for
1062 /// a single member function GlobalDecl.
1063 llvm::DISubprogram
1064 CGDebugInfo::CreateCXXMemberFunction(const CXXMethodDecl *Method,
1065                                      llvm::DIFile Unit,
1066                                      llvm::DIType RecordTy) {
1067   bool IsCtorOrDtor =
1068     isa<CXXConstructorDecl>(Method) || isa<CXXDestructorDecl>(Method);
1069 
1070   StringRef MethodName = getFunctionName(Method);
1071   llvm::DICompositeType MethodTy = getOrCreateMethodType(Method, Unit);
1072 
1073   // Since a single ctor/dtor corresponds to multiple functions, it doesn't
1074   // make sense to give a single ctor/dtor a linkage name.
1075   StringRef MethodLinkageName;
1076   if (!IsCtorOrDtor && !isFunctionLocalClass(Method->getParent()))
1077     MethodLinkageName = CGM.getMangledName(Method);
1078 
1079   // Get the location for the method.
1080   llvm::DIFile MethodDefUnit;
1081   unsigned MethodLine = 0;
1082   if (!Method->isImplicit()) {
1083     MethodDefUnit = getOrCreateFile(Method->getLocation());
1084     MethodLine = getLineNumber(Method->getLocation());
1085   }
1086 
1087   // Collect virtual method info.
1088   llvm::DIType ContainingType;
1089   unsigned Virtuality = 0;
1090   unsigned VIndex = 0;
1091 
1092   if (Method->isVirtual()) {
1093     if (Method->isPure())
1094       Virtuality = llvm::dwarf::DW_VIRTUALITY_pure_virtual;
1095     else
1096       Virtuality = llvm::dwarf::DW_VIRTUALITY_virtual;
1097 
1098     // It doesn't make sense to give a virtual destructor a vtable index,
1099     // since a single destructor has two entries in the vtable.
1100     if (!isa<CXXDestructorDecl>(Method))
1101       VIndex = CGM.getVTableContext().getMethodVTableIndex(Method);
1102     ContainingType = RecordTy;
1103   }
1104 
1105   unsigned Flags = 0;
1106   if (Method->isImplicit())
1107     Flags |= llvm::DIDescriptor::FlagArtificial;
1108   AccessSpecifier Access = Method->getAccess();
1109   if (Access == clang::AS_private)
1110     Flags |= llvm::DIDescriptor::FlagPrivate;
1111   else if (Access == clang::AS_protected)
1112     Flags |= llvm::DIDescriptor::FlagProtected;
1113   if (const CXXConstructorDecl *CXXC = dyn_cast<CXXConstructorDecl>(Method)) {
1114     if (CXXC->isExplicit())
1115       Flags |= llvm::DIDescriptor::FlagExplicit;
1116   } else if (const CXXConversionDecl *CXXC =
1117              dyn_cast<CXXConversionDecl>(Method)) {
1118     if (CXXC->isExplicit())
1119       Flags |= llvm::DIDescriptor::FlagExplicit;
1120   }
1121   if (Method->hasPrototype())
1122     Flags |= llvm::DIDescriptor::FlagPrototyped;
1123 
1124   llvm::DIArray TParamsArray = CollectFunctionTemplateParams(Method, Unit);
1125   llvm::DISubprogram SP =
1126     DBuilder.createMethod(RecordTy, MethodName, MethodLinkageName,
1127                           MethodDefUnit, MethodLine,
1128                           MethodTy, /*isLocalToUnit=*/false,
1129                           /* isDefinition=*/ false,
1130                           Virtuality, VIndex, ContainingType,
1131                           Flags, CGM.getLangOpts().Optimize, NULL,
1132                           TParamsArray);
1133 
1134   SPCache[Method->getCanonicalDecl()] = llvm::WeakVH(SP);
1135 
1136   return SP;
1137 }
1138 
1139 /// CollectCXXMemberFunctions - A helper function to collect debug info for
1140 /// C++ member functions. This is used while creating debug info entry for
1141 /// a Record.
1142 void CGDebugInfo::
1143 CollectCXXMemberFunctions(const CXXRecordDecl *RD, llvm::DIFile Unit,
1144                           SmallVectorImpl<llvm::Value *> &EltTys,
1145                           llvm::DIType RecordTy) {
1146 
1147   // Since we want more than just the individual member decls if we
1148   // have templated functions iterate over every declaration to gather
1149   // the functions.
1150   for(DeclContext::decl_iterator I = RD->decls_begin(),
1151         E = RD->decls_end(); I != E; ++I) {
1152     if (const CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(*I)) {
1153       // Reuse the existing member function declaration if it exists.
1154       // It may be associated with the declaration of the type & should be
1155       // reused as we're building the definition.
1156       //
1157       // This situation can arise in the vtable-based debug info reduction where
1158       // implicit members are emitted in a non-vtable TU.
1159       llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator MI =
1160           SPCache.find(Method->getCanonicalDecl());
1161       if (MI == SPCache.end()) {
1162         // If the member is implicit, lazily create it when we see the
1163         // definition, not before. (an ODR-used implicit default ctor that's
1164         // never actually code generated should not produce debug info)
1165         if (!Method->isImplicit())
1166           EltTys.push_back(CreateCXXMemberFunction(Method, Unit, RecordTy));
1167       } else
1168         EltTys.push_back(MI->second);
1169     } else if (const FunctionTemplateDecl *FTD =
1170                    dyn_cast<FunctionTemplateDecl>(*I)) {
1171       // Add any template specializations that have already been seen. Like
1172       // implicit member functions, these may have been added to a declaration
1173       // in the case of vtable-based debug info reduction.
1174       for (FunctionTemplateDecl::spec_iterator SI = FTD->spec_begin(),
1175                                                SE = FTD->spec_end();
1176            SI != SE; ++SI) {
1177         llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator MI =
1178             SPCache.find(cast<CXXMethodDecl>(*SI)->getCanonicalDecl());
1179         if (MI != SPCache.end())
1180           EltTys.push_back(MI->second);
1181       }
1182     }
1183   }
1184 }
1185 
1186 /// CollectCXXFriends - A helper function to collect debug info for
1187 /// C++ base classes. This is used while creating debug info entry for
1188 /// a Record.
1189 void CGDebugInfo::
1190 CollectCXXFriends(const CXXRecordDecl *RD, llvm::DIFile Unit,
1191                 SmallVectorImpl<llvm::Value *> &EltTys,
1192                 llvm::DIType RecordTy) {
1193   for (CXXRecordDecl::friend_iterator BI = RD->friend_begin(),
1194          BE = RD->friend_end(); BI != BE; ++BI) {
1195     if ((*BI)->isUnsupportedFriend())
1196       continue;
1197     if (TypeSourceInfo *TInfo = (*BI)->getFriendType())
1198       EltTys.push_back(DBuilder.createFriend(
1199           RecordTy, getOrCreateType(TInfo->getType(), Unit)));
1200   }
1201 }
1202 
1203 /// CollectCXXBases - A helper function to collect debug info for
1204 /// C++ base classes. This is used while creating debug info entry for
1205 /// a Record.
1206 void CGDebugInfo::
1207 CollectCXXBases(const CXXRecordDecl *RD, llvm::DIFile Unit,
1208                 SmallVectorImpl<llvm::Value *> &EltTys,
1209                 llvm::DIType RecordTy) {
1210 
1211   const ASTRecordLayout &RL = CGM.getContext().getASTRecordLayout(RD);
1212   for (CXXRecordDecl::base_class_const_iterator BI = RD->bases_begin(),
1213          BE = RD->bases_end(); BI != BE; ++BI) {
1214     unsigned BFlags = 0;
1215     uint64_t BaseOffset;
1216 
1217     const CXXRecordDecl *Base =
1218       cast<CXXRecordDecl>(BI->getType()->getAs<RecordType>()->getDecl());
1219 
1220     if (BI->isVirtual()) {
1221       // virtual base offset offset is -ve. The code generator emits dwarf
1222       // expression where it expects +ve number.
1223       BaseOffset =
1224         0 - CGM.getVTableContext()
1225                .getVirtualBaseOffsetOffset(RD, Base).getQuantity();
1226       BFlags = llvm::DIDescriptor::FlagVirtual;
1227     } else
1228       BaseOffset = CGM.getContext().toBits(RL.getBaseClassOffset(Base));
1229     // FIXME: Inconsistent units for BaseOffset. It is in bytes when
1230     // BI->isVirtual() and bits when not.
1231 
1232     AccessSpecifier Access = BI->getAccessSpecifier();
1233     if (Access == clang::AS_private)
1234       BFlags |= llvm::DIDescriptor::FlagPrivate;
1235     else if (Access == clang::AS_protected)
1236       BFlags |= llvm::DIDescriptor::FlagProtected;
1237 
1238     llvm::DIType DTy =
1239       DBuilder.createInheritance(RecordTy,
1240                                  getOrCreateType(BI->getType(), Unit),
1241                                  BaseOffset, BFlags);
1242     EltTys.push_back(DTy);
1243   }
1244 }
1245 
1246 /// CollectTemplateParams - A helper function to collect template parameters.
1247 llvm::DIArray CGDebugInfo::
1248 CollectTemplateParams(const TemplateParameterList *TPList,
1249                       ArrayRef<TemplateArgument> TAList,
1250                       llvm::DIFile Unit) {
1251   SmallVector<llvm::Value *, 16> TemplateParams;
1252   for (unsigned i = 0, e = TAList.size(); i != e; ++i) {
1253     const TemplateArgument &TA = TAList[i];
1254     StringRef Name;
1255     if (TPList)
1256       Name = TPList->getParam(i)->getName();
1257     switch (TA.getKind()) {
1258     case TemplateArgument::Type: {
1259       llvm::DIType TTy = getOrCreateType(TA.getAsType(), Unit);
1260       llvm::DITemplateTypeParameter TTP =
1261           DBuilder.createTemplateTypeParameter(TheCU, Name, TTy);
1262       TemplateParams.push_back(TTP);
1263     } break;
1264     case TemplateArgument::Integral: {
1265       llvm::DIType TTy = getOrCreateType(TA.getIntegralType(), Unit);
1266       llvm::DITemplateValueParameter TVP =
1267           DBuilder.createTemplateValueParameter(
1268               TheCU, Name, TTy,
1269               llvm::ConstantInt::get(CGM.getLLVMContext(), TA.getAsIntegral()));
1270       TemplateParams.push_back(TVP);
1271     } break;
1272     case TemplateArgument::Declaration: {
1273       const ValueDecl *D = TA.getAsDecl();
1274       bool InstanceMember = D->isCXXInstanceMember();
1275       QualType T = InstanceMember
1276                        ? CGM.getContext().getMemberPointerType(
1277                              D->getType(), cast<RecordDecl>(D->getDeclContext())
1278                                                ->getTypeForDecl())
1279                        : CGM.getContext().getPointerType(D->getType());
1280       llvm::DIType TTy = getOrCreateType(T, Unit);
1281       llvm::Value *V = 0;
1282       // Variable pointer template parameters have a value that is the address
1283       // of the variable.
1284       if (const VarDecl *VD = dyn_cast<VarDecl>(D))
1285         V = CGM.GetAddrOfGlobalVar(VD);
1286       // Member function pointers have special support for building them, though
1287       // this is currently unsupported in LLVM CodeGen.
1288       if (InstanceMember) {
1289         if (const CXXMethodDecl *method = dyn_cast<CXXMethodDecl>(D))
1290           V = CGM.getCXXABI().EmitMemberPointer(method);
1291       } else if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D))
1292         V = CGM.GetAddrOfFunction(FD);
1293       // Member data pointers have special handling too to compute the fixed
1294       // offset within the object.
1295       if (isa<FieldDecl>(D)) {
1296         // These five lines (& possibly the above member function pointer
1297         // handling) might be able to be refactored to use similar code in
1298         // CodeGenModule::getMemberPointerConstant
1299         uint64_t fieldOffset = CGM.getContext().getFieldOffset(D);
1300         CharUnits chars =
1301             CGM.getContext().toCharUnitsFromBits((int64_t) fieldOffset);
1302         V = CGM.getCXXABI().EmitMemberDataPointer(
1303             cast<MemberPointerType>(T.getTypePtr()), chars);
1304       }
1305       llvm::DITemplateValueParameter TVP =
1306           DBuilder.createTemplateValueParameter(TheCU, Name, TTy,
1307                                                 V->stripPointerCasts());
1308       TemplateParams.push_back(TVP);
1309     } break;
1310     case TemplateArgument::NullPtr: {
1311       QualType T = TA.getNullPtrType();
1312       llvm::DIType TTy = getOrCreateType(T, Unit);
1313       llvm::Value *V = 0;
1314       // Special case member data pointer null values since they're actually -1
1315       // instead of zero.
1316       if (const MemberPointerType *MPT =
1317               dyn_cast<MemberPointerType>(T.getTypePtr()))
1318         // But treat member function pointers as simple zero integers because
1319         // it's easier than having a special case in LLVM's CodeGen. If LLVM
1320         // CodeGen grows handling for values of non-null member function
1321         // pointers then perhaps we could remove this special case and rely on
1322         // EmitNullMemberPointer for member function pointers.
1323         if (MPT->isMemberDataPointer())
1324           V = CGM.getCXXABI().EmitNullMemberPointer(MPT);
1325       if (!V)
1326         V = llvm::ConstantInt::get(CGM.Int8Ty, 0);
1327       llvm::DITemplateValueParameter TVP =
1328           DBuilder.createTemplateValueParameter(TheCU, Name, TTy, V);
1329       TemplateParams.push_back(TVP);
1330     } break;
1331     case TemplateArgument::Template: {
1332       llvm::DITemplateValueParameter TVP =
1333           DBuilder.createTemplateTemplateParameter(
1334               TheCU, Name, llvm::DIType(),
1335               TA.getAsTemplate().getAsTemplateDecl()
1336                   ->getQualifiedNameAsString());
1337       TemplateParams.push_back(TVP);
1338     } break;
1339     case TemplateArgument::Pack: {
1340       llvm::DITemplateValueParameter TVP =
1341           DBuilder.createTemplateParameterPack(
1342               TheCU, Name, llvm::DIType(),
1343               CollectTemplateParams(NULL, TA.getPackAsArray(), Unit));
1344       TemplateParams.push_back(TVP);
1345     } break;
1346     case TemplateArgument::Expression: {
1347       const Expr *E = TA.getAsExpr();
1348       QualType T = E->getType();
1349       llvm::Value *V = CGM.EmitConstantExpr(E, T);
1350       assert(V && "Expression in template argument isn't constant");
1351       llvm::DIType TTy = getOrCreateType(T, Unit);
1352       llvm::DITemplateValueParameter TVP =
1353           DBuilder.createTemplateValueParameter(TheCU, Name, TTy,
1354                                                 V->stripPointerCasts());
1355       TemplateParams.push_back(TVP);
1356     } break;
1357     // And the following should never occur:
1358     case TemplateArgument::TemplateExpansion:
1359     case TemplateArgument::Null:
1360       llvm_unreachable(
1361           "These argument types shouldn't exist in concrete types");
1362     }
1363   }
1364   return DBuilder.getOrCreateArray(TemplateParams);
1365 }
1366 
1367 /// CollectFunctionTemplateParams - A helper function to collect debug
1368 /// info for function template parameters.
1369 llvm::DIArray CGDebugInfo::
1370 CollectFunctionTemplateParams(const FunctionDecl *FD, llvm::DIFile Unit) {
1371   if (FD->getTemplatedKind() ==
1372       FunctionDecl::TK_FunctionTemplateSpecialization) {
1373     const TemplateParameterList *TList =
1374       FD->getTemplateSpecializationInfo()->getTemplate()
1375       ->getTemplateParameters();
1376     return CollectTemplateParams(
1377         TList, FD->getTemplateSpecializationArgs()->asArray(), Unit);
1378   }
1379   return llvm::DIArray();
1380 }
1381 
1382 /// CollectCXXTemplateParams - A helper function to collect debug info for
1383 /// template parameters.
1384 llvm::DIArray CGDebugInfo::
1385 CollectCXXTemplateParams(const ClassTemplateSpecializationDecl *TSpecial,
1386                          llvm::DIFile Unit) {
1387   llvm::PointerUnion<ClassTemplateDecl *,
1388                      ClassTemplatePartialSpecializationDecl *>
1389     PU = TSpecial->getSpecializedTemplateOrPartial();
1390 
1391   TemplateParameterList *TPList = PU.is<ClassTemplateDecl *>() ?
1392     PU.get<ClassTemplateDecl *>()->getTemplateParameters() :
1393     PU.get<ClassTemplatePartialSpecializationDecl *>()->getTemplateParameters();
1394   const TemplateArgumentList &TAList = TSpecial->getTemplateInstantiationArgs();
1395   return CollectTemplateParams(TPList, TAList.asArray(), Unit);
1396 }
1397 
1398 /// getOrCreateVTablePtrType - Return debug info descriptor for vtable.
1399 llvm::DIType CGDebugInfo::getOrCreateVTablePtrType(llvm::DIFile Unit) {
1400   if (VTablePtrType.isValid())
1401     return VTablePtrType;
1402 
1403   ASTContext &Context = CGM.getContext();
1404 
1405   /* Function type */
1406   llvm::Value *STy = getOrCreateType(Context.IntTy, Unit);
1407   llvm::DIArray SElements = DBuilder.getOrCreateArray(STy);
1408   llvm::DIType SubTy = DBuilder.createSubroutineType(Unit, SElements);
1409   unsigned Size = Context.getTypeSize(Context.VoidPtrTy);
1410   llvm::DIType vtbl_ptr_type = DBuilder.createPointerType(SubTy, Size, 0,
1411                                                           "__vtbl_ptr_type");
1412   VTablePtrType = DBuilder.createPointerType(vtbl_ptr_type, Size);
1413   return VTablePtrType;
1414 }
1415 
1416 /// getVTableName - Get vtable name for the given Class.
1417 StringRef CGDebugInfo::getVTableName(const CXXRecordDecl *RD) {
1418   // Construct gdb compatible name name.
1419   std::string Name = "_vptr$" + RD->getNameAsString();
1420 
1421   // Copy this name on the side and use its reference.
1422   char *StrPtr = DebugInfoNames.Allocate<char>(Name.length());
1423   memcpy(StrPtr, Name.data(), Name.length());
1424   return StringRef(StrPtr, Name.length());
1425 }
1426 
1427 
1428 /// CollectVTableInfo - If the C++ class has vtable info then insert appropriate
1429 /// debug info entry in EltTys vector.
1430 void CGDebugInfo::
1431 CollectVTableInfo(const CXXRecordDecl *RD, llvm::DIFile Unit,
1432                   SmallVectorImpl<llvm::Value *> &EltTys) {
1433   const ASTRecordLayout &RL = CGM.getContext().getASTRecordLayout(RD);
1434 
1435   // If there is a primary base then it will hold vtable info.
1436   if (RL.getPrimaryBase())
1437     return;
1438 
1439   // If this class is not dynamic then there is not any vtable info to collect.
1440   if (!RD->isDynamicClass())
1441     return;
1442 
1443   unsigned Size = CGM.getContext().getTypeSize(CGM.getContext().VoidPtrTy);
1444   llvm::DIType VPTR
1445     = DBuilder.createMemberType(Unit, getVTableName(RD), Unit,
1446                                 0, Size, 0, 0,
1447                                 llvm::DIDescriptor::FlagArtificial,
1448                                 getOrCreateVTablePtrType(Unit));
1449   EltTys.push_back(VPTR);
1450 }
1451 
1452 /// getOrCreateRecordType - Emit record type's standalone debug info.
1453 llvm::DIType CGDebugInfo::getOrCreateRecordType(QualType RTy,
1454                                                 SourceLocation Loc) {
1455   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
1456   llvm::DIType T = getOrCreateType(RTy, getOrCreateFile(Loc));
1457   return T;
1458 }
1459 
1460 /// getOrCreateInterfaceType - Emit an objective c interface type standalone
1461 /// debug info.
1462 llvm::DIType CGDebugInfo::getOrCreateInterfaceType(QualType D,
1463                                                    SourceLocation Loc) {
1464   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
1465   llvm::DIType T = getOrCreateType(D, getOrCreateFile(Loc));
1466   RetainedTypes.push_back(D.getAsOpaquePtr());
1467   return T;
1468 }
1469 
1470 void CGDebugInfo::completeType(const RecordDecl *RD) {
1471   if (DebugKind > CodeGenOptions::LimitedDebugInfo ||
1472       !CGM.getLangOpts().CPlusPlus)
1473     completeRequiredType(RD);
1474 }
1475 
1476 void CGDebugInfo::completeRequiredType(const RecordDecl *RD) {
1477   if (const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD))
1478     if (CXXDecl->isDynamicClass())
1479       return;
1480 
1481   QualType Ty = CGM.getContext().getRecordType(RD);
1482   llvm::DIType T = getTypeOrNull(Ty);
1483   if (T && T.isForwardDecl())
1484     completeClassData(RD);
1485 }
1486 
1487 void CGDebugInfo::completeClassData(const RecordDecl *RD) {
1488   if (DebugKind <= CodeGenOptions::DebugLineTablesOnly)
1489     return;
1490   QualType Ty = CGM.getContext().getRecordType(RD);
1491   void* TyPtr = Ty.getAsOpaquePtr();
1492   if (CompletedTypeCache.count(TyPtr))
1493     return;
1494   llvm::DIType Res = CreateTypeDefinition(Ty->castAs<RecordType>());
1495   assert(!Res.isForwardDecl());
1496   CompletedTypeCache[TyPtr] = Res;
1497   TypeCache[TyPtr] = Res;
1498 }
1499 
1500 /// CreateType - get structure or union type.
1501 llvm::DIType CGDebugInfo::CreateType(const RecordType *Ty) {
1502   RecordDecl *RD = Ty->getDecl();
1503   const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD);
1504   // Always emit declarations for types that aren't required to be complete when
1505   // in limit-debug-info mode. If the type is later found to be required to be
1506   // complete this declaration will be upgraded to a definition by
1507   // `completeRequiredType`.
1508   // If the type is dynamic, only emit the definition in TUs that require class
1509   // data. This is handled by `completeClassData`.
1510   if ((DebugKind <= CodeGenOptions::LimitedDebugInfo &&
1511        !RD->isCompleteDefinitionRequired() && CGM.getLangOpts().CPlusPlus) ||
1512       (CXXDecl && CXXDecl->hasDefinition() && CXXDecl->isDynamicClass())) {
1513     llvm::DIDescriptor FDContext =
1514       getContextDescriptor(cast<Decl>(RD->getDeclContext()));
1515     llvm::DIType RetTy = getOrCreateRecordFwdDecl(Ty, FDContext);
1516     // FIXME: This is conservatively correct. If we return a non-forward decl
1517     // that's not a full definition (such as those created by
1518     // createContextChain) then getOrCreateType will record is as a complete
1519     // type and we'll never record all its members. But this means we're
1520     // emitting full debug info in TUs where GCC successfully emits a partial
1521     // definition of the type.
1522     if (RetTy.isForwardDecl())
1523       return RetTy;
1524   }
1525 
1526   return CreateTypeDefinition(Ty);
1527 }
1528 
1529 llvm::DIType CGDebugInfo::CreateTypeDefinition(const RecordType *Ty) {
1530   RecordDecl *RD = Ty->getDecl();
1531 
1532   // Get overall information about the record type for the debug info.
1533   llvm::DIFile DefUnit = getOrCreateFile(RD->getLocation());
1534 
1535   // Records and classes and unions can all be recursive.  To handle them, we
1536   // first generate a debug descriptor for the struct as a forward declaration.
1537   // Then (if it is a definition) we go through and get debug info for all of
1538   // its members.  Finally, we create a descriptor for the complete type (which
1539   // may refer to the forward decl if the struct is recursive) and replace all
1540   // uses of the forward declaration with the final definition.
1541 
1542   llvm::DICompositeType FwdDecl(getOrCreateLimitedType(Ty, DefUnit));
1543   assert(FwdDecl.isCompositeType() &&
1544          "The debug type of a RecordType should be a llvm::DICompositeType");
1545 
1546   if (FwdDecl.isForwardDecl())
1547     return FwdDecl;
1548 
1549   if (const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD))
1550     CollectContainingType(CXXDecl, FwdDecl);
1551 
1552   // Push the struct on region stack.
1553   LexicalBlockStack.push_back(&*FwdDecl);
1554   RegionMap[Ty->getDecl()] = llvm::WeakVH(FwdDecl);
1555 
1556   // Add this to the completed-type cache while we're completing it recursively.
1557   CompletedTypeCache[QualType(Ty, 0).getAsOpaquePtr()] = FwdDecl;
1558 
1559   // Convert all the elements.
1560   SmallVector<llvm::Value *, 16> EltTys;
1561   // what about nested types?
1562 
1563   // Note: The split of CXXDecl information here is intentional, the
1564   // gdb tests will depend on a certain ordering at printout. The debug
1565   // information offsets are still correct if we merge them all together
1566   // though.
1567   const CXXRecordDecl *CXXDecl = dyn_cast<CXXRecordDecl>(RD);
1568   if (CXXDecl) {
1569     CollectCXXBases(CXXDecl, DefUnit, EltTys, FwdDecl);
1570     CollectVTableInfo(CXXDecl, DefUnit, EltTys);
1571   }
1572 
1573   // Collect data fields (including static variables and any initializers).
1574   CollectRecordFields(RD, DefUnit, EltTys, FwdDecl);
1575   if (CXXDecl) {
1576     CollectCXXMemberFunctions(CXXDecl, DefUnit, EltTys, FwdDecl);
1577     CollectCXXFriends(CXXDecl, DefUnit, EltTys, FwdDecl);
1578   }
1579 
1580   LexicalBlockStack.pop_back();
1581   RegionMap.erase(Ty->getDecl());
1582 
1583   llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys);
1584   FwdDecl.setTypeArray(Elements);
1585 
1586   RegionMap[Ty->getDecl()] = llvm::WeakVH(FwdDecl);
1587   return FwdDecl;
1588 }
1589 
1590 /// CreateType - get objective-c object type.
1591 llvm::DIType CGDebugInfo::CreateType(const ObjCObjectType *Ty,
1592                                      llvm::DIFile Unit) {
1593   // Ignore protocols.
1594   return getOrCreateType(Ty->getBaseType(), Unit);
1595 }
1596 
1597 
1598 /// \return true if Getter has the default name for the property PD.
1599 static bool hasDefaultGetterName(const ObjCPropertyDecl *PD,
1600                                  const ObjCMethodDecl *Getter) {
1601   assert(PD);
1602   if (!Getter)
1603     return true;
1604 
1605   assert(Getter->getDeclName().isObjCZeroArgSelector());
1606   return PD->getName() ==
1607     Getter->getDeclName().getObjCSelector().getNameForSlot(0);
1608 }
1609 
1610 /// \return true if Setter has the default name for the property PD.
1611 static bool hasDefaultSetterName(const ObjCPropertyDecl *PD,
1612                                  const ObjCMethodDecl *Setter) {
1613   assert(PD);
1614   if (!Setter)
1615     return true;
1616 
1617   assert(Setter->getDeclName().isObjCOneArgSelector());
1618   return SelectorTable::constructSetterName(PD->getName()) ==
1619     Setter->getDeclName().getObjCSelector().getNameForSlot(0);
1620 }
1621 
1622 /// CreateType - get objective-c interface type.
1623 llvm::DIType CGDebugInfo::CreateType(const ObjCInterfaceType *Ty,
1624                                      llvm::DIFile Unit) {
1625   ObjCInterfaceDecl *ID = Ty->getDecl();
1626   if (!ID)
1627     return llvm::DIType();
1628 
1629   // Get overall information about the record type for the debug info.
1630   llvm::DIFile DefUnit = getOrCreateFile(ID->getLocation());
1631   unsigned Line = getLineNumber(ID->getLocation());
1632   unsigned RuntimeLang = TheCU.getLanguage();
1633 
1634   // If this is just a forward declaration return a special forward-declaration
1635   // debug type since we won't be able to lay out the entire type.
1636   ObjCInterfaceDecl *Def = ID->getDefinition();
1637   if (!Def) {
1638     llvm::DIType FwdDecl =
1639       DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type,
1640                                  ID->getName(), TheCU, DefUnit, Line,
1641                                  RuntimeLang);
1642     return FwdDecl;
1643   }
1644 
1645   ID = Def;
1646 
1647   // Bit size, align and offset of the type.
1648   uint64_t Size = CGM.getContext().getTypeSize(Ty);
1649   uint64_t Align = CGM.getContext().getTypeAlign(Ty);
1650 
1651   unsigned Flags = 0;
1652   if (ID->getImplementation())
1653     Flags |= llvm::DIDescriptor::FlagObjcClassComplete;
1654 
1655   llvm::DICompositeType RealDecl =
1656     DBuilder.createStructType(Unit, ID->getName(), DefUnit,
1657                               Line, Size, Align, Flags,
1658                               llvm::DIType(), llvm::DIArray(), RuntimeLang);
1659 
1660   // Otherwise, insert it into the CompletedTypeCache so that recursive uses
1661   // will find it and we're emitting the complete type.
1662   QualType QualTy = QualType(Ty, 0);
1663   CompletedTypeCache[QualTy.getAsOpaquePtr()] = RealDecl;
1664 
1665   // Push the struct on region stack.
1666   LexicalBlockStack.push_back(static_cast<llvm::MDNode*>(RealDecl));
1667   RegionMap[Ty->getDecl()] = llvm::WeakVH(RealDecl);
1668 
1669   // Convert all the elements.
1670   SmallVector<llvm::Value *, 16> EltTys;
1671 
1672   ObjCInterfaceDecl *SClass = ID->getSuperClass();
1673   if (SClass) {
1674     llvm::DIType SClassTy =
1675       getOrCreateType(CGM.getContext().getObjCInterfaceType(SClass), Unit);
1676     if (!SClassTy.isValid())
1677       return llvm::DIType();
1678 
1679     llvm::DIType InhTag =
1680       DBuilder.createInheritance(RealDecl, SClassTy, 0, 0);
1681     EltTys.push_back(InhTag);
1682   }
1683 
1684   // Create entries for all of the properties.
1685   for (ObjCContainerDecl::prop_iterator I = ID->prop_begin(),
1686          E = ID->prop_end(); I != E; ++I) {
1687     const ObjCPropertyDecl *PD = *I;
1688     SourceLocation Loc = PD->getLocation();
1689     llvm::DIFile PUnit = getOrCreateFile(Loc);
1690     unsigned PLine = getLineNumber(Loc);
1691     ObjCMethodDecl *Getter = PD->getGetterMethodDecl();
1692     ObjCMethodDecl *Setter = PD->getSetterMethodDecl();
1693     llvm::MDNode *PropertyNode =
1694       DBuilder.createObjCProperty(PD->getName(),
1695                                   PUnit, PLine,
1696                                   hasDefaultGetterName(PD, Getter) ? "" :
1697                                   getSelectorName(PD->getGetterName()),
1698                                   hasDefaultSetterName(PD, Setter) ? "" :
1699                                   getSelectorName(PD->getSetterName()),
1700                                   PD->getPropertyAttributes(),
1701                                   getOrCreateType(PD->getType(), PUnit));
1702     EltTys.push_back(PropertyNode);
1703   }
1704 
1705   const ASTRecordLayout &RL = CGM.getContext().getASTObjCInterfaceLayout(ID);
1706   unsigned FieldNo = 0;
1707   for (ObjCIvarDecl *Field = ID->all_declared_ivar_begin(); Field;
1708        Field = Field->getNextIvar(), ++FieldNo) {
1709     llvm::DIType FieldTy = getOrCreateType(Field->getType(), Unit);
1710     if (!FieldTy.isValid())
1711       return llvm::DIType();
1712 
1713     StringRef FieldName = Field->getName();
1714 
1715     // Ignore unnamed fields.
1716     if (FieldName.empty())
1717       continue;
1718 
1719     // Get the location for the field.
1720     llvm::DIFile FieldDefUnit = getOrCreateFile(Field->getLocation());
1721     unsigned FieldLine = getLineNumber(Field->getLocation());
1722     QualType FType = Field->getType();
1723     uint64_t FieldSize = 0;
1724     unsigned FieldAlign = 0;
1725 
1726     if (!FType->isIncompleteArrayType()) {
1727 
1728       // Bit size, align and offset of the type.
1729       FieldSize = Field->isBitField()
1730                       ? Field->getBitWidthValue(CGM.getContext())
1731                       : CGM.getContext().getTypeSize(FType);
1732       FieldAlign = CGM.getContext().getTypeAlign(FType);
1733     }
1734 
1735     uint64_t FieldOffset;
1736     if (CGM.getLangOpts().ObjCRuntime.isNonFragile()) {
1737       // We don't know the runtime offset of an ivar if we're using the
1738       // non-fragile ABI.  For bitfields, use the bit offset into the first
1739       // byte of storage of the bitfield.  For other fields, use zero.
1740       if (Field->isBitField()) {
1741         FieldOffset = CGM.getObjCRuntime().ComputeBitfieldBitOffset(
1742             CGM, ID, Field);
1743         FieldOffset %= CGM.getContext().getCharWidth();
1744       } else {
1745         FieldOffset = 0;
1746       }
1747     } else {
1748       FieldOffset = RL.getFieldOffset(FieldNo);
1749     }
1750 
1751     unsigned Flags = 0;
1752     if (Field->getAccessControl() == ObjCIvarDecl::Protected)
1753       Flags = llvm::DIDescriptor::FlagProtected;
1754     else if (Field->getAccessControl() == ObjCIvarDecl::Private)
1755       Flags = llvm::DIDescriptor::FlagPrivate;
1756 
1757     llvm::MDNode *PropertyNode = NULL;
1758     if (ObjCImplementationDecl *ImpD = ID->getImplementation()) {
1759       if (ObjCPropertyImplDecl *PImpD =
1760           ImpD->FindPropertyImplIvarDecl(Field->getIdentifier())) {
1761         if (ObjCPropertyDecl *PD = PImpD->getPropertyDecl()) {
1762           SourceLocation Loc = PD->getLocation();
1763           llvm::DIFile PUnit = getOrCreateFile(Loc);
1764           unsigned PLine = getLineNumber(Loc);
1765           ObjCMethodDecl *Getter = PD->getGetterMethodDecl();
1766           ObjCMethodDecl *Setter = PD->getSetterMethodDecl();
1767           PropertyNode =
1768             DBuilder.createObjCProperty(PD->getName(),
1769                                         PUnit, PLine,
1770                                         hasDefaultGetterName(PD, Getter) ? "" :
1771                                         getSelectorName(PD->getGetterName()),
1772                                         hasDefaultSetterName(PD, Setter) ? "" :
1773                                         getSelectorName(PD->getSetterName()),
1774                                         PD->getPropertyAttributes(),
1775                                         getOrCreateType(PD->getType(), PUnit));
1776         }
1777       }
1778     }
1779     FieldTy = DBuilder.createObjCIVar(FieldName, FieldDefUnit,
1780                                       FieldLine, FieldSize, FieldAlign,
1781                                       FieldOffset, Flags, FieldTy,
1782                                       PropertyNode);
1783     EltTys.push_back(FieldTy);
1784   }
1785 
1786   llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys);
1787   RealDecl.setTypeArray(Elements);
1788 
1789   // If the implementation is not yet set, we do not want to mark it
1790   // as complete. An implementation may declare additional
1791   // private ivars that we would miss otherwise.
1792   if (ID->getImplementation() == 0)
1793     CompletedTypeCache.erase(QualTy.getAsOpaquePtr());
1794 
1795   LexicalBlockStack.pop_back();
1796   return RealDecl;
1797 }
1798 
1799 llvm::DIType CGDebugInfo::CreateType(const VectorType *Ty, llvm::DIFile Unit) {
1800   llvm::DIType ElementTy = getOrCreateType(Ty->getElementType(), Unit);
1801   int64_t Count = Ty->getNumElements();
1802   if (Count == 0)
1803     // If number of elements are not known then this is an unbounded array.
1804     // Use Count == -1 to express such arrays.
1805     Count = -1;
1806 
1807   llvm::Value *Subscript = DBuilder.getOrCreateSubrange(0, Count);
1808   llvm::DIArray SubscriptArray = DBuilder.getOrCreateArray(Subscript);
1809 
1810   uint64_t Size = CGM.getContext().getTypeSize(Ty);
1811   uint64_t Align = CGM.getContext().getTypeAlign(Ty);
1812 
1813   return DBuilder.createVectorType(Size, Align, ElementTy, SubscriptArray);
1814 }
1815 
1816 llvm::DIType CGDebugInfo::CreateType(const ArrayType *Ty,
1817                                      llvm::DIFile Unit) {
1818   uint64_t Size;
1819   uint64_t Align;
1820 
1821   // FIXME: make getTypeAlign() aware of VLAs and incomplete array types
1822   if (const VariableArrayType *VAT = dyn_cast<VariableArrayType>(Ty)) {
1823     Size = 0;
1824     Align =
1825       CGM.getContext().getTypeAlign(CGM.getContext().getBaseElementType(VAT));
1826   } else if (Ty->isIncompleteArrayType()) {
1827     Size = 0;
1828     if (Ty->getElementType()->isIncompleteType())
1829       Align = 0;
1830     else
1831       Align = CGM.getContext().getTypeAlign(Ty->getElementType());
1832   } else if (Ty->isIncompleteType()) {
1833     Size = 0;
1834     Align = 0;
1835   } else {
1836     // Size and align of the whole array, not the element type.
1837     Size = CGM.getContext().getTypeSize(Ty);
1838     Align = CGM.getContext().getTypeAlign(Ty);
1839   }
1840 
1841   // Add the dimensions of the array.  FIXME: This loses CV qualifiers from
1842   // interior arrays, do we care?  Why aren't nested arrays represented the
1843   // obvious/recursive way?
1844   SmallVector<llvm::Value *, 8> Subscripts;
1845   QualType EltTy(Ty, 0);
1846   while ((Ty = dyn_cast<ArrayType>(EltTy))) {
1847     // If the number of elements is known, then count is that number. Otherwise,
1848     // it's -1. This allows us to represent a subrange with an array of 0
1849     // elements, like this:
1850     //
1851     //   struct foo {
1852     //     int x[0];
1853     //   };
1854     int64_t Count = -1;         // Count == -1 is an unbounded array.
1855     if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(Ty))
1856       Count = CAT->getSize().getZExtValue();
1857 
1858     // FIXME: Verify this is right for VLAs.
1859     Subscripts.push_back(DBuilder.getOrCreateSubrange(0, Count));
1860     EltTy = Ty->getElementType();
1861   }
1862 
1863   llvm::DIArray SubscriptArray = DBuilder.getOrCreateArray(Subscripts);
1864 
1865   llvm::DIType DbgTy =
1866     DBuilder.createArrayType(Size, Align, getOrCreateType(EltTy, Unit),
1867                              SubscriptArray);
1868   return DbgTy;
1869 }
1870 
1871 llvm::DIType CGDebugInfo::CreateType(const LValueReferenceType *Ty,
1872                                      llvm::DIFile Unit) {
1873   return CreatePointerLikeType(llvm::dwarf::DW_TAG_reference_type,
1874                                Ty, Ty->getPointeeType(), Unit);
1875 }
1876 
1877 llvm::DIType CGDebugInfo::CreateType(const RValueReferenceType *Ty,
1878                                      llvm::DIFile Unit) {
1879   return CreatePointerLikeType(llvm::dwarf::DW_TAG_rvalue_reference_type,
1880                                Ty, Ty->getPointeeType(), Unit);
1881 }
1882 
1883 llvm::DIType CGDebugInfo::CreateType(const MemberPointerType *Ty,
1884                                      llvm::DIFile U) {
1885   llvm::DIType ClassType = getOrCreateType(QualType(Ty->getClass(), 0), U);
1886   if (!Ty->getPointeeType()->isFunctionType())
1887     return DBuilder.createMemberPointerType(
1888         getOrCreateType(Ty->getPointeeType(), U), ClassType);
1889   return DBuilder.createMemberPointerType(getOrCreateInstanceMethodType(
1890       CGM.getContext().getPointerType(
1891           QualType(Ty->getClass(), Ty->getPointeeType().getCVRQualifiers())),
1892       Ty->getPointeeType()->getAs<FunctionProtoType>(), U),
1893                                           ClassType);
1894 }
1895 
1896 llvm::DIType CGDebugInfo::CreateType(const AtomicType *Ty,
1897                                      llvm::DIFile U) {
1898   // Ignore the atomic wrapping
1899   // FIXME: What is the correct representation?
1900   return getOrCreateType(Ty->getValueType(), U);
1901 }
1902 
1903 /// CreateEnumType - get enumeration type.
1904 llvm::DIType CGDebugInfo::CreateEnumType(const EnumType *Ty) {
1905   const EnumDecl *ED = Ty->getDecl();
1906   uint64_t Size = 0;
1907   uint64_t Align = 0;
1908   if (!ED->getTypeForDecl()->isIncompleteType()) {
1909     Size = CGM.getContext().getTypeSize(ED->getTypeForDecl());
1910     Align = CGM.getContext().getTypeAlign(ED->getTypeForDecl());
1911   }
1912 
1913   SmallString<256> FullName = getUniqueTagTypeName(Ty, CGM, TheCU);
1914 
1915   // If this is just a forward declaration, construct an appropriately
1916   // marked node and just return it.
1917   if (!ED->getDefinition()) {
1918     llvm::DIDescriptor EDContext;
1919     EDContext = getContextDescriptor(cast<Decl>(ED->getDeclContext()));
1920     llvm::DIFile DefUnit = getOrCreateFile(ED->getLocation());
1921     unsigned Line = getLineNumber(ED->getLocation());
1922     StringRef EDName = ED->getName();
1923     return DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_enumeration_type,
1924                                       EDName, EDContext, DefUnit, Line, 0,
1925                                       Size, Align, FullName);
1926   }
1927 
1928   // Create DIEnumerator elements for each enumerator.
1929   SmallVector<llvm::Value *, 16> Enumerators;
1930   ED = ED->getDefinition();
1931   for (EnumDecl::enumerator_iterator
1932          Enum = ED->enumerator_begin(), EnumEnd = ED->enumerator_end();
1933        Enum != EnumEnd; ++Enum) {
1934     Enumerators.push_back(
1935       DBuilder.createEnumerator(Enum->getName(),
1936                                 Enum->getInitVal().getSExtValue()));
1937   }
1938 
1939   // Return a CompositeType for the enum itself.
1940   llvm::DIArray EltArray = DBuilder.getOrCreateArray(Enumerators);
1941 
1942   llvm::DIFile DefUnit = getOrCreateFile(ED->getLocation());
1943   unsigned Line = getLineNumber(ED->getLocation());
1944   llvm::DIDescriptor EnumContext =
1945     getContextDescriptor(cast<Decl>(ED->getDeclContext()));
1946   llvm::DIType ClassTy = ED->isFixed() ?
1947     getOrCreateType(ED->getIntegerType(), DefUnit) : llvm::DIType();
1948   llvm::DIType DbgTy =
1949     DBuilder.createEnumerationType(EnumContext, ED->getName(), DefUnit, Line,
1950                                    Size, Align, EltArray,
1951                                    ClassTy, FullName);
1952   return DbgTy;
1953 }
1954 
1955 static QualType UnwrapTypeForDebugInfo(QualType T, const ASTContext &C) {
1956   Qualifiers Quals;
1957   do {
1958     Quals += T.getLocalQualifiers();
1959     QualType LastT = T;
1960     switch (T->getTypeClass()) {
1961     default:
1962       return C.getQualifiedType(T.getTypePtr(), Quals);
1963     case Type::TemplateSpecialization:
1964       T = cast<TemplateSpecializationType>(T)->desugar();
1965       break;
1966     case Type::TypeOfExpr:
1967       T = cast<TypeOfExprType>(T)->getUnderlyingExpr()->getType();
1968       break;
1969     case Type::TypeOf:
1970       T = cast<TypeOfType>(T)->getUnderlyingType();
1971       break;
1972     case Type::Decltype:
1973       T = cast<DecltypeType>(T)->getUnderlyingType();
1974       break;
1975     case Type::UnaryTransform:
1976       T = cast<UnaryTransformType>(T)->getUnderlyingType();
1977       break;
1978     case Type::Attributed:
1979       T = cast<AttributedType>(T)->getEquivalentType();
1980       break;
1981     case Type::Elaborated:
1982       T = cast<ElaboratedType>(T)->getNamedType();
1983       break;
1984     case Type::Paren:
1985       T = cast<ParenType>(T)->getInnerType();
1986       break;
1987     case Type::SubstTemplateTypeParm:
1988       T = cast<SubstTemplateTypeParmType>(T)->getReplacementType();
1989       break;
1990     case Type::Auto:
1991       QualType DT = cast<AutoType>(T)->getDeducedType();
1992       if (DT.isNull())
1993         return T;
1994       T = DT;
1995       break;
1996     }
1997 
1998     assert(T != LastT && "Type unwrapping failed to unwrap!");
1999     (void)LastT;
2000   } while (true);
2001 }
2002 
2003 /// getType - Get the type from the cache or return null type if it doesn't
2004 /// exist.
2005 llvm::DIType CGDebugInfo::getTypeOrNull(QualType Ty) {
2006 
2007   // Unwrap the type as needed for debug information.
2008   Ty = UnwrapTypeForDebugInfo(Ty, CGM.getContext());
2009 
2010   // Check for existing entry.
2011   if (Ty->getTypeClass() == Type::ObjCInterface) {
2012     llvm::Value *V = getCachedInterfaceTypeOrNull(Ty);
2013     if (V)
2014       return llvm::DIType(cast<llvm::MDNode>(V));
2015     else return llvm::DIType();
2016   }
2017 
2018   llvm::DenseMap<void *, llvm::WeakVH>::iterator it =
2019     TypeCache.find(Ty.getAsOpaquePtr());
2020   if (it != TypeCache.end()) {
2021     // Verify that the debug info still exists.
2022     if (llvm::Value *V = it->second)
2023       return llvm::DIType(cast<llvm::MDNode>(V));
2024   }
2025 
2026   return llvm::DIType();
2027 }
2028 
2029 /// getCompletedTypeOrNull - Get the type from the cache or return null if it
2030 /// doesn't exist.
2031 llvm::DIType CGDebugInfo::getCompletedTypeOrNull(QualType Ty) {
2032 
2033   // Unwrap the type as needed for debug information.
2034   Ty = UnwrapTypeForDebugInfo(Ty, CGM.getContext());
2035 
2036   // Check for existing entry.
2037   llvm::Value *V = 0;
2038   llvm::DenseMap<void *, llvm::WeakVH>::iterator it =
2039     CompletedTypeCache.find(Ty.getAsOpaquePtr());
2040   if (it != CompletedTypeCache.end())
2041     V = it->second;
2042   else {
2043     V = getCachedInterfaceTypeOrNull(Ty);
2044   }
2045 
2046   // Verify that any cached debug info still exists.
2047   return llvm::DIType(cast_or_null<llvm::MDNode>(V));
2048 }
2049 
2050 /// getCachedInterfaceTypeOrNull - Get the type from the interface
2051 /// cache, unless it needs to regenerated. Otherwise return null.
2052 llvm::Value *CGDebugInfo::getCachedInterfaceTypeOrNull(QualType Ty) {
2053   // Is there a cached interface that hasn't changed?
2054   llvm::DenseMap<void *, std::pair<llvm::WeakVH, unsigned > >
2055     ::iterator it1 = ObjCInterfaceCache.find(Ty.getAsOpaquePtr());
2056 
2057   if (it1 != ObjCInterfaceCache.end())
2058     if (ObjCInterfaceDecl* Decl = getObjCInterfaceDecl(Ty))
2059       if (Checksum(Decl) == it1->second.second)
2060         // Return cached forward declaration.
2061         return it1->second.first;
2062 
2063   return 0;
2064 }
2065 
2066 /// getOrCreateType - Get the type from the cache or create a new
2067 /// one if necessary.
2068 llvm::DIType CGDebugInfo::getOrCreateType(QualType Ty, llvm::DIFile Unit) {
2069   if (Ty.isNull())
2070     return llvm::DIType();
2071 
2072   // Unwrap the type as needed for debug information.
2073   Ty = UnwrapTypeForDebugInfo(Ty, CGM.getContext());
2074 
2075   if (llvm::DIType T = getCompletedTypeOrNull(Ty))
2076     return T;
2077 
2078   // Otherwise create the type.
2079   llvm::DIType Res = CreateTypeNode(Ty, Unit);
2080   void* TyPtr = Ty.getAsOpaquePtr();
2081 
2082   // And update the type cache.
2083   TypeCache[TyPtr] = Res;
2084 
2085   // FIXME: this getTypeOrNull call seems silly when we just inserted the type
2086   // into the cache - but getTypeOrNull has a special case for cached interface
2087   // types. We should probably just pull that out as a special case for the
2088   // "else" block below & skip the otherwise needless lookup.
2089   llvm::DIType TC = getTypeOrNull(Ty);
2090   if (TC && TC.isForwardDecl())
2091     ReplaceMap.push_back(std::make_pair(TyPtr, static_cast<llvm::Value*>(TC)));
2092   else if (ObjCInterfaceDecl* Decl = getObjCInterfaceDecl(Ty)) {
2093     // Interface types may have elements added to them by a
2094     // subsequent implementation or extension, so we keep them in
2095     // the ObjCInterfaceCache together with a checksum. Instead of
2096     // the (possibly) incomplete interface type, we return a forward
2097     // declaration that gets RAUW'd in CGDebugInfo::finalize().
2098     std::pair<llvm::WeakVH, unsigned> &V = ObjCInterfaceCache[TyPtr];
2099     if (V.first)
2100       return llvm::DIType(cast<llvm::MDNode>(V.first));
2101     TC = DBuilder.createForwardDecl(llvm::dwarf::DW_TAG_structure_type,
2102                                     Decl->getName(), TheCU, Unit,
2103                                     getLineNumber(Decl->getLocation()),
2104                                     TheCU.getLanguage());
2105     // Store the forward declaration in the cache.
2106     V.first = TC;
2107     V.second = Checksum(Decl);
2108 
2109     // Register the type for replacement in finalize().
2110     ReplaceMap.push_back(std::make_pair(TyPtr, static_cast<llvm::Value*>(TC)));
2111 
2112     return TC;
2113   }
2114 
2115   if (!Res.isForwardDecl())
2116     CompletedTypeCache[TyPtr] = Res;
2117 
2118   return Res;
2119 }
2120 
2121 /// Currently the checksum of an interface includes the number of
2122 /// ivars and property accessors.
2123 unsigned CGDebugInfo::Checksum(const ObjCInterfaceDecl *ID) {
2124   // The assumption is that the number of ivars can only increase
2125   // monotonically, so it is safe to just use their current number as
2126   // a checksum.
2127   unsigned Sum = 0;
2128   for (const ObjCIvarDecl *Ivar = ID->all_declared_ivar_begin();
2129        Ivar != 0; Ivar = Ivar->getNextIvar())
2130     ++Sum;
2131 
2132   return Sum;
2133 }
2134 
2135 ObjCInterfaceDecl *CGDebugInfo::getObjCInterfaceDecl(QualType Ty) {
2136   switch (Ty->getTypeClass()) {
2137   case Type::ObjCObjectPointer:
2138     return getObjCInterfaceDecl(cast<ObjCObjectPointerType>(Ty)
2139                                     ->getPointeeType());
2140   case Type::ObjCInterface:
2141     return cast<ObjCInterfaceType>(Ty)->getDecl();
2142   default:
2143     return 0;
2144   }
2145 }
2146 
2147 /// CreateTypeNode - Create a new debug type node.
2148 llvm::DIType CGDebugInfo::CreateTypeNode(QualType Ty, llvm::DIFile Unit) {
2149   // Handle qualifiers, which recursively handles what they refer to.
2150   if (Ty.hasLocalQualifiers())
2151     return CreateQualifiedType(Ty, Unit);
2152 
2153   const char *Diag = 0;
2154 
2155   // Work out details of type.
2156   switch (Ty->getTypeClass()) {
2157 #define TYPE(Class, Base)
2158 #define ABSTRACT_TYPE(Class, Base)
2159 #define NON_CANONICAL_TYPE(Class, Base)
2160 #define DEPENDENT_TYPE(Class, Base) case Type::Class:
2161 #include "clang/AST/TypeNodes.def"
2162     llvm_unreachable("Dependent types cannot show up in debug information");
2163 
2164   case Type::ExtVector:
2165   case Type::Vector:
2166     return CreateType(cast<VectorType>(Ty), Unit);
2167   case Type::ObjCObjectPointer:
2168     return CreateType(cast<ObjCObjectPointerType>(Ty), Unit);
2169   case Type::ObjCObject:
2170     return CreateType(cast<ObjCObjectType>(Ty), Unit);
2171   case Type::ObjCInterface:
2172     return CreateType(cast<ObjCInterfaceType>(Ty), Unit);
2173   case Type::Builtin:
2174     return CreateType(cast<BuiltinType>(Ty));
2175   case Type::Complex:
2176     return CreateType(cast<ComplexType>(Ty));
2177   case Type::Pointer:
2178     return CreateType(cast<PointerType>(Ty), Unit);
2179   case Type::Decayed:
2180     // Decayed types are just pointers in LLVM and DWARF.
2181     return CreateType(
2182         cast<PointerType>(cast<DecayedType>(Ty)->getDecayedType()), Unit);
2183   case Type::BlockPointer:
2184     return CreateType(cast<BlockPointerType>(Ty), Unit);
2185   case Type::Typedef:
2186     return CreateType(cast<TypedefType>(Ty), Unit);
2187   case Type::Record:
2188     return CreateType(cast<RecordType>(Ty));
2189   case Type::Enum:
2190     return CreateEnumType(cast<EnumType>(Ty));
2191   case Type::FunctionProto:
2192   case Type::FunctionNoProto:
2193     return CreateType(cast<FunctionType>(Ty), Unit);
2194   case Type::ConstantArray:
2195   case Type::VariableArray:
2196   case Type::IncompleteArray:
2197     return CreateType(cast<ArrayType>(Ty), Unit);
2198 
2199   case Type::LValueReference:
2200     return CreateType(cast<LValueReferenceType>(Ty), Unit);
2201   case Type::RValueReference:
2202     return CreateType(cast<RValueReferenceType>(Ty), Unit);
2203 
2204   case Type::MemberPointer:
2205     return CreateType(cast<MemberPointerType>(Ty), Unit);
2206 
2207   case Type::Atomic:
2208     return CreateType(cast<AtomicType>(Ty), Unit);
2209 
2210   case Type::Attributed:
2211   case Type::TemplateSpecialization:
2212   case Type::Elaborated:
2213   case Type::Paren:
2214   case Type::SubstTemplateTypeParm:
2215   case Type::TypeOfExpr:
2216   case Type::TypeOf:
2217   case Type::Decltype:
2218   case Type::UnaryTransform:
2219   case Type::PackExpansion:
2220     llvm_unreachable("type should have been unwrapped!");
2221   case Type::Auto:
2222     Diag = "auto";
2223     break;
2224   }
2225 
2226   assert(Diag && "Fall through without a diagnostic?");
2227   unsigned DiagID = CGM.getDiags().getCustomDiagID(DiagnosticsEngine::Error,
2228                                "debug information for %0 is not yet supported");
2229   CGM.getDiags().Report(DiagID)
2230     << Diag;
2231   return llvm::DIType();
2232 }
2233 
2234 /// getOrCreateLimitedType - Get the type from the cache or create a new
2235 /// limited type if necessary.
2236 llvm::DIType CGDebugInfo::getOrCreateLimitedType(const RecordType *Ty,
2237                                                  llvm::DIFile Unit) {
2238   QualType QTy(Ty, 0);
2239 
2240   llvm::DICompositeType T(getTypeOrNull(QTy));
2241 
2242   // We may have cached a forward decl when we could have created
2243   // a non-forward decl. Go ahead and create a non-forward decl
2244   // now.
2245   if (T && !T.isForwardDecl()) return T;
2246 
2247   // Otherwise create the type.
2248   llvm::DICompositeType Res = CreateLimitedType(Ty);
2249 
2250   // Propagate members from the declaration to the definition
2251   // CreateType(const RecordType*) will overwrite this with the members in the
2252   // correct order if the full type is needed.
2253   Res.setTypeArray(T.getTypeArray());
2254 
2255   if (T && T.isForwardDecl())
2256     ReplaceMap.push_back(
2257         std::make_pair(QTy.getAsOpaquePtr(), static_cast<llvm::Value *>(T)));
2258 
2259   // And update the type cache.
2260   TypeCache[QTy.getAsOpaquePtr()] = Res;
2261   return Res;
2262 }
2263 
2264 // TODO: Currently used for context chains when limiting debug info.
2265 llvm::DICompositeType CGDebugInfo::CreateLimitedType(const RecordType *Ty) {
2266   RecordDecl *RD = Ty->getDecl();
2267 
2268   // Get overall information about the record type for the debug info.
2269   llvm::DIFile DefUnit = getOrCreateFile(RD->getLocation());
2270   unsigned Line = getLineNumber(RD->getLocation());
2271   StringRef RDName = getClassName(RD);
2272 
2273   llvm::DIDescriptor RDContext;
2274   if (DebugKind == CodeGenOptions::LimitedDebugInfo)
2275     RDContext = createContextChain(cast<Decl>(RD->getDeclContext()));
2276   else
2277     RDContext = getContextDescriptor(cast<Decl>(RD->getDeclContext()));
2278 
2279   // If we ended up creating the type during the context chain construction,
2280   // just return that.
2281   // FIXME: this could be dealt with better if the type was recorded as
2282   // completed before we started this (see the CompletedTypeCache usage in
2283   // CGDebugInfo::CreateTypeDefinition(const RecordType*) - that would need to
2284   // be pushed to before context creation, but after it was known to be
2285   // destined for completion (might still have an issue if this caller only
2286   // required a declaration but the context construction ended up creating a
2287   // definition)
2288   llvm::DICompositeType T(getTypeOrNull(CGM.getContext().getRecordType(RD)));
2289   if (T && (!T.isForwardDecl() || !RD->getDefinition()))
2290       return T;
2291 
2292   // If this is just a forward declaration, construct an appropriately
2293   // marked node and just return it.
2294   if (!RD->getDefinition())
2295     return getOrCreateRecordFwdDecl(Ty, RDContext);
2296 
2297   uint64_t Size = CGM.getContext().getTypeSize(Ty);
2298   uint64_t Align = CGM.getContext().getTypeAlign(Ty);
2299   llvm::DICompositeType RealDecl;
2300 
2301   SmallString<256> FullName = getUniqueTagTypeName(Ty, CGM, TheCU);
2302 
2303   if (RD->isUnion())
2304     RealDecl = DBuilder.createUnionType(RDContext, RDName, DefUnit, Line,
2305                                         Size, Align, 0, llvm::DIArray(), 0,
2306                                         FullName);
2307   else if (RD->isClass()) {
2308     // FIXME: This could be a struct type giving a default visibility different
2309     // than C++ class type, but needs llvm metadata changes first.
2310     RealDecl = DBuilder.createClassType(RDContext, RDName, DefUnit, Line,
2311                                         Size, Align, 0, 0, llvm::DIType(),
2312                                         llvm::DIArray(), llvm::DIType(),
2313                                         llvm::DIArray(), FullName);
2314   } else
2315     RealDecl = DBuilder.createStructType(RDContext, RDName, DefUnit, Line,
2316                                          Size, Align, 0, llvm::DIType(),
2317                                          llvm::DIArray(), 0, 0, FullName);
2318 
2319   RegionMap[Ty->getDecl()] = llvm::WeakVH(RealDecl);
2320   TypeCache[QualType(Ty, 0).getAsOpaquePtr()] = RealDecl;
2321 
2322   if (const ClassTemplateSpecializationDecl *TSpecial =
2323           dyn_cast<ClassTemplateSpecializationDecl>(RD))
2324     RealDecl.setTypeArray(llvm::DIArray(),
2325                           CollectCXXTemplateParams(TSpecial, DefUnit));
2326   return RealDecl;
2327 }
2328 
2329 void CGDebugInfo::CollectContainingType(const CXXRecordDecl *RD,
2330                                         llvm::DICompositeType RealDecl) {
2331   // A class's primary base or the class itself contains the vtable.
2332   llvm::DICompositeType ContainingType;
2333   const ASTRecordLayout &RL = CGM.getContext().getASTRecordLayout(RD);
2334   if (const CXXRecordDecl *PBase = RL.getPrimaryBase()) {
2335     // Seek non virtual primary base root.
2336     while (1) {
2337       const ASTRecordLayout &BRL = CGM.getContext().getASTRecordLayout(PBase);
2338       const CXXRecordDecl *PBT = BRL.getPrimaryBase();
2339       if (PBT && !BRL.isPrimaryBaseVirtual())
2340         PBase = PBT;
2341       else
2342         break;
2343     }
2344     ContainingType = llvm::DICompositeType(
2345         getOrCreateType(QualType(PBase->getTypeForDecl(), 0),
2346                         getOrCreateFile(RD->getLocation())));
2347   } else if (RD->isDynamicClass())
2348     ContainingType = RealDecl;
2349 
2350   RealDecl.setContainingType(ContainingType);
2351 }
2352 
2353 /// CreateMemberType - Create new member and increase Offset by FType's size.
2354 llvm::DIType CGDebugInfo::CreateMemberType(llvm::DIFile Unit, QualType FType,
2355                                            StringRef Name,
2356                                            uint64_t *Offset) {
2357   llvm::DIType FieldTy = CGDebugInfo::getOrCreateType(FType, Unit);
2358   uint64_t FieldSize = CGM.getContext().getTypeSize(FType);
2359   unsigned FieldAlign = CGM.getContext().getTypeAlign(FType);
2360   llvm::DIType Ty = DBuilder.createMemberType(Unit, Name, Unit, 0,
2361                                               FieldSize, FieldAlign,
2362                                               *Offset, 0, FieldTy);
2363   *Offset += FieldSize;
2364   return Ty;
2365 }
2366 
2367 llvm::DIDescriptor CGDebugInfo::getDeclarationOrDefinition(const Decl *D) {
2368   // We only need a declaration (not a definition) of the type - so use whatever
2369   // we would otherwise do to get a type for a pointee. (forward declarations in
2370   // limited debug info, full definitions (if the type definition is available)
2371   // in unlimited debug info)
2372   if (const TypeDecl *TD = dyn_cast<TypeDecl>(D))
2373     return getOrCreateType(CGM.getContext().getTypeDeclType(TD),
2374                            getOrCreateFile(TD->getLocation()));
2375   // Otherwise fall back to a fairly rudimentary cache of existing declarations.
2376   // This doesn't handle providing declarations (for functions or variables) for
2377   // entities without definitions in this TU, nor when the definition proceeds
2378   // the call to this function.
2379   // FIXME: This should be split out into more specific maps with support for
2380   // emitting forward declarations and merging definitions with declarations,
2381   // the same way as we do for types.
2382   llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator I =
2383       DeclCache.find(D->getCanonicalDecl());
2384   if (I == DeclCache.end())
2385     return llvm::DIDescriptor();
2386   llvm::Value *V = I->second;
2387   return llvm::DIDescriptor(dyn_cast_or_null<llvm::MDNode>(V));
2388 }
2389 
2390 /// getFunctionDeclaration - Return debug info descriptor to describe method
2391 /// declaration for the given method definition.
2392 llvm::DISubprogram CGDebugInfo::getFunctionDeclaration(const Decl *D) {
2393   if (!D || DebugKind == CodeGenOptions::DebugLineTablesOnly)
2394     return llvm::DISubprogram();
2395 
2396   const FunctionDecl *FD = dyn_cast<FunctionDecl>(D);
2397   if (!FD) return llvm::DISubprogram();
2398 
2399   // Setup context.
2400   llvm::DIScope S = getContextDescriptor(cast<Decl>(D->getDeclContext()));
2401 
2402   llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator
2403     MI = SPCache.find(FD->getCanonicalDecl());
2404   if (MI == SPCache.end()) {
2405     if (const CXXMethodDecl *MD =
2406             dyn_cast<CXXMethodDecl>(FD->getCanonicalDecl())) {
2407       llvm::DICompositeType T(S);
2408       llvm::DISubprogram SP =
2409           CreateCXXMemberFunction(MD, getOrCreateFile(MD->getLocation()), T);
2410       T.addMember(SP);
2411       return SP;
2412     }
2413   }
2414   if (MI != SPCache.end()) {
2415     llvm::Value *V = MI->second;
2416     llvm::DISubprogram SP(dyn_cast_or_null<llvm::MDNode>(V));
2417     if (SP.isSubprogram() && !SP.isDefinition())
2418       return SP;
2419   }
2420 
2421   for (FunctionDecl::redecl_iterator I = FD->redecls_begin(),
2422          E = FD->redecls_end(); I != E; ++I) {
2423     const FunctionDecl *NextFD = *I;
2424     llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator
2425       MI = SPCache.find(NextFD->getCanonicalDecl());
2426     if (MI != SPCache.end()) {
2427       llvm::Value *V = MI->second;
2428       llvm::DISubprogram SP(dyn_cast_or_null<llvm::MDNode>(V));
2429       if (SP.isSubprogram() && !SP.isDefinition())
2430         return SP;
2431     }
2432   }
2433   return llvm::DISubprogram();
2434 }
2435 
2436 // getOrCreateFunctionType - Construct DIType. If it is a c++ method, include
2437 // implicit parameter "this".
2438 llvm::DICompositeType CGDebugInfo::getOrCreateFunctionType(const Decl *D,
2439                                                            QualType FnType,
2440                                                            llvm::DIFile F) {
2441   if (!D || DebugKind == CodeGenOptions::DebugLineTablesOnly)
2442     // Create fake but valid subroutine type. Otherwise
2443     // llvm::DISubprogram::Verify() would return false, and
2444     // subprogram DIE will miss DW_AT_decl_file and
2445     // DW_AT_decl_line fields.
2446     return DBuilder.createSubroutineType(F, DBuilder.getOrCreateArray(None));
2447 
2448   if (const CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(D))
2449     return getOrCreateMethodType(Method, F);
2450   if (const ObjCMethodDecl *OMethod = dyn_cast<ObjCMethodDecl>(D)) {
2451     // Add "self" and "_cmd"
2452     SmallVector<llvm::Value *, 16> Elts;
2453 
2454     // First element is always return type. For 'void' functions it is NULL.
2455     QualType ResultTy = OMethod->getResultType();
2456 
2457     // Replace the instancetype keyword with the actual type.
2458     if (ResultTy == CGM.getContext().getObjCInstanceType())
2459       ResultTy = CGM.getContext().getPointerType(
2460         QualType(OMethod->getClassInterface()->getTypeForDecl(), 0));
2461 
2462     Elts.push_back(getOrCreateType(ResultTy, F));
2463     // "self" pointer is always first argument.
2464     QualType SelfDeclTy = OMethod->getSelfDecl()->getType();
2465     llvm::DIType SelfTy = getOrCreateType(SelfDeclTy, F);
2466     Elts.push_back(CreateSelfType(SelfDeclTy, SelfTy));
2467     // "_cmd" pointer is always second argument.
2468     llvm::DIType CmdTy = getOrCreateType(OMethod->getCmdDecl()->getType(), F);
2469     Elts.push_back(DBuilder.createArtificialType(CmdTy));
2470     // Get rest of the arguments.
2471     for (ObjCMethodDecl::param_const_iterator PI = OMethod->param_begin(),
2472            PE = OMethod->param_end(); PI != PE; ++PI)
2473       Elts.push_back(getOrCreateType((*PI)->getType(), F));
2474 
2475     llvm::DIArray EltTypeArray = DBuilder.getOrCreateArray(Elts);
2476     return DBuilder.createSubroutineType(F, EltTypeArray);
2477   }
2478   return llvm::DICompositeType(getOrCreateType(FnType, F));
2479 }
2480 
2481 /// EmitFunctionStart - Constructs the debug code for entering a function.
2482 void CGDebugInfo::EmitFunctionStart(GlobalDecl GD, QualType FnType,
2483                                     llvm::Function *Fn,
2484                                     CGBuilderTy &Builder) {
2485 
2486   StringRef Name;
2487   StringRef LinkageName;
2488 
2489   FnBeginRegionCount.push_back(LexicalBlockStack.size());
2490 
2491   const Decl *D = GD.getDecl();
2492   // Function may lack declaration in source code if it is created by Clang
2493   // CodeGen (examples: _GLOBAL__I_a, __cxx_global_array_dtor, thunk).
2494   bool HasDecl = (D != 0);
2495   // Use the location of the declaration.
2496   SourceLocation Loc;
2497   if (HasDecl)
2498     Loc = D->getLocation();
2499 
2500   unsigned Flags = 0;
2501   llvm::DIFile Unit = getOrCreateFile(Loc);
2502   llvm::DIDescriptor FDContext(Unit);
2503   llvm::DIArray TParamsArray;
2504   if (!HasDecl) {
2505     // Use llvm function name.
2506     LinkageName = Fn->getName();
2507   } else if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
2508     // If there is a DISubprogram for this function available then use it.
2509     llvm::DenseMap<const FunctionDecl *, llvm::WeakVH>::iterator
2510       FI = SPCache.find(FD->getCanonicalDecl());
2511     if (FI != SPCache.end()) {
2512       llvm::Value *V = FI->second;
2513       llvm::DIDescriptor SP(dyn_cast_or_null<llvm::MDNode>(V));
2514       if (SP.isSubprogram() && llvm::DISubprogram(SP).isDefinition()) {
2515         llvm::MDNode *SPN = SP;
2516         LexicalBlockStack.push_back(SPN);
2517         RegionMap[D] = llvm::WeakVH(SP);
2518         return;
2519       }
2520     }
2521     Name = getFunctionName(FD);
2522     // Use mangled name as linkage name for C/C++ functions.
2523     if (FD->hasPrototype()) {
2524       LinkageName = CGM.getMangledName(GD);
2525       Flags |= llvm::DIDescriptor::FlagPrototyped;
2526     }
2527     // No need to replicate the linkage name if it isn't different from the
2528     // subprogram name, no need to have it at all unless coverage is enabled or
2529     // debug is set to more than just line tables.
2530     if (LinkageName == Name ||
2531         (!CGM.getCodeGenOpts().EmitGcovArcs &&
2532          !CGM.getCodeGenOpts().EmitGcovNotes &&
2533          DebugKind <= CodeGenOptions::DebugLineTablesOnly))
2534       LinkageName = StringRef();
2535 
2536     if (DebugKind >= CodeGenOptions::LimitedDebugInfo) {
2537       if (const NamespaceDecl *NSDecl =
2538           dyn_cast_or_null<NamespaceDecl>(FD->getDeclContext()))
2539         FDContext = getOrCreateNameSpace(NSDecl);
2540       else if (const RecordDecl *RDecl =
2541                dyn_cast_or_null<RecordDecl>(FD->getDeclContext()))
2542         FDContext = getContextDescriptor(cast<Decl>(RDecl->getDeclContext()));
2543 
2544       // Collect template parameters.
2545       TParamsArray = CollectFunctionTemplateParams(FD, Unit);
2546     }
2547   } else if (const ObjCMethodDecl *OMD = dyn_cast<ObjCMethodDecl>(D)) {
2548     Name = getObjCMethodName(OMD);
2549     Flags |= llvm::DIDescriptor::FlagPrototyped;
2550   } else {
2551     // Use llvm function name.
2552     Name = Fn->getName();
2553     Flags |= llvm::DIDescriptor::FlagPrototyped;
2554   }
2555   if (!Name.empty() && Name[0] == '\01')
2556     Name = Name.substr(1);
2557 
2558   unsigned LineNo = getLineNumber(Loc);
2559   if (!HasDecl || D->isImplicit())
2560     Flags |= llvm::DIDescriptor::FlagArtificial;
2561 
2562   llvm::DISubprogram SP = DBuilder.createFunction(
2563       FDContext, Name, LinkageName, Unit, LineNo,
2564       getOrCreateFunctionType(D, FnType, Unit), Fn->hasInternalLinkage(),
2565       true /*definition*/, getLineNumber(CurLoc), Flags,
2566       CGM.getLangOpts().Optimize, Fn, TParamsArray, getFunctionDeclaration(D));
2567   if (HasDecl)
2568     DeclCache.insert(std::make_pair(D->getCanonicalDecl(), llvm::WeakVH(SP)));
2569 
2570   // Push function on region stack.
2571   llvm::MDNode *SPN = SP;
2572   LexicalBlockStack.push_back(SPN);
2573   if (HasDecl)
2574     RegionMap[D] = llvm::WeakVH(SP);
2575 }
2576 
2577 /// EmitLocation - Emit metadata to indicate a change in line/column
2578 /// information in the source file. If the location is invalid, the
2579 /// previous location will be reused.
2580 void CGDebugInfo::EmitLocation(CGBuilderTy &Builder, SourceLocation Loc,
2581                                bool ForceColumnInfo) {
2582   // Update our current location
2583   setLocation(Loc);
2584 
2585   if (CurLoc.isInvalid() || CurLoc.isMacroID()) return;
2586 
2587   // Don't bother if things are the same as last time.
2588   SourceManager &SM = CGM.getContext().getSourceManager();
2589   if (CurLoc == PrevLoc ||
2590       SM.getExpansionLoc(CurLoc) == SM.getExpansionLoc(PrevLoc))
2591     // New Builder may not be in sync with CGDebugInfo.
2592     if (!Builder.getCurrentDebugLocation().isUnknown() &&
2593         Builder.getCurrentDebugLocation().getScope(CGM.getLLVMContext()) ==
2594           LexicalBlockStack.back())
2595       return;
2596 
2597   // Update last state.
2598   PrevLoc = CurLoc;
2599 
2600   llvm::MDNode *Scope = LexicalBlockStack.back();
2601   Builder.SetCurrentDebugLocation(llvm::DebugLoc::get
2602                                   (getLineNumber(CurLoc),
2603                                    getColumnNumber(CurLoc, ForceColumnInfo),
2604                                    Scope));
2605 }
2606 
2607 /// CreateLexicalBlock - Creates a new lexical block node and pushes it on
2608 /// the stack.
2609 void CGDebugInfo::CreateLexicalBlock(SourceLocation Loc) {
2610   llvm::DIDescriptor D =
2611     DBuilder.createLexicalBlock(LexicalBlockStack.empty() ?
2612                                 llvm::DIDescriptor() :
2613                                 llvm::DIDescriptor(LexicalBlockStack.back()),
2614                                 getOrCreateFile(CurLoc),
2615                                 getLineNumber(CurLoc),
2616                                 getColumnNumber(CurLoc));
2617   llvm::MDNode *DN = D;
2618   LexicalBlockStack.push_back(DN);
2619 }
2620 
2621 /// EmitLexicalBlockStart - Constructs the debug code for entering a declarative
2622 /// region - beginning of a DW_TAG_lexical_block.
2623 void CGDebugInfo::EmitLexicalBlockStart(CGBuilderTy &Builder,
2624                                         SourceLocation Loc) {
2625   // Set our current location.
2626   setLocation(Loc);
2627 
2628   // Create a new lexical block and push it on the stack.
2629   CreateLexicalBlock(Loc);
2630 
2631   // Emit a line table change for the current location inside the new scope.
2632   Builder.SetCurrentDebugLocation(llvm::DebugLoc::get(getLineNumber(Loc),
2633                                   getColumnNumber(Loc),
2634                                   LexicalBlockStack.back()));
2635 }
2636 
2637 /// EmitLexicalBlockEnd - Constructs the debug code for exiting a declarative
2638 /// region - end of a DW_TAG_lexical_block.
2639 void CGDebugInfo::EmitLexicalBlockEnd(CGBuilderTy &Builder,
2640                                       SourceLocation Loc) {
2641   assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!");
2642 
2643   // Provide an entry in the line table for the end of the block.
2644   EmitLocation(Builder, Loc);
2645 
2646   LexicalBlockStack.pop_back();
2647 }
2648 
2649 /// EmitFunctionEnd - Constructs the debug code for exiting a function.
2650 void CGDebugInfo::EmitFunctionEnd(CGBuilderTy &Builder) {
2651   assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!");
2652   unsigned RCount = FnBeginRegionCount.back();
2653   assert(RCount <= LexicalBlockStack.size() && "Region stack mismatch");
2654 
2655   // Pop all regions for this function.
2656   while (LexicalBlockStack.size() != RCount)
2657     EmitLexicalBlockEnd(Builder, CurLoc);
2658   FnBeginRegionCount.pop_back();
2659 }
2660 
2661 // EmitTypeForVarWithBlocksAttr - Build up structure info for the byref.
2662 // See BuildByRefType.
2663 llvm::DIType CGDebugInfo::EmitTypeForVarWithBlocksAttr(const VarDecl *VD,
2664                                                        uint64_t *XOffset) {
2665 
2666   SmallVector<llvm::Value *, 5> EltTys;
2667   QualType FType;
2668   uint64_t FieldSize, FieldOffset;
2669   unsigned FieldAlign;
2670 
2671   llvm::DIFile Unit = getOrCreateFile(VD->getLocation());
2672   QualType Type = VD->getType();
2673 
2674   FieldOffset = 0;
2675   FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy);
2676   EltTys.push_back(CreateMemberType(Unit, FType, "__isa", &FieldOffset));
2677   EltTys.push_back(CreateMemberType(Unit, FType, "__forwarding", &FieldOffset));
2678   FType = CGM.getContext().IntTy;
2679   EltTys.push_back(CreateMemberType(Unit, FType, "__flags", &FieldOffset));
2680   EltTys.push_back(CreateMemberType(Unit, FType, "__size", &FieldOffset));
2681 
2682   bool HasCopyAndDispose = CGM.getContext().BlockRequiresCopying(Type, VD);
2683   if (HasCopyAndDispose) {
2684     FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy);
2685     EltTys.push_back(CreateMemberType(Unit, FType, "__copy_helper",
2686                                       &FieldOffset));
2687     EltTys.push_back(CreateMemberType(Unit, FType, "__destroy_helper",
2688                                       &FieldOffset));
2689   }
2690   bool HasByrefExtendedLayout;
2691   Qualifiers::ObjCLifetime Lifetime;
2692   if (CGM.getContext().getByrefLifetime(Type,
2693                                         Lifetime, HasByrefExtendedLayout)
2694       && HasByrefExtendedLayout) {
2695     FType = CGM.getContext().getPointerType(CGM.getContext().VoidTy);
2696     EltTys.push_back(CreateMemberType(Unit, FType,
2697                                       "__byref_variable_layout",
2698                                       &FieldOffset));
2699   }
2700 
2701   CharUnits Align = CGM.getContext().getDeclAlign(VD);
2702   if (Align > CGM.getContext().toCharUnitsFromBits(
2703         CGM.getTarget().getPointerAlign(0))) {
2704     CharUnits FieldOffsetInBytes
2705       = CGM.getContext().toCharUnitsFromBits(FieldOffset);
2706     CharUnits AlignedOffsetInBytes
2707       = FieldOffsetInBytes.RoundUpToAlignment(Align);
2708     CharUnits NumPaddingBytes
2709       = AlignedOffsetInBytes - FieldOffsetInBytes;
2710 
2711     if (NumPaddingBytes.isPositive()) {
2712       llvm::APInt pad(32, NumPaddingBytes.getQuantity());
2713       FType = CGM.getContext().getConstantArrayType(CGM.getContext().CharTy,
2714                                                     pad, ArrayType::Normal, 0);
2715       EltTys.push_back(CreateMemberType(Unit, FType, "", &FieldOffset));
2716     }
2717   }
2718 
2719   FType = Type;
2720   llvm::DIType FieldTy = CGDebugInfo::getOrCreateType(FType, Unit);
2721   FieldSize = CGM.getContext().getTypeSize(FType);
2722   FieldAlign = CGM.getContext().toBits(Align);
2723 
2724   *XOffset = FieldOffset;
2725   FieldTy = DBuilder.createMemberType(Unit, VD->getName(), Unit,
2726                                       0, FieldSize, FieldAlign,
2727                                       FieldOffset, 0, FieldTy);
2728   EltTys.push_back(FieldTy);
2729   FieldOffset += FieldSize;
2730 
2731   llvm::DIArray Elements = DBuilder.getOrCreateArray(EltTys);
2732 
2733   unsigned Flags = llvm::DIDescriptor::FlagBlockByrefStruct;
2734 
2735   return DBuilder.createStructType(Unit, "", Unit, 0, FieldOffset, 0, Flags,
2736                                    llvm::DIType(), Elements);
2737 }
2738 
2739 /// EmitDeclare - Emit local variable declaration debug info.
2740 void CGDebugInfo::EmitDeclare(const VarDecl *VD, unsigned Tag,
2741                               llvm::Value *Storage,
2742                               unsigned ArgNo, CGBuilderTy &Builder) {
2743   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
2744   assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!");
2745 
2746   bool Unwritten =
2747       VD->isImplicit() || (isa<Decl>(VD->getDeclContext()) &&
2748                            cast<Decl>(VD->getDeclContext())->isImplicit());
2749   llvm::DIFile Unit;
2750   if (!Unwritten)
2751     Unit = getOrCreateFile(VD->getLocation());
2752   llvm::DIType Ty;
2753   uint64_t XOffset = 0;
2754   if (VD->hasAttr<BlocksAttr>())
2755     Ty = EmitTypeForVarWithBlocksAttr(VD, &XOffset);
2756   else
2757     Ty = getOrCreateType(VD->getType(), Unit);
2758 
2759   // If there is no debug info for this type then do not emit debug info
2760   // for this variable.
2761   if (!Ty)
2762     return;
2763 
2764   // Get location information.
2765   unsigned Line = 0;
2766   unsigned Column = 0;
2767   if (!Unwritten) {
2768     Line = getLineNumber(VD->getLocation());
2769     Column = getColumnNumber(VD->getLocation());
2770   }
2771   unsigned Flags = 0;
2772   if (VD->isImplicit())
2773     Flags |= llvm::DIDescriptor::FlagArtificial;
2774   // If this is the first argument and it is implicit then
2775   // give it an object pointer flag.
2776   // FIXME: There has to be a better way to do this, but for static
2777   // functions there won't be an implicit param at arg1 and
2778   // otherwise it is 'self' or 'this'.
2779   if (isa<ImplicitParamDecl>(VD) && ArgNo == 1)
2780     Flags |= llvm::DIDescriptor::FlagObjectPointer;
2781   if (llvm::Argument *Arg = dyn_cast<llvm::Argument>(Storage))
2782     if (Arg->getType()->isPointerTy() && !Arg->hasByValAttr() &&
2783         !VD->getType()->isPointerType())
2784       Flags |= llvm::DIDescriptor::FlagIndirectVariable;
2785 
2786   llvm::MDNode *Scope = LexicalBlockStack.back();
2787 
2788   StringRef Name = VD->getName();
2789   if (!Name.empty()) {
2790     if (VD->hasAttr<BlocksAttr>()) {
2791       CharUnits offset = CharUnits::fromQuantity(32);
2792       SmallVector<llvm::Value *, 9> addr;
2793       llvm::Type *Int64Ty = CGM.Int64Ty;
2794       addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus));
2795       // offset of __forwarding field
2796       offset = CGM.getContext().toCharUnitsFromBits(
2797         CGM.getTarget().getPointerWidth(0));
2798       addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity()));
2799       addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref));
2800       addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus));
2801       // offset of x field
2802       offset = CGM.getContext().toCharUnitsFromBits(XOffset);
2803       addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity()));
2804 
2805       // Create the descriptor for the variable.
2806       llvm::DIVariable D =
2807         DBuilder.createComplexVariable(Tag,
2808                                        llvm::DIDescriptor(Scope),
2809                                        VD->getName(), Unit, Line, Ty,
2810                                        addr, ArgNo);
2811 
2812       // Insert an llvm.dbg.declare into the current block.
2813       llvm::Instruction *Call =
2814         DBuilder.insertDeclare(Storage, D, Builder.GetInsertBlock());
2815       Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, Scope));
2816       return;
2817     }
2818   } else if (const RecordType *RT = dyn_cast<RecordType>(VD->getType())) {
2819     // If VD is an anonymous union then Storage represents value for
2820     // all union fields.
2821     const RecordDecl *RD = cast<RecordDecl>(RT->getDecl());
2822     if (RD->isUnion() && RD->isAnonymousStructOrUnion()) {
2823       for (RecordDecl::field_iterator I = RD->field_begin(),
2824              E = RD->field_end();
2825            I != E; ++I) {
2826         FieldDecl *Field = *I;
2827         llvm::DIType FieldTy = getOrCreateType(Field->getType(), Unit);
2828         StringRef FieldName = Field->getName();
2829 
2830         // Ignore unnamed fields. Do not ignore unnamed records.
2831         if (FieldName.empty() && !isa<RecordType>(Field->getType()))
2832           continue;
2833 
2834         // Use VarDecl's Tag, Scope and Line number.
2835         llvm::DIVariable D =
2836           DBuilder.createLocalVariable(Tag, llvm::DIDescriptor(Scope),
2837                                        FieldName, Unit, Line, FieldTy,
2838                                        CGM.getLangOpts().Optimize, Flags,
2839                                        ArgNo);
2840 
2841         // Insert an llvm.dbg.declare into the current block.
2842         llvm::Instruction *Call =
2843           DBuilder.insertDeclare(Storage, D, Builder.GetInsertBlock());
2844         Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, Scope));
2845       }
2846       return;
2847     }
2848   }
2849 
2850   // Create the descriptor for the variable.
2851   llvm::DIVariable D =
2852     DBuilder.createLocalVariable(Tag, llvm::DIDescriptor(Scope),
2853                                  Name, Unit, Line, Ty,
2854                                  CGM.getLangOpts().Optimize, Flags, ArgNo);
2855 
2856   // Insert an llvm.dbg.declare into the current block.
2857   llvm::Instruction *Call =
2858     DBuilder.insertDeclare(Storage, D, Builder.GetInsertBlock());
2859   Call->setDebugLoc(llvm::DebugLoc::get(Line, Column, Scope));
2860 }
2861 
2862 void CGDebugInfo::EmitDeclareOfAutoVariable(const VarDecl *VD,
2863                                             llvm::Value *Storage,
2864                                             CGBuilderTy &Builder) {
2865   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
2866   EmitDeclare(VD, llvm::dwarf::DW_TAG_auto_variable, Storage, 0, Builder);
2867 }
2868 
2869 /// Look up the completed type for a self pointer in the TypeCache and
2870 /// create a copy of it with the ObjectPointer and Artificial flags
2871 /// set. If the type is not cached, a new one is created. This should
2872 /// never happen though, since creating a type for the implicit self
2873 /// argument implies that we already parsed the interface definition
2874 /// and the ivar declarations in the implementation.
2875 llvm::DIType CGDebugInfo::CreateSelfType(const QualType &QualTy,
2876                                          llvm::DIType Ty) {
2877   llvm::DIType CachedTy = getTypeOrNull(QualTy);
2878   if (CachedTy) Ty = CachedTy;
2879   else DEBUG(llvm::dbgs() << "No cached type for self.");
2880   return DBuilder.createObjectPointerType(Ty);
2881 }
2882 
2883 void CGDebugInfo::EmitDeclareOfBlockDeclRefVariable(const VarDecl *VD,
2884                                                     llvm::Value *Storage,
2885                                                     CGBuilderTy &Builder,
2886                                                  const CGBlockInfo &blockInfo) {
2887   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
2888   assert(!LexicalBlockStack.empty() && "Region stack mismatch, stack empty!");
2889 
2890   if (Builder.GetInsertBlock() == 0)
2891     return;
2892 
2893   bool isByRef = VD->hasAttr<BlocksAttr>();
2894 
2895   uint64_t XOffset = 0;
2896   llvm::DIFile Unit = getOrCreateFile(VD->getLocation());
2897   llvm::DIType Ty;
2898   if (isByRef)
2899     Ty = EmitTypeForVarWithBlocksAttr(VD, &XOffset);
2900   else
2901     Ty = getOrCreateType(VD->getType(), Unit);
2902 
2903   // Self is passed along as an implicit non-arg variable in a
2904   // block. Mark it as the object pointer.
2905   if (isa<ImplicitParamDecl>(VD) && VD->getName() == "self")
2906     Ty = CreateSelfType(VD->getType(), Ty);
2907 
2908   // Get location information.
2909   unsigned Line = getLineNumber(VD->getLocation());
2910   unsigned Column = getColumnNumber(VD->getLocation());
2911 
2912   const llvm::DataLayout &target = CGM.getDataLayout();
2913 
2914   CharUnits offset = CharUnits::fromQuantity(
2915     target.getStructLayout(blockInfo.StructureType)
2916           ->getElementOffset(blockInfo.getCapture(VD).getIndex()));
2917 
2918   SmallVector<llvm::Value *, 9> addr;
2919   llvm::Type *Int64Ty = CGM.Int64Ty;
2920   if (isa<llvm::AllocaInst>(Storage))
2921     addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref));
2922   addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus));
2923   addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity()));
2924   if (isByRef) {
2925     addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref));
2926     addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus));
2927     // offset of __forwarding field
2928     offset = CGM.getContext()
2929                 .toCharUnitsFromBits(target.getPointerSizeInBits(0));
2930     addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity()));
2931     addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpDeref));
2932     addr.push_back(llvm::ConstantInt::get(Int64Ty, llvm::DIBuilder::OpPlus));
2933     // offset of x field
2934     offset = CGM.getContext().toCharUnitsFromBits(XOffset);
2935     addr.push_back(llvm::ConstantInt::get(Int64Ty, offset.getQuantity()));
2936   }
2937 
2938   // Create the descriptor for the variable.
2939   llvm::DIVariable D =
2940     DBuilder.createComplexVariable(llvm::dwarf::DW_TAG_auto_variable,
2941                                    llvm::DIDescriptor(LexicalBlockStack.back()),
2942                                    VD->getName(), Unit, Line, Ty, addr);
2943 
2944   // Insert an llvm.dbg.declare into the current block.
2945   llvm::Instruction *Call =
2946     DBuilder.insertDeclare(Storage, D, Builder.GetInsertPoint());
2947   Call->setDebugLoc(llvm::DebugLoc::get(Line, Column,
2948                                         LexicalBlockStack.back()));
2949 }
2950 
2951 /// EmitDeclareOfArgVariable - Emit call to llvm.dbg.declare for an argument
2952 /// variable declaration.
2953 void CGDebugInfo::EmitDeclareOfArgVariable(const VarDecl *VD, llvm::Value *AI,
2954                                            unsigned ArgNo,
2955                                            CGBuilderTy &Builder) {
2956   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
2957   EmitDeclare(VD, llvm::dwarf::DW_TAG_arg_variable, AI, ArgNo, Builder);
2958 }
2959 
2960 namespace {
2961   struct BlockLayoutChunk {
2962     uint64_t OffsetInBits;
2963     const BlockDecl::Capture *Capture;
2964   };
2965   bool operator<(const BlockLayoutChunk &l, const BlockLayoutChunk &r) {
2966     return l.OffsetInBits < r.OffsetInBits;
2967   }
2968 }
2969 
2970 void CGDebugInfo::EmitDeclareOfBlockLiteralArgVariable(const CGBlockInfo &block,
2971                                                        llvm::Value *Arg,
2972                                                        llvm::Value *LocalAddr,
2973                                                        CGBuilderTy &Builder) {
2974   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
2975   ASTContext &C = CGM.getContext();
2976   const BlockDecl *blockDecl = block.getBlockDecl();
2977 
2978   // Collect some general information about the block's location.
2979   SourceLocation loc = blockDecl->getCaretLocation();
2980   llvm::DIFile tunit = getOrCreateFile(loc);
2981   unsigned line = getLineNumber(loc);
2982   unsigned column = getColumnNumber(loc);
2983 
2984   // Build the debug-info type for the block literal.
2985   getContextDescriptor(cast<Decl>(blockDecl->getDeclContext()));
2986 
2987   const llvm::StructLayout *blockLayout =
2988     CGM.getDataLayout().getStructLayout(block.StructureType);
2989 
2990   SmallVector<llvm::Value*, 16> fields;
2991   fields.push_back(createFieldType("__isa", C.VoidPtrTy, 0, loc, AS_public,
2992                                    blockLayout->getElementOffsetInBits(0),
2993                                    tunit, tunit));
2994   fields.push_back(createFieldType("__flags", C.IntTy, 0, loc, AS_public,
2995                                    blockLayout->getElementOffsetInBits(1),
2996                                    tunit, tunit));
2997   fields.push_back(createFieldType("__reserved", C.IntTy, 0, loc, AS_public,
2998                                    blockLayout->getElementOffsetInBits(2),
2999                                    tunit, tunit));
3000   fields.push_back(createFieldType("__FuncPtr", C.VoidPtrTy, 0, loc, AS_public,
3001                                    blockLayout->getElementOffsetInBits(3),
3002                                    tunit, tunit));
3003   fields.push_back(createFieldType("__descriptor",
3004                                    C.getPointerType(block.NeedsCopyDispose ?
3005                                         C.getBlockDescriptorExtendedType() :
3006                                         C.getBlockDescriptorType()),
3007                                    0, loc, AS_public,
3008                                    blockLayout->getElementOffsetInBits(4),
3009                                    tunit, tunit));
3010 
3011   // We want to sort the captures by offset, not because DWARF
3012   // requires this, but because we're paranoid about debuggers.
3013   SmallVector<BlockLayoutChunk, 8> chunks;
3014 
3015   // 'this' capture.
3016   if (blockDecl->capturesCXXThis()) {
3017     BlockLayoutChunk chunk;
3018     chunk.OffsetInBits =
3019       blockLayout->getElementOffsetInBits(block.CXXThisIndex);
3020     chunk.Capture = 0;
3021     chunks.push_back(chunk);
3022   }
3023 
3024   // Variable captures.
3025   for (BlockDecl::capture_const_iterator
3026          i = blockDecl->capture_begin(), e = blockDecl->capture_end();
3027        i != e; ++i) {
3028     const BlockDecl::Capture &capture = *i;
3029     const VarDecl *variable = capture.getVariable();
3030     const CGBlockInfo::Capture &captureInfo = block.getCapture(variable);
3031 
3032     // Ignore constant captures.
3033     if (captureInfo.isConstant())
3034       continue;
3035 
3036     BlockLayoutChunk chunk;
3037     chunk.OffsetInBits =
3038       blockLayout->getElementOffsetInBits(captureInfo.getIndex());
3039     chunk.Capture = &capture;
3040     chunks.push_back(chunk);
3041   }
3042 
3043   // Sort by offset.
3044   llvm::array_pod_sort(chunks.begin(), chunks.end());
3045 
3046   for (SmallVectorImpl<BlockLayoutChunk>::iterator
3047          i = chunks.begin(), e = chunks.end(); i != e; ++i) {
3048     uint64_t offsetInBits = i->OffsetInBits;
3049     const BlockDecl::Capture *capture = i->Capture;
3050 
3051     // If we have a null capture, this must be the C++ 'this' capture.
3052     if (!capture) {
3053       const CXXMethodDecl *method =
3054         cast<CXXMethodDecl>(blockDecl->getNonClosureContext());
3055       QualType type = method->getThisType(C);
3056 
3057       fields.push_back(createFieldType("this", type, 0, loc, AS_public,
3058                                        offsetInBits, tunit, tunit));
3059       continue;
3060     }
3061 
3062     const VarDecl *variable = capture->getVariable();
3063     StringRef name = variable->getName();
3064 
3065     llvm::DIType fieldType;
3066     if (capture->isByRef()) {
3067       std::pair<uint64_t,unsigned> ptrInfo = C.getTypeInfo(C.VoidPtrTy);
3068 
3069       // FIXME: this creates a second copy of this type!
3070       uint64_t xoffset;
3071       fieldType = EmitTypeForVarWithBlocksAttr(variable, &xoffset);
3072       fieldType = DBuilder.createPointerType(fieldType, ptrInfo.first);
3073       fieldType = DBuilder.createMemberType(tunit, name, tunit, line,
3074                                             ptrInfo.first, ptrInfo.second,
3075                                             offsetInBits, 0, fieldType);
3076     } else {
3077       fieldType = createFieldType(name, variable->getType(), 0,
3078                                   loc, AS_public, offsetInBits, tunit, tunit);
3079     }
3080     fields.push_back(fieldType);
3081   }
3082 
3083   SmallString<36> typeName;
3084   llvm::raw_svector_ostream(typeName)
3085     << "__block_literal_" << CGM.getUniqueBlockCount();
3086 
3087   llvm::DIArray fieldsArray = DBuilder.getOrCreateArray(fields);
3088 
3089   llvm::DIType type =
3090     DBuilder.createStructType(tunit, typeName.str(), tunit, line,
3091                               CGM.getContext().toBits(block.BlockSize),
3092                               CGM.getContext().toBits(block.BlockAlign),
3093                               0, llvm::DIType(), fieldsArray);
3094   type = DBuilder.createPointerType(type, CGM.PointerWidthInBits);
3095 
3096   // Get overall information about the block.
3097   unsigned flags = llvm::DIDescriptor::FlagArtificial;
3098   llvm::MDNode *scope = LexicalBlockStack.back();
3099 
3100   // Create the descriptor for the parameter.
3101   llvm::DIVariable debugVar =
3102     DBuilder.createLocalVariable(llvm::dwarf::DW_TAG_arg_variable,
3103                                  llvm::DIDescriptor(scope),
3104                                  Arg->getName(), tunit, line, type,
3105                                  CGM.getLangOpts().Optimize, flags,
3106                                  cast<llvm::Argument>(Arg)->getArgNo() + 1);
3107 
3108   if (LocalAddr) {
3109     // Insert an llvm.dbg.value into the current block.
3110     llvm::Instruction *DbgVal =
3111       DBuilder.insertDbgValueIntrinsic(LocalAddr, 0, debugVar,
3112                                        Builder.GetInsertBlock());
3113     DbgVal->setDebugLoc(llvm::DebugLoc::get(line, column, scope));
3114   }
3115 
3116   // Insert an llvm.dbg.declare into the current block.
3117   llvm::Instruction *DbgDecl =
3118     DBuilder.insertDeclare(Arg, debugVar, Builder.GetInsertBlock());
3119   DbgDecl->setDebugLoc(llvm::DebugLoc::get(line, column, scope));
3120 }
3121 
3122 /// If D is an out-of-class definition of a static data member of a class, find
3123 /// its corresponding in-class declaration.
3124 llvm::DIDerivedType
3125 CGDebugInfo::getOrCreateStaticDataMemberDeclarationOrNull(const VarDecl *D) {
3126   if (!D->isStaticDataMember())
3127     return llvm::DIDerivedType();
3128   llvm::DenseMap<const Decl *, llvm::WeakVH>::iterator MI =
3129       StaticDataMemberCache.find(D->getCanonicalDecl());
3130   if (MI != StaticDataMemberCache.end()) {
3131     assert(MI->second && "Static data member declaration should still exist");
3132     return llvm::DIDerivedType(cast<llvm::MDNode>(MI->second));
3133   }
3134 
3135   // If the member wasn't found in the cache, lazily construct and add it to the
3136   // type (used when a limited form of the type is emitted).
3137   llvm::DICompositeType Ctxt(
3138       getContextDescriptor(cast<Decl>(D->getDeclContext())));
3139   llvm::DIDerivedType T = CreateRecordStaticField(D, Ctxt);
3140   Ctxt.addMember(T);
3141   return T;
3142 }
3143 
3144 /// EmitGlobalVariable - Emit information about a global variable.
3145 void CGDebugInfo::EmitGlobalVariable(llvm::GlobalVariable *Var,
3146                                      const VarDecl *D) {
3147   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
3148   // Create global variable debug descriptor.
3149   llvm::DIFile Unit = getOrCreateFile(D->getLocation());
3150   unsigned LineNo = getLineNumber(D->getLocation());
3151 
3152   setLocation(D->getLocation());
3153 
3154   QualType T = D->getType();
3155   if (T->isIncompleteArrayType()) {
3156 
3157     // CodeGen turns int[] into int[1] so we'll do the same here.
3158     llvm::APInt ConstVal(32, 1);
3159     QualType ET = CGM.getContext().getAsArrayType(T)->getElementType();
3160 
3161     T = CGM.getContext().getConstantArrayType(ET, ConstVal,
3162                                               ArrayType::Normal, 0);
3163   }
3164   StringRef DeclName = D->getName();
3165   StringRef LinkageName;
3166   if (D->getDeclContext() && !isa<FunctionDecl>(D->getDeclContext())
3167       && !isa<ObjCMethodDecl>(D->getDeclContext()))
3168     LinkageName = Var->getName();
3169   if (LinkageName == DeclName)
3170     LinkageName = StringRef();
3171   llvm::DIDescriptor DContext =
3172     getContextDescriptor(dyn_cast<Decl>(D->getDeclContext()));
3173   llvm::DIGlobalVariable GV = DBuilder.createStaticVariable(
3174       DContext, DeclName, LinkageName, Unit, LineNo, getOrCreateType(T, Unit),
3175       Var->hasInternalLinkage(), Var,
3176       getOrCreateStaticDataMemberDeclarationOrNull(D));
3177   DeclCache.insert(std::make_pair(D->getCanonicalDecl(), llvm::WeakVH(GV)));
3178 }
3179 
3180 /// EmitGlobalVariable - Emit information about an objective-c interface.
3181 void CGDebugInfo::EmitGlobalVariable(llvm::GlobalVariable *Var,
3182                                      ObjCInterfaceDecl *ID) {
3183   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
3184   // Create global variable debug descriptor.
3185   llvm::DIFile Unit = getOrCreateFile(ID->getLocation());
3186   unsigned LineNo = getLineNumber(ID->getLocation());
3187 
3188   StringRef Name = ID->getName();
3189 
3190   QualType T = CGM.getContext().getObjCInterfaceType(ID);
3191   if (T->isIncompleteArrayType()) {
3192 
3193     // CodeGen turns int[] into int[1] so we'll do the same here.
3194     llvm::APInt ConstVal(32, 1);
3195     QualType ET = CGM.getContext().getAsArrayType(T)->getElementType();
3196 
3197     T = CGM.getContext().getConstantArrayType(ET, ConstVal,
3198                                            ArrayType::Normal, 0);
3199   }
3200 
3201   DBuilder.createGlobalVariable(Name, Unit, LineNo,
3202                                 getOrCreateType(T, Unit),
3203                                 Var->hasInternalLinkage(), Var);
3204 }
3205 
3206 /// EmitGlobalVariable - Emit global variable's debug info.
3207 void CGDebugInfo::EmitGlobalVariable(const ValueDecl *VD,
3208                                      llvm::Constant *Init) {
3209   assert(DebugKind >= CodeGenOptions::LimitedDebugInfo);
3210   // Create the descriptor for the variable.
3211   llvm::DIFile Unit = getOrCreateFile(VD->getLocation());
3212   StringRef Name = VD->getName();
3213   llvm::DIType Ty = getOrCreateType(VD->getType(), Unit);
3214   if (const EnumConstantDecl *ECD = dyn_cast<EnumConstantDecl>(VD)) {
3215     const EnumDecl *ED = cast<EnumDecl>(ECD->getDeclContext());
3216     assert(isa<EnumType>(ED->getTypeForDecl()) && "Enum without EnumType?");
3217     Ty = getOrCreateType(QualType(ED->getTypeForDecl(), 0), Unit);
3218   }
3219   // Do not use DIGlobalVariable for enums.
3220   if (Ty.getTag() == llvm::dwarf::DW_TAG_enumeration_type)
3221     return;
3222   llvm::DIGlobalVariable GV = DBuilder.createStaticVariable(
3223       Unit, Name, Name, Unit, getLineNumber(VD->getLocation()), Ty, true, Init,
3224       getOrCreateStaticDataMemberDeclarationOrNull(cast<VarDecl>(VD)));
3225   DeclCache.insert(std::make_pair(VD->getCanonicalDecl(), llvm::WeakVH(GV)));
3226 }
3227 
3228 llvm::DIScope CGDebugInfo::getCurrentContextDescriptor(const Decl *D) {
3229   if (!LexicalBlockStack.empty())
3230     return llvm::DIScope(LexicalBlockStack.back());
3231   return getContextDescriptor(D);
3232 }
3233 
3234 void CGDebugInfo::EmitUsingDirective(const UsingDirectiveDecl &UD) {
3235   if (CGM.getCodeGenOpts().getDebugInfo() < CodeGenOptions::LimitedDebugInfo)
3236     return;
3237   DBuilder.createImportedModule(
3238       getCurrentContextDescriptor(cast<Decl>(UD.getDeclContext())),
3239       getOrCreateNameSpace(UD.getNominatedNamespace()),
3240       getLineNumber(UD.getLocation()));
3241 }
3242 
3243 void CGDebugInfo::EmitUsingDecl(const UsingDecl &UD) {
3244   if (CGM.getCodeGenOpts().getDebugInfo() < CodeGenOptions::LimitedDebugInfo)
3245     return;
3246   assert(UD.shadow_size() &&
3247          "We shouldn't be codegening an invalid UsingDecl containing no decls");
3248   // Emitting one decl is sufficient - debuggers can detect that this is an
3249   // overloaded name & provide lookup for all the overloads.
3250   const UsingShadowDecl &USD = **UD.shadow_begin();
3251   if (llvm::DIDescriptor Target =
3252           getDeclarationOrDefinition(USD.getUnderlyingDecl()))
3253     DBuilder.createImportedDeclaration(
3254         getCurrentContextDescriptor(cast<Decl>(USD.getDeclContext())), Target,
3255         getLineNumber(USD.getLocation()));
3256 }
3257 
3258 llvm::DIImportedEntity
3259 CGDebugInfo::EmitNamespaceAlias(const NamespaceAliasDecl &NA) {
3260   if (CGM.getCodeGenOpts().getDebugInfo() < CodeGenOptions::LimitedDebugInfo)
3261     return llvm::DIImportedEntity(0);
3262   llvm::WeakVH &VH = NamespaceAliasCache[&NA];
3263   if (VH)
3264     return llvm::DIImportedEntity(cast<llvm::MDNode>(VH));
3265   llvm::DIImportedEntity R(0);
3266   if (const NamespaceAliasDecl *Underlying =
3267           dyn_cast<NamespaceAliasDecl>(NA.getAliasedNamespace()))
3268     // This could cache & dedup here rather than relying on metadata deduping.
3269     R = DBuilder.createImportedModule(
3270         getCurrentContextDescriptor(cast<Decl>(NA.getDeclContext())),
3271         EmitNamespaceAlias(*Underlying), getLineNumber(NA.getLocation()),
3272         NA.getName());
3273   else
3274     R = DBuilder.createImportedModule(
3275         getCurrentContextDescriptor(cast<Decl>(NA.getDeclContext())),
3276         getOrCreateNameSpace(cast<NamespaceDecl>(NA.getAliasedNamespace())),
3277         getLineNumber(NA.getLocation()), NA.getName());
3278   VH = R;
3279   return R;
3280 }
3281 
3282 /// getOrCreateNamesSpace - Return namespace descriptor for the given
3283 /// namespace decl.
3284 llvm::DINameSpace
3285 CGDebugInfo::getOrCreateNameSpace(const NamespaceDecl *NSDecl) {
3286   NSDecl = NSDecl->getCanonicalDecl();
3287   llvm::DenseMap<const NamespaceDecl *, llvm::WeakVH>::iterator I =
3288     NameSpaceCache.find(NSDecl);
3289   if (I != NameSpaceCache.end())
3290     return llvm::DINameSpace(cast<llvm::MDNode>(I->second));
3291 
3292   unsigned LineNo = getLineNumber(NSDecl->getLocation());
3293   llvm::DIFile FileD = getOrCreateFile(NSDecl->getLocation());
3294   llvm::DIDescriptor Context =
3295     getContextDescriptor(dyn_cast<Decl>(NSDecl->getDeclContext()));
3296   llvm::DINameSpace NS =
3297     DBuilder.createNameSpace(Context, NSDecl->getName(), FileD, LineNo);
3298   NameSpaceCache[NSDecl] = llvm::WeakVH(NS);
3299   return NS;
3300 }
3301 
3302 void CGDebugInfo::finalize() {
3303   for (std::vector<std::pair<void *, llvm::WeakVH> >::const_iterator VI
3304          = ReplaceMap.begin(), VE = ReplaceMap.end(); VI != VE; ++VI) {
3305     llvm::DIType Ty, RepTy;
3306     // Verify that the debug info still exists.
3307     if (llvm::Value *V = VI->second)
3308       Ty = llvm::DIType(cast<llvm::MDNode>(V));
3309 
3310     llvm::DenseMap<void *, llvm::WeakVH>::iterator it =
3311       TypeCache.find(VI->first);
3312     if (it != TypeCache.end()) {
3313       // Verify that the debug info still exists.
3314       if (llvm::Value *V = it->second)
3315         RepTy = llvm::DIType(cast<llvm::MDNode>(V));
3316     }
3317 
3318     if (Ty && Ty.isForwardDecl() && RepTy)
3319       Ty.replaceAllUsesWith(RepTy);
3320   }
3321 
3322   // We keep our own list of retained types, because we need to look
3323   // up the final type in the type cache.
3324   for (std::vector<void *>::const_iterator RI = RetainedTypes.begin(),
3325          RE = RetainedTypes.end(); RI != RE; ++RI)
3326     DBuilder.retainType(llvm::DIType(cast<llvm::MDNode>(TypeCache[*RI])));
3327 
3328   DBuilder.finalize();
3329 }
3330