1 //===-- SymbolFileNativePDB.cpp -------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "SymbolFileNativePDB.h"
10 
11 #include "clang/AST/Attr.h"
12 #include "clang/AST/CharUnits.h"
13 #include "clang/AST/Decl.h"
14 #include "clang/AST/DeclCXX.h"
15 #include "clang/AST/Type.h"
16 
17 #include "Plugins/ExpressionParser/Clang/ClangUtil.h"
18 #include "Plugins/Language/CPlusPlus/MSVCUndecoratedNameParser.h"
19 #include "Plugins/ObjectFile/PDB/ObjectFilePDB.h"
20 #include "Plugins/TypeSystem/Clang/TypeSystemClang.h"
21 #include "lldb/Core/Module.h"
22 #include "lldb/Core/PluginManager.h"
23 #include "lldb/Core/StreamBuffer.h"
24 #include "lldb/Core/StreamFile.h"
25 #include "lldb/Symbol/CompileUnit.h"
26 #include "lldb/Symbol/LineTable.h"
27 #include "lldb/Symbol/ObjectFile.h"
28 #include "lldb/Symbol/SymbolContext.h"
29 #include "lldb/Symbol/SymbolVendor.h"
30 #include "lldb/Symbol/Variable.h"
31 #include "lldb/Symbol/VariableList.h"
32 #include "lldb/Utility/LLDBLog.h"
33 #include "lldb/Utility/Log.h"
34 
35 #include "llvm/DebugInfo/CodeView/CVRecord.h"
36 #include "llvm/DebugInfo/CodeView/CVTypeVisitor.h"
37 #include "llvm/DebugInfo/CodeView/DebugLinesSubsection.h"
38 #include "llvm/DebugInfo/CodeView/LazyRandomTypeCollection.h"
39 #include "llvm/DebugInfo/CodeView/RecordName.h"
40 #include "llvm/DebugInfo/CodeView/SymbolDeserializer.h"
41 #include "llvm/DebugInfo/CodeView/SymbolRecordHelpers.h"
42 #include "llvm/DebugInfo/CodeView/TypeDeserializer.h"
43 #include "llvm/DebugInfo/PDB/Native/DbiStream.h"
44 #include "llvm/DebugInfo/PDB/Native/GlobalsStream.h"
45 #include "llvm/DebugInfo/PDB/Native/InfoStream.h"
46 #include "llvm/DebugInfo/PDB/Native/ModuleDebugStream.h"
47 #include "llvm/DebugInfo/PDB/Native/NativeSession.h"
48 #include "llvm/DebugInfo/PDB/Native/PDBFile.h"
49 #include "llvm/DebugInfo/PDB/Native/SymbolStream.h"
50 #include "llvm/DebugInfo/PDB/Native/TpiStream.h"
51 #include "llvm/DebugInfo/PDB/PDB.h"
52 #include "llvm/DebugInfo/PDB/PDBTypes.h"
53 #include "llvm/Demangle/MicrosoftDemangle.h"
54 #include "llvm/Object/COFF.h"
55 #include "llvm/Support/Allocator.h"
56 #include "llvm/Support/BinaryStreamReader.h"
57 #include "llvm/Support/Error.h"
58 #include "llvm/Support/ErrorOr.h"
59 #include "llvm/Support/MemoryBuffer.h"
60 
61 #include "DWARFLocationExpression.h"
62 #include "PdbAstBuilder.h"
63 #include "PdbSymUid.h"
64 #include "PdbUtil.h"
65 #include "UdtRecordCompleter.h"
66 
67 using namespace lldb;
68 using namespace lldb_private;
69 using namespace npdb;
70 using namespace llvm::codeview;
71 using namespace llvm::pdb;
72 
73 char SymbolFileNativePDB::ID;
74 
75 static lldb::LanguageType TranslateLanguage(PDB_Lang lang) {
76   switch (lang) {
77   case PDB_Lang::Cpp:
78     return lldb::LanguageType::eLanguageTypeC_plus_plus;
79   case PDB_Lang::C:
80     return lldb::LanguageType::eLanguageTypeC;
81   case PDB_Lang::Swift:
82     return lldb::LanguageType::eLanguageTypeSwift;
83   case PDB_Lang::Rust:
84     return lldb::LanguageType::eLanguageTypeRust;
85   default:
86     return lldb::LanguageType::eLanguageTypeUnknown;
87   }
88 }
89 
90 static std::unique_ptr<PDBFile>
91 loadMatchingPDBFile(std::string exe_path, llvm::BumpPtrAllocator &allocator) {
92   // Try to find a matching PDB for an EXE.
93   using namespace llvm::object;
94   auto expected_binary = createBinary(exe_path);
95 
96   // If the file isn't a PE/COFF executable, fail.
97   if (!expected_binary) {
98     llvm::consumeError(expected_binary.takeError());
99     return nullptr;
100   }
101   OwningBinary<Binary> binary = std::move(*expected_binary);
102 
103   // TODO: Avoid opening the PE/COFF binary twice by reading this information
104   // directly from the lldb_private::ObjectFile.
105   auto *obj = llvm::dyn_cast<llvm::object::COFFObjectFile>(binary.getBinary());
106   if (!obj)
107     return nullptr;
108   const llvm::codeview::DebugInfo *pdb_info = nullptr;
109 
110   // If it doesn't have a debug directory, fail.
111   llvm::StringRef pdb_file;
112   if (llvm::Error e = obj->getDebugPDBInfo(pdb_info, pdb_file)) {
113     consumeError(std::move(e));
114     return nullptr;
115   }
116 
117   // If the file doesn't exist, perhaps the path specified at build time
118   // doesn't match the PDB's current location, so check the location of the
119   // executable.
120   if (!FileSystem::Instance().Exists(pdb_file)) {
121     const auto exe_dir = FileSpec(exe_path).CopyByRemovingLastPathComponent();
122     const auto pdb_name = FileSpec(pdb_file).GetFilename().GetCString();
123     pdb_file = exe_dir.CopyByAppendingPathComponent(pdb_name).GetCString();
124   }
125 
126   // If the file is not a PDB or if it doesn't have a matching GUID, fail.
127   auto pdb = ObjectFilePDB::loadPDBFile(std::string(pdb_file), allocator);
128   if (!pdb)
129     return nullptr;
130 
131   auto expected_info = pdb->getPDBInfoStream();
132   if (!expected_info) {
133     llvm::consumeError(expected_info.takeError());
134     return nullptr;
135   }
136   llvm::codeview::GUID guid;
137   memcpy(&guid, pdb_info->PDB70.Signature, 16);
138 
139   if (expected_info->getGuid() != guid)
140     return nullptr;
141   return pdb;
142 }
143 
144 static bool IsFunctionPrologue(const CompilandIndexItem &cci,
145                                lldb::addr_t addr) {
146   // FIXME: Implement this.
147   return false;
148 }
149 
150 static bool IsFunctionEpilogue(const CompilandIndexItem &cci,
151                                lldb::addr_t addr) {
152   // FIXME: Implement this.
153   return false;
154 }
155 
156 static llvm::StringRef GetSimpleTypeName(SimpleTypeKind kind) {
157   switch (kind) {
158   case SimpleTypeKind::Boolean128:
159   case SimpleTypeKind::Boolean16:
160   case SimpleTypeKind::Boolean32:
161   case SimpleTypeKind::Boolean64:
162   case SimpleTypeKind::Boolean8:
163     return "bool";
164   case SimpleTypeKind::Byte:
165   case SimpleTypeKind::UnsignedCharacter:
166     return "unsigned char";
167   case SimpleTypeKind::NarrowCharacter:
168     return "char";
169   case SimpleTypeKind::SignedCharacter:
170   case SimpleTypeKind::SByte:
171     return "signed char";
172   case SimpleTypeKind::Character16:
173     return "char16_t";
174   case SimpleTypeKind::Character32:
175     return "char32_t";
176   case SimpleTypeKind::Character8:
177     return "char8_t";
178   case SimpleTypeKind::Complex80:
179   case SimpleTypeKind::Complex64:
180   case SimpleTypeKind::Complex32:
181     return "complex";
182   case SimpleTypeKind::Float128:
183   case SimpleTypeKind::Float80:
184     return "long double";
185   case SimpleTypeKind::Float64:
186     return "double";
187   case SimpleTypeKind::Float32:
188     return "float";
189   case SimpleTypeKind::Float16:
190     return "single";
191   case SimpleTypeKind::Int128:
192     return "__int128";
193   case SimpleTypeKind::Int64:
194   case SimpleTypeKind::Int64Quad:
195     return "int64_t";
196   case SimpleTypeKind::Int32:
197     return "int";
198   case SimpleTypeKind::Int16:
199     return "short";
200   case SimpleTypeKind::UInt128:
201     return "unsigned __int128";
202   case SimpleTypeKind::UInt64:
203   case SimpleTypeKind::UInt64Quad:
204     return "uint64_t";
205   case SimpleTypeKind::HResult:
206     return "HRESULT";
207   case SimpleTypeKind::UInt32:
208     return "unsigned";
209   case SimpleTypeKind::UInt16:
210   case SimpleTypeKind::UInt16Short:
211     return "unsigned short";
212   case SimpleTypeKind::Int32Long:
213     return "long";
214   case SimpleTypeKind::UInt32Long:
215     return "unsigned long";
216   case SimpleTypeKind::Void:
217     return "void";
218   case SimpleTypeKind::WideCharacter:
219     return "wchar_t";
220   default:
221     return "";
222   }
223 }
224 
225 static bool IsClassRecord(TypeLeafKind kind) {
226   switch (kind) {
227   case LF_STRUCTURE:
228   case LF_CLASS:
229   case LF_INTERFACE:
230     return true;
231   default:
232     return false;
233   }
234 }
235 
236 void SymbolFileNativePDB::Initialize() {
237   PluginManager::RegisterPlugin(GetPluginNameStatic(),
238                                 GetPluginDescriptionStatic(), CreateInstance,
239                                 DebuggerInitialize);
240 }
241 
242 void SymbolFileNativePDB::Terminate() {
243   PluginManager::UnregisterPlugin(CreateInstance);
244 }
245 
246 void SymbolFileNativePDB::DebuggerInitialize(Debugger &debugger) {}
247 
248 llvm::StringRef SymbolFileNativePDB::GetPluginDescriptionStatic() {
249   return "Microsoft PDB debug symbol cross-platform file reader.";
250 }
251 
252 SymbolFile *SymbolFileNativePDB::CreateInstance(ObjectFileSP objfile_sp) {
253   return new SymbolFileNativePDB(std::move(objfile_sp));
254 }
255 
256 SymbolFileNativePDB::SymbolFileNativePDB(ObjectFileSP objfile_sp)
257     : SymbolFileCommon(std::move(objfile_sp)) {}
258 
259 SymbolFileNativePDB::~SymbolFileNativePDB() = default;
260 
261 uint32_t SymbolFileNativePDB::CalculateAbilities() {
262   uint32_t abilities = 0;
263   if (!m_objfile_sp)
264     return 0;
265 
266   if (!m_index) {
267     // Lazily load and match the PDB file, but only do this once.
268     PDBFile *pdb_file;
269     if (auto *pdb = llvm::dyn_cast<ObjectFilePDB>(m_objfile_sp.get())) {
270       pdb_file = &pdb->GetPDBFile();
271     } else {
272       m_file_up = loadMatchingPDBFile(m_objfile_sp->GetFileSpec().GetPath(),
273                                       m_allocator);
274       pdb_file = m_file_up.get();
275     }
276 
277     if (!pdb_file)
278       return 0;
279 
280     auto expected_index = PdbIndex::create(pdb_file);
281     if (!expected_index) {
282       llvm::consumeError(expected_index.takeError());
283       return 0;
284     }
285     m_index = std::move(*expected_index);
286   }
287   if (!m_index)
288     return 0;
289 
290   // We don't especially have to be precise here.  We only distinguish between
291   // stripped and not stripped.
292   abilities = kAllAbilities;
293 
294   if (m_index->dbi().isStripped())
295     abilities &= ~(Blocks | LocalVariables);
296   return abilities;
297 }
298 
299 void SymbolFileNativePDB::InitializeObject() {
300   m_obj_load_address = m_objfile_sp->GetModule()
301                            ->GetObjectFile()
302                            ->GetBaseAddress()
303                            .GetFileAddress();
304   m_index->SetLoadAddress(m_obj_load_address);
305   m_index->ParseSectionContribs();
306 
307   auto ts_or_err = m_objfile_sp->GetModule()->GetTypeSystemForLanguage(
308       lldb::eLanguageTypeC_plus_plus);
309   if (auto err = ts_or_err.takeError()) {
310     LLDB_LOG_ERROR(GetLog(LLDBLog::Symbols), std::move(err),
311                    "Failed to initialize");
312   } else {
313     ts_or_err->SetSymbolFile(this);
314     auto *clang = llvm::cast_or_null<TypeSystemClang>(&ts_or_err.get());
315     lldbassert(clang);
316     m_ast = std::make_unique<PdbAstBuilder>(*m_objfile_sp, *m_index, *clang);
317   }
318 }
319 
320 uint32_t SymbolFileNativePDB::CalculateNumCompileUnits() {
321   const DbiModuleList &modules = m_index->dbi().modules();
322   uint32_t count = modules.getModuleCount();
323   if (count == 0)
324     return count;
325 
326   // The linker can inject an additional "dummy" compilation unit into the
327   // PDB. Ignore this special compile unit for our purposes, if it is there.
328   // It is always the last one.
329   DbiModuleDescriptor last = modules.getModuleDescriptor(count - 1);
330   if (last.getModuleName() == "* Linker *")
331     --count;
332   return count;
333 }
334 
335 Block &SymbolFileNativePDB::CreateBlock(PdbCompilandSymId block_id) {
336   CompilandIndexItem *cii = m_index->compilands().GetCompiland(block_id.modi);
337   CVSymbol sym = cii->m_debug_stream.readSymbolAtOffset(block_id.offset);
338   CompUnitSP comp_unit = GetOrCreateCompileUnit(*cii);
339   lldb::user_id_t opaque_block_uid = toOpaqueUid(block_id);
340   BlockSP child_block = std::make_shared<Block>(opaque_block_uid);
341 
342   switch (sym.kind()) {
343   case S_GPROC32:
344   case S_LPROC32: {
345     // This is a function.  It must be global.  Creating the Function entry
346     // for it automatically creates a block for it.
347     FunctionSP func = GetOrCreateFunction(block_id, *comp_unit);
348     Block &block = func->GetBlock(false);
349     if (block.GetNumRanges() == 0)
350       block.AddRange(Block::Range(0, func->GetAddressRange().GetByteSize()));
351     return block;
352   }
353   case S_BLOCK32: {
354     // This is a block.  Its parent is either a function or another block.  In
355     // either case, its parent can be viewed as a block (e.g. a function
356     // contains 1 big block.  So just get the parent block and add this block
357     // to it.
358     BlockSym block(static_cast<SymbolRecordKind>(sym.kind()));
359     cantFail(SymbolDeserializer::deserializeAs<BlockSym>(sym, block));
360     lldbassert(block.Parent != 0);
361     PdbCompilandSymId parent_id(block_id.modi, block.Parent);
362     Block &parent_block = GetOrCreateBlock(parent_id);
363     parent_block.AddChild(child_block);
364     m_ast->GetOrCreateBlockDecl(block_id);
365     m_blocks.insert({opaque_block_uid, child_block});
366     break;
367   }
368   case S_INLINESITE: {
369     // This ensures line table is parsed first so we have inline sites info.
370     comp_unit->GetLineTable();
371 
372     std::shared_ptr<InlineSite> inline_site = m_inline_sites[opaque_block_uid];
373     Block &parent_block = GetOrCreateBlock(inline_site->parent_id);
374     parent_block.AddChild(child_block);
375     m_ast->GetOrCreateInlinedFunctionDecl(block_id);
376     // Copy ranges from InlineSite to Block.
377     for (size_t i = 0; i < inline_site->ranges.GetSize(); ++i) {
378       auto *entry = inline_site->ranges.GetEntryAtIndex(i);
379       child_block->AddRange(
380           Block::Range(entry->GetRangeBase(), entry->GetByteSize()));
381     }
382     child_block->FinalizeRanges();
383 
384     // Get the inlined function callsite info.
385     Declaration &decl = inline_site->inline_function_info->GetDeclaration();
386     Declaration &callsite = inline_site->inline_function_info->GetCallSite();
387     child_block->SetInlinedFunctionInfo(
388         inline_site->inline_function_info->GetName().GetCString(), nullptr,
389         &decl, &callsite);
390     m_blocks.insert({opaque_block_uid, child_block});
391     break;
392   }
393   default:
394     lldbassert(false && "Symbol is not a block!");
395   }
396 
397   return *child_block;
398 }
399 
400 lldb::FunctionSP SymbolFileNativePDB::CreateFunction(PdbCompilandSymId func_id,
401                                                      CompileUnit &comp_unit) {
402   const CompilandIndexItem *cci =
403       m_index->compilands().GetCompiland(func_id.modi);
404   lldbassert(cci);
405   CVSymbol sym_record = cci->m_debug_stream.readSymbolAtOffset(func_id.offset);
406 
407   lldbassert(sym_record.kind() == S_LPROC32 || sym_record.kind() == S_GPROC32);
408   SegmentOffsetLength sol = GetSegmentOffsetAndLength(sym_record);
409 
410   auto file_vm_addr = m_index->MakeVirtualAddress(sol.so);
411   if (file_vm_addr == LLDB_INVALID_ADDRESS || file_vm_addr == 0)
412     return nullptr;
413 
414   AddressRange func_range(file_vm_addr, sol.length,
415                           comp_unit.GetModule()->GetSectionList());
416   if (!func_range.GetBaseAddress().IsValid())
417     return nullptr;
418 
419   ProcSym proc(static_cast<SymbolRecordKind>(sym_record.kind()));
420   cantFail(SymbolDeserializer::deserializeAs<ProcSym>(sym_record, proc));
421   if (proc.FunctionType == TypeIndex::None())
422     return nullptr;
423   TypeSP func_type = GetOrCreateType(proc.FunctionType);
424   if (!func_type)
425     return nullptr;
426 
427   PdbTypeSymId sig_id(proc.FunctionType, false);
428   Mangled mangled(proc.Name);
429   FunctionSP func_sp = std::make_shared<Function>(
430       &comp_unit, toOpaqueUid(func_id), toOpaqueUid(sig_id), mangled,
431       func_type.get(), func_range);
432 
433   comp_unit.AddFunction(func_sp);
434 
435   m_ast->GetOrCreateFunctionDecl(func_id);
436 
437   return func_sp;
438 }
439 
440 CompUnitSP
441 SymbolFileNativePDB::CreateCompileUnit(const CompilandIndexItem &cci) {
442   lldb::LanguageType lang =
443       cci.m_compile_opts ? TranslateLanguage(cci.m_compile_opts->getLanguage())
444                          : lldb::eLanguageTypeUnknown;
445 
446   LazyBool optimized = eLazyBoolNo;
447   if (cci.m_compile_opts && cci.m_compile_opts->hasOptimizations())
448     optimized = eLazyBoolYes;
449 
450   llvm::SmallString<64> source_file_name =
451       m_index->compilands().GetMainSourceFile(cci);
452   FileSpec fs(source_file_name);
453 
454   CompUnitSP cu_sp =
455       std::make_shared<CompileUnit>(m_objfile_sp->GetModule(), nullptr, fs,
456                                     toOpaqueUid(cci.m_id), lang, optimized);
457 
458   SetCompileUnitAtIndex(cci.m_id.modi, cu_sp);
459   return cu_sp;
460 }
461 
462 lldb::TypeSP SymbolFileNativePDB::CreateModifierType(PdbTypeSymId type_id,
463                                                      const ModifierRecord &mr,
464                                                      CompilerType ct) {
465   TpiStream &stream = m_index->tpi();
466 
467   std::string name;
468   if (mr.ModifiedType.isSimple())
469     name = std::string(GetSimpleTypeName(mr.ModifiedType.getSimpleKind()));
470   else
471     name = computeTypeName(stream.typeCollection(), mr.ModifiedType);
472   Declaration decl;
473   lldb::TypeSP modified_type = GetOrCreateType(mr.ModifiedType);
474 
475   return std::make_shared<Type>(toOpaqueUid(type_id), this, ConstString(name),
476                                 modified_type->GetByteSize(nullptr), nullptr,
477                                 LLDB_INVALID_UID, Type::eEncodingIsUID, decl,
478                                 ct, Type::ResolveState::Full);
479 }
480 
481 lldb::TypeSP
482 SymbolFileNativePDB::CreatePointerType(PdbTypeSymId type_id,
483                                        const llvm::codeview::PointerRecord &pr,
484                                        CompilerType ct) {
485   TypeSP pointee = GetOrCreateType(pr.ReferentType);
486   if (!pointee)
487     return nullptr;
488 
489   if (pr.isPointerToMember()) {
490     MemberPointerInfo mpi = pr.getMemberInfo();
491     GetOrCreateType(mpi.ContainingType);
492   }
493 
494   Declaration decl;
495   return std::make_shared<Type>(toOpaqueUid(type_id), this, ConstString(),
496                                 pr.getSize(), nullptr, LLDB_INVALID_UID,
497                                 Type::eEncodingIsUID, decl, ct,
498                                 Type::ResolveState::Full);
499 }
500 
501 lldb::TypeSP SymbolFileNativePDB::CreateSimpleType(TypeIndex ti,
502                                                    CompilerType ct) {
503   uint64_t uid = toOpaqueUid(PdbTypeSymId(ti, false));
504   if (ti == TypeIndex::NullptrT()) {
505     Declaration decl;
506     return std::make_shared<Type>(
507         uid, this, ConstString("std::nullptr_t"), 0, nullptr, LLDB_INVALID_UID,
508         Type::eEncodingIsUID, decl, ct, Type::ResolveState::Full);
509   }
510 
511   if (ti.getSimpleMode() != SimpleTypeMode::Direct) {
512     TypeSP direct_sp = GetOrCreateType(ti.makeDirect());
513     uint32_t pointer_size = 0;
514     switch (ti.getSimpleMode()) {
515     case SimpleTypeMode::FarPointer32:
516     case SimpleTypeMode::NearPointer32:
517       pointer_size = 4;
518       break;
519     case SimpleTypeMode::NearPointer64:
520       pointer_size = 8;
521       break;
522     default:
523       // 128-bit and 16-bit pointers unsupported.
524       return nullptr;
525     }
526     Declaration decl;
527     return std::make_shared<Type>(
528         uid, this, ConstString(), pointer_size, nullptr, LLDB_INVALID_UID,
529         Type::eEncodingIsUID, decl, ct, Type::ResolveState::Full);
530   }
531 
532   if (ti.getSimpleKind() == SimpleTypeKind::NotTranslated)
533     return nullptr;
534 
535   size_t size = GetTypeSizeForSimpleKind(ti.getSimpleKind());
536   llvm::StringRef type_name = GetSimpleTypeName(ti.getSimpleKind());
537 
538   Declaration decl;
539   return std::make_shared<Type>(uid, this, ConstString(type_name), size,
540                                 nullptr, LLDB_INVALID_UID, Type::eEncodingIsUID,
541                                 decl, ct, Type::ResolveState::Full);
542 }
543 
544 static std::string GetUnqualifiedTypeName(const TagRecord &record) {
545   if (!record.hasUniqueName()) {
546     MSVCUndecoratedNameParser parser(record.Name);
547     llvm::ArrayRef<MSVCUndecoratedNameSpecifier> specs = parser.GetSpecifiers();
548 
549     return std::string(specs.back().GetBaseName());
550   }
551 
552   llvm::ms_demangle::Demangler demangler;
553   StringView sv(record.UniqueName.begin(), record.UniqueName.size());
554   llvm::ms_demangle::TagTypeNode *ttn = demangler.parseTagUniqueName(sv);
555   if (demangler.Error)
556     return std::string(record.Name);
557 
558   llvm::ms_demangle::IdentifierNode *idn =
559       ttn->QualifiedName->getUnqualifiedIdentifier();
560   return idn->toString();
561 }
562 
563 lldb::TypeSP
564 SymbolFileNativePDB::CreateClassStructUnion(PdbTypeSymId type_id,
565                                             const TagRecord &record,
566                                             size_t size, CompilerType ct) {
567 
568   std::string uname = GetUnqualifiedTypeName(record);
569 
570   // FIXME: Search IPI stream for LF_UDT_MOD_SRC_LINE.
571   Declaration decl;
572   return std::make_shared<Type>(toOpaqueUid(type_id), this, ConstString(uname),
573                                 size, nullptr, LLDB_INVALID_UID,
574                                 Type::eEncodingIsUID, decl, ct,
575                                 Type::ResolveState::Forward);
576 }
577 
578 lldb::TypeSP SymbolFileNativePDB::CreateTagType(PdbTypeSymId type_id,
579                                                 const ClassRecord &cr,
580                                                 CompilerType ct) {
581   return CreateClassStructUnion(type_id, cr, cr.getSize(), ct);
582 }
583 
584 lldb::TypeSP SymbolFileNativePDB::CreateTagType(PdbTypeSymId type_id,
585                                                 const UnionRecord &ur,
586                                                 CompilerType ct) {
587   return CreateClassStructUnion(type_id, ur, ur.getSize(), ct);
588 }
589 
590 lldb::TypeSP SymbolFileNativePDB::CreateTagType(PdbTypeSymId type_id,
591                                                 const EnumRecord &er,
592                                                 CompilerType ct) {
593   std::string uname = GetUnqualifiedTypeName(er);
594 
595   Declaration decl;
596   TypeSP underlying_type = GetOrCreateType(er.UnderlyingType);
597 
598   return std::make_shared<lldb_private::Type>(
599       toOpaqueUid(type_id), this, ConstString(uname),
600       underlying_type->GetByteSize(nullptr), nullptr, LLDB_INVALID_UID,
601       lldb_private::Type::eEncodingIsUID, decl, ct,
602       lldb_private::Type::ResolveState::Forward);
603 }
604 
605 TypeSP SymbolFileNativePDB::CreateArrayType(PdbTypeSymId type_id,
606                                             const ArrayRecord &ar,
607                                             CompilerType ct) {
608   TypeSP element_type = GetOrCreateType(ar.ElementType);
609 
610   Declaration decl;
611   TypeSP array_sp = std::make_shared<lldb_private::Type>(
612       toOpaqueUid(type_id), this, ConstString(), ar.Size, nullptr,
613       LLDB_INVALID_UID, lldb_private::Type::eEncodingIsUID, decl, ct,
614       lldb_private::Type::ResolveState::Full);
615   array_sp->SetEncodingType(element_type.get());
616   return array_sp;
617 }
618 
619 
620 TypeSP SymbolFileNativePDB::CreateFunctionType(PdbTypeSymId type_id,
621                                                const MemberFunctionRecord &mfr,
622                                                CompilerType ct) {
623   Declaration decl;
624   return std::make_shared<lldb_private::Type>(
625       toOpaqueUid(type_id), this, ConstString(), 0, nullptr, LLDB_INVALID_UID,
626       lldb_private::Type::eEncodingIsUID, decl, ct,
627       lldb_private::Type::ResolveState::Full);
628 }
629 
630 TypeSP SymbolFileNativePDB::CreateProcedureType(PdbTypeSymId type_id,
631                                                 const ProcedureRecord &pr,
632                                                 CompilerType ct) {
633   Declaration decl;
634   return std::make_shared<lldb_private::Type>(
635       toOpaqueUid(type_id), this, ConstString(), 0, nullptr, LLDB_INVALID_UID,
636       lldb_private::Type::eEncodingIsUID, decl, ct,
637       lldb_private::Type::ResolveState::Full);
638 }
639 
640 TypeSP SymbolFileNativePDB::CreateType(PdbTypeSymId type_id, CompilerType ct) {
641   if (type_id.index.isSimple())
642     return CreateSimpleType(type_id.index, ct);
643 
644   TpiStream &stream = type_id.is_ipi ? m_index->ipi() : m_index->tpi();
645   CVType cvt = stream.getType(type_id.index);
646 
647   if (cvt.kind() == LF_MODIFIER) {
648     ModifierRecord modifier;
649     llvm::cantFail(
650         TypeDeserializer::deserializeAs<ModifierRecord>(cvt, modifier));
651     return CreateModifierType(type_id, modifier, ct);
652   }
653 
654   if (cvt.kind() == LF_POINTER) {
655     PointerRecord pointer;
656     llvm::cantFail(
657         TypeDeserializer::deserializeAs<PointerRecord>(cvt, pointer));
658     return CreatePointerType(type_id, pointer, ct);
659   }
660 
661   if (IsClassRecord(cvt.kind())) {
662     ClassRecord cr;
663     llvm::cantFail(TypeDeserializer::deserializeAs<ClassRecord>(cvt, cr));
664     return CreateTagType(type_id, cr, ct);
665   }
666 
667   if (cvt.kind() == LF_ENUM) {
668     EnumRecord er;
669     llvm::cantFail(TypeDeserializer::deserializeAs<EnumRecord>(cvt, er));
670     return CreateTagType(type_id, er, ct);
671   }
672 
673   if (cvt.kind() == LF_UNION) {
674     UnionRecord ur;
675     llvm::cantFail(TypeDeserializer::deserializeAs<UnionRecord>(cvt, ur));
676     return CreateTagType(type_id, ur, ct);
677   }
678 
679   if (cvt.kind() == LF_ARRAY) {
680     ArrayRecord ar;
681     llvm::cantFail(TypeDeserializer::deserializeAs<ArrayRecord>(cvt, ar));
682     return CreateArrayType(type_id, ar, ct);
683   }
684 
685   if (cvt.kind() == LF_PROCEDURE) {
686     ProcedureRecord pr;
687     llvm::cantFail(TypeDeserializer::deserializeAs<ProcedureRecord>(cvt, pr));
688     return CreateProcedureType(type_id, pr, ct);
689   }
690   if (cvt.kind() == LF_MFUNCTION) {
691     MemberFunctionRecord mfr;
692     llvm::cantFail(TypeDeserializer::deserializeAs<MemberFunctionRecord>(cvt, mfr));
693     return CreateFunctionType(type_id, mfr, ct);
694   }
695 
696   return nullptr;
697 }
698 
699 TypeSP SymbolFileNativePDB::CreateAndCacheType(PdbTypeSymId type_id) {
700   // If they search for a UDT which is a forward ref, try and resolve the full
701   // decl and just map the forward ref uid to the full decl record.
702   llvm::Optional<PdbTypeSymId> full_decl_uid;
703   if (IsForwardRefUdt(type_id, m_index->tpi())) {
704     auto expected_full_ti =
705         m_index->tpi().findFullDeclForForwardRef(type_id.index);
706     if (!expected_full_ti)
707       llvm::consumeError(expected_full_ti.takeError());
708     else if (*expected_full_ti != type_id.index) {
709       full_decl_uid = PdbTypeSymId(*expected_full_ti, false);
710 
711       // It's possible that a lookup would occur for the full decl causing it
712       // to be cached, then a second lookup would occur for the forward decl.
713       // We don't want to create a second full decl, so make sure the full
714       // decl hasn't already been cached.
715       auto full_iter = m_types.find(toOpaqueUid(*full_decl_uid));
716       if (full_iter != m_types.end()) {
717         TypeSP result = full_iter->second;
718         // Map the forward decl to the TypeSP for the full decl so we can take
719         // the fast path next time.
720         m_types[toOpaqueUid(type_id)] = result;
721         return result;
722       }
723     }
724   }
725 
726   PdbTypeSymId best_decl_id = full_decl_uid ? *full_decl_uid : type_id;
727 
728   clang::QualType qt = m_ast->GetOrCreateType(best_decl_id);
729 
730   TypeSP result = CreateType(best_decl_id, m_ast->ToCompilerType(qt));
731   if (!result)
732     return nullptr;
733 
734   uint64_t best_uid = toOpaqueUid(best_decl_id);
735   m_types[best_uid] = result;
736   // If we had both a forward decl and a full decl, make both point to the new
737   // type.
738   if (full_decl_uid)
739     m_types[toOpaqueUid(type_id)] = result;
740 
741   return result;
742 }
743 
744 TypeSP SymbolFileNativePDB::GetOrCreateType(PdbTypeSymId type_id) {
745   // We can't use try_emplace / overwrite here because the process of creating
746   // a type could create nested types, which could invalidate iterators.  So
747   // we have to do a 2-phase lookup / insert.
748   auto iter = m_types.find(toOpaqueUid(type_id));
749   if (iter != m_types.end())
750     return iter->second;
751 
752   TypeSP type = CreateAndCacheType(type_id);
753   if (type)
754     GetTypeList().Insert(type);
755   return type;
756 }
757 
758 VariableSP SymbolFileNativePDB::CreateGlobalVariable(PdbGlobalSymId var_id) {
759   CVSymbol sym = m_index->symrecords().readRecord(var_id.offset);
760   if (sym.kind() == S_CONSTANT)
761     return CreateConstantSymbol(var_id, sym);
762 
763   lldb::ValueType scope = eValueTypeInvalid;
764   TypeIndex ti;
765   llvm::StringRef name;
766   lldb::addr_t addr = 0;
767   uint16_t section = 0;
768   uint32_t offset = 0;
769   bool is_external = false;
770   switch (sym.kind()) {
771   case S_GDATA32:
772     is_external = true;
773     LLVM_FALLTHROUGH;
774   case S_LDATA32: {
775     DataSym ds(sym.kind());
776     llvm::cantFail(SymbolDeserializer::deserializeAs<DataSym>(sym, ds));
777     ti = ds.Type;
778     scope = (sym.kind() == S_GDATA32) ? eValueTypeVariableGlobal
779                                       : eValueTypeVariableStatic;
780     name = ds.Name;
781     section = ds.Segment;
782     offset = ds.DataOffset;
783     addr = m_index->MakeVirtualAddress(ds.Segment, ds.DataOffset);
784     break;
785   }
786   case S_GTHREAD32:
787     is_external = true;
788     LLVM_FALLTHROUGH;
789   case S_LTHREAD32: {
790     ThreadLocalDataSym tlds(sym.kind());
791     llvm::cantFail(
792         SymbolDeserializer::deserializeAs<ThreadLocalDataSym>(sym, tlds));
793     ti = tlds.Type;
794     name = tlds.Name;
795     section = tlds.Segment;
796     offset = tlds.DataOffset;
797     addr = m_index->MakeVirtualAddress(tlds.Segment, tlds.DataOffset);
798     scope = eValueTypeVariableThreadLocal;
799     break;
800   }
801   default:
802     llvm_unreachable("unreachable!");
803   }
804 
805   CompUnitSP comp_unit;
806   llvm::Optional<uint16_t> modi = m_index->GetModuleIndexForVa(addr);
807   if (modi) {
808     CompilandIndexItem &cci = m_index->compilands().GetOrCreateCompiland(*modi);
809     comp_unit = GetOrCreateCompileUnit(cci);
810   }
811 
812   Declaration decl;
813   PdbTypeSymId tid(ti, false);
814   SymbolFileTypeSP type_sp =
815       std::make_shared<SymbolFileType>(*this, toOpaqueUid(tid));
816   Variable::RangeList ranges;
817 
818   m_ast->GetOrCreateVariableDecl(var_id);
819 
820   DWARFExpression location = MakeGlobalLocationExpression(
821       section, offset, GetObjectFile()->GetModule());
822 
823   std::string global_name("::");
824   global_name += name;
825   bool artificial = false;
826   bool location_is_constant_data = false;
827   bool static_member = false;
828   VariableSP var_sp = std::make_shared<Variable>(
829       toOpaqueUid(var_id), name.str().c_str(), global_name.c_str(), type_sp,
830       scope, comp_unit.get(), ranges, &decl, location, is_external, artificial,
831       location_is_constant_data, static_member);
832 
833   return var_sp;
834 }
835 
836 lldb::VariableSP
837 SymbolFileNativePDB::CreateConstantSymbol(PdbGlobalSymId var_id,
838                                           const CVSymbol &cvs) {
839   TpiStream &tpi = m_index->tpi();
840   ConstantSym constant(cvs.kind());
841 
842   llvm::cantFail(SymbolDeserializer::deserializeAs<ConstantSym>(cvs, constant));
843   std::string global_name("::");
844   global_name += constant.Name;
845   PdbTypeSymId tid(constant.Type, false);
846   SymbolFileTypeSP type_sp =
847       std::make_shared<SymbolFileType>(*this, toOpaqueUid(tid));
848 
849   Declaration decl;
850   Variable::RangeList ranges;
851   ModuleSP module = GetObjectFile()->GetModule();
852   DWARFExpression location = MakeConstantLocationExpression(
853       constant.Type, tpi, constant.Value, module);
854 
855   bool external = false;
856   bool artificial = false;
857   bool location_is_constant_data = true;
858   bool static_member = false;
859   VariableSP var_sp = std::make_shared<Variable>(
860       toOpaqueUid(var_id), constant.Name.str().c_str(), global_name.c_str(),
861       type_sp, eValueTypeVariableGlobal, module.get(), ranges, &decl, location,
862       external, artificial, location_is_constant_data, static_member);
863   return var_sp;
864 }
865 
866 VariableSP
867 SymbolFileNativePDB::GetOrCreateGlobalVariable(PdbGlobalSymId var_id) {
868   auto emplace_result = m_global_vars.try_emplace(toOpaqueUid(var_id), nullptr);
869   if (emplace_result.second)
870     emplace_result.first->second = CreateGlobalVariable(var_id);
871 
872   return emplace_result.first->second;
873 }
874 
875 lldb::TypeSP SymbolFileNativePDB::GetOrCreateType(TypeIndex ti) {
876   return GetOrCreateType(PdbTypeSymId(ti, false));
877 }
878 
879 FunctionSP SymbolFileNativePDB::GetOrCreateFunction(PdbCompilandSymId func_id,
880                                                     CompileUnit &comp_unit) {
881   auto emplace_result = m_functions.try_emplace(toOpaqueUid(func_id), nullptr);
882   if (emplace_result.second)
883     emplace_result.first->second = CreateFunction(func_id, comp_unit);
884 
885   return emplace_result.first->second;
886 }
887 
888 CompUnitSP
889 SymbolFileNativePDB::GetOrCreateCompileUnit(const CompilandIndexItem &cci) {
890 
891   auto emplace_result =
892       m_compilands.try_emplace(toOpaqueUid(cci.m_id), nullptr);
893   if (emplace_result.second)
894     emplace_result.first->second = CreateCompileUnit(cci);
895 
896   lldbassert(emplace_result.first->second);
897   return emplace_result.first->second;
898 }
899 
900 Block &SymbolFileNativePDB::GetOrCreateBlock(PdbCompilandSymId block_id) {
901   auto iter = m_blocks.find(toOpaqueUid(block_id));
902   if (iter != m_blocks.end())
903     return *iter->second;
904 
905   return CreateBlock(block_id);
906 }
907 
908 void SymbolFileNativePDB::ParseDeclsForContext(
909     lldb_private::CompilerDeclContext decl_ctx) {
910   clang::DeclContext *context = m_ast->FromCompilerDeclContext(decl_ctx);
911   if (!context)
912     return;
913   m_ast->ParseDeclsForContext(*context);
914 }
915 
916 lldb::CompUnitSP SymbolFileNativePDB::ParseCompileUnitAtIndex(uint32_t index) {
917   if (index >= GetNumCompileUnits())
918     return CompUnitSP();
919   lldbassert(index < UINT16_MAX);
920   if (index >= UINT16_MAX)
921     return nullptr;
922 
923   CompilandIndexItem &item = m_index->compilands().GetOrCreateCompiland(index);
924 
925   return GetOrCreateCompileUnit(item);
926 }
927 
928 lldb::LanguageType SymbolFileNativePDB::ParseLanguage(CompileUnit &comp_unit) {
929   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
930   PdbSymUid uid(comp_unit.GetID());
931   lldbassert(uid.kind() == PdbSymUidKind::Compiland);
932 
933   CompilandIndexItem *item =
934       m_index->compilands().GetCompiland(uid.asCompiland().modi);
935   lldbassert(item);
936   if (!item->m_compile_opts)
937     return lldb::eLanguageTypeUnknown;
938 
939   return TranslateLanguage(item->m_compile_opts->getLanguage());
940 }
941 
942 void SymbolFileNativePDB::AddSymbols(Symtab &symtab) {}
943 
944 size_t SymbolFileNativePDB::ParseFunctions(CompileUnit &comp_unit) {
945   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
946   PdbSymUid uid{comp_unit.GetID()};
947   lldbassert(uid.kind() == PdbSymUidKind::Compiland);
948   uint16_t modi = uid.asCompiland().modi;
949   CompilandIndexItem &cii = m_index->compilands().GetOrCreateCompiland(modi);
950 
951   size_t count = comp_unit.GetNumFunctions();
952   const CVSymbolArray &syms = cii.m_debug_stream.getSymbolArray();
953   for (auto iter = syms.begin(); iter != syms.end(); ++iter) {
954     if (iter->kind() != S_LPROC32 && iter->kind() != S_GPROC32)
955       continue;
956 
957     PdbCompilandSymId sym_id{modi, iter.offset()};
958 
959     FunctionSP func = GetOrCreateFunction(sym_id, comp_unit);
960   }
961 
962   size_t new_count = comp_unit.GetNumFunctions();
963   lldbassert(new_count >= count);
964   return new_count - count;
965 }
966 
967 static bool NeedsResolvedCompileUnit(uint32_t resolve_scope) {
968   // If any of these flags are set, we need to resolve the compile unit.
969   uint32_t flags = eSymbolContextCompUnit;
970   flags |= eSymbolContextVariable;
971   flags |= eSymbolContextFunction;
972   flags |= eSymbolContextBlock;
973   flags |= eSymbolContextLineEntry;
974   return (resolve_scope & flags) != 0;
975 }
976 
977 uint32_t SymbolFileNativePDB::ResolveSymbolContext(
978     const Address &addr, SymbolContextItem resolve_scope, SymbolContext &sc) {
979   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
980   uint32_t resolved_flags = 0;
981   lldb::addr_t file_addr = addr.GetFileAddress();
982 
983   if (NeedsResolvedCompileUnit(resolve_scope)) {
984     llvm::Optional<uint16_t> modi = m_index->GetModuleIndexForVa(file_addr);
985     if (!modi)
986       return 0;
987     CompUnitSP cu_sp = GetCompileUnitAtIndex(modi.getValue());
988     if (!cu_sp)
989       return 0;
990 
991     sc.comp_unit = cu_sp.get();
992     resolved_flags |= eSymbolContextCompUnit;
993   }
994 
995   if (resolve_scope & eSymbolContextFunction ||
996       resolve_scope & eSymbolContextBlock) {
997     lldbassert(sc.comp_unit);
998     std::vector<SymbolAndUid> matches = m_index->FindSymbolsByVa(file_addr);
999     // Search the matches in reverse.  This way if there are multiple matches
1000     // (for example we are 3 levels deep in a nested scope) it will find the
1001     // innermost one first.
1002     for (const auto &match : llvm::reverse(matches)) {
1003       if (match.uid.kind() != PdbSymUidKind::CompilandSym)
1004         continue;
1005 
1006       PdbCompilandSymId csid = match.uid.asCompilandSym();
1007       CVSymbol cvs = m_index->ReadSymbolRecord(csid);
1008       PDB_SymType type = CVSymToPDBSym(cvs.kind());
1009       if (type != PDB_SymType::Function && type != PDB_SymType::Block)
1010         continue;
1011       if (type == PDB_SymType::Function) {
1012         sc.function = GetOrCreateFunction(csid, *sc.comp_unit).get();
1013         Block &block = sc.function->GetBlock(true);
1014         addr_t func_base =
1015             sc.function->GetAddressRange().GetBaseAddress().GetFileAddress();
1016         addr_t offset = file_addr - func_base;
1017         sc.block = block.FindInnermostBlockByOffset(offset);
1018       }
1019 
1020       if (type == PDB_SymType::Block) {
1021         sc.block = &GetOrCreateBlock(csid);
1022         sc.function = sc.block->CalculateSymbolContextFunction();
1023       }
1024       if (sc.function)
1025         resolved_flags |= eSymbolContextFunction;
1026       if (sc.block)
1027         resolved_flags |= eSymbolContextBlock;
1028       break;
1029     }
1030   }
1031 
1032   if (resolve_scope & eSymbolContextLineEntry) {
1033     lldbassert(sc.comp_unit);
1034     if (auto *line_table = sc.comp_unit->GetLineTable()) {
1035       if (line_table->FindLineEntryByAddress(addr, sc.line_entry))
1036         resolved_flags |= eSymbolContextLineEntry;
1037     }
1038   }
1039 
1040   return resolved_flags;
1041 }
1042 
1043 uint32_t SymbolFileNativePDB::ResolveSymbolContext(
1044     const SourceLocationSpec &src_location_spec,
1045     lldb::SymbolContextItem resolve_scope, SymbolContextList &sc_list) {
1046   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1047   const uint32_t prev_size = sc_list.GetSize();
1048   if (resolve_scope & eSymbolContextCompUnit) {
1049     for (uint32_t cu_idx = 0, num_cus = GetNumCompileUnits(); cu_idx < num_cus;
1050          ++cu_idx) {
1051       CompileUnit *cu = ParseCompileUnitAtIndex(cu_idx).get();
1052       if (!cu)
1053         continue;
1054 
1055       bool file_spec_matches_cu_file_spec = FileSpec::Match(
1056           src_location_spec.GetFileSpec(), cu->GetPrimaryFile());
1057       if (file_spec_matches_cu_file_spec) {
1058         cu->ResolveSymbolContext(src_location_spec, resolve_scope, sc_list);
1059         break;
1060       }
1061     }
1062   }
1063   return sc_list.GetSize() - prev_size;
1064 }
1065 
1066 bool SymbolFileNativePDB::ParseLineTable(CompileUnit &comp_unit) {
1067   // Unfortunately LLDB is set up to parse the entire compile unit line table
1068   // all at once, even if all it really needs is line info for a specific
1069   // function.  In the future it would be nice if it could set the sc.m_function
1070   // member, and we could only get the line info for the function in question.
1071   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1072   PdbSymUid cu_id(comp_unit.GetID());
1073   lldbassert(cu_id.kind() == PdbSymUidKind::Compiland);
1074   uint16_t modi = cu_id.asCompiland().modi;
1075   CompilandIndexItem *cii = m_index->compilands().GetCompiland(modi);
1076   lldbassert(cii);
1077 
1078   // Parse DEBUG_S_LINES subsections first, then parse all S_INLINESITE records
1079   // in this CU. Add line entries into the set first so that if there are line
1080   // entries with same addres, the later is always more accurate than the
1081   // former.
1082   std::set<LineTable::Entry, LineTableEntryComparator> line_set;
1083 
1084   // This is basically a copy of the .debug$S subsections from all original COFF
1085   // object files merged together with address relocations applied.  We are
1086   // looking for all DEBUG_S_LINES subsections.
1087   for (const DebugSubsectionRecord &dssr :
1088        cii->m_debug_stream.getSubsectionsArray()) {
1089     if (dssr.kind() != DebugSubsectionKind::Lines)
1090       continue;
1091 
1092     DebugLinesSubsectionRef lines;
1093     llvm::BinaryStreamReader reader(dssr.getRecordData());
1094     if (auto EC = lines.initialize(reader)) {
1095       llvm::consumeError(std::move(EC));
1096       return false;
1097     }
1098 
1099     const LineFragmentHeader *lfh = lines.header();
1100     uint64_t virtual_addr =
1101         m_index->MakeVirtualAddress(lfh->RelocSegment, lfh->RelocOffset);
1102 
1103     for (const LineColumnEntry &group : lines) {
1104       llvm::Expected<uint32_t> file_index_or_err =
1105           GetFileIndex(*cii, group.NameIndex);
1106       if (!file_index_or_err)
1107         continue;
1108       uint32_t file_index = file_index_or_err.get();
1109       lldbassert(!group.LineNumbers.empty());
1110       CompilandIndexItem::GlobalLineTable::Entry line_entry(
1111           LLDB_INVALID_ADDRESS, 0);
1112       for (const LineNumberEntry &entry : group.LineNumbers) {
1113         LineInfo cur_info(entry.Flags);
1114 
1115         if (cur_info.isAlwaysStepInto() || cur_info.isNeverStepInto())
1116           continue;
1117 
1118         uint64_t addr = virtual_addr + entry.Offset;
1119 
1120         bool is_statement = cur_info.isStatement();
1121         bool is_prologue = IsFunctionPrologue(*cii, addr);
1122         bool is_epilogue = IsFunctionEpilogue(*cii, addr);
1123 
1124         uint32_t lno = cur_info.getStartLine();
1125 
1126         LineTable::Entry new_entry(addr, lno, 0, file_index, is_statement, false,
1127                                  is_prologue, is_epilogue, false);
1128         // Terminal entry has lower precedence than new entry.
1129         auto iter = line_set.find(new_entry);
1130         if (iter != line_set.end() && iter->is_terminal_entry)
1131           line_set.erase(iter);
1132         line_set.insert(new_entry);
1133 
1134         if (line_entry.GetRangeBase() != LLDB_INVALID_ADDRESS) {
1135           line_entry.SetRangeEnd(addr);
1136           cii->m_global_line_table.Append(line_entry);
1137         }
1138         line_entry.SetRangeBase(addr);
1139         line_entry.data = {file_index, lno};
1140       }
1141       LineInfo last_line(group.LineNumbers.back().Flags);
1142       line_set.emplace(virtual_addr + lfh->CodeSize, last_line.getEndLine(), 0,
1143                        file_index, false, false, false, false, true);
1144 
1145       if (line_entry.GetRangeBase() != LLDB_INVALID_ADDRESS) {
1146         line_entry.SetRangeEnd(virtual_addr + lfh->CodeSize);
1147         cii->m_global_line_table.Append(line_entry);
1148       }
1149     }
1150   }
1151 
1152   cii->m_global_line_table.Sort();
1153 
1154   // Parse all S_INLINESITE in this CU.
1155   const CVSymbolArray &syms = cii->m_debug_stream.getSymbolArray();
1156   for (auto iter = syms.begin(); iter != syms.end();) {
1157     if (iter->kind() != S_LPROC32 && iter->kind() != S_GPROC32) {
1158       ++iter;
1159       continue;
1160     }
1161 
1162     uint32_t record_offset = iter.offset();
1163     CVSymbol func_record =
1164         cii->m_debug_stream.readSymbolAtOffset(record_offset);
1165     SegmentOffsetLength sol = GetSegmentOffsetAndLength(func_record);
1166     addr_t file_vm_addr = m_index->MakeVirtualAddress(sol.so);
1167     AddressRange func_range(file_vm_addr, sol.length,
1168                             comp_unit.GetModule()->GetSectionList());
1169     Address func_base = func_range.GetBaseAddress();
1170     PdbCompilandSymId func_id{modi, record_offset};
1171 
1172     // Iterate all S_INLINESITEs in the function.
1173     auto parse_inline_sites = [&](SymbolKind kind, PdbCompilandSymId id) {
1174       if (kind != S_INLINESITE)
1175         return false;
1176 
1177       ParseInlineSite(id, func_base);
1178 
1179       for (const auto &line_entry :
1180            m_inline_sites[toOpaqueUid(id)]->line_entries) {
1181         // If line_entry is not terminal entry, remove previous line entry at
1182         // the same address and insert new one. Terminal entry inside an inline
1183         // site might not be terminal entry for its parent.
1184         if (!line_entry.is_terminal_entry)
1185           line_set.erase(line_entry);
1186         line_set.insert(line_entry);
1187       }
1188       // No longer useful after adding to line_set.
1189       m_inline_sites[toOpaqueUid(id)]->line_entries.clear();
1190       return true;
1191     };
1192     ParseSymbolArrayInScope(func_id, parse_inline_sites);
1193     // Jump to the end of the function record.
1194     iter = syms.at(getScopeEndOffset(func_record));
1195   }
1196 
1197   cii->m_global_line_table.Clear();
1198 
1199   // Add line entries in line_set to line_table.
1200   auto line_table = std::make_unique<LineTable>(&comp_unit);
1201   std::unique_ptr<LineSequence> sequence(
1202       line_table->CreateLineSequenceContainer());
1203   for (const auto &line_entry : line_set) {
1204     line_table->AppendLineEntryToSequence(
1205         sequence.get(), line_entry.file_addr, line_entry.line,
1206         line_entry.column, line_entry.file_idx,
1207         line_entry.is_start_of_statement, line_entry.is_start_of_basic_block,
1208         line_entry.is_prologue_end, line_entry.is_epilogue_begin,
1209         line_entry.is_terminal_entry);
1210   }
1211   line_table->InsertSequence(sequence.get());
1212 
1213   if (line_table->GetSize() == 0)
1214     return false;
1215 
1216   comp_unit.SetLineTable(line_table.release());
1217   return true;
1218 }
1219 
1220 bool SymbolFileNativePDB::ParseDebugMacros(CompileUnit &comp_unit) {
1221   // PDB doesn't contain information about macros
1222   return false;
1223 }
1224 
1225 llvm::Expected<uint32_t>
1226 SymbolFileNativePDB::GetFileIndex(const CompilandIndexItem &cii,
1227                                   uint32_t file_id) {
1228   const auto &checksums = cii.m_strings.checksums().getArray();
1229   const auto &strings = cii.m_strings.strings();
1230   // Indices in this structure are actually offsets of records in the
1231   // DEBUG_S_FILECHECKSUMS subsection.  Those entries then have an index
1232   // into the global PDB string table.
1233   auto iter = checksums.at(file_id);
1234   if (iter == checksums.end())
1235     return llvm::make_error<RawError>(raw_error_code::no_entry);
1236 
1237   llvm::Expected<llvm::StringRef> efn = strings.getString(iter->FileNameOffset);
1238   if (!efn) {
1239     return efn.takeError();
1240   }
1241 
1242   // LLDB wants the index of the file in the list of support files.
1243   auto fn_iter = llvm::find(cii.m_file_list, *efn);
1244   if (fn_iter != cii.m_file_list.end())
1245     return std::distance(cii.m_file_list.begin(), fn_iter);
1246   return llvm::make_error<RawError>(raw_error_code::no_entry);
1247 }
1248 
1249 bool SymbolFileNativePDB::ParseSupportFiles(CompileUnit &comp_unit,
1250                                             FileSpecList &support_files) {
1251   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1252   PdbSymUid cu_id(comp_unit.GetID());
1253   lldbassert(cu_id.kind() == PdbSymUidKind::Compiland);
1254   CompilandIndexItem *cci =
1255       m_index->compilands().GetCompiland(cu_id.asCompiland().modi);
1256   lldbassert(cci);
1257 
1258   for (llvm::StringRef f : cci->m_file_list) {
1259     FileSpec::Style style =
1260         f.startswith("/") ? FileSpec::Style::posix : FileSpec::Style::windows;
1261     FileSpec spec(f, style);
1262     support_files.Append(spec);
1263   }
1264   return true;
1265 }
1266 
1267 bool SymbolFileNativePDB::ParseImportedModules(
1268     const SymbolContext &sc, std::vector<SourceModule> &imported_modules) {
1269   // PDB does not yet support module debug info
1270   return false;
1271 }
1272 
1273 void SymbolFileNativePDB::ParseInlineSite(PdbCompilandSymId id,
1274                                           Address func_addr) {
1275   lldb::user_id_t opaque_uid = toOpaqueUid(id);
1276   if (m_inline_sites.find(opaque_uid) != m_inline_sites.end())
1277     return;
1278 
1279   addr_t func_base = func_addr.GetFileAddress();
1280   CompilandIndexItem *cii = m_index->compilands().GetCompiland(id.modi);
1281   CVSymbol sym = cii->m_debug_stream.readSymbolAtOffset(id.offset);
1282   CompUnitSP comp_unit = GetOrCreateCompileUnit(*cii);
1283 
1284   InlineSiteSym inline_site(static_cast<SymbolRecordKind>(sym.kind()));
1285   cantFail(SymbolDeserializer::deserializeAs<InlineSiteSym>(sym, inline_site));
1286   PdbCompilandSymId parent_id(id.modi, inline_site.Parent);
1287 
1288   std::shared_ptr<InlineSite> inline_site_sp =
1289       std::make_shared<InlineSite>(parent_id);
1290 
1291   // Get the inlined function declaration info.
1292   auto iter = cii->m_inline_map.find(inline_site.Inlinee);
1293   if (iter == cii->m_inline_map.end())
1294     return;
1295   InlineeSourceLine inlinee_line = iter->second;
1296 
1297   const FileSpecList &files = comp_unit->GetSupportFiles();
1298   FileSpec decl_file;
1299   llvm::Expected<uint32_t> file_index_or_err =
1300       GetFileIndex(*cii, inlinee_line.Header->FileID);
1301   if (!file_index_or_err)
1302     return;
1303   uint32_t file_offset = file_index_or_err.get();
1304   decl_file = files.GetFileSpecAtIndex(file_offset);
1305   uint32_t decl_line = inlinee_line.Header->SourceLineNum;
1306   std::unique_ptr<Declaration> decl_up =
1307       std::make_unique<Declaration>(decl_file, decl_line);
1308 
1309   // Parse range and line info.
1310   uint32_t code_offset = 0;
1311   int32_t line_offset = 0;
1312   llvm::Optional<uint32_t> code_offset_base;
1313   llvm::Optional<uint32_t> code_offset_end;
1314   llvm::Optional<int32_t> cur_line_offset;
1315   llvm::Optional<int32_t> next_line_offset;
1316   llvm::Optional<uint32_t> next_file_offset;
1317 
1318   bool is_terminal_entry = false;
1319   bool is_start_of_statement = true;
1320   // The first instruction is the prologue end.
1321   bool is_prologue_end = true;
1322 
1323   auto update_code_offset = [&](uint32_t code_delta) {
1324     if (!code_offset_base)
1325       code_offset_base = code_offset;
1326     else if (!code_offset_end)
1327       code_offset_end = *code_offset_base + code_delta;
1328   };
1329   auto update_line_offset = [&](int32_t line_delta) {
1330     line_offset += line_delta;
1331     if (!code_offset_base || !cur_line_offset)
1332       cur_line_offset = line_offset;
1333     else
1334       next_line_offset = line_offset;
1335     ;
1336   };
1337   auto update_file_offset = [&](uint32_t offset) {
1338     if (!code_offset_base)
1339       file_offset = offset;
1340     else
1341       next_file_offset = offset;
1342   };
1343 
1344   for (auto &annot : inline_site.annotations()) {
1345     switch (annot.OpCode) {
1346     case BinaryAnnotationsOpCode::CodeOffset:
1347     case BinaryAnnotationsOpCode::ChangeCodeOffset:
1348     case BinaryAnnotationsOpCode::ChangeCodeOffsetBase:
1349       code_offset += annot.U1;
1350       update_code_offset(annot.U1);
1351       break;
1352     case BinaryAnnotationsOpCode::ChangeLineOffset:
1353       update_line_offset(annot.S1);
1354       break;
1355     case BinaryAnnotationsOpCode::ChangeCodeLength:
1356       update_code_offset(annot.U1);
1357       code_offset += annot.U1;
1358       is_terminal_entry = true;
1359       break;
1360     case BinaryAnnotationsOpCode::ChangeCodeOffsetAndLineOffset:
1361       code_offset += annot.U1;
1362       update_code_offset(annot.U1);
1363       update_line_offset(annot.S1);
1364       break;
1365     case BinaryAnnotationsOpCode::ChangeCodeLengthAndCodeOffset:
1366       code_offset += annot.U2;
1367       update_code_offset(annot.U2);
1368       update_code_offset(annot.U1);
1369       code_offset += annot.U1;
1370       is_terminal_entry = true;
1371       break;
1372     case BinaryAnnotationsOpCode::ChangeFile:
1373       update_file_offset(annot.U1);
1374       break;
1375     default:
1376       break;
1377     }
1378 
1379     // Add range if current range is finished.
1380     if (code_offset_base && code_offset_end && cur_line_offset) {
1381       inline_site_sp->ranges.Append(RangeSourceLineVector::Entry(
1382           *code_offset_base, *code_offset_end - *code_offset_base,
1383           decl_line + *cur_line_offset));
1384       // Set base, end, file offset and line offset for next range.
1385       if (next_file_offset)
1386         file_offset = *next_file_offset;
1387       if (next_line_offset) {
1388         cur_line_offset = next_line_offset;
1389         next_line_offset = llvm::None;
1390       }
1391       code_offset_base = is_terminal_entry ? llvm::None : code_offset_end;
1392       code_offset_end = next_file_offset = llvm::None;
1393     }
1394     if (code_offset_base && cur_line_offset) {
1395       if (is_terminal_entry) {
1396         LineTable::Entry line_entry(
1397             func_base + *code_offset_base, decl_line + *cur_line_offset, 0,
1398             file_offset, false, false, false, false, true);
1399         inline_site_sp->line_entries.push_back(line_entry);
1400       } else {
1401         LineTable::Entry line_entry(func_base + *code_offset_base,
1402                                     decl_line + *cur_line_offset, 0,
1403                                     file_offset, is_start_of_statement, false,
1404                                     is_prologue_end, false, false);
1405         inline_site_sp->line_entries.push_back(line_entry);
1406         is_prologue_end = false;
1407         is_start_of_statement = false;
1408       }
1409     }
1410     if (is_terminal_entry)
1411       is_start_of_statement = true;
1412     is_terminal_entry = false;
1413   }
1414 
1415   inline_site_sp->ranges.Sort();
1416 
1417   // Get the inlined function callsite info.
1418   std::unique_ptr<Declaration> callsite_up;
1419   if (!inline_site_sp->ranges.IsEmpty()) {
1420     auto *entry = inline_site_sp->ranges.GetEntryAtIndex(0);
1421     addr_t base_offset = entry->GetRangeBase();
1422     if (cii->m_debug_stream.readSymbolAtOffset(parent_id.offset).kind() ==
1423         S_INLINESITE) {
1424       // Its parent is another inline site, lookup parent site's range vector
1425       // for callsite line.
1426       ParseInlineSite(parent_id, func_base);
1427       std::shared_ptr<InlineSite> parent_site =
1428           m_inline_sites[toOpaqueUid(parent_id)];
1429       FileSpec &parent_decl_file =
1430           parent_site->inline_function_info->GetDeclaration().GetFile();
1431       if (auto *parent_entry =
1432               parent_site->ranges.FindEntryThatContains(base_offset)) {
1433         callsite_up =
1434             std::make_unique<Declaration>(parent_decl_file, parent_entry->data);
1435       }
1436     } else {
1437       // Its parent is a function, lookup global line table for callsite.
1438       if (auto *entry = cii->m_global_line_table.FindEntryThatContains(
1439               func_base + base_offset)) {
1440         const FileSpec &callsite_file =
1441             files.GetFileSpecAtIndex(entry->data.first);
1442         callsite_up =
1443             std::make_unique<Declaration>(callsite_file, entry->data.second);
1444       }
1445     }
1446   }
1447 
1448   // Get the inlined function name.
1449   CVType inlinee_cvt = m_index->ipi().getType(inline_site.Inlinee);
1450   std::string inlinee_name;
1451   if (inlinee_cvt.kind() == LF_MFUNC_ID) {
1452     MemberFuncIdRecord mfr;
1453     cantFail(
1454         TypeDeserializer::deserializeAs<MemberFuncIdRecord>(inlinee_cvt, mfr));
1455     LazyRandomTypeCollection &types = m_index->tpi().typeCollection();
1456     inlinee_name.append(std::string(types.getTypeName(mfr.ClassType)));
1457     inlinee_name.append("::");
1458     inlinee_name.append(mfr.getName().str());
1459   } else if (inlinee_cvt.kind() == LF_FUNC_ID) {
1460     FuncIdRecord fir;
1461     cantFail(TypeDeserializer::deserializeAs<FuncIdRecord>(inlinee_cvt, fir));
1462     TypeIndex parent_idx = fir.getParentScope();
1463     if (!parent_idx.isNoneType()) {
1464       LazyRandomTypeCollection &ids = m_index->ipi().typeCollection();
1465       inlinee_name.append(std::string(ids.getTypeName(parent_idx)));
1466       inlinee_name.append("::");
1467     }
1468     inlinee_name.append(fir.getName().str());
1469   }
1470   inline_site_sp->inline_function_info = std::make_shared<InlineFunctionInfo>(
1471       inlinee_name.c_str(), llvm::StringRef(), decl_up.get(),
1472       callsite_up.get());
1473 
1474   m_inline_sites[opaque_uid] = inline_site_sp;
1475 }
1476 
1477 size_t SymbolFileNativePDB::ParseBlocksRecursive(Function &func) {
1478   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1479   PdbCompilandSymId func_id = PdbSymUid(func.GetID()).asCompilandSym();
1480   // After we iterate through inline sites inside the function, we already get
1481   // all the info needed, removing from the map to save memory.
1482   std::set<uint64_t> remove_uids;
1483   auto parse_blocks = [&](SymbolKind kind, PdbCompilandSymId id) {
1484     if (kind == S_GPROC32 || kind == S_LPROC32 || kind == S_BLOCK32 ||
1485         kind == S_INLINESITE) {
1486       GetOrCreateBlock(id);
1487       if (kind == S_INLINESITE)
1488         remove_uids.insert(toOpaqueUid(id));
1489       return true;
1490     }
1491     return false;
1492   };
1493   size_t count = ParseSymbolArrayInScope(func_id, parse_blocks);
1494   for (uint64_t uid : remove_uids) {
1495     m_inline_sites.erase(uid);
1496   }
1497   return count;
1498 }
1499 
1500 size_t SymbolFileNativePDB::ParseSymbolArrayInScope(
1501     PdbCompilandSymId parent_id,
1502     llvm::function_ref<bool(SymbolKind, PdbCompilandSymId)> fn) {
1503   CompilandIndexItem *cii = m_index->compilands().GetCompiland(parent_id.modi);
1504   CVSymbolArray syms =
1505       cii->m_debug_stream.getSymbolArrayForScope(parent_id.offset);
1506 
1507   size_t count = 1;
1508   for (auto iter = syms.begin(); iter != syms.end(); ++iter) {
1509     PdbCompilandSymId child_id(parent_id.modi, iter.offset());
1510     if (fn(iter->kind(), child_id))
1511       ++count;
1512   }
1513 
1514   return count;
1515 }
1516 
1517 void SymbolFileNativePDB::DumpClangAST(Stream &s) { m_ast->Dump(s); }
1518 
1519 void SymbolFileNativePDB::FindGlobalVariables(
1520     ConstString name, const CompilerDeclContext &parent_decl_ctx,
1521     uint32_t max_matches, VariableList &variables) {
1522   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1523   using SymbolAndOffset = std::pair<uint32_t, llvm::codeview::CVSymbol>;
1524 
1525   std::vector<SymbolAndOffset> results = m_index->globals().findRecordsByName(
1526       name.GetStringRef(), m_index->symrecords());
1527   for (const SymbolAndOffset &result : results) {
1528     VariableSP var;
1529     switch (result.second.kind()) {
1530     case SymbolKind::S_GDATA32:
1531     case SymbolKind::S_LDATA32:
1532     case SymbolKind::S_GTHREAD32:
1533     case SymbolKind::S_LTHREAD32:
1534     case SymbolKind::S_CONSTANT: {
1535       PdbGlobalSymId global(result.first, false);
1536       var = GetOrCreateGlobalVariable(global);
1537       variables.AddVariable(var);
1538       break;
1539     }
1540     default:
1541       continue;
1542     }
1543   }
1544 }
1545 
1546 void SymbolFileNativePDB::FindFunctions(
1547     ConstString name, const CompilerDeclContext &parent_decl_ctx,
1548     FunctionNameType name_type_mask, bool include_inlines,
1549     SymbolContextList &sc_list) {
1550   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1551   // For now we only support lookup by method name or full name.
1552   if (!(name_type_mask & eFunctionNameTypeFull ||
1553         name_type_mask & eFunctionNameTypeMethod))
1554     return;
1555 
1556   using SymbolAndOffset = std::pair<uint32_t, llvm::codeview::CVSymbol>;
1557 
1558   std::vector<SymbolAndOffset> matches = m_index->globals().findRecordsByName(
1559       name.GetStringRef(), m_index->symrecords());
1560   for (const SymbolAndOffset &match : matches) {
1561     if (match.second.kind() != S_PROCREF && match.second.kind() != S_LPROCREF)
1562       continue;
1563     ProcRefSym proc(match.second.kind());
1564     cantFail(SymbolDeserializer::deserializeAs<ProcRefSym>(match.second, proc));
1565 
1566     if (!IsValidRecord(proc))
1567       continue;
1568 
1569     CompilandIndexItem &cci =
1570         m_index->compilands().GetOrCreateCompiland(proc.modi());
1571     SymbolContext sc;
1572 
1573     sc.comp_unit = GetOrCreateCompileUnit(cci).get();
1574     PdbCompilandSymId func_id(proc.modi(), proc.SymOffset);
1575     sc.function = GetOrCreateFunction(func_id, *sc.comp_unit).get();
1576 
1577     sc_list.Append(sc);
1578   }
1579 }
1580 
1581 void SymbolFileNativePDB::FindFunctions(const RegularExpression &regex,
1582                                         bool include_inlines,
1583                                         SymbolContextList &sc_list) {}
1584 
1585 void SymbolFileNativePDB::FindTypes(
1586     ConstString name, const CompilerDeclContext &parent_decl_ctx,
1587     uint32_t max_matches, llvm::DenseSet<SymbolFile *> &searched_symbol_files,
1588     TypeMap &types) {
1589   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1590   if (!name)
1591     return;
1592 
1593   searched_symbol_files.clear();
1594   searched_symbol_files.insert(this);
1595 
1596   // There is an assumption 'name' is not a regex
1597   FindTypesByName(name.GetStringRef(), max_matches, types);
1598 }
1599 
1600 void SymbolFileNativePDB::FindTypes(
1601     llvm::ArrayRef<CompilerContext> pattern, LanguageSet languages,
1602     llvm::DenseSet<SymbolFile *> &searched_symbol_files, TypeMap &types) {}
1603 
1604 void SymbolFileNativePDB::FindTypesByName(llvm::StringRef name,
1605                                           uint32_t max_matches,
1606                                           TypeMap &types) {
1607 
1608   std::vector<TypeIndex> matches = m_index->tpi().findRecordsByName(name);
1609   if (max_matches > 0 && max_matches < matches.size())
1610     matches.resize(max_matches);
1611 
1612   for (TypeIndex ti : matches) {
1613     TypeSP type = GetOrCreateType(ti);
1614     if (!type)
1615       continue;
1616 
1617     types.Insert(type);
1618   }
1619 }
1620 
1621 size_t SymbolFileNativePDB::ParseTypes(CompileUnit &comp_unit) {
1622   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1623   // Only do the full type scan the first time.
1624   if (m_done_full_type_scan)
1625     return 0;
1626 
1627   const size_t old_count = GetTypeList().GetSize();
1628   LazyRandomTypeCollection &types = m_index->tpi().typeCollection();
1629 
1630   // First process the entire TPI stream.
1631   for (auto ti = types.getFirst(); ti; ti = types.getNext(*ti)) {
1632     TypeSP type = GetOrCreateType(*ti);
1633     if (type)
1634       (void)type->GetFullCompilerType();
1635   }
1636 
1637   // Next look for S_UDT records in the globals stream.
1638   for (const uint32_t gid : m_index->globals().getGlobalsTable()) {
1639     PdbGlobalSymId global{gid, false};
1640     CVSymbol sym = m_index->ReadSymbolRecord(global);
1641     if (sym.kind() != S_UDT)
1642       continue;
1643 
1644     UDTSym udt = llvm::cantFail(SymbolDeserializer::deserializeAs<UDTSym>(sym));
1645     bool is_typedef = true;
1646     if (IsTagRecord(PdbTypeSymId{udt.Type, false}, m_index->tpi())) {
1647       CVType cvt = m_index->tpi().getType(udt.Type);
1648       llvm::StringRef name = CVTagRecord::create(cvt).name();
1649       if (name == udt.Name)
1650         is_typedef = false;
1651     }
1652 
1653     if (is_typedef)
1654       GetOrCreateTypedef(global);
1655   }
1656 
1657   const size_t new_count = GetTypeList().GetSize();
1658 
1659   m_done_full_type_scan = true;
1660 
1661   return new_count - old_count;
1662 }
1663 
1664 size_t
1665 SymbolFileNativePDB::ParseVariablesForCompileUnit(CompileUnit &comp_unit,
1666                                                   VariableList &variables) {
1667   PdbSymUid sym_uid(comp_unit.GetID());
1668   lldbassert(sym_uid.kind() == PdbSymUidKind::Compiland);
1669   return 0;
1670 }
1671 
1672 VariableSP SymbolFileNativePDB::CreateLocalVariable(PdbCompilandSymId scope_id,
1673                                                     PdbCompilandSymId var_id,
1674                                                     bool is_param) {
1675   ModuleSP module = GetObjectFile()->GetModule();
1676   Block &block = GetOrCreateBlock(scope_id);
1677   VariableInfo var_info =
1678       GetVariableLocationInfo(*m_index, var_id, block, module);
1679   if (!var_info.location || !var_info.ranges)
1680     return nullptr;
1681 
1682   CompilandIndexItem *cii = m_index->compilands().GetCompiland(var_id.modi);
1683   CompUnitSP comp_unit_sp = GetOrCreateCompileUnit(*cii);
1684   TypeSP type_sp = GetOrCreateType(var_info.type);
1685   std::string name = var_info.name.str();
1686   Declaration decl;
1687   SymbolFileTypeSP sftype =
1688       std::make_shared<SymbolFileType>(*this, type_sp->GetID());
1689 
1690   is_param |= var_info.is_param;
1691   ValueType var_scope =
1692       is_param ? eValueTypeVariableArgument : eValueTypeVariableLocal;
1693   bool external = false;
1694   bool artificial = false;
1695   bool location_is_constant_data = false;
1696   bool static_member = false;
1697   VariableSP var_sp = std::make_shared<Variable>(
1698       toOpaqueUid(var_id), name.c_str(), name.c_str(), sftype, var_scope,
1699       &block, *var_info.ranges, &decl, *var_info.location, external,
1700       artificial, location_is_constant_data, static_member);
1701 
1702   if (!is_param)
1703     m_ast->GetOrCreateVariableDecl(scope_id, var_id);
1704 
1705   m_local_variables[toOpaqueUid(var_id)] = var_sp;
1706   return var_sp;
1707 }
1708 
1709 VariableSP SymbolFileNativePDB::GetOrCreateLocalVariable(
1710     PdbCompilandSymId scope_id, PdbCompilandSymId var_id, bool is_param) {
1711   auto iter = m_local_variables.find(toOpaqueUid(var_id));
1712   if (iter != m_local_variables.end())
1713     return iter->second;
1714 
1715   return CreateLocalVariable(scope_id, var_id, is_param);
1716 }
1717 
1718 TypeSP SymbolFileNativePDB::CreateTypedef(PdbGlobalSymId id) {
1719   CVSymbol sym = m_index->ReadSymbolRecord(id);
1720   lldbassert(sym.kind() == SymbolKind::S_UDT);
1721 
1722   UDTSym udt = llvm::cantFail(SymbolDeserializer::deserializeAs<UDTSym>(sym));
1723 
1724   TypeSP target_type = GetOrCreateType(udt.Type);
1725 
1726   (void)m_ast->GetOrCreateTypedefDecl(id);
1727 
1728   Declaration decl;
1729   return std::make_shared<lldb_private::Type>(
1730       toOpaqueUid(id), this, ConstString(udt.Name),
1731       target_type->GetByteSize(nullptr), nullptr, target_type->GetID(),
1732       lldb_private::Type::eEncodingIsTypedefUID, decl,
1733       target_type->GetForwardCompilerType(),
1734       lldb_private::Type::ResolveState::Forward);
1735 }
1736 
1737 TypeSP SymbolFileNativePDB::GetOrCreateTypedef(PdbGlobalSymId id) {
1738   auto iter = m_types.find(toOpaqueUid(id));
1739   if (iter != m_types.end())
1740     return iter->second;
1741 
1742   return CreateTypedef(id);
1743 }
1744 
1745 size_t SymbolFileNativePDB::ParseVariablesForBlock(PdbCompilandSymId block_id) {
1746   Block &block = GetOrCreateBlock(block_id);
1747 
1748   size_t count = 0;
1749 
1750   CompilandIndexItem *cii = m_index->compilands().GetCompiland(block_id.modi);
1751   CVSymbol sym = cii->m_debug_stream.readSymbolAtOffset(block_id.offset);
1752   uint32_t params_remaining = 0;
1753   switch (sym.kind()) {
1754   case S_GPROC32:
1755   case S_LPROC32: {
1756     ProcSym proc(static_cast<SymbolRecordKind>(sym.kind()));
1757     cantFail(SymbolDeserializer::deserializeAs<ProcSym>(sym, proc));
1758     CVType signature = m_index->tpi().getType(proc.FunctionType);
1759     ProcedureRecord sig;
1760     cantFail(TypeDeserializer::deserializeAs<ProcedureRecord>(signature, sig));
1761     params_remaining = sig.getParameterCount();
1762     break;
1763   }
1764   case S_BLOCK32:
1765     break;
1766   case S_INLINESITE:
1767     break;
1768   default:
1769     lldbassert(false && "Symbol is not a block!");
1770     return 0;
1771   }
1772 
1773   VariableListSP variables = block.GetBlockVariableList(false);
1774   if (!variables) {
1775     variables = std::make_shared<VariableList>();
1776     block.SetVariableList(variables);
1777   }
1778 
1779   CVSymbolArray syms = limitSymbolArrayToScope(
1780       cii->m_debug_stream.getSymbolArray(), block_id.offset);
1781 
1782   // Skip the first record since it's a PROC32 or BLOCK32, and there's
1783   // no point examining it since we know it's not a local variable.
1784   syms.drop_front();
1785   auto iter = syms.begin();
1786   auto end = syms.end();
1787 
1788   while (iter != end) {
1789     uint32_t record_offset = iter.offset();
1790     CVSymbol variable_cvs = *iter;
1791     PdbCompilandSymId child_sym_id(block_id.modi, record_offset);
1792     ++iter;
1793 
1794     // If this is a block or inline site, recurse into its children and then
1795     // skip it.
1796     if (variable_cvs.kind() == S_BLOCK32 ||
1797         variable_cvs.kind() == S_INLINESITE) {
1798       uint32_t block_end = getScopeEndOffset(variable_cvs);
1799       count += ParseVariablesForBlock(child_sym_id);
1800       iter = syms.at(block_end);
1801       continue;
1802     }
1803 
1804     bool is_param = params_remaining > 0;
1805     VariableSP variable;
1806     switch (variable_cvs.kind()) {
1807     case S_REGREL32:
1808     case S_REGISTER:
1809     case S_LOCAL:
1810       variable = GetOrCreateLocalVariable(block_id, child_sym_id, is_param);
1811       if (is_param)
1812         --params_remaining;
1813       if (variable)
1814         variables->AddVariableIfUnique(variable);
1815       break;
1816     default:
1817       break;
1818     }
1819   }
1820 
1821   // Pass false for set_children, since we call this recursively so that the
1822   // children will call this for themselves.
1823   block.SetDidParseVariables(true, false);
1824 
1825   return count;
1826 }
1827 
1828 size_t SymbolFileNativePDB::ParseVariablesForContext(const SymbolContext &sc) {
1829   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1830   lldbassert(sc.function || sc.comp_unit);
1831 
1832   VariableListSP variables;
1833   if (sc.block) {
1834     PdbSymUid block_id(sc.block->GetID());
1835 
1836     size_t count = ParseVariablesForBlock(block_id.asCompilandSym());
1837     return count;
1838   }
1839 
1840   if (sc.function) {
1841     PdbSymUid block_id(sc.function->GetID());
1842 
1843     size_t count = ParseVariablesForBlock(block_id.asCompilandSym());
1844     return count;
1845   }
1846 
1847   if (sc.comp_unit) {
1848     variables = sc.comp_unit->GetVariableList(false);
1849     if (!variables) {
1850       variables = std::make_shared<VariableList>();
1851       sc.comp_unit->SetVariableList(variables);
1852     }
1853     return ParseVariablesForCompileUnit(*sc.comp_unit, *variables);
1854   }
1855 
1856   llvm_unreachable("Unreachable!");
1857 }
1858 
1859 CompilerDecl SymbolFileNativePDB::GetDeclForUID(lldb::user_id_t uid) {
1860   if (auto decl = m_ast->GetOrCreateDeclForUid(uid))
1861     return decl.getValue();
1862   else
1863     return CompilerDecl();
1864 }
1865 
1866 CompilerDeclContext
1867 SymbolFileNativePDB::GetDeclContextForUID(lldb::user_id_t uid) {
1868   clang::DeclContext *context =
1869       m_ast->GetOrCreateDeclContextForUid(PdbSymUid(uid));
1870   if (!context)
1871     return {};
1872 
1873   return m_ast->ToCompilerDeclContext(*context);
1874 }
1875 
1876 CompilerDeclContext
1877 SymbolFileNativePDB::GetDeclContextContainingUID(lldb::user_id_t uid) {
1878   clang::DeclContext *context = m_ast->GetParentDeclContext(PdbSymUid(uid));
1879   return m_ast->ToCompilerDeclContext(*context);
1880 }
1881 
1882 Type *SymbolFileNativePDB::ResolveTypeUID(lldb::user_id_t type_uid) {
1883   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1884   auto iter = m_types.find(type_uid);
1885   // lldb should not be passing us non-sensical type uids.  the only way it
1886   // could have a type uid in the first place is if we handed it out, in which
1887   // case we should know about the type.  However, that doesn't mean we've
1888   // instantiated it yet.  We can vend out a UID for a future type.  So if the
1889   // type doesn't exist, let's instantiate it now.
1890   if (iter != m_types.end())
1891     return &*iter->second;
1892 
1893   PdbSymUid uid(type_uid);
1894   lldbassert(uid.kind() == PdbSymUidKind::Type);
1895   PdbTypeSymId type_id = uid.asTypeSym();
1896   if (type_id.index.isNoneType())
1897     return nullptr;
1898 
1899   TypeSP type_sp = CreateAndCacheType(type_id);
1900   return &*type_sp;
1901 }
1902 
1903 llvm::Optional<SymbolFile::ArrayInfo>
1904 SymbolFileNativePDB::GetDynamicArrayInfoForUID(
1905     lldb::user_id_t type_uid, const lldb_private::ExecutionContext *exe_ctx) {
1906   return llvm::None;
1907 }
1908 
1909 
1910 bool SymbolFileNativePDB::CompleteType(CompilerType &compiler_type) {
1911   clang::QualType qt =
1912       clang::QualType::getFromOpaquePtr(compiler_type.GetOpaqueQualType());
1913 
1914   return m_ast->CompleteType(qt);
1915 }
1916 
1917 void SymbolFileNativePDB::GetTypes(lldb_private::SymbolContextScope *sc_scope,
1918                                    TypeClass type_mask,
1919                                    lldb_private::TypeList &type_list) {}
1920 
1921 CompilerDeclContext
1922 SymbolFileNativePDB::FindNamespace(ConstString name,
1923                                    const CompilerDeclContext &parent_decl_ctx) {
1924   return {};
1925 }
1926 
1927 llvm::Expected<TypeSystem &>
1928 SymbolFileNativePDB::GetTypeSystemForLanguage(lldb::LanguageType language) {
1929   auto type_system_or_err =
1930       m_objfile_sp->GetModule()->GetTypeSystemForLanguage(language);
1931   if (type_system_or_err) {
1932     type_system_or_err->SetSymbolFile(this);
1933   }
1934   return type_system_or_err;
1935 }
1936 
1937 uint64_t SymbolFileNativePDB::GetDebugInfoSize() {
1938   // PDB files are a separate file that contains all debug info.
1939   return m_index->pdb().getFileSize();
1940 }
1941