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<uint32_t> cur_line_offset; 1315 llvm::Optional<uint32_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 cur_line_offset = next_line_offset ? next_line_offset : llvm::None; 1388 code_offset_base = is_terminal_entry ? llvm::None : code_offset_end; 1389 code_offset_end = next_line_offset = next_file_offset = llvm::None; 1390 } 1391 if (code_offset_base && cur_line_offset) { 1392 if (is_terminal_entry) { 1393 LineTable::Entry line_entry( 1394 func_base + *code_offset_base, decl_line + *cur_line_offset, 0, 1395 file_offset, false, false, false, false, true); 1396 inline_site_sp->line_entries.push_back(line_entry); 1397 } else { 1398 LineTable::Entry line_entry(func_base + *code_offset_base, 1399 decl_line + *cur_line_offset, 0, 1400 file_offset, is_start_of_statement, false, 1401 is_prologue_end, false, false); 1402 inline_site_sp->line_entries.push_back(line_entry); 1403 is_prologue_end = false; 1404 is_start_of_statement = false; 1405 } 1406 } 1407 if (is_terminal_entry) 1408 is_start_of_statement = true; 1409 is_terminal_entry = false; 1410 } 1411 1412 inline_site_sp->ranges.Sort(); 1413 inline_site_sp->ranges.CombineConsecutiveEntriesWithEqualData(); 1414 1415 // Get the inlined function callsite info. 1416 std::unique_ptr<Declaration> callsite_up; 1417 if (!inline_site_sp->ranges.IsEmpty()) { 1418 auto *entry = inline_site_sp->ranges.GetEntryAtIndex(0); 1419 addr_t base_offset = entry->GetRangeBase(); 1420 if (cii->m_debug_stream.readSymbolAtOffset(parent_id.offset).kind() == 1421 S_INLINESITE) { 1422 // Its parent is another inline site, lookup parent site's range vector 1423 // for callsite line. 1424 ParseInlineSite(parent_id, func_base); 1425 std::shared_ptr<InlineSite> parent_site = 1426 m_inline_sites[toOpaqueUid(parent_id)]; 1427 FileSpec &parent_decl_file = 1428 parent_site->inline_function_info->GetDeclaration().GetFile(); 1429 if (auto *parent_entry = 1430 parent_site->ranges.FindEntryThatContains(base_offset)) { 1431 callsite_up = 1432 std::make_unique<Declaration>(parent_decl_file, parent_entry->data); 1433 } 1434 } else { 1435 // Its parent is a function, lookup global line table for callsite. 1436 if (auto *entry = cii->m_global_line_table.FindEntryThatContains( 1437 func_base + base_offset)) { 1438 const FileSpec &callsite_file = 1439 files.GetFileSpecAtIndex(entry->data.first); 1440 callsite_up = 1441 std::make_unique<Declaration>(callsite_file, entry->data.second); 1442 } 1443 } 1444 } 1445 1446 // Get the inlined function name. 1447 CVType inlinee_cvt = m_index->ipi().getType(inline_site.Inlinee); 1448 std::string inlinee_name; 1449 if (inlinee_cvt.kind() == LF_MFUNC_ID) { 1450 MemberFuncIdRecord mfr; 1451 cantFail( 1452 TypeDeserializer::deserializeAs<MemberFuncIdRecord>(inlinee_cvt, mfr)); 1453 LazyRandomTypeCollection &types = m_index->tpi().typeCollection(); 1454 inlinee_name.append(std::string(types.getTypeName(mfr.ClassType))); 1455 inlinee_name.append("::"); 1456 inlinee_name.append(mfr.getName().str()); 1457 } else if (inlinee_cvt.kind() == LF_FUNC_ID) { 1458 FuncIdRecord fir; 1459 cantFail(TypeDeserializer::deserializeAs<FuncIdRecord>(inlinee_cvt, fir)); 1460 TypeIndex parent_idx = fir.getParentScope(); 1461 if (!parent_idx.isNoneType()) { 1462 LazyRandomTypeCollection &ids = m_index->ipi().typeCollection(); 1463 inlinee_name.append(std::string(ids.getTypeName(parent_idx))); 1464 inlinee_name.append("::"); 1465 } 1466 inlinee_name.append(fir.getName().str()); 1467 } 1468 inline_site_sp->inline_function_info = std::make_shared<InlineFunctionInfo>( 1469 inlinee_name.c_str(), llvm::StringRef(), decl_up.get(), 1470 callsite_up.get()); 1471 1472 m_inline_sites[opaque_uid] = inline_site_sp; 1473 } 1474 1475 size_t SymbolFileNativePDB::ParseBlocksRecursive(Function &func) { 1476 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1477 PdbCompilandSymId func_id = PdbSymUid(func.GetID()).asCompilandSym(); 1478 // After we iterate through inline sites inside the function, we already get 1479 // all the info needed, removing from the map to save memory. 1480 std::set<uint64_t> remove_uids; 1481 auto parse_blocks = [&](SymbolKind kind, PdbCompilandSymId id) { 1482 if (kind == S_GPROC32 || kind == S_LPROC32 || kind == S_BLOCK32 || 1483 kind == S_INLINESITE) { 1484 GetOrCreateBlock(id); 1485 if (kind == S_INLINESITE) 1486 remove_uids.insert(toOpaqueUid(id)); 1487 return true; 1488 } 1489 return false; 1490 }; 1491 size_t count = ParseSymbolArrayInScope(func_id, parse_blocks); 1492 for (uint64_t uid : remove_uids) { 1493 m_inline_sites.erase(uid); 1494 } 1495 return count; 1496 } 1497 1498 size_t SymbolFileNativePDB::ParseSymbolArrayInScope( 1499 PdbCompilandSymId parent_id, 1500 llvm::function_ref<bool(SymbolKind, PdbCompilandSymId)> fn) { 1501 CompilandIndexItem *cii = m_index->compilands().GetCompiland(parent_id.modi); 1502 CVSymbolArray syms = 1503 cii->m_debug_stream.getSymbolArrayForScope(parent_id.offset); 1504 1505 size_t count = 1; 1506 for (auto iter = syms.begin(); iter != syms.end(); ++iter) { 1507 PdbCompilandSymId child_id(parent_id.modi, iter.offset()); 1508 if (fn(iter->kind(), child_id)) 1509 ++count; 1510 } 1511 1512 return count; 1513 } 1514 1515 void SymbolFileNativePDB::DumpClangAST(Stream &s) { m_ast->Dump(s); } 1516 1517 void SymbolFileNativePDB::FindGlobalVariables( 1518 ConstString name, const CompilerDeclContext &parent_decl_ctx, 1519 uint32_t max_matches, VariableList &variables) { 1520 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1521 using SymbolAndOffset = std::pair<uint32_t, llvm::codeview::CVSymbol>; 1522 1523 std::vector<SymbolAndOffset> results = m_index->globals().findRecordsByName( 1524 name.GetStringRef(), m_index->symrecords()); 1525 for (const SymbolAndOffset &result : results) { 1526 VariableSP var; 1527 switch (result.second.kind()) { 1528 case SymbolKind::S_GDATA32: 1529 case SymbolKind::S_LDATA32: 1530 case SymbolKind::S_GTHREAD32: 1531 case SymbolKind::S_LTHREAD32: 1532 case SymbolKind::S_CONSTANT: { 1533 PdbGlobalSymId global(result.first, false); 1534 var = GetOrCreateGlobalVariable(global); 1535 variables.AddVariable(var); 1536 break; 1537 } 1538 default: 1539 continue; 1540 } 1541 } 1542 } 1543 1544 void SymbolFileNativePDB::FindFunctions( 1545 ConstString name, const CompilerDeclContext &parent_decl_ctx, 1546 FunctionNameType name_type_mask, bool include_inlines, 1547 SymbolContextList &sc_list) { 1548 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1549 // For now we only support lookup by method name or full name. 1550 if (!(name_type_mask & eFunctionNameTypeFull || 1551 name_type_mask & eFunctionNameTypeMethod)) 1552 return; 1553 1554 using SymbolAndOffset = std::pair<uint32_t, llvm::codeview::CVSymbol>; 1555 1556 std::vector<SymbolAndOffset> matches = m_index->globals().findRecordsByName( 1557 name.GetStringRef(), m_index->symrecords()); 1558 for (const SymbolAndOffset &match : matches) { 1559 if (match.second.kind() != S_PROCREF && match.second.kind() != S_LPROCREF) 1560 continue; 1561 ProcRefSym proc(match.second.kind()); 1562 cantFail(SymbolDeserializer::deserializeAs<ProcRefSym>(match.second, proc)); 1563 1564 if (!IsValidRecord(proc)) 1565 continue; 1566 1567 CompilandIndexItem &cci = 1568 m_index->compilands().GetOrCreateCompiland(proc.modi()); 1569 SymbolContext sc; 1570 1571 sc.comp_unit = GetOrCreateCompileUnit(cci).get(); 1572 PdbCompilandSymId func_id(proc.modi(), proc.SymOffset); 1573 sc.function = GetOrCreateFunction(func_id, *sc.comp_unit).get(); 1574 1575 sc_list.Append(sc); 1576 } 1577 } 1578 1579 void SymbolFileNativePDB::FindFunctions(const RegularExpression ®ex, 1580 bool include_inlines, 1581 SymbolContextList &sc_list) {} 1582 1583 void SymbolFileNativePDB::FindTypes( 1584 ConstString name, const CompilerDeclContext &parent_decl_ctx, 1585 uint32_t max_matches, llvm::DenseSet<SymbolFile *> &searched_symbol_files, 1586 TypeMap &types) { 1587 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1588 if (!name) 1589 return; 1590 1591 searched_symbol_files.clear(); 1592 searched_symbol_files.insert(this); 1593 1594 // There is an assumption 'name' is not a regex 1595 FindTypesByName(name.GetStringRef(), max_matches, types); 1596 } 1597 1598 void SymbolFileNativePDB::FindTypes( 1599 llvm::ArrayRef<CompilerContext> pattern, LanguageSet languages, 1600 llvm::DenseSet<SymbolFile *> &searched_symbol_files, TypeMap &types) {} 1601 1602 void SymbolFileNativePDB::FindTypesByName(llvm::StringRef name, 1603 uint32_t max_matches, 1604 TypeMap &types) { 1605 1606 std::vector<TypeIndex> matches = m_index->tpi().findRecordsByName(name); 1607 if (max_matches > 0 && max_matches < matches.size()) 1608 matches.resize(max_matches); 1609 1610 for (TypeIndex ti : matches) { 1611 TypeSP type = GetOrCreateType(ti); 1612 if (!type) 1613 continue; 1614 1615 types.Insert(type); 1616 } 1617 } 1618 1619 size_t SymbolFileNativePDB::ParseTypes(CompileUnit &comp_unit) { 1620 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1621 // Only do the full type scan the first time. 1622 if (m_done_full_type_scan) 1623 return 0; 1624 1625 const size_t old_count = GetTypeList().GetSize(); 1626 LazyRandomTypeCollection &types = m_index->tpi().typeCollection(); 1627 1628 // First process the entire TPI stream. 1629 for (auto ti = types.getFirst(); ti; ti = types.getNext(*ti)) { 1630 TypeSP type = GetOrCreateType(*ti); 1631 if (type) 1632 (void)type->GetFullCompilerType(); 1633 } 1634 1635 // Next look for S_UDT records in the globals stream. 1636 for (const uint32_t gid : m_index->globals().getGlobalsTable()) { 1637 PdbGlobalSymId global{gid, false}; 1638 CVSymbol sym = m_index->ReadSymbolRecord(global); 1639 if (sym.kind() != S_UDT) 1640 continue; 1641 1642 UDTSym udt = llvm::cantFail(SymbolDeserializer::deserializeAs<UDTSym>(sym)); 1643 bool is_typedef = true; 1644 if (IsTagRecord(PdbTypeSymId{udt.Type, false}, m_index->tpi())) { 1645 CVType cvt = m_index->tpi().getType(udt.Type); 1646 llvm::StringRef name = CVTagRecord::create(cvt).name(); 1647 if (name == udt.Name) 1648 is_typedef = false; 1649 } 1650 1651 if (is_typedef) 1652 GetOrCreateTypedef(global); 1653 } 1654 1655 const size_t new_count = GetTypeList().GetSize(); 1656 1657 m_done_full_type_scan = true; 1658 1659 return new_count - old_count; 1660 } 1661 1662 size_t 1663 SymbolFileNativePDB::ParseVariablesForCompileUnit(CompileUnit &comp_unit, 1664 VariableList &variables) { 1665 PdbSymUid sym_uid(comp_unit.GetID()); 1666 lldbassert(sym_uid.kind() == PdbSymUidKind::Compiland); 1667 return 0; 1668 } 1669 1670 VariableSP SymbolFileNativePDB::CreateLocalVariable(PdbCompilandSymId scope_id, 1671 PdbCompilandSymId var_id, 1672 bool is_param) { 1673 ModuleSP module = GetObjectFile()->GetModule(); 1674 Block &block = GetOrCreateBlock(scope_id); 1675 VariableInfo var_info = 1676 GetVariableLocationInfo(*m_index, var_id, block, module); 1677 if (!var_info.location || !var_info.ranges) 1678 return nullptr; 1679 1680 CompilandIndexItem *cii = m_index->compilands().GetCompiland(var_id.modi); 1681 CompUnitSP comp_unit_sp = GetOrCreateCompileUnit(*cii); 1682 TypeSP type_sp = GetOrCreateType(var_info.type); 1683 std::string name = var_info.name.str(); 1684 Declaration decl; 1685 SymbolFileTypeSP sftype = 1686 std::make_shared<SymbolFileType>(*this, type_sp->GetID()); 1687 1688 is_param |= var_info.is_param; 1689 ValueType var_scope = 1690 is_param ? eValueTypeVariableArgument : eValueTypeVariableLocal; 1691 bool external = false; 1692 bool artificial = false; 1693 bool location_is_constant_data = false; 1694 bool static_member = false; 1695 VariableSP var_sp = std::make_shared<Variable>( 1696 toOpaqueUid(var_id), name.c_str(), name.c_str(), sftype, var_scope, 1697 &block, *var_info.ranges, &decl, *var_info.location, external, 1698 artificial, location_is_constant_data, static_member); 1699 1700 if (!is_param) 1701 m_ast->GetOrCreateVariableDecl(scope_id, var_id); 1702 1703 m_local_variables[toOpaqueUid(var_id)] = var_sp; 1704 return var_sp; 1705 } 1706 1707 VariableSP SymbolFileNativePDB::GetOrCreateLocalVariable( 1708 PdbCompilandSymId scope_id, PdbCompilandSymId var_id, bool is_param) { 1709 auto iter = m_local_variables.find(toOpaqueUid(var_id)); 1710 if (iter != m_local_variables.end()) 1711 return iter->second; 1712 1713 return CreateLocalVariable(scope_id, var_id, is_param); 1714 } 1715 1716 TypeSP SymbolFileNativePDB::CreateTypedef(PdbGlobalSymId id) { 1717 CVSymbol sym = m_index->ReadSymbolRecord(id); 1718 lldbassert(sym.kind() == SymbolKind::S_UDT); 1719 1720 UDTSym udt = llvm::cantFail(SymbolDeserializer::deserializeAs<UDTSym>(sym)); 1721 1722 TypeSP target_type = GetOrCreateType(udt.Type); 1723 1724 (void)m_ast->GetOrCreateTypedefDecl(id); 1725 1726 Declaration decl; 1727 return std::make_shared<lldb_private::Type>( 1728 toOpaqueUid(id), this, ConstString(udt.Name), 1729 target_type->GetByteSize(nullptr), nullptr, target_type->GetID(), 1730 lldb_private::Type::eEncodingIsTypedefUID, decl, 1731 target_type->GetForwardCompilerType(), 1732 lldb_private::Type::ResolveState::Forward); 1733 } 1734 1735 TypeSP SymbolFileNativePDB::GetOrCreateTypedef(PdbGlobalSymId id) { 1736 auto iter = m_types.find(toOpaqueUid(id)); 1737 if (iter != m_types.end()) 1738 return iter->second; 1739 1740 return CreateTypedef(id); 1741 } 1742 1743 size_t SymbolFileNativePDB::ParseVariablesForBlock(PdbCompilandSymId block_id) { 1744 Block &block = GetOrCreateBlock(block_id); 1745 1746 size_t count = 0; 1747 1748 CompilandIndexItem *cii = m_index->compilands().GetCompiland(block_id.modi); 1749 CVSymbol sym = cii->m_debug_stream.readSymbolAtOffset(block_id.offset); 1750 uint32_t params_remaining = 0; 1751 switch (sym.kind()) { 1752 case S_GPROC32: 1753 case S_LPROC32: { 1754 ProcSym proc(static_cast<SymbolRecordKind>(sym.kind())); 1755 cantFail(SymbolDeserializer::deserializeAs<ProcSym>(sym, proc)); 1756 CVType signature = m_index->tpi().getType(proc.FunctionType); 1757 ProcedureRecord sig; 1758 cantFail(TypeDeserializer::deserializeAs<ProcedureRecord>(signature, sig)); 1759 params_remaining = sig.getParameterCount(); 1760 break; 1761 } 1762 case S_BLOCK32: 1763 break; 1764 case S_INLINESITE: 1765 break; 1766 default: 1767 lldbassert(false && "Symbol is not a block!"); 1768 return 0; 1769 } 1770 1771 VariableListSP variables = block.GetBlockVariableList(false); 1772 if (!variables) { 1773 variables = std::make_shared<VariableList>(); 1774 block.SetVariableList(variables); 1775 } 1776 1777 CVSymbolArray syms = limitSymbolArrayToScope( 1778 cii->m_debug_stream.getSymbolArray(), block_id.offset); 1779 1780 // Skip the first record since it's a PROC32 or BLOCK32, and there's 1781 // no point examining it since we know it's not a local variable. 1782 syms.drop_front(); 1783 auto iter = syms.begin(); 1784 auto end = syms.end(); 1785 1786 while (iter != end) { 1787 uint32_t record_offset = iter.offset(); 1788 CVSymbol variable_cvs = *iter; 1789 PdbCompilandSymId child_sym_id(block_id.modi, record_offset); 1790 ++iter; 1791 1792 // If this is a block or inline site, recurse into its children and then 1793 // skip it. 1794 if (variable_cvs.kind() == S_BLOCK32 || 1795 variable_cvs.kind() == S_INLINESITE) { 1796 uint32_t block_end = getScopeEndOffset(variable_cvs); 1797 count += ParseVariablesForBlock(child_sym_id); 1798 iter = syms.at(block_end); 1799 continue; 1800 } 1801 1802 bool is_param = params_remaining > 0; 1803 VariableSP variable; 1804 switch (variable_cvs.kind()) { 1805 case S_REGREL32: 1806 case S_REGISTER: 1807 case S_LOCAL: 1808 variable = GetOrCreateLocalVariable(block_id, child_sym_id, is_param); 1809 if (is_param) 1810 --params_remaining; 1811 if (variable) 1812 variables->AddVariableIfUnique(variable); 1813 break; 1814 default: 1815 break; 1816 } 1817 } 1818 1819 // Pass false for set_children, since we call this recursively so that the 1820 // children will call this for themselves. 1821 block.SetDidParseVariables(true, false); 1822 1823 return count; 1824 } 1825 1826 size_t SymbolFileNativePDB::ParseVariablesForContext(const SymbolContext &sc) { 1827 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1828 lldbassert(sc.function || sc.comp_unit); 1829 1830 VariableListSP variables; 1831 if (sc.block) { 1832 PdbSymUid block_id(sc.block->GetID()); 1833 1834 size_t count = ParseVariablesForBlock(block_id.asCompilandSym()); 1835 return count; 1836 } 1837 1838 if (sc.function) { 1839 PdbSymUid block_id(sc.function->GetID()); 1840 1841 size_t count = ParseVariablesForBlock(block_id.asCompilandSym()); 1842 return count; 1843 } 1844 1845 if (sc.comp_unit) { 1846 variables = sc.comp_unit->GetVariableList(false); 1847 if (!variables) { 1848 variables = std::make_shared<VariableList>(); 1849 sc.comp_unit->SetVariableList(variables); 1850 } 1851 return ParseVariablesForCompileUnit(*sc.comp_unit, *variables); 1852 } 1853 1854 llvm_unreachable("Unreachable!"); 1855 } 1856 1857 CompilerDecl SymbolFileNativePDB::GetDeclForUID(lldb::user_id_t uid) { 1858 if (auto decl = m_ast->GetOrCreateDeclForUid(uid)) 1859 return decl.getValue(); 1860 else 1861 return CompilerDecl(); 1862 } 1863 1864 CompilerDeclContext 1865 SymbolFileNativePDB::GetDeclContextForUID(lldb::user_id_t uid) { 1866 clang::DeclContext *context = 1867 m_ast->GetOrCreateDeclContextForUid(PdbSymUid(uid)); 1868 if (!context) 1869 return {}; 1870 1871 return m_ast->ToCompilerDeclContext(*context); 1872 } 1873 1874 CompilerDeclContext 1875 SymbolFileNativePDB::GetDeclContextContainingUID(lldb::user_id_t uid) { 1876 clang::DeclContext *context = m_ast->GetParentDeclContext(PdbSymUid(uid)); 1877 return m_ast->ToCompilerDeclContext(*context); 1878 } 1879 1880 Type *SymbolFileNativePDB::ResolveTypeUID(lldb::user_id_t type_uid) { 1881 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1882 auto iter = m_types.find(type_uid); 1883 // lldb should not be passing us non-sensical type uids. the only way it 1884 // could have a type uid in the first place is if we handed it out, in which 1885 // case we should know about the type. However, that doesn't mean we've 1886 // instantiated it yet. We can vend out a UID for a future type. So if the 1887 // type doesn't exist, let's instantiate it now. 1888 if (iter != m_types.end()) 1889 return &*iter->second; 1890 1891 PdbSymUid uid(type_uid); 1892 lldbassert(uid.kind() == PdbSymUidKind::Type); 1893 PdbTypeSymId type_id = uid.asTypeSym(); 1894 if (type_id.index.isNoneType()) 1895 return nullptr; 1896 1897 TypeSP type_sp = CreateAndCacheType(type_id); 1898 return &*type_sp; 1899 } 1900 1901 llvm::Optional<SymbolFile::ArrayInfo> 1902 SymbolFileNativePDB::GetDynamicArrayInfoForUID( 1903 lldb::user_id_t type_uid, const lldb_private::ExecutionContext *exe_ctx) { 1904 return llvm::None; 1905 } 1906 1907 1908 bool SymbolFileNativePDB::CompleteType(CompilerType &compiler_type) { 1909 clang::QualType qt = 1910 clang::QualType::getFromOpaquePtr(compiler_type.GetOpaqueQualType()); 1911 1912 return m_ast->CompleteType(qt); 1913 } 1914 1915 void SymbolFileNativePDB::GetTypes(lldb_private::SymbolContextScope *sc_scope, 1916 TypeClass type_mask, 1917 lldb_private::TypeList &type_list) {} 1918 1919 CompilerDeclContext 1920 SymbolFileNativePDB::FindNamespace(ConstString name, 1921 const CompilerDeclContext &parent_decl_ctx) { 1922 return {}; 1923 } 1924 1925 llvm::Expected<TypeSystem &> 1926 SymbolFileNativePDB::GetTypeSystemForLanguage(lldb::LanguageType language) { 1927 auto type_system_or_err = 1928 m_objfile_sp->GetModule()->GetTypeSystemForLanguage(language); 1929 if (type_system_or_err) { 1930 type_system_or_err->SetSymbolFile(this); 1931 } 1932 return type_system_or_err; 1933 } 1934 1935 uint64_t SymbolFileNativePDB::GetDebugInfoSize() { 1936 // PDB files are a separate file that contains all debug info. 1937 return m_index->pdb().getFileSize(); 1938 } 1939