1 //===-- SymbolFileDWARF.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 "SymbolFileDWARF.h" 10 11 #include "llvm/ADT/Optional.h" 12 #include "llvm/Support/Casting.h" 13 #include "llvm/Support/Threading.h" 14 15 #include "lldb/Core/Module.h" 16 #include "lldb/Core/ModuleList.h" 17 #include "lldb/Core/ModuleSpec.h" 18 #include "lldb/Core/PluginManager.h" 19 #include "lldb/Core/Section.h" 20 #include "lldb/Core/StreamFile.h" 21 #include "lldb/Core/Value.h" 22 #include "lldb/Utility/ArchSpec.h" 23 #include "lldb/Utility/RegularExpression.h" 24 #include "lldb/Utility/Scalar.h" 25 #include "lldb/Utility/StreamString.h" 26 #include "lldb/Utility/Timer.h" 27 28 #include "Plugins/ExpressionParser/Clang/ClangModulesDeclVendor.h" 29 #include "Plugins/Language/CPlusPlus/CPlusPlusLanguage.h" 30 31 #include "lldb/Host/FileSystem.h" 32 #include "lldb/Host/Host.h" 33 34 #include "lldb/Interpreter/OptionValueFileSpecList.h" 35 #include "lldb/Interpreter/OptionValueProperties.h" 36 37 #include "Plugins/ExpressionParser/Clang/ClangUtil.h" 38 #include "Plugins/TypeSystem/Clang/TypeSystemClang.h" 39 #include "lldb/Symbol/Block.h" 40 #include "lldb/Symbol/CompileUnit.h" 41 #include "lldb/Symbol/CompilerDecl.h" 42 #include "lldb/Symbol/CompilerDeclContext.h" 43 #include "lldb/Symbol/DebugMacros.h" 44 #include "lldb/Symbol/LineTable.h" 45 #include "lldb/Symbol/LocateSymbolFile.h" 46 #include "lldb/Symbol/ObjectFile.h" 47 #include "lldb/Symbol/SymbolFile.h" 48 #include "lldb/Symbol/TypeMap.h" 49 #include "lldb/Symbol/TypeSystem.h" 50 #include "lldb/Symbol/VariableList.h" 51 52 #include "lldb/Target/Language.h" 53 #include "lldb/Target/Target.h" 54 55 #include "AppleDWARFIndex.h" 56 #include "DWARFASTParser.h" 57 #include "DWARFASTParserClang.h" 58 #include "DWARFCompileUnit.h" 59 #include "DWARFDebugAbbrev.h" 60 #include "DWARFDebugAranges.h" 61 #include "DWARFDebugInfo.h" 62 #include "DWARFDebugMacro.h" 63 #include "DWARFDebugRanges.h" 64 #include "DWARFDeclContext.h" 65 #include "DWARFFormValue.h" 66 #include "DWARFTypeUnit.h" 67 #include "DWARFUnit.h" 68 #include "DebugNamesDWARFIndex.h" 69 #include "LogChannelDWARF.h" 70 #include "ManualDWARFIndex.h" 71 #include "SymbolFileDWARFDebugMap.h" 72 #include "SymbolFileDWARFDwo.h" 73 74 #include "llvm/DebugInfo/DWARF/DWARFContext.h" 75 #include "llvm/Support/FileSystem.h" 76 77 #include <algorithm> 78 #include <map> 79 #include <memory> 80 81 #include <ctype.h> 82 #include <string.h> 83 84 //#define ENABLE_DEBUG_PRINTF // COMMENT OUT THIS LINE PRIOR TO CHECKIN 85 86 #ifdef ENABLE_DEBUG_PRINTF 87 #include <stdio.h> 88 #define DEBUG_PRINTF(fmt, ...) printf(fmt, __VA_ARGS__) 89 #else 90 #define DEBUG_PRINTF(fmt, ...) 91 #endif 92 93 using namespace lldb; 94 using namespace lldb_private; 95 96 LLDB_PLUGIN_DEFINE(SymbolFileDWARF) 97 98 char SymbolFileDWARF::ID; 99 100 // static inline bool 101 // child_requires_parent_class_union_or_struct_to_be_completed (dw_tag_t tag) 102 //{ 103 // switch (tag) 104 // { 105 // default: 106 // break; 107 // case DW_TAG_subprogram: 108 // case DW_TAG_inlined_subroutine: 109 // case DW_TAG_class_type: 110 // case DW_TAG_structure_type: 111 // case DW_TAG_union_type: 112 // return true; 113 // } 114 // return false; 115 //} 116 // 117 118 namespace { 119 120 #define LLDB_PROPERTIES_symbolfiledwarf 121 #include "SymbolFileDWARFProperties.inc" 122 123 enum { 124 #define LLDB_PROPERTIES_symbolfiledwarf 125 #include "SymbolFileDWARFPropertiesEnum.inc" 126 }; 127 128 class PluginProperties : public Properties { 129 public: 130 static ConstString GetSettingName() { 131 return SymbolFileDWARF::GetPluginNameStatic(); 132 } 133 134 PluginProperties() { 135 m_collection_sp = std::make_shared<OptionValueProperties>(GetSettingName()); 136 m_collection_sp->Initialize(g_symbolfiledwarf_properties); 137 } 138 139 bool IgnoreFileIndexes() const { 140 return m_collection_sp->GetPropertyAtIndexAsBoolean( 141 nullptr, ePropertyIgnoreIndexes, false); 142 } 143 }; 144 145 typedef std::shared_ptr<PluginProperties> SymbolFileDWARFPropertiesSP; 146 147 static const SymbolFileDWARFPropertiesSP &GetGlobalPluginProperties() { 148 static const auto g_settings_sp(std::make_shared<PluginProperties>()); 149 return g_settings_sp; 150 } 151 152 } // namespace 153 154 static const llvm::DWARFDebugLine::LineTable * 155 ParseLLVMLineTable(lldb_private::DWARFContext &context, 156 llvm::DWARFDebugLine &line, dw_offset_t line_offset, 157 dw_offset_t unit_offset) { 158 Log *log = LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO); 159 160 llvm::DWARFDataExtractor data = context.getOrLoadLineData().GetAsLLVM(); 161 llvm::DWARFContext &ctx = context.GetAsLLVM(); 162 llvm::Expected<const llvm::DWARFDebugLine::LineTable *> line_table = 163 line.getOrParseLineTable( 164 data, line_offset, ctx, nullptr, [&](llvm::Error e) { 165 LLDB_LOG_ERROR(log, std::move(e), 166 "SymbolFileDWARF::ParseLineTable failed to parse"); 167 }); 168 169 if (!line_table) { 170 LLDB_LOG_ERROR(log, line_table.takeError(), 171 "SymbolFileDWARF::ParseLineTable failed to parse"); 172 return nullptr; 173 } 174 return *line_table; 175 } 176 177 static llvm::Optional<std::string> 178 GetFileByIndex(const llvm::DWARFDebugLine::Prologue &prologue, size_t idx, 179 llvm::StringRef compile_dir, FileSpec::Style style) { 180 // Try to get an absolute path first. 181 std::string abs_path; 182 auto absolute = llvm::DILineInfoSpecifier::FileLineInfoKind::AbsoluteFilePath; 183 if (prologue.getFileNameByIndex(idx, compile_dir, absolute, abs_path, style)) 184 return std::move(abs_path); 185 186 // Otherwise ask for a relative path. 187 std::string rel_path; 188 auto relative = llvm::DILineInfoSpecifier::FileLineInfoKind::RawValue; 189 if (!prologue.getFileNameByIndex(idx, compile_dir, relative, rel_path, style)) 190 return {}; 191 return std::move(rel_path); 192 } 193 194 static FileSpecList 195 ParseSupportFilesFromPrologue(const lldb::ModuleSP &module, 196 const llvm::DWARFDebugLine::Prologue &prologue, 197 FileSpec::Style style, 198 llvm::StringRef compile_dir = {}) { 199 FileSpecList support_files; 200 size_t first_file = 0; 201 if (prologue.getVersion() <= 4) { 202 // File index 0 is not valid before DWARF v5. Add a dummy entry to ensure 203 // support file list indices match those we get from the debug info and line 204 // tables. 205 support_files.Append(FileSpec()); 206 first_file = 1; 207 } 208 209 const size_t number_of_files = prologue.FileNames.size(); 210 for (size_t idx = first_file; idx <= number_of_files; ++idx) { 211 std::string remapped_file; 212 if (auto file_path = GetFileByIndex(prologue, idx, compile_dir, style)) 213 if (!module->RemapSourceFile(llvm::StringRef(*file_path), remapped_file)) 214 remapped_file = std::move(*file_path); 215 216 // Unconditionally add an entry, so the indices match up. 217 support_files.EmplaceBack(remapped_file, style); 218 } 219 220 return support_files; 221 } 222 223 void SymbolFileDWARF::Initialize() { 224 LogChannelDWARF::Initialize(); 225 PluginManager::RegisterPlugin(GetPluginNameStatic(), 226 GetPluginDescriptionStatic(), CreateInstance, 227 DebuggerInitialize); 228 SymbolFileDWARFDebugMap::Initialize(); 229 } 230 231 void SymbolFileDWARF::DebuggerInitialize(Debugger &debugger) { 232 if (!PluginManager::GetSettingForSymbolFilePlugin( 233 debugger, PluginProperties::GetSettingName())) { 234 const bool is_global_setting = true; 235 PluginManager::CreateSettingForSymbolFilePlugin( 236 debugger, GetGlobalPluginProperties()->GetValueProperties(), 237 ConstString("Properties for the dwarf symbol-file plug-in."), 238 is_global_setting); 239 } 240 } 241 242 void SymbolFileDWARF::Terminate() { 243 SymbolFileDWARFDebugMap::Terminate(); 244 PluginManager::UnregisterPlugin(CreateInstance); 245 LogChannelDWARF::Terminate(); 246 } 247 248 lldb_private::ConstString SymbolFileDWARF::GetPluginNameStatic() { 249 static ConstString g_name("dwarf"); 250 return g_name; 251 } 252 253 const char *SymbolFileDWARF::GetPluginDescriptionStatic() { 254 return "DWARF and DWARF3 debug symbol file reader."; 255 } 256 257 SymbolFile *SymbolFileDWARF::CreateInstance(ObjectFileSP objfile_sp) { 258 return new SymbolFileDWARF(std::move(objfile_sp), 259 /*dwo_section_list*/ nullptr); 260 } 261 262 TypeList &SymbolFileDWARF::GetTypeList() { 263 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 264 if (SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile()) 265 return debug_map_symfile->GetTypeList(); 266 return SymbolFile::GetTypeList(); 267 } 268 void SymbolFileDWARF::GetTypes(const DWARFDIE &die, dw_offset_t min_die_offset, 269 dw_offset_t max_die_offset, uint32_t type_mask, 270 TypeSet &type_set) { 271 if (die) { 272 const dw_offset_t die_offset = die.GetOffset(); 273 274 if (die_offset >= max_die_offset) 275 return; 276 277 if (die_offset >= min_die_offset) { 278 const dw_tag_t tag = die.Tag(); 279 280 bool add_type = false; 281 282 switch (tag) { 283 case DW_TAG_array_type: 284 add_type = (type_mask & eTypeClassArray) != 0; 285 break; 286 case DW_TAG_unspecified_type: 287 case DW_TAG_base_type: 288 add_type = (type_mask & eTypeClassBuiltin) != 0; 289 break; 290 case DW_TAG_class_type: 291 add_type = (type_mask & eTypeClassClass) != 0; 292 break; 293 case DW_TAG_structure_type: 294 add_type = (type_mask & eTypeClassStruct) != 0; 295 break; 296 case DW_TAG_union_type: 297 add_type = (type_mask & eTypeClassUnion) != 0; 298 break; 299 case DW_TAG_enumeration_type: 300 add_type = (type_mask & eTypeClassEnumeration) != 0; 301 break; 302 case DW_TAG_subroutine_type: 303 case DW_TAG_subprogram: 304 case DW_TAG_inlined_subroutine: 305 add_type = (type_mask & eTypeClassFunction) != 0; 306 break; 307 case DW_TAG_pointer_type: 308 add_type = (type_mask & eTypeClassPointer) != 0; 309 break; 310 case DW_TAG_rvalue_reference_type: 311 case DW_TAG_reference_type: 312 add_type = (type_mask & eTypeClassReference) != 0; 313 break; 314 case DW_TAG_typedef: 315 add_type = (type_mask & eTypeClassTypedef) != 0; 316 break; 317 case DW_TAG_ptr_to_member_type: 318 add_type = (type_mask & eTypeClassMemberPointer) != 0; 319 break; 320 default: 321 break; 322 } 323 324 if (add_type) { 325 const bool assert_not_being_parsed = true; 326 Type *type = ResolveTypeUID(die, assert_not_being_parsed); 327 if (type) 328 type_set.insert(type); 329 } 330 } 331 332 for (DWARFDIE child_die = die.GetFirstChild(); child_die.IsValid(); 333 child_die = child_die.GetSibling()) { 334 GetTypes(child_die, min_die_offset, max_die_offset, type_mask, type_set); 335 } 336 } 337 } 338 339 void SymbolFileDWARF::GetTypes(SymbolContextScope *sc_scope, 340 TypeClass type_mask, TypeList &type_list) 341 342 { 343 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 344 TypeSet type_set; 345 346 CompileUnit *comp_unit = nullptr; 347 DWARFUnit *dwarf_cu = nullptr; 348 if (sc_scope) 349 comp_unit = sc_scope->CalculateSymbolContextCompileUnit(); 350 351 if (comp_unit) { 352 dwarf_cu = GetDWARFCompileUnit(comp_unit); 353 if (!dwarf_cu) 354 return; 355 GetTypes(dwarf_cu->DIE(), dwarf_cu->GetOffset(), 356 dwarf_cu->GetNextUnitOffset(), type_mask, type_set); 357 } else { 358 DWARFDebugInfo &info = DebugInfo(); 359 const size_t num_cus = info.GetNumUnits(); 360 for (size_t cu_idx = 0; cu_idx < num_cus; ++cu_idx) { 361 dwarf_cu = info.GetUnitAtIndex(cu_idx); 362 if (dwarf_cu) 363 GetTypes(dwarf_cu->DIE(), 0, UINT32_MAX, type_mask, type_set); 364 } 365 } 366 367 std::set<CompilerType> compiler_type_set; 368 for (Type *type : type_set) { 369 CompilerType compiler_type = type->GetForwardCompilerType(); 370 if (compiler_type_set.find(compiler_type) == compiler_type_set.end()) { 371 compiler_type_set.insert(compiler_type); 372 type_list.Insert(type->shared_from_this()); 373 } 374 } 375 } 376 377 // Gets the first parent that is a lexical block, function or inlined 378 // subroutine, or compile unit. 379 DWARFDIE 380 SymbolFileDWARF::GetParentSymbolContextDIE(const DWARFDIE &child_die) { 381 DWARFDIE die; 382 for (die = child_die.GetParent(); die; die = die.GetParent()) { 383 dw_tag_t tag = die.Tag(); 384 385 switch (tag) { 386 case DW_TAG_compile_unit: 387 case DW_TAG_partial_unit: 388 case DW_TAG_subprogram: 389 case DW_TAG_inlined_subroutine: 390 case DW_TAG_lexical_block: 391 return die; 392 default: 393 break; 394 } 395 } 396 return DWARFDIE(); 397 } 398 399 SymbolFileDWARF::SymbolFileDWARF(ObjectFileSP objfile_sp, 400 SectionList *dwo_section_list) 401 : SymbolFile(std::move(objfile_sp)), 402 UserID(0x7fffffff00000000), // Used by SymbolFileDWARFDebugMap to 403 // when this class parses .o files to 404 // contain the .o file index/ID 405 m_debug_map_module_wp(), m_debug_map_symfile(nullptr), 406 m_context(m_objfile_sp->GetModule()->GetSectionList(), dwo_section_list), 407 m_fetched_external_modules(false), 408 m_supports_DW_AT_APPLE_objc_complete_type(eLazyBoolCalculate) {} 409 410 SymbolFileDWARF::~SymbolFileDWARF() {} 411 412 static ConstString GetDWARFMachOSegmentName() { 413 static ConstString g_dwarf_section_name("__DWARF"); 414 return g_dwarf_section_name; 415 } 416 417 UniqueDWARFASTTypeMap &SymbolFileDWARF::GetUniqueDWARFASTTypeMap() { 418 SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile(); 419 if (debug_map_symfile) 420 return debug_map_symfile->GetUniqueDWARFASTTypeMap(); 421 else 422 return m_unique_ast_type_map; 423 } 424 425 llvm::Expected<TypeSystem &> 426 SymbolFileDWARF::GetTypeSystemForLanguage(LanguageType language) { 427 if (SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile()) 428 return debug_map_symfile->GetTypeSystemForLanguage(language); 429 430 auto type_system_or_err = 431 m_objfile_sp->GetModule()->GetTypeSystemForLanguage(language); 432 if (type_system_or_err) { 433 type_system_or_err->SetSymbolFile(this); 434 } 435 return type_system_or_err; 436 } 437 438 void SymbolFileDWARF::InitializeObject() { 439 Log *log = LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO); 440 441 if (!GetGlobalPluginProperties()->IgnoreFileIndexes()) { 442 DWARFDataExtractor apple_names, apple_namespaces, apple_types, apple_objc; 443 LoadSectionData(eSectionTypeDWARFAppleNames, apple_names); 444 LoadSectionData(eSectionTypeDWARFAppleNamespaces, apple_namespaces); 445 LoadSectionData(eSectionTypeDWARFAppleTypes, apple_types); 446 LoadSectionData(eSectionTypeDWARFAppleObjC, apple_objc); 447 448 m_index = AppleDWARFIndex::Create( 449 *GetObjectFile()->GetModule(), apple_names, apple_namespaces, 450 apple_types, apple_objc, m_context.getOrLoadStrData()); 451 452 if (m_index) 453 return; 454 455 DWARFDataExtractor debug_names; 456 LoadSectionData(eSectionTypeDWARFDebugNames, debug_names); 457 if (debug_names.GetByteSize() > 0) { 458 llvm::Expected<std::unique_ptr<DebugNamesDWARFIndex>> index_or = 459 DebugNamesDWARFIndex::Create(*GetObjectFile()->GetModule(), 460 debug_names, 461 m_context.getOrLoadStrData(), *this); 462 if (index_or) { 463 m_index = std::move(*index_or); 464 return; 465 } 466 LLDB_LOG_ERROR(log, index_or.takeError(), 467 "Unable to read .debug_names data: {0}"); 468 } 469 } 470 471 m_index = 472 std::make_unique<ManualDWARFIndex>(*GetObjectFile()->GetModule(), *this); 473 } 474 475 bool SymbolFileDWARF::SupportedVersion(uint16_t version) { 476 return version >= 2 && version <= 5; 477 } 478 479 uint32_t SymbolFileDWARF::CalculateAbilities() { 480 uint32_t abilities = 0; 481 if (m_objfile_sp != nullptr) { 482 const Section *section = nullptr; 483 const SectionList *section_list = m_objfile_sp->GetSectionList(); 484 if (section_list == nullptr) 485 return 0; 486 487 uint64_t debug_abbrev_file_size = 0; 488 uint64_t debug_info_file_size = 0; 489 uint64_t debug_line_file_size = 0; 490 491 section = section_list->FindSectionByName(GetDWARFMachOSegmentName()).get(); 492 493 if (section) 494 section_list = §ion->GetChildren(); 495 496 section = 497 section_list->FindSectionByType(eSectionTypeDWARFDebugInfo, true).get(); 498 if (section != nullptr) { 499 debug_info_file_size = section->GetFileSize(); 500 501 section = 502 section_list->FindSectionByType(eSectionTypeDWARFDebugAbbrev, true) 503 .get(); 504 if (section) 505 debug_abbrev_file_size = section->GetFileSize(); 506 507 DWARFDebugAbbrev *abbrev = DebugAbbrev(); 508 if (abbrev) { 509 std::set<dw_form_t> invalid_forms; 510 abbrev->GetUnsupportedForms(invalid_forms); 511 if (!invalid_forms.empty()) { 512 StreamString error; 513 error.Printf("unsupported DW_FORM value%s:", 514 invalid_forms.size() > 1 ? "s" : ""); 515 for (auto form : invalid_forms) 516 error.Printf(" %#x", form); 517 m_objfile_sp->GetModule()->ReportWarning( 518 "%s", error.GetString().str().c_str()); 519 return 0; 520 } 521 } 522 523 section = 524 section_list->FindSectionByType(eSectionTypeDWARFDebugLine, true) 525 .get(); 526 if (section) 527 debug_line_file_size = section->GetFileSize(); 528 } else { 529 const char *symfile_dir_cstr = 530 m_objfile_sp->GetFileSpec().GetDirectory().GetCString(); 531 if (symfile_dir_cstr) { 532 if (strcasestr(symfile_dir_cstr, ".dsym")) { 533 if (m_objfile_sp->GetType() == ObjectFile::eTypeDebugInfo) { 534 // We have a dSYM file that didn't have a any debug info. If the 535 // string table has a size of 1, then it was made from an 536 // executable with no debug info, or from an executable that was 537 // stripped. 538 section = 539 section_list->FindSectionByType(eSectionTypeDWARFDebugStr, true) 540 .get(); 541 if (section && section->GetFileSize() == 1) { 542 m_objfile_sp->GetModule()->ReportWarning( 543 "empty dSYM file detected, dSYM was created with an " 544 "executable with no debug info."); 545 } 546 } 547 } 548 } 549 } 550 551 if (debug_abbrev_file_size > 0 && debug_info_file_size > 0) 552 abilities |= CompileUnits | Functions | Blocks | GlobalVariables | 553 LocalVariables | VariableTypes; 554 555 if (debug_line_file_size > 0) 556 abilities |= LineTables; 557 } 558 return abilities; 559 } 560 561 void SymbolFileDWARF::LoadSectionData(lldb::SectionType sect_type, 562 DWARFDataExtractor &data) { 563 ModuleSP module_sp(m_objfile_sp->GetModule()); 564 const SectionList *section_list = module_sp->GetSectionList(); 565 if (!section_list) 566 return; 567 568 SectionSP section_sp(section_list->FindSectionByType(sect_type, true)); 569 if (!section_sp) 570 return; 571 572 data.Clear(); 573 m_objfile_sp->ReadSectionData(section_sp.get(), data); 574 } 575 576 DWARFDebugAbbrev *SymbolFileDWARF::DebugAbbrev() { 577 if (m_abbr) 578 return m_abbr.get(); 579 580 const DWARFDataExtractor &debug_abbrev_data = m_context.getOrLoadAbbrevData(); 581 if (debug_abbrev_data.GetByteSize() == 0) 582 return nullptr; 583 584 auto abbr = std::make_unique<DWARFDebugAbbrev>(); 585 llvm::Error error = abbr->parse(debug_abbrev_data); 586 if (error) { 587 Log *log = LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO); 588 LLDB_LOG_ERROR(log, std::move(error), 589 "Unable to read .debug_abbrev section: {0}"); 590 return nullptr; 591 } 592 593 m_abbr = std::move(abbr); 594 return m_abbr.get(); 595 } 596 597 DWARFDebugInfo &SymbolFileDWARF::DebugInfo() { 598 llvm::call_once(m_info_once_flag, [&] { 599 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 600 Timer scoped_timer(func_cat, "%s this = %p", LLVM_PRETTY_FUNCTION, 601 static_cast<void *>(this)); 602 m_info = std::make_unique<DWARFDebugInfo>(*this, m_context); 603 }); 604 return *m_info; 605 } 606 607 DWARFUnit * 608 SymbolFileDWARF::GetDWARFCompileUnit(lldb_private::CompileUnit *comp_unit) { 609 if (!comp_unit) 610 return nullptr; 611 612 // The compile unit ID is the index of the DWARF unit. 613 DWARFUnit *dwarf_cu = DebugInfo().GetUnitAtIndex(comp_unit->GetID()); 614 if (dwarf_cu && dwarf_cu->GetUserData() == nullptr) 615 dwarf_cu->SetUserData(comp_unit); 616 return dwarf_cu; 617 } 618 619 DWARFDebugRanges *SymbolFileDWARF::GetDebugRanges() { 620 if (!m_ranges) { 621 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 622 Timer scoped_timer(func_cat, "%s this = %p", LLVM_PRETTY_FUNCTION, 623 static_cast<void *>(this)); 624 625 if (m_context.getOrLoadRangesData().GetByteSize() > 0) 626 m_ranges.reset(new DWARFDebugRanges()); 627 628 if (m_ranges) 629 m_ranges->Extract(m_context); 630 } 631 return m_ranges.get(); 632 } 633 634 /// Make an absolute path out of \p file_spec and remap it using the 635 /// module's source remapping dictionary. 636 static void MakeAbsoluteAndRemap(FileSpec &file_spec, DWARFUnit &dwarf_cu, 637 const ModuleSP &module_sp) { 638 if (!file_spec) 639 return; 640 // If we have a full path to the compile unit, we don't need to 641 // resolve the file. This can be expensive e.g. when the source 642 // files are NFS mounted. 643 file_spec.MakeAbsolute(dwarf_cu.GetCompilationDirectory()); 644 645 std::string remapped_file; 646 if (module_sp->RemapSourceFile(file_spec.GetPath(), remapped_file)) 647 file_spec.SetFile(remapped_file, FileSpec::Style::native); 648 } 649 650 lldb::CompUnitSP SymbolFileDWARF::ParseCompileUnit(DWARFCompileUnit &dwarf_cu) { 651 CompUnitSP cu_sp; 652 CompileUnit *comp_unit = (CompileUnit *)dwarf_cu.GetUserData(); 653 if (comp_unit) { 654 // We already parsed this compile unit, had out a shared pointer to it 655 cu_sp = comp_unit->shared_from_this(); 656 } else { 657 if (dwarf_cu.GetOffset() == 0 && GetDebugMapSymfile()) { 658 // Let the debug map create the compile unit 659 cu_sp = m_debug_map_symfile->GetCompileUnit(this); 660 dwarf_cu.SetUserData(cu_sp.get()); 661 } else { 662 ModuleSP module_sp(m_objfile_sp->GetModule()); 663 if (module_sp) { 664 const DWARFBaseDIE cu_die = 665 dwarf_cu.GetNonSkeletonUnit().GetUnitDIEOnly(); 666 if (cu_die) { 667 if (const char *sdk = 668 cu_die.GetAttributeValueAsString(DW_AT_APPLE_sdk, nullptr)) { 669 const char *sysroot = 670 cu_die.GetAttributeValueAsString(DW_AT_LLVM_sysroot, ""); 671 module_sp->RegisterXcodeSDK(sdk, sysroot); 672 } 673 FileSpec cu_file_spec(cu_die.GetName(), dwarf_cu.GetPathStyle()); 674 MakeAbsoluteAndRemap(cu_file_spec, dwarf_cu, module_sp); 675 676 LanguageType cu_language = SymbolFileDWARF::LanguageTypeFromDWARF( 677 cu_die.GetAttributeValueAsUnsigned(DW_AT_language, 0)); 678 679 bool is_optimized = dwarf_cu.GetNonSkeletonUnit().GetIsOptimized(); 680 BuildCuTranslationTable(); 681 cu_sp = std::make_shared<CompileUnit>( 682 module_sp, &dwarf_cu, cu_file_spec, 683 *GetDWARFUnitIndex(dwarf_cu.GetID()), cu_language, 684 is_optimized ? eLazyBoolYes : eLazyBoolNo); 685 686 dwarf_cu.SetUserData(cu_sp.get()); 687 688 SetCompileUnitAtIndex(dwarf_cu.GetID(), cu_sp); 689 } 690 } 691 } 692 } 693 return cu_sp; 694 } 695 696 void SymbolFileDWARF::BuildCuTranslationTable() { 697 if (!m_lldb_cu_to_dwarf_unit.empty()) 698 return; 699 700 DWARFDebugInfo &info = DebugInfo(); 701 if (!info.ContainsTypeUnits()) { 702 // We can use a 1-to-1 mapping. No need to build a translation table. 703 return; 704 } 705 for (uint32_t i = 0, num = info.GetNumUnits(); i < num; ++i) { 706 if (auto *cu = llvm::dyn_cast<DWARFCompileUnit>(info.GetUnitAtIndex(i))) { 707 cu->SetID(m_lldb_cu_to_dwarf_unit.size()); 708 m_lldb_cu_to_dwarf_unit.push_back(i); 709 } 710 } 711 } 712 713 llvm::Optional<uint32_t> SymbolFileDWARF::GetDWARFUnitIndex(uint32_t cu_idx) { 714 BuildCuTranslationTable(); 715 if (m_lldb_cu_to_dwarf_unit.empty()) 716 return cu_idx; 717 if (cu_idx >= m_lldb_cu_to_dwarf_unit.size()) 718 return llvm::None; 719 return m_lldb_cu_to_dwarf_unit[cu_idx]; 720 } 721 722 uint32_t SymbolFileDWARF::CalculateNumCompileUnits() { 723 BuildCuTranslationTable(); 724 return m_lldb_cu_to_dwarf_unit.empty() ? DebugInfo().GetNumUnits() 725 : m_lldb_cu_to_dwarf_unit.size(); 726 } 727 728 CompUnitSP SymbolFileDWARF::ParseCompileUnitAtIndex(uint32_t cu_idx) { 729 ASSERT_MODULE_LOCK(this); 730 if (llvm::Optional<uint32_t> dwarf_idx = GetDWARFUnitIndex(cu_idx)) { 731 if (auto *dwarf_cu = llvm::cast_or_null<DWARFCompileUnit>( 732 DebugInfo().GetUnitAtIndex(*dwarf_idx))) 733 return ParseCompileUnit(*dwarf_cu); 734 } 735 return {}; 736 } 737 738 Function *SymbolFileDWARF::ParseFunction(CompileUnit &comp_unit, 739 const DWARFDIE &die) { 740 ASSERT_MODULE_LOCK(this); 741 if (!die.IsValid()) 742 return nullptr; 743 744 auto type_system_or_err = GetTypeSystemForLanguage(GetLanguage(*die.GetCU())); 745 if (auto err = type_system_or_err.takeError()) { 746 LLDB_LOG_ERROR(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_SYMBOLS), 747 std::move(err), "Unable to parse function"); 748 return nullptr; 749 } 750 DWARFASTParser *dwarf_ast = type_system_or_err->GetDWARFParser(); 751 if (!dwarf_ast) 752 return nullptr; 753 754 return dwarf_ast->ParseFunctionFromDWARF(comp_unit, die); 755 } 756 757 lldb::addr_t SymbolFileDWARF::FixupAddress(lldb::addr_t file_addr) { 758 SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile(); 759 if (debug_map_symfile) 760 return debug_map_symfile->LinkOSOFileAddress(this, file_addr); 761 return file_addr; 762 } 763 764 bool SymbolFileDWARF::FixupAddress(Address &addr) { 765 SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile(); 766 if (debug_map_symfile) { 767 return debug_map_symfile->LinkOSOAddress(addr); 768 } 769 // This is a normal DWARF file, no address fixups need to happen 770 return true; 771 } 772 lldb::LanguageType SymbolFileDWARF::ParseLanguage(CompileUnit &comp_unit) { 773 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 774 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(&comp_unit); 775 if (dwarf_cu) 776 return GetLanguage(*dwarf_cu); 777 else 778 return eLanguageTypeUnknown; 779 } 780 781 size_t SymbolFileDWARF::ParseFunctions(CompileUnit &comp_unit) { 782 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 783 Timer scoped_timer(func_cat, "SymbolFileDWARF::ParseFunctions"); 784 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 785 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(&comp_unit); 786 if (!dwarf_cu) 787 return 0; 788 789 size_t functions_added = 0; 790 dwarf_cu = &dwarf_cu->GetNonSkeletonUnit(); 791 for (DWARFDebugInfoEntry &entry : dwarf_cu->dies()) { 792 if (entry.Tag() != DW_TAG_subprogram) 793 continue; 794 795 DWARFDIE die(dwarf_cu, &entry); 796 if (comp_unit.FindFunctionByUID(die.GetID())) 797 continue; 798 if (ParseFunction(comp_unit, die)) 799 ++functions_added; 800 } 801 // FixupTypes(); 802 return functions_added; 803 } 804 805 bool SymbolFileDWARF::ForEachExternalModule( 806 CompileUnit &comp_unit, 807 llvm::DenseSet<lldb_private::SymbolFile *> &visited_symbol_files, 808 llvm::function_ref<bool(Module &)> lambda) { 809 // Only visit each symbol file once. 810 if (!visited_symbol_files.insert(this).second) 811 return false; 812 813 UpdateExternalModuleListIfNeeded(); 814 for (auto &p : m_external_type_modules) { 815 ModuleSP module = p.second; 816 if (!module) 817 continue; 818 819 // Invoke the action and potentially early-exit. 820 if (lambda(*module)) 821 return true; 822 823 for (std::size_t i = 0; i < module->GetNumCompileUnits(); ++i) { 824 auto cu = module->GetCompileUnitAtIndex(i); 825 bool early_exit = cu->ForEachExternalModule(visited_symbol_files, lambda); 826 if (early_exit) 827 return true; 828 } 829 } 830 return false; 831 } 832 833 bool SymbolFileDWARF::ParseSupportFiles(CompileUnit &comp_unit, 834 FileSpecList &support_files) { 835 if (!comp_unit.GetLineTable()) 836 ParseLineTable(comp_unit); 837 return true; 838 } 839 840 FileSpec SymbolFileDWARF::GetFile(DWARFUnit &unit, size_t file_idx) { 841 if (auto *dwarf_cu = llvm::dyn_cast<DWARFCompileUnit>(&unit)) { 842 if (CompileUnit *lldb_cu = GetCompUnitForDWARFCompUnit(*dwarf_cu)) 843 return lldb_cu->GetSupportFiles().GetFileSpecAtIndex(file_idx); 844 return FileSpec(); 845 } 846 847 auto &tu = llvm::cast<DWARFTypeUnit>(unit); 848 return GetTypeUnitSupportFiles(tu).GetFileSpecAtIndex(file_idx); 849 } 850 851 const FileSpecList & 852 SymbolFileDWARF::GetTypeUnitSupportFiles(DWARFTypeUnit &tu) { 853 static FileSpecList empty_list; 854 855 dw_offset_t offset = tu.GetLineTableOffset(); 856 if (offset == DW_INVALID_OFFSET || 857 offset == llvm::DenseMapInfo<dw_offset_t>::getEmptyKey() || 858 offset == llvm::DenseMapInfo<dw_offset_t>::getTombstoneKey()) 859 return empty_list; 860 861 // Many type units can share a line table, so parse the support file list 862 // once, and cache it based on the offset field. 863 auto iter_bool = m_type_unit_support_files.try_emplace(offset); 864 FileSpecList &list = iter_bool.first->second; 865 if (iter_bool.second) { 866 uint64_t line_table_offset = offset; 867 llvm::DWARFDataExtractor data = m_context.getOrLoadLineData().GetAsLLVM(); 868 llvm::DWARFContext &ctx = m_context.GetAsLLVM(); 869 llvm::DWARFDebugLine::Prologue prologue; 870 auto report = [](llvm::Error error) { 871 Log *log = LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO); 872 LLDB_LOG_ERROR(log, std::move(error), 873 "SymbolFileDWARF::GetTypeUnitSupportFiles failed to parse " 874 "the line table prologue"); 875 }; 876 llvm::Error error = prologue.parse(data, &line_table_offset, report, ctx); 877 if (error) { 878 report(std::move(error)); 879 } else { 880 list = ParseSupportFilesFromPrologue(GetObjectFile()->GetModule(), 881 prologue, tu.GetPathStyle()); 882 } 883 } 884 return list; 885 } 886 887 bool SymbolFileDWARF::ParseIsOptimized(CompileUnit &comp_unit) { 888 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 889 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(&comp_unit); 890 if (dwarf_cu) 891 return dwarf_cu->GetIsOptimized(); 892 return false; 893 } 894 895 bool SymbolFileDWARF::ParseImportedModules( 896 const lldb_private::SymbolContext &sc, 897 std::vector<SourceModule> &imported_modules) { 898 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 899 assert(sc.comp_unit); 900 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(sc.comp_unit); 901 if (!dwarf_cu) 902 return false; 903 if (!ClangModulesDeclVendor::LanguageSupportsClangModules( 904 sc.comp_unit->GetLanguage())) 905 return false; 906 UpdateExternalModuleListIfNeeded(); 907 908 const DWARFDIE die = dwarf_cu->DIE(); 909 if (!die) 910 return false; 911 912 for (DWARFDIE child_die = die.GetFirstChild(); child_die; 913 child_die = child_die.GetSibling()) { 914 if (child_die.Tag() != DW_TAG_imported_declaration) 915 continue; 916 917 DWARFDIE module_die = child_die.GetReferencedDIE(DW_AT_import); 918 if (module_die.Tag() != DW_TAG_module) 919 continue; 920 921 if (const char *name = 922 module_die.GetAttributeValueAsString(DW_AT_name, nullptr)) { 923 SourceModule module; 924 module.path.push_back(ConstString(name)); 925 926 DWARFDIE parent_die = module_die; 927 while ((parent_die = parent_die.GetParent())) { 928 if (parent_die.Tag() != DW_TAG_module) 929 break; 930 if (const char *name = 931 parent_die.GetAttributeValueAsString(DW_AT_name, nullptr)) 932 module.path.push_back(ConstString(name)); 933 } 934 std::reverse(module.path.begin(), module.path.end()); 935 if (const char *include_path = module_die.GetAttributeValueAsString( 936 DW_AT_LLVM_include_path, nullptr)) { 937 FileSpec include_spec(include_path, dwarf_cu->GetPathStyle()); 938 MakeAbsoluteAndRemap(include_spec, *dwarf_cu, m_objfile_sp->GetModule()); 939 module.search_path = ConstString(include_spec.GetPath()); 940 } 941 if (const char *sysroot = dwarf_cu->DIE().GetAttributeValueAsString( 942 DW_AT_LLVM_sysroot, nullptr)) 943 module.sysroot = ConstString(sysroot); 944 imported_modules.push_back(module); 945 } 946 } 947 return true; 948 } 949 950 bool SymbolFileDWARF::ParseLineTable(CompileUnit &comp_unit) { 951 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 952 if (comp_unit.GetLineTable() != nullptr) 953 return true; 954 955 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(&comp_unit); 956 if (!dwarf_cu) 957 return false; 958 959 const DWARFBaseDIE dwarf_cu_die = dwarf_cu->GetUnitDIEOnly(); 960 if (!dwarf_cu_die) 961 return false; 962 963 const dw_offset_t cu_line_offset = dwarf_cu_die.GetAttributeValueAsUnsigned( 964 DW_AT_stmt_list, DW_INVALID_OFFSET); 965 if (cu_line_offset == DW_INVALID_OFFSET) 966 return false; 967 968 llvm::DWARFDebugLine line; 969 const llvm::DWARFDebugLine::LineTable *line_table = ParseLLVMLineTable( 970 m_context, line, cu_line_offset, dwarf_cu->GetOffset()); 971 972 if (!line_table) 973 return false; 974 975 // FIXME: Rather than parsing the whole line table and then copying it over 976 // into LLDB, we should explore using a callback to populate the line table 977 // while we parse to reduce memory usage. 978 std::unique_ptr<LineSequence> sequence = 979 LineTable::CreateLineSequenceContainer(); 980 std::vector<std::unique_ptr<LineSequence>> sequences; 981 for (auto &row : line_table->Rows) { 982 LineTable::AppendLineEntryToSequence( 983 sequence.get(), row.Address.Address, row.Line, row.Column, row.File, 984 row.IsStmt, row.BasicBlock, row.PrologueEnd, row.EpilogueBegin, 985 row.EndSequence); 986 if (row.EndSequence) { 987 sequences.push_back(std::move(sequence)); 988 sequence = LineTable::CreateLineSequenceContainer(); 989 } 990 } 991 992 std::unique_ptr<LineTable> line_table_up = 993 std::make_unique<LineTable>(&comp_unit, std::move(sequences)); 994 995 if (SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile()) { 996 // We have an object file that has a line table with addresses that are not 997 // linked. We need to link the line table and convert the addresses that 998 // are relative to the .o file into addresses for the main executable. 999 comp_unit.SetLineTable( 1000 debug_map_symfile->LinkOSOLineTable(this, line_table_up.get())); 1001 } else { 1002 comp_unit.SetLineTable(line_table_up.release()); 1003 } 1004 1005 comp_unit.SetSupportFiles(ParseSupportFilesFromPrologue( 1006 comp_unit.GetModule(), line_table->Prologue, dwarf_cu->GetPathStyle(), 1007 dwarf_cu->GetCompilationDirectory().GetCString())); 1008 1009 return true; 1010 } 1011 1012 lldb_private::DebugMacrosSP 1013 SymbolFileDWARF::ParseDebugMacros(lldb::offset_t *offset) { 1014 auto iter = m_debug_macros_map.find(*offset); 1015 if (iter != m_debug_macros_map.end()) 1016 return iter->second; 1017 1018 const DWARFDataExtractor &debug_macro_data = m_context.getOrLoadMacroData(); 1019 if (debug_macro_data.GetByteSize() == 0) 1020 return DebugMacrosSP(); 1021 1022 lldb_private::DebugMacrosSP debug_macros_sp(new lldb_private::DebugMacros()); 1023 m_debug_macros_map[*offset] = debug_macros_sp; 1024 1025 const DWARFDebugMacroHeader &header = 1026 DWARFDebugMacroHeader::ParseHeader(debug_macro_data, offset); 1027 DWARFDebugMacroEntry::ReadMacroEntries( 1028 debug_macro_data, m_context.getOrLoadStrData(), header.OffsetIs64Bit(), 1029 offset, this, debug_macros_sp); 1030 1031 return debug_macros_sp; 1032 } 1033 1034 bool SymbolFileDWARF::ParseDebugMacros(CompileUnit &comp_unit) { 1035 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1036 1037 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(&comp_unit); 1038 if (dwarf_cu == nullptr) 1039 return false; 1040 1041 const DWARFBaseDIE dwarf_cu_die = dwarf_cu->GetUnitDIEOnly(); 1042 if (!dwarf_cu_die) 1043 return false; 1044 1045 lldb::offset_t sect_offset = 1046 dwarf_cu_die.GetAttributeValueAsUnsigned(DW_AT_macros, DW_INVALID_OFFSET); 1047 if (sect_offset == DW_INVALID_OFFSET) 1048 sect_offset = dwarf_cu_die.GetAttributeValueAsUnsigned(DW_AT_GNU_macros, 1049 DW_INVALID_OFFSET); 1050 if (sect_offset == DW_INVALID_OFFSET) 1051 return false; 1052 1053 comp_unit.SetDebugMacros(ParseDebugMacros(§_offset)); 1054 1055 return true; 1056 } 1057 1058 size_t SymbolFileDWARF::ParseBlocksRecursive( 1059 lldb_private::CompileUnit &comp_unit, Block *parent_block, 1060 const DWARFDIE &orig_die, addr_t subprogram_low_pc, uint32_t depth) { 1061 size_t blocks_added = 0; 1062 DWARFDIE die = orig_die; 1063 while (die) { 1064 dw_tag_t tag = die.Tag(); 1065 1066 switch (tag) { 1067 case DW_TAG_inlined_subroutine: 1068 case DW_TAG_subprogram: 1069 case DW_TAG_lexical_block: { 1070 Block *block = nullptr; 1071 if (tag == DW_TAG_subprogram) { 1072 // Skip any DW_TAG_subprogram DIEs that are inside of a normal or 1073 // inlined functions. These will be parsed on their own as separate 1074 // entities. 1075 1076 if (depth > 0) 1077 break; 1078 1079 block = parent_block; 1080 } else { 1081 BlockSP block_sp(new Block(die.GetID())); 1082 parent_block->AddChild(block_sp); 1083 block = block_sp.get(); 1084 } 1085 DWARFRangeList ranges; 1086 const char *name = nullptr; 1087 const char *mangled_name = nullptr; 1088 1089 int decl_file = 0; 1090 int decl_line = 0; 1091 int decl_column = 0; 1092 int call_file = 0; 1093 int call_line = 0; 1094 int call_column = 0; 1095 if (die.GetDIENamesAndRanges(name, mangled_name, ranges, decl_file, 1096 decl_line, decl_column, call_file, call_line, 1097 call_column, nullptr)) { 1098 if (tag == DW_TAG_subprogram) { 1099 assert(subprogram_low_pc == LLDB_INVALID_ADDRESS); 1100 subprogram_low_pc = ranges.GetMinRangeBase(0); 1101 } else if (tag == DW_TAG_inlined_subroutine) { 1102 // We get called here for inlined subroutines in two ways. The first 1103 // time is when we are making the Function object for this inlined 1104 // concrete instance. Since we're creating a top level block at 1105 // here, the subprogram_low_pc will be LLDB_INVALID_ADDRESS. So we 1106 // need to adjust the containing address. The second time is when we 1107 // are parsing the blocks inside the function that contains the 1108 // inlined concrete instance. Since these will be blocks inside the 1109 // containing "real" function the offset will be for that function. 1110 if (subprogram_low_pc == LLDB_INVALID_ADDRESS) { 1111 subprogram_low_pc = ranges.GetMinRangeBase(0); 1112 } 1113 } 1114 1115 const size_t num_ranges = ranges.GetSize(); 1116 for (size_t i = 0; i < num_ranges; ++i) { 1117 const DWARFRangeList::Entry &range = ranges.GetEntryRef(i); 1118 const addr_t range_base = range.GetRangeBase(); 1119 if (range_base >= subprogram_low_pc) 1120 block->AddRange(Block::Range(range_base - subprogram_low_pc, 1121 range.GetByteSize())); 1122 else { 1123 GetObjectFile()->GetModule()->ReportError( 1124 "0x%8.8" PRIx64 ": adding range [0x%" PRIx64 "-0x%" PRIx64 1125 ") which has a base that is less than the function's low PC " 1126 "0x%" PRIx64 ". Please file a bug and attach the file at the " 1127 "start of this error message", 1128 block->GetID(), range_base, range.GetRangeEnd(), 1129 subprogram_low_pc); 1130 } 1131 } 1132 block->FinalizeRanges(); 1133 1134 if (tag != DW_TAG_subprogram && 1135 (name != nullptr || mangled_name != nullptr)) { 1136 std::unique_ptr<Declaration> decl_up; 1137 if (decl_file != 0 || decl_line != 0 || decl_column != 0) 1138 decl_up.reset(new Declaration( 1139 comp_unit.GetSupportFiles().GetFileSpecAtIndex(decl_file), 1140 decl_line, decl_column)); 1141 1142 std::unique_ptr<Declaration> call_up; 1143 if (call_file != 0 || call_line != 0 || call_column != 0) 1144 call_up.reset(new Declaration( 1145 comp_unit.GetSupportFiles().GetFileSpecAtIndex(call_file), 1146 call_line, call_column)); 1147 1148 block->SetInlinedFunctionInfo(name, mangled_name, decl_up.get(), 1149 call_up.get()); 1150 } 1151 1152 ++blocks_added; 1153 1154 if (die.HasChildren()) { 1155 blocks_added += 1156 ParseBlocksRecursive(comp_unit, block, die.GetFirstChild(), 1157 subprogram_low_pc, depth + 1); 1158 } 1159 } 1160 } break; 1161 default: 1162 break; 1163 } 1164 1165 // Only parse siblings of the block if we are not at depth zero. A depth of 1166 // zero indicates we are currently parsing the top level DW_TAG_subprogram 1167 // DIE 1168 1169 if (depth == 0) 1170 die.Clear(); 1171 else 1172 die = die.GetSibling(); 1173 } 1174 return blocks_added; 1175 } 1176 1177 bool SymbolFileDWARF::ClassOrStructIsVirtual(const DWARFDIE &parent_die) { 1178 if (parent_die) { 1179 for (DWARFDIE die = parent_die.GetFirstChild(); die; 1180 die = die.GetSibling()) { 1181 dw_tag_t tag = die.Tag(); 1182 bool check_virtuality = false; 1183 switch (tag) { 1184 case DW_TAG_inheritance: 1185 case DW_TAG_subprogram: 1186 check_virtuality = true; 1187 break; 1188 default: 1189 break; 1190 } 1191 if (check_virtuality) { 1192 if (die.GetAttributeValueAsUnsigned(DW_AT_virtuality, 0) != 0) 1193 return true; 1194 } 1195 } 1196 } 1197 return false; 1198 } 1199 1200 void SymbolFileDWARF::ParseDeclsForContext(CompilerDeclContext decl_ctx) { 1201 auto *type_system = decl_ctx.GetTypeSystem(); 1202 if (type_system != nullptr) 1203 type_system->GetDWARFParser()->EnsureAllDIEsInDeclContextHaveBeenParsed( 1204 decl_ctx); 1205 } 1206 1207 user_id_t SymbolFileDWARF::GetUID(DIERef ref) { 1208 if (GetDebugMapSymfile()) 1209 return GetID() | ref.die_offset(); 1210 1211 return user_id_t(GetDwoNum().getValueOr(0x7fffffff)) << 32 | 1212 ref.die_offset() | 1213 (lldb::user_id_t(ref.section() == DIERef::Section::DebugTypes) << 63); 1214 } 1215 1216 llvm::Optional<SymbolFileDWARF::DecodedUID> 1217 SymbolFileDWARF::DecodeUID(lldb::user_id_t uid) { 1218 // This method can be called without going through the symbol vendor so we 1219 // need to lock the module. 1220 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1221 // Anytime we get a "lldb::user_id_t" from an lldb_private::SymbolFile API we 1222 // must make sure we use the correct DWARF file when resolving things. On 1223 // MacOSX, when using SymbolFileDWARFDebugMap, we will use multiple 1224 // SymbolFileDWARF classes, one for each .o file. We can often end up with 1225 // references to other DWARF objects and we must be ready to receive a 1226 // "lldb::user_id_t" that specifies a DIE from another SymbolFileDWARF 1227 // instance. 1228 if (SymbolFileDWARFDebugMap *debug_map = GetDebugMapSymfile()) { 1229 SymbolFileDWARF *dwarf = debug_map->GetSymbolFileByOSOIndex( 1230 debug_map->GetOSOIndexFromUserID(uid)); 1231 return DecodedUID{ 1232 *dwarf, {llvm::None, DIERef::Section::DebugInfo, dw_offset_t(uid)}}; 1233 } 1234 dw_offset_t die_offset = uid; 1235 if (die_offset == DW_INVALID_OFFSET) 1236 return llvm::None; 1237 1238 DIERef::Section section = 1239 uid >> 63 ? DIERef::Section::DebugTypes : DIERef::Section::DebugInfo; 1240 1241 llvm::Optional<uint32_t> dwo_num = uid >> 32 & 0x7fffffff; 1242 if (*dwo_num == 0x7fffffff) 1243 dwo_num = llvm::None; 1244 1245 return DecodedUID{*this, {dwo_num, section, die_offset}}; 1246 } 1247 1248 DWARFDIE 1249 SymbolFileDWARF::GetDIE(lldb::user_id_t uid) { 1250 // This method can be called without going through the symbol vendor so we 1251 // need to lock the module. 1252 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1253 1254 llvm::Optional<DecodedUID> decoded = DecodeUID(uid); 1255 1256 if (decoded) 1257 return decoded->dwarf.GetDIE(decoded->ref); 1258 1259 return DWARFDIE(); 1260 } 1261 1262 CompilerDecl SymbolFileDWARF::GetDeclForUID(lldb::user_id_t type_uid) { 1263 // This method can be called without going through the symbol vendor so we 1264 // need to lock the module. 1265 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1266 // Anytime we have a lldb::user_id_t, we must get the DIE by calling 1267 // SymbolFileDWARF::GetDIE(). See comments inside the 1268 // SymbolFileDWARF::GetDIE() for details. 1269 if (DWARFDIE die = GetDIE(type_uid)) 1270 return GetDecl(die); 1271 return CompilerDecl(); 1272 } 1273 1274 CompilerDeclContext 1275 SymbolFileDWARF::GetDeclContextForUID(lldb::user_id_t type_uid) { 1276 // This method can be called without going through the symbol vendor so we 1277 // need to lock the module. 1278 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1279 // Anytime we have a lldb::user_id_t, we must get the DIE by calling 1280 // SymbolFileDWARF::GetDIE(). See comments inside the 1281 // SymbolFileDWARF::GetDIE() for details. 1282 if (DWARFDIE die = GetDIE(type_uid)) 1283 return GetDeclContext(die); 1284 return CompilerDeclContext(); 1285 } 1286 1287 CompilerDeclContext 1288 SymbolFileDWARF::GetDeclContextContainingUID(lldb::user_id_t type_uid) { 1289 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1290 // Anytime we have a lldb::user_id_t, we must get the DIE by calling 1291 // SymbolFileDWARF::GetDIE(). See comments inside the 1292 // SymbolFileDWARF::GetDIE() for details. 1293 if (DWARFDIE die = GetDIE(type_uid)) 1294 return GetContainingDeclContext(die); 1295 return CompilerDeclContext(); 1296 } 1297 1298 Type *SymbolFileDWARF::ResolveTypeUID(lldb::user_id_t type_uid) { 1299 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1300 // Anytime we have a lldb::user_id_t, we must get the DIE by calling 1301 // SymbolFileDWARF::GetDIE(). See comments inside the 1302 // SymbolFileDWARF::GetDIE() for details. 1303 if (DWARFDIE type_die = GetDIE(type_uid)) 1304 return type_die.ResolveType(); 1305 else 1306 return nullptr; 1307 } 1308 1309 llvm::Optional<SymbolFile::ArrayInfo> 1310 SymbolFileDWARF::GetDynamicArrayInfoForUID( 1311 lldb::user_id_t type_uid, const lldb_private::ExecutionContext *exe_ctx) { 1312 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1313 if (DWARFDIE type_die = GetDIE(type_uid)) 1314 return DWARFASTParser::ParseChildArrayInfo(type_die, exe_ctx); 1315 else 1316 return llvm::None; 1317 } 1318 1319 Type *SymbolFileDWARF::ResolveTypeUID(const DIERef &die_ref) { 1320 return ResolveType(GetDIE(die_ref), true); 1321 } 1322 1323 Type *SymbolFileDWARF::ResolveTypeUID(const DWARFDIE &die, 1324 bool assert_not_being_parsed) { 1325 if (die) { 1326 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO)); 1327 if (log) 1328 GetObjectFile()->GetModule()->LogMessage( 1329 log, "SymbolFileDWARF::ResolveTypeUID (die = 0x%8.8x) %s '%s'", 1330 die.GetOffset(), die.GetTagAsCString(), die.GetName()); 1331 1332 // We might be coming in in the middle of a type tree (a class within a 1333 // class, an enum within a class), so parse any needed parent DIEs before 1334 // we get to this one... 1335 DWARFDIE decl_ctx_die = GetDeclContextDIEContainingDIE(die); 1336 if (decl_ctx_die) { 1337 if (log) { 1338 switch (decl_ctx_die.Tag()) { 1339 case DW_TAG_structure_type: 1340 case DW_TAG_union_type: 1341 case DW_TAG_class_type: { 1342 // Get the type, which could be a forward declaration 1343 if (log) 1344 GetObjectFile()->GetModule()->LogMessage( 1345 log, 1346 "SymbolFileDWARF::ResolveTypeUID (die = 0x%8.8x) %s '%s' " 1347 "resolve parent forward type for 0x%8.8x", 1348 die.GetOffset(), die.GetTagAsCString(), die.GetName(), 1349 decl_ctx_die.GetOffset()); 1350 } break; 1351 1352 default: 1353 break; 1354 } 1355 } 1356 } 1357 return ResolveType(die); 1358 } 1359 return nullptr; 1360 } 1361 1362 // This function is used when SymbolFileDWARFDebugMap owns a bunch of 1363 // SymbolFileDWARF objects to detect if this DWARF file is the one that can 1364 // resolve a compiler_type. 1365 bool SymbolFileDWARF::HasForwardDeclForClangType( 1366 const CompilerType &compiler_type) { 1367 CompilerType compiler_type_no_qualifiers = 1368 ClangUtil::RemoveFastQualifiers(compiler_type); 1369 if (GetForwardDeclClangTypeToDie().count( 1370 compiler_type_no_qualifiers.GetOpaqueQualType())) { 1371 return true; 1372 } 1373 TypeSystem *type_system = compiler_type.GetTypeSystem(); 1374 1375 TypeSystemClang *clang_type_system = 1376 llvm::dyn_cast_or_null<TypeSystemClang>(type_system); 1377 if (!clang_type_system) 1378 return false; 1379 DWARFASTParserClang *ast_parser = 1380 static_cast<DWARFASTParserClang *>(clang_type_system->GetDWARFParser()); 1381 return ast_parser->GetClangASTImporter().CanImport(compiler_type); 1382 } 1383 1384 bool SymbolFileDWARF::CompleteType(CompilerType &compiler_type) { 1385 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1386 1387 TypeSystemClang *clang_type_system = 1388 llvm::dyn_cast_or_null<TypeSystemClang>(compiler_type.GetTypeSystem()); 1389 if (clang_type_system) { 1390 DWARFASTParserClang *ast_parser = 1391 static_cast<DWARFASTParserClang *>(clang_type_system->GetDWARFParser()); 1392 if (ast_parser && 1393 ast_parser->GetClangASTImporter().CanImport(compiler_type)) 1394 return ast_parser->GetClangASTImporter().CompleteType(compiler_type); 1395 } 1396 1397 // We have a struct/union/class/enum that needs to be fully resolved. 1398 CompilerType compiler_type_no_qualifiers = 1399 ClangUtil::RemoveFastQualifiers(compiler_type); 1400 auto die_it = GetForwardDeclClangTypeToDie().find( 1401 compiler_type_no_qualifiers.GetOpaqueQualType()); 1402 if (die_it == GetForwardDeclClangTypeToDie().end()) { 1403 // We have already resolved this type... 1404 return true; 1405 } 1406 1407 DWARFDIE dwarf_die = GetDIE(die_it->getSecond()); 1408 if (dwarf_die) { 1409 // Once we start resolving this type, remove it from the forward 1410 // declaration map in case anyone child members or other types require this 1411 // type to get resolved. The type will get resolved when all of the calls 1412 // to SymbolFileDWARF::ResolveClangOpaqueTypeDefinition are done. 1413 GetForwardDeclClangTypeToDie().erase(die_it); 1414 1415 Type *type = GetDIEToType().lookup(dwarf_die.GetDIE()); 1416 1417 Log *log(LogChannelDWARF::GetLogIfAny(DWARF_LOG_DEBUG_INFO | 1418 DWARF_LOG_TYPE_COMPLETION)); 1419 if (log) 1420 GetObjectFile()->GetModule()->LogMessageVerboseBacktrace( 1421 log, "0x%8.8" PRIx64 ": %s '%s' resolving forward declaration...", 1422 dwarf_die.GetID(), dwarf_die.GetTagAsCString(), 1423 type->GetName().AsCString()); 1424 assert(compiler_type); 1425 if (DWARFASTParser *dwarf_ast = GetDWARFParser(*dwarf_die.GetCU())) 1426 return dwarf_ast->CompleteTypeFromDWARF(dwarf_die, type, compiler_type); 1427 } 1428 return false; 1429 } 1430 1431 Type *SymbolFileDWARF::ResolveType(const DWARFDIE &die, 1432 bool assert_not_being_parsed, 1433 bool resolve_function_context) { 1434 if (die) { 1435 Type *type = GetTypeForDIE(die, resolve_function_context).get(); 1436 1437 if (assert_not_being_parsed) { 1438 if (type != DIE_IS_BEING_PARSED) 1439 return type; 1440 1441 GetObjectFile()->GetModule()->ReportError( 1442 "Parsing a die that is being parsed die: 0x%8.8x: %s %s", 1443 die.GetOffset(), die.GetTagAsCString(), die.GetName()); 1444 1445 } else 1446 return type; 1447 } 1448 return nullptr; 1449 } 1450 1451 CompileUnit * 1452 SymbolFileDWARF::GetCompUnitForDWARFCompUnit(DWARFCompileUnit &dwarf_cu) { 1453 DWARFCompileUnit *non_dwo_cu = 1454 dwarf_cu.IsDWOUnit() 1455 ? static_cast<DWARFCompileUnit *>(dwarf_cu.GetUserData()) 1456 : &dwarf_cu; 1457 // Check if the symbol vendor already knows about this compile unit? 1458 if (non_dwo_cu->GetUserData() == nullptr) { 1459 // The symbol vendor doesn't know about this compile unit, we need to parse 1460 // and add it to the symbol vendor object. 1461 return ParseCompileUnit(*non_dwo_cu).get(); 1462 } 1463 return static_cast<CompileUnit *>(non_dwo_cu->GetUserData()); 1464 } 1465 1466 size_t SymbolFileDWARF::GetObjCMethodDIEOffsets(ConstString class_name, 1467 DIEArray &method_die_offsets) { 1468 method_die_offsets.clear(); 1469 m_index->GetObjCMethods(class_name, method_die_offsets); 1470 return method_die_offsets.size(); 1471 } 1472 1473 bool SymbolFileDWARF::GetFunction(const DWARFDIE &die, SymbolContext &sc) { 1474 sc.Clear(false); 1475 1476 if (die && llvm::isa<DWARFCompileUnit>(die.GetCU())) { 1477 // Check if the symbol vendor already knows about this compile unit? 1478 sc.comp_unit = 1479 GetCompUnitForDWARFCompUnit(llvm::cast<DWARFCompileUnit>(*die.GetCU())); 1480 1481 sc.function = sc.comp_unit->FindFunctionByUID(die.GetID()).get(); 1482 if (sc.function == nullptr) 1483 sc.function = ParseFunction(*sc.comp_unit, die); 1484 1485 if (sc.function) { 1486 sc.module_sp = sc.function->CalculateSymbolContextModule(); 1487 return true; 1488 } 1489 } 1490 1491 return false; 1492 } 1493 1494 lldb::ModuleSP SymbolFileDWARF::GetExternalModule(ConstString name) { 1495 UpdateExternalModuleListIfNeeded(); 1496 const auto &pos = m_external_type_modules.find(name); 1497 if (pos != m_external_type_modules.end()) 1498 return pos->second; 1499 else 1500 return lldb::ModuleSP(); 1501 } 1502 1503 DWARFDIE 1504 SymbolFileDWARF::GetDIE(const DIERef &die_ref) { 1505 if (die_ref.dwo_num()) { 1506 SymbolFileDWARF *dwarf = *die_ref.dwo_num() == 0x3fffffff 1507 ? m_dwp_symfile.get() 1508 : this->DebugInfo() 1509 .GetUnitAtIndex(*die_ref.dwo_num()) 1510 ->GetDwoSymbolFile(); 1511 return dwarf->DebugInfo().GetDIE(die_ref); 1512 } 1513 1514 return DebugInfo().GetDIE(die_ref); 1515 } 1516 1517 /// Return the DW_AT_(GNU_)dwo_name. 1518 static const char *GetDWOName(DWARFCompileUnit &dwarf_cu, 1519 const DWARFDebugInfoEntry &cu_die) { 1520 const char *dwo_name = 1521 cu_die.GetAttributeValueAsString(&dwarf_cu, DW_AT_GNU_dwo_name, nullptr); 1522 if (!dwo_name) 1523 dwo_name = 1524 cu_die.GetAttributeValueAsString(&dwarf_cu, DW_AT_dwo_name, nullptr); 1525 return dwo_name; 1526 } 1527 1528 /// Return the DW_AT_(GNU_)dwo_id. 1529 /// FIXME: Technically 0 is a valid hash. 1530 static uint64_t GetDWOId(DWARFCompileUnit &dwarf_cu, 1531 const DWARFDebugInfoEntry &cu_die) { 1532 uint64_t dwo_id = 1533 cu_die.GetAttributeValueAsUnsigned(&dwarf_cu, DW_AT_GNU_dwo_id, 0); 1534 if (!dwo_id) 1535 dwo_id = cu_die.GetAttributeValueAsUnsigned(&dwarf_cu, DW_AT_dwo_id, 0); 1536 return dwo_id; 1537 } 1538 1539 llvm::Optional<uint64_t> SymbolFileDWARF::GetDWOId() { 1540 if (GetNumCompileUnits() == 1) { 1541 if (auto comp_unit = GetCompileUnitAtIndex(0)) 1542 if (DWARFCompileUnit *cu = llvm::dyn_cast_or_null<DWARFCompileUnit>( 1543 GetDWARFCompileUnit(comp_unit.get()))) 1544 if (DWARFDebugInfoEntry *cu_die = cu->DIE().GetDIE()) 1545 if (uint64_t dwo_id = ::GetDWOId(*cu, *cu_die)) 1546 return dwo_id; 1547 } 1548 return {}; 1549 } 1550 1551 std::shared_ptr<SymbolFileDWARFDwo> 1552 SymbolFileDWARF::GetDwoSymbolFileForCompileUnit( 1553 DWARFUnit &unit, const DWARFDebugInfoEntry &cu_die) { 1554 // If this is a Darwin-style debug map (non-.dSYM) symbol file, 1555 // never attempt to load ELF-style DWO files since the -gmodules 1556 // support uses the same DWO machanism to specify full debug info 1557 // files for modules. This is handled in 1558 // UpdateExternalModuleListIfNeeded(). 1559 if (GetDebugMapSymfile()) 1560 return nullptr; 1561 1562 DWARFCompileUnit *dwarf_cu = llvm::dyn_cast<DWARFCompileUnit>(&unit); 1563 // Only compile units can be split into two parts. 1564 if (!dwarf_cu) 1565 return nullptr; 1566 1567 const char *dwo_name = GetDWOName(*dwarf_cu, cu_die); 1568 if (!dwo_name) 1569 return nullptr; 1570 1571 if (std::shared_ptr<SymbolFileDWARFDwo> dwp_sp = GetDwpSymbolFile()) 1572 return dwp_sp; 1573 1574 FileSpec dwo_file(dwo_name); 1575 FileSystem::Instance().Resolve(dwo_file); 1576 if (dwo_file.IsRelative()) { 1577 const char *comp_dir = 1578 cu_die.GetAttributeValueAsString(dwarf_cu, DW_AT_comp_dir, nullptr); 1579 if (!comp_dir) 1580 return nullptr; 1581 1582 dwo_file.SetFile(comp_dir, FileSpec::Style::native); 1583 FileSystem::Instance().Resolve(dwo_file); 1584 dwo_file.AppendPathComponent(dwo_name); 1585 } 1586 1587 if (!FileSystem::Instance().Exists(dwo_file)) 1588 return nullptr; 1589 1590 const lldb::offset_t file_offset = 0; 1591 DataBufferSP dwo_file_data_sp; 1592 lldb::offset_t dwo_file_data_offset = 0; 1593 ObjectFileSP dwo_obj_file = ObjectFile::FindPlugin( 1594 GetObjectFile()->GetModule(), &dwo_file, file_offset, 1595 FileSystem::Instance().GetByteSize(dwo_file), dwo_file_data_sp, 1596 dwo_file_data_offset); 1597 if (dwo_obj_file == nullptr) 1598 return nullptr; 1599 1600 return std::make_shared<SymbolFileDWARFDwo>(*this, dwo_obj_file, 1601 dwarf_cu->GetID()); 1602 } 1603 1604 void SymbolFileDWARF::UpdateExternalModuleListIfNeeded() { 1605 if (m_fetched_external_modules) 1606 return; 1607 m_fetched_external_modules = true; 1608 DWARFDebugInfo &debug_info = DebugInfo(); 1609 1610 // Follow DWO skeleton unit breadcrumbs. 1611 const uint32_t num_compile_units = GetNumCompileUnits(); 1612 for (uint32_t cu_idx = 0; cu_idx < num_compile_units; ++cu_idx) { 1613 auto *dwarf_cu = 1614 llvm::dyn_cast<DWARFCompileUnit>(debug_info.GetUnitAtIndex(cu_idx)); 1615 if (!dwarf_cu) 1616 continue; 1617 1618 const DWARFBaseDIE die = dwarf_cu->GetUnitDIEOnly(); 1619 if (!die || die.HasChildren() || !die.GetDIE()) 1620 continue; 1621 1622 const char *name = die.GetAttributeValueAsString(DW_AT_name, nullptr); 1623 if (!name) 1624 continue; 1625 1626 ConstString const_name(name); 1627 ModuleSP &module_sp = m_external_type_modules[const_name]; 1628 if (module_sp) 1629 continue; 1630 1631 const char *dwo_path = GetDWOName(*dwarf_cu, *die.GetDIE()); 1632 if (!dwo_path) 1633 continue; 1634 1635 ModuleSpec dwo_module_spec; 1636 dwo_module_spec.GetFileSpec().SetFile(dwo_path, FileSpec::Style::native); 1637 if (dwo_module_spec.GetFileSpec().IsRelative()) { 1638 const char *comp_dir = 1639 die.GetAttributeValueAsString(DW_AT_comp_dir, nullptr); 1640 if (comp_dir) { 1641 dwo_module_spec.GetFileSpec().SetFile(comp_dir, 1642 FileSpec::Style::native); 1643 FileSystem::Instance().Resolve(dwo_module_spec.GetFileSpec()); 1644 dwo_module_spec.GetFileSpec().AppendPathComponent(dwo_path); 1645 } 1646 } 1647 dwo_module_spec.GetArchitecture() = 1648 m_objfile_sp->GetModule()->GetArchitecture(); 1649 1650 // When LLDB loads "external" modules it looks at the presence of 1651 // DW_AT_dwo_name. However, when the already created module 1652 // (corresponding to .dwo itself) is being processed, it will see 1653 // the presence of DW_AT_dwo_name (which contains the name of dwo 1654 // file) and will try to call ModuleList::GetSharedModule 1655 // again. In some cases (i.e., for empty files) Clang 4.0 1656 // generates a *.dwo file which has DW_AT_dwo_name, but no 1657 // DW_AT_comp_dir. In this case the method 1658 // ModuleList::GetSharedModule will fail and the warning will be 1659 // printed. However, as one can notice in this case we don't 1660 // actually need to try to load the already loaded module 1661 // (corresponding to .dwo) so we simply skip it. 1662 if (m_objfile_sp->GetFileSpec().GetFileNameExtension() == ".dwo" && 1663 llvm::StringRef(m_objfile_sp->GetFileSpec().GetPath()) 1664 .endswith(dwo_module_spec.GetFileSpec().GetPath())) { 1665 continue; 1666 } 1667 1668 Status error = ModuleList::GetSharedModule(dwo_module_spec, module_sp, 1669 nullptr, nullptr, nullptr); 1670 if (!module_sp) { 1671 GetObjectFile()->GetModule()->ReportWarning( 1672 "0x%8.8x: unable to locate module needed for external types: " 1673 "%s\nerror: %s\nDebugging will be degraded due to missing " 1674 "types. Rebuilding the project will regenerate the needed " 1675 "module files.", 1676 die.GetOffset(), dwo_module_spec.GetFileSpec().GetPath().c_str(), 1677 error.AsCString("unknown error")); 1678 continue; 1679 } 1680 1681 // Verify the DWO hash. 1682 // FIXME: Technically "0" is a valid hash. 1683 uint64_t dwo_id = ::GetDWOId(*dwarf_cu, *die.GetDIE()); 1684 if (!dwo_id) 1685 continue; 1686 1687 auto *dwo_symfile = 1688 llvm::dyn_cast_or_null<SymbolFileDWARF>(module_sp->GetSymbolFile()); 1689 if (!dwo_symfile) 1690 continue; 1691 llvm::Optional<uint64_t> dwo_dwo_id = dwo_symfile->GetDWOId(); 1692 if (!dwo_dwo_id) 1693 continue; 1694 1695 if (dwo_id != dwo_dwo_id) { 1696 GetObjectFile()->GetModule()->ReportWarning( 1697 "0x%8.8x: Module %s is out-of-date (hash mismatch). Type information " 1698 "from this module may be incomplete or inconsistent with the rest of " 1699 "the program. Rebuilding the project will regenerate the needed " 1700 "module files.", 1701 die.GetOffset(), dwo_module_spec.GetFileSpec().GetPath().c_str()); 1702 } 1703 } 1704 } 1705 1706 SymbolFileDWARF::GlobalVariableMap &SymbolFileDWARF::GetGlobalAranges() { 1707 if (!m_global_aranges_up) { 1708 m_global_aranges_up.reset(new GlobalVariableMap()); 1709 1710 ModuleSP module_sp = GetObjectFile()->GetModule(); 1711 if (module_sp) { 1712 const size_t num_cus = module_sp->GetNumCompileUnits(); 1713 for (size_t i = 0; i < num_cus; ++i) { 1714 CompUnitSP cu_sp = module_sp->GetCompileUnitAtIndex(i); 1715 if (cu_sp) { 1716 VariableListSP globals_sp = cu_sp->GetVariableList(true); 1717 if (globals_sp) { 1718 const size_t num_globals = globals_sp->GetSize(); 1719 for (size_t g = 0; g < num_globals; ++g) { 1720 VariableSP var_sp = globals_sp->GetVariableAtIndex(g); 1721 if (var_sp && !var_sp->GetLocationIsConstantValueData()) { 1722 const DWARFExpression &location = var_sp->LocationExpression(); 1723 Value location_result; 1724 Status error; 1725 if (location.Evaluate(nullptr, LLDB_INVALID_ADDRESS, nullptr, 1726 nullptr, location_result, &error)) { 1727 if (location_result.GetValueType() == 1728 Value::eValueTypeFileAddress) { 1729 lldb::addr_t file_addr = 1730 location_result.GetScalar().ULongLong(); 1731 lldb::addr_t byte_size = 1; 1732 if (var_sp->GetType()) 1733 byte_size = 1734 var_sp->GetType()->GetByteSize().getValueOr(0); 1735 m_global_aranges_up->Append(GlobalVariableMap::Entry( 1736 file_addr, byte_size, var_sp.get())); 1737 } 1738 } 1739 } 1740 } 1741 } 1742 } 1743 } 1744 } 1745 m_global_aranges_up->Sort(); 1746 } 1747 return *m_global_aranges_up; 1748 } 1749 1750 void SymbolFileDWARF::ResolveFunctionAndBlock(lldb::addr_t file_vm_addr, 1751 bool lookup_block, 1752 SymbolContext &sc) { 1753 assert(sc.comp_unit); 1754 DWARFUnit &cu = GetDWARFCompileUnit(sc.comp_unit)->GetNonSkeletonUnit(); 1755 DWARFDIE function_die = cu.LookupAddress(file_vm_addr); 1756 DWARFDIE block_die; 1757 if (function_die) { 1758 sc.function = sc.comp_unit->FindFunctionByUID(function_die.GetID()).get(); 1759 if (sc.function == nullptr) 1760 sc.function = ParseFunction(*sc.comp_unit, function_die); 1761 1762 if (sc.function && lookup_block) 1763 block_die = function_die.LookupDeepestBlock(file_vm_addr); 1764 } 1765 1766 if (!sc.function || ! lookup_block) 1767 return; 1768 1769 Block &block = sc.function->GetBlock(true); 1770 if (block_die) 1771 sc.block = block.FindBlockByID(block_die.GetID()); 1772 else 1773 sc.block = block.FindBlockByID(function_die.GetID()); 1774 } 1775 1776 uint32_t SymbolFileDWARF::ResolveSymbolContext(const Address &so_addr, 1777 SymbolContextItem resolve_scope, 1778 SymbolContext &sc) { 1779 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1780 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 1781 Timer scoped_timer(func_cat, 1782 "SymbolFileDWARF::" 1783 "ResolveSymbolContext (so_addr = { " 1784 "section = %p, offset = 0x%" PRIx64 1785 " }, resolve_scope = 0x%8.8x)", 1786 static_cast<void *>(so_addr.GetSection().get()), 1787 so_addr.GetOffset(), resolve_scope); 1788 uint32_t resolved = 0; 1789 if (resolve_scope & 1790 (eSymbolContextCompUnit | eSymbolContextFunction | eSymbolContextBlock | 1791 eSymbolContextLineEntry | eSymbolContextVariable)) { 1792 lldb::addr_t file_vm_addr = so_addr.GetFileAddress(); 1793 1794 DWARFDebugInfo &debug_info = DebugInfo(); 1795 llvm::Expected<DWARFDebugAranges &> aranges = 1796 debug_info.GetCompileUnitAranges(); 1797 if (!aranges) { 1798 Log *log = LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO); 1799 LLDB_LOG_ERROR(log, aranges.takeError(), 1800 "SymbolFileDWARF::ResolveSymbolContext failed to get cu " 1801 "aranges. {0}"); 1802 return 0; 1803 } 1804 1805 const dw_offset_t cu_offset = aranges->FindAddress(file_vm_addr); 1806 if (cu_offset == DW_INVALID_OFFSET) { 1807 // Global variables are not in the compile unit address ranges. The only 1808 // way to currently find global variables is to iterate over the 1809 // .debug_pubnames or the __apple_names table and find all items in there 1810 // that point to DW_TAG_variable DIEs and then find the address that 1811 // matches. 1812 if (resolve_scope & eSymbolContextVariable) { 1813 GlobalVariableMap &map = GetGlobalAranges(); 1814 const GlobalVariableMap::Entry *entry = 1815 map.FindEntryThatContains(file_vm_addr); 1816 if (entry && entry->data) { 1817 Variable *variable = entry->data; 1818 SymbolContextScope *scc = variable->GetSymbolContextScope(); 1819 if (scc) { 1820 scc->CalculateSymbolContext(&sc); 1821 sc.variable = variable; 1822 } 1823 return sc.GetResolvedMask(); 1824 } 1825 } 1826 } else { 1827 uint32_t cu_idx = DW_INVALID_INDEX; 1828 if (auto *dwarf_cu = llvm::dyn_cast_or_null<DWARFCompileUnit>( 1829 debug_info.GetUnitAtOffset(DIERef::Section::DebugInfo, cu_offset, 1830 &cu_idx))) { 1831 sc.comp_unit = GetCompUnitForDWARFCompUnit(*dwarf_cu); 1832 if (sc.comp_unit) { 1833 resolved |= eSymbolContextCompUnit; 1834 1835 bool force_check_line_table = false; 1836 if (resolve_scope & (eSymbolContextFunction | eSymbolContextBlock)) { 1837 ResolveFunctionAndBlock(file_vm_addr, 1838 resolve_scope & eSymbolContextBlock, sc); 1839 if (sc.function) 1840 resolved |= eSymbolContextFunction; 1841 else { 1842 // We might have had a compile unit that had discontiguous address 1843 // ranges where the gaps are symbols that don't have any debug 1844 // info. Discontiguous compile unit address ranges should only 1845 // happen when there aren't other functions from other compile 1846 // units in these gaps. This helps keep the size of the aranges 1847 // down. 1848 force_check_line_table = true; 1849 } 1850 if (sc.block) 1851 resolved |= eSymbolContextBlock; 1852 } 1853 1854 if ((resolve_scope & eSymbolContextLineEntry) || 1855 force_check_line_table) { 1856 LineTable *line_table = sc.comp_unit->GetLineTable(); 1857 if (line_table != nullptr) { 1858 // And address that makes it into this function should be in terms 1859 // of this debug file if there is no debug map, or it will be an 1860 // address in the .o file which needs to be fixed up to be in 1861 // terms of the debug map executable. Either way, calling 1862 // FixupAddress() will work for us. 1863 Address exe_so_addr(so_addr); 1864 if (FixupAddress(exe_so_addr)) { 1865 if (line_table->FindLineEntryByAddress(exe_so_addr, 1866 sc.line_entry)) { 1867 resolved |= eSymbolContextLineEntry; 1868 } 1869 } 1870 } 1871 } 1872 1873 if (force_check_line_table && !(resolved & eSymbolContextLineEntry)) { 1874 // We might have had a compile unit that had discontiguous address 1875 // ranges where the gaps are symbols that don't have any debug info. 1876 // Discontiguous compile unit address ranges should only happen when 1877 // there aren't other functions from other compile units in these 1878 // gaps. This helps keep the size of the aranges down. 1879 sc.comp_unit = nullptr; 1880 resolved &= ~eSymbolContextCompUnit; 1881 } 1882 } else { 1883 GetObjectFile()->GetModule()->ReportWarning( 1884 "0x%8.8x: compile unit %u failed to create a valid " 1885 "lldb_private::CompileUnit class.", 1886 cu_offset, cu_idx); 1887 } 1888 } 1889 } 1890 } 1891 return resolved; 1892 } 1893 1894 uint32_t SymbolFileDWARF::ResolveSymbolContext(const FileSpec &file_spec, 1895 uint32_t line, 1896 bool check_inlines, 1897 SymbolContextItem resolve_scope, 1898 SymbolContextList &sc_list) { 1899 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1900 const uint32_t prev_size = sc_list.GetSize(); 1901 if (resolve_scope & eSymbolContextCompUnit) { 1902 for (uint32_t cu_idx = 0, num_cus = GetNumCompileUnits(); cu_idx < num_cus; 1903 ++cu_idx) { 1904 CompileUnit *dc_cu = ParseCompileUnitAtIndex(cu_idx).get(); 1905 if (!dc_cu) 1906 continue; 1907 1908 bool file_spec_matches_cu_file_spec = 1909 FileSpec::Match(file_spec, dc_cu->GetPrimaryFile()); 1910 if (check_inlines || file_spec_matches_cu_file_spec) { 1911 SymbolContext sc(m_objfile_sp->GetModule()); 1912 sc.comp_unit = dc_cu; 1913 uint32_t file_idx = UINT32_MAX; 1914 1915 // If we are looking for inline functions only and we don't find it 1916 // in the support files, we are done. 1917 if (check_inlines) { 1918 file_idx = 1919 sc.comp_unit->GetSupportFiles().FindFileIndex(1, file_spec, true); 1920 if (file_idx == UINT32_MAX) 1921 continue; 1922 } 1923 1924 if (line != 0) { 1925 LineTable *line_table = sc.comp_unit->GetLineTable(); 1926 1927 if (line_table != nullptr && line != 0) { 1928 // We will have already looked up the file index if we are 1929 // searching for inline entries. 1930 if (!check_inlines) 1931 file_idx = sc.comp_unit->GetSupportFiles().FindFileIndex( 1932 1, file_spec, true); 1933 1934 if (file_idx != UINT32_MAX) { 1935 uint32_t found_line; 1936 uint32_t line_idx = line_table->FindLineEntryIndexByFileIndex( 1937 0, file_idx, line, false, &sc.line_entry); 1938 found_line = sc.line_entry.line; 1939 1940 while (line_idx != UINT32_MAX) { 1941 sc.function = nullptr; 1942 sc.block = nullptr; 1943 if (resolve_scope & 1944 (eSymbolContextFunction | eSymbolContextBlock)) { 1945 const lldb::addr_t file_vm_addr = 1946 sc.line_entry.range.GetBaseAddress().GetFileAddress(); 1947 if (file_vm_addr != LLDB_INVALID_ADDRESS) { 1948 ResolveFunctionAndBlock( 1949 file_vm_addr, resolve_scope & eSymbolContextBlock, sc); 1950 } 1951 } 1952 1953 sc_list.Append(sc); 1954 line_idx = line_table->FindLineEntryIndexByFileIndex( 1955 line_idx + 1, file_idx, found_line, true, &sc.line_entry); 1956 } 1957 } 1958 } else if (file_spec_matches_cu_file_spec && !check_inlines) { 1959 // only append the context if we aren't looking for inline call 1960 // sites by file and line and if the file spec matches that of 1961 // the compile unit 1962 sc_list.Append(sc); 1963 } 1964 } else if (file_spec_matches_cu_file_spec && !check_inlines) { 1965 // only append the context if we aren't looking for inline call 1966 // sites by file and line and if the file spec matches that of 1967 // the compile unit 1968 sc_list.Append(sc); 1969 } 1970 1971 if (!check_inlines) 1972 break; 1973 } 1974 } 1975 } 1976 return sc_list.GetSize() - prev_size; 1977 } 1978 1979 void SymbolFileDWARF::PreloadSymbols() { 1980 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 1981 m_index->Preload(); 1982 } 1983 1984 std::recursive_mutex &SymbolFileDWARF::GetModuleMutex() const { 1985 lldb::ModuleSP module_sp(m_debug_map_module_wp.lock()); 1986 if (module_sp) 1987 return module_sp->GetMutex(); 1988 return GetObjectFile()->GetModule()->GetMutex(); 1989 } 1990 1991 bool SymbolFileDWARF::DeclContextMatchesThisSymbolFile( 1992 const lldb_private::CompilerDeclContext &decl_ctx) { 1993 if (!decl_ctx.IsValid()) { 1994 // Invalid namespace decl which means we aren't matching only things in 1995 // this symbol file, so return true to indicate it matches this symbol 1996 // file. 1997 return true; 1998 } 1999 2000 TypeSystem *decl_ctx_type_system = decl_ctx.GetTypeSystem(); 2001 auto type_system_or_err = GetTypeSystemForLanguage( 2002 decl_ctx_type_system->GetMinimumLanguage(nullptr)); 2003 if (auto err = type_system_or_err.takeError()) { 2004 LLDB_LOG_ERROR(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_SYMBOLS), 2005 std::move(err), 2006 "Unable to match namespace decl using TypeSystem"); 2007 return false; 2008 } 2009 2010 if (decl_ctx_type_system == &type_system_or_err.get()) 2011 return true; // The type systems match, return true 2012 2013 // The namespace AST was valid, and it does not match... 2014 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2015 2016 if (log) 2017 GetObjectFile()->GetModule()->LogMessage( 2018 log, "Valid namespace does not match symbol file"); 2019 2020 return false; 2021 } 2022 2023 void SymbolFileDWARF::FindGlobalVariables( 2024 ConstString name, const CompilerDeclContext &parent_decl_ctx, 2025 uint32_t max_matches, VariableList &variables) { 2026 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2027 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2028 2029 if (log) 2030 GetObjectFile()->GetModule()->LogMessage( 2031 log, 2032 "SymbolFileDWARF::FindGlobalVariables (name=\"%s\", " 2033 "parent_decl_ctx=%p, max_matches=%u, variables)", 2034 name.GetCString(), static_cast<const void *>(&parent_decl_ctx), 2035 max_matches); 2036 2037 if (!DeclContextMatchesThisSymbolFile(parent_decl_ctx)) 2038 return; 2039 2040 // Remember how many variables are in the list before we search. 2041 const uint32_t original_size = variables.GetSize(); 2042 2043 llvm::StringRef basename; 2044 llvm::StringRef context; 2045 bool name_is_mangled = (bool)Mangled(name); 2046 2047 if (!CPlusPlusLanguage::ExtractContextAndIdentifier(name.GetCString(), 2048 context, basename)) 2049 basename = name.GetStringRef(); 2050 2051 DIEArray die_offsets; 2052 m_index->GetGlobalVariables(ConstString(basename), die_offsets); 2053 const size_t num_die_matches = die_offsets.size(); 2054 2055 SymbolContext sc; 2056 sc.module_sp = m_objfile_sp->GetModule(); 2057 assert(sc.module_sp); 2058 2059 // Loop invariant: Variables up to this index have been checked for context 2060 // matches. 2061 uint32_t pruned_idx = original_size; 2062 2063 for (size_t i = 0; i < num_die_matches; ++i) { 2064 const DIERef &die_ref = die_offsets[i]; 2065 DWARFDIE die = GetDIE(die_ref); 2066 if (!die) { 2067 m_index->ReportInvalidDIERef(die_ref, name.GetStringRef()); 2068 continue; 2069 } 2070 2071 if (die.Tag() != DW_TAG_variable) 2072 continue; 2073 2074 auto *dwarf_cu = llvm::dyn_cast<DWARFCompileUnit>(die.GetCU()); 2075 if (!dwarf_cu) 2076 continue; 2077 sc.comp_unit = GetCompUnitForDWARFCompUnit(*dwarf_cu); 2078 2079 if (parent_decl_ctx) { 2080 if (DWARFASTParser *dwarf_ast = GetDWARFParser(*die.GetCU())) { 2081 CompilerDeclContext actual_parent_decl_ctx = 2082 dwarf_ast->GetDeclContextContainingUIDFromDWARF(die); 2083 if (!actual_parent_decl_ctx || 2084 actual_parent_decl_ctx != parent_decl_ctx) 2085 continue; 2086 } 2087 } 2088 2089 ParseVariables(sc, die, LLDB_INVALID_ADDRESS, false, false, &variables); 2090 while (pruned_idx < variables.GetSize()) { 2091 VariableSP var_sp = variables.GetVariableAtIndex(pruned_idx); 2092 if (name_is_mangled || 2093 var_sp->GetName().GetStringRef().contains(name.GetStringRef())) 2094 ++pruned_idx; 2095 else 2096 variables.RemoveVariableAtIndex(pruned_idx); 2097 } 2098 2099 if (variables.GetSize() - original_size >= max_matches) 2100 break; 2101 } 2102 2103 // Return the number of variable that were appended to the list 2104 const uint32_t num_matches = variables.GetSize() - original_size; 2105 if (log && num_matches > 0) { 2106 GetObjectFile()->GetModule()->LogMessage( 2107 log, 2108 "SymbolFileDWARF::FindGlobalVariables (name=\"%s\", " 2109 "parent_decl_ctx=%p, max_matches=%u, variables) => %u", 2110 name.GetCString(), static_cast<const void *>(&parent_decl_ctx), 2111 max_matches, num_matches); 2112 } 2113 } 2114 2115 void SymbolFileDWARF::FindGlobalVariables(const RegularExpression ®ex, 2116 uint32_t max_matches, 2117 VariableList &variables) { 2118 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2119 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2120 2121 if (log) { 2122 GetObjectFile()->GetModule()->LogMessage( 2123 log, 2124 "SymbolFileDWARF::FindGlobalVariables (regex=\"%s\", " 2125 "max_matches=%u, variables)", 2126 regex.GetText().str().c_str(), max_matches); 2127 } 2128 2129 // Remember how many variables are in the list before we search. 2130 const uint32_t original_size = variables.GetSize(); 2131 2132 DIEArray die_offsets; 2133 m_index->GetGlobalVariables(regex, die_offsets); 2134 2135 SymbolContext sc; 2136 sc.module_sp = m_objfile_sp->GetModule(); 2137 assert(sc.module_sp); 2138 2139 const size_t num_matches = die_offsets.size(); 2140 for (size_t i = 0; i < num_matches; ++i) { 2141 const DIERef &die_ref = die_offsets[i]; 2142 DWARFDIE die = GetDIE(die_ref); 2143 if (!die) { 2144 m_index->ReportInvalidDIERef(die_ref, regex.GetText()); 2145 continue; 2146 } 2147 2148 DWARFCompileUnit *dwarf_cu = llvm::dyn_cast<DWARFCompileUnit>(die.GetCU()); 2149 if (!dwarf_cu) 2150 continue; 2151 sc.comp_unit = GetCompUnitForDWARFCompUnit(*dwarf_cu); 2152 2153 ParseVariables(sc, die, LLDB_INVALID_ADDRESS, false, false, &variables); 2154 2155 if (variables.GetSize() - original_size >= max_matches) 2156 break; 2157 } 2158 } 2159 2160 bool SymbolFileDWARF::ResolveFunction(const DWARFDIE &orig_die, 2161 bool include_inlines, 2162 SymbolContextList &sc_list) { 2163 SymbolContext sc; 2164 2165 if (!orig_die) 2166 return false; 2167 2168 // If we were passed a die that is not a function, just return false... 2169 if (!(orig_die.Tag() == DW_TAG_subprogram || 2170 (include_inlines && orig_die.Tag() == DW_TAG_inlined_subroutine))) 2171 return false; 2172 2173 DWARFDIE die = orig_die; 2174 DWARFDIE inlined_die; 2175 if (die.Tag() == DW_TAG_inlined_subroutine) { 2176 inlined_die = die; 2177 2178 while (true) { 2179 die = die.GetParent(); 2180 2181 if (die) { 2182 if (die.Tag() == DW_TAG_subprogram) 2183 break; 2184 } else 2185 break; 2186 } 2187 } 2188 assert(die && die.Tag() == DW_TAG_subprogram); 2189 if (GetFunction(die, sc)) { 2190 Address addr; 2191 // Parse all blocks if needed 2192 if (inlined_die) { 2193 Block &function_block = sc.function->GetBlock(true); 2194 sc.block = function_block.FindBlockByID(inlined_die.GetID()); 2195 if (sc.block == nullptr) 2196 sc.block = function_block.FindBlockByID(inlined_die.GetOffset()); 2197 if (sc.block == nullptr || !sc.block->GetStartAddress(addr)) 2198 addr.Clear(); 2199 } else { 2200 sc.block = nullptr; 2201 addr = sc.function->GetAddressRange().GetBaseAddress(); 2202 } 2203 2204 2205 if (auto section_sp = addr.GetSection()) { 2206 if (section_sp->GetPermissions() & ePermissionsExecutable) { 2207 sc_list.Append(sc); 2208 return true; 2209 } 2210 } 2211 } 2212 2213 return false; 2214 } 2215 2216 bool SymbolFileDWARF::DIEInDeclContext(const CompilerDeclContext &decl_ctx, 2217 const DWARFDIE &die) { 2218 // If we have no parent decl context to match this DIE matches, and if the 2219 // parent decl context isn't valid, we aren't trying to look for any 2220 // particular decl context so any die matches. 2221 if (!decl_ctx.IsValid()) 2222 return true; 2223 2224 if (die) { 2225 if (DWARFASTParser *dwarf_ast = GetDWARFParser(*die.GetCU())) { 2226 if (CompilerDeclContext actual_decl_ctx = 2227 dwarf_ast->GetDeclContextContainingUIDFromDWARF(die)) 2228 return decl_ctx.IsContainedInLookup(actual_decl_ctx); 2229 } 2230 } 2231 return false; 2232 } 2233 2234 void SymbolFileDWARF::FindFunctions(ConstString name, 2235 const CompilerDeclContext &parent_decl_ctx, 2236 FunctionNameType name_type_mask, 2237 bool include_inlines, 2238 SymbolContextList &sc_list) { 2239 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2240 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 2241 Timer scoped_timer(func_cat, "SymbolFileDWARF::FindFunctions (name = '%s')", 2242 name.AsCString()); 2243 2244 // eFunctionNameTypeAuto should be pre-resolved by a call to 2245 // Module::LookupInfo::LookupInfo() 2246 assert((name_type_mask & eFunctionNameTypeAuto) == 0); 2247 2248 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2249 2250 if (log) { 2251 GetObjectFile()->GetModule()->LogMessage( 2252 log, 2253 "SymbolFileDWARF::FindFunctions (name=\"%s\", name_type_mask=0x%x, sc_list)", 2254 name.GetCString(), name_type_mask); 2255 } 2256 2257 if (!DeclContextMatchesThisSymbolFile(parent_decl_ctx)) 2258 return; 2259 2260 // If name is empty then we won't find anything. 2261 if (name.IsEmpty()) 2262 return; 2263 2264 // Remember how many sc_list are in the list before we search in case we are 2265 // appending the results to a variable list. 2266 2267 const uint32_t original_size = sc_list.GetSize(); 2268 2269 llvm::DenseSet<const DWARFDebugInfoEntry *> resolved_dies; 2270 2271 std::vector<DWARFDIE> dies; 2272 m_index->GetFunctions(name, *this, parent_decl_ctx, name_type_mask, dies); 2273 for (const DWARFDIE &die : dies) { 2274 if (resolved_dies.insert(die.GetDIE()).second) 2275 ResolveFunction(die, include_inlines, sc_list); 2276 } 2277 2278 // Return the number of variable that were appended to the list 2279 const uint32_t num_matches = sc_list.GetSize() - original_size; 2280 2281 if (log && num_matches > 0) { 2282 GetObjectFile()->GetModule()->LogMessage( 2283 log, 2284 "SymbolFileDWARF::FindFunctions (name=\"%s\", " 2285 "name_type_mask=0x%x, include_inlines=%d, sc_list) => %u", 2286 name.GetCString(), name_type_mask, include_inlines, 2287 num_matches); 2288 } 2289 } 2290 2291 void SymbolFileDWARF::FindFunctions(const RegularExpression ®ex, 2292 bool include_inlines, 2293 SymbolContextList &sc_list) { 2294 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2295 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 2296 Timer scoped_timer(func_cat, "SymbolFileDWARF::FindFunctions (regex = '%s')", 2297 regex.GetText().str().c_str()); 2298 2299 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2300 2301 if (log) { 2302 GetObjectFile()->GetModule()->LogMessage( 2303 log, "SymbolFileDWARF::FindFunctions (regex=\"%s\", sc_list)", 2304 regex.GetText().str().c_str()); 2305 } 2306 2307 DWARFDebugInfo &info = DebugInfo(); 2308 DIEArray offsets; 2309 m_index->GetFunctions(regex, offsets); 2310 2311 llvm::DenseSet<const DWARFDebugInfoEntry *> resolved_dies; 2312 for (DIERef ref : offsets) { 2313 DWARFDIE die = info.GetDIE(ref); 2314 if (!die) { 2315 m_index->ReportInvalidDIERef(ref, regex.GetText()); 2316 continue; 2317 } 2318 if (resolved_dies.insert(die.GetDIE()).second) 2319 ResolveFunction(die, include_inlines, sc_list); 2320 } 2321 } 2322 2323 void SymbolFileDWARF::GetMangledNamesForFunction( 2324 const std::string &scope_qualified_name, 2325 std::vector<ConstString> &mangled_names) { 2326 DWARFDebugInfo &info = DebugInfo(); 2327 uint32_t num_comp_units = info.GetNumUnits(); 2328 for (uint32_t i = 0; i < num_comp_units; i++) { 2329 DWARFUnit *cu = info.GetUnitAtIndex(i); 2330 if (cu == nullptr) 2331 continue; 2332 2333 SymbolFileDWARFDwo *dwo = cu->GetDwoSymbolFile(); 2334 if (dwo) 2335 dwo->GetMangledNamesForFunction(scope_qualified_name, mangled_names); 2336 } 2337 2338 for (DIERef die_ref : 2339 m_function_scope_qualified_name_map.lookup(scope_qualified_name)) { 2340 DWARFDIE die = GetDIE(die_ref); 2341 mangled_names.push_back(ConstString(die.GetMangledName())); 2342 } 2343 } 2344 2345 void SymbolFileDWARF::FindTypes( 2346 ConstString name, const CompilerDeclContext &parent_decl_ctx, 2347 uint32_t max_matches, 2348 llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files, 2349 TypeMap &types) { 2350 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2351 // Make sure we haven't already searched this SymbolFile before. 2352 if (!searched_symbol_files.insert(this).second) 2353 return; 2354 2355 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2356 2357 if (log) { 2358 if (parent_decl_ctx) 2359 GetObjectFile()->GetModule()->LogMessage( 2360 log, 2361 "SymbolFileDWARF::FindTypes (sc, name=\"%s\", parent_decl_ctx = " 2362 "%p (\"%s\"), max_matches=%u, type_list)", 2363 name.GetCString(), static_cast<const void *>(&parent_decl_ctx), 2364 parent_decl_ctx.GetName().AsCString("<NULL>"), max_matches); 2365 else 2366 GetObjectFile()->GetModule()->LogMessage( 2367 log, 2368 "SymbolFileDWARF::FindTypes (sc, name=\"%s\", parent_decl_ctx = " 2369 "NULL, max_matches=%u, type_list)", 2370 name.GetCString(), max_matches); 2371 } 2372 2373 if (!DeclContextMatchesThisSymbolFile(parent_decl_ctx)) 2374 return; 2375 2376 DIEArray die_offsets; 2377 m_index->GetTypes(name, die_offsets); 2378 const size_t num_die_matches = die_offsets.size(); 2379 2380 for (size_t i = 0; i < num_die_matches; ++i) { 2381 const DIERef &die_ref = die_offsets[i]; 2382 DWARFDIE die = GetDIE(die_ref); 2383 if (!die) { 2384 m_index->ReportInvalidDIERef(die_ref, name.GetStringRef()); 2385 continue; 2386 } 2387 2388 if (!DIEInDeclContext(parent_decl_ctx, die)) 2389 continue; // The containing decl contexts don't match 2390 2391 Type *matching_type = ResolveType(die, true, true); 2392 if (!matching_type) 2393 continue; 2394 2395 // We found a type pointer, now find the shared pointer form our type 2396 // list 2397 types.InsertUnique(matching_type->shared_from_this()); 2398 if (types.GetSize() >= max_matches) 2399 break; 2400 } 2401 2402 // Next search through the reachable Clang modules. This only applies for 2403 // DWARF objects compiled with -gmodules that haven't been processed by 2404 // dsymutil. 2405 if (types.GetSize() < max_matches) { 2406 UpdateExternalModuleListIfNeeded(); 2407 2408 for (const auto &pair : m_external_type_modules) 2409 if (ModuleSP external_module_sp = pair.second) 2410 if (SymbolFile *sym_file = external_module_sp->GetSymbolFile()) 2411 sym_file->FindTypes(name, parent_decl_ctx, max_matches, 2412 searched_symbol_files, types); 2413 } 2414 2415 if (log && types.GetSize()) { 2416 if (parent_decl_ctx) { 2417 GetObjectFile()->GetModule()->LogMessage( 2418 log, 2419 "SymbolFileDWARF::FindTypes (sc, name=\"%s\", parent_decl_ctx " 2420 "= %p (\"%s\"), max_matches=%u, type_list) => %u", 2421 name.GetCString(), static_cast<const void *>(&parent_decl_ctx), 2422 parent_decl_ctx.GetName().AsCString("<NULL>"), max_matches, 2423 types.GetSize()); 2424 } else { 2425 GetObjectFile()->GetModule()->LogMessage( 2426 log, 2427 "SymbolFileDWARF::FindTypes (sc, name=\"%s\", parent_decl_ctx " 2428 "= NULL, max_matches=%u, type_list) => %u", 2429 name.GetCString(), max_matches, types.GetSize()); 2430 } 2431 } 2432 } 2433 2434 void SymbolFileDWARF::FindTypes( 2435 llvm::ArrayRef<CompilerContext> pattern, LanguageSet languages, 2436 llvm::DenseSet<SymbolFile *> &searched_symbol_files, TypeMap &types) { 2437 // Make sure we haven't already searched this SymbolFile before. 2438 if (!searched_symbol_files.insert(this).second) 2439 return; 2440 2441 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2442 if (pattern.empty()) 2443 return; 2444 2445 ConstString name = pattern.back().name; 2446 2447 if (!name) 2448 return; 2449 2450 DIEArray die_offsets; 2451 m_index->GetTypes(name, die_offsets); 2452 const size_t num_die_matches = die_offsets.size(); 2453 2454 for (size_t i = 0; i < num_die_matches; ++i) { 2455 const DIERef &die_ref = die_offsets[i]; 2456 DWARFDIE die = GetDIE(die_ref); 2457 if (!die) { 2458 m_index->ReportInvalidDIERef(die_ref, name.GetStringRef()); 2459 continue; 2460 } 2461 2462 if (!languages[GetLanguage(*die.GetCU())]) 2463 continue; 2464 2465 llvm::SmallVector<CompilerContext, 4> die_context; 2466 die.GetDeclContext(die_context); 2467 if (!contextMatches(die_context, pattern)) 2468 continue; 2469 2470 if (Type *matching_type = ResolveType(die, true, true)) { 2471 // We found a type pointer, now find the shared pointer form our type 2472 // list. 2473 types.InsertUnique(matching_type->shared_from_this()); 2474 } 2475 } 2476 2477 // Next search through the reachable Clang modules. This only applies for 2478 // DWARF objects compiled with -gmodules that haven't been processed by 2479 // dsymutil. 2480 UpdateExternalModuleListIfNeeded(); 2481 2482 for (const auto &pair : m_external_type_modules) 2483 if (ModuleSP external_module_sp = pair.second) 2484 external_module_sp->FindTypes(pattern, languages, searched_symbol_files, 2485 types); 2486 } 2487 2488 CompilerDeclContext 2489 SymbolFileDWARF::FindNamespace(ConstString name, 2490 const CompilerDeclContext &parent_decl_ctx) { 2491 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 2492 Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS)); 2493 2494 if (log) { 2495 GetObjectFile()->GetModule()->LogMessage( 2496 log, "SymbolFileDWARF::FindNamespace (sc, name=\"%s\")", 2497 name.GetCString()); 2498 } 2499 2500 CompilerDeclContext namespace_decl_ctx; 2501 2502 if (!DeclContextMatchesThisSymbolFile(parent_decl_ctx)) 2503 return namespace_decl_ctx; 2504 2505 DIEArray die_offsets; 2506 m_index->GetNamespaces(name, die_offsets); 2507 const size_t num_matches = die_offsets.size(); 2508 for (size_t i = 0; i < num_matches; ++i) { 2509 const DIERef &die_ref = die_offsets[i]; 2510 DWARFDIE die = GetDIE(die_ref); 2511 if (!die) { 2512 m_index->ReportInvalidDIERef(die_ref, name.GetStringRef()); 2513 continue; 2514 } 2515 2516 if (!DIEInDeclContext(parent_decl_ctx, die)) 2517 continue; // The containing decl contexts don't match 2518 2519 DWARFASTParser *dwarf_ast = GetDWARFParser(*die.GetCU()); 2520 if (!dwarf_ast) 2521 continue; 2522 2523 namespace_decl_ctx = dwarf_ast->GetDeclContextForUIDFromDWARF(die); 2524 if (namespace_decl_ctx) 2525 break; 2526 } 2527 if (log && namespace_decl_ctx) { 2528 GetObjectFile()->GetModule()->LogMessage( 2529 log, 2530 "SymbolFileDWARF::FindNamespace (sc, name=\"%s\") => " 2531 "CompilerDeclContext(%p/%p) \"%s\"", 2532 name.GetCString(), 2533 static_cast<const void *>(namespace_decl_ctx.GetTypeSystem()), 2534 static_cast<const void *>(namespace_decl_ctx.GetOpaqueDeclContext()), 2535 namespace_decl_ctx.GetName().AsCString("<NULL>")); 2536 } 2537 2538 return namespace_decl_ctx; 2539 } 2540 2541 TypeSP SymbolFileDWARF::GetTypeForDIE(const DWARFDIE &die, 2542 bool resolve_function_context) { 2543 TypeSP type_sp; 2544 if (die) { 2545 Type *type_ptr = GetDIEToType().lookup(die.GetDIE()); 2546 if (type_ptr == nullptr) { 2547 SymbolContextScope *scope; 2548 if (auto *dwarf_cu = llvm::dyn_cast<DWARFCompileUnit>(die.GetCU())) 2549 scope = GetCompUnitForDWARFCompUnit(*dwarf_cu); 2550 else 2551 scope = GetObjectFile()->GetModule().get(); 2552 assert(scope); 2553 SymbolContext sc(scope); 2554 const DWARFDebugInfoEntry *parent_die = die.GetParent().GetDIE(); 2555 while (parent_die != nullptr) { 2556 if (parent_die->Tag() == DW_TAG_subprogram) 2557 break; 2558 parent_die = parent_die->GetParent(); 2559 } 2560 SymbolContext sc_backup = sc; 2561 if (resolve_function_context && parent_die != nullptr && 2562 !GetFunction(DWARFDIE(die.GetCU(), parent_die), sc)) 2563 sc = sc_backup; 2564 2565 type_sp = ParseType(sc, die, nullptr); 2566 } else if (type_ptr != DIE_IS_BEING_PARSED) { 2567 // Grab the existing type from the master types lists 2568 type_sp = type_ptr->shared_from_this(); 2569 } 2570 } 2571 return type_sp; 2572 } 2573 2574 DWARFDIE 2575 SymbolFileDWARF::GetDeclContextDIEContainingDIE(const DWARFDIE &orig_die) { 2576 if (orig_die) { 2577 DWARFDIE die = orig_die; 2578 2579 while (die) { 2580 // If this is the original DIE that we are searching for a declaration 2581 // for, then don't look in the cache as we don't want our own decl 2582 // context to be our decl context... 2583 if (orig_die != die) { 2584 switch (die.Tag()) { 2585 case DW_TAG_compile_unit: 2586 case DW_TAG_partial_unit: 2587 case DW_TAG_namespace: 2588 case DW_TAG_structure_type: 2589 case DW_TAG_union_type: 2590 case DW_TAG_class_type: 2591 case DW_TAG_lexical_block: 2592 case DW_TAG_subprogram: 2593 return die; 2594 case DW_TAG_inlined_subroutine: { 2595 DWARFDIE abs_die = die.GetReferencedDIE(DW_AT_abstract_origin); 2596 if (abs_die) { 2597 return abs_die; 2598 } 2599 break; 2600 } 2601 default: 2602 break; 2603 } 2604 } 2605 2606 DWARFDIE spec_die = die.GetReferencedDIE(DW_AT_specification); 2607 if (spec_die) { 2608 DWARFDIE decl_ctx_die = GetDeclContextDIEContainingDIE(spec_die); 2609 if (decl_ctx_die) 2610 return decl_ctx_die; 2611 } 2612 2613 DWARFDIE abs_die = die.GetReferencedDIE(DW_AT_abstract_origin); 2614 if (abs_die) { 2615 DWARFDIE decl_ctx_die = GetDeclContextDIEContainingDIE(abs_die); 2616 if (decl_ctx_die) 2617 return decl_ctx_die; 2618 } 2619 2620 die = die.GetParent(); 2621 } 2622 } 2623 return DWARFDIE(); 2624 } 2625 2626 Symbol *SymbolFileDWARF::GetObjCClassSymbol(ConstString objc_class_name) { 2627 Symbol *objc_class_symbol = nullptr; 2628 if (m_objfile_sp) { 2629 Symtab *symtab = m_objfile_sp->GetSymtab(); 2630 if (symtab) { 2631 objc_class_symbol = symtab->FindFirstSymbolWithNameAndType( 2632 objc_class_name, eSymbolTypeObjCClass, Symtab::eDebugNo, 2633 Symtab::eVisibilityAny); 2634 } 2635 } 2636 return objc_class_symbol; 2637 } 2638 2639 // Some compilers don't emit the DW_AT_APPLE_objc_complete_type attribute. If 2640 // they don't then we can end up looking through all class types for a complete 2641 // type and never find the full definition. We need to know if this attribute 2642 // is supported, so we determine this here and cache th result. We also need to 2643 // worry about the debug map 2644 // DWARF file 2645 // if we are doing darwin DWARF in .o file debugging. 2646 bool SymbolFileDWARF::Supports_DW_AT_APPLE_objc_complete_type(DWARFUnit *cu) { 2647 if (m_supports_DW_AT_APPLE_objc_complete_type == eLazyBoolCalculate) { 2648 m_supports_DW_AT_APPLE_objc_complete_type = eLazyBoolNo; 2649 if (cu && cu->Supports_DW_AT_APPLE_objc_complete_type()) 2650 m_supports_DW_AT_APPLE_objc_complete_type = eLazyBoolYes; 2651 else { 2652 DWARFDebugInfo &debug_info = DebugInfo(); 2653 const uint32_t num_compile_units = GetNumCompileUnits(); 2654 for (uint32_t cu_idx = 0; cu_idx < num_compile_units; ++cu_idx) { 2655 DWARFUnit *dwarf_cu = debug_info.GetUnitAtIndex(cu_idx); 2656 if (dwarf_cu != cu && 2657 dwarf_cu->Supports_DW_AT_APPLE_objc_complete_type()) { 2658 m_supports_DW_AT_APPLE_objc_complete_type = eLazyBoolYes; 2659 break; 2660 } 2661 } 2662 } 2663 if (m_supports_DW_AT_APPLE_objc_complete_type == eLazyBoolNo && 2664 GetDebugMapSymfile()) 2665 return m_debug_map_symfile->Supports_DW_AT_APPLE_objc_complete_type(this); 2666 } 2667 return m_supports_DW_AT_APPLE_objc_complete_type == eLazyBoolYes; 2668 } 2669 2670 // This function can be used when a DIE is found that is a forward declaration 2671 // DIE and we want to try and find a type that has the complete definition. 2672 TypeSP SymbolFileDWARF::FindCompleteObjCDefinitionTypeForDIE( 2673 const DWARFDIE &die, ConstString type_name, bool must_be_implementation) { 2674 2675 TypeSP type_sp; 2676 2677 if (!type_name || (must_be_implementation && !GetObjCClassSymbol(type_name))) 2678 return type_sp; 2679 2680 DIEArray die_offsets; 2681 m_index->GetCompleteObjCClass(type_name, must_be_implementation, die_offsets); 2682 2683 const size_t num_matches = die_offsets.size(); 2684 2685 for (size_t i = 0; i < num_matches; ++i) { 2686 const DIERef &die_ref = die_offsets[i]; 2687 DWARFDIE type_die = GetDIE(die_ref); 2688 if (!type_die) { 2689 m_index->ReportInvalidDIERef(die_ref, type_name.GetStringRef()); 2690 continue; 2691 } 2692 2693 bool try_resolving_type = false; 2694 2695 // Don't try and resolve the DIE we are looking for with the DIE 2696 // itself! 2697 if (type_die != die) { 2698 switch (type_die.Tag()) { 2699 case DW_TAG_class_type: 2700 case DW_TAG_structure_type: 2701 try_resolving_type = true; 2702 break; 2703 default: 2704 break; 2705 } 2706 } 2707 if (!try_resolving_type) 2708 continue; 2709 2710 if (must_be_implementation && 2711 type_die.Supports_DW_AT_APPLE_objc_complete_type()) 2712 try_resolving_type = type_die.GetAttributeValueAsUnsigned( 2713 DW_AT_APPLE_objc_complete_type, 0); 2714 if (!try_resolving_type) 2715 continue; 2716 2717 Type *resolved_type = ResolveType(type_die, false, true); 2718 if (!resolved_type || resolved_type == DIE_IS_BEING_PARSED) 2719 continue; 2720 2721 DEBUG_PRINTF( 2722 "resolved 0x%8.8" PRIx64 " from %s to 0x%8.8" PRIx64 2723 " (cu 0x%8.8" PRIx64 ")\n", 2724 die.GetID(), 2725 m_objfile_sp->GetFileSpec().GetFilename().AsCString("<Unknown>"), 2726 type_die.GetID(), type_cu->GetID()); 2727 2728 if (die) 2729 GetDIEToType()[die.GetDIE()] = resolved_type; 2730 type_sp = resolved_type->shared_from_this(); 2731 break; 2732 } 2733 return type_sp; 2734 } 2735 2736 // This function helps to ensure that the declaration contexts match for two 2737 // different DIEs. Often times debug information will refer to a forward 2738 // declaration of a type (the equivalent of "struct my_struct;". There will 2739 // often be a declaration of that type elsewhere that has the full definition. 2740 // When we go looking for the full type "my_struct", we will find one or more 2741 // matches in the accelerator tables and we will then need to make sure the 2742 // type was in the same declaration context as the original DIE. This function 2743 // can efficiently compare two DIEs and will return true when the declaration 2744 // context matches, and false when they don't. 2745 bool SymbolFileDWARF::DIEDeclContextsMatch(const DWARFDIE &die1, 2746 const DWARFDIE &die2) { 2747 if (die1 == die2) 2748 return true; 2749 2750 std::vector<DWARFDIE> decl_ctx_1; 2751 std::vector<DWARFDIE> decl_ctx_2; 2752 // The declaration DIE stack is a stack of the declaration context DIEs all 2753 // the way back to the compile unit. If a type "T" is declared inside a class 2754 // "B", and class "B" is declared inside a class "A" and class "A" is in a 2755 // namespace "lldb", and the namespace is in a compile unit, there will be a 2756 // stack of DIEs: 2757 // 2758 // [0] DW_TAG_class_type for "B" 2759 // [1] DW_TAG_class_type for "A" 2760 // [2] DW_TAG_namespace for "lldb" 2761 // [3] DW_TAG_compile_unit or DW_TAG_partial_unit for the source file. 2762 // 2763 // We grab both contexts and make sure that everything matches all the way 2764 // back to the compiler unit. 2765 2766 // First lets grab the decl contexts for both DIEs 2767 decl_ctx_1 = die1.GetDeclContextDIEs(); 2768 decl_ctx_2 = die2.GetDeclContextDIEs(); 2769 // Make sure the context arrays have the same size, otherwise we are done 2770 const size_t count1 = decl_ctx_1.size(); 2771 const size_t count2 = decl_ctx_2.size(); 2772 if (count1 != count2) 2773 return false; 2774 2775 // Make sure the DW_TAG values match all the way back up the compile unit. If 2776 // they don't, then we are done. 2777 DWARFDIE decl_ctx_die1; 2778 DWARFDIE decl_ctx_die2; 2779 size_t i; 2780 for (i = 0; i < count1; i++) { 2781 decl_ctx_die1 = decl_ctx_1[i]; 2782 decl_ctx_die2 = decl_ctx_2[i]; 2783 if (decl_ctx_die1.Tag() != decl_ctx_die2.Tag()) 2784 return false; 2785 } 2786 #ifndef NDEBUG 2787 2788 // Make sure the top item in the decl context die array is always 2789 // DW_TAG_compile_unit or DW_TAG_partial_unit. If it isn't then 2790 // something went wrong in the DWARFDIE::GetDeclContextDIEs() 2791 // function. 2792 dw_tag_t cu_tag = decl_ctx_1[count1 - 1].Tag(); 2793 UNUSED_IF_ASSERT_DISABLED(cu_tag); 2794 assert(cu_tag == DW_TAG_compile_unit || cu_tag == DW_TAG_partial_unit); 2795 2796 #endif 2797 // Always skip the compile unit when comparing by only iterating up to "count 2798 // - 1". Here we compare the names as we go. 2799 for (i = 0; i < count1 - 1; i++) { 2800 decl_ctx_die1 = decl_ctx_1[i]; 2801 decl_ctx_die2 = decl_ctx_2[i]; 2802 const char *name1 = decl_ctx_die1.GetName(); 2803 const char *name2 = decl_ctx_die2.GetName(); 2804 // If the string was from a DW_FORM_strp, then the pointer will often be 2805 // the same! 2806 if (name1 == name2) 2807 continue; 2808 2809 // Name pointers are not equal, so only compare the strings if both are not 2810 // NULL. 2811 if (name1 && name2) { 2812 // If the strings don't compare, we are done... 2813 if (strcmp(name1, name2) != 0) 2814 return false; 2815 } else { 2816 // One name was NULL while the other wasn't 2817 return false; 2818 } 2819 } 2820 // We made it through all of the checks and the declaration contexts are 2821 // equal. 2822 return true; 2823 } 2824 2825 TypeSP SymbolFileDWARF::FindDefinitionTypeForDWARFDeclContext( 2826 const DWARFDeclContext &dwarf_decl_ctx) { 2827 TypeSP type_sp; 2828 2829 const uint32_t dwarf_decl_ctx_count = dwarf_decl_ctx.GetSize(); 2830 if (dwarf_decl_ctx_count > 0) { 2831 const ConstString type_name(dwarf_decl_ctx[0].name); 2832 const dw_tag_t tag = dwarf_decl_ctx[0].tag; 2833 2834 if (type_name) { 2835 Log *log(LogChannelDWARF::GetLogIfAny(DWARF_LOG_TYPE_COMPLETION | 2836 DWARF_LOG_LOOKUPS)); 2837 if (log) { 2838 GetObjectFile()->GetModule()->LogMessage( 2839 log, 2840 "SymbolFileDWARF::FindDefinitionTypeForDWARFDeclContext(tag=%" 2841 "s, qualified-name='%s')", 2842 DW_TAG_value_to_name(dwarf_decl_ctx[0].tag), 2843 dwarf_decl_ctx.GetQualifiedName()); 2844 } 2845 2846 DIEArray die_offsets; 2847 m_index->GetTypes(dwarf_decl_ctx, die_offsets); 2848 const size_t num_matches = die_offsets.size(); 2849 2850 // Get the type system that we are looking to find a type for. We will 2851 // use this to ensure any matches we find are in a language that this 2852 // type system supports 2853 const LanguageType language = dwarf_decl_ctx.GetLanguage(); 2854 TypeSystem *type_system = nullptr; 2855 if (language != eLanguageTypeUnknown) { 2856 auto type_system_or_err = GetTypeSystemForLanguage(language); 2857 if (auto err = type_system_or_err.takeError()) { 2858 LLDB_LOG_ERROR( 2859 lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_SYMBOLS), 2860 std::move(err), "Cannot get TypeSystem for language {}", 2861 Language::GetNameForLanguageType(language)); 2862 } else { 2863 type_system = &type_system_or_err.get(); 2864 } 2865 } 2866 for (size_t i = 0; i < num_matches; ++i) { 2867 const DIERef &die_ref = die_offsets[i]; 2868 DWARFDIE type_die = GetDIE(die_ref); 2869 if (!type_die) { 2870 m_index->ReportInvalidDIERef(die_ref, type_name.GetStringRef()); 2871 continue; 2872 } 2873 2874 // Make sure type_die's langauge matches the type system we are 2875 // looking for. We don't want to find a "Foo" type from Java if we 2876 // are looking for a "Foo" type for C, C++, ObjC, or ObjC++. 2877 if (type_system && 2878 !type_system->SupportsLanguage(GetLanguage(*type_die.GetCU()))) 2879 continue; 2880 bool try_resolving_type = false; 2881 2882 // Don't try and resolve the DIE we are looking for with the DIE 2883 // itself! 2884 const dw_tag_t type_tag = type_die.Tag(); 2885 // Make sure the tags match 2886 if (type_tag == tag) { 2887 // The tags match, lets try resolving this type 2888 try_resolving_type = true; 2889 } else { 2890 // The tags don't match, but we need to watch our for a forward 2891 // declaration for a struct and ("struct foo") ends up being a 2892 // class ("class foo { ... };") or vice versa. 2893 switch (type_tag) { 2894 case DW_TAG_class_type: 2895 // We had a "class foo", see if we ended up with a "struct foo 2896 // { ... };" 2897 try_resolving_type = (tag == DW_TAG_structure_type); 2898 break; 2899 case DW_TAG_structure_type: 2900 // We had a "struct foo", see if we ended up with a "class foo 2901 // { ... };" 2902 try_resolving_type = (tag == DW_TAG_class_type); 2903 break; 2904 default: 2905 // Tags don't match, don't event try to resolve using this type 2906 // whose name matches.... 2907 break; 2908 } 2909 } 2910 2911 if (!try_resolving_type) { 2912 if (log) { 2913 std::string qualified_name; 2914 type_die.GetQualifiedName(qualified_name); 2915 GetObjectFile()->GetModule()->LogMessage( 2916 log, 2917 "SymbolFileDWARF::" 2918 "FindDefinitionTypeForDWARFDeclContext(tag=%s, " 2919 "qualified-name='%s') ignoring die=0x%8.8x (%s)", 2920 DW_TAG_value_to_name(dwarf_decl_ctx[0].tag), 2921 dwarf_decl_ctx.GetQualifiedName(), type_die.GetOffset(), 2922 qualified_name.c_str()); 2923 } 2924 continue; 2925 } 2926 2927 DWARFDeclContext type_dwarf_decl_ctx = GetDWARFDeclContext(type_die); 2928 2929 if (log) { 2930 GetObjectFile()->GetModule()->LogMessage( 2931 log, 2932 "SymbolFileDWARF::" 2933 "FindDefinitionTypeForDWARFDeclContext(tag=%s, " 2934 "qualified-name='%s') trying die=0x%8.8x (%s)", 2935 DW_TAG_value_to_name(dwarf_decl_ctx[0].tag), 2936 dwarf_decl_ctx.GetQualifiedName(), type_die.GetOffset(), 2937 type_dwarf_decl_ctx.GetQualifiedName()); 2938 } 2939 2940 // Make sure the decl contexts match all the way up 2941 if (dwarf_decl_ctx != type_dwarf_decl_ctx) 2942 continue; 2943 2944 Type *resolved_type = ResolveType(type_die, false); 2945 if (!resolved_type || resolved_type == DIE_IS_BEING_PARSED) 2946 continue; 2947 2948 type_sp = resolved_type->shared_from_this(); 2949 break; 2950 } 2951 } 2952 } 2953 return type_sp; 2954 } 2955 2956 TypeSP SymbolFileDWARF::ParseType(const SymbolContext &sc, const DWARFDIE &die, 2957 bool *type_is_new_ptr) { 2958 if (!die) 2959 return {}; 2960 2961 auto type_system_or_err = GetTypeSystemForLanguage(GetLanguage(*die.GetCU())); 2962 if (auto err = type_system_or_err.takeError()) { 2963 LLDB_LOG_ERROR(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_SYMBOLS), 2964 std::move(err), "Unable to parse type"); 2965 return {}; 2966 } 2967 2968 DWARFASTParser *dwarf_ast = type_system_or_err->GetDWARFParser(); 2969 if (!dwarf_ast) 2970 return {}; 2971 2972 TypeSP type_sp = dwarf_ast->ParseTypeFromDWARF(sc, die, type_is_new_ptr); 2973 if (type_sp) { 2974 GetTypeList().Insert(type_sp); 2975 2976 if (die.Tag() == DW_TAG_subprogram) { 2977 std::string scope_qualified_name(GetDeclContextForUID(die.GetID()) 2978 .GetScopeQualifiedName() 2979 .AsCString("")); 2980 if (scope_qualified_name.size()) { 2981 m_function_scope_qualified_name_map[scope_qualified_name].insert( 2982 *die.GetDIERef()); 2983 } 2984 } 2985 } 2986 2987 return type_sp; 2988 } 2989 2990 size_t SymbolFileDWARF::ParseTypes(const SymbolContext &sc, 2991 const DWARFDIE &orig_die, 2992 bool parse_siblings, bool parse_children) { 2993 size_t types_added = 0; 2994 DWARFDIE die = orig_die; 2995 2996 while (die) { 2997 const dw_tag_t tag = die.Tag(); 2998 bool type_is_new = false; 2999 3000 Tag dwarf_tag = static_cast<Tag>(tag); 3001 3002 // TODO: Currently ParseTypeFromDWARF(...) which is called by ParseType(...) 3003 // does not handle DW_TAG_subrange_type. It is not clear if this is a bug or 3004 // not. 3005 if (isType(dwarf_tag) && tag != DW_TAG_subrange_type) 3006 ParseType(sc, die, &type_is_new); 3007 3008 if (type_is_new) 3009 ++types_added; 3010 3011 if (parse_children && die.HasChildren()) { 3012 if (die.Tag() == DW_TAG_subprogram) { 3013 SymbolContext child_sc(sc); 3014 child_sc.function = sc.comp_unit->FindFunctionByUID(die.GetID()).get(); 3015 types_added += ParseTypes(child_sc, die.GetFirstChild(), true, true); 3016 } else 3017 types_added += ParseTypes(sc, die.GetFirstChild(), true, true); 3018 } 3019 3020 if (parse_siblings) 3021 die = die.GetSibling(); 3022 else 3023 die.Clear(); 3024 } 3025 return types_added; 3026 } 3027 3028 size_t SymbolFileDWARF::ParseBlocksRecursive(Function &func) { 3029 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 3030 CompileUnit *comp_unit = func.GetCompileUnit(); 3031 lldbassert(comp_unit); 3032 3033 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(comp_unit); 3034 if (!dwarf_cu) 3035 return 0; 3036 3037 size_t functions_added = 0; 3038 const dw_offset_t function_die_offset = func.GetID(); 3039 DWARFDIE function_die = 3040 dwarf_cu->GetNonSkeletonUnit().GetDIE(function_die_offset); 3041 if (function_die) { 3042 ParseBlocksRecursive(*comp_unit, &func.GetBlock(false), function_die, 3043 LLDB_INVALID_ADDRESS, 0); 3044 } 3045 3046 return functions_added; 3047 } 3048 3049 size_t SymbolFileDWARF::ParseTypes(CompileUnit &comp_unit) { 3050 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 3051 size_t types_added = 0; 3052 DWARFUnit *dwarf_cu = GetDWARFCompileUnit(&comp_unit); 3053 if (dwarf_cu) { 3054 DWARFDIE dwarf_cu_die = dwarf_cu->DIE(); 3055 if (dwarf_cu_die && dwarf_cu_die.HasChildren()) { 3056 SymbolContext sc; 3057 sc.comp_unit = &comp_unit; 3058 types_added = ParseTypes(sc, dwarf_cu_die.GetFirstChild(), true, true); 3059 } 3060 } 3061 3062 return types_added; 3063 } 3064 3065 size_t SymbolFileDWARF::ParseVariablesForContext(const SymbolContext &sc) { 3066 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex()); 3067 if (sc.comp_unit != nullptr) { 3068 if (sc.function) { 3069 DWARFDIE function_die = GetDIE(sc.function->GetID()); 3070 3071 const dw_addr_t func_lo_pc = function_die.GetAttributeValueAsAddress( 3072 DW_AT_low_pc, LLDB_INVALID_ADDRESS); 3073 if (func_lo_pc != LLDB_INVALID_ADDRESS) { 3074 const size_t num_variables = ParseVariables( 3075 sc, function_die.GetFirstChild(), func_lo_pc, true, true); 3076 3077 // Let all blocks know they have parse all their variables 3078 sc.function->GetBlock(false).SetDidParseVariables(true, true); 3079 return num_variables; 3080 } 3081 } else if (sc.comp_unit) { 3082 DWARFUnit *dwarf_cu = DebugInfo().GetUnitAtIndex(sc.comp_unit->GetID()); 3083 3084 if (dwarf_cu == nullptr) 3085 return 0; 3086 3087 uint32_t vars_added = 0; 3088 VariableListSP variables(sc.comp_unit->GetVariableList(false)); 3089 3090 if (variables.get() == nullptr) { 3091 variables = std::make_shared<VariableList>(); 3092 sc.comp_unit->SetVariableList(variables); 3093 3094 DIEArray die_offsets; 3095 m_index->GetGlobalVariables(dwarf_cu->GetNonSkeletonUnit(), 3096 die_offsets); 3097 const size_t num_matches = die_offsets.size(); 3098 for (size_t i = 0; i < num_matches; ++i) { 3099 const DIERef &die_ref = die_offsets[i]; 3100 DWARFDIE die = GetDIE(die_ref); 3101 if (!die) { 3102 m_index->ReportInvalidDIERef(die_ref, ""); 3103 continue; 3104 } 3105 3106 VariableSP var_sp(ParseVariableDIE(sc, die, LLDB_INVALID_ADDRESS)); 3107 if (var_sp) { 3108 variables->AddVariableIfUnique(var_sp); 3109 ++vars_added; 3110 } 3111 } 3112 } 3113 return vars_added; 3114 } 3115 } 3116 return 0; 3117 } 3118 3119 VariableSP SymbolFileDWARF::ParseVariableDIE(const SymbolContext &sc, 3120 const DWARFDIE &die, 3121 const lldb::addr_t func_low_pc) { 3122 if (die.GetDWARF() != this) 3123 return die.GetDWARF()->ParseVariableDIE(sc, die, func_low_pc); 3124 3125 VariableSP var_sp; 3126 if (!die) 3127 return var_sp; 3128 3129 var_sp = GetDIEToVariable()[die.GetDIE()]; 3130 if (var_sp) 3131 return var_sp; // Already been parsed! 3132 3133 const dw_tag_t tag = die.Tag(); 3134 ModuleSP module = GetObjectFile()->GetModule(); 3135 3136 if ((tag == DW_TAG_variable) || (tag == DW_TAG_constant) || 3137 (tag == DW_TAG_formal_parameter && sc.function)) { 3138 DWARFAttributes attributes; 3139 const size_t num_attributes = die.GetAttributes(attributes); 3140 DWARFDIE spec_die; 3141 if (num_attributes > 0) { 3142 const char *name = nullptr; 3143 const char *mangled = nullptr; 3144 Declaration decl; 3145 uint32_t i; 3146 DWARFFormValue type_die_form; 3147 DWARFExpression location; 3148 bool is_external = false; 3149 bool is_artificial = false; 3150 bool location_is_const_value_data = false; 3151 bool has_explicit_location = false; 3152 DWARFFormValue const_value; 3153 Variable::RangeList scope_ranges; 3154 // AccessType accessibility = eAccessNone; 3155 3156 for (i = 0; i < num_attributes; ++i) { 3157 dw_attr_t attr = attributes.AttributeAtIndex(i); 3158 DWARFFormValue form_value; 3159 3160 if (attributes.ExtractFormValueAtIndex(i, form_value)) { 3161 switch (attr) { 3162 case DW_AT_decl_file: 3163 decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex( 3164 form_value.Unsigned())); 3165 break; 3166 case DW_AT_decl_line: 3167 decl.SetLine(form_value.Unsigned()); 3168 break; 3169 case DW_AT_decl_column: 3170 decl.SetColumn(form_value.Unsigned()); 3171 break; 3172 case DW_AT_name: 3173 name = form_value.AsCString(); 3174 break; 3175 case DW_AT_linkage_name: 3176 case DW_AT_MIPS_linkage_name: 3177 mangled = form_value.AsCString(); 3178 break; 3179 case DW_AT_type: 3180 type_die_form = form_value; 3181 break; 3182 case DW_AT_external: 3183 is_external = form_value.Boolean(); 3184 break; 3185 case DW_AT_const_value: 3186 // If we have already found a DW_AT_location attribute, ignore this 3187 // attribute. 3188 if (!has_explicit_location) { 3189 location_is_const_value_data = true; 3190 // The constant value will be either a block, a data value or a 3191 // string. 3192 auto debug_info_data = die.GetData(); 3193 if (DWARFFormValue::IsBlockForm(form_value.Form())) { 3194 // Retrieve the value as a block expression. 3195 uint32_t block_offset = 3196 form_value.BlockData() - debug_info_data.GetDataStart(); 3197 uint32_t block_length = form_value.Unsigned(); 3198 location = DWARFExpression( 3199 module, 3200 DataExtractor(debug_info_data, block_offset, block_length), 3201 die.GetCU()); 3202 } else if (DWARFFormValue::IsDataForm(form_value.Form())) { 3203 // Retrieve the value as a data expression. 3204 uint32_t data_offset = attributes.DIEOffsetAtIndex(i); 3205 if (auto data_length = form_value.GetFixedSize()) 3206 location = DWARFExpression( 3207 module, 3208 DataExtractor(debug_info_data, data_offset, *data_length), 3209 die.GetCU()); 3210 else { 3211 const uint8_t *data_pointer = form_value.BlockData(); 3212 if (data_pointer) { 3213 form_value.Unsigned(); 3214 } else if (DWARFFormValue::IsDataForm(form_value.Form())) { 3215 // we need to get the byte size of the type later after we 3216 // create the variable 3217 const_value = form_value; 3218 } 3219 } 3220 } else { 3221 // Retrieve the value as a string expression. 3222 if (form_value.Form() == DW_FORM_strp) { 3223 uint32_t data_offset = attributes.DIEOffsetAtIndex(i); 3224 if (auto data_length = form_value.GetFixedSize()) 3225 location = DWARFExpression(module, 3226 DataExtractor(debug_info_data, 3227 data_offset, 3228 *data_length), 3229 die.GetCU()); 3230 } else { 3231 const char *str = form_value.AsCString(); 3232 uint32_t string_offset = 3233 str - (const char *)debug_info_data.GetDataStart(); 3234 uint32_t string_length = strlen(str) + 1; 3235 location = DWARFExpression(module, 3236 DataExtractor(debug_info_data, 3237 string_offset, 3238 string_length), 3239 die.GetCU()); 3240 } 3241 } 3242 } 3243 break; 3244 case DW_AT_location: { 3245 location_is_const_value_data = false; 3246 has_explicit_location = true; 3247 if (DWARFFormValue::IsBlockForm(form_value.Form())) { 3248 auto data = die.GetData(); 3249 3250 uint32_t block_offset = 3251 form_value.BlockData() - data.GetDataStart(); 3252 uint32_t block_length = form_value.Unsigned(); 3253 location = DWARFExpression( 3254 module, DataExtractor(data, block_offset, block_length), 3255 die.GetCU()); 3256 } else { 3257 DataExtractor data = die.GetCU()->GetLocationData(); 3258 dw_offset_t offset = form_value.Unsigned(); 3259 if (form_value.Form() == DW_FORM_loclistx) 3260 offset = die.GetCU()->GetLoclistOffset(offset).getValueOr(-1); 3261 if (data.ValidOffset(offset)) { 3262 data = DataExtractor(data, offset, data.GetByteSize() - offset); 3263 location = DWARFExpression(module, data, die.GetCU()); 3264 assert(func_low_pc != LLDB_INVALID_ADDRESS); 3265 location.SetLocationListAddresses( 3266 attributes.CompileUnitAtIndex(i)->GetBaseAddress(), 3267 func_low_pc); 3268 } 3269 } 3270 } break; 3271 case DW_AT_specification: 3272 spec_die = form_value.Reference(); 3273 break; 3274 case DW_AT_start_scope: 3275 // TODO: Implement this. 3276 break; 3277 case DW_AT_artificial: 3278 is_artificial = form_value.Boolean(); 3279 break; 3280 case DW_AT_accessibility: 3281 break; // accessibility = 3282 // DW_ACCESS_to_AccessType(form_value.Unsigned()); break; 3283 case DW_AT_declaration: 3284 case DW_AT_description: 3285 case DW_AT_endianity: 3286 case DW_AT_segment: 3287 case DW_AT_visibility: 3288 default: 3289 case DW_AT_abstract_origin: 3290 case DW_AT_sibling: 3291 break; 3292 } 3293 } 3294 } 3295 3296 const DWARFDIE parent_context_die = GetDeclContextDIEContainingDIE(die); 3297 const dw_tag_t parent_tag = die.GetParent().Tag(); 3298 bool is_static_member = 3299 (parent_tag == DW_TAG_compile_unit || 3300 parent_tag == DW_TAG_partial_unit) && 3301 (parent_context_die.Tag() == DW_TAG_class_type || 3302 parent_context_die.Tag() == DW_TAG_structure_type); 3303 3304 ValueType scope = eValueTypeInvalid; 3305 3306 const DWARFDIE sc_parent_die = GetParentSymbolContextDIE(die); 3307 SymbolContextScope *symbol_context_scope = nullptr; 3308 3309 bool has_explicit_mangled = mangled != nullptr; 3310 if (!mangled) { 3311 // LLDB relies on the mangled name (DW_TAG_linkage_name or 3312 // DW_AT_MIPS_linkage_name) to generate fully qualified names 3313 // of global variables with commands like "frame var j". For 3314 // example, if j were an int variable holding a value 4 and 3315 // declared in a namespace B which in turn is contained in a 3316 // namespace A, the command "frame var j" returns 3317 // "(int) A::B::j = 4". 3318 // If the compiler does not emit a linkage name, we should be 3319 // able to generate a fully qualified name from the 3320 // declaration context. 3321 if ((parent_tag == DW_TAG_compile_unit || 3322 parent_tag == DW_TAG_partial_unit) && 3323 Language::LanguageIsCPlusPlus(GetLanguage(*die.GetCU()))) 3324 mangled = GetDWARFDeclContext(die) 3325 .GetQualifiedNameAsConstString() 3326 .GetCString(); 3327 } 3328 3329 if (tag == DW_TAG_formal_parameter) 3330 scope = eValueTypeVariableArgument; 3331 else { 3332 // DWARF doesn't specify if a DW_TAG_variable is a local, global 3333 // or static variable, so we have to do a little digging: 3334 // 1) DW_AT_linkage_name implies static lifetime (but may be missing) 3335 // 2) An empty DW_AT_location is an (optimized-out) static lifetime var. 3336 // 3) DW_AT_location containing a DW_OP_addr implies static lifetime. 3337 // Clang likes to combine small global variables into the same symbol 3338 // with locations like: DW_OP_addr(0x1000), DW_OP_constu(2), DW_OP_plus 3339 // so we need to look through the whole expression. 3340 bool is_static_lifetime = 3341 has_explicit_mangled || 3342 (has_explicit_location && !location.IsValid()); 3343 // Check if the location has a DW_OP_addr with any address value... 3344 lldb::addr_t location_DW_OP_addr = LLDB_INVALID_ADDRESS; 3345 if (!location_is_const_value_data) { 3346 bool op_error = false; 3347 location_DW_OP_addr = location.GetLocation_DW_OP_addr(0, op_error); 3348 if (op_error) { 3349 StreamString strm; 3350 location.DumpLocationForAddress(&strm, eDescriptionLevelFull, 0, 0, 3351 nullptr); 3352 GetObjectFile()->GetModule()->ReportError( 3353 "0x%8.8x: %s has an invalid location: %s", die.GetOffset(), 3354 die.GetTagAsCString(), strm.GetData()); 3355 } 3356 if (location_DW_OP_addr != LLDB_INVALID_ADDRESS) 3357 is_static_lifetime = true; 3358 } 3359 SymbolFileDWARFDebugMap *debug_map_symfile = GetDebugMapSymfile(); 3360 if (debug_map_symfile) 3361 // Set the module of the expression to the linked module 3362 // instead of the oject file so the relocated address can be 3363 // found there. 3364 location.SetModule(debug_map_symfile->GetObjectFile()->GetModule()); 3365 3366 if (is_static_lifetime) { 3367 if (is_external) 3368 scope = eValueTypeVariableGlobal; 3369 else 3370 scope = eValueTypeVariableStatic; 3371 3372 if (debug_map_symfile) { 3373 // When leaving the DWARF in the .o files on darwin, when we have a 3374 // global variable that wasn't initialized, the .o file might not 3375 // have allocated a virtual address for the global variable. In 3376 // this case it will have created a symbol for the global variable 3377 // that is undefined/data and external and the value will be the 3378 // byte size of the variable. When we do the address map in 3379 // SymbolFileDWARFDebugMap we rely on having an address, we need to 3380 // do some magic here so we can get the correct address for our 3381 // global variable. The address for all of these entries will be 3382 // zero, and there will be an undefined symbol in this object file, 3383 // and the executable will have a matching symbol with a good 3384 // address. So here we dig up the correct address and replace it in 3385 // the location for the variable, and set the variable's symbol 3386 // context scope to be that of the main executable so the file 3387 // address will resolve correctly. 3388 bool linked_oso_file_addr = false; 3389 if (is_external && location_DW_OP_addr == 0) { 3390 // we have a possible uninitialized extern global 3391 ConstString const_name(mangled ? mangled : name); 3392 ObjectFile *debug_map_objfile = 3393 debug_map_symfile->GetObjectFile(); 3394 if (debug_map_objfile) { 3395 Symtab *debug_map_symtab = debug_map_objfile->GetSymtab(); 3396 if (debug_map_symtab) { 3397 Symbol *exe_symbol = 3398 debug_map_symtab->FindFirstSymbolWithNameAndType( 3399 const_name, eSymbolTypeData, Symtab::eDebugYes, 3400 Symtab::eVisibilityExtern); 3401 if (exe_symbol) { 3402 if (exe_symbol->ValueIsAddress()) { 3403 const addr_t exe_file_addr = 3404 exe_symbol->GetAddressRef().GetFileAddress(); 3405 if (exe_file_addr != LLDB_INVALID_ADDRESS) { 3406 if (location.Update_DW_OP_addr(exe_file_addr)) { 3407 linked_oso_file_addr = true; 3408 symbol_context_scope = exe_symbol; 3409 } 3410 } 3411 } 3412 } 3413 } 3414 } 3415 } 3416 3417 if (!linked_oso_file_addr) { 3418 // The DW_OP_addr is not zero, but it contains a .o file address 3419 // which needs to be linked up correctly. 3420 const lldb::addr_t exe_file_addr = 3421 debug_map_symfile->LinkOSOFileAddress(this, 3422 location_DW_OP_addr); 3423 if (exe_file_addr != LLDB_INVALID_ADDRESS) { 3424 // Update the file address for this variable 3425 location.Update_DW_OP_addr(exe_file_addr); 3426 } else { 3427 // Variable didn't make it into the final executable 3428 return var_sp; 3429 } 3430 } 3431 } 3432 } else { 3433 if (location_is_const_value_data && die.GetDIE()->IsGlobalOrStaticVariable()) 3434 scope = eValueTypeVariableStatic; 3435 else { 3436 scope = eValueTypeVariableLocal; 3437 if (debug_map_symfile) { 3438 // We need to check for TLS addresses that we need to fixup 3439 if (location.ContainsThreadLocalStorage()) { 3440 location.LinkThreadLocalStorage( 3441 debug_map_symfile->GetObjectFile()->GetModule(), 3442 [this, debug_map_symfile]( 3443 lldb::addr_t unlinked_file_addr) -> lldb::addr_t { 3444 return debug_map_symfile->LinkOSOFileAddress( 3445 this, unlinked_file_addr); 3446 }); 3447 scope = eValueTypeVariableThreadLocal; 3448 } 3449 } 3450 } 3451 } 3452 } 3453 3454 if (symbol_context_scope == nullptr) { 3455 switch (parent_tag) { 3456 case DW_TAG_subprogram: 3457 case DW_TAG_inlined_subroutine: 3458 case DW_TAG_lexical_block: 3459 if (sc.function) { 3460 symbol_context_scope = sc.function->GetBlock(true).FindBlockByID( 3461 sc_parent_die.GetID()); 3462 if (symbol_context_scope == nullptr) 3463 symbol_context_scope = sc.function; 3464 } 3465 break; 3466 3467 default: 3468 symbol_context_scope = sc.comp_unit; 3469 break; 3470 } 3471 } 3472 3473 if (symbol_context_scope) { 3474 SymbolFileTypeSP type_sp( 3475 new SymbolFileType(*this, GetUID(type_die_form.Reference()))); 3476 3477 if (const_value.Form() && type_sp && type_sp->GetType()) 3478 location.UpdateValue(const_value.Unsigned(), 3479 type_sp->GetType()->GetByteSize().getValueOr(0), 3480 die.GetCU()->GetAddressByteSize()); 3481 3482 var_sp = std::make_shared<Variable>( 3483 die.GetID(), name, mangled, type_sp, scope, symbol_context_scope, 3484 scope_ranges, &decl, location, is_external, is_artificial, 3485 is_static_member); 3486 3487 var_sp->SetLocationIsConstantValueData(location_is_const_value_data); 3488 } else { 3489 // Not ready to parse this variable yet. It might be a global or static 3490 // variable that is in a function scope and the function in the symbol 3491 // context wasn't filled in yet 3492 return var_sp; 3493 } 3494 } 3495 // Cache var_sp even if NULL (the variable was just a specification or was 3496 // missing vital information to be able to be displayed in the debugger 3497 // (missing location due to optimization, etc)) so we don't re-parse this 3498 // DIE over and over later... 3499 GetDIEToVariable()[die.GetDIE()] = var_sp; 3500 if (spec_die) 3501 GetDIEToVariable()[spec_die.GetDIE()] = var_sp; 3502 } 3503 return var_sp; 3504 } 3505 3506 DWARFDIE 3507 SymbolFileDWARF::FindBlockContainingSpecification( 3508 const DIERef &func_die_ref, dw_offset_t spec_block_die_offset) { 3509 // Give the concrete function die specified by "func_die_offset", find the 3510 // concrete block whose DW_AT_specification or DW_AT_abstract_origin points 3511 // to "spec_block_die_offset" 3512 return FindBlockContainingSpecification(DebugInfo().GetDIE(func_die_ref), 3513 spec_block_die_offset); 3514 } 3515 3516 DWARFDIE 3517 SymbolFileDWARF::FindBlockContainingSpecification( 3518 const DWARFDIE &die, dw_offset_t spec_block_die_offset) { 3519 if (die) { 3520 switch (die.Tag()) { 3521 case DW_TAG_subprogram: 3522 case DW_TAG_inlined_subroutine: 3523 case DW_TAG_lexical_block: { 3524 if (die.GetReferencedDIE(DW_AT_specification).GetOffset() == 3525 spec_block_die_offset) 3526 return die; 3527 3528 if (die.GetReferencedDIE(DW_AT_abstract_origin).GetOffset() == 3529 spec_block_die_offset) 3530 return die; 3531 } break; 3532 default: 3533 break; 3534 } 3535 3536 // Give the concrete function die specified by "func_die_offset", find the 3537 // concrete block whose DW_AT_specification or DW_AT_abstract_origin points 3538 // to "spec_block_die_offset" 3539 for (DWARFDIE child_die = die.GetFirstChild(); child_die; 3540 child_die = child_die.GetSibling()) { 3541 DWARFDIE result_die = 3542 FindBlockContainingSpecification(child_die, spec_block_die_offset); 3543 if (result_die) 3544 return result_die; 3545 } 3546 } 3547 3548 return DWARFDIE(); 3549 } 3550 3551 size_t SymbolFileDWARF::ParseVariables(const SymbolContext &sc, 3552 const DWARFDIE &orig_die, 3553 const lldb::addr_t func_low_pc, 3554 bool parse_siblings, bool parse_children, 3555 VariableList *cc_variable_list) { 3556 if (!orig_die) 3557 return 0; 3558 3559 VariableListSP variable_list_sp; 3560 3561 size_t vars_added = 0; 3562 DWARFDIE die = orig_die; 3563 while (die) { 3564 dw_tag_t tag = die.Tag(); 3565 3566 // Check to see if we have already parsed this variable or constant? 3567 VariableSP var_sp = GetDIEToVariable()[die.GetDIE()]; 3568 if (var_sp) { 3569 if (cc_variable_list) 3570 cc_variable_list->AddVariableIfUnique(var_sp); 3571 } else { 3572 // We haven't already parsed it, lets do that now. 3573 if ((tag == DW_TAG_variable) || (tag == DW_TAG_constant) || 3574 (tag == DW_TAG_formal_parameter && sc.function)) { 3575 if (variable_list_sp.get() == nullptr) { 3576 DWARFDIE sc_parent_die = GetParentSymbolContextDIE(orig_die); 3577 dw_tag_t parent_tag = sc_parent_die.Tag(); 3578 switch (parent_tag) { 3579 case DW_TAG_compile_unit: 3580 case DW_TAG_partial_unit: 3581 if (sc.comp_unit != nullptr) { 3582 variable_list_sp = sc.comp_unit->GetVariableList(false); 3583 if (variable_list_sp.get() == nullptr) { 3584 variable_list_sp = std::make_shared<VariableList>(); 3585 } 3586 } else { 3587 GetObjectFile()->GetModule()->ReportError( 3588 "parent 0x%8.8" PRIx64 " %s with no valid compile unit in " 3589 "symbol context for 0x%8.8" PRIx64 " %s.\n", 3590 sc_parent_die.GetID(), sc_parent_die.GetTagAsCString(), 3591 orig_die.GetID(), orig_die.GetTagAsCString()); 3592 } 3593 break; 3594 3595 case DW_TAG_subprogram: 3596 case DW_TAG_inlined_subroutine: 3597 case DW_TAG_lexical_block: 3598 if (sc.function != nullptr) { 3599 // Check to see if we already have parsed the variables for the 3600 // given scope 3601 3602 Block *block = sc.function->GetBlock(true).FindBlockByID( 3603 sc_parent_die.GetID()); 3604 if (block == nullptr) { 3605 // This must be a specification or abstract origin with a 3606 // concrete block counterpart in the current function. We need 3607 // to find the concrete block so we can correctly add the 3608 // variable to it 3609 const DWARFDIE concrete_block_die = 3610 FindBlockContainingSpecification( 3611 GetDIE(sc.function->GetID()), 3612 sc_parent_die.GetOffset()); 3613 if (concrete_block_die) 3614 block = sc.function->GetBlock(true).FindBlockByID( 3615 concrete_block_die.GetID()); 3616 } 3617 3618 if (block != nullptr) { 3619 const bool can_create = false; 3620 variable_list_sp = block->GetBlockVariableList(can_create); 3621 if (variable_list_sp.get() == nullptr) { 3622 variable_list_sp = std::make_shared<VariableList>(); 3623 block->SetVariableList(variable_list_sp); 3624 } 3625 } 3626 } 3627 break; 3628 3629 default: 3630 GetObjectFile()->GetModule()->ReportError( 3631 "didn't find appropriate parent DIE for variable list for " 3632 "0x%8.8" PRIx64 " %s.\n", 3633 orig_die.GetID(), orig_die.GetTagAsCString()); 3634 break; 3635 } 3636 } 3637 3638 if (variable_list_sp) { 3639 VariableSP var_sp(ParseVariableDIE(sc, die, func_low_pc)); 3640 if (var_sp) { 3641 variable_list_sp->AddVariableIfUnique(var_sp); 3642 if (cc_variable_list) 3643 cc_variable_list->AddVariableIfUnique(var_sp); 3644 ++vars_added; 3645 } 3646 } 3647 } 3648 } 3649 3650 bool skip_children = (sc.function == nullptr && tag == DW_TAG_subprogram); 3651 3652 if (!skip_children && parse_children && die.HasChildren()) { 3653 vars_added += ParseVariables(sc, die.GetFirstChild(), func_low_pc, true, 3654 true, cc_variable_list); 3655 } 3656 3657 if (parse_siblings) 3658 die = die.GetSibling(); 3659 else 3660 die.Clear(); 3661 } 3662 return vars_added; 3663 } 3664 3665 /// Collect call site parameters in a DW_TAG_call_site DIE. 3666 static CallSiteParameterArray 3667 CollectCallSiteParameters(ModuleSP module, DWARFDIE call_site_die) { 3668 CallSiteParameterArray parameters; 3669 for (DWARFDIE child = call_site_die.GetFirstChild(); child.IsValid(); 3670 child = child.GetSibling()) { 3671 if (child.Tag() != DW_TAG_call_site_parameter) 3672 continue; 3673 3674 llvm::Optional<DWARFExpression> LocationInCallee; 3675 llvm::Optional<DWARFExpression> LocationInCaller; 3676 3677 DWARFAttributes attributes; 3678 const size_t num_attributes = child.GetAttributes(attributes); 3679 3680 // Parse the location at index \p attr_index within this call site parameter 3681 // DIE, or return None on failure. 3682 auto parse_simple_location = 3683 [&](int attr_index) -> llvm::Optional<DWARFExpression> { 3684 DWARFFormValue form_value; 3685 if (!attributes.ExtractFormValueAtIndex(attr_index, form_value)) 3686 return {}; 3687 if (!DWARFFormValue::IsBlockForm(form_value.Form())) 3688 return {}; 3689 auto data = child.GetData(); 3690 uint32_t block_offset = form_value.BlockData() - data.GetDataStart(); 3691 uint32_t block_length = form_value.Unsigned(); 3692 return DWARFExpression(module, 3693 DataExtractor(data, block_offset, block_length), 3694 child.GetCU()); 3695 }; 3696 3697 for (size_t i = 0; i < num_attributes; ++i) { 3698 dw_attr_t attr = attributes.AttributeAtIndex(i); 3699 if (attr == DW_AT_location) 3700 LocationInCallee = parse_simple_location(i); 3701 if (attr == DW_AT_call_value) 3702 LocationInCaller = parse_simple_location(i); 3703 } 3704 3705 if (LocationInCallee && LocationInCaller) { 3706 CallSiteParameter param = {*LocationInCallee, *LocationInCaller}; 3707 parameters.push_back(param); 3708 } 3709 } 3710 return parameters; 3711 } 3712 3713 /// Collect call graph edges present in a function DIE. 3714 std::vector<std::unique_ptr<lldb_private::CallEdge>> 3715 SymbolFileDWARF::CollectCallEdges(ModuleSP module, DWARFDIE function_die) { 3716 // Check if the function has a supported call site-related attribute. 3717 // TODO: In the future it may be worthwhile to support call_all_source_calls. 3718 uint64_t has_call_edges = 3719 function_die.GetAttributeValueAsUnsigned(DW_AT_call_all_calls, 0); 3720 if (!has_call_edges) 3721 return {}; 3722 3723 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 3724 LLDB_LOG(log, "CollectCallEdges: Found call site info in {0}", 3725 function_die.GetPubname()); 3726 3727 // Scan the DIE for TAG_call_site entries. 3728 // TODO: A recursive scan of all blocks in the subprogram is needed in order 3729 // to be DWARF5-compliant. This may need to be done lazily to be performant. 3730 // For now, assume that all entries are nested directly under the subprogram 3731 // (this is the kind of DWARF LLVM produces) and parse them eagerly. 3732 std::vector<std::unique_ptr<CallEdge>> call_edges; 3733 for (DWARFDIE child = function_die.GetFirstChild(); child.IsValid(); 3734 child = child.GetSibling()) { 3735 if (child.Tag() != DW_TAG_call_site) 3736 continue; 3737 3738 llvm::Optional<DWARFDIE> call_origin; 3739 llvm::Optional<DWARFExpression> call_target; 3740 addr_t return_pc = LLDB_INVALID_ADDRESS; 3741 addr_t call_inst_pc = LLDB_INVALID_ADDRESS; 3742 3743 DWARFAttributes attributes; 3744 const size_t num_attributes = child.GetAttributes(attributes); 3745 for (size_t i = 0; i < num_attributes; ++i) { 3746 DWARFFormValue form_value; 3747 if (!attributes.ExtractFormValueAtIndex(i, form_value)) { 3748 LLDB_LOG(log, "CollectCallEdges: Could not extract TAG_call_site form"); 3749 break; 3750 } 3751 3752 dw_attr_t attr = attributes.AttributeAtIndex(i); 3753 3754 // Extract DW_AT_call_origin (the call target's DIE). 3755 if (attr == DW_AT_call_origin) { 3756 call_origin = form_value.Reference(); 3757 if (!call_origin->IsValid()) { 3758 LLDB_LOG(log, "CollectCallEdges: Invalid call origin in {0}", 3759 function_die.GetPubname()); 3760 break; 3761 } 3762 } 3763 3764 // Extract DW_AT_call_return_pc (the PC the call returns to) if it's 3765 // available. It should only ever be unavailable for tail call edges, in 3766 // which case use LLDB_INVALID_ADDRESS. 3767 if (attr == DW_AT_call_return_pc) 3768 return_pc = form_value.Address(); 3769 3770 // Extract DW_AT_call_pc (the PC at the call/branch instruction). It 3771 // should only ever be unavailable for non-tail calls, in which case use 3772 // LLDB_INVALID_ADDRESS. 3773 if (attr == DW_AT_call_pc) 3774 call_inst_pc = form_value.Address(); 3775 3776 // Extract DW_AT_call_target (the location of the address of the indirect 3777 // call). 3778 if (attr == DW_AT_call_target) { 3779 if (!DWARFFormValue::IsBlockForm(form_value.Form())) { 3780 LLDB_LOG(log, 3781 "CollectCallEdges: AT_call_target does not have block form"); 3782 break; 3783 } 3784 3785 auto data = child.GetData(); 3786 uint32_t block_offset = form_value.BlockData() - data.GetDataStart(); 3787 uint32_t block_length = form_value.Unsigned(); 3788 call_target = DWARFExpression( 3789 module, DataExtractor(data, block_offset, block_length), 3790 child.GetCU()); 3791 } 3792 } 3793 if (!call_origin && !call_target) { 3794 LLDB_LOG(log, "CollectCallEdges: call site without any call target"); 3795 continue; 3796 } 3797 3798 // Adjust any PC forms. It needs to be fixed up if the main executable 3799 // contains a debug map (i.e. pointers to object files), because we need a 3800 // file address relative to the executable's text section. 3801 return_pc = FixupAddress(return_pc); 3802 call_inst_pc = FixupAddress(call_inst_pc); 3803 3804 // Extract call site parameters. 3805 CallSiteParameterArray parameters = 3806 CollectCallSiteParameters(module, child); 3807 3808 std::unique_ptr<CallEdge> edge; 3809 if (call_origin) { 3810 LLDB_LOG(log, 3811 "CollectCallEdges: Found call origin: {0} (retn-PC: {1:x}) " 3812 "(call-PC: {2:x})", 3813 call_origin->GetPubname(), return_pc, call_inst_pc); 3814 edge = std::make_unique<DirectCallEdge>(call_origin->GetMangledName(), 3815 return_pc, call_inst_pc, 3816 std::move(parameters)); 3817 } else { 3818 if (log) { 3819 StreamString call_target_desc; 3820 call_target->GetDescription(&call_target_desc, eDescriptionLevelBrief, 3821 LLDB_INVALID_ADDRESS, nullptr); 3822 LLDB_LOG(log, "CollectCallEdges: Found indirect call target: {0}", 3823 call_target_desc.GetString()); 3824 } 3825 edge = std::make_unique<IndirectCallEdge>( 3826 *call_target, return_pc, call_inst_pc, std::move(parameters)); 3827 } 3828 3829 if (log && parameters.size()) { 3830 for (const CallSiteParameter ¶m : parameters) { 3831 StreamString callee_loc_desc, caller_loc_desc; 3832 param.LocationInCallee.GetDescription(&callee_loc_desc, 3833 eDescriptionLevelBrief, 3834 LLDB_INVALID_ADDRESS, nullptr); 3835 param.LocationInCaller.GetDescription(&caller_loc_desc, 3836 eDescriptionLevelBrief, 3837 LLDB_INVALID_ADDRESS, nullptr); 3838 LLDB_LOG(log, "CollectCallEdges: \tparam: {0} => {1}", 3839 callee_loc_desc.GetString(), caller_loc_desc.GetString()); 3840 } 3841 } 3842 3843 call_edges.push_back(std::move(edge)); 3844 } 3845 return call_edges; 3846 } 3847 3848 std::vector<std::unique_ptr<lldb_private::CallEdge>> 3849 SymbolFileDWARF::ParseCallEdgesInFunction(UserID func_id) { 3850 DWARFDIE func_die = GetDIE(func_id.GetID()); 3851 if (func_die.IsValid()) 3852 return CollectCallEdges(GetObjectFile()->GetModule(), func_die); 3853 return {}; 3854 } 3855 3856 // PluginInterface protocol 3857 ConstString SymbolFileDWARF::GetPluginName() { return GetPluginNameStatic(); } 3858 3859 uint32_t SymbolFileDWARF::GetPluginVersion() { return 1; } 3860 3861 void SymbolFileDWARF::Dump(lldb_private::Stream &s) { 3862 SymbolFile::Dump(s); 3863 m_index->Dump(s); 3864 } 3865 3866 void SymbolFileDWARF::DumpClangAST(Stream &s) { 3867 auto ts_or_err = GetTypeSystemForLanguage(eLanguageTypeC_plus_plus); 3868 if (!ts_or_err) 3869 return; 3870 TypeSystemClang *clang = 3871 llvm::dyn_cast_or_null<TypeSystemClang>(&ts_or_err.get()); 3872 if (!clang) 3873 return; 3874 clang->Dump(s); 3875 } 3876 3877 SymbolFileDWARFDebugMap *SymbolFileDWARF::GetDebugMapSymfile() { 3878 if (m_debug_map_symfile == nullptr && !m_debug_map_module_wp.expired()) { 3879 lldb::ModuleSP module_sp(m_debug_map_module_wp.lock()); 3880 if (module_sp) { 3881 m_debug_map_symfile = 3882 static_cast<SymbolFileDWARFDebugMap *>(module_sp->GetSymbolFile()); 3883 } 3884 } 3885 return m_debug_map_symfile; 3886 } 3887 3888 const std::shared_ptr<SymbolFileDWARFDwo> &SymbolFileDWARF::GetDwpSymbolFile() { 3889 llvm::call_once(m_dwp_symfile_once_flag, [this]() { 3890 ModuleSpec module_spec; 3891 module_spec.GetFileSpec() = m_objfile_sp->GetFileSpec(); 3892 module_spec.GetSymbolFileSpec() = 3893 FileSpec(m_objfile_sp->GetModule()->GetFileSpec().GetPath() + ".dwp"); 3894 3895 FileSpecList search_paths = Target::GetDefaultDebugFileSearchPaths(); 3896 FileSpec dwp_filespec = 3897 Symbols::LocateExecutableSymbolFile(module_spec, search_paths); 3898 if (FileSystem::Instance().Exists(dwp_filespec)) { 3899 DataBufferSP dwp_file_data_sp; 3900 lldb::offset_t dwp_file_data_offset = 0; 3901 ObjectFileSP dwp_obj_file = ObjectFile::FindPlugin( 3902 GetObjectFile()->GetModule(), &dwp_filespec, 0, 3903 FileSystem::Instance().GetByteSize(dwp_filespec), dwp_file_data_sp, 3904 dwp_file_data_offset); 3905 if (!dwp_obj_file) 3906 return; 3907 m_dwp_symfile = 3908 std::make_shared<SymbolFileDWARFDwo>(*this, dwp_obj_file, 0x3fffffff); 3909 } 3910 }); 3911 return m_dwp_symfile; 3912 } 3913 3914 llvm::Expected<TypeSystem &> SymbolFileDWARF::GetTypeSystem(DWARFUnit &unit) { 3915 return unit.GetSymbolFileDWARF().GetTypeSystemForLanguage(GetLanguage(unit)); 3916 } 3917 3918 DWARFASTParser *SymbolFileDWARF::GetDWARFParser(DWARFUnit &unit) { 3919 auto type_system_or_err = GetTypeSystem(unit); 3920 if (auto err = type_system_or_err.takeError()) { 3921 LLDB_LOG_ERROR(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_SYMBOLS), 3922 std::move(err), "Unable to get DWARFASTParser"); 3923 return nullptr; 3924 } 3925 return type_system_or_err->GetDWARFParser(); 3926 } 3927 3928 CompilerDecl SymbolFileDWARF::GetDecl(const DWARFDIE &die) { 3929 if (DWARFASTParser *dwarf_ast = GetDWARFParser(*die.GetCU())) 3930 return dwarf_ast->GetDeclForUIDFromDWARF(die); 3931 return CompilerDecl(); 3932 } 3933 3934 CompilerDeclContext SymbolFileDWARF::GetDeclContext(const DWARFDIE &die) { 3935 if (DWARFASTParser *dwarf_ast = GetDWARFParser(*die.GetCU())) 3936 return dwarf_ast->GetDeclContextForUIDFromDWARF(die); 3937 return CompilerDeclContext(); 3938 } 3939 3940 CompilerDeclContext 3941 SymbolFileDWARF::GetContainingDeclContext(const DWARFDIE &die) { 3942 if (DWARFASTParser *dwarf_ast = GetDWARFParser(*die.GetCU())) 3943 return dwarf_ast->GetDeclContextContainingUIDFromDWARF(die); 3944 return CompilerDeclContext(); 3945 } 3946 3947 DWARFDeclContext SymbolFileDWARF::GetDWARFDeclContext(const DWARFDIE &die) { 3948 if (!die.IsValid()) 3949 return {}; 3950 DWARFDeclContext dwarf_decl_ctx = 3951 die.GetDIE()->GetDWARFDeclContext(die.GetCU()); 3952 dwarf_decl_ctx.SetLanguage(GetLanguage(*die.GetCU())); 3953 return dwarf_decl_ctx; 3954 } 3955 3956 LanguageType SymbolFileDWARF::LanguageTypeFromDWARF(uint64_t val) { 3957 // Note: user languages between lo_user and hi_user must be handled 3958 // explicitly here. 3959 switch (val) { 3960 case DW_LANG_Mips_Assembler: 3961 return eLanguageTypeMipsAssembler; 3962 case DW_LANG_GOOGLE_RenderScript: 3963 return eLanguageTypeExtRenderScript; 3964 default: 3965 return static_cast<LanguageType>(val); 3966 } 3967 } 3968 3969 LanguageType SymbolFileDWARF::GetLanguage(DWARFUnit &unit) { 3970 return LanguageTypeFromDWARF(unit.GetDWARFLanguageType()); 3971 } 3972