1 //===-- DWARFUnit.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 "DWARFUnit.h" 10 11 #include "lldb/Core/Module.h" 12 #include "lldb/Host/StringConvert.h" 13 #include "lldb/Symbol/ObjectFile.h" 14 #include "lldb/Utility/LLDBAssert.h" 15 #include "lldb/Utility/StreamString.h" 16 #include "lldb/Utility/Timer.h" 17 #include "llvm/Object/Error.h" 18 19 #include "DWARFCompileUnit.h" 20 #include "DWARFDebugAranges.h" 21 #include "DWARFDebugInfo.h" 22 #include "DWARFTypeUnit.h" 23 #include "LogChannelDWARF.h" 24 #include "SymbolFileDWARFDwo.h" 25 26 using namespace lldb; 27 using namespace lldb_private; 28 using namespace std; 29 30 extern int g_verbose; 31 32 DWARFUnit::DWARFUnit(SymbolFileDWARF &dwarf, lldb::user_id_t uid, 33 const DWARFUnitHeader &header, 34 const DWARFAbbreviationDeclarationSet &abbrevs, 35 DIERef::Section section, bool is_dwo) 36 : UserID(uid), m_dwarf(dwarf), m_header(header), m_abbrevs(&abbrevs), 37 m_cancel_scopes(false), m_section(section), m_is_dwo(is_dwo) {} 38 39 DWARFUnit::~DWARFUnit() = default; 40 41 // Parses first DIE of a compile unit. 42 void DWARFUnit::ExtractUnitDIEIfNeeded() { 43 { 44 llvm::sys::ScopedReader lock(m_first_die_mutex); 45 if (m_first_die) 46 return; // Already parsed 47 } 48 llvm::sys::ScopedWriter lock(m_first_die_mutex); 49 if (m_first_die) 50 return; // Already parsed 51 52 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 53 Timer scoped_timer(func_cat, "%8.8x: DWARFUnit::ExtractUnitDIEIfNeeded()", 54 GetOffset()); 55 56 // Set the offset to that of the first DIE and calculate the start of the 57 // next compilation unit header. 58 lldb::offset_t offset = GetFirstDIEOffset(); 59 60 // We are in our compile unit, parse starting at the offset we were told to 61 // parse 62 const DWARFDataExtractor &data = GetData(); 63 if (offset < GetNextUnitOffset() && 64 m_first_die.Extract(data, this, &offset)) { 65 AddUnitDIE(m_first_die); 66 return; 67 } 68 } 69 70 // Parses a compile unit and indexes its DIEs if it hasn't already been done. 71 // It will leave this compile unit extracted forever. 72 void DWARFUnit::ExtractDIEsIfNeeded() { 73 m_cancel_scopes = true; 74 75 { 76 llvm::sys::ScopedReader lock(m_die_array_mutex); 77 if (!m_die_array.empty()) 78 return; // Already parsed 79 } 80 llvm::sys::ScopedWriter lock(m_die_array_mutex); 81 if (!m_die_array.empty()) 82 return; // Already parsed 83 84 ExtractDIEsRWLocked(); 85 } 86 87 // Parses a compile unit and indexes its DIEs if it hasn't already been done. 88 // It will clear this compile unit after returned instance gets out of scope, 89 // no other ScopedExtractDIEs instance is running for this compile unit 90 // and no ExtractDIEsIfNeeded() has been executed during this ScopedExtractDIEs 91 // lifetime. 92 DWARFUnit::ScopedExtractDIEs DWARFUnit::ExtractDIEsScoped() { 93 ScopedExtractDIEs scoped(*this); 94 95 { 96 llvm::sys::ScopedReader lock(m_die_array_mutex); 97 if (!m_die_array.empty()) 98 return scoped; // Already parsed 99 } 100 llvm::sys::ScopedWriter lock(m_die_array_mutex); 101 if (!m_die_array.empty()) 102 return scoped; // Already parsed 103 104 // Otherwise m_die_array would be already populated. 105 lldbassert(!m_cancel_scopes); 106 107 ExtractDIEsRWLocked(); 108 scoped.m_clear_dies = true; 109 return scoped; 110 } 111 112 DWARFUnit::ScopedExtractDIEs::ScopedExtractDIEs(DWARFUnit &cu) : m_cu(&cu) { 113 m_cu->m_die_array_scoped_mutex.lock_shared(); 114 } 115 116 DWARFUnit::ScopedExtractDIEs::~ScopedExtractDIEs() { 117 if (!m_cu) 118 return; 119 m_cu->m_die_array_scoped_mutex.unlock_shared(); 120 if (!m_clear_dies || m_cu->m_cancel_scopes) 121 return; 122 // Be sure no other ScopedExtractDIEs is running anymore. 123 llvm::sys::ScopedWriter lock_scoped(m_cu->m_die_array_scoped_mutex); 124 llvm::sys::ScopedWriter lock(m_cu->m_die_array_mutex); 125 if (m_cu->m_cancel_scopes) 126 return; 127 m_cu->ClearDIEsRWLocked(); 128 } 129 130 DWARFUnit::ScopedExtractDIEs::ScopedExtractDIEs(ScopedExtractDIEs &&rhs) 131 : m_cu(rhs.m_cu), m_clear_dies(rhs.m_clear_dies) { 132 rhs.m_cu = nullptr; 133 } 134 135 DWARFUnit::ScopedExtractDIEs &DWARFUnit::ScopedExtractDIEs::operator=( 136 DWARFUnit::ScopedExtractDIEs &&rhs) { 137 m_cu = rhs.m_cu; 138 rhs.m_cu = nullptr; 139 m_clear_dies = rhs.m_clear_dies; 140 return *this; 141 } 142 143 // Parses a compile unit and indexes its DIEs, m_die_array_mutex must be 144 // held R/W and m_die_array must be empty. 145 void DWARFUnit::ExtractDIEsRWLocked() { 146 llvm::sys::ScopedWriter first_die_lock(m_first_die_mutex); 147 148 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 149 Timer scoped_timer(func_cat, "%8.8x: DWARFUnit::ExtractDIEsIfNeeded()", 150 GetOffset()); 151 152 // Set the offset to that of the first DIE and calculate the start of the 153 // next compilation unit header. 154 lldb::offset_t offset = GetFirstDIEOffset(); 155 lldb::offset_t next_cu_offset = GetNextUnitOffset(); 156 157 DWARFDebugInfoEntry die; 158 159 uint32_t depth = 0; 160 // We are in our compile unit, parse starting at the offset we were told to 161 // parse 162 const DWARFDataExtractor &data = GetData(); 163 std::vector<uint32_t> die_index_stack; 164 die_index_stack.reserve(32); 165 die_index_stack.push_back(0); 166 bool prev_die_had_children = false; 167 while (offset < next_cu_offset && die.Extract(data, this, &offset)) { 168 const bool null_die = die.IsNULL(); 169 if (depth == 0) { 170 assert(m_die_array.empty() && "Compile unit DIE already added"); 171 172 // The average bytes per DIE entry has been seen to be around 14-20 so 173 // lets pre-reserve half of that since we are now stripping the NULL 174 // tags. 175 176 // Only reserve the memory if we are adding children of the main 177 // compile unit DIE. The compile unit DIE is always the first entry, so 178 // if our size is 1, then we are adding the first compile unit child 179 // DIE and should reserve the memory. 180 m_die_array.reserve(GetDebugInfoSize() / 24); 181 m_die_array.push_back(die); 182 183 if (!m_first_die) 184 AddUnitDIE(m_die_array.front()); 185 186 // With -fsplit-dwarf-inlining, clang will emit non-empty skeleton compile 187 // units. We are not able to access these DIE *and* the dwo file 188 // simultaneously. We also don't need to do that as the dwo file will 189 // contain a superset of information. So, we don't even attempt to parse 190 // any remaining DIEs. 191 if (m_dwo_symbol_file) { 192 m_die_array.front().SetHasChildren(false); 193 break; 194 } 195 196 } else { 197 if (null_die) { 198 if (prev_die_had_children) { 199 // This will only happen if a DIE says is has children but all it 200 // contains is a NULL tag. Since we are removing the NULL DIEs from 201 // the list (saves up to 25% in C++ code), we need a way to let the 202 // DIE know that it actually doesn't have children. 203 if (!m_die_array.empty()) 204 m_die_array.back().SetHasChildren(false); 205 } 206 } else { 207 die.SetParentIndex(m_die_array.size() - die_index_stack[depth - 1]); 208 209 if (die_index_stack.back()) 210 m_die_array[die_index_stack.back()].SetSiblingIndex( 211 m_die_array.size() - die_index_stack.back()); 212 213 // Only push the DIE if it isn't a NULL DIE 214 m_die_array.push_back(die); 215 } 216 } 217 218 if (null_die) { 219 // NULL DIE. 220 if (!die_index_stack.empty()) 221 die_index_stack.pop_back(); 222 223 if (depth > 0) 224 --depth; 225 prev_die_had_children = false; 226 } else { 227 die_index_stack.back() = m_die_array.size() - 1; 228 // Normal DIE 229 const bool die_has_children = die.HasChildren(); 230 if (die_has_children) { 231 die_index_stack.push_back(0); 232 ++depth; 233 } 234 prev_die_had_children = die_has_children; 235 } 236 237 if (depth == 0) 238 break; // We are done with this compile unit! 239 } 240 241 if (!m_die_array.empty()) { 242 if (m_first_die) { 243 // Only needed for the assertion. 244 m_first_die.SetHasChildren(m_die_array.front().HasChildren()); 245 lldbassert(m_first_die == m_die_array.front()); 246 } 247 m_first_die = m_die_array.front(); 248 } 249 250 m_die_array.shrink_to_fit(); 251 252 if (m_dwo_symbol_file) { 253 DWARFUnit *dwo_cu = m_dwo_symbol_file->GetCompileUnit(); 254 dwo_cu->ExtractDIEsIfNeeded(); 255 } 256 } 257 258 // This is used when a split dwarf is enabled. 259 // A skeleton compilation unit may contain the DW_AT_str_offsets_base attribute 260 // that points to the first string offset of the CU contribution to the 261 // .debug_str_offsets. At the same time, the corresponding split debug unit also 262 // may use DW_FORM_strx* forms pointing to its own .debug_str_offsets.dwo and 263 // for that case, we should find the offset (skip the section header). 264 static void SetDwoStrOffsetsBase(DWARFUnit *dwo_cu) { 265 lldb::offset_t baseOffset = 0; 266 267 const DWARFDataExtractor &strOffsets = 268 dwo_cu->GetSymbolFileDWARF().GetDWARFContext().getOrLoadStrOffsetsData(); 269 uint64_t length = strOffsets.GetU32(&baseOffset); 270 if (length == 0xffffffff) 271 length = strOffsets.GetU64(&baseOffset); 272 273 // Check version. 274 if (strOffsets.GetU16(&baseOffset) < 5) 275 return; 276 277 // Skip padding. 278 baseOffset += 2; 279 280 dwo_cu->SetStrOffsetsBase(baseOffset); 281 } 282 283 // m_die_array_mutex must be already held as read/write. 284 void DWARFUnit::AddUnitDIE(const DWARFDebugInfoEntry &cu_die) { 285 llvm::Optional<uint64_t> addr_base, gnu_addr_base, ranges_base, 286 gnu_ranges_base; 287 288 DWARFAttributes attributes; 289 size_t num_attributes = cu_die.GetAttributes(this, attributes); 290 291 // Extract DW_AT_addr_base first, as other attributes may need it. 292 for (size_t i = 0; i < num_attributes; ++i) { 293 if (attributes.AttributeAtIndex(i) != DW_AT_addr_base) 294 continue; 295 DWARFFormValue form_value; 296 if (attributes.ExtractFormValueAtIndex(i, form_value)) { 297 addr_base = form_value.Unsigned(); 298 SetAddrBase(*addr_base); 299 break; 300 } 301 } 302 303 for (size_t i = 0; i < num_attributes; ++i) { 304 dw_attr_t attr = attributes.AttributeAtIndex(i); 305 DWARFFormValue form_value; 306 if (!attributes.ExtractFormValueAtIndex(i, form_value)) 307 continue; 308 switch (attr) { 309 case DW_AT_loclists_base: 310 SetLoclistsBase(form_value.Unsigned()); 311 break; 312 case DW_AT_rnglists_base: 313 ranges_base = form_value.Unsigned(); 314 SetRangesBase(*ranges_base); 315 break; 316 case DW_AT_str_offsets_base: 317 SetStrOffsetsBase(form_value.Unsigned()); 318 break; 319 case DW_AT_low_pc: 320 SetBaseAddress(form_value.Address()); 321 break; 322 case DW_AT_entry_pc: 323 // If the value was already set by DW_AT_low_pc, don't update it. 324 if (m_base_addr == LLDB_INVALID_ADDRESS) 325 SetBaseAddress(form_value.Address()); 326 break; 327 case DW_AT_stmt_list: 328 m_line_table_offset = form_value.Unsigned(); 329 break; 330 case DW_AT_GNU_addr_base: 331 gnu_addr_base = form_value.Unsigned(); 332 break; 333 case DW_AT_GNU_ranges_base: 334 gnu_ranges_base = form_value.Unsigned(); 335 break; 336 } 337 } 338 339 if (m_is_dwo) 340 return; 341 342 std::unique_ptr<SymbolFileDWARFDwo> dwo_symbol_file = 343 m_dwarf.GetDwoSymbolFileForCompileUnit(*this, cu_die); 344 if (!dwo_symbol_file) 345 return; 346 347 DWARFUnit *dwo_cu = dwo_symbol_file->GetCompileUnit(); 348 if (!dwo_cu) 349 return; // Can't fetch the compile unit from the dwo file. 350 351 DWARFBaseDIE dwo_cu_die = dwo_cu->GetUnitDIEOnly(); 352 if (!dwo_cu_die.IsValid()) 353 return; // Can't fetch the compile unit DIE from the dwo file. 354 355 uint64_t main_dwo_id = 356 cu_die.GetAttributeValueAsUnsigned(this, DW_AT_GNU_dwo_id, 0); 357 uint64_t sub_dwo_id = 358 dwo_cu_die.GetAttributeValueAsUnsigned(DW_AT_GNU_dwo_id, 0); 359 if (main_dwo_id != sub_dwo_id) 360 return; // The 2 dwo ID isn't match. Don't use the dwo file as it belongs to 361 // a differectn compilation. 362 363 m_dwo_symbol_file = std::move(dwo_symbol_file); 364 365 // Here for DWO CU we want to use the address base set in the skeleton unit 366 // (DW_AT_addr_base) if it is available and use the DW_AT_GNU_addr_base 367 // otherwise. We do that because pre-DWARF v5 could use the DW_AT_GNU_* 368 // attributes which were applicable to the DWO units. The corresponding 369 // DW_AT_* attributes standardized in DWARF v5 are also applicable to the main 370 // unit in contrast. 371 if (addr_base) 372 dwo_cu->SetAddrBase(*addr_base); 373 else if (gnu_addr_base) 374 dwo_cu->SetAddrBase(*gnu_addr_base); 375 376 if (GetVersion() <= 4 && gnu_ranges_base) 377 dwo_cu->SetRangesBase(*gnu_ranges_base); 378 else if (m_dwo_symbol_file->GetDWARFContext() 379 .getOrLoadRngListsData() 380 .GetByteSize() > 0) 381 dwo_cu->SetRangesBase(llvm::DWARFListTableHeader::getHeaderSize(DWARF32)); 382 383 if (GetVersion() >= 5 && m_dwo_symbol_file->GetDWARFContext() 384 .getOrLoadLocListsData() 385 .GetByteSize() > 0) 386 dwo_cu->SetLoclistsBase(llvm::DWARFListTableHeader::getHeaderSize(DWARF32)); 387 dwo_cu->SetBaseAddress(GetBaseAddress()); 388 389 for (size_t i = 0; i < m_dwo_symbol_file->DebugInfo()->GetNumUnits(); ++i) { 390 DWARFUnit *unit = m_dwo_symbol_file->DebugInfo()->GetUnitAtIndex(i); 391 SetDwoStrOffsetsBase(unit); 392 } 393 } 394 395 DWARFDIE DWARFUnit::LookupAddress(const dw_addr_t address) { 396 if (DIE()) { 397 const DWARFDebugAranges &func_aranges = GetFunctionAranges(); 398 399 // Re-check the aranges auto pointer contents in case it was created above 400 if (!func_aranges.IsEmpty()) 401 return GetDIE(func_aranges.FindAddress(address)); 402 } 403 return DWARFDIE(); 404 } 405 406 size_t DWARFUnit::GetDebugInfoSize() const { 407 return GetLengthByteSize() + GetLength() - GetHeaderByteSize(); 408 } 409 410 const DWARFAbbreviationDeclarationSet *DWARFUnit::GetAbbreviations() const { 411 return m_abbrevs; 412 } 413 414 dw_offset_t DWARFUnit::GetAbbrevOffset() const { 415 return m_abbrevs ? m_abbrevs->GetOffset() : DW_INVALID_OFFSET; 416 } 417 418 dw_offset_t DWARFUnit::GetLineTableOffset() { 419 ExtractUnitDIEIfNeeded(); 420 return m_line_table_offset; 421 } 422 423 void DWARFUnit::SetAddrBase(dw_addr_t addr_base) { m_addr_base = addr_base; } 424 425 // Parse the rangelist table header, including the optional array of offsets 426 // following it (DWARF v5 and later). 427 template <typename ListTableType> 428 static llvm::Expected<ListTableType> 429 ParseListTableHeader(const llvm::DWARFDataExtractor &data, uint64_t offset, 430 DwarfFormat format) { 431 // We are expected to be called with Offset 0 or pointing just past the table 432 // header. Correct Offset in the latter case so that it points to the start 433 // of the header. 434 if (offset > 0) { 435 uint64_t HeaderSize = llvm::DWARFListTableHeader::getHeaderSize(format); 436 if (offset < HeaderSize) 437 return llvm::createStringError(errc::invalid_argument, 438 "did not detect a valid" 439 " list table with base = 0x%" PRIx64 "\n", 440 offset); 441 offset -= HeaderSize; 442 } 443 ListTableType Table; 444 if (llvm::Error E = Table.extractHeaderAndOffsets(data, &offset)) 445 return std::move(E); 446 return Table; 447 } 448 449 void DWARFUnit::SetLoclistsBase(dw_addr_t loclists_base) { 450 m_loclists_base = loclists_base; 451 452 uint64_t header_size = llvm::DWARFListTableHeader::getHeaderSize(DWARF32); 453 if (loclists_base < header_size) 454 return; 455 456 m_loclist_table_header.emplace(".debug_loclists", "locations"); 457 uint64_t offset = loclists_base - header_size; 458 if (llvm::Error E = m_loclist_table_header->extract( 459 m_dwarf.GetDWARFContext().getOrLoadLocListsData().GetAsLLVM(), 460 &offset)) { 461 GetSymbolFileDWARF().GetObjectFile()->GetModule()->ReportError( 462 "Failed to extract location list table at offset 0x%" PRIx64 ": %s", 463 loclists_base, toString(std::move(E)).c_str()); 464 } 465 } 466 467 std::unique_ptr<llvm::DWARFLocationTable> 468 DWARFUnit::GetLocationTable(const DataExtractor &data) const { 469 llvm::DWARFDataExtractor llvm_data( 470 toStringRef(data.GetData()), 471 data.GetByteOrder() == lldb::eByteOrderLittle, data.GetAddressByteSize()); 472 473 if (m_is_dwo || GetVersion() >= 5) 474 return std::make_unique<llvm::DWARFDebugLoclists>(llvm_data, GetVersion()); 475 return std::make_unique<llvm::DWARFDebugLoc>(llvm_data); 476 } 477 478 const DWARFDataExtractor &DWARFUnit::GetLocationData() const { 479 DWARFContext &Ctx = GetSymbolFileDWARF().GetDWARFContext(); 480 return GetVersion() >= 5 ? Ctx.getOrLoadLocListsData() 481 : Ctx.getOrLoadLocData(); 482 } 483 484 void DWARFUnit::SetRangesBase(dw_addr_t ranges_base) { 485 m_ranges_base = ranges_base; 486 487 if (GetVersion() < 5) 488 return; 489 490 if (auto table_or_error = ParseListTableHeader<llvm::DWARFDebugRnglistTable>( 491 m_dwarf.GetDWARFContext().getOrLoadRngListsData().GetAsLLVM(), 492 ranges_base, DWARF32)) 493 m_rnglist_table = std::move(table_or_error.get()); 494 else 495 GetSymbolFileDWARF().GetObjectFile()->GetModule()->ReportError( 496 "Failed to extract range list table at offset 0x%" PRIx64 ": %s", 497 ranges_base, toString(table_or_error.takeError()).c_str()); 498 } 499 500 void DWARFUnit::SetStrOffsetsBase(dw_offset_t str_offsets_base) { 501 m_str_offsets_base = str_offsets_base; 502 } 503 504 // It may be called only with m_die_array_mutex held R/W. 505 void DWARFUnit::ClearDIEsRWLocked() { 506 m_die_array.clear(); 507 m_die_array.shrink_to_fit(); 508 509 if (m_dwo_symbol_file) 510 m_dwo_symbol_file->GetCompileUnit()->ClearDIEsRWLocked(); 511 } 512 513 lldb::ByteOrder DWARFUnit::GetByteOrder() const { 514 return m_dwarf.GetObjectFile()->GetByteOrder(); 515 } 516 517 void DWARFUnit::SetBaseAddress(dw_addr_t base_addr) { m_base_addr = base_addr; } 518 519 // Compare function DWARFDebugAranges::Range structures 520 static bool CompareDIEOffset(const DWARFDebugInfoEntry &die, 521 const dw_offset_t die_offset) { 522 return die.GetOffset() < die_offset; 523 } 524 525 // GetDIE() 526 // 527 // Get the DIE (Debug Information Entry) with the specified offset by first 528 // checking if the DIE is contained within this compile unit and grabbing the 529 // DIE from this compile unit. Otherwise we grab the DIE from the DWARF file. 530 DWARFDIE 531 DWARFUnit::GetDIE(dw_offset_t die_offset) { 532 if (die_offset != DW_INVALID_OFFSET) { 533 if (ContainsDIEOffset(die_offset)) { 534 ExtractDIEsIfNeeded(); 535 DWARFDebugInfoEntry::const_iterator end = m_die_array.cend(); 536 DWARFDebugInfoEntry::const_iterator pos = 537 lower_bound(m_die_array.cbegin(), end, die_offset, CompareDIEOffset); 538 if (pos != end) { 539 if (die_offset == (*pos).GetOffset()) 540 return DWARFDIE(this, &(*pos)); 541 } 542 } else 543 GetSymbolFileDWARF().GetObjectFile()->GetModule()->ReportError( 544 "GetDIE for DIE 0x%" PRIx32 " is outside of its CU 0x%" PRIx32, 545 die_offset, GetOffset()); 546 } 547 return DWARFDIE(); // Not found 548 } 549 550 DWARFUnit &DWARFUnit::GetNonSkeletonUnit() { 551 if (SymbolFileDWARFDwo *dwo = GetDwoSymbolFile()) 552 return *dwo->GetCompileUnit(); 553 return *this; 554 } 555 556 uint8_t DWARFUnit::GetAddressByteSize(const DWARFUnit *cu) { 557 if (cu) 558 return cu->GetAddressByteSize(); 559 return DWARFUnit::GetDefaultAddressSize(); 560 } 561 562 uint8_t DWARFUnit::GetDefaultAddressSize() { return 4; } 563 564 void *DWARFUnit::GetUserData() const { return m_user_data; } 565 566 void DWARFUnit::SetUserData(void *d) { 567 m_user_data = d; 568 if (m_dwo_symbol_file) 569 m_dwo_symbol_file->GetCompileUnit()->SetUserData(d); 570 } 571 572 bool DWARFUnit::Supports_DW_AT_APPLE_objc_complete_type() { 573 return GetProducer() != eProducerLLVMGCC; 574 } 575 576 bool DWARFUnit::DW_AT_decl_file_attributes_are_invalid() { 577 // llvm-gcc makes completely invalid decl file attributes and won't ever be 578 // fixed, so we need to know to ignore these. 579 return GetProducer() == eProducerLLVMGCC; 580 } 581 582 bool DWARFUnit::Supports_unnamed_objc_bitfields() { 583 if (GetProducer() == eProducerClang) { 584 const uint32_t major_version = GetProducerVersionMajor(); 585 return major_version > 425 || 586 (major_version == 425 && GetProducerVersionUpdate() >= 13); 587 } 588 return true; // Assume all other compilers didn't have incorrect ObjC bitfield 589 // info 590 } 591 592 void DWARFUnit::ParseProducerInfo() { 593 m_producer_version_major = UINT32_MAX; 594 m_producer_version_minor = UINT32_MAX; 595 m_producer_version_update = UINT32_MAX; 596 597 const DWARFDebugInfoEntry *die = GetUnitDIEPtrOnly(); 598 if (die) { 599 600 const char *producer_cstr = 601 die->GetAttributeValueAsString(this, DW_AT_producer, nullptr); 602 if (producer_cstr) { 603 RegularExpression llvm_gcc_regex( 604 llvm::StringRef("^4\\.[012]\\.[01] \\(Based on Apple " 605 "Inc\\. build [0-9]+\\) \\(LLVM build " 606 "[\\.0-9]+\\)$")); 607 if (llvm_gcc_regex.Execute(llvm::StringRef(producer_cstr))) { 608 m_producer = eProducerLLVMGCC; 609 } else if (strstr(producer_cstr, "clang")) { 610 static RegularExpression g_clang_version_regex( 611 llvm::StringRef("clang-([0-9]+)\\.([0-9]+)\\.([0-9]+)")); 612 llvm::SmallVector<llvm::StringRef, 4> matches; 613 if (g_clang_version_regex.Execute(llvm::StringRef(producer_cstr), 614 &matches)) { 615 m_producer_version_major = 616 StringConvert::ToUInt32(matches[1].str().c_str(), UINT32_MAX, 10); 617 m_producer_version_minor = 618 StringConvert::ToUInt32(matches[2].str().c_str(), UINT32_MAX, 10); 619 m_producer_version_update = 620 StringConvert::ToUInt32(matches[3].str().c_str(), UINT32_MAX, 10); 621 } 622 m_producer = eProducerClang; 623 } else if (strstr(producer_cstr, "GNU")) 624 m_producer = eProducerGCC; 625 } 626 } 627 if (m_producer == eProducerInvalid) 628 m_producer = eProcucerOther; 629 } 630 631 DWARFProducer DWARFUnit::GetProducer() { 632 if (m_producer == eProducerInvalid) 633 ParseProducerInfo(); 634 return m_producer; 635 } 636 637 uint32_t DWARFUnit::GetProducerVersionMajor() { 638 if (m_producer_version_major == 0) 639 ParseProducerInfo(); 640 return m_producer_version_major; 641 } 642 643 uint32_t DWARFUnit::GetProducerVersionMinor() { 644 if (m_producer_version_minor == 0) 645 ParseProducerInfo(); 646 return m_producer_version_minor; 647 } 648 649 uint32_t DWARFUnit::GetProducerVersionUpdate() { 650 if (m_producer_version_update == 0) 651 ParseProducerInfo(); 652 return m_producer_version_update; 653 } 654 655 uint64_t DWARFUnit::GetDWARFLanguageType() { 656 if (m_language_type) 657 return *m_language_type; 658 659 const DWARFDebugInfoEntry *die = GetUnitDIEPtrOnly(); 660 if (!die) 661 m_language_type = 0; 662 else 663 m_language_type = die->GetAttributeValueAsUnsigned(this, DW_AT_language, 0); 664 return *m_language_type; 665 } 666 667 bool DWARFUnit::GetIsOptimized() { 668 if (m_is_optimized == eLazyBoolCalculate) { 669 const DWARFDebugInfoEntry *die = GetUnitDIEPtrOnly(); 670 if (die) { 671 m_is_optimized = eLazyBoolNo; 672 if (die->GetAttributeValueAsUnsigned(this, DW_AT_APPLE_optimized, 0) == 673 1) { 674 m_is_optimized = eLazyBoolYes; 675 } 676 } 677 } 678 return m_is_optimized == eLazyBoolYes; 679 } 680 681 FileSpec::Style DWARFUnit::GetPathStyle() { 682 if (!m_comp_dir) 683 ComputeCompDirAndGuessPathStyle(); 684 return m_comp_dir->GetPathStyle(); 685 } 686 687 const FileSpec &DWARFUnit::GetCompilationDirectory() { 688 if (!m_comp_dir) 689 ComputeCompDirAndGuessPathStyle(); 690 return *m_comp_dir; 691 } 692 693 const FileSpec &DWARFUnit::GetAbsolutePath() { 694 if (!m_file_spec) 695 ComputeAbsolutePath(); 696 return *m_file_spec; 697 } 698 699 FileSpec DWARFUnit::GetFile(size_t file_idx) { 700 return m_dwarf.GetFile(*this, file_idx); 701 } 702 703 // DWARF2/3 suggests the form hostname:pathname for compilation directory. 704 // Remove the host part if present. 705 static llvm::StringRef 706 removeHostnameFromPathname(llvm::StringRef path_from_dwarf) { 707 if (!path_from_dwarf.contains(':')) 708 return path_from_dwarf; 709 llvm::StringRef host, path; 710 std::tie(host, path) = path_from_dwarf.split(':'); 711 712 if (host.contains('/')) 713 return path_from_dwarf; 714 715 // check whether we have a windows path, and so the first character is a 716 // drive-letter not a hostname. 717 if (host.size() == 1 && llvm::isAlpha(host[0]) && path.startswith("\\")) 718 return path_from_dwarf; 719 720 return path; 721 } 722 723 void DWARFUnit::ComputeCompDirAndGuessPathStyle() { 724 m_comp_dir = FileSpec(); 725 const DWARFDebugInfoEntry *die = GetUnitDIEPtrOnly(); 726 if (!die) 727 return; 728 729 llvm::StringRef comp_dir = removeHostnameFromPathname( 730 die->GetAttributeValueAsString(this, DW_AT_comp_dir, nullptr)); 731 if (!comp_dir.empty()) { 732 FileSpec::Style comp_dir_style = 733 FileSpec::GuessPathStyle(comp_dir).getValueOr(FileSpec::Style::native); 734 m_comp_dir = FileSpec(comp_dir, comp_dir_style); 735 } else { 736 // Try to detect the style based on the DW_AT_name attribute, but just store 737 // the detected style in the m_comp_dir field. 738 const char *name = 739 die->GetAttributeValueAsString(this, DW_AT_name, nullptr); 740 m_comp_dir = FileSpec( 741 "", FileSpec::GuessPathStyle(name).getValueOr(FileSpec::Style::native)); 742 } 743 } 744 745 void DWARFUnit::ComputeAbsolutePath() { 746 m_file_spec = FileSpec(); 747 const DWARFDebugInfoEntry *die = GetUnitDIEPtrOnly(); 748 if (!die) 749 return; 750 751 m_file_spec = 752 FileSpec(die->GetAttributeValueAsString(this, DW_AT_name, nullptr), 753 GetPathStyle()); 754 755 if (m_file_spec->IsRelative()) 756 m_file_spec->MakeAbsolute(GetCompilationDirectory()); 757 } 758 759 SymbolFileDWARFDwo *DWARFUnit::GetDwoSymbolFile() { 760 ExtractUnitDIEIfNeeded(); 761 return m_dwo_symbol_file.get(); 762 } 763 764 const DWARFDebugAranges &DWARFUnit::GetFunctionAranges() { 765 if (m_func_aranges_up == nullptr) { 766 m_func_aranges_up.reset(new DWARFDebugAranges()); 767 const DWARFDebugInfoEntry *die = DIEPtr(); 768 if (die) 769 die->BuildFunctionAddressRangeTable(this, m_func_aranges_up.get()); 770 771 if (m_dwo_symbol_file) { 772 DWARFUnit *dwo_cu = m_dwo_symbol_file->GetCompileUnit(); 773 const DWARFDebugInfoEntry *dwo_die = dwo_cu->DIEPtr(); 774 if (dwo_die) 775 dwo_die->BuildFunctionAddressRangeTable(dwo_cu, 776 m_func_aranges_up.get()); 777 } 778 779 const bool minimize = false; 780 m_func_aranges_up->Sort(minimize); 781 } 782 return *m_func_aranges_up; 783 } 784 785 llvm::Expected<DWARFUnitHeader> 786 DWARFUnitHeader::extract(const DWARFDataExtractor &data, DIERef::Section section, 787 lldb::offset_t *offset_ptr) { 788 DWARFUnitHeader header; 789 header.m_offset = *offset_ptr; 790 header.m_length = data.GetDWARFInitialLength(offset_ptr); 791 header.m_version = data.GetU16(offset_ptr); 792 if (header.m_version == 5) { 793 header.m_unit_type = data.GetU8(offset_ptr); 794 header.m_addr_size = data.GetU8(offset_ptr); 795 header.m_abbr_offset = data.GetDWARFOffset(offset_ptr); 796 if (header.m_unit_type == llvm::dwarf::DW_UT_skeleton) 797 header.m_dwo_id = data.GetU64(offset_ptr); 798 } else { 799 header.m_abbr_offset = data.GetDWARFOffset(offset_ptr); 800 header.m_addr_size = data.GetU8(offset_ptr); 801 header.m_unit_type = 802 section == DIERef::Section::DebugTypes ? DW_UT_type : DW_UT_compile; 803 } 804 805 if (header.IsTypeUnit()) { 806 header.m_type_hash = data.GetU64(offset_ptr); 807 header.m_type_offset = data.GetDWARFOffset(offset_ptr); 808 } 809 810 bool length_OK = data.ValidOffset(header.GetNextUnitOffset() - 1); 811 bool version_OK = SymbolFileDWARF::SupportedVersion(header.m_version); 812 bool addr_size_OK = (header.m_addr_size == 4) || (header.m_addr_size == 8); 813 bool type_offset_OK = 814 !header.IsTypeUnit() || (header.m_type_offset <= header.GetLength()); 815 816 if (!length_OK) 817 return llvm::make_error<llvm::object::GenericBinaryError>( 818 "Invalid unit length"); 819 if (!version_OK) 820 return llvm::make_error<llvm::object::GenericBinaryError>( 821 "Unsupported unit version"); 822 if (!addr_size_OK) 823 return llvm::make_error<llvm::object::GenericBinaryError>( 824 "Invalid unit address size"); 825 if (!type_offset_OK) 826 return llvm::make_error<llvm::object::GenericBinaryError>( 827 "Type offset out of range"); 828 829 return header; 830 } 831 832 llvm::Expected<DWARFUnitSP> 833 DWARFUnit::extract(SymbolFileDWARF &dwarf, user_id_t uid, 834 const DWARFDataExtractor &debug_info, 835 DIERef::Section section, lldb::offset_t *offset_ptr) { 836 assert(debug_info.ValidOffset(*offset_ptr)); 837 838 auto expected_header = 839 DWARFUnitHeader::extract(debug_info, section, offset_ptr); 840 if (!expected_header) 841 return expected_header.takeError(); 842 843 const DWARFDebugAbbrev *abbr = dwarf.DebugAbbrev(); 844 if (!abbr) 845 return llvm::make_error<llvm::object::GenericBinaryError>( 846 "No debug_abbrev data"); 847 848 bool abbr_offset_OK = 849 dwarf.GetDWARFContext().getOrLoadAbbrevData().ValidOffset( 850 expected_header->GetAbbrOffset()); 851 if (!abbr_offset_OK) 852 return llvm::make_error<llvm::object::GenericBinaryError>( 853 "Abbreviation offset for unit is not valid"); 854 855 const DWARFAbbreviationDeclarationSet *abbrevs = 856 abbr->GetAbbreviationDeclarationSet(expected_header->GetAbbrOffset()); 857 if (!abbrevs) 858 return llvm::make_error<llvm::object::GenericBinaryError>( 859 "No abbrev exists at the specified offset."); 860 861 bool is_dwo = dwarf.GetDWARFContext().isDwo(); 862 if (expected_header->IsTypeUnit()) 863 return DWARFUnitSP(new DWARFTypeUnit(dwarf, uid, *expected_header, *abbrevs, 864 section, is_dwo)); 865 return DWARFUnitSP(new DWARFCompileUnit(dwarf, uid, *expected_header, 866 *abbrevs, section, is_dwo)); 867 } 868 869 const lldb_private::DWARFDataExtractor &DWARFUnit::GetData() const { 870 return m_section == DIERef::Section::DebugTypes 871 ? m_dwarf.GetDWARFContext().getOrLoadDebugTypesData() 872 : m_dwarf.GetDWARFContext().getOrLoadDebugInfoData(); 873 } 874 875 uint32_t DWARFUnit::GetHeaderByteSize() const { 876 switch (m_header.GetUnitType()) { 877 case llvm::dwarf::DW_UT_compile: 878 case llvm::dwarf::DW_UT_partial: 879 return GetVersion() < 5 ? 11 : 12; 880 case llvm::dwarf::DW_UT_skeleton: 881 case llvm::dwarf::DW_UT_split_compile: 882 return 20; 883 case llvm::dwarf::DW_UT_type: 884 case llvm::dwarf::DW_UT_split_type: 885 return GetVersion() < 5 ? 23 : 24; 886 } 887 llvm_unreachable("invalid UnitType."); 888 } 889 890 llvm::Expected<DWARFRangeList> 891 DWARFUnit::FindRnglistFromOffset(dw_offset_t offset) { 892 if (GetVersion() <= 4) { 893 const DWARFDebugRanges *debug_ranges = m_dwarf.GetDebugRanges(); 894 if (!debug_ranges) 895 return llvm::make_error<llvm::object::GenericBinaryError>( 896 "No debug_ranges section"); 897 DWARFRangeList ranges; 898 debug_ranges->FindRanges(this, offset, ranges); 899 return ranges; 900 } 901 902 if (!m_rnglist_table) 903 return llvm::createStringError(errc::invalid_argument, 904 "missing or invalid range list table"); 905 906 auto range_list_or_error = m_rnglist_table->findList( 907 m_dwarf.GetDWARFContext().getOrLoadRngListsData().GetAsLLVM(), offset); 908 if (!range_list_or_error) 909 return range_list_or_error.takeError(); 910 911 llvm::Expected<llvm::DWARFAddressRangesVector> llvm_ranges = 912 range_list_or_error->getAbsoluteRanges( 913 llvm::object::SectionedAddress{GetBaseAddress()}, 914 [&](uint32_t index) { 915 uint32_t index_size = GetAddressByteSize(); 916 dw_offset_t addr_base = GetAddrBase(); 917 lldb::offset_t offset = addr_base + index * index_size; 918 return llvm::object::SectionedAddress{ 919 m_dwarf.GetDWARFContext().getOrLoadAddrData().GetMaxU64( 920 &offset, index_size)}; 921 }); 922 if (!llvm_ranges) 923 return llvm_ranges.takeError(); 924 925 DWARFRangeList ranges; 926 for (const llvm::DWARFAddressRange &llvm_range : *llvm_ranges) { 927 ranges.Append(DWARFRangeList::Entry(llvm_range.LowPC, 928 llvm_range.HighPC - llvm_range.LowPC)); 929 } 930 return ranges; 931 } 932 933 llvm::Expected<DWARFRangeList> 934 DWARFUnit::FindRnglistFromIndex(uint32_t index) { 935 if (llvm::Optional<uint64_t> offset = GetRnglistOffset(index)) 936 return FindRnglistFromOffset(*offset); 937 if (m_rnglist_table) 938 return llvm::createStringError(errc::invalid_argument, 939 "invalid range list table index %d", index); 940 941 return llvm::createStringError(errc::invalid_argument, 942 "missing or invalid range list table"); 943 } 944