1 //===- tools/dsymutil/DwarfStreamer.cpp - Dwarf Streamer ------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "DwarfStreamer.h" 11 #include "CompileUnit.h" 12 #include "LinkUtils.h" 13 #include "MachOUtils.h" 14 #include "llvm/ADT/Triple.h" 15 #include "llvm/DebugInfo/DWARF/DWARFContext.h" 16 #include "llvm/MC/MCTargetOptions.h" 17 #include "llvm/MC/MCTargetOptionsCommandFlags.inc" 18 #include "llvm/Support/LEB128.h" 19 #include "llvm/Support/TargetRegistry.h" 20 #include "llvm/Target/TargetMachine.h" 21 #include "llvm/Target/TargetOptions.h" 22 23 namespace llvm { 24 namespace dsymutil { 25 26 /// Retrieve the section named \a SecName in \a Obj. 27 /// 28 /// To accommodate for platform discrepancies, the name passed should be 29 /// (for example) 'debug_info' to match either '__debug_info' or '.debug_info'. 30 /// This function will strip the initial platform-specific characters. 31 static Optional<object::SectionRef> 32 getSectionByName(const object::ObjectFile &Obj, StringRef SecName) { 33 for (const object::SectionRef &Section : Obj.sections()) { 34 StringRef SectionName; 35 Section.getName(SectionName); 36 SectionName = SectionName.substr(SectionName.find_first_not_of("._")); 37 if (SectionName != SecName) 38 continue; 39 return Section; 40 } 41 return None; 42 } 43 44 bool DwarfStreamer::init(Triple TheTriple) { 45 std::string ErrorStr; 46 std::string TripleName; 47 StringRef Context = "dwarf streamer init"; 48 49 // Get the target. 50 const Target *TheTarget = 51 TargetRegistry::lookupTarget(TripleName, TheTriple, ErrorStr); 52 if (!TheTarget) 53 return error(ErrorStr, Context); 54 TripleName = TheTriple.getTriple(); 55 56 // Create all the MC Objects. 57 MRI.reset(TheTarget->createMCRegInfo(TripleName)); 58 if (!MRI) 59 return error(Twine("no register info for target ") + TripleName, Context); 60 61 MAI.reset(TheTarget->createMCAsmInfo(*MRI, TripleName)); 62 if (!MAI) 63 return error("no asm info for target " + TripleName, Context); 64 65 MOFI.reset(new MCObjectFileInfo); 66 MC.reset(new MCContext(MAI.get(), MRI.get(), MOFI.get())); 67 MOFI->InitMCObjectFileInfo(TheTriple, /*PIC*/ false, *MC); 68 69 MSTI.reset(TheTarget->createMCSubtargetInfo(TripleName, "", "")); 70 if (!MSTI) 71 return error("no subtarget info for target " + TripleName, Context); 72 73 MCTargetOptions MCOptions = InitMCTargetOptionsFromFlags(); 74 MAB = TheTarget->createMCAsmBackend(*MSTI, *MRI, MCOptions); 75 if (!MAB) 76 return error("no asm backend for target " + TripleName, Context); 77 78 MII.reset(TheTarget->createMCInstrInfo()); 79 if (!MII) 80 return error("no instr info info for target " + TripleName, Context); 81 82 MCE = TheTarget->createMCCodeEmitter(*MII, *MRI, *MC); 83 if (!MCE) 84 return error("no code emitter for target " + TripleName, Context); 85 86 switch (Options.FileType) { 87 case OutputFileType::Assembly: { 88 MIP = TheTarget->createMCInstPrinter(TheTriple, MAI->getAssemblerDialect(), 89 *MAI, *MII, *MRI); 90 MS = TheTarget->createAsmStreamer( 91 *MC, llvm::make_unique<formatted_raw_ostream>(OutFile), true, true, MIP, 92 std::unique_ptr<MCCodeEmitter>(MCE), std::unique_ptr<MCAsmBackend>(MAB), 93 true); 94 break; 95 } 96 case OutputFileType::Object: { 97 MS = TheTarget->createMCObjectStreamer( 98 TheTriple, *MC, std::unique_ptr<MCAsmBackend>(MAB), 99 MAB->createObjectWriter(OutFile), std::unique_ptr<MCCodeEmitter>(MCE), 100 *MSTI, MCOptions.MCRelaxAll, MCOptions.MCIncrementalLinkerCompatible, 101 /*DWARFMustBeAtTheEnd*/ false); 102 break; 103 } 104 } 105 106 if (!MS) 107 return error("no object streamer for target " + TripleName, Context); 108 109 // Finally create the AsmPrinter we'll use to emit the DIEs. 110 TM.reset(TheTarget->createTargetMachine(TripleName, "", "", TargetOptions(), 111 None)); 112 if (!TM) 113 return error("no target machine for target " + TripleName, Context); 114 115 Asm.reset(TheTarget->createAsmPrinter(*TM, std::unique_ptr<MCStreamer>(MS))); 116 if (!Asm) 117 return error("no asm printer for target " + TripleName, Context); 118 119 RangesSectionSize = 0; 120 LocSectionSize = 0; 121 LineSectionSize = 0; 122 FrameSectionSize = 0; 123 124 return true; 125 } 126 127 bool DwarfStreamer::finish(const DebugMap &DM) { 128 bool Result = true; 129 if (DM.getTriple().isOSDarwin() && !DM.getBinaryPath().empty() && 130 Options.FileType == OutputFileType::Object) 131 Result = MachOUtils::generateDsymCompanion(DM, *MS, OutFile); 132 else 133 MS->Finish(); 134 return Result; 135 } 136 137 void DwarfStreamer::switchToDebugInfoSection(unsigned DwarfVersion) { 138 MS->SwitchSection(MOFI->getDwarfInfoSection()); 139 MC->setDwarfVersion(DwarfVersion); 140 } 141 142 /// Emit the compilation unit header for \p Unit in the debug_info section. 143 /// 144 /// A Dwarf section header is encoded as: 145 /// uint32_t Unit length (omitting this field) 146 /// uint16_t Version 147 /// uint32_t Abbreviation table offset 148 /// uint8_t Address size 149 /// 150 /// Leading to a total of 11 bytes. 151 void DwarfStreamer::emitCompileUnitHeader(CompileUnit &Unit) { 152 unsigned Version = Unit.getOrigUnit().getVersion(); 153 switchToDebugInfoSection(Version); 154 155 /// The start of the unit within its section. 156 Unit.setLabelBegin(Asm->createTempSymbol("cu_begin")); 157 Asm->OutStreamer->EmitLabel(Unit.getLabelBegin()); 158 159 // Emit size of content not including length itself. The size has already 160 // been computed in CompileUnit::computeOffsets(). Subtract 4 to that size to 161 // account for the length field. 162 Asm->emitInt32(Unit.getNextUnitOffset() - Unit.getStartOffset() - 4); 163 Asm->emitInt16(Version); 164 165 // We share one abbreviations table across all units so it's always at the 166 // start of the section. 167 Asm->emitInt32(0); 168 Asm->emitInt8(Unit.getOrigUnit().getAddressByteSize()); 169 170 // Remember this CU. 171 EmittedUnits.push_back({Unit.getUniqueID(), Unit.getLabelBegin()}); 172 } 173 174 /// Emit the \p Abbrevs array as the shared abbreviation table 175 /// for the linked Dwarf file. 176 void DwarfStreamer::emitAbbrevs( 177 const std::vector<std::unique_ptr<DIEAbbrev>> &Abbrevs, 178 unsigned DwarfVersion) { 179 MS->SwitchSection(MOFI->getDwarfAbbrevSection()); 180 MC->setDwarfVersion(DwarfVersion); 181 Asm->emitDwarfAbbrevs(Abbrevs); 182 } 183 184 /// Recursively emit the DIE tree rooted at \p Die. 185 void DwarfStreamer::emitDIE(DIE &Die) { 186 MS->SwitchSection(MOFI->getDwarfInfoSection()); 187 Asm->emitDwarfDIE(Die); 188 } 189 190 /// Emit the debug_str section stored in \p Pool. 191 void DwarfStreamer::emitStrings(const NonRelocatableStringpool &Pool) { 192 Asm->OutStreamer->SwitchSection(MOFI->getDwarfStrSection()); 193 std::vector<DwarfStringPoolEntryRef> Entries = Pool.getEntries(); 194 for (auto Entry : Entries) { 195 if (Entry.getIndex() == -1U) 196 break; 197 // Emit the string itself. 198 Asm->OutStreamer->EmitBytes(Entry.getString()); 199 // Emit a null terminator. 200 Asm->emitInt8(0); 201 } 202 } 203 204 void DwarfStreamer::emitDebugNames( 205 AccelTable<DWARF5AccelTableStaticData> &Table) { 206 if (EmittedUnits.empty()) 207 return; 208 209 // Build up data structures needed to emit this section. 210 std::vector<MCSymbol *> CompUnits; 211 DenseMap<unsigned, size_t> UniqueIdToCuMap; 212 unsigned Id = 0; 213 for (auto &CU : EmittedUnits) { 214 CompUnits.push_back(CU.LabelBegin); 215 // We might be omitting CUs, so we need to remap them. 216 UniqueIdToCuMap[CU.ID] = Id++; 217 } 218 219 Asm->OutStreamer->SwitchSection(MOFI->getDwarfDebugNamesSection()); 220 emitDWARF5AccelTable( 221 Asm.get(), Table, CompUnits, 222 [&UniqueIdToCuMap](const DWARF5AccelTableStaticData &Entry) { 223 return UniqueIdToCuMap[Entry.getCUIndex()]; 224 }); 225 } 226 227 void DwarfStreamer::emitAppleNamespaces( 228 AccelTable<AppleAccelTableStaticOffsetData> &Table) { 229 Asm->OutStreamer->SwitchSection(MOFI->getDwarfAccelNamespaceSection()); 230 auto *SectionBegin = Asm->createTempSymbol("namespac_begin"); 231 Asm->OutStreamer->EmitLabel(SectionBegin); 232 emitAppleAccelTable(Asm.get(), Table, "namespac", SectionBegin); 233 } 234 235 void DwarfStreamer::emitAppleNames( 236 AccelTable<AppleAccelTableStaticOffsetData> &Table) { 237 Asm->OutStreamer->SwitchSection(MOFI->getDwarfAccelNamesSection()); 238 auto *SectionBegin = Asm->createTempSymbol("names_begin"); 239 Asm->OutStreamer->EmitLabel(SectionBegin); 240 emitAppleAccelTable(Asm.get(), Table, "names", SectionBegin); 241 } 242 243 void DwarfStreamer::emitAppleObjc( 244 AccelTable<AppleAccelTableStaticOffsetData> &Table) { 245 Asm->OutStreamer->SwitchSection(MOFI->getDwarfAccelObjCSection()); 246 auto *SectionBegin = Asm->createTempSymbol("objc_begin"); 247 Asm->OutStreamer->EmitLabel(SectionBegin); 248 emitAppleAccelTable(Asm.get(), Table, "objc", SectionBegin); 249 } 250 251 void DwarfStreamer::emitAppleTypes( 252 AccelTable<AppleAccelTableStaticTypeData> &Table) { 253 Asm->OutStreamer->SwitchSection(MOFI->getDwarfAccelTypesSection()); 254 auto *SectionBegin = Asm->createTempSymbol("types_begin"); 255 Asm->OutStreamer->EmitLabel(SectionBegin); 256 emitAppleAccelTable(Asm.get(), Table, "types", SectionBegin); 257 } 258 259 /// Emit the swift_ast section stored in \p Buffers. 260 void DwarfStreamer::emitSwiftAST(StringRef Buffer) { 261 MCSection *SwiftASTSection = MOFI->getDwarfSwiftASTSection(); 262 SwiftASTSection->setAlignment(1 << 5); 263 MS->SwitchSection(SwiftASTSection); 264 MS->EmitBytes(Buffer); 265 } 266 267 /// Emit the debug_range section contents for \p FuncRange by 268 /// translating the original \p Entries. The debug_range section 269 /// format is totally trivial, consisting just of pairs of address 270 /// sized addresses describing the ranges. 271 void DwarfStreamer::emitRangesEntries( 272 int64_t UnitPcOffset, uint64_t OrigLowPc, 273 const FunctionIntervals::const_iterator &FuncRange, 274 const std::vector<DWARFDebugRangeList::RangeListEntry> &Entries, 275 unsigned AddressSize) { 276 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfRangesSection()); 277 278 // Offset each range by the right amount. 279 int64_t PcOffset = Entries.empty() ? 0 : FuncRange.value() + UnitPcOffset; 280 for (const auto &Range : Entries) { 281 if (Range.isBaseAddressSelectionEntry(AddressSize)) { 282 warn("unsupported base address selection operation", 283 "emitting debug_ranges"); 284 break; 285 } 286 // Do not emit empty ranges. 287 if (Range.StartAddress == Range.EndAddress) 288 continue; 289 290 // All range entries should lie in the function range. 291 if (!(Range.StartAddress + OrigLowPc >= FuncRange.start() && 292 Range.EndAddress + OrigLowPc <= FuncRange.stop())) 293 warn("inconsistent range data.", "emitting debug_ranges"); 294 MS->EmitIntValue(Range.StartAddress + PcOffset, AddressSize); 295 MS->EmitIntValue(Range.EndAddress + PcOffset, AddressSize); 296 RangesSectionSize += 2 * AddressSize; 297 } 298 299 // Add the terminator entry. 300 MS->EmitIntValue(0, AddressSize); 301 MS->EmitIntValue(0, AddressSize); 302 RangesSectionSize += 2 * AddressSize; 303 } 304 305 /// Emit the debug_aranges contribution of a unit and 306 /// if \p DoDebugRanges is true the debug_range contents for a 307 /// compile_unit level DW_AT_ranges attribute (Which are basically the 308 /// same thing with a different base address). 309 /// Just aggregate all the ranges gathered inside that unit. 310 void DwarfStreamer::emitUnitRangesEntries(CompileUnit &Unit, 311 bool DoDebugRanges) { 312 unsigned AddressSize = Unit.getOrigUnit().getAddressByteSize(); 313 // Gather the ranges in a vector, so that we can simplify them. The 314 // IntervalMap will have coalesced the non-linked ranges, but here 315 // we want to coalesce the linked addresses. 316 std::vector<std::pair<uint64_t, uint64_t>> Ranges; 317 const auto &FunctionRanges = Unit.getFunctionRanges(); 318 for (auto Range = FunctionRanges.begin(), End = FunctionRanges.end(); 319 Range != End; ++Range) 320 Ranges.push_back(std::make_pair(Range.start() + Range.value(), 321 Range.stop() + Range.value())); 322 323 // The object addresses where sorted, but again, the linked 324 // addresses might end up in a different order. 325 llvm::sort(Ranges.begin(), Ranges.end()); 326 327 if (!Ranges.empty()) { 328 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfARangesSection()); 329 330 MCSymbol *BeginLabel = Asm->createTempSymbol("Barange"); 331 MCSymbol *EndLabel = Asm->createTempSymbol("Earange"); 332 333 unsigned HeaderSize = 334 sizeof(int32_t) + // Size of contents (w/o this field 335 sizeof(int16_t) + // DWARF ARange version number 336 sizeof(int32_t) + // Offset of CU in the .debug_info section 337 sizeof(int8_t) + // Pointer Size (in bytes) 338 sizeof(int8_t); // Segment Size (in bytes) 339 340 unsigned TupleSize = AddressSize * 2; 341 unsigned Padding = OffsetToAlignment(HeaderSize, TupleSize); 342 343 Asm->EmitLabelDifference(EndLabel, BeginLabel, 4); // Arange length 344 Asm->OutStreamer->EmitLabel(BeginLabel); 345 Asm->emitInt16(dwarf::DW_ARANGES_VERSION); // Version number 346 Asm->emitInt32(Unit.getStartOffset()); // Corresponding unit's offset 347 Asm->emitInt8(AddressSize); // Address size 348 Asm->emitInt8(0); // Segment size 349 350 Asm->OutStreamer->emitFill(Padding, 0x0); 351 352 for (auto Range = Ranges.begin(), End = Ranges.end(); Range != End; 353 ++Range) { 354 uint64_t RangeStart = Range->first; 355 MS->EmitIntValue(RangeStart, AddressSize); 356 while ((Range + 1) != End && Range->second == (Range + 1)->first) 357 ++Range; 358 MS->EmitIntValue(Range->second - RangeStart, AddressSize); 359 } 360 361 // Emit terminator 362 Asm->OutStreamer->EmitIntValue(0, AddressSize); 363 Asm->OutStreamer->EmitIntValue(0, AddressSize); 364 Asm->OutStreamer->EmitLabel(EndLabel); 365 } 366 367 if (!DoDebugRanges) 368 return; 369 370 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfRangesSection()); 371 // Offset each range by the right amount. 372 int64_t PcOffset = -Unit.getLowPc(); 373 // Emit coalesced ranges. 374 for (auto Range = Ranges.begin(), End = Ranges.end(); Range != End; ++Range) { 375 MS->EmitIntValue(Range->first + PcOffset, AddressSize); 376 while (Range + 1 != End && Range->second == (Range + 1)->first) 377 ++Range; 378 MS->EmitIntValue(Range->second + PcOffset, AddressSize); 379 RangesSectionSize += 2 * AddressSize; 380 } 381 382 // Add the terminator entry. 383 MS->EmitIntValue(0, AddressSize); 384 MS->EmitIntValue(0, AddressSize); 385 RangesSectionSize += 2 * AddressSize; 386 } 387 388 /// Emit location lists for \p Unit and update attributes to point to the new 389 /// entries. 390 void DwarfStreamer::emitLocationsForUnit(const CompileUnit &Unit, 391 DWARFContext &Dwarf) { 392 const auto &Attributes = Unit.getLocationAttributes(); 393 394 if (Attributes.empty()) 395 return; 396 397 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfLocSection()); 398 399 unsigned AddressSize = Unit.getOrigUnit().getAddressByteSize(); 400 const DWARFSection &InputSec = Dwarf.getDWARFObj().getLocSection(); 401 DataExtractor Data(InputSec.Data, Dwarf.isLittleEndian(), AddressSize); 402 DWARFUnit &OrigUnit = Unit.getOrigUnit(); 403 auto OrigUnitDie = OrigUnit.getUnitDIE(false); 404 int64_t UnitPcOffset = 0; 405 if (auto OrigLowPc = dwarf::toAddress(OrigUnitDie.find(dwarf::DW_AT_low_pc))) 406 UnitPcOffset = int64_t(*OrigLowPc) - Unit.getLowPc(); 407 408 for (const auto &Attr : Attributes) { 409 uint32_t Offset = Attr.first.get(); 410 Attr.first.set(LocSectionSize); 411 // This is the quantity to add to the old location address to get 412 // the correct address for the new one. 413 int64_t LocPcOffset = Attr.second + UnitPcOffset; 414 while (Data.isValidOffset(Offset)) { 415 uint64_t Low = Data.getUnsigned(&Offset, AddressSize); 416 uint64_t High = Data.getUnsigned(&Offset, AddressSize); 417 LocSectionSize += 2 * AddressSize; 418 if (Low == 0 && High == 0) { 419 Asm->OutStreamer->EmitIntValue(0, AddressSize); 420 Asm->OutStreamer->EmitIntValue(0, AddressSize); 421 break; 422 } 423 Asm->OutStreamer->EmitIntValue(Low + LocPcOffset, AddressSize); 424 Asm->OutStreamer->EmitIntValue(High + LocPcOffset, AddressSize); 425 uint64_t Length = Data.getU16(&Offset); 426 Asm->OutStreamer->EmitIntValue(Length, 2); 427 // Just copy the bytes over. 428 Asm->OutStreamer->EmitBytes( 429 StringRef(InputSec.Data.substr(Offset, Length))); 430 Offset += Length; 431 LocSectionSize += Length + 2; 432 } 433 } 434 } 435 436 void DwarfStreamer::emitLineTableForUnit(MCDwarfLineTableParams Params, 437 StringRef PrologueBytes, 438 unsigned MinInstLength, 439 std::vector<DWARFDebugLine::Row> &Rows, 440 unsigned PointerSize) { 441 // Switch to the section where the table will be emitted into. 442 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfLineSection()); 443 MCSymbol *LineStartSym = MC->createTempSymbol(); 444 MCSymbol *LineEndSym = MC->createTempSymbol(); 445 446 // The first 4 bytes is the total length of the information for this 447 // compilation unit (not including these 4 bytes for the length). 448 Asm->EmitLabelDifference(LineEndSym, LineStartSym, 4); 449 Asm->OutStreamer->EmitLabel(LineStartSym); 450 // Copy Prologue. 451 MS->EmitBytes(PrologueBytes); 452 LineSectionSize += PrologueBytes.size() + 4; 453 454 SmallString<128> EncodingBuffer; 455 raw_svector_ostream EncodingOS(EncodingBuffer); 456 457 if (Rows.empty()) { 458 // We only have the dummy entry, dsymutil emits an entry with a 0 459 // address in that case. 460 MCDwarfLineAddr::Encode(*MC, Params, std::numeric_limits<int64_t>::max(), 0, 461 EncodingOS); 462 MS->EmitBytes(EncodingOS.str()); 463 LineSectionSize += EncodingBuffer.size(); 464 MS->EmitLabel(LineEndSym); 465 return; 466 } 467 468 // Line table state machine fields 469 unsigned FileNum = 1; 470 unsigned LastLine = 1; 471 unsigned Column = 0; 472 unsigned IsStatement = 1; 473 unsigned Isa = 0; 474 uint64_t Address = -1ULL; 475 476 unsigned RowsSinceLastSequence = 0; 477 478 for (unsigned Idx = 0; Idx < Rows.size(); ++Idx) { 479 auto &Row = Rows[Idx]; 480 481 int64_t AddressDelta; 482 if (Address == -1ULL) { 483 MS->EmitIntValue(dwarf::DW_LNS_extended_op, 1); 484 MS->EmitULEB128IntValue(PointerSize + 1); 485 MS->EmitIntValue(dwarf::DW_LNE_set_address, 1); 486 MS->EmitIntValue(Row.Address, PointerSize); 487 LineSectionSize += 2 + PointerSize + getULEB128Size(PointerSize + 1); 488 AddressDelta = 0; 489 } else { 490 AddressDelta = (Row.Address - Address) / MinInstLength; 491 } 492 493 // FIXME: code copied and transformed from MCDwarf.cpp::EmitDwarfLineTable. 494 // We should find a way to share this code, but the current compatibility 495 // requirement with classic dsymutil makes it hard. Revisit that once this 496 // requirement is dropped. 497 498 if (FileNum != Row.File) { 499 FileNum = Row.File; 500 MS->EmitIntValue(dwarf::DW_LNS_set_file, 1); 501 MS->EmitULEB128IntValue(FileNum); 502 LineSectionSize += 1 + getULEB128Size(FileNum); 503 } 504 if (Column != Row.Column) { 505 Column = Row.Column; 506 MS->EmitIntValue(dwarf::DW_LNS_set_column, 1); 507 MS->EmitULEB128IntValue(Column); 508 LineSectionSize += 1 + getULEB128Size(Column); 509 } 510 511 // FIXME: We should handle the discriminator here, but dsymutil doesn't 512 // consider it, thus ignore it for now. 513 514 if (Isa != Row.Isa) { 515 Isa = Row.Isa; 516 MS->EmitIntValue(dwarf::DW_LNS_set_isa, 1); 517 MS->EmitULEB128IntValue(Isa); 518 LineSectionSize += 1 + getULEB128Size(Isa); 519 } 520 if (IsStatement != Row.IsStmt) { 521 IsStatement = Row.IsStmt; 522 MS->EmitIntValue(dwarf::DW_LNS_negate_stmt, 1); 523 LineSectionSize += 1; 524 } 525 if (Row.BasicBlock) { 526 MS->EmitIntValue(dwarf::DW_LNS_set_basic_block, 1); 527 LineSectionSize += 1; 528 } 529 530 if (Row.PrologueEnd) { 531 MS->EmitIntValue(dwarf::DW_LNS_set_prologue_end, 1); 532 LineSectionSize += 1; 533 } 534 535 if (Row.EpilogueBegin) { 536 MS->EmitIntValue(dwarf::DW_LNS_set_epilogue_begin, 1); 537 LineSectionSize += 1; 538 } 539 540 int64_t LineDelta = int64_t(Row.Line) - LastLine; 541 if (!Row.EndSequence) { 542 MCDwarfLineAddr::Encode(*MC, Params, LineDelta, AddressDelta, EncodingOS); 543 MS->EmitBytes(EncodingOS.str()); 544 LineSectionSize += EncodingBuffer.size(); 545 EncodingBuffer.resize(0); 546 Address = Row.Address; 547 LastLine = Row.Line; 548 RowsSinceLastSequence++; 549 } else { 550 if (LineDelta) { 551 MS->EmitIntValue(dwarf::DW_LNS_advance_line, 1); 552 MS->EmitSLEB128IntValue(LineDelta); 553 LineSectionSize += 1 + getSLEB128Size(LineDelta); 554 } 555 if (AddressDelta) { 556 MS->EmitIntValue(dwarf::DW_LNS_advance_pc, 1); 557 MS->EmitULEB128IntValue(AddressDelta); 558 LineSectionSize += 1 + getULEB128Size(AddressDelta); 559 } 560 MCDwarfLineAddr::Encode(*MC, Params, std::numeric_limits<int64_t>::max(), 561 0, EncodingOS); 562 MS->EmitBytes(EncodingOS.str()); 563 LineSectionSize += EncodingBuffer.size(); 564 EncodingBuffer.resize(0); 565 Address = -1ULL; 566 LastLine = FileNum = IsStatement = 1; 567 RowsSinceLastSequence = Column = Isa = 0; 568 } 569 } 570 571 if (RowsSinceLastSequence) { 572 MCDwarfLineAddr::Encode(*MC, Params, std::numeric_limits<int64_t>::max(), 0, 573 EncodingOS); 574 MS->EmitBytes(EncodingOS.str()); 575 LineSectionSize += EncodingBuffer.size(); 576 EncodingBuffer.resize(0); 577 } 578 579 MS->EmitLabel(LineEndSym); 580 } 581 582 static void emitSectionContents(const object::ObjectFile &Obj, 583 StringRef SecName, MCStreamer *MS) { 584 StringRef Contents; 585 if (auto Sec = getSectionByName(Obj, SecName)) 586 if (!Sec->getContents(Contents)) 587 MS->EmitBytes(Contents); 588 } 589 590 void DwarfStreamer::copyInvariantDebugSection(const object::ObjectFile &Obj) { 591 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfLineSection()); 592 emitSectionContents(Obj, "debug_line", MS); 593 594 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfLocSection()); 595 emitSectionContents(Obj, "debug_loc", MS); 596 597 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfRangesSection()); 598 emitSectionContents(Obj, "debug_ranges", MS); 599 600 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfFrameSection()); 601 emitSectionContents(Obj, "debug_frame", MS); 602 603 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfARangesSection()); 604 emitSectionContents(Obj, "debug_aranges", MS); 605 } 606 607 /// Emit the pubnames or pubtypes section contribution for \p 608 /// Unit into \p Sec. The data is provided in \p Names. 609 void DwarfStreamer::emitPubSectionForUnit( 610 MCSection *Sec, StringRef SecName, const CompileUnit &Unit, 611 const std::vector<CompileUnit::AccelInfo> &Names) { 612 if (Names.empty()) 613 return; 614 615 // Start the dwarf pubnames section. 616 Asm->OutStreamer->SwitchSection(Sec); 617 MCSymbol *BeginLabel = Asm->createTempSymbol("pub" + SecName + "_begin"); 618 MCSymbol *EndLabel = Asm->createTempSymbol("pub" + SecName + "_end"); 619 620 bool HeaderEmitted = false; 621 // Emit the pubnames for this compilation unit. 622 for (const auto &Name : Names) { 623 if (Name.SkipPubSection) 624 continue; 625 626 if (!HeaderEmitted) { 627 // Emit the header. 628 Asm->EmitLabelDifference(EndLabel, BeginLabel, 4); // Length 629 Asm->OutStreamer->EmitLabel(BeginLabel); 630 Asm->emitInt16(dwarf::DW_PUBNAMES_VERSION); // Version 631 Asm->emitInt32(Unit.getStartOffset()); // Unit offset 632 Asm->emitInt32(Unit.getNextUnitOffset() - Unit.getStartOffset()); // Size 633 HeaderEmitted = true; 634 } 635 Asm->emitInt32(Name.Die->getOffset()); 636 637 // Emit the string itself. 638 Asm->OutStreamer->EmitBytes(Name.Name.getString()); 639 // Emit a null terminator. 640 Asm->emitInt8(0); 641 } 642 643 if (!HeaderEmitted) 644 return; 645 Asm->emitInt32(0); // End marker. 646 Asm->OutStreamer->EmitLabel(EndLabel); 647 } 648 649 /// Emit .debug_pubnames for \p Unit. 650 void DwarfStreamer::emitPubNamesForUnit(const CompileUnit &Unit) { 651 emitPubSectionForUnit(MC->getObjectFileInfo()->getDwarfPubNamesSection(), 652 "names", Unit, Unit.getPubnames()); 653 } 654 655 /// Emit .debug_pubtypes for \p Unit. 656 void DwarfStreamer::emitPubTypesForUnit(const CompileUnit &Unit) { 657 emitPubSectionForUnit(MC->getObjectFileInfo()->getDwarfPubTypesSection(), 658 "types", Unit, Unit.getPubtypes()); 659 } 660 661 /// Emit a CIE into the debug_frame section. 662 void DwarfStreamer::emitCIE(StringRef CIEBytes) { 663 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfFrameSection()); 664 665 MS->EmitBytes(CIEBytes); 666 FrameSectionSize += CIEBytes.size(); 667 } 668 669 /// Emit a FDE into the debug_frame section. \p FDEBytes 670 /// contains the FDE data without the length, CIE offset and address 671 /// which will be replaced with the parameter values. 672 void DwarfStreamer::emitFDE(uint32_t CIEOffset, uint32_t AddrSize, 673 uint32_t Address, StringRef FDEBytes) { 674 MS->SwitchSection(MC->getObjectFileInfo()->getDwarfFrameSection()); 675 676 MS->EmitIntValue(FDEBytes.size() + 4 + AddrSize, 4); 677 MS->EmitIntValue(CIEOffset, 4); 678 MS->EmitIntValue(Address, AddrSize); 679 MS->EmitBytes(FDEBytes); 680 FrameSectionSize += FDEBytes.size() + 8 + AddrSize; 681 } 682 683 } // namespace dsymutil 684 } // namespace llvm 685