1 //===- DWARFContext.cpp ---------------------------------------------------===//
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 "llvm/DebugInfo/DWARF/DWARFContext.h"
11 #include "llvm/ADT/STLExtras.h"
12 #include "llvm/ADT/SmallString.h"
13 #include "llvm/ADT/SmallVector.h"
14 #include "llvm/ADT/StringRef.h"
15 #include "llvm/ADT/StringSwitch.h"
16 #include "llvm/BinaryFormat/Dwarf.h"
17 #include "llvm/DebugInfo/DWARF/DWARFAcceleratorTable.h"
18 #include "llvm/DebugInfo/DWARF/DWARFCompileUnit.h"
19 #include "llvm/DebugInfo/DWARF/DWARFDebugAbbrev.h"
20 #include "llvm/DebugInfo/DWARF/DWARFDebugAddr.h"
21 #include "llvm/DebugInfo/DWARF/DWARFDebugArangeSet.h"
22 #include "llvm/DebugInfo/DWARF/DWARFDebugAranges.h"
23 #include "llvm/DebugInfo/DWARF/DWARFDebugFrame.h"
24 #include "llvm/DebugInfo/DWARF/DWARFDebugLine.h"
25 #include "llvm/DebugInfo/DWARF/DWARFDebugLoc.h"
26 #include "llvm/DebugInfo/DWARF/DWARFDebugMacro.h"
27 #include "llvm/DebugInfo/DWARF/DWARFDebugPubTable.h"
28 #include "llvm/DebugInfo/DWARF/DWARFDebugRangeList.h"
29 #include "llvm/DebugInfo/DWARF/DWARFDebugRnglists.h"
30 #include "llvm/DebugInfo/DWARF/DWARFDie.h"
31 #include "llvm/DebugInfo/DWARF/DWARFFormValue.h"
32 #include "llvm/DebugInfo/DWARF/DWARFGdbIndex.h"
33 #include "llvm/DebugInfo/DWARF/DWARFSection.h"
34 #include "llvm/DebugInfo/DWARF/DWARFUnitIndex.h"
35 #include "llvm/DebugInfo/DWARF/DWARFVerifier.h"
36 #include "llvm/MC/MCRegisterInfo.h"
37 #include "llvm/Object/Decompressor.h"
38 #include "llvm/Object/MachO.h"
39 #include "llvm/Object/ObjectFile.h"
40 #include "llvm/Object/RelocVisitor.h"
41 #include "llvm/Support/Casting.h"
42 #include "llvm/Support/DataExtractor.h"
43 #include "llvm/Support/Error.h"
44 #include "llvm/Support/Format.h"
45 #include "llvm/Support/MemoryBuffer.h"
46 #include "llvm/Support/Path.h"
47 #include "llvm/Support/TargetRegistry.h"
48 #include "llvm/Support/WithColor.h"
49 #include "llvm/Support/raw_ostream.h"
50 #include <algorithm>
51 #include <cstdint>
52 #include <deque>
53 #include <map>
54 #include <string>
55 #include <utility>
56 #include <vector>
57 
58 using namespace llvm;
59 using namespace dwarf;
60 using namespace object;
61 
62 #define DEBUG_TYPE "dwarf"
63 
64 using DWARFLineTable = DWARFDebugLine::LineTable;
65 using FileLineInfoKind = DILineInfoSpecifier::FileLineInfoKind;
66 using FunctionNameKind = DILineInfoSpecifier::FunctionNameKind;
67 
DWARFContext(std::unique_ptr<const DWARFObject> DObj,std::string DWPName)68 DWARFContext::DWARFContext(std::unique_ptr<const DWARFObject> DObj,
69                            std::string DWPName)
70     : DIContext(CK_DWARF), DWPName(std::move(DWPName)), DObj(std::move(DObj)) {}
71 
72 DWARFContext::~DWARFContext() = default;
73 
74 /// Dump the UUID load command.
dumpUUID(raw_ostream & OS,const ObjectFile & Obj)75 static void dumpUUID(raw_ostream &OS, const ObjectFile &Obj) {
76   auto *MachO = dyn_cast<MachOObjectFile>(&Obj);
77   if (!MachO)
78     return;
79   for (auto LC : MachO->load_commands()) {
80     raw_ostream::uuid_t UUID;
81     if (LC.C.cmd == MachO::LC_UUID) {
82       if (LC.C.cmdsize < sizeof(UUID) + sizeof(LC.C)) {
83         OS << "error: UUID load command is too short.\n";
84         return;
85       }
86       OS << "UUID: ";
87       memcpy(&UUID, LC.Ptr+sizeof(LC.C), sizeof(UUID));
88       OS.write_uuid(UUID);
89       Triple T = MachO->getArchTriple();
90       OS << " (" << T.getArchName() << ')';
91       OS << ' ' << MachO->getFileName() << '\n';
92     }
93   }
94 }
95 
96 using ContributionCollection =
97     std::vector<Optional<StrOffsetsContributionDescriptor>>;
98 
99 // Collect all the contributions to the string offsets table from all units,
100 // sort them by their starting offsets and remove duplicates.
101 static ContributionCollection
collectContributionData(DWARFContext::unit_iterator_range Units)102 collectContributionData(DWARFContext::unit_iterator_range Units) {
103   ContributionCollection Contributions;
104   for (const auto &U : Units)
105     Contributions.push_back(U->getStringOffsetsTableContribution());
106   // Sort the contributions so that any invalid ones are placed at
107   // the start of the contributions vector. This way they are reported
108   // first.
109   llvm::sort(Contributions,
110              [](const Optional<StrOffsetsContributionDescriptor> &L,
111                 const Optional<StrOffsetsContributionDescriptor> &R) {
112                if (L && R)
113                  return L->Base < R->Base;
114                return R.hasValue();
115              });
116 
117   // Uniquify contributions, as it is possible that units (specifically
118   // type units in dwo or dwp files) share contributions. We don't want
119   // to report them more than once.
120   Contributions.erase(
121       std::unique(Contributions.begin(), Contributions.end(),
122                   [](const Optional<StrOffsetsContributionDescriptor> &L,
123                      const Optional<StrOffsetsContributionDescriptor> &R) {
124                     if (L && R)
125                       return L->Base == R->Base && L->Size == R->Size;
126                     return false;
127                   }),
128       Contributions.end());
129   return Contributions;
130 }
131 
dumpDWARFv5StringOffsetsSection(raw_ostream & OS,StringRef SectionName,const DWARFObject & Obj,const DWARFSection & StringOffsetsSection,StringRef StringSection,DWARFContext::unit_iterator_range Units,bool LittleEndian)132 static void dumpDWARFv5StringOffsetsSection(
133     raw_ostream &OS, StringRef SectionName, const DWARFObject &Obj,
134     const DWARFSection &StringOffsetsSection, StringRef StringSection,
135     DWARFContext::unit_iterator_range Units, bool LittleEndian) {
136   auto Contributions = collectContributionData(Units);
137   DWARFDataExtractor StrOffsetExt(Obj, StringOffsetsSection, LittleEndian, 0);
138   DataExtractor StrData(StringSection, LittleEndian, 0);
139   uint64_t SectionSize = StringOffsetsSection.Data.size();
140   uint32_t Offset = 0;
141   for (auto &Contribution : Contributions) {
142     // Report an ill-formed contribution.
143     if (!Contribution) {
144       OS << "error: invalid contribution to string offsets table in section ."
145          << SectionName << ".\n";
146       return;
147     }
148 
149     dwarf::DwarfFormat Format = Contribution->getFormat();
150     uint16_t Version = Contribution->getVersion();
151     uint64_t ContributionHeader = Contribution->Base;
152     // In DWARF v5 there is a contribution header that immediately precedes
153     // the string offsets base (the location we have previously retrieved from
154     // the CU DIE's DW_AT_str_offsets attribute). The header is located either
155     // 8 or 16 bytes before the base, depending on the contribution's format.
156     if (Version >= 5)
157       ContributionHeader -= Format == DWARF32 ? 8 : 16;
158 
159     // Detect overlapping contributions.
160     if (Offset > ContributionHeader) {
161       OS << "error: overlapping contributions to string offsets table in "
162             "section ."
163          << SectionName << ".\n";
164       return;
165     }
166     // Report a gap in the table.
167     if (Offset < ContributionHeader) {
168       OS << format("0x%8.8x: Gap, length = ", Offset);
169       OS << (ContributionHeader - Offset) << "\n";
170     }
171     OS << format("0x%8.8x: ", (uint32_t)ContributionHeader);
172     // In DWARF v5 the contribution size in the descriptor does not equal
173     // the originally encoded length (it does not contain the length of the
174     // version field and the padding, a total of 4 bytes). Add them back in
175     // for reporting.
176     OS << "Contribution size = " << (Contribution->Size + (Version < 5 ? 0 : 4))
177        << ", Format = " << (Format == DWARF32 ? "DWARF32" : "DWARF64")
178        << ", Version = " << Version << "\n";
179 
180     Offset = Contribution->Base;
181     unsigned EntrySize = Contribution->getDwarfOffsetByteSize();
182     while (Offset - Contribution->Base < Contribution->Size) {
183       OS << format("0x%8.8x: ", Offset);
184       // FIXME: We can only extract strings if the offset fits in 32 bits.
185       uint64_t StringOffset =
186           StrOffsetExt.getRelocatedValue(EntrySize, &Offset);
187       // Extract the string if we can and display it. Otherwise just report
188       // the offset.
189       if (StringOffset <= std::numeric_limits<uint32_t>::max()) {
190         uint32_t StringOffset32 = (uint32_t)StringOffset;
191         OS << format("%8.8x ", StringOffset32);
192         const char *S = StrData.getCStr(&StringOffset32);
193         if (S)
194           OS << format("\"%s\"", S);
195       } else
196         OS << format("%16.16" PRIx64 " ", StringOffset);
197       OS << "\n";
198     }
199   }
200   // Report a gap at the end of the table.
201   if (Offset < SectionSize) {
202     OS << format("0x%8.8x: Gap, length = ", Offset);
203     OS << (SectionSize - Offset) << "\n";
204   }
205 }
206 
207 // Dump a DWARF string offsets section. This may be a DWARF v5 formatted
208 // string offsets section, where each compile or type unit contributes a
209 // number of entries (string offsets), with each contribution preceded by
210 // a header containing size and version number. Alternatively, it may be a
211 // monolithic series of string offsets, as generated by the pre-DWARF v5
212 // implementation of split DWARF.
dumpStringOffsetsSection(raw_ostream & OS,StringRef SectionName,const DWARFObject & Obj,const DWARFSection & StringOffsetsSection,StringRef StringSection,DWARFContext::unit_iterator_range Units,bool LittleEndian,unsigned MaxVersion)213 static void dumpStringOffsetsSection(raw_ostream &OS, StringRef SectionName,
214                                      const DWARFObject &Obj,
215                                      const DWARFSection &StringOffsetsSection,
216                                      StringRef StringSection,
217                                      DWARFContext::unit_iterator_range Units,
218                                      bool LittleEndian, unsigned MaxVersion) {
219   // If we have at least one (compile or type) unit with DWARF v5 or greater,
220   // we assume that the section is formatted like a DWARF v5 string offsets
221   // section.
222   if (MaxVersion >= 5)
223     dumpDWARFv5StringOffsetsSection(OS, SectionName, Obj, StringOffsetsSection,
224                                     StringSection, Units, LittleEndian);
225   else {
226     DataExtractor strOffsetExt(StringOffsetsSection.Data, LittleEndian, 0);
227     uint32_t offset = 0;
228     uint64_t size = StringOffsetsSection.Data.size();
229     // Ensure that size is a multiple of the size of an entry.
230     if (size & ((uint64_t)(sizeof(uint32_t) - 1))) {
231       OS << "error: size of ." << SectionName << " is not a multiple of "
232          << sizeof(uint32_t) << ".\n";
233       size &= -(uint64_t)sizeof(uint32_t);
234     }
235     DataExtractor StrData(StringSection, LittleEndian, 0);
236     while (offset < size) {
237       OS << format("0x%8.8x: ", offset);
238       uint32_t StringOffset = strOffsetExt.getU32(&offset);
239       OS << format("%8.8x  ", StringOffset);
240       const char *S = StrData.getCStr(&StringOffset);
241       if (S)
242         OS << format("\"%s\"", S);
243       OS << "\n";
244     }
245   }
246 }
247 
248 // Dump the .debug_addr section.
dumpAddrSection(raw_ostream & OS,DWARFDataExtractor & AddrData,DIDumpOptions DumpOpts,uint16_t Version,uint8_t AddrSize)249 static void dumpAddrSection(raw_ostream &OS, DWARFDataExtractor &AddrData,
250                             DIDumpOptions DumpOpts, uint16_t Version,
251                             uint8_t AddrSize) {
252   uint32_t Offset = 0;
253   while (AddrData.isValidOffset(Offset)) {
254     DWARFDebugAddrTable AddrTable;
255     uint32_t TableOffset = Offset;
256     if (Error Err = AddrTable.extract(AddrData, &Offset, Version, AddrSize,
257                                       DWARFContext::dumpWarning)) {
258       WithColor::error() << toString(std::move(Err)) << '\n';
259       // Keep going after an error, if we can, assuming that the length field
260       // could be read. If it couldn't, stop reading the section.
261       if (!AddrTable.hasValidLength())
262         break;
263       uint64_t Length = AddrTable.getLength();
264       Offset = TableOffset + Length;
265     } else {
266       AddrTable.dump(OS, DumpOpts);
267     }
268   }
269 }
270 
271 // Dump the .debug_rnglists or .debug_rnglists.dwo section (DWARF v5).
272 static void
dumpRnglistsSection(raw_ostream & OS,DWARFDataExtractor & rnglistData,llvm::function_ref<Optional<SectionedAddress> (uint32_t)> LookupPooledAddress,DIDumpOptions DumpOpts)273 dumpRnglistsSection(raw_ostream &OS, DWARFDataExtractor &rnglistData,
274                     llvm::function_ref<Optional<SectionedAddress>(uint32_t)>
275                         LookupPooledAddress,
276                     DIDumpOptions DumpOpts) {
277   uint32_t Offset = 0;
278   while (rnglistData.isValidOffset(Offset)) {
279     llvm::DWARFDebugRnglistTable Rnglists;
280     uint32_t TableOffset = Offset;
281     if (Error Err = Rnglists.extract(rnglistData, &Offset)) {
282       WithColor::error() << toString(std::move(Err)) << '\n';
283       uint64_t Length = Rnglists.length();
284       // Keep going after an error, if we can, assuming that the length field
285       // could be read. If it couldn't, stop reading the section.
286       if (Length == 0)
287         break;
288       Offset = TableOffset + Length;
289     } else {
290       Rnglists.dump(OS, LookupPooledAddress, DumpOpts);
291     }
292   }
293 }
294 
dumpLoclistsSection(raw_ostream & OS,DIDumpOptions DumpOpts,DWARFDataExtractor Data,const MCRegisterInfo * MRI,Optional<uint64_t> DumpOffset)295 static void dumpLoclistsSection(raw_ostream &OS, DIDumpOptions DumpOpts,
296                                 DWARFDataExtractor Data,
297                                 const MCRegisterInfo *MRI,
298                                 Optional<uint64_t> DumpOffset) {
299   uint32_t Offset = 0;
300   DWARFDebugLoclists Loclists;
301 
302   DWARFListTableHeader Header(".debug_loclists", "locations");
303   if (Error E = Header.extract(Data, &Offset)) {
304     WithColor::error() << toString(std::move(E)) << '\n';
305     return;
306   }
307 
308   Header.dump(OS, DumpOpts);
309   DataExtractor LocData(Data.getData().drop_front(Offset),
310                         Data.isLittleEndian(), Header.getAddrSize());
311 
312   Loclists.parse(LocData, Header.getVersion());
313   Loclists.dump(OS, 0, MRI, DumpOffset);
314 }
315 
dump(raw_ostream & OS,DIDumpOptions DumpOpts,std::array<Optional<uint64_t>,DIDT_ID_Count> DumpOffsets)316 void DWARFContext::dump(
317     raw_ostream &OS, DIDumpOptions DumpOpts,
318     std::array<Optional<uint64_t>, DIDT_ID_Count> DumpOffsets) {
319 
320   uint64_t DumpType = DumpOpts.DumpType;
321 
322   StringRef Extension = sys::path::extension(DObj->getFileName());
323   bool IsDWO = (Extension == ".dwo") || (Extension == ".dwp");
324 
325   // Print UUID header.
326   const auto *ObjFile = DObj->getFile();
327   if (DumpType & DIDT_UUID)
328     dumpUUID(OS, *ObjFile);
329 
330   // Print a header for each explicitly-requested section.
331   // Otherwise just print one for non-empty sections.
332   // Only print empty .dwo section headers when dumping a .dwo file.
333   bool Explicit = DumpType != DIDT_All && !IsDWO;
334   bool ExplicitDWO = Explicit && IsDWO;
335   auto shouldDump = [&](bool Explicit, const char *Name, unsigned ID,
336                         StringRef Section) -> Optional<uint64_t> * {
337     unsigned Mask = 1U << ID;
338     bool Should = (DumpType & Mask) && (Explicit || !Section.empty());
339     if (!Should)
340       return nullptr;
341     OS << "\n" << Name << " contents:\n";
342     return &DumpOffsets[ID];
343   };
344 
345   // Dump individual sections.
346   if (shouldDump(Explicit, ".debug_abbrev", DIDT_ID_DebugAbbrev,
347                  DObj->getAbbrevSection()))
348     getDebugAbbrev()->dump(OS);
349   if (shouldDump(ExplicitDWO, ".debug_abbrev.dwo", DIDT_ID_DebugAbbrev,
350                  DObj->getAbbrevDWOSection()))
351     getDebugAbbrevDWO()->dump(OS);
352 
353   auto dumpDebugInfo = [&](const char *Name, unit_iterator_range Units) {
354     OS << '\n' << Name << " contents:\n";
355     if (auto DumpOffset = DumpOffsets[DIDT_ID_DebugInfo])
356       for (const auto &U : Units)
357         U->getDIEForOffset(DumpOffset.getValue())
358             .dump(OS, 0, DumpOpts.noImplicitRecursion());
359     else
360       for (const auto &U : Units)
361         U->dump(OS, DumpOpts);
362   };
363   if ((DumpType & DIDT_DebugInfo)) {
364     if (Explicit || getNumCompileUnits())
365       dumpDebugInfo(".debug_info", info_section_units());
366     if (ExplicitDWO || getNumDWOCompileUnits())
367       dumpDebugInfo(".debug_info.dwo", dwo_info_section_units());
368   }
369 
370   auto dumpDebugType = [&](const char *Name, unit_iterator_range Units) {
371     OS << '\n' << Name << " contents:\n";
372     for (const auto &U : Units)
373       if (auto DumpOffset = DumpOffsets[DIDT_ID_DebugTypes])
374         U->getDIEForOffset(*DumpOffset)
375             .dump(OS, 0, DumpOpts.noImplicitRecursion());
376       else
377         U->dump(OS, DumpOpts);
378   };
379   if ((DumpType & DIDT_DebugTypes)) {
380     if (Explicit || getNumTypeUnits())
381       dumpDebugType(".debug_types", types_section_units());
382     if (ExplicitDWO || getNumDWOTypeUnits())
383       dumpDebugType(".debug_types.dwo", dwo_types_section_units());
384   }
385 
386   if (const auto *Off = shouldDump(Explicit, ".debug_loc", DIDT_ID_DebugLoc,
387                                    DObj->getLocSection().Data)) {
388     getDebugLoc()->dump(OS, getRegisterInfo(), *Off);
389   }
390   if (const auto *Off =
391           shouldDump(Explicit, ".debug_loclists", DIDT_ID_DebugLoclists,
392                      DObj->getLoclistsSection().Data)) {
393     DWARFDataExtractor Data(*DObj, DObj->getLoclistsSection(), isLittleEndian(),
394                             0);
395     dumpLoclistsSection(OS, DumpOpts, Data, getRegisterInfo(), *Off);
396   }
397   if (const auto *Off =
398           shouldDump(ExplicitDWO, ".debug_loc.dwo", DIDT_ID_DebugLoc,
399                      DObj->getLocDWOSection().Data)) {
400     getDebugLocDWO()->dump(OS, 0, getRegisterInfo(), *Off);
401   }
402 
403   if (const auto *Off = shouldDump(Explicit, ".debug_frame", DIDT_ID_DebugFrame,
404                                    DObj->getDebugFrameSection()))
405     getDebugFrame()->dump(OS, getRegisterInfo(), *Off);
406 
407   if (const auto *Off = shouldDump(Explicit, ".eh_frame", DIDT_ID_DebugFrame,
408                                    DObj->getEHFrameSection()))
409     getEHFrame()->dump(OS, getRegisterInfo(), *Off);
410 
411   if (DumpType & DIDT_DebugMacro) {
412     if (Explicit || !getDebugMacro()->empty()) {
413       OS << "\n.debug_macinfo contents:\n";
414       getDebugMacro()->dump(OS);
415     }
416   }
417 
418   if (shouldDump(Explicit, ".debug_aranges", DIDT_ID_DebugAranges,
419                  DObj->getARangeSection())) {
420     uint32_t offset = 0;
421     DataExtractor arangesData(DObj->getARangeSection(), isLittleEndian(), 0);
422     DWARFDebugArangeSet set;
423     while (set.extract(arangesData, &offset))
424       set.dump(OS);
425   }
426 
427   auto DumpLineSection = [&](DWARFDebugLine::SectionParser Parser,
428                              DIDumpOptions DumpOpts,
429                              Optional<uint64_t> DumpOffset) {
430     while (!Parser.done()) {
431       if (DumpOffset && Parser.getOffset() != *DumpOffset) {
432         Parser.skip(dumpWarning);
433         continue;
434       }
435       OS << "debug_line[" << format("0x%8.8x", Parser.getOffset()) << "]\n";
436       if (DumpOpts.Verbose) {
437         Parser.parseNext(dumpWarning, dumpWarning, &OS);
438       } else {
439         DWARFDebugLine::LineTable LineTable =
440             Parser.parseNext(dumpWarning, dumpWarning);
441         LineTable.dump(OS, DumpOpts);
442       }
443     }
444   };
445 
446   if (const auto *Off = shouldDump(Explicit, ".debug_line", DIDT_ID_DebugLine,
447                                    DObj->getLineSection().Data)) {
448     DWARFDataExtractor LineData(*DObj, DObj->getLineSection(), isLittleEndian(),
449                                 0);
450     DWARFDebugLine::SectionParser Parser(LineData, *this, compile_units(),
451                                          type_units());
452     DumpLineSection(Parser, DumpOpts, *Off);
453   }
454 
455   if (const auto *Off =
456           shouldDump(ExplicitDWO, ".debug_line.dwo", DIDT_ID_DebugLine,
457                      DObj->getLineDWOSection().Data)) {
458     DWARFDataExtractor LineData(*DObj, DObj->getLineDWOSection(),
459                                 isLittleEndian(), 0);
460     DWARFDebugLine::SectionParser Parser(LineData, *this, dwo_compile_units(),
461                                          dwo_type_units());
462     DumpLineSection(Parser, DumpOpts, *Off);
463   }
464 
465   if (shouldDump(Explicit, ".debug_cu_index", DIDT_ID_DebugCUIndex,
466                  DObj->getCUIndexSection())) {
467     getCUIndex().dump(OS);
468   }
469 
470   if (shouldDump(Explicit, ".debug_tu_index", DIDT_ID_DebugTUIndex,
471                  DObj->getTUIndexSection())) {
472     getTUIndex().dump(OS);
473   }
474 
475   if (shouldDump(Explicit, ".debug_str", DIDT_ID_DebugStr,
476                  DObj->getStringSection())) {
477     DataExtractor strData(DObj->getStringSection(), isLittleEndian(), 0);
478     uint32_t offset = 0;
479     uint32_t strOffset = 0;
480     while (const char *s = strData.getCStr(&offset)) {
481       OS << format("0x%8.8x: \"%s\"\n", strOffset, s);
482       strOffset = offset;
483     }
484   }
485   if (shouldDump(ExplicitDWO, ".debug_str.dwo", DIDT_ID_DebugStr,
486                  DObj->getStringDWOSection())) {
487     DataExtractor strDWOData(DObj->getStringDWOSection(), isLittleEndian(), 0);
488     uint32_t offset = 0;
489     uint32_t strDWOOffset = 0;
490     while (const char *s = strDWOData.getCStr(&offset)) {
491       OS << format("0x%8.8x: \"%s\"\n", strDWOOffset, s);
492       strDWOOffset = offset;
493     }
494   }
495   if (shouldDump(Explicit, ".debug_line_str", DIDT_ID_DebugLineStr,
496                  DObj->getLineStringSection())) {
497     DataExtractor strData(DObj->getLineStringSection(), isLittleEndian(), 0);
498     uint32_t offset = 0;
499     uint32_t strOffset = 0;
500     while (const char *s = strData.getCStr(&offset)) {
501       OS << format("0x%8.8x: \"", strOffset);
502       OS.write_escaped(s);
503       OS << "\"\n";
504       strOffset = offset;
505     }
506   }
507 
508   if (shouldDump(Explicit, ".debug_addr", DIDT_ID_DebugAddr,
509                  DObj->getAddrSection().Data)) {
510     DWARFDataExtractor AddrData(*DObj, DObj->getAddrSection(),
511                                    isLittleEndian(), 0);
512     dumpAddrSection(OS, AddrData, DumpOpts, getMaxVersion(), getCUAddrSize());
513   }
514 
515   if (shouldDump(Explicit, ".debug_ranges", DIDT_ID_DebugRanges,
516                  DObj->getRangeSection().Data)) {
517     uint8_t savedAddressByteSize = getCUAddrSize();
518     DWARFDataExtractor rangesData(*DObj, DObj->getRangeSection(),
519                                   isLittleEndian(), savedAddressByteSize);
520     uint32_t offset = 0;
521     DWARFDebugRangeList rangeList;
522     while (rangesData.isValidOffset(offset)) {
523       if (Error E = rangeList.extract(rangesData, &offset)) {
524         WithColor::error() << toString(std::move(E)) << '\n';
525         break;
526       }
527       rangeList.dump(OS);
528     }
529   }
530 
531   auto LookupPooledAddress = [&](uint32_t Index) -> Optional<SectionedAddress> {
532     const auto &CUs = compile_units();
533     auto I = CUs.begin();
534     if (I == CUs.end())
535       return None;
536     return (*I)->getAddrOffsetSectionItem(Index);
537   };
538 
539   if (shouldDump(Explicit, ".debug_rnglists", DIDT_ID_DebugRnglists,
540                  DObj->getRnglistsSection().Data)) {
541     DWARFDataExtractor RnglistData(*DObj, DObj->getRnglistsSection(),
542                                    isLittleEndian(), 0);
543     dumpRnglistsSection(OS, RnglistData, LookupPooledAddress, DumpOpts);
544   }
545 
546   if (shouldDump(ExplicitDWO, ".debug_rnglists.dwo", DIDT_ID_DebugRnglists,
547                  DObj->getRnglistsDWOSection().Data)) {
548     DWARFDataExtractor RnglistData(*DObj, DObj->getRnglistsDWOSection(),
549                                    isLittleEndian(), 0);
550     dumpRnglistsSection(OS, RnglistData, LookupPooledAddress, DumpOpts);
551   }
552 
553   if (shouldDump(Explicit, ".debug_pubnames", DIDT_ID_DebugPubnames,
554                  DObj->getPubNamesSection().Data))
555     DWARFDebugPubTable(*DObj, DObj->getPubNamesSection(), isLittleEndian(), false)
556         .dump(OS);
557 
558   if (shouldDump(Explicit, ".debug_pubtypes", DIDT_ID_DebugPubtypes,
559                  DObj->getPubTypesSection().Data))
560     DWARFDebugPubTable(*DObj, DObj->getPubTypesSection(), isLittleEndian(), false)
561         .dump(OS);
562 
563   if (shouldDump(Explicit, ".debug_gnu_pubnames", DIDT_ID_DebugGnuPubnames,
564                  DObj->getGnuPubNamesSection().Data))
565     DWARFDebugPubTable(*DObj, DObj->getGnuPubNamesSection(), isLittleEndian(),
566                        true /* GnuStyle */)
567         .dump(OS);
568 
569   if (shouldDump(Explicit, ".debug_gnu_pubtypes", DIDT_ID_DebugGnuPubtypes,
570                  DObj->getGnuPubTypesSection().Data))
571     DWARFDebugPubTable(*DObj, DObj->getGnuPubTypesSection(), isLittleEndian(),
572                        true /* GnuStyle */)
573         .dump(OS);
574 
575   if (shouldDump(Explicit, ".debug_str_offsets", DIDT_ID_DebugStrOffsets,
576                  DObj->getStringOffsetSection().Data))
577     dumpStringOffsetsSection(OS, "debug_str_offsets", *DObj,
578                              DObj->getStringOffsetSection(),
579                              DObj->getStringSection(), normal_units(),
580                              isLittleEndian(), getMaxVersion());
581   if (shouldDump(ExplicitDWO, ".debug_str_offsets.dwo", DIDT_ID_DebugStrOffsets,
582                  DObj->getStringOffsetDWOSection().Data))
583     dumpStringOffsetsSection(OS, "debug_str_offsets.dwo", *DObj,
584                              DObj->getStringOffsetDWOSection(),
585                              DObj->getStringDWOSection(), dwo_units(),
586                              isLittleEndian(), getMaxDWOVersion());
587 
588   if (shouldDump(Explicit, ".gdb_index", DIDT_ID_GdbIndex,
589                  DObj->getGdbIndexSection())) {
590     getGdbIndex().dump(OS);
591   }
592 
593   if (shouldDump(Explicit, ".apple_names", DIDT_ID_AppleNames,
594                  DObj->getAppleNamesSection().Data))
595     getAppleNames().dump(OS);
596 
597   if (shouldDump(Explicit, ".apple_types", DIDT_ID_AppleTypes,
598                  DObj->getAppleTypesSection().Data))
599     getAppleTypes().dump(OS);
600 
601   if (shouldDump(Explicit, ".apple_namespaces", DIDT_ID_AppleNamespaces,
602                  DObj->getAppleNamespacesSection().Data))
603     getAppleNamespaces().dump(OS);
604 
605   if (shouldDump(Explicit, ".apple_objc", DIDT_ID_AppleObjC,
606                  DObj->getAppleObjCSection().Data))
607     getAppleObjC().dump(OS);
608   if (shouldDump(Explicit, ".debug_names", DIDT_ID_DebugNames,
609                  DObj->getDebugNamesSection().Data))
610     getDebugNames().dump(OS);
611 }
612 
getDWOCompileUnitForHash(uint64_t Hash)613 DWARFCompileUnit *DWARFContext::getDWOCompileUnitForHash(uint64_t Hash) {
614   parseDWOUnits(LazyParse);
615 
616   if (const auto &CUI = getCUIndex()) {
617     if (const auto *R = CUI.getFromHash(Hash))
618       return dyn_cast_or_null<DWARFCompileUnit>(
619           DWOUnits.getUnitForIndexEntry(*R));
620     return nullptr;
621   }
622 
623   // If there's no index, just search through the CUs in the DWO - there's
624   // probably only one unless this is something like LTO - though an in-process
625   // built/cached lookup table could be used in that case to improve repeated
626   // lookups of different CUs in the DWO.
627   for (const auto &DWOCU : dwo_compile_units()) {
628     // Might not have parsed DWO ID yet.
629     if (!DWOCU->getDWOId()) {
630       if (Optional<uint64_t> DWOId =
631           toUnsigned(DWOCU->getUnitDIE().find(DW_AT_GNU_dwo_id)))
632         DWOCU->setDWOId(*DWOId);
633       else
634         // No DWO ID?
635         continue;
636     }
637     if (DWOCU->getDWOId() == Hash)
638       return dyn_cast<DWARFCompileUnit>(DWOCU.get());
639   }
640   return nullptr;
641 }
642 
getDIEForOffset(uint32_t Offset)643 DWARFDie DWARFContext::getDIEForOffset(uint32_t Offset) {
644   parseNormalUnits();
645   if (auto *CU = NormalUnits.getUnitForOffset(Offset))
646     return CU->getDIEForOffset(Offset);
647   return DWARFDie();
648 }
649 
verify(raw_ostream & OS,DIDumpOptions DumpOpts)650 bool DWARFContext::verify(raw_ostream &OS, DIDumpOptions DumpOpts) {
651   bool Success = true;
652   DWARFVerifier verifier(OS, *this, DumpOpts);
653 
654   Success &= verifier.handleDebugAbbrev();
655   if (DumpOpts.DumpType & DIDT_DebugInfo)
656     Success &= verifier.handleDebugInfo();
657   if (DumpOpts.DumpType & DIDT_DebugLine)
658     Success &= verifier.handleDebugLine();
659   Success &= verifier.handleAccelTables();
660   return Success;
661 }
662 
getCUIndex()663 const DWARFUnitIndex &DWARFContext::getCUIndex() {
664   if (CUIndex)
665     return *CUIndex;
666 
667   DataExtractor CUIndexData(DObj->getCUIndexSection(), isLittleEndian(), 0);
668 
669   CUIndex = llvm::make_unique<DWARFUnitIndex>(DW_SECT_INFO);
670   CUIndex->parse(CUIndexData);
671   return *CUIndex;
672 }
673 
getTUIndex()674 const DWARFUnitIndex &DWARFContext::getTUIndex() {
675   if (TUIndex)
676     return *TUIndex;
677 
678   DataExtractor TUIndexData(DObj->getTUIndexSection(), isLittleEndian(), 0);
679 
680   TUIndex = llvm::make_unique<DWARFUnitIndex>(DW_SECT_TYPES);
681   TUIndex->parse(TUIndexData);
682   return *TUIndex;
683 }
684 
getGdbIndex()685 DWARFGdbIndex &DWARFContext::getGdbIndex() {
686   if (GdbIndex)
687     return *GdbIndex;
688 
689   DataExtractor GdbIndexData(DObj->getGdbIndexSection(), true /*LE*/, 0);
690   GdbIndex = llvm::make_unique<DWARFGdbIndex>();
691   GdbIndex->parse(GdbIndexData);
692   return *GdbIndex;
693 }
694 
getDebugAbbrev()695 const DWARFDebugAbbrev *DWARFContext::getDebugAbbrev() {
696   if (Abbrev)
697     return Abbrev.get();
698 
699   DataExtractor abbrData(DObj->getAbbrevSection(), isLittleEndian(), 0);
700 
701   Abbrev.reset(new DWARFDebugAbbrev());
702   Abbrev->extract(abbrData);
703   return Abbrev.get();
704 }
705 
getDebugAbbrevDWO()706 const DWARFDebugAbbrev *DWARFContext::getDebugAbbrevDWO() {
707   if (AbbrevDWO)
708     return AbbrevDWO.get();
709 
710   DataExtractor abbrData(DObj->getAbbrevDWOSection(), isLittleEndian(), 0);
711   AbbrevDWO.reset(new DWARFDebugAbbrev());
712   AbbrevDWO->extract(abbrData);
713   return AbbrevDWO.get();
714 }
715 
getDebugLoc()716 const DWARFDebugLoc *DWARFContext::getDebugLoc() {
717   if (Loc)
718     return Loc.get();
719 
720   Loc.reset(new DWARFDebugLoc);
721   // Assume all units have the same address byte size.
722   if (getNumCompileUnits()) {
723     DWARFDataExtractor LocData(*DObj, DObj->getLocSection(), isLittleEndian(),
724                                getUnitAtIndex(0)->getAddressByteSize());
725     Loc->parse(LocData);
726   }
727   return Loc.get();
728 }
729 
getDebugLocDWO()730 const DWARFDebugLoclists *DWARFContext::getDebugLocDWO() {
731   if (LocDWO)
732     return LocDWO.get();
733 
734   LocDWO.reset(new DWARFDebugLoclists());
735   // Assume all compile units have the same address byte size.
736   // FIXME: We don't need AddressSize for split DWARF since relocatable
737   // addresses cannot appear there. At the moment DWARFExpression requires it.
738   DataExtractor LocData(DObj->getLocDWOSection().Data, isLittleEndian(), 4);
739   // Use version 4. DWO does not support the DWARF v5 .debug_loclists yet and
740   // that means we are parsing the new style .debug_loc (pre-standatized version
741   // of the .debug_loclists).
742   LocDWO->parse(LocData, 4 /* Version */);
743   return LocDWO.get();
744 }
745 
getDebugAranges()746 const DWARFDebugAranges *DWARFContext::getDebugAranges() {
747   if (Aranges)
748     return Aranges.get();
749 
750   Aranges.reset(new DWARFDebugAranges());
751   Aranges->generate(this);
752   return Aranges.get();
753 }
754 
getDebugFrame()755 const DWARFDebugFrame *DWARFContext::getDebugFrame() {
756   if (DebugFrame)
757     return DebugFrame.get();
758 
759   // There's a "bug" in the DWARFv3 standard with respect to the target address
760   // size within debug frame sections. While DWARF is supposed to be independent
761   // of its container, FDEs have fields with size being "target address size",
762   // which isn't specified in DWARF in general. It's only specified for CUs, but
763   // .eh_frame can appear without a .debug_info section. Follow the example of
764   // other tools (libdwarf) and extract this from the container (ObjectFile
765   // provides this information). This problem is fixed in DWARFv4
766   // See this dwarf-discuss discussion for more details:
767   // http://lists.dwarfstd.org/htdig.cgi/dwarf-discuss-dwarfstd.org/2011-December/001173.html
768   DWARFDataExtractor debugFrameData(DObj->getDebugFrameSection(),
769                                     isLittleEndian(), DObj->getAddressSize());
770   DebugFrame.reset(new DWARFDebugFrame(getArch(), false /* IsEH */));
771   DebugFrame->parse(debugFrameData);
772   return DebugFrame.get();
773 }
774 
getEHFrame()775 const DWARFDebugFrame *DWARFContext::getEHFrame() {
776   if (EHFrame)
777     return EHFrame.get();
778 
779   DWARFDataExtractor debugFrameData(DObj->getEHFrameSection(), isLittleEndian(),
780                                     DObj->getAddressSize());
781   DebugFrame.reset(new DWARFDebugFrame(getArch(), true /* IsEH */));
782   DebugFrame->parse(debugFrameData);
783   return DebugFrame.get();
784 }
785 
getDebugMacro()786 const DWARFDebugMacro *DWARFContext::getDebugMacro() {
787   if (Macro)
788     return Macro.get();
789 
790   DataExtractor MacinfoData(DObj->getMacinfoSection(), isLittleEndian(), 0);
791   Macro.reset(new DWARFDebugMacro());
792   Macro->parse(MacinfoData);
793   return Macro.get();
794 }
795 
796 template <typename T>
getAccelTable(std::unique_ptr<T> & Cache,const DWARFObject & Obj,const DWARFSection & Section,StringRef StringSection,bool IsLittleEndian)797 static T &getAccelTable(std::unique_ptr<T> &Cache, const DWARFObject &Obj,
798                         const DWARFSection &Section, StringRef StringSection,
799                         bool IsLittleEndian) {
800   if (Cache)
801     return *Cache;
802   DWARFDataExtractor AccelSection(Obj, Section, IsLittleEndian, 0);
803   DataExtractor StrData(StringSection, IsLittleEndian, 0);
804   Cache.reset(new T(AccelSection, StrData));
805   if (Error E = Cache->extract())
806     llvm::consumeError(std::move(E));
807   return *Cache;
808 }
809 
getDebugNames()810 const DWARFDebugNames &DWARFContext::getDebugNames() {
811   return getAccelTable(Names, *DObj, DObj->getDebugNamesSection(),
812                        DObj->getStringSection(), isLittleEndian());
813 }
814 
getAppleNames()815 const AppleAcceleratorTable &DWARFContext::getAppleNames() {
816   return getAccelTable(AppleNames, *DObj, DObj->getAppleNamesSection(),
817                        DObj->getStringSection(), isLittleEndian());
818 }
819 
getAppleTypes()820 const AppleAcceleratorTable &DWARFContext::getAppleTypes() {
821   return getAccelTable(AppleTypes, *DObj, DObj->getAppleTypesSection(),
822                        DObj->getStringSection(), isLittleEndian());
823 }
824 
getAppleNamespaces()825 const AppleAcceleratorTable &DWARFContext::getAppleNamespaces() {
826   return getAccelTable(AppleNamespaces, *DObj,
827                        DObj->getAppleNamespacesSection(),
828                        DObj->getStringSection(), isLittleEndian());
829 }
830 
getAppleObjC()831 const AppleAcceleratorTable &DWARFContext::getAppleObjC() {
832   return getAccelTable(AppleObjC, *DObj, DObj->getAppleObjCSection(),
833                        DObj->getStringSection(), isLittleEndian());
834 }
835 
836 const DWARFDebugLine::LineTable *
getLineTableForUnit(DWARFUnit * U)837 DWARFContext::getLineTableForUnit(DWARFUnit *U) {
838   Expected<const DWARFDebugLine::LineTable *> ExpectedLineTable =
839       getLineTableForUnit(U, dumpWarning);
840   if (!ExpectedLineTable) {
841     dumpWarning(ExpectedLineTable.takeError());
842     return nullptr;
843   }
844   return *ExpectedLineTable;
845 }
846 
getLineTableForUnit(DWARFUnit * U,std::function<void (Error)> RecoverableErrorCallback)847 Expected<const DWARFDebugLine::LineTable *> DWARFContext::getLineTableForUnit(
848     DWARFUnit *U, std::function<void(Error)> RecoverableErrorCallback) {
849   if (!Line)
850     Line.reset(new DWARFDebugLine);
851 
852   auto UnitDIE = U->getUnitDIE();
853   if (!UnitDIE)
854     return nullptr;
855 
856   auto Offset = toSectionOffset(UnitDIE.find(DW_AT_stmt_list));
857   if (!Offset)
858     return nullptr; // No line table for this compile unit.
859 
860   uint32_t stmtOffset = *Offset + U->getLineTableOffset();
861   // See if the line table is cached.
862   if (const DWARFLineTable *lt = Line->getLineTable(stmtOffset))
863     return lt;
864 
865   // Make sure the offset is good before we try to parse.
866   if (stmtOffset >= U->getLineSection().Data.size())
867     return nullptr;
868 
869   // We have to parse it first.
870   DWARFDataExtractor lineData(*DObj, U->getLineSection(), isLittleEndian(),
871                               U->getAddressByteSize());
872   return Line->getOrParseLineTable(lineData, stmtOffset, *this, U,
873                                    RecoverableErrorCallback);
874 }
875 
parseNormalUnits()876 void DWARFContext::parseNormalUnits() {
877   if (!NormalUnits.empty())
878     return;
879   DObj->forEachInfoSections([&](const DWARFSection &S) {
880     NormalUnits.addUnitsForSection(*this, S, DW_SECT_INFO);
881   });
882   NormalUnits.finishedInfoUnits();
883   DObj->forEachTypesSections([&](const DWARFSection &S) {
884     NormalUnits.addUnitsForSection(*this, S, DW_SECT_TYPES);
885   });
886 }
887 
parseDWOUnits(bool Lazy)888 void DWARFContext::parseDWOUnits(bool Lazy) {
889   if (!DWOUnits.empty())
890     return;
891   DObj->forEachInfoDWOSections([&](const DWARFSection &S) {
892     DWOUnits.addUnitsForDWOSection(*this, S, DW_SECT_INFO, Lazy);
893   });
894   DWOUnits.finishedInfoUnits();
895   DObj->forEachTypesDWOSections([&](const DWARFSection &S) {
896     DWOUnits.addUnitsForDWOSection(*this, S, DW_SECT_TYPES, Lazy);
897   });
898 }
899 
getCompileUnitForOffset(uint32_t Offset)900 DWARFCompileUnit *DWARFContext::getCompileUnitForOffset(uint32_t Offset) {
901   parseNormalUnits();
902   return dyn_cast_or_null<DWARFCompileUnit>(
903       NormalUnits.getUnitForOffset(Offset));
904 }
905 
getCompileUnitForAddress(uint64_t Address)906 DWARFCompileUnit *DWARFContext::getCompileUnitForAddress(uint64_t Address) {
907   // First, get the offset of the compile unit.
908   uint32_t CUOffset = getDebugAranges()->findAddress(Address);
909   // Retrieve the compile unit.
910   return getCompileUnitForOffset(CUOffset);
911 }
912 
getDIEsForAddress(uint64_t Address)913 DWARFContext::DIEsForAddress DWARFContext::getDIEsForAddress(uint64_t Address) {
914   DIEsForAddress Result;
915 
916   DWARFCompileUnit *CU = getCompileUnitForAddress(Address);
917   if (!CU)
918     return Result;
919 
920   Result.CompileUnit = CU;
921   Result.FunctionDIE = CU->getSubroutineForAddress(Address);
922 
923   std::vector<DWARFDie> Worklist;
924   Worklist.push_back(Result.FunctionDIE);
925   while (!Worklist.empty()) {
926     DWARFDie DIE = Worklist.back();
927     Worklist.pop_back();
928 
929     if (DIE.getTag() == DW_TAG_lexical_block &&
930         DIE.addressRangeContainsAddress(Address)) {
931       Result.BlockDIE = DIE;
932       break;
933     }
934 
935     for (auto Child : DIE)
936       Worklist.push_back(Child);
937   }
938 
939   return Result;
940 }
941 
getFunctionNameAndStartLineForAddress(DWARFCompileUnit * CU,uint64_t Address,FunctionNameKind Kind,std::string & FunctionName,uint32_t & StartLine)942 static bool getFunctionNameAndStartLineForAddress(DWARFCompileUnit *CU,
943                                                   uint64_t Address,
944                                                   FunctionNameKind Kind,
945                                                   std::string &FunctionName,
946                                                   uint32_t &StartLine) {
947   // The address may correspond to instruction in some inlined function,
948   // so we have to build the chain of inlined functions and take the
949   // name of the topmost function in it.
950   SmallVector<DWARFDie, 4> InlinedChain;
951   CU->getInlinedChainForAddress(Address, InlinedChain);
952   if (InlinedChain.empty())
953     return false;
954 
955   const DWARFDie &DIE = InlinedChain[0];
956   bool FoundResult = false;
957   const char *Name = nullptr;
958   if (Kind != FunctionNameKind::None && (Name = DIE.getSubroutineName(Kind))) {
959     FunctionName = Name;
960     FoundResult = true;
961   }
962   if (auto DeclLineResult = DIE.getDeclLine()) {
963     StartLine = DeclLineResult;
964     FoundResult = true;
965   }
966 
967   return FoundResult;
968 }
969 
getLineInfoForAddress(uint64_t Address,DILineInfoSpecifier Spec)970 DILineInfo DWARFContext::getLineInfoForAddress(uint64_t Address,
971                                                DILineInfoSpecifier Spec) {
972   DILineInfo Result;
973 
974   DWARFCompileUnit *CU = getCompileUnitForAddress(Address);
975   if (!CU)
976     return Result;
977   getFunctionNameAndStartLineForAddress(CU, Address, Spec.FNKind,
978                                         Result.FunctionName,
979                                         Result.StartLine);
980   if (Spec.FLIKind != FileLineInfoKind::None) {
981     if (const DWARFLineTable *LineTable = getLineTableForUnit(CU))
982       LineTable->getFileLineInfoForAddress(Address, CU->getCompilationDir(),
983                                            Spec.FLIKind, Result);
984   }
985   return Result;
986 }
987 
988 DILineInfoTable
getLineInfoForAddressRange(uint64_t Address,uint64_t Size,DILineInfoSpecifier Spec)989 DWARFContext::getLineInfoForAddressRange(uint64_t Address, uint64_t Size,
990                                          DILineInfoSpecifier Spec) {
991   DILineInfoTable  Lines;
992   DWARFCompileUnit *CU = getCompileUnitForAddress(Address);
993   if (!CU)
994     return Lines;
995 
996   std::string FunctionName = "<invalid>";
997   uint32_t StartLine = 0;
998   getFunctionNameAndStartLineForAddress(CU, Address, Spec.FNKind, FunctionName,
999                                         StartLine);
1000 
1001   // If the Specifier says we don't need FileLineInfo, just
1002   // return the top-most function at the starting address.
1003   if (Spec.FLIKind == FileLineInfoKind::None) {
1004     DILineInfo Result;
1005     Result.FunctionName = FunctionName;
1006     Result.StartLine = StartLine;
1007     Lines.push_back(std::make_pair(Address, Result));
1008     return Lines;
1009   }
1010 
1011   const DWARFLineTable *LineTable = getLineTableForUnit(CU);
1012 
1013   // Get the index of row we're looking for in the line table.
1014   std::vector<uint32_t> RowVector;
1015   if (!LineTable->lookupAddressRange(Address, Size, RowVector))
1016     return Lines;
1017 
1018   for (uint32_t RowIndex : RowVector) {
1019     // Take file number and line/column from the row.
1020     const DWARFDebugLine::Row &Row = LineTable->Rows[RowIndex];
1021     DILineInfo Result;
1022     LineTable->getFileNameByIndex(Row.File, CU->getCompilationDir(),
1023                                   Spec.FLIKind, Result.FileName);
1024     Result.FunctionName = FunctionName;
1025     Result.Line = Row.Line;
1026     Result.Column = Row.Column;
1027     Result.StartLine = StartLine;
1028     Lines.push_back(std::make_pair(Row.Address, Result));
1029   }
1030 
1031   return Lines;
1032 }
1033 
1034 DIInliningInfo
getInliningInfoForAddress(uint64_t Address,DILineInfoSpecifier Spec)1035 DWARFContext::getInliningInfoForAddress(uint64_t Address,
1036                                         DILineInfoSpecifier Spec) {
1037   DIInliningInfo InliningInfo;
1038 
1039   DWARFCompileUnit *CU = getCompileUnitForAddress(Address);
1040   if (!CU)
1041     return InliningInfo;
1042 
1043   const DWARFLineTable *LineTable = nullptr;
1044   SmallVector<DWARFDie, 4> InlinedChain;
1045   CU->getInlinedChainForAddress(Address, InlinedChain);
1046   if (InlinedChain.size() == 0) {
1047     // If there is no DIE for address (e.g. it is in unavailable .dwo file),
1048     // try to at least get file/line info from symbol table.
1049     if (Spec.FLIKind != FileLineInfoKind::None) {
1050       DILineInfo Frame;
1051       LineTable = getLineTableForUnit(CU);
1052       if (LineTable &&
1053           LineTable->getFileLineInfoForAddress(Address, CU->getCompilationDir(),
1054                                                Spec.FLIKind, Frame))
1055         InliningInfo.addFrame(Frame);
1056     }
1057     return InliningInfo;
1058   }
1059 
1060   uint32_t CallFile = 0, CallLine = 0, CallColumn = 0, CallDiscriminator = 0;
1061   for (uint32_t i = 0, n = InlinedChain.size(); i != n; i++) {
1062     DWARFDie &FunctionDIE = InlinedChain[i];
1063     DILineInfo Frame;
1064     // Get function name if necessary.
1065     if (const char *Name = FunctionDIE.getSubroutineName(Spec.FNKind))
1066       Frame.FunctionName = Name;
1067     if (auto DeclLineResult = FunctionDIE.getDeclLine())
1068       Frame.StartLine = DeclLineResult;
1069     if (Spec.FLIKind != FileLineInfoKind::None) {
1070       if (i == 0) {
1071         // For the topmost frame, initialize the line table of this
1072         // compile unit and fetch file/line info from it.
1073         LineTable = getLineTableForUnit(CU);
1074         // For the topmost routine, get file/line info from line table.
1075         if (LineTable)
1076           LineTable->getFileLineInfoForAddress(Address, CU->getCompilationDir(),
1077                                                Spec.FLIKind, Frame);
1078       } else {
1079         // Otherwise, use call file, call line and call column from
1080         // previous DIE in inlined chain.
1081         if (LineTable)
1082           LineTable->getFileNameByIndex(CallFile, CU->getCompilationDir(),
1083                                         Spec.FLIKind, Frame.FileName);
1084         Frame.Line = CallLine;
1085         Frame.Column = CallColumn;
1086         Frame.Discriminator = CallDiscriminator;
1087       }
1088       // Get call file/line/column of a current DIE.
1089       if (i + 1 < n) {
1090         FunctionDIE.getCallerFrame(CallFile, CallLine, CallColumn,
1091                                    CallDiscriminator);
1092       }
1093     }
1094     InliningInfo.addFrame(Frame);
1095   }
1096   return InliningInfo;
1097 }
1098 
1099 std::shared_ptr<DWARFContext>
getDWOContext(StringRef AbsolutePath)1100 DWARFContext::getDWOContext(StringRef AbsolutePath) {
1101   if (auto S = DWP.lock()) {
1102     DWARFContext *Ctxt = S->Context.get();
1103     return std::shared_ptr<DWARFContext>(std::move(S), Ctxt);
1104   }
1105 
1106   std::weak_ptr<DWOFile> *Entry = &DWOFiles[AbsolutePath];
1107 
1108   if (auto S = Entry->lock()) {
1109     DWARFContext *Ctxt = S->Context.get();
1110     return std::shared_ptr<DWARFContext>(std::move(S), Ctxt);
1111   }
1112 
1113   Expected<OwningBinary<ObjectFile>> Obj = [&] {
1114     if (!CheckedForDWP) {
1115       SmallString<128> DWPName;
1116       auto Obj = object::ObjectFile::createObjectFile(
1117           this->DWPName.empty()
1118               ? (DObj->getFileName() + ".dwp").toStringRef(DWPName)
1119               : StringRef(this->DWPName));
1120       if (Obj) {
1121         Entry = &DWP;
1122         return Obj;
1123       } else {
1124         CheckedForDWP = true;
1125         // TODO: Should this error be handled (maybe in a high verbosity mode)
1126         // before falling back to .dwo files?
1127         consumeError(Obj.takeError());
1128       }
1129     }
1130 
1131     return object::ObjectFile::createObjectFile(AbsolutePath);
1132   }();
1133 
1134   if (!Obj) {
1135     // TODO: Actually report errors helpfully.
1136     consumeError(Obj.takeError());
1137     return nullptr;
1138   }
1139 
1140   auto S = std::make_shared<DWOFile>();
1141   S->File = std::move(Obj.get());
1142   S->Context = DWARFContext::create(*S->File.getBinary());
1143   *Entry = S;
1144   auto *Ctxt = S->Context.get();
1145   return std::shared_ptr<DWARFContext>(std::move(S), Ctxt);
1146 }
1147 
createError(const Twine & Reason,llvm::Error E)1148 static Error createError(const Twine &Reason, llvm::Error E) {
1149   return make_error<StringError>(Reason + toString(std::move(E)),
1150                                  inconvertibleErrorCode());
1151 }
1152 
1153 /// SymInfo contains information about symbol: it's address
1154 /// and section index which is -1LL for absolute symbols.
1155 struct SymInfo {
1156   uint64_t Address;
1157   uint64_t SectionIndex;
1158 };
1159 
1160 /// Returns the address of symbol relocation used against and a section index.
1161 /// Used for futher relocations computation. Symbol's section load address is
getSymbolInfo(const object::ObjectFile & Obj,const RelocationRef & Reloc,const LoadedObjectInfo * L,std::map<SymbolRef,SymInfo> & Cache)1162 static Expected<SymInfo> getSymbolInfo(const object::ObjectFile &Obj,
1163                                        const RelocationRef &Reloc,
1164                                        const LoadedObjectInfo *L,
1165                                        std::map<SymbolRef, SymInfo> &Cache) {
1166   SymInfo Ret = {0, (uint64_t)-1LL};
1167   object::section_iterator RSec = Obj.section_end();
1168   object::symbol_iterator Sym = Reloc.getSymbol();
1169 
1170   std::map<SymbolRef, SymInfo>::iterator CacheIt = Cache.end();
1171   // First calculate the address of the symbol or section as it appears
1172   // in the object file
1173   if (Sym != Obj.symbol_end()) {
1174     bool New;
1175     std::tie(CacheIt, New) = Cache.insert({*Sym, {0, 0}});
1176     if (!New)
1177       return CacheIt->second;
1178 
1179     Expected<uint64_t> SymAddrOrErr = Sym->getAddress();
1180     if (!SymAddrOrErr)
1181       return createError("failed to compute symbol address: ",
1182                          SymAddrOrErr.takeError());
1183 
1184     // Also remember what section this symbol is in for later
1185     auto SectOrErr = Sym->getSection();
1186     if (!SectOrErr)
1187       return createError("failed to get symbol section: ",
1188                          SectOrErr.takeError());
1189 
1190     RSec = *SectOrErr;
1191     Ret.Address = *SymAddrOrErr;
1192   } else if (auto *MObj = dyn_cast<MachOObjectFile>(&Obj)) {
1193     RSec = MObj->getRelocationSection(Reloc.getRawDataRefImpl());
1194     Ret.Address = RSec->getAddress();
1195   }
1196 
1197   if (RSec != Obj.section_end())
1198     Ret.SectionIndex = RSec->getIndex();
1199 
1200   // If we are given load addresses for the sections, we need to adjust:
1201   // SymAddr = (Address of Symbol Or Section in File) -
1202   //           (Address of Section in File) +
1203   //           (Load Address of Section)
1204   // RSec is now either the section being targeted or the section
1205   // containing the symbol being targeted. In either case,
1206   // we need to perform the same computation.
1207   if (L && RSec != Obj.section_end())
1208     if (uint64_t SectionLoadAddress = L->getSectionLoadAddress(*RSec))
1209       Ret.Address += SectionLoadAddress - RSec->getAddress();
1210 
1211   if (CacheIt != Cache.end())
1212     CacheIt->second = Ret;
1213 
1214   return Ret;
1215 }
1216 
isRelocScattered(const object::ObjectFile & Obj,const RelocationRef & Reloc)1217 static bool isRelocScattered(const object::ObjectFile &Obj,
1218                              const RelocationRef &Reloc) {
1219   const MachOObjectFile *MachObj = dyn_cast<MachOObjectFile>(&Obj);
1220   if (!MachObj)
1221     return false;
1222   // MachO also has relocations that point to sections and
1223   // scattered relocations.
1224   auto RelocInfo = MachObj->getRelocation(Reloc.getRawDataRefImpl());
1225   return MachObj->isRelocationScattered(RelocInfo);
1226 }
1227 
defaultErrorHandler(Error E)1228 ErrorPolicy DWARFContext::defaultErrorHandler(Error E) {
1229   WithColor::error() << toString(std::move(E)) << '\n';
1230   return ErrorPolicy::Continue;
1231 }
1232 
1233 namespace {
1234 struct DWARFSectionMap final : public DWARFSection {
1235   RelocAddrMap Relocs;
1236 };
1237 
1238 class DWARFObjInMemory final : public DWARFObject {
1239   bool IsLittleEndian;
1240   uint8_t AddressSize;
1241   StringRef FileName;
1242   const object::ObjectFile *Obj = nullptr;
1243   std::vector<SectionName> SectionNames;
1244 
1245   using InfoSectionMap = MapVector<object::SectionRef, DWARFSectionMap,
1246                                    std::map<object::SectionRef, unsigned>>;
1247 
1248   InfoSectionMap InfoSections;
1249   InfoSectionMap TypesSections;
1250   InfoSectionMap InfoDWOSections;
1251   InfoSectionMap TypesDWOSections;
1252 
1253   DWARFSectionMap LocSection;
1254   DWARFSectionMap LocListsSection;
1255   DWARFSectionMap LineSection;
1256   DWARFSectionMap RangeSection;
1257   DWARFSectionMap RnglistsSection;
1258   DWARFSectionMap StringOffsetSection;
1259   DWARFSectionMap LineDWOSection;
1260   DWARFSectionMap LocDWOSection;
1261   DWARFSectionMap StringOffsetDWOSection;
1262   DWARFSectionMap RangeDWOSection;
1263   DWARFSectionMap RnglistsDWOSection;
1264   DWARFSectionMap AddrSection;
1265   DWARFSectionMap AppleNamesSection;
1266   DWARFSectionMap AppleTypesSection;
1267   DWARFSectionMap AppleNamespacesSection;
1268   DWARFSectionMap AppleObjCSection;
1269   DWARFSectionMap DebugNamesSection;
1270   DWARFSectionMap PubNamesSection;
1271   DWARFSectionMap PubTypesSection;
1272   DWARFSectionMap GnuPubNamesSection;
1273   DWARFSectionMap GnuPubTypesSection;
1274 
mapNameToDWARFSection(StringRef Name)1275   DWARFSectionMap *mapNameToDWARFSection(StringRef Name) {
1276     return StringSwitch<DWARFSectionMap *>(Name)
1277         .Case("debug_loc", &LocSection)
1278         .Case("debug_loclists", &LocListsSection)
1279         .Case("debug_line", &LineSection)
1280         .Case("debug_str_offsets", &StringOffsetSection)
1281         .Case("debug_ranges", &RangeSection)
1282         .Case("debug_rnglists", &RnglistsSection)
1283         .Case("debug_loc.dwo", &LocDWOSection)
1284         .Case("debug_line.dwo", &LineDWOSection)
1285         .Case("debug_names", &DebugNamesSection)
1286         .Case("debug_rnglists.dwo", &RnglistsDWOSection)
1287         .Case("debug_str_offsets.dwo", &StringOffsetDWOSection)
1288         .Case("debug_addr", &AddrSection)
1289         .Case("apple_names", &AppleNamesSection)
1290         .Case("debug_pubnames", &PubNamesSection)
1291         .Case("debug_pubtypes", &PubTypesSection)
1292         .Case("debug_gnu_pubnames", &GnuPubNamesSection)
1293         .Case("debug_gnu_pubtypes", &GnuPubTypesSection)
1294         .Case("apple_types", &AppleTypesSection)
1295         .Case("apple_namespaces", &AppleNamespacesSection)
1296         .Case("apple_namespac", &AppleNamespacesSection)
1297         .Case("apple_objc", &AppleObjCSection)
1298         .Default(nullptr);
1299   }
1300 
1301   StringRef AbbrevSection;
1302   StringRef ARangeSection;
1303   StringRef DebugFrameSection;
1304   StringRef EHFrameSection;
1305   StringRef StringSection;
1306   StringRef MacinfoSection;
1307   StringRef AbbrevDWOSection;
1308   StringRef StringDWOSection;
1309   StringRef CUIndexSection;
1310   StringRef GdbIndexSection;
1311   StringRef TUIndexSection;
1312   StringRef LineStringSection;
1313 
1314   // A deque holding section data whose iterators are not invalidated when
1315   // new decompressed sections are inserted at the end.
1316   std::deque<SmallString<0>> UncompressedSections;
1317 
mapSectionToMember(StringRef Name)1318   StringRef *mapSectionToMember(StringRef Name) {
1319     if (DWARFSection *Sec = mapNameToDWARFSection(Name))
1320       return &Sec->Data;
1321     return StringSwitch<StringRef *>(Name)
1322         .Case("debug_abbrev", &AbbrevSection)
1323         .Case("debug_aranges", &ARangeSection)
1324         .Case("debug_frame", &DebugFrameSection)
1325         .Case("eh_frame", &EHFrameSection)
1326         .Case("debug_str", &StringSection)
1327         .Case("debug_macinfo", &MacinfoSection)
1328         .Case("debug_abbrev.dwo", &AbbrevDWOSection)
1329         .Case("debug_str.dwo", &StringDWOSection)
1330         .Case("debug_cu_index", &CUIndexSection)
1331         .Case("debug_tu_index", &TUIndexSection)
1332         .Case("gdb_index", &GdbIndexSection)
1333         .Case("debug_line_str", &LineStringSection)
1334         // Any more debug info sections go here.
1335         .Default(nullptr);
1336   }
1337 
1338   /// If Sec is compressed section, decompresses and updates its contents
1339   /// provided by Data. Otherwise leaves it unchanged.
maybeDecompress(const object::SectionRef & Sec,StringRef Name,StringRef & Data)1340   Error maybeDecompress(const object::SectionRef &Sec, StringRef Name,
1341                         StringRef &Data) {
1342     if (!Decompressor::isCompressed(Sec))
1343       return Error::success();
1344 
1345     Expected<Decompressor> Decompressor =
1346         Decompressor::create(Name, Data, IsLittleEndian, AddressSize == 8);
1347     if (!Decompressor)
1348       return Decompressor.takeError();
1349 
1350     SmallString<0> Out;
1351     if (auto Err = Decompressor->resizeAndDecompress(Out))
1352       return Err;
1353 
1354     UncompressedSections.push_back(std::move(Out));
1355     Data = UncompressedSections.back();
1356 
1357     return Error::success();
1358   }
1359 
1360 public:
DWARFObjInMemory(const StringMap<std::unique_ptr<MemoryBuffer>> & Sections,uint8_t AddrSize,bool IsLittleEndian)1361   DWARFObjInMemory(const StringMap<std::unique_ptr<MemoryBuffer>> &Sections,
1362                    uint8_t AddrSize, bool IsLittleEndian)
1363       : IsLittleEndian(IsLittleEndian) {
1364     for (const auto &SecIt : Sections) {
1365       if (StringRef *SectionData = mapSectionToMember(SecIt.first()))
1366         *SectionData = SecIt.second->getBuffer();
1367       else if (SecIt.first() == "debug_info")
1368         // Find debug_info and debug_types data by section rather than name as
1369         // there are multiple, comdat grouped, of these sections.
1370         InfoSections[SectionRef()].Data = SecIt.second->getBuffer();
1371       else if (SecIt.first() == "debug_info.dwo")
1372         InfoDWOSections[SectionRef()].Data = SecIt.second->getBuffer();
1373       else if (SecIt.first() == "debug_types")
1374         TypesSections[SectionRef()].Data = SecIt.second->getBuffer();
1375       else if (SecIt.first() == "debug_types.dwo")
1376         TypesDWOSections[SectionRef()].Data = SecIt.second->getBuffer();
1377     }
1378   }
DWARFObjInMemory(const object::ObjectFile & Obj,const LoadedObjectInfo * L,function_ref<ErrorPolicy (Error)> HandleError)1379   DWARFObjInMemory(const object::ObjectFile &Obj, const LoadedObjectInfo *L,
1380                    function_ref<ErrorPolicy(Error)> HandleError)
1381       : IsLittleEndian(Obj.isLittleEndian()),
1382         AddressSize(Obj.getBytesInAddress()), FileName(Obj.getFileName()),
1383         Obj(&Obj) {
1384 
1385     StringMap<unsigned> SectionAmountMap;
1386     for (const SectionRef &Section : Obj.sections()) {
1387       StringRef Name;
1388       Section.getName(Name);
1389       ++SectionAmountMap[Name];
1390       SectionNames.push_back({ Name, true });
1391 
1392       // Skip BSS and Virtual sections, they aren't interesting.
1393       if (Section.isBSS() || Section.isVirtual())
1394         continue;
1395 
1396       // Skip sections stripped by dsymutil.
1397       if (Section.isStripped())
1398         continue;
1399 
1400       StringRef Data;
1401       section_iterator RelocatedSection = Section.getRelocatedSection();
1402       // Try to obtain an already relocated version of this section.
1403       // Else use the unrelocated section from the object file. We'll have to
1404       // apply relocations ourselves later.
1405       if (!L || !L->getLoadedSectionContents(*RelocatedSection, Data))
1406         Section.getContents(Data);
1407 
1408       if (auto Err = maybeDecompress(Section, Name, Data)) {
1409         ErrorPolicy EP = HandleError(createError(
1410             "failed to decompress '" + Name + "', ", std::move(Err)));
1411         if (EP == ErrorPolicy::Halt)
1412           return;
1413         continue;
1414       }
1415 
1416       // Compressed sections names in GNU style starts from ".z",
1417       // at this point section is decompressed and we drop compression prefix.
1418       Name = Name.substr(
1419           Name.find_first_not_of("._z")); // Skip ".", "z" and "_" prefixes.
1420 
1421       // Map platform specific debug section names to DWARF standard section
1422       // names.
1423       Name = Obj.mapDebugSectionName(Name);
1424 
1425       if (StringRef *SectionData = mapSectionToMember(Name)) {
1426         *SectionData = Data;
1427         if (Name == "debug_ranges") {
1428           // FIXME: Use the other dwo range section when we emit it.
1429           RangeDWOSection.Data = Data;
1430         }
1431       } else if (Name == "debug_info") {
1432         // Find debug_info and debug_types data by section rather than name as
1433         // there are multiple, comdat grouped, of these sections.
1434         InfoSections[Section].Data = Data;
1435       } else if (Name == "debug_info.dwo") {
1436         InfoDWOSections[Section].Data = Data;
1437       } else if (Name == "debug_types") {
1438         TypesSections[Section].Data = Data;
1439       } else if (Name == "debug_types.dwo") {
1440         TypesDWOSections[Section].Data = Data;
1441       }
1442 
1443       if (RelocatedSection == Obj.section_end())
1444         continue;
1445 
1446       StringRef RelSecName;
1447       StringRef RelSecData;
1448       RelocatedSection->getName(RelSecName);
1449 
1450       // If the section we're relocating was relocated already by the JIT,
1451       // then we used the relocated version above, so we do not need to process
1452       // relocations for it now.
1453       if (L && L->getLoadedSectionContents(*RelocatedSection, RelSecData))
1454         continue;
1455 
1456       // In Mach-o files, the relocations do not need to be applied if
1457       // there is no load offset to apply. The value read at the
1458       // relocation point already factors in the section address
1459       // (actually applying the relocations will produce wrong results
1460       // as the section address will be added twice).
1461       if (!L && isa<MachOObjectFile>(&Obj))
1462         continue;
1463 
1464       RelSecName = RelSecName.substr(
1465           RelSecName.find_first_not_of("._z")); // Skip . and _ prefixes.
1466 
1467       // TODO: Add support for relocations in other sections as needed.
1468       // Record relocations for the debug_info and debug_line sections.
1469       DWARFSectionMap *Sec = mapNameToDWARFSection(RelSecName);
1470       RelocAddrMap *Map = Sec ? &Sec->Relocs : nullptr;
1471       if (!Map) {
1472         // Find debug_info and debug_types relocs by section rather than name
1473         // as there are multiple, comdat grouped, of these sections.
1474         if (RelSecName == "debug_info")
1475           Map = &static_cast<DWARFSectionMap &>(InfoSections[*RelocatedSection])
1476                      .Relocs;
1477         else if (RelSecName == "debug_info.dwo")
1478           Map = &static_cast<DWARFSectionMap &>(
1479                      InfoDWOSections[*RelocatedSection])
1480                      .Relocs;
1481         else if (RelSecName == "debug_types")
1482           Map =
1483               &static_cast<DWARFSectionMap &>(TypesSections[*RelocatedSection])
1484                    .Relocs;
1485         else if (RelSecName == "debug_types.dwo")
1486           Map = &static_cast<DWARFSectionMap &>(
1487                      TypesDWOSections[*RelocatedSection])
1488                      .Relocs;
1489         else
1490           continue;
1491       }
1492 
1493       if (Section.relocation_begin() == Section.relocation_end())
1494         continue;
1495 
1496       // Symbol to [address, section index] cache mapping.
1497       std::map<SymbolRef, SymInfo> AddrCache;
1498       for (const RelocationRef &Reloc : Section.relocations()) {
1499         // FIXME: it's not clear how to correctly handle scattered
1500         // relocations.
1501         if (isRelocScattered(Obj, Reloc))
1502           continue;
1503 
1504         Expected<SymInfo> SymInfoOrErr =
1505             getSymbolInfo(Obj, Reloc, L, AddrCache);
1506         if (!SymInfoOrErr) {
1507           if (HandleError(SymInfoOrErr.takeError()) == ErrorPolicy::Halt)
1508             return;
1509           continue;
1510         }
1511 
1512         object::RelocVisitor V(Obj);
1513         uint64_t Val = V.visit(Reloc.getType(), Reloc, SymInfoOrErr->Address);
1514         if (V.error()) {
1515           SmallString<32> Type;
1516           Reloc.getTypeName(Type);
1517           ErrorPolicy EP = HandleError(
1518               createError("failed to compute relocation: " + Type + ", ",
1519                           errorCodeToError(object_error::parse_failed)));
1520           if (EP == ErrorPolicy::Halt)
1521             return;
1522           continue;
1523         }
1524         RelocAddrEntry Rel = {SymInfoOrErr->SectionIndex, Val};
1525         Map->insert({Reloc.getOffset(), Rel});
1526       }
1527     }
1528 
1529     for (SectionName &S : SectionNames)
1530       if (SectionAmountMap[S.Name] > 1)
1531         S.IsNameUnique = false;
1532   }
1533 
find(const DWARFSection & S,uint64_t Pos) const1534   Optional<RelocAddrEntry> find(const DWARFSection &S,
1535                                 uint64_t Pos) const override {
1536     auto &Sec = static_cast<const DWARFSectionMap &>(S);
1537     RelocAddrMap::const_iterator AI = Sec.Relocs.find(Pos);
1538     if (AI == Sec.Relocs.end())
1539       return None;
1540     return AI->second;
1541   }
1542 
getFile() const1543   const object::ObjectFile *getFile() const override { return Obj; }
1544 
getSectionNames() const1545   ArrayRef<SectionName> getSectionNames() const override {
1546     return SectionNames;
1547   }
1548 
isLittleEndian() const1549   bool isLittleEndian() const override { return IsLittleEndian; }
getAbbrevDWOSection() const1550   StringRef getAbbrevDWOSection() const override { return AbbrevDWOSection; }
getLineDWOSection() const1551   const DWARFSection &getLineDWOSection() const override {
1552     return LineDWOSection;
1553   }
getLocDWOSection() const1554   const DWARFSection &getLocDWOSection() const override {
1555     return LocDWOSection;
1556   }
getStringDWOSection() const1557   StringRef getStringDWOSection() const override { return StringDWOSection; }
getStringOffsetDWOSection() const1558   const DWARFSection &getStringOffsetDWOSection() const override {
1559     return StringOffsetDWOSection;
1560   }
getRangeDWOSection() const1561   const DWARFSection &getRangeDWOSection() const override {
1562     return RangeDWOSection;
1563   }
getRnglistsDWOSection() const1564   const DWARFSection &getRnglistsDWOSection() const override {
1565     return RnglistsDWOSection;
1566   }
getAddrSection() const1567   const DWARFSection &getAddrSection() const override { return AddrSection; }
getCUIndexSection() const1568   StringRef getCUIndexSection() const override { return CUIndexSection; }
getGdbIndexSection() const1569   StringRef getGdbIndexSection() const override { return GdbIndexSection; }
getTUIndexSection() const1570   StringRef getTUIndexSection() const override { return TUIndexSection; }
1571 
1572   // DWARF v5
getStringOffsetSection() const1573   const DWARFSection &getStringOffsetSection() const override {
1574     return StringOffsetSection;
1575   }
getLineStringSection() const1576   StringRef getLineStringSection() const override { return LineStringSection; }
1577 
1578   // Sections for DWARF5 split dwarf proposal.
forEachInfoDWOSections(function_ref<void (const DWARFSection &)> F) const1579   void forEachInfoDWOSections(
1580       function_ref<void(const DWARFSection &)> F) const override {
1581     for (auto &P : InfoDWOSections)
1582       F(P.second);
1583   }
forEachTypesDWOSections(function_ref<void (const DWARFSection &)> F) const1584   void forEachTypesDWOSections(
1585       function_ref<void(const DWARFSection &)> F) const override {
1586     for (auto &P : TypesDWOSections)
1587       F(P.second);
1588   }
1589 
getAbbrevSection() const1590   StringRef getAbbrevSection() const override { return AbbrevSection; }
getLocSection() const1591   const DWARFSection &getLocSection() const override { return LocSection; }
getLoclistsSection() const1592   const DWARFSection &getLoclistsSection() const override { return LocListsSection; }
getARangeSection() const1593   StringRef getARangeSection() const override { return ARangeSection; }
getDebugFrameSection() const1594   StringRef getDebugFrameSection() const override { return DebugFrameSection; }
getEHFrameSection() const1595   StringRef getEHFrameSection() const override { return EHFrameSection; }
getLineSection() const1596   const DWARFSection &getLineSection() const override { return LineSection; }
getStringSection() const1597   StringRef getStringSection() const override { return StringSection; }
getRangeSection() const1598   const DWARFSection &getRangeSection() const override { return RangeSection; }
getRnglistsSection() const1599   const DWARFSection &getRnglistsSection() const override {
1600     return RnglistsSection;
1601   }
getMacinfoSection() const1602   StringRef getMacinfoSection() const override { return MacinfoSection; }
getPubNamesSection() const1603   const DWARFSection &getPubNamesSection() const override { return PubNamesSection; }
getPubTypesSection() const1604   const DWARFSection &getPubTypesSection() const override { return PubTypesSection; }
getGnuPubNamesSection() const1605   const DWARFSection &getGnuPubNamesSection() const override {
1606     return GnuPubNamesSection;
1607   }
getGnuPubTypesSection() const1608   const DWARFSection &getGnuPubTypesSection() const override {
1609     return GnuPubTypesSection;
1610   }
getAppleNamesSection() const1611   const DWARFSection &getAppleNamesSection() const override {
1612     return AppleNamesSection;
1613   }
getAppleTypesSection() const1614   const DWARFSection &getAppleTypesSection() const override {
1615     return AppleTypesSection;
1616   }
getAppleNamespacesSection() const1617   const DWARFSection &getAppleNamespacesSection() const override {
1618     return AppleNamespacesSection;
1619   }
getAppleObjCSection() const1620   const DWARFSection &getAppleObjCSection() const override {
1621     return AppleObjCSection;
1622   }
getDebugNamesSection() const1623   const DWARFSection &getDebugNamesSection() const override {
1624     return DebugNamesSection;
1625   }
1626 
getFileName() const1627   StringRef getFileName() const override { return FileName; }
getAddressSize() const1628   uint8_t getAddressSize() const override { return AddressSize; }
forEachInfoSections(function_ref<void (const DWARFSection &)> F) const1629   void forEachInfoSections(
1630       function_ref<void(const DWARFSection &)> F) const override {
1631     for (auto &P : InfoSections)
1632       F(P.second);
1633   }
forEachTypesSections(function_ref<void (const DWARFSection &)> F) const1634   void forEachTypesSections(
1635       function_ref<void(const DWARFSection &)> F) const override {
1636     for (auto &P : TypesSections)
1637       F(P.second);
1638   }
1639 };
1640 } // namespace
1641 
1642 std::unique_ptr<DWARFContext>
create(const object::ObjectFile & Obj,const LoadedObjectInfo * L,function_ref<ErrorPolicy (Error)> HandleError,std::string DWPName)1643 DWARFContext::create(const object::ObjectFile &Obj, const LoadedObjectInfo *L,
1644                      function_ref<ErrorPolicy(Error)> HandleError,
1645                      std::string DWPName) {
1646   auto DObj = llvm::make_unique<DWARFObjInMemory>(Obj, L, HandleError);
1647   return llvm::make_unique<DWARFContext>(std::move(DObj), std::move(DWPName));
1648 }
1649 
1650 std::unique_ptr<DWARFContext>
create(const StringMap<std::unique_ptr<MemoryBuffer>> & Sections,uint8_t AddrSize,bool isLittleEndian)1651 DWARFContext::create(const StringMap<std::unique_ptr<MemoryBuffer>> &Sections,
1652                      uint8_t AddrSize, bool isLittleEndian) {
1653   auto DObj =
1654       llvm::make_unique<DWARFObjInMemory>(Sections, AddrSize, isLittleEndian);
1655   return llvm::make_unique<DWARFContext>(std::move(DObj), "");
1656 }
1657 
loadRegisterInfo(const object::ObjectFile & Obj)1658 Error DWARFContext::loadRegisterInfo(const object::ObjectFile &Obj) {
1659   // Detect the architecture from the object file. We usually don't need OS
1660   // info to lookup a target and create register info.
1661   Triple TT;
1662   TT.setArch(Triple::ArchType(Obj.getArch()));
1663   TT.setVendor(Triple::UnknownVendor);
1664   TT.setOS(Triple::UnknownOS);
1665   std::string TargetLookupError;
1666   const Target *TheTarget =
1667       TargetRegistry::lookupTarget(TT.str(), TargetLookupError);
1668   if (!TargetLookupError.empty())
1669     return createStringError(errc::invalid_argument,
1670                              TargetLookupError.c_str());
1671   RegInfo.reset(TheTarget->createMCRegInfo(TT.str()));
1672   return Error::success();
1673 }
1674 
getCUAddrSize()1675 uint8_t DWARFContext::getCUAddrSize() {
1676   // In theory, different compile units may have different address byte
1677   // sizes, but for simplicity we just use the address byte size of the
1678   // last compile unit. In practice the address size field is repeated across
1679   // various DWARF headers (at least in version 5) to make it easier to dump
1680   // them independently, not to enable varying the address size.
1681   uint8_t Addr = 0;
1682   for (const auto &CU : compile_units()) {
1683     Addr = CU->getAddressByteSize();
1684     break;
1685   }
1686   return Addr;
1687 }
1688 
dumpWarning(Error Warning)1689 void DWARFContext::dumpWarning(Error Warning) {
1690   handleAllErrors(std::move(Warning), [](ErrorInfoBase &Info) {
1691       WithColor::warning() << Info.message() << '\n';
1692   });
1693 }
1694