xref: /llvm-project-15.0.7/lld/COFF/PDB.cpp (revision f4bf4227)
1 //===- PDB.cpp ------------------------------------------------------------===//
2 //
3 //                             The LLVM Linker
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 "PDB.h"
11 #include "Chunks.h"
12 #include "Config.h"
13 #include "Driver.h"
14 #include "SymbolTable.h"
15 #include "Symbols.h"
16 #include "Writer.h"
17 #include "lld/Common/ErrorHandler.h"
18 #include "llvm/DebugInfo/CodeView/CVDebugRecord.h"
19 #include "llvm/DebugInfo/CodeView/DebugSubsectionRecord.h"
20 #include "llvm/DebugInfo/CodeView/LazyRandomTypeCollection.h"
21 #include "llvm/DebugInfo/CodeView/RecordName.h"
22 #include "llvm/DebugInfo/CodeView/SymbolDeserializer.h"
23 #include "llvm/DebugInfo/CodeView/SymbolSerializer.h"
24 #include "llvm/DebugInfo/CodeView/TypeDeserializer.h"
25 #include "llvm/DebugInfo/CodeView/TypeDumpVisitor.h"
26 #include "llvm/DebugInfo/CodeView/TypeIndexDiscovery.h"
27 #include "llvm/DebugInfo/CodeView/TypeStreamMerger.h"
28 #include "llvm/DebugInfo/CodeView/TypeTableBuilder.h"
29 #include "llvm/DebugInfo/MSF/MSFBuilder.h"
30 #include "llvm/DebugInfo/MSF/MSFCommon.h"
31 #include "llvm/DebugInfo/PDB/GenericError.h"
32 #include "llvm/DebugInfo/PDB/Native/DbiModuleDescriptorBuilder.h"
33 #include "llvm/DebugInfo/PDB/Native/DbiStream.h"
34 #include "llvm/DebugInfo/PDB/Native/DbiStreamBuilder.h"
35 #include "llvm/DebugInfo/PDB/Native/GSIStreamBuilder.h"
36 #include "llvm/DebugInfo/PDB/Native/InfoStream.h"
37 #include "llvm/DebugInfo/PDB/Native/InfoStreamBuilder.h"
38 #include "llvm/DebugInfo/PDB/Native/NativeSession.h"
39 #include "llvm/DebugInfo/PDB/Native/PDBFile.h"
40 #include "llvm/DebugInfo/PDB/Native/PDBFileBuilder.h"
41 #include "llvm/DebugInfo/PDB/Native/PDBStringTableBuilder.h"
42 #include "llvm/DebugInfo/PDB/Native/TpiHashing.h"
43 #include "llvm/DebugInfo/PDB/Native/TpiStream.h"
44 #include "llvm/DebugInfo/PDB/Native/TpiStreamBuilder.h"
45 #include "llvm/DebugInfo/PDB/PDB.h"
46 #include "llvm/Object/COFF.h"
47 #include "llvm/Support/BinaryByteStream.h"
48 #include "llvm/Support/Endian.h"
49 #include "llvm/Support/FileOutputBuffer.h"
50 #include "llvm/Support/JamCRC.h"
51 #include "llvm/Support/Path.h"
52 #include "llvm/Support/ScopedPrinter.h"
53 #include <memory>
54 
55 using namespace lld;
56 using namespace lld::coff;
57 using namespace llvm;
58 using namespace llvm::codeview;
59 
60 using llvm::object::coff_section;
61 
62 static ExitOnError ExitOnErr;
63 
64 namespace {
65 /// Map from type index and item index in a type server PDB to the
66 /// corresponding index in the destination PDB.
67 struct CVIndexMap {
68   SmallVector<TypeIndex, 0> TPIMap;
69   SmallVector<TypeIndex, 0> IPIMap;
70   bool IsTypeServerMap = false;
71 };
72 
73 class PDBLinker {
74 public:
75   PDBLinker(SymbolTable *Symtab)
76       : Alloc(), Symtab(Symtab), Builder(Alloc), TypeTable(Alloc),
77         IDTable(Alloc) {}
78 
79   /// Emit the basic PDB structure: initial streams, headers, etc.
80   void initialize(const llvm::codeview::DebugInfo &BuildId);
81 
82   /// Link CodeView from each object file in the symbol table into the PDB.
83   void addObjectsToPDB();
84 
85   /// Link CodeView from a single object file into the PDB.
86   void addObjFile(ObjFile *File);
87 
88   /// Produce a mapping from the type and item indices used in the object
89   /// file to those in the destination PDB.
90   ///
91   /// If the object file uses a type server PDB (compiled with /Zi), merge TPI
92   /// and IPI from the type server PDB and return a map for it. Each unique type
93   /// server PDB is merged at most once, so this may return an existing index
94   /// mapping.
95   ///
96   /// If the object does not use a type server PDB (compiled with /Z7), we merge
97   /// all the type and item records from the .debug$S stream and fill in the
98   /// caller-provided ObjectIndexMap.
99   const CVIndexMap &mergeDebugT(ObjFile *File, CVIndexMap &ObjectIndexMap);
100 
101   const CVIndexMap &maybeMergeTypeServerPDB(ObjFile *File,
102                                             TypeServer2Record &TS);
103 
104   /// Add the section map and section contributions to the PDB.
105   void addSections(ArrayRef<OutputSection *> OutputSections,
106                    ArrayRef<uint8_t> SectionTable);
107 
108   void addSectionContrib(pdb::DbiModuleDescriptorBuilder &LinkerModule,
109                          OutputSection *OS, Chunk *C);
110 
111   /// Write the PDB to disk.
112   void commit();
113 
114 private:
115   BumpPtrAllocator Alloc;
116 
117   SymbolTable *Symtab;
118 
119   pdb::PDBFileBuilder Builder;
120 
121   /// Type records that will go into the PDB TPI stream.
122   TypeTableBuilder TypeTable;
123 
124   /// Item records that will go into the PDB IPI stream.
125   TypeTableBuilder IDTable;
126 
127   /// PDBs use a single global string table for filenames in the file checksum
128   /// table.
129   DebugStringTableSubsection PDBStrTab;
130 
131   llvm::SmallString<128> NativePath;
132 
133   std::vector<pdb::SecMapEntry> SectionMap;
134 
135   /// Type index mappings of type server PDBs that we've loaded so far.
136   std::map<GUID, CVIndexMap> TypeServerIndexMappings;
137 };
138 }
139 
140 static SectionChunk *findByName(std::vector<SectionChunk *> &Sections,
141                                 StringRef Name) {
142   for (SectionChunk *C : Sections)
143     if (C->getSectionName() == Name)
144       return C;
145   return nullptr;
146 }
147 
148 static ArrayRef<uint8_t> consumeDebugMagic(ArrayRef<uint8_t> Data,
149                                            StringRef SecName) {
150   // First 4 bytes are section magic.
151   if (Data.size() < 4)
152     fatal(SecName + " too short");
153   if (support::endian::read32le(Data.data()) != COFF::DEBUG_SECTION_MAGIC)
154     fatal(SecName + " has an invalid magic");
155   return Data.slice(4);
156 }
157 
158 static ArrayRef<uint8_t> getDebugSection(ObjFile *File, StringRef SecName) {
159   if (SectionChunk *Sec = findByName(File->getDebugChunks(), SecName))
160     return consumeDebugMagic(Sec->getContents(), SecName);
161   return {};
162 }
163 
164 static void addTypeInfo(pdb::TpiStreamBuilder &TpiBuilder,
165                         TypeTableBuilder &TypeTable) {
166   // Start the TPI or IPI stream header.
167   TpiBuilder.setVersionHeader(pdb::PdbTpiV80);
168 
169   // Flatten the in memory type table and hash each type.
170   TypeTable.ForEachRecord([&](TypeIndex TI, ArrayRef<uint8_t> Rec) {
171     assert(Rec.size() >= sizeof(RecordPrefix));
172     const RecordPrefix *P = reinterpret_cast<const RecordPrefix *>(Rec.data());
173     CVType Type(static_cast<TypeLeafKind>(unsigned(P->RecordKind)), Rec);
174     auto Hash = pdb::hashTypeRecord(Type);
175     if (auto E = Hash.takeError())
176       fatal("type hashing error");
177     TpiBuilder.addTypeRecord(Rec, *Hash);
178   });
179 }
180 
181 static Optional<TypeServer2Record>
182 maybeReadTypeServerRecord(CVTypeArray &Types) {
183   auto I = Types.begin();
184   if (I == Types.end())
185     return None;
186   const CVType &Type = *I;
187   if (Type.kind() != LF_TYPESERVER2)
188     return None;
189   TypeServer2Record TS;
190   if (auto EC = TypeDeserializer::deserializeAs(const_cast<CVType &>(Type), TS))
191     fatal("error reading type server record: " + toString(std::move(EC)));
192   return std::move(TS);
193 }
194 
195 const CVIndexMap &PDBLinker::mergeDebugT(ObjFile *File,
196                                          CVIndexMap &ObjectIndexMap) {
197   ArrayRef<uint8_t> Data = getDebugSection(File, ".debug$T");
198   if (Data.empty())
199     return ObjectIndexMap;
200 
201   BinaryByteStream Stream(Data, support::little);
202   CVTypeArray Types;
203   BinaryStreamReader Reader(Stream);
204   if (auto EC = Reader.readArray(Types, Reader.getLength()))
205     fatal("Reader::readArray failed: " + toString(std::move(EC)));
206 
207   // Look through type servers. If we've already seen this type server, don't
208   // merge any type information.
209   if (Optional<TypeServer2Record> TS = maybeReadTypeServerRecord(Types))
210     return maybeMergeTypeServerPDB(File, *TS);
211 
212   // This is a /Z7 object. Fill in the temporary, caller-provided
213   // ObjectIndexMap.
214   if (auto Err = mergeTypeAndIdRecords(IDTable, TypeTable,
215                                        ObjectIndexMap.TPIMap, Types))
216     fatal("codeview::mergeTypeAndIdRecords failed: " +
217           toString(std::move(Err)));
218   return ObjectIndexMap;
219 }
220 
221 static Expected<std::unique_ptr<pdb::NativeSession>>
222 tryToLoadPDB(const GUID &GuidFromObj, StringRef TSPath) {
223   ErrorOr<std::unique_ptr<MemoryBuffer>> MBOrErr = MemoryBuffer::getFile(
224       TSPath, /*FileSize=*/-1, /*RequiresNullTerminator=*/false);
225   if (!MBOrErr)
226     return errorCodeToError(MBOrErr.getError());
227 
228   std::unique_ptr<pdb::IPDBSession> ThisSession;
229   if (auto EC = pdb::NativeSession::createFromPdb(
230           MemoryBuffer::getMemBuffer(Driver->takeBuffer(std::move(*MBOrErr)),
231                                      /*RequiresNullTerminator=*/false),
232           ThisSession))
233     return std::move(EC);
234 
235   std::unique_ptr<pdb::NativeSession> NS(
236       static_cast<pdb::NativeSession *>(ThisSession.release()));
237   pdb::PDBFile &File = NS->getPDBFile();
238   auto ExpectedInfo = File.getPDBInfoStream();
239   // All PDB Files should have an Info stream.
240   if (!ExpectedInfo)
241     return ExpectedInfo.takeError();
242 
243   // Just because a file with a matching name was found and it was an actual
244   // PDB file doesn't mean it matches.  For it to match the InfoStream's GUID
245   // must match the GUID specified in the TypeServer2 record.
246   if (ExpectedInfo->getGuid() != GuidFromObj)
247     return make_error<pdb::GenericError>(
248         pdb::generic_error_code::type_server_not_found, TSPath);
249 
250   return std::move(NS);
251 }
252 
253 const CVIndexMap &PDBLinker::maybeMergeTypeServerPDB(ObjFile *File,
254                                                      TypeServer2Record &TS) {
255   // First, check if we already loaded a PDB with this GUID. Return the type
256   // index mapping if we have it.
257   auto Insertion = TypeServerIndexMappings.insert({TS.getGuid(), CVIndexMap()});
258   CVIndexMap &IndexMap = Insertion.first->second;
259   if (!Insertion.second)
260     return IndexMap;
261 
262   // Mark this map as a type server map.
263   IndexMap.IsTypeServerMap = true;
264 
265   // Check for a PDB at:
266   // 1. The given file path
267   // 2. Next to the object file or archive file
268   auto ExpectedSession = tryToLoadPDB(TS.getGuid(), TS.getName());
269   if (!ExpectedSession) {
270     consumeError(ExpectedSession.takeError());
271     StringRef LocalPath =
272         !File->ParentName.empty() ? File->ParentName : File->getName();
273     SmallString<128> Path = sys::path::parent_path(LocalPath);
274     sys::path::append(
275         Path, sys::path::filename(TS.getName(), sys::path::Style::windows));
276     ExpectedSession = tryToLoadPDB(TS.getGuid(), Path);
277   }
278   if (auto E = ExpectedSession.takeError())
279     fatal("Type server PDB was not found: " + toString(std::move(E)));
280 
281   // Merge TPI first, because the IPI stream will reference type indices.
282   auto ExpectedTpi = (*ExpectedSession)->getPDBFile().getPDBTpiStream();
283   if (auto E = ExpectedTpi.takeError())
284     fatal("Type server does not have TPI stream: " + toString(std::move(E)));
285   if (auto Err = mergeTypeRecords(TypeTable, IndexMap.TPIMap,
286                                   ExpectedTpi->typeArray()))
287     fatal("codeview::mergeTypeRecords failed: " + toString(std::move(Err)));
288 
289   // Merge IPI.
290   auto ExpectedIpi = (*ExpectedSession)->getPDBFile().getPDBIpiStream();
291   if (auto E = ExpectedIpi.takeError())
292     fatal("Type server does not have TPI stream: " + toString(std::move(E)));
293   if (auto Err = mergeIdRecords(IDTable, IndexMap.TPIMap, IndexMap.IPIMap,
294                                 ExpectedIpi->typeArray()))
295     fatal("codeview::mergeIdRecords failed: " + toString(std::move(Err)));
296 
297   return IndexMap;
298 }
299 
300 static bool remapTypeIndex(TypeIndex &TI, ArrayRef<TypeIndex> TypeIndexMap) {
301   if (TI.isSimple())
302     return true;
303   if (TI.toArrayIndex() >= TypeIndexMap.size())
304     return false;
305   TI = TypeIndexMap[TI.toArrayIndex()];
306   return true;
307 }
308 
309 static void remapTypesInSymbolRecord(ObjFile *File, SymbolKind SymKind,
310                                      MutableArrayRef<uint8_t> Contents,
311                                      const CVIndexMap &IndexMap,
312                                      const TypeTableBuilder &IDTable,
313                                      ArrayRef<TiReference> TypeRefs) {
314   for (const TiReference &Ref : TypeRefs) {
315     unsigned ByteSize = Ref.Count * sizeof(TypeIndex);
316     if (Contents.size() < Ref.Offset + ByteSize)
317       fatal("symbol record too short");
318 
319     // This can be an item index or a type index. Choose the appropriate map.
320     ArrayRef<TypeIndex> TypeOrItemMap = IndexMap.TPIMap;
321     bool IsItemIndex = Ref.Kind == TiRefKind::IndexRef;
322     if (IsItemIndex && IndexMap.IsTypeServerMap)
323       TypeOrItemMap = IndexMap.IPIMap;
324 
325     MutableArrayRef<TypeIndex> TIs(
326         reinterpret_cast<TypeIndex *>(Contents.data() + Ref.Offset), Ref.Count);
327     for (TypeIndex &TI : TIs) {
328       if (!remapTypeIndex(TI, TypeOrItemMap)) {
329         log("ignoring symbol record of kind 0x" + utohexstr(SymKind) + " in " +
330             File->getName() + " with bad " + (IsItemIndex ? "item" : "type") +
331             " index 0x" + utohexstr(TI.getIndex()));
332         TI = TypeIndex(SimpleTypeKind::NotTranslated);
333         continue;
334       }
335     }
336   }
337 }
338 
339 static SymbolKind symbolKind(ArrayRef<uint8_t> RecordData) {
340   const RecordPrefix *Prefix =
341       reinterpret_cast<const RecordPrefix *>(RecordData.data());
342   return static_cast<SymbolKind>(uint16_t(Prefix->RecordKind));
343 }
344 
345 /// MSVC translates S_PROC_ID_END to S_END, and S_[LG]PROC32_ID to S_[LG]PROC32
346 static void translateIdSymbols(MutableArrayRef<uint8_t> &RecordData,
347                                const TypeTableBuilder &IDTable) {
348   RecordPrefix *Prefix = reinterpret_cast<RecordPrefix *>(RecordData.data());
349 
350   SymbolKind Kind = symbolKind(RecordData);
351 
352   if (Kind == SymbolKind::S_PROC_ID_END) {
353     Prefix->RecordKind = SymbolKind::S_END;
354     return;
355   }
356 
357   // In an object file, GPROC32_ID has an embedded reference which refers to the
358   // single object file type index namespace.  This has already been translated
359   // to the PDB file's ID stream index space, but we need to convert this to a
360   // symbol that refers to the type stream index space.  So we remap again from
361   // ID index space to type index space.
362   if (Kind == SymbolKind::S_GPROC32_ID || Kind == SymbolKind::S_LPROC32_ID) {
363     SmallVector<TiReference, 1> Refs;
364     auto Content = RecordData.drop_front(sizeof(RecordPrefix));
365     CVSymbol Sym(Kind, RecordData);
366     discoverTypeIndicesInSymbol(Sym, Refs);
367     assert(Refs.size() == 1);
368     assert(Refs.front().Count == 1);
369 
370     TypeIndex *TI =
371         reinterpret_cast<TypeIndex *>(Content.data() + Refs[0].Offset);
372     // `TI` is the index of a FuncIdRecord or MemberFuncIdRecord which lives in
373     // the IPI stream, whose `FunctionType` member refers to the TPI stream.
374     // Note that LF_FUNC_ID and LF_MEMFUNC_ID have the same record layout, and
375     // in both cases we just need the second type index.
376     if (!TI->isSimple() && !TI->isNoneType()) {
377       ArrayRef<uint8_t> FuncIdData = IDTable.records()[TI->toArrayIndex()];
378       SmallVector<TypeIndex, 2> Indices;
379       discoverTypeIndices(FuncIdData, Indices);
380       assert(Indices.size() == 2);
381       *TI = Indices[1];
382     }
383 
384     Kind = (Kind == SymbolKind::S_GPROC32_ID) ? SymbolKind::S_GPROC32
385                                               : SymbolKind::S_LPROC32;
386     Prefix->RecordKind = uint16_t(Kind);
387   }
388 }
389 
390 /// Copy the symbol record. In a PDB, symbol records must be 4 byte aligned.
391 /// The object file may not be aligned.
392 static MutableArrayRef<uint8_t> copySymbolForPdb(const CVSymbol &Sym,
393                                                  BumpPtrAllocator &Alloc) {
394   size_t Size = alignTo(Sym.length(), alignOf(CodeViewContainer::Pdb));
395   assert(Size >= 4 && "record too short");
396   assert(Size <= MaxRecordLength && "record too long");
397   void *Mem = Alloc.Allocate(Size, 4);
398 
399   // Copy the symbol record and zero out any padding bytes.
400   MutableArrayRef<uint8_t> NewData(reinterpret_cast<uint8_t *>(Mem), Size);
401   memcpy(NewData.data(), Sym.data().data(), Sym.length());
402   memset(NewData.data() + Sym.length(), 0, Size - Sym.length());
403 
404   // Update the record prefix length. It should point to the beginning of the
405   // next record.
406   auto *Prefix = reinterpret_cast<RecordPrefix *>(Mem);
407   Prefix->RecordLen = Size - 2;
408   return NewData;
409 }
410 
411 /// Return true if this symbol opens a scope. This implies that the symbol has
412 /// "parent" and "end" fields, which contain the offset of the S_END or
413 /// S_INLINESITE_END record.
414 static bool symbolOpensScope(SymbolKind Kind) {
415   switch (Kind) {
416   case SymbolKind::S_GPROC32:
417   case SymbolKind::S_LPROC32:
418   case SymbolKind::S_LPROC32_ID:
419   case SymbolKind::S_GPROC32_ID:
420   case SymbolKind::S_BLOCK32:
421   case SymbolKind::S_SEPCODE:
422   case SymbolKind::S_THUNK32:
423   case SymbolKind::S_INLINESITE:
424   case SymbolKind::S_INLINESITE2:
425     return true;
426   default:
427     break;
428   }
429   return false;
430 }
431 
432 static bool symbolEndsScope(SymbolKind Kind) {
433   switch (Kind) {
434   case SymbolKind::S_END:
435   case SymbolKind::S_PROC_ID_END:
436   case SymbolKind::S_INLINESITE_END:
437     return true;
438   default:
439     break;
440   }
441   return false;
442 }
443 
444 struct ScopeRecord {
445   ulittle32_t PtrParent;
446   ulittle32_t PtrEnd;
447 };
448 
449 struct SymbolScope {
450   ScopeRecord *OpeningRecord;
451   uint32_t ScopeOffset;
452 };
453 
454 static void scopeStackOpen(SmallVectorImpl<SymbolScope> &Stack,
455                            uint32_t CurOffset, CVSymbol &Sym) {
456   assert(symbolOpensScope(Sym.kind()));
457   SymbolScope S;
458   S.ScopeOffset = CurOffset;
459   S.OpeningRecord = const_cast<ScopeRecord *>(
460       reinterpret_cast<const ScopeRecord *>(Sym.content().data()));
461   S.OpeningRecord->PtrParent = Stack.empty() ? 0 : Stack.back().ScopeOffset;
462   Stack.push_back(S);
463 }
464 
465 static void scopeStackClose(SmallVectorImpl<SymbolScope> &Stack,
466                             uint32_t CurOffset, ObjFile *File) {
467   if (Stack.empty()) {
468     warn("symbol scopes are not balanced in " + File->getName());
469     return;
470   }
471   SymbolScope S = Stack.pop_back_val();
472   S.OpeningRecord->PtrEnd = CurOffset;
473 }
474 
475 static bool symbolGoesInModuleStream(const CVSymbol &Sym) {
476   switch (Sym.kind()) {
477   case SymbolKind::S_GDATA32:
478   case SymbolKind::S_CONSTANT:
479   case SymbolKind::S_UDT:
480   // We really should not be seeing S_PROCREF and S_LPROCREF in the first place
481   // since they are synthesized by the linker in response to S_GPROC32 and
482   // S_LPROC32, but if we do see them, don't put them in the module stream I
483   // guess.
484   case SymbolKind::S_PROCREF:
485   case SymbolKind::S_LPROCREF:
486     return false;
487   // S_GDATA32 does not go in the module stream, but S_LDATA32 does.
488   case SymbolKind::S_LDATA32:
489   default:
490     return true;
491   }
492 }
493 
494 static bool symbolGoesInGlobalsStream(const CVSymbol &Sym) {
495   switch (Sym.kind()) {
496   case SymbolKind::S_CONSTANT:
497   case SymbolKind::S_GDATA32:
498   // S_LDATA32 goes in both the module stream and the globals stream.
499   case SymbolKind::S_LDATA32:
500   case SymbolKind::S_GPROC32:
501   case SymbolKind::S_LPROC32:
502   // We really should not be seeing S_PROCREF and S_LPROCREF in the first place
503   // since they are synthesized by the linker in response to S_GPROC32 and
504   // S_LPROC32, but if we do see them, copy them straight through.
505   case SymbolKind::S_PROCREF:
506   case SymbolKind::S_LPROCREF:
507     return true;
508   // FIXME: For now, we drop all S_UDT symbols (i.e. they don't go in the
509   // globals stream or the modules stream).  These have special handling which
510   // needs more investigation before we can get right, but by putting them all
511   // into the globals stream WinDbg fails to display local variables of class
512   // types saying that it cannot find the type Foo *.  So as a stopgap just to
513   // keep things working, we drop them.
514   case SymbolKind::S_UDT:
515   default:
516     return false;
517   }
518 }
519 
520 static void addGlobalSymbol(pdb::GSIStreamBuilder &Builder, ObjFile &File,
521                             const CVSymbol &Sym) {
522   switch (Sym.kind()) {
523   case SymbolKind::S_CONSTANT:
524   case SymbolKind::S_UDT:
525   case SymbolKind::S_GDATA32:
526   case SymbolKind::S_LDATA32:
527   case SymbolKind::S_PROCREF:
528   case SymbolKind::S_LPROCREF:
529     Builder.addGlobalSymbol(Sym);
530     break;
531   case SymbolKind::S_GPROC32:
532   case SymbolKind::S_LPROC32: {
533     SymbolRecordKind K = SymbolRecordKind::ProcRefSym;
534     if (Sym.kind() == SymbolKind::S_LPROC32)
535       K = SymbolRecordKind::LocalProcRef;
536     ProcRefSym PS(K);
537     PS.Module = static_cast<uint16_t>(File.ModuleDBI->getModuleIndex());
538     // For some reason, MSVC seems to add one to this value.
539     ++PS.Module;
540     PS.Name = getSymbolName(Sym);
541     PS.SumName = 0;
542     PS.SymOffset = File.ModuleDBI->getNextSymbolOffset();
543     Builder.addGlobalSymbol(PS);
544     break;
545   }
546   default:
547     llvm_unreachable("Invalid symbol kind!");
548   }
549 }
550 
551 static void mergeSymbolRecords(BumpPtrAllocator &Alloc, ObjFile *File,
552                                pdb::GSIStreamBuilder &GsiBuilder,
553                                const CVIndexMap &IndexMap,
554                                const TypeTableBuilder &IDTable,
555                                BinaryStreamRef SymData) {
556   // FIXME: Improve error recovery by warning and skipping records when
557   // possible.
558   CVSymbolArray Syms;
559   BinaryStreamReader Reader(SymData);
560   ExitOnErr(Reader.readArray(Syms, Reader.getLength()));
561   SmallVector<SymbolScope, 4> Scopes;
562   for (CVSymbol Sym : Syms) {
563     // Discover type index references in the record. Skip it if we don't know
564     // where they are.
565     SmallVector<TiReference, 32> TypeRefs;
566     if (!discoverTypeIndicesInSymbol(Sym, TypeRefs)) {
567       log("ignoring unknown symbol record with kind 0x" + utohexstr(Sym.kind()));
568       continue;
569     }
570 
571     // Copy the symbol record so we can mutate it.
572     MutableArrayRef<uint8_t> NewData = copySymbolForPdb(Sym, Alloc);
573 
574     // Re-map all the type index references.
575     MutableArrayRef<uint8_t> Contents =
576         NewData.drop_front(sizeof(RecordPrefix));
577     remapTypesInSymbolRecord(File, Sym.kind(), Contents, IndexMap, IDTable,
578                              TypeRefs);
579 
580     // An object file may have S_xxx_ID symbols, but these get converted to
581     // "real" symbols in a PDB.
582     translateIdSymbols(NewData, IDTable);
583 
584     SymbolKind NewKind = symbolKind(NewData);
585 
586     // Fill in "Parent" and "End" fields by maintaining a stack of scopes.
587     CVSymbol NewSym(NewKind, NewData);
588     if (symbolOpensScope(NewKind))
589       scopeStackOpen(Scopes, File->ModuleDBI->getNextSymbolOffset(), NewSym);
590     else if (symbolEndsScope(NewKind))
591       scopeStackClose(Scopes, File->ModuleDBI->getNextSymbolOffset(), File);
592 
593     // Add the symbol to the globals stream if necessary.  Do this before adding
594     // the symbol to the module since we may need to get the next symbol offset,
595     // and writing to the module's symbol stream will update that offset.
596     if (symbolGoesInGlobalsStream(NewSym))
597       addGlobalSymbol(GsiBuilder, *File, NewSym);
598 
599     // Add the symbol to the module.
600     if (symbolGoesInModuleStream(NewSym))
601       File->ModuleDBI->addSymbol(NewSym);
602   }
603 }
604 
605 // Allocate memory for a .debug$S section and relocate it.
606 static ArrayRef<uint8_t> relocateDebugChunk(BumpPtrAllocator &Alloc,
607                                             SectionChunk *DebugChunk) {
608   uint8_t *Buffer = Alloc.Allocate<uint8_t>(DebugChunk->getSize());
609   assert(DebugChunk->OutputSectionOff == 0 &&
610          "debug sections should not be in output sections");
611   DebugChunk->writeTo(Buffer);
612   return consumeDebugMagic(makeArrayRef(Buffer, DebugChunk->getSize()),
613                            ".debug$S");
614 }
615 
616 void PDBLinker::addObjFile(ObjFile *File) {
617   // Add a module descriptor for every object file. We need to put an absolute
618   // path to the object into the PDB. If this is a plain object, we make its
619   // path absolute. If it's an object in an archive, we make the archive path
620   // absolute.
621   bool InArchive = !File->ParentName.empty();
622   SmallString<128> Path = InArchive ? File->ParentName : File->getName();
623   sys::fs::make_absolute(Path);
624   sys::path::native(Path, sys::path::Style::windows);
625   StringRef Name = InArchive ? File->getName() : StringRef(Path);
626 
627   File->ModuleDBI = &ExitOnErr(Builder.getDbiBuilder().addModuleInfo(Name));
628   File->ModuleDBI->setObjFileName(Path);
629 
630   // Before we can process symbol substreams from .debug$S, we need to process
631   // type information, file checksums, and the string table.  Add type info to
632   // the PDB first, so that we can get the map from object file type and item
633   // indices to PDB type and item indices.
634   CVIndexMap ObjectIndexMap;
635   const CVIndexMap &IndexMap = mergeDebugT(File, ObjectIndexMap);
636 
637   // Now do all live .debug$S sections.
638   for (SectionChunk *DebugChunk : File->getDebugChunks()) {
639     if (!DebugChunk->isLive() || DebugChunk->getSectionName() != ".debug$S")
640       continue;
641 
642     ArrayRef<uint8_t> RelocatedDebugContents =
643         relocateDebugChunk(Alloc, DebugChunk);
644     if (RelocatedDebugContents.empty())
645       continue;
646 
647     DebugSubsectionArray Subsections;
648     BinaryStreamReader Reader(RelocatedDebugContents, support::little);
649     ExitOnErr(Reader.readArray(Subsections, RelocatedDebugContents.size()));
650 
651     DebugStringTableSubsectionRef CVStrTab;
652     DebugChecksumsSubsectionRef Checksums;
653     for (const DebugSubsectionRecord &SS : Subsections) {
654       switch (SS.kind()) {
655       case DebugSubsectionKind::StringTable:
656         ExitOnErr(CVStrTab.initialize(SS.getRecordData()));
657         break;
658       case DebugSubsectionKind::FileChecksums:
659         ExitOnErr(Checksums.initialize(SS.getRecordData()));
660         break;
661       case DebugSubsectionKind::Lines:
662         // We can add the relocated line table directly to the PDB without
663         // modification because the file checksum offsets will stay the same.
664         File->ModuleDBI->addDebugSubsection(SS);
665         break;
666       case DebugSubsectionKind::Symbols:
667         mergeSymbolRecords(Alloc, File, Builder.getGsiBuilder(), IndexMap,
668                            IDTable, SS.getRecordData());
669         break;
670       default:
671         // FIXME: Process the rest of the subsections.
672         break;
673       }
674     }
675 
676     if (Checksums.valid()) {
677       // Make a new file checksum table that refers to offsets in the PDB-wide
678       // string table. Generally the string table subsection appears after the
679       // checksum table, so we have to do this after looping over all the
680       // subsections.
681       if (!CVStrTab.valid())
682         fatal(".debug$S sections must have both a string table subsection "
683               "and a checksum subsection table or neither");
684       auto NewChecksums = make_unique<DebugChecksumsSubsection>(PDBStrTab);
685       for (FileChecksumEntry &FC : Checksums) {
686         StringRef FileName = ExitOnErr(CVStrTab.getString(FC.FileNameOffset));
687         ExitOnErr(Builder.getDbiBuilder().addModuleSourceFile(*File->ModuleDBI,
688                                                               FileName));
689         NewChecksums->addChecksum(FileName, FC.Kind, FC.Checksum);
690       }
691       File->ModuleDBI->addDebugSubsection(std::move(NewChecksums));
692     }
693   }
694 }
695 
696 static PublicSym32 createPublic(Defined *Def) {
697   PublicSym32 Pub(SymbolKind::S_PUB32);
698   Pub.Name = Def->getName();
699   if (auto *D = dyn_cast<DefinedCOFF>(Def)) {
700     if (D->getCOFFSymbol().isFunctionDefinition())
701       Pub.Flags = PublicSymFlags::Function;
702   } else if (isa<DefinedImportThunk>(Def)) {
703     Pub.Flags = PublicSymFlags::Function;
704   }
705 
706   OutputSection *OS = Def->getChunk()->getOutputSection();
707   assert(OS && "all publics should be in final image");
708   Pub.Offset = Def->getRVA() - OS->getRVA();
709   Pub.Segment = OS->SectionIndex;
710   return Pub;
711 }
712 
713 // Add all object files to the PDB. Merge .debug$T sections into IpiData and
714 // TpiData.
715 void PDBLinker::addObjectsToPDB() {
716   for (ObjFile *File : ObjFile::Instances)
717     addObjFile(File);
718 
719   Builder.getStringTableBuilder().setStrings(PDBStrTab);
720 
721   // Construct TPI stream contents.
722   addTypeInfo(Builder.getTpiBuilder(), TypeTable);
723 
724   // Construct IPI stream contents.
725   addTypeInfo(Builder.getIpiBuilder(), IDTable);
726 
727   // Compute the public and global symbols.
728   auto &GsiBuilder = Builder.getGsiBuilder();
729   std::vector<PublicSym32> Publics;
730   Symtab->forEachSymbol([&Publics](Symbol *S) {
731     // Only emit defined, live symbols that have a chunk.
732     auto *Def = dyn_cast<Defined>(S);
733     if (Def && Def->isLive() && Def->getChunk())
734       Publics.push_back(createPublic(Def));
735   });
736 
737   if (!Publics.empty()) {
738     // Sort the public symbols and add them to the stream.
739     std::sort(Publics.begin(), Publics.end(),
740               [](const PublicSym32 &L, const PublicSym32 &R) {
741                 return L.Name < R.Name;
742               });
743     for (const PublicSym32 &Pub : Publics)
744       GsiBuilder.addPublicSymbol(Pub);
745   }
746 }
747 
748 static void addCommonLinkerModuleSymbols(StringRef Path,
749                                          pdb::DbiModuleDescriptorBuilder &Mod,
750                                          BumpPtrAllocator &Allocator) {
751   ObjNameSym ONS(SymbolRecordKind::ObjNameSym);
752   Compile3Sym CS(SymbolRecordKind::Compile3Sym);
753   EnvBlockSym EBS(SymbolRecordKind::EnvBlockSym);
754 
755   ONS.Name = "* Linker *";
756   ONS.Signature = 0;
757 
758   CS.Machine = Config->is64() ? CPUType::X64 : CPUType::Intel80386;
759   // Interestingly, if we set the string to 0.0.0.0, then when trying to view
760   // local variables WinDbg emits an error that private symbols are not present.
761   // By setting this to a valid MSVC linker version string, local variables are
762   // displayed properly.   As such, even though it is not representative of
763   // LLVM's version information, we need this for compatibility.
764   CS.Flags = CompileSym3Flags::None;
765   CS.VersionBackendBuild = 25019;
766   CS.VersionBackendMajor = 14;
767   CS.VersionBackendMinor = 10;
768   CS.VersionBackendQFE = 0;
769 
770   // MSVC also sets the frontend to 0.0.0.0 since this is specifically for the
771   // linker module (which is by definition a backend), so we don't need to do
772   // anything here.  Also, it seems we can use "LLVM Linker" for the linker name
773   // without any problems.  Only the backend version has to be hardcoded to a
774   // magic number.
775   CS.VersionFrontendBuild = 0;
776   CS.VersionFrontendMajor = 0;
777   CS.VersionFrontendMinor = 0;
778   CS.VersionFrontendQFE = 0;
779   CS.Version = "LLVM Linker";
780   CS.setLanguage(SourceLanguage::Link);
781 
782   ArrayRef<StringRef> Args = makeArrayRef(Config->Argv).drop_front();
783   std::string ArgStr = llvm::join(Args, " ");
784   EBS.Fields.push_back("cwd");
785   SmallString<64> cwd;
786   sys::fs::current_path(cwd);
787   EBS.Fields.push_back(cwd);
788   EBS.Fields.push_back("exe");
789   SmallString<64> exe = Config->Argv[0];
790   llvm::sys::fs::make_absolute(exe);
791   EBS.Fields.push_back(exe);
792   EBS.Fields.push_back("pdb");
793   EBS.Fields.push_back(Path);
794   EBS.Fields.push_back("cmd");
795   EBS.Fields.push_back(ArgStr);
796   Mod.addSymbol(codeview::SymbolSerializer::writeOneSymbol(
797       ONS, Allocator, CodeViewContainer::Pdb));
798   Mod.addSymbol(codeview::SymbolSerializer::writeOneSymbol(
799       CS, Allocator, CodeViewContainer::Pdb));
800   Mod.addSymbol(codeview::SymbolSerializer::writeOneSymbol(
801       EBS, Allocator, CodeViewContainer::Pdb));
802 }
803 
804 static void addLinkerModuleSectionSymbol(pdb::DbiModuleDescriptorBuilder &Mod,
805                                          OutputSection &OS,
806                                          BumpPtrAllocator &Allocator) {
807   SectionSym Sym(SymbolRecordKind::SectionSym);
808   Sym.Alignment = 12; // 2^12 = 4KB
809   Sym.Characteristics = OS.getCharacteristics();
810   Sym.Length = OS.getVirtualSize();
811   Sym.Name = OS.getName();
812   Sym.Rva = OS.getRVA();
813   Sym.SectionNumber = OS.SectionIndex;
814   Mod.addSymbol(codeview::SymbolSerializer::writeOneSymbol(
815       Sym, Allocator, CodeViewContainer::Pdb));
816 }
817 
818 // Creates a PDB file.
819 void coff::createPDB(SymbolTable *Symtab,
820                      ArrayRef<OutputSection *> OutputSections,
821                      ArrayRef<uint8_t> SectionTable,
822                      const llvm::codeview::DebugInfo &BuildId) {
823   PDBLinker PDB(Symtab);
824   PDB.initialize(BuildId);
825   PDB.addObjectsToPDB();
826   PDB.addSections(OutputSections, SectionTable);
827   PDB.commit();
828 }
829 
830 void PDBLinker::initialize(const llvm::codeview::DebugInfo &BuildId) {
831   ExitOnErr(Builder.initialize(4096)); // 4096 is blocksize
832 
833   // Create streams in MSF for predefined streams, namely
834   // PDB, TPI, DBI and IPI.
835   for (int I = 0; I < (int)pdb::kSpecialStreamCount; ++I)
836     ExitOnErr(Builder.getMsfBuilder().addStream(0));
837 
838   // Add an Info stream.
839   auto &InfoBuilder = Builder.getInfoBuilder();
840   InfoBuilder.setAge(BuildId.PDB70.Age);
841 
842   GUID uuid;
843   memcpy(&uuid, &BuildId.PDB70.Signature, sizeof(uuid));
844   InfoBuilder.setGuid(uuid);
845   InfoBuilder.setSignature(time(nullptr));
846   InfoBuilder.setVersion(pdb::PdbRaw_ImplVer::PdbImplVC70);
847 
848   // Add an empty DBI stream.
849   pdb::DbiStreamBuilder &DbiBuilder = Builder.getDbiBuilder();
850   DbiBuilder.setAge(BuildId.PDB70.Age);
851   DbiBuilder.setVersionHeader(pdb::PdbDbiV70);
852   ExitOnErr(DbiBuilder.addDbgStream(pdb::DbgHeaderType::NewFPO, {}));
853 }
854 
855 void PDBLinker::addSectionContrib(pdb::DbiModuleDescriptorBuilder &LinkerModule,
856                                   OutputSection *OS, Chunk *C) {
857   pdb::SectionContrib SC;
858   memset(&SC, 0, sizeof(SC));
859   SC.ISect = OS->SectionIndex;
860   SC.Off = C->getRVA() - OS->getRVA();
861   SC.Size = C->getSize();
862   if (auto *SecChunk = dyn_cast<SectionChunk>(C)) {
863     SC.Characteristics = SecChunk->Header->Characteristics;
864     SC.Imod = SecChunk->File->ModuleDBI->getModuleIndex();
865     ArrayRef<uint8_t> Contents = SecChunk->getContents();
866     JamCRC CRC(0);
867     ArrayRef<char> CharContents = makeArrayRef(
868         reinterpret_cast<const char *>(Contents.data()), Contents.size());
869     CRC.update(CharContents);
870     SC.DataCrc = CRC.getCRC();
871   } else {
872     SC.Characteristics = OS->getCharacteristics();
873     // FIXME: When we start creating DBI for import libraries, use those here.
874     SC.Imod = LinkerModule.getModuleIndex();
875   }
876   SC.RelocCrc = 0; // FIXME
877   Builder.getDbiBuilder().addSectionContrib(SC);
878 }
879 
880 void PDBLinker::addSections(ArrayRef<OutputSection *> OutputSections,
881                             ArrayRef<uint8_t> SectionTable) {
882   // It's not entirely clear what this is, but the * Linker * module uses it.
883   pdb::DbiStreamBuilder &DbiBuilder = Builder.getDbiBuilder();
884   NativePath = Config->PDBPath;
885   sys::fs::make_absolute(NativePath);
886   sys::path::native(NativePath, sys::path::Style::windows);
887   uint32_t PdbFilePathNI = DbiBuilder.addECName(NativePath);
888   auto &LinkerModule = ExitOnErr(DbiBuilder.addModuleInfo("* Linker *"));
889   LinkerModule.setPdbFilePathNI(PdbFilePathNI);
890   addCommonLinkerModuleSymbols(NativePath, LinkerModule, Alloc);
891 
892   // Add section contributions. They must be ordered by ascending RVA.
893   for (OutputSection *OS : OutputSections) {
894     addLinkerModuleSectionSymbol(LinkerModule, *OS, Alloc);
895     for (Chunk *C : OS->getChunks())
896       addSectionContrib(LinkerModule, OS, C);
897   }
898 
899   // Add Section Map stream.
900   ArrayRef<object::coff_section> Sections = {
901       (const object::coff_section *)SectionTable.data(),
902       SectionTable.size() / sizeof(object::coff_section)};
903   SectionMap = pdb::DbiStreamBuilder::createSectionMap(Sections);
904   DbiBuilder.setSectionMap(SectionMap);
905 
906   // Add COFF section header stream.
907   ExitOnErr(
908       DbiBuilder.addDbgStream(pdb::DbgHeaderType::SectionHdr, SectionTable));
909 }
910 
911 void PDBLinker::commit() {
912   // Write to a file.
913   ExitOnErr(Builder.commit(Config->PDBPath));
914 }
915