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