1 //===- InputFiles.h ---------------------------------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #ifndef LLD_ELF_INPUT_FILES_H 10 #define LLD_ELF_INPUT_FILES_H 11 12 #include "Config.h" 13 #include "Symbols.h" 14 #include "lld/Common/ErrorHandler.h" 15 #include "lld/Common/LLVM.h" 16 #include "lld/Common/Reproduce.h" 17 #include "llvm/ADT/DenseSet.h" 18 #include "llvm/BinaryFormat/Magic.h" 19 #include "llvm/Object/ELF.h" 20 #include "llvm/Support/MemoryBufferRef.h" 21 #include "llvm/Support/Threading.h" 22 23 namespace llvm { 24 struct DILineInfo; 25 class TarWriter; 26 namespace lto { 27 class InputFile; 28 } 29 } // namespace llvm 30 31 namespace lld { 32 class DWARFCache; 33 34 // Returns "<internal>", "foo.a(bar.o)" or "baz.o". 35 std::string toString(const elf::InputFile *f); 36 37 namespace elf { 38 39 class InputSection; 40 class Symbol; 41 42 // If --reproduce is specified, all input files are written to this tar archive. 43 extern std::unique_ptr<llvm::TarWriter> tar; 44 45 // Opens a given file. 46 std::optional<MemoryBufferRef> readFile(StringRef path); 47 48 // Add symbols in File to the symbol table. 49 void parseFile(InputFile *file); 50 51 // The root class of input files. 52 class InputFile { 53 protected: 54 std::unique_ptr<Symbol *[]> symbols; 55 uint32_t numSymbols = 0; 56 SmallVector<InputSectionBase *, 0> sections; 57 58 public: 59 enum Kind : uint8_t { 60 ObjKind, 61 SharedKind, 62 ArchiveKind, 63 BitcodeKind, 64 BinaryKind, 65 }; 66 67 Kind kind() const { return fileKind; } 68 69 bool isElf() const { 70 Kind k = kind(); 71 return k == ObjKind || k == SharedKind; 72 } 73 74 StringRef getName() const { return mb.getBufferIdentifier(); } 75 MemoryBufferRef mb; 76 77 // Returns sections. It is a runtime error to call this function 78 // on files that don't have the notion of sections. 79 ArrayRef<InputSectionBase *> getSections() const { 80 assert(fileKind == ObjKind || fileKind == BinaryKind); 81 return sections; 82 } 83 84 // Returns object file symbols. It is a runtime error to call this 85 // function on files of other types. 86 ArrayRef<Symbol *> getSymbols() const { 87 assert(fileKind == BinaryKind || fileKind == ObjKind || 88 fileKind == BitcodeKind); 89 return {symbols.get(), numSymbols}; 90 } 91 92 // Get filename to use for linker script processing. 93 StringRef getNameForScript() const; 94 95 // Check if a non-common symbol should be extracted to override a common 96 // definition. 97 bool shouldExtractForCommon(StringRef name); 98 99 // .got2 in the current file. This is used by PPC32 -fPIC/-fPIE to compute 100 // offsets in PLT call stubs. 101 InputSection *ppc32Got2 = nullptr; 102 103 // Index of MIPS GOT built for this file. 104 uint32_t mipsGotIndex = -1; 105 106 // groupId is used for --warn-backrefs which is an optional error 107 // checking feature. All files within the same --{start,end}-group or 108 // --{start,end}-lib get the same group ID. Otherwise, each file gets a new 109 // group ID. For more info, see checkDependency() in SymbolTable.cpp. 110 uint32_t groupId; 111 static bool isInGroup; 112 static uint32_t nextGroupId; 113 114 // If this is an architecture-specific file, the following members 115 // have ELF type (i.e. ELF{32,64}{LE,BE}) and target machine type. 116 uint16_t emachine = llvm::ELF::EM_NONE; 117 const Kind fileKind; 118 ELFKind ekind = ELFNoneKind; 119 uint8_t osabi = 0; 120 uint8_t abiVersion = 0; 121 122 // True if this is a relocatable object file/bitcode file between --start-lib 123 // and --end-lib. 124 bool lazy = false; 125 126 // True if this is an argument for --just-symbols. Usually false. 127 bool justSymbols = false; 128 129 std::string getSrcMsg(const Symbol &sym, InputSectionBase &sec, 130 uint64_t offset); 131 132 // On PPC64 we need to keep track of which files contain small code model 133 // relocations that access the .toc section. To minimize the chance of a 134 // relocation overflow, files that do contain said relocations should have 135 // their .toc sections sorted closer to the .got section than files that do 136 // not contain any small code model relocations. Thats because the toc-pointer 137 // is defined to point at .got + 0x8000 and the instructions used with small 138 // code model relocations support immediates in the range [-0x8000, 0x7FFC], 139 // making the addressable range relative to the toc pointer 140 // [.got, .got + 0xFFFC]. 141 bool ppc64SmallCodeModelTocRelocs = false; 142 143 // True if the file has TLSGD/TLSLD GOT relocations without R_PPC64_TLSGD or 144 // R_PPC64_TLSLD. Disable TLS relaxation to avoid bad code generation. 145 bool ppc64DisableTLSRelax = false; 146 147 protected: 148 InputFile(Kind k, MemoryBufferRef m); 149 150 public: 151 // If not empty, this stores the name of the archive containing this file. 152 // We use this string for creating error messages. 153 SmallString<0> archiveName; 154 // Cache for toString(). Only toString() should use this member. 155 mutable SmallString<0> toStringCache; 156 157 private: 158 // Cache for getNameForScript(). 159 mutable SmallString<0> nameForScriptCache; 160 }; 161 162 class ELFFileBase : public InputFile { 163 public: 164 ELFFileBase(Kind k, ELFKind ekind, MemoryBufferRef m); 165 static bool classof(const InputFile *f) { return f->isElf(); } 166 167 void init(); 168 template <typename ELFT> llvm::object::ELFFile<ELFT> getObj() const { 169 return check(llvm::object::ELFFile<ELFT>::create(mb.getBuffer())); 170 } 171 172 StringRef getStringTable() const { return stringTable; } 173 174 ArrayRef<Symbol *> getLocalSymbols() { 175 if (numSymbols == 0) 176 return {}; 177 return llvm::ArrayRef(symbols.get() + 1, firstGlobal - 1); 178 } 179 ArrayRef<Symbol *> getGlobalSymbols() { 180 return llvm::ArrayRef(symbols.get() + firstGlobal, 181 numSymbols - firstGlobal); 182 } 183 MutableArrayRef<Symbol *> getMutableGlobalSymbols() { 184 return llvm::MutableArrayRef(symbols.get() + firstGlobal, 185 numSymbols - firstGlobal); 186 } 187 188 template <typename ELFT> typename ELFT::ShdrRange getELFShdrs() const { 189 return typename ELFT::ShdrRange( 190 reinterpret_cast<const typename ELFT::Shdr *>(elfShdrs), numELFShdrs); 191 } 192 template <typename ELFT> typename ELFT::SymRange getELFSyms() const { 193 return typename ELFT::SymRange( 194 reinterpret_cast<const typename ELFT::Sym *>(elfSyms), numELFSyms); 195 } 196 template <typename ELFT> typename ELFT::SymRange getGlobalELFSyms() const { 197 return getELFSyms<ELFT>().slice(firstGlobal); 198 } 199 200 protected: 201 // Initializes this class's member variables. 202 template <typename ELFT> void init(InputFile::Kind k); 203 204 StringRef stringTable; 205 const void *elfShdrs = nullptr; 206 const void *elfSyms = nullptr; 207 uint32_t numELFShdrs = 0; 208 uint32_t numELFSyms = 0; 209 uint32_t firstGlobal = 0; 210 211 public: 212 uint32_t andFeatures = 0; 213 bool hasCommonSyms = false; 214 }; 215 216 // .o file. 217 template <class ELFT> class ObjFile : public ELFFileBase { 218 LLVM_ELF_IMPORT_TYPES_ELFT(ELFT) 219 220 public: 221 static bool classof(const InputFile *f) { return f->kind() == ObjKind; } 222 223 llvm::object::ELFFile<ELFT> getObj() const { 224 return this->ELFFileBase::getObj<ELFT>(); 225 } 226 227 ObjFile(ELFKind ekind, MemoryBufferRef m, StringRef archiveName) 228 : ELFFileBase(ObjKind, ekind, m) { 229 this->archiveName = archiveName; 230 } 231 232 void parse(bool ignoreComdats = false); 233 void parseLazy(); 234 235 StringRef getShtGroupSignature(ArrayRef<Elf_Shdr> sections, 236 const Elf_Shdr &sec); 237 238 Symbol &getSymbol(uint32_t symbolIndex) const { 239 if (symbolIndex >= numSymbols) 240 fatal(toString(this) + ": invalid symbol index"); 241 return *this->symbols[symbolIndex]; 242 } 243 244 uint32_t getSectionIndex(const Elf_Sym &sym) const; 245 246 template <typename RelT> Symbol &getRelocTargetSym(const RelT &rel) const { 247 uint32_t symIndex = rel.getSymbol(config->isMips64EL); 248 return getSymbol(symIndex); 249 } 250 251 std::optional<llvm::DILineInfo> getDILineInfo(InputSectionBase *, uint64_t); 252 std::optional<std::pair<std::string, unsigned>> 253 getVariableLoc(StringRef name); 254 255 // Name of source file obtained from STT_FILE symbol value, 256 // or empty string if there is no such symbol in object file 257 // symbol table. 258 StringRef sourceFile; 259 260 // Pointer to this input file's .llvm_addrsig section, if it has one. 261 const Elf_Shdr *addrsigSec = nullptr; 262 263 // SHT_LLVM_CALL_GRAPH_PROFILE section index. 264 uint32_t cgProfileSectionIndex = 0; 265 266 // MIPS GP0 value defined by this file. This value represents the gp value 267 // used to create the relocatable object and required to support 268 // R_MIPS_GPREL16 / R_MIPS_GPREL32 relocations. 269 uint32_t mipsGp0 = 0; 270 271 // True if the file defines functions compiled with 272 // -fsplit-stack. Usually false. 273 bool splitStack = false; 274 275 // True if the file defines functions compiled with -fsplit-stack, 276 // but had one or more functions with the no_split_stack attribute. 277 bool someNoSplitStack = false; 278 279 // Get cached DWARF information. 280 DWARFCache *getDwarf(); 281 282 void initSectionsAndLocalSyms(bool ignoreComdats); 283 void postParse(); 284 285 private: 286 void initializeSections(bool ignoreComdats, 287 const llvm::object::ELFFile<ELFT> &obj); 288 void initializeSymbols(const llvm::object::ELFFile<ELFT> &obj); 289 void initializeJustSymbols(); 290 291 InputSectionBase *getRelocTarget(uint32_t idx, const Elf_Shdr &sec, 292 uint32_t info); 293 InputSectionBase *createInputSection(uint32_t idx, const Elf_Shdr &sec, 294 StringRef name); 295 296 bool shouldMerge(const Elf_Shdr &sec, StringRef name); 297 298 // Each ELF symbol contains a section index which the symbol belongs to. 299 // However, because the number of bits dedicated for that is limited, a 300 // symbol can directly point to a section only when the section index is 301 // equal to or smaller than 65280. 302 // 303 // If an object file contains more than 65280 sections, the file must 304 // contain .symtab_shndx section. The section contains an array of 305 // 32-bit integers whose size is the same as the number of symbols. 306 // Nth symbol's section index is in the Nth entry of .symtab_shndx. 307 // 308 // The following variable contains the contents of .symtab_shndx. 309 // If the section does not exist (which is common), the array is empty. 310 ArrayRef<Elf_Word> shndxTable; 311 312 // Debugging information to retrieve source file and line for error 313 // reporting. Linker may find reasonable number of errors in a 314 // single object file, so we cache debugging information in order to 315 // parse it only once for each object file we link. 316 std::unique_ptr<DWARFCache> dwarf; 317 llvm::once_flag initDwarf; 318 }; 319 320 class BitcodeFile : public InputFile { 321 public: 322 BitcodeFile(MemoryBufferRef m, StringRef archiveName, 323 uint64_t offsetInArchive, bool lazy); 324 static bool classof(const InputFile *f) { return f->kind() == BitcodeKind; } 325 void parse(); 326 void parseLazy(); 327 void postParse(); 328 std::unique_ptr<llvm::lto::InputFile> obj; 329 std::vector<bool> keptComdats; 330 }; 331 332 // .so file. 333 class SharedFile : public ELFFileBase { 334 public: 335 SharedFile(MemoryBufferRef m, StringRef defaultSoName); 336 337 // This is actually a vector of Elf_Verdef pointers. 338 SmallVector<const void *, 0> verdefs; 339 340 // If the output file needs Elf_Verneed data structures for this file, this is 341 // a vector of Elf_Vernaux version identifiers that map onto the entries in 342 // Verdefs, otherwise it is empty. 343 SmallVector<uint32_t, 0> vernauxs; 344 345 static unsigned vernauxNum; 346 347 SmallVector<StringRef, 0> dtNeeded; 348 StringRef soName; 349 350 static bool classof(const InputFile *f) { return f->kind() == SharedKind; } 351 352 template <typename ELFT> void parse(); 353 354 // Used for --as-needed 355 bool isNeeded; 356 357 // Non-weak undefined symbols which are not yet resolved when the SO is 358 // parsed. Only filled for `--no-allow-shlib-undefined`. 359 SmallVector<Symbol *, 0> requiredSymbols; 360 361 private: 362 template <typename ELFT> 363 std::vector<uint32_t> parseVerneed(const llvm::object::ELFFile<ELFT> &obj, 364 const typename ELFT::Shdr *sec); 365 }; 366 367 class BinaryFile : public InputFile { 368 public: 369 explicit BinaryFile(MemoryBufferRef m) : InputFile(BinaryKind, m) {} 370 static bool classof(const InputFile *f) { return f->kind() == BinaryKind; } 371 void parse(); 372 }; 373 374 ELFFileBase *createObjFile(MemoryBufferRef mb, StringRef archiveName = "", 375 bool lazy = false); 376 377 std::string replaceThinLTOSuffix(StringRef path); 378 379 } // namespace elf 380 } // namespace lld 381 382 #endif 383