1 //===- Driver.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 // The driver drives the entire linking process. It is responsible for 11 // parsing command line options and doing whatever it is instructed to do. 12 // 13 // One notable thing in the LLD's driver when compared to other linkers is 14 // that the LLD's driver is agnostic on the host operating system. 15 // Other linkers usually have implicit default values (such as a dynamic 16 // linker path or library paths) for each host OS. 17 // 18 // I don't think implicit default values are useful because they are 19 // usually explicitly specified by the compiler driver. They can even 20 // be harmful when you are doing cross-linking. Therefore, in LLD, we 21 // simply trust the compiler driver to pass all required options and 22 // don't try to make effort on our side. 23 // 24 //===----------------------------------------------------------------------===// 25 26 #include "Driver.h" 27 #include "Config.h" 28 #include "Filesystem.h" 29 #include "ICF.h" 30 #include "InputFiles.h" 31 #include "InputSection.h" 32 #include "LinkerScript.h" 33 #include "MarkLive.h" 34 #include "OutputSections.h" 35 #include "ScriptParser.h" 36 #include "SymbolTable.h" 37 #include "Symbols.h" 38 #include "SyntheticSections.h" 39 #include "Target.h" 40 #include "Writer.h" 41 #include "lld/Common/Args.h" 42 #include "lld/Common/Driver.h" 43 #include "lld/Common/ErrorHandler.h" 44 #include "lld/Common/Memory.h" 45 #include "lld/Common/Strings.h" 46 #include "lld/Common/TargetOptionsCommandFlags.h" 47 #include "lld/Common/Threads.h" 48 #include "lld/Common/Version.h" 49 #include "llvm/ADT/SetVector.h" 50 #include "llvm/ADT/StringExtras.h" 51 #include "llvm/ADT/StringSwitch.h" 52 #include "llvm/Support/CommandLine.h" 53 #include "llvm/Support/Compression.h" 54 #include "llvm/Support/LEB128.h" 55 #include "llvm/Support/Path.h" 56 #include "llvm/Support/TarWriter.h" 57 #include "llvm/Support/TargetSelect.h" 58 #include "llvm/Support/raw_ostream.h" 59 #include <cstdlib> 60 #include <utility> 61 62 using namespace llvm; 63 using namespace llvm::ELF; 64 using namespace llvm::object; 65 using namespace llvm::sys; 66 67 using namespace lld; 68 using namespace lld::elf; 69 70 Configuration *elf::Config; 71 LinkerDriver *elf::Driver; 72 73 static void setConfigs(opt::InputArgList &Args); 74 75 bool elf::link(ArrayRef<const char *> Args, bool CanExitEarly, 76 raw_ostream &Error) { 77 errorHandler().LogName = sys::path::filename(Args[0]); 78 errorHandler().ErrorLimitExceededMsg = 79 "too many errors emitted, stopping now (use " 80 "-error-limit=0 to see all errors)"; 81 errorHandler().ErrorOS = &Error; 82 errorHandler().ExitEarly = CanExitEarly; 83 errorHandler().ColorDiagnostics = Error.has_colors(); 84 85 InputSections.clear(); 86 OutputSections.clear(); 87 Tar = nullptr; 88 BinaryFiles.clear(); 89 BitcodeFiles.clear(); 90 ObjectFiles.clear(); 91 SharedFiles.clear(); 92 93 Config = make<Configuration>(); 94 Driver = make<LinkerDriver>(); 95 Script = make<LinkerScript>(); 96 Symtab = make<SymbolTable>(); 97 Config->ProgName = Args[0]; 98 99 Driver->main(Args); 100 101 // Exit immediately if we don't need to return to the caller. 102 // This saves time because the overhead of calling destructors 103 // for all globally-allocated objects is not negligible. 104 if (CanExitEarly) 105 exitLld(errorCount() ? 1 : 0); 106 107 freeArena(); 108 return !errorCount(); 109 } 110 111 // Parses a linker -m option. 112 static std::tuple<ELFKind, uint16_t, uint8_t> parseEmulation(StringRef Emul) { 113 uint8_t OSABI = 0; 114 StringRef S = Emul; 115 if (S.endswith("_fbsd")) { 116 S = S.drop_back(5); 117 OSABI = ELFOSABI_FREEBSD; 118 } 119 120 std::pair<ELFKind, uint16_t> Ret = 121 StringSwitch<std::pair<ELFKind, uint16_t>>(S) 122 .Cases("aarch64elf", "aarch64linux", "aarch64_elf64_le_vec", 123 {ELF64LEKind, EM_AARCH64}) 124 .Cases("armelf", "armelf_linux_eabi", {ELF32LEKind, EM_ARM}) 125 .Case("elf32_x86_64", {ELF32LEKind, EM_X86_64}) 126 .Cases("elf32btsmip", "elf32btsmipn32", {ELF32BEKind, EM_MIPS}) 127 .Cases("elf32ltsmip", "elf32ltsmipn32", {ELF32LEKind, EM_MIPS}) 128 .Case("elf32ppc", {ELF32BEKind, EM_PPC}) 129 .Case("elf64btsmip", {ELF64BEKind, EM_MIPS}) 130 .Case("elf64ltsmip", {ELF64LEKind, EM_MIPS}) 131 .Case("elf64ppc", {ELF64BEKind, EM_PPC64}) 132 .Case("elf64lppc", {ELF64LEKind, EM_PPC64}) 133 .Cases("elf_amd64", "elf_x86_64", {ELF64LEKind, EM_X86_64}) 134 .Case("elf_i386", {ELF32LEKind, EM_386}) 135 .Case("elf_iamcu", {ELF32LEKind, EM_IAMCU}) 136 .Default({ELFNoneKind, EM_NONE}); 137 138 if (Ret.first == ELFNoneKind) 139 error("unknown emulation: " + Emul); 140 return std::make_tuple(Ret.first, Ret.second, OSABI); 141 } 142 143 // Returns slices of MB by parsing MB as an archive file. 144 // Each slice consists of a member file in the archive. 145 std::vector<std::pair<MemoryBufferRef, uint64_t>> static getArchiveMembers( 146 MemoryBufferRef MB) { 147 std::unique_ptr<Archive> File = 148 CHECK(Archive::create(MB), 149 MB.getBufferIdentifier() + ": failed to parse archive"); 150 151 std::vector<std::pair<MemoryBufferRef, uint64_t>> V; 152 Error Err = Error::success(); 153 bool AddToTar = File->isThin() && Tar; 154 for (const ErrorOr<Archive::Child> &COrErr : File->children(Err)) { 155 Archive::Child C = 156 CHECK(COrErr, MB.getBufferIdentifier() + 157 ": could not get the child of the archive"); 158 MemoryBufferRef MBRef = 159 CHECK(C.getMemoryBufferRef(), 160 MB.getBufferIdentifier() + 161 ": could not get the buffer for a child of the archive"); 162 if (AddToTar) 163 Tar->append(relativeToRoot(check(C.getFullName())), MBRef.getBuffer()); 164 V.push_back(std::make_pair(MBRef, C.getChildOffset())); 165 } 166 if (Err) 167 fatal(MB.getBufferIdentifier() + ": Archive::children failed: " + 168 toString(std::move(Err))); 169 170 // Take ownership of memory buffers created for members of thin archives. 171 for (std::unique_ptr<MemoryBuffer> &MB : File->takeThinBuffers()) 172 make<std::unique_ptr<MemoryBuffer>>(std::move(MB)); 173 174 return V; 175 } 176 177 // Opens a file and create a file object. Path has to be resolved already. 178 void LinkerDriver::addFile(StringRef Path, bool WithLOption) { 179 using namespace sys::fs; 180 181 Optional<MemoryBufferRef> Buffer = readFile(Path); 182 if (!Buffer.hasValue()) 183 return; 184 MemoryBufferRef MBRef = *Buffer; 185 186 if (Config->FormatBinary) { 187 Files.push_back(make<BinaryFile>(MBRef)); 188 return; 189 } 190 191 switch (identify_magic(MBRef.getBuffer())) { 192 case file_magic::unknown: 193 readLinkerScript(MBRef); 194 return; 195 case file_magic::archive: { 196 // Handle -whole-archive. 197 if (InWholeArchive) { 198 for (const auto &P : getArchiveMembers(MBRef)) 199 Files.push_back(createObjectFile(P.first, Path, P.second)); 200 return; 201 } 202 203 std::unique_ptr<Archive> File = 204 CHECK(Archive::create(MBRef), Path + ": failed to parse archive"); 205 206 // If an archive file has no symbol table, it is likely that a user 207 // is attempting LTO and using a default ar command that doesn't 208 // understand the LLVM bitcode file. It is a pretty common error, so 209 // we'll handle it as if it had a symbol table. 210 if (!File->isEmpty() && !File->hasSymbolTable()) { 211 for (const auto &P : getArchiveMembers(MBRef)) 212 Files.push_back(make<LazyObjFile>(P.first, Path, P.second)); 213 return; 214 } 215 216 // Handle the regular case. 217 Files.push_back(make<ArchiveFile>(std::move(File))); 218 return; 219 } 220 case file_magic::elf_shared_object: 221 if (Config->Relocatable) { 222 error("attempted static link of dynamic object " + Path); 223 return; 224 } 225 226 // DSOs usually have DT_SONAME tags in their ELF headers, and the 227 // sonames are used to identify DSOs. But if they are missing, 228 // they are identified by filenames. We don't know whether the new 229 // file has a DT_SONAME or not because we haven't parsed it yet. 230 // Here, we set the default soname for the file because we might 231 // need it later. 232 // 233 // If a file was specified by -lfoo, the directory part is not 234 // significant, as a user did not specify it. This behavior is 235 // compatible with GNU. 236 Files.push_back( 237 createSharedFile(MBRef, WithLOption ? path::filename(Path) : Path)); 238 return; 239 case file_magic::bitcode: 240 case file_magic::elf_relocatable: 241 if (InLib) 242 Files.push_back(make<LazyObjFile>(MBRef, "", 0)); 243 else 244 Files.push_back(createObjectFile(MBRef)); 245 break; 246 default: 247 error(Path + ": unknown file type"); 248 } 249 } 250 251 // Add a given library by searching it from input search paths. 252 void LinkerDriver::addLibrary(StringRef Name) { 253 if (Optional<std::string> Path = searchLibrary(Name)) 254 addFile(*Path, /*WithLOption=*/true); 255 else 256 error("unable to find library -l" + Name); 257 } 258 259 // This function is called on startup. We need this for LTO since 260 // LTO calls LLVM functions to compile bitcode files to native code. 261 // Technically this can be delayed until we read bitcode files, but 262 // we don't bother to do lazily because the initialization is fast. 263 static void initLLVM() { 264 InitializeAllTargets(); 265 InitializeAllTargetMCs(); 266 InitializeAllAsmPrinters(); 267 InitializeAllAsmParsers(); 268 } 269 270 // Some command line options or some combinations of them are not allowed. 271 // This function checks for such errors. 272 static void checkOptions(opt::InputArgList &Args) { 273 // The MIPS ABI as of 2016 does not support the GNU-style symbol lookup 274 // table which is a relatively new feature. 275 if (Config->EMachine == EM_MIPS && Config->GnuHash) 276 error("the .gnu.hash section is not compatible with the MIPS target."); 277 278 if (Config->FixCortexA53Errata843419 && Config->EMachine != EM_AARCH64) 279 error("--fix-cortex-a53-843419 is only supported on AArch64 targets."); 280 281 if (Config->Pie && Config->Shared) 282 error("-shared and -pie may not be used together"); 283 284 if (!Config->Shared && !Config->FilterList.empty()) 285 error("-F may not be used without -shared"); 286 287 if (!Config->Shared && !Config->AuxiliaryList.empty()) 288 error("-f may not be used without -shared"); 289 290 if (!Config->Relocatable && !Config->DefineCommon) 291 error("-no-define-common not supported in non relocatable output"); 292 293 if (Config->Relocatable) { 294 if (Config->Shared) 295 error("-r and -shared may not be used together"); 296 if (Config->GcSections) 297 error("-r and --gc-sections may not be used together"); 298 if (Config->GdbIndex) 299 error("-r and --gdb-index may not be used together"); 300 if (Config->ICF != ICFLevel::None) 301 error("-r and --icf may not be used together"); 302 if (Config->Pie) 303 error("-r and -pie may not be used together"); 304 } 305 306 if (Config->ExecuteOnly) { 307 if (Config->EMachine != EM_AARCH64) 308 error("-execute-only is only supported on AArch64 targets"); 309 310 if (Config->SingleRoRx && !Script->HasSectionsCommand) 311 error("-execute-only and -no-rosegment cannot be used together"); 312 } 313 } 314 315 static const char *getReproduceOption(opt::InputArgList &Args) { 316 if (auto *Arg = Args.getLastArg(OPT_reproduce)) 317 return Arg->getValue(); 318 return getenv("LLD_REPRODUCE"); 319 } 320 321 static bool hasZOption(opt::InputArgList &Args, StringRef Key) { 322 for (auto *Arg : Args.filtered(OPT_z)) 323 if (Key == Arg->getValue()) 324 return true; 325 return false; 326 } 327 328 static bool getZFlag(opt::InputArgList &Args, StringRef K1, StringRef K2, 329 bool Default) { 330 for (auto *Arg : Args.filtered_reverse(OPT_z)) { 331 if (K1 == Arg->getValue()) 332 return true; 333 if (K2 == Arg->getValue()) 334 return false; 335 } 336 return Default; 337 } 338 339 static bool isKnown(StringRef S) { 340 return S == "combreloc" || S == "copyreloc" || S == "defs" || 341 S == "execstack" || S == "hazardplt" || S == "initfirst" || 342 S == "keep-text-section-prefix" || S == "lazy" || S == "muldefs" || 343 S == "nocombreloc" || S == "nocopyreloc" || S == "nodelete" || 344 S == "nodlopen" || S == "noexecstack" || 345 S == "nokeep-text-section-prefix" || S == "norelro" || S == "notext" || 346 S == "now" || S == "origin" || S == "relro" || S == "retpolineplt" || 347 S == "rodynamic" || S == "text" || S == "wxneeded" || 348 S.startswith("max-page-size=") || S.startswith("stack-size="); 349 } 350 351 // Report an error for an unknown -z option. 352 static void checkZOptions(opt::InputArgList &Args) { 353 for (auto *Arg : Args.filtered(OPT_z)) 354 if (!isKnown(Arg->getValue())) 355 error("unknown -z value: " + StringRef(Arg->getValue())); 356 } 357 358 void LinkerDriver::main(ArrayRef<const char *> ArgsArr) { 359 ELFOptTable Parser; 360 opt::InputArgList Args = Parser.parse(ArgsArr.slice(1)); 361 362 // Interpret this flag early because error() depends on them. 363 errorHandler().ErrorLimit = args::getInteger(Args, OPT_error_limit, 20); 364 365 // Handle -help 366 if (Args.hasArg(OPT_help)) { 367 printHelp(); 368 return; 369 } 370 371 // Handle -v or -version. 372 // 373 // A note about "compatible with GNU linkers" message: this is a hack for 374 // scripts generated by GNU Libtool 2.4.6 (released in February 2014 and 375 // still the newest version in March 2017) or earlier to recognize LLD as 376 // a GNU compatible linker. As long as an output for the -v option 377 // contains "GNU" or "with BFD", they recognize us as GNU-compatible. 378 // 379 // This is somewhat ugly hack, but in reality, we had no choice other 380 // than doing this. Considering the very long release cycle of Libtool, 381 // it is not easy to improve it to recognize LLD as a GNU compatible 382 // linker in a timely manner. Even if we can make it, there are still a 383 // lot of "configure" scripts out there that are generated by old version 384 // of Libtool. We cannot convince every software developer to migrate to 385 // the latest version and re-generate scripts. So we have this hack. 386 if (Args.hasArg(OPT_v) || Args.hasArg(OPT_version)) 387 message(getLLDVersion() + " (compatible with GNU linkers)"); 388 389 // The behavior of -v or --version is a bit strange, but this is 390 // needed for compatibility with GNU linkers. 391 if (Args.hasArg(OPT_v) && !Args.hasArg(OPT_INPUT)) 392 return; 393 if (Args.hasArg(OPT_version)) 394 return; 395 396 if (const char *Path = getReproduceOption(Args)) { 397 // Note that --reproduce is a debug option so you can ignore it 398 // if you are trying to understand the whole picture of the code. 399 Expected<std::unique_ptr<TarWriter>> ErrOrWriter = 400 TarWriter::create(Path, path::stem(Path)); 401 if (ErrOrWriter) { 402 Tar = ErrOrWriter->get(); 403 Tar->append("response.txt", createResponseFile(Args)); 404 Tar->append("version.txt", getLLDVersion() + "\n"); 405 make<std::unique_ptr<TarWriter>>(std::move(*ErrOrWriter)); 406 } else { 407 error(Twine("--reproduce: failed to open ") + Path + ": " + 408 toString(ErrOrWriter.takeError())); 409 } 410 } 411 412 readConfigs(Args); 413 checkZOptions(Args); 414 initLLVM(); 415 createFiles(Args); 416 if (errorCount()) 417 return; 418 419 inferMachineType(); 420 setConfigs(Args); 421 checkOptions(Args); 422 if (errorCount()) 423 return; 424 425 switch (Config->EKind) { 426 case ELF32LEKind: 427 link<ELF32LE>(Args); 428 return; 429 case ELF32BEKind: 430 link<ELF32BE>(Args); 431 return; 432 case ELF64LEKind: 433 link<ELF64LE>(Args); 434 return; 435 case ELF64BEKind: 436 link<ELF64BE>(Args); 437 return; 438 default: 439 llvm_unreachable("unknown Config->EKind"); 440 } 441 } 442 443 static std::string getRpath(opt::InputArgList &Args) { 444 std::vector<StringRef> V = args::getStrings(Args, OPT_rpath); 445 return llvm::join(V.begin(), V.end(), ":"); 446 } 447 448 // Determines what we should do if there are remaining unresolved 449 // symbols after the name resolution. 450 static UnresolvedPolicy getUnresolvedSymbolPolicy(opt::InputArgList &Args) { 451 if (Args.hasArg(OPT_relocatable)) 452 return UnresolvedPolicy::IgnoreAll; 453 454 UnresolvedPolicy ErrorOrWarn = Args.hasFlag(OPT_error_unresolved_symbols, 455 OPT_warn_unresolved_symbols, true) 456 ? UnresolvedPolicy::ReportError 457 : UnresolvedPolicy::Warn; 458 459 // Process the last of -unresolved-symbols, -no-undefined or -z defs. 460 for (auto *Arg : llvm::reverse(Args)) { 461 switch (Arg->getOption().getID()) { 462 case OPT_unresolved_symbols: { 463 StringRef S = Arg->getValue(); 464 if (S == "ignore-all" || S == "ignore-in-object-files") 465 return UnresolvedPolicy::Ignore; 466 if (S == "ignore-in-shared-libs" || S == "report-all") 467 return ErrorOrWarn; 468 error("unknown --unresolved-symbols value: " + S); 469 continue; 470 } 471 case OPT_no_undefined: 472 return ErrorOrWarn; 473 case OPT_z: 474 if (StringRef(Arg->getValue()) == "defs") 475 return ErrorOrWarn; 476 continue; 477 } 478 } 479 480 // -shared implies -unresolved-symbols=ignore-all because missing 481 // symbols are likely to be resolved at runtime using other DSOs. 482 if (Config->Shared) 483 return UnresolvedPolicy::Ignore; 484 return ErrorOrWarn; 485 } 486 487 static Target2Policy getTarget2(opt::InputArgList &Args) { 488 StringRef S = Args.getLastArgValue(OPT_target2, "got-rel"); 489 if (S == "rel") 490 return Target2Policy::Rel; 491 if (S == "abs") 492 return Target2Policy::Abs; 493 if (S == "got-rel") 494 return Target2Policy::GotRel; 495 error("unknown --target2 option: " + S); 496 return Target2Policy::GotRel; 497 } 498 499 static bool isOutputFormatBinary(opt::InputArgList &Args) { 500 StringRef S = Args.getLastArgValue(OPT_oformat, "elf"); 501 if (S == "binary") 502 return true; 503 if (!S.startswith("elf")) 504 error("unknown --oformat value: " + S); 505 return false; 506 } 507 508 static DiscardPolicy getDiscard(opt::InputArgList &Args) { 509 if (Args.hasArg(OPT_relocatable)) 510 return DiscardPolicy::None; 511 512 auto *Arg = 513 Args.getLastArg(OPT_discard_all, OPT_discard_locals, OPT_discard_none); 514 if (!Arg) 515 return DiscardPolicy::Default; 516 if (Arg->getOption().getID() == OPT_discard_all) 517 return DiscardPolicy::All; 518 if (Arg->getOption().getID() == OPT_discard_locals) 519 return DiscardPolicy::Locals; 520 return DiscardPolicy::None; 521 } 522 523 static StringRef getDynamicLinker(opt::InputArgList &Args) { 524 auto *Arg = Args.getLastArg(OPT_dynamic_linker, OPT_no_dynamic_linker); 525 if (!Arg || Arg->getOption().getID() == OPT_no_dynamic_linker) 526 return ""; 527 return Arg->getValue(); 528 } 529 530 static ICFLevel getICF(opt::InputArgList &Args) { 531 auto *Arg = Args.getLastArg(OPT_icf_none, OPT_icf_safe, OPT_icf_all); 532 if (!Arg || Arg->getOption().getID() == OPT_icf_none) 533 return ICFLevel::None; 534 if (Arg->getOption().getID() == OPT_icf_safe) 535 return ICFLevel::Safe; 536 return ICFLevel::All; 537 } 538 539 static StripPolicy getStrip(opt::InputArgList &Args) { 540 if (Args.hasArg(OPT_relocatable)) 541 return StripPolicy::None; 542 543 auto *Arg = Args.getLastArg(OPT_strip_all, OPT_strip_debug); 544 if (!Arg) 545 return StripPolicy::None; 546 if (Arg->getOption().getID() == OPT_strip_all) 547 return StripPolicy::All; 548 return StripPolicy::Debug; 549 } 550 551 static uint64_t parseSectionAddress(StringRef S, const opt::Arg &Arg) { 552 uint64_t VA = 0; 553 if (S.startswith("0x")) 554 S = S.drop_front(2); 555 if (!to_integer(S, VA, 16)) 556 error("invalid argument: " + toString(Arg)); 557 return VA; 558 } 559 560 static StringMap<uint64_t> getSectionStartMap(opt::InputArgList &Args) { 561 StringMap<uint64_t> Ret; 562 for (auto *Arg : Args.filtered(OPT_section_start)) { 563 StringRef Name; 564 StringRef Addr; 565 std::tie(Name, Addr) = StringRef(Arg->getValue()).split('='); 566 Ret[Name] = parseSectionAddress(Addr, *Arg); 567 } 568 569 if (auto *Arg = Args.getLastArg(OPT_Ttext)) 570 Ret[".text"] = parseSectionAddress(Arg->getValue(), *Arg); 571 if (auto *Arg = Args.getLastArg(OPT_Tdata)) 572 Ret[".data"] = parseSectionAddress(Arg->getValue(), *Arg); 573 if (auto *Arg = Args.getLastArg(OPT_Tbss)) 574 Ret[".bss"] = parseSectionAddress(Arg->getValue(), *Arg); 575 return Ret; 576 } 577 578 static SortSectionPolicy getSortSection(opt::InputArgList &Args) { 579 StringRef S = Args.getLastArgValue(OPT_sort_section); 580 if (S == "alignment") 581 return SortSectionPolicy::Alignment; 582 if (S == "name") 583 return SortSectionPolicy::Name; 584 if (!S.empty()) 585 error("unknown --sort-section rule: " + S); 586 return SortSectionPolicy::Default; 587 } 588 589 static OrphanHandlingPolicy getOrphanHandling(opt::InputArgList &Args) { 590 StringRef S = Args.getLastArgValue(OPT_orphan_handling, "place"); 591 if (S == "warn") 592 return OrphanHandlingPolicy::Warn; 593 if (S == "error") 594 return OrphanHandlingPolicy::Error; 595 if (S != "place") 596 error("unknown --orphan-handling mode: " + S); 597 return OrphanHandlingPolicy::Place; 598 } 599 600 // Parse --build-id or --build-id=<style>. We handle "tree" as a 601 // synonym for "sha1" because all our hash functions including 602 // -build-id=sha1 are actually tree hashes for performance reasons. 603 static std::pair<BuildIdKind, std::vector<uint8_t>> 604 getBuildId(opt::InputArgList &Args) { 605 auto *Arg = Args.getLastArg(OPT_build_id, OPT_build_id_eq); 606 if (!Arg) 607 return {BuildIdKind::None, {}}; 608 609 if (Arg->getOption().getID() == OPT_build_id) 610 return {BuildIdKind::Fast, {}}; 611 612 StringRef S = Arg->getValue(); 613 if (S == "fast") 614 return {BuildIdKind::Fast, {}}; 615 if (S == "md5") 616 return {BuildIdKind::Md5, {}}; 617 if (S == "sha1" || S == "tree") 618 return {BuildIdKind::Sha1, {}}; 619 if (S == "uuid") 620 return {BuildIdKind::Uuid, {}}; 621 if (S.startswith("0x")) 622 return {BuildIdKind::Hexstring, parseHex(S.substr(2))}; 623 624 if (S != "none") 625 error("unknown --build-id style: " + S); 626 return {BuildIdKind::None, {}}; 627 } 628 629 static std::pair<bool, bool> getPackDynRelocs(opt::InputArgList &Args) { 630 StringRef S = Args.getLastArgValue(OPT_pack_dyn_relocs, "none"); 631 if (S == "android") 632 return {true, false}; 633 if (S == "relr") 634 return {false, true}; 635 if (S == "android+relr") 636 return {true, true}; 637 638 if (S != "none") 639 error("unknown -pack-dyn-relocs format: " + S); 640 return {false, false}; 641 } 642 643 static void readCallGraph(MemoryBufferRef MB) { 644 // Build a map from symbol name to section 645 DenseMap<StringRef, const Symbol *> SymbolNameToSymbol; 646 for (InputFile *File : ObjectFiles) 647 for (Symbol *Sym : File->getSymbols()) 648 SymbolNameToSymbol[Sym->getName()] = Sym; 649 650 auto FindSection = [&](StringRef SymName) -> InputSectionBase * { 651 const Symbol *Sym = SymbolNameToSymbol.lookup(SymName); 652 if (Sym) 653 warnUnorderableSymbol(Sym); 654 else if (Config->WarnSymbolOrdering) 655 warn(MB.getBufferIdentifier() + ": no such symbol: " + SymName); 656 657 if (const Defined *DR = dyn_cast_or_null<Defined>(Sym)) 658 return dyn_cast_or_null<InputSectionBase>(DR->Section); 659 return nullptr; 660 }; 661 662 for (StringRef L : args::getLines(MB)) { 663 SmallVector<StringRef, 3> Fields; 664 L.split(Fields, ' '); 665 uint64_t Count; 666 if (Fields.size() != 3 || !to_integer(Fields[2], Count)) 667 fatal(MB.getBufferIdentifier() + ": parse error"); 668 669 if (const InputSectionBase *FromSB = FindSection(Fields[0])) 670 if (const InputSectionBase *ToSB = FindSection(Fields[1])) 671 Config->CallGraphProfile[std::make_pair(FromSB, ToSB)] += Count; 672 } 673 } 674 675 static bool getCompressDebugSections(opt::InputArgList &Args) { 676 StringRef S = Args.getLastArgValue(OPT_compress_debug_sections, "none"); 677 if (S == "none") 678 return false; 679 if (S != "zlib") 680 error("unknown --compress-debug-sections value: " + S); 681 if (!zlib::isAvailable()) 682 error("--compress-debug-sections: zlib is not available"); 683 return true; 684 } 685 686 static std::pair<StringRef, StringRef> getOldNewOptions(opt::InputArgList &Args, 687 unsigned Id) { 688 auto *Arg = Args.getLastArg(Id); 689 if (!Arg) 690 return {"", ""}; 691 692 StringRef S = Arg->getValue(); 693 std::pair<StringRef, StringRef> Ret = S.split(';'); 694 if (Ret.second.empty()) 695 error(Arg->getSpelling() + " expects 'old;new' format, but got " + S); 696 return Ret; 697 } 698 699 // Parse the symbol ordering file and warn for any duplicate entries. 700 static std::vector<StringRef> getSymbolOrderingFile(MemoryBufferRef MB) { 701 SetVector<StringRef> Names; 702 for (StringRef S : args::getLines(MB)) 703 if (!Names.insert(S) && Config->WarnSymbolOrdering) 704 warn(MB.getBufferIdentifier() + ": duplicate ordered symbol: " + S); 705 706 return Names.takeVector(); 707 } 708 709 static void parseClangOption(StringRef Opt, const Twine &Msg) { 710 std::string Err; 711 raw_string_ostream OS(Err); 712 713 const char *Argv[] = {Config->ProgName.data(), Opt.data()}; 714 if (cl::ParseCommandLineOptions(2, Argv, "", &OS)) 715 return; 716 OS.flush(); 717 error(Msg + ": " + StringRef(Err).trim()); 718 } 719 720 // Initializes Config members by the command line options. 721 void LinkerDriver::readConfigs(opt::InputArgList &Args) { 722 errorHandler().Verbose = Args.hasArg(OPT_verbose); 723 errorHandler().FatalWarnings = 724 Args.hasFlag(OPT_fatal_warnings, OPT_no_fatal_warnings, false); 725 ThreadsEnabled = Args.hasFlag(OPT_threads, OPT_no_threads, true); 726 727 Config->AllowMultipleDefinition = 728 Args.hasFlag(OPT_allow_multiple_definition, 729 OPT_no_allow_multiple_definition, false) || 730 hasZOption(Args, "muldefs"); 731 Config->AuxiliaryList = args::getStrings(Args, OPT_auxiliary); 732 Config->Bsymbolic = Args.hasArg(OPT_Bsymbolic); 733 Config->BsymbolicFunctions = Args.hasArg(OPT_Bsymbolic_functions); 734 Config->CheckSections = 735 Args.hasFlag(OPT_check_sections, OPT_no_check_sections, true); 736 Config->Chroot = Args.getLastArgValue(OPT_chroot); 737 Config->CompressDebugSections = getCompressDebugSections(Args); 738 Config->Cref = Args.hasFlag(OPT_cref, OPT_no_cref, false); 739 Config->DefineCommon = Args.hasFlag(OPT_define_common, OPT_no_define_common, 740 !Args.hasArg(OPT_relocatable)); 741 Config->Demangle = Args.hasFlag(OPT_demangle, OPT_no_demangle, true); 742 Config->DisableVerify = Args.hasArg(OPT_disable_verify); 743 Config->Discard = getDiscard(Args); 744 Config->DwoDir = Args.getLastArgValue(OPT_plugin_opt_dwo_dir_eq); 745 Config->DynamicLinker = getDynamicLinker(Args); 746 Config->EhFrameHdr = 747 Args.hasFlag(OPT_eh_frame_hdr, OPT_no_eh_frame_hdr, false); 748 Config->EmitRelocs = Args.hasArg(OPT_emit_relocs); 749 Config->EnableNewDtags = 750 Args.hasFlag(OPT_enable_new_dtags, OPT_disable_new_dtags, true); 751 Config->Entry = Args.getLastArgValue(OPT_entry); 752 Config->ExecuteOnly = 753 Args.hasFlag(OPT_execute_only, OPT_no_execute_only, false); 754 Config->ExportDynamic = 755 Args.hasFlag(OPT_export_dynamic, OPT_no_export_dynamic, false); 756 Config->FilterList = args::getStrings(Args, OPT_filter); 757 Config->Fini = Args.getLastArgValue(OPT_fini, "_fini"); 758 Config->FixCortexA53Errata843419 = Args.hasArg(OPT_fix_cortex_a53_843419); 759 Config->GcSections = Args.hasFlag(OPT_gc_sections, OPT_no_gc_sections, false); 760 Config->GnuUnique = Args.hasFlag(OPT_gnu_unique, OPT_no_gnu_unique, true); 761 Config->GdbIndex = Args.hasFlag(OPT_gdb_index, OPT_no_gdb_index, false); 762 Config->ICF = getICF(Args); 763 Config->IgnoreDataAddressEquality = 764 Args.hasArg(OPT_ignore_data_address_equality); 765 Config->IgnoreFunctionAddressEquality = 766 Args.hasArg(OPT_ignore_function_address_equality); 767 Config->Init = Args.getLastArgValue(OPT_init, "_init"); 768 Config->LTOAAPipeline = Args.getLastArgValue(OPT_lto_aa_pipeline); 769 Config->LTODebugPassManager = Args.hasArg(OPT_lto_debug_pass_manager); 770 Config->LTONewPassManager = Args.hasArg(OPT_lto_new_pass_manager); 771 Config->LTONewPmPasses = Args.getLastArgValue(OPT_lto_newpm_passes); 772 Config->LTOO = args::getInteger(Args, OPT_lto_O, 2); 773 Config->LTOObjPath = Args.getLastArgValue(OPT_plugin_opt_obj_path_eq); 774 Config->LTOPartitions = args::getInteger(Args, OPT_lto_partitions, 1); 775 Config->LTOSampleProfile = Args.getLastArgValue(OPT_lto_sample_profile); 776 Config->MapFile = Args.getLastArgValue(OPT_Map); 777 Config->MipsGotSize = args::getInteger(Args, OPT_mips_got_size, 0xfff0); 778 Config->MergeArmExidx = 779 Args.hasFlag(OPT_merge_exidx_entries, OPT_no_merge_exidx_entries, true); 780 Config->NoinhibitExec = Args.hasArg(OPT_noinhibit_exec); 781 Config->Nostdlib = Args.hasArg(OPT_nostdlib); 782 Config->OFormatBinary = isOutputFormatBinary(Args); 783 Config->Omagic = Args.hasFlag(OPT_omagic, OPT_no_omagic, false); 784 Config->OptRemarksFilename = Args.getLastArgValue(OPT_opt_remarks_filename); 785 Config->OptRemarksWithHotness = Args.hasArg(OPT_opt_remarks_with_hotness); 786 Config->Optimize = args::getInteger(Args, OPT_O, 1); 787 Config->OrphanHandling = getOrphanHandling(Args); 788 Config->OutputFile = Args.getLastArgValue(OPT_o); 789 Config->Pie = Args.hasFlag(OPT_pie, OPT_no_pie, false); 790 Config->PrintIcfSections = 791 Args.hasFlag(OPT_print_icf_sections, OPT_no_print_icf_sections, false); 792 Config->PrintGcSections = 793 Args.hasFlag(OPT_print_gc_sections, OPT_no_print_gc_sections, false); 794 Config->Rpath = getRpath(Args); 795 Config->Relocatable = Args.hasArg(OPT_relocatable); 796 Config->SaveTemps = Args.hasArg(OPT_save_temps); 797 Config->SearchPaths = args::getStrings(Args, OPT_library_path); 798 Config->SectionStartMap = getSectionStartMap(Args); 799 Config->Shared = Args.hasArg(OPT_shared); 800 Config->SingleRoRx = Args.hasArg(OPT_no_rosegment); 801 Config->SoName = Args.getLastArgValue(OPT_soname); 802 Config->SortSection = getSortSection(Args); 803 Config->Strip = getStrip(Args); 804 Config->Sysroot = Args.getLastArgValue(OPT_sysroot); 805 Config->Target1Rel = Args.hasFlag(OPT_target1_rel, OPT_target1_abs, false); 806 Config->Target2 = getTarget2(Args); 807 Config->ThinLTOCacheDir = Args.getLastArgValue(OPT_thinlto_cache_dir); 808 Config->ThinLTOCachePolicy = CHECK( 809 parseCachePruningPolicy(Args.getLastArgValue(OPT_thinlto_cache_policy)), 810 "--thinlto-cache-policy: invalid cache policy"); 811 Config->ThinLTOEmitImportsFiles = 812 Args.hasArg(OPT_plugin_opt_thinlto_emit_imports_files); 813 Config->ThinLTOIndexOnly = Args.hasArg(OPT_plugin_opt_thinlto_index_only) || 814 Args.hasArg(OPT_plugin_opt_thinlto_index_only_eq); 815 Config->ThinLTOIndexOnlyArg = 816 Args.getLastArgValue(OPT_plugin_opt_thinlto_index_only_eq); 817 Config->ThinLTOJobs = args::getInteger(Args, OPT_thinlto_jobs, -1u); 818 Config->ThinLTOObjectSuffixReplace = 819 getOldNewOptions(Args, OPT_plugin_opt_thinlto_object_suffix_replace_eq); 820 Config->ThinLTOPrefixReplace = 821 getOldNewOptions(Args, OPT_plugin_opt_thinlto_prefix_replace_eq); 822 Config->Trace = Args.hasArg(OPT_trace); 823 Config->Undefined = args::getStrings(Args, OPT_undefined); 824 Config->UndefinedVersion = 825 Args.hasFlag(OPT_undefined_version, OPT_no_undefined_version, true); 826 Config->UseAndroidRelrTags = Args.hasFlag( 827 OPT_use_android_relr_tags, OPT_no_use_android_relr_tags, false); 828 Config->UnresolvedSymbols = getUnresolvedSymbolPolicy(Args); 829 Config->WarnBackrefs = 830 Args.hasFlag(OPT_warn_backrefs, OPT_no_warn_backrefs, false); 831 Config->WarnCommon = Args.hasFlag(OPT_warn_common, OPT_no_warn_common, false); 832 Config->WarnSymbolOrdering = 833 Args.hasFlag(OPT_warn_symbol_ordering, OPT_no_warn_symbol_ordering, true); 834 Config->ZCombreloc = getZFlag(Args, "combreloc", "nocombreloc", true); 835 Config->ZCopyreloc = getZFlag(Args, "copyreloc", "nocopyreloc", true); 836 Config->ZExecstack = getZFlag(Args, "execstack", "noexecstack", false); 837 Config->ZHazardplt = hasZOption(Args, "hazardplt"); 838 Config->ZInitfirst = hasZOption(Args, "initfirst"); 839 Config->ZKeepTextSectionPrefix = getZFlag( 840 Args, "keep-text-section-prefix", "nokeep-text-section-prefix", false); 841 Config->ZNodelete = hasZOption(Args, "nodelete"); 842 Config->ZNodlopen = hasZOption(Args, "nodlopen"); 843 Config->ZNow = getZFlag(Args, "now", "lazy", false); 844 Config->ZOrigin = hasZOption(Args, "origin"); 845 Config->ZRelro = getZFlag(Args, "relro", "norelro", true); 846 Config->ZRetpolineplt = hasZOption(Args, "retpolineplt"); 847 Config->ZRodynamic = hasZOption(Args, "rodynamic"); 848 Config->ZStackSize = args::getZOptionValue(Args, OPT_z, "stack-size", 0); 849 Config->ZText = getZFlag(Args, "text", "notext", true); 850 Config->ZWxneeded = hasZOption(Args, "wxneeded"); 851 852 // Parse LTO options. 853 if (auto *Arg = Args.getLastArg(OPT_plugin_opt_mcpu_eq)) 854 parseClangOption(Saver.save("-mcpu=" + StringRef(Arg->getValue())), 855 Arg->getSpelling()); 856 857 for (auto *Arg : Args.filtered(OPT_plugin_opt)) 858 parseClangOption(Arg->getValue(), Arg->getSpelling()); 859 860 // Parse -mllvm options. 861 for (auto *Arg : Args.filtered(OPT_mllvm)) 862 parseClangOption(Arg->getValue(), Arg->getSpelling()); 863 864 if (Config->LTOO > 3) 865 error("invalid optimization level for LTO: " + Twine(Config->LTOO)); 866 if (Config->LTOPartitions == 0) 867 error("--lto-partitions: number of threads must be > 0"); 868 if (Config->ThinLTOJobs == 0) 869 error("--thinlto-jobs: number of threads must be > 0"); 870 871 // Parse ELF{32,64}{LE,BE} and CPU type. 872 if (auto *Arg = Args.getLastArg(OPT_m)) { 873 StringRef S = Arg->getValue(); 874 std::tie(Config->EKind, Config->EMachine, Config->OSABI) = 875 parseEmulation(S); 876 Config->MipsN32Abi = (S == "elf32btsmipn32" || S == "elf32ltsmipn32"); 877 Config->Emulation = S; 878 } 879 880 // Parse -hash-style={sysv,gnu,both}. 881 if (auto *Arg = Args.getLastArg(OPT_hash_style)) { 882 StringRef S = Arg->getValue(); 883 if (S == "sysv") 884 Config->SysvHash = true; 885 else if (S == "gnu") 886 Config->GnuHash = true; 887 else if (S == "both") 888 Config->SysvHash = Config->GnuHash = true; 889 else 890 error("unknown -hash-style: " + S); 891 } 892 893 if (Args.hasArg(OPT_print_map)) 894 Config->MapFile = "-"; 895 896 // --omagic is an option to create old-fashioned executables in which 897 // .text segments are writable. Today, the option is still in use to 898 // create special-purpose programs such as boot loaders. It doesn't 899 // make sense to create PT_GNU_RELRO for such executables. 900 if (Config->Omagic) 901 Config->ZRelro = false; 902 903 std::tie(Config->BuildId, Config->BuildIdVector) = getBuildId(Args); 904 905 std::tie(Config->AndroidPackDynRelocs, Config->RelrPackDynRelocs) = 906 getPackDynRelocs(Args); 907 908 if (auto *Arg = Args.getLastArg(OPT_symbol_ordering_file)) 909 if (Optional<MemoryBufferRef> Buffer = readFile(Arg->getValue())) 910 Config->SymbolOrderingFile = getSymbolOrderingFile(*Buffer); 911 912 // If --retain-symbol-file is used, we'll keep only the symbols listed in 913 // the file and discard all others. 914 if (auto *Arg = Args.getLastArg(OPT_retain_symbols_file)) { 915 Config->DefaultSymbolVersion = VER_NDX_LOCAL; 916 if (Optional<MemoryBufferRef> Buffer = readFile(Arg->getValue())) 917 for (StringRef S : args::getLines(*Buffer)) 918 Config->VersionScriptGlobals.push_back( 919 {S, /*IsExternCpp*/ false, /*HasWildcard*/ false}); 920 } 921 922 bool HasExportDynamic = 923 Args.hasFlag(OPT_export_dynamic, OPT_no_export_dynamic, false); 924 925 // Parses -dynamic-list and -export-dynamic-symbol. They make some 926 // symbols private. Note that -export-dynamic takes precedence over them 927 // as it says all symbols should be exported. 928 if (!HasExportDynamic) { 929 for (auto *Arg : Args.filtered(OPT_dynamic_list)) 930 if (Optional<MemoryBufferRef> Buffer = readFile(Arg->getValue())) 931 readDynamicList(*Buffer); 932 933 for (auto *Arg : Args.filtered(OPT_export_dynamic_symbol)) 934 Config->DynamicList.push_back( 935 {Arg->getValue(), /*IsExternCpp*/ false, /*HasWildcard*/ false}); 936 } 937 938 // If --export-dynamic-symbol=foo is given and symbol foo is defined in 939 // an object file in an archive file, that object file should be pulled 940 // out and linked. (It doesn't have to behave like that from technical 941 // point of view, but this is needed for compatibility with GNU.) 942 for (auto *Arg : Args.filtered(OPT_export_dynamic_symbol)) 943 Config->Undefined.push_back(Arg->getValue()); 944 945 for (auto *Arg : Args.filtered(OPT_version_script)) 946 if (Optional<std::string> Path = searchScript(Arg->getValue())) { 947 if (Optional<MemoryBufferRef> Buffer = readFile(*Path)) 948 readVersionScript(*Buffer); 949 } else { 950 error(Twine("cannot find version script ") + Arg->getValue()); 951 } 952 } 953 954 // Some Config members do not directly correspond to any particular 955 // command line options, but computed based on other Config values. 956 // This function initialize such members. See Config.h for the details 957 // of these values. 958 static void setConfigs(opt::InputArgList &Args) { 959 ELFKind Kind = Config->EKind; 960 uint16_t Machine = Config->EMachine; 961 962 Config->CopyRelocs = (Config->Relocatable || Config->EmitRelocs); 963 Config->Is64 = (Kind == ELF64LEKind || Kind == ELF64BEKind); 964 Config->IsLE = (Kind == ELF32LEKind || Kind == ELF64LEKind); 965 Config->Endianness = 966 Config->IsLE ? support::endianness::little : support::endianness::big; 967 Config->IsMips64EL = (Kind == ELF64LEKind && Machine == EM_MIPS); 968 Config->Pic = Config->Pie || Config->Shared; 969 Config->Wordsize = Config->Is64 ? 8 : 4; 970 971 // There is an ILP32 ABI for x86-64, although it's not very popular. 972 // It is called the x32 ABI. 973 bool IsX32 = (Kind == ELF32LEKind && Machine == EM_X86_64); 974 975 // ELF defines two different ways to store relocation addends as shown below: 976 // 977 // Rel: Addends are stored to the location where relocations are applied. 978 // Rela: Addends are stored as part of relocation entry. 979 // 980 // In other words, Rela makes it easy to read addends at the price of extra 981 // 4 or 8 byte for each relocation entry. We don't know why ELF defined two 982 // different mechanisms in the first place, but this is how the spec is 983 // defined. 984 // 985 // You cannot choose which one, Rel or Rela, you want to use. Instead each 986 // ABI defines which one you need to use. The following expression expresses 987 // that. 988 Config->IsRela = 989 (Config->Is64 || IsX32 || Machine == EM_PPC) && Machine != EM_MIPS; 990 991 // If the output uses REL relocations we must store the dynamic relocation 992 // addends to the output sections. We also store addends for RELA relocations 993 // if --apply-dynamic-relocs is used. 994 // We default to not writing the addends when using RELA relocations since 995 // any standard conforming tool can find it in r_addend. 996 Config->WriteAddends = Args.hasFlag(OPT_apply_dynamic_relocs, 997 OPT_no_apply_dynamic_relocs, false) || 998 !Config->IsRela; 999 } 1000 1001 // Returns a value of "-format" option. 1002 static bool isFormatBinary(StringRef S) { 1003 if (S == "binary") 1004 return true; 1005 if (S == "elf" || S == "default") 1006 return false; 1007 error("unknown -format value: " + S + 1008 " (supported formats: elf, default, binary)"); 1009 return false; 1010 } 1011 1012 void LinkerDriver::createFiles(opt::InputArgList &Args) { 1013 // For --{push,pop}-state. 1014 std::vector<std::tuple<bool, bool, bool>> Stack; 1015 1016 // Iterate over argv to process input files and positional arguments. 1017 for (auto *Arg : Args) { 1018 switch (Arg->getOption().getUnaliasedOption().getID()) { 1019 case OPT_library: 1020 addLibrary(Arg->getValue()); 1021 break; 1022 case OPT_INPUT: 1023 addFile(Arg->getValue(), /*WithLOption=*/false); 1024 break; 1025 case OPT_defsym: { 1026 StringRef From; 1027 StringRef To; 1028 std::tie(From, To) = StringRef(Arg->getValue()).split('='); 1029 readDefsym(From, MemoryBufferRef(To, "-defsym")); 1030 break; 1031 } 1032 case OPT_script: 1033 if (Optional<std::string> Path = searchScript(Arg->getValue())) { 1034 if (Optional<MemoryBufferRef> MB = readFile(*Path)) 1035 readLinkerScript(*MB); 1036 break; 1037 } 1038 error(Twine("cannot find linker script ") + Arg->getValue()); 1039 break; 1040 case OPT_as_needed: 1041 Config->AsNeeded = true; 1042 break; 1043 case OPT_format: 1044 Config->FormatBinary = isFormatBinary(Arg->getValue()); 1045 break; 1046 case OPT_no_as_needed: 1047 Config->AsNeeded = false; 1048 break; 1049 case OPT_Bstatic: 1050 Config->Static = true; 1051 break; 1052 case OPT_Bdynamic: 1053 Config->Static = false; 1054 break; 1055 case OPT_whole_archive: 1056 InWholeArchive = true; 1057 break; 1058 case OPT_no_whole_archive: 1059 InWholeArchive = false; 1060 break; 1061 case OPT_just_symbols: 1062 if (Optional<MemoryBufferRef> MB = readFile(Arg->getValue())) { 1063 Files.push_back(createObjectFile(*MB)); 1064 Files.back()->JustSymbols = true; 1065 } 1066 break; 1067 case OPT_start_group: 1068 if (InputFile::IsInGroup) 1069 error("nested --start-group"); 1070 InputFile::IsInGroup = true; 1071 break; 1072 case OPT_end_group: 1073 if (!InputFile::IsInGroup) 1074 error("stray --end-group"); 1075 InputFile::IsInGroup = false; 1076 ++InputFile::NextGroupId; 1077 break; 1078 case OPT_start_lib: 1079 if (InLib) 1080 error("nested --start-lib"); 1081 if (InputFile::IsInGroup) 1082 error("may not nest --start-lib in --start-group"); 1083 InLib = true; 1084 InputFile::IsInGroup = true; 1085 break; 1086 case OPT_end_lib: 1087 if (!InLib) 1088 error("stray --end-lib"); 1089 InLib = false; 1090 InputFile::IsInGroup = false; 1091 ++InputFile::NextGroupId; 1092 break; 1093 case OPT_push_state: 1094 Stack.emplace_back(Config->AsNeeded, Config->Static, InWholeArchive); 1095 break; 1096 case OPT_pop_state: 1097 if (Stack.empty()) { 1098 error("unbalanced --push-state/--pop-state"); 1099 break; 1100 } 1101 std::tie(Config->AsNeeded, Config->Static, InWholeArchive) = Stack.back(); 1102 Stack.pop_back(); 1103 break; 1104 } 1105 } 1106 1107 if (Files.empty() && errorCount() == 0) 1108 error("no input files"); 1109 } 1110 1111 // If -m <machine_type> was not given, infer it from object files. 1112 void LinkerDriver::inferMachineType() { 1113 if (Config->EKind != ELFNoneKind) 1114 return; 1115 1116 for (InputFile *F : Files) { 1117 if (F->EKind == ELFNoneKind) 1118 continue; 1119 Config->EKind = F->EKind; 1120 Config->EMachine = F->EMachine; 1121 Config->OSABI = F->OSABI; 1122 Config->MipsN32Abi = Config->EMachine == EM_MIPS && isMipsN32Abi(F); 1123 return; 1124 } 1125 error("target emulation unknown: -m or at least one .o file required"); 1126 } 1127 1128 // Parse -z max-page-size=<value>. The default value is defined by 1129 // each target. 1130 static uint64_t getMaxPageSize(opt::InputArgList &Args) { 1131 uint64_t Val = args::getZOptionValue(Args, OPT_z, "max-page-size", 1132 Target->DefaultMaxPageSize); 1133 if (!isPowerOf2_64(Val)) 1134 error("max-page-size: value isn't a power of 2"); 1135 return Val; 1136 } 1137 1138 // Parses -image-base option. 1139 static Optional<uint64_t> getImageBase(opt::InputArgList &Args) { 1140 // Because we are using "Config->MaxPageSize" here, this function has to be 1141 // called after the variable is initialized. 1142 auto *Arg = Args.getLastArg(OPT_image_base); 1143 if (!Arg) 1144 return None; 1145 1146 StringRef S = Arg->getValue(); 1147 uint64_t V; 1148 if (!to_integer(S, V)) { 1149 error("-image-base: number expected, but got " + S); 1150 return 0; 1151 } 1152 if ((V % Config->MaxPageSize) != 0) 1153 warn("-image-base: address isn't multiple of page size: " + S); 1154 return V; 1155 } 1156 1157 // Parses `--exclude-libs=lib,lib,...`. 1158 // The library names may be delimited by commas or colons. 1159 static DenseSet<StringRef> getExcludeLibs(opt::InputArgList &Args) { 1160 DenseSet<StringRef> Ret; 1161 for (auto *Arg : Args.filtered(OPT_exclude_libs)) { 1162 StringRef S = Arg->getValue(); 1163 for (;;) { 1164 size_t Pos = S.find_first_of(",:"); 1165 if (Pos == StringRef::npos) 1166 break; 1167 Ret.insert(S.substr(0, Pos)); 1168 S = S.substr(Pos + 1); 1169 } 1170 Ret.insert(S); 1171 } 1172 return Ret; 1173 } 1174 1175 // Handles the -exclude-libs option. If a static library file is specified 1176 // by the -exclude-libs option, all public symbols from the archive become 1177 // private unless otherwise specified by version scripts or something. 1178 // A special library name "ALL" means all archive files. 1179 // 1180 // This is not a popular option, but some programs such as bionic libc use it. 1181 template <class ELFT> 1182 static void excludeLibs(opt::InputArgList &Args) { 1183 DenseSet<StringRef> Libs = getExcludeLibs(Args); 1184 bool All = Libs.count("ALL"); 1185 1186 auto Visit = [&](InputFile *File) { 1187 if (!File->ArchiveName.empty()) 1188 if (All || Libs.count(path::filename(File->ArchiveName))) 1189 for (Symbol *Sym : File->getSymbols()) 1190 if (!Sym->isLocal() && Sym->File == File) 1191 Sym->VersionId = VER_NDX_LOCAL; 1192 }; 1193 1194 for (InputFile *File : ObjectFiles) 1195 Visit(File); 1196 1197 for (BitcodeFile *File : BitcodeFiles) 1198 Visit(File); 1199 } 1200 1201 // Force Sym to be entered in the output. Used for -u or equivalent. 1202 template <class ELFT> static void handleUndefined(StringRef Name) { 1203 Symbol *Sym = Symtab->find(Name); 1204 if (!Sym) 1205 return; 1206 1207 // Since symbol S may not be used inside the program, LTO may 1208 // eliminate it. Mark the symbol as "used" to prevent it. 1209 Sym->IsUsedInRegularObj = true; 1210 1211 if (Sym->isLazy()) 1212 Symtab->fetchLazy<ELFT>(Sym); 1213 } 1214 1215 template <class ELFT> static bool shouldDemote(Symbol &Sym) { 1216 // If all references to a DSO happen to be weak, the DSO is not added to 1217 // DT_NEEDED. If that happens, we need to eliminate shared symbols created 1218 // from the DSO. Otherwise, they become dangling references that point to a 1219 // non-existent DSO. 1220 if (auto *S = dyn_cast<SharedSymbol>(&Sym)) 1221 return !S->getFile<ELFT>().IsNeeded; 1222 1223 // We are done processing archives, so lazy symbols that were used but not 1224 // found can be converted to undefined. We could also just delete the other 1225 // lazy symbols, but that seems to be more work than it is worth. 1226 return Sym.isLazy() && Sym.IsUsedInRegularObj; 1227 } 1228 1229 // Some files, such as .so or files between -{start,end}-lib may be removed 1230 // after their symbols are added to the symbol table. If that happens, we 1231 // need to remove symbols that refer files that no longer exist, so that 1232 // they won't appear in the symbol table of the output file. 1233 // 1234 // We remove symbols by demoting them to undefined symbol. 1235 template <class ELFT> static void demoteSymbols() { 1236 for (Symbol *Sym : Symtab->getSymbols()) { 1237 if (shouldDemote<ELFT>(*Sym)) { 1238 bool Used = Sym->Used; 1239 replaceSymbol<Undefined>(Sym, nullptr, Sym->getName(), Sym->Binding, 1240 Sym->StOther, Sym->Type); 1241 Sym->Used = Used; 1242 } 1243 } 1244 } 1245 1246 // The section referred to by S is considered address-significant. Set the 1247 // KeepUnique flag on the section if appropriate. 1248 static void markAddrsig(Symbol *S) { 1249 if (auto *D = dyn_cast_or_null<Defined>(S)) 1250 if (D->Section) 1251 // We don't need to keep text sections unique under --icf=all even if they 1252 // are address-significant. 1253 if (Config->ICF == ICFLevel::Safe || !(D->Section->Flags & SHF_EXECINSTR)) 1254 D->Section->KeepUnique = true; 1255 } 1256 1257 // Record sections that define symbols mentioned in --keep-unique <symbol> 1258 // and symbols referred to by address-significance tables. These sections are 1259 // ineligible for ICF. 1260 template <class ELFT> 1261 static void findKeepUniqueSections(opt::InputArgList &Args) { 1262 for (auto *Arg : Args.filtered(OPT_keep_unique)) { 1263 StringRef Name = Arg->getValue(); 1264 auto *D = dyn_cast_or_null<Defined>(Symtab->find(Name)); 1265 if (!D || !D->Section) { 1266 warn("could not find symbol " + Name + " to keep unique"); 1267 continue; 1268 } 1269 D->Section->KeepUnique = true; 1270 } 1271 1272 // --icf=all --ignore-data-address-equality means that we can ignore 1273 // the dynsym and address-significance tables entirely. 1274 if (Config->ICF == ICFLevel::All && Config->IgnoreDataAddressEquality) 1275 return; 1276 1277 // Symbols in the dynsym could be address-significant in other executables 1278 // or DSOs, so we conservatively mark them as address-significant. 1279 for (Symbol *S : Symtab->getSymbols()) 1280 if (S->includeInDynsym()) 1281 markAddrsig(S); 1282 1283 // Visit the address-significance table in each object file and mark each 1284 // referenced symbol as address-significant. 1285 for (InputFile *F : ObjectFiles) { 1286 auto *Obj = cast<ObjFile<ELFT>>(F); 1287 ArrayRef<Symbol *> Syms = Obj->getSymbols(); 1288 if (Obj->AddrsigSec) { 1289 ArrayRef<uint8_t> Contents = 1290 check(Obj->getObj().getSectionContents(Obj->AddrsigSec)); 1291 const uint8_t *Cur = Contents.begin(); 1292 while (Cur != Contents.end()) { 1293 unsigned Size; 1294 const char *Err; 1295 uint64_t SymIndex = decodeULEB128(Cur, &Size, Contents.end(), &Err); 1296 if (Err) 1297 fatal(toString(F) + ": could not decode addrsig section: " + Err); 1298 markAddrsig(Syms[SymIndex]); 1299 Cur += Size; 1300 } 1301 } else { 1302 // If an object file does not have an address-significance table, 1303 // conservatively mark all of its symbols as address-significant. 1304 for (Symbol *S : Syms) 1305 markAddrsig(S); 1306 } 1307 } 1308 } 1309 1310 static const char *LibcallRoutineNames[] = { 1311 #define HANDLE_LIBCALL(code, name) name, 1312 #include "llvm/IR/RuntimeLibcalls.def" 1313 #undef HANDLE_LIBCALL 1314 }; 1315 1316 // Do actual linking. Note that when this function is called, 1317 // all linker scripts have already been parsed. 1318 template <class ELFT> void LinkerDriver::link(opt::InputArgList &Args) { 1319 Target = getTarget(); 1320 1321 Config->MaxPageSize = getMaxPageSize(Args); 1322 Config->ImageBase = getImageBase(Args); 1323 1324 // If a -hash-style option was not given, set to a default value, 1325 // which varies depending on the target. 1326 if (!Args.hasArg(OPT_hash_style)) { 1327 if (Config->EMachine == EM_MIPS) 1328 Config->SysvHash = true; 1329 else 1330 Config->SysvHash = Config->GnuHash = true; 1331 } 1332 1333 // Default output filename is "a.out" by the Unix tradition. 1334 if (Config->OutputFile.empty()) 1335 Config->OutputFile = "a.out"; 1336 1337 // Fail early if the output file or map file is not writable. If a user has a 1338 // long link, e.g. due to a large LTO link, they do not wish to run it and 1339 // find that it failed because there was a mistake in their command-line. 1340 if (auto E = tryCreateFile(Config->OutputFile)) 1341 error("cannot open output file " + Config->OutputFile + ": " + E.message()); 1342 if (auto E = tryCreateFile(Config->MapFile)) 1343 error("cannot open map file " + Config->MapFile + ": " + E.message()); 1344 if (errorCount()) 1345 return; 1346 1347 // Use default entry point name if no name was given via the command 1348 // line nor linker scripts. For some reason, MIPS entry point name is 1349 // different from others. 1350 Config->WarnMissingEntry = 1351 (!Config->Entry.empty() || (!Config->Shared && !Config->Relocatable)); 1352 if (Config->Entry.empty() && !Config->Relocatable) 1353 Config->Entry = (Config->EMachine == EM_MIPS) ? "__start" : "_start"; 1354 1355 // Handle --trace-symbol. 1356 for (auto *Arg : Args.filtered(OPT_trace_symbol)) 1357 Symtab->trace(Arg->getValue()); 1358 1359 // Add all files to the symbol table. This will add almost all 1360 // symbols that we need to the symbol table. 1361 for (InputFile *F : Files) 1362 Symtab->addFile<ELFT>(F); 1363 1364 // Now that we have every file, we can decide if we will need a 1365 // dynamic symbol table. 1366 // We need one if we were asked to export dynamic symbols or if we are 1367 // producing a shared library. 1368 // We also need one if any shared libraries are used and for pie executables 1369 // (probably because the dynamic linker needs it). 1370 Config->HasDynSymTab = 1371 !SharedFiles.empty() || Config->Pic || Config->ExportDynamic; 1372 1373 // Some symbols (such as __ehdr_start) are defined lazily only when there 1374 // are undefined symbols for them, so we add these to trigger that logic. 1375 for (StringRef Sym : Script->ReferencedSymbols) 1376 Symtab->addUndefined<ELFT>(Sym); 1377 1378 // Handle the `--undefined <sym>` options. 1379 for (StringRef S : Config->Undefined) 1380 handleUndefined<ELFT>(S); 1381 1382 // If an entry symbol is in a static archive, pull out that file now. 1383 handleUndefined<ELFT>(Config->Entry); 1384 1385 // If any of our inputs are bitcode files, the LTO code generator may create 1386 // references to certain library functions that might not be explicit in the 1387 // bitcode file's symbol table. If any of those library functions are defined 1388 // in a bitcode file in an archive member, we need to arrange to use LTO to 1389 // compile those archive members by adding them to the link beforehand. 1390 // 1391 // With this the symbol table should be complete. After this, no new names 1392 // except a few linker-synthesized ones will be added to the symbol table. 1393 if (!BitcodeFiles.empty()) 1394 for (const char *S : LibcallRoutineNames) 1395 handleUndefined<ELFT>(S); 1396 1397 // Return if there were name resolution errors. 1398 if (errorCount()) 1399 return; 1400 1401 // Now when we read all script files, we want to finalize order of linker 1402 // script commands, which can be not yet final because of INSERT commands. 1403 Script->processInsertCommands(); 1404 1405 // We want to declare linker script's symbols early, 1406 // so that we can version them. 1407 // They also might be exported if referenced by DSOs. 1408 Script->declareSymbols(); 1409 1410 // Handle the -exclude-libs option. 1411 if (Args.hasArg(OPT_exclude_libs)) 1412 excludeLibs<ELFT>(Args); 1413 1414 // Create ElfHeader early. We need a dummy section in 1415 // addReservedSymbols to mark the created symbols as not absolute. 1416 Out::ElfHeader = make<OutputSection>("", 0, SHF_ALLOC); 1417 Out::ElfHeader->Size = sizeof(typename ELFT::Ehdr); 1418 1419 // We need to create some reserved symbols such as _end. Create them. 1420 if (!Config->Relocatable) 1421 addReservedSymbols(); 1422 1423 // Apply version scripts. 1424 // 1425 // For a relocatable output, version scripts don't make sense, and 1426 // parsing a symbol version string (e.g. dropping "@ver1" from a symbol 1427 // name "foo@ver1") rather do harm, so we don't call this if -r is given. 1428 if (!Config->Relocatable) 1429 Symtab->scanVersionScript(); 1430 1431 // Create wrapped symbols for -wrap option. 1432 for (auto *Arg : Args.filtered(OPT_wrap)) 1433 Symtab->addSymbolWrap<ELFT>(Arg->getValue()); 1434 1435 // Do link-time optimization if given files are LLVM bitcode files. 1436 // This compiles bitcode files into real object files. 1437 Symtab->addCombinedLTOObject<ELFT>(); 1438 if (errorCount()) 1439 return; 1440 1441 // If -thinlto-index-only is given, we should create only "index 1442 // files" and not object files. Index file creation is already done 1443 // in addCombinedLTOObject, so we are done if that's the case. 1444 if (Config->ThinLTOIndexOnly) 1445 return; 1446 1447 // Apply symbol renames for -wrap. 1448 Symtab->applySymbolWrap(); 1449 1450 // Now that we have a complete list of input files. 1451 // Beyond this point, no new files are added. 1452 // Aggregate all input sections into one place. 1453 for (InputFile *F : ObjectFiles) 1454 for (InputSectionBase *S : F->getSections()) 1455 if (S && S != &InputSection::Discarded) 1456 InputSections.push_back(S); 1457 for (BinaryFile *F : BinaryFiles) 1458 for (InputSectionBase *S : F->getSections()) 1459 InputSections.push_back(cast<InputSection>(S)); 1460 1461 // We do not want to emit debug sections if --strip-all 1462 // or -strip-debug are given. 1463 if (Config->Strip != StripPolicy::None) 1464 llvm::erase_if(InputSections, [](InputSectionBase *S) { 1465 return S->Name.startswith(".debug") || S->Name.startswith(".zdebug"); 1466 }); 1467 1468 Config->EFlags = Target->calcEFlags(); 1469 1470 if (Config->EMachine == EM_ARM) { 1471 // FIXME: These warnings can be removed when lld only uses these features 1472 // when the input objects have been compiled with an architecture that 1473 // supports them. 1474 if (Config->ARMHasBlx == false) 1475 warn("lld uses blx instruction, no object with architecture supporting " 1476 "feature detected."); 1477 if (Config->ARMJ1J2BranchEncoding == false) 1478 warn("lld uses extended branch encoding, no object with architecture " 1479 "supporting feature detected."); 1480 if (Config->ARMHasMovtMovw == false) 1481 warn("lld may use movt/movw, no object with architecture supporting " 1482 "feature detected."); 1483 } 1484 1485 // This adds a .comment section containing a version string. We have to add it 1486 // before decompressAndMergeSections because the .comment section is a 1487 // mergeable section. 1488 if (!Config->Relocatable) 1489 InputSections.push_back(createCommentSection()); 1490 1491 // Do size optimizations: garbage collection, merging of SHF_MERGE sections 1492 // and identical code folding. 1493 decompressSections(); 1494 splitSections<ELFT>(); 1495 markLive<ELFT>(); 1496 demoteSymbols<ELFT>(); 1497 mergeSections(); 1498 if (Config->ICF != ICFLevel::None) { 1499 findKeepUniqueSections<ELFT>(Args); 1500 doIcf<ELFT>(); 1501 } 1502 1503 // Read the callgraph now that we know what was gced or icfed 1504 if (auto *Arg = Args.getLastArg(OPT_call_graph_ordering_file)) 1505 if (Optional<MemoryBufferRef> Buffer = readFile(Arg->getValue())) 1506 readCallGraph(*Buffer); 1507 1508 // Write the result to the file. 1509 writeResult<ELFT>(); 1510 } 1511