1 //===- Driver.cpp ---------------------------------------------------------===// 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 #include "Driver.h" 10 #include "Config.h" 11 #include "ICF.h" 12 #include "InputFiles.h" 13 #include "LTO.h" 14 #include "MarkLive.h" 15 #include "ObjC.h" 16 #include "OutputSection.h" 17 #include "OutputSegment.h" 18 #include "SectionPriorities.h" 19 #include "SymbolTable.h" 20 #include "Symbols.h" 21 #include "SyntheticSections.h" 22 #include "Target.h" 23 #include "UnwindInfoSection.h" 24 #include "Writer.h" 25 26 #include "lld/Common/Args.h" 27 #include "lld/Common/Driver.h" 28 #include "lld/Common/ErrorHandler.h" 29 #include "lld/Common/LLVM.h" 30 #include "lld/Common/Memory.h" 31 #include "lld/Common/Reproduce.h" 32 #include "lld/Common/Version.h" 33 #include "llvm/ADT/DenseSet.h" 34 #include "llvm/ADT/StringExtras.h" 35 #include "llvm/ADT/StringRef.h" 36 #include "llvm/BinaryFormat/MachO.h" 37 #include "llvm/BinaryFormat/Magic.h" 38 #include "llvm/Config/llvm-config.h" 39 #include "llvm/LTO/LTO.h" 40 #include "llvm/Object/Archive.h" 41 #include "llvm/Option/ArgList.h" 42 #include "llvm/Support/CommandLine.h" 43 #include "llvm/Support/FileSystem.h" 44 #include "llvm/Support/Host.h" 45 #include "llvm/Support/MemoryBuffer.h" 46 #include "llvm/Support/Parallel.h" 47 #include "llvm/Support/Path.h" 48 #include "llvm/Support/TarWriter.h" 49 #include "llvm/Support/TargetSelect.h" 50 #include "llvm/Support/TimeProfiler.h" 51 #include "llvm/TextAPI/PackedVersion.h" 52 53 #include <algorithm> 54 55 using namespace llvm; 56 using namespace llvm::MachO; 57 using namespace llvm::object; 58 using namespace llvm::opt; 59 using namespace llvm::sys; 60 using namespace lld; 61 using namespace lld::macho; 62 63 std::unique_ptr<Configuration> macho::config; 64 std::unique_ptr<DependencyTracker> macho::depTracker; 65 66 static HeaderFileType getOutputType(const InputArgList &args) { 67 // TODO: -r, -dylinker, -preload... 68 Arg *outputArg = args.getLastArg(OPT_bundle, OPT_dylib, OPT_execute); 69 if (outputArg == nullptr) 70 return MH_EXECUTE; 71 72 switch (outputArg->getOption().getID()) { 73 case OPT_bundle: 74 return MH_BUNDLE; 75 case OPT_dylib: 76 return MH_DYLIB; 77 case OPT_execute: 78 return MH_EXECUTE; 79 default: 80 llvm_unreachable("internal error"); 81 } 82 } 83 84 static DenseMap<CachedHashStringRef, StringRef> resolvedLibraries; 85 static Optional<StringRef> findLibrary(StringRef name) { 86 CachedHashStringRef key(name); 87 auto entry = resolvedLibraries.find(key); 88 if (entry != resolvedLibraries.end()) 89 return entry->second; 90 91 auto doFind = [&] { 92 if (config->searchDylibsFirst) { 93 if (Optional<StringRef> path = findPathCombination( 94 "lib" + name, config->librarySearchPaths, {".tbd", ".dylib"})) 95 return path; 96 return findPathCombination("lib" + name, config->librarySearchPaths, 97 {".a"}); 98 } 99 return findPathCombination("lib" + name, config->librarySearchPaths, 100 {".tbd", ".dylib", ".a"}); 101 }; 102 103 Optional<StringRef> path = doFind(); 104 if (path) 105 resolvedLibraries[key] = *path; 106 107 return path; 108 } 109 110 static DenseMap<CachedHashStringRef, StringRef> resolvedFrameworks; 111 static Optional<StringRef> findFramework(StringRef name) { 112 CachedHashStringRef key(name); 113 auto entry = resolvedFrameworks.find(key); 114 if (entry != resolvedFrameworks.end()) 115 return entry->second; 116 117 SmallString<260> symlink; 118 StringRef suffix; 119 std::tie(name, suffix) = name.split(","); 120 for (StringRef dir : config->frameworkSearchPaths) { 121 symlink = dir; 122 path::append(symlink, name + ".framework", name); 123 124 if (!suffix.empty()) { 125 // NOTE: we must resolve the symlink before trying the suffixes, because 126 // there are no symlinks for the suffixed paths. 127 SmallString<260> location; 128 if (!fs::real_path(symlink, location)) { 129 // only append suffix if realpath() succeeds 130 Twine suffixed = location + suffix; 131 if (fs::exists(suffixed)) 132 return resolvedFrameworks[key] = saver().save(suffixed.str()); 133 } 134 // Suffix lookup failed, fall through to the no-suffix case. 135 } 136 137 if (Optional<StringRef> path = resolveDylibPath(symlink.str())) 138 return resolvedFrameworks[key] = *path; 139 } 140 return {}; 141 } 142 143 static bool warnIfNotDirectory(StringRef option, StringRef path) { 144 if (!fs::exists(path)) { 145 warn("directory not found for option -" + option + path); 146 return false; 147 } else if (!fs::is_directory(path)) { 148 warn("option -" + option + path + " references a non-directory path"); 149 return false; 150 } 151 return true; 152 } 153 154 static std::vector<StringRef> 155 getSearchPaths(unsigned optionCode, InputArgList &args, 156 const std::vector<StringRef> &roots, 157 const SmallVector<StringRef, 2> &systemPaths) { 158 std::vector<StringRef> paths; 159 StringRef optionLetter{optionCode == OPT_F ? "F" : "L"}; 160 for (StringRef path : args::getStrings(args, optionCode)) { 161 // NOTE: only absolute paths are re-rooted to syslibroot(s) 162 bool found = false; 163 if (path::is_absolute(path, path::Style::posix)) { 164 for (StringRef root : roots) { 165 SmallString<261> buffer(root); 166 path::append(buffer, path); 167 // Do not warn about paths that are computed via the syslib roots 168 if (fs::is_directory(buffer)) { 169 paths.push_back(saver().save(buffer.str())); 170 found = true; 171 } 172 } 173 } 174 if (!found && warnIfNotDirectory(optionLetter, path)) 175 paths.push_back(path); 176 } 177 178 // `-Z` suppresses the standard "system" search paths. 179 if (args.hasArg(OPT_Z)) 180 return paths; 181 182 for (const StringRef &path : systemPaths) { 183 for (const StringRef &root : roots) { 184 SmallString<261> buffer(root); 185 path::append(buffer, path); 186 if (fs::is_directory(buffer)) 187 paths.push_back(saver().save(buffer.str())); 188 } 189 } 190 return paths; 191 } 192 193 static std::vector<StringRef> getSystemLibraryRoots(InputArgList &args) { 194 std::vector<StringRef> roots; 195 for (const Arg *arg : args.filtered(OPT_syslibroot)) 196 roots.push_back(arg->getValue()); 197 // NOTE: the final `-syslibroot` being `/` will ignore all roots 198 if (!roots.empty() && roots.back() == "/") 199 roots.clear(); 200 // NOTE: roots can never be empty - add an empty root to simplify the library 201 // and framework search path computation. 202 if (roots.empty()) 203 roots.emplace_back(""); 204 return roots; 205 } 206 207 static std::vector<StringRef> 208 getLibrarySearchPaths(InputArgList &args, const std::vector<StringRef> &roots) { 209 return getSearchPaths(OPT_L, args, roots, {"/usr/lib", "/usr/local/lib"}); 210 } 211 212 static std::vector<StringRef> 213 getFrameworkSearchPaths(InputArgList &args, 214 const std::vector<StringRef> &roots) { 215 return getSearchPaths(OPT_F, args, roots, 216 {"/Library/Frameworks", "/System/Library/Frameworks"}); 217 } 218 219 static llvm::CachePruningPolicy getLTOCachePolicy(InputArgList &args) { 220 SmallString<128> ltoPolicy; 221 auto add = [<oPolicy](Twine val) { 222 if (!ltoPolicy.empty()) 223 ltoPolicy += ":"; 224 val.toVector(ltoPolicy); 225 }; 226 for (const Arg *arg : 227 args.filtered(OPT_thinlto_cache_policy, OPT_prune_interval_lto, 228 OPT_prune_after_lto, OPT_max_relative_cache_size_lto)) { 229 switch (arg->getOption().getID()) { 230 case OPT_thinlto_cache_policy: 231 add(arg->getValue()); 232 break; 233 case OPT_prune_interval_lto: 234 if (!strcmp("-1", arg->getValue())) 235 add("prune_interval=87600h"); // 10 years 236 else 237 add(Twine("prune_interval=") + arg->getValue() + "s"); 238 break; 239 case OPT_prune_after_lto: 240 add(Twine("prune_after=") + arg->getValue() + "s"); 241 break; 242 case OPT_max_relative_cache_size_lto: 243 add(Twine("cache_size=") + arg->getValue() + "%"); 244 break; 245 } 246 } 247 return CHECK(parseCachePruningPolicy(ltoPolicy), "invalid LTO cache policy"); 248 } 249 250 static DenseMap<StringRef, ArchiveFile *> loadedArchives; 251 252 static InputFile *addFile(StringRef path, ForceLoad forceLoadArchive, 253 bool isLazy = false, bool isExplicit = true, 254 bool isBundleLoader = false) { 255 Optional<MemoryBufferRef> buffer = readFile(path); 256 if (!buffer) 257 return nullptr; 258 MemoryBufferRef mbref = *buffer; 259 InputFile *newFile = nullptr; 260 261 file_magic magic = identify_magic(mbref.getBuffer()); 262 switch (magic) { 263 case file_magic::archive: { 264 // Avoid loading archives twice. If the archives are being force-loaded, 265 // loading them twice would create duplicate symbol errors. In the 266 // non-force-loading case, this is just a minor performance optimization. 267 // We don't take a reference to cachedFile here because the 268 // loadArchiveMember() call below may recursively call addFile() and 269 // invalidate this reference. 270 auto entry = loadedArchives.find(path); 271 if (entry != loadedArchives.end()) 272 return entry->second; 273 274 std::unique_ptr<object::Archive> archive = CHECK( 275 object::Archive::create(mbref), path + ": failed to parse archive"); 276 277 if (!archive->isEmpty() && !archive->hasSymbolTable()) 278 error(path + ": archive has no index; run ranlib to add one"); 279 280 auto *file = make<ArchiveFile>(std::move(archive)); 281 if ((forceLoadArchive == ForceLoad::Default && config->allLoad) || 282 forceLoadArchive == ForceLoad::Yes) { 283 if (Optional<MemoryBufferRef> buffer = readFile(path)) { 284 Error e = Error::success(); 285 for (const object::Archive::Child &c : file->getArchive().children(e)) { 286 StringRef reason = 287 forceLoadArchive == ForceLoad::Yes ? "-force_load" : "-all_load"; 288 if (Error e = file->fetch(c, reason)) 289 error(toString(file) + ": " + reason + 290 " failed to load archive member: " + toString(std::move(e))); 291 } 292 if (e) 293 error(toString(file) + 294 ": Archive::children failed: " + toString(std::move(e))); 295 } 296 } else if (forceLoadArchive == ForceLoad::Default && 297 config->forceLoadObjC) { 298 for (const object::Archive::Symbol &sym : file->getArchive().symbols()) 299 if (sym.getName().startswith(objc::klass)) 300 file->fetch(sym); 301 302 // TODO: no need to look for ObjC sections for a given archive member if 303 // we already found that it contains an ObjC symbol. 304 if (Optional<MemoryBufferRef> buffer = readFile(path)) { 305 Error e = Error::success(); 306 for (const object::Archive::Child &c : file->getArchive().children(e)) { 307 Expected<MemoryBufferRef> mb = c.getMemoryBufferRef(); 308 if (!mb || !hasObjCSection(*mb)) 309 continue; 310 if (Error e = file->fetch(c, "-ObjC")) 311 error(toString(file) + ": -ObjC failed to load archive member: " + 312 toString(std::move(e))); 313 } 314 if (e) 315 error(toString(file) + 316 ": Archive::children failed: " + toString(std::move(e))); 317 } 318 } 319 320 file->addLazySymbols(); 321 newFile = loadedArchives[path] = file; 322 break; 323 } 324 case file_magic::macho_object: 325 newFile = make<ObjFile>(mbref, getModTime(path), "", isLazy); 326 break; 327 case file_magic::macho_dynamically_linked_shared_lib: 328 case file_magic::macho_dynamically_linked_shared_lib_stub: 329 case file_magic::tapi_file: 330 if (DylibFile *dylibFile = loadDylib(mbref)) { 331 if (isExplicit) 332 dylibFile->explicitlyLinked = true; 333 newFile = dylibFile; 334 } 335 break; 336 case file_magic::bitcode: 337 newFile = make<BitcodeFile>(mbref, "", 0, isLazy); 338 break; 339 case file_magic::macho_executable: 340 case file_magic::macho_bundle: 341 // We only allow executable and bundle type here if it is used 342 // as a bundle loader. 343 if (!isBundleLoader) 344 error(path + ": unhandled file type"); 345 if (DylibFile *dylibFile = loadDylib(mbref, nullptr, isBundleLoader)) 346 newFile = dylibFile; 347 break; 348 default: 349 error(path + ": unhandled file type"); 350 } 351 if (newFile && !isa<DylibFile>(newFile)) { 352 if ((isa<ObjFile>(newFile) || isa<BitcodeFile>(newFile)) && newFile->lazy && 353 config->forceLoadObjC) { 354 for (Symbol *sym : newFile->symbols) 355 if (sym && sym->getName().startswith(objc::klass)) { 356 extract(*newFile, "-ObjC"); 357 break; 358 } 359 if (newFile->lazy && hasObjCSection(mbref)) 360 extract(*newFile, "-ObjC"); 361 } 362 363 // printArchiveMemberLoad() prints both .a and .o names, so no need to 364 // print the .a name here. Similarly skip lazy files. 365 if (config->printEachFile && magic != file_magic::archive && !isLazy) 366 message(toString(newFile)); 367 inputFiles.insert(newFile); 368 } 369 return newFile; 370 } 371 372 static void addLibrary(StringRef name, bool isNeeded, bool isWeak, 373 bool isReexport, bool isExplicit, 374 ForceLoad forceLoadArchive) { 375 if (Optional<StringRef> path = findLibrary(name)) { 376 if (auto *dylibFile = dyn_cast_or_null<DylibFile>( 377 addFile(*path, forceLoadArchive, /*isLazy=*/false, isExplicit))) { 378 if (isNeeded) 379 dylibFile->forceNeeded = true; 380 if (isWeak) 381 dylibFile->forceWeakImport = true; 382 if (isReexport) { 383 config->hasReexports = true; 384 dylibFile->reexport = true; 385 } 386 } 387 return; 388 } 389 error("library not found for -l" + name); 390 } 391 392 static DenseSet<StringRef> loadedObjectFrameworks; 393 static void addFramework(StringRef name, bool isNeeded, bool isWeak, 394 bool isReexport, bool isExplicit, 395 ForceLoad forceLoadArchive) { 396 if (Optional<StringRef> path = findFramework(name)) { 397 if (loadedObjectFrameworks.contains(*path)) 398 return; 399 400 InputFile *file = 401 addFile(*path, forceLoadArchive, /*isLazy=*/false, isExplicit); 402 if (auto *dylibFile = dyn_cast_or_null<DylibFile>(file)) { 403 if (isNeeded) 404 dylibFile->forceNeeded = true; 405 if (isWeak) 406 dylibFile->forceWeakImport = true; 407 if (isReexport) { 408 config->hasReexports = true; 409 dylibFile->reexport = true; 410 } 411 } else if (isa<ObjFile>(file) || isa<BitcodeFile>(file)) { 412 // Cache frameworks containing object or bitcode files to avoid duplicate 413 // symbols. Frameworks containing static archives are cached separately 414 // in addFile() to share caching with libraries, and frameworks 415 // containing dylibs should allow overwriting of attributes such as 416 // forceNeeded by subsequent loads 417 loadedObjectFrameworks.insert(*path); 418 } 419 return; 420 } 421 error("framework not found for -framework " + name); 422 } 423 424 // Parses LC_LINKER_OPTION contents, which can add additional command line 425 // flags. This directly parses the flags instead of using the standard argument 426 // parser to improve performance. 427 void macho::parseLCLinkerOption(InputFile *f, unsigned argc, StringRef data) { 428 SmallVector<StringRef, 4> argv; 429 size_t offset = 0; 430 for (unsigned i = 0; i < argc && offset < data.size(); ++i) { 431 argv.push_back(data.data() + offset); 432 offset += strlen(data.data() + offset) + 1; 433 } 434 if (argv.size() != argc || offset > data.size()) 435 fatal(toString(f) + ": invalid LC_LINKER_OPTION"); 436 437 unsigned i = 0; 438 StringRef arg = argv[i]; 439 if (arg.consume_front("-l")) { 440 ForceLoad forceLoadArchive = 441 config->forceLoadSwift && arg.startswith("swift") ? ForceLoad::Yes 442 : ForceLoad::No; 443 addLibrary(arg, /*isNeeded=*/false, /*isWeak=*/false, 444 /*isReexport=*/false, /*isExplicit=*/false, forceLoadArchive); 445 } else if (arg == "-framework") { 446 StringRef name = argv[++i]; 447 addFramework(name, /*isNeeded=*/false, /*isWeak=*/false, 448 /*isReexport=*/false, /*isExplicit=*/false, ForceLoad::No); 449 } else { 450 error(arg + " is not allowed in LC_LINKER_OPTION"); 451 } 452 } 453 454 static void addFileList(StringRef path, bool isLazy) { 455 Optional<MemoryBufferRef> buffer = readFile(path); 456 if (!buffer) 457 return; 458 MemoryBufferRef mbref = *buffer; 459 for (StringRef path : args::getLines(mbref)) 460 addFile(rerootPath(path), ForceLoad::Default, isLazy); 461 } 462 463 // We expect sub-library names of the form "libfoo", which will match a dylib 464 // with a path of .*/libfoo.{dylib, tbd}. 465 // XXX ld64 seems to ignore the extension entirely when matching sub-libraries; 466 // I'm not sure what the use case for that is. 467 static bool markReexport(StringRef searchName, ArrayRef<StringRef> extensions) { 468 for (InputFile *file : inputFiles) { 469 if (auto *dylibFile = dyn_cast<DylibFile>(file)) { 470 StringRef filename = path::filename(dylibFile->getName()); 471 if (filename.consume_front(searchName) && 472 (filename.empty() || 473 find(extensions, filename) != extensions.end())) { 474 dylibFile->reexport = true; 475 return true; 476 } 477 } 478 } 479 return false; 480 } 481 482 // This function is called on startup. We need this for LTO since 483 // LTO calls LLVM functions to compile bitcode files to native code. 484 // Technically this can be delayed until we read bitcode files, but 485 // we don't bother to do lazily because the initialization is fast. 486 static void initLLVM() { 487 InitializeAllTargets(); 488 InitializeAllTargetMCs(); 489 InitializeAllAsmPrinters(); 490 InitializeAllAsmParsers(); 491 } 492 493 static void compileBitcodeFiles() { 494 TimeTraceScope timeScope("LTO"); 495 auto *lto = make<BitcodeCompiler>(); 496 for (InputFile *file : inputFiles) 497 if (auto *bitcodeFile = dyn_cast<BitcodeFile>(file)) 498 if (!file->lazy) 499 lto->add(*bitcodeFile); 500 501 for (ObjFile *file : lto->compile()) 502 inputFiles.insert(file); 503 } 504 505 // Replaces common symbols with defined symbols residing in __common sections. 506 // This function must be called after all symbol names are resolved (i.e. after 507 // all InputFiles have been loaded.) As a result, later operations won't see 508 // any CommonSymbols. 509 static void replaceCommonSymbols() { 510 TimeTraceScope timeScope("Replace common symbols"); 511 ConcatOutputSection *osec = nullptr; 512 for (Symbol *sym : symtab->getSymbols()) { 513 auto *common = dyn_cast<CommonSymbol>(sym); 514 if (common == nullptr) 515 continue; 516 517 // Casting to size_t will truncate large values on 32-bit architectures, 518 // but it's not really worth supporting the linking of 64-bit programs on 519 // 32-bit archs. 520 ArrayRef<uint8_t> data = {nullptr, static_cast<size_t>(common->size)}; 521 // FIXME avoid creating one Section per symbol? 522 auto *section = 523 make<Section>(common->getFile(), segment_names::data, 524 section_names::common, S_ZEROFILL, /*addr=*/0); 525 auto *isec = make<ConcatInputSection>(*section, data, common->align); 526 if (!osec) 527 osec = ConcatOutputSection::getOrCreateForInput(isec); 528 isec->parent = osec; 529 inputSections.push_back(isec); 530 531 // FIXME: CommonSymbol should store isReferencedDynamically, noDeadStrip 532 // and pass them on here. 533 replaceSymbol<Defined>(sym, sym->getName(), common->getFile(), isec, 534 /*value=*/0, 535 /*size=*/0, 536 /*isWeakDef=*/false, 537 /*isExternal=*/true, common->privateExtern, 538 /*isThumb=*/false, 539 /*isReferencedDynamically=*/false, 540 /*noDeadStrip=*/false); 541 } 542 } 543 544 static void initializeSectionRenameMap() { 545 if (config->dataConst) { 546 SmallVector<StringRef> v{section_names::got, 547 section_names::authGot, 548 section_names::authPtr, 549 section_names::nonLazySymbolPtr, 550 section_names::const_, 551 section_names::cfString, 552 section_names::moduleInitFunc, 553 section_names::moduleTermFunc, 554 section_names::objcClassList, 555 section_names::objcNonLazyClassList, 556 section_names::objcCatList, 557 section_names::objcNonLazyCatList, 558 section_names::objcProtoList, 559 section_names::objcImageInfo}; 560 for (StringRef s : v) 561 config->sectionRenameMap[{segment_names::data, s}] = { 562 segment_names::dataConst, s}; 563 } 564 config->sectionRenameMap[{segment_names::text, section_names::staticInit}] = { 565 segment_names::text, section_names::text}; 566 config->sectionRenameMap[{segment_names::import, section_names::pointers}] = { 567 config->dataConst ? segment_names::dataConst : segment_names::data, 568 section_names::nonLazySymbolPtr}; 569 } 570 571 static inline char toLowerDash(char x) { 572 if (x >= 'A' && x <= 'Z') 573 return x - 'A' + 'a'; 574 else if (x == ' ') 575 return '-'; 576 return x; 577 } 578 579 static std::string lowerDash(StringRef s) { 580 return std::string(map_iterator(s.begin(), toLowerDash), 581 map_iterator(s.end(), toLowerDash)); 582 } 583 584 // Has the side-effect of setting Config::platformInfo. 585 static PlatformType parsePlatformVersion(const ArgList &args) { 586 const Arg *arg = args.getLastArg(OPT_platform_version); 587 if (!arg) { 588 error("must specify -platform_version"); 589 return PLATFORM_UNKNOWN; 590 } 591 592 StringRef platformStr = arg->getValue(0); 593 StringRef minVersionStr = arg->getValue(1); 594 StringRef sdkVersionStr = arg->getValue(2); 595 596 // TODO(compnerd) see if we can generate this case list via XMACROS 597 PlatformType platform = 598 StringSwitch<PlatformType>(lowerDash(platformStr)) 599 .Cases("macos", "1", PLATFORM_MACOS) 600 .Cases("ios", "2", PLATFORM_IOS) 601 .Cases("tvos", "3", PLATFORM_TVOS) 602 .Cases("watchos", "4", PLATFORM_WATCHOS) 603 .Cases("bridgeos", "5", PLATFORM_BRIDGEOS) 604 .Cases("mac-catalyst", "6", PLATFORM_MACCATALYST) 605 .Cases("ios-simulator", "7", PLATFORM_IOSSIMULATOR) 606 .Cases("tvos-simulator", "8", PLATFORM_TVOSSIMULATOR) 607 .Cases("watchos-simulator", "9", PLATFORM_WATCHOSSIMULATOR) 608 .Cases("driverkit", "10", PLATFORM_DRIVERKIT) 609 .Default(PLATFORM_UNKNOWN); 610 if (platform == PLATFORM_UNKNOWN) 611 error(Twine("malformed platform: ") + platformStr); 612 // TODO: check validity of version strings, which varies by platform 613 // NOTE: ld64 accepts version strings with 5 components 614 // llvm::VersionTuple accepts no more than 4 components 615 // Has Apple ever published version strings with 5 components? 616 if (config->platformInfo.minimum.tryParse(minVersionStr)) 617 error(Twine("malformed minimum version: ") + minVersionStr); 618 if (config->platformInfo.sdk.tryParse(sdkVersionStr)) 619 error(Twine("malformed sdk version: ") + sdkVersionStr); 620 return platform; 621 } 622 623 // Has the side-effect of setting Config::target. 624 static TargetInfo *createTargetInfo(InputArgList &args) { 625 StringRef archName = args.getLastArgValue(OPT_arch); 626 if (archName.empty()) { 627 error("must specify -arch"); 628 return nullptr; 629 } 630 631 PlatformType platform = parsePlatformVersion(args); 632 config->platformInfo.target = 633 MachO::Target(getArchitectureFromName(archName), platform); 634 635 uint32_t cpuType; 636 uint32_t cpuSubtype; 637 std::tie(cpuType, cpuSubtype) = getCPUTypeFromArchitecture(config->arch()); 638 639 switch (cpuType) { 640 case CPU_TYPE_X86_64: 641 return createX86_64TargetInfo(); 642 case CPU_TYPE_ARM64: 643 return createARM64TargetInfo(); 644 case CPU_TYPE_ARM64_32: 645 return createARM64_32TargetInfo(); 646 case CPU_TYPE_ARM: 647 return createARMTargetInfo(cpuSubtype); 648 default: 649 error("missing or unsupported -arch " + archName); 650 return nullptr; 651 } 652 } 653 654 static UndefinedSymbolTreatment 655 getUndefinedSymbolTreatment(const ArgList &args) { 656 StringRef treatmentStr = args.getLastArgValue(OPT_undefined); 657 auto treatment = 658 StringSwitch<UndefinedSymbolTreatment>(treatmentStr) 659 .Cases("error", "", UndefinedSymbolTreatment::error) 660 .Case("warning", UndefinedSymbolTreatment::warning) 661 .Case("suppress", UndefinedSymbolTreatment::suppress) 662 .Case("dynamic_lookup", UndefinedSymbolTreatment::dynamic_lookup) 663 .Default(UndefinedSymbolTreatment::unknown); 664 if (treatment == UndefinedSymbolTreatment::unknown) { 665 warn(Twine("unknown -undefined TREATMENT '") + treatmentStr + 666 "', defaulting to 'error'"); 667 treatment = UndefinedSymbolTreatment::error; 668 } else if (config->namespaceKind == NamespaceKind::twolevel && 669 (treatment == UndefinedSymbolTreatment::warning || 670 treatment == UndefinedSymbolTreatment::suppress)) { 671 if (treatment == UndefinedSymbolTreatment::warning) 672 error("'-undefined warning' only valid with '-flat_namespace'"); 673 else 674 error("'-undefined suppress' only valid with '-flat_namespace'"); 675 treatment = UndefinedSymbolTreatment::error; 676 } 677 return treatment; 678 } 679 680 static ICFLevel getICFLevel(const ArgList &args) { 681 StringRef icfLevelStr = args.getLastArgValue(OPT_icf_eq); 682 auto icfLevel = StringSwitch<ICFLevel>(icfLevelStr) 683 .Cases("none", "", ICFLevel::none) 684 .Case("safe", ICFLevel::safe) 685 .Case("all", ICFLevel::all) 686 .Default(ICFLevel::unknown); 687 if (icfLevel == ICFLevel::unknown) { 688 warn(Twine("unknown --icf=OPTION `") + icfLevelStr + 689 "', defaulting to `none'"); 690 icfLevel = ICFLevel::none; 691 } else if (icfLevel == ICFLevel::safe) { 692 warn(Twine("`--icf=safe' is not yet implemented, reverting to `none'")); 693 icfLevel = ICFLevel::none; 694 } 695 return icfLevel; 696 } 697 698 static void warnIfDeprecatedOption(const Option &opt) { 699 if (!opt.getGroup().isValid()) 700 return; 701 if (opt.getGroup().getID() == OPT_grp_deprecated) { 702 warn("Option `" + opt.getPrefixedName() + "' is deprecated in ld64:"); 703 warn(opt.getHelpText()); 704 } 705 } 706 707 static void warnIfUnimplementedOption(const Option &opt) { 708 if (!opt.getGroup().isValid() || !opt.hasFlag(DriverFlag::HelpHidden)) 709 return; 710 switch (opt.getGroup().getID()) { 711 case OPT_grp_deprecated: 712 // warn about deprecated options elsewhere 713 break; 714 case OPT_grp_undocumented: 715 warn("Option `" + opt.getPrefixedName() + 716 "' is undocumented. Should lld implement it?"); 717 break; 718 case OPT_grp_obsolete: 719 warn("Option `" + opt.getPrefixedName() + 720 "' is obsolete. Please modernize your usage."); 721 break; 722 case OPT_grp_ignored: 723 warn("Option `" + opt.getPrefixedName() + "' is ignored."); 724 break; 725 case OPT_grp_ignored_silently: 726 break; 727 default: 728 warn("Option `" + opt.getPrefixedName() + 729 "' is not yet implemented. Stay tuned..."); 730 break; 731 } 732 } 733 734 static const char *getReproduceOption(InputArgList &args) { 735 if (const Arg *arg = args.getLastArg(OPT_reproduce)) 736 return arg->getValue(); 737 return getenv("LLD_REPRODUCE"); 738 } 739 740 static void parseClangOption(StringRef opt, const Twine &msg) { 741 std::string err; 742 raw_string_ostream os(err); 743 744 const char *argv[] = {"lld", opt.data()}; 745 if (cl::ParseCommandLineOptions(2, argv, "", &os)) 746 return; 747 os.flush(); 748 error(msg + ": " + StringRef(err).trim()); 749 } 750 751 static uint32_t parseDylibVersion(const ArgList &args, unsigned id) { 752 const Arg *arg = args.getLastArg(id); 753 if (!arg) 754 return 0; 755 756 if (config->outputType != MH_DYLIB) { 757 error(arg->getAsString(args) + ": only valid with -dylib"); 758 return 0; 759 } 760 761 PackedVersion version; 762 if (!version.parse32(arg->getValue())) { 763 error(arg->getAsString(args) + ": malformed version"); 764 return 0; 765 } 766 767 return version.rawValue(); 768 } 769 770 static uint32_t parseProtection(StringRef protStr) { 771 uint32_t prot = 0; 772 for (char c : protStr) { 773 switch (c) { 774 case 'r': 775 prot |= VM_PROT_READ; 776 break; 777 case 'w': 778 prot |= VM_PROT_WRITE; 779 break; 780 case 'x': 781 prot |= VM_PROT_EXECUTE; 782 break; 783 case '-': 784 break; 785 default: 786 error("unknown -segprot letter '" + Twine(c) + "' in " + protStr); 787 return 0; 788 } 789 } 790 return prot; 791 } 792 793 static std::vector<SectionAlign> parseSectAlign(const opt::InputArgList &args) { 794 std::vector<SectionAlign> sectAligns; 795 for (const Arg *arg : args.filtered(OPT_sectalign)) { 796 StringRef segName = arg->getValue(0); 797 StringRef sectName = arg->getValue(1); 798 StringRef alignStr = arg->getValue(2); 799 if (alignStr.startswith("0x") || alignStr.startswith("0X")) 800 alignStr = alignStr.drop_front(2); 801 uint32_t align; 802 if (alignStr.getAsInteger(16, align)) { 803 error("-sectalign: failed to parse '" + StringRef(arg->getValue(2)) + 804 "' as number"); 805 continue; 806 } 807 if (!isPowerOf2_32(align)) { 808 error("-sectalign: '" + StringRef(arg->getValue(2)) + 809 "' (in base 16) not a power of two"); 810 continue; 811 } 812 sectAligns.push_back({segName, sectName, align}); 813 } 814 return sectAligns; 815 } 816 817 PlatformType macho::removeSimulator(PlatformType platform) { 818 switch (platform) { 819 case PLATFORM_IOSSIMULATOR: 820 return PLATFORM_IOS; 821 case PLATFORM_TVOSSIMULATOR: 822 return PLATFORM_TVOS; 823 case PLATFORM_WATCHOSSIMULATOR: 824 return PLATFORM_WATCHOS; 825 default: 826 return platform; 827 } 828 } 829 830 static bool dataConstDefault(const InputArgList &args) { 831 static const std::vector<std::pair<PlatformType, VersionTuple>> minVersion = { 832 {PLATFORM_MACOS, VersionTuple(10, 15)}, 833 {PLATFORM_IOS, VersionTuple(13, 0)}, 834 {PLATFORM_TVOS, VersionTuple(13, 0)}, 835 {PLATFORM_WATCHOS, VersionTuple(6, 0)}, 836 {PLATFORM_BRIDGEOS, VersionTuple(4, 0)}}; 837 PlatformType platform = removeSimulator(config->platformInfo.target.Platform); 838 auto it = llvm::find_if(minVersion, 839 [&](const auto &p) { return p.first == platform; }); 840 if (it != minVersion.end()) 841 if (config->platformInfo.minimum < it->second) 842 return false; 843 844 switch (config->outputType) { 845 case MH_EXECUTE: 846 return !args.hasArg(OPT_no_pie); 847 case MH_BUNDLE: 848 // FIXME: return false when -final_name ... 849 // has prefix "/System/Library/UserEventPlugins/" 850 // or matches "/usr/libexec/locationd" "/usr/libexec/terminusd" 851 return true; 852 case MH_DYLIB: 853 return true; 854 case MH_OBJECT: 855 return false; 856 default: 857 llvm_unreachable( 858 "unsupported output type for determining data-const default"); 859 } 860 return false; 861 } 862 863 void SymbolPatterns::clear() { 864 literals.clear(); 865 globs.clear(); 866 } 867 868 void SymbolPatterns::insert(StringRef symbolName) { 869 if (symbolName.find_first_of("*?[]") == StringRef::npos) 870 literals.insert(CachedHashStringRef(symbolName)); 871 else if (Expected<GlobPattern> pattern = GlobPattern::create(symbolName)) 872 globs.emplace_back(*pattern); 873 else 874 error("invalid symbol-name pattern: " + symbolName); 875 } 876 877 bool SymbolPatterns::matchLiteral(StringRef symbolName) const { 878 return literals.contains(CachedHashStringRef(symbolName)); 879 } 880 881 bool SymbolPatterns::matchGlob(StringRef symbolName) const { 882 for (const GlobPattern &glob : globs) 883 if (glob.match(symbolName)) 884 return true; 885 return false; 886 } 887 888 bool SymbolPatterns::match(StringRef symbolName) const { 889 return matchLiteral(symbolName) || matchGlob(symbolName); 890 } 891 892 static void handleSymbolPatterns(InputArgList &args, 893 SymbolPatterns &symbolPatterns, 894 unsigned singleOptionCode, 895 unsigned listFileOptionCode) { 896 for (const Arg *arg : args.filtered(singleOptionCode)) 897 symbolPatterns.insert(arg->getValue()); 898 for (const Arg *arg : args.filtered(listFileOptionCode)) { 899 StringRef path = arg->getValue(); 900 Optional<MemoryBufferRef> buffer = readFile(path); 901 if (!buffer) { 902 error("Could not read symbol file: " + path); 903 continue; 904 } 905 MemoryBufferRef mbref = *buffer; 906 for (StringRef line : args::getLines(mbref)) { 907 line = line.take_until([](char c) { return c == '#'; }).trim(); 908 if (!line.empty()) 909 symbolPatterns.insert(line); 910 } 911 } 912 } 913 914 static void createFiles(const InputArgList &args) { 915 TimeTraceScope timeScope("Load input files"); 916 // This loop should be reserved for options whose exact ordering matters. 917 // Other options should be handled via filtered() and/or getLastArg(). 918 bool isLazy = false; 919 for (const Arg *arg : args) { 920 const Option &opt = arg->getOption(); 921 warnIfDeprecatedOption(opt); 922 warnIfUnimplementedOption(opt); 923 924 switch (opt.getID()) { 925 case OPT_INPUT: 926 addFile(rerootPath(arg->getValue()), ForceLoad::Default, isLazy); 927 break; 928 case OPT_needed_library: 929 if (auto *dylibFile = dyn_cast_or_null<DylibFile>( 930 addFile(rerootPath(arg->getValue()), ForceLoad::Default))) 931 dylibFile->forceNeeded = true; 932 break; 933 case OPT_reexport_library: 934 if (auto *dylibFile = dyn_cast_or_null<DylibFile>( 935 addFile(rerootPath(arg->getValue()), ForceLoad::Default))) { 936 config->hasReexports = true; 937 dylibFile->reexport = true; 938 } 939 break; 940 case OPT_weak_library: 941 if (auto *dylibFile = dyn_cast_or_null<DylibFile>( 942 addFile(rerootPath(arg->getValue()), ForceLoad::Default))) 943 dylibFile->forceWeakImport = true; 944 break; 945 case OPT_filelist: 946 addFileList(arg->getValue(), isLazy); 947 break; 948 case OPT_force_load: 949 addFile(rerootPath(arg->getValue()), ForceLoad::Yes); 950 break; 951 case OPT_l: 952 case OPT_needed_l: 953 case OPT_reexport_l: 954 case OPT_weak_l: 955 addLibrary(arg->getValue(), opt.getID() == OPT_needed_l, 956 opt.getID() == OPT_weak_l, opt.getID() == OPT_reexport_l, 957 /*isExplicit=*/true, ForceLoad::Default); 958 break; 959 case OPT_framework: 960 case OPT_needed_framework: 961 case OPT_reexport_framework: 962 case OPT_weak_framework: 963 addFramework(arg->getValue(), opt.getID() == OPT_needed_framework, 964 opt.getID() == OPT_weak_framework, 965 opt.getID() == OPT_reexport_framework, /*isExplicit=*/true, 966 ForceLoad::Default); 967 break; 968 case OPT_start_lib: 969 if (isLazy) 970 error("nested --start-lib"); 971 isLazy = true; 972 break; 973 case OPT_end_lib: 974 if (!isLazy) 975 error("stray --end-lib"); 976 isLazy = false; 977 break; 978 default: 979 break; 980 } 981 } 982 } 983 984 static void gatherInputSections() { 985 TimeTraceScope timeScope("Gathering input sections"); 986 int inputOrder = 0; 987 for (const InputFile *file : inputFiles) { 988 for (const Section *section : file->sections) { 989 const Subsections &subsections = section->subsections; 990 if (subsections.empty()) 991 continue; 992 if (subsections[0].isec->getName() == section_names::compactUnwind) 993 // Compact unwind entries require special handling elsewhere. 994 continue; 995 ConcatOutputSection *osec = nullptr; 996 for (const Subsection &subsection : subsections) { 997 if (auto *isec = dyn_cast<ConcatInputSection>(subsection.isec)) { 998 if (isec->isCoalescedWeak()) 999 continue; 1000 isec->outSecOff = inputOrder++; 1001 if (!osec) 1002 osec = ConcatOutputSection::getOrCreateForInput(isec); 1003 isec->parent = osec; 1004 inputSections.push_back(isec); 1005 } else if (auto *isec = 1006 dyn_cast<CStringInputSection>(subsection.isec)) { 1007 if (in.cStringSection->inputOrder == UnspecifiedInputOrder) 1008 in.cStringSection->inputOrder = inputOrder++; 1009 in.cStringSection->addInput(isec); 1010 } else if (auto *isec = 1011 dyn_cast<WordLiteralInputSection>(subsection.isec)) { 1012 if (in.wordLiteralSection->inputOrder == UnspecifiedInputOrder) 1013 in.wordLiteralSection->inputOrder = inputOrder++; 1014 in.wordLiteralSection->addInput(isec); 1015 } else { 1016 llvm_unreachable("unexpected input section kind"); 1017 } 1018 } 1019 } 1020 } 1021 assert(inputOrder <= UnspecifiedInputOrder); 1022 } 1023 1024 static void foldIdenticalLiterals() { 1025 // We always create a cStringSection, regardless of whether dedupLiterals is 1026 // true. If it isn't, we simply create a non-deduplicating CStringSection. 1027 // Either way, we must unconditionally finalize it here. 1028 in.cStringSection->finalizeContents(); 1029 if (in.wordLiteralSection) 1030 in.wordLiteralSection->finalizeContents(); 1031 } 1032 1033 static void referenceStubBinder() { 1034 bool needsStubHelper = config->outputType == MH_DYLIB || 1035 config->outputType == MH_EXECUTE || 1036 config->outputType == MH_BUNDLE; 1037 if (!needsStubHelper || !symtab->find("dyld_stub_binder")) 1038 return; 1039 1040 // dyld_stub_binder is used by dyld to resolve lazy bindings. This code here 1041 // adds a opportunistic reference to dyld_stub_binder if it happens to exist. 1042 // dyld_stub_binder is in libSystem.dylib, which is usually linked in. This 1043 // isn't needed for correctness, but the presence of that symbol suppresses 1044 // "no symbols" diagnostics from `nm`. 1045 // StubHelperSection::setup() adds a reference and errors out if 1046 // dyld_stub_binder doesn't exist in case it is actually needed. 1047 symtab->addUndefined("dyld_stub_binder", /*file=*/nullptr, /*isWeak=*/false); 1048 } 1049 1050 bool macho::link(ArrayRef<const char *> argsArr, llvm::raw_ostream &stdoutOS, 1051 llvm::raw_ostream &stderrOS, bool exitEarly, 1052 bool disableOutput) { 1053 // This driver-specific context will be freed later by lldMain(). 1054 auto *ctx = new CommonLinkerContext; 1055 1056 ctx->e.initialize(stdoutOS, stderrOS, exitEarly, disableOutput); 1057 ctx->e.cleanupCallback = []() { 1058 resolvedFrameworks.clear(); 1059 resolvedLibraries.clear(); 1060 cachedReads.clear(); 1061 concatOutputSections.clear(); 1062 inputFiles.clear(); 1063 inputSections.clear(); 1064 loadedArchives.clear(); 1065 loadedObjectFrameworks.clear(); 1066 syntheticSections.clear(); 1067 thunkMap.clear(); 1068 1069 firstTLVDataSection = nullptr; 1070 tar = nullptr; 1071 memset(&in, 0, sizeof(in)); 1072 1073 resetLoadedDylibs(); 1074 resetOutputSegments(); 1075 resetWriter(); 1076 InputFile::resetIdCount(); 1077 }; 1078 1079 ctx->e.logName = args::getFilenameWithoutExe(argsArr[0]); 1080 1081 MachOOptTable parser; 1082 InputArgList args = parser.parse(argsArr.slice(1)); 1083 1084 ctx->e.errorLimitExceededMsg = "too many errors emitted, stopping now " 1085 "(use --error-limit=0 to see all errors)"; 1086 ctx->e.errorLimit = args::getInteger(args, OPT_error_limit_eq, 20); 1087 ctx->e.verbose = args.hasArg(OPT_verbose); 1088 1089 if (args.hasArg(OPT_help_hidden)) { 1090 parser.printHelp(argsArr[0], /*showHidden=*/true); 1091 return true; 1092 } 1093 if (args.hasArg(OPT_help)) { 1094 parser.printHelp(argsArr[0], /*showHidden=*/false); 1095 return true; 1096 } 1097 if (args.hasArg(OPT_version)) { 1098 message(getLLDVersion()); 1099 return true; 1100 } 1101 1102 config = std::make_unique<Configuration>(); 1103 symtab = std::make_unique<SymbolTable>(); 1104 target = createTargetInfo(args); 1105 depTracker = std::make_unique<DependencyTracker>( 1106 args.getLastArgValue(OPT_dependency_info)); 1107 if (errorCount()) 1108 return false; 1109 1110 if (args.hasArg(OPT_pagezero_size)) { 1111 uint64_t pagezeroSize = args::getHex(args, OPT_pagezero_size, 0); 1112 1113 // ld64 does something really weird. It attempts to realign the value to the 1114 // page size, but assumes the the page size is 4K. This doesn't work with 1115 // most of Apple's ARM64 devices, which use a page size of 16K. This means 1116 // that it will first 4K align it by rounding down, then round up to 16K. 1117 // This probably only happened because no one using this arg with anything 1118 // other then 0, so no one checked if it did what is what it says it does. 1119 1120 // So we are not copying this weird behavior and doing the it in a logical 1121 // way, by always rounding down to page size. 1122 if (!isAligned(Align(target->getPageSize()), pagezeroSize)) { 1123 pagezeroSize -= pagezeroSize % target->getPageSize(); 1124 warn("__PAGEZERO size is not page aligned, rounding down to 0x" + 1125 Twine::utohexstr(pagezeroSize)); 1126 } 1127 1128 target->pageZeroSize = pagezeroSize; 1129 } 1130 1131 config->osoPrefix = args.getLastArgValue(OPT_oso_prefix); 1132 if (!config->osoPrefix.empty()) { 1133 // Expand special characters, such as ".", "..", or "~", if present. 1134 // Note: LD64 only expands "." and not other special characters. 1135 // That seems silly to imitate so we will not try to follow it, but rather 1136 // just use real_path() to do it. 1137 1138 // The max path length is 4096, in theory. However that seems quite long 1139 // and seems unlikely that any one would want to strip everything from the 1140 // path. Hence we've picked a reasonably large number here. 1141 SmallString<1024> expanded; 1142 if (!fs::real_path(config->osoPrefix, expanded, 1143 /*expand_tilde=*/true)) { 1144 // Note: LD64 expands "." to be `<current_dir>/` 1145 // (ie., it has a slash suffix) whereas real_path() doesn't. 1146 // So we have to append '/' to be consistent. 1147 StringRef sep = sys::path::get_separator(); 1148 // real_path removes trailing slashes as part of the normalization, but 1149 // these are meaningful for our text based stripping 1150 if (config->osoPrefix.equals(".") || config->osoPrefix.endswith(sep)) 1151 expanded += sep; 1152 config->osoPrefix = saver().save(expanded.str()); 1153 } 1154 } 1155 1156 // Must be set before any InputSections and Symbols are created. 1157 config->deadStrip = args.hasArg(OPT_dead_strip); 1158 1159 config->systemLibraryRoots = getSystemLibraryRoots(args); 1160 if (const char *path = getReproduceOption(args)) { 1161 // Note that --reproduce is a debug option so you can ignore it 1162 // if you are trying to understand the whole picture of the code. 1163 Expected<std::unique_ptr<TarWriter>> errOrWriter = 1164 TarWriter::create(path, path::stem(path)); 1165 if (errOrWriter) { 1166 tar = std::move(*errOrWriter); 1167 tar->append("response.txt", createResponseFile(args)); 1168 tar->append("version.txt", getLLDVersion() + "\n"); 1169 } else { 1170 error("--reproduce: " + toString(errOrWriter.takeError())); 1171 } 1172 } 1173 1174 if (auto *arg = args.getLastArg(OPT_threads_eq)) { 1175 StringRef v(arg->getValue()); 1176 unsigned threads = 0; 1177 if (!llvm::to_integer(v, threads, 0) || threads == 0) 1178 error(arg->getSpelling() + ": expected a positive integer, but got '" + 1179 arg->getValue() + "'"); 1180 parallel::strategy = hardware_concurrency(threads); 1181 config->thinLTOJobs = v; 1182 } 1183 if (auto *arg = args.getLastArg(OPT_thinlto_jobs_eq)) 1184 config->thinLTOJobs = arg->getValue(); 1185 if (!get_threadpool_strategy(config->thinLTOJobs)) 1186 error("--thinlto-jobs: invalid job count: " + config->thinLTOJobs); 1187 1188 for (const Arg *arg : args.filtered(OPT_u)) { 1189 config->explicitUndefineds.push_back(symtab->addUndefined( 1190 arg->getValue(), /*file=*/nullptr, /*isWeakRef=*/false)); 1191 } 1192 1193 for (const Arg *arg : args.filtered(OPT_U)) 1194 config->explicitDynamicLookups.insert(arg->getValue()); 1195 1196 config->mapFile = args.getLastArgValue(OPT_map); 1197 config->optimize = args::getInteger(args, OPT_O, 1); 1198 config->outputFile = args.getLastArgValue(OPT_o, "a.out"); 1199 config->finalOutput = 1200 args.getLastArgValue(OPT_final_output, config->outputFile); 1201 config->astPaths = args.getAllArgValues(OPT_add_ast_path); 1202 config->headerPad = args::getHex(args, OPT_headerpad, /*Default=*/32); 1203 config->headerPadMaxInstallNames = 1204 args.hasArg(OPT_headerpad_max_install_names); 1205 config->printDylibSearch = 1206 args.hasArg(OPT_print_dylib_search) || getenv("RC_TRACE_DYLIB_SEARCHING"); 1207 config->printEachFile = args.hasArg(OPT_t); 1208 config->printWhyLoad = args.hasArg(OPT_why_load); 1209 config->omitDebugInfo = args.hasArg(OPT_S); 1210 config->outputType = getOutputType(args); 1211 config->errorForArchMismatch = args.hasArg(OPT_arch_errors_fatal); 1212 if (const Arg *arg = args.getLastArg(OPT_bundle_loader)) { 1213 if (config->outputType != MH_BUNDLE) 1214 error("-bundle_loader can only be used with MachO bundle output"); 1215 addFile(arg->getValue(), ForceLoad::Default, /*isLazy=*/false, 1216 /*isExplicit=*/false, 1217 /*isBundleLoader=*/true); 1218 } 1219 if (const Arg *arg = args.getLastArg(OPT_umbrella)) { 1220 if (config->outputType != MH_DYLIB) 1221 warn("-umbrella used, but not creating dylib"); 1222 config->umbrella = arg->getValue(); 1223 } 1224 config->ltoObjPath = args.getLastArgValue(OPT_object_path_lto); 1225 config->ltoNewPassManager = 1226 args.hasFlag(OPT_no_lto_legacy_pass_manager, OPT_lto_legacy_pass_manager, 1227 LLVM_ENABLE_NEW_PASS_MANAGER); 1228 config->ltoo = args::getInteger(args, OPT_lto_O, 2); 1229 if (config->ltoo > 3) 1230 error("--lto-O: invalid optimization level: " + Twine(config->ltoo)); 1231 config->thinLTOCacheDir = args.getLastArgValue(OPT_cache_path_lto); 1232 config->thinLTOCachePolicy = getLTOCachePolicy(args); 1233 config->runtimePaths = args::getStrings(args, OPT_rpath); 1234 config->allLoad = args.hasFlag(OPT_all_load, OPT_noall_load, false); 1235 config->archMultiple = args.hasArg(OPT_arch_multiple); 1236 config->applicationExtension = args.hasFlag( 1237 OPT_application_extension, OPT_no_application_extension, false); 1238 config->exportDynamic = args.hasArg(OPT_export_dynamic); 1239 config->forceLoadObjC = args.hasArg(OPT_ObjC); 1240 config->forceLoadSwift = args.hasArg(OPT_force_load_swift_libs); 1241 config->deadStripDylibs = args.hasArg(OPT_dead_strip_dylibs); 1242 config->demangle = args.hasArg(OPT_demangle); 1243 config->implicitDylibs = !args.hasArg(OPT_no_implicit_dylibs); 1244 config->emitFunctionStarts = 1245 args.hasFlag(OPT_function_starts, OPT_no_function_starts, true); 1246 config->emitBitcodeBundle = args.hasArg(OPT_bitcode_bundle); 1247 config->emitDataInCodeInfo = 1248 args.hasFlag(OPT_data_in_code_info, OPT_no_data_in_code_info, true); 1249 config->icfLevel = getICFLevel(args); 1250 config->dedupLiterals = 1251 args.hasFlag(OPT_deduplicate_literals, OPT_icf_eq, false) || 1252 config->icfLevel != ICFLevel::none; 1253 config->warnDylibInstallName = args.hasFlag( 1254 OPT_warn_dylib_install_name, OPT_no_warn_dylib_install_name, false); 1255 config->callGraphProfileSort = args.hasFlag( 1256 OPT_call_graph_profile_sort, OPT_no_call_graph_profile_sort, true); 1257 config->printSymbolOrder = args.getLastArgValue(OPT_print_symbol_order); 1258 1259 // FIXME: Add a commandline flag for this too. 1260 config->zeroModTime = getenv("ZERO_AR_DATE"); 1261 1262 std::array<PlatformType, 3> encryptablePlatforms{ 1263 PLATFORM_IOS, PLATFORM_WATCHOS, PLATFORM_TVOS}; 1264 config->emitEncryptionInfo = 1265 args.hasFlag(OPT_encryptable, OPT_no_encryption, 1266 is_contained(encryptablePlatforms, config->platform())); 1267 1268 #ifndef LLVM_HAVE_LIBXAR 1269 if (config->emitBitcodeBundle) 1270 error("-bitcode_bundle unsupported because LLD wasn't built with libxar"); 1271 #endif 1272 1273 if (const Arg *arg = args.getLastArg(OPT_install_name)) { 1274 if (config->warnDylibInstallName && config->outputType != MH_DYLIB) 1275 warn( 1276 arg->getAsString(args) + 1277 ": ignored, only has effect with -dylib [--warn-dylib-install-name]"); 1278 else 1279 config->installName = arg->getValue(); 1280 } else if (config->outputType == MH_DYLIB) { 1281 config->installName = config->finalOutput; 1282 } 1283 1284 if (args.hasArg(OPT_mark_dead_strippable_dylib)) { 1285 if (config->outputType != MH_DYLIB) 1286 warn("-mark_dead_strippable_dylib: ignored, only has effect with -dylib"); 1287 else 1288 config->markDeadStrippableDylib = true; 1289 } 1290 1291 if (const Arg *arg = args.getLastArg(OPT_static, OPT_dynamic)) 1292 config->staticLink = (arg->getOption().getID() == OPT_static); 1293 1294 if (const Arg *arg = 1295 args.getLastArg(OPT_flat_namespace, OPT_twolevel_namespace)) 1296 config->namespaceKind = arg->getOption().getID() == OPT_twolevel_namespace 1297 ? NamespaceKind::twolevel 1298 : NamespaceKind::flat; 1299 1300 config->undefinedSymbolTreatment = getUndefinedSymbolTreatment(args); 1301 1302 if (config->outputType == MH_EXECUTE) 1303 config->entry = symtab->addUndefined(args.getLastArgValue(OPT_e, "_main"), 1304 /*file=*/nullptr, 1305 /*isWeakRef=*/false); 1306 1307 config->librarySearchPaths = 1308 getLibrarySearchPaths(args, config->systemLibraryRoots); 1309 config->frameworkSearchPaths = 1310 getFrameworkSearchPaths(args, config->systemLibraryRoots); 1311 if (const Arg *arg = 1312 args.getLastArg(OPT_search_paths_first, OPT_search_dylibs_first)) 1313 config->searchDylibsFirst = 1314 arg->getOption().getID() == OPT_search_dylibs_first; 1315 1316 config->dylibCompatibilityVersion = 1317 parseDylibVersion(args, OPT_compatibility_version); 1318 config->dylibCurrentVersion = parseDylibVersion(args, OPT_current_version); 1319 1320 config->dataConst = 1321 args.hasFlag(OPT_data_const, OPT_no_data_const, dataConstDefault(args)); 1322 // Populate config->sectionRenameMap with builtin default renames. 1323 // Options -rename_section and -rename_segment are able to override. 1324 initializeSectionRenameMap(); 1325 // Reject every special character except '.' and '$' 1326 // TODO(gkm): verify that this is the proper set of invalid chars 1327 StringRef invalidNameChars("!\"#%&'()*+,-/:;<=>?@[\\]^`{|}~"); 1328 auto validName = [invalidNameChars](StringRef s) { 1329 if (s.find_first_of(invalidNameChars) != StringRef::npos) 1330 error("invalid name for segment or section: " + s); 1331 return s; 1332 }; 1333 for (const Arg *arg : args.filtered(OPT_rename_section)) { 1334 config->sectionRenameMap[{validName(arg->getValue(0)), 1335 validName(arg->getValue(1))}] = { 1336 validName(arg->getValue(2)), validName(arg->getValue(3))}; 1337 } 1338 for (const Arg *arg : args.filtered(OPT_rename_segment)) { 1339 config->segmentRenameMap[validName(arg->getValue(0))] = 1340 validName(arg->getValue(1)); 1341 } 1342 1343 config->sectionAlignments = parseSectAlign(args); 1344 1345 for (const Arg *arg : args.filtered(OPT_segprot)) { 1346 StringRef segName = arg->getValue(0); 1347 uint32_t maxProt = parseProtection(arg->getValue(1)); 1348 uint32_t initProt = parseProtection(arg->getValue(2)); 1349 if (maxProt != initProt && config->arch() != AK_i386) 1350 error("invalid argument '" + arg->getAsString(args) + 1351 "': max and init must be the same for non-i386 archs"); 1352 if (segName == segment_names::linkEdit) 1353 error("-segprot cannot be used to change __LINKEDIT's protections"); 1354 config->segmentProtections.push_back({segName, maxProt, initProt}); 1355 } 1356 1357 handleSymbolPatterns(args, config->exportedSymbols, OPT_exported_symbol, 1358 OPT_exported_symbols_list); 1359 handleSymbolPatterns(args, config->unexportedSymbols, OPT_unexported_symbol, 1360 OPT_unexported_symbols_list); 1361 if (!config->exportedSymbols.empty() && !config->unexportedSymbols.empty()) { 1362 error("cannot use both -exported_symbol* and -unexported_symbol* options\n" 1363 ">>> ignoring unexports"); 1364 config->unexportedSymbols.clear(); 1365 } 1366 // Explicitly-exported literal symbols must be defined, but might 1367 // languish in an archive if unreferenced elsewhere. Light a fire 1368 // under those lazy symbols! 1369 for (const CachedHashStringRef &cachedName : config->exportedSymbols.literals) 1370 symtab->addUndefined(cachedName.val(), /*file=*/nullptr, 1371 /*isWeakRef=*/false); 1372 1373 for (const Arg *arg : args.filtered(OPT_why_live)) 1374 config->whyLive.insert(arg->getValue()); 1375 if (!config->whyLive.empty() && !config->deadStrip) 1376 warn("-why_live has no effect without -dead_strip, ignoring"); 1377 1378 config->saveTemps = args.hasArg(OPT_save_temps); 1379 1380 config->adhocCodesign = args.hasFlag( 1381 OPT_adhoc_codesign, OPT_no_adhoc_codesign, 1382 (config->arch() == AK_arm64 || config->arch() == AK_arm64e) && 1383 config->platform() == PLATFORM_MACOS); 1384 1385 if (args.hasArg(OPT_v)) { 1386 message(getLLDVersion(), lld::errs()); 1387 message(StringRef("Library search paths:") + 1388 (config->librarySearchPaths.empty() 1389 ? "" 1390 : "\n\t" + join(config->librarySearchPaths, "\n\t")), 1391 lld::errs()); 1392 message(StringRef("Framework search paths:") + 1393 (config->frameworkSearchPaths.empty() 1394 ? "" 1395 : "\n\t" + join(config->frameworkSearchPaths, "\n\t")), 1396 lld::errs()); 1397 } 1398 1399 config->progName = argsArr[0]; 1400 1401 config->timeTraceEnabled = args.hasArg( 1402 OPT_time_trace, OPT_time_trace_granularity_eq, OPT_time_trace_file_eq); 1403 config->timeTraceGranularity = 1404 args::getInteger(args, OPT_time_trace_granularity_eq, 500); 1405 1406 // Initialize time trace profiler. 1407 if (config->timeTraceEnabled) 1408 timeTraceProfilerInitialize(config->timeTraceGranularity, config->progName); 1409 1410 { 1411 TimeTraceScope timeScope("ExecuteLinker"); 1412 1413 initLLVM(); // must be run before any call to addFile() 1414 createFiles(args); 1415 1416 config->isPic = config->outputType == MH_DYLIB || 1417 config->outputType == MH_BUNDLE || 1418 (config->outputType == MH_EXECUTE && 1419 args.hasFlag(OPT_pie, OPT_no_pie, true)); 1420 1421 // Now that all dylibs have been loaded, search for those that should be 1422 // re-exported. 1423 { 1424 auto reexportHandler = [](const Arg *arg, 1425 const std::vector<StringRef> &extensions) { 1426 config->hasReexports = true; 1427 StringRef searchName = arg->getValue(); 1428 if (!markReexport(searchName, extensions)) 1429 error(arg->getSpelling() + " " + searchName + 1430 " does not match a supplied dylib"); 1431 }; 1432 std::vector<StringRef> extensions = {".tbd"}; 1433 for (const Arg *arg : args.filtered(OPT_sub_umbrella)) 1434 reexportHandler(arg, extensions); 1435 1436 extensions.push_back(".dylib"); 1437 for (const Arg *arg : args.filtered(OPT_sub_library)) 1438 reexportHandler(arg, extensions); 1439 } 1440 1441 cl::ResetAllOptionOccurrences(); 1442 1443 // Parse LTO options. 1444 if (const Arg *arg = args.getLastArg(OPT_mcpu)) 1445 parseClangOption(saver().save("-mcpu=" + StringRef(arg->getValue())), 1446 arg->getSpelling()); 1447 1448 for (const Arg *arg : args.filtered(OPT_mllvm)) 1449 parseClangOption(arg->getValue(), arg->getSpelling()); 1450 1451 compileBitcodeFiles(); 1452 replaceCommonSymbols(); 1453 1454 StringRef orderFile = args.getLastArgValue(OPT_order_file); 1455 if (!orderFile.empty()) 1456 parseOrderFile(orderFile); 1457 1458 referenceStubBinder(); 1459 1460 // FIXME: should terminate the link early based on errors encountered so 1461 // far? 1462 1463 createSyntheticSections(); 1464 createSyntheticSymbols(); 1465 1466 if (!config->exportedSymbols.empty()) { 1467 parallelForEach(symtab->getSymbols(), [](Symbol *sym) { 1468 if (auto *defined = dyn_cast<Defined>(sym)) { 1469 StringRef symbolName = defined->getName(); 1470 if (config->exportedSymbols.match(symbolName)) { 1471 if (defined->privateExtern) { 1472 if (defined->weakDefCanBeHidden) { 1473 // weak_def_can_be_hidden symbols behave similarly to 1474 // private_extern symbols in most cases, except for when 1475 // it is explicitly exported. 1476 // The former can be exported but the latter cannot. 1477 defined->privateExtern = false; 1478 } else { 1479 warn("cannot export hidden symbol " + symbolName + 1480 "\n>>> defined in " + toString(defined->getFile())); 1481 } 1482 } 1483 } else { 1484 defined->privateExtern = true; 1485 } 1486 } 1487 }); 1488 } else if (!config->unexportedSymbols.empty()) { 1489 parallelForEach(symtab->getSymbols(), [](Symbol *sym) { 1490 if (auto *defined = dyn_cast<Defined>(sym)) 1491 if (config->unexportedSymbols.match(defined->getName())) 1492 defined->privateExtern = true; 1493 }); 1494 } 1495 1496 for (const Arg *arg : args.filtered(OPT_sectcreate)) { 1497 StringRef segName = arg->getValue(0); 1498 StringRef sectName = arg->getValue(1); 1499 StringRef fileName = arg->getValue(2); 1500 Optional<MemoryBufferRef> buffer = readFile(fileName); 1501 if (buffer) 1502 inputFiles.insert(make<OpaqueFile>(*buffer, segName, sectName)); 1503 } 1504 1505 for (const Arg *arg : args.filtered(OPT_add_empty_section)) { 1506 StringRef segName = arg->getValue(0); 1507 StringRef sectName = arg->getValue(1); 1508 inputFiles.insert(make<OpaqueFile>(MemoryBufferRef(), segName, sectName)); 1509 } 1510 1511 gatherInputSections(); 1512 if (config->callGraphProfileSort) 1513 extractCallGraphProfile(); 1514 1515 if (config->deadStrip) 1516 markLive(); 1517 1518 // ICF assumes that all literals have been folded already, so we must run 1519 // foldIdenticalLiterals before foldIdenticalSections. 1520 foldIdenticalLiterals(); 1521 if (config->icfLevel != ICFLevel::none) 1522 foldIdenticalSections(); 1523 1524 // Write to an output file. 1525 if (target->wordSize == 8) 1526 writeResult<LP64>(); 1527 else 1528 writeResult<ILP32>(); 1529 1530 depTracker->write(getLLDVersion(), inputFiles, config->outputFile); 1531 } 1532 1533 if (config->timeTraceEnabled) { 1534 checkError(timeTraceProfilerWrite( 1535 args.getLastArgValue(OPT_time_trace_file_eq).str(), 1536 config->outputFile)); 1537 1538 timeTraceProfilerCleanup(); 1539 } 1540 return errorCount() == 0; 1541 } 1542