xref: /llvm-project-15.0.7/lld/MachO/Driver.cpp (revision fe0bf7d4)
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 = [&ltoPolicy](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 // An order file has one entry per line, in the following format:
464 //
465 //   <cpu>:<object file>:<symbol name>
466 //
467 // <cpu> and <object file> are optional. If not specified, then that entry
468 // matches any symbol of that name. Parsing this format is not quite
469 // straightforward because the symbol name itself can contain colons, so when
470 // encountering a colon, we consider the preceding characters to decide if it
471 // can be a valid CPU type or file path.
472 //
473 // If a symbol is matched by multiple entries, then it takes the lowest-ordered
474 // entry (the one nearest to the front of the list.)
475 //
476 // The file can also have line comments that start with '#'.
477 // We expect sub-library names of the form "libfoo", which will match a dylib
478 // with a path of .*/libfoo.{dylib, tbd}.
479 // XXX ld64 seems to ignore the extension entirely when matching sub-libraries;
480 // I'm not sure what the use case for that is.
481 static bool markReexport(StringRef searchName, ArrayRef<StringRef> extensions) {
482   for (InputFile *file : inputFiles) {
483     if (auto *dylibFile = dyn_cast<DylibFile>(file)) {
484       StringRef filename = path::filename(dylibFile->getName());
485       if (filename.consume_front(searchName) &&
486           (filename.empty() ||
487            find(extensions, filename) != extensions.end())) {
488         dylibFile->reexport = true;
489         return true;
490       }
491     }
492   }
493   return false;
494 }
495 
496 // This function is called on startup. We need this for LTO since
497 // LTO calls LLVM functions to compile bitcode files to native code.
498 // Technically this can be delayed until we read bitcode files, but
499 // we don't bother to do lazily because the initialization is fast.
500 static void initLLVM() {
501   InitializeAllTargets();
502   InitializeAllTargetMCs();
503   InitializeAllAsmPrinters();
504   InitializeAllAsmParsers();
505 }
506 
507 static void compileBitcodeFiles() {
508   // FIXME: Remove this once LTO.cpp honors config->exportDynamic.
509   if (config->exportDynamic)
510     for (InputFile *file : inputFiles)
511       if (isa<BitcodeFile>(file)) {
512         warn("the effect of -export_dynamic on LTO is not yet implemented");
513         break;
514       }
515 
516   TimeTraceScope timeScope("LTO");
517   auto *lto = make<BitcodeCompiler>();
518   for (InputFile *file : inputFiles)
519     if (auto *bitcodeFile = dyn_cast<BitcodeFile>(file))
520       if (!file->lazy)
521         lto->add(*bitcodeFile);
522 
523   for (ObjFile *file : lto->compile())
524     inputFiles.insert(file);
525 }
526 
527 // Replaces common symbols with defined symbols residing in __common sections.
528 // This function must be called after all symbol names are resolved (i.e. after
529 // all InputFiles have been loaded.) As a result, later operations won't see
530 // any CommonSymbols.
531 static void replaceCommonSymbols() {
532   TimeTraceScope timeScope("Replace common symbols");
533   ConcatOutputSection *osec = nullptr;
534   for (Symbol *sym : symtab->getSymbols()) {
535     auto *common = dyn_cast<CommonSymbol>(sym);
536     if (common == nullptr)
537       continue;
538 
539     // Casting to size_t will truncate large values on 32-bit architectures,
540     // but it's not really worth supporting the linking of 64-bit programs on
541     // 32-bit archs.
542     ArrayRef<uint8_t> data = {nullptr, static_cast<size_t>(common->size)};
543     // FIXME avoid creating one Section per symbol?
544     auto *section =
545         make<Section>(common->getFile(), segment_names::data,
546                       section_names::common, S_ZEROFILL, /*addr=*/0);
547     auto *isec = make<ConcatInputSection>(*section, data, common->align);
548     if (!osec)
549       osec = ConcatOutputSection::getOrCreateForInput(isec);
550     isec->parent = osec;
551     inputSections.push_back(isec);
552 
553     // FIXME: CommonSymbol should store isReferencedDynamically, noDeadStrip
554     // and pass them on here.
555     replaceSymbol<Defined>(sym, sym->getName(), common->getFile(), isec,
556                            /*value=*/0,
557                            /*size=*/0,
558                            /*isWeakDef=*/false,
559                            /*isExternal=*/true, common->privateExtern,
560                            /*isThumb=*/false,
561                            /*isReferencedDynamically=*/false,
562                            /*noDeadStrip=*/false);
563   }
564 }
565 
566 static void initializeSectionRenameMap() {
567   if (config->dataConst) {
568     SmallVector<StringRef> v{section_names::got,
569                              section_names::authGot,
570                              section_names::authPtr,
571                              section_names::nonLazySymbolPtr,
572                              section_names::const_,
573                              section_names::cfString,
574                              section_names::moduleInitFunc,
575                              section_names::moduleTermFunc,
576                              section_names::objcClassList,
577                              section_names::objcNonLazyClassList,
578                              section_names::objcCatList,
579                              section_names::objcNonLazyCatList,
580                              section_names::objcProtoList,
581                              section_names::objcImageInfo};
582     for (StringRef s : v)
583       config->sectionRenameMap[{segment_names::data, s}] = {
584           segment_names::dataConst, s};
585   }
586   config->sectionRenameMap[{segment_names::text, section_names::staticInit}] = {
587       segment_names::text, section_names::text};
588   config->sectionRenameMap[{segment_names::import, section_names::pointers}] = {
589       config->dataConst ? segment_names::dataConst : segment_names::data,
590       section_names::nonLazySymbolPtr};
591 }
592 
593 static inline char toLowerDash(char x) {
594   if (x >= 'A' && x <= 'Z')
595     return x - 'A' + 'a';
596   else if (x == ' ')
597     return '-';
598   return x;
599 }
600 
601 static std::string lowerDash(StringRef s) {
602   return std::string(map_iterator(s.begin(), toLowerDash),
603                      map_iterator(s.end(), toLowerDash));
604 }
605 
606 // Has the side-effect of setting Config::platformInfo.
607 static PlatformType parsePlatformVersion(const ArgList &args) {
608   const Arg *arg = args.getLastArg(OPT_platform_version);
609   if (!arg) {
610     error("must specify -platform_version");
611     return PLATFORM_UNKNOWN;
612   }
613 
614   StringRef platformStr = arg->getValue(0);
615   StringRef minVersionStr = arg->getValue(1);
616   StringRef sdkVersionStr = arg->getValue(2);
617 
618   // TODO(compnerd) see if we can generate this case list via XMACROS
619   PlatformType platform =
620       StringSwitch<PlatformType>(lowerDash(platformStr))
621           .Cases("macos", "1", PLATFORM_MACOS)
622           .Cases("ios", "2", PLATFORM_IOS)
623           .Cases("tvos", "3", PLATFORM_TVOS)
624           .Cases("watchos", "4", PLATFORM_WATCHOS)
625           .Cases("bridgeos", "5", PLATFORM_BRIDGEOS)
626           .Cases("mac-catalyst", "6", PLATFORM_MACCATALYST)
627           .Cases("ios-simulator", "7", PLATFORM_IOSSIMULATOR)
628           .Cases("tvos-simulator", "8", PLATFORM_TVOSSIMULATOR)
629           .Cases("watchos-simulator", "9", PLATFORM_WATCHOSSIMULATOR)
630           .Cases("driverkit", "10", PLATFORM_DRIVERKIT)
631           .Default(PLATFORM_UNKNOWN);
632   if (platform == PLATFORM_UNKNOWN)
633     error(Twine("malformed platform: ") + platformStr);
634   // TODO: check validity of version strings, which varies by platform
635   // NOTE: ld64 accepts version strings with 5 components
636   // llvm::VersionTuple accepts no more than 4 components
637   // Has Apple ever published version strings with 5 components?
638   if (config->platformInfo.minimum.tryParse(minVersionStr))
639     error(Twine("malformed minimum version: ") + minVersionStr);
640   if (config->platformInfo.sdk.tryParse(sdkVersionStr))
641     error(Twine("malformed sdk version: ") + sdkVersionStr);
642   return platform;
643 }
644 
645 // Has the side-effect of setting Config::target.
646 static TargetInfo *createTargetInfo(InputArgList &args) {
647   StringRef archName = args.getLastArgValue(OPT_arch);
648   if (archName.empty()) {
649     error("must specify -arch");
650     return nullptr;
651   }
652 
653   PlatformType platform = parsePlatformVersion(args);
654   config->platformInfo.target =
655       MachO::Target(getArchitectureFromName(archName), platform);
656 
657   uint32_t cpuType;
658   uint32_t cpuSubtype;
659   std::tie(cpuType, cpuSubtype) = getCPUTypeFromArchitecture(config->arch());
660 
661   switch (cpuType) {
662   case CPU_TYPE_X86_64:
663     return createX86_64TargetInfo();
664   case CPU_TYPE_ARM64:
665     return createARM64TargetInfo();
666   case CPU_TYPE_ARM64_32:
667     return createARM64_32TargetInfo();
668   case CPU_TYPE_ARM:
669     return createARMTargetInfo(cpuSubtype);
670   default:
671     error("missing or unsupported -arch " + archName);
672     return nullptr;
673   }
674 }
675 
676 static UndefinedSymbolTreatment
677 getUndefinedSymbolTreatment(const ArgList &args) {
678   StringRef treatmentStr = args.getLastArgValue(OPT_undefined);
679   auto treatment =
680       StringSwitch<UndefinedSymbolTreatment>(treatmentStr)
681           .Cases("error", "", UndefinedSymbolTreatment::error)
682           .Case("warning", UndefinedSymbolTreatment::warning)
683           .Case("suppress", UndefinedSymbolTreatment::suppress)
684           .Case("dynamic_lookup", UndefinedSymbolTreatment::dynamic_lookup)
685           .Default(UndefinedSymbolTreatment::unknown);
686   if (treatment == UndefinedSymbolTreatment::unknown) {
687     warn(Twine("unknown -undefined TREATMENT '") + treatmentStr +
688          "', defaulting to 'error'");
689     treatment = UndefinedSymbolTreatment::error;
690   } else if (config->namespaceKind == NamespaceKind::twolevel &&
691              (treatment == UndefinedSymbolTreatment::warning ||
692               treatment == UndefinedSymbolTreatment::suppress)) {
693     if (treatment == UndefinedSymbolTreatment::warning)
694       error("'-undefined warning' only valid with '-flat_namespace'");
695     else
696       error("'-undefined suppress' only valid with '-flat_namespace'");
697     treatment = UndefinedSymbolTreatment::error;
698   }
699   return treatment;
700 }
701 
702 static ICFLevel getICFLevel(const ArgList &args) {
703   StringRef icfLevelStr = args.getLastArgValue(OPT_icf_eq);
704   auto icfLevel = StringSwitch<ICFLevel>(icfLevelStr)
705                       .Cases("none", "", ICFLevel::none)
706                       .Case("safe", ICFLevel::safe)
707                       .Case("all", ICFLevel::all)
708                       .Default(ICFLevel::unknown);
709   if (icfLevel == ICFLevel::unknown) {
710     warn(Twine("unknown --icf=OPTION `") + icfLevelStr +
711          "', defaulting to `none'");
712     icfLevel = ICFLevel::none;
713   } else if (icfLevel == ICFLevel::safe) {
714     warn(Twine("`--icf=safe' is not yet implemented, reverting to `none'"));
715     icfLevel = ICFLevel::none;
716   }
717   return icfLevel;
718 }
719 
720 static void warnIfDeprecatedOption(const Option &opt) {
721   if (!opt.getGroup().isValid())
722     return;
723   if (opt.getGroup().getID() == OPT_grp_deprecated) {
724     warn("Option `" + opt.getPrefixedName() + "' is deprecated in ld64:");
725     warn(opt.getHelpText());
726   }
727 }
728 
729 static void warnIfUnimplementedOption(const Option &opt) {
730   if (!opt.getGroup().isValid() || !opt.hasFlag(DriverFlag::HelpHidden))
731     return;
732   switch (opt.getGroup().getID()) {
733   case OPT_grp_deprecated:
734     // warn about deprecated options elsewhere
735     break;
736   case OPT_grp_undocumented:
737     warn("Option `" + opt.getPrefixedName() +
738          "' is undocumented. Should lld implement it?");
739     break;
740   case OPT_grp_obsolete:
741     warn("Option `" + opt.getPrefixedName() +
742          "' is obsolete. Please modernize your usage.");
743     break;
744   case OPT_grp_ignored:
745     warn("Option `" + opt.getPrefixedName() + "' is ignored.");
746     break;
747   case OPT_grp_ignored_silently:
748     break;
749   default:
750     warn("Option `" + opt.getPrefixedName() +
751          "' is not yet implemented. Stay tuned...");
752     break;
753   }
754 }
755 
756 static const char *getReproduceOption(InputArgList &args) {
757   if (const Arg *arg = args.getLastArg(OPT_reproduce))
758     return arg->getValue();
759   return getenv("LLD_REPRODUCE");
760 }
761 
762 static void parseClangOption(StringRef opt, const Twine &msg) {
763   std::string err;
764   raw_string_ostream os(err);
765 
766   const char *argv[] = {"lld", opt.data()};
767   if (cl::ParseCommandLineOptions(2, argv, "", &os))
768     return;
769   os.flush();
770   error(msg + ": " + StringRef(err).trim());
771 }
772 
773 static uint32_t parseDylibVersion(const ArgList &args, unsigned id) {
774   const Arg *arg = args.getLastArg(id);
775   if (!arg)
776     return 0;
777 
778   if (config->outputType != MH_DYLIB) {
779     error(arg->getAsString(args) + ": only valid with -dylib");
780     return 0;
781   }
782 
783   PackedVersion version;
784   if (!version.parse32(arg->getValue())) {
785     error(arg->getAsString(args) + ": malformed version");
786     return 0;
787   }
788 
789   return version.rawValue();
790 }
791 
792 static uint32_t parseProtection(StringRef protStr) {
793   uint32_t prot = 0;
794   for (char c : protStr) {
795     switch (c) {
796     case 'r':
797       prot |= VM_PROT_READ;
798       break;
799     case 'w':
800       prot |= VM_PROT_WRITE;
801       break;
802     case 'x':
803       prot |= VM_PROT_EXECUTE;
804       break;
805     case '-':
806       break;
807     default:
808       error("unknown -segprot letter '" + Twine(c) + "' in " + protStr);
809       return 0;
810     }
811   }
812   return prot;
813 }
814 
815 static std::vector<SectionAlign> parseSectAlign(const opt::InputArgList &args) {
816   std::vector<SectionAlign> sectAligns;
817   for (const Arg *arg : args.filtered(OPT_sectalign)) {
818     StringRef segName = arg->getValue(0);
819     StringRef sectName = arg->getValue(1);
820     StringRef alignStr = arg->getValue(2);
821     if (alignStr.startswith("0x") || alignStr.startswith("0X"))
822       alignStr = alignStr.drop_front(2);
823     uint32_t align;
824     if (alignStr.getAsInteger(16, align)) {
825       error("-sectalign: failed to parse '" + StringRef(arg->getValue(2)) +
826             "' as number");
827       continue;
828     }
829     if (!isPowerOf2_32(align)) {
830       error("-sectalign: '" + StringRef(arg->getValue(2)) +
831             "' (in base 16) not a power of two");
832       continue;
833     }
834     sectAligns.push_back({segName, sectName, align});
835   }
836   return sectAligns;
837 }
838 
839 PlatformType macho::removeSimulator(PlatformType platform) {
840   switch (platform) {
841   case PLATFORM_IOSSIMULATOR:
842     return PLATFORM_IOS;
843   case PLATFORM_TVOSSIMULATOR:
844     return PLATFORM_TVOS;
845   case PLATFORM_WATCHOSSIMULATOR:
846     return PLATFORM_WATCHOS;
847   default:
848     return platform;
849   }
850 }
851 
852 static bool dataConstDefault(const InputArgList &args) {
853   static const std::vector<std::pair<PlatformType, VersionTuple>> minVersion = {
854       {PLATFORM_MACOS, VersionTuple(10, 15)},
855       {PLATFORM_IOS, VersionTuple(13, 0)},
856       {PLATFORM_TVOS, VersionTuple(13, 0)},
857       {PLATFORM_WATCHOS, VersionTuple(6, 0)},
858       {PLATFORM_BRIDGEOS, VersionTuple(4, 0)}};
859   PlatformType platform = removeSimulator(config->platformInfo.target.Platform);
860   auto it = llvm::find_if(minVersion,
861                           [&](const auto &p) { return p.first == platform; });
862   if (it != minVersion.end())
863     if (config->platformInfo.minimum < it->second)
864       return false;
865 
866   switch (config->outputType) {
867   case MH_EXECUTE:
868     return !args.hasArg(OPT_no_pie);
869   case MH_BUNDLE:
870     // FIXME: return false when -final_name ...
871     // has prefix "/System/Library/UserEventPlugins/"
872     // or matches "/usr/libexec/locationd" "/usr/libexec/terminusd"
873     return true;
874   case MH_DYLIB:
875     return true;
876   case MH_OBJECT:
877     return false;
878   default:
879     llvm_unreachable(
880         "unsupported output type for determining data-const default");
881   }
882   return false;
883 }
884 
885 void SymbolPatterns::clear() {
886   literals.clear();
887   globs.clear();
888 }
889 
890 void SymbolPatterns::insert(StringRef symbolName) {
891   if (symbolName.find_first_of("*?[]") == StringRef::npos)
892     literals.insert(CachedHashStringRef(symbolName));
893   else if (Expected<GlobPattern> pattern = GlobPattern::create(symbolName))
894     globs.emplace_back(*pattern);
895   else
896     error("invalid symbol-name pattern: " + symbolName);
897 }
898 
899 bool SymbolPatterns::matchLiteral(StringRef symbolName) const {
900   return literals.contains(CachedHashStringRef(symbolName));
901 }
902 
903 bool SymbolPatterns::matchGlob(StringRef symbolName) const {
904   for (const GlobPattern &glob : globs)
905     if (glob.match(symbolName))
906       return true;
907   return false;
908 }
909 
910 bool SymbolPatterns::match(StringRef symbolName) const {
911   return matchLiteral(symbolName) || matchGlob(symbolName);
912 }
913 
914 static void handleSymbolPatterns(InputArgList &args,
915                                  SymbolPatterns &symbolPatterns,
916                                  unsigned singleOptionCode,
917                                  unsigned listFileOptionCode) {
918   for (const Arg *arg : args.filtered(singleOptionCode))
919     symbolPatterns.insert(arg->getValue());
920   for (const Arg *arg : args.filtered(listFileOptionCode)) {
921     StringRef path = arg->getValue();
922     Optional<MemoryBufferRef> buffer = readFile(path);
923     if (!buffer) {
924       error("Could not read symbol file: " + path);
925       continue;
926     }
927     MemoryBufferRef mbref = *buffer;
928     for (StringRef line : args::getLines(mbref)) {
929       line = line.take_until([](char c) { return c == '#'; }).trim();
930       if (!line.empty())
931         symbolPatterns.insert(line);
932     }
933   }
934 }
935 
936 static void createFiles(const InputArgList &args) {
937   TimeTraceScope timeScope("Load input files");
938   // This loop should be reserved for options whose exact ordering matters.
939   // Other options should be handled via filtered() and/or getLastArg().
940   bool isLazy = false;
941   for (const Arg *arg : args) {
942     const Option &opt = arg->getOption();
943     warnIfDeprecatedOption(opt);
944     warnIfUnimplementedOption(opt);
945 
946     switch (opt.getID()) {
947     case OPT_INPUT:
948       addFile(rerootPath(arg->getValue()), ForceLoad::Default, isLazy);
949       break;
950     case OPT_needed_library:
951       if (auto *dylibFile = dyn_cast_or_null<DylibFile>(
952               addFile(rerootPath(arg->getValue()), ForceLoad::Default)))
953         dylibFile->forceNeeded = true;
954       break;
955     case OPT_reexport_library:
956       if (auto *dylibFile = dyn_cast_or_null<DylibFile>(
957               addFile(rerootPath(arg->getValue()), ForceLoad::Default))) {
958         config->hasReexports = true;
959         dylibFile->reexport = true;
960       }
961       break;
962     case OPT_weak_library:
963       if (auto *dylibFile = dyn_cast_or_null<DylibFile>(
964               addFile(rerootPath(arg->getValue()), ForceLoad::Default)))
965         dylibFile->forceWeakImport = true;
966       break;
967     case OPT_filelist:
968       addFileList(arg->getValue(), isLazy);
969       break;
970     case OPT_force_load:
971       addFile(rerootPath(arg->getValue()), ForceLoad::Yes);
972       break;
973     case OPT_l:
974     case OPT_needed_l:
975     case OPT_reexport_l:
976     case OPT_weak_l:
977       addLibrary(arg->getValue(), opt.getID() == OPT_needed_l,
978                  opt.getID() == OPT_weak_l, opt.getID() == OPT_reexport_l,
979                  /*isExplicit=*/true, ForceLoad::Default);
980       break;
981     case OPT_framework:
982     case OPT_needed_framework:
983     case OPT_reexport_framework:
984     case OPT_weak_framework:
985       addFramework(arg->getValue(), opt.getID() == OPT_needed_framework,
986                    opt.getID() == OPT_weak_framework,
987                    opt.getID() == OPT_reexport_framework, /*isExplicit=*/true,
988                    ForceLoad::Default);
989       break;
990     case OPT_start_lib:
991       if (isLazy)
992         error("nested --start-lib");
993       isLazy = true;
994       break;
995     case OPT_end_lib:
996       if (!isLazy)
997         error("stray --end-lib");
998       isLazy = false;
999       break;
1000     default:
1001       break;
1002     }
1003   }
1004 }
1005 
1006 static void gatherInputSections() {
1007   TimeTraceScope timeScope("Gathering input sections");
1008   int inputOrder = 0;
1009   for (const InputFile *file : inputFiles) {
1010     for (const Section *section : file->sections) {
1011       const Subsections &subsections = section->subsections;
1012       if (subsections.empty())
1013         continue;
1014       if (subsections[0].isec->getName() == section_names::compactUnwind)
1015         // Compact unwind entries require special handling elsewhere.
1016         continue;
1017       ConcatOutputSection *osec = nullptr;
1018       for (const Subsection &subsection : subsections) {
1019         if (auto *isec = dyn_cast<ConcatInputSection>(subsection.isec)) {
1020           if (isec->isCoalescedWeak())
1021             continue;
1022           isec->outSecOff = inputOrder++;
1023           if (!osec)
1024             osec = ConcatOutputSection::getOrCreateForInput(isec);
1025           isec->parent = osec;
1026           inputSections.push_back(isec);
1027         } else if (auto *isec =
1028                        dyn_cast<CStringInputSection>(subsection.isec)) {
1029           if (in.cStringSection->inputOrder == UnspecifiedInputOrder)
1030             in.cStringSection->inputOrder = inputOrder++;
1031           in.cStringSection->addInput(isec);
1032         } else if (auto *isec =
1033                        dyn_cast<WordLiteralInputSection>(subsection.isec)) {
1034           if (in.wordLiteralSection->inputOrder == UnspecifiedInputOrder)
1035             in.wordLiteralSection->inputOrder = inputOrder++;
1036           in.wordLiteralSection->addInput(isec);
1037         } else {
1038           llvm_unreachable("unexpected input section kind");
1039         }
1040       }
1041     }
1042   }
1043   assert(inputOrder <= UnspecifiedInputOrder);
1044 }
1045 
1046 static void foldIdenticalLiterals() {
1047   // We always create a cStringSection, regardless of whether dedupLiterals is
1048   // true. If it isn't, we simply create a non-deduplicating CStringSection.
1049   // Either way, we must unconditionally finalize it here.
1050   in.cStringSection->finalizeContents();
1051   if (in.wordLiteralSection)
1052     in.wordLiteralSection->finalizeContents();
1053 }
1054 
1055 static void referenceStubBinder() {
1056   bool needsStubHelper = config->outputType == MH_DYLIB ||
1057                          config->outputType == MH_EXECUTE ||
1058                          config->outputType == MH_BUNDLE;
1059   if (!needsStubHelper || !symtab->find("dyld_stub_binder"))
1060     return;
1061 
1062   // dyld_stub_binder is used by dyld to resolve lazy bindings. This code here
1063   // adds a opportunistic reference to dyld_stub_binder if it happens to exist.
1064   // dyld_stub_binder is in libSystem.dylib, which is usually linked in. This
1065   // isn't needed for correctness, but the presence of that symbol suppresses
1066   // "no symbols" diagnostics from `nm`.
1067   // StubHelperSection::setup() adds a reference and errors out if
1068   // dyld_stub_binder doesn't exist in case it is actually needed.
1069   symtab->addUndefined("dyld_stub_binder", /*file=*/nullptr, /*isWeak=*/false);
1070 }
1071 
1072 bool macho::link(ArrayRef<const char *> argsArr, llvm::raw_ostream &stdoutOS,
1073                  llvm::raw_ostream &stderrOS, bool exitEarly,
1074                  bool disableOutput) {
1075   // This driver-specific context will be freed later by lldMain().
1076   auto *ctx = new CommonLinkerContext;
1077 
1078   ctx->e.initialize(stdoutOS, stderrOS, exitEarly, disableOutput);
1079   ctx->e.cleanupCallback = []() {
1080     resolvedFrameworks.clear();
1081     resolvedLibraries.clear();
1082     cachedReads.clear();
1083     concatOutputSections.clear();
1084     inputFiles.clear();
1085     inputSections.clear();
1086     loadedArchives.clear();
1087     loadedObjectFrameworks.clear();
1088     syntheticSections.clear();
1089     thunkMap.clear();
1090 
1091     firstTLVDataSection = nullptr;
1092     tar = nullptr;
1093     memset(&in, 0, sizeof(in));
1094 
1095     resetLoadedDylibs();
1096     resetOutputSegments();
1097     resetWriter();
1098     InputFile::resetIdCount();
1099   };
1100 
1101   ctx->e.logName = args::getFilenameWithoutExe(argsArr[0]);
1102 
1103   MachOOptTable parser;
1104   InputArgList args = parser.parse(argsArr.slice(1));
1105 
1106   ctx->e.errorLimitExceededMsg = "too many errors emitted, stopping now "
1107                                  "(use --error-limit=0 to see all errors)";
1108   ctx->e.errorLimit = args::getInteger(args, OPT_error_limit_eq, 20);
1109   ctx->e.verbose = args.hasArg(OPT_verbose);
1110 
1111   if (args.hasArg(OPT_help_hidden)) {
1112     parser.printHelp(argsArr[0], /*showHidden=*/true);
1113     return true;
1114   }
1115   if (args.hasArg(OPT_help)) {
1116     parser.printHelp(argsArr[0], /*showHidden=*/false);
1117     return true;
1118   }
1119   if (args.hasArg(OPT_version)) {
1120     message(getLLDVersion());
1121     return true;
1122   }
1123 
1124   config = std::make_unique<Configuration>();
1125   symtab = std::make_unique<SymbolTable>();
1126   target = createTargetInfo(args);
1127   depTracker = std::make_unique<DependencyTracker>(
1128       args.getLastArgValue(OPT_dependency_info));
1129   if (errorCount())
1130     return false;
1131 
1132   if (args.hasArg(OPT_pagezero_size)) {
1133     uint64_t pagezeroSize = args::getHex(args, OPT_pagezero_size, 0);
1134 
1135     // ld64 does something really weird. It attempts to realign the value to the
1136     // page size, but assumes the the page size is 4K. This doesn't work with
1137     // most of Apple's ARM64 devices, which use a page size of 16K. This means
1138     // that it will first 4K align it by rounding down, then round up to 16K.
1139     // This probably only happened because no one using this arg with anything
1140     // other then 0, so no one checked if it did what is what it says it does.
1141 
1142     // So we are not copying this weird behavior and doing the it in a logical
1143     // way, by always rounding down to page size.
1144     if (!isAligned(Align(target->getPageSize()), pagezeroSize)) {
1145       pagezeroSize -= pagezeroSize % target->getPageSize();
1146       warn("__PAGEZERO size is not page aligned, rounding down to 0x" +
1147            Twine::utohexstr(pagezeroSize));
1148     }
1149 
1150     target->pageZeroSize = pagezeroSize;
1151   }
1152 
1153   config->osoPrefix = args.getLastArgValue(OPT_oso_prefix);
1154   if (!config->osoPrefix.empty()) {
1155     // Expand special characters, such as ".", "..", or  "~", if present.
1156     // Note: LD64 only expands "." and not other special characters.
1157     // That seems silly to imitate so we will not try to follow it, but rather
1158     // just use real_path() to do it.
1159 
1160     // The max path length is 4096, in theory. However that seems quite long
1161     // and seems unlikely that any one would want to strip everything from the
1162     // path. Hence we've picked a reasonably large number here.
1163     SmallString<1024> expanded;
1164     if (!fs::real_path(config->osoPrefix, expanded,
1165                        /*expand_tilde=*/true)) {
1166       // Note: LD64 expands "." to be `<current_dir>/`
1167       // (ie., it has a slash suffix) whereas real_path() doesn't.
1168       // So we have to append '/' to be consistent.
1169       StringRef sep = sys::path::get_separator();
1170       // real_path removes trailing slashes as part of the normalization, but
1171       // these are meaningful for our text based stripping
1172       if (config->osoPrefix.equals(".") || config->osoPrefix.endswith(sep))
1173         expanded += sep;
1174       config->osoPrefix = saver().save(expanded.str());
1175     }
1176   }
1177 
1178   // Must be set before any InputSections and Symbols are created.
1179   config->deadStrip = args.hasArg(OPT_dead_strip);
1180 
1181   config->systemLibraryRoots = getSystemLibraryRoots(args);
1182   if (const char *path = getReproduceOption(args)) {
1183     // Note that --reproduce is a debug option so you can ignore it
1184     // if you are trying to understand the whole picture of the code.
1185     Expected<std::unique_ptr<TarWriter>> errOrWriter =
1186         TarWriter::create(path, path::stem(path));
1187     if (errOrWriter) {
1188       tar = std::move(*errOrWriter);
1189       tar->append("response.txt", createResponseFile(args));
1190       tar->append("version.txt", getLLDVersion() + "\n");
1191     } else {
1192       error("--reproduce: " + toString(errOrWriter.takeError()));
1193     }
1194   }
1195 
1196   if (auto *arg = args.getLastArg(OPT_threads_eq)) {
1197     StringRef v(arg->getValue());
1198     unsigned threads = 0;
1199     if (!llvm::to_integer(v, threads, 0) || threads == 0)
1200       error(arg->getSpelling() + ": expected a positive integer, but got '" +
1201             arg->getValue() + "'");
1202     parallel::strategy = hardware_concurrency(threads);
1203     config->thinLTOJobs = v;
1204   }
1205   if (auto *arg = args.getLastArg(OPT_thinlto_jobs_eq))
1206     config->thinLTOJobs = arg->getValue();
1207   if (!get_threadpool_strategy(config->thinLTOJobs))
1208     error("--thinlto-jobs: invalid job count: " + config->thinLTOJobs);
1209 
1210   for (const Arg *arg : args.filtered(OPT_u)) {
1211     config->explicitUndefineds.push_back(symtab->addUndefined(
1212         arg->getValue(), /*file=*/nullptr, /*isWeakRef=*/false));
1213   }
1214 
1215   for (const Arg *arg : args.filtered(OPT_U))
1216     config->explicitDynamicLookups.insert(arg->getValue());
1217 
1218   config->mapFile = args.getLastArgValue(OPT_map);
1219   config->optimize = args::getInteger(args, OPT_O, 1);
1220   config->outputFile = args.getLastArgValue(OPT_o, "a.out");
1221   config->finalOutput =
1222       args.getLastArgValue(OPT_final_output, config->outputFile);
1223   config->astPaths = args.getAllArgValues(OPT_add_ast_path);
1224   config->headerPad = args::getHex(args, OPT_headerpad, /*Default=*/32);
1225   config->headerPadMaxInstallNames =
1226       args.hasArg(OPT_headerpad_max_install_names);
1227   config->printDylibSearch =
1228       args.hasArg(OPT_print_dylib_search) || getenv("RC_TRACE_DYLIB_SEARCHING");
1229   config->printEachFile = args.hasArg(OPT_t);
1230   config->printWhyLoad = args.hasArg(OPT_why_load);
1231   config->omitDebugInfo = args.hasArg(OPT_S);
1232   config->outputType = getOutputType(args);
1233   config->errorForArchMismatch = args.hasArg(OPT_arch_errors_fatal);
1234   if (const Arg *arg = args.getLastArg(OPT_bundle_loader)) {
1235     if (config->outputType != MH_BUNDLE)
1236       error("-bundle_loader can only be used with MachO bundle output");
1237     addFile(arg->getValue(), ForceLoad::Default, /*isLazy=*/false,
1238             /*isExplicit=*/false,
1239             /*isBundleLoader=*/true);
1240   }
1241   if (const Arg *arg = args.getLastArg(OPT_umbrella)) {
1242     if (config->outputType != MH_DYLIB)
1243       warn("-umbrella used, but not creating dylib");
1244     config->umbrella = arg->getValue();
1245   }
1246   config->ltoObjPath = args.getLastArgValue(OPT_object_path_lto);
1247   config->ltoNewPassManager =
1248       args.hasFlag(OPT_no_lto_legacy_pass_manager, OPT_lto_legacy_pass_manager,
1249                    LLVM_ENABLE_NEW_PASS_MANAGER);
1250   config->ltoo = args::getInteger(args, OPT_lto_O, 2);
1251   if (config->ltoo > 3)
1252     error("--lto-O: invalid optimization level: " + Twine(config->ltoo));
1253   config->thinLTOCacheDir = args.getLastArgValue(OPT_cache_path_lto);
1254   config->thinLTOCachePolicy = getLTOCachePolicy(args);
1255   config->runtimePaths = args::getStrings(args, OPT_rpath);
1256   config->allLoad = args.hasFlag(OPT_all_load, OPT_noall_load, false);
1257   config->archMultiple = args.hasArg(OPT_arch_multiple);
1258   config->applicationExtension = args.hasFlag(
1259       OPT_application_extension, OPT_no_application_extension, false);
1260   config->exportDynamic = args.hasArg(OPT_export_dynamic);
1261   config->forceLoadObjC = args.hasArg(OPT_ObjC);
1262   config->forceLoadSwift = args.hasArg(OPT_force_load_swift_libs);
1263   config->deadStripDylibs = args.hasArg(OPT_dead_strip_dylibs);
1264   config->demangle = args.hasArg(OPT_demangle);
1265   config->implicitDylibs = !args.hasArg(OPT_no_implicit_dylibs);
1266   config->emitFunctionStarts =
1267       args.hasFlag(OPT_function_starts, OPT_no_function_starts, true);
1268   config->emitBitcodeBundle = args.hasArg(OPT_bitcode_bundle);
1269   config->emitDataInCodeInfo =
1270       args.hasFlag(OPT_data_in_code_info, OPT_no_data_in_code_info, true);
1271   config->icfLevel = getICFLevel(args);
1272   config->dedupLiterals =
1273       args.hasFlag(OPT_deduplicate_literals, OPT_icf_eq, false) ||
1274       config->icfLevel != ICFLevel::none;
1275   config->warnDylibInstallName = args.hasFlag(
1276       OPT_warn_dylib_install_name, OPT_no_warn_dylib_install_name, false);
1277   config->callGraphProfileSort = args.hasFlag(
1278       OPT_call_graph_profile_sort, OPT_no_call_graph_profile_sort, true);
1279   config->printSymbolOrder = args.getLastArgValue(OPT_print_symbol_order);
1280 
1281   // FIXME: Add a commandline flag for this too.
1282   config->zeroModTime = getenv("ZERO_AR_DATE");
1283 
1284   std::array<PlatformType, 3> encryptablePlatforms{
1285       PLATFORM_IOS, PLATFORM_WATCHOS, PLATFORM_TVOS};
1286   config->emitEncryptionInfo =
1287       args.hasFlag(OPT_encryptable, OPT_no_encryption,
1288                    is_contained(encryptablePlatforms, config->platform()));
1289 
1290 #ifndef LLVM_HAVE_LIBXAR
1291   if (config->emitBitcodeBundle)
1292     error("-bitcode_bundle unsupported because LLD wasn't built with libxar");
1293 #endif
1294 
1295   if (const Arg *arg = args.getLastArg(OPT_install_name)) {
1296     if (config->warnDylibInstallName && config->outputType != MH_DYLIB)
1297       warn(
1298           arg->getAsString(args) +
1299           ": ignored, only has effect with -dylib [--warn-dylib-install-name]");
1300     else
1301       config->installName = arg->getValue();
1302   } else if (config->outputType == MH_DYLIB) {
1303     config->installName = config->finalOutput;
1304   }
1305 
1306   if (args.hasArg(OPT_mark_dead_strippable_dylib)) {
1307     if (config->outputType != MH_DYLIB)
1308       warn("-mark_dead_strippable_dylib: ignored, only has effect with -dylib");
1309     else
1310       config->markDeadStrippableDylib = true;
1311   }
1312 
1313   if (const Arg *arg = args.getLastArg(OPT_static, OPT_dynamic))
1314     config->staticLink = (arg->getOption().getID() == OPT_static);
1315 
1316   if (const Arg *arg =
1317           args.getLastArg(OPT_flat_namespace, OPT_twolevel_namespace))
1318     config->namespaceKind = arg->getOption().getID() == OPT_twolevel_namespace
1319                                 ? NamespaceKind::twolevel
1320                                 : NamespaceKind::flat;
1321 
1322   config->undefinedSymbolTreatment = getUndefinedSymbolTreatment(args);
1323 
1324   if (config->outputType == MH_EXECUTE)
1325     config->entry = symtab->addUndefined(args.getLastArgValue(OPT_e, "_main"),
1326                                          /*file=*/nullptr,
1327                                          /*isWeakRef=*/false);
1328 
1329   config->librarySearchPaths =
1330       getLibrarySearchPaths(args, config->systemLibraryRoots);
1331   config->frameworkSearchPaths =
1332       getFrameworkSearchPaths(args, config->systemLibraryRoots);
1333   if (const Arg *arg =
1334           args.getLastArg(OPT_search_paths_first, OPT_search_dylibs_first))
1335     config->searchDylibsFirst =
1336         arg->getOption().getID() == OPT_search_dylibs_first;
1337 
1338   config->dylibCompatibilityVersion =
1339       parseDylibVersion(args, OPT_compatibility_version);
1340   config->dylibCurrentVersion = parseDylibVersion(args, OPT_current_version);
1341 
1342   config->dataConst =
1343       args.hasFlag(OPT_data_const, OPT_no_data_const, dataConstDefault(args));
1344   // Populate config->sectionRenameMap with builtin default renames.
1345   // Options -rename_section and -rename_segment are able to override.
1346   initializeSectionRenameMap();
1347   // Reject every special character except '.' and '$'
1348   // TODO(gkm): verify that this is the proper set of invalid chars
1349   StringRef invalidNameChars("!\"#%&'()*+,-/:;<=>?@[\\]^`{|}~");
1350   auto validName = [invalidNameChars](StringRef s) {
1351     if (s.find_first_of(invalidNameChars) != StringRef::npos)
1352       error("invalid name for segment or section: " + s);
1353     return s;
1354   };
1355   for (const Arg *arg : args.filtered(OPT_rename_section)) {
1356     config->sectionRenameMap[{validName(arg->getValue(0)),
1357                               validName(arg->getValue(1))}] = {
1358         validName(arg->getValue(2)), validName(arg->getValue(3))};
1359   }
1360   for (const Arg *arg : args.filtered(OPT_rename_segment)) {
1361     config->segmentRenameMap[validName(arg->getValue(0))] =
1362         validName(arg->getValue(1));
1363   }
1364 
1365   config->sectionAlignments = parseSectAlign(args);
1366 
1367   for (const Arg *arg : args.filtered(OPT_segprot)) {
1368     StringRef segName = arg->getValue(0);
1369     uint32_t maxProt = parseProtection(arg->getValue(1));
1370     uint32_t initProt = parseProtection(arg->getValue(2));
1371     if (maxProt != initProt && config->arch() != AK_i386)
1372       error("invalid argument '" + arg->getAsString(args) +
1373             "': max and init must be the same for non-i386 archs");
1374     if (segName == segment_names::linkEdit)
1375       error("-segprot cannot be used to change __LINKEDIT's protections");
1376     config->segmentProtections.push_back({segName, maxProt, initProt});
1377   }
1378 
1379   handleSymbolPatterns(args, config->exportedSymbols, OPT_exported_symbol,
1380                        OPT_exported_symbols_list);
1381   handleSymbolPatterns(args, config->unexportedSymbols, OPT_unexported_symbol,
1382                        OPT_unexported_symbols_list);
1383   if (!config->exportedSymbols.empty() && !config->unexportedSymbols.empty()) {
1384     error("cannot use both -exported_symbol* and -unexported_symbol* options\n"
1385           ">>> ignoring unexports");
1386     config->unexportedSymbols.clear();
1387   }
1388   // Explicitly-exported literal symbols must be defined, but might
1389   // languish in an archive if unreferenced elsewhere. Light a fire
1390   // under those lazy symbols!
1391   for (const CachedHashStringRef &cachedName : config->exportedSymbols.literals)
1392     symtab->addUndefined(cachedName.val(), /*file=*/nullptr,
1393                          /*isWeakRef=*/false);
1394 
1395   config->saveTemps = args.hasArg(OPT_save_temps);
1396 
1397   config->adhocCodesign = args.hasFlag(
1398       OPT_adhoc_codesign, OPT_no_adhoc_codesign,
1399       (config->arch() == AK_arm64 || config->arch() == AK_arm64e) &&
1400           config->platform() == PLATFORM_MACOS);
1401 
1402   if (args.hasArg(OPT_v)) {
1403     message(getLLDVersion(), lld::errs());
1404     message(StringRef("Library search paths:") +
1405                 (config->librarySearchPaths.empty()
1406                      ? ""
1407                      : "\n\t" + join(config->librarySearchPaths, "\n\t")),
1408             lld::errs());
1409     message(StringRef("Framework search paths:") +
1410                 (config->frameworkSearchPaths.empty()
1411                      ? ""
1412                      : "\n\t" + join(config->frameworkSearchPaths, "\n\t")),
1413             lld::errs());
1414   }
1415 
1416   config->progName = argsArr[0];
1417 
1418   config->timeTraceEnabled = args.hasArg(
1419       OPT_time_trace, OPT_time_trace_granularity_eq, OPT_time_trace_file_eq);
1420   config->timeTraceGranularity =
1421       args::getInteger(args, OPT_time_trace_granularity_eq, 500);
1422 
1423   // Initialize time trace profiler.
1424   if (config->timeTraceEnabled)
1425     timeTraceProfilerInitialize(config->timeTraceGranularity, config->progName);
1426 
1427   {
1428     TimeTraceScope timeScope("ExecuteLinker");
1429 
1430     initLLVM(); // must be run before any call to addFile()
1431     createFiles(args);
1432 
1433     config->isPic = config->outputType == MH_DYLIB ||
1434                     config->outputType == MH_BUNDLE ||
1435                     (config->outputType == MH_EXECUTE &&
1436                      args.hasFlag(OPT_pie, OPT_no_pie, true));
1437 
1438     // Now that all dylibs have been loaded, search for those that should be
1439     // re-exported.
1440     {
1441       auto reexportHandler = [](const Arg *arg,
1442                                 const std::vector<StringRef> &extensions) {
1443         config->hasReexports = true;
1444         StringRef searchName = arg->getValue();
1445         if (!markReexport(searchName, extensions))
1446           error(arg->getSpelling() + " " + searchName +
1447                 " does not match a supplied dylib");
1448       };
1449       std::vector<StringRef> extensions = {".tbd"};
1450       for (const Arg *arg : args.filtered(OPT_sub_umbrella))
1451         reexportHandler(arg, extensions);
1452 
1453       extensions.push_back(".dylib");
1454       for (const Arg *arg : args.filtered(OPT_sub_library))
1455         reexportHandler(arg, extensions);
1456     }
1457 
1458     cl::ResetAllOptionOccurrences();
1459 
1460     // Parse LTO options.
1461     if (const Arg *arg = args.getLastArg(OPT_mcpu))
1462       parseClangOption(saver().save("-mcpu=" + StringRef(arg->getValue())),
1463                        arg->getSpelling());
1464 
1465     for (const Arg *arg : args.filtered(OPT_mllvm))
1466       parseClangOption(arg->getValue(), arg->getSpelling());
1467 
1468     compileBitcodeFiles();
1469     replaceCommonSymbols();
1470 
1471     StringRef orderFile = args.getLastArgValue(OPT_order_file);
1472     if (!orderFile.empty()) {
1473       parseOrderFile(orderFile);
1474       config->callGraphProfileSort = false;
1475     }
1476 
1477     referenceStubBinder();
1478 
1479     // FIXME: should terminate the link early based on errors encountered so
1480     // far?
1481 
1482     createSyntheticSections();
1483     createSyntheticSymbols();
1484 
1485     if (!config->exportedSymbols.empty()) {
1486       parallelForEach(symtab->getSymbols(), [](Symbol *sym) {
1487         if (auto *defined = dyn_cast<Defined>(sym)) {
1488           StringRef symbolName = defined->getName();
1489           if (config->exportedSymbols.match(symbolName)) {
1490             if (defined->privateExtern) {
1491               if (defined->weakDefCanBeHidden) {
1492                 // weak_def_can_be_hidden symbols behave similarly to
1493                 // private_extern symbols in most cases, except for when
1494                 // it is explicitly exported.
1495                 // The former can be exported but the latter cannot.
1496                 defined->privateExtern = false;
1497               } else {
1498                 warn("cannot export hidden symbol " + symbolName +
1499                      "\n>>> defined in " + toString(defined->getFile()));
1500               }
1501             }
1502           } else {
1503             defined->privateExtern = true;
1504           }
1505         }
1506       });
1507     } else if (!config->unexportedSymbols.empty()) {
1508       parallelForEach(symtab->getSymbols(), [](Symbol *sym) {
1509         if (auto *defined = dyn_cast<Defined>(sym))
1510           if (config->unexportedSymbols.match(defined->getName()))
1511             defined->privateExtern = true;
1512       });
1513     }
1514 
1515     for (const Arg *arg : args.filtered(OPT_sectcreate)) {
1516       StringRef segName = arg->getValue(0);
1517       StringRef sectName = arg->getValue(1);
1518       StringRef fileName = arg->getValue(2);
1519       Optional<MemoryBufferRef> buffer = readFile(fileName);
1520       if (buffer)
1521         inputFiles.insert(make<OpaqueFile>(*buffer, segName, sectName));
1522     }
1523 
1524     for (const Arg *arg : args.filtered(OPT_add_empty_section)) {
1525       StringRef segName = arg->getValue(0);
1526       StringRef sectName = arg->getValue(1);
1527       inputFiles.insert(make<OpaqueFile>(MemoryBufferRef(), segName, sectName));
1528     }
1529 
1530     gatherInputSections();
1531     if (config->callGraphProfileSort)
1532       extractCallGraphProfile();
1533 
1534     if (config->deadStrip)
1535       markLive();
1536 
1537     // ICF assumes that all literals have been folded already, so we must run
1538     // foldIdenticalLiterals before foldIdenticalSections.
1539     foldIdenticalLiterals();
1540     if (config->icfLevel != ICFLevel::none)
1541       foldIdenticalSections();
1542 
1543     // Write to an output file.
1544     if (target->wordSize == 8)
1545       writeResult<LP64>();
1546     else
1547       writeResult<ILP32>();
1548 
1549     depTracker->write(getLLDVersion(), inputFiles, config->outputFile);
1550   }
1551 
1552   if (config->timeTraceEnabled) {
1553     checkError(timeTraceProfilerWrite(
1554         args.getLastArgValue(OPT_time_trace_file_eq).str(),
1555         config->outputFile));
1556 
1557     timeTraceProfilerCleanup();
1558   }
1559   return errorCount() == 0;
1560 }
1561