1 //===-- llvm-libtool-darwin.cpp - a tool for creating libraries -----------===//
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 // A utility for creating static and dynamic libraries for Darwin.
10 //
11 //===----------------------------------------------------------------------===//
12 
13 #include "llvm/BinaryFormat/Magic.h"
14 #include "llvm/IR/LLVMContext.h"
15 #include "llvm/Object/ArchiveWriter.h"
16 #include "llvm/Object/IRObjectFile.h"
17 #include "llvm/Object/MachO.h"
18 #include "llvm/Object/MachOUniversal.h"
19 #include "llvm/Object/MachOUniversalWriter.h"
20 #include "llvm/Object/ObjectFile.h"
21 #include "llvm/Support/CommandLine.h"
22 #include "llvm/Support/InitLLVM.h"
23 #include "llvm/Support/LineIterator.h"
24 #include "llvm/Support/TargetSelect.h"
25 #include "llvm/Support/VirtualFileSystem.h"
26 #include "llvm/Support/WithColor.h"
27 #include "llvm/Support/raw_ostream.h"
28 #include "llvm/TextAPI/Architecture.h"
29 #include <map>
30 #include <type_traits>
31 
32 using namespace llvm;
33 using namespace llvm::object;
34 
35 static LLVMContext LLVMCtx;
36 
37 class NewArchiveMemberList;
38 typedef std::map<uint64_t, NewArchiveMemberList> MembersPerArchitectureMap;
39 
40 cl::OptionCategory LibtoolCategory("llvm-libtool-darwin Options");
41 
42 static cl::opt<std::string> OutputFile("o", cl::desc("Specify output filename"),
43                                        cl::value_desc("filename"),
44                                        cl::cat(LibtoolCategory));
45 
46 static cl::list<std::string> InputFiles(cl::Positional,
47                                         cl::desc("<input files>"),
48                                         cl::ZeroOrMore,
49                                         cl::cat(LibtoolCategory));
50 
51 static cl::opt<std::string> ArchType(
52     "arch_only", cl::desc("Specify architecture type for output library"),
53     cl::value_desc("arch_type"), cl::ZeroOrMore, cl::cat(LibtoolCategory));
54 
55 enum class Operation { None, Static };
56 
57 static cl::opt<Operation> LibraryOperation(
58     cl::desc("Library Type: "),
59     cl::values(
60         clEnumValN(Operation::Static, "static",
61                    "Produce a statically linked library from the input files")),
62     cl::init(Operation::None), cl::cat(LibtoolCategory));
63 
64 static cl::opt<bool> DeterministicOption(
65     "D", cl::desc("Use zero for timestamps and UIDs/GIDs (Default)"),
66     cl::init(false), cl::cat(LibtoolCategory));
67 
68 static cl::opt<bool>
69     NonDeterministicOption("U", cl::desc("Use actual timestamps and UIDs/GIDs"),
70                            cl::init(false), cl::cat(LibtoolCategory));
71 
72 static cl::opt<std::string>
73     FileList("filelist",
74              cl::desc("Pass in file containing a list of filenames"),
75              cl::value_desc("listfile[,dirname]"), cl::cat(LibtoolCategory));
76 
77 static cl::list<std::string> Libraries(
78     "l",
79     cl::desc(
80         "l<x> searches for the library libx.a in the library search path. If"
81         " the string 'x' ends with '.o', then the library 'x' is searched for"
82         " without prepending 'lib' or appending '.a'"),
83     cl::ZeroOrMore, cl::Prefix, cl::cat(LibtoolCategory));
84 
85 static cl::list<std::string> LibrarySearchDirs(
86     "L",
87     cl::desc(
88         "L<dir> adds <dir> to the list of directories in which to search for"
89         " libraries"),
90     cl::ZeroOrMore, cl::Prefix, cl::cat(LibtoolCategory));
91 
92 static cl::opt<bool>
93     VersionOption("V", cl::desc("Print the version number and exit"),
94                   cl::cat(LibtoolCategory));
95 
96 static cl::opt<bool> NoWarningForNoSymbols(
97     "no_warning_for_no_symbols",
98     cl::desc("Do not warn about files that have no symbols"),
99     cl::cat(LibtoolCategory), cl::init(false));
100 
101 static cl::opt<bool> WarningsAsErrors("warnings_as_errors",
102                                       cl::desc("Treat warnings as errors"),
103                                       cl::cat(LibtoolCategory),
104                                       cl::init(false));
105 
106 static const std::array<std::string, 3> StandardSearchDirs{
107     "/lib",
108     "/usr/lib",
109     "/usr/local/lib",
110 };
111 
112 struct Config {
113   bool Deterministic = true; // Updated by 'D' and 'U' modifiers.
114   uint32_t ArchCPUType;
115   uint32_t ArchCPUSubtype;
116 };
117 
118 static Expected<std::string> searchForFile(const Twine &FileName) {
119 
120   auto FindLib =
121       [FileName](ArrayRef<std::string> SearchDirs) -> Optional<std::string> {
122     for (StringRef Dir : SearchDirs) {
123       SmallString<128> Path;
124       sys::path::append(Path, Dir, FileName);
125 
126       if (sys::fs::exists(Path))
127         return std::string(Path);
128     }
129     return None;
130   };
131 
132   Optional<std::string> Found = FindLib(LibrarySearchDirs);
133   if (!Found)
134     Found = FindLib(StandardSearchDirs);
135   if (Found)
136     return *Found;
137 
138   return createStringError(std::errc::invalid_argument,
139                            "cannot locate file '%s'", FileName.str().c_str());
140 }
141 
142 static Error processCommandLineLibraries() {
143   for (StringRef BaseName : Libraries) {
144     Expected<std::string> FullPath = searchForFile(
145         BaseName.endswith(".o") ? BaseName.str() : "lib" + BaseName + ".a");
146     if (!FullPath)
147       return FullPath.takeError();
148     InputFiles.push_back(FullPath.get());
149   }
150 
151   return Error::success();
152 }
153 
154 static Error processFileList() {
155   StringRef FileName, DirName;
156   std::tie(FileName, DirName) = StringRef(FileList).rsplit(",");
157 
158   ErrorOr<std::unique_ptr<MemoryBuffer>> FileOrErr =
159       MemoryBuffer::getFileOrSTDIN(FileName, /*IsText=*/false,
160                                    /*RequiresNullTerminator=*/false);
161   if (std::error_code EC = FileOrErr.getError())
162     return createFileError(FileName, errorCodeToError(EC));
163   const MemoryBuffer &Ref = *FileOrErr.get();
164 
165   line_iterator I(Ref, /*SkipBlanks=*/false);
166   if (I.is_at_eof())
167     return createStringError(std::errc::invalid_argument,
168                              "file list file: '%s' is empty",
169                              FileName.str().c_str());
170   for (; !I.is_at_eof(); ++I) {
171     StringRef Line = *I;
172     if (Line.empty())
173       return createStringError(std::errc::invalid_argument,
174                                "file list file: '%s': filename cannot be empty",
175                                FileName.str().c_str());
176 
177     SmallString<128> Path;
178     if (!DirName.empty())
179       sys::path::append(Path, DirName, Line);
180     else
181       sys::path::append(Path, Line);
182     InputFiles.push_back(static_cast<std::string>(Path));
183   }
184   return Error::success();
185 }
186 
187 static Error validateArchitectureName(StringRef ArchitectureName) {
188   if (!MachOObjectFile::isValidArch(ArchitectureName)) {
189     std::string Buf;
190     raw_string_ostream OS(Buf);
191     for (StringRef Arch : MachOObjectFile::getValidArchs())
192       OS << Arch << " ";
193 
194     return createStringError(
195         std::errc::invalid_argument,
196         "invalid architecture '%s': valid architecture names are %s",
197         ArchitectureName.str().c_str(), OS.str().c_str());
198   }
199   return Error::success();
200 }
201 
202 static uint64_t getCPUID(uint32_t CPUType, uint32_t CPUSubtype) {
203   switch (CPUType) {
204   case MachO::CPU_TYPE_ARM:
205   case MachO::CPU_TYPE_ARM64:
206   case MachO::CPU_TYPE_ARM64_32:
207   case MachO::CPU_TYPE_X86_64:
208     // We consider CPUSubtype only for the above 4 CPUTypes to match cctools'
209     // libtool behavior.
210     return static_cast<uint64_t>(CPUType) << 32 | CPUSubtype;
211   default:
212     return CPUType;
213   }
214 }
215 
216 // MembersData is an organized collection of members.
217 struct MembersData {
218   // MembersPerArchitectureMap is a mapping from CPU architecture to a list of
219   // members.
220   MembersPerArchitectureMap MembersPerArchitecture;
221   std::vector<std::unique_ptr<MemoryBuffer>> FileBuffers;
222 };
223 
224 // NewArchiveMemberList instances serve as collections of archive members and
225 // information about those members.
226 class NewArchiveMemberList {
227   std::vector<NewArchiveMember> Members;
228   // This vector contains the file that each NewArchiveMember from Members came
229   // from. Therefore, it has the same size as Members.
230   std::vector<StringRef> Files;
231 
232 public:
233   // Add a NewArchiveMember and the file it came from to the list.
234   void push_back(NewArchiveMember &&Member, StringRef File) {
235     Members.push_back(std::move(Member));
236     Files.push_back(File);
237   }
238 
239   ArrayRef<NewArchiveMember> getMembers() const { return Members; }
240 
241   ArrayRef<StringRef> getFiles() const { return Files; }
242 
243   static_assert(
244       std::is_same<decltype(MembersData::MembersPerArchitecture)::mapped_type,
245                    NewArchiveMemberList>(),
246       "This test makes sure NewArchiveMemberList is used by MembersData since "
247       "the following asserts test invariants required for MembersData.");
248   static_assert(
249       !std::is_copy_constructible<
250           decltype(NewArchiveMemberList::Members)::value_type>::value,
251       "MembersData::MembersPerArchitecture has a dependency on "
252       "MembersData::FileBuffers so it should not be able to "
253       "be copied on its own without FileBuffers. Unfortunately, "
254       "is_copy_constructible does not detect whether the container (ie vector) "
255       "of a non-copyable type is itself non-copyable so we have to test the "
256       "actual type of the stored data (ie, value_type).");
257   static_assert(
258       !std::is_copy_assignable<
259           decltype(NewArchiveMemberList::Members)::value_type>::value,
260       "MembersData::MembersPerArchitecture has a dependency on "
261       "MembersData::FileBuffers so it should not be able to "
262       "be copied on its own without FileBuffers. Unfortunately, "
263       "is_copy_constructible does not detect whether the container (ie vector) "
264       "of a non-copyable type is itself non-copyable so we have to test the "
265       "actual type of the stored data (ie, value_type).");
266 };
267 
268 // MembersBuilder collects and organizes all members from the files provided by
269 // the user.
270 class MembersBuilder {
271 public:
272   MembersBuilder(const Config &C) : C(C) {}
273 
274   Expected<MembersData> build() {
275     for (StringRef FileName : InputFiles)
276       if (Error E = AddMember(*this, FileName)())
277         return std::move(E);
278 
279     if (!ArchType.empty()) {
280       uint64_t ArchCPUID = getCPUID(C.ArchCPUType, C.ArchCPUSubtype);
281       if (Data.MembersPerArchitecture.find(ArchCPUID) ==
282           Data.MembersPerArchitecture.end())
283         return createStringError(std::errc::invalid_argument,
284                                  "no library created (no object files in input "
285                                  "files matching -arch_only %s)",
286                                  ArchType.c_str());
287     }
288     return std::move(Data);
289   }
290 
291 private:
292   class AddMember {
293     MembersBuilder &Builder;
294     StringRef FileName;
295 
296   public:
297     AddMember(MembersBuilder &Builder, StringRef FileName)
298         : Builder(Builder), FileName(FileName) {}
299 
300     Error operator()() {
301       Expected<NewArchiveMember> NewMemberOrErr =
302           NewArchiveMember::getFile(FileName, Builder.C.Deterministic);
303       if (!NewMemberOrErr)
304         return createFileError(FileName, NewMemberOrErr.takeError());
305       auto &NewMember = *NewMemberOrErr;
306 
307       // For regular archives, use the basename of the object path for the
308       // member name.
309       NewMember.MemberName = sys::path::filename(NewMember.MemberName);
310       file_magic Magic = identify_magic(NewMember.Buf->getBuffer());
311 
312       // Flatten archives.
313       if (Magic == file_magic::archive)
314         return addArchiveMembers(std::move(NewMember));
315 
316       // Flatten universal files.
317       if (Magic == file_magic::macho_universal_binary)
318         return addUniversalMembers(std::move(NewMember));
319 
320       // Bitcode files.
321       if (Magic == file_magic::bitcode)
322         return verifyAndAddIRObject(std::move(NewMember));
323 
324       return verifyAndAddMachOObject(std::move(NewMember));
325     }
326 
327   private:
328     // Check that a file's architecture [FileCPUType, FileCPUSubtype]
329     // matches the architecture specified under -arch_only flag.
330     bool acceptFileArch(uint32_t FileCPUType, uint32_t FileCPUSubtype) {
331       if (Builder.C.ArchCPUType != FileCPUType)
332         return false;
333 
334       switch (Builder.C.ArchCPUType) {
335       case MachO::CPU_TYPE_ARM:
336       case MachO::CPU_TYPE_ARM64_32:
337       case MachO::CPU_TYPE_X86_64:
338         return Builder.C.ArchCPUSubtype == FileCPUSubtype;
339 
340       case MachO::CPU_TYPE_ARM64:
341         if (Builder.C.ArchCPUSubtype == MachO::CPU_SUBTYPE_ARM64_ALL)
342           return FileCPUSubtype == MachO::CPU_SUBTYPE_ARM64_ALL ||
343                  FileCPUSubtype == MachO::CPU_SUBTYPE_ARM64_V8;
344         else
345           return Builder.C.ArchCPUSubtype == FileCPUSubtype;
346 
347       default:
348         return true;
349       }
350     }
351 
352     Error verifyAndAddMachOObject(NewArchiveMember Member) {
353       auto MBRef = Member.Buf->getMemBufferRef();
354       Expected<std::unique_ptr<object::ObjectFile>> ObjOrErr =
355           object::ObjectFile::createObjectFile(MBRef);
356 
357       // Throw error if not a valid object file.
358       if (!ObjOrErr)
359         return createFileError(Member.MemberName, ObjOrErr.takeError());
360 
361       // Throw error if not in Mach-O format.
362       if (!isa<object::MachOObjectFile>(**ObjOrErr))
363         return createStringError(std::errc::invalid_argument,
364                                  "'%s': format not supported",
365                                  Member.MemberName.data());
366 
367       auto *O = cast<MachOObjectFile>(ObjOrErr->get());
368       uint32_t FileCPUType, FileCPUSubtype;
369       std::tie(FileCPUType, FileCPUSubtype) = MachO::getCPUTypeFromArchitecture(
370           MachO::getArchitectureFromName(O->getArchTriple().getArchName()));
371 
372       // If -arch_only is specified then skip this file if it doesn't match
373       // the architecture specified.
374       if (!ArchType.empty() && !acceptFileArch(FileCPUType, FileCPUSubtype)) {
375         return Error::success();
376       }
377 
378       if (!NoWarningForNoSymbols && O->symbols().empty()) {
379         Error E = createFileError(
380             Member.MemberName,
381             createStringError(std::errc::invalid_argument,
382                               "has no symbols for architecture %s",
383                               O->getArchTriple().getArchName().str().c_str()));
384 
385         if (WarningsAsErrors)
386           return E;
387         WithColor::defaultWarningHandler(std::move(E));
388       }
389 
390       uint64_t FileCPUID = getCPUID(FileCPUType, FileCPUSubtype);
391       Builder.Data.MembersPerArchitecture[FileCPUID].push_back(
392           std::move(Member), FileName);
393       return Error::success();
394     }
395 
396     Error verifyAndAddIRObject(NewArchiveMember Member) {
397       auto MBRef = Member.Buf->getMemBufferRef();
398       Expected<std::unique_ptr<object::IRObjectFile>> IROrErr =
399           object::IRObjectFile::create(MBRef, LLVMCtx);
400 
401       // Throw error if not a valid IR object file.
402       if (!IROrErr)
403         return createFileError(Member.MemberName, IROrErr.takeError());
404 
405       Triple TT = Triple(IROrErr->get()->getTargetTriple());
406 
407       Expected<uint32_t> FileCPUTypeOrErr = MachO::getCPUType(TT);
408       if (!FileCPUTypeOrErr)
409         return FileCPUTypeOrErr.takeError();
410 
411       Expected<uint32_t> FileCPUSubTypeOrErr = MachO::getCPUSubType(TT);
412       if (!FileCPUSubTypeOrErr)
413         return FileCPUSubTypeOrErr.takeError();
414 
415       // If -arch_only is specified then skip this file if it doesn't match
416       // the architecture specified.
417       if (!ArchType.empty() &&
418           !acceptFileArch(*FileCPUTypeOrErr, *FileCPUSubTypeOrErr)) {
419         return Error::success();
420       }
421 
422       uint64_t FileCPUID = getCPUID(*FileCPUTypeOrErr, *FileCPUSubTypeOrErr);
423       Builder.Data.MembersPerArchitecture[FileCPUID].push_back(
424           std::move(Member), FileName);
425       return Error::success();
426     }
427 
428     Error addChildMember(const object::Archive::Child &M) {
429       Expected<NewArchiveMember> NewMemberOrErr =
430           NewArchiveMember::getOldMember(M, Builder.C.Deterministic);
431       if (!NewMemberOrErr)
432         return NewMemberOrErr.takeError();
433       auto &NewMember = *NewMemberOrErr;
434 
435       file_magic Magic = identify_magic(NewMember.Buf->getBuffer());
436 
437       if (Magic == file_magic::bitcode)
438         return verifyAndAddIRObject(std::move(NewMember));
439 
440       return verifyAndAddMachOObject(std::move(NewMember));
441     }
442 
443     Error processArchive(object::Archive &Lib) {
444       Error Err = Error::success();
445       for (const object::Archive::Child &Child : Lib.children(Err))
446         if (Error E = addChildMember(Child))
447           return createFileError(FileName, std::move(E));
448       if (Err)
449         return createFileError(FileName, std::move(Err));
450 
451       return Error::success();
452     }
453 
454     Error addArchiveMembers(NewArchiveMember NewMember) {
455       Expected<std::unique_ptr<Archive>> LibOrErr =
456           object::Archive::create(NewMember.Buf->getMemBufferRef());
457       if (!LibOrErr)
458         return createFileError(FileName, LibOrErr.takeError());
459 
460       if (Error E = processArchive(**LibOrErr))
461         return E;
462 
463       // Update vector FileBuffers with the MemoryBuffers to transfer
464       // ownership.
465       Builder.Data.FileBuffers.push_back(std::move(NewMember.Buf));
466       return Error::success();
467     }
468 
469     Error addUniversalMembers(NewArchiveMember NewMember) {
470       Expected<std::unique_ptr<MachOUniversalBinary>> BinaryOrErr =
471           MachOUniversalBinary::create(NewMember.Buf->getMemBufferRef());
472       if (!BinaryOrErr)
473         return createFileError(FileName, BinaryOrErr.takeError());
474 
475       auto *UO = BinaryOrErr->get();
476       for (const MachOUniversalBinary::ObjectForArch &O : UO->objects()) {
477 
478         Expected<std::unique_ptr<MachOObjectFile>> MachOObjOrErr =
479             O.getAsObjectFile();
480         if (MachOObjOrErr) {
481           NewArchiveMember NewMember =
482               NewArchiveMember(MachOObjOrErr->get()->getMemoryBufferRef());
483           NewMember.MemberName = sys::path::filename(NewMember.MemberName);
484 
485           if (Error E = verifyAndAddMachOObject(std::move(NewMember)))
486             return E;
487           continue;
488         }
489 
490         Expected<std::unique_ptr<IRObjectFile>> IRObjectOrError =
491             O.getAsIRObject(LLVMCtx);
492         if (IRObjectOrError) {
493           // A universal file member can be a MachOObjectFile, an IRObject or an
494           // Archive. In case we can successfully cast the member as an
495           // IRObject, it is safe to throw away the error generated due to
496           // casting the object as a MachOObjectFile.
497           consumeError(MachOObjOrErr.takeError());
498 
499           NewArchiveMember NewMember =
500               NewArchiveMember(IRObjectOrError->get()->getMemoryBufferRef());
501           NewMember.MemberName = sys::path::filename(NewMember.MemberName);
502 
503           if (Error E = verifyAndAddIRObject(std::move(NewMember)))
504             return E;
505           continue;
506         }
507 
508         Expected<std::unique_ptr<Archive>> ArchiveOrError = O.getAsArchive();
509         if (ArchiveOrError) {
510           // A universal file member can be a MachOObjectFile, an IRObject or an
511           // Archive. In case we can successfully cast the member as an Archive,
512           // it is safe to throw away the error generated due to casting the
513           // object as a MachOObjectFile.
514           consumeError(MachOObjOrErr.takeError());
515           consumeError(IRObjectOrError.takeError());
516 
517           if (Error E = processArchive(**ArchiveOrError))
518             return E;
519           continue;
520         }
521 
522         Error CombinedError = joinErrors(
523             ArchiveOrError.takeError(),
524             joinErrors(IRObjectOrError.takeError(), MachOObjOrErr.takeError()));
525         return createFileError(FileName, std::move(CombinedError));
526       }
527 
528       // Update vector FileBuffers with the MemoryBuffers to transfer
529       // ownership.
530       Builder.Data.FileBuffers.push_back(std::move(NewMember.Buf));
531       return Error::success();
532     }
533   };
534 
535   MembersData Data;
536   const Config &C;
537 };
538 
539 static Expected<SmallVector<Slice, 2>>
540 buildSlices(ArrayRef<OwningBinary<Archive>> OutputBinaries) {
541   SmallVector<Slice, 2> Slices;
542 
543   for (const auto &OB : OutputBinaries) {
544     const Archive &A = *OB.getBinary();
545     Expected<Slice> ArchiveSlice = Slice::create(A, &LLVMCtx);
546     if (!ArchiveSlice)
547       return ArchiveSlice.takeError();
548     Slices.push_back(*ArchiveSlice);
549   }
550   return Slices;
551 }
552 
553 static Error
554 checkForDuplicates(const MembersPerArchitectureMap &MembersPerArch) {
555   for (const auto &M : MembersPerArch) {
556     ArrayRef<NewArchiveMember> Members = M.second.getMembers();
557     ArrayRef<StringRef> Files = M.second.getFiles();
558     StringMap<std::vector<StringRef>> MembersToFiles;
559     for (auto Iterators = std::make_pair(Members.begin(), Files.begin());
560          Iterators.first != Members.end();
561          ++Iterators.first, ++Iterators.second) {
562       assert(Iterators.second != Files.end() &&
563              "Files should be the same size as Members.");
564       MembersToFiles[Iterators.first->MemberName].push_back(*Iterators.second);
565     }
566 
567     std::string ErrorData;
568     raw_string_ostream ErrorStream(ErrorData);
569     for (const auto &MemberToFile : MembersToFiles) {
570       if (MemberToFile.getValue().size() > 1) {
571         ErrorStream << "file '" << MemberToFile.getKey().str()
572                     << "' was specified multiple times.\n";
573 
574         for (StringRef OriginalFile : MemberToFile.getValue())
575           ErrorStream << "in: " << OriginalFile.str() << '\n';
576 
577         ErrorStream << '\n';
578       }
579     }
580 
581     ErrorStream.flush();
582     if (ErrorData.size() > 0)
583       return createStringError(std::errc::invalid_argument, ErrorData.c_str());
584   }
585   return Error::success();
586 }
587 
588 static Error createStaticLibrary(const Config &C) {
589   MembersBuilder Builder(C);
590   auto DataOrError = Builder.build();
591   if (auto Error = DataOrError.takeError())
592     return Error;
593 
594   const auto &NewMembers = DataOrError->MembersPerArchitecture;
595 
596   if (Error E = checkForDuplicates(NewMembers)) {
597     if (WarningsAsErrors)
598       return E;
599     WithColor::defaultWarningHandler(std::move(E));
600   }
601 
602   if (NewMembers.size() == 1)
603     return writeArchive(OutputFile, NewMembers.begin()->second.getMembers(),
604                         /*WriteSymtab=*/true,
605                         /*Kind=*/object::Archive::K_DARWIN, C.Deterministic,
606                         /*Thin=*/false);
607 
608   SmallVector<OwningBinary<Archive>, 2> OutputBinaries;
609   for (const std::pair<const uint64_t, NewArchiveMemberList> &M : NewMembers) {
610     Expected<std::unique_ptr<MemoryBuffer>> OutputBufferOrErr =
611         writeArchiveToBuffer(M.second.getMembers(),
612                              /*WriteSymtab=*/true,
613                              /*Kind=*/object::Archive::K_DARWIN,
614                              C.Deterministic,
615                              /*Thin=*/false);
616     if (!OutputBufferOrErr)
617       return OutputBufferOrErr.takeError();
618     std::unique_ptr<MemoryBuffer> &OutputBuffer = OutputBufferOrErr.get();
619 
620     Expected<std::unique_ptr<Archive>> ArchiveOrError =
621         Archive::create(OutputBuffer->getMemBufferRef());
622     if (!ArchiveOrError)
623       return ArchiveOrError.takeError();
624     std::unique_ptr<Archive> &A = ArchiveOrError.get();
625 
626     OutputBinaries.push_back(
627         OwningBinary<Archive>(std::move(A), std::move(OutputBuffer)));
628   }
629 
630   Expected<SmallVector<Slice, 2>> Slices = buildSlices(OutputBinaries);
631   if (!Slices)
632     return Slices.takeError();
633 
634   llvm::stable_sort(*Slices);
635   return writeUniversalBinary(*Slices, OutputFile);
636 }
637 
638 static Expected<Config> parseCommandLine(int Argc, char **Argv) {
639   Config C;
640   cl::ParseCommandLineOptions(Argc, Argv, "llvm-libtool-darwin\n");
641 
642   if (LibraryOperation == Operation::None) {
643     if (!VersionOption) {
644       std::string Error;
645       raw_string_ostream Stream(Error);
646       LibraryOperation.error("must be specified", "", Stream);
647       return createStringError(std::errc::invalid_argument, Error.c_str());
648     }
649     return C;
650   }
651 
652   if (OutputFile.empty()) {
653     std::string Error;
654     raw_string_ostream Stream(Error);
655     OutputFile.error("must be specified", "o", Stream);
656     return createStringError(std::errc::invalid_argument, Error.c_str());
657   }
658 
659   if (DeterministicOption && NonDeterministicOption)
660     return createStringError(std::errc::invalid_argument,
661                              "cannot specify both -D and -U flags");
662   else if (NonDeterministicOption)
663     C.Deterministic = false;
664 
665   if (!Libraries.empty())
666     if (Error E = processCommandLineLibraries())
667       return std::move(E);
668 
669   if (!FileList.empty())
670     if (Error E = processFileList())
671       return std::move(E);
672 
673   if (InputFiles.empty())
674     return createStringError(std::errc::invalid_argument,
675                              "no input files specified");
676 
677   if (ArchType.getNumOccurrences()) {
678     if (Error E = validateArchitectureName(ArchType))
679       return std::move(E);
680 
681     std::tie(C.ArchCPUType, C.ArchCPUSubtype) =
682         MachO::getCPUTypeFromArchitecture(
683             MachO::getArchitectureFromName(ArchType));
684   }
685 
686   return C;
687 }
688 
689 int main(int Argc, char **Argv) {
690   InitLLVM X(Argc, Argv);
691   cl::HideUnrelatedOptions({&LibtoolCategory, &getColorCategory()});
692   Expected<Config> ConfigOrErr = parseCommandLine(Argc, Argv);
693   if (!ConfigOrErr) {
694     WithColor::defaultErrorHandler(ConfigOrErr.takeError());
695     return EXIT_FAILURE;
696   }
697 
698   if (VersionOption)
699     cl::PrintVersionMessage();
700 
701   llvm::InitializeAllTargetInfos();
702   llvm::InitializeAllTargetMCs();
703   llvm::InitializeAllAsmParsers();
704 
705   Config C = *ConfigOrErr;
706   switch (LibraryOperation) {
707   case Operation::None:
708     break;
709   case Operation::Static:
710     if (Error E = createStaticLibrary(C)) {
711       WithColor::defaultErrorHandler(std::move(E));
712       return EXIT_FAILURE;
713     }
714     break;
715   }
716 }
717