xref: /llvm-project-15.0.7/llvm/lib/LTO/LTO.cpp (revision 939b1623)
1 //===-LTO.cpp - LLVM Link Time Optimizer ----------------------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements functions and classes used to support LTO.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "llvm/LTO/LTO.h"
15 #include "llvm/Analysis/TargetLibraryInfo.h"
16 #include "llvm/Analysis/TargetTransformInfo.h"
17 #include "llvm/Bitcode/BitcodeReader.h"
18 #include "llvm/Bitcode/BitcodeWriter.h"
19 #include "llvm/CodeGen/Analysis.h"
20 #include "llvm/IR/AutoUpgrade.h"
21 #include "llvm/IR/DiagnosticPrinter.h"
22 #include "llvm/IR/LegacyPassManager.h"
23 #include "llvm/IR/Mangler.h"
24 #include "llvm/IR/Metadata.h"
25 #include "llvm/LTO/LTOBackend.h"
26 #include "llvm/Linker/IRMover.h"
27 #include "llvm/Object/IRObjectFile.h"
28 #include "llvm/Support/Error.h"
29 #include "llvm/Support/ManagedStatic.h"
30 #include "llvm/Support/MemoryBuffer.h"
31 #include "llvm/Support/Path.h"
32 #include "llvm/Support/SHA1.h"
33 #include "llvm/Support/SourceMgr.h"
34 #include "llvm/Support/TargetRegistry.h"
35 #include "llvm/Support/ThreadPool.h"
36 #include "llvm/Support/Threading.h"
37 #include "llvm/Support/VCSRevision.h"
38 #include "llvm/Support/raw_ostream.h"
39 #include "llvm/Target/TargetMachine.h"
40 #include "llvm/Target/TargetOptions.h"
41 #include "llvm/Transforms/IPO.h"
42 #include "llvm/Transforms/IPO/PassManagerBuilder.h"
43 #include "llvm/Transforms/Utils/SplitModule.h"
44 
45 #include <set>
46 
47 using namespace llvm;
48 using namespace lto;
49 using namespace object;
50 
51 #define DEBUG_TYPE "lto"
52 
53 // The values are (type identifier, summary) pairs.
54 typedef DenseMap<
55     GlobalValue::GUID,
56     TinyPtrVector<const std::pair<const std::string, TypeIdSummary> *>>
57     TypeIdSummariesByGuidTy;
58 
59 // Returns a unique hash for the Module considering the current list of
60 // export/import and other global analysis results.
61 // The hash is produced in \p Key.
62 static void computeCacheKey(
63     SmallString<40> &Key, const Config &Conf, const ModuleSummaryIndex &Index,
64     StringRef ModuleID, const FunctionImporter::ImportMapTy &ImportList,
65     const FunctionImporter::ExportSetTy &ExportList,
66     const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes> &ResolvedODR,
67     const GVSummaryMapTy &DefinedGlobals,
68     const TypeIdSummariesByGuidTy &TypeIdSummariesByGuid,
69     const std::set<GlobalValue::GUID> &CfiFunctionDefs,
70     const std::set<GlobalValue::GUID> &CfiFunctionDecls) {
71   // Compute the unique hash for this entry.
72   // This is based on the current compiler version, the module itself, the
73   // export list, the hash for every single module in the import list, the
74   // list of ResolvedODR for the module, and the list of preserved symbols.
75   SHA1 Hasher;
76 
77   // Start with the compiler revision
78   Hasher.update(LLVM_VERSION_STRING);
79 #ifdef LLVM_REVISION
80   Hasher.update(LLVM_REVISION);
81 #endif
82 
83   // Include the parts of the LTO configuration that affect code generation.
84   auto AddString = [&](StringRef Str) {
85     Hasher.update(Str);
86     Hasher.update(ArrayRef<uint8_t>{0});
87   };
88   auto AddUnsigned = [&](unsigned I) {
89     uint8_t Data[4];
90     Data[0] = I;
91     Data[1] = I >> 8;
92     Data[2] = I >> 16;
93     Data[3] = I >> 24;
94     Hasher.update(ArrayRef<uint8_t>{Data, 4});
95   };
96   auto AddUint64 = [&](uint64_t I) {
97     uint8_t Data[8];
98     Data[0] = I;
99     Data[1] = I >> 8;
100     Data[2] = I >> 16;
101     Data[3] = I >> 24;
102     Data[4] = I >> 32;
103     Data[5] = I >> 40;
104     Data[6] = I >> 48;
105     Data[7] = I >> 56;
106     Hasher.update(ArrayRef<uint8_t>{Data, 8});
107   };
108   AddString(Conf.CPU);
109   // FIXME: Hash more of Options. For now all clients initialize Options from
110   // command-line flags (which is unsupported in production), but may set
111   // RelaxELFRelocations. The clang driver can also pass FunctionSections,
112   // DataSections and DebuggerTuning via command line flags.
113   AddUnsigned(Conf.Options.RelaxELFRelocations);
114   AddUnsigned(Conf.Options.FunctionSections);
115   AddUnsigned(Conf.Options.DataSections);
116   AddUnsigned((unsigned)Conf.Options.DebuggerTuning);
117   for (auto &A : Conf.MAttrs)
118     AddString(A);
119   if (Conf.RelocModel)
120     AddUnsigned(*Conf.RelocModel);
121   else
122     AddUnsigned(-1);
123   if (Conf.CodeModel)
124     AddUnsigned(*Conf.CodeModel);
125   else
126     AddUnsigned(-1);
127   AddUnsigned(Conf.CGOptLevel);
128   AddUnsigned(Conf.CGFileType);
129   AddUnsigned(Conf.OptLevel);
130   AddUnsigned(Conf.UseNewPM);
131   AddString(Conf.OptPipeline);
132   AddString(Conf.AAPipeline);
133   AddString(Conf.OverrideTriple);
134   AddString(Conf.DefaultTriple);
135 
136   // Include the hash for the current module
137   auto ModHash = Index.getModuleHash(ModuleID);
138   Hasher.update(ArrayRef<uint8_t>((uint8_t *)&ModHash[0], sizeof(ModHash)));
139   for (auto F : ExportList)
140     // The export list can impact the internalization, be conservative here
141     Hasher.update(ArrayRef<uint8_t>((uint8_t *)&F, sizeof(F)));
142 
143   // Include the hash for every module we import functions from. The set of
144   // imported symbols for each module may affect code generation and is
145   // sensitive to link order, so include that as well.
146   for (auto &Entry : ImportList) {
147     auto ModHash = Index.getModuleHash(Entry.first());
148     Hasher.update(ArrayRef<uint8_t>((uint8_t *)&ModHash[0], sizeof(ModHash)));
149 
150     AddUint64(Entry.second.size());
151     for (auto &Fn : Entry.second)
152       AddUint64(Fn.first);
153   }
154 
155   // Include the hash for the resolved ODR.
156   for (auto &Entry : ResolvedODR) {
157     Hasher.update(ArrayRef<uint8_t>((const uint8_t *)&Entry.first,
158                                     sizeof(GlobalValue::GUID)));
159     Hasher.update(ArrayRef<uint8_t>((const uint8_t *)&Entry.second,
160                                     sizeof(GlobalValue::LinkageTypes)));
161   }
162 
163   // Members of CfiFunctionDefs and CfiFunctionDecls that are referenced or
164   // defined in this module.
165   std::set<GlobalValue::GUID> UsedCfiDefs;
166   std::set<GlobalValue::GUID> UsedCfiDecls;
167 
168   // Typeids used in this module.
169   std::set<GlobalValue::GUID> UsedTypeIds;
170 
171   auto AddUsedCfiGlobal = [&](GlobalValue::GUID ValueGUID) {
172     if (CfiFunctionDefs.count(ValueGUID))
173       UsedCfiDefs.insert(ValueGUID);
174     if (CfiFunctionDecls.count(ValueGUID))
175       UsedCfiDecls.insert(ValueGUID);
176   };
177 
178   auto AddUsedThings = [&](GlobalValueSummary *GS) {
179     if (!GS) return;
180     for (const ValueInfo &VI : GS->refs())
181       AddUsedCfiGlobal(VI.getGUID());
182     if (auto *FS = dyn_cast<FunctionSummary>(GS)) {
183       for (auto &TT : FS->type_tests())
184         UsedTypeIds.insert(TT);
185       for (auto &TT : FS->type_test_assume_vcalls())
186         UsedTypeIds.insert(TT.GUID);
187       for (auto &TT : FS->type_checked_load_vcalls())
188         UsedTypeIds.insert(TT.GUID);
189       for (auto &TT : FS->type_test_assume_const_vcalls())
190         UsedTypeIds.insert(TT.VFunc.GUID);
191       for (auto &TT : FS->type_checked_load_const_vcalls())
192         UsedTypeIds.insert(TT.VFunc.GUID);
193       for (auto &ET : FS->calls())
194         AddUsedCfiGlobal(ET.first.getGUID());
195     }
196   };
197 
198   // Include the hash for the linkage type to reflect internalization and weak
199   // resolution, and collect any used type identifier resolutions.
200   for (auto &GS : DefinedGlobals) {
201     GlobalValue::LinkageTypes Linkage = GS.second->linkage();
202     Hasher.update(
203         ArrayRef<uint8_t>((const uint8_t *)&Linkage, sizeof(Linkage)));
204     AddUsedCfiGlobal(GS.first);
205     AddUsedThings(GS.second);
206   }
207 
208   // Imported functions may introduce new uses of type identifier resolutions,
209   // so we need to collect their used resolutions as well.
210   for (auto &ImpM : ImportList)
211     for (auto &ImpF : ImpM.second)
212       AddUsedThings(Index.findSummaryInModule(ImpF.first, ImpM.first()));
213 
214   auto AddTypeIdSummary = [&](StringRef TId, const TypeIdSummary &S) {
215     AddString(TId);
216 
217     AddUnsigned(S.TTRes.TheKind);
218     AddUnsigned(S.TTRes.SizeM1BitWidth);
219 
220     AddUint64(S.TTRes.AlignLog2);
221     AddUint64(S.TTRes.SizeM1);
222     AddUint64(S.TTRes.BitMask);
223     AddUint64(S.TTRes.InlineBits);
224 
225     AddUint64(S.WPDRes.size());
226     for (auto &WPD : S.WPDRes) {
227       AddUnsigned(WPD.first);
228       AddUnsigned(WPD.second.TheKind);
229       AddString(WPD.second.SingleImplName);
230 
231       AddUint64(WPD.second.ResByArg.size());
232       for (auto &ByArg : WPD.second.ResByArg) {
233         AddUint64(ByArg.first.size());
234         for (uint64_t Arg : ByArg.first)
235           AddUint64(Arg);
236         AddUnsigned(ByArg.second.TheKind);
237         AddUint64(ByArg.second.Info);
238         AddUnsigned(ByArg.second.Byte);
239         AddUnsigned(ByArg.second.Bit);
240       }
241     }
242   };
243 
244   // Include the hash for all type identifiers used by this module.
245   for (GlobalValue::GUID TId : UsedTypeIds) {
246     auto SummariesI = TypeIdSummariesByGuid.find(TId);
247     if (SummariesI != TypeIdSummariesByGuid.end())
248       for (auto *Summary : SummariesI->second)
249         AddTypeIdSummary(Summary->first, Summary->second);
250   }
251 
252   AddUnsigned(UsedCfiDefs.size());
253   for (auto &V : UsedCfiDefs)
254     AddUint64(V);
255 
256   AddUnsigned(UsedCfiDecls.size());
257   for (auto &V : UsedCfiDecls)
258     AddUint64(V);
259 
260   if (!Conf.SampleProfile.empty()) {
261     auto FileOrErr = MemoryBuffer::getFile(Conf.SampleProfile);
262     if (FileOrErr)
263       Hasher.update(FileOrErr.get()->getBuffer());
264   }
265 
266   Key = toHex(Hasher.result());
267 }
268 
269 static void thinLTOResolveWeakForLinkerGUID(
270     GlobalValueSummaryList &GVSummaryList, GlobalValue::GUID GUID,
271     DenseSet<GlobalValueSummary *> &GlobalInvolvedWithAlias,
272     function_ref<bool(GlobalValue::GUID, const GlobalValueSummary *)>
273         isPrevailing,
274     function_ref<void(StringRef, GlobalValue::GUID, GlobalValue::LinkageTypes)>
275         recordNewLinkage) {
276   for (auto &S : GVSummaryList) {
277     GlobalValue::LinkageTypes OriginalLinkage = S->linkage();
278     if (!GlobalValue::isWeakForLinker(OriginalLinkage))
279       continue;
280     // We need to emit only one of these. The prevailing module will keep it,
281     // but turned into a weak, while the others will drop it when possible.
282     // This is both a compile-time optimization and a correctness
283     // transformation. This is necessary for correctness when we have exported
284     // a reference - we need to convert the linkonce to weak to
285     // ensure a copy is kept to satisfy the exported reference.
286     // FIXME: We may want to split the compile time and correctness
287     // aspects into separate routines.
288     if (isPrevailing(GUID, S.get())) {
289       if (GlobalValue::isLinkOnceLinkage(OriginalLinkage))
290         S->setLinkage(GlobalValue::getWeakLinkage(
291             GlobalValue::isLinkOnceODRLinkage(OriginalLinkage)));
292     }
293     // Alias and aliasee can't be turned into available_externally.
294     else if (!isa<AliasSummary>(S.get()) &&
295              !GlobalInvolvedWithAlias.count(S.get()))
296       S->setLinkage(GlobalValue::AvailableExternallyLinkage);
297     if (S->linkage() != OriginalLinkage)
298       recordNewLinkage(S->modulePath(), GUID, S->linkage());
299   }
300 }
301 
302 // Resolve Weak and LinkOnce values in the \p Index.
303 //
304 // We'd like to drop these functions if they are no longer referenced in the
305 // current module. However there is a chance that another module is still
306 // referencing them because of the import. We make sure we always emit at least
307 // one copy.
308 void llvm::thinLTOResolveWeakForLinkerInIndex(
309     ModuleSummaryIndex &Index,
310     function_ref<bool(GlobalValue::GUID, const GlobalValueSummary *)>
311         isPrevailing,
312     function_ref<void(StringRef, GlobalValue::GUID, GlobalValue::LinkageTypes)>
313         recordNewLinkage) {
314   // We won't optimize the globals that are referenced by an alias for now
315   // Ideally we should turn the alias into a global and duplicate the definition
316   // when needed.
317   DenseSet<GlobalValueSummary *> GlobalInvolvedWithAlias;
318   for (auto &I : Index)
319     for (auto &S : I.second.SummaryList)
320       if (auto AS = dyn_cast<AliasSummary>(S.get()))
321         GlobalInvolvedWithAlias.insert(&AS->getAliasee());
322 
323   for (auto &I : Index)
324     thinLTOResolveWeakForLinkerGUID(I.second.SummaryList, I.first,
325                                     GlobalInvolvedWithAlias, isPrevailing,
326                                     recordNewLinkage);
327 }
328 
329 static void thinLTOInternalizeAndPromoteGUID(
330     GlobalValueSummaryList &GVSummaryList, GlobalValue::GUID GUID,
331     function_ref<bool(StringRef, GlobalValue::GUID)> isExported) {
332   for (auto &S : GVSummaryList) {
333     if (isExported(S->modulePath(), GUID)) {
334       if (GlobalValue::isLocalLinkage(S->linkage()))
335         S->setLinkage(GlobalValue::ExternalLinkage);
336     } else if (!GlobalValue::isLocalLinkage(S->linkage()))
337       S->setLinkage(GlobalValue::InternalLinkage);
338   }
339 }
340 
341 // Update the linkages in the given \p Index to mark exported values
342 // as external and non-exported values as internal.
343 void llvm::thinLTOInternalizeAndPromoteInIndex(
344     ModuleSummaryIndex &Index,
345     function_ref<bool(StringRef, GlobalValue::GUID)> isExported) {
346   for (auto &I : Index)
347     thinLTOInternalizeAndPromoteGUID(I.second.SummaryList, I.first, isExported);
348 }
349 
350 // Requires a destructor for std::vector<InputModule>.
351 InputFile::~InputFile() = default;
352 
353 Expected<std::unique_ptr<InputFile>> InputFile::create(MemoryBufferRef Object) {
354   std::unique_ptr<InputFile> File(new InputFile);
355 
356   Expected<IRSymtabFile> FOrErr = readIRSymtab(Object);
357   if (!FOrErr)
358     return FOrErr.takeError();
359 
360   File->TargetTriple = FOrErr->TheReader.getTargetTriple();
361   File->SourceFileName = FOrErr->TheReader.getSourceFileName();
362   File->COFFLinkerOpts = FOrErr->TheReader.getCOFFLinkerOpts();
363   File->ComdatTable = FOrErr->TheReader.getComdatTable();
364 
365   for (unsigned I = 0; I != FOrErr->Mods.size(); ++I) {
366     size_t Begin = File->Symbols.size();
367     for (const irsymtab::Reader::SymbolRef &Sym :
368          FOrErr->TheReader.module_symbols(I))
369       // Skip symbols that are irrelevant to LTO. Note that this condition needs
370       // to match the one in Skip() in LTO::addRegularLTO().
371       if (Sym.isGlobal() && !Sym.isFormatSpecific())
372         File->Symbols.push_back(Sym);
373     File->ModuleSymIndices.push_back({Begin, File->Symbols.size()});
374   }
375 
376   File->Mods = FOrErr->Mods;
377   File->Strtab = std::move(FOrErr->Strtab);
378   return std::move(File);
379 }
380 
381 StringRef InputFile::getName() const {
382   return Mods[0].getModuleIdentifier();
383 }
384 
385 LTO::RegularLTOState::RegularLTOState(unsigned ParallelCodeGenParallelismLevel,
386                                       Config &Conf)
387     : ParallelCodeGenParallelismLevel(ParallelCodeGenParallelismLevel),
388       Ctx(Conf), CombinedModule(llvm::make_unique<Module>("ld-temp.o", Ctx)),
389       Mover(llvm::make_unique<IRMover>(*CombinedModule)) {}
390 
391 LTO::ThinLTOState::ThinLTOState(ThinBackend Backend)
392     : Backend(Backend), CombinedIndex(/*IsPeformingAnalysis*/ false) {
393   if (!Backend)
394     this->Backend =
395         createInProcessThinBackend(llvm::heavyweight_hardware_concurrency());
396 }
397 
398 LTO::LTO(Config Conf, ThinBackend Backend,
399          unsigned ParallelCodeGenParallelismLevel)
400     : Conf(std::move(Conf)),
401       RegularLTO(ParallelCodeGenParallelismLevel, this->Conf),
402       ThinLTO(std::move(Backend)) {}
403 
404 // Requires a destructor for MapVector<BitcodeModule>.
405 LTO::~LTO() = default;
406 
407 // Add the symbols in the given module to the GlobalResolutions map, and resolve
408 // their partitions.
409 void LTO::addModuleToGlobalRes(ArrayRef<InputFile::Symbol> Syms,
410                                ArrayRef<SymbolResolution> Res,
411                                unsigned Partition, bool InSummary) {
412   auto *ResI = Res.begin();
413   auto *ResE = Res.end();
414   (void)ResE;
415   for (const InputFile::Symbol &Sym : Syms) {
416     assert(ResI != ResE);
417     SymbolResolution Res = *ResI++;
418 
419     auto &GlobalRes = GlobalResolutions[Sym.getName()];
420     GlobalRes.UnnamedAddr &= Sym.isUnnamedAddr();
421     if (Res.Prevailing) {
422       assert(!GlobalRes.Prevailing &&
423              "Multiple prevailing defs are not allowed");
424       GlobalRes.Prevailing = true;
425       GlobalRes.IRName = Sym.getIRName();
426     }
427 
428     // Set the partition to external if we know it is re-defined by the linker
429     // with -defsym or -wrap options, used elsewhere, e.g. it is visible to a
430     // regular object, is referenced from llvm.compiler_used, or was already
431     // recorded as being referenced from a different partition.
432     if (Res.LinkerRedefined || Res.VisibleToRegularObj || Sym.isUsed() ||
433         (GlobalRes.Partition != GlobalResolution::Unknown &&
434          GlobalRes.Partition != Partition)) {
435       GlobalRes.Partition = GlobalResolution::External;
436     } else
437       // First recorded reference, save the current partition.
438       GlobalRes.Partition = Partition;
439 
440     // Flag as visible outside of summary if visible from a regular object or
441     // from a module that does not have a summary.
442     GlobalRes.VisibleOutsideSummary |=
443         (Res.VisibleToRegularObj || Sym.isUsed() || !InSummary);
444   }
445 }
446 
447 static void writeToResolutionFile(raw_ostream &OS, InputFile *Input,
448                                   ArrayRef<SymbolResolution> Res) {
449   StringRef Path = Input->getName();
450   OS << Path << '\n';
451   auto ResI = Res.begin();
452   for (const InputFile::Symbol &Sym : Input->symbols()) {
453     assert(ResI != Res.end());
454     SymbolResolution Res = *ResI++;
455 
456     OS << "-r=" << Path << ',' << Sym.getName() << ',';
457     if (Res.Prevailing)
458       OS << 'p';
459     if (Res.FinalDefinitionInLinkageUnit)
460       OS << 'l';
461     if (Res.VisibleToRegularObj)
462       OS << 'x';
463     if (Res.LinkerRedefined)
464       OS << 'r';
465     OS << '\n';
466   }
467   OS.flush();
468   assert(ResI == Res.end());
469 }
470 
471 Error LTO::add(std::unique_ptr<InputFile> Input,
472                ArrayRef<SymbolResolution> Res) {
473   assert(!CalledGetMaxTasks);
474 
475   if (Conf.ResolutionFile)
476     writeToResolutionFile(*Conf.ResolutionFile, Input.get(), Res);
477 
478   if (RegularLTO.CombinedModule->getTargetTriple().empty())
479     RegularLTO.CombinedModule->setTargetTriple(Input->getTargetTriple());
480 
481   const SymbolResolution *ResI = Res.begin();
482   for (unsigned I = 0; I != Input->Mods.size(); ++I)
483     if (Error Err = addModule(*Input, I, ResI, Res.end()))
484       return Err;
485 
486   assert(ResI == Res.end());
487   return Error::success();
488 }
489 
490 Error LTO::addModule(InputFile &Input, unsigned ModI,
491                      const SymbolResolution *&ResI,
492                      const SymbolResolution *ResE) {
493   Expected<BitcodeLTOInfo> LTOInfo = Input.Mods[ModI].getLTOInfo();
494   if (!LTOInfo)
495     return LTOInfo.takeError();
496 
497   BitcodeModule BM = Input.Mods[ModI];
498   auto ModSyms = Input.module_symbols(ModI);
499   addModuleToGlobalRes(ModSyms, {ResI, ResE},
500                        LTOInfo->IsThinLTO ? ThinLTO.ModuleMap.size() + 1 : 0,
501                        LTOInfo->HasSummary);
502 
503   if (LTOInfo->IsThinLTO)
504     return addThinLTO(BM, ModSyms, ResI, ResE);
505 
506   Expected<RegularLTOState::AddedModule> ModOrErr =
507       addRegularLTO(BM, ModSyms, ResI, ResE);
508   if (!ModOrErr)
509     return ModOrErr.takeError();
510 
511   if (!LTOInfo->HasSummary)
512     return linkRegularLTO(std::move(*ModOrErr), /*LivenessFromIndex=*/false);
513 
514   // Regular LTO module summaries are added to a dummy module that represents
515   // the combined regular LTO module.
516   if (Error Err = BM.readSummary(ThinLTO.CombinedIndex, "", -1ull))
517     return Err;
518   RegularLTO.ModsWithSummaries.push_back(std::move(*ModOrErr));
519   return Error::success();
520 }
521 
522 // Checks whether the given global value is in a non-prevailing comdat
523 // (comdat containing values the linker indicated were not prevailing,
524 // which we then dropped to available_externally), and if so, removes
525 // it from the comdat. This is called for all global values to ensure the
526 // comdat is empty rather than leaving an incomplete comdat. It is needed for
527 // regular LTO modules, in case we are in a mixed-LTO mode (both regular
528 // and thin LTO modules) compilation. Since the regular LTO module will be
529 // linked first in the final native link, we want to make sure the linker
530 // doesn't select any of these incomplete comdats that would be left
531 // in the regular LTO module without this cleanup.
532 static void
533 handleNonPrevailingComdat(GlobalValue &GV,
534                           std::set<const Comdat *> &NonPrevailingComdats) {
535   Comdat *C = GV.getComdat();
536   if (!C)
537     return;
538 
539   if (!NonPrevailingComdats.count(C))
540     return;
541 
542   // Additionally need to drop externally visible global values from the comdat
543   // to available_externally, so that there aren't multiply defined linker
544   // errors.
545   if (!GV.hasLocalLinkage())
546     GV.setLinkage(GlobalValue::AvailableExternallyLinkage);
547 
548   if (auto GO = dyn_cast<GlobalObject>(&GV))
549     GO->setComdat(nullptr);
550 }
551 
552 // Add a regular LTO object to the link.
553 // The resulting module needs to be linked into the combined LTO module with
554 // linkRegularLTO.
555 Expected<LTO::RegularLTOState::AddedModule>
556 LTO::addRegularLTO(BitcodeModule BM, ArrayRef<InputFile::Symbol> Syms,
557                    const SymbolResolution *&ResI,
558                    const SymbolResolution *ResE) {
559   RegularLTOState::AddedModule Mod;
560   Expected<std::unique_ptr<Module>> MOrErr =
561       BM.getLazyModule(RegularLTO.Ctx, /*ShouldLazyLoadMetadata*/ true,
562                        /*IsImporting*/ false);
563   if (!MOrErr)
564     return MOrErr.takeError();
565   Module &M = **MOrErr;
566   Mod.M = std::move(*MOrErr);
567 
568   if (Error Err = M.materializeMetadata())
569     return std::move(Err);
570   UpgradeDebugInfo(M);
571 
572   ModuleSymbolTable SymTab;
573   SymTab.addModule(&M);
574 
575   for (GlobalVariable &GV : M.globals())
576     if (GV.hasAppendingLinkage())
577       Mod.Keep.push_back(&GV);
578 
579   DenseSet<GlobalObject *> AliasedGlobals;
580   for (auto &GA : M.aliases())
581     if (GlobalObject *GO = GA.getBaseObject())
582       AliasedGlobals.insert(GO);
583 
584   // In this function we need IR GlobalValues matching the symbols in Syms
585   // (which is not backed by a module), so we need to enumerate them in the same
586   // order. The symbol enumeration order of a ModuleSymbolTable intentionally
587   // matches the order of an irsymtab, but when we read the irsymtab in
588   // InputFile::create we omit some symbols that are irrelevant to LTO. The
589   // Skip() function skips the same symbols from the module as InputFile does
590   // from the symbol table.
591   auto MsymI = SymTab.symbols().begin(), MsymE = SymTab.symbols().end();
592   auto Skip = [&]() {
593     while (MsymI != MsymE) {
594       auto Flags = SymTab.getSymbolFlags(*MsymI);
595       if ((Flags & object::BasicSymbolRef::SF_Global) &&
596           !(Flags & object::BasicSymbolRef::SF_FormatSpecific))
597         return;
598       ++MsymI;
599     }
600   };
601   Skip();
602 
603   std::set<const Comdat *> NonPrevailingComdats;
604   for (const InputFile::Symbol &Sym : Syms) {
605     assert(ResI != ResE);
606     SymbolResolution Res = *ResI++;
607 
608     assert(MsymI != MsymE);
609     ModuleSymbolTable::Symbol Msym = *MsymI++;
610     Skip();
611 
612     if (GlobalValue *GV = Msym.dyn_cast<GlobalValue *>()) {
613       if (Res.Prevailing) {
614         if (Sym.isUndefined())
615           continue;
616         Mod.Keep.push_back(GV);
617         // For symbols re-defined with linker -wrap and -defsym options,
618         // set the linkage to weak to inhibit IPO. The linkage will be
619         // restored by the linker.
620         if (Res.LinkerRedefined)
621           GV->setLinkage(GlobalValue::WeakAnyLinkage);
622 
623         GlobalValue::LinkageTypes OriginalLinkage = GV->getLinkage();
624         if (GlobalValue::isLinkOnceLinkage(OriginalLinkage))
625           GV->setLinkage(GlobalValue::getWeakLinkage(
626               GlobalValue::isLinkOnceODRLinkage(OriginalLinkage)));
627       } else if (isa<GlobalObject>(GV) &&
628                  (GV->hasLinkOnceODRLinkage() || GV->hasWeakODRLinkage() ||
629                   GV->hasAvailableExternallyLinkage()) &&
630                  !AliasedGlobals.count(cast<GlobalObject>(GV))) {
631         // Any of the above three types of linkage indicates that the
632         // chosen prevailing symbol will have the same semantics as this copy of
633         // the symbol, so we may be able to link it with available_externally
634         // linkage. We will decide later whether to do that when we link this
635         // module (in linkRegularLTO), based on whether it is undefined.
636         Mod.Keep.push_back(GV);
637         GV->setLinkage(GlobalValue::AvailableExternallyLinkage);
638         if (GV->hasComdat())
639           NonPrevailingComdats.insert(GV->getComdat());
640         cast<GlobalObject>(GV)->setComdat(nullptr);
641       }
642 
643       // Set the 'local' flag based on the linker resolution for this symbol.
644       if (Res.FinalDefinitionInLinkageUnit)
645         GV->setDSOLocal(true);
646     }
647     // Common resolution: collect the maximum size/alignment over all commons.
648     // We also record if we see an instance of a common as prevailing, so that
649     // if none is prevailing we can ignore it later.
650     if (Sym.isCommon()) {
651       // FIXME: We should figure out what to do about commons defined by asm.
652       // For now they aren't reported correctly by ModuleSymbolTable.
653       auto &CommonRes = RegularLTO.Commons[Sym.getIRName()];
654       CommonRes.Size = std::max(CommonRes.Size, Sym.getCommonSize());
655       CommonRes.Align = std::max(CommonRes.Align, Sym.getCommonAlignment());
656       CommonRes.Prevailing |= Res.Prevailing;
657     }
658 
659   }
660   if (!M.getComdatSymbolTable().empty())
661     for (GlobalValue &GV : M.global_values())
662       handleNonPrevailingComdat(GV, NonPrevailingComdats);
663   assert(MsymI == MsymE);
664   return std::move(Mod);
665 }
666 
667 Error LTO::linkRegularLTO(RegularLTOState::AddedModule Mod,
668                           bool LivenessFromIndex) {
669   std::vector<GlobalValue *> Keep;
670   for (GlobalValue *GV : Mod.Keep) {
671     if (LivenessFromIndex && !ThinLTO.CombinedIndex.isGUIDLive(GV->getGUID()))
672       continue;
673 
674     if (!GV->hasAvailableExternallyLinkage()) {
675       Keep.push_back(GV);
676       continue;
677     }
678 
679     // Only link available_externally definitions if we don't already have a
680     // definition.
681     GlobalValue *CombinedGV =
682         RegularLTO.CombinedModule->getNamedValue(GV->getName());
683     if (CombinedGV && !CombinedGV->isDeclaration())
684       continue;
685 
686     Keep.push_back(GV);
687   }
688 
689   return RegularLTO.Mover->move(std::move(Mod.M), Keep,
690                                 [](GlobalValue &, IRMover::ValueAdder) {},
691                                 /* IsPerformingImport */ false);
692 }
693 
694 // Add a ThinLTO module to the link.
695 Error LTO::addThinLTO(BitcodeModule BM, ArrayRef<InputFile::Symbol> Syms,
696                       const SymbolResolution *&ResI,
697                       const SymbolResolution *ResE) {
698   if (Error Err =
699           BM.readSummary(ThinLTO.CombinedIndex, BM.getModuleIdentifier(),
700                          ThinLTO.ModuleMap.size()))
701     return Err;
702 
703   for (const InputFile::Symbol &Sym : Syms) {
704     assert(ResI != ResE);
705     SymbolResolution Res = *ResI++;
706 
707     if (!Sym.getIRName().empty()) {
708       auto GUID = GlobalValue::getGUID(GlobalValue::getGlobalIdentifier(
709           Sym.getIRName(), GlobalValue::ExternalLinkage, ""));
710       if (Res.Prevailing) {
711         ThinLTO.PrevailingModuleForGUID[GUID] = BM.getModuleIdentifier();
712 
713         // For linker redefined symbols (via --wrap or --defsym) we want to
714         // switch the linkage to `weak` to prevent IPOs from happening.
715         // Find the summary in the module for this very GV and record the new
716         // linkage so that we can switch it when we import the GV.
717         if (Res.LinkerRedefined)
718           if (auto S = ThinLTO.CombinedIndex.findSummaryInModule(
719                   GUID, BM.getModuleIdentifier()))
720             S->setLinkage(GlobalValue::WeakAnyLinkage);
721       }
722 
723       // If the linker resolved the symbol to a local definition then mark it
724       // as local in the summary for the module we are adding.
725       if (Res.FinalDefinitionInLinkageUnit) {
726         if (auto S = ThinLTO.CombinedIndex.findSummaryInModule(
727                 GUID, BM.getModuleIdentifier())) {
728           S->setDSOLocal(true);
729         }
730       }
731     }
732   }
733 
734   if (!ThinLTO.ModuleMap.insert({BM.getModuleIdentifier(), BM}).second)
735     return make_error<StringError>(
736         "Expected at most one ThinLTO module per bitcode file",
737         inconvertibleErrorCode());
738 
739   return Error::success();
740 }
741 
742 unsigned LTO::getMaxTasks() const {
743   CalledGetMaxTasks = true;
744   return RegularLTO.ParallelCodeGenParallelismLevel + ThinLTO.ModuleMap.size();
745 }
746 
747 Error LTO::run(AddStreamFn AddStream, NativeObjectCache Cache) {
748   // Compute "dead" symbols, we don't want to import/export these!
749   DenseSet<GlobalValue::GUID> GUIDPreservedSymbols;
750   for (auto &Res : GlobalResolutions)
751     if (Res.second.VisibleOutsideSummary && Res.second.Prevailing)
752       GUIDPreservedSymbols.insert(GlobalValue::getGUID(
753           GlobalValue::dropLLVMManglingEscape(Res.second.IRName)));
754 
755   computeDeadSymbols(ThinLTO.CombinedIndex, GUIDPreservedSymbols);
756 
757   if (auto E = runRegularLTO(AddStream))
758     return E;
759   return runThinLTO(AddStream, Cache);
760 }
761 
762 Error LTO::runRegularLTO(AddStreamFn AddStream) {
763   for (auto &M : RegularLTO.ModsWithSummaries)
764     if (Error Err = linkRegularLTO(std::move(M),
765                                    /*LivenessFromIndex=*/true))
766       return Err;
767 
768   // Make sure commons have the right size/alignment: we kept the largest from
769   // all the prevailing when adding the inputs, and we apply it here.
770   const DataLayout &DL = RegularLTO.CombinedModule->getDataLayout();
771   for (auto &I : RegularLTO.Commons) {
772     if (!I.second.Prevailing)
773       // Don't do anything if no instance of this common was prevailing.
774       continue;
775     GlobalVariable *OldGV = RegularLTO.CombinedModule->getNamedGlobal(I.first);
776     if (OldGV && DL.getTypeAllocSize(OldGV->getValueType()) == I.second.Size) {
777       // Don't create a new global if the type is already correct, just make
778       // sure the alignment is correct.
779       OldGV->setAlignment(I.second.Align);
780       continue;
781     }
782     ArrayType *Ty =
783         ArrayType::get(Type::getInt8Ty(RegularLTO.Ctx), I.second.Size);
784     auto *GV = new GlobalVariable(*RegularLTO.CombinedModule, Ty, false,
785                                   GlobalValue::CommonLinkage,
786                                   ConstantAggregateZero::get(Ty), "");
787     GV->setAlignment(I.second.Align);
788     if (OldGV) {
789       OldGV->replaceAllUsesWith(ConstantExpr::getBitCast(GV, OldGV->getType()));
790       GV->takeName(OldGV);
791       OldGV->eraseFromParent();
792     } else {
793       GV->setName(I.first);
794     }
795   }
796 
797   if (Conf.PreOptModuleHook &&
798       !Conf.PreOptModuleHook(0, *RegularLTO.CombinedModule))
799     return Error::success();
800 
801   if (!Conf.CodeGenOnly) {
802     for (const auto &R : GlobalResolutions) {
803       if (!R.second.Prevailing)
804         continue;
805       if (R.second.Partition != 0 &&
806           R.second.Partition != GlobalResolution::External)
807         continue;
808 
809       GlobalValue *GV =
810           RegularLTO.CombinedModule->getNamedValue(R.second.IRName);
811       // Ignore symbols defined in other partitions.
812       if (!GV || GV->hasLocalLinkage())
813         continue;
814       GV->setUnnamedAddr(R.second.UnnamedAddr ? GlobalValue::UnnamedAddr::Global
815                                               : GlobalValue::UnnamedAddr::None);
816       if (R.second.Partition == 0)
817         GV->setLinkage(GlobalValue::InternalLinkage);
818     }
819 
820     if (Conf.PostInternalizeModuleHook &&
821         !Conf.PostInternalizeModuleHook(0, *RegularLTO.CombinedModule))
822       return Error::success();
823   }
824   return backend(Conf, AddStream, RegularLTO.ParallelCodeGenParallelismLevel,
825                  std::move(RegularLTO.CombinedModule), ThinLTO.CombinedIndex);
826 }
827 
828 /// This class defines the interface to the ThinLTO backend.
829 class lto::ThinBackendProc {
830 protected:
831   Config &Conf;
832   ModuleSummaryIndex &CombinedIndex;
833   const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries;
834 
835 public:
836   ThinBackendProc(Config &Conf, ModuleSummaryIndex &CombinedIndex,
837                   const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries)
838       : Conf(Conf), CombinedIndex(CombinedIndex),
839         ModuleToDefinedGVSummaries(ModuleToDefinedGVSummaries) {}
840 
841   virtual ~ThinBackendProc() {}
842   virtual Error start(
843       unsigned Task, BitcodeModule BM,
844       const FunctionImporter::ImportMapTy &ImportList,
845       const FunctionImporter::ExportSetTy &ExportList,
846       const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes> &ResolvedODR,
847       MapVector<StringRef, BitcodeModule> &ModuleMap) = 0;
848   virtual Error wait() = 0;
849 };
850 
851 namespace {
852 class InProcessThinBackend : public ThinBackendProc {
853   ThreadPool BackendThreadPool;
854   AddStreamFn AddStream;
855   NativeObjectCache Cache;
856   TypeIdSummariesByGuidTy TypeIdSummariesByGuid;
857   std::set<GlobalValue::GUID> CfiFunctionDefs;
858   std::set<GlobalValue::GUID> CfiFunctionDecls;
859 
860   Optional<Error> Err;
861   std::mutex ErrMu;
862 
863 public:
864   InProcessThinBackend(
865       Config &Conf, ModuleSummaryIndex &CombinedIndex,
866       unsigned ThinLTOParallelismLevel,
867       const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries,
868       AddStreamFn AddStream, NativeObjectCache Cache)
869       : ThinBackendProc(Conf, CombinedIndex, ModuleToDefinedGVSummaries),
870         BackendThreadPool(ThinLTOParallelismLevel),
871         AddStream(std::move(AddStream)), Cache(std::move(Cache)) {
872     // Create a mapping from type identifier GUIDs to type identifier summaries.
873     // This allows backends to use the type identifier GUIDs stored in the
874     // function summaries to determine which type identifier summaries affect
875     // each function without needing to compute GUIDs in each backend.
876     for (auto &TId : CombinedIndex.typeIds())
877       TypeIdSummariesByGuid[GlobalValue::getGUID(TId.first)].push_back(&TId);
878     for (auto &Name : CombinedIndex.cfiFunctionDefs())
879       CfiFunctionDefs.insert(
880           GlobalValue::getGUID(GlobalValue::dropLLVMManglingEscape(Name)));
881     for (auto &Name : CombinedIndex.cfiFunctionDecls())
882       CfiFunctionDecls.insert(
883           GlobalValue::getGUID(GlobalValue::dropLLVMManglingEscape(Name)));
884   }
885 
886   Error runThinLTOBackendThread(
887       AddStreamFn AddStream, NativeObjectCache Cache, unsigned Task,
888       BitcodeModule BM, ModuleSummaryIndex &CombinedIndex,
889       const FunctionImporter::ImportMapTy &ImportList,
890       const FunctionImporter::ExportSetTy &ExportList,
891       const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes> &ResolvedODR,
892       const GVSummaryMapTy &DefinedGlobals,
893       MapVector<StringRef, BitcodeModule> &ModuleMap,
894       const TypeIdSummariesByGuidTy &TypeIdSummariesByGuid) {
895     auto RunThinBackend = [&](AddStreamFn AddStream) {
896       LTOLLVMContext BackendContext(Conf);
897       Expected<std::unique_ptr<Module>> MOrErr = BM.parseModule(BackendContext);
898       if (!MOrErr)
899         return MOrErr.takeError();
900 
901       return thinBackend(Conf, Task, AddStream, **MOrErr, CombinedIndex,
902                          ImportList, DefinedGlobals, ModuleMap);
903     };
904 
905     auto ModuleID = BM.getModuleIdentifier();
906 
907     if (!Cache || !CombinedIndex.modulePaths().count(ModuleID) ||
908         all_of(CombinedIndex.getModuleHash(ModuleID),
909                [](uint32_t V) { return V == 0; }))
910       // Cache disabled or no entry for this module in the combined index or
911       // no module hash.
912       return RunThinBackend(AddStream);
913 
914     SmallString<40> Key;
915     // The module may be cached, this helps handling it.
916     computeCacheKey(Key, Conf, CombinedIndex, ModuleID, ImportList, ExportList,
917                     ResolvedODR, DefinedGlobals, TypeIdSummariesByGuid,
918                     CfiFunctionDefs, CfiFunctionDecls);
919     if (AddStreamFn CacheAddStream = Cache(Task, Key))
920       return RunThinBackend(CacheAddStream);
921 
922     return Error::success();
923   }
924 
925   Error start(
926       unsigned Task, BitcodeModule BM,
927       const FunctionImporter::ImportMapTy &ImportList,
928       const FunctionImporter::ExportSetTy &ExportList,
929       const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes> &ResolvedODR,
930       MapVector<StringRef, BitcodeModule> &ModuleMap) override {
931     StringRef ModulePath = BM.getModuleIdentifier();
932     assert(ModuleToDefinedGVSummaries.count(ModulePath));
933     const GVSummaryMapTy &DefinedGlobals =
934         ModuleToDefinedGVSummaries.find(ModulePath)->second;
935     BackendThreadPool.async(
936         [=](BitcodeModule BM, ModuleSummaryIndex &CombinedIndex,
937             const FunctionImporter::ImportMapTy &ImportList,
938             const FunctionImporter::ExportSetTy &ExportList,
939             const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes>
940                 &ResolvedODR,
941             const GVSummaryMapTy &DefinedGlobals,
942             MapVector<StringRef, BitcodeModule> &ModuleMap,
943             const TypeIdSummariesByGuidTy &TypeIdSummariesByGuid) {
944           Error E = runThinLTOBackendThread(
945               AddStream, Cache, Task, BM, CombinedIndex, ImportList, ExportList,
946               ResolvedODR, DefinedGlobals, ModuleMap, TypeIdSummariesByGuid);
947           if (E) {
948             std::unique_lock<std::mutex> L(ErrMu);
949             if (Err)
950               Err = joinErrors(std::move(*Err), std::move(E));
951             else
952               Err = std::move(E);
953           }
954         },
955         BM, std::ref(CombinedIndex), std::ref(ImportList), std::ref(ExportList),
956         std::ref(ResolvedODR), std::ref(DefinedGlobals), std::ref(ModuleMap),
957         std::ref(TypeIdSummariesByGuid));
958     return Error::success();
959   }
960 
961   Error wait() override {
962     BackendThreadPool.wait();
963     if (Err)
964       return std::move(*Err);
965     else
966       return Error::success();
967   }
968 };
969 } // end anonymous namespace
970 
971 ThinBackend lto::createInProcessThinBackend(unsigned ParallelismLevel) {
972   return [=](Config &Conf, ModuleSummaryIndex &CombinedIndex,
973              const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries,
974              AddStreamFn AddStream, NativeObjectCache Cache) {
975     return llvm::make_unique<InProcessThinBackend>(
976         Conf, CombinedIndex, ParallelismLevel, ModuleToDefinedGVSummaries,
977         AddStream, Cache);
978   };
979 }
980 
981 // Given the original \p Path to an output file, replace any path
982 // prefix matching \p OldPrefix with \p NewPrefix. Also, create the
983 // resulting directory if it does not yet exist.
984 std::string lto::getThinLTOOutputFile(const std::string &Path,
985                                       const std::string &OldPrefix,
986                                       const std::string &NewPrefix) {
987   if (OldPrefix.empty() && NewPrefix.empty())
988     return Path;
989   SmallString<128> NewPath(Path);
990   llvm::sys::path::replace_path_prefix(NewPath, OldPrefix, NewPrefix);
991   StringRef ParentPath = llvm::sys::path::parent_path(NewPath.str());
992   if (!ParentPath.empty()) {
993     // Make sure the new directory exists, creating it if necessary.
994     if (std::error_code EC = llvm::sys::fs::create_directories(ParentPath))
995       llvm::errs() << "warning: could not create directory '" << ParentPath
996                    << "': " << EC.message() << '\n';
997   }
998   return NewPath.str();
999 }
1000 
1001 namespace {
1002 class WriteIndexesThinBackend : public ThinBackendProc {
1003   std::string OldPrefix, NewPrefix;
1004   bool ShouldEmitImportsFiles;
1005 
1006   std::string LinkedObjectsFileName;
1007   std::unique_ptr<llvm::raw_fd_ostream> LinkedObjectsFile;
1008 
1009 public:
1010   WriteIndexesThinBackend(
1011       Config &Conf, ModuleSummaryIndex &CombinedIndex,
1012       const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries,
1013       std::string OldPrefix, std::string NewPrefix, bool ShouldEmitImportsFiles,
1014       std::string LinkedObjectsFileName)
1015       : ThinBackendProc(Conf, CombinedIndex, ModuleToDefinedGVSummaries),
1016         OldPrefix(OldPrefix), NewPrefix(NewPrefix),
1017         ShouldEmitImportsFiles(ShouldEmitImportsFiles),
1018         LinkedObjectsFileName(LinkedObjectsFileName) {}
1019 
1020   Error start(
1021       unsigned Task, BitcodeModule BM,
1022       const FunctionImporter::ImportMapTy &ImportList,
1023       const FunctionImporter::ExportSetTy &ExportList,
1024       const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes> &ResolvedODR,
1025       MapVector<StringRef, BitcodeModule> &ModuleMap) override {
1026     StringRef ModulePath = BM.getModuleIdentifier();
1027     std::string NewModulePath =
1028         getThinLTOOutputFile(ModulePath, OldPrefix, NewPrefix);
1029 
1030     std::error_code EC;
1031     if (!LinkedObjectsFileName.empty()) {
1032       if (!LinkedObjectsFile) {
1033         LinkedObjectsFile = llvm::make_unique<raw_fd_ostream>(
1034             LinkedObjectsFileName, EC, sys::fs::OpenFlags::F_None);
1035         if (EC)
1036           return errorCodeToError(EC);
1037       }
1038       *LinkedObjectsFile << NewModulePath << '\n';
1039     }
1040 
1041     std::map<std::string, GVSummaryMapTy> ModuleToSummariesForIndex;
1042     gatherImportedSummariesForModule(ModulePath, ModuleToDefinedGVSummaries,
1043                                      ImportList, ModuleToSummariesForIndex);
1044 
1045     raw_fd_ostream OS(NewModulePath + ".thinlto.bc", EC,
1046                       sys::fs::OpenFlags::F_None);
1047     if (EC)
1048       return errorCodeToError(EC);
1049     WriteIndexToFile(CombinedIndex, OS, &ModuleToSummariesForIndex);
1050 
1051     if (ShouldEmitImportsFiles)
1052       return errorCodeToError(
1053           EmitImportsFiles(ModulePath, NewModulePath + ".imports", ImportList));
1054     return Error::success();
1055   }
1056 
1057   Error wait() override { return Error::success(); }
1058 };
1059 } // end anonymous namespace
1060 
1061 ThinBackend lto::createWriteIndexesThinBackend(std::string OldPrefix,
1062                                                std::string NewPrefix,
1063                                                bool ShouldEmitImportsFiles,
1064                                                std::string LinkedObjectsFile) {
1065   return [=](Config &Conf, ModuleSummaryIndex &CombinedIndex,
1066              const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries,
1067              AddStreamFn AddStream, NativeObjectCache Cache) {
1068     return llvm::make_unique<WriteIndexesThinBackend>(
1069         Conf, CombinedIndex, ModuleToDefinedGVSummaries, OldPrefix, NewPrefix,
1070         ShouldEmitImportsFiles, LinkedObjectsFile);
1071   };
1072 }
1073 
1074 Error LTO::runThinLTO(AddStreamFn AddStream, NativeObjectCache Cache) {
1075   if (ThinLTO.ModuleMap.empty())
1076     return Error::success();
1077 
1078   if (Conf.CombinedIndexHook && !Conf.CombinedIndexHook(ThinLTO.CombinedIndex))
1079     return Error::success();
1080 
1081   // Collect for each module the list of function it defines (GUID ->
1082   // Summary).
1083   StringMap<GVSummaryMapTy>
1084       ModuleToDefinedGVSummaries(ThinLTO.ModuleMap.size());
1085   ThinLTO.CombinedIndex.collectDefinedGVSummariesPerModule(
1086       ModuleToDefinedGVSummaries);
1087   // Create entries for any modules that didn't have any GV summaries
1088   // (either they didn't have any GVs to start with, or we suppressed
1089   // generation of the summaries because they e.g. had inline assembly
1090   // uses that couldn't be promoted/renamed on export). This is so
1091   // InProcessThinBackend::start can still launch a backend thread, which
1092   // is passed the map of summaries for the module, without any special
1093   // handling for this case.
1094   for (auto &Mod : ThinLTO.ModuleMap)
1095     if (!ModuleToDefinedGVSummaries.count(Mod.first))
1096       ModuleToDefinedGVSummaries.try_emplace(Mod.first);
1097 
1098   StringMap<FunctionImporter::ImportMapTy> ImportLists(
1099       ThinLTO.ModuleMap.size());
1100   StringMap<FunctionImporter::ExportSetTy> ExportLists(
1101       ThinLTO.ModuleMap.size());
1102   StringMap<std::map<GlobalValue::GUID, GlobalValue::LinkageTypes>> ResolvedODR;
1103 
1104   if (Conf.OptLevel > 0)
1105     ComputeCrossModuleImport(ThinLTO.CombinedIndex, ModuleToDefinedGVSummaries,
1106                              ImportLists, ExportLists);
1107 
1108   // Figure out which symbols need to be internalized. This also needs to happen
1109   // at -O0 because summary-based DCE is implemented using internalization, and
1110   // we must apply DCE consistently with the full LTO module in order to avoid
1111   // undefined references during the final link.
1112   std::set<GlobalValue::GUID> ExportedGUIDs;
1113   for (auto &Res : GlobalResolutions) {
1114     // If the symbol does not have external references or it is not prevailing,
1115     // then not need to mark it as exported from a ThinLTO partition.
1116     if (Res.second.Partition != GlobalResolution::External ||
1117         !Res.second.Prevailing)
1118       continue;
1119     auto GUID = GlobalValue::getGUID(
1120         GlobalValue::dropLLVMManglingEscape(Res.second.IRName));
1121     // Mark exported unless index-based analysis determined it to be dead.
1122     if (ThinLTO.CombinedIndex.isGUIDLive(GUID))
1123       ExportedGUIDs.insert(GUID);
1124   }
1125 
1126   // Any functions referenced by the jump table in the regular LTO object must
1127   // be exported.
1128   for (auto &Def : ThinLTO.CombinedIndex.cfiFunctionDefs())
1129     ExportedGUIDs.insert(
1130         GlobalValue::getGUID(GlobalValue::dropLLVMManglingEscape(Def)));
1131 
1132   auto isExported = [&](StringRef ModuleIdentifier, GlobalValue::GUID GUID) {
1133     const auto &ExportList = ExportLists.find(ModuleIdentifier);
1134     return (ExportList != ExportLists.end() &&
1135             ExportList->second.count(GUID)) ||
1136            ExportedGUIDs.count(GUID);
1137   };
1138   thinLTOInternalizeAndPromoteInIndex(ThinLTO.CombinedIndex, isExported);
1139 
1140   auto isPrevailing = [&](GlobalValue::GUID GUID,
1141                           const GlobalValueSummary *S) {
1142     return ThinLTO.PrevailingModuleForGUID[GUID] == S->modulePath();
1143   };
1144   auto recordNewLinkage = [&](StringRef ModuleIdentifier,
1145                               GlobalValue::GUID GUID,
1146                               GlobalValue::LinkageTypes NewLinkage) {
1147     ResolvedODR[ModuleIdentifier][GUID] = NewLinkage;
1148   };
1149   thinLTOResolveWeakForLinkerInIndex(ThinLTO.CombinedIndex, isPrevailing,
1150                                      recordNewLinkage);
1151 
1152   std::unique_ptr<ThinBackendProc> BackendProc =
1153       ThinLTO.Backend(Conf, ThinLTO.CombinedIndex, ModuleToDefinedGVSummaries,
1154                       AddStream, Cache);
1155 
1156   // Tasks 0 through ParallelCodeGenParallelismLevel-1 are reserved for combined
1157   // module and parallel code generation partitions.
1158   unsigned Task = RegularLTO.ParallelCodeGenParallelismLevel;
1159   for (auto &Mod : ThinLTO.ModuleMap) {
1160     if (Error E = BackendProc->start(Task, Mod.second, ImportLists[Mod.first],
1161                                      ExportLists[Mod.first],
1162                                      ResolvedODR[Mod.first], ThinLTO.ModuleMap))
1163       return E;
1164     ++Task;
1165   }
1166 
1167   return BackendProc->wait();
1168 }
1169 
1170 Expected<std::unique_ptr<ToolOutputFile>>
1171 lto::setupOptimizationRemarks(LLVMContext &Context,
1172                               StringRef LTORemarksFilename,
1173                               bool LTOPassRemarksWithHotness, int Count) {
1174   if (LTORemarksFilename.empty())
1175     return nullptr;
1176 
1177   std::string Filename = LTORemarksFilename;
1178   if (Count != -1)
1179     Filename += ".thin." + llvm::utostr(Count) + ".yaml";
1180 
1181   std::error_code EC;
1182   auto DiagnosticFile =
1183       llvm::make_unique<ToolOutputFile>(Filename, EC, sys::fs::F_None);
1184   if (EC)
1185     return errorCodeToError(EC);
1186   Context.setDiagnosticsOutputFile(
1187       llvm::make_unique<yaml::Output>(DiagnosticFile->os()));
1188   if (LTOPassRemarksWithHotness)
1189     Context.setDiagnosticsHotnessRequested(true);
1190   DiagnosticFile->keep();
1191   return std::move(DiagnosticFile);
1192 }
1193