1 //===-LTOBackend.cpp - LLVM Link Time Optimizer Backend -------------------===//
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 // This file implements the "backend" phase of LTO, i.e. it performs
10 // optimization and code generation on a loaded module. It is generally used
11 // internally by the LTO class but can also be used independently, for example
12 // to implement a standalone ThinLTO backend.
13 //
14 //===----------------------------------------------------------------------===//
15 
16 #include "llvm/LTO/LTOBackend.h"
17 #include "llvm/Analysis/AliasAnalysis.h"
18 #include "llvm/Analysis/CGSCCPassManager.h"
19 #include "llvm/Analysis/ModuleSummaryAnalysis.h"
20 #include "llvm/Analysis/TargetLibraryInfo.h"
21 #include "llvm/Analysis/TargetTransformInfo.h"
22 #include "llvm/Bitcode/BitcodeReader.h"
23 #include "llvm/Bitcode/BitcodeWriter.h"
24 #include "llvm/IR/LLVMRemarkStreamer.h"
25 #include "llvm/IR/LegacyPassManager.h"
26 #include "llvm/IR/PassManager.h"
27 #include "llvm/IR/Verifier.h"
28 #include "llvm/LTO/LTO.h"
29 #include "llvm/MC/SubtargetFeature.h"
30 #include "llvm/MC/TargetRegistry.h"
31 #include "llvm/Object/ModuleSymbolTable.h"
32 #include "llvm/Passes/PassBuilder.h"
33 #include "llvm/Passes/PassPlugin.h"
34 #include "llvm/Passes/StandardInstrumentations.h"
35 #include "llvm/Support/Error.h"
36 #include "llvm/Support/FileSystem.h"
37 #include "llvm/Support/MemoryBuffer.h"
38 #include "llvm/Support/Path.h"
39 #include "llvm/Support/Program.h"
40 #include "llvm/Support/ThreadPool.h"
41 #include "llvm/Support/ToolOutputFile.h"
42 #include "llvm/Support/raw_ostream.h"
43 #include "llvm/Target/TargetMachine.h"
44 #include "llvm/Transforms/IPO.h"
45 #include "llvm/Transforms/Scalar/LoopPassManager.h"
46 #include "llvm/Transforms/Utils/FunctionImportUtils.h"
47 #include "llvm/Transforms/Utils/SplitModule.h"
48 
49 using namespace llvm;
50 using namespace lto;
51 
52 #define DEBUG_TYPE "lto-backend"
53 
54 enum class LTOBitcodeEmbedding {
55   DoNotEmbed = 0,
56   EmbedOptimized = 1,
57   EmbedPostMergePreOptimized = 2
58 };
59 
60 static cl::opt<LTOBitcodeEmbedding> EmbedBitcode(
61     "lto-embed-bitcode", cl::init(LTOBitcodeEmbedding::DoNotEmbed),
62     cl::values(clEnumValN(LTOBitcodeEmbedding::DoNotEmbed, "none",
63                           "Do not embed"),
64                clEnumValN(LTOBitcodeEmbedding::EmbedOptimized, "optimized",
65                           "Embed after all optimization passes"),
66                clEnumValN(LTOBitcodeEmbedding::EmbedPostMergePreOptimized,
67                           "post-merge-pre-opt",
68                           "Embed post merge, but before optimizations")),
69     cl::desc("Embed LLVM bitcode in object files produced by LTO"));
70 
71 static cl::opt<bool> ThinLTOAssumeMerged(
72     "thinlto-assume-merged", cl::init(false),
73     cl::desc("Assume the input has already undergone ThinLTO function "
74              "importing and the other pre-optimization pipeline changes."));
75 
76 namespace llvm {
77 extern cl::opt<bool> NoPGOWarnMismatch;
78 }
79 
80 [[noreturn]] static void reportOpenError(StringRef Path, Twine Msg) {
81   errs() << "failed to open " << Path << ": " << Msg << '\n';
82   errs().flush();
83   exit(1);
84 }
85 
86 Error Config::addSaveTemps(std::string OutputFileName,
87                            bool UseInputModulePath) {
88   ShouldDiscardValueNames = false;
89 
90   std::error_code EC;
91   ResolutionFile =
92       std::make_unique<raw_fd_ostream>(OutputFileName + "resolution.txt", EC,
93                                        sys::fs::OpenFlags::OF_TextWithCRLF);
94   if (EC) {
95     ResolutionFile.reset();
96     return errorCodeToError(EC);
97   }
98 
99   auto setHook = [&](std::string PathSuffix, ModuleHookFn &Hook) {
100     // Keep track of the hook provided by the linker, which also needs to run.
101     ModuleHookFn LinkerHook = Hook;
102     Hook = [=](unsigned Task, const Module &M) {
103       // If the linker's hook returned false, we need to pass that result
104       // through.
105       if (LinkerHook && !LinkerHook(Task, M))
106         return false;
107 
108       std::string PathPrefix;
109       // If this is the combined module (not a ThinLTO backend compile) or the
110       // user hasn't requested using the input module's path, emit to a file
111       // named from the provided OutputFileName with the Task ID appended.
112       if (M.getModuleIdentifier() == "ld-temp.o" || !UseInputModulePath) {
113         PathPrefix = OutputFileName;
114         if (Task != (unsigned)-1)
115           PathPrefix += utostr(Task) + ".";
116       } else
117         PathPrefix = M.getModuleIdentifier() + ".";
118       std::string Path = PathPrefix + PathSuffix + ".bc";
119       std::error_code EC;
120       raw_fd_ostream OS(Path, EC, sys::fs::OpenFlags::OF_None);
121       // Because -save-temps is a debugging feature, we report the error
122       // directly and exit.
123       if (EC)
124         reportOpenError(Path, EC.message());
125       WriteBitcodeToFile(M, OS, /*ShouldPreserveUseListOrder=*/false);
126       return true;
127     };
128   };
129 
130   setHook("0.preopt", PreOptModuleHook);
131   setHook("1.promote", PostPromoteModuleHook);
132   setHook("2.internalize", PostInternalizeModuleHook);
133   setHook("3.import", PostImportModuleHook);
134   setHook("4.opt", PostOptModuleHook);
135   setHook("5.precodegen", PreCodeGenModuleHook);
136 
137   CombinedIndexHook =
138       [=](const ModuleSummaryIndex &Index,
139           const DenseSet<GlobalValue::GUID> &GUIDPreservedSymbols) {
140         std::string Path = OutputFileName + "index.bc";
141         std::error_code EC;
142         raw_fd_ostream OS(Path, EC, sys::fs::OpenFlags::OF_None);
143         // Because -save-temps is a debugging feature, we report the error
144         // directly and exit.
145         if (EC)
146           reportOpenError(Path, EC.message());
147         writeIndexToFile(Index, OS);
148 
149         Path = OutputFileName + "index.dot";
150         raw_fd_ostream OSDot(Path, EC, sys::fs::OpenFlags::OF_None);
151         if (EC)
152           reportOpenError(Path, EC.message());
153         Index.exportToDot(OSDot, GUIDPreservedSymbols);
154         return true;
155       };
156 
157   return Error::success();
158 }
159 
160 #define HANDLE_EXTENSION(Ext)                                                  \
161   llvm::PassPluginLibraryInfo get##Ext##PluginInfo();
162 #include "llvm/Support/Extension.def"
163 
164 static void RegisterPassPlugins(ArrayRef<std::string> PassPlugins,
165                                 PassBuilder &PB) {
166 #define HANDLE_EXTENSION(Ext)                                                  \
167   get##Ext##PluginInfo().RegisterPassBuilderCallbacks(PB);
168 #include "llvm/Support/Extension.def"
169 
170   // Load requested pass plugins and let them register pass builder callbacks
171   for (auto &PluginFN : PassPlugins) {
172     auto PassPlugin = PassPlugin::Load(PluginFN);
173     if (!PassPlugin) {
174       errs() << "Failed to load passes from '" << PluginFN
175              << "'. Request ignored.\n";
176       continue;
177     }
178 
179     PassPlugin->registerPassBuilderCallbacks(PB);
180   }
181 }
182 
183 static std::unique_ptr<TargetMachine>
184 createTargetMachine(const Config &Conf, const Target *TheTarget, Module &M) {
185   StringRef TheTriple = M.getTargetTriple();
186   SubtargetFeatures Features;
187   Features.getDefaultSubtargetFeatures(Triple(TheTriple));
188   for (const std::string &A : Conf.MAttrs)
189     Features.AddFeature(A);
190 
191   Optional<Reloc::Model> RelocModel = None;
192   if (Conf.RelocModel)
193     RelocModel = *Conf.RelocModel;
194   else if (M.getModuleFlag("PIC Level"))
195     RelocModel =
196         M.getPICLevel() == PICLevel::NotPIC ? Reloc::Static : Reloc::PIC_;
197 
198   Optional<CodeModel::Model> CodeModel;
199   if (Conf.CodeModel)
200     CodeModel = *Conf.CodeModel;
201   else
202     CodeModel = M.getCodeModel();
203 
204   std::unique_ptr<TargetMachine> TM(TheTarget->createTargetMachine(
205       TheTriple, Conf.CPU, Features.getString(), Conf.Options, RelocModel,
206       CodeModel, Conf.CGOptLevel));
207   assert(TM && "Failed to create target machine");
208   return TM;
209 }
210 
211 static void runNewPMPasses(const Config &Conf, Module &Mod, TargetMachine *TM,
212                            unsigned OptLevel, bool IsThinLTO,
213                            ModuleSummaryIndex *ExportSummary,
214                            const ModuleSummaryIndex *ImportSummary) {
215   Optional<PGOOptions> PGOOpt;
216   if (!Conf.SampleProfile.empty())
217     PGOOpt = PGOOptions(Conf.SampleProfile, "", Conf.ProfileRemapping,
218                         PGOOptions::SampleUse, PGOOptions::NoCSAction, true);
219   else if (Conf.RunCSIRInstr) {
220     PGOOpt = PGOOptions("", Conf.CSIRProfile, Conf.ProfileRemapping,
221                         PGOOptions::IRUse, PGOOptions::CSIRInstr,
222                         Conf.AddFSDiscriminator);
223   } else if (!Conf.CSIRProfile.empty()) {
224     PGOOpt = PGOOptions(Conf.CSIRProfile, "", Conf.ProfileRemapping,
225                         PGOOptions::IRUse, PGOOptions::CSIRUse,
226                         Conf.AddFSDiscriminator);
227     NoPGOWarnMismatch = !Conf.PGOWarnMismatch;
228   } else if (Conf.AddFSDiscriminator) {
229     PGOOpt = PGOOptions("", "", "", PGOOptions::NoAction,
230                         PGOOptions::NoCSAction, true);
231   }
232   TM->setPGOOption(PGOOpt);
233 
234   LoopAnalysisManager LAM;
235   FunctionAnalysisManager FAM;
236   CGSCCAnalysisManager CGAM;
237   ModuleAnalysisManager MAM;
238 
239   PassInstrumentationCallbacks PIC;
240   StandardInstrumentations SI(Conf.DebugPassManager);
241   SI.registerCallbacks(PIC, &FAM);
242   PassBuilder PB(TM, Conf.PTO, PGOOpt, &PIC);
243 
244   RegisterPassPlugins(Conf.PassPlugins, PB);
245 
246   std::unique_ptr<TargetLibraryInfoImpl> TLII(
247       new TargetLibraryInfoImpl(Triple(TM->getTargetTriple())));
248   if (Conf.Freestanding)
249     TLII->disableAllFunctions();
250   FAM.registerPass([&] { return TargetLibraryAnalysis(*TLII); });
251 
252   // Parse a custom AA pipeline if asked to.
253   if (!Conf.AAPipeline.empty()) {
254     AAManager AA;
255     if (auto Err = PB.parseAAPipeline(AA, Conf.AAPipeline)) {
256       report_fatal_error(Twine("unable to parse AA pipeline description '") +
257                          Conf.AAPipeline + "': " + toString(std::move(Err)));
258     }
259     // Register the AA manager first so that our version is the one used.
260     FAM.registerPass([&] { return std::move(AA); });
261   }
262 
263   // Register all the basic analyses with the managers.
264   PB.registerModuleAnalyses(MAM);
265   PB.registerCGSCCAnalyses(CGAM);
266   PB.registerFunctionAnalyses(FAM);
267   PB.registerLoopAnalyses(LAM);
268   PB.crossRegisterProxies(LAM, FAM, CGAM, MAM);
269 
270   ModulePassManager MPM;
271 
272   if (!Conf.DisableVerify)
273     MPM.addPass(VerifierPass());
274 
275   OptimizationLevel OL;
276 
277   switch (OptLevel) {
278   default:
279     llvm_unreachable("Invalid optimization level");
280   case 0:
281     OL = OptimizationLevel::O0;
282     break;
283   case 1:
284     OL = OptimizationLevel::O1;
285     break;
286   case 2:
287     OL = OptimizationLevel::O2;
288     break;
289   case 3:
290     OL = OptimizationLevel::O3;
291     break;
292   }
293 
294   // Parse a custom pipeline if asked to.
295   if (!Conf.OptPipeline.empty()) {
296     if (auto Err = PB.parsePassPipeline(MPM, Conf.OptPipeline)) {
297       report_fatal_error(Twine("unable to parse pass pipeline description '") +
298                          Conf.OptPipeline + "': " + toString(std::move(Err)));
299     }
300   } else if (Conf.UseDefaultPipeline) {
301     MPM.addPass(PB.buildPerModuleDefaultPipeline(OL));
302   } else if (IsThinLTO) {
303     MPM.addPass(PB.buildThinLTODefaultPipeline(OL, ImportSummary));
304   } else {
305     MPM.addPass(PB.buildLTODefaultPipeline(OL, ExportSummary));
306   }
307 
308   if (!Conf.DisableVerify)
309     MPM.addPass(VerifierPass());
310 
311   MPM.run(Mod, MAM);
312 }
313 
314 bool lto::opt(const Config &Conf, TargetMachine *TM, unsigned Task, Module &Mod,
315               bool IsThinLTO, ModuleSummaryIndex *ExportSummary,
316               const ModuleSummaryIndex *ImportSummary,
317               const std::vector<uint8_t> &CmdArgs) {
318   if (EmbedBitcode == LTOBitcodeEmbedding::EmbedPostMergePreOptimized) {
319     // FIXME: the motivation for capturing post-merge bitcode and command line
320     // is replicating the compilation environment from bitcode, without needing
321     // to understand the dependencies (the functions to be imported). This
322     // assumes a clang - based invocation, case in which we have the command
323     // line.
324     // It's not very clear how the above motivation would map in the
325     // linker-based case, so we currently don't plumb the command line args in
326     // that case.
327     if (CmdArgs.empty())
328       LLVM_DEBUG(
329           dbgs() << "Post-(Thin)LTO merge bitcode embedding was requested, but "
330                     "command line arguments are not available");
331     llvm::embedBitcodeInModule(Mod, llvm::MemoryBufferRef(),
332                                /*EmbedBitcode*/ true, /*EmbedCmdline*/ true,
333                                /*Cmdline*/ CmdArgs);
334   }
335   // FIXME: Plumb the combined index into the new pass manager.
336   runNewPMPasses(Conf, Mod, TM, Conf.OptLevel, IsThinLTO, ExportSummary,
337                  ImportSummary);
338   return !Conf.PostOptModuleHook || Conf.PostOptModuleHook(Task, Mod);
339 }
340 
341 static void codegen(const Config &Conf, TargetMachine *TM,
342                     AddStreamFn AddStream, unsigned Task, Module &Mod,
343                     const ModuleSummaryIndex &CombinedIndex) {
344   if (Conf.PreCodeGenModuleHook && !Conf.PreCodeGenModuleHook(Task, Mod))
345     return;
346 
347   if (EmbedBitcode == LTOBitcodeEmbedding::EmbedOptimized)
348     llvm::embedBitcodeInModule(Mod, llvm::MemoryBufferRef(),
349                                /*EmbedBitcode*/ true,
350                                /*EmbedCmdline*/ false,
351                                /*CmdArgs*/ std::vector<uint8_t>());
352 
353   std::unique_ptr<ToolOutputFile> DwoOut;
354   SmallString<1024> DwoFile(Conf.SplitDwarfOutput);
355   if (!Conf.DwoDir.empty()) {
356     std::error_code EC;
357     if (auto EC = llvm::sys::fs::create_directories(Conf.DwoDir))
358       report_fatal_error(Twine("Failed to create directory ") + Conf.DwoDir +
359                          ": " + EC.message());
360 
361     DwoFile = Conf.DwoDir;
362     sys::path::append(DwoFile, std::to_string(Task) + ".dwo");
363     TM->Options.MCOptions.SplitDwarfFile = std::string(DwoFile);
364   } else
365     TM->Options.MCOptions.SplitDwarfFile = Conf.SplitDwarfFile;
366 
367   if (!DwoFile.empty()) {
368     std::error_code EC;
369     DwoOut = std::make_unique<ToolOutputFile>(DwoFile, EC, sys::fs::OF_None);
370     if (EC)
371       report_fatal_error(Twine("Failed to open ") + DwoFile + ": " +
372                          EC.message());
373   }
374 
375   Expected<std::unique_ptr<CachedFileStream>> StreamOrErr = AddStream(Task);
376   if (Error Err = StreamOrErr.takeError())
377     report_fatal_error(std::move(Err));
378   std::unique_ptr<CachedFileStream> &Stream = *StreamOrErr;
379   TM->Options.ObjectFilenameForDebug = Stream->ObjectPathName;
380 
381   legacy::PassManager CodeGenPasses;
382   TargetLibraryInfoImpl TLII(Triple(Mod.getTargetTriple()));
383   CodeGenPasses.add(new TargetLibraryInfoWrapperPass(TLII));
384   CodeGenPasses.add(
385       createImmutableModuleSummaryIndexWrapperPass(&CombinedIndex));
386   if (Conf.PreCodeGenPassesHook)
387     Conf.PreCodeGenPassesHook(CodeGenPasses);
388   if (TM->addPassesToEmitFile(CodeGenPasses, *Stream->OS,
389                               DwoOut ? &DwoOut->os() : nullptr,
390                               Conf.CGFileType))
391     report_fatal_error("Failed to setup codegen");
392   CodeGenPasses.run(Mod);
393 
394   if (DwoOut)
395     DwoOut->keep();
396 }
397 
398 static void splitCodeGen(const Config &C, TargetMachine *TM,
399                          AddStreamFn AddStream,
400                          unsigned ParallelCodeGenParallelismLevel, Module &Mod,
401                          const ModuleSummaryIndex &CombinedIndex) {
402   ThreadPool CodegenThreadPool(
403       heavyweight_hardware_concurrency(ParallelCodeGenParallelismLevel));
404   unsigned ThreadCount = 0;
405   const Target *T = &TM->getTarget();
406 
407   SplitModule(
408       Mod, ParallelCodeGenParallelismLevel,
409       [&](std::unique_ptr<Module> MPart) {
410         // We want to clone the module in a new context to multi-thread the
411         // codegen. We do it by serializing partition modules to bitcode
412         // (while still on the main thread, in order to avoid data races) and
413         // spinning up new threads which deserialize the partitions into
414         // separate contexts.
415         // FIXME: Provide a more direct way to do this in LLVM.
416         SmallString<0> BC;
417         raw_svector_ostream BCOS(BC);
418         WriteBitcodeToFile(*MPart, BCOS);
419 
420         // Enqueue the task
421         CodegenThreadPool.async(
422             [&](const SmallString<0> &BC, unsigned ThreadId) {
423               LTOLLVMContext Ctx(C);
424               Expected<std::unique_ptr<Module>> MOrErr = parseBitcodeFile(
425                   MemoryBufferRef(StringRef(BC.data(), BC.size()), "ld-temp.o"),
426                   Ctx);
427               if (!MOrErr)
428                 report_fatal_error("Failed to read bitcode");
429               std::unique_ptr<Module> MPartInCtx = std::move(MOrErr.get());
430 
431               std::unique_ptr<TargetMachine> TM =
432                   createTargetMachine(C, T, *MPartInCtx);
433 
434               codegen(C, TM.get(), AddStream, ThreadId, *MPartInCtx,
435                       CombinedIndex);
436             },
437             // Pass BC using std::move to ensure that it get moved rather than
438             // copied into the thread's context.
439             std::move(BC), ThreadCount++);
440       },
441       false);
442 
443   // Because the inner lambda (which runs in a worker thread) captures our local
444   // variables, we need to wait for the worker threads to terminate before we
445   // can leave the function scope.
446   CodegenThreadPool.wait();
447 }
448 
449 static Expected<const Target *> initAndLookupTarget(const Config &C,
450                                                     Module &Mod) {
451   if (!C.OverrideTriple.empty())
452     Mod.setTargetTriple(C.OverrideTriple);
453   else if (Mod.getTargetTriple().empty())
454     Mod.setTargetTriple(C.DefaultTriple);
455 
456   std::string Msg;
457   const Target *T = TargetRegistry::lookupTarget(Mod.getTargetTriple(), Msg);
458   if (!T)
459     return make_error<StringError>(Msg, inconvertibleErrorCode());
460   return T;
461 }
462 
463 Error lto::finalizeOptimizationRemarks(
464     std::unique_ptr<ToolOutputFile> DiagOutputFile) {
465   // Make sure we flush the diagnostic remarks file in case the linker doesn't
466   // call the global destructors before exiting.
467   if (!DiagOutputFile)
468     return Error::success();
469   DiagOutputFile->keep();
470   DiagOutputFile->os().flush();
471   return Error::success();
472 }
473 
474 Error lto::backend(const Config &C, AddStreamFn AddStream,
475                    unsigned ParallelCodeGenParallelismLevel, Module &Mod,
476                    ModuleSummaryIndex &CombinedIndex) {
477   Expected<const Target *> TOrErr = initAndLookupTarget(C, Mod);
478   if (!TOrErr)
479     return TOrErr.takeError();
480 
481   std::unique_ptr<TargetMachine> TM = createTargetMachine(C, *TOrErr, Mod);
482 
483   if (!C.CodeGenOnly) {
484     if (!opt(C, TM.get(), 0, Mod, /*IsThinLTO=*/false,
485              /*ExportSummary=*/&CombinedIndex, /*ImportSummary=*/nullptr,
486              /*CmdArgs*/ std::vector<uint8_t>()))
487       return Error::success();
488   }
489 
490   if (ParallelCodeGenParallelismLevel == 1) {
491     codegen(C, TM.get(), AddStream, 0, Mod, CombinedIndex);
492   } else {
493     splitCodeGen(C, TM.get(), AddStream, ParallelCodeGenParallelismLevel, Mod,
494                  CombinedIndex);
495   }
496   return Error::success();
497 }
498 
499 static void dropDeadSymbols(Module &Mod, const GVSummaryMapTy &DefinedGlobals,
500                             const ModuleSummaryIndex &Index) {
501   std::vector<GlobalValue*> DeadGVs;
502   for (auto &GV : Mod.global_values())
503     if (GlobalValueSummary *GVS = DefinedGlobals.lookup(GV.getGUID()))
504       if (!Index.isGlobalValueLive(GVS)) {
505         DeadGVs.push_back(&GV);
506         convertToDeclaration(GV);
507       }
508 
509   // Now that all dead bodies have been dropped, delete the actual objects
510   // themselves when possible.
511   for (GlobalValue *GV : DeadGVs) {
512     GV->removeDeadConstantUsers();
513     // Might reference something defined in native object (i.e. dropped a
514     // non-prevailing IR def, but we need to keep the declaration).
515     if (GV->use_empty())
516       GV->eraseFromParent();
517   }
518 }
519 
520 Error lto::thinBackend(const Config &Conf, unsigned Task, AddStreamFn AddStream,
521                        Module &Mod, const ModuleSummaryIndex &CombinedIndex,
522                        const FunctionImporter::ImportMapTy &ImportList,
523                        const GVSummaryMapTy &DefinedGlobals,
524                        MapVector<StringRef, BitcodeModule> *ModuleMap,
525                        const std::vector<uint8_t> &CmdArgs) {
526   Expected<const Target *> TOrErr = initAndLookupTarget(Conf, Mod);
527   if (!TOrErr)
528     return TOrErr.takeError();
529 
530   std::unique_ptr<TargetMachine> TM = createTargetMachine(Conf, *TOrErr, Mod);
531 
532   // Setup optimization remarks.
533   auto DiagFileOrErr = lto::setupLLVMOptimizationRemarks(
534       Mod.getContext(), Conf.RemarksFilename, Conf.RemarksPasses,
535       Conf.RemarksFormat, Conf.RemarksWithHotness, Conf.RemarksHotnessThreshold,
536       Task);
537   if (!DiagFileOrErr)
538     return DiagFileOrErr.takeError();
539   auto DiagnosticOutputFile = std::move(*DiagFileOrErr);
540 
541   // Set the partial sample profile ratio in the profile summary module flag of
542   // the module, if applicable.
543   Mod.setPartialSampleProfileRatio(CombinedIndex);
544 
545   if (Conf.CodeGenOnly) {
546     codegen(Conf, TM.get(), AddStream, Task, Mod, CombinedIndex);
547     return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
548   }
549 
550   if (Conf.PreOptModuleHook && !Conf.PreOptModuleHook(Task, Mod))
551     return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
552 
553   auto OptimizeAndCodegen =
554       [&](Module &Mod, TargetMachine *TM,
555           std::unique_ptr<ToolOutputFile> DiagnosticOutputFile) {
556         if (!opt(Conf, TM, Task, Mod, /*IsThinLTO=*/true,
557                  /*ExportSummary=*/nullptr, /*ImportSummary=*/&CombinedIndex,
558                  CmdArgs))
559           return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
560 
561         codegen(Conf, TM, AddStream, Task, Mod, CombinedIndex);
562         return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
563       };
564 
565   if (ThinLTOAssumeMerged)
566     return OptimizeAndCodegen(Mod, TM.get(), std::move(DiagnosticOutputFile));
567 
568   // When linking an ELF shared object, dso_local should be dropped. We
569   // conservatively do this for -fpic.
570   bool ClearDSOLocalOnDeclarations =
571       TM->getTargetTriple().isOSBinFormatELF() &&
572       TM->getRelocationModel() != Reloc::Static &&
573       Mod.getPIELevel() == PIELevel::Default;
574   renameModuleForThinLTO(Mod, CombinedIndex, ClearDSOLocalOnDeclarations);
575 
576   dropDeadSymbols(Mod, DefinedGlobals, CombinedIndex);
577 
578   thinLTOFinalizeInModule(Mod, DefinedGlobals, /*PropagateAttrs=*/true);
579 
580   if (Conf.PostPromoteModuleHook && !Conf.PostPromoteModuleHook(Task, Mod))
581     return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
582 
583   if (!DefinedGlobals.empty())
584     thinLTOInternalizeModule(Mod, DefinedGlobals);
585 
586   if (Conf.PostInternalizeModuleHook &&
587       !Conf.PostInternalizeModuleHook(Task, Mod))
588     return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
589 
590   auto ModuleLoader = [&](StringRef Identifier) {
591     assert(Mod.getContext().isODRUniquingDebugTypes() &&
592            "ODR Type uniquing should be enabled on the context");
593     if (ModuleMap) {
594       auto I = ModuleMap->find(Identifier);
595       assert(I != ModuleMap->end());
596       return I->second.getLazyModule(Mod.getContext(),
597                                      /*ShouldLazyLoadMetadata=*/true,
598                                      /*IsImporting*/ true);
599     }
600 
601     ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> MBOrErr =
602         llvm::MemoryBuffer::getFile(Identifier);
603     if (!MBOrErr)
604       return Expected<std::unique_ptr<llvm::Module>>(make_error<StringError>(
605           Twine("Error loading imported file ") + Identifier + " : ",
606           MBOrErr.getError()));
607 
608     Expected<BitcodeModule> BMOrErr = findThinLTOModule(**MBOrErr);
609     if (!BMOrErr)
610       return Expected<std::unique_ptr<llvm::Module>>(make_error<StringError>(
611           Twine("Error loading imported file ") + Identifier + " : " +
612               toString(BMOrErr.takeError()),
613           inconvertibleErrorCode()));
614 
615     Expected<std::unique_ptr<Module>> MOrErr =
616         BMOrErr->getLazyModule(Mod.getContext(),
617                                /*ShouldLazyLoadMetadata=*/true,
618                                /*IsImporting*/ true);
619     if (MOrErr)
620       (*MOrErr)->setOwnedMemoryBuffer(std::move(*MBOrErr));
621     return MOrErr;
622   };
623 
624   FunctionImporter Importer(CombinedIndex, ModuleLoader,
625                             ClearDSOLocalOnDeclarations);
626   if (Error Err = Importer.importFunctions(Mod, ImportList).takeError())
627     return Err;
628 
629   if (Conf.PostImportModuleHook && !Conf.PostImportModuleHook(Task, Mod))
630     return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
631 
632   return OptimizeAndCodegen(Mod, TM.get(), std::move(DiagnosticOutputFile));
633 }
634 
635 BitcodeModule *lto::findThinLTOModule(MutableArrayRef<BitcodeModule> BMs) {
636   if (ThinLTOAssumeMerged && BMs.size() == 1)
637     return BMs.begin();
638 
639   for (BitcodeModule &BM : BMs) {
640     Expected<BitcodeLTOInfo> LTOInfo = BM.getLTOInfo();
641     if (LTOInfo && LTOInfo->IsThinLTO)
642       return &BM;
643   }
644   return nullptr;
645 }
646 
647 Expected<BitcodeModule> lto::findThinLTOModule(MemoryBufferRef MBRef) {
648   Expected<std::vector<BitcodeModule>> BMsOrErr = getBitcodeModuleList(MBRef);
649   if (!BMsOrErr)
650     return BMsOrErr.takeError();
651 
652   // The bitcode file may contain multiple modules, we want the one that is
653   // marked as being the ThinLTO module.
654   if (const BitcodeModule *Bm = lto::findThinLTOModule(*BMsOrErr))
655     return *Bm;
656 
657   return make_error<StringError>("Could not find module summary",
658                                  inconvertibleErrorCode());
659 }
660 
661 bool lto::initImportList(const Module &M,
662                          const ModuleSummaryIndex &CombinedIndex,
663                          FunctionImporter::ImportMapTy &ImportList) {
664   if (ThinLTOAssumeMerged)
665     return true;
666   // We can simply import the values mentioned in the combined index, since
667   // we should only invoke this using the individual indexes written out
668   // via a WriteIndexesThinBackend.
669   for (const auto &GlobalList : CombinedIndex) {
670     // Ignore entries for undefined references.
671     if (GlobalList.second.SummaryList.empty())
672       continue;
673 
674     auto GUID = GlobalList.first;
675     for (const auto &Summary : GlobalList.second.SummaryList) {
676       // Skip the summaries for the importing module. These are included to
677       // e.g. record required linkage changes.
678       if (Summary->modulePath() == M.getModuleIdentifier())
679         continue;
680       // Add an entry to provoke importing by thinBackend.
681       ImportList[Summary->modulePath()].insert(GUID);
682     }
683   }
684   return true;
685 }
686