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/SmallVectorMemoryBuffer.h" 41 #include "llvm/Support/ThreadPool.h" 42 #include "llvm/Support/raw_ostream.h" 43 #include "llvm/Target/TargetMachine.h" 44 #include "llvm/Transforms/IPO.h" 45 #include "llvm/Transforms/IPO/PassManagerBuilder.h" 46 #include "llvm/Transforms/Scalar/LoopPassManager.h" 47 #include "llvm/Transforms/Utils/FunctionImportUtils.h" 48 #include "llvm/Transforms/Utils/SplitModule.h" 49 50 using namespace llvm; 51 using namespace lto; 52 53 #define DEBUG_TYPE "lto-backend" 54 55 enum class LTOBitcodeEmbedding { 56 DoNotEmbed = 0, 57 EmbedOptimized = 1, 58 EmbedPostMergePreOptimized = 2 59 }; 60 61 static cl::opt<LTOBitcodeEmbedding> EmbedBitcode( 62 "lto-embed-bitcode", cl::init(LTOBitcodeEmbedding::DoNotEmbed), 63 cl::values(clEnumValN(LTOBitcodeEmbedding::DoNotEmbed, "none", 64 "Do not embed"), 65 clEnumValN(LTOBitcodeEmbedding::EmbedOptimized, "optimized", 66 "Embed after all optimization passes"), 67 clEnumValN(LTOBitcodeEmbedding::EmbedPostMergePreOptimized, 68 "post-merge-pre-opt", 69 "Embed post merge, but before optimizations")), 70 cl::desc("Embed LLVM bitcode in object files produced by LTO")); 71 72 static cl::opt<bool> ThinLTOAssumeMerged( 73 "thinlto-assume-merged", cl::init(false), 74 cl::desc("Assume the input has already undergone ThinLTO function " 75 "importing and the other pre-optimization pipeline changes.")); 76 77 namespace llvm { 78 extern cl::opt<bool> NoPGOWarnMismatch; 79 } 80 81 [[noreturn]] static void reportOpenError(StringRef Path, Twine Msg) { 82 errs() << "failed to open " << Path << ": " << Msg << '\n'; 83 errs().flush(); 84 exit(1); 85 } 86 87 Error Config::addSaveTemps(std::string OutputFileName, 88 bool UseInputModulePath) { 89 ShouldDiscardValueNames = false; 90 91 std::error_code EC; 92 ResolutionFile = 93 std::make_unique<raw_fd_ostream>(OutputFileName + "resolution.txt", EC, 94 sys::fs::OpenFlags::OF_TextWithCRLF); 95 if (EC) { 96 ResolutionFile.reset(); 97 return errorCodeToError(EC); 98 } 99 100 auto setHook = [&](std::string PathSuffix, ModuleHookFn &Hook) { 101 // Keep track of the hook provided by the linker, which also needs to run. 102 ModuleHookFn LinkerHook = Hook; 103 Hook = [=](unsigned Task, const Module &M) { 104 // If the linker's hook returned false, we need to pass that result 105 // through. 106 if (LinkerHook && !LinkerHook(Task, M)) 107 return false; 108 109 std::string PathPrefix; 110 // If this is the combined module (not a ThinLTO backend compile) or the 111 // user hasn't requested using the input module's path, emit to a file 112 // named from the provided OutputFileName with the Task ID appended. 113 if (M.getModuleIdentifier() == "ld-temp.o" || !UseInputModulePath) { 114 PathPrefix = OutputFileName; 115 if (Task != (unsigned)-1) 116 PathPrefix += utostr(Task) + "."; 117 } else 118 PathPrefix = M.getModuleIdentifier() + "."; 119 std::string Path = PathPrefix + PathSuffix + ".bc"; 120 std::error_code EC; 121 raw_fd_ostream OS(Path, EC, sys::fs::OpenFlags::OF_None); 122 // Because -save-temps is a debugging feature, we report the error 123 // directly and exit. 124 if (EC) 125 reportOpenError(Path, EC.message()); 126 WriteBitcodeToFile(M, OS, /*ShouldPreserveUseListOrder=*/false); 127 return true; 128 }; 129 }; 130 131 setHook("0.preopt", PreOptModuleHook); 132 setHook("1.promote", PostPromoteModuleHook); 133 setHook("2.internalize", PostInternalizeModuleHook); 134 setHook("3.import", PostImportModuleHook); 135 setHook("4.opt", PostOptModuleHook); 136 setHook("5.precodegen", PreCodeGenModuleHook); 137 138 CombinedIndexHook = 139 [=](const ModuleSummaryIndex &Index, 140 const DenseSet<GlobalValue::GUID> &GUIDPreservedSymbols) { 141 std::string Path = OutputFileName + "index.bc"; 142 std::error_code EC; 143 raw_fd_ostream OS(Path, EC, sys::fs::OpenFlags::OF_None); 144 // Because -save-temps is a debugging feature, we report the error 145 // directly and exit. 146 if (EC) 147 reportOpenError(Path, EC.message()); 148 WriteIndexToFile(Index, OS); 149 150 Path = OutputFileName + "index.dot"; 151 raw_fd_ostream OSDot(Path, EC, sys::fs::OpenFlags::OF_None); 152 if (EC) 153 reportOpenError(Path, EC.message()); 154 Index.exportToDot(OSDot, GUIDPreservedSymbols); 155 return true; 156 }; 157 158 return Error::success(); 159 } 160 161 #define HANDLE_EXTENSION(Ext) \ 162 llvm::PassPluginLibraryInfo get##Ext##PluginInfo(); 163 #include "llvm/Support/Extension.def" 164 165 static void RegisterPassPlugins(ArrayRef<std::string> PassPlugins, 166 PassBuilder &PB) { 167 #define HANDLE_EXTENSION(Ext) \ 168 get##Ext##PluginInfo().RegisterPassBuilderCallbacks(PB); 169 #include "llvm/Support/Extension.def" 170 171 // Load requested pass plugins and let them register pass builder callbacks 172 for (auto &PluginFN : PassPlugins) { 173 auto PassPlugin = PassPlugin::Load(PluginFN); 174 if (!PassPlugin) { 175 errs() << "Failed to load passes from '" << PluginFN 176 << "'. Request ignored.\n"; 177 continue; 178 } 179 180 PassPlugin->registerPassBuilderCallbacks(PB); 181 } 182 } 183 184 static std::unique_ptr<TargetMachine> 185 createTargetMachine(const Config &Conf, const Target *TheTarget, Module &M) { 186 StringRef TheTriple = M.getTargetTriple(); 187 SubtargetFeatures Features; 188 Features.getDefaultSubtargetFeatures(Triple(TheTriple)); 189 for (const std::string &A : Conf.MAttrs) 190 Features.AddFeature(A); 191 192 Optional<Reloc::Model> RelocModel = None; 193 if (Conf.RelocModel) 194 RelocModel = *Conf.RelocModel; 195 else if (M.getModuleFlag("PIC Level")) 196 RelocModel = 197 M.getPICLevel() == PICLevel::NotPIC ? Reloc::Static : Reloc::PIC_; 198 199 Optional<CodeModel::Model> CodeModel; 200 if (Conf.CodeModel) 201 CodeModel = *Conf.CodeModel; 202 else 203 CodeModel = M.getCodeModel(); 204 205 std::unique_ptr<TargetMachine> TM(TheTarget->createTargetMachine( 206 TheTriple, Conf.CPU, Features.getString(), Conf.Options, RelocModel, 207 CodeModel, Conf.CGOptLevel)); 208 assert(TM && "Failed to create target machine"); 209 return TM; 210 } 211 212 static void runNewPMPasses(const Config &Conf, Module &Mod, TargetMachine *TM, 213 unsigned OptLevel, bool IsThinLTO, 214 ModuleSummaryIndex *ExportSummary, 215 const ModuleSummaryIndex *ImportSummary) { 216 Optional<PGOOptions> PGOOpt; 217 if (!Conf.SampleProfile.empty()) 218 PGOOpt = PGOOptions(Conf.SampleProfile, "", Conf.ProfileRemapping, 219 PGOOptions::SampleUse, PGOOptions::NoCSAction, true); 220 else if (Conf.RunCSIRInstr) { 221 PGOOpt = PGOOptions("", Conf.CSIRProfile, Conf.ProfileRemapping, 222 PGOOptions::IRUse, PGOOptions::CSIRInstr, 223 Conf.AddFSDiscriminator); 224 } else if (!Conf.CSIRProfile.empty()) { 225 PGOOpt = PGOOptions(Conf.CSIRProfile, "", Conf.ProfileRemapping, 226 PGOOptions::IRUse, PGOOptions::CSIRUse, 227 Conf.AddFSDiscriminator); 228 NoPGOWarnMismatch = !Conf.PGOWarnMismatch; 229 } else if (Conf.AddFSDiscriminator) { 230 PGOOpt = PGOOptions("", "", "", PGOOptions::NoAction, 231 PGOOptions::NoCSAction, true); 232 } 233 if (TM) 234 TM->setPGOOption(PGOOpt); 235 236 LoopAnalysisManager LAM; 237 FunctionAnalysisManager FAM; 238 CGSCCAnalysisManager CGAM; 239 ModuleAnalysisManager MAM; 240 241 PassInstrumentationCallbacks PIC; 242 StandardInstrumentations SI(Conf.DebugPassManager); 243 SI.registerCallbacks(PIC, &FAM); 244 PassBuilder PB(TM, Conf.PTO, PGOOpt, &PIC); 245 246 RegisterPassPlugins(Conf.PassPlugins, PB); 247 248 std::unique_ptr<TargetLibraryInfoImpl> TLII( 249 new TargetLibraryInfoImpl(Triple(TM->getTargetTriple()))); 250 if (Conf.Freestanding) 251 TLII->disableAllFunctions(); 252 FAM.registerPass([&] { return TargetLibraryAnalysis(*TLII); }); 253 254 // Parse a custom AA pipeline if asked to. 255 if (!Conf.AAPipeline.empty()) { 256 AAManager AA; 257 if (auto Err = PB.parseAAPipeline(AA, Conf.AAPipeline)) { 258 report_fatal_error(Twine("unable to parse AA pipeline description '") + 259 Conf.AAPipeline + "': " + toString(std::move(Err))); 260 } 261 // Register the AA manager first so that our version is the one used. 262 FAM.registerPass([&] { return std::move(AA); }); 263 } 264 265 // Register all the basic analyses with the managers. 266 PB.registerModuleAnalyses(MAM); 267 PB.registerCGSCCAnalyses(CGAM); 268 PB.registerFunctionAnalyses(FAM); 269 PB.registerLoopAnalyses(LAM); 270 PB.crossRegisterProxies(LAM, FAM, CGAM, MAM); 271 272 ModulePassManager MPM; 273 274 if (!Conf.DisableVerify) 275 MPM.addPass(VerifierPass()); 276 277 OptimizationLevel OL; 278 279 switch (OptLevel) { 280 default: 281 llvm_unreachable("Invalid optimization level"); 282 case 0: 283 OL = OptimizationLevel::O0; 284 break; 285 case 1: 286 OL = OptimizationLevel::O1; 287 break; 288 case 2: 289 OL = OptimizationLevel::O2; 290 break; 291 case 3: 292 OL = OptimizationLevel::O3; 293 break; 294 } 295 296 // Parse a custom pipeline if asked to. 297 if (!Conf.OptPipeline.empty()) { 298 if (auto Err = PB.parsePassPipeline(MPM, Conf.OptPipeline)) { 299 report_fatal_error(Twine("unable to parse pass pipeline description '") + 300 Conf.OptPipeline + "': " + toString(std::move(Err))); 301 } 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 static void runOldPMPasses(const Config &Conf, Module &Mod, TargetMachine *TM, 315 bool IsThinLTO, ModuleSummaryIndex *ExportSummary, 316 const ModuleSummaryIndex *ImportSummary) { 317 legacy::PassManager passes; 318 passes.add(createTargetTransformInfoWrapperPass(TM->getTargetIRAnalysis())); 319 320 PassManagerBuilder PMB; 321 PMB.LibraryInfo = new TargetLibraryInfoImpl(Triple(TM->getTargetTriple())); 322 if (Conf.Freestanding) 323 PMB.LibraryInfo->disableAllFunctions(); 324 PMB.Inliner = createFunctionInliningPass(); 325 PMB.ExportSummary = ExportSummary; 326 PMB.ImportSummary = ImportSummary; 327 // Unconditionally verify input since it is not verified before this 328 // point and has unknown origin. 329 PMB.VerifyInput = true; 330 PMB.VerifyOutput = !Conf.DisableVerify; 331 PMB.LoopVectorize = true; 332 PMB.SLPVectorize = true; 333 PMB.OptLevel = Conf.OptLevel; 334 PMB.PGOSampleUse = Conf.SampleProfile; 335 PMB.EnablePGOCSInstrGen = Conf.RunCSIRInstr; 336 if (!Conf.RunCSIRInstr && !Conf.CSIRProfile.empty()) { 337 PMB.EnablePGOCSInstrUse = true; 338 PMB.PGOInstrUse = Conf.CSIRProfile; 339 } 340 if (IsThinLTO) 341 PMB.populateThinLTOPassManager(passes); 342 else 343 PMB.populateLTOPassManager(passes); 344 passes.run(Mod); 345 } 346 347 bool lto::opt(const Config &Conf, TargetMachine *TM, unsigned Task, Module &Mod, 348 bool IsThinLTO, ModuleSummaryIndex *ExportSummary, 349 const ModuleSummaryIndex *ImportSummary, 350 const std::vector<uint8_t> &CmdArgs) { 351 if (EmbedBitcode == LTOBitcodeEmbedding::EmbedPostMergePreOptimized) { 352 // FIXME: the motivation for capturing post-merge bitcode and command line 353 // is replicating the compilation environment from bitcode, without needing 354 // to understand the dependencies (the functions to be imported). This 355 // assumes a clang - based invocation, case in which we have the command 356 // line. 357 // It's not very clear how the above motivation would map in the 358 // linker-based case, so we currently don't plumb the command line args in 359 // that case. 360 if (CmdArgs.empty()) 361 LLVM_DEBUG( 362 dbgs() << "Post-(Thin)LTO merge bitcode embedding was requested, but " 363 "command line arguments are not available"); 364 llvm::EmbedBitcodeInModule(Mod, llvm::MemoryBufferRef(), 365 /*EmbedBitcode*/ true, /*EmbedCmdline*/ true, 366 /*Cmdline*/ CmdArgs); 367 } 368 // FIXME: Plumb the combined index into the new pass manager. 369 if (Conf.UseNewPM || !Conf.OptPipeline.empty()) { 370 runNewPMPasses(Conf, Mod, TM, Conf.OptLevel, IsThinLTO, ExportSummary, 371 ImportSummary); 372 } else { 373 runOldPMPasses(Conf, Mod, TM, IsThinLTO, ExportSummary, ImportSummary); 374 } 375 return !Conf.PostOptModuleHook || Conf.PostOptModuleHook(Task, Mod); 376 } 377 378 static void codegen(const Config &Conf, TargetMachine *TM, 379 AddStreamFn AddStream, unsigned Task, Module &Mod, 380 const ModuleSummaryIndex &CombinedIndex) { 381 if (Conf.PreCodeGenModuleHook && !Conf.PreCodeGenModuleHook(Task, Mod)) 382 return; 383 384 if (EmbedBitcode == LTOBitcodeEmbedding::EmbedOptimized) 385 llvm::EmbedBitcodeInModule(Mod, llvm::MemoryBufferRef(), 386 /*EmbedBitcode*/ true, 387 /*EmbedCmdline*/ false, 388 /*CmdArgs*/ std::vector<uint8_t>()); 389 390 std::unique_ptr<ToolOutputFile> DwoOut; 391 SmallString<1024> DwoFile(Conf.SplitDwarfOutput); 392 if (!Conf.DwoDir.empty()) { 393 std::error_code EC; 394 if (auto EC = llvm::sys::fs::create_directories(Conf.DwoDir)) 395 report_fatal_error(Twine("Failed to create directory ") + Conf.DwoDir + 396 ": " + EC.message()); 397 398 DwoFile = Conf.DwoDir; 399 sys::path::append(DwoFile, std::to_string(Task) + ".dwo"); 400 TM->Options.MCOptions.SplitDwarfFile = std::string(DwoFile); 401 } else 402 TM->Options.MCOptions.SplitDwarfFile = Conf.SplitDwarfFile; 403 404 if (!DwoFile.empty()) { 405 std::error_code EC; 406 DwoOut = std::make_unique<ToolOutputFile>(DwoFile, EC, sys::fs::OF_None); 407 if (EC) 408 report_fatal_error(Twine("Failed to open ") + DwoFile + ": " + 409 EC.message()); 410 } 411 412 Expected<std::unique_ptr<CachedFileStream>> StreamOrErr = AddStream(Task); 413 if (Error Err = StreamOrErr.takeError()) 414 report_fatal_error(std::move(Err)); 415 std::unique_ptr<CachedFileStream> &Stream = *StreamOrErr; 416 legacy::PassManager CodeGenPasses; 417 CodeGenPasses.add( 418 createImmutableModuleSummaryIndexWrapperPass(&CombinedIndex)); 419 if (Conf.PreCodeGenPassesHook) 420 Conf.PreCodeGenPassesHook(CodeGenPasses); 421 if (TM->addPassesToEmitFile(CodeGenPasses, *Stream->OS, 422 DwoOut ? &DwoOut->os() : nullptr, 423 Conf.CGFileType)) 424 report_fatal_error("Failed to setup codegen"); 425 CodeGenPasses.run(Mod); 426 427 if (DwoOut) 428 DwoOut->keep(); 429 } 430 431 static void splitCodeGen(const Config &C, TargetMachine *TM, 432 AddStreamFn AddStream, 433 unsigned ParallelCodeGenParallelismLevel, Module &Mod, 434 const ModuleSummaryIndex &CombinedIndex) { 435 ThreadPool CodegenThreadPool( 436 heavyweight_hardware_concurrency(ParallelCodeGenParallelismLevel)); 437 unsigned ThreadCount = 0; 438 const Target *T = &TM->getTarget(); 439 440 SplitModule( 441 Mod, ParallelCodeGenParallelismLevel, 442 [&](std::unique_ptr<Module> MPart) { 443 // We want to clone the module in a new context to multi-thread the 444 // codegen. We do it by serializing partition modules to bitcode 445 // (while still on the main thread, in order to avoid data races) and 446 // spinning up new threads which deserialize the partitions into 447 // separate contexts. 448 // FIXME: Provide a more direct way to do this in LLVM. 449 SmallString<0> BC; 450 raw_svector_ostream BCOS(BC); 451 WriteBitcodeToFile(*MPart, BCOS); 452 453 // Enqueue the task 454 CodegenThreadPool.async( 455 [&](const SmallString<0> &BC, unsigned ThreadId) { 456 LTOLLVMContext Ctx(C); 457 Expected<std::unique_ptr<Module>> MOrErr = parseBitcodeFile( 458 MemoryBufferRef(StringRef(BC.data(), BC.size()), "ld-temp.o"), 459 Ctx); 460 if (!MOrErr) 461 report_fatal_error("Failed to read bitcode"); 462 std::unique_ptr<Module> MPartInCtx = std::move(MOrErr.get()); 463 464 std::unique_ptr<TargetMachine> TM = 465 createTargetMachine(C, T, *MPartInCtx); 466 467 codegen(C, TM.get(), AddStream, ThreadId, *MPartInCtx, 468 CombinedIndex); 469 }, 470 // Pass BC using std::move to ensure that it get moved rather than 471 // copied into the thread's context. 472 std::move(BC), ThreadCount++); 473 }, 474 false); 475 476 // Because the inner lambda (which runs in a worker thread) captures our local 477 // variables, we need to wait for the worker threads to terminate before we 478 // can leave the function scope. 479 CodegenThreadPool.wait(); 480 } 481 482 static Expected<const Target *> initAndLookupTarget(const Config &C, 483 Module &Mod) { 484 if (!C.OverrideTriple.empty()) 485 Mod.setTargetTriple(C.OverrideTriple); 486 else if (Mod.getTargetTriple().empty()) 487 Mod.setTargetTriple(C.DefaultTriple); 488 489 std::string Msg; 490 const Target *T = TargetRegistry::lookupTarget(Mod.getTargetTriple(), Msg); 491 if (!T) 492 return make_error<StringError>(Msg, inconvertibleErrorCode()); 493 return T; 494 } 495 496 Error lto::finalizeOptimizationRemarks( 497 std::unique_ptr<ToolOutputFile> DiagOutputFile) { 498 // Make sure we flush the diagnostic remarks file in case the linker doesn't 499 // call the global destructors before exiting. 500 if (!DiagOutputFile) 501 return Error::success(); 502 DiagOutputFile->keep(); 503 DiagOutputFile->os().flush(); 504 return Error::success(); 505 } 506 507 Error lto::backend(const Config &C, AddStreamFn AddStream, 508 unsigned ParallelCodeGenParallelismLevel, Module &Mod, 509 ModuleSummaryIndex &CombinedIndex) { 510 Expected<const Target *> TOrErr = initAndLookupTarget(C, Mod); 511 if (!TOrErr) 512 return TOrErr.takeError(); 513 514 std::unique_ptr<TargetMachine> TM = createTargetMachine(C, *TOrErr, Mod); 515 516 if (!C.CodeGenOnly) { 517 if (!opt(C, TM.get(), 0, Mod, /*IsThinLTO=*/false, 518 /*ExportSummary=*/&CombinedIndex, /*ImportSummary=*/nullptr, 519 /*CmdArgs*/ std::vector<uint8_t>())) 520 return Error::success(); 521 } 522 523 if (ParallelCodeGenParallelismLevel == 1) { 524 codegen(C, TM.get(), AddStream, 0, Mod, CombinedIndex); 525 } else { 526 splitCodeGen(C, TM.get(), AddStream, ParallelCodeGenParallelismLevel, Mod, 527 CombinedIndex); 528 } 529 return Error::success(); 530 } 531 532 static void dropDeadSymbols(Module &Mod, const GVSummaryMapTy &DefinedGlobals, 533 const ModuleSummaryIndex &Index) { 534 std::vector<GlobalValue*> DeadGVs; 535 for (auto &GV : Mod.global_values()) 536 if (GlobalValueSummary *GVS = DefinedGlobals.lookup(GV.getGUID())) 537 if (!Index.isGlobalValueLive(GVS)) { 538 DeadGVs.push_back(&GV); 539 convertToDeclaration(GV); 540 } 541 542 // Now that all dead bodies have been dropped, delete the actual objects 543 // themselves when possible. 544 for (GlobalValue *GV : DeadGVs) { 545 GV->removeDeadConstantUsers(); 546 // Might reference something defined in native object (i.e. dropped a 547 // non-prevailing IR def, but we need to keep the declaration). 548 if (GV->use_empty()) 549 GV->eraseFromParent(); 550 } 551 } 552 553 Error lto::thinBackend(const Config &Conf, unsigned Task, AddStreamFn AddStream, 554 Module &Mod, const ModuleSummaryIndex &CombinedIndex, 555 const FunctionImporter::ImportMapTy &ImportList, 556 const GVSummaryMapTy &DefinedGlobals, 557 MapVector<StringRef, BitcodeModule> *ModuleMap, 558 const std::vector<uint8_t> &CmdArgs) { 559 Expected<const Target *> TOrErr = initAndLookupTarget(Conf, Mod); 560 if (!TOrErr) 561 return TOrErr.takeError(); 562 563 std::unique_ptr<TargetMachine> TM = createTargetMachine(Conf, *TOrErr, Mod); 564 565 // Setup optimization remarks. 566 auto DiagFileOrErr = lto::setupLLVMOptimizationRemarks( 567 Mod.getContext(), Conf.RemarksFilename, Conf.RemarksPasses, 568 Conf.RemarksFormat, Conf.RemarksWithHotness, Conf.RemarksHotnessThreshold, 569 Task); 570 if (!DiagFileOrErr) 571 return DiagFileOrErr.takeError(); 572 auto DiagnosticOutputFile = std::move(*DiagFileOrErr); 573 574 // Set the partial sample profile ratio in the profile summary module flag of 575 // the module, if applicable. 576 Mod.setPartialSampleProfileRatio(CombinedIndex); 577 578 if (Conf.CodeGenOnly) { 579 codegen(Conf, TM.get(), AddStream, Task, Mod, CombinedIndex); 580 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 581 } 582 583 if (Conf.PreOptModuleHook && !Conf.PreOptModuleHook(Task, Mod)) 584 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 585 586 auto OptimizeAndCodegen = 587 [&](Module &Mod, TargetMachine *TM, 588 std::unique_ptr<ToolOutputFile> DiagnosticOutputFile) { 589 if (!opt(Conf, TM, Task, Mod, /*IsThinLTO=*/true, 590 /*ExportSummary=*/nullptr, /*ImportSummary=*/&CombinedIndex, 591 CmdArgs)) 592 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 593 594 codegen(Conf, TM, AddStream, Task, Mod, CombinedIndex); 595 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 596 }; 597 598 if (ThinLTOAssumeMerged) 599 return OptimizeAndCodegen(Mod, TM.get(), std::move(DiagnosticOutputFile)); 600 601 // When linking an ELF shared object, dso_local should be dropped. We 602 // conservatively do this for -fpic. 603 bool ClearDSOLocalOnDeclarations = 604 TM->getTargetTriple().isOSBinFormatELF() && 605 TM->getRelocationModel() != Reloc::Static && 606 Mod.getPIELevel() == PIELevel::Default; 607 renameModuleForThinLTO(Mod, CombinedIndex, ClearDSOLocalOnDeclarations); 608 609 dropDeadSymbols(Mod, DefinedGlobals, CombinedIndex); 610 611 thinLTOFinalizeInModule(Mod, DefinedGlobals, /*PropagateAttrs=*/true); 612 613 if (Conf.PostPromoteModuleHook && !Conf.PostPromoteModuleHook(Task, Mod)) 614 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 615 616 if (!DefinedGlobals.empty()) 617 thinLTOInternalizeModule(Mod, DefinedGlobals); 618 619 if (Conf.PostInternalizeModuleHook && 620 !Conf.PostInternalizeModuleHook(Task, Mod)) 621 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 622 623 auto ModuleLoader = [&](StringRef Identifier) { 624 assert(Mod.getContext().isODRUniquingDebugTypes() && 625 "ODR Type uniquing should be enabled on the context"); 626 if (ModuleMap) { 627 auto I = ModuleMap->find(Identifier); 628 assert(I != ModuleMap->end()); 629 return I->second.getLazyModule(Mod.getContext(), 630 /*ShouldLazyLoadMetadata=*/true, 631 /*IsImporting*/ true); 632 } 633 634 ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> MBOrErr = 635 llvm::MemoryBuffer::getFile(Identifier); 636 if (!MBOrErr) 637 return Expected<std::unique_ptr<llvm::Module>>(make_error<StringError>( 638 Twine("Error loading imported file ") + Identifier + " : ", 639 MBOrErr.getError())); 640 641 Expected<BitcodeModule> BMOrErr = findThinLTOModule(**MBOrErr); 642 if (!BMOrErr) 643 return Expected<std::unique_ptr<llvm::Module>>(make_error<StringError>( 644 Twine("Error loading imported file ") + Identifier + " : " + 645 toString(BMOrErr.takeError()), 646 inconvertibleErrorCode())); 647 648 Expected<std::unique_ptr<Module>> MOrErr = 649 BMOrErr->getLazyModule(Mod.getContext(), 650 /*ShouldLazyLoadMetadata=*/true, 651 /*IsImporting*/ true); 652 if (MOrErr) 653 (*MOrErr)->setOwnedMemoryBuffer(std::move(*MBOrErr)); 654 return MOrErr; 655 }; 656 657 FunctionImporter Importer(CombinedIndex, ModuleLoader, 658 ClearDSOLocalOnDeclarations); 659 if (Error Err = Importer.importFunctions(Mod, ImportList).takeError()) 660 return Err; 661 662 if (Conf.PostImportModuleHook && !Conf.PostImportModuleHook(Task, Mod)) 663 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile)); 664 665 return OptimizeAndCodegen(Mod, TM.get(), std::move(DiagnosticOutputFile)); 666 } 667 668 BitcodeModule *lto::findThinLTOModule(MutableArrayRef<BitcodeModule> BMs) { 669 if (ThinLTOAssumeMerged && BMs.size() == 1) 670 return BMs.begin(); 671 672 for (BitcodeModule &BM : BMs) { 673 Expected<BitcodeLTOInfo> LTOInfo = BM.getLTOInfo(); 674 if (LTOInfo && LTOInfo->IsThinLTO) 675 return &BM; 676 } 677 return nullptr; 678 } 679 680 Expected<BitcodeModule> lto::findThinLTOModule(MemoryBufferRef MBRef) { 681 Expected<std::vector<BitcodeModule>> BMsOrErr = getBitcodeModuleList(MBRef); 682 if (!BMsOrErr) 683 return BMsOrErr.takeError(); 684 685 // The bitcode file may contain multiple modules, we want the one that is 686 // marked as being the ThinLTO module. 687 if (const BitcodeModule *Bm = lto::findThinLTOModule(*BMsOrErr)) 688 return *Bm; 689 690 return make_error<StringError>("Could not find module summary", 691 inconvertibleErrorCode()); 692 } 693 694 bool lto::initImportList(const Module &M, 695 const ModuleSummaryIndex &CombinedIndex, 696 FunctionImporter::ImportMapTy &ImportList) { 697 if (ThinLTOAssumeMerged) 698 return true; 699 // We can simply import the values mentioned in the combined index, since 700 // we should only invoke this using the individual indexes written out 701 // via a WriteIndexesThinBackend. 702 for (const auto &GlobalList : CombinedIndex) { 703 // Ignore entries for undefined references. 704 if (GlobalList.second.SummaryList.empty()) 705 continue; 706 707 auto GUID = GlobalList.first; 708 for (const auto &Summary : GlobalList.second.SummaryList) { 709 // Skip the summaries for the importing module. These are included to 710 // e.g. record required linkage changes. 711 if (Summary->modulePath() == M.getModuleIdentifier()) 712 continue; 713 // Add an entry to provoke importing by thinBackend. 714 ImportList[Summary->modulePath()].insert(GUID); 715 } 716 } 717 return true; 718 } 719