1 //===- opt.cpp - The LLVM Modular 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 // Optimizations may be specified an arbitrary number of times on the command 11 // line, They are run in the order specified. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "BreakpointPrinter.h" 16 #include "NewPMDriver.h" 17 #include "PassPrinters.h" 18 #include "llvm/ADT/Triple.h" 19 #include "llvm/Analysis/CallGraph.h" 20 #include "llvm/Analysis/CallGraphSCCPass.h" 21 #include "llvm/Analysis/LoopPass.h" 22 #include "llvm/Analysis/RegionPass.h" 23 #include "llvm/Analysis/TargetLibraryInfo.h" 24 #include "llvm/Analysis/TargetTransformInfo.h" 25 #include "llvm/Bitcode/BitcodeWriterPass.h" 26 #include "llvm/CodeGen/CommandFlags.def" 27 #include "llvm/CodeGen/TargetPassConfig.h" 28 #include "llvm/IR/DataLayout.h" 29 #include "llvm/IR/DebugInfo.h" 30 #include "llvm/IR/IRPrintingPasses.h" 31 #include "llvm/IR/LLVMContext.h" 32 #include "llvm/IR/LegacyPassManager.h" 33 #include "llvm/IR/LegacyPassNameParser.h" 34 #include "llvm/IR/Module.h" 35 #include "llvm/IR/Verifier.h" 36 #include "llvm/IRReader/IRReader.h" 37 #include "llvm/InitializePasses.h" 38 #include "llvm/LinkAllIR.h" 39 #include "llvm/LinkAllPasses.h" 40 #include "llvm/MC/SubtargetFeature.h" 41 #include "llvm/Support/Debug.h" 42 #include "llvm/Support/FileSystem.h" 43 #include "llvm/Support/Host.h" 44 #include "llvm/Support/ManagedStatic.h" 45 #include "llvm/Support/PluginLoader.h" 46 #include "llvm/Support/PrettyStackTrace.h" 47 #include "llvm/Support/Signals.h" 48 #include "llvm/Support/SourceMgr.h" 49 #include "llvm/Support/SystemUtils.h" 50 #include "llvm/Support/TargetRegistry.h" 51 #include "llvm/Support/TargetSelect.h" 52 #include "llvm/Support/ToolOutputFile.h" 53 #include "llvm/Support/YAMLTraits.h" 54 #include "llvm/Target/TargetMachine.h" 55 #include "llvm/Transforms/Coroutines.h" 56 #include "llvm/Transforms/IPO/AlwaysInliner.h" 57 #include "llvm/Transforms/IPO/PassManagerBuilder.h" 58 #include "llvm/Transforms/Utils/Cloning.h" 59 #include <algorithm> 60 #include <memory> 61 using namespace llvm; 62 using namespace opt_tool; 63 64 // The OptimizationList is automatically populated with registered Passes by the 65 // PassNameParser. 66 // 67 static cl::list<const PassInfo*, bool, PassNameParser> 68 PassList(cl::desc("Optimizations available:")); 69 70 // This flag specifies a textual description of the optimization pass pipeline 71 // to run over the module. This flag switches opt to use the new pass manager 72 // infrastructure, completely disabling all of the flags specific to the old 73 // pass management. 74 static cl::opt<std::string> PassPipeline( 75 "passes", 76 cl::desc("A textual description of the pass pipeline for optimizing"), 77 cl::Hidden); 78 79 // Other command line options... 80 // 81 static cl::opt<std::string> 82 InputFilename(cl::Positional, cl::desc("<input bitcode file>"), 83 cl::init("-"), cl::value_desc("filename")); 84 85 static cl::opt<std::string> 86 OutputFilename("o", cl::desc("Override output filename"), 87 cl::value_desc("filename")); 88 89 static cl::opt<bool> 90 Force("f", cl::desc("Enable binary output on terminals")); 91 92 static cl::opt<bool> 93 PrintEachXForm("p", cl::desc("Print module after each transformation")); 94 95 static cl::opt<bool> 96 NoOutput("disable-output", 97 cl::desc("Do not write result bitcode file"), cl::Hidden); 98 99 static cl::opt<bool> 100 OutputAssembly("S", cl::desc("Write output as LLVM assembly")); 101 102 static cl::opt<bool> 103 OutputThinLTOBC("thinlto-bc", 104 cl::desc("Write output as ThinLTO-ready bitcode")); 105 106 static cl::opt<std::string> ThinLinkBitcodeFile( 107 "thin-link-bitcode-file", cl::value_desc("filename"), 108 cl::desc( 109 "A file in which to write minimized bitcode for the thin link only")); 110 111 static cl::opt<bool> 112 NoVerify("disable-verify", cl::desc("Do not run the verifier"), cl::Hidden); 113 114 static cl::opt<bool> 115 VerifyEach("verify-each", cl::desc("Verify after each transform")); 116 117 static cl::opt<bool> 118 DisableDITypeMap("disable-debug-info-type-map", 119 cl::desc("Don't use a uniquing type map for debug info")); 120 121 static cl::opt<bool> 122 StripDebug("strip-debug", 123 cl::desc("Strip debugger symbol info from translation unit")); 124 125 static cl::opt<bool> 126 DisableInline("disable-inlining", cl::desc("Do not run the inliner pass")); 127 128 static cl::opt<bool> 129 DisableOptimizations("disable-opt", 130 cl::desc("Do not run any optimization passes")); 131 132 static cl::opt<bool> 133 StandardLinkOpts("std-link-opts", 134 cl::desc("Include the standard link time optimizations")); 135 136 static cl::opt<bool> 137 OptLevelO0("O0", 138 cl::desc("Optimization level 0. Similar to clang -O0")); 139 140 static cl::opt<bool> 141 OptLevelO1("O1", 142 cl::desc("Optimization level 1. Similar to clang -O1")); 143 144 static cl::opt<bool> 145 OptLevelO2("O2", 146 cl::desc("Optimization level 2. Similar to clang -O2")); 147 148 static cl::opt<bool> 149 OptLevelOs("Os", 150 cl::desc("Like -O2 with extra optimizations for size. Similar to clang -Os")); 151 152 static cl::opt<bool> 153 OptLevelOz("Oz", 154 cl::desc("Like -Os but reduces code size further. Similar to clang -Oz")); 155 156 static cl::opt<bool> 157 OptLevelO3("O3", 158 cl::desc("Optimization level 3. Similar to clang -O3")); 159 160 static cl::opt<unsigned> 161 CodeGenOptLevel("codegen-opt-level", 162 cl::desc("Override optimization level for codegen hooks")); 163 164 static cl::opt<std::string> 165 TargetTriple("mtriple", cl::desc("Override target triple for module")); 166 167 static cl::opt<bool> 168 UnitAtATime("funit-at-a-time", 169 cl::desc("Enable IPO. This corresponds to gcc's -funit-at-a-time"), 170 cl::init(true)); 171 172 static cl::opt<bool> 173 DisableLoopUnrolling("disable-loop-unrolling", 174 cl::desc("Disable loop unrolling in all relevant passes"), 175 cl::init(false)); 176 static cl::opt<bool> 177 DisableLoopVectorization("disable-loop-vectorization", 178 cl::desc("Disable the loop vectorization pass"), 179 cl::init(false)); 180 181 static cl::opt<bool> 182 DisableSLPVectorization("disable-slp-vectorization", 183 cl::desc("Disable the slp vectorization pass"), 184 cl::init(false)); 185 186 static cl::opt<bool> EmitSummaryIndex("module-summary", 187 cl::desc("Emit module summary index"), 188 cl::init(false)); 189 190 static cl::opt<bool> EmitModuleHash("module-hash", cl::desc("Emit module hash"), 191 cl::init(false)); 192 193 static cl::opt<bool> 194 DisableSimplifyLibCalls("disable-simplify-libcalls", 195 cl::desc("Disable simplify-libcalls")); 196 197 static cl::opt<bool> 198 Quiet("q", cl::desc("Obsolete option"), cl::Hidden); 199 200 static cl::alias 201 QuietA("quiet", cl::desc("Alias for -q"), cl::aliasopt(Quiet)); 202 203 static cl::opt<bool> 204 AnalyzeOnly("analyze", cl::desc("Only perform analysis, no optimization")); 205 206 static cl::opt<bool> 207 PrintBreakpoints("print-breakpoints-for-testing", 208 cl::desc("Print select breakpoints location for testing")); 209 210 static cl::opt<std::string> ClDataLayout("data-layout", 211 cl::desc("data layout string to use"), 212 cl::value_desc("layout-string"), 213 cl::init("")); 214 215 static cl::opt<bool> PreserveBitcodeUseListOrder( 216 "preserve-bc-uselistorder", 217 cl::desc("Preserve use-list order when writing LLVM bitcode."), 218 cl::init(true), cl::Hidden); 219 220 static cl::opt<bool> PreserveAssemblyUseListOrder( 221 "preserve-ll-uselistorder", 222 cl::desc("Preserve use-list order when writing LLVM assembly."), 223 cl::init(false), cl::Hidden); 224 225 static cl::opt<bool> 226 RunTwice("run-twice", 227 cl::desc("Run all passes twice, re-using the same pass manager."), 228 cl::init(false), cl::Hidden); 229 230 static cl::opt<bool> DiscardValueNames( 231 "discard-value-names", 232 cl::desc("Discard names from Value (other than GlobalValue)."), 233 cl::init(false), cl::Hidden); 234 235 static cl::opt<bool> Coroutines( 236 "enable-coroutines", 237 cl::desc("Enable coroutine passes."), 238 cl::init(false), cl::Hidden); 239 240 static cl::opt<bool> PassRemarksWithHotness( 241 "pass-remarks-with-hotness", 242 cl::desc("With PGO, include profile count in optimization remarks"), 243 cl::Hidden); 244 245 static cl::opt<unsigned> PassRemarksHotnessThreshold( 246 "pass-remarks-hotness-threshold", 247 cl::desc("Minimum profile count required for an optimization remark to be output"), 248 cl::Hidden); 249 250 static cl::opt<std::string> 251 RemarksFilename("pass-remarks-output", 252 cl::desc("YAML output filename for pass remarks"), 253 cl::value_desc("filename")); 254 255 static inline void addPass(legacy::PassManagerBase &PM, Pass *P) { 256 // Add the pass to the pass manager... 257 PM.add(P); 258 259 // If we are verifying all of the intermediate steps, add the verifier... 260 if (VerifyEach) 261 PM.add(createVerifierPass()); 262 } 263 264 /// This routine adds optimization passes based on selected optimization level, 265 /// OptLevel. 266 /// 267 /// OptLevel - Optimization Level 268 static void AddOptimizationPasses(legacy::PassManagerBase &MPM, 269 legacy::FunctionPassManager &FPM, 270 TargetMachine *TM, unsigned OptLevel, 271 unsigned SizeLevel) { 272 if (!NoVerify || VerifyEach) 273 FPM.add(createVerifierPass()); // Verify that input is correct 274 275 PassManagerBuilder Builder; 276 Builder.OptLevel = OptLevel; 277 Builder.SizeLevel = SizeLevel; 278 279 if (DisableInline) { 280 // No inlining pass 281 } else if (OptLevel > 1) { 282 Builder.Inliner = createFunctionInliningPass(OptLevel, SizeLevel, false); 283 } else { 284 Builder.Inliner = createAlwaysInlinerLegacyPass(); 285 } 286 Builder.DisableUnitAtATime = !UnitAtATime; 287 Builder.DisableUnrollLoops = (DisableLoopUnrolling.getNumOccurrences() > 0) ? 288 DisableLoopUnrolling : OptLevel == 0; 289 290 // This is final, unless there is a #pragma vectorize enable 291 if (DisableLoopVectorization) 292 Builder.LoopVectorize = false; 293 // If option wasn't forced via cmd line (-vectorize-loops, -loop-vectorize) 294 else if (!Builder.LoopVectorize) 295 Builder.LoopVectorize = OptLevel > 1 && SizeLevel < 2; 296 297 // When #pragma vectorize is on for SLP, do the same as above 298 Builder.SLPVectorize = 299 DisableSLPVectorization ? false : OptLevel > 1 && SizeLevel < 2; 300 301 if (TM) 302 TM->adjustPassManager(Builder); 303 304 if (Coroutines) 305 addCoroutinePassesToExtensionPoints(Builder); 306 307 Builder.populateFunctionPassManager(FPM); 308 Builder.populateModulePassManager(MPM); 309 } 310 311 static void AddStandardLinkPasses(legacy::PassManagerBase &PM) { 312 PassManagerBuilder Builder; 313 Builder.VerifyInput = true; 314 if (DisableOptimizations) 315 Builder.OptLevel = 0; 316 317 if (!DisableInline) 318 Builder.Inliner = createFunctionInliningPass(); 319 Builder.populateLTOPassManager(PM); 320 } 321 322 //===----------------------------------------------------------------------===// 323 // CodeGen-related helper functions. 324 // 325 326 static CodeGenOpt::Level GetCodeGenOptLevel() { 327 if (CodeGenOptLevel.getNumOccurrences()) 328 return static_cast<CodeGenOpt::Level>(unsigned(CodeGenOptLevel)); 329 if (OptLevelO1) 330 return CodeGenOpt::Less; 331 if (OptLevelO2) 332 return CodeGenOpt::Default; 333 if (OptLevelO3) 334 return CodeGenOpt::Aggressive; 335 return CodeGenOpt::None; 336 } 337 338 // Returns the TargetMachine instance or zero if no triple is provided. 339 static TargetMachine* GetTargetMachine(Triple TheTriple, StringRef CPUStr, 340 StringRef FeaturesStr, 341 const TargetOptions &Options) { 342 std::string Error; 343 const Target *TheTarget = TargetRegistry::lookupTarget(MArch, TheTriple, 344 Error); 345 // Some modules don't specify a triple, and this is okay. 346 if (!TheTarget) { 347 return nullptr; 348 } 349 350 return TheTarget->createTargetMachine(TheTriple.getTriple(), CPUStr, 351 FeaturesStr, Options, getRelocModel(), 352 getCodeModel(), GetCodeGenOptLevel()); 353 } 354 355 #ifdef LINK_POLLY_INTO_TOOLS 356 namespace polly { 357 void initializePollyPasses(llvm::PassRegistry &Registry); 358 } 359 #endif 360 361 //===----------------------------------------------------------------------===// 362 // main for opt 363 // 364 int main(int argc, char **argv) { 365 sys::PrintStackTraceOnErrorSignal(argv[0]); 366 llvm::PrettyStackTraceProgram X(argc, argv); 367 368 // Enable debug stream buffering. 369 EnableDebugBuffering = true; 370 371 llvm_shutdown_obj Y; // Call llvm_shutdown() on exit. 372 LLVMContext Context; 373 374 InitializeAllTargets(); 375 InitializeAllTargetMCs(); 376 InitializeAllAsmPrinters(); 377 InitializeAllAsmParsers(); 378 379 // Initialize passes 380 PassRegistry &Registry = *PassRegistry::getPassRegistry(); 381 initializeCore(Registry); 382 initializeCoroutines(Registry); 383 initializeScalarOpts(Registry); 384 initializeObjCARCOpts(Registry); 385 initializeVectorization(Registry); 386 initializeIPO(Registry); 387 initializeAnalysis(Registry); 388 initializeTransformUtils(Registry); 389 initializeInstCombine(Registry); 390 initializeInstrumentation(Registry); 391 initializeTarget(Registry); 392 // For codegen passes, only passes that do IR to IR transformation are 393 // supported. 394 initializeExpandMemCmpPassPass(Registry); 395 initializeScalarizeMaskedMemIntrinPass(Registry); 396 initializeCodeGenPreparePass(Registry); 397 initializeAtomicExpandPass(Registry); 398 initializeRewriteSymbolsLegacyPassPass(Registry); 399 initializeWinEHPreparePass(Registry); 400 initializeDwarfEHPreparePass(Registry); 401 initializeSafeStackLegacyPassPass(Registry); 402 initializeSjLjEHPreparePass(Registry); 403 initializePreISelIntrinsicLoweringLegacyPassPass(Registry); 404 initializeGlobalMergePass(Registry); 405 initializeIndirectBrExpandPassPass(Registry); 406 initializeInterleavedAccessPass(Registry); 407 initializeEntryExitInstrumenterPass(Registry); 408 initializePostInlineEntryExitInstrumenterPass(Registry); 409 initializeUnreachableBlockElimLegacyPassPass(Registry); 410 initializeExpandReductionsPass(Registry); 411 initializeWriteBitcodePassPass(Registry); 412 413 #ifdef LINK_POLLY_INTO_TOOLS 414 polly::initializePollyPasses(Registry); 415 #endif 416 417 cl::ParseCommandLineOptions(argc, argv, 418 "llvm .bc -> .bc modular optimizer and analysis printer\n"); 419 420 if (AnalyzeOnly && NoOutput) { 421 errs() << argv[0] << ": analyze mode conflicts with no-output mode.\n"; 422 return 1; 423 } 424 425 SMDiagnostic Err; 426 427 Context.setDiscardValueNames(DiscardValueNames); 428 if (!DisableDITypeMap) 429 Context.enableDebugTypeODRUniquing(); 430 431 if (PassRemarksWithHotness) 432 Context.setDiagnosticsHotnessRequested(true); 433 434 if (PassRemarksHotnessThreshold) 435 Context.setDiagnosticsHotnessThreshold(PassRemarksHotnessThreshold); 436 437 std::unique_ptr<ToolOutputFile> OptRemarkFile; 438 if (RemarksFilename != "") { 439 std::error_code EC; 440 OptRemarkFile = 441 llvm::make_unique<ToolOutputFile>(RemarksFilename, EC, sys::fs::F_None); 442 if (EC) { 443 errs() << EC.message() << '\n'; 444 return 1; 445 } 446 Context.setDiagnosticsOutputFile( 447 llvm::make_unique<yaml::Output>(OptRemarkFile->os())); 448 } 449 450 // Load the input module... 451 std::unique_ptr<Module> M = 452 parseIRFile(InputFilename, Err, Context, !NoVerify); 453 454 if (!M) { 455 Err.print(argv[0], errs()); 456 return 1; 457 } 458 459 // Strip debug info before running the verifier. 460 if (StripDebug) 461 StripDebugInfo(*M); 462 463 // Immediately run the verifier to catch any problems before starting up the 464 // pass pipelines. Otherwise we can crash on broken code during 465 // doInitialization(). 466 if (!NoVerify && verifyModule(*M, &errs())) { 467 errs() << argv[0] << ": " << InputFilename 468 << ": error: input module is broken!\n"; 469 return 1; 470 } 471 472 // If we are supposed to override the target triple or data layout, do so now. 473 if (!TargetTriple.empty()) 474 M->setTargetTriple(Triple::normalize(TargetTriple)); 475 if (!ClDataLayout.empty()) 476 M->setDataLayout(ClDataLayout); 477 478 // Figure out what stream we are supposed to write to... 479 std::unique_ptr<ToolOutputFile> Out; 480 std::unique_ptr<ToolOutputFile> ThinLinkOut; 481 if (NoOutput) { 482 if (!OutputFilename.empty()) 483 errs() << "WARNING: The -o (output filename) option is ignored when\n" 484 "the --disable-output option is used.\n"; 485 } else { 486 // Default to standard output. 487 if (OutputFilename.empty()) 488 OutputFilename = "-"; 489 490 std::error_code EC; 491 Out.reset(new ToolOutputFile(OutputFilename, EC, sys::fs::F_None)); 492 if (EC) { 493 errs() << EC.message() << '\n'; 494 return 1; 495 } 496 497 if (!ThinLinkBitcodeFile.empty()) { 498 ThinLinkOut.reset( 499 new ToolOutputFile(ThinLinkBitcodeFile, EC, sys::fs::F_None)); 500 if (EC) { 501 errs() << EC.message() << '\n'; 502 return 1; 503 } 504 } 505 } 506 507 Triple ModuleTriple(M->getTargetTriple()); 508 std::string CPUStr, FeaturesStr; 509 TargetMachine *Machine = nullptr; 510 const TargetOptions Options = InitTargetOptionsFromCodeGenFlags(); 511 512 if (ModuleTriple.getArch()) { 513 CPUStr = getCPUStr(); 514 FeaturesStr = getFeaturesStr(); 515 Machine = GetTargetMachine(ModuleTriple, CPUStr, FeaturesStr, Options); 516 } 517 518 std::unique_ptr<TargetMachine> TM(Machine); 519 520 // Override function attributes based on CPUStr, FeaturesStr, and command line 521 // flags. 522 setFunctionAttributes(CPUStr, FeaturesStr, *M); 523 524 // If the output is set to be emitted to standard out, and standard out is a 525 // console, print out a warning message and refuse to do it. We don't 526 // impress anyone by spewing tons of binary goo to a terminal. 527 if (!Force && !NoOutput && !AnalyzeOnly && !OutputAssembly) 528 if (CheckBitcodeOutputToConsole(Out->os(), !Quiet)) 529 NoOutput = true; 530 531 if (PassPipeline.getNumOccurrences() > 0) { 532 OutputKind OK = OK_NoOutput; 533 if (!NoOutput) 534 OK = OutputAssembly 535 ? OK_OutputAssembly 536 : (OutputThinLTOBC ? OK_OutputThinLTOBitcode : OK_OutputBitcode); 537 538 VerifierKind VK = VK_VerifyInAndOut; 539 if (NoVerify) 540 VK = VK_NoVerifier; 541 else if (VerifyEach) 542 VK = VK_VerifyEachPass; 543 544 // The user has asked to use the new pass manager and provided a pipeline 545 // string. Hand off the rest of the functionality to the new code for that 546 // layer. 547 return runPassPipeline(argv[0], *M, TM.get(), Out.get(), ThinLinkOut.get(), 548 OptRemarkFile.get(), PassPipeline, OK, VK, 549 PreserveAssemblyUseListOrder, 550 PreserveBitcodeUseListOrder, EmitSummaryIndex, 551 EmitModuleHash) 552 ? 0 553 : 1; 554 } 555 556 // Create a PassManager to hold and optimize the collection of passes we are 557 // about to build. 558 // 559 legacy::PassManager Passes; 560 561 // Add an appropriate TargetLibraryInfo pass for the module's triple. 562 TargetLibraryInfoImpl TLII(ModuleTriple); 563 564 // The -disable-simplify-libcalls flag actually disables all builtin optzns. 565 if (DisableSimplifyLibCalls) 566 TLII.disableAllFunctions(); 567 Passes.add(new TargetLibraryInfoWrapperPass(TLII)); 568 569 // Add internal analysis passes from the target machine. 570 Passes.add(createTargetTransformInfoWrapperPass(TM ? TM->getTargetIRAnalysis() 571 : TargetIRAnalysis())); 572 573 std::unique_ptr<legacy::FunctionPassManager> FPasses; 574 if (OptLevelO0 || OptLevelO1 || OptLevelO2 || OptLevelOs || OptLevelOz || 575 OptLevelO3) { 576 FPasses.reset(new legacy::FunctionPassManager(M.get())); 577 FPasses->add(createTargetTransformInfoWrapperPass( 578 TM ? TM->getTargetIRAnalysis() : TargetIRAnalysis())); 579 } 580 581 if (PrintBreakpoints) { 582 // Default to standard output. 583 if (!Out) { 584 if (OutputFilename.empty()) 585 OutputFilename = "-"; 586 587 std::error_code EC; 588 Out = llvm::make_unique<ToolOutputFile>(OutputFilename, EC, 589 sys::fs::F_None); 590 if (EC) { 591 errs() << EC.message() << '\n'; 592 return 1; 593 } 594 } 595 Passes.add(createBreakpointPrinter(Out->os())); 596 NoOutput = true; 597 } 598 599 if (TM) { 600 // FIXME: We should dyn_cast this when supported. 601 auto <M = static_cast<LLVMTargetMachine &>(*TM); 602 Pass *TPC = LTM.createPassConfig(Passes); 603 Passes.add(TPC); 604 } 605 606 // Create a new optimization pass for each one specified on the command line 607 for (unsigned i = 0; i < PassList.size(); ++i) { 608 if (StandardLinkOpts && 609 StandardLinkOpts.getPosition() < PassList.getPosition(i)) { 610 AddStandardLinkPasses(Passes); 611 StandardLinkOpts = false; 612 } 613 614 if (OptLevelO0 && OptLevelO0.getPosition() < PassList.getPosition(i)) { 615 AddOptimizationPasses(Passes, *FPasses, TM.get(), 0, 0); 616 OptLevelO0 = false; 617 } 618 619 if (OptLevelO1 && OptLevelO1.getPosition() < PassList.getPosition(i)) { 620 AddOptimizationPasses(Passes, *FPasses, TM.get(), 1, 0); 621 OptLevelO1 = false; 622 } 623 624 if (OptLevelO2 && OptLevelO2.getPosition() < PassList.getPosition(i)) { 625 AddOptimizationPasses(Passes, *FPasses, TM.get(), 2, 0); 626 OptLevelO2 = false; 627 } 628 629 if (OptLevelOs && OptLevelOs.getPosition() < PassList.getPosition(i)) { 630 AddOptimizationPasses(Passes, *FPasses, TM.get(), 2, 1); 631 OptLevelOs = false; 632 } 633 634 if (OptLevelOz && OptLevelOz.getPosition() < PassList.getPosition(i)) { 635 AddOptimizationPasses(Passes, *FPasses, TM.get(), 2, 2); 636 OptLevelOz = false; 637 } 638 639 if (OptLevelO3 && OptLevelO3.getPosition() < PassList.getPosition(i)) { 640 AddOptimizationPasses(Passes, *FPasses, TM.get(), 3, 0); 641 OptLevelO3 = false; 642 } 643 644 const PassInfo *PassInf = PassList[i]; 645 Pass *P = nullptr; 646 if (PassInf->getNormalCtor()) 647 P = PassInf->getNormalCtor()(); 648 else 649 errs() << argv[0] << ": cannot create pass: " 650 << PassInf->getPassName() << "\n"; 651 if (P) { 652 PassKind Kind = P->getPassKind(); 653 addPass(Passes, P); 654 655 if (AnalyzeOnly) { 656 switch (Kind) { 657 case PT_BasicBlock: 658 Passes.add(createBasicBlockPassPrinter(PassInf, Out->os(), Quiet)); 659 break; 660 case PT_Region: 661 Passes.add(createRegionPassPrinter(PassInf, Out->os(), Quiet)); 662 break; 663 case PT_Loop: 664 Passes.add(createLoopPassPrinter(PassInf, Out->os(), Quiet)); 665 break; 666 case PT_Function: 667 Passes.add(createFunctionPassPrinter(PassInf, Out->os(), Quiet)); 668 break; 669 case PT_CallGraphSCC: 670 Passes.add(createCallGraphPassPrinter(PassInf, Out->os(), Quiet)); 671 break; 672 default: 673 Passes.add(createModulePassPrinter(PassInf, Out->os(), Quiet)); 674 break; 675 } 676 } 677 } 678 679 if (PrintEachXForm) 680 Passes.add( 681 createPrintModulePass(errs(), "", PreserveAssemblyUseListOrder)); 682 } 683 684 if (StandardLinkOpts) { 685 AddStandardLinkPasses(Passes); 686 StandardLinkOpts = false; 687 } 688 689 if (OptLevelO0) 690 AddOptimizationPasses(Passes, *FPasses, TM.get(), 0, 0); 691 692 if (OptLevelO1) 693 AddOptimizationPasses(Passes, *FPasses, TM.get(), 1, 0); 694 695 if (OptLevelO2) 696 AddOptimizationPasses(Passes, *FPasses, TM.get(), 2, 0); 697 698 if (OptLevelOs) 699 AddOptimizationPasses(Passes, *FPasses, TM.get(), 2, 1); 700 701 if (OptLevelOz) 702 AddOptimizationPasses(Passes, *FPasses, TM.get(), 2, 2); 703 704 if (OptLevelO3) 705 AddOptimizationPasses(Passes, *FPasses, TM.get(), 3, 0); 706 707 if (FPasses) { 708 FPasses->doInitialization(); 709 for (Function &F : *M) 710 FPasses->run(F); 711 FPasses->doFinalization(); 712 } 713 714 // Check that the module is well formed on completion of optimization 715 if (!NoVerify && !VerifyEach) 716 Passes.add(createVerifierPass()); 717 718 // In run twice mode, we want to make sure the output is bit-by-bit 719 // equivalent if we run the pass manager again, so setup two buffers and 720 // a stream to write to them. Note that llc does something similar and it 721 // may be worth to abstract this out in the future. 722 SmallVector<char, 0> Buffer; 723 SmallVector<char, 0> CompileTwiceBuffer; 724 std::unique_ptr<raw_svector_ostream> BOS; 725 raw_ostream *OS = nullptr; 726 727 // Write bitcode or assembly to the output as the last step... 728 if (!NoOutput && !AnalyzeOnly) { 729 assert(Out); 730 OS = &Out->os(); 731 if (RunTwice) { 732 BOS = make_unique<raw_svector_ostream>(Buffer); 733 OS = BOS.get(); 734 } 735 if (OutputAssembly) { 736 if (EmitSummaryIndex) 737 report_fatal_error("Text output is incompatible with -module-summary"); 738 if (EmitModuleHash) 739 report_fatal_error("Text output is incompatible with -module-hash"); 740 Passes.add(createPrintModulePass(*OS, "", PreserveAssemblyUseListOrder)); 741 } else if (OutputThinLTOBC) 742 Passes.add(createWriteThinLTOBitcodePass( 743 *OS, ThinLinkOut ? &ThinLinkOut->os() : nullptr)); 744 else 745 Passes.add(createBitcodeWriterPass(*OS, PreserveBitcodeUseListOrder, 746 EmitSummaryIndex, EmitModuleHash)); 747 } 748 749 // Before executing passes, print the final values of the LLVM options. 750 cl::PrintOptionValues(); 751 752 // If requested, run all passes again with the same pass manager to catch 753 // bugs caused by persistent state in the passes 754 if (RunTwice) { 755 std::unique_ptr<Module> M2(CloneModule(M.get())); 756 Passes.run(*M2); 757 CompileTwiceBuffer = Buffer; 758 Buffer.clear(); 759 } 760 761 // Now that we have all of the passes ready, run them. 762 Passes.run(*M); 763 764 // Compare the two outputs and make sure they're the same 765 if (RunTwice) { 766 assert(Out); 767 if (Buffer.size() != CompileTwiceBuffer.size() || 768 (memcmp(Buffer.data(), CompileTwiceBuffer.data(), Buffer.size()) != 769 0)) { 770 errs() << "Running the pass manager twice changed the output.\n" 771 "Writing the result of the second run to the specified output.\n" 772 "To generate the one-run comparison binary, just run without\n" 773 "the compile-twice option\n"; 774 Out->os() << BOS->str(); 775 Out->keep(); 776 if (OptRemarkFile) 777 OptRemarkFile->keep(); 778 return 1; 779 } 780 Out->os() << BOS->str(); 781 } 782 783 // Declare success. 784 if (!NoOutput || PrintBreakpoints) 785 Out->keep(); 786 787 if (OptRemarkFile) 788 OptRemarkFile->keep(); 789 790 if (ThinLinkOut) 791 ThinLinkOut->keep(); 792 793 return 0; 794 } 795