LLVM 22.0.0git
LTOBackend.cpp
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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"
27#include "llvm/IR/PassManager.h"
28#include "llvm/IR/Verifier.h"
29#include "llvm/LTO/LTO.h"
35#include "llvm/Support/Error.h"
38#include "llvm/Support/Path.h"
48#include <optional>
49
50using namespace llvm;
51using namespace lto;
52
53#define DEBUG_TYPE "lto-backend"
54
60
62 "lto-embed-bitcode", cl::init(LTOBitcodeEmbedding::DoNotEmbed),
64 "Do not embed"),
66 "Embed after all optimization passes"),
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
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
77namespace llvm {
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
87Error Config::addSaveTemps(std::string OutputFileName, bool UseInputModulePath,
88 const DenseSet<StringRef> &SaveTempsArgs) {
90
91 std::error_code EC;
92 if (SaveTempsArgs.empty() || SaveTempsArgs.contains("resolution")) {
94 std::make_unique<raw_fd_ostream>(OutputFileName + "resolution.txt", EC,
96 if (EC) {
97 ResolutionFile.reset();
98 return errorCodeToError(EC);
99 }
100 }
101
102 auto setHook = [&](std::string PathSuffix, ModuleHookFn &Hook) {
103 // Keep track of the hook provided by the linker, which also needs to run.
104 ModuleHookFn LinkerHook = Hook;
105 Hook = [=](unsigned Task, const Module &M) {
106 // If the linker's hook returned false, we need to pass that result
107 // through.
108 if (LinkerHook && !LinkerHook(Task, M))
109 return false;
110
111 std::string PathPrefix;
112 // If this is the combined module (not a ThinLTO backend compile) or the
113 // user hasn't requested using the input module's path, emit to a file
114 // named from the provided OutputFileName with the Task ID appended.
115 if (M.getModuleIdentifier() == "ld-temp.o" || !UseInputModulePath) {
116 PathPrefix = OutputFileName;
117 if (Task != (unsigned)-1)
118 PathPrefix += utostr(Task) + ".";
119 } else
120 PathPrefix = M.getModuleIdentifier() + ".";
121 std::string Path = PathPrefix + PathSuffix + ".bc";
122 std::error_code EC;
124 // Because -save-temps is a debugging feature, we report the error
125 // directly and exit.
126 if (EC)
127 reportOpenError(Path, EC.message());
128 WriteBitcodeToFile(M, OS, /*ShouldPreserveUseListOrder=*/false);
129 return true;
130 };
131 };
132
133 auto SaveCombinedIndex =
134 [=](const ModuleSummaryIndex &Index,
135 const DenseSet<GlobalValue::GUID> &GUIDPreservedSymbols) {
136 std::string Path = OutputFileName + "index.bc";
137 std::error_code EC;
139 // Because -save-temps is a debugging feature, we report the error
140 // directly and exit.
141 if (EC)
142 reportOpenError(Path, EC.message());
143 writeIndexToFile(Index, OS);
144
145 Path = OutputFileName + "index.dot";
147 if (EC)
148 reportOpenError(Path, EC.message());
149 Index.exportToDot(OSDot, GUIDPreservedSymbols);
150 return true;
151 };
152
153 if (SaveTempsArgs.empty()) {
154 setHook("0.preopt", PreOptModuleHook);
155 setHook("1.promote", PostPromoteModuleHook);
156 setHook("2.internalize", PostInternalizeModuleHook);
157 setHook("3.import", PostImportModuleHook);
158 setHook("4.opt", PostOptModuleHook);
159 setHook("5.precodegen", PreCodeGenModuleHook);
160 CombinedIndexHook = SaveCombinedIndex;
161 } else {
162 if (SaveTempsArgs.contains("preopt"))
163 setHook("0.preopt", PreOptModuleHook);
164 if (SaveTempsArgs.contains("promote"))
165 setHook("1.promote", PostPromoteModuleHook);
166 if (SaveTempsArgs.contains("internalize"))
167 setHook("2.internalize", PostInternalizeModuleHook);
168 if (SaveTempsArgs.contains("import"))
169 setHook("3.import", PostImportModuleHook);
170 if (SaveTempsArgs.contains("opt"))
171 setHook("4.opt", PostOptModuleHook);
172 if (SaveTempsArgs.contains("precodegen"))
173 setHook("5.precodegen", PreCodeGenModuleHook);
174 if (SaveTempsArgs.contains("combinedindex"))
175 CombinedIndexHook = SaveCombinedIndex;
176 }
177
178 return Error::success();
179}
180
181#define HANDLE_EXTENSION(Ext) \
182 llvm::PassPluginLibraryInfo get##Ext##PluginInfo();
183#include "llvm/Support/Extension.def"
184#undef HANDLE_EXTENSION
185
187 PassBuilder &PB) {
188#define HANDLE_EXTENSION(Ext) \
189 get##Ext##PluginInfo().RegisterPassBuilderCallbacks(PB);
190#include "llvm/Support/Extension.def"
191#undef HANDLE_EXTENSION
192
193 // Load requested pass plugins and let them register pass builder callbacks
194 for (auto &PluginFN : PassPlugins) {
195 auto PassPlugin = PassPlugin::Load(PluginFN);
196 if (!PassPlugin)
199 }
200}
201
202static std::unique_ptr<TargetMachine>
203createTargetMachine(const Config &Conf, const Target *TheTarget, Module &M) {
204 const Triple &TheTriple = M.getTargetTriple();
205 SubtargetFeatures Features;
206 Features.getDefaultSubtargetFeatures(TheTriple);
207 for (const std::string &A : Conf.MAttrs)
208 Features.AddFeature(A);
209
210 std::optional<Reloc::Model> RelocModel;
211 if (Conf.RelocModel)
212 RelocModel = *Conf.RelocModel;
213 else if (M.getModuleFlag("PIC Level"))
214 RelocModel =
215 M.getPICLevel() == PICLevel::NotPIC ? Reloc::Static : Reloc::PIC_;
216
217 std::optional<CodeModel::Model> CodeModel;
218 if (Conf.CodeModel)
219 CodeModel = *Conf.CodeModel;
220 else
221 CodeModel = M.getCodeModel();
222
223 TargetOptions TargetOpts = Conf.Options;
224 if (TargetOpts.MCOptions.ABIName.empty()) {
225 TargetOpts.MCOptions.ABIName = M.getTargetABIFromMD();
226 }
227
228 std::unique_ptr<TargetMachine> TM(TheTarget->createTargetMachine(
229 TheTriple, Conf.CPU, Features.getString(), TargetOpts, RelocModel,
230 CodeModel, Conf.CGOptLevel));
231
232 assert(TM && "Failed to create target machine");
233
234 if (std::optional<uint64_t> LargeDataThreshold = M.getLargeDataThreshold())
235 TM->setLargeDataThreshold(*LargeDataThreshold);
236
237 return TM;
238}
239
240static void runNewPMPasses(const Config &Conf, Module &Mod, TargetMachine *TM,
241 unsigned OptLevel, bool IsThinLTO,
242 ModuleSummaryIndex *ExportSummary,
243 const ModuleSummaryIndex *ImportSummary) {
244 std::optional<PGOOptions> PGOOpt;
245 if (!Conf.SampleProfile.empty())
246 PGOOpt = PGOOptions(Conf.SampleProfile, "", Conf.ProfileRemapping,
247 /*MemoryProfile=*/"", PGOOptions::SampleUse,
250 else if (Conf.RunCSIRInstr) {
251 PGOOpt = PGOOptions("", Conf.CSIRProfile, Conf.ProfileRemapping,
252 /*MemoryProfile=*/"", PGOOptions::IRUse,
254 Conf.AddFSDiscriminator);
255 } else if (!Conf.CSIRProfile.empty()) {
256 PGOOpt =
258 /*MemoryProfile=*/"", PGOOptions::IRUse, PGOOptions::CSIRUse,
261 } else if (Conf.AddFSDiscriminator) {
262 PGOOpt = PGOOptions("", "", "", /*MemoryProfile=*/"", PGOOptions::NoAction,
265 }
266 TM->setPGOOption(PGOOpt);
267
272
275 Conf.VerifyEach);
276 SI.registerCallbacks(PIC, &MAM);
277 PassBuilder PB(TM, Conf.PTO, PGOOpt, &PIC);
278
280
281 std::unique_ptr<TargetLibraryInfoImpl> TLII(
283 if (Conf.Freestanding)
284 TLII->disableAllFunctions();
285 FAM.registerPass([&] { return TargetLibraryAnalysis(*TLII); });
286
287 // Parse a custom AA pipeline if asked to.
288 if (!Conf.AAPipeline.empty()) {
290 if (auto Err = PB.parseAAPipeline(AA, Conf.AAPipeline)) {
291 report_fatal_error(Twine("unable to parse AA pipeline description '") +
292 Conf.AAPipeline + "': " + toString(std::move(Err)));
293 }
294 // Register the AA manager first so that our version is the one used.
295 FAM.registerPass([&] { return std::move(AA); });
296 }
297
298 // Register all the basic analyses with the managers.
299 PB.registerModuleAnalyses(MAM);
300 PB.registerCGSCCAnalyses(CGAM);
301 PB.registerFunctionAnalyses(FAM);
302 PB.registerLoopAnalyses(LAM);
303 PB.crossRegisterProxies(LAM, FAM, CGAM, MAM);
304
306
307 if (!Conf.DisableVerify)
308 MPM.addPass(VerifierPass());
309
311
312 switch (OptLevel) {
313 default:
314 llvm_unreachable("Invalid optimization level");
315 case 0:
317 break;
318 case 1:
320 break;
321 case 2:
323 break;
324 case 3:
326 break;
327 }
328
329 // Parse a custom pipeline if asked to.
330 if (!Conf.OptPipeline.empty()) {
331 if (auto Err = PB.parsePassPipeline(MPM, Conf.OptPipeline)) {
332 report_fatal_error(Twine("unable to parse pass pipeline description '") +
333 Conf.OptPipeline + "': " + toString(std::move(Err)));
334 }
335 } else if (IsThinLTO) {
336 MPM.addPass(PB.buildThinLTODefaultPipeline(OL, ImportSummary));
337 } else {
338 MPM.addPass(PB.buildLTODefaultPipeline(OL, ExportSummary));
339 }
340
341 if (!Conf.DisableVerify)
342 MPM.addPass(VerifierPass());
343
345 std::string PipelineStr;
346 raw_string_ostream OS(PipelineStr);
347 MPM.printPipeline(OS, [&PIC](StringRef ClassName) {
348 auto PassName = PIC.getPassNameForClassName(ClassName);
349 return PassName.empty() ? ClassName : PassName;
350 });
351 outs() << "pipeline-passes: " << PipelineStr << '\n';
352 }
353
354 MPM.run(Mod, MAM);
355}
356
357static bool isEmptyModule(const Module &Mod) {
358 // Module is empty if it has no functions, no globals, no inline asm and no
359 // named metadata (aliases and ifuncs require functions or globals so we
360 // don't need to check those explicitly).
361 return Mod.empty() && Mod.global_empty() && Mod.named_metadata_empty() &&
362 Mod.getModuleInlineAsm().empty();
363}
364
365bool lto::opt(const Config &Conf, TargetMachine *TM, unsigned Task, Module &Mod,
366 bool IsThinLTO, ModuleSummaryIndex *ExportSummary,
367 const ModuleSummaryIndex *ImportSummary,
368 const std::vector<uint8_t> &CmdArgs) {
369 llvm::TimeTraceScope timeScope("opt");
371 // FIXME: the motivation for capturing post-merge bitcode and command line
372 // is replicating the compilation environment from bitcode, without needing
373 // to understand the dependencies (the functions to be imported). This
374 // assumes a clang - based invocation, case in which we have the command
375 // line.
376 // It's not very clear how the above motivation would map in the
377 // linker-based case, so we currently don't plumb the command line args in
378 // that case.
379 if (CmdArgs.empty())
381 dbgs() << "Post-(Thin)LTO merge bitcode embedding was requested, but "
382 "command line arguments are not available");
384 /*EmbedBitcode*/ true, /*EmbedCmdline*/ true,
385 /*Cmdline*/ CmdArgs);
386 }
387 // No need to run any opt passes if the module is empty.
388 // In theory these passes should take almost no time for an empty
389 // module, however, this guards against doing any unnecessary summary-based
390 // analysis in the case of a ThinLTO build where this might be an empty
391 // regular LTO combined module, with a large combined index from ThinLTO.
392 if (!isEmptyModule(Mod)) {
393 // FIXME: Plumb the combined index into the new pass manager.
394 runNewPMPasses(Conf, Mod, TM, Conf.OptLevel, IsThinLTO, ExportSummary,
395 ImportSummary);
396 }
397 return !Conf.PostOptModuleHook || Conf.PostOptModuleHook(Task, Mod);
398}
399
400static void codegen(const Config &Conf, TargetMachine *TM,
401 AddStreamFn AddStream, unsigned Task, Module &Mod,
402 const ModuleSummaryIndex &CombinedIndex) {
403 llvm::TimeTraceScope timeScope("codegen");
404 if (Conf.PreCodeGenModuleHook && !Conf.PreCodeGenModuleHook(Task, Mod))
405 return;
406
409 /*EmbedBitcode*/ true,
410 /*EmbedCmdline*/ false,
411 /*CmdArgs*/ std::vector<uint8_t>());
412
413 std::unique_ptr<ToolOutputFile> DwoOut;
415 if (!Conf.DwoDir.empty()) {
416 std::error_code EC;
417 if (auto EC = llvm::sys::fs::create_directories(Conf.DwoDir))
418 report_fatal_error(Twine("Failed to create directory ") + Conf.DwoDir +
419 ": " + EC.message());
420
421 DwoFile = Conf.DwoDir;
422 sys::path::append(DwoFile, std::to_string(Task) + ".dwo");
423 TM->Options.MCOptions.SplitDwarfFile = std::string(DwoFile);
424 } else
426
427 if (!DwoFile.empty()) {
428 std::error_code EC;
429 DwoOut = std::make_unique<ToolOutputFile>(DwoFile, EC, sys::fs::OF_None);
430 if (EC)
431 report_fatal_error(Twine("Failed to open ") + DwoFile + ": " +
432 EC.message());
433 }
434
436 AddStream(Task, Mod.getModuleIdentifier());
437 if (Error Err = StreamOrErr.takeError())
438 report_fatal_error(std::move(Err));
439 std::unique_ptr<CachedFileStream> &Stream = *StreamOrErr;
440 TM->Options.ObjectFilenameForDebug = Stream->ObjectPathName;
441
442 // Create the codegen pipeline in its own scope so it gets deleted before
443 // Stream->commit() is called. The commit function of CacheStream deletes
444 // the raw stream, which is too early as streamers (e.g. MCAsmStreamer)
445 // keep the pointer and may use it until their destruction. See #138194.
446 {
447 legacy::PassManager CodeGenPasses;
448 TargetLibraryInfoImpl TLII(Mod.getTargetTriple());
449 CodeGenPasses.add(new TargetLibraryInfoWrapperPass(TLII));
450 CodeGenPasses.add(new RuntimeLibraryInfoWrapper(
451 Mod.getTargetTriple(), TM->Options.ExceptionModel,
454
455 // No need to make index available if the module is empty.
456 // In theory these passes should not use the index for an empty
457 // module, however, this guards against doing any unnecessary summary-based
458 // analysis in the case of a ThinLTO build where this might be an empty
459 // regular LTO combined module, with a large combined index from ThinLTO.
460 if (!isEmptyModule(Mod))
461 CodeGenPasses.add(
463 if (Conf.PreCodeGenPassesHook)
464 Conf.PreCodeGenPassesHook(CodeGenPasses);
465 if (TM->addPassesToEmitFile(CodeGenPasses, *Stream->OS,
466 DwoOut ? &DwoOut->os() : nullptr,
467 Conf.CGFileType))
468 report_fatal_error("Failed to setup codegen");
469 CodeGenPasses.run(Mod);
470
471 if (DwoOut)
472 DwoOut->keep();
473 }
474
475 if (Error Err = Stream->commit())
476 report_fatal_error(std::move(Err));
477}
478
479static void splitCodeGen(const Config &C, TargetMachine *TM,
480 AddStreamFn AddStream,
481 unsigned ParallelCodeGenParallelismLevel, Module &Mod,
482 const ModuleSummaryIndex &CombinedIndex) {
483 DefaultThreadPool CodegenThreadPool(
484 heavyweight_hardware_concurrency(ParallelCodeGenParallelismLevel));
485 unsigned ThreadCount = 0;
486 const Target *T = &TM->getTarget();
487
488 const auto HandleModulePartition =
489 [&](std::unique_ptr<Module> MPart) {
490 // We want to clone the module in a new context to multi-thread the
491 // codegen. We do it by serializing partition modules to bitcode
492 // (while still on the main thread, in order to avoid data races) and
493 // spinning up new threads which deserialize the partitions into
494 // separate contexts.
495 // FIXME: Provide a more direct way to do this in LLVM.
497 raw_svector_ostream BCOS(BC);
498 WriteBitcodeToFile(*MPart, BCOS);
499
500 // Enqueue the task
501 CodegenThreadPool.async(
502 [&](const SmallString<0> &BC, unsigned ThreadId) {
503 LTOLLVMContext Ctx(C);
505 parseBitcodeFile(MemoryBufferRef(BC.str(), "ld-temp.o"), Ctx);
506 if (!MOrErr)
507 report_fatal_error("Failed to read bitcode");
508 std::unique_ptr<Module> MPartInCtx = std::move(MOrErr.get());
509
510 std::unique_ptr<TargetMachine> TM =
511 createTargetMachine(C, T, *MPartInCtx);
512
513 codegen(C, TM.get(), AddStream, ThreadId, *MPartInCtx,
514 CombinedIndex);
515 },
516 // Pass BC using std::move to ensure that it get moved rather than
517 // copied into the thread's context.
518 std::move(BC), ThreadCount++);
519 };
520
521 // Try target-specific module splitting first, then fallback to the default.
522 if (!TM->splitModule(Mod, ParallelCodeGenParallelismLevel,
523 HandleModulePartition)) {
524 SplitModule(Mod, ParallelCodeGenParallelismLevel, HandleModulePartition,
525 false);
526 }
527
528 // Because the inner lambda (which runs in a worker thread) captures our local
529 // variables, we need to wait for the worker threads to terminate before we
530 // can leave the function scope.
531 CodegenThreadPool.wait();
532}
533
535 Module &Mod) {
536 if (!C.OverrideTriple.empty())
537 Mod.setTargetTriple(Triple(C.OverrideTriple));
538 else if (Mod.getTargetTriple().empty())
539 Mod.setTargetTriple(Triple(C.DefaultTriple));
540
541 std::string Msg;
542 const Target *T = TargetRegistry::lookupTarget(Mod.getTargetTriple(), Msg);
543 if (!T)
545 return T;
546}
547
549 // Make sure we flush the diagnostic remarks file in case the linker doesn't
550 // call the global destructors before exiting.
551 if (!DiagOutputFile)
552 return Error::success();
553 DiagOutputFile.finalize();
554 DiagOutputFile->keep();
555 DiagOutputFile->os().flush();
556 return Error::success();
557}
558
560 unsigned ParallelCodeGenParallelismLevel, Module &Mod,
561 ModuleSummaryIndex &CombinedIndex) {
562 llvm::TimeTraceScope timeScope("LTO backend");
564 if (!TOrErr)
565 return TOrErr.takeError();
566
567 std::unique_ptr<TargetMachine> TM = createTargetMachine(C, *TOrErr, Mod);
568
569 LLVM_DEBUG(dbgs() << "Running regular LTO\n");
570 if (!C.CodeGenOnly) {
571 if (!opt(C, TM.get(), 0, Mod, /*IsThinLTO=*/false,
572 /*ExportSummary=*/&CombinedIndex, /*ImportSummary=*/nullptr,
573 /*CmdArgs*/ std::vector<uint8_t>()))
574 return Error::success();
575 }
576
577 if (ParallelCodeGenParallelismLevel == 1) {
578 codegen(C, TM.get(), AddStream, 0, Mod, CombinedIndex);
579 } else {
580 splitCodeGen(C, TM.get(), AddStream, ParallelCodeGenParallelismLevel, Mod,
581 CombinedIndex);
582 }
583 return Error::success();
584}
585
586static void dropDeadSymbols(Module &Mod, const GVSummaryMapTy &DefinedGlobals,
587 const ModuleSummaryIndex &Index) {
588 llvm::TimeTraceScope timeScope("Drop dead symbols");
589 std::vector<GlobalValue*> DeadGVs;
590 for (auto &GV : Mod.global_values())
591 if (GlobalValueSummary *GVS = DefinedGlobals.lookup(GV.getGUID()))
592 if (!Index.isGlobalValueLive(GVS)) {
593 DeadGVs.push_back(&GV);
595 }
596
597 // Now that all dead bodies have been dropped, delete the actual objects
598 // themselves when possible.
599 for (GlobalValue *GV : DeadGVs) {
600 GV->removeDeadConstantUsers();
601 // Might reference something defined in native object (i.e. dropped a
602 // non-prevailing IR def, but we need to keep the declaration).
603 if (GV->use_empty())
604 GV->eraseFromParent();
605 }
606}
607
608Error lto::thinBackend(const Config &Conf, unsigned Task, AddStreamFn AddStream,
609 Module &Mod, const ModuleSummaryIndex &CombinedIndex,
610 const FunctionImporter::ImportMapTy &ImportList,
611 const GVSummaryMapTy &DefinedGlobals,
613 bool CodeGenOnly, AddStreamFn IRAddStream,
614 const std::vector<uint8_t> &CmdArgs) {
615 llvm::TimeTraceScope timeScope("Thin backend", Mod.getModuleIdentifier());
617 if (!TOrErr)
618 return TOrErr.takeError();
619
620 std::unique_ptr<TargetMachine> TM = createTargetMachine(Conf, *TOrErr, Mod);
621
622 // Setup optimization remarks.
623 auto DiagFileOrErr = lto::setupLLVMOptimizationRemarks(
624 Mod.getContext(), Conf.RemarksFilename, Conf.RemarksPasses,
626 Task);
627 if (!DiagFileOrErr)
628 return DiagFileOrErr.takeError();
629 auto DiagnosticOutputFile = std::move(*DiagFileOrErr);
630
631 // Set the partial sample profile ratio in the profile summary module flag of
632 // the module, if applicable.
633 Mod.setPartialSampleProfileRatio(CombinedIndex);
634
635 LLVM_DEBUG(dbgs() << "Running ThinLTO\n");
636 if (CodeGenOnly) {
637 // If CodeGenOnly is set, we only perform code generation and skip
638 // optimization. This value may differ from Conf.CodeGenOnly.
639 codegen(Conf, TM.get(), AddStream, Task, Mod, CombinedIndex);
640 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
641 }
642
643 if (Conf.PreOptModuleHook && !Conf.PreOptModuleHook(Task, Mod))
644 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
645
646 auto OptimizeAndCodegen =
647 [&](Module &Mod, TargetMachine *TM,
648 LLVMRemarkFileHandle DiagnosticOutputFile) {
649 // Perform optimization and code generation for ThinLTO.
650 if (!opt(Conf, TM, Task, Mod, /*IsThinLTO=*/true,
651 /*ExportSummary=*/nullptr, /*ImportSummary=*/&CombinedIndex,
652 CmdArgs))
653 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
654
655 // Save the current module before the first codegen round.
656 // Note that the second codegen round runs only `codegen()` without
657 // running `opt()`. We're not reaching here as it's bailed out earlier
658 // with `CodeGenOnly` which has been set in `SecondRoundThinBackend`.
659 if (IRAddStream)
660 cgdata::saveModuleForTwoRounds(Mod, Task, IRAddStream);
661
662 codegen(Conf, TM, AddStream, Task, Mod, CombinedIndex);
663 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
664 };
665
667 return OptimizeAndCodegen(Mod, TM.get(), std::move(DiagnosticOutputFile));
668
669 // When linking an ELF shared object, dso_local should be dropped. We
670 // conservatively do this for -fpic.
671 bool ClearDSOLocalOnDeclarations =
672 TM->getTargetTriple().isOSBinFormatELF() &&
673 TM->getRelocationModel() != Reloc::Static &&
674 Mod.getPIELevel() == PIELevel::Default;
675 renameModuleForThinLTO(Mod, CombinedIndex, ClearDSOLocalOnDeclarations);
676
677 dropDeadSymbols(Mod, DefinedGlobals, CombinedIndex);
678
679 thinLTOFinalizeInModule(Mod, DefinedGlobals, /*PropagateAttrs=*/true);
680
681 if (Conf.PostPromoteModuleHook && !Conf.PostPromoteModuleHook(Task, Mod))
682 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
683
684 if (!DefinedGlobals.empty())
685 thinLTOInternalizeModule(Mod, DefinedGlobals);
686
687 if (Conf.PostInternalizeModuleHook &&
688 !Conf.PostInternalizeModuleHook(Task, Mod))
689 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
690
691 auto ModuleLoader = [&](StringRef Identifier) {
692 llvm::TimeTraceScope moduleLoaderScope("Module loader", Identifier);
693 assert(Mod.getContext().isODRUniquingDebugTypes() &&
694 "ODR Type uniquing should be enabled on the context");
695 if (ModuleMap) {
696 auto I = ModuleMap->find(Identifier);
697 assert(I != ModuleMap->end());
698 return I->second.getLazyModule(Mod.getContext(),
699 /*ShouldLazyLoadMetadata=*/true,
700 /*IsImporting*/ true);
701 }
702
704 llvm::MemoryBuffer::getFile(Identifier);
705 if (!MBOrErr)
707 Twine("Error loading imported file ") + Identifier + " : ",
708 MBOrErr.getError()));
709
710 Expected<BitcodeModule> BMOrErr = findThinLTOModule(**MBOrErr);
711 if (!BMOrErr)
713 Twine("Error loading imported file ") + Identifier + " : " +
714 toString(BMOrErr.takeError()),
716
718 BMOrErr->getLazyModule(Mod.getContext(),
719 /*ShouldLazyLoadMetadata=*/true,
720 /*IsImporting*/ true);
721 if (MOrErr)
722 (*MOrErr)->setOwnedMemoryBuffer(std::move(*MBOrErr));
723 return MOrErr;
724 };
725
726 {
727 llvm::TimeTraceScope importScope("Import functions");
728 FunctionImporter Importer(CombinedIndex, ModuleLoader,
729 ClearDSOLocalOnDeclarations);
730 if (Error Err = Importer.importFunctions(Mod, ImportList).takeError())
731 return Err;
732 }
733
734 // Do this after any importing so that imported code is updated.
736
737 if (Conf.PostImportModuleHook && !Conf.PostImportModuleHook(Task, Mod))
738 return finalizeOptimizationRemarks(std::move(DiagnosticOutputFile));
739
740 return OptimizeAndCodegen(Mod, TM.get(), std::move(DiagnosticOutputFile));
741}
742
744 if (ThinLTOAssumeMerged && BMs.size() == 1)
745 return BMs.begin();
746
747 for (BitcodeModule &BM : BMs) {
748 Expected<BitcodeLTOInfo> LTOInfo = BM.getLTOInfo();
749 if (LTOInfo && LTOInfo->IsThinLTO)
750 return &BM;
751 }
752 return nullptr;
753}
754
757 if (!BMsOrErr)
758 return BMsOrErr.takeError();
759
760 // The bitcode file may contain multiple modules, we want the one that is
761 // marked as being the ThinLTO module.
762 if (const BitcodeModule *Bm = lto::findThinLTOModule(*BMsOrErr))
763 return *Bm;
764
765 return make_error<StringError>("Could not find module summary",
767}
768
770 const ModuleSummaryIndex &CombinedIndex,
771 FunctionImporter::ImportMapTy &ImportList) {
773 return true;
774 // We can simply import the values mentioned in the combined index, since
775 // we should only invoke this using the individual indexes written out
776 // via a WriteIndexesThinBackend.
777 for (const auto &GlobalList : CombinedIndex) {
778 // Ignore entries for undefined references.
779 if (GlobalList.second.getSummaryList().empty())
780 continue;
781
782 auto GUID = GlobalList.first;
783 for (const auto &Summary : GlobalList.second.getSummaryList()) {
784 // Skip the summaries for the importing module. These are included to
785 // e.g. record required linkage changes.
786 if (Summary->modulePath() == M.getModuleIdentifier())
787 continue;
788 // Add an entry to provoke importing by thinBackend.
789 ImportList.addGUID(Summary->modulePath(), GUID, Summary->importType());
790 }
791 }
792 return true;
793}
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
This header provides classes for managing passes over SCCs of the call graph.
#define clEnumValN(ENUMVAL, FLAGNAME, DESC)
This header defines various interfaces for pass management in LLVM.
static cl::opt< bool > ThinLTOAssumeMerged("thinlto-assume-merged", cl::init(false), cl::desc("Assume the input has already undergone ThinLTO function " "importing and the other pre-optimization pipeline changes."))
static void reportOpenError(StringRef Path, Twine Msg)
LTOBitcodeEmbedding
static cl::opt< LTOBitcodeEmbedding > EmbedBitcode("lto-embed-bitcode", cl::init(LTOBitcodeEmbedding::DoNotEmbed), cl::values(clEnumValN(LTOBitcodeEmbedding::DoNotEmbed, "none", "Do not embed"), clEnumValN(LTOBitcodeEmbedding::EmbedOptimized, "optimized", "Embed after all optimization passes"), clEnumValN(LTOBitcodeEmbedding::EmbedPostMergePreOptimized, "post-merge-pre-opt", "Embed post merge, but before optimizations")), cl::desc("Embed LLVM bitcode in object files produced by LTO"))
static void splitCodeGen(const Config &C, TargetMachine *TM, AddStreamFn AddStream, unsigned ParallelCodeGenParallelismLevel, Module &Mod, const ModuleSummaryIndex &CombinedIndex)
static void dropDeadSymbols(Module &Mod, const GVSummaryMapTy &DefinedGlobals, const ModuleSummaryIndex &Index)
static Expected< const Target * > initAndLookupTarget(const Config &C, Module &Mod)
static bool isEmptyModule(const Module &Mod)
static void RegisterPassPlugins(ArrayRef< std::string > PassPlugins, PassBuilder &PB)
static void runNewPMPasses(const Config &Conf, Module &Mod, TargetMachine *TM, unsigned OptLevel, bool IsThinLTO, ModuleSummaryIndex *ExportSummary, const ModuleSummaryIndex *ImportSummary)
#define I(x, y, z)
Definition MD5.cpp:57
#define T
This is the interface to build a ModuleSummaryIndex for a module.
static std::unique_ptr< TargetMachine > createTargetMachine(Function *F, CodeGenOptLevel OptLevel)
Create the TargetMachine object to query the backend for optimization preferences.
CGSCCAnalysisManager CGAM
if(auto Err=PB.parsePassPipeline(MPM, Passes)) return wrap(std MPM run * Mod
LoopAnalysisManager LAM
FunctionAnalysisManager FAM
ModuleAnalysisManager MAM
PassInstrumentationCallbacks PIC
PassBuilder PB(Machine, PassOpts->PTO, std::nullopt, &PIC)
This header defines a class that provides bookkeeping for all standard (i.e in-tree) pass instrumenta...
#define LLVM_DEBUG(...)
Definition Debug.h:114
static cl::opt< int > ThreadCount("threads", cl::init(0))
Defines the virtual file system interface vfs::FileSystem.
static const char PassName[]
A manager for alias analyses.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:40
size_t size() const
size - Get the array size.
Definition ArrayRef.h:142
Represents a module in a bitcode file.
ValueT lookup(const_arg_type_t< KeyT > Val) const
lookup - Return the entry for the specified key, or a default constructed value if no such entry exis...
Definition DenseMap.h:205
bool empty() const
Definition DenseMap.h:109
Implements a dense probed hash-table based set.
Definition DenseSet.h:279
Represents either an error or a value T.
Definition ErrorOr.h:56
std::error_code getError() const
Definition ErrorOr.h:152
Lightweight error class with error context and mandatory checking.
Definition Error.h:159
static ErrorSuccess success()
Create a success value.
Definition Error.h:336
Tagged union holding either a T or a Error.
Definition Error.h:485
Error takeError()
Take ownership of the stored error.
Definition Error.h:612
reference get()
Returns a reference to the stored T value.
Definition Error.h:582
The map maintains the list of imports.
void addGUID(StringRef FromModule, GlobalValue::GUID GUID, GlobalValueSummary::ImportKind ImportKind)
The function importer is automatically importing function from other modules based on the provided su...
LLVM_ABI Expected< bool > importFunctions(Module &M, const ImportMapTy &ImportList)
Import functions in Module M based on the supplied import list.
Function and variable summary information to aid decisions and implementation of importing.
RAII handle that manages the lifetime of the ToolOutputFile used to output remarks.
This class implements a map that also provides access to all stored values in a deterministic order.
Definition MapVector.h:36
iterator end()
Definition MapVector.h:67
iterator find(const KeyT &Key)
Definition MapVector.h:154
static ErrorOr< std::unique_ptr< MemoryBuffer > > getFile(const Twine &Filename, bool IsText=false, bool RequiresNullTerminator=true, bool IsVolatile=false, std::optional< Align > Alignment=std::nullopt)
Open the specified file as a MemoryBuffer, returning a new MemoryBuffer if successful,...
Class to hold module path string table and global value map, and encapsulate methods for operating on...
A Module instance is used to store all the information related to an LLVM module.
Definition Module.h:67
MutableArrayRef - Represent a mutable reference to an array (0 or more elements consecutively in memo...
Definition ArrayRef.h:298
iterator begin() const
Definition ArrayRef.h:342
static LLVM_ABI const OptimizationLevel O3
Optimize for fast execution as much as possible.
static LLVM_ABI const OptimizationLevel O0
Disable as many optimizations as possible.
static LLVM_ABI const OptimizationLevel O2
Optimize for fast execution as much as possible without triggering significant incremental compile ti...
static LLVM_ABI const OptimizationLevel O1
Optimize quickly without destroying debuggability.
This class provides access to building LLVM's passes.
This class manages callbacks registration, as well as provides a way for PassInstrumentation to pass ...
LLVM_ATTRIBUTE_MINSIZE std::enable_if_t<!std::is_same_v< PassT, PassManager > > addPass(PassT &&Pass)
void printPipeline(raw_ostream &OS, function_ref< StringRef(StringRef)> MapClassName2PassName)
PreservedAnalyses run(IRUnitT &IR, AnalysisManagerT &AM, ExtraArgTs... ExtraArgs)
Run all of the passes in this manager over the given unit of IR.
A loaded pass plugin.
Definition PassPlugin.h:60
static LLVM_ABI Expected< PassPlugin > Load(const std::string &Filename)
Attempts to load a pass plugin from a given file.
void registerPassBuilderCallbacks(PassBuilder &PB) const
Invoke the PassBuilder callback registration.
Definition PassPlugin.h:82
void wait() override
Blocking wait for all the tasks to execute first.
SmallString - A SmallString is just a SmallVector with methods and accessors that make it work better...
Definition SmallString.h:26
StringRef str() const
Explicit conversion to StringRef.
This class provides an interface to register all the standard pass instrumentations and manages their...
StringRef - Represent a constant reference to a string, i.e.
Definition StringRef.h:55
Manages the enabling and disabling of subtarget specific features.
LLVM_ABI void getDefaultSubtargetFeatures(const Triple &Triple)
Adds the default features for the specified target triple.
LLVM_ABI std::string getString() const
Returns features as a string.
LLVM_ABI void AddFeature(StringRef String, bool Enable=true)
Adds Features.
Analysis pass providing the TargetLibraryInfo.
Implementation of the target library information.
Primary interface to the complete machine description for the target machine.
virtual bool addPassesToEmitFile(PassManagerBase &, raw_pwrite_stream &, raw_pwrite_stream *, CodeGenFileType, bool=true, MachineModuleInfoWrapperPass *MMIWP=nullptr)
Add passes to the specified pass manager to get the specified file emitted.
const Triple & getTargetTriple() const
virtual bool splitModule(Module &M, unsigned NumParts, function_ref< void(std::unique_ptr< Module > MPart)> ModuleCallback)
Entry point for module splitting.
TargetOptions Options
const Target & getTarget() const
void setPGOOption(std::optional< PGOOptions > PGOOpt)
MCTargetOptions MCOptions
Machine level options.
FloatABI::ABIType FloatABIType
FloatABIType - This setting is set by -float-abi=xxx option is specfied on the command line.
VectorLibrary VecLib
Vector math library to use.
std::string ObjectFilenameForDebug
Stores the filename/path of the final .o/.obj file, to be written in the debug information.
EABI EABIVersion
EABIVersion - This flag specifies the EABI version.
ExceptionHandling ExceptionModel
What exception model to use.
Target - Wrapper for Target specific information.
TargetMachine * createTargetMachine(const Triple &TT, StringRef CPU, StringRef Features, const TargetOptions &Options, std::optional< Reloc::Model > RM, std::optional< CodeModel::Model > CM=std::nullopt, CodeGenOptLevel OL=CodeGenOptLevel::Default, bool JIT=false) const
createTargetMachine - Create a target specific machine implementation for the specified Triple.
auto async(Function &&F, Args &&...ArgList)
Asynchronous submission of a task to the pool.
Definition ThreadPool.h:80
The TimeTraceScope is a helper class to call the begin and end functions of the time trace profiler.
void keep()
Indicate that the tool's job wrt this output file has been successful and the file should not be dele...
raw_fd_ostream & os()
Return the contained raw_fd_ostream.
Triple - Helper class for working with autoconf configuration names.
Definition Triple.h:47
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
Definition Twine.h:82
Create a verifier pass.
Definition Verifier.h:134
bool contains(const_arg_type_t< ValueT > V) const
Check if the set contains the given element.
Definition DenseSet.h:175
PassManager manages ModulePassManagers.
void add(Pass *P) override
Add a pass to the queue of passes to run.
bool run(Module &M)
run - Execute all of the passes scheduled for execution.
A raw_ostream that writes to a file descriptor.
A raw_ostream that writes to an std::string.
A raw_ostream that writes to an SmallVector or SmallString.
Interfaces for registering analysis passes, producing common pass manager configurations,...
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
Abstract Attribute helper functions.
Definition Attributor.h:165
@ C
The default llvm calling convention, compatible with C.
Definition CallingConv.h:34
LLVM_ABI void saveModuleForTwoRounds(const Module &TheModule, unsigned Task, AddStreamFn AddStream)
Save TheModule before the first codegen round.
ValuesClass values(OptsTy... Options)
Helper to build a ValuesClass by forwarding a variable number of arguments as an initializer list to ...
initializer< Ty > init(const Ty &Val)
LLVM_ABI BitcodeModule * findThinLTOModule(MutableArrayRef< BitcodeModule > BMs)
Returns the BitcodeModule that is ThinLTO.
LLVM_ABI Error backend(const Config &C, AddStreamFn AddStream, unsigned ParallelCodeGenParallelismLevel, Module &M, ModuleSummaryIndex &CombinedIndex)
Runs a regular LTO backend.
LLVM_ABI Error finalizeOptimizationRemarks(LLVMRemarkFileHandle DiagOutputFile)
LLVM_ABI Expected< LLVMRemarkFileHandle > setupLLVMOptimizationRemarks(LLVMContext &Context, StringRef RemarksFilename, StringRef RemarksPasses, StringRef RemarksFormat, bool RemarksWithHotness, std::optional< uint64_t > RemarksHotnessThreshold=0, int Count=-1)
Setup optimization remarks.
Definition LTO.cpp:2148
LLVM_ABI bool initImportList(const Module &M, const ModuleSummaryIndex &CombinedIndex, FunctionImporter::ImportMapTy &ImportList)
Distributed ThinLTO: collect the referenced modules based on module summary and initialize ImportList...
LLVM_ABI bool opt(const Config &Conf, TargetMachine *TM, unsigned Task, Module &Mod, bool IsThinLTO, ModuleSummaryIndex *ExportSummary, const ModuleSummaryIndex *ImportSummary, const std::vector< uint8_t > &CmdArgs)
Runs middle-end LTO optimizations on Mod.
LLVM_ABI Error thinBackend(const Config &C, unsigned Task, AddStreamFn AddStream, Module &M, const ModuleSummaryIndex &CombinedIndex, const FunctionImporter::ImportMapTy &ImportList, const GVSummaryMapTy &DefinedGlobals, MapVector< StringRef, BitcodeModule > *ModuleMap, bool CodeGenOnly, AddStreamFn IRAddStream=nullptr, const std::vector< uint8_t > &CmdArgs=std::vector< uint8_t >())
Runs a ThinLTO backend.
@ OF_Text
The file should be opened in text mode on platforms like z/OS that make this distinction.
Definition FileSystem.h:755
@ OF_TextWithCRLF
The file should be opened in text mode and use a carriage linefeed '\r '.
Definition FileSystem.h:764
LLVM_ABI std::error_code create_directories(const Twine &path, bool IgnoreExisting=true, perms Perms=owner_all|group_all)
Create all the non-existent directories in path.
Definition Path.cpp:967
LLVM_ABI void append(SmallVectorImpl< char > &path, const Twine &a, const Twine &b="", const Twine &c="", const Twine &d="")
Append to path.
Definition Path.cpp:456
This is an optimization pass for GlobalISel generic memory operations.
ThreadPoolStrategy heavyweight_hardware_concurrency(unsigned ThreadCount=0)
Returns a thread strategy for tasks requiring significant memory or other resources.
Definition Threading.h:167
LLVM_ABI Expected< std::unique_ptr< Module > > parseBitcodeFile(MemoryBufferRef Buffer, LLVMContext &Context, ParserCallbacks Callbacks={})
Read the specified bitcode file, returning the module.
LLVM_ABI void WriteBitcodeToFile(const Module &M, raw_ostream &Out, bool ShouldPreserveUseListOrder=false, const ModuleSummaryIndex *Index=nullptr, bool GenerateHash=false, ModuleHash *ModHash=nullptr)
Write the specified module to the specified raw output stream.
LLVM_ABI std::error_code inconvertibleErrorCode()
The value returned by this function can be returned from convertToErrorCode for Error values where no...
Definition Error.cpp:98
LLVM_ABI raw_fd_ostream & outs()
This returns a reference to a raw_fd_ostream for standard output.
DenseMap< GlobalValue::GUID, GlobalValueSummary * > GVSummaryMapTy
Map of global value GUID to its summary, used to identify values defined in a particular module,...
LLVM_ABI bool convertToDeclaration(GlobalValue &GV)
Converts value GV to declaration, or replaces with a declaration if it is an alias.
std::string utostr(uint64_t X, bool isNeg=false)
LLVM_ABI void renameModuleForThinLTO(Module &M, const ModuleSummaryIndex &Index, bool ClearDSOLocalOnDeclarations, SetVector< GlobalValue * > *GlobalsToImport=nullptr)
Perform in-place global value handling on the given Module for exported local functions renamed and p...
AnalysisManager< LazyCallGraph::SCC, LazyCallGraph & > CGSCCAnalysisManager
The CGSCC analysis manager.
LLVM_ABI void writeIndexToFile(const ModuleSummaryIndex &Index, raw_ostream &Out, const ModuleToSummariesForIndexTy *ModuleToSummariesForIndex=nullptr, const GVSummaryPtrSet *DecSummaries=nullptr)
Write the specified module summary index to the given raw output stream, where it will be written in ...
AnalysisManager< Loop, LoopStandardAnalysisResults & > LoopAnalysisManager
The loop analysis manager.
LLVM_ABI void embedBitcodeInModule(Module &M, MemoryBufferRef Buf, bool EmbedBitcode, bool EmbedCmdline, const std::vector< uint8_t > &CmdArgs)
If EmbedBitcode is set, save a copy of the llvm IR as data in the __LLVM,__bitcode section (....
LLVM_ABI void SplitModule(Module &M, unsigned N, function_ref< void(std::unique_ptr< Module > MPart)> ModuleCallback, bool PreserveLocals=false, bool RoundRobin=false)
Splits the module M into N linkable partitions.
LLVM_ABI cl::opt< bool > PrintPipelinePasses
Common option used by multiple tools to print pipeline passes.
LLVM_ABI void updatePublicTypeTestCalls(Module &M, bool WholeProgramVisibilityEnabledInLTO)
PassManager< Module > ModulePassManager
Convenience typedef for a pass manager over modules.
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
Definition Debug.cpp:207
LLVM_ABI void report_fatal_error(Error Err, bool gen_crash_diag=true)
Definition Error.cpp:167
LLVM_ABI Expected< std::vector< BitcodeModule > > getBitcodeModuleList(MemoryBufferRef Buffer)
Returns a list of modules in the specified bitcode buffer.
cl::opt< bool > NoPGOWarnMismatch
Error make_error(ArgTs &&... Args)
Make a Error instance representing failure using the given error info type.
Definition Error.h:340
LLVM_ABI raw_fd_ostream & errs()
This returns a reference to a raw_ostream for standard error.
@ Mod
The access may modify the value stored in memory.
Definition ModRef.h:34
LLVM_ABI void thinLTOInternalizeModule(Module &TheModule, const GVSummaryMapTy &DefinedGlobals)
Internalize TheModule based on the information recorded in the summaries during global summary-based ...
SingleThreadExecutor DefaultThreadPool
Definition ThreadPool.h:262
std::string toString(const APInt &I, unsigned Radix, bool Signed, bool formatAsCLiteral=false, bool UpperCase=true, bool InsertSeparators=false)
LLVM_ABI ImmutablePass * createImmutableModuleSummaryIndexWrapperPass(const ModuleSummaryIndex *Index)
LLVM_ABI Error errorCodeToError(std::error_code EC)
Helper for converting an std::error_code to a Error.
Definition Error.cpp:111
AnalysisManager< Function > FunctionAnalysisManager
Convenience typedef for the Function analysis manager.
std::function< Expected< std::unique_ptr< CachedFileStream > >( unsigned Task, const Twine &ModuleName)> AddStreamFn
This type defines the callback to add a file that is generated on the fly.
Definition Caching.h:58
AnalysisManager< Module > ModuleAnalysisManager
Convenience typedef for the Module analysis manager.
Definition MIRParser.h:39
LLVM_ABI void thinLTOFinalizeInModule(Module &TheModule, const GVSummaryMapTy &DefinedGlobals, bool PropagateAttrs)
Based on the information recorded in the summaries during global summary-based analysis:
LLVM_ABI void reportFatalUsageError(Error Err)
Report a fatal error that does not indicate a bug in LLVM.
Definition Error.cpp:180
A struct capturing PGO tunables.
Definition PGOOptions.h:22
static const Target * lookupTarget(StringRef TripleStr, std::string &Error)
lookupTarget - Lookup a target based on a target triple.
LTO configuration.
Definition Config.h:42
std::function< bool(unsigned Task, const Module &)> ModuleHookFn
The following callbacks deal with tasks, which normally represent the entire optimization and code ge...
Definition Config.h:230
bool DebugPassManager
Whether to emit the pass manager debuggging informations.
Definition Config.h:177
bool AddFSDiscriminator
Add FSAFDO discriminators.
Definition Config.h:195
std::optional< uint64_t > RemarksHotnessThreshold
The minimum hotness value a diagnostic needs in order to be included in optimization diagnostics.
Definition Config.h:171
LLVM_ABI Error addSaveTemps(std::string OutputFileName, bool UseInputModulePath=false, const DenseSet< StringRef > &SaveTempsArgs={})
This is a convenience function that configures this Config object to write temporary files named afte...
ModuleHookFn PreOptModuleHook
This module hook is called after linking (regular LTO) or loading (ThinLTO) the module,...
Definition Config.h:234
CombinedIndexHookFn CombinedIndexHook
Definition Config.h:266
std::optional< CodeModel::Model > CodeModel
Definition Config.h:57
std::string AAPipeline
Definition Config.h:116
std::function< void(legacy::PassManager &)> PreCodeGenPassesHook
For adding passes that run right before codegen.
Definition Config.h:55
bool DisableVerify
Definition Config.h:62
std::vector< std::string > MAttrs
Definition Config.h:51
CodeGenOptLevel CGOptLevel
Definition Config.h:58
PipelineTuningOptions PTO
Tunable parameters for passes in the default pipelines.
Definition Config.h:204
std::unique_ptr< raw_ostream > ResolutionFile
If this field is set, LTO will write input file paths and symbol resolutions here in llvm-lto2 comman...
Definition Config.h:201
std::string CPU
Definition Config.h:49
std::string DwoDir
The directory to store .dwo files.
Definition Config.h:136
std::string RemarksFilename
Optimization remarks file path.
Definition Config.h:150
ModuleHookFn PostPromoteModuleHook
This hook is called after promoting any internal functions (ThinLTO-specific).
Definition Config.h:238
std::string ProfileRemapping
Name remapping file for profile data.
Definition Config.h:133
TargetOptions Options
Definition Config.h:50
std::string SplitDwarfFile
The name for the split debug info file used for the DW_AT_[GNU_]dwo_name attribute in the skeleton CU...
Definition Config.h:142
std::string SplitDwarfOutput
The path to write a .dwo file to.
Definition Config.h:147
ModuleHookFn PostOptModuleHook
This module hook is called after optimization is complete.
Definition Config.h:247
std::string RemarksPasses
Optimization remarks pass filter.
Definition Config.h:153
std::string OptPipeline
If this field is set, the set of passes run in the middle-end optimizer will be the one specified by ...
Definition Config.h:111
bool RunCSIRInstr
Run PGO context sensitive IR instrumentation.
Definition Config.h:72
ModuleHookFn PostInternalizeModuleHook
This hook is called after internalizing the module.
Definition Config.h:241
unsigned OptLevel
Definition Config.h:60
ModuleHookFn PostImportModuleHook
This hook is called after importing from other modules (ThinLTO-specific).
Definition Config.h:244
bool RemarksWithHotness
Whether to emit optimization remarks with hotness informations.
Definition Config.h:156
std::vector< std::string > PassPlugins
Definition Config.h:53
std::string CSIRProfile
Context Sensitive PGO profile path.
Definition Config.h:127
ModuleHookFn PreCodeGenModuleHook
This module hook is called before code generation.
Definition Config.h:252
std::optional< Reloc::Model > RelocModel
Definition Config.h:56
bool ShouldDiscardValueNames
Definition Config.h:191
bool PGOWarnMismatch
Turn on/off the warning about a hash mismatch in the PGO profile data.
Definition Config.h:75
CodeGenFileType CGFileType
Definition Config.h:59
bool Freestanding
Flag to indicate that the optimizer should not assume builtins are present on the target.
Definition Config.h:66
std::string SampleProfile
Sample PGO profile path.
Definition Config.h:130
std::string RemarksFormat
The format used for serializing remarks (default: YAML).
Definition Config.h:174
A derived class of LLVMContext that initializes itself according to a given Config object.
Definition Config.h:305