1 //===- FunctionImport.cpp - ThinLTO Summary-based Function Import ---------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements Function import based on summaries. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/Transforms/IPO/FunctionImport.h" 15 16 #include "llvm/ADT/SmallVector.h" 17 #include "llvm/ADT/Statistic.h" 18 #include "llvm/ADT/StringSet.h" 19 #include "llvm/ADT/Triple.h" 20 #include "llvm/Bitcode/BitcodeReader.h" 21 #include "llvm/IR/AutoUpgrade.h" 22 #include "llvm/IR/DiagnosticPrinter.h" 23 #include "llvm/IR/IntrinsicInst.h" 24 #include "llvm/IR/Module.h" 25 #include "llvm/IR/Verifier.h" 26 #include "llvm/IRReader/IRReader.h" 27 #include "llvm/Linker/Linker.h" 28 #include "llvm/Object/IRObjectFile.h" 29 #include "llvm/Support/CommandLine.h" 30 #include "llvm/Support/Debug.h" 31 #include "llvm/Support/SourceMgr.h" 32 #include "llvm/Transforms/IPO/Internalize.h" 33 #include "llvm/Transforms/Utils/FunctionImportUtils.h" 34 35 #define DEBUG_TYPE "function-import" 36 37 using namespace llvm; 38 39 STATISTIC(NumImportedFunctions, "Number of functions imported"); 40 STATISTIC(NumImportedModules, "Number of modules imported from"); 41 STATISTIC(NumDeadSymbols, "Number of dead stripped symbols in index"); 42 STATISTIC(NumLiveSymbols, "Number of live symbols in index"); 43 44 /// Limit on instruction count of imported functions. 45 static cl::opt<unsigned> ImportInstrLimit( 46 "import-instr-limit", cl::init(100), cl::Hidden, cl::value_desc("N"), 47 cl::desc("Only import functions with less than N instructions")); 48 49 static cl::opt<float> 50 ImportInstrFactor("import-instr-evolution-factor", cl::init(0.7), 51 cl::Hidden, cl::value_desc("x"), 52 cl::desc("As we import functions, multiply the " 53 "`import-instr-limit` threshold by this factor " 54 "before processing newly imported functions")); 55 56 static cl::opt<float> ImportHotInstrFactor( 57 "import-hot-evolution-factor", cl::init(1.0), cl::Hidden, 58 cl::value_desc("x"), 59 cl::desc("As we import functions called from hot callsite, multiply the " 60 "`import-instr-limit` threshold by this factor " 61 "before processing newly imported functions")); 62 63 static cl::opt<float> ImportHotMultiplier( 64 "import-hot-multiplier", cl::init(10.0), cl::Hidden, cl::value_desc("x"), 65 cl::desc("Multiply the `import-instr-limit` threshold for hot callsites")); 66 67 static cl::opt<float> ImportCriticalMultiplier( 68 "import-critical-multiplier", cl::init(100.0), cl::Hidden, 69 cl::value_desc("x"), 70 cl::desc( 71 "Multiply the `import-instr-limit` threshold for critical callsites")); 72 73 // FIXME: This multiplier was not really tuned up. 74 static cl::opt<float> ImportColdMultiplier( 75 "import-cold-multiplier", cl::init(0), cl::Hidden, cl::value_desc("N"), 76 cl::desc("Multiply the `import-instr-limit` threshold for cold callsites")); 77 78 static cl::opt<bool> PrintImports("print-imports", cl::init(false), cl::Hidden, 79 cl::desc("Print imported functions")); 80 81 static cl::opt<bool> ComputeDead("compute-dead", cl::init(true), cl::Hidden, 82 cl::desc("Compute dead symbols")); 83 84 static cl::opt<bool> EnableImportMetadata( 85 "enable-import-metadata", cl::init( 86 #if !defined(NDEBUG) 87 true /*Enabled with asserts.*/ 88 #else 89 false 90 #endif 91 ), 92 cl::Hidden, cl::desc("Enable import metadata like 'thinlto_src_module'")); 93 94 // Load lazily a module from \p FileName in \p Context. 95 static std::unique_ptr<Module> loadFile(const std::string &FileName, 96 LLVMContext &Context) { 97 SMDiagnostic Err; 98 DEBUG(dbgs() << "Loading '" << FileName << "'\n"); 99 // Metadata isn't loaded until functions are imported, to minimize 100 // the memory overhead. 101 std::unique_ptr<Module> Result = 102 getLazyIRFileModule(FileName, Err, Context, 103 /* ShouldLazyLoadMetadata = */ true); 104 if (!Result) { 105 Err.print("function-import", errs()); 106 report_fatal_error("Abort"); 107 } 108 109 return Result; 110 } 111 112 namespace { 113 114 /// Given a list of possible callee implementation for a call site, select one 115 /// that fits the \p Threshold. 116 /// 117 /// FIXME: select "best" instead of first that fits. But what is "best"? 118 /// - The smallest: more likely to be inlined. 119 /// - The one with the least outgoing edges (already well optimized). 120 /// - One from a module already being imported from in order to reduce the 121 /// number of source modules parsed/linked. 122 /// - One that has PGO data attached. 123 /// - [insert you fancy metric here] 124 static const GlobalValueSummary * 125 selectCallee(const ModuleSummaryIndex &Index, 126 ArrayRef<std::unique_ptr<GlobalValueSummary>> CalleeSummaryList, 127 unsigned Threshold, StringRef CallerModulePath) { 128 auto It = llvm::find_if( 129 CalleeSummaryList, 130 [&](const std::unique_ptr<GlobalValueSummary> &SummaryPtr) { 131 auto *GVSummary = SummaryPtr.get(); 132 // For SamplePGO, in computeImportForFunction the OriginalId 133 // may have been used to locate the callee summary list (See 134 // comment there). 135 // The mapping from OriginalId to GUID may return a GUID 136 // that corresponds to a static variable. Filter it out here. 137 // This can happen when 138 // 1) There is a call to a library function which is not defined 139 // in the index. 140 // 2) There is a static variable with the OriginalGUID identical 141 // to the GUID of the library function in 1); 142 // When this happens, the logic for SamplePGO kicks in and 143 // the static variable in 2) will be found, which needs to be 144 // filtered out. 145 if (GVSummary->getSummaryKind() == GlobalValueSummary::GlobalVarKind) 146 return false; 147 if (GlobalValue::isInterposableLinkage(GVSummary->linkage())) 148 // There is no point in importing these, we can't inline them 149 return false; 150 if (isa<AliasSummary>(GVSummary)) 151 // Aliases can't point to "available_externally". 152 // FIXME: we should import alias as available_externally *function*, 153 // the destination module does not need to know it is an alias. 154 return false; 155 156 auto *Summary = cast<FunctionSummary>(GVSummary); 157 158 // If this is a local function, make sure we import the copy 159 // in the caller's module. The only time a local function can 160 // share an entry in the index is if there is a local with the same name 161 // in another module that had the same source file name (in a different 162 // directory), where each was compiled in their own directory so there 163 // was not distinguishing path. 164 // However, do the import from another module if there is only one 165 // entry in the list - in that case this must be a reference due 166 // to indirect call profile data, since a function pointer can point to 167 // a local in another module. 168 if (GlobalValue::isLocalLinkage(Summary->linkage()) && 169 CalleeSummaryList.size() > 1 && 170 Summary->modulePath() != CallerModulePath) 171 return false; 172 173 if (Summary->instCount() > Threshold) 174 return false; 175 176 if (Summary->notEligibleToImport()) 177 return false; 178 179 return true; 180 }); 181 if (It == CalleeSummaryList.end()) 182 return nullptr; 183 184 return cast<GlobalValueSummary>(It->get()); 185 } 186 187 using EdgeInfo = std::tuple<const FunctionSummary *, unsigned /* Threshold */, 188 GlobalValue::GUID>; 189 190 static ValueInfo 191 updateValueInfoForIndirectCalls(const ModuleSummaryIndex &Index, ValueInfo VI) { 192 if (!VI.getSummaryList().empty()) 193 return VI; 194 // For SamplePGO, the indirect call targets for local functions will 195 // have its original name annotated in profile. We try to find the 196 // corresponding PGOFuncName as the GUID. 197 // FIXME: Consider updating the edges in the graph after building 198 // it, rather than needing to perform this mapping on each walk. 199 auto GUID = Index.getGUIDFromOriginalID(VI.getGUID()); 200 if (GUID == 0) 201 return nullptr; 202 return Index.getValueInfo(GUID); 203 } 204 205 /// Compute the list of functions to import for a given caller. Mark these 206 /// imported functions and the symbols they reference in their source module as 207 /// exported from their source module. 208 static void computeImportForFunction( 209 const FunctionSummary &Summary, const ModuleSummaryIndex &Index, 210 const unsigned Threshold, const GVSummaryMapTy &DefinedGVSummaries, 211 SmallVectorImpl<EdgeInfo> &Worklist, 212 FunctionImporter::ImportMapTy &ImportList, 213 StringMap<FunctionImporter::ExportSetTy> *ExportLists = nullptr) { 214 for (auto &Edge : Summary.calls()) { 215 ValueInfo VI = Edge.first; 216 DEBUG(dbgs() << " edge -> " << VI.getGUID() << " Threshold:" << Threshold 217 << "\n"); 218 219 VI = updateValueInfoForIndirectCalls(Index, VI); 220 if (!VI) 221 continue; 222 223 if (DefinedGVSummaries.count(VI.getGUID())) { 224 DEBUG(dbgs() << "ignored! Target already in destination module.\n"); 225 continue; 226 } 227 228 auto GetBonusMultiplier = [](CalleeInfo::HotnessType Hotness) -> float { 229 if (Hotness == CalleeInfo::HotnessType::Hot) 230 return ImportHotMultiplier; 231 if (Hotness == CalleeInfo::HotnessType::Cold) 232 return ImportColdMultiplier; 233 if (Hotness == CalleeInfo::HotnessType::Critical) 234 return ImportCriticalMultiplier; 235 return 1.0; 236 }; 237 238 const auto NewThreshold = 239 Threshold * GetBonusMultiplier(Edge.second.Hotness); 240 241 auto *CalleeSummary = selectCallee(Index, VI.getSummaryList(), NewThreshold, 242 Summary.modulePath()); 243 if (!CalleeSummary) { 244 DEBUG(dbgs() << "ignored! No qualifying callee with summary found.\n"); 245 continue; 246 } 247 248 // "Resolve" the summary 249 assert(!isa<AliasSummary>(CalleeSummary) && 250 "Unexpected alias in import list"); 251 const auto *ResolvedCalleeSummary = cast<FunctionSummary>(CalleeSummary); 252 253 assert(ResolvedCalleeSummary->instCount() <= NewThreshold && 254 "selectCallee() didn't honor the threshold"); 255 256 auto GetAdjustedThreshold = [](unsigned Threshold, bool IsHotCallsite) { 257 // Adjust the threshold for next level of imported functions. 258 // The threshold is different for hot callsites because we can then 259 // inline chains of hot calls. 260 if (IsHotCallsite) 261 return Threshold * ImportHotInstrFactor; 262 return Threshold * ImportInstrFactor; 263 }; 264 265 bool IsHotCallsite = Edge.second.Hotness == CalleeInfo::HotnessType::Hot; 266 const auto AdjThreshold = GetAdjustedThreshold(Threshold, IsHotCallsite); 267 268 auto ExportModulePath = ResolvedCalleeSummary->modulePath(); 269 auto &ProcessedThreshold = ImportList[ExportModulePath][VI.getGUID()]; 270 /// Since the traversal of the call graph is DFS, we can revisit a function 271 /// a second time with a higher threshold. In this case, it is added back to 272 /// the worklist with the new threshold. 273 if (ProcessedThreshold && ProcessedThreshold >= AdjThreshold) { 274 DEBUG(dbgs() << "ignored! Target was already seen with Threshold " 275 << ProcessedThreshold << "\n"); 276 continue; 277 } 278 bool PreviouslyImported = ProcessedThreshold != 0; 279 // Mark this function as imported in this module, with the current Threshold 280 ProcessedThreshold = AdjThreshold; 281 282 // Make exports in the source module. 283 if (ExportLists) { 284 auto &ExportList = (*ExportLists)[ExportModulePath]; 285 ExportList.insert(VI.getGUID()); 286 if (!PreviouslyImported) { 287 // This is the first time this function was exported from its source 288 // module, so mark all functions and globals it references as exported 289 // to the outside if they are defined in the same source module. 290 // For efficiency, we unconditionally add all the referenced GUIDs 291 // to the ExportList for this module, and will prune out any not 292 // defined in the module later in a single pass. 293 for (auto &Edge : ResolvedCalleeSummary->calls()) { 294 auto CalleeGUID = Edge.first.getGUID(); 295 ExportList.insert(CalleeGUID); 296 } 297 for (auto &Ref : ResolvedCalleeSummary->refs()) { 298 auto GUID = Ref.getGUID(); 299 ExportList.insert(GUID); 300 } 301 } 302 } 303 304 // Insert the newly imported function to the worklist. 305 Worklist.emplace_back(ResolvedCalleeSummary, AdjThreshold, VI.getGUID()); 306 } 307 } 308 309 /// Given the list of globals defined in a module, compute the list of imports 310 /// as well as the list of "exports", i.e. the list of symbols referenced from 311 /// another module (that may require promotion). 312 static void ComputeImportForModule( 313 const GVSummaryMapTy &DefinedGVSummaries, const ModuleSummaryIndex &Index, 314 FunctionImporter::ImportMapTy &ImportList, 315 StringMap<FunctionImporter::ExportSetTy> *ExportLists = nullptr) { 316 // Worklist contains the list of function imported in this module, for which 317 // we will analyse the callees and may import further down the callgraph. 318 SmallVector<EdgeInfo, 128> Worklist; 319 320 // Populate the worklist with the import for the functions in the current 321 // module 322 for (auto &GVSummary : DefinedGVSummaries) { 323 if (!Index.isGlobalValueLive(GVSummary.second)) { 324 DEBUG(dbgs() << "Ignores Dead GUID: " << GVSummary.first << "\n"); 325 continue; 326 } 327 auto *FuncSummary = 328 dyn_cast<FunctionSummary>(GVSummary.second->getBaseObject()); 329 if (!FuncSummary) 330 // Skip import for global variables 331 continue; 332 DEBUG(dbgs() << "Initialize import for " << GVSummary.first << "\n"); 333 computeImportForFunction(*FuncSummary, Index, ImportInstrLimit, 334 DefinedGVSummaries, Worklist, ImportList, 335 ExportLists); 336 } 337 338 // Process the newly imported functions and add callees to the worklist. 339 while (!Worklist.empty()) { 340 auto FuncInfo = Worklist.pop_back_val(); 341 auto *Summary = std::get<0>(FuncInfo); 342 auto Threshold = std::get<1>(FuncInfo); 343 auto GUID = std::get<2>(FuncInfo); 344 345 // Check if we later added this summary with a higher threshold. 346 // If so, skip this entry. 347 auto ExportModulePath = Summary->modulePath(); 348 auto &LatestProcessedThreshold = ImportList[ExportModulePath][GUID]; 349 if (LatestProcessedThreshold > Threshold) 350 continue; 351 352 computeImportForFunction(*Summary, Index, Threshold, DefinedGVSummaries, 353 Worklist, ImportList, ExportLists); 354 } 355 } 356 357 } // anonymous namespace 358 359 /// Compute all the import and export for every module using the Index. 360 void llvm::ComputeCrossModuleImport( 361 const ModuleSummaryIndex &Index, 362 const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries, 363 StringMap<FunctionImporter::ImportMapTy> &ImportLists, 364 StringMap<FunctionImporter::ExportSetTy> &ExportLists) { 365 // For each module that has function defined, compute the import/export lists. 366 for (auto &DefinedGVSummaries : ModuleToDefinedGVSummaries) { 367 auto &ImportList = ImportLists[DefinedGVSummaries.first()]; 368 DEBUG(dbgs() << "Computing import for Module '" 369 << DefinedGVSummaries.first() << "'\n"); 370 ComputeImportForModule(DefinedGVSummaries.second, Index, ImportList, 371 &ExportLists); 372 } 373 374 // When computing imports we added all GUIDs referenced by anything 375 // imported from the module to its ExportList. Now we prune each ExportList 376 // of any not defined in that module. This is more efficient than checking 377 // while computing imports because some of the summary lists may be long 378 // due to linkonce (comdat) copies. 379 for (auto &ELI : ExportLists) { 380 const auto &DefinedGVSummaries = 381 ModuleToDefinedGVSummaries.lookup(ELI.first()); 382 for (auto EI = ELI.second.begin(); EI != ELI.second.end();) { 383 if (!DefinedGVSummaries.count(*EI)) 384 EI = ELI.second.erase(EI); 385 else 386 ++EI; 387 } 388 } 389 390 #ifndef NDEBUG 391 DEBUG(dbgs() << "Import/Export lists for " << ImportLists.size() 392 << " modules:\n"); 393 for (auto &ModuleImports : ImportLists) { 394 auto ModName = ModuleImports.first(); 395 auto &Exports = ExportLists[ModName]; 396 DEBUG(dbgs() << "* Module " << ModName << " exports " << Exports.size() 397 << " functions. Imports from " << ModuleImports.second.size() 398 << " modules.\n"); 399 for (auto &Src : ModuleImports.second) { 400 auto SrcModName = Src.first(); 401 DEBUG(dbgs() << " - " << Src.second.size() << " functions imported from " 402 << SrcModName << "\n"); 403 } 404 } 405 #endif 406 } 407 408 /// Compute all the imports for the given module in the Index. 409 void llvm::ComputeCrossModuleImportForModule( 410 StringRef ModulePath, const ModuleSummaryIndex &Index, 411 FunctionImporter::ImportMapTy &ImportList) { 412 413 // Collect the list of functions this module defines. 414 // GUID -> Summary 415 GVSummaryMapTy FunctionSummaryMap; 416 Index.collectDefinedFunctionsForModule(ModulePath, FunctionSummaryMap); 417 418 // Compute the import list for this module. 419 DEBUG(dbgs() << "Computing import for Module '" << ModulePath << "'\n"); 420 ComputeImportForModule(FunctionSummaryMap, Index, ImportList); 421 422 #ifndef NDEBUG 423 DEBUG(dbgs() << "* Module " << ModulePath << " imports from " 424 << ImportList.size() << " modules.\n"); 425 for (auto &Src : ImportList) { 426 auto SrcModName = Src.first(); 427 DEBUG(dbgs() << " - " << Src.second.size() << " functions imported from " 428 << SrcModName << "\n"); 429 } 430 #endif 431 } 432 433 void llvm::computeDeadSymbols( 434 ModuleSummaryIndex &Index, 435 const DenseSet<GlobalValue::GUID> &GUIDPreservedSymbols) { 436 assert(!Index.withGlobalValueDeadStripping()); 437 if (!ComputeDead) 438 return; 439 if (GUIDPreservedSymbols.empty()) 440 // Don't do anything when nothing is live, this is friendly with tests. 441 return; 442 unsigned LiveSymbols = 0; 443 SmallVector<ValueInfo, 128> Worklist; 444 Worklist.reserve(GUIDPreservedSymbols.size() * 2); 445 for (auto GUID : GUIDPreservedSymbols) { 446 ValueInfo VI = Index.getValueInfo(GUID); 447 if (!VI) 448 continue; 449 for (auto &S : VI.getSummaryList()) 450 S->setLive(true); 451 } 452 453 // Add values flagged in the index as live roots to the worklist. 454 for (const auto &Entry : Index) 455 for (auto &S : Entry.second.SummaryList) 456 if (S->isLive()) { 457 DEBUG(dbgs() << "Live root: " << Entry.first << "\n"); 458 Worklist.push_back(ValueInfo(&Entry)); 459 ++LiveSymbols; 460 break; 461 } 462 463 // Make value live and add it to the worklist if it was not live before. 464 // FIXME: we should only make the prevailing copy live here 465 auto visit = [&](ValueInfo VI) { 466 // FIXME: If we knew which edges were created for indirect call profiles, 467 // we could skip them here. Any that are live should be reached via 468 // other edges, e.g. reference edges. Otherwise, using a profile collected 469 // on a slightly different binary might provoke preserving, importing 470 // and ultimately promoting calls to functions not linked into this 471 // binary, which increases the binary size unnecessarily. Note that 472 // if this code changes, the importer needs to change so that edges 473 // to functions marked dead are skipped. 474 VI = updateValueInfoForIndirectCalls(Index, VI); 475 if (!VI) 476 return; 477 for (auto &S : VI.getSummaryList()) 478 if (S->isLive()) 479 return; 480 for (auto &S : VI.getSummaryList()) 481 S->setLive(true); 482 ++LiveSymbols; 483 Worklist.push_back(VI); 484 }; 485 486 while (!Worklist.empty()) { 487 auto VI = Worklist.pop_back_val(); 488 for (auto &Summary : VI.getSummaryList()) { 489 GlobalValueSummary *Base = Summary->getBaseObject(); 490 for (auto Ref : Base->refs()) 491 visit(Ref); 492 if (auto *FS = dyn_cast<FunctionSummary>(Base)) 493 for (auto Call : FS->calls()) 494 visit(Call.first); 495 } 496 } 497 Index.setWithGlobalValueDeadStripping(); 498 499 unsigned DeadSymbols = Index.size() - LiveSymbols; 500 DEBUG(dbgs() << LiveSymbols << " symbols Live, and " << DeadSymbols 501 << " symbols Dead \n"); 502 NumDeadSymbols += DeadSymbols; 503 NumLiveSymbols += LiveSymbols; 504 } 505 506 /// Compute the set of summaries needed for a ThinLTO backend compilation of 507 /// \p ModulePath. 508 void llvm::gatherImportedSummariesForModule( 509 StringRef ModulePath, 510 const StringMap<GVSummaryMapTy> &ModuleToDefinedGVSummaries, 511 const FunctionImporter::ImportMapTy &ImportList, 512 std::map<std::string, GVSummaryMapTy> &ModuleToSummariesForIndex) { 513 // Include all summaries from the importing module. 514 ModuleToSummariesForIndex[ModulePath] = 515 ModuleToDefinedGVSummaries.lookup(ModulePath); 516 // Include summaries for imports. 517 for (auto &ILI : ImportList) { 518 auto &SummariesForIndex = ModuleToSummariesForIndex[ILI.first()]; 519 const auto &DefinedGVSummaries = 520 ModuleToDefinedGVSummaries.lookup(ILI.first()); 521 for (auto &GI : ILI.second) { 522 const auto &DS = DefinedGVSummaries.find(GI.first); 523 assert(DS != DefinedGVSummaries.end() && 524 "Expected a defined summary for imported global value"); 525 SummariesForIndex[GI.first] = DS->second; 526 } 527 } 528 } 529 530 /// Emit the files \p ModulePath will import from into \p OutputFilename. 531 std::error_code 532 llvm::EmitImportsFiles(StringRef ModulePath, StringRef OutputFilename, 533 const FunctionImporter::ImportMapTy &ModuleImports) { 534 std::error_code EC; 535 raw_fd_ostream ImportsOS(OutputFilename, EC, sys::fs::OpenFlags::F_None); 536 if (EC) 537 return EC; 538 for (auto &ILI : ModuleImports) 539 ImportsOS << ILI.first() << "\n"; 540 return std::error_code(); 541 } 542 543 /// Fixup WeakForLinker linkages in \p TheModule based on summary analysis. 544 void llvm::thinLTOResolveWeakForLinkerModule( 545 Module &TheModule, const GVSummaryMapTy &DefinedGlobals) { 546 auto ConvertToDeclaration = [](GlobalValue &GV) { 547 DEBUG(dbgs() << "Converting to a declaration: `" << GV.getName() << "\n"); 548 if (Function *F = dyn_cast<Function>(&GV)) { 549 F->deleteBody(); 550 F->clearMetadata(); 551 } else if (GlobalVariable *V = dyn_cast<GlobalVariable>(&GV)) { 552 V->setInitializer(nullptr); 553 V->setLinkage(GlobalValue::ExternalLinkage); 554 V->clearMetadata(); 555 } else 556 // For now we don't resolve or drop aliases. Once we do we'll 557 // need to add support here for creating either a function or 558 // variable declaration, and return the new GlobalValue* for 559 // the caller to use. 560 llvm_unreachable("Expected function or variable"); 561 }; 562 563 auto updateLinkage = [&](GlobalValue &GV) { 564 // See if the global summary analysis computed a new resolved linkage. 565 const auto &GS = DefinedGlobals.find(GV.getGUID()); 566 if (GS == DefinedGlobals.end()) 567 return; 568 auto NewLinkage = GS->second->linkage(); 569 if (NewLinkage == GV.getLinkage()) 570 return; 571 572 // Switch the linkage to weakany if asked for, e.g. we do this for 573 // linker redefined symbols (via --wrap or --defsym). 574 // We record that the visibility should be changed here in `addThinLTO` 575 // as we need access to the resolution vectors for each input file in 576 // order to find which symbols have been redefined. 577 // We may consider reorganizing this code and moving the linkage recording 578 // somewhere else, e.g. in thinLTOResolveWeakForLinkerInIndex. 579 if (NewLinkage == GlobalValue::WeakAnyLinkage) { 580 GV.setLinkage(NewLinkage); 581 return; 582 } 583 584 if (!GlobalValue::isWeakForLinker(GV.getLinkage())) 585 return; 586 // Check for a non-prevailing def that has interposable linkage 587 // (e.g. non-odr weak or linkonce). In that case we can't simply 588 // convert to available_externally, since it would lose the 589 // interposable property and possibly get inlined. Simply drop 590 // the definition in that case. 591 if (GlobalValue::isAvailableExternallyLinkage(NewLinkage) && 592 GlobalValue::isInterposableLinkage(GV.getLinkage())) 593 ConvertToDeclaration(GV); 594 else { 595 DEBUG(dbgs() << "ODR fixing up linkage for `" << GV.getName() << "` from " 596 << GV.getLinkage() << " to " << NewLinkage << "\n"); 597 GV.setLinkage(NewLinkage); 598 } 599 // Remove declarations from comdats, including available_externally 600 // as this is a declaration for the linker, and will be dropped eventually. 601 // It is illegal for comdats to contain declarations. 602 auto *GO = dyn_cast_or_null<GlobalObject>(&GV); 603 if (GO && GO->isDeclarationForLinker() && GO->hasComdat()) 604 GO->setComdat(nullptr); 605 }; 606 607 // Process functions and global now 608 for (auto &GV : TheModule) 609 updateLinkage(GV); 610 for (auto &GV : TheModule.globals()) 611 updateLinkage(GV); 612 for (auto &GV : TheModule.aliases()) 613 updateLinkage(GV); 614 } 615 616 /// Run internalization on \p TheModule based on symmary analysis. 617 void llvm::thinLTOInternalizeModule(Module &TheModule, 618 const GVSummaryMapTy &DefinedGlobals) { 619 // Parse inline ASM and collect the list of symbols that are not defined in 620 // the current module. 621 StringSet<> AsmUndefinedRefs; 622 ModuleSymbolTable::CollectAsmSymbols( 623 TheModule, 624 [&AsmUndefinedRefs](StringRef Name, object::BasicSymbolRef::Flags Flags) { 625 if (Flags & object::BasicSymbolRef::SF_Undefined) 626 AsmUndefinedRefs.insert(Name); 627 }); 628 629 // Declare a callback for the internalize pass that will ask for every 630 // candidate GlobalValue if it can be internalized or not. 631 auto MustPreserveGV = [&](const GlobalValue &GV) -> bool { 632 // Can't be internalized if referenced in inline asm. 633 if (AsmUndefinedRefs.count(GV.getName())) 634 return true; 635 636 // Lookup the linkage recorded in the summaries during global analysis. 637 auto GS = DefinedGlobals.find(GV.getGUID()); 638 if (GS == DefinedGlobals.end()) { 639 // Must have been promoted (possibly conservatively). Find original 640 // name so that we can access the correct summary and see if it can 641 // be internalized again. 642 // FIXME: Eventually we should control promotion instead of promoting 643 // and internalizing again. 644 StringRef OrigName = 645 ModuleSummaryIndex::getOriginalNameBeforePromote(GV.getName()); 646 std::string OrigId = GlobalValue::getGlobalIdentifier( 647 OrigName, GlobalValue::InternalLinkage, 648 TheModule.getSourceFileName()); 649 GS = DefinedGlobals.find(GlobalValue::getGUID(OrigId)); 650 if (GS == DefinedGlobals.end()) { 651 // Also check the original non-promoted non-globalized name. In some 652 // cases a preempted weak value is linked in as a local copy because 653 // it is referenced by an alias (IRLinker::linkGlobalValueProto). 654 // In that case, since it was originally not a local value, it was 655 // recorded in the index using the original name. 656 // FIXME: This may not be needed once PR27866 is fixed. 657 GS = DefinedGlobals.find(GlobalValue::getGUID(OrigName)); 658 assert(GS != DefinedGlobals.end()); 659 } 660 } 661 return !GlobalValue::isLocalLinkage(GS->second->linkage()); 662 }; 663 664 // FIXME: See if we can just internalize directly here via linkage changes 665 // based on the index, rather than invoking internalizeModule. 666 llvm::internalizeModule(TheModule, MustPreserveGV); 667 } 668 669 // Automatically import functions in Module \p DestModule based on the summaries 670 // index. 671 // 672 Expected<bool> FunctionImporter::importFunctions( 673 Module &DestModule, const FunctionImporter::ImportMapTy &ImportList) { 674 DEBUG(dbgs() << "Starting import for Module " 675 << DestModule.getModuleIdentifier() << "\n"); 676 unsigned ImportedCount = 0; 677 678 IRMover Mover(DestModule); 679 // Do the actual import of functions now, one Module at a time 680 std::set<StringRef> ModuleNameOrderedList; 681 for (auto &FunctionsToImportPerModule : ImportList) { 682 ModuleNameOrderedList.insert(FunctionsToImportPerModule.first()); 683 } 684 for (auto &Name : ModuleNameOrderedList) { 685 // Get the module for the import 686 const auto &FunctionsToImportPerModule = ImportList.find(Name); 687 assert(FunctionsToImportPerModule != ImportList.end()); 688 Expected<std::unique_ptr<Module>> SrcModuleOrErr = ModuleLoader(Name); 689 if (!SrcModuleOrErr) 690 return SrcModuleOrErr.takeError(); 691 std::unique_ptr<Module> SrcModule = std::move(*SrcModuleOrErr); 692 assert(&DestModule.getContext() == &SrcModule->getContext() && 693 "Context mismatch"); 694 695 // If modules were created with lazy metadata loading, materialize it 696 // now, before linking it (otherwise this will be a noop). 697 if (Error Err = SrcModule->materializeMetadata()) 698 return std::move(Err); 699 700 auto &ImportGUIDs = FunctionsToImportPerModule->second; 701 // Find the globals to import 702 SetVector<GlobalValue *> GlobalsToImport; 703 for (Function &F : *SrcModule) { 704 if (!F.hasName()) 705 continue; 706 auto GUID = F.getGUID(); 707 auto Import = ImportGUIDs.count(GUID); 708 DEBUG(dbgs() << (Import ? "Is" : "Not") << " importing function " << GUID 709 << " " << F.getName() << " from " 710 << SrcModule->getSourceFileName() << "\n"); 711 if (Import) { 712 if (Error Err = F.materialize()) 713 return std::move(Err); 714 if (EnableImportMetadata) { 715 // Add 'thinlto_src_module' metadata for statistics and debugging. 716 F.setMetadata( 717 "thinlto_src_module", 718 llvm::MDNode::get( 719 DestModule.getContext(), 720 {llvm::MDString::get(DestModule.getContext(), 721 SrcModule->getSourceFileName())})); 722 } 723 GlobalsToImport.insert(&F); 724 } 725 } 726 for (GlobalVariable &GV : SrcModule->globals()) { 727 if (!GV.hasName()) 728 continue; 729 auto GUID = GV.getGUID(); 730 auto Import = ImportGUIDs.count(GUID); 731 DEBUG(dbgs() << (Import ? "Is" : "Not") << " importing global " << GUID 732 << " " << GV.getName() << " from " 733 << SrcModule->getSourceFileName() << "\n"); 734 if (Import) { 735 if (Error Err = GV.materialize()) 736 return std::move(Err); 737 GlobalsToImport.insert(&GV); 738 } 739 } 740 #ifndef NDEBUG 741 for (GlobalAlias &GA : SrcModule->aliases()) { 742 if (!GA.hasName()) 743 continue; 744 auto GUID = GA.getGUID(); 745 assert(!ImportGUIDs.count(GUID) && "Unexpected alias in import list"); 746 DEBUG(dbgs() << "Not importing alias " << GUID 747 << " " << GA.getName() << " from " 748 << SrcModule->getSourceFileName() << "\n"); 749 } 750 #endif 751 752 // Upgrade debug info after we're done materializing all the globals and we 753 // have loaded all the required metadata! 754 UpgradeDebugInfo(*SrcModule); 755 756 // Link in the specified functions. 757 if (renameModuleForThinLTO(*SrcModule, Index, &GlobalsToImport)) 758 return true; 759 760 if (PrintImports) { 761 for (const auto *GV : GlobalsToImport) 762 dbgs() << DestModule.getSourceFileName() << ": Import " << GV->getName() 763 << " from " << SrcModule->getSourceFileName() << "\n"; 764 } 765 766 if (Mover.move(std::move(SrcModule), GlobalsToImport.getArrayRef(), 767 [](GlobalValue &, IRMover::ValueAdder) {}, 768 /*IsPerformingImport=*/true)) 769 report_fatal_error("Function Import: link error"); 770 771 ImportedCount += GlobalsToImport.size(); 772 NumImportedModules++; 773 } 774 775 NumImportedFunctions += ImportedCount; 776 777 DEBUG(dbgs() << "Imported " << ImportedCount << " functions for Module " 778 << DestModule.getModuleIdentifier() << "\n"); 779 return ImportedCount; 780 } 781 782 /// Summary file to use for function importing when using -function-import from 783 /// the command line. 784 static cl::opt<std::string> 785 SummaryFile("summary-file", 786 cl::desc("The summary file to use for function importing.")); 787 788 static bool doImportingForModule(Module &M) { 789 if (SummaryFile.empty()) 790 report_fatal_error("error: -function-import requires -summary-file\n"); 791 Expected<std::unique_ptr<ModuleSummaryIndex>> IndexPtrOrErr = 792 getModuleSummaryIndexForFile(SummaryFile); 793 if (!IndexPtrOrErr) { 794 logAllUnhandledErrors(IndexPtrOrErr.takeError(), errs(), 795 "Error loading file '" + SummaryFile + "': "); 796 return false; 797 } 798 std::unique_ptr<ModuleSummaryIndex> Index = std::move(*IndexPtrOrErr); 799 800 // First step is collecting the import list. 801 FunctionImporter::ImportMapTy ImportList; 802 ComputeCrossModuleImportForModule(M.getModuleIdentifier(), *Index, 803 ImportList); 804 805 // Conservatively mark all internal values as promoted. This interface is 806 // only used when doing importing via the function importing pass. The pass 807 // is only enabled when testing importing via the 'opt' tool, which does 808 // not do the ThinLink that would normally determine what values to promote. 809 for (auto &I : *Index) { 810 for (auto &S : I.second.SummaryList) { 811 if (GlobalValue::isLocalLinkage(S->linkage())) 812 S->setLinkage(GlobalValue::ExternalLinkage); 813 } 814 } 815 816 // Next we need to promote to global scope and rename any local values that 817 // are potentially exported to other modules. 818 if (renameModuleForThinLTO(M, *Index, nullptr)) { 819 errs() << "Error renaming module\n"; 820 return false; 821 } 822 823 // Perform the import now. 824 auto ModuleLoader = [&M](StringRef Identifier) { 825 return loadFile(Identifier, M.getContext()); 826 }; 827 FunctionImporter Importer(*Index, ModuleLoader); 828 Expected<bool> Result = Importer.importFunctions(M, ImportList); 829 830 // FIXME: Probably need to propagate Errors through the pass manager. 831 if (!Result) { 832 logAllUnhandledErrors(Result.takeError(), errs(), 833 "Error importing module: "); 834 return false; 835 } 836 837 return *Result; 838 } 839 840 namespace { 841 /// Pass that performs cross-module function import provided a summary file. 842 class FunctionImportLegacyPass : public ModulePass { 843 public: 844 /// Pass identification, replacement for typeid 845 static char ID; 846 847 /// Specify pass name for debug output 848 StringRef getPassName() const override { return "Function Importing"; } 849 850 explicit FunctionImportLegacyPass() : ModulePass(ID) {} 851 852 bool runOnModule(Module &M) override { 853 if (skipModule(M)) 854 return false; 855 856 return doImportingForModule(M); 857 } 858 }; 859 } // anonymous namespace 860 861 PreservedAnalyses FunctionImportPass::run(Module &M, 862 ModuleAnalysisManager &AM) { 863 if (!doImportingForModule(M)) 864 return PreservedAnalyses::all(); 865 866 return PreservedAnalyses::none(); 867 } 868 869 char FunctionImportLegacyPass::ID = 0; 870 INITIALIZE_PASS(FunctionImportLegacyPass, "function-import", 871 "Summary Based Function Import", false, false) 872 873 namespace llvm { 874 Pass *createFunctionImportPass() { 875 return new FunctionImportLegacyPass(); 876 } 877 } 878