1 //===--- Core.cpp - Core ORC APIs (MaterializationUnit, JITDylib, etc.) ---===// 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 #include "llvm/ExecutionEngine/Orc/Core.h" 10 11 #include "llvm/ADT/STLExtras.h" 12 #include "llvm/Config/llvm-config.h" 13 #include "llvm/ExecutionEngine/Orc/DebugUtils.h" 14 #include "llvm/ExecutionEngine/Orc/Shared/OrcError.h" 15 #include "llvm/Support/FormatVariadic.h" 16 #include "llvm/Support/MSVCErrorWorkarounds.h" 17 #include "llvm/Support/raw_ostream.h" 18 19 #include <condition_variable> 20 #include <future> 21 #include <optional> 22 23 #define DEBUG_TYPE "orc" 24 25 namespace llvm { 26 namespace orc { 27 28 char ResourceTrackerDefunct::ID = 0; 29 char FailedToMaterialize::ID = 0; 30 char SymbolsNotFound::ID = 0; 31 char SymbolsCouldNotBeRemoved::ID = 0; 32 char MissingSymbolDefinitions::ID = 0; 33 char UnexpectedSymbolDefinitions::ID = 0; 34 char UnsatisfiedSymbolDependencies::ID = 0; 35 char MaterializationTask::ID = 0; 36 char LookupTask::ID = 0; 37 38 RegisterDependenciesFunction NoDependenciesToRegister = 39 RegisterDependenciesFunction(); 40 41 void MaterializationUnit::anchor() {} 42 43 ResourceTracker::ResourceTracker(JITDylibSP JD) { 44 assert((reinterpret_cast<uintptr_t>(JD.get()) & 0x1) == 0 && 45 "JITDylib must be two byte aligned"); 46 JD->Retain(); 47 JDAndFlag.store(reinterpret_cast<uintptr_t>(JD.get())); 48 } 49 50 ResourceTracker::~ResourceTracker() { 51 getJITDylib().getExecutionSession().destroyResourceTracker(*this); 52 getJITDylib().Release(); 53 } 54 55 Error ResourceTracker::remove() { 56 return getJITDylib().getExecutionSession().removeResourceTracker(*this); 57 } 58 59 void ResourceTracker::transferTo(ResourceTracker &DstRT) { 60 getJITDylib().getExecutionSession().transferResourceTracker(DstRT, *this); 61 } 62 63 void ResourceTracker::makeDefunct() { 64 uintptr_t Val = JDAndFlag.load(); 65 Val |= 0x1U; 66 JDAndFlag.store(Val); 67 } 68 69 ResourceManager::~ResourceManager() = default; 70 71 ResourceTrackerDefunct::ResourceTrackerDefunct(ResourceTrackerSP RT) 72 : RT(std::move(RT)) {} 73 74 std::error_code ResourceTrackerDefunct::convertToErrorCode() const { 75 return orcError(OrcErrorCode::UnknownORCError); 76 } 77 78 void ResourceTrackerDefunct::log(raw_ostream &OS) const { 79 OS << "Resource tracker " << (void *)RT.get() << " became defunct"; 80 } 81 82 FailedToMaterialize::FailedToMaterialize( 83 std::shared_ptr<SymbolStringPool> SSP, 84 std::shared_ptr<SymbolDependenceMap> Symbols) 85 : SSP(std::move(SSP)), Symbols(std::move(Symbols)) { 86 assert(this->SSP && "String pool cannot be null"); 87 assert(!this->Symbols->empty() && "Can not fail to resolve an empty set"); 88 89 // FIXME: Use a new dep-map type for FailedToMaterialize errors so that we 90 // don't have to manually retain/release. 91 for (auto &[JD, Syms] : *this->Symbols) 92 JD->Retain(); 93 } 94 95 FailedToMaterialize::~FailedToMaterialize() { 96 for (auto &[JD, Syms] : *Symbols) 97 JD->Release(); 98 } 99 100 std::error_code FailedToMaterialize::convertToErrorCode() const { 101 return orcError(OrcErrorCode::UnknownORCError); 102 } 103 104 void FailedToMaterialize::log(raw_ostream &OS) const { 105 OS << "Failed to materialize symbols: " << *Symbols; 106 } 107 108 UnsatisfiedSymbolDependencies::UnsatisfiedSymbolDependencies( 109 std::shared_ptr<SymbolStringPool> SSP, JITDylibSP JD, 110 SymbolNameSet FailedSymbols, SymbolDependenceMap BadDeps, 111 std::string Explanation) 112 : SSP(std::move(SSP)), JD(std::move(JD)), 113 FailedSymbols(std::move(FailedSymbols)), BadDeps(std::move(BadDeps)), 114 Explanation(std::move(Explanation)) {} 115 116 std::error_code UnsatisfiedSymbolDependencies::convertToErrorCode() const { 117 return orcError(OrcErrorCode::UnknownORCError); 118 } 119 120 void UnsatisfiedSymbolDependencies::log(raw_ostream &OS) const { 121 OS << "In " << JD->getName() << ", failed to materialize " << FailedSymbols 122 << ", due to unsatisfied dependencies " << BadDeps; 123 if (!Explanation.empty()) 124 OS << " (" << Explanation << ")"; 125 } 126 127 SymbolsNotFound::SymbolsNotFound(std::shared_ptr<SymbolStringPool> SSP, 128 SymbolNameSet Symbols) 129 : SSP(std::move(SSP)) { 130 for (auto &Sym : Symbols) 131 this->Symbols.push_back(Sym); 132 assert(!this->Symbols.empty() && "Can not fail to resolve an empty set"); 133 } 134 135 SymbolsNotFound::SymbolsNotFound(std::shared_ptr<SymbolStringPool> SSP, 136 SymbolNameVector Symbols) 137 : SSP(std::move(SSP)), Symbols(std::move(Symbols)) { 138 assert(!this->Symbols.empty() && "Can not fail to resolve an empty set"); 139 } 140 141 std::error_code SymbolsNotFound::convertToErrorCode() const { 142 return orcError(OrcErrorCode::UnknownORCError); 143 } 144 145 void SymbolsNotFound::log(raw_ostream &OS) const { 146 OS << "Symbols not found: " << Symbols; 147 } 148 149 SymbolsCouldNotBeRemoved::SymbolsCouldNotBeRemoved( 150 std::shared_ptr<SymbolStringPool> SSP, SymbolNameSet Symbols) 151 : SSP(std::move(SSP)), Symbols(std::move(Symbols)) { 152 assert(!this->Symbols.empty() && "Can not fail to resolve an empty set"); 153 } 154 155 std::error_code SymbolsCouldNotBeRemoved::convertToErrorCode() const { 156 return orcError(OrcErrorCode::UnknownORCError); 157 } 158 159 void SymbolsCouldNotBeRemoved::log(raw_ostream &OS) const { 160 OS << "Symbols could not be removed: " << Symbols; 161 } 162 163 std::error_code MissingSymbolDefinitions::convertToErrorCode() const { 164 return orcError(OrcErrorCode::MissingSymbolDefinitions); 165 } 166 167 void MissingSymbolDefinitions::log(raw_ostream &OS) const { 168 OS << "Missing definitions in module " << ModuleName 169 << ": " << Symbols; 170 } 171 172 std::error_code UnexpectedSymbolDefinitions::convertToErrorCode() const { 173 return orcError(OrcErrorCode::UnexpectedSymbolDefinitions); 174 } 175 176 void UnexpectedSymbolDefinitions::log(raw_ostream &OS) const { 177 OS << "Unexpected definitions in module " << ModuleName 178 << ": " << Symbols; 179 } 180 181 void SymbolInstance::lookupAsync(LookupAsyncOnCompleteFn OnComplete) const { 182 JD->getExecutionSession().lookup( 183 LookupKind::Static, {{JD.get(), JITDylibLookupFlags::MatchAllSymbols}}, 184 SymbolLookupSet(Name), SymbolState::Ready, 185 [OnComplete = std::move(OnComplete) 186 #ifndef NDEBUG 187 , 188 Name = this->Name // Captured for the assert below only. 189 #endif // NDEBUG 190 ](Expected<SymbolMap> Result) mutable { 191 if (Result) { 192 assert(Result->size() == 1 && "Unexpected number of results"); 193 assert(Result->count(Name) && 194 "Result does not contain expected symbol"); 195 OnComplete(Result->begin()->second); 196 } else 197 OnComplete(Result.takeError()); 198 }, 199 NoDependenciesToRegister); 200 } 201 202 AsynchronousSymbolQuery::AsynchronousSymbolQuery( 203 const SymbolLookupSet &Symbols, SymbolState RequiredState, 204 SymbolsResolvedCallback NotifyComplete) 205 : NotifyComplete(std::move(NotifyComplete)), RequiredState(RequiredState) { 206 assert(RequiredState >= SymbolState::Resolved && 207 "Cannot query for a symbols that have not reached the resolve state " 208 "yet"); 209 210 OutstandingSymbolsCount = Symbols.size(); 211 212 for (auto &[Name, Flags] : Symbols) 213 ResolvedSymbols[Name] = ExecutorSymbolDef(); 214 } 215 216 void AsynchronousSymbolQuery::notifySymbolMetRequiredState( 217 const SymbolStringPtr &Name, ExecutorSymbolDef Sym) { 218 auto I = ResolvedSymbols.find(Name); 219 assert(I != ResolvedSymbols.end() && 220 "Resolving symbol outside the requested set"); 221 assert(I->second == ExecutorSymbolDef() && 222 "Redundantly resolving symbol Name"); 223 224 // If this is a materialization-side-effects-only symbol then drop it, 225 // otherwise update its map entry with its resolved address. 226 if (Sym.getFlags().hasMaterializationSideEffectsOnly()) 227 ResolvedSymbols.erase(I); 228 else 229 I->second = std::move(Sym); 230 --OutstandingSymbolsCount; 231 } 232 233 void AsynchronousSymbolQuery::handleComplete(ExecutionSession &ES) { 234 assert(OutstandingSymbolsCount == 0 && 235 "Symbols remain, handleComplete called prematurely"); 236 237 class RunQueryCompleteTask : public Task { 238 public: 239 RunQueryCompleteTask(SymbolMap ResolvedSymbols, 240 SymbolsResolvedCallback NotifyComplete) 241 : ResolvedSymbols(std::move(ResolvedSymbols)), 242 NotifyComplete(std::move(NotifyComplete)) {} 243 void printDescription(raw_ostream &OS) override { 244 OS << "Execute query complete callback for " << ResolvedSymbols; 245 } 246 void run() override { NotifyComplete(std::move(ResolvedSymbols)); } 247 248 private: 249 SymbolMap ResolvedSymbols; 250 SymbolsResolvedCallback NotifyComplete; 251 }; 252 253 auto T = std::make_unique<RunQueryCompleteTask>(std::move(ResolvedSymbols), 254 std::move(NotifyComplete)); 255 NotifyComplete = SymbolsResolvedCallback(); 256 ES.dispatchTask(std::move(T)); 257 } 258 259 void AsynchronousSymbolQuery::handleFailed(Error Err) { 260 assert(QueryRegistrations.empty() && ResolvedSymbols.empty() && 261 OutstandingSymbolsCount == 0 && 262 "Query should already have been abandoned"); 263 NotifyComplete(std::move(Err)); 264 NotifyComplete = SymbolsResolvedCallback(); 265 } 266 267 void AsynchronousSymbolQuery::addQueryDependence(JITDylib &JD, 268 SymbolStringPtr Name) { 269 bool Added = QueryRegistrations[&JD].insert(std::move(Name)).second; 270 (void)Added; 271 assert(Added && "Duplicate dependence notification?"); 272 } 273 274 void AsynchronousSymbolQuery::removeQueryDependence( 275 JITDylib &JD, const SymbolStringPtr &Name) { 276 auto QRI = QueryRegistrations.find(&JD); 277 assert(QRI != QueryRegistrations.end() && 278 "No dependencies registered for JD"); 279 assert(QRI->second.count(Name) && "No dependency on Name in JD"); 280 QRI->second.erase(Name); 281 if (QRI->second.empty()) 282 QueryRegistrations.erase(QRI); 283 } 284 285 void AsynchronousSymbolQuery::dropSymbol(const SymbolStringPtr &Name) { 286 auto I = ResolvedSymbols.find(Name); 287 assert(I != ResolvedSymbols.end() && 288 "Redundant removal of weakly-referenced symbol"); 289 ResolvedSymbols.erase(I); 290 --OutstandingSymbolsCount; 291 } 292 293 void AsynchronousSymbolQuery::detach() { 294 ResolvedSymbols.clear(); 295 OutstandingSymbolsCount = 0; 296 for (auto &[JD, Syms] : QueryRegistrations) 297 JD->detachQueryHelper(*this, Syms); 298 QueryRegistrations.clear(); 299 } 300 301 ReExportsMaterializationUnit::ReExportsMaterializationUnit( 302 JITDylib *SourceJD, JITDylibLookupFlags SourceJDLookupFlags, 303 SymbolAliasMap Aliases) 304 : MaterializationUnit(extractFlags(Aliases)), SourceJD(SourceJD), 305 SourceJDLookupFlags(SourceJDLookupFlags), Aliases(std::move(Aliases)) {} 306 307 StringRef ReExportsMaterializationUnit::getName() const { 308 return "<Reexports>"; 309 } 310 311 void ReExportsMaterializationUnit::materialize( 312 std::unique_ptr<MaterializationResponsibility> R) { 313 314 auto &ES = R->getTargetJITDylib().getExecutionSession(); 315 JITDylib &TgtJD = R->getTargetJITDylib(); 316 JITDylib &SrcJD = SourceJD ? *SourceJD : TgtJD; 317 318 // Find the set of requested aliases and aliasees. Return any unrequested 319 // aliases back to the JITDylib so as to not prematurely materialize any 320 // aliasees. 321 auto RequestedSymbols = R->getRequestedSymbols(); 322 SymbolAliasMap RequestedAliases; 323 324 for (auto &Name : RequestedSymbols) { 325 auto I = Aliases.find(Name); 326 assert(I != Aliases.end() && "Symbol not found in aliases map?"); 327 RequestedAliases[Name] = std::move(I->second); 328 Aliases.erase(I); 329 } 330 331 LLVM_DEBUG({ 332 ES.runSessionLocked([&]() { 333 dbgs() << "materializing reexports: target = " << TgtJD.getName() 334 << ", source = " << SrcJD.getName() << " " << RequestedAliases 335 << "\n"; 336 }); 337 }); 338 339 if (!Aliases.empty()) { 340 auto Err = SourceJD ? R->replace(reexports(*SourceJD, std::move(Aliases), 341 SourceJDLookupFlags)) 342 : R->replace(symbolAliases(std::move(Aliases))); 343 344 if (Err) { 345 // FIXME: Should this be reported / treated as failure to materialize? 346 // Or should this be treated as a sanctioned bailing-out? 347 ES.reportError(std::move(Err)); 348 R->failMaterialization(); 349 return; 350 } 351 } 352 353 // The OnResolveInfo struct will hold the aliases and responsibility for each 354 // query in the list. 355 struct OnResolveInfo { 356 OnResolveInfo(std::unique_ptr<MaterializationResponsibility> R, 357 SymbolAliasMap Aliases) 358 : R(std::move(R)), Aliases(std::move(Aliases)) {} 359 360 std::unique_ptr<MaterializationResponsibility> R; 361 SymbolAliasMap Aliases; 362 std::vector<SymbolDependenceGroup> SDGs; 363 }; 364 365 // Build a list of queries to issue. In each round we build a query for the 366 // largest set of aliases that we can resolve without encountering a chain of 367 // aliases (e.g. Foo -> Bar, Bar -> Baz). Such a chain would deadlock as the 368 // query would be waiting on a symbol that it itself had to resolve. Creating 369 // a new query for each link in such a chain eliminates the possibility of 370 // deadlock. In practice chains are likely to be rare, and this algorithm will 371 // usually result in a single query to issue. 372 373 std::vector<std::pair<SymbolLookupSet, std::shared_ptr<OnResolveInfo>>> 374 QueryInfos; 375 while (!RequestedAliases.empty()) { 376 SymbolNameSet ResponsibilitySymbols; 377 SymbolLookupSet QuerySymbols; 378 SymbolAliasMap QueryAliases; 379 380 // Collect as many aliases as we can without including a chain. 381 for (auto &KV : RequestedAliases) { 382 // Chain detected. Skip this symbol for this round. 383 if (&SrcJD == &TgtJD && (QueryAliases.count(KV.second.Aliasee) || 384 RequestedAliases.count(KV.second.Aliasee))) 385 continue; 386 387 ResponsibilitySymbols.insert(KV.first); 388 QuerySymbols.add(KV.second.Aliasee, 389 KV.second.AliasFlags.hasMaterializationSideEffectsOnly() 390 ? SymbolLookupFlags::WeaklyReferencedSymbol 391 : SymbolLookupFlags::RequiredSymbol); 392 QueryAliases[KV.first] = std::move(KV.second); 393 } 394 395 // Remove the aliases collected this round from the RequestedAliases map. 396 for (auto &KV : QueryAliases) 397 RequestedAliases.erase(KV.first); 398 399 assert(!QuerySymbols.empty() && "Alias cycle detected!"); 400 401 auto NewR = R->delegate(ResponsibilitySymbols); 402 if (!NewR) { 403 ES.reportError(NewR.takeError()); 404 R->failMaterialization(); 405 return; 406 } 407 408 auto QueryInfo = std::make_shared<OnResolveInfo>(std::move(*NewR), 409 std::move(QueryAliases)); 410 QueryInfos.push_back( 411 make_pair(std::move(QuerySymbols), std::move(QueryInfo))); 412 } 413 414 // Issue the queries. 415 while (!QueryInfos.empty()) { 416 auto QuerySymbols = std::move(QueryInfos.back().first); 417 auto QueryInfo = std::move(QueryInfos.back().second); 418 419 QueryInfos.pop_back(); 420 421 auto RegisterDependencies = [QueryInfo, 422 &SrcJD](const SymbolDependenceMap &Deps) { 423 // If there were no materializing symbols, just bail out. 424 if (Deps.empty()) 425 return; 426 427 // Otherwise the only deps should be on SrcJD. 428 assert(Deps.size() == 1 && Deps.count(&SrcJD) && 429 "Unexpected dependencies for reexports"); 430 431 auto &SrcJDDeps = Deps.find(&SrcJD)->second; 432 433 for (auto &[Alias, AliasInfo] : QueryInfo->Aliases) 434 if (SrcJDDeps.count(AliasInfo.Aliasee)) 435 QueryInfo->SDGs.push_back({{Alias}, {{&SrcJD, {AliasInfo.Aliasee}}}}); 436 }; 437 438 auto OnComplete = [QueryInfo](Expected<SymbolMap> Result) { 439 auto &ES = QueryInfo->R->getTargetJITDylib().getExecutionSession(); 440 if (Result) { 441 SymbolMap ResolutionMap; 442 for (auto &KV : QueryInfo->Aliases) { 443 assert((KV.second.AliasFlags.hasMaterializationSideEffectsOnly() || 444 Result->count(KV.second.Aliasee)) && 445 "Result map missing entry?"); 446 // Don't try to resolve materialization-side-effects-only symbols. 447 if (KV.second.AliasFlags.hasMaterializationSideEffectsOnly()) 448 continue; 449 450 ResolutionMap[KV.first] = {(*Result)[KV.second.Aliasee].getAddress(), 451 KV.second.AliasFlags}; 452 } 453 if (auto Err = QueryInfo->R->notifyResolved(ResolutionMap)) { 454 ES.reportError(std::move(Err)); 455 QueryInfo->R->failMaterialization(); 456 return; 457 } 458 if (auto Err = QueryInfo->R->notifyEmitted(QueryInfo->SDGs)) { 459 ES.reportError(std::move(Err)); 460 QueryInfo->R->failMaterialization(); 461 return; 462 } 463 } else { 464 ES.reportError(Result.takeError()); 465 QueryInfo->R->failMaterialization(); 466 } 467 }; 468 469 ES.lookup(LookupKind::Static, 470 JITDylibSearchOrder({{&SrcJD, SourceJDLookupFlags}}), 471 QuerySymbols, SymbolState::Resolved, std::move(OnComplete), 472 std::move(RegisterDependencies)); 473 } 474 } 475 476 void ReExportsMaterializationUnit::discard(const JITDylib &JD, 477 const SymbolStringPtr &Name) { 478 assert(Aliases.count(Name) && 479 "Symbol not covered by this MaterializationUnit"); 480 Aliases.erase(Name); 481 } 482 483 MaterializationUnit::Interface 484 ReExportsMaterializationUnit::extractFlags(const SymbolAliasMap &Aliases) { 485 SymbolFlagsMap SymbolFlags; 486 for (auto &KV : Aliases) 487 SymbolFlags[KV.first] = KV.second.AliasFlags; 488 489 return MaterializationUnit::Interface(std::move(SymbolFlags), nullptr); 490 } 491 492 Expected<SymbolAliasMap> buildSimpleReexportsAliasMap(JITDylib &SourceJD, 493 SymbolNameSet Symbols) { 494 SymbolLookupSet LookupSet(Symbols); 495 auto Flags = SourceJD.getExecutionSession().lookupFlags( 496 LookupKind::Static, {{&SourceJD, JITDylibLookupFlags::MatchAllSymbols}}, 497 SymbolLookupSet(std::move(Symbols))); 498 499 if (!Flags) 500 return Flags.takeError(); 501 502 SymbolAliasMap Result; 503 for (auto &Name : Symbols) { 504 assert(Flags->count(Name) && "Missing entry in flags map"); 505 Result[Name] = SymbolAliasMapEntry(Name, (*Flags)[Name]); 506 } 507 508 return Result; 509 } 510 511 class InProgressLookupState { 512 public: 513 // FIXME: Reduce the number of SymbolStringPtrs here. See 514 // https://github.com/llvm/llvm-project/issues/55576. 515 516 InProgressLookupState(LookupKind K, JITDylibSearchOrder SearchOrder, 517 SymbolLookupSet LookupSet, SymbolState RequiredState) 518 : K(K), SearchOrder(std::move(SearchOrder)), 519 LookupSet(std::move(LookupSet)), RequiredState(RequiredState) { 520 DefGeneratorCandidates = this->LookupSet; 521 } 522 virtual ~InProgressLookupState() = default; 523 virtual void complete(std::unique_ptr<InProgressLookupState> IPLS) = 0; 524 virtual void fail(Error Err) = 0; 525 526 LookupKind K; 527 JITDylibSearchOrder SearchOrder; 528 SymbolLookupSet LookupSet; 529 SymbolState RequiredState; 530 531 size_t CurSearchOrderIndex = 0; 532 bool NewJITDylib = true; 533 SymbolLookupSet DefGeneratorCandidates; 534 SymbolLookupSet DefGeneratorNonCandidates; 535 536 enum { 537 NotInGenerator, // Not currently using a generator. 538 ResumedForGenerator, // Resumed after being auto-suspended before generator. 539 InGenerator // Currently using generator. 540 } GenState = NotInGenerator; 541 std::vector<std::weak_ptr<DefinitionGenerator>> CurDefGeneratorStack; 542 }; 543 544 class InProgressLookupFlagsState : public InProgressLookupState { 545 public: 546 InProgressLookupFlagsState( 547 LookupKind K, JITDylibSearchOrder SearchOrder, SymbolLookupSet LookupSet, 548 unique_function<void(Expected<SymbolFlagsMap>)> OnComplete) 549 : InProgressLookupState(K, std::move(SearchOrder), std::move(LookupSet), 550 SymbolState::NeverSearched), 551 OnComplete(std::move(OnComplete)) {} 552 553 void complete(std::unique_ptr<InProgressLookupState> IPLS) override { 554 auto &ES = SearchOrder.front().first->getExecutionSession(); 555 ES.OL_completeLookupFlags(std::move(IPLS), std::move(OnComplete)); 556 } 557 558 void fail(Error Err) override { OnComplete(std::move(Err)); } 559 560 private: 561 unique_function<void(Expected<SymbolFlagsMap>)> OnComplete; 562 }; 563 564 class InProgressFullLookupState : public InProgressLookupState { 565 public: 566 InProgressFullLookupState(LookupKind K, JITDylibSearchOrder SearchOrder, 567 SymbolLookupSet LookupSet, 568 SymbolState RequiredState, 569 std::shared_ptr<AsynchronousSymbolQuery> Q, 570 RegisterDependenciesFunction RegisterDependencies) 571 : InProgressLookupState(K, std::move(SearchOrder), std::move(LookupSet), 572 RequiredState), 573 Q(std::move(Q)), RegisterDependencies(std::move(RegisterDependencies)) { 574 } 575 576 void complete(std::unique_ptr<InProgressLookupState> IPLS) override { 577 auto &ES = SearchOrder.front().first->getExecutionSession(); 578 ES.OL_completeLookup(std::move(IPLS), std::move(Q), 579 std::move(RegisterDependencies)); 580 } 581 582 void fail(Error Err) override { 583 Q->detach(); 584 Q->handleFailed(std::move(Err)); 585 } 586 587 private: 588 std::shared_ptr<AsynchronousSymbolQuery> Q; 589 RegisterDependenciesFunction RegisterDependencies; 590 }; 591 592 ReexportsGenerator::ReexportsGenerator(JITDylib &SourceJD, 593 JITDylibLookupFlags SourceJDLookupFlags, 594 SymbolPredicate Allow) 595 : SourceJD(SourceJD), SourceJDLookupFlags(SourceJDLookupFlags), 596 Allow(std::move(Allow)) {} 597 598 Error ReexportsGenerator::tryToGenerate(LookupState &LS, LookupKind K, 599 JITDylib &JD, 600 JITDylibLookupFlags JDLookupFlags, 601 const SymbolLookupSet &LookupSet) { 602 assert(&JD != &SourceJD && "Cannot re-export from the same dylib"); 603 604 // Use lookupFlags to find the subset of symbols that match our lookup. 605 auto Flags = JD.getExecutionSession().lookupFlags( 606 K, {{&SourceJD, JDLookupFlags}}, LookupSet); 607 if (!Flags) 608 return Flags.takeError(); 609 610 // Create an alias map. 611 orc::SymbolAliasMap AliasMap; 612 for (auto &KV : *Flags) 613 if (!Allow || Allow(KV.first)) 614 AliasMap[KV.first] = SymbolAliasMapEntry(KV.first, KV.second); 615 616 if (AliasMap.empty()) 617 return Error::success(); 618 619 // Define the re-exports. 620 return JD.define(reexports(SourceJD, AliasMap, SourceJDLookupFlags)); 621 } 622 623 LookupState::LookupState(std::unique_ptr<InProgressLookupState> IPLS) 624 : IPLS(std::move(IPLS)) {} 625 626 void LookupState::reset(InProgressLookupState *IPLS) { this->IPLS.reset(IPLS); } 627 628 LookupState::LookupState() = default; 629 LookupState::LookupState(LookupState &&) = default; 630 LookupState &LookupState::operator=(LookupState &&) = default; 631 LookupState::~LookupState() = default; 632 633 void LookupState::continueLookup(Error Err) { 634 assert(IPLS && "Cannot call continueLookup on empty LookupState"); 635 auto &ES = IPLS->SearchOrder.begin()->first->getExecutionSession(); 636 ES.OL_applyQueryPhase1(std::move(IPLS), std::move(Err)); 637 } 638 639 DefinitionGenerator::~DefinitionGenerator() { 640 std::deque<LookupState> LookupsToFail; 641 { 642 std::lock_guard<std::mutex> Lock(M); 643 std::swap(PendingLookups, LookupsToFail); 644 InUse = false; 645 } 646 647 for (auto &LS : LookupsToFail) 648 LS.continueLookup(make_error<StringError>( 649 "Query waiting on DefinitionGenerator that was destroyed", 650 inconvertibleErrorCode())); 651 } 652 653 JITDylib::~JITDylib() { 654 LLVM_DEBUG(dbgs() << "Destroying JITDylib " << getName() << "\n"); 655 } 656 657 Error JITDylib::clear() { 658 std::vector<ResourceTrackerSP> TrackersToRemove; 659 ES.runSessionLocked([&]() { 660 assert(State != Closed && "JD is defunct"); 661 for (auto &KV : TrackerSymbols) 662 TrackersToRemove.push_back(KV.first); 663 TrackersToRemove.push_back(getDefaultResourceTracker()); 664 }); 665 666 Error Err = Error::success(); 667 for (auto &RT : TrackersToRemove) 668 Err = joinErrors(std::move(Err), RT->remove()); 669 return Err; 670 } 671 672 ResourceTrackerSP JITDylib::getDefaultResourceTracker() { 673 return ES.runSessionLocked([this] { 674 assert(State != Closed && "JD is defunct"); 675 if (!DefaultTracker) 676 DefaultTracker = new ResourceTracker(this); 677 return DefaultTracker; 678 }); 679 } 680 681 ResourceTrackerSP JITDylib::createResourceTracker() { 682 return ES.runSessionLocked([this] { 683 assert(State == Open && "JD is defunct"); 684 ResourceTrackerSP RT = new ResourceTracker(this); 685 return RT; 686 }); 687 } 688 689 void JITDylib::removeGenerator(DefinitionGenerator &G) { 690 // DefGenerator moved into TmpDG to ensure that it's destroyed outside the 691 // session lock (since it may have to send errors to pending queries). 692 std::shared_ptr<DefinitionGenerator> TmpDG; 693 694 ES.runSessionLocked([&] { 695 assert(State == Open && "JD is defunct"); 696 auto I = llvm::find_if(DefGenerators, 697 [&](const std::shared_ptr<DefinitionGenerator> &H) { 698 return H.get() == &G; 699 }); 700 assert(I != DefGenerators.end() && "Generator not found"); 701 TmpDG = std::move(*I); 702 DefGenerators.erase(I); 703 }); 704 } 705 706 Expected<SymbolFlagsMap> 707 JITDylib::defineMaterializing(MaterializationResponsibility &FromMR, 708 SymbolFlagsMap SymbolFlags) { 709 710 return ES.runSessionLocked([&]() -> Expected<SymbolFlagsMap> { 711 if (FromMR.RT->isDefunct()) 712 return make_error<ResourceTrackerDefunct>(FromMR.RT); 713 714 std::vector<NonOwningSymbolStringPtr> AddedSyms; 715 std::vector<NonOwningSymbolStringPtr> RejectedWeakDefs; 716 717 for (auto SFItr = SymbolFlags.begin(), SFEnd = SymbolFlags.end(); 718 SFItr != SFEnd; ++SFItr) { 719 720 auto &Name = SFItr->first; 721 auto &Flags = SFItr->second; 722 723 auto EntryItr = Symbols.find(Name); 724 725 // If the entry already exists... 726 if (EntryItr != Symbols.end()) { 727 728 // If this is a strong definition then error out. 729 if (!Flags.isWeak()) { 730 // Remove any symbols already added. 731 for (auto &S : AddedSyms) 732 Symbols.erase(Symbols.find_as(S)); 733 734 // FIXME: Return all duplicates. 735 return make_error<DuplicateDefinition>(std::string(*Name)); 736 } 737 738 // Otherwise just make a note to discard this symbol after the loop. 739 RejectedWeakDefs.push_back(NonOwningSymbolStringPtr(Name)); 740 continue; 741 } else 742 EntryItr = 743 Symbols.insert(std::make_pair(Name, SymbolTableEntry(Flags))).first; 744 745 AddedSyms.push_back(NonOwningSymbolStringPtr(Name)); 746 EntryItr->second.setState(SymbolState::Materializing); 747 } 748 749 // Remove any rejected weak definitions from the SymbolFlags map. 750 while (!RejectedWeakDefs.empty()) { 751 SymbolFlags.erase(SymbolFlags.find_as(RejectedWeakDefs.back())); 752 RejectedWeakDefs.pop_back(); 753 } 754 755 return SymbolFlags; 756 }); 757 } 758 759 Error JITDylib::replace(MaterializationResponsibility &FromMR, 760 std::unique_ptr<MaterializationUnit> MU) { 761 assert(MU != nullptr && "Can not replace with a null MaterializationUnit"); 762 std::unique_ptr<MaterializationUnit> MustRunMU; 763 std::unique_ptr<MaterializationResponsibility> MustRunMR; 764 765 auto Err = 766 ES.runSessionLocked([&, this]() -> Error { 767 if (FromMR.RT->isDefunct()) 768 return make_error<ResourceTrackerDefunct>(std::move(FromMR.RT)); 769 770 #ifndef NDEBUG 771 for (auto &KV : MU->getSymbols()) { 772 auto SymI = Symbols.find(KV.first); 773 assert(SymI != Symbols.end() && "Replacing unknown symbol"); 774 assert(SymI->second.getState() == SymbolState::Materializing && 775 "Can not replace a symbol that ha is not materializing"); 776 assert(!SymI->second.hasMaterializerAttached() && 777 "Symbol should not have materializer attached already"); 778 assert(UnmaterializedInfos.count(KV.first) == 0 && 779 "Symbol being replaced should have no UnmaterializedInfo"); 780 } 781 #endif // NDEBUG 782 783 // If the tracker is defunct we need to bail out immediately. 784 785 // If any symbol has pending queries against it then we need to 786 // materialize MU immediately. 787 for (auto &KV : MU->getSymbols()) { 788 auto MII = MaterializingInfos.find(KV.first); 789 if (MII != MaterializingInfos.end()) { 790 if (MII->second.hasQueriesPending()) { 791 MustRunMR = ES.createMaterializationResponsibility( 792 *FromMR.RT, std::move(MU->SymbolFlags), 793 std::move(MU->InitSymbol)); 794 MustRunMU = std::move(MU); 795 return Error::success(); 796 } 797 } 798 } 799 800 // Otherwise, make MU responsible for all the symbols. 801 auto UMI = std::make_shared<UnmaterializedInfo>(std::move(MU), 802 FromMR.RT.get()); 803 for (auto &KV : UMI->MU->getSymbols()) { 804 auto SymI = Symbols.find(KV.first); 805 assert(SymI->second.getState() == SymbolState::Materializing && 806 "Can not replace a symbol that is not materializing"); 807 assert(!SymI->second.hasMaterializerAttached() && 808 "Can not replace a symbol that has a materializer attached"); 809 assert(UnmaterializedInfos.count(KV.first) == 0 && 810 "Unexpected materializer entry in map"); 811 SymI->second.setAddress(SymI->second.getAddress()); 812 SymI->second.setMaterializerAttached(true); 813 814 auto &UMIEntry = UnmaterializedInfos[KV.first]; 815 assert((!UMIEntry || !UMIEntry->MU) && 816 "Replacing symbol with materializer still attached"); 817 UMIEntry = UMI; 818 } 819 820 return Error::success(); 821 }); 822 823 if (Err) 824 return Err; 825 826 if (MustRunMU) { 827 assert(MustRunMR && "MustRunMU set implies MustRunMR set"); 828 ES.dispatchTask(std::make_unique<MaterializationTask>( 829 std::move(MustRunMU), std::move(MustRunMR))); 830 } else { 831 assert(!MustRunMR && "MustRunMU unset implies MustRunMR unset"); 832 } 833 834 return Error::success(); 835 } 836 837 Expected<std::unique_ptr<MaterializationResponsibility>> 838 JITDylib::delegate(MaterializationResponsibility &FromMR, 839 SymbolFlagsMap SymbolFlags, SymbolStringPtr InitSymbol) { 840 841 return ES.runSessionLocked( 842 [&]() -> Expected<std::unique_ptr<MaterializationResponsibility>> { 843 if (FromMR.RT->isDefunct()) 844 return make_error<ResourceTrackerDefunct>(std::move(FromMR.RT)); 845 846 return ES.createMaterializationResponsibility( 847 *FromMR.RT, std::move(SymbolFlags), std::move(InitSymbol)); 848 }); 849 } 850 851 SymbolNameSet 852 JITDylib::getRequestedSymbols(const SymbolFlagsMap &SymbolFlags) const { 853 return ES.runSessionLocked([&]() { 854 SymbolNameSet RequestedSymbols; 855 856 for (auto &KV : SymbolFlags) { 857 assert(Symbols.count(KV.first) && "JITDylib does not cover this symbol?"); 858 assert(Symbols.find(KV.first)->second.getState() != 859 SymbolState::NeverSearched && 860 Symbols.find(KV.first)->second.getState() != SymbolState::Ready && 861 "getRequestedSymbols can only be called for symbols that have " 862 "started materializing"); 863 auto I = MaterializingInfos.find(KV.first); 864 if (I == MaterializingInfos.end()) 865 continue; 866 867 if (I->second.hasQueriesPending()) 868 RequestedSymbols.insert(KV.first); 869 } 870 871 return RequestedSymbols; 872 }); 873 } 874 875 Error JITDylib::resolve(MaterializationResponsibility &MR, 876 const SymbolMap &Resolved) { 877 AsynchronousSymbolQuerySet CompletedQueries; 878 879 if (auto Err = ES.runSessionLocked([&, this]() -> Error { 880 if (MR.RT->isDefunct()) 881 return make_error<ResourceTrackerDefunct>(MR.RT); 882 883 if (State != Open) 884 return make_error<StringError>("JITDylib " + getName() + 885 " is defunct", 886 inconvertibleErrorCode()); 887 888 struct WorklistEntry { 889 SymbolTable::iterator SymI; 890 ExecutorSymbolDef ResolvedSym; 891 }; 892 893 SymbolNameSet SymbolsInErrorState; 894 std::vector<WorklistEntry> Worklist; 895 Worklist.reserve(Resolved.size()); 896 897 // Build worklist and check for any symbols in the error state. 898 for (const auto &KV : Resolved) { 899 900 assert(!KV.second.getFlags().hasError() && 901 "Resolution result can not have error flag set"); 902 903 auto SymI = Symbols.find(KV.first); 904 905 assert(SymI != Symbols.end() && "Symbol not found"); 906 assert(!SymI->second.hasMaterializerAttached() && 907 "Resolving symbol with materializer attached?"); 908 assert(SymI->second.getState() == SymbolState::Materializing && 909 "Symbol should be materializing"); 910 assert(SymI->second.getAddress() == ExecutorAddr() && 911 "Symbol has already been resolved"); 912 913 if (SymI->second.getFlags().hasError()) 914 SymbolsInErrorState.insert(KV.first); 915 else { 916 if (SymI->second.getFlags() & JITSymbolFlags::Common) { 917 [[maybe_unused]] auto WeakOrCommon = 918 JITSymbolFlags::Weak | JITSymbolFlags::Common; 919 assert((KV.second.getFlags() & WeakOrCommon) && 920 "Common symbols must be resolved as common or weak"); 921 assert((KV.second.getFlags() & ~WeakOrCommon) == 922 (SymI->second.getFlags() & ~JITSymbolFlags::Common) && 923 "Resolving symbol with incorrect flags"); 924 925 } else 926 assert(KV.second.getFlags() == SymI->second.getFlags() && 927 "Resolved flags should match the declared flags"); 928 929 Worklist.push_back( 930 {SymI, {KV.second.getAddress(), SymI->second.getFlags()}}); 931 } 932 } 933 934 // If any symbols were in the error state then bail out. 935 if (!SymbolsInErrorState.empty()) { 936 auto FailedSymbolsDepMap = std::make_shared<SymbolDependenceMap>(); 937 (*FailedSymbolsDepMap)[this] = std::move(SymbolsInErrorState); 938 return make_error<FailedToMaterialize>( 939 getExecutionSession().getSymbolStringPool(), 940 std::move(FailedSymbolsDepMap)); 941 } 942 943 while (!Worklist.empty()) { 944 auto SymI = Worklist.back().SymI; 945 auto ResolvedSym = Worklist.back().ResolvedSym; 946 Worklist.pop_back(); 947 948 auto &Name = SymI->first; 949 950 // Resolved symbols can not be weak: discard the weak flag. 951 JITSymbolFlags ResolvedFlags = ResolvedSym.getFlags(); 952 SymI->second.setAddress(ResolvedSym.getAddress()); 953 SymI->second.setFlags(ResolvedFlags); 954 SymI->second.setState(SymbolState::Resolved); 955 956 auto MII = MaterializingInfos.find(Name); 957 if (MII == MaterializingInfos.end()) 958 continue; 959 960 auto &MI = MII->second; 961 for (auto &Q : MI.takeQueriesMeeting(SymbolState::Resolved)) { 962 Q->notifySymbolMetRequiredState(Name, ResolvedSym); 963 if (Q->isComplete()) 964 CompletedQueries.insert(std::move(Q)); 965 } 966 } 967 968 return Error::success(); 969 })) 970 return Err; 971 972 // Otherwise notify all the completed queries. 973 for (auto &Q : CompletedQueries) { 974 assert(Q->isComplete() && "Q not completed"); 975 Q->handleComplete(ES); 976 } 977 978 return Error::success(); 979 } 980 981 void JITDylib::unlinkMaterializationResponsibility( 982 MaterializationResponsibility &MR) { 983 ES.runSessionLocked([&]() { 984 auto I = TrackerMRs.find(MR.RT.get()); 985 assert(I != TrackerMRs.end() && "No MRs in TrackerMRs list for RT"); 986 assert(I->second.count(&MR) && "MR not in TrackerMRs list for RT"); 987 I->second.erase(&MR); 988 if (I->second.empty()) 989 TrackerMRs.erase(MR.RT.get()); 990 }); 991 } 992 993 void JITDylib::shrinkMaterializationInfoMemory() { 994 // DenseMap::erase never shrinks its storage; use clear to heuristically free 995 // memory since we may have long-lived JDs after linking is done. 996 997 if (UnmaterializedInfos.empty()) 998 UnmaterializedInfos.clear(); 999 1000 if (MaterializingInfos.empty()) 1001 MaterializingInfos.clear(); 1002 } 1003 1004 void JITDylib::setLinkOrder(JITDylibSearchOrder NewLinkOrder, 1005 bool LinkAgainstThisJITDylibFirst) { 1006 ES.runSessionLocked([&]() { 1007 assert(State == Open && "JD is defunct"); 1008 if (LinkAgainstThisJITDylibFirst) { 1009 LinkOrder.clear(); 1010 if (NewLinkOrder.empty() || NewLinkOrder.front().first != this) 1011 LinkOrder.push_back( 1012 std::make_pair(this, JITDylibLookupFlags::MatchAllSymbols)); 1013 llvm::append_range(LinkOrder, NewLinkOrder); 1014 } else 1015 LinkOrder = std::move(NewLinkOrder); 1016 }); 1017 } 1018 1019 void JITDylib::addToLinkOrder(const JITDylibSearchOrder &NewLinks) { 1020 ES.runSessionLocked([&]() { 1021 for (auto &KV : NewLinks) { 1022 // Skip elements of NewLinks that are already in the link order. 1023 if (llvm::is_contained(LinkOrder, KV)) 1024 continue; 1025 1026 LinkOrder.push_back(std::move(KV)); 1027 } 1028 }); 1029 } 1030 1031 void JITDylib::addToLinkOrder(JITDylib &JD, JITDylibLookupFlags JDLookupFlags) { 1032 ES.runSessionLocked([&]() { LinkOrder.push_back({&JD, JDLookupFlags}); }); 1033 } 1034 1035 void JITDylib::replaceInLinkOrder(JITDylib &OldJD, JITDylib &NewJD, 1036 JITDylibLookupFlags JDLookupFlags) { 1037 ES.runSessionLocked([&]() { 1038 assert(State == Open && "JD is defunct"); 1039 for (auto &KV : LinkOrder) 1040 if (KV.first == &OldJD) { 1041 KV = {&NewJD, JDLookupFlags}; 1042 break; 1043 } 1044 }); 1045 } 1046 1047 void JITDylib::removeFromLinkOrder(JITDylib &JD) { 1048 ES.runSessionLocked([&]() { 1049 assert(State == Open && "JD is defunct"); 1050 auto I = llvm::find_if(LinkOrder, 1051 [&](const JITDylibSearchOrder::value_type &KV) { 1052 return KV.first == &JD; 1053 }); 1054 if (I != LinkOrder.end()) 1055 LinkOrder.erase(I); 1056 }); 1057 } 1058 1059 Error JITDylib::remove(const SymbolNameSet &Names) { 1060 return ES.runSessionLocked([&]() -> Error { 1061 assert(State == Open && "JD is defunct"); 1062 using SymbolMaterializerItrPair = 1063 std::pair<SymbolTable::iterator, UnmaterializedInfosMap::iterator>; 1064 std::vector<SymbolMaterializerItrPair> SymbolsToRemove; 1065 SymbolNameSet Missing; 1066 SymbolNameSet Materializing; 1067 1068 for (auto &Name : Names) { 1069 auto I = Symbols.find(Name); 1070 1071 // Note symbol missing. 1072 if (I == Symbols.end()) { 1073 Missing.insert(Name); 1074 continue; 1075 } 1076 1077 // Note symbol materializing. 1078 if (I->second.getState() != SymbolState::NeverSearched && 1079 I->second.getState() != SymbolState::Ready) { 1080 Materializing.insert(Name); 1081 continue; 1082 } 1083 1084 auto UMII = I->second.hasMaterializerAttached() 1085 ? UnmaterializedInfos.find(Name) 1086 : UnmaterializedInfos.end(); 1087 SymbolsToRemove.push_back(std::make_pair(I, UMII)); 1088 } 1089 1090 // If any of the symbols are not defined, return an error. 1091 if (!Missing.empty()) 1092 return make_error<SymbolsNotFound>(ES.getSymbolStringPool(), 1093 std::move(Missing)); 1094 1095 // If any of the symbols are currently materializing, return an error. 1096 if (!Materializing.empty()) 1097 return make_error<SymbolsCouldNotBeRemoved>(ES.getSymbolStringPool(), 1098 std::move(Materializing)); 1099 1100 // Remove the symbols. 1101 for (auto &SymbolMaterializerItrPair : SymbolsToRemove) { 1102 auto UMII = SymbolMaterializerItrPair.second; 1103 1104 // If there is a materializer attached, call discard. 1105 if (UMII != UnmaterializedInfos.end()) { 1106 UMII->second->MU->doDiscard(*this, UMII->first); 1107 UnmaterializedInfos.erase(UMII); 1108 } 1109 1110 auto SymI = SymbolMaterializerItrPair.first; 1111 Symbols.erase(SymI); 1112 } 1113 1114 shrinkMaterializationInfoMemory(); 1115 1116 return Error::success(); 1117 }); 1118 } 1119 1120 void JITDylib::dump(raw_ostream &OS) { 1121 ES.runSessionLocked([&, this]() { 1122 OS << "JITDylib \"" << getName() << "\" (ES: " 1123 << format("0x%016" PRIx64, reinterpret_cast<uintptr_t>(&ES)) 1124 << ", State = "; 1125 switch (State) { 1126 case Open: 1127 OS << "Open"; 1128 break; 1129 case Closing: 1130 OS << "Closing"; 1131 break; 1132 case Closed: 1133 OS << "Closed"; 1134 break; 1135 } 1136 OS << ")\n"; 1137 if (State == Closed) 1138 return; 1139 OS << "Link order: " << LinkOrder << "\n" 1140 << "Symbol table:\n"; 1141 1142 // Sort symbols so we get a deterministic order and can check them in tests. 1143 std::vector<std::pair<SymbolStringPtr, SymbolTableEntry *>> SymbolsSorted; 1144 for (auto &KV : Symbols) 1145 SymbolsSorted.emplace_back(KV.first, &KV.second); 1146 std::sort(SymbolsSorted.begin(), SymbolsSorted.end(), 1147 [](const auto &L, const auto &R) { return *L.first < *R.first; }); 1148 1149 for (auto &KV : SymbolsSorted) { 1150 OS << " \"" << *KV.first << "\": "; 1151 if (auto Addr = KV.second->getAddress()) 1152 OS << Addr; 1153 else 1154 OS << "<not resolved> "; 1155 1156 OS << " " << KV.second->getFlags() << " " << KV.second->getState(); 1157 1158 if (KV.second->hasMaterializerAttached()) { 1159 OS << " (Materializer "; 1160 auto I = UnmaterializedInfos.find(KV.first); 1161 assert(I != UnmaterializedInfos.end() && 1162 "Lazy symbol should have UnmaterializedInfo"); 1163 OS << I->second->MU.get() << ", " << I->second->MU->getName() << ")\n"; 1164 } else 1165 OS << "\n"; 1166 } 1167 1168 if (!MaterializingInfos.empty()) 1169 OS << " MaterializingInfos entries:\n"; 1170 for (auto &KV : MaterializingInfos) { 1171 OS << " \"" << *KV.first << "\":\n" 1172 << " " << KV.second.pendingQueries().size() 1173 << " pending queries: { "; 1174 for (const auto &Q : KV.second.pendingQueries()) 1175 OS << Q.get() << " (" << Q->getRequiredState() << ") "; 1176 OS << "}\n Defining EDU: "; 1177 if (KV.second.DefiningEDU) { 1178 OS << KV.second.DefiningEDU.get() << " { "; 1179 for (auto &[Name, Flags] : KV.second.DefiningEDU->Symbols) 1180 OS << Name << " "; 1181 OS << "}\n"; 1182 OS << " Dependencies:\n"; 1183 if (!KV.second.DefiningEDU->Dependencies.empty()) { 1184 for (auto &[DepJD, Deps] : KV.second.DefiningEDU->Dependencies) { 1185 OS << " " << DepJD->getName() << ": [ "; 1186 for (auto &Dep : Deps) 1187 OS << Dep << " "; 1188 OS << "]\n"; 1189 } 1190 } else 1191 OS << " none\n"; 1192 } else 1193 OS << "none\n"; 1194 OS << " Dependant EDUs:\n"; 1195 if (!KV.second.DependantEDUs.empty()) { 1196 for (auto &DependantEDU : KV.second.DependantEDUs) { 1197 OS << " " << DependantEDU << ": " 1198 << DependantEDU->JD->getName() << " { "; 1199 for (auto &[Name, Flags] : DependantEDU->Symbols) 1200 OS << Name << " "; 1201 OS << "}\n"; 1202 } 1203 } else 1204 OS << " none\n"; 1205 assert((Symbols[KV.first].getState() != SymbolState::Ready || 1206 (KV.second.pendingQueries().empty() && !KV.second.DefiningEDU && 1207 !KV.second.DependantEDUs.empty())) && 1208 "Stale materializing info entry"); 1209 } 1210 }); 1211 } 1212 1213 void JITDylib::MaterializingInfo::addQuery( 1214 std::shared_ptr<AsynchronousSymbolQuery> Q) { 1215 1216 auto I = llvm::lower_bound( 1217 llvm::reverse(PendingQueries), Q->getRequiredState(), 1218 [](const std::shared_ptr<AsynchronousSymbolQuery> &V, SymbolState S) { 1219 return V->getRequiredState() <= S; 1220 }); 1221 PendingQueries.insert(I.base(), std::move(Q)); 1222 } 1223 1224 void JITDylib::MaterializingInfo::removeQuery( 1225 const AsynchronousSymbolQuery &Q) { 1226 // FIXME: Implement 'find_as' for shared_ptr<T>/T*. 1227 auto I = llvm::find_if( 1228 PendingQueries, [&Q](const std::shared_ptr<AsynchronousSymbolQuery> &V) { 1229 return V.get() == &Q; 1230 }); 1231 if (I != PendingQueries.end()) 1232 PendingQueries.erase(I); 1233 } 1234 1235 JITDylib::AsynchronousSymbolQueryList 1236 JITDylib::MaterializingInfo::takeQueriesMeeting(SymbolState RequiredState) { 1237 AsynchronousSymbolQueryList Result; 1238 while (!PendingQueries.empty()) { 1239 if (PendingQueries.back()->getRequiredState() > RequiredState) 1240 break; 1241 1242 Result.push_back(std::move(PendingQueries.back())); 1243 PendingQueries.pop_back(); 1244 } 1245 1246 return Result; 1247 } 1248 1249 JITDylib::JITDylib(ExecutionSession &ES, std::string Name) 1250 : JITLinkDylib(std::move(Name)), ES(ES) { 1251 LinkOrder.push_back({this, JITDylibLookupFlags::MatchAllSymbols}); 1252 } 1253 1254 std::pair<JITDylib::AsynchronousSymbolQuerySet, 1255 std::shared_ptr<SymbolDependenceMap>> 1256 JITDylib::IL_removeTracker(ResourceTracker &RT) { 1257 // Note: Should be called under the session lock. 1258 assert(State != Closed && "JD is defunct"); 1259 1260 SymbolNameVector SymbolsToRemove; 1261 SymbolNameVector SymbolsToFail; 1262 1263 if (&RT == DefaultTracker.get()) { 1264 SymbolNameSet TrackedSymbols; 1265 for (auto &KV : TrackerSymbols) 1266 for (auto &Sym : KV.second) 1267 TrackedSymbols.insert(Sym); 1268 1269 for (auto &KV : Symbols) { 1270 auto &Sym = KV.first; 1271 if (!TrackedSymbols.count(Sym)) 1272 SymbolsToRemove.push_back(Sym); 1273 } 1274 1275 DefaultTracker.reset(); 1276 } else { 1277 /// Check for a non-default tracker. 1278 auto I = TrackerSymbols.find(&RT); 1279 if (I != TrackerSymbols.end()) { 1280 SymbolsToRemove = std::move(I->second); 1281 TrackerSymbols.erase(I); 1282 } 1283 // ... if not found this tracker was already defunct. Nothing to do. 1284 } 1285 1286 for (auto &Sym : SymbolsToRemove) { 1287 assert(Symbols.count(Sym) && "Symbol not in symbol table"); 1288 1289 // If there is a MaterializingInfo then collect any queries to fail. 1290 auto MII = MaterializingInfos.find(Sym); 1291 if (MII != MaterializingInfos.end()) 1292 SymbolsToFail.push_back(Sym); 1293 } 1294 1295 auto Result = ES.IL_failSymbols(*this, std::move(SymbolsToFail)); 1296 1297 // Removed symbols should be taken out of the table altogether. 1298 for (auto &Sym : SymbolsToRemove) { 1299 auto I = Symbols.find(Sym); 1300 assert(I != Symbols.end() && "Symbol not present in table"); 1301 1302 // Remove Materializer if present. 1303 if (I->second.hasMaterializerAttached()) { 1304 // FIXME: Should this discard the symbols? 1305 UnmaterializedInfos.erase(Sym); 1306 } else { 1307 assert(!UnmaterializedInfos.count(Sym) && 1308 "Symbol has materializer attached"); 1309 } 1310 1311 Symbols.erase(I); 1312 } 1313 1314 shrinkMaterializationInfoMemory(); 1315 1316 return Result; 1317 } 1318 1319 void JITDylib::transferTracker(ResourceTracker &DstRT, ResourceTracker &SrcRT) { 1320 assert(State != Closed && "JD is defunct"); 1321 assert(&DstRT != &SrcRT && "No-op transfers shouldn't call transferTracker"); 1322 assert(&DstRT.getJITDylib() == this && "DstRT is not for this JITDylib"); 1323 assert(&SrcRT.getJITDylib() == this && "SrcRT is not for this JITDylib"); 1324 1325 // Update trackers for any not-yet materialized units. 1326 for (auto &KV : UnmaterializedInfos) { 1327 if (KV.second->RT == &SrcRT) 1328 KV.second->RT = &DstRT; 1329 } 1330 1331 // Update trackers for any active materialization responsibilities. 1332 { 1333 auto I = TrackerMRs.find(&SrcRT); 1334 if (I != TrackerMRs.end()) { 1335 auto &SrcMRs = I->second; 1336 auto &DstMRs = TrackerMRs[&DstRT]; 1337 for (auto *MR : SrcMRs) 1338 MR->RT = &DstRT; 1339 if (DstMRs.empty()) 1340 DstMRs = std::move(SrcMRs); 1341 else 1342 for (auto *MR : SrcMRs) 1343 DstMRs.insert(MR); 1344 // Erase SrcRT entry in TrackerMRs. Use &SrcRT key rather than iterator I 1345 // for this, since I may have been invalidated by 'TrackerMRs[&DstRT]'. 1346 TrackerMRs.erase(&SrcRT); 1347 } 1348 } 1349 1350 // If we're transfering to the default tracker we just need to delete the 1351 // tracked symbols for the source tracker. 1352 if (&DstRT == DefaultTracker.get()) { 1353 TrackerSymbols.erase(&SrcRT); 1354 return; 1355 } 1356 1357 // If we're transferring from the default tracker we need to find all 1358 // currently untracked symbols. 1359 if (&SrcRT == DefaultTracker.get()) { 1360 assert(!TrackerSymbols.count(&SrcRT) && 1361 "Default tracker should not appear in TrackerSymbols"); 1362 1363 SymbolNameVector SymbolsToTrack; 1364 1365 SymbolNameSet CurrentlyTrackedSymbols; 1366 for (auto &KV : TrackerSymbols) 1367 for (auto &Sym : KV.second) 1368 CurrentlyTrackedSymbols.insert(Sym); 1369 1370 for (auto &KV : Symbols) { 1371 auto &Sym = KV.first; 1372 if (!CurrentlyTrackedSymbols.count(Sym)) 1373 SymbolsToTrack.push_back(Sym); 1374 } 1375 1376 TrackerSymbols[&DstRT] = std::move(SymbolsToTrack); 1377 return; 1378 } 1379 1380 auto &DstTrackedSymbols = TrackerSymbols[&DstRT]; 1381 1382 // Finally if neither SrtRT or DstRT are the default tracker then 1383 // just append DstRT's tracked symbols to SrtRT's. 1384 auto SI = TrackerSymbols.find(&SrcRT); 1385 if (SI == TrackerSymbols.end()) 1386 return; 1387 1388 DstTrackedSymbols.reserve(DstTrackedSymbols.size() + SI->second.size()); 1389 for (auto &Sym : SI->second) 1390 DstTrackedSymbols.push_back(std::move(Sym)); 1391 TrackerSymbols.erase(SI); 1392 } 1393 1394 Error JITDylib::defineImpl(MaterializationUnit &MU) { 1395 LLVM_DEBUG({ dbgs() << " " << MU.getSymbols() << "\n"; }); 1396 1397 SymbolNameSet Duplicates; 1398 std::vector<SymbolStringPtr> ExistingDefsOverridden; 1399 std::vector<SymbolStringPtr> MUDefsOverridden; 1400 1401 for (const auto &KV : MU.getSymbols()) { 1402 auto I = Symbols.find(KV.first); 1403 1404 if (I != Symbols.end()) { 1405 if (KV.second.isStrong()) { 1406 if (I->second.getFlags().isStrong() || 1407 I->second.getState() > SymbolState::NeverSearched) 1408 Duplicates.insert(KV.first); 1409 else { 1410 assert(I->second.getState() == SymbolState::NeverSearched && 1411 "Overridden existing def should be in the never-searched " 1412 "state"); 1413 ExistingDefsOverridden.push_back(KV.first); 1414 } 1415 } else 1416 MUDefsOverridden.push_back(KV.first); 1417 } 1418 } 1419 1420 // If there were any duplicate definitions then bail out. 1421 if (!Duplicates.empty()) { 1422 LLVM_DEBUG( 1423 { dbgs() << " Error: Duplicate symbols " << Duplicates << "\n"; }); 1424 return make_error<DuplicateDefinition>(std::string(**Duplicates.begin())); 1425 } 1426 1427 // Discard any overridden defs in this MU. 1428 LLVM_DEBUG({ 1429 if (!MUDefsOverridden.empty()) 1430 dbgs() << " Defs in this MU overridden: " << MUDefsOverridden << "\n"; 1431 }); 1432 for (auto &S : MUDefsOverridden) 1433 MU.doDiscard(*this, S); 1434 1435 // Discard existing overridden defs. 1436 LLVM_DEBUG({ 1437 if (!ExistingDefsOverridden.empty()) 1438 dbgs() << " Existing defs overridden by this MU: " << MUDefsOverridden 1439 << "\n"; 1440 }); 1441 for (auto &S : ExistingDefsOverridden) { 1442 1443 auto UMII = UnmaterializedInfos.find(S); 1444 assert(UMII != UnmaterializedInfos.end() && 1445 "Overridden existing def should have an UnmaterializedInfo"); 1446 UMII->second->MU->doDiscard(*this, S); 1447 } 1448 1449 // Finally, add the defs from this MU. 1450 for (auto &KV : MU.getSymbols()) { 1451 auto &SymEntry = Symbols[KV.first]; 1452 SymEntry.setFlags(KV.second); 1453 SymEntry.setState(SymbolState::NeverSearched); 1454 SymEntry.setMaterializerAttached(true); 1455 } 1456 1457 return Error::success(); 1458 } 1459 1460 void JITDylib::installMaterializationUnit( 1461 std::unique_ptr<MaterializationUnit> MU, ResourceTracker &RT) { 1462 1463 /// defineImpl succeeded. 1464 if (&RT != DefaultTracker.get()) { 1465 auto &TS = TrackerSymbols[&RT]; 1466 TS.reserve(TS.size() + MU->getSymbols().size()); 1467 for (auto &KV : MU->getSymbols()) 1468 TS.push_back(KV.first); 1469 } 1470 1471 auto UMI = std::make_shared<UnmaterializedInfo>(std::move(MU), &RT); 1472 for (auto &KV : UMI->MU->getSymbols()) 1473 UnmaterializedInfos[KV.first] = UMI; 1474 } 1475 1476 void JITDylib::detachQueryHelper(AsynchronousSymbolQuery &Q, 1477 const SymbolNameSet &QuerySymbols) { 1478 for (auto &QuerySymbol : QuerySymbols) { 1479 auto MII = MaterializingInfos.find(QuerySymbol); 1480 if (MII != MaterializingInfos.end()) 1481 MII->second.removeQuery(Q); 1482 } 1483 } 1484 1485 Platform::~Platform() = default; 1486 1487 Expected<DenseMap<JITDylib *, SymbolMap>> Platform::lookupInitSymbols( 1488 ExecutionSession &ES, 1489 const DenseMap<JITDylib *, SymbolLookupSet> &InitSyms) { 1490 1491 DenseMap<JITDylib *, SymbolMap> CompoundResult; 1492 Error CompoundErr = Error::success(); 1493 std::mutex LookupMutex; 1494 std::condition_variable CV; 1495 uint64_t Count = InitSyms.size(); 1496 1497 LLVM_DEBUG({ 1498 dbgs() << "Issuing init-symbol lookup:\n"; 1499 for (auto &KV : InitSyms) 1500 dbgs() << " " << KV.first->getName() << ": " << KV.second << "\n"; 1501 }); 1502 1503 for (auto &KV : InitSyms) { 1504 auto *JD = KV.first; 1505 auto Names = std::move(KV.second); 1506 ES.lookup( 1507 LookupKind::Static, 1508 JITDylibSearchOrder({{JD, JITDylibLookupFlags::MatchAllSymbols}}), 1509 std::move(Names), SymbolState::Ready, 1510 [&, JD](Expected<SymbolMap> Result) { 1511 { 1512 std::lock_guard<std::mutex> Lock(LookupMutex); 1513 --Count; 1514 if (Result) { 1515 assert(!CompoundResult.count(JD) && 1516 "Duplicate JITDylib in lookup?"); 1517 CompoundResult[JD] = std::move(*Result); 1518 } else 1519 CompoundErr = 1520 joinErrors(std::move(CompoundErr), Result.takeError()); 1521 } 1522 CV.notify_one(); 1523 }, 1524 NoDependenciesToRegister); 1525 } 1526 1527 std::unique_lock<std::mutex> Lock(LookupMutex); 1528 CV.wait(Lock, [&] { return Count == 0 || CompoundErr; }); 1529 1530 if (CompoundErr) 1531 return std::move(CompoundErr); 1532 1533 return std::move(CompoundResult); 1534 } 1535 1536 void Platform::lookupInitSymbolsAsync( 1537 unique_function<void(Error)> OnComplete, ExecutionSession &ES, 1538 const DenseMap<JITDylib *, SymbolLookupSet> &InitSyms) { 1539 1540 class TriggerOnComplete { 1541 public: 1542 using OnCompleteFn = unique_function<void(Error)>; 1543 TriggerOnComplete(OnCompleteFn OnComplete) 1544 : OnComplete(std::move(OnComplete)) {} 1545 ~TriggerOnComplete() { OnComplete(std::move(LookupResult)); } 1546 void reportResult(Error Err) { 1547 std::lock_guard<std::mutex> Lock(ResultMutex); 1548 LookupResult = joinErrors(std::move(LookupResult), std::move(Err)); 1549 } 1550 1551 private: 1552 std::mutex ResultMutex; 1553 Error LookupResult{Error::success()}; 1554 OnCompleteFn OnComplete; 1555 }; 1556 1557 LLVM_DEBUG({ 1558 dbgs() << "Issuing init-symbol lookup:\n"; 1559 for (auto &KV : InitSyms) 1560 dbgs() << " " << KV.first->getName() << ": " << KV.second << "\n"; 1561 }); 1562 1563 auto TOC = std::make_shared<TriggerOnComplete>(std::move(OnComplete)); 1564 1565 for (auto &KV : InitSyms) { 1566 auto *JD = KV.first; 1567 auto Names = std::move(KV.second); 1568 ES.lookup( 1569 LookupKind::Static, 1570 JITDylibSearchOrder({{JD, JITDylibLookupFlags::MatchAllSymbols}}), 1571 std::move(Names), SymbolState::Ready, 1572 [TOC](Expected<SymbolMap> Result) { 1573 TOC->reportResult(Result.takeError()); 1574 }, 1575 NoDependenciesToRegister); 1576 } 1577 } 1578 1579 MaterializationTask::~MaterializationTask() { 1580 // If this task wasn't run then fail materialization. 1581 if (MR) 1582 MR->failMaterialization(); 1583 } 1584 1585 void MaterializationTask::printDescription(raw_ostream &OS) { 1586 OS << "Materialization task: " << MU->getName() << " in " 1587 << MR->getTargetJITDylib().getName(); 1588 } 1589 1590 void MaterializationTask::run() { 1591 assert(MU && "MU should not be null"); 1592 assert(MR && "MR should not be null"); 1593 MU->materialize(std::move(MR)); 1594 } 1595 1596 void LookupTask::printDescription(raw_ostream &OS) { OS << "Lookup task"; } 1597 1598 void LookupTask::run() { LS.continueLookup(Error::success()); } 1599 1600 ExecutionSession::ExecutionSession(std::unique_ptr<ExecutorProcessControl> EPC) 1601 : EPC(std::move(EPC)) { 1602 // Associated EPC and this. 1603 this->EPC->ES = this; 1604 } 1605 1606 ExecutionSession::~ExecutionSession() { 1607 // You must call endSession prior to destroying the session. 1608 assert(!SessionOpen && 1609 "Session still open. Did you forget to call endSession?"); 1610 } 1611 1612 Error ExecutionSession::endSession() { 1613 LLVM_DEBUG(dbgs() << "Ending ExecutionSession " << this << "\n"); 1614 1615 auto JDsToRemove = runSessionLocked([&] { 1616 1617 #ifdef EXPENSIVE_CHECKS 1618 verifySessionState("Entering ExecutionSession::endSession"); 1619 #endif 1620 1621 SessionOpen = false; 1622 return JDs; 1623 }); 1624 1625 std::reverse(JDsToRemove.begin(), JDsToRemove.end()); 1626 1627 auto Err = removeJITDylibs(std::move(JDsToRemove)); 1628 1629 Err = joinErrors(std::move(Err), EPC->disconnect()); 1630 1631 return Err; 1632 } 1633 1634 void ExecutionSession::registerResourceManager(ResourceManager &RM) { 1635 runSessionLocked([&] { ResourceManagers.push_back(&RM); }); 1636 } 1637 1638 void ExecutionSession::deregisterResourceManager(ResourceManager &RM) { 1639 runSessionLocked([&] { 1640 assert(!ResourceManagers.empty() && "No managers registered"); 1641 if (ResourceManagers.back() == &RM) 1642 ResourceManagers.pop_back(); 1643 else { 1644 auto I = llvm::find(ResourceManagers, &RM); 1645 assert(I != ResourceManagers.end() && "RM not registered"); 1646 ResourceManagers.erase(I); 1647 } 1648 }); 1649 } 1650 1651 JITDylib *ExecutionSession::getJITDylibByName(StringRef Name) { 1652 return runSessionLocked([&, this]() -> JITDylib * { 1653 for (auto &JD : JDs) 1654 if (JD->getName() == Name) 1655 return JD.get(); 1656 return nullptr; 1657 }); 1658 } 1659 1660 JITDylib &ExecutionSession::createBareJITDylib(std::string Name) { 1661 assert(!getJITDylibByName(Name) && "JITDylib with that name already exists"); 1662 return runSessionLocked([&, this]() -> JITDylib & { 1663 assert(SessionOpen && "Cannot create JITDylib after session is closed"); 1664 JDs.push_back(new JITDylib(*this, std::move(Name))); 1665 return *JDs.back(); 1666 }); 1667 } 1668 1669 Expected<JITDylib &> ExecutionSession::createJITDylib(std::string Name) { 1670 auto &JD = createBareJITDylib(Name); 1671 if (P) 1672 if (auto Err = P->setupJITDylib(JD)) 1673 return std::move(Err); 1674 return JD; 1675 } 1676 1677 Error ExecutionSession::removeJITDylibs(std::vector<JITDylibSP> JDsToRemove) { 1678 // Set JD to 'Closing' state and remove JD from the ExecutionSession. 1679 runSessionLocked([&] { 1680 for (auto &JD : JDsToRemove) { 1681 assert(JD->State == JITDylib::Open && "JD already closed"); 1682 JD->State = JITDylib::Closing; 1683 auto I = llvm::find(JDs, JD); 1684 assert(I != JDs.end() && "JD does not appear in session JDs"); 1685 JDs.erase(I); 1686 } 1687 }); 1688 1689 // Clear JITDylibs and notify the platform. 1690 Error Err = Error::success(); 1691 for (auto JD : JDsToRemove) { 1692 Err = joinErrors(std::move(Err), JD->clear()); 1693 if (P) 1694 Err = joinErrors(std::move(Err), P->teardownJITDylib(*JD)); 1695 } 1696 1697 // Set JD to closed state. Clear remaining data structures. 1698 runSessionLocked([&] { 1699 for (auto &JD : JDsToRemove) { 1700 assert(JD->State == JITDylib::Closing && "JD should be closing"); 1701 JD->State = JITDylib::Closed; 1702 assert(JD->Symbols.empty() && "JD.Symbols is not empty after clear"); 1703 assert(JD->UnmaterializedInfos.empty() && 1704 "JD.UnmaterializedInfos is not empty after clear"); 1705 assert(JD->MaterializingInfos.empty() && 1706 "JD.MaterializingInfos is not empty after clear"); 1707 assert(JD->TrackerSymbols.empty() && 1708 "TrackerSymbols is not empty after clear"); 1709 JD->DefGenerators.clear(); 1710 JD->LinkOrder.clear(); 1711 } 1712 }); 1713 1714 return Err; 1715 } 1716 1717 Expected<std::vector<JITDylibSP>> 1718 JITDylib::getDFSLinkOrder(ArrayRef<JITDylibSP> JDs) { 1719 if (JDs.empty()) 1720 return std::vector<JITDylibSP>(); 1721 1722 auto &ES = JDs.front()->getExecutionSession(); 1723 return ES.runSessionLocked([&]() -> Expected<std::vector<JITDylibSP>> { 1724 DenseSet<JITDylib *> Visited; 1725 std::vector<JITDylibSP> Result; 1726 1727 for (auto &JD : JDs) { 1728 1729 if (JD->State != Open) 1730 return make_error<StringError>( 1731 "Error building link order: " + JD->getName() + " is defunct", 1732 inconvertibleErrorCode()); 1733 if (Visited.count(JD.get())) 1734 continue; 1735 1736 SmallVector<JITDylibSP, 64> WorkStack; 1737 WorkStack.push_back(JD); 1738 Visited.insert(JD.get()); 1739 1740 while (!WorkStack.empty()) { 1741 Result.push_back(std::move(WorkStack.back())); 1742 WorkStack.pop_back(); 1743 1744 for (auto &KV : llvm::reverse(Result.back()->LinkOrder)) { 1745 auto &JD = *KV.first; 1746 if (!Visited.insert(&JD).second) 1747 continue; 1748 WorkStack.push_back(&JD); 1749 } 1750 } 1751 } 1752 return Result; 1753 }); 1754 } 1755 1756 Expected<std::vector<JITDylibSP>> 1757 JITDylib::getReverseDFSLinkOrder(ArrayRef<JITDylibSP> JDs) { 1758 auto Result = getDFSLinkOrder(JDs); 1759 if (Result) 1760 std::reverse(Result->begin(), Result->end()); 1761 return Result; 1762 } 1763 1764 Expected<std::vector<JITDylibSP>> JITDylib::getDFSLinkOrder() { 1765 return getDFSLinkOrder({this}); 1766 } 1767 1768 Expected<std::vector<JITDylibSP>> JITDylib::getReverseDFSLinkOrder() { 1769 return getReverseDFSLinkOrder({this}); 1770 } 1771 1772 void ExecutionSession::lookupFlags( 1773 LookupKind K, JITDylibSearchOrder SearchOrder, SymbolLookupSet LookupSet, 1774 unique_function<void(Expected<SymbolFlagsMap>)> OnComplete) { 1775 1776 OL_applyQueryPhase1(std::make_unique<InProgressLookupFlagsState>( 1777 K, std::move(SearchOrder), std::move(LookupSet), 1778 std::move(OnComplete)), 1779 Error::success()); 1780 } 1781 1782 Expected<SymbolFlagsMap> 1783 ExecutionSession::lookupFlags(LookupKind K, JITDylibSearchOrder SearchOrder, 1784 SymbolLookupSet LookupSet) { 1785 1786 std::promise<MSVCPExpected<SymbolFlagsMap>> ResultP; 1787 OL_applyQueryPhase1(std::make_unique<InProgressLookupFlagsState>( 1788 K, std::move(SearchOrder), std::move(LookupSet), 1789 [&ResultP](Expected<SymbolFlagsMap> Result) { 1790 ResultP.set_value(std::move(Result)); 1791 }), 1792 Error::success()); 1793 1794 auto ResultF = ResultP.get_future(); 1795 return ResultF.get(); 1796 } 1797 1798 void ExecutionSession::lookup( 1799 LookupKind K, const JITDylibSearchOrder &SearchOrder, 1800 SymbolLookupSet Symbols, SymbolState RequiredState, 1801 SymbolsResolvedCallback NotifyComplete, 1802 RegisterDependenciesFunction RegisterDependencies) { 1803 1804 LLVM_DEBUG({ 1805 runSessionLocked([&]() { 1806 dbgs() << "Looking up " << Symbols << " in " << SearchOrder 1807 << " (required state: " << RequiredState << ")\n"; 1808 }); 1809 }); 1810 1811 // lookup can be re-entered recursively if running on a single thread. Run any 1812 // outstanding MUs in case this query depends on them, otherwise this lookup 1813 // will starve waiting for a result from an MU that is stuck in the queue. 1814 dispatchOutstandingMUs(); 1815 1816 auto Unresolved = std::move(Symbols); 1817 auto Q = std::make_shared<AsynchronousSymbolQuery>(Unresolved, RequiredState, 1818 std::move(NotifyComplete)); 1819 1820 auto IPLS = std::make_unique<InProgressFullLookupState>( 1821 K, SearchOrder, std::move(Unresolved), RequiredState, std::move(Q), 1822 std::move(RegisterDependencies)); 1823 1824 OL_applyQueryPhase1(std::move(IPLS), Error::success()); 1825 } 1826 1827 Expected<SymbolMap> 1828 ExecutionSession::lookup(const JITDylibSearchOrder &SearchOrder, 1829 SymbolLookupSet Symbols, LookupKind K, 1830 SymbolState RequiredState, 1831 RegisterDependenciesFunction RegisterDependencies) { 1832 #if LLVM_ENABLE_THREADS 1833 // In the threaded case we use promises to return the results. 1834 std::promise<MSVCPExpected<SymbolMap>> PromisedResult; 1835 1836 auto NotifyComplete = [&](Expected<SymbolMap> R) { 1837 PromisedResult.set_value(std::move(R)); 1838 }; 1839 1840 #else 1841 SymbolMap Result; 1842 Error ResolutionError = Error::success(); 1843 1844 auto NotifyComplete = [&](Expected<SymbolMap> R) { 1845 ErrorAsOutParameter _(ResolutionError); 1846 if (R) 1847 Result = std::move(*R); 1848 else 1849 ResolutionError = R.takeError(); 1850 }; 1851 #endif 1852 1853 // Perform the asynchronous lookup. 1854 lookup(K, SearchOrder, std::move(Symbols), RequiredState, 1855 std::move(NotifyComplete), RegisterDependencies); 1856 1857 #if LLVM_ENABLE_THREADS 1858 return PromisedResult.get_future().get(); 1859 #else 1860 if (ResolutionError) 1861 return std::move(ResolutionError); 1862 1863 return Result; 1864 #endif 1865 } 1866 1867 Expected<ExecutorSymbolDef> 1868 ExecutionSession::lookup(const JITDylibSearchOrder &SearchOrder, 1869 SymbolStringPtr Name, SymbolState RequiredState) { 1870 SymbolLookupSet Names({Name}); 1871 1872 if (auto ResultMap = lookup(SearchOrder, std::move(Names), LookupKind::Static, 1873 RequiredState, NoDependenciesToRegister)) { 1874 assert(ResultMap->size() == 1 && "Unexpected number of results"); 1875 assert(ResultMap->count(Name) && "Missing result for symbol"); 1876 return std::move(ResultMap->begin()->second); 1877 } else 1878 return ResultMap.takeError(); 1879 } 1880 1881 Expected<ExecutorSymbolDef> 1882 ExecutionSession::lookup(ArrayRef<JITDylib *> SearchOrder, SymbolStringPtr Name, 1883 SymbolState RequiredState) { 1884 return lookup(makeJITDylibSearchOrder(SearchOrder), Name, RequiredState); 1885 } 1886 1887 Expected<ExecutorSymbolDef> 1888 ExecutionSession::lookup(ArrayRef<JITDylib *> SearchOrder, StringRef Name, 1889 SymbolState RequiredState) { 1890 return lookup(SearchOrder, intern(Name), RequiredState); 1891 } 1892 1893 Error ExecutionSession::registerJITDispatchHandlers( 1894 JITDylib &JD, JITDispatchHandlerAssociationMap WFs) { 1895 1896 auto TagSyms = lookup({{&JD, JITDylibLookupFlags::MatchAllSymbols}}, 1897 SymbolLookupSet::fromMapKeys( 1898 WFs, SymbolLookupFlags::WeaklyReferencedSymbol)); 1899 if (!TagSyms) 1900 return TagSyms.takeError(); 1901 1902 // Associate tag addresses with implementations. 1903 std::lock_guard<std::mutex> Lock(JITDispatchHandlersMutex); 1904 1905 // Check that no tags are being overwritten. 1906 for (auto &[TagName, TagSym] : *TagSyms) { 1907 auto TagAddr = TagSym.getAddress(); 1908 if (JITDispatchHandlers.count(TagAddr)) 1909 return make_error<StringError>("Tag " + formatv("{0:x}", TagAddr) + 1910 " (for " + *TagName + 1911 ") already registered", 1912 inconvertibleErrorCode()); 1913 } 1914 1915 // At this point we're guaranteed to succeed. Install the handlers. 1916 for (auto &[TagName, TagSym] : *TagSyms) { 1917 auto TagAddr = TagSym.getAddress(); 1918 auto I = WFs.find(TagName); 1919 assert(I != WFs.end() && I->second && 1920 "JITDispatchHandler implementation missing"); 1921 JITDispatchHandlers[TagAddr] = 1922 std::make_shared<JITDispatchHandlerFunction>(std::move(I->second)); 1923 LLVM_DEBUG({ 1924 dbgs() << "Associated function tag \"" << *TagName << "\" (" 1925 << formatv("{0:x}", TagAddr) << ") with handler\n"; 1926 }); 1927 } 1928 1929 return Error::success(); 1930 } 1931 1932 void ExecutionSession::runJITDispatchHandler(SendResultFunction SendResult, 1933 ExecutorAddr HandlerFnTagAddr, 1934 ArrayRef<char> ArgBuffer) { 1935 1936 std::shared_ptr<JITDispatchHandlerFunction> F; 1937 { 1938 std::lock_guard<std::mutex> Lock(JITDispatchHandlersMutex); 1939 auto I = JITDispatchHandlers.find(HandlerFnTagAddr); 1940 if (I != JITDispatchHandlers.end()) 1941 F = I->second; 1942 } 1943 1944 if (F) 1945 (*F)(std::move(SendResult), ArgBuffer.data(), ArgBuffer.size()); 1946 else 1947 SendResult(shared::WrapperFunctionResult::createOutOfBandError( 1948 ("No function registered for tag " + 1949 formatv("{0:x16}", HandlerFnTagAddr)) 1950 .str())); 1951 } 1952 1953 void ExecutionSession::dump(raw_ostream &OS) { 1954 runSessionLocked([this, &OS]() { 1955 for (auto &JD : JDs) 1956 JD->dump(OS); 1957 }); 1958 } 1959 1960 #ifdef EXPENSIVE_CHECKS 1961 bool ExecutionSession::verifySessionState(Twine Phase) { 1962 return runSessionLocked([&]() { 1963 bool AllOk = true; 1964 1965 // We'll collect these and verify them later to avoid redundant checks. 1966 DenseSet<JITDylib::EmissionDepUnit *> EDUsToCheck; 1967 1968 for (auto &JD : JDs) { 1969 1970 auto LogFailure = [&]() -> raw_fd_ostream & { 1971 auto &Stream = errs(); 1972 if (AllOk) 1973 Stream << "ERROR: Bad ExecutionSession state detected " << Phase 1974 << "\n"; 1975 Stream << " In JITDylib " << JD->getName() << ", "; 1976 AllOk = false; 1977 return Stream; 1978 }; 1979 1980 if (JD->State != JITDylib::Open) { 1981 LogFailure() 1982 << "state is not Open, but JD is in ExecutionSession list."; 1983 } 1984 1985 // Check symbol table. 1986 // 1. If the entry state isn't resolved then check that no address has 1987 // been set. 1988 // 2. Check that if the hasMaterializerAttached flag is set then there is 1989 // an UnmaterializedInfo entry, and vice-versa. 1990 for (auto &[Sym, Entry] : JD->Symbols) { 1991 // Check that unresolved symbols have null addresses. 1992 if (Entry.getState() < SymbolState::Resolved) { 1993 if (Entry.getAddress()) { 1994 LogFailure() << "symbol " << Sym << " has state " 1995 << Entry.getState() 1996 << " (not-yet-resolved) but non-null address " 1997 << Entry.getAddress() << ".\n"; 1998 } 1999 } 2000 2001 // Check that the hasMaterializerAttached flag is correct. 2002 auto UMIItr = JD->UnmaterializedInfos.find(Sym); 2003 if (Entry.hasMaterializerAttached()) { 2004 if (UMIItr == JD->UnmaterializedInfos.end()) { 2005 LogFailure() << "symbol " << Sym 2006 << " entry claims materializer attached, but " 2007 "UnmaterializedInfos has no corresponding entry.\n"; 2008 } 2009 } else if (UMIItr != JD->UnmaterializedInfos.end()) { 2010 LogFailure() 2011 << "symbol " << Sym 2012 << " entry claims no materializer attached, but " 2013 "UnmaterializedInfos has an unexpected entry for it.\n"; 2014 } 2015 } 2016 2017 // Check that every UnmaterializedInfo entry has a corresponding entry 2018 // in the Symbols table. 2019 for (auto &[Sym, UMI] : JD->UnmaterializedInfos) { 2020 auto SymItr = JD->Symbols.find(Sym); 2021 if (SymItr == JD->Symbols.end()) { 2022 LogFailure() 2023 << "symbol " << Sym 2024 << " has UnmaterializedInfos entry, but no Symbols entry.\n"; 2025 } 2026 } 2027 2028 // Check consistency of the MaterializingInfos table. 2029 for (auto &[Sym, MII] : JD->MaterializingInfos) { 2030 2031 auto SymItr = JD->Symbols.find(Sym); 2032 if (SymItr == JD->Symbols.end()) { 2033 // If there's no Symbols entry for this MaterializingInfos entry then 2034 // report that. 2035 LogFailure() 2036 << "symbol " << Sym 2037 << " has MaterializingInfos entry, but no Symbols entry.\n"; 2038 } else { 2039 // Otherwise check consistency between Symbols and MaterializingInfos. 2040 2041 // Ready symbols should not have MaterializingInfos. 2042 if (SymItr->second.getState() == SymbolState::Ready) { 2043 LogFailure() 2044 << "symbol " << Sym 2045 << " is in Ready state, should not have MaterializingInfo.\n"; 2046 } 2047 2048 // Pending queries should be for subsequent states. 2049 auto CurState = static_cast<SymbolState>( 2050 static_cast<std::underlying_type_t<SymbolState>>( 2051 SymItr->second.getState()) + 1); 2052 for (auto &Q : MII.PendingQueries) { 2053 if (Q->getRequiredState() != CurState) { 2054 if (Q->getRequiredState() > CurState) 2055 CurState = Q->getRequiredState(); 2056 else 2057 LogFailure() << "symbol " << Sym 2058 << " has stale or misordered queries.\n"; 2059 } 2060 } 2061 2062 // If there's a DefiningEDU then check that... 2063 // 1. The JD matches. 2064 // 2. The symbol is in the EDU's Symbols map. 2065 // 3. The symbol table entry is in the Emitted state. 2066 if (MII.DefiningEDU) { 2067 2068 EDUsToCheck.insert(MII.DefiningEDU.get()); 2069 2070 if (MII.DefiningEDU->JD != JD.get()) { 2071 LogFailure() << "symbol " << Sym 2072 << " has DefiningEDU with incorrect JD" 2073 << (llvm::is_contained(JDs, MII.DefiningEDU->JD) 2074 ? " (JD not currently in ExecutionSession" 2075 : "") 2076 << "\n"; 2077 } 2078 2079 if (SymItr->second.getState() != SymbolState::Emitted) { 2080 LogFailure() 2081 << "symbol " << Sym 2082 << " has DefiningEDU, but is not in Emitted state.\n"; 2083 } 2084 } 2085 2086 // Check that JDs for any DependantEDUs are also in the session -- 2087 // that guarantees that we'll also visit them during this loop. 2088 for (auto &DepEDU : MII.DependantEDUs) { 2089 if (!llvm::is_contained(JDs, DepEDU->JD)) { 2090 LogFailure() << "symbol " << Sym << " has DependantEDU " 2091 << (void *)DepEDU << " with JD (" << DepEDU->JD 2092 << ") that isn't in ExecutionSession.\n"; 2093 } 2094 } 2095 } 2096 } 2097 } 2098 2099 // Check EDUs. 2100 for (auto *EDU : EDUsToCheck) { 2101 assert(EDU->JD->State == JITDylib::Open && "EDU->JD is not Open"); 2102 2103 auto LogFailure = [&]() -> raw_fd_ostream & { 2104 AllOk = false; 2105 auto &Stream = errs(); 2106 Stream << "In EDU defining " << EDU->JD->getName() << ": { "; 2107 for (auto &[Sym, Flags] : EDU->Symbols) 2108 Stream << Sym << " "; 2109 Stream << "}, "; 2110 return Stream; 2111 }; 2112 2113 if (EDU->Symbols.empty()) 2114 LogFailure() << "no symbols defined.\n"; 2115 else { 2116 for (auto &[Sym, Flags] : EDU->Symbols) { 2117 if (!Sym) 2118 LogFailure() << "null symbol defined.\n"; 2119 else { 2120 if (!EDU->JD->Symbols.count(SymbolStringPtr(Sym))) { 2121 LogFailure() << "symbol " << Sym 2122 << " isn't present in JD's symbol table.\n"; 2123 } 2124 } 2125 } 2126 } 2127 2128 for (auto &[DepJD, Symbols] : EDU->Dependencies) { 2129 if (!llvm::is_contained(JDs, DepJD)) { 2130 LogFailure() << "dependant symbols listed for JD that isn't in " 2131 "ExecutionSession.\n"; 2132 } else { 2133 for (auto &DepSym : Symbols) { 2134 if (!DepJD->Symbols.count(SymbolStringPtr(DepSym))) { 2135 LogFailure() 2136 << "dependant symbol " << DepSym 2137 << " does not appear in symbol table for dependant JD " 2138 << DepJD->getName() << ".\n"; 2139 } 2140 } 2141 } 2142 } 2143 } 2144 2145 return AllOk; 2146 }); 2147 } 2148 #endif // EXPENSIVE_CHECKS 2149 2150 void ExecutionSession::dispatchOutstandingMUs() { 2151 LLVM_DEBUG(dbgs() << "Dispatching MaterializationUnits...\n"); 2152 while (true) { 2153 std::optional<std::pair<std::unique_ptr<MaterializationUnit>, 2154 std::unique_ptr<MaterializationResponsibility>>> 2155 JMU; 2156 2157 { 2158 std::lock_guard<std::recursive_mutex> Lock(OutstandingMUsMutex); 2159 if (!OutstandingMUs.empty()) { 2160 JMU.emplace(std::move(OutstandingMUs.back())); 2161 OutstandingMUs.pop_back(); 2162 } 2163 } 2164 2165 if (!JMU) 2166 break; 2167 2168 assert(JMU->first && "No MU?"); 2169 LLVM_DEBUG(dbgs() << " Dispatching \"" << JMU->first->getName() << "\"\n"); 2170 dispatchTask(std::make_unique<MaterializationTask>(std::move(JMU->first), 2171 std::move(JMU->second))); 2172 } 2173 LLVM_DEBUG(dbgs() << "Done dispatching MaterializationUnits.\n"); 2174 } 2175 2176 Error ExecutionSession::removeResourceTracker(ResourceTracker &RT) { 2177 LLVM_DEBUG({ 2178 dbgs() << "In " << RT.getJITDylib().getName() << " removing tracker " 2179 << formatv("{0:x}", RT.getKeyUnsafe()) << "\n"; 2180 }); 2181 std::vector<ResourceManager *> CurrentResourceManagers; 2182 2183 JITDylib::AsynchronousSymbolQuerySet QueriesToFail; 2184 std::shared_ptr<SymbolDependenceMap> FailedSymbols; 2185 2186 runSessionLocked([&] { 2187 CurrentResourceManagers = ResourceManagers; 2188 RT.makeDefunct(); 2189 std::tie(QueriesToFail, FailedSymbols) = 2190 RT.getJITDylib().IL_removeTracker(RT); 2191 }); 2192 2193 Error Err = Error::success(); 2194 2195 auto &JD = RT.getJITDylib(); 2196 for (auto *L : reverse(CurrentResourceManagers)) 2197 Err = joinErrors(std::move(Err), 2198 L->handleRemoveResources(JD, RT.getKeyUnsafe())); 2199 2200 for (auto &Q : QueriesToFail) 2201 Q->handleFailed( 2202 make_error<FailedToMaterialize>(getSymbolStringPool(), FailedSymbols)); 2203 2204 return Err; 2205 } 2206 2207 void ExecutionSession::transferResourceTracker(ResourceTracker &DstRT, 2208 ResourceTracker &SrcRT) { 2209 LLVM_DEBUG({ 2210 dbgs() << "In " << SrcRT.getJITDylib().getName() 2211 << " transfering resources from tracker " 2212 << formatv("{0:x}", SrcRT.getKeyUnsafe()) << " to tracker " 2213 << formatv("{0:x}", DstRT.getKeyUnsafe()) << "\n"; 2214 }); 2215 2216 // No-op transfers are allowed and do not invalidate the source. 2217 if (&DstRT == &SrcRT) 2218 return; 2219 2220 assert(&DstRT.getJITDylib() == &SrcRT.getJITDylib() && 2221 "Can't transfer resources between JITDylibs"); 2222 runSessionLocked([&]() { 2223 SrcRT.makeDefunct(); 2224 auto &JD = DstRT.getJITDylib(); 2225 JD.transferTracker(DstRT, SrcRT); 2226 for (auto *L : reverse(ResourceManagers)) 2227 L->handleTransferResources(JD, DstRT.getKeyUnsafe(), 2228 SrcRT.getKeyUnsafe()); 2229 }); 2230 } 2231 2232 void ExecutionSession::destroyResourceTracker(ResourceTracker &RT) { 2233 runSessionLocked([&]() { 2234 LLVM_DEBUG({ 2235 dbgs() << "In " << RT.getJITDylib().getName() << " destroying tracker " 2236 << formatv("{0:x}", RT.getKeyUnsafe()) << "\n"; 2237 }); 2238 if (!RT.isDefunct()) 2239 transferResourceTracker(*RT.getJITDylib().getDefaultResourceTracker(), 2240 RT); 2241 }); 2242 } 2243 2244 Error ExecutionSession::IL_updateCandidatesFor( 2245 JITDylib &JD, JITDylibLookupFlags JDLookupFlags, 2246 SymbolLookupSet &Candidates, SymbolLookupSet *NonCandidates) { 2247 return Candidates.forEachWithRemoval( 2248 [&](const SymbolStringPtr &Name, 2249 SymbolLookupFlags SymLookupFlags) -> Expected<bool> { 2250 /// Search for the symbol. If not found then continue without 2251 /// removal. 2252 auto SymI = JD.Symbols.find(Name); 2253 if (SymI == JD.Symbols.end()) 2254 return false; 2255 2256 // If this is a non-exported symbol and we're matching exported 2257 // symbols only then remove this symbol from the candidates list. 2258 // 2259 // If we're tracking non-candidates then add this to the non-candidate 2260 // list. 2261 if (!SymI->second.getFlags().isExported() && 2262 JDLookupFlags == JITDylibLookupFlags::MatchExportedSymbolsOnly) { 2263 if (NonCandidates) 2264 NonCandidates->add(Name, SymLookupFlags); 2265 return true; 2266 } 2267 2268 // If we match against a materialization-side-effects only symbol 2269 // then make sure it is weakly-referenced. Otherwise bail out with 2270 // an error. 2271 // FIXME: Use a "materialization-side-effects-only symbols must be 2272 // weakly referenced" specific error here to reduce confusion. 2273 if (SymI->second.getFlags().hasMaterializationSideEffectsOnly() && 2274 SymLookupFlags != SymbolLookupFlags::WeaklyReferencedSymbol) 2275 return make_error<SymbolsNotFound>(getSymbolStringPool(), 2276 SymbolNameVector({Name})); 2277 2278 // If we matched against this symbol but it is in the error state 2279 // then bail out and treat it as a failure to materialize. 2280 if (SymI->second.getFlags().hasError()) { 2281 auto FailedSymbolsMap = std::make_shared<SymbolDependenceMap>(); 2282 (*FailedSymbolsMap)[&JD] = {Name}; 2283 return make_error<FailedToMaterialize>(getSymbolStringPool(), 2284 std::move(FailedSymbolsMap)); 2285 } 2286 2287 // Otherwise this is a match. Remove it from the candidate set. 2288 return true; 2289 }); 2290 } 2291 2292 void ExecutionSession::OL_resumeLookupAfterGeneration( 2293 InProgressLookupState &IPLS) { 2294 2295 assert(IPLS.GenState != InProgressLookupState::NotInGenerator && 2296 "Should not be called for not-in-generator lookups"); 2297 IPLS.GenState = InProgressLookupState::NotInGenerator; 2298 2299 LookupState LS; 2300 2301 if (auto DG = IPLS.CurDefGeneratorStack.back().lock()) { 2302 IPLS.CurDefGeneratorStack.pop_back(); 2303 std::lock_guard<std::mutex> Lock(DG->M); 2304 2305 // If there are no pending lookups then mark the generator as free and 2306 // return. 2307 if (DG->PendingLookups.empty()) { 2308 DG->InUse = false; 2309 return; 2310 } 2311 2312 // Otherwise resume the next lookup. 2313 LS = std::move(DG->PendingLookups.front()); 2314 DG->PendingLookups.pop_front(); 2315 } 2316 2317 if (LS.IPLS) { 2318 LS.IPLS->GenState = InProgressLookupState::ResumedForGenerator; 2319 dispatchTask(std::make_unique<LookupTask>(std::move(LS))); 2320 } 2321 } 2322 2323 void ExecutionSession::OL_applyQueryPhase1( 2324 std::unique_ptr<InProgressLookupState> IPLS, Error Err) { 2325 2326 LLVM_DEBUG({ 2327 dbgs() << "Entering OL_applyQueryPhase1:\n" 2328 << " Lookup kind: " << IPLS->K << "\n" 2329 << " Search order: " << IPLS->SearchOrder 2330 << ", Current index = " << IPLS->CurSearchOrderIndex 2331 << (IPLS->NewJITDylib ? " (entering new JITDylib)" : "") << "\n" 2332 << " Lookup set: " << IPLS->LookupSet << "\n" 2333 << " Definition generator candidates: " 2334 << IPLS->DefGeneratorCandidates << "\n" 2335 << " Definition generator non-candidates: " 2336 << IPLS->DefGeneratorNonCandidates << "\n"; 2337 }); 2338 2339 if (IPLS->GenState == InProgressLookupState::InGenerator) 2340 OL_resumeLookupAfterGeneration(*IPLS); 2341 2342 assert(IPLS->GenState != InProgressLookupState::InGenerator && 2343 "Lookup should not be in InGenerator state here"); 2344 2345 // FIXME: We should attach the query as we go: This provides a result in a 2346 // single pass in the common case where all symbols have already reached the 2347 // required state. The query could be detached again in the 'fail' method on 2348 // IPLS. Phase 2 would be reduced to collecting and dispatching the MUs. 2349 2350 while (IPLS->CurSearchOrderIndex != IPLS->SearchOrder.size()) { 2351 2352 // If we've been handed an error or received one back from a generator then 2353 // fail the query. We don't need to unlink: At this stage the query hasn't 2354 // actually been lodged. 2355 if (Err) 2356 return IPLS->fail(std::move(Err)); 2357 2358 // Get the next JITDylib and lookup flags. 2359 auto &KV = IPLS->SearchOrder[IPLS->CurSearchOrderIndex]; 2360 auto &JD = *KV.first; 2361 auto JDLookupFlags = KV.second; 2362 2363 LLVM_DEBUG({ 2364 dbgs() << "Visiting \"" << JD.getName() << "\" (" << JDLookupFlags 2365 << ") with lookup set " << IPLS->LookupSet << ":\n"; 2366 }); 2367 2368 // If we've just reached a new JITDylib then perform some setup. 2369 if (IPLS->NewJITDylib) { 2370 // Add any non-candidates from the last JITDylib (if any) back on to the 2371 // list of definition candidates for this JITDylib, reset definition 2372 // non-candidates to the empty set. 2373 SymbolLookupSet Tmp; 2374 std::swap(IPLS->DefGeneratorNonCandidates, Tmp); 2375 IPLS->DefGeneratorCandidates.append(std::move(Tmp)); 2376 2377 LLVM_DEBUG({ 2378 dbgs() << " First time visiting " << JD.getName() 2379 << ", resetting candidate sets and building generator stack\n"; 2380 }); 2381 2382 // Build the definition generator stack for this JITDylib. 2383 runSessionLocked([&] { 2384 IPLS->CurDefGeneratorStack.reserve(JD.DefGenerators.size()); 2385 for (auto &DG : reverse(JD.DefGenerators)) 2386 IPLS->CurDefGeneratorStack.push_back(DG); 2387 }); 2388 2389 // Flag that we've done our initialization. 2390 IPLS->NewJITDylib = false; 2391 } 2392 2393 // Remove any generation candidates that are already defined (and match) in 2394 // this JITDylib. 2395 runSessionLocked([&] { 2396 // Update the list of candidates (and non-candidates) for definition 2397 // generation. 2398 LLVM_DEBUG(dbgs() << " Updating candidate set...\n"); 2399 Err = IL_updateCandidatesFor( 2400 JD, JDLookupFlags, IPLS->DefGeneratorCandidates, 2401 JD.DefGenerators.empty() ? nullptr 2402 : &IPLS->DefGeneratorNonCandidates); 2403 LLVM_DEBUG({ 2404 dbgs() << " Remaining candidates = " << IPLS->DefGeneratorCandidates 2405 << "\n"; 2406 }); 2407 2408 // If this lookup was resumed after auto-suspension but all candidates 2409 // have already been generated (by some previous call to the generator) 2410 // treat the lookup as if it had completed generation. 2411 if (IPLS->GenState == InProgressLookupState::ResumedForGenerator && 2412 IPLS->DefGeneratorCandidates.empty()) 2413 OL_resumeLookupAfterGeneration(*IPLS); 2414 }); 2415 2416 // If we encountered an error while filtering generation candidates then 2417 // bail out. 2418 if (Err) 2419 return IPLS->fail(std::move(Err)); 2420 2421 /// Apply any definition generators on the stack. 2422 LLVM_DEBUG({ 2423 if (IPLS->CurDefGeneratorStack.empty()) 2424 LLVM_DEBUG(dbgs() << " No generators to run for this JITDylib.\n"); 2425 else if (IPLS->DefGeneratorCandidates.empty()) 2426 LLVM_DEBUG(dbgs() << " No candidates to generate.\n"); 2427 else 2428 dbgs() << " Running " << IPLS->CurDefGeneratorStack.size() 2429 << " remaining generators for " 2430 << IPLS->DefGeneratorCandidates.size() << " candidates\n"; 2431 }); 2432 while (!IPLS->CurDefGeneratorStack.empty() && 2433 !IPLS->DefGeneratorCandidates.empty()) { 2434 auto DG = IPLS->CurDefGeneratorStack.back().lock(); 2435 2436 if (!DG) 2437 return IPLS->fail(make_error<StringError>( 2438 "DefinitionGenerator removed while lookup in progress", 2439 inconvertibleErrorCode())); 2440 2441 // At this point the lookup is in either the NotInGenerator state, or in 2442 // the ResumedForGenerator state. 2443 // If this lookup is in the NotInGenerator state then check whether the 2444 // generator is in use. If the generator is not in use then move the 2445 // lookup to the InGenerator state and continue. If the generator is 2446 // already in use then just add this lookup to the pending lookups list 2447 // and bail out. 2448 // If this lookup is in the ResumedForGenerator state then just move it 2449 // to InGenerator and continue. 2450 if (IPLS->GenState == InProgressLookupState::NotInGenerator) { 2451 std::lock_guard<std::mutex> Lock(DG->M); 2452 if (DG->InUse) { 2453 DG->PendingLookups.push_back(std::move(IPLS)); 2454 return; 2455 } 2456 DG->InUse = true; 2457 } 2458 2459 IPLS->GenState = InProgressLookupState::InGenerator; 2460 2461 auto K = IPLS->K; 2462 auto &LookupSet = IPLS->DefGeneratorCandidates; 2463 2464 // Run the generator. If the generator takes ownership of QA then this 2465 // will break the loop. 2466 { 2467 LLVM_DEBUG(dbgs() << " Attempting to generate " << LookupSet << "\n"); 2468 LookupState LS(std::move(IPLS)); 2469 Err = DG->tryToGenerate(LS, K, JD, JDLookupFlags, LookupSet); 2470 IPLS = std::move(LS.IPLS); 2471 } 2472 2473 // If the lookup returned then pop the generator stack and unblock the 2474 // next lookup on this generator (if any). 2475 if (IPLS) 2476 OL_resumeLookupAfterGeneration(*IPLS); 2477 2478 // If there was an error then fail the query. 2479 if (Err) { 2480 LLVM_DEBUG({ 2481 dbgs() << " Error attempting to generate " << LookupSet << "\n"; 2482 }); 2483 assert(IPLS && "LS cannot be retained if error is returned"); 2484 return IPLS->fail(std::move(Err)); 2485 } 2486 2487 // Otherwise if QA was captured then break the loop. 2488 if (!IPLS) { 2489 LLVM_DEBUG( 2490 { dbgs() << " LookupState captured. Exiting phase1 for now.\n"; }); 2491 return; 2492 } 2493 2494 // Otherwise if we're continuing around the loop then update candidates 2495 // for the next round. 2496 runSessionLocked([&] { 2497 LLVM_DEBUG(dbgs() << " Updating candidate set post-generation\n"); 2498 Err = IL_updateCandidatesFor( 2499 JD, JDLookupFlags, IPLS->DefGeneratorCandidates, 2500 JD.DefGenerators.empty() ? nullptr 2501 : &IPLS->DefGeneratorNonCandidates); 2502 }); 2503 2504 // If updating candidates failed then fail the query. 2505 if (Err) { 2506 LLVM_DEBUG(dbgs() << " Error encountered while updating candidates\n"); 2507 return IPLS->fail(std::move(Err)); 2508 } 2509 } 2510 2511 if (IPLS->DefGeneratorCandidates.empty() && 2512 IPLS->DefGeneratorNonCandidates.empty()) { 2513 // Early out if there are no remaining symbols. 2514 LLVM_DEBUG(dbgs() << "All symbols matched.\n"); 2515 IPLS->CurSearchOrderIndex = IPLS->SearchOrder.size(); 2516 break; 2517 } else { 2518 // If we get here then we've moved on to the next JITDylib with candidates 2519 // remaining. 2520 LLVM_DEBUG(dbgs() << "Phase 1 moving to next JITDylib.\n"); 2521 ++IPLS->CurSearchOrderIndex; 2522 IPLS->NewJITDylib = true; 2523 } 2524 } 2525 2526 // Remove any weakly referenced candidates that could not be found/generated. 2527 IPLS->DefGeneratorCandidates.remove_if( 2528 [](const SymbolStringPtr &Name, SymbolLookupFlags SymLookupFlags) { 2529 return SymLookupFlags == SymbolLookupFlags::WeaklyReferencedSymbol; 2530 }); 2531 2532 // If we get here then we've finished searching all JITDylibs. 2533 // If we matched all symbols then move to phase 2, otherwise fail the query 2534 // with a SymbolsNotFound error. 2535 if (IPLS->DefGeneratorCandidates.empty()) { 2536 LLVM_DEBUG(dbgs() << "Phase 1 succeeded.\n"); 2537 IPLS->complete(std::move(IPLS)); 2538 } else { 2539 LLVM_DEBUG(dbgs() << "Phase 1 failed with unresolved symbols.\n"); 2540 IPLS->fail(make_error<SymbolsNotFound>( 2541 getSymbolStringPool(), IPLS->DefGeneratorCandidates.getSymbolNames())); 2542 } 2543 } 2544 2545 void ExecutionSession::OL_completeLookup( 2546 std::unique_ptr<InProgressLookupState> IPLS, 2547 std::shared_ptr<AsynchronousSymbolQuery> Q, 2548 RegisterDependenciesFunction RegisterDependencies) { 2549 2550 LLVM_DEBUG({ 2551 dbgs() << "Entering OL_completeLookup:\n" 2552 << " Lookup kind: " << IPLS->K << "\n" 2553 << " Search order: " << IPLS->SearchOrder 2554 << ", Current index = " << IPLS->CurSearchOrderIndex 2555 << (IPLS->NewJITDylib ? " (entering new JITDylib)" : "") << "\n" 2556 << " Lookup set: " << IPLS->LookupSet << "\n" 2557 << " Definition generator candidates: " 2558 << IPLS->DefGeneratorCandidates << "\n" 2559 << " Definition generator non-candidates: " 2560 << IPLS->DefGeneratorNonCandidates << "\n"; 2561 }); 2562 2563 bool QueryComplete = false; 2564 DenseMap<JITDylib *, JITDylib::UnmaterializedInfosList> CollectedUMIs; 2565 2566 auto LodgingErr = runSessionLocked([&]() -> Error { 2567 for (auto &KV : IPLS->SearchOrder) { 2568 auto &JD = *KV.first; 2569 auto JDLookupFlags = KV.second; 2570 LLVM_DEBUG({ 2571 dbgs() << "Visiting \"" << JD.getName() << "\" (" << JDLookupFlags 2572 << ") with lookup set " << IPLS->LookupSet << ":\n"; 2573 }); 2574 2575 auto Err = IPLS->LookupSet.forEachWithRemoval( 2576 [&](const SymbolStringPtr &Name, 2577 SymbolLookupFlags SymLookupFlags) -> Expected<bool> { 2578 LLVM_DEBUG({ 2579 dbgs() << " Attempting to match \"" << Name << "\" (" 2580 << SymLookupFlags << ")... "; 2581 }); 2582 2583 /// Search for the symbol. If not found then continue without 2584 /// removal. 2585 auto SymI = JD.Symbols.find(Name); 2586 if (SymI == JD.Symbols.end()) { 2587 LLVM_DEBUG(dbgs() << "skipping: not present\n"); 2588 return false; 2589 } 2590 2591 // If this is a non-exported symbol and we're matching exported 2592 // symbols only then skip this symbol without removal. 2593 if (!SymI->second.getFlags().isExported() && 2594 JDLookupFlags == 2595 JITDylibLookupFlags::MatchExportedSymbolsOnly) { 2596 LLVM_DEBUG(dbgs() << "skipping: not exported\n"); 2597 return false; 2598 } 2599 2600 // If we match against a materialization-side-effects only symbol 2601 // then make sure it is weakly-referenced. Otherwise bail out with 2602 // an error. 2603 // FIXME: Use a "materialization-side-effects-only symbols must be 2604 // weakly referenced" specific error here to reduce confusion. 2605 if (SymI->second.getFlags().hasMaterializationSideEffectsOnly() && 2606 SymLookupFlags != SymbolLookupFlags::WeaklyReferencedSymbol) { 2607 LLVM_DEBUG({ 2608 dbgs() << "error: " 2609 "required, but symbol is has-side-effects-only\n"; 2610 }); 2611 return make_error<SymbolsNotFound>(getSymbolStringPool(), 2612 SymbolNameVector({Name})); 2613 } 2614 2615 // If we matched against this symbol but it is in the error state 2616 // then bail out and treat it as a failure to materialize. 2617 if (SymI->second.getFlags().hasError()) { 2618 LLVM_DEBUG(dbgs() << "error: symbol is in error state\n"); 2619 auto FailedSymbolsMap = std::make_shared<SymbolDependenceMap>(); 2620 (*FailedSymbolsMap)[&JD] = {Name}; 2621 return make_error<FailedToMaterialize>( 2622 getSymbolStringPool(), std::move(FailedSymbolsMap)); 2623 } 2624 2625 // Otherwise this is a match. 2626 2627 // If this symbol is already in the required state then notify the 2628 // query, remove the symbol and continue. 2629 if (SymI->second.getState() >= Q->getRequiredState()) { 2630 LLVM_DEBUG(dbgs() 2631 << "matched, symbol already in required state\n"); 2632 Q->notifySymbolMetRequiredState(Name, SymI->second.getSymbol()); 2633 2634 // If this symbol is in anything other than the Ready state then 2635 // we need to track the dependence. 2636 if (SymI->second.getState() != SymbolState::Ready) 2637 Q->addQueryDependence(JD, Name); 2638 2639 return true; 2640 } 2641 2642 // Otherwise this symbol does not yet meet the required state. Check 2643 // whether it has a materializer attached, and if so prepare to run 2644 // it. 2645 if (SymI->second.hasMaterializerAttached()) { 2646 assert(SymI->second.getAddress() == ExecutorAddr() && 2647 "Symbol not resolved but already has address?"); 2648 auto UMII = JD.UnmaterializedInfos.find(Name); 2649 assert(UMII != JD.UnmaterializedInfos.end() && 2650 "Lazy symbol should have UnmaterializedInfo"); 2651 2652 auto UMI = UMII->second; 2653 assert(UMI->MU && "Materializer should not be null"); 2654 assert(UMI->RT && "Tracker should not be null"); 2655 LLVM_DEBUG({ 2656 dbgs() << "matched, preparing to dispatch MU@" << UMI->MU.get() 2657 << " (" << UMI->MU->getName() << ")\n"; 2658 }); 2659 2660 // Move all symbols associated with this MaterializationUnit into 2661 // materializing state. 2662 for (auto &KV : UMI->MU->getSymbols()) { 2663 auto SymK = JD.Symbols.find(KV.first); 2664 assert(SymK != JD.Symbols.end() && 2665 "No entry for symbol covered by MaterializationUnit"); 2666 SymK->second.setMaterializerAttached(false); 2667 SymK->second.setState(SymbolState::Materializing); 2668 JD.UnmaterializedInfos.erase(KV.first); 2669 } 2670 2671 // Add MU to the list of MaterializationUnits to be materialized. 2672 CollectedUMIs[&JD].push_back(std::move(UMI)); 2673 } else 2674 LLVM_DEBUG(dbgs() << "matched, registering query"); 2675 2676 // Add the query to the PendingQueries list and continue, deleting 2677 // the element from the lookup set. 2678 assert(SymI->second.getState() != SymbolState::NeverSearched && 2679 SymI->second.getState() != SymbolState::Ready && 2680 "By this line the symbol should be materializing"); 2681 auto &MI = JD.MaterializingInfos[Name]; 2682 MI.addQuery(Q); 2683 Q->addQueryDependence(JD, Name); 2684 2685 return true; 2686 }); 2687 2688 JD.shrinkMaterializationInfoMemory(); 2689 2690 // Handle failure. 2691 if (Err) { 2692 2693 LLVM_DEBUG({ 2694 dbgs() << "Lookup failed. Detaching query and replacing MUs.\n"; 2695 }); 2696 2697 // Detach the query. 2698 Q->detach(); 2699 2700 // Replace the MUs. 2701 for (auto &KV : CollectedUMIs) { 2702 auto &JD = *KV.first; 2703 for (auto &UMI : KV.second) 2704 for (auto &KV2 : UMI->MU->getSymbols()) { 2705 assert(!JD.UnmaterializedInfos.count(KV2.first) && 2706 "Unexpected materializer in map"); 2707 auto SymI = JD.Symbols.find(KV2.first); 2708 assert(SymI != JD.Symbols.end() && "Missing symbol entry"); 2709 assert(SymI->second.getState() == SymbolState::Materializing && 2710 "Can not replace symbol that is not materializing"); 2711 assert(!SymI->second.hasMaterializerAttached() && 2712 "MaterializerAttached flag should not be set"); 2713 SymI->second.setMaterializerAttached(true); 2714 JD.UnmaterializedInfos[KV2.first] = UMI; 2715 } 2716 } 2717 2718 return Err; 2719 } 2720 } 2721 2722 LLVM_DEBUG(dbgs() << "Stripping unmatched weakly-referenced symbols\n"); 2723 IPLS->LookupSet.forEachWithRemoval( 2724 [&](const SymbolStringPtr &Name, SymbolLookupFlags SymLookupFlags) { 2725 if (SymLookupFlags == SymbolLookupFlags::WeaklyReferencedSymbol) { 2726 Q->dropSymbol(Name); 2727 return true; 2728 } else 2729 return false; 2730 }); 2731 2732 if (!IPLS->LookupSet.empty()) { 2733 LLVM_DEBUG(dbgs() << "Failing due to unresolved symbols\n"); 2734 return make_error<SymbolsNotFound>(getSymbolStringPool(), 2735 IPLS->LookupSet.getSymbolNames()); 2736 } 2737 2738 // Record whether the query completed. 2739 QueryComplete = Q->isComplete(); 2740 2741 LLVM_DEBUG({ 2742 dbgs() << "Query successfully " 2743 << (QueryComplete ? "completed" : "lodged") << "\n"; 2744 }); 2745 2746 // Move the collected MUs to the OutstandingMUs list. 2747 if (!CollectedUMIs.empty()) { 2748 std::lock_guard<std::recursive_mutex> Lock(OutstandingMUsMutex); 2749 2750 LLVM_DEBUG(dbgs() << "Adding MUs to dispatch:\n"); 2751 for (auto &KV : CollectedUMIs) { 2752 LLVM_DEBUG({ 2753 auto &JD = *KV.first; 2754 dbgs() << " For " << JD.getName() << ": Adding " << KV.second.size() 2755 << " MUs.\n"; 2756 }); 2757 for (auto &UMI : KV.second) { 2758 auto MR = createMaterializationResponsibility( 2759 *UMI->RT, std::move(UMI->MU->SymbolFlags), 2760 std::move(UMI->MU->InitSymbol)); 2761 OutstandingMUs.push_back( 2762 std::make_pair(std::move(UMI->MU), std::move(MR))); 2763 } 2764 } 2765 } else 2766 LLVM_DEBUG(dbgs() << "No MUs to dispatch.\n"); 2767 2768 if (RegisterDependencies && !Q->QueryRegistrations.empty()) { 2769 LLVM_DEBUG(dbgs() << "Registering dependencies\n"); 2770 RegisterDependencies(Q->QueryRegistrations); 2771 } else 2772 LLVM_DEBUG(dbgs() << "No dependencies to register\n"); 2773 2774 return Error::success(); 2775 }); 2776 2777 if (LodgingErr) { 2778 LLVM_DEBUG(dbgs() << "Failing query\n"); 2779 Q->detach(); 2780 Q->handleFailed(std::move(LodgingErr)); 2781 return; 2782 } 2783 2784 if (QueryComplete) { 2785 LLVM_DEBUG(dbgs() << "Completing query\n"); 2786 Q->handleComplete(*this); 2787 } 2788 2789 dispatchOutstandingMUs(); 2790 } 2791 2792 void ExecutionSession::OL_completeLookupFlags( 2793 std::unique_ptr<InProgressLookupState> IPLS, 2794 unique_function<void(Expected<SymbolFlagsMap>)> OnComplete) { 2795 2796 auto Result = runSessionLocked([&]() -> Expected<SymbolFlagsMap> { 2797 LLVM_DEBUG({ 2798 dbgs() << "Entering OL_completeLookupFlags:\n" 2799 << " Lookup kind: " << IPLS->K << "\n" 2800 << " Search order: " << IPLS->SearchOrder 2801 << ", Current index = " << IPLS->CurSearchOrderIndex 2802 << (IPLS->NewJITDylib ? " (entering new JITDylib)" : "") << "\n" 2803 << " Lookup set: " << IPLS->LookupSet << "\n" 2804 << " Definition generator candidates: " 2805 << IPLS->DefGeneratorCandidates << "\n" 2806 << " Definition generator non-candidates: " 2807 << IPLS->DefGeneratorNonCandidates << "\n"; 2808 }); 2809 2810 SymbolFlagsMap Result; 2811 2812 // Attempt to find flags for each symbol. 2813 for (auto &KV : IPLS->SearchOrder) { 2814 auto &JD = *KV.first; 2815 auto JDLookupFlags = KV.second; 2816 LLVM_DEBUG({ 2817 dbgs() << "Visiting \"" << JD.getName() << "\" (" << JDLookupFlags 2818 << ") with lookup set " << IPLS->LookupSet << ":\n"; 2819 }); 2820 2821 IPLS->LookupSet.forEachWithRemoval([&](const SymbolStringPtr &Name, 2822 SymbolLookupFlags SymLookupFlags) { 2823 LLVM_DEBUG({ 2824 dbgs() << " Attempting to match \"" << Name << "\" (" 2825 << SymLookupFlags << ")... "; 2826 }); 2827 2828 // Search for the symbol. If not found then continue without removing 2829 // from the lookup set. 2830 auto SymI = JD.Symbols.find(Name); 2831 if (SymI == JD.Symbols.end()) { 2832 LLVM_DEBUG(dbgs() << "skipping: not present\n"); 2833 return false; 2834 } 2835 2836 // If this is a non-exported symbol then it doesn't match. Skip it. 2837 if (!SymI->second.getFlags().isExported() && 2838 JDLookupFlags == JITDylibLookupFlags::MatchExportedSymbolsOnly) { 2839 LLVM_DEBUG(dbgs() << "skipping: not exported\n"); 2840 return false; 2841 } 2842 2843 LLVM_DEBUG({ 2844 dbgs() << "matched, \"" << Name << "\" -> " << SymI->second.getFlags() 2845 << "\n"; 2846 }); 2847 Result[Name] = SymI->second.getFlags(); 2848 return true; 2849 }); 2850 } 2851 2852 // Remove any weakly referenced symbols that haven't been resolved. 2853 IPLS->LookupSet.remove_if( 2854 [](const SymbolStringPtr &Name, SymbolLookupFlags SymLookupFlags) { 2855 return SymLookupFlags == SymbolLookupFlags::WeaklyReferencedSymbol; 2856 }); 2857 2858 if (!IPLS->LookupSet.empty()) { 2859 LLVM_DEBUG(dbgs() << "Failing due to unresolved symbols\n"); 2860 return make_error<SymbolsNotFound>(getSymbolStringPool(), 2861 IPLS->LookupSet.getSymbolNames()); 2862 } 2863 2864 LLVM_DEBUG(dbgs() << "Succeded, result = " << Result << "\n"); 2865 return Result; 2866 }); 2867 2868 // Run the callback on the result. 2869 LLVM_DEBUG(dbgs() << "Sending result to handler.\n"); 2870 OnComplete(std::move(Result)); 2871 } 2872 2873 void ExecutionSession::OL_destroyMaterializationResponsibility( 2874 MaterializationResponsibility &MR) { 2875 2876 assert(MR.SymbolFlags.empty() && 2877 "All symbols should have been explicitly materialized or failed"); 2878 MR.JD.unlinkMaterializationResponsibility(MR); 2879 } 2880 2881 SymbolNameSet ExecutionSession::OL_getRequestedSymbols( 2882 const MaterializationResponsibility &MR) { 2883 return MR.JD.getRequestedSymbols(MR.SymbolFlags); 2884 } 2885 2886 Error ExecutionSession::OL_notifyResolved(MaterializationResponsibility &MR, 2887 const SymbolMap &Symbols) { 2888 LLVM_DEBUG({ 2889 dbgs() << "In " << MR.JD.getName() << " resolving " << Symbols << "\n"; 2890 }); 2891 #ifndef NDEBUG 2892 for (auto &KV : Symbols) { 2893 auto I = MR.SymbolFlags.find(KV.first); 2894 assert(I != MR.SymbolFlags.end() && 2895 "Resolving symbol outside this responsibility set"); 2896 assert(!I->second.hasMaterializationSideEffectsOnly() && 2897 "Can't resolve materialization-side-effects-only symbol"); 2898 if (I->second & JITSymbolFlags::Common) { 2899 auto WeakOrCommon = JITSymbolFlags::Weak | JITSymbolFlags::Common; 2900 assert((KV.second.getFlags() & WeakOrCommon) && 2901 "Common symbols must be resolved as common or weak"); 2902 assert((KV.second.getFlags() & ~WeakOrCommon) == 2903 (I->second & ~JITSymbolFlags::Common) && 2904 "Resolving symbol with incorrect flags"); 2905 } else 2906 assert(KV.second.getFlags() == I->second && 2907 "Resolving symbol with incorrect flags"); 2908 } 2909 #endif 2910 2911 return MR.JD.resolve(MR, Symbols); 2912 } 2913 2914 template <typename HandleNewDepFn> 2915 void ExecutionSession::propagateExtraEmitDeps( 2916 std::deque<JITDylib::EmissionDepUnit *> Worklist, EDUInfosMap &EDUInfos, 2917 HandleNewDepFn HandleNewDep) { 2918 2919 // Iterate to a fixed-point to propagate extra-emit dependencies through the 2920 // EDU graph. 2921 while (!Worklist.empty()) { 2922 auto &EDU = *Worklist.front(); 2923 Worklist.pop_front(); 2924 2925 assert(EDUInfos.count(&EDU) && "No info entry for EDU"); 2926 auto &EDUInfo = EDUInfos[&EDU]; 2927 2928 // Propagate new dependencies to users. 2929 for (auto *UserEDU : EDUInfo.IntraEmitUsers) { 2930 2931 // UserEDUInfo only present if UserEDU has its own users. 2932 JITDylib::EmissionDepUnitInfo *UserEDUInfo = nullptr; 2933 { 2934 auto UserEDUInfoItr = EDUInfos.find(UserEDU); 2935 if (UserEDUInfoItr != EDUInfos.end()) 2936 UserEDUInfo = &UserEDUInfoItr->second; 2937 } 2938 2939 for (auto &[DepJD, Deps] : EDUInfo.NewDeps) { 2940 auto &UserEDUDepsForJD = UserEDU->Dependencies[DepJD]; 2941 DenseSet<NonOwningSymbolStringPtr> *UserEDUNewDepsForJD = nullptr; 2942 for (auto Dep : Deps) { 2943 if (UserEDUDepsForJD.insert(Dep).second) { 2944 HandleNewDep(*UserEDU, *DepJD, Dep); 2945 if (UserEDUInfo) { 2946 if (!UserEDUNewDepsForJD) { 2947 // If UserEDU has no new deps then it's not in the worklist 2948 // yet, so add it. 2949 if (UserEDUInfo->NewDeps.empty()) 2950 Worklist.push_back(UserEDU); 2951 UserEDUNewDepsForJD = &UserEDUInfo->NewDeps[DepJD]; 2952 } 2953 // Add (DepJD, Dep) to NewDeps. 2954 UserEDUNewDepsForJD->insert(Dep); 2955 } 2956 } 2957 } 2958 } 2959 } 2960 2961 EDUInfo.NewDeps.clear(); 2962 } 2963 } 2964 2965 // Note: This method modifies the emitted set. 2966 ExecutionSession::EDUInfosMap ExecutionSession::simplifyDepGroups( 2967 MaterializationResponsibility &MR, 2968 ArrayRef<SymbolDependenceGroup> EmittedDeps) { 2969 2970 auto &TargetJD = MR.getTargetJITDylib(); 2971 2972 // 1. Build initial EmissionDepUnit -> EmissionDepUnitInfo and 2973 // Symbol -> EmissionDepUnit mappings. 2974 DenseMap<JITDylib::EmissionDepUnit *, JITDylib::EmissionDepUnitInfo> EDUInfos; 2975 EDUInfos.reserve(EmittedDeps.size()); 2976 DenseMap<NonOwningSymbolStringPtr, JITDylib::EmissionDepUnit *> EDUForSymbol; 2977 for (auto &DG : EmittedDeps) { 2978 assert(!DG.Symbols.empty() && "DepGroup does not cover any symbols"); 2979 2980 // Skip empty EDUs. 2981 if (DG.Dependencies.empty()) 2982 continue; 2983 2984 auto TmpEDU = std::make_shared<JITDylib::EmissionDepUnit>(TargetJD); 2985 auto &EDUInfo = EDUInfos[TmpEDU.get()]; 2986 EDUInfo.EDU = std::move(TmpEDU); 2987 for (const auto &Symbol : DG.Symbols) { 2988 NonOwningSymbolStringPtr NonOwningSymbol(Symbol); 2989 assert(!EDUForSymbol.count(NonOwningSymbol) && 2990 "Symbol should not appear in more than one SymbolDependenceGroup"); 2991 assert(MR.getSymbols().count(Symbol) && 2992 "Symbol in DepGroups not in the emitted set"); 2993 auto NewlyEmittedItr = MR.getSymbols().find(Symbol); 2994 EDUInfo.EDU->Symbols[NonOwningSymbol] = NewlyEmittedItr->second; 2995 EDUForSymbol[NonOwningSymbol] = EDUInfo.EDU.get(); 2996 } 2997 } 2998 2999 // 2. Build a "residual" EDU to cover all symbols that have no dependencies. 3000 { 3001 DenseMap<NonOwningSymbolStringPtr, JITSymbolFlags> ResidualSymbolFlags; 3002 for (auto &[Sym, Flags] : MR.getSymbols()) { 3003 if (!EDUForSymbol.count(NonOwningSymbolStringPtr(Sym))) 3004 ResidualSymbolFlags[NonOwningSymbolStringPtr(Sym)] = Flags; 3005 } 3006 if (!ResidualSymbolFlags.empty()) { 3007 auto ResidualEDU = std::make_shared<JITDylib::EmissionDepUnit>(TargetJD); 3008 ResidualEDU->Symbols = std::move(ResidualSymbolFlags); 3009 auto &ResidualEDUInfo = EDUInfos[ResidualEDU.get()]; 3010 ResidualEDUInfo.EDU = std::move(ResidualEDU); 3011 3012 // If the residual EDU is the only one then bail out early. 3013 if (EDUInfos.size() == 1) 3014 return EDUInfos; 3015 3016 // Otherwise add the residual EDU to the EDUForSymbol map. 3017 for (auto &[Sym, Flags] : ResidualEDUInfo.EDU->Symbols) 3018 EDUForSymbol[Sym] = ResidualEDUInfo.EDU.get(); 3019 } 3020 } 3021 3022 #ifndef NDEBUG 3023 assert(EDUForSymbol.size() == MR.getSymbols().size() && 3024 "MR symbols not fully covered by EDUs?"); 3025 for (auto &[Sym, Flags] : MR.getSymbols()) { 3026 assert(EDUForSymbol.count(NonOwningSymbolStringPtr(Sym)) && 3027 "Sym in MR not covered by EDU"); 3028 } 3029 #endif // NDEBUG 3030 3031 // 3. Use the DepGroups array to build a graph of dependencies between 3032 // EmissionDepUnits in this finalization. We want to remove these 3033 // intra-finalization uses, propagating dependencies on symbols outside 3034 // this finalization. Add EDUs to the worklist. 3035 for (auto &DG : EmittedDeps) { 3036 3037 // Skip SymbolDependenceGroups with no dependencies. 3038 if (DG.Dependencies.empty()) 3039 continue; 3040 3041 assert(EDUForSymbol.count(NonOwningSymbolStringPtr(*DG.Symbols.begin())) && 3042 "No EDU for DG"); 3043 auto &EDU = 3044 *EDUForSymbol.find(NonOwningSymbolStringPtr(*DG.Symbols.begin())) 3045 ->second; 3046 3047 for (auto &[DepJD, Deps] : DG.Dependencies) { 3048 DenseSet<NonOwningSymbolStringPtr> NewDepsForJD; 3049 3050 assert(!Deps.empty() && "Dependence set for DepJD is empty"); 3051 3052 if (DepJD != &TargetJD) { 3053 // DepJD is some other JITDylib.There can't be any intra-finalization 3054 // edges here, so just skip. 3055 for (auto &Dep : Deps) 3056 NewDepsForJD.insert(NonOwningSymbolStringPtr(Dep)); 3057 } else { 3058 // DepJD is the Target JITDylib. Check for intra-finaliztaion edges, 3059 // skipping any and recording the intra-finalization use instead. 3060 for (auto &Dep : Deps) { 3061 NonOwningSymbolStringPtr NonOwningDep(Dep); 3062 auto I = EDUForSymbol.find(NonOwningDep); 3063 if (I == EDUForSymbol.end()) { 3064 if (!MR.getSymbols().count(Dep)) 3065 NewDepsForJD.insert(NonOwningDep); 3066 continue; 3067 } 3068 3069 if (I->second != &EDU) 3070 EDUInfos[I->second].IntraEmitUsers.insert(&EDU); 3071 } 3072 } 3073 3074 if (!NewDepsForJD.empty()) 3075 EDU.Dependencies[DepJD] = std::move(NewDepsForJD); 3076 } 3077 } 3078 3079 // 4. Build the worklist. 3080 std::deque<JITDylib::EmissionDepUnit *> Worklist; 3081 for (auto &[EDU, EDUInfo] : EDUInfos) { 3082 // If this EDU has extra-finalization dependencies and intra-finalization 3083 // users then add it to the worklist. 3084 if (!EDU->Dependencies.empty()) { 3085 auto I = EDUInfos.find(EDU); 3086 if (I != EDUInfos.end()) { 3087 auto &EDUInfo = I->second; 3088 if (!EDUInfo.IntraEmitUsers.empty()) { 3089 EDUInfo.NewDeps = EDU->Dependencies; 3090 Worklist.push_back(EDU); 3091 } 3092 } 3093 } 3094 } 3095 3096 // 4. Propagate dependencies through the EDU graph. 3097 propagateExtraEmitDeps( 3098 Worklist, EDUInfos, 3099 [](JITDylib::EmissionDepUnit &, JITDylib &, NonOwningSymbolStringPtr) {}); 3100 3101 return EDUInfos; 3102 } 3103 3104 void ExecutionSession::IL_makeEDUReady( 3105 std::shared_ptr<JITDylib::EmissionDepUnit> EDU, 3106 JITDylib::AsynchronousSymbolQuerySet &Queries) { 3107 3108 // The symbols for this EDU are ready. 3109 auto &JD = *EDU->JD; 3110 3111 for (auto &[Sym, Flags] : EDU->Symbols) { 3112 assert(JD.Symbols.count(SymbolStringPtr(Sym)) && 3113 "JD does not have an entry for Sym"); 3114 auto &Entry = JD.Symbols[SymbolStringPtr(Sym)]; 3115 3116 assert(((Entry.getFlags().hasMaterializationSideEffectsOnly() && 3117 Entry.getState() == SymbolState::Materializing) || 3118 Entry.getState() == SymbolState::Resolved || 3119 Entry.getState() == SymbolState::Emitted) && 3120 "Emitting from state other than Resolved"); 3121 3122 Entry.setState(SymbolState::Ready); 3123 3124 auto MII = JD.MaterializingInfos.find(SymbolStringPtr(Sym)); 3125 3126 // Check for pending queries. 3127 if (MII == JD.MaterializingInfos.end()) 3128 continue; 3129 auto &MI = MII->second; 3130 3131 for (auto &Q : MI.takeQueriesMeeting(SymbolState::Ready)) { 3132 Q->notifySymbolMetRequiredState(SymbolStringPtr(Sym), Entry.getSymbol()); 3133 if (Q->isComplete()) 3134 Queries.insert(Q); 3135 Q->removeQueryDependence(JD, SymbolStringPtr(Sym)); 3136 } 3137 3138 JD.MaterializingInfos.erase(MII); 3139 } 3140 3141 JD.shrinkMaterializationInfoMemory(); 3142 } 3143 3144 void ExecutionSession::IL_makeEDUEmitted( 3145 std::shared_ptr<JITDylib::EmissionDepUnit> EDU, 3146 JITDylib::AsynchronousSymbolQuerySet &Queries) { 3147 3148 // The symbols for this EDU are emitted, but not ready. 3149 auto &JD = *EDU->JD; 3150 3151 for (auto &[Sym, Flags] : EDU->Symbols) { 3152 assert(JD.Symbols.count(SymbolStringPtr(Sym)) && 3153 "JD does not have an entry for Sym"); 3154 auto &Entry = JD.Symbols[SymbolStringPtr(Sym)]; 3155 3156 assert(((Entry.getFlags().hasMaterializationSideEffectsOnly() && 3157 Entry.getState() == SymbolState::Materializing) || 3158 Entry.getState() == SymbolState::Resolved || 3159 Entry.getState() == SymbolState::Emitted) && 3160 "Emitting from state other than Resolved"); 3161 3162 if (Entry.getState() == SymbolState::Emitted) { 3163 // This was already emitted, so we can skip the rest of this loop. 3164 #ifndef NDEBUG 3165 for (auto &[Sym, Flags] : EDU->Symbols) { 3166 assert(JD.Symbols.count(SymbolStringPtr(Sym)) && 3167 "JD does not have an entry for Sym"); 3168 auto &Entry = JD.Symbols[SymbolStringPtr(Sym)]; 3169 assert(Entry.getState() == SymbolState::Emitted && 3170 "Symbols for EDU in inconsistent state"); 3171 assert(JD.MaterializingInfos.count(SymbolStringPtr(Sym)) && 3172 "Emitted symbol has no MI"); 3173 auto MI = JD.MaterializingInfos[SymbolStringPtr(Sym)]; 3174 assert(MI.takeQueriesMeeting(SymbolState::Emitted).empty() && 3175 "Already-emitted symbol has waiting-on-emitted queries"); 3176 } 3177 #endif // NDEBUG 3178 break; 3179 } 3180 3181 Entry.setState(SymbolState::Emitted); 3182 auto &MI = JD.MaterializingInfos[SymbolStringPtr(Sym)]; 3183 MI.DefiningEDU = EDU; 3184 3185 for (auto &Q : MI.takeQueriesMeeting(SymbolState::Emitted)) { 3186 Q->notifySymbolMetRequiredState(SymbolStringPtr(Sym), Entry.getSymbol()); 3187 if (Q->isComplete()) 3188 Queries.insert(Q); 3189 } 3190 } 3191 3192 for (auto &[DepJD, Deps] : EDU->Dependencies) { 3193 for (auto &Dep : Deps) 3194 DepJD->MaterializingInfos[SymbolStringPtr(Dep)].DependantEDUs.insert( 3195 EDU.get()); 3196 } 3197 } 3198 3199 /// Removes the given dependence from EDU. If EDU's dependence set becomes 3200 /// empty then this function adds an entry for it to the EDUInfos map. 3201 /// Returns true if a new EDUInfosMap entry is added. 3202 bool ExecutionSession::IL_removeEDUDependence(JITDylib::EmissionDepUnit &EDU, 3203 JITDylib &DepJD, 3204 NonOwningSymbolStringPtr DepSym, 3205 EDUInfosMap &EDUInfos) { 3206 assert(EDU.Dependencies.count(&DepJD) && 3207 "JD does not appear in Dependencies of DependantEDU"); 3208 assert(EDU.Dependencies[&DepJD].count(DepSym) && 3209 "Symbol does not appear in Dependencies of DependantEDU"); 3210 auto &JDDeps = EDU.Dependencies[&DepJD]; 3211 JDDeps.erase(DepSym); 3212 if (JDDeps.empty()) { 3213 EDU.Dependencies.erase(&DepJD); 3214 if (EDU.Dependencies.empty()) { 3215 // If the dependencies set has become empty then EDU _may_ be ready 3216 // (we won't know for sure until we've propagated the extra-emit deps). 3217 // Create an EDUInfo for it (if it doesn't have one already) so that 3218 // it'll be visited after propagation. 3219 auto &DepEDUInfo = EDUInfos[&EDU]; 3220 if (!DepEDUInfo.EDU) { 3221 assert(EDU.JD->Symbols.count( 3222 SymbolStringPtr(EDU.Symbols.begin()->first)) && 3223 "Missing symbol entry for first symbol in EDU"); 3224 auto DepEDUFirstMI = EDU.JD->MaterializingInfos.find( 3225 SymbolStringPtr(EDU.Symbols.begin()->first)); 3226 assert(DepEDUFirstMI != EDU.JD->MaterializingInfos.end() && 3227 "Missing MI for first symbol in DependantEDU"); 3228 DepEDUInfo.EDU = DepEDUFirstMI->second.DefiningEDU; 3229 return true; 3230 } 3231 } 3232 } 3233 return false; 3234 } 3235 3236 Error ExecutionSession::makeJDClosedError(JITDylib::EmissionDepUnit &EDU, 3237 JITDylib &ClosedJD) { 3238 SymbolNameSet FailedSymbols; 3239 for (auto &[Sym, Flags] : EDU.Symbols) 3240 FailedSymbols.insert(SymbolStringPtr(Sym)); 3241 SymbolDependenceMap BadDeps; 3242 for (auto &Dep : EDU.Dependencies[&ClosedJD]) 3243 BadDeps[&ClosedJD].insert(SymbolStringPtr(Dep)); 3244 return make_error<UnsatisfiedSymbolDependencies>( 3245 ClosedJD.getExecutionSession().getSymbolStringPool(), EDU.JD, 3246 std::move(FailedSymbols), std::move(BadDeps), 3247 ClosedJD.getName() + " is closed"); 3248 } 3249 3250 Error ExecutionSession::makeUnsatisfiedDepsError(JITDylib::EmissionDepUnit &EDU, 3251 JITDylib &BadJD, 3252 SymbolNameSet BadDeps) { 3253 SymbolNameSet FailedSymbols; 3254 for (auto &[Sym, Flags] : EDU.Symbols) 3255 FailedSymbols.insert(SymbolStringPtr(Sym)); 3256 SymbolDependenceMap BadDepsMap; 3257 BadDepsMap[&BadJD] = std::move(BadDeps); 3258 return make_error<UnsatisfiedSymbolDependencies>( 3259 BadJD.getExecutionSession().getSymbolStringPool(), &BadJD, 3260 std::move(FailedSymbols), std::move(BadDepsMap), 3261 "dependencies removed or in error state"); 3262 } 3263 3264 Expected<JITDylib::AsynchronousSymbolQuerySet> 3265 ExecutionSession::IL_emit(MaterializationResponsibility &MR, 3266 EDUInfosMap EDUInfos) { 3267 3268 if (MR.RT->isDefunct()) 3269 return make_error<ResourceTrackerDefunct>(MR.RT); 3270 3271 auto &TargetJD = MR.getTargetJITDylib(); 3272 if (TargetJD.State != JITDylib::Open) 3273 return make_error<StringError>("JITDylib " + TargetJD.getName() + 3274 " is defunct", 3275 inconvertibleErrorCode()); 3276 #ifdef EXPENSIVE_CHECKS 3277 verifySessionState("entering ExecutionSession::IL_emit"); 3278 #endif 3279 3280 // Walk all EDUs: 3281 // 1. Verifying that dependencies are available (not removed or in the error 3282 // state. 3283 // 2. Removing any dependencies that are already Ready. 3284 // 3. Lifting any EDUs for Emitted symbols into the EDUInfos map. 3285 // 4. Finding any dependant EDUs and lifting them into the EDUInfos map. 3286 std::deque<JITDylib::EmissionDepUnit *> Worklist; 3287 for (auto &[EDU, _] : EDUInfos) 3288 Worklist.push_back(EDU); 3289 3290 for (auto *EDU : Worklist) { 3291 auto *EDUInfo = &EDUInfos[EDU]; 3292 3293 SmallVector<JITDylib *> DepJDsToRemove; 3294 for (auto &[DepJD, Deps] : EDU->Dependencies) { 3295 if (DepJD->State != JITDylib::Open) 3296 return makeJDClosedError(*EDU, *DepJD); 3297 3298 SymbolNameSet BadDeps; 3299 SmallVector<NonOwningSymbolStringPtr> DepsToRemove; 3300 for (auto &Dep : Deps) { 3301 auto DepEntryItr = DepJD->Symbols.find(SymbolStringPtr(Dep)); 3302 3303 // If this dep has been removed or moved to the error state then add it 3304 // to the bad deps set. We aggregate these bad deps for more 3305 // comprehensive error messages. 3306 if (DepEntryItr == DepJD->Symbols.end() || 3307 DepEntryItr->second.getFlags().hasError()) { 3308 BadDeps.insert(SymbolStringPtr(Dep)); 3309 continue; 3310 } 3311 3312 // If this dep isn't emitted yet then just add it to the NewDeps set to 3313 // be propagated. 3314 auto &DepEntry = DepEntryItr->second; 3315 if (DepEntry.getState() < SymbolState::Emitted) { 3316 EDUInfo->NewDeps[DepJD].insert(Dep); 3317 continue; 3318 } 3319 3320 // This dep has been emitted, so add it to the list to be removed from 3321 // EDU. 3322 DepsToRemove.push_back(Dep); 3323 3324 // If Dep is Ready then there's nothing further to do. 3325 if (DepEntry.getState() == SymbolState::Ready) { 3326 assert(!DepJD->MaterializingInfos.count(SymbolStringPtr(Dep)) && 3327 "Unexpected MaterializationInfo attached to ready symbol"); 3328 continue; 3329 } 3330 3331 // If we get here then Dep is Emitted. We need to look up its defining 3332 // EDU and add this EDU to the defining EDU's list of users (this means 3333 // creating an EDUInfos entry if the defining EDU doesn't have one 3334 // already). 3335 assert(DepJD->MaterializingInfos.count(SymbolStringPtr(Dep)) && 3336 "Expected MaterializationInfo for emitted dependency"); 3337 auto &DepMI = DepJD->MaterializingInfos[SymbolStringPtr(Dep)]; 3338 assert(DepMI.DefiningEDU && 3339 "Emitted symbol does not have a defining EDU"); 3340 assert(DepMI.DependantEDUs.empty() && 3341 "Already-emitted symbol has dependant EDUs?"); 3342 auto &DepEDUInfo = EDUInfos[DepMI.DefiningEDU.get()]; 3343 if (!DepEDUInfo.EDU) { 3344 // No EDUInfo yet -- build initial entry, and reset the EDUInfo 3345 // pointer, which we will have invalidated. 3346 EDUInfo = &EDUInfos[EDU]; 3347 DepEDUInfo.EDU = DepMI.DefiningEDU; 3348 for (auto &[DepDepJD, DepDeps] : DepEDUInfo.EDU->Dependencies) { 3349 if (DepDepJD == &TargetJD) { 3350 for (auto &DepDep : DepDeps) 3351 if (!MR.getSymbols().count(SymbolStringPtr(DepDep))) 3352 DepEDUInfo.NewDeps[DepDepJD].insert(DepDep); 3353 } else 3354 DepEDUInfo.NewDeps[DepDepJD] = DepDeps; 3355 } 3356 } 3357 DepEDUInfo.IntraEmitUsers.insert(EDU); 3358 } 3359 3360 // Some dependencies were removed or in an error state -- error out. 3361 if (!BadDeps.empty()) 3362 return makeUnsatisfiedDepsError(*EDU, *DepJD, std::move(BadDeps)); 3363 3364 // Remove the emitted / ready deps from DepJD. 3365 for (auto &Dep : DepsToRemove) 3366 Deps.erase(Dep); 3367 3368 // If there are no further deps in DepJD then flag it for removal too. 3369 if (Deps.empty()) 3370 DepJDsToRemove.push_back(DepJD); 3371 } 3372 3373 // Remove any JDs whose dependence sets have become empty. 3374 for (auto &DepJD : DepJDsToRemove) { 3375 assert(EDU->Dependencies.count(DepJD) && 3376 "Trying to remove non-existent dep entries"); 3377 EDU->Dependencies.erase(DepJD); 3378 } 3379 3380 // Now look for users of this EDU. 3381 for (auto &[Sym, Flags] : EDU->Symbols) { 3382 assert(TargetJD.Symbols.count(SymbolStringPtr(Sym)) && 3383 "Sym not present in symbol table"); 3384 assert((TargetJD.Symbols[SymbolStringPtr(Sym)].getState() == 3385 SymbolState::Resolved || 3386 TargetJD.Symbols[SymbolStringPtr(Sym)] 3387 .getFlags() 3388 .hasMaterializationSideEffectsOnly()) && 3389 "Emitting symbol not in the resolved state"); 3390 assert(!TargetJD.Symbols[SymbolStringPtr(Sym)].getFlags().hasError() && 3391 "Symbol is already in an error state"); 3392 3393 auto MII = TargetJD.MaterializingInfos.find(SymbolStringPtr(Sym)); 3394 if (MII == TargetJD.MaterializingInfos.end() || 3395 MII->second.DependantEDUs.empty()) 3396 continue; 3397 3398 for (auto &DependantEDU : MII->second.DependantEDUs) { 3399 if (IL_removeEDUDependence(*DependantEDU, TargetJD, Sym, EDUInfos)) 3400 EDUInfo = &EDUInfos[EDU]; 3401 EDUInfo->IntraEmitUsers.insert(DependantEDU); 3402 } 3403 MII->second.DependantEDUs.clear(); 3404 } 3405 } 3406 3407 Worklist.clear(); 3408 for (auto &[EDU, EDUInfo] : EDUInfos) { 3409 if (!EDUInfo.IntraEmitUsers.empty() && !EDU->Dependencies.empty()) { 3410 if (EDUInfo.NewDeps.empty()) 3411 EDUInfo.NewDeps = EDU->Dependencies; 3412 Worklist.push_back(EDU); 3413 } 3414 } 3415 3416 propagateExtraEmitDeps( 3417 Worklist, EDUInfos, 3418 [](JITDylib::EmissionDepUnit &EDU, JITDylib &JD, 3419 NonOwningSymbolStringPtr Sym) { 3420 JD.MaterializingInfos[SymbolStringPtr(Sym)].DependantEDUs.insert(&EDU); 3421 }); 3422 3423 JITDylib::AsynchronousSymbolQuerySet CompletedQueries; 3424 3425 // Extract completed queries and lodge not-yet-ready EDUs in the 3426 // session. 3427 for (auto &[EDU, EDUInfo] : EDUInfos) { 3428 if (EDU->Dependencies.empty()) 3429 IL_makeEDUReady(std::move(EDUInfo.EDU), CompletedQueries); 3430 else 3431 IL_makeEDUEmitted(std::move(EDUInfo.EDU), CompletedQueries); 3432 } 3433 3434 #ifdef EXPENSIVE_CHECKS 3435 verifySessionState("exiting ExecutionSession::IL_emit"); 3436 #endif 3437 3438 return std::move(CompletedQueries); 3439 } 3440 3441 Error ExecutionSession::OL_notifyEmitted( 3442 MaterializationResponsibility &MR, 3443 ArrayRef<SymbolDependenceGroup> DepGroups) { 3444 LLVM_DEBUG({ 3445 dbgs() << "In " << MR.JD.getName() << " emitting " << MR.SymbolFlags 3446 << "\n"; 3447 if (!DepGroups.empty()) { 3448 dbgs() << " Initial dependencies:\n"; 3449 for (auto &SDG : DepGroups) { 3450 dbgs() << " Symbols: " << SDG.Symbols 3451 << ", Dependencies: " << SDG.Dependencies << "\n"; 3452 } 3453 } 3454 }); 3455 3456 #ifndef NDEBUG 3457 SymbolNameSet Visited; 3458 for (auto &DG : DepGroups) { 3459 for (auto &Sym : DG.Symbols) { 3460 assert(MR.SymbolFlags.count(Sym) && 3461 "DG contains dependence for symbol outside this MR"); 3462 assert(Visited.insert(Sym).second && 3463 "DG contains duplicate entries for Name"); 3464 } 3465 } 3466 #endif // NDEBUG 3467 3468 auto EDUInfos = simplifyDepGroups(MR, DepGroups); 3469 3470 LLVM_DEBUG({ 3471 dbgs() << " Simplified dependencies:\n"; 3472 for (auto &[EDU, EDUInfo] : EDUInfos) { 3473 dbgs() << " Symbols: { "; 3474 for (auto &[Sym, Flags] : EDU->Symbols) 3475 dbgs() << Sym << " "; 3476 dbgs() << "}, Dependencies: { "; 3477 for (auto &[DepJD, Deps] : EDU->Dependencies) { 3478 dbgs() << "(" << DepJD->getName() << ", { "; 3479 for (auto &Dep : Deps) 3480 dbgs() << Dep << " "; 3481 dbgs() << "}) "; 3482 } 3483 dbgs() << "}\n"; 3484 } 3485 }); 3486 3487 auto CompletedQueries = 3488 runSessionLocked([&]() { return IL_emit(MR, EDUInfos); }); 3489 3490 // On error bail out. 3491 if (!CompletedQueries) 3492 return CompletedQueries.takeError(); 3493 3494 MR.SymbolFlags.clear(); 3495 3496 // Otherwise notify all the completed queries. 3497 for (auto &Q : *CompletedQueries) { 3498 assert(Q->isComplete() && "Q is not complete"); 3499 Q->handleComplete(*this); 3500 } 3501 3502 return Error::success(); 3503 } 3504 3505 Error ExecutionSession::OL_defineMaterializing( 3506 MaterializationResponsibility &MR, SymbolFlagsMap NewSymbolFlags) { 3507 3508 LLVM_DEBUG({ 3509 dbgs() << "In " << MR.JD.getName() << " defining materializing symbols " 3510 << NewSymbolFlags << "\n"; 3511 }); 3512 if (auto AcceptedDefs = 3513 MR.JD.defineMaterializing(MR, std::move(NewSymbolFlags))) { 3514 // Add all newly accepted symbols to this responsibility object. 3515 for (auto &KV : *AcceptedDefs) 3516 MR.SymbolFlags.insert(KV); 3517 return Error::success(); 3518 } else 3519 return AcceptedDefs.takeError(); 3520 } 3521 3522 std::pair<JITDylib::AsynchronousSymbolQuerySet, 3523 std::shared_ptr<SymbolDependenceMap>> 3524 ExecutionSession::IL_failSymbols(JITDylib &JD, 3525 const SymbolNameVector &SymbolsToFail) { 3526 3527 #ifdef EXPENSIVE_CHECKS 3528 verifySessionState("entering ExecutionSession::IL_failSymbols"); 3529 #endif 3530 3531 JITDylib::AsynchronousSymbolQuerySet FailedQueries; 3532 auto FailedSymbolsMap = std::make_shared<SymbolDependenceMap>(); 3533 auto ExtractFailedQueries = [&](JITDylib::MaterializingInfo &MI) { 3534 JITDylib::AsynchronousSymbolQueryList ToDetach; 3535 for (auto &Q : MI.pendingQueries()) { 3536 // Add the query to the list to be failed and detach it. 3537 FailedQueries.insert(Q); 3538 ToDetach.push_back(Q); 3539 } 3540 for (auto &Q : ToDetach) 3541 Q->detach(); 3542 assert(!MI.hasQueriesPending() && "Queries still pending after detach"); 3543 }; 3544 3545 for (auto &Name : SymbolsToFail) { 3546 (*FailedSymbolsMap)[&JD].insert(Name); 3547 3548 // Look up the symbol to fail. 3549 auto SymI = JD.Symbols.find(Name); 3550 3551 // FIXME: Revisit this. We should be able to assert sequencing between 3552 // ResourceTracker removal and symbol failure. 3553 // 3554 // It's possible that this symbol has already been removed, e.g. if a 3555 // materialization failure happens concurrently with a ResourceTracker or 3556 // JITDylib removal. In that case we can safely skip this symbol and 3557 // continue. 3558 if (SymI == JD.Symbols.end()) 3559 continue; 3560 auto &Sym = SymI->second; 3561 3562 // If the symbol is already in the error state then we must have visited 3563 // it earlier. 3564 if (Sym.getFlags().hasError()) { 3565 assert(!JD.MaterializingInfos.count(Name) && 3566 "Symbol in error state still has MaterializingInfo"); 3567 continue; 3568 } 3569 3570 // Move the symbol into the error state. 3571 Sym.setFlags(Sym.getFlags() | JITSymbolFlags::HasError); 3572 3573 // FIXME: Come up with a sane mapping of state to 3574 // presence-of-MaterializingInfo so that we can assert presence / absence 3575 // here, rather than testing it. 3576 auto MII = JD.MaterializingInfos.find(Name); 3577 if (MII == JD.MaterializingInfos.end()) 3578 continue; 3579 3580 auto &MI = MII->second; 3581 3582 // Collect queries to be failed for this MII. 3583 ExtractFailedQueries(MI); 3584 3585 if (MI.DefiningEDU) { 3586 // If there is a DefiningEDU for this symbol then remove this 3587 // symbol from it. 3588 assert(MI.DependantEDUs.empty() && 3589 "Symbol with DefiningEDU should not have DependantEDUs"); 3590 assert(Sym.getState() >= SymbolState::Emitted && 3591 "Symbol has EDU, should have been emitted"); 3592 assert(MI.DefiningEDU->Symbols.count(NonOwningSymbolStringPtr(Name)) && 3593 "Symbol does not appear in its DefiningEDU"); 3594 MI.DefiningEDU->Symbols.erase(NonOwningSymbolStringPtr(Name)); 3595 3596 // Remove this EDU from the dependants lists of its dependencies. 3597 for (auto &[DepJD, DepSyms] : MI.DefiningEDU->Dependencies) { 3598 for (auto DepSym : DepSyms) { 3599 assert(DepJD->Symbols.count(SymbolStringPtr(DepSym)) && 3600 "DepSym not in DepJD"); 3601 assert(DepJD->MaterializingInfos.count(SymbolStringPtr(DepSym)) && 3602 "DepSym has not MaterializingInfo"); 3603 auto &SymMI = DepJD->MaterializingInfos[SymbolStringPtr(DepSym)]; 3604 assert(SymMI.DependantEDUs.count(MI.DefiningEDU.get()) && 3605 "DefiningEDU missing from DependantEDUs list of dependency"); 3606 SymMI.DependantEDUs.erase(MI.DefiningEDU.get()); 3607 } 3608 } 3609 3610 MI.DefiningEDU = nullptr; 3611 } else { 3612 // Otherwise if there are any EDUs waiting on this symbol then move 3613 // those symbols to the error state too, and deregister them from the 3614 // symbols that they depend on. 3615 // Note: We use a copy of DependantEDUs here since we'll be removing 3616 // from the original set as we go. 3617 for (auto &DependantEDU : MI.DependantEDUs) { 3618 3619 // Remove DependantEDU from all of its users DependantEDUs lists. 3620 for (auto &[DepJD, DepSyms] : DependantEDU->Dependencies) { 3621 for (auto DepSym : DepSyms) { 3622 // Skip self-reference to avoid invalidating the MI.DependantEDUs 3623 // map. We'll clear this later. 3624 if (DepJD == &JD && DepSym == Name) 3625 continue; 3626 assert(DepJD->Symbols.count(SymbolStringPtr(DepSym)) && 3627 "DepSym not in DepJD?"); 3628 assert(DepJD->MaterializingInfos.count(SymbolStringPtr(DepSym)) && 3629 "DependantEDU not registered with symbol it depends on"); 3630 auto &SymMI = DepJD->MaterializingInfos[SymbolStringPtr(DepSym)]; 3631 assert(SymMI.DependantEDUs.count(DependantEDU) && 3632 "DependantEDU missing from DependantEDUs list"); 3633 SymMI.DependantEDUs.erase(DependantEDU); 3634 } 3635 } 3636 3637 // Move any symbols defined by DependantEDU into the error state and 3638 // fail any queries waiting on them. 3639 auto &DepJD = *DependantEDU->JD; 3640 auto DepEDUSymbols = std::move(DependantEDU->Symbols); 3641 for (auto &[DepName, Flags] : DepEDUSymbols) { 3642 auto DepSymItr = DepJD.Symbols.find(SymbolStringPtr(DepName)); 3643 assert(DepSymItr != DepJD.Symbols.end() && 3644 "Symbol not present in table"); 3645 auto &DepSym = DepSymItr->second; 3646 3647 assert(DepSym.getState() >= SymbolState::Emitted && 3648 "Symbol has EDU, should have been emitted"); 3649 assert(!DepSym.getFlags().hasError() && 3650 "Symbol is already in the error state?"); 3651 DepSym.setFlags(DepSym.getFlags() | JITSymbolFlags::HasError); 3652 (*FailedSymbolsMap)[&DepJD].insert(SymbolStringPtr(DepName)); 3653 3654 // This symbol has a defining EDU so its MaterializingInfo object must 3655 // exist. 3656 auto DepMIItr = 3657 DepJD.MaterializingInfos.find(SymbolStringPtr(DepName)); 3658 assert(DepMIItr != DepJD.MaterializingInfos.end() && 3659 "Symbol has defining EDU but not MaterializingInfo"); 3660 auto &DepMI = DepMIItr->second; 3661 assert(DepMI.DefiningEDU.get() == DependantEDU && 3662 "Bad EDU dependence edge"); 3663 assert(DepMI.DependantEDUs.empty() && 3664 "Symbol was emitted, should not have any DependantEDUs"); 3665 ExtractFailedQueries(DepMI); 3666 DepJD.MaterializingInfos.erase(SymbolStringPtr(DepName)); 3667 } 3668 3669 DepJD.shrinkMaterializationInfoMemory(); 3670 } 3671 3672 MI.DependantEDUs.clear(); 3673 } 3674 3675 assert(!MI.DefiningEDU && "DefiningEDU should have been reset"); 3676 assert(MI.DependantEDUs.empty() && 3677 "DependantEDUs should have been removed above"); 3678 assert(!MI.hasQueriesPending() && 3679 "Can not delete MaterializingInfo with queries pending"); 3680 JD.MaterializingInfos.erase(Name); 3681 } 3682 3683 JD.shrinkMaterializationInfoMemory(); 3684 3685 #ifdef EXPENSIVE_CHECKS 3686 verifySessionState("exiting ExecutionSession::IL_failSymbols"); 3687 #endif 3688 3689 return std::make_pair(std::move(FailedQueries), std::move(FailedSymbolsMap)); 3690 } 3691 3692 void ExecutionSession::OL_notifyFailed(MaterializationResponsibility &MR) { 3693 3694 LLVM_DEBUG({ 3695 dbgs() << "In " << MR.JD.getName() << " failing materialization for " 3696 << MR.SymbolFlags << "\n"; 3697 }); 3698 3699 if (MR.SymbolFlags.empty()) 3700 return; 3701 3702 SymbolNameVector SymbolsToFail; 3703 for (auto &[Name, Flags] : MR.SymbolFlags) 3704 SymbolsToFail.push_back(Name); 3705 MR.SymbolFlags.clear(); 3706 3707 JITDylib::AsynchronousSymbolQuerySet FailedQueries; 3708 std::shared_ptr<SymbolDependenceMap> FailedSymbols; 3709 3710 std::tie(FailedQueries, FailedSymbols) = runSessionLocked([&]() { 3711 // If the tracker is defunct then there's nothing to do here. 3712 if (MR.RT->isDefunct()) 3713 return std::pair<JITDylib::AsynchronousSymbolQuerySet, 3714 std::shared_ptr<SymbolDependenceMap>>(); 3715 return IL_failSymbols(MR.getTargetJITDylib(), SymbolsToFail); 3716 }); 3717 3718 for (auto &Q : FailedQueries) 3719 Q->handleFailed( 3720 make_error<FailedToMaterialize>(getSymbolStringPool(), FailedSymbols)); 3721 } 3722 3723 Error ExecutionSession::OL_replace(MaterializationResponsibility &MR, 3724 std::unique_ptr<MaterializationUnit> MU) { 3725 for (auto &KV : MU->getSymbols()) { 3726 assert(MR.SymbolFlags.count(KV.first) && 3727 "Replacing definition outside this responsibility set"); 3728 MR.SymbolFlags.erase(KV.first); 3729 } 3730 3731 if (MU->getInitializerSymbol() == MR.InitSymbol) 3732 MR.InitSymbol = nullptr; 3733 3734 LLVM_DEBUG(MR.JD.getExecutionSession().runSessionLocked([&]() { 3735 dbgs() << "In " << MR.JD.getName() << " replacing symbols with " << *MU 3736 << "\n"; 3737 });); 3738 3739 return MR.JD.replace(MR, std::move(MU)); 3740 } 3741 3742 Expected<std::unique_ptr<MaterializationResponsibility>> 3743 ExecutionSession::OL_delegate(MaterializationResponsibility &MR, 3744 const SymbolNameSet &Symbols) { 3745 3746 SymbolStringPtr DelegatedInitSymbol; 3747 SymbolFlagsMap DelegatedFlags; 3748 3749 for (auto &Name : Symbols) { 3750 auto I = MR.SymbolFlags.find(Name); 3751 assert(I != MR.SymbolFlags.end() && 3752 "Symbol is not tracked by this MaterializationResponsibility " 3753 "instance"); 3754 3755 DelegatedFlags[Name] = std::move(I->second); 3756 if (Name == MR.InitSymbol) 3757 std::swap(MR.InitSymbol, DelegatedInitSymbol); 3758 3759 MR.SymbolFlags.erase(I); 3760 } 3761 3762 return MR.JD.delegate(MR, std::move(DelegatedFlags), 3763 std::move(DelegatedInitSymbol)); 3764 } 3765 3766 #ifndef NDEBUG 3767 void ExecutionSession::dumpDispatchInfo(Task &T) { 3768 runSessionLocked([&]() { 3769 dbgs() << "Dispatching: "; 3770 T.printDescription(dbgs()); 3771 dbgs() << "\n"; 3772 }); 3773 } 3774 #endif // NDEBUG 3775 3776 } // End namespace orc. 3777 } // End namespace llvm. 3778