Core.cpp 45 KB

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  1. //===----- Core.cpp - Core ORC APIs (MaterializationUnit, VSO, etc.) ------===//
  2. //
  3. // The LLVM Compiler Infrastructure
  4. //
  5. // This file is distributed under the University of Illinois Open Source
  6. // License. See LICENSE.TXT for details.
  7. //
  8. //===----------------------------------------------------------------------===//
  9. #include "llvm/ExecutionEngine/Orc/Core.h"
  10. #include "llvm/Config/llvm-config.h"
  11. #include "llvm/ExecutionEngine/Orc/OrcError.h"
  12. #include "llvm/IR/Mangler.h"
  13. #include "llvm/Support/Format.h"
  14. #if LLVM_ENABLE_THREADS
  15. #include <future>
  16. #endif
  17. namespace llvm {
  18. namespace orc {
  19. char FailedToMaterialize::ID = 0;
  20. char SymbolsNotFound::ID = 0;
  21. void MaterializationUnit::anchor() {}
  22. raw_ostream &operator<<(raw_ostream &OS, const JITSymbolFlags &Flags) {
  23. if (Flags.isWeak())
  24. OS << 'W';
  25. else if (Flags.isCommon())
  26. OS << 'C';
  27. else
  28. OS << 'S';
  29. if (Flags.isExported())
  30. OS << 'E';
  31. else
  32. OS << 'H';
  33. return OS;
  34. }
  35. raw_ostream &operator<<(raw_ostream &OS, const JITEvaluatedSymbol &Sym) {
  36. OS << format("0x%016x", Sym.getAddress()) << " " << Sym.getFlags();
  37. return OS;
  38. }
  39. raw_ostream &operator<<(raw_ostream &OS, const SymbolMap::value_type &KV) {
  40. OS << "\"" << *KV.first << "\": " << KV.second;
  41. return OS;
  42. }
  43. raw_ostream &operator<<(raw_ostream &OS, const SymbolNameSet &Symbols) {
  44. OS << "{";
  45. if (!Symbols.empty()) {
  46. OS << " \"" << **Symbols.begin() << "\"";
  47. for (auto &Sym : make_range(std::next(Symbols.begin()), Symbols.end()))
  48. OS << ", \"" << *Sym << "\"";
  49. }
  50. OS << " }";
  51. return OS;
  52. }
  53. raw_ostream &operator<<(raw_ostream &OS, const SymbolMap &Symbols) {
  54. OS << "{";
  55. if (!Symbols.empty()) {
  56. OS << " {" << *Symbols.begin() << "}";
  57. for (auto &Sym : make_range(std::next(Symbols.begin()), Symbols.end()))
  58. OS << ", {" << Sym << "}";
  59. }
  60. OS << " }";
  61. return OS;
  62. }
  63. raw_ostream &operator<<(raw_ostream &OS, const SymbolFlagsMap &SymbolFlags) {
  64. OS << "{";
  65. if (!SymbolFlags.empty()) {
  66. OS << " {\"" << *SymbolFlags.begin()->first
  67. << "\": " << SymbolFlags.begin()->second << "}";
  68. for (auto &KV :
  69. make_range(std::next(SymbolFlags.begin()), SymbolFlags.end()))
  70. OS << ", {\"" << *KV.first << "\": " << KV.second << "}";
  71. }
  72. OS << " }";
  73. return OS;
  74. }
  75. raw_ostream &operator<<(raw_ostream &OS, const SymbolDependenceMap &Deps) {
  76. OS << "{";
  77. if (!Deps.empty()) {
  78. OS << " { " << Deps.begin()->first->getName() << ": "
  79. << Deps.begin()->second << " }";
  80. for (auto &KV : make_range(std::next(Deps.begin()), Deps.end()))
  81. OS << ", { " << KV.first->getName() << ": " << KV.second << " }";
  82. }
  83. OS << " }";
  84. return OS;
  85. }
  86. raw_ostream &operator<<(raw_ostream &OS, const VSOList &VSOs) {
  87. OS << "[";
  88. if (!VSOs.empty()) {
  89. assert(VSOs.front() && "VSOList entries must not be null");
  90. OS << " " << VSOs.front()->getName();
  91. for (auto *V : make_range(std::next(VSOs.begin()), VSOs.end())) {
  92. assert(V && "VSOList entries must not be null");
  93. OS << ", " << V->getName();
  94. }
  95. }
  96. OS << " ]";
  97. return OS;
  98. }
  99. FailedToMaterialize::FailedToMaterialize(SymbolNameSet Symbols)
  100. : Symbols(std::move(Symbols)) {
  101. assert(!this->Symbols.empty() && "Can not fail to resolve an empty set");
  102. }
  103. std::error_code FailedToMaterialize::convertToErrorCode() const {
  104. return orcError(OrcErrorCode::UnknownORCError);
  105. }
  106. void FailedToMaterialize::log(raw_ostream &OS) const {
  107. OS << "Failed to materialize symbols: " << Symbols;
  108. }
  109. SymbolsNotFound::SymbolsNotFound(SymbolNameSet Symbols)
  110. : Symbols(std::move(Symbols)) {
  111. assert(!this->Symbols.empty() && "Can not fail to resolve an empty set");
  112. }
  113. std::error_code SymbolsNotFound::convertToErrorCode() const {
  114. return orcError(OrcErrorCode::UnknownORCError);
  115. }
  116. void SymbolsNotFound::log(raw_ostream &OS) const {
  117. OS << "Symbols not found: " << Symbols;
  118. }
  119. void ExecutionSessionBase::failQuery(AsynchronousSymbolQuery &Q, Error Err) {
  120. bool DeliveredError = true;
  121. runSessionLocked([&]() -> void {
  122. Q.detach();
  123. if (Q.canStillFail())
  124. Q.handleFailed(std::move(Err));
  125. else
  126. DeliveredError = false;
  127. });
  128. if (!DeliveredError)
  129. reportError(std::move(Err));
  130. }
  131. AsynchronousSymbolQuery::AsynchronousSymbolQuery(
  132. const SymbolNameSet &Symbols, SymbolsResolvedCallback NotifySymbolsResolved,
  133. SymbolsReadyCallback NotifySymbolsReady)
  134. : NotifySymbolsResolved(std::move(NotifySymbolsResolved)),
  135. NotifySymbolsReady(std::move(NotifySymbolsReady)) {
  136. NotYetResolvedCount = NotYetReadyCount = Symbols.size();
  137. for (auto &S : Symbols)
  138. ResolvedSymbols[S] = nullptr;
  139. // If the query is empty it is trivially resolved/ready.
  140. if (Symbols.empty()) {
  141. handleFullyResolved();
  142. handleFullyReady();
  143. }
  144. }
  145. void AsynchronousSymbolQuery::resolve(const SymbolStringPtr &Name,
  146. JITEvaluatedSymbol Sym) {
  147. auto I = ResolvedSymbols.find(Name);
  148. assert(I != ResolvedSymbols.end() &&
  149. "Resolving symbol outside the requested set");
  150. assert(I->second.getAddress() == 0 && "Redundantly resolving symbol Name");
  151. I->second = std::move(Sym);
  152. --NotYetResolvedCount;
  153. }
  154. void AsynchronousSymbolQuery::handleFullyResolved() {
  155. assert(NotYetResolvedCount == 0 && "Not fully resolved?");
  156. assert(NotifySymbolsResolved &&
  157. "NotifySymbolsResolved already called or error occurred");
  158. NotifySymbolsResolved(
  159. ResolutionResult(std::move(ResolvedSymbols), QueryRegistrations));
  160. NotifySymbolsResolved = SymbolsResolvedCallback();
  161. }
  162. void AsynchronousSymbolQuery::notifySymbolReady() {
  163. assert(NotYetReadyCount != 0 && "All symbols already finalized");
  164. --NotYetReadyCount;
  165. }
  166. void AsynchronousSymbolQuery::handleFullyReady() {
  167. assert(QueryRegistrations.empty() &&
  168. "Query is still registered with some symbols");
  169. assert(!NotifySymbolsResolved && "Resolution not applied yet");
  170. NotifySymbolsReady(Error::success());
  171. NotifySymbolsReady = SymbolsReadyCallback();
  172. }
  173. bool AsynchronousSymbolQuery::canStillFail() {
  174. return (NotifySymbolsResolved || NotifySymbolsReady);
  175. }
  176. void AsynchronousSymbolQuery::handleFailed(Error Err) {
  177. assert(QueryRegistrations.empty() && ResolvedSymbols.empty() &&
  178. NotYetResolvedCount == 0 && NotYetReadyCount == 0 &&
  179. "Query should already have been abandoned");
  180. if (NotifySymbolsResolved) {
  181. NotifySymbolsResolved(std::move(Err));
  182. NotifySymbolsResolved = SymbolsResolvedCallback();
  183. } else {
  184. assert(NotifySymbolsReady && "Failed after both callbacks issued?");
  185. NotifySymbolsReady(std::move(Err));
  186. }
  187. NotifySymbolsReady = SymbolsReadyCallback();
  188. }
  189. void AsynchronousSymbolQuery::addQueryDependence(VSO &V, SymbolStringPtr Name) {
  190. bool Added = QueryRegistrations[&V].insert(std::move(Name)).second;
  191. (void)Added;
  192. assert(Added && "Duplicate dependence notification?");
  193. }
  194. void AsynchronousSymbolQuery::removeQueryDependence(
  195. VSO &V, const SymbolStringPtr &Name) {
  196. auto QRI = QueryRegistrations.find(&V);
  197. assert(QRI != QueryRegistrations.end() && "No dependencies registered for V");
  198. assert(QRI->second.count(Name) && "No dependency on Name in V");
  199. QRI->second.erase(Name);
  200. if (QRI->second.empty())
  201. QueryRegistrations.erase(QRI);
  202. }
  203. void AsynchronousSymbolQuery::detach() {
  204. ResolvedSymbols.clear();
  205. NotYetResolvedCount = 0;
  206. NotYetReadyCount = 0;
  207. for (auto &KV : QueryRegistrations)
  208. KV.first->detachQueryHelper(*this, KV.second);
  209. QueryRegistrations.clear();
  210. }
  211. MaterializationResponsibility::MaterializationResponsibility(
  212. VSO &V, SymbolFlagsMap SymbolFlags)
  213. : V(V), SymbolFlags(std::move(SymbolFlags)) {
  214. assert(!this->SymbolFlags.empty() && "Materializing nothing?");
  215. #ifndef NDEBUG
  216. for (auto &KV : this->SymbolFlags)
  217. KV.second |= JITSymbolFlags::Materializing;
  218. #endif
  219. }
  220. MaterializationResponsibility::~MaterializationResponsibility() {
  221. assert(SymbolFlags.empty() &&
  222. "All symbols should have been explicitly materialized or failed");
  223. }
  224. SymbolNameSet MaterializationResponsibility::getRequestedSymbols() {
  225. return V.getRequestedSymbols(SymbolFlags);
  226. }
  227. void MaterializationResponsibility::resolve(const SymbolMap &Symbols) {
  228. #ifndef NDEBUG
  229. for (auto &KV : Symbols) {
  230. auto I = SymbolFlags.find(KV.first);
  231. assert(I != SymbolFlags.end() &&
  232. "Resolving symbol outside this responsibility set");
  233. assert(I->second.isMaterializing() && "Duplicate resolution");
  234. I->second &= ~JITSymbolFlags::Materializing;
  235. if (I->second.isWeak())
  236. assert(I->second == (KV.second.getFlags() | JITSymbolFlags::Weak) &&
  237. "Resolving symbol with incorrect flags");
  238. else
  239. assert(I->second == KV.second.getFlags() &&
  240. "Resolving symbol with incorrect flags");
  241. }
  242. #endif
  243. V.resolve(Symbols);
  244. }
  245. void MaterializationResponsibility::finalize() {
  246. #ifndef NDEBUG
  247. for (auto &KV : SymbolFlags)
  248. assert(!KV.second.isMaterializing() &&
  249. "Failed to resolve symbol before finalization");
  250. #endif // NDEBUG
  251. V.finalize(SymbolFlags);
  252. SymbolFlags.clear();
  253. }
  254. Error MaterializationResponsibility::defineMaterializing(
  255. const SymbolFlagsMap &NewSymbolFlags) {
  256. // Add the given symbols to this responsibility object.
  257. // It's ok if we hit a duplicate here: In that case the new version will be
  258. // discarded, and the VSO::defineMaterializing method will return a duplicate
  259. // symbol error.
  260. for (auto &KV : NewSymbolFlags) {
  261. auto I = SymbolFlags.insert(KV).first;
  262. (void)I;
  263. #ifndef NDEBUG
  264. I->second |= JITSymbolFlags::Materializing;
  265. #endif
  266. }
  267. return V.defineMaterializing(NewSymbolFlags);
  268. }
  269. void MaterializationResponsibility::failMaterialization() {
  270. SymbolNameSet FailedSymbols;
  271. for (auto &KV : SymbolFlags)
  272. FailedSymbols.insert(KV.first);
  273. V.notifyFailed(FailedSymbols);
  274. SymbolFlags.clear();
  275. }
  276. void MaterializationResponsibility::replace(
  277. std::unique_ptr<MaterializationUnit> MU) {
  278. for (auto &KV : MU->getSymbols())
  279. SymbolFlags.erase(KV.first);
  280. V.replace(std::move(MU));
  281. }
  282. MaterializationResponsibility
  283. MaterializationResponsibility::delegate(const SymbolNameSet &Symbols) {
  284. SymbolFlagsMap DelegatedFlags;
  285. for (auto &Name : Symbols) {
  286. auto I = SymbolFlags.find(Name);
  287. assert(I != SymbolFlags.end() &&
  288. "Symbol is not tracked by this MaterializationResponsibility "
  289. "instance");
  290. DelegatedFlags[Name] = std::move(I->second);
  291. SymbolFlags.erase(I);
  292. }
  293. return MaterializationResponsibility(V, std::move(DelegatedFlags));
  294. }
  295. void MaterializationResponsibility::addDependencies(
  296. const SymbolDependenceMap &Dependencies) {
  297. V.addDependencies(SymbolFlags, Dependencies);
  298. }
  299. AbsoluteSymbolsMaterializationUnit::AbsoluteSymbolsMaterializationUnit(
  300. SymbolMap Symbols)
  301. : MaterializationUnit(extractFlags(Symbols)), Symbols(std::move(Symbols)) {}
  302. void AbsoluteSymbolsMaterializationUnit::materialize(
  303. MaterializationResponsibility R) {
  304. R.resolve(Symbols);
  305. R.finalize();
  306. }
  307. void AbsoluteSymbolsMaterializationUnit::discard(const VSO &V,
  308. SymbolStringPtr Name) {
  309. assert(Symbols.count(Name) && "Symbol is not part of this MU");
  310. Symbols.erase(Name);
  311. }
  312. SymbolFlagsMap
  313. AbsoluteSymbolsMaterializationUnit::extractFlags(const SymbolMap &Symbols) {
  314. SymbolFlagsMap Flags;
  315. for (const auto &KV : Symbols)
  316. Flags[KV.first] = KV.second.getFlags();
  317. return Flags;
  318. }
  319. ReExportsMaterializationUnit::ReExportsMaterializationUnit(
  320. VSO *SourceVSO, SymbolAliasMap Aliases)
  321. : MaterializationUnit(extractFlags(Aliases)), SourceVSO(SourceVSO),
  322. Aliases(std::move(Aliases)) {}
  323. void ReExportsMaterializationUnit::materialize(
  324. MaterializationResponsibility R) {
  325. VSO &SrcV = SourceVSO ? *SourceVSO : R.getTargetVSO();
  326. auto &ES = SrcV.getExecutionSession();
  327. // Find the set of requested aliases and aliasees. Return any unrequested
  328. // aliases back to the VSO so as to not prematurely materialize any aliasees.
  329. auto RequestedSymbols = R.getRequestedSymbols();
  330. SymbolAliasMap RequestedAliases;
  331. for (auto &Name : RequestedSymbols) {
  332. auto I = Aliases.find(Name);
  333. assert(I != Aliases.end() && "Symbol not found in aliases map?");
  334. RequestedAliases[Name] = std::move(I->second);
  335. Aliases.erase(I);
  336. }
  337. if (!Aliases.empty()) {
  338. if (SourceVSO)
  339. R.replace(reexports(*SourceVSO, std::move(Aliases)));
  340. else
  341. R.replace(symbolAliases(std::move(Aliases)));
  342. }
  343. // The OnResolveInfo struct will hold the aliases and responsibilty for each
  344. // query in the list.
  345. struct OnResolveInfo {
  346. OnResolveInfo(MaterializationResponsibility R, SymbolAliasMap Aliases)
  347. : R(std::move(R)), Aliases(std::move(Aliases)) {}
  348. MaterializationResponsibility R;
  349. SymbolAliasMap Aliases;
  350. };
  351. // Build a list of queries to issue. In each round we build the largest set of
  352. // aliases that we can resolve without encountering a chain definition of the
  353. // form Foo -> Bar, Bar -> Baz. Such a form would deadlock as the query would
  354. // be waitin on a symbol that it itself had to resolve. Usually this will just
  355. // involve one round and a single query.
  356. std::vector<std::pair<SymbolNameSet, std::shared_ptr<OnResolveInfo>>>
  357. QueryInfos;
  358. while (!RequestedAliases.empty()) {
  359. SymbolNameSet ResponsibilitySymbols;
  360. SymbolNameSet QuerySymbols;
  361. SymbolAliasMap QueryAliases;
  362. for (auto I = RequestedAliases.begin(), E = RequestedAliases.end();
  363. I != E;) {
  364. auto Tmp = I++;
  365. // Chain detected. Skip this symbol for this round.
  366. if (&SrcV == &R.getTargetVSO() &&
  367. (QueryAliases.count(Tmp->second.Aliasee) ||
  368. RequestedAliases.count(Tmp->second.Aliasee)))
  369. continue;
  370. ResponsibilitySymbols.insert(Tmp->first);
  371. QuerySymbols.insert(Tmp->second.Aliasee);
  372. QueryAliases[Tmp->first] = std::move(Tmp->second);
  373. RequestedAliases.erase(Tmp);
  374. }
  375. assert(!QuerySymbols.empty() && "Alias cycle detected!");
  376. auto QueryInfo = std::make_shared<OnResolveInfo>(
  377. R.delegate(ResponsibilitySymbols), std::move(QueryAliases));
  378. QueryInfos.push_back(
  379. make_pair(std::move(QuerySymbols), std::move(QueryInfo)));
  380. }
  381. // Issue the queries.
  382. while (!QueryInfos.empty()) {
  383. auto QuerySymbols = std::move(QueryInfos.back().first);
  384. auto QueryInfo = std::move(QueryInfos.back().second);
  385. QueryInfos.pop_back();
  386. auto OnResolve =
  387. [QueryInfo,
  388. &SrcV](Expected<AsynchronousSymbolQuery::ResolutionResult> RR) {
  389. if (RR) {
  390. SymbolMap ResolutionMap;
  391. SymbolNameSet Resolved;
  392. for (auto &KV : QueryInfo->Aliases) {
  393. assert(RR->Symbols.count(KV.second.Aliasee) &&
  394. "Result map missing entry?");
  395. ResolutionMap[KV.first] = JITEvaluatedSymbol(
  396. RR->Symbols[KV.second.Aliasee].getAddress(),
  397. KV.second.AliasFlags);
  398. // FIXME: We're creating a SymbolFlagsMap and a std::map of
  399. // std::sets just to add one dependency here. This needs a
  400. // re-think.
  401. Resolved.insert(KV.first);
  402. }
  403. QueryInfo->R.resolve(ResolutionMap);
  404. SymbolDependenceMap Deps;
  405. Deps[&SrcV] = std::move(Resolved);
  406. QueryInfo->R.addDependencies(Deps);
  407. QueryInfo->R.finalize();
  408. } else {
  409. auto &ES = QueryInfo->R.getTargetVSO().getExecutionSession();
  410. ES.reportError(RR.takeError());
  411. QueryInfo->R.failMaterialization();
  412. }
  413. };
  414. auto OnReady = [&ES](Error Err) { ES.reportError(std::move(Err)); };
  415. auto Q = std::make_shared<AsynchronousSymbolQuery>(
  416. QuerySymbols, std::move(OnResolve), std::move(OnReady));
  417. auto Unresolved = SrcV.lookup(Q, std::move(QuerySymbols));
  418. if (!Unresolved.empty()) {
  419. ES.failQuery(*Q, make_error<SymbolsNotFound>(std::move(Unresolved)));
  420. return;
  421. }
  422. }
  423. }
  424. void ReExportsMaterializationUnit::discard(const VSO &V, SymbolStringPtr Name) {
  425. assert(Aliases.count(Name) &&
  426. "Symbol not covered by this MaterializationUnit");
  427. Aliases.erase(Name);
  428. }
  429. SymbolFlagsMap
  430. ReExportsMaterializationUnit::extractFlags(const SymbolAliasMap &Aliases) {
  431. SymbolFlagsMap SymbolFlags;
  432. for (auto &KV : Aliases)
  433. SymbolFlags[KV.first] = KV.second.AliasFlags;
  434. return SymbolFlags;
  435. }
  436. Expected<SymbolAliasMap>
  437. buildSimpleReexportsAliasMap(VSO &SourceV, const SymbolNameSet &Symbols) {
  438. auto Flags = SourceV.lookupFlags(Symbols);
  439. if (Flags.size() != Symbols.size()) {
  440. SymbolNameSet Unresolved = Symbols;
  441. for (auto &KV : Flags)
  442. Unresolved.erase(KV.first);
  443. return make_error<SymbolsNotFound>(std::move(Unresolved));
  444. }
  445. SymbolAliasMap Result;
  446. for (auto &Name : Symbols) {
  447. assert(Flags.count(Name) && "Missing entry in flags map");
  448. Result[Name] = SymbolAliasMapEntry(Name, Flags[Name]);
  449. }
  450. return Result;
  451. }
  452. Error VSO::defineMaterializing(const SymbolFlagsMap &SymbolFlags) {
  453. return ES.runSessionLocked([&]() -> Error {
  454. std::vector<SymbolMap::iterator> AddedSyms;
  455. for (auto &KV : SymbolFlags) {
  456. SymbolMap::iterator EntryItr;
  457. bool Added;
  458. auto NewFlags = KV.second;
  459. NewFlags |= JITSymbolFlags::Materializing;
  460. std::tie(EntryItr, Added) = Symbols.insert(
  461. std::make_pair(KV.first, JITEvaluatedSymbol(0, NewFlags)));
  462. if (Added)
  463. AddedSyms.push_back(EntryItr);
  464. else {
  465. // Remove any symbols already added.
  466. for (auto &SI : AddedSyms)
  467. Symbols.erase(SI);
  468. // FIXME: Return all duplicates.
  469. return make_error<DuplicateDefinition>(*KV.first);
  470. }
  471. }
  472. return Error::success();
  473. });
  474. }
  475. void VSO::replace(std::unique_ptr<MaterializationUnit> MU) {
  476. assert(MU != nullptr && "Can not replace with a null MaterializationUnit");
  477. auto MustRunMU =
  478. ES.runSessionLocked([&, this]() -> std::unique_ptr<MaterializationUnit> {
  479. #ifndef NDEBUG
  480. for (auto &KV : MU->getSymbols()) {
  481. auto SymI = Symbols.find(KV.first);
  482. assert(SymI != Symbols.end() && "Replacing unknown symbol");
  483. assert(!SymI->second.getFlags().isLazy() &&
  484. SymI->second.getFlags().isMaterializing() &&
  485. "Can not replace symbol that is not materializing");
  486. assert(UnmaterializedInfos.count(KV.first) == 0 &&
  487. "Symbol being replaced should have no UnmaterializedInfo");
  488. }
  489. #endif // NDEBUG
  490. // If any symbol has pending queries against it then we need to
  491. // materialize MU immediately.
  492. for (auto &KV : MU->getSymbols()) {
  493. auto MII = MaterializingInfos.find(KV.first);
  494. if (MII != MaterializingInfos.end()) {
  495. if (!MII->second.PendingQueries.empty())
  496. return std::move(MU);
  497. }
  498. }
  499. // Otherwise, make MU responsible for all the symbols.
  500. auto UMI = std::make_shared<UnmaterializedInfo>(std::move(MU));
  501. for (auto &KV : UMI->MU->getSymbols()) {
  502. assert(!KV.second.isLazy() &&
  503. "Lazy flag should be managed internally.");
  504. assert(!KV.second.isMaterializing() &&
  505. "Materializing flags should be managed internally.");
  506. auto SymI = Symbols.find(KV.first);
  507. JITSymbolFlags ReplaceFlags = KV.second;
  508. ReplaceFlags |= JITSymbolFlags::Lazy;
  509. SymI->second = JITEvaluatedSymbol(SymI->second.getAddress(),
  510. std::move(ReplaceFlags));
  511. UnmaterializedInfos[KV.first] = UMI;
  512. }
  513. return nullptr;
  514. });
  515. if (MustRunMU)
  516. ES.dispatchMaterialization(*this, std::move(MustRunMU));
  517. }
  518. SymbolNameSet VSO::getRequestedSymbols(const SymbolFlagsMap &SymbolFlags) {
  519. return ES.runSessionLocked([&]() {
  520. SymbolNameSet RequestedSymbols;
  521. for (auto &KV : SymbolFlags) {
  522. assert(Symbols.count(KV.first) && "VSO does not cover this symbol?");
  523. assert(Symbols[KV.first].getFlags().isMaterializing() &&
  524. "getRequestedSymbols can only be called for materializing "
  525. "symbols");
  526. auto I = MaterializingInfos.find(KV.first);
  527. if (I == MaterializingInfos.end())
  528. continue;
  529. if (!I->second.PendingQueries.empty())
  530. RequestedSymbols.insert(KV.first);
  531. }
  532. return RequestedSymbols;
  533. });
  534. }
  535. void VSO::addDependencies(const SymbolFlagsMap &Dependants,
  536. const SymbolDependenceMap &Dependencies) {
  537. ES.runSessionLocked([&, this]() {
  538. for (auto &KV : Dependants) {
  539. const auto &Name = KV.first;
  540. assert(Symbols.count(Name) && "Name not in symbol table");
  541. assert((Symbols[Name].getFlags().isLazy() ||
  542. Symbols[Name].getFlags().isMaterializing()) &&
  543. "Symbol is not lazy or materializing");
  544. auto &MI = MaterializingInfos[Name];
  545. assert(!MI.IsFinalized && "Can not add dependencies to finalized symbol");
  546. for (auto &KV : Dependencies) {
  547. assert(KV.first && "Null VSO in dependency?");
  548. auto &OtherVSO = *KV.first;
  549. auto &DepsOnOtherVSO = MI.UnfinalizedDependencies[&OtherVSO];
  550. for (auto &OtherSymbol : KV.second) {
  551. auto &OtherMI = OtherVSO.MaterializingInfos[OtherSymbol];
  552. if (OtherMI.IsFinalized)
  553. transferFinalizedNodeDependencies(MI, Name, OtherMI);
  554. else if (&OtherVSO != this || OtherSymbol != Name) {
  555. OtherMI.Dependants[this].insert(Name);
  556. DepsOnOtherVSO.insert(OtherSymbol);
  557. }
  558. }
  559. if (DepsOnOtherVSO.empty())
  560. MI.UnfinalizedDependencies.erase(&OtherVSO);
  561. }
  562. }
  563. });
  564. }
  565. void VSO::resolve(const SymbolMap &Resolved) {
  566. auto FullyResolvedQueries = ES.runSessionLocked([&, this]() {
  567. AsynchronousSymbolQuerySet FullyResolvedQueries;
  568. for (const auto &KV : Resolved) {
  569. auto &Name = KV.first;
  570. auto Sym = KV.second;
  571. assert(!Sym.getFlags().isLazy() && !Sym.getFlags().isMaterializing() &&
  572. "Materializing flags should be managed internally");
  573. auto I = Symbols.find(Name);
  574. assert(I != Symbols.end() && "Symbol not found");
  575. assert(!I->second.getFlags().isLazy() &&
  576. I->second.getFlags().isMaterializing() &&
  577. "Symbol should be materializing");
  578. assert(I->second.getAddress() == 0 && "Symbol has already been resolved");
  579. assert((Sym.getFlags() & ~JITSymbolFlags::Weak) ==
  580. (JITSymbolFlags::stripTransientFlags(I->second.getFlags()) &
  581. ~JITSymbolFlags::Weak) &&
  582. "Resolved flags should match the declared flags");
  583. // Once resolved, symbols can never be weak.
  584. JITSymbolFlags ResolvedFlags = Sym.getFlags();
  585. ResolvedFlags &= ~JITSymbolFlags::Weak;
  586. ResolvedFlags |= JITSymbolFlags::Materializing;
  587. I->second = JITEvaluatedSymbol(Sym.getAddress(), ResolvedFlags);
  588. auto &MI = MaterializingInfos[Name];
  589. for (auto &Q : MI.PendingQueries) {
  590. Q->resolve(Name, Sym);
  591. if (Q->isFullyResolved())
  592. FullyResolvedQueries.insert(Q);
  593. }
  594. }
  595. return FullyResolvedQueries;
  596. });
  597. for (auto &Q : FullyResolvedQueries) {
  598. assert(Q->isFullyResolved() && "Q not fully resolved");
  599. Q->handleFullyResolved();
  600. }
  601. }
  602. void VSO::finalize(const SymbolFlagsMap &Finalized) {
  603. auto FullyReadyQueries = ES.runSessionLocked([&, this]() {
  604. AsynchronousSymbolQuerySet ReadyQueries;
  605. for (const auto &KV : Finalized) {
  606. const auto &Name = KV.first;
  607. auto MII = MaterializingInfos.find(Name);
  608. assert(MII != MaterializingInfos.end() &&
  609. "Missing MaterializingInfo entry");
  610. auto &MI = MII->second;
  611. // For each dependant, transfer this node's unfinalized dependencies to
  612. // it. If the dependant node is fully finalized then notify any pending
  613. // queries.
  614. for (auto &KV : MI.Dependants) {
  615. auto &DependantVSO = *KV.first;
  616. for (auto &DependantName : KV.second) {
  617. auto DependantMII =
  618. DependantVSO.MaterializingInfos.find(DependantName);
  619. assert(DependantMII != DependantVSO.MaterializingInfos.end() &&
  620. "Dependant should have MaterializingInfo");
  621. auto &DependantMI = DependantMII->second;
  622. // Remove the dependant's dependency on this node.
  623. assert(DependantMI.UnfinalizedDependencies[this].count(Name) &&
  624. "Dependant does not count this symbol as a dependency?");
  625. DependantMI.UnfinalizedDependencies[this].erase(Name);
  626. if (DependantMI.UnfinalizedDependencies[this].empty())
  627. DependantMI.UnfinalizedDependencies.erase(this);
  628. // Transfer unfinalized dependencies from this node to the dependant.
  629. DependantVSO.transferFinalizedNodeDependencies(DependantMI,
  630. DependantName, MI);
  631. // If the dependant is finalized and this node was the last of its
  632. // unfinalized dependencies then notify any pending queries on the
  633. // dependant node.
  634. if (DependantMI.IsFinalized &&
  635. DependantMI.UnfinalizedDependencies.empty()) {
  636. assert(DependantMI.Dependants.empty() &&
  637. "Dependants should be empty by now");
  638. for (auto &Q : DependantMI.PendingQueries) {
  639. Q->notifySymbolReady();
  640. if (Q->isFullyReady())
  641. ReadyQueries.insert(Q);
  642. Q->removeQueryDependence(DependantVSO, DependantName);
  643. }
  644. // If this dependant node was fully finalized we can erase its
  645. // MaterializingInfo and update its materializing state.
  646. assert(DependantVSO.Symbols.count(DependantName) &&
  647. "Dependant has no entry in the Symbols table");
  648. auto &DependantSym = DependantVSO.Symbols[DependantName];
  649. DependantSym.setFlags(static_cast<JITSymbolFlags::FlagNames>(
  650. DependantSym.getFlags() & ~JITSymbolFlags::Materializing));
  651. DependantVSO.MaterializingInfos.erase(DependantMII);
  652. }
  653. }
  654. }
  655. MI.Dependants.clear();
  656. MI.IsFinalized = true;
  657. if (MI.UnfinalizedDependencies.empty()) {
  658. for (auto &Q : MI.PendingQueries) {
  659. Q->notifySymbolReady();
  660. if (Q->isFullyReady())
  661. ReadyQueries.insert(Q);
  662. Q->removeQueryDependence(*this, Name);
  663. }
  664. assert(Symbols.count(Name) &&
  665. "Symbol has no entry in the Symbols table");
  666. auto &Sym = Symbols[Name];
  667. Sym.setFlags(static_cast<JITSymbolFlags::FlagNames>(
  668. Sym.getFlags() & ~JITSymbolFlags::Materializing));
  669. MaterializingInfos.erase(MII);
  670. }
  671. }
  672. return ReadyQueries;
  673. });
  674. for (auto &Q : FullyReadyQueries) {
  675. assert(Q->isFullyReady() && "Q is not fully ready");
  676. Q->handleFullyReady();
  677. }
  678. }
  679. void VSO::notifyFailed(const SymbolNameSet &FailedSymbols) {
  680. // FIXME: This should fail any transitively dependant symbols too.
  681. auto FailedQueriesToNotify = ES.runSessionLocked([&, this]() {
  682. AsynchronousSymbolQuerySet FailedQueries;
  683. for (auto &Name : FailedSymbols) {
  684. auto I = Symbols.find(Name);
  685. assert(I != Symbols.end() && "Symbol not present in this VSO");
  686. Symbols.erase(I);
  687. auto MII = MaterializingInfos.find(Name);
  688. // If we have not created a MaterializingInfo for this symbol yet then
  689. // there is nobody to notify.
  690. if (MII == MaterializingInfos.end())
  691. continue;
  692. // Copy all the queries to the FailedQueries list, then abandon them.
  693. // This has to be a copy, and the copy has to come before the abandon
  694. // operation: Each Q.detach() call will reach back into this
  695. // PendingQueries list to remove Q.
  696. for (auto &Q : MII->second.PendingQueries)
  697. FailedQueries.insert(Q);
  698. for (auto &Q : FailedQueries)
  699. Q->detach();
  700. assert(MII->second.PendingQueries.empty() &&
  701. "Queries remain after symbol was failed");
  702. MaterializingInfos.erase(MII);
  703. }
  704. return FailedQueries;
  705. });
  706. for (auto &Q : FailedQueriesToNotify)
  707. Q->handleFailed(make_error<FailedToMaterialize>(FailedSymbols));
  708. }
  709. void VSO::runOutstandingMUs() {
  710. while (1) {
  711. std::unique_ptr<MaterializationUnit> MU;
  712. {
  713. std::lock_guard<std::recursive_mutex> Lock(OutstandingMUsMutex);
  714. if (!OutstandingMUs.empty()) {
  715. MU = std::move(OutstandingMUs.back());
  716. OutstandingMUs.pop_back();
  717. }
  718. }
  719. if (MU)
  720. ES.dispatchMaterialization(*this, std::move(MU));
  721. else
  722. break;
  723. }
  724. }
  725. void VSO::setSearchOrder(VSOList NewSearchOrder, bool SearchThisVSOFirst) {
  726. if (SearchThisVSOFirst && NewSearchOrder.front() != this)
  727. NewSearchOrder.insert(NewSearchOrder.begin(), this);
  728. ES.runSessionLocked([&]() { SearchOrder = std::move(NewSearchOrder); });
  729. }
  730. void VSO::addToSearchOrder(VSO &V) {
  731. ES.runSessionLocked([&]() { SearchOrder.push_back(&V); });
  732. }
  733. void VSO::replaceInSearchOrder(VSO &OldV, VSO &NewV) {
  734. ES.runSessionLocked([&]() {
  735. auto I = std::find(SearchOrder.begin(), SearchOrder.end(), &OldV);
  736. if (I != SearchOrder.end())
  737. *I = &NewV;
  738. });
  739. }
  740. void VSO::removeFromSearchOrder(VSO &V) {
  741. ES.runSessionLocked([&]() {
  742. auto I = std::find(SearchOrder.begin(), SearchOrder.end(), &V);
  743. if (I != SearchOrder.end())
  744. SearchOrder.erase(I);
  745. });
  746. }
  747. SymbolFlagsMap VSO::lookupFlags(const SymbolNameSet &Names) {
  748. return ES.runSessionLocked([&, this]() {
  749. SymbolFlagsMap Result;
  750. auto Unresolved = lookupFlagsImpl(Result, Names);
  751. if (FallbackDefinitionGenerator && !Unresolved.empty()) {
  752. auto FallbackDefs = FallbackDefinitionGenerator(*this, Unresolved);
  753. if (!FallbackDefs.empty()) {
  754. auto Unresolved2 = lookupFlagsImpl(Result, FallbackDefs);
  755. (void)Unresolved2;
  756. assert(Unresolved2.empty() &&
  757. "All fallback defs should have been found by lookupFlagsImpl");
  758. }
  759. };
  760. return Result;
  761. });
  762. }
  763. SymbolNameSet VSO::lookupFlagsImpl(SymbolFlagsMap &Flags,
  764. const SymbolNameSet &Names) {
  765. SymbolNameSet Unresolved;
  766. for (auto &Name : Names) {
  767. auto I = Symbols.find(Name);
  768. if (I == Symbols.end()) {
  769. Unresolved.insert(Name);
  770. continue;
  771. }
  772. assert(!Flags.count(Name) && "Symbol already present in Flags map");
  773. Flags[Name] = JITSymbolFlags::stripTransientFlags(I->second.getFlags());
  774. }
  775. return Unresolved;
  776. }
  777. SymbolNameSet VSO::lookup(std::shared_ptr<AsynchronousSymbolQuery> Q,
  778. SymbolNameSet Names) {
  779. assert(Q && "Query can not be null");
  780. runOutstandingMUs();
  781. LookupImplActionFlags ActionFlags = None;
  782. std::vector<std::unique_ptr<MaterializationUnit>> MUs;
  783. SymbolNameSet Unresolved = std::move(Names);
  784. ES.runSessionLocked([&, this]() {
  785. ActionFlags = lookupImpl(Q, MUs, Unresolved);
  786. if (FallbackDefinitionGenerator && !Unresolved.empty()) {
  787. assert(ActionFlags == None &&
  788. "ActionFlags set but unresolved symbols remain?");
  789. auto FallbackDefs = FallbackDefinitionGenerator(*this, Unresolved);
  790. if (!FallbackDefs.empty()) {
  791. for (auto &D : FallbackDefs)
  792. Unresolved.erase(D);
  793. ActionFlags = lookupImpl(Q, MUs, FallbackDefs);
  794. assert(FallbackDefs.empty() &&
  795. "All fallback defs should have been found by lookupImpl");
  796. }
  797. }
  798. });
  799. assert((MUs.empty() || ActionFlags == None) &&
  800. "If action flags are set, there should be no work to do (so no MUs)");
  801. if (ActionFlags & NotifyFullyResolved)
  802. Q->handleFullyResolved();
  803. if (ActionFlags & NotifyFullyReady)
  804. Q->handleFullyReady();
  805. // FIXME: Swap back to the old code below once RuntimeDyld works with
  806. // callbacks from asynchronous queries.
  807. // Add MUs to the OutstandingMUs list.
  808. {
  809. std::lock_guard<std::recursive_mutex> Lock(OutstandingMUsMutex);
  810. for (auto &MU : MUs)
  811. OutstandingMUs.push_back(std::move(MU));
  812. }
  813. runOutstandingMUs();
  814. // Dispatch any required MaterializationUnits for materialization.
  815. // for (auto &MU : MUs)
  816. // ES.dispatchMaterialization(*this, std::move(MU));
  817. return Unresolved;
  818. }
  819. VSO::LookupImplActionFlags
  820. VSO::lookupImpl(std::shared_ptr<AsynchronousSymbolQuery> &Q,
  821. std::vector<std::unique_ptr<MaterializationUnit>> &MUs,
  822. SymbolNameSet &Unresolved) {
  823. LookupImplActionFlags ActionFlags = None;
  824. for (auto I = Unresolved.begin(), E = Unresolved.end(); I != E;) {
  825. auto TmpI = I++;
  826. auto Name = *TmpI;
  827. // Search for the name in Symbols. Skip it if not found.
  828. auto SymI = Symbols.find(Name);
  829. if (SymI == Symbols.end())
  830. continue;
  831. // If we found Name in V, remove it frome the Unresolved set and add it
  832. // to the dependencies set.
  833. Unresolved.erase(TmpI);
  834. // If the symbol has an address then resolve it.
  835. if (SymI->second.getAddress() != 0) {
  836. Q->resolve(Name, SymI->second);
  837. if (Q->isFullyResolved())
  838. ActionFlags |= NotifyFullyResolved;
  839. }
  840. // If the symbol is lazy, get the MaterialiaztionUnit for it.
  841. if (SymI->second.getFlags().isLazy()) {
  842. assert(SymI->second.getAddress() == 0 &&
  843. "Lazy symbol should not have a resolved address");
  844. assert(!SymI->second.getFlags().isMaterializing() &&
  845. "Materializing and lazy should not both be set");
  846. auto UMII = UnmaterializedInfos.find(Name);
  847. assert(UMII != UnmaterializedInfos.end() &&
  848. "Lazy symbol should have UnmaterializedInfo");
  849. auto MU = std::move(UMII->second->MU);
  850. assert(MU != nullptr && "Materializer should not be null");
  851. // Kick all symbols associated with this MaterializationUnit into
  852. // materializing state.
  853. for (auto &KV : MU->getSymbols()) {
  854. auto SymK = Symbols.find(KV.first);
  855. auto Flags = SymK->second.getFlags();
  856. Flags &= ~JITSymbolFlags::Lazy;
  857. Flags |= JITSymbolFlags::Materializing;
  858. SymK->second.setFlags(Flags);
  859. UnmaterializedInfos.erase(KV.first);
  860. }
  861. // Add MU to the list of MaterializationUnits to be materialized.
  862. MUs.push_back(std::move(MU));
  863. } else if (!SymI->second.getFlags().isMaterializing()) {
  864. // The symbol is neither lazy nor materializing. Finalize it and
  865. // continue.
  866. Q->notifySymbolReady();
  867. if (Q->isFullyReady())
  868. ActionFlags |= NotifyFullyReady;
  869. continue;
  870. }
  871. // Add the query to the PendingQueries list.
  872. assert(SymI->second.getFlags().isMaterializing() &&
  873. "By this line the symbol should be materializing");
  874. auto &MI = MaterializingInfos[Name];
  875. MI.PendingQueries.push_back(Q);
  876. Q->addQueryDependence(*this, Name);
  877. }
  878. return ActionFlags;
  879. }
  880. void VSO::dump(raw_ostream &OS) {
  881. ES.runSessionLocked([&, this]() {
  882. OS << "VSO \"" << VSOName
  883. << "\" (ES: " << format("0x%016x", reinterpret_cast<uintptr_t>(&ES))
  884. << "):\n"
  885. << "Symbol table:\n";
  886. for (auto &KV : Symbols) {
  887. OS << " \"" << *KV.first
  888. << "\": " << format("0x%016x", KV.second.getAddress());
  889. if (KV.second.getFlags().isLazy() ||
  890. KV.second.getFlags().isMaterializing()) {
  891. OS << " (";
  892. if (KV.second.getFlags().isLazy()) {
  893. auto I = UnmaterializedInfos.find(KV.first);
  894. assert(I != UnmaterializedInfos.end() &&
  895. "Lazy symbol should have UnmaterializedInfo");
  896. OS << " Lazy (MU=" << I->second->MU.get() << ")";
  897. }
  898. if (KV.second.getFlags().isMaterializing())
  899. OS << " Materializing";
  900. OS << " )\n";
  901. } else
  902. OS << "\n";
  903. }
  904. if (!MaterializingInfos.empty())
  905. OS << " MaterializingInfos entries:\n";
  906. for (auto &KV : MaterializingInfos) {
  907. OS << " \"" << *KV.first << "\":\n"
  908. << " IsFinalized = " << (KV.second.IsFinalized ? "true" : "false")
  909. << "\n"
  910. << " " << KV.second.PendingQueries.size()
  911. << " pending queries: { ";
  912. for (auto &Q : KV.second.PendingQueries)
  913. OS << Q.get() << " ";
  914. OS << "}\n Dependants:\n";
  915. for (auto &KV2 : KV.second.Dependants)
  916. OS << " " << KV2.first->getName() << ": " << KV2.second << "\n";
  917. OS << " Unfinalized Dependencies:\n";
  918. for (auto &KV2 : KV.second.UnfinalizedDependencies)
  919. OS << " " << KV2.first->getName() << ": " << KV2.second << "\n";
  920. }
  921. });
  922. }
  923. VSO::VSO(ExecutionSessionBase &ES, std::string Name)
  924. : ES(ES), VSOName(std::move(Name)) {
  925. SearchOrder.push_back(this);
  926. }
  927. Error VSO::defineImpl(MaterializationUnit &MU) {
  928. SymbolNameSet Duplicates;
  929. SymbolNameSet MUDefsOverridden;
  930. struct ExistingDefOverriddenEntry {
  931. SymbolMap::iterator ExistingDefItr;
  932. JITSymbolFlags NewFlags;
  933. };
  934. std::vector<ExistingDefOverriddenEntry> ExistingDefsOverridden;
  935. for (auto &KV : MU.getSymbols()) {
  936. assert(!KV.second.isLazy() && "Lazy flag should be managed internally.");
  937. assert(!KV.second.isMaterializing() &&
  938. "Materializing flags should be managed internally.");
  939. SymbolMap::iterator EntryItr;
  940. bool Added;
  941. auto NewFlags = KV.second;
  942. NewFlags |= JITSymbolFlags::Lazy;
  943. std::tie(EntryItr, Added) = Symbols.insert(
  944. std::make_pair(KV.first, JITEvaluatedSymbol(0, NewFlags)));
  945. if (!Added) {
  946. if (KV.second.isStrong()) {
  947. if (EntryItr->second.getFlags().isStrong() ||
  948. (EntryItr->second.getFlags() & JITSymbolFlags::Materializing))
  949. Duplicates.insert(KV.first);
  950. else
  951. ExistingDefsOverridden.push_back({EntryItr, NewFlags});
  952. } else
  953. MUDefsOverridden.insert(KV.first);
  954. }
  955. }
  956. if (!Duplicates.empty()) {
  957. // We need to remove the symbols we added.
  958. for (auto &KV : MU.getSymbols()) {
  959. if (Duplicates.count(KV.first))
  960. continue;
  961. bool Found = false;
  962. for (const auto &EDO : ExistingDefsOverridden)
  963. if (EDO.ExistingDefItr->first == KV.first)
  964. Found = true;
  965. if (!Found)
  966. Symbols.erase(KV.first);
  967. }
  968. // FIXME: Return all duplicates.
  969. return make_error<DuplicateDefinition>(**Duplicates.begin());
  970. }
  971. // Update flags on existing defs and call discard on their materializers.
  972. for (auto &EDO : ExistingDefsOverridden) {
  973. assert(EDO.ExistingDefItr->second.getFlags().isLazy() &&
  974. !EDO.ExistingDefItr->second.getFlags().isMaterializing() &&
  975. "Overridden existing def should be in the Lazy state");
  976. EDO.ExistingDefItr->second.setFlags(EDO.NewFlags);
  977. auto UMII = UnmaterializedInfos.find(EDO.ExistingDefItr->first);
  978. assert(UMII != UnmaterializedInfos.end() &&
  979. "Overridden existing def should have an UnmaterializedInfo");
  980. UMII->second->MU->doDiscard(*this, EDO.ExistingDefItr->first);
  981. }
  982. // Discard overridden symbols povided by MU.
  983. for (auto &Sym : MUDefsOverridden)
  984. MU.doDiscard(*this, Sym);
  985. return Error::success();
  986. }
  987. void VSO::detachQueryHelper(AsynchronousSymbolQuery &Q,
  988. const SymbolNameSet &QuerySymbols) {
  989. for (auto &QuerySymbol : QuerySymbols) {
  990. assert(MaterializingInfos.count(QuerySymbol) &&
  991. "QuerySymbol does not have MaterializingInfo");
  992. auto &MI = MaterializingInfos[QuerySymbol];
  993. auto IdenticalQuery =
  994. [&](const std::shared_ptr<AsynchronousSymbolQuery> &R) {
  995. return R.get() == &Q;
  996. };
  997. auto I = std::find_if(MI.PendingQueries.begin(), MI.PendingQueries.end(),
  998. IdenticalQuery);
  999. assert(I != MI.PendingQueries.end() &&
  1000. "Query Q should be in the PendingQueries list for QuerySymbol");
  1001. MI.PendingQueries.erase(I);
  1002. }
  1003. }
  1004. void VSO::transferFinalizedNodeDependencies(
  1005. MaterializingInfo &DependantMI, const SymbolStringPtr &DependantName,
  1006. MaterializingInfo &FinalizedMI) {
  1007. for (auto &KV : FinalizedMI.UnfinalizedDependencies) {
  1008. auto &DependencyVSO = *KV.first;
  1009. SymbolNameSet *UnfinalizedDependenciesOnDependencyVSO = nullptr;
  1010. for (auto &DependencyName : KV.second) {
  1011. auto &DependencyMI = DependencyVSO.MaterializingInfos[DependencyName];
  1012. // Do not add self dependencies.
  1013. if (&DependencyMI == &DependantMI)
  1014. continue;
  1015. // If we haven't looked up the dependencies for DependencyVSO yet, do it
  1016. // now and cache the result.
  1017. if (!UnfinalizedDependenciesOnDependencyVSO)
  1018. UnfinalizedDependenciesOnDependencyVSO =
  1019. &DependantMI.UnfinalizedDependencies[&DependencyVSO];
  1020. DependencyMI.Dependants[this].insert(DependantName);
  1021. UnfinalizedDependenciesOnDependencyVSO->insert(DependencyName);
  1022. }
  1023. }
  1024. }
  1025. VSO &ExecutionSession::createVSO(std::string Name) {
  1026. return runSessionLocked([&, this]() -> VSO & {
  1027. VSOs.push_back(std::unique_ptr<VSO>(new VSO(*this, std::move(Name))));
  1028. return *VSOs.back();
  1029. });
  1030. }
  1031. Expected<SymbolMap> blockingLookup(ExecutionSessionBase &ES,
  1032. AsynchronousLookupFunction AsyncLookup,
  1033. SymbolNameSet Names, bool WaitUntilReady,
  1034. MaterializationResponsibility *MR) {
  1035. #if LLVM_ENABLE_THREADS
  1036. // In the threaded case we use promises to return the results.
  1037. std::promise<SymbolMap> PromisedResult;
  1038. std::mutex ErrMutex;
  1039. Error ResolutionError = Error::success();
  1040. std::promise<void> PromisedReady;
  1041. Error ReadyError = Error::success();
  1042. auto OnResolve =
  1043. [&](Expected<AsynchronousSymbolQuery::ResolutionResult> Result) {
  1044. if (Result) {
  1045. if (MR)
  1046. MR->addDependencies(Result->Dependencies);
  1047. PromisedResult.set_value(std::move(Result->Symbols));
  1048. } else {
  1049. {
  1050. ErrorAsOutParameter _(&ResolutionError);
  1051. std::lock_guard<std::mutex> Lock(ErrMutex);
  1052. ResolutionError = Result.takeError();
  1053. }
  1054. PromisedResult.set_value(SymbolMap());
  1055. }
  1056. };
  1057. std::function<void(Error)> OnReady;
  1058. if (WaitUntilReady) {
  1059. OnReady = [&](Error Err) {
  1060. if (Err) {
  1061. ErrorAsOutParameter _(&ReadyError);
  1062. std::lock_guard<std::mutex> Lock(ErrMutex);
  1063. ReadyError = std::move(Err);
  1064. }
  1065. PromisedReady.set_value();
  1066. };
  1067. } else {
  1068. OnReady = [&](Error Err) {
  1069. if (Err)
  1070. ES.reportError(std::move(Err));
  1071. };
  1072. }
  1073. #else
  1074. SymbolMap Result;
  1075. Error ResolutionError = Error::success();
  1076. Error ReadyError = Error::success();
  1077. auto OnResolve = [&](Expected<AsynchronousSymbolQuery::ResolutionResult> R) {
  1078. ErrorAsOutParameter _(&ResolutionError);
  1079. if (R) {
  1080. if (MR)
  1081. MR->addDependencies(R->Dependencies);
  1082. Result = std::move(R->Symbols);
  1083. } else
  1084. ResolutionError = R.takeError();
  1085. };
  1086. std::function<void(Error)> OnReady;
  1087. if (WaitUntilReady) {
  1088. OnReady = [&](Error Err) {
  1089. ErrorAsOutParameter _(&ReadyError);
  1090. if (Err)
  1091. ReadyError = std::move(Err);
  1092. };
  1093. } else {
  1094. OnReady = [&](Error Err) {
  1095. if (Err)
  1096. ES.reportError(std::move(Err));
  1097. };
  1098. }
  1099. #endif
  1100. auto Query = std::make_shared<AsynchronousSymbolQuery>(
  1101. Names, std::move(OnResolve), std::move(OnReady));
  1102. SymbolNameSet UnresolvedSymbols = AsyncLookup(Query, std::move(Names));
  1103. // If there are unresolved symbols then the query will never return.
  1104. // Fail it with ES.failQuery.
  1105. if (!UnresolvedSymbols.empty())
  1106. ES.failQuery(*Query,
  1107. make_error<SymbolsNotFound>(std::move(UnresolvedSymbols)));
  1108. #if LLVM_ENABLE_THREADS
  1109. auto ResultFuture = PromisedResult.get_future();
  1110. auto Result = ResultFuture.get();
  1111. {
  1112. std::lock_guard<std::mutex> Lock(ErrMutex);
  1113. if (ResolutionError) {
  1114. // ReadyError will never be assigned. Consume the success value.
  1115. cantFail(std::move(ReadyError));
  1116. return std::move(ResolutionError);
  1117. }
  1118. }
  1119. if (WaitUntilReady) {
  1120. auto ReadyFuture = PromisedReady.get_future();
  1121. ReadyFuture.get();
  1122. {
  1123. std::lock_guard<std::mutex> Lock(ErrMutex);
  1124. if (ReadyError)
  1125. return std::move(ReadyError);
  1126. }
  1127. } else
  1128. cantFail(std::move(ReadyError));
  1129. return std::move(Result);
  1130. #else
  1131. if (ResolutionError) {
  1132. // ReadyError will never be assigned. Consume the success value.
  1133. cantFail(std::move(ReadyError));
  1134. return std::move(ResolutionError);
  1135. }
  1136. if (ReadyError)
  1137. return std::move(ReadyError);
  1138. return Result;
  1139. #endif
  1140. }
  1141. Expected<SymbolMap> lookup(const VSOList &VSOs, SymbolNameSet Names) {
  1142. if (VSOs.empty())
  1143. return SymbolMap();
  1144. auto &ES = (*VSOs.begin())->getExecutionSession();
  1145. auto LookupFn = [&](std::shared_ptr<AsynchronousSymbolQuery> Q,
  1146. SymbolNameSet Unresolved) {
  1147. for (auto *V : VSOs) {
  1148. assert(V && "VSOs entries must not be null");
  1149. if (Unresolved.empty())
  1150. break;
  1151. Unresolved = V->lookup(Q, std::move(Unresolved));
  1152. }
  1153. return Unresolved;
  1154. };
  1155. return blockingLookup(ES, std::move(LookupFn), Names, true);
  1156. }
  1157. /// Look up a symbol by searching a list of VSOs.
  1158. Expected<JITEvaluatedSymbol> lookup(const VSOList &VSOs, SymbolStringPtr Name) {
  1159. SymbolNameSet Names({Name});
  1160. if (auto ResultMap = lookup(VSOs, std::move(Names))) {
  1161. assert(ResultMap->size() == 1 && "Unexpected number of results");
  1162. assert(ResultMap->count(Name) && "Missing result for symbol");
  1163. return std::move(ResultMap->begin()->second);
  1164. } else
  1165. return ResultMap.takeError();
  1166. }
  1167. MangleAndInterner::MangleAndInterner(ExecutionSessionBase &ES,
  1168. const DataLayout &DL)
  1169. : ES(ES), DL(DL) {}
  1170. SymbolStringPtr MangleAndInterner::operator()(StringRef Name) {
  1171. std::string MangledName;
  1172. {
  1173. raw_string_ostream MangledNameStream(MangledName);
  1174. Mangler::getNameWithPrefix(MangledNameStream, Name, DL);
  1175. }
  1176. return ES.getSymbolStringPool().intern(MangledName);
  1177. }
  1178. } // End namespace orc.
  1179. } // End namespace llvm.