1 //===--- CodeComplete.cpp ----------------------------------------*- C++-*-===// 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 // Code completion has several moving parts: 10 // - AST-based completions are provided using the completion hooks in Sema. 11 // - external completions are retrieved from the index (using hints from Sema) 12 // - the two sources overlap, and must be merged and overloads bundled 13 // - results must be scored and ranked (see Quality.h) before rendering 14 // 15 // Signature help works in a similar way as code completion, but it is simpler: 16 // it's purely AST-based, and there are few candidates. 17 // 18 //===----------------------------------------------------------------------===// 19 20 #include "CodeComplete.h" 21 #include "AST.h" 22 #include "ClangdUnit.h" 23 #include "CodeCompletionStrings.h" 24 #include "Compiler.h" 25 #include "Diagnostics.h" 26 #include "ExpectedTypes.h" 27 #include "FileDistance.h" 28 #include "FuzzyMatch.h" 29 #include "Headers.h" 30 #include "Logger.h" 31 #include "Protocol.h" 32 #include "Quality.h" 33 #include "SourceCode.h" 34 #include "TUScheduler.h" 35 #include "Trace.h" 36 #include "URI.h" 37 #include "index/Index.h" 38 #include "index/Symbol.h" 39 #include "index/SymbolOrigin.h" 40 #include "clang/AST/Decl.h" 41 #include "clang/AST/DeclBase.h" 42 #include "clang/Basic/CharInfo.h" 43 #include "clang/Basic/LangOptions.h" 44 #include "clang/Basic/SourceLocation.h" 45 #include "clang/Format/Format.h" 46 #include "clang/Frontend/CompilerInstance.h" 47 #include "clang/Frontend/FrontendActions.h" 48 #include "clang/Lex/ExternalPreprocessorSource.h" 49 #include "clang/Lex/Preprocessor.h" 50 #include "clang/Lex/PreprocessorOptions.h" 51 #include "clang/Sema/CodeCompleteConsumer.h" 52 #include "clang/Sema/DeclSpec.h" 53 #include "clang/Sema/Sema.h" 54 #include "llvm/ADT/ArrayRef.h" 55 #include "llvm/ADT/None.h" 56 #include "llvm/ADT/Optional.h" 57 #include "llvm/ADT/SmallVector.h" 58 #include "llvm/ADT/StringExtras.h" 59 #include "llvm/ADT/StringRef.h" 60 #include "llvm/Support/Compiler.h" 61 #include "llvm/Support/Debug.h" 62 #include "llvm/Support/Error.h" 63 #include "llvm/Support/Format.h" 64 #include "llvm/Support/FormatVariadic.h" 65 #include "llvm/Support/ScopedPrinter.h" 66 #include <algorithm> 67 #include <iterator> 68 69 // We log detailed candidate here if you run with -debug-only=codecomplete. 70 #define DEBUG_TYPE "CodeComplete" 71 72 namespace clang { 73 namespace clangd { 74 namespace { 75 76 CompletionItemKind toCompletionItemKind(index::SymbolKind Kind) { 77 using SK = index::SymbolKind; 78 switch (Kind) { 79 case SK::Unknown: 80 return CompletionItemKind::Missing; 81 case SK::Module: 82 case SK::Namespace: 83 case SK::NamespaceAlias: 84 return CompletionItemKind::Module; 85 case SK::Macro: 86 return CompletionItemKind::Text; 87 case SK::Enum: 88 return CompletionItemKind::Enum; 89 // FIXME(ioeric): use LSP struct instead of class when it is suppoted in the 90 // protocol. 91 case SK::Struct: 92 case SK::Class: 93 case SK::Protocol: 94 case SK::Extension: 95 case SK::Union: 96 return CompletionItemKind::Class; 97 case SK::TypeAlias: 98 // We use the same kind as the VSCode C++ extension. 99 // FIXME: pick a better option when we have one. 100 return CompletionItemKind::Interface; 101 case SK::Using: 102 return CompletionItemKind::Reference; 103 case SK::Function: 104 // FIXME(ioeric): this should probably be an operator. This should be fixed 105 // when `Operator` is support type in the protocol. 106 case SK::ConversionFunction: 107 return CompletionItemKind::Function; 108 case SK::Variable: 109 case SK::Parameter: 110 return CompletionItemKind::Variable; 111 case SK::Field: 112 return CompletionItemKind::Field; 113 // FIXME(ioeric): use LSP enum constant when it is supported in the protocol. 114 case SK::EnumConstant: 115 return CompletionItemKind::Value; 116 case SK::InstanceMethod: 117 case SK::ClassMethod: 118 case SK::StaticMethod: 119 case SK::Destructor: 120 return CompletionItemKind::Method; 121 case SK::InstanceProperty: 122 case SK::ClassProperty: 123 case SK::StaticProperty: 124 return CompletionItemKind::Property; 125 case SK::Constructor: 126 return CompletionItemKind::Constructor; 127 } 128 llvm_unreachable("Unhandled clang::index::SymbolKind."); 129 } 130 131 CompletionItemKind 132 toCompletionItemKind(CodeCompletionResult::ResultKind ResKind, 133 const NamedDecl *Decl, 134 CodeCompletionContext::Kind CtxKind) { 135 if (Decl) 136 return toCompletionItemKind(index::getSymbolInfo(Decl).Kind); 137 if (CtxKind == CodeCompletionContext::CCC_IncludedFile) 138 return CompletionItemKind::File; 139 switch (ResKind) { 140 case CodeCompletionResult::RK_Declaration: 141 llvm_unreachable("RK_Declaration without Decl"); 142 case CodeCompletionResult::RK_Keyword: 143 return CompletionItemKind::Keyword; 144 case CodeCompletionResult::RK_Macro: 145 return CompletionItemKind::Text; // unfortunately, there's no 'Macro' 146 // completion items in LSP. 147 case CodeCompletionResult::RK_Pattern: 148 return CompletionItemKind::Snippet; 149 } 150 llvm_unreachable("Unhandled CodeCompletionResult::ResultKind."); 151 } 152 153 // Identifier code completion result. 154 struct RawIdentifier { 155 llvm::StringRef Name; 156 unsigned References; // # of usages in file. 157 }; 158 159 /// A code completion result, in clang-native form. 160 /// It may be promoted to a CompletionItem if it's among the top-ranked results. 161 struct CompletionCandidate { 162 llvm::StringRef Name; // Used for filtering and sorting. 163 // We may have a result from Sema, from the index, or both. 164 const CodeCompletionResult *SemaResult = nullptr; 165 const Symbol *IndexResult = nullptr; 166 const RawIdentifier *IdentifierResult = nullptr; 167 llvm::SmallVector<llvm::StringRef, 1> RankedIncludeHeaders; 168 169 // Returns a token identifying the overload set this is part of. 170 // 0 indicates it's not part of any overload set. 171 size_t overloadSet(const CodeCompleteOptions &Opts) const { 172 if (!Opts.BundleOverloads.getValueOr(false)) 173 return 0; 174 llvm::SmallString<256> Scratch; 175 if (IndexResult) { 176 switch (IndexResult->SymInfo.Kind) { 177 case index::SymbolKind::ClassMethod: 178 case index::SymbolKind::InstanceMethod: 179 case index::SymbolKind::StaticMethod: 180 #ifndef NDEBUG 181 llvm_unreachable("Don't expect members from index in code completion"); 182 #else 183 LLVM_FALLTHROUGH; 184 #endif 185 case index::SymbolKind::Function: 186 // We can't group overloads together that need different #includes. 187 // This could break #include insertion. 188 return llvm::hash_combine( 189 (IndexResult->Scope + IndexResult->Name).toStringRef(Scratch), 190 headerToInsertIfAllowed(Opts).getValueOr("")); 191 default: 192 return 0; 193 } 194 } 195 if (SemaResult) { 196 // We need to make sure we're consistent with the IndexResult case! 197 const NamedDecl *D = SemaResult->Declaration; 198 if (!D || !D->isFunctionOrFunctionTemplate()) 199 return 0; 200 { 201 llvm::raw_svector_ostream OS(Scratch); 202 D->printQualifiedName(OS); 203 } 204 return llvm::hash_combine(Scratch, 205 headerToInsertIfAllowed(Opts).getValueOr("")); 206 } 207 assert(IdentifierResult); 208 return 0; 209 } 210 211 // The best header to include if include insertion is allowed. 212 llvm::Optional<llvm::StringRef> 213 headerToInsertIfAllowed(const CodeCompleteOptions &Opts) const { 214 if (Opts.InsertIncludes == CodeCompleteOptions::NeverInsert || 215 RankedIncludeHeaders.empty()) 216 return None; 217 if (SemaResult && SemaResult->Declaration) { 218 // Avoid inserting new #include if the declaration is found in the current 219 // file e.g. the symbol is forward declared. 220 auto &SM = SemaResult->Declaration->getASTContext().getSourceManager(); 221 for (const Decl *RD : SemaResult->Declaration->redecls()) 222 if (SM.isInMainFile(SM.getExpansionLoc(RD->getBeginLoc()))) 223 return None; 224 } 225 return RankedIncludeHeaders[0]; 226 } 227 228 using Bundle = llvm::SmallVector<CompletionCandidate, 4>; 229 }; 230 using ScoredBundle = 231 std::pair<CompletionCandidate::Bundle, CodeCompletion::Scores>; 232 struct ScoredBundleGreater { 233 bool operator()(const ScoredBundle &L, const ScoredBundle &R) { 234 if (L.second.Total != R.second.Total) 235 return L.second.Total > R.second.Total; 236 return L.first.front().Name < 237 R.first.front().Name; // Earlier name is better. 238 } 239 }; 240 241 // Assembles a code completion out of a bundle of >=1 completion candidates. 242 // Many of the expensive strings are only computed at this point, once we know 243 // the candidate bundle is going to be returned. 244 // 245 // Many fields are the same for all candidates in a bundle (e.g. name), and are 246 // computed from the first candidate, in the constructor. 247 // Others vary per candidate, so add() must be called for remaining candidates. 248 struct CodeCompletionBuilder { 249 CodeCompletionBuilder(ASTContext *ASTCtx, const CompletionCandidate &C, 250 CodeCompletionString *SemaCCS, 251 llvm::ArrayRef<std::string> QueryScopes, 252 const IncludeInserter &Includes, 253 llvm::StringRef FileName, 254 CodeCompletionContext::Kind ContextKind, 255 const CodeCompleteOptions &Opts) 256 : ASTCtx(ASTCtx), ExtractDocumentation(Opts.IncludeComments), 257 EnableFunctionArgSnippets(Opts.EnableFunctionArgSnippets) { 258 add(C, SemaCCS); 259 if (C.SemaResult) { 260 assert(ASTCtx); 261 Completion.Origin |= SymbolOrigin::AST; 262 Completion.Name = llvm::StringRef(SemaCCS->getTypedText()); 263 if (Completion.Scope.empty()) { 264 if ((C.SemaResult->Kind == CodeCompletionResult::RK_Declaration) || 265 (C.SemaResult->Kind == CodeCompletionResult::RK_Pattern)) 266 if (const auto *D = C.SemaResult->getDeclaration()) 267 if (const auto *ND = dyn_cast<NamedDecl>(D)) 268 Completion.Scope = 269 splitQualifiedName(printQualifiedName(*ND)).first; 270 } 271 Completion.Kind = toCompletionItemKind( 272 C.SemaResult->Kind, C.SemaResult->Declaration, ContextKind); 273 // Sema could provide more info on whether the completion was a file or 274 // folder. 275 if (Completion.Kind == CompletionItemKind::File && 276 Completion.Name.back() == '/') 277 Completion.Kind = CompletionItemKind::Folder; 278 for (const auto &FixIt : C.SemaResult->FixIts) { 279 Completion.FixIts.push_back(toTextEdit( 280 FixIt, ASTCtx->getSourceManager(), ASTCtx->getLangOpts())); 281 } 282 llvm::sort(Completion.FixIts, [](const TextEdit &X, const TextEdit &Y) { 283 return std::tie(X.range.start.line, X.range.start.character) < 284 std::tie(Y.range.start.line, Y.range.start.character); 285 }); 286 Completion.Deprecated |= 287 (C.SemaResult->Availability == CXAvailability_Deprecated); 288 } 289 if (C.IndexResult) { 290 Completion.Origin |= C.IndexResult->Origin; 291 if (Completion.Scope.empty()) 292 Completion.Scope = C.IndexResult->Scope; 293 if (Completion.Kind == CompletionItemKind::Missing) 294 Completion.Kind = toCompletionItemKind(C.IndexResult->SymInfo.Kind); 295 if (Completion.Name.empty()) 296 Completion.Name = C.IndexResult->Name; 297 // If the completion was visible to Sema, no qualifier is needed. This 298 // avoids unneeded qualifiers in cases like with `using ns::X`. 299 if (Completion.RequiredQualifier.empty() && !C.SemaResult) { 300 llvm::StringRef ShortestQualifier = C.IndexResult->Scope; 301 for (llvm::StringRef Scope : QueryScopes) { 302 llvm::StringRef Qualifier = C.IndexResult->Scope; 303 if (Qualifier.consume_front(Scope) && 304 Qualifier.size() < ShortestQualifier.size()) 305 ShortestQualifier = Qualifier; 306 } 307 Completion.RequiredQualifier = ShortestQualifier; 308 } 309 Completion.Deprecated |= (C.IndexResult->Flags & Symbol::Deprecated); 310 } 311 if (C.IdentifierResult) { 312 Completion.Origin |= SymbolOrigin::Identifier; 313 Completion.Kind = CompletionItemKind::Text; 314 Completion.Name = C.IdentifierResult->Name; 315 } 316 317 // Turn absolute path into a literal string that can be #included. 318 auto Inserted = [&](llvm::StringRef Header) 319 -> llvm::Expected<std::pair<std::string, bool>> { 320 auto DeclaringURI = 321 URI::parse(C.IndexResult->CanonicalDeclaration.FileURI); 322 if (!DeclaringURI) 323 return DeclaringURI.takeError(); 324 auto ResolvedDeclaring = URI::resolve(*DeclaringURI, FileName); 325 if (!ResolvedDeclaring) 326 return ResolvedDeclaring.takeError(); 327 auto ResolvedInserted = toHeaderFile(Header, FileName); 328 if (!ResolvedInserted) 329 return ResolvedInserted.takeError(); 330 auto Spelled = Includes.calculateIncludePath(*ResolvedInserted, FileName); 331 if (!Spelled) 332 return llvm::createStringError(llvm::inconvertibleErrorCode(), 333 "Header not on include path"); 334 return std::make_pair( 335 std::move(*Spelled), 336 Includes.shouldInsertInclude(*ResolvedDeclaring, *ResolvedInserted)); 337 }; 338 bool ShouldInsert = C.headerToInsertIfAllowed(Opts).hasValue(); 339 // Calculate include paths and edits for all possible headers. 340 for (const auto &Inc : C.RankedIncludeHeaders) { 341 if (auto ToInclude = Inserted(Inc)) { 342 CodeCompletion::IncludeCandidate Include; 343 Include.Header = ToInclude->first; 344 if (ToInclude->second && ShouldInsert) 345 Include.Insertion = Includes.insert(ToInclude->first); 346 Completion.Includes.push_back(std::move(Include)); 347 } else 348 log("Failed to generate include insertion edits for adding header " 349 "(FileURI='{0}', IncludeHeader='{1}') into {2}", 350 C.IndexResult->CanonicalDeclaration.FileURI, Inc, FileName); 351 } 352 // Prefer includes that do not need edits (i.e. already exist). 353 std::stable_partition(Completion.Includes.begin(), 354 Completion.Includes.end(), 355 [](const CodeCompletion::IncludeCandidate &I) { 356 return !I.Insertion.hasValue(); 357 }); 358 } 359 360 void add(const CompletionCandidate &C, CodeCompletionString *SemaCCS) { 361 assert(bool(C.SemaResult) == bool(SemaCCS)); 362 Bundled.emplace_back(); 363 BundledEntry &S = Bundled.back(); 364 if (C.SemaResult) { 365 bool IsPattern = C.SemaResult->Kind == CodeCompletionResult::RK_Pattern; 366 getSignature(*SemaCCS, &S.Signature, &S.SnippetSuffix, 367 &Completion.RequiredQualifier, IsPattern); 368 S.ReturnType = getReturnType(*SemaCCS); 369 } else if (C.IndexResult) { 370 S.Signature = C.IndexResult->Signature; 371 S.SnippetSuffix = C.IndexResult->CompletionSnippetSuffix; 372 S.ReturnType = C.IndexResult->ReturnType; 373 } 374 if (ExtractDocumentation && Completion.Documentation.empty()) { 375 if (C.IndexResult) 376 Completion.Documentation = C.IndexResult->Documentation; 377 else if (C.SemaResult) 378 Completion.Documentation = getDocComment(*ASTCtx, *C.SemaResult, 379 /*CommentsFromHeader=*/false); 380 } 381 } 382 383 CodeCompletion build() { 384 Completion.ReturnType = summarizeReturnType(); 385 Completion.Signature = summarizeSignature(); 386 Completion.SnippetSuffix = summarizeSnippet(); 387 Completion.BundleSize = Bundled.size(); 388 return std::move(Completion); 389 } 390 391 private: 392 struct BundledEntry { 393 std::string SnippetSuffix; 394 std::string Signature; 395 std::string ReturnType; 396 }; 397 398 // If all BundledEntrys have the same value for a property, return it. 399 template <std::string BundledEntry::*Member> 400 const std::string *onlyValue() const { 401 auto B = Bundled.begin(), E = Bundled.end(); 402 for (auto I = B + 1; I != E; ++I) 403 if (I->*Member != B->*Member) 404 return nullptr; 405 return &(B->*Member); 406 } 407 408 template <bool BundledEntry::*Member> const bool *onlyValue() const { 409 auto B = Bundled.begin(), E = Bundled.end(); 410 for (auto I = B + 1; I != E; ++I) 411 if (I->*Member != B->*Member) 412 return nullptr; 413 return &(B->*Member); 414 } 415 416 std::string summarizeReturnType() const { 417 if (auto *RT = onlyValue<&BundledEntry::ReturnType>()) 418 return *RT; 419 return ""; 420 } 421 422 std::string summarizeSnippet() const { 423 auto *Snippet = onlyValue<&BundledEntry::SnippetSuffix>(); 424 if (!Snippet) 425 // All bundles are function calls. 426 // FIXME(ibiryukov): sometimes add template arguments to a snippet, e.g. 427 // we need to complete 'forward<$1>($0)'. 428 return "($0)"; 429 if (EnableFunctionArgSnippets) 430 return *Snippet; 431 432 // Replace argument snippets with a simplified pattern. 433 if (Snippet->empty()) 434 return ""; 435 if (Completion.Kind == CompletionItemKind::Function || 436 Completion.Kind == CompletionItemKind::Method) { 437 // Functions snippets can be of 2 types: 438 // - containing only function arguments, e.g. 439 // foo(${1:int p1}, ${2:int p2}); 440 // We transform this pattern to '($0)' or '()'. 441 // - template arguments and function arguments, e.g. 442 // foo<${1:class}>(${2:int p1}). 443 // We transform this pattern to '<$1>()$0' or '<$0>()'. 444 445 bool EmptyArgs = llvm::StringRef(*Snippet).endswith("()"); 446 if (Snippet->front() == '<') 447 return EmptyArgs ? "<$1>()$0" : "<$1>($0)"; 448 if (Snippet->front() == '(') 449 return EmptyArgs ? "()" : "($0)"; 450 return *Snippet; // Not an arg snippet? 451 } 452 // 'CompletionItemKind::Interface' matches template type aliases. 453 if (Completion.Kind == CompletionItemKind::Interface || 454 Completion.Kind == CompletionItemKind::Class) { 455 if (Snippet->front() != '<') 456 return *Snippet; // Not an arg snippet? 457 458 // Classes and template using aliases can only have template arguments, 459 // e.g. Foo<${1:class}>. 460 if (llvm::StringRef(*Snippet).endswith("<>")) 461 return "<>"; // can happen with defaulted template arguments. 462 return "<$0>"; 463 } 464 return *Snippet; 465 } 466 467 std::string summarizeSignature() const { 468 if (auto *Signature = onlyValue<&BundledEntry::Signature>()) 469 return *Signature; 470 // All bundles are function calls. 471 return "(…)"; 472 } 473 474 // ASTCtx can be nullptr if not run with sema. 475 ASTContext *ASTCtx; 476 CodeCompletion Completion; 477 llvm::SmallVector<BundledEntry, 1> Bundled; 478 bool ExtractDocumentation; 479 bool EnableFunctionArgSnippets; 480 }; 481 482 // Determine the symbol ID for a Sema code completion result, if possible. 483 llvm::Optional<SymbolID> getSymbolID(const CodeCompletionResult &R, 484 const SourceManager &SM) { 485 switch (R.Kind) { 486 case CodeCompletionResult::RK_Declaration: 487 case CodeCompletionResult::RK_Pattern: { 488 return clang::clangd::getSymbolID(R.Declaration); 489 } 490 case CodeCompletionResult::RK_Macro: 491 return clang::clangd::getSymbolID(*R.Macro, R.MacroDefInfo, SM); 492 case CodeCompletionResult::RK_Keyword: 493 return None; 494 } 495 llvm_unreachable("unknown CodeCompletionResult kind"); 496 } 497 498 // Scopes of the paritial identifier we're trying to complete. 499 // It is used when we query the index for more completion results. 500 struct SpecifiedScope { 501 // The scopes we should look in, determined by Sema. 502 // 503 // If the qualifier was fully resolved, we look for completions in these 504 // scopes; if there is an unresolved part of the qualifier, it should be 505 // resolved within these scopes. 506 // 507 // Examples of qualified completion: 508 // 509 // "::vec" => {""} 510 // "using namespace std; ::vec^" => {"", "std::"} 511 // "namespace ns {using namespace std;} ns::^" => {"ns::", "std::"} 512 // "std::vec^" => {""} // "std" unresolved 513 // 514 // Examples of unqualified completion: 515 // 516 // "vec^" => {""} 517 // "using namespace std; vec^" => {"", "std::"} 518 // "using namespace std; namespace ns { vec^ }" => {"ns::", "std::", ""} 519 // 520 // "" for global namespace, "ns::" for normal namespace. 521 std::vector<std::string> AccessibleScopes; 522 // The full scope qualifier as typed by the user (without the leading "::"). 523 // Set if the qualifier is not fully resolved by Sema. 524 llvm::Optional<std::string> UnresolvedQualifier; 525 526 // Construct scopes being queried in indexes. The results are deduplicated. 527 // This method format the scopes to match the index request representation. 528 std::vector<std::string> scopesForIndexQuery() { 529 std::set<std::string> Results; 530 for (llvm::StringRef AS : AccessibleScopes) 531 Results.insert( 532 (AS + (UnresolvedQualifier ? *UnresolvedQualifier : "")).str()); 533 return {Results.begin(), Results.end()}; 534 } 535 }; 536 537 // Get all scopes that will be queried in indexes and whether symbols from 538 // any scope is allowed. The first scope in the list is the preferred scope 539 // (e.g. enclosing namespace). 540 std::pair<std::vector<std::string>, bool> 541 getQueryScopes(CodeCompletionContext &CCContext, const Sema &CCSema, 542 const CompletionPrefix &HeuristicPrefix, 543 const CodeCompleteOptions &Opts) { 544 SpecifiedScope Scopes; 545 for (auto *Context : CCContext.getVisitedContexts()) { 546 if (isa<TranslationUnitDecl>(Context)) 547 Scopes.AccessibleScopes.push_back(""); // global namespace 548 else if (isa<NamespaceDecl>(Context)) 549 Scopes.AccessibleScopes.push_back(printNamespaceScope(*Context)); 550 } 551 552 const CXXScopeSpec *SemaSpecifier = 553 CCContext.getCXXScopeSpecifier().getValueOr(nullptr); 554 // Case 1: unqualified completion. 555 if (!SemaSpecifier) { 556 // Case 2 (exception): sema saw no qualifier, but there appears to be one! 557 // This can happen e.g. in incomplete macro expansions. Use heuristics. 558 if (!HeuristicPrefix.Qualifier.empty()) { 559 vlog("Sema said no scope specifier, but we saw {0} in the source code", 560 HeuristicPrefix.Qualifier); 561 StringRef SpelledSpecifier = HeuristicPrefix.Qualifier; 562 if (SpelledSpecifier.consume_front("::")) 563 Scopes.AccessibleScopes = {""}; 564 Scopes.UnresolvedQualifier = SpelledSpecifier; 565 return {Scopes.scopesForIndexQuery(), false}; 566 } 567 // The enclosing namespace must be first, it gets a quality boost. 568 std::vector<std::string> EnclosingAtFront; 569 std::string EnclosingScope = printNamespaceScope(*CCSema.CurContext); 570 EnclosingAtFront.push_back(EnclosingScope); 571 for (auto &S : Scopes.scopesForIndexQuery()) { 572 if (EnclosingScope != S) 573 EnclosingAtFront.push_back(std::move(S)); 574 } 575 // Allow AllScopes completion as there is no explicit scope qualifier. 576 return {EnclosingAtFront, Opts.AllScopes}; 577 } 578 // Case 3: sema saw and resolved a scope qualifier. 579 if (SemaSpecifier && SemaSpecifier->isValid()) 580 return {Scopes.scopesForIndexQuery(), false}; 581 582 // Case 4: There was a qualifier, and Sema didn't resolve it. 583 Scopes.AccessibleScopes.push_back(""); // Make sure global scope is included. 584 llvm::StringRef SpelledSpecifier = Lexer::getSourceText( 585 CharSourceRange::getCharRange(SemaSpecifier->getRange()), 586 CCSema.SourceMgr, clang::LangOptions()); 587 if (SpelledSpecifier.consume_front("::")) 588 Scopes.AccessibleScopes = {""}; 589 Scopes.UnresolvedQualifier = SpelledSpecifier; 590 // Sema excludes the trailing "::". 591 if (!Scopes.UnresolvedQualifier->empty()) 592 *Scopes.UnresolvedQualifier += "::"; 593 594 return {Scopes.scopesForIndexQuery(), false}; 595 } 596 597 // Should we perform index-based completion in a context of the specified kind? 598 // FIXME: consider allowing completion, but restricting the result types. 599 bool contextAllowsIndex(enum CodeCompletionContext::Kind K) { 600 switch (K) { 601 case CodeCompletionContext::CCC_TopLevel: 602 case CodeCompletionContext::CCC_ObjCInterface: 603 case CodeCompletionContext::CCC_ObjCImplementation: 604 case CodeCompletionContext::CCC_ObjCIvarList: 605 case CodeCompletionContext::CCC_ClassStructUnion: 606 case CodeCompletionContext::CCC_Statement: 607 case CodeCompletionContext::CCC_Expression: 608 case CodeCompletionContext::CCC_ObjCMessageReceiver: 609 case CodeCompletionContext::CCC_EnumTag: 610 case CodeCompletionContext::CCC_UnionTag: 611 case CodeCompletionContext::CCC_ClassOrStructTag: 612 case CodeCompletionContext::CCC_ObjCProtocolName: 613 case CodeCompletionContext::CCC_Namespace: 614 case CodeCompletionContext::CCC_Type: 615 case CodeCompletionContext::CCC_ParenthesizedExpression: 616 case CodeCompletionContext::CCC_ObjCInterfaceName: 617 case CodeCompletionContext::CCC_ObjCCategoryName: 618 case CodeCompletionContext::CCC_Symbol: 619 case CodeCompletionContext::CCC_SymbolOrNewName: 620 return true; 621 case CodeCompletionContext::CCC_OtherWithMacros: 622 case CodeCompletionContext::CCC_DotMemberAccess: 623 case CodeCompletionContext::CCC_ArrowMemberAccess: 624 case CodeCompletionContext::CCC_ObjCPropertyAccess: 625 case CodeCompletionContext::CCC_MacroName: 626 case CodeCompletionContext::CCC_MacroNameUse: 627 case CodeCompletionContext::CCC_PreprocessorExpression: 628 case CodeCompletionContext::CCC_PreprocessorDirective: 629 case CodeCompletionContext::CCC_SelectorName: 630 case CodeCompletionContext::CCC_TypeQualifiers: 631 case CodeCompletionContext::CCC_ObjCInstanceMessage: 632 case CodeCompletionContext::CCC_ObjCClassMessage: 633 case CodeCompletionContext::CCC_IncludedFile: 634 // FIXME: Provide identifier based completions for the following contexts: 635 case CodeCompletionContext::CCC_Other: // Be conservative. 636 case CodeCompletionContext::CCC_NaturalLanguage: 637 case CodeCompletionContext::CCC_Recovery: 638 case CodeCompletionContext::CCC_NewName: 639 return false; 640 } 641 llvm_unreachable("unknown code completion context"); 642 } 643 644 static bool isInjectedClass(const NamedDecl &D) { 645 if (auto *R = dyn_cast_or_null<RecordDecl>(&D)) 646 if (R->isInjectedClassName()) 647 return true; 648 return false; 649 } 650 651 // Some member calls are blacklisted because they're so rarely useful. 652 static bool isBlacklistedMember(const NamedDecl &D) { 653 // Destructor completion is rarely useful, and works inconsistently. 654 // (s.^ completes ~string, but s.~st^ is an error). 655 if (D.getKind() == Decl::CXXDestructor) 656 return true; 657 // Injected name may be useful for A::foo(), but who writes A::A::foo()? 658 if (isInjectedClass(D)) 659 return true; 660 // Explicit calls to operators are also rare. 661 auto NameKind = D.getDeclName().getNameKind(); 662 if (NameKind == DeclarationName::CXXOperatorName || 663 NameKind == DeclarationName::CXXLiteralOperatorName || 664 NameKind == DeclarationName::CXXConversionFunctionName) 665 return true; 666 return false; 667 } 668 669 // The CompletionRecorder captures Sema code-complete output, including context. 670 // It filters out ignored results (but doesn't apply fuzzy-filtering yet). 671 // It doesn't do scoring or conversion to CompletionItem yet, as we want to 672 // merge with index results first. 673 // Generally the fields and methods of this object should only be used from 674 // within the callback. 675 struct CompletionRecorder : public CodeCompleteConsumer { 676 CompletionRecorder(const CodeCompleteOptions &Opts, 677 llvm::unique_function<void()> ResultsCallback) 678 : CodeCompleteConsumer(Opts.getClangCompleteOpts()), 679 CCContext(CodeCompletionContext::CCC_Other), Opts(Opts), 680 CCAllocator(std::make_shared<GlobalCodeCompletionAllocator>()), 681 CCTUInfo(CCAllocator), ResultsCallback(std::move(ResultsCallback)) { 682 assert(this->ResultsCallback); 683 } 684 685 std::vector<CodeCompletionResult> Results; 686 CodeCompletionContext CCContext; 687 Sema *CCSema = nullptr; // Sema that created the results. 688 // FIXME: Sema is scary. Can we store ASTContext and Preprocessor, instead? 689 690 void ProcessCodeCompleteResults(class Sema &S, CodeCompletionContext Context, 691 CodeCompletionResult *InResults, 692 unsigned NumResults) override final { 693 // Results from recovery mode are generally useless, and the callback after 694 // recovery (if any) is usually more interesting. To make sure we handle the 695 // future callback from sema, we just ignore all callbacks in recovery mode, 696 // as taking only results from recovery mode results in poor completion 697 // results. 698 // FIXME: in case there is no future sema completion callback after the 699 // recovery mode, we might still want to provide some results (e.g. trivial 700 // identifier-based completion). 701 if (Context.getKind() == CodeCompletionContext::CCC_Recovery) { 702 log("Code complete: Ignoring sema code complete callback with Recovery " 703 "context."); 704 return; 705 } 706 // If a callback is called without any sema result and the context does not 707 // support index-based completion, we simply skip it to give way to 708 // potential future callbacks with results. 709 if (NumResults == 0 && !contextAllowsIndex(Context.getKind())) 710 return; 711 if (CCSema) { 712 log("Multiple code complete callbacks (parser backtracked?). " 713 "Dropping results from context {0}, keeping results from {1}.", 714 getCompletionKindString(Context.getKind()), 715 getCompletionKindString(this->CCContext.getKind())); 716 return; 717 } 718 // Record the completion context. 719 CCSema = &S; 720 CCContext = Context; 721 722 // Retain the results we might want. 723 for (unsigned I = 0; I < NumResults; ++I) { 724 auto &Result = InResults[I]; 725 // Class members that are shadowed by subclasses are usually noise. 726 if (Result.Hidden && Result.Declaration && 727 Result.Declaration->isCXXClassMember()) 728 continue; 729 if (!Opts.IncludeIneligibleResults && 730 (Result.Availability == CXAvailability_NotAvailable || 731 Result.Availability == CXAvailability_NotAccessible)) 732 continue; 733 if (Result.Declaration && 734 !Context.getBaseType().isNull() // is this a member-access context? 735 && isBlacklistedMember(*Result.Declaration)) 736 continue; 737 // Skip injected class name when no class scope is not explicitly set. 738 // E.g. show injected A::A in `using A::A^` but not in "A^". 739 if (Result.Declaration && !Context.getCXXScopeSpecifier().hasValue() && 740 isInjectedClass(*Result.Declaration)) 741 continue; 742 // We choose to never append '::' to completion results in clangd. 743 Result.StartsNestedNameSpecifier = false; 744 Results.push_back(Result); 745 } 746 ResultsCallback(); 747 } 748 749 CodeCompletionAllocator &getAllocator() override { return *CCAllocator; } 750 CodeCompletionTUInfo &getCodeCompletionTUInfo() override { return CCTUInfo; } 751 752 // Returns the filtering/sorting name for Result, which must be from Results. 753 // Returned string is owned by this recorder (or the AST). 754 llvm::StringRef getName(const CodeCompletionResult &Result) { 755 switch (Result.Kind) { 756 case CodeCompletionResult::RK_Declaration: 757 if (auto *ID = Result.Declaration->getIdentifier()) 758 return ID->getName(); 759 break; 760 case CodeCompletionResult::RK_Keyword: 761 return Result.Keyword; 762 case CodeCompletionResult::RK_Macro: 763 return Result.Macro->getName(); 764 case CodeCompletionResult::RK_Pattern: 765 return Result.Pattern->getTypedText(); 766 } 767 auto *CCS = codeCompletionString(Result); 768 return CCS->getTypedText(); 769 } 770 771 // Build a CodeCompletion string for R, which must be from Results. 772 // The CCS will be owned by this recorder. 773 CodeCompletionString *codeCompletionString(const CodeCompletionResult &R) { 774 // CodeCompletionResult doesn't seem to be const-correct. We own it, anyway. 775 return const_cast<CodeCompletionResult &>(R).CreateCodeCompletionString( 776 *CCSema, CCContext, *CCAllocator, CCTUInfo, 777 /*IncludeBriefComments=*/false); 778 } 779 780 private: 781 CodeCompleteOptions Opts; 782 std::shared_ptr<GlobalCodeCompletionAllocator> CCAllocator; 783 CodeCompletionTUInfo CCTUInfo; 784 llvm::unique_function<void()> ResultsCallback; 785 }; 786 787 struct ScoredSignature { 788 // When set, requires documentation to be requested from the index with this 789 // ID. 790 llvm::Optional<SymbolID> IDForDoc; 791 SignatureInformation Signature; 792 SignatureQualitySignals Quality; 793 }; 794 795 class SignatureHelpCollector final : public CodeCompleteConsumer { 796 public: 797 SignatureHelpCollector(const clang::CodeCompleteOptions &CodeCompleteOpts, 798 const SymbolIndex *Index, SignatureHelp &SigHelp) 799 : CodeCompleteConsumer(CodeCompleteOpts), SigHelp(SigHelp), 800 Allocator(std::make_shared<clang::GlobalCodeCompletionAllocator>()), 801 CCTUInfo(Allocator), Index(Index) {} 802 803 void ProcessOverloadCandidates(Sema &S, unsigned CurrentArg, 804 OverloadCandidate *Candidates, 805 unsigned NumCandidates, 806 SourceLocation OpenParLoc) override { 807 assert(!OpenParLoc.isInvalid()); 808 SourceManager &SrcMgr = S.getSourceManager(); 809 OpenParLoc = SrcMgr.getFileLoc(OpenParLoc); 810 if (SrcMgr.isInMainFile(OpenParLoc)) 811 SigHelp.argListStart = sourceLocToPosition(SrcMgr, OpenParLoc); 812 else 813 elog("Location oustide main file in signature help: {0}", 814 OpenParLoc.printToString(SrcMgr)); 815 816 std::vector<ScoredSignature> ScoredSignatures; 817 SigHelp.signatures.reserve(NumCandidates); 818 ScoredSignatures.reserve(NumCandidates); 819 // FIXME(rwols): How can we determine the "active overload candidate"? 820 // Right now the overloaded candidates seem to be provided in a "best fit" 821 // order, so I'm not too worried about this. 822 SigHelp.activeSignature = 0; 823 assert(CurrentArg <= (unsigned)std::numeric_limits<int>::max() && 824 "too many arguments"); 825 SigHelp.activeParameter = static_cast<int>(CurrentArg); 826 for (unsigned I = 0; I < NumCandidates; ++I) { 827 OverloadCandidate Candidate = Candidates[I]; 828 // We want to avoid showing instantiated signatures, because they may be 829 // long in some cases (e.g. when 'T' is substituted with 'std::string', we 830 // would get 'std::basic_string<char>'). 831 if (auto *Func = Candidate.getFunction()) { 832 if (auto *Pattern = Func->getTemplateInstantiationPattern()) 833 Candidate = OverloadCandidate(Pattern); 834 } 835 836 const auto *CCS = Candidate.CreateSignatureString( 837 CurrentArg, S, *Allocator, CCTUInfo, true); 838 assert(CCS && "Expected the CodeCompletionString to be non-null"); 839 ScoredSignatures.push_back(processOverloadCandidate( 840 Candidate, *CCS, 841 Candidate.getFunction() 842 ? getDeclComment(S.getASTContext(), *Candidate.getFunction()) 843 : "")); 844 } 845 846 // Sema does not load the docs from the preamble, so we need to fetch extra 847 // docs from the index instead. 848 llvm::DenseMap<SymbolID, std::string> FetchedDocs; 849 if (Index) { 850 LookupRequest IndexRequest; 851 for (const auto &S : ScoredSignatures) { 852 if (!S.IDForDoc) 853 continue; 854 IndexRequest.IDs.insert(*S.IDForDoc); 855 } 856 Index->lookup(IndexRequest, [&](const Symbol &S) { 857 if (!S.Documentation.empty()) 858 FetchedDocs[S.ID] = S.Documentation; 859 }); 860 log("SigHelp: requested docs for {0} symbols from the index, got {1} " 861 "symbols with non-empty docs in the response", 862 IndexRequest.IDs.size(), FetchedDocs.size()); 863 } 864 865 llvm::sort(ScoredSignatures, [](const ScoredSignature &L, 866 const ScoredSignature &R) { 867 // Ordering follows: 868 // - Less number of parameters is better. 869 // - Function is better than FunctionType which is better than 870 // Function Template. 871 // - High score is better. 872 // - Shorter signature is better. 873 // - Alphebatically smaller is better. 874 if (L.Quality.NumberOfParameters != R.Quality.NumberOfParameters) 875 return L.Quality.NumberOfParameters < R.Quality.NumberOfParameters; 876 if (L.Quality.NumberOfOptionalParameters != 877 R.Quality.NumberOfOptionalParameters) 878 return L.Quality.NumberOfOptionalParameters < 879 R.Quality.NumberOfOptionalParameters; 880 if (L.Quality.Kind != R.Quality.Kind) { 881 using OC = CodeCompleteConsumer::OverloadCandidate; 882 switch (L.Quality.Kind) { 883 case OC::CK_Function: 884 return true; 885 case OC::CK_FunctionType: 886 return R.Quality.Kind != OC::CK_Function; 887 case OC::CK_FunctionTemplate: 888 return false; 889 } 890 llvm_unreachable("Unknown overload candidate type."); 891 } 892 if (L.Signature.label.size() != R.Signature.label.size()) 893 return L.Signature.label.size() < R.Signature.label.size(); 894 return L.Signature.label < R.Signature.label; 895 }); 896 897 for (auto &SS : ScoredSignatures) { 898 auto IndexDocIt = 899 SS.IDForDoc ? FetchedDocs.find(*SS.IDForDoc) : FetchedDocs.end(); 900 if (IndexDocIt != FetchedDocs.end()) 901 SS.Signature.documentation = IndexDocIt->second; 902 903 SigHelp.signatures.push_back(std::move(SS.Signature)); 904 } 905 } 906 907 GlobalCodeCompletionAllocator &getAllocator() override { return *Allocator; } 908 909 CodeCompletionTUInfo &getCodeCompletionTUInfo() override { return CCTUInfo; } 910 911 private: 912 void processParameterChunk(llvm::StringRef ChunkText, 913 SignatureInformation &Signature) const { 914 // (!) this is O(n), should still be fast compared to building ASTs. 915 unsigned ParamStartOffset = lspLength(Signature.label); 916 unsigned ParamEndOffset = ParamStartOffset + lspLength(ChunkText); 917 // A piece of text that describes the parameter that corresponds to 918 // the code-completion location within a function call, message send, 919 // macro invocation, etc. 920 Signature.label += ChunkText; 921 ParameterInformation Info; 922 Info.labelOffsets.emplace(ParamStartOffset, ParamEndOffset); 923 // FIXME: only set 'labelOffsets' when all clients migrate out of it. 924 Info.labelString = ChunkText; 925 926 Signature.parameters.push_back(std::move(Info)); 927 } 928 929 void processOptionalChunk(const CodeCompletionString &CCS, 930 SignatureInformation &Signature, 931 SignatureQualitySignals &Signal) const { 932 for (const auto &Chunk : CCS) { 933 switch (Chunk.Kind) { 934 case CodeCompletionString::CK_Optional: 935 assert(Chunk.Optional && 936 "Expected the optional code completion string to be non-null."); 937 processOptionalChunk(*Chunk.Optional, Signature, Signal); 938 break; 939 case CodeCompletionString::CK_VerticalSpace: 940 break; 941 case CodeCompletionString::CK_CurrentParameter: 942 case CodeCompletionString::CK_Placeholder: 943 processParameterChunk(Chunk.Text, Signature); 944 Signal.NumberOfOptionalParameters++; 945 break; 946 default: 947 Signature.label += Chunk.Text; 948 break; 949 } 950 } 951 } 952 953 // FIXME(ioeric): consider moving CodeCompletionString logic here to 954 // CompletionString.h. 955 ScoredSignature processOverloadCandidate(const OverloadCandidate &Candidate, 956 const CodeCompletionString &CCS, 957 llvm::StringRef DocComment) const { 958 SignatureInformation Signature; 959 SignatureQualitySignals Signal; 960 const char *ReturnType = nullptr; 961 962 Signature.documentation = formatDocumentation(CCS, DocComment); 963 Signal.Kind = Candidate.getKind(); 964 965 for (const auto &Chunk : CCS) { 966 switch (Chunk.Kind) { 967 case CodeCompletionString::CK_ResultType: 968 // A piece of text that describes the type of an entity or, 969 // for functions and methods, the return type. 970 assert(!ReturnType && "Unexpected CK_ResultType"); 971 ReturnType = Chunk.Text; 972 break; 973 case CodeCompletionString::CK_CurrentParameter: 974 case CodeCompletionString::CK_Placeholder: 975 processParameterChunk(Chunk.Text, Signature); 976 Signal.NumberOfParameters++; 977 break; 978 case CodeCompletionString::CK_Optional: { 979 // The rest of the parameters are defaulted/optional. 980 assert(Chunk.Optional && 981 "Expected the optional code completion string to be non-null."); 982 processOptionalChunk(*Chunk.Optional, Signature, Signal); 983 break; 984 } 985 case CodeCompletionString::CK_VerticalSpace: 986 break; 987 default: 988 Signature.label += Chunk.Text; 989 break; 990 } 991 } 992 if (ReturnType) { 993 Signature.label += " -> "; 994 Signature.label += ReturnType; 995 } 996 dlog("Signal for {0}: {1}", Signature, Signal); 997 ScoredSignature Result; 998 Result.Signature = std::move(Signature); 999 Result.Quality = Signal; 1000 Result.IDForDoc = 1001 Result.Signature.documentation.empty() && Candidate.getFunction() 1002 ? clangd::getSymbolID(Candidate.getFunction()) 1003 : None; 1004 return Result; 1005 } 1006 1007 SignatureHelp &SigHelp; 1008 std::shared_ptr<clang::GlobalCodeCompletionAllocator> Allocator; 1009 CodeCompletionTUInfo CCTUInfo; 1010 const SymbolIndex *Index; 1011 }; // SignatureHelpCollector 1012 1013 struct SemaCompleteInput { 1014 PathRef FileName; 1015 const tooling::CompileCommand &Command; 1016 const PreambleData *Preamble; 1017 llvm::StringRef Contents; 1018 size_t Offset; 1019 llvm::IntrusiveRefCntPtr<llvm::vfs::FileSystem> VFS; 1020 }; 1021 1022 void loadMainFilePreambleMacros(const Preprocessor &PP, 1023 const PreambleData &Preamble) { 1024 // The ExternalPreprocessorSource has our macros, if we know where to look. 1025 // We can read all the macros using PreambleMacros->ReadDefinedMacros(), 1026 // but this includes transitively included files, so may deserialize a lot. 1027 ExternalPreprocessorSource *PreambleMacros = PP.getExternalSource(); 1028 // As we have the names of the macros, we can look up their IdentifierInfo 1029 // and then use this to load just the macros we want. 1030 IdentifierInfoLookup *PreambleIdentifiers = 1031 PP.getIdentifierTable().getExternalIdentifierLookup(); 1032 if (!PreambleIdentifiers || !PreambleMacros) 1033 return; 1034 for (const auto &MacroName : Preamble.MainFileMacros) 1035 if (auto *II = PreambleIdentifiers->get(MacroName)) 1036 if (II->isOutOfDate()) 1037 PreambleMacros->updateOutOfDateIdentifier(*II); 1038 } 1039 1040 // Invokes Sema code completion on a file. 1041 // If \p Includes is set, it will be updated based on the compiler invocation. 1042 bool semaCodeComplete(std::unique_ptr<CodeCompleteConsumer> Consumer, 1043 const clang::CodeCompleteOptions &Options, 1044 const SemaCompleteInput &Input, 1045 IncludeStructure *Includes = nullptr) { 1046 trace::Span Tracer("Sema completion"); 1047 llvm::IntrusiveRefCntPtr<llvm::vfs::FileSystem> VFS = Input.VFS; 1048 if (Input.Preamble && Input.Preamble->StatCache) 1049 VFS = Input.Preamble->StatCache->getConsumingFS(std::move(VFS)); 1050 ParseInputs ParseInput; 1051 ParseInput.CompileCommand = Input.Command; 1052 ParseInput.FS = VFS; 1053 ParseInput.Contents = Input.Contents; 1054 ParseInput.Opts = ParseOptions(); 1055 auto CI = buildCompilerInvocation(ParseInput); 1056 if (!CI) { 1057 elog("Couldn't create CompilerInvocation"); 1058 return false; 1059 } 1060 auto &FrontendOpts = CI->getFrontendOpts(); 1061 FrontendOpts.SkipFunctionBodies = true; 1062 // Disable typo correction in Sema. 1063 CI->getLangOpts()->SpellChecking = false; 1064 // Setup code completion. 1065 FrontendOpts.CodeCompleteOpts = Options; 1066 FrontendOpts.CodeCompletionAt.FileName = Input.FileName; 1067 std::tie(FrontendOpts.CodeCompletionAt.Line, 1068 FrontendOpts.CodeCompletionAt.Column) = 1069 offsetToClangLineColumn(Input.Contents, Input.Offset); 1070 1071 std::unique_ptr<llvm::MemoryBuffer> ContentsBuffer = 1072 llvm::MemoryBuffer::getMemBufferCopy(Input.Contents, Input.FileName); 1073 // The diagnostic options must be set before creating a CompilerInstance. 1074 CI->getDiagnosticOpts().IgnoreWarnings = true; 1075 // We reuse the preamble whether it's valid or not. This is a 1076 // correctness/performance tradeoff: building without a preamble is slow, and 1077 // completion is latency-sensitive. 1078 // However, if we're completing *inside* the preamble section of the draft, 1079 // overriding the preamble will break sema completion. Fortunately we can just 1080 // skip all includes in this case; these completions are really simple. 1081 PreambleBounds PreambleRegion = 1082 ComputePreambleBounds(*CI->getLangOpts(), ContentsBuffer.get(), 0); 1083 bool CompletingInPreamble = PreambleRegion.Size > Input.Offset; 1084 // NOTE: we must call BeginSourceFile after prepareCompilerInstance. Otherwise 1085 // the remapped buffers do not get freed. 1086 IgnoreDiagnostics DummyDiagsConsumer; 1087 auto Clang = prepareCompilerInstance( 1088 std::move(CI), 1089 (Input.Preamble && !CompletingInPreamble) ? &Input.Preamble->Preamble 1090 : nullptr, 1091 std::move(ContentsBuffer), std::move(VFS), DummyDiagsConsumer); 1092 Clang->getPreprocessorOpts().SingleFileParseMode = CompletingInPreamble; 1093 Clang->setCodeCompletionConsumer(Consumer.release()); 1094 1095 SyntaxOnlyAction Action; 1096 if (!Action.BeginSourceFile(*Clang, Clang->getFrontendOpts().Inputs[0])) { 1097 log("BeginSourceFile() failed when running codeComplete for {0}", 1098 Input.FileName); 1099 return false; 1100 } 1101 // Macros can be defined within the preamble region of the main file. 1102 // They don't fall nicely into our index/Sema dichotomy: 1103 // - they're not indexed for completion (they're not available across files) 1104 // - but Sema code complete won't see them: as part of the preamble, they're 1105 // deserialized only when mentioned. 1106 // Force them to be deserialized so SemaCodeComplete sees them. 1107 if (Input.Preamble) 1108 loadMainFilePreambleMacros(Clang->getPreprocessor(), *Input.Preamble); 1109 if (Includes) 1110 Clang->getPreprocessor().addPPCallbacks( 1111 collectIncludeStructureCallback(Clang->getSourceManager(), Includes)); 1112 if (llvm::Error Err = Action.Execute()) { 1113 log("Execute() failed when running codeComplete for {0}: {1}", 1114 Input.FileName, toString(std::move(Err))); 1115 return false; 1116 } 1117 Action.EndSourceFile(); 1118 1119 return true; 1120 } 1121 1122 // Should we allow index completions in the specified context? 1123 bool allowIndex(CodeCompletionContext &CC) { 1124 if (!contextAllowsIndex(CC.getKind())) 1125 return false; 1126 // We also avoid ClassName::bar (but allow namespace::bar). 1127 auto Scope = CC.getCXXScopeSpecifier(); 1128 if (!Scope) 1129 return true; 1130 NestedNameSpecifier *NameSpec = (*Scope)->getScopeRep(); 1131 if (!NameSpec) 1132 return true; 1133 // We only query the index when qualifier is a namespace. 1134 // If it's a class, we rely solely on sema completions. 1135 switch (NameSpec->getKind()) { 1136 case NestedNameSpecifier::Global: 1137 case NestedNameSpecifier::Namespace: 1138 case NestedNameSpecifier::NamespaceAlias: 1139 return true; 1140 case NestedNameSpecifier::Super: 1141 case NestedNameSpecifier::TypeSpec: 1142 case NestedNameSpecifier::TypeSpecWithTemplate: 1143 // Unresolved inside a template. 1144 case NestedNameSpecifier::Identifier: 1145 return false; 1146 } 1147 llvm_unreachable("invalid NestedNameSpecifier kind"); 1148 } 1149 1150 std::future<SymbolSlab> startAsyncFuzzyFind(const SymbolIndex &Index, 1151 const FuzzyFindRequest &Req) { 1152 return runAsync<SymbolSlab>([&Index, Req]() { 1153 trace::Span Tracer("Async fuzzyFind"); 1154 SymbolSlab::Builder Syms; 1155 Index.fuzzyFind(Req, [&Syms](const Symbol &Sym) { Syms.insert(Sym); }); 1156 return std::move(Syms).build(); 1157 }); 1158 } 1159 1160 // Creates a `FuzzyFindRequest` based on the cached index request from the 1161 // last completion, if any, and the speculated completion filter text in the 1162 // source code. 1163 FuzzyFindRequest speculativeFuzzyFindRequestForCompletion( 1164 FuzzyFindRequest CachedReq, const CompletionPrefix &HeuristicPrefix) { 1165 CachedReq.Query = HeuristicPrefix.Name; 1166 return CachedReq; 1167 } 1168 1169 // Runs Sema-based (AST) and Index-based completion, returns merged results. 1170 // 1171 // There are a few tricky considerations: 1172 // - the AST provides information needed for the index query (e.g. which 1173 // namespaces to search in). So Sema must start first. 1174 // - we only want to return the top results (Opts.Limit). 1175 // Building CompletionItems for everything else is wasteful, so we want to 1176 // preserve the "native" format until we're done with scoring. 1177 // - the data underlying Sema completion items is owned by the AST and various 1178 // other arenas, which must stay alive for us to build CompletionItems. 1179 // - we may get duplicate results from Sema and the Index, we need to merge. 1180 // 1181 // So we start Sema completion first, and do all our work in its callback. 1182 // We use the Sema context information to query the index. 1183 // Then we merge the two result sets, producing items that are Sema/Index/Both. 1184 // These items are scored, and the top N are synthesized into the LSP response. 1185 // Finally, we can clean up the data structures created by Sema completion. 1186 // 1187 // Main collaborators are: 1188 // - semaCodeComplete sets up the compiler machinery to run code completion. 1189 // - CompletionRecorder captures Sema completion results, including context. 1190 // - SymbolIndex (Opts.Index) provides index completion results as Symbols 1191 // - CompletionCandidates are the result of merging Sema and Index results. 1192 // Each candidate points to an underlying CodeCompletionResult (Sema), a 1193 // Symbol (Index), or both. It computes the result quality score. 1194 // CompletionCandidate also does conversion to CompletionItem (at the end). 1195 // - FuzzyMatcher scores how the candidate matches the partial identifier. 1196 // This score is combined with the result quality score for the final score. 1197 // - TopN determines the results with the best score. 1198 class CodeCompleteFlow { 1199 PathRef FileName; 1200 IncludeStructure Includes; // Complete once the compiler runs. 1201 SpeculativeFuzzyFind *SpecFuzzyFind; // Can be nullptr. 1202 const CodeCompleteOptions &Opts; 1203 1204 // Sema takes ownership of Recorder. Recorder is valid until Sema cleanup. 1205 CompletionRecorder *Recorder = nullptr; 1206 CodeCompletionContext::Kind CCContextKind = CodeCompletionContext::CCC_Other; 1207 // Counters for logging. 1208 int NSema = 0, NIndex = 0, NSemaAndIndex = 0, NIdent = 0; 1209 bool Incomplete = false; // Would more be available with a higher limit? 1210 CompletionPrefix HeuristicPrefix; 1211 llvm::Optional<FuzzyMatcher> Filter; // Initialized once Sema runs. 1212 Range ReplacedRange; 1213 std::vector<std::string> QueryScopes; // Initialized once Sema runs. 1214 // Initialized once QueryScopes is initialized, if there are scopes. 1215 llvm::Optional<ScopeDistance> ScopeProximity; 1216 llvm::Optional<OpaqueType> PreferredType; // Initialized once Sema runs. 1217 // Whether to query symbols from any scope. Initialized once Sema runs. 1218 bool AllScopes = false; 1219 llvm::StringSet<> ContextWords; 1220 // Include-insertion and proximity scoring rely on the include structure. 1221 // This is available after Sema has run. 1222 llvm::Optional<IncludeInserter> Inserter; // Available during runWithSema. 1223 llvm::Optional<URIDistance> FileProximity; // Initialized once Sema runs. 1224 /// Speculative request based on the cached request and the filter text before 1225 /// the cursor. 1226 /// Initialized right before sema run. This is only set if `SpecFuzzyFind` is 1227 /// set and contains a cached request. 1228 llvm::Optional<FuzzyFindRequest> SpecReq; 1229 1230 public: 1231 // A CodeCompleteFlow object is only useful for calling run() exactly once. 1232 CodeCompleteFlow(PathRef FileName, const IncludeStructure &Includes, 1233 SpeculativeFuzzyFind *SpecFuzzyFind, 1234 const CodeCompleteOptions &Opts) 1235 : FileName(FileName), Includes(Includes), SpecFuzzyFind(SpecFuzzyFind), 1236 Opts(Opts) {} 1237 1238 CodeCompleteResult run(const SemaCompleteInput &SemaCCInput) && { 1239 trace::Span Tracer("CodeCompleteFlow"); 1240 HeuristicPrefix = 1241 guessCompletionPrefix(SemaCCInput.Contents, SemaCCInput.Offset); 1242 populateContextWords(SemaCCInput.Contents); 1243 if (Opts.Index && SpecFuzzyFind && SpecFuzzyFind->CachedReq.hasValue()) { 1244 assert(!SpecFuzzyFind->Result.valid()); 1245 SpecReq = speculativeFuzzyFindRequestForCompletion( 1246 *SpecFuzzyFind->CachedReq, HeuristicPrefix); 1247 SpecFuzzyFind->Result = startAsyncFuzzyFind(*Opts.Index, *SpecReq); 1248 } 1249 1250 // We run Sema code completion first. It builds an AST and calculates: 1251 // - completion results based on the AST. 1252 // - partial identifier and context. We need these for the index query. 1253 CodeCompleteResult Output; 1254 auto RecorderOwner = llvm::make_unique<CompletionRecorder>(Opts, [&]() { 1255 assert(Recorder && "Recorder is not set"); 1256 CCContextKind = Recorder->CCContext.getKind(); 1257 auto Style = getFormatStyleForFile( 1258 SemaCCInput.FileName, SemaCCInput.Contents, SemaCCInput.VFS.get()); 1259 // If preprocessor was run, inclusions from preprocessor callback should 1260 // already be added to Includes. 1261 Inserter.emplace( 1262 SemaCCInput.FileName, SemaCCInput.Contents, Style, 1263 SemaCCInput.Command.Directory, 1264 &Recorder->CCSema->getPreprocessor().getHeaderSearchInfo()); 1265 for (const auto &Inc : Includes.MainFileIncludes) 1266 Inserter->addExisting(Inc); 1267 1268 // Most of the cost of file proximity is in initializing the FileDistance 1269 // structures based on the observed includes, once per query. Conceptually 1270 // that happens here (though the per-URI-scheme initialization is lazy). 1271 // The per-result proximity scoring is (amortized) very cheap. 1272 FileDistanceOptions ProxOpts{}; // Use defaults. 1273 const auto &SM = Recorder->CCSema->getSourceManager(); 1274 llvm::StringMap<SourceParams> ProxSources; 1275 for (auto &Entry : Includes.includeDepth( 1276 SM.getFileEntryForID(SM.getMainFileID())->getName())) { 1277 auto &Source = ProxSources[Entry.getKey()]; 1278 Source.Cost = Entry.getValue() * ProxOpts.IncludeCost; 1279 // Symbols near our transitive includes are good, but only consider 1280 // things in the same directory or below it. Otherwise there can be 1281 // many false positives. 1282 if (Entry.getValue() > 0) 1283 Source.MaxUpTraversals = 1; 1284 } 1285 FileProximity.emplace(ProxSources, ProxOpts); 1286 1287 Output = runWithSema(); 1288 Inserter.reset(); // Make sure this doesn't out-live Clang. 1289 SPAN_ATTACH(Tracer, "sema_completion_kind", 1290 getCompletionKindString(CCContextKind)); 1291 log("Code complete: sema context {0}, query scopes [{1}] (AnyScope={2}), " 1292 "expected type {3}", 1293 getCompletionKindString(CCContextKind), 1294 llvm::join(QueryScopes.begin(), QueryScopes.end(), ","), AllScopes, 1295 PreferredType ? Recorder->CCContext.getPreferredType().getAsString() 1296 : "<none>"); 1297 }); 1298 1299 Recorder = RecorderOwner.get(); 1300 1301 semaCodeComplete(std::move(RecorderOwner), Opts.getClangCompleteOpts(), 1302 SemaCCInput, &Includes); 1303 logResults(Output, Tracer); 1304 return Output; 1305 } 1306 1307 void logResults(const CodeCompleteResult &Output, const trace::Span &Tracer) { 1308 SPAN_ATTACH(Tracer, "sema_results", NSema); 1309 SPAN_ATTACH(Tracer, "index_results", NIndex); 1310 SPAN_ATTACH(Tracer, "merged_results", NSemaAndIndex); 1311 SPAN_ATTACH(Tracer, "identifier_results", NIdent); 1312 SPAN_ATTACH(Tracer, "returned_results", int64_t(Output.Completions.size())); 1313 SPAN_ATTACH(Tracer, "incomplete", Output.HasMore); 1314 log("Code complete: {0} results from Sema, {1} from Index, " 1315 "{2} matched, {3} from identifiers, {4} returned{5}.", 1316 NSema, NIndex, NSemaAndIndex, NIdent, Output.Completions.size(), 1317 Output.HasMore ? " (incomplete)" : ""); 1318 assert(!Opts.Limit || Output.Completions.size() <= Opts.Limit); 1319 // We don't assert that isIncomplete means we hit a limit. 1320 // Indexes may choose to impose their own limits even if we don't have one. 1321 } 1322 1323 CodeCompleteResult 1324 runWithoutSema(llvm::StringRef Content, size_t Offset, 1325 llvm::IntrusiveRefCntPtr<llvm::vfs::FileSystem> VFS) && { 1326 trace::Span Tracer("CodeCompleteWithoutSema"); 1327 // Fill in fields normally set by runWithSema() 1328 HeuristicPrefix = guessCompletionPrefix(Content, Offset); 1329 populateContextWords(Content); 1330 CCContextKind = CodeCompletionContext::CCC_Recovery; 1331 Filter = FuzzyMatcher(HeuristicPrefix.Name); 1332 auto Pos = offsetToPosition(Content, Offset); 1333 ReplacedRange.start = ReplacedRange.end = Pos; 1334 ReplacedRange.start.character -= HeuristicPrefix.Name.size(); 1335 1336 llvm::StringMap<SourceParams> ProxSources; 1337 ProxSources[FileName].Cost = 0; 1338 FileProximity.emplace(ProxSources); 1339 1340 auto Style = getFormatStyleForFile(FileName, Content, VFS.get()); 1341 // This will only insert verbatim headers. 1342 Inserter.emplace(FileName, Content, Style, 1343 /*BuildDir=*/"", /*HeaderSearchInfo=*/nullptr); 1344 1345 auto Identifiers = collectIdentifiers(Content, Style); 1346 std::vector<RawIdentifier> IdentifierResults; 1347 for (const auto &IDAndCount : Identifiers) { 1348 RawIdentifier ID; 1349 ID.Name = IDAndCount.first(); 1350 ID.References = IDAndCount.second; 1351 // Avoid treating typed filter as an identifier. 1352 if (ID.Name == HeuristicPrefix.Name) 1353 --ID.References; 1354 if (ID.References > 0) 1355 IdentifierResults.push_back(std::move(ID)); 1356 } 1357 1358 // Simplified version of getQueryScopes(): 1359 // - accessible scopes are determined heuristically. 1360 // - all-scopes query if no qualifier was typed (and it's allowed). 1361 SpecifiedScope Scopes; 1362 Scopes.AccessibleScopes = 1363 visibleNamespaces(Content.take_front(Offset), Style); 1364 for (std::string &S : Scopes.AccessibleScopes) 1365 if (!S.empty()) 1366 S.append("::"); // visibleNamespaces doesn't include trailing ::. 1367 if (HeuristicPrefix.Qualifier.empty()) 1368 AllScopes = Opts.AllScopes; 1369 else if (HeuristicPrefix.Qualifier.startswith("::")) { 1370 Scopes.AccessibleScopes = {""}; 1371 Scopes.UnresolvedQualifier = HeuristicPrefix.Qualifier.drop_front(2); 1372 } else 1373 Scopes.UnresolvedQualifier = HeuristicPrefix.Qualifier; 1374 // First scope is the (modified) enclosing scope. 1375 QueryScopes = Scopes.scopesForIndexQuery(); 1376 ScopeProximity.emplace(QueryScopes); 1377 1378 SymbolSlab IndexResults = Opts.Index ? queryIndex() : SymbolSlab(); 1379 1380 CodeCompleteResult Output = toCodeCompleteResult(mergeResults( 1381 /*SemaResults=*/{}, IndexResults, IdentifierResults)); 1382 Output.RanParser = false; 1383 logResults(Output, Tracer); 1384 return Output; 1385 } 1386 1387 private: 1388 void populateContextWords(llvm::StringRef Content) { 1389 // Take last 3 lines before the completion point. 1390 unsigned RangeEnd = HeuristicPrefix.Qualifier.begin() - Content.data(), 1391 RangeBegin = RangeEnd; 1392 for (size_t I = 0; I < 3 && RangeBegin > 0; ++I) { 1393 auto PrevNL = Content.rfind('\n', RangeBegin - 1); 1394 if (PrevNL == StringRef::npos) { 1395 RangeBegin = 0; 1396 break; 1397 } 1398 RangeBegin = PrevNL + 1; 1399 } 1400 1401 ContextWords = collectWords(Content.slice(RangeBegin, RangeEnd)); 1402 dlog("Completion context words: {0}", 1403 llvm::join(ContextWords.keys(), ", ")); 1404 } 1405 1406 // This is called by run() once Sema code completion is done, but before the 1407 // Sema data structures are torn down. It does all the real work. 1408 CodeCompleteResult runWithSema() { 1409 const auto &CodeCompletionRange = CharSourceRange::getCharRange( 1410 Recorder->CCSema->getPreprocessor().getCodeCompletionTokenRange()); 1411 // When we are getting completions with an empty identifier, for example 1412 // std::vector<int> asdf; 1413 // asdf.^; 1414 // Then the range will be invalid and we will be doing insertion, use 1415 // current cursor position in such cases as range. 1416 if (CodeCompletionRange.isValid()) { 1417 ReplacedRange = halfOpenToRange(Recorder->CCSema->getSourceManager(), 1418 CodeCompletionRange); 1419 } else { 1420 const auto &Pos = sourceLocToPosition( 1421 Recorder->CCSema->getSourceManager(), 1422 Recorder->CCSema->getPreprocessor().getCodeCompletionLoc()); 1423 ReplacedRange.start = ReplacedRange.end = Pos; 1424 } 1425 Filter = FuzzyMatcher( 1426 Recorder->CCSema->getPreprocessor().getCodeCompletionFilter()); 1427 std::tie(QueryScopes, AllScopes) = getQueryScopes( 1428 Recorder->CCContext, *Recorder->CCSema, HeuristicPrefix, Opts); 1429 if (!QueryScopes.empty()) 1430 ScopeProximity.emplace(QueryScopes); 1431 PreferredType = 1432 OpaqueType::fromType(Recorder->CCSema->getASTContext(), 1433 Recorder->CCContext.getPreferredType()); 1434 // Sema provides the needed context to query the index. 1435 // FIXME: in addition to querying for extra/overlapping symbols, we should 1436 // explicitly request symbols corresponding to Sema results. 1437 // We can use their signals even if the index can't suggest them. 1438 // We must copy index results to preserve them, but there are at most Limit. 1439 auto IndexResults = (Opts.Index && allowIndex(Recorder->CCContext)) 1440 ? queryIndex() 1441 : SymbolSlab(); 1442 trace::Span Tracer("Populate CodeCompleteResult"); 1443 // Merge Sema and Index results, score them, and pick the winners. 1444 auto Top = 1445 mergeResults(Recorder->Results, IndexResults, /*Identifiers*/ {}); 1446 return toCodeCompleteResult(Top); 1447 } 1448 1449 CodeCompleteResult 1450 toCodeCompleteResult(const std::vector<ScoredBundle> &Scored) { 1451 CodeCompleteResult Output; 1452 1453 // Convert the results to final form, assembling the expensive strings. 1454 for (auto &C : Scored) { 1455 Output.Completions.push_back(toCodeCompletion(C.first)); 1456 Output.Completions.back().Score = C.second; 1457 Output.Completions.back().CompletionTokenRange = ReplacedRange; 1458 } 1459 Output.HasMore = Incomplete; 1460 Output.Context = CCContextKind; 1461 return Output; 1462 } 1463 1464 SymbolSlab queryIndex() { 1465 trace::Span Tracer("Query index"); 1466 SPAN_ATTACH(Tracer, "limit", int64_t(Opts.Limit)); 1467 1468 // Build the query. 1469 FuzzyFindRequest Req; 1470 if (Opts.Limit) 1471 Req.Limit = Opts.Limit; 1472 Req.Query = Filter->pattern(); 1473 Req.RestrictForCodeCompletion = true; 1474 Req.Scopes = QueryScopes; 1475 Req.AnyScope = AllScopes; 1476 // FIXME: we should send multiple weighted paths here. 1477 Req.ProximityPaths.push_back(FileName); 1478 if (PreferredType) 1479 Req.PreferredTypes.push_back(PreferredType->raw()); 1480 vlog("Code complete: fuzzyFind({0:2})", toJSON(Req)); 1481 1482 if (SpecFuzzyFind) 1483 SpecFuzzyFind->NewReq = Req; 1484 if (SpecFuzzyFind && SpecFuzzyFind->Result.valid() && (*SpecReq == Req)) { 1485 vlog("Code complete: speculative fuzzy request matches the actual index " 1486 "request. Waiting for the speculative index results."); 1487 SPAN_ATTACH(Tracer, "Speculative results", true); 1488 1489 trace::Span WaitSpec("Wait speculative results"); 1490 return SpecFuzzyFind->Result.get(); 1491 } 1492 1493 SPAN_ATTACH(Tracer, "Speculative results", false); 1494 1495 // Run the query against the index. 1496 SymbolSlab::Builder ResultsBuilder; 1497 if (Opts.Index->fuzzyFind( 1498 Req, [&](const Symbol &Sym) { ResultsBuilder.insert(Sym); })) 1499 Incomplete = true; 1500 return std::move(ResultsBuilder).build(); 1501 } 1502 1503 // Merges Sema and Index results where possible, to form CompletionCandidates. 1504 // \p Identifiers is raw idenfiers that can also be completion condidates. 1505 // Identifiers are not merged with results from index or sema. 1506 // Groups overloads if desired, to form CompletionCandidate::Bundles. The 1507 // bundles are scored and top results are returned, best to worst. 1508 std::vector<ScoredBundle> 1509 mergeResults(const std::vector<CodeCompletionResult> &SemaResults, 1510 const SymbolSlab &IndexResults, 1511 const std::vector<RawIdentifier> &IdentifierResults) { 1512 trace::Span Tracer("Merge and score results"); 1513 std::vector<CompletionCandidate::Bundle> Bundles; 1514 llvm::DenseMap<size_t, size_t> BundleLookup; 1515 auto AddToBundles = [&](const CodeCompletionResult *SemaResult, 1516 const Symbol *IndexResult, 1517 const RawIdentifier *IdentifierResult) { 1518 CompletionCandidate C; 1519 C.SemaResult = SemaResult; 1520 C.IndexResult = IndexResult; 1521 C.IdentifierResult = IdentifierResult; 1522 if (C.IndexResult) { 1523 C.Name = IndexResult->Name; 1524 C.RankedIncludeHeaders = getRankedIncludes(*C.IndexResult); 1525 } else if (C.SemaResult) { 1526 C.Name = Recorder->getName(*SemaResult); 1527 } else { 1528 assert(IdentifierResult); 1529 C.Name = IdentifierResult->Name; 1530 } 1531 if (auto OverloadSet = C.overloadSet(Opts)) { 1532 auto Ret = BundleLookup.try_emplace(OverloadSet, Bundles.size()); 1533 if (Ret.second) 1534 Bundles.emplace_back(); 1535 Bundles[Ret.first->second].push_back(std::move(C)); 1536 } else { 1537 Bundles.emplace_back(); 1538 Bundles.back().push_back(std::move(C)); 1539 } 1540 }; 1541 llvm::DenseSet<const Symbol *> UsedIndexResults; 1542 auto CorrespondingIndexResult = 1543 [&](const CodeCompletionResult &SemaResult) -> const Symbol * { 1544 if (auto SymID = 1545 getSymbolID(SemaResult, Recorder->CCSema->getSourceManager())) { 1546 auto I = IndexResults.find(*SymID); 1547 if (I != IndexResults.end()) { 1548 UsedIndexResults.insert(&*I); 1549 return &*I; 1550 } 1551 } 1552 return nullptr; 1553 }; 1554 // Emit all Sema results, merging them with Index results if possible. 1555 for (auto &SemaResult : SemaResults) 1556 AddToBundles(&SemaResult, CorrespondingIndexResult(SemaResult), nullptr); 1557 // Now emit any Index-only results. 1558 for (const auto &IndexResult : IndexResults) { 1559 if (UsedIndexResults.count(&IndexResult)) 1560 continue; 1561 AddToBundles(/*SemaResult=*/nullptr, &IndexResult, nullptr); 1562 } 1563 // Emit identifier results. 1564 for (const auto &Ident : IdentifierResults) 1565 AddToBundles(/*SemaResult=*/nullptr, /*IndexResult=*/nullptr, &Ident); 1566 // We only keep the best N results at any time, in "native" format. 1567 TopN<ScoredBundle, ScoredBundleGreater> Top( 1568 Opts.Limit == 0 ? std::numeric_limits<size_t>::max() : Opts.Limit); 1569 for (auto &Bundle : Bundles) 1570 addCandidate(Top, std::move(Bundle)); 1571 return std::move(Top).items(); 1572 } 1573 1574 llvm::Optional<float> fuzzyScore(const CompletionCandidate &C) { 1575 // Macros can be very spammy, so we only support prefix completion. 1576 // We won't end up with underfull index results, as macros are sema-only. 1577 if (C.SemaResult && C.SemaResult->Kind == CodeCompletionResult::RK_Macro && 1578 !C.Name.startswith_lower(Filter->pattern())) 1579 return None; 1580 return Filter->match(C.Name); 1581 } 1582 1583 // Scores a candidate and adds it to the TopN structure. 1584 void addCandidate(TopN<ScoredBundle, ScoredBundleGreater> &Candidates, 1585 CompletionCandidate::Bundle Bundle) { 1586 SymbolQualitySignals Quality; 1587 SymbolRelevanceSignals Relevance; 1588 Relevance.Context = CCContextKind; 1589 Relevance.Name = Bundle.front().Name; 1590 Relevance.Query = SymbolRelevanceSignals::CodeComplete; 1591 Relevance.FileProximityMatch = FileProximity.getPointer(); 1592 if (ScopeProximity) 1593 Relevance.ScopeProximityMatch = ScopeProximity.getPointer(); 1594 if (PreferredType) 1595 Relevance.HadContextType = true; 1596 Relevance.ContextWords = &ContextWords; 1597 1598 auto &First = Bundle.front(); 1599 if (auto FuzzyScore = fuzzyScore(First)) 1600 Relevance.NameMatch = *FuzzyScore; 1601 else 1602 return; 1603 SymbolOrigin Origin = SymbolOrigin::Unknown; 1604 bool FromIndex = false; 1605 for (const auto &Candidate : Bundle) { 1606 if (Candidate.IndexResult) { 1607 Quality.merge(*Candidate.IndexResult); 1608 Relevance.merge(*Candidate.IndexResult); 1609 Origin |= Candidate.IndexResult->Origin; 1610 FromIndex = true; 1611 if (!Candidate.IndexResult->Type.empty()) 1612 Relevance.HadSymbolType |= true; 1613 if (PreferredType && 1614 PreferredType->raw() == Candidate.IndexResult->Type) { 1615 Relevance.TypeMatchesPreferred = true; 1616 } 1617 } 1618 if (Candidate.SemaResult) { 1619 Quality.merge(*Candidate.SemaResult); 1620 Relevance.merge(*Candidate.SemaResult); 1621 if (PreferredType) { 1622 if (auto CompletionType = OpaqueType::fromCompletionResult( 1623 Recorder->CCSema->getASTContext(), *Candidate.SemaResult)) { 1624 Relevance.HadSymbolType |= true; 1625 if (PreferredType == CompletionType) 1626 Relevance.TypeMatchesPreferred = true; 1627 } 1628 } 1629 Origin |= SymbolOrigin::AST; 1630 } 1631 if (Candidate.IdentifierResult) { 1632 Quality.References = Candidate.IdentifierResult->References; 1633 Relevance.Scope = SymbolRelevanceSignals::FileScope; 1634 Origin |= SymbolOrigin::Identifier; 1635 } 1636 } 1637 1638 CodeCompletion::Scores Scores; 1639 Scores.Quality = Quality.evaluate(); 1640 Scores.Relevance = Relevance.evaluate(); 1641 Scores.Total = evaluateSymbolAndRelevance(Scores.Quality, Scores.Relevance); 1642 // NameMatch is in fact a multiplier on total score, so rescoring is sound. 1643 Scores.ExcludingName = Relevance.NameMatch 1644 ? Scores.Total / Relevance.NameMatch 1645 : Scores.Quality; 1646 1647 dlog("CodeComplete: {0} ({1}) = {2}\n{3}{4}\n", First.Name, 1648 llvm::to_string(Origin), Scores.Total, llvm::to_string(Quality), 1649 llvm::to_string(Relevance)); 1650 1651 NSema += bool(Origin & SymbolOrigin::AST); 1652 NIndex += FromIndex; 1653 NSemaAndIndex += bool(Origin & SymbolOrigin::AST) && FromIndex; 1654 NIdent += bool(Origin & SymbolOrigin::Identifier); 1655 if (Candidates.push({std::move(Bundle), Scores})) 1656 Incomplete = true; 1657 } 1658 1659 CodeCompletion toCodeCompletion(const CompletionCandidate::Bundle &Bundle) { 1660 llvm::Optional<CodeCompletionBuilder> Builder; 1661 for (const auto &Item : Bundle) { 1662 CodeCompletionString *SemaCCS = 1663 Item.SemaResult ? Recorder->codeCompletionString(*Item.SemaResult) 1664 : nullptr; 1665 if (!Builder) 1666 Builder.emplace(Recorder ? &Recorder->CCSema->getASTContext() : nullptr, 1667 Item, SemaCCS, QueryScopes, *Inserter, FileName, 1668 CCContextKind, Opts); 1669 else 1670 Builder->add(Item, SemaCCS); 1671 } 1672 return Builder->build(); 1673 } 1674 }; 1675 1676 template <class T> bool isExplicitTemplateSpecialization(const NamedDecl &ND) { 1677 if (const auto *TD = dyn_cast<T>(&ND)) 1678 if (TD->getTemplateSpecializationKind() == TSK_ExplicitSpecialization) 1679 return true; 1680 return false; 1681 } 1682 1683 } // namespace 1684 1685 clang::CodeCompleteOptions CodeCompleteOptions::getClangCompleteOpts() const { 1686 clang::CodeCompleteOptions Result; 1687 Result.IncludeCodePatterns = EnableSnippets && IncludeCodePatterns; 1688 Result.IncludeMacros = IncludeMacros; 1689 Result.IncludeGlobals = true; 1690 // We choose to include full comments and not do doxygen parsing in 1691 // completion. 1692 // FIXME: ideally, we should support doxygen in some form, e.g. do markdown 1693 // formatting of the comments. 1694 Result.IncludeBriefComments = false; 1695 1696 // When an is used, Sema is responsible for completing the main file, 1697 // the index can provide results from the preamble. 1698 // Tell Sema not to deserialize the preamble to look for results. 1699 Result.LoadExternal = !Index; 1700 Result.IncludeFixIts = IncludeFixIts; 1701 1702 return Result; 1703 } 1704 1705 CompletionPrefix guessCompletionPrefix(llvm::StringRef Content, 1706 unsigned Offset) { 1707 assert(Offset <= Content.size()); 1708 StringRef Rest = Content.take_front(Offset); 1709 CompletionPrefix Result; 1710 1711 // Consume the unqualified name. We only handle ASCII characters. 1712 // isIdentifierBody will let us match "0invalid", but we don't mind. 1713 while (!Rest.empty() && isIdentifierBody(Rest.back())) 1714 Rest = Rest.drop_back(); 1715 Result.Name = Content.slice(Rest.size(), Offset); 1716 1717 // Consume qualifiers. 1718 while (Rest.consume_back("::") && !Rest.endswith(":")) // reject :::: 1719 while (!Rest.empty() && isIdentifierBody(Rest.back())) 1720 Rest = Rest.drop_back(); 1721 Result.Qualifier = 1722 Content.slice(Rest.size(), Result.Name.begin() - Content.begin()); 1723 1724 return Result; 1725 } 1726 1727 CodeCompleteResult 1728 codeComplete(PathRef FileName, const tooling::CompileCommand &Command, 1729 const PreambleData *Preamble, llvm::StringRef Contents, 1730 Position Pos, llvm::IntrusiveRefCntPtr<llvm::vfs::FileSystem> VFS, 1731 CodeCompleteOptions Opts, SpeculativeFuzzyFind *SpecFuzzyFind) { 1732 auto Offset = positionToOffset(Contents, Pos); 1733 if (!Offset) { 1734 elog("Code completion position was invalid {0}", Offset.takeError()); 1735 return CodeCompleteResult(); 1736 } 1737 auto Flow = CodeCompleteFlow( 1738 FileName, Preamble ? Preamble->Includes : IncludeStructure(), 1739 SpecFuzzyFind, Opts); 1740 return (!Preamble || Opts.RunParser == CodeCompleteOptions::NeverParse) 1741 ? std::move(Flow).runWithoutSema(Contents, *Offset, VFS) 1742 : std::move(Flow).run( 1743 {FileName, Command, Preamble, Contents, *Offset, VFS}); 1744 } 1745 1746 SignatureHelp signatureHelp(PathRef FileName, 1747 const tooling::CompileCommand &Command, 1748 const PreambleData *Preamble, 1749 llvm::StringRef Contents, Position Pos, 1750 llvm::IntrusiveRefCntPtr<llvm::vfs::FileSystem> VFS, 1751 const SymbolIndex *Index) { 1752 auto Offset = positionToOffset(Contents, Pos); 1753 if (!Offset) { 1754 elog("Code completion position was invalid {0}", Offset.takeError()); 1755 return SignatureHelp(); 1756 } 1757 SignatureHelp Result; 1758 clang::CodeCompleteOptions Options; 1759 Options.IncludeGlobals = false; 1760 Options.IncludeMacros = false; 1761 Options.IncludeCodePatterns = false; 1762 Options.IncludeBriefComments = false; 1763 IncludeStructure PreambleInclusions; // Unused for signatureHelp 1764 semaCodeComplete( 1765 llvm::make_unique<SignatureHelpCollector>(Options, Index, Result), 1766 Options, 1767 {FileName, Command, Preamble, Contents, *Offset, std::move(VFS)}); 1768 return Result; 1769 } 1770 1771 bool isIndexedForCodeCompletion(const NamedDecl &ND, ASTContext &ASTCtx) { 1772 auto InTopLevelScope = [](const NamedDecl &ND) { 1773 switch (ND.getDeclContext()->getDeclKind()) { 1774 case Decl::TranslationUnit: 1775 case Decl::Namespace: 1776 case Decl::LinkageSpec: 1777 return true; 1778 default: 1779 break; 1780 }; 1781 return false; 1782 }; 1783 // We only complete symbol's name, which is the same as the name of the 1784 // *primary* template in case of template specializations. 1785 if (isExplicitTemplateSpecialization<FunctionDecl>(ND) || 1786 isExplicitTemplateSpecialization<CXXRecordDecl>(ND) || 1787 isExplicitTemplateSpecialization<VarDecl>(ND)) 1788 return false; 1789 1790 if (InTopLevelScope(ND)) 1791 return true; 1792 1793 if (const auto *EnumDecl = dyn_cast<clang::EnumDecl>(ND.getDeclContext())) 1794 return InTopLevelScope(*EnumDecl) && !EnumDecl->isScoped(); 1795 1796 return false; 1797 } 1798 1799 CompletionItem CodeCompletion::render(const CodeCompleteOptions &Opts) const { 1800 CompletionItem LSP; 1801 const auto *InsertInclude = Includes.empty() ? nullptr : &Includes[0]; 1802 LSP.label = ((InsertInclude && InsertInclude->Insertion) 1803 ? Opts.IncludeIndicator.Insert 1804 : Opts.IncludeIndicator.NoInsert) + 1805 (Opts.ShowOrigins ? "[" + llvm::to_string(Origin) + "]" : "") + 1806 RequiredQualifier + Name + Signature; 1807 1808 LSP.kind = Kind; 1809 LSP.detail = BundleSize > 1 ? llvm::formatv("[{0} overloads]", BundleSize) 1810 : ReturnType; 1811 LSP.deprecated = Deprecated; 1812 if (InsertInclude) 1813 LSP.detail += "\n" + InsertInclude->Header; 1814 LSP.documentation = Documentation; 1815 LSP.sortText = sortText(Score.Total, Name); 1816 LSP.filterText = Name; 1817 LSP.textEdit = {CompletionTokenRange, RequiredQualifier + Name}; 1818 // Merge continuous additionalTextEdits into main edit. The main motivation 1819 // behind this is to help LSP clients, it seems most of them are confused when 1820 // they are provided with additionalTextEdits that are consecutive to main 1821 // edit. 1822 // Note that we store additional text edits from back to front in a line. That 1823 // is mainly to help LSP clients again, so that changes do not effect each 1824 // other. 1825 for (const auto &FixIt : FixIts) { 1826 if (isRangeConsecutive(FixIt.range, LSP.textEdit->range)) { 1827 LSP.textEdit->newText = FixIt.newText + LSP.textEdit->newText; 1828 LSP.textEdit->range.start = FixIt.range.start; 1829 } else { 1830 LSP.additionalTextEdits.push_back(FixIt); 1831 } 1832 } 1833 if (Opts.EnableSnippets) 1834 LSP.textEdit->newText += SnippetSuffix; 1835 1836 // FIXME(kadircet): Do not even fill insertText after making sure textEdit is 1837 // compatible with most of the editors. 1838 LSP.insertText = LSP.textEdit->newText; 1839 LSP.insertTextFormat = Opts.EnableSnippets ? InsertTextFormat::Snippet 1840 : InsertTextFormat::PlainText; 1841 if (InsertInclude && InsertInclude->Insertion) 1842 LSP.additionalTextEdits.push_back(*InsertInclude->Insertion); 1843 1844 return LSP; 1845 } 1846 1847 llvm::raw_ostream &operator<<(llvm::raw_ostream &OS, const CodeCompletion &C) { 1848 // For now just lean on CompletionItem. 1849 return OS << C.render(CodeCompleteOptions()); 1850 } 1851 1852 llvm::raw_ostream &operator<<(llvm::raw_ostream &OS, 1853 const CodeCompleteResult &R) { 1854 OS << "CodeCompleteResult: " << R.Completions.size() << (R.HasMore ? "+" : "") 1855 << " (" << getCompletionKindString(R.Context) << ")" 1856 << " items:\n"; 1857 for (const auto &C : R.Completions) 1858 OS << C << "\n"; 1859 return OS; 1860 } 1861 1862 } // namespace clangd 1863 } // namespace clang 1864