1 //===-- CodeCompleteTests.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 #include "ASTSignals.h" 10 #include "Annotations.h" 11 #include "ClangdServer.h" 12 #include "CodeComplete.h" 13 #include "Compiler.h" 14 #include "Matchers.h" 15 #include "Protocol.h" 16 #include "Quality.h" 17 #include "SourceCode.h" 18 #include "SyncAPI.h" 19 #include "TestFS.h" 20 #include "TestIndex.h" 21 #include "TestTU.h" 22 #include "index/Index.h" 23 #include "index/MemIndex.h" 24 #include "support/Threading.h" 25 #include "clang/Sema/CodeCompleteConsumer.h" 26 #include "clang/Tooling/CompilationDatabase.h" 27 #include "llvm/Support/Error.h" 28 #include "llvm/Support/Path.h" 29 #include "llvm/Testing/Support/Annotations.h" 30 #include "llvm/Testing/Support/Error.h" 31 #include "gmock/gmock.h" 32 #include "gtest/gtest.h" 33 #include <condition_variable> 34 #include <functional> 35 #include <mutex> 36 #include <vector> 37 38 namespace clang { 39 namespace clangd { 40 41 namespace { 42 using ::llvm::Failed; 43 using ::testing::AllOf; 44 using ::testing::Contains; 45 using ::testing::ElementsAre; 46 using ::testing::Field; 47 using ::testing::HasSubstr; 48 using ::testing::IsEmpty; 49 using ::testing::Not; 50 using ::testing::UnorderedElementsAre; 51 using ContextKind = CodeCompletionContext::Kind; 52 53 // GMock helpers for matching completion items. 54 MATCHER_P(Named, Name, "") { return arg.Name == Name; } 55 MATCHER_P(MainFileRefs, Refs, "") { return arg.MainFileRefs == Refs; } 56 MATCHER_P(ScopeRefs, Refs, "") { return arg.ScopeRefsInFile == Refs; } 57 MATCHER_P(NameStartsWith, Prefix, "") { 58 return llvm::StringRef(arg.Name).startswith(Prefix); 59 } 60 MATCHER_P(Scope, S, "") { return arg.Scope == S; } 61 MATCHER_P(Qualifier, Q, "") { return arg.RequiredQualifier == Q; } 62 MATCHER_P(Labeled, Label, "") { 63 return arg.RequiredQualifier + arg.Name + arg.Signature == Label; 64 } 65 MATCHER_P(SigHelpLabeled, Label, "") { return arg.label == Label; } 66 MATCHER_P(Kind, K, "") { return arg.Kind == K; } 67 MATCHER_P(Doc, D, "") { 68 return arg.Documentation && arg.Documentation->asPlainText() == D; 69 } 70 MATCHER_P(ReturnType, D, "") { return arg.ReturnType == D; } 71 MATCHER_P(HasInclude, IncludeHeader, "") { 72 return !arg.Includes.empty() && arg.Includes[0].Header == IncludeHeader; 73 } 74 MATCHER_P(InsertInclude, IncludeHeader, "") { 75 return !arg.Includes.empty() && arg.Includes[0].Header == IncludeHeader && 76 bool(arg.Includes[0].Insertion); 77 } 78 MATCHER(InsertInclude, "") { 79 return !arg.Includes.empty() && bool(arg.Includes[0].Insertion); 80 } 81 MATCHER_P(SnippetSuffix, Text, "") { return arg.SnippetSuffix == Text; } 82 MATCHER_P(Origin, OriginSet, "") { return arg.Origin == OriginSet; } 83 MATCHER_P(Signature, S, "") { return arg.Signature == S; } 84 85 // Shorthand for Contains(Named(Name)). 86 Matcher<const std::vector<CodeCompletion> &> Has(std::string Name) { 87 return Contains(Named(std::move(Name))); 88 } 89 Matcher<const std::vector<CodeCompletion> &> Has(std::string Name, 90 CompletionItemKind K) { 91 return Contains(AllOf(Named(std::move(Name)), Kind(K))); 92 } 93 MATCHER(IsDocumented, "") { return arg.Documentation.hasValue(); } 94 MATCHER(Deprecated, "") { return arg.Deprecated; } 95 96 std::unique_ptr<SymbolIndex> memIndex(std::vector<Symbol> Symbols) { 97 SymbolSlab::Builder Slab; 98 for (const auto &Sym : Symbols) 99 Slab.insert(Sym); 100 return MemIndex::build(std::move(Slab).build(), RefSlab(), RelationSlab()); 101 } 102 103 // Runs code completion. 104 // If IndexSymbols is non-empty, an index will be built and passed to opts. 105 CodeCompleteResult completions(const TestTU &TU, Position Point, 106 std::vector<Symbol> IndexSymbols = {}, 107 clangd::CodeCompleteOptions Opts = {}) { 108 std::unique_ptr<SymbolIndex> OverrideIndex; 109 if (!IndexSymbols.empty()) { 110 assert(!Opts.Index && "both Index and IndexSymbols given!"); 111 OverrideIndex = memIndex(std::move(IndexSymbols)); 112 Opts.Index = OverrideIndex.get(); 113 } 114 115 MockFS FS; 116 auto Inputs = TU.inputs(FS); 117 IgnoreDiagnostics Diags; 118 auto CI = buildCompilerInvocation(Inputs, Diags); 119 if (!CI) { 120 ADD_FAILURE() << "Couldn't build CompilerInvocation"; 121 return {}; 122 } 123 auto Preamble = buildPreamble(testPath(TU.Filename), *CI, Inputs, 124 /*InMemory=*/true, /*Callback=*/nullptr); 125 return codeComplete(testPath(TU.Filename), Point, Preamble.get(), Inputs, 126 Opts); 127 } 128 129 // Runs code completion. 130 CodeCompleteResult completions(llvm::StringRef Text, 131 std::vector<Symbol> IndexSymbols = {}, 132 clangd::CodeCompleteOptions Opts = {}, 133 PathRef FilePath = "foo.cpp") { 134 Annotations Test(Text); 135 auto TU = TestTU::withCode(Test.code()); 136 // To make sure our tests for completiopns inside templates work on Windows. 137 TU.Filename = FilePath.str(); 138 return completions(TU, Test.point(), std::move(IndexSymbols), 139 std::move(Opts)); 140 } 141 142 // Runs code completion without the clang parser. 143 CodeCompleteResult completionsNoCompile(llvm::StringRef Text, 144 std::vector<Symbol> IndexSymbols = {}, 145 clangd::CodeCompleteOptions Opts = {}, 146 PathRef FilePath = "foo.cpp") { 147 std::unique_ptr<SymbolIndex> OverrideIndex; 148 if (!IndexSymbols.empty()) { 149 assert(!Opts.Index && "both Index and IndexSymbols given!"); 150 OverrideIndex = memIndex(std::move(IndexSymbols)); 151 Opts.Index = OverrideIndex.get(); 152 } 153 154 MockFS FS; 155 Annotations Test(Text); 156 ParseInputs ParseInput{tooling::CompileCommand(), &FS, Test.code().str()}; 157 return codeComplete(FilePath, Test.point(), /*Preamble=*/nullptr, ParseInput, 158 Opts); 159 } 160 161 Symbol withReferences(int N, Symbol S) { 162 S.References = N; 163 return S; 164 } 165 166 TEST(DecisionForestRankingModel, NameMatchSanityTest) { 167 clangd::CodeCompleteOptions Opts; 168 Opts.RankingModel = CodeCompleteOptions::DecisionForest; 169 auto Results = completions( 170 R"cpp( 171 struct MemberAccess { 172 int ABG(); 173 int AlphaBetaGamma(); 174 }; 175 int func() { MemberAccess().ABG^ } 176 )cpp", 177 /*IndexSymbols=*/{}, Opts); 178 EXPECT_THAT(Results.Completions, 179 ElementsAre(Named("ABG"), Named("AlphaBetaGamma"))); 180 } 181 182 TEST(DecisionForestRankingModel, ReferencesAffectRanking) { 183 clangd::CodeCompleteOptions Opts; 184 Opts.RankingModel = CodeCompleteOptions::DecisionForest; 185 constexpr int NumReferences = 100000; 186 EXPECT_THAT( 187 completions("int main() { clang^ }", 188 {ns("clangA"), withReferences(NumReferences, func("clangD"))}, 189 Opts) 190 .Completions, 191 ElementsAre(Named("clangD"), Named("clangA"))); 192 EXPECT_THAT( 193 completions("int main() { clang^ }", 194 {withReferences(NumReferences, ns("clangA")), func("clangD")}, 195 Opts) 196 .Completions, 197 ElementsAre(Named("clangA"), Named("clangD"))); 198 } 199 200 TEST(DecisionForestRankingModel, DecisionForestScorerCallbackTest) { 201 clangd::CodeCompleteOptions Opts; 202 constexpr float MagicNumber = 1234.5678f; 203 Opts.RankingModel = CodeCompleteOptions::DecisionForest; 204 Opts.DecisionForestScorer = [&](const SymbolQualitySignals &, 205 const SymbolRelevanceSignals &, float Base) { 206 DecisionForestScores Scores; 207 Scores.Total = MagicNumber; 208 Scores.ExcludingName = MagicNumber; 209 return Scores; 210 }; 211 llvm::StringRef Code = "int func() { int xyz; xy^ }"; 212 auto Results = completions(Code, 213 /*IndexSymbols=*/{}, Opts); 214 ASSERT_EQ(Results.Completions.size(), 1u); 215 EXPECT_EQ(Results.Completions[0].Score.Total, MagicNumber); 216 EXPECT_EQ(Results.Completions[0].Score.ExcludingName, MagicNumber); 217 218 // Do not use DecisionForestScorer for heuristics model. 219 Opts.RankingModel = CodeCompleteOptions::Heuristics; 220 Results = completions(Code, 221 /*IndexSymbols=*/{}, Opts); 222 ASSERT_EQ(Results.Completions.size(), 1u); 223 EXPECT_NE(Results.Completions[0].Score.Total, MagicNumber); 224 EXPECT_NE(Results.Completions[0].Score.ExcludingName, MagicNumber); 225 } 226 227 TEST(CompletionTest, Limit) { 228 clangd::CodeCompleteOptions Opts; 229 Opts.Limit = 2; 230 auto Results = completions(R"cpp( 231 struct ClassWithMembers { 232 int AAA(); 233 int BBB(); 234 int CCC(); 235 }; 236 237 int main() { ClassWithMembers().^ } 238 )cpp", 239 /*IndexSymbols=*/{}, Opts); 240 241 EXPECT_TRUE(Results.HasMore); 242 EXPECT_THAT(Results.Completions, ElementsAre(Named("AAA"), Named("BBB"))); 243 } 244 245 TEST(CompletionTest, Filter) { 246 std::string Body = R"cpp( 247 #define MotorCar 248 int Car; 249 struct S { 250 int FooBar; 251 int FooBaz; 252 int Qux; 253 }; 254 )cpp"; 255 256 // Only items matching the fuzzy query are returned. 257 EXPECT_THAT(completions(Body + "int main() { S().Foba^ }").Completions, 258 AllOf(Has("FooBar"), Has("FooBaz"), Not(Has("Qux")))); 259 260 // Macros require prefix match, either from index or AST. 261 Symbol Sym = var("MotorCarIndex"); 262 Sym.SymInfo.Kind = index::SymbolKind::Macro; 263 EXPECT_THAT( 264 completions(Body + "int main() { C^ }", {Sym}).Completions, 265 AllOf(Has("Car"), Not(Has("MotorCar")), Not(Has("MotorCarIndex")))); 266 EXPECT_THAT(completions(Body + "int main() { M^ }", {Sym}).Completions, 267 AllOf(Has("MotorCar"), Has("MotorCarIndex"))); 268 } 269 270 void testAfterDotCompletion(clangd::CodeCompleteOptions Opts) { 271 auto Results = completions( 272 R"cpp( 273 int global_var; 274 275 int global_func(); 276 277 // Make sure this is not in preamble. 278 #define MACRO X 279 280 struct GlobalClass {}; 281 282 struct ClassWithMembers { 283 /// Doc for method. 284 int method(); 285 286 int field; 287 private: 288 int private_field; 289 }; 290 291 int test() { 292 struct LocalClass {}; 293 294 /// Doc for local_var. 295 int local_var; 296 297 ClassWithMembers().^ 298 } 299 )cpp", 300 {cls("IndexClass"), var("index_var"), func("index_func")}, Opts); 301 302 EXPECT_TRUE(Results.RanParser); 303 // Class members. The only items that must be present in after-dot 304 // completion. 305 EXPECT_THAT(Results.Completions, 306 AllOf(Has("method"), Has("field"), Not(Has("ClassWithMembers")), 307 Not(Has("operator=")), Not(Has("~ClassWithMembers")))); 308 EXPECT_IFF(Opts.IncludeIneligibleResults, Results.Completions, 309 Has("private_field")); 310 // Global items. 311 EXPECT_THAT( 312 Results.Completions, 313 Not(AnyOf(Has("global_var"), Has("index_var"), Has("global_func"), 314 Has("global_func()"), Has("index_func"), Has("GlobalClass"), 315 Has("IndexClass"), Has("MACRO"), Has("LocalClass")))); 316 // There should be no code patterns (aka snippets) in after-dot 317 // completion. At least there aren't any we're aware of. 318 EXPECT_THAT(Results.Completions, 319 Not(Contains(Kind(CompletionItemKind::Snippet)))); 320 // Check documentation. 321 EXPECT_THAT(Results.Completions, Contains(IsDocumented())); 322 } 323 324 void testGlobalScopeCompletion(clangd::CodeCompleteOptions Opts) { 325 auto Results = completions( 326 R"cpp( 327 int global_var; 328 int global_func(); 329 330 // Make sure this is not in preamble. 331 #define MACRO X 332 333 struct GlobalClass {}; 334 335 struct ClassWithMembers { 336 /// Doc for method. 337 int method(); 338 }; 339 340 int test() { 341 struct LocalClass {}; 342 343 /// Doc for local_var. 344 int local_var; 345 346 ^ 347 } 348 )cpp", 349 {cls("IndexClass"), var("index_var"), func("index_func")}, Opts); 350 351 EXPECT_TRUE(Results.RanParser); 352 // Class members. Should never be present in global completions. 353 EXPECT_THAT(Results.Completions, 354 Not(AnyOf(Has("method"), Has("method()"), Has("field")))); 355 // Global items. 356 EXPECT_THAT(Results.Completions, 357 AllOf(Has("global_var"), Has("index_var"), Has("global_func"), 358 Has("index_func" /* our fake symbol doesn't include () */), 359 Has("GlobalClass"), Has("IndexClass"))); 360 // A macro. 361 EXPECT_THAT(Results.Completions, Has("MACRO")); 362 // Local items. Must be present always. 363 EXPECT_THAT(Results.Completions, 364 AllOf(Has("local_var"), Has("LocalClass"), 365 Contains(Kind(CompletionItemKind::Snippet)))); 366 // Check documentation. 367 EXPECT_THAT(Results.Completions, Contains(IsDocumented())); 368 } 369 370 TEST(CompletionTest, CompletionOptions) { 371 auto Test = [&](const clangd::CodeCompleteOptions &Opts) { 372 testAfterDotCompletion(Opts); 373 testGlobalScopeCompletion(Opts); 374 }; 375 // We used to test every combination of options, but that got too slow (2^N). 376 auto Flags = { 377 &clangd::CodeCompleteOptions::IncludeIneligibleResults, 378 }; 379 // Test default options. 380 Test({}); 381 // Test with one flag flipped. 382 for (auto &F : Flags) { 383 clangd::CodeCompleteOptions O; 384 O.*F ^= true; 385 Test(O); 386 } 387 } 388 389 TEST(CompletionTest, Accessible) { 390 auto Internal = completions(R"cpp( 391 class Foo { 392 public: void pub(); 393 protected: void prot(); 394 private: void priv(); 395 }; 396 void Foo::pub() { this->^ } 397 )cpp"); 398 EXPECT_THAT(Internal.Completions, 399 AllOf(Has("priv"), Has("prot"), Has("pub"))); 400 401 auto External = completions(R"cpp( 402 class Foo { 403 public: void pub(); 404 protected: void prot(); 405 private: void priv(); 406 }; 407 void test() { 408 Foo F; 409 F.^ 410 } 411 )cpp"); 412 EXPECT_THAT(External.Completions, 413 AllOf(Has("pub"), Not(Has("prot")), Not(Has("priv")))); 414 } 415 416 TEST(CompletionTest, Qualifiers) { 417 auto Results = completions(R"cpp( 418 class Foo { 419 public: int foo() const; 420 int bar() const; 421 }; 422 class Bar : public Foo { 423 int foo() const; 424 }; 425 void test() { Bar().^ } 426 )cpp"); 427 EXPECT_THAT(Results.Completions, 428 Contains(AllOf(Qualifier(""), Named("bar")))); 429 // Hidden members are not shown. 430 EXPECT_THAT(Results.Completions, 431 Not(Contains(AllOf(Qualifier("Foo::"), Named("foo"))))); 432 // Private members are not shown. 433 EXPECT_THAT(Results.Completions, 434 Not(Contains(AllOf(Qualifier(""), Named("foo"))))); 435 } 436 437 TEST(CompletionTest, InjectedTypename) { 438 // These are suppressed when accessed as a member... 439 EXPECT_THAT(completions("struct X{}; void foo(){ X().^ }").Completions, 440 Not(Has("X"))); 441 EXPECT_THAT(completions("struct X{ void foo(){ this->^ } };").Completions, 442 Not(Has("X"))); 443 // ...but accessible in other, more useful cases. 444 EXPECT_THAT(completions("struct X{ void foo(){ ^ } };").Completions, 445 Has("X")); 446 EXPECT_THAT( 447 completions("struct Y{}; struct X:Y{ void foo(){ ^ } };").Completions, 448 Has("Y")); 449 EXPECT_THAT( 450 completions( 451 "template<class> struct Y{}; struct X:Y<int>{ void foo(){ ^ } };") 452 .Completions, 453 Has("Y")); 454 // This case is marginal (`using X::X` is useful), we allow it for now. 455 EXPECT_THAT(completions("struct X{}; void foo(){ X::^ }").Completions, 456 Has("X")); 457 } 458 459 TEST(CompletionTest, SkipInjectedWhenUnqualified) { 460 EXPECT_THAT(completions("struct X { void f() { X^ }};").Completions, 461 ElementsAre(Named("X"), Named("~X"))); 462 } 463 464 TEST(CompletionTest, Snippets) { 465 clangd::CodeCompleteOptions Opts; 466 auto Results = completions( 467 R"cpp( 468 struct fake { 469 int a; 470 int f(int i, const float f) const; 471 }; 472 int main() { 473 fake f; 474 f.^ 475 } 476 )cpp", 477 /*IndexSymbols=*/{}, Opts); 478 EXPECT_THAT( 479 Results.Completions, 480 HasSubsequence(Named("a"), 481 SnippetSuffix("(${1:int i}, ${2:const float f})"))); 482 } 483 484 TEST(CompletionTest, NoSnippetsInUsings) { 485 clangd::CodeCompleteOptions Opts; 486 Opts.EnableSnippets = true; 487 auto Results = completions( 488 R"cpp( 489 namespace ns { 490 int func(int a, int b); 491 } 492 493 using ns::^; 494 )cpp", 495 /*IndexSymbols=*/{}, Opts); 496 EXPECT_THAT(Results.Completions, 497 ElementsAre(AllOf(Named("func"), Labeled("func(int a, int b)"), 498 SnippetSuffix("")))); 499 500 // Check index completions too. 501 auto Func = func("ns::func"); 502 Func.CompletionSnippetSuffix = "(${1:int a}, ${2: int b})"; 503 Func.Signature = "(int a, int b)"; 504 Func.ReturnType = "void"; 505 506 Results = completions(R"cpp( 507 namespace ns {} 508 using ns::^; 509 )cpp", 510 /*IndexSymbols=*/{Func}, Opts); 511 EXPECT_THAT(Results.Completions, 512 ElementsAre(AllOf(Named("func"), Labeled("func(int a, int b)"), 513 SnippetSuffix("")))); 514 515 // Check all-scopes completions too. 516 Opts.AllScopes = true; 517 Results = completions(R"cpp( 518 using ^; 519 )cpp", 520 /*IndexSymbols=*/{Func}, Opts); 521 EXPECT_THAT(Results.Completions, 522 Contains(AllOf(Named("func"), Labeled("ns::func(int a, int b)"), 523 SnippetSuffix("")))); 524 } 525 526 TEST(CompletionTest, Kinds) { 527 auto Results = completions( 528 R"cpp( 529 int variable; 530 struct Struct {}; 531 int function(); 532 // make sure MACRO is not included in preamble. 533 #define MACRO 10 534 int X = ^ 535 )cpp", 536 {func("indexFunction"), var("indexVariable"), cls("indexClass")}); 537 EXPECT_THAT(Results.Completions, 538 AllOf(Has("function", CompletionItemKind::Function), 539 Has("variable", CompletionItemKind::Variable), 540 Has("int", CompletionItemKind::Keyword), 541 Has("Struct", CompletionItemKind::Struct), 542 Has("MACRO", CompletionItemKind::Text), 543 Has("indexFunction", CompletionItemKind::Function), 544 Has("indexVariable", CompletionItemKind::Variable), 545 Has("indexClass", CompletionItemKind::Class))); 546 547 Results = completions("nam^"); 548 EXPECT_THAT(Results.Completions, 549 Has("namespace", CompletionItemKind::Snippet)); 550 551 // Members of anonymous unions are of kind 'field'. 552 Results = completions( 553 R"cpp( 554 struct X{ 555 union { 556 void *a; 557 }; 558 }; 559 auto u = X().^ 560 )cpp"); 561 EXPECT_THAT( 562 Results.Completions, 563 UnorderedElementsAre(AllOf(Named("a"), Kind(CompletionItemKind::Field)))); 564 565 // Completion kinds for templates should not be unknown. 566 Results = completions( 567 R"cpp( 568 template <class T> struct complete_class {}; 569 template <class T> void complete_function(); 570 template <class T> using complete_type_alias = int; 571 template <class T> int complete_variable = 10; 572 573 struct X { 574 template <class T> static int complete_static_member = 10; 575 576 static auto x = complete_^ 577 } 578 )cpp"); 579 EXPECT_THAT( 580 Results.Completions, 581 UnorderedElementsAre( 582 AllOf(Named("complete_class"), Kind(CompletionItemKind::Class)), 583 AllOf(Named("complete_function"), Kind(CompletionItemKind::Function)), 584 AllOf(Named("complete_type_alias"), 585 Kind(CompletionItemKind::Interface)), 586 AllOf(Named("complete_variable"), Kind(CompletionItemKind::Variable)), 587 AllOf(Named("complete_static_member"), 588 Kind(CompletionItemKind::Property)))); 589 590 Results = completions( 591 R"cpp( 592 enum Color { 593 Red 594 }; 595 Color u = ^ 596 )cpp"); 597 EXPECT_THAT( 598 Results.Completions, 599 Contains(AllOf(Named("Red"), Kind(CompletionItemKind::EnumMember)))); 600 } 601 602 TEST(CompletionTest, NoDuplicates) { 603 auto Results = completions( 604 R"cpp( 605 class Adapter { 606 }; 607 608 void f() { 609 Adapter^ 610 } 611 )cpp", 612 {cls("Adapter")}); 613 614 // Make sure there are no duplicate entries of 'Adapter'. 615 EXPECT_THAT(Results.Completions, ElementsAre(Named("Adapter"))); 616 } 617 618 TEST(CompletionTest, ScopedNoIndex) { 619 auto Results = completions( 620 R"cpp( 621 namespace fake { int BigBang, Babble, Box; }; 622 int main() { fake::ba^ } 623 ")cpp"); 624 // Babble is a better match than BigBang. Box doesn't match at all. 625 EXPECT_THAT(Results.Completions, 626 ElementsAre(Named("Babble"), Named("BigBang"))); 627 } 628 629 TEST(CompletionTest, Scoped) { 630 auto Results = completions( 631 R"cpp( 632 namespace fake { int Babble, Box; }; 633 int main() { fake::ba^ } 634 ")cpp", 635 {var("fake::BigBang")}); 636 EXPECT_THAT(Results.Completions, 637 ElementsAre(Named("Babble"), Named("BigBang"))); 638 } 639 640 TEST(CompletionTest, ScopedWithFilter) { 641 auto Results = completions( 642 R"cpp( 643 void f() { ns::x^ } 644 )cpp", 645 {cls("ns::XYZ"), func("ns::foo")}); 646 EXPECT_THAT(Results.Completions, UnorderedElementsAre(Named("XYZ"))); 647 } 648 649 TEST(CompletionTest, ReferencesAffectRanking) { 650 auto Results = completions("int main() { abs^ }", {ns("absl"), func("absb")}); 651 EXPECT_THAT(Results.Completions, 652 HasSubsequence(Named("absb"), Named("absl"))); 653 Results = completions("int main() { abs^ }", 654 {withReferences(10000, ns("absl")), func("absb")}); 655 EXPECT_THAT(Results.Completions, 656 HasSubsequence(Named("absl"), Named("absb"))); 657 } 658 659 TEST(CompletionTest, ContextWords) { 660 auto Results = completions(R"cpp( 661 enum class Color { RED, YELLOW, BLUE }; 662 663 // (blank lines so the definition above isn't "context") 664 665 // "It was a yellow car," he said. "Big yellow car, new." 666 auto Finish = Color::^ 667 )cpp"); 668 // Yellow would normally sort last (alphabetic). 669 // But the recent mention should bump it up. 670 ASSERT_THAT(Results.Completions, 671 HasSubsequence(Named("YELLOW"), Named("BLUE"))); 672 } 673 674 TEST(CompletionTest, GlobalQualified) { 675 auto Results = completions( 676 R"cpp( 677 void f() { ::^ } 678 )cpp", 679 {cls("XYZ")}); 680 EXPECT_THAT(Results.Completions, 681 AllOf(Has("XYZ", CompletionItemKind::Class), 682 Has("f", CompletionItemKind::Function))); 683 } 684 685 TEST(CompletionTest, FullyQualified) { 686 auto Results = completions( 687 R"cpp( 688 namespace ns { void bar(); } 689 void f() { ::ns::^ } 690 )cpp", 691 {cls("ns::XYZ")}); 692 EXPECT_THAT(Results.Completions, 693 AllOf(Has("XYZ", CompletionItemKind::Class), 694 Has("bar", CompletionItemKind::Function))); 695 } 696 697 TEST(CompletionTest, SemaIndexMerge) { 698 auto Results = completions( 699 R"cpp( 700 namespace ns { int local; void both(); } 701 void f() { ::ns::^ } 702 )cpp", 703 {func("ns::both"), cls("ns::Index")}); 704 // We get results from both index and sema, with no duplicates. 705 EXPECT_THAT(Results.Completions, 706 UnorderedElementsAre( 707 AllOf(Named("local"), Origin(SymbolOrigin::AST)), 708 AllOf(Named("Index"), Origin(SymbolOrigin::Static)), 709 AllOf(Named("both"), 710 Origin(SymbolOrigin::AST | SymbolOrigin::Static)))); 711 } 712 713 TEST(CompletionTest, SemaIndexMergeWithLimit) { 714 clangd::CodeCompleteOptions Opts; 715 Opts.Limit = 1; 716 auto Results = completions( 717 R"cpp( 718 namespace ns { int local; void both(); } 719 void f() { ::ns::^ } 720 )cpp", 721 {func("ns::both"), cls("ns::Index")}, Opts); 722 EXPECT_EQ(Results.Completions.size(), Opts.Limit); 723 EXPECT_TRUE(Results.HasMore); 724 } 725 726 TEST(CompletionTest, IncludeInsertionPreprocessorIntegrationTests) { 727 TestTU TU; 728 TU.ExtraArgs.push_back("-I" + testPath("sub")); 729 TU.AdditionalFiles["sub/bar.h"] = ""; 730 auto BarURI = URI::create(testPath("sub/bar.h")).toString(); 731 732 Symbol Sym = cls("ns::X"); 733 Sym.CanonicalDeclaration.FileURI = BarURI.c_str(); 734 Sym.IncludeHeaders.emplace_back(BarURI, 1); 735 // Shorten include path based on search directory and insert. 736 Annotations Test("int main() { ns::^ }"); 737 TU.Code = Test.code().str(); 738 auto Results = completions(TU, Test.point(), {Sym}); 739 EXPECT_THAT(Results.Completions, 740 ElementsAre(AllOf(Named("X"), InsertInclude("\"bar.h\"")))); 741 // Can be disabled via option. 742 CodeCompleteOptions NoInsertion; 743 NoInsertion.InsertIncludes = CodeCompleteOptions::NeverInsert; 744 Results = completions(TU, Test.point(), {Sym}, NoInsertion); 745 EXPECT_THAT(Results.Completions, 746 ElementsAre(AllOf(Named("X"), Not(InsertInclude())))); 747 // Duplicate based on inclusions in preamble. 748 Test = Annotations(R"cpp( 749 #include "sub/bar.h" // not shortest, so should only match resolved. 750 int main() { ns::^ } 751 )cpp"); 752 TU.Code = Test.code().str(); 753 Results = completions(TU, Test.point(), {Sym}); 754 EXPECT_THAT(Results.Completions, ElementsAre(AllOf(Named("X"), Labeled("X"), 755 Not(InsertInclude())))); 756 } 757 758 TEST(CompletionTest, NoIncludeInsertionWhenDeclFoundInFile) { 759 Symbol SymX = cls("ns::X"); 760 Symbol SymY = cls("ns::Y"); 761 std::string BarHeader = testPath("bar.h"); 762 auto BarURI = URI::create(BarHeader).toString(); 763 SymX.CanonicalDeclaration.FileURI = BarURI.c_str(); 764 SymY.CanonicalDeclaration.FileURI = BarURI.c_str(); 765 SymX.IncludeHeaders.emplace_back("<bar>", 1); 766 SymY.IncludeHeaders.emplace_back("<bar>", 1); 767 // Shorten include path based on search directory and insert. 768 auto Results = completions(R"cpp( 769 namespace ns { 770 class X; 771 class Y {}; 772 } 773 int main() { ns::^ } 774 )cpp", 775 {SymX, SymY}); 776 EXPECT_THAT(Results.Completions, 777 ElementsAre(AllOf(Named("X"), Not(InsertInclude())), 778 AllOf(Named("Y"), Not(InsertInclude())))); 779 } 780 781 TEST(CompletionTest, IndexSuppressesPreambleCompletions) { 782 Annotations Test(R"cpp( 783 #include "bar.h" 784 namespace ns { int local; } 785 void f() { ns::^; } 786 void f2() { ns::preamble().$2^; } 787 )cpp"); 788 auto TU = TestTU::withCode(Test.code()); 789 TU.AdditionalFiles["bar.h"] = 790 R"cpp(namespace ns { struct preamble { int member; }; })cpp"; 791 792 clangd::CodeCompleteOptions Opts = {}; 793 auto I = memIndex({var("ns::index")}); 794 Opts.Index = I.get(); 795 auto WithIndex = completions(TU, Test.point(), {}, Opts); 796 EXPECT_THAT(WithIndex.Completions, 797 UnorderedElementsAre(Named("local"), Named("index"))); 798 auto ClassFromPreamble = completions(TU, Test.point("2"), {}, Opts); 799 EXPECT_THAT(ClassFromPreamble.Completions, Contains(Named("member"))); 800 801 Opts.Index = nullptr; 802 auto WithoutIndex = completions(TU, Test.point(), {}, Opts); 803 EXPECT_THAT(WithoutIndex.Completions, 804 UnorderedElementsAre(Named("local"), Named("preamble"))); 805 } 806 807 // This verifies that we get normal preprocessor completions in the preamble. 808 // This is a regression test for an old bug: if we override the preamble and 809 // try to complete inside it, clang kicks our completion point just outside the 810 // preamble, resulting in always getting top-level completions. 811 TEST(CompletionTest, CompletionInPreamble) { 812 auto Results = completions(R"cpp( 813 #ifnd^ef FOO_H_ 814 #define BAR_H_ 815 #include <bar.h> 816 int foo() {} 817 #endif 818 )cpp") 819 .Completions; 820 EXPECT_THAT(Results, ElementsAre(Named("ifndef"))); 821 } 822 823 TEST(CompletionTest, CompletionRecoveryASTType) { 824 auto Results = completions(R"cpp( 825 struct S { int member; }; 826 S overloaded(int); 827 void foo() { 828 // No overload matches, but we have recovery-expr with the correct type. 829 overloaded().^ 830 })cpp") 831 .Completions; 832 EXPECT_THAT(Results, ElementsAre(Named("member"))); 833 } 834 835 TEST(CompletionTest, DynamicIndexIncludeInsertion) { 836 MockFS FS; 837 MockCompilationDatabase CDB; 838 ClangdServer::Options Opts = ClangdServer::optsForTest(); 839 Opts.BuildDynamicSymbolIndex = true; 840 ClangdServer Server(CDB, FS, Opts); 841 842 FS.Files[testPath("foo_header.h")] = R"cpp( 843 #pragma once 844 struct Foo { 845 // Member doc 846 int foo(); 847 }; 848 )cpp"; 849 const std::string FileContent(R"cpp( 850 #include "foo_header.h" 851 int Foo::foo() { 852 return 42; 853 } 854 )cpp"); 855 Server.addDocument(testPath("foo_impl.cpp"), FileContent); 856 // Wait for the dynamic index being built. 857 ASSERT_TRUE(Server.blockUntilIdleForTest()); 858 859 auto File = testPath("foo.cpp"); 860 Annotations Test("Foo^ foo;"); 861 runAddDocument(Server, File, Test.code()); 862 auto CompletionList = 863 llvm::cantFail(runCodeComplete(Server, File, Test.point(), {})); 864 865 EXPECT_THAT(CompletionList.Completions, 866 ElementsAre(AllOf(Named("Foo"), HasInclude("\"foo_header.h\""), 867 InsertInclude()))); 868 } 869 870 TEST(CompletionTest, DynamicIndexMultiFile) { 871 MockFS FS; 872 MockCompilationDatabase CDB; 873 auto Opts = ClangdServer::optsForTest(); 874 Opts.BuildDynamicSymbolIndex = true; 875 ClangdServer Server(CDB, FS, Opts); 876 877 FS.Files[testPath("foo.h")] = R"cpp( 878 namespace ns { class XYZ {}; void foo(int x) {} } 879 )cpp"; 880 runAddDocument(Server, testPath("foo.cpp"), R"cpp( 881 #include "foo.h" 882 )cpp"); 883 884 auto File = testPath("bar.cpp"); 885 Annotations Test(R"cpp( 886 namespace ns { 887 class XXX {}; 888 /// Doooc 889 void fooooo() {} 890 } 891 void f() { ns::^ } 892 )cpp"); 893 runAddDocument(Server, File, Test.code()); 894 895 auto Results = cantFail(runCodeComplete(Server, File, Test.point(), {})); 896 // "XYZ" and "foo" are not included in the file being completed but are still 897 // visible through the index. 898 EXPECT_THAT(Results.Completions, Has("XYZ", CompletionItemKind::Class)); 899 EXPECT_THAT(Results.Completions, Has("foo", CompletionItemKind::Function)); 900 EXPECT_THAT(Results.Completions, Has("XXX", CompletionItemKind::Class)); 901 EXPECT_THAT(Results.Completions, 902 Contains((Named("fooooo"), Kind(CompletionItemKind::Function), 903 Doc("Doooc"), ReturnType("void")))); 904 } 905 906 TEST(CompletionTest, Documentation) { 907 auto Results = completions( 908 R"cpp( 909 // Non-doxygen comment. 910 int foo(); 911 /// Doxygen comment. 912 /// \param int a 913 int bar(int a); 914 /* Multi-line 915 block comment 916 */ 917 int baz(); 918 919 int x = ^ 920 )cpp"); 921 EXPECT_THAT(Results.Completions, 922 Contains(AllOf(Named("foo"), Doc("Non-doxygen comment.")))); 923 EXPECT_THAT( 924 Results.Completions, 925 Contains(AllOf(Named("bar"), Doc("Doxygen comment.\n\\param int a")))); 926 EXPECT_THAT(Results.Completions, 927 Contains(AllOf(Named("baz"), Doc("Multi-line block comment")))); 928 } 929 930 TEST(CompletionTest, CommentsFromSystemHeaders) { 931 MockFS FS; 932 MockCompilationDatabase CDB; 933 934 auto Opts = ClangdServer::optsForTest(); 935 Opts.BuildDynamicSymbolIndex = true; 936 937 ClangdServer Server(CDB, FS, Opts); 938 939 FS.Files[testPath("foo.h")] = R"cpp( 940 #pragma GCC system_header 941 942 // This comment should be retained! 943 int foo(); 944 )cpp"; 945 946 auto File = testPath("foo.cpp"); 947 Annotations Test(R"cpp( 948 #include "foo.h" 949 int x = foo^ 950 )cpp"); 951 runAddDocument(Server, File, Test.code()); 952 auto CompletionList = 953 llvm::cantFail(runCodeComplete(Server, File, Test.point(), {})); 954 955 EXPECT_THAT( 956 CompletionList.Completions, 957 Contains(AllOf(Named("foo"), Doc("This comment should be retained!")))); 958 } 959 960 TEST(CompletionTest, GlobalCompletionFiltering) { 961 962 Symbol Class = cls("XYZ"); 963 Class.Flags = static_cast<Symbol::SymbolFlag>( 964 Class.Flags & ~(Symbol::IndexedForCodeCompletion)); 965 Symbol Func = func("XYZ::foooo"); 966 Func.Flags = static_cast<Symbol::SymbolFlag>( 967 Func.Flags & ~(Symbol::IndexedForCodeCompletion)); 968 969 auto Results = completions(R"(// void f() { 970 XYZ::foooo^ 971 })", 972 {Class, Func}); 973 EXPECT_THAT(Results.Completions, IsEmpty()); 974 } 975 976 TEST(CodeCompleteTest, DisableTypoCorrection) { 977 auto Results = completions(R"cpp( 978 namespace clang { int v; } 979 void f() { clangd::^ 980 )cpp"); 981 EXPECT_TRUE(Results.Completions.empty()); 982 } 983 984 TEST(CodeCompleteTest, NoColonColonAtTheEnd) { 985 auto Results = completions(R"cpp( 986 namespace clang { } 987 void f() { 988 clan^ 989 } 990 )cpp"); 991 992 EXPECT_THAT(Results.Completions, Contains(Labeled("clang"))); 993 EXPECT_THAT(Results.Completions, Not(Contains(Labeled("clang::")))); 994 } 995 996 TEST(CompletionTest, BacktrackCrashes) { 997 // Sema calls code completion callbacks twice in these cases. 998 auto Results = completions(R"cpp( 999 namespace ns { 1000 struct FooBarBaz {}; 1001 } // namespace ns 1002 1003 int foo(ns::FooBar^ 1004 )cpp"); 1005 1006 EXPECT_THAT(Results.Completions, ElementsAre(Labeled("FooBarBaz"))); 1007 1008 // Check we don't crash in that case too. 1009 completions(R"cpp( 1010 struct FooBarBaz {}; 1011 void test() { 1012 if (FooBarBaz * x^) {} 1013 } 1014 )cpp"); 1015 } 1016 1017 TEST(CompletionTest, CompleteInMacroWithStringification) { 1018 auto Results = completions(R"cpp( 1019 void f(const char *, int x); 1020 #define F(x) f(#x, x) 1021 1022 namespace ns { 1023 int X; 1024 int Y; 1025 } // namespace ns 1026 1027 int f(int input_num) { 1028 F(ns::^) 1029 } 1030 )cpp"); 1031 1032 EXPECT_THAT(Results.Completions, 1033 UnorderedElementsAre(Named("X"), Named("Y"))); 1034 } 1035 1036 TEST(CompletionTest, CompleteInMacroAndNamespaceWithStringification) { 1037 auto Results = completions(R"cpp( 1038 void f(const char *, int x); 1039 #define F(x) f(#x, x) 1040 1041 namespace ns { 1042 int X; 1043 1044 int f(int input_num) { 1045 F(^) 1046 } 1047 } // namespace ns 1048 )cpp"); 1049 1050 EXPECT_THAT(Results.Completions, Contains(Named("X"))); 1051 } 1052 1053 TEST(CompletionTest, IgnoreCompleteInExcludedPPBranchWithRecoveryContext) { 1054 auto Results = completions(R"cpp( 1055 int bar(int param_in_bar) { 1056 } 1057 1058 int foo(int param_in_foo) { 1059 #if 0 1060 // In recovery mode, "param_in_foo" will also be suggested among many other 1061 // unrelated symbols; however, this is really a special case where this works. 1062 // If the #if block is outside of the function, "param_in_foo" is still 1063 // suggested, but "bar" and "foo" are missing. So the recovery mode doesn't 1064 // really provide useful results in excluded branches. 1065 par^ 1066 #endif 1067 } 1068 )cpp"); 1069 1070 EXPECT_TRUE(Results.Completions.empty()); 1071 } 1072 1073 TEST(CompletionTest, DefaultArgs) { 1074 clangd::CodeCompleteOptions Opts; 1075 std::string Context = R"cpp( 1076 int X(int A = 0); 1077 int Y(int A, int B = 0); 1078 int Z(int A, int B = 0, int C = 0, int D = 0); 1079 )cpp"; 1080 EXPECT_THAT(completions(Context + "int y = X^", {}, Opts).Completions, 1081 UnorderedElementsAre(Labeled("X(int A = 0)"))); 1082 EXPECT_THAT(completions(Context + "int y = Y^", {}, Opts).Completions, 1083 UnorderedElementsAre(AllOf(Labeled("Y(int A, int B = 0)"), 1084 SnippetSuffix("(${1:int A})")))); 1085 EXPECT_THAT(completions(Context + "int y = Z^", {}, Opts).Completions, 1086 UnorderedElementsAre( 1087 AllOf(Labeled("Z(int A, int B = 0, int C = 0, int D = 0)"), 1088 SnippetSuffix("(${1:int A})")))); 1089 } 1090 1091 TEST(CompletionTest, NoCrashWithTemplateParamsAndPreferredTypes) { 1092 auto Completions = completions(R"cpp( 1093 template <template <class> class TT> int foo() { 1094 int a = ^ 1095 } 1096 )cpp") 1097 .Completions; 1098 EXPECT_THAT(Completions, Contains(Named("TT"))); 1099 } 1100 1101 TEST(CompletionTest, RecordCCResultCallback) { 1102 std::vector<CodeCompletion> RecordedCompletions; 1103 CodeCompleteOptions Opts; 1104 Opts.RecordCCResult = [&RecordedCompletions](const CodeCompletion &CC, 1105 const SymbolQualitySignals &, 1106 const SymbolRelevanceSignals &, 1107 float Score) { 1108 RecordedCompletions.push_back(CC); 1109 }; 1110 1111 completions("int xy1, xy2; int a = xy^", /*IndexSymbols=*/{}, Opts); 1112 EXPECT_THAT(RecordedCompletions, 1113 UnorderedElementsAre(Named("xy1"), Named("xy2"))); 1114 } 1115 1116 TEST(CompletionTest, ASTSignals) { 1117 struct Completion { 1118 std::string Name; 1119 unsigned MainFileRefs; 1120 unsigned ScopeRefsInFile; 1121 }; 1122 CodeCompleteOptions Opts; 1123 std::vector<Completion> RecordedCompletions; 1124 Opts.RecordCCResult = [&RecordedCompletions](const CodeCompletion &CC, 1125 const SymbolQualitySignals &, 1126 const SymbolRelevanceSignals &R, 1127 float Score) { 1128 RecordedCompletions.push_back({CC.Name, R.MainFileRefs, R.ScopeRefsInFile}); 1129 }; 1130 ASTSignals MainFileSignals; 1131 MainFileSignals.ReferencedSymbols[var("xy1").ID] = 3; 1132 MainFileSignals.ReferencedSymbols[var("xy2").ID] = 1; 1133 MainFileSignals.ReferencedSymbols[var("xyindex").ID] = 10; 1134 MainFileSignals.RelatedNamespaces["tar::"] = 5; 1135 MainFileSignals.RelatedNamespaces["bar::"] = 3; 1136 Opts.MainFileSignals = &MainFileSignals; 1137 Opts.AllScopes = true; 1138 completions( 1139 R"cpp( 1140 int xy1; 1141 int xy2; 1142 namespace bar { 1143 int xybar = 1; 1144 int a = xy^ 1145 } 1146 )cpp", 1147 /*IndexSymbols=*/{var("xyindex"), var("tar::xytar"), var("bar::xybar")}, 1148 Opts); 1149 EXPECT_THAT(RecordedCompletions, 1150 UnorderedElementsAre( 1151 AllOf(Named("xy1"), MainFileRefs(3u), ScopeRefs(0u)), 1152 AllOf(Named("xy2"), MainFileRefs(1u), ScopeRefs(0u)), 1153 AllOf(Named("xyindex"), MainFileRefs(10u), ScopeRefs(0u)), 1154 AllOf(Named("xytar"), MainFileRefs(0u), ScopeRefs(5u)), 1155 AllOf(/*both from sema and index*/ Named("xybar"), 1156 MainFileRefs(0u), ScopeRefs(3u)))); 1157 } 1158 1159 SignatureHelp signatures(llvm::StringRef Text, Position Point, 1160 std::vector<Symbol> IndexSymbols = {}) { 1161 std::unique_ptr<SymbolIndex> Index; 1162 if (!IndexSymbols.empty()) 1163 Index = memIndex(IndexSymbols); 1164 1165 auto TU = TestTU::withCode(Text); 1166 MockFS FS; 1167 auto Inputs = TU.inputs(FS); 1168 Inputs.Index = Index.get(); 1169 IgnoreDiagnostics Diags; 1170 auto CI = buildCompilerInvocation(Inputs, Diags); 1171 if (!CI) { 1172 ADD_FAILURE() << "Couldn't build CompilerInvocation"; 1173 return {}; 1174 } 1175 auto Preamble = buildPreamble(testPath(TU.Filename), *CI, Inputs, 1176 /*InMemory=*/true, /*Callback=*/nullptr); 1177 if (!Preamble) { 1178 ADD_FAILURE() << "Couldn't build Preamble"; 1179 return {}; 1180 } 1181 return signatureHelp(testPath(TU.Filename), Point, *Preamble, Inputs); 1182 } 1183 1184 SignatureHelp signatures(llvm::StringRef Text, 1185 std::vector<Symbol> IndexSymbols = {}) { 1186 Annotations Test(Text); 1187 return signatures(Test.code(), Test.point(), std::move(IndexSymbols)); 1188 } 1189 1190 struct ExpectedParameter { 1191 std::string Text; 1192 std::pair<unsigned, unsigned> Offsets; 1193 }; 1194 MATCHER_P(ParamsAre, P, "") { 1195 if (P.size() != arg.parameters.size()) 1196 return false; 1197 for (unsigned I = 0; I < P.size(); ++I) { 1198 if (P[I].Text != arg.parameters[I].labelString || 1199 P[I].Offsets != arg.parameters[I].labelOffsets) 1200 return false; 1201 } 1202 return true; 1203 } 1204 MATCHER_P(SigDoc, Doc, "") { return arg.documentation == Doc; } 1205 1206 /// \p AnnotatedLabel is a signature label with ranges marking parameters, e.g. 1207 /// foo([[int p1]], [[double p2]]) -> void 1208 Matcher<SignatureInformation> Sig(llvm::StringRef AnnotatedLabel) { 1209 llvm::Annotations A(AnnotatedLabel); 1210 std::string Label = std::string(A.code()); 1211 std::vector<ExpectedParameter> Parameters; 1212 for (auto Range : A.ranges()) { 1213 Parameters.emplace_back(); 1214 1215 ExpectedParameter &P = Parameters.back(); 1216 P.Text = Label.substr(Range.Begin, Range.End - Range.Begin); 1217 P.Offsets.first = lspLength(llvm::StringRef(Label).substr(0, Range.Begin)); 1218 P.Offsets.second = lspLength(llvm::StringRef(Label).substr(1, Range.End)); 1219 } 1220 return AllOf(SigHelpLabeled(Label), ParamsAre(Parameters)); 1221 } 1222 1223 TEST(SignatureHelpTest, Overloads) { 1224 auto Results = signatures(R"cpp( 1225 void foo(int x, int y); 1226 void foo(int x, float y); 1227 void foo(float x, int y); 1228 void foo(float x, float y); 1229 void bar(int x, int y = 0); 1230 int main() { foo(^); } 1231 )cpp"); 1232 EXPECT_THAT(Results.signatures, 1233 UnorderedElementsAre(Sig("foo([[float x]], [[float y]]) -> void"), 1234 Sig("foo([[float x]], [[int y]]) -> void"), 1235 Sig("foo([[int x]], [[float y]]) -> void"), 1236 Sig("foo([[int x]], [[int y]]) -> void"))); 1237 // We always prefer the first signature. 1238 EXPECT_EQ(0, Results.activeSignature); 1239 EXPECT_EQ(0, Results.activeParameter); 1240 } 1241 1242 TEST(SignatureHelpTest, DefaultArgs) { 1243 auto Results = signatures(R"cpp( 1244 void bar(int x, int y = 0); 1245 void bar(float x = 0, int y = 42); 1246 int main() { bar(^ 1247 )cpp"); 1248 EXPECT_THAT(Results.signatures, 1249 UnorderedElementsAre( 1250 Sig("bar([[int x]], [[int y = 0]]) -> void"), 1251 Sig("bar([[float x = 0]], [[int y = 42]]) -> void"))); 1252 EXPECT_EQ(0, Results.activeSignature); 1253 EXPECT_EQ(0, Results.activeParameter); 1254 } 1255 1256 TEST(SignatureHelpTest, ActiveArg) { 1257 auto Results = signatures(R"cpp( 1258 int baz(int a, int b, int c); 1259 int main() { baz(baz(1,2,3), ^); } 1260 )cpp"); 1261 EXPECT_THAT(Results.signatures, 1262 ElementsAre(Sig("baz([[int a]], [[int b]], [[int c]]) -> int"))); 1263 EXPECT_EQ(0, Results.activeSignature); 1264 EXPECT_EQ(1, Results.activeParameter); 1265 } 1266 1267 TEST(SignatureHelpTest, OpeningParen) { 1268 llvm::StringLiteral Tests[] = { 1269 // Recursive function call. 1270 R"cpp( 1271 int foo(int a, int b, int c); 1272 int main() { 1273 foo(foo $p^( foo(10, 10, 10), ^ ))); 1274 })cpp", 1275 // Functional type cast. 1276 R"cpp( 1277 struct Foo { 1278 Foo(int a, int b, int c); 1279 }; 1280 int main() { 1281 Foo $p^( 10, ^ ); 1282 })cpp", 1283 // New expression. 1284 R"cpp( 1285 struct Foo { 1286 Foo(int a, int b, int c); 1287 }; 1288 int main() { 1289 new Foo $p^( 10, ^ ); 1290 })cpp", 1291 // Macro expansion. 1292 R"cpp( 1293 int foo(int a, int b, int c); 1294 #define FOO foo( 1295 1296 int main() { 1297 // Macro expansions. 1298 $p^FOO 10, ^ ); 1299 })cpp", 1300 // Macro arguments. 1301 R"cpp( 1302 int foo(int a, int b, int c); 1303 int main() { 1304 #define ID(X) X 1305 // FIXME: figure out why ID(foo (foo(10), )) doesn't work when preserving 1306 // the recovery expression. 1307 ID(foo $p^( 10, ^ )) 1308 })cpp", 1309 // Dependent args. 1310 R"cpp( 1311 int foo(int a, int b); 1312 template <typename T> void bar(T t) { 1313 foo$p^(t, ^t); 1314 })cpp", 1315 // Dependent args on templated func. 1316 R"cpp( 1317 template <typename T> 1318 int foo(T, T); 1319 template <typename T> void bar(T t) { 1320 foo$p^(t, ^t); 1321 })cpp", 1322 // Dependent args on member. 1323 R"cpp( 1324 struct Foo { int foo(int, int); }; 1325 template <typename T> void bar(T t) { 1326 Foo f; 1327 f.foo$p^(t, ^t); 1328 })cpp", 1329 // Dependent args on templated member. 1330 R"cpp( 1331 struct Foo { template <typename T> int foo(T, T); }; 1332 template <typename T> void bar(T t) { 1333 Foo f; 1334 f.foo$p^(t, ^t); 1335 })cpp", 1336 }; 1337 1338 for (auto Test : Tests) { 1339 Annotations Code(Test); 1340 EXPECT_EQ(signatures(Code.code(), Code.point()).argListStart, 1341 Code.point("p")) 1342 << "Test source:" << Test; 1343 } 1344 } 1345 1346 TEST(SignatureHelpTest, StalePreamble) { 1347 TestTU TU; 1348 TU.Code = ""; 1349 IgnoreDiagnostics Diags; 1350 MockFS FS; 1351 auto Inputs = TU.inputs(FS); 1352 auto CI = buildCompilerInvocation(Inputs, Diags); 1353 ASSERT_TRUE(CI); 1354 auto EmptyPreamble = buildPreamble(testPath(TU.Filename), *CI, Inputs, 1355 /*InMemory=*/true, /*Callback=*/nullptr); 1356 ASSERT_TRUE(EmptyPreamble); 1357 1358 TU.AdditionalFiles["a.h"] = "int foo(int x);"; 1359 const Annotations Test(R"cpp( 1360 #include "a.h" 1361 void bar() { foo(^2); })cpp"); 1362 TU.Code = Test.code().str(); 1363 auto Results = signatureHelp(testPath(TU.Filename), Test.point(), 1364 *EmptyPreamble, TU.inputs(FS)); 1365 EXPECT_THAT(Results.signatures, ElementsAre(Sig("foo([[int x]]) -> int"))); 1366 EXPECT_EQ(0, Results.activeSignature); 1367 EXPECT_EQ(0, Results.activeParameter); 1368 } 1369 1370 class IndexRequestCollector : public SymbolIndex { 1371 public: 1372 bool 1373 fuzzyFind(const FuzzyFindRequest &Req, 1374 llvm::function_ref<void(const Symbol &)> Callback) const override { 1375 std::unique_lock<std::mutex> Lock(Mut); 1376 Requests.push_back(Req); 1377 ReceivedRequestCV.notify_one(); 1378 return true; 1379 } 1380 1381 void lookup(const LookupRequest &, 1382 llvm::function_ref<void(const Symbol &)>) const override {} 1383 1384 bool refs(const RefsRequest &, 1385 llvm::function_ref<void(const Ref &)>) const override { 1386 return false; 1387 } 1388 1389 void relations(const RelationsRequest &, 1390 llvm::function_ref<void(const SymbolID &, const Symbol &)>) 1391 const override {} 1392 1393 llvm::unique_function<bool(llvm::StringRef) const> 1394 indexedFiles() const override { 1395 return [](llvm::StringRef) { return false; }; 1396 } 1397 1398 // This is incorrect, but IndexRequestCollector is not an actual index and it 1399 // isn't used in production code. 1400 size_t estimateMemoryUsage() const override { return 0; } 1401 1402 const std::vector<FuzzyFindRequest> consumeRequests(size_t Num) const { 1403 std::unique_lock<std::mutex> Lock(Mut); 1404 EXPECT_TRUE(wait(Lock, ReceivedRequestCV, timeoutSeconds(30), 1405 [this, Num] { return Requests.size() == Num; })); 1406 auto Reqs = std::move(Requests); 1407 Requests = {}; 1408 return Reqs; 1409 } 1410 1411 private: 1412 // We need a mutex to handle async fuzzy find requests. 1413 mutable std::condition_variable ReceivedRequestCV; 1414 mutable std::mutex Mut; 1415 mutable std::vector<FuzzyFindRequest> Requests; 1416 }; 1417 1418 // Clients have to consume exactly Num requests. 1419 std::vector<FuzzyFindRequest> captureIndexRequests(llvm::StringRef Code, 1420 size_t Num = 1) { 1421 clangd::CodeCompleteOptions Opts; 1422 IndexRequestCollector Requests; 1423 Opts.Index = &Requests; 1424 completions(Code, {}, Opts); 1425 const auto Reqs = Requests.consumeRequests(Num); 1426 EXPECT_EQ(Reqs.size(), Num); 1427 return Reqs; 1428 } 1429 1430 TEST(CompletionTest, UnqualifiedIdQuery) { 1431 auto Requests = captureIndexRequests(R"cpp( 1432 namespace std {} 1433 using namespace std; 1434 namespace ns { 1435 void f() { 1436 vec^ 1437 } 1438 } 1439 )cpp"); 1440 1441 EXPECT_THAT(Requests, 1442 ElementsAre(Field(&FuzzyFindRequest::Scopes, 1443 UnorderedElementsAre("", "ns::", "std::")))); 1444 } 1445 1446 TEST(CompletionTest, EnclosingScopeComesFirst) { 1447 auto Requests = captureIndexRequests(R"cpp( 1448 namespace std {} 1449 using namespace std; 1450 namespace nx { 1451 namespace ns { 1452 namespace { 1453 void f() { 1454 vec^ 1455 } 1456 } 1457 } 1458 } 1459 )cpp"); 1460 1461 EXPECT_THAT(Requests, 1462 ElementsAre(Field( 1463 &FuzzyFindRequest::Scopes, 1464 UnorderedElementsAre("", "std::", "nx::ns::", "nx::")))); 1465 EXPECT_EQ(Requests[0].Scopes[0], "nx::ns::"); 1466 } 1467 1468 TEST(CompletionTest, ResolvedQualifiedIdQuery) { 1469 auto Requests = captureIndexRequests(R"cpp( 1470 namespace ns1 {} 1471 namespace ns2 {} // ignore 1472 namespace ns3 { namespace nns3 {} } 1473 namespace foo { 1474 using namespace ns1; 1475 using namespace ns3::nns3; 1476 } 1477 namespace ns { 1478 void f() { 1479 foo::^ 1480 } 1481 } 1482 )cpp"); 1483 1484 EXPECT_THAT(Requests, 1485 ElementsAre(Field( 1486 &FuzzyFindRequest::Scopes, 1487 UnorderedElementsAre("foo::", "ns1::", "ns3::nns3::")))); 1488 } 1489 1490 TEST(CompletionTest, UnresolvedQualifierIdQuery) { 1491 auto Requests = captureIndexRequests(R"cpp( 1492 namespace a {} 1493 using namespace a; 1494 namespace ns { 1495 void f() { 1496 bar::^ 1497 } 1498 } // namespace ns 1499 )cpp"); 1500 1501 EXPECT_THAT(Requests, 1502 ElementsAre(Field( 1503 &FuzzyFindRequest::Scopes, 1504 UnorderedElementsAre("a::bar::", "ns::bar::", "bar::")))); 1505 } 1506 1507 TEST(CompletionTest, UnresolvedNestedQualifierIdQuery) { 1508 auto Requests = captureIndexRequests(R"cpp( 1509 namespace a {} 1510 using namespace a; 1511 namespace ns { 1512 void f() { 1513 ::a::bar::^ 1514 } 1515 } // namespace ns 1516 )cpp"); 1517 1518 EXPECT_THAT(Requests, ElementsAre(Field(&FuzzyFindRequest::Scopes, 1519 UnorderedElementsAre("a::bar::")))); 1520 } 1521 1522 TEST(CompletionTest, EmptyQualifiedQuery) { 1523 auto Requests = captureIndexRequests(R"cpp( 1524 namespace ns { 1525 void f() { 1526 ^ 1527 } 1528 } // namespace ns 1529 )cpp"); 1530 1531 EXPECT_THAT(Requests, ElementsAre(Field(&FuzzyFindRequest::Scopes, 1532 UnorderedElementsAre("", "ns::")))); 1533 } 1534 1535 TEST(CompletionTest, GlobalQualifiedQuery) { 1536 auto Requests = captureIndexRequests(R"cpp( 1537 namespace ns { 1538 void f() { 1539 ::^ 1540 } 1541 } // namespace ns 1542 )cpp"); 1543 1544 EXPECT_THAT(Requests, ElementsAre(Field(&FuzzyFindRequest::Scopes, 1545 UnorderedElementsAre("")))); 1546 } 1547 1548 TEST(CompletionTest, NoDuplicatedQueryScopes) { 1549 auto Requests = captureIndexRequests(R"cpp( 1550 namespace {} 1551 1552 namespace na { 1553 namespace {} 1554 namespace nb { 1555 ^ 1556 } // namespace nb 1557 } // namespace na 1558 )cpp"); 1559 1560 EXPECT_THAT(Requests, 1561 ElementsAre(Field(&FuzzyFindRequest::Scopes, 1562 UnorderedElementsAre("na::", "na::nb::", "")))); 1563 } 1564 1565 TEST(CompletionTest, NoIndexCompletionsInsideClasses) { 1566 auto Completions = completions( 1567 R"cpp( 1568 struct Foo { 1569 int SomeNameOfField; 1570 typedef int SomeNameOfTypedefField; 1571 }; 1572 1573 Foo::^)cpp", 1574 {func("::SomeNameInTheIndex"), func("::Foo::SomeNameInTheIndex")}); 1575 1576 EXPECT_THAT(Completions.Completions, 1577 AllOf(Contains(Labeled("SomeNameOfField")), 1578 Contains(Labeled("SomeNameOfTypedefField")), 1579 Not(Contains(Labeled("SomeNameInTheIndex"))))); 1580 } 1581 1582 TEST(CompletionTest, NoIndexCompletionsInsideDependentCode) { 1583 { 1584 auto Completions = completions( 1585 R"cpp( 1586 template <class T> 1587 void foo() { 1588 T::^ 1589 } 1590 )cpp", 1591 {func("::SomeNameInTheIndex")}); 1592 1593 EXPECT_THAT(Completions.Completions, 1594 Not(Contains(Labeled("SomeNameInTheIndex")))); 1595 } 1596 1597 { 1598 auto Completions = completions( 1599 R"cpp( 1600 template <class T> 1601 void foo() { 1602 T::template Y<int>::^ 1603 } 1604 )cpp", 1605 {func("::SomeNameInTheIndex")}); 1606 1607 EXPECT_THAT(Completions.Completions, 1608 Not(Contains(Labeled("SomeNameInTheIndex")))); 1609 } 1610 1611 { 1612 auto Completions = completions( 1613 R"cpp( 1614 template <class T> 1615 void foo() { 1616 T::foo::^ 1617 } 1618 )cpp", 1619 {func("::SomeNameInTheIndex")}); 1620 1621 EXPECT_THAT(Completions.Completions, 1622 Not(Contains(Labeled("SomeNameInTheIndex")))); 1623 } 1624 } 1625 1626 TEST(CompletionTest, OverloadBundling) { 1627 clangd::CodeCompleteOptions Opts; 1628 Opts.BundleOverloads = true; 1629 1630 std::string Context = R"cpp( 1631 struct X { 1632 // Overload with int 1633 int a(int); 1634 // Overload with bool 1635 int a(bool); 1636 int b(float); 1637 }; 1638 int GFuncC(int); 1639 int GFuncD(int); 1640 )cpp"; 1641 1642 // Member completions are bundled. 1643 EXPECT_THAT(completions(Context + "int y = X().^", {}, Opts).Completions, 1644 UnorderedElementsAre(Labeled("a(…)"), Labeled("b(float)"))); 1645 1646 // Non-member completions are bundled, including index+sema. 1647 Symbol NoArgsGFunc = func("GFuncC"); 1648 EXPECT_THAT( 1649 completions(Context + "int y = GFunc^", {NoArgsGFunc}, Opts).Completions, 1650 UnorderedElementsAre(Labeled("GFuncC(…)"), Labeled("GFuncD(int)"))); 1651 1652 // Differences in header-to-insert suppress bundling. 1653 std::string DeclFile = URI::create(testPath("foo")).toString(); 1654 NoArgsGFunc.CanonicalDeclaration.FileURI = DeclFile.c_str(); 1655 NoArgsGFunc.IncludeHeaders.emplace_back("<foo>", 1); 1656 EXPECT_THAT( 1657 completions(Context + "int y = GFunc^", {NoArgsGFunc}, Opts).Completions, 1658 UnorderedElementsAre(AllOf(Named("GFuncC"), InsertInclude("<foo>")), 1659 Labeled("GFuncC(int)"), Labeled("GFuncD(int)"))); 1660 1661 // Examine a bundled completion in detail. 1662 auto A = 1663 completions(Context + "int y = X().a^", {}, Opts).Completions.front(); 1664 EXPECT_EQ(A.Name, "a"); 1665 EXPECT_EQ(A.Signature, "(…)"); 1666 EXPECT_EQ(A.BundleSize, 2u); 1667 EXPECT_EQ(A.Kind, CompletionItemKind::Method); 1668 EXPECT_EQ(A.ReturnType, "int"); // All overloads return int. 1669 // For now we just return one of the doc strings arbitrarily. 1670 ASSERT_TRUE(A.Documentation); 1671 EXPECT_THAT( 1672 A.Documentation->asPlainText(), 1673 AnyOf(HasSubstr("Overload with int"), HasSubstr("Overload with bool"))); 1674 EXPECT_EQ(A.SnippetSuffix, "($0)"); 1675 } 1676 1677 TEST(CompletionTest, OverloadBundlingSameFileDifferentURI) { 1678 clangd::CodeCompleteOptions Opts; 1679 Opts.BundleOverloads = true; 1680 1681 Symbol SymX = sym("ns::X", index::SymbolKind::Function, "@F@\\0#"); 1682 Symbol SymY = sym("ns::X", index::SymbolKind::Function, "@F@\\0#I#"); 1683 std::string BarHeader = testPath("bar.h"); 1684 auto BarURI = URI::create(BarHeader).toString(); 1685 SymX.CanonicalDeclaration.FileURI = BarURI.c_str(); 1686 SymY.CanonicalDeclaration.FileURI = BarURI.c_str(); 1687 // The include header is different, but really it's the same file. 1688 SymX.IncludeHeaders.emplace_back("\"bar.h\"", 1); 1689 SymY.IncludeHeaders.emplace_back(BarURI.c_str(), 1); 1690 1691 auto Results = completions("void f() { ::ns::^ }", {SymX, SymY}, Opts); 1692 // Expect both results are bundled, despite the different-but-same 1693 // IncludeHeader. 1694 ASSERT_EQ(1u, Results.Completions.size()); 1695 const auto &R = Results.Completions.front(); 1696 EXPECT_EQ("X", R.Name); 1697 EXPECT_EQ(2u, R.BundleSize); 1698 } 1699 1700 TEST(CompletionTest, DocumentationFromChangedFileCrash) { 1701 MockFS FS; 1702 auto FooH = testPath("foo.h"); 1703 auto FooCpp = testPath("foo.cpp"); 1704 FS.Files[FooH] = R"cpp( 1705 // this is my documentation comment. 1706 int func(); 1707 )cpp"; 1708 FS.Files[FooCpp] = ""; 1709 1710 MockCompilationDatabase CDB; 1711 ClangdServer Server(CDB, FS, ClangdServer::optsForTest()); 1712 1713 Annotations Source(R"cpp( 1714 #include "foo.h" 1715 int func() { 1716 // This makes sure we have func from header in the AST. 1717 } 1718 int a = fun^ 1719 )cpp"); 1720 Server.addDocument(FooCpp, Source.code(), "null", WantDiagnostics::Yes); 1721 // We need to wait for preamble to build. 1722 ASSERT_TRUE(Server.blockUntilIdleForTest()); 1723 1724 // Change the header file. Completion will reuse the old preamble! 1725 FS.Files[FooH] = R"cpp( 1726 int func(); 1727 )cpp"; 1728 1729 clangd::CodeCompleteOptions Opts; 1730 CodeCompleteResult Completions = 1731 cantFail(runCodeComplete(Server, FooCpp, Source.point(), Opts)); 1732 // We shouldn't crash. Unfortunately, current workaround is to not produce 1733 // comments for symbols from headers. 1734 EXPECT_THAT(Completions.Completions, 1735 Contains(AllOf(Not(IsDocumented()), Named("func")))); 1736 } 1737 1738 TEST(CompletionTest, NonDocComments) { 1739 const char *Text = R"cpp( 1740 // We ignore namespace comments, for rationale see CodeCompletionStrings.h. 1741 namespace comments_ns { 1742 } 1743 1744 // ------------------ 1745 int comments_foo(); 1746 1747 // A comment and a decl are separated by newlines. 1748 // Therefore, the comment shouldn't show up as doc comment. 1749 1750 int comments_bar(); 1751 1752 // this comment should be in the results. 1753 int comments_baz(); 1754 1755 1756 template <class T> 1757 struct Struct { 1758 int comments_qux(); 1759 int comments_quux(); 1760 }; 1761 1762 1763 // This comment should not be there. 1764 1765 template <class T> 1766 int Struct<T>::comments_qux() { 1767 } 1768 1769 // This comment **should** be in results. 1770 template <class T> 1771 int Struct<T>::comments_quux() { 1772 int a = comments^; 1773 } 1774 )cpp"; 1775 1776 // We should not get any of those comments in completion. 1777 EXPECT_THAT( 1778 completions(Text).Completions, 1779 UnorderedElementsAre(AllOf(Not(IsDocumented()), Named("comments_foo")), 1780 AllOf(IsDocumented(), Named("comments_baz")), 1781 AllOf(IsDocumented(), Named("comments_quux")), 1782 AllOf(Not(IsDocumented()), Named("comments_ns")), 1783 // FIXME(ibiryukov): the following items should have 1784 // empty documentation, since they are separated from 1785 // a comment with an empty line. Unfortunately, I 1786 // couldn't make Sema tests pass if we ignore those. 1787 AllOf(IsDocumented(), Named("comments_bar")), 1788 AllOf(IsDocumented(), Named("comments_qux")))); 1789 } 1790 1791 TEST(CompletionTest, CompleteOnInvalidLine) { 1792 auto FooCpp = testPath("foo.cpp"); 1793 1794 MockCompilationDatabase CDB; 1795 MockFS FS; 1796 FS.Files[FooCpp] = "// empty file"; 1797 1798 ClangdServer Server(CDB, FS, ClangdServer::optsForTest()); 1799 // Run completion outside the file range. 1800 Position Pos; 1801 Pos.line = 100; 1802 Pos.character = 0; 1803 EXPECT_THAT_EXPECTED( 1804 runCodeComplete(Server, FooCpp, Pos, clangd::CodeCompleteOptions()), 1805 Failed()); 1806 } 1807 1808 TEST(CompletionTest, QualifiedNames) { 1809 auto Results = completions( 1810 R"cpp( 1811 namespace ns { int local; void both(); } 1812 void f() { ::ns::^ } 1813 )cpp", 1814 {func("ns::both"), cls("ns::Index")}); 1815 // We get results from both index and sema, with no duplicates. 1816 EXPECT_THAT( 1817 Results.Completions, 1818 UnorderedElementsAre(Scope("ns::"), Scope("ns::"), Scope("ns::"))); 1819 } 1820 1821 TEST(CompletionTest, Render) { 1822 CodeCompletion C; 1823 C.Name = "x"; 1824 C.Signature = "(bool) const"; 1825 C.SnippetSuffix = "(${0:bool})"; 1826 C.ReturnType = "int"; 1827 C.RequiredQualifier = "Foo::"; 1828 C.Scope = "ns::Foo::"; 1829 C.Documentation.emplace(); 1830 C.Documentation->addParagraph().appendText("This is ").appendCode("x()"); 1831 C.Includes.emplace_back(); 1832 auto &Include = C.Includes.back(); 1833 Include.Header = "\"foo.h\""; 1834 C.Kind = CompletionItemKind::Method; 1835 C.Score.Total = 1.0; 1836 C.Score.ExcludingName = .5; 1837 C.Origin = SymbolOrigin::AST | SymbolOrigin::Static; 1838 1839 CodeCompleteOptions Opts; 1840 Opts.IncludeIndicator.Insert = "^"; 1841 Opts.IncludeIndicator.NoInsert = ""; 1842 Opts.EnableSnippets = false; 1843 1844 auto R = C.render(Opts); 1845 EXPECT_EQ(R.label, "Foo::x(bool) const"); 1846 EXPECT_EQ(R.insertText, "Foo::x"); 1847 EXPECT_EQ(R.insertTextFormat, InsertTextFormat::PlainText); 1848 EXPECT_EQ(R.filterText, "x"); 1849 EXPECT_EQ(R.detail, "int"); 1850 EXPECT_EQ(R.documentation->value, "From \"foo.h\"\nThis is x()"); 1851 EXPECT_THAT(R.additionalTextEdits, IsEmpty()); 1852 EXPECT_EQ(R.sortText, sortText(1.0, "x")); 1853 EXPECT_FALSE(R.deprecated); 1854 EXPECT_EQ(R.score, .5f); 1855 1856 Opts.EnableSnippets = true; 1857 R = C.render(Opts); 1858 EXPECT_EQ(R.insertText, "Foo::x(${0:bool})"); 1859 EXPECT_EQ(R.insertTextFormat, InsertTextFormat::Snippet); 1860 1861 Include.Insertion.emplace(); 1862 R = C.render(Opts); 1863 EXPECT_EQ(R.label, "^Foo::x(bool) const"); 1864 EXPECT_THAT(R.additionalTextEdits, Not(IsEmpty())); 1865 1866 Opts.ShowOrigins = true; 1867 R = C.render(Opts); 1868 EXPECT_EQ(R.label, "^[AS]Foo::x(bool) const"); 1869 1870 C.BundleSize = 2; 1871 R = C.render(Opts); 1872 EXPECT_EQ(R.detail, "[2 overloads]"); 1873 EXPECT_EQ(R.documentation->value, "From \"foo.h\"\nThis is x()"); 1874 1875 C.Deprecated = true; 1876 R = C.render(Opts); 1877 EXPECT_TRUE(R.deprecated); 1878 1879 Opts.DocumentationFormat = MarkupKind::Markdown; 1880 R = C.render(Opts); 1881 EXPECT_EQ(R.documentation->value, "From `\"foo.h\"` \nThis is `x()`"); 1882 } 1883 1884 TEST(CompletionTest, IgnoreRecoveryResults) { 1885 auto Results = completions( 1886 R"cpp( 1887 namespace ns { int NotRecovered() { return 0; } } 1888 void f() { 1889 // Sema enters recovery mode first and then normal mode. 1890 if (auto x = ns::NotRecover^) 1891 } 1892 )cpp"); 1893 EXPECT_THAT(Results.Completions, UnorderedElementsAre(Named("NotRecovered"))); 1894 } 1895 1896 TEST(CompletionTest, ScopeOfClassFieldInConstructorInitializer) { 1897 auto Results = completions( 1898 R"cpp( 1899 namespace ns { 1900 class X { public: X(); int x_; }; 1901 X::X() : x_^(0) {} 1902 } 1903 )cpp"); 1904 EXPECT_THAT(Results.Completions, 1905 UnorderedElementsAre(AllOf(Scope("ns::X::"), Named("x_")))); 1906 } 1907 1908 TEST(CompletionTest, CodeCompletionContext) { 1909 auto Results = completions( 1910 R"cpp( 1911 namespace ns { 1912 class X { public: X(); int x_; }; 1913 void f() { 1914 X x; 1915 x.^; 1916 } 1917 } 1918 )cpp"); 1919 1920 EXPECT_THAT(Results.Context, CodeCompletionContext::CCC_DotMemberAccess); 1921 } 1922 1923 TEST(CompletionTest, FixItForArrowToDot) { 1924 MockFS FS; 1925 MockCompilationDatabase CDB; 1926 1927 CodeCompleteOptions Opts; 1928 Opts.IncludeFixIts = true; 1929 const char *Code = 1930 R"cpp( 1931 class Auxilary { 1932 public: 1933 void AuxFunction(); 1934 }; 1935 class ClassWithPtr { 1936 public: 1937 void MemberFunction(); 1938 Auxilary* operator->() const; 1939 Auxilary* Aux; 1940 }; 1941 void f() { 1942 ClassWithPtr x; 1943 x[[->]]^; 1944 } 1945 )cpp"; 1946 auto Results = completions(Code, {}, Opts); 1947 EXPECT_EQ(Results.Completions.size(), 3u); 1948 1949 TextEdit ReplacementEdit; 1950 ReplacementEdit.range = Annotations(Code).range(); 1951 ReplacementEdit.newText = "."; 1952 for (const auto &C : Results.Completions) { 1953 EXPECT_TRUE(C.FixIts.size() == 1u || C.Name == "AuxFunction"); 1954 if (!C.FixIts.empty()) { 1955 EXPECT_THAT(C.FixIts, ElementsAre(ReplacementEdit)); 1956 } 1957 } 1958 } 1959 1960 TEST(CompletionTest, FixItForDotToArrow) { 1961 CodeCompleteOptions Opts; 1962 Opts.IncludeFixIts = true; 1963 const char *Code = 1964 R"cpp( 1965 class Auxilary { 1966 public: 1967 void AuxFunction(); 1968 }; 1969 class ClassWithPtr { 1970 public: 1971 void MemberFunction(); 1972 Auxilary* operator->() const; 1973 Auxilary* Aux; 1974 }; 1975 void f() { 1976 ClassWithPtr x; 1977 x[[.]]^; 1978 } 1979 )cpp"; 1980 auto Results = completions(Code, {}, Opts); 1981 EXPECT_EQ(Results.Completions.size(), 3u); 1982 1983 TextEdit ReplacementEdit; 1984 ReplacementEdit.range = Annotations(Code).range(); 1985 ReplacementEdit.newText = "->"; 1986 for (const auto &C : Results.Completions) { 1987 EXPECT_TRUE(C.FixIts.empty() || C.Name == "AuxFunction"); 1988 if (!C.FixIts.empty()) { 1989 EXPECT_THAT(C.FixIts, ElementsAre(ReplacementEdit)); 1990 } 1991 } 1992 } 1993 1994 TEST(CompletionTest, RenderWithFixItMerged) { 1995 TextEdit FixIt; 1996 FixIt.range.end.character = 5; 1997 FixIt.newText = "->"; 1998 1999 CodeCompletion C; 2000 C.Name = "x"; 2001 C.RequiredQualifier = "Foo::"; 2002 C.FixIts = {FixIt}; 2003 C.CompletionTokenRange.start.character = 5; 2004 2005 CodeCompleteOptions Opts; 2006 Opts.IncludeFixIts = true; 2007 2008 auto R = C.render(Opts); 2009 EXPECT_TRUE(R.textEdit); 2010 EXPECT_EQ(R.textEdit->newText, "->Foo::x"); 2011 EXPECT_TRUE(R.additionalTextEdits.empty()); 2012 } 2013 2014 TEST(CompletionTest, RenderWithFixItNonMerged) { 2015 TextEdit FixIt; 2016 FixIt.range.end.character = 4; 2017 FixIt.newText = "->"; 2018 2019 CodeCompletion C; 2020 C.Name = "x"; 2021 C.RequiredQualifier = "Foo::"; 2022 C.FixIts = {FixIt}; 2023 C.CompletionTokenRange.start.character = 5; 2024 2025 CodeCompleteOptions Opts; 2026 Opts.IncludeFixIts = true; 2027 2028 auto R = C.render(Opts); 2029 EXPECT_TRUE(R.textEdit); 2030 EXPECT_EQ(R.textEdit->newText, "Foo::x"); 2031 EXPECT_THAT(R.additionalTextEdits, UnorderedElementsAre(FixIt)); 2032 } 2033 2034 TEST(CompletionTest, CompletionTokenRange) { 2035 MockFS FS; 2036 MockCompilationDatabase CDB; 2037 TestTU TU; 2038 TU.AdditionalFiles["foo/abc/foo.h"] = ""; 2039 2040 constexpr const char *TestCodes[] = { 2041 R"cpp( 2042 class Auxilary { 2043 public: 2044 void AuxFunction(); 2045 }; 2046 void f() { 2047 Auxilary x; 2048 x.[[Aux]]^; 2049 } 2050 )cpp", 2051 R"cpp( 2052 class Auxilary { 2053 public: 2054 void AuxFunction(); 2055 }; 2056 void f() { 2057 Auxilary x; 2058 x.[[]]^; 2059 } 2060 )cpp", 2061 R"cpp( 2062 #include "foo/[[a^/]]foo.h" 2063 )cpp", 2064 R"cpp( 2065 #include "foo/abc/[[fo^o.h"]] 2066 )cpp", 2067 }; 2068 for (const auto &Text : TestCodes) { 2069 Annotations TestCode(Text); 2070 TU.Code = TestCode.code().str(); 2071 auto Results = completions(TU, TestCode.point()); 2072 if (Results.Completions.size() != 1) { 2073 ADD_FAILURE() << "Results.Completions.size() != 1" << Text; 2074 continue; 2075 } 2076 EXPECT_THAT(Results.Completions.front().CompletionTokenRange, 2077 TestCode.range()); 2078 } 2079 } 2080 2081 TEST(SignatureHelpTest, OverloadsOrdering) { 2082 const auto Results = signatures(R"cpp( 2083 void foo(int x); 2084 void foo(int x, float y); 2085 void foo(float x, int y); 2086 void foo(float x, float y); 2087 void foo(int x, int y = 0); 2088 int main() { foo(^); } 2089 )cpp"); 2090 EXPECT_THAT(Results.signatures, 2091 ElementsAre(Sig("foo([[int x]]) -> void"), 2092 Sig("foo([[int x]], [[int y = 0]]) -> void"), 2093 Sig("foo([[float x]], [[int y]]) -> void"), 2094 Sig("foo([[int x]], [[float y]]) -> void"), 2095 Sig("foo([[float x]], [[float y]]) -> void"))); 2096 // We always prefer the first signature. 2097 EXPECT_EQ(0, Results.activeSignature); 2098 EXPECT_EQ(0, Results.activeParameter); 2099 } 2100 2101 TEST(SignatureHelpTest, InstantiatedSignatures) { 2102 StringRef Sig0 = R"cpp( 2103 template <class T> 2104 void foo(T, T, T); 2105 2106 int main() { 2107 foo<int>(^); 2108 } 2109 )cpp"; 2110 2111 EXPECT_THAT(signatures(Sig0).signatures, 2112 ElementsAre(Sig("foo([[T]], [[T]], [[T]]) -> void"))); 2113 2114 StringRef Sig1 = R"cpp( 2115 template <class T> 2116 void foo(T, T, T); 2117 2118 int main() { 2119 foo(10, ^); 2120 })cpp"; 2121 2122 EXPECT_THAT(signatures(Sig1).signatures, 2123 ElementsAre(Sig("foo([[T]], [[T]], [[T]]) -> void"))); 2124 2125 StringRef Sig2 = R"cpp( 2126 template <class ...T> 2127 void foo(T...); 2128 2129 int main() { 2130 foo<int>(^); 2131 } 2132 )cpp"; 2133 2134 EXPECT_THAT(signatures(Sig2).signatures, 2135 ElementsAre(Sig("foo([[T...]]) -> void"))); 2136 2137 // It is debatable whether we should substitute the outer template parameter 2138 // ('T') in that case. Currently we don't substitute it in signature help, but 2139 // do substitute in code complete. 2140 // FIXME: make code complete and signature help consistent, figure out which 2141 // way is better. 2142 StringRef Sig3 = R"cpp( 2143 template <class T> 2144 struct X { 2145 template <class U> 2146 void foo(T, U); 2147 }; 2148 2149 int main() { 2150 X<int>().foo<double>(^) 2151 } 2152 )cpp"; 2153 2154 EXPECT_THAT(signatures(Sig3).signatures, 2155 ElementsAre(Sig("foo([[T]], [[U]]) -> void"))); 2156 } 2157 2158 TEST(SignatureHelpTest, IndexDocumentation) { 2159 Symbol Foo0 = sym("foo", index::SymbolKind::Function, "@F@\\0#"); 2160 Foo0.Documentation = "Doc from the index"; 2161 Symbol Foo1 = sym("foo", index::SymbolKind::Function, "@F@\\0#I#"); 2162 Foo1.Documentation = "Doc from the index"; 2163 Symbol Foo2 = sym("foo", index::SymbolKind::Function, "@F@\\0#I#I#"); 2164 2165 StringRef Sig0 = R"cpp( 2166 int foo(); 2167 int foo(double); 2168 2169 void test() { 2170 foo(^); 2171 } 2172 )cpp"; 2173 2174 EXPECT_THAT( 2175 signatures(Sig0, {Foo0}).signatures, 2176 ElementsAre(AllOf(Sig("foo() -> int"), SigDoc("Doc from the index")), 2177 AllOf(Sig("foo([[double]]) -> int"), SigDoc("")))); 2178 2179 StringRef Sig1 = R"cpp( 2180 int foo(); 2181 // Overriden doc from sema 2182 int foo(int); 2183 // Doc from sema 2184 int foo(int, int); 2185 2186 void test() { 2187 foo(^); 2188 } 2189 )cpp"; 2190 2191 EXPECT_THAT( 2192 signatures(Sig1, {Foo0, Foo1, Foo2}).signatures, 2193 ElementsAre( 2194 AllOf(Sig("foo() -> int"), SigDoc("Doc from the index")), 2195 AllOf(Sig("foo([[int]]) -> int"), SigDoc("Overriden doc from sema")), 2196 AllOf(Sig("foo([[int]], [[int]]) -> int"), SigDoc("Doc from sema")))); 2197 } 2198 2199 TEST(SignatureHelpTest, DynamicIndexDocumentation) { 2200 MockFS FS; 2201 MockCompilationDatabase CDB; 2202 ClangdServer::Options Opts = ClangdServer::optsForTest(); 2203 Opts.BuildDynamicSymbolIndex = true; 2204 ClangdServer Server(CDB, FS, Opts); 2205 2206 FS.Files[testPath("foo.h")] = R"cpp( 2207 struct Foo { 2208 // Member doc 2209 int foo(); 2210 }; 2211 )cpp"; 2212 Annotations FileContent(R"cpp( 2213 #include "foo.h" 2214 void test() { 2215 Foo f; 2216 f.foo(^); 2217 } 2218 )cpp"); 2219 auto File = testPath("test.cpp"); 2220 Server.addDocument(File, FileContent.code()); 2221 // Wait for the dynamic index being built. 2222 ASSERT_TRUE(Server.blockUntilIdleForTest()); 2223 EXPECT_THAT( 2224 llvm::cantFail(runSignatureHelp(Server, File, FileContent.point())) 2225 .signatures, 2226 ElementsAre(AllOf(Sig("foo() -> int"), SigDoc("Member doc")))); 2227 } 2228 2229 TEST(CompletionTest, CompletionFunctionArgsDisabled) { 2230 CodeCompleteOptions Opts; 2231 Opts.EnableSnippets = true; 2232 Opts.EnableFunctionArgSnippets = false; 2233 2234 { 2235 auto Results = completions( 2236 R"cpp( 2237 void xfoo(); 2238 void xfoo(int x, int y); 2239 void f() { xfo^ })cpp", 2240 {}, Opts); 2241 EXPECT_THAT( 2242 Results.Completions, 2243 UnorderedElementsAre(AllOf(Named("xfoo"), SnippetSuffix("()")), 2244 AllOf(Named("xfoo"), SnippetSuffix("($0)")))); 2245 } 2246 { 2247 auto Results = completions( 2248 R"cpp( 2249 void xbar(); 2250 void f() { xba^ })cpp", 2251 {}, Opts); 2252 EXPECT_THAT(Results.Completions, UnorderedElementsAre(AllOf( 2253 Named("xbar"), SnippetSuffix("()")))); 2254 } 2255 { 2256 Opts.BundleOverloads = true; 2257 auto Results = completions( 2258 R"cpp( 2259 void xfoo(); 2260 void xfoo(int x, int y); 2261 void f() { xfo^ })cpp", 2262 {}, Opts); 2263 EXPECT_THAT( 2264 Results.Completions, 2265 UnorderedElementsAre(AllOf(Named("xfoo"), SnippetSuffix("($0)")))); 2266 } 2267 { 2268 auto Results = completions( 2269 R"cpp( 2270 template <class T, class U> 2271 void xfoo(int a, U b); 2272 void f() { xfo^ })cpp", 2273 {}, Opts); 2274 EXPECT_THAT( 2275 Results.Completions, 2276 UnorderedElementsAre(AllOf(Named("xfoo"), SnippetSuffix("<$1>($0)")))); 2277 } 2278 { 2279 auto Results = completions( 2280 R"cpp( 2281 template <class T> 2282 class foo_class{}; 2283 template <class T> 2284 using foo_alias = T**; 2285 void f() { foo_^ })cpp", 2286 {}, Opts); 2287 EXPECT_THAT( 2288 Results.Completions, 2289 UnorderedElementsAre(AllOf(Named("foo_class"), SnippetSuffix("<$0>")), 2290 AllOf(Named("foo_alias"), SnippetSuffix("<$0>")))); 2291 } 2292 } 2293 2294 TEST(CompletionTest, SuggestOverrides) { 2295 constexpr const char *const Text(R"cpp( 2296 class A { 2297 public: 2298 virtual void vfunc(bool param); 2299 virtual void vfunc(bool param, int p); 2300 void func(bool param); 2301 }; 2302 class B : public A { 2303 virtual void ttt(bool param) const; 2304 void vfunc(bool param, int p) override; 2305 }; 2306 class C : public B { 2307 public: 2308 void vfunc(bool param) override; 2309 ^ 2310 }; 2311 )cpp"); 2312 const auto Results = completions(Text); 2313 EXPECT_THAT( 2314 Results.Completions, 2315 AllOf(Contains(AllOf(Labeled("void vfunc(bool param, int p) override"), 2316 NameStartsWith("vfunc"))), 2317 Contains(AllOf(Labeled("void ttt(bool param) const override"), 2318 NameStartsWith("ttt"))), 2319 Not(Contains(Labeled("void vfunc(bool param) override"))))); 2320 } 2321 2322 TEST(CompletionTest, OverridesNonIdentName) { 2323 // Check the completions call does not crash. 2324 completions(R"cpp( 2325 struct Base { 2326 virtual ~Base() = 0; 2327 virtual operator int() = 0; 2328 virtual Base& operator+(Base&) = 0; 2329 }; 2330 2331 struct Derived : Base { 2332 ^ 2333 }; 2334 )cpp"); 2335 } 2336 2337 TEST(GuessCompletionPrefix, Filters) { 2338 for (llvm::StringRef Case : { 2339 "[[scope::]][[ident]]^", 2340 "[[]][[]]^", 2341 "\n[[]][[]]^", 2342 "[[]][[ab]]^", 2343 "x.[[]][[ab]]^", 2344 "x.[[]][[]]^", 2345 "[[x::]][[ab]]^", 2346 "[[x::]][[]]^", 2347 "[[::x::]][[ab]]^", 2348 "some text [[scope::more::]][[identif]]^ier", 2349 "some text [[scope::]][[mor]]^e::identifier", 2350 "weird case foo::[[::bar::]][[baz]]^", 2351 "/* [[]][[]]^ */", 2352 }) { 2353 Annotations F(Case); 2354 auto Offset = cantFail(positionToOffset(F.code(), F.point())); 2355 auto ToStringRef = [&](Range R) { 2356 return F.code().slice(cantFail(positionToOffset(F.code(), R.start)), 2357 cantFail(positionToOffset(F.code(), R.end))); 2358 }; 2359 auto WantQualifier = ToStringRef(F.ranges()[0]), 2360 WantName = ToStringRef(F.ranges()[1]); 2361 2362 auto Prefix = guessCompletionPrefix(F.code(), Offset); 2363 // Even when components are empty, check their offsets are correct. 2364 EXPECT_EQ(WantQualifier, Prefix.Qualifier) << Case; 2365 EXPECT_EQ(WantQualifier.begin(), Prefix.Qualifier.begin()) << Case; 2366 EXPECT_EQ(WantName, Prefix.Name) << Case; 2367 EXPECT_EQ(WantName.begin(), Prefix.Name.begin()) << Case; 2368 } 2369 } 2370 2371 TEST(CompletionTest, EnableSpeculativeIndexRequest) { 2372 MockFS FS; 2373 MockCompilationDatabase CDB; 2374 ClangdServer Server(CDB, FS, ClangdServer::optsForTest()); 2375 2376 auto File = testPath("foo.cpp"); 2377 Annotations Test(R"cpp( 2378 namespace ns1 { int abc; } 2379 namespace ns2 { int abc; } 2380 void f() { ns1::ab$1^; ns1::ab$2^; } 2381 void f2() { ns2::ab$3^; } 2382 )cpp"); 2383 runAddDocument(Server, File, Test.code()); 2384 clangd::CodeCompleteOptions Opts = {}; 2385 2386 IndexRequestCollector Requests; 2387 Opts.Index = &Requests; 2388 2389 auto CompleteAtPoint = [&](StringRef P) { 2390 cantFail(runCodeComplete(Server, File, Test.point(P), Opts)); 2391 }; 2392 2393 CompleteAtPoint("1"); 2394 auto Reqs1 = Requests.consumeRequests(1); 2395 ASSERT_EQ(Reqs1.size(), 1u); 2396 EXPECT_THAT(Reqs1[0].Scopes, UnorderedElementsAre("ns1::")); 2397 2398 CompleteAtPoint("2"); 2399 auto Reqs2 = Requests.consumeRequests(1); 2400 // Speculation succeeded. Used speculative index result. 2401 ASSERT_EQ(Reqs2.size(), 1u); 2402 EXPECT_EQ(Reqs2[0], Reqs1[0]); 2403 2404 CompleteAtPoint("3"); 2405 // Speculation failed. Sent speculative index request and the new index 2406 // request after sema. 2407 auto Reqs3 = Requests.consumeRequests(2); 2408 ASSERT_EQ(Reqs3.size(), 2u); 2409 } 2410 2411 TEST(CompletionTest, InsertTheMostPopularHeader) { 2412 std::string DeclFile = URI::create(testPath("foo")).toString(); 2413 Symbol Sym = func("Func"); 2414 Sym.CanonicalDeclaration.FileURI = DeclFile.c_str(); 2415 Sym.IncludeHeaders.emplace_back("\"foo.h\"", 2); 2416 Sym.IncludeHeaders.emplace_back("\"bar.h\"", 1000); 2417 2418 auto Results = completions("Fun^", {Sym}).Completions; 2419 assert(!Results.empty()); 2420 EXPECT_THAT(Results[0], AllOf(Named("Func"), InsertInclude("\"bar.h\""))); 2421 EXPECT_EQ(Results[0].Includes.size(), 2u); 2422 } 2423 2424 TEST(CompletionTest, NoInsertIncludeIfOnePresent) { 2425 Annotations Test(R"cpp( 2426 #include "foo.h" 2427 Fun^ 2428 )cpp"); 2429 auto TU = TestTU::withCode(Test.code()); 2430 TU.AdditionalFiles["foo.h"] = ""; 2431 2432 std::string DeclFile = URI::create(testPath("foo")).toString(); 2433 Symbol Sym = func("Func"); 2434 Sym.CanonicalDeclaration.FileURI = DeclFile.c_str(); 2435 Sym.IncludeHeaders.emplace_back("\"foo.h\"", 2); 2436 Sym.IncludeHeaders.emplace_back("\"bar.h\"", 1000); 2437 2438 EXPECT_THAT(completions(TU, Test.point(), {Sym}).Completions, 2439 UnorderedElementsAre(AllOf(Named("Func"), HasInclude("\"foo.h\""), 2440 Not(InsertInclude())))); 2441 } 2442 2443 TEST(CompletionTest, MergeMacrosFromIndexAndSema) { 2444 Symbol Sym; 2445 Sym.Name = "Clangd_Macro_Test"; 2446 Sym.ID = SymbolID("c:foo.cpp@8@macro@Clangd_Macro_Test"); 2447 Sym.SymInfo.Kind = index::SymbolKind::Macro; 2448 Sym.Flags |= Symbol::IndexedForCodeCompletion; 2449 EXPECT_THAT(completions("#define Clangd_Macro_Test\nClangd_Macro_T^", {Sym}) 2450 .Completions, 2451 UnorderedElementsAre(Named("Clangd_Macro_Test"))); 2452 } 2453 2454 TEST(CompletionTest, MacroFromPreamble) { 2455 Annotations Test(R"cpp(#define CLANGD_PREAMBLE_MAIN x 2456 2457 int x = 0; 2458 #define CLANGD_MAIN x 2459 void f() { CLANGD_^ } 2460 )cpp"); 2461 auto TU = TestTU::withCode(Test.code()); 2462 TU.HeaderCode = "#define CLANGD_PREAMBLE_HEADER x"; 2463 auto Results = completions(TU, Test.point(), {func("CLANGD_INDEX")}); 2464 // We should get results from the main file, including the preamble section. 2465 // However no results from included files (the index should cover them). 2466 EXPECT_THAT(Results.Completions, 2467 UnorderedElementsAre(Named("CLANGD_PREAMBLE_MAIN"), 2468 Named("CLANGD_MAIN"), 2469 Named("CLANGD_INDEX"))); 2470 } 2471 2472 TEST(CompletionTest, DeprecatedResults) { 2473 std::string Body = R"cpp( 2474 void TestClangd(); 2475 void TestClangc() __attribute__((deprecated("", ""))); 2476 )cpp"; 2477 2478 EXPECT_THAT( 2479 completions(Body + "int main() { TestClang^ }").Completions, 2480 UnorderedElementsAre(AllOf(Named("TestClangd"), Not(Deprecated())), 2481 AllOf(Named("TestClangc"), Deprecated()))); 2482 } 2483 2484 TEST(SignatureHelpTest, PartialSpec) { 2485 const auto Results = signatures(R"cpp( 2486 template <typename T> struct Foo {}; 2487 template <typename T> struct Foo<T*> { Foo(T); }; 2488 Foo<int*> F(^);)cpp"); 2489 EXPECT_THAT(Results.signatures, Contains(Sig("Foo([[T]])"))); 2490 EXPECT_EQ(0, Results.activeParameter); 2491 } 2492 2493 TEST(SignatureHelpTest, InsideArgument) { 2494 { 2495 const auto Results = signatures(R"cpp( 2496 void foo(int x); 2497 void foo(int x, int y); 2498 int main() { foo(1+^); } 2499 )cpp"); 2500 EXPECT_THAT(Results.signatures, 2501 ElementsAre(Sig("foo([[int x]]) -> void"), 2502 Sig("foo([[int x]], [[int y]]) -> void"))); 2503 EXPECT_EQ(0, Results.activeParameter); 2504 } 2505 { 2506 const auto Results = signatures(R"cpp( 2507 void foo(int x); 2508 void foo(int x, int y); 2509 int main() { foo(1^); } 2510 )cpp"); 2511 EXPECT_THAT(Results.signatures, 2512 ElementsAre(Sig("foo([[int x]]) -> void"), 2513 Sig("foo([[int x]], [[int y]]) -> void"))); 2514 EXPECT_EQ(0, Results.activeParameter); 2515 } 2516 { 2517 const auto Results = signatures(R"cpp( 2518 void foo(int x); 2519 void foo(int x, int y); 2520 int main() { foo(1^0); } 2521 )cpp"); 2522 EXPECT_THAT(Results.signatures, 2523 ElementsAre(Sig("foo([[int x]]) -> void"), 2524 Sig("foo([[int x]], [[int y]]) -> void"))); 2525 EXPECT_EQ(0, Results.activeParameter); 2526 } 2527 { 2528 const auto Results = signatures(R"cpp( 2529 void foo(int x); 2530 void foo(int x, int y); 2531 int bar(int x, int y); 2532 int main() { bar(foo(2, 3^)); } 2533 )cpp"); 2534 EXPECT_THAT(Results.signatures, 2535 ElementsAre(Sig("foo([[int x]], [[int y]]) -> void"))); 2536 EXPECT_EQ(1, Results.activeParameter); 2537 } 2538 } 2539 2540 TEST(SignatureHelpTest, ConstructorInitializeFields) { 2541 { 2542 const auto Results = signatures(R"cpp( 2543 struct A { 2544 A(int); 2545 }; 2546 struct B { 2547 B() : a_elem(^) {} 2548 A a_elem; 2549 }; 2550 )cpp"); 2551 EXPECT_THAT(Results.signatures, 2552 UnorderedElementsAre(Sig("A([[int]])"), Sig("A([[A &&]])"), 2553 Sig("A([[const A &]])"))); 2554 } 2555 { 2556 const auto Results = signatures(R"cpp( 2557 struct A { 2558 A(int); 2559 }; 2560 struct C { 2561 C(int); 2562 C(A); 2563 }; 2564 struct B { 2565 B() : c_elem(A(1^)) {} 2566 C c_elem; 2567 }; 2568 )cpp"); 2569 EXPECT_THAT(Results.signatures, 2570 UnorderedElementsAre(Sig("A([[int]])"), Sig("A([[A &&]])"), 2571 Sig("A([[const A &]])"))); 2572 } 2573 } 2574 2575 TEST(CompletionTest, IncludedCompletionKinds) { 2576 Annotations Test(R"cpp(#include "^")cpp"); 2577 auto TU = TestTU::withCode(Test.code()); 2578 TU.AdditionalFiles["sub/bar.h"] = ""; 2579 TU.ExtraArgs.push_back("-I" + testPath("sub")); 2580 2581 auto Results = completions(TU, Test.point()); 2582 EXPECT_THAT(Results.Completions, 2583 AllOf(Has("sub/", CompletionItemKind::Folder), 2584 Has("bar.h\"", CompletionItemKind::File))); 2585 } 2586 2587 TEST(CompletionTest, NoCrashAtNonAlphaIncludeHeader) { 2588 completions( 2589 R"cpp( 2590 #include "./^" 2591 )cpp"); 2592 } 2593 2594 TEST(CompletionTest, NoAllScopesCompletionWhenQualified) { 2595 clangd::CodeCompleteOptions Opts = {}; 2596 Opts.AllScopes = true; 2597 2598 auto Results = completions( 2599 R"cpp( 2600 void f() { na::Clangd^ } 2601 )cpp", 2602 {cls("na::ClangdA"), cls("nx::ClangdX"), cls("Clangd3")}, Opts); 2603 EXPECT_THAT(Results.Completions, 2604 UnorderedElementsAre( 2605 AllOf(Qualifier(""), Scope("na::"), Named("ClangdA")))); 2606 } 2607 2608 TEST(CompletionTest, AllScopesCompletion) { 2609 clangd::CodeCompleteOptions Opts = {}; 2610 Opts.AllScopes = true; 2611 2612 auto Results = completions( 2613 R"cpp( 2614 namespace na { 2615 void f() { Clangd^ } 2616 } 2617 )cpp", 2618 {cls("nx::Clangd1"), cls("ny::Clangd2"), cls("Clangd3"), 2619 cls("na::nb::Clangd4")}, 2620 Opts); 2621 EXPECT_THAT( 2622 Results.Completions, 2623 UnorderedElementsAre(AllOf(Qualifier("nx::"), Named("Clangd1")), 2624 AllOf(Qualifier("ny::"), Named("Clangd2")), 2625 AllOf(Qualifier(""), Scope(""), Named("Clangd3")), 2626 AllOf(Qualifier("nb::"), Named("Clangd4")))); 2627 } 2628 2629 TEST(CompletionTest, NoQualifierIfShadowed) { 2630 clangd::CodeCompleteOptions Opts = {}; 2631 Opts.AllScopes = true; 2632 2633 auto Results = completions(R"cpp( 2634 namespace nx { class Clangd1 {}; } 2635 using nx::Clangd1; 2636 void f() { Clangd^ } 2637 )cpp", 2638 {cls("nx::Clangd1"), cls("nx::Clangd2")}, Opts); 2639 // Although Clangd1 is from another namespace, Sema tells us it's in-scope and 2640 // needs no qualifier. 2641 EXPECT_THAT(Results.Completions, 2642 UnorderedElementsAre(AllOf(Qualifier(""), Named("Clangd1")), 2643 AllOf(Qualifier("nx::"), Named("Clangd2")))); 2644 } 2645 2646 TEST(CompletionTest, NoCompletionsForNewNames) { 2647 clangd::CodeCompleteOptions Opts; 2648 Opts.AllScopes = true; 2649 auto Results = completions(R"cpp( 2650 void f() { int n^ } 2651 )cpp", 2652 {cls("naber"), cls("nx::naber")}, Opts); 2653 EXPECT_THAT(Results.Completions, UnorderedElementsAre()); 2654 } 2655 2656 TEST(CompletionTest, Lambda) { 2657 clangd::CodeCompleteOptions Opts = {}; 2658 2659 auto Results = completions(R"cpp( 2660 void function() { 2661 auto Lambda = [](int a, const double &b) {return 1.f;}; 2662 Lam^ 2663 } 2664 )cpp", 2665 {}, Opts); 2666 2667 ASSERT_EQ(Results.Completions.size(), 1u); 2668 const auto &A = Results.Completions.front(); 2669 EXPECT_EQ(A.Name, "Lambda"); 2670 EXPECT_EQ(A.Signature, "(int a, const double &b) const"); 2671 EXPECT_EQ(A.Kind, CompletionItemKind::Variable); 2672 EXPECT_EQ(A.ReturnType, "float"); 2673 EXPECT_EQ(A.SnippetSuffix, "(${1:int a}, ${2:const double &b})"); 2674 } 2675 2676 TEST(CompletionTest, StructuredBinding) { 2677 clangd::CodeCompleteOptions Opts = {}; 2678 2679 auto Results = completions(R"cpp( 2680 struct S { 2681 using Float = float; 2682 int x; 2683 Float y; 2684 }; 2685 void function() { 2686 const auto &[xxx, yyy] = S{}; 2687 yyy^ 2688 } 2689 )cpp", 2690 {}, Opts); 2691 2692 ASSERT_EQ(Results.Completions.size(), 1u); 2693 const auto &A = Results.Completions.front(); 2694 EXPECT_EQ(A.Name, "yyy"); 2695 EXPECT_EQ(A.Kind, CompletionItemKind::Variable); 2696 EXPECT_EQ(A.ReturnType, "const Float"); 2697 } 2698 2699 TEST(CompletionTest, ObjectiveCMethodNoArguments) { 2700 auto Results = completions(R"objc( 2701 @interface Foo 2702 @property(nonatomic, setter=setXToIgnoreComplete:) int value; 2703 @end 2704 Foo *foo = [Foo new]; int y = [foo v^] 2705 )objc", 2706 /*IndexSymbols=*/{}, 2707 /*Opts=*/{}, "Foo.m"); 2708 2709 auto C = Results.Completions; 2710 EXPECT_THAT(C, ElementsAre(Named("value"))); 2711 EXPECT_THAT(C, ElementsAre(Kind(CompletionItemKind::Method))); 2712 EXPECT_THAT(C, ElementsAre(ReturnType("int"))); 2713 EXPECT_THAT(C, ElementsAre(Signature(""))); 2714 EXPECT_THAT(C, ElementsAre(SnippetSuffix(""))); 2715 } 2716 2717 TEST(CompletionTest, ObjectiveCMethodOneArgument) { 2718 auto Results = completions(R"objc( 2719 @interface Foo 2720 - (int)valueForCharacter:(char)c; 2721 @end 2722 Foo *foo = [Foo new]; int y = [foo v^] 2723 )objc", 2724 /*IndexSymbols=*/{}, 2725 /*Opts=*/{}, "Foo.m"); 2726 2727 auto C = Results.Completions; 2728 EXPECT_THAT(C, ElementsAre(Named("valueForCharacter:"))); 2729 EXPECT_THAT(C, ElementsAre(Kind(CompletionItemKind::Method))); 2730 EXPECT_THAT(C, ElementsAre(ReturnType("int"))); 2731 EXPECT_THAT(C, ElementsAre(Signature("(char)"))); 2732 EXPECT_THAT(C, ElementsAre(SnippetSuffix("${1:(char)}"))); 2733 } 2734 2735 TEST(CompletionTest, ObjectiveCMethodTwoArgumentsFromBeginning) { 2736 auto Results = completions(R"objc( 2737 @interface Foo 2738 + (id)fooWithValue:(int)value fooey:(unsigned int)fooey; 2739 @end 2740 id val = [Foo foo^] 2741 )objc", 2742 /*IndexSymbols=*/{}, 2743 /*Opts=*/{}, "Foo.m"); 2744 2745 auto C = Results.Completions; 2746 EXPECT_THAT(C, ElementsAre(Named("fooWithValue:"))); 2747 EXPECT_THAT(C, ElementsAre(Kind(CompletionItemKind::Method))); 2748 EXPECT_THAT(C, ElementsAre(ReturnType("id"))); 2749 EXPECT_THAT(C, ElementsAre(Signature("(int) fooey:(unsigned int)"))); 2750 EXPECT_THAT( 2751 C, ElementsAre(SnippetSuffix("${1:(int)} fooey:${2:(unsigned int)}"))); 2752 } 2753 2754 TEST(CompletionTest, ObjectiveCMethodTwoArgumentsFromMiddle) { 2755 auto Results = completions(R"objc( 2756 @interface Foo 2757 + (id)fooWithValue:(int)value fooey:(unsigned int)fooey; 2758 @end 2759 id val = [Foo fooWithValue:10 f^] 2760 )objc", 2761 /*IndexSymbols=*/{}, 2762 /*Opts=*/{}, "Foo.m"); 2763 2764 auto C = Results.Completions; 2765 EXPECT_THAT(C, ElementsAre(Named("fooey:"))); 2766 EXPECT_THAT(C, ElementsAre(Kind(CompletionItemKind::Method))); 2767 EXPECT_THAT(C, ElementsAre(ReturnType("id"))); 2768 EXPECT_THAT(C, ElementsAre(Signature("(unsigned int)"))); 2769 EXPECT_THAT(C, ElementsAre(SnippetSuffix("${1:(unsigned int)}"))); 2770 } 2771 2772 TEST(CompletionTest, CursorInSnippets) { 2773 clangd::CodeCompleteOptions Options; 2774 Options.EnableSnippets = true; 2775 auto Results = completions( 2776 R"cpp( 2777 void while_foo(int a, int b); 2778 void test() { 2779 whil^ 2780 })cpp", 2781 /*IndexSymbols=*/{}, Options); 2782 2783 // Last placeholder in code patterns should be $0 to put the cursor there. 2784 EXPECT_THAT(Results.Completions, 2785 Contains(AllOf( 2786 Named("while"), 2787 SnippetSuffix(" (${1:condition}) {\n${0:statements}\n}")))); 2788 // However, snippets for functions must *not* end with $0. 2789 EXPECT_THAT(Results.Completions, 2790 Contains(AllOf(Named("while_foo"), 2791 SnippetSuffix("(${1:int a}, ${2:int b})")))); 2792 } 2793 2794 TEST(CompletionTest, WorksWithNullType) { 2795 auto R = completions(R"cpp( 2796 int main() { 2797 for (auto [loopVar] : y ) { // y has to be unresolved. 2798 int z = loopV^; 2799 } 2800 } 2801 )cpp"); 2802 EXPECT_THAT(R.Completions, ElementsAre(Named("loopVar"))); 2803 } 2804 2805 TEST(CompletionTest, UsingDecl) { 2806 const char *Header(R"cpp( 2807 void foo(int); 2808 namespace std { 2809 using ::foo; 2810 })cpp"); 2811 const char *Source(R"cpp( 2812 void bar() { 2813 std::^; 2814 })cpp"); 2815 auto Index = TestTU::withHeaderCode(Header).index(); 2816 clangd::CodeCompleteOptions Opts; 2817 Opts.Index = Index.get(); 2818 Opts.AllScopes = true; 2819 auto R = completions(Source, {}, Opts); 2820 EXPECT_THAT(R.Completions, 2821 ElementsAre(AllOf(Scope("std::"), Named("foo"), 2822 Kind(CompletionItemKind::Reference)))); 2823 } 2824 2825 TEST(CompletionTest, ScopeIsUnresolved) { 2826 clangd::CodeCompleteOptions Opts = {}; 2827 Opts.AllScopes = true; 2828 2829 auto Results = completions(R"cpp( 2830 namespace a { 2831 void f() { b::X^ } 2832 } 2833 )cpp", 2834 {cls("a::b::XYZ")}, Opts); 2835 EXPECT_THAT(Results.Completions, 2836 UnorderedElementsAre(AllOf(Qualifier(""), Named("XYZ")))); 2837 } 2838 2839 TEST(CompletionTest, NestedScopeIsUnresolved) { 2840 clangd::CodeCompleteOptions Opts = {}; 2841 Opts.AllScopes = true; 2842 2843 auto Results = completions(R"cpp( 2844 namespace a { 2845 namespace b {} 2846 void f() { b::c::X^ } 2847 } 2848 )cpp", 2849 {cls("a::b::c::XYZ")}, Opts); 2850 EXPECT_THAT(Results.Completions, 2851 UnorderedElementsAre(AllOf(Qualifier(""), Named("XYZ")))); 2852 } 2853 2854 // Clang parser gets confused here and doesn't report the ns:: prefix. 2855 // Naive behavior is to insert it again. We examine the source and recover. 2856 TEST(CompletionTest, NamespaceDoubleInsertion) { 2857 clangd::CodeCompleteOptions Opts = {}; 2858 2859 auto Results = completions(R"cpp( 2860 namespace foo { 2861 namespace ns {} 2862 #define M(X) < X 2863 M(ns::ABC^ 2864 } 2865 )cpp", 2866 {cls("foo::ns::ABCDE")}, Opts); 2867 EXPECT_THAT(Results.Completions, 2868 UnorderedElementsAre(AllOf(Qualifier(""), Named("ABCDE")))); 2869 } 2870 2871 TEST(CompletionTest, DerivedMethodsAreAlwaysVisible) { 2872 // Despite the fact that base method matches the ref-qualifier better, 2873 // completion results should only include the derived method. 2874 auto Completions = completions(R"cpp( 2875 struct deque_base { 2876 float size(); 2877 double size() const; 2878 }; 2879 struct deque : deque_base { 2880 int size() const; 2881 }; 2882 2883 auto x = deque().^ 2884 )cpp") 2885 .Completions; 2886 EXPECT_THAT(Completions, 2887 ElementsAre(AllOf(ReturnType("int"), Named("size")))); 2888 } 2889 2890 TEST(CompletionTest, NoCrashWithIncompleteLambda) { 2891 auto Completions = completions("auto&& x = []{^").Completions; 2892 // The completion of x itself can cause a problem: in the code completion 2893 // callback, its type is not known, which affects the linkage calculation. 2894 // A bad linkage value gets cached, and subsequently updated. 2895 EXPECT_THAT(Completions, Contains(Named("x"))); 2896 2897 auto Signatures = signatures("auto x() { x(^").signatures; 2898 EXPECT_THAT(Signatures, Contains(Sig("x() -> auto"))); 2899 } 2900 2901 TEST(CompletionTest, DelayedTemplateParsing) { 2902 Annotations Test(R"cpp( 2903 int xxx; 2904 template <typename T> int foo() { return xx^; } 2905 )cpp"); 2906 auto TU = TestTU::withCode(Test.code()); 2907 // Even though delayed-template-parsing is on, we will disable it to provide 2908 // completion in templates. 2909 TU.ExtraArgs.push_back("-fdelayed-template-parsing"); 2910 2911 EXPECT_THAT(completions(TU, Test.point()).Completions, 2912 Contains(Named("xxx"))); 2913 } 2914 2915 TEST(CompletionTest, CompletionRange) { 2916 const char *WithRange = "auto x = [[abc]]^"; 2917 auto Completions = completions(WithRange); 2918 EXPECT_EQ(Completions.CompletionRange, Annotations(WithRange).range()); 2919 Completions = completionsNoCompile(WithRange); 2920 EXPECT_EQ(Completions.CompletionRange, Annotations(WithRange).range()); 2921 2922 const char *EmptyRange = "auto x = [[]]^"; 2923 Completions = completions(EmptyRange); 2924 EXPECT_EQ(Completions.CompletionRange, Annotations(EmptyRange).range()); 2925 Completions = completionsNoCompile(EmptyRange); 2926 EXPECT_EQ(Completions.CompletionRange, Annotations(EmptyRange).range()); 2927 2928 // Sema doesn't trigger at all here, while the no-sema completion runs 2929 // heuristics as normal and reports a range. It'd be nice to be consistent. 2930 const char *NoCompletion = "/* [[]]^ */"; 2931 Completions = completions(NoCompletion); 2932 EXPECT_EQ(Completions.CompletionRange, llvm::None); 2933 Completions = completionsNoCompile(NoCompletion); 2934 EXPECT_EQ(Completions.CompletionRange, Annotations(NoCompletion).range()); 2935 } 2936 2937 TEST(NoCompileCompletionTest, Basic) { 2938 auto Results = completionsNoCompile(R"cpp( 2939 void func() { 2940 int xyz; 2941 int abc; 2942 ^ 2943 } 2944 )cpp"); 2945 EXPECT_FALSE(Results.RanParser); 2946 EXPECT_THAT(Results.Completions, 2947 UnorderedElementsAre(Named("void"), Named("func"), Named("int"), 2948 Named("xyz"), Named("abc"))); 2949 } 2950 2951 TEST(NoCompileCompletionTest, WithFilter) { 2952 auto Results = completionsNoCompile(R"cpp( 2953 void func() { 2954 int sym1; 2955 int sym2; 2956 int xyz1; 2957 int xyz2; 2958 sy^ 2959 } 2960 )cpp"); 2961 EXPECT_THAT(Results.Completions, 2962 UnorderedElementsAre(Named("sym1"), Named("sym2"))); 2963 } 2964 2965 TEST(NoCompileCompletionTest, WithIndex) { 2966 std::vector<Symbol> Syms = {func("xxx"), func("a::xxx"), func("ns::b::xxx"), 2967 func("c::xxx"), func("ns::d::xxx")}; 2968 auto Results = completionsNoCompile( 2969 R"cpp( 2970 // Current-scopes, unqualified completion. 2971 using namespace a; 2972 namespace ns { 2973 using namespace b; 2974 void foo() { 2975 xx^ 2976 } 2977 } 2978 )cpp", 2979 Syms); 2980 EXPECT_THAT(Results.Completions, 2981 UnorderedElementsAre(AllOf(Qualifier(""), Scope("")), 2982 AllOf(Qualifier(""), Scope("a::")), 2983 AllOf(Qualifier(""), Scope("ns::b::")))); 2984 CodeCompleteOptions Opts; 2985 Opts.AllScopes = true; 2986 Results = completionsNoCompile( 2987 R"cpp( 2988 // All-scopes unqualified completion. 2989 using namespace a; 2990 namespace ns { 2991 using namespace b; 2992 void foo() { 2993 xx^ 2994 } 2995 } 2996 )cpp", 2997 Syms, Opts); 2998 EXPECT_THAT(Results.Completions, 2999 UnorderedElementsAre(AllOf(Qualifier(""), Scope("")), 3000 AllOf(Qualifier(""), Scope("a::")), 3001 AllOf(Qualifier(""), Scope("ns::b::")), 3002 AllOf(Qualifier("c::"), Scope("c::")), 3003 AllOf(Qualifier("d::"), Scope("ns::d::")))); 3004 Results = completionsNoCompile( 3005 R"cpp( 3006 // Qualified completion. 3007 using namespace a; 3008 namespace ns { 3009 using namespace b; 3010 void foo() { 3011 b::xx^ 3012 } 3013 } 3014 )cpp", 3015 Syms, Opts); 3016 EXPECT_THAT(Results.Completions, 3017 ElementsAre(AllOf(Qualifier(""), Scope("ns::b::")))); 3018 Results = completionsNoCompile( 3019 R"cpp( 3020 // Absolutely qualified completion. 3021 using namespace a; 3022 namespace ns { 3023 using namespace b; 3024 void foo() { 3025 ::a::xx^ 3026 } 3027 } 3028 )cpp", 3029 Syms, Opts); 3030 EXPECT_THAT(Results.Completions, 3031 ElementsAre(AllOf(Qualifier(""), Scope("a::")))); 3032 } 3033 3034 TEST(AllowImplicitCompletion, All) { 3035 const char *Yes[] = { 3036 "foo.^bar", 3037 "foo->^bar", 3038 "foo::^bar", 3039 " # include <^foo.h>", 3040 "#import <foo/^bar.h>", 3041 "#include_next \"^", 3042 }; 3043 const char *No[] = { 3044 "foo>^bar", 3045 "foo:^bar", 3046 "foo\n^bar", 3047 "#include <foo.h> //^", 3048 "#include \"foo.h\"^", 3049 "#error <^", 3050 "#<^", 3051 }; 3052 for (const char *Test : Yes) { 3053 llvm::Annotations A(Test); 3054 EXPECT_TRUE(allowImplicitCompletion(A.code(), A.point())) << Test; 3055 } 3056 for (const char *Test : No) { 3057 llvm::Annotations A(Test); 3058 EXPECT_FALSE(allowImplicitCompletion(A.code(), A.point())) << Test; 3059 } 3060 } 3061 3062 TEST(CompletionTest, FunctionArgsExist) { 3063 clangd::CodeCompleteOptions Opts; 3064 Opts.EnableSnippets = true; 3065 std::string Context = R"cpp( 3066 int foo(int A); 3067 int bar(); 3068 struct Object { 3069 Object(int B) {} 3070 }; 3071 template <typename T> 3072 struct Container { 3073 Container(int Size) {} 3074 }; 3075 )cpp"; 3076 EXPECT_THAT(completions(Context + "int y = fo^", {}, Opts).Completions, 3077 UnorderedElementsAre( 3078 AllOf(Labeled("foo(int A)"), SnippetSuffix("(${1:int A})")))); 3079 EXPECT_THAT( 3080 completions(Context + "int y = fo^(42)", {}, Opts).Completions, 3081 UnorderedElementsAre(AllOf(Labeled("foo(int A)"), SnippetSuffix("")))); 3082 // FIXME(kirillbobyrev): No snippet should be produced here. 3083 EXPECT_THAT(completions(Context + "int y = fo^o(42)", {}, Opts).Completions, 3084 UnorderedElementsAre( 3085 AllOf(Labeled("foo(int A)"), SnippetSuffix("(${1:int A})")))); 3086 EXPECT_THAT( 3087 completions(Context + "int y = ba^", {}, Opts).Completions, 3088 UnorderedElementsAre(AllOf(Labeled("bar()"), SnippetSuffix("()")))); 3089 EXPECT_THAT(completions(Context + "int y = ba^()", {}, Opts).Completions, 3090 UnorderedElementsAre(AllOf(Labeled("bar()"), SnippetSuffix("")))); 3091 EXPECT_THAT( 3092 completions(Context + "Object o = Obj^", {}, Opts).Completions, 3093 Contains(AllOf(Labeled("Object(int B)"), SnippetSuffix("(${1:int B})"), 3094 Kind(CompletionItemKind::Constructor)))); 3095 EXPECT_THAT(completions(Context + "Object o = Obj^()", {}, Opts).Completions, 3096 Contains(AllOf(Labeled("Object(int B)"), SnippetSuffix(""), 3097 Kind(CompletionItemKind::Constructor)))); 3098 EXPECT_THAT( 3099 completions(Context + "Container c = Cont^", {}, Opts).Completions, 3100 Contains(AllOf(Labeled("Container<typename T>(int Size)"), 3101 SnippetSuffix("<${1:typename T}>(${2:int Size})"), 3102 Kind(CompletionItemKind::Constructor)))); 3103 // FIXME(kirillbobyrev): It would be nice to still produce the template 3104 // snippet part: in this case it should be "<${1:typename T}>". 3105 EXPECT_THAT( 3106 completions(Context + "Container c = Cont^()", {}, Opts).Completions, 3107 Contains(AllOf(Labeled("Container<typename T>(int Size)"), 3108 SnippetSuffix(""), 3109 Kind(CompletionItemKind::Constructor)))); 3110 } 3111 3112 } // namespace 3113 } // namespace clangd 3114 } // namespace clang 3115