1 //===- CodeCompleteConsumer.cpp - Code Completion Interface ---------------===// 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 // This file implements the CodeCompleteConsumer class. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "clang/Sema/CodeCompleteConsumer.h" 14 #include "clang-c/Index.h" 15 #include "clang/AST/Decl.h" 16 #include "clang/AST/DeclBase.h" 17 #include "clang/AST/DeclObjC.h" 18 #include "clang/AST/DeclTemplate.h" 19 #include "clang/AST/DeclarationName.h" 20 #include "clang/AST/Type.h" 21 #include "clang/Basic/IdentifierTable.h" 22 #include "clang/Lex/Preprocessor.h" 23 #include "clang/Sema/Sema.h" 24 #include "llvm/ADT/SmallString.h" 25 #include "llvm/ADT/SmallVector.h" 26 #include "llvm/ADT/StringExtras.h" 27 #include "llvm/ADT/StringRef.h" 28 #include "llvm/ADT/Twine.h" 29 #include "llvm/Support/Casting.h" 30 #include "llvm/Support/Compiler.h" 31 #include "llvm/Support/ErrorHandling.h" 32 #include "llvm/Support/FormatVariadic.h" 33 #include "llvm/Support/raw_ostream.h" 34 #include <algorithm> 35 #include <cassert> 36 #include <cstdint> 37 #include <string> 38 39 using namespace clang; 40 41 //===----------------------------------------------------------------------===// 42 // Code completion context implementation 43 //===----------------------------------------------------------------------===// 44 45 bool CodeCompletionContext::wantConstructorResults() const { 46 switch (CCKind) { 47 case CCC_Recovery: 48 case CCC_Statement: 49 case CCC_Expression: 50 case CCC_ObjCMessageReceiver: 51 case CCC_ParenthesizedExpression: 52 case CCC_Symbol: 53 case CCC_SymbolOrNewName: 54 return true; 55 56 case CCC_TopLevel: 57 case CCC_ObjCInterface: 58 case CCC_ObjCImplementation: 59 case CCC_ObjCIvarList: 60 case CCC_ClassStructUnion: 61 case CCC_DotMemberAccess: 62 case CCC_ArrowMemberAccess: 63 case CCC_ObjCPropertyAccess: 64 case CCC_EnumTag: 65 case CCC_UnionTag: 66 case CCC_ClassOrStructTag: 67 case CCC_ObjCProtocolName: 68 case CCC_Namespace: 69 case CCC_Type: 70 case CCC_NewName: 71 case CCC_MacroName: 72 case CCC_MacroNameUse: 73 case CCC_PreprocessorExpression: 74 case CCC_PreprocessorDirective: 75 case CCC_NaturalLanguage: 76 case CCC_SelectorName: 77 case CCC_TypeQualifiers: 78 case CCC_Other: 79 case CCC_OtherWithMacros: 80 case CCC_ObjCInstanceMessage: 81 case CCC_ObjCClassMessage: 82 case CCC_ObjCInterfaceName: 83 case CCC_ObjCCategoryName: 84 case CCC_IncludedFile: 85 case CCC_Attribute: 86 return false; 87 } 88 89 llvm_unreachable("Invalid CodeCompletionContext::Kind!"); 90 } 91 92 StringRef clang::getCompletionKindString(CodeCompletionContext::Kind Kind) { 93 using CCKind = CodeCompletionContext::Kind; 94 switch (Kind) { 95 case CCKind::CCC_Other: 96 return "Other"; 97 case CCKind::CCC_OtherWithMacros: 98 return "OtherWithMacros"; 99 case CCKind::CCC_TopLevel: 100 return "TopLevel"; 101 case CCKind::CCC_ObjCInterface: 102 return "ObjCInterface"; 103 case CCKind::CCC_ObjCImplementation: 104 return "ObjCImplementation"; 105 case CCKind::CCC_ObjCIvarList: 106 return "ObjCIvarList"; 107 case CCKind::CCC_ClassStructUnion: 108 return "ClassStructUnion"; 109 case CCKind::CCC_Statement: 110 return "Statement"; 111 case CCKind::CCC_Expression: 112 return "Expression"; 113 case CCKind::CCC_ObjCMessageReceiver: 114 return "ObjCMessageReceiver"; 115 case CCKind::CCC_DotMemberAccess: 116 return "DotMemberAccess"; 117 case CCKind::CCC_ArrowMemberAccess: 118 return "ArrowMemberAccess"; 119 case CCKind::CCC_ObjCPropertyAccess: 120 return "ObjCPropertyAccess"; 121 case CCKind::CCC_EnumTag: 122 return "EnumTag"; 123 case CCKind::CCC_UnionTag: 124 return "UnionTag"; 125 case CCKind::CCC_ClassOrStructTag: 126 return "ClassOrStructTag"; 127 case CCKind::CCC_ObjCProtocolName: 128 return "ObjCProtocolName"; 129 case CCKind::CCC_Namespace: 130 return "Namespace"; 131 case CCKind::CCC_Type: 132 return "Type"; 133 case CCKind::CCC_NewName: 134 return "NewName"; 135 case CCKind::CCC_Symbol: 136 return "Symbol"; 137 case CCKind::CCC_SymbolOrNewName: 138 return "SymbolOrNewName"; 139 case CCKind::CCC_MacroName: 140 return "MacroName"; 141 case CCKind::CCC_MacroNameUse: 142 return "MacroNameUse"; 143 case CCKind::CCC_PreprocessorExpression: 144 return "PreprocessorExpression"; 145 case CCKind::CCC_PreprocessorDirective: 146 return "PreprocessorDirective"; 147 case CCKind::CCC_NaturalLanguage: 148 return "NaturalLanguage"; 149 case CCKind::CCC_SelectorName: 150 return "SelectorName"; 151 case CCKind::CCC_TypeQualifiers: 152 return "TypeQualifiers"; 153 case CCKind::CCC_ParenthesizedExpression: 154 return "ParenthesizedExpression"; 155 case CCKind::CCC_ObjCInstanceMessage: 156 return "ObjCInstanceMessage"; 157 case CCKind::CCC_ObjCClassMessage: 158 return "ObjCClassMessage"; 159 case CCKind::CCC_ObjCInterfaceName: 160 return "ObjCInterfaceName"; 161 case CCKind::CCC_ObjCCategoryName: 162 return "ObjCCategoryName"; 163 case CCKind::CCC_IncludedFile: 164 return "IncludedFile"; 165 case CCKind::CCC_Attribute: 166 return "Attribute"; 167 case CCKind::CCC_Recovery: 168 return "Recovery"; 169 } 170 llvm_unreachable("Invalid CodeCompletionContext::Kind!"); 171 } 172 173 //===----------------------------------------------------------------------===// 174 // Code completion string implementation 175 //===----------------------------------------------------------------------===// 176 177 CodeCompletionString::Chunk::Chunk(ChunkKind Kind, const char *Text) 178 : Kind(Kind), Text("") { 179 switch (Kind) { 180 case CK_TypedText: 181 case CK_Text: 182 case CK_Placeholder: 183 case CK_Informative: 184 case CK_ResultType: 185 case CK_CurrentParameter: 186 this->Text = Text; 187 break; 188 189 case CK_Optional: 190 llvm_unreachable("Optional strings cannot be created from text"); 191 192 case CK_LeftParen: 193 this->Text = "("; 194 break; 195 196 case CK_RightParen: 197 this->Text = ")"; 198 break; 199 200 case CK_LeftBracket: 201 this->Text = "["; 202 break; 203 204 case CK_RightBracket: 205 this->Text = "]"; 206 break; 207 208 case CK_LeftBrace: 209 this->Text = "{"; 210 break; 211 212 case CK_RightBrace: 213 this->Text = "}"; 214 break; 215 216 case CK_LeftAngle: 217 this->Text = "<"; 218 break; 219 220 case CK_RightAngle: 221 this->Text = ">"; 222 break; 223 224 case CK_Comma: 225 this->Text = ", "; 226 break; 227 228 case CK_Colon: 229 this->Text = ":"; 230 break; 231 232 case CK_SemiColon: 233 this->Text = ";"; 234 break; 235 236 case CK_Equal: 237 this->Text = " = "; 238 break; 239 240 case CK_HorizontalSpace: 241 this->Text = " "; 242 break; 243 244 case CK_VerticalSpace: 245 this->Text = "\n"; 246 break; 247 } 248 } 249 250 CodeCompletionString::Chunk 251 CodeCompletionString::Chunk::CreateText(const char *Text) { 252 return Chunk(CK_Text, Text); 253 } 254 255 CodeCompletionString::Chunk 256 CodeCompletionString::Chunk::CreateOptional(CodeCompletionString *Optional) { 257 Chunk Result; 258 Result.Kind = CK_Optional; 259 Result.Optional = Optional; 260 return Result; 261 } 262 263 CodeCompletionString::Chunk 264 CodeCompletionString::Chunk::CreatePlaceholder(const char *Placeholder) { 265 return Chunk(CK_Placeholder, Placeholder); 266 } 267 268 CodeCompletionString::Chunk 269 CodeCompletionString::Chunk::CreateInformative(const char *Informative) { 270 return Chunk(CK_Informative, Informative); 271 } 272 273 CodeCompletionString::Chunk 274 CodeCompletionString::Chunk::CreateResultType(const char *ResultType) { 275 return Chunk(CK_ResultType, ResultType); 276 } 277 278 CodeCompletionString::Chunk CodeCompletionString::Chunk::CreateCurrentParameter( 279 const char *CurrentParameter) { 280 return Chunk(CK_CurrentParameter, CurrentParameter); 281 } 282 283 CodeCompletionString::CodeCompletionString( 284 const Chunk *Chunks, unsigned NumChunks, unsigned Priority, 285 CXAvailabilityKind Availability, const char **Annotations, 286 unsigned NumAnnotations, StringRef ParentName, const char *BriefComment) 287 : NumChunks(NumChunks), NumAnnotations(NumAnnotations), Priority(Priority), 288 Availability(Availability), ParentName(ParentName), 289 BriefComment(BriefComment) { 290 assert(NumChunks <= 0xffff); 291 assert(NumAnnotations <= 0xffff); 292 293 Chunk *StoredChunks = reinterpret_cast<Chunk *>(this + 1); 294 for (unsigned I = 0; I != NumChunks; ++I) 295 StoredChunks[I] = Chunks[I]; 296 297 const char **StoredAnnotations = 298 reinterpret_cast<const char **>(StoredChunks + NumChunks); 299 for (unsigned I = 0; I != NumAnnotations; ++I) 300 StoredAnnotations[I] = Annotations[I]; 301 } 302 303 unsigned CodeCompletionString::getAnnotationCount() const { 304 return NumAnnotations; 305 } 306 307 const char *CodeCompletionString::getAnnotation(unsigned AnnotationNr) const { 308 if (AnnotationNr < NumAnnotations) 309 return reinterpret_cast<const char *const *>(end())[AnnotationNr]; 310 else 311 return nullptr; 312 } 313 314 std::string CodeCompletionString::getAsString() const { 315 std::string Result; 316 llvm::raw_string_ostream OS(Result); 317 318 for (const Chunk &C : *this) { 319 switch (C.Kind) { 320 case CK_Optional: 321 OS << "{#" << C.Optional->getAsString() << "#}"; 322 break; 323 case CK_Placeholder: 324 OS << "<#" << C.Text << "#>"; 325 break; 326 case CK_Informative: 327 case CK_ResultType: 328 OS << "[#" << C.Text << "#]"; 329 break; 330 case CK_CurrentParameter: 331 OS << "<#" << C.Text << "#>"; 332 break; 333 default: 334 OS << C.Text; 335 break; 336 } 337 } 338 return OS.str(); 339 } 340 341 const char *CodeCompletionString::getTypedText() const { 342 for (const Chunk &C : *this) 343 if (C.Kind == CK_TypedText) 344 return C.Text; 345 346 return nullptr; 347 } 348 349 const char *CodeCompletionAllocator::CopyString(const Twine &String) { 350 SmallString<128> Data; 351 StringRef Ref = String.toStringRef(Data); 352 // FIXME: It would be more efficient to teach Twine to tell us its size and 353 // then add a routine there to fill in an allocated char* with the contents 354 // of the string. 355 char *Mem = (char *)Allocate(Ref.size() + 1, 1); 356 std::copy(Ref.begin(), Ref.end(), Mem); 357 Mem[Ref.size()] = 0; 358 return Mem; 359 } 360 361 StringRef CodeCompletionTUInfo::getParentName(const DeclContext *DC) { 362 if (!isa<NamedDecl>(DC)) 363 return {}; 364 365 // Check whether we've already cached the parent name. 366 StringRef &CachedParentName = ParentNames[DC]; 367 if (!CachedParentName.empty()) 368 return CachedParentName; 369 370 // If we already processed this DeclContext and assigned empty to it, the 371 // data pointer will be non-null. 372 if (CachedParentName.data() != nullptr) 373 return {}; 374 375 // Find the interesting names. 376 SmallVector<const DeclContext *, 2> Contexts; 377 while (DC && !DC->isFunctionOrMethod()) { 378 if (const auto *ND = dyn_cast<NamedDecl>(DC)) { 379 if (ND->getIdentifier()) 380 Contexts.push_back(DC); 381 } 382 383 DC = DC->getParent(); 384 } 385 386 { 387 SmallString<128> S; 388 llvm::raw_svector_ostream OS(S); 389 bool First = true; 390 for (const DeclContext *CurDC : llvm::reverse(Contexts)) { 391 if (First) 392 First = false; 393 else { 394 OS << "::"; 395 } 396 397 if (const auto *CatImpl = dyn_cast<ObjCCategoryImplDecl>(CurDC)) 398 CurDC = CatImpl->getCategoryDecl(); 399 400 if (const auto *Cat = dyn_cast<ObjCCategoryDecl>(CurDC)) { 401 const ObjCInterfaceDecl *Interface = Cat->getClassInterface(); 402 if (!Interface) { 403 // Assign an empty StringRef but with non-null data to distinguish 404 // between empty because we didn't process the DeclContext yet. 405 CachedParentName = StringRef((const char *)(uintptr_t)~0U, 0); 406 return {}; 407 } 408 409 OS << Interface->getName() << '(' << Cat->getName() << ')'; 410 } else { 411 OS << cast<NamedDecl>(CurDC)->getName(); 412 } 413 } 414 415 CachedParentName = AllocatorRef->CopyString(OS.str()); 416 } 417 418 return CachedParentName; 419 } 420 421 CodeCompletionString *CodeCompletionBuilder::TakeString() { 422 void *Mem = getAllocator().Allocate( 423 sizeof(CodeCompletionString) + sizeof(Chunk) * Chunks.size() + 424 sizeof(const char *) * Annotations.size(), 425 alignof(CodeCompletionString)); 426 CodeCompletionString *Result = new (Mem) CodeCompletionString( 427 Chunks.data(), Chunks.size(), Priority, Availability, Annotations.data(), 428 Annotations.size(), ParentName, BriefComment); 429 Chunks.clear(); 430 return Result; 431 } 432 433 void CodeCompletionBuilder::AddTypedTextChunk(const char *Text) { 434 Chunks.push_back(Chunk(CodeCompletionString::CK_TypedText, Text)); 435 } 436 437 void CodeCompletionBuilder::AddTextChunk(const char *Text) { 438 Chunks.push_back(Chunk::CreateText(Text)); 439 } 440 441 void CodeCompletionBuilder::AddOptionalChunk(CodeCompletionString *Optional) { 442 Chunks.push_back(Chunk::CreateOptional(Optional)); 443 } 444 445 void CodeCompletionBuilder::AddPlaceholderChunk(const char *Placeholder) { 446 Chunks.push_back(Chunk::CreatePlaceholder(Placeholder)); 447 } 448 449 void CodeCompletionBuilder::AddInformativeChunk(const char *Text) { 450 Chunks.push_back(Chunk::CreateInformative(Text)); 451 } 452 453 void CodeCompletionBuilder::AddResultTypeChunk(const char *ResultType) { 454 Chunks.push_back(Chunk::CreateResultType(ResultType)); 455 } 456 457 void CodeCompletionBuilder::AddCurrentParameterChunk( 458 const char *CurrentParameter) { 459 Chunks.push_back(Chunk::CreateCurrentParameter(CurrentParameter)); 460 } 461 462 void CodeCompletionBuilder::AddChunk(CodeCompletionString::ChunkKind CK, 463 const char *Text) { 464 Chunks.push_back(Chunk(CK, Text)); 465 } 466 467 void CodeCompletionBuilder::addParentContext(const DeclContext *DC) { 468 if (DC->isTranslationUnit()) 469 return; 470 471 if (DC->isFunctionOrMethod()) 472 return; 473 474 if (!isa<NamedDecl>(DC)) 475 return; 476 477 ParentName = getCodeCompletionTUInfo().getParentName(DC); 478 } 479 480 void CodeCompletionBuilder::addBriefComment(StringRef Comment) { 481 BriefComment = Allocator.CopyString(Comment); 482 } 483 484 //===----------------------------------------------------------------------===// 485 // Code completion overload candidate implementation 486 //===----------------------------------------------------------------------===// 487 FunctionDecl *CodeCompleteConsumer::OverloadCandidate::getFunction() const { 488 if (getKind() == CK_Function) 489 return Function; 490 else if (getKind() == CK_FunctionTemplate) 491 return FunctionTemplate->getTemplatedDecl(); 492 else 493 return nullptr; 494 } 495 496 const FunctionType * 497 CodeCompleteConsumer::OverloadCandidate::getFunctionType() const { 498 switch (Kind) { 499 case CK_Function: 500 return Function->getType()->getAs<FunctionType>(); 501 502 case CK_FunctionTemplate: 503 return FunctionTemplate->getTemplatedDecl() 504 ->getType() 505 ->getAs<FunctionType>(); 506 507 case CK_FunctionType: 508 return Type; 509 } 510 511 llvm_unreachable("Invalid CandidateKind!"); 512 } 513 514 //===----------------------------------------------------------------------===// 515 // Code completion consumer implementation 516 //===----------------------------------------------------------------------===// 517 518 CodeCompleteConsumer::~CodeCompleteConsumer() = default; 519 520 bool PrintingCodeCompleteConsumer::isResultFilteredOut( 521 StringRef Filter, CodeCompletionResult Result) { 522 switch (Result.Kind) { 523 case CodeCompletionResult::RK_Declaration: 524 return !(Result.Declaration->getIdentifier() && 525 Result.Declaration->getIdentifier()->getName().startswith(Filter)); 526 case CodeCompletionResult::RK_Keyword: 527 return !StringRef(Result.Keyword).startswith(Filter); 528 case CodeCompletionResult::RK_Macro: 529 return !Result.Macro->getName().startswith(Filter); 530 case CodeCompletionResult::RK_Pattern: 531 return !(Result.Pattern->getTypedText() && 532 StringRef(Result.Pattern->getTypedText()).startswith(Filter)); 533 } 534 llvm_unreachable("Unknown code completion result Kind."); 535 } 536 537 void PrintingCodeCompleteConsumer::ProcessCodeCompleteResults( 538 Sema &SemaRef, CodeCompletionContext Context, CodeCompletionResult *Results, 539 unsigned NumResults) { 540 std::stable_sort(Results, Results + NumResults); 541 542 if (!Context.getPreferredType().isNull()) 543 OS << "PREFERRED-TYPE: " << Context.getPreferredType().getAsString() 544 << "\n"; 545 546 StringRef Filter = SemaRef.getPreprocessor().getCodeCompletionFilter(); 547 // Print the completions. 548 for (unsigned I = 0; I != NumResults; ++I) { 549 if (!Filter.empty() && isResultFilteredOut(Filter, Results[I])) 550 continue; 551 OS << "COMPLETION: "; 552 switch (Results[I].Kind) { 553 case CodeCompletionResult::RK_Declaration: 554 OS << *Results[I].Declaration; 555 { 556 std::vector<std::string> Tags; 557 if (Results[I].Hidden) 558 Tags.push_back("Hidden"); 559 if (Results[I].InBaseClass) 560 Tags.push_back("InBase"); 561 if (Results[I].Availability == 562 CXAvailabilityKind::CXAvailability_NotAccessible) 563 Tags.push_back("Inaccessible"); 564 if (!Tags.empty()) 565 OS << " (" << llvm::join(Tags, ",") << ")"; 566 } 567 if (CodeCompletionString *CCS = Results[I].CreateCodeCompletionString( 568 SemaRef, Context, getAllocator(), CCTUInfo, 569 includeBriefComments())) { 570 OS << " : " << CCS->getAsString(); 571 if (const char *BriefComment = CCS->getBriefComment()) 572 OS << " : " << BriefComment; 573 } 574 break; 575 576 case CodeCompletionResult::RK_Keyword: 577 OS << Results[I].Keyword; 578 break; 579 580 case CodeCompletionResult::RK_Macro: 581 OS << Results[I].Macro->getName(); 582 if (CodeCompletionString *CCS = Results[I].CreateCodeCompletionString( 583 SemaRef, Context, getAllocator(), CCTUInfo, 584 includeBriefComments())) { 585 OS << " : " << CCS->getAsString(); 586 } 587 break; 588 589 case CodeCompletionResult::RK_Pattern: 590 OS << "Pattern : " << Results[I].Pattern->getAsString(); 591 break; 592 } 593 for (const FixItHint &FixIt : Results[I].FixIts) { 594 const SourceLocation BLoc = FixIt.RemoveRange.getBegin(); 595 const SourceLocation ELoc = FixIt.RemoveRange.getEnd(); 596 597 SourceManager &SM = SemaRef.SourceMgr; 598 std::pair<FileID, unsigned> BInfo = SM.getDecomposedLoc(BLoc); 599 std::pair<FileID, unsigned> EInfo = SM.getDecomposedLoc(ELoc); 600 // Adjust for token ranges. 601 if (FixIt.RemoveRange.isTokenRange()) 602 EInfo.second += Lexer::MeasureTokenLength(ELoc, SM, SemaRef.LangOpts); 603 604 OS << " (requires fix-it:" 605 << " {" << SM.getLineNumber(BInfo.first, BInfo.second) << ':' 606 << SM.getColumnNumber(BInfo.first, BInfo.second) << '-' 607 << SM.getLineNumber(EInfo.first, EInfo.second) << ':' 608 << SM.getColumnNumber(EInfo.first, EInfo.second) << "}" 609 << " to \"" << FixIt.CodeToInsert << "\")"; 610 } 611 OS << '\n'; 612 } 613 } 614 615 // This function is used solely to preserve the former presentation of overloads 616 // by "clang -cc1 -code-completion-at", since CodeCompletionString::getAsString 617 // needs to be improved for printing the newer and more detailed overload 618 // chunks. 619 static std::string getOverloadAsString(const CodeCompletionString &CCS) { 620 std::string Result; 621 llvm::raw_string_ostream OS(Result); 622 623 for (auto &C : CCS) { 624 switch (C.Kind) { 625 case CodeCompletionString::CK_Informative: 626 case CodeCompletionString::CK_ResultType: 627 OS << "[#" << C.Text << "#]"; 628 break; 629 630 case CodeCompletionString::CK_CurrentParameter: 631 OS << "<#" << C.Text << "#>"; 632 break; 633 634 // FIXME: We can also print optional parameters of an overload. 635 case CodeCompletionString::CK_Optional: 636 break; 637 638 default: 639 OS << C.Text; 640 break; 641 } 642 } 643 return OS.str(); 644 } 645 646 void PrintingCodeCompleteConsumer::ProcessOverloadCandidates( 647 Sema &SemaRef, unsigned CurrentArg, OverloadCandidate *Candidates, 648 unsigned NumCandidates, SourceLocation OpenParLoc) { 649 OS << "OPENING_PAREN_LOC: "; 650 OpenParLoc.print(OS, SemaRef.getSourceManager()); 651 OS << "\n"; 652 653 for (unsigned I = 0; I != NumCandidates; ++I) { 654 if (CodeCompletionString *CCS = Candidates[I].CreateSignatureString( 655 CurrentArg, SemaRef, getAllocator(), CCTUInfo, 656 includeBriefComments())) { 657 OS << "OVERLOAD: " << getOverloadAsString(*CCS) << "\n"; 658 } 659 } 660 } 661 662 /// Retrieve the effective availability of the given declaration. 663 static AvailabilityResult getDeclAvailability(const Decl *D) { 664 AvailabilityResult AR = D->getAvailability(); 665 if (isa<EnumConstantDecl>(D)) 666 AR = std::max(AR, cast<Decl>(D->getDeclContext())->getAvailability()); 667 return AR; 668 } 669 670 void CodeCompletionResult::computeCursorKindAndAvailability(bool Accessible) { 671 switch (Kind) { 672 case RK_Pattern: 673 if (!Declaration) { 674 // Do nothing: Patterns can come with cursor kinds! 675 break; 676 } 677 LLVM_FALLTHROUGH; 678 679 case RK_Declaration: { 680 // Set the availability based on attributes. 681 switch (getDeclAvailability(Declaration)) { 682 case AR_Available: 683 case AR_NotYetIntroduced: 684 Availability = CXAvailability_Available; 685 break; 686 687 case AR_Deprecated: 688 Availability = CXAvailability_Deprecated; 689 break; 690 691 case AR_Unavailable: 692 Availability = CXAvailability_NotAvailable; 693 break; 694 } 695 696 if (const auto *Function = dyn_cast<FunctionDecl>(Declaration)) 697 if (Function->isDeleted()) 698 Availability = CXAvailability_NotAvailable; 699 700 CursorKind = getCursorKindForDecl(Declaration); 701 if (CursorKind == CXCursor_UnexposedDecl) { 702 // FIXME: Forward declarations of Objective-C classes and protocols 703 // are not directly exposed, but we want code completion to treat them 704 // like a definition. 705 if (isa<ObjCInterfaceDecl>(Declaration)) 706 CursorKind = CXCursor_ObjCInterfaceDecl; 707 else if (isa<ObjCProtocolDecl>(Declaration)) 708 CursorKind = CXCursor_ObjCProtocolDecl; 709 else 710 CursorKind = CXCursor_NotImplemented; 711 } 712 break; 713 } 714 715 case RK_Macro: 716 case RK_Keyword: 717 llvm_unreachable("Macro and keyword kinds are handled by the constructors"); 718 } 719 720 if (!Accessible) 721 Availability = CXAvailability_NotAccessible; 722 } 723 724 /// Retrieve the name that should be used to order a result. 725 /// 726 /// If the name needs to be constructed as a string, that string will be 727 /// saved into Saved and the returned StringRef will refer to it. 728 StringRef CodeCompletionResult::getOrderedName(std::string &Saved) const { 729 switch (Kind) { 730 case RK_Keyword: 731 return Keyword; 732 case RK_Pattern: 733 return Pattern->getTypedText(); 734 case RK_Macro: 735 return Macro->getName(); 736 case RK_Declaration: 737 // Handle declarations below. 738 break; 739 } 740 741 DeclarationName Name = Declaration->getDeclName(); 742 743 // If the name is a simple identifier (by far the common case), or a 744 // zero-argument selector, just return a reference to that identifier. 745 if (IdentifierInfo *Id = Name.getAsIdentifierInfo()) 746 return Id->getName(); 747 if (Name.isObjCZeroArgSelector()) 748 if (IdentifierInfo *Id = Name.getObjCSelector().getIdentifierInfoForSlot(0)) 749 return Id->getName(); 750 751 Saved = Name.getAsString(); 752 return Saved; 753 } 754 755 bool clang::operator<(const CodeCompletionResult &X, 756 const CodeCompletionResult &Y) { 757 std::string XSaved, YSaved; 758 StringRef XStr = X.getOrderedName(XSaved); 759 StringRef YStr = Y.getOrderedName(YSaved); 760 int cmp = XStr.compare_insensitive(YStr); 761 if (cmp) 762 return cmp < 0; 763 764 // If case-insensitive comparison fails, try case-sensitive comparison. 765 return XStr.compare(YStr) < 0; 766 } 767