forked from OSchip/llvm-project
1097 lines
44 KiB
C++
1097 lines
44 KiB
C++
//===--- CodeComplete.cpp ---------------------------------------*- C++-*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===---------------------------------------------------------------------===//
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//
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// AST-based completions are provided using the completion hooks in Sema.
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//
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// Signature help works in a similar way as code completion, but it is simpler
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// as there are typically fewer candidates.
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//
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//===---------------------------------------------------------------------===//
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#include "CodeComplete.h"
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#include "CodeCompletionStrings.h"
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#include "Compiler.h"
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#include "FuzzyMatch.h"
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#include "Headers.h"
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#include "Logger.h"
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#include "Quality.h"
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#include "SourceCode.h"
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#include "Trace.h"
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#include "URI.h"
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#include "index/Index.h"
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#include "clang/ASTMatchers/ASTMatchFinder.h"
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#include "clang/Basic/LangOptions.h"
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#include "clang/Format/Format.h"
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#include "clang/Frontend/CompilerInstance.h"
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#include "clang/Frontend/FrontendActions.h"
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#include "clang/Index/USRGeneration.h"
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#include "clang/Sema/CodeCompleteConsumer.h"
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#include "clang/Sema/Sema.h"
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#include "clang/Tooling/Core/Replacement.h"
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#include "llvm/Support/Format.h"
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#include <queue>
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// We log detailed candidate here if you run with -debug-only=codecomplete.
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#define DEBUG_TYPE "codecomplete"
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namespace clang {
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namespace clangd {
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namespace {
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CompletionItemKind toCompletionItemKind(index::SymbolKind Kind) {
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using SK = index::SymbolKind;
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switch (Kind) {
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case SK::Unknown:
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return CompletionItemKind::Missing;
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case SK::Module:
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case SK::Namespace:
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case SK::NamespaceAlias:
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return CompletionItemKind::Module;
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case SK::Macro:
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return CompletionItemKind::Text;
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case SK::Enum:
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return CompletionItemKind::Enum;
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// FIXME(ioeric): use LSP struct instead of class when it is suppoted in the
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// protocol.
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case SK::Struct:
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case SK::Class:
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case SK::Protocol:
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case SK::Extension:
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case SK::Union:
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return CompletionItemKind::Class;
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// FIXME(ioeric): figure out whether reference is the right type for aliases.
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case SK::TypeAlias:
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case SK::Using:
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return CompletionItemKind::Reference;
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case SK::Function:
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// FIXME(ioeric): this should probably be an operator. This should be fixed
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// when `Operator` is support type in the protocol.
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case SK::ConversionFunction:
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return CompletionItemKind::Function;
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case SK::Variable:
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case SK::Parameter:
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return CompletionItemKind::Variable;
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case SK::Field:
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return CompletionItemKind::Field;
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// FIXME(ioeric): use LSP enum constant when it is supported in the protocol.
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case SK::EnumConstant:
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return CompletionItemKind::Value;
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case SK::InstanceMethod:
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case SK::ClassMethod:
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case SK::StaticMethod:
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case SK::Destructor:
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return CompletionItemKind::Method;
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case SK::InstanceProperty:
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case SK::ClassProperty:
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case SK::StaticProperty:
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return CompletionItemKind::Property;
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case SK::Constructor:
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return CompletionItemKind::Constructor;
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}
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llvm_unreachable("Unhandled clang::index::SymbolKind.");
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}
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CompletionItemKind
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toCompletionItemKind(CodeCompletionResult::ResultKind ResKind,
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const NamedDecl *Decl) {
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if (Decl)
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return toCompletionItemKind(index::getSymbolInfo(Decl).Kind);
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switch (ResKind) {
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case CodeCompletionResult::RK_Declaration:
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llvm_unreachable("RK_Declaration without Decl");
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case CodeCompletionResult::RK_Keyword:
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return CompletionItemKind::Keyword;
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case CodeCompletionResult::RK_Macro:
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return CompletionItemKind::Text; // unfortunately, there's no 'Macro'
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// completion items in LSP.
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case CodeCompletionResult::RK_Pattern:
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return CompletionItemKind::Snippet;
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}
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llvm_unreachable("Unhandled CodeCompletionResult::ResultKind.");
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}
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/// Get the optional chunk as a string. This function is possibly recursive.
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///
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/// The parameter info for each parameter is appended to the Parameters.
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std::string
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getOptionalParameters(const CodeCompletionString &CCS,
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std::vector<ParameterInformation> &Parameters) {
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std::string Result;
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for (const auto &Chunk : CCS) {
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switch (Chunk.Kind) {
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case CodeCompletionString::CK_Optional:
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assert(Chunk.Optional &&
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"Expected the optional code completion string to be non-null.");
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Result += getOptionalParameters(*Chunk.Optional, Parameters);
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break;
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case CodeCompletionString::CK_VerticalSpace:
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break;
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case CodeCompletionString::CK_Placeholder:
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// A string that acts as a placeholder for, e.g., a function call
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// argument.
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// Intentional fallthrough here.
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case CodeCompletionString::CK_CurrentParameter: {
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// A piece of text that describes the parameter that corresponds to
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// the code-completion location within a function call, message send,
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// macro invocation, etc.
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Result += Chunk.Text;
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ParameterInformation Info;
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Info.label = Chunk.Text;
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Parameters.push_back(std::move(Info));
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break;
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}
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default:
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Result += Chunk.Text;
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break;
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}
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}
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return Result;
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}
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/// Creates a `HeaderFile` from \p Header which can be either a URI or a literal
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/// include.
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static llvm::Expected<HeaderFile> toHeaderFile(StringRef Header,
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llvm::StringRef HintPath) {
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if (isLiteralInclude(Header))
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return HeaderFile{Header.str(), /*Verbatim=*/true};
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auto U = URI::parse(Header);
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if (!U)
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return U.takeError();
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auto IncludePath = URI::includeSpelling(*U);
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if (!IncludePath)
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return IncludePath.takeError();
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if (!IncludePath->empty())
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return HeaderFile{std::move(*IncludePath), /*Verbatim=*/true};
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auto Resolved = URI::resolve(*U, HintPath);
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if (!Resolved)
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return Resolved.takeError();
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return HeaderFile{std::move(*Resolved), /*Verbatim=*/false};
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}
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/// A code completion result, in clang-native form.
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/// It may be promoted to a CompletionItem if it's among the top-ranked results.
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struct CompletionCandidate {
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llvm::StringRef Name; // Used for filtering and sorting.
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// We may have a result from Sema, from the index, or both.
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const CodeCompletionResult *SemaResult = nullptr;
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const Symbol *IndexResult = nullptr;
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// Builds an LSP completion item.
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CompletionItem build(StringRef FileName, const CompletionItemScores &Scores,
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const CodeCompleteOptions &Opts,
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CodeCompletionString *SemaCCS,
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const IncludeInserter *Includes,
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llvm::StringRef SemaDocComment) const {
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assert(bool(SemaResult) == bool(SemaCCS));
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CompletionItem I;
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bool ShouldInsertInclude = true;
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if (SemaResult) {
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I.kind = toCompletionItemKind(SemaResult->Kind, SemaResult->Declaration);
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getLabelAndInsertText(*SemaCCS, &I.label, &I.insertText,
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Opts.EnableSnippets);
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I.filterText = getFilterText(*SemaCCS);
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I.documentation = formatDocumentation(*SemaCCS, SemaDocComment);
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I.detail = getDetail(*SemaCCS);
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// Avoid inserting new #include if the declaration is found in the current
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// file e.g. the symbol is forward declared.
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if (SemaResult->Kind == CodeCompletionResult::RK_Declaration) {
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if (const auto *D = SemaResult->getDeclaration()) {
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const auto &SM = D->getASTContext().getSourceManager();
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ShouldInsertInclude =
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ShouldInsertInclude &&
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std::none_of(D->redecls_begin(), D->redecls_end(),
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[&SM](const Decl *RD) {
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return SM.isInMainFile(
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SM.getExpansionLoc(RD->getLocStart()));
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});
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}
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}
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}
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if (IndexResult) {
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if (I.kind == CompletionItemKind::Missing)
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I.kind = toCompletionItemKind(IndexResult->SymInfo.Kind);
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// FIXME: reintroduce a way to show the index source for debugging.
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if (I.label.empty())
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I.label = IndexResult->CompletionLabel;
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if (I.filterText.empty())
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I.filterText = IndexResult->Name;
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// FIXME(ioeric): support inserting/replacing scope qualifiers.
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if (I.insertText.empty())
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I.insertText = Opts.EnableSnippets
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? IndexResult->CompletionSnippetInsertText
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: IndexResult->CompletionPlainInsertText;
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if (auto *D = IndexResult->Detail) {
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if (I.documentation.empty())
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I.documentation = D->Documentation;
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if (I.detail.empty())
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I.detail = D->CompletionDetail;
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if (ShouldInsertInclude && Includes && !D->IncludeHeader.empty()) {
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auto Edit = [&]() -> Expected<Optional<TextEdit>> {
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auto ResolvedDeclaring = toHeaderFile(
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IndexResult->CanonicalDeclaration.FileURI, FileName);
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if (!ResolvedDeclaring)
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return ResolvedDeclaring.takeError();
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auto ResolvedInserted = toHeaderFile(D->IncludeHeader, FileName);
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if (!ResolvedInserted)
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return ResolvedInserted.takeError();
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return Includes->insert(*ResolvedDeclaring, *ResolvedInserted);
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}();
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if (!Edit) {
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std::string ErrMsg =
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("Failed to generate include insertion edits for adding header "
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"(FileURI=\"" +
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IndexResult->CanonicalDeclaration.FileURI +
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"\", IncludeHeader=\"" + D->IncludeHeader + "\") into " +
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FileName)
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.str();
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log(ErrMsg + ":" + llvm::toString(Edit.takeError()));
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} else if (*Edit) {
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I.additionalTextEdits = {std::move(**Edit)};
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}
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}
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}
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}
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I.scoreInfo = Scores;
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I.sortText = sortText(Scores.finalScore, Name);
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I.insertTextFormat = Opts.EnableSnippets ? InsertTextFormat::Snippet
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: InsertTextFormat::PlainText;
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return I;
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}
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};
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using ScoredCandidate = std::pair<CompletionCandidate, CompletionItemScores>;
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// Determine the symbol ID for a Sema code completion result, if possible.
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llvm::Optional<SymbolID> getSymbolID(const CodeCompletionResult &R) {
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switch (R.Kind) {
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case CodeCompletionResult::RK_Declaration:
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case CodeCompletionResult::RK_Pattern: {
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llvm::SmallString<128> USR;
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if (/*Ignore=*/clang::index::generateUSRForDecl(R.Declaration, USR))
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return None;
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return SymbolID(USR);
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}
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case CodeCompletionResult::RK_Macro:
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// FIXME: Macros do have USRs, but the CCR doesn't contain enough info.
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case CodeCompletionResult::RK_Keyword:
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return None;
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}
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llvm_unreachable("unknown CodeCompletionResult kind");
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}
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// Scopes of the paritial identifier we're trying to complete.
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// It is used when we query the index for more completion results.
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struct SpecifiedScope {
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// The scopes we should look in, determined by Sema.
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//
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// If the qualifier was fully resolved, we look for completions in these
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// scopes; if there is an unresolved part of the qualifier, it should be
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// resolved within these scopes.
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//
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// Examples of qualified completion:
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//
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// "::vec" => {""}
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// "using namespace std; ::vec^" => {"", "std::"}
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// "namespace ns {using namespace std;} ns::^" => {"ns::", "std::"}
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// "std::vec^" => {""} // "std" unresolved
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//
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// Examples of unqualified completion:
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//
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// "vec^" => {""}
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// "using namespace std; vec^" => {"", "std::"}
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// "using namespace std; namespace ns { vec^ }" => {"ns::", "std::", ""}
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//
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// "" for global namespace, "ns::" for normal namespace.
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std::vector<std::string> AccessibleScopes;
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// The full scope qualifier as typed by the user (without the leading "::").
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// Set if the qualifier is not fully resolved by Sema.
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llvm::Optional<std::string> UnresolvedQualifier;
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// Construct scopes being queried in indexes.
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// This method format the scopes to match the index request representation.
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std::vector<std::string> scopesForIndexQuery() {
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std::vector<std::string> Results;
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for (llvm::StringRef AS : AccessibleScopes) {
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Results.push_back(AS);
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if (UnresolvedQualifier)
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Results.back() += *UnresolvedQualifier;
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}
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return Results;
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}
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};
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// Get all scopes that will be queried in indexes.
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std::vector<std::string> getQueryScopes(CodeCompletionContext &CCContext,
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const SourceManager &SM) {
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auto GetAllAccessibleScopes = [](CodeCompletionContext &CCContext) {
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SpecifiedScope Info;
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for (auto *Context : CCContext.getVisitedContexts()) {
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if (isa<TranslationUnitDecl>(Context))
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Info.AccessibleScopes.push_back(""); // global namespace
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else if (const auto *NS = dyn_cast<NamespaceDecl>(Context))
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Info.AccessibleScopes.push_back(NS->getQualifiedNameAsString() + "::");
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}
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return Info;
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};
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auto SS = CCContext.getCXXScopeSpecifier();
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// Unqualified completion (e.g. "vec^").
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if (!SS) {
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// FIXME: Once we can insert namespace qualifiers and use the in-scope
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// namespaces for scoring, search in all namespaces.
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// FIXME: Capture scopes and use for scoring, for example,
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// "using namespace std; namespace foo {v^}" =>
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// foo::value > std::vector > boost::variant
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return GetAllAccessibleScopes(CCContext).scopesForIndexQuery();
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}
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// Qualified completion ("std::vec^"), we have two cases depending on whether
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// the qualifier can be resolved by Sema.
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if ((*SS)->isValid()) { // Resolved qualifier.
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return GetAllAccessibleScopes(CCContext).scopesForIndexQuery();
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}
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// Unresolved qualifier.
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// FIXME: When Sema can resolve part of a scope chain (e.g.
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// "known::unknown::id"), we should expand the known part ("known::") rather
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// than treating the whole thing as unknown.
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SpecifiedScope Info;
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Info.AccessibleScopes.push_back(""); // global namespace
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Info.UnresolvedQualifier =
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Lexer::getSourceText(CharSourceRange::getCharRange((*SS)->getRange()), SM,
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clang::LangOptions())
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.ltrim("::");
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// Sema excludes the trailing "::".
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if (!Info.UnresolvedQualifier->empty())
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*Info.UnresolvedQualifier += "::";
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return Info.scopesForIndexQuery();
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}
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// Should we perform index-based completion in a context of the specified kind?
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// FIXME: consider allowing completion, but restricting the result types.
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bool contextAllowsIndex(enum CodeCompletionContext::Kind K) {
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switch (K) {
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case CodeCompletionContext::CCC_TopLevel:
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case CodeCompletionContext::CCC_ObjCInterface:
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case CodeCompletionContext::CCC_ObjCImplementation:
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case CodeCompletionContext::CCC_ObjCIvarList:
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case CodeCompletionContext::CCC_ClassStructUnion:
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case CodeCompletionContext::CCC_Statement:
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case CodeCompletionContext::CCC_Expression:
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case CodeCompletionContext::CCC_ObjCMessageReceiver:
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case CodeCompletionContext::CCC_EnumTag:
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case CodeCompletionContext::CCC_UnionTag:
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case CodeCompletionContext::CCC_ClassOrStructTag:
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case CodeCompletionContext::CCC_ObjCProtocolName:
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case CodeCompletionContext::CCC_Namespace:
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case CodeCompletionContext::CCC_Type:
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case CodeCompletionContext::CCC_Name: // FIXME: why does ns::^ give this?
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case CodeCompletionContext::CCC_PotentiallyQualifiedName:
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case CodeCompletionContext::CCC_ParenthesizedExpression:
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case CodeCompletionContext::CCC_ObjCInterfaceName:
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case CodeCompletionContext::CCC_ObjCCategoryName:
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return true;
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case CodeCompletionContext::CCC_Other: // Be conservative.
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case CodeCompletionContext::CCC_OtherWithMacros:
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case CodeCompletionContext::CCC_DotMemberAccess:
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case CodeCompletionContext::CCC_ArrowMemberAccess:
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case CodeCompletionContext::CCC_ObjCPropertyAccess:
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case CodeCompletionContext::CCC_MacroName:
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case CodeCompletionContext::CCC_MacroNameUse:
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case CodeCompletionContext::CCC_PreprocessorExpression:
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case CodeCompletionContext::CCC_PreprocessorDirective:
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case CodeCompletionContext::CCC_NaturalLanguage:
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case CodeCompletionContext::CCC_SelectorName:
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case CodeCompletionContext::CCC_TypeQualifiers:
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case CodeCompletionContext::CCC_ObjCInstanceMessage:
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case CodeCompletionContext::CCC_ObjCClassMessage:
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case CodeCompletionContext::CCC_Recovery:
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return false;
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}
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llvm_unreachable("unknown code completion context");
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}
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// Some member calls are blacklisted because they're so rarely useful.
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static bool isBlacklistedMember(const NamedDecl &D) {
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// Destructor completion is rarely useful, and works inconsistently.
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// (s.^ completes ~string, but s.~st^ is an error).
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if (D.getKind() == Decl::CXXDestructor)
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return true;
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// Injected name may be useful for A::foo(), but who writes A::A::foo()?
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if (auto *R = dyn_cast_or_null<RecordDecl>(&D))
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if (R->isInjectedClassName())
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return true;
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// Explicit calls to operators are also rare.
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auto NameKind = D.getDeclName().getNameKind();
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if (NameKind == DeclarationName::CXXOperatorName ||
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NameKind == DeclarationName::CXXLiteralOperatorName ||
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NameKind == DeclarationName::CXXConversionFunctionName)
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return true;
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return false;
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}
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// The CompletionRecorder captures Sema code-complete output, including context.
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// It filters out ignored results (but doesn't apply fuzzy-filtering yet).
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// It doesn't do scoring or conversion to CompletionItem yet, as we want to
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// merge with index results first.
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// Generally the fields and methods of this object should only be used from
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// within the callback.
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struct CompletionRecorder : public CodeCompleteConsumer {
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CompletionRecorder(const CodeCompleteOptions &Opts,
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UniqueFunction<void()> ResultsCallback)
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: CodeCompleteConsumer(Opts.getClangCompleteOpts(),
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/*OutputIsBinary=*/false),
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CCContext(CodeCompletionContext::CCC_Other), Opts(Opts),
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CCAllocator(std::make_shared<GlobalCodeCompletionAllocator>()),
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CCTUInfo(CCAllocator), ResultsCallback(std::move(ResultsCallback)) {
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assert(this->ResultsCallback);
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}
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std::vector<CodeCompletionResult> Results;
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CodeCompletionContext CCContext;
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Sema *CCSema = nullptr; // Sema that created the results.
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// FIXME: Sema is scary. Can we store ASTContext and Preprocessor, instead?
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void ProcessCodeCompleteResults(class Sema &S, CodeCompletionContext Context,
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CodeCompletionResult *InResults,
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unsigned NumResults) override final {
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// If a callback is called without any sema result and the context does not
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// support index-based completion, we simply skip it to give way to
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// potential future callbacks with results.
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if (NumResults == 0 && !contextAllowsIndex(Context.getKind()))
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return;
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if (CCSema) {
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log(llvm::formatv(
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"Multiple code complete callbacks (parser backtracked?). "
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"Dropping results from context {0}, keeping results from {1}.",
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getCompletionKindString(Context.getKind()),
|
|
getCompletionKindString(this->CCContext.getKind())));
|
|
return;
|
|
}
|
|
// Record the completion context.
|
|
CCSema = &S;
|
|
CCContext = Context;
|
|
|
|
// Retain the results we might want.
|
|
for (unsigned I = 0; I < NumResults; ++I) {
|
|
auto &Result = InResults[I];
|
|
// Drop hidden items which cannot be found by lookup after completion.
|
|
// Exception: some items can be named by using a qualifier.
|
|
if (Result.Hidden && (!Result.Qualifier || Result.QualifierIsInformative))
|
|
continue;
|
|
if (!Opts.IncludeIneligibleResults &&
|
|
(Result.Availability == CXAvailability_NotAvailable ||
|
|
Result.Availability == CXAvailability_NotAccessible))
|
|
continue;
|
|
if (Result.Declaration &&
|
|
!Context.getBaseType().isNull() // is this a member-access context?
|
|
&& isBlacklistedMember(*Result.Declaration))
|
|
continue;
|
|
// We choose to never append '::' to completion results in clangd.
|
|
Result.StartsNestedNameSpecifier = false;
|
|
Results.push_back(Result);
|
|
}
|
|
ResultsCallback();
|
|
}
|
|
|
|
CodeCompletionAllocator &getAllocator() override { return *CCAllocator; }
|
|
CodeCompletionTUInfo &getCodeCompletionTUInfo() override { return CCTUInfo; }
|
|
|
|
// Returns the filtering/sorting name for Result, which must be from Results.
|
|
// Returned string is owned by this recorder (or the AST).
|
|
llvm::StringRef getName(const CodeCompletionResult &Result) {
|
|
switch (Result.Kind) {
|
|
case CodeCompletionResult::RK_Declaration:
|
|
if (auto *ID = Result.Declaration->getIdentifier())
|
|
return ID->getName();
|
|
break;
|
|
case CodeCompletionResult::RK_Keyword:
|
|
return Result.Keyword;
|
|
case CodeCompletionResult::RK_Macro:
|
|
return Result.Macro->getName();
|
|
case CodeCompletionResult::RK_Pattern:
|
|
return Result.Pattern->getTypedText();
|
|
}
|
|
auto *CCS = codeCompletionString(Result);
|
|
return CCS->getTypedText();
|
|
}
|
|
|
|
// Build a CodeCompletion string for R, which must be from Results.
|
|
// The CCS will be owned by this recorder.
|
|
CodeCompletionString *codeCompletionString(const CodeCompletionResult &R) {
|
|
// CodeCompletionResult doesn't seem to be const-correct. We own it, anyway.
|
|
return const_cast<CodeCompletionResult &>(R).CreateCodeCompletionString(
|
|
*CCSema, CCContext, *CCAllocator, CCTUInfo,
|
|
/*IncludeBriefComments=*/false);
|
|
}
|
|
|
|
private:
|
|
CodeCompleteOptions Opts;
|
|
std::shared_ptr<GlobalCodeCompletionAllocator> CCAllocator;
|
|
CodeCompletionTUInfo CCTUInfo;
|
|
UniqueFunction<void()> ResultsCallback;
|
|
};
|
|
|
|
struct ScoredCandidateGreater {
|
|
bool operator()(const ScoredCandidate &L, const ScoredCandidate &R) {
|
|
if (L.second.finalScore != R.second.finalScore)
|
|
return L.second.finalScore > R.second.finalScore;
|
|
return L.first.Name < R.first.Name; // Earlier name is better.
|
|
}
|
|
};
|
|
|
|
class SignatureHelpCollector final : public CodeCompleteConsumer {
|
|
|
|
public:
|
|
SignatureHelpCollector(const clang::CodeCompleteOptions &CodeCompleteOpts,
|
|
SignatureHelp &SigHelp)
|
|
: CodeCompleteConsumer(CodeCompleteOpts, /*OutputIsBinary=*/false),
|
|
SigHelp(SigHelp),
|
|
Allocator(std::make_shared<clang::GlobalCodeCompletionAllocator>()),
|
|
CCTUInfo(Allocator) {}
|
|
|
|
void ProcessOverloadCandidates(Sema &S, unsigned CurrentArg,
|
|
OverloadCandidate *Candidates,
|
|
unsigned NumCandidates) override {
|
|
SigHelp.signatures.reserve(NumCandidates);
|
|
// FIXME(rwols): How can we determine the "active overload candidate"?
|
|
// Right now the overloaded candidates seem to be provided in a "best fit"
|
|
// order, so I'm not too worried about this.
|
|
SigHelp.activeSignature = 0;
|
|
assert(CurrentArg <= (unsigned)std::numeric_limits<int>::max() &&
|
|
"too many arguments");
|
|
SigHelp.activeParameter = static_cast<int>(CurrentArg);
|
|
for (unsigned I = 0; I < NumCandidates; ++I) {
|
|
const auto &Candidate = Candidates[I];
|
|
const auto *CCS = Candidate.CreateSignatureString(
|
|
CurrentArg, S, *Allocator, CCTUInfo, true);
|
|
assert(CCS && "Expected the CodeCompletionString to be non-null");
|
|
// FIXME: for headers, we need to get a comment from the index.
|
|
SigHelp.signatures.push_back(ProcessOverloadCandidate(
|
|
Candidate, *CCS,
|
|
getParameterDocComment(S.getASTContext(), Candidate, CurrentArg,
|
|
/*CommentsFromHeaders=*/false)));
|
|
}
|
|
}
|
|
|
|
GlobalCodeCompletionAllocator &getAllocator() override { return *Allocator; }
|
|
|
|
CodeCompletionTUInfo &getCodeCompletionTUInfo() override { return CCTUInfo; }
|
|
|
|
private:
|
|
// FIXME(ioeric): consider moving CodeCompletionString logic here to
|
|
// CompletionString.h.
|
|
SignatureInformation
|
|
ProcessOverloadCandidate(const OverloadCandidate &Candidate,
|
|
const CodeCompletionString &CCS,
|
|
llvm::StringRef DocComment) const {
|
|
SignatureInformation Result;
|
|
const char *ReturnType = nullptr;
|
|
|
|
Result.documentation = formatDocumentation(CCS, DocComment);
|
|
|
|
for (const auto &Chunk : CCS) {
|
|
switch (Chunk.Kind) {
|
|
case CodeCompletionString::CK_ResultType:
|
|
// A piece of text that describes the type of an entity or,
|
|
// for functions and methods, the return type.
|
|
assert(!ReturnType && "Unexpected CK_ResultType");
|
|
ReturnType = Chunk.Text;
|
|
break;
|
|
case CodeCompletionString::CK_Placeholder:
|
|
// A string that acts as a placeholder for, e.g., a function call
|
|
// argument.
|
|
// Intentional fallthrough here.
|
|
case CodeCompletionString::CK_CurrentParameter: {
|
|
// A piece of text that describes the parameter that corresponds to
|
|
// the code-completion location within a function call, message send,
|
|
// macro invocation, etc.
|
|
Result.label += Chunk.Text;
|
|
ParameterInformation Info;
|
|
Info.label = Chunk.Text;
|
|
Result.parameters.push_back(std::move(Info));
|
|
break;
|
|
}
|
|
case CodeCompletionString::CK_Optional: {
|
|
// The rest of the parameters are defaulted/optional.
|
|
assert(Chunk.Optional &&
|
|
"Expected the optional code completion string to be non-null.");
|
|
Result.label +=
|
|
getOptionalParameters(*Chunk.Optional, Result.parameters);
|
|
break;
|
|
}
|
|
case CodeCompletionString::CK_VerticalSpace:
|
|
break;
|
|
default:
|
|
Result.label += Chunk.Text;
|
|
break;
|
|
}
|
|
}
|
|
if (ReturnType) {
|
|
Result.label += " -> ";
|
|
Result.label += ReturnType;
|
|
}
|
|
return Result;
|
|
}
|
|
|
|
SignatureHelp &SigHelp;
|
|
std::shared_ptr<clang::GlobalCodeCompletionAllocator> Allocator;
|
|
CodeCompletionTUInfo CCTUInfo;
|
|
|
|
}; // SignatureHelpCollector
|
|
|
|
struct SemaCompleteInput {
|
|
PathRef FileName;
|
|
const tooling::CompileCommand &Command;
|
|
PrecompiledPreamble const *Preamble;
|
|
const std::vector<Inclusion> &PreambleInclusions;
|
|
StringRef Contents;
|
|
Position Pos;
|
|
IntrusiveRefCntPtr<vfs::FileSystem> VFS;
|
|
std::shared_ptr<PCHContainerOperations> PCHs;
|
|
};
|
|
|
|
// Invokes Sema code completion on a file.
|
|
// If \p Includes is set, it will be initialized after a compiler instance has
|
|
// been set up.
|
|
bool semaCodeComplete(std::unique_ptr<CodeCompleteConsumer> Consumer,
|
|
const clang::CodeCompleteOptions &Options,
|
|
const SemaCompleteInput &Input,
|
|
std::unique_ptr<IncludeInserter> *Includes = nullptr) {
|
|
trace::Span Tracer("Sema completion");
|
|
std::vector<const char *> ArgStrs;
|
|
for (const auto &S : Input.Command.CommandLine)
|
|
ArgStrs.push_back(S.c_str());
|
|
|
|
if (Input.VFS->setCurrentWorkingDirectory(Input.Command.Directory)) {
|
|
log("Couldn't set working directory");
|
|
// We run parsing anyway, our lit-tests rely on results for non-existing
|
|
// working dirs.
|
|
}
|
|
|
|
IgnoreDiagnostics DummyDiagsConsumer;
|
|
auto CI = createInvocationFromCommandLine(
|
|
ArgStrs,
|
|
CompilerInstance::createDiagnostics(new DiagnosticOptions,
|
|
&DummyDiagsConsumer, false),
|
|
Input.VFS);
|
|
if (!CI) {
|
|
log("Couldn't create CompilerInvocation");
|
|
return false;
|
|
}
|
|
auto &FrontendOpts = CI->getFrontendOpts();
|
|
FrontendOpts.DisableFree = false;
|
|
FrontendOpts.SkipFunctionBodies = true;
|
|
CI->getLangOpts()->CommentOpts.ParseAllComments = true;
|
|
// Disable typo correction in Sema.
|
|
CI->getLangOpts()->SpellChecking = false;
|
|
// Setup code completion.
|
|
FrontendOpts.CodeCompleteOpts = Options;
|
|
FrontendOpts.CodeCompletionAt.FileName = Input.FileName;
|
|
auto Offset = positionToOffset(Input.Contents, Input.Pos);
|
|
if (!Offset) {
|
|
log("Code completion position was invalid " +
|
|
llvm::toString(Offset.takeError()));
|
|
return false;
|
|
}
|
|
std::tie(FrontendOpts.CodeCompletionAt.Line,
|
|
FrontendOpts.CodeCompletionAt.Column) =
|
|
offsetToClangLineColumn(Input.Contents, *Offset);
|
|
|
|
std::unique_ptr<llvm::MemoryBuffer> ContentsBuffer =
|
|
llvm::MemoryBuffer::getMemBufferCopy(Input.Contents, Input.FileName);
|
|
// The diagnostic options must be set before creating a CompilerInstance.
|
|
CI->getDiagnosticOpts().IgnoreWarnings = true;
|
|
// We reuse the preamble whether it's valid or not. This is a
|
|
// correctness/performance tradeoff: building without a preamble is slow, and
|
|
// completion is latency-sensitive.
|
|
// NOTE: we must call BeginSourceFile after prepareCompilerInstance. Otherwise
|
|
// the remapped buffers do not get freed.
|
|
auto Clang = prepareCompilerInstance(
|
|
std::move(CI), Input.Preamble, std::move(ContentsBuffer),
|
|
std::move(Input.PCHs), std::move(Input.VFS), DummyDiagsConsumer);
|
|
Clang->setCodeCompletionConsumer(Consumer.release());
|
|
|
|
SyntaxOnlyAction Action;
|
|
if (!Action.BeginSourceFile(*Clang, Clang->getFrontendOpts().Inputs[0])) {
|
|
log("BeginSourceFile() failed when running codeComplete for " +
|
|
Input.FileName);
|
|
return false;
|
|
}
|
|
if (Includes) {
|
|
// Initialize Includes if provided.
|
|
|
|
// FIXME(ioeric): needs more consistent style support in clangd server.
|
|
auto Style = format::getStyle("file", Input.FileName, "LLVM",
|
|
Input.Contents, Input.VFS.get());
|
|
if (!Style) {
|
|
log("Failed to get FormatStyle for file" + Input.FileName +
|
|
". Fall back to use LLVM style. Error: " +
|
|
llvm::toString(Style.takeError()));
|
|
Style = format::getLLVMStyle();
|
|
}
|
|
*Includes = llvm::make_unique<IncludeInserter>(
|
|
Input.FileName, Input.Contents, *Style, Input.Command.Directory,
|
|
Clang->getPreprocessor().getHeaderSearchInfo());
|
|
for (const auto &Inc : Input.PreambleInclusions)
|
|
Includes->get()->addExisting(Inc);
|
|
Clang->getPreprocessor().addPPCallbacks(collectInclusionsInMainFileCallback(
|
|
Clang->getSourceManager(), [Includes](Inclusion Inc) {
|
|
Includes->get()->addExisting(std::move(Inc));
|
|
}));
|
|
}
|
|
if (!Action.Execute()) {
|
|
log("Execute() failed when running codeComplete for " + Input.FileName);
|
|
return false;
|
|
}
|
|
Action.EndSourceFile();
|
|
|
|
return true;
|
|
}
|
|
|
|
// Should we allow index completions in the specified context?
|
|
bool allowIndex(CodeCompletionContext &CC) {
|
|
if (!contextAllowsIndex(CC.getKind()))
|
|
return false;
|
|
// We also avoid ClassName::bar (but allow namespace::bar).
|
|
auto Scope = CC.getCXXScopeSpecifier();
|
|
if (!Scope)
|
|
return true;
|
|
NestedNameSpecifier *NameSpec = (*Scope)->getScopeRep();
|
|
if (!NameSpec)
|
|
return true;
|
|
// We only query the index when qualifier is a namespace.
|
|
// If it's a class, we rely solely on sema completions.
|
|
switch (NameSpec->getKind()) {
|
|
case NestedNameSpecifier::Global:
|
|
case NestedNameSpecifier::Namespace:
|
|
case NestedNameSpecifier::NamespaceAlias:
|
|
return true;
|
|
case NestedNameSpecifier::Super:
|
|
case NestedNameSpecifier::TypeSpec:
|
|
case NestedNameSpecifier::TypeSpecWithTemplate:
|
|
// Unresolved inside a template.
|
|
case NestedNameSpecifier::Identifier:
|
|
return false;
|
|
}
|
|
llvm_unreachable("invalid NestedNameSpecifier kind");
|
|
}
|
|
|
|
} // namespace
|
|
|
|
clang::CodeCompleteOptions CodeCompleteOptions::getClangCompleteOpts() const {
|
|
clang::CodeCompleteOptions Result;
|
|
Result.IncludeCodePatterns = EnableSnippets && IncludeCodePatterns;
|
|
Result.IncludeMacros = IncludeMacros;
|
|
Result.IncludeGlobals = true;
|
|
// We choose to include full comments and not do doxygen parsing in
|
|
// completion.
|
|
// FIXME: ideally, we should support doxygen in some form, e.g. do markdown
|
|
// formatting of the comments.
|
|
Result.IncludeBriefComments = false;
|
|
|
|
// When an is used, Sema is responsible for completing the main file,
|
|
// the index can provide results from the preamble.
|
|
// Tell Sema not to deserialize the preamble to look for results.
|
|
Result.LoadExternal = !Index;
|
|
|
|
return Result;
|
|
}
|
|
|
|
// Runs Sema-based (AST) and Index-based completion, returns merged results.
|
|
//
|
|
// There are a few tricky considerations:
|
|
// - the AST provides information needed for the index query (e.g. which
|
|
// namespaces to search in). So Sema must start first.
|
|
// - we only want to return the top results (Opts.Limit).
|
|
// Building CompletionItems for everything else is wasteful, so we want to
|
|
// preserve the "native" format until we're done with scoring.
|
|
// - the data underlying Sema completion items is owned by the AST and various
|
|
// other arenas, which must stay alive for us to build CompletionItems.
|
|
// - we may get duplicate results from Sema and the Index, we need to merge.
|
|
//
|
|
// So we start Sema completion first, and do all our work in its callback.
|
|
// We use the Sema context information to query the index.
|
|
// Then we merge the two result sets, producing items that are Sema/Index/Both.
|
|
// These items are scored, and the top N are synthesized into the LSP response.
|
|
// Finally, we can clean up the data structures created by Sema completion.
|
|
//
|
|
// Main collaborators are:
|
|
// - semaCodeComplete sets up the compiler machinery to run code completion.
|
|
// - CompletionRecorder captures Sema completion results, including context.
|
|
// - SymbolIndex (Opts.Index) provides index completion results as Symbols
|
|
// - CompletionCandidates are the result of merging Sema and Index results.
|
|
// Each candidate points to an underlying CodeCompletionResult (Sema), a
|
|
// Symbol (Index), or both. It computes the result quality score.
|
|
// CompletionCandidate also does conversion to CompletionItem (at the end).
|
|
// - FuzzyMatcher scores how the candidate matches the partial identifier.
|
|
// This score is combined with the result quality score for the final score.
|
|
// - TopN determines the results with the best score.
|
|
class CodeCompleteFlow {
|
|
PathRef FileName;
|
|
const CodeCompleteOptions &Opts;
|
|
// Sema takes ownership of Recorder. Recorder is valid until Sema cleanup.
|
|
CompletionRecorder *Recorder = nullptr;
|
|
int NSema = 0, NIndex = 0, NBoth = 0; // Counters for logging.
|
|
bool Incomplete = false; // Would more be available with a higher limit?
|
|
llvm::Optional<FuzzyMatcher> Filter; // Initialized once Sema runs.
|
|
std::unique_ptr<IncludeInserter> Includes; // Initialized once compiler runs.
|
|
|
|
public:
|
|
// A CodeCompleteFlow object is only useful for calling run() exactly once.
|
|
CodeCompleteFlow(PathRef FileName, const CodeCompleteOptions &Opts)
|
|
: FileName(FileName), Opts(Opts) {}
|
|
|
|
CompletionList run(const SemaCompleteInput &SemaCCInput) && {
|
|
trace::Span Tracer("CodeCompleteFlow");
|
|
|
|
// We run Sema code completion first. It builds an AST and calculates:
|
|
// - completion results based on the AST.
|
|
// - partial identifier and context. We need these for the index query.
|
|
CompletionList Output;
|
|
auto RecorderOwner = llvm::make_unique<CompletionRecorder>(Opts, [&]() {
|
|
assert(Recorder && "Recorder is not set");
|
|
assert(Includes && "Includes is not set");
|
|
// If preprocessor was run, inclusions from preprocessor callback should
|
|
// already be added to Inclusions.
|
|
Output = runWithSema();
|
|
Includes.reset(); // Make sure this doesn't out-live Clang.
|
|
SPAN_ATTACH(Tracer, "sema_completion_kind",
|
|
getCompletionKindString(Recorder->CCContext.getKind()));
|
|
});
|
|
|
|
Recorder = RecorderOwner.get();
|
|
semaCodeComplete(std::move(RecorderOwner), Opts.getClangCompleteOpts(),
|
|
SemaCCInput, &Includes);
|
|
|
|
SPAN_ATTACH(Tracer, "sema_results", NSema);
|
|
SPAN_ATTACH(Tracer, "index_results", NIndex);
|
|
SPAN_ATTACH(Tracer, "merged_results", NBoth);
|
|
SPAN_ATTACH(Tracer, "returned_results", Output.items.size());
|
|
SPAN_ATTACH(Tracer, "incomplete", Output.isIncomplete);
|
|
log(llvm::formatv(
|
|
"Code complete ({0}): {1} results from Sema, {2} from Index, "
|
|
"{3} matched, {4} returned{5}.",
|
|
getCompletionKindString(Recorder->CCContext.getKind()), NSema, NIndex,
|
|
NBoth, Output.items.size(),
|
|
Output.isIncomplete ? " (incomplete)" : ""));
|
|
assert(!Opts.Limit || Output.items.size() <= Opts.Limit);
|
|
// We don't assert that isIncomplete means we hit a limit.
|
|
// Indexes may choose to impose their own limits even if we don't have one.
|
|
return Output;
|
|
}
|
|
|
|
private:
|
|
// This is called by run() once Sema code completion is done, but before the
|
|
// Sema data structures are torn down. It does all the real work.
|
|
CompletionList runWithSema() {
|
|
Filter = FuzzyMatcher(
|
|
Recorder->CCSema->getPreprocessor().getCodeCompletionFilter());
|
|
// Sema provides the needed context to query the index.
|
|
// FIXME: in addition to querying for extra/overlapping symbols, we should
|
|
// explicitly request symbols corresponding to Sema results.
|
|
// We can use their signals even if the index can't suggest them.
|
|
// We must copy index results to preserve them, but there are at most Limit.
|
|
auto IndexResults = queryIndex();
|
|
// Merge Sema and Index results, score them, and pick the winners.
|
|
auto Top = mergeResults(Recorder->Results, IndexResults);
|
|
// Convert the results to the desired LSP structs.
|
|
CompletionList Output;
|
|
for (auto &C : Top)
|
|
Output.items.push_back(toCompletionItem(C.first, C.second));
|
|
Output.isIncomplete = Incomplete;
|
|
return Output;
|
|
}
|
|
|
|
SymbolSlab queryIndex() {
|
|
if (!Opts.Index || !allowIndex(Recorder->CCContext))
|
|
return SymbolSlab();
|
|
trace::Span Tracer("Query index");
|
|
SPAN_ATTACH(Tracer, "limit", Opts.Limit);
|
|
|
|
SymbolSlab::Builder ResultsBuilder;
|
|
// Build the query.
|
|
FuzzyFindRequest Req;
|
|
if (Opts.Limit)
|
|
Req.MaxCandidateCount = Opts.Limit;
|
|
Req.Query = Filter->pattern();
|
|
Req.RestrictForCodeCompletion = true;
|
|
Req.Scopes = getQueryScopes(Recorder->CCContext,
|
|
Recorder->CCSema->getSourceManager());
|
|
Req.ProximityPaths.push_back(FileName);
|
|
log(llvm::formatv("Code complete: fuzzyFind(\"{0}\", scopes=[{1}])",
|
|
Req.Query,
|
|
llvm::join(Req.Scopes.begin(), Req.Scopes.end(), ",")));
|
|
// Run the query against the index.
|
|
if (Opts.Index->fuzzyFind(
|
|
Req, [&](const Symbol &Sym) { ResultsBuilder.insert(Sym); }))
|
|
Incomplete = true;
|
|
return std::move(ResultsBuilder).build();
|
|
}
|
|
|
|
// Merges the Sema and Index results where possible, scores them, and
|
|
// returns the top results from best to worst.
|
|
std::vector<std::pair<CompletionCandidate, CompletionItemScores>>
|
|
mergeResults(const std::vector<CodeCompletionResult> &SemaResults,
|
|
const SymbolSlab &IndexResults) {
|
|
trace::Span Tracer("Merge and score results");
|
|
// We only keep the best N results at any time, in "native" format.
|
|
TopN<ScoredCandidate, ScoredCandidateGreater> Top(
|
|
Opts.Limit == 0 ? std::numeric_limits<size_t>::max() : Opts.Limit);
|
|
llvm::DenseSet<const Symbol *> UsedIndexResults;
|
|
auto CorrespondingIndexResult =
|
|
[&](const CodeCompletionResult &SemaResult) -> const Symbol * {
|
|
if (auto SymID = getSymbolID(SemaResult)) {
|
|
auto I = IndexResults.find(*SymID);
|
|
if (I != IndexResults.end()) {
|
|
UsedIndexResults.insert(&*I);
|
|
return &*I;
|
|
}
|
|
}
|
|
return nullptr;
|
|
};
|
|
// Emit all Sema results, merging them with Index results if possible.
|
|
for (auto &SemaResult : Recorder->Results)
|
|
addCandidate(Top, &SemaResult, CorrespondingIndexResult(SemaResult));
|
|
// Now emit any Index-only results.
|
|
for (const auto &IndexResult : IndexResults) {
|
|
if (UsedIndexResults.count(&IndexResult))
|
|
continue;
|
|
addCandidate(Top, /*SemaResult=*/nullptr, &IndexResult);
|
|
}
|
|
return std::move(Top).items();
|
|
}
|
|
|
|
Optional<float> fuzzyScore(const CompletionCandidate &C) {
|
|
// Macros can be very spammy, so we only support prefix completion.
|
|
// We won't end up with underfull index results, as macros are sema-only.
|
|
if (C.SemaResult && C.SemaResult->Kind == CodeCompletionResult::RK_Macro &&
|
|
!C.Name.startswith_lower(Filter->pattern()))
|
|
return None;
|
|
return Filter->match(C.Name);
|
|
}
|
|
|
|
// Scores a candidate and adds it to the TopN structure.
|
|
void addCandidate(TopN<ScoredCandidate, ScoredCandidateGreater> &Candidates,
|
|
const CodeCompletionResult *SemaResult,
|
|
const Symbol *IndexResult) {
|
|
CompletionCandidate C;
|
|
C.SemaResult = SemaResult;
|
|
C.IndexResult = IndexResult;
|
|
C.Name = IndexResult ? IndexResult->Name : Recorder->getName(*SemaResult);
|
|
|
|
SymbolQualitySignals Quality;
|
|
SymbolRelevanceSignals Relevance;
|
|
Relevance.Query = SymbolRelevanceSignals::CodeComplete;
|
|
if (auto FuzzyScore = fuzzyScore(C))
|
|
Relevance.NameMatch = *FuzzyScore;
|
|
else
|
|
return;
|
|
if (IndexResult) {
|
|
Quality.merge(*IndexResult);
|
|
Relevance.merge(*IndexResult);
|
|
}
|
|
if (SemaResult) {
|
|
Quality.merge(*SemaResult);
|
|
Relevance.merge(*SemaResult);
|
|
}
|
|
|
|
float QualScore = Quality.evaluate(), RelScore = Relevance.evaluate();
|
|
CompletionItemScores Scores;
|
|
Scores.finalScore = evaluateSymbolAndRelevance(QualScore, RelScore);
|
|
// The purpose of exporting component scores is to allow NameMatch to be
|
|
// replaced on the client-side. So we export (NameMatch, final/NameMatch)
|
|
// rather than (RelScore, QualScore).
|
|
Scores.filterScore = Relevance.NameMatch;
|
|
Scores.symbolScore =
|
|
Scores.filterScore ? Scores.finalScore / Scores.filterScore : QualScore;
|
|
|
|
LLVM_DEBUG(llvm::dbgs()
|
|
<< "CodeComplete: " << C.Name << (IndexResult ? " (index)" : "")
|
|
<< (SemaResult ? " (sema)" : "") << " = " << Scores.finalScore
|
|
<< "\n"
|
|
<< Quality << Relevance << "\n");
|
|
|
|
NSema += bool(SemaResult);
|
|
NIndex += bool(IndexResult);
|
|
NBoth += SemaResult && IndexResult;
|
|
if (Candidates.push({C, Scores}))
|
|
Incomplete = true;
|
|
}
|
|
|
|
CompletionItem toCompletionItem(const CompletionCandidate &Candidate,
|
|
const CompletionItemScores &Scores) {
|
|
CodeCompletionString *SemaCCS = nullptr;
|
|
std::string DocComment;
|
|
if (auto *SR = Candidate.SemaResult) {
|
|
SemaCCS = Recorder->codeCompletionString(*SR);
|
|
if (Opts.IncludeComments) {
|
|
assert(Recorder->CCSema);
|
|
DocComment = getDocComment(Recorder->CCSema->getASTContext(), *SR,
|
|
/*CommentsFromHeader=*/false);
|
|
}
|
|
}
|
|
return Candidate.build(FileName, Scores, Opts, SemaCCS, Includes.get(),
|
|
DocComment);
|
|
}
|
|
};
|
|
|
|
CompletionList codeComplete(PathRef FileName,
|
|
const tooling::CompileCommand &Command,
|
|
PrecompiledPreamble const *Preamble,
|
|
const std::vector<Inclusion> &PreambleInclusions,
|
|
StringRef Contents, Position Pos,
|
|
IntrusiveRefCntPtr<vfs::FileSystem> VFS,
|
|
std::shared_ptr<PCHContainerOperations> PCHs,
|
|
CodeCompleteOptions Opts) {
|
|
return CodeCompleteFlow(FileName, Opts)
|
|
.run({FileName, Command, Preamble, PreambleInclusions, Contents, Pos, VFS,
|
|
PCHs});
|
|
}
|
|
|
|
SignatureHelp signatureHelp(PathRef FileName,
|
|
const tooling::CompileCommand &Command,
|
|
PrecompiledPreamble const *Preamble,
|
|
StringRef Contents, Position Pos,
|
|
IntrusiveRefCntPtr<vfs::FileSystem> VFS,
|
|
std::shared_ptr<PCHContainerOperations> PCHs) {
|
|
SignatureHelp Result;
|
|
clang::CodeCompleteOptions Options;
|
|
Options.IncludeGlobals = false;
|
|
Options.IncludeMacros = false;
|
|
Options.IncludeCodePatterns = false;
|
|
Options.IncludeBriefComments = false;
|
|
std::vector<Inclusion> PreambleInclusions = {}; // Unused for signatureHelp
|
|
semaCodeComplete(llvm::make_unique<SignatureHelpCollector>(Options, Result),
|
|
Options,
|
|
{FileName, Command, Preamble, PreambleInclusions, Contents,
|
|
Pos, std::move(VFS), std::move(PCHs)});
|
|
return Result;
|
|
}
|
|
|
|
bool isIndexedForCodeCompletion(const NamedDecl &ND, ASTContext &ASTCtx) {
|
|
using namespace clang::ast_matchers;
|
|
auto InTopLevelScope = hasDeclContext(
|
|
anyOf(namespaceDecl(), translationUnitDecl(), linkageSpecDecl()));
|
|
return !match(decl(anyOf(InTopLevelScope,
|
|
hasDeclContext(
|
|
enumDecl(InTopLevelScope, unless(isScoped()))))),
|
|
ND, ASTCtx)
|
|
.empty();
|
|
}
|
|
|
|
} // namespace clangd
|
|
} // namespace clang
|