mirror of
https://github.com/MaskRay/ccls.git
synced 2024-11-24 16:45:07 +00:00
748 lines
27 KiB
C++
748 lines
27 KiB
C++
/* Copyright 2017-2018 ccls Authors
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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==============================================================================*/
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#include "clang_complete.h"
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#include "clang_utils.h"
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#include "filesystem.hh"
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#include "log.hh"
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#include "platform.h"
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#include <clang/Frontend/CompilerInstance.h>
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#include <clang/Frontend/FrontendDiagnostic.h>
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#include <clang/Sema/CodeCompleteConsumer.h>
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#include <llvm/ADT/Twine.h>
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#include <llvm/Config/llvm-config.h>
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#include <llvm/Support/CrashRecoveryContext.h>
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#include <llvm/Support/Threading.h>
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using namespace clang;
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using namespace llvm;
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#include <algorithm>
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#include <thread>
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namespace {
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std::string StripFileType(const std::string &path) {
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SmallString<128> Ret;
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sys::path::append(Ret, sys::path::parent_path(path), sys::path::stem(path));
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return Ret.str();
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}
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unsigned GetCompletionPriority(const CodeCompletionString &CCS,
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CXCursorKind result_kind,
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const std::optional<std::string> &typedText) {
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unsigned priority = CCS.getPriority();
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if (CCS.getAvailability() != CXAvailability_Available ||
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result_kind == CXCursor_Destructor ||
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result_kind == CXCursor_ConversionFunction ||
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(result_kind == CXCursor_CXXMethod && typedText &&
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StartsWith(*typedText, "operator")))
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priority *= 100;
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return priority;
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}
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lsCompletionItemKind GetCompletionKind(CXCursorKind cursor_kind) {
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switch (cursor_kind) {
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case CXCursor_UnexposedDecl:
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return lsCompletionItemKind::Text;
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case CXCursor_StructDecl:
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case CXCursor_UnionDecl:
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return lsCompletionItemKind::Struct;
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case CXCursor_ClassDecl:
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return lsCompletionItemKind::Class;
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case CXCursor_EnumDecl:
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return lsCompletionItemKind::Enum;
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case CXCursor_FieldDecl:
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return lsCompletionItemKind::Field;
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case CXCursor_EnumConstantDecl:
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return lsCompletionItemKind::EnumMember;
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case CXCursor_FunctionDecl:
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return lsCompletionItemKind::Function;
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case CXCursor_VarDecl:
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case CXCursor_ParmDecl:
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return lsCompletionItemKind::Variable;
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case CXCursor_ObjCInterfaceDecl:
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return lsCompletionItemKind::Interface;
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case CXCursor_ObjCInstanceMethodDecl:
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case CXCursor_CXXMethod:
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case CXCursor_ObjCClassMethodDecl:
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return lsCompletionItemKind::Method;
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case CXCursor_FunctionTemplate:
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return lsCompletionItemKind::Function;
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case CXCursor_Constructor:
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case CXCursor_Destructor:
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case CXCursor_ConversionFunction:
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return lsCompletionItemKind::Constructor;
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case CXCursor_ObjCIvarDecl:
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return lsCompletionItemKind::Variable;
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case CXCursor_ClassTemplate:
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case CXCursor_ClassTemplatePartialSpecialization:
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case CXCursor_UsingDeclaration:
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case CXCursor_TypedefDecl:
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case CXCursor_TypeAliasDecl:
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case CXCursor_TypeAliasTemplateDecl:
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case CXCursor_ObjCCategoryDecl:
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case CXCursor_ObjCProtocolDecl:
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case CXCursor_ObjCImplementationDecl:
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case CXCursor_ObjCCategoryImplDecl:
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return lsCompletionItemKind::Class;
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case CXCursor_ObjCPropertyDecl:
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return lsCompletionItemKind::Property;
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case CXCursor_MacroInstantiation:
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case CXCursor_MacroDefinition:
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return lsCompletionItemKind::Interface;
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case CXCursor_Namespace:
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case CXCursor_NamespaceAlias:
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case CXCursor_NamespaceRef:
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return lsCompletionItemKind::Module;
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case CXCursor_MemberRef:
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case CXCursor_TypeRef:
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case CXCursor_ObjCSuperClassRef:
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case CXCursor_ObjCProtocolRef:
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case CXCursor_ObjCClassRef:
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return lsCompletionItemKind::Reference;
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// return lsCompletionItemKind::Unit;
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// return lsCompletionItemKind::Value;
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// return lsCompletionItemKind::Keyword;
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// return lsCompletionItemKind::Snippet;
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// return lsCompletionItemKind::Color;
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// return lsCompletionItemKind::File;
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case CXCursor_NotImplemented:
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case CXCursor_OverloadCandidate:
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return lsCompletionItemKind::Text;
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case CXCursor_TemplateTypeParameter:
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case CXCursor_TemplateTemplateParameter:
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return lsCompletionItemKind::TypeParameter;
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default:
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LOG_S(WARNING) << "Unhandled completion kind " << cursor_kind;
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return lsCompletionItemKind::Text;
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}
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}
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void BuildCompletionItemTexts(std::vector<lsCompletionItem> &out,
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CodeCompletionString &CCS,
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bool include_snippets) {
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assert(!out.empty());
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auto out_first = out.size() - 1;
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std::string result_type;
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for (unsigned i = 0, num_chunks = CCS.size(); i < num_chunks; ++i) {
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const CodeCompletionString::Chunk &Chunk = CCS[i];
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CodeCompletionString::ChunkKind Kind = Chunk.Kind;
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std::string text;
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switch (Kind) {
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case CodeCompletionString::CK_TypedText:
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case CodeCompletionString::CK_Text:
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case CodeCompletionString::CK_Placeholder:
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case CodeCompletionString::CK_Informative:
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if (Chunk.Text)
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text = Chunk.Text;
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for (auto i = out_first; i < out.size(); i++) {
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// first TypedText is used for filtering
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if (Kind == CodeCompletionString::CK_TypedText && !out[i].filterText)
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out[i].filterText = text;
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if (Kind == CodeCompletionString::CK_Placeholder)
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out[i].parameters_.push_back(text);
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}
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break;
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case CodeCompletionString::CK_ResultType:
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if (Chunk.Text)
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result_type = Chunk.Text;
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continue;
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case CodeCompletionString::CK_CurrentParameter:
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// We have our own parsing logic for active parameter. This doesn't seem
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// to be very reliable.
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continue;
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case CodeCompletionString::CK_Optional: {
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// duplicate last element, the recursive call will complete it
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out.push_back(out.back());
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BuildCompletionItemTexts(out, *Chunk.Optional, include_snippets);
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continue;
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}
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// clang-format off
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case CodeCompletionString::CK_LeftParen: text = '('; break;
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case CodeCompletionString::CK_RightParen: text = ')'; break;
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case CodeCompletionString::CK_LeftBracket: text = '['; break;
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case CodeCompletionString::CK_RightBracket: text = ']'; break;
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case CodeCompletionString::CK_LeftBrace: text = '{'; break;
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case CodeCompletionString::CK_RightBrace: text = '}'; break;
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case CodeCompletionString::CK_LeftAngle: text = '<'; break;
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case CodeCompletionString::CK_RightAngle: text = '>'; break;
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case CodeCompletionString::CK_Comma: text = ", "; break;
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case CodeCompletionString::CK_Colon: text = ':'; break;
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case CodeCompletionString::CK_SemiColon: text = ';'; break;
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case CodeCompletionString::CK_Equal: text = '='; break;
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case CodeCompletionString::CK_HorizontalSpace: text = ' '; break;
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case CodeCompletionString::CK_VerticalSpace: text = ' '; break;
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// clang-format on
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}
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if (Kind != CodeCompletionString::CK_Informative)
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for (auto i = out_first; i < out.size(); ++i) {
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out[i].label += text;
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if (!include_snippets && !out[i].parameters_.empty())
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continue;
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if (Kind == CodeCompletionString::CK_Placeholder) {
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out[i].insertText += "${" +
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std::to_string(out[i].parameters_.size()) + ":" +
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text + "}";
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out[i].insertTextFormat = lsInsertTextFormat::Snippet;
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} else {
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out[i].insertText += text;
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}
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}
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}
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if (result_type.size())
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for (auto i = out_first; i < out.size(); ++i) {
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// ' : ' for variables,
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// ' -> ' (trailing return type-like) for functions
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out[i].label += (out[i].label == out[i].filterText ? " : " : " -> ");
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out[i].label += result_type;
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}
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}
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// |do_insert|: if |!do_insert|, do not append strings to |insert| after
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// a placeholder.
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void BuildDetailString(const CodeCompletionString &CCS, lsCompletionItem &item,
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bool &do_insert, std::vector<std::string> *parameters,
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bool include_snippets, int &angle_stack) {
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for (unsigned i = 0, num_chunks = CCS.size(); i < num_chunks; ++i) {
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const CodeCompletionString::Chunk &Chunk = CCS[i];
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CodeCompletionString::ChunkKind Kind = Chunk.Kind;
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const char *text = nullptr;
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switch (Kind) {
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case CodeCompletionString::CK_TypedText:
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item.label = Chunk.Text;
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[[fallthrough]];
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case CodeCompletionString::CK_Text:
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item.detail += Chunk.Text;
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if (do_insert)
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item.insertText += Chunk.Text;
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break;
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case CodeCompletionString::CK_Placeholder: {
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parameters->push_back(Chunk.Text);
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item.detail += Chunk.Text;
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// Add parameter declarations as snippets if enabled
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if (include_snippets) {
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item.insertText +=
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"${" + std::to_string(parameters->size()) + ":" + Chunk.Text + "}";
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item.insertTextFormat = lsInsertTextFormat::Snippet;
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} else
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do_insert = false;
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break;
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}
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case CodeCompletionString::CK_Informative:
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item.detail += Chunk.Text;
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break;
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case CodeCompletionString::CK_Optional: {
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// Do not add text to insert string if we're in angle brackets.
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bool should_insert = do_insert && angle_stack == 0;
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BuildDetailString(*Chunk.Optional, item, should_insert, parameters,
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include_snippets, angle_stack);
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break;
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}
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case CodeCompletionString::CK_ResultType:
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item.detail = Chunk.Text + item.detail + " ";
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break;
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case CodeCompletionString::CK_CurrentParameter:
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// We have our own parsing logic for active parameter. This doesn't seem
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// to be very reliable.
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break;
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// clang-format off
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case CodeCompletionString::CK_LeftParen: text = "("; break;
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case CodeCompletionString::CK_RightParen: text = ")"; break;
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case CodeCompletionString::CK_LeftBracket: text = "["; break;
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case CodeCompletionString::CK_RightBracket: text = "]"; break;
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case CodeCompletionString::CK_LeftBrace: text = "{"; break;
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case CodeCompletionString::CK_RightBrace: text = "}"; break;
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case CodeCompletionString::CK_LeftAngle: text = "<"; angle_stack++; break;
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case CodeCompletionString::CK_RightAngle: text = ">"; angle_stack--; break;
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case CodeCompletionString::CK_Comma: text = ", "; break;
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case CodeCompletionString::CK_Colon: text = ":"; break;
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case CodeCompletionString::CK_SemiColon: text = ";"; break;
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case CodeCompletionString::CK_Equal: text = "="; break;
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case CodeCompletionString::CK_HorizontalSpace:
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case CodeCompletionString::CK_VerticalSpace: text = " "; break;
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// clang-format on
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}
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if (text) {
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item.detail += text;
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if (do_insert && include_snippets)
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item.insertText += text;
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}
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}
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}
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class CaptureCompletionResults : public CodeCompleteConsumer {
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std::shared_ptr<clang::GlobalCodeCompletionAllocator> Alloc;
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CodeCompletionTUInfo CCTUInfo;
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public:
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std::vector<lsCompletionItem> ls_items;
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CaptureCompletionResults(const CodeCompleteOptions &Opts)
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: CodeCompleteConsumer(Opts, false),
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Alloc(std::make_shared<clang::GlobalCodeCompletionAllocator>()),
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CCTUInfo(Alloc) {}
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void ProcessCodeCompleteResults(Sema &S, CodeCompletionContext Context,
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CodeCompletionResult *Results,
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unsigned NumResults) override {
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ls_items.reserve(NumResults);
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for (unsigned i = 0; i != NumResults; i++) {
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CodeCompletionString *CCS = Results[i].CreateCodeCompletionString(
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S, Context, getAllocator(), getCodeCompletionTUInfo(),
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includeBriefComments());
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if (CCS->getAvailability() == CXAvailability_NotAvailable)
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continue;
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lsCompletionItem ls_item;
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ls_item.kind = GetCompletionKind(Results[i].CursorKind);
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if (const char *brief = CCS->getBriefComment())
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ls_item.documentation = brief;
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// label/detail/filterText/insertText/priority
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if (g_config->completion.detailedLabel) {
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ls_item.detail = CCS->getParentContextName().str();
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size_t first_idx = ls_items.size();
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ls_items.push_back(ls_item);
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BuildCompletionItemTexts(ls_items, *CCS,
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g_config->client.snippetSupport);
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for (size_t j = first_idx; j < ls_items.size(); j++) {
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if (g_config->client.snippetSupport &&
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ls_items[j].insertTextFormat == lsInsertTextFormat::Snippet)
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ls_items[j].insertText += "$0";
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ls_items[j].priority_ = GetCompletionPriority(
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*CCS, Results[i].CursorKind, ls_items[j].filterText);
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}
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} else {
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bool do_insert = true;
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int angle_stack = 0;
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BuildDetailString(*CCS, ls_item, do_insert, &ls_item.parameters_,
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g_config->client.snippetSupport, angle_stack);
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if (g_config->client.snippetSupport &&
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ls_item.insertTextFormat == lsInsertTextFormat::Snippet)
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ls_item.insertText += "$0";
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ls_item.priority_ =
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GetCompletionPriority(*CCS, Results[i].CursorKind, ls_item.label);
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ls_items.push_back(ls_item);
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}
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}
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}
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void ProcessOverloadCandidates(Sema &S, unsigned CurrentArg,
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OverloadCandidate *Candidates,
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unsigned NumCandidates) override {}
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CodeCompletionAllocator &getAllocator() override { return *Alloc; }
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CodeCompletionTUInfo &getCodeCompletionTUInfo() override { return CCTUInfo; }
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};
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void TryEnsureDocumentParsed(ClangCompleteManager *manager,
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std::shared_ptr<CompletionSession> session,
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std::unique_ptr<ClangTranslationUnit> *tu,
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bool diagnostic) {
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// Nothing to do. We already have a translation unit.
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if (*tu)
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return;
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const auto &args = session->file.args;
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WorkingFiles::Snapshot snapshot = session->working_files->AsSnapshot(
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{StripFileType(session->file.filename)});
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LOG_S(INFO) << "create " << (diagnostic ? "diagnostic" : "completion")
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<< " TU for " << session->file.filename;
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*tu = ClangTranslationUnit::Create(session->file.filename, args, snapshot,
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diagnostic);
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}
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void CompletionPreloadMain(ClangCompleteManager *completion_manager) {
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while (true) {
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// Fetching the completion request blocks until we have a request.
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auto request = completion_manager->preload_requests_.Dequeue();
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// If we don't get a session then that means we don't care about the file
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// anymore - abandon the request.
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std::shared_ptr<CompletionSession> session =
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completion_manager->TryGetSession(request.path,
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false /*mark_as_completion*/,
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false /*create_if_needed*/);
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if (!session)
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continue;
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// Note: we only preload completion. We emit diagnostics for the
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// completion preload though.
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CompletionSession::Tu *tu = &session->completion;
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// If we've parsed it more recently than the request time, don't bother
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// reparsing.
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if (tu->last_parsed_at && *tu->last_parsed_at > request.request_time)
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continue;
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std::unique_ptr<ClangTranslationUnit> parsing;
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TryEnsureDocumentParsed(completion_manager, session, &parsing, false);
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// Activate new translation unit.
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std::lock_guard<std::mutex> lock(tu->lock);
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tu->last_parsed_at = std::chrono::high_resolution_clock::now();
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tu->tu = std::move(parsing);
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}
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}
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void CompletionQueryMain(ClangCompleteManager *completion_manager) {
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while (true) {
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// Fetching the completion request blocks until we have a request.
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std::unique_ptr<ClangCompleteManager::CompletionRequest> request =
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completion_manager->completion_request_.Dequeue();
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// Drop older requests if we're not buffering.
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while (g_config->completion.dropOldRequests &&
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!completion_manager->completion_request_.IsEmpty()) {
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completion_manager->on_dropped_(request->id);
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request = completion_manager->completion_request_.Dequeue();
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}
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std::string path = request->document.uri.GetPath();
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std::shared_ptr<CompletionSession> session =
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completion_manager->TryGetSession(path, true /*mark_as_completion*/,
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true /*create_if_needed*/);
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std::lock_guard<std::mutex> lock(session->completion.lock);
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TryEnsureDocumentParsed(completion_manager, session,
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&session->completion.tu, false);
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// It is possible we failed to create the document despite
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// |TryEnsureDocumentParsed|.
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if (ClangTranslationUnit *tu = session->completion.tu.get()) {
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WorkingFiles::Snapshot snapshot =
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completion_manager->working_files_->AsSnapshot({StripFileType(path)});
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IntrusiveRefCntPtr<FileManager> FileMgr(&tu->Unit->getFileManager());
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IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts(new DiagnosticOptions());
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IntrusiveRefCntPtr<DiagnosticsEngine> Diag(new DiagnosticsEngine(
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IntrusiveRefCntPtr<DiagnosticIDs>(new DiagnosticIDs), &*DiagOpts));
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// StoreDiags Diags;
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// IntrusiveRefCntPtr<DiagnosticsEngine> DiagE =
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// CompilerInstance::createDiagnostics(DiagOpts.get(), &Diags, false);
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IntrusiveRefCntPtr<SourceManager> SrcMgr(
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new SourceManager(*Diag, *FileMgr));
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std::vector<ASTUnit::RemappedFile> Remapped = GetRemapped(snapshot);
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SmallVector<StoredDiagnostic, 8> Diagnostics;
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SmallVector<const llvm::MemoryBuffer *, 1> TemporaryBuffers;
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CodeCompleteOptions Opts;
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LangOptions LangOpts;
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Opts.IncludeBriefComments = true;
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#if LLVM_VERSION_MAJOR >= 7
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Opts.LoadExternal = true;
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Opts.IncludeFixIts = true;
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#endif
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CaptureCompletionResults capture(Opts);
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tu->Unit->CodeComplete(session->file.filename, request->position.line + 1,
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request->position.character + 1, Remapped,
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/*IncludeMacros=*/true,
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/*IncludeCodePatterns=*/false,
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/*IncludeBriefComments=*/g_config->index.comments,
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capture, tu->PCHCO, *Diag, LangOpts, *SrcMgr,
|
|
*FileMgr, Diagnostics, TemporaryBuffers);
|
|
request->on_complete(capture.ls_items, false /*is_cached_result*/);
|
|
// completion_manager->on_diagnostic_(session->file.filename,
|
|
// Diags.take());
|
|
}
|
|
}
|
|
}
|
|
|
|
void DiagnosticQueryMain(ClangCompleteManager *manager) {
|
|
while (true) {
|
|
// Fetching the completion request blocks until we have a request.
|
|
ClangCompleteManager::DiagnosticRequest request =
|
|
manager->diagnostic_request_.Dequeue();
|
|
if (!g_config->diagnostics.onType)
|
|
continue;
|
|
std::string path = request.document.uri.GetPath();
|
|
|
|
std::shared_ptr<CompletionSession> session = manager->TryGetSession(
|
|
path, true /*mark_as_completion*/, true /*create_if_needed*/);
|
|
|
|
// At this point, we must have a translation unit. Block until we have one.
|
|
std::lock_guard<std::mutex> lock(session->diagnostics.lock);
|
|
TryEnsureDocumentParsed(manager, session, &session->diagnostics.tu, true);
|
|
|
|
// It is possible we failed to create the document despite
|
|
// |TryEnsureDocumentParsed|.
|
|
ClangTranslationUnit *tu = session->diagnostics.tu.get();
|
|
if (!tu)
|
|
continue;
|
|
|
|
WorkingFiles::Snapshot snapshot =
|
|
manager->working_files_->AsSnapshot({StripFileType(path)});
|
|
llvm::CrashRecoveryContext CRC;
|
|
if (tu->Reparse(CRC, snapshot)) {
|
|
LOG_S(ERROR) << "Reparsing translation unit for diagnostics failed for "
|
|
<< path;
|
|
continue;
|
|
}
|
|
|
|
auto &LangOpts = tu->Unit->getLangOpts();
|
|
std::vector<lsDiagnostic> ls_diags;
|
|
for (ASTUnit::stored_diag_iterator I = tu->Unit->stored_diag_begin(),
|
|
E = tu->Unit->stored_diag_end();
|
|
I != E; ++I) {
|
|
FullSourceLoc FLoc = I->getLocation();
|
|
if (!FLoc.isValid()) // why?
|
|
continue;
|
|
const FileEntry *FE = FLoc.getFileEntry();
|
|
if (!FE || FileName(*FE) != path)
|
|
continue;
|
|
const auto &SM = FLoc.getManager();
|
|
SourceRange R;
|
|
for (const auto &CR : I->getRanges()) {
|
|
auto RT = Lexer::makeFileCharRange(CR, SM, LangOpts);
|
|
if (SM.isPointWithin(FLoc, RT.getBegin(), RT.getEnd())) {
|
|
R = CR.getAsRange();
|
|
break;
|
|
}
|
|
}
|
|
Range r = R.isValid() ? FromCharRange(SM, LangOpts, R)
|
|
: FromTokenRange(SM, LangOpts, {FLoc, FLoc});
|
|
lsDiagnostic ls_diag;
|
|
ls_diag.range =
|
|
lsRange{{r.start.line, r.start.column}, {r.end.line, r.end.column}};
|
|
switch (I->getLevel()) {
|
|
case DiagnosticsEngine::Ignored:
|
|
// llvm_unreachable
|
|
case DiagnosticsEngine::Note:
|
|
case DiagnosticsEngine::Remark:
|
|
ls_diag.severity = lsDiagnosticSeverity::Information;
|
|
continue;
|
|
case DiagnosticsEngine::Warning:
|
|
ls_diag.severity = lsDiagnosticSeverity::Warning;
|
|
break;
|
|
case DiagnosticsEngine::Error:
|
|
case DiagnosticsEngine::Fatal:
|
|
ls_diag.severity = lsDiagnosticSeverity::Error;
|
|
}
|
|
ls_diag.message = I->getMessage().str();
|
|
for (const FixItHint &FixIt : I->getFixIts()) {
|
|
lsTextEdit edit;
|
|
edit.newText = FixIt.CodeToInsert;
|
|
r = FromCharSourceRange(SM, LangOpts, FixIt.RemoveRange);
|
|
edit.range =
|
|
lsRange{{r.start.line, r.start.column}, {r.end.line, r.end.column}};
|
|
ls_diag.fixits_.push_back(edit);
|
|
}
|
|
ls_diags.push_back(ls_diag);
|
|
}
|
|
manager->on_diagnostic_(path, ls_diags);
|
|
}
|
|
}
|
|
|
|
} // namespace
|
|
|
|
ClangCompleteManager::ClangCompleteManager(Project *project,
|
|
WorkingFiles *working_files,
|
|
OnDiagnostic on_diagnostic,
|
|
OnDropped on_dropped)
|
|
: project_(project), working_files_(working_files),
|
|
on_diagnostic_(on_diagnostic), on_dropped_(on_dropped),
|
|
preloaded_sessions_(kMaxPreloadedSessions),
|
|
completion_sessions_(kMaxCompletionSessions) {
|
|
std::thread([&]() {
|
|
set_thread_name("comp-query");
|
|
CompletionQueryMain(this);
|
|
})
|
|
.detach();
|
|
std::thread([&]() {
|
|
set_thread_name("comp-preload");
|
|
CompletionPreloadMain(this);
|
|
})
|
|
.detach();
|
|
std::thread([&]() {
|
|
set_thread_name("diag-query");
|
|
DiagnosticQueryMain(this);
|
|
})
|
|
.detach();
|
|
}
|
|
|
|
void ClangCompleteManager::CodeComplete(
|
|
const lsRequestId &id,
|
|
const lsTextDocumentPositionParams &completion_location,
|
|
const OnComplete &on_complete) {
|
|
completion_request_.PushBack(std::make_unique<CompletionRequest>(
|
|
id, completion_location.textDocument, completion_location.position,
|
|
on_complete));
|
|
}
|
|
|
|
void ClangCompleteManager::DiagnosticsUpdate(
|
|
const lsTextDocumentIdentifier &document) {
|
|
bool has = false;
|
|
diagnostic_request_.Iterate([&](const DiagnosticRequest &request) {
|
|
if (request.document.uri == document.uri)
|
|
has = true;
|
|
});
|
|
if (!has)
|
|
diagnostic_request_.PushBack(DiagnosticRequest{document},
|
|
true /*priority*/);
|
|
}
|
|
|
|
void ClangCompleteManager::NotifyView(const std::string &filename) {
|
|
//
|
|
// On view, we reparse only if the file has not been parsed. The existence of
|
|
// a CompletionSession instance implies the file is already parsed or will be
|
|
// parsed soon.
|
|
//
|
|
|
|
// Only reparse the file if we create a new CompletionSession.
|
|
if (EnsureCompletionOrCreatePreloadSession(filename))
|
|
preload_requests_.PushBack(PreloadRequest(filename), true);
|
|
}
|
|
|
|
void ClangCompleteManager::NotifyEdit(const std::string &filename) {
|
|
//
|
|
// We treat an edit like a view, because the completion logic will handle
|
|
// moving the CompletionSession instance from preloaded to completion
|
|
// storage.
|
|
//
|
|
|
|
NotifyView(filename);
|
|
}
|
|
|
|
void ClangCompleteManager::NotifySave(const std::string &filename) {
|
|
//
|
|
// On save, always reparse.
|
|
//
|
|
|
|
EnsureCompletionOrCreatePreloadSession(filename);
|
|
preload_requests_.PushBack(PreloadRequest(filename), true);
|
|
}
|
|
|
|
void ClangCompleteManager::NotifyClose(const std::string &filename) {
|
|
//
|
|
// On close, we clear any existing CompletionSession instance.
|
|
//
|
|
|
|
std::lock_guard<std::mutex> lock(sessions_lock_);
|
|
|
|
// Take and drop. It's okay if we don't actually drop the file, it'll
|
|
// eventually get pushed out of the caches as the user opens other files.
|
|
auto preloaded_ptr = preloaded_sessions_.TryTake(filename);
|
|
LOG_IF_S(INFO, !!preloaded_ptr)
|
|
<< "Dropped preloaded-based code completion session for " << filename;
|
|
auto completion_ptr = completion_sessions_.TryTake(filename);
|
|
LOG_IF_S(INFO, !!completion_ptr)
|
|
<< "Dropped completion-based code completion session for " << filename;
|
|
|
|
// We should never have both a preloaded and completion session.
|
|
assert((preloaded_ptr && completion_ptr) == false);
|
|
}
|
|
|
|
bool ClangCompleteManager::EnsureCompletionOrCreatePreloadSession(
|
|
const std::string &filename) {
|
|
std::lock_guard<std::mutex> lock(sessions_lock_);
|
|
|
|
// Check for an existing CompletionSession.
|
|
if (preloaded_sessions_.TryGet(filename) ||
|
|
completion_sessions_.TryGet(filename)) {
|
|
return false;
|
|
}
|
|
|
|
// No CompletionSession, create new one.
|
|
auto session = std::make_shared<CompletionSession>(
|
|
project_->FindCompilationEntryForFile(filename), working_files_);
|
|
preloaded_sessions_.Insert(session->file.filename, session);
|
|
return true;
|
|
}
|
|
|
|
std::shared_ptr<CompletionSession>
|
|
ClangCompleteManager::TryGetSession(const std::string &filename,
|
|
bool mark_as_completion,
|
|
bool create_if_needed) {
|
|
std::lock_guard<std::mutex> lock(sessions_lock_);
|
|
|
|
// Try to find a preloaded session.
|
|
std::shared_ptr<CompletionSession> preloaded_session =
|
|
preloaded_sessions_.TryGet(filename);
|
|
|
|
if (preloaded_session) {
|
|
// If this request is for a completion, we should move it to
|
|
// |completion_sessions|.
|
|
if (mark_as_completion) {
|
|
preloaded_sessions_.TryTake(filename);
|
|
completion_sessions_.Insert(filename, preloaded_session);
|
|
}
|
|
|
|
return preloaded_session;
|
|
}
|
|
|
|
// Try to find a completion session. If none create one.
|
|
std::shared_ptr<CompletionSession> completion_session =
|
|
completion_sessions_.TryGet(filename);
|
|
if (!completion_session && create_if_needed) {
|
|
completion_session = std::make_shared<CompletionSession>(
|
|
project_->FindCompilationEntryForFile(filename), working_files_);
|
|
completion_sessions_.Insert(filename, completion_session);
|
|
}
|
|
|
|
return completion_session;
|
|
}
|
|
|
|
void ClangCompleteManager::FlushSession(const std::string &filename) {
|
|
std::lock_guard<std::mutex> lock(sessions_lock_);
|
|
|
|
preloaded_sessions_.TryTake(filename);
|
|
completion_sessions_.TryTake(filename);
|
|
}
|
|
|
|
void ClangCompleteManager::FlushAllSessions() {
|
|
LOG_S(INFO) << "flush all clang complete sessions";
|
|
std::lock_guard<std::mutex> lock(sessions_lock_);
|
|
|
|
preloaded_sessions_.Clear();
|
|
completion_sessions_.Clear();
|
|
}
|
|
|
|
void CodeCompleteCache::WithLock(std::function<void()> action) {
|
|
std::lock_guard<std::mutex> lock(mutex_);
|
|
action();
|
|
}
|
|
|
|
bool CodeCompleteCache::IsCacheValid(lsTextDocumentPositionParams position) {
|
|
std::lock_guard<std::mutex> lock(mutex_);
|
|
return cached_path_ == position.textDocument.uri.GetPath() &&
|
|
cached_completion_position_ == position.position;
|
|
}
|