
As a document is parsed, the language server updates the client asynchronously about symbol declarations it finds.
390 lines
15 KiB
C++
390 lines
15 KiB
C++
/*
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* Copyright (c) 2021, Itamar S. <itamar8910@gmail.com>
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "ParserAutoComplete.h"
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#include <AK/Assertions.h>
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#include <AK/HashTable.h>
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#include <DevTools/HackStudio/LanguageServers/Cpp/ClientConnection.h>
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#include <LibCpp/AST.h>
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#include <LibCpp/Lexer.h>
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#include <LibCpp/Parser.h>
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#include <LibCpp/Preprocessor.h>
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#include <LibRegex/Regex.h>
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namespace LanguageServers::Cpp {
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ParserAutoComplete::ParserAutoComplete(ClientConnection& connection, const FileDB& filedb)
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: AutoCompleteEngine(connection, filedb)
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{
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}
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const ParserAutoComplete::DocumentData& ParserAutoComplete::get_or_create_document_data(const String& file)
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{
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auto absolute_path = filedb().to_absolute_path(file);
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if (!m_documents.contains(absolute_path)) {
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set_document_data(absolute_path, create_document_data_for(absolute_path));
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}
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return get_document_data(absolute_path);
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}
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const ParserAutoComplete::DocumentData& ParserAutoComplete::get_document_data(const String& file) const
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{
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auto absolute_path = filedb().to_absolute_path(file);
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auto document_data = m_documents.get(absolute_path);
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VERIFY(document_data.has_value());
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return *document_data.value();
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}
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OwnPtr<ParserAutoComplete::DocumentData> ParserAutoComplete::create_document_data_for(const String& file)
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{
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auto document = filedb().get(file);
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if (!document)
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return {};
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auto content = document->text();
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auto document_data = make<DocumentData>(document->text(), file);
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auto root = document_data->parser.parse();
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for (auto& path : document_data->preprocessor.included_paths()) {
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get_or_create_document_data(document_path_from_include_path(path));
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}
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#ifdef CPP_LANGUAGE_SERVER_DEBUG
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root->dump(0);
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#endif
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update_declared_symbols(*document_data);
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return move(document_data);
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}
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void ParserAutoComplete::set_document_data(const String& file, OwnPtr<DocumentData>&& data)
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{
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m_documents.set(filedb().to_absolute_path(file), move(data));
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}
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ParserAutoComplete::DocumentData::DocumentData(String&& _text, const String& _filename)
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: filename(_filename)
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, text(move(_text))
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, preprocessor(text.view())
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, parser(preprocessor.process().view(), filename)
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{
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}
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Vector<GUI::AutocompleteProvider::Entry> ParserAutoComplete::get_suggestions(const String& file, const GUI::TextPosition& autocomplete_position)
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{
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Cpp::Position position { autocomplete_position.line(), autocomplete_position.column() > 0 ? autocomplete_position.column() - 1 : 0 };
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dbgln_if(CPP_LANGUAGE_SERVER_DEBUG, "ParserAutoComplete position {}:{}", position.line, position.column);
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const auto& document = get_or_create_document_data(file);
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auto node = document.parser.node_at(position);
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if (!node) {
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dbgln_if(CPP_LANGUAGE_SERVER_DEBUG, "no node at position {}:{}", position.line, position.column);
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return {};
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}
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if (node->is_identifier()) {
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if (is_property(*node)) {
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return autocomplete_property(document, (MemberExpression&)(*node->parent()), document.parser.text_of_node(*node));
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}
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return autocomplete_name(document, *node, document.parser.text_of_node(*node));
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}
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if (is_empty_property(document, *node, position)) {
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VERIFY(node->is_member_expression());
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return autocomplete_property(document, (MemberExpression&)(*node), "");
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}
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String partial_text = String::empty();
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auto containing_token = document.parser.token_at(position);
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if (containing_token.has_value()) {
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partial_text = document.parser.text_of_token(containing_token.value());
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}
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return autocomplete_name(document, *node, partial_text.view());
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}
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NonnullRefPtrVector<Declaration> ParserAutoComplete::get_available_declarations(const DocumentData& document, const ASTNode& node) const
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{
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const Cpp::ASTNode* current = &node;
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NonnullRefPtrVector<Declaration> available_declarations;
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while (current) {
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available_declarations.append(current->declarations());
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current = current->parent();
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}
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available_declarations.append(get_declarations_in_outer_scope_including_headers(document));
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return available_declarations;
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}
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Vector<GUI::AutocompleteProvider::Entry> ParserAutoComplete::autocomplete_name(const DocumentData& document, const ASTNode& node, const StringView& partial_text) const
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{
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auto available_declarations = get_available_declarations(document, node);
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Vector<StringView> available_names;
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auto add_name = [&available_names](auto& name) {
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if (name.is_null() || name.is_empty())
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return;
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if (!available_names.contains_slow(name))
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available_names.append(name);
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};
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for (auto& decl : available_declarations) {
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if (decl.is_variable_or_parameter_declaration()) {
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add_name(((Cpp::VariableOrParameterDeclaration&)decl).m_name);
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}
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if (decl.is_struct_or_class()) {
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add_name(((Cpp::StructOrClassDeclaration&)decl).m_name);
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}
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if (decl.is_function()) {
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add_name(((Cpp::FunctionDeclaration&)decl).m_name);
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}
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}
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Vector<GUI::AutocompleteProvider::Entry> suggestions;
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for (auto& name : available_names) {
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if (name.starts_with(partial_text)) {
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suggestions.append({ name.to_string(), partial_text.length(), GUI::AutocompleteProvider::CompletionKind::Identifier });
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}
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}
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return suggestions;
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}
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Vector<GUI::AutocompleteProvider::Entry> ParserAutoComplete::autocomplete_property(const DocumentData& document, const MemberExpression& parent, const StringView partial_text) const
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{
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auto type = type_of(document, *parent.m_object);
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if (type.is_null()) {
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dbgln_if(CPP_LANGUAGE_SERVER_DEBUG, "Could not infer type of object");
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return {};
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}
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Vector<GUI::AutocompleteProvider::Entry> suggestions;
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for (auto& prop : properties_of_type(document, type)) {
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if (prop.name.starts_with(partial_text)) {
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suggestions.append({ prop.name, partial_text.length(), GUI::AutocompleteProvider::CompletionKind::Identifier });
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}
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}
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return suggestions;
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}
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bool ParserAutoComplete::is_property(const ASTNode& node) const
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{
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if (!node.parent()->is_member_expression())
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return false;
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auto& parent = (MemberExpression&)(*node.parent());
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return parent.m_property.ptr() == &node;
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}
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bool ParserAutoComplete::is_empty_property(const DocumentData& document, const ASTNode& node, const Position& autocomplete_position) const
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{
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if (!node.is_member_expression())
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return false;
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auto previous_token = document.parser.token_at(autocomplete_position);
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if (!previous_token.has_value())
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return false;
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return previous_token.value().type() == Token::Type::Dot;
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}
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String ParserAutoComplete::type_of_property(const DocumentData& document, const Identifier& identifier) const
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{
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auto& parent = (const MemberExpression&)(*identifier.parent());
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auto properties = properties_of_type(document, type_of(document, *parent.m_object));
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for (auto& prop : properties) {
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if (prop.name == identifier.m_name)
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return prop.type->m_name;
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}
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return {};
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}
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String ParserAutoComplete::type_of_variable(const Identifier& identifier) const
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{
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const ASTNode* current = &identifier;
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while (current) {
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for (auto& decl : current->declarations()) {
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if (decl.is_variable_or_parameter_declaration()) {
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auto& var_or_param = (VariableOrParameterDeclaration&)decl;
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if (var_or_param.m_name == identifier.m_name) {
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return var_or_param.m_type->m_name;
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}
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}
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}
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current = current->parent();
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}
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return {};
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}
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String ParserAutoComplete::type_of(const DocumentData& document, const Expression& expression) const
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{
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if (expression.is_member_expression()) {
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auto& member_expression = (const MemberExpression&)expression;
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return type_of_property(document, *member_expression.m_property);
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}
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if (!expression.is_identifier()) {
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VERIFY_NOT_REACHED(); // TODO
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}
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auto& identifier = (const Identifier&)expression;
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if (is_property(identifier))
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return type_of_property(document, identifier);
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return type_of_variable(identifier);
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}
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Vector<ParserAutoComplete::PropertyInfo> ParserAutoComplete::properties_of_type(const DocumentData& document, const String& type) const
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{
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auto declarations = get_declarations_in_outer_scope_including_headers(document);
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Vector<PropertyInfo> properties;
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for (auto& decl : declarations) {
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if (!decl.is_struct_or_class())
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continue;
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auto& struct_or_class = (StructOrClassDeclaration&)decl;
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if (struct_or_class.m_name != type)
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continue;
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for (auto& member : struct_or_class.m_members) {
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properties.append({ member.m_name, member.m_type });
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}
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}
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return properties;
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}
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NonnullRefPtrVector<Declaration> ParserAutoComplete::get_declarations_in_outer_scope_including_headers(const DocumentData& document) const
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{
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NonnullRefPtrVector<Declaration> declarations;
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for (auto& include : document.preprocessor.included_paths()) {
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auto included_document = get_document_data(document_path_from_include_path(include));
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declarations.append(get_declarations_in_outer_scope_including_headers(included_document));
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}
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for (auto& decl : document.parser.root_node()->declarations()) {
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declarations.append(decl);
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}
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return declarations;
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}
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String ParserAutoComplete::document_path_from_include_path(const StringView& include_path) const
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{
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static Regex<PosixExtended> library_include("<(.+)>");
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static Regex<PosixExtended> user_defined_include("\"(.+)\"");
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auto document_path_for_library_include = [&](const StringView& include_path) -> String {
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RegexResult result;
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if (!library_include.search(include_path, result))
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return {};
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auto path = result.capture_group_matches.at(0).at(0).view.u8view();
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return String::formatted("/usr/include/{}", path);
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};
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auto document_path_for_user_defined_include = [&](const StringView& include_path) -> String {
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RegexResult result;
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if (!user_defined_include.search(include_path, result))
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return {};
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return result.capture_group_matches.at(0).at(0).view.u8view();
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};
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auto result = document_path_for_library_include(include_path);
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if (result.is_null())
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result = document_path_for_user_defined_include(include_path);
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return result;
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}
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void ParserAutoComplete::on_edit(const String& file)
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{
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set_document_data(file, create_document_data_for(file));
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}
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void ParserAutoComplete::file_opened([[maybe_unused]] const String& file)
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{
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set_document_data(file, create_document_data_for(file));
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}
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Optional<GUI::AutocompleteProvider::ProjectLocation> ParserAutoComplete::find_declaration_of(const String& file_name, const GUI::TextPosition& identifier_position)
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{
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const auto& document = get_or_create_document_data(file_name);
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auto node = document.parser.node_at(Cpp::Position { identifier_position.line(), identifier_position.column() });
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if (!node) {
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dbgln_if(CPP_LANGUAGE_SERVER_DEBUG, "no node at position {}:{}", identifier_position.line(), identifier_position.column());
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return {};
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}
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auto decl = find_declaration_of(document, *node);
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if (!decl)
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return {};
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return GUI::AutocompleteProvider::ProjectLocation { decl->filename(), decl->start().line, decl->start().column };
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}
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RefPtr<Declaration> ParserAutoComplete::find_declaration_of(const DocumentData& document_data, const ASTNode& node) const
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{
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dbgln_if(CPP_LANGUAGE_SERVER_DEBUG, "find_declaration_of: {}", document_data.parser.text_of_node(node));
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auto declarations = get_available_declarations(document_data, node);
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for (auto& decl : declarations) {
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if (node.is_identifier() && decl.is_variable_or_parameter_declaration()) {
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if (((Cpp::VariableOrParameterDeclaration&)decl).m_name == static_cast<const Identifier&>(node).m_name)
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return decl;
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}
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if (node.is_type() && decl.is_struct_or_class()) {
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if (((Cpp::StructOrClassDeclaration&)decl).m_name == static_cast<const Type&>(node).m_name)
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return decl;
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}
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if (node.is_function_call() && decl.is_function()) {
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if (((Cpp::FunctionDeclaration&)decl).m_name == static_cast<const FunctionCall&>(node).m_name)
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return decl;
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}
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if (is_property(node) && decl.is_struct_or_class()) {
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for (auto& member : ((Cpp::StructOrClassDeclaration&)decl).m_members) {
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VERIFY(node.is_identifier());
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if (member.m_name == ((const Identifier&)node).m_name)
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return member;
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}
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}
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}
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return {};
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}
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void ParserAutoComplete::update_declared_symbols(const DocumentData& document)
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{
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Vector<GUI::AutocompleteProvider::Declaration> declarations;
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for (auto& decl : document.parser.root_node()->declarations()) {
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declarations.append({ decl.name(), { document.filename, decl.start().line, decl.start().column }, type_of_declaration(decl) });
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}
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set_declarations_of_document(document.filename, move(declarations));
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}
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GUI::AutocompleteProvider::DeclarationType ParserAutoComplete::type_of_declaration(const Declaration& decl)
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{
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if (decl.is_struct())
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return GUI::AutocompleteProvider::DeclarationType::Struct;
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if (decl.is_class())
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return GUI::AutocompleteProvider::DeclarationType::Class;
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if (decl.is_function())
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return GUI::AutocompleteProvider::DeclarationType::Function;
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if (decl.is_variable_declaration())
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return GUI::AutocompleteProvider::DeclarationType::Variable;
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return GUI::AutocompleteProvider::DeclarationType::Variable;
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}
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}
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