#include "data/SqliteStorage.h" #include "data/graph/Node.h" #include "data/location/TokenLocation.h" #include "data/DefinitionType.h" #include "data/parser/ParseLocation.h" #include "data/SqliteIndex.h" #include "utility/logging/logging.h" #include "utility/text/TextAccess.h" #include "utility/utility.h" #include "utility/utilityString.h" #include "utility/Version.h" const size_t SqliteStorage::STORAGE_VERSION = 2; SqliteStorage::SqliteStorage(const FilePath& dbFilePath) : m_dbFilePath(dbFilePath) { m_database.open(m_dbFilePath.str().c_str()); m_database.execDML("PRAGMA foreign_keys=ON;"); } SqliteStorage::~SqliteStorage() { try { m_database.close(); } catch(CppSQLite3Exception e) { LOG_ERROR(e.errorMessage()); } } void SqliteStorage::setup() { m_database.execDML("PRAGMA foreign_keys=ON;"); setupTables(); } void SqliteStorage::clear() { m_database.execDML("PRAGMA foreign_keys=OFF;"); clearTables(); setup(); } void SqliteStorage::beginTransaction() { m_database.execDML("BEGIN TRANSACTION;"); } void SqliteStorage::commitTransaction() { m_database.execDML("COMMIT TRANSACTION;"); } void SqliteStorage::rollbackTransaction() { m_database.execDML("ROLLBACK TRANSACTION;"); } FilePath SqliteStorage::getDbFilePath() const { return m_dbFilePath; } bool SqliteStorage::isEmpty() const { size_t storageVersion = getStorageVersion(); if (storageVersion > 0) { return false; } Version applicationVersion = getApplicationVersion(); return applicationVersion.isEmpty(); } bool SqliteStorage::isIncompatible() const { size_t storageVersion = getStorageVersion(); if (storageVersion == 0 || storageVersion != STORAGE_VERSION) { return true; } return false; } void SqliteStorage::setVersion() { setStorageVersion(); setApplicationVersion(); } Id SqliteStorage::addEdge(int type, Id sourceNodeId, Id targetNodeId) { m_database.execDML( "INSERT INTO element(id) VALUES(NULL);" ); Id id = m_database.lastRowId(); m_database.execDML(( "INSERT INTO edge(id, type, source_node_id, target_node_id) VALUES(" + std::to_string(id) + ", " + std::to_string(type) + ", " + std::to_string(sourceNodeId) + ", " + std::to_string(targetNodeId) + ");" ).c_str()); return id; } Id SqliteStorage::addNode(int type, const std::string& serializedName, int definitionType) { m_database.execDML( "INSERT INTO element(id) VALUES(NULL);" ); Id id = m_database.lastRowId(); CppSQLite3Statement stmt = m_database.compileStatement(( "INSERT INTO node(id, type, serialized_name, definition_type) VALUES(" + std::to_string(id) + ", " + std::to_string(type) + ", ?, " + std::to_string(definitionType) + ");" ).c_str()); stmt.bind(1, serializedName.c_str()); stmt.execDML(); return id; } Id SqliteStorage::addFile(const std::string& serializedName, const std::string& filePath, const std::string& modificationTime) { Id id = addNode(Node::NODE_FILE, serializedName, definitionTypeToInt(DEFINITION_EXPLICIT)); std::shared_ptr content = TextAccess::createFromFile(filePath); unsigned int loc = content->getLineCount(); CppSQLite3Statement stmt = m_database.compileStatement(( "INSERT INTO file(id, path, modification_time, content, loc) VALUES(" + std::to_string(id) + ", '" + filePath + "', '" + modificationTime + "', ?, " + std::to_string(loc) + ");" ).c_str()); stmt.bind(1, content->getText().c_str()); stmt.execDML(); return id; } Id SqliteStorage::addLocalSymbol(const std::string& name) { m_database.execDML( "INSERT INTO element(id) VALUES(NULL);" ); Id id = m_database.lastRowId(); CppSQLite3Statement stmt = m_database.compileStatement(( "INSERT INTO local_symbol(id, name) VALUES(" + std::to_string(id) + ", ?);" ).c_str()); stmt.bind(1, name.c_str()); stmt.execDML(); return id; } Id SqliteStorage::addSourceLocation( Id elementId, Id fileNodeId, uint startLine, uint startCol, uint endLine, uint endCol, int type) { m_database.execDML(( "INSERT INTO source_location(id, element_id, file_node_id, start_line, start_column, end_line, end_column, type) " "VALUES(NULL, " + std::to_string(elementId) + ", " + std::to_string(fileNodeId) + ", " + std::to_string(startLine) + ", " + std::to_string(startCol) + ", " + std::to_string(endLine) + ", " + std::to_string(endCol) + ", " + std::to_string(type) + ");" ).c_str()); return m_database.lastRowId(); } Id SqliteStorage::addComponentAccess(Id nodeId, int type) { m_database.execDML(( "INSERT INTO component_access(id, node_id, type) " "VALUES (NULL, " + std::to_string(nodeId) + ", " + std::to_string(type) + ");" ).c_str()); return m_database.lastRowId(); } Id SqliteStorage::addCommentLocation(Id fileNodeId, uint startLine, uint startCol, uint endLine, uint endCol) { m_database.execDML(( "INSERT INTO comment_location(id, file_node_id, start_line, start_column, end_line, end_column) " "VALUES(NULL, " + std::to_string(fileNodeId) + ", " + std::to_string(startLine) + ", " + std::to_string(startCol) + ", " + std::to_string(endLine) + ", " + std::to_string(endCol) + ");" ).c_str()); return m_database.lastRowId(); } Id SqliteStorage::addError(const std::string& message, bool fatal, bool indexed, const std::string& filePath, uint lineNumber, uint columnNumber) { std::string sanitizedMessage = utility::replace((fatal ? "Fatal: " : "Error: ") + message, "'", "''"); // check for duplicate CppSQLite3Statement stmt = m_database.compileStatement(( //CppSQLite3Query q = m_database.execQuery(( "SELECT * FROM error WHERE " "message == ? AND " "fatal == " + std::to_string(fatal) + " AND " "file_path == '" + filePath + "' AND " "line_number == " + std::to_string(lineNumber) + " AND " "column_number == " + std::to_string(columnNumber) + ";" ).c_str()); stmt.bind(1, sanitizedMessage.c_str()); CppSQLite3Query q = stmt.execQuery(); if (!q.eof()) { return q.getIntField(0, -1); } stmt.finalize(); stmt = m_database.compileStatement(( "INSERT INTO error(message, fatal, indexed, file_path, line_number, column_number) " "VALUES (?, " + std::to_string(fatal) + ", " + std::to_string(indexed) + ", '" + filePath + "', " + std::to_string(lineNumber) + ", " + std::to_string(columnNumber) + ");" ).c_str()); stmt.bind(1, sanitizedMessage.c_str()); stmt.execDML(); return m_database.lastRowId(); } void SqliteStorage::removeElement(Id id) { std::vector ids; ids.push_back(id); removeElements(ids); } void SqliteStorage::removeElements(const std::vector& ids) { m_database.execDML(( "DELETE FROM element WHERE id IN (" + utility::join(utility::toStrings(ids), ',') + ");" ).c_str()); } void SqliteStorage::removeElementsWithLocationInFiles(const std::vector& fileIds) { CppSQLite3Query q = m_database.execQuery(( "SELECT id, element_id FROM source_location WHERE file_node_id IN (" + utility::join(utility::toStrings(fileIds), ',') + ");" ).c_str()); std::vector sourceLocationIds; std::vector elementIds; while (!q.eof()) { sourceLocationIds.push_back(q.getIntField(0, 0)); elementIds.push_back(q.getIntField(1, 0)); q.nextRow(); } m_database.execDML(( "DELETE FROM source_location WHERE id IN (" + utility::join(utility::toStrings(sourceLocationIds), ',') + ");" ).c_str()); m_database.execDML(( "DELETE FROM element WHERE " "element.id IN (" + utility::join(utility::toStrings(elementIds), ',') + ") " // skip all elements that dont have a matching id. "AND element.id NOT IN (" "SELECT source_location.element_id FROM source_location WHERE source_location.element_id == element.id LIMIT 1" ");" // delete all elements that dont have a source location. This query is executed for each element that passed the first test. ).c_str()); } void SqliteStorage::removeErrorsInFiles(const std::vector& filePaths) { m_database.execDML(( "DELETE FROM error WHERE file_path IN ('" + utility::join(utility::toStrings(filePaths), "', '") + "');" ).c_str()); } bool SqliteStorage::isEdge(Id elementId) const { int count = m_database.execScalar(("SELECT count(*) FROM edge WHERE id = " + std::to_string(elementId) + ";").c_str()); return (count > 0); } bool SqliteStorage::isNode(Id elementId) const { int count = m_database.execScalar(("SELECT count(*) FROM node WHERE id = " + std::to_string(elementId) + ";").c_str()); return (count > 0); } bool SqliteStorage::isFile(Id elementId) const { int count = m_database.execScalar(("SELECT count(*) FROM file WHERE id = " + std::to_string(elementId) + ";").c_str()); return (count > 0); } StorageEdge SqliteStorage::getEdgeById(Id edgeId) const { return getFirst("WHERE id == " + std::to_string(edgeId)); } StorageEdge SqliteStorage::getEdgeBySourceTargetType(Id sourceId, Id targetId, int type) const { return getFirst("WHERE " "source_node_id == " + std::to_string(sourceId) + " AND " "target_node_id == " + std::to_string(targetId) + " AND " "type == " + std::to_string(type) ); } std::vector SqliteStorage::getEdgesByIds(const std::vector& edgeIds) const { return getAll("WHERE id IN (" + utility::join(utility::toStrings(edgeIds), ',') + ")"); } std::vector SqliteStorage::getEdgesBySourceId(Id sourceId) const { return getAll("WHERE source_node_id == " + std::to_string(sourceId)); } std::vector SqliteStorage::getEdgesBySourceIds(const std::vector& sourceIds) const { return getAll("WHERE source_node_id IN (" + utility::join(utility::toStrings(sourceIds), ',') + ")"); } std::vector SqliteStorage::getEdgesByTargetId(Id targetId) const { return getAll("WHERE target_node_id == " + std::to_string(targetId)); } std::vector SqliteStorage::getEdgesByTargetIds(const std::vector& targetIds) const { return getAll("WHERE target_node_id IN (" + utility::join(utility::toStrings(targetIds), ',') + ")"); } std::vector SqliteStorage::getEdgesBySourceOrTargetId(Id id) const { return getAll("WHERE source_node_id == " + std::to_string(id) + " OR target_node_id == " + std::to_string(id)); } std::vector SqliteStorage::getEdgesByType(int type) const { return getAll("WHERE type == " + std::to_string(type)); } std::vector SqliteStorage::getEdgesBySourceType(Id sourceId, int type) const { return getAll("WHERE source_node_id == " + std::to_string(sourceId) + " AND type == " + std::to_string(type)); } std::vector SqliteStorage::getEdgesByTargetType(Id targetId, int type) const { return getAll("WHERE target_node_id == " + std::to_string(targetId) + " AND type == " + std::to_string(type)); } void SqliteStorage::optimizeMemory() const { try { m_database.execDML("VACUUM;"); } catch(CppSQLite3Exception e) { LOG_ERROR(e.errorMessage()); } } StorageNode SqliteStorage::getNodeById(Id id) const { if (id != 0) { return getFirst("WHERE id == " + std::to_string(id)); } return StorageNode(); } StorageNode SqliteStorage::getNodeBySerializedName(const std::string& serializedName) const { CppSQLite3Statement stmt = m_database.compileStatement( "SELECT id, type, serialized_name, definition_type FROM node WHERE serialized_name == ? LIMIT 1;" ); stmt.bind(1, serializedName.c_str()); CppSQLite3Query q = stmt.execQuery(); if (!q.eof()) { const Id id = q.getIntField(0, 0); const int type = q.getIntField(1, -1); const std::string serializedName = q.getStringField(2, ""); const int definitionType = q.getIntField(3, 0); if (id != 0 && type != -1) { return StorageNode(id, type, serializedName, definitionType); } } return StorageNode(); } std::vector SqliteStorage::getNodesByIds(const std::vector& nodeIds) const { return getAll("WHERE id IN (" + utility::join(utility::toStrings(nodeIds), ',') + ")"); } StorageLocalSymbol SqliteStorage::getLocalSymbolByName(const std::string& name) const { return getFirst("WHERE name == '" + name + "'"); } StorageFile SqliteStorage::getFileById(const Id id) const { return getFirst("WHERE node.id == " + std::to_string(id)); } StorageFile SqliteStorage::getFileByPath(const FilePath& filePath) const { return getFirst("WHERE file.path == '" + filePath.str() + "'"); } std::vector SqliteStorage::getFilesByPaths(const std::vector& filePaths) const { return getAll("WHERE file.path IN ('" + utility::join(utility::toStrings(filePaths), "', '") + "')"); } std::shared_ptr SqliteStorage::getFileContentById(Id fileId) const { CppSQLite3Query q = m_database.execQuery(( "SELECT content FROM file WHERE id = '" + std::to_string(fileId) + "';" ).c_str()); if (!q.eof()) { return TextAccess::createFromString(q.getStringField(0, "")); } return TextAccess::createFromString(""); } std::shared_ptr SqliteStorage::getFileContentByPath(const std::string& filePath) const { CppSQLite3Query q = m_database.execQuery(( "SELECT content FROM file WHERE path = '" + filePath + "';" ).c_str()); if (!q.eof()) { return TextAccess::createFromString(q.getStringField(0, "")); } return TextAccess::createFromFile(filePath); } void SqliteStorage::setNodeType(int type, Id nodeId) { m_database.execDML(( "UPDATE node SET type = " + std::to_string(type) + " WHERE id == " + std::to_string(nodeId) + ";" ).c_str()); } void SqliteStorage::setNodeDefinitionType(int definitionType, Id nodeId) { m_database.execDML(( "UPDATE node SET definition_type = " + std::to_string(definitionType) + " WHERE id == " + std::to_string(nodeId) + ";" ).c_str()); } StorageSourceLocation SqliteStorage::getSourceLocationById(const Id id) const { return getFirst( "WHERE id == " + std::to_string(id) + ";" ); } std::shared_ptr SqliteStorage::getTokenLocationsForFile(const FilePath& filePath) const { std::shared_ptr ret = std::make_shared(filePath); const Id fileNodeId = getFileByPath(filePath.str()).id; if (fileNodeId == 0) // early out { return ret; } for (StorageSourceLocation& location: getAll("WHERE file_node_id == " + std::to_string(fileNodeId))) { TokenLocation* loc = ret->addTokenLocation( location.id, location.elementId, location.startLine, location.startCol, location.endLine, location.endCol ); loc->setType(intToLocationType(location.type)); } ret->isWholeCopy = true; return ret; } std::vector SqliteStorage::getTokenLocationsForElementId(const Id elementId) const { std::vector elementIds {elementId}; return getTokenLocationsForElementIds(elementIds); } std::vector SqliteStorage::getTokenLocationsForElementIds(const std::vector elementIds) const { return getAll("WHERE element_id IN (" + utility::join(utility::toStrings(elementIds), ',') + ")"); } Id SqliteStorage::getElementIdByLocationId(Id locationId) const { CppSQLite3Query q = m_database.execQuery(( "SELECT element_id FROM source_location WHERE id == " + std::to_string(locationId) + " LIMIT 1;" ).c_str()); if (!q.eof()) { return q.getIntField(0, 0); } return 0; } StorageComponentAccess SqliteStorage::getComponentAccessByNodeId(Id nodeId) const { return getFirst("WHERE node_id == " + std::to_string(nodeId)); } std::vector SqliteStorage::getComponentAccessesByNodeIds(const std::vector& nodeIds) const { return getAll("WHERE node_id IN (" + utility::join(utility::toStrings(nodeIds), ',') + ")"); } std::vector SqliteStorage::getCommentLocationsInFile(const FilePath& filePath) const { Id fileNodeId = getFileByPath(filePath.str()).id; return getAll("WHERE file_node_id == " + std::to_string(fileNodeId)); } std::vector SqliteStorage::getAllFiles() const { return getAll(""); } std::vector SqliteStorage::getAllNodes() const { return getAll(""); } std::vector SqliteStorage::getAllEdges() const { return getAll(""); } std::vector SqliteStorage::getAllLocalSymbols() const { return getAll(""); } std::vector SqliteStorage::getAllSourceLocations() const { return getAll(""); } std::vector SqliteStorage::getAllComponentAccesses() const { return getAll(""); } std::vector SqliteStorage::getAllCommentLocations() const { return getAll(""); } std::vector SqliteStorage::getAllErrors() const { return getAll(""); } int SqliteStorage::getNodeCount() const { return m_database.execScalar("SELECT COUNT(*) FROM node;"); } int SqliteStorage::getEdgeCount() const { return m_database.execScalar("SELECT COUNT(*) FROM edge;"); } int SqliteStorage::getFileCount() const { return m_database.execScalar("SELECT COUNT(*) FROM file;"); } int SqliteStorage::getFileLOCCount() const { return m_database.execScalar("SELECT SUM(loc) FROM file;"); } int SqliteStorage::getSourceLocationCount() const { return m_database.execScalar("SELECT COUNT(*) FROM source_location;"); } void SqliteStorage::clearTables() { m_database.execDML("DROP TABLE IF EXISTS main.error;"); m_database.execDML("DROP TABLE IF EXISTS main.comment_location;"); m_database.execDML("DROP TABLE IF EXISTS main.component_access;"); m_database.execDML("DROP TABLE IF EXISTS main.source_location;"); m_database.execDML("DROP TABLE IF EXISTS main.local_symbol;"); m_database.execDML("DROP TABLE IF EXISTS main.file;"); m_database.execDML("DROP TABLE IF EXISTS main.node;"); m_database.execDML("DROP TABLE IF EXISTS main.edge;"); m_database.execDML("DROP TABLE IF EXISTS main.element;"); m_database.execDML("DROP TABLE IF EXISTS main.meta;"); } void SqliteStorage::setupTables() { try { m_database.execDML( "CREATE TABLE IF NOT EXISTS meta(" "id INTEGER, " "key TEXT, " "value TEXT, " "PRIMARY KEY(id));" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS element(" "id INTEGER, " "PRIMARY KEY(id));" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS edge(" "id INTEGER NOT NULL, " "type INTEGER NOT NULL, " "source_node_id INTEGER NOT NULL, " "target_node_id INTEGER NOT NULL, " "PRIMARY KEY(id), " "FOREIGN KEY(id) REFERENCES element(id) ON DELETE CASCADE, " "FOREIGN KEY(source_node_id) REFERENCES node(id) ON DELETE CASCADE, " "FOREIGN KEY(target_node_id) REFERENCES node(id) ON DELETE CASCADE);" ); // TODO: move to createIndexesForAnalysis() or prepareForAnalysis m_database.execDML( // used for checking for duplicates during code analysis "CREATE INDEX IF NOT EXISTS edge_multipart_index ON edge(type, source_node_id, target_node_id);" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS node(" "id INTEGER NOT NULL, " "type INTEGER NOT NULL, " "serialized_name TEXT, " "definition_type INTEGER NOT NULL, " "PRIMARY KEY(id), " "FOREIGN KEY(id) REFERENCES element(id) ON DELETE CASCADE);" ); m_database.execDML( "CREATE INDEX IF NOT EXISTS node_serialized_name_index ON node(serialized_name);" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS file(" "id INTEGER NOT NULL, " "path TEXT, " "modification_time TEXT, " "content TEXT, " "loc INTEGER, " "PRIMARY KEY(id), " "FOREIGN KEY(id) REFERENCES node(id) ON DELETE CASCADE);" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS local_symbol(" "id INTEGER NOT NULL, " "name TEXT, " "PRIMARY KEY(id), " "FOREIGN KEY(id) REFERENCES element(id) ON DELETE CASCADE);" ); m_database.execDML( "CREATE INDEX IF NOT EXISTS local_symbol_name_index ON local_symbol(name);" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS source_location(" "id INTEGER NOT NULL, " "element_id INTEGER, " "file_node_id INTEGER, " "start_line INTEGER, " "start_column INTEGER, " "end_line INTEGER, " "end_column INTEGER, " "type INTEGER, " "PRIMARY KEY(id), " "FOREIGN KEY(element_id) REFERENCES element(id) ON DELETE CASCADE, " "FOREIGN KEY(file_node_id) REFERENCES node(id) ON DELETE CASCADE);" ); SqliteIndex("source_location_element_id_index", "source_location(element_id)").createOnDatabase(m_database); SqliteIndex("source_location_file_node_id_index", "source_location(file_node_id)").createOnDatabase(m_database); m_database.execDML( "CREATE TABLE IF NOT EXISTS component_access(" "id INTEGER NOT NULL, " "node_id INTEGER, " "type INTEGER NOT NULL, " "PRIMARY KEY(id), " "FOREIGN KEY(node_id) REFERENCES node(id) ON DELETE CASCADE);" ); SqliteIndex("component_access_node_id_index", "component_access(node_id)").createOnDatabase(m_database); m_database.execDML( "CREATE TABLE IF NOT EXISTS comment_location(" "id INTEGER NOT NULL, " "file_node_id INTEGER, " "start_line INTEGER, " "start_column INTEGER, " "end_line INTEGER, " "end_column INTEGER, " "PRIMARY KEY(id), " "FOREIGN KEY(file_node_id) REFERENCES node(id) ON DELETE CASCADE);" ); m_database.execDML( "CREATE TABLE IF NOT EXISTS error(" "id INTEGER NOT NULL, " "message TEXT, " "fatal INTEGER NOT NULL, " "indexed INTEGER NOT NULL, " "file_path TEXT, " "line_number INTEGER, " "column_number INTEGER, " "PRIMARY KEY(id));" ); } catch (CppSQLite3Exception& e) { LOG_ERROR(std::to_string(e.errorCode()) + ": " + e.errorMessage()); } } bool SqliteStorage::hasTable(const std::string& tableName) const { CppSQLite3Query q = m_database.execQuery(( "SELECT name FROM sqlite_master WHERE type='table' AND name='" + tableName + "';" ).c_str()); if (!q.eof()) { return q.getStringField(0, "") == tableName; } return false; } std::string SqliteStorage::getMetaValue(const std::string& key) const { if (hasTable("meta")) { CppSQLite3Query q = m_database.execQuery(("SELECT value FROM meta WHERE key = '" + key + "';").c_str()); if (!q.eof()) { return q.getStringField(0, ""); } } return ""; } void SqliteStorage::insertOrUpdateMetaValue(const std::string& key, const std::string& value) { m_database.execDML(( "INSERT OR REPLACE INTO meta(id, key, value) " "VALUES( (SELECT id FROM meta WHERE key = '" + key + "'), '" + key + "', '" + value + "');" ).c_str()); } size_t SqliteStorage::getStorageVersion() const { std::string storageVersionStr = getMetaValue("storage_version"); if (storageVersionStr.size()) { return std::stoi(storageVersionStr); } return 0; } void SqliteStorage::setStorageVersion() { insertOrUpdateMetaValue("storage_version", std::to_string(STORAGE_VERSION)); } Version SqliteStorage::getApplicationVersion() const { std::string versionStr = getMetaValue("version"); if (versionStr.size()) { return Version::fromString(versionStr); } return Version(); } void SqliteStorage::setApplicationVersion() { insertOrUpdateMetaValue("version", Version::getApplicationVersion().toString()); } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT file.id, node.serialized_name, file.path, file.modification_time FROM file " "INNER JOIN node ON file.id = node.id " + query + ";" ).c_str()); std::vector files; while (!q.eof()) { const Id id = q.getIntField(0, 0); const std::string serializedName = q.getStringField(1, ""); const std::string filePath = q.getStringField(2, ""); const std::string modificationTime = q.getStringField(3, ""); if (id != 0) { files.push_back(StorageFile(id, serializedName, filePath, modificationTime)); } q.nextRow(); } return files; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT id, type, source_node_id, target_node_id FROM edge " + query + ";" ).c_str()); std::vector edges; while (!q.eof()) { const Id id = q.getIntField(0, 0); const int type = q.getIntField(1, -1); const Id sourceId = q.getIntField(2, 0); const Id targetId = q.getIntField(3, 0); if (id != 0 && type != -1) { edges.push_back(StorageEdge(id, type, sourceId, targetId)); } q.nextRow(); } return edges; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT id, type, serialized_name, definition_type FROM node " + query + ";" ).c_str()); std::vector nodes; while (!q.eof()) { const Id id = q.getIntField(0, 0); const int type = q.getIntField(1, -1); const std::string serializedName = q.getStringField(2, ""); const int definitionType = q.getIntField(3, 0); if (id != 0 && type != -1) { nodes.push_back(StorageNode(id, type, serializedName, definitionType)); } q.nextRow(); } return nodes; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT id, name FROM local_symbol " + query + ";" ).c_str()); std::vector localSymbols; while (!q.eof()) { const Id id = q.getIntField(0, 0); const std::string name = q.getStringField(1, ""); if (id != 0) { localSymbols.push_back(StorageLocalSymbol(id, name)); } q.nextRow(); } return localSymbols; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT id, element_id, file_node_id, start_line, start_column, end_line, end_column, type FROM source_location " + query + ";" ).c_str()); std::vector sourceLocations; while (!q.eof()) { const Id id = q.getIntField(0, 0); const Id elementId = q.getIntField(1, 0); const Id fileNodeId = q.getIntField(2, 0); const int startLineNumber = q.getIntField(3, -1); const int startColNumber = q.getIntField(4, -1); const int endLineNumber = q.getIntField(5, -1); const int endColNumber = q.getIntField(6, -1); const int type = q.getIntField(7, -1); if (id != 0 && elementId != 0 && fileNodeId != 0 && startLineNumber != -1 && startColNumber != -1 && endLineNumber != -1 && endColNumber != -1 && type != -1) { sourceLocations.push_back(StorageSourceLocation(id, elementId, fileNodeId, startLineNumber, startColNumber, endLineNumber, endColNumber, type)); } q.nextRow(); } return sourceLocations; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT id, node_id, type FROM component_access " + query + ";" ).c_str()); std::vector componentAccesses; while (!q.eof()) { const Id id = q.getIntField(0, 0); const Id nodeId = q.getIntField(1, 0); const int type = q.getIntField(2, -1); if (id != 0 && nodeId != 0 && type != -1) { componentAccesses.push_back(StorageComponentAccess(nodeId, type)); } q.nextRow(); } return componentAccesses; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT id, file_node_id, start_line, start_column, end_line, end_column FROM comment_location " + query + ";" ).c_str()); std::vector commentLocations; while (!q.eof()) { const Id id = q.getIntField(0, 0); const Id fileNodeId = q.getIntField(1, 0); const int startLineNumber = q.getIntField(2, -1); const int startColNumber = q.getIntField(3, -1); const int endLineNumber = q.getIntField(4, -1); const int endColNumber = q.getIntField(5, -1); if (id != 0 && fileNodeId != 0 && startLineNumber != -1 && startColNumber != -1 && endLineNumber != -1 && endColNumber != -1) { commentLocations.push_back(StorageCommentLocation( id, fileNodeId, startLineNumber, startColNumber, endLineNumber, endColNumber )); } q.nextRow(); } return commentLocations; } template <> std::vector SqliteStorage::getAll(const std::string& query) const { CppSQLite3Query q = m_database.execQuery(( "SELECT message, fatal, indexed, file_path, line_number, column_number FROM error " + query + ";" ).c_str()); std::vector errors; while (!q.eof()) { const std::string message = q.getStringField(0, ""); const bool fatal = q.getIntField(1, 0); const bool indexed = q.getIntField(2, 0); const std::string filePath = q.getStringField(3, ""); const int lineNumber = q.getIntField(4, -1); const int columnNumber = q.getIntField(5, -1); if (lineNumber != -1 && columnNumber != -1) { errors.push_back(StorageError(message, fatal, indexed, filePath, lineNumber, columnNumber)); } q.nextRow(); } return errors; }