package gorm import ( "fmt" "reflect" "regexp" "strconv" "strings" "time" ) // DefaultForeignKeyNamer contains the default foreign key name generator method type DefaultForeignKeyNamer struct { } type commonDialect struct { db SQLCommon DefaultForeignKeyNamer } func init() { RegisterDialect("common", &commonDialect{}) } func (commonDialect) GetName() string { return "common" } func (s *commonDialect) SetDB(db SQLCommon) { s.db = db } func (commonDialect) BindVar(i int) string { return "$$$" // ? } func (commonDialect) Quote(key string) string { return fmt.Sprintf(`"%s"`, key) } func (s *commonDialect) DataTypeOf(field *StructField) string { var dataValue, sqlType, size, additionalType = ParseFieldStructForDialect(field, s) if sqlType == "" { switch dataValue.Kind() { case reflect.Bool: sqlType = "BOOLEAN" case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uintptr: if _, ok := field.TagSettings["AUTO_INCREMENT"]; ok { sqlType = "INTEGER AUTO_INCREMENT" } else { sqlType = "INTEGER" } case reflect.Int64, reflect.Uint64: if _, ok := field.TagSettings["AUTO_INCREMENT"]; ok { sqlType = "BIGINT AUTO_INCREMENT" } else { sqlType = "BIGINT" } case reflect.Float32, reflect.Float64: sqlType = "FLOAT" case reflect.String: if size > 0 && size < 65532 { sqlType = fmt.Sprintf("VARCHAR(%d)", size) } else { sqlType = "VARCHAR(65532)" } case reflect.Struct: if _, ok := dataValue.Interface().(time.Time); ok { sqlType = "TIMESTAMP" } default: if _, ok := dataValue.Interface().([]byte); ok { if size > 0 && size < 65532 { sqlType = fmt.Sprintf("BINARY(%d)", size) } else { sqlType = "BINARY(65532)" } } } } if sqlType == "" { panic(fmt.Sprintf("invalid sql type %s (%s) for commonDialect", dataValue.Type().Name(), dataValue.Kind().String())) } if strings.TrimSpace(additionalType) == "" { return sqlType } return fmt.Sprintf("%v %v", sqlType, additionalType) } func (s commonDialect) HasIndex(tableName string, indexName string) bool { var count int s.db.QueryRow("SELECT count(*) FROM INFORMATION_SCHEMA.STATISTICS WHERE table_schema = ? AND table_name = ? AND index_name = ?", s.CurrentDatabase(), tableName, indexName).Scan(&count) return count > 0 } func (s commonDialect) RemoveIndex(tableName string, indexName string) error { _, err := s.db.Exec(fmt.Sprintf("DROP INDEX %v", indexName)) return err } func (s commonDialect) HasForeignKey(tableName string, foreignKeyName string) bool { return false } func (s commonDialect) HasTable(tableName string) bool { var count int s.db.QueryRow("SELECT count(*) FROM INFORMATION_SCHEMA.TABLES WHERE table_schema = ? AND table_name = ?", s.CurrentDatabase(), tableName).Scan(&count) return count > 0 } func (s commonDialect) HasColumn(tableName string, columnName string) bool { var count int s.db.QueryRow("SELECT count(*) FROM INFORMATION_SCHEMA.COLUMNS WHERE table_schema = ? AND table_name = ? AND column_name = ?", s.CurrentDatabase(), tableName, columnName).Scan(&count) return count > 0 } func (s commonDialect) CurrentDatabase() (name string) { s.db.QueryRow("SELECT DATABASE()").Scan(&name) return } func (commonDialect) LimitAndOffsetSQL(limit, offset interface{}) (sql string) { if limit != nil { if parsedLimit, err := strconv.ParseInt(fmt.Sprint(limit), 0, 0); err == nil && parsedLimit >= 0 { sql += fmt.Sprintf(" LIMIT %d", parsedLimit) } } if offset != nil { if parsedOffset, err := strconv.ParseInt(fmt.Sprint(offset), 0, 0); err == nil && parsedOffset >= 0 { sql += fmt.Sprintf(" OFFSET %d", parsedOffset) } } return } func (commonDialect) SelectFromDummyTable() string { return "" } func (commonDialect) LastInsertIDReturningSuffix(tableName, columnName string) string { return "" } func (DefaultForeignKeyNamer) BuildForeignKeyName(tableName, field, dest string) string { keyName := fmt.Sprintf("%s_%s_%s_foreign", tableName, field, dest) keyName = regexp.MustCompile("(_*[^a-zA-Z]+_*|_+)").ReplaceAllString(keyName, "_") return keyName } // IsByteArrayOrSlice returns true of the reflected value is an array or slice func IsByteArrayOrSlice(value reflect.Value) bool { return (value.Kind() == reflect.Array || value.Kind() == reflect.Slice) && value.Type().Elem() == reflect.TypeOf(uint8(0)) }