module ArduinoFirmata class Arduino include EventEmitter attr_reader :version, :status, :nonblock_io, :eventmachine def initialize(serial_name, params) @nonblock_io = !!params[:nonblock_io] @eventmachine = !!params[:eventmachine] @read_byte_size = eventmachine ? 256 : 9600 @process_input_interval = eventmachine ? 0.0001 : 0.01 @status = Status::CLOSE @wait_for_data = 0 @execute_multi_byte_command = 0 @multi_byte_channel = 0 @stored_input_data = [] @parsing_sysex = false @sysex_bytes_read = 0 @digital_output_data = Array.new(16, 0) @digital_input_data = Array.new(16, 0) @analog_input_data = Array.new(16, 0) @version = nil @serial = SerialPort.new(serial_name, params[:bps], params[:bit], params[:stopbit], params[:parity]) @serial.read_timeout = 3 sleep 3 @status = Status::OPEN trap 'SIGHUP' do close exit end trap 'SIGINT' do close exit end trap 'SIGKILL' do close exit end trap 'SIGTERM' do close exit end @thread_status = false run do @thread_status = true while status == Status::OPEN do process_input sleep @process_input_interval end @thread_status = false end (0...6).each do |i| write(REPORT_ANALOG | i) write 1 end (0...2).each do |i| write(REPORT_DIGITAL | i) write 1 end write REPORT_VERSION loop do break if @version sleep 0.3 end sleep 0.5 end def run(&block) return unless block_given? if eventmachine EM::defer &block else Thread.new &block end end def close return if status == Status::CLOSE @status = Status::CLOSE @serial.close loop do if @serial.closed? and @thread_status != true break end sleep 0.01 end end def reset write SYSTEM_RESET end def sysex(command, data=[]) ## http://firmata.org/wiki/V2.1ProtocolDetails#Sysex_Message_Format raise ArgumentError, 'command must be Number' unless command.kind_of? Fixnum raise ArgumentError, 'data must be 7bit-Number or Those Array' unless [Fixnum, Array].include? data.class write_data = data.kind_of?(Array) ? data : [data] write START_SYSEX write command write_data.each do |d| write (d & 0b1111111) # 7bit end write END_SYSEX end def digital_read(pin) (@digital_input_data[pin >> 3] >> (pin & 0x07)) & 0x01 > 0 end def analog_read(pin) @analog_input_data[pin] end def pin_mode(pin, mode) write SET_PIN_MODE write pin mode = case mode when true OUTPUT when false INPUT else mode end if write(mode) == 1 return mode end end def digital_write(pin, value) pin_mode pin, OUTPUT port_num = (pin >> 3) & 0x0F if value == 0 or value == false @digital_output_data[port_num] &= ~(1 << (pin & 0x07)) else @digital_output_data[port_num] |= (1 << (pin & 0x07)) end write(DIGITAL_MESSAGE | port_num) write(@digital_output_data[port_num] & 0x7F) if write(@digital_output_data[port_num] >> 7) == 1 return value end end def analog_write(pin, value) pin_mode pin, PWM write(ANALOG_MESSAGE | (pin & 0x0F)) write(value & 0x7F) if write(value >> 7) == 1 return value end end def servo_write(pin, angle) pin_mode pin, SERVO write(ANALOG_MESSAGE | (pin & 0x0F)) write(angle & 0x7F) if write(angle >> 7) == 1 return angle end end private def write(cmd) return if status == Status::CLOSE if nonblock_io @serial.write_nonblock cmd.chr else @serial.write cmd.chr end end def read return if status == Status::CLOSE if nonblock_io @serial.read_nonblock @read_byte_size rescue EOFError else @serial.read @read_byte_size rescue EOFError end end def process_input StringIO.new(String read).each_byte.each do |input_data| command = nil if @parsing_sysex if input_data == END_SYSEX @parsing_sysex = false sysex_command = @stored_input_data[0] sysex_data = @stored_input_data[1...@sysex_bytes_read] emit :sysex, sysex_command, sysex_data else @stored_input_data[@sysex_bytes_read] = input_data @sysex_bytes_read += 1 end elsif @wait_for_data > 0 and input_data < 128 @wait_for_data -= 1 @stored_input_data[@wait_for_data] = input_data if @execute_multi_byte_command != 0 and @wait_for_data == 0 case @execute_multi_byte_command when DIGITAL_MESSAGE digital_inputs = @digital_input_data.clone @digital_input_data[@multi_byte_channel] = (@stored_input_data[0] << 7) + @stored_input_data[1] 0.upto(15).each do |i| current = digital_read i if current != ((digital_inputs[i >> 3] >> (i & 0x07)) & 0x01 > 0) emit :digital_read, i, current end end when ANALOG_MESSAGE analog_value = (@stored_input_data[0] << 7) + @stored_input_data[1] unless @analog_input_data[@multi_byte_channel] == analog_value emit :analog_read, @multi_byte_channel, analog_value end @analog_input_data[@multi_byte_channel] = analog_value when REPORT_VERSION @version = "#{@stored_input_data[1]}.#{@stored_input_data[0]}" end end else if input_data < 0xF0 command = input_data & 0xF0 @multi_byte_channel = input_data & 0x0F else command = input_data end if command == START_SYSEX @parsing_sysex = true @sysex_bytes_read = 0 elsif [DIGITAL_MESSAGE, ANALOG_MESSAGE, REPORT_VERSION].include? command @wait_for_data = 2 @execute_multi_byte_command = command end end end end end end