PULL_UP = 1
PULL_DOWN = 2
+ # pylint: disable=no-self-use
+
def return_toggle(self):
"""Returns the pin's expected value, toggling between True and False"""
toggle_state = not self.previous_value
4: self.return_true, # Dx_OUTPUT
7: self.return_random_int, # Ax_INPUT_RAND_INT
8: self.return_fixed_int_pi, # Ax_INPUT_FIXED_INT_PI
- 9: self.return_sine_wave, # Ax_OUTPUT_WAVE_SINE
- 10: self.return_sawtooth_wave, # Ax_OUTPUT_WAVE_SAW
+ 9: self.return_sine_wave, # Ax_INPUT_WAVE_SINE
+ 10: self.return_sawtooth_wave, # Ax_INPUT_WAVE_SAW
11: self.return_toggle, # Dx_INPUT_TOGGLE
}
self.current_value = self.pin_behavior.get(self.id)()
# is pin a pull up and pin is LOW?
- if self._pull == Pin.PULL_UP and self.current_value == False:
+ if self._pull == Pin.PULL_UP and self.current_value is False:
self.current_value = False
# is pin a pull down and pin is HIGH?
- if self._pull == Pin.PULL_DOWN and self.current_value == True:
+ if self._pull == Pin.PULL_DOWN and self.current_value is True:
self.current_value = False
return self.current_value
# Analog Out
if self._mode == Pin.DAC:
if val is None:
- # write only
- raise AttributeError("unreadable attribute")
+ self.previous_value = self.current_value
+ return self.current_value
self.write(val)
return None
raise RuntimeError(
A1 = Pin(8)
A2 = Pin(9)
A3 = Pin(10)
+A4 = Pin(12)
+# Special digital pins for pixels
D7 = Pin(11)
+D8 = Pin(13)
+D9 = Pin(14)
# I2C pins
SDA = Pin()
MISO = Pin()
CS = Pin()
+spiPorts = ((0, SCK, MOSI, MISO),)
+
+
# UART pins
UART_TX = Pin()
UART_RX = Pin()