pin_sine_wave = analogio.AnalogIn(board.Ax_INPUT_WAVE_SINE)
# Run through the sine wave once
- for i in range(len(sine_wave)):
- assert pin_sine_wave.value == sine_wave[i]
+ for i, expected_value in enumerate(sine_wave):
+ assert pin_sine_wave.value == expected_value
+
# Run through the sine wave again to ensure it loops back correctly
- for i in range(len(sine_wave)):
- assert pin_sine_wave.value == sine_wave[i]
+ for i, expected_value in enumerate(sine_wave):
+ assert pin_sine_wave.value == expected_value
pin_sine_wave.deinit()
def test_Ax_INPUT_WAVE_SAW():
"""Test sawtooth wave from pin Ax_INPUT_WAVE_SAW"""
assert board.board_id == "GENERIC_AGNOSTIC_BOARD"
- pin_sine_wave = analogio.AnalogIn(board.Ax_INPUT_WAVE_SAW)
+ pin_saw_wave = analogio.AnalogIn(board.Ax_INPUT_WAVE_SAW)
# Run through the sine wave once
for i in range(len(sawtooth_wave)):
- assert pin_sine_wave.value == sawtooth_wave[i]
+ assert pin_saw_wave.value == sawtooth_wave[i]
# Run through the sine wave again to ensure it loops back correctly
for i in range(len(sawtooth_wave)):
- assert pin_sine_wave.value == sawtooth_wave[i]
+ assert pin_saw_wave.value == sawtooth_wave[i]
- pin_sine_wave.deinit()
+
+ pin_saw_wave.deinit()