Add monophonic Audio FX
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circuitpython-audio-fx/monophonic/T00.mp3
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circuitpython-audio-fx/monophonic/T00.mp3
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circuitpython-audio-fx/monophonic/T01RAND0.mp3
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circuitpython-audio-fx/monophonic/T01RAND0.mp3
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circuitpython-audio-fx/monophonic/T01RAND1.mp3
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circuitpython-audio-fx/monophonic/T01RAND1.mp3
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circuitpython-audio-fx/monophonic/T01RAND2.mp3
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circuitpython-audio-fx/monophonic/T01RAND2.mp3
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circuitpython-audio-fx/monophonic/T01RAND3.mp3
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circuitpython-audio-fx/monophonic/T01RAND3.mp3
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circuitpython-audio-fx/monophonic/T01RAND4.mp3
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circuitpython-audio-fx/monophonic/T01RAND4.mp3
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circuitpython-audio-fx/monophonic/T02.mp3
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circuitpython-audio-fx/monophonic/T02.mp3
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circuitpython-audio-fx/monophonic/T03.mp3
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circuitpython-audio-fx/monophonic/T03.mp3
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circuitpython-audio-fx/monophonic/T04HOLDL.mp3
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circuitpython-audio-fx/monophonic/T04HOLDL.mp3
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circuitpython-audio-fx/monophonic/T05NEXT0.mp3
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circuitpython-audio-fx/monophonic/T05NEXT0.mp3
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circuitpython-audio-fx/monophonic/T05NEXT1.mp3
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circuitpython-audio-fx/monophonic/T05NEXT1.mp3
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circuitpython-audio-fx/monophonic/T05NEXT2.mp3
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circuitpython-audio-fx/monophonic/T05NEXT2.mp3
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circuitpython-audio-fx/monophonic/T06LATCH.mp3
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circuitpython-audio-fx/monophonic/T06LATCH.mp3
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circuitpython-audio-fx/monophonic/T07.mp3
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circuitpython-audio-fx/monophonic/T07.mp3
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circuitpython-audio-fx/monophonic/T08.mp3
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circuitpython-audio-fx/monophonic/T08.mp3
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circuitpython-audio-fx/monophonic/T09.mp3
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circuitpython-audio-fx/monophonic/T09.mp3
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circuitpython-audio-fx/monophonic/T10.mp3
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circuitpython-audio-fx/monophonic/T10.mp3
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circuitpython-audio-fx/monophonic/T11HOLDL.mp3
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circuitpython-audio-fx/monophonic/T11HOLDL.mp3
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circuitpython-audio-fx/monophonic/code.py
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circuitpython-audio-fx/monophonic/code.py
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# SPDX-FileCopyrightText: Copyright 2024 Jeff Epler for Adafruit Industries
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# SPDX-License-Identifier: MIT
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# pylint: disable=no-self-use
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import os
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import io
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import random
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import board
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import digitalio
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import keypad
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import audiobusio
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import audiocore
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import audiomp3
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# Configure the pins to use -- earlier in list = higher priority
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pads = [
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board.GP0, board.GP1, board.GP2, board.GP3,
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board.GP4, board.GP5, board.GP6, board.GP7,
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board.GP8, board.GP9, board.GP10, board.GP11,
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board.GP12, board.GP13, board.GP14, board.GP15
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]
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# Configure the audio device
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audiodev = audiobusio.I2SOut(
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bit_clock=board.GP16, word_select=board.GP17, data=board.GP18
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)
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led = digitalio.DigitalInOut(board.LED)
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led.switch_to_output(False)
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# This is enough to register as an MP3 file with mp3decoder!, allows creating a decoder
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# without "opening" a "file"!
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EMPTY_MP3_BYTES = b"\xff\xe3"
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# Create the MP3 decoder object
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decoder = audiomp3.MP3Decoder(io.BytesIO(EMPTY_MP3_BYTES))
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def exists(p):
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try:
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os.stat(p)
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return True
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except OSError:
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return False
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def random_shuffle(seq):
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for i in range(len(seq)):
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j = random.randrange(0, i+1)
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if i != j: # Chance an item remains in same location
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seq[i], seq[j] = seq[j], seq[i]
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def random_cycle(seq):
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while True:
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random_shuffle(seq)
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yield from seq
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def cycle(seq):
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while True:
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yield from seq
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class TriggerBase:
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def __init__(self, prefix):
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self._filenames = list(self._gather_filenames(prefix))
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self._filename_generator = type(self).generate_filenames(self._filenames)
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self.wants_to_play = False
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# Can be cycle or random_cycle
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generate_filenames = cycle
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def on_press(self):
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self.wants_to_play = True
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def on_release(self):
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self.wants_to_play = False
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def on_activate(self):
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self.play_wait()
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def _gather_filenames(self, prefix):
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if self.stems is None:
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return
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for stem in self.stems:
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name_mp3 = f"{prefix}{stem}.mp3"
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if exists(name_mp3):
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yield name_mp3
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continue
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name_wav = f"{prefix}{stem}.wav"
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if exists(name_wav):
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yield name_wav
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continue
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def _get_sample(self, path):
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if path.endswith(".mp3"):
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decoder.open(path)
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return decoder
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else:
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return audiocore.WaveFile(path)
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def play(self, loop=False):
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audiodev.stop()
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path = next(self._filename_generator)
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sample = self._get_sample(path)
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audiodev.play(sample, loop=loop)
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def play_wait(self):
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self.play()
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while audiodev.playing:
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poll_keys()
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def stop(self):
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audiodev.stop()
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@classmethod
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def matches(cls, prefix):
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stem = cls.stems[0]
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name_mp3 = f"{prefix}{stem}.mp3"
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name_wav = f"{prefix}{stem}.wav"
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return exists(name_wav) or exists(name_mp3)
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def __repr__(self):
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return (f"<{self.__class__.__name__} {' '.join(self._filenames)}" +
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f"{' ACTIVE' if self.wants_to_play else ''}>")
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class NopTrigger(TriggerBase):
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"""Does nothing."""
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stems = None
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def on_activate(self):
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return
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class BasicTrigger(TriggerBase):
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"""Plays a file each time the button is pressed down"""
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stems = [""]
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class HoldLoopingTrigger(TriggerBase):
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"""Plays a file as long as a button is held down
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This differs from the basic trigger because the loop stops as soon as the button
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is released """
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stems = ["HOLDL"]
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def on_activate(self):
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self.play(loop=True)
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while audiodev.playing:
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poll_keys()
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for trigger in triggers:
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if trigger is self:
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break
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if trigger.wants_to_play:
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self.wants_to_play = False
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if not self.wants_to_play:
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audiodev.stop()
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class LatchingLoopTrigger(HoldLoopingTrigger):
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"""Plays a file until the button is pressed again
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When the button is pressed again, stops the loop immediately."""
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stems = ["LATCH"]
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def on_press(self):
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if self.wants_to_play or not audiodev.playing:
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self.wants_to_play = not self.wants_to_play
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def on_release(self):
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pass # override default behavior
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class PlayNextTrigger(TriggerBase):
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stems = [f"NEXT{i}" for i in range(10)]
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_phase = 0
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class PlayRandomTrigger(TriggerBase):
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stems = [f"RAND{i}" for i in range(10)]
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generate_filenames = random_cycle
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trigger_classes = [
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BasicTrigger,
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HoldLoopingTrigger,
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LatchingLoopTrigger,
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PlayNextTrigger,
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PlayRandomTrigger,
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]
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def make_trigger(i):
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prefix = f"T{i:02d}"
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for cls in trigger_classes:
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if not cls.matches(prefix):
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continue
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return cls(prefix)
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return NopTrigger(prefix)
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keys = keypad.Keys(pads, value_when_pressed=False)
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triggers = [make_trigger(i) for i in range(len(pads))]
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def poll_keys():
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while e := keys.events.get():
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trigger = triggers[e.key_number]
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if e.pressed:
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trigger.on_press()
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else:
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trigger.on_release()
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print(e.pressed, trigger)
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print(triggers)
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reversed_triggers = list(reversed(triggers))
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while True:
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poll_keys()
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for t in triggers:
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if t.wants_to_play:
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print(t)
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t.on_activate()
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break
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