Update heart.py
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from ws2812b import WS2812B
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import time
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ws = WS2812B(256, 28, 0.2)
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array = [[ws.RED, ws.BLACK, ws.BLACK, ws.BLACK],
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[ws.BLACK, ws.BLACK, ws.BLACK, ws.BLACK],
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[ws.BLACK, ws.BLACK, ws.BLACK, ws.BLACK],
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[ws.BLACK, ws.BLACK, ws.BLACK, ws.BLACK]]
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for i in range(4):
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ws.pixels_set(i, array[i][0])
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ws.pixels_show()
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# Example using PIO to drive a set of WS2812 LEDs.
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import array, time
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from machine import Pin
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import rp2
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from random import randint
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from time import sleep
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# Configure the number of WS2812 LEDs.
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NUM_LEDS = 256
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PIN_NUM = 0
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brightness = 0.2
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@rp2.asm_pio(sideset_init=rp2.PIO.OUT_LOW, out_shiftdir=rp2.PIO.SHIFT_LEFT, autopull=True, pull_thresh=24)
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def ws2812():
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T1 = 2
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T2 = 5
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T3 = 3
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wrap_target()
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label("bitloop")
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out(x, 1) .side(0) [T3 - 1]
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jmp(not_x, "do_zero") .side(1) [T1 - 1]
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jmp("bitloop") .side(1) [T2 - 1]
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label("do_zero")
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nop() .side(0) [T2 - 1]
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wrap()
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class WS2812B:
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def __init__(self, num_leds, pin_num, brightness):
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# Create the StateMachine with the ws2812 program, outputting on pin
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self.sm = rp2.StateMachine(0, ws2812, freq=8_000_000, sideset_base=Pin(pin_num))
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# Start the StateMachine, it will wait for data on its FIFO.
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self.sm.active(1)
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# Display a pattern on the LEDs via an array of LED RGB values.
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self.ar = array.array("I", [0 for _ in range(num_leds)])
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self.num_leds = num_leds
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self.brightness = brightness
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##########################################################################
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def pixels_show(self):
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dimmer_ar = array.array("I", [0 for _ in range(self.num_leds)])
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for i,c in enumerate(self.ar):
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r = int(((c >> 8) & 0xFF) * self.brightness)
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g = int(((c >> 16) & 0xFF) * self.brightness)
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b = int((c & 0xFF) * self.brightness)
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dimmer_ar[i] = (g<<16) + (r<<8) + b
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self.sm.put(dimmer_ar, 8)
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time.sleep_ms(10)
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def pixels_set(self, i, color):
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self.ar[i] = (color[1]<<16) + (color[0]<<8) + color[2]
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def pixels_fill(self, color):
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for i in range(len(self.ar)):
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self.pixels_set(i, color)
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def color_chase(self, color, wait):
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for i in range(self.num_leds):
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self.pixels_set(i, color)
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time.sleep(wait)
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self.pixels_show()
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time.sleep(0.2)
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def wheel(self, pos):
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# Input a value 0 to 255 to get a color value.
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# The colours are a transition r - g - b - back to r.
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if pos < 0 or pos > 255:
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return (0, 0, 0)
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if pos < 85:
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return (255 - pos * 3, pos * 3, 0)
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if pos < 170:
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pos -= 85
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return (0, 255 - pos * 3, pos * 3)
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pos -= 170
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return (pos * 3, 0, 255 - pos * 3)
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def rainbow_cycle(self, wait):
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for j in range(255):
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for i in range(self.num_leds):
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rc_index = (i * 256 // self.num_leds) + j
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self.pixels_set(i, self.wheel(rc_index & 255))
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self.pixels_show()
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time.sleep(wait)
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BLACK = (0, 0, 0)
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RED = (255, 0, 0)
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YELLOW = (255, 150, 0)
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GREEN = (0, 255, 0)
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CYAN = (0, 255, 255)
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BLUE = (0, 0, 255)
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PURPLE = (180, 0, 255)
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WHITE = (255, 255, 255)
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COLORS = (BLACK, RED, YELLOW, GREEN, CYAN, BLUE, PURPLE, WHITE)
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