kopia lustrzana https://github.com/pimoroni/pimoroni-pico
				
				
				
			
		
			
				
	
	
		
			51 wiersze
		
	
	
		
			1.1 KiB
		
	
	
	
		
			Python
		
	
	
			
		
		
	
	
			51 wiersze
		
	
	
		
			1.1 KiB
		
	
	
	
		
			Python
		
	
	
| import time
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| from pimoroni_i2c import PimoroniI2C
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| from breakout_potentiometer import BreakoutPotentiometer
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| 
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| PINS_BREAKOUT_GARDEN = {"sda": 4, "scl": 5}
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| PINS_PICO_EXPLORER = {"sda": 20, "scl": 21}
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| 
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| i2c = PimoroniI2C(**PINS_BREAKOUT_GARDEN)
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| pot = BreakoutPotentiometer(i2c)
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| 
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| pot.set_brightness(1.0)
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| # pot.set_direction(BreakoutPotentiometer.DIRECTION_CCW)     # Uncomment this to flip the direction
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| 
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| 
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| # From CPython Lib/colorsys.py
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| def hsv_to_rgb(h, s, v):  # noqa: RET503
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|     if s == 0.0:
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|         return v, v, v
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|     i = int(h * 6.0)
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|     f = (h * 6.0) - i
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|     p = v * (1.0 - s)
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|     q = v * (1.0 - s * f)
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|     t = v * (1.0 - s * (1.0 - f))
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|     i = i % 6
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|     if i == 0:
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|         return v, t, p
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|     if i == 1:
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|         return q, v, p
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|     if i == 2:
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|         return p, v, t
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|     if i == 3:
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|         return p, q, v
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|     if i == 4:
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|         return t, p, v
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|     if i == 5:
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|         return v, p, q
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| 
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| 
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| val = 0
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| 
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| while True:
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|     val = pot.read()
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|     h = val * 240.0     # Colour range from red to blue
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| 
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|     r, g, b = [int(255 * c) for c in hsv_to_rgb(h / 360.0, 1.0, 1.0)]  # rainbow magic
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| 
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|     print("Percent: ", int(val * 100), "%", sep="")
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|     pot.set_led(r, g, b)
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| 
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|     time.sleep(0.02)
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