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			231 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			231 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
| #!/usr/bin/env python3
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| 
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| import time
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| import colorsys
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| import sys
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| import ST7735
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| try:
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|     # Transitional fix for breaking change in LTR559
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|     from ltr559 import LTR559
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|     ltr559 = LTR559()
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| except ImportError:
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|     import ltr559
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| 
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| from bme280 import BME280
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| from pms5003 import PMS5003, ReadTimeoutError as pmsReadTimeoutError
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| from enviroplus import gas
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| from subprocess import PIPE, Popen
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| from PIL import Image
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| from PIL import ImageDraw
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| from PIL import ImageFont
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| from fonts.ttf import RobotoMedium as UserFont
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| import logging
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| 
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| logging.basicConfig(
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|     format='%(asctime)s.%(msecs)03d %(levelname)-8s %(message)s',
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|     level=logging.INFO,
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|     datefmt='%Y-%m-%d %H:%M:%S')
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| 
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| logging.info("""all-in-one.py - Displays readings from all of Enviro plus' sensors
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| 
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| Press Ctrl+C to exit!
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| 
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| """)
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| 
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| # BME280 temperature/pressure/humidity sensor
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| bme280 = BME280()
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| 
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| # PMS5003 particulate sensor
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| pms5003 = PMS5003()
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| 
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| # Create ST7735 LCD display class
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| st7735 = ST7735.ST7735(
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|     port=0,
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|     cs=1,
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|     dc=9,
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|     backlight=12,
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|     rotation=270,
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|     spi_speed_hz=10000000
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| )
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| 
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| # Initialize display
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| st7735.begin()
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| 
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| WIDTH = st7735.width
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| HEIGHT = st7735.height
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| 
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| # Set up canvas and font
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| img = Image.new('RGB', (WIDTH, HEIGHT), color=(0, 0, 0))
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| draw = ImageDraw.Draw(img)
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| font_size = 20
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| font = ImageFont.truetype(UserFont, font_size)
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| 
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| message = ""
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| 
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| # The position of the top bar
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| top_pos = 25
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| 
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| 
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| # Displays data and text on the 0.96" LCD
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| def display_text(variable, data, unit):
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|     # Maintain length of list
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|     values[variable] = values[variable][1:] + [data]
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|     # Scale the values for the variable between 0 and 1
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|     vmin = min(values[variable])
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|     vmax = max(values[variable])
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|     colours = [(v - vmin + 1) / (vmax - vmin + 1) for v in values[variable]]
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|     # Format the variable name and value
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|     message = "{}: {:.1f} {}".format(variable[:4], data, unit)
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|     logging.info(message)
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|     draw.rectangle((0, 0, WIDTH, HEIGHT), (255, 255, 255))
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|     for i in range(len(colours)):
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|         # Convert the values to colours from red to blue
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|         colour = (1.0 - colours[i]) * 0.6
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|         r, g, b = [int(x * 255.0) for x in colorsys.hsv_to_rgb(colour, 1.0, 1.0)]
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|         # Draw a 1-pixel wide rectangle of colour
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|         draw.rectangle((i, top_pos, i + 1, HEIGHT), (r, g, b))
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|         # Draw a line graph in black
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|         line_y = HEIGHT - (top_pos + (colours[i] * (HEIGHT - top_pos))) + top_pos
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|         draw.rectangle((i, line_y, i + 1, line_y + 1), (0, 0, 0))
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|     # Write the text at the top in black
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|     draw.text((0, 0), message, font=font, fill=(0, 0, 0))
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|     st7735.display(img)
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| 
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| 
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| # Get the temperature of the CPU for compensation
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| def get_cpu_temperature():
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|     process = Popen(['vcgencmd', 'measure_temp'], stdout=PIPE, universal_newlines=True)
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|     output, _error = process.communicate()
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|     return float(output[output.index('=') + 1:output.rindex("'")])
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| 
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| 
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| # Tuning factor for compensation. Decrease this number to adjust the
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| # temperature down, and increase to adjust up
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| factor = 2.25
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| 
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| cpu_temps = [get_cpu_temperature()] * 5
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| 
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| delay = 0.5  # Debounce the proximity tap
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| mode = 0     # The starting mode
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| last_page = 0
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| light = 1
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| 
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| # Create a values dict to store the data
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| variables = ["temperature",
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|              "pressure",
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|              "humidity",
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|              "light",
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|              "oxidised",
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|              "reduced",
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|              "nh3",
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|              "pm1",
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|              "pm25",
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|              "pm10"]
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| 
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| values = {}
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| 
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| for v in variables:
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|     values[v] = [1] * WIDTH
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| 
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| # The main loop
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| try:
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|     while True:
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|         proximity = ltr559.get_proximity()
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| 
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|         # If the proximity crosses the threshold, toggle the mode
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|         if proximity > 1500 and time.time() - last_page > delay:
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|             mode += 1
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|             mode %= len(variables)
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|             last_page = time.time()
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| 
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|         # One mode for each variable
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|         if mode == 0:
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|             # variable = "temperature"
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|             unit = "C"
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|             cpu_temp = get_cpu_temperature()
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|             # Smooth out with some averaging to decrease jitter
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|             cpu_temps = cpu_temps[1:] + [cpu_temp]
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|             avg_cpu_temp = sum(cpu_temps) / float(len(cpu_temps))
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|             raw_temp = bme280.get_temperature()
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|             data = raw_temp - ((avg_cpu_temp - raw_temp) / factor)
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 1:
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|             # variable = "pressure"
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|             unit = "hPa"
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|             data = bme280.get_pressure()
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 2:
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|             # variable = "humidity"
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|             unit = "%"
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|             data = bme280.get_humidity()
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 3:
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|             # variable = "light"
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|             unit = "Lux"
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|             if proximity < 10:
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|                 data = ltr559.get_lux()
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|             else:
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|                 data = 1
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 4:
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|             # variable = "oxidised"
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|             unit = "kO"
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|             data = gas.read_all()
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|             data = data.oxidising / 1000
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 5:
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|             # variable = "reduced"
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|             unit = "kO"
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|             data = gas.read_all()
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|             data = data.reducing / 1000
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 6:
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|             # variable = "nh3"
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|             unit = "kO"
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|             data = gas.read_all()
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|             data = data.nh3 / 1000
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|             display_text(variables[mode], data, unit)
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| 
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|         if mode == 7:
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|             # variable = "pm1"
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|             unit = "ug/m3"
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|             try:
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|                 data = pms5003.read()
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|             except pmsReadTimeoutError:
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|                 logging.warn("Failed to read PMS5003")
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|             else:
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|                 data = float(data.pm_ug_per_m3(1.0))
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|                 display_text(variables[mode], data, unit)
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| 
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|         if mode == 8:
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|             # variable = "pm25"
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|             unit = "ug/m3"
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|             try:
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|                 data = pms5003.read()
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|             except pmsReadTimeoutError:
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|                 logging.warn("Failed to read PMS5003")
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|             else:
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|                 data = float(data.pm_ug_per_m3(2.5))
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|                 display_text(variables[mode], data, unit)
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| 
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|         if mode == 9:
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|             # variable = "pm10"
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|             unit = "ug/m3"
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|             try:
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|                 data = pms5003.read()
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|             except pmsReadTimeoutError:
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|                 logging.warn("Failed to read PMS5003")
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|             else:
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|                 data = float(data.pm_ug_per_m3(10))
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|                 display_text(variables[mode], data, unit)
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| 
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| # Exit cleanly
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| except KeyboardInterrupt:
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|     sys.exit(0)
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