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pifan-pijuice.py
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pifan-pijuice.py
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#! /usr/bin/env python3
from rpi_hardware_pwm import HardwarePWM
import time
import signal
import logging
import sys
import importlib
DEBUG = False # Set to True for debug logging, should normally be False.
PWM_FREQ = 23000 # [Hz] The PWM frequency (number of pulses per second).
PWM_CHANNEL = 0 # The PWM channel to use.
WAIT_TIME = 2 # [s] The time to wait between each regulation cycle.
OFF_TEMP = 38 # [°C] The temperature below which to stop the fan.
MIN_TEMP = 42 # [°C] The temperature above which to start the fan.
MAX_TEMP = 60 # [°C] The temperature at which to operate at max fan speed.
FAN_OFF = 0 # [%] The fan duty to use when the fan is off.
FAN_START = 35 # [%] Fan startup duty (some fans require a higher startup than minimum duty).
FAN_LOW = 30 # [%] The lowest fan duty to use (check fan specs).
FAN_HIGH = 100 # [%] The highest fan duty to use.
FAN_GAIN = float(FAN_HIGH - FAN_LOW) / float(MAX_TEMP - MIN_TEMP)
curDuty = 0
def getCpuTemperature():
with open('/sys/class/thermal/thermal_zone0/temp') as f:
return float(f.read()) / 1000
def handleFanSpeed(pwm, temperature):
global curDuty, pijuice
if temperature > MIN_TEMP:
delta = min(temperature, MAX_TEMP) - MIN_TEMP
newDuty = FAN_LOW + delta * FAN_GAIN
elif temperature < OFF_TEMP:
newDuty = FAN_OFF
elif curDuty > FAN_LOW:
newDuty = FAN_LOW
else:
return
if newDuty != curDuty and (newDuty == FAN_OFF or newDuty == FAN_LOW or newDuty == FAN_HIGH or abs(newDuty - curDuty) > 2):
if curDuty == FAN_OFF:
if DEBUG:
logger.info("Temperature is %.1f°C, starting fan with duty %.f%%" % (temperature, newDuty))
if pijuice:
red, green, blue = calcLEDColor(newDuty)
pijuice.status.SetLedBlink("D2", 5, [0, green, blue], 200, [0, 0, 0], 200)
if FAN_START > newDuty:
pwm.change_duty_cycle(FAN_START)
time.sleep(2)
pwm.change_duty_cycle(newDuty)
if pijuice:
pijuice.status.SetLedState("D2", [red, green, blue])
elif newDuty == FAN_OFF:
if DEBUG:
logger.info("Temperature is %.1f°C, stopping fan" % temperature)
pwm.change_duty_cycle(FAN_OFF)
if pijuice:
pijuice.status.SetLedState("D2", [0, 0, 0])
time.sleep(2)
else:
if DEBUG:
logger.info("Temperature is %.1f°C, setting duty to %.f%%" % (temperature, newDuty))
pwm.change_duty_cycle(newDuty)
if pijuice:
pijuice.status.SetLedState("D2", calcLEDColor(newDuty))
curDuty = newDuty
def calcLEDColor(duty):
return [
int(max(0, 50 - duty) * 2.56),
int((50 - abs(duty - 50)) * 2.56),
int(max(0, duty - 50) * 3.825)]
def initPiJuice():
try:
pijuice = importlib.import_module("pijuice")
return pijuice.PiJuice(1, 0x14)
except ImportError:
return None
logger = logging.getLogger(__name__)
logger.setLevel(logging.INFO)
handler = logging.StreamHandler(stream=sys.stdout)
logger.addHandler(handler)
logger.info("Starting automatic PWM fan regulator for PWM channel %d with PWM frequency %dHz and settings:" % (PWM_CHANNEL, PWM_FREQ))
logger.info(" Duties: OFF=%d%%, START=%d%%, LOW=%d%%, HIGH=%d%%" % (FAN_OFF, FAN_START, FAN_LOW, FAN_HIGH))
logger.info(" Temperatures: OFF=%.1f°C, MIN=%.1f°C, MAX=%.1f°C" % (OFF_TEMP, MIN_TEMP, MAX_TEMP))
pwm = HardwarePWM(pwm_channel=PWM_CHANNEL, hz=PWM_FREQ)
pijuice = initPiJuice()
try:
signal.signal(signal.SIGTERM, lambda *args: sys.exit(0))
pwm.start(FAN_OFF)
time.sleep(WAIT_TIME)
while True:
handleFanSpeed(pwm, getCpuTemperature())
time.sleep(WAIT_TIME)
except KeyboardInterrupt:
pass
finally:
pwm.stop()
if pijuice:
pijuice.status.SetLedState("D2", [0, 0, 0])
logger.info("Automatic PWM fan regulator for PWM channel %d was stopped" % PWM_CHANNEL)