Latest changes from who knows when...
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@ -87,7 +87,7 @@
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},
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},
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"activated-channels": [ 0, 1],
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"activated-channels": [ 0, 1],
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"interval": 1,
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"interval": 1,
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"use_difference": false,
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"use_difference": true,
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"thresholds-for": "inside",
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"thresholds-for": "inside",
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"thresholds": {
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"thresholds": {
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"off":{
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"off":{
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@ -1,10 +1,11 @@
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#! /usr/bin/env python3
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#import RPIO
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#import RPIO
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import RPi.GPIO as GPIO
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import RPi.GPIO as GPIO
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import time
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import time
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from datetime import datetime
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from datetime import datetime
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from datetime import timedelta
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from datetime import timedelta
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switch = 15
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switch = 17
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pwm = 14
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pwm = 18
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fan_speed =18
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fan_speed =18
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#RPIO.setup(switch, RPIO.OUT)
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#RPIO.setup(switch, RPIO.OUT)
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@ -17,7 +18,14 @@ GPIO.setup(switch, GPIO.OUT)
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GPIO.setup(pwm, GPIO.OUT)
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GPIO.setup(pwm, GPIO.OUT)
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fan = GPIO.PWM(pwm, 25000)
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fan = GPIO.PWM(pwm, 25000)
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GPIO.setup(fan_speed, GPIO.IN, pull_up_down=GPIO.PUD_UP)
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uswitch = 22
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upwm = 23
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GPIO.setup(uswitch, GPIO.OUT)
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GPIO.setup(upwm, GPIO.OUT)
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ufan = GPIO.PWM(pwm,25000)
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# GPIO.setup(fan_speed, GPIO.IN, pull_up_down=GPIO.PUD_UP)
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global last_ts
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global last_ts
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global current_ts
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global current_ts
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global diff
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global diff
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@ -45,29 +53,44 @@ def speed_callback(channel):
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# print("{:d} | \t{:.2f} | \t{} | \t{} | \t{}".format(diff.microseconds, rpm, diff, current_ts, last_ts), end="\r")
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# print("{:d} | \t{:.2f} | \t{} | \t{} | \t{}".format(diff.microseconds, rpm, diff, current_ts, last_ts), end="\r")
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GPIO.add_event_detect(fan_speed, GPIO.FALLING, callback=speed_callback)
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# GPIO.add_event_detect(fan_speed, GPIO.FALLING, callback=speed_callback)
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import sys
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try:
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try:
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GPIO.output(switch, True)
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GPIO.output(switch, True)
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GPIO.output(uswitch, True)
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step = 10
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step = 10
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c = 0
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c = 0
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direction = 1
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direction = 1
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diff=timedelta()
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diff=timedelta()
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fan.start(c)
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fan.start(c)
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ufan.start(c)
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while True:
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while True:
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if c == 100:
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l = input().strip().split(" ")
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direction = -1
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if len(l) == 2:
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elif c == 0:
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if int(l[0]) < 0:
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direction = 1
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GPIO.output(switch, False)
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c += step*direction
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else:
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fan.ChangeDutyCycle(c)
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GPIO.output(switch, True)
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fan.ChangeDutyCycle(100 - int(l[0]))
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if int(l[1]) < 0:
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GPIO.output(uswitch, False)
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else:
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GPIO.output(uswitch, True)
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ufan.ChangeDutyCycle(100 - int(l[1]))
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# if c == 100:
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# direction = -1
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# elif c == 0:
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# direction = 1
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# c += step*direction
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# fan.ChangeDutyCycle(c)
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# print("{} ".format(c))
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# print("{} ".format(c))
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time.sleep(5)
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# while True:
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time.sleep(0.1)
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except KeyboardInterrupt:
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except KeyboardInterrupt:
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pass
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pass
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finally:
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finally:
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fan.stop()
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#fan.stop()
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GPIO.output(switch, False)
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#GPIO.output(switch, False)
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GPIO.cleanup()
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GPIO.cleanup()
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@ -1,4 +1,4 @@
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#!/usr/bin/python
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#! /usr/bin/env python3
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import spidev
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import spidev
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import time
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import time
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@ -9,12 +9,12 @@ tnom = 25
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rnom = 10000.0
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rnom = 10000.0
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corr = 4800
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corr = 4800
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temp_gpio = {
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temp_gpio = {
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0: {
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"BCM": 20,
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"Rk": 9770.0 #9770,
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},
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1: {
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1: {
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"BCM": 26,
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"BCM": 26,
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"Rk": 9770.0 #9770,
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},
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0: {
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"BCM": 20,
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"Rk": 10000.0
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"Rk": 10000.0
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}
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}
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}
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}
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@ -61,11 +61,11 @@ class LowLevel(metaclass=Singleton):
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GPIO.output(self.__cfg.get_pwm_upper()["on-off"]["BCM"], on)
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GPIO.output(self.__cfg.get_pwm_upper()["on-off"]["BCM"], on)
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def upper_fan_pwm(self, percent):
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def upper_fan_pwm(self, percent):
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self.__pwmu.ChangeDutyCycle(percent)
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self.__pwmu.ChangeDutyCycle(100 - percent)
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def lower_fan(self, on):
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def lower_fan(self, on):
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GPIO.output(self.__cfg.get_pwm_lower()["on-off"]["BCM"], on)
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GPIO.output(self.__cfg.get_pwm_lower()["on-off"]["BCM"], on)
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def lower_fan_pwm(self, percent):
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def lower_fan_pwm(self, percent):
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self.__pwml.ChangeDutyCycle(percent)
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self.__pwml.ChangeDutyCycle(100 - percent)
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