FanLedCtrl/mqttclient/fanATserial2mqtt.py

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#! /usr/bin/python3
import time
import sys
from paho.mqtt import client as mqtt_client
import os
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import serial
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MAXIMUM_COMMUNICATION_FAILURE=100
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TEMPERATUR_MIN_DIFFERENCE = 2
TARGET_MIN_DIFFERENCE = 1
RPM_MIN_DIFFERENCE = 50
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# MQTT Settings
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mqtt_server=os.environ['MQTT_SERVER']
mqtt_topic=os.environ['MQTT_TOPIC']
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# SERIAL Port
serial_device=os.environ['SERIAL_DEVICE']
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# Start mqtt
client_id = f'python-fan-ctrl'
client = mqtt_client.Client(mqtt_client.CallbackAPIVersion.VERSION2)
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# Start Serial communication
ser = serial.Serial(serial_device, 115200, timeout=1) # open serial port
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# The callback for when a PUBLISH message is received from the server.
def on_message(client, userdata, msg):
print(msg.topic+" "+str(msg.payload))
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# Handle MQTT Commands
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def on_connect(mqttc, obj, flags, reason_code, properties):
client.subscribe(mqtt_topic + "cmd/led")
client.subscribe(mqtt_topic + "cmd/rpm")
print("Connected: " + str(reason_code))
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client.on_message = on_message
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client.on_connect = on_connect
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if (not (mqtt_server)):
print("MQTT_SERVER is not set")
if (not (mqtt_topic)):
print("MQTT_TOPIC is not set")
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# Start MQTT Client
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client.connect(mqtt_server, 1883)
client.loop_start()
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client.publish(mqtt_topic + "device", ser.name) # check which port was really used
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SerialCommunicationFailureCounter=0
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# store last published value
lastTemperatur = -1
lastRPM = -1
lastTarget = -1
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# Endless Loop
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try:
while True:
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try:
if (not (ser.is_open)):
ser.open()
continue
except (serial.SerialException):
client.publish(mqtt_topic + "exception", "serial reopen") # check which port was really used
time.sleep(1.0)
try:
line = ser.readline() # read a '\n' terminated line
except (serial.SerialException):
SerialCommunicationFailureCounter = SerialCommunicationFailureCounter + 1
client.publish(mqtt_topic + "serialcom/failure", str(SerialCommunicationFailureCounter))
line=None
if (SerialCommunicationFailureCounter > MAXIMUM_COMMUNICATION_FAILURE):
raise serial.SerialException("device reports readiness / device disconnected " + str(MAXIMUM_COMMUNICATION_FAILURE) + " times")
if (line):
client.publish(mqtt_topic + "exception", "") # clear exception
# convert byte array to string
l = line.decode("utf-8")
try:
# Parse the controller information
# e.g. : 22.00;0%;0RPM
temperatur, percent, rpm = l.split(";")
except (ValueError):
# activate debug code
temperatur = None
percent = None
rpm = None
if ((temperatur) and (percent) and (rpm)):
parseError=False
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currentTemperatur = float(temperatur.strip())
if (abs(currentTemperatur - lastTemperatur) > TEMPERATUR_MIN_DIFFERENCE):
client.publish(mqtt_topic + "temperatur", str(currentTemperatur))
lastTemperatur = currentTemperatur
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if (percent.endswith('/100')):
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currentTarget = int(percent[:-4])
if (abs(lastTarget - currentTarget) > TARGET_MIN_DIFFERENCE):
client.publish(mqtt_topic + "target", str(currentTarget))
lastTarget = currentTarget
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else:
client.publish(mqtt_topic + "debug", "target%% invalid:" + str(percent))
parseError=True
# remove new line for last element
rpm = rpm.replace('\r','').replace('\n','')
if (rpm.endswith('RPM')):
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currentRPM = int(rpm[:-3])
if (abs(currentRPM-lastRPM) > RPM_MIN_DIFFERENCE):
client.publish(mqtt_topic + "rpm", str(currentRPM))
lastRPM = currentRPM
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else:
client.publish(mqtt_topic + "debug", "RPM invalid:" + str(rpm))
parseError=True
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# cleanup debugging
if (parseError == False):
client.publish(mqtt_topic + "debug", None)
else:
client.publish(mqtt_topic + "debug", line) # line was invalid and could not be parsed
else:
time.sleep(0.2)
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except (KeyboardInterrupt, SystemExit):
print("User aborted service ...")
client.publish(mqtt_topic + "debug", "User aborted service")
time.sleep(0.5)
print("service Dead")
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client.loop_stop()