jeelink2mqtt.py 13 KB

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  1. #!/usr/bin/python3 -u
  2. # -*- coding: utf-8 -*-
  3. #
  4. import serial
  5. #from serial import Serial
  6. #from serial import Serial
  7. import time
  8. from time import localtime, strftime
  9. import os
  10. import sys
  11. import paho.mqtt.client as mqtt
  12. #import json
  13. #import math
  14. #import numpy as np
  15. #import httplib
  16. mqtt_server = "mqtt.lan"
  17. mqtt_port = 1883
  18. mqtt_user = "script"
  19. mqtt_password = "rlAzqusqfbAy"
  20. sensordata_maxage = 300
  21. verbosemode = False
  22. if len(sys.argv) > 1 and str(sys.argv[1]) == "-v":
  23. verbosemode = True
  24. def touch(fname, times=None):
  25. with open(fname, 'a'):
  26. os.utime(fname, times)
  27. def on_connect(client, userdata, flags, rc):
  28. if verbosemode:
  29. print("MQTT connected with result code " + str(rc) + "\n")
  30. #client.subscribe("wetter/atemp")
  31. def on_disconnect(client, userdata, rc):
  32. if rc != 0:
  33. print("Unexpected MQTT disconnection. Will auto-reconnect\n")
  34. #def on_message(client, userdata, msg):
  35. # #print(msg.topic + " " + str(msg.payload))
  36. # global atemp
  37. # atemp = msg.payload
  38. minUpdateInterval = 60
  39. aTempHumPublishInterval = 60
  40. mqtt_topic_prefix = "LaCrosse"
  41. override_updateinterval_on_change = False
  42. atemp_sensor_idx = 94
  43. atemp_sensor_idx_2 = 113
  44. atemp = 61 #starting values only..
  45. ahum = 101
  46. atemp1 = 61
  47. ahum1 = 101
  48. atemp2 = 61
  49. ahum2 = 101
  50. atemp_last = 61
  51. ahum_last = 101
  52. checkLastUpdateInterval = 60
  53. checkLastUpdateInterval_lastRun = 0
  54. sensors = {}
  55. sensors_idx = {}
  56. sensors_lastTemp = {}
  57. sensors_lastHum = {}
  58. sensors_lastUpdate = {}
  59. sensors_unavailable = {}
  60. if verbosemode:
  61. print("JeeLink2MQTT by Flo Kra")
  62. print("=======================================================================")
  63. print("loading sensors assignment: ")
  64. with open("/home/pi/jeelink_sensors.csv", "r") as sensorscsv:
  65. for line in sensorscsv:
  66. if line.find('ID,DomoticzIdx,Name') == -1:
  67. # nur Zeilen die nicht der header sind sind interessant
  68. line = line.strip('\r')
  69. line = line.strip('\n')
  70. parts = line.split(',')
  71. sensorId = parts[0]
  72. domoticzIdx = parts[1]
  73. sensorName = parts[2]
  74. sensors[str(sensorId)] = str(sensorName)
  75. sensors_idx[str(sensorId)] = str(domoticzIdx)
  76. sensors_lastUpdate[str(sensorId)] = 0
  77. sensors_unavailable[str(sensorId)] = 1 #will be overwritten when first value is received
  78. if verbosemode:
  79. idhex = "{0:x}".format(int(sensorId))
  80. print("Sensor " + sensorId + " = 0x" + str(idhex) + ", Idx = " + str(domoticzIdx) + ", Name = '" + sensorName + "'")
  81. if verbosemode:
  82. print("\n")
  83. mqttc = mqtt.Client()
  84. mqttc.on_connect = on_connect
  85. mqttc.on_disconnect = on_disconnect
  86. ##mqttc.on_message = on_message
  87. mqttc.username_pw_set(mqtt_user, mqtt_password)
  88. mqttc.connect(mqtt_server, mqtt_port, 60)
  89. mqttc.loop_start()
  90. #mqttc.loop_forever()
  91. ser = serial.Serial(port='/dev/serial/by-id/usb-FTDI_FT232R_USB_UART_AL01MYTF-if00-port0',
  92. baudrate = 57600,
  93. parity=serial.PARITY_NONE,
  94. stopbits=serial.STOPBITS_ONE,
  95. bytesize=serial.EIGHTBITS,
  96. timeout=1)
  97. #sensors = {'4':'Arbeitszimmer','16':'AussenGarten','60':'AussenParkplatz','50':'Bad','39':'Balkon','55':'Kueche','40':'Schlafzimmer'}
  98. #sensors_idx = {'4':'1','16':'94','60':'113','50':'4','39':'88','55':'6','40':'3'}
  99. #if verbosemode:
  100. # print(sensors)
  101. # print(sensors_idx)
  102. checkLastUpdateInterval_lastRun = time.time() # first check after 1 min
  103. try:
  104. while True:
  105. msg_was_sent = 0
  106. #clear serial buffer to remove junk and noise
  107. ser.flushInput()
  108. #read buffer until cr/lf
  109. serLine = ser.readline().strip()
  110. # catch exception on invalid char coming in: UnicodeDecodeError: 'ascii' codec can't decode byte 0xf4 in position 6: ordinal not in range(128)
  111. try:
  112. serLine = serLine.decode('ascii')
  113. except:
  114. serLine = ""
  115. if(serLine):
  116. if serLine.find('OK 9') != -1:
  117. if verbosemode:
  118. print(serLine + " = LaCrosse sensor")
  119. # uns interessieren nur reinkommende Zeilen die mit "OK 9 " beginnen
  120. # 0 1 2 3 4 5 6
  121. # OK 9 ID XXX XXX XXX XXX
  122. # | | | | | | |
  123. # | | | | | | --- Humidity incl. WeakBatteryFlag
  124. # | | | | | |------ Temp * 10 + 1000 LSB
  125. # | | | | |---------- Temp * 10 + 1000 MSB
  126. # | | | |-------------- Sensor type (1 or 2) +128 if NewBatteryFlag
  127. # | | |----------------- Sensor ID
  128. # | |------------------- fix "9"
  129. # |---------------------- fix "OK"
  130. serLineParts = serLine.split(' ')
  131. #addr = serLineParts[2]
  132. #addr = "{0:x}".format(int(serLineParts[2]))
  133. #addr = hex((int(serLineParts[2])))
  134. addr = int(serLineParts[2])
  135. addrhex = "{0:x}".format(int(serLineParts[2]))
  136. lastUpdate = sensors_lastUpdate.get(str(addr), None)
  137. lastTemp = sensors_lastTemp.get(str(addr), None)
  138. lastHum = sensors_lastHum.get(str(addr), None)
  139. currentsensor_idx = sensors_idx.get(str(addr),None)
  140. currentsensor_name = sensors.get(str(addr), None)
  141. if int(serLineParts[3]) >= 128:
  142. batt_new = 1
  143. type = int(serLineParts[3]) - 128
  144. else:
  145. batt_new = 0
  146. type = int(serLineParts[3])
  147. temp = (int(serLineParts[4])*256 + int(serLineParts[5]) - 1000)/10.0
  148. if int(serLineParts[6]) >= 128:
  149. batt_low = 1
  150. hum = int(serLineParts[6]) - 128
  151. else:
  152. batt_low = 0
  153. hum = int(serLineParts[6])
  154. if hum > 100:
  155. hum = 100
  156. if batt_low == 0:
  157. batterystate = "ok"
  158. else:
  159. batterystate = "low"
  160. senddata = False
  161. if currentsensor_idx is not None:
  162. if override_updateinterval_on_change:
  163. if lastTemp != temp or lastHum != hum:
  164. senddata = True
  165. if verbosemode:
  166. print("override interval (value changed): " + str(temp) + " != " + str(lastTemp) + " " + str(hum) + " != " + str(lastHum))
  167. if lastUpdate is not None:
  168. timediff = int(time.time()) - lastUpdate
  169. if timediff >= minUpdateInterval:
  170. senddata = True
  171. elif sensors_unavailable[str(addr)] == 1:
  172. senddata = True
  173. else:
  174. senddata = True
  175. sensors_unavailable[str(addr)] = 0
  176. #print(sensors_unavailable)
  177. if currentsensor_name is None:
  178. if batt_new == 1:
  179. fname = '/home/pi/logs/jeelink_unknown_new_sensor_' + str(addr)
  180. else:
  181. fname = '/home/pi/logs/jeelink_unknown_sensor_' + str(addr)
  182. if not os.path.isfile(fname):
  183. try:
  184. touch(fname)
  185. except:
  186. # guat dann hoit ned...
  187. pass
  188. temp = (int(serLineParts[4])*256 + int(serLineParts[5]) - 1000)/10.0
  189. if verbosemode:
  190. print("unknown sensor ID " + str(addr))
  191. mqttc.publish(mqtt_topic_prefix+"/UnknownSensor/"+str(addr)+"/temperature", str(temp), qos=2, retain=False)
  192. mqttc.publish(mqtt_topic_prefix+"/UnknownSensor/"+str(addr)+"/humidity", str(hum), qos=2, retain=False)
  193. mqttc.publish(mqtt_topic_prefix+"/UnknownSensor/"+str(addr)+"/battNew", str(batt_new), qos=2, retain=False)
  194. if verbosemode:
  195. print("addr: " + str(addr) + " = 0x" + str(addrhex) + " batt_new: " + str(batt_new) + " type: " + str(type) + " batt_low: " + str(batt_low) + " temp: " + str(temp) + " hum: " + str(hum) + " Name: " + str(currentsensor_name))
  196. if senddata:
  197. sensors_lastUpdate[str(addr)] = int(time.time())
  198. sensors_lastTemp[str(addr)] = temp
  199. sensors_lastHum[str(addr)] = hum
  200. isAtemp = False
  201. if int(currentsensor_idx) == atemp_sensor_idx:
  202. atemp1 = temp
  203. ahum1 = hum
  204. isAtemp = True
  205. elif int(currentsensor_idx) == atemp_sensor_idx_2:
  206. atemp2 = temp
  207. ahum2 = hum
  208. isAtemp = True
  209. if isAtemp:
  210. if atemp1 <= atemp2:
  211. atemp = atemp1
  212. ahum = ahum1
  213. else:
  214. atemp = atemp2
  215. ahum = ahum2
  216. if atemp < 61 and ahum < 101:
  217. if atemp != atemp_last or ahum != ahum_last or ((time.time() - atemphum_lastUpdate) > aTempHumPublishInterval):
  218. atemphum_lastUpdate = time.time()
  219. atemp_last = atemp
  220. ahum_last = ahum
  221. mqttc.publish("wetter/atemp", str(atemp), qos=2, retain=True)
  222. mqttc.publish("wetter/ahum", str(ahum), qos=2, retain=True)
  223. mqttc.publish("wetter/atemphum_lastUpdate", strftime("%Y-%m-%d %H:%M:%S", localtime()), qos=2, retain=False)
  224. domoticz_json = "{\"idx\":" + str(currentsensor_idx) + ",\"nvalue\":0,\"svalue\":\"" + str(temp) + ";" + str(hum) + ";1\"}"
  225. #if verbosemode:
  226. # print(domoticz_json)
  227. mqttc.publish("domoticz/in", domoticz_json, qos=2, retain=False)
  228. mqttc.publish(mqtt_topic_prefix+"/"+str(currentsensor_name)+"/temperature", str(temp), qos=2, retain=False)
  229. mqttc.publish(mqtt_topic_prefix+"/"+str(currentsensor_name)+"/humidity", str(hum), qos=2, retain=False)
  230. mqttc.publish(mqtt_topic_prefix+"/"+str(currentsensor_name)+"/battery", str(batterystate), qos=2, retain=False)
  231. mqttc.publish(mqtt_topic_prefix+"/"+str(currentsensor_name)+"/lastUpdate", strftime("%Y-%m-%d %H:%M:%S", localtime()), qos=2, retain=False)
  232. mqttc.publish(mqtt_topic_prefix+"/"+str(currentsensor_name)+"/availability", "available", qos=2, retain=False)
  233. lacrosse_json = "{\"temperature\":" + str(temp) + ", \"humidity\":" + str(hum) + ", \"battery\":\"" + str(batterystate) + "\"}"
  234. mqttc.publish(mqtt_topic_prefix+"/"+str(currentsensor_name)+"/json", lacrosse_json, qos=2, retain=False)
  235. if verbosemode:
  236. print("MQTT published")
  237. try:
  238. touch("/tmp/jeelink2mqtt_running")
  239. except:
  240. # guat dann ned...
  241. pass
  242. else:
  243. if verbosemode:
  244. if currentsensor_name is None:
  245. print("MQTT published")
  246. else:
  247. print("MQTT publishing surpressed (interval not expired)")
  248. if verbosemode:
  249. print("\n")
  250. # handle outdated sensor values once a minute
  251. if (time.time() - checkLastUpdateInterval_lastRun) > checkLastUpdateInterval:
  252. checkLastUpdateInterval_lastRun = time.time()
  253. #print("check lastUpdate")
  254. for key in sensors_lastUpdate:
  255. #print(key, '->', sensors_lastUpdate[key], '->', sensors[key])
  256. if (time.time() - sensors_lastUpdate[key]) > sensordata_maxage:
  257. if verbosemode:
  258. print(sensors[key], ' outd ->')
  259. sensors_unavailable[key] = 1
  260. mqttc.publish(mqtt_topic_prefix+"/"+str(sensors[key])+"/availability", "unavailable", qos=2, retain=False)
  261. except KeyboardInterrupt:
  262. print('\n')
  263. exit()