miflora-mqtt-daemon.py 24 KB

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  1. #!/usr/bin/env python3
  2. import ssl
  3. import sys
  4. import re
  5. import json
  6. import os.path
  7. import argparse
  8. from time import time, sleep, localtime, strftime
  9. from collections import OrderedDict
  10. from colorama import init as colorama_init
  11. from colorama import Fore, Back, Style
  12. from configparser import ConfigParser
  13. from unidecode import unidecode
  14. from miflora.miflora_poller import MiFloraPoller, MI_BATTERY, MI_CONDUCTIVITY, MI_LIGHT, MI_MOISTURE, MI_TEMPERATURE
  15. from btlewrap import BluepyBackend, GatttoolBackend, BluetoothBackendException
  16. from bluepy.btle import BTLEException
  17. import paho.mqtt.client as mqtt
  18. import sdnotify
  19. from signal import signal, SIGPIPE, SIG_DFL
  20. signal(SIGPIPE,SIG_DFL)
  21. project_name = 'Xiaomi Mi Flora Plant Sensor MQTT Client/Daemon'
  22. project_url = 'https://github.com/ThomDietrich/miflora-mqtt-daemon'
  23. parameters = OrderedDict([
  24. (MI_LIGHT, dict(name="LightIntensity", name_pretty='Sunlight Intensity', typeformat='%d', unit='lux', device_class="illuminance")),
  25. (MI_TEMPERATURE, dict(name="AirTemperature", name_pretty='Air Temperature', typeformat='%.1f', unit='°C', device_class="temperature")),
  26. (MI_MOISTURE, dict(name="SoilMoisture", name_pretty='Soil Moisture', typeformat='%d', unit='%', device_class="humidity")),
  27. (MI_CONDUCTIVITY, dict(name="SoilConductivity", name_pretty='Soil Conductivity/Fertility', typeformat='%d', unit='µS/cm')),
  28. (MI_BATTERY, dict(name="Battery", name_pretty='Sensor Battery Level', typeformat='%d', unit='%', device_class="battery"))
  29. ])
  30. if False:
  31. # will be caught by python 2.7 to be illegal syntax
  32. print('Sorry, this script requires a python3 runtime environment.', file=sys.stderr)
  33. # Argparse
  34. parser = argparse.ArgumentParser(description=project_name, epilog='For further details see: ' + project_url)
  35. parser.add_argument('--gen-openhab', help='generate openHAB items based on configured sensors', action='store_true')
  36. parser.add_argument('--config_dir', help='set directory where config.ini is located', default=sys.path[0])
  37. parse_args = parser.parse_args()
  38. # Intro
  39. colorama_init()
  40. print(Fore.GREEN + Style.BRIGHT)
  41. print(project_name)
  42. print('Source:', project_url)
  43. print(Style.RESET_ALL)
  44. # Systemd Service Notifications - https://github.com/bb4242/sdnotify
  45. sd_notifier = sdnotify.SystemdNotifier()
  46. # Logging function
  47. def print_line(text, error = False, warning=False, sd_notify=False, console=True):
  48. timestamp = strftime('%Y-%m-%d %H:%M:%S', localtime())
  49. if console:
  50. if error:
  51. print(Fore.RED + Style.BRIGHT + '[{}] '.format(timestamp) + Style.RESET_ALL + '{}'.format(text) + Style.RESET_ALL, file=sys.stderr)
  52. elif warning:
  53. print(Fore.YELLOW + '[{}] '.format(timestamp) + Style.RESET_ALL + '{}'.format(text) + Style.RESET_ALL)
  54. else:
  55. print(Fore.GREEN + '[{}] '.format(timestamp) + Style.RESET_ALL + '{}'.format(text) + Style.RESET_ALL)
  56. timestamp_sd = strftime('%b %d %H:%M:%S', localtime())
  57. if sd_notify:
  58. sd_notifier.notify('STATUS={} - {}.'.format(timestamp_sd, unidecode(text)))
  59. # Identifier cleanup
  60. def clean_identifier(name):
  61. clean = name.strip()
  62. for this, that in [[' ', '-'], ['ä', 'ae'], ['Ä', 'Ae'], ['ö', 'oe'], ['Ö', 'Oe'], ['ü', 'ue'], ['Ü', 'Ue'], ['ß', 'ss']]:
  63. clean = clean.replace(this, that)
  64. clean = unidecode(clean)
  65. return clean
  66. # Eclipse Paho callbacks - http://www.eclipse.org/paho/clients/python/docs/#callbacks
  67. def on_connect(client, userdata, flags, rc):
  68. if rc == 0:
  69. print_line('MQTT connection established', console=True, sd_notify=True)
  70. print()
  71. else:
  72. print_line('Connection error with result code {} - {}'.format(str(rc), mqtt.connack_string(rc)), error=True)
  73. #kill main thread
  74. os._exit(1)
  75. def on_publish(client, userdata, mid):
  76. #print_line('Data successfully published.')
  77. pass
  78. def flores_to_openhab_items(flores, reporting_mode):
  79. print_line('Generating openHAB items. Copy to your configuration and modify as needed...')
  80. items = list()
  81. items.append('// miflora.items - Generated by miflora-mqtt-daemon.')
  82. items.append('// Adapt to your needs! Things you probably want to modify:')
  83. items.append('// Room group names, icons,')
  84. items.append('// "gAll", "broker", "UnknownRoom"')
  85. items.append('')
  86. items.append('// Mi Flora specific groups')
  87. items.append('Group gMiFlora "All Mi Flora sensors and elements" (gAll)')
  88. for param, param_properties in parameters.items():
  89. items.append('Group g{} "Mi Flora {} elements" (gAll, gMiFlora)'.format(param_properties['name'], param_properties['name_pretty']))
  90. if reporting_mode == 'mqtt-json':
  91. for [flora_name, flora] in flores.items():
  92. location = flora['location_clean'] if flora['location_clean'] else 'UnknownRoom'
  93. items.append('\n// Mi Flora "{}" ({})'.format(flora['name_pretty'], flora['mac']))
  94. items.append('Group g{}{} "Mi Flora Sensor {}" (gMiFlora, g{})'.format(location, flora_name, flora['name_pretty'], location))
  95. for [param, param_properties] in parameters.items():
  96. basic = 'Number {}_{}_{}'.format(location, flora_name, param_properties['name'])
  97. label = '"{} {} {} [{} {}]"'.format(location, flora['name_pretty'], param_properties['name_pretty'], param_properties['typeformat'], param_properties['unit'].replace('%', '%%'))
  98. details = '<text> (g{}{}, g{})'.format(location, flora_name, param_properties['name'])
  99. channel = '{{mqtt="<[broker:{}/{}:state:JSONPATH($.{})]"}}'.format(base_topic, flora_name, param)
  100. items.append(' '.join([basic, label, details, channel]))
  101. items.append('')
  102. print('\n'.join(items))
  103. #elif reporting_mode == 'mqtt-homie':
  104. else:
  105. raise IOError('Given reporting_mode not supported for the export to openHAB items')
  106. # Load configuration file
  107. config_dir = parse_args.config_dir
  108. config = ConfigParser(delimiters=('=', ), inline_comment_prefixes=('#'))
  109. config.optionxform = str
  110. try:
  111. with open(os.path.join(config_dir, 'config.ini')) as config_file:
  112. config.readfp(config_file)
  113. except IOError:
  114. print_line('No configuration file "config.ini"', error=True, sd_notify=True)
  115. sys.exit(1)
  116. reporting_mode = config['General'].get('reporting_method', 'mqtt-json')
  117. used_adapter = config['General'].get('adapter', 'hci0')
  118. daemon_enabled = config['Daemon'].getboolean('enabled', True)
  119. if reporting_mode == 'mqtt-homie':
  120. default_base_topic = 'homie'
  121. elif reporting_mode == 'homeassistant-mqtt':
  122. default_base_topic = 'homeassistant'
  123. elif reporting_mode == 'thingsboard-json':
  124. default_base_topic = 'v1/devices/me/telemetry'
  125. elif reporting_mode == 'wirenboard-mqtt':
  126. default_base_topic = ''
  127. else:
  128. default_base_topic = 'miflora'
  129. base_topic = config['MQTT'].get('base_topic', default_base_topic).lower()
  130. device_id = config['MQTT'].get('homie_device_id', 'miflora-mqtt-daemon').lower()
  131. sleep_period = config['Daemon'].getint('period', 300)
  132. miflora_cache_timeout = sleep_period - 1
  133. # Check configuration
  134. if reporting_mode not in ['mqtt-json', 'mqtt-homie', 'json', 'mqtt-smarthome', 'homeassistant-mqtt', 'thingsboard-json', 'wirenboard-mqtt']:
  135. print_line('Configuration parameter reporting_mode set to an invalid value', error=True, sd_notify=True)
  136. sys.exit(1)
  137. if not config['Sensors']:
  138. print_line('No sensors found in configuration file "config.ini"', error=True, sd_notify=True)
  139. sys.exit(1)
  140. if reporting_mode == 'wirenboard-mqtt' and base_topic:
  141. print_line('Parameter "base_topic" ignored for "reporting_method = wirenboard-mqtt"', warning=True, sd_notify=True)
  142. print_line('Configuration accepted', console=False, sd_notify=True)
  143. # MQTT connection
  144. if reporting_mode in ['mqtt-json', 'mqtt-homie', 'mqtt-smarthome', 'homeassistant-mqtt', 'thingsboard-json', 'wirenboard-mqtt']:
  145. print_line('Connecting to MQTT broker ...')
  146. mqtt_client = mqtt.Client()
  147. mqtt_client.on_connect = on_connect
  148. mqtt_client.on_publish = on_publish
  149. if reporting_mode == 'mqtt-json':
  150. mqtt_client.will_set('{}/$announce'.format(base_topic), payload='{}', retain=True)
  151. elif reporting_mode == 'mqtt-homie':
  152. mqtt_client.will_set('{}/{}/$online'.format(base_topic, device_id), payload='false', retain=True)
  153. elif reporting_mode == 'mqtt-smarthome':
  154. mqtt_client.will_set('{}/connected'.format(base_topic), payload='0', retain=True)
  155. if config['MQTT'].getboolean('tls', False):
  156. # According to the docs, setting PROTOCOL_SSLv23 "Selects the highest protocol version
  157. # that both the client and server support. Despite the name, this option can select
  158. # “TLS” protocols as well as “SSL”" - so this seems like a resonable default
  159. mqtt_client.tls_set(
  160. ca_certs=config['MQTT'].get('tls_ca_cert', None),
  161. keyfile=config['MQTT'].get('tls_keyfile', None),
  162. certfile=config['MQTT'].get('tls_certfile', None),
  163. tls_version=ssl.PROTOCOL_SSLv23
  164. )
  165. mqtt_username = os.environ.get("MQTT_USERNAME", config['MQTT'].get('username'))
  166. mqtt_password = os.environ.get("MQTT_PASSWORD", config['MQTT'].get('password', None))
  167. if mqtt_username:
  168. mqtt_client.username_pw_set(mqtt_username, mqtt_password)
  169. try:
  170. mqtt_client.connect(os.environ.get('MQTT_HOSTNAME', config['MQTT'].get('hostname', 'localhost')),
  171. port=int(os.environ.get('MQTT_PORT', config['MQTT'].get('port', '1883'))),
  172. keepalive=config['MQTT'].getint('keepalive', 60))
  173. except:
  174. print_line('MQTT connection error. Please check your settings in the configuration file "config.ini"', error=True, sd_notify=True)
  175. sys.exit(1)
  176. else:
  177. if reporting_mode == 'mqtt-smarthome':
  178. mqtt_client.publish('{}/connected'.format(base_topic), payload='1', retain=True)
  179. if reporting_mode != 'thingsboard-json':
  180. mqtt_client.loop_start()
  181. sleep(1.0) # some slack to establish the connection
  182. sd_notifier.notify('READY=1')
  183. # Initialize Mi Flora sensors
  184. flores = OrderedDict()
  185. for [name, mac] in config['Sensors'].items():
  186. if not re.match("[0-9a-f]{2}:[0-9a-f]{2}:[0-9a-f]{2}:[0-9a-f]{2}:[0-9a-f]{2}:[0-9a-f]{2}", mac.lower()):
  187. print_line('The MAC address "{}" seems to be in the wrong format. Please check your configuration'.format(mac), error=True, sd_notify=True)
  188. sys.exit(1)
  189. if '@' in name:
  190. name_pretty, location_pretty = name.split('@')
  191. else:
  192. name_pretty, location_pretty = name, ''
  193. name_clean = clean_identifier(name_pretty)
  194. location_clean = clean_identifier(location_pretty)
  195. flora = OrderedDict()
  196. print('Adding sensor to device list and testing connection ...')
  197. print('Name: "{}"'.format(name_pretty))
  198. # print_line('Attempting initial connection to Mi Flora sensor "{}" ({})'.format(name_pretty, mac), console=False, sd_notify=True)
  199. flora_poller = MiFloraPoller(mac=mac, backend=BluepyBackend, cache_timeout=miflora_cache_timeout, retries=3, adapter=used_adapter)
  200. flora['poller'] = flora_poller
  201. flora['name_pretty'] = name_pretty
  202. flora['mac'] = flora_poller._mac
  203. flora['refresh'] = sleep_period
  204. flora['location_clean'] = location_clean
  205. flora['location_pretty'] = location_pretty
  206. flora['stats'] = {"count": 0, "success": 0, "failure": 0}
  207. try:
  208. flora_poller.fill_cache()
  209. flora_poller.parameter_value(MI_LIGHT)
  210. flora['firmware'] = flora_poller.firmware_version()
  211. except (IOError, BluetoothBackendException, BTLEException, RuntimeError, BrokenPipeError) as e:
  212. print_line('Initial connection to Mi Flora sensor "{}" ({}) failed due to exception: {}'.format(name_pretty, mac, e), error=True, sd_notify=True)
  213. else:
  214. print('Internal name: "{}"'.format(name_clean))
  215. print('Device name: "{}"'.format(flora_poller.name()))
  216. print('MAC address: {}'.format(flora_poller._mac))
  217. print('Firmware: {}'.format(flora_poller.firmware_version()))
  218. print_line('Initial connection to Mi Flora sensor "{}" ({}) successful'.format(name_pretty, mac), sd_notify=True)
  219. if int(flora_poller.firmware_version().replace(".", "")) < 319:
  220. print_line('Mi Flora sensor with a firmware version before 3.1.9 is not supported. Please update now.'.format(name_pretty, mac), error=True, sd_notify=True)
  221. print()
  222. flores[name_clean] = flora
  223. # openHAB items generation
  224. if parse_args.gen_openhab:
  225. flores_to_openhab_items(flores, reporting_mode)
  226. sys.exit(0)
  227. # Discovery Announcement
  228. if reporting_mode == 'mqtt-json':
  229. print_line('Announcing Mi Flora devices to MQTT broker for auto-discovery ...')
  230. flores_info = dict()
  231. for [flora_name, flora] in flores.items():
  232. flora_info = {key: value for key, value in flora.items() if key not in ['poller', 'stats']}
  233. flora_info['topic'] = '{}/{}'.format(base_topic, flora_name)
  234. flores_info[flora_name] = flora_info
  235. mqtt_client.publish('{}/$announce'.format(base_topic), json.dumps(flores_info), retain=True)
  236. sleep(0.5) # some slack for the publish roundtrip and callback function
  237. print()
  238. elif reporting_mode == 'mqtt-homie':
  239. print_line('Announcing Mi Flora devices to MQTT broker for auto-discovery ...')
  240. mqtt_client.publish('{}/{}/$homie'.format(base_topic, device_id), '2.1.0-alpha', 1, True)
  241. mqtt_client.publish('{}/{}/$online'.format(base_topic, device_id), 'true', 1, True)
  242. mqtt_client.publish('{}/{}/$name'.format(base_topic, device_id), device_id, 1, True)
  243. mqtt_client.publish('{}/{}/$fw/version'.format(base_topic, device_id), flora['firmware'], 1, True)
  244. nodes_list = ','.join([flora_name for [flora_name, flora] in flores.items()])
  245. mqtt_client.publish('{}/{}/$nodes'.format(base_topic, device_id), nodes_list, 1, True)
  246. for [flora_name, flora] in flores.items():
  247. topic_path = '{}/{}/{}'.format(base_topic, device_id, flora_name)
  248. mqtt_client.publish('{}/$name'.format(topic_path), flora['name_pretty'], 1, True)
  249. mqtt_client.publish('{}/$type'.format(topic_path), 'miflora', 1, True)
  250. mqtt_client.publish('{}/$properties'.format(topic_path), 'battery,conductivity,light,moisture,temperature', 1, True)
  251. mqtt_client.publish('{}/battery/$settable'.format(topic_path), 'false', 1, True)
  252. mqtt_client.publish('{}/battery/$unit'.format(topic_path), 'percent', 1, True)
  253. mqtt_client.publish('{}/battery/$datatype'.format(topic_path), 'int', 1, True)
  254. mqtt_client.publish('{}/battery/$range'.format(topic_path), '0:100', 1, True)
  255. mqtt_client.publish('{}/conductivity/$settable'.format(topic_path), 'false', 1, True)
  256. mqtt_client.publish('{}/conductivity/$unit'.format(topic_path), 'µS/cm', 1, True)
  257. mqtt_client.publish('{}/conductivity/$datatype'.format(topic_path), 'int', 1, True)
  258. mqtt_client.publish('{}/conductivity/$range'.format(topic_path), '0:*', 1, True)
  259. mqtt_client.publish('{}/light/$settable'.format(topic_path), 'false', 1, True)
  260. mqtt_client.publish('{}/light/$unit'.format(topic_path), 'lux', 1, True)
  261. mqtt_client.publish('{}/light/$datatype'.format(topic_path), 'int', 1, True)
  262. mqtt_client.publish('{}/light/$range'.format(topic_path), '0:50000', 1, True)
  263. mqtt_client.publish('{}/moisture/$settable'.format(topic_path), 'false', 1, True)
  264. mqtt_client.publish('{}/moisture/$unit'.format(topic_path), 'percent', 1, True)
  265. mqtt_client.publish('{}/moisture/$datatype'.format(topic_path), 'int', 1, True)
  266. mqtt_client.publish('{}/moisture/$range'.format(topic_path), '0:100', 1, True)
  267. mqtt_client.publish('{}/temperature/$settable'.format(topic_path), 'false', 1, True)
  268. mqtt_client.publish('{}/temperature/$unit'.format(topic_path), '°C', 1, True)
  269. mqtt_client.publish('{}/temperature/$datatype'.format(topic_path), 'float', 1, True)
  270. mqtt_client.publish('{}/temperature/$range'.format(topic_path), '*', 1, True)
  271. sleep(0.5) # some slack for the publish roundtrip and callback function
  272. print()
  273. elif reporting_mode == 'homeassistant-mqtt':
  274. print_line('Announcing Mi Flora devices to MQTT broker for auto-discovery ...')
  275. for [flora_name, flora] in flores.items():
  276. state_topic = '{}/sensor/{}/state'.format(base_topic, flora_name.lower())
  277. for [sensor, params] in parameters.items():
  278. discovery_topic = 'homeassistant/sensor/{}/{}/config'.format(flora_name.lower(), sensor)
  279. payload = OrderedDict()
  280. payload['name'] = "{} {}".format(flora_name, sensor.title())
  281. payload['unique_id'] = "{}-{}".format(flora['mac'].lower().replace(":", ""), sensor)
  282. payload['unit_of_measurement'] = params['unit']
  283. if 'device_class' in params:
  284. payload['device_class'] = params['device_class']
  285. payload['state_topic'] = state_topic
  286. payload['value_template'] = "{{{{ value_json.{} }}}}".format(sensor)
  287. payload['device'] = {
  288. 'identifiers' : ["MiFlora{}".format(flora['mac'].lower().replace(":", ""))],
  289. 'connections' : [["mac", flora['mac'].lower()]],
  290. 'manufacturer' : 'Xiaomi',
  291. 'name' : flora_name,
  292. 'model' : 'MiFlora Plant Sensor (HHCCJCY01)',
  293. 'sw_version': flora['firmware']
  294. }
  295. mqtt_client.publish(discovery_topic, json.dumps(payload), 1, True)
  296. elif reporting_mode == 'wirenboard-mqtt':
  297. print_line('Announcing Mi Flora devices to MQTT broker for auto-discovery ...')
  298. for [flora_name, flora] in flores.items():
  299. mqtt_client.publish('/devices/{}/meta/name'.format(flora_name), flora_name, 1, True)
  300. topic_path = '/devices/{}/controls'.format(flora_name)
  301. mqtt_client.publish('{}/battery/meta/type'.format(topic_path), 'value', 1, True)
  302. mqtt_client.publish('{}/battery/meta/units'.format(topic_path), '%', 1, True)
  303. mqtt_client.publish('{}/conductivity/meta/type'.format(topic_path), 'value', 1, True)
  304. mqtt_client.publish('{}/conductivity/meta/units'.format(topic_path), 'µS/cm', 1, True)
  305. mqtt_client.publish('{}/light/meta/type'.format(topic_path), 'value', 1, True)
  306. mqtt_client.publish('{}/light/meta/units'.format(topic_path), 'lux', 1, True)
  307. mqtt_client.publish('{}/moisture/meta/type'.format(topic_path), 'rel_humidity', 1, True)
  308. mqtt_client.publish('{}/temperature/meta/type'.format(topic_path), 'temperature', 1, True)
  309. mqtt_client.publish('{}/timestamp/meta/type'.format(topic_path), 'text', 1, True)
  310. sleep(0.5) # some slack for the publish roundtrip and callback function
  311. print()
  312. print_line('Initialization complete, starting MQTT publish loop', console=False, sd_notify=True)
  313. # Sensor data retrieval and publication
  314. while True:
  315. for [flora_name, flora] in flores.items():
  316. data = dict()
  317. attempts = 2
  318. flora['poller']._cache = None
  319. flora['poller']._last_read = None
  320. flora['stats']['count'] = flora['stats']['count'] + 1
  321. print_line('Retrieving data from sensor "{}" ...'.format(flora['name_pretty']))
  322. while attempts != 0 and not flora['poller']._cache:
  323. try:
  324. flora['poller'].fill_cache()
  325. flora['poller'].parameter_value(MI_LIGHT)
  326. except (IOError, BluetoothBackendException, BTLEException, RuntimeError, BrokenPipeError) as e:
  327. attempts = attempts - 1
  328. if attempts > 0:
  329. if len(str(e)) > 0:
  330. print_line('Retrying due to exception: {}'.format(e), error=True)
  331. else:
  332. print_line('Retrying ...', warning=True)
  333. flora['poller']._cache = None
  334. flora['poller']._last_read = None
  335. if not flora['poller']._cache:
  336. flora['stats']['failure'] = flora['stats']['failure'] + 1
  337. print_line('Failed to retrieve data from Mi Flora sensor "{}" ({}), success rate: {:.0%}'.format(
  338. flora['name_pretty'], flora['mac'], flora['stats']['success']/flora['stats']['count']
  339. ), error = True, sd_notify = True)
  340. print()
  341. continue
  342. else:
  343. flora['stats']['success'] = flora['stats']['success'] + 1
  344. for param,_ in parameters.items():
  345. data[param] = flora['poller'].parameter_value(param)
  346. print_line('Result: {}'.format(json.dumps(data)))
  347. if reporting_mode == 'mqtt-json':
  348. print_line('Publishing to MQTT topic "{}/{}"'.format(base_topic, flora_name))
  349. mqtt_client.publish('{}/{}'.format(base_topic, flora_name), json.dumps(data))
  350. sleep(0.5) # some slack for the publish roundtrip and callback function
  351. elif reporting_mode == 'thingsboard-json':
  352. print_line('Publishing to MQTT topic "{}" username "{}"'.format(base_topic, flora_name))
  353. mqtt_client.username_pw_set(flora_name)
  354. mqtt_client.reconnect()
  355. sleep(1.0)
  356. mqtt_client.publish('{}'.format(base_topic), json.dumps(data))
  357. sleep(0.5) # some slack for the publish roundtrip and callback function
  358. elif reporting_mode == 'homeassistant-mqtt':
  359. print_line('Publishing to MQTT topic "{}/sensor/{}/state"'.format(base_topic, flora_name.lower()))
  360. mqtt_client.publish('{}/sensor/{}/state'.format(base_topic, flora_name.lower()), json.dumps(data))
  361. sleep(0.5) # some slack for the publish roundtrip and callback function
  362. elif reporting_mode == 'mqtt-homie':
  363. print_line('Publishing data to MQTT base topic "{}/{}/{}"'.format(base_topic, device_id, flora_name))
  364. for [param, value] in data.items():
  365. mqtt_client.publish('{}/{}/{}/{}'.format(base_topic, device_id, flora_name, param), value, 1, True)
  366. sleep(0.5) # some slack for the publish roundtrip and callback function
  367. elif reporting_mode == 'mqtt-smarthome':
  368. for [param, value] in data.items():
  369. print_line('Publishing data to MQTT topic "{}/status/{}/{}"'.format(base_topic, flora_name, param))
  370. payload = dict()
  371. payload['val'] = value
  372. payload['ts'] = int(round(time() * 1000))
  373. mqtt_client.publish('{}/status/{}/{}'.format(base_topic, flora_name, param), json.dumps(payload), retain=True)
  374. sleep(0.5) # some slack for the publish roundtrip and callback function
  375. elif reporting_mode == 'wirenboard-mqtt':
  376. for [param, value] in data.items():
  377. print_line('Publishing data to MQTT topic "/devices/{}/controls/{}"'.format(flora_name, param))
  378. mqtt_client.publish('/devices/{}/controls/{}'.format(flora_name, param), value, retain=True)
  379. mqtt_client.publish('/devices/{}/controls/{}'.format(flora_name, 'timestamp'), strftime('%Y-%m-%d %H:%M:%S', localtime()), retain=True)
  380. sleep(0.5) # some slack for the publish roundtrip and callback function
  381. elif reporting_mode == 'json':
  382. data['timestamp'] = strftime('%Y-%m-%d %H:%M:%S', localtime())
  383. data['name'] = flora_name
  384. data['name_pretty'] = flora['name_pretty']
  385. data['mac'] = flora['mac']
  386. data['firmware'] = flora['firmware']
  387. print('Data for "{}": {}'.format(flora_name, json.dumps(data)))
  388. else:
  389. raise NameError('Unexpected reporting_mode.')
  390. print()
  391. print_line('Status messages published', console=False, sd_notify=True)
  392. if daemon_enabled:
  393. print_line('Sleeping ({} seconds) ...'.format(sleep_period))
  394. sleep(sleep_period)
  395. print()
  396. else:
  397. print_line('Execution finished in non-daemon-mode', sd_notify=True)
  398. if reporting_mode == 'mqtt-json':
  399. mqtt_client.disconnect()
  400. break