mqtt_out.ino 11 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329
  1. float setTemp_lastPublished;
  2. float currSetTemp_lastPublished;
  3. int heatingMode_lastPublished;
  4. int preset_lastPublished;
  5. bool turnHeatingOn_lastPublished;
  6. void publishCurrentThermostatValues(bool force = false)
  7. {
  8. // most values are only published if changed
  9. // call publishCurrentThermostatValues(true); to force publishing an update
  10. char tmp_topic_out[50];
  11. char ch_valuebuf[7];
  12. updateCurrentHeatingModeName();
  13. updateCurrentPresetName();
  14. char logBuf[101];
  15. sprintf_P(logBuf, "%s: %s=%u, %s=%u, %s=%2.1f, %s=%2.1f", PGMStr_thermostat, PGMStr_heatingMode, heatingMode, PGMStr_preset, preset, PGMStr_setTemp, setTemp, PGMStr_currentSetTemp, currSetTemp);
  16. sendLog(logBuf, LOGLEVEL_INFO);
  17. if (force || !confBas.saveToMqttRetained || setTemp != setTemp_lastPublished)
  18. {
  19. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "setTemp");
  20. sprintf(ch_valuebuf, "%2.1f", setTemp);
  21. mqttclient.publish(tmp_topic_out, ch_valuebuf, confMqtt.mqtt_outRetain);
  22. if (confBas.saveToMqttRetained && setTemp != setTemp_lastPublished)
  23. {
  24. // MQTT retained save setTemp
  25. mqttclient.publish(mqtt_topic_in_setTemp, ch_valuebuf, true);
  26. char buf1[30];
  27. sprintf_P(buf1, "%s %s %2.1f", PGMStr_mqttRetainedSave, PGMStr_setTemp, setTemp);
  28. sendLog(buf1);
  29. }
  30. setTemp_lastPublished = setTemp;
  31. yield();
  32. }
  33. if (force || currSetTemp != currSetTemp_lastPublished || !confMqtt.mqtt_outRetain)
  34. {
  35. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "currSetTemp");
  36. sprintf(ch_valuebuf, "%2.1f", currSetTemp);
  37. mqttclient.publish(tmp_topic_out, ch_valuebuf, confMqtt.mqtt_outRetain);
  38. currSetTemp_lastPublished = currSetTemp;
  39. yield();
  40. }
  41. if (force || !confBas.saveToMqttRetained || heatingMode != heatingMode_lastPublished)
  42. {
  43. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "mode");
  44. char ch_heatingMode[3];
  45. sprintf(ch_heatingMode, "%d", heatingMode);
  46. mqttclient.publish(tmp_topic_out, ch_heatingMode, confMqtt.mqtt_outRetain);
  47. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "modeName");
  48. mqttclient.publish(tmp_topic_out, currentModeName, confMqtt.mqtt_outRetain);
  49. if (confBas.saveToMqttRetained && heatingMode != heatingMode_lastPublished)
  50. {
  51. // MQTT retained save setMode
  52. mqttclient.publish(mqtt_topic_in_setMode, ch_heatingMode, true);
  53. char buf1[30];
  54. sprintf_P(buf1, "%s %s %u", PGMStr_mqttRetainedSave, PGMStr_heatingMode, heatingMode);
  55. sendLog(buf1);
  56. }
  57. heatingMode_lastPublished = heatingMode;
  58. yield();
  59. }
  60. if (force || !confBas.saveToMqttRetained || preset != preset_lastPublished)
  61. {
  62. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "preset");
  63. char ch_preset[3];
  64. sprintf(ch_preset, "%d", preset);
  65. mqttclient.publish(tmp_topic_out, ch_preset, confMqtt.mqtt_outRetain);
  66. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "presetName");
  67. mqttclient.publish(tmp_topic_out, currentPresetName, confMqtt.mqtt_outRetain);
  68. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "presetHA");
  69. if (preset == 0)
  70. mqttclient.publish(tmp_topic_out, "none", confMqtt.mqtt_outRetain);
  71. else
  72. mqttclient.publish(tmp_topic_out, currentPresetName, confMqtt.mqtt_outRetain);
  73. if (confBas.saveToMqttRetained && preset != preset_lastPublished)
  74. {
  75. // MQTT retained save setPreset
  76. mqttclient.publish(mqtt_topic_in_setPreset, ch_preset, true);
  77. char buf1[30];
  78. sprintf_P(buf1, "%s %s %u", PGMStr_mqttRetainedSave, PGMStr_preset, preset);
  79. sendLog(buf1);
  80. }
  81. preset_lastPublished = preset;
  82. yield();
  83. }
  84. yield();
  85. // turnHeatingOn
  86. char ch_turnHeatingOn[5];
  87. unsigned int currOnOffTime;
  88. if (turnHeatingOn)
  89. {
  90. strcpy(ch_turnHeatingOn, "on");
  91. currOnOffTime = heatingOnTime;
  92. }
  93. else
  94. {
  95. strcpy(ch_turnHeatingOn, "off");
  96. currOnOffTime = heatingOffTime;
  97. }
  98. if (force || turnHeatingOn != turnHeatingOn_lastPublished)
  99. {
  100. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "heating");
  101. mqttclient.publish(tmp_topic_out, ch_turnHeatingOn, confMqtt.mqtt_outRetain);
  102. turnHeatingOn_lastPublished = turnHeatingOn;
  103. }
  104. //sendLog(F("heating ON"));
  105. //char logBuf[40];
  106. sprintf_P(logBuf, "%s: %s=%s (%s)", PGMStr_thermostat, PGMStr_heating, ch_turnHeatingOn, getTimeStringFromSeconds(currOnOffTime));
  107. sendLog(logBuf, LOGLEVEL_INFO);
  108. // END turnHeatingOn
  109. yield();
  110. //char buf[101];
  111. //sprintf(buf, "%lu", heatingOnTime);
  112. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "heatingOnTime");
  113. mqttclient.publish(tmp_topic_out, getTimeStringFromSeconds(heatingOnTime));
  114. yield();
  115. //sprintf(buf, "%lu", heatingOffTime);
  116. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "heatingOffTime");
  117. mqttclient.publish(tmp_topic_out, getTimeStringFromSeconds(heatingOffTime));
  118. yield();
  119. }
  120. float currTemp_lastPublished;
  121. int currHum_lastPublished;
  122. void publishCurrentSensorValues(bool force = false)
  123. {
  124. if (lastTempUpdate != 0 && (millis() - lastTempUpdate) < 120000)
  125. { // ensure values are not too old
  126. char tmp_topic_out[50];
  127. char temp_chararr[6];
  128. char hum_chararr[4];
  129. dtostrf(currTemp, 1, 1, temp_chararr);
  130. sprintf(hum_chararr, "%2i", currHum);
  131. // if (serialdebug)
  132. // {
  133. // Serial.print(F("sensors: {"));
  134. // Serial.print("'temp':");
  135. // Serial.print(temp_chararr);
  136. // }
  137. if (force || currTemp != currTemp_lastPublished)
  138. {
  139. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "temp");
  140. mqttclient.publish(tmp_topic_out, temp_chararr, confMqtt.mqtt_outRetain_sensors);
  141. currTemp_lastPublished = currTemp;
  142. yield();
  143. }
  144. // if (serialdebug)
  145. // {
  146. // Serial.print(F(",'hum':"));
  147. // Serial.print(currHum);
  148. // }
  149. if (force || currHum != currHum_lastPublished)
  150. {
  151. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "hum");
  152. mqttclient.publish(tmp_topic_out, hum_chararr, confMqtt.mqtt_outRetain_sensors);
  153. yield();
  154. }
  155. dtostrf(currTemp_raw, 1, 1, temp_chararr);
  156. sprintf(hum_chararr, "%2i", currHum_raw);
  157. // if (serialdebug)
  158. // {
  159. // Serial.print(F(",'temp_raw':"));
  160. // Serial.print(temp_chararr);
  161. // }
  162. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "temp_raw");
  163. mqttclient.publish(tmp_topic_out, temp_chararr);
  164. yield();
  165. // if (serialdebug)
  166. // {
  167. // Serial.print(F(",'hum_raw':"));
  168. // Serial.print(currHum_raw);
  169. // }
  170. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "hum_raw");
  171. mqttclient.publish(tmp_topic_out, hum_chararr);
  172. yield();
  173. // if (serialdebug)
  174. // Serial.println("}");
  175. char logBuf[101];
  176. sprintf_P(logBuf, "SENS: temp=%2.1f, hum=%u, tempRaw=%2.1f, humRaw=%u", currTemp, currHum, currTemp_raw, currHum_raw);
  177. sendLog(logBuf, LOGLEVEL_INFO);
  178. }
  179. }
  180. void publishCurrentPIRValue()
  181. {
  182. char tmp_topic_out[50];
  183. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "PIR");
  184. // PIR internal topic
  185. if (PIRSensorOn)
  186. {
  187. mqttclient.publish(tmp_topic_out, confAdd.mqtt_payload_pir_on);
  188. sendLog("SENS: PIR=ON", LOGLEVEL_INFO);
  189. }
  190. else
  191. {
  192. mqttclient.publish(tmp_topic_out, confAdd.mqtt_payload_pir_off);
  193. sendLog("SENS: PIR=OFF", LOGLEVEL_INFO);
  194. }
  195. // PIR additional topic
  196. if (strlen(confAdd.mqtt_topic_pir) >= 4)
  197. {
  198. if (PIRSensorOn)
  199. {
  200. mqttclient.publish(confAdd.mqtt_topic_pir, confAdd.mqtt_payload_pir_on);
  201. }
  202. else
  203. {
  204. mqttclient.publish(confAdd.mqtt_topic_pir, confAdd.mqtt_payload_pir_off);
  205. }
  206. }
  207. }
  208. void publishDeleteRetainedSavedStates()
  209. {
  210. // after "save states to MQTT retained" is switched off
  211. // old retained messages are deleted by publishing an empty retained message to the topics
  212. // to be called from config when confBas.saveToMqttRetained was changed to false
  213. if (!confBas.saveToMqttRetained)
  214. {
  215. mqttclient.publish(mqtt_topic_in_setTemp, "", true);
  216. mqttclient.publish(mqtt_topic_in_setMode, "", true);
  217. mqttclient.publish(mqtt_topic_in_setPreset, "", true);
  218. sendLog("MQTT: deleted retained saved states", LOGLEVEL_INFO);
  219. publishCurrentThermostatValues(true); // force publish current values again
  220. }
  221. }
  222. void publishDeleteRetainedOutMessages()
  223. {
  224. // after "MQTT-out retained" is switched off
  225. // old retained messages are deleted by publishing an empty retained message to the topics
  226. // to be called from config when confMqtt.mqtt_outRetain was changed to false
  227. if (!confMqtt.mqtt_outRetain)
  228. {
  229. char tmp_topic_out[50];
  230. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "setTemp");
  231. mqttclient.publish(tmp_topic_out, "", true);
  232. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "currSetTemp");
  233. mqttclient.publish(tmp_topic_out, "", true);
  234. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "mode");
  235. mqttclient.publish(tmp_topic_out, "", true);
  236. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "modeName");
  237. mqttclient.publish(tmp_topic_out, "", true);
  238. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "preset");
  239. mqttclient.publish(tmp_topic_out, "", true);
  240. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "presetName");
  241. mqttclient.publish(tmp_topic_out, "", true);
  242. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "presetHA");
  243. mqttclient.publish(tmp_topic_out, "", true);
  244. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "heating");
  245. mqttclient.publish(tmp_topic_out, "", true);
  246. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "heatingOnTime");
  247. mqttclient.publish(tmp_topic_out, "", true);
  248. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "heatingOffTime");
  249. mqttclient.publish(tmp_topic_out, "", true);
  250. sendLog("MQTT: deleted retained messages (states)", LOGLEVEL_INFO);
  251. publishCurrentThermostatValues(true); // force publish current values again
  252. }
  253. }
  254. void publishDeleteRetainedOutMessages_sensors()
  255. {
  256. // after "MQTT-out retained" is switched off
  257. // old retained messages are deleted by publishing an empty retained message to the topics
  258. // to be called from config when confMqtt.mqtt_outRetain was changed to false
  259. if (!confMqtt.mqtt_outRetain)
  260. {
  261. char tmp_topic_out[50];
  262. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "temp");
  263. mqttclient.publish(tmp_topic_out, "", true);
  264. sprintf(tmp_topic_out, "%s/%s", confMqtt.mqtt_topic_out, "hum");
  265. mqttclient.publish(tmp_topic_out, "", true);
  266. sendLog("MQTT: deleted retained messages (sensors)", LOGLEVEL_INFO);
  267. publishCurrentSensorValues(true); // force publish current values again
  268. }
  269. }