config.ino 11 KB

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  1. bool setConfig(char* param, char* value) {
  2. // sets the corresponding config variable for 'param' to new value
  3. // does not trigger saving to flash
  4. // does not distinguish between config and config2 as this is only split on flash and web-interface
  5. Serial.print("setConfig - '");
  6. Serial.print(param);
  7. Serial.print("' to '");
  8. Serial.print(value);
  9. Serial.println("'");
  10. if ( strcmp(param, "devName") == 0 ) {
  11. strlcpy(deviceName, value, 31);
  12. // deviceName[30] = '\0';
  13. }
  14. else if ( strcmp(param, "usedRelais") == 0 ) {
  15. usedRelaisCount = atoi(value);
  16. }
  17. else if ( strcmp(param, "usedButtons") == 0 ) {
  18. usedButtonsCount = atoi(value);
  19. }
  20. else if ( strcmp(param, "mqttHost") == 0 ) {
  21. strlcpy(mqtt_server, value, 41);
  22. //mqtt_server[40] = '\0';
  23. }
  24. else if ( strcmp(param, "mqttPort") == 0 ) {
  25. mqtt_port = atoi(value);
  26. }
  27. else if ( strcmp(param, "mqttUser") == 0 ) {
  28. strlcpy(mqtt_user, value, 31);
  29. }
  30. else if ( strcmp(param, "mqttPass") == 0 ) {
  31. strlcpy(mqtt_pass, value, 31);
  32. }
  33. else if ( strcmp(param, "willTop") == 0 ) {
  34. strlcpy(mqtt_willTopic, value, 51);
  35. }
  36. else if ( strcmp(param, "willQos") == 0 ) {
  37. mqtt_willQos = atoi(value);
  38. }
  39. else if ( strcmp(param, "willRet") == 0 ) {
  40. if (atoi(value) == 1) mqtt_willRetain = true;
  41. else mqtt_willRetain = false;
  42. }
  43. else if ( strcmp(param, "willMsg") == 0 ) {
  44. strlcpy(mqtt_willMsg, value, 31);
  45. }
  46. else if ( strcmp(param, "inTop") == 0 ) {
  47. strlcpy(mqtt_topic_in, value, 51);
  48. }
  49. else if ( strcmp(param, "outTop") == 0 ) {
  50. strlcpy(mqtt_topic_out, value, 51);
  51. }
  52. else if ( strcmp(param, "outTop_hold1") == 0 ) {
  53. strlcpy(mqtt_topic_out_hold_1, value, 51);
  54. }
  55. else if ( strcmp(param, "outTop_hold2") == 0 ) {
  56. strlcpy(mqtt_topic_out_hold_2, value, 51);
  57. }
  58. else if ( strcmp(param, "outTop_hold3") == 0 ) {
  59. strlcpy(mqtt_topic_out_hold_3, value, 51);
  60. }
  61. else if ( strcmp(param, "outPld_hold1") == 0 ) {
  62. Serial.print("set outPld_hold1");
  63. strlcpy(mqtt_payload_out_hold_1, value, 31);
  64. }
  65. else if ( strcmp(param, "outPld_hold2") == 0 ) {
  66. Serial.print("set outPld_hold2");
  67. strlcpy(mqtt_payload_out_hold_2, value, 31);
  68. }
  69. else if ( strcmp(param, "outPld_hold3") == 0 ) {
  70. Serial.print("set outPld_hold3");
  71. strlcpy(mqtt_payload_out_hold_3, value, 31);
  72. }
  73. else if ( strcmp(param, "domoIdx1") == 0 ) {
  74. domoticzIdx[0] = atoi(value);
  75. }
  76. else if ( strcmp(param, "domoIdx2") == 0 ) {
  77. domoticzIdx[1] = atoi(value);
  78. }
  79. else if ( strcmp(param, "domoIdx3") == 0 ) {
  80. domoticzIdx[2] = atoi(value);
  81. }
  82. else if ( strcmp(param, "domoOutTop") == 0 ) {
  83. strlcpy(domoticz_out_topic, value, 51);
  84. }
  85. else if ( strcmp(param, "impuls1") == 0 ) {
  86. relais_impulse[0] = atoi(value);
  87. }
  88. else if ( strcmp(param, "impuls2") == 0 ) {
  89. relais_impulse[1] = atoi(value);
  90. }
  91. else if ( strcmp(param, "impuls3") == 0 ) {
  92. relais_impulse[2] = atoi(value);
  93. }
  94. }
  95. void printConfig() {
  96. // prints current config vars to serial
  97. Serial.print("devName: ");
  98. Serial.println(deviceName);
  99. Serial.print("httpUser: ");
  100. Serial.println(http_user);
  101. Serial.print("httpPass: ");
  102. Serial.println(http_pass);
  103. Serial.print("mqttHost: ");
  104. Serial.println(mqtt_server);
  105. Serial.print("mqttPort: ");
  106. Serial.println(mqtt_port);
  107. Serial.print("mqttUser: ");
  108. Serial.println(mqtt_user);
  109. Serial.print("mqttPass: ");
  110. Serial.println(mqtt_pass);
  111. Serial.print("inTop: ");
  112. Serial.println(mqtt_topic_in);
  113. Serial.print("outTop: ");
  114. Serial.println(mqtt_topic_out);
  115. Serial.print("willTop: ");
  116. Serial.println(mqtt_willTopic);
  117. Serial.print("willQos: ");
  118. Serial.println(mqtt_willQos);
  119. Serial.print("willRet: ");
  120. Serial.println(mqtt_willRetain);
  121. Serial.print("willMsg: ");
  122. Serial.println(mqtt_willMsg);
  123. Serial.print("domoOutTop: ");
  124. Serial.println(domoticz_out_topic);
  125. Serial.print("usedRelais: ");
  126. Serial.println(usedRelaisCount);
  127. Serial.print("usedButtons: ");
  128. Serial.println(usedButtonsCount);
  129. Serial.print("outTop_hold1: ");
  130. Serial.println(mqtt_topic_out_hold_1);
  131. Serial.print("outTop_hold2: ");
  132. Serial.println(mqtt_topic_out_hold_2);
  133. Serial.print("outTop_hold3: ");
  134. Serial.println(mqtt_topic_out_hold_3);
  135. Serial.print("outPld_hold1: ");
  136. Serial.println(mqtt_payload_out_hold_1);
  137. Serial.print("outPld_hold2: ");
  138. Serial.println(mqtt_payload_out_hold_2);
  139. Serial.print("outPld_hold3: ");
  140. Serial.println(mqtt_payload_out_hold_3);
  141. Serial.print("domoIdx1: ");
  142. Serial.println(domoticzIdx[0]);
  143. Serial.print("domoIdx2: ");
  144. Serial.println(domoticzIdx[1]);
  145. Serial.print("domoIdx3: ");
  146. Serial.println(domoticzIdx[2]);
  147. Serial.print("impuls1: ");
  148. Serial.println(relais_impulse[0]);
  149. Serial.print("impuls2: ");
  150. Serial.println(relais_impulse[1]);
  151. Serial.print("impuls3: ");
  152. Serial.println(relais_impulse[2]);
  153. Serial.println();
  154. }
  155. bool loadConfig() { // loadConfig 1
  156. if (SPIFFS.exists("/config.json")) {
  157. File configFile = SPIFFS.open("/config.json", "r");
  158. if (!configFile) {
  159. Serial.println("ERR: Failed to open file /config.json");
  160. return false;
  161. }
  162. else {
  163. Serial.println("file /config.json opened");
  164. size_t size = configFile.size();
  165. Serial.print("file size: ");
  166. Serial.println(size);
  167. if (size > 800) {
  168. Serial.println("Config file size is too large");
  169. return false;
  170. }
  171. // Allocate a buffer to store contents of the file.
  172. std::unique_ptr<char[]> buf(new char[size]);
  173. // We don't use String here because ArduinoJson library requires the input
  174. // buffer to be mutable. If you don't use ArduinoJson, you may as well
  175. // use configFile.readString instead.
  176. configFile.readBytes(buf.get(), size);
  177. StaticJsonBuffer<810> jsonBuffer;
  178. JsonObject& json = jsonBuffer.parseObject(buf.get());
  179. if (!json.success()) {
  180. Serial.println("Failed to parse config file");
  181. return false;
  182. }
  183. strlcpy(deviceName, json["devName"], 31);
  184. strlcpy(http_user, json["httpUser"], 31);
  185. strlcpy(http_pass, json["httpPass"], 31);
  186. strlcpy(mqtt_server, json["mqttHost"], 41);
  187. mqtt_port = atoi(json["mqttPort"]);
  188. strlcpy(mqtt_user, json["mqttUser"], 31);
  189. strlcpy(mqtt_pass, json["mqttPass"], 31);
  190. strlcpy(mqtt_topic_in, json["inTop"], 51);
  191. strlcpy(mqtt_topic_out, json["outTop"], 51);
  192. strlcpy(mqtt_willTopic, json["willTop"], 51);
  193. mqtt_willQos = atoi(json["willQos"]);
  194. if (atoi(json["willRet"]) == 1) mqtt_willRetain = true;
  195. else mqtt_willRetain = false;
  196. strlcpy(mqtt_willMsg, json["willMsg"], 31);
  197. strlcpy(domoticz_out_topic, json["domoOutTop"], 51);
  198. Serial.println("Loaded config values:");
  199. printConfig();
  200. return true;
  201. }
  202. }
  203. else {
  204. Serial.println("file /config.json file does not exist");
  205. return false;
  206. }
  207. } // loadConfig 1
  208. bool loadConfig2() {
  209. if (SPIFFS.exists("/config2.json")) {
  210. File configFile = SPIFFS.open("/config2.json", "r");
  211. if (!configFile) {
  212. Serial.println("ERR: Failed to open file /config2.json");
  213. return false;
  214. }
  215. else {
  216. Serial.println("file /config2.json opened");
  217. size_t size = configFile.size();
  218. Serial.print("file size: ");
  219. Serial.println(size);
  220. if (size > 1195) {
  221. Serial.println("Config file size is too large");
  222. return false;
  223. }
  224. // Allocate a buffer to store contents of the file.
  225. std::unique_ptr<char[]> buf(new char[size]);
  226. // We don't use String here because ArduinoJson library requires the input
  227. // buffer to be mutable. If you don't use ArduinoJson, you may as well
  228. // use configFile.readString instead.
  229. configFile.readBytes(buf.get(), size);
  230. StaticJsonBuffer<810> jsonBuffer;
  231. JsonObject& json = jsonBuffer.parseObject(buf.get());
  232. if (!json.success()) {
  233. Serial.println("Failed to parse config file");
  234. return false;
  235. }
  236. usedRelaisCount = atoi(json["usedRelais"]);
  237. usedButtonsCount = atoi(json["usedButtons"]);
  238. strlcpy(mqtt_topic_out_hold_1, json["outTop_hold1"], 51);
  239. strlcpy(mqtt_topic_out_hold_2, json["outTop_hold2"], 51);
  240. strlcpy(mqtt_topic_out_hold_3, json["outTop_hold3"], 51);
  241. strlcpy(mqtt_payload_out_hold_1, json["outPld_hold1"], 31);
  242. strlcpy(mqtt_payload_out_hold_2, json["outPld_hold2"], 31);
  243. strlcpy(mqtt_payload_out_hold_3, json["outPld_hold3"], 31);
  244. domoticzIdx[0] = atoi(json["domoIdx1"]);
  245. domoticzIdx[1] = atoi(json["domoIdx2"]);
  246. domoticzIdx[2] = atoi(json["domoIdx3"]);
  247. relais_impulse[0] = atoi(json["impuls1"]);
  248. relais_impulse[1] = atoi(json["impuls2"]);
  249. relais_impulse[2] = atoi(json["impuls3"]);
  250. Serial.println("Loaded config values:");
  251. printConfig();
  252. return true;
  253. }
  254. }
  255. else {
  256. Serial.println("file /config2.json file does not exist");
  257. return false;
  258. }
  259. }
  260. bool saveConfig() { // safeConfig
  261. StaticJsonBuffer<810> jsonBuffer;
  262. JsonObject& json = jsonBuffer.createObject();
  263. json["devName"] = deviceName;
  264. json["httpUser"] = http_user;
  265. json["httpPass"] = http_pass;
  266. json["mqttHost"] = mqtt_server;
  267. json["mqttPort"] = mqtt_port;
  268. json["mqttUser"] = mqtt_user;
  269. json["mqttPass"] = mqtt_pass;
  270. json["willTop"] = mqtt_willTopic;
  271. json["willQos"] = mqtt_willQos;
  272. json["willRet"] = mqtt_willRetain;
  273. json["willMsg"] = mqtt_willMsg;
  274. json["inTop"] = mqtt_topic_in;
  275. json["outTop"] = mqtt_topic_out;
  276. File configFile = SPIFFS.open("/config.json", "w");
  277. if (!configFile) {
  278. Serial.println("Failed to open config file for writing");
  279. return false;
  280. }
  281. json.printTo(configFile);
  282. return true;
  283. } // safeConfig
  284. bool saveConfig2() { // safeConfig2
  285. StaticJsonBuffer<810> jsonBuffer;
  286. JsonObject& json = jsonBuffer.createObject();
  287. json["usedRelais"] = usedRelaisCount;
  288. json["usedButtons"] = usedButtonsCount;
  289. json["outTop_hold1"] = mqtt_topic_out_hold_1;
  290. json["outTop_hold2"] = mqtt_topic_out_hold_2;
  291. json["outTop_hold3"] = mqtt_topic_out_hold_3;
  292. json["outPld_hold1"] = mqtt_payload_out_hold_1;
  293. json["outPld_hold2"] = mqtt_payload_out_hold_2;
  294. json["outPld_hold3"] = mqtt_payload_out_hold_3;
  295. json["domoIdx1"] = domoticzIdx[0];
  296. json["domoIdx2"] = domoticzIdx[1];
  297. json["domoIdx3"] = domoticzIdx[2];
  298. json["domoOutTop"] = domoticz_out_topic;
  299. json["impuls1"] = relais_impulse[0];
  300. json["impuls2"] = relais_impulse[1];
  301. json["impuls3"] = relais_impulse[2];
  302. File configFile = SPIFFS.open("/config2.json", "w");
  303. if (!configFile) {
  304. Serial.println("Failed to open config2 file for writing");
  305. return false;
  306. }
  307. json.printTo(configFile);
  308. return true;
  309. } // safeConfig2
  310. void checkSaveConfigTriggered() {
  311. if (saveConfigToFlash) {
  312. saveConfigToFlash = false;
  313. saveConfig();
  314. }
  315. if (saveConfig2ToFlash) {
  316. saveConfig2ToFlash = false;
  317. saveConfig2();
  318. }
  319. }