MqttClient.cpp 3.2 KB

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  1. #include <MqttClient.h>
  2. #include <TokenIterator.h>
  3. #include <UrlTokenBindings.h>
  4. #include <IntParsing.h>
  5. #include <ArduinoJson.h>
  6. #include <WiFiClient.h>
  7. MqttClient::MqttClient(Settings& settings, MiLightClient*& milightClient)
  8. : milightClient(milightClient),
  9. settings(settings)
  10. {
  11. String strDomain = settings.mqttServer();
  12. this->domain = new char[strDomain.length() + 1];
  13. strcpy(this->domain, strDomain.c_str());
  14. this->mqttClient = new PubSubClient(tcpClient);
  15. }
  16. MqttClient::~MqttClient() {
  17. mqttClient->disconnect();
  18. delete this->domain;
  19. }
  20. void MqttClient::begin() {
  21. #ifdef MQTT_DEBUG
  22. printf_P(
  23. PSTR("MqttClient - Connecting to: %s\nparsed:%s:%u\n"),
  24. settings._mqttServer.c_str(),
  25. settings.mqttServer().c_str(),
  26. settings.mqttPort()
  27. );
  28. #endif
  29. mqttClient->setServer(this->domain, settings.mqttPort());
  30. mqttClient->setCallback(
  31. [this](char* topic, byte* payload, int length) {
  32. this->publishCallback(topic, payload, length);
  33. }
  34. );
  35. reconnect();
  36. }
  37. bool MqttClient::connect() {
  38. char nameBuffer[30];
  39. sprintf_P(nameBuffer, PSTR("milight-hub-%u"), ESP.getChipId());
  40. #ifdef MQTT_DEBUG
  41. Serial.println(F("MqttClient - connecting"));
  42. #endif
  43. if (settings.mqttUsername.length() > 0) {
  44. return mqttClient->connect(
  45. nameBuffer,
  46. settings.mqttUsername.c_str(),
  47. settings.mqttPassword.c_str()
  48. );
  49. } else {
  50. return mqttClient->connect(nameBuffer);
  51. }
  52. }
  53. void MqttClient::reconnect() {
  54. if (! mqttClient->connected()) {
  55. if (connect()) {
  56. subscribe();
  57. } else {
  58. Serial.println(F("ERROR: Failed to connect to MQTT server"));
  59. }
  60. }
  61. }
  62. void MqttClient::handleClient() {
  63. reconnect();
  64. mqttClient->loop();
  65. }
  66. void MqttClient::subscribe() {
  67. String topic = settings.mqttTopicPattern;
  68. topic.replace(":device_id", "+");
  69. topic.replace(":group_id", "+");
  70. topic.replace(":device_type", "+");
  71. mqttClient->subscribe(topic.c_str());
  72. }
  73. void MqttClient::publishCallback(char* topic, byte* payload, int length) {
  74. uint16_t deviceId = 0;
  75. uint8_t groupId = 0;
  76. MiLightRadioConfig* config = &MilightRgbCctConfig;
  77. char cstrPayload[length + 1];
  78. cstrPayload[length] = 0;
  79. memcpy(cstrPayload, payload, sizeof(byte)*length);
  80. #ifdef MQTT_DEBUG
  81. printf_P(PSTR("MqttClient - Got message on topic: %s\n%s\n"), topic, cstrPayload);
  82. #endif
  83. char topicPattern[settings.mqttTopicPattern.length()];
  84. strcpy(topicPattern, settings.mqttTopicPattern.c_str());
  85. TokenIterator patternIterator(topicPattern, settings.mqttTopicPattern.length(), '/');
  86. TokenIterator topicIterator(topic, strlen(topic), '/');
  87. UrlTokenBindings tokenBindings(patternIterator, topicIterator);
  88. if (tokenBindings.hasBinding("device_id")) {
  89. deviceId = parseInt<uint16_t>(tokenBindings.get("device_id"));
  90. }
  91. if (tokenBindings.hasBinding("group_id")) {
  92. groupId = parseInt<uint16_t>(tokenBindings.get("group_id"));
  93. }
  94. if (tokenBindings.hasBinding("device_type")) {
  95. config = MiLightRadioConfig::fromString(tokenBindings.get("device_type"));
  96. }
  97. StaticJsonBuffer<400> buffer;
  98. JsonObject& obj = buffer.parseObject(cstrPayload);
  99. #ifdef MQTT_DEBUG
  100. printf_P(PSTR("MqttClient - device %04X, group %u\n"), deviceId, groupId);
  101. #endif
  102. milightClient->prepare(*config, deviceId, groupId);
  103. milightClient->update(obj);
  104. }