interface_mqtt.cpp 7.9 KB

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  1. #include "interface_mqtt.h"
  2. //#define LOG_LOCAL_LEVEL ESP_LOG_DEBUG
  3. #include "esp_log.h"
  4. #include "mqtt_client.h"
  5. #include "ClassLogFile.h"
  6. static const char *TAG_INTERFACEMQTT = "interface_mqtt";
  7. std::map<std::string, std::function<void()>>* connectFunktionMap = NULL;
  8. std::map<std::string, std::function<bool(std::string, char*, int)>>* subscribeFunktionMap = NULL;
  9. bool debugdetail = true;
  10. // #define CONFIG_BROKER_URL "mqtt://192.168.178.43:1883"
  11. esp_mqtt_event_id_t esp_mmqtt_ID = MQTT_EVENT_ANY;
  12. bool mqtt_connected = false;
  13. esp_mqtt_client_handle_t client = NULL;
  14. void MQTTPublish(std::string _key, std::string _content, int retained_flag){
  15. if (client && mqtt_connected) {
  16. int msg_id;
  17. std::string zw;
  18. msg_id = esp_mqtt_client_publish(client, _key.c_str(), _content.c_str(), 0, 1, retained_flag);
  19. zw = "sent publish successful in MQTTPublish, msg_id=" + std::to_string(msg_id) + ", " + _key + ", " + _content;
  20. if (debugdetail) LogFile.WriteToFile(zw);
  21. ESP_LOGD(TAG_INTERFACEMQTT, "sent publish successful in MQTTPublish, msg_id=%d, %s, %s", msg_id, _key.c_str(), _content.c_str());
  22. }
  23. else {
  24. ESP_LOGW(TAG_INTERFACEMQTT, "Problem with Publish, client=%d, mqtt_connected %d", (int) client, (int) mqtt_connected);
  25. }
  26. }
  27. static esp_err_t mqtt_event_handler_cb(esp_mqtt_event_handle_t event)
  28. {
  29. int msg_id;
  30. std::string topic = "";
  31. switch (event->event_id) {
  32. case MQTT_EVENT_BEFORE_CONNECT:
  33. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_BEFORE_CONNECT");
  34. break;
  35. case MQTT_EVENT_CONNECTED:
  36. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_CONNECTED");
  37. mqtt_connected = true;
  38. MQTTconnected();
  39. break;
  40. case MQTT_EVENT_DISCONNECTED:
  41. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_DISCONNECTED");
  42. break;
  43. case MQTT_EVENT_SUBSCRIBED:
  44. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_SUBSCRIBED, msg_id=%d", event->msg_id);
  45. msg_id = esp_mqtt_client_publish(client, "/topic/qos0", "data", 0, 0, 0);
  46. ESP_LOGI(TAG_INTERFACEMQTT, "sent publish successful, msg_id=%d", msg_id);
  47. break;
  48. case MQTT_EVENT_UNSUBSCRIBED:
  49. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_UNSUBSCRIBED, msg_id=%d", event->msg_id);
  50. break;
  51. case MQTT_EVENT_PUBLISHED:
  52. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_PUBLISHED, msg_id=%d", event->msg_id);
  53. break;
  54. case MQTT_EVENT_DATA:
  55. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_DATA");
  56. ESP_LOGI(TAG_INTERFACEMQTT, "TOPIC=%.*s\r\n", event->topic_len, event->topic);
  57. ESP_LOGI(TAG_INTERFACEMQTT, "DATA=%.*s\r\n", event->data_len, event->data);
  58. topic.assign(event->topic, event->topic_len);
  59. if (subscribeFunktionMap != NULL) {
  60. if (subscribeFunktionMap->find(topic) != subscribeFunktionMap->end()) {
  61. ESP_LOGD(TAG_INTERFACEMQTT, "call handler function\r\n");
  62. (*subscribeFunktionMap)[topic](topic, event->data, event->data_len);
  63. }
  64. } else {
  65. ESP_LOGW(TAG_INTERFACEMQTT, "no handler available\r\n");
  66. }
  67. break;
  68. case MQTT_EVENT_ERROR:
  69. ESP_LOGI(TAG_INTERFACEMQTT, "MQTT_EVENT_ERROR");
  70. break;
  71. default:
  72. ESP_LOGI(TAG_INTERFACEMQTT, "Other event id:%d", event->event_id);
  73. break;
  74. }
  75. return ESP_OK;
  76. }
  77. static void mqtt_event_handler(void *handler_args, esp_event_base_t base, int32_t event_id, void *event_data) {
  78. ESP_LOGD(TAG_INTERFACEMQTT, "Event dispatched from event loop base=%s, event_id=%d", base, event_id);
  79. mqtt_event_handler_cb((esp_mqtt_event_handle_t) event_data);
  80. }
  81. void MQTTInit(std::string _mqttURI, std::string _clientid, std::string _user, std::string _password, std::string _LWTContext, int _keepalive){
  82. std::string _zwmessage = "connection lost";
  83. int _lzw = _zwmessage.length();
  84. esp_mqtt_client_config_t mqtt_cfg = {
  85. .uri = _mqttURI.c_str(),
  86. .client_id = _clientid.c_str(),
  87. .lwt_topic = _LWTContext.c_str(),
  88. .lwt_msg = _zwmessage.c_str(),
  89. .lwt_retain = 1,
  90. .lwt_msg_len = _lzw,
  91. .keepalive = _keepalive
  92. };
  93. if (_user.length() && _password.length()){
  94. mqtt_cfg.username = _user.c_str();
  95. mqtt_cfg.password = _password.c_str();
  96. ESP_LOGI(TAG_INTERFACEMQTT, "Connect to MQTT: %s, %s", mqtt_cfg.username, mqtt_cfg.password);
  97. };
  98. client = esp_mqtt_client_init(&mqtt_cfg);
  99. esp_mqtt_client_register_event(client, esp_mmqtt_ID, mqtt_event_handler, client);
  100. esp_mqtt_client_start(client);
  101. MQTTPublish(_LWTContext, "", 1);
  102. }
  103. void MQTTdestroy() {
  104. if (client != NULL) {
  105. esp_mqtt_client_stop(client);
  106. esp_mqtt_client_destroy(client);
  107. }
  108. }
  109. bool MQTTisConnected() {
  110. return mqtt_connected;
  111. }
  112. void MQTTregisterConnectFunction(std::string name, std::function<void()> func){
  113. ESP_LOGD(TAG_INTERFACEMQTT, "MQTTregisteronnectFunction %s\r\n", name.c_str());
  114. if (connectFunktionMap == NULL) {
  115. connectFunktionMap = new std::map<std::string, std::function<void()>>();
  116. }
  117. if ((*connectFunktionMap)[name] != NULL) {
  118. ESP_LOGW(TAG_INTERFACEMQTT, "connect function %s already registred", name.c_str());
  119. return;
  120. }
  121. (*connectFunktionMap)[name] = func;
  122. if (mqtt_connected) {
  123. func();
  124. }
  125. }
  126. void MQTTunregisterConnectFunction(std::string name){
  127. ESP_LOGD(TAG_INTERFACEMQTT, "MQTTregisteronnectFunction %s\r\n", name.c_str());
  128. if ((connectFunktionMap != NULL) && (connectFunktionMap->find(name) != connectFunktionMap->end())) {
  129. connectFunktionMap->erase(name);
  130. }
  131. }
  132. void MQTTregisterSubscribeFunction(std::string topic, std::function<bool(std::string, char*, int)> func){
  133. ESP_LOGD(TAG_INTERFACEMQTT, "MQTTregisterSubscribeFunction %s\r\n", topic.c_str());
  134. if (subscribeFunktionMap == NULL) {
  135. subscribeFunktionMap = new std::map<std::string, std::function<bool(std::string, char*, int)>>();
  136. }
  137. if ((*subscribeFunktionMap)[topic] != NULL) {
  138. ESP_LOGW(TAG_INTERFACEMQTT, "topic %s already registred for subscription", topic.c_str());
  139. return;
  140. }
  141. (*subscribeFunktionMap)[topic] = func;
  142. if (mqtt_connected) {
  143. int msg_id = esp_mqtt_client_subscribe(client, topic.c_str(), 0);
  144. ESP_LOGD(TAG_INTERFACEMQTT, "topic %s subscribe successful, msg_id=%d", topic.c_str(), msg_id);
  145. }
  146. }
  147. void MQTTconnected(){
  148. if (mqtt_connected) {
  149. if (connectFunktionMap != NULL) {
  150. for(std::map<std::string, std::function<void()>>::iterator it = connectFunktionMap->begin(); it != connectFunktionMap->end(); ++it) {
  151. it->second();
  152. ESP_LOGD(TAG_INTERFACEMQTT, "call connect function %s", it->first.c_str());
  153. }
  154. }
  155. if (subscribeFunktionMap != NULL) {
  156. for(std::map<std::string, std::function<bool(std::string, char*, int)>>::iterator it = subscribeFunktionMap->begin(); it != subscribeFunktionMap->end(); ++it) {
  157. int msg_id = esp_mqtt_client_subscribe(client, it->first.c_str(), 0);
  158. ESP_LOGD(TAG_INTERFACEMQTT, "topic %s subscribe successful, msg_id=%d", it->first.c_str(), msg_id);
  159. }
  160. }
  161. }
  162. }
  163. void MQTTdestroySubscribeFunction(){
  164. if (subscribeFunktionMap != NULL) {
  165. if (mqtt_connected) {
  166. for(std::map<std::string, std::function<bool(std::string, char*, int)>>::iterator it = subscribeFunktionMap->begin(); it != subscribeFunktionMap->end(); ++it) {
  167. int msg_id = esp_mqtt_client_unsubscribe(client, it->first.c_str());
  168. ESP_LOGI(TAG_INTERFACEMQTT, "topic %s unsubscribe successful, msg_id=%d", it->first.c_str(), msg_id);
  169. }
  170. }
  171. subscribeFunktionMap->clear();
  172. delete subscribeFunktionMap;
  173. subscribeFunktionMap = NULL;
  174. }
  175. }