Version 1.4

Added support nRF24 devices via RF Gateway.
This commit is contained in:
Alexey Zholtikov 2023-02-12 16:38:54 +03:00
parent 7a74c4f2df
commit 15472ab36b
2 changed files with 75 additions and 12 deletions

View File

@ -47,7 +47,7 @@ ESP32 (GPIO05 - CS, GPIO18 - SCK, GPIO19 - MISO, GPIO23 - MOSI).
## Supported devices
1. [RF Gateway](https://github.com/aZholtikov/RF-Gateway) (coming soon)
1. [RF Gateway](https://github.com/aZholtikov/RF-Gateway)
2. [ESP-NOW Switch](https://github.com/aZholtikov/ESP-NOW-Switch)
3. [ESP-NOW Light/Led Strip](https://github.com/aZholtikov/ESP-NOW-Light-Led-Strip)
4. [ESP-NOW Window/Door Sensor](https://github.com/aZholtikov/ESP-NOW-Window-Door-Sensor)
@ -57,8 +57,8 @@ ESP32 (GPIO05 - CS, GPIO18 - SCK, GPIO19 - MISO, GPIO23 - MOSI).
- [X] Automatically add ESP-NOW devices configurations to Home Assistan via MQTT discovery.
- [X] LAN connection support.
- [ ] nRF24 device support (in current time uses "RF Gateway").
- [ ] BLE device support (for ESP32).
- [ ] LoRa device support.
- [X] nRF24 device support (via [RF Gateway](https://github.com/aZholtikov/RF-Gateway)).
- [ ] BLE device support (via BLE Gateway).
- [ ] LoRa device support (via LoRa Gateway).
Any feedback via [e-mail](mailto:github@zh.com.ru) would be appreciated. Or... [Buy me a coffee](https://paypal.me/aZholtikov).

View File

@ -42,7 +42,7 @@ void checkMqttAvailability(void);
void mqttPublish(const char *topic, const char *payload, bool retained);
const String firmware{"1.3"};
const String firmware{"1.4"};
String espnowNetName{"DEFAULT"};
@ -228,7 +228,6 @@ void onEspnowMessage(const char *data, const uint8_t *sender)
StaticJsonDocument<sizeof(esp_now_payload_data_t::message)> json;
deserializeJson(json, configData.message);
uint8_t unit = json["unit"].as<uint8_t>();
ha_component_type_t type = json["type"].as<ha_component_type_t>();
StaticJsonDocument<2048> jsonConfig;
jsonConfig["platform"] = "mqtt";
jsonConfig["name"] = json["name"];
@ -245,7 +244,7 @@ void onEspnowMessage(const char *data, const uint8_t *sender)
jsonConfig["retain"] = "true";
char buffer[2048]{0};
serializeJsonPretty(jsonConfig, buffer);
mqttPublish((topicPrefix + "/" + getValueName(type) + "/" + myNet.macToString(sender) + "-" + unit + "/config").c_str(), buffer, true);
mqttPublish((topicPrefix + "/" + getValueName(json["type"].as<ha_component_type_t>()) + "/" + myNet.macToString(sender) + "-" + unit + "/config").c_str(), buffer, true);
}
if (incomingData.deviceType == ENDT_LED)
{
@ -254,7 +253,6 @@ void onEspnowMessage(const char *data, const uint8_t *sender)
StaticJsonDocument<sizeof(esp_now_payload_data_t::message)> json;
deserializeJson(json, configData.message);
uint8_t unit = json["unit"].as<uint8_t>();
ha_component_type_t type = json["type"].as<ha_component_type_t>();
esp_now_led_type_t ledClass = json["class"];
StaticJsonDocument<2048> jsonConfig;
jsonConfig["platform"] = "mqtt";
@ -286,7 +284,7 @@ void onEspnowMessage(const char *data, const uint8_t *sender)
jsonConfig["retain"] = "true";
char buffer[2048]{0};
serializeJsonPretty(jsonConfig, buffer);
mqttPublish((topicPrefix + "/" + getValueName(type) + "/" + myNet.macToString(sender) + "-" + unit + "/config").c_str(), buffer, true);
mqttPublish((topicPrefix + "/" + getValueName(json["type"].as<ha_component_type_t>()) + "/" + myNet.macToString(sender) + "-" + unit + "/config").c_str(), buffer, true);
}
if (incomingData.deviceType == ENDT_SENSOR)
{
@ -309,14 +307,78 @@ void onEspnowMessage(const char *data, const uint8_t *sender)
jsonConfig["device_class"] = getValueName(json["class"].as<ha_sensor_device_class_t>());
if (type == HACT_BINARY_SENSOR)
{
jsonConfig["device_class"] = getValueName(json["class"].as<ha_binary_sensor_device_class_t>());
ha_binary_sensor_device_class_t deviceClass = json["class"].as<ha_binary_sensor_device_class_t>();
if (deviceClass == HABSDC_BATTERY || deviceClass == HABSDC_WINDOW || deviceClass == HABSDC_DOOR)
jsonConfig["payload_off"] = json["payload_off"];
if (deviceClass == HABSDC_CONNECTIVITY)
jsonConfig["expire_after"] = json["expire_after"];
jsonConfig["device_class"] = getValueName(deviceClass);
jsonConfig["payload_on"] = json["payload_on"];
jsonConfig["payload_off"] = json["payload_off"];
}
char buffer[2048]{0};
serializeJsonPretty(jsonConfig, buffer);
mqttPublish((topicPrefix + "/" + getValueName(type) + "/" + myNet.macToString(sender) + "-" + unit + "/config").c_str(), buffer, true);
}
if (incomingData.deviceType == ENDT_RF_SENSOR)
{
esp_now_payload_data_t configData;
memcpy(&configData.message, &incomingData.message, sizeof(esp_now_payload_data_t::message));
StaticJsonDocument<sizeof(esp_now_payload_data_t::message)> json;
deserializeJson(json, configData.message);
uint8_t unit = json["u"].as<uint8_t>();
ha_component_type_t type = json["t"].as<ha_component_type_t>();
rf_sensor_type_t rf = json["r"].as<rf_sensor_type_t>();
uint16_t id = json["i"].as<uint16_t>();
String tmp = json["v"].as<String>();
StaticJsonDocument<2048> jsonConfig;
jsonConfig["platform"] = "mqtt";
jsonConfig["name"] = getValueName(rf) + " " + id + " " + tmp;
jsonConfig["unique_id"] = String(id) + "-" + unit;
jsonConfig["state_topic"] = topicPrefix + "/rf_sensor/" + getValueName(rf) + "/" + id + "/state";
jsonConfig["value_template"] = "{{ value_json." + tmp + " }}";
if (type == HACT_SENSOR)
{
jsonConfig["device_class"] = getValueName(json["h"].as<ha_sensor_device_class_t>());
jsonConfig["unit_of_measurement"] = json["m"];
jsonConfig["expire_after"] = json["e"];
}
if (type == HACT_BINARY_SENSOR)
{
ha_binary_sensor_device_class_t deviceClass = json["h"].as<ha_binary_sensor_device_class_t>();
if (deviceClass == HABSDC_MOISTURE)
jsonConfig["expire_after"] = json["e"];
jsonConfig["device_class"] = getValueName(deviceClass);
jsonConfig["payload_on"] = json["o"];
jsonConfig["payload_off"] = json["f"];
}
jsonConfig["force_update"] = "true";
jsonConfig["retain"] = "true";
char buffer[2048]{0};
serializeJsonPretty(jsonConfig, buffer);
mqttPublish((topicPrefix + "/" + getValueName(type) + "/" + id + "-" + unit + "/config").c_str(), buffer, true);
}
if (incomingData.deviceType == ENDT_RF_GATEWAY)
{
esp_now_payload_data_t configData;
memcpy(&configData.message, &incomingData.message, sizeof(esp_now_payload_data_t::message));
StaticJsonDocument<sizeof(esp_now_payload_data_t::message)> json;
deserializeJson(json, configData.message);
uint8_t unit = json["unit"].as<uint8_t>();
StaticJsonDocument<2048> jsonConfig;
jsonConfig["platform"] = "mqtt";
jsonConfig["name"] = json["name"];
jsonConfig["unique_id"] = myNet.macToString(sender) + "-" + unit;
jsonConfig["device_class"] = getValueName(json["class"].as<ha_binary_sensor_device_class_t>());
jsonConfig["state_topic"] = topicPrefix + "/" + getValueName(incomingData.deviceType) + "/" + myNet.macToString(sender) + "/status";
jsonConfig["json_attributes_topic"] = topicPrefix + "/" + getValueName(incomingData.deviceType) + "/" + myNet.macToString(sender) + "/attributes";
jsonConfig["payload_on"] = json["payload_on"];
jsonConfig["expire_after"] = json["expire_after"];
jsonConfig["force_update"] = "true";
jsonConfig["retain"] = "true";
char buffer[2048]{0};
serializeJsonPretty(jsonConfig, buffer);
mqttPublish((topicPrefix + "/" + getValueName(json["type"].as<ha_component_type_t>()) + "/" + myNet.macToString(sender) + "-" + unit + "/config").c_str(), buffer, true);
}
}
if (incomingData.payloadsType == ENPT_FORWARD)
{
@ -324,7 +386,8 @@ void onEspnowMessage(const char *data, const uint8_t *sender)
memcpy(&forwardData.message, &incomingData.message, sizeof(esp_now_payload_data_t::message));
StaticJsonDocument<sizeof(esp_now_payload_data_t::message)> json;
deserializeJson(json, forwardData.message);
mqttPublish((topicPrefix + "/rf_sensor/" + getValueName(json["type"].as<rf_sensor_type_t>()) + "/" + json["id"].as<uint16_t>()).c_str(), incomingData.message, false);
if (incomingData.deviceType == ENDT_RF_GATEWAY)
mqttPublish((topicPrefix + "/rf_sensor/" + getValueName(json["type"].as<rf_sensor_type_t>()) + "/" + json["id"].as<uint16_t>() + "/state").c_str(), incomingData.message, false);
}
}