#pragma once #include "esphome/core/component.h" #include "esphome/components/ble_client/ble_client.h" #include "esphome/components/esp32_ble_tracker/esp32_ble_tracker.h" #include "esphome/components/sensor/sensor.h" #ifdef USE_ESP32 #include namespace esphome { namespace alpha3 { namespace espbt = esphome::esp32_ble_tracker; static const espbt::ESPBTUUID ALPHA3_GENI_SERVICE_UUID = espbt::ESPBTUUID::from_uint16(0xfe5d); static const espbt::ESPBTUUID ALPHA3_GENI_CHARACTERISTIC_UUID = espbt::ESPBTUUID::from_raw({static_cast(0xa9), 0x7b, static_cast(0xb8), static_cast(0x85), 0x0, 0x1a, 0x28, static_cast(0xaa), 0x2a, 0x43, 0x6e, 0x3, static_cast(0xd1), static_cast(0xff), static_cast(0x9c), static_cast(0x85)}); static const int16_t GENI_RESPONSE_HEADER_LENGTH = 13; static const size_t GENI_RESPONSE_TYPE_LENGTH = 8; static const uint8_t GENI_RESPONSE_TYPE_FLOW_HEAD[GENI_RESPONSE_TYPE_LENGTH] = {31, 0, 1, 48, 1, 0, 0, 24}; static const int16_t GENI_RESPONSE_FLOW_OFFSET = 0; static const int16_t GENI_RESPONSE_HEAD_OFFSET = 4; static const uint8_t GENI_RESPONSE_TYPE_POWER[GENI_RESPONSE_TYPE_LENGTH] = {44, 0, 1, 0, 1, 0, 0, 37}; static const int16_t GENI_RESPONSE_VOLTAGE_AC_OFFSET = 0; static const int16_t GENI_RESPONSE_VOLTAGE_DC_OFFSET = 4; static const int16_t GENI_RESPONSE_CURRENT_OFFSET = 8; static const int16_t GENI_RESPONSE_POWER_OFFSET = 12; static const int16_t GENI_RESPONSE_MOTOR_POWER_OFFSET = 16; // not sure static const int16_t GENI_RESPONSE_MOTOR_SPEED_OFFSET = 20; class Alpha3 : public esphome::ble_client::BLEClientNode, public PollingComponent { public: void setup() override; void update() override; void gattc_event_handler(esp_gattc_cb_event_t event, esp_gatt_if_t gattc_if, esp_ble_gattc_cb_param_t *param) override; void dump_config() override; float get_setup_priority() const override { return setup_priority::DATA; } void set_flow_sensor(sensor::Sensor *sensor) { this->flow_sensor_ = sensor; } void set_head_sensor(sensor::Sensor *sensor) { this->head_sensor_ = sensor; } void set_power_sensor(sensor::Sensor *sensor) { this->power_sensor_ = sensor; } void set_current_sensor(sensor::Sensor *sensor) { this->current_sensor_ = sensor; } void set_speed_sensor(sensor::Sensor *sensor) { this->speed_sensor_ = sensor; } void set_voltage_sensor(sensor::Sensor *sensor) { this->voltage_sensor_ = sensor; } protected: sensor::Sensor *flow_sensor_{nullptr}; sensor::Sensor *head_sensor_{nullptr}; sensor::Sensor *power_sensor_{nullptr}; sensor::Sensor *current_sensor_{nullptr}; sensor::Sensor *speed_sensor_{nullptr}; sensor::Sensor *voltage_sensor_{nullptr}; uint16_t geni_handle_; int16_t response_length_; int16_t response_offset_; uint8_t response_type_[GENI_RESPONSE_TYPE_LENGTH]; uint8_t buffer_[4]; void extract_publish_sensor_value_(const uint8_t *response, int16_t length, int16_t response_offset, int16_t value_offset, sensor::Sensor *sensor, float factor); void handle_geni_response_(const uint8_t *response, uint16_t length); void send_request_(uint8_t *request, size_t len); bool is_current_response_type_(const uint8_t *response_type); }; } // namespace alpha3 } // namespace esphome #endif