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DALY Modbus BMS: use loops for cell voltage configs
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@ -14,7 +14,6 @@ static const uint8_t DALY_MODBUS_REQUEST_ADDRESS_OFFSET = 0x80;
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static const uint8_t DALY_MODBUS_RESPONSE_ADDRESS_OFFSET = 0x50;
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static const uint8_t DALY_MODBUS_READ_CELL_VOLTAGES_ADDR = DALY_MODBUS_ADDR_CELL_VOLT_1;
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static const uint8_t DALY_MODBUS_READ_CELL_VOLTAGES_LENGTH = 16; // 16 cell voltages
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static const uint8_t DALY_MODBUS_READ_DATA_ADDR = DALY_MODBUS_ADDR_CELL_TEMP_1;
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static const uint8_t DALY_MODBUS_READ_DATA_LENGTH = DALY_MODBUS_REGISTER_MAX - DALY_MODBUS_ADDR_CELL_TEMP_1 + 1;
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@ -52,7 +51,8 @@ void DalyHkmsBmsComponent::loop() {
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{
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case ReadState::READ_CELL_VOLTAGES:
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start_address = DALY_MODBUS_READ_CELL_VOLTAGES_ADDR;
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register_count = DALY_MODBUS_READ_CELL_VOLTAGES_LENGTH;
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// avoid reading all 48 cell voltages if we only want 16 or so
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register_count = this->cell_voltage_sensors_max_;
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break;
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case ReadState::READ_DATA:
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start_address = DALY_MODBUS_READ_DATA_ADDR;
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@ -76,7 +76,7 @@ void DalyHkmsBmsComponent::loop() {
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void DalyHkmsBmsComponent::update() {
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if(this->read_state_ == ReadState::IDLE){
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this->read_state_ = ReadState::READ_CELL_VOLTAGES;
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this->advance_read_state();
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}
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}
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@ -98,7 +98,7 @@ void DalyHkmsBmsComponent::on_modbus_data(const std::vector<uint8_t> &data) {
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{
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case ReadState::READ_CELL_VOLTAGES:
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register_offset = DALY_MODBUS_READ_CELL_VOLTAGES_ADDR;
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register_count = DALY_MODBUS_READ_CELL_VOLTAGES_LENGTH;
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register_count = this->cell_voltage_sensors_max_;
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break;
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case ReadState::READ_DATA:
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register_offset = DALY_MODBUS_READ_DATA_ADDR;
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@ -129,25 +129,11 @@ void DalyHkmsBmsComponent::on_modbus_data(const std::vector<uint8_t> &data) {
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if (this->read_state_ == ReadState::READ_CELL_VOLTAGES) {
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#ifdef USE_SENSOR
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publish_sensor_state(this->cell_1_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 , 0, 0.001);
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publish_sensor_state(this->cell_2_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 1 , 0, 0.001);
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publish_sensor_state(this->cell_3_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 2 , 0, 0.001);
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publish_sensor_state(this->cell_4_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 3 , 0, 0.001);
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publish_sensor_state(this->cell_5_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 4 , 0, 0.001);
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publish_sensor_state(this->cell_6_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 5 , 0, 0.001);
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publish_sensor_state(this->cell_7_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 6 , 0, 0.001);
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publish_sensor_state(this->cell_8_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 7 , 0, 0.001);
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publish_sensor_state(this->cell_9_voltage_sensor_ , DALY_MODBUS_ADDR_CELL_VOLT_1 + 8 , 0, 0.001);
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publish_sensor_state(this->cell_10_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 9 , 0, 0.001);
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publish_sensor_state(this->cell_11_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 10, 0, 0.001);
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publish_sensor_state(this->cell_12_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 11, 0, 0.001);
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publish_sensor_state(this->cell_13_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 12, 0, 0.001);
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publish_sensor_state(this->cell_14_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 13, 0, 0.001);
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publish_sensor_state(this->cell_15_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 14, 0, 0.001);
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publish_sensor_state(this->cell_16_voltage_sensor_, DALY_MODBUS_ADDR_CELL_VOLT_1 + 15, 0, 0.001);
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for (size_t i = 0; i < this->cell_voltage_sensors_max_; i++)
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{
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publish_sensor_state(this->cell_voltage_sensors_[i], register_offset, DALY_MODBUS_ADDR_CELL_VOLT_1 + i, 0, 0.001);
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}
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#endif
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this->read_state_ = ReadState::READ_DATA;
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} else if (this->read_state_ == ReadState::READ_DATA) {
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#ifdef USE_SENSOR
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publish_sensor_state(this->temperature_1_sensor_, DALY_MODBUS_ADDR_CELL_TEMP_1 , -40, 1, 255);
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@ -217,8 +203,27 @@ void DalyHkmsBmsComponent::on_modbus_data(const std::vector<uint8_t> &data) {
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this->precharging_mos_enabled_binary_sensor_->publish_state(get_register(DALY_MODBUS_ADDR_PRECHG_MOS_ACTIVE) > 0);
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}
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#endif
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}
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this->advance_read_state();
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}
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void DalyHkmsBmsComponent::advance_read_state() {
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switch (this->read_state_)
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{
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case ReadState::IDLE:
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// skip reading cell voltages if there are no cell voltage sensors
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if (this->cell_voltage_sensors_max_ == 0) {
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this->read_state_ = ReadState::READ_DATA;
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} else {
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this->read_state_ = ReadState::READ_CELL_VOLTAGES;
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}
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break;
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case ReadState::READ_CELL_VOLTAGES:
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this->read_state_ = ReadState::READ_DATA;
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break;
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case ReadState::READ_DATA:
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this->read_state_ = ReadState::IDLE;
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break;
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}
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}
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@ -18,6 +18,8 @@
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namespace esphome {
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namespace daly_hkms_bms {
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static const uint8_t DALY_MODBUS_MAX_CELL_COUNT = 48;
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class DalyHkmsBmsComponent : public PollingComponent, public modbus::ModbusDevice {
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public:
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void loop() override;
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@ -28,6 +30,12 @@ class DalyHkmsBmsComponent : public PollingComponent, public modbus::ModbusDevic
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void set_daly_address(uint8_t address);
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#ifdef USE_SENSOR
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void set_cell_voltage_sensor(size_t cell, sensor::Sensor *sensor) {
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if(cell > this->cell_voltage_sensors_max_)
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this->cell_voltage_sensors_max_ = cell;
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this->cell_voltage_sensors_[cell-1] = sensor;
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};
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SUB_SENSOR(voltage)
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SUB_SENSOR(current)
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SUB_SENSOR(battery_level)
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@ -53,22 +61,6 @@ class DalyHkmsBmsComponent : public PollingComponent, public modbus::ModbusDevic
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SUB_SENSOR(temperature_8)
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SUB_SENSOR(temperature_mos)
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SUB_SENSOR(temperature_board)
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SUB_SENSOR(cell_1_voltage)
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SUB_SENSOR(cell_2_voltage)
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SUB_SENSOR(cell_3_voltage)
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SUB_SENSOR(cell_4_voltage)
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SUB_SENSOR(cell_5_voltage)
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SUB_SENSOR(cell_6_voltage)
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SUB_SENSOR(cell_7_voltage)
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SUB_SENSOR(cell_8_voltage)
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SUB_SENSOR(cell_9_voltage)
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SUB_SENSOR(cell_10_voltage)
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SUB_SENSOR(cell_11_voltage)
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SUB_SENSOR(cell_12_voltage)
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SUB_SENSOR(cell_13_voltage)
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SUB_SENSOR(cell_14_voltage)
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SUB_SENSOR(cell_15_voltage)
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SUB_SENSOR(cell_16_voltage)
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#endif
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#ifdef USE_TEXT_SENSOR
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@ -87,8 +79,12 @@ class DalyHkmsBmsComponent : public PollingComponent, public modbus::ModbusDevic
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uint32_t last_send_;
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uint8_t daly_address_;
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enum class ReadState{ READ_CELL_VOLTAGES, READ_DATA, IDLE } read_state_{ReadState::IDLE};
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sensor::Sensor *cell_voltage_sensors_[DALY_MODBUS_MAX_CELL_COUNT]{};
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size_t cell_voltage_sensors_max_{0};
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void advance_read_state();
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enum class ReadState{ READ_CELL_VOLTAGES, READ_DATA, IDLE } read_state_{ReadState::IDLE};
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};
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} // namespace daly_hkms_bms
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@ -48,23 +48,6 @@ CONF_TEMPERATURE_8 = "temperature_8"
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CONF_TEMPERATURE_MOS = "temperature_mos"
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CONF_TEMPERATURE_BOARD = "temperature_board"
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CONF_CELL_1_VOLTAGE = "cell_1_voltage"
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CONF_CELL_2_VOLTAGE = "cell_2_voltage"
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CONF_CELL_3_VOLTAGE = "cell_3_voltage"
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CONF_CELL_4_VOLTAGE = "cell_4_voltage"
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CONF_CELL_5_VOLTAGE = "cell_5_voltage"
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CONF_CELL_6_VOLTAGE = "cell_6_voltage"
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CONF_CELL_7_VOLTAGE = "cell_7_voltage"
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CONF_CELL_8_VOLTAGE = "cell_8_voltage"
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CONF_CELL_9_VOLTAGE = "cell_9_voltage"
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CONF_CELL_10_VOLTAGE = "cell_10_voltage"
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CONF_CELL_11_VOLTAGE = "cell_11_voltage"
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CONF_CELL_12_VOLTAGE = "cell_12_voltage"
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CONF_CELL_13_VOLTAGE = "cell_13_voltage"
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CONF_CELL_14_VOLTAGE = "cell_14_voltage"
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CONF_CELL_15_VOLTAGE = "cell_15_voltage"
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CONF_CELL_16_VOLTAGE = "cell_16_voltage"
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ICON_CURRENT_DC = "mdi:current-dc"
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ICON_BATTERY_OUTLINE = "mdi:battery-outline"
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ICON_THERMOMETER_CHEVRON_UP = "mdi:thermometer-chevron-up"
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@ -73,6 +56,8 @@ ICON_CAR_BATTERY = "mdi:car-battery"
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UNIT_AMPERE_HOUR = "Ah"
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MAX_CELL_NUMBER = 48
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TYPES = [
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CONF_VOLTAGE,
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CONF_CURRENT,
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@ -99,22 +84,7 @@ TYPES = [
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CONF_TEMPERATURE_8,
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CONF_TEMPERATURE_MOS,
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CONF_TEMPERATURE_BOARD,
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CONF_CELL_1_VOLTAGE,
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CONF_CELL_2_VOLTAGE,
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CONF_CELL_3_VOLTAGE,
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CONF_CELL_4_VOLTAGE,
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CONF_CELL_5_VOLTAGE,
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CONF_CELL_6_VOLTAGE,
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CONF_CELL_7_VOLTAGE,
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CONF_CELL_8_VOLTAGE,
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CONF_CELL_9_VOLTAGE,
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CONF_CELL_10_VOLTAGE,
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CONF_CELL_11_VOLTAGE,
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CONF_CELL_12_VOLTAGE,
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CONF_CELL_13_VOLTAGE,
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CONF_CELL_14_VOLTAGE,
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CONF_CELL_15_VOLTAGE,
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CONF_CELL_16_VOLTAGE,
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# Cell voltages are handled by loops below
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]
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TEMPERATURE_SENSOR_SCHEMA = sensor.sensor_schema(
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@ -133,6 +103,15 @@ CELL_VOLTAGE_SCHEMA = sensor.sensor_schema(
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accuracy_decimals=3,
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)
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def get_cell_voltage_key(cell):
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return f"cell_{cell}_voltage"
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def get_cell_voltages_schema():
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schema_obj = {}
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for i in range(1, MAX_CELL_NUMBER+1):
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schema_obj[cv.Optional(get_cell_voltage_key(i))] = CELL_VOLTAGE_SCHEMA
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return cv.Schema(schema_obj)
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CONFIG_SCHEMA = (
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cv.Schema(
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{
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@ -241,24 +220,9 @@ CONFIG_SCHEMA = (
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cv.Optional(CONF_TEMPERATURE_8): TEMPERATURE_SENSOR_SCHEMA,
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cv.Optional(CONF_TEMPERATURE_MOS): TEMPERATURE_SENSOR_SCHEMA,
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cv.Optional(CONF_TEMPERATURE_BOARD): TEMPERATURE_SENSOR_SCHEMA,
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cv.Optional(CONF_CELL_1_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_2_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_3_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_4_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_5_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_6_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_7_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_8_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_9_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_10_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_11_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_12_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_13_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_14_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_15_VOLTAGE): CELL_VOLTAGE_SCHEMA,
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cv.Optional(CONF_CELL_16_VOLTAGE): CELL_VOLTAGE_SCHEMA
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}
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)
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.extend(get_cell_voltages_schema())
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.extend(cv.COMPONENT_SCHEMA)
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)
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@ -267,7 +231,15 @@ async def setup_conf(config, key, hub):
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sens = await sensor.new_sensor(sensor_config)
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cg.add(getattr(hub, f"set_{key}_sensor")(sens))
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async def setup_cell_voltage_conf(config, cell, hub):
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key = get_cell_voltage_key(cell)
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if sensor_config := config.get(key):
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sens = await sensor.new_sensor(sensor_config)
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cg.add(hub.set_cell_voltage_sensor(cell, sens))
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async def to_code(config):
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hub = await cg.get_variable(config[CONF_DALY_HKMS_BMS_ID])
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for key in TYPES:
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await setup_conf(config, key, hub)
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await setup_conf(config, key, hub)
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for i in range(1, MAX_CELL_NUMBER+1):
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await setup_cell_voltage_conf(config, i, hub)
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