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https://github.com/esphome/esphome.git
synced 2024-11-22 11:47:30 +01:00
Fix with suggestions
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7f6e7ea16b
commit
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@ -10,17 +10,12 @@ AUTO_LOAD = ["sensor", "text_sensor", "binary_sensor"]
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BSM_DALY_ID = "bms_daly_id"
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daly_bms = cg.esphome_ns.namespace("daly_bms")
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DalyBmsComponent = daly_bms.class_("DalyBmsComponent", uart.UARTDevice, cg.Component)
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DalyBmsComponent = daly_bms.class_("DalyBmsComponent", cg.PollingComponent, uart.UARTDevice)
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CONFIG_SCHEMA = cv.All(
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cv.Schema(
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{
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cv.GenerateID(): cv.declare_id(DalyBmsComponent),
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}
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)
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.extend(cv.COMPONENT_SCHEMA)
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CONFIG_SCHEMA = (
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cv.Schema({cv.GenerateID(): cv.declare_id(DalyBmsComponent)})
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.extend(uart.UART_DEVICE_SCHEMA)
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.extend(cv.polling_component_schema("30s")),
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.extend(cv.polling_component_schema("30s"))
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)
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@ -7,14 +7,15 @@ namespace daly_bms {
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static const char *const TAG = "daly_bms";
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static const unsigned char DALY_TEMPERATURE_OFFSET = 40;
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static const uint8_t DALY_TEMPERATURE_OFFSET = 40;
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static const uint16_t DALY_CURRENT_OFFSET = 30000;
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static const unsigned char DALY_REQUEST_BATTERY_LEVEL = 0x90;
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static const unsigned char DALY_REQUEST_MIN_MAX_VOLTAGE = 0x91;
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static const unsigned char DALY_REQUEST_MIN_MAX_TEMPERATURE = 0x92;
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static const unsigned char DALY_REQUEST_MOS = 0x93;
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static const unsigned char DALY_REQUEST_STATUS = 0x94;
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static const unsigned char DALY_REQUEST_TEMPERATURE = 0x96;
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static const uint8_t DALY_REQUEST_BATTERY_LEVEL = 0x90;
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static const uint8_t DALY_REQUEST_MIN_MAX_VOLTAGE = 0x91;
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static const uint8_t DALY_REQUEST_MIN_MAX_TEMPERATURE = 0x92;
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static const uint8_t DALY_REQUEST_MOS = 0x93;
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static const uint8_t DALY_REQUEST_STATUS = 0x94;
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static const uint8_t DALY_REQUEST_TEMPERATURE = 0x96;
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void DalyBmsComponent::setup() {}
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@ -31,19 +32,19 @@ void DalyBmsComponent::update() {
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this->request_data(DALY_REQUEST_STATUS);
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this->request_data(DALY_REQUEST_TEMPERATURE);
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std::vector<unsigned char> get_battery_level_data;
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uint8_t *get_battery_level_data;
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int available_data = this->available();
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if (available_data >= 13) {
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get_battery_level_data.resize(available_data);
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this->read_array(&get_battery_level_data[0], available_data);
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this->decode_data(&get_battery_level_data[0], available_data);
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get_battery_level_data = (uint8_t *) malloc(available_data);
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this->read_array(get_battery_level_data, available_data);
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this->decode_data(get_battery_level_data, available_data);
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}
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}
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float DalyBmsComponent::get_setup_priority() const { return setup_priority::DATA; }
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void DalyBmsComponent::request_data(unsigned char data_id) {
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unsigned char request_message[13];
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void DalyBmsComponent::request_data(uint8_t data_id) {
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uint8_t request_message[13];
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request_message[0] = 0xA5; // Start Flag
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request_message[1] = 0x80; // Communication Module Address
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@ -57,25 +58,25 @@ void DalyBmsComponent::request_data(unsigned char data_id) {
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request_message[9] = 0x00; // |
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request_message[10] = 0x00; // |
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request_message[11] = 0x00; // Empty Data
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request_message[12] = (unsigned char) (request_message[0] + request_message[1] + request_message[2] +
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request_message[3]); // Checksum (Lower byte of the other bytes sum)
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request_message[12] = (uint8_t)(request_message[0] + request_message[1] + request_message[2] +
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request_message[3]); // Checksum (Lower byte of the other bytes sum)
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this->write_array(request_message, sizeof(request_message));
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this->flush();
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}
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void DalyBmsComponent::decode_data(unsigned char *data, int length) {
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unsigned char *start_flag_position;
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void DalyBmsComponent::decode_data(uint8_t *data, int length) {
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uint8_t *start_flag_position;
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while (data != nullptr) {
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start_flag_position = (unsigned char *) strchr((const char *) data, 0xA5);
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while (data != NULL) {
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start_flag_position = (uint8_t *) strchr((const char *) data, 0xA5);
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if (start_flag_position != nullptr) {
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length = length - (start_flag_position - data);
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data = start_flag_position;
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if (length >= 13 && data[1] == 0x01) {
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unsigned char checksum;
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uint8_t checksum;
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int sum = 0;
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for (int i = 0; i < 12; i++) {
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sum += data[i];
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@ -86,25 +87,26 @@ void DalyBmsComponent::decode_data(unsigned char *data, int length) {
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switch (data[2]) {
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case DALY_REQUEST_BATTERY_LEVEL:
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if (this->voltage_sensor_) {
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this->voltage_sensor_->publish_state(((float) ((data[4] << 8) | data[5]) / 10));
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this->voltage_sensor_->publish_state((float) encode_uint16(data[4], data[5]) / 10);
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}
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if (this->current_sensor_) {
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this->current_sensor_->publish_state(((float) (((data[8] << 8) | data[9]) - 30000) / 10));
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this->current_sensor_->publish_state(
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(float) ((encode_uint16(data[8], data[9]) - DALY_CURRENT_OFFSET) / 10));
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}
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if (this->battery_level_sensor_) {
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this->battery_level_sensor_->publish_state(((float) ((data[10] << 8) | data[11]) / 10));
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this->battery_level_sensor_->publish_state((float) encode_uint16(data[10], data[11]) / 10);
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}
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break;
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case DALY_REQUEST_MIN_MAX_VOLTAGE:
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if (this->max_cell_voltage_) {
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this->max_cell_voltage_->publish_state((float) ((data[4] << 8) | data[5]) / 1000);
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this->max_cell_voltage_->publish_state((float) encode_uint16(data[4], data[5]) / 1000);
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}
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if (this->max_cell_volatge_number_) {
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this->max_cell_volatge_number_->publish_state(data[6]);
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}
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if (this->min_cell_voltage_) {
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this->min_cell_voltage_->publish_state((float) ((data[7] << 8) | data[8]) / 1000);
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this->min_cell_voltage_->publish_state((float) encode_uint16(data[7], data[8]) / 1000);
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}
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if (this->min_cell_voltage_number_) {
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this->min_cell_voltage_number_->publish_state(data[9]);
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@ -149,8 +151,8 @@ void DalyBmsComponent::decode_data(unsigned char *data, int length) {
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this->discharging_mos_enabled_->publish_state(data[6]);
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}
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if (this->remaining_capacity_) {
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this->remaining_capacity_->publish_state(
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(float) ((data[8] << 24) | (data[9] << 16) | (data[10] << 8) | data[11]) / 1000);
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this->remaining_capacity_->publish_state((float) encode_uint32(data[8], data[9], data[10], data[11]) /
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1000);
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}
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break;
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@ -53,8 +53,8 @@ class DalyBmsComponent : public PollingComponent, public uart::UARTDevice {
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float get_setup_priority() const override;
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protected:
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void request_data(unsigned char data_id);
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void decode_data(unsigned char *data, int length);
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void request_data(uint8_t data_id);
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void decode_data(uint8_t *data, int length);
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sensor::Sensor *voltage_sensor_{nullptr};
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sensor::Sensor *current_sensor_{nullptr};
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