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165 lines
5.4 KiB
Python
165 lines
5.4 KiB
Python
import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome.components import sensor, modbus
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from esphome.const import (
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CONF_ACTIVE_POWER,
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CONF_APPARENT_POWER,
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CONF_CURRENT,
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CONF_EXPORT_ACTIVE_ENERGY,
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CONF_EXPORT_REACTIVE_ENERGY,
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CONF_FREQUENCY,
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CONF_ID,
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CONF_IMPORT_ACTIVE_ENERGY,
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CONF_IMPORT_REACTIVE_ENERGY,
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CONF_POWER_FACTOR,
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CONF_REACTIVE_POWER,
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CONF_VOLTAGE,
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DEVICE_CLASS_CURRENT,
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DEVICE_CLASS_ENERGY,
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DEVICE_CLASS_POWER,
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DEVICE_CLASS_POWER_FACTOR,
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DEVICE_CLASS_VOLTAGE,
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ICON_CURRENT_AC,
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STATE_CLASS_MEASUREMENT,
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STATE_CLASS_TOTAL_INCREASING,
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UNIT_AMPERE,
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UNIT_HERTZ,
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UNIT_VOLT,
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UNIT_VOLT_AMPS,
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UNIT_VOLT_AMPS_REACTIVE,
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UNIT_WATT,
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)
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AUTO_LOAD = ["modbus"]
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CODEOWNERS = ["@sourabhjaiswal"]
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CONF_TOTAL_ACTIVE_ENERGY = "total_active_energy"
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CONF_TOTAL_REACTIVE_ENERGY = "total_reactive_energy"
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CONF_APPARENT_ENERGY = "apparent_energy"
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CONF_MAXIMUM_DEMAND_ACTIVE_POWER = "maximum_demand_active_power"
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CONF_MAXIMUM_DEMAND_REACTIVE_POWER = "maximum_demand_reactive_power"
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CONF_MAXIMUM_DEMAND_APPARENT_POWER = "maximum_demand_apparent_power"
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UNIT_KILOWATT_HOURS = "kWh"
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UNIT_KILOVOLT_AMPS_HOURS = "kVAh"
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UNIT_KILOVOLT_AMPS_REACTIVE_HOURS = "kVARh"
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selec_meter_ns = cg.esphome_ns.namespace("selec_meter")
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SelecMeter = selec_meter_ns.class_(
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"SelecMeter", cg.PollingComponent, modbus.ModbusDevice
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)
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SENSORS = {
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CONF_TOTAL_ACTIVE_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOWATT_HOURS,
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accuracy_decimals=2,
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device_class=DEVICE_CLASS_ENERGY,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_IMPORT_ACTIVE_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOWATT_HOURS,
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accuracy_decimals=2,
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device_class=DEVICE_CLASS_ENERGY,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_EXPORT_ACTIVE_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOWATT_HOURS,
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accuracy_decimals=2,
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device_class=DEVICE_CLASS_ENERGY,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_TOTAL_REACTIVE_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOVOLT_AMPS_REACTIVE_HOURS,
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accuracy_decimals=2,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_IMPORT_REACTIVE_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOVOLT_AMPS_REACTIVE_HOURS,
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accuracy_decimals=2,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_EXPORT_REACTIVE_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOVOLT_AMPS_REACTIVE_HOURS,
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accuracy_decimals=2,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_APPARENT_ENERGY: sensor.sensor_schema(
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unit_of_measurement=UNIT_KILOVOLT_AMPS_HOURS,
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accuracy_decimals=2,
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state_class=STATE_CLASS_TOTAL_INCREASING,
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),
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CONF_ACTIVE_POWER: sensor.sensor_schema(
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unit_of_measurement=UNIT_WATT,
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accuracy_decimals=3,
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device_class=DEVICE_CLASS_POWER,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_REACTIVE_POWER: sensor.sensor_schema(
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unit_of_measurement=UNIT_VOLT_AMPS_REACTIVE,
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accuracy_decimals=3,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_APPARENT_POWER: sensor.sensor_schema(
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unit_of_measurement=UNIT_VOLT_AMPS,
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accuracy_decimals=3,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_VOLTAGE: sensor.sensor_schema(
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unit_of_measurement=UNIT_VOLT,
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accuracy_decimals=2,
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device_class=DEVICE_CLASS_VOLTAGE,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_CURRENT: sensor.sensor_schema(
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unit_of_measurement=UNIT_AMPERE,
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accuracy_decimals=3,
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device_class=DEVICE_CLASS_CURRENT,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_POWER_FACTOR: sensor.sensor_schema(
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accuracy_decimals=3,
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device_class=DEVICE_CLASS_POWER_FACTOR,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_FREQUENCY: sensor.sensor_schema(
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unit_of_measurement=UNIT_HERTZ,
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icon=ICON_CURRENT_AC,
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accuracy_decimals=2,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_MAXIMUM_DEMAND_ACTIVE_POWER: sensor.sensor_schema(
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unit_of_measurement=UNIT_WATT,
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accuracy_decimals=3,
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device_class=DEVICE_CLASS_POWER,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_MAXIMUM_DEMAND_REACTIVE_POWER: sensor.sensor_schema(
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unit_of_measurement=UNIT_VOLT_AMPS_REACTIVE,
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accuracy_decimals=3,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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CONF_MAXIMUM_DEMAND_APPARENT_POWER: sensor.sensor_schema(
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unit_of_measurement=UNIT_VOLT_AMPS,
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accuracy_decimals=3,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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}
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CONFIG_SCHEMA = (
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cv.Schema({cv.GenerateID(): cv.declare_id(SelecMeter)})
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.extend(
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{cv.Optional(sensor_name): schema for sensor_name, schema in SENSORS.items()}
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)
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.extend(cv.polling_component_schema("10s"))
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.extend(modbus.modbus_device_schema(0x01))
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)
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async def to_code(config):
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var = cg.new_Pvariable(config[CONF_ID])
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await cg.register_component(var, config)
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await modbus.register_modbus_device(var, config)
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for name in SENSORS:
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if name in config:
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sens = await sensor.new_sensor(config[name])
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cg.add(getattr(var, f"set_{name}_sensor")(sens))
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