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176 lines
8 KiB
Python
176 lines
8 KiB
Python
import voluptuous as vol
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import esphomeyaml.config_validation as cv
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from esphomeyaml import automation
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from esphomeyaml.const import CONF_ABOVE, CONF_ACCURACY_DECIMALS, CONF_ALPHA, CONF_BELOW, \
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CONF_DEBOUNCE, CONF_DELTA, CONF_EXPIRE_AFTER, CONF_EXPONENTIAL_MOVING_AVERAGE, CONF_FILTERS, \
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CONF_FILTER_NAN, CONF_FILTER_OUT, CONF_HEARTBEAT, CONF_ICON, CONF_ID, CONF_LAMBDA, \
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CONF_MQTT_ID, CONF_MULTIPLY, CONF_NAME, CONF_OFFSET, CONF_ON_RAW_VALUE, CONF_ON_VALUE,\
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CONF_ON_VALUE_RANGE, CONF_OR, CONF_SEND_EVERY, CONF_SLIDING_WINDOW_MOVING_AVERAGE, \
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CONF_THROTTLE, CONF_TRIGGER_ID, CONF_UNIQUE, CONF_UNIT_OF_MEASUREMENT, CONF_WINDOW_SIZE
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from esphomeyaml.helpers import App, ArrayInitializer, Pvariable, add, esphomelib_ns, float_, \
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process_lambda, setup_mqtt_component, templatable
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PLATFORM_SCHEMA = cv.PLATFORM_SCHEMA.extend({
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})
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def validate_recursive_filter(value):
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return FILTERS_SCHEMA(value)
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FILTER_KEYS = [CONF_OFFSET, CONF_MULTIPLY, CONF_FILTER_OUT, CONF_FILTER_NAN,
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CONF_SLIDING_WINDOW_MOVING_AVERAGE, CONF_EXPONENTIAL_MOVING_AVERAGE, CONF_LAMBDA,
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CONF_THROTTLE, CONF_DELTA, CONF_UNIQUE, CONF_HEARTBEAT, CONF_DEBOUNCE, CONF_OR]
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FILTERS_SCHEMA = vol.All(cv.ensure_list, [vol.All({
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vol.Optional(CONF_OFFSET): vol.Coerce(float),
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vol.Optional(CONF_MULTIPLY): vol.Coerce(float),
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vol.Optional(CONF_FILTER_OUT): vol.Coerce(float),
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vol.Optional(CONF_FILTER_NAN): None,
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vol.Optional(CONF_SLIDING_WINDOW_MOVING_AVERAGE): vol.Schema({
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vol.Required(CONF_WINDOW_SIZE): cv.positive_not_null_int,
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vol.Required(CONF_SEND_EVERY): cv.positive_not_null_int,
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}),
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vol.Optional(CONF_EXPONENTIAL_MOVING_AVERAGE): vol.Schema({
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vol.Required(CONF_ALPHA): cv.positive_float,
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vol.Required(CONF_SEND_EVERY): cv.positive_not_null_int,
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}),
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vol.Optional(CONF_LAMBDA): cv.lambda_,
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vol.Optional(CONF_THROTTLE): cv.positive_time_period_milliseconds,
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vol.Optional(CONF_DELTA): vol.Coerce(float),
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vol.Optional(CONF_UNIQUE): None,
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vol.Optional(CONF_HEARTBEAT): cv.positive_time_period_milliseconds,
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vol.Optional(CONF_DEBOUNCE): cv.positive_time_period_milliseconds,
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vol.Optional(CONF_OR): validate_recursive_filter,
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}, cv.has_at_exactly_one_key(*FILTER_KEYS))])
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SENSOR_SCHEMA = cv.MQTT_COMPONENT_SCHEMA.extend({
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cv.GenerateID('mqtt_sensor', CONF_MQTT_ID): cv.register_variable_id,
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cv.GenerateID('sensor'): cv.register_variable_id,
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vol.Required(CONF_NAME): cv.string,
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vol.Optional(CONF_UNIT_OF_MEASUREMENT): cv.string_strict,
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vol.Optional(CONF_ICON): cv.icon,
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vol.Optional(CONF_ACCURACY_DECIMALS): vol.Coerce(int),
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vol.Optional(CONF_EXPIRE_AFTER): vol.Any(None, cv.positive_time_period_milliseconds),
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vol.Optional(CONF_FILTERS): FILTERS_SCHEMA,
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vol.Optional(CONF_ON_VALUE): vol.All(cv.ensure_list, [automation.AUTOMATION_SCHEMA]),
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vol.Optional(CONF_ON_RAW_VALUE): vol.All(cv.ensure_list, [automation.AUTOMATION_SCHEMA]),
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vol.Optional(CONF_ON_VALUE_RANGE): vol.All(cv.ensure_list, [vol.All(
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automation.AUTOMATION_SCHEMA.extend({
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vol.Optional(CONF_ABOVE): vol.Coerce(float),
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vol.Optional(CONF_BELOW): vol.Coerce(float),
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}), cv.has_at_least_one_key(CONF_ABOVE, CONF_BELOW))]),
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})
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# pylint: disable=invalid-name
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sensor_ns = esphomelib_ns.namespace('sensor')
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Sensor = sensor_ns.Sensor
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MQTTSensorComponent = sensor_ns.MQTTSensorComponent
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OffsetFilter = sensor_ns.OffsetFilter
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MultiplyFilter = sensor_ns.MultiplyFilter
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FilterOutValueFilter = sensor_ns.FilterOutValueFilter
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FilterOutNANFilter = sensor_ns.FilterOutNANFilter
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SlidingWindowMovingAverageFilter = sensor_ns.SlidingWindowMovingAverageFilter
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ExponentialMovingAverageFilter = sensor_ns.ExponentialMovingAverageFilter
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LambdaFilter = sensor_ns.LambdaFilter
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ThrottleFilter = sensor_ns.ThrottleFilter
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DeltaFilter = sensor_ns.DeltaFilter
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OrFilter = sensor_ns.OrFilter
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HeartbeatFilter = sensor_ns.HeartbeatFilter
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DebounceFilter = sensor_ns.DebounceFilter
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UniqueFilter = sensor_ns.UniqueFilter
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SensorValueTrigger = sensor_ns.SensorValueTrigger
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RawSensorValueTrigger = sensor_ns.RawSensorValueTrigger
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ValueRangeTrigger = sensor_ns.ValueRangeTrigger
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def setup_filter(config):
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if CONF_OFFSET in config:
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return OffsetFilter.new(config[CONF_OFFSET])
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if CONF_MULTIPLY in config:
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return MultiplyFilter.new(config[CONF_MULTIPLY])
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if CONF_FILTER_OUT in config:
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return FilterOutValueFilter.new(config[CONF_FILTER_OUT])
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if CONF_FILTER_NAN in config:
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return FilterOutNANFilter()
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if CONF_SLIDING_WINDOW_MOVING_AVERAGE in config:
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conf = config[CONF_SLIDING_WINDOW_MOVING_AVERAGE]
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return SlidingWindowMovingAverageFilter.new(conf[CONF_WINDOW_SIZE], conf[CONF_SEND_EVERY])
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if CONF_EXPONENTIAL_MOVING_AVERAGE in config:
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conf = config[CONF_EXPONENTIAL_MOVING_AVERAGE]
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return ExponentialMovingAverageFilter.new(conf[CONF_ALPHA], conf[CONF_SEND_EVERY])
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if CONF_LAMBDA in config:
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return LambdaFilter.new(process_lambda(config[CONF_LAMBDA], [(float_, 'x')]))
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if CONF_THROTTLE in config:
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return ThrottleFilter.new(config[CONF_THROTTLE])
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if CONF_DELTA in config:
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return DeltaFilter.new(config[CONF_DELTA])
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if CONF_OR in config:
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return OrFilter.new(setup_filters(config[CONF_OR]))
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if CONF_HEARTBEAT in config:
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return App.register_component(HeartbeatFilter.new(config[CONF_HEARTBEAT]))
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if CONF_DEBOUNCE in config:
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return App.register_component(DebounceFilter.new(config[CONF_DEBOUNCE]))
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if CONF_UNIQUE in config:
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return UniqueFilter.new()
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raise ValueError(u"Filter unsupported: {}".format(config))
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def setup_filters(config):
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return ArrayInitializer(*[setup_filter(x) for x in config])
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def setup_sensor_core_(sensor_var, mqtt_var, config):
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if CONF_UNIT_OF_MEASUREMENT in config:
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add(sensor_var.set_unit_of_measurement(config[CONF_UNIT_OF_MEASUREMENT]))
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if CONF_ICON in config:
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add(sensor_var.set_icon(config[CONF_ICON]))
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if CONF_ACCURACY_DECIMALS in config:
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add(sensor_var.set_accuracy_decimals(config[CONF_ACCURACY_DECIMALS]))
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if CONF_FILTERS in config:
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add(sensor_var.set_filters(setup_filters(config[CONF_FILTERS])))
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for conf in config.get(CONF_ON_VALUE, []):
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rhs = sensor_var.make_value_trigger()
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trigger = Pvariable(SensorValueTrigger, conf[CONF_TRIGGER_ID], rhs)
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automation.build_automation(trigger, float_, conf)
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for conf in config.get(CONF_ON_RAW_VALUE, []):
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rhs = sensor_var.make_raw_value_trigger()
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trigger = Pvariable(RawSensorValueTrigger, conf[CONF_TRIGGER_ID], rhs)
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automation.build_automation(trigger, float_, conf)
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for conf in config.get(CONF_ON_VALUE_RANGE, []):
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rhs = sensor_var.make_value_range_trigger()
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trigger = Pvariable(ValueRangeTrigger, conf[CONF_TRIGGER_ID], rhs)
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if CONF_ABOVE in conf:
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trigger.set_min(templatable(conf[CONF_ABOVE], float_, float_))
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if CONF_BELOW in conf:
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trigger.set_max(templatable(conf[CONF_BELOW], float_, float_))
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automation.build_automation(trigger, float_, conf)
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if CONF_EXPIRE_AFTER in config:
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if config[CONF_EXPIRE_AFTER] is None:
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add(mqtt_var.disable_expire_after())
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else:
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add(mqtt_var.set_expire_after(config[CONF_EXPIRE_AFTER]))
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setup_mqtt_component(mqtt_var, config)
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def setup_sensor(sensor_obj, mqtt_obj, config):
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sensor_var = Pvariable(Sensor, config[CONF_ID], sensor_obj, has_side_effects=False)
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mqtt_var = Pvariable(MQTTSensorComponent, config[CONF_MQTT_ID], mqtt_obj,
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has_side_effects=False)
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setup_sensor_core_(sensor_var, mqtt_var, config)
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def register_sensor(var, config):
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sensor_var = Pvariable(Sensor, config[CONF_ID], var, has_side_effects=True)
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rhs = App.register_sensor(sensor_var)
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mqtt_var = Pvariable(MQTTSensorComponent, config[CONF_MQTT_ID], rhs,
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has_side_effects=True)
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setup_sensor_core_(sensor_var, mqtt_var, config)
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BUILD_FLAGS = '-DUSE_SENSOR'
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