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https://github.com/python-kasa/python-kasa.git
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300d823895
Implement the choice feature type allowing to provide a list of choices that can be set. Co-authored-by: sdb9696
186 lines
6.5 KiB
Python
186 lines
6.5 KiB
Python
"""Generic interface for defining device features."""
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from __future__ import annotations
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import logging
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from dataclasses import dataclass
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from enum import Enum, auto
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from typing import TYPE_CHECKING, Any, Callable
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if TYPE_CHECKING:
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from .device import Device
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_LOGGER = logging.getLogger(__name__)
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@dataclass
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class Feature:
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"""Feature defines a generic interface for device features."""
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class Type(Enum):
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"""Type to help decide how to present the feature."""
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#: Sensor is an informative read-only value
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Sensor = auto()
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#: BinarySensor is a read-only boolean
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BinarySensor = auto()
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#: Switch is a boolean setting
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Switch = auto()
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#: Action triggers some action on device
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Action = auto()
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#: Number defines a numeric setting
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#: See :ref:`range_getter`, :ref:`minimum_value`, and :ref:`maximum_value`
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Number = auto()
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#: Choice defines a setting with pre-defined values
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Choice = auto()
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Unknown = -1
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# TODO: unsure if this is a great idea..
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Sensor = Type.Sensor
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BinarySensor = Type.BinarySensor
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Switch = Type.Switch
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Action = Type.Action
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Number = Type.Number
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Choice = Type.Choice
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class Category(Enum):
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"""Category hint to allow feature grouping."""
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#: Primary features control the device state directly.
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#: Examples include turning the device on/off, or adjusting its brightness.
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Primary = auto()
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#: Config features change device behavior without immediate state changes.
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Config = auto()
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#: Informative/sensor features deliver some potentially interesting information.
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Info = auto()
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#: Debug features deliver more verbose information then informative features.
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#: You may want to hide these per default to avoid cluttering your UI.
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Debug = auto()
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#: The default category if none is specified.
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Unset = -1
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#: Device instance required for getting and setting values
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device: Device
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#: User-friendly short description
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name: str
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#: Name of the property that allows accessing the value
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attribute_getter: str | Callable | None = None
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#: Name of the method that allows changing the value
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attribute_setter: str | None = None
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#: Container storing the data, this overrides 'device' for getters
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container: Any = None
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#: Icon suggestion
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icon: str | None = None
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#: Unit, if applicable
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unit: str | None = None
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#: Category hint for downstreams
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category: Feature.Category = Category.Unset
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#: Type of the feature
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type: Feature.Type = Type.Sensor
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# Display hints offer a way suggest how the value should be shown to users
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#: Hint to help rounding the sensor values to given after-comma digits
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precision_hint: int | None = None
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# Number-specific attributes
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#: Minimum value
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minimum_value: int = 0
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#: Maximum value
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maximum_value: int = 2**16 # Arbitrary max
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#: Attribute containing the name of the range getter property.
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#: If set, this property will be used to set *minimum_value* and *maximum_value*.
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range_getter: str | None = None
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# Choice-specific attributes
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#: List of choices as enum
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choices: list[str] | None = None
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#: Attribute name of the choices getter property.
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#: If set, this property will be used to set *choices*.
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choices_getter: str | None = None
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#: Identifier
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id: str | None = None
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def __post_init__(self):
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"""Handle late-binding of members."""
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# Set id, if unset
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if self.id is None:
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self.id = self.name.lower().replace(" ", "_")
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# Populate minimum & maximum values, if range_getter is given
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container = self.container if self.container is not None else self.device
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if self.range_getter is not None:
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self.minimum_value, self.maximum_value = getattr(
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container, self.range_getter
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)
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# Populate choices, if choices_getter is given
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if self.choices_getter is not None:
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self.choices = getattr(container, self.choices_getter)
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# Set the category, if unset
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if self.category is Feature.Category.Unset:
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if self.attribute_setter:
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self.category = Feature.Category.Config
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else:
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self.category = Feature.Category.Info
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if self.category == Feature.Category.Config and self.type in [
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Feature.Type.Sensor,
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Feature.Type.BinarySensor,
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]:
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raise ValueError(
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f"Invalid type for configurable feature: {self.name} ({self.id}):"
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f" {self.type}"
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)
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@property
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def value(self):
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"""Return the current value."""
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if self.type == Feature.Type.Action:
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return "<Action>"
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if self.attribute_getter is None:
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raise ValueError("Not an action and no attribute_getter set")
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container = self.container if self.container is not None else self.device
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if isinstance(self.attribute_getter, Callable):
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return self.attribute_getter(container)
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return getattr(container, self.attribute_getter)
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async def set_value(self, value):
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"""Set the value."""
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if self.attribute_setter is None:
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raise ValueError("Tried to set read-only feature.")
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if self.type == Feature.Type.Number: # noqa: SIM102
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if value < self.minimum_value or value > self.maximum_value:
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raise ValueError(
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f"Value {value} out of range "
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f"[{self.minimum_value}, {self.maximum_value}]"
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)
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elif self.type == Feature.Type.Choice: # noqa: SIM102
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if value not in self.choices:
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raise ValueError(
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f"Unexpected value for {self.name}: {value}"
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f" - allowed: {self.choices}"
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)
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container = self.container if self.container is not None else self.device
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if self.type == Feature.Type.Action:
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return await getattr(container, self.attribute_setter)()
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return await getattr(container, self.attribute_setter)(value)
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def __repr__(self):
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value = self.value
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if self.precision_hint is not None and value is not None:
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value = round(self.value, self.precision_hint)
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s = f"{self.name} ({self.id}): {value}"
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if self.unit is not None:
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s += f" {self.unit}"
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if self.type == Feature.Type.Number:
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s += f" (range: {self.minimum_value}-{self.maximum_value})"
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return s
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