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ts0601_trv_siterwell.py
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ts0601_trv_siterwell.py
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"""Siterwell TRV devices support."""
import logging
from typing import Optional, Union
import zigpy.types as t
from zhaquirks import Bus, LocalDataCluster
from zhaquirks.const import (
DEVICE_TYPE,
ENDPOINTS,
INPUT_CLUSTERS,
MODELS_INFO,
OUTPUT_CLUSTERS,
PROFILE_ID,
)
from zhaquirks.tuya import (
TuyaManufClusterAttributes,
TuyaPowerConfigurationCluster,
TuyaThermostat,
TuyaThermostatCluster,
TuyaUserInterfaceCluster,
)
from zigpy.profiles import zha
from zigpy.zcl import foundation
from zigpy.zcl.clusters.general import (
AnalogOutput,
Basic,
BinaryInput,
Groups,
Identify,
OnOff,
Ota,
Scenes,
Time,
)
from zigpy.zcl.clusters.hvac import Thermostat
_LOGGER = logging.getLogger(__name__)
# info from https://github.com/Koenkk/zigbee-herdsman-converters/blob/master/converters/common.js#L113
# and https://github.com/Koenkk/zigbee-herdsman-converters/blob/master/converters/fromZigbee.js#L362
SITERWELL_CHILD_LOCK_ATTR = 0x0107 # [0] unlocked [1] child-locked
SITERWELL_WINDOW_DETECT_ATTR = 0x0112 # [0] inactive [1] active
SITERWELL_VALVE_DETECT_ATTR = 0x0114 # [0] do not report [1] report
# [0,0,0,210] target room temp (decidegree)
SITERWELL_TARGET_TEMP_ATTR = 0x0202
# [0,0,0,200] current room temp (decidegree)
SITERWELL_TEMPERATURE_ATTR = 0x0203
SITERWELL_BATTERY_ATTR = 0x0215 # [0,0,0,98] battery charge
# [0] away [1] scheduled [2] manual [3] installation
SITERWELL_MODE_ATTR = 0x0404
SITERWELL_WINDOW_ALARM_ATTR = 0x0411 # [0] off [1] on
SITERWELL_VALVE_JAMMED_ALARM_ATTR = 0x0413 # [0] off [1] pn
# minimum limit of temperature setting
SITERWELL_MIN_TEMPERATURE_VAL = 5 # degrees
# maximum limit of temperature setting
SITERWELL_MAX_TEMPERATURE_VAL = 30 # degrees
SiterwellManufClusterSelf = {}
class SiterwellManufCluster(TuyaManufClusterAttributes):
"""Manufacturer Specific Cluster of some thermostatic valves."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellManufCluster_bus.add_listener(self)
global SiterwellManufClusterSelf
SiterwellManufClusterSelf[self.endpoint.device.ieee] = self
attributes = TuyaManufClusterAttributes.attributes.copy()
attributes.update(
{
SITERWELL_CHILD_LOCK_ATTR: ("child_lock", t.uint8_t, True),
SITERWELL_WINDOW_DETECT_ATTR: ("window_detection", t.uint8_t, True),
SITERWELL_VALVE_DETECT_ATTR: ("valve_detect", t.uint8_t, True),
SITERWELL_TARGET_TEMP_ATTR: ("target_temperature", t.uint32_t, True),
SITERWELL_TEMPERATURE_ATTR: ("temperature", t.uint32_t, True),
SITERWELL_BATTERY_ATTR: ("battery", t.uint32_t, True),
SITERWELL_MODE_ATTR: ("mode", t.uint8_t, True),
SITERWELL_WINDOW_ALARM_ATTR: ("window_alarm", t.uint8_t, True),
SITERWELL_VALVE_JAMMED_ALARM_ATTR: ("window_alarm", t.uint8_t, True),
}
)
TEMPERATURE_ATTRS = {
SITERWELL_TARGET_TEMP_ATTR: (
"occupied_heating_setpoint",
lambda value: value * 10,
),
}
def _update_attribute(self, attrid, value):
super()._update_attribute(attrid, value)
if attrid in self.TEMPERATURE_ATTRS:
self.endpoint.device.thermostat_bus.listener_event(
"temperature_change",
self.TEMPERATURE_ATTRS[attrid][0],
value
if self.TEMPERATURE_ATTRS[attrid][1] is None
else self.TEMPERATURE_ATTRS[attrid][1](value),
)
elif attrid == SITERWELL_BATTERY_ATTR:
self.endpoint.device.battery_bus.listener_event("battery_change", value)
elif attrid == SITERWELL_WINDOW_DETECT_ATTR:
self.endpoint.device.SiterwellWindowDetection_bus.listener_event(
"window_detect_change", value
)
elif attrid == SITERWELL_WINDOW_ALARM_ATTR:
self.endpoint.device.SiterwellWindowAlarm_bus.listener_event(
"set_value", value
)
elif attrid == SITERWELL_MODE_ATTR:
if 0 <= value <= 2:
self.endpoint.device.thermostat_bus.listener_event("mode_change", value)
self.endpoint.device.SiterwellInstallMode_bus.listener_event(
"onoff_change", value
)
elif attrid == SITERWELL_VALVE_DETECT_ATTR:
self.endpoint.device.SiterwellValveDetection_bus.listener_event(
"valve_detect_change", value
)
elif attrid == SITERWELL_VALVE_JAMMED_ALARM_ATTR:
self.endpoint.device.SiterwellValveAlarm_bus.listener_event(
"set_value", value
)
elif attrid == SITERWELL_CHILD_LOCK_ATTR:
mode = 1 if value else 0
self.endpoint.device.ui_bus.listener_event("child_lock_change", mode)
self.endpoint.device.SiterwellChildLock_bus.listener_event(
"child_lock_change", mode
)
if attrid in (SITERWELL_TEMPERATURE_ATTR, SITERWELL_TARGET_TEMP_ATTR):
if attrid == SITERWELL_TEMPERATURE_ATTR:
temp_calibration = (
self.endpoint.device.SiterwellTempCalibration_bus.listener_event(
"get_value"
)[0]
)
self.endpoint.device.thermostat_bus.listener_event(
"temperature_change",
"local_temperature",
(value + t.Half(temp_calibration) * 10) * 10,
)
self.endpoint.device.thermostat_bus.listener_event(
"hass_climate_state_change",
attrid,
value + t.Half(temp_calibration) * 10,
)
else:
self.endpoint.device.thermostat_bus.listener_event(
"hass_climate_state_change", attrid, value
)
class SiterwellThermostat(TuyaThermostatCluster):
"""Thermostat cluster for some thermostatic valves."""
class Preset(t.enum8):
"""Working modes of the thermostat."""
Away = 0x00
Schedule = 0x01
Manual = 0x02
Comfort = 0x03
Eco = 0x04
Boost = 0x05
Complex = 0x06
_CONSTANT_ATTRIBUTES = {
0x001B: Thermostat.ControlSequenceOfOperation.Heating_Only,
}
attributes = TuyaThermostatCluster.attributes.copy()
attributes.update(
{
0x4000: ("operation_preset", Preset, True),
}
)
DIRECT_MAPPING_ATTRS = {
"occupied_heating_setpoint": (
SITERWELL_TARGET_TEMP_ATTR,
lambda value: round(value / 10),
),
"operation_preset": (SITERWELL_MODE_ATTR, None),
}
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.thermostat_bus.add_listener(self)
self.endpoint.device.thermostat_bus.listener_event(
"temperature_change",
"min_heat_setpoint_limit",
SITERWELL_MIN_TEMPERATURE_VAL * 100,
)
self.endpoint.device.thermostat_bus.listener_event(
"temperature_change",
"max_heat_setpoint_limit",
SITERWELL_MAX_TEMPERATURE_VAL * 100,
)
def map_attribute(self, attribute, value):
"""Map standardized attribute value to dict of manufacturer values."""
if attribute in self.DIRECT_MAPPING_ATTRS:
return {
self.DIRECT_MAPPING_ATTRS[attribute][0]: value
if self.DIRECT_MAPPING_ATTRS[attribute][1] is None
else self.DIRECT_MAPPING_ATTRS[attribute][1](value)
}
if attribute in ("system_mode", "programing_oper_mode"):
if attribute == "system_mode":
system_mode = value
oper_mode = self._attr_cache.get(
self.attributes_by_name["programing_oper_mode"].id,
self.ProgrammingOperationMode.Simple,
)
else:
system_mode = self._attr_cache.get(
self.attributes_by_name["system_mode"].id, self.SystemMode.Heat
)
oper_mode = value
# if system_mode == self.SystemMode.Off:
# return {SITERWELL_MODE_ATTR: 0}
if system_mode == self.SystemMode.Heat:
if oper_mode == self.ProgrammingOperationMode.Schedule_programming_mode:
return {SITERWELL_MODE_ATTR: 1}
if oper_mode == self.ProgrammingOperationMode.Simple:
return {SITERWELL_MODE_ATTR: 2}
self.error("Unsupported value for ProgrammingOperationMode")
else:
self.error("Unsupported value for SystemMode")
def hass_climate_state_change(self, attrid, value):
"""Update of the HASS Climate gui state."""
if attrid == SITERWELL_TEMPERATURE_ATTR:
temp_current = value * 10
temp_set = self._attr_cache.get(
self.attributes_by_name["occupied_heating_setpoint"].id, 0
)
else:
temp_set = value * 10
temp_current = self._attr_cache.get(
self.attributes_by_name["local_temperature"].id, 0
)
state = 0 if (int(temp_current) >= int(temp_set)) else 1
self.endpoint.device.thermostat_bus.listener_event("state_change", state)
def mode_change(self, value):
"""System Mode change."""
if value == 0:
operation_preset = self.Preset.Away
prog_mode = self.ProgrammingOperationMode.Simple
occupancy = self.Occupancy.Occupied
system_mode = self.SystemMode.Heat
target_temp = self._attr_cache.get(
self.attributes_by_name["occupied_heating_setpoint"].id
)
self._update_attribute(
self.attributes_by_name["unoccupied_heating_setpoint"].id, target_temp
)
elif value == 1:
operation_preset = self.Preset.Schedule
prog_mode = self.ProgrammingOperationMode.Schedule_programming_mode
occupancy = self.Occupancy.Occupied
system_mode = self.SystemMode.Heat
elif value == 2:
operation_preset = self.Preset.Manual
prog_mode = self.ProgrammingOperationMode.Simple
occupancy = self.Occupancy.Occupied
system_mode = self.SystemMode.Heat
self._update_attribute(self.attributes_by_name["system_mode"].id, system_mode)
self._update_attribute(
self.attributes_by_name["programing_oper_mode"].id, prog_mode
)
self._update_attribute(self.attributes_by_name["occupancy"].id, occupancy)
self._update_attribute(
self.attributes_by_name["operation_preset"].id, operation_preset
)
class SiterwellUserInterface(TuyaUserInterfaceCluster):
"""HVAC User interface cluster for tuya electric heating thermostats."""
_CHILD_LOCK_ATTR = SITERWELL_CHILD_LOCK_ATTR
class SiterwellWindowDetection(LocalDataCluster, OnOff):
"""On/Off cluster for the window detection function of the electric heating thermostats."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellWindowDetection_bus.add_listener(self)
def window_detect_change(self, value):
"""Window detect change."""
self._update_attribute(self.attributes_by_name["on_off"].id, value)
async def write_attributes(self, attributes, manufacturer=None):
"""Defer attributes writing to the set_data tuya command."""
records = self._write_attr_records(attributes)
if not records:
return [[foundation.WriteAttributesStatusRecord(foundation.Status.SUCCESS)]]
has_change = False
for record in records:
attr_name = self.attributes[record.attrid].name
if attr_name == "on_off":
value = record.value.value
has_change = True
if has_change:
return await self.endpoint.tuya_manufacturer.write_attributes(
{SITERWELL_WINDOW_DETECT_ATTR: value}, manufacturer=manufacturer
)
return [
[
foundation.WriteAttributesStatusRecord(
foundation.Status.FAILURE, r.attrid
)
for r in records
]
]
async def command(
self,
command_id: Union[foundation.GeneralCommand, int, t.uint8_t],
*args,
manufacturer: Optional[Union[int, t.uint16_t]] = None,
expect_reply: bool = True,
tsn: Optional[Union[int, t.uint8_t]] = None,
):
"""Override the default Cluster command."""
if command_id in (0x0000, 0x0001, 0x0002):
if command_id == 0x0000:
value = False
elif command_id == 0x0001:
value = True
else:
attrid = self.attributes_by_name["on_off"].id
success, _ = await self.read_attributes(
(attrid,), manufacturer=manufacturer
)
try:
value = success[attrid]
except KeyError:
return foundation.Status.FAILURE
value = not value
(res,) = await self.write_attributes(
{"on_off": value}, manufacturer=manufacturer
)
return [command_id, res]
return [command_id, foundation.Status.UNSUP_CLUSTER_COMMAND]
class SiterwellValveDetection(LocalDataCluster, OnOff):
"""On/Off cluster for the valve detection function of the electric heating thermostats."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellValveDetection_bus.add_listener(self)
def valve_detect_change(self, value):
"""Window detect change."""
self._update_attribute(self.attributes_by_name["on_off"].id, value)
async def write_attributes(self, attributes, manufacturer=None):
"""Defer attributes writing to the set_data tuya command."""
records = self._write_attr_records(attributes)
if not records:
return [[foundation.WriteAttributesStatusRecord(foundation.Status.SUCCESS)]]
has_change = False
for record in records:
attr_name = self.attributes[record.attrid].name
if attr_name == "on_off":
value = record.value.value
has_change = True
if has_change:
return await SiterwellManufClusterSelf[
self.endpoint.device.ieee
].endpoint.tuya_manufacturer.write_attributes(
{SITERWELL_VALVE_DETECT_ATTR: value}, manufacturer=manufacturer
)
return [
[
foundation.WriteAttributesStatusRecord(
foundation.Status.FAILURE, r.attrid
)
for r in records
]
]
async def command(
self,
command_id: Union[foundation.GeneralCommand, int, t.uint8_t],
*args,
manufacturer: Optional[Union[int, t.uint16_t]] = None,
expect_reply: bool = True,
tsn: Optional[Union[int, t.uint8_t]] = None,
):
"""Override the default Cluster command."""
if command_id in (0x0000, 0x0001, 0x0002):
if command_id == 0x0000:
value = False
elif command_id == 0x0001:
value = True
else:
attrid = self.attributes_by_name["on_off"].id
success, _ = await self.read_attributes(
(attrid,), manufacturer=manufacturer
)
try:
value = success[attrid]
except KeyError:
return foundation.Status.FAILURE
value = not value
(res,) = await self.write_attributes(
{"on_off": value}, manufacturer=manufacturer
)
return [command_id, res]
return [command_id, foundation.Status.UNSUP_CLUSTER_COMMAND]
class SiterwellWindowAlarm(LocalDataCluster, BinaryInput):
"""Binary cluster for the window alarm function of the electric heating thermostats."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellWindowAlarm_bus.add_listener(self)
def set_value(self, value):
"""Set value."""
self._update_attribute(self.attributes_by_name["present_value"].id, value)
class SiterwellValveAlarm(LocalDataCluster, BinaryInput):
"""Binary cluster for the valve alarm function of the electric heating thermostats."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellValveAlarm_bus.add_listener(self)
def set_value(self, value):
"""Set value."""
self._update_attribute(self.attributes_by_name["present_value"].id, value)
class SiterwellChildLock(LocalDataCluster, OnOff):
"""On/Off cluster for the child lock function of the electric heating thermostats."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellChildLock_bus.add_listener(self)
def child_lock_change(self, value):
"""Child lock change."""
self._update_attribute(self.attributes_by_name["on_off"].id, value)
async def write_attributes(self, attributes, manufacturer=None):
"""Defer attributes writing to the set_data tuya command."""
records = self._write_attr_records(attributes)
if not records:
return [[foundation.WriteAttributesStatusRecord(foundation.Status.SUCCESS)]]
has_change = False
for record in records:
attr_name = self.attributes[record.attrid].name
if attr_name == "on_off":
value = record.value.value
has_change = True
if has_change:
return await SiterwellManufClusterSelf[
self.endpoint.device.ieee
].endpoint.tuya_manufacturer.write_attributes(
{SITERWELL_CHILD_LOCK_ATTR: value}, manufacturer=manufacturer
)
return [
[
foundation.WriteAttributesStatusRecord(
foundation.Status.FAILURE, r.attrid
)
for r in records
]
]
async def command(
self,
command_id: Union[foundation.GeneralCommand, int, t.uint8_t],
*args,
manufacturer: Optional[Union[int, t.uint16_t]] = None,
expect_reply: bool = True,
tsn: Optional[Union[int, t.uint8_t]] = None,
):
"""Override the default Cluster command."""
if command_id in (0x0000, 0x0001, 0x0002):
if command_id == 0x0000:
value = False
elif command_id == 0x0001:
value = True
else:
attrid = self.attributes_by_name["on_off"].id
success, _ = await self.read_attributes(
(attrid,), manufacturer=manufacturer
)
try:
value = success[attrid]
except KeyError:
return foundation.Status.FAILURE
value = not value
(res,) = await self.write_attributes(
{"on_off": value}, manufacturer=manufacturer
)
return [command_id, res]
return [command_id, foundation.Status.UNSUP_CLUSTER_COMMAND]
class SiterwellInstallMode(LocalDataCluster, OnOff):
"""On/Off cluster for the install mode function of the electric heating thermostats."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellInstallMode_bus.add_listener(self)
def onoff_change(self, value):
"""Switch change for Installation mode."""
if 0 <= value <= 2:
self._update_attribute(self.attributes_by_name["on_off"].id, False)
else:
self._update_attribute(self.attributes_by_name["on_off"].id, True)
async def write_attributes(self, attributes, manufacturer=None):
"""Defer attributes writing to the set_data tuya command."""
records = self._write_attr_records(attributes)
if not records:
return [[foundation.WriteAttributesStatusRecord(foundation.Status.SUCCESS)]]
has_change = False
for record in records:
attr_name = self.attributes[record.attrid].name
if attr_name == "on_off":
value = record.value.value
mode = 1 if value is False else 3
has_change = True
if has_change:
return await SiterwellManufClusterSelf[
self.endpoint.device.ieee
].endpoint.tuya_manufacturer.write_attributes(
{SITERWELL_MODE_ATTR: mode}, manufacturer=manufacturer
)
return [
[
foundation.WriteAttributesStatusRecord(
foundation.Status.FAILURE, r.attrid
)
for r in records
]
]
async def command(
self,
command_id: Union[foundation.GeneralCommand, int, t.uint8_t],
*args,
manufacturer: Optional[Union[int, t.uint16_t]] = None,
expect_reply: bool = True,
tsn: Optional[Union[int, t.uint8_t]] = None,
):
"""Override the default Cluster command."""
if command_id in (0x0000, 0x0001, 0x0002):
if command_id == 0x0000:
value = False
elif command_id == 0x0001:
value = True
else:
attrid = self.attributes_by_name["on_off"].id
success, _ = await self.read_attributes(
(attrid,), manufacturer=manufacturer
)
try:
value = success[attrid]
except KeyError:
return foundation.Status.FAILURE
value = not value
(res,) = await self.write_attributes(
{"on_off": value}, manufacturer=manufacturer
)
return [command_id, res]
return [command_id, foundation.Status.UNSUP_CLUSTER_COMMAND]
class SiterwellTempCalibration(LocalDataCluster, AnalogOutput):
"""AnalogOutput cluster for the local temperature calibration."""
def __init__(self, *args, **kwargs):
"""Init."""
super().__init__(*args, **kwargs)
self.endpoint.device.SiterwellTempCalibration_bus.add_listener(self)
self._update_attribute(
self.attributes_by_name["description"].id, "Temperature Calibration"
)
self._update_attribute(self.attributes_by_name["max_present_value"].id, 10)
self._update_attribute(self.attributes_by_name["min_present_value"].id, -10)
self._update_attribute(self.attributes_by_name["resolution"].id, 0.1)
self._update_attribute(self.attributes_by_name["application_type"].id, 13 << 16)
self._update_attribute(self.attributes_by_name["engineering_units"].id, 62)
def get_value(self):
"""Get value."""
return self._attr_cache.get(self.attributes_by_name["present_value"].id, 0)
class SiterwellGS361_Type1(TuyaThermostat):
"""SiterwellGS361 Thermostatic radiator valve and clones."""
def __init__(self, *args, **kwargs):
"""Init device."""
self.SiterwellManufCluster_bus = Bus()
self.SiterwellWindowDetection_bus = Bus()
self.SiterwellValveDetection_bus = Bus()
self.SiterwellWindowAlarm_bus = Bus()
self.SiterwellValveAlarm_bus = Bus()
self.SiterwellChildLock_bus = Bus()
self.SiterwellInstallMode_bus = Bus()
self.SiterwellTempCalibration_bus = Bus()
super().__init__(*args, **kwargs)
signature = {
# endpoint=1 profile=260 device_type=0 device_version=0 input_clusters=[0, 3]
# output_clusters=[3, 25]>
MODELS_INFO: [
("_TYST11_jeaxp72v", "eaxp72v"),
("_TYST11_kfvq6avy", "fvq6avy"),
("_TYST11_zivfvd7h", "ivfvd7h"),
("_TYST11_hhrtiq0x", "hrtiq0x"),
("_TYST11_ps5v5jor", "s5v5jor"),
("_TYST11_owwdxjbx", "wwdxjbx"),
("_TYST11_8daqwrsj", "daqwrsj"),
("_TYST11_czk78ptr", "zk78ptr"),
],
ENDPOINTS: {
1: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [Basic.cluster_id, Identify.cluster_id],
OUTPUT_CLUSTERS: [Identify.cluster_id, Ota.cluster_id],
}
},
}
replacement = {
ENDPOINTS: {
1: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.THERMOSTAT,
INPUT_CLUSTERS: [
Basic.cluster_id,
Identify.cluster_id,
SiterwellManufCluster,
SiterwellThermostat,
SiterwellUserInterface,
SiterwellWindowDetection,
TuyaPowerConfigurationCluster,
],
OUTPUT_CLUSTERS: [Identify.cluster_id, Ota.cluster_id],
},
2: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [
SiterwellValveDetection,
],
OUTPUT_CLUSTERS: [],
},
3: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.SIMPLE_SENSOR,
INPUT_CLUSTERS: [
SiterwellWindowAlarm,
],
OUTPUT_CLUSTERS: [],
},
4: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.SIMPLE_SENSOR,
INPUT_CLUSTERS: [
SiterwellValveAlarm,
],
OUTPUT_CLUSTERS: [],
},
5: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [
SiterwellChildLock,
],
OUTPUT_CLUSTERS: [],
},
6: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [
SiterwellInstallMode,
],
OUTPUT_CLUSTERS: [],
},
7: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.CONSUMPTION_AWARENESS_DEVICE,
INPUT_CLUSTERS: [SiterwellTempCalibration],
OUTPUT_CLUSTERS: [],
},
}
}
class SiterwellGS361_Type2(TuyaThermostat):
"""SiterwellGS361 Thermostatic radiator valve and clones (2nd cluster signature)."""
def __init__(self, *args, **kwargs):
"""Init device."""
self.SiterwellManufCluster_bus = Bus()
self.SiterwellWindowDetection_bus = Bus()
self.SiterwellValveDetection_bus = Bus()
self.SiterwellWindowAlarm_bus = Bus()
self.SiterwellValveAlarm_bus = Bus()
self.SiterwellChildLock_bus = Bus()
self.SiterwellInstallMode_bus = Bus()
self.SiterwellTempCalibration_bus = Bus()
super().__init__(*args, **kwargs)
signature = {
# endpoint=1 profile=260 device_type=81 device_version=0 input_clusters=[0, 4, 5, 61184]
# output_clusters=[10, 25]>
MODELS_INFO: [
("_TZE200_jeaxp72v", "TS0601"),
("_TZE200_kfvq6avy", "TS0601"),
("_TZE200_zivfvd7h", "TS0601"),
("_TZE200_hhrtiq0x", "TS0601"),
("_TZE200_ps5v5jor", "TS0601"),
("_TZE200_owwdxjbx", "TS0601"),
("_TZE200_8daqwrsj", "TS0601"),
],
ENDPOINTS: {
1: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.SMART_PLUG,
INPUT_CLUSTERS: [
Basic.cluster_id,
Groups.cluster_id,
Scenes.cluster_id,
TuyaManufClusterAttributes.cluster_id,
],
OUTPUT_CLUSTERS: [Time.cluster_id, Ota.cluster_id],
}
},
}
replacement = {
ENDPOINTS: {
1: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.THERMOSTAT,
INPUT_CLUSTERS: [
Basic.cluster_id,
Groups.cluster_id,
Scenes.cluster_id,
SiterwellManufCluster,
SiterwellThermostat,
SiterwellUserInterface,
SiterwellWindowDetection,
TuyaPowerConfigurationCluster,
],
OUTPUT_CLUSTERS: [Time.cluster_id, Ota.cluster_id],
},
2: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [
SiterwellValveDetection,
],
OUTPUT_CLUSTERS: [],
},
3: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.SIMPLE_SENSOR,
INPUT_CLUSTERS: [
SiterwellWindowAlarm,
],
OUTPUT_CLUSTERS: [],
},
4: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.SIMPLE_SENSOR,
INPUT_CLUSTERS: [
SiterwellValveAlarm,
],
OUTPUT_CLUSTERS: [],
},
5: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [
SiterwellChildLock,
],
OUTPUT_CLUSTERS: [],
},
6: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.ON_OFF_SWITCH,
INPUT_CLUSTERS: [
SiterwellInstallMode,
],
OUTPUT_CLUSTERS: [],
},
7: {
PROFILE_ID: zha.PROFILE_ID,
DEVICE_TYPE: zha.DeviceType.CONSUMPTION_AWARENESS_DEVICE,
INPUT_CLUSTERS: [SiterwellTempCalibration],
OUTPUT_CLUSTERS: [],
},
}
}