385 lines
13 KiB
Python
385 lines
13 KiB
Python
"""Support for Z-Wave door locks."""
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import logging
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import voluptuous as vol
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from homeassistant.components.lock import DOMAIN, LockEntity
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from homeassistant.core import callback
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import homeassistant.helpers.config_validation as cv
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from homeassistant.helpers.dispatcher import async_dispatcher_connect
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from . import ZWaveDeviceEntity, const
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_LOGGER = logging.getLogger(__name__)
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ATTR_NOTIFICATION = "notification"
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ATTR_LOCK_STATUS = "lock_status"
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ATTR_CODE_SLOT = "code_slot"
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ATTR_USERCODE = "usercode"
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CONFIG_ADVANCED = "Advanced"
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SERVICE_SET_USERCODE = "set_usercode"
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SERVICE_GET_USERCODE = "get_usercode"
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SERVICE_CLEAR_USERCODE = "clear_usercode"
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POLYCONTROL = 0x10E
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DANALOCK_V2_BTZE = 0x2
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POLYCONTROL_DANALOCK_V2_BTZE_LOCK = (POLYCONTROL, DANALOCK_V2_BTZE)
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WORKAROUND_V2BTZE = 1
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WORKAROUND_DEVICE_STATE = 2
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WORKAROUND_TRACK_MESSAGE = 4
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WORKAROUND_ALARM_TYPE = 8
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DEVICE_MAPPINGS = {
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POLYCONTROL_DANALOCK_V2_BTZE_LOCK: WORKAROUND_V2BTZE,
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# Kwikset 914TRL ZW500 99100-078
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(0x0090, 0x440): WORKAROUND_DEVICE_STATE,
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(0x0090, 0x446): WORKAROUND_DEVICE_STATE,
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(0x0090, 0x238): WORKAROUND_DEVICE_STATE,
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# Kwikset 888ZW500-15S Smartcode 888
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(0x0090, 0x541): WORKAROUND_DEVICE_STATE,
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# Kwikset 916
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(0x0090, 0x0001): WORKAROUND_DEVICE_STATE,
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# Kwikset Obsidian
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(0x0090, 0x0742): WORKAROUND_DEVICE_STATE,
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# Yale Locks
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# Yale YRD210, YRD220, YRL220
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(0x0129, 0x0000): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD210, YRD220
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(0x0129, 0x0209): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRL210, YRL220
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(0x0129, 0x0409): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD256
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(0x0129, 0x0600): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD110, YRD120
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(0x0129, 0x0800): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD446
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(0x0129, 0x1000): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRL220
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(0x0129, 0x2132): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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(0x0129, 0x3CAC): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD210, YRD220
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(0x0129, 0xAA00): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD220
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(0x0129, 0xFFFF): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRL256
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(0x0129, 0x0F00): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Yale YRD220 (Older Yale products with incorrect vendor ID)
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(0x0109, 0x0000): WORKAROUND_DEVICE_STATE | WORKAROUND_ALARM_TYPE,
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# Schlage BE469
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(0x003B, 0x5044): WORKAROUND_DEVICE_STATE | WORKAROUND_TRACK_MESSAGE,
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# Schlage FE599NX
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(0x003B, 0x504C): WORKAROUND_DEVICE_STATE,
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}
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LOCK_NOTIFICATION = {
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"1": "Manual Lock",
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"2": "Manual Unlock",
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"5": "Keypad Lock",
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"6": "Keypad Unlock",
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"11": "Lock Jammed",
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"254": "Unknown Event",
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}
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NOTIFICATION_RF_LOCK = "3"
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NOTIFICATION_RF_UNLOCK = "4"
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LOCK_NOTIFICATION[NOTIFICATION_RF_LOCK] = "RF Lock"
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LOCK_NOTIFICATION[NOTIFICATION_RF_UNLOCK] = "RF Unlock"
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LOCK_ALARM_TYPE = {
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"9": "Deadbolt Jammed",
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"16": "Unlocked by Bluetooth ",
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"18": "Locked with Keypad by user ",
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"19": "Unlocked with Keypad by user ",
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"21": "Manually Locked ",
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"22": "Manually Unlocked ",
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"27": "Auto re-lock",
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"33": "User deleted: ",
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"112": "Master code changed or User added: ",
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"113": "Duplicate PIN code: ",
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"130": "RF module, power restored",
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"144": "Unlocked by NFC Tag or Card by user ",
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"161": "Tamper Alarm: ",
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"167": "Low Battery",
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"168": "Critical Battery Level",
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"169": "Battery too low to operate",
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}
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ALARM_RF_LOCK = "24"
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ALARM_RF_UNLOCK = "25"
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LOCK_ALARM_TYPE[ALARM_RF_LOCK] = "Locked by RF"
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LOCK_ALARM_TYPE[ALARM_RF_UNLOCK] = "Unlocked by RF"
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MANUAL_LOCK_ALARM_LEVEL = {
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"1": "by Key Cylinder or Inside thumb turn",
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"2": "by Touch function (lock and leave)",
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}
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TAMPER_ALARM_LEVEL = {"1": "Too many keypresses", "2": "Cover removed"}
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LOCK_STATUS = {
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"1": True,
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"2": False,
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"3": True,
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"4": False,
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"5": True,
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"6": False,
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"9": False,
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"18": True,
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"19": False,
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"21": True,
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"22": False,
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"24": True,
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"25": False,
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"27": True,
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}
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ALARM_TYPE_STD = ["18", "19", "33", "112", "113", "144"]
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SET_USERCODE_SCHEMA = vol.Schema(
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{
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vol.Required(const.ATTR_NODE_ID): vol.Coerce(int),
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vol.Required(ATTR_CODE_SLOT): vol.Coerce(int),
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vol.Required(ATTR_USERCODE): cv.string,
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}
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)
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GET_USERCODE_SCHEMA = vol.Schema(
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{
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vol.Required(const.ATTR_NODE_ID): vol.Coerce(int),
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vol.Required(ATTR_CODE_SLOT): vol.Coerce(int),
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}
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)
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CLEAR_USERCODE_SCHEMA = vol.Schema(
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{
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vol.Required(const.ATTR_NODE_ID): vol.Coerce(int),
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vol.Required(ATTR_CODE_SLOT): vol.Coerce(int),
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}
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)
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async def async_setup_entry(hass, config_entry, async_add_entities):
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"""Set up Z-Wave Lock from Config Entry."""
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@callback
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def async_add_lock(lock):
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"""Add Z-Wave Lock."""
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async_add_entities([lock])
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async_dispatcher_connect(hass, "zwave_new_lock", async_add_lock)
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network = hass.data[const.DATA_NETWORK]
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def set_usercode(service):
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"""Set the usercode to index X on the lock."""
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node_id = service.data.get(const.ATTR_NODE_ID)
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lock_node = network.nodes[node_id]
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code_slot = service.data.get(ATTR_CODE_SLOT)
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usercode = service.data.get(ATTR_USERCODE)
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for value in lock_node.get_values(
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class_id=const.COMMAND_CLASS_USER_CODE
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).values():
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if value.index != code_slot:
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continue
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if len(str(usercode)) < 4:
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_LOGGER.error(
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"Invalid code provided: (%s) "
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"usercode must be at least 4 and at most"
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" %s digits",
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usercode,
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len(value.data),
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)
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break
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value.data = str(usercode)
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break
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def get_usercode(service):
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"""Get a usercode at index X on the lock."""
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node_id = service.data.get(const.ATTR_NODE_ID)
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lock_node = network.nodes[node_id]
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code_slot = service.data.get(ATTR_CODE_SLOT)
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for value in lock_node.get_values(
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class_id=const.COMMAND_CLASS_USER_CODE
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).values():
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if value.index != code_slot:
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continue
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_LOGGER.info("Usercode at slot %s is: %s", value.index, value.data)
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break
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def clear_usercode(service):
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"""Set usercode to slot X on the lock."""
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node_id = service.data.get(const.ATTR_NODE_ID)
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lock_node = network.nodes[node_id]
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code_slot = service.data.get(ATTR_CODE_SLOT)
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data = ""
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for value in lock_node.get_values(
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class_id=const.COMMAND_CLASS_USER_CODE
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).values():
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if value.index != code_slot:
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continue
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for i in range(len(value.data)):
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data += "\0"
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i += 1
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_LOGGER.debug("Data to clear lock: %s", data)
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value.data = data
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_LOGGER.info("Usercode at slot %s is cleared", value.index)
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break
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hass.services.async_register(
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DOMAIN, SERVICE_SET_USERCODE, set_usercode, schema=SET_USERCODE_SCHEMA
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)
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hass.services.async_register(
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DOMAIN, SERVICE_GET_USERCODE, get_usercode, schema=GET_USERCODE_SCHEMA
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)
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hass.services.async_register(
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DOMAIN, SERVICE_CLEAR_USERCODE, clear_usercode, schema=CLEAR_USERCODE_SCHEMA
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)
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def get_device(node, values, **kwargs):
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"""Create Z-Wave entity device."""
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return ZwaveLock(values)
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class ZwaveLock(ZWaveDeviceEntity, LockEntity):
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"""Representation of a Z-Wave Lock."""
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def __init__(self, values):
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"""Initialize the Z-Wave lock device."""
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ZWaveDeviceEntity.__init__(self, values, DOMAIN)
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self._state = None
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self._notification = None
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self._lock_status = None
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self._v2btze = None
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self._state_workaround = False
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self._track_message_workaround = False
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self._previous_message = None
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self._alarm_type_workaround = False
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# Enable appropriate workaround flags for our device
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# Make sure that we have values for the key before converting to int
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if self.node.manufacturer_id.strip() and self.node.product_id.strip():
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specific_sensor_key = (
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int(self.node.manufacturer_id, 16),
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int(self.node.product_id, 16),
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)
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if specific_sensor_key in DEVICE_MAPPINGS:
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workaround = DEVICE_MAPPINGS[specific_sensor_key]
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if workaround & WORKAROUND_V2BTZE:
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self._v2btze = 1
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_LOGGER.debug("Polycontrol Danalock v2 BTZE workaround enabled")
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if workaround & WORKAROUND_DEVICE_STATE:
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self._state_workaround = True
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_LOGGER.debug("Notification device state workaround enabled")
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if workaround & WORKAROUND_TRACK_MESSAGE:
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self._track_message_workaround = True
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_LOGGER.debug("Message tracking workaround enabled")
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if workaround & WORKAROUND_ALARM_TYPE:
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self._alarm_type_workaround = True
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_LOGGER.debug("Alarm Type device state workaround enabled")
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self.update_properties()
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def update_properties(self):
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"""Handle data changes for node values."""
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self._state = self.values.primary.data
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_LOGGER.debug("lock state set to %s", self._state)
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if self.values.access_control:
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notification_data = self.values.access_control.data
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self._notification = LOCK_NOTIFICATION.get(str(notification_data))
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if self._state_workaround:
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self._state = LOCK_STATUS.get(str(notification_data))
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_LOGGER.debug("workaround: lock state set to %s", self._state)
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if (
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self._v2btze
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and self.values.v2btze_advanced
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and self.values.v2btze_advanced.data == CONFIG_ADVANCED
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):
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self._state = LOCK_STATUS.get(str(notification_data))
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_LOGGER.debug(
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"Lock state set from Access Control value and is %s, get=%s",
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str(notification_data),
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self.state,
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)
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if self._track_message_workaround:
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this_message = self.node.stats["lastReceivedMessage"][5]
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if this_message == const.COMMAND_CLASS_DOOR_LOCK:
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self._state = self.values.primary.data
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_LOGGER.debug("set state to %s based on message tracking", self._state)
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if self._previous_message == const.COMMAND_CLASS_DOOR_LOCK:
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if self._state:
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self._notification = LOCK_NOTIFICATION[NOTIFICATION_RF_LOCK]
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self._lock_status = LOCK_ALARM_TYPE[ALARM_RF_LOCK]
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else:
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self._notification = LOCK_NOTIFICATION[NOTIFICATION_RF_UNLOCK]
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self._lock_status = LOCK_ALARM_TYPE[ALARM_RF_UNLOCK]
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return
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self._previous_message = this_message
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if not self.values.alarm_type:
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return
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alarm_type = self.values.alarm_type.data
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if self.values.alarm_level:
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alarm_level = self.values.alarm_level.data
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else:
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alarm_level = None
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if not alarm_type:
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return
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if self._alarm_type_workaround:
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self._state = LOCK_STATUS.get(str(alarm_type))
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_LOGGER.debug(
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"workaround: lock state set to %s -- alarm type: %s",
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self._state,
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str(alarm_type),
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)
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if alarm_type == 21:
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self._lock_status = (
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f"{LOCK_ALARM_TYPE.get(str(alarm_type))}"
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f"{MANUAL_LOCK_ALARM_LEVEL.get(str(alarm_level))}"
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)
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return
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if str(alarm_type) in ALARM_TYPE_STD:
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self._lock_status = f"{LOCK_ALARM_TYPE.get(str(alarm_type))}{alarm_level}"
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return
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if alarm_type == 161:
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self._lock_status = (
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f"{LOCK_ALARM_TYPE.get(str(alarm_type))}"
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f"{TAMPER_ALARM_LEVEL.get(str(alarm_level))}"
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)
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return
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if alarm_type != 0:
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self._lock_status = LOCK_ALARM_TYPE.get(str(alarm_type))
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return
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@property
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def is_locked(self):
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"""Return true if device is locked."""
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return self._state
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def lock(self, **kwargs):
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"""Lock the device."""
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self.values.primary.data = True
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def unlock(self, **kwargs):
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"""Unlock the device."""
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self.values.primary.data = False
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@property
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def extra_state_attributes(self):
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"""Return the device specific state attributes."""
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data = super().extra_state_attributes
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if self._notification:
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data[ATTR_NOTIFICATION] = self._notification
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if self._lock_status:
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data[ATTR_LOCK_STATUS] = self._lock_status
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return data
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