"""Test Tuya valve platform.""" from __future__ import annotations from typing import Any from unittest.mock import patch from freezegun.api import FrozenDateTimeFactory import pytest from syrupy.assertion import SnapshotAssertion from tuya_sharing import CustomerDevice, Manager from homeassistant.components.valve import ( DOMAIN as VALVE_DOMAIN, SERVICE_CLOSE_VALVE, SERVICE_OPEN_VALVE, ) from homeassistant.const import ATTR_ENTITY_ID, STATE_UNKNOWN, Platform from homeassistant.core import HomeAssistant from homeassistant.helpers import entity_registry as er from . import MockDeviceListener, check_selective_state_update, initialize_entry from tests.common import MockConfigEntry, snapshot_platform @pytest.fixture(autouse=True) def platform_autouse(): """Platform fixture.""" with patch("homeassistant.components.tuya.PLATFORMS", [Platform.VALVE]): yield async def test_platform_setup_and_discovery( hass: HomeAssistant, mock_manager: Manager, mock_config_entry: MockConfigEntry, mock_devices: list[CustomerDevice], entity_registry: er.EntityRegistry, snapshot: SnapshotAssertion, ) -> None: """Test platform setup and discovery.""" await initialize_entry(hass, mock_manager, mock_config_entry, mock_devices) await snapshot_platform(hass, entity_registry, snapshot, mock_config_entry.entry_id) @pytest.mark.parametrize( "mock_device_code", ["sfkzq_ed7frwissyqrejic"], ) @pytest.mark.parametrize( ("updates", "expected_state", "last_reported"), [ # Update without dpcode - state should not change, last_reported stays # at available_reported ({"battery_percentage": 50}, "open", "2024-01-01T00:00:20+00:00"), # Update with dpcode - state should change, last_reported advances ({"switch_1": False}, "closed", "2024-01-01T00:01:00+00:00"), # Update with multiple properties including dpcode - state should change ( {"battery_percentage": 50, "switch_1": False}, "closed", "2024-01-01T00:01:00+00:00", ), ], ) @pytest.mark.freeze_time("2024-01-01") async def test_selective_state_update( hass: HomeAssistant, mock_manager: Manager, mock_config_entry: MockConfigEntry, mock_device: CustomerDevice, mock_listener: MockDeviceListener, freezer: FrozenDateTimeFactory, updates: dict[str, Any], expected_state: str, last_reported: str, ) -> None: """Test skip_update/last_reported.""" await initialize_entry(hass, mock_manager, mock_config_entry, mock_device) await check_selective_state_update( hass, mock_device, mock_listener, freezer, entity_id="valve.jie_hashui_fa_valve_1", dpcode="switch_1", initial_state="open", updates=updates, expected_state=expected_state, last_reported=last_reported, ) @pytest.mark.parametrize( "mock_device_code", ["sfkzq_ed7frwissyqrejic"], ) @pytest.mark.parametrize( ("service", "expected_commands"), [ ( SERVICE_OPEN_VALVE, [{"code": "switch_1", "value": True}], ), ( SERVICE_CLOSE_VALVE, [{"code": "switch_1", "value": False}], ), ], ) async def test_action( hass: HomeAssistant, mock_manager: Manager, mock_config_entry: MockConfigEntry, mock_device: CustomerDevice, service: str, expected_commands: list[dict[str, Any]], ) -> None: """Test valve action.""" entity_id = "valve.jie_hashui_fa_valve_1" await initialize_entry(hass, mock_manager, mock_config_entry, mock_device) state = hass.states.get(entity_id) assert state is not None, f"{entity_id} does not exist" await hass.services.async_call( VALVE_DOMAIN, service, { ATTR_ENTITY_ID: entity_id, }, blocking=True, ) mock_manager.send_commands.assert_called_once_with( mock_device.id, expected_commands ) @pytest.mark.parametrize( "mock_device_code", ["sfkzq_ed7frwissyqrejic"], ) @pytest.mark.parametrize( ("initial_status", "expected_state"), [ (True, "open"), (False, "closed"), (None, STATE_UNKNOWN), ("some string", STATE_UNKNOWN), ], ) async def test_state( hass: HomeAssistant, mock_manager: Manager, mock_config_entry: MockConfigEntry, mock_device: CustomerDevice, initial_status: Any, expected_state: str, ) -> None: """Test valve state.""" entity_id = "valve.jie_hashui_fa_valve_1" mock_device.status["switch_1"] = initial_status await initialize_entry(hass, mock_manager, mock_config_entry, mock_device) state = hass.states.get(entity_id) assert state is not None, f"{entity_id} does not exist" assert state.state == expected_state