import esphome.codegen as cg import esphome.config_validation as cv from esphome.components import uart from esphome.const import CONF_ID CODEOWNERS = ["@elvit"] DEPENDENCIES = ["uart"] MULTICONF = True CONF_PANASONIC_HEATPUMP_ID = "panasonic_heatpump" CONF_UART_CLIENT = "uart_client_id" CONF_UART_CLIENT_TIMEOUT = "uart_client_timeout" CONF_LOG_UART_MSG = "log_uart_msg" panasonic_heatpump_ns = cg.esphome_ns.namespace("panasonic_heatpump") PanasonicHeatpumpComponent = panasonic_heatpump_ns.class_( "PanasonicHeatpumpComponent", cg.PollingComponent, uart.UARTDevice ) CONFIG_SCHEMA = ( cv.Schema( { cv.GenerateID(): cv.declare_id(PanasonicHeatpumpComponent), cv.Optional(CONF_UART_CLIENT): cv.use_id(uart.UARTComponent), cv.Optional( CONF_UART_CLIENT_TIMEOUT, default="10000ms" ): cv.positive_time_period_milliseconds, cv.Optional(CONF_LOG_UART_MSG, default=False): cv.boolean, } ) .extend(cv.polling_component_schema("3s")) .extend(uart.UART_DEVICE_SCHEMA) ) async def to_code(config): var = cg.new_Pvariable(config[CONF_ID]) await cg.register_component(var, config) await uart.register_uart_device(var, config) if CONF_UART_CLIENT in config: uart_client = await cg.get_variable(config[CONF_UART_CLIENT]) cg.add(var.set_uart_client(uart_client)) cg.add(var.set_uart_client_timeout(config[CONF_UART_CLIENT_TIMEOUT])) cg.add(var.set_log_uart_msg(config[CONF_LOG_UART_MSG]))