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https://github.com/esphome/esphome.git
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a50eb3579a
* Validate NeoPixelBus Method Pin * Add path * Prefix GPIO
194 lines
6.8 KiB
Python
194 lines
6.8 KiB
Python
import voluptuous as vol
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from esphomeyaml import pins
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from esphomeyaml.components import light
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from esphomeyaml.components.light import AddressableLight
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from esphomeyaml.components.power_supply import PowerSupplyComponent
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import esphomeyaml.config_validation as cv
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from esphomeyaml.const import CONF_CLOCK_PIN, CONF_COLOR_CORRECT, CONF_DATA_PIN, \
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CONF_DEFAULT_TRANSITION_LENGTH, CONF_EFFECTS, CONF_GAMMA_CORRECT, CONF_MAKE_ID, CONF_METHOD, \
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CONF_NAME, CONF_NUM_LEDS, CONF_PIN, CONF_POWER_SUPPLY, CONF_TYPE, CONF_VARIANT
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from esphomeyaml.core import CORE
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from esphomeyaml.cpp_generator import TemplateArguments, add, get_variable, variable
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from esphomeyaml.cpp_helpers import setup_component
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from esphomeyaml.cpp_types import App, Application, Component, global_ns
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NeoPixelBusLightOutputBase = light.light_ns.class_('NeoPixelBusLightOutputBase', Component,
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AddressableLight)
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ESPNeoPixelOrder = light.light_ns.namespace('ESPNeoPixelOrder')
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def validate_type(value):
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value = cv.string(value).upper()
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if 'R' not in value:
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raise vol.Invalid("Must have R in type")
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if 'G' not in value:
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raise vol.Invalid("Must have G in type")
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if 'B' not in value:
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raise vol.Invalid("Must have B in type")
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rest = set(value) - set('RGBW')
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if rest:
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raise vol.Invalid("Type has invalid color: {}".format(', '.join(rest)))
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if len(set(value)) != len(value):
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raise vol.Invalid("Type has duplicate color!")
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return value
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def validate_variant(value):
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value = cv.string(value).upper()
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if value == 'WS2813':
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value = 'WS2812X'
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if value == 'WS2812':
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value = '800KBPS'
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if value == 'LC8812':
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value = 'SK6812'
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return cv.one_of(*VARIANTS)(value)
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def validate_method(value):
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if value is None:
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if CORE.is_esp32:
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return 'ESP32_I2S_1'
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if CORE.is_esp8266:
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return 'ESP8266_DMA'
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raise NotImplementedError
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if CORE.is_esp32:
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return cv.one_of(*ESP32_METHODS, upper=True, space='_')(value)
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if CORE.is_esp8266:
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return cv.one_of(*ESP8266_METHODS, upper=True, space='_')(value)
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raise NotImplementedError
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def validate_method_pin(value):
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method = value[CONF_METHOD]
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method_pins = {
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'ESP8266_DMA': [3],
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'ESP8266_UART0': [1],
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'ESP8266_ASYNC_UART0': [1],
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'ESP8266_UART1': [2],
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'ESP8266_ASYNC_UART1': [2],
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'ESP32_I2S_0': list(range(0, 32)),
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'ESP32_I2S_1': list(range(0, 32)),
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}
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if CORE.is_esp8266:
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method_pins['BIT_BANG'] = list(range(0, 16))
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elif CORE.is_esp32:
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method_pins['BIT_BANG'] = list(range(0, 32))
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pins_ = method_pins[method]
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for opt in (CONF_PIN, CONF_CLOCK_PIN, CONF_DATA_PIN):
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if opt in value and value[opt] not in pins_:
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raise vol.Invalid("Method {} only supports pin(s) {}".format(
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method, ', '.join('GPIO{}'.format(x) for x in pins_)
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), path=[CONF_METHOD])
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return value
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VARIANTS = {
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'WS2812X': 'Ws2812x',
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'SK6812': 'Sk6812',
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'800KBPS': '800Kbps',
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'400KBPS': '400Kbps',
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}
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ESP8266_METHODS = {
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'ESP8266_DMA': 'NeoEsp8266Dma{}Method',
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'ESP8266_UART0': 'NeoEsp8266Uart0{}Method',
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'ESP8266_UART1': 'NeoEsp8266Uart1{}Method',
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'ESP8266_ASYNC_UART0': 'NeoEsp8266AsyncUart0{}Method',
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'ESP8266_ASYNC_UART1': 'NeoEsp8266AsyncUart1{}Method',
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'BIT_BANG': 'NeoEsp8266BitBang{}Method',
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}
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ESP32_METHODS = {
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'ESP32_I2S_0': 'NeoEsp32I2s0{}Method',
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'ESP32_I2S_1': 'NeoEsp32I2s1{}Method',
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'BIT_BANG': 'NeoEsp32BitBang{}Method',
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}
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def format_method(config):
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variant = VARIANTS[config[CONF_VARIANT]]
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method = config[CONF_METHOD]
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if CORE.is_esp8266:
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return ESP8266_METHODS[method].format(variant)
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if CORE.is_esp32:
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return ESP32_METHODS[method].format(variant)
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raise NotImplementedError
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def validate(config):
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if CONF_PIN in config:
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if CONF_CLOCK_PIN in config or CONF_DATA_PIN in config:
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raise vol.Invalid("Cannot specify both 'pin' and 'clock_pin'+'data_pin'")
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return config
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if CONF_CLOCK_PIN in config:
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if CONF_DATA_PIN not in config:
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raise vol.Invalid("If you give clock_pin, you must also specify data_pin")
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return config
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raise vol.Invalid("Must specify at least one of 'pin' or 'clock_pin'+'data_pin'")
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MakeNeoPixelBusLight = Application.struct('MakeNeoPixelBusLight')
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PLATFORM_SCHEMA = cv.nameable(light.LIGHT_PLATFORM_SCHEMA.extend({
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cv.GenerateID(CONF_MAKE_ID): cv.declare_variable_id(MakeNeoPixelBusLight),
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vol.Optional(CONF_TYPE, default='GRB'): validate_type,
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vol.Optional(CONF_VARIANT, default='800KBPS'): validate_variant,
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vol.Optional(CONF_METHOD, default=None): validate_method,
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vol.Optional(CONF_PIN): pins.output_pin,
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vol.Optional(CONF_CLOCK_PIN): pins.output_pin,
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vol.Optional(CONF_DATA_PIN): pins.output_pin,
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vol.Required(CONF_NUM_LEDS): cv.positive_not_null_int,
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vol.Optional(CONF_GAMMA_CORRECT): cv.positive_float,
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vol.Optional(CONF_COLOR_CORRECT): vol.All([cv.percentage], vol.Length(min=3, max=4)),
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vol.Optional(CONF_DEFAULT_TRANSITION_LENGTH): cv.positive_time_period_milliseconds,
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vol.Optional(CONF_POWER_SUPPLY): cv.use_variable_id(PowerSupplyComponent),
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vol.Optional(CONF_EFFECTS): light.validate_effects(light.ADDRESSABLE_EFFECTS),
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}).extend(cv.COMPONENT_SCHEMA.schema), validate, validate_method_pin)
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def to_code(config):
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type_ = config[CONF_TYPE]
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has_white = 'W' in type_
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if has_white:
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func = App.make_neo_pixel_bus_rgbw_light
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color_feat = global_ns.NeoRgbwFeature
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else:
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func = App.make_neo_pixel_bus_rgb_light
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color_feat = global_ns.NeoRgbFeature
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template = TemplateArguments(getattr(global_ns, format_method(config)), color_feat)
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rhs = func(template, config[CONF_NAME])
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make = variable(config[CONF_MAKE_ID], rhs, type=MakeNeoPixelBusLight.template(template))
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output = make.Poutput
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if CONF_PIN in config:
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add(output.add_leds(config[CONF_NUM_LEDS], config[CONF_PIN]))
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else:
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add(output.add_leds(config[CONF_NUM_LEDS], config[CONF_CLOCK_PIN], config[CONF_DATA_PIN]))
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add(output.set_pixel_order(getattr(ESPNeoPixelOrder, type_)))
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if CONF_POWER_SUPPLY in config:
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for power_supply in get_variable(config[CONF_POWER_SUPPLY]):
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yield
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add(output.set_power_supply(power_supply))
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if CONF_COLOR_CORRECT in config:
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add(output.set_correction(*config[CONF_COLOR_CORRECT]))
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light.setup_light(make.Pstate, config)
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setup_component(output, config)
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REQUIRED_BUILD_FLAGS = '-DUSE_NEO_PIXEL_BUS_LIGHT'
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LIB_DEPS = 'NeoPixelBus@2.4.1'
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def to_hass_config(data, config):
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return light.core_to_hass_config(data, config, brightness=True, rgb=True, color_temp=False,
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white_value='W' in config[CONF_TYPE])
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