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https://github.com/esphome/esphome.git
synced 2024-11-24 07:58:09 +01:00
added manual configurable state_info text_sensor
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parent
d084160b33
commit
0743e192e9
6 changed files with 30 additions and 72 deletions
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@ -19,7 +19,6 @@ CODEOWNERS = ["@j0ta29"]
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DEPENDENCIES = ["text_sensor"]
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AUTO_LOAD = []
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MULTI_CONF = False
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CONF_DEVICE_INFO = "device_info"
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optolink_ns = cg.esphome_ns.namespace("optolink")
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CONF_OPTOLINK_ID = "optolink_id"
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@ -107,20 +106,6 @@ async def to_code(config):
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)
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await cg.register_component(debugSensor, config)
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if CONF_DEVICE_INFO in config:
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debugSensor = cg.new_Pvariable(
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config[DEVICE_INFO_SENSOR_ID], config[CONF_DEVICE_INFO], var
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)
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await ts.register_text_sensor(
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debugSensor,
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{
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"id": config[DEVICE_INFO_SENSOR_ID],
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"name": config[CONF_DEVICE_INFO],
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"disabled_by_default": "false",
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},
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)
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await cg.register_component(debugSensor, config)
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if CORE.is_esp32:
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cg.add(var.set_rx_pin(config[CONF_RX_PIN]["number"]))
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cg.add(var.set_tx_pin(config[CONF_TX_PIN]["number"]))
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@ -79,21 +79,6 @@ size_t Optolink::write(uint8_t ch) {
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return 1;
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}
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void OptolinkDeviceInfoSensor::setup() {
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datapoint_ = new Datapoint<conv4_1_UL>(get_name().c_str(), "optolink", 0x00f8, false);
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datapoint_->setCallback([this](const IDatapoint &dp, DPValue dp_value) {
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uint32_t value = dp_value.getU32();
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ESP_LOGI(TAG, "recieved data for datapoint %s: %d", dp.getName(), value);
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uint8_t *bytes = (uint8_t *) &value;
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uint16_t tmp = esphome::byteswap(*((uint16_t *) bytes));
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std::string geraetekennung = esphome::format_hex_pretty(&tmp, 1);
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std::string hardware_revision = esphome::format_hex_pretty((uint8_t *) bytes + 2, 1);
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std::string software_index = esphome::format_hex_pretty((uint8_t *) bytes + 3, 1);
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publish_state("Device ID: " + geraetekennung + "|Hardware Revision: " + hardware_revision +
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"|Software Index: " + software_index);
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});
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}
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} // namespace optolink
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} // namespace esphome
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@ -37,41 +37,6 @@ class Optolink : public esphome::Component, public Print {
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std::string get_error() { return error_; }
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};
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class OptolinkStateSensor : public esphome::text_sensor::TextSensor, public esphome::PollingComponent {
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public:
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OptolinkStateSensor(std::string name, Optolink *optolink) {
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optolink_ = optolink;
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set_name(name.c_str());
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set_update_interval(1000);
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set_entity_category(esphome::ENTITY_CATEGORY_DIAGNOSTIC);
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}
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protected:
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void setup() override{};
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void update() override { publish_state(optolink_->get_error()); }
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private:
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Optolink *optolink_;
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};
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class OptolinkDeviceInfoSensor : public esphome::text_sensor::TextSensor, public esphome::PollingComponent {
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public:
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OptolinkDeviceInfoSensor(const std::string &name, Optolink *optolink) {
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optolink_ = optolink;
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set_name(name.c_str());
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set_update_interval(1800000);
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set_entity_category(esphome::ENTITY_CATEGORY_DIAGNOSTIC);
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}
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protected:
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void setup() override;
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void update() override { optolink_->read_value(datapoint_); }
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private:
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Optolink *optolink_;
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IDatapoint *datapoint_;
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};
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} // namespace optolink
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} // namespace esphome
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@ -21,6 +21,7 @@ MODE = {
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"DAY_SCHEDULE": TextSensorMode.DAY_SCHEDULE,
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"DAY_SCHEDULE_SYNCHRONIZED": TextSensorMode.DAY_SCHEDULE_SYNCHRONIZED,
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"DEVICE_INFO": TextSensorMode.DEVICE_INFO,
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"STATE_INFO": TextSensorMode.STATE_INFO,
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}
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DAY_OF_WEEK = {
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"MONDAY": 0,
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@ -38,6 +39,19 @@ OptolinkTextSensor = optolink_ns.class_(
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)
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def check_address():
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def validator_(config):
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address_needed = config[CONF_MODE] in ["MAP", "RAW"]
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address_defined = CONF_ADDRESS in config
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if address_needed and not address_defined:
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raise cv.Invalid(f"{CONF_ADDRESS} is required in mode MAP or RAW")
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if not address_needed and address_defined:
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raise cv.Invalid(f"{CONF_ADDRESS} is only allowed in mode MAP or RAW")
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return config
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return validator_
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def check_bytes():
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def validator_(config):
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bytes_needed = config[CONF_MODE] in ["MAP", "RAW"]
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@ -45,9 +59,7 @@ def check_bytes():
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if bytes_needed and not bytes_defined:
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raise cv.Invalid(f"{CONF_BYTES} is required in mode MAP or RAW")
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if not bytes_needed and bytes_defined:
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raise cv.Invalid(
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f"{CONF_BYTES} is not allowed in mode DAY_SCHEDULE and DAY_SCHEDULE_SYNCHRONIZED"
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)
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raise cv.Invalid(f"{CONF_BYTES} is only allowed in mode MAP or RAW")
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return config
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return validator_
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@ -97,7 +109,8 @@ CONFIG_SCHEMA = cv.All(
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text_sensor.TEXT_SENSOR_SCHEMA.extend(
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{
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cv.GenerateID(): cv.declare_id(OptolinkTextSensor),
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cv.Optional(CONF_MODE, default="MAP"): cv.enum(MODE, upper=True),
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cv.Required(CONF_MODE): cv.enum(MODE, upper=True),
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cv.Optional(CONF_ADDRESS): cv.hex_uint32_t,
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cv.Optional(CONF_BYTES): cv.int_range(min=1, max=9),
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cv.Optional(CONF_DAY_OF_WEEK): cv.enum(DAY_OF_WEEK, upper=True),
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cv.Optional(CONF_ENTITY_ID): cv.entity_id,
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@ -105,6 +118,7 @@ CONFIG_SCHEMA = cv.All(
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)
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.extend(cv.COMPONENT_SCHEMA)
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.extend(SENSOR_BASE_SCHEMA),
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check_address(),
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check_bytes(),
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check_dow(),
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check_entity_id(),
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@ -108,6 +108,9 @@ void OptolinkTextSensor::setup() {
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bytes_ = 4;
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address_ = 0x00f8;
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break;
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case STATE_INFO:
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set_entity_category(esphome::ENTITY_CATEGORY_DIAGNOSTIC);
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return; // no datapoint setup!
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}
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setup_datapoint();
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};
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@ -136,6 +139,7 @@ void OptolinkTextSensor::value_changed(uint8_t *value, size_t length) {
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}
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break;
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case DEVICE_INFO:
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case STATE_INFO:
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case MAP:
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unfitting_value_type();
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break;
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@ -145,7 +149,6 @@ void OptolinkTextSensor::value_changed(uint8_t *value, size_t length) {
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void OptolinkTextSensor::value_changed(uint32_t value) {
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switch (mode_) {
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case DEVICE_INFO: {
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ESP_LOGI(TAG, "recieved data for datapoint %s: %d", datapoint_->getName(), value);
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uint8_t *bytes = (uint8_t *) &value;
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uint16_t tmp = esphome::byteswap(*((uint16_t *) bytes));
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std::string geraetekennung = esphome::format_hex_pretty(&tmp, 1);
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@ -10,7 +10,7 @@
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namespace esphome {
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namespace optolink {
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enum TextSensorMode { MAP, RAW, DAY_SCHEDULE, DAY_SCHEDULE_SYNCHRONIZED, DEVICE_INFO };
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enum TextSensorMode { MAP, RAW, DAY_SCHEDULE, DAY_SCHEDULE_SYNCHRONIZED, DEVICE_INFO, STATE_INFO };
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class OptolinkTextSensor : public OptolinkSensorBase,
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public esphome::text_sensor::TextSensor,
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@ -24,7 +24,13 @@ class OptolinkTextSensor : public OptolinkSensorBase,
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protected:
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void setup() override;
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void update() override { optolink_->read_value(datapoint_); }
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void update() override {
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if (mode_ == STATE_INFO) {
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publish_state(optolink_->get_error());
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} else {
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optolink_->read_value(datapoint_);
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}
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}
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const StringRef &get_component_name() override { return get_name(); }
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void value_changed(float state) override { publish_state(std::to_string(state)); };
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