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add tcl112 receiver (#762)
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@ -1,20 +1,22 @@
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import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome.components import climate, remote_transmitter, sensor
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from esphome.components import climate, remote_transmitter, remote_receiver, sensor
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from esphome.const import CONF_ID, CONF_SENSOR
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AUTO_LOAD = ['sensor']
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AUTO_LOAD = ['sensor', 'climate_ir']
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tcl112_ns = cg.esphome_ns.namespace('tcl112')
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Tcl112Climate = tcl112_ns.class_('Tcl112Climate', climate.Climate, cg.Component)
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CONF_TRANSMITTER_ID = 'transmitter_id'
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CONF_RECEIVER_ID = 'receiver_id'
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CONF_SUPPORTS_HEAT = 'supports_heat'
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CONF_SUPPORTS_COOL = 'supports_cool'
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CONFIG_SCHEMA = cv.All(climate.CLIMATE_SCHEMA.extend({
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cv.GenerateID(): cv.declare_id(Tcl112Climate),
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cv.GenerateID(CONF_TRANSMITTER_ID): cv.use_id(remote_transmitter.RemoteTransmitterComponent),
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cv.Optional(CONF_RECEIVER_ID): cv.use_id(remote_receiver.RemoteReceiverComponent),
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cv.Optional(CONF_SUPPORTS_COOL, default=True): cv.boolean,
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cv.Optional(CONF_SUPPORTS_HEAT, default=True): cv.boolean,
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cv.Optional(CONF_SENSOR): cv.use_id(sensor.Sensor),
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@ -31,6 +33,9 @@ def to_code(config):
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if CONF_SENSOR in config:
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sens = yield cg.get_variable(config[CONF_SENSOR])
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cg.add(var.set_sensor(sens))
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if CONF_RECEIVER_ID in config:
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receiver = yield cg.get_variable(config[CONF_RECEIVER_ID])
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cg.add(receiver.register_listener(var))
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transmitter = yield cg.get_variable(config[CONF_TRANSMITTER_ID])
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cg.add(var.set_transmitter(transmitter))
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@ -18,62 +18,15 @@ const uint8_t TCL112_AUTO = 8;
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const uint8_t TCL112_POWER_MASK = 0x04;
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const uint8_t TCL112_HALF_DEGREE = 0b00100000;
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const float TCL112_TEMP_MAX = 31.0;
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const float TCL112_TEMP_MIN = 16.0;
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const uint16_t TCL112_HEADER_MARK = 3000;
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const uint16_t TCL112_HEADER_MARK = 3100;
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const uint16_t TCL112_HEADER_SPACE = 1650;
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const uint16_t TCL112_BIT_MARK = 500;
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const uint16_t TCL112_ONE_SPACE = 1050;
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const uint16_t TCL112_ZERO_SPACE = 325;
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const uint16_t TCL112_ONE_SPACE = 1100;
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const uint16_t TCL112_ZERO_SPACE = 350;
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const uint32_t TCL112_GAP = TCL112_HEADER_SPACE;
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climate::ClimateTraits Tcl112Climate::traits() {
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auto traits = climate::ClimateTraits();
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traits.set_supports_current_temperature(this->sensor_ != nullptr);
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traits.set_supports_auto_mode(true);
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traits.set_supports_cool_mode(this->supports_cool_);
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traits.set_supports_heat_mode(this->supports_heat_);
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traits.set_supports_two_point_target_temperature(false);
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traits.set_supports_away(false);
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traits.set_visual_min_temperature(TCL112_TEMP_MIN);
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traits.set_visual_max_temperature(TCL112_TEMP_MAX);
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traits.set_visual_temperature_step(.5f);
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return traits;
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}
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void Tcl112Climate::setup() {
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if (this->sensor_) {
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this->sensor_->add_on_state_callback([this](float state) {
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this->current_temperature = state;
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// current temperature changed, publish state
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this->publish_state();
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});
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this->current_temperature = this->sensor_->state;
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} else
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this->current_temperature = NAN;
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// restore set points
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auto restore = this->restore_state_();
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if (restore.has_value()) {
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restore->apply(this);
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} else {
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// restore from defaults
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this->mode = climate::CLIMATE_MODE_OFF;
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this->target_temperature = 24;
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}
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}
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void Tcl112Climate::control(const climate::ClimateCall &call) {
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if (call.get_mode().has_value())
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this->mode = *call.get_mode();
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if (call.get_target_temperature().has_value())
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this->target_temperature = *call.get_target_temperature();
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this->transmit_state_();
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this->publish_state();
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}
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void Tcl112Climate::transmit_state_() {
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void Tcl112Climate::transmit_state() {
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uint8_t remote_state[TCL112_STATE_LENGTH] = {0};
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// A known good state. (On, Cool, 24C)
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@ -124,7 +77,10 @@ void Tcl112Climate::transmit_state_() {
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for (uint8_t checksum_byte = 0; checksum_byte < TCL112_STATE_LENGTH - 1; checksum_byte++)
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remote_state[TCL112_STATE_LENGTH - 1] += remote_state[checksum_byte];
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ESP_LOGV(TAG, "Sending tcl code: %u", remote_state[7]);
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ESP_LOGV(TAG, "Sending: %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X", remote_state[0],
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remote_state[1], remote_state[2], remote_state[3], remote_state[4], remote_state[5], remote_state[6],
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remote_state[7], remote_state[8], remote_state[9], remote_state[10], remote_state[11], remote_state[12],
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remote_state[13]);
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auto transmit = this->transmitter_->transmit();
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auto data = transmit.get_data();
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@ -148,5 +104,76 @@ void Tcl112Climate::transmit_state_() {
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transmit.perform();
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}
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bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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// Validate header
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if (!data.expect_item(TCL112_HEADER_MARK, TCL112_HEADER_SPACE)) {
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ESP_LOGV(TAG, "Header fail");
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return false;
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}
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uint8_t remote_state[TCL112_STATE_LENGTH] = {0};
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// Read all bytes.
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for (int i = 0; i < TCL112_STATE_LENGTH; i++) {
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// Read bit
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for (int j = 0; j < 8; j++) {
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if (data.expect_item(TCL112_BIT_MARK, TCL112_ONE_SPACE))
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remote_state[i] |= 1 << j;
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else if (!data.expect_item(TCL112_BIT_MARK, TCL112_ZERO_SPACE)) {
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ESP_LOGV(TAG, "Byte %d bit %d fail", i, j);
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return false;
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}
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}
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}
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// Validate footer
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if (!data.expect_mark(TCL112_BIT_MARK)) {
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ESP_LOGV(TAG, "Footer fail");
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return false;
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}
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uint8_t checksum = 0;
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// Calculate & set the checksum for the current internal state of the remote.
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// Stored the checksum value in the last byte.
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for (uint8_t checksum_byte = 0; checksum_byte < TCL112_STATE_LENGTH - 1; checksum_byte++)
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checksum += remote_state[checksum_byte];
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if (checksum != remote_state[TCL112_STATE_LENGTH - 1]) {
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ESP_LOGV(TAG, "Checksum fail");
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return false;
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}
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ESP_LOGV(TAG, "Received: %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X",
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remote_state[0], remote_state[1], remote_state[2], remote_state[3], remote_state[4], remote_state[5],
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remote_state[6], remote_state[7], remote_state[8], remote_state[9], remote_state[10], remote_state[11],
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remote_state[12], remote_state[13]);
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// two first bytes are constant
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if (remote_state[0] != 0x23 || remote_state[1] != 0xCB)
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return false;
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if ((remote_state[5] & TCL112_POWER_MASK) == 0) {
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this->mode = climate::CLIMATE_MODE_OFF;
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} else {
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auto mode = remote_state[6] & 0x0F;
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switch (mode) {
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case TCL112_HEAT:
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this->mode = climate::CLIMATE_MODE_HEAT;
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break;
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case TCL112_COOL:
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this->mode = climate::CLIMATE_MODE_COOL;
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break;
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case TCL112_DRY:
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case TCL112_FAN:
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case TCL112_AUTO:
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this->mode = climate::CLIMATE_MODE_AUTO;
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break;
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}
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}
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auto temp = TCL112_TEMP_MAX - remote_state[7];
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if (remote_state[12] & TCL112_HALF_DEGREE)
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temp += .5f;
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this->target_temperature = temp;
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this->publish_state();
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return true;
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}
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} // namespace tcl112
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} // namespace esphome
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@ -1,39 +1,23 @@
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#pragma once
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#include "esphome/core/component.h"
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#include "esphome/core/automation.h"
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#include "esphome/components/climate/climate.h"
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#include "esphome/components/remote_base/remote_base.h"
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#include "esphome/components/remote_transmitter/remote_transmitter.h"
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#include "esphome/components/sensor/sensor.h"
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#include "esphome/components/climate_ir/climate_ir.h"
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namespace esphome {
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namespace tcl112 {
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class Tcl112Climate : public climate::Climate, public Component {
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// Temperature
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const float TCL112_TEMP_MAX = 31.0;
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const float TCL112_TEMP_MIN = 16.0;
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class Tcl112Climate : public climate::ClimateIR {
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public:
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void setup() override;
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void set_transmitter(remote_transmitter::RemoteTransmitterComponent *transmitter) {
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this->transmitter_ = transmitter;
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}
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void set_supports_cool(bool supports_cool) { this->supports_cool_ = supports_cool; }
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void set_supports_heat(bool supports_heat) { this->supports_heat_ = supports_heat; }
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void set_sensor(sensor::Sensor *sensor) { this->sensor_ = sensor; }
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Tcl112Climate() : climate::ClimateIR(TCL112_TEMP_MIN, TCL112_TEMP_MAX, .5f) {}
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protected:
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/// Override control to change settings of the climate device.
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void control(const climate::ClimateCall &call) override;
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/// Return the traits of this controller.
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climate::ClimateTraits traits() override;
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/// Transmit via IR the state of this climate controller.
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void transmit_state_();
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bool supports_cool_{true};
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bool supports_heat_{true};
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remote_transmitter::RemoteTransmitterComponent *transmitter_;
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sensor::Sensor *sensor_{nullptr};
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void transmit_state() override;
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/// Handle received IR Buffer
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bool on_receive(remote_base::RemoteReceiveData data) override;
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};
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} // namespace tcl112
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