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add tcl112 support for dry, fan and swing (#939)
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@ -15,6 +15,12 @@ const uint8_t TCL112_COOL = 3;
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const uint8_t TCL112_FAN = 7;
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const uint8_t TCL112_FAN = 7;
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const uint8_t TCL112_AUTO = 8;
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const uint8_t TCL112_AUTO = 8;
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const uint8_t TCL112_FAN_AUTO = 0;
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const uint8_t TCL112_FAN_LOW = 2;
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const uint8_t TCL112_FAN_MED = 3;
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const uint8_t TCL112_FAN_HIGH = 5;
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const uint8_t TCL112_VSWING_MASK = 0x38;
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const uint8_t TCL112_POWER_MASK = 0x04;
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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 uint8_t TCL112_HALF_DEGREE = 0b00100000;
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@ -53,6 +59,14 @@ void Tcl112Climate::transmit_state() {
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remote_state[6] &= 0xF0;
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remote_state[6] &= 0xF0;
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remote_state[6] |= TCL112_HEAT;
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remote_state[6] |= TCL112_HEAT;
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break;
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break;
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case climate::CLIMATE_MODE_DRY:
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remote_state[6] &= 0xF0;
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remote_state[6] |= TCL112_DRY;
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break;
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case climate::CLIMATE_MODE_FAN_ONLY:
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remote_state[6] &= 0xF0;
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remote_state[6] |= TCL112_FAN;
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break;
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case climate::CLIMATE_MODE_OFF:
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case climate::CLIMATE_MODE_OFF:
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default:
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default:
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remote_state[5] &= ~TCL112_POWER_MASK;
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remote_state[5] &= ~TCL112_POWER_MASK;
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@ -72,6 +86,29 @@ void Tcl112Climate::transmit_state() {
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remote_state[7] &= 0xF0; // Clear temp bits.
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remote_state[7] &= 0xF0; // Clear temp bits.
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remote_state[7] |= ((uint8_t) TCL112_TEMP_MAX - half_degrees / 2);
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remote_state[7] |= ((uint8_t) TCL112_TEMP_MAX - half_degrees / 2);
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// Set fan
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uint8_t selected_fan;
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switch (this->fan_mode) {
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case climate::CLIMATE_FAN_HIGH:
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selected_fan = TCL112_FAN_HIGH;
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break;
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case climate::CLIMATE_FAN_MEDIUM:
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selected_fan = TCL112_FAN_MED;
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break;
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case climate::CLIMATE_FAN_LOW:
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selected_fan = TCL112_FAN_LOW;
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break;
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case climate::CLIMATE_FAN_AUTO:
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default:
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selected_fan = TCL112_FAN_AUTO;
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}
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remote_state[8] |= selected_fan;
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// Set swing
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if (this->swing_mode == climate::CLIMATE_SWING_VERTICAL) {
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remote_state[8] |= TCL112_VSWING_MASK;
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}
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// Calculate & set the checksum for the current internal state of the remote.
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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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// 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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for (uint8_t checksum_byte = 0; checksum_byte < TCL112_STATE_LENGTH - 1; checksum_byte++)
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@ -107,7 +144,7 @@ void Tcl112Climate::transmit_state() {
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bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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// Validate header
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// Validate header
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if (!data.expect_item(TCL112_HEADER_MARK, TCL112_HEADER_SPACE)) {
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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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ESP_LOGVV(TAG, "Header fail");
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return false;
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return false;
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}
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}
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@ -119,14 +156,14 @@ bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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if (data.expect_item(TCL112_BIT_MARK, TCL112_ONE_SPACE))
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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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remote_state[i] |= 1 << j;
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else if (!data.expect_item(TCL112_BIT_MARK, TCL112_ZERO_SPACE)) {
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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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ESP_LOGVV(TAG, "Byte %d bit %d fail", i, j);
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return false;
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return false;
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}
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}
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}
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}
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}
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}
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// Validate footer
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// Validate footer
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if (!data.expect_mark(TCL112_BIT_MARK)) {
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if (!data.expect_mark(TCL112_BIT_MARK)) {
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ESP_LOGV(TAG, "Footer fail");
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ESP_LOGVV(TAG, "Footer fail");
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return false;
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return false;
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}
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}
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@ -136,7 +173,7 @@ bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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for (uint8_t checksum_byte = 0; checksum_byte < TCL112_STATE_LENGTH - 1; checksum_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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checksum += remote_state[checksum_byte];
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if (checksum != remote_state[TCL112_STATE_LENGTH - 1]) {
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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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ESP_LOGVV(TAG, "Checksum fail");
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return false;
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return false;
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}
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}
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@ -161,7 +198,11 @@ bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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this->mode = climate::CLIMATE_MODE_COOL;
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this->mode = climate::CLIMATE_MODE_COOL;
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break;
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break;
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case TCL112_DRY:
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case TCL112_DRY:
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this->mode = climate::CLIMATE_MODE_DRY;
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break;
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case TCL112_FAN:
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case TCL112_FAN:
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this->mode = climate::CLIMATE_MODE_FAN_ONLY;
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break;
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case TCL112_AUTO:
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case TCL112_AUTO:
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this->mode = climate::CLIMATE_MODE_AUTO;
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this->mode = climate::CLIMATE_MODE_AUTO;
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break;
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break;
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@ -171,6 +212,28 @@ bool Tcl112Climate::on_receive(remote_base::RemoteReceiveData data) {
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if (remote_state[12] & TCL112_HALF_DEGREE)
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if (remote_state[12] & TCL112_HALF_DEGREE)
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temp += .5f;
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temp += .5f;
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this->target_temperature = temp;
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this->target_temperature = temp;
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auto fan = remote_state[8] & 0x7;
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switch (fan) {
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case TCL112_FAN_HIGH:
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this->fan_mode = climate::CLIMATE_FAN_HIGH;
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break;
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case TCL112_FAN_MED:
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this->fan_mode = climate::CLIMATE_FAN_MEDIUM;
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break;
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case TCL112_FAN_LOW:
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this->fan_mode = climate::CLIMATE_FAN_LOW;
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break;
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case TCL112_FAN_AUTO:
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default:
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this->fan_mode = climate::CLIMATE_FAN_AUTO;
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break;
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}
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if ((remote_state[8] & TCL112_VSWING_MASK) == TCL112_VSWING_MASK) {
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this->swing_mode = climate::CLIMATE_SWING_VERTICAL;
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} else {
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this->swing_mode = climate::CLIMATE_SWING_OFF;
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}
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this->publish_state();
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this->publish_state();
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return true;
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return true;
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}
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}
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@ -11,7 +11,11 @@ const float TCL112_TEMP_MIN = 16.0;
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class Tcl112Climate : public climate_ir::ClimateIR {
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class Tcl112Climate : public climate_ir::ClimateIR {
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public:
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public:
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Tcl112Climate() : climate_ir::ClimateIR(TCL112_TEMP_MIN, TCL112_TEMP_MAX, .5f) {}
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Tcl112Climate()
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: climate_ir::ClimateIR(TCL112_TEMP_MIN, TCL112_TEMP_MAX, .5f, true, true,
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{climate::CLIMATE_FAN_AUTO, climate::CLIMATE_FAN_LOW, climate::CLIMATE_FAN_MEDIUM,
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climate::CLIMATE_FAN_HIGH},
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{climate::CLIMATE_SWING_OFF, climate::CLIMATE_SWING_VERTICAL}) {}
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protected:
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protected:
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/// Transmit via IR the state of this climate controller.
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/// Transmit via IR the state of this climate controller.
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