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Add Byron Doorbell RF protocol (#4718)
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@ -242,6 +242,55 @@ async def build_dumpers(config):
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return dumpers
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# ByronSX
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(
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ByronSXData,
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ByronSXBinarySensor,
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ByronSXTrigger,
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ByronSXAction,
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ByronSXDumper,
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) = declare_protocol("ByronSX")
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BYRONSX_SCHEMA = cv.Schema(
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{
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cv.Required(CONF_ADDRESS): cv.All(cv.hex_int, cv.Range(min=0, max=0xFF)),
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cv.Optional(CONF_COMMAND, default=0x10): cv.All(
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cv.hex_int, cv.one_of(1, 2, 3, 5, 6, 9, 0xD, 0xE, 0x10, int=True)
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),
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}
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)
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@register_binary_sensor("byronsx", ByronSXBinarySensor, BYRONSX_SCHEMA)
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def byronsx_binary_sensor(var, config):
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cg.add(
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var.set_data(
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cg.StructInitializer(
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ByronSXData,
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("address", config[CONF_ADDRESS]),
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("command", config[CONF_COMMAND]),
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)
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)
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)
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@register_trigger("byronsx", ByronSXTrigger, ByronSXData)
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def byronsx_trigger(var, config):
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pass
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@register_dumper("byronsx", ByronSXDumper)
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def byronsx_dumper(var, config):
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pass
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@register_action("byronsx", ByronSXAction, BYRONSX_SCHEMA)
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async def byronsx_action(var, config, args):
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template_ = await cg.templatable(config[CONF_ADDRESS], args, cg.uint8)
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cg.add(var.set_address(template_))
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template_ = await cg.templatable(config[CONF_COMMAND], args, cg.uint8)
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cg.add(var.set_command(template_))
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# CanalSat
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(
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CanalSatData,
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134
esphome/components/remote_base/byronsx_protocol.cpp
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134
esphome/components/remote_base/byronsx_protocol.cpp
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@ -0,0 +1,134 @@
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#include "byronsx_protocol.h"
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#include "esphome/core/log.h"
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namespace esphome {
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namespace remote_base {
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static const char *const TAG = "remote.byronsx";
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static const uint32_t BIT_TIME_US = 333;
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static const uint8_t NBITS_ADDRESS = 8;
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static const uint8_t NBITS_COMMAND = 4;
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static const uint8_t NBITS_START_BIT = 1;
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static const uint8_t NBITS_DATA = NBITS_ADDRESS + NBITS_COMMAND /*+ NBITS_COMMAND*/;
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/*
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ByronSX Protocol
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Each transmitted packet appears to consist of thirteen bits of PWM encoded
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data. Each bit period of aprox 1ms consists of a transmitter OFF period
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followed by a transmitter ON period. The 'on' and 'off' periods are either
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short (approx 332us) or long (664us).
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A short 'off' followed by a long 'on' represents a '1' bit.
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A long 'off' followed by a short 'on' represents a '0' bit.
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A the beginning of each packet is and initial 'off' period of approx 5.6ms
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followed by a short 'on'.
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The data payload consists of twelve bits which appear to be an eight bit
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address floowied by a 4 bit chime number.
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SAAAAAAAACCCC
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Whese:
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S = the initial short start pulse
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A = The eight address bits
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C - The four chime bits
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--------------------
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I have also used 'RFLink' software (RLink Firmware Version: 1.1 Revision: 48)
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to capture these packets, eg:
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20;19;Byron;ID=004f;SWITCH=02;CMD=ON;CHIME=02;
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This module transmits and interprets packets in the same way as RFLink.
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marshn
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*/
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void ByronSXProtocol::encode(RemoteTransmitData *dst, const ByronSXData &data) {
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uint32_t out_data = 0x0;
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ESP_LOGD(TAG, "Send ByronSX: address=%04x command=%03x", data.address, data.command);
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out_data = data.address;
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out_data <<= NBITS_COMMAND;
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out_data |= data.command;
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ESP_LOGV(TAG, "Send ByronSX: out_data %03x", out_data);
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// Initial Mark start bit
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dst->mark(1 * BIT_TIME_US);
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for (uint32_t mask = 1UL << (NBITS_DATA - 1); mask != 0; mask >>= 1) {
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if (out_data & mask) {
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dst->space(2 * BIT_TIME_US);
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dst->mark(1 * BIT_TIME_US);
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} else {
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dst->space(1 * BIT_TIME_US);
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dst->mark(2 * BIT_TIME_US);
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}
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}
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// final space at end of packet
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dst->space(17 * BIT_TIME_US);
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}
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optional<ByronSXData> ByronSXProtocol::decode(RemoteReceiveData src) {
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ByronSXData out{
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.address = 0,
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.command = 0,
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};
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if (src.size() != (NBITS_DATA + NBITS_START_BIT) * 2) {
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return {};
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}
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// Skip start bit
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if (!src.expect_mark(BIT_TIME_US)) {
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return {};
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}
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ESP_LOGVV(TAG, "%3d: %d %d %d %d %d %d %d %d %d %d %d %d %d %d %d %d %d %d %d %d", src.size(), src.peek(0),
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src.peek(1), src.peek(2), src.peek(3), src.peek(4), src.peek(5), src.peek(6), src.peek(7), src.peek(8),
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src.peek(9), src.peek(10), src.peek(11), src.peek(12), src.peek(13), src.peek(14), src.peek(15),
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src.peek(16), src.peek(17), src.peek(18), src.peek(19));
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ESP_LOGVV(TAG, " %d %d %d %d %d %d", src.peek(20), src.peek(21), src.peek(22), src.peek(23), src.peek(24),
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src.peek(25));
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// Read data bits
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uint32_t out_data = 0;
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int8_t bit = NBITS_DATA;
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while (--bit >= 0) {
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if (src.expect_space(2 * BIT_TIME_US) && src.expect_mark(BIT_TIME_US)) {
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out_data |= 1 << bit;
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} else if (src.expect_space(BIT_TIME_US) && src.expect_mark(2 * BIT_TIME_US)) {
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out_data |= 0 << bit;
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} else {
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ESP_LOGV(TAG, "Decode ByronSX: Fail 2, %2d %08x", bit, out_data);
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return {};
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}
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ESP_LOGVV(TAG, "Decode ByronSX: Data, %2d %08x", bit, out_data);
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}
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// last bit followed by a long space
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if (!src.peek_space_at_least(BIT_TIME_US)) {
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ESP_LOGV(TAG, "Decode ByronSX: Fail 4 ");
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return {};
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}
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out.command = (uint8_t) (out_data & 0xF);
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out_data >>= NBITS_COMMAND;
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out.address = (uint16_t) (out_data & 0xFF);
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return out;
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}
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void ByronSXProtocol::dump(const ByronSXData &data) {
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ESP_LOGD(TAG, "Received ByronSX: address=0x%08X, command=0x%02x", data.address, data.command);
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}
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} // namespace remote_base
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} // namespace esphome
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46
esphome/components/remote_base/byronsx_protocol.h
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46
esphome/components/remote_base/byronsx_protocol.h
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@ -0,0 +1,46 @@
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#pragma once
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#include "esphome/core/component.h"
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#include "remote_base.h"
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namespace esphome {
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namespace remote_base {
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struct ByronSXData {
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uint8_t address;
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uint8_t command;
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bool operator==(const ByronSXData &rhs) const {
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// Treat 0x10 as a special, wildcard command/chime
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// This allows us to match on just the address if wanted.
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if (address != rhs.address) {
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return false;
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}
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return (rhs.command == 0x10 || command == rhs.command);
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}
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};
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class ByronSXProtocol : public RemoteProtocol<ByronSXData> {
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public:
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void encode(RemoteTransmitData *dst, const ByronSXData &data) override;
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optional<ByronSXData> decode(RemoteReceiveData src) override;
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void dump(const ByronSXData &data) override;
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};
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DECLARE_REMOTE_PROTOCOL(ByronSX)
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template<typename... Ts> class ByronSXAction : public RemoteTransmitterActionBase<Ts...> {
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public:
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TEMPLATABLE_VALUE(uint8_t, address)
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TEMPLATABLE_VALUE(uint8_t, command)
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void encode(RemoteTransmitData *dst, Ts... x) override {
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ByronSXData data{};
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data.address = this->address_.value(x...);
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data.command = this->command_.value(x...);
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ByronSXProtocol().encode(dst, data);
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}
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};
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} // namespace remote_base
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} // namespace esphome
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