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Added RC6 protocol support (#3514)
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@ -728,6 +728,48 @@ async def rc5_action(var, config, args):
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cg.add(var.set_command(template_))
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# RC6
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RC6Data, RC6BinarySensor, RC6Trigger, RC6Action, RC6Dumper = declare_protocol("RC6")
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RC6_SCHEMA = cv.Schema(
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{
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cv.Required(CONF_ADDRESS): cv.hex_uint8_t,
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cv.Required(CONF_COMMAND): cv.hex_uint8_t,
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}
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)
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@register_binary_sensor("rc6", RC6BinarySensor, RC6_SCHEMA)
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def rc6_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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RC6Data,
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("device", config[CONF_DEVICE]),
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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("rc6", RC6Trigger, RC6Data)
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def rc6_trigger(var, config):
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pass
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@register_dumper("rc6", RC6Dumper)
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def rc6_dumper(var, config):
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pass
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@register_action("rc6", RC6Action, RC6_SCHEMA)
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async def rc6_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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# RC Switch Raw
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RC_SWITCH_TIMING_SCHEMA = cv.All([cv.uint8_t], cv.Length(min=2, max=2))
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181
esphome/components/remote_base/rc6_protocol.cpp
Normal file
181
esphome/components/remote_base/rc6_protocol.cpp
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@ -0,0 +1,181 @@
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#include "rc6_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 RC6_TAG = "remote.rc6";
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static const uint16_t RC6_FREQ = 36000;
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static const uint16_t RC6_UNIT = 444;
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static const uint16_t RC6_HEADER_MARK = (6 * RC6_UNIT);
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static const uint16_t RC6_HEADER_SPACE = (2 * RC6_UNIT);
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static const uint16_t RC6_MODE_MASK = 0x07;
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void RC6Protocol::encode(RemoteTransmitData *dst, const RC6Data &data) {
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dst->reserve(44);
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dst->set_carrier_frequency(RC6_FREQ);
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// Encode header
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dst->item(RC6_HEADER_MARK, RC6_HEADER_SPACE);
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int32_t next{0};
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// Encode startbit+mode
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uint8_t header{static_cast<uint8_t>((1 << 3) | data.mode)};
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for (uint8_t mask = 0x8; mask; mask >>= 1) {
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if (header & mask) {
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if (next < 0) {
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dst->space(-next);
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next = 0;
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}
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if (next >= 0) {
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next = next + RC6_UNIT;
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dst->mark(next);
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next = -RC6_UNIT;
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}
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} else {
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if (next > 0) {
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dst->mark(next);
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next = 0;
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}
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if (next <= 0) {
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next = next - RC6_UNIT;
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dst->space(-next);
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next = RC6_UNIT;
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}
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}
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}
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// Toggle
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if (data.toggle) {
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if (next < 0) {
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dst->space(-next);
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next = 0;
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}
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if (next >= 0) {
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next = next + RC6_UNIT * 2;
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dst->mark(next);
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next = -RC6_UNIT * 2;
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}
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} else {
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if (next > 0) {
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dst->mark(next);
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next = 0;
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}
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if (next <= 0) {
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next = next - RC6_UNIT * 2;
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dst->space(-next);
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next = RC6_UNIT * 2;
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}
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}
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// Encode data
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uint16_t raw{static_cast<uint16_t>((data.address << 8) | data.command)};
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for (uint16_t mask = 0x8000; mask; mask >>= 1) {
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if (raw & mask) {
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if (next < 0) {
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dst->space(-next);
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next = 0;
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}
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if (next >= 0) {
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next = next + RC6_UNIT;
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dst->mark(next);
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next = -RC6_UNIT;
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}
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} else {
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if (next > 0) {
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dst->mark(next);
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next = 0;
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}
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if (next <= 0) {
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next = next - RC6_UNIT;
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dst->space(-next);
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next = RC6_UNIT;
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}
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}
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}
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if (next > 0) {
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dst->mark(next);
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} else {
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dst->space(-next);
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}
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}
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optional<RC6Data> RC6Protocol::decode(RemoteReceiveData src) {
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RC6Data data{
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.mode = 0,
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.toggle = 0,
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.address = 0,
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.command = 0,
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};
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// Check if header matches
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if (!src.expect_item(RC6_HEADER_MARK, RC6_HEADER_SPACE)) {
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return {};
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}
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uint8_t bit{1};
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uint8_t offset{0};
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uint8_t header{0};
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uint32_t buffer{0};
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// Startbit + mode
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while (offset < 4) {
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bit = src.peek() > 0;
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header = header + (bit << (3 - offset++));
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src.advance();
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if (src.peek_mark(RC6_UNIT) || src.peek_space(RC6_UNIT)) {
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src.advance();
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} else if (offset == 4) {
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break;
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} else if (!src.peek_mark(RC6_UNIT * 2) && !src.peek_space(RC6_UNIT * 2)) {
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return {};
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}
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}
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data.mode = header & RC6_MODE_MASK;
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if (data.mode != 0) {
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return {}; // I dont have a device to test other modes
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}
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// Toggle
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data.toggle = src.peek() > 0;
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src.advance();
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if (src.peek_mark(RC6_UNIT * 2) || src.peek_space(RC6_UNIT * 2)) {
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src.advance();
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}
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// Data
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offset = 0;
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while (offset < 16) {
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bit = src.peek() > 0;
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buffer = buffer + (bit << (15 - offset++));
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src.advance();
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if (offset == 16) {
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break;
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} else if (src.peek_mark(RC6_UNIT) || src.peek_space(RC6_UNIT)) {
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src.advance();
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} else if (!src.peek_mark(RC6_UNIT * 2) && !src.peek_space(RC6_UNIT * 2)) {
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return {};
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}
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}
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data.address = (0xFF00 & buffer) >> 8;
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data.command = (0x00FF & buffer);
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return data;
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}
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void RC6Protocol::dump(const RC6Data &data) {
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ESP_LOGD(RC6_TAG, "Received RC6: mode=0x%X, address=0x%02X, command=0x%02X, toggle=0x%X", data.mode, data.address,
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data.command, data.toggle);
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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/rc6_protocol.h
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46
esphome/components/remote_base/rc6_protocol.h
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@ -0,0 +1,46 @@
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#pragma once
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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 RC6Data {
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uint8_t mode : 3;
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uint8_t toggle : 1;
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uint8_t address;
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uint8_t command;
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bool operator==(const RC6Data &rhs) const { return address == rhs.address && command == rhs.command; }
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};
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class RC6Protocol : public RemoteProtocol<RC6Data> {
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public:
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void encode(RemoteTransmitData *dst, const RC6Data &data) override;
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optional<RC6Data> decode(RemoteReceiveData src) override;
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void dump(const RC6Data &data) override;
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};
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DECLARE_REMOTE_PROTOCOL(RC6)
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template<typename... Ts> class RC6Action : 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) {
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RC6Data data{};
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data.mode = 0;
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data.toggle = this->toggle_;
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data.address = this->address_.value(x...);
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data.command = this->command_.value(x...);
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RC6Protocol().encode(dst, data);
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this->toggle_ = !this->toggle_;
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}
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protected:
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uint8_t toggle_{0};
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};
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} // namespace remote_base
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} // namespace esphome
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