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Added samsung36 ir protocol (#1438)
* Added samsung36 ir protocol * Make linter happy * Added test and fixed python failure * Sorry for the commits but linter was still not happy :) * Okay have to run script/clang-format -i Co-authored-by: tuxBurner <tuxBurner@boggo.de>
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@ -686,6 +686,42 @@ def samsung_action(var, config, args):
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cg.add(var.set_data(template_))
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cg.add(var.set_data(template_))
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# Samsung36
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(Samsung36Data, Samsung36BinarySensor, Samsung36Trigger, Samsung36Action,
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Samsung36Dumper) = declare_protocol('Samsung36')
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SAMSUNG36_SCHEMA = cv.Schema({
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cv.Required(CONF_ADDRESS): cv.hex_uint16_t,
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cv.Required(CONF_COMMAND): cv.hex_uint32_t,
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})
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@register_binary_sensor('samsung36', Samsung36BinarySensor, SAMSUNG36_SCHEMA)
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def samsung36_binary_sensor(var, config):
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cg.add(var.set_data(cg.StructInitializer(
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Samsung36Data,
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('address', config[CONF_ADDRESS]),
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('command', config[CONF_COMMAND]),
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)))
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@register_trigger('samsung36', Samsung36Trigger, Samsung36Data)
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def samsung36_trigger(var, config):
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pass
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@register_dumper('samsung36', Samsung36Dumper)
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def samsung36_dumper(var, config):
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pass
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@register_action('samsung36', Samsung36Action, SAMSUNG36_SCHEMA)
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def samsung36_action(var, config, args):
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template_ = yield cg.templatable(config[CONF_ADDRESS], args, cg.uint16)
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cg.add(var.set_address(template_))
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template_ = yield cg.templatable(config[CONF_COMMAND], args, cg.uint32)
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cg.add(var.set_command(template_))
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# Panasonic
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# Panasonic
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(PanasonicData, PanasonicBinarySensor, PanasonicTrigger, PanasonicAction,
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(PanasonicData, PanasonicBinarySensor, PanasonicTrigger, PanasonicAction,
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PanasonicDumper) = declare_protocol('Panasonic')
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PanasonicDumper) = declare_protocol('Panasonic')
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103
esphome/components/remote_base/samsung36_protocol.cpp
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103
esphome/components/remote_base/samsung36_protocol.cpp
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@ -0,0 +1,103 @@
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#include "samsung36_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 *TAG = "remote.samsung36";
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static const uint8_t NBITS = 78;
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static const uint32_t HEADER_HIGH_US = 4500;
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static const uint32_t HEADER_LOW_US = 4500;
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static const uint32_t BIT_HIGH_US = 500;
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static const uint32_t BIT_ONE_LOW_US = 1500;
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static const uint32_t BIT_ZERO_LOW_US = 500;
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static const uint32_t MIDDLE_HIGH_US = 500;
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static const uint32_t MIDDLE_LOW_US = 4500;
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static const uint32_t FOOTER_HIGH_US = 500;
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static const uint32_t FOOTER_LOW_US = 59000;
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void Samsung36Protocol::encode(RemoteTransmitData *dst, const Samsung36Data &data) {
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dst->set_carrier_frequency(38000);
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dst->reserve(NBITS);
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// send header
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dst->item(HEADER_HIGH_US, HEADER_LOW_US);
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// send first 16 bits
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for (uint32_t mask = 1UL << 15; mask != 0; mask >>= 1) {
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if (data.address & mask) {
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dst->item(BIT_HIGH_US, BIT_ONE_LOW_US);
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} else {
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dst->item(BIT_HIGH_US, BIT_ZERO_LOW_US);
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}
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}
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// send middle header
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dst->item(MIDDLE_HIGH_US, MIDDLE_LOW_US);
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// send last 20 bits
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for (uint32_t mask = 1UL << 19; mask != 0; mask >>= 1) {
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if (data.command & mask) {
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dst->item(BIT_HIGH_US, BIT_ONE_LOW_US);
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} else {
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dst->item(BIT_HIGH_US, BIT_ZERO_LOW_US);
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}
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}
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// footer
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dst->item(FOOTER_HIGH_US, FOOTER_LOW_US);
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}
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optional<Samsung36Data> Samsung36Protocol::decode(RemoteReceiveData src) {
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Samsung36Data out{
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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(HEADER_HIGH_US, HEADER_LOW_US))
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return {};
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// check if we have enough bits
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if (src.size() != NBITS)
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return {};
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// get the first 16 bits
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for (uint8_t i = 0; i < 16; i++) {
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out.address <<= 1UL;
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if (src.expect_item(BIT_HIGH_US, BIT_ONE_LOW_US)) {
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out.address |= 1UL;
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} else if (src.expect_item(BIT_HIGH_US, BIT_ZERO_LOW_US)) {
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out.address |= 0UL;
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} else {
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return {};
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}
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}
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// check if the middle mark matches
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if (!src.expect_item(MIDDLE_HIGH_US, MIDDLE_LOW_US)) {
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return {};
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}
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// get the last 20 bits
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for (uint8_t i = 0; i < 20; i++) {
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out.command <<= 1UL;
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if (src.expect_item(BIT_HIGH_US, BIT_ONE_LOW_US)) {
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out.command |= 1UL;
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} else if (src.expect_item(BIT_HIGH_US, BIT_ZERO_LOW_US)) {
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out.command |= 0UL;
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} else {
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return {};
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}
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}
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return out;
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}
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void Samsung36Protocol::dump(const Samsung36Data &data) {
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ESP_LOGD(TAG, "Received Samsung36: address=0x%04X, command=0x%08X", 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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39
esphome/components/remote_base/samsung36_protocol.h
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39
esphome/components/remote_base/samsung36_protocol.h
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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 Samsung36Data {
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uint16_t address;
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uint32_t command;
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bool operator==(const Samsung36Data &rhs) const { return address == rhs.address && command == rhs.command; }
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};
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class Samsung36Protocol : public RemoteProtocol<Samsung36Data> {
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public:
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void encode(RemoteTransmitData *dst, const Samsung36Data &data) override;
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optional<Samsung36Data> decode(RemoteReceiveData src) override;
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void dump(const Samsung36Data &data) override;
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};
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DECLARE_REMOTE_PROTOCOL(Samsung36)
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template<typename... Ts> class Samsung36Action : public RemoteTransmitterActionBase<Ts...> {
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public:
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TEMPLATABLE_VALUE(uint16_t, address)
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TEMPLATABLE_VALUE(uint32_t, command)
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void encode(RemoteTransmitData *dst, Ts... x) override {
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Samsung36Data 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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Samsung36Protocol().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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@ -1478,6 +1478,12 @@ switch:
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turn_on_action:
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turn_on_action:
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remote_transmitter.transmit_samsung:
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remote_transmitter.transmit_samsung:
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data: 0xABCDEF
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data: 0xABCDEF
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- platform: template
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name: Samsung36
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turn_on_action:
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remote_transmitter.transmit_samsung36:
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address: 0x0400
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command: 0x000E00FF
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- platform: template
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- platform: template
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name: Sony
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name: Sony
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turn_on_action:
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turn_on_action:
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