mirror of
https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-08 00:39:50 +03:00
auto formatting
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@@ -764,7 +764,6 @@ void Boiler::check_active() {
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Mqtt::publish(F("tapwater_active"), Helpers::render_boolean(s, b));
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EMSESP::tap_water_active(b); // let EMS-ESP know, used in the Shower class
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}
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}
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// 0x33
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@@ -1305,13 +1305,13 @@ void Thermostat::process_RC300OutdoorTemp(std::shared_ptr<const Telegram> telegr
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// 0x240 RC300 parameter
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void Thermostat::process_RC300Settings(std::shared_ptr<const Telegram> telegram) {
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changed_ |= telegram->read_value(ibaBuildingType_ , 9); // 1=light, 2=medium, 3=heavy
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changed_ |= telegram->read_value(ibaBuildingType_, 9); // 1=light, 2=medium, 3=heavy
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}
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// 0x267 RC300 floordrying
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void Thermostat::process_RC300Floordry(std::shared_ptr<const Telegram> telegram) {
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changed_ |= telegram->read_value(floordrystatus_ , 0);
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changed_ |= telegram->read_value(floordrytemp_ , 1);
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changed_ |= telegram->read_value(floordrystatus_, 0);
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changed_ |= telegram->read_value(floordrytemp_, 1);
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}
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// type 0x41 - data from the RC30 thermostat(0x10) - 14 bytes long
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@@ -139,7 +139,7 @@ uint8_t EMSdevice::device_name_2_device_type(const char * topic) {
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// return name of the device type, capitalized
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std::string EMSdevice::device_type_name() const {
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std::string s = device_type_2_device_name(device_type_);
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s[0] = toupper(s[0]);
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s[0] = toupper(s[0]);
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return s;
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}
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@@ -55,12 +55,12 @@ class EMSFactory {
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}
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// Construct derived class returning an unique ptr
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static auto add(const uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string &version, std::string &name, uint8_t flags, uint8_t brand)
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static auto add(const uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string & version, std::string & name, uint8_t flags, uint8_t brand)
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-> std::unique_ptr<EMSdevice> {
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return std::unique_ptr<EMSdevice>(EMSFactory::makeRaw(device_type, device_id, product_id, version, name, flags, brand));
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}
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virtual auto construct(uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string &version, std::string &name, uint8_t flags, uint8_t brand) const
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virtual auto construct(uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string & version, std::string & name, uint8_t flags, uint8_t brand) const
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-> EMSdevice * = 0;
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private:
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@@ -72,7 +72,7 @@ class EMSFactory {
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// Construct derived class returning a raw pointer
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// find which EMS device it is and use that class
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static auto makeRaw(const uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string &version, std::string &name, uint8_t flags, uint8_t brand)
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static auto makeRaw(const uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string & version, std::string & name, uint8_t flags, uint8_t brand)
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-> EMSdevice * {
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auto it = EMSFactory::getRegister().find(device_type);
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if (it != EMSFactory::getRegister().end()) {
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@@ -90,7 +90,7 @@ class ConcreteEMSFactory : EMSFactory {
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EMSFactory::registerFactory(device_type, this);
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}
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auto construct(uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string &version, std::string &name, uint8_t flags, uint8_t brand) const
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auto construct(uint8_t device_type, uint8_t device_id, uint8_t product_id, std::string & version, std::string & name, uint8_t flags, uint8_t brand) const
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-> EMSdevice * {
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return new DerivedClass(device_type, device_id, product_id, version, name, flags, brand);
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}
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