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https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-06 15:59:52 +03:00
AM200, first test
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@@ -42,11 +42,12 @@
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{173, DeviceType::BOILER, F("Geo 5xx"), DeviceFlags::EMS_DEVICE_FLAG_HEATPUMP},
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{173, DeviceType::BOILER, F("Geo 5xx"), DeviceFlags::EMS_DEVICE_FLAG_HEATPUMP},
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{195, DeviceType::BOILER, F("Condens 5000i/Greenstar 8000"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{195, DeviceType::BOILER, F("Condens 5000i/Greenstar 8000"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{203, DeviceType::BOILER, F("Logamax U122/Cerapur"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{203, DeviceType::BOILER, F("Logamax U122/Cerapur"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{206, DeviceType::BOILER, F("Ecomline Excellent"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{208, DeviceType::BOILER, F("Logamax Plus/GB192/Condens GC9000"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{208, DeviceType::BOILER, F("Logamax Plus/GB192/Condens GC9000"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{210, DeviceType::BOILER, F("Cascade MC400"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{210, DeviceType::BOILER, F("Cascade MC400"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{211, DeviceType::BOILER, F("EasyControl Adapter"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{211, DeviceType::BOILER, F("EasyControl Adapter"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{228, DeviceType::BOILER, F("Alternative Heatsource"), DeviceFlags::EMS_DEVICE_FLAG_AM200},
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{234, DeviceType::BOILER, F("Logamax Plus GB122/Condense 2300"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{234, DeviceType::BOILER, F("Logamax Plus GB122/Condense 2300"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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{206, DeviceType::BOILER, F("Ecomline Excellent"), DeviceFlags::EMS_DEVICE_FLAG_NONE},
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// Controllers - 0x09 / 0x10 / 0x50
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// Controllers - 0x09 / 0x10 / 0x50
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{ 68, DeviceType::CONTROLLER, F("BC10/RFM20"), DeviceFlags::EMS_DEVICE_FLAG_NONE}, // 0x09
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{ 68, DeviceType::CONTROLLER, F("BC10/RFM20"), DeviceFlags::EMS_DEVICE_FLAG_NONE}, // 0x09
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@@ -26,6 +26,26 @@ uuid::log::Logger Boiler::logger_{F_(boiler), uuid::log::Facility::CONSOLE};
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Boiler::Boiler(uint8_t device_type, int8_t device_id, uint8_t product_id, const char * version, const std::string & name, uint8_t flags, uint8_t brand)
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Boiler::Boiler(uint8_t device_type, int8_t device_id, uint8_t product_id, const char * version, const std::string & name, uint8_t flags, uint8_t brand)
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: EMSdevice(device_type, device_id, product_id, version, name, flags, brand) {
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: EMSdevice(device_type, device_id, product_id, version, name, flags, brand) {
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// alternative heatsource special messages
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if (device_id == EMSdevice::EMS_DEVICE_ID_AM200) {
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register_telegram_type(0x54D, F("AmTemperatures"), false, MAKE_PF_CB(process_amTempMessage));
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register_telegram_type(0x54E, F("AmStatus"), false, MAKE_PF_CB(process_amStatusMessage));
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register_telegram_type(0x550, F("AmSettings"), false, MAKE_PF_CB(process_amSettingMessage));
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &curFlowTemp_, DeviceValueType::SHORT, FL_(div10), FL_(curFlowTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &retTemp_, DeviceValueType::SHORT, FL_(div10), FL_(retTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &aFlowTemp_, DeviceValueType::SHORT, FL_(div10), FL_(aFlowTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &aRetTemp_, DeviceValueType::SHORT, FL_(div10), FL_(aRetTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &cylTopTemp_, DeviceValueType::SHORT, FL_(div10), FL_(aCylTopTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &cylCenterTemp_, DeviceValueType::SHORT, FL_(div10), FL_(aCylCenterTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &cylBottomTemp_, DeviceValueType::SHORT, FL_(div10), FL_(aCylBottomTemp), DeviceValueUOM::DEGREES);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &valveByPass_, DeviceValueType::BOOL, nullptr, FL_(valveByPass), DeviceValueUOM::NONE);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &valveBuffer_, DeviceValueType::BOOL, nullptr, FL_(valveBuffer), DeviceValueUOM::NONE);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &valveReturn_, DeviceValueType::BOOL, nullptr, FL_(valveReturn), DeviceValueUOM::NONE);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &aPump_, DeviceValueType::BOOL, nullptr, FL_(aPump), DeviceValueUOM::NONE);
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register_device_value(DeviceValueTAG::TAG_DEVICE_DATA, &heatSource_, DeviceValueType::BOOL, nullptr, FL_(heatSource), DeviceValueUOM::NONE);
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return;
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}
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// cascaded heatingsources, only some values per individual heatsource (hs)
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// cascaded heatingsources, only some values per individual heatsource (hs)
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if (device_id != EMSdevice::EMS_DEVICE_ID_BOILER) {
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if (device_id != EMSdevice::EMS_DEVICE_ID_BOILER) {
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uint8_t hs = device_id - EMSdevice::EMS_DEVICE_ID_BOILER_1; // heating source id, count from 0
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uint8_t hs = device_id - EMSdevice::EMS_DEVICE_ID_BOILER_1; // heating source id, count from 0
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@@ -424,7 +444,7 @@ Boiler::Boiler(uint8_t device_type, int8_t device_id, uint8_t product_id, const
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DeviceValueUOM::DEGREES_R,
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DeviceValueUOM::DEGREES_R,
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MAKE_CF_CB(set_ww_flowTempOffset),
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MAKE_CF_CB(set_ww_flowTempOffset),
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0,
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0,
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40);
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45);
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register_device_value(DeviceValueTAG::TAG_BOILER_DATA_WW,
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register_device_value(DeviceValueTAG::TAG_BOILER_DATA_WW,
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&wwChargeOptimization_,
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&wwChargeOptimization_,
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DeviceValueType::BOOL,
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DeviceValueType::BOOL,
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@@ -1130,6 +1150,31 @@ void Boiler::process_UBAMaintenanceData(std::shared_ptr<const Telegram> telegram
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has_update(maintenanceDate_, date, sizeof(maintenanceDate_));
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has_update(maintenanceDate_, date, sizeof(maintenanceDate_));
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}
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}
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}
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}
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/*
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* alternative heatingsource AM200
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*/
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void Boiler::process_amTempMessage(std::shared_ptr<const Telegram> telegram) {
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has_update(telegram, aRetTemp_, 0);
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has_update(telegram, aFlowTemp_, 6);
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has_update(telegram, curFlowTemp_, 8);
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has_update(telegram, retTemp_, 2);
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has_update(telegram, cylTopTemp_, 10);
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has_update(telegram, cylCenterTemp_, 12);
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has_update(telegram, cylBottomTemp_, 14);
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}
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void Boiler::process_amStatusMessage(std::shared_ptr<const Telegram> telegram) {
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has_update(telegram, aPump_, 0);
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has_update(telegram, valveByPass_, 1);
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has_update(telegram, valveBuffer_, 2);
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has_update(telegram, valveReturn_, 3);
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}
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void Boiler::process_amSettingMessage(std::shared_ptr<const Telegram> telegram) {
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// has_update(telegram, setRetTemp_, 0);
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// has_update(telegram, setFlowTemp_, 1);
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}
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/*
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/*
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* Hybrid heatpump with telegram 0xBB is readable and writeable in boiler and thermostat
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* Hybrid heatpump with telegram 0xBB is readable and writeable in boiler and thermostat
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* thermostat always overwrites settings in boiler
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* thermostat always overwrites settings in boiler
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@@ -198,6 +198,20 @@ class Boiler : public EMSdevice {
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// Pool unit
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// Pool unit
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int8_t poolSetTemp_;
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int8_t poolSetTemp_;
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// Alternative Heatsource AM200
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int16_t cylTopTemp_; // TB1
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int16_t cylCenterTemp_; // TB2
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int16_t cylBottomTemp_; // TB3
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int16_t aFlowTemp_; // TA1
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int16_t aRetTemp_; // TR1
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uint8_t aPump_; // PR1
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uint8_t valveByPass_; // VR2
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uint8_t valveBuffer_; // VB1
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uint8_t valveReturn_; // VR1
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uint8_t heatSource_; // OEV
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// int8_t setRetTemp_;
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/*
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/*
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* Hybrid heatpump with telegram 0xBB is readable and writeable in boiler and thermostat
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* Hybrid heatpump with telegram 0xBB is readable and writeable in boiler and thermostat
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* thermostat always overwrites settings in boiler
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* thermostat always overwrites settings in boiler
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@@ -242,6 +256,9 @@ class Boiler : public EMSdevice {
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void process_HpOutdoor(std::shared_ptr<const Telegram> telegram);
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void process_HpOutdoor(std::shared_ptr<const Telegram> telegram);
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void process_HpPool(std::shared_ptr<const Telegram> telegram);
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void process_HpPool(std::shared_ptr<const Telegram> telegram);
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void process_HybridHp(std::shared_ptr<const Telegram> telegram);
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void process_HybridHp(std::shared_ptr<const Telegram> telegram);
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void process_amTempMessage(std::shared_ptr<const Telegram> telegram);
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void process_amStatusMessage(std::shared_ptr<const Telegram> telegram);
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void process_amSettingMessage(std::shared_ptr<const Telegram> telegram);
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// commands - none of these use the additional id parameter
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// commands - none of these use the additional id parameter
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bool set_ww_mode(const char * value, const int8_t id);
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bool set_ww_mode(const char * value, const int8_t id);
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@@ -309,6 +309,7 @@ class EMSdevice {
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static constexpr uint8_t EMS_DEVICE_ID_BOILER = 0x08; // fixed device_id for Master Boiler/UBA
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static constexpr uint8_t EMS_DEVICE_ID_BOILER = 0x08; // fixed device_id for Master Boiler/UBA
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static constexpr uint8_t EMS_DEVICE_ID_BOILER_1 = 0x70; // fixed device_id for 1st. Cascade Boiler/UBA
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static constexpr uint8_t EMS_DEVICE_ID_BOILER_1 = 0x70; // fixed device_id for 1st. Cascade Boiler/UBA
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static constexpr uint8_t EMS_DEVICE_ID_BOILER_F = 0x7F; // fixed device_id for last Cascade Boiler/UBA
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static constexpr uint8_t EMS_DEVICE_ID_BOILER_F = 0x7F; // fixed device_id for last Cascade Boiler/UBA
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static constexpr uint8_t EMS_DEVICE_ID_AM200 = 0x60; // fixed device_id for alternative Heating AM200
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// generic type IDs
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// generic type IDs
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static constexpr uint16_t EMS_TYPE_VERSION = 0x02; // type ID for Version information. Generic across all EMS devices.
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static constexpr uint16_t EMS_TYPE_VERSION = 0x02; // type ID for Version information. Generic across all EMS devices.
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@@ -326,6 +327,7 @@ class EMSdevice {
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static constexpr uint8_t EMS_DEVICE_FLAG_HT3 = 3;
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static constexpr uint8_t EMS_DEVICE_FLAG_HT3 = 3;
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static constexpr uint8_t EMS_DEVICE_FLAG_HEATPUMP = 4;
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static constexpr uint8_t EMS_DEVICE_FLAG_HEATPUMP = 4;
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static constexpr uint8_t EMS_DEVICE_FLAG_HYBRID = 5;
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static constexpr uint8_t EMS_DEVICE_FLAG_HYBRID = 5;
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static constexpr uint8_t EMS_DEVICE_FLAG_AM200 = 6;
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// Solar Module
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// Solar Module
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static constexpr uint8_t EMS_DEVICE_FLAG_SM10 = 1;
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static constexpr uint8_t EMS_DEVICE_FLAG_SM10 = 1;
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@@ -536,6 +536,18 @@ MAKE_PSTR_LIST(electricFactor, F("electricfactor"), F("electric energy factor"))
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MAKE_PSTR_LIST(delayBoiler, F("delayboiler"), F("delay boiler support"))
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MAKE_PSTR_LIST(delayBoiler, F("delayboiler"), F("delay boiler support"))
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MAKE_PSTR_LIST(tempDiffBoiler, F("tempdiffboiler"), F("tempediff boiler support"))
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MAKE_PSTR_LIST(tempDiffBoiler, F("tempdiffboiler"), F("tempediff boiler support"))
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// alternative heatsource AM200
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MAKE_PSTR_LIST(aCylTopTemp, F("cyltoptemp"), F("cylinder top temperature"))
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MAKE_PSTR_LIST(aCylCenterTemp, F("cylcentertemp"), F("cylinder center temperature"))
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MAKE_PSTR_LIST(aCylBottomTemp, F("cylbottomtemp"), F("cylinder bottom temperature"))
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MAKE_PSTR_LIST(aFlowTemp, F("aflowtemp"), F("alternative flow temperature"))
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MAKE_PSTR_LIST(aRetTemp, F("arettemp"), F("alternative return temperature"))
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MAKE_PSTR_LIST(valveByPass, F("valvebypass"), F("bypass valve"))
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MAKE_PSTR_LIST(valveBuffer, F("valvebuffer"), F("buffer valve"))
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MAKE_PSTR_LIST(valveReturn, F("valvereturn"), F("return valve"))
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MAKE_PSTR_LIST(aPump, F("apump"), F("alternative heating pump"))
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MAKE_PSTR_LIST(heatSource, F("heatsource"), F("alternative heating active"))
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// the following are dhw for the boiler and automatically tagged with 'ww'
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// the following are dhw for the boiler and automatically tagged with 'ww'
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MAKE_PSTR_LIST(wwSelTemp, F("wwseltemp"), F("selected temperature"))
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MAKE_PSTR_LIST(wwSelTemp, F("wwseltemp"), F("selected temperature"))
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MAKE_PSTR_LIST(wwSelTempLow, F("wwseltemplow"), F("selected lower temperature"))
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MAKE_PSTR_LIST(wwSelTempLow, F("wwseltemplow"), F("selected lower temperature"))
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