kopia lustrzana https://github.com/weetmuts/wmbusmeters
171 wiersze
6.5 KiB
C++
171 wiersze
6.5 KiB
C++
/*
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Copyright (C) 2018-2022 Fredrik Öhrström (gpl-3.0-or-later)
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include"meters_common_implementation.h"
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namespace
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{
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struct Driver : public virtual MeterCommonImplementation
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{
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Driver(MeterInfo &mi, DriverInfo &di);
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};
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static bool ok = registerDriver([](DriverInfo&di)
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{
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di.setName("hydrocalm3");
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di.setDefaultFields("name,id,total_heating_kwh,total_cooling_kwh,timestamp");
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di.setMeterType(MeterType::HeatMeter);
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di.addLinkMode(LinkMode::T1);
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di.addDetection(MANUFACTURER_BMT, 0x0d, 0x0b);
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di.addDetection(MANUFACTURER_BMT, 0x0d, 0x1a); // HYDROCAL-M4
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di.setConstructor([](MeterInfo& mi, DriverInfo& di){ return shared_ptr<Meter>(new Driver(mi, di)); });
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});
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Driver::Driver(MeterInfo &mi, DriverInfo &di) : MeterCommonImplementation(mi, di)
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{
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setMfctTPLStatusBits(
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Translate::Lookup()
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.add(Translate::Rule("TPL_STS", Translate::Type::BitToString)
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.set(MaskBits(0xe0))
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.set(DefaultMessage("OK"))
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.add(Translate::Map(0x80 ,"SABOTAGE_ENCLOSURE", TestBit::Set))));
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addStringField(
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"status",
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"Meter status from tpl status field.",
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DEFAULT_PRINT_PROPERTIES |
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PrintProperty::STATUS | PrintProperty::INCLUDE_TPL_STATUS);
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addNumericFieldWithExtractor(
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"total_heating",
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"The total heating energy consumption recorded by this meter.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Energy,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::AnyEnergyVIF)
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.set(IndexNr(1))
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);
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addNumericFieldWithExtractor(
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"device",
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"The date time when the recording was made.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::PointInTime,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::DateTime)
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);
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addNumericFieldWithExtractor(
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"total_cooling",
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"The total cooling energy consumption recorded by this meter.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Energy,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::AnyEnergyVIF)
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.set(IndexNr(2))
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);
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addNumericFieldWithExtractor(
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"total_heating",
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"Total heating volume of media.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Volume,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::Volume)
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.set(IndexNr(1))
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);
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addNumericFieldWithExtractor(
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"total_cooling",
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"Total cooling volume of media.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Volume,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::Volume)
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.set(IndexNr(2))
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);
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addNumericFieldWithExtractor(
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"c1_volume",
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"Supply c1 volume.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Volume,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::Volume)
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.set(IndexNr(3))
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);
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addNumericFieldWithExtractor(
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"c2_volume",
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"Return c2 volume.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Volume,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::Volume)
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.set(IndexNr(4))
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);
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addNumericFieldWithExtractor(
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"supply_temperature",
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"The supply t1 pipe temperature.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Temperature,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::FlowTemperature)
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.set(IndexNr(1))
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);
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addNumericFieldWithExtractor(
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"return_temperature",
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"The return t2 pipe temperature.",
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DEFAULT_PRINT_PROPERTIES,
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Quantity::Temperature,
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VifScaling::Auto,
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FieldMatcher::build()
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.set(MeasurementType::Instantaneous)
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.set(VIFRange::ReturnTemperature)
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);
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}
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}
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// Test: HeatCool hydrocalm3 71727374 NOKEY
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// telegram=|8E44B409747372710B0D7A798080052F2F_0C0E59600100046D1D36B9290C13679947000C0E000000000C13590000000C13000000000C13000000000A5A18020A5E11020F823D06003D06003D06003D0600140600620500480400E402001601000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000002F2F|
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// {"media":"heat/cooling load","meter":"hydrocalm3","name":"HeatCool","id":"71727374","status": "SABOTAGE_ENCLOSURE","total_heating_kwh":4460.833333,"total_cooling_kwh":0,"device_datetime":"2021-09-25 22:29","total_heating_m3":479.967,"total_cooling_m3":0.059,"c1_volume_m3":0,"c2_volume_m3":0,"supply_temperature_c":21.8,"return_temperature_c":21.1,"timestamp":"1111-11-11T11:11:11Z"}
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// |HeatCool;71727374;4460.833333;0;1111-11-11 11:11.11
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//
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// Test: testm4 hydrocalm3 38031627 NOKEY
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// telegram=|2C44B409271603381A0D8C208A7ACE000020_046D0CB6ED240C03267300000C13130800000F6300000000000000|
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// {"media":"heat/cooling load","meter":"hydrocalm3","name":"testm4","id":"38031627","status":"OK","total_heating_kwh":7.326,"device_datetime":"2023-04-13 22:12","total_heating_m3":0.813,"timestamp":"1111-11-11T11:11:11Z"}
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// |testm4;38031627;7.326;null;1111-11-11 11:11.11
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