A – Registration and execution - Register GenesisCommunication Factory in the component list. - Separate the Genesis form and sequence from iPerl communication. B – Communication activities - Restore initialization, connection, PCB reading, password and login. - Include grouped login, mode switching and disconnection. - Support processing up to 10 slots. C1 – Input calibration factors - Read three factors from Water meters / Text1–Text3. - Validate integer values in the range 1–65535. - Preserve the default of 15625 when all three fields are empty. D – Q3 calibration - Connect the Prepare Q3 → measurement → Write Q3 workflow. - Add channel processing to FlyingStart and FlyingStartMassCollection. - Reset previous measurement data and validate calculated factors. - Mark factors as stored only after StoreCalibration succeeds. E – Results and database - Store calibration factors separately for each meter and channel. - Add result entities, mappings and Q3 data. - Extend DB.cs / EnsureSchema to create and update the schema. - Preserve compatibility with the existing binary format. Validation: - Debug build and 18 tests passed. - Simulated communication runs follow the same activity sequence. - The complete Q3 workflow has not yet been verified on hardware. Known limitation: - An inherited mismatch in simulated responses and error propagation can produce an incorrect OK result; this change does not fix it.
78 lines
3.0 KiB
C#
78 lines
3.0 KiB
C#
using System.Collections.Generic;
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using System.Xml.Serialization;
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using Common;
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using Config.Entities;
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using TBF.Rig.Generic;
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using TBF.Rig.RegisterReaders.GenesisRegReader.implementations;
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namespace TBF.Rig.RegisterReaders.GenesisRegReader
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{
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public class GenesisCfg : ComponentCfgBase, Generic.IComponentCfg
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{
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public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(GenesisCfg) })[0];
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public override XmlSerializer GetSerializer() { return Serializer; }
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public IComponentCfgCtrl GetControl(IList<Component> cmpntEntities)
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{
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return new GenesisCfgCtrl();
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}
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///
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/// Serialized parameters
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///
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public bool UseTcpIP;
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public string OptoIPAddress;
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public ushort OptoTcpipPortNr;
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public int HeadCommunicationComPortNr;
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public int OptoComPortNr;
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public int RfidComPortNr; /// 0 = use MuxBoardNr
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public int MuxBoardNr; /// 0 = use RfidComPort(Nr), otherwise mux. board nr. 1 .. 4 in new 1 .. 10 - paralel genesis access
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public int Group; /// Number written to QuidoRS to connct the watermeter to RfidComPort, 1 .. 10
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//public CommunicationInterface CommunicationInterface; /// Communication Interface: RFID or NFC
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public string CommunicationInterfaceBridge; /// Communication Interface: RFID or NFC
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public bool EnableShowChanels;
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public int IBeginDataFlush;
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public int SlotNr;
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/// <summary> Procedure parameters </summary>
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[XmlIgnore]
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public ProcParams ProcParams;
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public override IParamsProvider GetRuntimeProcParamsProvider() { return ProcParams; }
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public override IParamsProvider CreateProcParamsProvider() { return new ProcParams(true); }
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[XmlIgnore]
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public MeterType MeterType { get { return (ProcParams != null) ? ProcParams.MeterType : MeterType.AutoDetect; } }
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/// Private parameterless constructor invoked by all other (public) constructors
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GenesisCfg()
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{
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Name = "Genesis";
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ParentName = string.Empty;
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SlotNr = 0;
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OptoComPortNr = 10;
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RfidComPortNr = 0; /// = use mux. board
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MuxBoardNr = 1;
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ProcParams = CreateProcParamsProvider() as ProcParams;
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CommunicationInterfaceBridge = string.Empty;
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HeadCommunicationComPortNr = 0;
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EnableShowChanels = false;
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IBeginDataFlush = 2000;
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}
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public GenesisCfg(IComponentFactory factory)
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: this()
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{
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this.Factory = factory;
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}
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public string ToString(int i)
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{
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return $"{Name} SlotNr={SlotNr} Group1 (mux#)={MuxBoardNr}, Group2={Group}, Opto=Com{OptoComPortNr}, {CommunicationInterfaceBridge}=Com{RfidComPortNr}, EnableShowChanels={EnableShowChanels}, IBeginDataFlush={IBeginDataFlush}";
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}
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}
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} |