/// /// Copyright (c) 2015-2017 Sensus Metering Systems /// using System; using System.Collections.Generic; using System.Globalization; using System.IO; using log4net; using Oracle.DataAccess.Client; // ODP.NET Oracle managed provider using Oracle.DataAccess.Types; using Config; using Config.Entities; using TBF.BenchControl; using TBF.BenchControl.Sequences; using TBF.Resources; namespace TBF.BenchControl.DB.SensusOracle { public enum Retv { OK, Error, } public class Database : ComponentBase, IOperation, GenericDevices.IResultsWriter, Generic.IDevice { private static readonly ILog log = LogManager.GetLogger(typeof(Database)); public override string ToString() { return string.Format("Sensus-Oracle-Database({0})", Cfg.ToString(1)); } const int Anbid_StaraTura = 4; public static DatabaseCfg DBCfg; string separatorStr; /// /// Result items to print /// IList rsltItems; /// /// Results to print /// Results.Entities.Batch batch; OracleConnection connection; /// Oracle database connection StreamWriter writer; /// Results to disk StreamWriter logger; /// Logs specified by LU /// /// Information extracted from VT_PRUEFPUNKT_SOLL_SD for a given watermeter by query: /// SELECT * FROM VT_PRUEFPUNKT_SOLL_SD WHERE ANBID=4 AND ID_WZTyp=x AND Rev_WZTyp=y /// class TestInfo { public int PruefungsNr; public string QBezeichnung; public TestInfo(int p, string q) { PruefungsNr = p; QBezeichnung = q; } public override string ToString() { return string.Format("({0},{1})", PruefungsNr, QBezeichnung); } } /// static int id_WZTyp; static int rev_WZTyp; static IList testInfos = new List(); public Database() {} public Database(Generic.IComponentCfg cfg) : base(cfg) { DBCfg = cfg as DatabaseCfg; switch (DBCfg.Separator) { default: case Separator.None: separatorStr = string.Empty; break; case Separator.Space: separatorStr = " "; break; case Separator.Tabulator: separatorStr = "\t"; break; case Separator.Comma: separatorStr = ","; break; case Separator.Semicolon: separatorStr = ";"; break; } log.Debug(this.ToString()); } public void Initialize() { switch (DBCfg.DBUsed) { case DBUsed.Production: connection = new OracleConnection("Data Source=STARA01.WORLD;User Id=deltachef;Password=deltachef;"); break; case DBUsed.Quality: connection = new OracleConnection("Data Source=STARA_TEST.WORLD;User Id=deltachef;Password=deltachef;"); /// TODO: Quality database specification break; case DBUsed.Test: connection = new OracleConnection("Data Source=STARA_TEST.WORLD;User Id=deltachef;Password=deltachef;"); break; default: connection = null; break; } if (DBCfg.DebugLevel == DebugMode.Simulate) return; /// /// Do something with the database to see if the connection works well /// if (connection != null) { connection.Open(); string rslt = "none"; OracleCommand cmd = new OracleCommand("select Standort from ANBIETER_SD where ANBID = 4", connection); OracleDataReader dr = cmd.ExecuteReader(); if (dr.Read()) rslt = dr.GetString(0); dr.Close(); connection.Close(); } } public void RunDeviceBefore() {} public void RunDeviceAfter() {} public void StopDevice() { if (connection != null) connection.Dispose(); } /// /// Eliminate spaces conditionally, depesing on bool WriterCfg.EliminateSpaces /// /// Input string /// Output string string ElSpaces(string item) { if (DBCfg.EliminateSpaces) return item.Replace(" ", string.Empty); else return item; } /// /// Returns a file name derived from a DateTime structure. /// Creates directories on this path as a side effect. /// /// Date and time /// File name string GetFileName(DateTime time) { string directory = DBCfg.DestinationPath; /// Ends with "\\"; Directory.CreateDirectory(directory); if (DBCfg.YearFolders) { directory = string.Format("{0}{1}\\", directory, time.Year.ToString()); Directory.CreateDirectory(directory); } if (DBCfg.MonthFolders) { directory = string.Format("{0}{1}\\", directory, time.Month.ToString("D2")); Directory.CreateDirectory(directory); } if (DBCfg.DayFolders) { directory = string.Format("{0}{1}\\", directory, time.Day.ToString("D2")); Directory.CreateDirectory(directory); } return string.Format("{0}{1}{2}{3}-{4}{5}.txt", directory, (time.Year % 100).ToString("D2"), time.Month.ToString("D2"), time.Day.ToString("D2"), time.Hour.ToString("D2"), time.Minute.ToString("D2")); } /// /// Returns a file name derived from a DateTime structure. /// Creates directories on this path as a side effect. /// /// Date and time /// File name string GetLogFileName(DateTime time) { string directory = DBCfg.LogFolderPath; /// Ends with "\\"; Directory.CreateDirectory(directory); if (DBCfg.YearFolders) { directory = string.Format("{0}{1}\\", directory, time.Year.ToString()); Directory.CreateDirectory(directory); } if (DBCfg.MonthFolders) { directory = string.Format("{0}{1}\\", directory, time.Month.ToString("D2")); Directory.CreateDirectory(directory); } if (DBCfg.DayFolders) { directory = string.Format("{0}{1}\\", directory, time.Day.ToString("D2")); Directory.CreateDirectory(directory); } return string.Format("{0}{1}_{2}.log", directory, time.Hour.ToString("D2"), time.Minute.ToString("D2")); } /// /// Writes the test cycle results into a file, Events: Event.ResultsWritten /// /// Procedure to print the results of /// Results to write into the file /// Reference to the operation public IOperation WriteResultsOp(Results.Entities.Batch batch) { this.batch = batch; string fname = GetLogFileName(batch.StartTime); try { logger = new StreamWriter(System.IO.File.Create(fname)); } catch { logger = null; log.ErrorFormat("Was not able to open LU log file {0}", fname); } return this; } /// Start this operation public void Start() { } /// Run this operation /// Event.ResultsWritten or Event.Error public Event Run() { if (batch.WaterMeters.Count == 0) return Event.ResultsWritten; bool anyError = false; #if ORACLE_DB if (DBCfg.DebugLevel != DebugMode.Simulate && connection != null) { if (WriteResultsToDatabase(connection, batch, false) == Retv.Error) anyError = true; } #endif WriteLogsToDisk(logger, batch); if (anyError) { return Event.ResultsNotWritten; } else { return Event.ResultsWritten; } } /// Stop this operation public void Stop() { } public static Retv WriteLogsToDisk(StreamWriter logger, Results.Entities.Batch batch) { #if TURA_IPERL || TURA_SPECIAL if (logger == null) return Retv.Error; Results.Entities.WaterMeter wm0 = null; foreach (var wm in batch.WaterMeters) if (wm != null) { wm0 = wm; break; } if (wm0 == null) return Retv.Error; Results.Entities.WaterMeterData wmData = wm0.WaterMeterData; Results.Entities.MeterTestRslt adj = wm0.GetMeterTestRslt(string.Format("Adjustment")); Results.Entities.MeterTestRslt q1 = wm0.GetMeterTestRslt(string.Format("Q1")); Results.Entities.MeterTestRslt q2 = wm0.GetMeterTestRslt(string.Format("Q2")); Results.Entities.MeterTestRslt q3 = wm0.GetMeterTestRslt(string.Format("Q3")); if (adj == null || q1 == null || q2 == null || q3 == null) return Retv.Error; try { logger.WriteLine("[Wasserzähler-Daten]"); logger.WriteLine(string.Format("PruefPunkte={0}", 3)); logger.WriteLine(string.Format("Typ={0}", batch.ProcedureName)); /// iP 020 Q3_4 R160 A XXXX logger.WriteLine(string.Format("MetroKlasse={0}", wmData.MetrologicalClass)); logger.WriteLine(string.Format("Zulassungszeichen={0}", wmData.ApprovalInfo)); logger.WriteLine(string.Format("Qn={0}", wmData.Q3_Qn.ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("Impulsrate={0}", q3.PulsesPerLiter.ToString(Program.AltCulture))); /// 50,000 logger.WriteLine(string.Format("WZid={0}", wmData.WMTypeId)); logger.WriteLine(string.Format("RevWzTyp={0}", wmData.WMTypeRev)); logger.WriteLine(string.Format("RevPruefstandWzTyp=2")); /// 2 logger.WriteLine(string.Format("Durchfluss-5=0,0")); /// 0,0 logger.WriteLine(string.Format("Prüfzeit-5=0")); /// 0 logger.WriteLine(string.Format("Prüfbereich100_110-5=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMin-5=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMax-5=0")); /// 0 logger.WriteLine(string.Format("QBezeichnung-5=")); /// logger.WriteLine(string.Format("Durchfluss-4=0,0")); /// 0,0 logger.WriteLine(string.Format("Prüfzeit-4=0")); /// 0 logger.WriteLine(string.Format("Prüfbereich100_110-4=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMin-4=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMax-4=0")); /// 0 logger.WriteLine(string.Format("QBezeichnung-4=")); /// logger.WriteLine(string.Format("Durchfluss-3=0,0")); /// 0,0 logger.WriteLine(string.Format("Prüfzeit-3=0")); /// 0 logger.WriteLine(string.Format("Prüfbereich100_110-3=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMin-3=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMax-3=0")); /// 0 logger.WriteLine(string.Format("QBezeichnung-3=")); /// logger.WriteLine(string.Format("Durchfluss-2=0,0")); /// 0,0 logger.WriteLine(string.Format("Prüfzeit-2=0")); /// 0 logger.WriteLine(string.Format("Prüfbereich100_110-2=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMin-2=0")); /// 0 logger.WriteLine(string.Format("PrüfbereichMax-2=0")); /// 0 logger.WriteLine(string.Format("QBezeichnung-2=")); /// logger.WriteLine(string.Format("Durchfluss-1={0}", Units.ConvertTo(Unit.lph, adj.Qto()).ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("Prüfzeit-1={0}", adj.TargetTime().ToString("F0"))); logger.WriteLine(string.Format("Prüfbereich100_110-1={0}", 0)); logger.WriteLine(string.Format("PrüfbereichMin-1={0}", 90)); logger.WriteLine(string.Format("PrüfbereichMax-1={0}", 100)); logger.WriteLine(string.Format("QBezeichnung-1=Just")); logger.WriteLine(string.Format("Durchfluss-0=0,0")); logger.WriteLine(string.Format("Prüfzeit-0=0")); logger.WriteLine(string.Format("Prüfbereich100_110-0=0")); logger.WriteLine(string.Format("PrüfbereichMin-0=0")); logger.WriteLine(string.Format("PrüfbereichMax-0=0")); logger.WriteLine(string.Format("QBezeichnung-0=")); logger.WriteLine(string.Format("Durchfluss1={0}", Units.ConvertTo(Unit.lph, q1.Qfrom()).ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("Prüfzeit1={0}", q1.TargetTime().ToString("F0"))); logger.WriteLine(string.Format("Prüfbereich100_1101={0}", 1)); logger.WriteLine(string.Format("PrüfbereichMin1={0}", 100)); logger.WriteLine(string.Format("PrüfbereichMax1={0}", 110)); logger.WriteLine(string.Format("QBezeichnung1=Q1")); logger.WriteLine(string.Format("PosFehlergrenze1={0}", q1.ErrLimHi().ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("NegFehlergrenze1={0}", q1.ErrLimLo().ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("PosFehlergrenzeWarm1=0,0")); logger.WriteLine(string.Format("NegFehlergrenzeWarm1=0,0")); logger.WriteLine(string.Format("Durchfluss2={0}", Units.ConvertTo(Unit.lph, q2.Qfrom()).ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("Prüfzeit2={0}", q2.TargetTime().ToString("F0"))); logger.WriteLine(string.Format("Prüfbereich100_1102={0}", 1)); logger.WriteLine(string.Format("PrüfbereichMin2={0}", 100)); logger.WriteLine(string.Format("PrüfbereichMax2={0}", 110)); logger.WriteLine(string.Format("QBezeichnung2=Q2")); logger.WriteLine(string.Format("PosFehlergrenze2={0}", q2.ErrLimHi().ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("NegFehlergrenze2={0}", q2.ErrLimLo().ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("PosFehlergrenzeWarm2=0,0")); logger.WriteLine(string.Format("NegFehlergrenzeWarm2=0,0")); logger.WriteLine(string.Format("Durchfluss3={0}", Units.ConvertTo(Unit.lph, q3.Qto()).ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("Prüfzeit3={0}", q3.TargetTime().ToString("F0"))); logger.WriteLine(string.Format("Prüfbereich100_1103={0}", 0)); logger.WriteLine(string.Format("PrüfbereichMin3={0}", 90)); logger.WriteLine(string.Format("PrüfbereichMax3={0}", 100)); logger.WriteLine(string.Format("QBezeichnung3=Q3")); logger.WriteLine(string.Format("PosFehlergrenze3={0}", q3.ErrLimHi().ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("NegFehlergrenze3={0}", q3.ErrLimLo().ToString("F1", Program.AltCulture))); logger.WriteLine(string.Format("PosFehlergrenzeWarm3=0,0")); logger.WriteLine(string.Format("NegFehlergrenzeWarm3=0,0")); logger.WriteLine(string.Format("Durchfluss4=0,0")); logger.WriteLine(string.Format("Prüfzeit4=0")); logger.WriteLine(string.Format("Prüfbereich100_1104=0")); logger.WriteLine(string.Format("PrüfbereichMin4=0")); logger.WriteLine(string.Format("PrüfbereichMax4=0")); logger.WriteLine(string.Format("QBezeichnung4=")); logger.WriteLine(string.Format("PosFehlergrenze4=0,0")); logger.WriteLine(string.Format("NegFehlergrenze4=0,0")); logger.WriteLine(string.Format("PosFehlergrenzeWarm4=0,0")); logger.WriteLine(string.Format("NegFehlergrenzeWarm4=0,0")); logger.WriteLine(string.Format("Durchfluss5=0,0")); logger.WriteLine(string.Format("Prüfzeit5=0")); logger.WriteLine(string.Format("Prüfbereich100_1105=0")); logger.WriteLine(string.Format("PrüfbereichMin5=0")); logger.WriteLine(string.Format("PrüfbereichMax5=0")); logger.WriteLine(string.Format("QBezeichnung5=")); logger.WriteLine(string.Format("PosFehlergrenze5=0,0")); logger.WriteLine(string.Format("NegFehlergrenze5=0,0")); logger.WriteLine(string.Format("PosFehlergrenzeWarm5=0,0")); logger.WriteLine(string.Format("NegFehlergrenzeWarm5=0,0")); logger.WriteLine(string.Format("GetriebeImpulse=2,000")); /// 2,000 logger.WriteLine(string.Format("OptikAufsetzen=0")); /// 0 logger.WriteLine(string.Format("Warm_Kalt=0")); /// 0 logger.WriteLine(string.Format("Füllzeit=0")); /// 0 logger.WriteLine(string.Format("EvakVorneZeit=0")); /// 0 logger.WriteLine(string.Format("EvakHintenZeit={0}", 0)); /// 90 logger.WriteLine(string.Format("Spüllzeit={0}", 0)); /// 60 logger.WriteLine(string.Format("Spüldurchfluss={0}", 0)); /// 5000,0 logger.WriteLine(string.Format("Abpresszeit={0}", 0)); /// 60 logger.WriteLine(string.Format("Abpressdruck={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Entwässerzeit={0}", 0)); /// 10 logger.WriteLine(string.Format("DinA4_Format={0}", 0)); /// 0 logger.WriteLine(string.Format("Netzwerk_Format={0}", 0)); /// 0 logger.WriteLine(string.Format("Zählernr_Format={0}", 0)); /// 1 logger.WriteLine(string.Format("WZ_Gruppe=24")); /// 24 - iPerl logger.WriteLine(string.Format("MittelwertTiefe={0}", 0)); /// 1 logger.WriteLine(string.Format("EndKriterium={0}", 0)); /// 0 logger.WriteLine(string.Format("Justieren={0}", 1)); /// 1 logger.WriteLine(string.Format("Bemerkung=")); /// logger.WriteLine(string.Format("Gesamtprüfzeit={0}", (adj.TargetTime() + q1.TargetTime() + q2.TargetTime() + q3.TargetTime()).ToString("F0"))); logger.WriteLine(string.Format("Gegenprüfung={0}", 0)); /// 0 logger.WriteLine(string.Format("Geändert_von={0}", 6)); /// 4459 logger.WriteLine(string.Format("Geändert_am={0:dd.MM.yyyy HH:mm:ss}", DateTime.Now)); /// 29.05.2015 13:46:17 for (int i = 0; i < batch.WaterMeters.Count; i++) { Results.Entities.WaterMeter wMtr = batch.WaterMeters[i]; adj = wMtr.GetMeterTestRslt(string.Format("Adjustment")); q1 = wMtr.GetMeterTestRslt(string.Format("Q1")); q2 = wMtr.GetMeterTestRslt(string.Format("Q2")); q3 = wMtr.GetMeterTestRslt(string.Format("Q3")); logger.WriteLine(string.Empty); logger.WriteLine(string.Format("[Zählerdaten_{0}]", i + 1)); if (wMtr == null || adj == null || q1 == null || q2 == null || q3 == null) { logger.WriteLine("geprüft=0"); } else { logger.WriteLine("geprüft=1"); logger.WriteLine(string.Format("Zählernummer=")); logger.WriteLine(string.Format("FertigsNr={0}", wMtr.SerialNr)); logger.WriteLine(string.Format("bestanden={0}", wMtr.Passed ? 1 : 0)); /// 1 logger.WriteLine(string.Format("Prüfflag={0}", wMtr.HydrPruefung)); /// 96 logger.WriteLine(string.Format("FestWertWZ=0")); /// 0 logger.WriteLine(string.Format("Dicht={0}", 1)); /// 1 logger.WriteLine(string.Format("PrüfIndex={0}", wMtr.Pruefindex)); /// 7301 logger.WriteLine(string.Format("GeprüftIndex=1")); /// 1 logger.WriteLine(string.Format("Q-1bestanden=1")); logger.WriteLine(string.Format("Durchfluss-1={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, adj.FlowVolume()), 5, true))); logger.WriteLine(string.Format("Fehler-1={0}", adj.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("ZeitImpulse-1={0}", adj.TestTime.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Impulse-1=0")); logger.WriteLine(string.Format("Volumen-1={0}", adj.VolumeMeter.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrFehler-1={0}", adj.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrDurchfluss-1={0}", 0)); logger.WriteLine(string.Format("Q-1KorrBestanden={0}", 0)); logger.WriteLine(string.Format("Anfangsstand-1={0}", 0)); /// TODO logger.WriteLine(string.Format("Endstand-1={0}", 0)); /// TODO logger.WriteLine(string.Format("QMittelwert-1={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, adj.FlowVolume()), 5, true))); logger.WriteLine(string.Format("QStandardAbweichung-1={0}", 0)); logger.WriteLine(string.Format("ImpedanzMittelwert-1=0,00000")); logger.WriteLine(string.Format("AusfallGrund-1={0}", 0)); logger.WriteLine(string.Format("Q1bestanden={0}", q1.Passed ? 1 : 0)); logger.WriteLine(string.Format("Durchfluss1={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, q1.FlowVolume()), 5, true))); logger.WriteLine(string.Format("Fehler1={0}", q1.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("ZeitImpulse1={0}", q1.TestTime.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Impulse1={0}", 0)); logger.WriteLine(string.Format("Volumen1={0}", q1.VolumeMeter.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrFehler1={0}", q1.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrDurchfluss1={0}", 0)); logger.WriteLine(string.Format("Q1KorrBestanden={0}", 0)); logger.WriteLine(string.Format("Anfangsstand1={0}", 0)); /// TODO logger.WriteLine(string.Format("Endstand1={0}", 0)); /// TODO logger.WriteLine(string.Format("QMittelwert1={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, q1.FlowVolume()), 5, true))); logger.WriteLine(string.Format("QStandardAbweichung1={0}", 0)); logger.WriteLine(string.Format("ImpedanzMittelwert1=0,00000")); logger.WriteLine(string.Format("AusfallGrund1={0}", 0)); logger.WriteLine(string.Format("Q2bestanden={0}", q2.Passed ? 1 : 0)); logger.WriteLine(string.Format("Durchfluss2={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, q2.FlowVolume()), 5, true))); logger.WriteLine(string.Format("Fehler2={0}", q2.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("ZeitImpulse2={0}", q2.TestTime.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Impulse2={0}", 0)); logger.WriteLine(string.Format("Volumen2={0}", q2.VolumeMeter.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrFehler2={0}", q2.WaterMeter.Q2CorrectionDone ? q2.WaterMeter.Q2ErrWOCorrection.ToString(Program.AltCulture) : q2.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrDurchfluss2={0}", 0)); logger.WriteLine(string.Format("Q2KorrBestanden={0}", 0)); logger.WriteLine(string.Format("Anfangsstand2={0}", 0)); /// TODO logger.WriteLine(string.Format("Endstand2={0}", 0)); /// TODO logger.WriteLine(string.Format("QMittelwert2={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, q2.FlowVolume()), 5, true))); logger.WriteLine(string.Format("QStandardAbweichung2={0}", 0)); logger.WriteLine(string.Format("ImpedanzMittelwert2=0,00000")); logger.WriteLine(string.Format("AusfallGrund2={0}", 0)); logger.WriteLine(string.Format("Q3bestanden={0}", q3.Passed ? 1 : 0)); logger.WriteLine(string.Format("Durchfluss3={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, q3.FlowVolume()), 5, true))); logger.WriteLine(string.Format("Fehler3={0}", q3.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("ZeitImpulse3={0}", q3.TestTime.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Impulse3={0}", 0)); logger.WriteLine(string.Format("Volumen3={0}", q3.VolumeMeter.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrFehler3={0}", q3.Error.ToString(Program.AltCulture))); logger.WriteLine(string.Format("KorrDurchfluss3={0}", 0)); logger.WriteLine(string.Format("Q3KorrBestanden={0}", 0)); logger.WriteLine(string.Format("Anfangsstand3={0}", 0)); /// TODO logger.WriteLine(string.Format("Endstand3={0}", 0)); /// TODO logger.WriteLine(string.Format("QMittelwert3={0}", Utils.DoubleToStr(Units.ConvertTo(Unit.lph, q3.FlowVolume()), 5, true))); logger.WriteLine(string.Format("QStandardAbweichung3={0}", 0)); logger.WriteLine(string.Format("ImpedanzMittelwert3=0,00000")); logger.WriteLine(string.Format("AusfallGrund3={0}", 0)); logger.WriteLine(string.Format("AusfallGrundGesamt={0}", 0)); logger.WriteLine(string.Format("AuftragNum={0}", wMtr.PurchaseOrder)); logger.WriteLine(string.Format("MaterialNum={0}", 38140500)); logger.WriteLine(string.Format("Prefix={0}", "8SEN01")); logger.WriteLine(string.Format("Suffix=")); logger.WriteLine(string.Format("Palette={0}", 0)); logger.WriteLine(string.Format("Umkarton={0}", 0)); logger.WriteLine(string.Format("ZNr_komplett=")); logger.WriteLine(string.Format("OptikBewertung=0,00000")); logger.WriteLine(string.Format("IdProduziert={0}", 0)); /// 61 logger.WriteLine(string.Format("Calibration_alt={0}", wMtr.OrigCalibFactor)); logger.WriteLine(string.Format("Calibration={0}", wMtr.CalibFactor)); logger.WriteLine(string.Format("Firmware={0}", "05.66")); /// 05.66 logger.WriteLine(string.Format("FlexFlowFehler={0}", 0)); /// 0 logger.WriteLine(string.Format("FlexFlowAuftrag={0}", 0)); /// 4248189 logger.WriteLine(string.Format("JustierWert=0,2")); /// 0,2 logger.WriteLine(string.Format("Corrected2Hz={0}", wMtr.Hz2CorrectionDone ? 1 : 0)); logger.WriteLine(string.Format("Q2Corrected={0}", wMtr.Q2CorrectionDone ? 1 : 0)); logger.WriteLine(string.Format("Q2CorrectionRight={0}", (int)Math.Round(wMtr.Q2Correction / 2))); logger.WriteLine(string.Format("Q2CorrectionLeft={0}", (int)Math.Round(wMtr.Q2Correction))); logger.WriteLine(string.Format("Q2CorrectionFlowRight={0}", wMtr.Q2CorrFlowRight)); logger.WriteLine(string.Format("FlowDirectionRight={0}", wMtr.Q2CorrFlowRight)); logger.WriteLine(string.Format("Position={0}", wMtr.WMPosition)); } } logger.WriteLine(string.Empty); logger.WriteLine("[Prüfdaten]"); /// logger.WriteLine(string.Format("Startzeit={0}", batch.StartTime.ToString("HH:mm:ss"))); logger.WriteLine(string.Format("Endezeit={0}", batch.EndTime.ToString("HH:mm:ss"))); logger.WriteLine(string.Format("Datum={0}", batch.StartTime.ToString("dd.MM.yyyy"))); logger.WriteLine(string.Format("GesamtDauer={0}", batch.EndTime.Subtract(batch.StartTime).TotalSeconds)); logger.WriteLine(string.Format("Dichtprüfung={0}", 0)); /// 1 /// logger.WriteLine(string.Format("Q-5_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q-4_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q-3_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q-2_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q-1_geprüft={0}", 1)); /// 1 logger.WriteLine(string.Format("Prüfvolumen-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("Prüfmasse-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("Temp1_P-1={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp2_P-1={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp3_P-1={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp4_P-1={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp5_P-1={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp6_P-1={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp7_P-1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Temp8_P-1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Druck1_P-1={0}", adj.TestRslt.PressUpMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Druck2_P-1={0}", adj.TestRslt.PressDownMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("K-Faktor-1={0}", 0)); /// 0,00000000 logger.WriteLine(string.Format("Q_Waage-1={0}", 0)); /// 3880,87469 logger.WriteLine(string.Format("Q_Vergleich-1={0}", 0)); /// 3869,47056 logger.WriteLine(string.Format("Fehler_Vergleich-1={0}", 0)); /// -0,29472 logger.WriteLine(string.Format("VZ_ZeitImpulse-1={0}", 0)); /// 500,14362 logger.WriteLine(string.Format("VZ_Impulse-1={0}", 0)); /// 645097 logger.WriteLine(string.Format("ZeitImpulse_VZ-1={0}", 0)); /// 976843 logger.WriteLine(string.Format("VorwahlZähler-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("VZ_Nummer-1={0}", 0)); /// 1 logger.WriteLine(string.Format("Anfangsgewicht-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("Endgewicht-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("MinDurchfluss-1={0}", 0)); /// 3862,00000 logger.WriteLine(string.Format("MaxDurchfluss-1={0}", 0)); /// 3876,00000 logger.WriteLine(string.Format("Q_Einstellzeit-1={0}", 0)); /// 7,28 logger.WriteLine(string.Format("Pumpennummer-1={0}", 0)); /// 2 logger.WriteLine(string.Format("Drehzahl-1={0}", 0)); /// 2269 logger.WriteLine(string.Format("DAW_Wert-1={0}", 0)); /// 1501 logger.WriteLine(string.Format("Leitfähigkeit-1={0}", 0)); /// 545,05 logger.WriteLine(string.Format("LuftDruck-1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("LuftFeuchtigkeit-1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("HyDruck-1={0}", 0)); /// 6,2 logger.WriteLine(string.Format("VorratsDruckHy-1={0}", 0)); /// 6,3 logger.WriteLine(string.Format("Anfangsgewicht2_-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("Endgewicht2_-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("Prüfmasse2_-1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("GegenWaage-1={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q0_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q1_geprüft={0}", 1)); /// 1 logger.WriteLine(string.Format("Prüfvolumen1={0}", 0)); /// 3,73655 logger.WriteLine(string.Format("Prüfmasse1={0}", 0)); /// 3,72610 logger.WriteLine(string.Format("Temp1_P1={0}", 0)); /// 20,0 logger.WriteLine(string.Format("Temp2_P1={0}", 0)); /// 20,0 logger.WriteLine(string.Format("Temp3_P1={0}", 0)); /// 20,0 logger.WriteLine(string.Format("Temp4_P1={0}", 0)); /// 20,0 logger.WriteLine(string.Format("Temp5_P1={0}", 0)); /// 20,0 logger.WriteLine(string.Format("Temp6_P1={0}", 0)); /// 20,0 logger.WriteLine(string.Format("Temp7_P1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Temp8_P1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Druck1_P1={0}", q1.TestRslt.PressUpMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Druck2_P1={0}", q1.TestRslt.PressDownMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("K-Faktor1={0}", 0)); /// 0,99820080 logger.WriteLine(string.Format("Q_Waage1={0}", 0)); /// 26,89887 logger.WriteLine(string.Format("Q_Vergleich1={0}", 0)); /// 26,83427 logger.WriteLine(string.Format("Fehler_Vergleich1={0}", 0)); /// -0,24014 logger.WriteLine(string.Format("VZ_ZeitImpulse1={0}", 0)); /// 500,07962 logger.WriteLine(string.Format("VZ_Impulse1={0}", 0)); /// 4473091 logger.WriteLine(string.Format("ZeitImpulse_VZ1={0}", 0)); /// 976718 logger.WriteLine(string.Format("VorwahlZähler1={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("VZ_Nummer1={0}", 0)); /// 3 logger.WriteLine(string.Format("Anfangsgewicht1={0}", 0)); /// 4,66535 logger.WriteLine(string.Format("Endgewicht1={0}", 0)); /// 8,39145 logger.WriteLine(string.Format("MinDurchfluss1={0}", 0)); /// 26,73800 logger.WriteLine(string.Format("MaxDurchfluss1={0}", 0)); /// 27,04800 logger.WriteLine(string.Format("Q_Einstellzeit1={0}", 0)); /// 4,17 logger.WriteLine(string.Format("Pumpennummer1={0}", 0)); /// 3 logger.WriteLine(string.Format("Drehzahl1={0}", 0)); /// 1743 logger.WriteLine(string.Format("DAW_Wert1={0}", 0)); /// 2700 logger.WriteLine(string.Format("Leitfähigkeit1={0}", 0)); /// 543,10 logger.WriteLine(string.Format("LuftDruck1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("LuftFeuchtigkeit1={0}", 0)); /// 0,0 logger.WriteLine(string.Format("HyDruck1={0}", 0)); /// 6,2 logger.WriteLine(string.Format("VorratsDruckHy1={0}", 0)); /// 6,3 logger.WriteLine(string.Format("Anfangsgewicht2_1={0}", 0)); /// 37,94400 logger.WriteLine(string.Format("Endgewicht2_1={0}", 0)); /// 37,94200 logger.WriteLine(string.Format("Prüfmasse2_1={0}", 0)); /// -0,00200 logger.WriteLine(string.Format("GegenWaage1={0}", 0)); /// 1 /// logger.WriteLine(string.Format("Q2_geprüft={0}", 1)); /// 1 logger.WriteLine(string.Format("Prüfvolumen2={0}", 0)); /// 4,65370 logger.WriteLine(string.Format("Prüfmasse2={0}", 0)); /// 4,64078 logger.WriteLine(string.Format("Temp1_P2={0}", 0)); /// 19,9 logger.WriteLine(string.Format("Temp2_P2={0}", 0)); /// 19,9 logger.WriteLine(string.Format("Temp3_P2={0}", 0)); /// 19,9 logger.WriteLine(string.Format("Temp4_P2={0}", 0)); /// 19,9 logger.WriteLine(string.Format("Temp5_P2={0}", 0)); /// 19,9 logger.WriteLine(string.Format("Temp6_P2={0}", 0)); /// 19,9 logger.WriteLine(string.Format("Temp7_P2={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Temp8_P2={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Druck1_P2={0}", q2.TestRslt.PressUpMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Druck2_P2={0}", q2.TestRslt.PressDownMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("K-Faktor2={0}", 0)); /// 0,99822140 logger.WriteLine(string.Format("Q_Waage2={0}", 0)); /// 41,84627 logger.WriteLine(string.Format("Q_Vergleich2={0}", 0)); /// 41,68738 logger.WriteLine(string.Format("Fehler_Vergleich2={0}", 0)); /// -0,37970 logger.WriteLine(string.Format("VZ_ZeitImpulse2={0}", 0)); /// 400,35379 logger.WriteLine(string.Format("VZ_Impulse2={0}", 0)); /// 166897 logger.WriteLine(string.Format("ZeitImpulse_VZ2={0}", 0)); /// 781941 logger.WriteLine(string.Format("VorwahlZähler2={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("VZ_Nummer2={0}", 0)); /// 2 logger.WriteLine(string.Format("Anfangsgewicht2={0}", 0)); /// 0,02457 logger.WriteLine(string.Format("Endgewicht2={0}", 0)); /// 4,66535 logger.WriteLine(string.Format("MinDurchfluss2={0}", 0)); /// 40,43333 logger.WriteLine(string.Format("MaxDurchfluss2={0}", 0)); /// 42,23333 logger.WriteLine(string.Format("Q_Einstellzeit2={0}", 0)); /// 3,80 logger.WriteLine(string.Format("Pumpennummer2={0}", 0)); /// 3 logger.WriteLine(string.Format("Drehzahl2={0}", 0)); /// 1743 logger.WriteLine(string.Format("DAW_Wert2={0}", 0)); /// 500 logger.WriteLine(string.Format("Leitfähigkeit2={0}", 0)); /// 543,10 logger.WriteLine(string.Format("LuftDruck2={0}", 0)); /// 0,0 logger.WriteLine(string.Format("LuftFeuchtigkeit2={0}", 0)); /// 0,0 logger.WriteLine(string.Format("HyDruck2={0}", 0)); /// 6,2 logger.WriteLine(string.Format("VorratsDruckHy2={0}", 0)); /// 6,3 logger.WriteLine(string.Format("Anfangsgewicht2_2={0}", 0)); /// 37,95000 logger.WriteLine(string.Format("Endgewicht2_2={0}", 0)); /// 37,94400 logger.WriteLine(string.Format("Prüfmasse2_2={0}", 0)); /// -0,00600 logger.WriteLine(string.Format("GegenWaage2={0}", 0)); /// 1 /// logger.WriteLine(string.Format("Q3_geprüft={0}", 1)); /// 1 logger.WriteLine(string.Format("Prüfvolumen3={0}", 0)); /// 107,76493 logger.WriteLine(string.Format("Prüfmasse3={0}", 0)); /// 107,46800 logger.WriteLine(string.Format("Temp1_P3={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp2_P3={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp3_P3={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp4_P3={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp5_P3={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp6_P3={0}", 0)); /// 19,8 logger.WriteLine(string.Format("Temp7_P3={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Temp8_P3={0}", 0)); /// 0,0 logger.WriteLine(string.Format("Druck1_P3={0}", q3.TestRslt.PressUpMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("Druck2_P3={0}", q3.TestRslt.PressDownMean.ToString(Program.AltCulture))); logger.WriteLine(string.Format("K-Faktor3={0}", 0)); /// 0,99824190 logger.WriteLine(string.Format("Q_Waage3={0}", 0)); /// 3874,27093 logger.WriteLine(string.Format("Q_Vergleich3={0}", 0)); /// 3867,08324 logger.WriteLine(string.Format("Fehler_Vergleich3={0}", 0)); /// -0,18552 logger.WriteLine(string.Format("VZ_ZeitImpulse3={0}", 0)); /// 100,13594 logger.WriteLine(string.Format("VZ_Impulse3={0}", 0)); /// 129078 logger.WriteLine(string.Format("ZeitImpulse_VZ3={0}", 0)); /// 195578 logger.WriteLine(string.Format("VorwahlZähler3={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("VZ_Nummer3={0}", 0)); /// 1 logger.WriteLine(string.Format("Anfangsgewicht3={0}", 0)); /// 11,20800 logger.WriteLine(string.Format("Endgewicht3={0}", 0)); /// 118,67600 logger.WriteLine(string.Format("MinDurchfluss3={0}", 0)); /// 3862,00000 logger.WriteLine(string.Format("MaxDurchfluss3={0}", 0)); /// 3872,00000 logger.WriteLine(string.Format("Q_Einstellzeit3={0}", 0)); /// 26,37 logger.WriteLine(string.Format("Pumpennummer3={0}", 0)); /// 2 logger.WriteLine(string.Format("Drehzahl3={0}", 0)); /// 2269 logger.WriteLine(string.Format("DAW_Wert3={0}", 0)); /// 1501 logger.WriteLine(string.Format("Leitfähigkeit3={0}", 0)); /// 543,10 logger.WriteLine(string.Format("LuftDruck3={0}", 0)); /// 0,0 logger.WriteLine(string.Format("LuftFeuchtigkeit3={0}", 0)); /// 0,0 logger.WriteLine(string.Format("HyDruck3={0}", 0)); /// 6,2 logger.WriteLine(string.Format("VorratsDruckHy3={0}", 0)); /// 6,3 logger.WriteLine(string.Format("Anfangsgewicht2_3={0}", 0)); /// 0,00818 logger.WriteLine(string.Format("Endgewicht2_3={0}", 0)); /// 0,00800 logger.WriteLine(string.Format("Prüfmasse2_3={0}", 0)); /// -0,00018 logger.WriteLine(string.Format("GegenWaage3={0}", 0)); /// 1 /// logger.WriteLine(string.Format("Q4_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("Q5_geprüft={0}", 0)); /// 0 /// logger.WriteLine(string.Format("FüllenDruck={0}", 0)); /// 0,00 logger.WriteLine(string.Format("EvakVorneDruck={0}", 0)); /// 0,00 logger.WriteLine(string.Format("EvakHintenDruck={0}", 0)); /// -1,00 logger.WriteLine(string.Format("Spüldurchfluss={0}", 0)); /// 4722,00 logger.WriteLine(string.Format("AbpressDruck={0}", 0)); /// 20,13 logger.WriteLine(string.Format("AbpressDruckVorne={0}", 0)); /// 20,16 logger.WriteLine(string.Format("AbpressDruckBeginn={0}", 0)); /// 0,00 logger.WriteLine(string.Format("EntwässernDruck={0}", 0)); /// -1,00 logger.WriteLine(string.Format("ZaehlwerktestAnfang={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("ZaehlwerktestEnde={0}", 0)); /// 0,00000 logger.WriteLine(string.Format("ZaehlwerktestImpulse={0}", 0)); /// 0 logger.WriteLine(string.Format("MeldungZaehler={0}", 0)); /// 0 logger.WriteLine(string.Empty); logger.WriteLine("[allgemein]"); /// logger.WriteLine(string.Format("Prüfer={0}", 6)); /// 1047 logger.WriteLine(string.Format("PrüferID={0}", 6)); /// 246 logger.WriteLine(string.Format("AuftragKompakt={0}", 0)); /// 4248189 logger.WriteLine(string.Format("VariantenCode={0}", "IP")); /// IPRO04CMECAZDKAMMXB1AA2011201101AEUAA1XX314NM1XXXLX logger.WriteLine(string.Format("SollStückzahl={0}", 3)); /// 1000 logger.WriteLine(string.Format("IstStückzahl={0}", 3)); /// 61 logger.WriteLine(string.Format("Bemerkung=§")); /// § logger.WriteLine(string.Format("BetriebsArt={0}", 3)); /// C logger.WriteLine(string.Format("BuchstabenVorEtikett=8SEN01")); /// 8SEN01 logger.WriteLine(string.Format("BuchstabenNachEtikett=")); /// logger.WriteLine(string.Format("StehenderStartStop={0}", 0)); /// 0 logger.WriteLine(string.Format("ID_WzPruefreihe={0}", batch.BatchNr)); /// 2583 logger.WriteLine(string.Format("ID_Pruefstand={0}", 18000 + batch.TestBenchId)); /// 18004 logger.WriteLine(string.Format("DichteKorrektur=0,00000")); /// 0,00000 logger.WriteLine(string.Format("LuftauftriebsKorrekturfaktor=1,00000")); /// 1,00100 logger.WriteLine(string.Format("ProgrammVersion={0}", Program.Version)); logger.WriteLine(string.Format("LetzteAenderung={0}", Program.BuildDateTime.ToShortDateString())); logger.WriteLine(string.Format("QuarzTakt={0}", 0)); /// 1953,125 /// Close the file logger.Close(); logger = null; } catch (Exception exc) { log.ErrorFormat("Results not saved to disk: {0}", exc.Message); return Retv.Error; } #endif return Retv.OK; /// OK } #if ORACLE_DB public static Retv WriteResultsToDatabase(OracleConnection conn, Results.Entities.Batch batch, bool safeMode) { OracleTransaction transaction = null; try { conn.Open(); /// Open the Oracle database transaction = conn.BeginTransaction(); SaveBatchData(conn, batch); foreach (var wMtr in batch.WaterMeters) { SaveSingleWM2DB(conn, wMtr, safeMode); } transaction.Commit(); } catch (Exception exc) { if (transaction != null) transaction.Rollback(); log.ErrorFormat("Results of batch {0} not written to ORACLE database: {1}", batch.BatchNr, exc.Message); conn.Close(); return Retv.Error; } conn.Close(); return Retv.OK; } /// /// Write one meter results into the database /// /// 0-based water meter number /// Sorted list of results to save static void SaveSingleWM2DB(OracleConnection conn, Results.Entities.WaterMeter wm, bool safeMode) { if (string.IsNullOrEmpty(wm.SerialNr)) return; /// No database activity possible w/o PCB number if (safeMode && !wm.Passed) return; /// /// Read a list of all prufindexes for a given PCB Number /// IList pruefindexes = new List(); { OracleParameter parm = new OracleParameter(); parm.OracleDbType = OracleDbType.Varchar2; parm.Value = wm.SerialNr; OracleCommand cmd1 = new OracleCommand("SELECT Pruefindex FROM VT_ZAEHLER_PINDEX_PD WHERE VT_Fernum = :1 AND ANBID = 4", conn); cmd1.Parameters.Add(parm); OracleDataReader dr = cmd1.ExecuteReader(); while (dr.Read()) { pruefindexes.Add(dr.GetInt32(0)); } dr.Close(); } { OracleParameter parm = new OracleParameter(); parm.OracleDbType = OracleDbType.Varchar2; parm.Value = wm.SerialNr; OracleCommand cmd1 = new OracleCommand("SELECT Max_Pruefindex FROM VT_ZAEHLER_PD WHERE VT_Fernum = :1 AND ANBID = 4", conn); cmd1.Parameters.Add(parm); OracleDataReader dr = cmd1.ExecuteReader(); while (dr.Read()) { pruefindexes.Add(dr.GetInt32(0)); } dr.Close(); } /// /// Determine MAX_Pruefindex /// int maxpruefindexLowPart = 0; foreach (var v in pruefindexes) { if ((v % 100) > maxpruefindexLowPart) maxpruefindexLowPart = (v % 100); } int MAX_Pruefindex = 100 * DBCfg.TestBenchId + maxpruefindexLowPart + 1; int Hydr_Pruefung; if (wm.Passed) { /// Passed if (maxpruefindexLowPart == 0) Hydr_Pruefung = 96; else Hydr_Pruefung = 224; } else { /// Failed Hydr_Pruefung = 97; /// Hydr. test failed, Pressure test passed } wm.Pruefindex = MAX_Pruefindex; wm.HydrPruefung = Hydr_Pruefung; SaveOrUpdateWM(conn, wm, MAX_Pruefindex, Hydr_Pruefung); } /// /// Save common batch data /// /// Batch static void SaveBatchData(OracleConnection conn, Results.Entities.Batch b) { OracleParameter parm; OracleCommand cmd = new OracleCommand("INSERT INTO VT_PRUEFREIHE_PD(" + "ANBID, ID_Pruefstand, ID_WzPruefreihe, ID_WZTyp, Rev_WZTyp, Rev_Pruefstand_WZTyp, " + "StartDatumZeit, EndDatumZeit, Betriebsart, QVzKontakt, " + "FuellenBegDruck, DruckEvakVorne, DruckEvakHinten, DruckBeiAbpressen, " + "Druckentwaessern, SpuelDurchflussIst, ProgrammVersion)" + " VALUES (:1, :2, :3, :4, :5, :6, :7, :8, :9, :10, :11, :12, :13, :14, :15, :16, :17)", conn); parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd.Parameters.Add(parm); ///:1 parm = new OracleParameter("ID_Pruefstand", OracleDbType.Int32); parm.Value = 18000 + b.TestBenchId; cmd.Parameters.Add(parm); ///:2 parm = new OracleParameter("ID_WzPruefreihe", OracleDbType.Int32); parm.Value = b.BatchNr; cmd.Parameters.Add(parm); ///:3 parm = new OracleParameter("ID_WZTyp", OracleDbType.Int32); parm.Value = b.WaterMeters[0].WaterMeterData.WMTypeId; cmd.Parameters.Add(parm); ///:4 parm = new OracleParameter("Rev_WZTyp", OracleDbType.Int32); parm.Value = b.WaterMeters[0].WaterMeterData.WMTypeRev; cmd.Parameters.Add(parm); ///:5 parm = new OracleParameter("Rev_Pruefstand_WZTyp", OracleDbType.Int32); parm.Value = 1; cmd.Parameters.Add(parm); ///:6 parm = new OracleParameter("StartDatumZeit", OracleDbType.TimeStamp); parm.Value = b.StartTime; cmd.Parameters.Add(parm); ///:7 parm = new OracleParameter("EndDatumZeit", OracleDbType.TimeStamp); parm.Value = b.EndTime; cmd.Parameters.Add(parm); ///:8 parm = new OracleParameter("Betriebsart", OracleDbType.Varchar2); parm.Value = ""; cmd.Parameters.Add(parm); ///:9 parm = new OracleParameter("QVzKontakt", OracleDbType.Double); parm.Value = 0; cmd.Parameters.Add(parm); ///:10 parm = new OracleParameter("FuellenBegDruck", OracleDbType.Double); parm.Value = 0; cmd.Parameters.Add(parm); ///:11 parm = new OracleParameter("DruckEvakVorne", OracleDbType.Double); parm.Value = 0; cmd.Parameters.Add(parm); ///:12 parm = new OracleParameter("DruckEvakHinten", OracleDbType.Double); parm.Value = 0; cmd.Parameters.Add(parm); ///:13 parm = new OracleParameter("DruckBeiAbpressen", OracleDbType.Double); parm.Value = 0; /*TODO*/ cmd.Parameters.Add(parm); ///:14 parm = new OracleParameter("Druckentwaessern", OracleDbType.Double); parm.Value = 0; cmd.Parameters.Add(parm); ///:15 parm = new OracleParameter("SpuelDurchflussIst", OracleDbType.Double); parm.Value = 0; /*TODO*/ cmd.Parameters.Add(parm); ///:16 parm = new OracleParameter("ProgrammVersion", OracleDbType.Varchar2); parm.Value = "TBF v." + b.ProgramVersion; cmd.Parameters.Add(parm); ///:17 cmd.ExecuteNonQuery(); /// Returns nr. of updated rows if ((id_WZTyp != b.WaterMeters[0].WaterMeterData.WMTypeId) || (rev_WZTyp != b.WaterMeters[0].WaterMeterData.WMTypeRev) || testInfos.Count == 0) { testInfos.Clear(); id_WZTyp = b.WaterMeters[0].WaterMeterData.WMTypeId; rev_WZTyp = b.WaterMeters[0].WaterMeterData.WMTypeRev; OracleCommand cmd1 = new OracleCommand("SELECT PruefungsNr, PosFehlerKalt, QBezeichnung FROM VT_PRUEFPUNKT_SOLL_SD WHERE ANBID=4 AND ID_WZTyp=:1 AND Rev_WZTyp=:2", conn); parm = new OracleParameter("ID_WZTyp", OracleDbType.Int32); parm.Value = id_WZTyp; cmd1.Parameters.Add(parm); ///:1 parm = new OracleParameter("Rev_WZTyp", OracleDbType.Int32); parm.Value = rev_WZTyp; cmd1.Parameters.Add(parm); ///:2 OracleDataReader dr = cmd1.ExecuteReader(); while (dr.Read()) { int pruefungsNr = dr.GetInt32(0); double errLimHi = dr.GetDouble(1); string qBezeichnung = dr.GetString(2); if (qBezeichnung == "Q2" && errLimHi > 2.0) qBezeichnung = "Q2adj"; if (qBezeichnung.ToLower().Contains("just") && pruefungsNr == -1) qBezeichnung = "Adjustment"; if (qBezeichnung.Contains("Q") || qBezeichnung == "Adjustment") { testInfos.Add(new TestInfo(pruefungsNr, qBezeichnung)); log.WarnFormat("VT_PRUEFPUNKT_SOLL_SD info : ID_WZTyp={0} Rev_WZTyp={1} PruefungsNr={2} PosFehlerKalt={3} QBezeichnung={4}", id_WZTyp, rev_WZTyp, pruefungsNr, errLimHi, qBezeichnung); } } dr.Close(); } foreach (var testInfo in testInfos) { Results.Entities.TestRslt tr = b.GetTestRslt(testInfo.QBezeichnung, 0); if (tr == null) tr = b.GetTestRslt(testInfo.QBezeichnung, 1); /// TODO: Remove this workaround for large watermeters with multiple parts at Q3 if (tr == null) continue; OracleCommand cmd2 = new OracleCommand("INSERT INTO VT_PRUEFDURCHFLUSS_PD(" + "ANBID, ID_Pruefstand, ID_WzPruefreihe, PruefungsNr, " + "PVOL, PMasse, MinDurchfluss, MaxDurchfluss, " + "Q_ist, KFaktor, Q_VZ, F_VZ, RegelEinstellZeit, Drehzahl, " + "BeginnDruck_Vorne, BeginnDruck_Hinten, EndDruck_Vorne, EndDruck_Hinten, " + "TVWZ, IVWZ, Verwendeter_VZ, BeginnGewicht, EndGewicht)" + " VALUES (:1, :2, :3, :4, :5, :6, :7, :8, :9, :10, :11, :12, :13, :14, :15, " + ":16, :17, :18, :19, :20, :21, :22, :23)", conn); parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd2.Parameters.Add(parm); ///:1 parm = new OracleParameter("ID_Pruefstand", OracleDbType.Int32); parm.Value = 18000 + b.TestBenchId; cmd2.Parameters.Add(parm); ///:2 parm = new OracleParameter("ID_WzPruefreihe", OracleDbType.Int32); parm.Value = b.BatchNr; cmd2.Parameters.Add(parm); ///:3 parm = new OracleParameter("PruefungsNr", OracleDbType.Int32); parm.Value = testInfo.PruefungsNr; cmd2.Parameters.Add(parm); ///:4 /// parm = new OracleParameter("PVOL", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.l, tr.VolumeCTV); cmd2.Parameters.Add(parm); ///:5 parm = new OracleParameter("PMasse", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.kg, tr.MassEnd-tr.MassStart); cmd2.Parameters.Add(parm); ///:6 parm = new OracleParameter("MinDurchfluss", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.lph, tr.FlowMin); cmd2.Parameters.Add(parm); ///:7 parm = new OracleParameter("MaxDurchfluss", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.lph, tr.FlowMax); cmd2.Parameters.Add(parm); ///:8 double Q_ist = (tr.VolumeMaster != 0) ? (tr.FlowVolume * tr.VolumeCTV / tr.VolumeMaster) : (double)tr.FlowVolume; parm = new OracleParameter("Q_ist", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.lph, Q_ist); cmd2.Parameters.Add(parm); ///:9 parm = new OracleParameter("KFaktor", OracleDbType.Double); parm.Value = tr.ConstMaster; cmd2.Parameters.Add(parm); ///:10 parm = new OracleParameter("Q_VZ", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.lph, tr.FlowVolume); cmd2.Parameters.Add(parm); ///:11 parm = new OracleParameter("F_VZ", OracleDbType.Double); parm.Value = tr.ErrorMaster; cmd2.Parameters.Add(parm); ///:12 parm = new OracleParameter("RegelEinstellZeit", OracleDbType.Double); parm.Value = (double)tr.FlowSetTime; cmd2.Parameters.Add(parm); ///:13 parm = new OracleParameter("Drehzahl", OracleDbType.Int32); parm.Value = 0; /* TODO */ cmd2.Parameters.Add(parm); ///:14 /// parm = new OracleParameter("BeginnDruck_Vorne", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.bar, tr.PressUpStart); cmd2.Parameters.Add(parm); ///:15 parm = new OracleParameter("BeginnDruck_Hinten", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.bar, tr.PressDownStart); cmd2.Parameters.Add(parm); ///:16 parm = new OracleParameter("EndDruck_Vorne", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.bar, tr.PressUpEnd); cmd2.Parameters.Add(parm); ///:17 parm = new OracleParameter("EndDruck_Hinten", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.bar, tr.PressDownEnd); cmd2.Parameters.Add(parm); ///:18 /// parm = new OracleParameter("TVWZ", OracleDbType.Double); parm.Value = tr.TestTime; cmd2.Parameters.Add(parm); ///:19 parm = new OracleParameter("IVWZ", OracleDbType.Int32); parm.Value = tr.PulsesMaster; cmd2.Parameters.Add(parm); ///:20 parm = new OracleParameter("Verwendeter_VZ", OracleDbType.Int32); parm.Value = 0; /* TODO */ cmd2.Parameters.Add(parm); ///:21 parm = new OracleParameter("BeginnGewicht", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.kg, tr.MassStart); cmd2.Parameters.Add(parm); ///:22 parm = new OracleParameter("EndGewicht", OracleDbType.Double); parm.Value = Units.ConvertTo(Unit.kg, tr.MassEnd); cmd2.Parameters.Add(parm); ///:23 cmd2.ExecuteNonQuery(); /// Returns nr. of updated rows } log.InfoFormat("Batch data saved, batchNr={0}", b.BatchNr); } static void SaveOrUpdateWM(OracleConnection conn, Results.Entities.WaterMeter wm, int max_Pruefindex, int hydr_Pruefung) { int sekundaere_Adr = wm.Passed ? 1 : 0; int idBenutzer = 6; // = wm.Batch.UserNumber; if (max_Pruefindex % 100 == 1) { OracleCommand cmd = new OracleCommand("INSERT INTO VT_ZAEHLER_PD(Auftragsnummer, VT_Identnummer, VT_Fernum, Max_Pruefindex, Zaehlernummer, Sekundaere_Adr, Hydr_Pruefung, ID_Benutzer, ANBID, Baujahr) VALUES (:1, :2, :3, :4, :5, :6, :7, :8, :9, :10)", conn); OracleParameter parm; parm = new OracleParameter("Auftragsnummer", OracleDbType.Varchar2); parm.Value = wm.PurchaseOrder; cmd.Parameters.Add(parm); parm = new OracleParameter("VT_Identnummer", OracleDbType.Varchar2); parm.Value = "IPBATMXX"; cmd.Parameters.Add(parm); parm = new OracleParameter("VT_Fernum", OracleDbType.Varchar2); parm.Value = wm.SerialNr; cmd.Parameters.Add(parm); parm = new OracleParameter("Max_Pruefindex", OracleDbType.Int32); parm.Value = max_Pruefindex; cmd.Parameters.Add(parm); parm = new OracleParameter("Zaehlernummer", OracleDbType.Int32); parm.Value = -1; cmd.Parameters.Add(parm); parm = new OracleParameter("Sekundaere_Adr", OracleDbType.Int32); parm.Value = sekundaere_Adr; cmd.Parameters.Add(parm); parm = new OracleParameter("Hydr_Pruefung", OracleDbType.Int32); parm.Value = hydr_Pruefung; cmd.Parameters.Add(parm); parm = new OracleParameter("ID_Benutzer", OracleDbType.Int32); parm.Value = idBenutzer; cmd.Parameters.Add(parm); parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd.Parameters.Add(parm); parm = new OracleParameter("Baujahr", OracleDbType.Int32); parm.Value = DBCfg.Baujahr; cmd.Parameters.Add(parm); cmd.ExecuteNonQuery(); log.InfoFormat("VT_ZAEHLER_PD inserted, PcbNr={0}, pos={1}, maxPruefix={2}", wm.SerialNr, wm.WMPosition, max_Pruefindex); } else { OracleCommand cmd = new OracleCommand("UPDATE VT_ZAEHLER_PD SET Auftragsnummer = :1, VT_Identnummer = :2, Max_Pruefindex = :3, Hydr_Pruefung= :4, ID_Benutzer= :5, Baujahr= :6 WHERE VT_Fernum = :7 and ANBID = :8", conn); OracleParameter parm; parm = new OracleParameter("Auftragsnummer", OracleDbType.Varchar2); parm.Value = wm.PurchaseOrder; cmd.Parameters.Add(parm); parm = new OracleParameter("VT_Identnummer", OracleDbType.Varchar2); parm.Value = "IPBATMXX"; cmd.Parameters.Add(parm); parm = new OracleParameter("Max_Pruefindex", OracleDbType.Int32); parm.Value = max_Pruefindex; cmd.Parameters.Add(parm); parm = new OracleParameter("Hydr_Pruefung", OracleDbType.Int32); parm.Value = hydr_Pruefung; cmd.Parameters.Add(parm); parm = new OracleParameter("ID_Benutzer", OracleDbType.Int32); parm.Value = idBenutzer; cmd.Parameters.Add(parm); parm = new OracleParameter("Baujahr", OracleDbType.Int32); parm.Value = DBCfg.Baujahr; cmd.Parameters.Add(parm); parm = new OracleParameter("VT_Fernum", OracleDbType.Varchar2); parm.Value = wm.SerialNr; cmd.Parameters.Add(parm); parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd.Parameters.Add(parm); cmd.ExecuteNonQuery(); log.InfoFormat("VT_ZAEHLER_PD updated, PcbNr={0}, pos={1}, maxPruefix={2}", wm.SerialNr, wm.WMPosition, max_Pruefindex); } { OracleCommand cmd = new OracleCommand("INSERT INTO VT_ZAEHLER_PINDEX_PD(" + "VT_Fernum, Pruefindex, ANBID, ID_Pruefstand, ID_WzPruefreihe, Hydr_Pruefung, " + "ReedKontakt, ReedKontaktOK, ReedKontaktZeit, KorrImprate, FestWertWZ, PtestOK, " + "Zaehlerstand, WT_Platz_NR, WZgut, ID_Benutzer, AnzahlPruefungen)" + " VALUES (:1, :2, :3, :4, :5, :6, 0, 0, 0, :7, 0, :8, 0, :9, :10, :11, :12)", conn); OracleParameter parm; parm = new OracleParameter("VT_Fernum", OracleDbType.Varchar2); parm.Value = wm.SerialNr; cmd.Parameters.Add(parm); parm = new OracleParameter("Pruefindex", OracleDbType.Int32); parm.Value = max_Pruefindex; cmd.Parameters.Add(parm); parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd.Parameters.Add(parm); parm = new OracleParameter("ID_Pruefstand", OracleDbType.Int32); parm.Value = 18000 + wm.Batch.TestBenchId; cmd.Parameters.Add(parm); parm = new OracleParameter("ID_WzPruefreihe", OracleDbType.Int32); parm.Value = wm.Batch.BatchNr; cmd.Parameters.Add(parm); parm = new OracleParameter("Hydr_Pruefung", OracleDbType.Int32); parm.Value = hydr_Pruefung; cmd.Parameters.Add(parm); // ReedKontakt // ReedKontaktOK // ReedKontaktZeit parm = new OracleParameter("KorrImprate", OracleDbType.Double); parm.Value = wm.OrigCalibFactor; cmd.Parameters.Add(parm); // FestWertWZ parm = new OracleParameter("PtestOK", OracleDbType.Int32); parm.Value = 0;/*TODO*/ cmd.Parameters.Add(parm); // Zaehlerstand parm = new OracleParameter("WT_Platz_NR", OracleDbType.Int32); parm.Value = wm.WMPosition; cmd.Parameters.Add(parm); parm = new OracleParameter("WZgut", OracleDbType.Int32); parm.Value = wm.Passed ? 1 : 0; cmd.Parameters.Add(parm); parm = new OracleParameter("ID_Benutzer", OracleDbType.Int32); parm.Value = idBenutzer; cmd.Parameters.Add(parm); parm = new OracleParameter("AnzahlPruefungen", OracleDbType.Int32); parm.Value = 3; cmd.Parameters.Add(parm); cmd.ExecuteNonQuery(); log.InfoFormat("VT_ZAEHLER_PINDEX_PD inserted, PcbNr={0}, pos={1}, pruefix={2}", wm.SerialNr, wm.WMPosition, max_Pruefindex % 100); } foreach (var testInfo in testInfos) { Results.Entities.MeterTestRslt mtr = wm.GetMeterTestRslt(testInfo.QBezeichnung); if (mtr == null) { throw new Exception(string.Format("'{0}' test results missing, watermeter {1}", testInfo.QBezeichnung, wm.WMPosition)); } SaveMeterTestResult(conn, mtr, testInfo.PruefungsNr, max_Pruefindex); } { double q2ErrWOCorrection = Math.Min(100.0, Math.Max(-100.0, wm.Q2ErrWOCorrection)); OracleCommand cmd = new OracleCommand("INSERT INTO VT_IP_ZAEHLER_PINDEX_PD(" + "VT_Fernum, Pruefindex, ANBID, WITHCORRECTION2HZ, CORRECTION2HZ, DIFF2HZ8HZ, " + "WITHQ2CORRECTION, ERRQ2, Q2CORRECTIONFLOWRIGHT, Q2CORRECTIONLEFT, Q2CORRECTIONRIGHT)" + " VALUES (:1, :2, :3, :4, :5, :6, :7, :8, :9, :10, :11)", conn); OracleParameter parm; parm = new OracleParameter("VT_Fernum", OracleDbType.Varchar2); parm.Value = wm.SerialNr; cmd.Parameters.Add(parm); ///:1 parm = new OracleParameter("Pruefindex", OracleDbType.Int32); parm.Value = max_Pruefindex; cmd.Parameters.Add(parm); ///:2 parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd.Parameters.Add(parm); ///:3 parm = new OracleParameter("WITHCORRECTION2HZ", OracleDbType.Int32); parm.Value = wm.Hz2CorrectionDone ? 1 : 0; cmd.Parameters.Add(parm); ///:4 parm = new OracleParameter("CORRECTION2HZ", OracleDbType.Double); parm.Value = wm.Hz2Correction; cmd.Parameters.Add(parm); ///:5 parm = new OracleParameter("DIFF2HZ8HZ", OracleDbType.Double); parm.Value = Math.Min(99.0, Math.Max(-99.0, wm.Diff2Hz8Hz)); cmd.Parameters.Add(parm); ///:6 parm = new OracleParameter("WITHQ2CORRECTION", OracleDbType.Int32); parm.Value = wm.Q2CorrectionDone ? 1 : 0; cmd.Parameters.Add(parm); ///:7 parm = new OracleParameter("ERRQ2", OracleDbType.Double); parm.Value = q2ErrWOCorrection; cmd.Parameters.Add(parm); ///:8 parm = new OracleParameter("Q2CORRECTIONFLOWRIGHT", OracleDbType.Int32);parm.Value = wm.Q2CorrFlowRight;/*1=right to left*/ cmd.Parameters.Add(parm); ///:9 parm = new OracleParameter("Q2CORRECTIONLEFT", OracleDbType.Int32); parm.Value = (int)Math.Round(wm.Q2Correction); cmd.Parameters.Add(parm); ///:10 parm = new OracleParameter("Q2CORRECTIONRIGHT", OracleDbType.Int32); parm.Value = (int)Math.Round(wm.Q2Correction / 2); cmd.Parameters.Add(parm); ///:11 int rowsUpdated = cmd.ExecuteNonQuery(); log.InfoFormat("VT_IP_ZAEHLER_PINDEX_PD inserted, PcbNr={0}, pruefix={1}", wm.SerialNr, max_Pruefindex); } } /// /// Saves a water meter result of a single test /// /// q = 0, 1, 2 or 3 (Adj., Q1, Q2, Q3) /// Nr. of rows updated static int SaveMeterTestResult(OracleConnection conn, Results.Entities.MeterTestRslt mtr, int qq, int max_Pruefindex) /// { double Q_wm = 3600.0 * mtr.VolumeMeter / mtr.TestTime; /// in [l/hour] double Q_wm_with_upper_bound = Math.Min(2 * 1000 * mtr.TestRslt.FlowVolume, Math.Max(0.0, Q_wm)); OracleCommand cmd = new OracleCommand("INSERT INTO VT_PRUEFREIHE_IST_PD(" + "VT_Fernum, Pruefindex, PruefungsNr, ANBID, ID_WZTyp, Rev_WZTyp, Rev_WZPruefpunkt, " + "Q_WZ, Q_Fehler, Q_Best, NIZ, AnfangZStand, EndZStand, " + "KorrErrQok, KorrErrQ, KorrQWz, TIZ, Vol_WZ_US, TempMittel_US)" + " VALUES (:1, :2, :3, :4, :5, :6, :7, :8, :9, :10, :11, :12, :13, 0, 0, 0, :14, 0, 0)", conn); OracleParameter parm; parm = new OracleParameter("VT_Fernum", OracleDbType.Varchar2); parm.Value = mtr.WaterMeter.SerialNr; cmd.Parameters.Add(parm); ///:1 parm = new OracleParameter("Pruefindex", OracleDbType.Int32); parm.Value = max_Pruefindex; cmd.Parameters.Add(parm); ///:2 parm = new OracleParameter("PruefungsNr", OracleDbType.Int32); parm.Value = qq; cmd.Parameters.Add(parm); ///:3 parm = new OracleParameter("ANBID", OracleDbType.Int32); parm.Value = Anbid_StaraTura; cmd.Parameters.Add(parm); ///:4 parm = new OracleParameter("ID_WZTyp", OracleDbType.Int32); parm.Value = mtr.WaterMeter.WaterMeterData.WMTypeId; cmd.Parameters.Add(parm); ///:5 parm = new OracleParameter("Rev_WZTyp", OracleDbType.Int32); parm.Value = mtr.WaterMeter.WaterMeterData.WMTypeRev; cmd.Parameters.Add(parm); ///:6 parm = new OracleParameter("Rev_WZPruefpunkt", OracleDbType.Int32); parm.Value = 1; cmd.Parameters.Add(parm); ///:7 parm = new OracleParameter("Q_WZ", OracleDbType.Double); parm.Value = Q_wm_with_upper_bound; cmd.Parameters.Add(parm); ///:8 parm = new OracleParameter("Q_Fehler", OracleDbType.Double); parm.Value = Math.Min(100.0, Math.Max(-100.0, mtr.Error)); cmd.Parameters.Add(parm); ///:9 parm = new OracleParameter("Q_Best", OracleDbType.Int32); parm.Value = mtr.Passed ? 1 : 0; cmd.Parameters.Add(parm); ///:10 parm = new OracleParameter("NIZ", OracleDbType.Int32); parm.Value = 0; cmd.Parameters.Add(parm); ///:11 parm = new OracleParameter("AnfangZStand", OracleDbType.Double); parm.Value = 0;/*TODO*/ cmd.Parameters.Add(parm); ///:12 parm = new OracleParameter("EndZStand", OracleDbType.Double); parm.Value = 0;/*TODO*/ cmd.Parameters.Add(parm); ///:13 /// KorrErrQok /// KorrErrQ /// KorrQWz parm = new OracleParameter("TIZ", OracleDbType.Double); parm.Value = Math.Min(100000, mtr.TestTime); cmd.Parameters.Add(parm); /// Vol_WZ_US /// TempMittel_US int retv = cmd.ExecuteNonQuery(); log.DebugFormat("VT_PRUEFREIHE_IST_PD inserted, PcbNr={0}, q={1}, error={2}", mtr.WaterMeter.SerialNr, qq, mtr.Error); return retv; } #endif } }