/// /// Copyright (c) 2017 Sensus Slovensko a.s. /// using System; using System.Collections.Generic; using System.IO; using System.Text; using log4net; using TBF.BenchControl; using TBF.Boxes; using TBF.Resources; using TBF.UiBridge; using TBF.BenchControl.GenericDevices; namespace TBF.BenchControl.TestMethods.FixedStartDeferredEvaluation { public class FixedStartDeferredEvaluationSeq : Sequences.SequenceBase { private static readonly ILog log = LogManager.GetLogger(typeof(FixedStartDeferredEvaluationSeq)); /// /// Fixed start mass collection method with deferred evaluation of images /// /// Test entity /// /// Event.Done . . . . . . . OK /// Event.MakeSecondPass . . OK, 2nd pass (=evaluation) required /// Event.UiCmdStop . . . . Stopped by the user using the on-screen button STOP /// Event.OpArgumentError . Target flow is out of range /// Event.Error . . . . . . Unspecified error /// public IList Execute(Config.Entities.Test test, int repetitionNr, bool isLastRepetition, bool compound, HeatMeters.TestParams heatMetersTestParams, Config.Entities.DebugMode debugLevel, out IntermediateData intermediateData) { intermediateData = new IntermediateData { Compound = compound, TestName = Results.Utils.GetTestName(test.Name, test.Repeats, repetitionNr), TestPart = test.Part, }; IScale scale = outPath.Scale as IScale; if (scale == null) { Bridge.OnError(this, Strings.Missing_a_scale); new List { Event.ConfigurationError }; } int rangeIx = 0; /// Default range, used for non-Elde flowmeters if (outPath.FlowMeter is Elde.FlowMeter.FlowMeter) { Elde.FlowMeter.FlowMeter eldeFM = outPath.FlowMeter as Elde.FlowMeter.FlowMeter; rangeIx = -1; /// Indicates invalid range for (int r = 0; r <= 5; r++) { if (eldeFM.RangeEnabled(r) && eldeFM.GetTempLo(r) <= test.TempLimLo && eldeFM.GetTempHi(r) >= test.TempLimHi) { rangeIx = r; } } if (rangeIx == -1) { Bridge.OnError(this, Strings.Flow_meter_temperature_range_does_not_fit_this_test_conditions); new List { Event.ConfigurationError }; } } GenericDevices.IHasWMStatesForm dataEntryCmpnt = TbfComponents.FindComponent(StateMachine.Procedure.DataEntry) as GenericDevices.IHasWMStatesForm; if (!(dataEntryCmpnt is GenericDevices.IDataEntryForCamera)) { Bridge.OnError(this, "Wrong DataEntry component"); new List { Event.ConfigurationError }; } if (test.Volume >= scale.Capacity * Constants.TankFullFactor) { Bridge.OnError(this, Strings.Test_volume_exceeds_the_scale_capacity); new List { Event.ConfigurationError }; } IList e; /// Events from currently running operations Elde.ControlBoardDev cBrd = StateMachine.ControlBoard; int tMass1 = 0; int tMass2 = 0; checkUiOp = new Operations.CheckUIOp(true); /// Runs in more then one state processDataLoggingOp = new TBF.BenchControl.Operations.ProcessDataLoggingOp(processDataLogger, this, heatMetersTestParams != null); int[] filters = new int[] { 0, 0, 0, 0, 0, 0, 0, 0 }; if (sensPath != null && sensPath.RegisterReaders != null) { foreach (var rr in sensPath.RegisterReaders) { TBF.BenchControl.Elde.RegisterReader.RegisterReader eldeRR = rr as TBF.BenchControl.Elde.RegisterReader.RegisterReader; if (eldeRR != null && eldeRR.Position >= 1 && eldeRR.Position <= 8) { filters[eldeRR.Position - 1] = eldeRR.Filter; } } } cBrd.SetFiltersPidShortPulses(filters, outPath.PidCoef, (test.TolerRed == 0) ? 0 : 1); IList readTempPressOps = new List(); if (benchPath.TempMtrUp != null) readTempPressOps.Add(benchPath.TempMtrUp.ReadTempOp(ref TempUp)); if (benchPath.TempMtrDown != null) readTempPressOps.Add(benchPath.TempMtrDown.ReadTempOp(ref TempDown)); if (outPath.TempDiv != null) readTempPressOps.Add(outPath.TempDiv.ReadTempOp(ref TempDiv)); if (benchPath.PressMtrUp != null) readTempPressOps.Add(benchPath.PressMtrUp.ReadPressureOp(ref PressUp)); if (benchPath.PressMtrDown != null) readTempPressOps.Add(benchPath.PressMtrDown.ReadPressureOp(ref PressDown)); if (benchPath.PressMtrDelta != null) readTempPressOps.Add(benchPath.PressMtrDelta.ReadPressureOp(ref PressDelta)); if (heatMetersPath != null) readTempPressOps.Add(heatMetersPath.TMeterRefWarm1.ReadTempOp(ref TempRefHi1)); if (heatMetersPath != null) readTempPressOps.Add(heatMetersPath.TMeterRefWarm2.ReadTempOp(ref TempRefHi2)); if (heatMetersPath != null) readTempPressOps.Add(heatMetersPath.TMeterRefCold1.ReadTempOp(ref TempRefLo1)); if (heatMetersPath != null) readTempPressOps.Add(heatMetersPath.TMeterRefCold2.ReadTempOp(ref TempRefLo2)); Event retVal = Event.Done; float switchTimeStart = 0.001f; /// in seconds, original vale is 1 ms float switchTimeEnd = 0.001f; /// in seconds, original vale is 1 ms LtrPerRefPulse = outPath.FlowMeter.LtrPerPulse; /// [ltr/pulse], nominal flow in [m3/h] /// Notes: /// float timeHr = volumeLtr / (1000.0f * targetFlow); /// float timeSec = 3600.0f * timeHr; /// int refPulses = (int)(timeSec * (2000.0f * targetFlow / pOut.FlowMeter.NominalFlow)); int totalPulses = (int)(test.Volume / LtrPerRefPulse + 0.5f); //==================================== loop: /// Read pressure and temperature once before calling Bridge.OnTestSelected(...) State.Create(string.Format("{0}({1}) : Measuring process data", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (e.Contains(Event.Busy)); /// Start the test, initialize test results Bridge.OnTestSelected(this, new TestSelectedEventArgs(test, repetitionNr, inPath, benchPath, outPath, sensPath, heatMetersPath, totalPulses)); string testName = Results.Utils.GetTestName(test.Name, test.Repeats, repetitionNr); /// /// Optionally display prompt to emerge temperature meters to appropriate baths for heat meters test /// IOperation heatMetersPromptOp = null; if (heatMetersTestParams != null && !string.IsNullOrEmpty(heatMetersTestParams.Prompt)) { /// Make sure the CycleBeginForm is closed if (UIFlowControl.Stop == WaitBeginFormClosed()) goto stopTest; heatMetersPromptOp = new Operations.MessageBoxOp(heatMetersTestParams.Prompt); } if (!test.DoDraining) { /// /// Measure the weight in case there is no unconditional draining /// State.Create(string.Format("{0}({1}) : Measuring mass of water in the tank", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(scale.ReadMassOp(ref Mass)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.JustStarted)); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.BalanceDone)); } /// /// Skip draining in case there is enough room in the tank /// if (test.DoDraining || (Mass.Val + test.Volume >= scale.Capacity * Constants.TankFullFactor)) { /// /// Drain the water tank /// IList ops = new List(readTempPressOps); ops.Add(heatMetersPromptOp); switch (DrainTheTank(scale, ops)) { case Event.Error: { retVal = Event.Error; goto stopTest; } case Event.UiCmdStop: { retVal = Event.UiCmdStop; goto stopTest; } } } /// /// Make sure the drain valve is closed /// State.Create(string.Format("{0}({1}) : Make sure the drain valve is closed", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(scale.ReadMassOp(ref Mass)) .AddOperation(heatMetersPromptOp) .AddOperation(StateMachine.ControlBoard.SetValvesOp(null, scale.DrainValve)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.JustStarted)); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.ValvesSet) || !e.Contains(Event.BalanceDone)); //------------------------------------------------ Bridge.OnActivity(this, Strings.Starting_the_pump); //------------------------------------------------ Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); int flowSetTime0 = StateMachine.Time; if (inPath.Pump is GenericDevices.IPumpFM) (inPath.Pump as GenericDevices.IPumpFM).TurnOn(test.PumpPower); /// State.Create(string.Format("{0}({1}) : Starting the pump", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) //.AddOperation(new Operations.SetAllRegulValvesOp(inPath.RegulValves, inPath.RegulValvesPct, 60)) .AddOperation(heatMetersPromptOp) .AddOperation(inPath.Pump != null ? cBrd.SetValvesOp(inPath.Pump, null) : null) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } } while (e.Contains(Event.ValvesBusy) /* || !e.Contains(Event.AllPositionsReached)*/); if (test.TimePump2StartV > 0) { State.Create(string.Format("{0}({1}) : Waiting after the pump started", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new Operations.TimerOp(test.TimePump2StartV)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.TimerExpired)); } if (benchPath.StopBFValve != null) { State.Create(string.Format("{0}({1}) : Opening the stop backflow valve", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(StateMachine.ControlBoard.SetValvesOp(benchPath.StopBFValve, null)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } } while (!e.Contains(Event.ValvesSet)); } if (test.TimeBeforeFlow > 0) { State.Create(string.Format("{0}({1}) : Waiting before flow setting process starts", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new Operations.TimerOp(test.TimeBeforeFlow)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.TimerExpired)); } setting_flow: //------------------------------------------------ Bridge.OnActivity(this, Strings.Setting_the_flow); //------------------------------------------------ if (inPath.Pump is GenericDevices.IPumpFM) { (inPath.Pump as GenericDevices.IPumpFM).TurnOn(test.PumpPower); } /// State.Create(string.Format("{0}({1}) : Pump on", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(StateMachine.ControlBoard.SetValvesOp(inPath.Pump, null)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (e.Contains(Event.ValvesBusy)); /// State.Create(string.Format("{0}({1}) : Start valve open", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new TBF.BenchControl.Elde.SetValvesOp(cBrd, false, outPath)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (e.Contains(Event.ValvesBusy)); //-------------------------------- State.Create(string.Format("{0}({1}) : Setting the flow", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(outPath.RegulValve.SetFlowOp(outPath.FlowMeter, test.Qfrom, test.Qto, RefFlow, FlowSettingTimeoutSec)) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.FlowSetting)); if (e.Contains(Event.OpArgumentError)) { retVal = Event.OpArgumentError; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.RegulValveTimeOut)) { Bridge.OnError(this, Strings.Flow_adjustment_failed); retVal = Event.RecoverableError; goto stopTest; } if (e.Contains(Event.Next)) goto flow_set; } while (!e.Contains(Event.FlowReached)); flow_set: int flowSetTime = StateMachine.Time - flowSetTime0; if (heatMetersTestParams != null && heatMetersPath != null) { //--------------------------------------------------- Bridge.OnActivity(this, Strings.Setting_temperature); //--------------------------------------------------- int lastTimeSec = StateMachine.Time; double Tw_last = 0; double Tc_last = 0; State.Create(string.Format("{0}({1}) : Checking if the temperature is stable", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(heatMetersPromptOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.Next)) goto temperature_set; if (TempRefHi1.Val != 0 && TempRefHi2.Val != 0 && TempRefLo1.Val != 0 && TempRefLo2.Val != 0) { if (StateMachine.Time - lastTimeSec > 10 || StateMachine.Time - lastTimeSec < 0) { double Tw = (TempRefHi1.Val + TempRefHi2.Val) / 2; double Tc = (TempRefLo1.Val + TempRefLo2.Val) / 2; if ((heatMetersTestParams.TempWarmLo <= Tw) && (Tw <= heatMetersTestParams.TempWarmHi) && (heatMetersTestParams.TempColdLo <= Tc) && (Tc <= heatMetersTestParams.TempColdHi) && (Math.Abs(Tw - Tw_last) <= heatMetersTestParams.ChangeInTimeWarm) && (Math.Abs(Tc - Tc_last) <= heatMetersTestParams.ChangeInTimeCold) && (Math.Abs(TempRefHi1.Val - TempRefHi2.Val) <= heatMetersTestParams.DeltaTempWarm) && (Math.Abs(TempRefLo1.Val - TempRefLo2.Val) <= heatMetersTestParams.DeltaTempCold)) { goto temperature_set; } lastTimeSec = StateMachine.Time; Tw_last = Tw; Tc_last = Tc; } } } while (true); } else if (test.DoControlWaterTemp && (benchPath.TempMtrUp != null) && (benchPath.TempMtrDown != null)) { //--------------------------------------------------- Bridge.OnActivity(this, Strings.Setting_temperature); //--------------------------------------------------- State.Create(string.Format("{0}({1}) : Wait until the water temperature is within limits", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.Next)) goto temperature_set; if ((test.TempLimLo <= TempUp.Val) && (TempUp.Val <= test.TempLimHi) && (test.TempLimLo <= TempDown.Val) && (TempDown.Val <= test.TempLimHi)) { goto temperature_set; } } while (true); } temperature_set: //----------------------------------------------------------------- Bridge.OnActivity(this, Strings.Stopping_flow_for_the_fixed_start); //----------------------------------------------------------------- State.Create(string.Format("{0}({1}) : Closing the start/stop valve before the fixed start test", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new TBF.BenchControl.Elde.SetValvesOp(cBrd, true, outPath)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } } while (!e.Contains(Event.ValvesSet)); int time = StateMachine.Time; double currentFlow = RefFlow.Val; //------------------------------------------------ Bridge.OnActivity(this, Strings.Measuring_the_weight); //------------------------------------------------ if (test.TimeFlow2Mass > 0) { State.Create(string.Format("{0}({1}) : Waiting before 1st mass measurement", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new Operations.TimerOp(test.TimeFlow2Mass)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.TimerExpired)); } TestStartTime = DateTime.Now; LogProcessDataTestInfo(processDataLogger, test.Procedure.Name, test.Name); if (heatMetersPath == null) LogProcessDataHeader(processDataLogger, "Start mass"); else LogProcessDataHeaderHeatMeters(processDataLogger, "Start mass"); State.Create(string.Format("{0}({1}) : Measuring the start mass", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(scale.ReadStableMassOp(ref StartMass, test.MassRepeats, test.MassSpread, test.MassMethod)) .AddOperation(new Operations.TimerOp(StableMassMsrmntTimeoutSec)) .AddOperation(processDataLoggingOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.TimerExpired)) { Bridge.OnError(this, Strings.Mass_measurement_timeout); retVal = Event.RecoverableError; goto stopTest; } } while (!e.Contains(Event.BalanceDone)); /// Mass.Val = StartMass.Val; tMass1 = StateMachine.Time; /// /// Grab start images /// string fileName = string.Format("{0}-start.bmp", test.Name); string[] startImages = new string[sensPath.RegisterReaders.Length]; /// if (debugLevel != Config.Entities.DebugMode.Simulate) { State state2 = State.Create(string.Format("{0}({1}) : Grabbing images", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps); for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string directory = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); Directory.CreateDirectory(directory); startImages[i] = Path.Combine(directory, fileName); state2.AddOperation(roi.GrabImageOp(startImages[i])); } } state2.EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.Test)); if (e.Contains(Event.Error)) { retVal = Event.Error; break; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; break; } } while (e.Contains(Event.CameraBusy)); intermediateData.StartImages = startImages; if ((dataEntryCmpnt is GenericDevices.IDataEntryForCamera) && (dataEntryCmpnt as GenericDevices.IDataEntryForCamera).SaveImages) { /// SaveImages==true ... copy images to the directory that will be archived at the end of the cycle for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string srcDir = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); string destDir = Path.Combine(Program.ImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); try { if (File.Exists(Path.Combine(srcDir, fileName))) { Directory.CreateDirectory(destDir); File.Copy(Path.Combine(srcDir, fileName), Path.Combine(destDir, fileName), true); } } catch (Exception exc) { log.ErrorFormat("Failed to copy image {0} to {1}: {2}", fileName, destDir, exc.Message); } } } } } else { for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string directory = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); Directory.CreateDirectory(directory); startImages[i] = Path.Combine(directory, fileName); File.Copy(string.Format("C:\\TBF\\SampleImages\\{0}", fileName), startImages[i], true); } } } intermediateData.StartImages = startImages; /// if ((dataEntryCmpnt is GenericDevices.IDataEntryForCamera) && (dataEntryCmpnt as GenericDevices.IDataEntryForCamera).SaveImages) { /// SaveImages==true ... copy images to the directory that will be archived at the end of the cycle for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string srcDir = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); string destDir = Path.Combine(Program.ImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); try { if (File.Exists(Path.Combine(srcDir, fileName))) { Directory.CreateDirectory(destDir); File.Copy(Path.Combine(srcDir, fileName), Path.Combine(destDir, fileName), true); } } catch (Exception exc) { log.ErrorFormat("Failed to copy image {0} to {1}: {2}", fileName, destDir, exc.Message); } } } } if (heatMetersPath == null) LogProcessDataHeader(processDataLogger, "Measurement"); else LogProcessDataHeaderHeatMeters(processDataLogger, "Measurement"); //------------------------------------------------ Bridge.OnActivity(this, Strings.Test_in_progress); //------------------------------------------------ State.Create(string.Format("{0}({1}) : Starting the test", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(cBrd.StartMeasurementOp(outPath, (Elde.TestMethods.Diverter | Elde.TestMethods.Synchro), test.Qfrom, test.Qto, (2 * totalPulses))) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.MeasurementStarted)); StartTime = (double)StateMachine.Time; State.Create(string.Format("{0}({1}) : Closing the start/stop valve at the end of the fixed start test", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new TBF.BenchControl.Elde.SetValvesOp(cBrd, false, outPath)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } } while (!e.Contains(Event.ValvesSet)); switchTimeStart = 0.001f * cBrd.ValveOpenCloseTime; log.WarnFormat("Start valve switch time on test start = {0} ms", cBrd.ValveOpenCloseTime); /// Measurement loop - preparation readRegistersOp = new Operations.ReadMoreRegistersOp(sensPath.RegisterReaders); queryEnd1 = cBrd.QueryMeasurementEndOp(); queryEnd2 = cBrd.QueryMeasurementEndOp(); StartNewStatistics(StateMachine.Time, BatchRslts.Batch.BatchNr, test.Name, repetitionNr, Math.Max((int)(test.TstTime / 10), 5)); int estimtdEndTime = StateMachine.Time + (int)test.TstTime; /// Measurement loop - begin do { //-------------------------------- switch (ReadRegistersTempPressAmbient(null, true)) { case Event.Error: retVal = Event.Error; goto stopTest; case Event.UiCmdStop: retVal = Event.UiCmdStop; goto stopTest; case Event.MeasurementCompleted: goto test_completed; } int remainingTime = Math.Max(estimtdEndTime - StateMachine.Time, 0); if (remainingTime > 60) { Bridge.OnActivity(this, string.Format("{0} ... {1} {2} {3} {4}", Strings.Test_in_progress, remainingTime / 60, "min", remainingTime % 60, Strings.sec)); } else { Bridge.OnActivity(this, string.Format("{0} ... {1} s", Strings.Test_in_progress, remainingTime)); } RefFreq.Val = cBrd.ReferenceFreq; RefFlow.Val = cBrd.ReferenceFlow; UpdateAllStatistics(StateMachine.Time); if (heatMetersTestParams != null) { if (lastEnergyUpdateTime == 0) { lastEnergyUpdateTime = StateMachine.Time; } else { //double deltaTime = (double)(StateMachine.Time - lastEnergyUpdateTime); double T_in = (TempRefHi1.Val + TempRefHi2.Val) / 2; /// [°C] double T_out = (TempRefLo1.Val + TempRefLo2.Val) / 2; /// [°C] double deltaVolume = LtrPerRefPulse * RefPulsesDelta; /// [l] double deltaEnergy = (0.001 * deltaVolume) * (T_in - T_out) * Config.Formulas.HeatCoefficientWater(16, T_in, T_out, heatMetersTestParams.FlowMeasuredAtHiTempPipe); /// [J] = [m3] * [K] * [J/(m3 K)] Energy.Update(deltaEnergy); VolumeForEnergy.Update(deltaVolume); lastEnergyUpdateTime = StateMachine.Time; } } if (compound) { /// TODO: Reimplement for combined meters //for (int i = 0; i < Config.Data.CompoundWMsCount; i++) //{ // data.TestResult.CombinedMeters[i].VolumeMeter = data.TestResult.Meters[2 * i].VolumeMeter // + data.TestResult.Meters[2 * i + 1].VolumeMeter; // if (data.Volume.Valid) // { // data.TestResult.CombinedMeters[i].VolumeErrorPct = // Formulas.ErrorFromVolumes(data.TestResult.CombinedMeters[i].VolumeMeter, data.Volume.Val); // } //} } Bridge.OnProcessData(this, new ProcessDataEventArgs(test, repetitionNr, Config.Entities.Progress.Test)); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.Test)); } while (cBrd.EtPulses(0) < totalPulses); /// Measurement loop - end test_completed: StopRecordingStatistics(); EndTime = (double)StateMachine.Time; State.Create(string.Format("{0}({1}) : Closing the start/stop valve at the end of the fixed start test", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(new TBF.BenchControl.Elde.SetValvesOp(cBrd, true, outPath)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } } while (e.Contains(Event.ValvesBusy)); switchTimeEnd = 0.001f * cBrd.ValveOpenCloseTime; log.WarnFormat("Start valve switch time on test end = {0} ms", cBrd.ValveOpenCloseTime); State.Create(string.Format("{0}({1}) : Waiting before 2nd mass measurement", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(scale.ReadMassOp(ref Mass)) .AddOperation(processDataLoggingOp) .AddOperation(new Operations.TimerOp(test.TimeStop2Mass)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.TimerExpired)); if (heatMetersPath == null) LogProcessDataHeader(processDataLogger, "End mass"); else LogProcessDataHeaderHeatMeters(processDataLogger, "End mass"); //------------------------------------------------ Bridge.OnActivity(this, Strings.Measuring_the_weight); //------------------------------------------------ State.Create(string.Format("{0}({1}) : Measuring the end mass", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(scale.ReadStableMassOp(ref EndMass, test.MassRepeats, test.MassSpread, test.MassMethod)) .AddOperation(new Operations.TimerOp(StableMassMsrmntTimeoutSec)) .AddOperation(processDataLoggingOp) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } if (e.Contains(Event.TimerExpired)) { Bridge.OnError(this, Strings.Mass_measurement_timeout); retVal = Event.RecoverableError; goto stopTest; } } while (!e.Contains(Event.BalanceDone)); /// tMass2 = StateMachine.Time; TestEndTime = DateTime.Now; State.Create(string.Format("{0}({1}) : Stopping diverter, gate, etc.", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps) .AddOperation(cBrd.StopPreviousOp()) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } } while (!e.Contains(Event.PreviousStopped)); double massStart = Config.Formulas.CorrectedValue(StartMass.Val, scale.Corrections); double massEnd = Config.Formulas.CorrectedValue(EndMass.Val, scale.Corrections); double densityOut = Config.Formulas.WaterDensityFromTempPress((TempUpStat.Average + TempDownStat.Average) / 2, (PressUpStat.Average + PressDownStat.Average) / 2); double buoyancy = Config.Formulas.Buoyancy(); double massOfEvaporatedWater = (double)(tMass2 - tMass1) * outPath.Scale.EvaporationRate(TempDivStat.Average); double volumeCTV = 1000.0 * buoyancy * (massEnd - massStart + massOfEvaporatedWater) / densityOut; if (debugLevel == Config.Entities.DebugMode.Simulate) volumeCTV = test.Volume; double refEnergy = Energy.Sum * volumeCTV / VolumeForEnergy.Sum; /// [J]=[J]*[l]/[l] /// /// Grab END images /// fileName = string.Format("{0}-end.bmp", test.Name); string[] endImages = new string[sensPath.RegisterReaders.Length]; /// if (debugLevel != Config.Entities.DebugMode.Simulate) { State state2 = State.Create(string.Format("{0}({1}) : Grabbing images", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperations(readTempPressOps); for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string directory = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); Directory.CreateDirectory(directory); endImages[i] = Path.Combine(directory, fileName); state2.AddOperation(roi.GrabImageOp(endImages[i])); } } state2.EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.Test)); if (e.Contains(Event.Error)) { retVal = Event.Error; break; } if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; break; } } while (e.Contains(Event.CameraBusy)); } else { for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string directory = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); Directory.CreateDirectory(directory); endImages[i] = Path.Combine(directory, fileName); File.Copy(string.Format("C:\\TBF\\SampleImages\\{0}", fileName), endImages[i], true); } } } intermediateData.EndImages = endImages; /// if ((dataEntryCmpnt is GenericDevices.IDataEntryForCamera) && (dataEntryCmpnt as GenericDevices.IDataEntryForCamera).SaveImages) { /// SaveImages==true ... copy images to the directory that will be archived at the end of the cycle for (int i = 0; i < sensPath.RegisterReaders.Length; i++) { GenericDevices.IRoiForFixedStart roi = sensPath.RegisterReaders[i] as GenericDevices.IRoiForFixedStart; if (roi != null) { string srcDir = Path.Combine(Program.TempImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); string destDir = Path.Combine(Program.ImagesDir, BatchRslts.Batch.BatchNr.ToString(), (i + 1).ToString()); try { if (File.Exists(Path.Combine(srcDir, fileName))) { Directory.CreateDirectory(destDir); File.Copy(Path.Combine(srcDir, fileName), Path.Combine(destDir, fileName), true); } } catch (Exception exc) { log.ErrorFormat("Failed to copy image {0} to {1}: {2}", fileName, destDir, exc.Message); } } } } //------------------------------------------------ Bridge.OnActivity(this, Strings.Test_completed); //------------------------------------------------ /// Make sure the CycleBeginForm is closed so that water meter data (s/n) can be copied into results if (UIFlowControl.Stop == WaitBeginFormClosed()) goto stopTest; /// /// Populate TestResult data entity with data /// Results.Entities.TestRslt tstRslt = BatchRslts.GetTestRslt(testName, test.Part); if (tstRslt != null) { UpdateTempPressDensAmb(tstRslt); /// Main results tstRslt.MethodClass = TbfComponents.FindComponent(test.Method).ClassName; tstRslt.StartTime = TestStartTime; tstRslt.EndTime = TestEndTime; tstRslt.FlowSetTime = flowSetTime; tstRslt.TestTime = Math.Max(1.0, EndTime - StartTime); /// [s] measurement time, at least 1 to prevent division by zero tstRslt.TimeBtwnMassMsrmnts = tMass2 - tMass1; tstRslt.PulsesMaster = Convert.ToDouble(cBrd.EtPulses(0)); /// Pulses of the master flow meter (test total) tstRslt.MassStartRaw = StartMass.Val; tstRslt.MassStart = massStart; tstRslt.MassEndRaw = EndMass.Val; tstRslt.MassEnd = massEnd; tstRslt.FlowMass = 3600.0 * (tstRslt.MassEnd - tstRslt.MassStart + massOfEvaporatedWater) / tstRslt.TestTime; /// [kg/h] tstRslt.FlowVolume = 3.6 * LtrPerRefPulse * tstRslt.PulsesMaster / tstRslt.TestTime; /// [m3/h] tstRslt.VolumeMaster = LtrPerRefPulse * tstRslt.PulsesMaster; /// [l] volume from the master flow meter tstRslt.Buoyancy = buoyancy; tstRslt.VolumeCTV = volumeCTV; /// [l] 1000.0f is because density is in [kg/m3] tstRslt.ConstMasterRaw = outPath.FlowMeter.LtrPerPulse; /// Uncorrected master flowmeter coefficient tstRslt.ConstMasterCorr = outPath.FlowMeter.LtrPerPulseCorrected(tstRslt.FlowVolume, rangeIx); /// Corrected master pulses per liter tstRslt.ConstMaster = (tstRslt.VolumeMaster == 0) ? tstRslt.ConstMasterCorr : (LtrPerRefPulse * tstRslt.VolumeCTV / tstRslt.VolumeMaster); /// Calculated master pulses per liter tstRslt.ErrorMaster = Config.Formulas.ErrorFromVolumes(tstRslt.VolumeMaster, tstRslt.VolumeCTV); tstRslt.FlowMean = (float)RefFlowStat.Average; tstRslt.FlowStart = (float)RefFlowStat.First; tstRslt.FlowEnd = (float)RefFlowStat.Last; tstRslt.FlowMin = (float)RefFlowStat.Min; tstRslt.FlowMax = (float)RefFlowStat.Max; tstRslt.DiverterStart = switchTimeStart; tstRslt.DiverterEnd = switchTimeEnd; tstRslt.ErrorFlagsMd = (ErrorFlagsComp != null) ? (sbyte)ErrorFlagsComp.Mode : (sbyte)0; tstRslt.ErrorFlags = (ErrorFlagsComp != null) ? ErrorFlagsComp.GetErrorFlags(tstRslt, false, true, switchTimeStart, switchTimeEnd) : 0; tstRslt.Components = Results.Entities.Components .UpdateList(BatchRslts.ComponentsList, new Results.Entities.Components((BenchInfo != null) ? BenchInfo.TestBenchId : 1, (BenchInfo != null) ? BenchInfo.TestBenchName : "testbench", inPath.Pump != null ? inPath.Pump.Name : string.Empty, outPath.FlowMeter != null ? outPath.FlowMeter.Name : string.Empty, scale != null ? scale.Name : string.Empty, outPath.RegulValve != null ? outPath.RegulValve.Name : string.Empty, outPath.Diverter != null ? outPath.Diverter.Name : string.Empty)); tstRslt.TestDone = false; } retVal = Event.MakeSecondPass; Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Config.Entities.Progress.TransitionAfter)); stopTest: StopRecordingStatistics(); /// /// Quit this sequence /// if (isLastRepetition || retVal == Event.UiCmdStop || retVal == Event.OpArgumentError || retVal == Event.Error || retVal == Event.ConfigurationError) { State.Create(string.Format("{0}({1}) : Stopping diverter, gate, etc.", test.Method, test.Name)) .AddOperation(checkUiOp) .AddOperation(cBrd.StopPreviousOp()) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; } /// TODO: this is an endless loop !!! } while (!e.Contains(Event.PreviousStopped)); } stopTestWOTransitionAfter: return new List { retVal }; /// default 'retVal' value is Event.Done } /// /// Fixed start mass collection method with deferred evaluation of images /// /// Test entity /// Always Event.Done public IList Execute2ndPass(Config.Entities.Test test, int repetNr, IntermediateData data) { IList e; /// Events from currently running operations /// /// Populate TestResult data entity with data /// Results.Entities.TestRslt tstRslt = BatchRslts.GetTestRslt(data.TestName, data.TestPart); GenericDevices.IHasWMStatesForm deCmpnt = TbfComponents.FindComponent(StateMachine.Procedure.DataEntry) as GenericDevices.IHasWMStatesForm; GenericDevices.IDataEntryForCamera de4Cam = deCmpnt as GenericDevices.IDataEntryForCamera; if (tstRslt != null && de4Cam != null) { de4Cam.StartImages = data.StartImages; de4Cam.EndImages = data.EndImages; Bridge.OnActivity(this, Strings.Enter_water_meter_data); State.Create(string.Format("{0}({1}) : Entering water meter states", test.Method, test.Name)) .AddOperation(de4Cam.ShowDeferredTestEvalFormOp(sensPath.RegisterReaders, tstRslt.VolumeCTV, test.ErrLimLo + test.Uncertainty, test.ErrLimHi - test.Uncertainty)) .EnterState(); do { e = StateMachine.WaitRunDevsRunOps(); } while (e.Contains(Event.ModelessFormIsOpen)); /// Update register reader star and end-volumes from data entry forms for (int i = 0; i < Config.Data.WMsCount; i++) { GenericDevices.IRegisterReader r = sensPath.RegisterReaders[i]; BenchControl.Network.Camera.RoiForFixedStart.Roi rr = r as BenchControl.Network.Camera.RoiForFixedStart.Roi; if (rr != null) { rr.BeginWMState = deCmpnt.WMStartState(i); rr.EndWMState = deCmpnt.WMEndState(i); } } if (data.Compound) { /// /// Compound meters /// for (int i = 0; i < BatchRslts.WMPositionsCount; i++) { if (!test.IsPartCompatible(Utils.PartNr(i + 1, BatchRslts.Batch.Compound))) continue; Results.Entities.MeterTestRslt mainMeterRslt = BatchRslts.GetMeterTestRslt(data.TestName, i, Config.Entities.CompoundMeterId.CompoundMain); Results.Entities.MeterTestRslt auxMeterRslt = BatchRslts.GetMeterTestRslt(data.TestName, i, Config.Entities.CompoundMeterId.CompoundAux); for (int isAux = 0; isAux <= 1; isAux++) /// 0=main, 1=aux { Results.Entities.MeterTestRslt meterRslt = (isAux == 0) ? mainMeterRslt : auxMeterRslt; GenericDevices.IRegisterReader regReader = sensPath.RegisterReaders[2 * i + isAux]; if (meterRslt != null && regReader != null) { meterRslt.RegReaderType = (int)regReader.RegisterReaderType; meterRslt.PulsesPerLiter = regReader.PulsesPerLtr; meterRslt.VolumeStart = regReader.BeginWMState; /// [l] From forms/images meterRslt.VolumeEnd = regReader.EndWMState; /// [l] From forms/images meterRslt.VolumeMeter = meterRslt.VolumeEnd - meterRslt.VolumeStart; /// [l] meterRslt.VolumeRef = tstRslt.VolumeCTV; /// [l] meterRslt.PulsesMeter = meterRslt.VolumeMeter * regReader.PulsesPerLtr; meterRslt.PulsesMaster = tstRslt.PulsesMaster; meterRslt.TestTime = tstRslt.TestTime; meterRslt.Error = Config.Formulas.ErrorFromVolumes(meterRslt.VolumeMeter, meterRslt.VolumeRef); /// Not used for evaluation } } Results.Entities.MeterTestRslt compoundMeterRslt = BatchRslts.GetMeterTestRslt(data.TestName, i, Config.Entities.CompoundMeterId.Compound); if (compoundMeterRslt != null && mainMeterRslt != null && auxMeterRslt != null) { compoundMeterRslt.VolumeRef = tstRslt.VolumeCTV; /// [l] must be calculated before main & aux. meter error compoundMeterRslt.VolumeMeter = mainMeterRslt.VolumeMeter + auxMeterRslt.VolumeMeter; compoundMeterRslt.PulsesMaster = tstRslt.PulsesMaster; compoundMeterRslt.TestTime = tstRslt.TestTime; compoundMeterRslt.Error = Config.Formulas.ErrorFromVolumes(compoundMeterRslt.VolumeMeter, compoundMeterRslt.VolumeRef); compoundMeterRslt.Passed = (compoundMeterRslt.Error >= test.GetErrLimLo(tstRslt.VolumeCTV, tstRslt.TestTime) + test.Uncertainty) && (compoundMeterRslt.Error <= test.GetErrLimHi(tstRslt.VolumeCTV, tstRslt.TestTime) - test.Uncertainty) && (tstRslt.ErrorFlags == 0 || tstRslt.ErrorFlagsMode() != Config.Entities.ErrorFlagsMode.On); mainMeterRslt.Passed = auxMeterRslt.Passed = compoundMeterRslt.Passed; mainMeterRslt.TestDone = auxMeterRslt.TestDone = compoundMeterRslt.TestDone = true; } } tstRslt.TestDone = true; } else { /// /// Single meters /// for (int i = 0; i < BatchRslts.WMPositionsCount; i++) { if (!test.IsPartCompatible(Utils.PartNr(i + 1, BatchRslts.Batch.Compound))) continue; Results.Entities.MeterTestRslt meterRslt = BatchRslts.GetMeterTestRslt(data.TestName, i, Config.Entities.CompoundMeterId.Single); GenericDevices.IRegisterReader regReader = sensPath.RegisterReaders[i]; if (meterRslt != null && regReader != null) { meterRslt.RegReaderType = (int)regReader.RegisterReaderType; meterRslt.PulsesPerLiter = regReader.PulsesPerLtr; meterRslt.VolumeStart = regReader.BeginWMState; /// From forms/images meterRslt.VolumeEnd = regReader.EndWMState; /// From forms/images meterRslt.VolumeMeter = meterRslt.VolumeEnd - meterRslt.VolumeStart; meterRslt.VolumeRef = tstRslt.VolumeCTV; /// liter meterRslt.PulsesMeter = meterRslt.VolumeMeter * regReader.PulsesPerLtr; meterRslt.PulsesMaster = tstRslt.PulsesMaster; meterRslt.TestTime = tstRslt.TestTime; meterRslt.Error = Config.Formulas.ErrorFromVolumes(meterRslt.VolumeMeter, meterRslt.VolumeRef); meterRslt.Passed = (meterRslt.Error >= test.GetErrLimLo(tstRslt.VolumeCTV, tstRslt.TestTime) + test.Uncertainty) && (meterRslt.Error <= test.GetErrLimHi(tstRslt.VolumeCTV, tstRslt.TestTime) - test.Uncertainty) && (tstRslt.ErrorFlags == 0 || tstRslt.ErrorFlagsMode() != Config.Entities.ErrorFlagsMode.On); meterRslt.TestDone = true; } } tstRslt.TestDone = true; } /// Update water meter error flags if (ErrorFlagsComp != null) { for (int i = 0; i < BatchRslts.WMPositionsCount; i++) { if (BatchRslts.WaterMeters[i] != null) { BatchRslts.WaterMeters[i].ErrorFlags = ErrorFlagsComp.GetWMtrErrorFlags(BatchRslts.WaterMeters[i].MeterTestRslts); } } } /// Update results Bridge.OnTestCompleted(this, new TestCompletedEventArgs(data.TestName, tstRslt)); /// Append the results to the CSV-file allResults.Info(TestResult2CsvLine(data.TestName, data.TestPart)); } /// No operation for 1 period so that Stop() function of Data entry component is called State.Create(string.Format("{0}({1}) : No Op.", test.Method, test.Name)).EnterState(); StateMachine.WaitRunDevsRunOps(); return new List { Event.Done }; ; } } }