Many changes, new results used, all test sequences modified, simulated tests rewritten.

This commit is contained in:
Milan Hanajik
2016-01-04 13:53:45 +01:00
parent 494c6edf76
commit 26982a5729
71 changed files with 2609 additions and 2692 deletions
@@ -0,0 +1,544 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Collections.Generic;
using System.Text;
using log4net;
using TBF.BenchControl;
using TBF.Boxes;
using TBF.Resources;
using TBF.UiBridge;
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
public class FlyingStartCollectionMethodSeq : Sequences.SequenceBase
{
private static readonly ILog log = LogManager.GetLogger(typeof(FlyingStartCollectionMethodSeq));
/// <summary>
/// Flying start mass collection method sequence
/// </summary>
/// <param name="test">Test entity</param>
/// <returns>
/// Event.Done . . . . . . . OK
/// Event.UiCmdStop . . . . Stopped by the user using the on-screen button STOP
/// Event.OpArgumentError . Target flow is out of range
/// Event.Error . . . . . . Unspecified error
/// </returns>
public IList<Event> Execute(Config.Entities.Test test, TestParams testParams)
{
Elde.ControlBoardDev cBrd = StateMachine.ControlBoard;
IList<Event> e = new List<Event>(); /// Events from currently running operations
Event retVal = Event.Done;
checkUiOp = new Operations.CheckUIOp(true); /// Runs in more then one state
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);
processDataLoggingOp = new TBF.BenchControl.Operations.ProcessDataLoggingOp(processDataLogger, this);
int repetitionNr = 1; /// First test: repetitionNr = 1
//====================================
// Transition or SetRoute - Start
//====================================
switch (Transition(transitionBefore, TransitionContext.BeforeTest))
{
case Event.Error: { retVal = Event.Error; goto stopTest; }
case Event.UiCmdStop: { retVal = Event.UiCmdStop; goto stopTest; }
}
//====================================
loop:
/// Start the test, initialize test results
Bridge.OnTestSelected(this, new TestSelectedEventArgs(test, repetitionNr, inPath, benchPath, outPath, sensPath, totalPulses));
string testName = Results.Utils.GetTestName(test.Name, test.Repeats, repetitionNr);
TestStartTime = DateTime.Now;
int flowSetTime0 = StateMachine.Time;
int flowSetTime = 0;
float estFlowSetTime = 10.0f;
//------------------------------------------------
Bridge.OnActivity(this, Strings.Starting_the_pump);
//------------------------------------------------
if (inPath.Pump is GenericDevices.IPumpFM) (inPath.Pump as GenericDevices.IPumpFM).TurnOn(test.PumpPower);
State.Create("FlyingStartMassCollection : Starting the pump")
.AddOperation(checkUiOp)
.AddOperation(new Operations.TimerOp(5))
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
flowSetTime = StateMachine.Time - flowSetTime0;
float progress = Formulas.TestProgress(flowSetTime, estFlowSetTime, test.TstTime);
Bridge.OnTestProgress(this, GetTestProgressData(test, repetitionNr, false, cBrd, flowSetTime, progress));
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.TimerExpired));
State.Create("FlyingStartMassCollection : Starting the pump")
.AddOperation(checkUiOp)
.AddOperation(cBrd.SetValvesOp(inPath.Pump, null))
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
flowSetTime = StateMachine.Time - flowSetTime0;
float progress = Formulas.TestProgress(flowSetTime, estFlowSetTime, test.TstTime);
Bridge.OnTestProgress(this, GetTestProgressData(test, repetitionNr, false, cBrd, flowSetTime, progress));
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.ValvesSet));
if (!test.Emptying) /// If condition met => skip measuring and force emptying
{
///
/// Measure the weight and skip emptying if there is enough room in the tank
///
State.Create("FlyingStartMassCollection : Measuring the mass of water in the tank")
.AddOperation(checkUiOp)
.AddOperation(outPath.Balance.ReadMassOp(ref Mass))
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.BalanceDone));
float estimatedEndMass = Mass.Val + test.Volume;
if (estimatedEndMass < outPath.Balance.Capacity * Constants.TankFullFactor)
{
goto set_flow; /// Enough room in the tank -> skip emptying
}
}
///
/// Empty the water tank
///
switch (EmptyTheTank(outPath.EmptyTankValve, outPath.Balance))
{
case Event.Error: { retVal = Event.Error; goto stopTest; }
case Event.UiCmdStop: { retVal = Event.UiCmdStop; goto stopTest; }
}
set_flow:
//------------------------------------------------
Bridge.OnActivity(this, Strings.Setting_the_flow);
//------------------------------------------------
State.Create("FlyingStartMassCollection : Setting the flow")
.AddOperation(checkUiOp)
.AddOperation(outPath.RegulValve.SetFlowOp(outPath.FlowMeter, test.Qfrom, test.Qto, outPath.PidCoef, RefFlow, 600)) /// timeout = 10 min.
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
flowSetTime = StateMachine.Time - flowSetTime0;
float progress = Formulas.TestProgress(flowSetTime, estFlowSetTime, test.TstTime);
Bridge.OnTestProgress(this, GetTestProgressData(test, repetitionNr, false, cBrd, flowSetTime, progress));
if (e.Contains(Event.OpArgumentError)) { retVal = Event.OpArgumentError; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
if (e.Contains(Event.RegulValveTimeOut))
{
Bridge.OnError(this, Strings.Timeout);
retVal = Event.Done;
goto stopTest;
}
if (e.Contains(Event.Next)) goto flow_set;
}
while (!e.Contains(Event.FlowReached));
flow_set:
int time = StateMachine.Time;
float currentFlow = RefFlow.Val;
/// Extract cameras from the current sensors path, add operations to the detection state
IList<IOperation> measureOperations = new List<IOperation>();
for (int i = 0; i < sensPath.RegisterReaders.Length; i++)
{
GenericDevices.ICameraRoi cameraRoi = sensPath.RegisterReaders[i] as GenericDevices.ICameraRoi;
if (cameraRoi != null) measureOperations.Add(cameraRoi.MeasureOp());
}
State.Create("FlyingStartMassCollection : Waiting before 1st mass measurement")
.AddOperation(checkUiOp)
.AddOperation(benchPath.TempIn.ReadTempOp(ref TempIn))
.AddOperation(benchPath.TempOut.ReadTempOp(ref TempOut))
.AddOperation(outPath.TempDiv.ReadTempOp(ref TempDiv))
.AddOperation(benchPath.PressIn.ReadPressureOp(ref PressureUp))
.AddOperation(benchPath.PressOut.ReadPressureOp(ref PressureDown))
.AddOperation((StateMachine.Ambient != null)
? StateMachine.Ambient.ReadAmbientOp(AmbientTemp, AmbientPressure, AmbientHumidity) : null)
.AddOperation(outPath.Balance.ReadMassOp(ref Mass))
.AddOperation(cBrd.UpdateTankWeightOp())
.AddOperation(processDataLoggingOp)
.AddOperation(new Operations.TimerOp(test.TimeFlow2Mass))
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.TimerExpired));
LogProcessHeader(processDataLogger, "Start mass");
//------------------------------------------------
Bridge.OnActivity(this, Strings.Measuring_the_weight);
//------------------------------------------------
State.Create("FlyingStartMassCollection : Measuring the start mass")
.AddOperation(checkUiOp)
.AddOperation(benchPath.TempIn.ReadTempOp(ref TempIn))
.AddOperation(benchPath.TempOut.ReadTempOp(ref TempOut))
.AddOperation(outPath.TempDiv.ReadTempOp(ref TempDiv))
.AddOperation(benchPath.PressIn.ReadPressureOp(ref PressureUp))
.AddOperation(benchPath.PressOut.ReadPressureOp(ref PressureDown))
.AddOperation((StateMachine.Ambient != null)
? StateMachine.Ambient.ReadAmbientOp(AmbientTemp, AmbientPressure, AmbientHumidity) : null)
.AddOperations(measureOperations)
.AddOperation(outPath.Balance.ReadStableMassOp(ref startMass, 5))
.AddOperation(cBrd.UpdateTankWeightOp())
.AddOperation(processDataLoggingOp)
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.BalanceDone));
LogProcessHeader(processDataLogger, "Measurement");
StartMassRaw = startMass.Val;
log.WarnFormat("Start mass = {0}kg", startMass);
Mass.Val = startMass.Val;
//------------------------------------------------
Bridge.OnActivity(this, Strings.Test_in_progress);
//------------------------------------------------
State.Create("FlyingStartMassCollection : Starting the test")
.AddOperation(checkUiOp)
.AddOperation(benchPath.TempIn.ReadTempOp(ref TempIn))
.AddOperation(benchPath.TempOut.ReadTempOp(ref TempOut))
.AddOperation(outPath.TempDiv.ReadTempOp(ref TempDiv))
.AddOperation(benchPath.PressIn.ReadPressureOp(ref PressureUp))
.AddOperation(benchPath.PressOut.ReadPressureOp(ref PressureDown))
.AddOperation((StateMachine.Ambient != null)
? StateMachine.Ambient.ReadAmbientOp(AmbientTemp, AmbientPressure, AmbientHumidity) : null)
.AddOperations(measureOperations)
.AddOperation(cBrd.UpdateTankWeightOp())
.AddOperation(processDataLoggingOp)
.AddOperation(cBrd.StartMeasurementOp(outPath, Elde.TestMethods.Diverter | Elde.TestMethods.Synchro,
test.Qfrom, test.Qto, totalPulses, (float)test.TolerRed))
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.MeasurementStarted));
foreach (var rr in sensPath.RegisterReaders)
{
if (rr is WaterMeters.iPerl.WaterMeter) (rr as WaterMeters.iPerl.WaterMeter).TestName = test.Name;
}
/// Measurement loop - preparation
readRegistersOp = new Operations.ReadMoreRegistersOp(sensPath.RegisterReaders, ref WMPulses, ref WMTimes, ref WMRefPulses);
queryEnd1 = cBrd.QueryMeasurementEndOp();
int estimtdEndTime = StateMachine.Time + (int)test.TstTime;
ClearAllStatistics();
/// Measurement loop - begin
State.Create("Read water meters")
.AddOperation(checkUiOp)
.AddOperations(measureOperations)
.AddOperation(readRegistersOp)
.AddOperation(benchPath.TempIn.ReadTempOp(ref TempIn))
.AddOperation(benchPath.TempOut.ReadTempOp(ref TempOut))
.AddOperation(outPath.TempDiv.ReadTempOp(ref TempDiv))
.AddOperation(benchPath.PressIn.ReadPressureOp(ref PressureUp))
.AddOperation(benchPath.PressOut.ReadPressureOp(ref PressureDown))
.AddOperation(outPath.Balance.ReadMassOp(ref Mass))
.AddOperation(StateMachine.ControlBoard.UpdateTankWeightOp())
.AddOperation((StateMachine.Ambient != null)
? StateMachine.Ambient.ReadAmbientOp(AmbientTemp, AmbientPressure, AmbientHumidity)
: null)
.AddOperation(queryEnd1)
.AddOperation(processDataLoggingOp)
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) goto stopTest;
if (e.Contains(Event.UiCmdStop)) goto stopTest;
if (e.Contains(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));
}
//------------------------------------------------
UpdateAllStatistics();
CurrentMassRaw = Mass.Val;
RefFreq.Val = cBrd.ReferenceFreq;
RefFlow.Val = cBrd.ReferenceFlow;
string logstr = string.Format("E={0} f={1} q={2}", cBrd.EtPulses(0), cBrd.ReferenceFreq,
cBrd.ReferenceFlow * outPath.FlowMeter.NominalFlow);
for (int i = 0; i < Config.Data.WMsCount; i++)
{
logstr += string.Format(" M{0}=({1},{2})", i + 1, WMRefPulses[i], WMPulses[i]);
}
log.Debug(logstr);
float progress = Formulas.TestProgress(cBrd.EtPulses(0), totalPulses, estFlowSetTime, test.TstTime);
Bridge.OnTestProgress(this, GetTestProgressData(test, repetitionNr, true, cBrd, cBrd.TTime, progress));
}
while (true);
/// Measurement loop - end
test_completed:
State.Create("FlyingStartMassCollection : Waiting before 2nd mass measurement")
.AddOperation(checkUiOp)
.AddOperation(benchPath.TempIn.ReadTempOp(ref TempIn))
.AddOperation(benchPath.TempOut.ReadTempOp(ref TempOut))
.AddOperation(outPath.TempDiv.ReadTempOp(ref TempDiv))
.AddOperation(benchPath.PressIn.ReadPressureOp(ref PressureUp))
.AddOperation(benchPath.PressOut.ReadPressureOp(ref PressureDown))
.AddOperation(readRegistersOp)
.AddOperation((StateMachine.Ambient != null)
? StateMachine.Ambient.ReadAmbientOp(AmbientTemp, AmbientPressure, AmbientHumidity) : null)
.AddOperation(outPath.Balance.ReadMassOp(ref Mass))
.AddOperation(cBrd.UpdateTankWeightOp())
.AddOperation(processDataLoggingOp)
.AddOperation(new Operations.TimerOp(test.TimeStop2Mass))
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.TimerExpired));
LogProcessHeader(processDataLogger, "End mass");
//------------------------------------------------
Bridge.OnActivity(this, Strings.Measuring_the_weight);
//------------------------------------------------
State.Create("FlyingStartMassCollection : Measuring the end mass")
.AddOperation(checkUiOp)
.AddOperation(benchPath.TempIn.ReadTempOp(ref TempIn))
.AddOperation(benchPath.TempOut.ReadTempOp(ref TempOut))
.AddOperation(outPath.TempDiv.ReadTempOp(ref TempDiv))
.AddOperation(benchPath.PressIn.ReadPressureOp(ref PressureUp))
.AddOperation(benchPath.PressOut.ReadPressureOp(ref PressureDown))
.AddOperation(readRegistersOp)
.AddOperation((StateMachine.Ambient != null)
? StateMachine.Ambient.ReadAmbientOp(AmbientTemp, AmbientPressure, AmbientHumidity) : null)
.AddOperation(outPath.Balance.ReadStableMassOp(ref endMass, 5))
.AddOperation(cBrd.UpdateTankWeightOp())
.AddOperation(processDataLoggingOp)
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.Error)) { retVal = Event.Error; goto stopTest; }
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.BalanceDone));
///
log.WarnFormat("End mass = {0}kg", endMass);
EndMassRaw = endMass.Val;
TestEndTime = DateTime.Now;
//------------------------------------------------
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)
{
/// Auxiliary results
tstRslt.AmbientTempAve = AmbientTempStat.Average;
tstRslt.AmbientPressAve = AmbientPressureStat.Average;
tstRslt.AmbientHumiAve = AmbientHumidityStat.Average;
tstRslt.PressUpAvrg = PressureUpStat.Average;
tstRslt.PressUpStart = PressureUpStat.First;
tstRslt.PressUpEnd = PressureUpStat.Last;
tstRslt.PressUpMin = PressureUpStat.Min;
tstRslt.PressUpMax = PressureUpStat.Max;
tstRslt.PressDownAvrg = PressureDownStat.Average;
tstRslt.PressDownStart = PressureDownStat.First;
tstRslt.PressDownEnd = PressureDownStat.Last;
tstRslt.PressDownMin = PressureDownStat.Min;
tstRslt.PressDownMax = PressureDownStat.Max;
tstRslt.TempInAvrg = TempInStat.Average;
tstRslt.TempInStart = TempInStat.First;
tstRslt.TempInEnd = TempInStat.Last;
tstRslt.TempInMin = TempInStat.Min;
tstRslt.TempInMax = TempInStat.Max;
tstRslt.TempOutAvrg = TempOutStat.Average;
tstRslt.TempOutStart = TempOutStat.First;
tstRslt.TempOutEnd = TempOutStat.Last;
tstRslt.TempOutMin = TempOutStat.Min;
tstRslt.TempOutMax = TempOutStat.Max;
tstRslt.TempDivAvrg = TempDivStat.Average;
tstRslt.TempDivStart = TempDivStat.First;
tstRslt.TempDivEnd = TempDivStat.Last;
tstRslt.TempDivMin = TempDivStat.Min;
tstRslt.TempDivMax = TempDivStat.Max;
tstRslt.DensityIn = Formulas.WaterDensityFromTemp(tstRslt.TempInAvrg); /// [kg/m3]
tstRslt.DensityOut = Formulas.WaterDensityFromTemp(tstRslt.TempOutAvrg); /// [kg/m3]
tstRslt.DensityDiv = Formulas.WaterDensityFromTemp(tstRslt.TempDivAvrg); /// [kg/m3]
/// Main results
tstRslt.StartTime = TestStartTime;
tstRslt.EndTime = TestEndTime;
tstRslt.FlowSetTime = flowSetTime;
tstRslt.TestTime = cBrd.TTime; /// [s] measurement time
tstRslt.PulsesMaster = Convert.ToDouble(cBrd.EtPulses(0)); /// Pulses of the master flow meter (test total)
tstRslt.MassStartRaw = startMass.Val;
tstRslt.MassStart = Formulas.CorrectedValue(tstRslt.MassStartRaw, outPath.Balance.Corrections);
tstRslt.MassEndRaw = endMass.Val;
tstRslt.MassEnd = Formulas.CorrectedValue(tstRslt.MassEndRaw, outPath.Balance.Corrections);
tstRslt.FlowMass = 3600.0 * (tstRslt.MassEnd - tstRslt.MassStart) / tstRslt.TestTime; /// [kg/h]
tstRslt.FlowVolume = 3.6 * ltrPerRefPulse * tstRslt.PulsesMaster / tstRslt.TestTime; /// [m3/h]
tstRslt.VolumeCTV = 1001.03 * (tstRslt.MassEnd - tstRslt.MassStart) / tstRslt.DensityOut; /// [l] 1000.0f is because density is in [kg/m3]
tstRslt.VolumeMaster = ltrPerRefPulse * tstRslt.PulsesMaster; /// [l] volume from the master flow meter
tstRslt.ConstMaster = ltrPerRefPulse * tstRslt.VolumeCTV / tstRslt.VolumeMaster; /// Corrected master pulses per liter
tstRslt.ErrorMaster = Formulas.ErrorFromVolumes(tstRslt.VolumeMaster, tstRslt.VolumeCTV);
for (int i = 0; i < BatchRslts.WMPositionsCount; i++)
{
Results.Entities.MeterTestRslt meterRslt = BatchRslts.GetMeterTestRslt(testName, i, Config.Entities.CompoundMeterId.Single);
GenericDevices.IRegisterReader regReader = (sensPath.RegisterReaders == null) ? null : sensPath.RegisterReaders[i];
WaterMeters.iPerl.WaterMeter iPerl = regReader as WaterMeters.iPerl.WaterMeter;
if (meterRslt != null && regReader != null)
{
meterRslt.PulsesPerLiter = regReader.PulsesPerLtr;
meterRslt.PulsesMeter = Convert.ToDouble(WMPulses[i]);
meterRslt.PulsesMaster = Convert.ToDouble(WMRefPulses[i]);
if (iPerl != null)
{
meterRslt.TimestampStart = iPerl.TimestampSecStart;
meterRslt.TimestampEnd = iPerl.TimestampSecEnd;
meterRslt.TestTime = meterRslt.TimestampEnd - meterRslt.TimestampStart;
meterRslt.VolumeStart = iPerl.VolumeLtrStart; /// liter
meterRslt.VolumeEnd = iPerl.VolumeLtrEnd; /// liter
meterRslt.VolumeMeter = Math.Abs(iPerl.VolumeLtrEnd - iPerl.VolumeLtrStart);
meterRslt.VolumeRef = tstRslt.VolumeCTV * meterRslt.TestTime / tstRslt.TestTime;
iPerl.VolumeLtrRef = meterRslt.VolumeRef;
#if IPERLST
meterRslt.CalibFactor = (iPerl.CalibrationStruct != null) ? iPerl.CalibrationStruct.Calibration : 0;
meterRslt.Q2Correction = iPerl.CurrentQ2Correction;
#endif
iPerl.LastTestResult = meterRslt; /// Save this water meter test result to iPerl WM
iPerl.NominalTestFlow = 500.0 * (double)(test.Qfrom + test.Qto); /// Ave. + convert to liter/hour
}
else
{
meterRslt.TestTime = tstRslt.TestTime;
meterRslt.VolumeStart = 0; /// liter
meterRslt.VolumeEnd = 0; /// liter
meterRslt.VolumeMeter = (meterRslt.PulsesPerLiter <= float.Epsilon) ? 0 : meterRslt.PulsesMeter / meterRslt.PulsesPerLiter;
meterRslt.VolumeRef = tstRslt.ConstMaster * meterRslt.PulsesMaster; /// liter
}
meterRslt.Error = Formulas.ErrorFromVolumes(meterRslt.VolumeMeter, meterRslt.VolumeRef);
meterRslt.Passed = (meterRslt.Error >= test.ErrLimLo + test.Uncertainty)
&& (meterRslt.Error <= test.ErrLimHi - test.Uncertainty);
meterRslt.TestDone = true;
}
}
}
/// Add data - end
Bridge.OnTestCompleted(this, new TestCompletedEventArgs(testName));
/// Append the results to the CSV-file
allResults.Info(TestResult2CsvLine(testName, test.Part));
if (++repetitionNr <= test.Repeats)
{
goto loop;
}
stopTest:
///----------------------///
/// Quit this sequence ///
///----------------------///
State.Create("FlyingStartMassCollection : Stopping diverter, gate, etc.")
.AddOperation(checkUiOp)
.AddOperation(cBrd.StopPreviousOp())
.EnterState();
do
{
e = StateMachine.WaitRunDevsRunOps();
if (e.Contains(Event.UiCmdStop)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.PreviousStopped));
/// Transition sequence at the end of test
/// Prevent overwriting 'retVal' in case it was set to non-default value earlier
switch (Transition(transitionAfter, TransitionContext.AfterTest))
{
case Event.Error: { if (retVal == Event.Done) retVal = Event.Error; break; }
case Event.UiCmdStop: { if (retVal == Event.Done) retVal = Event.UiCmdStop; break; }
}
/// Create a list with one item 'retVal' (default is Event.Done) and return it
IList<Event> retList = new List<Event>(1);
retList.Add(retVal);
return retList;
}
}
}
@@ -0,0 +1,66 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
/// Author: Milan Hanajík
///
using System;
using System.Collections.Generic;
using log4net;
using Config.Entities;
using TBF.BenchControl;
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
public class TestMethod : ComponentBase, GenericDevices.ITestMethod
{
private static readonly ILog log = LogManager.GetLogger(typeof(TestMethod));
public override string ToString() { return string.Format("TestMethods.FlyingStartMassCollection({0})", Cfg.ToString(1)); }
readonly TestMethodCfg testMethodCfg;
public bool Evaluate(Test test)
{
TestParams tp = new TestParams();
foreach (var tstPrms in test.MoreParams)
{
if (tstPrms.CmpntName.Equals(Name))
{
tp.UpdateTestParams(tstPrms);
return tp.Evaluate;
}
}
return true;
}
public bool Publish(Test test)
{
TestParams tp = new TestParams();
foreach (var tstPrms in test.MoreParams)
{
if (tstPrms.CmpntName.Equals(Name))
{
tp.UpdateTestParams(tstPrms);
return tp.Publish;
}
}
return true;
}
public bool CanTest(MetersKind meters) { return meters == MetersKind.Single; }
public TestMethod()
{
}
public TestMethod(TestMethodCfg cfg)
: base(cfg)
{
testMethodCfg = cfg;
log.Debug(this.ToString());
}
public IList<Event> Execute(Test test)
{
return (new FlyingStartCollectionMethodSeq()).Execute(test, testMethodCfg.TestParams);
}
}
}
@@ -0,0 +1,48 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Collections.Generic;
using System.IO;
using System.Xml.Serialization;
using Config.Entities;
using TBF.BenchControl.Generic;
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
public class TestMethodCfg : ComponentCfgBase, Generic.IComponentCfg
{
public IComponent GetComponent(IList<IComponent> components) { return new TestMethod(this); }
public IComponentCfgCtrl GetControl() { return new TestMethodCfgCtrl(); }
/// <summary> Test parameters </summary>
[XmlIgnore]
public TestParams TestParams;
public override IParamsProvider GetTestParams() { return TestParams; }
public override IParamsProvider CreateTestParams(Test test)
{
TestParams testParams = new TestParams();
testParams.UpdateTestParams(Name, test);
return testParams;
}
/// Private parameterless constructor invoked by all other (public) constructors
TestMethodCfg()
{
Name = "FlyingStartCollection";
ParentName = string.Empty;
TestParams = new TestParams();
}
public TestMethodCfg(IComponentFactory factory)
: this()
{
this.Factory = factory;
}
public string ToString(int i)
{
return string.Format("Name={0}", Name);
}
}
}
@@ -0,0 +1,71 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Windows.Forms;
using log4net;
using TBF.BenchControl.Generic;
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
public partial class TestMethodCfgCtrl : UserControl, IComponentCfgCtrl
{
static readonly ILog log = LogManager.GetLogger(typeof(TestMethodCfgCtrl));
public bool ShowMore { get { return false; } }
TestMethodCfg config;
public IComponentCfg Config
{
get { return config as IComponentCfg; }
set
{
config = value as TestMethodCfg;
Redraw();
}
}
public TestMethodCfgCtrl()
{
InitializeComponent();
}
private void EntryFormCfgCtrl_Load(object sender, EventArgs e)
{
Redraw();
}
public void Closing()
{
}
void Redraw()
{
if (config == null) return; /// Control was not loaded, settings were not changed
classNameLabel.Text = config.Factory.ClassName;
nameTextBox.Text = config.Name;
}
public void Unlock()
{
nameTextBox.Enabled = true;
}
public CfgUpdateFlags VerifyCfg(ref string message)
{
CfgUpdateFlags flags = CfgUpdateFlags.None;
return flags;
}
public CfgUpdateFlags UpdateCfg()
{
CfgUpdateFlags flags = CfgUpdateFlags.RestartRqrd;
if (config == null) return CfgUpdateFlags.Error; /// Control was not loaded, settings were not changed
config.Name = nameTextBox.Text;
return flags;
}
}
}
@@ -0,0 +1,86 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
partial class TestMethodCfgCtrl
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Component Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.nameTextBox = new System.Windows.Forms.TextBox();
this.nameLabel = new System.Windows.Forms.Label();
this.classNameLabel = new System.Windows.Forms.Label();
this.SuspendLayout();
//
// nameTextBox
//
this.nameTextBox.Enabled = false;
this.nameTextBox.Location = new System.Drawing.Point(137, 57);
this.nameTextBox.Name = "nameTextBox";
this.nameTextBox.Size = new System.Drawing.Size(130, 20);
this.nameTextBox.TabIndex = 5;
//
// nameLabel
//
this.nameLabel.AutoSize = true;
this.nameLabel.Location = new System.Drawing.Point(27, 60);
this.nameLabel.Name = "nameLabel";
this.nameLabel.Size = new System.Drawing.Size(35, 13);
this.nameLabel.TabIndex = 4;
this.nameLabel.Text = "Name";
//
// classNameLabel
//
this.classNameLabel.AutoSize = true;
this.classNameLabel.Location = new System.Drawing.Point(134, 33);
this.classNameLabel.Name = "classNameLabel";
this.classNameLabel.Size = new System.Drawing.Size(83, 13);
this.classNameLabel.TabIndex = 3;
this.classNameLabel.Text = "ComonentName";
//
// BasicPrinterCfgCtrl
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.Controls.Add(this.nameTextBox);
this.Controls.Add(this.nameLabel);
this.Controls.Add(this.classNameLabel);
this.Name = "BasicPrinterCfgCtrl";
this.Size = new System.Drawing.Size(300, 200);
this.Load += new System.EventHandler(this.EntryFormCfgCtrl_Load);
this.ResumeLayout(false);
this.PerformLayout();
}
#endregion
private System.Windows.Forms.TextBox nameTextBox;
private System.Windows.Forms.Label nameLabel;
private System.Windows.Forms.Label classNameLabel;
}
}
@@ -0,0 +1,120 @@
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
Version 2.0
The primary goals of this format is to allow a simple XML format
that is mostly human readable. The generation and parsing of the
various data types are done through the TypeConverter classes
associated with the data types.
Example:
... ado.net/XML headers & schema ...
<resheader name="resmimetype">text/microsoft-resx</resheader>
<resheader name="version">2.0</resheader>
<resheader name="reader">System.Resources.ResXResourceReader, System.Windows.Forms, ...</resheader>
<resheader name="writer">System.Resources.ResXResourceWriter, System.Windows.Forms, ...</resheader>
<data name="Name1"><value>this is my long string</value><comment>this is a comment</comment></data>
<data name="Color1" type="System.Drawing.Color, System.Drawing">Blue</data>
<data name="Bitmap1" mimetype="application/x-microsoft.net.object.binary.base64">
<value>[base64 mime encoded serialized .NET Framework object]</value>
</data>
<data name="Icon1" type="System.Drawing.Icon, System.Drawing" mimetype="application/x-microsoft.net.object.bytearray.base64">
<value>[base64 mime encoded string representing a byte array form of the .NET Framework object]</value>
<comment>This is a comment</comment>
</data>
There are any number of "resheader" rows that contain simple
name/value pairs.
Each data row contains a name, and value. The row also contains a
type or mimetype. Type corresponds to a .NET class that support
text/value conversion through the TypeConverter architecture.
Classes that don't support this are serialized and stored with the
mimetype set.
The mimetype is used for serialized objects, and tells the
ResXResourceReader how to depersist the object. This is currently not
extensible. For a given mimetype the value must be set accordingly:
Note - application/x-microsoft.net.object.binary.base64 is the format
that the ResXResourceWriter will generate, however the reader can
read any of the formats listed below.
mimetype: application/x-microsoft.net.object.binary.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Binary.BinaryFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.soap.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Soap.SoapFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.bytearray.base64
value : The object must be serialized into a byte array
: using a System.ComponentModel.TypeConverter
: and then encoded with base64 encoding.
-->
<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
<xsd:import namespace="http://www.w3.org/XML/1998/namespace" />
<xsd:element name="root" msdata:IsDataSet="true">
<xsd:complexType>
<xsd:choice maxOccurs="unbounded">
<xsd:element name="metadata">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" />
</xsd:sequence>
<xsd:attribute name="name" use="required" type="xsd:string" />
<xsd:attribute name="type" type="xsd:string" />
<xsd:attribute name="mimetype" type="xsd:string" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="assembly">
<xsd:complexType>
<xsd:attribute name="alias" type="xsd:string" />
<xsd:attribute name="name" type="xsd:string" />
</xsd:complexType>
</xsd:element>
<xsd:element name="data">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
<xsd:element name="comment" type="xsd:string" minOccurs="0" msdata:Ordinal="2" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" msdata:Ordinal="1" />
<xsd:attribute name="type" type="xsd:string" msdata:Ordinal="3" />
<xsd:attribute name="mimetype" type="xsd:string" msdata:Ordinal="4" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="resheader">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" />
</xsd:complexType>
</xsd:element>
</xsd:choice>
</xsd:complexType>
</xsd:element>
</xsd:schema>
<resheader name="resmimetype">
<value>text/microsoft-resx</value>
</resheader>
<resheader name="version">
<value>2.0</value>
</resheader>
<resheader name="reader">
<value>System.Resources.ResXResourceReader, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
</root>
@@ -0,0 +1,23 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using TBF.BenchControl.Generic;
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
public class TestMethodFactory : IComponentFactory
{
public string ClassName { get { return "Flying-Start-Collection"; } }
public void ResetStaticProperties() { TestMethod.ResetStaticProperties(); }
public IComponent DummyComponent() { return new TestMethod(); }
public IComponentCfg DefaultConfig() { return new TestMethodCfg(this); }
public IComponentCfg CmpntCfgFromCmpntEntity(Config.Entities.Component component)
{
return ComponentCfgBase.CreateFromDbEntity(typeof(TestMethodCfg), component, this);
}
}
}
@@ -0,0 +1,120 @@
///
/// Copyright (c) 2015 Sensus Metering Systems
/// Author: Milan Hanajík
///
using System;
using System.IO;
using System.Xml.Serialization;
using Config.Entities;
using TBF.BenchControl.Generic;
using TBF.Resources;
namespace TBF.BenchControl.TestMethods.FlyingStartMassCollection
{
public class TestParams : TestParamsBase, IParamsProvider, ITestParams
{
public bool Evaluate; /// Evaluate this test for passed/failed final result
public bool Publish; /// Publish this test in results (screen, printed, file, DB)
public override void InitializeAll()
{
Evaluate = true;
Publish = true;
}
string[] paramNames = new string[]
{
Strings.Evaluate,
Strings.Publish,
};
public override string ParamName(int i) { return paramNames[i]; }
public override int ParamsCount() { return paramNames.Length; }
public override string ToString(int i)
{
switch (i)
{
case 0: return (Evaluate ? Strings.yes : Strings.no);
case 1: return (Publish ? Strings.yes : Strings.no);
default: return string.Empty;
}
}
public void UpdateParam(int i, string strValue)
{
switch (i)
{
case 0: Evaluate = strValue.Equals(Strings.yes); return;
case 1: Publish = strValue.Equals(Strings.yes); return;
default: return;
}
}
public bool ValidateParam(int i, string strValue, out string message)
{
message = string.Empty;
switch (i)
{
case 0:
case 1:
if (strValue.Equals(Strings.yes) || strValue.Equals(Strings.no)) return true;
break;
default:
message = "Invalid index";
return false;
}
message = ParamName(i) + " is invalid";
return false;
}
void CopyContentTo(TestParams prms)
{
prms.Evaluate = this.Evaluate;
prms.Publish = this.Publish;
}
public IParamsProvider Clone()
{
TestParams pars = new TestParams();
CopyContentTo(pars);
return pars;
}
public override void UpdateTestParams(ComponentTest dbEntity)
{
if (dbEntity == null) return;
try
{
TestParams tmp = (TestParams)(new XmlSerializer(typeof(TestParams)))
.Deserialize(new StringReader(dbEntity.Parameters));
testParamsEntity = dbEntity;
componentName = dbEntity.CmpntName;
test = dbEntity.Test;
tmp.CopyContentTo(this);
}
catch
{
}
}
/// <summary>
/// Parameterless constructor initializes the parameters
/// </summary>
public TestParams()
{
InitializeAll();
}
public TestParams(ComponentTest testParamsEntity, string componentName, Test test)
{
this.testParamsEntity = testParamsEntity;
this.componentName = componentName;
this.test = test;
}
}
}