tbf/TBF/Rig/TestMethods/iPerlCommunication/iPerlHead/ProcParams.cs
2021-06-18 15:35:46 +02:00

216 lines
7.1 KiB
C#

///
/// Copyright (c) 2015-2019 Sensus Slovensko a.s.
///
using System;
using System.IO;
using System.Xml.Serialization;
using Common;
using Config.Entities;
using TBF.Rig.Generic;
using System.Collections.Generic;
namespace TBF.Rig.TestMethods.iPerlCommunication.iPerlHead
{
public class ProcParams : ProcedureParamsBase, IParamsProvider, IProcedureParams
{
public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(ProcParams) })[0];
public override XmlSerializer GetSerializer() { return Serializer; }
public MeterType MeterType;
public float CalibTarget; /// Target error after calibration in [%]
public float CalibTargetQ2; /// Target error at Q2 after Q2 correction in [%]
public int FactorLimitLo; /// Lower limit for the calibration factor
public int FactorLimitHi; /// Upper limit for the calibration factor
public Counting Counting; /// Initial iPerl counting (Artbitrary, Positive or Negative)
public int WMType_ID; /// Required for Oracle DB: ID_WZTyp in table VT_PRUEFPUNKT_SOLL_SD
public int InitQ2CorrLR;
public int InitQ2CorrRL;
public override void InitializeAll()
{
MeterType = MeterType.AutoDetect;
CalibTarget = 0;
CalibTargetQ2 = 0;
FactorLimitLo = 1000;
FactorLimitHi = 8000;
Counting = Counting.Arbitrary;
WMType_ID = 2; /// Value for iPerl DN15
InitQ2CorrLR = 0;
InitQ2CorrRL = 0;
}
string[] paramNames = new string[]
{
"iPerl type",
"Calib. target [%]",
"Calib. target at Q2 [%]",
"Calib. factor Lo",
"Calib. factor Hi",
"Counting",
"WM type ID",
"Init. Q2 corr. LR",
"Init. Q2 corr. RL",
};
public override string ParamName(int i) { return paramNames[i]; }
public override int ParamsCount() { return paramNames.Length; }
public override ICollection<string> ParamValues(int i)
{
if (i == 0)
{
List<string> retVal = new List<string>();
for (MeterType mt = 0; mt < MeterType.Count; mt++) retVal.Add(mt.ToString());
return retVal;
}
else if (i == 5)
{
List<string> retVal = new List<string>();
for (Counting c = 0; c < Counting.Count; c++) retVal.Add(c.ToString());
return retVal;
}
return null;
}
public override string ToString(int i)
{
switch (i)
{
case 0: return MeterType.ToString();
case 1: return CalibTarget.ToString();
case 2: return CalibTargetQ2.ToString();
case 3: return FactorLimitLo.ToString();
case 4: return FactorLimitHi.ToString();
case 5: return Counting.ToString();
case 6: return WMType_ID.ToString();
case 7: return InitQ2CorrLR.ToString();
case 8: return InitQ2CorrRL.ToString();
default: return string.Empty;
}
}
public CfgUpdateFlags UpdateParam(int i, string strValue)
{
switch (i)
{
case 0:
for (MeterType mt = 0; mt < MeterType.Count; mt++)
{
if (mt.ToString().Equals(strValue)) { MeterType = mt; return CfgUpdateFlags.None; }
}
break;
case 1: CalibTarget = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 2: CalibTargetQ2 = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 3: FactorLimitLo = int.Parse(strValue); return CfgUpdateFlags.None;
case 4: FactorLimitHi = int.Parse(strValue); return CfgUpdateFlags.None;
case 5:
for (Counting c = 0; c < Counting.Count; c++)
{
if (c.ToString().Equals(strValue)) { Counting = c; return CfgUpdateFlags.None; }
}
break;
case 6: WMType_ID = int.Parse(strValue); return CfgUpdateFlags.None;
case 7: InitQ2CorrLR = int.Parse(strValue); return CfgUpdateFlags.None;
case 8: InitQ2CorrRL = int.Parse(strValue); return CfgUpdateFlags.None;
default: return CfgUpdateFlags.None;
}
return CfgUpdateFlags.None;
}
public bool ValidateParam(int i, string strValue, out string message)
{
message = string.Empty;
int iDummy;
float fDummy;
switch (i)
{
case 0:
for (MeterType mt = 0; mt < MeterType.Count; mt++) if (mt.ToString().Equals(strValue)) return true;
break;
case 1:
case 2:
if (Utils.TryParseSFloat(strValue, out fDummy) && fDummy >= -10.0f && fDummy <= 10.0f) return true;
break;
case 3:
case 4:
if (int.TryParse(strValue, out iDummy) && iDummy >= 1000 && iDummy <= 8000) return true;
break;
case 5:
for (Counting c = 0; c < Counting.Count; c++) if (c.ToString().Equals(strValue)) return true;
break;
case 6: /// WMType_ID
if (int.TryParse(strValue, out iDummy)) return true;
break;
case 7: /// InitQ2CorrLR
case 8: /// InitQ2CorrRL
if (int.TryParse(strValue, out iDummy) || (iDummy < -127) || (iDummy > 127)) return true;
break;
default:
message = "Invalid index";
return false;
}
message = ParamName(i) + " is invalid";
return false;
}
void CopyContentTo(ProcParams prms)
{
prms.MeterType = this.MeterType;
prms.CalibTarget = this.CalibTarget;
prms.CalibTargetQ2 = this.CalibTargetQ2;
prms.FactorLimitLo = this.FactorLimitLo;
prms.FactorLimitHi = this.FactorLimitHi;
prms.Counting = this.Counting;
prms.WMType_ID = this.WMType_ID;
prms.InitQ2CorrLR = this.InitQ2CorrLR;
prms.InitQ2CorrRL = this.InitQ2CorrRL;
}
public IParamsProvider Clone()
{
ProcParams pars = new ProcParams();
CopyContentTo(pars);
return pars;
}
public override void UpdateFromDbEntity(ComponentProcedure dbEntity)
{
if (dbEntity == null) return;
try
{
ProcParams tmp = Serializer.Deserialize(new StringReader(dbEntity.Parameters)) as ProcParams;
procedureParamsEntity = dbEntity;
componentName = dbEntity.CmpntName;
procedure = dbEntity.Procedure;
if (tmp != null) tmp.CopyContentTo(this);
}
catch
{
}
}
public ProcParams()
{
}
public ProcParams(bool initialize)
{
if (initialize) InitializeAll();
}
public ProcParams(ComponentProcedure procParamsEntity, string componentName, Procedure procedure)
{
this.procedureParamsEntity = procParamsEntity;
this.componentName = componentName;
this.procedure = procedure;
}
}
}