Files
tbf/TBF/Rig/DataContainer/Density/ComponentCfg.cs

137 lines
4.3 KiB
C#

///
/// Copyright (c) 2019-2023 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Xml.Serialization;
using Common;
using Config.Entities;
using TBF.Rig.Generic;
namespace TBF.Rig.DataContainer.Density
{
/// <summary>
/// Holds water density - serializable configuration.
/// </summary>
public class ComponentCfg : ComponentCfgBase, Generic.IComponentCfg, IParamsProvider, TBF.Rig.GenericDevices.ICalibInfoCfg
{
public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(ComponentCfg) })[0];
public override XmlSerializer GetSerializer() { return Serializer; }
public IComponentCfgCtrl GetControl(IList<Config.Entities.Component> cmpntEntities) { return new Configs.ParamsProvider.ComponentCfgCtrl(this, null); }
///
/// Serialized parameters
///
public double SampleDensity;
public double SampleTemp;
/// Calibration info serialized parameters displayed in Metrology tab page
public string CalibCertificateNr { get; set; }
public string CertPath { get; set; }
public DateTime CalibDate { get; set; }
public DateTime CalibValidDate { get; set; }
/// Private parameterless constructor invoked by all other (public) constructors
ComponentCfg() {}
public ComponentCfg(string name, IComponentFactory factory)
: this()
{
Name = name;
Factory = factory;
ParentName = string.Empty;
InitializeAll();
}
public string ComponentName { get { return Name; } }
public void InitializeAll()
{
SampleDensity = 998.2008; /// kg/m3
SampleTemp = 20.0; /// °C
}
string[] paramNames = new string[]
{
"Sample density [kg/m3]",
"Sample temperature [°C]",
};
public string ParamName(int i) { return paramNames[i]; }
public int ParamsCount() { return paramNames.Length; }
public ICollection<string> ParamValues(int i) { return null; }
public string ToString(int i)
{
if (i == -1)
{
return string.Format("{0}: Sample density = {1} kg/m3 measured at temperature {2} °C", Name, SampleDensity, SampleTemp);
}
switch (i)
{
case 0: return SampleDensity.ToString();
case 1: return SampleTemp.ToString();
default: return string.Empty;
}
}
public CfgUpdateFlags UpdateParam(int i, string strValue)
{
switch (i)
{
case 0: SampleDensity = Utils.ParseUDouble(strValue); return CfgUpdateFlags.RestartRqrd;
case 1: SampleTemp = Utils.ParseUDouble(strValue); return CfgUpdateFlags.RestartRqrd;
default: return CfgUpdateFlags.None;
}
}
public bool ValidateParam(int i, string strValue, out string message)
{
message = string.Empty;
double dummy;
switch (i)
{
case 0:
/// Real number between 800 and 1200 kg/m3 expected
if (Utils.TryParseUDouble(strValue, out dummy) && (dummy >= 800) && (dummy <= 1200)) return true;
break;
case 1:
/// Real number above 0 expected
if (Utils.TryParseUDouble(strValue, out dummy) && (dummy >= 0)) return true;
break;
default:
message = "Invalid index";
return false;
}
message = ParamName(i) + " is invalid";
return false;
}
void CopyContentTo(ComponentCfg prms)
{
prms.SampleDensity = this.SampleDensity;
prms.SampleTemp = this.SampleTemp;
prms.CalibCertificateNr = this.CalibCertificateNr;
prms.CertPath = this.CertPath;
prms.CalibDate = this.CalibDate;
prms.CalibValidDate = this.CalibValidDate;
}
public IParamsProvider Clone()
{
ComponentCfg pars = new ComponentCfg();
CopyContentTo(pars);
return pars;
}
public bool UpdateEmbeddedDbEntity()
{
return true; /// =OK, do nothing
}
}
}