tbf/TBF/Rig/Ambient/Greco/AmbientCfg.cs

345 lines
13 KiB
C#

///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.IO;
using System.Collections.Generic;
using System.IO.Ports;
using System.Xml.Serialization;
using Common;
using Config.Entities;
using SchematicDrawing;
using TBF.Rig.Generic;
namespace TBF.Rig.Ambient.Greco
{
public class AmbientCfg : ComponentCfgBase, Generic.IComponentCfg, IParamsProvider, IDrawingItemWithMeasuredVal
{
public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(AmbientCfg) })[0];
public override XmlSerializer GetSerializer() { return Serializer; }
public IComponentCfgCtrl GetControl(IList<Component> cmpntEntities)
{
return new Configs.ParamsProvider.ComponentCfgCtrl(this, null);
}
///
/// Serialized parameters
///
public int ComPortNr; /// 0
public int BaudRate; /// 1
public Parity Parity; /// 2
public int DataBits; /// 3
public StopBits StopBits; /// 4
public Handshake Handshake; /// 5
public Unit TempUnit; /// 6
public double TempLimLo; /// 7
public double TempLimHi; /// 8
public double DefaultTemp; /// 9
public Unit PressureUnit; /// 10
public double PressureLimLo; /// 11
public double PressureLimHi; /// 12
public double DefaultPressure; /// 13
public Unit HumiUnit; /// 14
public double HumiLimLo; /// 15
public double HumiLimHi; /// 16
public double DefaultHumi; /// 17
public string Format; /// 18
/// Schematic drawing info
public Shape Shape { get; set; }
public int X { get; set; }
public int Y { get; set; }
public Sz Sz { get; set; }
public Orient Orient { get; set; }
public bool Flip { get; set; }
public int LblX { get; set; }
public int LblY { get; set; }
public Orient LblOrient { get; set; }
public int MsrdX { get; set; }
public int MsrdY { get; set; }
public Orient MsrdOrient { get; set; }
[XmlIgnore]
public string MsrdFormat { get { return string.Empty; } }
[XmlIgnore]
public Unit MsrdUnit { get { return TempUnit; } }
[XmlIgnore]
public double MsrdValLimLo { get { return TempLimLo; } }
[XmlIgnore]
public double MsrdValLimHi { get { return TempLimHi; } }
[XmlIgnore]
public IList<GNode> GNodes { get; set; }
[XmlIgnore]
public bool IsOffline { get; set; }
/// Private parameterless constructor invoked by all other (public) constructors
AmbientCfg()
{
GNodes = new List<GNode>();
Format = string.Empty;
}
public AmbientCfg(string name, IComponentFactory factory)
: this()
{
Shape = Shape.Ambient;
Sz = Sz.M;
Factory = factory;
Name = name;
ParentName = string.Empty;
InitializeAll();
}
public string ComponentName { get { return Name; } }
public void InitializeAll()
{
ComPortNr = 6;
BaudRate = 19200;
Parity = System.IO.Ports.Parity.None;
DataBits = 8;
StopBits = System.IO.Ports.StopBits.One;
Handshake = System.IO.Ports.Handshake.None;
TempUnit = Unit.C;
TempLimLo = 15;
TempLimHi = 30;
DefaultTemp = 25;
PressureUnit = Unit.hPa;
PressureLimLo = 960;
PressureLimHi = 1060;
DefaultPressure = 1013;
HumiUnit = Unit.RPct;
HumiLimLo = 20;
HumiLimHi = 80;
DefaultHumi = 50;
Format = "{0:F1} °C\n{1:F0} hPa\n{2:F0} R%";
MsrdY = 22;
}
string[] paramNames = new string[]
{
"Serial port number", /// 0
"Baud rate", /// 1
"Parity", /// 2
"Data bits", /// 3
"Stop bits", /// 4
"Handshake", /// 5
"Unit of temperature", /// 6
"Temperature limit Lo", /// 7
"Temperature limit Hi", /// 8
"Default temperature", /// 9
"Unit of pressure", /// 10
"Pressure limit Lo", /// 11
"Pressure limit Hi", /// 12
"Default pressure", /// 13
"Unit of rel. humidity", /// 14
"Rel. humidity limit Lo", /// 15
"Rel. humidity limit Hi", /// 16
"Default retl. humidity", /// 17
"Display format", /// 18
};
public string ParamName(int i) { return paramNames[i]; }
public int ParamsCount() { return paramNames.Length; }
public ICollection<string> ParamValues(int i)
{
switch (i)
{
case 1:
return new string[] { "150", "300", "600", "1200", "2400", "4800", "9600",
"19200", "38400", "57600", "76800", "115200"};
case 2:
return new string[] { Parity.None.ToString(), Parity.Odd.ToString(), Parity.Even.ToString() };
case 3:
return new string[] { "7", "8" };
case 4:
return new string[] { StopBits.None.ToString(),
StopBits.One.ToString(),
StopBits.OnePointFive.ToString(),
StopBits.Two.ToString() };
case 5:
return new string[] { Handshake.None.ToString(),
Handshake.XOnXOff.ToString(),
Handshake.RequestToSend.ToString(),
Handshake.RequestToSendXOnXOff.ToString() };
case 6:
return new string[] { "°C", "°F", "K" };
case 10:
return new string[] { "Pa", "hPa", "mbar", "kPa", "inHg", "psi", "bar", "MPa" };
case 14:
return new string[] { "R%" };
default:
return null;
}
}
public string ToString(int i)
{
switch (i)
{
case 0: return ComPortNr.ToString();
case 1: return BaudRate.ToString();
case 2: return Parity.ToString();
case 3: return DataBits.ToString();
case 4: return StopBits.ToString();
case 5: return Handshake.ToString();
case 6: return TempUnit.ToDescription();
case 7: return TempLimLo.ToString();
case 8: return TempLimHi.ToString();
case 9: return DefaultTemp.ToString();
case 10: return PressureUnit.ToDescription();
case 11: return PressureLimLo.ToString();
case 12: return PressureLimHi.ToString();
case 13: return DefaultPressure.ToString();
case 14: return HumiUnit.ToDescription();
case 15: return HumiLimLo.ToString();
case 16: return HumiLimHi.ToString();
case 17: return DefaultHumi.ToString();
case 18: return Format.Replace("\n", "<LF>");
default:
return string.Format("{0} {1}[{2},{3}] Com{4}, {5}Bd, {6}-bits, parity={7}, stopBits={8}, {9}",
Name, Shape, X, Y, ComPortNr, BaudRate, DataBits, Parity, StopBits, Handshake);
}
}
public CfgUpdateFlags UpdateParam(int i, string str)
{
switch (i)
{
case 0: ComPortNr = int.Parse(str); return CfgUpdateFlags.RestartRqrd;
case 1: BaudRate = int.Parse(str); return CfgUpdateFlags.RestartRqrd;
case 2: Parity = TBF.Utils.GetParity(str); return CfgUpdateFlags.RestartRqrd;
case 3: DataBits = int.Parse(str); return CfgUpdateFlags.RestartRqrd;
case 4: StopBits = TBF.Utils.GetStopBits(str); return CfgUpdateFlags.RestartRqrd;
case 5: Handshake = TBF.Utils.GetHandshake(str); return CfgUpdateFlags.RestartRqrd;
case 6:
foreach (var u in new Unit[] { Unit.C, Unit.F, Unit.K })
{
if (str == u.ToDescription()) { TempUnit = u; return CfgUpdateFlags.RestartRqrd; }
}
return CfgUpdateFlags.None;
case 7: TempLimLo = Utils.ParseSDouble(str); return CfgUpdateFlags.RestartRqrd;
case 8: TempLimHi = Utils.ParseSDouble(str); return CfgUpdateFlags.RestartRqrd;
case 9: DefaultTemp = Utils.ParseSDouble(str); return CfgUpdateFlags.RestartRqrd;
case 10:
foreach (var u in new Unit[] { Unit.Pa, Unit.hPa, Unit.mbar, Unit.kPa, Unit.inHg, Unit.psi, Unit.bar, Unit.MPa })
{
if (str == u.ToDescription()) { PressureUnit = u; return CfgUpdateFlags.RestartRqrd; }
}
return CfgUpdateFlags.None;
case 11: PressureLimLo = Utils.ParseUDouble(str); return CfgUpdateFlags.RestartRqrd;
case 12: PressureLimHi = Utils.ParseUDouble(str); return CfgUpdateFlags.RestartRqrd;
case 13: DefaultPressure = Utils.ParseUDouble(str); return CfgUpdateFlags.RestartRqrd;
case 14:
foreach (var u in new Unit[] { Unit.RPct })
{
if (str == u.ToDescription()) { HumiUnit = u; return CfgUpdateFlags.RestartRqrd; }
}
return CfgUpdateFlags.None;
case 15: HumiLimLo = Utils.ParseUDouble(str); return CfgUpdateFlags.RestartRqrd;
case 16: HumiLimHi = Utils.ParseUDouble(str); return CfgUpdateFlags.RestartRqrd;
case 17: DefaultHumi = Utils.ParseUDouble(str); return CfgUpdateFlags.RestartRqrd;
case 18: Format = str.Replace("<LF>", "\n"); return CfgUpdateFlags.RestartRqrd;
default: return CfgUpdateFlags.None;
}
}
public bool ValidateParam(int i, string str, out string message)
{
message = string.Empty;
int idummy;
double dummy;
switch (i)
{
case 0:
if (int.TryParse(str, out idummy) && idummy > 0) return true;
break;
case 1:
case 2:
case 3:
case 4:
case 5:
case 6:
case 10:
case 14:
if (ParamValues(i).Contains(str)) return true;
break;
case 7:
case 8:
case 9:
if (TBF.Utils.TryParseSDouble(str, out dummy)) return true;
break;
case 11:
case 12:
case 13:
case 15:
case 16:
case 17:
if (TBF.Utils.TryParseUDouble(str, out dummy)) return true;
break;
case 18:
return true;
default:
message = "Invalid index";
return false;
}
message = ParamName(i) + " is invalid";
return false;
}
void CopyContentTo(AmbientCfg prms)
{
prms.ParentName = this.ParentName;
prms.Shape = this.Shape;
prms.Sz = this.Sz;
prms.Orient = this.Orient;
prms.Flip = this.Flip;
prms.LblX = this.LblX;
prms.LblY = this.LblY;
prms.LblOrient = this.LblOrient;
prms.MsrdX = this.MsrdX;
prms.MsrdY = this.MsrdY;
prms.MsrdOrient = this.MsrdOrient;
prms.ComPortNr = this.ComPortNr;
prms.BaudRate = this.BaudRate;
prms.Parity = this.Parity;
prms.DataBits = this.DataBits;
prms.StopBits = this.StopBits;
prms.Handshake = this.Handshake;
prms.TempUnit = this.TempUnit;
prms.TempLimLo = this.TempLimLo;
prms.TempLimHi = this.TempLimHi;
prms.DefaultTemp = this.DefaultTemp;
prms.PressureUnit = this.PressureUnit;
prms.PressureLimLo = this.PressureLimLo;
prms.PressureLimHi = this.PressureLimHi;
prms.DefaultPressure = this.DefaultPressure;
prms.HumiUnit = this.HumiUnit;
prms.HumiLimLo = this.HumiLimLo;
prms.HumiLimHi = this.HumiLimHi;
prms.DefaultHumi = this.DefaultHumi;
prms.Format = this.Format;
}
public IParamsProvider Clone()
{
AmbientCfg pars = new AmbientCfg();
CopyContentTo(pars);
return pars;
}
public bool UpdateEmbeddedDbEntity()
{
return true; /// =OK, do nothing
}
}
}