Advance components - StandingStartMassCollectionAdvance

This commit is contained in:
Michal Buzik 2024-08-14 11:59:26 +02:00
parent 783d51e71a
commit 7409af70ac
17 changed files with 2460 additions and 0 deletions

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@ -193,6 +193,10 @@ namespace TBF.Rig
new TestMethods.StandingStartMassCollection.Single.Factory(),
new TestMethods.StandingStartMassCollection.Compound.Factory(),
new TestMethods.StandingStartMassCollection.HeatMeters.Factory(),
new TestMethods.StandingStartMassCollectionAdvance.Single.Factory(),
new TestMethods.StandingStartMassCollectionAdvance.Compound.Factory(),
new TestMethods.StandingStartMassCollectionAdvance.HeatMeters.Factory(),
new TestMethods.StandingStartMassCollectionAdvanceCollect.Single.Factory(),
new TestMethods.StandingStartMassCollWODiv.Factory(),
new BuiltIn.Valve.ValveFactory(),
new BuiltIn.ValveEx.ValveFactory(),

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@ -0,0 +1,39 @@
///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using log4net;
using Common;
using Config.Entities;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.Compound
{
public class Component : ComponentBase, GenericDevices.ITestMethod
{
private static readonly ILog log = LogManager.GetLogger(typeof(Component));
public override string ToString() { return string.Format("{0}({1})", ClassName, Cfg.ToString(-1)); }
public bool CanTest(MetersKind meters) { return meters == MetersKind.Combined; }
public bool DoTransitions() { return true; }
public bool CheckDeviceCaps(Test test, OutputPath devices, out string message)
{
return StandingStartMassCollectionAdvanceSeq.CheckDeviceCaps(test, devices, out message);
}
public Component() { }
///
public Component(Generic.IComponentCfg cfg)
: base(cfg)
{
log.Warn(this.ToString());
}
///
public override void Initialize() { }
public IList<Event> Execute(Test test, int repetNr, bool isLastRepetition)
{
return (new StandingStartMassCollectionAdvanceSeq()).Execute(test, repetNr, isLastRepetition, true, null, DebugLevel);
}
}
}

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@ -0,0 +1,26 @@
///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System.Collections.Generic;
using TBF.Rig.Generic;
using TBF.Rig.Configs.NameOnly;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.Compound
{
public class Factory : IComponentFactory
{
public string ClassName { get { return this.GetType().Namespace.Substring(8); } }
public override string ToString() { return ClassName; }
public IComponent DummyComponent() { return new Component(); }
public IComponent GetComponent(IComponentCfg cfg, IList<IComponent> components) { return new Component(cfg); }
public IComponentCfg DefaultConfig() { return new TestMethodCfg(this.GetType().Namespace.Substring(20), this); }
public IComponentCfg CmpntCfgFromCmpntEntity(Config.Entities.Component component)
{
return ComponentCfgBase.CreateFromDbEntity(TestMethodCfg.Serializer, component, this);
}
}
}

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@ -0,0 +1,43 @@
///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using log4net;
using Common;
using Config.Entities;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.HeatMeters
{
public class Component : ComponentBase, GenericDevices.ITestMethod
{
private static readonly ILog log = LogManager.GetLogger(typeof(Component));
public override string ToString() { return string.Format("{0}({1})", ClassName, Cfg.ToString(-1)); }
public bool CanTest(MetersKind meters) { return meters == MetersKind.HeatMeter; }
public bool DoTransitions() { return true; }
public bool CheckDeviceCaps(Test test, OutputPath devices, out string message)
{
return StandingStartMassCollectionAdvanceSeq.CheckDeviceCaps(test, devices, out message);
}
readonly TestMethodCfg testMethodCfg;
public Component() { }
///
public Component(Generic.IComponentCfg cfg)
: base(cfg)
{
testMethodCfg = cfg as TestMethodCfg;
log.Warn(this.ToString());
}
///
public override void Initialize() { }
public IList<Event> Execute(Test test, int repetNr, bool isLastRepetition)
{
return (new StandingStartMassCollectionAdvanceSeq()).Execute(test, repetNr, isLastRepetition, false, testMethodCfg.TestParams, DebugLevel);
}
}
}

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@ -0,0 +1,25 @@
///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System.Collections.Generic;
using TBF.Rig.Generic;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.HeatMeters
{
public class Factory : IComponentFactory
{
public string ClassName { get { return this.GetType().Namespace.Substring(8); } }
public override string ToString() { return ClassName; }
public IComponent DummyComponent() { return new Component(); }
public IComponent GetComponent(IComponentCfg cfg, IList<IComponent> components) { return new Component(cfg); }
public IComponentCfg DefaultConfig() { return new TestMethodCfg(this.GetType().Namespace.Substring(20), this); }
public IComponentCfg CmpntCfgFromCmpntEntity(Config.Entities.Component component)
{
return ComponentCfgBase.CreateFromDbEntity(TestMethodCfg.Serializer, component, this);
}
}
}

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@ -0,0 +1,49 @@
///
/// Copyright (c) 2013-2016 Sensus Metering Systems
///
using System.Collections.Generic;
using System.Xml.Serialization;
using Common;
using Config.Entities;
using TBF.Rig.Generic;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.HeatMeters
{
public class TestMethodCfg : ComponentCfgBase, Generic.IComponentCfg
{
public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(TestMethodCfg) })[0];
public override XmlSerializer GetSerializer() { return Serializer; }
public IComponentCfgCtrl GetControl(IList<Config.Entities.Component> cmpntEntities) { return new TestMethodCfgCtrl(); }
/// <summary> Test parameters </summary>
[XmlIgnore]
public TestParams TestParams;
public override IParamsProvider GetRuntimeTestParamsProvider() { return TestParams; }
public override IParamsProvider CreateTestParamsProvider() { return new TestParams(true); }
public override IParamsProvider GetUITestParamsProvider(Test test)
{
return (test.Method == Name) ? base.GetUITestParamsProvider(test) : null;
}
/// Private parameterless constructor invoked by all other (public) constructors
TestMethodCfg()
{
TestParams = new TestParams(true);
}
public TestMethodCfg(string name, IComponentFactory factory)
: this()
{
Name = name;
Factory = factory;
ParentName = string.Empty;
}
public string ToString(int i)
{
return string.Format("Name={0}", Name);
}
}
}

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@ -0,0 +1,70 @@
///
/// Copyright (c) 2013-2016 Sensus Metering Systems
///
using System;
using System.Windows.Forms;
using Common;
using Config.Entities;
using TBF.Rig.Generic;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.HeatMeters
{
public partial class TestMethodCfgCtrl : UserControl, IComponentCfgCtrl
{
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;
}
}
}

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@ -0,0 +1,86 @@
///
/// Copyright (c) 2013-2016 Sensus Metering Systems
///
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.HeatMeters
{
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;
}
}

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@ -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>
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<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>
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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
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: and then encoded with base64 encoding.
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<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" />
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<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" />
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///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.IO;
using System.Text;
using System.Xml.Serialization;
using Common;
using Config.Entities;
using TBF.Rig.Generic;
using TBF.Resources;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.HeatMeters
{
public class TestParams : TestParamsBase, IParamsProvider, ITestParams
{
public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(TestParams) })[0];
public override XmlSerializer GetSerializer() { return Serializer; }
public float ErrorLimitLo; /// [%]
public float ErrorLimitHi; /// [%]
public bool EvaluateVolume; /// true = evaluate also the volume, false = evaluate only energy
public float TempWarmLo; /// Low limit for warm temperature [°C]
public float TempWarmHi; /// High limit for warm temperature [°C]
public float TempColdLo; /// Low limit for cold temperature [°C]
public float TempColdHi; /// High limit for cold temperature [°C]
public bool FlowMeasuredAtHiTempPipe; /// true = flow measured at high temp. pipe, false = flow measured at low temp. pipe
public float DeltaTempWarm;
public float DeltaTempCold;
public float ChangeInTimeWarm;
public float ChangeInTimeCold;
public string Prompt;
public override void InitializeAll()
{
FlowMeasuredAtHiTempPipe = false;
}
string[] paramNames = new string[]
{
Strings.Err_limit_neg_pct_chdr,
Strings.Err_limit_pos_pct_chdr,
Strings.Evaluate_volume,
"T hi min",
"T hi max",
"T lo min",
"T lo max",
"Flow measured at high temp.pipe",
"Delta T warm",
"Delta T cold",
"Change in time T warm",
"Change in time T cold",
Strings.Prompt,
};
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 ErrorLimitLo.ToString();
case 1: return ErrorLimitHi.ToString();
case 2: return (EvaluateVolume ? Strings.yes : Strings.no);
case 3: return TempWarmLo.ToString();
case 4: return TempWarmHi.ToString();
case 5: return TempColdLo.ToString();
case 6: return TempColdHi.ToString();
case 7: return (FlowMeasuredAtHiTempPipe ? Strings.yes : Strings.no);
case 8: return DeltaTempWarm.ToString();
case 9: return DeltaTempCold.ToString();
case 10: return ChangeInTimeWarm.ToString();
case 11: return ChangeInTimeCold.ToString();
case 12: return Prompt;
default: return string.Empty;
}
}
public CfgUpdateFlags UpdateParam(int i, string strValue)
{
switch (i)
{
case 0: ErrorLimitLo = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 1: ErrorLimitHi = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 2: EvaluateVolume = strValue.Equals(Strings.yes); return CfgUpdateFlags.None;
case 3: TempWarmLo = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 4: TempWarmHi = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 5: TempColdLo = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 6: TempColdHi = Utils.ParseSFloat(strValue); return CfgUpdateFlags.None;
case 7: FlowMeasuredAtHiTempPipe = strValue.Equals(Strings.yes); return CfgUpdateFlags.None;
case 8: DeltaTempWarm = Utils.ParseUFloat(strValue); return CfgUpdateFlags.None;
case 9: DeltaTempCold = Utils.ParseUFloat(strValue); return CfgUpdateFlags.None;
case 10: ChangeInTimeWarm = Utils.ParseUFloat(strValue); return CfgUpdateFlags.None;
case 11: ChangeInTimeCold = Utils.ParseUFloat(strValue); return CfgUpdateFlags.None;
case 12: Prompt = strValue; return CfgUpdateFlags.None;
default: return CfgUpdateFlags.None;
}
}
public bool ValidateParam(int i, string strValue, out string message)
{
message = string.Empty;
float dummy;
switch (i)
{
case 0:
case 1:
case 3:
case 4:
case 5:
case 6:
if (Utils.TryParseSFloat(strValue, out dummy)) return true;
break;
case 2:
case 7:
if (strValue.Equals(Strings.yes) || strValue.Equals(Strings.no)) return true;
break;
case 8:
case 9:
case 10:
case 11:
if (Utils.TryParseUFloat(strValue, out dummy)) return true;
break;
case 12:
return true;
default:
message = "Invalid index";
return false;
}
message = ParamName(i) + " is invalid";
return false;
}
void CopyContentTo(TestParams prms)
{
prms.ErrorLimitLo = ErrorLimitLo;
prms.ErrorLimitHi = ErrorLimitHi;
prms.EvaluateVolume = EvaluateVolume;
prms.TempWarmLo = TempWarmLo;
prms.TempWarmHi = TempWarmHi;
prms.TempColdLo = TempColdLo;
prms.TempColdHi = TempColdHi;
prms.FlowMeasuredAtHiTempPipe = FlowMeasuredAtHiTempPipe;
prms.DeltaTempWarm = DeltaTempWarm;
prms.DeltaTempCold = DeltaTempCold;
prms.ChangeInTimeWarm = ChangeInTimeWarm;
prms.ChangeInTimeCold = ChangeInTimeCold;
prms.Prompt = Prompt;
}
public IParamsProvider Clone()
{
TestParams pars = new TestParams();
CopyContentTo(pars);
return pars;
}
public override void UpdateFromDbEntity(ComponentTest dbEntity)
{
if (dbEntity == null) return;
try
{
TestParams tmp = Serializer.Deserialize(new StringReader(dbEntity.Parameters)) as TestParams;
testParamsEntity = dbEntity;
componentName = dbEntity.CmpntName;
test = dbEntity.Test;
if (tmp != null) tmp.CopyContentTo(this);
}
catch
{
}
}
/// <summary>
/// Parameterless constructor initializes the parameters
/// </summary>
public TestParams()
{
}
public TestParams(bool initialize)
{
if (initialize) InitializeAll();
}
public TestParams(ComponentTest testParamsEntity, string componentName, Test test)
{
this.testParamsEntity = testParamsEntity;
this.componentName = componentName;
this.test = test;
}
}
}

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///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using log4net;
using Common;
using Config.Entities;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.Single
{
public class Component : ComponentBase, GenericDevices.ITestMethod
{
private static readonly ILog log = LogManager.GetLogger(typeof(Component));
public override string ToString() { return string.Format("{0}({1})", ClassName, Cfg.ToString(-1)); }
public bool CanTest(MetersKind meters) { return meters == MetersKind.Single; }
public bool DoTransitions() { return true; }
public bool CheckDeviceCaps(Test test, OutputPath devices, out string message)
{
return StandingStartMassCollectionAdvanceSeq.CheckDeviceCaps(test, devices, out message);
}
public Component() { }
///
public Component(Generic.IComponentCfg cfg)
: base(cfg)
{
log.Warn(this.ToString());
}
///
public override void Initialize() { }
public IList<Event> Execute(Test test, int repetNr, bool isLastRepetition)
{
return (new StandingStartMassCollectionAdvanceSeq()).Execute(test, repetNr, isLastRepetition, false, null, DebugLevel);
}
}
}

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///
/// Copyright (c) 2013-2016 Sensus Metering Systems
///
using System.Collections.Generic;
using TBF.Rig.Generic;
using TBF.Rig.Configs.NameOnly;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvance.Single
{
public class Factory : IComponentFactory
{
public string ClassName { get { return this.GetType().Namespace.Substring(8); } }
public override string ToString() { return ClassName; }
public IComponent DummyComponent() { return new Component(); }
public IComponent GetComponent(IComponentCfg cfg, IList<IComponent> components) { return new Component(cfg); }
public IComponentCfg DefaultConfig() { return new TestMethodCfg(this.GetType().Namespace.Substring(20).Replace(".Single", ""), this); }
public IComponentCfg CmpntCfgFromCmpntEntity(Config.Entities.Component component)
{
return ComponentCfgBase.CreateFromDbEntity(TestMethodCfg.Serializer, component, this);
}
}
}

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///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using log4net;
using Common;
using Config.Entities;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvanceCollect.Single
{
public class Component : ComponentBase, GenericDevices.ITestMethod
{
private static readonly ILog log = LogManager.GetLogger(typeof(Component));
public override string ToString() { return string.Format("{0}({1})", ClassName, Cfg.ToString(-1)); }
public bool CanTest(MetersKind meters) { return meters == MetersKind.Single; }
public bool DoTransitions() { return true; }
public bool CheckDeviceCaps(Test test, OutputPath devices, out string message)
{
return StandingStartMassCollectionAdvanceCollectSeq.CheckDeviceCaps(test, devices, out message);
}
public Component() { }
///
public Component(Generic.IComponentCfg cfg)
: base(cfg)
{
log.Warn(this.ToString());
}
///
public override void Initialize() { }
public IList<Event> Execute(Test test, int repetNr, bool isLastRepetition)
{
return (new StandingStartMassCollectionAdvanceCollectSeq()).Execute(test, repetNr, isLastRepetition, DebugLevel);
}
}
}

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///
/// Copyright (c) 2013-2016 Sensus Metering Systems
///
using System.Collections.Generic;
using TBF.Rig.Generic;
using TBF.Rig.Configs.NameOnly;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvanceCollect.Single
{
public class Factory : IComponentFactory
{
public string ClassName { get { return this.GetType().Namespace.Substring(8); } }
public override string ToString() { return ClassName; }
public IComponent DummyComponent() { return new Component(); }
public IComponent GetComponent(IComponentCfg cfg, IList<IComponent> components) { return new Component(cfg); }
public IComponentCfg DefaultConfig() { return new TestMethodCfg(this.GetType().Namespace.Substring(20).Replace(".Single", ""), this); }
public IComponentCfg CmpntCfgFromCmpntEntity(Config.Entities.Component component)
{
return ComponentCfgBase.CreateFromDbEntity(TestMethodCfg.Serializer, component, this);
}
}
}

View File

@ -0,0 +1,396 @@
///
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.IO;
using System.Threading;
using log4net;
using Common;
using Config.Entities;
using TBF.Boxes;
using TBF.Resources;
using TBF.Rig.GenericDevices;
using TBF.UiBridge;
namespace TBF.Rig.TestMethods.StandingStartMassCollectionAdvanceCollect
{
public class StandingStartMassCollectionAdvanceCollectSeq : Sequences.SequenceBase
{
private static readonly ILog log = LogManager.GetLogger(typeof(StandingStartMassCollectionAdvanceCollectSeq));
/// <summary>
/// Check capabilities of devces in the output path required for this test method
/// </summary>
/// <param name="devices">Devices</param>
/// <returns>true when capabilities of devices are OK</returns>
public static bool CheckDeviceCaps(Config.Entities.Test test, OutputPath devices, out string message)
{
if (!(StateMachine.ControlBoardMain is ControlBoard.Papouch.PapouchCB) &&
!(StateMachine.ControlBoardMain is ControlBoard.Uni.UniCB))
{
/// Control board does not support this method
message = string.Format("{0}: {1}", test.Name, Strings.Test_bench_does_not_suport_selected_test_method);
return false;
}
if (!(devices.Scale is IScale))
{
/// Scale is missing
message = string.Format("{0}: {1}", test.Name, Strings.Missing_a_scale);
return false;
}
if (test.Volume > devices.Scale.Capacity * Constants.TankFullFactor)
{
/// Scale capacity is not sufficient
message = string.Format("{0}: {1}", test.Name, Strings.Test_volume_exceeds_the_scale_capacity);
return false;
}
if (!(devices.Diverter is IDiverter))
{
/// Diverter is missing
message = string.Format("{0}: {1}", test.Name, Strings.Missing_a_diverter);
return false;
}
if (!(devices.FlowMeter is IFlowMeter))
{
/// Flow meter is missing
message = string.Format("{0}: {1}", test.Name, Strings.Missing_a_flow_meter);
return false;
}
if (!(devices.RegValve is GenericDevices.IRegValve))
{
/// Regulation valve is missing
message = string.Format("{0}: {1}", test.Name, Strings.Missing_a_regulation_valve);
return false;
}
message = string.Empty;
return true;
}
/// <summary>
/// Fixed start mass collection method sequence
/// </summary>
/// <param name="test">Test entity</param>
/// <returns>
/// 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
/// </returns>
public IList<Event> Execute(Config.Entities.Test test, int repetitionNr, bool isLastRepetition,
Common.DebugMode debugLevel)
{
ControlBoard.IControlBoard cBrd = StateMachine.ControlBoardMain;
IScale scale = cBrd.Devices.Scale as IScale;
if ((outPath.FlowMeter is IFlowMeterSingle) &&
(outPath.FlowMeter as IFlowMeterSingle).GetRange(test.TempLimLo, test.TempLimHi) == -1)
{
Bridge.OnError(this, Strings.Flow_meter_temperature_range_does_not_fit_this_test_conditions);
return new List<Event> { Event.ConfigurationError }; /// or Event.UiCmdStop ???
}
IList<Event> e; /// Events from currently running operations
int waterMetersCount = Math.Min(BenchInfo.WaterMetersCount, sensPath.RegisterReaders.Length);
DateTimeBox timeStampStart = new DateTimeBox();
DateTimeBox timeStampEnd = new DateTimeBox();
FloatBox startSwitchTime = new FloatBox();
FloatBox stopSwitchTime = new FloatBox();
int tMass1 = 0;
int tMass2 = 0;
checkUiOp = new Operations.CheckUIOp(true); /// Runs in more then one state
processDataLoggingOp = new TBF.Rig.Operations.ProcessDataLoggingOp(processDataLogger, this, false);
log.DebugFormat("WaitRunDevsRunOps - initialisation");
e = StateMachine.WaitRunDevsRunOps();
log.DebugFormat("WaitRunDevsRunOps - initialisation done");
if (cBrd is ControlBoard.Uni.UniCB)
{
int[] filters = new int[] { 0, 0, 0, 0, 0, 0, 0, 0 };
if (sensPath != null && sensPath.RegisterReaders != null)
{
foreach (var rr in sensPath.RegisterReaders)
{
IRegReaderPulses rrPls = rr as IRegReaderPulses;
if (rrPls != null && rrPls.Position >= 1 && rrPls.Position <= 8)
{
filters[rrPls.Position - 1] = rrPls.Filter;
}
}
}
(cBrd as ControlBoard.Uni.UniCB).SetFiltersPidShortPulses(filters, outPath.PidCoef, test.ShortPulses);
}
log.DebugFormat("ControlBoard.Uni.UniCB - initialisation done");
Event retVal = Event.Done;
int totalPulses = Convert.ToInt32(test.Volume / outPath.FlowMeter.LtrPerPulse);
///============================================================================================
/// Start the test, initialize test results
Bridge.OnTestSelected(this, new TestSelectedEventArgs(test, repetitionNr, inPath, benchPath, outPath, sensPath, heatMetersPath));
string testName = Results.Utils.GetTestName(test.Name, test.Repeats, repetitionNr);
log.DebugFormat("Start the test - testName: {0}, test -> name: {1} -> Repeats: {2} -> repetitionNr: {3}", testName, test.Name, test.Repeats, repetitionNr);
IOperation testInProgress = cBrd.StandingStartStopTestOp(test, 2 * totalPulses, Devices.Diverter is TBF.Rig.Uni.Diverter.Diverter);
///
/// Enter water meter begin states and read the start mass at the same time
///
GenericDevices.IHasWMStatesForm dataEntryCmpnt = TbfComponents.FindComponent(StateMachine.Procedure.DataEntry) as GenericDevices.IHasWMStatesForm;
IOperation readStartMassOp = scale.ReadStableMassOp(ref StartMass, test.TimeFlow2Mass, test.MassMethod, test.MassRepeats, test.MassSpread);
log.DebugFormat("Collect process - Enter watermeter end states here");
///
/// Enter watermeter end states here
///
if (dataEntryCmpnt != null)
{
string fileName = string.Format("{0}-{1}-end.bmp", test.Name, repetitionNr); //string.Format("{0}-end.bmp", test.Name);
IValve triggerValve = null;
bool triggerSend = false;
if (dataEntryCmpnt is GenericDevices.IDataEntryForCamera)
{
string[] endImages = new string[sensPath.RegisterReaders.Length];
(dataEntryCmpnt as GenericDevices.IDataEntryForCamera).EndImages = endImages;
}
Bridge.OnActivity(this, Strings.Enter_water_meter_data);
State state = State.Create(string.Format("{0}({1}) : Entering the end-state", test.Method, test.Name));
{
state.AddOperation(dataEntryCmpnt.ShowTestEndFormOp(sensPath.RegisterReaders,
0, test.ErrLimLo + test.Uncertainty, test.ErrLimHi - test.Uncertainty));
}
state.AddOperation(checkUiOp)
//.AddOperations(readTempPressOps)
.AddOperation(testInProgress)
.EnterState();
do {
e = StateMachine.WaitRunDevsRunOps();
if (TestAndLogUiCmdStop(test, e)) { retVal = Event.UiCmdStop; goto stopTest; }
}
while (!e.Contains(Event.ModelessFormClosed));
{
for (int i = 0; i < waterMetersCount; i++)
{
GenericDevices.IRegReader rr = sensPath.RegisterReaders[i];
if (rr is Rig.RegisterReaders.StandingStartStop.RegisterReader)
(rr as Rig.RegisterReaders.StandingStartStop.RegisterReader).EndWMState = dataEntryCmpnt.WMEndState(i);
if (rr is Rig.Network.Camera.RoiForFixedStart.Roi)
(rr as Rig.Network.Camera.RoiForFixedStart.Roi).EndWMState = dataEntryCmpnt.WMEndState(i);
if (rr is Rig.Network.Camera.RoiForFixedStartKeyence.Roi)
{
(rr as Rig.Network.Camera.RoiForFixedStartKeyence.Roi).EndWMState =
dataEntryCmpnt.WMEndState(i);
log.DebugFormat(" StandingStartMassCollectionAdvanceSeq.cs - EndWMState [{0}] -> RoiForFixedStartKeyence.Roi",dataEntryCmpnt.WMEndState(i));
}
}
}
if (dataEntryCmpnt is IDataEntryForCamera && (dataEntryCmpnt as IDataEntryForCamera).SaveImages)
{
log.Debug("Save images EndWMState...");
/// 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++)
{
var roi = sensPath.RegisterReaders[i] as IRegReaderStillCamera;
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);
string destFName = string.IsNullOrEmpty((dataEntryCmpnt as IDataEntryForCamera).TestEndImgName(i, testName))
? fileName : (dataEntryCmpnt as IDataEntryForCamera).TestEndImgName(i, testName);
File.Copy(Path.Combine(srcDir, fileName), Path.Combine(destDir, destFName), true);
log.DebugFormat("Save images sourceFile: {0}, destFile: {1} ",Path.Combine(srcDir, fileName), Path.Combine(destDir, destFName));
}
}
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);
bool stopCycle = false;
if (tstRslt != null)
{
Results.Utils.GetCounterStates(tstRslt, Program.LocalSettings.Counters);
/// Raw data
UpdateTempPressDensAmb(tstRslt);
tstRslt.MethodClass = TbfComponents.FindComponent(test.Method).ClassName;
tstRslt.StartTime = TestStartTime;
tstRslt.EndTime = TestEndTime;
//tstRslt.FlowSetTime = flowSetTime;
tstRslt.TestTime = Math.Max(1.0, DateTimeBox.DurationSec(timeStampStart, timeStampEnd)); /// Min. 1s to prevent division by zero
tstRslt.PulsesMaster = Convert.ToDouble(cBrd.RefPulses); /// Pulses of the master flow meter (test total)
tstRslt.MassStartRaw = StartMass.Val;
tstRslt.MassEndRaw = EndMass.Val;
tstRslt.TimeBtwnMassMsrmnts = tMass2 - tMass1;
/// Corrected values
//tstRslt.MassStart = massStart;
// tstRslt.MassEnd = massEnd;
// tstRslt.MassOfEvapWater = massOfEvaporatedWater;
/// Main results
//tstRslt.VolumeCTV = volumeCTV; /// [l] 1000.0f is because density is in [kg/m3]
//tstRslt.Flow = 3.6 * volumeCTV / tstRslt.TestTime; /// [m3/h]
if (cBrd is ControlBoard.Uni.UniCB)
{
/// Test bench with Uni control board and q reference flow meter
tstRslt.ConstMasterRaw = outPath.FlowMeter.LtrPerPulse;
tstRslt.ConstMasterCorr = outPath.FlowMeter.LtrPerPulseCorrected(tstRslt.Flow, tstRslt.TempDownMean);
tstRslt.VolumeMaster = tstRslt.ConstMasterRaw * tstRslt.PulsesMaster; /// [l] volume from the master flow meter
tstRslt.ConstMaster = (tstRslt.VolumeMaster != 0) ? (tstRslt.ConstMasterRaw * tstRslt.VolumeCTV / tstRslt.VolumeMaster) : tstRslt.ConstMasterCorr;
}
else
{
/// Test bench with Papouch control board without reference flow meter
//tstRslt.VolumeMaster = volumeCTV; /// [l] volume from the master flow meter
tstRslt.ConstMasterRaw = 1; /// Uncorrected master flowmeter coefficient
tstRslt.ConstMasterCorr = 1; /// Corrected master pulses per liter
tstRslt.ConstMaster = 1;
}
tstRslt.ErrorMaster = 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 = startSwitchTime.Val;
tstRslt.DiverterEnd = stopSwitchTime.Val;
long infoFlags = 0;
tstRslt.ErrorFlags = (ErrorFlagsComp != null) ? ErrorFlagsComp.GetErrorFlags(tstRslt, false, true, startSwitchTime.Val, stopSwitchTime.Val, out infoFlags, out stopCycle) : 0;
tstRslt.InfoFlags = infoFlags;
{
///
/// 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(testName, i, Common.CompoundMeterId.Single);
GenericDevices.IRegReader regReader = sensPath.RegisterReaders[i];
if (meterRslt != null && regReader != null)
{
meterRslt.RegReaderType = (int)regReader.RegisterReaderType;
meterRslt.PulsesPerLiter = regReader.PulsesPerLtr;
meterRslt.VolumeStart = regReader.BeginWMState;
meterRslt.VolumeEnd = regReader.EndWMState;
meterRslt.VolumeMeter = Math.Abs(meterRslt.VolumeEnd - meterRslt.VolumeStart);
meterRslt.VolumeRef = tstRslt.VolumeCTV; /// liter
meterRslt.PulsesMeter = meterRslt.VolumeMeter;
meterRslt.PulsesMaster = tstRslt.PulsesMaster;
meterRslt.TestTime = tstRslt.TestTime;
meterRslt.Error = 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);
meterRslt.TestDone = true;
tstRslt.TestDone = true;
}
}
}
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.RegValve != null ? outPath.RegValve.Name : string.Empty,
outPath.Diverter != null ? outPath.Diverter.Name : string.Empty));
/// Update water meter error flags
if (ErrorFlagsComp != null)
{
if (BatchRslts.Batch != null && BatchRslts.Batch.WaterMeters != null)
{
for (int i = 0; i < BatchRslts.WMPositionsCount; i++)
{
if (BatchRslts.Batch.WaterMeters[i] != null && !BatchRslts.Batch.WaterMeters[i].Disabled)
{
long wmInfoFlags;
BatchRslts.Batch.WaterMeters[i].ErrorFlags = ErrorFlagsComp.GetWMtrErrorFlags(BatchRslts.Batch.WaterMeters[i].MeterTestRslts, out wmInfoFlags);
BatchRslts.Batch.WaterMeters[i].InfoFlags = wmInfoFlags;
}
}
}
}
/// Update results
Bridge.OnTestCompleted(this, new TestCompletedEventArgs(testName, tstRslt));
}
Bridge.OnTestProgress(this, new TestProgressEventArgs(test, repetitionNr, Progress.TransitionAfter));
/// Append the results to the CSV-file
allResults.Info(TestResult2CsvLine(testName, test.Part));
if (stopCycle) retVal = Event.ErrorFlagsStop;
stopTest:
StopRecordingStatistics();
return new List<Event> { retVal };
}
}
}

View File

@ -1314,6 +1314,24 @@
<Compile Include="Rig\TestMethods\S640Communication\S640Start.cs" />
<Compile Include="Rig\TestMethods\S640Communication\S640StartCfg.cs" />
<Compile Include="Rig\TestMethods\S640Communication\S640StartFactory.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvanceCollect\Single\Component.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvanceCollect\Single\Factory.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvanceCollect\StandingStartMassCollectionAdvanceCollectSeq.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\Compound\Component.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\Compound\Factory.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\Component.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\Factory.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\TestMethodCfg.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\TestMethodCfgCtrl.cs">
<SubType>UserControl</SubType>
</Compile>
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\TestMethodCfgCtrl.designer.cs">
<DependentUpon>TestMethodCfgCtrl.cs</DependentUpon>
</Compile>
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\TestParams.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\Single\Component.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\Single\Factory.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollectionAdvance\StandingStartMassCollectionAdvanceSeq.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollection\Compound\Component.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollection\Compound\Factory.cs" />
<Compile Include="Rig\TestMethods\StandingStartMassCollection\HeatMeters\Component.cs" />
@ -3038,6 +3056,9 @@
<EmbeddedResource Include="Rig\TestMethods\S640Communication\S640CommForm.resx">
<DependentUpon>S640CommForm.cs</DependentUpon>
</EmbeddedResource>
<EmbeddedResource Include="Rig\TestMethods\StandingStartMassCollectionAdvance\HeatMeters\TestMethodCfgCtrl.resx">
<DependentUpon>TestMethodCfgCtrl.cs</DependentUpon>
</EmbeddedResource>
<EmbeddedResource Include="Rig\TestMethods\StandingStartMassCollection\HeatMeters\TestMethodCfgCtrl.resx">
<DependentUpon>TestMethodCfgCtrl.cs</DependentUpon>
</EmbeddedResource>