CounterCreationDataCollection Třída
Definice
Důležité
Některé informace platí pro předběžně vydaný produkt, který se může zásadně změnit, než ho výrobce nebo autor vydá. Microsoft neposkytuje žádné záruky, výslovné ani předpokládané, týkající se zde uváděných informací.
Poskytuje kolekci objektů se silnými typy CounterCreationData .
public ref class CounterCreationDataCollection : System::Collections::CollectionBase
public class CounterCreationDataCollection : System.Collections.CollectionBase
[System.Serializable]
public class CounterCreationDataCollection : System.Collections.CollectionBase
type CounterCreationDataCollection = class
inherit CollectionBase
[<System.Serializable>]
type CounterCreationDataCollection = class
inherit CollectionBase
Public Class CounterCreationDataCollection
Inherits CollectionBase
- Dědičnost
- Atributy
Příklady
Následující příklad ukazuje, jak použít CounterCreationDataCollection třídu . Příklad vytvoří novou instanci třídy a používá několik metod k přidání příkazů do kolekce, vrácení jejich indexu a přidání nebo odebrání atributů v určitém bodu indexu.
#using <System.dll>
using namespace System;
using namespace System::Collections;
using namespace System::Collections::Specialized;
using namespace System::Diagnostics;
// Output information about the counter sample.
void OutputSample( CounterSample s )
{
Console::WriteLine( "\r\n+++++++++++" );
Console::WriteLine( "Sample values - \r\n" );
Console::WriteLine( " BaseValue = {0}", s.BaseValue );
Console::WriteLine( " CounterFrequency = {0}", s.CounterFrequency );
Console::WriteLine( " CounterTimeStamp = {0}", s.CounterTimeStamp );
Console::WriteLine( " CounterType = {0}", s.CounterType );
Console::WriteLine( " RawValue = {0}", s.RawValue );
Console::WriteLine( " SystemFrequency = {0}", s.SystemFrequency );
Console::WriteLine( " TimeStamp = {0}", s.TimeStamp );
Console::WriteLine( " TimeStamp100nSec = {0}", s.TimeStamp100nSec );
Console::WriteLine( "++++++++++++++++++++++" );
}
//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++
// Description - This counter type shows how many items are processed, on average,
// during an operation. Counters of this type display a ratio of the items
// processed (such as bytes sent) to the number of operations completed. The
// ratio is calculated by comparing the number of items processed during the
// last interval to the number of operations completed during the last interval.
// Generic type - Average
// Formula - (N1 - N0) / (D1 - D0), where the numerator (N) represents the number
// of items processed during the last sample interval and the denominator (D)
// represents the number of operations completed during the last two sample
// intervals.
// Average (Nx - N0) / (Dx - D0)
// Example PhysicalDisk\ Avg. Disk Bytes/Transfer
//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++
float MyComputeCounterValue( CounterSample s0, CounterSample s1 )
{
float numerator = (float)s1.RawValue - (float)s0.RawValue;
float denomenator = (float)s1.BaseValue - (float)s0.BaseValue;
float counterValue = numerator / denomenator;
return counterValue;
}
bool SetupCategory()
{
if ( !PerformanceCounterCategory::Exists( "AverageCounter64SampleCategory" ) )
{
CounterCreationDataCollection^ CCDC = gcnew CounterCreationDataCollection;
// Add the counter.
CounterCreationData^ averageCount64 = gcnew CounterCreationData;
averageCount64->CounterType = PerformanceCounterType::AverageCount64;
averageCount64->CounterName = "AverageCounter64Sample";
CCDC->Add( averageCount64 );
// Add the base counter.
CounterCreationData^ averageCount64Base = gcnew CounterCreationData;
averageCount64Base->CounterType = PerformanceCounterType::AverageBase;
averageCount64Base->CounterName = "AverageCounter64SampleBase";
CCDC->Add( averageCount64Base );
// Create the category.
PerformanceCounterCategory::Create( "AverageCounter64SampleCategory", "Demonstrates usage of the AverageCounter64 performance counter type.", CCDC );
return (true);
}
else
{
Console::WriteLine( "Category exists - AverageCounter64SampleCategory" );
return (false);
}
}
void CreateCounters( PerformanceCounter^% PC, PerformanceCounter^% BPC )
{
// Create the counters.
PC = gcnew PerformanceCounter( "AverageCounter64SampleCategory","AverageCounter64Sample",false );
BPC = gcnew PerformanceCounter( "AverageCounter64SampleCategory","AverageCounter64SampleBase",false );
PC->RawValue = 0;
BPC->RawValue = 0;
}
void CollectSamples( ArrayList^ samplesList, PerformanceCounter^ PC, PerformanceCounter^ BPC )
{
Random^ r = gcnew Random( DateTime::Now.Millisecond );
// Loop for the samples.
for ( int j = 0; j < 100; j++ )
{
int value = r->Next( 1, 10 );
Console::Write( "{0} = {1}", j, value );
PC->IncrementBy( value );
BPC->Increment();
if ( (j % 10) == 9 )
{
OutputSample( PC->NextSample() );
samplesList->Add( PC->NextSample() );
}
else
Console::WriteLine();
System::Threading::Thread::Sleep( 50 );
}
}
void CalculateResults( ArrayList^ samplesList )
{
for ( int i = 0; i < (samplesList->Count - 1); i++ )
{
// Output the sample.
OutputSample( *safe_cast<CounterSample^>(samplesList[ i ]) );
OutputSample( *safe_cast<CounterSample^>(samplesList[ i + 1 ]) );
// Use .NET to calculate the counter value.
Console::WriteLine( ".NET computed counter value = {0}", CounterSampleCalculator::ComputeCounterValue( *safe_cast<CounterSample^>(samplesList[ i ]), *safe_cast<CounterSample^>(samplesList[ i + 1 ]) ) );
// Calculate the counter value manually.
Console::WriteLine( "My computed counter value = {0}", MyComputeCounterValue( *safe_cast<CounterSample^>(samplesList[ i ]), *safe_cast<CounterSample^>(samplesList[ i + 1 ]) ) );
}
}
int main()
{
ArrayList^ samplesList = gcnew ArrayList;
PerformanceCounter^ PC;
PerformanceCounter^ BPC;
SetupCategory();
CreateCounters( PC, BPC );
CollectSamples( samplesList, PC, BPC );
CalculateResults( samplesList );
}
using System;
using System.Collections;
using System.Collections.Specialized;
using System.Diagnostics;
public class App
{
private static PerformanceCounter avgCounter64Sample;
private static PerformanceCounter avgCounter64SampleBase;
public static void Main()
{
ArrayList samplesList = new ArrayList();
// If the category does not exist, create the category and exit.
// Performance counters should not be created and immediately used.
// There is a latency time to enable the counters, they should be created
// prior to executing the application that uses the counters.
// Execute this sample a second time to use the category.
if (SetupCategory())
return;
CreateCounters();
CollectSamples(samplesList);
CalculateResults(samplesList);
}
private static bool SetupCategory()
{
if ( !PerformanceCounterCategory.Exists("AverageCounter64SampleCategory") )
{
CounterCreationDataCollection counterDataCollection = new CounterCreationDataCollection();
// Add the counter.
CounterCreationData averageCount64 = new CounterCreationData();
averageCount64.CounterType = PerformanceCounterType.AverageCount64;
averageCount64.CounterName = "AverageCounter64Sample";
counterDataCollection.Add(averageCount64);
// Add the base counter.
CounterCreationData averageCount64Base = new CounterCreationData();
averageCount64Base.CounterType = PerformanceCounterType.AverageBase;
averageCount64Base.CounterName = "AverageCounter64SampleBase";
counterDataCollection.Add(averageCount64Base);
// Create the category.
PerformanceCounterCategory.Create("AverageCounter64SampleCategory",
"Demonstrates usage of the AverageCounter64 performance counter type.",
PerformanceCounterCategoryType.SingleInstance, counterDataCollection);
return(true);
}
else
{
Console.WriteLine("Category exists - AverageCounter64SampleCategory");
return(false);
}
}
private static void CreateCounters()
{
// Create the counters.
avgCounter64Sample = new PerformanceCounter("AverageCounter64SampleCategory",
"AverageCounter64Sample",
false);
avgCounter64SampleBase = new PerformanceCounter("AverageCounter64SampleCategory",
"AverageCounter64SampleBase",
false);
avgCounter64Sample.RawValue=0;
avgCounter64SampleBase.RawValue=0;
}
private static void CollectSamples(ArrayList samplesList)
{
Random r = new Random( DateTime.Now.Millisecond );
// Loop for the samples.
for (int j = 0; j < 100; j++)
{
int value = r.Next(1, 10);
Console.Write(j + " = " + value);
avgCounter64Sample.IncrementBy(value);
avgCounter64SampleBase.Increment();
if ((j % 10) == 9)
{
OutputSample(avgCounter64Sample.NextSample());
samplesList.Add( avgCounter64Sample.NextSample() );
}
else
{
Console.WriteLine();
}
System.Threading.Thread.Sleep(50);
}
}
private static void CalculateResults(ArrayList samplesList)
{
for(int i = 0; i < (samplesList.Count - 1); i++)
{
// Output the sample.
OutputSample( (CounterSample)samplesList[i] );
OutputSample( (CounterSample)samplesList[i+1] );
// Use .NET to calculate the counter value.
Console.WriteLine(".NET computed counter value = " +
CounterSampleCalculator.ComputeCounterValue((CounterSample)samplesList[i],
(CounterSample)samplesList[i+1]) );
// Calculate the counter value manually.
Console.WriteLine("My computed counter value = " +
MyComputeCounterValue((CounterSample)samplesList[i],
(CounterSample)samplesList[i+1]) );
}
}
//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++
// Description - This counter type shows how many items are processed, on average,
// during an operation. Counters of this type display a ratio of the items
// processed (such as bytes sent) to the number of operations completed. The
// ratio is calculated by comparing the number of items processed during the
// last interval to the number of operations completed during the last interval.
// Generic type - Average
// Formula - (N1 - N0) / (D1 - D0), where the numerator (N) represents the number
// of items processed during the last sample interval and the denominator (D)
// represents the number of operations completed during the last two sample
// intervals.
// Average (Nx - N0) / (Dx - D0)
// Example PhysicalDisk\ Avg. Disk Bytes/Transfer
//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++
private static Single MyComputeCounterValue(CounterSample s0, CounterSample s1)
{
Single numerator = (Single)s1.RawValue - (Single)s0.RawValue;
Single denomenator = (Single)s1.BaseValue - (Single)s0.BaseValue;
Single counterValue = numerator / denomenator;
return(counterValue);
}
// Output information about the counter sample.
private static void OutputSample(CounterSample s)
{
Console.WriteLine("\r\n+++++++++++");
Console.WriteLine("Sample values - \r\n");
Console.WriteLine(" BaseValue = " + s.BaseValue);
Console.WriteLine(" CounterFrequency = " + s.CounterFrequency);
Console.WriteLine(" CounterTimeStamp = " + s.CounterTimeStamp);
Console.WriteLine(" CounterType = " + s.CounterType);
Console.WriteLine(" RawValue = " + s.RawValue);
Console.WriteLine(" SystemFrequency = " + s.SystemFrequency);
Console.WriteLine(" TimeStamp = " + s.TimeStamp);
Console.WriteLine(" TimeStamp100nSec = " + s.TimeStamp100nSec);
Console.WriteLine("++++++++++++++++++++++");
}
}
Imports System.Collections
Imports System.Collections.Specialized
Imports System.Diagnostics
_
Public Class App
Private Shared avgCounter64Sample As PerformanceCounter
Private Shared avgCounter64SampleBase As PerformanceCounter
Public Shared Sub Main()
Dim samplesList As New ArrayList()
'If the category does not exist, create the category and exit.
'Performance counters should not be created and immediately used.
'There is a latency time to enable the counters, they should be created
'prior to executing the application that uses the counters.
'Execute this sample a second time to use the counters.
If Not (SetupCategory()) Then
CreateCounters()
CollectSamples(samplesList)
CalculateResults(samplesList)
End If
End Sub
Private Shared Function SetupCategory() As Boolean
If Not PerformanceCounterCategory.Exists("AverageCounter64SampleCategory") Then
Dim counterDataCollection As New CounterCreationDataCollection()
' Add the counter.
Dim averageCount64 As New CounterCreationData()
averageCount64.CounterType = PerformanceCounterType.AverageCount64
averageCount64.CounterName = "AverageCounter64Sample"
counterDataCollection.Add(averageCount64)
' Add the base counter.
Dim averageCount64Base As New CounterCreationData()
averageCount64Base.CounterType = PerformanceCounterType.AverageBase
averageCount64Base.CounterName = "AverageCounter64SampleBase"
counterDataCollection.Add(averageCount64Base)
' Create the category.
PerformanceCounterCategory.Create("AverageCounter64SampleCategory", _
"Demonstrates usage of the AverageCounter64 performance counter type.", _
PerformanceCounterCategoryType.SingleInstance, counterDataCollection)
Return True
Else
Console.WriteLine("Category exists - AverageCounter64SampleCategory")
Return False
End If
End Function 'SetupCategory
Private Shared Sub CreateCounters()
' Create the counters.
avgCounter64Sample = New PerformanceCounter("AverageCounter64SampleCategory", "AverageCounter64Sample", False)
avgCounter64SampleBase = New PerformanceCounter("AverageCounter64SampleCategory", "AverageCounter64SampleBase", False)
avgCounter64Sample.RawValue = 0
avgCounter64SampleBase.RawValue = 0
End Sub
Private Shared Sub CollectSamples(ByVal samplesList As ArrayList)
Dim r As New Random(DateTime.Now.Millisecond)
' Loop for the samples.
Dim j As Integer
For j = 0 To 99
Dim value As Integer = r.Next(1, 10)
Console.Write(j.ToString() + " = " + value.ToString())
avgCounter64Sample.IncrementBy(value)
avgCounter64SampleBase.Increment()
If j Mod 10 = 9 Then
OutputSample(avgCounter64Sample.NextSample())
samplesList.Add(avgCounter64Sample.NextSample())
Else
Console.WriteLine()
End If
System.Threading.Thread.Sleep(50)
Next j
End Sub
Private Shared Sub CalculateResults(ByVal samplesList As ArrayList)
Dim i As Integer
For i = 0 To (samplesList.Count - 1) - 1
' Output the sample.
OutputSample(CType(samplesList(i), CounterSample))
OutputSample(CType(samplesList((i + 1)), CounterSample))
' Use .NET to calculate the counter value.
Console.WriteLine(".NET computed counter value = " + CounterSampleCalculator.ComputeCounterValue(CType(samplesList(i), CounterSample), CType(samplesList((i + 1)), CounterSample)).ToString())
' Calculate the counter value manually.
Console.WriteLine("My computed counter value = " + MyComputeCounterValue(CType(samplesList(i), CounterSample), CType(samplesList((i + 1)), CounterSample)).ToString())
Next i
End Sub
'++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++
' Description - This counter type shows how many items are processed, on average,
' during an operation. Counters of this type display a ratio of the items
' processed (such as bytes sent) to the number of operations completed. The
' ratio is calculated by comparing the number of items processed during the
' last interval to the number of operations completed during the last interval.
' Generic type - Average
' Formula - (N1 - N0) / (D1 - D0), where the numerator (N) represents the number
' of items processed during the last sample interval and the denominator (D)
' represents the number of operations completed during the last two sample
' intervals.
' Average (Nx - N0) / (Dx - D0)
' Example PhysicalDisk\ Avg. Disk Bytes/Transfer
'++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++//++++++++
Private Shared Function MyComputeCounterValue(ByVal s0 As CounterSample, ByVal s1 As CounterSample) As [Single]
Dim numerator As [Single] = CType(s1.RawValue, [Single]) - CType(s0.RawValue, [Single])
Dim denomenator As [Single] = CType(s1.BaseValue, [Single]) - CType(s0.BaseValue, [Single])
Dim counterValue As [Single] = numerator / denomenator
Return counterValue
End Function 'MyComputeCounterValue
' Output information about the counter sample.
Private Shared Sub OutputSample(ByVal s As CounterSample)
Console.WriteLine(ControlChars.Lf + ControlChars.Cr + "+++++++++++")
Console.WriteLine("Sample values - " + ControlChars.Lf + ControlChars.Cr)
Console.WriteLine((" BaseValue = " + s.BaseValue.ToString()))
Console.WriteLine((" CounterFrequency = " + s.CounterFrequency.ToString()))
Console.WriteLine((" CounterTimeStamp = " + s.CounterTimeStamp.ToString()))
Console.WriteLine((" CounterType = " + s.CounterType.ToString()))
Console.WriteLine((" RawValue = " + s.RawValue.ToString()))
Console.WriteLine((" SystemFrequency = " + s.SystemFrequency.ToString()))
Console.WriteLine((" TimeStamp = " + s.TimeStamp.ToString()))
Console.WriteLine((" TimeStamp100nSec = " + s.TimeStamp100nSec.ToString()))
Console.WriteLine("++++++++++++++++++++++")
End Sub
End Class
Konstruktory
CounterCreationDataCollection() |
Inicializuje novou instanci CounterCreationDataCollection třídy bez přidružených CounterCreationData instancí. |
CounterCreationDataCollection(CounterCreationData[]) |
Inicializuje novou instanci CounterCreationDataCollection třídy pomocí zadaného CounterCreationData pole instancí. |
CounterCreationDataCollection(CounterCreationDataCollection) |
Inicializuje novou instanci CounterCreationDataCollection třídy pomocí zadané kolekce CounterCreationData instancí. |
Vlastnosti
Capacity |
Získá nebo nastaví počet prvků, které CollectionBase mohou obsahovat. (Zděděno od CollectionBase) |
Count |
Získá počet prvků obsažených CollectionBase v instanci. Tuto vlastnost nelze přepsat. (Zděděno od CollectionBase) |
InnerList |
Získá obsahující ArrayList seznam prvků v CollectionBase instanci. (Zděděno od CollectionBase) |
Item[Int32] |
Indexuje kolekci CounterCreationData . |
List |
Získá obsahující IList seznam prvků v CollectionBase instanci. (Zděděno od CollectionBase) |
Metody
Add(CounterCreationData) |
Přidá instanci CounterCreationData třídy do kolekce. |
AddRange(CounterCreationData[]) |
Přidá zadané pole CounterCreationData instancí do kolekce. |
AddRange(CounterCreationDataCollection) |
Přidá zadanou kolekci CounterCreationData instancí do kolekce. |
Clear() |
Odebere z instance všechny objekty CollectionBase . Tuto metodu nelze přepsat. (Zděděno od CollectionBase) |
Contains(CounterCreationData) |
Určuje, zda CounterCreationData v kolekci existuje instance. |
CopyTo(CounterCreationData[], Int32) |
Zkopíruje prvky CounterCreationData do pole počínaje zadaným indexem pole. |
Equals(Object) |
Určí, zda se zadaný objekt rovná aktuálnímu objektu. (Zděděno od Object) |
GetEnumerator() |
Vrátí enumerátor, který iteruje prostřednictvím CollectionBase instance. (Zděděno od CollectionBase) |
GetHashCode() |
Slouží jako výchozí hashovací funkce. (Zděděno od Object) |
GetType() |
Type Získá z aktuální instance. (Zděděno od Object) |
IndexOf(CounterCreationData) |
Vrátí index objektu CounterCreationData v kolekci. |
Insert(Int32, CounterCreationData) |
Vloží CounterCreationData objekt do kolekce v zadaném indexu. |
MemberwiseClone() |
Vytvoří mělkou kopii aktuálního Objectsouboru . (Zděděno od Object) |
OnClear() |
Provádí další vlastní procesy při vymazání obsahu CollectionBase instance. (Zděděno od CollectionBase) |
OnClearComplete() |
Provádí další vlastní procesy po vymazání obsahu CollectionBase instance. (Zděděno od CollectionBase) |
OnInsert(Int32, Object) |
Toto rozhraní API podporuje produktovou infrastrukturu a není určené k použití přímo z uživatelského kódu. Provádí další vlastní procesy před vložením nové položky dat do kolekce. |
OnInsert(Int32, Object) |
Provádí další vlastní procesy před vložením nového prvku do CollectionBase instance. (Zděděno od CollectionBase) |
OnInsertComplete(Int32, Object) |
Provádí další vlastní procesy po vložení nového prvku do CollectionBase instance. (Zděděno od CollectionBase) |
OnRemove(Int32, Object) |
Provádí další vlastní procesy při odebírání prvku z CollectionBase instance. (Zděděno od CollectionBase) |
OnRemoveComplete(Int32, Object) |
Provádí další vlastní procesy po odebrání prvku z CollectionBase instance. (Zděděno od CollectionBase) |
OnSet(Int32, Object, Object) |
Před nastavením hodnoty v CollectionBase instanci provede další vlastní procesy. (Zděděno od CollectionBase) |
OnSetComplete(Int32, Object, Object) |
Provádí další vlastní procesy po nastavení hodnoty v CollectionBase instanci. (Zděděno od CollectionBase) |
OnValidate(Object) |
Zkontroluje zadaný objekt a určí, zda se jedná o platný CounterCreationData typ. |
OnValidate(Object) |
Provádí další vlastní procesy při ověřování hodnoty. (Zděděno od CollectionBase) |
Remove(CounterCreationData) |
Odebere CounterCreationData objekt z kolekce. |
RemoveAt(Int32) |
Odebere prvek v zadaném indexu CollectionBase instance. Tuto metodu nelze přepisovat. (Zděděno od CollectionBase) |
ToString() |
Vrátí řetězec, který představuje aktuální objekt. (Zděděno od Object) |
Explicitní implementace rozhraní
ICollection.CopyTo(Array, Int32) |
Zkopíruje celek CollectionBase do kompatibilního jednorozměrného Arrayobjektu počínaje zadaným indexem cílového pole. (Zděděno od CollectionBase) |
ICollection.IsSynchronized |
Získá hodnotu označující, zda přístup k objektu CollectionBase je synchronizován (bezpečný pro přístup z více vláken). (Zděděno od CollectionBase) |
ICollection.SyncRoot |
Získá objekt, který lze použít k synchronizaci přístupu k .CollectionBase (Zděděno od CollectionBase) |
IList.Add(Object) |
Přidá objekt na konec objektu CollectionBase. (Zděděno od CollectionBase) |
IList.Contains(Object) |
Určuje, zda obsahuje CollectionBase určitý prvek. (Zděděno od CollectionBase) |
IList.IndexOf(Object) |
Vyhledá zadaný Object a vrátí index od nuly prvního výskytu v rámci celého CollectionBaseobjektu . (Zděděno od CollectionBase) |
IList.Insert(Int32, Object) |
Vloží prvek do objektu CollectionBase v zadaném indexu. (Zděděno od CollectionBase) |
IList.IsFixedSize |
Získá hodnotu označující, zda CollectionBase má pevnou velikost. (Zděděno od CollectionBase) |
IList.IsReadOnly |
Získá hodnotu, která určuje, zda je CollectionBase určena jen pro čtení. (Zděděno od CollectionBase) |
IList.Item[Int32] |
Získá nebo nastaví prvek u zadaného indexu. (Zděděno od CollectionBase) |
IList.Remove(Object) |
Odebere první výskyt konkrétního objektu z objektu CollectionBase. (Zděděno od CollectionBase) |
Metody rozšíření
Cast<TResult>(IEnumerable) |
Přetypuje prvky objektu na IEnumerable zadaný typ. |
OfType<TResult>(IEnumerable) |
Filtruje prvky objektu IEnumerable na základě zadaného typu. |
AsParallel(IEnumerable) |
Umožňuje paralelizaci dotazu. |
AsQueryable(IEnumerable) |
Převede objekt na IEnumerableIQueryable. |