Timer.Dispose Método

Definición

Libera todos los recursos utilizados por la instancia de Timer actual.Releases all resources used by the current instance of Timer.

Sobrecargas

Dispose()

Libera todos los recursos utilizados por la instancia de Timer actual.Releases all resources used by the current instance of Timer.

Dispose(WaitHandle)

Libera todos los recursos utilizados por la instancia de Timer actual e indica el momento en el que se ha eliminado el temporizador.Releases all resources used by the current instance of Timer and signals when the timer has been disposed of.

Dispose()

Libera todos los recursos utilizados por la instancia de Timer actual.Releases all resources used by the current instance of Timer.

public:
 virtual void Dispose();
public void Dispose ();
abstract member Dispose : unit -> unit
override this.Dispose : unit -> unit
Public Sub Dispose ()

Implementaciones

Ejemplos

En el ejemplo de código siguiente se muestra cómo liberar los recursos mantenidos por un Timer .The following code example shows how to free the resources held by a Timer.

using namespace System;
using namespace System::Threading;

ref class StatusChecker
{
private:
    int invokeCount, maxCount;

public:
    StatusChecker(int count)
    {
        invokeCount  = 0;
        maxCount = count;
    }

    // This method is called by the timer delegate.
    void CheckStatus(Object^ stateInfo)
    {
        AutoResetEvent^ autoEvent = dynamic_cast<AutoResetEvent^>(stateInfo);
        Console::WriteLine("{0:h:mm:ss.fff} Checking status {1,2}.",
                           DateTime::Now, ++invokeCount);

        if (invokeCount == maxCount) {
            // Reset the counter and signal the waiting thread.
            invokeCount  = 0;
            autoEvent->Set();
        }
    }
};

ref class TimerExample
{
public:
    static void Main()
    {
        // Create an AutoResetEvent to signal the timeout threshold in the
        // timer callback has been reached.
        AutoResetEvent^ autoEvent = gcnew AutoResetEvent(false);

        StatusChecker^ statusChecker = gcnew StatusChecker(10);

        // Create a delegate that invokes methods for the timer.
        TimerCallback^ tcb =
           gcnew TimerCallback(statusChecker, &StatusChecker::CheckStatus);

        // Create a timer that invokes CheckStatus after one second, 
        // and every 1/4 second thereafter.
        Console::WriteLine("{0:h:mm:ss.fff} Creating timer.\n",
                           DateTime::Now);
        Timer^ stateTimer = gcnew Timer(tcb, autoEvent, 1000, 250);

        // When autoEvent signals, change the period to every half second.
        autoEvent->WaitOne(5000, false);
        stateTimer->Change(0, 500);
        Console::WriteLine("\nChanging period to .5 seconds.\n");

        // When autoEvent signals the second time, dispose of the timer.
        autoEvent->WaitOne(5000, false);
        stateTimer->~Timer();
        Console::WriteLine("\nDestroying timer.");
    }
};

int main()
{
    TimerExample::Main();
}
// The example displays output like the following:
//       11:59:54.202 Creating timer.
//       
//       11:59:55.217 Checking status  1.
//       11:59:55.466 Checking status  2.
//       11:59:55.716 Checking status  3.
//       11:59:55.968 Checking status  4.
//       11:59:56.218 Checking status  5.
//       11:59:56.470 Checking status  6.
//       11:59:56.722 Checking status  7.
//       11:59:56.972 Checking status  8.
//       11:59:57.223 Checking status  9.
//       11:59:57.473 Checking status 10.
//       
//       Changing period to .5 seconds.
//       
//       11:59:57.474 Checking status  1.
//       11:59:57.976 Checking status  2.
//       11:59:58.476 Checking status  3.
//       11:59:58.977 Checking status  4.
//       11:59:59.477 Checking status  5.
//       11:59:59.977 Checking status  6.
//       12:00:00.478 Checking status  7.
//       12:00:00.980 Checking status  8.
//       12:00:01.481 Checking status  9.
//       12:00:01.981 Checking status 10.
//       
//       Destroying timer.
using System;
using System.Threading;

class TimerExample
{
    static void Main()
    {
        // Create an AutoResetEvent to signal the timeout threshold in the
        // timer callback has been reached.
        var autoEvent = new AutoResetEvent(false);
        
        var statusChecker = new StatusChecker(10);

        // Create a timer that invokes CheckStatus after one second, 
        // and every 1/4 second thereafter.
        Console.WriteLine("{0:h:mm:ss.fff} Creating timer.\n", 
                          DateTime.Now);
        var stateTimer = new Timer(statusChecker.CheckStatus, 
                                   autoEvent, 1000, 250);

        // When autoEvent signals, change the period to every half second.
        autoEvent.WaitOne();
        stateTimer.Change(0, 500);
        Console.WriteLine("\nChanging period to .5 seconds.\n");

        // When autoEvent signals the second time, dispose of the timer.
        autoEvent.WaitOne();
        stateTimer.Dispose();
        Console.WriteLine("\nDestroying timer.");
    }
}

class StatusChecker
{
    private int invokeCount;
    private int  maxCount;

    public StatusChecker(int count)
    {
        invokeCount  = 0;
        maxCount = count;
    }

    // This method is called by the timer delegate.
    public void CheckStatus(Object stateInfo)
    {
        AutoResetEvent autoEvent = (AutoResetEvent)stateInfo;
        Console.WriteLine("{0} Checking status {1,2}.", 
            DateTime.Now.ToString("h:mm:ss.fff"), 
            (++invokeCount).ToString());

        if(invokeCount == maxCount)
        {
            // Reset the counter and signal the waiting thread.
            invokeCount = 0;
            autoEvent.Set();
        }
    }
}
// The example displays output like the following:
//       11:59:54.202 Creating timer.
//       
//       11:59:55.217 Checking status  1.
//       11:59:55.466 Checking status  2.
//       11:59:55.716 Checking status  3.
//       11:59:55.968 Checking status  4.
//       11:59:56.218 Checking status  5.
//       11:59:56.470 Checking status  6.
//       11:59:56.722 Checking status  7.
//       11:59:56.972 Checking status  8.
//       11:59:57.223 Checking status  9.
//       11:59:57.473 Checking status 10.
//       
//       Changing period to .5 seconds.
//       
//       11:59:57.474 Checking status  1.
//       11:59:57.976 Checking status  2.
//       11:59:58.476 Checking status  3.
//       11:59:58.977 Checking status  4.
//       11:59:59.477 Checking status  5.
//       11:59:59.977 Checking status  6.
//       12:00:00.478 Checking status  7.
//       12:00:00.980 Checking status  8.
//       12:00:01.481 Checking status  9.
//       12:00:01.981 Checking status 10.
//       
//       Destroying timer.
Imports System.Threading

Public Module Example
    Public Sub Main()
        ' Use an AutoResetEvent to signal the timeout threshold in the
        ' timer callback has been reached.
        Dim autoEvent As New AutoResetEvent(False)

        Dim statusChecker As New StatusChecker(10)

        ' Create a timer that invokes CheckStatus after one second, 
        ' and every 1/4 second thereafter.
        Console.WriteLine("{0:h:mm:ss.fff} Creating timer." & vbCrLf, 
                          DateTime.Now)
        Dim stateTimer As New Timer(AddressOf statusChecker.CheckStatus, 
                                    autoEvent, 1000, 250)

        ' When autoEvent signals, change the period to every half second.
        autoEvent.WaitOne()
        stateTimer.Change(0, 500)
        Console.WriteLine(vbCrLf & "Changing period to .5 seconds." & vbCrLf)

        ' When autoEvent signals the second time, dispose of the timer.
        autoEvent.WaitOne()
        stateTimer.Dispose()
        Console.WriteLine(vbCrLf & "Destroying timer.")
    End Sub
End Module

Public Class StatusChecker
    Dim invokeCount, maxCount As Integer 

    Sub New(count As Integer)
        invokeCount  = 0
        maxCount = count
    End Sub

    ' The timer callback method.
    Sub CheckStatus(stateInfo As Object)
        Dim autoEvent As AutoResetEvent = DirectCast(stateInfo, AutoResetEvent)
        invokeCount += 1
        Console.WriteLine("{0:h:mm:ss.fff} Checking status {1,2}.", 
                          DateTime.Now, invokeCount)
        If invokeCount = maxCount Then
            ' Reset the counter and signal the waiting thread.
            invokeCount = 0
            autoEvent.Set()
        End If
    End Sub
End Class
' The example displays output like the following:
'       11:59:54.202 Creating timer.
'       
'       11:59:55.217 Checking status  1.
'       11:59:55.466 Checking status  2.
'       11:59:55.716 Checking status  3.
'       11:59:55.968 Checking status  4.
'       11:59:56.218 Checking status  5.
'       11:59:56.470 Checking status  6.
'       11:59:56.722 Checking status  7.
'       11:59:56.972 Checking status  8.
'       11:59:57.223 Checking status  9.
'       11:59:57.473 Checking status 10.
'       
'       Changing period to .5 seconds.
'       
'       11:59:57.474 Checking status  1.
'       11:59:57.976 Checking status  2.
'       11:59:58.476 Checking status  3.
'       11:59:58.977 Checking status  4.
'       11:59:59.477 Checking status  5.
'       11:59:59.977 Checking status  6.
'       12:00:00.478 Checking status  7.
'       12:00:00.980 Checking status  8.
'       12:00:01.481 Checking status  9.
'       12:00:01.981 Checking status 10.
'       
'       Destroying timer.

Comentarios

La llamada a Dispose permite que los recursos utilizados por Timer se reasignen para otros propósitos.Calling Dispose allows the resources used by the Timer to be reallocated for other purposes. Para obtener más información acerca de Dispose , consulte limpiar recursos no administrados.For more information about Dispose, see Cleaning Up Unmanaged Resources.

Nota

Las devoluciones de llamada pueden producirse después de Dispose() llamar a la sobrecarga del método, ya que el temporizador pone en cola las devoluciones de llamada para su ejecución por subprocesos del grupoCallbacks can occur after the Dispose() method overload has been called, because the timer queues callbacks for execution by thread pool threads. Puede usar la Dispose(WaitHandle) sobrecarga del método para esperar hasta que se hayan completado todas las devoluciones de llamada.You can use the Dispose(WaitHandle) method overload to wait until all callbacks have completed.

Se aplica a

Dispose(WaitHandle)

Libera todos los recursos utilizados por la instancia de Timer actual e indica el momento en el que se ha eliminado el temporizador.Releases all resources used by the current instance of Timer and signals when the timer has been disposed of.

public:
 bool Dispose(System::Threading::WaitHandle ^ notifyObject);
public bool Dispose (System.Threading.WaitHandle notifyObject);
member this.Dispose : System.Threading.WaitHandle -> bool
Public Function Dispose (notifyObject As WaitHandle) As Boolean

Parámetros

notifyObject
WaitHandle

WaitHandle que se va a señalar cuando Timer se haya eliminado.The WaitHandle to be signaled when the Timer has been disposed of.

Devoluciones

Boolean

true si la función se realiza correctamente; en caso contrario, false.true if the function succeeds; otherwise, false.

Excepciones

El parámetro notifyObject es null.The notifyObject parameter is null.

Comentarios

La llamada a Dispose permite que los recursos utilizados por Timer se reasignen para otros propósitos.Calling Dispose allows the resources used by the Timer to be reallocated for other purposes. Para obtener más información acerca de Dispose , consulte limpiar recursos no administrados.For more information about Dispose, see Cleaning Up Unmanaged Resources.

Cuando este método finaliza, indica el WaitHandle especificado por el notifyObject parámetro. Utilice esta sobrecarga del Dispose método si desea poder bloquear hasta que esté seguro de que se ha eliminado el temporizador.When this method completes, it signals the WaitHandle specified by the notifyObject parameter.Use this overload of the Dispose method if you want to be able to block until you are certain that the timer has been disposed. El temporizador no se elimina hasta que se hayan completado todas las devoluciones de llamada actualmente en cola.The timer is not disposed until all currently queued callbacks have completed.

Nota

Si la devolución de llamada usa el Change método para establecer el dueTime parámetro en cero, se puede producir una condición de carrera cuando Dispose(WaitHandle) se llama a la sobrecarga del método: Si el temporizador pone en cola una nueva devolución de llamada antes de Dispose(WaitHandle) que la sobrecarga del método detecte que no hay devoluciones de llamada en cola, Dispose(WaitHandle) sigue bloqueándose; de lo contrario, el temporizador se desecha mientras la nueva devolución de llamada se pone en cola y ObjectDisposedException se produce una excepción cuando la nueva devolución de llamada ChangeIf the callback uses the Change method to set the dueTime parameter to zero, a race condition can occur when the Dispose(WaitHandle) method overload is called: If the timer queues a new callback before the Dispose(WaitHandle) method overload detects that there are no callbacks queued, Dispose(WaitHandle) continues to block; otherwise, the timer is disposed while the new callback is being queued, and an ObjectDisposedException is thrown when the new callback calls the Change method.

Se aplica a