Timer.Dispose 方法
定義
重要
部分資訊涉及發行前產品,在發行之前可能會有大幅修改。 Microsoft 對此處提供的資訊,不做任何明確或隱含的瑕疵擔保。
將 Timer 目前的執行個體所使用的資源全部釋出。
多載
Dispose() |
將 Timer 目前的執行個體所使用的資源全部釋出。 |
Dispose(WaitHandle) |
將 Timer 目前的執行個體所使用的資源全部釋出,並當計時器已被處置時發出通知。 |
Dispose()
- 來源:
- Timer.cs
- 來源:
- Timer.cs
- 來源:
- Timer.cs
將 Timer 目前的執行個體所使用的資源全部釋出。
public:
virtual void Dispose();
public void Dispose ();
abstract member Dispose : unit -> unit
override this.Dispose : unit -> unit
Public Sub Dispose ()
實作
範例
下列程式碼範例示範如何釋放 所 Timer
持有的資源。
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.
備註
呼叫 Dispose
可讓 重新配置 所使用的 Timer 資源供其他用途使用。 如需 的詳細資訊 Dispose
,請參閱 清除非受控資源。
注意
呼叫方法多載之後 Dispose() ,可能會發生回呼,因為計時器佇列回呼供執行緒集區執行緒執行。 您可以使用 Dispose(WaitHandle) 方法多載等待所有回呼完成。
另請參閱
適用於
Dispose(WaitHandle)
- 來源:
- Timer.cs
- 來源:
- Timer.cs
- 來源:
- Timer.cs
將 Timer 目前的執行個體所使用的資源全部釋出,並當計時器已被處置時發出通知。
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
參數
- notifyObject
- WaitHandle
當 Timer
已被處置時,應通知的 WaitHandle。
傳回
如果函式成功,則為 true
,否則為 false
。
例外狀況
notifyObject
參數為 null
。
備註
呼叫 Dispose
可讓 重新配置 所使用的 Timer 資源供其他用途使用。 如需 的詳細資訊 Dispose
,請參閱 清除非受控資源。
當這個方法完成時,它會向 參數指定的 發出訊 WaitHandle 號 notifyObject
。如果您想要能夠封鎖方法的 Dispose 這個多載,直到確定已處置計時器為止。 直到所有目前已排入佇列的回呼都完成之後,才會處置計時器。
注意
如果回呼使用 Change 方法將 參數設定 dueTime
為零,則在呼叫方法多載時 Dispose(WaitHandle) ,可能會發生競爭狀況:如果計時器在方法多載偵測到沒有排入佇列的回呼之前 Dispose(WaitHandle) 將新的回呼排入佇列, Dispose(WaitHandle) 則會繼續封鎖;否則,當新的回呼排入佇列時,就會處置計時器。 ObjectDisposedException 當新的回呼呼叫 Change 方法時,會擲回 和 。