EventInfo.AddEventHandler(Object, Delegate) Méthode

Définition

Ajoute un gestionnaire d’événements à une source d’événements.

public:
 virtual void AddEventHandler(System::Object ^ target, Delegate ^ handler);
public virtual void AddEventHandler (object target, Delegate handler);
public virtual void AddEventHandler (object? target, Delegate? handler);
public void AddEventHandler (object target, Delegate handler);
abstract member AddEventHandler : obj * Delegate -> unit
override this.AddEventHandler : obj * Delegate -> unit
Public Overridable Sub AddEventHandler (target As Object, handler As Delegate)
Public Sub AddEventHandler (target As Object, handler As Delegate)

Paramètres

target
Object

Source de l'événement.

handler
Delegate

Encapsule une ou plusieurs méthodes à appeler lorsque l’événement est déclenché par la cible.

Implémente

Exceptions

L’événement ne dispose pas d’un accesseur add public.

Impossible d’utiliser le gestionnaire qui a été transmis.

L’appelant n’est pas autorisé à accéder au membre.

Remarque : Dans .NET pour les applications du Windows Store ou la bibliothèque de classes portable, interceptez l’exception de classe de base, MemberAccessException, à la place.

Le paramètre target a la valeur null et l’événement n’est pas statique.

- ou -

Le EventInfo n’est pas déclaré dans la cible.

Remarque : Dans .NET pour les applications du Windows Store ou la bibliothèque de classes portable, interceptez Exception à la place.

Exemples

L’exemple suivant crée un instance de la System.Timers.Timer classe, crée un gestionnaire d’événements à l’aide d’un assembly dynamique et branche le gestionnaire d’événements dynamiques. Toutes les actions sont effectuées à l’aide d’une liaison tardive.

Le Timer instance est stocké dans une variable de type Object, et tout le code qui accède au Timer fait de liaison tardive. L’exemple utilise la Type.GetEvent méthode pour obtenir l’événement Elapsed et la EventHandlerType propriété pour obtenir le type de délégué pour l’événement.

L’exemple obtient un MethodInfo pour la Invoke méthode du type délégué et obtient la signature du délégué à partir du MethodInfo instance. L’exemple crée ensuite un assembly dynamique avec un module contenant un type unique nommé Handler et donne au type une static méthode (Shared méthode en Visual Basic) nommée DynamicHandler qui gère l’événement.

Une fois le type dynamique créé, l’exemple obtient un MethodInfo pour la méthode terminée et l’utilise pour créer un délégué instance. Cette instance est passée à la AddEventHandler méthode pour raccorder l’événement. Le programme s’interrompt ensuite pour permettre à l’événement d’être déclenché.

using System;
using System.Reflection;
using System.Reflection.Emit;

public class Example
{
    private static object? timer;

    public static void Main()
    {
        // Get the Timer type.
        Type t = typeof(System.Timers.Timer);
        // Create an instance of the Timer type.
        timer = Activator.CreateInstance(t);

        // Use reflection to get the Elapsed event.
        EventInfo? eInfo = t.GetEvent("Elapsed");

        // In order to create a method to handle the Elapsed event,
        // it is necessary to know the signature of the delegate
        // used to raise the event. Reflection.Emit can then be
        // used to construct a dynamic class with a static method
        // that has the correct signature.

        // Get the event handler type of the Elapsed event. This is
        // a delegate type, so it has an Invoke method that has
        // the same signature as the delegate. The following code
        // creates an array of Type objects that represent the
        // parameter types of the Invoke method.
        //
        Type? handlerType = eInfo?.EventHandlerType;
        MethodInfo? invokeMethod = handlerType?.GetMethod("Invoke");
        ParameterInfo[]? parms = invokeMethod?.GetParameters();
        Type[] parmTypes = new Type[parms?.Length ?? 0];
        for (int i = 0; i < parms?.Length; i++)
        {
            parmTypes[i] = parms[i].ParameterType;
        }

        // Use Reflection.Emit to create a dynamic assembly that
        // will be run but not saved. An assembly must have at
        // least one module, which in this case contains a single
        // type. The only purpose of this type is to contain the
        // event handler method. (You can use also dynamic methods,
        // which are simpler because there is no need to create an
        // assembly, module, or type.)
        //
        AssemblyName aName = new AssemblyName();
        aName.Name = "DynamicTypes";
        AssemblyBuilder ab = AssemblyBuilder.DefineDynamicAssembly(aName, AssemblyBuilderAccess.Run);
        ModuleBuilder mb = ab.DefineDynamicModule(aName.Name);
        TypeBuilder tb = mb.DefineType("Handler", TypeAttributes.Class | TypeAttributes.Public);

        // Create the method that will handle the event. The name
        // is not important. The method is static, because there is
        // no reason to create an instance of the dynamic type.
        //
        // The parameter types and return type of the method are
        // the same as those of the delegate's Invoke method,
        // captured earlier.
        MethodBuilder handler = tb.DefineMethod("DynamicHandler",
            MethodAttributes.Public | MethodAttributes.Static,
            invokeMethod?.ReturnType, parmTypes);

        // Generate code to handle the event. In this case, the
        // handler simply prints a text string to the console.
        //
        ILGenerator il = handler.GetILGenerator();
        il.EmitWriteLine("Timer's Elapsed event is raised.");
        il.Emit(OpCodes.Ret);

        // CreateType must be called before the Handler type can
        // be used. In order to create the delegate that will
        // handle the event, a MethodInfo from the finished type
        // is required.
        Type? finished = tb.CreateType();
        MethodInfo? eventHandler = finished?.GetMethod("DynamicHandler");

        // Use the MethodInfo to create a delegate of the correct
        // type, and call the AddEventHandler method to hook up
        // the event.
        if (handlerType is not null && eventHandler is not null)
        {
            Delegate d = Delegate.CreateDelegate(handlerType, eventHandler);
            eInfo?.AddEventHandler(timer, d);
        }

        // Late-bound calls to the Interval and Enabled property
        // are required to enable the timer with a one-second
        // interval.
        t.InvokeMember("Interval", BindingFlags.SetProperty, null, timer, new Object[] { 1000 });
        t.InvokeMember("Enabled", BindingFlags.SetProperty, null, timer, new Object[] { true });

        Console.WriteLine("Press the Enter key to end the program.");
        Console.ReadLine();
    }
}
/* This example produces output similar to the following:

Press the Enter key to end the program.
Timer's Elapsed event is raised.
Timer's Elapsed event is raised.
Timer's Elapsed event is raised.
*/
Imports System.Reflection
Imports System.Reflection.Emit

Public Class Example

    Private Shared timer As Object
    
    Public Shared Sub Main() 
        ' Get the Timer type.
        Dim t As Type = GetType(System.Timers.Timer)
        ' Create an instance of the Timer type.
        timer = Activator.CreateInstance(t)
        
        ' Use reflection to get the Elapsed event.
        Dim eInfo As EventInfo = t.GetEvent("Elapsed")
        
        ' In order to create a method to handle the Elapsed event,
        ' it is necessary to know the signature of the delegate 
        ' used to raise the event. Reflection.Emit can then be
        ' used to construct a dynamic class with a static method
        ' that has the correct signature.
        '
        ' Get the event handler type of the Elapsed event. This is
        ' a delegate type, so it has an Invoke method that has
        ' the same signature as the delegate. The following code
        ' creates an array of Type objects that represent the 
        ' parameter types of the Invoke method.
        '
        Dim handlerType As Type = eInfo.EventHandlerType
        Dim invokeMethod As MethodInfo = handlerType.GetMethod("Invoke")
        Dim parms As ParameterInfo() = invokeMethod.GetParameters()
        '
        ' Note that in Visual Basic you must dimension the array one
        ' unit smaller than the source array in order to get an array
        ' of the same size. This is because Visual Basic adds an extra
        ' element to every array, for ease of use.
        '
        Dim parmTypes(parms.Length - 1) As Type
        Dim i As Integer
        For i = 0 To parms.Length - 1
            parmTypes(i) = parms(i).ParameterType
        Next i
        
        ' Use Reflection.Emit to create a dynamic assembly that
        ' will be run but not saved. An assembly must have at 
        ' least one module, which in this case contains a single
        ' type. The only purpose of this type is to contain the 
        ' event handler method. (You can alsso use dynamic methods, 
        ' which are simpler because there is no need to create an 
        ' assembly, module, or type.)
        Dim aName As New AssemblyName()
        aName.Name = "DynamicTypes"
        Dim ab As AssemblyBuilder = AssemblyBuilder.DefineDynamicAssembly(aName, AssemblyBuilderAccess.Run)
        Dim mb As ModuleBuilder = ab.DefineDynamicModule(aName.Name)
        Dim tb As TypeBuilder = mb.DefineType("Handler", TypeAttributes.Class Or TypeAttributes.Public)
        
        ' Create the method that will handle the event. The name
        ' is not important. The method is Shared ("static" in 
        ' reflection), because there is no reason to create an 
        ' instance of the dynamic type "Handler".
        '
        ' The parameter types and return type of the method are
        ' the same as those of the delegate's Invoke method, 
        ' captured earlier.
        Dim handler As MethodBuilder = tb.DefineMethod("DynamicHandler", MethodAttributes.Public Or MethodAttributes.Static, invokeMethod.ReturnType, parmTypes)
        
        ' Generate code to handle the event. In this case, the 
        ' handler simply prints a text string to the console.
        '
        Dim il As ILGenerator = handler.GetILGenerator()
        il.EmitWriteLine("Timer's Elapsed event is raised.")
        il.Emit(OpCodes.Ret)
        
        ' CreateType must be called before the Handler type can
        ' be used. In order to create the delegate that will
        ' handle the event, a MethodInfo from the finished type
        ' is required.
        Dim finished As Type = tb.CreateType()
        Dim eventHandler As MethodInfo = finished.GetMethod("DynamicHandler")
        
        ' Use the MethodInfo to create a delegate of the correct 
        ' type, and call the AddEventHandler method to hook up 
        ' the event.
        Dim d As [Delegate] = [Delegate].CreateDelegate(handlerType, eventHandler)
        eInfo.AddEventHandler(timer, d)
        
        ' Late-bound calls to the Interval and Enabled property 
        ' are required to enable the timer with a one-second
        ' interval.
        t.InvokeMember("Interval", BindingFlags.SetProperty, Nothing, timer, New [Object]() {1000})
        t.InvokeMember("Enabled", BindingFlags.SetProperty, Nothing, timer, New [Object]() {True})
        
        Console.WriteLine("Press the Enter key to end the program.")
        Console.ReadLine()
    
    End Sub 
End Class 
' This example produces output similar to the following:
'      Press the Enter key to end the program.
'      Timer's Elapsed event is raised.
'      Timer's Elapsed event is raised.
'      Timer's Elapsed event is raised.

Remarques

Cette méthode tente d’ajouter un délégué pour synchroniser l’événement sur l’objet cible.

Chaque fois que l’événement est déclenché par le paramètre cible, la ou les méthodes encapsulées par le gestionnaire sont appelées.

Vous pouvez utiliser la AddEventHandler méthode lorsque vous chargez un type après la compilation du programme, quand il n’est pas possible d’utiliser la syntaxe C# += ou visual Basic WithEvents et Handles les mots clés pour raccorder l’événement.

S’applique à

Voir aussi