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I need to be able to pass an arbitrary method to some function myFunction:

void myFunction(AnyFunc func) { ... }

It should be possible to execute it with other static, instance, public or private methods or even delegates:

myFunction(SomeClass.PublicStaticMethod);
myFunction(SomeObject.PrivateInstanceMethod);
myFunction(delegate(int x) { return 5*x; });

Passed method may have any number of parameters and any return type. It should also be possible to learn the actual number of parameters and their types in myFunction via reflection. What would be AnyFunc in the myFunction definition to accommodate such requirements? It is acceptible to have several overloaded versions of the myFunction.

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What do you expect to pass to the method if it does have parameters? It sounds like you should be converting whatever the method is to a no parameter/void return (aka Action) before passing it to this method. –  Servy Apr 10 '13 at 16:25
    
myFunction will analyze parameters of the function, check them against some external database and call it with necessary values or fail if no matching entry in database is found. –  Sergiy Byelozyorov Apr 10 '13 at 16:26
    
That's a very worrying design, in which you're essentially treating code as data. You should consider trying to redesign this such that you code is static. –  Servy Apr 10 '13 at 16:27
    
Yes. There will be a compiler embedded that will construct code from data. I am aware of the security risks, but this is what we need in our project. –  Sergiy Byelozyorov Apr 10 '13 at 16:31

2 Answers 2

up vote 2 down vote accepted

The Delegate type is the supertype of all other delegate types:

void myFunction(Delegate func) { ... }

Then, func.Method will give you a MethodInfo object you can use to inspect the return type and parameter types.

When calling the function you will have to explicitly specify which type of delegate you want to create:

myFunction((Func<int, int>) delegate (int x) { return 5 * x; });

Some idea of what you're trying to accomplish at a higher level would be good, as this approach may not turn out to be ideal.

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I would like to make the call site as simple as possible and hide the gritty details inside of the library. Any way to specify the myFunction so that users don't need to cast their delegates? –  Sergiy Byelozyorov Apr 10 '13 at 16:28
1  
@SergiyByelozyorov The call site cannot possibly be made any simpler, as the compiler needs some concrete delegate type to create an instance of. If you want to accept "any delegate type" then the caller must specify a delegate type themselves. (For example, given the anonymous delegate delegate () { }, both Action and ThreadStart are compatible delegate types -- how is the compiler to know which one to create?) –  cdhowie Apr 10 '13 at 16:29
    
Thanks. I guess that's my answer then. That's not possible. Thank you. –  Sergiy Byelozyorov Apr 10 '13 at 16:32
    
But why does compiler need to know exact delegate type? Isn't it sufficient just to know parameter types that are specified in the delegate-syntax? Is return value type a problem? Can't compiler derive it from the body? –  Sergiy Byelozyorov Apr 10 '13 at 16:48
    
@SergiyByelozyorov That's like trying to construct an object and asking "isn't it enough to know the type of arguments the constructor takes?" No, it's not, because there are many types in the framework that have the same constructor signature. You have to specify one. Thought experiment: given the definitions delegate void A(); delegate void B();, how would you expect the compiler to infer the type of the expression delegate () {} with Delegate being the only contextual clue about the type of the expression? –  cdhowie Apr 10 '13 at 16:52

Have the method accept a Delegate, rather than a particular delegate:

void myFunction(Delegate func)
{

}
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Just as in answer from cdhowie, it would require casting the delegate to a specific delegate type or Func<...>. I would like to avoid that. –  Sergiy Byelozyorov Apr 10 '13 at 16:29
    
@SergiyByelozyorov And as he told you, that's not possible. –  Servy Apr 10 '13 at 16:31

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