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I understand that the List<> of derived class cannot be directly assigned to List<> of base class. But how does it allow assigning the same List<> of derived class to an IEnumerable<> type of base class parameter.

public class Base 

public class Derived : Base 

public class Test
   // inside some method...
   List<Derived> someElements;

   public void ReadElements(List<Base> elements) // this throws compile error

   public void ReadElements(IEnumerable<Base> elements) // this one works

I know that the List is an implementation of IEnumerable and support indexing and modifying elements, but I don't seem to understand this part? Can someone please explain? Thanks.

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See Covariance and Contravariance – Magnus Jan 12 '12 at 21:42
up vote 7 down vote accepted

Because the declaration of IEnumerable<T> is in fact:

public interface IEnumerable<out T> : IEnumerable

...and the out bit means that T is covariant and accepts subtypes.

Whereas the declaration of List<T> has no variance annotation and therefore the T is invariant.

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IList and List do not define their T as out, while IEnumerable does. List is a class so can't have out, and IList does not define out because it accepts inputs of type T.

Put a simpler way you can only get back T from IEnumerable, but you can put in T to IList, because of this IEnumerable doesn't care if you are less specific, but IList does. (In fact it has to, see @ChrisShain's answer for a link to how covariance and contravariance work).

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Consider this code, which on its own is perfectly legal:

public void AddElements(List<Base> elements)
    Base item = new Base();

But what happens if you call it like this:

List<Derived> elements = new List<Derived>;

The class Base does not inherit from Derived and therefore cannot be added to the elements list. It's a potential problem, therefore illegal.

On the other hand, IEnumerable<Base> only provides methods to read the collection, not write to it, so the above contradiction cannot occur.

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Because IEnumerable is Covariant for the type parameter T:

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