I was trying to accomplish this with a struct I wrote that was very similar Nullable<T>
. With Nullable<T>
you can do something like
Nullable<Guid> id1 = null;
Guid id2 = id1 ?? Guid.NewGuid();
It has no problem implicitly converting id1
from Nullable<Guid>
to a Guid
despite the fact that Nullable<T>
only defines an explicit
conversion to type T
. Doing the same thing with my own type, it gives an error
Operator '??' cannot be applied to operands of type 'MyType' and
'Guid'
So I think there's some magic built into the compiler to make a special exception for Nullable<T>
. So as an alternative...
tl;dr
We can't override the ??
operator, but if you want the coalesce operator to evaluate an underlying value rather than the class (or struct in my case) itself, you could just use a method resulting in very few extra keystrokes required. With my case above it looks something like this:
public struct MyType<T>
{
private bool _hasValue;
internal T _value;
public MyType(T value)
{
this._value = value;
this._hasValue = true;
}
public T Or(T altValue)
{
if (this._hasValue)
return this._value;
else
return altValue;
}
}
Usage:
MyType<Guid> id1 = null;
Guid id2 = id1.Or(Guid.Empty);
This works well since it's a struct and id1
itself can't actually be null. For a class, an extension method could handle if the instance is null as long as the value you're trying to check is exposed:
public class MyClass
{
public MyClass(string myValue)
{
MyValue = myValue;
}
public string MyValue { get; set; }
}
public static class MyClassExtensions
{
public static string Or(this MyClass myClass, string altVal)
{
if (myClass != null && myClass.MyValue != null)
return myClass.MyValue;
else
return altVal;
}
}
Usage:
MyClass mc1 = new MyClass(null);
string requiredVal = mc1.Or("default"); //Instead of mc1 ?? "default";