I\'d like to get the generic type of a collection, using reflection, at runtime.
Code (JAVA):
Field collectionObject = object.getClass().getDeclaredF
You can get the generic type of the field you read the object from with Field.getGenericType
. Note that the field may be a raw type, be a rare type (generic but with a generic argument that is raw), use the type of the instance, use wildcards, etc.
Type erasure means that information about the generic type of an object simply isn't present at execution time.
(The link is to the relevant section of Angelika Langer's Java Generics FAQ which should answer virtually every question you could possibly ask about Java generics :)
However, you're not really interested in the type of an object - you're interested in the type of a field. I misread the question, and although the answer has been accepted I hope to make amends by fixing it now :)
If the field doesn't use a type parameter itself, it can be done. For example:
import java.lang.reflect.*;
import java.util.*;
public class Test
{
public List<String> names;
public static void main(String [] args)
throws Exception // Just for simplicity!
{
Field field = Test.class.getDeclaredField("names");
ParameterizedType type = (ParameterizedType) field.getGenericType();
// List
System.out.println(type.getRawType());
// Just String in this case
for (Type typeArgument : type.getActualTypeArguments())
{
System.out.println(" " + typeArgument);
}
}
}
If the field were in a class T
with the field being List<T>
then you'd have to know the type argument for the instance in order to know the type argument for the collection.
Translating this into your required code is somewhat tricky though - you really need to know the type argument at the point of the collection class. For instance, if someone declared:
public class StringCollection implements Collection<String>
and then had a field of type StringCollection
, that field itself wouldn't have any type arguments. You'd then need to check getGenericSuperType
and getGenericInterfaces
recursively until you found what you wanted.
It's really not going to be easy to do that, even though it's possible. If I were you I'd try to change your design so that you don't need this.
Copied from my post at: https://stackoverflow.com/questions/1004022/java-generic-class-determine-type/1005283#1005283
I've used a similar solution to what he explains here for a few projects and found it pretty useful.
http://blog.xebia.com/2009/02/07/acessing-generic-types-at-runtime-in-java/
The jist of it is using the following to determine the type parameter at runtime:
public Class returnedClass {
ParameterizedType parameterizedType =
(ParameterizedType) getClass().getGenericSuperClass();
return (Class) parameterizedtype.getActualTypeArguments()[0];
}
You can absolutely do what you want. Type erasure means you can't inspect an instance of a collection for its generic type, but you can certainly inspect a field for its generic type.
class Thing {
List<Persistable> foo;
}
Field f = Thing.class.getDeclaredField("foo");
if( Collection.class.isAssignableFrom( f.getType() ) {
Type t = f.getGenericType();
if( t instanceof ParameterizedType ) {
Class genericType = (Class)((ParameterizedType)t).getActualTypeArguments()[0];
if( Persistable.class.isAssignableFrom( genericType ) )
return true;
}
}
There's a lot of things which can go wrong here, for example, if you have
Class Thing<T> {
List<T> foo;
}
then the above won't work.