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data Test = [Int] | Int

foobar :: Test -> Int

What if I wanted something like foobar [1,2,3] = 1 and foobar 1 = 1. In erlang it would be

foobar(X) when is_list(X) -> hd(X);
foobar(X) -> X.
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Do you have a particular use case for this? Or are you just curious? (Not that there's anything wrong curiosity!) To get the behavior you're asking for you have to fight the type system a little bit, so there's probably a more haskell-y way to solve whatever problem you're working on. –  Zopa Oct 9 '11 at 15:23
Just curious. I've come across a few places where I would like to have something like this. I have not made anything useful yet. –  Jazz Man Oct 9 '11 at 16:11

3 Answers 3

up vote 13 down vote accepted

First of all, your data-declaration is invalid. In Haskell, you have to start a data-declaration with a data-constructor, that is later matched upon. For instance, your type Test would be written

data Test = TLst [Int] | TInt Int

Now you can simply match on the type-constructor; it's field is a list or an int, depending on which constructor you match:

foobar :: Test -> Int
foobar (TLst (x:xs)) = x
foobar (TLst [])     = error "empty list passed to foobar"
foobar (TInt x)      = x
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You mean "data constructor" when you say "type constructor". –  sepp2k Oct 9 '11 at 16:13

The other approach to this is to use a typeclass, like so:

class Test a where 
    foobar a -> Int

instance Test Int where
    foobar x = x

instance Test [Int] where
    foobar [] = error "Empty list"
    foobar (x:_) = x

The pattern matching is implicit here--the type passed to foobar determines which instance we choose.

But you probably don't want to be doing this sort of thing unless there's a symmetry in your problem that makes it sensible to think of Int and [Int] as two examples of the same sort of thing. The better your types match the problem you're solving, the more the typechecker can help you.

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Sound advice. +1. –  AndrewC Sep 14 '12 at 16:04

Firstly, this is not valid Haskell syntax:

data Test = [Int] | Int   -- this doesn't work

The alternatives require their own constructors. So this is valid:

data Test = TestA [Int] | TestB Int

Then you can pattern match like this:

foobar :: Test -> Int
foobar (TestA listOfInt) = length listOfInt
foobar (TestB int)       = int
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