From: Guillaume Marceau <gmarceau@cs.brown.edu>
To: Alex Baretta <alex@baretta.com>
Cc: Ocaml <caml-list@inria.fr>
Subject: Re: [Caml-list] Polymorphic records typing question
Date: Mon, 22 Dec 2003 15:26:24 -0500 (EST) [thread overview]
Message-ID: <Pine.LNX.4.58.0312221504060.19513@cslab5c> (raw)
In-Reply-To: <3FE6CC78.8050506@baretta.com>
On Mon, 22 Dec 2003, Alex Baretta wrote:
> Here's a puzzle for the Caml breeders:
>
> # type poly = { f : 'a . 'a -> 'a };;
> type poly = { f : 'a. 'a -> 'a; }
> # let id x = x;;
> val id : 'a -> 'a = <fun>
> # let foo = { f = id };;
> val foo : poly = {f = <fun>}
> # let rec id x = x and foo = { f = id } ;;
> This field value has type 'a -> 'a which is less general than 'b. 'b -> 'b
>
> Why is this last recursive definition unacceptable?
>
> Alex
>
Types are not generalized within the scope of their recursive declaration.
For instance, take this contrived definition of the identity function :
let rec id x =
if true then (ignore(id 1); x)
else ((ignore (id [])); x)
^^
This expression has type 'a list but is here used with type int
Although id could be safely be assigned the type 'a . 'a -> 'a, the type
inference algorithm cannot figure it out.
It is a limitation that raises from the way the type inference is
computed. Then again, it isn't much of a limitation: both my example and
yours can trivially be rewritten such that they type.
Also, this is one good reason to not use the 'and' keyword unless you
actually need a mutual recursion. Instead of writing this:
let a = ... body_a ...
and b = ... body_b ... in
...
write this:
let a = ... body_a ... in
let b = ... body_b ... in
...
It will save you the above error in the case 'body_b' uses 'a' polymorphically.
--
"The thing I remember most about America is that it's silly.
That can be quite a relief at times." -- Thom Yorke, Radiohead
- Guillaume
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prev parent reply other threads:[~2003-12-22 20:26 UTC|newest]
Thread overview: 2+ messages / expand[flat|nested] mbox.gz Atom feed top
2003-12-22 10:50 Alex Baretta
2003-12-22 20:26 ` Guillaume Marceau [this message]
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