From: Jeremy Yallop <yallop@gmail.com>
To: Yaron Minsky <yminsky@janestreet.com>
Cc: caml-list@inria.fr, Stephen Weeks <sweeks@janestreet.com>,
David Powers <dpowers@janestreet.com>,
Nathan Linger <nlinger@janestreet.com>
Subject: Re: [Caml-list] A confusing example with modules and polymorphic variants
Date: Fri, 19 Oct 2012 23:10:47 +0100 [thread overview]
Message-ID: <CAAxsn=EPYaji50_g7o_3s0KJWELD4COUYDpzKRu1E-BXsYEivA@mail.gmail.com> (raw)
In-Reply-To: <CACLX4jTDY+Y40vwHAxh-tspRn8FaR+ZaGAE+totOz283c7b+1w@mail.gmail.com>
On 19 October 2012 22:18, Yaron Minsky <yminsky@janestreet.com> wrote:
> We've been running into some troubles with polymorphic variants,
> modules, and the value restriction, that we're not quite able to
> unravel. Here's a stripped down version of the problem.
>
> module type S = sig
> val z : [< `Foo ]
> end
>
> let f z =
> let module M : S = struct let z = z end in ()
I believe the problem here is the monomorphic parameter restriction: the type
of S requires the field z to be polymorphic, but type inference only assigns
monomorhpic types to function parameters. That is, your example doesn't type
check for essentially the same reason that the following code doesn't type
check:
type s = {
z : 'a. 'a -> 'a
}
let f z =
let s = {
z = z
} in
()
One way to work around the monomorphic parameter assumption is to wrap the
parameter in a record with a polymorphic field.
type z_type = { field : 'a. 'a -> 'a}
let f z =
let s = {
z = z.field
} in
()
The parameter is still assigned a monomorphic type (z_type), but the projected
field is polymorphic, as required.
I don't see how to make that work in your case, though, because of the nature
of the polymorphism -- i.e. it's based on a row variable rather than a
standard type variable, and there isn't any syntax for quantifying it.
However, you *can* modify your example so that it passes type checking by
wrapping the argument in a first-class module, since module fields can be
row-polymorphic. The easiest way in the cut-down example is to reuse the
signature you already have:
module type S = sig
val z : [< `Foo ]
end
let f (module Z : S) =
let module M : S =
struct
let z = Z.z
end
in ()
next prev parent reply other threads:[~2012-10-19 22:10 UTC|newest]
Thread overview: 5+ messages / expand[flat|nested] mbox.gz Atom feed top
2012-10-19 21:18 Yaron Minsky
2012-10-19 22:10 ` Jeremy Yallop [this message]
2012-10-20 1:34 ` Yaron Minsky
2012-10-20 9:16 ` Gabriel Scherer
-- strict thread matches above, loose matches on Subject: below --
2012-10-19 21:13 Yaron Minsky
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