Fwd: [plt-scheme] already imported identitfiers in "pretty-big"
Ok, I took a look, and obviously "mzlib/list.ss" can't be missing any of the
srfi functionality for these functions, so i propose starting with the
following changes:
copy srfi/1.ss to srfi/1-ref.ss
*** /home/corey/1.ss Thu Apr 13 13:49:27 2006
--- /home/corey/1.ss.orig Thu Apr 13 13:41:02 2006
***************
*** 1,13 ****
;; module loader for SRFI-1
(module |1| mzscheme
! (require (all-except (lib "list.ss" "srfi" "1")
! third fourth fifth sixth))
! (require (only (lib "list.ss" "mzlib")
! third fourth fifth sixth))
! (provide third fourth fifth sixth
! (all-from-except (lib "list.ss" "srfi" "1")
s:append! s:reverse!
s:map s:for-each
s:member
--- 1,9 ----
;; module loader for SRFI-1
(module |1| mzscheme
! (require (lib "list.ss" "srfi" "1"))
! (provide (all-from-except (lib "list.ss" "srfi" "1")
s:append! s:reverse!
s:map s:for-each
s:member
On 4/13/06, Corey Sweeney <corey.sweeney at gmail.com> wrote:
>
>
>
> On 4/12/06, Danny Yoo <dyoo at hkn.eecs.berkeley.edu> wrote:
> >
> >
> >
> > and not see conflicts. And we can go the extra step and put the srfi-1
> > functions into my-big-language as well. This does pretty much what
> > you're
> > planning earlier, except we avoid touching plt-pretty-big-text.ss .
>
>
> Agreed
>
> (Aside: I feel really cheesy about doing a copy-and-paste here; is there a
> > nicer way to do this?)
>
>
> Well one way would be to make mzlib/list.ss just require then provide it's
> functions from list.ss. However if mzlib/list.ss has some advantage over
> srfi/1/list.ss , (performance?) then we could have srfi/1/list.ss require
> those functions that are in mzlib/list.ss , and are not extended by
> srfi/1/list.ss , and then require/provide just those functions that have
> extended functionality into mzlib/list.ss .
>
> By the way, what is the advantage of the functions writen in mzlib/list.ss
> that are also in srfi/1/list.ss?
>
>
> Corey
>
>
>
> Best of wishes!
> >
>
>
>
> --
> ((lambda (y) (y y)) (lambda (y) (y y)))
>
--
((lambda (y) (y y)) (lambda (y) (y y)))
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