226 lines
5.9 KiB
Scheme
Executable file
226 lines
5.9 KiB
Scheme
Executable file
#! /bin/sh
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# -*-scheme-*-
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exec guile -L $(pwd) -e '(mes)' -s "$0" "$@"
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!#
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;;; Mes --- The Maxwell Equations of Software
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;;; Copyright © 2016 Jan Nieuwenhuizen <janneke@gnu.org>
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;;;
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;;; This file is part of GNU Guix.
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;;;
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;;; Mes is free software; you can redistribute it and/or modify it
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;;; under the terms of the GNU General Public License as published by
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;;; the Free Software Foundation; either version 3 of the License, or (at
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;;; your option) any later version.
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;;;
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;;; Mes is distributed in the hope that it will be useful, but
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;;; WITHOUT ANY WARRANTY; without even the implied warranty of
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;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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;;; GNU General Public License for more details.
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;;;
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;;; You should have received a copy of the GNU General Public License
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;;; along with Mes. If not, see <http://www.gnu.org/licenses/>.
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;; The Maxwell Equations of Software -- John McCarthy page 13
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;; http://www.softwarepreservation.org/projects/LISP/book/LISP%201.5%20Programmers%20Manual.pdf
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(define-module (mes)
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#:export (main))
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(set-current-module
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(make-module 10 `(,(resolve-interface
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'(guile)
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#:select '(
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;; Debugging
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apply
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cons*
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current-error-port
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current-output-port
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display
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eof-object?
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exit
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force-output
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format
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newline
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read
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with-input-from-string
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;; Guile admin
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module-define!
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resolve-interface
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;; PRIMITIVES
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car
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cdr
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cons
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eq?
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null?
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pair?
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;; ADDITIONAL PRIMITIVES
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apply
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number?
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procedure?
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<
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-
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)
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#:renamer (symbol-prefix-proc 'guile:)))))
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(define (logf port string . rest)
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(guile:apply guile:format (guile:cons* port string rest))
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(guile:force-output port)
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#t)
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(define (stderr string . rest)
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(guile:apply logf (guile:cons* (guile:current-error-port) string rest)))
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(define (stdout string . rest)
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(guile:apply logf (guile:cons* (guile:current-output-port) string rest)))
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(define (debug . x) #t)
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;;(define debug stderr)
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;; TODO
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(define (atom? x)
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(cond
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((guile:pair? x) #f)
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((guile:null? x) #f)
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(#t x)))
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;; PRIMITIVES
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(define car guile:car)
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(define cdr guile:cdr)
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(define cons guile:cons)
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(define eq? guile:eq?)
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(define null? guile:null?)
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(define pair? guile:pair?)
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(define builtin? guile:procedure?)
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(define number? guile:number?)
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(define call guile:apply)
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(include "mes.mes")
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(define (pairlis x y a)
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;;(debug "pairlis x=~a y=~a a=~a\n" x y a)
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(cond
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((null? x) a)
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((atom? x) (cons (cons x y) a))
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(#t (cons (cons (car x) (car y))
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(pairlis (cdr x) (cdr y) a)))))
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(define (assoc x a)
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;;(stderr "assoc x=~a\n" x)
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;;(debug "assoc x=~a a=~a\n" x a)
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(cond
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((null? a) #f)
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((eq? (caar a) x) (car a))
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(#t (assoc x (cdr a)))))
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(define (append x y)
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(cond ((null? x) y)
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(#t (cons (car x) (append (cdr x) y)))))
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(define (eval-environment e a)
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(eval e (append a environment)))
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(define (apply-environment fn e a)
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(apply fn e (append a environment)))
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(define (readenv a)
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(let ((x (guile:read)))
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(if (guile:eof-object? x) '()
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x)))
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(define environment
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`(
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(() . ())
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(#t . #t)
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(#f . #f)
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(*unspecified* . ,*unspecified*)
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(atom? . ,atom?)
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(car . ,car)
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(cdr . ,cdr)
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(cons . ,cons)
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(cond . ,evcon)
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(eq? . ,eq?)
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(null? . ,null?)
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(pair? . ,guile:pair?)
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;;(quote . ,quote)
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(evlis . ,evlis)
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(evcon . ,evcon)
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(pairlis . ,pairlis)
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(assoc . ,assoc)
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(eval . ,eval-environment)
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(apply . ,apply-environment)
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(readenv . ,readenv)
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(display . ,guile:display)
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(newline . ,guile:newline)
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(builtin? . ,builtin?)
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(number? . ,number?)
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(call . ,call)
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(< . ,guile:<)
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(- . ,guile:-)
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;; DERIVED
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(caar . ,caar)
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(cadr . ,cadr)
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(cdar . ,cdar)
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(cddr . ,cddr)
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(caadr . ,caadr)
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(caddr . ,caddr)
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(cdadr . ,cdadr)
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(cadar . ,cadar)
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(cddar . ,cddar)
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(cdddr . ,cdddr)
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(append . ,append)
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(exit . ,guile:exit)
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(*macro* . ())
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;;
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(stderr . ,stderr)))
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(define (mes-define-lambda x a)
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(cons (caadr x) (cons 'lambda (cons (cdadr x) (cddr x)))))
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(define (mes-define x a)
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(if (atom? (cadr x))
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(cons (cadr x) (eval (caddr x) a))
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(mes-define-lambda x a)))
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(define (mes-define-macro x a)
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(cons '*macro*
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(cons (mes-define-lambda x a)
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(cdr (assoc '*macro* a)))))
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(define (loop r e a)
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(cond ((null? e) r)
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((eq? e 'exit)
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(apply (cdr (assoc 'loop a))
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(cons *unspecified* (cons #t (cons a '())))
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a))
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((atom? e) (loop (eval e a) (readenv a) a))
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((eq? (car e) 'define)
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(loop *unspecified* (readenv a) (cons (mes-define e a) a)))
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((eq? (car e) 'define-macro)
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(loop *unspecified* (readenv a) (cons (mes-define-macro e a) a)))
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(#t (loop (eval e a) (readenv a) a))))
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(define (main arguments)
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(let ((a (append environment `((*a* . ,environment)))))
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;;(guile:display (eval (readenv a) a))
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(guile:display (loop *unspecified* (readenv a) a))
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)
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(guile:newline))
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(guile:module-define! (guile:resolve-interface '(mes)) 'main main)
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