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437 lines
13 KiB
Scheme
437 lines
13 KiB
Scheme
;;; "t3.init" Initialization file for SLIB for T3.1. -*-scheme-*-
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;;; Authors: David Carlton, Stephen Bevan, F. Javier Thayer, and Aubrey Jaffer.
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;;;
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;;; This code is in the public domain.
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;;; File has T syntax, and should be compiled in standard-env.
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;;; Compiled file has .so suffix.
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;;; File (or compiled version) should be loaded into scheme-env.
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;;; This is provided with ABSOLUTELY NO GUARANTEE.
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(herald t3)
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(define (software-type) 'UNIX)
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(define (scheme-implementation-type) 'T)
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(define (scheme-implementation-version) "3.1")
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;;; (scheme-implementation-home-page) should return a (string) URI
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;;; (Uniform Resource Identifier) for this scheme implementation's home
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;;; page; or false if there isn't one.
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(define (scheme-implementation-home-page)
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"ftp://ftp.cs.indiana.edu:21/pub/scheme-repository/imp/t/README")
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;;; (implementation-vicinity) should be defined to be the pathname of
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;;; the directory where any auxillary files to your Scheme
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;;; implementation reside. It is settable.
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(define implementation-vicinity
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(make-simple-switch 'implementation-vicinity
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(lambda (x) (or (string? x) (false? x)))
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'#f))
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(set (implementation-vicinity) "/usr/local/lib/tsystem/")
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;;; (library-vicinity) should be defined to be the pathname of the
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;;; directory where files of Scheme library functions reside. It is settable.
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(define library-vicinity
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(make-simple-switch 'library-vicinity
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(lambda (x) (or (string? x) (false? x)))
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'#f))
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(set (library-vicinity) "/usr/local/lib/slib/")
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;;Obviously put your value here.
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;;; (home-vicinity) should return the vicinity of the user's HOME
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;;; directory, the directory which typically contains files which
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;;; customize a computer environment for a user.
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(define (home-vicinity) #f)
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;;; *FEATURES* should be set to a list of symbols describing features
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;;; of this implementation. See Template.scm for the list of feature
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;;; names.
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(define *features*
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'(
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source ;can load scheme source files
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;(slib:load-source "filename")
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compiled ;can load compiled files
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;(slib:load-compiled "filename")
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rev3-report
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rev4-optional-procedures
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rev3-procedures
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rev2-procedures
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multiarg/and-
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multiarg-apply
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rationalize
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object-hash
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delay
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i/o-redirection
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char-ready?
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with-file
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transcript
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full-continuation
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pretty-print
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format
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trace ;has macros: TRACE and UNTRACE
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program-arguments
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))
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(define substring
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(let ((primitive-substring (*value standard-env 'substring)))
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(lambda (string start end)
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(primitive-substring string start (max 0 (- end 1))))))
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; Modify substring as T's substring takes (start,count) instead of
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; (start,end)
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(set (syntax-table-entry (env-syntax-table scheme-env) 'require) '#f)
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; Turn off the macro REQUIRE so that it can be rebound as a function
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; later.
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; extend <, >, <= and >= so that they take more than two arguments.
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(define <
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(let ((primitive< (*value standard-env '<)))
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(labels ((v (lambda (a b . rest)
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(if (null? rest)
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(primitive< a b)
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(and (primitive< a b)
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(apply v b (car rest) (cdr rest)))))))
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v)))
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(define >
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(let ((primitive> (*value standard-env '>)))
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(labels ((v (lambda (a b . rest)
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(if (null? rest)
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(primitive> a b)
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(and (primitive> a b)
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(apply v b (car rest) (cdr rest)))))))
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v)))
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(define <=
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(let ((primitive<= (*value standard-env '<=)))
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(labels ((v (lambda (a b . rest)
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(if (null? rest)
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(primitive<= a b)
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(and (primitive<= a b)
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(apply v b (car rest) (cdr rest)))))))
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v)))
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(define >=
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(let ((primitive>= (*value standard-env '>=)))
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(labels ((v (lambda (a b . rest)
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(if (null? rest)
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(primitive>= a b)
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(and (primitive>= a b)
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(apply v b (car rest) (cdr rest)))))))
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v)))
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(define =
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(let ((primitive= (*value standard-env '=)))
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(labels ((v (lambda (a b . rest)
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(if (null? rest)
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(primitive= a b)
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(and (primitive= a b)
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(apply v b (car rest) (cdr rest)))))))
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v)))
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(define gcd
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(let ((prim (*value standard-env 'gcd)))
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(labels ((v (lambda x
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(cond ((null? x) 0)
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((= (length x) 1) (car x))
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('#t (prim (car x) (apply v (cdr x))))))))
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v)))
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(define list? (*value standard-env 'proper-list?))
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(define program-arguments command-line)
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;;; (OUTPUT-PORT-WIDTH <port>)
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(define output-port-width
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(lambda x
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(if (null? x) (line-length (standard-input))
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(line-length (car x)))))
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;;; (OUTPUT-PORT-HEIGHT <port>)
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(define (output-port-height . arg) 24)
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;;; (CURRENT-ERROR-PORT)
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(define current-error-port
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(let ((port (current-output-port)))
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(lambda () port)))
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;;; (TMPNAM) makes a temporary file name.
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(define tmpnam
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(let ((cntr 100))
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(lambda () (set! cntr (+ 1 cntr))
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(let ((tmp (string-append "slib_" (number->string cntr))))
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(if (file-exists? tmp) (tmpnam) tmp)))))
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(define delete-file file-delete)
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;;; "rationalize" adjunct procedures.
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(define (find-ratio x e)
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(let ((rat (rationalize x e)))
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(list (numerator rat) (denominator rat))))
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(define (find-ratio-between x y)
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(find-ratio (/ (+ x y) 2) (/ (- x y) 2)))
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;;; CHAR-CODE-LIMIT is one greater than the largest integer which can
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;;; be returned by CHAR->INTEGER.
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(define char-code-limit 256)
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;;; MOST-POSITIVE-FIXNUM is used in modular.scm
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;;; T already has it.
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;;; Return argument
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(define (identity x) x)
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;;; SLIB:EVAL is single argument eval using the top-level (user) environment.
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(define (slib:eval form) (eval form scheme-env))
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;;; If your implementation provides R4RS macros:
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;(define macro:eval slib:eval)
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;(define macro:load load)
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(define *defmacros*
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(list (cons 'defmacro
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(lambda (name parms . body)
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`(set! *defmacros* (cons (cons ',name (lambda ,parms ,@body))
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*defmacros*))))))
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(define (defmacro? m) (and (assq m *defmacros*) #t))
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(define (macroexpand-1 e)
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(if (pair? e) (let ((a (car e)))
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(cond ((symbol? a) (set! a (assq a *defmacros*))
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(if a (apply (cdr a) (cdr e)) e))
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(else e)))
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e))
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(define (macroexpand e)
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(if (pair? e) (let ((a (car e)))
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(cond ((symbol? a)
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(set! a (assq a *defmacros*))
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(if a (macroexpand (apply (cdr a) (cdr e))) e))
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(else e)))
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e))
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(define gentemp
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(let ((*gensym-counter* -1))
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(lambda ()
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(set! *gensym-counter* (+ *gensym-counter* 1))
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(string->symbol
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(string-append "slib:G" (number->string *gensym-counter*))))))
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(define base:eval slib:eval)
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(define (defmacro:eval x) (base:eval (defmacro:expand* x)))
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(define (defmacro:expand* x)
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(require 'defmacroexpand) (apply defmacro:expand* x '()))
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(define (defmacro:load <pathname>)
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(slib:eval-load <pathname> defmacro:eval))
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(define (slib:eval-load <pathname> evl)
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(if (not (file-exists? <pathname>))
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(set! <pathname> (string-append <pathname> (scheme-file-suffix))))
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(call-with-input-file <pathname>
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(lambda (port)
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(let ((old-load-pathname *load-pathname*))
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(set! *load-pathname* <pathname>)
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(do ((o (read port) (read port)))
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((eof-object? o))
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(evl o))
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(set! *load-pathname* old-load-pathname)))))
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(define slib:warn
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(lambda args
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(let ((cep (current-error-port)))
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(if (provided? 'trace) (print-call-stack cep))
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(display "Warn: " cep)
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(for-each (lambda (x) (display x cep)) args))))
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;;; define an error procedure for the library
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(define (slib:error . args)
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(if (provided? 'trace) (print-call-stack (current-error-port)))
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(apply error args))
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;;; define these as appropriate for your system.
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(define slib:tab #\tab)
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(define slib:form-feed #\form)
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;;; Define these if your implementation's syntax can support it and if
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;;; they are not already defined.
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;(define (1+ n) (+ n 1))
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(define (1- n) (+ n -1))
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;(define (-1+ n) (+ n -1))
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(define program-vicinity
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(make-simple-switch 'program-vicinity
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(lambda (x) (or (string? x) (false? x)))
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'#f))
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(define in-vicinity string-append)
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;;; Define SLIB:EXIT to be the implementation procedure to exit or
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;;; return if exitting not supported.
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(define slib:exit (lambda args (exit))
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(define (string . args) (apply string-append (map char->string args)))
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(define make-string
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(let ((t:make-string (*value standard-env 'make-string)))
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(lambda (a . b)
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(let ((str (t:make-string a)))
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(if b (map-string! (lambda (x) (ignore x) (car b)) str) str)))))
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(define (string>? a b)
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(labels ((aux
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(lambda (n a b)
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;;start off with n<=(string-length b) and n<=(string-length a)
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;;a,b coincide for chars <n
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(cond ((= (string-length a) n) (< n (string-length b)))
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;;now (< n (string-length a))
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((= (string-length b) n) '#f)
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;;now (< n (string-length a))
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((char=? (nthchar a n) (nthchar b n) ) (aux (+ 1 n) a b))
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('#t (char<? (nthchar b n) (nthchar a n)))))))
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(aux 0 a b)))
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(define (string<? a b) (string>? b a))
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(define (string<=? a b) (not (string>? a b)))
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(define (string>=? a b) (not (string<? a b)))
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(define (string-ci<? a b)
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(string<? (string-upcase a) (string-upcase b)))
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(define (string-ci>? a b)
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(string>? (string-upcase a) (string-upcase b)))
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(define (string-ci<=? a b)
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(string<=? (string-upcase a) (string-upcase b)))
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(define (string-ci>=? a b)
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(string>=? (string-upcase a) (string-upcase b)))
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;;; FORCE-OUTPUT flushes any pending output on optional arg output port
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;;; use this definition if your system doesn't have such a procedure.
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;;; T already has it, but requires 1 argument.
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(define force-output
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(let ((t:force-output (*value standard-env 'force-output)))
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(lambda x
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(if x
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(t:force-output (car x))
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(t:force-output (current-output-port))))))
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;;; CALL-WITH-INPUT-STRING and CALL-WITH-OUTPUT-STRING are the string
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;;; port versions of CALL-WITH-*PUT-FILE.
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(define (call-with-output-string proc)
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(with-output-to-string var (proc var)))
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(define (call-with-input-string string proc)
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(with-input-from-string (variable string) (proc variable)))
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(define (string->number s . x)
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(let ((base (if x (car x) 10))
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(s (string-upcase s)))
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(or (mem? = base '(8 10 16))
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(error (format (current-error-port) "Bad radix ~A" base)))
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(if (= (string-length s) 0) '()
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(let ((char->number
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(lambda (ch)
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(cdr (ass char=? ch
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'((#\0 . 0)
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(#\1 . 1) (#\2 . 2) (#\3 . 3) (#\4 . 4)
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(#\5 . 5) (#\6 . 6) (#\7 . 7) (#\8 . 8)
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(#\9 . 9) (#\A . 10) (#\B . 11) (#\C . 12)
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(#\D . 13) (#\E . 14) (#\F . 15)))))))
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(catch not-num
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(iterate loop ((pos (- (string-length s) 1))
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(power 1) (accum 0))
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(if (< pos 0) accum
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(let ((num (char->number (string-ref s pos))))
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(or num (not-num '()))
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(or (< num base) (not-num '()))
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(loop (- pos 1)
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(* power base)
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(+ accum (* num power)))))))))))
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(define (number->string n . x)
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(let ((rad (if (car x) (car x) 10)))
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(format nil
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(case rad
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((8) "~O")
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((10) "~D")
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((16) "~X")
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(else (error (format (current-error-port)
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"Bad radix ~A" (car x)))))
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n)))
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(define (inexact? f)
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(float? f))
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(define (exact? f)
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(not (inexact? f)))
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(define exact->inexact ->float)
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(define peek-char
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(let ((t:peek-char (*value standard-env 'peek-char)))
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(lambda p
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(let ((port (if p (car p) (current-input-port))))
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(t:peek-char port)))))
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;;;(set ((*value scheme-env 'standard-early-binding-env) 'load) '#f)
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;;;(set ((*value scheme-env 'standard-early-binding-env) 'substring) '#f)
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(set ((*value scheme-env 'standard-early-binding-env) 'less?) '#f)
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(set ((*value scheme-env 'standard-early-binding-env) 'greater?) '#f)
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(set ((*value scheme-env 'standard-early-binding-env) 'not-less?) '#f)
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(set ((*value scheme-env 'standard-early-binding-env) 'not-greater?) '#f)
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(set ((*value scheme-env 'standard-early-binding-env) 'number-equal?) '#f)
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(set ((*value scheme-internal-env 'standard-early-binding-env) 'list?) '#f)
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(set ((*value t-implementation-env 'SOURCE-FILE-EXTENSION)) 'scm)
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;;; Here for backward compatability
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(define (scheme-file-suffix) "")
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(define load
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(let ((t:load (*value standard-env 'load)))
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(lambda (filespec . x)
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(apply t:load (->filename filespec) x))))
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;;; (SLIB:LOAD-SOURCE "foo") should load "foo.scm" or with whatever
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;;; suffix all the module files in SLIB have. See feature 'SOURCE.
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(define slib:load-source load)
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;;; (SLIB:LOAD-COMPILED "foo") should load the file that was produced
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;;; by compiling "foo.scm" if this implementation can compile files.
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;;; See feature 'COMPILED.
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(define slib:load-compiled load)
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;;; At this point SLIB:LOAD must be able to load SLIB files.
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(define slib:load slib:load-source)
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(slib:load (in-vicinity (library-vicinity) "require") scheme-env)
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;;;(define scheme-read-table
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;;; (make-read-table standard-read-table 'modified-read-table))
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;;;
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;;;(set (read-table-entry scheme-read-table '#\#)
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;;; (lambda (p ch rtable)
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;;; (ignore ch) (ignore rtable)
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;;; ((*value scheme-env 'string->number)
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;;; (symbol->string (read-refusing-eof p)) 16)))
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;;;
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;;;(set (port-read-table (standard-input)) scheme-read-table)
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; eof
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