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[bpt/guile.git] / ice-9 / boot-9.scm
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1;;; installed-scm-file
2
cf743aea 3;;;; Copyright (C) 1995,1996,1997,1998,1999,2000,2001,2002, 2003 Free Software Foundation, Inc.
20edfbbd 4;;;;
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5;;;; This program is free software; you can redistribute it and/or modify
6;;;; it under the terms of the GNU General Public License as published by
7;;;; the Free Software Foundation; either version 2, or (at your option)
8;;;; any later version.
20edfbbd 9;;;;
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10;;;; This program is distributed in the hope that it will be useful,
11;;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
12;;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13;;;; GNU General Public License for more details.
20edfbbd 14;;;;
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15;;;; You should have received a copy of the GNU General Public License
16;;;; along with this software; see the file COPYING. If not, write to
15328041
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17;;;; the Free Software Foundation, Inc., 59 Temple Place, Suite 330,
18;;;; Boston, MA 02111-1307 USA
20edfbbd 19;;;;
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20;;;; As a special exception, the Free Software Foundation gives permission
21;;;; for additional uses of the text contained in its release of GUILE.
22;;;;
23;;;; The exception is that, if you link the GUILE library with other files
24;;;; to produce an executable, this does not by itself cause the
25;;;; resulting executable to be covered by the GNU General Public License.
26;;;; Your use of that executable is in no way restricted on account of
27;;;; linking the GUILE library code into it.
28;;;;
29;;;; This exception does not however invalidate any other reasons why
30;;;; the executable file might be covered by the GNU General Public License.
31;;;;
32;;;; This exception applies only to the code released by the
33;;;; Free Software Foundation under the name GUILE. If you copy
34;;;; code from other Free Software Foundation releases into a copy of
35;;;; GUILE, as the General Public License permits, the exception does
36;;;; not apply to the code that you add in this way. To avoid misleading
37;;;; anyone as to the status of such modified files, you must delete
38;;;; this exception notice from them.
39;;;;
40;;;; If you write modifications of your own for GUILE, it is your choice
41;;;; whether to permit this exception to apply to your modifications.
42;;;; If you do not wish that, delete this exception notice.
43;;;;
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44\f
45
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46;;; Commentary:
47
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48;;; This file is the first thing loaded into Guile. It adds many mundane
49;;; definitions and a few that are interesting.
50;;;
20edfbbd 51;;; The module system (hence the hierarchical namespace) are defined in this
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52;;; file.
53;;;
54
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55;;; Code:
56
0f2d19dd 57\f
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58;;; {Deprecation}
59;;;
60
61;; We don't have macros here, but we do want to define
62;; `begin-deprecated' early.
63
64(define begin-deprecated
65 (procedure->memoizing-macro
66 (lambda (exp env)
67 (if (include-deprecated-features)
68 `(begin ,@(cdr exp))
69 `#f))))
70
71\f
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72;;; {Features}
73;;
74
75(define (provide sym)
76 (if (not (memq sym *features*))
77 (set! *features* (cons sym *features*))))
78
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79;;; Return #t iff FEATURE is available to this Guile interpreter.
80;;; In SLIB, provided? also checks to see if the module is available.
81;;; We should do that too, but don't.
82(define (provided? feature)
83 (and (memq feature *features*) #t))
84
8c494e99 85(begin-deprecated
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86 (define (feature? sym)
87 (issue-deprecation-warning
88 "`feature?' is deprecated. Use `provided?' instead.")
89 (provided? sym)))
52cfc69b 90
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91;;; let format alias simple-format until the more complete version is loaded
92(define format simple-format)
93
21ed9efe 94\f
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95;;; {R4RS compliance}
96
97(primitive-load-path "ice-9/r4rs.scm")
98
99\f
44cf1f0f 100;;; {Simple Debugging Tools}
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101;;
102
103
104;; peek takes any number of arguments, writes them to the
105;; current ouput port, and returns the last argument.
106;; It is handy to wrap around an expression to look at
107;; a value each time is evaluated, e.g.:
108;;
109;; (+ 10 (troublesome-fn))
110;; => (+ 10 (pk 'troublesome-fn-returned (troublesome-fn)))
111;;
112
113(define (peek . stuff)
114 (newline)
115 (display ";;; ")
116 (write stuff)
117 (newline)
118 (car (last-pair stuff)))
119
120(define pk peek)
121
122(define (warn . stuff)
123 (with-output-to-port (current-error-port)
124 (lambda ()
125 (newline)
126 (display ";;; WARNING ")
6355358a 127 (display stuff)
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128 (newline)
129 (car (last-pair stuff)))))
130
131\f
79451588 132;;; {Trivial Functions}
0f2d19dd 133;;;
79451588 134
6b08d75b 135(define (identity x) x)
79451588 136(define (1+ n) (+ n 1))
5cd06d5e 137(define (1- n) (+ n -1))
132e5fac 138(define (and=> value procedure) (and value (procedure value)))
79451588 139
5cd06d5e 140;;; apply-to-args is functionally redundant with apply and, worse,
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141;;; is less general than apply since it only takes two arguments.
142;;;
20edfbbd 143;;; On the other hand, apply-to-args is a syntacticly convenient way to
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144;;; perform binding in many circumstances when the "let" family of
145;;; of forms don't cut it. E.g.:
146;;;
147;;; (apply-to-args (return-3d-mouse-coords)
20edfbbd 148;;; (lambda (x y z)
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149;;; ...))
150;;;
151
152(define (apply-to-args args fn) (apply fn args))
153
154\f
6b08d75b 155
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156;;; {Integer Math}
157;;;
158
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159(define (ipow-by-squaring x k acc proc)
160 (cond ((zero? k) acc)
161 ((= 1 k) (proc acc x))
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162 (else (ipow-by-squaring (proc x x)
163 (quotient k 2)
164 (if (even? k) acc (proc acc x))
165 proc))))
0f2d19dd 166
0f2d19dd 167\f
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168;;; {Symbol Properties}
169;;;
170
171(define (symbol-property sym prop)
172 (let ((pair (assoc prop (symbol-pref sym))))
173 (and pair (cdr pair))))
174
175(define (set-symbol-property! sym prop val)
176 (let ((pair (assoc prop (symbol-pref sym))))
177 (if pair
178 (set-cdr! pair val)
179 (symbol-pset! sym (acons prop val (symbol-pref sym))))))
180
181(define (symbol-property-remove! sym prop)
182 (let ((pair (assoc prop (symbol-pref sym))))
183 (if pair
184 (symbol-pset! sym (delq! pair (symbol-pref sym))))))
185
2d55a919 186;;; {General Properties}
5cd06d5e 187;;;
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188
189;; This is a more modern interface to properties. It will replace all
190;; other property-like things eventually.
191
192(define (make-object-property)
193 (let ((prop (primitive-make-property #f)))
194 (make-procedure-with-setter
195 (lambda (obj) (primitive-property-ref prop obj))
196 (lambda (obj val) (primitive-property-set! prop obj val)))))
197
0f2d19dd 198\f
1e531c3a 199
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200;;; {Arrays}
201;;;
202
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203(if (provided? 'array)
204 (primitive-load-path "ice-9/arrays.scm"))
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205
206\f
207;;; {Keywords}
208;;;
209
210(define (symbol->keyword symbol)
211 (make-keyword-from-dash-symbol (symbol-append '- symbol)))
212
213(define (keyword->symbol kw)
06f0414c 214 (let ((sym (symbol->string (keyword-dash-symbol kw))))
11b05261 215 (string->symbol (substring sym 1 (string-length sym)))))
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216
217(define (kw-arg-ref args kw)
218 (let ((rem (member kw args)))
219 (and rem (pair? (cdr rem)) (cadr rem))))
220
221\f
fa7e9274 222
9f9aa47b 223;;; {Structs}
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224
225(define (struct-layout s)
9f9aa47b 226 (struct-ref (struct-vtable s) vtable-index-layout))
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227
228\f
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229
230;;; Environments
231
232(define the-environment
233 (procedure->syntax
234 (lambda (x e)
235 e)))
236
237(define the-root-environment (the-environment))
238
239(define (environment-module env)
240 (let ((closure (and (pair? env) (car (last-pair env)))))
241 (and closure (procedure-property closure 'module))))
242
243\f
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244;;; {Records}
245;;;
246
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247;; Printing records: by default, records are printed as
248;;
249;; #<type-name field1: val1 field2: val2 ...>
250;;
251;; You can change that by giving a custom printing function to
252;; MAKE-RECORD-TYPE (after the list of field symbols). This function
253;; will be called like
254;;
255;; (<printer> object port)
256;;
257;; It should print OBJECT to PORT.
258
cf8f1a90 259(define (inherit-print-state old-port new-port)
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260 (if (get-print-state old-port)
261 (port-with-print-state new-port (get-print-state old-port))
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262 new-port))
263
9f9aa47b 264;; 0: type-name, 1: fields
20edfbbd 265(define record-type-vtable
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266 (make-vtable-vtable "prpr" 0
267 (lambda (s p)
268 (cond ((eq? s record-type-vtable)
269 (display "#<record-type-vtable>" p))
270 (else
271 (display "#<record-type " p)
272 (display (record-type-name s) p)
273 (display ">" p))))))
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274
275(define (record-type? obj)
276 (and (struct? obj) (eq? record-type-vtable (struct-vtable obj))))
277
278(define (make-record-type type-name fields . opt)
8e693424 279 (let ((printer-fn (and (pair? opt) (car opt))))
0f2d19dd 280 (let ((struct (make-struct record-type-vtable 0
c7c03b9f 281 (make-struct-layout
06f0414c 282 (apply string-append
c7c03b9f 283 (map (lambda (f) "pw") fields)))
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284 (or printer-fn
285 (lambda (s p)
286 (display "#<" p)
287 (display type-name p)
288 (let loop ((fields fields)
289 (off 0))
290 (cond
291 ((not (null? fields))
292 (display " " p)
293 (display (car fields) p)
294 (display ": " p)
295 (display (struct-ref s off) p)
296 (loop (cdr fields) (+ 1 off)))))
297 (display ">" p)))
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298 type-name
299 (copy-tree fields))))
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300 ;; Temporary solution: Associate a name to the record type descriptor
301 ;; so that the object system can create a wrapper class for it.
302 (set-struct-vtable-name! struct (if (symbol? type-name)
303 type-name
304 (string->symbol type-name)))
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305 struct)))
306
307(define (record-type-name obj)
308 (if (record-type? obj)
9f9aa47b 309 (struct-ref obj vtable-offset-user)
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310 (error 'not-a-record-type obj)))
311
312(define (record-type-fields obj)
313 (if (record-type? obj)
9f9aa47b 314 (struct-ref obj (+ 1 vtable-offset-user))
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315 (error 'not-a-record-type obj)))
316
317(define (record-constructor rtd . opt)
8e693424 318 (let ((field-names (if (pair? opt) (car opt) (record-type-fields rtd))))
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319 (local-eval `(lambda ,field-names
320 (make-struct ',rtd 0 ,@(map (lambda (f)
321 (if (memq f field-names)
322 f
323 #f))
324 (record-type-fields rtd))))
325 the-root-environment)))
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326
327(define (record-predicate rtd)
328 (lambda (obj) (and (struct? obj) (eq? rtd (struct-vtable obj)))))
329
330(define (record-accessor rtd field-name)
331 (let* ((pos (list-index (record-type-fields rtd) field-name)))
332 (if (not pos)
333 (error 'no-such-field field-name))
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334 (local-eval `(lambda (obj)
335 (and (eq? ',rtd (record-type-descriptor obj))
336 (struct-ref obj ,pos)))
337 the-root-environment)))
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338
339(define (record-modifier rtd field-name)
340 (let* ((pos (list-index (record-type-fields rtd) field-name)))
341 (if (not pos)
342 (error 'no-such-field field-name))
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343 (local-eval `(lambda (obj val)
344 (and (eq? ',rtd (record-type-descriptor obj))
345 (struct-set! obj ,pos val)))
346 the-root-environment)))
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347
348
349(define (record? obj)
350 (and (struct? obj) (record-type? (struct-vtable obj))))
351
352(define (record-type-descriptor obj)
353 (if (struct? obj)
354 (struct-vtable obj)
355 (error 'not-a-record obj)))
356
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357(provide 'record)
358
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359\f
360;;; {Booleans}
361;;;
362
363(define (->bool x) (not (not x)))
364
365\f
366;;; {Symbols}
367;;;
368
369(define (symbol-append . args)
06f0414c 370 (string->symbol (apply string-append (map symbol->string args))))
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371
372(define (list->symbol . args)
373 (string->symbol (apply list->string args)))
374
375(define (symbol . args)
376 (string->symbol (apply string args)))
377
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378\f
379;;; {Lists}
380;;;
381
382(define (list-index l k)
383 (let loop ((n 0)
384 (l l))
385 (and (not (null? l))
386 (if (eq? (car l) k)
387 n
388 (loop (+ n 1) (cdr l))))))
389
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390(define (make-list n . init)
391 (if (pair? init) (set! init (car init)))
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392 (let loop ((answer '())
393 (n n))
394 (if (<= n 0)
395 answer
396 (loop (cons init answer) (- n 1)))))
397
1729d8ff 398\f
3e3cec45 399;;; {and-map and or-map}
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400;;;
401;;; (and-map fn lst) is like (and (fn (car lst)) (fn (cadr lst)) (fn...) ...)
402;;; (or-map fn lst) is like (or (fn (car lst)) (fn (cadr lst)) (fn...) ...)
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403;;;
404
405;; and-map f l
406;;
407;; Apply f to successive elements of l until exhaustion or f returns #f.
408;; If returning early, return #f. Otherwise, return the last value returned
409;; by f. If f has never been called because l is empty, return #t.
20edfbbd 410;;
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411(define (and-map f lst)
412 (let loop ((result #t)
413 (l lst))
414 (and result
415 (or (and (null? l)
416 result)
417 (loop (f (car l)) (cdr l))))))
418
419;; or-map f l
420;;
421;; Apply f to successive elements of l until exhaustion or while f returns #f.
422;; If returning early, return the return value of f.
423;;
424(define (or-map f lst)
425 (let loop ((result #f)
426 (l lst))
427 (or result
428 (and (not (null? l))
429 (loop (f (car l)) (cdr l))))))
430
59e1116d 431\f
0f2d19dd 432
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433(if (provided? 'posix)
434 (primitive-load-path "ice-9/posix.scm"))
6fa8995c 435
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436(if (provided? 'socket)
437 (primitive-load-path "ice-9/networking.scm"))
3afb28ce 438
6fa8995c 439(define file-exists?
52cfc69b 440 (if (provided? 'posix)
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441 (lambda (str)
442 (access? str F_OK))
443 (lambda (str)
444 (let ((port (catch 'system-error (lambda () (open-file str OPEN_READ))
445 (lambda args #f))))
446 (if port (begin (close-port port) #t)
447 #f)))))
448
449(define file-is-directory?
52cfc69b 450 (if (provided? 'posix)
6fa8995c 451 (lambda (str)
3afb28ce 452 (eq? (stat:type (stat str)) 'directory))
6fa8995c 453 (lambda (str)
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454 (let ((port (catch 'system-error
455 (lambda () (open-file (string-append str "/.")
456 OPEN_READ))
457 (lambda args #f))))
458 (if port (begin (close-port port) #t)
459 #f)))))
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460
461(define (has-suffix? str suffix)
462 (let ((sufl (string-length suffix))
463 (sl (string-length str)))
464 (and (> sl sufl)
465 (string=? (substring str (- sl sufl) sl) suffix))))
466
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467(define (system-error-errno args)
468 (if (eq? (car args) 'system-error)
469 (car (list-ref args 4))
470 #f))
471
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472\f
473;;; {Error Handling}
474;;;
475
0f2d19dd 476(define (error . args)
21ed9efe 477 (save-stack)
2194b6f0 478 (if (null? args)
5552355a 479 (scm-error 'misc-error #f "?" #f #f)
8641dd9e 480 (let loop ((msg "~A")
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GH
481 (rest (cdr args)))
482 (if (not (null? rest))
8641dd9e 483 (loop (string-append msg " ~S")
2194b6f0 484 (cdr rest))
5552355a 485 (scm-error 'misc-error #f msg args #f)))))
be2d2c70 486
1349bd53 487;; bad-throw is the hook that is called upon a throw to a an unhandled
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488;; key (unless the throw has four arguments, in which case
489;; it's usually interpreted as an error throw.)
490;; If the key has a default handler (a throw-handler-default property),
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491;; it is applied to the throw.
492;;
1349bd53 493(define (bad-throw key . args)
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494 (let ((default (symbol-property key 'throw-handler-default)))
495 (or (and default (apply default key args))
2194b6f0 496 (apply error "unhandled-exception:" key args))))
0f2d19dd 497
0f2d19dd 498\f
bce074ee 499
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GH
500(define (tm:sec obj) (vector-ref obj 0))
501(define (tm:min obj) (vector-ref obj 1))
502(define (tm:hour obj) (vector-ref obj 2))
503(define (tm:mday obj) (vector-ref obj 3))
504(define (tm:mon obj) (vector-ref obj 4))
505(define (tm:year obj) (vector-ref obj 5))
506(define (tm:wday obj) (vector-ref obj 6))
507(define (tm:yday obj) (vector-ref obj 7))
508(define (tm:isdst obj) (vector-ref obj 8))
509(define (tm:gmtoff obj) (vector-ref obj 9))
510(define (tm:zone obj) (vector-ref obj 10))
511
512(define (set-tm:sec obj val) (vector-set! obj 0 val))
513(define (set-tm:min obj val) (vector-set! obj 1 val))
514(define (set-tm:hour obj val) (vector-set! obj 2 val))
515(define (set-tm:mday obj val) (vector-set! obj 3 val))
516(define (set-tm:mon obj val) (vector-set! obj 4 val))
517(define (set-tm:year obj val) (vector-set! obj 5 val))
518(define (set-tm:wday obj val) (vector-set! obj 6 val))
519(define (set-tm:yday obj val) (vector-set! obj 7 val))
520(define (set-tm:isdst obj val) (vector-set! obj 8 val))
521(define (set-tm:gmtoff obj val) (vector-set! obj 9 val))
522(define (set-tm:zone obj val) (vector-set! obj 10 val))
523
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524(define (tms:clock obj) (vector-ref obj 0))
525(define (tms:utime obj) (vector-ref obj 1))
526(define (tms:stime obj) (vector-ref obj 2))
527(define (tms:cutime obj) (vector-ref obj 3))
528(define (tms:cstime obj) (vector-ref obj 4))
529
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530(define file-position ftell)
531(define (file-set-position port offset . whence)
532 (let ((whence (if (eq? whence '()) SEEK_SET (car whence))))
533 (seek port offset whence)))
8b13c6b3 534
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535(define (move->fdes fd/port fd)
536 (cond ((integer? fd/port)
7a6f1ffa 537 (dup->fdes fd/port fd)
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538 (close fd/port)
539 fd)
540 (else
541 (primitive-move->fdes fd/port fd)
542 (set-port-revealed! fd/port 1)
543 fd/port)))
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544
545(define (release-port-handle port)
546 (let ((revealed (port-revealed port)))
547 (if (> revealed 0)
548 (set-port-revealed! port (- revealed 1)))))
0f2d19dd 549
e38303a2 550(define (dup->port port/fd mode . maybe-fd)
7a6f1ffa 551 (let ((port (fdopen (apply dup->fdes port/fd maybe-fd)
e38303a2
GH
552 mode)))
553 (if (pair? maybe-fd)
554 (set-port-revealed! port 1))
555 port))
20edfbbd 556
e38303a2
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557(define (dup->inport port/fd . maybe-fd)
558 (apply dup->port port/fd "r" maybe-fd))
559
560(define (dup->outport port/fd . maybe-fd)
561 (apply dup->port port/fd "w" maybe-fd))
562
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GH
563(define (dup port/fd . maybe-fd)
564 (if (integer? port/fd)
565 (apply dup->fdes port/fd maybe-fd)
566 (apply dup->port port/fd (port-mode port/fd) maybe-fd)))
567
568(define (duplicate-port port modes)
569 (dup->port port modes))
570
571(define (fdes->inport fdes)
572 (let loop ((rest-ports (fdes->ports fdes)))
573 (cond ((null? rest-ports)
574 (let ((result (fdopen fdes "r")))
575 (set-port-revealed! result 1)
576 result))
577 ((input-port? (car rest-ports))
578 (set-port-revealed! (car rest-ports)
579 (+ (port-revealed (car rest-ports)) 1))
580 (car rest-ports))
581 (else
582 (loop (cdr rest-ports))))))
583
584(define (fdes->outport fdes)
585 (let loop ((rest-ports (fdes->ports fdes)))
586 (cond ((null? rest-ports)
587 (let ((result (fdopen fdes "w")))
588 (set-port-revealed! result 1)
589 result))
590 ((output-port? (car rest-ports))
591 (set-port-revealed! (car rest-ports)
592 (+ (port-revealed (car rest-ports)) 1))
593 (car rest-ports))
594 (else
595 (loop (cdr rest-ports))))))
596
597(define (port->fdes port)
598 (set-port-revealed! port (+ (port-revealed port) 1))
599 (fileno port))
600
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601(define (setenv name value)
602 (if value
603 (putenv (string-append name "=" value))
604 (putenv name)))
605
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MV
606(define (unsetenv name)
607 "Remove the entry for NAME from the environment."
608 (putenv name))
609
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610\f
611;;; {Load Paths}
612;;;
613
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614;;; Here for backward compatability
615;;
616(define scheme-file-suffix (lambda () ".scm"))
617
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JB
618(define (in-vicinity vicinity file)
619 (let ((tail (let ((len (string-length vicinity)))
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MD
620 (if (zero? len)
621 #f
3cab8392
JB
622 (string-ref vicinity (- len 1))))))
623 (string-append vicinity
534a0099
MD
624 (if (or (not tail)
625 (eq? tail #\/))
626 ""
627 "/")
3cab8392 628 file)))
02ceadb8 629
0f2d19dd 630\f
ef00e7f4
JB
631;;; {Help for scm_shell}
632;;; The argument-processing code used by Guile-based shells generates
633;;; Scheme code based on the argument list. This page contains help
634;;; functions for the code it generates.
635
ef00e7f4
JB
636(define (command-line) (program-arguments))
637
5aa7fe69
JB
638;; This is mostly for the internal use of the code generated by
639;; scm_compile_shell_switches.
eef6519b
MV
640
641(define (turn-on-debugging)
642 (debug-enable 'debug)
643 (debug-enable 'backtrace)
644 (read-enable 'positions))
4eecfeb7 645
ef00e7f4 646(define (load-user-init)
1f08acd9
GH
647 (let* ((home (or (getenv "HOME")
648 (false-if-exception (passwd:dir (getpwuid (getuid))))
649 "/")) ;; fallback for cygwin etc.
650 (init-file (in-vicinity home ".guile")))
651 (if (file-exists? init-file)
652 (primitive-load init-file))))
ef00e7f4
JB
653
654\f
a06181a2
JB
655;;; {Loading by paths}
656
657;;; Load a Scheme source file named NAME, searching for it in the
658;;; directories listed in %load-path, and applying each of the file
659;;; name extensions listed in %load-extensions.
660(define (load-from-path name)
661 (start-stack 'load-stack
75a97b92 662 (primitive-load-path name)))
0f2d19dd 663
5552355a 664
0f2d19dd 665\f
0f2d19dd
JB
666;;; {Transcendental Functions}
667;;;
668;;; Derived from "Transcen.scm", Complex trancendental functions for SCM.
0543c9b7 669;;; Written by Jerry D. Hedden, (C) FSF.
0f2d19dd
JB
670;;; See the file `COPYING' for terms applying to this program.
671;;;
672
673(define (exp z)
674 (if (real? z) ($exp z)
675 (make-polar ($exp (real-part z)) (imag-part z))))
676
677(define (log z)
678 (if (and (real? z) (>= z 0))
679 ($log z)
680 (make-rectangular ($log (magnitude z)) (angle z))))
681
682(define (sqrt z)
683 (if (real? z)
684 (if (negative? z) (make-rectangular 0 ($sqrt (- z)))
0ac6420c 685 ($sqrt z))
0f2d19dd
JB
686 (make-polar ($sqrt (magnitude z)) (/ (angle z) 2))))
687
688(define expt
689 (let ((integer-expt integer-expt))
690 (lambda (z1 z2)
22381005 691 (cond ((integer? z2)
0ad7cc4f
RB
692 (if (negative? z2)
693 (/ 1 (integer-expt z1 (- z2)))
694 (integer-expt z1 z2)))
0f2d19dd
JB
695 ((and (real? z2) (real? z1) (>= z1 0))
696 ($expt z1 z2))
697 (else
698 (exp (* z2 (log z1))))))))
699
700(define (sinh z)
701 (if (real? z) ($sinh z)
702 (let ((x (real-part z)) (y (imag-part z)))
703 (make-rectangular (* ($sinh x) ($cos y))
704 (* ($cosh x) ($sin y))))))
705(define (cosh z)
706 (if (real? z) ($cosh z)
707 (let ((x (real-part z)) (y (imag-part z)))
708 (make-rectangular (* ($cosh x) ($cos y))
709 (* ($sinh x) ($sin y))))))
710(define (tanh z)
711 (if (real? z) ($tanh z)
712 (let* ((x (* 2 (real-part z)))
713 (y (* 2 (imag-part z)))
714 (w (+ ($cosh x) ($cos y))))
715 (make-rectangular (/ ($sinh x) w) (/ ($sin y) w)))))
716
717(define (asinh z)
718 (if (real? z) ($asinh z)
719 (log (+ z (sqrt (+ (* z z) 1))))))
720
721(define (acosh z)
722 (if (and (real? z) (>= z 1))
723 ($acosh z)
724 (log (+ z (sqrt (- (* z z) 1))))))
725
726(define (atanh z)
727 (if (and (real? z) (> z -1) (< z 1))
728 ($atanh z)
729 (/ (log (/ (+ 1 z) (- 1 z))) 2)))
730
731(define (sin z)
732 (if (real? z) ($sin z)
733 (let ((x (real-part z)) (y (imag-part z)))
734 (make-rectangular (* ($sin x) ($cosh y))
735 (* ($cos x) ($sinh y))))))
736(define (cos z)
737 (if (real? z) ($cos z)
738 (let ((x (real-part z)) (y (imag-part z)))
739 (make-rectangular (* ($cos x) ($cosh y))
740 (- (* ($sin x) ($sinh y)))))))
741(define (tan z)
742 (if (real? z) ($tan z)
743 (let* ((x (* 2 (real-part z)))
744 (y (* 2 (imag-part z)))
745 (w (+ ($cos x) ($cosh y))))
746 (make-rectangular (/ ($sin x) w) (/ ($sinh y) w)))))
747
748(define (asin z)
749 (if (and (real? z) (>= z -1) (<= z 1))
750 ($asin z)
751 (* -i (asinh (* +i z)))))
752
753(define (acos z)
754 (if (and (real? z) (>= z -1) (<= z 1))
755 ($acos z)
756 (+ (/ (angle -1) 2) (* +i (asinh (* +i z))))))
757
758(define (atan z . y)
759 (if (null? y)
760 (if (real? z) ($atan z)
761 (/ (log (/ (- +i z) (+ +i z))) +2i))
762 ($atan2 z (car y))))
763
65495221
GH
764(define (log10 arg)
765 (/ (log arg) (log 10)))
766
0f2d19dd 767\f
0f2d19dd
JB
768
769;;; {Reader Extensions}
770;;;
771
772;;; Reader code for various "#c" forms.
773;;;
774
75a97b92
GH
775(read-hash-extend #\' (lambda (c port)
776 (read port)))
600c9584
RB
777
778(define read-eval? (make-fluid))
779(fluid-set! read-eval? #f)
780(read-hash-extend #\.
781 (lambda (c port)
782 (if (fluid-ref read-eval?)
783 (eval (read port) (interaction-environment))
784 (error
71335c0d 785 "#. read expansion found and read-eval? is #f."))))
75a97b92 786
0f2d19dd
JB
787\f
788;;; {Command Line Options}
789;;;
790
791(define (get-option argv kw-opts kw-args return)
792 (cond
793 ((null? argv)
794 (return #f #f argv))
795
796 ((or (not (eq? #\- (string-ref (car argv) 0)))
797 (eq? (string-length (car argv)) 1))
798 (return 'normal-arg (car argv) (cdr argv)))
799
800 ((eq? #\- (string-ref (car argv) 1))
801 (let* ((kw-arg-pos (or (string-index (car argv) #\=)
802 (string-length (car argv))))
803 (kw (symbol->keyword (substring (car argv) 2 kw-arg-pos)))
804 (kw-opt? (member kw kw-opts))
805 (kw-arg? (member kw kw-args))
806 (arg (or (and (not (eq? kw-arg-pos (string-length (car argv))))
807 (substring (car argv)
808 (+ kw-arg-pos 1)
809 (string-length (car argv))))
810 (and kw-arg?
811 (begin (set! argv (cdr argv)) (car argv))))))
812 (if (or kw-opt? kw-arg?)
813 (return kw arg (cdr argv))
814 (return 'usage-error kw (cdr argv)))))
815
816 (else
817 (let* ((char (substring (car argv) 1 2))
818 (kw (symbol->keyword char)))
819 (cond
820
821 ((member kw kw-opts)
822 (let* ((rest-car (substring (car argv) 2 (string-length (car argv))))
823 (new-argv (if (= 0 (string-length rest-car))
824 (cdr argv)
825 (cons (string-append "-" rest-car) (cdr argv)))))
826 (return kw #f new-argv)))
827
828 ((member kw kw-args)
829 (let* ((rest-car (substring (car argv) 2 (string-length (car argv))))
830 (arg (if (= 0 (string-length rest-car))
831 (cadr argv)
832 rest-car))
833 (new-argv (if (= 0 (string-length rest-car))
834 (cddr argv)
835 (cdr argv))))
836 (return kw arg new-argv)))
837
838 (else (return 'usage-error kw argv)))))))
839
840(define (for-next-option proc argv kw-opts kw-args)
841 (let loop ((argv argv))
842 (get-option argv kw-opts kw-args
843 (lambda (opt opt-arg argv)
844 (and opt (proc opt opt-arg argv loop))))))
845
846(define (display-usage-report kw-desc)
847 (for-each
848 (lambda (kw)
849 (or (eq? (car kw) #t)
850 (eq? (car kw) 'else)
851 (let* ((opt-desc kw)
852 (help (cadr opt-desc))
853 (opts (car opt-desc))
854 (opts-proper (if (string? (car opts)) (cdr opts) opts))
855 (arg-name (if (string? (car opts))
856 (string-append "<" (car opts) ">")
857 ""))
858 (left-part (string-append
859 (with-output-to-string
860 (lambda ()
861 (map (lambda (x) (display (keyword-symbol x)) (display " "))
862 opts-proper)))
863 arg-name))
11b05261
MD
864 (middle-part (if (and (< (string-length left-part) 30)
865 (< (string-length help) 40))
866 (make-string (- 30 (string-length left-part)) #\ )
0f2d19dd
JB
867 "\n\t")))
868 (display left-part)
869 (display middle-part)
870 (display help)
871 (newline))))
872 kw-desc))
0f2d19dd 873
20edfbbd
TTN
874
875
0f2d19dd
JB
876(define (transform-usage-lambda cases)
877 (let* ((raw-usage (delq! 'else (map car cases)))
878 (usage-sans-specials (map (lambda (x)
879 (or (and (not (list? x)) x)
880 (and (symbol? (car x)) #t)
881 (and (boolean? (car x)) #t)
882 x))
883 raw-usage))
ed440df5 884 (usage-desc (delq! #t usage-sans-specials))
0f2d19dd
JB
885 (kw-desc (map car usage-desc))
886 (kw-opts (apply append (map (lambda (x) (and (not (string? (car x))) x)) kw-desc)))
887 (kw-args (apply append (map (lambda (x) (and (string? (car x)) (cdr x))) kw-desc)))
888 (transmogrified-cases (map (lambda (case)
889 (cons (let ((opts (car case)))
890 (if (or (boolean? opts) (eq? 'else opts))
891 opts
892 (cond
893 ((symbol? (car opts)) opts)
894 ((boolean? (car opts)) opts)
895 ((string? (caar opts)) (cdar opts))
896 (else (car opts)))))
897 (cdr case)))
898 cases)))
899 `(let ((%display-usage (lambda () (display-usage-report ',usage-desc))))
900 (lambda (%argv)
901 (let %next-arg ((%argv %argv))
902 (get-option %argv
903 ',kw-opts
904 ',kw-args
905 (lambda (%opt %arg %new-argv)
906 (case %opt
907 ,@ transmogrified-cases))))))))
908
909
910\f
911
912;;; {Low Level Modules}
913;;;
914;;; These are the low level data structures for modules.
915;;;
916;;; !!! warning: The interface to lazy binder procedures is going
917;;; to be changed in an incompatible way to permit all the basic
918;;; module ops to be virtualized.
919;;;
920;;; (make-module size use-list lazy-binding-proc) => module
921;;; module-{obarray,uses,binder}[|-set!]
922;;; (module? obj) => [#t|#f]
923;;; (module-locally-bound? module symbol) => [#t|#f]
924;;; (module-bound? module symbol) => [#t|#f]
925;;; (module-symbol-locally-interned? module symbol) => [#t|#f]
926;;; (module-symbol-interned? module symbol) => [#t|#f]
927;;; (module-local-variable module symbol) => [#<variable ...> | #f]
928;;; (module-variable module symbol) => [#<variable ...> | #f]
929;;; (module-symbol-binding module symbol opt-value)
930;;; => [ <obj> | opt-value | an error occurs ]
931;;; (module-make-local-var! module symbol) => #<variable...>
932;;; (module-add! module symbol var) => unspecified
933;;; (module-remove! module symbol) => unspecified
934;;; (module-for-each proc module) => unspecified
935;;; (make-scm-module) => module ; a lazy copy of the symhash module
936;;; (set-current-module module) => unspecified
937;;; (current-module) => #<module...>
938;;;
939;;;
940
941\f
44cf1f0f
JB
942;;; {Printing Modules}
943;; This is how modules are printed. You can re-define it.
fa7e9274
MV
944;; (Redefining is actually more complicated than simply redefining
945;; %print-module because that would only change the binding and not
946;; the value stored in the vtable that determines how record are
947;; printed. Sigh.)
948
949(define (%print-module mod port) ; unused args: depth length style table)
0f2d19dd
JB
950 (display "#<" port)
951 (display (or (module-kind mod) "module") port)
952 (let ((name (module-name mod)))
953 (if name
954 (begin
955 (display " " port)
956 (display name port))))
957 (display " " port)
958 (display (number->string (object-address mod) 16) port)
959 (display ">" port))
960
961;; module-type
962;;
963;; A module is characterized by an obarray in which local symbols
964;; are interned, a list of modules, "uses", from which non-local
965;; bindings can be inherited, and an optional lazy-binder which
31d50456 966;; is a (CLOSURE module symbol) which, as a last resort, can provide
0f2d19dd
JB
967;; bindings that would otherwise not be found locally in the module.
968;;
d7faeb2e
MD
969;; NOTE: If you change here, you also need to change libguile/modules.h.
970;;
0f2d19dd 971(define module-type
7a0ff2f8 972 (make-record-type 'module
1777c18b
MD
973 '(obarray uses binder eval-closure transformer name kind
974 observers weak-observers observer-id)
8b718458 975 %print-module))
0f2d19dd 976
8b718458 977;; make-module &opt size uses binder
0f2d19dd 978;;
8b718458
JB
979;; Create a new module, perhaps with a particular size of obarray,
980;; initial uses list, or binding procedure.
0f2d19dd 981;;
0f2d19dd
JB
982(define make-module
983 (lambda args
0f2d19dd 984
8b718458
JB
985 (define (parse-arg index default)
986 (if (> (length args) index)
987 (list-ref args index)
988 default))
989
990 (if (> (length args) 3)
991 (error "Too many args to make-module." args))
0f2d19dd 992
231a4ea8 993 (let ((size (parse-arg 0 31))
8b718458
JB
994 (uses (parse-arg 1 '()))
995 (binder (parse-arg 2 #f)))
0f2d19dd 996
8b718458
JB
997 (if (not (integer? size))
998 (error "Illegal size to make-module." size))
999 (if (not (and (list? uses)
1000 (and-map module? uses)))
1001 (error "Incorrect use list." uses))
0f2d19dd
JB
1002 (if (and binder (not (procedure? binder)))
1003 (error
1004 "Lazy-binder expected to be a procedure or #f." binder))
1005
231a4ea8
MD
1006 (let ((module (module-constructor (and (not (zero? size))
1007 (make-hash-table size))
1777c18b
MD
1008 uses binder #f #f #f #f
1009 '()
1010 (make-weak-value-hash-table 31)
1011 0)))
8b718458
JB
1012
1013 ;; We can't pass this as an argument to module-constructor,
1014 ;; because we need it to close over a pointer to the module
1015 ;; itself.
6906bd0d 1016 (set-module-eval-closure! module (standard-eval-closure module))
8b718458
JB
1017
1018 module))))
0f2d19dd 1019
8b718458 1020(define module-constructor (record-constructor module-type))
0f2d19dd
JB
1021(define module-obarray (record-accessor module-type 'obarray))
1022(define set-module-obarray! (record-modifier module-type 'obarray))
1023(define module-uses (record-accessor module-type 'uses))
1024(define set-module-uses! (record-modifier module-type 'uses))
1025(define module-binder (record-accessor module-type 'binder))
1026(define set-module-binder! (record-modifier module-type 'binder))
631c1902
MD
1027
1028;; NOTE: This binding is used in libguile/modules.c.
31d50456 1029(define module-eval-closure (record-accessor module-type 'eval-closure))
631c1902 1030
7a0ff2f8
MD
1031(define module-transformer (record-accessor module-type 'transformer))
1032(define set-module-transformer! (record-modifier module-type 'transformer))
0f2d19dd
JB
1033(define module-name (record-accessor module-type 'name))
1034(define set-module-name! (record-modifier module-type 'name))
1035(define module-kind (record-accessor module-type 'kind))
1036(define set-module-kind! (record-modifier module-type 'kind))
1777c18b
MD
1037(define module-observers (record-accessor module-type 'observers))
1038(define set-module-observers! (record-modifier module-type 'observers))
1039(define module-weak-observers (record-accessor module-type 'weak-observers))
1040(define module-observer-id (record-accessor module-type 'observer-id))
1041(define set-module-observer-id! (record-modifier module-type 'observer-id))
0f2d19dd
JB
1042(define module? (record-predicate module-type))
1043
edc185c7
MD
1044(define set-module-eval-closure!
1045 (let ((setter (record-modifier module-type 'eval-closure)))
1046 (lambda (module closure)
1047 (setter module closure)
1048 ;; Make it possible to lookup the module from the environment.
1049 ;; This implementation is correct since an eval closure can belong
1050 ;; to maximally one module.
1051 (set-procedure-property! closure 'module module))))
8b718458 1052
0f2d19dd 1053\f
1777c18b
MD
1054;;; {Observer protocol}
1055;;;
1056
1057(define (module-observe module proc)
1058 (set-module-observers! module (cons proc (module-observers module)))
1059 (cons module proc))
1060
1061(define (module-observe-weak module proc)
1062 (let ((id (module-observer-id module)))
1063 (hash-set! (module-weak-observers module) id proc)
1064 (set-module-observer-id! module (+ 1 id))
1065 (cons module id)))
1066
1067(define (module-unobserve token)
1068 (let ((module (car token))
1069 (id (cdr token)))
1070 (if (integer? id)
1071 (hash-remove! (module-weak-observers module) id)
1072 (set-module-observers! module (delq1! id (module-observers module)))))
1073 *unspecified*)
1074
1a961d7e 1075(define (module-modified m)
1777c18b
MD
1076 (for-each (lambda (proc) (proc m)) (module-observers m))
1077 (hash-fold (lambda (id proc res) (proc m)) #f (module-weak-observers m)))
1078
1079\f
0f2d19dd
JB
1080;;; {Module Searching in General}
1081;;;
1082;;; We sometimes want to look for properties of a symbol
1083;;; just within the obarray of one module. If the property
1084;;; holds, then it is said to hold ``locally'' as in, ``The symbol
1085;;; DISPLAY is locally rebound in the module `safe-guile'.''
1086;;;
1087;;;
1088;;; Other times, we want to test for a symbol property in the obarray
1089;;; of M and, if it is not found there, try each of the modules in the
1090;;; uses list of M. This is the normal way of testing for some
1091;;; property, so we state these properties without qualification as
1092;;; in: ``The symbol 'fnord is interned in module M because it is
1093;;; interned locally in module M2 which is a member of the uses list
1094;;; of M.''
1095;;;
1096
1097;; module-search fn m
20edfbbd 1098;;
0f2d19dd
JB
1099;; return the first non-#f result of FN applied to M and then to
1100;; the modules in the uses of m, and so on recursively. If all applications
1101;; return #f, then so does this function.
1102;;
1103(define (module-search fn m v)
1104 (define (loop pos)
1105 (and (pair? pos)
1106 (or (module-search fn (car pos) v)
1107 (loop (cdr pos)))))
1108 (or (fn m v)
1109 (loop (module-uses m))))
1110
1111
1112;;; {Is a symbol bound in a module?}
1113;;;
1114;;; Symbol S in Module M is bound if S is interned in M and if the binding
1115;;; of S in M has been set to some well-defined value.
1116;;;
1117
1118;; module-locally-bound? module symbol
1119;;
1120;; Is a symbol bound (interned and defined) locally in a given module?
1121;;
1122(define (module-locally-bound? m v)
1123 (let ((var (module-local-variable m v)))
1124 (and var
1125 (variable-bound? var))))
1126
1127;; module-bound? module symbol
1128;;
1129;; Is a symbol bound (interned and defined) anywhere in a given module
1130;; or its uses?
1131;;
1132(define (module-bound? m v)
1133 (module-search module-locally-bound? m v))
1134
1135;;; {Is a symbol interned in a module?}
1136;;;
20edfbbd 1137;;; Symbol S in Module M is interned if S occurs in
0f2d19dd
JB
1138;;; of S in M has been set to some well-defined value.
1139;;;
1140;;; It is possible to intern a symbol in a module without providing
1141;;; an initial binding for the corresponding variable. This is done
1142;;; with:
1143;;; (module-add! module symbol (make-undefined-variable))
1144;;;
1145;;; In that case, the symbol is interned in the module, but not
1146;;; bound there. The unbound symbol shadows any binding for that
1147;;; symbol that might otherwise be inherited from a member of the uses list.
1148;;;
1149
1150(define (module-obarray-get-handle ob key)
1151 ((if (symbol? key) hashq-get-handle hash-get-handle) ob key))
1152
1153(define (module-obarray-ref ob key)
1154 ((if (symbol? key) hashq-ref hash-ref) ob key))
1155
1156(define (module-obarray-set! ob key val)
1157 ((if (symbol? key) hashq-set! hash-set!) ob key val))
1158
1159(define (module-obarray-remove! ob key)
1160 ((if (symbol? key) hashq-remove! hash-remove!) ob key))
1161
1162;; module-symbol-locally-interned? module symbol
20edfbbd 1163;;
0f2d19dd
JB
1164;; is a symbol interned (not neccessarily defined) locally in a given module
1165;; or its uses? Interned symbols shadow inherited bindings even if
1166;; they are not themselves bound to a defined value.
1167;;
1168(define (module-symbol-locally-interned? m v)
1169 (not (not (module-obarray-get-handle (module-obarray m) v))))
1170
1171;; module-symbol-interned? module symbol
20edfbbd 1172;;
0f2d19dd
JB
1173;; is a symbol interned (not neccessarily defined) anywhere in a given module
1174;; or its uses? Interned symbols shadow inherited bindings even if
1175;; they are not themselves bound to a defined value.
1176;;
1177(define (module-symbol-interned? m v)
1178 (module-search module-symbol-locally-interned? m v))
1179
1180
1181;;; {Mapping modules x symbols --> variables}
1182;;;
1183
1184;; module-local-variable module symbol
1185;; return the local variable associated with a MODULE and SYMBOL.
1186;;
1187;;; This function is very important. It is the only function that can
1188;;; return a variable from a module other than the mutators that store
1189;;; new variables in modules. Therefore, this function is the location
1190;;; of the "lazy binder" hack.
1191;;;
1192;;; If symbol is defined in MODULE, and if the definition binds symbol
1193;;; to a variable, return that variable object.
1194;;;
1195;;; If the symbols is not found at first, but the module has a lazy binder,
1196;;; then try the binder.
1197;;;
1198;;; If the symbol is not found at all, return #f.
1199;;;
1200(define (module-local-variable m v)
6fa8995c
GH
1201; (caddr
1202; (list m v
0f2d19dd
JB
1203 (let ((b (module-obarray-ref (module-obarray m) v)))
1204 (or (and (variable? b) b)
1205 (and (module-binder m)
6fa8995c
GH
1206 ((module-binder m) m v #f)))))
1207;))
0f2d19dd
JB
1208
1209;; module-variable module symbol
20edfbbd
TTN
1210;;
1211;; like module-local-variable, except search the uses in the
0f2d19dd
JB
1212;; case V is not found in M.
1213;;
6906bd0d
MD
1214;; NOTE: This function is superseded with C code (see modules.c)
1215;;; when using the standard eval closure.
1216;;
0f2d19dd
JB
1217(define (module-variable m v)
1218 (module-search module-local-variable m v))
1219
1220
1221;;; {Mapping modules x symbols --> bindings}
1222;;;
1223;;; These are similar to the mapping to variables, except that the
1224;;; variable is dereferenced.
1225;;;
1226
1227;; module-symbol-binding module symbol opt-value
20edfbbd 1228;;
0f2d19dd
JB
1229;; return the binding of a variable specified by name within
1230;; a given module, signalling an error if the variable is unbound.
1231;; If the OPT-VALUE is passed, then instead of signalling an error,
1232;; return OPT-VALUE.
1233;;
1234(define (module-symbol-local-binding m v . opt-val)
1235 (let ((var (module-local-variable m v)))
7b07e5ef 1236 (if (and var (variable-bound? var))
0f2d19dd
JB
1237 (variable-ref var)
1238 (if (not (null? opt-val))
1239 (car opt-val)
1240 (error "Locally unbound variable." v)))))
1241
1242;; module-symbol-binding module symbol opt-value
20edfbbd 1243;;
0f2d19dd
JB
1244;; return the binding of a variable specified by name within
1245;; a given module, signalling an error if the variable is unbound.
1246;; If the OPT-VALUE is passed, then instead of signalling an error,
1247;; return OPT-VALUE.
1248;;
1249(define (module-symbol-binding m v . opt-val)
1250 (let ((var (module-variable m v)))
7b07e5ef 1251 (if (and var (variable-bound? var))
0f2d19dd
JB
1252 (variable-ref var)
1253 (if (not (null? opt-val))
1254 (car opt-val)
1255 (error "Unbound variable." v)))))
1256
1257
1258\f
1259;;; {Adding Variables to Modules}
1260;;;
1261;;;
1262
1263
1264;; module-make-local-var! module symbol
20edfbbd 1265;;
0f2d19dd
JB
1266;; ensure a variable for V in the local namespace of M.
1267;; If no variable was already there, then create a new and uninitialzied
1268;; variable.
1269;;
1270(define (module-make-local-var! m v)
1271 (or (let ((b (module-obarray-ref (module-obarray m) v)))
1777c18b
MD
1272 (and (variable? b)
1273 (begin
1a961d7e 1274 (module-modified m)
1777c18b 1275 b)))
0f2d19dd
JB
1276 (and (module-binder m)
1277 ((module-binder m) m v #t))
1278 (begin
296ff5e7 1279 (let ((answer (make-undefined-variable)))
0f2d19dd 1280 (module-obarray-set! (module-obarray m) v answer)
1a961d7e 1281 (module-modified m)
0f2d19dd
JB
1282 answer))))
1283
89d06712 1284;; module-ensure-local-variable! module symbol
9540368e 1285;;
89d06712
MV
1286;; Ensure that there is a local variable in MODULE for SYMBOL. If
1287;; there is no binding for SYMBOL, create a new uninitialized
1288;; variable. Return the local variable.
9540368e 1289;;
89d06712
MV
1290(define (module-ensure-local-variable! module symbol)
1291 (or (module-local-variable module symbol)
9540368e 1292 (let ((var (make-undefined-variable)))
9540368e
MV
1293 (module-add! module symbol var)
1294 var)))
1295
0f2d19dd 1296;; module-add! module symbol var
20edfbbd 1297;;
0f2d19dd
JB
1298;; ensure a particular variable for V in the local namespace of M.
1299;;
1300(define (module-add! m v var)
1301 (if (not (variable? var))
1302 (error "Bad variable to module-add!" var))
1777c18b 1303 (module-obarray-set! (module-obarray m) v var)
1a961d7e 1304 (module-modified m))
0f2d19dd 1305
20edfbbd
TTN
1306;; module-remove!
1307;;
0f2d19dd
JB
1308;; make sure that a symbol is undefined in the local namespace of M.
1309;;
1310(define (module-remove! m v)
c35738c1 1311 (module-obarray-remove! (module-obarray m) v)
1a961d7e 1312 (module-modified m))
0f2d19dd
JB
1313
1314(define (module-clear! m)
c35738c1 1315 (hash-clear! (module-obarray m))
1a961d7e 1316 (module-modified m))
0f2d19dd
JB
1317
1318;; MODULE-FOR-EACH -- exported
20edfbbd 1319;;
0f2d19dd
JB
1320;; Call PROC on each symbol in MODULE, with arguments of (SYMBOL VARIABLE).
1321;;
1322(define (module-for-each proc module)
c35738c1 1323 (hash-for-each proc (module-obarray module)))
0f2d19dd
JB
1324
1325(define (module-map proc module)
c35738c1
MD
1326 (hash-map proc (module-obarray module)))
1327
0f2d19dd
JB
1328\f
1329
1330;;; {Low Level Bootstrapping}
1331;;;
1332
20edfbbd 1333;; make-root-module
0f2d19dd 1334
296ff5e7
MV
1335;; A root module uses the pre-modules-obarray as its obarray. This
1336;; special obarray accumulates all bindings that have been established
1337;; before the module system is fully booted.
0f2d19dd 1338;;
296ff5e7
MV
1339;; (The obarray continues to be used by code that has been closed over
1340;; before the module system has been booted.)
0f2d19dd
JB
1341
1342(define (make-root-module)
296ff5e7
MV
1343 (let ((m (make-module 0)))
1344 (set-module-obarray! m (%get-pre-modules-obarray))
1345 m))
0f2d19dd 1346
b622dec7 1347;; make-scm-module
0f2d19dd 1348
296ff5e7
MV
1349;; The root interface is a module that uses the same obarray as the
1350;; root module. It does not allow new definitions, tho.
0f2d19dd 1351
6906bd0d 1352(define (make-scm-module)
296ff5e7
MV
1353 (let ((m (make-module 0)))
1354 (set-module-obarray! m (%get-pre-modules-obarray))
1355 (set-module-eval-closure! m (standard-interface-eval-closure m))
1356 m))
0f2d19dd
JB
1357
1358
0f2d19dd
JB
1359\f
1360;;; {Module-based Loading}
1361;;;
1362
1363(define (save-module-excursion thunk)
1364 (let ((inner-module (current-module))
1365 (outer-module #f))
1366 (dynamic-wind (lambda ()
1367 (set! outer-module (current-module))
1368 (set-current-module inner-module)
1369 (set! inner-module #f))
1370 thunk
1371 (lambda ()
1372 (set! inner-module (current-module))
1373 (set-current-module outer-module)
1374 (set! outer-module #f)))))
1375
0f2d19dd
JB
1376(define basic-load load)
1377
c6775c40
MD
1378(define (load-module filename)
1379 (save-module-excursion
1380 (lambda ()
1381 (let ((oldname (and (current-load-port)
1382 (port-filename (current-load-port)))))
1383 (basic-load (if (and oldname
1384 (> (string-length filename) 0)
1385 (not (char=? (string-ref filename 0) #\/))
1386 (not (string=? (dirname oldname) ".")))
1387 (string-append (dirname oldname) "/" filename)
1388 filename))))))
0f2d19dd
JB
1389
1390
1391\f
44cf1f0f 1392;;; {MODULE-REF -- exported}
0f2d19dd
JB
1393;;
1394;; Returns the value of a variable called NAME in MODULE or any of its
1395;; used modules. If there is no such variable, then if the optional third
1396;; argument DEFAULT is present, it is returned; otherwise an error is signaled.
20edfbbd 1397;;
0f2d19dd
JB
1398(define (module-ref module name . rest)
1399 (let ((variable (module-variable module name)))
1400 (if (and variable (variable-bound? variable))
1401 (variable-ref variable)
1402 (if (null? rest)
1403 (error "No variable named" name 'in module)
1404 (car rest) ; default value
1405 ))))
1406
1407;; MODULE-SET! -- exported
1408;;
1409;; Sets the variable called NAME in MODULE (or in a module that MODULE uses)
1410;; to VALUE; if there is no such variable, an error is signaled.
20edfbbd 1411;;
0f2d19dd
JB
1412(define (module-set! module name value)
1413 (let ((variable (module-variable module name)))
1414 (if variable
1415 (variable-set! variable value)
1416 (error "No variable named" name 'in module))))
1417
1418;; MODULE-DEFINE! -- exported
1419;;
1420;; Sets the variable called NAME in MODULE to VALUE; if there is no such
1421;; variable, it is added first.
20edfbbd 1422;;
0f2d19dd
JB
1423(define (module-define! module name value)
1424 (let ((variable (module-local-variable module name)))
1425 (if variable
1777c18b
MD
1426 (begin
1427 (variable-set! variable value)
1a961d7e 1428 (module-modified module))
296ff5e7 1429 (let ((variable (make-variable value)))
296ff5e7 1430 (module-add! module name variable)))))
0f2d19dd 1431
ed218d98
MV
1432;; MODULE-DEFINED? -- exported
1433;;
1434;; Return #t iff NAME is defined in MODULE (or in a module that MODULE
1435;; uses)
1436;;
1437(define (module-defined? module name)
1438 (let ((variable (module-variable module name)))
1439 (and variable (variable-bound? variable))))
1440
0f2d19dd
JB
1441;; MODULE-USE! module interface
1442;;
1443;; Add INTERFACE to the list of interfaces used by MODULE.
20edfbbd 1444;;
0f2d19dd
JB
1445(define (module-use! module interface)
1446 (set-module-uses! module
c614a00b
MD
1447 (cons interface
1448 (filter (lambda (m)
1449 (not (equal? (module-name m)
1450 (module-name interface))))
1451 (module-uses module))))
1a961d7e 1452 (module-modified module))
0f2d19dd 1453
7b07e5ef
MD
1454;; MODULE-USE-INTERFACES! module interfaces
1455;;
1456;; Same as MODULE-USE! but add multiple interfaces and check for duplicates
1457;;
1458(define (module-use-interfaces! module interfaces)
1459 (let* ((duplicates-info (module-duplicates-info module))
70a459e3
MD
1460 (duplicates-handlers? (or (car duplicates-info)
1461 (default-duplicate-binding-procedures)))
7b07e5ef
MD
1462 (uses (module-uses module)))
1463 ;; remove duplicates-interface
1464 (set! uses (delq! (cdr duplicates-info) uses))
1465 ;; remove interfaces to be added
1466 (for-each (lambda (interface)
c614a00b
MD
1467 (set! uses
1468 (filter (lambda (m)
1469 (not (equal? (module-name m)
1470 (module-name interface))))
1471 uses)))
7b07e5ef
MD
1472 interfaces)
1473 ;; add interfaces to use list
1474 (set-module-uses! module uses)
1475 (for-each (lambda (interface)
1476 (and duplicates-handlers?
1477 ;; perform duplicate checking
1478 (process-duplicates module interface))
1479 (set! uses (cons interface uses))
1480 (set-module-uses! module uses))
1481 interfaces)
1482 ;; add duplicates interface
1483 (if (cdr duplicates-info)
1484 (set-module-uses! module (cons (cdr duplicates-info) uses)))
1485 (module-modified module)))
1486
0f2d19dd 1487\f
0f2d19dd
JB
1488;;; {Recursive Namespaces}
1489;;;
1490;;;
1491;;; A hierarchical namespace emerges if we consider some module to be
1492;;; root, and variables bound to modules as nested namespaces.
1493;;;
1494;;; The routines in this file manage variable names in hierarchical namespace.
1495;;; Each variable name is a list of elements, looked up in successively nested
1496;;; modules.
1497;;;
0dd5491c 1498;;; (nested-ref some-root-module '(foo bar baz))
20edfbbd 1499;;; => <value of a variable named baz in the module bound to bar in
0f2d19dd
JB
1500;;; the module bound to foo in some-root-module>
1501;;;
1502;;;
1503;;; There are:
1504;;;
1505;;; ;; a-root is a module
1506;;; ;; name is a list of symbols
1507;;;
0dd5491c
MD
1508;;; nested-ref a-root name
1509;;; nested-set! a-root name val
1510;;; nested-define! a-root name val
1511;;; nested-remove! a-root name
0f2d19dd
JB
1512;;;
1513;;;
1514;;; (current-module) is a natural choice for a-root so for convenience there are
1515;;; also:
1516;;;
0dd5491c
MD
1517;;; local-ref name == nested-ref (current-module) name
1518;;; local-set! name val == nested-set! (current-module) name val
1519;;; local-define! name val == nested-define! (current-module) name val
1520;;; local-remove! name == nested-remove! (current-module) name
0f2d19dd
JB
1521;;;
1522
1523
0dd5491c 1524(define (nested-ref root names)
0f2d19dd
JB
1525 (let loop ((cur root)
1526 (elts names))
1527 (cond
1528 ((null? elts) cur)
1529 ((not (module? cur)) #f)
1530 (else (loop (module-ref cur (car elts) #f) (cdr elts))))))
1531
0dd5491c 1532(define (nested-set! root names val)
0f2d19dd
JB
1533 (let loop ((cur root)
1534 (elts names))
1535 (if (null? (cdr elts))
1536 (module-set! cur (car elts) val)
1537 (loop (module-ref cur (car elts)) (cdr elts)))))
1538
0dd5491c 1539(define (nested-define! root names val)
0f2d19dd
JB
1540 (let loop ((cur root)
1541 (elts names))
1542 (if (null? (cdr elts))
1543 (module-define! cur (car elts) val)
1544 (loop (module-ref cur (car elts)) (cdr elts)))))
1545
0dd5491c 1546(define (nested-remove! root names)
0f2d19dd
JB
1547 (let loop ((cur root)
1548 (elts names))
1549 (if (null? (cdr elts))
1550 (module-remove! cur (car elts))
1551 (loop (module-ref cur (car elts)) (cdr elts)))))
1552
0dd5491c
MD
1553(define (local-ref names) (nested-ref (current-module) names))
1554(define (local-set! names val) (nested-set! (current-module) names val))
1555(define (local-define names val) (nested-define! (current-module) names val))
1556(define (local-remove names) (nested-remove! (current-module) names))
0f2d19dd
JB
1557
1558
1559\f
8bb7330c 1560;;; {The (app) module}
0f2d19dd
JB
1561;;;
1562;;; The root of conventionally named objects not directly in the top level.
1563;;;
8bb7330c
JB
1564;;; (app modules)
1565;;; (app modules guile)
0f2d19dd
JB
1566;;;
1567;;; The directory of all modules and the standard root module.
1568;;;
1569
edc185c7
MD
1570(define (module-public-interface m)
1571 (module-ref m '%module-public-interface #f))
1572(define (set-module-public-interface! m i)
1573 (module-define! m '%module-public-interface i))
7b07e5ef
MD
1574(define (module-duplicates-info m)
1575 (or (module-ref m '%module-duplicates-info #f) (cons #f #f)))
1576(define (set-module-duplicates-info! m i)
1577 (module-define! m '%module-duplicates-info i))
edc185c7
MD
1578(define (set-system-module! m s)
1579 (set-procedure-property! (module-eval-closure m) 'system-module s))
0f2d19dd
JB
1580(define the-root-module (make-root-module))
1581(define the-scm-module (make-scm-module))
1582(set-module-public-interface! the-root-module the-scm-module)
7b07e5ef 1583(set-module-duplicates-info! the-root-module (cons #f #f))
d5504515
MD
1584(set-module-name! the-root-module '(guile))
1585(set-module-name! the-scm-module '(guile))
1586(set-module-kind! the-scm-module 'interface)
edc185c7 1587(for-each set-system-module! (list the-root-module the-scm-module) '(#t #t))
0f2d19dd 1588
296ff5e7
MV
1589;; NOTE: This binding is used in libguile/modules.c.
1590;;
1591(define (make-modules-in module name)
1592 (if (null? name)
1593 module
1594 (cond
1595 ((module-ref module (car name) #f)
1596 => (lambda (m) (make-modules-in m (cdr name))))
1597 (else (let ((m (make-module 31)))
1598 (set-module-kind! m 'directory)
1599 (set-module-name! m (append (or (module-name module)
1600 '())
1601 (list (car name))))
1602 (module-define! module (car name) m)
1603 (make-modules-in m (cdr name)))))))
0f2d19dd 1604
296ff5e7
MV
1605(define (beautify-user-module! module)
1606 (let ((interface (module-public-interface module)))
1607 (if (or (not interface)
1608 (eq? interface module))
1609 (let ((interface (make-module 31)))
1610 (set-module-name! interface (module-name module))
1611 (set-module-kind! interface 'interface)
7b07e5ef 1612 (set-module-public-interface! module interface)
70a459e3 1613 (set-module-duplicates-info! module (cons #f #f)))))
296ff5e7
MV
1614 (if (and (not (memq the-scm-module (module-uses module)))
1615 (not (eq? module the-root-module)))
7b07e5ef
MD
1616 (set-module-uses! module
1617 (append (module-uses module) (list the-scm-module)))))
432558b9 1618
1f60d9d2
MD
1619;; NOTE: This binding is used in libguile/modules.c.
1620;;
0209ca9a 1621(define (resolve-module name . maybe-autoload)
0f2d19dd 1622 (let ((full-name (append '(app modules) name)))
0dd5491c 1623 (let ((already (local-ref full-name)))
432558b9
MD
1624 (if already
1625 ;; The module already exists...
1626 (if (and (or (null? maybe-autoload) (car maybe-autoload))
fb1b76f4 1627 (not (module-public-interface already)))
432558b9
MD
1628 ;; ...but we are told to load and it doesn't contain source, so
1629 (begin
1630 (try-load-module name)
1631 already)
1632 ;; simply return it.
1633 already)
3e3cec45 1634 (begin
432558b9 1635 ;; Try to autoload it if we are told so
3e3cec45 1636 (if (or (null? maybe-autoload) (car maybe-autoload))
432558b9
MD
1637 (try-load-module name))
1638 ;; Get/create it.
3e3cec45 1639 (make-modules-in (current-module) full-name))))))
20edfbbd 1640
d866f445
MV
1641;; Cheat. These bindings are needed by modules.c, but we don't want
1642;; to move their real definition here because that would be unnatural.
1643;;
296ff5e7 1644(define try-module-autoload #f)
d866f445
MV
1645(define process-define-module #f)
1646(define process-use-modules #f)
1647(define module-export! #f)
296ff5e7
MV
1648
1649;; This boots the module system. All bindings needed by modules.c
1650;; must have been defined by now.
1651;;
1652(set-current-module the-root-module)
1653
1654(define app (make-module 31))
1655(local-define '(app modules) (make-module 31))
1656(local-define '(app modules guile) the-root-module)
1657
1658;; (define-special-value '(app modules new-ws) (lambda () (make-scm-module)))
1659
1660(define (try-load-module name)
8c494e99 1661 (try-module-autoload name))
0f2d19dd 1662
90847923
MD
1663(define (purify-module! module)
1664 "Removes bindings in MODULE which are inherited from the (guile) module."
1665 (let ((use-list (module-uses module)))
1666 (if (and (pair? use-list)
1667 (eq? (car (last-pair use-list)) the-scm-module))
1668 (set-module-uses! module (reverse (cdr (reverse use-list)))))))
1669
4eecfeb7 1670;; Return a module that is an interface to the module designated by
532cf805
MV
1671;; NAME.
1672;;
c614a00b 1673;; `resolve-interface' takes four keyword arguments:
532cf805
MV
1674;;
1675;; #:select SELECTION
1676;;
1677;; SELECTION is a list of binding-specs to be imported; A binding-spec
1678;; is either a symbol or a pair of symbols (ORIG . SEEN), where ORIG
1679;; is the name in the used module and SEEN is the name in the using
1680;; module. Note that SEEN is also passed through RENAMER, below. The
1681;; default is to select all bindings. If you specify no selection but
4eecfeb7 1682;; a renamer, only the bindings that already exist in the used module
532cf805
MV
1683;; are made available in the interface. Bindings that are added later
1684;; are not picked up.
1685;;
c614a00b 1686;; #:hide BINDINGS
532cf805 1687;;
c614a00b 1688;; BINDINGS is a list of bindings which should not be imported.
f595ccfe
MD
1689;;
1690;; #:prefix PREFIX
1691;;
1692;; PREFIX is a symbol that will be appended to each exported name.
1693;; The default is to not perform any renaming.
532cf805 1694;;
c614a00b
MD
1695;; #:renamer RENAMER
1696;;
1697;; RENAMER is a procedure that takes a symbol and returns its new
1698;; name. The default is not perform any renaming.
1699;;
532cf805
MV
1700;; Signal "no code for module" error if module name is not resolvable
1701;; or its public interface is not available. Signal "no binding"
1702;; error if selected binding does not exist in the used module.
1703;;
1704(define (resolve-interface name . args)
1705
1706 (define (get-keyword-arg args kw def)
1707 (cond ((memq kw args)
1708 => (lambda (kw-arg)
1709 (if (null? (cdr kw-arg))
1710 (error "keyword without value: " kw))
1711 (cadr kw-arg)))
1712 (else
1713 def)))
1714
1715 (let* ((select (get-keyword-arg args #:select #f))
c614a00b 1716 (hide (get-keyword-arg args #:hide '()))
f595ccfe
MD
1717 (renamer (or (get-keyword-arg args #:renamer #f)
1718 (let ((prefix (get-keyword-arg args #:prefix #f)))
1719 (and prefix (symbol-prefix-proc prefix)))
1720 identity))
b622dec7
TTN
1721 (module (resolve-module name))
1722 (public-i (and module (module-public-interface module))))
1723 (and (or (not module) (not public-i))
1724 (error "no code for module" name))
c614a00b 1725 (if (and (not select) (null? hide) (eq? renamer identity))
b622dec7 1726 public-i
532cf805
MV
1727 (let ((selection (or select (module-map (lambda (sym var) sym)
1728 public-i)))
b622dec7 1729 (custom-i (make-module 31)))
c614a00b
MD
1730 (set-module-kind! custom-i 'custom-interface)
1731 (set-module-name! custom-i name)
532cf805
MV
1732 ;; XXX - should use a lazy binder so that changes to the
1733 ;; used module are picked up automatically.
f8a502cb
TTN
1734 (for-each (lambda (bspec)
1735 (let* ((direct? (symbol? bspec))
1736 (orig (if direct? bspec (car bspec)))
c614a00b
MD
1737 (seen (if direct? bspec (cdr bspec)))
1738 (var (or (module-local-variable public-i orig)
1739 (module-local-variable module orig)
1740 (error
1741 ;; fixme: format manually for now
1742 (simple-format
1743 #f "no binding `~A' in module ~A"
1744 orig name)))))
1745 (if (memq orig hide)
1746 (set! hide (delq! orig hide))
1747 (module-add! custom-i
1748 (renamer seen)
1749 var))))
b622dec7 1750 selection)
c614a00b
MD
1751 ;; Check that we are not hiding bindings which don't exist
1752 (for-each (lambda (binding)
1753 (if (not (module-local-variable public-i binding))
1754 (error
1755 (simple-format
1756 #f "no binding `~A' to hide in module ~A"
1757 binding name))))
1758 hide)
b622dec7 1759 custom-i))))
fb1b76f4
TTN
1760
1761(define (symbol-prefix-proc prefix)
1762 (lambda (symbol)
1763 (symbol-append prefix symbol)))
0f2d19dd 1764
482a28f9
MV
1765;; This function is called from "modules.c". If you change it, be
1766;; sure to update "modules.c" as well.
1767
0f2d19dd 1768(define (process-define-module args)
f8a502cb
TTN
1769 (let* ((module-id (car args))
1770 (module (resolve-module module-id #f))
1771 (kws (cdr args))
1772 (unrecognized (lambda (arg)
1773 (error "unrecognized define-module argument" arg))))
0f2d19dd 1774 (beautify-user-module! module)
0209ca9a 1775 (let loop ((kws kws)
44484f52 1776 (reversed-interfaces '())
5d20b8c7 1777 (exports '())
f595ccfe
MD
1778 (re-exports '())
1779 (replacements '()))
0209ca9a 1780 (if (null? kws)
44484f52 1781 (begin
7b07e5ef 1782 (module-use-interfaces! module (reverse reversed-interfaces))
5d20b8c7 1783 (module-export! module exports)
f595ccfe 1784 (module-replace! module replacements)
5d20b8c7 1785 (module-re-export! module re-exports))
532cf805
MV
1786 (case (car kws)
1787 ((#:use-module #:use-syntax)
1788 (or (pair? (cdr kws))
1789 (unrecognized kws))
1790 (let* ((interface-args (cadr kws))
1791 (interface (apply resolve-interface interface-args)))
88c4ba2a
KN
1792 (and (eq? (car kws) #:use-syntax)
1793 (or (symbol? (caar interface-args))
532cf805 1794 (error "invalid module name for use-syntax"
88c4ba2a 1795 (car interface-args)))
532cf805
MV
1796 (set-module-transformer!
1797 module
88c4ba2a
KN
1798 (module-ref interface
1799 (car (last-pair (car interface-args)))
532cf805 1800 #f)))
44484f52 1801 (loop (cddr kws)
532cf805 1802 (cons interface reversed-interfaces)
5d20b8c7 1803 exports
f595ccfe
MD
1804 re-exports
1805 replacements)))
532cf805
MV
1806 ((#:autoload)
1807 (or (and (pair? (cdr kws)) (pair? (cddr kws)))
1808 (unrecognized kws))
1809 (loop (cdddr kws)
1810 (cons (make-autoload-interface module
1811 (cadr kws)
1812 (caddr kws))
1813 reversed-interfaces)
5d20b8c7 1814 exports
f595ccfe
MD
1815 re-exports
1816 replacements))
532cf805
MV
1817 ((#:no-backtrace)
1818 (set-system-module! module #t)
f595ccfe 1819 (loop (cdr kws) reversed-interfaces exports re-exports replacements))
532cf805
MV
1820 ((#:pure)
1821 (purify-module! module)
f595ccfe 1822 (loop (cdr kws) reversed-interfaces exports re-exports replacements))
7b07e5ef
MD
1823 ((#:duplicates)
1824 (if (not (pair? (cdr kws)))
1825 (unrecognized kws))
1826 (set-car! (module-duplicates-info module)
f595ccfe
MD
1827 (lookup-duplicates-handlers (cadr kws)))
1828 (loop (cddr kws) reversed-interfaces exports re-exports replacements))
39819fa9 1829 ((#:export #:export-syntax)
532cf805
MV
1830 (or (pair? (cdr kws))
1831 (unrecognized kws))
1832 (loop (cddr kws)
1833 reversed-interfaces
5d20b8c7 1834 (append (cadr kws) exports)
f595ccfe
MD
1835 re-exports
1836 replacements))
39819fa9 1837 ((#:re-export #:re-export-syntax)
5d20b8c7
MD
1838 (or (pair? (cdr kws))
1839 (unrecognized kws))
1840 (loop (cddr kws)
1841 reversed-interfaces
1842 exports
f595ccfe
MD
1843 (append (cadr kws) re-exports)
1844 replacements))
1845 ((#:replace #:replace-syntax)
1846 (or (pair? (cdr kws))
1847 (unrecognized kws))
1848 (loop (cddr kws)
1849 reversed-interfaces
1850 exports
1851 re-exports
1852 (append (cadr kws) replacements)))
532cf805
MV
1853 (else
1854 (unrecognized kws)))))
db853761 1855 (run-hook module-defined-hook module)
0f2d19dd 1856 module))
71225060 1857
db853761
NJ
1858;; `module-defined-hook' is a hook that is run whenever a new module
1859;; is defined. Its members are called with one argument, the new
1860;; module.
1861(define module-defined-hook (make-hook 1))
1862
71225060
MD
1863;;; {Autoload}
1864
1865(define (make-autoload-interface module name bindings)
1866 (let ((b (lambda (a sym definep)
1867 (and (memq sym bindings)
1868 (let ((i (module-public-interface (resolve-module name))))
1869 (if (not i)
1870 (error "missing interface for module" name))
1871 ;; Replace autoload-interface with interface
1872 (set-car! (memq a (module-uses module)) i)
1873 (module-local-variable i sym))))))
d5504515 1874 (module-constructor #() '() b #f #f name 'autoload
6b64c19b 1875 '() (make-weak-value-hash-table 31) 0)))
71225060 1876
ff5546f5
KN
1877;;; {Compiled module}
1878
1879(define load-compiled #f)
1880
0f2d19dd 1881\f
44cf1f0f 1882;;; {Autoloading modules}
0f2d19dd
JB
1883
1884(define autoloads-in-progress '())
1885
482a28f9
MV
1886;; This function is called from "modules.c". If you change it, be
1887;; sure to update "modules.c" as well.
1888
0f2d19dd 1889(define (try-module-autoload module-name)
0f2d19dd 1890 (let* ((reverse-name (reverse module-name))
06f0414c 1891 (name (symbol->string (car reverse-name)))
0f2d19dd 1892 (dir-hint-module-name (reverse (cdr reverse-name)))
06f0414c
MD
1893 (dir-hint (apply string-append
1894 (map (lambda (elt)
1895 (string-append (symbol->string elt) "/"))
1896 dir-hint-module-name))))
0209ca9a 1897 (resolve-module dir-hint-module-name #f)
0f2d19dd
JB
1898 (and (not (autoload-done-or-in-progress? dir-hint name))
1899 (let ((didit #f))
ff5546f5
KN
1900 (define (load-file proc file)
1901 (save-module-excursion (lambda () (proc file)))
1902 (set! didit #t))
0f2d19dd
JB
1903 (dynamic-wind
1904 (lambda () (autoload-in-progress! dir-hint name))
defed517 1905 (lambda ()
ff5546f5
KN
1906 (let ((file (in-vicinity dir-hint name)))
1907 (cond ((and load-compiled
1908 (%search-load-path (string-append file ".go")))
1909 => (lambda (full)
1910 (load-file load-compiled full)))
1911 ((%search-load-path file)
1912 => (lambda (full)
1913 (load-file primitive-load full))))))
0f2d19dd
JB
1914 (lambda () (set-autoloaded! dir-hint name didit)))
1915 didit))))
1916
71225060 1917\f
d0cbd20c
MV
1918;;; Dynamic linking of modules
1919
0f2d19dd
JB
1920(define autoloads-done '((guile . guile)))
1921
1922(define (autoload-done-or-in-progress? p m)
1923 (let ((n (cons p m)))
1924 (->bool (or (member n autoloads-done)
1925 (member n autoloads-in-progress)))))
1926
1927(define (autoload-done! p m)
1928 (let ((n (cons p m)))
1929 (set! autoloads-in-progress
1930 (delete! n autoloads-in-progress))
1931 (or (member n autoloads-done)
1932 (set! autoloads-done (cons n autoloads-done)))))
1933
1934(define (autoload-in-progress! p m)
1935 (let ((n (cons p m)))
1936 (set! autoloads-done
1937 (delete! n autoloads-done))
1938 (set! autoloads-in-progress (cons n autoloads-in-progress))))
1939
1940(define (set-autoloaded! p m done?)
1941 (if done?
1942 (autoload-done! p m)
1943 (let ((n (cons p m)))
1944 (set! autoloads-done (delete! n autoloads-done))
1945 (set! autoloads-in-progress (delete! n autoloads-in-progress)))))
1946
1947
1948
a54e6fa3
KN
1949\f
1950;; {EVAL-CASE}
1951;;
1952;; (eval-case ((situation*) forms)* (else forms)?)
1953;;
1954;; Evaluate certain code based on the situation that eval-case is used
1955;; in. The only defined situation right now is `load-toplevel' which
1956;; triggers for code evaluated at the top-level, for example from the
1957;; REPL or when loading a file.
20edfbbd 1958
a54e6fa3
KN
1959(define eval-case
1960 (procedure->memoizing-macro
1961 (lambda (exp env)
1962 (define (toplevel-env? env)
1963 (or (not (pair? env)) (not (pair? (car env)))))
1964 (define (syntax)
1965 (error "syntax error in eval-case"))
1966 (let loop ((clauses (cdr exp)))
20edfbbd 1967 (cond
a54e6fa3
KN
1968 ((null? clauses)
1969 #f)
1970 ((not (list? (car clauses)))
1971 (syntax))
1972 ((eq? 'else (caar clauses))
1973 (or (null? (cdr clauses))
1974 (syntax))
1975 (cons 'begin (cdar clauses)))
1976 ((not (list? (caar clauses)))
1977 (syntax))
1978 ((and (toplevel-env? env)
1979 (memq 'load-toplevel (caar clauses)))
1980 (cons 'begin (cdar clauses)))
1981 (else
1982 (loop (cdr clauses))))))))
0f2d19dd
JB
1983
1984\f
1985;;; {Macros}
1986;;;
1987
7a0ff2f8
MD
1988(define (primitive-macro? m)
1989 (and (macro? m)
1990 (not (macro-transformer m))))
1991
1992;;; {Defmacros}
1993;;;
231a4ea8
MD
1994(define macro-table (make-weak-key-hash-table 61))
1995(define xformer-table (make-weak-key-hash-table 61))
0f2d19dd
JB
1996
1997(define (defmacro? m) (hashq-ref macro-table m))
1998(define (assert-defmacro?! m) (hashq-set! macro-table m #t))
1999(define (defmacro-transformer m) (hashq-ref xformer-table m))
2000(define (set-defmacro-transformer! m t) (hashq-set! xformer-table m t))
2001
2002(define defmacro:transformer
2003 (lambda (f)
2004 (let* ((xform (lambda (exp env)
2005 (copy-tree (apply f (cdr exp)))))
2006 (a (procedure->memoizing-macro xform)))
2007 (assert-defmacro?! a)
2008 (set-defmacro-transformer! a f)
2009 a)))
2010
2011
2012(define defmacro
2013 (let ((defmacro-transformer
2014 (lambda (name parms . body)
2015 (let ((transformer `(lambda ,parms ,@body)))
8add1522
KN
2016 `(eval-case
2017 ((load-toplevel)
2018 (define ,name (defmacro:transformer ,transformer)))
2019 (else
2020 (error "defmacro can only be used at the top level")))))))
0f2d19dd
JB
2021 (defmacro:transformer defmacro-transformer)))
2022
2023(define defmacro:syntax-transformer
2024 (lambda (f)
2025 (procedure->syntax
2026 (lambda (exp env)
2027 (copy-tree (apply f (cdr exp)))))))
2028
ed218d98
MV
2029
2030;; XXX - should the definition of the car really be looked up in the
2031;; current module?
2032
0f2d19dd
JB
2033(define (macroexpand-1 e)
2034 (cond
2035 ((pair? e) (let* ((a (car e))
ed218d98 2036 (val (and (symbol? a) (local-ref (list a)))))
0f2d19dd
JB
2037 (if (defmacro? val)
2038 (apply (defmacro-transformer val) (cdr e))
2039 e)))
2040 (#t e)))
2041
2042(define (macroexpand e)
2043 (cond
2044 ((pair? e) (let* ((a (car e))
ed218d98 2045 (val (and (symbol? a) (local-ref (list a)))))
0f2d19dd
JB
2046 (if (defmacro? val)
2047 (macroexpand (apply (defmacro-transformer val) (cdr e)))
2048 e)))
2049 (#t e)))
2050
534a0099 2051(provide 'defmacro)
0f2d19dd
JB
2052
2053\f
2054
83b38198
MD
2055;;; {Run-time options}
2056
e9bab9df
DH
2057(define define-option-interface
2058 (let* ((option-name car)
2059 (option-value cadr)
2060 (option-documentation caddr)
2061
2062 (print-option (lambda (option)
2063 (display (option-name option))
2064 (if (< (string-length
2065 (symbol->string (option-name option)))
2066 8)
2067 (display #\tab))
2068 (display #\tab)
2069 (display (option-value option))
2070 (display #\tab)
2071 (display (option-documentation option))
2072 (newline)))
2073
2074 ;; Below follow the macros defining the run-time option interfaces.
2075
2076 (make-options (lambda (interface)
2077 `(lambda args
2078 (cond ((null? args) (,interface))
2079 ((list? (car args))
2080 (,interface (car args)) (,interface))
2081 (else (for-each ,print-option
2082 (,interface #t)))))))
2083
2084 (make-enable (lambda (interface)
83b38198 2085 `(lambda flags
e9bab9df
DH
2086 (,interface (append flags (,interface)))
2087 (,interface))))
2088
2089 (make-disable (lambda (interface)
2090 `(lambda flags
2091 (let ((options (,interface)))
2092 (for-each (lambda (flag)
2093 (set! options (delq! flag options)))
2094 flags)
2095 (,interface options)
0983f67f 2096 (,interface))))))
7c38399f 2097 (procedure->memoizing-macro
83b38198 2098 (lambda (exp env)
0983f67f
NJ
2099 (let* ((option-group (cadr exp))
2100 (interface (car option-group))
2101 (options/enable/disable (cadr option-group)))
2102 `(begin
2103 (define ,(car options/enable/disable)
2104 ,(make-options interface))
2105 (define ,(cadr options/enable/disable)
2106 ,(make-enable interface))
2107 (define ,(caddr options/enable/disable)
2108 ,(make-disable interface))
2109 (defmacro ,(caaddr option-group) (opt val)
2110 `(,,(car options/enable/disable)
3f619266
NJ
2111 (append (,,(car options/enable/disable))
2112 (list ',opt ,val))))))))))
e9bab9df
DH
2113
2114(define-option-interface
2115 (eval-options-interface
2116 (eval-options eval-enable eval-disable)
2117 (eval-set!)))
2118
2119(define-option-interface
2120 (debug-options-interface
2121 (debug-options debug-enable debug-disable)
2122 (debug-set!)))
2123
2124(define-option-interface
2125 (evaluator-traps-interface
2126 (traps trap-enable trap-disable)
2127 (trap-set!)))
2128
2129(define-option-interface
2130 (read-options-interface
2131 (read-options read-enable read-disable)
2132 (read-set!)))
2133
2134(define-option-interface
2135 (print-options-interface
2136 (print-options print-enable print-disable)
2137 (print-set!)))
83b38198
MD
2138
2139\f
2140
0f2d19dd
JB
2141;;; {Running Repls}
2142;;;
2143
2144(define (repl read evaler print)
75a97b92 2145 (let loop ((source (read (current-input-port))))
0f2d19dd 2146 (print (evaler source))
75a97b92 2147 (loop (read (current-input-port)))))
0f2d19dd
JB
2148
2149;; A provisional repl that acts like the SCM repl:
2150;;
2151(define scm-repl-silent #f)
2152(define (assert-repl-silence v) (set! scm-repl-silent v))
2153
21ed9efe
MD
2154(define *unspecified* (if #f #f))
2155(define (unspecified? v) (eq? v *unspecified*))
2156
2157(define scm-repl-print-unspecified #f)
2158(define (assert-repl-print-unspecified v) (set! scm-repl-print-unspecified v))
2159
79451588 2160(define scm-repl-verbose #f)
0f2d19dd
JB
2161(define (assert-repl-verbosity v) (set! scm-repl-verbose v))
2162
e6875011 2163(define scm-repl-prompt "guile> ")
0f2d19dd 2164
e6875011
MD
2165(define (set-repl-prompt! v) (set! scm-repl-prompt v))
2166
d5d34fa1
MD
2167(define (default-lazy-handler key . args)
2168 (save-stack lazy-handler-dispatch)
2169 (apply throw key args))
2170
d5d34fa1 2171(define (lazy-handler-dispatch key . args)
d95c0b76 2172 (apply default-lazy-handler key args))
0f2d19dd 2173
3e3cec45 2174(define abort-hook (make-hook))
59e1116d 2175
28d8ab3c
GH
2176;; these definitions are used if running a script.
2177;; otherwise redefined in error-catching-loop.
2178(define (set-batch-mode?! arg) #t)
2179(define (batch-mode?) #t)
4bbbcd5c 2180
0f2d19dd 2181(define (error-catching-loop thunk)
4bbbcd5c
GH
2182 (let ((status #f)
2183 (interactive #t))
8e44e7a0 2184 (define (loop first)
20edfbbd 2185 (let ((next
8e44e7a0 2186 (catch #t
9a0d70e2 2187
8e44e7a0
GH
2188 (lambda ()
2189 (lazy-catch #t
2190 (lambda ()
bb00edfa 2191 (call-with-unblocked-asyncs
8e44e7a0 2192 (lambda ()
45456413
MD
2193 (with-traps
2194 (lambda ()
2195 (first)
20edfbbd 2196
45456413
MD
2197 ;; This line is needed because mark
2198 ;; doesn't do closures quite right.
2199 ;; Unreferenced locals should be
2200 ;; collected.
2201 ;;
2202 (set! first #f)
2203 (let loop ((v (thunk)))
2204 (loop (thunk)))
bb00edfa 2205 #f)))))
8e44e7a0
GH
2206
2207 lazy-handler-dispatch))
20edfbbd 2208
8e44e7a0
GH
2209 (lambda (key . args)
2210 (case key
2211 ((quit)
8e44e7a0
GH
2212 (set! status args)
2213 #f)
2214
2215 ((switch-repl)
2216 (apply throw 'switch-repl args))
2217
2218 ((abort)
2219 ;; This is one of the closures that require
2220 ;; (set! first #f) above
2221 ;;
2222 (lambda ()
04efd24d 2223 (run-hook abort-hook)
e13c54c4 2224 (force-output (current-output-port))
8e44e7a0
GH
2225 (display "ABORT: " (current-error-port))
2226 (write args (current-error-port))
2227 (newline (current-error-port))
4bbbcd5c 2228 (if interactive
e13c54c4
JB
2229 (begin
2230 (if (and
2231 (not has-shown-debugger-hint?)
2232 (not (memq 'backtrace
2233 (debug-options-interface)))
2234 (stack? (fluid-ref the-last-stack)))
2235 (begin
2236 (newline (current-error-port))
2237 (display
cb546c61 2238 "Type \"(backtrace)\" to get more information or \"(debug)\" to enter the debugger.\n"
e13c54c4
JB
2239 (current-error-port))
2240 (set! has-shown-debugger-hint? #t)))
2241 (force-output (current-error-port)))
2242 (begin
2243 (primitive-exit 1)))
8e44e7a0
GH
2244 (set! stack-saved? #f)))
2245
2246 (else
2247 ;; This is the other cons-leak closure...
2248 (lambda ()
2249 (cond ((= (length args) 4)
2250 (apply handle-system-error key args))
2251 (else
2252 (apply bad-throw key args))))))))))
2253 (if next (loop next) status)))
5f5f2642 2254 (set! set-batch-mode?! (lambda (arg)
20edfbbd 2255 (cond (arg
5f5f2642
MD
2256 (set! interactive #f)
2257 (restore-signals))
2258 (#t
2259 (error "sorry, not implemented")))))
2260 (set! batch-mode? (lambda () (not interactive)))
bb00edfa
MV
2261 (call-with-blocked-asyncs
2262 (lambda () (loop (lambda () #t))))))
0f2d19dd 2263
8bb7f646 2264;;(define the-last-stack (make-fluid)) Defined by scm_init_backtrace ()
8087b6be 2265(define before-signal-stack (make-fluid))
21ed9efe
MD
2266(define stack-saved? #f)
2267
2268(define (save-stack . narrowing)
edc185c7
MD
2269 (or stack-saved?
2270 (cond ((not (memq 'debug (debug-options-interface)))
2271 (fluid-set! the-last-stack #f)
2272 (set! stack-saved? #t))
2273 (else
2274 (fluid-set!
2275 the-last-stack
2276 (case (stack-id #t)
2277 ((repl-stack)
704f4e86 2278 (apply make-stack #t save-stack primitive-eval #t 0 narrowing))
edc185c7
MD
2279 ((load-stack)
2280 (apply make-stack #t save-stack 0 #t 0 narrowing))
2281 ((tk-stack)
2282 (apply make-stack #t save-stack tk-stack-mark #t 0 narrowing))
2283 ((#t)
2284 (apply make-stack #t save-stack 0 1 narrowing))
2285 (else
2286 (let ((id (stack-id #t)))
2287 (and (procedure? id)
2288 (apply make-stack #t save-stack id #t 0 narrowing))))))
2289 (set! stack-saved? #t)))))
1c6cd8e8 2290
3e3cec45
MD
2291(define before-error-hook (make-hook))
2292(define after-error-hook (make-hook))
2293(define before-backtrace-hook (make-hook))
2294(define after-backtrace-hook (make-hook))
1c6cd8e8 2295
21ed9efe
MD
2296(define has-shown-debugger-hint? #f)
2297
35c5db87
GH
2298(define (handle-system-error key . args)
2299 (let ((cep (current-error-port)))
8bb7f646 2300 (cond ((not (stack? (fluid-ref the-last-stack))))
21ed9efe 2301 ((memq 'backtrace (debug-options-interface))
04efd24d 2302 (run-hook before-backtrace-hook)
21ed9efe 2303 (newline cep)
755457ec 2304 (display "Backtrace:\n")
8bb7f646 2305 (display-backtrace (fluid-ref the-last-stack) cep)
21ed9efe 2306 (newline cep)
04efd24d
MD
2307 (run-hook after-backtrace-hook)))
2308 (run-hook before-error-hook)
8bb7f646 2309 (apply display-error (fluid-ref the-last-stack) cep args)
04efd24d 2310 (run-hook after-error-hook)
35c5db87
GH
2311 (force-output cep)
2312 (throw 'abort key)))
21ed9efe 2313
0f2d19dd
JB
2314(define (quit . args)
2315 (apply throw 'quit args))
2316
7950df7c
GH
2317(define exit quit)
2318
d590bbf6
MD
2319;;(define has-shown-backtrace-hint? #f) Defined by scm_init_backtrace ()
2320
2321;; Replaced by C code:
2322;;(define (backtrace)
8bb7f646 2323;; (if (fluid-ref the-last-stack)
d590bbf6
MD
2324;; (begin
2325;; (newline)
8bb7f646 2326;; (display-backtrace (fluid-ref the-last-stack) (current-output-port))
d590bbf6
MD
2327;; (newline)
2328;; (if (and (not has-shown-backtrace-hint?)
2329;; (not (memq 'backtrace (debug-options-interface))))
2330;; (begin
2331;; (display
2332;;"Type \"(debug-enable 'backtrace)\" if you would like a backtrace
2333;;automatically if an error occurs in the future.\n")
2334;; (set! has-shown-backtrace-hint? #t))))
2335;; (display "No backtrace available.\n")))
21ed9efe 2336
0f2d19dd 2337(define (error-catching-repl r e p)
5f89fb13
MV
2338 (error-catching-loop
2339 (lambda ()
2340 (call-with-values (lambda () (e (r)))
2341 (lambda the-values (for-each p the-values))))))
0f2d19dd
JB
2342
2343(define (gc-run-time)
2344 (cdr (assq 'gc-time-taken (gc-stats))))
2345
3e3cec45
MD
2346(define before-read-hook (make-hook))
2347(define after-read-hook (make-hook))
870777d7
KN
2348(define before-eval-hook (make-hook 1))
2349(define after-eval-hook (make-hook 1))
2350(define before-print-hook (make-hook 1))
2351(define after-print-hook (make-hook 1))
1c6cd8e8 2352
dc5c2038
MD
2353;;; The default repl-reader function. We may override this if we've
2354;;; the readline library.
2355(define repl-reader
2356 (lambda (prompt)
2357 (display prompt)
2358 (force-output)
04efd24d 2359 (run-hook before-read-hook)
dc5c2038
MD
2360 (read (current-input-port))))
2361
0f2d19dd 2362(define (scm-style-repl)
9d774814 2363
0f2d19dd
JB
2364 (letrec (
2365 (start-gc-rt #f)
2366 (start-rt #f)
0f2d19dd
JB
2367 (repl-report-start-timing (lambda ()
2368 (set! start-gc-rt (gc-run-time))
2369 (set! start-rt (get-internal-run-time))))
2370 (repl-report (lambda ()
2371 (display ";;; ")
2372 (display (inexact->exact
2373 (* 1000 (/ (- (get-internal-run-time) start-rt)
2374 internal-time-units-per-second))))
2375 (display " msec (")
2376 (display (inexact->exact
2377 (* 1000 (/ (- (gc-run-time) start-gc-rt)
2378 internal-time-units-per-second))))
2379 (display " msec in gc)\n")))
480977d0
JB
2380
2381 (consume-trailing-whitespace
2382 (lambda ()
2383 (let ((ch (peek-char)))
2384 (cond
2385 ((eof-object? ch))
2386 ((or (char=? ch #\space) (char=? ch #\tab))
2387 (read-char)
2388 (consume-trailing-whitespace))
2389 ((char=? ch #\newline)
2390 (read-char))))))
0f2d19dd 2391 (-read (lambda ()
dc5c2038
MD
2392 (let ((val
2393 (let ((prompt (cond ((string? scm-repl-prompt)
2394 scm-repl-prompt)
2395 ((thunk? scm-repl-prompt)
2396 (scm-repl-prompt))
2397 (scm-repl-prompt "> ")
2398 (else ""))))
2399 (repl-reader prompt))))
2400
480977d0 2401 ;; As described in R4RS, the READ procedure updates the
e13c54c4 2402 ;; port to point to the first character past the end of
480977d0
JB
2403 ;; the external representation of the object. This
2404 ;; means that it doesn't consume the newline typically
2405 ;; found after an expression. This means that, when
2406 ;; debugging Guile with GDB, GDB gets the newline, which
2407 ;; it often interprets as a "continue" command, making
2408 ;; breakpoints kind of useless. So, consume any
2409 ;; trailing newline here, as well as any whitespace
2410 ;; before it.
e13c54c4
JB
2411 ;; But not if EOF, for control-D.
2412 (if (not (eof-object? val))
2413 (consume-trailing-whitespace))
04efd24d 2414 (run-hook after-read-hook)
0f2d19dd
JB
2415 (if (eof-object? val)
2416 (begin
7950df7c 2417 (repl-report-start-timing)
0f2d19dd
JB
2418 (if scm-repl-verbose
2419 (begin
2420 (newline)
2421 (display ";;; EOF -- quitting")
2422 (newline)))
2423 (quit 0)))
2424 val)))
2425
2426 (-eval (lambda (sourc)
2427 (repl-report-start-timing)
870777d7
KN
2428 (run-hook before-eval-hook sourc)
2429 (let ((val (start-stack 'repl-stack
2430 ;; If you change this procedure
2431 ;; (primitive-eval), please also
2432 ;; modify the repl-stack case in
2433 ;; save-stack so that stack cutting
2434 ;; continues to work.
2435 (primitive-eval sourc))))
2436 (run-hook after-eval-hook sourc)
2437 val)))
20edfbbd 2438
0f2d19dd 2439
44484f52
MD
2440 (-print (let ((maybe-print (lambda (result)
2441 (if (or scm-repl-print-unspecified
2442 (not (unspecified? result)))
2443 (begin
2444 (write result)
2445 (newline))))))
2446 (lambda (result)
2447 (if (not scm-repl-silent)
2448 (begin
870777d7 2449 (run-hook before-print-hook result)
3923fa6d 2450 (maybe-print result)
870777d7 2451 (run-hook after-print-hook result)
44484f52
MD
2452 (if scm-repl-verbose
2453 (repl-report))
2454 (force-output))))))
0f2d19dd 2455
8e44e7a0 2456 (-quit (lambda (args)
0f2d19dd
JB
2457 (if scm-repl-verbose
2458 (begin
2459 (display ";;; QUIT executed, repl exitting")
2460 (newline)
2461 (repl-report)))
8e44e7a0 2462 args))
0f2d19dd
JB
2463
2464 (-abort (lambda ()
2465 (if scm-repl-verbose
2466 (begin
2467 (display ";;; ABORT executed.")
2468 (newline)
2469 (repl-report)))
2470 (repl -read -eval -print))))
2471
8e44e7a0
GH
2472 (let ((status (error-catching-repl -read
2473 -eval
2474 -print)))
2475 (-quit status))))
20edfbbd 2476
0f2d19dd 2477
0f2d19dd 2478\f
44cf1f0f 2479;;; {IOTA functions: generating lists of numbers}
0f2d19dd 2480
e69cd299
MD
2481(define (iota n)
2482 (let loop ((count (1- n)) (result '()))
2483 (if (< count 0) result
2484 (loop (1- count) (cons count result)))))
0f2d19dd
JB
2485
2486\f
2487;;; {While}
2488;;;
2489;;; with `continue' and `break'.
2490;;;
2491
2492(defmacro while (cond . body)
2493 `(letrec ((continue (lambda () (or (not ,cond) (begin (begin ,@ body) (continue)))))
2494 (break (lambda val (apply throw 'break val))))
2495 (catch 'break
2496 (lambda () (continue))
2497 (lambda v (cadr v)))))
2498
7398c2c2
MD
2499;;; {collect}
2500;;;
2501;;; Similar to `begin' but returns a list of the results of all constituent
2502;;; forms instead of the result of the last form.
2503;;; (The definition relies on the current left-to-right
2504;;; order of evaluation of operands in applications.)
2505
2506(defmacro collect forms
2507 (cons 'list forms))
0f2d19dd 2508
8a6a8671
MV
2509;;; {with-fluids}
2510
2511;; with-fluids is a convenience wrapper for the builtin procedure
2512;; `with-fluids*'. The syntax is just like `let':
2513;;
2514;; (with-fluids ((fluid val)
2515;; ...)
2516;; body)
2517
2518(defmacro with-fluids (bindings . body)
2519 `(with-fluids* (list ,@(map car bindings)) (list ,@(map cadr bindings))
2520 (lambda () ,@body)))
2521
0f2d19dd
JB
2522\f
2523
2524;;; {Macros}
2525;;;
2526
2527;; actually....hobbit might be able to hack these with a little
2528;; coaxing
2529;;
2530
2531(defmacro define-macro (first . rest)
2532 (let ((name (if (symbol? first) first (car first)))
2533 (transformer
2534 (if (symbol? first)
2535 (car rest)
2536 `(lambda ,(cdr first) ,@rest))))
8add1522
KN
2537 `(eval-case
2538 ((load-toplevel)
2539 (define ,name (defmacro:transformer ,transformer)))
2540 (else
2541 (error "define-macro can only be used at the top level")))))
0f2d19dd
JB
2542
2543
2544(defmacro define-syntax-macro (first . rest)
2545 (let ((name (if (symbol? first) first (car first)))
2546 (transformer
2547 (if (symbol? first)
2548 (car rest)
2549 `(lambda ,(cdr first) ,@rest))))
8add1522
KN
2550 `(eval-case
2551 ((load-toplevel)
2552 (define ,name (defmacro:syntax-transformer ,transformer)))
2553 (else
2554 (error "define-syntax-macro can only be used at the top level")))))
645e38d9 2555
0f2d19dd
JB
2556\f
2557;;; {Module System Macros}
2558;;;
2559
532cf805
MV
2560;; Return a list of expressions that evaluate to the appropriate
2561;; arguments for resolve-interface according to SPEC.
2562
2563(define (compile-interface-spec spec)
2564 (define (make-keyarg sym key quote?)
2565 (cond ((or (memq sym spec)
2566 (memq key spec))
2567 => (lambda (rest)
2568 (if quote?
2569 (list key (list 'quote (cadr rest)))
2570 (list key (cadr rest)))))
2571 (else
2572 '())))
2573 (define (map-apply func list)
2574 (map (lambda (args) (apply func args)) list))
bbf5a913 2575 (define keys
532cf805
MV
2576 ;; sym key quote?
2577 '((:select #:select #t)
c614a00b 2578 (:hide #:hide #t)
f595ccfe 2579 (:prefix #:prefix #t)
6672871b 2580 (:renamer #:renamer #f)))
532cf805
MV
2581 (if (not (pair? (car spec)))
2582 `(',spec)
2583 `(',(car spec)
2584 ,@(apply append (map-apply make-keyarg keys)))))
2585
2586(define (keyword-like-symbol->keyword sym)
2587 (symbol->keyword (string->symbol (substring (symbol->string sym) 1))))
2588
2589(define (compile-define-module-args args)
2590 ;; Just quote everything except #:use-module and #:use-syntax. We
2591 ;; need to know about all arguments regardless since we want to turn
2592 ;; symbols that look like keywords into real keywords, and the
2593 ;; keyword args in a define-module form are not regular
2594 ;; (i.e. no-backtrace doesn't take a value).
2595 (let loop ((compiled-args `((quote ,(car args))))
2596 (args (cdr args)))
2597 (cond ((null? args)
2598 (reverse! compiled-args))
2599 ;; symbol in keyword position
2600 ((symbol? (car args))
2601 (loop compiled-args
2602 (cons (keyword-like-symbol->keyword (car args)) (cdr args))))
2603 ((memq (car args) '(#:no-backtrace #:pure))
2604 (loop (cons (car args) compiled-args)
2605 (cdr args)))
2606 ((null? (cdr args))
2607 (error "keyword without value:" (car args)))
2608 ((memq (car args) '(#:use-module #:use-syntax))
2609 (loop (cons* `(list ,@(compile-interface-spec (cadr args)))
2610 (car args)
2611 compiled-args)
2612 (cddr args)))
2613 ((eq? (car args) #:autoload)
2614 (loop (cons* `(quote ,(caddr args))
2615 `(quote ,(cadr args))
2616 (car args)
2617 compiled-args)
2618 (cdddr args)))
2619 (else
2620 (loop (cons* `(quote ,(cadr args))
2621 (car args)
2622 compiled-args)
2623 (cddr args))))))
2624
0f2d19dd 2625(defmacro define-module args
7b748b16 2626 `(eval-case
645e38d9 2627 ((load-toplevel)
bbf5a913 2628 (let ((m (process-define-module
532cf805 2629 (list ,@(compile-define-module-args args)))))
25afac98
MV
2630 (set-current-module m)
2631 m))
645e38d9
MV
2632 (else
2633 (error "define-module can only be used at the top level"))))
0f2d19dd 2634
532cf805
MV
2635;; The guts of the use-modules macro. Add the interfaces of the named
2636;; modules to the use-list of the current module, in order.
2637
482a28f9
MV
2638;; This function is called by "modules.c". If you change it, be sure
2639;; to change scm_c_use_module as well.
2640
532cf805 2641(define (process-use-modules module-interface-args)
7b07e5ef
MD
2642 (module-use-interfaces! (current-module)
2643 (map (lambda (mif-args)
2644 (or (apply resolve-interface mif-args)
2645 (error "no such module" mif-args)))
2646 module-interface-args)))
89da9036 2647
33cf699f 2648(defmacro use-modules modules
7b748b16 2649 `(eval-case
645e38d9 2650 ((load-toplevel)
532cf805
MV
2651 (process-use-modules
2652 (list ,@(map (lambda (m)
2653 `(list ,@(compile-interface-spec m)))
7b07e5ef
MD
2654 modules)))
2655 *unspecified*)
645e38d9
MV
2656 (else
2657 (error "use-modules can only be used at the top level"))))
33cf699f 2658
cf266109 2659(defmacro use-syntax (spec)
7b748b16 2660 `(eval-case
645e38d9 2661 ((load-toplevel)
7cbaee0c 2662 ,@(if (pair? spec)
532cf805
MV
2663 `((process-use-modules (list
2664 (list ,@(compile-interface-spec spec))))
7cbaee0c
MD
2665 (set-module-transformer! (current-module)
2666 ,(car (last-pair spec))))
cf743aea
MD
2667 `((set-module-transformer! (current-module) ,spec)))
2668 *unspecified*)
645e38d9 2669 (else
4879243c 2670 (error "use-syntax can only be used at the top level"))))
7a0ff2f8 2671
9123414e
DH
2672;; Dirk:FIXME:: This incorrect (according to R5RS) syntax needs to be changed
2673;; as soon as guile supports hygienic macros.
2674(define define-private define)
0f2d19dd
JB
2675
2676(defmacro define-public args
2677 (define (syntax)
2678 (error "bad syntax" (list 'define-public args)))
2679 (define (defined-name n)
2680 (cond
3c5af9ef
JB
2681 ((symbol? n) n)
2682 ((pair? n) (defined-name (car n)))
2683 (else (syntax))))
0f2d19dd 2684 (cond
645e38d9
MV
2685 ((null? args)
2686 (syntax))
2687 (#t
2688 (let ((name (defined-name (car args))))
2689 `(begin
a482f2cc
MV
2690 (define-private ,@args)
2691 (eval-case ((load-toplevel) (export ,name))))))))
0f2d19dd
JB
2692
2693(defmacro defmacro-public args
2694 (define (syntax)
2695 (error "bad syntax" (list 'defmacro-public args)))
2696 (define (defined-name n)
2697 (cond
645e38d9
MV
2698 ((symbol? n) n)
2699 (else (syntax))))
0f2d19dd 2700 (cond
645e38d9
MV
2701 ((null? args)
2702 (syntax))
2703 (#t
2704 (let ((name (defined-name (car args))))
2705 `(begin
7b748b16 2706 (eval-case ((load-toplevel) (export ,name)))
645e38d9 2707 (defmacro ,@args))))))
0f2d19dd 2708
89d06712 2709;; Export a local variable
482a28f9
MV
2710
2711;; This function is called from "modules.c". If you change it, be
2712;; sure to update "modules.c" as well.
2713
90847923
MD
2714(define (module-export! m names)
2715 (let ((public-i (module-public-interface m)))
2716 (for-each (lambda (name)
89d06712
MV
2717 (let ((var (module-ensure-local-variable! m name)))
2718 (module-add! public-i name var)))
2719 names)))
2720
f595ccfe
MD
2721(define (module-replace! m names)
2722 (let ((public-i (module-public-interface m)))
2723 (for-each (lambda (name)
2724 (let ((var (module-ensure-local-variable! m name)))
2725 (set-object-property! var 'replace #t)
2726 (module-add! public-i name var)))
2727 names)))
2728
89d06712
MV
2729;; Re-export a imported variable
2730;;
2731(define (module-re-export! m names)
2732 (let ((public-i (module-public-interface m)))
2733 (for-each (lambda (name)
2734 (let ((var (module-variable m name)))
2735 (cond ((not var)
2736 (error "Undefined variable:" name))
2737 ((eq? var (module-local-variable m name))
2738 (error "re-exporting local variable:" name))
2739 (else
2740 (module-add! public-i name var)))))
90847923
MD
2741 names)))
2742
a0cc0a01 2743(defmacro export names
7b748b16 2744 `(eval-case
645e38d9
MV
2745 ((load-toplevel)
2746 (module-export! (current-module) ',names))
2747 (else
2748 (error "export can only be used at the top level"))))
a0cc0a01 2749
89d06712
MV
2750(defmacro re-export names
2751 `(eval-case
2752 ((load-toplevel)
2753 (module-re-export! (current-module) ',names))
2754 (else
2755 (error "re-export can only be used at the top level"))))
2756
ab382f52 2757(defmacro export-syntax names
6aa9ea7c 2758 `(export ,@names))
a0cc0a01 2759
f2cbc0e5
DH
2760(defmacro re-export-syntax names
2761 `(re-export ,@names))
a0cc0a01 2762
0f2d19dd
JB
2763(define load load-module)
2764
7f24bc58 2765\f
f595ccfe
MD
2766;;; {Parameters}
2767;;;
2768
2769(define make-mutable-parameter
2770 (let ((make (lambda (fluid converter)
2771 (lambda args
2772 (if (null? args)
2773 (fluid-ref fluid)
2774 (fluid-set! fluid (converter (car args))))))))
2775 (lambda (init . converter)
2776 (let ((fluid (make-fluid))
2777 (converter (if (null? converter)
2778 identity
2779 (car converter))))
2780 (fluid-set! fluid (converter init))
2781 (make fluid converter)))))
2782
2783\f
7b07e5ef
MD
2784;;; {Handling of duplicate imported bindings}
2785;;;
2786
2787;; Duplicate handlers take the following arguments:
2788;;
2789;; module importing module
2790;; name conflicting name
2791;; int1 old interface where name occurs
2792;; val1 value of binding in old interface
2793;; int2 new interface where name occurs
2794;; val2 value of binding in new interface
2795;; var previous resolution or #f
2796;; val value of previous resolution
2797;;
2798;; A duplicate handler can take three alternative actions:
2799;;
2800;; 1. return #f => leave responsibility to next handler
2801;; 2. exit with an error
2802;; 3. return a variable resolving the conflict
2803;;
2804
2805(define duplicate-handlers
2806 (let ((m (make-module 7)))
f595ccfe
MD
2807
2808 (define (check module name int1 val1 int2 val2 var val)
2809 (scm-error 'misc-error
2810 #f
8dd18cea 2811 "~A: `~A' imported from both ~A and ~A"
f595ccfe
MD
2812 (list (module-name module)
2813 name
2814 (module-name int1)
2815 (module-name int2))
2816 #f))
2817
2818 (define (warn module name int1 val1 int2 val2 var val)
2819 (format #t
8dd18cea 2820 "~A: `~A' imported from both ~A and ~A\n"
f595ccfe
MD
2821 (module-name module)
2822 name
2823 (module-name int1)
2824 (module-name int2))
2825 #f)
2826
2827 (define (replace module name int1 val1 int2 val2 var val)
2828 (let ((old (or (and var (object-property var 'replace) var)
2829 (module-variable int1 name)))
2830 (new (module-variable int2 name)))
2831 (if (object-property old 'replace)
2832 (and (or (eq? old new)
2833 (not (object-property new 'replace)))
2834 old)
2835 (and (object-property new 'replace)
2836 new))))
2837
2838 (define (warn-override-core module name int1 val1 int2 val2 var val)
2839 (and (eq? int1 the-scm-module)
2840 (begin
2841 (format #t
8dd18cea 2842 "WARNING: ~A: imported module ~A overrides core binding `~A'\n"
f595ccfe
MD
2843 (module-name module)
2844 (module-name int2)
2845 name)
2846 (module-local-variable int2 name))))
2847
2848 (define (first module name int1 val1 int2 val2 var val)
2849 (or var (module-local-variable int1 name)))
2850
2851 (define (last module name int1 val1 int2 val2 var val)
2852 (module-local-variable int2 name))
2853
7b07e5ef
MD
2854 (set-module-name! m 'duplicate-handlers)
2855 (set-module-kind! m 'interface)
f595ccfe
MD
2856 (module-define! m 'check check)
2857 (module-define! m 'warn warn)
2858 (module-define! m 'replace replace)
2859 (module-define! m 'warn-override-core warn-override-core)
2860 (module-define! m 'first first)
2861 (module-define! m 'last last)
7b07e5ef
MD
2862 m))
2863
f595ccfe 2864(define (lookup-duplicates-handlers handler-names)
109c2c9f
MD
2865 (and handler-names
2866 (map (lambda (handler-name)
2867 (or (module-symbol-local-binding
2868 duplicate-handlers handler-name #f)
2869 (error "invalid duplicate handler name:"
2870 handler-name)))
2871 (if (list? handler-names)
2872 handler-names
2873 (list handler-names)))))
f595ccfe 2874
70a459e3
MD
2875(define default-duplicate-binding-procedures
2876 (make-mutable-parameter #f))
2877
2878(define default-duplicate-binding-handler
f595ccfe 2879 (make-mutable-parameter '(replace warn-override-core check)
70a459e3
MD
2880 (lambda (handler-names)
2881 (default-duplicate-binding-procedures
2882 (lookup-duplicates-handlers handler-names))
2883 handler-names)))
f595ccfe 2884
7b07e5ef
MD
2885(define (make-duplicates-interface)
2886 (let ((m (make-module)))
c614a00b 2887 (set-module-kind! m 'custom-interface)
7b07e5ef
MD
2888 (set-module-name! m 'duplicates)
2889 m))
2890
7b07e5ef
MD
2891(define (process-duplicates module interface)
2892 (let* ((duplicates-info (module-duplicates-info module))
70a459e3
MD
2893 (duplicates-handlers (or (car duplicates-info)
2894 (default-duplicate-binding-procedures)))
f595ccfe 2895 (duplicates-interface (cdr duplicates-info)))
7b07e5ef
MD
2896 (module-for-each
2897 (lambda (name var)
109c2c9f
MD
2898 (cond ((module-import-interface module name)
2899 =>
2900 (lambda (prev-interface)
2901 (let ((var1 (module-local-variable prev-interface name))
2902 (var2 (module-local-variable interface name)))
2903 (if (not (eq? var1 var2))
2904 (begin
2905 (if (not duplicates-interface)
2906 (begin
2907 (set! duplicates-interface
2908 (make-duplicates-interface))
2909 (set-cdr! duplicates-info duplicates-interface)))
2910 (let* ((var (module-local-variable duplicates-interface
2911 name))
2912 (val (and var
2913 (variable-bound? var)
2914 (variable-ref var))))
2915 (let loop ((duplicates-handlers duplicates-handlers))
2916 (cond ((null? duplicates-handlers))
2917 (((car duplicates-handlers)
2918 module
2919 name
2920 prev-interface
2921 (and (variable-bound? var1)
2922 (variable-ref var1))
2923 interface
2924 (and (variable-bound? var2)
2925 (variable-ref var2))
2926 var
2927 val)
2928 =>
2929 (lambda (var)
2930 (module-add! duplicates-interface name var)))
2931 (else
2932 (loop (cdr duplicates-handlers)))))))))))))
7b07e5ef
MD
2933 interface)))
2934
2935\f
7f24bc58
MG
2936
2937;;; {`cond-expand' for SRFI-0 support.}
2938;;;
2939;;; This syntactic form expands into different commands or
2940;;; definitions, depending on the features provided by the Scheme
2941;;; implementation.
2942;;;
2943;;; Syntax:
2944;;;
2945;;; <cond-expand>
2946;;; --> (cond-expand <cond-expand-clause>+)
2947;;; | (cond-expand <cond-expand-clause>* (else <command-or-definition>))
2948;;; <cond-expand-clause>
2949;;; --> (<feature-requirement> <command-or-definition>*)
2950;;; <feature-requirement>
2951;;; --> <feature-identifier>
2952;;; | (and <feature-requirement>*)
2953;;; | (or <feature-requirement>*)
2954;;; | (not <feature-requirement>)
2955;;; <feature-identifier>
2956;;; --> <a symbol which is the name or alias of a SRFI>
2957;;;
2958;;; Additionally, this implementation provides the
2959;;; <feature-identifier>s `guile' and `r5rs', so that programs can
2960;;; determine the implementation type and the supported standard.
2961;;;
2962;;; Currently, the following feature identifiers are supported:
2963;;;
f41be016 2964;;; guile r5rs srfi-0
7f24bc58
MG
2965;;;
2966;;; Remember to update the features list when adding more SRFIs.
2967
b9b8f9da 2968(define %cond-expand-features
f41be016
MG
2969 ;; Adjust the above comment when changing this.
2970 '(guile r5rs srfi-0))
1d00af09 2971
b9b8f9da
MG
2972;; This table maps module public interfaces to the list of features.
2973;;
2974(define %cond-expand-table (make-hash-table 31))
2975
2976;; Add one or more features to the `cond-expand' feature list of the
2977;; module `module'.
2978;;
2979(define (cond-expand-provide module features)
2980 (let ((mod (module-public-interface module)))
2981 (and mod
2982 (hashq-set! %cond-expand-table mod
2983 (append (hashq-ref %cond-expand-table mod '())
2984 features)))))
2985
9f79272a
MV
2986(define cond-expand
2987 (procedure->memoizing-macro
2988 (lambda (exp env)
2989 (let ((clauses (cdr exp))
2990 (syntax-error (lambda (cl)
2991 (error "invalid clause in `cond-expand'" cl))))
2992 (letrec
2993 ((test-clause
2994 (lambda (clause)
7f24bc58 2995 (cond
9f79272a
MV
2996 ((symbol? clause)
2997 (or (memq clause %cond-expand-features)
2998 (let lp ((uses (module-uses (env-module env))))
2999 (if (pair? uses)
3000 (or (memq clause
3001 (hashq-ref %cond-expand-table
3002 (car uses) '()))
3003 (lp (cdr uses)))
3004 #f))))
3005 ((pair? clause)
3006 (cond
3007 ((eq? 'and (car clause))
3008 (let lp ((l (cdr clause)))
3009 (cond ((null? l)
3010 #t)
3011 ((pair? l)
3012 (and (test-clause (car l)) (lp (cdr l))))
3013 (else
3014 (syntax-error clause)))))
3015 ((eq? 'or (car clause))
3016 (let lp ((l (cdr clause)))
3017 (cond ((null? l)
3018 #f)
3019 ((pair? l)
3020 (or (test-clause (car l)) (lp (cdr l))))
3021 (else
3022 (syntax-error clause)))))
3023 ((eq? 'not (car clause))
3024 (cond ((not (pair? (cdr clause)))
3025 (syntax-error clause))
3026 ((pair? (cddr clause))
3027 ((syntax-error clause))))
3028 (not (test-clause (cadr clause))))
3029 (else
3030 (syntax-error clause))))
3031 (else
3032 (syntax-error clause))))))
3033 (let lp ((c clauses))
3034 (cond
3035 ((null? c)
3036 (error "Unfulfilled `cond-expand'"))
3037 ((not (pair? c))
7f24bc58 3038 (syntax-error c))
9f79272a
MV
3039 ((not (pair? (car c)))
3040 (syntax-error (car c)))
3041 ((test-clause (caar c))
3042 `(begin ,@(cdar c)))
3043 ((eq? (caar c) 'else)
3044 (if (pair? (cdr c))
3045 (syntax-error c))
3046 `(begin ,@(cdar c)))
3047 (else
3048 (lp (cdr c))))))))))
0f2d19dd 3049
f41be016
MG
3050;; This procedure gets called from the startup code with a list of
3051;; numbers, which are the numbers of the SRFIs to be loaded on startup.
3052;;
3053(define (use-srfis srfis)
3054 (let lp ((s srfis))
3055 (if (pair? s)
f8a502cb
TTN
3056 (let* ((srfi (string->symbol
3057 (string-append "srfi-" (number->string (car s)))))
3058 (mod-i (resolve-interface (list 'srfi srfi))))
3059 (module-use! (current-module) mod-i)
f8a502cb
TTN
3060 (lp (cdr s))))))
3061
0f2d19dd 3062\f
9d774814 3063
9aca88c3
JB
3064;;; {Load emacs interface support if emacs option is given.}
3065
645e38d9 3066(define (named-module-use! user usee)
89d06712 3067 (module-use! (resolve-module user) (resolve-interface usee)))
645e38d9 3068
9aca88c3 3069(define (load-emacs-interface)
fb1b76f4
TTN
3070 (and (provided? 'debug-extensions)
3071 (debug-enable 'backtrace))
645e38d9 3072 (named-module-use! '(guile-user) '(ice-9 emacs)))
9aca88c3
JB
3073
3074\f
0f2d19dd 3075
755457ec
MD
3076(define using-readline?
3077 (let ((using-readline? (make-fluid)))
3078 (make-procedure-with-setter
3079 (lambda () (fluid-ref using-readline?))
3080 (lambda (v) (fluid-set! using-readline? v)))))
3081
20edfbbd 3082(define (top-repl)
615bfe72
MV
3083 (let ((guile-user-module (resolve-module '(guile-user))))
3084
3085 ;; Load emacs interface support if emacs option is given.
454b82f4
MD
3086 (if (and (module-defined? guile-user-module 'use-emacs-interface)
3087 (module-ref guile-user-module 'use-emacs-interface))
615bfe72
MV
3088 (load-emacs-interface))
3089
3090 ;; Use some convenient modules (in reverse order)
bbf5a913 3091
615bfe72 3092 (if (provided? 'regex)
89d06712 3093 (module-use! guile-user-module (resolve-interface '(ice-9 regex))))
615bfe72 3094 (if (provided? 'threads)
89d06712 3095 (module-use! guile-user-module (resolve-interface '(ice-9 threads))))
615bfe72 3096 ;; load debugger on demand
bbf5a913 3097 (module-use! guile-user-module
615bfe72
MV
3098 (make-autoload-interface guile-user-module
3099 '(ice-9 debugger) '(debug)))
89d06712
MV
3100 (module-use! guile-user-module (resolve-interface '(ice-9 session)))
3101 (module-use! guile-user-module (resolve-interface '(ice-9 debug)))
615bfe72 3102 ;; so that builtin bindings will be checked first
89d06712 3103 (module-use! guile-user-module (resolve-interface '(guile)))
615bfe72
MV
3104
3105 (set-current-module guile-user-module)
3106
3107 (let ((old-handlers #f)
3108 (signals (if (provided? 'posix)
3109 `((,SIGINT . "User interrupt")
3110 (,SIGFPE . "Arithmetic error")
3111 (,SIGBUS . "Bad memory access (bus error)")
3112 (,SIGSEGV
3113 . "Bad memory access (Segmentation violation)"))
3114 '())))
3115
3116 (dynamic-wind
3117
3118 ;; call at entry
3119 (lambda ()
3120 (let ((make-handler (lambda (msg)
3121 (lambda (sig)
3122 ;; Make a backup copy of the stack
3123 (fluid-set! before-signal-stack
3124 (fluid-ref the-last-stack))
bb00edfa 3125 (save-stack 2)
615bfe72
MV
3126 (scm-error 'signal
3127 #f
3128 msg
3129 #f
3130 (list sig))))))
3131 (set! old-handlers
3132 (map (lambda (sig-msg)
3133 (sigaction (car sig-msg)
3134 (make-handler (cdr sig-msg))))
3135 signals))))
bbf5a913 3136
615bfe72
MV
3137 ;; the protected thunk.
3138 (lambda ()
3139 (let ((status (scm-style-repl)))
3140 (run-hook exit-hook)
3141 status))
bbf5a913 3142
615bfe72
MV
3143 ;; call at exit.
3144 (lambda ()
3145 (map (lambda (sig-msg old-handler)
3146 (if (not (car old-handler))
3147 ;; restore original C handler.
3148 (sigaction (car sig-msg) #f)
3149 ;; restore Scheme handler, SIG_IGN or SIG_DFL.
3150 (sigaction (car sig-msg)
3151 (car old-handler)
3152 (cdr old-handler))))
3153 signals old-handlers))))))
0f2d19dd 3154
02b754d3
GH
3155(defmacro false-if-exception (expr)
3156 `(catch #t (lambda () ,expr)
3157 (lambda args #f)))
3158
2055a1bc
MD
3159;;; This hook is run at the very end of an interactive session.
3160;;;
3e3cec45 3161(define exit-hook (make-hook))
2055a1bc 3162
4d31f0da 3163\f
d866f445
MV
3164(append! %load-path (list "."))
3165
3166;; Place the user in the guile-user module.
3167;;
6eb396fe 3168
615bfe72 3169(define-module (guile-user))
6d36532c 3170
20edfbbd 3171;;; boot-9.scm ends here