clean up macros.[ch]
[bpt/guile.git] / libguile / memoize.c
1 /* Copyright (C) 1995,1996,1997,1998,1999,2000,2001,2002,2003,2004,2005,2006,2007,2008,2009,2010
2 * Free Software Foundation, Inc.
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public License
6 * as published by the Free Software Foundation; either version 3 of
7 * the License, or (at your option) any later version.
8 *
9 * This library is distributed in the hope that it will be useful, but
10 * WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
13 *
14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the Free Software
16 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
17 * 02110-1301 USA
18 */
19
20 \f
21
22 #ifdef HAVE_CONFIG_H
23 # include <config.h>
24 #endif
25
26 #include "libguile/__scm.h"
27 #include "libguile/_scm.h"
28 #include "libguile/continuations.h"
29 #include "libguile/eq.h"
30 #include "libguile/list.h"
31 #include "libguile/macros.h"
32 #include "libguile/memoize.h"
33 #include "libguile/modules.h"
34 #include "libguile/srcprop.h"
35 #include "libguile/ports.h"
36 #include "libguile/print.h"
37 #include "libguile/strings.h"
38 #include "libguile/throw.h"
39 #include "libguile/validate.h"
40
41
42 \f
43
44
45 #if 0
46 #define CAR(x) SCM_CAR(x)
47 #define CDR(x) SCM_CDR(x)
48 #define CAAR(x) SCM_CAAR(x)
49 #define CADR(x) SCM_CADR(x)
50 #define CDAR(x) SCM_CDAR(x)
51 #define CDDR(x) SCM_CDDR(x)
52 #define CADDR(x) SCM_CADDR(x)
53 #define CDDDR(x) SCM_CDDDR(x)
54 #define CADDDR(x) SCM_CDDDR(x)
55 #else
56 #define CAR(x) scm_car(x)
57 #define CDR(x) scm_cdr(x)
58 #define CAAR(x) scm_caar(x)
59 #define CADR(x) scm_cadr(x)
60 #define CDAR(x) scm_cdar(x)
61 #define CDDR(x) scm_cddr(x)
62 #define CADDR(x) scm_caddr(x)
63 #define CDDDR(x) scm_cdddr(x)
64 #define CADDDR(x) scm_cadddr(x)
65 #endif
66
67
68 static const char s_bad_expression[] = "Bad expression";
69 static const char s_expression[] = "Missing or extra expression in";
70 static const char s_missing_expression[] = "Missing expression in";
71 static const char s_extra_expression[] = "Extra expression in";
72 static const char s_empty_combination[] = "Illegal empty combination";
73 static const char s_missing_body_expression[] = "Missing body expression in";
74 static const char s_mixed_body_forms[] = "Mixed definitions and expressions in";
75 static const char s_bad_define[] = "Bad define placement";
76 static const char s_missing_clauses[] = "Missing clauses";
77 static const char s_misplaced_else_clause[] = "Misplaced else clause";
78 static const char s_bad_case_clause[] = "Bad case clause";
79 static const char s_bad_case_labels[] = "Bad case labels";
80 static const char s_duplicate_case_label[] = "Duplicate case label";
81 static const char s_bad_cond_clause[] = "Bad cond clause";
82 static const char s_missing_recipient[] = "Missing recipient in";
83 static const char s_bad_variable[] = "Bad variable";
84 static const char s_bad_bindings[] = "Bad bindings";
85 static const char s_bad_binding[] = "Bad binding";
86 static const char s_duplicate_binding[] = "Duplicate binding";
87 static const char s_bad_exit_clause[] = "Bad exit clause";
88 static const char s_bad_formals[] = "Bad formals";
89 static const char s_bad_formal[] = "Bad formal";
90 static const char s_duplicate_formal[] = "Duplicate formal";
91 static const char s_splicing[] = "Non-list result for unquote-splicing";
92 static const char s_bad_slot_number[] = "Bad slot number";
93
94
95 /* Signal a syntax error. We distinguish between the form that caused the
96 * error and the enclosing expression. The error message will print out as
97 * shown in the following pattern. The file name and line number are only
98 * given when they can be determined from the erroneous form or from the
99 * enclosing expression.
100 *
101 * <filename>: In procedure memoization:
102 * <filename>: In file <name>, line <nr>: <error-message> in <expression>. */
103
104 SCM_SYMBOL (syntax_error_key, "syntax-error");
105
106 /* The prototype is needed to indicate that the function does not return. */
107 static void
108 syntax_error (const char* const, const SCM, const SCM) SCM_NORETURN;
109
110 static void
111 syntax_error (const char* const msg, const SCM form, const SCM expr)
112 {
113 SCM msg_string = scm_from_locale_string (msg);
114 SCM filename = SCM_BOOL_F;
115 SCM linenr = SCM_BOOL_F;
116 const char *format;
117 SCM args;
118
119 if (scm_is_pair (form))
120 {
121 filename = scm_source_property (form, scm_sym_filename);
122 linenr = scm_source_property (form, scm_sym_line);
123 }
124
125 if (scm_is_false (filename) && scm_is_false (linenr) && scm_is_pair (expr))
126 {
127 filename = scm_source_property (expr, scm_sym_filename);
128 linenr = scm_source_property (expr, scm_sym_line);
129 }
130
131 if (!SCM_UNBNDP (expr))
132 {
133 if (scm_is_true (filename))
134 {
135 format = "In file ~S, line ~S: ~A ~S in expression ~S.";
136 args = scm_list_5 (filename, linenr, msg_string, form, expr);
137 }
138 else if (scm_is_true (linenr))
139 {
140 format = "In line ~S: ~A ~S in expression ~S.";
141 args = scm_list_4 (linenr, msg_string, form, expr);
142 }
143 else
144 {
145 format = "~A ~S in expression ~S.";
146 args = scm_list_3 (msg_string, form, expr);
147 }
148 }
149 else
150 {
151 if (scm_is_true (filename))
152 {
153 format = "In file ~S, line ~S: ~A ~S.";
154 args = scm_list_4 (filename, linenr, msg_string, form);
155 }
156 else if (scm_is_true (linenr))
157 {
158 format = "In line ~S: ~A ~S.";
159 args = scm_list_3 (linenr, msg_string, form);
160 }
161 else
162 {
163 format = "~A ~S.";
164 args = scm_list_2 (msg_string, form);
165 }
166 }
167
168 scm_error (syntax_error_key, "memoization", format, args, SCM_BOOL_F);
169 }
170
171
172 /* Shortcut macros to simplify syntax error handling. */
173 #define ASSERT_SYNTAX(cond, message, form) \
174 { if (SCM_UNLIKELY (!(cond))) \
175 syntax_error (message, form, SCM_UNDEFINED); }
176 #define ASSERT_SYNTAX_2(cond, message, form, expr) \
177 { if (SCM_UNLIKELY (!(cond))) \
178 syntax_error (message, form, expr); }
179
180 \f
181
182
183 /* {Evaluator memoized expressions}
184 */
185
186 scm_t_bits scm_tc16_memoized;
187
188 #define MAKMEMO(n, args) (scm_cell (scm_tc16_memoized | ((n) << 16), (scm_t_bits)(args)))
189
190 #define MAKMEMO_BEGIN(exps) \
191 MAKMEMO (SCM_M_BEGIN, exps)
192 #define MAKMEMO_IF(test, then, else_) \
193 MAKMEMO (SCM_M_IF, scm_cons (test, scm_cons (then, else_)))
194 #define MAKMEMO_LAMBDA(nreq, rest, body) \
195 MAKMEMO (SCM_M_LAMBDA, scm_cons (SCM_I_MAKINUM (nreq), scm_cons (rest, body)))
196 #define MAKMEMO_LET(inits, body) \
197 MAKMEMO (SCM_M_LET, scm_cons (inits, body))
198 #define MAKMEMO_QUOTE(exp) \
199 MAKMEMO (SCM_M_QUOTE, exp)
200 #define MAKMEMO_DEFINE(var, val) \
201 MAKMEMO (SCM_M_DEFINE, scm_cons (var, val))
202 #define MAKMEMO_APPLY(exp) \
203 MAKMEMO (SCM_M_APPLY, exp)
204 #define MAKMEMO_CONT(proc) \
205 MAKMEMO (SCM_M_CONT, proc)
206 #define MAKMEMO_CALL_WITH_VALUES(prod, cons) \
207 MAKMEMO (SCM_M_CALL_WITH_VALUES, scm_cons (prod, cons))
208 #define MAKMEMO_CALL(proc, nargs, args) \
209 MAKMEMO (SCM_M_CALL, scm_cons (proc, scm_cons (SCM_I_MAKINUM (nargs), args)))
210 #define MAKMEMO_LEX_REF(n) \
211 MAKMEMO (SCM_M_LEXICAL_REF, SCM_I_MAKINUM (n))
212 #define MAKMEMO_LEX_SET(n, val) \
213 MAKMEMO (SCM_M_LEXICAL_SET, scm_cons (SCM_I_MAKINUM (n), val))
214 #define MAKMEMO_TOP_REF(var) \
215 MAKMEMO (SCM_M_TOPLEVEL_REF, var)
216 #define MAKMEMO_TOP_SET(var, val) \
217 MAKMEMO (SCM_M_TOPLEVEL_SET, scm_cons (var, val))
218 #define MAKMEMO_MOD_REF(mod, var, public) \
219 MAKMEMO (SCM_M_MODULE_REF, scm_cons (mod, scm_cons (var, public)))
220 #define MAKMEMO_MOD_SET(val, mod, var, public) \
221 MAKMEMO (SCM_M_MODULE_SET, scm_cons (val, scm_cons (mod, scm_cons (var, public))))
222
223 \f
224
225 /* This table must agree with the list of M_ constants in memoize.h */
226 static const char *const memoized_tags[] =
227 {
228 "begin",
229 "if",
230 "lambda",
231 "let",
232 "quote",
233 "define",
234 "apply",
235 "call/cc",
236 "call-with-values",
237 "call",
238 "lexical-ref",
239 "lexical-set!",
240 "toplevel-ref",
241 "toplevel-set!",
242 "module-ref",
243 "module-set!",
244 };
245
246 static int
247 scm_print_memoized (SCM memoized, SCM port, scm_print_state *pstate)
248 {
249 scm_puts ("#<memoized ", port);
250 scm_write (scm_unmemoize_expression (memoized), port);
251 scm_puts (">", port);
252 return 1;
253 }
254
255 static SCM scm_m_at (SCM xorig, SCM env);
256 static SCM scm_m_atat (SCM xorig, SCM env);
257 static SCM scm_m_and (SCM xorig, SCM env);
258 static SCM scm_m_apply (SCM xorig, SCM env);
259 static SCM scm_m_begin (SCM xorig, SCM env);
260 static SCM scm_m_cont (SCM xorig, SCM env);
261 static SCM scm_m_at_call_with_values (SCM xorig, SCM env);
262 static SCM scm_m_cond (SCM xorig, SCM env);
263 static SCM scm_m_define (SCM x, SCM env);
264 static SCM scm_m_eval_when (SCM xorig, SCM env);
265 static SCM scm_m_if (SCM xorig, SCM env);
266 static SCM scm_m_lambda (SCM xorig, SCM env);
267 static SCM scm_m_let (SCM xorig, SCM env);
268 static SCM scm_m_letrec (SCM xorig, SCM env);
269 static SCM scm_m_letstar (SCM xorig, SCM env);
270 static SCM scm_m_or (SCM xorig, SCM env);
271 static SCM scm_m_quote (SCM xorig, SCM env);
272 static SCM scm_m_set_x (SCM xorig, SCM env);
273
274
275 \f
276
277
278 static scm_t_macro_primitive
279 memoize_env_ref_transformer (SCM env, SCM x)
280 {
281 SCM var;
282 for (; scm_is_pair (env); env = CDR (env))
283 if (scm_is_eq (x, CAR (env)))
284 return NULL; /* lexical */
285
286 var = scm_module_variable (env, x);
287 if (scm_is_true (var) && scm_is_true (scm_variable_bound_p (var))
288 && scm_is_true (scm_macro_p (scm_variable_ref (var))))
289 return scm_i_macro_primitive (scm_variable_ref (var));
290 else
291 return NULL; /* anything else */
292 }
293
294 static int
295 memoize_env_var_is_free (SCM env, SCM x)
296 {
297 for (; scm_is_pair (env); env = CDR (env))
298 if (scm_is_eq (x, CAR (env)))
299 return 0; /* bound */
300 return 1; /* free */
301 }
302
303 static int
304 memoize_env_lexical_index (SCM env, SCM x)
305 {
306 int i = 0;
307 for (; scm_is_pair (env); env = CDR (env), i++)
308 if (scm_is_eq (x, CAR (env)))
309 return i; /* bound */
310 return -1; /* free */
311 }
312
313 static SCM
314 memoize_env_extend (SCM env, SCM vars)
315 {
316 return scm_append (scm_list_2 (vars, env));
317 }
318
319 static SCM
320 memoize (SCM exp, SCM env)
321 {
322 if (scm_is_pair (exp))
323 {
324 SCM CAR;
325 scm_t_macro_primitive trans;
326
327 CAR = CAR (exp);
328 if (scm_is_symbol (CAR))
329 trans = memoize_env_ref_transformer (env, CAR);
330 else
331 trans = NULL;
332
333 if (trans)
334 return trans (exp, env);
335 else
336 {
337 SCM proc;
338 SCM args = SCM_EOL;
339 int nargs = 0;
340 proc = memoize (CAR (exp), env);
341 for (exp = CDR (exp); scm_is_pair (exp); exp = CDR (exp), nargs++)
342 args = scm_cons (memoize (CAR (exp), env), args);
343 if (scm_is_null (exp))
344 return MAKMEMO_CALL (proc, nargs,
345 scm_reverse_x (args, SCM_UNDEFINED));
346 else
347 syntax_error ("expected a proper list", exp, SCM_UNDEFINED);
348 }
349 }
350 else if (scm_is_symbol (exp))
351 {
352 int i = memoize_env_lexical_index (env, exp);
353 if (i < 0)
354 return MAKMEMO_TOP_REF (exp);
355 else
356 return MAKMEMO_LEX_REF (i);
357 }
358 else
359 return MAKMEMO_QUOTE (exp);
360 }
361
362 static SCM
363 memoize_exprs (SCM forms, const SCM env)
364 {
365 SCM ret = SCM_EOL;
366
367 for (; !scm_is_null (forms); forms = CDR (forms))
368 ret = scm_cons (memoize (CAR (forms), env), ret);
369 return scm_reverse_x (ret, SCM_UNDEFINED);
370 }
371
372 static SCM
373 memoize_sequence (const SCM forms, const SCM env)
374 {
375 ASSERT_SYNTAX (scm_ilength (forms) >= 1, s_bad_expression,
376 scm_cons (scm_sym_begin, forms));
377 return MAKMEMO_BEGIN (memoize_exprs (forms, env));
378 }
379
380
381 \f
382 /* Memoization. */
383
384 #define SCM_SYNTAX(RANAME, STR, CFN) \
385 SCM_SNARF_HERE(static const char RANAME[]=STR)\
386 SCM_SNARF_INIT(scm_c_define (RANAME, scm_i_make_primitive_macro (RANAME, CFN)))
387
388 SCM_SYNTAX (s_at, "@", scm_m_at);
389 SCM_SYNTAX (s_atat, "@@", scm_m_atat);
390 SCM_SYNTAX (s_and, "and", scm_m_and);
391 SCM_SYNTAX (s_begin, "begin", scm_m_begin);
392 SCM_SYNTAX (s_atcall_cc, "@call-with-current-continuation", scm_m_cont);
393 SCM_SYNTAX (s_at_call_with_values, "@call-with-values", scm_m_at_call_with_values);
394 SCM_SYNTAX (s_cond, "cond", scm_m_cond);
395 SCM_SYNTAX (s_define, "define", scm_m_define);
396 SCM_SYNTAX (s_eval_when, "eval-when", scm_m_eval_when);
397 SCM_SYNTAX (s_if, "if", scm_m_if);
398 SCM_SYNTAX (s_lambda, "lambda", scm_m_lambda);
399 SCM_SYNTAX (s_let, "let", scm_m_let);
400 SCM_SYNTAX (s_letrec, "letrec", scm_m_letrec);
401 SCM_SYNTAX (s_letstar, "let*", scm_m_letstar);
402 SCM_SYNTAX (s_or, "or", scm_m_or);
403 SCM_SYNTAX (s_quote, "quote", scm_m_quote);
404 SCM_SYNTAX (s_set_x, "set!", scm_m_set_x);
405 SCM_SYNTAX (s_atapply, "@apply", scm_m_apply);
406
407
408 SCM_GLOBAL_SYMBOL (scm_sym_apply, "apply");
409 SCM_GLOBAL_SYMBOL (scm_sym_arrow, "=>");
410 SCM_GLOBAL_SYMBOL (scm_sym_at, "@");
411 SCM_GLOBAL_SYMBOL (scm_sym_atat, "@@");
412 SCM_GLOBAL_SYMBOL (scm_sym_at_call_with_values, "@call-with-values");
413 SCM_GLOBAL_SYMBOL (scm_sym_atapply, "@apply");
414 SCM_GLOBAL_SYMBOL (scm_sym_atcall_cc, "@call-with-current-continuation");
415 SCM_GLOBAL_SYMBOL (scm_sym_begin, "begin");
416 SCM_GLOBAL_SYMBOL (scm_sym_case, "case");
417 SCM_GLOBAL_SYMBOL (scm_sym_cond, "cond");
418 SCM_GLOBAL_SYMBOL (scm_sym_define, "define");
419 SCM_GLOBAL_SYMBOL (scm_sym_else, "else");
420 SCM_GLOBAL_SYMBOL (scm_sym_eval_when, "eval-when");
421 SCM_GLOBAL_SYMBOL (scm_sym_if, "if");
422 SCM_GLOBAL_SYMBOL (scm_sym_lambda, "lambda");
423 SCM_GLOBAL_SYMBOL (scm_sym_let, "let");
424 SCM_GLOBAL_SYMBOL (scm_sym_letrec, "letrec");
425 SCM_GLOBAL_SYMBOL (scm_sym_letstar, "let*");
426 SCM_GLOBAL_SYMBOL (scm_sym_or, "or");
427 SCM_GLOBAL_SYMBOL (scm_sym_quote, "quote");
428 SCM_GLOBAL_SYMBOL (scm_sym_set_x, "set!");
429 SCM_SYMBOL (sym_eval, "eval");
430 SCM_SYMBOL (sym_load, "load");
431
432 SCM_GLOBAL_SYMBOL (scm_sym_unquote, "unquote");
433 SCM_GLOBAL_SYMBOL (scm_sym_quasiquote, "quasiquote");
434 SCM_GLOBAL_SYMBOL (scm_sym_uq_splicing, "unquote-splicing");
435
436
437 static SCM
438 scm_m_at (SCM expr, SCM env SCM_UNUSED)
439 {
440 ASSERT_SYNTAX (scm_ilength (expr) == 3, s_bad_expression, expr);
441 ASSERT_SYNTAX (scm_ilength (CADR (expr)) > 0, s_bad_expression, expr);
442 ASSERT_SYNTAX (scm_is_symbol (CADDR (expr)), s_bad_expression, expr);
443
444 return MAKMEMO_MOD_REF (CADR (expr), CADDR (expr), SCM_BOOL_T);
445 }
446
447 static SCM
448 scm_m_atat (SCM expr, SCM env SCM_UNUSED)
449 {
450 ASSERT_SYNTAX (scm_ilength (expr) == 3, s_bad_expression, expr);
451 ASSERT_SYNTAX (scm_ilength (CADR (expr)) > 0, s_bad_expression, expr);
452 ASSERT_SYNTAX (scm_is_symbol (CADDR (expr)), s_bad_expression, expr);
453
454 return MAKMEMO_MOD_REF (CADR (expr), CADDR (expr), SCM_BOOL_F);
455 }
456
457 static SCM
458 scm_m_and (SCM expr, SCM env)
459 {
460 const SCM cdr_expr = CDR (expr);
461
462 if (scm_is_null (cdr_expr))
463 return MAKMEMO_QUOTE (SCM_BOOL_T);
464 ASSERT_SYNTAX (scm_is_pair (cdr_expr), s_bad_expression, expr);
465
466 if (scm_is_null (CDR (cdr_expr)))
467 return memoize (CAR (cdr_expr), env);
468 else
469 return MAKMEMO_IF (memoize (CAR (cdr_expr), env),
470 scm_m_and (cdr_expr, env),
471 MAKMEMO_QUOTE (SCM_BOOL_F));
472 }
473
474 static SCM
475 scm_m_apply (SCM expr, SCM env)
476 {
477 const SCM cdr_expr = CDR (expr);
478 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
479 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_missing_expression, expr);
480
481 return MAKMEMO_APPLY (memoize_exprs (cdr_expr, env));
482 }
483
484 static SCM
485 scm_m_begin (SCM expr, SCM env)
486 {
487 const SCM cdr_expr = CDR (expr);
488 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 1, s_bad_expression, expr);
489 return MAKMEMO_BEGIN (memoize_exprs (cdr_expr, env));
490 }
491
492 static SCM
493 scm_m_cont (SCM expr, SCM env)
494 {
495 const SCM cdr_expr = CDR (expr);
496 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
497 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
498
499 return MAKMEMO_CONT (memoize (CADR (expr), env));
500 }
501
502 static SCM
503 scm_m_at_call_with_values (SCM expr, SCM env)
504 {
505 const SCM cdr_expr = CDR (expr);
506 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
507 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_expression, expr);
508
509 return MAKMEMO_CALL_WITH_VALUES (memoize (CADR (expr), env),
510 memoize (CADDR (expr), env));
511 }
512
513 static SCM
514 scm_m_cond (SCM expr, SCM env)
515 {
516 /* Check, whether 'else or '=> is a literal, i. e. not bound to a value. */
517 const int else_literal_p = memoize_env_var_is_free (env, scm_sym_else);
518 const int arrow_literal_p = memoize_env_var_is_free (env, scm_sym_arrow);
519
520 const SCM clauses = CDR (expr);
521 SCM clause_idx;
522 SCM ret, loc;
523
524 ASSERT_SYNTAX (scm_ilength (clauses) >= 0, s_bad_expression, expr);
525 ASSERT_SYNTAX (scm_ilength (clauses) >= 1, s_missing_clauses, expr);
526
527 ret = scm_cons (SCM_UNDEFINED, MAKMEMO_QUOTE (SCM_UNSPECIFIED));
528 loc = ret;
529
530 for (clause_idx = clauses;
531 !scm_is_null (clause_idx);
532 clause_idx = CDR (clause_idx))
533 {
534 SCM test;
535
536 const SCM clause = CAR (clause_idx);
537 const long length = scm_ilength (clause);
538 ASSERT_SYNTAX_2 (length >= 1, s_bad_cond_clause, clause, expr);
539
540 test = CAR (clause);
541 if (scm_is_eq (test, scm_sym_else) && else_literal_p)
542 {
543 const int last_clause_p = scm_is_null (CDR (clause_idx));
544 ASSERT_SYNTAX_2 (length >= 2,
545 s_bad_cond_clause, clause, expr);
546 ASSERT_SYNTAX_2 (last_clause_p,
547 s_misplaced_else_clause, clause, expr);
548 SCM_SETCDR (loc,
549 memoize (scm_cons (scm_sym_begin, CDR (clause)), env));
550 }
551 else if (length >= 2
552 && scm_is_eq (CADR (clause), scm_sym_arrow)
553 && arrow_literal_p)
554 {
555 SCM tmp = scm_gensym (scm_from_locale_string ("cond "));
556 SCM i;
557 SCM new_env = scm_cons (tmp, env);
558 ASSERT_SYNTAX_2 (length > 2, s_missing_recipient, clause, expr);
559 ASSERT_SYNTAX_2 (length == 3, s_extra_expression, clause, expr);
560 i = MAKMEMO_IF (MAKMEMO_LEX_REF (0),
561 MAKMEMO_CALL (memoize (CADDR (clause),
562 scm_cons (tmp, new_env)),
563 1,
564 scm_list_1 (MAKMEMO_LEX_REF (0))),
565 MAKMEMO_QUOTE (SCM_UNSPECIFIED));
566 SCM_SETCDR (loc,
567 MAKMEMO_LET (scm_list_1 (memoize (CAR (clause), env)),
568 i));
569 env = new_env;
570 loc = scm_last_pair (SCM_MEMOIZED_ARGS (i));
571 }
572 /* FIXME length == 1 case */
573 else
574 {
575 SCM i = MAKMEMO_IF (memoize (CAR (clause), env),
576 memoize (scm_cons (scm_sym_begin, CDR (clause)), env),
577 MAKMEMO_QUOTE (SCM_UNSPECIFIED));
578 SCM_SETCDR (loc, i);
579 loc = scm_last_pair (SCM_MEMOIZED_ARGS (i));
580 }
581 }
582
583 return CDR (ret);
584 }
585
586 /* According to Section 5.2.1 of R5RS we first have to make sure that the
587 variable is bound, and then perform the `(set! variable expression)'
588 operation. However, EXPRESSION _can_ be evaluated before VARIABLE is
589 bound. This means that EXPRESSION won't necessarily be able to assign
590 values to VARIABLE as in `(define foo (begin (set! foo 1) (+ foo 1)))'. */
591 static SCM
592 scm_m_define (SCM expr, SCM env)
593 {
594 const SCM cdr_expr = CDR (expr);
595 SCM body;
596 SCM variable;
597
598 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
599 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
600 ASSERT_SYNTAX (!scm_is_pair (env), s_bad_define, expr);
601
602 body = CDR (cdr_expr);
603 variable = CAR (cdr_expr);
604
605 if (scm_is_pair (variable))
606 {
607 ASSERT_SYNTAX_2 (scm_is_symbol (CAR (variable)), s_bad_variable, variable, expr);
608 return MAKMEMO_DEFINE (CAR (variable),
609 memoize (scm_cons (scm_sym_lambda,
610 scm_cons (CDR (variable), body)),
611 env));
612 }
613 ASSERT_SYNTAX_2 (scm_is_symbol (variable), s_bad_variable, variable, expr);
614 ASSERT_SYNTAX (scm_ilength (body) == 1, s_expression, expr);
615 return MAKMEMO_DEFINE (variable, memoize (CAR (body), env));
616 }
617
618 static SCM
619 scm_m_eval_when (SCM expr, SCM env)
620 {
621 ASSERT_SYNTAX (scm_ilength (expr) >= 3, s_bad_expression, expr);
622 ASSERT_SYNTAX (scm_ilength (CADR (expr)) > 0, s_bad_expression, expr);
623
624 if (scm_is_true (scm_memq (sym_eval, CADR (expr)))
625 || scm_is_true (scm_memq (sym_load, CADR (expr))))
626 return MAKMEMO_BEGIN (memoize_exprs (CDDR (expr), env));
627 else
628 return MAKMEMO_QUOTE (SCM_UNSPECIFIED);
629 }
630
631 static SCM
632 scm_m_if (SCM expr, SCM env SCM_UNUSED)
633 {
634 const SCM cdr_expr = CDR (expr);
635 const long length = scm_ilength (cdr_expr);
636 ASSERT_SYNTAX (length == 2 || length == 3, s_expression, expr);
637 return MAKMEMO_IF (memoize (CADR (expr), env),
638 memoize (CADDR (expr), env),
639 ((length == 3)
640 ? memoize (CADDDR (expr), env)
641 : MAKMEMO_QUOTE (SCM_UNSPECIFIED)));
642 }
643
644 /* A helper function for memoize_lambda to support checking for duplicate
645 * formal arguments: Return true if OBJ is `eq?' to one of the elements of
646 * LIST or to the CDR of the last cons. Therefore, LIST may have any of the
647 * forms that a formal argument can have:
648 * <rest>, (<arg1> ...), (<arg1> ... . <rest>) */
649 static int
650 c_improper_memq (SCM obj, SCM list)
651 {
652 for (; scm_is_pair (list); list = CDR (list))
653 {
654 if (scm_is_eq (CAR (list), obj))
655 return 1;
656 }
657 return scm_is_eq (list, obj);
658 }
659
660 static SCM
661 scm_m_lambda (SCM expr, SCM env SCM_UNUSED)
662 {
663 SCM formals;
664 SCM formals_idx;
665 SCM formal_vars = SCM_EOL;
666 int nreq = 0;
667
668 const SCM cdr_expr = CDR (expr);
669 const long length = scm_ilength (cdr_expr);
670 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
671 ASSERT_SYNTAX (length >= 2, s_missing_expression, expr);
672
673 /* Before iterating the list of formal arguments, make sure the formals
674 * actually are given as either a symbol or a non-cyclic list. */
675 formals = CAR (cdr_expr);
676 if (scm_is_pair (formals))
677 {
678 /* Dirk:FIXME:: We should check for a cyclic list of formals, and if
679 * detected, report a 'Bad formals' error. */
680 }
681 else
682 {
683 ASSERT_SYNTAX_2 (scm_is_symbol (formals) || scm_is_null (formals),
684 s_bad_formals, formals, expr);
685 }
686
687 /* Now iterate the list of formal arguments to check if all formals are
688 * symbols, and that there are no duplicates. */
689 formals_idx = formals;
690 while (scm_is_pair (formals_idx))
691 {
692 const SCM formal = CAR (formals_idx);
693 const SCM next_idx = CDR (formals_idx);
694 ASSERT_SYNTAX_2 (scm_is_symbol (formal), s_bad_formal, formal, expr);
695 ASSERT_SYNTAX_2 (!c_improper_memq (formal, next_idx),
696 s_duplicate_formal, formal, expr);
697 nreq++;
698 formal_vars = scm_cons (formal, formal_vars);
699 formals_idx = next_idx;
700 }
701 ASSERT_SYNTAX_2 (scm_is_null (formals_idx) || scm_is_symbol (formals_idx),
702 s_bad_formal, formals_idx, expr);
703 if (scm_is_symbol (formals_idx))
704 formal_vars = scm_cons (formals_idx, formal_vars);
705 return MAKMEMO_LAMBDA (nreq, scm_symbol_p (formals_idx),
706 memoize_sequence (CDDR (expr),
707 memoize_env_extend (env, formal_vars)));
708 }
709
710 /* Check if the format of the bindings is ((<symbol> <init-form>) ...). */
711 static void
712 check_bindings (const SCM bindings, const SCM expr)
713 {
714 SCM binding_idx;
715
716 ASSERT_SYNTAX_2 (scm_ilength (bindings) >= 0,
717 s_bad_bindings, bindings, expr);
718
719 binding_idx = bindings;
720 for (; !scm_is_null (binding_idx); binding_idx = CDR (binding_idx))
721 {
722 SCM name; /* const */
723
724 const SCM binding = CAR (binding_idx);
725 ASSERT_SYNTAX_2 (scm_ilength (binding) == 2,
726 s_bad_binding, binding, expr);
727
728 name = CAR (binding);
729 ASSERT_SYNTAX_2 (scm_is_symbol (name), s_bad_variable, name, expr);
730 }
731 }
732
733 /* The bindings, which must have the format ((v1 i1) (v2 i2) ... (vn in)), are
734 * transformed to the lists (vn .. v2 v1) and (i1 i2 ... in). If a duplicate
735 * variable name is detected, an error is signalled. */
736 static int
737 transform_bindings (const SCM bindings, const SCM expr,
738 SCM *const rvarptr, SCM *const initptr)
739 {
740 SCM rvariables = SCM_EOL;
741 SCM rinits = SCM_EOL;
742 SCM binding_idx = bindings;
743 int n = 0;
744 for (; !scm_is_null (binding_idx); binding_idx = CDR (binding_idx))
745 {
746 const SCM binding = CAR (binding_idx);
747 const SCM CDR_binding = CDR (binding);
748 const SCM name = CAR (binding);
749 ASSERT_SYNTAX_2 (scm_is_false (scm_c_memq (name, rvariables)),
750 s_duplicate_binding, name, expr);
751 rvariables = scm_cons (name, rvariables);
752 rinits = scm_cons (CAR (CDR_binding), rinits);
753 n++;
754 }
755 *rvarptr = rvariables;
756 *initptr = scm_reverse_x (rinits, SCM_UNDEFINED);
757 return n;
758 }
759
760 /* This function is a helper function for memoize_let. It transforms
761 * (let name ((var init) ...) body ...) into
762 * ((letrec ((name (lambda (var ...) body ...))) name) init ...)
763 * and memoizes the expression. It is assumed that the caller has checked
764 * that name is a symbol and that there are bindings and a body. */
765 static SCM
766 memoize_named_let (const SCM expr, SCM env)
767 {
768 SCM rvariables;
769 SCM inits;
770 int nreq;
771
772 const SCM cdr_expr = CDR (expr);
773 const SCM name = CAR (cdr_expr);
774 const SCM cddr_expr = CDR (cdr_expr);
775 const SCM bindings = CAR (cddr_expr);
776 check_bindings (bindings, expr);
777
778 nreq = transform_bindings (bindings, expr, &rvariables, &inits);
779
780 env = scm_cons (name, env);
781 return MAKMEMO_LET
782 (scm_list_1 (MAKMEMO_QUOTE (SCM_UNDEFINED)),
783 MAKMEMO_BEGIN
784 (scm_list_2 (MAKMEMO_LEX_SET
785 (0,
786 MAKMEMO_LAMBDA
787 (nreq, SCM_BOOL_F,
788 memoize_sequence (CDDDR (expr),
789 memoize_env_extend (env, rvariables)))),
790 MAKMEMO_CALL (MAKMEMO_LEX_REF (0),
791 nreq,
792 memoize_exprs (inits, env)))));
793 }
794
795 /* (let ((v1 i1) (v2 i2) ...) body) with variables v1 .. vn and initializers
796 * i1 .. in is transformed to (#@let (vn ... v2 v1) (i1 i2 ...) body). */
797 static SCM
798 scm_m_let (SCM expr, SCM env)
799 {
800 SCM bindings;
801
802 const SCM cdr_expr = CDR (expr);
803 const long length = scm_ilength (cdr_expr);
804 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
805 ASSERT_SYNTAX (length >= 2, s_missing_expression, expr);
806
807 bindings = CAR (cdr_expr);
808 if (scm_is_symbol (bindings))
809 {
810 ASSERT_SYNTAX (length >= 3, s_missing_expression, expr);
811 return memoize_named_let (expr, env);
812 }
813
814 check_bindings (bindings, expr);
815 if (scm_is_null (bindings))
816 return memoize_sequence (CDDR (expr), env);
817 else
818 {
819 SCM rvariables;
820 SCM inits;
821 transform_bindings (bindings, expr, &rvariables, &inits);
822 return MAKMEMO_LET (memoize_exprs (inits, env),
823 memoize_sequence (CDDR (expr),
824 memoize_env_extend (env, rvariables)));
825 }
826 }
827
828 static SCM
829 scm_m_letrec (SCM expr, SCM env)
830 {
831 SCM bindings;
832
833 const SCM cdr_expr = CDR (expr);
834 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
835 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
836
837 bindings = CAR (cdr_expr);
838 if (scm_is_null (bindings))
839 return memoize_sequence (CDDR (expr), env);
840 else
841 {
842 SCM rvariables;
843 SCM inits;
844 SCM v, i;
845 SCM undefs = SCM_EOL;
846 SCM vals = SCM_EOL;
847 SCM sets = SCM_EOL;
848 SCM new_env;
849 int offset;
850 int n = transform_bindings (bindings, expr, &rvariables, &inits);
851 offset = n;
852 new_env = memoize_env_extend (env, rvariables);
853 for (v = scm_reverse (rvariables), i = inits; scm_is_pair (v);
854 v = CDR (v), i = CDR (i), n--)
855 {
856 undefs = scm_cons (MAKMEMO_QUOTE (SCM_UNDEFINED), undefs);
857 vals = scm_cons (memoize (CAR (i), new_env), vals);
858 sets = scm_cons (MAKMEMO_LEX_SET ((n-1) + offset,
859 MAKMEMO_LEX_REF (n-1)),
860 sets);
861 }
862 return MAKMEMO_LET
863 (undefs,
864 MAKMEMO_BEGIN (scm_list_2 (MAKMEMO_LET (scm_reverse (vals),
865 MAKMEMO_BEGIN (sets)),
866 memoize_sequence (CDDR (expr),
867 new_env))));
868 }
869 }
870
871 static SCM
872 scm_m_letstar (SCM expr, SCM env SCM_UNUSED)
873 {
874 SCM bindings;
875
876 const SCM cdr_expr = CDR (expr);
877 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
878 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
879
880 bindings = CAR (cdr_expr);
881 if (scm_is_null (bindings))
882 return memoize_sequence (CDDR (expr), env);
883 else
884 {
885 SCM rvariables;
886 SCM variables;
887 SCM inits;
888 SCM ret, loc;
889 transform_bindings (bindings, expr, &rvariables, &inits);
890 variables = scm_reverse (rvariables);
891 ret = scm_cons (SCM_UNDEFINED, SCM_UNSPECIFIED);
892 loc = ret;
893 for (; scm_is_pair (variables);
894 variables = CDR (variables), inits = CDR (inits))
895 { SCM x = MAKMEMO_LET (scm_list_1 (memoize (CAR (inits), env)),
896 MAKMEMO_QUOTE (SCM_UNSPECIFIED));
897 SCM_SETCDR (loc, x);
898 loc = scm_last_pair (SCM_MEMOIZED_ARGS (x));
899 env = scm_cons (CAR (variables), env);
900 }
901 SCM_SETCDR (loc, memoize_sequence (CDDR (expr), env));
902 return CDR (ret);
903 }
904 }
905
906 static SCM
907 scm_m_or (SCM expr, SCM env SCM_UNUSED)
908 {
909 SCM tail = CDR (expr);
910 SCM ret, loc;
911 const long length = scm_ilength (tail);
912
913 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
914
915 ret = scm_cons (SCM_UNDEFINED, SCM_UNSPECIFIED);
916 loc = ret;
917 for (; scm_is_pair (tail); tail = CDR (tail))
918 {
919 SCM tmp = scm_gensym (scm_from_locale_string ("cond "));
920 SCM x = MAKMEMO_IF (MAKMEMO_LEX_REF (0),
921 MAKMEMO_LEX_REF (0),
922 MAKMEMO_QUOTE (SCM_UNSPECIFIED));
923 SCM new_env = scm_cons (tmp, env);
924 SCM_SETCDR (loc, MAKMEMO_LET (scm_list_1 (memoize (CAR (tail),
925 env)),
926 x));
927 env = new_env;
928 loc = scm_last_pair (SCM_MEMOIZED_ARGS (x));
929 }
930 SCM_SETCDR (loc, MAKMEMO_QUOTE (SCM_BOOL_F));
931 return CDR (ret);
932 }
933
934 static SCM
935 scm_m_quote (SCM expr, SCM env SCM_UNUSED)
936 {
937 SCM quotee;
938
939 const SCM cdr_expr = CDR (expr);
940 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
941 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
942 quotee = CAR (cdr_expr);
943 return MAKMEMO_QUOTE (quotee);
944 }
945
946 static SCM
947 scm_m_set_x (SCM expr, SCM env)
948 {
949 SCM variable;
950 SCM vmem;
951
952 const SCM cdr_expr = CDR (expr);
953 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
954 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_expression, expr);
955 variable = CAR (cdr_expr);
956 vmem = memoize (variable, env);
957
958 switch (SCM_MEMOIZED_TAG (vmem))
959 {
960 case SCM_M_LEXICAL_REF:
961 return MAKMEMO_LEX_SET (SCM_I_INUM (SCM_MEMOIZED_ARGS (vmem)),
962 memoize (CADDR (expr), env));
963 case SCM_M_TOPLEVEL_REF:
964 return MAKMEMO_TOP_SET (variable,
965 memoize (CADDR (expr), env));
966 case SCM_M_MODULE_REF:
967 return MAKMEMO_MOD_SET (memoize (CADDR (expr), env),
968 CAR (SCM_MEMOIZED_ARGS (vmem)),
969 CADR (SCM_MEMOIZED_ARGS (vmem)),
970 CDDR (SCM_MEMOIZED_ARGS (vmem)));
971 default:
972 syntax_error (s_bad_variable, variable, expr);
973 }
974 }
975
976
977 \f
978
979 SCM_DEFINE (scm_memoize_expression, "memoize-expression", 1, 0, 0,
980 (SCM exp),
981 "Memoize the expression @var{exp}.")
982 #define FUNC_NAME s_scm_memoize_expression
983 {
984 return memoize (exp, scm_current_module ());
985 }
986 #undef FUNC_NAME
987
988 \f
989
990
991 SCM_SYMBOL (sym_placeholder, "_");
992
993 static SCM unmemoize (SCM expr);
994
995 static SCM
996 unmemoize_exprs (SCM exprs)
997 {
998 SCM ret, tail;
999 if (scm_is_null (exprs))
1000 return SCM_EOL;
1001 ret = scm_list_1 (unmemoize (CAR (exprs)));
1002 tail = ret;
1003 for (exprs = CDR (exprs); !scm_is_null (exprs); exprs = CDR (exprs))
1004 {
1005 SCM_SETCDR (tail, scm_list_1 (unmemoize (CAR (exprs))));
1006 tail = CDR (tail);
1007 }
1008 return ret;
1009 }
1010
1011 static SCM
1012 unmemoize_bindings (SCM inits)
1013 {
1014 SCM ret, tail;
1015 if (scm_is_null (inits))
1016 return SCM_EOL;
1017 ret = scm_list_1 (scm_list_2 (sym_placeholder, unmemoize (CAR (inits))));
1018 tail = ret;
1019 for (inits = CDR (inits); !scm_is_null (inits); inits = CDR (inits))
1020 {
1021 SCM_SETCDR (tail, scm_list_1 (scm_list_2 (sym_placeholder,
1022 unmemoize (CAR (inits)))));
1023 tail = CDR (tail);
1024 }
1025 return ret;
1026 }
1027
1028 static SCM
1029 unmemoize_lexical (SCM n)
1030 {
1031 char buf[16];
1032 buf[15] = 0;
1033 snprintf (buf, 15, "<%u>", scm_to_uint32 (n));
1034 return scm_from_locale_symbol (buf);
1035 }
1036
1037 static SCM
1038 unmemoize (const SCM expr)
1039 {
1040 SCM args;
1041
1042 if (!SCM_MEMOIZED_P (expr))
1043 abort ();
1044
1045 args = SCM_MEMOIZED_ARGS (expr);
1046 switch (SCM_MEMOIZED_TAG (expr))
1047 {
1048 case SCM_M_APPLY:
1049 return scm_cons (scm_sym_atapply, unmemoize_exprs (args));
1050 case SCM_M_BEGIN:
1051 return scm_cons (scm_sym_begin, unmemoize_exprs (args));
1052 case SCM_M_CALL:
1053 return scm_cons (unmemoize (CAR (args)), unmemoize_exprs (CDDR (args)));
1054 case SCM_M_CONT:
1055 return scm_list_2 (scm_sym_atcall_cc, unmemoize (args));
1056 case SCM_M_CALL_WITH_VALUES:
1057 return scm_list_3 (scm_sym_at_call_with_values,
1058 unmemoize (CAR (args)), unmemoize (CDR (args)));
1059 case SCM_M_DEFINE:
1060 return scm_list_3 (scm_sym_define, CAR (args), unmemoize (CDR (args)));
1061 case SCM_M_IF:
1062 return scm_list_4 (scm_sym_if, unmemoize (scm_car (args)),
1063 unmemoize (scm_cadr (args)), unmemoize (scm_cddr (args)));
1064 case SCM_M_LAMBDA:
1065 return scm_list_3 (scm_sym_lambda,
1066 scm_make_list (CAR (args), sym_placeholder),
1067 unmemoize (CDDR (args)));
1068 case SCM_M_LET:
1069 return scm_list_3 (scm_sym_let,
1070 unmemoize_bindings (CAR (args)),
1071 unmemoize (CDR (args)));
1072 case SCM_M_QUOTE:
1073 return scm_list_2 (scm_sym_quote, args);
1074 case SCM_M_LEXICAL_REF:
1075 return unmemoize_lexical (args);
1076 case SCM_M_LEXICAL_SET:
1077 return scm_list_3 (scm_sym_set_x, unmemoize_lexical (CAR (args)),
1078 unmemoize (CDR (args)));
1079 case SCM_M_TOPLEVEL_REF:
1080 return args;
1081 case SCM_M_TOPLEVEL_SET:
1082 return scm_list_3 (scm_sym_set_x, CAR (args), unmemoize (CDR (args)));
1083 case SCM_M_MODULE_REF:
1084 return scm_list_3 (scm_is_true (CDDR (args)) ? scm_sym_at : scm_sym_atat,
1085 scm_i_finite_list_copy (CAR (args)),
1086 CADR (args));
1087 case SCM_M_MODULE_SET:
1088 return scm_list_3 (scm_sym_set_x,
1089 scm_list_3 (scm_is_true (CDDDR (args))
1090 ? scm_sym_at : scm_sym_atat,
1091 scm_i_finite_list_copy (CADR (args)),
1092 CADDR (args)),
1093 unmemoize (CAR (args)));
1094 default:
1095 abort ();
1096 }
1097 }
1098
1099 SCM_DEFINE (scm_memoized_p, "memoized?", 1, 0, 0,
1100 (SCM obj),
1101 "Return @code{#t} if @var{obj} is memoized.")
1102 #define FUNC_NAME s_scm_memoized_p
1103 {
1104 return scm_from_bool (SCM_MEMOIZED_P (obj));
1105 }
1106 #undef FUNC_NAME
1107
1108 SCM_DEFINE (scm_unmemoize_expression, "unmemoize-expression", 1, 0, 0,
1109 (SCM m),
1110 "Unmemoize the memoized expression @var{m}.")
1111 #define FUNC_NAME s_scm_unmemoize_expression
1112 {
1113 SCM_VALIDATE_MEMOIZED (1, m);
1114 return unmemoize (m);
1115 }
1116 #undef FUNC_NAME
1117
1118 SCM_DEFINE (scm_memoized_expression_typecode, "memoized-expression-typecode", 1, 0, 0,
1119 (SCM m),
1120 "Return the typecode from the memoized expression @var{m}.")
1121 #define FUNC_NAME s_scm_memoized_expression_typecode
1122 {
1123 SCM_VALIDATE_MEMOIZED (1, m);
1124 return scm_from_uint16 (SCM_MEMOIZED_TAG (m));
1125 }
1126 #undef FUNC_NAME
1127
1128 SCM_DEFINE (scm_memoized_expression_data, "memoized-expression-data", 1, 0, 0,
1129 (SCM m),
1130 "Return the data from the memoized expression @var{m}.")
1131 #define FUNC_NAME s_scm_memoized_expression_data
1132 {
1133 SCM_VALIDATE_MEMOIZED (1, m);
1134 return SCM_MEMOIZED_ARGS (m);
1135 }
1136 #undef FUNC_NAME
1137
1138 SCM_DEFINE (scm_memoized_typecode, "memoized-typecode", 1, 0, 0,
1139 (SCM sym),
1140 "Return the memoized typecode corresponding to the symbol @var{sym}.")
1141 #define FUNC_NAME s_scm_memoized_typecode
1142 {
1143 int i;
1144
1145 SCM_VALIDATE_SYMBOL (1, sym);
1146
1147 for (i = 0; i < sizeof(memoized_tags)/sizeof(const char*); i++)
1148 if (strcmp (scm_i_symbol_chars (sym), memoized_tags[i]) == 0)
1149 return scm_from_int32 (i);
1150
1151 return SCM_BOOL_F;
1152 }
1153 #undef FUNC_NAME
1154
1155 SCM_SYMBOL (scm_unbound_variable_key, "unbound-variable");
1156 static void error_unbound_variable (SCM symbol) SCM_NORETURN;
1157 static void error_unbound_variable (SCM symbol)
1158 {
1159 scm_error (scm_unbound_variable_key, NULL, "Unbound variable: ~S",
1160 scm_list_1 (symbol), SCM_BOOL_F);
1161 }
1162
1163 SCM_DEFINE (scm_memoize_variable_access_x, "memoize-variable-access!", 2, 0, 0,
1164 (SCM m, SCM mod),
1165 "Look up and cache the variable that @var{m} will access, returning the variable.")
1166 #define FUNC_NAME s_scm_memoize_variable_access_x
1167 {
1168 SCM mx;
1169 SCM_VALIDATE_MEMOIZED (1, m);
1170 mx = SCM_MEMOIZED_ARGS (m);
1171 switch (SCM_MEMOIZED_TAG (m))
1172 {
1173 case SCM_M_TOPLEVEL_REF:
1174 if (SCM_VARIABLEP (mx))
1175 return mx;
1176 else
1177 {
1178 SCM var = scm_module_variable (mod, mx);
1179 if (scm_is_false (var) || scm_is_false (scm_variable_bound_p (var)))
1180 error_unbound_variable (mx);
1181 SCM_SET_SMOB_OBJECT (m, var);
1182 return var;
1183 }
1184
1185 case SCM_M_TOPLEVEL_SET:
1186 {
1187 SCM var = CAR (mx);
1188 if (SCM_VARIABLEP (var))
1189 return var;
1190 else
1191 {
1192 var = scm_module_variable (mod, var);
1193 if (scm_is_false (var))
1194 error_unbound_variable (CAR (mx));
1195 SCM_SETCAR (mx, var);
1196 return var;
1197 }
1198 }
1199
1200 case SCM_M_MODULE_REF:
1201 if (SCM_VARIABLEP (mx))
1202 return mx;
1203 else
1204 {
1205 SCM var;
1206 mod = scm_resolve_module (CAR (mx));
1207 if (scm_is_true (CDDR (mx)))
1208 mod = scm_module_public_interface (mod);
1209 var = scm_module_lookup (mod, CADR (mx));
1210 if (scm_is_false (scm_variable_bound_p (var)))
1211 error_unbound_variable (CADR (mx));
1212 SCM_SET_SMOB_OBJECT (m, var);
1213 return var;
1214 }
1215
1216 case SCM_M_MODULE_SET:
1217 /* FIXME: not quite threadsafe */
1218 if (SCM_VARIABLEP (CDR (mx)))
1219 return CDR (mx);
1220 else
1221 {
1222 SCM var;
1223 mod = scm_resolve_module (CADR (mx));
1224 if (scm_is_true (CDDDR (mx)))
1225 mod = scm_module_public_interface (mod);
1226 var = scm_module_lookup (mod, CADDR (mx));
1227 SCM_SETCDR (mx, var);
1228 return var;
1229 }
1230
1231 default:
1232 scm_wrong_type_arg (FUNC_NAME, 1, m);
1233 return SCM_BOOL_F;
1234 }
1235 }
1236 #undef FUNC_NAME
1237
1238
1239 \f
1240
1241 void
1242 scm_init_memoize ()
1243 {
1244 scm_tc16_memoized = scm_make_smob_type ("%memoized", 0);
1245 scm_set_smob_mark (scm_tc16_memoized, scm_markcdr);
1246 scm_set_smob_print (scm_tc16_memoized, scm_print_memoized);
1247
1248 #include "libguile/memoize.x"
1249 }
1250
1251 /*
1252 Local Variables:
1253 c-file-style: "gnu"
1254 End:
1255 */