("sweep_card"): don't count scm_tc_free_cell for
[bpt/guile.git] / libguile / eval.c
CommitLineData
c3c97a34 1/* Copyright (C) 1995,1996,1997,1998,1999,2000,2001,2002,2003,2004,2005
434f2f7a 2 * Free Software Foundation, Inc.
0f2d19dd 3 *
73be1d9e
MV
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation; either
7 * version 2.1 of the License, or (at your option) any later version.
0f2d19dd 8 *
73be1d9e
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9 * This library is distributed in the hope that it will be useful,
10 * but 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.
0f2d19dd 13 *
73be1d9e
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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
92205699 16 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
73be1d9e 17 */
1bbd0b84 18
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19\f
20
de527efb
MV
21#define _GNU_SOURCE
22
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DH
23/* This file is read twice in order to produce debugging versions of ceval and
24 * scm_apply. These functions, deval and scm_dapply, are produced when we
25 * define the preprocessor macro DEVAL. The file is divided into sections
26 * which are treated differently with respect to DEVAL. The heads of these
27 * sections are marked with the string "SECTION:". */
6dbd0af5 28
6dbd0af5 29/* SECTION: This code is compiled once.
0f2d19dd
JB
30 */
31
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32#if HAVE_CONFIG_H
33# include <config.h>
34#endif
0f2d19dd 35
3d05f2e0
RB
36#include "libguile/__scm.h"
37
38#ifndef DEVAL
d16332b3 39
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40/* AIX requires this to be the first thing in the file. The #pragma
41 directive is indented so pre-ANSI compilers will ignore it, rather
42 than choke on it. */
5862b540 43#ifndef __GNUC__
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44# if HAVE_ALLOCA_H
45# include <alloca.h>
46# else
47# ifdef _AIX
ac13d9d2 48# pragma alloca
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49# else
50# ifndef alloca /* predefined by HP cc +Olibcalls */
51char *alloca ();
52# endif
53# endif
54# endif
55#endif
56
e7313a9d 57#include <assert.h>
a0599745 58#include "libguile/_scm.h"
21628685
DH
59#include "libguile/alist.h"
60#include "libguile/async.h"
61#include "libguile/continuations.h"
a0599745 62#include "libguile/debug.h"
328dc9a3 63#include "libguile/deprecation.h"
09074dbf 64#include "libguile/dynwind.h"
a0599745 65#include "libguile/eq.h"
21628685
DH
66#include "libguile/feature.h"
67#include "libguile/fluids.h"
756414cf 68#include "libguile/futures.h"
21628685
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69#include "libguile/goops.h"
70#include "libguile/hash.h"
71#include "libguile/hashtab.h"
72#include "libguile/lang.h"
4610b011 73#include "libguile/list.h"
a0599745 74#include "libguile/macros.h"
a0599745 75#include "libguile/modules.h"
21628685 76#include "libguile/objects.h"
a0599745 77#include "libguile/ports.h"
7e6e6b37 78#include "libguile/print.h"
21628685 79#include "libguile/procprop.h"
a0599745 80#include "libguile/root.h"
21628685
DH
81#include "libguile/smob.h"
82#include "libguile/srcprop.h"
83#include "libguile/stackchk.h"
84#include "libguile/strings.h"
9de87eea 85#include "libguile/threads.h"
21628685
DH
86#include "libguile/throw.h"
87#include "libguile/validate.h"
a513ead3 88#include "libguile/values.h"
21628685 89#include "libguile/vectors.h"
a0599745 90
a0599745 91#include "libguile/eval.h"
89efbff4 92
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JB
93\f
94
212e58ed 95static SCM unmemoize_exprs (SCM expr, SCM env);
0f572ba7 96static SCM canonicalize_define (SCM expr);
e5156567 97static SCM *scm_lookupcar1 (SCM vloc, SCM genv, int check);
212e58ed 98static SCM unmemoize_builtin_macro (SCM expr, SCM env);
5defc05d 99static void eval_letrec_inits (SCM env, SCM init_forms, SCM **init_values_eol);
0f572ba7
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100
101\f
102
e6729603
DH
103/* {Syntax Errors}
104 *
105 * This section defines the message strings for the syntax errors that can be
106 * detected during memoization and the functions and macros that shall be
107 * called by the memoizer code to signal syntax errors. */
108
109
110/* Syntax errors that can be detected during memoization: */
111
112/* Circular or improper lists do not form valid scheme expressions. If a
113 * circular list or an improper list is detected in a place where a scheme
114 * expression is expected, a 'Bad expression' error is signalled. */
115static const char s_bad_expression[] = "Bad expression";
116
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DH
117/* If a form is detected that holds a different number of expressions than are
118 * required in that context, a 'Missing or extra expression' error is
119 * signalled. */
120static const char s_expression[] = "Missing or extra expression in";
121
cc56ba80 122/* If a form is detected that holds less expressions than are required in that
8ae95199 123 * context, a 'Missing expression' error is signalled. */
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DH
124static const char s_missing_expression[] = "Missing expression in";
125
609a8b86 126/* If a form is detected that holds more expressions than are allowed in that
8ae95199 127 * context, an 'Extra expression' error is signalled. */
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DH
128static const char s_extra_expression[] = "Extra expression in";
129
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DH
130/* The empty combination '()' is not allowed as an expression in scheme. If
131 * it is detected in a place where an expression is expected, an 'Illegal
132 * empty combination' error is signalled. Note: If you encounter this error
133 * message, it is very likely that you intended to denote the empty list. To
134 * do so, you need to quote the empty list like (quote ()) or '(). */
135static const char s_empty_combination[] = "Illegal empty combination";
136
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DH
137/* A body may hold an arbitrary number of internal defines, followed by a
138 * non-empty sequence of expressions. If a body with an empty sequence of
139 * expressions is detected, a 'Missing body expression' error is signalled.
140 */
141static const char s_missing_body_expression[] = "Missing body expression in";
142
143/* A body may hold an arbitrary number of internal defines, followed by a
144 * non-empty sequence of expressions. Each the definitions and the
145 * expressions may be grouped arbitraryly with begin, but it is not allowed to
146 * mix definitions and expressions. If a define form in a body mixes
147 * definitions and expressions, a 'Mixed definitions and expressions' error is
6bff1368 148 * signalled. */
c86c440b 149static const char s_mixed_body_forms[] = "Mixed definitions and expressions in";
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DH
150/* Definitions are only allowed on the top level and at the start of a body.
151 * If a definition is detected anywhere else, a 'Bad define placement' error
152 * is signalled. */
153static const char s_bad_define[] = "Bad define placement";
c86c440b 154
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DH
155/* Case or cond expressions must have at least one clause. If a case or cond
156 * expression without any clauses is detected, a 'Missing clauses' error is
157 * signalled. */
158static const char s_missing_clauses[] = "Missing clauses";
159
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DH
160/* If there is an 'else' clause in a case or a cond statement, it must be the
161 * last clause. If after the 'else' case clause further clauses are detected,
162 * a 'Misplaced else clause' error is signalled. */
163static const char s_misplaced_else_clause[] = "Misplaced else clause";
164
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DH
165/* If a case clause is detected that is not in the format
166 * (<label(s)> <expression1> <expression2> ...)
167 * a 'Bad case clause' error is signalled. */
168static const char s_bad_case_clause[] = "Bad case clause";
169
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DH
170/* If a case clause is detected where the <label(s)> element is neither a
171 * proper list nor (in case of the last clause) the syntactic keyword 'else',
172 * a 'Bad case labels' error is signalled. Note: If you encounter this error
173 * for an else-clause which seems to be syntactically correct, check if 'else'
174 * is really a syntactic keyword in that context. If 'else' is bound in the
175 * local or global environment, it is not considered a syntactic keyword, but
176 * will be treated as any other variable. */
177static const char s_bad_case_labels[] = "Bad case labels";
178
179/* In a case statement all labels have to be distinct. If in a case statement
180 * a label occurs more than once, a 'Duplicate case label' error is
181 * signalled. */
182static const char s_duplicate_case_label[] = "Duplicate case label";
183
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DH
184/* If a cond clause is detected that is not in one of the formats
185 * (<test> <expression1> ...) or (else <expression1> <expression2> ...)
186 * a 'Bad cond clause' error is signalled. */
187static const char s_bad_cond_clause[] = "Bad cond clause";
188
189/* If a cond clause is detected that uses the alternate '=>' form, but does
190 * not hold a recipient element for the test result, a 'Missing recipient'
191 * error is signalled. */
192static const char s_missing_recipient[] = "Missing recipient in";
193
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DH
194/* If in a position where a variable name is required some other object is
195 * detected, a 'Bad variable' error is signalled. */
196static const char s_bad_variable[] = "Bad variable";
197
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198/* Bindings for forms like 'let' and 'do' have to be given in a proper,
199 * possibly empty list. If any other object is detected in a place where a
200 * list of bindings was required, a 'Bad bindings' error is signalled. */
201static const char s_bad_bindings[] = "Bad bindings";
202
203/* Depending on the syntactic context, a binding has to be in the format
204 * (<variable> <expression>) or (<variable> <expression1> <expression2>).
205 * If anything else is detected in a place where a binding was expected, a
206 * 'Bad binding' error is signalled. */
207static const char s_bad_binding[] = "Bad binding";
208
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DH
209/* Some syntactic forms don't allow variable names to appear more than once in
210 * a list of bindings. If such a situation is nevertheless detected, a
211 * 'Duplicate binding' error is signalled. */
212static const char s_duplicate_binding[] = "Duplicate binding";
213
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DH
214/* If the exit form of a 'do' expression is not in the format
215 * (<test> <expression> ...)
216 * a 'Bad exit clause' error is signalled. */
217static const char s_bad_exit_clause[] = "Bad exit clause";
218
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DH
219/* The formal function arguments of a lambda expression have to be either a
220 * single symbol or a non-cyclic list. For anything else a 'Bad formals'
221 * error is signalled. */
222static const char s_bad_formals[] = "Bad formals";
223
224/* If in a lambda expression something else than a symbol is detected at a
225 * place where a formal function argument is required, a 'Bad formal' error is
226 * signalled. */
227static const char s_bad_formal[] = "Bad formal";
228
229/* If in the arguments list of a lambda expression an argument name occurs
230 * more than once, a 'Duplicate formal' error is signalled. */
231static const char s_duplicate_formal[] = "Duplicate formal";
232
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DH
233/* If the evaluation of an unquote-splicing expression gives something else
234 * than a proper list, a 'Non-list result for unquote-splicing' error is
235 * signalled. */
236static const char s_splicing[] = "Non-list result for unquote-splicing";
237
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DH
238/* If something else than an exact integer is detected as the argument for
239 * @slot-ref and @slot-set!, a 'Bad slot number' error is signalled. */
240static const char s_bad_slot_number[] = "Bad slot number";
241
e6729603
DH
242
243/* Signal a syntax error. We distinguish between the form that caused the
244 * error and the enclosing expression. The error message will print out as
245 * shown in the following pattern. The file name and line number are only
246 * given when they can be determined from the erroneous form or from the
247 * enclosing expression.
248 *
249 * <filename>: In procedure memoization:
250 * <filename>: In file <name>, line <nr>: <error-message> in <expression>. */
251
252SCM_SYMBOL (syntax_error_key, "syntax-error");
253
254/* The prototype is needed to indicate that the function does not return. */
255static void
256syntax_error (const char* const, const SCM, const SCM) SCM_NORETURN;
257
258static void
259syntax_error (const char* const msg, const SCM form, const SCM expr)
260{
cc95e00a 261 SCM msg_string = scm_from_locale_string (msg);
e6729603
DH
262 SCM filename = SCM_BOOL_F;
263 SCM linenr = SCM_BOOL_F;
264 const char *format;
265 SCM args;
266
a61f4e0c 267 if (scm_is_pair (form))
e6729603
DH
268 {
269 filename = scm_source_property (form, scm_sym_filename);
270 linenr = scm_source_property (form, scm_sym_line);
271 }
272
a61f4e0c 273 if (scm_is_false (filename) && scm_is_false (linenr) && scm_is_pair (expr))
e6729603
DH
274 {
275 filename = scm_source_property (expr, scm_sym_filename);
276 linenr = scm_source_property (expr, scm_sym_line);
277 }
278
279 if (!SCM_UNBNDP (expr))
280 {
7888309b 281 if (scm_is_true (filename))
e6729603
DH
282 {
283 format = "In file ~S, line ~S: ~A ~S in expression ~S.";
284 args = scm_list_5 (filename, linenr, msg_string, form, expr);
285 }
7888309b 286 else if (scm_is_true (linenr))
e6729603
DH
287 {
288 format = "In line ~S: ~A ~S in expression ~S.";
289 args = scm_list_4 (linenr, msg_string, form, expr);
290 }
291 else
292 {
293 format = "~A ~S in expression ~S.";
294 args = scm_list_3 (msg_string, form, expr);
295 }
296 }
297 else
298 {
7888309b 299 if (scm_is_true (filename))
e6729603
DH
300 {
301 format = "In file ~S, line ~S: ~A ~S.";
302 args = scm_list_4 (filename, linenr, msg_string, form);
303 }
7888309b 304 else if (scm_is_true (linenr))
e6729603
DH
305 {
306 format = "In line ~S: ~A ~S.";
307 args = scm_list_3 (linenr, msg_string, form);
308 }
309 else
310 {
311 format = "~A ~S.";
312 args = scm_list_2 (msg_string, form);
313 }
314 }
315
316 scm_error (syntax_error_key, "memoization", format, args, SCM_BOOL_F);
317}
318
319
320/* Shortcut macros to simplify syntax error handling. */
321#define ASSERT_SYNTAX(cond, message, form) \
322 { if (!(cond)) syntax_error (message, form, SCM_UNDEFINED); }
323#define ASSERT_SYNTAX_2(cond, message, form, expr) \
324 { if (!(cond)) syntax_error (message, form, expr); }
325
326\f
327
d0624e39
DH
328/* {Ilocs}
329 *
330 * Ilocs are memoized references to variables in local environment frames.
331 * They are represented as three values: The relative offset of the
332 * environment frame, the number of the binding within that frame, and a
333 * boolean value indicating whether the binding is the last binding in the
334 * frame.
a55c2b68
MV
335 *
336 * Frame numbers have 11 bits, relative offsets have 12 bits.
d0624e39 337 */
7e6e6b37 338
d0624e39 339#define SCM_ILOC00 SCM_MAKE_ITAG8(0L, scm_tc8_iloc)
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DH
340#define SCM_IFRINC (0x00000100L)
341#define SCM_ICDR (0x00080000L)
d0624e39 342#define SCM_IDINC (0x00100000L)
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DH
343#define SCM_IFRAME(n) ((long)((SCM_ICDR-SCM_IFRINC)>>8) \
344 & (SCM_UNPACK (n) >> 8))
345#define SCM_IDIST(n) (SCM_UNPACK (n) >> 20)
346#define SCM_ICDRP(n) (SCM_ICDR & SCM_UNPACK (n))
d0624e39 347#define SCM_IDSTMSK (-SCM_IDINC)
a55c2b68
MV
348#define SCM_IFRAMEMAX ((1<<11)-1)
349#define SCM_IDISTMAX ((1<<12)-1)
d0624e39
DH
350#define SCM_MAKE_ILOC(frame_nr, binding_nr, last_p) \
351 SCM_PACK ( \
352 ((frame_nr) << 8) \
353 + ((binding_nr) << 20) \
354 + ((last_p) ? SCM_ICDR : 0) \
355 + scm_tc8_iloc )
356
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DH
357void
358scm_i_print_iloc (SCM iloc, SCM port)
359{
360 scm_puts ("#@", port);
361 scm_intprint ((long) SCM_IFRAME (iloc), 10, port);
362 scm_putc (SCM_ICDRP (iloc) ? '-' : '+', port);
363 scm_intprint ((long) SCM_IDIST (iloc), 10, port);
364}
365
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DH
366#if (SCM_DEBUG_DEBUGGING_SUPPORT == 1)
367
368SCM scm_dbg_make_iloc (SCM frame, SCM binding, SCM cdrp);
90df793f 369
d0624e39
DH
370SCM_DEFINE (scm_dbg_make_iloc, "dbg-make-iloc", 3, 0, 0,
371 (SCM frame, SCM binding, SCM cdrp),
372 "Return a new iloc with frame offset @var{frame}, binding\n"
373 "offset @var{binding} and the cdr flag @var{cdrp}.")
374#define FUNC_NAME s_scm_dbg_make_iloc
375{
c3c97a34
KR
376 return SCM_MAKE_ILOC ((scm_t_bits) scm_to_unsigned_integer (frame, 0, SCM_IFRAMEMAX),
377 (scm_t_bits) scm_to_unsigned_integer (binding, 0, SCM_IDISTMAX),
7888309b 378 scm_is_true (cdrp));
d0624e39
DH
379}
380#undef FUNC_NAME
381
382SCM scm_dbg_iloc_p (SCM obj);
90df793f 383
d0624e39
DH
384SCM_DEFINE (scm_dbg_iloc_p, "dbg-iloc?", 1, 0, 0,
385 (SCM obj),
386 "Return @code{#t} if @var{obj} is an iloc.")
387#define FUNC_NAME s_scm_dbg_iloc_p
388{
7888309b 389 return scm_from_bool (SCM_ILOCP (obj));
d0624e39
DH
390}
391#undef FUNC_NAME
392
393#endif
394
395\f
396
7e6e6b37
DH
397/* {Evaluator byte codes (isyms)}
398 */
399
400#define ISYMNUM(n) (SCM_ITAG8_DATA (n))
401
402/* This table must agree with the list of SCM_IM_ constants in tags.h */
403static const char *const isymnames[] =
404{
405 "#@and",
406 "#@begin",
407 "#@case",
408 "#@cond",
409 "#@do",
410 "#@if",
411 "#@lambda",
412 "#@let",
413 "#@let*",
414 "#@letrec",
415 "#@or",
416 "#@quote",
417 "#@set!",
418 "#@define",
419 "#@apply",
420 "#@call-with-current-continuation",
421 "#@dispatch",
422 "#@slot-ref",
423 "#@slot-set!",
424 "#@delay",
425 "#@future",
426 "#@call-with-values",
427 "#@else",
428 "#@arrow",
429 "#@nil-cond",
430 "#@bind"
431};
432
433void
434scm_i_print_isym (SCM isym, SCM port)
435{
436 const size_t isymnum = ISYMNUM (isym);
437 if (isymnum < (sizeof isymnames / sizeof (char *)))
438 scm_puts (isymnames[isymnum], port);
439 else
440 scm_ipruk ("isym", isym, port);
441}
442
443\f
444
e5156567
DH
445/* The function lookup_symbol is used during memoization: Lookup the symbol in
446 * the environment. If there is no binding for the symbol, SCM_UNDEFINED is
57d23e25
DH
447 * returned. If the symbol is a global variable, the variable object to which
448 * the symbol is bound is returned. Finally, if the symbol is a local
449 * variable the corresponding iloc object is returned. */
6f81708a
DH
450
451/* A helper function for lookup_symbol: Try to find the symbol in the top
452 * level environment frame. The function returns SCM_UNDEFINED if the symbol
57d23e25
DH
453 * is unbound and it returns a variable object if the symbol is a global
454 * variable. */
6f81708a
DH
455static SCM
456lookup_global_symbol (const SCM symbol, const SCM top_level)
457{
458 const SCM variable = scm_sym2var (symbol, top_level, SCM_BOOL_F);
7888309b 459 if (scm_is_false (variable))
57d23e25 460 return SCM_UNDEFINED;
6f81708a 461 else
57d23e25 462 return variable;
6f81708a
DH
463}
464
465static SCM
466lookup_symbol (const SCM symbol, const SCM env)
467{
468 SCM frame_idx;
469 unsigned int frame_nr;
470
471 for (frame_idx = env, frame_nr = 0;
a61f4e0c 472 !scm_is_null (frame_idx);
6f81708a
DH
473 frame_idx = SCM_CDR (frame_idx), ++frame_nr)
474 {
475 const SCM frame = SCM_CAR (frame_idx);
a61f4e0c 476 if (scm_is_pair (frame))
6f81708a
DH
477 {
478 /* frame holds a local environment frame */
479 SCM symbol_idx;
480 unsigned int symbol_nr;
481
482 for (symbol_idx = SCM_CAR (frame), symbol_nr = 0;
a61f4e0c 483 scm_is_pair (symbol_idx);
6f81708a
DH
484 symbol_idx = SCM_CDR (symbol_idx), ++symbol_nr)
485 {
bc36d050 486 if (scm_is_eq (SCM_CAR (symbol_idx), symbol))
6f81708a
DH
487 /* found the symbol, therefore return the iloc */
488 return SCM_MAKE_ILOC (frame_nr, symbol_nr, 0);
489 }
bc36d050 490 if (scm_is_eq (symbol_idx, symbol))
6f81708a
DH
491 /* found the symbol as the last element of the current frame */
492 return SCM_MAKE_ILOC (frame_nr, symbol_nr, 1);
493 }
494 else
495 {
496 /* no more local environment frames */
497 return lookup_global_symbol (symbol, frame);
498 }
499 }
500
501 return lookup_global_symbol (symbol, SCM_BOOL_F);
502}
503
504
505/* Return true if the symbol is - from the point of view of a macro
506 * transformer - a literal in the sense specified in chapter "pattern
507 * language" of R5RS. In the code below, however, we don't match the
508 * definition of R5RS exactly: It returns true if the identifier has no
509 * binding or if it is a syntactic keyword. */
510static int
511literal_p (const SCM symbol, const SCM env)
512{
57d23e25
DH
513 const SCM variable = lookup_symbol (symbol, env);
514 if (SCM_UNBNDP (variable))
515 return 1;
516 if (SCM_VARIABLEP (variable) && SCM_MACROP (SCM_VARIABLE_REF (variable)))
6f81708a
DH
517 return 1;
518 else
519 return 0;
520}
17fa3fcf 521
5fb64383
DH
522
523/* Return true if the expression is self-quoting in the memoized code. Thus,
524 * some other objects (like e. g. vectors) are reported as self-quoting, which
525 * according to R5RS would need to be quoted. */
526static int
527is_self_quoting_p (const SCM expr)
528{
a61f4e0c 529 if (scm_is_pair (expr))
5fb64383 530 return 0;
cc95e00a 531 else if (scm_is_symbol (expr))
5fb64383 532 return 0;
a61f4e0c 533 else if (scm_is_null (expr))
5fb64383
DH
534 return 0;
535 else return 1;
536}
537
0f2d19dd 538
212e58ed
DH
539SCM_SYMBOL (sym_three_question_marks, "???");
540
541static SCM
542unmemoize_expression (const SCM expr, const SCM env)
543{
544 if (SCM_ILOCP (expr))
545 {
546 SCM frame_idx;
547 unsigned long int frame_nr;
548 SCM symbol_idx;
549 unsigned long int symbol_nr;
550
551 for (frame_idx = env, frame_nr = SCM_IFRAME (expr);
552 frame_nr != 0;
553 frame_idx = SCM_CDR (frame_idx), --frame_nr)
554 ;
555 for (symbol_idx = SCM_CAAR (frame_idx), symbol_nr = SCM_IDIST (expr);
556 symbol_nr != 0;
557 symbol_idx = SCM_CDR (symbol_idx), --symbol_nr)
558 ;
559 return SCM_ICDRP (expr) ? symbol_idx : SCM_CAR (symbol_idx);
560 }
561 else if (SCM_VARIABLEP (expr))
562 {
563 const SCM sym = scm_module_reverse_lookup (scm_env_module (env), expr);
7888309b 564 return scm_is_true (sym) ? sym : sym_three_question_marks;
212e58ed 565 }
4057a3e0 566 else if (scm_is_simple_vector (expr))
212e58ed
DH
567 {
568 return scm_list_2 (scm_sym_quote, expr);
569 }
a61f4e0c 570 else if (!scm_is_pair (expr))
212e58ed
DH
571 {
572 return expr;
573 }
574 else if (SCM_ISYMP (SCM_CAR (expr)))
575 {
576 return unmemoize_builtin_macro (expr, env);
577 }
578 else
579 {
580 return unmemoize_exprs (expr, env);
581 }
582}
583
584
585static SCM
586unmemoize_exprs (const SCM exprs, const SCM env)
587{
90df793f 588 SCM r_result = SCM_EOL;
9fcf3cbb 589 SCM expr_idx = exprs;
90df793f
DH
590 SCM um_expr;
591
592 /* Note that due to the current lazy memoizer we may find partially memoized
5fa0939c 593 * code during execution. In such code we have to expect improper lists of
90df793f
DH
594 * expressions: On the one hand, for such code syntax checks have not yet
595 * fully been performed, on the other hand, there may be even legal code
596 * like '(a . b) appear as an improper list of expressions as long as the
597 * quote expression is still in its unmemoized form. For this reason, the
598 * following code handles improper lists of expressions until memoization
599 * and execution have been completely separated. */
a61f4e0c 600 for (; scm_is_pair (expr_idx); expr_idx = SCM_CDR (expr_idx))
212e58ed
DH
601 {
602 const SCM expr = SCM_CAR (expr_idx);
5fa0939c
DH
603
604 /* In partially memoized code, lists of expressions that stem from a
605 * body form may start with an ISYM if the body itself has not yet been
606 * memoized. This isym is just an internal marker to indicate that the
607 * body still needs to be memoized. An isym may occur at the very
608 * beginning of the body or after one or more comment strings. It is
609 * dropped during unmemoization. */
610 if (!SCM_ISYMP (expr))
611 {
612 um_expr = unmemoize_expression (expr, env);
613 r_result = scm_cons (um_expr, r_result);
614 }
90df793f
DH
615 }
616 um_expr = unmemoize_expression (expr_idx, env);
a61f4e0c 617 if (!scm_is_null (r_result))
90df793f
DH
618 {
619 const SCM result = scm_reverse_x (r_result, SCM_UNDEFINED);
620 SCM_SETCDR (r_result, um_expr);
621 return result;
622 }
623 else
624 {
625 return um_expr;
212e58ed 626 }
212e58ed
DH
627}
628
629
34adf7ea
DH
630/* Rewrite the body (which is given as the list of expressions forming the
631 * body) into its internal form. The internal form of a body (<expr> ...) is
632 * just the body itself, but prefixed with an ISYM that denotes to what kind
633 * of outer construct this body belongs: (<ISYM> <expr> ...). A lambda body
634 * starts with SCM_IM_LAMBDA, for example, a body of a let starts with
6bff1368 635 * SCM_IM_LET, etc.
34adf7ea
DH
636 *
637 * It is assumed that the calling expression has already made sure that the
638 * body is a proper list. */
26d5b9b4 639static SCM
430b8401 640m_body (SCM op, SCM exprs)
26d5b9b4 641{
26d5b9b4 642 /* Don't add another ISYM if one is present already. */
34adf7ea
DH
643 if (SCM_ISYMP (SCM_CAR (exprs)))
644 return exprs;
645 else
646 return scm_cons (op, exprs);
26d5b9b4
MD
647}
648
1cc91f1b 649
57d23e25
DH
650/* The function m_expand_body memoizes a proper list of expressions forming a
651 * body. This function takes care of dealing with internal defines and
652 * transforming them into an equivalent letrec expression. The list of
653 * expressions is rewritten in place. */
910b5125 654
57d23e25
DH
655/* This is a helper function for m_expand_body. If the argument expression is
656 * a symbol that denotes a syntactic keyword, the corresponding macro object
657 * is returned, in all other cases the function returns SCM_UNDEFINED. */
910b5125
DH
658static SCM
659try_macro_lookup (const SCM expr, const SCM env)
660{
cc95e00a 661 if (scm_is_symbol (expr))
910b5125 662 {
57d23e25
DH
663 const SCM variable = lookup_symbol (expr, env);
664 if (SCM_VARIABLEP (variable))
665 {
666 const SCM value = SCM_VARIABLE_REF (variable);
667 if (SCM_MACROP (value))
668 return value;
669 }
910b5125 670 }
57d23e25
DH
671
672 return SCM_UNDEFINED;
910b5125
DH
673}
674
675/* This is a helper function for m_expand_body. It expands user macros,
676 * because for the correct translation of a body we need to know whether they
677 * expand to a definition. */
678static SCM
679expand_user_macros (SCM expr, const SCM env)
680{
a61f4e0c 681 while (scm_is_pair (expr))
910b5125
DH
682 {
683 const SCM car_expr = SCM_CAR (expr);
684 const SCM new_car = expand_user_macros (car_expr, env);
685 const SCM value = try_macro_lookup (new_car, env);
686
687 if (SCM_MACROP (value) && SCM_MACRO_TYPE (value) == 2)
688 {
689 /* User macros transform code into code. */
690 expr = scm_call_2 (SCM_MACRO_CODE (value), expr, env);
691 /* We need to reiterate on the transformed code. */
692 }
693 else
694 {
695 /* No user macro: return. */
696 SCM_SETCAR (expr, new_car);
697 return expr;
698 }
699 }
700
701 return expr;
702}
703
704/* This is a helper function for m_expand_body. It determines if a given form
705 * represents an application of a given built-in macro. The built-in macro to
706 * check for is identified by its syntactic keyword. The form is an
707 * application of the given macro if looking up the car of the form in the
708 * given environment actually returns the built-in macro. */
709static int
710is_system_macro_p (const SCM syntactic_keyword, const SCM form, const SCM env)
711{
a61f4e0c 712 if (scm_is_pair (form))
910b5125
DH
713 {
714 const SCM car_form = SCM_CAR (form);
715 const SCM value = try_macro_lookup (car_form, env);
716 if (SCM_BUILTIN_MACRO_P (value))
717 {
718 const SCM macro_name = scm_macro_name (value);
bc36d050 719 return scm_is_eq (macro_name, syntactic_keyword);
910b5125
DH
720 }
721 }
722
723 return 0;
724}
725
9d4bf6d3 726static void
910b5125
DH
727m_expand_body (const SCM forms, const SCM env)
728{
729 /* The first body form can be skipped since it is known to be the ISYM that
730 * was prepended to the body by m_body. */
731 SCM cdr_forms = SCM_CDR (forms);
732 SCM form_idx = cdr_forms;
733 SCM definitions = SCM_EOL;
734 SCM sequence = SCM_EOL;
735
736 /* According to R5RS, the list of body forms consists of two parts: a number
737 * (maybe zero) of definitions, followed by a non-empty sequence of
738 * expressions. Each the definitions and the expressions may be grouped
739 * arbitrarily with begin, but it is not allowed to mix definitions and
740 * expressions. The task of the following loop therefore is to split the
741 * list of body forms into the list of definitions and the sequence of
742 * expressions. */
a61f4e0c 743 while (!scm_is_null (form_idx))
910b5125
DH
744 {
745 const SCM form = SCM_CAR (form_idx);
746 const SCM new_form = expand_user_macros (form, env);
747 if (is_system_macro_p (scm_sym_define, new_form, env))
748 {
749 definitions = scm_cons (new_form, definitions);
750 form_idx = SCM_CDR (form_idx);
751 }
752 else if (is_system_macro_p (scm_sym_begin, new_form, env))
753 {
754 /* We have encountered a group of forms. This has to be either a
755 * (possibly empty) group of (possibly further grouped) definitions,
756 * or a non-empty group of (possibly further grouped)
757 * expressions. */
758 const SCM grouped_forms = SCM_CDR (new_form);
759 unsigned int found_definition = 0;
760 unsigned int found_expression = 0;
761 SCM grouped_form_idx = grouped_forms;
a61f4e0c 762 while (!found_expression && !scm_is_null (grouped_form_idx))
910b5125
DH
763 {
764 const SCM inner_form = SCM_CAR (grouped_form_idx);
765 const SCM new_inner_form = expand_user_macros (inner_form, env);
766 if (is_system_macro_p (scm_sym_define, new_inner_form, env))
767 {
768 found_definition = 1;
769 definitions = scm_cons (new_inner_form, definitions);
770 grouped_form_idx = SCM_CDR (grouped_form_idx);
771 }
772 else if (is_system_macro_p (scm_sym_begin, new_inner_form, env))
773 {
774 const SCM inner_group = SCM_CDR (new_inner_form);
775 grouped_form_idx
776 = scm_append (scm_list_2 (inner_group,
777 SCM_CDR (grouped_form_idx)));
778 }
779 else
780 {
781 /* The group marks the start of the expressions of the body.
782 * We have to make sure that within the same group we have
783 * not encountered a definition before. */
784 ASSERT_SYNTAX (!found_definition, s_mixed_body_forms, form);
785 found_expression = 1;
786 grouped_form_idx = SCM_EOL;
787 }
788 }
789
790 /* We have finished processing the group. If we have not yet
791 * encountered an expression we continue processing the forms of the
792 * body to collect further definition forms. Otherwise, the group
793 * marks the start of the sequence of expressions of the body. */
794 if (!found_expression)
795 {
796 form_idx = SCM_CDR (form_idx);
797 }
798 else
799 {
800 sequence = form_idx;
801 form_idx = SCM_EOL;
802 }
803 }
804 else
805 {
806 /* We have detected a form which is no definition. This marks the
807 * start of the sequence of expressions of the body. */
808 sequence = form_idx;
809 form_idx = SCM_EOL;
810 }
811 }
812
813 /* FIXME: forms does not hold information about the file location. */
a61f4e0c 814 ASSERT_SYNTAX (scm_is_pair (sequence), s_missing_body_expression, cdr_forms);
910b5125 815
a61f4e0c 816 if (!scm_is_null (definitions))
910b5125
DH
817 {
818 SCM definition_idx;
819 SCM letrec_tail;
820 SCM letrec_expression;
821 SCM new_letrec_expression;
910b5125
DH
822
823 SCM bindings = SCM_EOL;
824 for (definition_idx = definitions;
a61f4e0c 825 !scm_is_null (definition_idx);
910b5125
DH
826 definition_idx = SCM_CDR (definition_idx))
827 {
828 const SCM definition = SCM_CAR (definition_idx);
829 const SCM canonical_definition = canonicalize_define (definition);
830 const SCM binding = SCM_CDR (canonical_definition);
831 bindings = scm_cons (binding, bindings);
832 };
833
834 letrec_tail = scm_cons (bindings, sequence);
835 /* FIXME: forms does not hold information about the file location. */
836 letrec_expression = scm_cons_source (forms, scm_sym_letrec, letrec_tail);
837 new_letrec_expression = scm_m_letrec (letrec_expression, env);
9d4bf6d3
MV
838 SCM_SETCAR (forms, new_letrec_expression);
839 SCM_SETCDR (forms, SCM_EOL);
910b5125
DH
840 }
841 else
842 {
843 SCM_SETCAR (forms, SCM_CAR (sequence));
844 SCM_SETCDR (forms, SCM_CDR (sequence));
910b5125
DH
845 }
846}
847
2b189e65
MV
848static SCM
849macroexp (SCM x, SCM env)
850{
851 SCM res, proc, orig_sym;
852
853 /* Don't bother to produce error messages here. We get them when we
854 eventually execute the code for real. */
855
856 macro_tail:
857 orig_sym = SCM_CAR (x);
cc95e00a 858 if (!scm_is_symbol (orig_sym))
2b189e65
MV
859 return x;
860
861 {
862 SCM *proc_ptr = scm_lookupcar1 (x, env, 0);
863 if (proc_ptr == NULL)
864 {
865 /* We have lost the race. */
866 goto macro_tail;
867 }
868 proc = *proc_ptr;
869 }
870
871 /* Only handle memoizing macros. `Acros' and `macros' are really
872 special forms and should not be evaluated here. */
873
874 if (!SCM_MACROP (proc)
875 || (SCM_MACRO_TYPE (proc) != 2 && !SCM_BUILTIN_MACRO_P (proc)))
876 return x;
877
878 SCM_SETCAR (x, orig_sym); /* Undo memoizing effect of lookupcar */
879 res = scm_call_2 (SCM_MACRO_CODE (proc), x, env);
880
881 if (scm_ilength (res) <= 0)
882 res = scm_list_2 (SCM_IM_BEGIN, res);
2b0fb0a5
NJ
883
884 /* njrev: Several queries here: (1) I don't see how it can be
885 correct that the SCM_SETCAR 2 lines below this comment needs
886 protection, but the SCM_SETCAR 6 lines above does not, so
887 something here is probably wrong. (2) macroexp() is now only
888 used in one place - scm_m_generalized_set_x - whereas all other
889 macro expansion happens through expand_user_macros. Therefore
890 (2.1) perhaps macroexp() could be eliminated completely now?
891 (2.2) Does expand_user_macros need any critical section
892 protection? */
893
9de87eea 894 SCM_CRITICAL_SECTION_START;
2b189e65
MV
895 SCM_SETCAR (x, SCM_CAR (res));
896 SCM_SETCDR (x, SCM_CDR (res));
9de87eea 897 SCM_CRITICAL_SECTION_END;
2b189e65
MV
898
899 goto macro_tail;
900}
910b5125 901
9fbee57e 902/* Start of the memoizers for the standard R5RS builtin macros. */
0f2d19dd
JB
903
904
3b88ed2a 905SCM_SYNTAX (s_and, "and", scm_i_makbimacro, scm_m_and);
8ea46249 906SCM_GLOBAL_SYMBOL (scm_sym_and, s_and);
1cc91f1b 907
8ea46249 908SCM
e6729603 909scm_m_and (SCM expr, SCM env SCM_UNUSED)
0f2d19dd 910{
e6729603
DH
911 const SCM cdr_expr = SCM_CDR (expr);
912 const long length = scm_ilength (cdr_expr);
913
914 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
915
916 if (length == 0)
917 {
918 /* Special case: (and) is replaced by #t. */
919 return SCM_BOOL_T;
920 }
0f2d19dd 921 else
e6729603
DH
922 {
923 SCM_SETCAR (expr, SCM_IM_AND);
924 return expr;
925 }
0f2d19dd
JB
926}
927
212e58ed
DH
928static SCM
929unmemoize_and (const SCM expr, const SCM env)
930{
931 return scm_cons (scm_sym_and, unmemoize_exprs (SCM_CDR (expr), env));
932}
933
1cc91f1b 934
3b88ed2a 935SCM_SYNTAX (s_begin, "begin", scm_i_makbimacro, scm_m_begin);
9fbee57e 936SCM_GLOBAL_SYMBOL (scm_sym_begin, s_begin);
8ea46249
DH
937
938SCM
2a6f7afe 939scm_m_begin (SCM expr, SCM env SCM_UNUSED)
0f2d19dd 940{
2a6f7afe 941 const SCM cdr_expr = SCM_CDR (expr);
21628685
DH
942 /* Dirk:FIXME:: An empty begin clause is not generally allowed by R5RS.
943 * That means, there should be a distinction between uses of begin where an
944 * empty clause is OK and where it is not. */
2a6f7afe
DH
945 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
946
947 SCM_SETCAR (expr, SCM_IM_BEGIN);
948 return expr;
0f2d19dd
JB
949}
950
212e58ed
DH
951static SCM
952unmemoize_begin (const SCM expr, const SCM env)
953{
954 return scm_cons (scm_sym_begin, unmemoize_exprs (SCM_CDR (expr), env));
955}
956
0f2d19dd 957
3b88ed2a 958SCM_SYNTAX (s_case, "case", scm_i_makbimacro, scm_m_case);
8ea46249 959SCM_GLOBAL_SYMBOL (scm_sym_case, s_case);
6f81708a 960SCM_GLOBAL_SYMBOL (scm_sym_else, "else");
1cc91f1b 961
8ea46249 962SCM
2a6f7afe 963scm_m_case (SCM expr, SCM env)
0f2d19dd 964{
8ea46249 965 SCM clauses;
2a6f7afe
DH
966 SCM all_labels = SCM_EOL;
967
968 /* Check, whether 'else is a literal, i. e. not bound to a value. */
969 const int else_literal_p = literal_p (scm_sym_else, env);
970
971 const SCM cdr_expr = SCM_CDR (expr);
972 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
973 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_clauses, expr);
974
975 clauses = SCM_CDR (cdr_expr);
a61f4e0c 976 while (!scm_is_null (clauses))
0f2d19dd 977 {
2a6f7afe
DH
978 SCM labels;
979
980 const SCM clause = SCM_CAR (clauses);
981 ASSERT_SYNTAX_2 (scm_ilength (clause) >= 2,
982 s_bad_case_clause, clause, expr);
983
984 labels = SCM_CAR (clause);
a61f4e0c 985 if (scm_is_pair (labels))
2a6f7afe
DH
986 {
987 ASSERT_SYNTAX_2 (scm_ilength (labels) >= 0,
988 s_bad_case_labels, labels, expr);
26ecfa39 989 all_labels = scm_append (scm_list_2 (labels, all_labels));
2a6f7afe 990 }
a61f4e0c 991 else if (scm_is_null (labels))
58a2510b
DH
992 {
993 /* The list of labels is empty. According to R5RS this is allowed.
994 * It means that the sequence of expressions will never be executed.
995 * Therefore, as an optimization, we could remove the whole
996 * clause. */
997 }
2a6f7afe
DH
998 else
999 {
bc36d050 1000 ASSERT_SYNTAX_2 (scm_is_eq (labels, scm_sym_else) && else_literal_p,
2a6f7afe 1001 s_bad_case_labels, labels, expr);
a61f4e0c 1002 ASSERT_SYNTAX_2 (scm_is_null (SCM_CDR (clauses)),
609a8b86 1003 s_misplaced_else_clause, clause, expr);
2a6f7afe
DH
1004 }
1005
1006 /* build the new clause */
bc36d050 1007 if (scm_is_eq (labels, scm_sym_else))
2a6f7afe
DH
1008 SCM_SETCAR (clause, SCM_IM_ELSE);
1009
8ea46249 1010 clauses = SCM_CDR (clauses);
0f2d19dd 1011 }
2a6f7afe
DH
1012
1013 /* Check whether all case labels are distinct. */
a61f4e0c 1014 for (; !scm_is_null (all_labels); all_labels = SCM_CDR (all_labels))
2a6f7afe
DH
1015 {
1016 const SCM label = SCM_CAR (all_labels);
7888309b 1017 ASSERT_SYNTAX_2 (scm_is_false (scm_c_memq (label, SCM_CDR (all_labels))),
4610b011 1018 s_duplicate_case_label, label, expr);
2a6f7afe
DH
1019 }
1020
1021 SCM_SETCAR (expr, SCM_IM_CASE);
1022 return expr;
0f2d19dd
JB
1023}
1024
212e58ed
DH
1025static SCM
1026unmemoize_case (const SCM expr, const SCM env)
1027{
1028 const SCM um_key_expr = unmemoize_expression (SCM_CADR (expr), env);
1029 SCM um_clauses = SCM_EOL;
1030 SCM clause_idx;
1031
1032 for (clause_idx = SCM_CDDR (expr);
a61f4e0c 1033 !scm_is_null (clause_idx);
212e58ed
DH
1034 clause_idx = SCM_CDR (clause_idx))
1035 {
1036 const SCM clause = SCM_CAR (clause_idx);
1037 const SCM labels = SCM_CAR (clause);
1038 const SCM exprs = SCM_CDR (clause);
1039
1040 const SCM um_exprs = unmemoize_exprs (exprs, env);
bc36d050 1041 const SCM um_labels = (scm_is_eq (labels, SCM_IM_ELSE))
212e58ed
DH
1042 ? scm_sym_else
1043 : scm_i_finite_list_copy (labels);
1044 const SCM um_clause = scm_cons (um_labels, um_exprs);
1045
1046 um_clauses = scm_cons (um_clause, um_clauses);
1047 }
1048 um_clauses = scm_reverse_x (um_clauses, SCM_UNDEFINED);
1049
1050 return scm_cons2 (scm_sym_case, um_key_expr, um_clauses);
1051}
1052
0f2d19dd 1053
3b88ed2a 1054SCM_SYNTAX (s_cond, "cond", scm_i_makbimacro, scm_m_cond);
8ea46249 1055SCM_GLOBAL_SYMBOL (scm_sym_cond, s_cond);
609a8b86 1056SCM_GLOBAL_SYMBOL (scm_sym_arrow, "=>");
1cc91f1b 1057
8ea46249 1058SCM
609a8b86 1059scm_m_cond (SCM expr, SCM env)
0f2d19dd 1060{
609a8b86
DH
1061 /* Check, whether 'else or '=> is a literal, i. e. not bound to a value. */
1062 const int else_literal_p = literal_p (scm_sym_else, env);
1063 const int arrow_literal_p = literal_p (scm_sym_arrow, env);
1064
1065 const SCM clauses = SCM_CDR (expr);
1066 SCM clause_idx;
1067
1068 ASSERT_SYNTAX (scm_ilength (clauses) >= 0, s_bad_expression, expr);
1069 ASSERT_SYNTAX (scm_ilength (clauses) >= 1, s_missing_clauses, expr);
1070
1071 for (clause_idx = clauses;
a61f4e0c 1072 !scm_is_null (clause_idx);
609a8b86 1073 clause_idx = SCM_CDR (clause_idx))
0f2d19dd 1074 {
609a8b86
DH
1075 SCM test;
1076
1077 const SCM clause = SCM_CAR (clause_idx);
1078 const long length = scm_ilength (clause);
1079 ASSERT_SYNTAX_2 (length >= 1, s_bad_cond_clause, clause, expr);
1080
1081 test = SCM_CAR (clause);
bc36d050 1082 if (scm_is_eq (test, scm_sym_else) && else_literal_p)
0f2d19dd 1083 {
a61f4e0c 1084 const int last_clause_p = scm_is_null (SCM_CDR (clause_idx));
609a8b86
DH
1085 ASSERT_SYNTAX_2 (length >= 2,
1086 s_bad_cond_clause, clause, expr);
1087 ASSERT_SYNTAX_2 (last_clause_p,
1088 s_misplaced_else_clause, clause, expr);
1089 SCM_SETCAR (clause, SCM_IM_ELSE);
0f2d19dd 1090 }
609a8b86 1091 else if (length >= 2
bc36d050 1092 && scm_is_eq (SCM_CADR (clause), scm_sym_arrow)
609a8b86
DH
1093 && arrow_literal_p)
1094 {
1095 ASSERT_SYNTAX_2 (length > 2, s_missing_recipient, clause, expr);
1096 ASSERT_SYNTAX_2 (length == 3, s_extra_expression, clause, expr);
1097 SCM_SETCAR (SCM_CDR (clause), SCM_IM_ARROW);
8ea46249 1098 }
1fe1fc0a
MV
1099 /* SRFI 61 extended cond */
1100 else if (length >= 3
1101 && scm_is_eq (SCM_CADDR (clause), scm_sym_arrow)
1102 && arrow_literal_p)
1103 {
1104 ASSERT_SYNTAX_2 (length > 3, s_missing_recipient, clause, expr);
1105 ASSERT_SYNTAX_2 (length == 4, s_extra_expression, clause, expr);
1106 SCM_SETCAR (SCM_CDDR (clause), SCM_IM_ARROW);
1107 }
0f2d19dd 1108 }
609a8b86
DH
1109
1110 SCM_SETCAR (expr, SCM_IM_COND);
1111 return expr;
0f2d19dd
JB
1112}
1113
212e58ed
DH
1114static SCM
1115unmemoize_cond (const SCM expr, const SCM env)
1116{
1117 SCM um_clauses = SCM_EOL;
1118 SCM clause_idx;
1119
1120 for (clause_idx = SCM_CDR (expr);
a61f4e0c 1121 !scm_is_null (clause_idx);
212e58ed
DH
1122 clause_idx = SCM_CDR (clause_idx))
1123 {
1124 const SCM clause = SCM_CAR (clause_idx);
1125 const SCM sequence = SCM_CDR (clause);
1126 const SCM test = SCM_CAR (clause);
1127 SCM um_test;
1128 SCM um_sequence;
1129 SCM um_clause;
1130
bc36d050 1131 if (scm_is_eq (test, SCM_IM_ELSE))
212e58ed
DH
1132 um_test = scm_sym_else;
1133 else
1134 um_test = unmemoize_expression (test, env);
1135
a61f4e0c 1136 if (!scm_is_null (sequence) && scm_is_eq (SCM_CAR (sequence),
bc36d050 1137 SCM_IM_ARROW))
212e58ed
DH
1138 {
1139 const SCM target = SCM_CADR (sequence);
1140 const SCM um_target = unmemoize_expression (target, env);
1141 um_sequence = scm_list_2 (scm_sym_arrow, um_target);
1142 }
1143 else
1144 {
1145 um_sequence = unmemoize_exprs (sequence, env);
1146 }
1147
1148 um_clause = scm_cons (um_test, um_sequence);
1149 um_clauses = scm_cons (um_clause, um_clauses);
1150 }
1151 um_clauses = scm_reverse_x (um_clauses, SCM_UNDEFINED);
1152
1153 return scm_cons (scm_sym_cond, um_clauses);
1154}
1155
1cc91f1b 1156
0f572ba7
DH
1157SCM_SYNTAX (s_define, "define", scm_i_makbimacro, scm_m_define);
1158SCM_GLOBAL_SYMBOL (scm_sym_define, s_define);
5280aaca 1159
9fbee57e
DH
1160/* Guile provides an extension to R5RS' define syntax to represent function
1161 * currying in a compact way. With this extension, it is allowed to write
1162 * (define <nested-variable> <body>), where <nested-variable> has of one of
1163 * the forms (<nested-variable> <formals>), (<nested-variable> . <formal>),
1164 * (<variable> <formals>) or (<variable> . <formal>). As in R5RS, <formals>
1165 * should be either a sequence of zero or more variables, or a sequence of one
1166 * or more variables followed by a space-delimited period and another
1167 * variable. Each level of argument nesting wraps the <body> within another
1168 * lambda expression. For example, the following forms are allowed, each one
1169 * followed by an equivalent, more explicit implementation.
1170 * Example 1:
1171 * (define ((a b . c) . d) <body>) is equivalent to
1172 * (define a (lambda (b . c) (lambda d <body>)))
1173 * Example 2:
1174 * (define (((a) b) c . d) <body>) is equivalent to
1175 * (define a (lambda () (lambda (b) (lambda (c . d) <body>))))
1176 */
1177/* Dirk:FIXME:: We should provide an implementation for 'define' in the R5RS
1178 * module that does not implement this extension. */
0f572ba7
DH
1179static SCM
1180canonicalize_define (const SCM expr)
5280aaca 1181{
cc56ba80
DH
1182 SCM body;
1183 SCM variable;
1184
1185 const SCM cdr_expr = SCM_CDR (expr);
c86c440b 1186 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
cc56ba80
DH
1187 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
1188
1189 body = SCM_CDR (cdr_expr);
1190 variable = SCM_CAR (cdr_expr);
a61f4e0c 1191 while (scm_is_pair (variable))
5280aaca 1192 {
cc56ba80
DH
1193 /* This while loop realizes function currying by variable nesting.
1194 * Variable is known to be a nested-variable. In every iteration of the
1195 * loop another level of lambda expression is created, starting with the
4610b011
DH
1196 * innermost one. Note that we don't check for duplicate formals here:
1197 * This will be done by the memoizer of the lambda expression. */
cc56ba80
DH
1198 const SCM formals = SCM_CDR (variable);
1199 const SCM tail = scm_cons (formals, body);
1200
1201 /* Add source properties to each new lambda expression: */
1202 const SCM lambda = scm_cons_source (variable, scm_sym_lambda, tail);
1203
1204 body = scm_list_1 (lambda);
1205 variable = SCM_CAR (variable);
5280aaca 1206 }
cc95e00a 1207 ASSERT_SYNTAX_2 (scm_is_symbol (variable), s_bad_variable, variable, expr);
cc56ba80
DH
1208 ASSERT_SYNTAX (scm_ilength (body) == 1, s_expression, expr);
1209
0f572ba7
DH
1210 SCM_SETCAR (cdr_expr, variable);
1211 SCM_SETCDR (cdr_expr, body);
1212 return expr;
1213}
1214
36245b66
DH
1215/* According to section 5.2.1 of R5RS we first have to make sure that the
1216 * variable is bound, and then perform the (set! variable expression)
1217 * operation. This means, that within the expression we may already assign
1218 * values to variable: (define foo (begin (set! foo 1) (+ foo 1))) */
0f572ba7
DH
1219SCM
1220scm_m_define (SCM expr, SCM env)
1221{
6bff1368 1222 ASSERT_SYNTAX (SCM_TOP_LEVEL (env), s_bad_define, expr);
0f572ba7 1223
6bff1368
DH
1224 {
1225 const SCM canonical_definition = canonicalize_define (expr);
1226 const SCM cdr_canonical_definition = SCM_CDR (canonical_definition);
1227 const SCM variable = SCM_CAR (cdr_canonical_definition);
36245b66
DH
1228 const SCM location
1229 = scm_sym2var (variable, scm_env_top_level (env), SCM_BOOL_T);
1230 const SCM value = scm_eval_car (SCM_CDR (cdr_canonical_definition), env);
6bff1368 1231
6bff1368
DH
1232 if (SCM_REC_PROCNAMES_P)
1233 {
1234 SCM tmp = value;
1235 while (SCM_MACROP (tmp))
1236 tmp = SCM_MACRO_CODE (tmp);
1237 if (SCM_CLOSUREP (tmp)
1238 /* Only the first definition determines the name. */
7888309b 1239 && scm_is_false (scm_procedure_property (tmp, scm_sym_name)))
6bff1368
DH
1240 scm_set_procedure_property_x (tmp, scm_sym_name, variable);
1241 }
0f572ba7 1242
36245b66 1243 SCM_VARIABLE_SET (location, value);
6bff1368
DH
1244
1245 return SCM_UNSPECIFIED;
1246 }
0f2d19dd
JB
1247}
1248
1249
8ae95199
DH
1250/* This is a helper function for forms (<keyword> <expression>) that are
1251 * transformed into (#@<keyword> '() <memoized_expression>) in order to allow
1252 * for easy creation of a thunk (i. e. a closure without arguments) using the
1253 * ('() <memoized_expression>) tail of the memoized form. */
1254static SCM
1255memoize_as_thunk_prototype (const SCM expr, const SCM env SCM_UNUSED)
1256{
1257 const SCM cdr_expr = SCM_CDR (expr);
1258 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1259 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
1260
1261 SCM_SETCDR (expr, scm_cons (SCM_EOL, cdr_expr));
1262
1263 return expr;
1264}
1265
1266
3b88ed2a 1267SCM_SYNTAX (s_delay, "delay", scm_i_makbimacro, scm_m_delay);
9fbee57e 1268SCM_GLOBAL_SYMBOL (scm_sym_delay, s_delay);
1cc91f1b 1269
9fbee57e
DH
1270/* Promises are implemented as closures with an empty parameter list. Thus,
1271 * (delay <expression>) is transformed into (#@delay '() <expression>), where
1272 * the empty list represents the empty parameter list. This representation
1273 * allows for easy creation of the closure during evaluation. */
8ea46249 1274SCM
8ae95199 1275scm_m_delay (SCM expr, SCM env)
0f2d19dd 1276{
8ae95199
DH
1277 const SCM new_expr = memoize_as_thunk_prototype (expr, env);
1278 SCM_SETCAR (new_expr, SCM_IM_DELAY);
1279 return new_expr;
0f2d19dd
JB
1280}
1281
212e58ed
DH
1282static SCM
1283unmemoize_delay (const SCM expr, const SCM env)
1284{
1285 const SCM thunk_expr = SCM_CADDR (expr);
1286 return scm_list_2 (scm_sym_delay, unmemoize_expression (thunk_expr, env));
1287}
1288
8ea46249 1289
a954ce1d
DH
1290SCM_SYNTAX(s_do, "do", scm_i_makbimacro, scm_m_do);
1291SCM_GLOBAL_SYMBOL(scm_sym_do, s_do);
1292
302c12b4 1293/* DO gets the most radically altered syntax. The order of the vars is
4610b011
DH
1294 * reversed here. During the evaluation this allows for simple consing of the
1295 * results of the inits and steps:
302c12b4 1296
0f2d19dd 1297 (do ((<var1> <init1> <step1>)
a954ce1d
DH
1298 (<var2> <init2>)
1299 ... )
1300 (<test> <return>)
1301 <body>)
302c12b4 1302
0f2d19dd 1303 ;; becomes
302c12b4 1304
e681d187 1305 (#@do (<init1> <init2> ... <initn>)
a954ce1d
DH
1306 (varn ... var2 var1)
1307 (<test> <return>)
1308 (<body>)
1309 <step1> <step2> ... <stepn>) ;; missing steps replaced by var
302c12b4 1310 */
0f2d19dd 1311SCM
a954ce1d 1312scm_m_do (SCM expr, SCM env SCM_UNUSED)
0f2d19dd 1313{
a954ce1d
DH
1314 SCM variables = SCM_EOL;
1315 SCM init_forms = SCM_EOL;
1316 SCM step_forms = SCM_EOL;
1317 SCM binding_idx;
1318 SCM cddr_expr;
1319 SCM exit_clause;
1320 SCM commands;
1321 SCM tail;
1322
1323 const SCM cdr_expr = SCM_CDR (expr);
1324 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1325 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
1326
1327 /* Collect variables, init and step forms. */
1328 binding_idx = SCM_CAR (cdr_expr);
1329 ASSERT_SYNTAX_2 (scm_ilength (binding_idx) >= 0,
1330 s_bad_bindings, binding_idx, expr);
a61f4e0c 1331 for (; !scm_is_null (binding_idx); binding_idx = SCM_CDR (binding_idx))
0f2d19dd 1332 {
a954ce1d
DH
1333 const SCM binding = SCM_CAR (binding_idx);
1334 const long length = scm_ilength (binding);
1335 ASSERT_SYNTAX_2 (length == 2 || length == 3,
1336 s_bad_binding, binding, expr);
1337
302c12b4 1338 {
a954ce1d
DH
1339 const SCM name = SCM_CAR (binding);
1340 const SCM init = SCM_CADR (binding);
1341 const SCM step = (length == 2) ? name : SCM_CADDR (binding);
cc95e00a 1342 ASSERT_SYNTAX_2 (scm_is_symbol (name), s_bad_variable, name, expr);
7888309b 1343 ASSERT_SYNTAX_2 (scm_is_false (scm_c_memq (name, variables)),
4610b011
DH
1344 s_duplicate_binding, name, expr);
1345
a954ce1d
DH
1346 variables = scm_cons (name, variables);
1347 init_forms = scm_cons (init, init_forms);
1348 step_forms = scm_cons (step, step_forms);
302c12b4 1349 }
0f2d19dd 1350 }
a954ce1d
DH
1351 init_forms = scm_reverse_x (init_forms, SCM_UNDEFINED);
1352 step_forms = scm_reverse_x (step_forms, SCM_UNDEFINED);
1353
1354 /* Memoize the test form and the exit sequence. */
1355 cddr_expr = SCM_CDR (cdr_expr);
1356 exit_clause = SCM_CAR (cddr_expr);
1357 ASSERT_SYNTAX_2 (scm_ilength (exit_clause) >= 1,
1358 s_bad_exit_clause, exit_clause, expr);
1359
1360 commands = SCM_CDR (cddr_expr);
1361 tail = scm_cons2 (exit_clause, commands, step_forms);
1362 tail = scm_cons2 (init_forms, variables, tail);
1363 SCM_SETCAR (expr, SCM_IM_DO);
1364 SCM_SETCDR (expr, tail);
1365 return expr;
0f2d19dd
JB
1366}
1367
212e58ed
DH
1368static SCM
1369unmemoize_do (const SCM expr, const SCM env)
1370{
1371 const SCM cdr_expr = SCM_CDR (expr);
1372 const SCM cddr_expr = SCM_CDR (cdr_expr);
1373 const SCM rnames = SCM_CAR (cddr_expr);
1374 const SCM extended_env = SCM_EXTEND_ENV (rnames, SCM_EOL, env);
1375 const SCM cdddr_expr = SCM_CDR (cddr_expr);
1376 const SCM exit_sequence = SCM_CAR (cdddr_expr);
1377 const SCM um_exit_sequence = unmemoize_exprs (exit_sequence, extended_env);
1378 const SCM cddddr_expr = SCM_CDR (cdddr_expr);
1379 const SCM um_body = unmemoize_exprs (SCM_CAR (cddddr_expr), extended_env);
1380
1381 /* build transformed binding list */
1382 SCM um_names = scm_reverse (rnames);
1383 SCM um_inits = unmemoize_exprs (SCM_CAR (cdr_expr), env);
1384 SCM um_steps = unmemoize_exprs (SCM_CDR (cddddr_expr), extended_env);
1385 SCM um_bindings = SCM_EOL;
a61f4e0c 1386 while (!scm_is_null (um_names))
212e58ed
DH
1387 {
1388 const SCM name = SCM_CAR (um_names);
1389 const SCM init = SCM_CAR (um_inits);
1390 SCM step = SCM_CAR (um_steps);
bc36d050 1391 step = scm_is_eq (step, name) ? SCM_EOL : scm_list_1 (step);
212e58ed
DH
1392
1393 um_bindings = scm_cons (scm_cons2 (name, init, step), um_bindings);
1394
1395 um_names = SCM_CDR (um_names);
1396 um_inits = SCM_CDR (um_inits);
1397 um_steps = SCM_CDR (um_steps);
1398 }
1399 um_bindings = scm_reverse_x (um_bindings, SCM_UNDEFINED);
1400
1401 return scm_cons (scm_sym_do,
1402 scm_cons2 (um_bindings, um_exit_sequence, um_body));
1403}
1404
b8229a3b 1405
3b88ed2a 1406SCM_SYNTAX (s_if, "if", scm_i_makbimacro, scm_m_if);
9fbee57e 1407SCM_GLOBAL_SYMBOL (scm_sym_if, s_if);
b8229a3b 1408
9fbee57e 1409SCM
4610b011 1410scm_m_if (SCM expr, SCM env SCM_UNUSED)
0f2d19dd 1411{
4610b011
DH
1412 const SCM cdr_expr = SCM_CDR (expr);
1413 const long length = scm_ilength (cdr_expr);
1414 ASSERT_SYNTAX (length == 2 || length == 3, s_expression, expr);
1415 SCM_SETCAR (expr, SCM_IM_IF);
1416 return expr;
0f2d19dd
JB
1417}
1418
212e58ed
DH
1419static SCM
1420unmemoize_if (const SCM expr, const SCM env)
1421{
1422 const SCM cdr_expr = SCM_CDR (expr);
1423 const SCM um_condition = unmemoize_expression (SCM_CAR (cdr_expr), env);
1424 const SCM cddr_expr = SCM_CDR (cdr_expr);
1425 const SCM um_then = unmemoize_expression (SCM_CAR (cddr_expr), env);
1426 const SCM cdddr_expr = SCM_CDR (cddr_expr);
1427
a61f4e0c 1428 if (scm_is_null (cdddr_expr))
212e58ed
DH
1429 {
1430 return scm_list_3 (scm_sym_if, um_condition, um_then);
1431 }
1432 else
1433 {
1434 const SCM um_else = unmemoize_expression (SCM_CAR (cdddr_expr), env);
1435 return scm_list_4 (scm_sym_if, um_condition, um_then, um_else);
1436 }
1437}
1438
302c12b4 1439
3b88ed2a 1440SCM_SYNTAX (s_lambda, "lambda", scm_i_makbimacro, scm_m_lambda);
9fbee57e 1441SCM_GLOBAL_SYMBOL (scm_sym_lambda, s_lambda);
0f2d19dd 1442
4610b011
DH
1443/* A helper function for memoize_lambda to support checking for duplicate
1444 * formal arguments: Return true if OBJ is `eq?' to one of the elements of
1445 * LIST or to the cdr of the last cons. Therefore, LIST may have any of the
1446 * forms that a formal argument can have:
1447 * <rest>, (<arg1> ...), (<arg1> ... . <rest>) */
9fbee57e 1448static int
4610b011 1449c_improper_memq (SCM obj, SCM list)
5cb22e96 1450{
a61f4e0c 1451 for (; scm_is_pair (list); list = SCM_CDR (list))
9fbee57e 1452 {
bc36d050 1453 if (scm_is_eq (SCM_CAR (list), obj))
4610b011 1454 return 1;
9fbee57e 1455 }
bc36d050 1456 return scm_is_eq (list, obj);
5cb22e96
DH
1457}
1458
28d52ebb 1459SCM
03a3e941 1460scm_m_lambda (SCM expr, SCM env SCM_UNUSED)
28d52ebb 1461{
9fbee57e 1462 SCM formals;
03a3e941 1463 SCM formals_idx;
34adf7ea
DH
1464 SCM cddr_expr;
1465 int documentation;
1466 SCM body;
1467 SCM new_body;
03a3e941
DH
1468
1469 const SCM cdr_expr = SCM_CDR (expr);
1470 const long length = scm_ilength (cdr_expr);
1471 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
1472 ASSERT_SYNTAX (length >= 2, s_missing_expression, expr);
28d52ebb 1473
03a3e941
DH
1474 /* Before iterating the list of formal arguments, make sure the formals
1475 * actually are given as either a symbol or a non-cyclic list. */
1476 formals = SCM_CAR (cdr_expr);
a61f4e0c 1477 if (scm_is_pair (formals))
03a3e941
DH
1478 {
1479 /* Dirk:FIXME:: We should check for a cyclic list of formals, and if
1480 * detected, report a 'Bad formals' error. */
1481 }
1482 else
1483 {
a61f4e0c 1484 ASSERT_SYNTAX_2 (scm_is_symbol (formals) || scm_is_null (formals),
03a3e941
DH
1485 s_bad_formals, formals, expr);
1486 }
1cc91f1b 1487
03a3e941
DH
1488 /* Now iterate the list of formal arguments to check if all formals are
1489 * symbols, and that there are no duplicates. */
1490 formals_idx = formals;
a61f4e0c 1491 while (scm_is_pair (formals_idx))
0f2d19dd 1492 {
03a3e941
DH
1493 const SCM formal = SCM_CAR (formals_idx);
1494 const SCM next_idx = SCM_CDR (formals_idx);
cc95e00a 1495 ASSERT_SYNTAX_2 (scm_is_symbol (formal), s_bad_formal, formal, expr);
03a3e941
DH
1496 ASSERT_SYNTAX_2 (!c_improper_memq (formal, next_idx),
1497 s_duplicate_formal, formal, expr);
1498 formals_idx = next_idx;
0f2d19dd 1499 }
a61f4e0c 1500 ASSERT_SYNTAX_2 (scm_is_null (formals_idx) || scm_is_symbol (formals_idx),
03a3e941 1501 s_bad_formal, formals_idx, expr);
9fbee57e 1502
34adf7ea
DH
1503 /* Memoize the body. Keep a potential documentation string. */
1504 /* Dirk:FIXME:: We should probably extract the documentation string to
1505 * some external database. Otherwise it will slow down execution, since
1506 * the documentation string will have to be skipped with every execution
1507 * of the closure. */
1508 cddr_expr = SCM_CDR (cdr_expr);
7f9994d9 1509 documentation = (length >= 3 && scm_is_string (SCM_CAR (cddr_expr)));
34adf7ea 1510 body = documentation ? SCM_CDR (cddr_expr) : cddr_expr;
430b8401 1511 new_body = m_body (SCM_IM_LAMBDA, body);
34adf7ea
DH
1512
1513 SCM_SETCAR (expr, SCM_IM_LAMBDA);
1514 if (documentation)
1515 SCM_SETCDR (cddr_expr, new_body);
1516 else
1517 SCM_SETCDR (cdr_expr, new_body);
1518 return expr;
0f2d19dd 1519}
6dbd0af5 1520
212e58ed
DH
1521static SCM
1522unmemoize_lambda (const SCM expr, const SCM env)
1523{
1524 const SCM formals = SCM_CADR (expr);
1525 const SCM body = SCM_CDDR (expr);
1526
1527 const SCM new_env = SCM_EXTEND_ENV (formals, SCM_EOL, env);
1528 const SCM um_formals = scm_i_finite_list_copy (formals);
1529 const SCM um_body = unmemoize_exprs (body, new_env);
1530
1531 return scm_cons2 (scm_sym_lambda, um_formals, um_body);
1532}
1533
0f2d19dd 1534
d6754c23 1535/* Check if the format of the bindings is ((<symbol> <init-form>) ...). */
302c12b4 1536static void
d6754c23 1537check_bindings (const SCM bindings, const SCM expr)
0f2d19dd 1538{
d6754c23 1539 SCM binding_idx;
302c12b4 1540
d6754c23
DH
1541 ASSERT_SYNTAX_2 (scm_ilength (bindings) >= 0,
1542 s_bad_bindings, bindings, expr);
0f2d19dd 1543
d6754c23 1544 binding_idx = bindings;
a61f4e0c 1545 for (; !scm_is_null (binding_idx); binding_idx = SCM_CDR (binding_idx))
0f2d19dd 1546 {
d6754c23
DH
1547 SCM name; /* const */
1548
1549 const SCM binding = SCM_CAR (binding_idx);
1550 ASSERT_SYNTAX_2 (scm_ilength (binding) == 2,
1551 s_bad_binding, binding, expr);
1552
1553 name = SCM_CAR (binding);
cc95e00a 1554 ASSERT_SYNTAX_2 (scm_is_symbol (name), s_bad_variable, name, expr);
0f2d19dd 1555 }
d6754c23 1556}
26d5b9b4 1557
d6754c23
DH
1558
1559/* The bindings, which must have the format ((v1 i1) (v2 i2) ... (vn in)), are
1560 * transformed to the lists (vn ... v2 v1) and (i1 i2 ... in). That is, the
1561 * variables are returned in a list with their order reversed, and the init
1562 * forms are returned in a list in the same order as they are given in the
1563 * bindings. If a duplicate variable name is detected, an error is
1564 * signalled. */
1565static void
1566transform_bindings (
1567 const SCM bindings, const SCM expr,
1568 SCM *const rvarptr, SCM *const initptr )
1569{
1570 SCM rvariables = SCM_EOL;
1571 SCM rinits = SCM_EOL;
1572 SCM binding_idx = bindings;
a61f4e0c 1573 for (; !scm_is_null (binding_idx); binding_idx = SCM_CDR (binding_idx))
d6754c23
DH
1574 {
1575 const SCM binding = SCM_CAR (binding_idx);
1576 const SCM cdr_binding = SCM_CDR (binding);
1577 const SCM name = SCM_CAR (binding);
7888309b 1578 ASSERT_SYNTAX_2 (scm_is_false (scm_c_memq (name, rvariables)),
d6754c23
DH
1579 s_duplicate_binding, name, expr);
1580 rvariables = scm_cons (name, rvariables);
1581 rinits = scm_cons (SCM_CAR (cdr_binding), rinits);
1582 }
1583 *rvarptr = rvariables;
1584 *initptr = scm_reverse_x (rinits, SCM_UNDEFINED);
0f2d19dd
JB
1585}
1586
302c12b4 1587
3b88ed2a 1588SCM_SYNTAX(s_let, "let", scm_i_makbimacro, scm_m_let);
2f0d1375 1589SCM_GLOBAL_SYMBOL(scm_sym_let, s_let);
b8229a3b 1590
d6754c23
DH
1591/* This function is a helper function for memoize_let. It transforms
1592 * (let name ((var init) ...) body ...) into
1593 * ((letrec ((name (lambda (var ...) body ...))) name) init ...)
1594 * and memoizes the expression. It is assumed that the caller has checked
1595 * that name is a symbol and that there are bindings and a body. */
1596static SCM
1597memoize_named_let (const SCM expr, const SCM env SCM_UNUSED)
1598{
1599 SCM rvariables;
1600 SCM variables;
1601 SCM inits;
1602
1603 const SCM cdr_expr = SCM_CDR (expr);
1604 const SCM name = SCM_CAR (cdr_expr);
1605 const SCM cddr_expr = SCM_CDR (cdr_expr);
1606 const SCM bindings = SCM_CAR (cddr_expr);
1607 check_bindings (bindings, expr);
1608
1609 transform_bindings (bindings, expr, &rvariables, &inits);
1610 variables = scm_reverse_x (rvariables, SCM_UNDEFINED);
1611
1612 {
1613 const SCM let_body = SCM_CDR (cddr_expr);
430b8401 1614 const SCM lambda_body = m_body (SCM_IM_LET, let_body);
d6754c23
DH
1615 const SCM lambda_tail = scm_cons (variables, lambda_body);
1616 const SCM lambda_form = scm_cons_source (expr, scm_sym_lambda, lambda_tail);
1617
1618 const SCM rvar = scm_list_1 (name);
1619 const SCM init = scm_list_1 (lambda_form);
430b8401 1620 const SCM body = m_body (SCM_IM_LET, scm_list_1 (name));
d6754c23
DH
1621 const SCM letrec_tail = scm_cons (rvar, scm_cons (init, body));
1622 const SCM letrec_form = scm_cons_source (expr, SCM_IM_LETREC, letrec_tail);
1623 return scm_cons_source (expr, letrec_form, inits);
1624 }
1625}
1626
1627/* (let ((v1 i1) (v2 i2) ...) body) with variables v1 .. vn and initializers
1628 * i1 .. in is transformed to (#@let (vn ... v2 v1) (i1 i2 ...) body). */
302c12b4 1629SCM
d6754c23 1630scm_m_let (SCM expr, SCM env)
0f2d19dd 1631{
d6754c23
DH
1632 SCM bindings;
1633
1634 const SCM cdr_expr = SCM_CDR (expr);
1635 const long length = scm_ilength (cdr_expr);
1636 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
1637 ASSERT_SYNTAX (length >= 2, s_missing_expression, expr);
302c12b4 1638
d6754c23 1639 bindings = SCM_CAR (cdr_expr);
cc95e00a 1640 if (scm_is_symbol (bindings))
26d5b9b4 1641 {
d6754c23
DH
1642 ASSERT_SYNTAX (length >= 3, s_missing_expression, expr);
1643 return memoize_named_let (expr, env);
26d5b9b4 1644 }
d6754c23
DH
1645
1646 check_bindings (bindings, expr);
a61f4e0c 1647 if (scm_is_null (bindings) || scm_is_null (SCM_CDR (bindings)))
26d5b9b4 1648 {
d6754c23 1649 /* Special case: no bindings or single binding => let* is faster. */
430b8401 1650 const SCM body = m_body (SCM_IM_LET, SCM_CDR (cdr_expr));
d6754c23 1651 return scm_m_letstar (scm_cons2 (SCM_CAR (expr), bindings, body), env);
26d5b9b4 1652 }
302c12b4
DH
1653 else
1654 {
d6754c23
DH
1655 /* plain let */
1656 SCM rvariables;
1657 SCM inits;
1658 transform_bindings (bindings, expr, &rvariables, &inits);
26d5b9b4 1659
302c12b4 1660 {
430b8401 1661 const SCM new_body = m_body (SCM_IM_LET, SCM_CDR (cdr_expr));
d6754c23
DH
1662 const SCM new_tail = scm_cons2 (rvariables, inits, new_body);
1663 SCM_SETCAR (expr, SCM_IM_LET);
1664 SCM_SETCDR (expr, new_tail);
1665 return expr;
302c12b4
DH
1666 }
1667 }
0f2d19dd
JB
1668}
1669
212e58ed
DH
1670static SCM
1671build_binding_list (SCM rnames, SCM rinits)
1672{
1673 SCM bindings = SCM_EOL;
a61f4e0c 1674 while (!scm_is_null (rnames))
212e58ed
DH
1675 {
1676 const SCM binding = scm_list_2 (SCM_CAR (rnames), SCM_CAR (rinits));
1677 bindings = scm_cons (binding, bindings);
1678 rnames = SCM_CDR (rnames);
1679 rinits = SCM_CDR (rinits);
1680 }
1681 return bindings;
1682}
1683
1684static SCM
1685unmemoize_let (const SCM expr, const SCM env)
1686{
1687 const SCM cdr_expr = SCM_CDR (expr);
1688 const SCM um_rnames = SCM_CAR (cdr_expr);
1689 const SCM extended_env = SCM_EXTEND_ENV (um_rnames, SCM_EOL, env);
1690 const SCM cddr_expr = SCM_CDR (cdr_expr);
1691 const SCM um_inits = unmemoize_exprs (SCM_CAR (cddr_expr), env);
1692 const SCM um_rinits = scm_reverse_x (um_inits, SCM_UNDEFINED);
1693 const SCM um_bindings = build_binding_list (um_rnames, um_rinits);
1694 const SCM um_body = unmemoize_exprs (SCM_CDR (cddr_expr), extended_env);
1695
1696 return scm_cons2 (scm_sym_let, um_bindings, um_body);
1697}
1698
1699
1700SCM_SYNTAX(s_letrec, "letrec", scm_i_makbimacro, scm_m_letrec);
1701SCM_GLOBAL_SYMBOL(scm_sym_letrec, s_letrec);
1702
1703SCM
1704scm_m_letrec (SCM expr, SCM env)
1705{
1706 SCM bindings;
1707
1708 const SCM cdr_expr = SCM_CDR (expr);
1709 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1710 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
1711
1712 bindings = SCM_CAR (cdr_expr);
a61f4e0c 1713 if (scm_is_null (bindings))
212e58ed
DH
1714 {
1715 /* no bindings, let* is executed faster */
1716 SCM body = m_body (SCM_IM_LETREC, SCM_CDR (cdr_expr));
1717 return scm_m_letstar (scm_cons2 (SCM_CAR (expr), SCM_EOL, body), env);
1718 }
1719 else
1720 {
1721 SCM rvariables;
1722 SCM inits;
1723 SCM new_body;
1724
1725 check_bindings (bindings, expr);
1726 transform_bindings (bindings, expr, &rvariables, &inits);
1727 new_body = m_body (SCM_IM_LETREC, SCM_CDR (cdr_expr));
1728 return scm_cons2 (SCM_IM_LETREC, rvariables, scm_cons (inits, new_body));
1729 }
1730}
1731
1732static SCM
1733unmemoize_letrec (const SCM expr, const SCM env)
1734{
1735 const SCM cdr_expr = SCM_CDR (expr);
1736 const SCM um_rnames = SCM_CAR (cdr_expr);
1737 const SCM extended_env = SCM_EXTEND_ENV (um_rnames, SCM_EOL, env);
1738 const SCM cddr_expr = SCM_CDR (cdr_expr);
1739 const SCM um_inits = unmemoize_exprs (SCM_CAR (cddr_expr), extended_env);
1740 const SCM um_rinits = scm_reverse_x (um_inits, SCM_UNDEFINED);
1741 const SCM um_bindings = build_binding_list (um_rnames, um_rinits);
1742 const SCM um_body = unmemoize_exprs (SCM_CDR (cddr_expr), extended_env);
1743
1744 return scm_cons2 (scm_sym_letrec, um_bindings, um_body);
1745}
1746
1747
0f2d19dd 1748
3b88ed2a 1749SCM_SYNTAX (s_letstar, "let*", scm_i_makbimacro, scm_m_letstar);
9fbee57e 1750SCM_GLOBAL_SYMBOL (scm_sym_letstar, s_letstar);
1cc91f1b 1751
d6754c23
DH
1752/* (let* ((v1 i1) (v2 i2) ...) body) with variables v1 .. vn and initializers
1753 * i1 .. in is transformed into the form (#@let* (v1 i1 v2 i2 ...) body). */
9fbee57e 1754SCM
d6754c23 1755scm_m_letstar (SCM expr, SCM env SCM_UNUSED)
0f2d19dd 1756{
d6754c23 1757 SCM binding_idx;
d6754c23 1758 SCM new_body;
0f2d19dd 1759
d6754c23
DH
1760 const SCM cdr_expr = SCM_CDR (expr);
1761 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1762 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
9fbee57e 1763
d6754c23
DH
1764 binding_idx = SCM_CAR (cdr_expr);
1765 check_bindings (binding_idx, expr);
1766
461bffb1
DH
1767 /* Transform ((v1 i1) (v2 i2) ...) into (v1 i1 v2 i2 ...). The
1768 * transformation is done in place. At the beginning of one iteration of
1769 * the loop the variable binding_idx holds the form
1770 * P1:( (vn . P2:(in . ())) . P3:( (vn+1 in+1) ... ) ),
1771 * where P1, P2 and P3 indicate the pairs, that are relevant for the
1772 * transformation. P1 and P2 are modified in the loop, P3 remains
1773 * untouched. After the execution of the loop, P1 will hold
1774 * P1:( vn . P2:(in . P3:( (vn+1 in+1) ... )) )
1775 * and binding_idx will hold P3. */
a61f4e0c 1776 while (!scm_is_null (binding_idx))
9fbee57e 1777 {
461bffb1 1778 const SCM cdr_binding_idx = SCM_CDR (binding_idx); /* remember P3 */
d6754c23
DH
1779 const SCM binding = SCM_CAR (binding_idx);
1780 const SCM name = SCM_CAR (binding);
461bffb1
DH
1781 const SCM cdr_binding = SCM_CDR (binding);
1782
1783 SCM_SETCDR (cdr_binding, cdr_binding_idx); /* update P2 */
1784 SCM_SETCAR (binding_idx, name); /* update P1 */
1785 SCM_SETCDR (binding_idx, cdr_binding); /* update P1 */
1786
1787 binding_idx = cdr_binding_idx; /* continue with P3 */
9fbee57e
DH
1788 }
1789
430b8401 1790 new_body = m_body (SCM_IM_LETSTAR, SCM_CDR (cdr_expr));
461bffb1
DH
1791 SCM_SETCAR (expr, SCM_IM_LETSTAR);
1792 /* the bindings have been changed in place */
1793 SCM_SETCDR (cdr_expr, new_body);
1794 return expr;
9fbee57e 1795}
b8229a3b 1796
212e58ed
DH
1797static SCM
1798unmemoize_letstar (const SCM expr, const SCM env)
0f2d19dd 1799{
d6754c23 1800 const SCM cdr_expr = SCM_CDR (expr);
212e58ed
DH
1801 const SCM body = SCM_CDR (cdr_expr);
1802 SCM bindings = SCM_CAR (cdr_expr);
1803 SCM um_bindings = SCM_EOL;
1804 SCM extended_env = env;
1805 SCM um_body;
d6754c23 1806
a61f4e0c 1807 while (!scm_is_null (bindings))
9fbee57e 1808 {
212e58ed
DH
1809 const SCM variable = SCM_CAR (bindings);
1810 const SCM init = SCM_CADR (bindings);
1811 const SCM um_init = unmemoize_expression (init, extended_env);
1812 um_bindings = scm_cons (scm_list_2 (variable, um_init), um_bindings);
1813 extended_env = SCM_EXTEND_ENV (variable, SCM_BOOL_F, extended_env);
1814 bindings = SCM_CDDR (bindings);
9fbee57e 1815 }
212e58ed 1816 um_bindings = scm_reverse_x (um_bindings, SCM_UNDEFINED);
d6754c23 1817
212e58ed
DH
1818 um_body = unmemoize_exprs (body, extended_env);
1819
1820 return scm_cons2 (scm_sym_letstar, um_bindings, um_body);
0f2d19dd
JB
1821}
1822
73b64342 1823
3b88ed2a 1824SCM_SYNTAX (s_or, "or", scm_i_makbimacro, scm_m_or);
9fbee57e 1825SCM_GLOBAL_SYMBOL (scm_sym_or, s_or);
73b64342
MD
1826
1827SCM
21628685 1828scm_m_or (SCM expr, SCM env SCM_UNUSED)
73b64342 1829{
21628685
DH
1830 const SCM cdr_expr = SCM_CDR (expr);
1831 const long length = scm_ilength (cdr_expr);
1832
1833 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
1834
1835 if (length == 0)
1836 {
1837 /* Special case: (or) is replaced by #f. */
1838 return SCM_BOOL_F;
1839 }
9fbee57e 1840 else
21628685
DH
1841 {
1842 SCM_SETCAR (expr, SCM_IM_OR);
1843 return expr;
1844 }
73b64342
MD
1845}
1846
212e58ed
DH
1847static SCM
1848unmemoize_or (const SCM expr, const SCM env)
1849{
1850 return scm_cons (scm_sym_or, unmemoize_exprs (SCM_CDR (expr), env));
1851}
1852
73b64342 1853
9fbee57e
DH
1854SCM_SYNTAX (s_quasiquote, "quasiquote", scm_makacro, scm_m_quasiquote);
1855SCM_GLOBAL_SYMBOL (scm_sym_quasiquote, s_quasiquote);
6f81708a
DH
1856SCM_GLOBAL_SYMBOL (scm_sym_unquote, "unquote");
1857SCM_GLOBAL_SYMBOL (scm_sym_uq_splicing, "unquote-splicing");
9fbee57e
DH
1858
1859/* Internal function to handle a quasiquotation: 'form' is the parameter in
1860 * the call (quasiquotation form), 'env' is the environment where unquoted
1861 * expressions will be evaluated, and 'depth' is the current quasiquotation
1862 * nesting level and is known to be greater than zero. */
1863static SCM
1864iqq (SCM form, SCM env, unsigned long int depth)
73b64342 1865{
a61f4e0c 1866 if (scm_is_pair (form))
c96d76b8 1867 {
21628685 1868 const SCM tmp = SCM_CAR (form);
bc36d050 1869 if (scm_is_eq (tmp, scm_sym_quasiquote))
9fbee57e 1870 {
21628685
DH
1871 const SCM args = SCM_CDR (form);
1872 ASSERT_SYNTAX (scm_ilength (args) == 1, s_expression, form);
9fbee57e
DH
1873 return scm_list_2 (tmp, iqq (SCM_CAR (args), env, depth + 1));
1874 }
bc36d050 1875 else if (scm_is_eq (tmp, scm_sym_unquote))
9fbee57e 1876 {
21628685
DH
1877 const SCM args = SCM_CDR (form);
1878 ASSERT_SYNTAX (scm_ilength (args) == 1, s_expression, form);
9fbee57e
DH
1879 if (depth - 1 == 0)
1880 return scm_eval_car (args, env);
1881 else
1882 return scm_list_2 (tmp, iqq (SCM_CAR (args), env, depth - 1));
1883 }
a61f4e0c 1884 else if (scm_is_pair (tmp)
bc36d050 1885 && scm_is_eq (SCM_CAR (tmp), scm_sym_uq_splicing))
9fbee57e 1886 {
21628685
DH
1887 const SCM args = SCM_CDR (tmp);
1888 ASSERT_SYNTAX (scm_ilength (args) == 1, s_expression, form);
9fbee57e
DH
1889 if (depth - 1 == 0)
1890 {
21628685
DH
1891 const SCM list = scm_eval_car (args, env);
1892 const SCM rest = SCM_CDR (form);
1893 ASSERT_SYNTAX_2 (scm_ilength (list) >= 0,
1894 s_splicing, list, form);
9fbee57e
DH
1895 return scm_append (scm_list_2 (list, iqq (rest, env, depth)));
1896 }
1897 else
1898 return scm_cons (iqq (SCM_CAR (form), env, depth - 1),
1899 iqq (SCM_CDR (form), env, depth));
1900 }
1901 else
1902 return scm_cons (iqq (SCM_CAR (form), env, depth),
1903 iqq (SCM_CDR (form), env, depth));
1904 }
4057a3e0
MV
1905 else if (scm_is_vector (form))
1906 return scm_vector (iqq (scm_vector_to_list (form), env, depth));
9fbee57e
DH
1907 else
1908 return form;
1909}
1910
1911SCM
21628685 1912scm_m_quasiquote (SCM expr, SCM env)
9fbee57e 1913{
21628685
DH
1914 const SCM cdr_expr = SCM_CDR (expr);
1915 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1916 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
1917 return iqq (SCM_CAR (cdr_expr), env, 1);
9fbee57e
DH
1918}
1919
1920
3b88ed2a 1921SCM_SYNTAX (s_quote, "quote", scm_i_makbimacro, scm_m_quote);
9fbee57e
DH
1922SCM_GLOBAL_SYMBOL (scm_sym_quote, s_quote);
1923
1924SCM
21628685 1925scm_m_quote (SCM expr, SCM env SCM_UNUSED)
9fbee57e 1926{
21628685
DH
1927 SCM quotee;
1928
1929 const SCM cdr_expr = SCM_CDR (expr);
1930 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1931 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
1932 quotee = SCM_CAR (cdr_expr);
5fb64383 1933 if (is_self_quoting_p (quotee))
21628685 1934 return quotee;
e7313a9d 1935
21628685 1936 SCM_SETCAR (expr, SCM_IM_QUOTE);
e7313a9d 1937 SCM_SETCDR (expr, quotee);
21628685 1938 return expr;
9fbee57e
DH
1939}
1940
e7313a9d
DH
1941static SCM
1942unmemoize_quote (const SCM expr, const SCM env SCM_UNUSED)
1943{
1944 return scm_list_2 (scm_sym_quote, SCM_CDR (expr));
1945}
1946
9fbee57e
DH
1947
1948/* Will go into the RnRS module when Guile is factorized.
3b88ed2a 1949SCM_SYNTAX (s_set_x, "set!", scm_i_makbimacro, scm_m_set_x); */
9fbee57e
DH
1950static const char s_set_x[] = "set!";
1951SCM_GLOBAL_SYMBOL (scm_sym_set_x, s_set_x);
1952
1953SCM
82b3e2c6 1954scm_m_set_x (SCM expr, SCM env SCM_UNUSED)
9fbee57e 1955{
82b3e2c6 1956 SCM variable;
36245b66 1957 SCM new_variable;
82b3e2c6
DH
1958
1959 const SCM cdr_expr = SCM_CDR (expr);
1960 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1961 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_expression, expr);
1962 variable = SCM_CAR (cdr_expr);
36245b66
DH
1963
1964 /* Memoize the variable form. */
cc95e00a 1965 ASSERT_SYNTAX_2 (scm_is_symbol (variable), s_bad_variable, variable, expr);
36245b66 1966 new_variable = lookup_symbol (variable, env);
36245b66
DH
1967 /* Leave the memoization of unbound symbols to lazy memoization: */
1968 if (SCM_UNBNDP (new_variable))
1969 new_variable = variable;
82b3e2c6
DH
1970
1971 SCM_SETCAR (expr, SCM_IM_SET_X);
36245b66 1972 SCM_SETCAR (cdr_expr, new_variable);
82b3e2c6 1973 return expr;
9fbee57e
DH
1974}
1975
212e58ed
DH
1976static SCM
1977unmemoize_set_x (const SCM expr, const SCM env)
1978{
1979 return scm_cons (scm_sym_set_x, unmemoize_exprs (SCM_CDR (expr), env));
1980}
1981
9fbee57e
DH
1982
1983/* Start of the memoizers for non-R5RS builtin macros. */
1984
1985
3b88ed2a 1986SCM_SYNTAX (s_atapply, "@apply", scm_i_makbimacro, scm_m_apply);
9fbee57e
DH
1987SCM_GLOBAL_SYMBOL (scm_sym_atapply, s_atapply);
1988SCM_GLOBAL_SYMBOL (scm_sym_apply, s_atapply + 1);
1989
1990SCM
82b3e2c6 1991scm_m_apply (SCM expr, SCM env SCM_UNUSED)
9fbee57e 1992{
82b3e2c6
DH
1993 const SCM cdr_expr = SCM_CDR (expr);
1994 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
1995 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_missing_expression, expr);
2e171178 1996
82b3e2c6
DH
1997 SCM_SETCAR (expr, SCM_IM_APPLY);
1998 return expr;
1999}
2e171178 2000
212e58ed
DH
2001static SCM
2002unmemoize_apply (const SCM expr, const SCM env)
2003{
2004 return scm_list_2 (scm_sym_atapply, unmemoize_exprs (SCM_CDR (expr), env));
2005}
2006
2e171178 2007
3b88ed2a 2008SCM_SYNTAX (s_atbind, "@bind", scm_i_makbimacro, scm_m_atbind);
73b64342 2009
82b3e2c6
DH
2010/* FIXME: The following explanation should go into the documentation: */
2011/* (@bind ((var init) ...) body ...) will assign the values of the `init's to
2012 * the global variables named by `var's (symbols, not evaluated), creating
2013 * them if they don't exist, executes body, and then restores the previous
2014 * values of the `var's. Additionally, whenever control leaves body, the
2015 * values of the `var's are saved and restored when control returns. It is an
2016 * error when a symbol appears more than once among the `var's. All `init's
2017 * are evaluated before any `var' is set.
2018 *
2019 * Think of this as `let' for dynamic scope.
2020 */
2021
2022/* (@bind ((var1 exp1) ... (varn expn)) body ...) is memoized into
2023 * (#@bind ((varn ... var1) . (exp1 ... expn)) body ...).
2024 *
2025 * FIXME - also implement `@bind*'.
2026 */
73b64342 2027SCM
82b3e2c6 2028scm_m_atbind (SCM expr, SCM env)
73b64342 2029{
82b3e2c6
DH
2030 SCM bindings;
2031 SCM rvariables;
2032 SCM inits;
2033 SCM variable_idx;
2e171178 2034
82b3e2c6 2035 const SCM top_level = scm_env_top_level (env);
73b64342 2036
82b3e2c6
DH
2037 const SCM cdr_expr = SCM_CDR (expr);
2038 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2039 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 2, s_missing_expression, expr);
2040 bindings = SCM_CAR (cdr_expr);
2041 check_bindings (bindings, expr);
2042 transform_bindings (bindings, expr, &rvariables, &inits);
2043
2044 for (variable_idx = rvariables;
a61f4e0c 2045 !scm_is_null (variable_idx);
82b3e2c6 2046 variable_idx = SCM_CDR (variable_idx))
73b64342 2047 {
82b3e2c6
DH
2048 /* The first call to scm_sym2var will look beyond the current module,
2049 * while the second call wont. */
2050 const SCM variable = SCM_CAR (variable_idx);
2051 SCM new_variable = scm_sym2var (variable, top_level, SCM_BOOL_F);
7888309b 2052 if (scm_is_false (new_variable))
82b3e2c6
DH
2053 new_variable = scm_sym2var (variable, top_level, SCM_BOOL_T);
2054 SCM_SETCAR (variable_idx, new_variable);
73b64342 2055 }
82b3e2c6
DH
2056
2057 SCM_SETCAR (expr, SCM_IM_BIND);
2058 SCM_SETCAR (cdr_expr, scm_cons (rvariables, inits));
2059 return expr;
73b64342 2060}
73b64342 2061
b0c5d67b 2062
3b88ed2a 2063SCM_SYNTAX(s_atcall_cc, "@call-with-current-continuation", scm_i_makbimacro, scm_m_cont);
9fbee57e
DH
2064SCM_GLOBAL_SYMBOL(scm_sym_atcall_cc, s_atcall_cc);
2065
9fbee57e 2066SCM
da48db62 2067scm_m_cont (SCM expr, SCM env SCM_UNUSED)
b0c5d67b 2068{
da48db62
DH
2069 const SCM cdr_expr = SCM_CDR (expr);
2070 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2071 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
2072
2073 SCM_SETCAR (expr, SCM_IM_CONT);
2074 return expr;
b0c5d67b 2075}
b0c5d67b 2076
212e58ed
DH
2077static SCM
2078unmemoize_atcall_cc (const SCM expr, const SCM env)
2079{
2080 return scm_list_2 (scm_sym_atcall_cc, unmemoize_exprs (SCM_CDR (expr), env));
2081}
2082
b0c5d67b 2083
3b88ed2a 2084SCM_SYNTAX (s_at_call_with_values, "@call-with-values", scm_i_makbimacro, scm_m_at_call_with_values);
9fbee57e 2085SCM_GLOBAL_SYMBOL(scm_sym_at_call_with_values, s_at_call_with_values);
b0c5d67b
DH
2086
2087SCM
da48db62 2088scm_m_at_call_with_values (SCM expr, SCM env SCM_UNUSED)
b0c5d67b 2089{
da48db62
DH
2090 const SCM cdr_expr = SCM_CDR (expr);
2091 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2092 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_expression, expr);
2093
2094 SCM_SETCAR (expr, SCM_IM_CALL_WITH_VALUES);
2095 return expr;
b0c5d67b 2096}
b0c5d67b 2097
212e58ed
DH
2098static SCM
2099unmemoize_at_call_with_values (const SCM expr, const SCM env)
2100{
2101 return scm_list_2 (scm_sym_at_call_with_values,
2102 unmemoize_exprs (SCM_CDR (expr), env));
2103}
2104
b0c5d67b 2105
3b88ed2a 2106SCM_SYNTAX (s_future, "future", scm_i_makbimacro, scm_m_future);
9fbee57e 2107SCM_GLOBAL_SYMBOL (scm_sym_future, s_future);
a513ead3 2108
9fbee57e
DH
2109/* Like promises, futures are implemented as closures with an empty
2110 * parameter list. Thus, (future <expression>) is transformed into
2111 * (#@future '() <expression>), where the empty list represents the
2112 * empty parameter list. This representation allows for easy creation
2113 * of the closure during evaluation. */
a513ead3 2114SCM
8ae95199 2115scm_m_future (SCM expr, SCM env)
a513ead3 2116{
8ae95199
DH
2117 const SCM new_expr = memoize_as_thunk_prototype (expr, env);
2118 SCM_SETCAR (new_expr, SCM_IM_FUTURE);
2119 return new_expr;
a513ead3
MV
2120}
2121
212e58ed
DH
2122static SCM
2123unmemoize_future (const SCM expr, const SCM env)
2124{
2125 const SCM thunk_expr = SCM_CADDR (expr);
2126 return scm_list_2 (scm_sym_future, unmemoize_expression (thunk_expr, env));
2127}
2128
9fbee57e 2129
3b88ed2a 2130SCM_SYNTAX (s_gset_x, "set!", scm_i_makbimacro, scm_m_generalized_set_x);
9fbee57e
DH
2131SCM_SYMBOL (scm_sym_setter, "setter");
2132
2133SCM
7893dbbf 2134scm_m_generalized_set_x (SCM expr, SCM env)
9fbee57e 2135{
7893dbbf 2136 SCM target, exp_target;
da48db62
DH
2137
2138 const SCM cdr_expr = SCM_CDR (expr);
2139 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2140 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_expression, expr);
2141
2142 target = SCM_CAR (cdr_expr);
a61f4e0c 2143 if (!scm_is_pair (target))
da48db62
DH
2144 {
2145 /* R5RS usage */
2146 return scm_m_set_x (expr, env);
2147 }
9fbee57e 2148 else
da48db62
DH
2149 {
2150 /* (set! (foo bar ...) baz) becomes ((setter foo) bar ... baz) */
7893dbbf
MV
2151 /* Macroexpanding the target might return things of the form
2152 (begin <atom>). In that case, <atom> must be a symbol or a
2153 variable and we memoize to (set! <atom> ...).
2154 */
2b189e65 2155 exp_target = macroexp (target, env);
bc36d050 2156 if (scm_is_eq (SCM_CAR (exp_target), SCM_IM_BEGIN)
a61f4e0c
MV
2157 && !scm_is_null (SCM_CDR (exp_target))
2158 && scm_is_null (SCM_CDDR (exp_target)))
7893dbbf
MV
2159 {
2160 exp_target= SCM_CADR (exp_target);
cc95e00a 2161 ASSERT_SYNTAX_2 (scm_is_symbol (exp_target)
6d1a2e9f
MV
2162 || SCM_VARIABLEP (exp_target),
2163 s_bad_variable, exp_target, expr);
7893dbbf
MV
2164 return scm_cons (SCM_IM_SET_X, scm_cons (exp_target,
2165 SCM_CDR (cdr_expr)));
2166 }
2167 else
2168 {
2169 const SCM setter_proc_tail = scm_list_1 (SCM_CAR (target));
2170 const SCM setter_proc = scm_cons_source (expr, scm_sym_setter,
2171 setter_proc_tail);
da48db62 2172
7893dbbf
MV
2173 const SCM cddr_expr = SCM_CDR (cdr_expr);
2174 const SCM setter_args = scm_append_x (scm_list_2 (SCM_CDR (target),
2175 cddr_expr));
da48db62 2176
7893dbbf
MV
2177 SCM_SETCAR (expr, setter_proc);
2178 SCM_SETCDR (expr, setter_args);
2179 return expr;
2180 }
da48db62 2181 }
9fbee57e
DH
2182}
2183
2184
a4aa2134
DH
2185/* @slot-ref is bound privately in the (oop goops) module from goops.c. As
2186 * soon as the module system allows us to more freely create bindings in
2187 * arbitrary modules during the startup phase, the code from goops.c should be
2188 * moved here. */
212e58ed
DH
2189
2190SCM_SYMBOL (sym_atslot_ref, "@slot-ref");
2191
9fbee57e 2192SCM
9a848baf 2193scm_m_atslot_ref (SCM expr, SCM env SCM_UNUSED)
9fbee57e 2194{
9a848baf
DH
2195 SCM slot_nr;
2196
2197 const SCM cdr_expr = SCM_CDR (expr);
2198 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2199 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 2, s_expression, expr);
2200 slot_nr = SCM_CADR (cdr_expr);
e11e83f3 2201 ASSERT_SYNTAX_2 (SCM_I_INUMP (slot_nr), s_bad_slot_number, slot_nr, expr);
9fbee57e 2202
9a848baf 2203 SCM_SETCAR (expr, SCM_IM_SLOT_REF);
e7313a9d 2204 SCM_SETCDR (cdr_expr, slot_nr);
9a848baf
DH
2205 return expr;
2206}
9fbee57e 2207
212e58ed
DH
2208static SCM
2209unmemoize_atslot_ref (const SCM expr, const SCM env)
2210{
2211 const SCM instance = SCM_CADR (expr);
2212 const SCM um_instance = unmemoize_expression (instance, env);
2213 const SCM slot_nr = SCM_CDDR (expr);
2214 return scm_list_3 (sym_atslot_ref, um_instance, slot_nr);
2215}
2216
9fbee57e 2217
a4aa2134
DH
2218/* @slot-set! is bound privately in the (oop goops) module from goops.c. As
2219 * soon as the module system allows us to more freely create bindings in
2220 * arbitrary modules during the startup phase, the code from goops.c should be
2221 * moved here. */
212e58ed
DH
2222
2223SCM_SYMBOL (sym_atslot_set_x, "@slot-set!");
2224
9fbee57e 2225SCM
9a848baf 2226scm_m_atslot_set_x (SCM expr, SCM env SCM_UNUSED)
9fbee57e 2227{
9a848baf
DH
2228 SCM slot_nr;
2229
2230 const SCM cdr_expr = SCM_CDR (expr);
2231 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2232 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 3, s_expression, expr);
2233 slot_nr = SCM_CADR (cdr_expr);
e11e83f3 2234 ASSERT_SYNTAX_2 (SCM_I_INUMP (slot_nr), s_bad_slot_number, slot_nr, expr);
9a848baf
DH
2235
2236 SCM_SETCAR (expr, SCM_IM_SLOT_SET_X);
2237 return expr;
9fbee57e 2238}
9fbee57e 2239
212e58ed
DH
2240static SCM
2241unmemoize_atslot_set_x (const SCM expr, const SCM env)
2242{
2243 const SCM cdr_expr = SCM_CDR (expr);
2244 const SCM instance = SCM_CAR (cdr_expr);
2245 const SCM um_instance = unmemoize_expression (instance, env);
2246 const SCM cddr_expr = SCM_CDR (cdr_expr);
2247 const SCM slot_nr = SCM_CAR (cddr_expr);
2248 const SCM cdddr_expr = SCM_CDR (cddr_expr);
2249 const SCM value = SCM_CAR (cdddr_expr);
2250 const SCM um_value = unmemoize_expression (value, env);
2251 return scm_list_4 (sym_atslot_set_x, um_instance, slot_nr, um_value);
2252}
2253
9fbee57e
DH
2254
2255#if SCM_ENABLE_ELISP
2256
70c1c108
DH
2257static const char s_defun[] = "Symbol's function definition is void";
2258
3b88ed2a 2259SCM_SYNTAX (s_nil_cond, "nil-cond", scm_i_makbimacro, scm_m_nil_cond);
9fbee57e 2260
70c1c108
DH
2261/* nil-cond expressions have the form
2262 * (nil-cond COND VAL COND VAL ... ELSEVAL) */
9fbee57e 2263SCM
70c1c108 2264scm_m_nil_cond (SCM expr, SCM env SCM_UNUSED)
9fbee57e 2265{
70c1c108
DH
2266 const long length = scm_ilength (SCM_CDR (expr));
2267 ASSERT_SYNTAX (length >= 0, s_bad_expression, expr);
2268 ASSERT_SYNTAX (length >= 1 && (length % 2) == 1, s_expression, expr);
2269
2270 SCM_SETCAR (expr, SCM_IM_NIL_COND);
2271 return expr;
9fbee57e
DH
2272}
2273
2274
3b88ed2a 2275SCM_SYNTAX (s_atfop, "@fop", scm_i_makbimacro, scm_m_atfop);
9fbee57e 2276
70c1c108
DH
2277/* The @fop-macro handles procedure and macro applications for elisp. The
2278 * input expression must have the form
2279 * (@fop <var> (transformer-macro <expr> ...))
2280 * where <var> must be a symbol. The expression is transformed into the
2281 * memoized form of either
2282 * (apply <un-aliased var> (transformer-macro <expr> ...))
2283 * if the value of var (across all aliasing) is not a macro, or
2284 * (<un-aliased var> <expr> ...)
2285 * if var is a macro. */
9fbee57e 2286SCM
70c1c108 2287scm_m_atfop (SCM expr, SCM env SCM_UNUSED)
9fbee57e 2288{
70c1c108
DH
2289 SCM location;
2290 SCM symbol;
2291
2292 const SCM cdr_expr = SCM_CDR (expr);
2293 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2294 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 1, s_missing_expression, expr);
2295
2296 symbol = SCM_CAR (cdr_expr);
cc95e00a 2297 ASSERT_SYNTAX_2 (scm_is_symbol (symbol), s_bad_variable, symbol, expr);
70c1c108
DH
2298
2299 location = scm_symbol_fref (symbol);
2300 ASSERT_SYNTAX_2 (SCM_VARIABLEP (location), s_defun, symbol, expr);
2301
2302 /* The elisp function `defalias' allows to define aliases for symbols. To
2303 * look up such definitions, the chain of symbol definitions has to be
2304 * followed up to the terminal symbol. */
cc95e00a 2305 while (scm_is_symbol (SCM_VARIABLE_REF (location)))
9fbee57e 2306 {
70c1c108
DH
2307 const SCM alias = SCM_VARIABLE_REF (location);
2308 location = scm_symbol_fref (alias);
2309 ASSERT_SYNTAX_2 (SCM_VARIABLEP (location), s_defun, symbol, expr);
9fbee57e 2310 }
70c1c108
DH
2311
2312 /* Memoize the value location belonging to the terminal symbol. */
2313 SCM_SETCAR (cdr_expr, location);
2314
2315 if (!SCM_MACROP (SCM_VARIABLE_REF (location)))
9fbee57e 2316 {
70c1c108
DH
2317 /* Since the location does not contain a macro, the form is a procedure
2318 * application. Replace `@fop' by `@apply' and transform the expression
2319 * including the `transformer-macro'. */
2320 SCM_SETCAR (expr, SCM_IM_APPLY);
2321 return expr;
2322 }
2323 else
2324 {
2325 /* Since the location contains a macro, the arguments should not be
2326 * transformed, so the `transformer-macro' is cut out. The resulting
2327 * expression starts with the memoized variable, that is at the cdr of
2328 * the input expression. */
2329 SCM_SETCDR (cdr_expr, SCM_CDADR (cdr_expr));
2330 return cdr_expr;
9fbee57e 2331 }
9fbee57e
DH
2332}
2333
2334#endif /* SCM_ENABLE_ELISP */
2335
2336
212e58ed
DH
2337static SCM
2338unmemoize_builtin_macro (const SCM expr, const SCM env)
2339{
2340 switch (ISYMNUM (SCM_CAR (expr)))
2341 {
2342 case (ISYMNUM (SCM_IM_AND)):
2343 return unmemoize_and (expr, env);
2344
2345 case (ISYMNUM (SCM_IM_BEGIN)):
2346 return unmemoize_begin (expr, env);
2347
2348 case (ISYMNUM (SCM_IM_CASE)):
2349 return unmemoize_case (expr, env);
2350
2351 case (ISYMNUM (SCM_IM_COND)):
2352 return unmemoize_cond (expr, env);
2353
2354 case (ISYMNUM (SCM_IM_DELAY)):
2355 return unmemoize_delay (expr, env);
2356
2357 case (ISYMNUM (SCM_IM_DO)):
2358 return unmemoize_do (expr, env);
2359
2360 case (ISYMNUM (SCM_IM_IF)):
2361 return unmemoize_if (expr, env);
2362
2363 case (ISYMNUM (SCM_IM_LAMBDA)):
2364 return unmemoize_lambda (expr, env);
2365
2366 case (ISYMNUM (SCM_IM_LET)):
2367 return unmemoize_let (expr, env);
2368
2369 case (ISYMNUM (SCM_IM_LETREC)):
2370 return unmemoize_letrec (expr, env);
2371
2372 case (ISYMNUM (SCM_IM_LETSTAR)):
2373 return unmemoize_letstar (expr, env);
2374
2375 case (ISYMNUM (SCM_IM_OR)):
2376 return unmemoize_or (expr, env);
2377
2378 case (ISYMNUM (SCM_IM_QUOTE)):
2379 return unmemoize_quote (expr, env);
2380
2381 case (ISYMNUM (SCM_IM_SET_X)):
2382 return unmemoize_set_x (expr, env);
2383
2384 case (ISYMNUM (SCM_IM_APPLY)):
2385 return unmemoize_apply (expr, env);
2386
2387 case (ISYMNUM (SCM_IM_BIND)):
2388 return unmemoize_exprs (expr, env); /* FIXME */
2389
2390 case (ISYMNUM (SCM_IM_CONT)):
2391 return unmemoize_atcall_cc (expr, env);
2392
2393 case (ISYMNUM (SCM_IM_CALL_WITH_VALUES)):
2394 return unmemoize_at_call_with_values (expr, env);
2395
2396 case (ISYMNUM (SCM_IM_FUTURE)):
2397 return unmemoize_future (expr, env);
2398
2399 case (ISYMNUM (SCM_IM_SLOT_REF)):
2400 return unmemoize_atslot_ref (expr, env);
2401
2402 case (ISYMNUM (SCM_IM_SLOT_SET_X)):
2403 return unmemoize_atslot_set_x (expr, env);
2404
2405 case (ISYMNUM (SCM_IM_NIL_COND)):
2406 return unmemoize_exprs (expr, env); /* FIXME */
2407
2408 default:
2409 return unmemoize_exprs (expr, env); /* FIXME */
2410 }
2411}
2412
2413
9fcf3cbb
DH
2414/* scm_i_unmemocopy_expr and scm_i_unmemocopy_body take a memoized expression
2415 * respectively a memoized body together with its environment and rewrite it
2416 * to its original form. Thus, these functions are the inversion of the
2417 * rewrite rules above. The procedure is not optimized for speed. It's used
2418 * in scm_i_unmemoize_expr, scm_procedure_source, macro_print and scm_iprin1.
212e58ed
DH
2419 *
2420 * Unmemoizing is not a reliable process. You cannot in general expect to get
2421 * the original source back.
2422 *
2423 * However, GOOPS currently relies on this for method compilation. This ought
2424 * to change. */
2425
2426SCM
9fcf3cbb
DH
2427scm_i_unmemocopy_expr (SCM expr, SCM env)
2428{
2429 const SCM source_properties = scm_whash_lookup (scm_source_whash, expr);
2430 const SCM um_expr = unmemoize_expression (expr, env);
2431
7888309b 2432 if (scm_is_true (source_properties))
9fcf3cbb
DH
2433 scm_whash_insert (scm_source_whash, um_expr, source_properties);
2434
2435 return um_expr;
2436}
2437
2438SCM
2439scm_i_unmemocopy_body (SCM forms, SCM env)
212e58ed
DH
2440{
2441 const SCM source_properties = scm_whash_lookup (scm_source_whash, forms);
2442 const SCM um_forms = unmemoize_exprs (forms, env);
2443
7888309b 2444 if (scm_is_true (source_properties))
212e58ed
DH
2445 scm_whash_insert (scm_source_whash, um_forms, source_properties);
2446
2447 return um_forms;
2448}
2449
2450
434f2f7a 2451#if (SCM_ENABLE_DEPRECATED == 1)
f58c472a 2452
434f2f7a
DH
2453/* Deprecated in guile 1.7.0 on 2003-11-09. */
2454SCM
2455scm_m_expand_body (SCM exprs, SCM env)
2456{
2457 scm_c_issue_deprecation_warning
2458 ("`scm_m_expand_body' is deprecated.");
2459 m_expand_body (exprs, env);
2460 return exprs;
2461}
f58c472a 2462
f58c472a
DH
2463
2464SCM_SYNTAX (s_undefine, "undefine", scm_makacro, scm_m_undefine);
2465
2466SCM
70c1c108 2467scm_m_undefine (SCM expr, SCM env)
f58c472a 2468{
70c1c108
DH
2469 SCM variable;
2470 SCM location;
2471
2472 const SCM cdr_expr = SCM_CDR (expr);
2473 ASSERT_SYNTAX (SCM_TOP_LEVEL (env), "Bad undefine placement in", expr);
2474 ASSERT_SYNTAX (scm_ilength (cdr_expr) >= 0, s_bad_expression, expr);
2475 ASSERT_SYNTAX (scm_ilength (cdr_expr) == 1, s_expression, expr);
2476
2b189e65
MV
2477 scm_c_issue_deprecation_warning
2478 ("`undefine' is deprecated.\n");
2479
70c1c108 2480 variable = SCM_CAR (cdr_expr);
cc95e00a 2481 ASSERT_SYNTAX_2 (scm_is_symbol (variable), s_bad_variable, variable, expr);
70c1c108 2482 location = scm_sym2var (variable, scm_env_top_level (env), SCM_BOOL_F);
7888309b 2483 ASSERT_SYNTAX_2 (scm_is_true (location)
70c1c108
DH
2484 && !SCM_UNBNDP (SCM_VARIABLE_REF (location)),
2485 "variable already unbound ", variable, expr);
2486 SCM_VARIABLE_SET (location, SCM_UNDEFINED);
f58c472a 2487 return SCM_UNSPECIFIED;
f58c472a
DH
2488}
2489
26d5b9b4
MD
2490SCM
2491scm_macroexp (SCM x, SCM env)
2492{
2b189e65
MV
2493 scm_c_issue_deprecation_warning
2494 ("`scm_macroexp' is deprecated.");
2495 return macroexp (x, env);
26d5b9b4 2496}
73b64342 2497
6f81708a
DH
2498#endif
2499
60a49842 2500
212e58ed 2501#if (SCM_ENABLE_DEPRECATED == 1)
26d5b9b4 2502
212e58ed
DH
2503SCM
2504scm_unmemocar (SCM form, SCM env)
8ea46249 2505{
212e58ed
DH
2506 scm_c_issue_deprecation_warning
2507 ("`scm_unmemocar' is deprecated.");
60a49842 2508
a61f4e0c 2509 if (!scm_is_pair (form))
60a49842
DH
2510 return form;
2511 else
2512 {
2513 SCM c = SCM_CAR (form);
2514 if (SCM_VARIABLEP (c))
2515 {
2516 SCM sym = scm_module_reverse_lookup (scm_env_module (env), c);
7888309b 2517 if (scm_is_false (sym))
60a49842
DH
2518 sym = sym_three_question_marks;
2519 SCM_SETCAR (form, sym);
2520 }
2521 else if (SCM_ILOCP (c))
2522 {
2523 unsigned long int ir;
2524
2525 for (ir = SCM_IFRAME (c); ir != 0; --ir)
2526 env = SCM_CDR (env);
2527 env = SCM_CAAR (env);
2528 for (ir = SCM_IDIST (c); ir != 0; --ir)
2529 env = SCM_CDR (env);
f62b9dff 2530
60a49842
DH
2531 SCM_SETCAR (form, SCM_ICDRP (c) ? env : SCM_CAR (env));
2532 }
2533 return form;
2534 }
2535}
2536
434f2f7a
DH
2537#endif
2538
6f81708a
DH
2539/*****************************************************************************/
2540/*****************************************************************************/
2541/* The definitions for execution start here. */
2542/*****************************************************************************/
2543/*****************************************************************************/
2544
2545SCM_GLOBAL_SYMBOL (scm_sym_enter_frame, "enter-frame");
2546SCM_GLOBAL_SYMBOL (scm_sym_apply_frame, "apply-frame");
2547SCM_GLOBAL_SYMBOL (scm_sym_exit_frame, "exit-frame");
2548SCM_GLOBAL_SYMBOL (scm_sym_trace, "trace");
7c9c0169 2549SCM_SYMBOL (sym_instead, "instead");
6f81708a
DH
2550
2551/* A function object to implement "apply" for non-closure functions. */
2552static SCM f_apply;
2553/* An endless list consisting of #<undefined> objects: */
2554static SCM undefineds;
2555
2556
2557int
6e8d25a6 2558scm_badargsp (SCM formals, SCM args)
0f2d19dd 2559{
a61f4e0c 2560 while (!scm_is_null (formals))
0f2d19dd 2561 {
a61f4e0c 2562 if (!scm_is_pair (formals))
ff467021 2563 return 0;
a61f4e0c 2564 if (scm_is_null (args))
ff467021 2565 return 1;
0f2d19dd
JB
2566 formals = SCM_CDR (formals);
2567 args = SCM_CDR (args);
2568 }
a61f4e0c 2569 return !scm_is_null (args) ? 1 : 0;
0f2d19dd 2570}
a392ee15 2571
0f2d19dd 2572\f
62360b89 2573
434f2f7a
DH
2574/* The evaluator contains a plethora of EVAL symbols. This is an attempt at
2575 * explanation.
62360b89 2576 *
434f2f7a
DH
2577 * The following macros should be used in code which is read twice (where the
2578 * choice of evaluator is hard soldered):
62360b89 2579 *
434f2f7a
DH
2580 * CEVAL is the symbol used within one evaluator to call itself.
2581 * Originally, it is defined to ceval, but is redefined to deval during the
2582 * second pass.
62360b89 2583 *
385609b9 2584 * SCM_I_EVALIM is used when it is known that the expression is an
62360b89 2585 * immediate. (This macro never calls an evaluator.)
434f2f7a
DH
2586 *
2587 * EVAL evaluates an expression that is expected to have its symbols already
2588 * memoized. Expressions that are not of the form '(<form> <form> ...)' are
2589 * evaluated inline without calling an evaluator.
2590 *
2591 * EVALCAR evaluates the car of an expression 'X:(Y:<form> <form> ...)',
2592 * potentially replacing a symbol at the position Y:<form> by its memoized
2593 * variable. If Y:<form> is not of the form '(<form> <form> ...)', the
2594 * evaluation is performed inline without calling an evaluator.
62360b89
DH
2595 *
2596 * The following macros should be used in code which is read once
2597 * (where the choice of evaluator is dynamic):
2598 *
385609b9 2599 * SCM_I_XEVAL corresponds to EVAL, but uses ceval *or* deval depending on the
434f2f7a 2600 * debugging mode.
62360b89 2601 *
385609b9 2602 * SCM_I_XEVALCAR corresponds to EVALCAR, but uses ceval *or* deval depending
434f2f7a 2603 * on the debugging mode.
62360b89
DH
2604 *
2605 * The main motivation for keeping this plethora is efficiency
2606 * together with maintainability (=> locality of code).
2607 */
2608
434f2f7a
DH
2609static SCM ceval (SCM x, SCM env);
2610static SCM deval (SCM x, SCM env);
2611#define CEVAL ceval
2612
62360b89 2613
385609b9 2614#define SCM_I_EVALIM2(x) \
bc36d050 2615 ((scm_is_eq ((x), SCM_EOL) \
62360b89
DH
2616 ? syntax_error (s_empty_combination, (x), SCM_UNDEFINED), 0 \
2617 : 0), \
2618 (x))
2619
385609b9 2620#define SCM_I_EVALIM(x, env) (SCM_ILOCP (x) \
434f2f7a 2621 ? *scm_ilookup ((x), (env)) \
385609b9 2622 : SCM_I_EVALIM2(x))
62360b89 2623
385609b9 2624#define SCM_I_XEVAL(x, env) \
434f2f7a 2625 (SCM_IMP (x) \
385609b9 2626 ? SCM_I_EVALIM2 (x) \
434f2f7a
DH
2627 : (SCM_VARIABLEP (x) \
2628 ? SCM_VARIABLE_REF (x) \
a61f4e0c 2629 : (scm_is_pair (x) \
434f2f7a
DH
2630 ? (scm_debug_mode_p \
2631 ? deval ((x), (env)) \
2632 : ceval ((x), (env))) \
2633 : (x))))
2634
385609b9 2635#define SCM_I_XEVALCAR(x, env) \
434f2f7a 2636 (SCM_IMP (SCM_CAR (x)) \
385609b9 2637 ? SCM_I_EVALIM (SCM_CAR (x), (env)) \
434f2f7a
DH
2638 : (SCM_VARIABLEP (SCM_CAR (x)) \
2639 ? SCM_VARIABLE_REF (SCM_CAR (x)) \
a61f4e0c 2640 : (scm_is_pair (SCM_CAR (x)) \
434f2f7a
DH
2641 ? (scm_debug_mode_p \
2642 ? deval (SCM_CAR (x), (env)) \
2643 : ceval (SCM_CAR (x), (env))) \
cc95e00a 2644 : (!scm_is_symbol (SCM_CAR (x)) \
434f2f7a
DH
2645 ? SCM_CAR (x) \
2646 : *scm_lookupcar ((x), (env), 1)))))
2647
2648#define EVAL(x, env) \
2649 (SCM_IMP (x) \
385609b9 2650 ? SCM_I_EVALIM ((x), (env)) \
434f2f7a
DH
2651 : (SCM_VARIABLEP (x) \
2652 ? SCM_VARIABLE_REF (x) \
a61f4e0c 2653 : (scm_is_pair (x) \
434f2f7a
DH
2654 ? CEVAL ((x), (env)) \
2655 : (x))))
2656
2657#define EVALCAR(x, env) \
2658 (SCM_IMP (SCM_CAR (x)) \
385609b9 2659 ? SCM_I_EVALIM (SCM_CAR (x), (env)) \
434f2f7a
DH
2660 : (SCM_VARIABLEP (SCM_CAR (x)) \
2661 ? SCM_VARIABLE_REF (SCM_CAR (x)) \
a61f4e0c 2662 : (scm_is_pair (SCM_CAR (x)) \
434f2f7a 2663 ? CEVAL (SCM_CAR (x), (env)) \
cc95e00a 2664 : (!scm_is_symbol (SCM_CAR (x)) \
434f2f7a
DH
2665 ? SCM_CAR (x) \
2666 : *scm_lookupcar ((x), (env), 1)))))
62360b89 2667
d1138028 2668scm_i_pthread_mutex_t source_mutex;
62360b89
DH
2669
2670
e5156567
DH
2671/* Lookup a given local variable in an environment. The local variable is
2672 * given as an iloc, that is a triple <frame, binding, last?>, where frame
2673 * indicates the relative number of the environment frame (counting upwards
2674 * from the innermost environment frame), binding indicates the number of the
2675 * binding within the frame, and last? (which is extracted from the iloc using
2676 * the macro SCM_ICDRP) indicates whether the binding forms the binding at the
2677 * very end of the improper list of bindings. */
2678SCM *
2679scm_ilookup (SCM iloc, SCM env)
2680{
2681 unsigned int frame_nr = SCM_IFRAME (iloc);
2682 unsigned int binding_nr = SCM_IDIST (iloc);
2683 SCM frames = env;
2684 SCM bindings;
2685
2686 for (; 0 != frame_nr; --frame_nr)
2687 frames = SCM_CDR (frames);
2688
2689 bindings = SCM_CAR (frames);
2690 for (; 0 != binding_nr; --binding_nr)
2691 bindings = SCM_CDR (bindings);
2692
2693 if (SCM_ICDRP (iloc))
2694 return SCM_CDRLOC (bindings);
2695 return SCM_CARLOC (SCM_CDR (bindings));
2696}
2697
2698
2699SCM_SYMBOL (scm_unbound_variable_key, "unbound-variable");
2700
2701static void error_unbound_variable (SCM symbol) SCM_NORETURN;
2d0c133f
MV
2702static void error_defined_variable (SCM symbol) SCM_NORETURN;
2703
2704/* Call this for variables that are unfound.
2705 */
e5156567
DH
2706static void
2707error_unbound_variable (SCM symbol)
2708{
2709 scm_error (scm_unbound_variable_key, NULL,
2710 "Unbound variable: ~S",
2711 scm_list_1 (symbol), SCM_BOOL_F);
2712}
2713
2d0c133f
MV
2714/* Call this for variables that are found but contain SCM_UNDEFINED.
2715 */
2716static void
2717error_defined_variable (SCM symbol)
2718{
2719 /* We use the 'unbound-variable' key here as well, since it
2720 basically is the same kind of error, with a slight variation in
2721 the displayed message.
2722 */
2723 scm_error (scm_unbound_variable_key, NULL,
a03bad87 2724 "Variable used before given a value: ~S",
2d0c133f
MV
2725 scm_list_1 (symbol), SCM_BOOL_F);
2726}
2727
e5156567
DH
2728
2729/* The Lookup Car Race
2730 - by Eva Luator
2731
2732 Memoization of variables and special forms is done while executing
2733 the code for the first time. As long as there is only one thread
2734 everything is fine, but as soon as two threads execute the same
2735 code concurrently `for the first time' they can come into conflict.
2736
2737 This memoization includes rewriting variable references into more
2738 efficient forms and expanding macros. Furthermore, macro expansion
2739 includes `compiling' special forms like `let', `cond', etc. into
2740 tree-code instructions.
2741
2742 There shouldn't normally be a problem with memoizing local and
2743 global variable references (into ilocs and variables), because all
2744 threads will mutate the code in *exactly* the same way and (if I
2745 read the C code correctly) it is not possible to observe a half-way
2746 mutated cons cell. The lookup procedure can handle this
2747 transparently without any critical sections.
2748
2749 It is different with macro expansion, because macro expansion
2750 happens outside of the lookup procedure and can't be
2751 undone. Therefore the lookup procedure can't cope with it. It has
2752 to indicate failure when it detects a lost race and hope that the
2753 caller can handle it. Luckily, it turns out that this is the case.
2754
2755 An example to illustrate this: Suppose that the following form will
2756 be memoized concurrently by two threads
2757
2758 (let ((x 12)) x)
2759
2760 Let's first examine the lookup of X in the body. The first thread
2761 decides that it has to find the symbol "x" in the environment and
2762 starts to scan it. Then the other thread takes over and actually
2763 overtakes the first. It looks up "x" and substitutes an
2764 appropriate iloc for it. Now the first thread continues and
2765 completes its lookup. It comes to exactly the same conclusions as
2766 the second one and could - without much ado - just overwrite the
2767 iloc with the same iloc.
2768
2769 But let's see what will happen when the race occurs while looking
2770 up the symbol "let" at the start of the form. It could happen that
2771 the second thread interrupts the lookup of the first thread and not
2772 only substitutes a variable for it but goes right ahead and
2773 replaces it with the compiled form (#@let* (x 12) x). Now, when
2774 the first thread completes its lookup, it would replace the #@let*
2775 with a variable containing the "let" binding, effectively reverting
2776 the form to (let (x 12) x). This is wrong. It has to detect that
2777 it has lost the race and the evaluator has to reconsider the
2778 changed form completely.
2779
2780 This race condition could be resolved with some kind of traffic
2781 light (like mutexes) around scm_lookupcar, but I think that it is
2782 best to avoid them in this case. They would serialize memoization
2783 completely and because lookup involves calling arbitrary Scheme
2784 code (via the lookup-thunk), threads could be blocked for an
2785 arbitrary amount of time or even deadlock. But with the current
2786 solution a lot of unnecessary work is potentially done. */
2787
2788/* SCM_LOOKUPCAR1 is what SCM_LOOKUPCAR used to be but is allowed to
2789 return NULL to indicate a failed lookup due to some race conditions
2790 between threads. This only happens when VLOC is the first cell of
2791 a special form that will eventually be memoized (like `let', etc.)
2792 In that case the whole lookup is bogus and the caller has to
2793 reconsider the complete special form.
2794
2795 SCM_LOOKUPCAR is still there, of course. It just calls
2796 SCM_LOOKUPCAR1 and aborts on receiving NULL. So SCM_LOOKUPCAR
2797 should only be called when it is known that VLOC is not the first
2798 pair of a special form. Otherwise, use SCM_LOOKUPCAR1 and check
2799 for NULL. I think I've found the only places where this
2800 applies. */
2801
2802static SCM *
2803scm_lookupcar1 (SCM vloc, SCM genv, int check)
2804{
2805 SCM env = genv;
2806 register SCM *al, fl, var = SCM_CAR (vloc);
2807 register SCM iloc = SCM_ILOC00;
2808 for (; SCM_NIMP (env); env = SCM_CDR (env))
2809 {
a61f4e0c 2810 if (!scm_is_pair (SCM_CAR (env)))
e5156567
DH
2811 break;
2812 al = SCM_CARLOC (env);
2813 for (fl = SCM_CAR (*al); SCM_NIMP (fl); fl = SCM_CDR (fl))
2814 {
a61f4e0c 2815 if (!scm_is_pair (fl))
e5156567 2816 {
bc36d050 2817 if (scm_is_eq (fl, var))
e5156567 2818 {
bc36d050 2819 if (!scm_is_eq (SCM_CAR (vloc), var))
e5156567
DH
2820 goto race;
2821 SCM_SET_CELL_WORD_0 (vloc, SCM_UNPACK (iloc) + SCM_ICDR);
2822 return SCM_CDRLOC (*al);
2823 }
2824 else
2825 break;
2826 }
2827 al = SCM_CDRLOC (*al);
bc36d050 2828 if (scm_is_eq (SCM_CAR (fl), var))
e5156567
DH
2829 {
2830 if (SCM_UNBNDP (SCM_CAR (*al)))
2d0c133f 2831 error_defined_variable (var);
bc36d050 2832 if (!scm_is_eq (SCM_CAR (vloc), var))
e5156567
DH
2833 goto race;
2834 SCM_SETCAR (vloc, iloc);
2835 return SCM_CARLOC (*al);
2836 }
2837 iloc = SCM_PACK (SCM_UNPACK (iloc) + SCM_IDINC);
2838 }
2839 iloc = SCM_PACK ((~SCM_IDSTMSK) & (SCM_UNPACK(iloc) + SCM_IFRINC));
2840 }
2841 {
2842 SCM top_thunk, real_var;
2843 if (SCM_NIMP (env))
2844 {
2845 top_thunk = SCM_CAR (env); /* env now refers to a
2846 top level env thunk */
2847 env = SCM_CDR (env);
2848 }
2849 else
2850 top_thunk = SCM_BOOL_F;
2851 real_var = scm_sym2var (var, top_thunk, SCM_BOOL_F);
7888309b 2852 if (scm_is_false (real_var))
e5156567
DH
2853 goto errout;
2854
a61f4e0c 2855 if (!scm_is_null (env) || SCM_UNBNDP (SCM_VARIABLE_REF (real_var)))
e5156567
DH
2856 {
2857 errout:
2858 if (check)
2859 {
a61f4e0c 2860 if (scm_is_null (env))
e5156567
DH
2861 error_unbound_variable (var);
2862 else
2863 scm_misc_error (NULL, "Damaged environment: ~S",
2864 scm_list_1 (var));
2865 }
2866 else
2867 {
2868 /* A variable could not be found, but we shall
2869 not throw an error. */
2870 static SCM undef_object = SCM_UNDEFINED;
2871 return &undef_object;
2872 }
2873 }
2874
bc36d050 2875 if (!scm_is_eq (SCM_CAR (vloc), var))
e5156567
DH
2876 {
2877 /* Some other thread has changed the very cell we are working
2878 on. In effect, it must have done our job or messed it up
2879 completely. */
2880 race:
2881 var = SCM_CAR (vloc);
2882 if (SCM_VARIABLEP (var))
2883 return SCM_VARIABLE_LOC (var);
2884 if (SCM_ILOCP (var))
2885 return scm_ilookup (var, genv);
2886 /* We can't cope with anything else than variables and ilocs. When
2887 a special form has been memoized (i.e. `let' into `#@let') we
2888 return NULL and expect the calling function to do the right
2889 thing. For the evaluator, this means going back and redoing
2890 the dispatch on the car of the form. */
2891 return NULL;
2892 }
2893
2894 SCM_SETCAR (vloc, real_var);
2895 return SCM_VARIABLE_LOC (real_var);
2896 }
2897}
2898
2899SCM *
2900scm_lookupcar (SCM vloc, SCM genv, int check)
2901{
2902 SCM *loc = scm_lookupcar1 (vloc, genv, check);
2903 if (loc == NULL)
2904 abort ();
2905 return loc;
2906}
2907
2908
36245b66
DH
2909/* During execution, look up a symbol in the top level of the given local
2910 * environment and return the corresponding variable object. If no binding
2911 * for the symbol can be found, an 'Unbound variable' error is signalled. */
2912static SCM
2913lazy_memoize_variable (const SCM symbol, const SCM environment)
2914{
2915 const SCM top_level = scm_env_top_level (environment);
2916 const SCM variable = scm_sym2var (symbol, top_level, SCM_BOOL_F);
2917
7888309b 2918 if (scm_is_false (variable))
36245b66
DH
2919 error_unbound_variable (symbol);
2920 else
2921 return variable;
2922}
2923
2924
62360b89
DH
2925SCM
2926scm_eval_car (SCM pair, SCM env)
2927{
385609b9 2928 return SCM_I_XEVALCAR (pair, env);
62360b89
DH
2929}
2930
2931
6dbd0af5 2932SCM
6e8d25a6 2933scm_eval_args (SCM l, SCM env, SCM proc)
6dbd0af5 2934{
680ed4a8 2935 SCM results = SCM_EOL, *lloc = &results, res;
a61f4e0c 2936 while (scm_is_pair (l))
6dbd0af5 2937 {
680ed4a8 2938 res = EVALCAR (l, env);
904a077d 2939
8ea46249 2940 *lloc = scm_list_1 (res);
a23afe53 2941 lloc = SCM_CDRLOC (*lloc);
6dbd0af5
MD
2942 l = SCM_CDR (l);
2943 }
a61f4e0c 2944 if (!scm_is_null (l))
904a077d 2945 scm_wrong_num_args (proc);
680ed4a8 2946 return results;
6dbd0af5 2947}
c4ac4d88 2948
d0b07b5d 2949
9de33deb
MD
2950SCM
2951scm_eval_body (SCM code, SCM env)
2952{
2953 SCM next;
434f2f7a 2954
9de33deb 2955 again:
01f11e02 2956 next = SCM_CDR (code);
a61f4e0c 2957 while (!scm_is_null (next))
9de33deb
MD
2958 {
2959 if (SCM_IMP (SCM_CAR (code)))
2960 {
2961 if (SCM_ISYMP (SCM_CAR (code)))
2962 {
9de87eea 2963 scm_i_scm_pthread_mutex_lock (&source_mutex);
9bc4701c
MD
2964 /* check for race condition */
2965 if (SCM_ISYMP (SCM_CAR (code)))
9d4bf6d3 2966 m_expand_body (code, env);
9de87eea 2967 scm_i_pthread_mutex_unlock (&source_mutex);
9de33deb
MD
2968 goto again;
2969 }
2970 }
2971 else
385609b9 2972 SCM_I_XEVAL (SCM_CAR (code), env);
9de33deb 2973 code = next;
01f11e02 2974 next = SCM_CDR (code);
9de33deb 2975 }
385609b9 2976 return SCM_I_XEVALCAR (code, env);
9de33deb
MD
2977}
2978
0f2d19dd
JB
2979#endif /* !DEVAL */
2980
6dbd0af5
MD
2981
2982/* SECTION: This code is specific for the debugging support. One
2983 * branch is read when DEVAL isn't defined, the other when DEVAL is
2984 * defined.
2985 */
2986
2987#ifndef DEVAL
2988
2989#define SCM_APPLY scm_apply
2990#define PREP_APPLY(proc, args)
2991#define ENTER_APPLY
ddea3325 2992#define RETURN(x) do { return x; } while (0)
b7ff98dd
MD
2993#ifdef STACK_CHECKING
2994#ifndef NO_CEVAL_STACK_CHECKING
2995#define EVAL_STACK_CHECKING
2996#endif
6dbd0af5
MD
2997#endif
2998
2999#else /* !DEVAL */
3000
434f2f7a
DH
3001#undef CEVAL
3002#define CEVAL deval /* Substitute all uses of ceval */
3003
0f2d19dd
JB
3004#undef SCM_APPLY
3005#define SCM_APPLY scm_dapply
434f2f7a 3006
6dbd0af5
MD
3007#undef PREP_APPLY
3008#define PREP_APPLY(p, l) \
3009{ ++debug.info; debug.info->a.proc = p; debug.info->a.args = l; }
434f2f7a 3010
6dbd0af5
MD
3011#undef ENTER_APPLY
3012#define ENTER_APPLY \
d3a6bc94 3013do { \
b7ff98dd 3014 SCM_SET_ARGSREADY (debug);\
5132eef0 3015 if (scm_check_apply_p && SCM_TRAPS_P)\
b7ff98dd 3016 if (SCM_APPLY_FRAME_P || (SCM_TRACE_P && PROCTRACEP (proc)))\
6dbd0af5 3017 {\
7888309b 3018 SCM tmp, tail = scm_from_bool(SCM_TRACED_FRAME_P (debug)); \
c6a4fbce 3019 SCM_SET_TRACED_FRAME (debug); \
d95c0b76 3020 SCM_TRAPS_P = 0;\
7c9c0169
NJ
3021 tmp = scm_make_debugobj (&debug);\
3022 scm_call_3 (SCM_APPLY_FRAME_HDLR, scm_sym_apply_frame, tmp, tail);\
d95c0b76 3023 SCM_TRAPS_P = 1;\
6dbd0af5 3024 }\
d3a6bc94 3025} while (0)
434f2f7a 3026
0f2d19dd 3027#undef RETURN
ddea3325 3028#define RETURN(e) do { proc = (e); goto exit; } while (0)
434f2f7a 3029
b7ff98dd
MD
3030#ifdef STACK_CHECKING
3031#ifndef EVAL_STACK_CHECKING
3032#define EVAL_STACK_CHECKING
3033#endif
6dbd0af5
MD
3034#endif
3035
0f2d19dd 3036
434f2f7a
DH
3037/* scm_last_debug_frame contains a pointer to the last debugging information
3038 * stack frame. It is accessed very often from the debugging evaluator, so it
3039 * should probably not be indirectly addressed. Better to save and restore it
3040 * from the current root at any stack swaps.
6dbd0af5
MD
3041 */
3042
6dbd0af5
MD
3043/* scm_debug_eframe_size is the number of slots available for pseudo
3044 * stack frames at each real stack frame.
3045 */
3046
c014a02e 3047long scm_debug_eframe_size;
6dbd0af5 3048
434f2f7a
DH
3049int scm_debug_mode_p;
3050int scm_check_entry_p;
3051int scm_check_apply_p;
3052int scm_check_exit_p;
6dbd0af5 3053
c014a02e 3054long scm_eval_stack;
a74145b8 3055
92c2555f 3056scm_t_option scm_eval_opts[] = {
a74145b8 3057 { SCM_OPTION_INTEGER, "stack", 22000, "Size of thread stacks (in machine words)." }
33b97402
MD
3058};
3059
92c2555f 3060scm_t_option scm_debug_opts[] = {
b7ff98dd 3061 { SCM_OPTION_BOOLEAN, "cheap", 1,
7c9c0169 3062 "*This option is now obsolete. Setting it has no effect." },
b7ff98dd
MD
3063 { SCM_OPTION_BOOLEAN, "breakpoints", 0, "*Check for breakpoints." },
3064 { SCM_OPTION_BOOLEAN, "trace", 0, "*Trace mode." },
3065 { SCM_OPTION_BOOLEAN, "procnames", 1,
3066 "Record procedure names at definition." },
3067 { SCM_OPTION_BOOLEAN, "backwards", 0,
3068 "Display backtrace in anti-chronological order." },
274dc5fd 3069 { SCM_OPTION_INTEGER, "width", 79, "Maximal width of backtrace." },
4e646a03
MD
3070 { SCM_OPTION_INTEGER, "indent", 10, "Maximal indentation in backtrace." },
3071 { SCM_OPTION_INTEGER, "frames", 3,
b7ff98dd 3072 "Maximum number of tail-recursive frames in backtrace." },
4e646a03
MD
3073 { SCM_OPTION_INTEGER, "maxdepth", 1000,
3074 "Maximal number of stored backtrace frames." },
3075 { SCM_OPTION_INTEGER, "depth", 20, "Maximal length of printed backtrace." },
11f77bfc
MD
3076 { SCM_OPTION_BOOLEAN, "backtrace", 0, "Show backtrace on error." },
3077 { SCM_OPTION_BOOLEAN, "debug", 0, "Use the debugging evaluator." },
863e833b 3078 { SCM_OPTION_INTEGER, "stack", 20000, "Stack size limit (measured in words; 0 = no check)." },
65bc1f7a
MV
3079 { SCM_OPTION_SCM, "show-file-name", (unsigned long)SCM_BOOL_T, "Show file names and line numbers in backtraces when not `#f'. A value of `base' displays only base names, while `#t' displays full names."},
3080 { SCM_OPTION_BOOLEAN, "warn-deprecated", 0, "Warn when deprecated features are used." }
6dbd0af5
MD
3081};
3082
92c2555f 3083scm_t_option scm_evaluator_trap_table[] = {
b6d75948 3084 { SCM_OPTION_BOOLEAN, "traps", 0, "Enable evaluator traps." },
b7ff98dd
MD
3085 { SCM_OPTION_BOOLEAN, "enter-frame", 0, "Trap when eval enters new frame." },
3086 { SCM_OPTION_BOOLEAN, "apply-frame", 0, "Trap when entering apply." },
d95c0b76
NJ
3087 { SCM_OPTION_BOOLEAN, "exit-frame", 0, "Trap when exiting eval or apply." },
3088 { SCM_OPTION_SCM, "enter-frame-handler", (unsigned long)SCM_BOOL_F, "Handler for enter-frame traps." },
3089 { SCM_OPTION_SCM, "apply-frame-handler", (unsigned long)SCM_BOOL_F, "Handler for apply-frame traps." },
3090 { SCM_OPTION_SCM, "exit-frame-handler", (unsigned long)SCM_BOOL_F, "Handler for exit-frame traps." }
6dbd0af5
MD
3091};
3092
a1ec6916 3093SCM_DEFINE (scm_eval_options_interface, "eval-options-interface", 0, 1, 0,
1bbd0b84 3094 (SCM setting),
b3f26b14
MG
3095 "Option interface for the evaluation options. Instead of using\n"
3096 "this procedure directly, use the procedures @code{eval-enable},\n"
3939e9df 3097 "@code{eval-disable}, @code{eval-set!} and @code{eval-options}.")
1bbd0b84 3098#define FUNC_NAME s_scm_eval_options_interface
33b97402
MD
3099{
3100 SCM ans;
876099d4
MV
3101
3102 scm_frame_begin (0);
3103 scm_frame_critical_section (SCM_BOOL_F);
33b97402
MD
3104 ans = scm_options (setting,
3105 scm_eval_opts,
3106 SCM_N_EVAL_OPTIONS,
1bbd0b84 3107 FUNC_NAME);
a74145b8 3108 scm_eval_stack = SCM_EVAL_STACK * sizeof (void *);
876099d4
MV
3109 scm_frame_end ();
3110
33b97402
MD
3111 return ans;
3112}
1bbd0b84 3113#undef FUNC_NAME
33b97402 3114
d0b07b5d 3115
a1ec6916 3116SCM_DEFINE (scm_evaluator_traps, "evaluator-traps-interface", 0, 1, 0,
1bbd0b84 3117 (SCM setting),
b3f26b14 3118 "Option interface for the evaluator trap options.")
1bbd0b84 3119#define FUNC_NAME s_scm_evaluator_traps
33b97402
MD
3120{
3121 SCM ans;
9de87eea 3122 SCM_CRITICAL_SECTION_START;
33b97402
MD
3123 ans = scm_options (setting,
3124 scm_evaluator_trap_table,
3125 SCM_N_EVALUATOR_TRAPS,
1bbd0b84 3126 FUNC_NAME);
2b0fb0a5 3127 /* njrev: same again. */
33b97402 3128 SCM_RESET_DEBUG_MODE;
9de87eea 3129 SCM_CRITICAL_SECTION_END;
33b97402
MD
3130 return ans;
3131}
1bbd0b84 3132#undef FUNC_NAME
33b97402 3133
d0b07b5d 3134
24933780 3135static SCM
a392ee15 3136deval_args (SCM l, SCM env, SCM proc, SCM *lloc)
0f2d19dd 3137{
b1cb24ff 3138 SCM *results = lloc;
a61f4e0c 3139 while (scm_is_pair (l))
0f2d19dd 3140 {
b1cb24ff 3141 const SCM res = EVALCAR (l, env);
904a077d 3142
8ea46249 3143 *lloc = scm_list_1 (res);
a23afe53 3144 lloc = SCM_CDRLOC (*lloc);
0f2d19dd
JB
3145 l = SCM_CDR (l);
3146 }
a61f4e0c 3147 if (!scm_is_null (l))
904a077d 3148 scm_wrong_num_args (proc);
680ed4a8 3149 return *results;
0f2d19dd
JB
3150}
3151
5defc05d
NJ
3152static void
3153eval_letrec_inits (SCM env, SCM init_forms, SCM **init_values_eol)
3154{
3155 SCM argv[10];
3156 int i = 0, imax = sizeof (argv) / sizeof (SCM);
3157
3158 while (!scm_is_null (init_forms))
3159 {
3160 if (imax == i)
3161 {
3162 eval_letrec_inits (env, init_forms, init_values_eol);
3163 break;
3164 }
3165 argv[i++] = EVALCAR (init_forms, env);
3166 init_forms = SCM_CDR (init_forms);
3167 }
3168
3169 for (i--; i >= 0; i--)
3170 {
3171 **init_values_eol = scm_list_1 (argv[i]);
3172 *init_values_eol = SCM_CDRLOC (**init_values_eol);
3173 }
3174}
3175
6dbd0af5
MD
3176#endif /* !DEVAL */
3177
3178
a392ee15 3179/* SECTION: This code is compiled twice.
6dbd0af5
MD
3180 */
3181
a392ee15 3182
d9d39d76 3183/* Update the toplevel environment frame ENV so that it refers to the
a392ee15 3184 * current module. */
d9d39d76
MV
3185#define UPDATE_TOPLEVEL_ENV(env) \
3186 do { \
3187 SCM p = scm_current_module_lookup_closure (); \
d0b07b5d 3188 if (p != SCM_CAR (env)) \
d9d39d76
MV
3189 env = scm_top_level_env (p); \
3190 } while (0)
3191
6dbd0af5 3192
6f81708a 3193#define SCM_VALIDATE_NON_EMPTY_COMBINATION(x) \
bc36d050 3194 ASSERT_SYNTAX (!scm_is_eq ((x), SCM_EOL), s_empty_combination, x)
6f81708a
DH
3195
3196
a392ee15
DH
3197/* This is the evaluator. Like any real monster, it has three heads:
3198 *
434f2f7a
DH
3199 * ceval is the non-debugging evaluator, deval is the debugging version. Both
3200 * are implemented using a common code base, using the following mechanism:
3201 * CEVAL is a macro, which is either defined to ceval or deval. Thus, there
3202 * is no function CEVAL, but the code for CEVAL actually compiles to either
3203 * ceval or deval. When CEVAL is defined to ceval, it is known that the macro
3204 * DEVAL is not defined. When CEVAL is defined to deval, then the macro DEVAL
3205 * is known to be defined. Thus, in CEVAL parts for the debugging evaluator
a392ee15
DH
3206 * are enclosed within #ifdef DEVAL ... #endif.
3207 *
434f2f7a
DH
3208 * All three (ceval, deval and their common implementation CEVAL) take two
3209 * input parameters, x and env: x is a single expression to be evalutated.
3210 * env is the environment in which bindings are searched.
a392ee15 3211 *
434f2f7a
DH
3212 * x is known to be a pair. Since x is a single expression, it is necessarily
3213 * in a tail position. If x is just a call to another function like in the
3214 * expression (foo exp1 exp2 ...), the realization of that call therefore
3215 * _must_not_ increase stack usage (the evaluation of exp1, exp2 etc.,
3216 * however, may do so). This is realized by making extensive use of 'goto'
3217 * statements within the evaluator: The gotos replace recursive calls to
3218 * CEVAL, thus re-using the same stack frame that CEVAL was already using.
3219 * If, however, x represents some form that requires to evaluate a sequence of
3220 * expressions like (begin exp1 exp2 ...), then recursive calls to CEVAL are
3221 * performed for all but the last expression of that sequence. */
6dbd0af5 3222
434f2f7a
DH
3223static SCM
3224CEVAL (SCM x, SCM env)
0f2d19dd 3225{
42030fb2 3226 SCM proc, arg1;
6dbd0af5 3227#ifdef DEVAL
92c2555f
MV
3228 scm_t_debug_frame debug;
3229 scm_t_debug_info *debug_info_end;
9de87eea 3230 debug.prev = scm_i_last_debug_frame ();
020c890c 3231 debug.status = 0;
04b6c081 3232 /*
92c2555f 3233 * The debug.vect contains twice as much scm_t_debug_info frames as the
04b6c081
MD
3234 * user has specified with (debug-set! frames <n>).
3235 *
3236 * Even frames are eval frames, odd frames are apply frames.
3237 */
92c2555f 3238 debug.vect = (scm_t_debug_info *) alloca (scm_debug_eframe_size
a392ee15 3239 * sizeof (scm_t_debug_info));
c0ab1b8d
JB
3240 debug.info = debug.vect;
3241 debug_info_end = debug.vect + scm_debug_eframe_size;
9de87eea 3242 scm_i_set_last_debug_frame (&debug);
6dbd0af5 3243#endif
b7ff98dd 3244#ifdef EVAL_STACK_CHECKING
79f55b7c 3245 if (scm_stack_checking_enabled_p && SCM_STACK_OVERFLOW_P (&proc))
6dbd0af5 3246 {
b7ff98dd 3247#ifdef DEVAL
6dbd0af5
MD
3248 debug.info->e.exp = x;
3249 debug.info->e.env = env;
b7ff98dd 3250#endif
6dbd0af5
MD
3251 scm_report_stack_overflow ();
3252 }
3253#endif
6a0f6ff3 3254
6dbd0af5
MD
3255#ifdef DEVAL
3256 goto start;
3257#endif
6a0f6ff3 3258
6dbd0af5
MD
3259loop:
3260#ifdef DEVAL
b7ff98dd
MD
3261 SCM_CLEAR_ARGSREADY (debug);
3262 if (SCM_OVERFLOWP (debug))
6dbd0af5 3263 --debug.info;
04b6c081
MD
3264 /*
3265 * In theory, this should be the only place where it is necessary to
3266 * check for space in debug.vect since both eval frames and
3267 * available space are even.
3268 *
3269 * For this to be the case, however, it is necessary that primitive
3270 * special forms which jump back to `loop', `begin' or some similar
680516ba 3271 * label call PREP_APPLY.
04b6c081 3272 */
c0ab1b8d 3273 else if (++debug.info >= debug_info_end)
6dbd0af5 3274 {
b7ff98dd 3275 SCM_SET_OVERFLOW (debug);
6dbd0af5
MD
3276 debug.info -= 2;
3277 }
6a0f6ff3 3278
6dbd0af5
MD
3279start:
3280 debug.info->e.exp = x;
3281 debug.info->e.env = env;
5132eef0
DH
3282 if (scm_check_entry_p && SCM_TRAPS_P)
3283 {
bc76d628
DH
3284 if (SCM_ENTER_FRAME_P
3285 || (SCM_BREAKPOINTS_P && scm_c_source_property_breakpoint_p (x)))
5132eef0 3286 {
bc76d628 3287 SCM stackrep;
7888309b 3288 SCM tail = scm_from_bool (SCM_TAILRECP (debug));
5132eef0 3289 SCM_SET_TAILREC (debug);
7c9c0169 3290 stackrep = scm_make_debugobj (&debug);
5132eef0 3291 SCM_TRAPS_P = 0;
7c9c0169
NJ
3292 stackrep = scm_call_4 (SCM_ENTER_FRAME_HDLR,
3293 scm_sym_enter_frame,
3294 stackrep,
3295 tail,
3296 unmemoize_expression (x, env));
5132eef0 3297 SCM_TRAPS_P = 1;
7c9c0169
NJ
3298 if (scm_is_pair (stackrep) &&
3299 scm_is_eq (SCM_CAR (stackrep), sym_instead))
3300 {
3301 /* This gives the possibility for the debugger to modify
3302 the source expression before evaluation. */
3303 x = SCM_CDR (stackrep);
3304 if (SCM_IMP (x))
3305 RETURN (x);
3306 }
5132eef0
DH
3307 }
3308 }
6dbd0af5 3309#endif
f8769b1d 3310dispatch:
9cb5124f 3311 SCM_TICK;
dec40cd2 3312 if (SCM_ISYMP (SCM_CAR (x)))
0f2d19dd 3313 {
7e6e6b37 3314 switch (ISYMNUM (SCM_CAR (x)))
dec40cd2 3315 {
7e6e6b37 3316 case (ISYMNUM (SCM_IM_AND)):
dec40cd2 3317 x = SCM_CDR (x);
a61f4e0c 3318 while (!scm_is_null (SCM_CDR (x)))
dec40cd2
DH
3319 {
3320 SCM test_result = EVALCAR (x, env);
7888309b 3321 if (scm_is_false (test_result) || SCM_NILP (test_result))
dec40cd2
DH
3322 RETURN (SCM_BOOL_F);
3323 else
3324 x = SCM_CDR (x);
3325 }
3326 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3327 goto carloop;
0f2d19dd 3328
7e6e6b37 3329 case (ISYMNUM (SCM_IM_BEGIN)):
dec40cd2 3330 x = SCM_CDR (x);
a61f4e0c 3331 if (scm_is_null (x))
dec40cd2 3332 RETURN (SCM_UNSPECIFIED);
b8113bc8 3333
dec40cd2 3334 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
0f2d19dd 3335
dec40cd2
DH
3336 begin:
3337 /* If we are on toplevel with a lookup closure, we need to sync
3338 with the current module. */
a61f4e0c 3339 if (scm_is_pair (env) && !scm_is_pair (SCM_CAR (env)))
dec40cd2
DH
3340 {
3341 UPDATE_TOPLEVEL_ENV (env);
a61f4e0c 3342 while (!scm_is_null (SCM_CDR (x)))
dec40cd2
DH
3343 {
3344 EVALCAR (x, env);
3345 UPDATE_TOPLEVEL_ENV (env);
3346 x = SCM_CDR (x);
3347 }
3348 goto carloop;
3349 }
3350 else
3351 goto nontoplevel_begin;
5280aaca 3352
dec40cd2 3353 nontoplevel_begin:
a61f4e0c 3354 while (!scm_is_null (SCM_CDR (x)))
dec40cd2 3355 {
b1cb24ff 3356 const SCM form = SCM_CAR (x);
dec40cd2
DH
3357 if (SCM_IMP (form))
3358 {
3359 if (SCM_ISYMP (form))
3360 {
9de87eea 3361 scm_i_scm_pthread_mutex_lock (&source_mutex);
dec40cd2
DH
3362 /* check for race condition */
3363 if (SCM_ISYMP (SCM_CAR (x)))
3364 m_expand_body (x, env);
9de87eea 3365 scm_i_pthread_mutex_unlock (&source_mutex);
dec40cd2
DH
3366 goto nontoplevel_begin;
3367 }
3368 else
3369 SCM_VALIDATE_NON_EMPTY_COMBINATION (form);
3370 }
3371 else
b1cb24ff 3372 (void) EVAL (form, env);
dec40cd2
DH
3373 x = SCM_CDR (x);
3374 }
b1cb24ff 3375
dec40cd2
DH
3376 carloop:
3377 {
3378 /* scm_eval last form in list */
b1cb24ff 3379 const SCM last_form = SCM_CAR (x);
0f2d19dd 3380
a61f4e0c 3381 if (scm_is_pair (last_form))
dec40cd2
DH
3382 {
3383 /* This is by far the most frequent case. */
3384 x = last_form;
3385 goto loop; /* tail recurse */
3386 }
3387 else if (SCM_IMP (last_form))
385609b9 3388 RETURN (SCM_I_EVALIM (last_form, env));
dec40cd2
DH
3389 else if (SCM_VARIABLEP (last_form))
3390 RETURN (SCM_VARIABLE_REF (last_form));
cc95e00a 3391 else if (scm_is_symbol (last_form))
dec40cd2
DH
3392 RETURN (*scm_lookupcar (x, env, 1));
3393 else
3394 RETURN (last_form);
3395 }
0f2d19dd
JB
3396
3397
7e6e6b37 3398 case (ISYMNUM (SCM_IM_CASE)):
dec40cd2
DH
3399 x = SCM_CDR (x);
3400 {
b1cb24ff 3401 const SCM key = EVALCAR (x, env);
dec40cd2 3402 x = SCM_CDR (x);
a61f4e0c 3403 while (!scm_is_null (x))
dec40cd2 3404 {
b1cb24ff 3405 const SCM clause = SCM_CAR (x);
dec40cd2 3406 SCM labels = SCM_CAR (clause);
bc36d050 3407 if (scm_is_eq (labels, SCM_IM_ELSE))
dec40cd2
DH
3408 {
3409 x = SCM_CDR (clause);
3410 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3411 goto begin;
3412 }
a61f4e0c 3413 while (!scm_is_null (labels))
dec40cd2 3414 {
b1cb24ff 3415 const SCM label = SCM_CAR (labels);
bc36d050 3416 if (scm_is_eq (label, key)
7888309b 3417 || scm_is_true (scm_eqv_p (label, key)))
dec40cd2
DH
3418 {
3419 x = SCM_CDR (clause);
3420 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3421 goto begin;
3422 }
3423 labels = SCM_CDR (labels);
3424 }
3425 x = SCM_CDR (x);
3426 }
3427 }
3428 RETURN (SCM_UNSPECIFIED);
0f2d19dd
JB
3429
3430
7e6e6b37 3431 case (ISYMNUM (SCM_IM_COND)):
dec40cd2 3432 x = SCM_CDR (x);
a61f4e0c 3433 while (!scm_is_null (x))
dec40cd2 3434 {
b1cb24ff 3435 const SCM clause = SCM_CAR (x);
bc36d050 3436 if (scm_is_eq (SCM_CAR (clause), SCM_IM_ELSE))
dec40cd2
DH
3437 {
3438 x = SCM_CDR (clause);
3439 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3440 goto begin;
3441 }
3442 else
3443 {
3444 arg1 = EVALCAR (clause, env);
1fe1fc0a
MV
3445 /* SRFI 61 extended cond */
3446 if (!scm_is_null (SCM_CDR (clause))
3447 && !scm_is_null (SCM_CDDR (clause))
3448 && scm_is_eq (SCM_CADDR (clause), SCM_IM_ARROW))
3449 {
3450 SCM xx, guard_result;
3451 if (SCM_VALUESP (arg1))
3452 arg1 = scm_struct_ref (arg1, SCM_INUM0);
3453 else
3454 arg1 = scm_list_1 (arg1);
3455 xx = SCM_CDR (clause);
3456 proc = EVALCAR (xx, env);
3457 guard_result = SCM_APPLY (proc, arg1, SCM_EOL);
3458 if (scm_is_true (guard_result)
3459 && !SCM_NILP (guard_result))
3460 {
3461 proc = SCM_CDDR (xx);
3462 proc = EVALCAR (proc, env);
3463 PREP_APPLY (proc, arg1);
3464 goto apply_proc;
3465 }
3466 }
3467 else if (scm_is_true (arg1) && !SCM_NILP (arg1))
dec40cd2
DH
3468 {
3469 x = SCM_CDR (clause);
a61f4e0c 3470 if (scm_is_null (x))
dec40cd2 3471 RETURN (arg1);
bc36d050 3472 else if (!scm_is_eq (SCM_CAR (x), SCM_IM_ARROW))
dec40cd2
DH
3473 {
3474 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3475 goto begin;
3476 }
3477 else
3478 {
3479 proc = SCM_CDR (x);
3480 proc = EVALCAR (proc, env);
3481 PREP_APPLY (proc, scm_list_1 (arg1));
3482 ENTER_APPLY;
3483 goto evap1;
3484 }
3485 }
3486 x = SCM_CDR (x);
3487 }
3488 }
3489 RETURN (SCM_UNSPECIFIED);
e5cb71a0 3490
e5cb71a0 3491
7e6e6b37 3492 case (ISYMNUM (SCM_IM_DO)):
dec40cd2
DH
3493 x = SCM_CDR (x);
3494 {
3495 /* Compute the initialization values and the initial environment. */
3496 SCM init_forms = SCM_CAR (x);
3497 SCM init_values = SCM_EOL;
a61f4e0c 3498 while (!scm_is_null (init_forms))
dec40cd2
DH
3499 {
3500 init_values = scm_cons (EVALCAR (init_forms, env), init_values);
3501 init_forms = SCM_CDR (init_forms);
3502 }
3503 x = SCM_CDR (x);
3504 env = SCM_EXTEND_ENV (SCM_CAR (x), init_values, env);
3505 }
3506 x = SCM_CDR (x);
3507 {
3508 SCM test_form = SCM_CAR (x);
3509 SCM body_forms = SCM_CADR (x);
3510 SCM step_forms = SCM_CDDR (x);
e5cb71a0 3511
dec40cd2 3512 SCM test_result = EVALCAR (test_form, env);
e5cb71a0 3513
7888309b 3514 while (scm_is_false (test_result) || SCM_NILP (test_result))
dec40cd2
DH
3515 {
3516 {
3517 /* Evaluate body forms. */
3518 SCM temp_forms;
3519 for (temp_forms = body_forms;
a61f4e0c 3520 !scm_is_null (temp_forms);
dec40cd2
DH
3521 temp_forms = SCM_CDR (temp_forms))
3522 {
3523 SCM form = SCM_CAR (temp_forms);
b1cb24ff
DH
3524 /* Dirk:FIXME: We only need to eval forms that may have
3525 * a side effect here. This is only true for forms that
3526 * start with a pair. All others are just constants.
3527 * Since with the current memoizer 'form' may hold a
3528 * constant, we call EVAL here to handle the constant
3529 * cases. In the long run it would make sense to have
3530 * the macro transformer of 'do' eliminate all forms
3531 * that have no sideeffect. Then instead of EVAL we
3532 * could call CEVAL directly here. */
3533 (void) EVAL (form, env);
dec40cd2
DH
3534 }
3535 }
0f2d19dd 3536
dec40cd2
DH
3537 {
3538 /* Evaluate the step expressions. */
3539 SCM temp_forms;
3540 SCM step_values = SCM_EOL;
3541 for (temp_forms = step_forms;
a61f4e0c 3542 !scm_is_null (temp_forms);
dec40cd2
DH
3543 temp_forms = SCM_CDR (temp_forms))
3544 {
b1cb24ff 3545 const SCM value = EVALCAR (temp_forms, env);
dec40cd2
DH
3546 step_values = scm_cons (value, step_values);
3547 }
3548 env = SCM_EXTEND_ENV (SCM_CAAR (env),
3549 step_values,
3550 SCM_CDR (env));
3551 }
0f2d19dd 3552
dec40cd2
DH
3553 test_result = EVALCAR (test_form, env);
3554 }
3555 }
3556 x = SCM_CDAR (x);
a61f4e0c 3557 if (scm_is_null (x))
dec40cd2
DH
3558 RETURN (SCM_UNSPECIFIED);
3559 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3560 goto nontoplevel_begin;
0f2d19dd
JB
3561
3562
7e6e6b37 3563 case (ISYMNUM (SCM_IM_IF)):
dec40cd2
DH
3564 x = SCM_CDR (x);
3565 {
3566 SCM test_result = EVALCAR (x, env);
3567 x = SCM_CDR (x); /* then expression */
7888309b 3568 if (scm_is_false (test_result) || SCM_NILP (test_result))
dec40cd2
DH
3569 {
3570 x = SCM_CDR (x); /* else expression */
a61f4e0c 3571 if (scm_is_null (x))
dec40cd2
DH
3572 RETURN (SCM_UNSPECIFIED);
3573 }
3574 }
3575 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3576 goto carloop;
0f2d19dd
JB
3577
3578
7e6e6b37 3579 case (ISYMNUM (SCM_IM_LET)):
dec40cd2
DH
3580 x = SCM_CDR (x);
3581 {
3582 SCM init_forms = SCM_CADR (x);
3583 SCM init_values = SCM_EOL;
3584 do
3585 {
3586 init_values = scm_cons (EVALCAR (init_forms, env), init_values);
3587 init_forms = SCM_CDR (init_forms);
3588 }
a61f4e0c 3589 while (!scm_is_null (init_forms));
dec40cd2
DH
3590 env = SCM_EXTEND_ENV (SCM_CAR (x), init_values, env);
3591 }
3592 x = SCM_CDDR (x);
3593 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3594 goto nontoplevel_begin;
0f2d19dd
JB
3595
3596
7e6e6b37 3597 case (ISYMNUM (SCM_IM_LETREC)):
dec40cd2
DH
3598 x = SCM_CDR (x);
3599 env = SCM_EXTEND_ENV (SCM_CAR (x), undefineds, env);
3600 x = SCM_CDR (x);
3601 {
3602 SCM init_forms = SCM_CAR (x);
5defc05d
NJ
3603 SCM init_values = scm_list_1 (SCM_BOOL_T);
3604 SCM *init_values_eol = SCM_CDRLOC (init_values);
3605 eval_letrec_inits (env, init_forms, &init_values_eol);
3606 SCM_SETCDR (SCM_CAR (env), SCM_CDR (init_values));
dec40cd2
DH
3607 }
3608 x = SCM_CDR (x);
3609 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3610 goto nontoplevel_begin;
0f2d19dd 3611
302c12b4 3612
7e6e6b37 3613 case (ISYMNUM (SCM_IM_LETSTAR)):
dec40cd2
DH
3614 x = SCM_CDR (x);
3615 {
3616 SCM bindings = SCM_CAR (x);
a61f4e0c 3617 if (!scm_is_null (bindings))
dec40cd2
DH
3618 {
3619 do
3620 {
3621 SCM name = SCM_CAR (bindings);
3622 SCM init = SCM_CDR (bindings);
3623 env = SCM_EXTEND_ENV (name, EVALCAR (init, env), env);
3624 bindings = SCM_CDR (init);
3625 }
a61f4e0c 3626 while (!scm_is_null (bindings));
dec40cd2
DH
3627 }
3628 }
3629 x = SCM_CDR (x);
3630 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3631 goto nontoplevel_begin;
0f2d19dd
JB
3632
3633
7e6e6b37 3634 case (ISYMNUM (SCM_IM_OR)):
dec40cd2 3635 x = SCM_CDR (x);
a61f4e0c 3636 while (!scm_is_null (SCM_CDR (x)))
dec40cd2
DH
3637 {
3638 SCM val = EVALCAR (x, env);
7888309b 3639 if (scm_is_true (val) && !SCM_NILP (val))
dec40cd2
DH
3640 RETURN (val);
3641 else
3642 x = SCM_CDR (x);
3643 }
3644 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3645 goto carloop;
0f2d19dd
JB
3646
3647
7e6e6b37 3648 case (ISYMNUM (SCM_IM_LAMBDA)):
dec40cd2 3649 RETURN (scm_closure (SCM_CDR (x), env));
0f2d19dd
JB
3650
3651
7e6e6b37 3652 case (ISYMNUM (SCM_IM_QUOTE)):
e7313a9d 3653 RETURN (SCM_CDR (x));
0f2d19dd
JB
3654
3655
7e6e6b37 3656 case (ISYMNUM (SCM_IM_SET_X)):
dec40cd2
DH
3657 x = SCM_CDR (x);
3658 {
3659 SCM *location;
3660 SCM variable = SCM_CAR (x);
3661 if (SCM_ILOCP (variable))
3662 location = scm_ilookup (variable, env);
3663 else if (SCM_VARIABLEP (variable))
3664 location = SCM_VARIABLE_LOC (variable);
36245b66
DH
3665 else
3666 {
cc95e00a 3667 /* (scm_is_symbol (variable)) is known to be true */
36245b66
DH
3668 variable = lazy_memoize_variable (variable, env);
3669 SCM_SETCAR (x, variable);
3670 location = SCM_VARIABLE_LOC (variable);
3671 }
dec40cd2
DH
3672 x = SCM_CDR (x);
3673 *location = EVALCAR (x, env);
3674 }
3675 RETURN (SCM_UNSPECIFIED);
3f04400d
DH
3676
3677
7e6e6b37 3678 case (ISYMNUM (SCM_IM_APPLY)):
6bff1368 3679 /* Evaluate the procedure to be applied. */
e910e9d2
DH
3680 x = SCM_CDR (x);
3681 proc = EVALCAR (x, env);
3682 PREP_APPLY (proc, SCM_EOL);
6bff1368
DH
3683
3684 /* Evaluate the argument holding the list of arguments */
e910e9d2
DH
3685 x = SCM_CDR (x);
3686 arg1 = EVALCAR (x, env);
9a069bdd
DH
3687
3688 apply_proc:
3689 /* Go here to tail-apply a procedure. PROC is the procedure and
3690 * ARG1 is the list of arguments. PREP_APPLY must have been called
3691 * before jumping to apply_proc. */
0f2d19dd
JB
3692 if (SCM_CLOSUREP (proc))
3693 {
9a069bdd 3694 SCM formals = SCM_CLOSURE_FORMALS (proc);
6dbd0af5 3695#ifdef DEVAL
9a069bdd 3696 debug.info->a.args = arg1;
6dbd0af5 3697#endif
9a069bdd
DH
3698 if (scm_badargsp (formals, arg1))
3699 scm_wrong_num_args (proc);
3700 ENTER_APPLY;
3701 /* Copy argument list */
3702 if (SCM_NULL_OR_NIL_P (arg1))
3703 env = SCM_EXTEND_ENV (formals, SCM_EOL, SCM_ENV (proc));
3704 else
3705 {
3706 SCM args = scm_list_1 (SCM_CAR (arg1));
3707 SCM tail = args;
3708 arg1 = SCM_CDR (arg1);
3709 while (!SCM_NULL_OR_NIL_P (arg1))
3710 {
3711 SCM new_tail = scm_list_1 (SCM_CAR (arg1));
3712 SCM_SETCDR (tail, new_tail);
3713 tail = new_tail;
3714 arg1 = SCM_CDR (arg1);
3715 }
3716 env = SCM_EXTEND_ENV (formals, args, SCM_ENV (proc));
3717 }
3718
3719 x = SCM_CLOSURE_BODY (proc);
3720 goto nontoplevel_begin;
0f2d19dd 3721 }
3f04400d
DH
3722 else
3723 {
e910e9d2
DH
3724 ENTER_APPLY;
3725 RETURN (SCM_APPLY (proc, arg1, SCM_EOL));
3f04400d
DH
3726 }
3727
0f2d19dd 3728
7e6e6b37 3729 case (ISYMNUM (SCM_IM_CONT)):
5f144b10
GH
3730 {
3731 int first;
3732 SCM val = scm_make_continuation (&first);
3733
e050d4f8 3734 if (!first)
5f144b10 3735 RETURN (val);
e050d4f8
DH
3736 else
3737 {
3738 arg1 = val;
3739 proc = SCM_CDR (x);
6bff1368 3740 proc = EVALCAR (proc, env);
e050d4f8
DH
3741 PREP_APPLY (proc, scm_list_1 (arg1));
3742 ENTER_APPLY;
e050d4f8
DH
3743 goto evap1;
3744 }
5f144b10 3745 }
e050d4f8 3746
0f2d19dd 3747
7e6e6b37 3748 case (ISYMNUM (SCM_IM_DELAY)):
ddea3325 3749 RETURN (scm_makprom (scm_closure (SCM_CDR (x), env)));
a570e93a 3750
e050d4f8 3751
7e6e6b37 3752 case (ISYMNUM (SCM_IM_FUTURE)):
28d52ebb
MD
3753 RETURN (scm_i_make_future (scm_closure (SCM_CDR (x), env)));
3754
3755
7e6e6b37
DH
3756 /* PLACEHOLDER for case (ISYMNUM (SCM_IM_DISPATCH)): The following
3757 code (type_dispatch) is intended to be the tail of the case
3758 clause for the internal macro SCM_IM_DISPATCH. Please don't
3759 remove it from this location without discussing it with Mikael
c8e1d354
MD
3760 <djurfeldt@nada.kth.se> */
3761
f12745b6
DH
3762 /* The type dispatch code is duplicated below
3763 * (c.f. objects.c:scm_mcache_compute_cmethod) since that
3764 * cuts down execution time for type dispatch to 50%. */
dff98306 3765 type_dispatch: /* inputs: x, arg1 */
f12745b6
DH
3766 /* Type dispatch means to determine from the types of the function
3767 * arguments (i. e. the 'signature' of the call), which method from
3768 * a generic function is to be called. This process of selecting
3769 * the right method takes some time. To speed it up, guile uses
3770 * caching: Together with the macro call to dispatch the signatures
3771 * of some previous calls to that generic function from the same
3772 * place are stored (in the code!) in a cache that we call the
3773 * 'method cache'. This is done since it is likely, that
3774 * consecutive calls to dispatch from that position in the code will
3775 * have the same signature. Thus, the type dispatch works as
3776 * follows: First, determine a hash value from the signature of the
3777 * actual arguments. Second, use this hash value as an index to
3778 * find that same signature in the method cache stored at this
3779 * position in the code. If found, you have also found the
3780 * corresponding method that belongs to that signature. If the
3781 * signature is not found in the method cache, you have to perform a
3782 * full search over all signatures stored with the generic
3783 * function. */
3784 {
3785 unsigned long int specializers;
3786 unsigned long int hash_value;
3787 unsigned long int cache_end_pos;
3788 unsigned long int mask;
3789 SCM method_cache;
3790
3791 {
3792 SCM z = SCM_CDDR (x);
3793 SCM tmp = SCM_CADR (z);
e11e83f3 3794 specializers = scm_to_ulong (SCM_CAR (z));
f12745b6
DH
3795
3796 /* Compute a hash value for searching the method cache. There
3797 * are two variants for computing the hash value, a (rather)
3798 * complicated one, and a simple one. For the complicated one
3799 * explained below, tmp holds a number that is used in the
3800 * computation. */
4057a3e0 3801 if (scm_is_simple_vector (tmp))
e11e83f3
MV
3802 {
3803 /* This method of determining the hash value is much
3804 * simpler: Set the hash value to zero and just perform a
3805 * linear search through the method cache. */
3806 method_cache = tmp;
3807 mask = (unsigned long int) ((long) -1);
3808 hash_value = 0;
4057a3e0 3809 cache_end_pos = SCM_SIMPLE_VECTOR_LENGTH (method_cache);
e11e83f3
MV
3810 }
3811 else
f12745b6
DH
3812 {
3813 /* Use the signature of the actual arguments to determine
3814 * the hash value. This is done as follows: Each class has
3815 * an array of random numbers, that are determined when the
3816 * class is created. The integer 'hashset' is an index into
3817 * that array of random numbers. Now, from all classes that
3818 * are part of the signature of the actual arguments, the
3819 * random numbers at index 'hashset' are taken and summed
3820 * up, giving the hash value. The value of 'hashset' is
3821 * stored at the call to dispatch. This allows to have
3822 * different 'formulas' for calculating the hash value at
3823 * different places where dispatch is called. This allows
3824 * to optimize the hash formula at every individual place
3825 * where dispatch is called, such that hopefully the hash
3826 * value that is computed will directly point to the right
3827 * method in the method cache. */
e11e83f3 3828 unsigned long int hashset = scm_to_ulong (tmp);
f12745b6 3829 unsigned long int counter = specializers + 1;
dff98306 3830 SCM tmp_arg = arg1;
f12745b6 3831 hash_value = 0;
a61f4e0c 3832 while (!scm_is_null (tmp_arg) && counter != 0)
61364ba6 3833 {
f12745b6
DH
3834 SCM class = scm_class_of (SCM_CAR (tmp_arg));
3835 hash_value += SCM_INSTANCE_HASH (class, hashset);
3836 tmp_arg = SCM_CDR (tmp_arg);
3837 counter--;
61364ba6 3838 }
f12745b6
DH
3839 z = SCM_CDDR (z);
3840 method_cache = SCM_CADR (z);
e11e83f3 3841 mask = scm_to_ulong (SCM_CAR (z));
f12745b6
DH
3842 hash_value &= mask;
3843 cache_end_pos = hash_value;
3844 }
f12745b6 3845 }
61364ba6 3846
f12745b6
DH
3847 {
3848 /* Search the method cache for a method with a matching
3849 * signature. Start the search at position 'hash_value'. The
3850 * hashing implementation uses linear probing for conflict
3851 * resolution, that is, if the signature in question is not
3852 * found at the starting index in the hash table, the next table
3853 * entry is tried, and so on, until in the worst case the whole
3854 * cache has been searched, but still the signature has not been
3855 * found. */
3856 SCM z;
3857 do
3858 {
dff98306 3859 SCM args = arg1; /* list of arguments */
4057a3e0 3860 z = SCM_SIMPLE_VECTOR_REF (method_cache, hash_value);
a61f4e0c 3861 while (!scm_is_null (args))
61364ba6
MD
3862 {
3863 /* More arguments than specifiers => CLASS != ENV */
f12745b6 3864 SCM class_of_arg = scm_class_of (SCM_CAR (args));
bc36d050 3865 if (!scm_is_eq (class_of_arg, SCM_CAR (z)))
61364ba6 3866 goto next_method;
f12745b6 3867 args = SCM_CDR (args);
61364ba6
MD
3868 z = SCM_CDR (z);
3869 }
f12745b6 3870 /* Fewer arguments than specifiers => CAR != ENV */
a61f4e0c 3871 if (scm_is_null (SCM_CAR (z)) || scm_is_pair (SCM_CAR (z)))
f12745b6
DH
3872 goto apply_cmethod;
3873 next_method:
3874 hash_value = (hash_value + 1) & mask;
3875 } while (hash_value != cache_end_pos);
3876
3877 /* No appropriate method was found in the cache. */
dff98306 3878 z = scm_memoize_method (x, arg1);
f12745b6 3879
dff98306 3880 apply_cmethod: /* inputs: z, arg1 */
f12745b6
DH
3881 {
3882 SCM formals = SCM_CMETHOD_FORMALS (z);
821f18a4 3883 env = SCM_EXTEND_ENV (formals, arg1, SCM_CMETHOD_ENV (z));
f12745b6
DH
3884 x = SCM_CMETHOD_BODY (z);
3885 goto nontoplevel_begin;
3886 }
3887 }
61364ba6 3888 }
73b64342 3889
1d15ecd3 3890
7e6e6b37 3891 case (ISYMNUM (SCM_IM_SLOT_REF)):
ca4be6ea 3892 x = SCM_CDR (x);
1d15ecd3
DH
3893 {
3894 SCM instance = EVALCAR (x, env);
e11e83f3 3895 unsigned long int slot = SCM_I_INUM (SCM_CDR (x));
1d15ecd3
DH
3896 RETURN (SCM_PACK (SCM_STRUCT_DATA (instance) [slot]));
3897 }
3898
3899
7e6e6b37 3900 case (ISYMNUM (SCM_IM_SLOT_SET_X)):
ca4be6ea 3901 x = SCM_CDR (x);
1d15ecd3
DH
3902 {
3903 SCM instance = EVALCAR (x, env);
e11e83f3 3904 unsigned long int slot = SCM_I_INUM (SCM_CADR (x));
1d15ecd3
DH
3905 SCM value = EVALCAR (SCM_CDDR (x), env);
3906 SCM_STRUCT_DATA (instance) [slot] = SCM_UNPACK (value);
3907 RETURN (SCM_UNSPECIFIED);
3908 }
3909
c96d76b8 3910
22721140 3911#if SCM_ENABLE_ELISP
ca4be6ea 3912
7e6e6b37 3913 case (ISYMNUM (SCM_IM_NIL_COND)):
1d15ecd3
DH
3914 {
3915 SCM test_form = SCM_CDR (x);
3916 x = SCM_CDR (test_form);
3917 while (!SCM_NULL_OR_NIL_P (x))
3918 {
3919 SCM test_result = EVALCAR (test_form, env);
7888309b 3920 if (!(scm_is_false (test_result)
1d15ecd3
DH
3921 || SCM_NULL_OR_NIL_P (test_result)))
3922 {
bc36d050 3923 if (scm_is_eq (SCM_CAR (x), SCM_UNSPECIFIED))
1d15ecd3
DH
3924 RETURN (test_result);
3925 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3926 goto carloop;
3927 }
3928 else
3929 {
3930 test_form = SCM_CDR (x);
3931 x = SCM_CDR (test_form);
3932 }
3933 }
3934 x = test_form;
3935 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
3936 goto carloop;
3937 }
73b64342 3938
c96d76b8 3939#endif /* SCM_ENABLE_ELISP */
73b64342 3940
7e6e6b37 3941 case (ISYMNUM (SCM_IM_BIND)):
2e171178
MV
3942 {
3943 SCM vars, exps, vals;
73b64342 3944
2e171178
MV
3945 x = SCM_CDR (x);
3946 vars = SCM_CAAR (x);
3947 exps = SCM_CDAR (x);
2e171178 3948 vals = SCM_EOL;
a61f4e0c 3949 while (!scm_is_null (exps))
2e171178
MV
3950 {
3951 vals = scm_cons (EVALCAR (exps, env), vals);
3952 exps = SCM_CDR (exps);
3953 }
3954
3955 scm_swap_bindings (vars, vals);
9de87eea 3956 scm_i_set_dynwinds (scm_acons (vars, vals, scm_i_dynwinds ()));
1d15ecd3
DH
3957
3958 /* Ignore all but the last evaluation result. */
a61f4e0c 3959 for (x = SCM_CDR (x); !scm_is_null (SCM_CDR (x)); x = SCM_CDR (x))
2e171178 3960 {
a61f4e0c 3961 if (scm_is_pair (SCM_CAR (x)))
434f2f7a 3962 CEVAL (SCM_CAR (x), env);
2e171178
MV
3963 }
3964 proc = EVALCAR (x, env);
73b64342 3965
9de87eea 3966 scm_i_set_dynwinds (SCM_CDR (scm_i_dynwinds ()));
2e171178 3967 scm_swap_bindings (vars, vals);
73b64342 3968
ddea3325 3969 RETURN (proc);
2e171178 3970 }
c96d76b8 3971
1d15ecd3 3972
7e6e6b37 3973 case (ISYMNUM (SCM_IM_CALL_WITH_VALUES)):
a513ead3 3974 {
9a069bdd
DH
3975 SCM producer;
3976
3977 x = SCM_CDR (x);
3978 producer = EVALCAR (x, env);
3979 x = SCM_CDR (x);
3980 proc = EVALCAR (x, env); /* proc is the consumer. */
3981 arg1 = SCM_APPLY (producer, SCM_EOL, SCM_EOL);
dff98306 3982 if (SCM_VALUESP (arg1))
82b3e2c6
DH
3983 {
3984 /* The list of arguments is not copied. Rather, it is assumed
3985 * that this has been done by the 'values' procedure. */
3986 arg1 = scm_struct_ref (arg1, SCM_INUM0);
3987 }
a513ead3 3988 else
82b3e2c6
DH
3989 {
3990 arg1 = scm_list_1 (arg1);
3991 }
9a069bdd
DH
3992 PREP_APPLY (proc, arg1);
3993 goto apply_proc;
a513ead3
MV
3994 }
3995
b7798e10 3996
0f2d19dd 3997 default:
dec40cd2 3998 break;
0f2d19dd 3999 }
dec40cd2
DH
4000 }
4001 else
4002 {
434f2f7a
DH
4003 if (SCM_VARIABLEP (SCM_CAR (x)))
4004 proc = SCM_VARIABLE_REF (SCM_CAR (x));
f9986767
DH
4005 else if (SCM_ILOCP (SCM_CAR (x)))
4006 proc = *scm_ilookup (SCM_CAR (x), env);
a61f4e0c 4007 else if (scm_is_pair (SCM_CAR (x)))
434f2f7a 4008 proc = CEVAL (SCM_CAR (x), env);
cc95e00a 4009 else if (scm_is_symbol (SCM_CAR (x)))
0f2d19dd 4010 {
e050d4f8 4011 SCM orig_sym = SCM_CAR (x);
b7798e10
DH
4012 {
4013 SCM *location = scm_lookupcar1 (x, env, 1);
4014 if (location == NULL)
4015 {
4016 /* we have lost the race, start again. */
4017 goto dispatch;
4018 }
4019 proc = *location;
4020 }
f8769b1d 4021
22a52da1 4022 if (SCM_MACROP (proc))
0f2d19dd 4023 {
86d31dfe
MV
4024 SCM_SETCAR (x, orig_sym); /* Undo memoizing effect of
4025 lookupcar */
e050d4f8 4026 handle_a_macro: /* inputs: x, env, proc */
368bf056 4027#ifdef DEVAL
7c354052
MD
4028 /* Set a flag during macro expansion so that macro
4029 application frames can be deleted from the backtrace. */
4030 SCM_SET_MACROEXP (debug);
368bf056 4031#endif
dff98306 4032 arg1 = SCM_APPLY (SCM_MACRO_CODE (proc), x,
6bff1368 4033 scm_cons (env, scm_listofnull));
7c354052
MD
4034#ifdef DEVAL
4035 SCM_CLEAR_MACROEXP (debug);
4036#endif
22a52da1 4037 switch (SCM_MACRO_TYPE (proc))
0f2d19dd 4038 {
3b88ed2a 4039 case 3:
0f2d19dd 4040 case 2:
a61f4e0c 4041 if (!scm_is_pair (arg1))
dff98306 4042 arg1 = scm_list_2 (SCM_IM_BEGIN, arg1);
e7313a9d 4043
bc36d050
MV
4044 assert (!scm_is_eq (x, SCM_CAR (arg1))
4045 && !scm_is_eq (x, SCM_CDR (arg1)));
e7313a9d 4046
6dbd0af5 4047#ifdef DEVAL
22a52da1 4048 if (!SCM_CLOSUREP (SCM_MACRO_CODE (proc)))
6dbd0af5 4049 {
9de87eea 4050 SCM_CRITICAL_SECTION_START;
dff98306
DH
4051 SCM_SETCAR (x, SCM_CAR (arg1));
4052 SCM_SETCDR (x, SCM_CDR (arg1));
9de87eea 4053 SCM_CRITICAL_SECTION_END;
6dbd0af5
MD
4054 goto dispatch;
4055 }
4056 /* Prevent memoizing of debug info expression. */
6203706f
MD
4057 debug.info->e.exp = scm_cons_source (debug.info->e.exp,
4058 SCM_CAR (x),
4059 SCM_CDR (x));
6dbd0af5 4060#endif
9de87eea 4061 SCM_CRITICAL_SECTION_START;
dff98306
DH
4062 SCM_SETCAR (x, SCM_CAR (arg1));
4063 SCM_SETCDR (x, SCM_CDR (arg1));
9de87eea 4064 SCM_CRITICAL_SECTION_END;
680516ba
DH
4065 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
4066 goto loop;
3063e30a 4067#if SCM_ENABLE_DEPRECATED == 1
0f2d19dd 4068 case 1:
680516ba
DH
4069 x = arg1;
4070 if (SCM_NIMP (x))
4071 {
4072 PREP_APPLY (SCM_UNDEFINED, SCM_EOL);
4073 goto loop;
4074 }
4075 else
4076 RETURN (arg1);
3063e30a 4077#endif
0f2d19dd 4078 case 0:
dff98306 4079 RETURN (arg1);
0f2d19dd
JB
4080 }
4081 }
4082 }
4083 else
434f2f7a 4084 proc = SCM_CAR (x);
bd987b8e 4085
ddd8f927 4086 if (SCM_MACROP (proc))
0f2d19dd 4087 goto handle_a_macro;
0f2d19dd
JB
4088 }
4089
4090
dec40cd2
DH
4091 /* When reaching this part of the code, the following is granted: Variable x
4092 * holds the first pair of an expression of the form (<function> arg ...).
4093 * Variable proc holds the object that resulted from the evaluation of
4094 * <function>. In the following, the arguments (if any) will be evaluated,
4095 * and proc will be applied to them. If proc does not really hold a
4096 * function object, this will be signalled as an error on the scheme
4097 * level. If the number of arguments does not match the number of arguments
4098 * that are allowed to be passed to proc, also an error on the scheme level
4099 * will be signalled. */
6dbd0af5 4100 PREP_APPLY (proc, SCM_EOL);
a61f4e0c 4101 if (scm_is_null (SCM_CDR (x))) {
6dbd0af5 4102 ENTER_APPLY;
89efbff4 4103 evap0:
ddd8f927 4104 SCM_ASRTGO (!SCM_IMP (proc), badfun);
0f2d19dd
JB
4105 switch (SCM_TYP7 (proc))
4106 { /* no arguments given */
4107 case scm_tc7_subr_0:
4108 RETURN (SCM_SUBRF (proc) ());
4109 case scm_tc7_subr_1o:
4110 RETURN (SCM_SUBRF (proc) (SCM_UNDEFINED));
4111 case scm_tc7_lsubr:
4112 RETURN (SCM_SUBRF (proc) (SCM_EOL));
4113 case scm_tc7_rpsubr:
4114 RETURN (SCM_BOOL_T);
4115 case scm_tc7_asubr:
4116 RETURN (SCM_SUBRF (proc) (SCM_UNDEFINED, SCM_UNDEFINED));
0717dfd8 4117 case scm_tc7_smob:
68b06924 4118 if (!SCM_SMOB_APPLICABLE_P (proc))
0717dfd8 4119 goto badfun;
68b06924 4120 RETURN (SCM_SMOB_APPLY_0 (proc));
0f2d19dd 4121 case scm_tc7_cclo:
dff98306 4122 arg1 = proc;
0f2d19dd 4123 proc = SCM_CCLO_SUBR (proc);
6dbd0af5
MD
4124#ifdef DEVAL
4125 debug.info->a.proc = proc;
dff98306 4126 debug.info->a.args = scm_list_1 (arg1);
6dbd0af5 4127#endif
0f2d19dd 4128 goto evap1;
89efbff4
MD
4129 case scm_tc7_pws:
4130 proc = SCM_PROCEDURE (proc);
4131#ifdef DEVAL
4132 debug.info->a.proc = proc;
4133#endif
002f1a5d
MD
4134 if (!SCM_CLOSUREP (proc))
4135 goto evap0;
ddd8f927 4136 /* fallthrough */
0f2d19dd 4137 case scm_tcs_closures:
ddd8f927
DH
4138 {
4139 const SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c 4140 if (scm_is_pair (formals))
212e58ed 4141 goto wrongnumargs;
ddd8f927
DH
4142 x = SCM_CLOSURE_BODY (proc);
4143 env = SCM_EXTEND_ENV (formals, SCM_EOL, SCM_ENV (proc));
4144 goto nontoplevel_begin;
4145 }
904a077d 4146 case scm_tcs_struct:
195847fa
MD
4147 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
4148 {
4149 x = SCM_ENTITY_PROCEDURE (proc);
dff98306 4150 arg1 = SCM_EOL;
195847fa
MD
4151 goto type_dispatch;
4152 }
2ca0d207 4153 else if (SCM_I_OPERATORP (proc))
da7f71d7 4154 {
dff98306 4155 arg1 = proc;
195847fa
MD
4156 proc = (SCM_I_ENTITYP (proc)
4157 ? SCM_ENTITY_PROCEDURE (proc)
4158 : SCM_OPERATOR_PROCEDURE (proc));
da7f71d7 4159#ifdef DEVAL
195847fa 4160 debug.info->a.proc = proc;
dff98306 4161 debug.info->a.args = scm_list_1 (arg1);
da7f71d7 4162#endif
ddd8f927 4163 goto evap1;
da7f71d7 4164 }
2ca0d207
DH
4165 else
4166 goto badfun;
0f2d19dd
JB
4167 case scm_tc7_subr_1:
4168 case scm_tc7_subr_2:
4169 case scm_tc7_subr_2o:
14b18ed6 4170 case scm_tc7_dsubr:
0f2d19dd
JB
4171 case scm_tc7_cxr:
4172 case scm_tc7_subr_3:
4173 case scm_tc7_lsubr_2:
212e58ed 4174 wrongnumargs:
f5bf2977 4175 scm_wrong_num_args (proc);
0f2d19dd 4176 default:
ddd8f927
DH
4177 badfun:
4178 scm_misc_error (NULL, "Wrong type to apply: ~S", scm_list_1 (proc));
0f2d19dd 4179 }
6dbd0af5 4180 }
0f2d19dd
JB
4181
4182 /* must handle macros by here */
4183 x = SCM_CDR (x);
a61f4e0c 4184 if (scm_is_pair (x))
dff98306 4185 arg1 = EVALCAR (x, env);
680ed4a8 4186 else
ab1f1094 4187 scm_wrong_num_args (proc);
6dbd0af5 4188#ifdef DEVAL
dff98306 4189 debug.info->a.args = scm_list_1 (arg1);
6dbd0af5 4190#endif
0f2d19dd 4191 x = SCM_CDR (x);
42030fb2
DH
4192 {
4193 SCM arg2;
a61f4e0c 4194 if (scm_is_null (x))
42030fb2
DH
4195 {
4196 ENTER_APPLY;
4197 evap1: /* inputs: proc, arg1 */
ddd8f927 4198 SCM_ASRTGO (!SCM_IMP (proc), badfun);
42030fb2
DH
4199 switch (SCM_TYP7 (proc))
4200 { /* have one argument in arg1 */
4201 case scm_tc7_subr_2o:
4202 RETURN (SCM_SUBRF (proc) (arg1, SCM_UNDEFINED));
4203 case scm_tc7_subr_1:
4204 case scm_tc7_subr_1o:
4205 RETURN (SCM_SUBRF (proc) (arg1));
14b18ed6 4206 case scm_tc7_dsubr:
e11e83f3 4207 if (SCM_I_INUMP (arg1))
14b18ed6 4208 {
d9a67fc4 4209 RETURN (scm_from_double (SCM_DSUBRF (proc) ((double) SCM_I_INUM (arg1))));
14b18ed6
DH
4210 }
4211 else if (SCM_REALP (arg1))
4212 {
d9a67fc4 4213 RETURN (scm_from_double (SCM_DSUBRF (proc) (SCM_REAL_VALUE (arg1))));
14b18ed6
DH
4214 }
4215 else if (SCM_BIGP (arg1))
4216 {
d9a67fc4 4217 RETURN (scm_from_double (SCM_DSUBRF (proc) (scm_i_big2dbl (arg1))));
14b18ed6 4218 }
f92e85f7
MV
4219 else if (SCM_FRACTIONP (arg1))
4220 {
d9a67fc4 4221 RETURN (scm_from_double (SCM_DSUBRF (proc) (scm_i_fraction2double (arg1))));
f92e85f7
MV
4222 }
4223 SCM_WTA_DISPATCH_1 (*SCM_SUBR_GENERIC (proc), arg1,
cc95e00a
MV
4224 SCM_ARG1,
4225 scm_i_symbol_chars (SCM_SNAME (proc)));
42030fb2 4226 case scm_tc7_cxr:
a61f4e0c 4227 RETURN (scm_i_chase_pairs (arg1, (scm_t_bits) SCM_SUBRF (proc)));
42030fb2
DH
4228 case scm_tc7_rpsubr:
4229 RETURN (SCM_BOOL_T);
4230 case scm_tc7_asubr:
4231 RETURN (SCM_SUBRF (proc) (arg1, SCM_UNDEFINED));
4232 case scm_tc7_lsubr:
0f2d19dd 4233#ifdef DEVAL
42030fb2 4234 RETURN (SCM_SUBRF (proc) (debug.info->a.args));
0f2d19dd 4235#else
42030fb2 4236 RETURN (SCM_SUBRF (proc) (scm_list_1 (arg1)));
0f2d19dd 4237#endif
42030fb2
DH
4238 case scm_tc7_smob:
4239 if (!SCM_SMOB_APPLICABLE_P (proc))
4240 goto badfun;
4241 RETURN (SCM_SMOB_APPLY_1 (proc, arg1));
4242 case scm_tc7_cclo:
4243 arg2 = arg1;
4244 arg1 = proc;
4245 proc = SCM_CCLO_SUBR (proc);
6dbd0af5 4246#ifdef DEVAL
42030fb2
DH
4247 debug.info->a.args = scm_cons (arg1, debug.info->a.args);
4248 debug.info->a.proc = proc;
6dbd0af5 4249#endif
42030fb2
DH
4250 goto evap2;
4251 case scm_tc7_pws:
4252 proc = SCM_PROCEDURE (proc);
89efbff4 4253#ifdef DEVAL
42030fb2 4254 debug.info->a.proc = proc;
89efbff4 4255#endif
42030fb2
DH
4256 if (!SCM_CLOSUREP (proc))
4257 goto evap1;
ddd8f927 4258 /* fallthrough */
42030fb2 4259 case scm_tcs_closures:
ddd8f927
DH
4260 {
4261 /* clos1: */
4262 const SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c
MV
4263 if (scm_is_null (formals)
4264 || (scm_is_pair (formals) && scm_is_pair (SCM_CDR (formals))))
212e58ed 4265 goto wrongnumargs;
ddd8f927 4266 x = SCM_CLOSURE_BODY (proc);
0f2d19dd 4267#ifdef DEVAL
ddd8f927
DH
4268 env = SCM_EXTEND_ENV (formals,
4269 debug.info->a.args,
4270 SCM_ENV (proc));
0f2d19dd 4271#else
ddd8f927
DH
4272 env = SCM_EXTEND_ENV (formals,
4273 scm_list_1 (arg1),
4274 SCM_ENV (proc));
0f2d19dd 4275#endif
ddd8f927
DH
4276 goto nontoplevel_begin;
4277 }
42030fb2
DH
4278 case scm_tcs_struct:
4279 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
4280 {
4281 x = SCM_ENTITY_PROCEDURE (proc);
f3d2630a 4282#ifdef DEVAL
42030fb2 4283 arg1 = debug.info->a.args;
f3d2630a 4284#else
42030fb2 4285 arg1 = scm_list_1 (arg1);
f3d2630a 4286#endif
42030fb2
DH
4287 goto type_dispatch;
4288 }
2ca0d207 4289 else if (SCM_I_OPERATORP (proc))
42030fb2
DH
4290 {
4291 arg2 = arg1;
4292 arg1 = proc;
4293 proc = (SCM_I_ENTITYP (proc)
4294 ? SCM_ENTITY_PROCEDURE (proc)
4295 : SCM_OPERATOR_PROCEDURE (proc));
0c32d76c 4296#ifdef DEVAL
42030fb2
DH
4297 debug.info->a.args = scm_cons (arg1, debug.info->a.args);
4298 debug.info->a.proc = proc;
0c32d76c 4299#endif
ddd8f927 4300 goto evap2;
42030fb2 4301 }
2ca0d207
DH
4302 else
4303 goto badfun;
42030fb2
DH
4304 case scm_tc7_subr_2:
4305 case scm_tc7_subr_0:
4306 case scm_tc7_subr_3:
4307 case scm_tc7_lsubr_2:
ab1f1094 4308 scm_wrong_num_args (proc);
42030fb2
DH
4309 default:
4310 goto badfun;
4311 }
4312 }
a61f4e0c 4313 if (scm_is_pair (x))
42030fb2
DH
4314 arg2 = EVALCAR (x, env);
4315 else
ab1f1094 4316 scm_wrong_num_args (proc);
bd987b8e 4317
42030fb2 4318 { /* have two or more arguments */
6dbd0af5 4319#ifdef DEVAL
42030fb2 4320 debug.info->a.args = scm_list_2 (arg1, arg2);
6dbd0af5 4321#endif
42030fb2 4322 x = SCM_CDR (x);
a61f4e0c 4323 if (scm_is_null (x)) {
42030fb2
DH
4324 ENTER_APPLY;
4325 evap2:
ddd8f927 4326 SCM_ASRTGO (!SCM_IMP (proc), badfun);
42030fb2
DH
4327 switch (SCM_TYP7 (proc))
4328 { /* have two arguments */
4329 case scm_tc7_subr_2:
4330 case scm_tc7_subr_2o:
4331 RETURN (SCM_SUBRF (proc) (arg1, arg2));
4332 case scm_tc7_lsubr:
0f2d19dd 4333#ifdef DEVAL
42030fb2 4334 RETURN (SCM_SUBRF (proc) (debug.info->a.args));
6dbd0af5 4335#else
42030fb2
DH
4336 RETURN (SCM_SUBRF (proc) (scm_list_2 (arg1, arg2)));
4337#endif
4338 case scm_tc7_lsubr_2:
4339 RETURN (SCM_SUBRF (proc) (arg1, arg2, SCM_EOL));
4340 case scm_tc7_rpsubr:
4341 case scm_tc7_asubr:
4342 RETURN (SCM_SUBRF (proc) (arg1, arg2));
4343 case scm_tc7_smob:
4344 if (!SCM_SMOB_APPLICABLE_P (proc))
4345 goto badfun;
4346 RETURN (SCM_SMOB_APPLY_2 (proc, arg1, arg2));
4347 cclon:
4348 case scm_tc7_cclo:
0f2d19dd 4349#ifdef DEVAL
42030fb2
DH
4350 RETURN (SCM_APPLY (SCM_CCLO_SUBR (proc),
4351 scm_cons (proc, debug.info->a.args),
4352 SCM_EOL));
0f2d19dd 4353#else
42030fb2
DH
4354 RETURN (SCM_APPLY (SCM_CCLO_SUBR (proc),
4355 scm_cons2 (proc, arg1,
4356 scm_cons (arg2,
4357 scm_eval_args (x,
4358 env,
4359 proc))),
4360 SCM_EOL));
4361#endif
4362 case scm_tcs_struct:
4363 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
4364 {
4365 x = SCM_ENTITY_PROCEDURE (proc);
4366#ifdef DEVAL
4367 arg1 = debug.info->a.args;
4368#else
4369 arg1 = scm_list_2 (arg1, arg2);
6dbd0af5 4370#endif
42030fb2
DH
4371 goto type_dispatch;
4372 }
2ca0d207 4373 else if (SCM_I_OPERATORP (proc))
42030fb2
DH
4374 {
4375 operatorn:
f3d2630a 4376#ifdef DEVAL
42030fb2
DH
4377 RETURN (SCM_APPLY (SCM_I_ENTITYP (proc)
4378 ? SCM_ENTITY_PROCEDURE (proc)
4379 : SCM_OPERATOR_PROCEDURE (proc),
4380 scm_cons (proc, debug.info->a.args),
4381 SCM_EOL));
f3d2630a 4382#else
42030fb2
DH
4383 RETURN (SCM_APPLY (SCM_I_ENTITYP (proc)
4384 ? SCM_ENTITY_PROCEDURE (proc)
4385 : SCM_OPERATOR_PROCEDURE (proc),
4386 scm_cons2 (proc, arg1,
4387 scm_cons (arg2,
4388 scm_eval_args (x,
4389 env,
4390 proc))),
4391 SCM_EOL));
f3d2630a 4392#endif
42030fb2 4393 }
2ca0d207
DH
4394 else
4395 goto badfun;
42030fb2 4396 case scm_tc7_subr_0:
14b18ed6 4397 case scm_tc7_dsubr:
42030fb2
DH
4398 case scm_tc7_cxr:
4399 case scm_tc7_subr_1o:
4400 case scm_tc7_subr_1:
4401 case scm_tc7_subr_3:
ab1f1094 4402 scm_wrong_num_args (proc);
42030fb2 4403 default:
9b07e212 4404 goto badfun;
42030fb2
DH
4405 case scm_tc7_pws:
4406 proc = SCM_PROCEDURE (proc);
4407#ifdef DEVAL
4408 debug.info->a.proc = proc;
4409#endif
4410 if (!SCM_CLOSUREP (proc))
4411 goto evap2;
ddd8f927 4412 /* fallthrough */
42030fb2 4413 case scm_tcs_closures:
ddd8f927
DH
4414 {
4415 /* clos2: */
4416 const SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c
MV
4417 if (scm_is_null (formals)
4418 || (scm_is_pair (formals)
4419 && (scm_is_null (SCM_CDR (formals))
4420 || (scm_is_pair (SCM_CDR (formals))
4421 && scm_is_pair (SCM_CDDR (formals))))))
212e58ed 4422 goto wrongnumargs;
0c32d76c 4423#ifdef DEVAL
ddd8f927
DH
4424 env = SCM_EXTEND_ENV (formals,
4425 debug.info->a.args,
4426 SCM_ENV (proc));
195847fa 4427#else
ddd8f927
DH
4428 env = SCM_EXTEND_ENV (formals,
4429 scm_list_2 (arg1, arg2),
4430 SCM_ENV (proc));
195847fa 4431#endif
ddd8f927
DH
4432 x = SCM_CLOSURE_BODY (proc);
4433 goto nontoplevel_begin;
4434 }
42030fb2
DH
4435 }
4436 }
a61f4e0c 4437 if (!scm_is_pair (x))
ab1f1094 4438 scm_wrong_num_args (proc);
42030fb2
DH
4439#ifdef DEVAL
4440 debug.info->a.args = scm_cons2 (arg1, arg2,
4441 deval_args (x, env, proc,
4442 SCM_CDRLOC (SCM_CDR (debug.info->a.args))));
4443#endif
4444 ENTER_APPLY;
4445 evap3:
ddd8f927 4446 SCM_ASRTGO (!SCM_IMP (proc), badfun);
42030fb2
DH
4447 switch (SCM_TYP7 (proc))
4448 { /* have 3 or more arguments */
4449#ifdef DEVAL
6dbd0af5 4450 case scm_tc7_subr_3:
a61f4e0c 4451 if (!scm_is_null (SCM_CDR (x)))
ab1f1094
DH
4452 scm_wrong_num_args (proc);
4453 else
4454 RETURN (SCM_SUBRF (proc) (arg1, arg2,
4455 SCM_CADDR (debug.info->a.args)));
42030fb2
DH
4456 case scm_tc7_asubr:
4457 arg1 = SCM_SUBRF(proc)(arg1, arg2);
4458 arg2 = SCM_CDDR (debug.info->a.args);
4459 do
4460 {
4461 arg1 = SCM_SUBRF(proc)(arg1, SCM_CAR (arg2));
4462 arg2 = SCM_CDR (arg2);
4463 }
4464 while (SCM_NIMP (arg2));
4465 RETURN (arg1);
4466 case scm_tc7_rpsubr:
7888309b 4467 if (scm_is_false (SCM_SUBRF (proc) (arg1, arg2)))
42030fb2
DH
4468 RETURN (SCM_BOOL_F);
4469 arg1 = SCM_CDDR (debug.info->a.args);
4470 do
4471 {
7888309b 4472 if (scm_is_false (SCM_SUBRF (proc) (arg2, SCM_CAR (arg1))))
42030fb2
DH
4473 RETURN (SCM_BOOL_F);
4474 arg2 = SCM_CAR (arg1);
4475 arg1 = SCM_CDR (arg1);
4476 }
4477 while (SCM_NIMP (arg1));
4478 RETURN (SCM_BOOL_T);
4479 case scm_tc7_lsubr_2:
4480 RETURN (SCM_SUBRF (proc) (arg1, arg2,
4481 SCM_CDDR (debug.info->a.args)));
4482 case scm_tc7_lsubr:
4483 RETURN (SCM_SUBRF (proc) (debug.info->a.args));
4484 case scm_tc7_smob:
4485 if (!SCM_SMOB_APPLICABLE_P (proc))
4486 goto badfun;
4487 RETURN (SCM_SMOB_APPLY_3 (proc, arg1, arg2,
4488 SCM_CDDR (debug.info->a.args)));
4489 case scm_tc7_cclo:
4490 goto cclon;
002f1a5d
MD
4491 case scm_tc7_pws:
4492 proc = SCM_PROCEDURE (proc);
002f1a5d 4493 debug.info->a.proc = proc;
002f1a5d 4494 if (!SCM_CLOSUREP (proc))
42030fb2 4495 goto evap3;
ddd8f927 4496 /* fallthrough */
6dbd0af5 4497 case scm_tcs_closures:
ddd8f927
DH
4498 {
4499 const SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c
MV
4500 if (scm_is_null (formals)
4501 || (scm_is_pair (formals)
4502 && (scm_is_null (SCM_CDR (formals))
4503 || (scm_is_pair (SCM_CDR (formals))
ddd8f927 4504 && scm_badargsp (SCM_CDDR (formals), x)))))
212e58ed 4505 goto wrongnumargs;
ddd8f927
DH
4506 SCM_SET_ARGSREADY (debug);
4507 env = SCM_EXTEND_ENV (formals,
4508 debug.info->a.args,
4509 SCM_ENV (proc));
4510 x = SCM_CLOSURE_BODY (proc);
4511 goto nontoplevel_begin;
4512 }
6dbd0af5 4513#else /* DEVAL */
42030fb2 4514 case scm_tc7_subr_3:
a61f4e0c 4515 if (!scm_is_null (SCM_CDR (x)))
ab1f1094
DH
4516 scm_wrong_num_args (proc);
4517 else
4518 RETURN (SCM_SUBRF (proc) (arg1, arg2, EVALCAR (x, env)));
42030fb2
DH
4519 case scm_tc7_asubr:
4520 arg1 = SCM_SUBRF (proc) (arg1, arg2);
4521 do
4522 {
4523 arg1 = SCM_SUBRF(proc)(arg1, EVALCAR(x, env));
4524 x = SCM_CDR(x);
4525 }
a61f4e0c 4526 while (!scm_is_null (x));
42030fb2
DH
4527 RETURN (arg1);
4528 case scm_tc7_rpsubr:
7888309b 4529 if (scm_is_false (SCM_SUBRF (proc) (arg1, arg2)))
42030fb2
DH
4530 RETURN (SCM_BOOL_F);
4531 do
4532 {
4533 arg1 = EVALCAR (x, env);
7888309b 4534 if (scm_is_false (SCM_SUBRF (proc) (arg2, arg1)))
42030fb2
DH
4535 RETURN (SCM_BOOL_F);
4536 arg2 = arg1;
4537 x = SCM_CDR (x);
4538 }
a61f4e0c 4539 while (!scm_is_null (x));
42030fb2
DH
4540 RETURN (SCM_BOOL_T);
4541 case scm_tc7_lsubr_2:
4542 RETURN (SCM_SUBRF (proc) (arg1, arg2, scm_eval_args (x, env, proc)));
4543 case scm_tc7_lsubr:
4544 RETURN (SCM_SUBRF (proc) (scm_cons2 (arg1,
4545 arg2,
4546 scm_eval_args (x, env, proc))));
4547 case scm_tc7_smob:
4548 if (!SCM_SMOB_APPLICABLE_P (proc))
4549 goto badfun;
4550 RETURN (SCM_SMOB_APPLY_3 (proc, arg1, arg2,
4551 scm_eval_args (x, env, proc)));
4552 case scm_tc7_cclo:
4553 goto cclon;
4554 case scm_tc7_pws:
4555 proc = SCM_PROCEDURE (proc);
4556 if (!SCM_CLOSUREP (proc))
4557 goto evap3;
ddd8f927
DH
4558 /* fallthrough */
4559 case scm_tcs_closures:
da7f71d7 4560 {
ddd8f927 4561 const SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c
MV
4562 if (scm_is_null (formals)
4563 || (scm_is_pair (formals)
4564 && (scm_is_null (SCM_CDR (formals))
4565 || (scm_is_pair (SCM_CDR (formals))
42030fb2 4566 && scm_badargsp (SCM_CDDR (formals), x)))))
212e58ed 4567 goto wrongnumargs;
ddd8f927
DH
4568 env = SCM_EXTEND_ENV (formals,
4569 scm_cons2 (arg1,
4570 arg2,
4571 scm_eval_args (x, env, proc)),
4572 SCM_ENV (proc));
4573 x = SCM_CLOSURE_BODY (proc);
4574 goto nontoplevel_begin;
da7f71d7 4575 }
0f2d19dd 4576#endif /* DEVAL */
42030fb2
DH
4577 case scm_tcs_struct:
4578 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
4579 {
f3d2630a 4580#ifdef DEVAL
42030fb2 4581 arg1 = debug.info->a.args;
f3d2630a 4582#else
42030fb2 4583 arg1 = scm_cons2 (arg1, arg2, scm_eval_args (x, env, proc));
f3d2630a 4584#endif
42030fb2
DH
4585 x = SCM_ENTITY_PROCEDURE (proc);
4586 goto type_dispatch;
4587 }
2ca0d207 4588 else if (SCM_I_OPERATORP (proc))
42030fb2 4589 goto operatorn;
2ca0d207
DH
4590 else
4591 goto badfun;
42030fb2
DH
4592 case scm_tc7_subr_2:
4593 case scm_tc7_subr_1o:
4594 case scm_tc7_subr_2o:
4595 case scm_tc7_subr_0:
14b18ed6 4596 case scm_tc7_dsubr:
42030fb2
DH
4597 case scm_tc7_cxr:
4598 case scm_tc7_subr_1:
ab1f1094 4599 scm_wrong_num_args (proc);
42030fb2 4600 default:
9b07e212 4601 goto badfun;
42030fb2
DH
4602 }
4603 }
0f2d19dd
JB
4604 }
4605#ifdef DEVAL
6dbd0af5 4606exit:
5132eef0 4607 if (scm_check_exit_p && SCM_TRAPS_P)
b7ff98dd 4608 if (SCM_EXIT_FRAME_P || (SCM_TRACE_P && SCM_TRACED_FRAME_P (debug)))
6dbd0af5 4609 {
b7ff98dd 4610 SCM_CLEAR_TRACED_FRAME (debug);
7c9c0169 4611 arg1 = scm_make_debugobj (&debug);
d95c0b76 4612 SCM_TRAPS_P = 0;
7c9c0169 4613 arg1 = scm_call_3 (SCM_EXIT_FRAME_HDLR, scm_sym_exit_frame, arg1, proc);
d95c0b76 4614 SCM_TRAPS_P = 1;
7c9c0169
NJ
4615 if (scm_is_pair (arg1) && scm_is_eq (SCM_CAR (arg1), sym_instead))
4616 proc = SCM_CDR (arg1);
6dbd0af5 4617 }
9de87eea 4618 scm_i_set_last_debug_frame (debug.prev);
0f2d19dd
JB
4619 return proc;
4620#endif
4621}
4622
6dbd0af5
MD
4623
4624/* SECTION: This code is compiled once.
4625 */
4626
0f2d19dd
JB
4627#ifndef DEVAL
4628
fdc28395 4629\f
d0b07b5d 4630
fdc28395
KN
4631/* Simple procedure calls
4632 */
4633
4634SCM
4635scm_call_0 (SCM proc)
4636{
4637 return scm_apply (proc, SCM_EOL, SCM_EOL);
4638}
4639
4640SCM
4641scm_call_1 (SCM proc, SCM arg1)
4642{
4643 return scm_apply (proc, arg1, scm_listofnull);
4644}
4645
4646SCM
4647scm_call_2 (SCM proc, SCM arg1, SCM arg2)
4648{
4649 return scm_apply (proc, arg1, scm_cons (arg2, scm_listofnull));
4650}
4651
4652SCM
4653scm_call_3 (SCM proc, SCM arg1, SCM arg2, SCM arg3)
4654{
4655 return scm_apply (proc, arg1, scm_cons2 (arg2, arg3, scm_listofnull));
4656}
4657
d95c0b76
NJ
4658SCM
4659scm_call_4 (SCM proc, SCM arg1, SCM arg2, SCM arg3, SCM arg4)
4660{
4661 return scm_apply (proc, arg1, scm_cons2 (arg2, arg3,
4662 scm_cons (arg4, scm_listofnull)));
4663}
4664
fdc28395
KN
4665/* Simple procedure applies
4666 */
4667
4668SCM
4669scm_apply_0 (SCM proc, SCM args)
4670{
4671 return scm_apply (proc, args, SCM_EOL);
4672}
4673
4674SCM
4675scm_apply_1 (SCM proc, SCM arg1, SCM args)
4676{
4677 return scm_apply (proc, scm_cons (arg1, args), SCM_EOL);
4678}
4679
4680SCM
4681scm_apply_2 (SCM proc, SCM arg1, SCM arg2, SCM args)
4682{
4683 return scm_apply (proc, scm_cons2 (arg1, arg2, args), SCM_EOL);
4684}
4685
4686SCM
4687scm_apply_3 (SCM proc, SCM arg1, SCM arg2, SCM arg3, SCM args)
4688{
4689 return scm_apply (proc, scm_cons (arg1, scm_cons2 (arg2, arg3, args)),
4690 SCM_EOL);
4691}
4692
82a2622a 4693/* This code processes the arguments to apply:
b145c172
JB
4694
4695 (apply PROC ARG1 ... ARGS)
4696
82a2622a
JB
4697 Given a list (ARG1 ... ARGS), this function conses the ARG1
4698 ... arguments onto the front of ARGS, and returns the resulting
4699 list. Note that ARGS is a list; thus, the argument to this
4700 function is a list whose last element is a list.
4701
4702 Apply calls this function, and applies PROC to the elements of the
b145c172
JB
4703 result. apply:nconc2last takes care of building the list of
4704 arguments, given (ARG1 ... ARGS).
4705
82a2622a
JB
4706 Rather than do new consing, apply:nconc2last destroys its argument.
4707 On that topic, this code came into my care with the following
4708 beautifully cryptic comment on that topic: "This will only screw
4709 you if you do (scm_apply scm_apply '( ... ))" If you know what
4710 they're referring to, send me a patch to this comment. */
b145c172 4711
3b3b36dd 4712SCM_DEFINE (scm_nconc2last, "apply:nconc2last", 1, 0, 0,
b3f26b14
MG
4713 (SCM lst),
4714 "Given a list (@var{arg1} @dots{} @var{args}), this function\n"
4715 "conses the @var{arg1} @dots{} arguments onto the front of\n"
4716 "@var{args}, and returns the resulting list. Note that\n"
4717 "@var{args} is a list; thus, the argument to this function is\n"
4718 "a list whose last element is a list.\n"
4719 "Note: Rather than do new consing, @code{apply:nconc2last}\n"
4720 "destroys its argument, so use with care.")
1bbd0b84 4721#define FUNC_NAME s_scm_nconc2last
0f2d19dd
JB
4722{
4723 SCM *lloc;
34d19ef6 4724 SCM_VALIDATE_NONEMPTYLIST (1, lst);
0f2d19dd 4725 lloc = &lst;
a61f4e0c 4726 while (!scm_is_null (SCM_CDR (*lloc))) /* Perhaps should be
c96d76b8
NJ
4727 SCM_NULL_OR_NIL_P, but not
4728 needed in 99.99% of cases,
4729 and it could seriously hurt
4730 performance. - Neil */
a23afe53 4731 lloc = SCM_CDRLOC (*lloc);
1bbd0b84 4732 SCM_ASSERT (scm_ilength (SCM_CAR (*lloc)) >= 0, lst, SCM_ARG1, FUNC_NAME);
0f2d19dd
JB
4733 *lloc = SCM_CAR (*lloc);
4734 return lst;
4735}
1bbd0b84 4736#undef FUNC_NAME
0f2d19dd
JB
4737
4738#endif /* !DEVAL */
4739
6dbd0af5
MD
4740
4741/* SECTION: When DEVAL is defined this code yields scm_dapply.
4742 * It is compiled twice.
4743 */
4744
0f2d19dd 4745#if 0
0f2d19dd 4746SCM
6e8d25a6 4747scm_apply (SCM proc, SCM arg1, SCM args)
0f2d19dd
JB
4748{}
4749#endif
4750
4751#if 0
0f2d19dd 4752SCM
6e8d25a6 4753scm_dapply (SCM proc, SCM arg1, SCM args)
d0b07b5d 4754{}
0f2d19dd
JB
4755#endif
4756
1cc91f1b 4757
82a2622a
JB
4758/* Apply a function to a list of arguments.
4759
4760 This function is exported to the Scheme level as taking two
4761 required arguments and a tail argument, as if it were:
4762 (lambda (proc arg1 . args) ...)
4763 Thus, if you just have a list of arguments to pass to a procedure,
4764 pass the list as ARG1, and '() for ARGS. If you have some fixed
4765 args, pass the first as ARG1, then cons any remaining fixed args
4766 onto the front of your argument list, and pass that as ARGS. */
4767
0f2d19dd 4768SCM
1bbd0b84 4769SCM_APPLY (SCM proc, SCM arg1, SCM args)
0f2d19dd 4770{
0f2d19dd 4771#ifdef DEVAL
92c2555f
MV
4772 scm_t_debug_frame debug;
4773 scm_t_debug_info debug_vect_body;
9de87eea 4774 debug.prev = scm_i_last_debug_frame ();
b7ff98dd 4775 debug.status = SCM_APPLYFRAME;
c0ab1b8d 4776 debug.vect = &debug_vect_body;
6dbd0af5
MD
4777 debug.vect[0].a.proc = proc;
4778 debug.vect[0].a.args = SCM_EOL;
9de87eea 4779 scm_i_set_last_debug_frame (&debug);
0f2d19dd 4780#else
434f2f7a 4781 if (scm_debug_mode_p)
0f2d19dd 4782 return scm_dapply (proc, arg1, args);
0f2d19dd
JB
4783#endif
4784
4785 SCM_ASRTGO (SCM_NIMP (proc), badproc);
82a2622a
JB
4786
4787 /* If ARGS is the empty list, then we're calling apply with only two
4788 arguments --- ARG1 is the list of arguments for PROC. Whatever
4789 the case, futz with things so that ARG1 is the first argument to
4790 give to PROC (or SCM_UNDEFINED if no args), and ARGS contains the
30000774
JB
4791 rest.
4792
4793 Setting the debug apply frame args this way is pretty messy.
4794 Perhaps we should store arg1 and args directly in the frame as
4795 received, and let scm_frame_arguments unpack them, because that's
4796 a relatively rare operation. This works for now; if the Guile
4797 developer archives are still around, see Mikael's post of
4798 11-Apr-97. */
a61f4e0c 4799 if (scm_is_null (args))
0f2d19dd 4800 {
a61f4e0c 4801 if (scm_is_null (arg1))
30000774
JB
4802 {
4803 arg1 = SCM_UNDEFINED;
4804#ifdef DEVAL
4805 debug.vect[0].a.args = SCM_EOL;
4806#endif
4807 }
0f2d19dd
JB
4808 else
4809 {
30000774
JB
4810#ifdef DEVAL
4811 debug.vect[0].a.args = arg1;
4812#endif
0f2d19dd
JB
4813 args = SCM_CDR (arg1);
4814 arg1 = SCM_CAR (arg1);
4815 }
4816 }
4817 else
4818 {
0f2d19dd 4819 args = scm_nconc2last (args);
30000774
JB
4820#ifdef DEVAL
4821 debug.vect[0].a.args = scm_cons (arg1, args);
4822#endif
0f2d19dd 4823 }
0f2d19dd 4824#ifdef DEVAL
b6d75948 4825 if (SCM_ENTER_FRAME_P && SCM_TRAPS_P)
6dbd0af5 4826 {
7c9c0169 4827 SCM tmp = scm_make_debugobj (&debug);
d95c0b76
NJ
4828 SCM_TRAPS_P = 0;
4829 scm_call_2 (SCM_ENTER_FRAME_HDLR, scm_sym_enter_frame, tmp);
4830 SCM_TRAPS_P = 1;
6dbd0af5 4831 }
6dbd0af5
MD
4832 ENTER_APPLY;
4833#endif
6dbd0af5 4834tail:
0f2d19dd
JB
4835 switch (SCM_TYP7 (proc))
4836 {
4837 case scm_tc7_subr_2o:
a61f4e0c 4838 args = scm_is_null (args) ? SCM_UNDEFINED : SCM_CAR (args);
ddea3325 4839 RETURN (SCM_SUBRF (proc) (arg1, args));
0f2d19dd 4840 case scm_tc7_subr_2:
a61f4e0c 4841 if (scm_is_null (args) || !scm_is_null (SCM_CDR (args)))
ab1f1094 4842 scm_wrong_num_args (proc);
0f2d19dd 4843 args = SCM_CAR (args);
ddea3325 4844 RETURN (SCM_SUBRF (proc) (arg1, args));
0f2d19dd 4845 case scm_tc7_subr_0:
ab1f1094
DH
4846 if (!SCM_UNBNDP (arg1))
4847 scm_wrong_num_args (proc);
4848 else
4849 RETURN (SCM_SUBRF (proc) ());
0f2d19dd 4850 case scm_tc7_subr_1:
ab1f1094
DH
4851 if (SCM_UNBNDP (arg1))
4852 scm_wrong_num_args (proc);
0f2d19dd 4853 case scm_tc7_subr_1o:
a61f4e0c 4854 if (!scm_is_null (args))
ab1f1094
DH
4855 scm_wrong_num_args (proc);
4856 else
4857 RETURN (SCM_SUBRF (proc) (arg1));
14b18ed6 4858 case scm_tc7_dsubr:
a61f4e0c 4859 if (SCM_UNBNDP (arg1) || !scm_is_null (args))
14b18ed6 4860 scm_wrong_num_args (proc);
e11e83f3 4861 if (SCM_I_INUMP (arg1))
14b18ed6 4862 {
d9a67fc4 4863 RETURN (scm_from_double (SCM_DSUBRF (proc) ((double) SCM_I_INUM (arg1))));
14b18ed6
DH
4864 }
4865 else if (SCM_REALP (arg1))
4866 {
d9a67fc4 4867 RETURN (scm_from_double (SCM_DSUBRF (proc) (SCM_REAL_VALUE (arg1))));
14b18ed6
DH
4868 }
4869 else if (SCM_BIGP (arg1))
f92e85f7 4870 {
d9a67fc4 4871 RETURN (scm_from_double (SCM_DSUBRF (proc) (scm_i_big2dbl (arg1))));
f92e85f7
MV
4872 }
4873 else if (SCM_FRACTIONP (arg1))
4874 {
d9a67fc4 4875 RETURN (scm_from_double (SCM_DSUBRF (proc) (scm_i_fraction2double (arg1))));
f92e85f7 4876 }
14b18ed6 4877 SCM_WTA_DISPATCH_1 (*SCM_SUBR_GENERIC (proc), arg1,
cc95e00a 4878 SCM_ARG1, scm_i_symbol_chars (SCM_SNAME (proc)));
0f2d19dd 4879 case scm_tc7_cxr:
a61f4e0c 4880 if (SCM_UNBNDP (arg1) || !scm_is_null (args))
ab1f1094 4881 scm_wrong_num_args (proc);
a61f4e0c 4882 RETURN (scm_i_chase_pairs (arg1, (scm_t_bits) SCM_SUBRF (proc)));
0f2d19dd 4883 case scm_tc7_subr_3:
a61f4e0c
MV
4884 if (scm_is_null (args)
4885 || scm_is_null (SCM_CDR (args))
4886 || !scm_is_null (SCM_CDDR (args)))
ab1f1094
DH
4887 scm_wrong_num_args (proc);
4888 else
4889 RETURN (SCM_SUBRF (proc) (arg1, SCM_CAR (args), SCM_CADR (args)));
0f2d19dd
JB
4890 case scm_tc7_lsubr:
4891#ifdef DEVAL
ddea3325 4892 RETURN (SCM_SUBRF (proc) (SCM_UNBNDP (arg1) ? SCM_EOL : debug.vect[0].a.args));
0f2d19dd 4893#else
ddea3325 4894 RETURN (SCM_SUBRF (proc) (SCM_UNBNDP (arg1) ? SCM_EOL : scm_cons (arg1, args)));
0f2d19dd
JB
4895#endif
4896 case scm_tc7_lsubr_2:
a61f4e0c 4897 if (!scm_is_pair (args))
ab1f1094
DH
4898 scm_wrong_num_args (proc);
4899 else
4900 RETURN (SCM_SUBRF (proc) (arg1, SCM_CAR (args), SCM_CDR (args)));
0f2d19dd 4901 case scm_tc7_asubr:
a61f4e0c 4902 if (scm_is_null (args))
ddea3325 4903 RETURN (SCM_SUBRF (proc) (arg1, SCM_UNDEFINED));
0f2d19dd
JB
4904 while (SCM_NIMP (args))
4905 {
a61f4e0c 4906 SCM_ASSERT (scm_is_pair (args), args, SCM_ARG2, "apply");
0f2d19dd
JB
4907 arg1 = SCM_SUBRF (proc) (arg1, SCM_CAR (args));
4908 args = SCM_CDR (args);
4909 }
4910 RETURN (arg1);
4911 case scm_tc7_rpsubr:
a61f4e0c 4912 if (scm_is_null (args))
0f2d19dd
JB
4913 RETURN (SCM_BOOL_T);
4914 while (SCM_NIMP (args))
4915 {
a61f4e0c 4916 SCM_ASSERT (scm_is_pair (args), args, SCM_ARG2, "apply");
7888309b 4917 if (scm_is_false (SCM_SUBRF (proc) (arg1, SCM_CAR (args))))
0f2d19dd
JB
4918 RETURN (SCM_BOOL_F);
4919 arg1 = SCM_CAR (args);
4920 args = SCM_CDR (args);
4921 }
4922 RETURN (SCM_BOOL_T);
4923 case scm_tcs_closures:
4924#ifdef DEVAL
6dbd0af5 4925 arg1 = (SCM_UNBNDP (arg1) ? SCM_EOL : debug.vect[0].a.args);
0f2d19dd
JB
4926#else
4927 arg1 = (SCM_UNBNDP (arg1) ? SCM_EOL : scm_cons (arg1, args));
4928#endif
726d810a 4929 if (scm_badargsp (SCM_CLOSURE_FORMALS (proc), arg1))
ab1f1094 4930 scm_wrong_num_args (proc);
1609038c
MD
4931
4932 /* Copy argument list */
4933 if (SCM_IMP (arg1))
4934 args = arg1;
4935 else
4936 {
4937 SCM tl = args = scm_cons (SCM_CAR (arg1), SCM_UNSPECIFIED);
a61f4e0c 4938 for (arg1 = SCM_CDR (arg1); scm_is_pair (arg1); arg1 = SCM_CDR (arg1))
1609038c 4939 {
05b15362 4940 SCM_SETCDR (tl, scm_cons (SCM_CAR (arg1), SCM_UNSPECIFIED));
1609038c
MD
4941 tl = SCM_CDR (tl);
4942 }
4943 SCM_SETCDR (tl, arg1);
4944 }
4945
821f18a4
DH
4946 args = SCM_EXTEND_ENV (SCM_CLOSURE_FORMALS (proc),
4947 args,
4948 SCM_ENV (proc));
f9450cdb 4949 proc = SCM_CLOSURE_BODY (proc);
e791c18f 4950 again:
05b15362 4951 arg1 = SCM_CDR (proc);
a61f4e0c 4952 while (!scm_is_null (arg1))
2ddb0920
MD
4953 {
4954 if (SCM_IMP (SCM_CAR (proc)))
4955 {
4956 if (SCM_ISYMP (SCM_CAR (proc)))
4957 {
9de87eea 4958 scm_i_scm_pthread_mutex_lock (&source_mutex);
9bc4701c
MD
4959 /* check for race condition */
4960 if (SCM_ISYMP (SCM_CAR (proc)))
9d4bf6d3 4961 m_expand_body (proc, args);
9de87eea 4962 scm_i_pthread_mutex_unlock (&source_mutex);
e791c18f 4963 goto again;
2ddb0920 4964 }
5280aaca 4965 else
17fa3fcf 4966 SCM_VALIDATE_NON_EMPTY_COMBINATION (SCM_CAR (proc));
2ddb0920
MD
4967 }
4968 else
b1cb24ff 4969 (void) EVAL (SCM_CAR (proc), args);
e791c18f 4970 proc = arg1;
05b15362 4971 arg1 = SCM_CDR (proc);
2ddb0920 4972 }
e791c18f 4973 RETURN (EVALCAR (proc, args));
0717dfd8 4974 case scm_tc7_smob:
68b06924 4975 if (!SCM_SMOB_APPLICABLE_P (proc))
0717dfd8 4976 goto badproc;
afa38f6e 4977 if (SCM_UNBNDP (arg1))
ddea3325 4978 RETURN (SCM_SMOB_APPLY_0 (proc));
a61f4e0c 4979 else if (scm_is_null (args))
ddea3325 4980 RETURN (SCM_SMOB_APPLY_1 (proc, arg1));
a61f4e0c 4981 else if (scm_is_null (SCM_CDR (args)))
ddea3325 4982 RETURN (SCM_SMOB_APPLY_2 (proc, arg1, SCM_CAR (args)));
0717dfd8 4983 else
68b06924 4984 RETURN (SCM_SMOB_APPLY_3 (proc, arg1, SCM_CAR (args), SCM_CDR (args)));
0f2d19dd
JB
4985 case scm_tc7_cclo:
4986#ifdef DEVAL
6dbd0af5
MD
4987 args = (SCM_UNBNDP(arg1) ? SCM_EOL : debug.vect[0].a.args);
4988 arg1 = proc;
4989 proc = SCM_CCLO_SUBR (proc);
4990 debug.vect[0].a.proc = proc;
4991 debug.vect[0].a.args = scm_cons (arg1, args);
0f2d19dd
JB
4992#else
4993 args = (SCM_UNBNDP(arg1) ? SCM_EOL : scm_cons (arg1, args));
0f2d19dd
JB
4994 arg1 = proc;
4995 proc = SCM_CCLO_SUBR (proc);
6dbd0af5 4996#endif
0f2d19dd 4997 goto tail;
89efbff4
MD
4998 case scm_tc7_pws:
4999 proc = SCM_PROCEDURE (proc);
5000#ifdef DEVAL
5001 debug.vect[0].a.proc = proc;
5002#endif
5003 goto tail;
904a077d 5004 case scm_tcs_struct:
f3d2630a
MD
5005 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
5006 {
5007#ifdef DEVAL
5008 args = (SCM_UNBNDP(arg1) ? SCM_EOL : debug.vect[0].a.args);
5009#else
5010 args = (SCM_UNBNDP(arg1) ? SCM_EOL : scm_cons (arg1, args));
5011#endif
195847fa 5012 RETURN (scm_apply_generic (proc, args));
f3d2630a 5013 }
2ca0d207 5014 else if (SCM_I_OPERATORP (proc))
da7f71d7 5015 {
504d99c5 5016 /* operator */
da7f71d7
MD
5017#ifdef DEVAL
5018 args = (SCM_UNBNDP(arg1) ? SCM_EOL : debug.vect[0].a.args);
5019#else
5020 args = (SCM_UNBNDP(arg1) ? SCM_EOL : scm_cons (arg1, args));
5021#endif
5022 arg1 = proc;
195847fa
MD
5023 proc = (SCM_I_ENTITYP (proc)
5024 ? SCM_ENTITY_PROCEDURE (proc)
5025 : SCM_OPERATOR_PROCEDURE (proc));
da7f71d7
MD
5026#ifdef DEVAL
5027 debug.vect[0].a.proc = proc;
5028 debug.vect[0].a.args = scm_cons (arg1, args);
5029#endif
195847fa
MD
5030 if (SCM_NIMP (proc))
5031 goto tail;
5032 else
5033 goto badproc;
da7f71d7 5034 }
2ca0d207
DH
5035 else
5036 goto badproc;
0f2d19dd
JB
5037 default:
5038 badproc:
db4b4ca6 5039 scm_wrong_type_arg ("apply", SCM_ARG1, proc);
0f2d19dd
JB
5040 }
5041#ifdef DEVAL
6dbd0af5 5042exit:
5132eef0 5043 if (scm_check_exit_p && SCM_TRAPS_P)
b7ff98dd 5044 if (SCM_EXIT_FRAME_P || (SCM_TRACE_P && SCM_TRACED_FRAME_P (debug)))
6dbd0af5 5045 {
b7ff98dd 5046 SCM_CLEAR_TRACED_FRAME (debug);
7c9c0169 5047 arg1 = scm_make_debugobj (&debug);
d95c0b76 5048 SCM_TRAPS_P = 0;
7c9c0169 5049 arg1 = scm_call_3 (SCM_EXIT_FRAME_HDLR, scm_sym_exit_frame, arg1, proc);
d95c0b76 5050 SCM_TRAPS_P = 1;
7c9c0169
NJ
5051 if (scm_is_pair (arg1) && scm_is_eq (SCM_CAR (arg1), sym_instead))
5052 proc = SCM_CDR (arg1);
6dbd0af5 5053 }
9de87eea 5054 scm_i_set_last_debug_frame (debug.prev);
0f2d19dd
JB
5055 return proc;
5056#endif
5057}
5058
6dbd0af5
MD
5059
5060/* SECTION: The rest of this file is only read once.
5061 */
5062
0f2d19dd
JB
5063#ifndef DEVAL
5064
504d99c5
MD
5065/* Trampolines
5066 *
5067 * Trampolines make it possible to move procedure application dispatch
5068 * outside inner loops. The motivation was clean implementation of
5069 * efficient replacements of R5RS primitives in SRFI-1.
5070 *
5071 * The semantics is clear: scm_trampoline_N returns an optimized
5072 * version of scm_call_N (or NULL if the procedure isn't applicable
5073 * on N args).
5074 *
5075 * Applying the optimization to map and for-each increased efficiency
5076 * noticeably. For example, (map abs ls) is now 8 times faster than
5077 * before.
5078 */
5079
756414cf
MD
5080static SCM
5081call_subr0_0 (SCM proc)
5082{
5083 return SCM_SUBRF (proc) ();
5084}
5085
5086static SCM
5087call_subr1o_0 (SCM proc)
5088{
5089 return SCM_SUBRF (proc) (SCM_UNDEFINED);
5090}
5091
5092static SCM
5093call_lsubr_0 (SCM proc)
5094{
5095 return SCM_SUBRF (proc) (SCM_EOL);
5096}
5097
5098SCM
5099scm_i_call_closure_0 (SCM proc)
5100{
6a3f13f0
DH
5101 const SCM env = SCM_EXTEND_ENV (SCM_CLOSURE_FORMALS (proc),
5102 SCM_EOL,
5103 SCM_ENV (proc));
5104 const SCM result = scm_eval_body (SCM_CLOSURE_BODY (proc), env);
d0b07b5d 5105 return result;
756414cf
MD
5106}
5107
5108scm_t_trampoline_0
5109scm_trampoline_0 (SCM proc)
5110{
2510c810
DH
5111 scm_t_trampoline_0 trampoline;
5112
756414cf 5113 if (SCM_IMP (proc))
d0b07b5d 5114 return NULL;
2510c810 5115
756414cf
MD
5116 switch (SCM_TYP7 (proc))
5117 {
5118 case scm_tc7_subr_0:
2510c810
DH
5119 trampoline = call_subr0_0;
5120 break;
756414cf 5121 case scm_tc7_subr_1o:
2510c810
DH
5122 trampoline = call_subr1o_0;
5123 break;
756414cf 5124 case scm_tc7_lsubr:
2510c810
DH
5125 trampoline = call_lsubr_0;
5126 break;
756414cf
MD
5127 case scm_tcs_closures:
5128 {
5129 SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c 5130 if (scm_is_null (formals) || !scm_is_pair (formals))
2510c810 5131 trampoline = scm_i_call_closure_0;
756414cf 5132 else
d0b07b5d 5133 return NULL;
2510c810 5134 break;
756414cf
MD
5135 }
5136 case scm_tcs_struct:
5137 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
2510c810 5138 trampoline = scm_call_generic_0;
2ca0d207 5139 else if (SCM_I_OPERATORP (proc))
2510c810
DH
5140 trampoline = scm_call_0;
5141 else
5142 return NULL;
5143 break;
756414cf
MD
5144 case scm_tc7_smob:
5145 if (SCM_SMOB_APPLICABLE_P (proc))
2510c810 5146 trampoline = SCM_SMOB_DESCRIPTOR (proc).apply_0;
756414cf 5147 else
d0b07b5d 5148 return NULL;
2510c810 5149 break;
756414cf
MD
5150 case scm_tc7_asubr:
5151 case scm_tc7_rpsubr:
5152 case scm_tc7_cclo:
5153 case scm_tc7_pws:
2510c810
DH
5154 trampoline = scm_call_0;
5155 break;
756414cf 5156 default:
2510c810 5157 return NULL; /* not applicable on zero arguments */
756414cf 5158 }
2510c810
DH
5159 /* We only reach this point if a valid trampoline was determined. */
5160
5161 /* If debugging is enabled, we want to see all calls to proc on the stack.
5162 * Thus, we replace the trampoline shortcut with scm_call_0. */
434f2f7a 5163 if (scm_debug_mode_p)
2510c810
DH
5164 return scm_call_0;
5165 else
5166 return trampoline;
756414cf
MD
5167}
5168
504d99c5
MD
5169static SCM
5170call_subr1_1 (SCM proc, SCM arg1)
5171{
5172 return SCM_SUBRF (proc) (arg1);
5173}
5174
9ed24633
MD
5175static SCM
5176call_subr2o_1 (SCM proc, SCM arg1)
5177{
5178 return SCM_SUBRF (proc) (arg1, SCM_UNDEFINED);
5179}
5180
504d99c5
MD
5181static SCM
5182call_lsubr_1 (SCM proc, SCM arg1)
5183{
5184 return SCM_SUBRF (proc) (scm_list_1 (arg1));
5185}
5186
5187static SCM
5188call_dsubr_1 (SCM proc, SCM arg1)
5189{
e11e83f3 5190 if (SCM_I_INUMP (arg1))
504d99c5 5191 {
d9a67fc4 5192 RETURN (scm_from_double (SCM_DSUBRF (proc) ((double) SCM_I_INUM (arg1))));
504d99c5
MD
5193 }
5194 else if (SCM_REALP (arg1))
5195 {
d9a67fc4 5196 RETURN (scm_from_double (SCM_DSUBRF (proc) (SCM_REAL_VALUE (arg1))));
504d99c5 5197 }
504d99c5 5198 else if (SCM_BIGP (arg1))
f92e85f7 5199 {
d9a67fc4 5200 RETURN (scm_from_double (SCM_DSUBRF (proc) (scm_i_big2dbl (arg1))));
f92e85f7
MV
5201 }
5202 else if (SCM_FRACTIONP (arg1))
5203 {
d9a67fc4 5204 RETURN (scm_from_double (SCM_DSUBRF (proc) (scm_i_fraction2double (arg1))));
f92e85f7 5205 }
504d99c5 5206 SCM_WTA_DISPATCH_1 (*SCM_SUBR_GENERIC (proc), arg1,
cc95e00a 5207 SCM_ARG1, scm_i_symbol_chars (SCM_SNAME (proc)));
504d99c5
MD
5208}
5209
5210static SCM
5211call_cxr_1 (SCM proc, SCM arg1)
5212{
a61f4e0c 5213 return scm_i_chase_pairs (arg1, (scm_t_bits) SCM_SUBRF (proc));
504d99c5
MD
5214}
5215
5216static SCM
5217call_closure_1 (SCM proc, SCM arg1)
5218{
6a3f13f0
DH
5219 const SCM env = SCM_EXTEND_ENV (SCM_CLOSURE_FORMALS (proc),
5220 scm_list_1 (arg1),
5221 SCM_ENV (proc));
5222 const SCM result = scm_eval_body (SCM_CLOSURE_BODY (proc), env);
d0b07b5d 5223 return result;
504d99c5
MD
5224}
5225
5226scm_t_trampoline_1
5227scm_trampoline_1 (SCM proc)
5228{
2510c810
DH
5229 scm_t_trampoline_1 trampoline;
5230
504d99c5 5231 if (SCM_IMP (proc))
d0b07b5d 5232 return NULL;
2510c810 5233
504d99c5
MD
5234 switch (SCM_TYP7 (proc))
5235 {
5236 case scm_tc7_subr_1:
5237 case scm_tc7_subr_1o:
2510c810
DH
5238 trampoline = call_subr1_1;
5239 break;
9ed24633 5240 case scm_tc7_subr_2o:
2510c810
DH
5241 trampoline = call_subr2o_1;
5242 break;
504d99c5 5243 case scm_tc7_lsubr:
2510c810
DH
5244 trampoline = call_lsubr_1;
5245 break;
14b18ed6 5246 case scm_tc7_dsubr:
2510c810
DH
5247 trampoline = call_dsubr_1;
5248 break;
504d99c5 5249 case scm_tc7_cxr:
2510c810
DH
5250 trampoline = call_cxr_1;
5251 break;
504d99c5
MD
5252 case scm_tcs_closures:
5253 {
5254 SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c
MV
5255 if (!scm_is_null (formals)
5256 && (!scm_is_pair (formals) || !scm_is_pair (SCM_CDR (formals))))
2510c810 5257 trampoline = call_closure_1;
504d99c5 5258 else
d0b07b5d 5259 return NULL;
2510c810 5260 break;
504d99c5
MD
5261 }
5262 case scm_tcs_struct:
5263 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
2510c810 5264 trampoline = scm_call_generic_1;
2ca0d207 5265 else if (SCM_I_OPERATORP (proc))
2510c810
DH
5266 trampoline = scm_call_1;
5267 else
5268 return NULL;
5269 break;
504d99c5
MD
5270 case scm_tc7_smob:
5271 if (SCM_SMOB_APPLICABLE_P (proc))
2510c810 5272 trampoline = SCM_SMOB_DESCRIPTOR (proc).apply_1;
504d99c5 5273 else
d0b07b5d 5274 return NULL;
2510c810 5275 break;
504d99c5
MD
5276 case scm_tc7_asubr:
5277 case scm_tc7_rpsubr:
5278 case scm_tc7_cclo:
5279 case scm_tc7_pws:
2510c810
DH
5280 trampoline = scm_call_1;
5281 break;
504d99c5 5282 default:
d0b07b5d 5283 return NULL; /* not applicable on one arg */
504d99c5 5284 }
2510c810
DH
5285 /* We only reach this point if a valid trampoline was determined. */
5286
5287 /* If debugging is enabled, we want to see all calls to proc on the stack.
5288 * Thus, we replace the trampoline shortcut with scm_call_1. */
434f2f7a 5289 if (scm_debug_mode_p)
2510c810
DH
5290 return scm_call_1;
5291 else
5292 return trampoline;
504d99c5
MD
5293}
5294
5295static SCM
5296call_subr2_2 (SCM proc, SCM arg1, SCM arg2)
5297{
5298 return SCM_SUBRF (proc) (arg1, arg2);
5299}
5300
9ed24633
MD
5301static SCM
5302call_lsubr2_2 (SCM proc, SCM arg1, SCM arg2)
5303{
5304 return SCM_SUBRF (proc) (arg1, arg2, SCM_EOL);
5305}
5306
504d99c5
MD
5307static SCM
5308call_lsubr_2 (SCM proc, SCM arg1, SCM arg2)
5309{
5310 return SCM_SUBRF (proc) (scm_list_2 (arg1, arg2));
5311}
5312
5313static SCM
5314call_closure_2 (SCM proc, SCM arg1, SCM arg2)
5315{
6a3f13f0
DH
5316 const SCM env = SCM_EXTEND_ENV (SCM_CLOSURE_FORMALS (proc),
5317 scm_list_2 (arg1, arg2),
5318 SCM_ENV (proc));
5319 const SCM result = scm_eval_body (SCM_CLOSURE_BODY (proc), env);
d0b07b5d 5320 return result;
504d99c5
MD
5321}
5322
5323scm_t_trampoline_2
5324scm_trampoline_2 (SCM proc)
5325{
2510c810
DH
5326 scm_t_trampoline_2 trampoline;
5327
504d99c5 5328 if (SCM_IMP (proc))
d0b07b5d 5329 return NULL;
2510c810 5330
504d99c5
MD
5331 switch (SCM_TYP7 (proc))
5332 {
5333 case scm_tc7_subr_2:
5334 case scm_tc7_subr_2o:
5335 case scm_tc7_rpsubr:
5336 case scm_tc7_asubr:
2510c810
DH
5337 trampoline = call_subr2_2;
5338 break;
9ed24633 5339 case scm_tc7_lsubr_2:
2510c810
DH
5340 trampoline = call_lsubr2_2;
5341 break;
504d99c5 5342 case scm_tc7_lsubr:
2510c810
DH
5343 trampoline = call_lsubr_2;
5344 break;
504d99c5
MD
5345 case scm_tcs_closures:
5346 {
5347 SCM formals = SCM_CLOSURE_FORMALS (proc);
a61f4e0c
MV
5348 if (!scm_is_null (formals)
5349 && (!scm_is_pair (formals)
5350 || (!scm_is_null (SCM_CDR (formals))
5351 && (!scm_is_pair (SCM_CDR (formals))
5352 || !scm_is_pair (SCM_CDDR (formals))))))
2510c810 5353 trampoline = call_closure_2;
504d99c5 5354 else
d0b07b5d 5355 return NULL;
2510c810 5356 break;
504d99c5
MD
5357 }
5358 case scm_tcs_struct:
5359 if (SCM_OBJ_CLASS_FLAGS (proc) & SCM_CLASSF_PURE_GENERIC)
2510c810 5360 trampoline = scm_call_generic_2;
2ca0d207 5361 else if (SCM_I_OPERATORP (proc))
2510c810
DH
5362 trampoline = scm_call_2;
5363 else
5364 return NULL;
5365 break;
504d99c5
MD
5366 case scm_tc7_smob:
5367 if (SCM_SMOB_APPLICABLE_P (proc))
2510c810 5368 trampoline = SCM_SMOB_DESCRIPTOR (proc).apply_2;
504d99c5 5369 else
d0b07b5d 5370 return NULL;
2510c810 5371 break;
504d99c5
MD
5372 case scm_tc7_cclo:
5373 case scm_tc7_pws:
2510c810
DH
5374 trampoline = scm_call_2;
5375 break;
504d99c5 5376 default:
d0b07b5d 5377 return NULL; /* not applicable on two args */
504d99c5 5378 }
2510c810
DH
5379 /* We only reach this point if a valid trampoline was determined. */
5380
5381 /* If debugging is enabled, we want to see all calls to proc on the stack.
5382 * Thus, we replace the trampoline shortcut with scm_call_2. */
434f2f7a 5383 if (scm_debug_mode_p)
2510c810
DH
5384 return scm_call_2;
5385 else
5386 return trampoline;
504d99c5
MD
5387}
5388
d9c393f5
JB
5389/* Typechecking for multi-argument MAP and FOR-EACH.
5390
47c3f06d 5391 Verify that each element of the vector ARGV, except for the first,
d9c393f5 5392 is a proper list whose length is LEN. Attribute errors to WHO,
47c3f06d 5393 and claim that the i'th element of ARGV is WHO's i+2'th argument. */
d9c393f5 5394static inline void
47c3f06d 5395check_map_args (SCM argv,
c014a02e 5396 long len,
47c3f06d
MD
5397 SCM gf,
5398 SCM proc,
5399 SCM args,
5400 const char *who)
d9c393f5 5401{
c014a02e 5402 long i;
d9c393f5 5403
4057a3e0 5404 for (i = SCM_SIMPLE_VECTOR_LENGTH (argv) - 1; i >= 1; i--)
d9c393f5 5405 {
4057a3e0
MV
5406 SCM elt = SCM_SIMPLE_VECTOR_REF (argv, i);
5407 long elt_len = scm_ilength (elt);
d9c393f5
JB
5408
5409 if (elt_len < 0)
47c3f06d
MD
5410 {
5411 if (gf)
5412 scm_apply_generic (gf, scm_cons (proc, args));
5413 else
4057a3e0 5414 scm_wrong_type_arg (who, i + 2, elt);
47c3f06d 5415 }
d9c393f5
JB
5416
5417 if (elt_len != len)
4057a3e0 5418 scm_out_of_range_pos (who, elt, scm_from_long (i + 2));
d9c393f5 5419 }
d9c393f5
JB
5420}
5421
5422
47c3f06d 5423SCM_GPROC (s_map, "map", 2, 0, 1, scm_map, g_map);
1cc91f1b 5424
368bf056
MD
5425/* Note: Currently, scm_map applies PROC to the argument list(s)
5426 sequentially, starting with the first element(s). This is used in
8878f040 5427 evalext.c where the Scheme procedure `map-in-order', which guarantees
368bf056 5428 sequential behaviour, is implemented using scm_map. If the
8878f040 5429 behaviour changes, we need to update `map-in-order'.
368bf056
MD
5430*/
5431
0f2d19dd 5432SCM
1bbd0b84 5433scm_map (SCM proc, SCM arg1, SCM args)
af45e3b0 5434#define FUNC_NAME s_map
0f2d19dd 5435{
c014a02e 5436 long i, len;
0f2d19dd
JB
5437 SCM res = SCM_EOL;
5438 SCM *pres = &res;
0f2d19dd 5439
d9c393f5 5440 len = scm_ilength (arg1);
47c3f06d
MD
5441 SCM_GASSERTn (len >= 0,
5442 g_map, scm_cons2 (proc, arg1, args), SCM_ARG2, s_map);
af45e3b0 5443 SCM_VALIDATE_REST_ARGUMENT (args);
a61f4e0c 5444 if (scm_is_null (args))
0f2d19dd 5445 {
504d99c5
MD
5446 scm_t_trampoline_1 call = scm_trampoline_1 (proc);
5447 SCM_GASSERT2 (call, g_map, proc, arg1, SCM_ARG1, s_map);
5448 while (SCM_NIMP (arg1))
5449 {
5450 *pres = scm_list_1 (call (proc, SCM_CAR (arg1)));
5451 pres = SCM_CDRLOC (*pres);
5452 arg1 = SCM_CDR (arg1);
5453 }
5454 return res;
5455 }
a61f4e0c 5456 if (scm_is_null (SCM_CDR (args)))
504d99c5
MD
5457 {
5458 SCM arg2 = SCM_CAR (args);
5459 int len2 = scm_ilength (arg2);
5460 scm_t_trampoline_2 call = scm_trampoline_2 (proc);
5461 SCM_GASSERTn (call,
5462 g_map, scm_cons2 (proc, arg1, args), SCM_ARG1, s_map);
5463 SCM_GASSERTn (len2 >= 0,
5464 g_map, scm_cons2 (proc, arg1, args), SCM_ARG3, s_map);
5465 if (len2 != len)
5466 SCM_OUT_OF_RANGE (3, arg2);
0f2d19dd
JB
5467 while (SCM_NIMP (arg1))
5468 {
504d99c5 5469 *pres = scm_list_1 (call (proc, SCM_CAR (arg1), SCM_CAR (arg2)));
a23afe53 5470 pres = SCM_CDRLOC (*pres);
0f2d19dd 5471 arg1 = SCM_CDR (arg1);
504d99c5 5472 arg2 = SCM_CDR (arg2);
0f2d19dd
JB
5473 }
5474 return res;
5475 }
05b15362
DH
5476 arg1 = scm_cons (arg1, args);
5477 args = scm_vector (arg1);
47c3f06d 5478 check_map_args (args, len, g_map, proc, arg1, s_map);
0f2d19dd
JB
5479 while (1)
5480 {
5481 arg1 = SCM_EOL;
4057a3e0 5482 for (i = SCM_SIMPLE_VECTOR_LENGTH (args) - 1; i >= 0; i--)
0f2d19dd 5483 {
4057a3e0
MV
5484 SCM elt = SCM_SIMPLE_VECTOR_REF (args, i);
5485 if (SCM_IMP (elt))
d9c393f5 5486 return res;
4057a3e0
MV
5487 arg1 = scm_cons (SCM_CAR (elt), arg1);
5488 SCM_SIMPLE_VECTOR_SET (args, i, SCM_CDR (elt));
0f2d19dd 5489 }
8ea46249 5490 *pres = scm_list_1 (scm_apply (proc, arg1, SCM_EOL));
a23afe53 5491 pres = SCM_CDRLOC (*pres);
0f2d19dd
JB
5492 }
5493}
af45e3b0 5494#undef FUNC_NAME
0f2d19dd
JB
5495
5496
47c3f06d 5497SCM_GPROC (s_for_each, "for-each", 2, 0, 1, scm_for_each, g_for_each);
1cc91f1b 5498
0f2d19dd 5499SCM
1bbd0b84 5500scm_for_each (SCM proc, SCM arg1, SCM args)
af45e3b0 5501#define FUNC_NAME s_for_each
0f2d19dd 5502{
c014a02e 5503 long i, len;
d9c393f5 5504 len = scm_ilength (arg1);
47c3f06d
MD
5505 SCM_GASSERTn (len >= 0, g_for_each, scm_cons2 (proc, arg1, args),
5506 SCM_ARG2, s_for_each);
af45e3b0 5507 SCM_VALIDATE_REST_ARGUMENT (args);
a61f4e0c 5508 if (scm_is_null (args))
0f2d19dd 5509 {
504d99c5
MD
5510 scm_t_trampoline_1 call = scm_trampoline_1 (proc);
5511 SCM_GASSERT2 (call, g_for_each, proc, arg1, SCM_ARG1, s_for_each);
5512 while (SCM_NIMP (arg1))
5513 {
5514 call (proc, SCM_CAR (arg1));
5515 arg1 = SCM_CDR (arg1);
5516 }
5517 return SCM_UNSPECIFIED;
5518 }
a61f4e0c 5519 if (scm_is_null (SCM_CDR (args)))
504d99c5
MD
5520 {
5521 SCM arg2 = SCM_CAR (args);
5522 int len2 = scm_ilength (arg2);
5523 scm_t_trampoline_2 call = scm_trampoline_2 (proc);
5524 SCM_GASSERTn (call, g_for_each,
5525 scm_cons2 (proc, arg1, args), SCM_ARG1, s_for_each);
5526 SCM_GASSERTn (len2 >= 0, g_for_each,
5527 scm_cons2 (proc, arg1, args), SCM_ARG3, s_for_each);
5528 if (len2 != len)
5529 SCM_OUT_OF_RANGE (3, arg2);
c96d76b8 5530 while (SCM_NIMP (arg1))
0f2d19dd 5531 {
504d99c5 5532 call (proc, SCM_CAR (arg1), SCM_CAR (arg2));
0f2d19dd 5533 arg1 = SCM_CDR (arg1);
504d99c5 5534 arg2 = SCM_CDR (arg2);
0f2d19dd
JB
5535 }
5536 return SCM_UNSPECIFIED;
5537 }
05b15362
DH
5538 arg1 = scm_cons (arg1, args);
5539 args = scm_vector (arg1);
47c3f06d 5540 check_map_args (args, len, g_for_each, proc, arg1, s_for_each);
0f2d19dd
JB
5541 while (1)
5542 {
5543 arg1 = SCM_EOL;
4057a3e0 5544 for (i = SCM_SIMPLE_VECTOR_LENGTH (args) - 1; i >= 0; i--)
0f2d19dd 5545 {
4057a3e0
MV
5546 SCM elt = SCM_SIMPLE_VECTOR_REF (args, i);
5547 if (SCM_IMP (elt))
c96d76b8 5548 return SCM_UNSPECIFIED;
4057a3e0
MV
5549 arg1 = scm_cons (SCM_CAR (elt), arg1);
5550 SCM_SIMPLE_VECTOR_SET (args, i, SCM_CDR (elt));
0f2d19dd
JB
5551 }
5552 scm_apply (proc, arg1, SCM_EOL);
5553 }
5554}
af45e3b0 5555#undef FUNC_NAME
0f2d19dd 5556
1cc91f1b 5557
0f2d19dd 5558SCM
6e8d25a6 5559scm_closure (SCM code, SCM env)
0f2d19dd 5560{
16d4699b
MV
5561 SCM z;
5562 SCM closcar = scm_cons (code, SCM_EOL);
228a24ef 5563 z = scm_cell (SCM_UNPACK (closcar) + scm_tc3_closure, (scm_t_bits) env);
16d4699b 5564 scm_remember_upto_here (closcar);
0f2d19dd
JB
5565 return z;
5566}
5567
5568
92c2555f 5569scm_t_bits scm_tc16_promise;
1cc91f1b 5570
0f2d19dd 5571SCM
6e8d25a6 5572scm_makprom (SCM code)
0f2d19dd 5573{
28d52ebb
MD
5574 SCM_RETURN_NEWSMOB2 (scm_tc16_promise,
5575 SCM_UNPACK (code),
9de87eea
MV
5576 scm_make_recursive_mutex ());
5577}
5578
5579static SCM
5580promise_mark (SCM promise)
5581{
5582 scm_gc_mark (SCM_PROMISE_MUTEX (promise));
5583 return SCM_PROMISE_DATA (promise);
0f2d19dd
JB
5584}
5585
28d52ebb
MD
5586static size_t
5587promise_free (SCM promise)
5588{
28d52ebb
MD
5589 return 0;
5590}
1cc91f1b 5591
0f2d19dd 5592static int
e841c3e0 5593promise_print (SCM exp, SCM port, scm_print_state *pstate)
0f2d19dd 5594{
19402679 5595 int writingp = SCM_WRITINGP (pstate);
b7f3516f 5596 scm_puts ("#<promise ", port);
19402679 5597 SCM_SET_WRITINGP (pstate, 1);
28d52ebb 5598 scm_iprin1 (SCM_PROMISE_DATA (exp), port, pstate);
19402679 5599 SCM_SET_WRITINGP (pstate, writingp);
b7f3516f 5600 scm_putc ('>', port);
0f2d19dd
JB
5601 return !0;
5602}
5603
3b3b36dd 5604SCM_DEFINE (scm_force, "force", 1, 0, 0,
28d52ebb 5605 (SCM promise),
67e8151b
MG
5606 "If the promise @var{x} has not been computed yet, compute and\n"
5607 "return @var{x}, otherwise just return the previously computed\n"
5608 "value.")
1bbd0b84 5609#define FUNC_NAME s_scm_force
0f2d19dd 5610{
28d52ebb 5611 SCM_VALIDATE_SMOB (1, promise, promise);
9de87eea 5612 scm_lock_mutex (SCM_PROMISE_MUTEX (promise));
28d52ebb 5613 if (!SCM_PROMISE_COMPUTED_P (promise))
0f2d19dd 5614 {
28d52ebb
MD
5615 SCM ans = scm_call_0 (SCM_PROMISE_DATA (promise));
5616 if (!SCM_PROMISE_COMPUTED_P (promise))
0f2d19dd 5617 {
28d52ebb
MD
5618 SCM_SET_PROMISE_DATA (promise, ans);
5619 SCM_SET_PROMISE_COMPUTED (promise);
0f2d19dd
JB
5620 }
5621 }
9de87eea 5622 scm_unlock_mutex (SCM_PROMISE_MUTEX (promise));
28d52ebb 5623 return SCM_PROMISE_DATA (promise);
0f2d19dd 5624}
1bbd0b84 5625#undef FUNC_NAME
0f2d19dd 5626
445f675c 5627
a1ec6916 5628SCM_DEFINE (scm_promise_p, "promise?", 1, 0, 0,
67e8151b 5629 (SCM obj),
b380b885 5630 "Return true if @var{obj} is a promise, i.e. a delayed computation\n"
7a095584 5631 "(@pxref{Delayed evaluation,,,r5rs.info,The Revised^5 Report on Scheme}).")
1bbd0b84 5632#define FUNC_NAME s_scm_promise_p
0f2d19dd 5633{
7888309b 5634 return scm_from_bool (SCM_TYP16_PREDICATE (scm_tc16_promise, obj));
0f2d19dd 5635}
1bbd0b84 5636#undef FUNC_NAME
0f2d19dd 5637
445f675c 5638
a1ec6916 5639SCM_DEFINE (scm_cons_source, "cons-source", 3, 0, 0,
1bbd0b84 5640 (SCM xorig, SCM x, SCM y),
11768c04
NJ
5641 "Create and return a new pair whose car and cdr are @var{x} and @var{y}.\n"
5642 "Any source properties associated with @var{xorig} are also associated\n"
5643 "with the new pair.")
1bbd0b84 5644#define FUNC_NAME s_scm_cons_source
26d5b9b4
MD
5645{
5646 SCM p, z;
16d4699b 5647 z = scm_cons (x, y);
26d5b9b4
MD
5648 /* Copy source properties possibly associated with xorig. */
5649 p = scm_whash_lookup (scm_source_whash, xorig);
7888309b 5650 if (scm_is_true (p))
26d5b9b4
MD
5651 scm_whash_insert (scm_source_whash, z, p);
5652 return z;
5653}
1bbd0b84 5654#undef FUNC_NAME
26d5b9b4 5655
445f675c 5656
62360b89
DH
5657/* The function scm_copy_tree is used to copy an expression tree to allow the
5658 * memoizer to modify the expression during memoization. scm_copy_tree
5659 * creates deep copies of pairs and vectors, but not of any other data types,
5660 * since only pairs and vectors will be parsed by the memoizer.
5661 *
5662 * To avoid infinite recursion due to cyclic structures, the hare-and-tortoise
5663 * pattern is used to detect cycles. In fact, the pattern is used in two
5664 * dimensions, vertical (indicated in the code by the variable names 'hare'
5665 * and 'tortoise') and horizontal ('rabbit' and 'turtle'). In both
5666 * dimensions, the hare/rabbit will take two steps when the tortoise/turtle
5667 * takes one.
5668 *
5669 * The vertical dimension corresponds to recursive calls to function
5670 * copy_tree: This happens when descending into vector elements, into cars of
5671 * lists and into the cdr of an improper list. In this dimension, the
5672 * tortoise follows the hare by using the processor stack: Every stack frame
5673 * will hold an instance of struct t_trace. These instances are connected in
5674 * a way that represents the trace of the hare, which thus can be followed by
5675 * the tortoise. The tortoise will always point to struct t_trace instances
5676 * relating to SCM objects that have already been copied. Thus, a cycle is
5677 * detected if the tortoise and the hare point to the same object,
5678 *
5679 * The horizontal dimension is within one execution of copy_tree, when the
5680 * function cdr's along the pairs of a list. This is the standard
5681 * hare-and-tortoise implementation, found several times in guile. */
5682
5683struct t_trace {
5684 struct t_trace *trace; // These pointers form a trace along the stack.
5685 SCM obj; // The object handled at the respective stack frame.
5686};
5687
5688static SCM
5689copy_tree (
5690 struct t_trace *const hare,
5691 struct t_trace *tortoise,
5692 unsigned int tortoise_delay )
5693{
4057a3e0 5694 if (!scm_is_pair (hare->obj) && !scm_is_simple_vector (hare->obj))
62360b89
DH
5695 {
5696 return hare->obj;
5697 }
5698 else
5699 {
5700 /* Prepare the trace along the stack. */
5701 struct t_trace new_hare;
5702 hare->trace = &new_hare;
5703
5704 /* The tortoise will make its step after the delay has elapsed. Note
5705 * that in contrast to the typical hare-and-tortoise pattern, the step
5706 * of the tortoise happens before the hare takes its steps. This is, in
5707 * principle, no problem, except for the start of the algorithm: Then,
5fb64383 5708 * it has to be made sure that the hare actually gets its advantage of
62360b89
DH
5709 * two steps. */
5710 if (tortoise_delay == 0)
5711 {
5712 tortoise_delay = 1;
5713 tortoise = tortoise->trace;
bc36d050 5714 ASSERT_SYNTAX (!scm_is_eq (hare->obj, tortoise->obj),
62360b89
DH
5715 s_bad_expression, hare->obj);
5716 }
5717 else
5718 {
5719 --tortoise_delay;
5720 }
5721
4057a3e0 5722 if (scm_is_simple_vector (hare->obj))
62360b89 5723 {
4057a3e0
MV
5724 size_t length = SCM_SIMPLE_VECTOR_LENGTH (hare->obj);
5725 SCM new_vector = scm_c_make_vector (length, SCM_UNSPECIFIED);
62360b89
DH
5726
5727 /* Each vector element is copied by recursing into copy_tree, having
5728 * the tortoise follow the hare into the depths of the stack. */
5729 unsigned long int i;
5730 for (i = 0; i < length; ++i)
5731 {
5732 SCM new_element;
4057a3e0 5733 new_hare.obj = SCM_SIMPLE_VECTOR_REF (hare->obj, i);
62360b89 5734 new_element = copy_tree (&new_hare, tortoise, tortoise_delay);
4057a3e0 5735 SCM_SIMPLE_VECTOR_SET (new_vector, i, new_element);
62360b89
DH
5736 }
5737
5738 return new_vector;
5739 }
a61f4e0c 5740 else // scm_is_pair (hare->obj)
62360b89
DH
5741 {
5742 SCM result;
5743 SCM tail;
5744
5745 SCM rabbit = hare->obj;
5746 SCM turtle = hare->obj;
5747
5748 SCM copy;
5749
5750 /* The first pair of the list is treated specially, in order to
5751 * preserve a potential source code position. */
5752 result = tail = scm_cons_source (rabbit, SCM_EOL, SCM_EOL);
5753 new_hare.obj = SCM_CAR (rabbit);
5754 copy = copy_tree (&new_hare, tortoise, tortoise_delay);
5755 SCM_SETCAR (tail, copy);
5756
5757 /* The remaining pairs of the list are copied by, horizontally,
5758 * having the turtle follow the rabbit, and, vertically, having the
5759 * tortoise follow the hare into the depths of the stack. */
5760 rabbit = SCM_CDR (rabbit);
a61f4e0c 5761 while (scm_is_pair (rabbit))
62360b89
DH
5762 {
5763 new_hare.obj = SCM_CAR (rabbit);
5764 copy = copy_tree (&new_hare, tortoise, tortoise_delay);
5765 SCM_SETCDR (tail, scm_cons (copy, SCM_UNDEFINED));
5766 tail = SCM_CDR (tail);
5767
5768 rabbit = SCM_CDR (rabbit);
a61f4e0c 5769 if (scm_is_pair (rabbit))
62360b89
DH
5770 {
5771 new_hare.obj = SCM_CAR (rabbit);
5772 copy = copy_tree (&new_hare, tortoise, tortoise_delay);
5773 SCM_SETCDR (tail, scm_cons (copy, SCM_UNDEFINED));
5774 tail = SCM_CDR (tail);
5775 rabbit = SCM_CDR (rabbit);
5776
5777 turtle = SCM_CDR (turtle);
bc36d050 5778 ASSERT_SYNTAX (!scm_is_eq (rabbit, turtle),
62360b89
DH
5779 s_bad_expression, rabbit);
5780 }
5781 }
5782
5783 /* We have to recurse into copy_tree again for the last cdr, in
5784 * order to handle the situation that it holds a vector. */
5785 new_hare.obj = rabbit;
5786 copy = copy_tree (&new_hare, tortoise, tortoise_delay);
5787 SCM_SETCDR (tail, copy);
5788
5789 return result;
5790 }
5791 }
5792}
5793
a1ec6916 5794SCM_DEFINE (scm_copy_tree, "copy-tree", 1, 0, 0,
1bbd0b84 5795 (SCM obj),
b380b885 5796 "Recursively copy the data tree that is bound to @var{obj}, and return a\n"
bfefbf18 5797 "the new data structure. @code{copy-tree} recurses down the\n"
b380b885
MD
5798 "contents of both pairs and vectors (since both cons cells and vector\n"
5799 "cells may point to arbitrary objects), and stops recursing when it hits\n"
5800 "any other object.")
1bbd0b84 5801#define FUNC_NAME s_scm_copy_tree
0f2d19dd 5802{
62360b89
DH
5803 /* Prepare the trace along the stack. */
5804 struct t_trace trace;
5805 trace.obj = obj;
5806
5807 /* In function copy_tree, if the tortoise makes its step, it will do this
5808 * before the hare has the chance to move. Thus, we have to make sure that
5809 * the very first step of the tortoise will not happen after the hare has
5810 * really made two steps. This is achieved by passing '2' as the initial
5811 * delay for the tortoise. NOTE: Since cycles are unlikely, giving the hare
5812 * a bigger advantage may improve performance slightly. */
5813 return copy_tree (&trace, &trace, 2);
0f2d19dd 5814}
1bbd0b84 5815#undef FUNC_NAME
0f2d19dd 5816
1cc91f1b 5817
4163eb72
MV
5818/* We have three levels of EVAL here:
5819
5820 - scm_i_eval (exp, env)
5821
5822 evaluates EXP in environment ENV. ENV is a lexical environment
5823 structure as used by the actual tree code evaluator. When ENV is
5824 a top-level environment, then changes to the current module are
a513ead3 5825 tracked by updating ENV so that it continues to be in sync with
4163eb72
MV
5826 the current module.
5827
5828 - scm_primitive_eval (exp)
5829
5830 evaluates EXP in the top-level environment as determined by the
5831 current module. This is done by constructing a suitable
5832 environment and calling scm_i_eval. Thus, changes to the
5833 top-level module are tracked normally.
5834
9de87eea 5835 - scm_eval (exp, mod_or_state)
4163eb72 5836
9de87eea
MV
5837 evaluates EXP while MOD_OR_STATE is the current module or current
5838 dynamic state (as appropriate). This is done by setting the
5839 current module (or dynamic state) to MOD_OR_STATE, invoking
5840 scm_primitive_eval on EXP, and then restoring the current module
5841 (or dynamic state) to the value it had previously. That is,
5842 while EXP is evaluated, changes to the current module (or dynamic
5843 state) are tracked, but these changes do not persist when
4163eb72
MV
5844 scm_eval returns.
5845
5846 For each level of evals, there are two variants, distinguished by a
5847 _x suffix: the ordinary variant does not modify EXP while the _x
5848 variant can destructively modify EXP into something completely
5849 unintelligible. A Scheme data structure passed as EXP to one of the
5850 _x variants should not ever be used again for anything. So when in
5851 doubt, use the ordinary variant.
5852
5853*/
5854
0f2d19dd 5855SCM
68d8be66 5856scm_i_eval_x (SCM exp, SCM env)
0f2d19dd 5857{
cc95e00a 5858 if (scm_is_symbol (exp))
434f2f7a
DH
5859 return *scm_lookupcar (scm_cons (exp, SCM_UNDEFINED), env, 1);
5860 else
385609b9 5861 return SCM_I_XEVAL (exp, env);
0f2d19dd
JB
5862}
5863
68d8be66
MD
5864SCM
5865scm_i_eval (SCM exp, SCM env)
5866{
26fb6390 5867 exp = scm_copy_tree (exp);
cc95e00a 5868 if (scm_is_symbol (exp))
434f2f7a
DH
5869 return *scm_lookupcar (scm_cons (exp, SCM_UNDEFINED), env, 1);
5870 else
385609b9 5871 return SCM_I_XEVAL (exp, env);
68d8be66
MD
5872}
5873
5874SCM
4163eb72 5875scm_primitive_eval_x (SCM exp)
0f2d19dd 5876{
a513ead3 5877 SCM env;
bcdab802 5878 SCM transformer = scm_current_module_transformer ();
a513ead3 5879 if (SCM_NIMP (transformer))
fdc28395 5880 exp = scm_call_1 (transformer, exp);
a513ead3 5881 env = scm_top_level_env (scm_current_module_lookup_closure ());
4163eb72 5882 return scm_i_eval_x (exp, env);
0f2d19dd
JB
5883}
5884
4163eb72
MV
5885SCM_DEFINE (scm_primitive_eval, "primitive-eval", 1, 0, 0,
5886 (SCM exp),
2069af38 5887 "Evaluate @var{exp} in the top-level environment specified by\n"
4163eb72
MV
5888 "the current module.")
5889#define FUNC_NAME s_scm_primitive_eval
5890{
a513ead3 5891 SCM env;
bcdab802 5892 SCM transformer = scm_current_module_transformer ();
7888309b 5893 if (scm_is_true (transformer))
fdc28395 5894 exp = scm_call_1 (transformer, exp);
a513ead3 5895 env = scm_top_level_env (scm_current_module_lookup_closure ());
4163eb72
MV
5896 return scm_i_eval (exp, env);
5897}
5898#undef FUNC_NAME
5899
6bff1368 5900
68d8be66
MD
5901/* Eval does not take the second arg optionally. This is intentional
5902 * in order to be R5RS compatible, and to prepare for the new module
5903 * system, where we would like to make the choice of evaluation
4163eb72 5904 * environment explicit. */
549e6ec6 5905
4163eb72 5906SCM
9de87eea 5907scm_eval_x (SCM exp, SCM module_or_state)
4163eb72 5908{
9de87eea 5909 SCM res;
4163eb72 5910
9de87eea
MV
5911 scm_frame_begin (SCM_F_FRAME_REWINDABLE);
5912 if (scm_is_dynamic_state (module_or_state))
5913 scm_frame_current_dynamic_state (module_or_state);
5914 else
5915 scm_frame_current_module (module_or_state);
4163eb72 5916
9de87eea
MV
5917 res = scm_primitive_eval_x (exp);
5918
5919 scm_frame_end ();
5920 return res;
4163eb72 5921}
09074dbf 5922
68d8be66 5923SCM_DEFINE (scm_eval, "eval", 2, 0, 0,
9de87eea 5924 (SCM exp, SCM module_or_state),
4163eb72 5925 "Evaluate @var{exp}, a list representing a Scheme expression,\n"
9de87eea
MV
5926 "in the top-level environment specified by\n"
5927 "@var{module_or_state}.\n"
8f85c0c6 5928 "While @var{exp} is evaluated (using @code{primitive-eval}),\n"
9de87eea
MV
5929 "@var{module_or_state} is made the current module when\n"
5930 "it is a module, or the current dynamic state when it is\n"
5931 "a dynamic state."
6be1fab9 5932 "Example: (eval '(+ 1 2) (interaction-environment))")
1bbd0b84 5933#define FUNC_NAME s_scm_eval
0f2d19dd 5934{
9de87eea
MV
5935 SCM res;
5936
5937 scm_frame_begin (SCM_F_FRAME_REWINDABLE);
5938 if (scm_is_dynamic_state (module_or_state))
5939 scm_frame_current_dynamic_state (module_or_state);
5940 else
5941 scm_frame_current_module (module_or_state);
5942
5943 res = scm_primitive_eval (exp);
09074dbf 5944
9de87eea
MV
5945 scm_frame_end ();
5946 return res;
0f2d19dd 5947}
1bbd0b84 5948#undef FUNC_NAME
0f2d19dd 5949
6dbd0af5 5950
434f2f7a 5951/* At this point, deval and scm_dapply are generated.
6dbd0af5
MD
5952 */
5953
a44a9715
DH
5954#define DEVAL
5955#include "eval.c"
0f2d19dd 5956
1cc91f1b 5957
434f2f7a
DH
5958#if (SCM_ENABLE_DEPRECATED == 1)
5959
5960/* Deprecated in guile 1.7.0 on 2004-03-29. */
5961SCM scm_ceval (SCM x, SCM env)
5962{
a61f4e0c 5963 if (scm_is_pair (x))
434f2f7a 5964 return ceval (x, env);
cc95e00a 5965 else if (scm_is_symbol (x))
434f2f7a
DH
5966 return *scm_lookupcar (scm_cons (x, SCM_UNDEFINED), env, 1);
5967 else
385609b9 5968 return SCM_I_XEVAL (x, env);
434f2f7a
DH
5969}
5970
5971/* Deprecated in guile 1.7.0 on 2004-03-29. */
5972SCM scm_deval (SCM x, SCM env)
5973{
a61f4e0c 5974 if (scm_is_pair (x))
434f2f7a 5975 return deval (x, env);
cc95e00a 5976 else if (scm_is_symbol (x))
434f2f7a
DH
5977 return *scm_lookupcar (scm_cons (x, SCM_UNDEFINED), env, 1);
5978 else
385609b9 5979 return SCM_I_XEVAL (x, env);
434f2f7a
DH
5980}
5981
5982static SCM
5983dispatching_eval (SCM x, SCM env)
5984{
5985 if (scm_debug_mode_p)
5986 return scm_deval (x, env);
5987 else
5988 return scm_ceval (x, env);
5989}
5990
5991/* Deprecated in guile 1.7.0 on 2004-03-29. */
5992SCM (*scm_ceval_ptr) (SCM x, SCM env) = dispatching_eval;
5993
5994#endif
5995
5996
0f2d19dd
JB
5997void
5998scm_init_eval ()
0f2d19dd 5999{
d1138028
MV
6000 scm_i_pthread_mutex_init (&source_mutex,
6001 scm_i_pthread_mutexattr_recursive);
6002
33b97402
MD
6003 scm_init_opts (scm_evaluator_traps,
6004 scm_evaluator_trap_table,
6005 SCM_N_EVALUATOR_TRAPS);
6006 scm_init_opts (scm_eval_options_interface,
6007 scm_eval_opts,
6008 SCM_N_EVAL_OPTIONS);
6009
f99c9c28 6010 scm_tc16_promise = scm_make_smob_type ("promise", 0);
9de87eea 6011 scm_set_smob_mark (scm_tc16_promise, promise_mark);
28d52ebb 6012 scm_set_smob_free (scm_tc16_promise, promise_free);
e841c3e0 6013 scm_set_smob_print (scm_tc16_promise, promise_print);
b8229a3b 6014
a44a9715
DH
6015 undefineds = scm_list_1 (SCM_UNDEFINED);
6016 SCM_SETCDR (undefineds, undefineds);
6017 scm_permanent_object (undefineds);
7c33806a 6018
a44a9715 6019 scm_listofnull = scm_list_1 (SCM_EOL);
0f2d19dd 6020
a44a9715
DH
6021 f_apply = scm_c_define_subr ("apply", scm_tc7_lsubr_2, scm_apply);
6022 scm_permanent_object (f_apply);
86d31dfe 6023
a0599745 6024#include "libguile/eval.x"
60a49842 6025
25eaf21a 6026 scm_add_feature ("delay");
0f2d19dd 6027}
0f2d19dd 6028
6dbd0af5 6029#endif /* !DEVAL */
89e00824
ML
6030
6031/*
6032 Local Variables:
6033 c-file-style: "gnu"
6034 End:
6035*/