Critical sections in guardians do not need to block asyncs
[bpt/guile.git] / libguile / struct.c
1 /* Copyright (C) 1996,1997,1998,1999,2000,2001, 2003, 2004, 2006, 2007, 2008, 2009, 2010, 2011, 2012, 2013 Free Software Foundation, Inc.
2 *
3 * This library is free software; you can redistribute it and/or
4 * modify it under the terms of the GNU Lesser General Public License
5 * as published by the Free Software Foundation; either version 3 of
6 * the License, or (at your option) any later version.
7 *
8 * This library is distributed in the hope that it will be useful, but
9 * WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * Lesser General Public License for more details.
12 *
13 * You should have received a copy of the GNU Lesser General Public
14 * License along with this library; if not, write to the Free Software
15 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
16 * 02110-1301 USA
17 */
18
19 \f
20 #ifdef HAVE_CONFIG_H
21 # include <config.h>
22 #endif
23
24 #include <alloca.h>
25 #include <assert.h>
26
27 #define SCM_BUILDING_DEPRECATED_CODE
28
29 #include "libguile/_scm.h"
30 #include "libguile/async.h"
31 #include "libguile/chars.h"
32 #include "libguile/eval.h"
33 #include "libguile/alist.h"
34 #include "libguile/weaks.h"
35 #include "libguile/hashtab.h"
36 #include "libguile/ports.h"
37 #include "libguile/strings.h"
38 #include "libguile/srfi-13.h"
39
40 #include "libguile/validate.h"
41 #include "libguile/struct.h"
42
43 #include "libguile/eq.h"
44
45 #ifdef HAVE_STRING_H
46 #include <string.h>
47 #endif
48
49 #include "libguile/bdw-gc.h"
50
51 \f
52
53 /* A needlessly obscure test. */
54 #define SCM_LAYOUT_TAILP(X) (((X) & 32) == 0) /* R, W or O */
55
56 static SCM required_vtable_fields = SCM_BOOL_F;
57 static SCM required_applicable_fields = SCM_BOOL_F;
58 static SCM required_applicable_with_setter_fields = SCM_BOOL_F;
59 SCM scm_applicable_struct_vtable_vtable;
60 SCM scm_applicable_struct_with_setter_vtable_vtable;
61 SCM scm_standard_vtable_vtable;
62
63
64 \f
65 SCM_DEFINE (scm_make_struct_layout, "make-struct-layout", 1, 0, 0,
66 (SCM fields),
67 "Return a new structure layout object.\n\n"
68 "@var{fields} must be a string made up of pairs of characters\n"
69 "strung together. The first character of each pair describes a field\n"
70 "type, the second a field protection. Allowed types are 'p' for\n"
71 "GC-protected Scheme data, 'u' for unprotected binary data, and 's' for\n"
72 "a field that points to the structure itself. Allowed protections\n"
73 "are 'w' for mutable fields, 'h' for hidden fields, 'r' for read-only\n"
74 "fields, and 'o' for opaque fields.\n\n"
75 "Hidden fields are writable, but they will not consume an initializer arg\n"
76 "passed to @code{make-struct}. They are useful to add slots to a struct\n"
77 "in a way that preserves backward-compatibility with existing calls to\n"
78 "@code{make-struct}, especially for derived vtables.\n\n"
79 "The last field protection specification may be capitalized to indicate\n"
80 "that the field is a tail-array.")
81 #define FUNC_NAME s_scm_make_struct_layout
82 {
83 SCM new_sym;
84 scm_t_wchar c;
85
86 SCM_VALIDATE_STRING (1, fields);
87
88 { /* scope */
89 size_t len;
90 int x;
91
92 len = scm_i_string_length (fields);
93 if (len % 2 == 1)
94 SCM_MISC_ERROR ("odd length field specification: ~S",
95 scm_list_1 (fields));
96
97 for (x = 0; x < len; x += 2)
98 {
99 switch (c = scm_i_string_ref (fields, x))
100 {
101 case 'u':
102 case 'p':
103 #if 0
104 case 'i':
105 case 'd':
106 #endif
107 case 's':
108 break;
109 default:
110 SCM_MISC_ERROR ("unrecognized field type: ~S",
111 scm_list_1 (SCM_MAKE_CHAR (c)));
112 }
113
114 switch (c = scm_i_string_ref (fields, x + 1))
115 {
116 case 'w':
117 case 'h':
118 if (scm_i_string_ref (fields, x) == 's')
119 SCM_MISC_ERROR ("self fields not writable", SCM_EOL);
120 case 'r':
121 case 'o':
122 break;
123 case 'R':
124 case 'W':
125 case 'O':
126 if (scm_i_string_ref (fields, x) == 's')
127 SCM_MISC_ERROR ("self fields not allowed in tail array",
128 SCM_EOL);
129 if (x != len - 2)
130 SCM_MISC_ERROR ("tail array field must be last field in layout",
131 SCM_EOL);
132 break;
133 default:
134 SCM_MISC_ERROR ("unrecognized ref specification: ~S",
135 scm_list_1 (SCM_MAKE_CHAR (c)));
136 }
137 #if 0
138 if (scm_i_string_ref (fields, x, 'd'))
139 {
140 if (!scm_i_string_ref (fields, x+2, '-'))
141 SCM_MISC_ERROR ("missing dash field at position ~A",
142 scm_list_1 (scm_from_int (x / 2)));
143 x += 2;
144 goto recheck_ref;
145 }
146 #endif
147 }
148 new_sym = scm_string_to_symbol (fields);
149 }
150 scm_remember_upto_here_1 (fields);
151 return new_sym;
152 }
153 #undef FUNC_NAME
154
155 \f
156 /* Check whether VTABLE instances have a simple layout (i.e., either
157 only "pr" or only "pw" fields and no tail array) and update its flags
158 accordingly. */
159 static void
160 set_vtable_layout_flags (SCM vtable)
161 {
162 size_t len, field;
163 SCM layout;
164 const char *c_layout;
165 scm_t_bits flags = SCM_VTABLE_FLAG_SIMPLE;
166
167 layout = SCM_VTABLE_LAYOUT (vtable);
168 c_layout = scm_i_symbol_chars (layout);
169 len = scm_i_symbol_length (layout);
170
171 assert (len % 2 == 0);
172
173 /* Update FLAGS according to LAYOUT. */
174 for (field = 0;
175 field < len && flags & SCM_VTABLE_FLAG_SIMPLE;
176 field += 2)
177 {
178 if (c_layout[field] != 'p')
179 flags = 0;
180 else
181 switch (c_layout[field + 1])
182 {
183 case 'w':
184 if (field == 0)
185 flags |= SCM_VTABLE_FLAG_SIMPLE_RW;
186 break;
187
188 case 'r':
189 flags &= ~SCM_VTABLE_FLAG_SIMPLE_RW;
190 break;
191
192 default:
193 flags = 0;
194 }
195 }
196
197 if (flags & SCM_VTABLE_FLAG_SIMPLE)
198 {
199 /* VTABLE is simple so update its flags and record the size of its
200 instances. */
201 SCM_SET_VTABLE_FLAGS (vtable, flags);
202 SCM_STRUCT_DATA_SET (vtable, scm_vtable_index_size, len / 2);
203 }
204 }
205
206 static int
207 scm_is_valid_vtable_layout (SCM layout)
208 {
209 size_t len, n;
210 const char *c_layout;
211
212 c_layout = scm_i_symbol_chars (layout);
213 len = scm_i_symbol_length (layout);
214
215 if (len % 2)
216 return 0;
217
218 for (n = 0; n < len; n += 2)
219 switch (c_layout[n])
220 {
221 case 'u':
222 case 'p':
223 case 's':
224 switch (c_layout[n+1])
225 {
226 case 'W':
227 case 'R':
228 case 'O':
229 if (n + 2 != len)
230 return 0;
231 case 'w':
232 case 'h':
233 case 'r':
234 case 'o':
235 break;
236 default:
237 return 0;
238 }
239 break;
240 default:
241 return 0;
242 }
243 return 1;
244 }
245
246 /* Have OBJ, a newly created vtable, inherit flags from VTABLE. VTABLE is a
247 vtable-vtable and OBJ is an instance of VTABLE. */
248 void
249 scm_i_struct_inherit_vtable_magic (SCM vtable, SCM obj)
250 #define FUNC_NAME "%inherit-vtable-magic"
251 {
252 /* Verily, what is the deal here, you ask? Basically, we need to know a couple
253 of properties of structures at runtime. For example, "is this structure a
254 vtable of vtables (a metaclass)?"; also, "is this structure applicable?".
255 Both of these questions also imply a certain layout of the structure. So
256 instead of checking the layout at runtime, what we do is pre-verify the
257 layout -- so that at runtime we can just check the applicable flag and
258 dispatch directly to the Scheme procedure in slot 0. */
259 SCM olayout;
260
261 /* Verify that OBJ is a valid vtable. */
262 if (! scm_is_valid_vtable_layout (SCM_VTABLE_LAYOUT (obj)))
263 SCM_MISC_ERROR ("invalid layout for new vtable: ~a",
264 scm_list_1 (SCM_VTABLE_LAYOUT (obj)));
265
266 set_vtable_layout_flags (obj);
267
268 /* If OBJ's vtable is compatible with the required vtable (class) layout, it
269 is a metaclass. */
270 olayout = scm_symbol_to_string (SCM_VTABLE_LAYOUT (obj));
271 if (scm_is_true (scm_leq_p (scm_string_length (required_vtable_fields),
272 scm_string_length (olayout)))
273 && scm_is_true (scm_string_eq (olayout, required_vtable_fields,
274 scm_from_size_t (0),
275 scm_string_length (required_vtable_fields),
276 scm_from_size_t (0),
277 scm_string_length (required_vtable_fields))))
278 SCM_SET_VTABLE_FLAGS (obj, SCM_VTABLE_FLAG_VTABLE);
279
280 /* Finally, if OBJ is an applicable class, verify that its vtable is
281 compatible with the required applicable layout. */
282 if (SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_SETTER_VTABLE))
283 {
284 if (scm_is_false (scm_string_eq (olayout, required_applicable_with_setter_fields,
285 scm_from_size_t (0),
286 scm_from_size_t (4),
287 scm_from_size_t (0),
288 scm_from_size_t (4))))
289 SCM_MISC_ERROR ("invalid applicable-with-setter struct layout",
290 scm_list_1 (olayout));
291 SCM_SET_VTABLE_FLAGS (obj, SCM_VTABLE_FLAG_APPLICABLE | SCM_VTABLE_FLAG_SETTER);
292 }
293 else if (SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_APPLICABLE_VTABLE))
294 {
295 if (scm_is_false (scm_string_eq (olayout, required_applicable_fields,
296 scm_from_size_t (0),
297 scm_from_size_t (2),
298 scm_from_size_t (0),
299 scm_from_size_t (2))))
300 SCM_MISC_ERROR ("invalid applicable struct layout",
301 scm_list_1 (olayout));
302 SCM_SET_VTABLE_FLAGS (obj, SCM_VTABLE_FLAG_APPLICABLE);
303 }
304
305 SCM_SET_VTABLE_FLAGS (obj, SCM_VTABLE_FLAG_VALIDATED);
306 }
307 #undef FUNC_NAME
308
309
310 static void
311 scm_struct_init (SCM handle, SCM layout, size_t n_tail,
312 size_t n_inits, scm_t_bits *inits)
313 {
314 SCM vtable;
315 scm_t_bits *mem;
316
317 vtable = SCM_STRUCT_VTABLE (handle);
318 mem = SCM_STRUCT_DATA (handle);
319
320 if (SCM_UNPACK (vtable) != 0
321 && SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_SIMPLE)
322 && n_tail == 0
323 && n_inits == SCM_STRUCT_DATA_REF (vtable, scm_vtable_index_size))
324 /* The fast path: HANDLE has N_INITS "p" fields. */
325 memcpy (mem, inits, n_inits * sizeof (SCM));
326 else
327 {
328 scm_t_wchar prot = 0;
329 int n_fields = scm_i_symbol_length (layout) / 2;
330 int tailp = 0;
331 int i;
332 size_t inits_idx = 0;
333
334 i = -2;
335 while (n_fields)
336 {
337 if (!tailp)
338 {
339 i += 2;
340 prot = scm_i_symbol_ref (layout, i+1);
341 if (SCM_LAYOUT_TAILP (prot))
342 {
343 tailp = 1;
344 prot = prot == 'R' ? 'r' : prot == 'W' ? 'w' : 'o';
345 *mem++ = (scm_t_bits)n_tail;
346 n_fields += n_tail - 1;
347 if (n_fields == 0)
348 break;
349 }
350 }
351 switch (scm_i_symbol_ref (layout, i))
352 {
353 case 'u':
354 if ((prot != 'r' && prot != 'w') || inits_idx == n_inits)
355 *mem = 0;
356 else
357 {
358 *mem = scm_to_ulong (SCM_PACK (inits[inits_idx]));
359 inits_idx++;
360 }
361 break;
362
363 case 'p':
364 if ((prot != 'r' && prot != 'w') || inits_idx == n_inits)
365 *mem = SCM_UNPACK (SCM_BOOL_F);
366 else
367 {
368 *mem = inits[inits_idx];
369 inits_idx++;
370 }
371
372 break;
373
374 case 's':
375 *mem = SCM_UNPACK (handle);
376 break;
377 }
378
379 n_fields--;
380 mem++;
381 }
382 }
383 }
384
385
386 SCM_DEFINE (scm_struct_p, "struct?", 1, 0, 0,
387 (SCM x),
388 "Return @code{#t} iff @var{x} is a structure object, else\n"
389 "@code{#f}.")
390 #define FUNC_NAME s_scm_struct_p
391 {
392 return scm_from_bool(SCM_STRUCTP (x));
393 }
394 #undef FUNC_NAME
395
396 SCM_DEFINE (scm_struct_vtable_p, "struct-vtable?", 1, 0, 0,
397 (SCM x),
398 "Return @code{#t} iff @var{x} is a vtable structure.")
399 #define FUNC_NAME s_scm_struct_vtable_p
400 {
401 if (!SCM_STRUCTP (x)
402 || !SCM_STRUCT_VTABLE_FLAG_IS_SET (x, SCM_VTABLE_FLAG_VTABLE))
403 return SCM_BOOL_F;
404 if (!SCM_VTABLE_FLAG_IS_SET (x, SCM_VTABLE_FLAG_VALIDATED))
405 SCM_MISC_ERROR ("vtable has invalid layout: ~A",
406 scm_list_1 (SCM_VTABLE_LAYOUT (x)));
407 return SCM_BOOL_T;
408 }
409 #undef FUNC_NAME
410
411
412 /* Finalization: invoke the finalizer of the struct pointed to by PTR. */
413 static void
414 struct_finalizer_trampoline (void *ptr, void *unused_data)
415 {
416 SCM obj = PTR2SCM (ptr);
417 scm_t_struct_finalize finalize = SCM_STRUCT_FINALIZER (obj);
418
419 if (finalize)
420 finalize (obj);
421 }
422
423 /* All struct data must be allocated at an address whose bottom three
424 bits are zero. This is because the tag for a struct lives in the
425 bottom three bits of the struct's car, and the upper bits point to
426 the data of its vtable, which is a struct itself. Thus, if the
427 address of that data doesn't end in three zeros, tagging it will
428 destroy the pointer.
429
430 I suppose we should make it clear here that, the data must be 8-byte aligned,
431 *within* the struct, and the struct itself should be 8-byte aligned. In
432 practice we ensure this because the data starts two words into a struct.
433
434 This function allocates an 8-byte aligned block of memory, whose first word
435 points to the given vtable data, then a data pointer, then n_words of data.
436 */
437 SCM
438 scm_i_alloc_struct (scm_t_bits *vtable_data, int n_words)
439 {
440 SCM ret;
441
442 ret = scm_words ((scm_t_bits)vtable_data | scm_tc3_struct, n_words + 2);
443 SCM_SET_CELL_WORD_1 (ret, (scm_t_bits)SCM_CELL_OBJECT_LOC (ret, 2));
444
445 /* vtable_data can be null when making a vtable vtable */
446 if (vtable_data && vtable_data[scm_vtable_index_instance_finalize])
447 /* Register a finalizer for the newly created instance. */
448 scm_i_set_finalizer (SCM2PTR (ret), struct_finalizer_trampoline, NULL);
449
450 return ret;
451 }
452
453 \f
454 SCM
455 scm_c_make_structv (SCM vtable, size_t n_tail, size_t n_init, scm_t_bits *init)
456 #define FUNC_NAME "make-struct"
457 {
458 SCM layout;
459 size_t basic_size;
460 SCM obj;
461
462 SCM_VALIDATE_VTABLE (1, vtable);
463
464 layout = SCM_VTABLE_LAYOUT (vtable);
465 basic_size = scm_i_symbol_length (layout) / 2;
466
467 if (n_tail != 0)
468 {
469 SCM layout_str, last_char;
470
471 if (basic_size == 0)
472 {
473 bad_tail:
474 SCM_MISC_ERROR ("tail array not allowed unless layout ends R, W, or O", SCM_EOL);
475 }
476
477 layout_str = scm_symbol_to_string (layout);
478 last_char = scm_string_ref (layout_str,
479 scm_from_size_t (2 * basic_size - 1));
480 if (! SCM_LAYOUT_TAILP (SCM_CHAR (last_char)))
481 goto bad_tail;
482 }
483
484 obj = scm_i_alloc_struct (SCM_STRUCT_DATA (vtable), basic_size + n_tail);
485
486 scm_struct_init (obj, layout, n_tail, n_init, init);
487
488 /* If we're making a vtable, validate its layout and inherit
489 flags. However we allow for separation of allocation and
490 initialization, to humor GOOPS, so only validate if the layout was
491 passed as an initarg. */
492 if (SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_VTABLE)
493 && scm_is_true (SCM_VTABLE_LAYOUT (obj)))
494 scm_i_struct_inherit_vtable_magic (vtable, obj);
495
496 return obj;
497 }
498 #undef FUNC_NAME
499
500 SCM
501 scm_c_make_struct (SCM vtable, size_t n_tail, size_t n_init, scm_t_bits init, ...)
502 {
503 va_list foo;
504 scm_t_bits *v;
505 size_t i;
506
507 v = alloca (sizeof (scm_t_bits) * n_init);
508
509 va_start (foo, init);
510 for (i = 0; i < n_init; i++)
511 {
512 v[i] = init;
513 init = va_arg (foo, scm_t_bits);
514 }
515 va_end (foo);
516
517 return scm_c_make_structv (vtable, n_tail, n_init, v);
518 }
519
520 SCM_DEFINE (scm_make_struct, "make-struct", 2, 0, 1,
521 (SCM vtable, SCM tail_array_size, SCM init),
522 "Create a new structure.\n\n"
523 "@var{vtable} must be a vtable structure (@pxref{Vtables}).\n\n"
524 "@var{tail_array_size} must be a non-negative integer. If the layout\n"
525 "specification indicated by @var{vtable} includes a tail-array,\n"
526 "this is the number of elements allocated to that array.\n\n"
527 "The @var{init1}, @dots{} are optional arguments describing how\n"
528 "successive fields of the structure should be initialized. Only fields\n"
529 "with protection 'r' or 'w' can be initialized, except for fields of\n"
530 "type 's', which are automatically initialized to point to the new\n"
531 "structure itself. Fields with protection 'o' can not be initialized by\n"
532 "Scheme programs.\n\n"
533 "If fewer optional arguments than initializable fields are supplied,\n"
534 "fields of type 'p' get default value #f while fields of type 'u' are\n"
535 "initialized to 0.\n\n"
536 "For more information, see the documentation for @code{make-vtable-vtable}.")
537 #define FUNC_NAME s_scm_make_struct
538 {
539 size_t i, n_init;
540 long ilen;
541 scm_t_bits *v;
542
543 SCM_VALIDATE_VTABLE (1, vtable);
544 ilen = scm_ilength (init);
545 if (ilen < 0)
546 SCM_MISC_ERROR ("Rest arguments do not form a proper list.", SCM_EOL);
547
548 n_init = (size_t)ilen;
549
550 /* best to use alloca, but init could be big, so hack to avoid a possible
551 stack overflow */
552 if (n_init < 64)
553 v = alloca (n_init * sizeof(scm_t_bits));
554 else
555 v = scm_gc_malloc (n_init * sizeof(scm_t_bits), "struct");
556
557 for (i = 0; i < n_init; i++, init = SCM_CDR (init))
558 v[i] = SCM_UNPACK (SCM_CAR (init));
559
560 return scm_c_make_structv (vtable, scm_to_size_t (tail_array_size), n_init, v);
561 }
562 #undef FUNC_NAME
563
564
565
566 #if SCM_ENABLE_DEPRECATED == 1
567 SCM
568 scm_make_vtable_vtable (SCM user_fields, SCM tail_array_size, SCM init)
569 #define FUNC_NAME "make-vtable-vtable"
570 {
571 SCM fields, layout, obj;
572 size_t basic_size, n_tail, i, n_init;
573 long ilen;
574 scm_t_bits *v;
575
576 SCM_VALIDATE_STRING (1, user_fields);
577 ilen = scm_ilength (init);
578 if (ilen < 0)
579 SCM_MISC_ERROR ("Rest arguments do not form a proper list.", SCM_EOL);
580
581 n_init = (size_t)ilen + 1; /* + 1 for the layout */
582
583 /* best to use alloca, but init could be big, so hack to avoid a possible
584 stack overflow */
585 if (n_init < 64)
586 v = alloca (n_init * sizeof(scm_t_bits));
587 else
588 v = scm_gc_malloc (n_init * sizeof(scm_t_bits), "struct");
589
590 fields = scm_string_append (scm_list_2 (required_vtable_fields,
591 user_fields));
592 layout = scm_make_struct_layout (fields);
593 if (!scm_is_valid_vtable_layout (layout))
594 SCM_MISC_ERROR ("invalid user fields", scm_list_1 (user_fields));
595
596 basic_size = scm_i_symbol_length (layout) / 2;
597 n_tail = scm_to_size_t (tail_array_size);
598
599 i = 0;
600 v[i++] = SCM_UNPACK (layout);
601 for (; i < n_init; i++, init = SCM_CDR (init))
602 v[i] = SCM_UNPACK (SCM_CAR (init));
603
604 SCM_CRITICAL_SECTION_START;
605 obj = scm_i_alloc_struct (NULL, basic_size + n_tail);
606 /* Make it so that the vtable of OBJ is itself. */
607 SCM_SET_CELL_WORD_0 (obj, (scm_t_bits) SCM_STRUCT_DATA (obj) | scm_tc3_struct);
608 SCM_CRITICAL_SECTION_END;
609
610 scm_struct_init (obj, layout, n_tail, n_init, v);
611 SCM_SET_VTABLE_FLAGS (obj,
612 SCM_VTABLE_FLAG_VTABLE | SCM_VTABLE_FLAG_VALIDATED);
613
614 return obj;
615 }
616 #undef FUNC_NAME
617 #endif
618
619 SCM
620 scm_i_make_vtable_vtable (SCM user_fields)
621 #define FUNC_NAME "make-vtable-vtable"
622 {
623 SCM fields, layout, obj;
624 size_t basic_size;
625 scm_t_bits v;
626
627 SCM_VALIDATE_STRING (1, user_fields);
628
629 fields = scm_string_append (scm_list_2 (required_vtable_fields,
630 user_fields));
631 layout = scm_make_struct_layout (fields);
632 if (!scm_is_valid_vtable_layout (layout))
633 SCM_MISC_ERROR ("invalid user fields", scm_list_1 (user_fields));
634
635 basic_size = scm_i_symbol_length (layout) / 2;
636
637 obj = scm_i_alloc_struct (NULL, basic_size);
638 /* Make it so that the vtable of OBJ is itself. */
639 SCM_SET_CELL_WORD_0 (obj, (scm_t_bits) SCM_STRUCT_DATA (obj) | scm_tc3_struct);
640
641 v = SCM_UNPACK (layout);
642 scm_struct_init (obj, layout, 0, 1, &v);
643 SCM_SET_VTABLE_FLAGS (obj,
644 SCM_VTABLE_FLAG_VTABLE | SCM_VTABLE_FLAG_VALIDATED);
645
646 return obj;
647 }
648 #undef FUNC_NAME
649
650 SCM_DEFINE (scm_make_vtable, "make-vtable", 1, 1, 0,
651 (SCM fields, SCM printer),
652 "Create a vtable, for creating structures with the given\n"
653 "@var{fields}.\n"
654 "\n"
655 "The optional @var{printer} argument is a function to be called\n"
656 "@code{(@var{printer} struct port)} on the structures created.\n"
657 "It should look at @var{struct} and write to @var{port}.")
658 #define FUNC_NAME s_scm_make_vtable
659 {
660 if (SCM_UNBNDP (printer))
661 printer = SCM_BOOL_F;
662
663 return scm_make_struct (scm_standard_vtable_vtable, SCM_INUM0,
664 scm_list_2 (scm_make_struct_layout (fields),
665 printer));
666 }
667 #undef FUNC_NAME
668
669
670 /* Return true if S1 and S2 are equal structures, i.e., if their vtable and
671 contents are the same. Field protections are honored. Thus, it is an
672 error to test the equality of structures that contain opaque fields. */
673 SCM
674 scm_i_struct_equalp (SCM s1, SCM s2)
675 #define FUNC_NAME "scm_i_struct_equalp"
676 {
677 SCM vtable1, vtable2, layout;
678 size_t struct_size, field_num;
679
680 SCM_VALIDATE_STRUCT (1, s1);
681 SCM_VALIDATE_STRUCT (2, s2);
682
683 vtable1 = SCM_STRUCT_VTABLE (s1);
684 vtable2 = SCM_STRUCT_VTABLE (s2);
685
686 if (!scm_is_eq (vtable1, vtable2))
687 return SCM_BOOL_F;
688
689 layout = SCM_STRUCT_LAYOUT (s1);
690 struct_size = scm_i_symbol_length (layout) / 2;
691
692 for (field_num = 0; field_num < struct_size; field_num++)
693 {
694 SCM s_field_num;
695 SCM field1, field2;
696
697 /* We have to use `scm_struct_ref ()' here so that fields are accessed
698 consistently, notably wrt. field types and access rights. */
699 s_field_num = scm_from_size_t (field_num);
700 field1 = scm_struct_ref (s1, s_field_num);
701 field2 = scm_struct_ref (s2, s_field_num);
702
703 /* Self-referencing fields (type `s') must be skipped to avoid infinite
704 recursion. */
705 if (!(scm_is_eq (field1, s1) && (scm_is_eq (field2, s2))))
706 if (scm_is_false (scm_equal_p (field1, field2)))
707 return SCM_BOOL_F;
708 }
709
710 /* FIXME: Tail elements should be tested for equality. */
711
712 return SCM_BOOL_T;
713 }
714 #undef FUNC_NAME
715
716
717 \f
718
719
720 SCM_DEFINE (scm_struct_ref, "struct-ref", 2, 0, 0,
721 (SCM handle, SCM pos),
722 "Access the @var{pos}th field of struct associated with\n"
723 "@var{handle}.\n"
724 "\n"
725 "If the field is of type 'p', then it can be set to an arbitrary\n"
726 "value.\n"
727 "\n"
728 "If the field is of type 'u', then it can only be set to a\n"
729 "non-negative integer value small enough to fit in one machine\n"
730 "word.")
731 #define FUNC_NAME s_scm_struct_ref
732 {
733 SCM vtable, answer = SCM_UNDEFINED;
734 scm_t_bits *data;
735 size_t p;
736
737 SCM_VALIDATE_STRUCT (1, handle);
738
739 vtable = SCM_STRUCT_VTABLE (handle);
740 data = SCM_STRUCT_DATA (handle);
741 p = scm_to_size_t (pos);
742
743 if (SCM_LIKELY (SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_SIMPLE)
744 && p < SCM_STRUCT_DATA_REF (vtable, scm_vtable_index_size)))
745 /* The fast path: HANDLE is a struct with only "p" fields. */
746 answer = SCM_PACK (data[p]);
747 else
748 {
749 SCM layout;
750 size_t layout_len, n_fields;
751 scm_t_wchar field_type = 0;
752
753 layout = SCM_STRUCT_LAYOUT (handle);
754 layout_len = scm_i_symbol_length (layout);
755 n_fields = layout_len / 2;
756
757 if (SCM_LAYOUT_TAILP (scm_i_symbol_ref (layout, layout_len - 1)))
758 n_fields += data[n_fields - 1];
759
760 SCM_ASSERT_RANGE (1, pos, p < n_fields);
761
762 if (p * 2 < layout_len)
763 {
764 scm_t_wchar ref;
765 field_type = scm_i_symbol_ref (layout, p * 2);
766 ref = scm_i_symbol_ref (layout, p * 2 + 1);
767 if ((ref != 'r') && (ref != 'w') && (ref != 'h'))
768 {
769 if ((ref == 'R') || (ref == 'W'))
770 field_type = 'u';
771 else
772 SCM_MISC_ERROR ("ref denied for field ~A", scm_list_1 (pos));
773 }
774 }
775 else if (scm_i_symbol_ref (layout, layout_len - 1) != 'O')
776 field_type = scm_i_symbol_ref(layout, layout_len - 2);
777 else
778 SCM_MISC_ERROR ("ref denied for field ~A", scm_list_1 (pos));
779
780 switch (field_type)
781 {
782 case 'u':
783 answer = scm_from_ulong (data[p]);
784 break;
785
786 #if 0
787 case 'i':
788 answer = scm_from_long (data[p]);
789 break;
790
791 case 'd':
792 answer = scm_make_real (*((double *)&(data[p])));
793 break;
794 #endif
795
796 case 's':
797 case 'p':
798 answer = SCM_PACK (data[p]);
799 break;
800
801
802 default:
803 SCM_MISC_ERROR ("unrecognized field type: ~S",
804 scm_list_1 (SCM_MAKE_CHAR (field_type)));
805 }
806 }
807
808 return answer;
809 }
810 #undef FUNC_NAME
811
812
813 SCM_DEFINE (scm_struct_set_x, "struct-set!", 3, 0, 0,
814 (SCM handle, SCM pos, SCM val),
815 "Set the slot of the structure @var{handle} with index @var{pos}\n"
816 "to @var{val}. Signal an error if the slot can not be written\n"
817 "to.")
818 #define FUNC_NAME s_scm_struct_set_x
819 {
820 SCM vtable;
821 scm_t_bits *data;
822 size_t p;
823
824 SCM_VALIDATE_STRUCT (1, handle);
825
826 vtable = SCM_STRUCT_VTABLE (handle);
827 data = SCM_STRUCT_DATA (handle);
828 p = scm_to_size_t (pos);
829
830 if (SCM_LIKELY (SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_SIMPLE)
831 && SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_SIMPLE_RW)
832 && p < SCM_STRUCT_DATA_REF (vtable, scm_vtable_index_size)))
833 /* The fast path: HANDLE is a struct with only "pw" fields. */
834 data[p] = SCM_UNPACK (val);
835 else
836 {
837 SCM layout;
838 size_t layout_len, n_fields;
839 scm_t_wchar field_type = 0;
840
841 layout = SCM_STRUCT_LAYOUT (handle);
842 layout_len = scm_i_symbol_length (layout);
843 n_fields = layout_len / 2;
844
845 if (SCM_LAYOUT_TAILP (scm_i_symbol_ref (layout, layout_len - 1)))
846 n_fields += data[n_fields - 1];
847
848 SCM_ASSERT_RANGE (1, pos, p < n_fields);
849
850 if (p * 2 < layout_len)
851 {
852 char set_x;
853 field_type = scm_i_symbol_ref (layout, p * 2);
854 set_x = scm_i_symbol_ref (layout, p * 2 + 1);
855 if (set_x != 'w' && set_x != 'h')
856 SCM_MISC_ERROR ("set! denied for field ~A", scm_list_1 (pos));
857 }
858 else if (scm_i_symbol_ref (layout, layout_len - 1) == 'W')
859 field_type = scm_i_symbol_ref (layout, layout_len - 2);
860 else
861 SCM_MISC_ERROR ("set! denied for field ~A", scm_list_1 (pos));
862
863 switch (field_type)
864 {
865 case 'u':
866 data[p] = SCM_NUM2ULONG (3, val);
867 break;
868
869 #if 0
870 case 'i':
871 data[p] = SCM_NUM2LONG (3, val);
872 break;
873
874 case 'd':
875 *((double *)&(data[p])) = scm_num2dbl (val, (char *)SCM_ARG3);
876 break;
877 #endif
878
879 case 'p':
880 data[p] = SCM_UNPACK (val);
881 break;
882
883 case 's':
884 SCM_MISC_ERROR ("self fields immutable", SCM_EOL);
885
886 default:
887 SCM_MISC_ERROR ("unrecognized field type: ~S",
888 scm_list_1 (SCM_MAKE_CHAR (field_type)));
889 }
890 }
891
892 return val;
893 }
894 #undef FUNC_NAME
895
896
897 SCM_DEFINE (scm_struct_vtable, "struct-vtable", 1, 0, 0,
898 (SCM handle),
899 "Return the vtable structure that describes the type of struct\n"
900 "associated with @var{handle}.")
901 #define FUNC_NAME s_scm_struct_vtable
902 {
903 SCM_VALIDATE_STRUCT (1, handle);
904 return SCM_STRUCT_VTABLE (handle);
905 }
906 #undef FUNC_NAME
907
908
909 /* {Associating names and classes with vtables}
910 *
911 * The name of a vtable should probably be stored as a slot. This is
912 * a backward compatible solution until agreement has been achieved on
913 * how to associate names with vtables.
914 */
915
916 unsigned long
917 scm_struct_ihashq (SCM obj, unsigned long n, void *closure)
918 {
919 /* The length of the hash table should be a relative prime it's not
920 necessary to shift down the address. */
921 return SCM_UNPACK (obj) % n;
922 }
923
924 /* Return the hash of struct OBJ, modulo N. Traverse OBJ's fields to
925 compute the result, unless DEPTH is zero. */
926 unsigned long
927 scm_i_struct_hash (SCM obj, unsigned long n, size_t depth)
928 #define FUNC_NAME "hash"
929 {
930 SCM layout;
931 scm_t_bits *data;
932 size_t struct_size, field_num;
933 unsigned long hash;
934
935 SCM_VALIDATE_STRUCT (1, obj);
936
937 layout = SCM_STRUCT_LAYOUT (obj);
938 struct_size = scm_i_symbol_length (layout) / 2;
939 data = SCM_STRUCT_DATA (obj);
940
941 hash = SCM_UNPACK (SCM_STRUCT_VTABLE (obj)) % n;
942 if (depth > 0)
943 for (field_num = 0; field_num < struct_size; field_num++)
944 {
945 int protection;
946
947 protection = scm_i_symbol_ref (layout, field_num * 2 + 1);
948 if (protection != 'h' && protection != 'o')
949 {
950 int type;
951 type = scm_i_symbol_ref (layout, field_num * 2);
952 switch (type)
953 {
954 case 'p':
955 hash ^= scm_hasher (SCM_PACK (data[field_num]), n,
956 depth / 2);
957 break;
958 case 'u':
959 hash ^= data[field_num] % n;
960 break;
961 default:
962 /* Ignore 's' fields. */;
963 }
964 }
965 }
966
967 /* FIXME: Tail elements should be taken into account. */
968
969 return hash % n;
970 }
971 #undef FUNC_NAME
972
973 SCM_DEFINE (scm_struct_vtable_name, "struct-vtable-name", 1, 0, 0,
974 (SCM vtable),
975 "Return the name of the vtable @var{vtable}.")
976 #define FUNC_NAME s_scm_struct_vtable_name
977 {
978 SCM_VALIDATE_VTABLE (1, vtable);
979 return SCM_VTABLE_NAME (vtable);
980 }
981 #undef FUNC_NAME
982
983 SCM_DEFINE (scm_set_struct_vtable_name_x, "set-struct-vtable-name!", 2, 0, 0,
984 (SCM vtable, SCM name),
985 "Set the name of the vtable @var{vtable} to @var{name}.")
986 #define FUNC_NAME s_scm_set_struct_vtable_name_x
987 {
988 SCM_VALIDATE_VTABLE (1, vtable);
989 SCM_VALIDATE_SYMBOL (2, name);
990 SCM_SET_VTABLE_NAME (vtable, name);
991 /* FIXME: remove this, and implement proper struct classes instead.
992 (Vtables *are* classes.) */
993 scm_i_define_class_for_vtable (vtable);
994 return SCM_UNSPECIFIED;
995 }
996 #undef FUNC_NAME
997
998
999 \f
1000
1001 void
1002 scm_print_struct (SCM exp, SCM port, scm_print_state *pstate)
1003 {
1004 if (scm_is_true (scm_procedure_p (SCM_STRUCT_PRINTER (exp))))
1005 scm_printer_apply (SCM_STRUCT_PRINTER (exp), exp, port, pstate);
1006 else
1007 {
1008 SCM vtable = SCM_STRUCT_VTABLE (exp);
1009 SCM name = scm_struct_vtable_name (vtable);
1010 scm_puts ("#<", port);
1011 if (scm_is_true (name))
1012 {
1013 scm_display (name, port);
1014 scm_putc (' ', port);
1015 }
1016 else
1017 {
1018 if (SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_VTABLE))
1019 scm_puts ("vtable:", port);
1020 else
1021 scm_puts ("struct:", port);
1022 scm_uintprint (SCM_UNPACK (vtable), 16, port);
1023 scm_putc (' ', port);
1024 scm_write (SCM_VTABLE_LAYOUT (vtable), port);
1025 scm_putc (' ', port);
1026 }
1027 scm_uintprint (SCM_UNPACK (exp), 16, port);
1028 /* hackety hack */
1029 if (SCM_STRUCT_APPLICABLE_P (exp))
1030 {
1031 if (scm_is_true (SCM_STRUCT_PROCEDURE (exp)))
1032 {
1033 scm_puts (" proc: ", port);
1034 if (scm_is_true (scm_procedure_p (SCM_STRUCT_PROCEDURE (exp))))
1035 scm_write (SCM_STRUCT_PROCEDURE (exp), port);
1036 else
1037 scm_puts ("(not a procedure?)", port);
1038 }
1039 if (SCM_STRUCT_SETTER_P (exp))
1040 {
1041 scm_puts (" setter: ", port);
1042 scm_write (SCM_STRUCT_SETTER (exp), port);
1043 }
1044 }
1045 scm_putc ('>', port);
1046 }
1047 }
1048
1049 void
1050 scm_init_struct ()
1051 {
1052 SCM name;
1053
1054 /* The first word of a struct is equal to `SCM_STRUCT_DATA (vtable) +
1055 scm_tc3_struct', and `SCM_STRUCT_DATA (vtable)' is 2 words after VTABLE by
1056 default. */
1057 GC_REGISTER_DISPLACEMENT (2 * sizeof (scm_t_bits) + scm_tc3_struct);
1058
1059 /* In the general case, `SCM_STRUCT_DATA (obj)' points 2 words after the
1060 beginning of a GC-allocated region; that region is different from that of
1061 OBJ once OBJ has undergone class redefinition. */
1062 GC_REGISTER_DISPLACEMENT (2 * sizeof (scm_t_bits));
1063
1064 required_vtable_fields = scm_from_locale_string (SCM_VTABLE_BASE_LAYOUT);
1065 scm_c_define ("standard-vtable-fields", required_vtable_fields);
1066 required_applicable_fields = scm_from_locale_string (SCM_APPLICABLE_BASE_LAYOUT);
1067 required_applicable_with_setter_fields = scm_from_locale_string (SCM_APPLICABLE_WITH_SETTER_BASE_LAYOUT);
1068
1069 scm_standard_vtable_vtable = scm_i_make_vtable_vtable (scm_nullstr);
1070 name = scm_from_utf8_symbol ("<standard-vtable>");
1071 scm_set_struct_vtable_name_x (scm_standard_vtable_vtable, name);
1072 scm_define (name, scm_standard_vtable_vtable);
1073
1074 scm_applicable_struct_vtable_vtable =
1075 scm_make_struct (scm_standard_vtable_vtable, SCM_INUM0,
1076 scm_list_1 (scm_make_struct_layout (required_vtable_fields)));
1077 name = scm_from_utf8_symbol ("<applicable-struct-vtable>");
1078 SCM_SET_VTABLE_FLAGS (scm_applicable_struct_vtable_vtable,
1079 SCM_VTABLE_FLAG_APPLICABLE_VTABLE);
1080 scm_set_struct_vtable_name_x (scm_applicable_struct_vtable_vtable, name);
1081 scm_define (name, scm_applicable_struct_vtable_vtable);
1082
1083 scm_applicable_struct_with_setter_vtable_vtable =
1084 scm_make_struct (scm_standard_vtable_vtable, SCM_INUM0,
1085 scm_list_1 (scm_make_struct_layout (required_vtable_fields)));
1086 name = scm_from_utf8_symbol ("<applicable-struct-with-setter-vtable>");
1087 scm_set_struct_vtable_name_x (scm_applicable_struct_with_setter_vtable_vtable, name);
1088 SCM_SET_VTABLE_FLAGS (scm_applicable_struct_with_setter_vtable_vtable,
1089 SCM_VTABLE_FLAG_APPLICABLE_VTABLE | SCM_VTABLE_FLAG_SETTER_VTABLE);
1090 scm_define (name, scm_applicable_struct_with_setter_vtable_vtable);
1091
1092 scm_c_define ("vtable-index-layout", scm_from_int (scm_vtable_index_layout));
1093 scm_c_define ("vtable-index-printer",
1094 scm_from_int (scm_vtable_index_instance_printer));
1095 scm_c_define ("vtable-offset-user", scm_from_int (scm_vtable_offset_user));
1096 #include "libguile/struct.x"
1097 #if SCM_ENABLE_DEPRECATED
1098 scm_c_define_gsubr ("make-vtable-vtable", 2, 0, 1, scm_make_vtable_vtable);
1099 #endif
1100 }
1101
1102 /*
1103 Local Variables:
1104 c-file-style: "gnu"
1105 End:
1106 */