Use `void *' instead of `GC_PTR' internally.
[bpt/guile.git] / libguile / foreign.c
1 /* Copyright (C) 2010, 2011, 2012 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 #if HAVE_CONFIG_H
20 # include <config.h>
21 #endif
22
23 #include <ffi.h>
24
25 #include <alloca.h>
26 #include <alignof.h>
27 #include <string.h>
28 #include <assert.h>
29
30 #include "libguile/_scm.h"
31 #include "libguile/bytevectors.h"
32 #include "libguile/instructions.h"
33 #include "libguile/threads.h"
34 #include "libguile/foreign.h"
35
36 \f
37
38 SCM_SYMBOL (sym_void, "void");
39 SCM_SYMBOL (sym_float, "float");
40 SCM_SYMBOL (sym_double, "double");
41 SCM_SYMBOL (sym_uint8, "uint8");
42 SCM_SYMBOL (sym_int8, "int8");
43 SCM_SYMBOL (sym_uint16, "uint16");
44 SCM_SYMBOL (sym_int16, "int16");
45 SCM_SYMBOL (sym_uint32, "uint32");
46 SCM_SYMBOL (sym_int32, "int32");
47 SCM_SYMBOL (sym_uint64, "uint64");
48 SCM_SYMBOL (sym_int64, "int64");
49 SCM_SYMBOL (sym_short, "short");
50 SCM_SYMBOL (sym_int, "int");
51 SCM_SYMBOL (sym_long, "long");
52 SCM_SYMBOL (sym_unsigned_short, "unsigned-short");
53 SCM_SYMBOL (sym_unsigned_int, "unsigned-int");
54 SCM_SYMBOL (sym_unsigned_long, "unsigned-long");
55 SCM_SYMBOL (sym_size_t, "size_t");
56
57 /* that's for pointers, you know. */
58 SCM_SYMBOL (sym_asterisk, "*");
59
60 SCM_SYMBOL (sym_null, "%null-pointer");
61 SCM_SYMBOL (sym_null_pointer_error, "null-pointer-error");
62
63 /* The cell representing the null pointer. */
64 static SCM null_pointer;
65
66 #if SIZEOF_VOID_P == 4
67 # define scm_to_uintptr scm_to_uint32
68 # define scm_from_uintptr scm_from_uint32
69 #elif SIZEOF_VOID_P == 8
70 # define scm_to_uintptr scm_to_uint64
71 # define scm_from_uintptr scm_from_uint64
72 #else
73 # error unsupported pointer size
74 #endif
75
76
77 /* Raise a null pointer dereference error. */
78 static void
79 null_pointer_error (const char *func_name)
80 {
81 scm_error (sym_null_pointer_error, func_name,
82 "null pointer dereference", SCM_EOL, SCM_EOL);
83 }
84
85 \f
86 static SCM cif_to_procedure (SCM cif, SCM func_ptr);
87
88
89 static SCM pointer_weak_refs = SCM_BOOL_F;
90 static scm_i_pthread_mutex_t weak_refs_lock = SCM_I_PTHREAD_MUTEX_INITIALIZER;
91
92
93 static void
94 register_weak_reference (SCM from, SCM to)
95 {
96 scm_i_pthread_mutex_lock (&weak_refs_lock);
97 scm_hashq_set_x (pointer_weak_refs, from, to);
98 scm_i_pthread_mutex_unlock (&weak_refs_lock);
99 }
100
101 static void
102 pointer_finalizer_trampoline (void *ptr, void *data)
103 {
104 scm_t_pointer_finalizer finalizer = data;
105 finalizer (SCM_POINTER_VALUE (PTR2SCM (ptr)));
106 }
107
108 SCM_DEFINE (scm_pointer_p, "pointer?", 1, 0, 0,
109 (SCM obj),
110 "Return @code{#t} if @var{obj} is a pointer object, "
111 "@code{#f} otherwise.\n")
112 #define FUNC_NAME s_scm_pointer_p
113 {
114 return scm_from_bool (SCM_POINTER_P (obj));
115 }
116 #undef FUNC_NAME
117
118 SCM_DEFINE (scm_make_pointer, "make-pointer", 1, 1, 0,
119 (SCM address, SCM finalizer),
120 "Return a foreign pointer object pointing to @var{address}. "
121 "If @var{finalizer} is passed, it should be a pointer to a "
122 "one-argument C function that will be called when the pointer "
123 "object becomes unreachable.")
124 #define FUNC_NAME s_scm_make_pointer
125 {
126 void *c_finalizer;
127 scm_t_uintptr c_address;
128
129 c_address = scm_to_uintptr (address);
130 if (SCM_UNBNDP (finalizer))
131 c_finalizer = NULL;
132 else
133 {
134 SCM_VALIDATE_POINTER (2, finalizer);
135 c_finalizer = SCM_POINTER_VALUE (finalizer);
136 }
137
138 return scm_from_pointer ((void *) c_address, c_finalizer);
139 }
140 #undef FUNC_NAME
141
142 void *
143 scm_to_pointer (SCM pointer)
144 #define FUNC_NAME "scm_to_pointer"
145 {
146 SCM_VALIDATE_POINTER (1, pointer);
147 return SCM_POINTER_VALUE (pointer);
148 }
149 #undef FUNC_NAME
150
151 SCM
152 scm_from_pointer (void *ptr, scm_t_pointer_finalizer finalizer)
153 {
154 SCM ret;
155
156 if (ptr == NULL && finalizer == NULL)
157 ret = null_pointer;
158 else
159 {
160 ret = scm_cell (scm_tc7_pointer, (scm_t_bits) ptr);
161
162 if (finalizer)
163 scm_i_set_finalizer (SCM2PTR (ret), pointer_finalizer_trampoline,
164 finalizer);
165 }
166
167 return ret;
168 }
169
170 SCM_DEFINE (scm_pointer_address, "pointer-address", 1, 0, 0,
171 (SCM pointer),
172 "Return the numerical value of @var{pointer}.")
173 #define FUNC_NAME s_scm_pointer_address
174 {
175 SCM_VALIDATE_POINTER (1, pointer);
176
177 return scm_from_uintptr ((scm_t_uintptr) SCM_POINTER_VALUE (pointer));
178 }
179 #undef FUNC_NAME
180
181 SCM_DEFINE (scm_pointer_to_scm, "pointer->scm", 1, 0, 0,
182 (SCM pointer),
183 "Unsafely cast @var{pointer} to a Scheme object.\n"
184 "Cross your fingers!")
185 #define FUNC_NAME s_scm_pointer_to_scm
186 {
187 SCM_VALIDATE_POINTER (1, pointer);
188
189 return SCM_PACK ((scm_t_bits) SCM_POINTER_VALUE (pointer));
190 }
191 #undef FUNC_NAME
192
193 SCM_DEFINE (scm_scm_to_pointer, "scm->pointer", 1, 0, 0,
194 (SCM scm),
195 "Return a foreign pointer object with the @code{object-address}\n"
196 "of @var{scm}.")
197 #define FUNC_NAME s_scm_scm_to_pointer
198 {
199 SCM ret;
200
201 ret = scm_from_pointer ((void*) SCM_UNPACK (scm), NULL);
202 if (SCM_NIMP (ret))
203 register_weak_reference (ret, scm);
204
205 return ret;
206 }
207 #undef FUNC_NAME
208
209 SCM_DEFINE (scm_pointer_to_bytevector, "pointer->bytevector", 2, 2, 0,
210 (SCM pointer, SCM len, SCM offset, SCM uvec_type),
211 "Return a bytevector aliasing the @var{len} bytes pointed\n"
212 "to by @var{pointer}.\n\n"
213 "The user may specify an alternate default interpretation for\n"
214 "the memory by passing the @var{uvec_type} argument, to indicate\n"
215 "that the memory is an array of elements of that type.\n"
216 "@var{uvec_type} should be something that\n"
217 "@code{uniform-vector-element-type} would return, like @code{f32}\n"
218 "or @code{s16}.\n\n"
219 "When @var{offset} is passed, it specifies the offset in bytes\n"
220 "relative to @var{pointer} of the memory region aliased by the\n"
221 "returned bytevector.")
222 #define FUNC_NAME s_scm_pointer_to_bytevector
223 {
224 SCM ret;
225 scm_t_int8 *ptr;
226 size_t boffset, blen;
227 scm_t_array_element_type btype;
228
229 SCM_VALIDATE_POINTER (1, pointer);
230 ptr = SCM_POINTER_VALUE (pointer);
231
232 if (SCM_UNLIKELY (ptr == NULL))
233 null_pointer_error (FUNC_NAME);
234
235 if (SCM_UNBNDP (uvec_type))
236 btype = SCM_ARRAY_ELEMENT_TYPE_VU8;
237 else
238 {
239 int i;
240 for (i = 0; i <= SCM_ARRAY_ELEMENT_TYPE_LAST; i++)
241 if (scm_is_eq (uvec_type, scm_i_array_element_types[i]))
242 break;
243 switch (i)
244 {
245 case SCM_ARRAY_ELEMENT_TYPE_VU8:
246 case SCM_ARRAY_ELEMENT_TYPE_U8:
247 case SCM_ARRAY_ELEMENT_TYPE_S8:
248 case SCM_ARRAY_ELEMENT_TYPE_U16:
249 case SCM_ARRAY_ELEMENT_TYPE_S16:
250 case SCM_ARRAY_ELEMENT_TYPE_U32:
251 case SCM_ARRAY_ELEMENT_TYPE_S32:
252 case SCM_ARRAY_ELEMENT_TYPE_U64:
253 case SCM_ARRAY_ELEMENT_TYPE_S64:
254 case SCM_ARRAY_ELEMENT_TYPE_F32:
255 case SCM_ARRAY_ELEMENT_TYPE_F64:
256 case SCM_ARRAY_ELEMENT_TYPE_C32:
257 case SCM_ARRAY_ELEMENT_TYPE_C64:
258 btype = i;
259 break;
260 default:
261 scm_wrong_type_arg_msg (FUNC_NAME, SCM_ARG1, uvec_type,
262 "uniform vector type");
263 }
264 }
265
266 if (SCM_UNBNDP (offset))
267 boffset = 0;
268 else
269 boffset = scm_to_size_t (offset);
270
271 blen = scm_to_size_t (len);
272
273 ret = scm_c_take_typed_bytevector ((signed char *) ptr + boffset,
274 blen, btype);
275 register_weak_reference (ret, pointer);
276 return ret;
277 }
278 #undef FUNC_NAME
279
280 SCM_DEFINE (scm_bytevector_to_pointer, "bytevector->pointer", 1, 1, 0,
281 (SCM bv, SCM offset),
282 "Return a pointer pointer aliasing the memory pointed to by\n"
283 "@var{bv} or @var{offset} bytes after @var{bv} when @var{offset}\n"
284 "is passed.")
285 #define FUNC_NAME s_scm_bytevector_to_pointer
286 {
287 SCM ret;
288 signed char *ptr;
289 size_t boffset;
290
291 SCM_VALIDATE_BYTEVECTOR (1, bv);
292 ptr = SCM_BYTEVECTOR_CONTENTS (bv);
293
294 if (SCM_UNBNDP (offset))
295 boffset = 0;
296 else
297 boffset = scm_to_unsigned_integer (offset, 0,
298 SCM_BYTEVECTOR_LENGTH (bv) - 1);
299
300 ret = scm_from_pointer (ptr + boffset, NULL);
301 register_weak_reference (ret, bv);
302 return ret;
303 }
304 #undef FUNC_NAME
305
306 SCM_DEFINE (scm_set_pointer_finalizer_x, "set-pointer-finalizer!", 2, 0, 0,
307 (SCM pointer, SCM finalizer),
308 "Arrange for the C procedure wrapped by @var{finalizer} to be\n"
309 "called on the pointer wrapped by @var{pointer} when @var{pointer}\n"
310 "becomes unreachable. Note: the C procedure should not call into\n"
311 "Scheme. If you need a Scheme finalizer, use guardians.")
312 #define FUNC_NAME s_scm_set_pointer_finalizer_x
313 {
314 SCM_VALIDATE_POINTER (1, pointer);
315 SCM_VALIDATE_POINTER (2, finalizer);
316
317 scm_i_add_finalizer (SCM2PTR (pointer), pointer_finalizer_trampoline,
318 SCM_POINTER_VALUE (finalizer));
319
320 return SCM_UNSPECIFIED;
321 }
322 #undef FUNC_NAME
323
324 void
325 scm_i_pointer_print (SCM pointer, SCM port, scm_print_state *pstate)
326 {
327 scm_puts ("#<pointer 0x", port);
328 scm_uintprint (scm_to_uintptr (scm_pointer_address (pointer)), 16, port);
329 scm_putc ('>', port);
330 }
331
332 \f
333 /* Non-primitive helpers functions. These procedures could be
334 implemented in terms of the primitives above but would be inefficient
335 (heap allocation overhead, Scheme/C round trips, etc.) */
336
337 SCM_DEFINE (scm_dereference_pointer, "dereference-pointer", 1, 0, 0,
338 (SCM pointer),
339 "Assuming @var{pointer} points to a memory region that\n"
340 "holds a pointer, return this pointer.")
341 #define FUNC_NAME s_scm_dereference_pointer
342 {
343 SCM_VALIDATE_POINTER (1, pointer);
344
345 return scm_from_pointer (* (void **) SCM_POINTER_VALUE (pointer), NULL);
346 }
347 #undef FUNC_NAME
348
349 SCM_DEFINE (scm_string_to_pointer, "string->pointer", 1, 1, 0,
350 (SCM string, SCM encoding),
351 "Return a foreign pointer to a nul-terminated copy of\n"
352 "@var{string} in the given @var{encoding}, defaulting to\n"
353 "the current locale encoding. The C string is freed when\n"
354 "the returned foreign pointer becomes unreachable.\n\n"
355 "This is the Scheme equivalent of @code{scm_to_stringn}.")
356 #define FUNC_NAME s_scm_string_to_pointer
357 {
358 SCM_VALIDATE_STRING (1, string);
359
360 /* XXX: Finalizers slow down libgc; they could be avoided if
361 `scm_to_string' & co. were able to use libgc-allocated memory. */
362
363 if (SCM_UNBNDP (encoding))
364 return scm_from_pointer (scm_to_locale_string (string), free);
365 else
366 {
367 char *enc;
368 SCM ret;
369
370 SCM_VALIDATE_STRING (2, encoding);
371
372 enc = scm_to_locale_string (encoding);
373 scm_dynwind_begin (0);
374 scm_dynwind_free (enc);
375
376 ret = scm_from_pointer
377 (scm_to_stringn (string, NULL, enc,
378 scm_i_default_port_conversion_handler ()),
379 free);
380
381 scm_dynwind_end ();
382
383 return ret;
384 }
385 }
386 #undef FUNC_NAME
387
388 SCM_DEFINE (scm_pointer_to_string, "pointer->string", 1, 2, 0,
389 (SCM pointer, SCM length, SCM encoding),
390 "Return the string representing the C string pointed to by\n"
391 "@var{pointer}. If @var{length} is omitted or @code{-1}, the\n"
392 "string is assumed to be nul-terminated. Otherwise\n"
393 "@var{length} is the number of bytes in memory pointed to by\n"
394 "@var{pointer}. The C string is assumed to be in the given\n"
395 "@var{encoding}, defaulting to the current locale encoding.\n\n"
396 "This is the Scheme equivalent of @code{scm_from_stringn}.")
397 #define FUNC_NAME s_scm_pointer_to_string
398 {
399 size_t len;
400
401 SCM_VALIDATE_POINTER (1, pointer);
402
403 if (SCM_UNBNDP (length)
404 || scm_is_true (scm_eqv_p (length, scm_from_int (-1))))
405 len = (size_t)-1;
406 else
407 len = scm_to_size_t (length);
408
409 if (SCM_UNBNDP (encoding))
410 return scm_from_locale_stringn (SCM_POINTER_VALUE (pointer), len);
411 else
412 {
413 char *enc;
414 SCM ret;
415
416 SCM_VALIDATE_STRING (3, encoding);
417
418 enc = scm_to_locale_string (encoding);
419 scm_dynwind_begin (0);
420 scm_dynwind_free (enc);
421
422 ret = scm_from_stringn (SCM_POINTER_VALUE (pointer), len, enc,
423 scm_i_default_port_conversion_handler ());
424
425 scm_dynwind_end ();
426
427 return ret;
428 }
429 }
430 #undef FUNC_NAME
431
432 \f
433
434 SCM_DEFINE (scm_alignof, "alignof", 1, 0, 0, (SCM type),
435 "Return the alignment of @var{type}, in bytes.\n\n"
436 "@var{type} should be a valid C type, like @code{int}.\n"
437 "Alternately @var{type} may be the symbol @code{*}, in which\n"
438 "case the alignment of a pointer is returned. @var{type} may\n"
439 "also be a list of types, in which case the alignment of a\n"
440 "@code{struct} with ABI-conventional packing is returned.")
441 #define FUNC_NAME s_scm_alignof
442 {
443 if (SCM_I_INUMP (type))
444 {
445 switch (SCM_I_INUM (type))
446 {
447 case SCM_FOREIGN_TYPE_FLOAT:
448 return scm_from_size_t (alignof_type (float));
449 case SCM_FOREIGN_TYPE_DOUBLE:
450 return scm_from_size_t (alignof_type (double));
451 case SCM_FOREIGN_TYPE_UINT8:
452 return scm_from_size_t (alignof_type (scm_t_uint8));
453 case SCM_FOREIGN_TYPE_INT8:
454 return scm_from_size_t (alignof_type (scm_t_int8));
455 case SCM_FOREIGN_TYPE_UINT16:
456 return scm_from_size_t (alignof_type (scm_t_uint16));
457 case SCM_FOREIGN_TYPE_INT16:
458 return scm_from_size_t (alignof_type (scm_t_int16));
459 case SCM_FOREIGN_TYPE_UINT32:
460 return scm_from_size_t (alignof_type (scm_t_uint32));
461 case SCM_FOREIGN_TYPE_INT32:
462 return scm_from_size_t (alignof_type (scm_t_int32));
463 case SCM_FOREIGN_TYPE_UINT64:
464 return scm_from_size_t (alignof_type (scm_t_uint64));
465 case SCM_FOREIGN_TYPE_INT64:
466 return scm_from_size_t (alignof_type (scm_t_int64));
467 default:
468 scm_wrong_type_arg (FUNC_NAME, 1, type);
469 }
470 }
471 else if (scm_is_eq (type, sym_asterisk))
472 /* a pointer */
473 return scm_from_size_t (alignof_type (void*));
474 else if (scm_is_pair (type))
475 {
476 /* TYPE is a structure. Section 3-3 of the i386, x86_64, PowerPC,
477 and SPARC P.S. of the System V ABI all say: "Aggregates
478 (structures and arrays) and unions assume the alignment of
479 their most strictly aligned component." */
480 size_t max;
481
482 for (max = 0; scm_is_pair (type); type = SCM_CDR (type))
483 {
484 size_t align;
485
486 align = scm_to_size_t (scm_alignof (SCM_CAR (type)));
487 if (align > max)
488 max = align;
489 }
490
491 return scm_from_size_t (max);
492 }
493 else
494 scm_wrong_type_arg (FUNC_NAME, 1, type);
495 }
496 #undef FUNC_NAME
497
498 SCM_DEFINE (scm_sizeof, "sizeof", 1, 0, 0, (SCM type),
499 "Return the size of @var{type}, in bytes.\n\n"
500 "@var{type} should be a valid C type, like @code{int}.\n"
501 "Alternately @var{type} may be the symbol @code{*}, in which\n"
502 "case the size of a pointer is returned. @var{type} may also\n"
503 "be a list of types, in which case the size of a @code{struct}\n"
504 "with ABI-conventional packing is returned.")
505 #define FUNC_NAME s_scm_sizeof
506 {
507 if (SCM_I_INUMP (type))
508 {
509 switch (SCM_I_INUM (type))
510 {
511 case SCM_FOREIGN_TYPE_FLOAT:
512 return scm_from_size_t (sizeof (float));
513 case SCM_FOREIGN_TYPE_DOUBLE:
514 return scm_from_size_t (sizeof (double));
515 case SCM_FOREIGN_TYPE_UINT8:
516 return scm_from_size_t (sizeof (scm_t_uint8));
517 case SCM_FOREIGN_TYPE_INT8:
518 return scm_from_size_t (sizeof (scm_t_int8));
519 case SCM_FOREIGN_TYPE_UINT16:
520 return scm_from_size_t (sizeof (scm_t_uint16));
521 case SCM_FOREIGN_TYPE_INT16:
522 return scm_from_size_t (sizeof (scm_t_int16));
523 case SCM_FOREIGN_TYPE_UINT32:
524 return scm_from_size_t (sizeof (scm_t_uint32));
525 case SCM_FOREIGN_TYPE_INT32:
526 return scm_from_size_t (sizeof (scm_t_int32));
527 case SCM_FOREIGN_TYPE_UINT64:
528 return scm_from_size_t (sizeof (scm_t_uint64));
529 case SCM_FOREIGN_TYPE_INT64:
530 return scm_from_size_t (sizeof (scm_t_int64));
531 default:
532 scm_wrong_type_arg (FUNC_NAME, 1, type);
533 }
534 }
535 else if (scm_is_eq (type, sym_asterisk))
536 /* a pointer */
537 return scm_from_size_t (sizeof (void*));
538 else if (scm_is_pair (type))
539 {
540 /* a struct */
541 size_t off = 0;
542 while (scm_is_pair (type))
543 {
544 off = ROUND_UP (off, scm_to_size_t (scm_alignof (scm_car (type))));
545 off += scm_to_size_t (scm_sizeof (scm_car (type)));
546 type = scm_cdr (type);
547 }
548 return scm_from_size_t (off);
549 }
550 else
551 scm_wrong_type_arg (FUNC_NAME, 1, type);
552 }
553 #undef FUNC_NAME
554
555
556 /* return 1 on success, 0 on failure */
557 static int
558 parse_ffi_type (SCM type, int return_p, long *n_structs, long *n_struct_elts)
559 {
560 if (SCM_I_INUMP (type))
561 {
562 if ((SCM_I_INUM (type) < 0 )
563 || (SCM_I_INUM (type) > SCM_FOREIGN_TYPE_LAST))
564 return 0;
565 else if (SCM_I_INUM (type) == SCM_FOREIGN_TYPE_VOID && !return_p)
566 return 0;
567 else
568 return 1;
569 }
570 else if (scm_is_eq (type, sym_asterisk))
571 /* a pointer */
572 return 1;
573 else
574 {
575 long len;
576
577 len = scm_ilength (type);
578 if (len < 1)
579 return 0;
580 while (len--)
581 {
582 if (!parse_ffi_type (scm_car (type), 0, n_structs, n_struct_elts))
583 return 0;
584 (*n_struct_elts)++;
585 type = scm_cdr (type);
586 }
587 (*n_structs)++;
588 return 1;
589 }
590 }
591
592 static void
593 fill_ffi_type (SCM type, ffi_type *ftype, ffi_type ***type_ptrs,
594 ffi_type **types)
595 {
596 if (SCM_I_INUMP (type))
597 {
598 switch (SCM_I_INUM (type))
599 {
600 case SCM_FOREIGN_TYPE_FLOAT:
601 *ftype = ffi_type_float;
602 return;
603 case SCM_FOREIGN_TYPE_DOUBLE:
604 *ftype = ffi_type_double;
605 return;
606 case SCM_FOREIGN_TYPE_UINT8:
607 *ftype = ffi_type_uint8;
608 return;
609 case SCM_FOREIGN_TYPE_INT8:
610 *ftype = ffi_type_sint8;
611 return;
612 case SCM_FOREIGN_TYPE_UINT16:
613 *ftype = ffi_type_uint16;
614 return;
615 case SCM_FOREIGN_TYPE_INT16:
616 *ftype = ffi_type_sint16;
617 return;
618 case SCM_FOREIGN_TYPE_UINT32:
619 *ftype = ffi_type_uint32;
620 return;
621 case SCM_FOREIGN_TYPE_INT32:
622 *ftype = ffi_type_sint32;
623 return;
624 case SCM_FOREIGN_TYPE_UINT64:
625 *ftype = ffi_type_uint64;
626 return;
627 case SCM_FOREIGN_TYPE_INT64:
628 *ftype = ffi_type_sint64;
629 return;
630 case SCM_FOREIGN_TYPE_VOID:
631 *ftype = ffi_type_void;
632 return;
633 default:
634 scm_wrong_type_arg_msg ("pointer->procedure", 0, type,
635 "foreign type");
636 }
637 }
638 else if (scm_is_eq (type, sym_asterisk))
639 /* a pointer */
640 {
641 *ftype = ffi_type_pointer;
642 return;
643 }
644 else
645 {
646 long i, len;
647
648 len = scm_ilength (type);
649
650 ftype->size = 0;
651 ftype->alignment = 0;
652 ftype->type = FFI_TYPE_STRUCT;
653 ftype->elements = *type_ptrs;
654 *type_ptrs += len + 1;
655
656 for (i = 0; i < len; i++)
657 {
658 ftype->elements[i] = *types;
659 *types += 1;
660 fill_ffi_type (scm_car (type), ftype->elements[i],
661 type_ptrs, types);
662 type = scm_cdr (type);
663 }
664 ftype->elements[i] = NULL;
665 }
666 }
667
668 /* Return a "cif" (call interface) for the given RETURN_TYPE and
669 ARG_TYPES. */
670 static ffi_cif *
671 make_cif (SCM return_type, SCM arg_types, const char *caller)
672 #define FUNC_NAME caller
673 {
674 SCM walk;
675 long i, nargs, n_structs, n_struct_elts;
676 size_t cif_len;
677 char *mem;
678 ffi_cif *cif;
679 ffi_type **type_ptrs;
680 ffi_type *types;
681
682 nargs = scm_ilength (arg_types);
683 SCM_ASSERT (nargs >= 0, arg_types, 3, FUNC_NAME);
684 /* fixme: assert nargs < 1<<32 */
685 n_structs = n_struct_elts = 0;
686
687 /* For want of talloc, we're going to have to do this in two passes: first we
688 figure out how much memory is needed for all types, then we allocate the
689 cif and the types all in one block. */
690 if (!parse_ffi_type (return_type, 1, &n_structs, &n_struct_elts))
691 scm_wrong_type_arg (FUNC_NAME, 1, return_type);
692 for (walk = arg_types; scm_is_pair (walk); walk = scm_cdr (walk))
693 if (!parse_ffi_type (scm_car (walk), 0, &n_structs, &n_struct_elts))
694 scm_wrong_type_arg (FUNC_NAME, 3, scm_car (walk));
695
696 /* the memory: with space for the cif itself */
697 cif_len = sizeof (ffi_cif);
698
699 /* then ffi_type pointers: one for each arg, one for each struct
700 element, and one for each struct (for null-termination) */
701 cif_len = (ROUND_UP (cif_len, alignof_type (void *))
702 + (nargs + n_structs + n_struct_elts)*sizeof(void*));
703
704 /* then the ffi_type structs themselves, one per arg and struct element, and
705 one for the return val */
706 cif_len = (ROUND_UP (cif_len, alignof_type (ffi_type))
707 + (nargs + n_struct_elts + 1)*sizeof(ffi_type));
708
709 mem = scm_gc_malloc_pointerless (cif_len, "foreign");
710 /* ensure all the memory is initialized, even the holes */
711 memset (mem, 0, cif_len);
712 cif = (ffi_cif *) mem;
713
714 /* reuse cif_len to walk through the mem */
715 cif_len = ROUND_UP (sizeof (ffi_cif), alignof_type (void *));
716 type_ptrs = (ffi_type**)(mem + cif_len);
717 cif_len = ROUND_UP (cif_len
718 + (nargs + n_structs + n_struct_elts)*sizeof(void*),
719 alignof_type (ffi_type));
720 types = (ffi_type*)(mem + cif_len);
721
722 /* whew. now knit the pointers together. */
723 cif->rtype = types++;
724 fill_ffi_type (return_type, cif->rtype, &type_ptrs, &types);
725 cif->arg_types = type_ptrs;
726 type_ptrs += nargs;
727 for (walk = arg_types, i = 0; scm_is_pair (walk); walk = scm_cdr (walk), i++)
728 {
729 cif->arg_types[i] = types++;
730 fill_ffi_type (scm_car (walk), cif->arg_types[i], &type_ptrs, &types);
731 }
732
733 /* round out the cif, and we're done. */
734 cif->abi = FFI_DEFAULT_ABI;
735 cif->nargs = nargs;
736 cif->bytes = 0;
737 cif->flags = 0;
738
739 if (FFI_OK != ffi_prep_cif (cif, FFI_DEFAULT_ABI, cif->nargs, cif->rtype,
740 cif->arg_types))
741 SCM_MISC_ERROR ("ffi_prep_cif failed", SCM_EOL);
742
743 return cif;
744 }
745 #undef FUNC_NAME
746
747 SCM_DEFINE (scm_pointer_to_procedure, "pointer->procedure", 3, 0, 0,
748 (SCM return_type, SCM func_ptr, SCM arg_types),
749 "Make a foreign function.\n\n"
750 "Given the foreign void pointer @var{func_ptr}, its argument and\n"
751 "return types @var{arg_types} and @var{return_type}, return a\n"
752 "procedure that will pass arguments to the foreign function\n"
753 "and return appropriate values.\n\n"
754 "@var{arg_types} should be a list of foreign types.\n"
755 "@code{return_type} should be a foreign type.")
756 #define FUNC_NAME s_scm_pointer_to_procedure
757 {
758 ffi_cif *cif;
759
760 SCM_VALIDATE_POINTER (2, func_ptr);
761
762 cif = make_cif (return_type, arg_types, FUNC_NAME);
763
764 return cif_to_procedure (scm_from_pointer (cif, NULL), func_ptr);
765 }
766 #undef FUNC_NAME
767
768 \f
769
770 /* Pre-generate trampolines for less than 10 arguments. */
771
772 #ifdef WORDS_BIGENDIAN
773 #define OBJCODE_HEADER 0, 0, 0, 8, 0, 0, 0, 40
774 #define META_HEADER 0, 0, 0, 32, 0, 0, 0, 0
775 #else
776 #define OBJCODE_HEADER 8, 0, 0, 0, 40, 0, 0, 0
777 #define META_HEADER 32, 0, 0, 0, 0, 0, 0, 0
778 #endif
779
780 #define CODE(nreq) \
781 OBJCODE_HEADER, \
782 /* 0 */ scm_op_assert_nargs_ee, 0, nreq, /* assert number of args */ \
783 /* 3 */ scm_op_object_ref, 0, /* push the pair with the cif and the function pointer */ \
784 /* 5 */ scm_op_foreign_call, nreq, /* and call (will return value as well) */ \
785 /* 7 */ scm_op_nop, \
786 /* 8 */ META (3, 7, nreq)
787
788 #define META(start, end, nreq) \
789 META_HEADER, \
790 /* 0 */ scm_op_make_eol, /* bindings */ \
791 /* 1 */ scm_op_make_eol, /* sources */ \
792 /* 2 */ scm_op_make_int8, start, scm_op_make_int8, end, /* arity: from ip N to ip N */ \
793 /* 6 */ scm_op_make_int8, nreq, /* the arity is N required args */ \
794 /* 8 */ scm_op_list, 0, 3, /* make a list of those 3 vals */ \
795 /* 11 */ scm_op_list, 0, 1, /* and the arities will be a list of that one list */ \
796 /* 14 */ scm_op_load_symbol, 0, 0, 4, 'n', 'a', 'm', 'e', /* `name' */ \
797 /* 22 */ scm_op_object_ref, 1, /* the name from the object table */ \
798 /* 24 */ scm_op_cons, /* make a pair for the properties */ \
799 /* 25 */ scm_op_list, 0, 4, /* pack bindings, sources, and arities into list */ \
800 /* 28 */ scm_op_return, /* and return */ \
801 /* 29 */ scm_op_nop, scm_op_nop, scm_op_nop \
802 /* 32 */
803
804 static const struct
805 {
806 scm_t_uint64 dummy; /* ensure 8-byte alignment; perhaps there's a better way */
807 const scm_t_uint8 bytes[10 * (sizeof (struct scm_objcode) + 8
808 + sizeof (struct scm_objcode) + 32)];
809 } raw_bytecode = {
810 0,
811 {
812 CODE (0), CODE (1), CODE (2), CODE (3), CODE (4),
813 CODE (5), CODE (6), CODE (7), CODE (8), CODE (9)
814 }
815 };
816
817 #undef CODE
818 #undef META
819 #undef OBJCODE_HEADER
820 #undef META_HEADER
821
822 /*
823 (defun generate-objcode-cells (n)
824 "Generate objcode cells for up to N arguments"
825 (interactive "p")
826 (let ((i 0))
827 (while (< i n)
828 (insert
829 (format " { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + %d) },\n"
830 (* (+ 4 4 8 4 4 32) i)))
831 (insert " { SCM_BOOL_F, SCM_PACK (0) },\n")
832 (setq i (1+ i)))))
833 */
834 #define STATIC_OBJCODE_TAG \
835 SCM_PACK (SCM_MAKE_OBJCODE_TAG (SCM_OBJCODE_TYPE_STATIC, 0))
836
837 static const struct
838 {
839 scm_t_uint64 dummy; /* alignment */
840 scm_t_cell cells[10 * 2]; /* 10 double cells */
841 } objcode_cells = {
842 0,
843 /* C-u 1 0 M-x generate-objcode-cells RET */
844 {
845 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 0) },
846 { SCM_BOOL_F, SCM_PACK (0) },
847 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 56) },
848 { SCM_BOOL_F, SCM_PACK (0) },
849 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 112) },
850 { SCM_BOOL_F, SCM_PACK (0) },
851 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 168) },
852 { SCM_BOOL_F, SCM_PACK (0) },
853 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 224) },
854 { SCM_BOOL_F, SCM_PACK (0) },
855 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 280) },
856 { SCM_BOOL_F, SCM_PACK (0) },
857 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 336) },
858 { SCM_BOOL_F, SCM_PACK (0) },
859 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 392) },
860 { SCM_BOOL_F, SCM_PACK (0) },
861 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 448) },
862 { SCM_BOOL_F, SCM_PACK (0) },
863 { STATIC_OBJCODE_TAG, SCM_PACK (raw_bytecode.bytes + 504) },
864 { SCM_BOOL_F, SCM_PACK (0) }
865 }
866 };
867
868 static const SCM objcode_trampolines[10] = {
869 SCM_PACK (objcode_cells.cells+0),
870 SCM_PACK (objcode_cells.cells+2),
871 SCM_PACK (objcode_cells.cells+4),
872 SCM_PACK (objcode_cells.cells+6),
873 SCM_PACK (objcode_cells.cells+8),
874 SCM_PACK (objcode_cells.cells+10),
875 SCM_PACK (objcode_cells.cells+12),
876 SCM_PACK (objcode_cells.cells+14),
877 SCM_PACK (objcode_cells.cells+16),
878 SCM_PACK (objcode_cells.cells+18),
879 };
880
881 static SCM
882 cif_to_procedure (SCM cif, SCM func_ptr)
883 {
884 ffi_cif *c_cif;
885 unsigned int nargs;
886 SCM objcode, table, ret;
887
888 c_cif = (ffi_cif *) SCM_POINTER_VALUE (cif);
889 nargs = c_cif->nargs;
890
891 if (nargs < 10)
892 objcode = objcode_trampolines[nargs];
893 else
894 scm_misc_error ("make-foreign-function", "args >= 10 currently unimplemented",
895 SCM_EOL);
896
897 table = scm_c_make_vector (2, SCM_UNDEFINED);
898 SCM_SIMPLE_VECTOR_SET (table, 0, scm_cons (cif, func_ptr));
899 SCM_SIMPLE_VECTOR_SET (table, 1, SCM_BOOL_F); /* name */
900 ret = scm_make_program (objcode, table, SCM_BOOL_F);
901
902 return ret;
903 }
904
905 /* Set *LOC to the foreign representation of X with TYPE. */
906 static void
907 unpack (const ffi_type *type, void *loc, SCM x, int return_value_p)
908 #define FUNC_NAME "scm_i_foreign_call"
909 {
910 switch (type->type)
911 {
912 case FFI_TYPE_FLOAT:
913 *(float *) loc = scm_to_double (x);
914 break;
915 case FFI_TYPE_DOUBLE:
916 *(double *) loc = scm_to_double (x);
917 break;
918
919 /* For integer return values smaller than `int', libffi expects the
920 result in an `ffi_arg'-long buffer. */
921
922 case FFI_TYPE_UINT8:
923 if (return_value_p)
924 *(ffi_arg *) loc = scm_to_uint8 (x);
925 else
926 *(scm_t_uint8 *) loc = scm_to_uint8 (x);
927 break;
928 case FFI_TYPE_SINT8:
929 if (return_value_p)
930 *(ffi_arg *) loc = scm_to_int8 (x);
931 else
932 *(scm_t_int8 *) loc = scm_to_int8 (x);
933 break;
934 case FFI_TYPE_UINT16:
935 if (return_value_p)
936 *(ffi_arg *) loc = scm_to_uint16 (x);
937 else
938 *(scm_t_uint16 *) loc = scm_to_uint16 (x);
939 break;
940 case FFI_TYPE_SINT16:
941 if (return_value_p)
942 *(ffi_arg *) loc = scm_to_int16 (x);
943 else
944 *(scm_t_int16 *) loc = scm_to_int16 (x);
945 break;
946 case FFI_TYPE_UINT32:
947 if (return_value_p)
948 *(ffi_arg *) loc = scm_to_uint32 (x);
949 else
950 *(scm_t_uint32 *) loc = scm_to_uint32 (x);
951 break;
952 case FFI_TYPE_SINT32:
953 if (return_value_p)
954 *(ffi_arg *) loc = scm_to_int32 (x);
955 else
956 *(scm_t_int32 *) loc = scm_to_int32 (x);
957 break;
958 case FFI_TYPE_UINT64:
959 *(scm_t_uint64 *) loc = scm_to_uint64 (x);
960 break;
961 case FFI_TYPE_SINT64:
962 *(scm_t_int64 *) loc = scm_to_int64 (x);
963 break;
964 case FFI_TYPE_STRUCT:
965 SCM_VALIDATE_POINTER (1, x);
966 memcpy (loc, SCM_POINTER_VALUE (x), type->size);
967 break;
968 case FFI_TYPE_POINTER:
969 SCM_VALIDATE_POINTER (1, x);
970 *(void **) loc = SCM_POINTER_VALUE (x);
971 break;
972 case FFI_TYPE_VOID:
973 /* Do nothing. */
974 break;
975 default:
976 abort ();
977 }
978 }
979 #undef FUNC_NAME
980
981 /* Return a Scheme representation of the foreign value at LOC of type
982 TYPE. When RETURN_VALUE_P is true, LOC is assumed to point to a
983 return value buffer; otherwise LOC is assumed to point to an
984 argument buffer. */
985 static SCM
986 pack (const ffi_type * type, const void *loc, int return_value_p)
987 {
988 switch (type->type)
989 {
990 case FFI_TYPE_VOID:
991 return SCM_UNSPECIFIED;
992 case FFI_TYPE_FLOAT:
993 return scm_from_double (*(float *) loc);
994 case FFI_TYPE_DOUBLE:
995 return scm_from_double (*(double *) loc);
996
997 /* For integer return values smaller than `int', libffi stores the
998 result in an `ffi_arg'-long buffer, of which only the
999 significant bits must be kept---hence the pair of casts below.
1000 See <http://thread.gmane.org/gmane.comp.lib.ffi.general/406>
1001 for details. */
1002
1003 case FFI_TYPE_UINT8:
1004 if (return_value_p)
1005 return scm_from_uint8 ((scm_t_uint8) *(ffi_arg *) loc);
1006 else
1007 return scm_from_uint8 (* (scm_t_uint8 *) loc);
1008 case FFI_TYPE_SINT8:
1009 if (return_value_p)
1010 return scm_from_int8 ((scm_t_int8) *(ffi_arg *) loc);
1011 else
1012 return scm_from_int8 (* (scm_t_int8 *) loc);
1013 case FFI_TYPE_UINT16:
1014 if (return_value_p)
1015 return scm_from_uint16 ((scm_t_uint16) *(ffi_arg *) loc);
1016 else
1017 return scm_from_uint16 (* (scm_t_uint16 *) loc);
1018 case FFI_TYPE_SINT16:
1019 if (return_value_p)
1020 return scm_from_int16 ((scm_t_int16) *(ffi_arg *) loc);
1021 else
1022 return scm_from_int16 (* (scm_t_int16 *) loc);
1023 case FFI_TYPE_UINT32:
1024 if (return_value_p)
1025 return scm_from_uint32 ((scm_t_uint32) *(ffi_arg *) loc);
1026 else
1027 return scm_from_uint32 (* (scm_t_uint32 *) loc);
1028 case FFI_TYPE_SINT32:
1029 if (return_value_p)
1030 return scm_from_int32 ((scm_t_int32) *(ffi_arg *) loc);
1031 else
1032 return scm_from_int32 (* (scm_t_int32 *) loc);
1033 case FFI_TYPE_UINT64:
1034 return scm_from_uint64 (*(scm_t_uint64 *) loc);
1035 case FFI_TYPE_SINT64:
1036 return scm_from_int64 (*(scm_t_int64 *) loc);
1037
1038 case FFI_TYPE_STRUCT:
1039 {
1040 void *mem = scm_gc_malloc_pointerless (type->size, "foreign");
1041 memcpy (mem, loc, type->size);
1042 return scm_from_pointer (mem, NULL);
1043 }
1044 case FFI_TYPE_POINTER:
1045 return scm_from_pointer (*(void **) loc, NULL);
1046 default:
1047 abort ();
1048 }
1049 }
1050
1051
1052 SCM
1053 scm_i_foreign_call (SCM foreign, const SCM *argv)
1054 {
1055 /* FOREIGN is the pair that cif_to_procedure set as the 0th element of the
1056 objtable. */
1057 ffi_cif *cif;
1058 void (*func) (void);
1059 scm_t_uint8 *data;
1060 void *rvalue;
1061 void **args;
1062 unsigned i;
1063 size_t arg_size;
1064 scm_t_ptrdiff off;
1065
1066 cif = SCM_POINTER_VALUE (SCM_CAR (foreign));
1067 func = SCM_POINTER_VALUE (SCM_CDR (foreign));
1068
1069 /* Argument pointers. */
1070 args = alloca (sizeof (void *) * cif->nargs);
1071
1072 /* Compute the worst-case amount of memory needed to store all the argument
1073 values. Note: as of libffi 3.0.9 `cif->bytes' is undocumented and is zero,
1074 so it can't be used for that purpose. */
1075 for (i = 0, arg_size = 0; i < cif->nargs; i++)
1076 arg_size += cif->arg_types[i]->size + cif->arg_types[i]->alignment - 1;
1077
1078 /* Space for argument values, followed by return value. */
1079 data = alloca (arg_size + cif->rtype->size
1080 + max (sizeof (void *), cif->rtype->alignment));
1081
1082 /* Unpack ARGV to native values, setting ARGV pointers. */
1083 for (i = 0, off = 0;
1084 i < cif->nargs;
1085 off = (scm_t_uint8 *) args[i] - data + cif->arg_types[i]->size,
1086 i++)
1087 {
1088 /* Suitably align the storage area for argument I. */
1089 args[i] = (void *) ROUND_UP ((scm_t_uintptr) data + off,
1090 cif->arg_types[i]->alignment);
1091 assert ((scm_t_uintptr) args[i] % cif->arg_types[i]->alignment == 0);
1092 unpack (cif->arg_types[i], args[i], argv[i], 0);
1093 }
1094
1095 /* Prepare space for the return value. On some platforms, such as
1096 `armv5tel-*-linux-gnueabi', the return value has to be at least
1097 word-aligned, even if its type doesn't have any alignment requirement as is
1098 the case with `char'. */
1099 rvalue = (void *) ROUND_UP ((scm_t_uintptr) data + off,
1100 max (sizeof (void *), cif->rtype->alignment));
1101
1102 /* off we go! */
1103 ffi_call (cif, func, rvalue, args);
1104
1105 return pack (cif->rtype, rvalue, 1);
1106 }
1107
1108 \f
1109 /* Function pointers aka. "callbacks" or "closures". */
1110
1111 #ifdef FFI_CLOSURES
1112
1113 /* Trampoline to invoke a libffi closure that wraps a Scheme
1114 procedure. */
1115 static void
1116 invoke_closure (ffi_cif *cif, void *ret, void **args, void *data)
1117 {
1118 size_t i;
1119 SCM proc, *argv, result;
1120
1121 proc = PTR2SCM (data);
1122
1123 argv = alloca (cif->nargs * sizeof (*argv));
1124
1125 /* Pack ARGS to SCM values, setting ARGV pointers. */
1126 for (i = 0; i < cif->nargs; i++)
1127 argv[i] = pack (cif->arg_types[i], args[i], 0);
1128
1129 result = scm_call_n (proc, argv, cif->nargs);
1130
1131 unpack (cif->rtype, ret, result, 1);
1132 }
1133
1134 SCM_DEFINE (scm_procedure_to_pointer, "procedure->pointer", 3, 0, 0,
1135 (SCM return_type, SCM proc, SCM arg_types),
1136 "Return a pointer to a C function of type @var{return_type}\n"
1137 "taking arguments of types @var{arg_types} (a list) and\n"
1138 "behaving as a proxy to procedure @var{proc}. Thus\n"
1139 "@var{proc}'s arity, supported argument types, and return\n"
1140 "type should match @var{return_type} and @var{arg_types}.\n")
1141 #define FUNC_NAME s_scm_procedure_to_pointer
1142 {
1143 SCM cif_pointer, pointer;
1144 ffi_cif *cif;
1145 ffi_status err;
1146 void *closure, *executable;
1147
1148 cif = make_cif (return_type, arg_types, FUNC_NAME);
1149
1150 closure = ffi_closure_alloc (sizeof (ffi_closure), &executable);
1151 err = ffi_prep_closure_loc ((ffi_closure *) closure, cif,
1152 invoke_closure, SCM2PTR (proc),
1153 executable);
1154 if (err != FFI_OK)
1155 {
1156 ffi_closure_free (closure);
1157 SCM_MISC_ERROR ("`ffi_prep_closure_loc' failed", SCM_EOL);
1158 }
1159
1160 /* CIF points to GC-managed memory and it should remain as long as
1161 POINTER (see below) is live. Wrap it in a Scheme pointer to then
1162 hold a weak reference on it. */
1163 cif_pointer = scm_from_pointer (cif, NULL);
1164
1165 if (closure == executable)
1166 {
1167 pointer = scm_from_pointer (executable, ffi_closure_free);
1168 register_weak_reference (pointer,
1169 scm_list_2 (proc, cif_pointer));
1170 }
1171 else
1172 {
1173 /* CLOSURE needs to be freed eventually. However, since
1174 `GC_all_interior_pointers' is disabled, we can't just register
1175 a finalizer for CLOSURE. Instead, we create a pointer object
1176 for CLOSURE, with a finalizer, and register it as a weak
1177 reference of POINTER. */
1178 SCM friend;
1179
1180 pointer = scm_from_pointer (executable, NULL);
1181 friend = scm_from_pointer (closure, ffi_closure_free);
1182
1183 register_weak_reference (pointer,
1184 scm_list_3 (proc, cif_pointer, friend));
1185 }
1186
1187 return pointer;
1188 }
1189 #undef FUNC_NAME
1190
1191 #endif /* FFI_CLOSURES */
1192
1193 \f
1194
1195 static void
1196 scm_init_foreign (void)
1197 {
1198 #ifndef SCM_MAGIC_SNARFER
1199 #include "libguile/foreign.x"
1200 #endif
1201 scm_define (sym_void, scm_from_uint8 (SCM_FOREIGN_TYPE_VOID));
1202 scm_define (sym_float, scm_from_uint8 (SCM_FOREIGN_TYPE_FLOAT));
1203 scm_define (sym_double, scm_from_uint8 (SCM_FOREIGN_TYPE_DOUBLE));
1204 scm_define (sym_uint8, scm_from_uint8 (SCM_FOREIGN_TYPE_UINT8));
1205 scm_define (sym_int8, scm_from_uint8 (SCM_FOREIGN_TYPE_INT8));
1206 scm_define (sym_uint16, scm_from_uint8 (SCM_FOREIGN_TYPE_UINT16));
1207 scm_define (sym_int16, scm_from_uint8 (SCM_FOREIGN_TYPE_INT16));
1208 scm_define (sym_uint32, scm_from_uint8 (SCM_FOREIGN_TYPE_UINT32));
1209 scm_define (sym_int32, scm_from_uint8 (SCM_FOREIGN_TYPE_INT32));
1210 scm_define (sym_uint64, scm_from_uint8 (SCM_FOREIGN_TYPE_UINT64));
1211 scm_define (sym_int64, scm_from_uint8 (SCM_FOREIGN_TYPE_INT64));
1212
1213 scm_define (sym_short,
1214 #if SIZEOF_SHORT == 8
1215 scm_from_uint8 (SCM_FOREIGN_TYPE_INT64)
1216 #elif SIZEOF_SHORT == 4
1217 scm_from_uint8 (SCM_FOREIGN_TYPE_INT32)
1218 #elif SIZEOF_SHORT == 2
1219 scm_from_uint8 (SCM_FOREIGN_TYPE_INT16)
1220 #else
1221 # error unsupported sizeof (short)
1222 #endif
1223 );
1224
1225 scm_define (sym_unsigned_short,
1226 #if SIZEOF_SHORT == 8
1227 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT64)
1228 #elif SIZEOF_SHORT == 4
1229 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT32)
1230 #elif SIZEOF_SHORT == 2
1231 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT16)
1232 #else
1233 # error unsupported sizeof (short)
1234 #endif
1235 );
1236
1237 scm_define (sym_int,
1238 #if SIZEOF_INT == 8
1239 scm_from_uint8 (SCM_FOREIGN_TYPE_INT64)
1240 #elif SIZEOF_INT == 4
1241 scm_from_uint8 (SCM_FOREIGN_TYPE_INT32)
1242 #else
1243 # error unsupported sizeof (int)
1244 #endif
1245 );
1246
1247 scm_define (sym_unsigned_int,
1248 #if SIZEOF_UNSIGNED_INT == 8
1249 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT64)
1250 #elif SIZEOF_UNSIGNED_INT == 4
1251 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT32)
1252 #else
1253 # error unsupported sizeof (unsigned int)
1254 #endif
1255 );
1256
1257 scm_define (sym_long,
1258 #if SIZEOF_LONG == 8
1259 scm_from_uint8 (SCM_FOREIGN_TYPE_INT64)
1260 #elif SIZEOF_LONG == 4
1261 scm_from_uint8 (SCM_FOREIGN_TYPE_INT32)
1262 #else
1263 # error unsupported sizeof (long)
1264 #endif
1265 );
1266
1267 scm_define (sym_unsigned_long,
1268 #if SIZEOF_UNSIGNED_LONG == 8
1269 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT64)
1270 #elif SIZEOF_UNSIGNED_LONG == 4
1271 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT32)
1272 #else
1273 # error unsupported sizeof (unsigned long)
1274 #endif
1275 );
1276
1277 scm_define (sym_size_t,
1278 #if SIZEOF_SIZE_T == 8
1279 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT64)
1280 #elif SIZEOF_SIZE_T == 4
1281 scm_from_uint8 (SCM_FOREIGN_TYPE_UINT32)
1282 #else
1283 # error unsupported sizeof (size_t)
1284 #endif
1285 );
1286
1287 null_pointer = scm_cell (scm_tc7_pointer, 0);
1288 scm_define (sym_null, null_pointer);
1289 }
1290
1291 void
1292 scm_register_foreign (void)
1293 {
1294 scm_c_register_extension ("libguile-" SCM_EFFECTIVE_VERSION,
1295 "scm_init_foreign",
1296 (scm_t_extension_init_func)scm_init_foreign,
1297 NULL);
1298 pointer_weak_refs = scm_make_weak_key_hash_table (SCM_UNDEFINED);
1299 }
1300
1301 /*
1302 Local Variables:
1303 c-file-style: "gnu"
1304 End:
1305 */