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1 /* Scheme interface to types.
2
3 Copyright (C) 2008-2018 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 /* See README file in this directory for implementation notes, coding
21 conventions, et.al. */
22
23 #include "defs.h"
24 #include "arch-utils.h"
25 #include "value.h"
26 #include "gdbtypes.h"
27 #include "objfiles.h"
28 #include "language.h"
29 #include "vec.h"
30 #include "bcache.h"
31 #include "dwarf2loc.h"
32 #include "typeprint.h"
33 #include "guile-internal.h"
34
35 /* The <gdb:type> smob.
36 The type is chained with all types associated with its objfile, if any.
37 This lets us copy the underlying struct type when the objfile is
38 deleted.
39 The typedef for this struct is in guile-internal.h. */
40
41 struct _type_smob
42 {
43 /* This always appears first.
44 eqable_gdb_smob is used so that types are eq?-able.
45 Also, a type object can be associated with an objfile. eqable_gdb_smob
46 lets us track the lifetime of all types associated with an objfile.
47 When an objfile is deleted we need to invalidate the type object. */
48 eqable_gdb_smob base;
49
50 /* The GDB type structure this smob is wrapping. */
51 struct type *type;
52 };
53
54 /* A field smob. */
55
56 typedef struct
57 {
58 /* This always appears first. */
59 gdb_smob base;
60
61 /* Backlink to the containing <gdb:type> object. */
62 SCM type_scm;
63
64 /* The field number in TYPE_SCM. */
65 int field_num;
66 } field_smob;
67
68 static const char type_smob_name[] = "gdb:type";
69 static const char field_smob_name[] = "gdb:field";
70
71 static const char not_composite_error[] =
72 N_("type is not a structure, union, or enum type");
73
74 /* The tag Guile knows the type smob by. */
75 static scm_t_bits type_smob_tag;
76
77 /* The tag Guile knows the field smob by. */
78 static scm_t_bits field_smob_tag;
79
80 /* The "next" procedure for field iterators. */
81 static SCM tyscm_next_field_x_proc;
82
83 /* Keywords used in argument passing. */
84 static SCM block_keyword;
85
86 static const struct objfile_data *tyscm_objfile_data_key;
87
88 /* Hash table to uniquify global (non-objfile-owned) types. */
89 static htab_t global_types_map;
90
91 static struct type *tyscm_get_composite (struct type *type);
92
93 /* Return the type field of T_SMOB.
94 This exists so that we don't have to export the struct's contents. */
95
96 struct type *
97 tyscm_type_smob_type (type_smob *t_smob)
98 {
99 return t_smob->type;
100 }
101
102 /* Return the name of TYPE in expanded form. If there's an error
103 computing the name, throws the gdb exception with scm_throw. */
104
105 static std::string
106 tyscm_type_name (struct type *type)
107 {
108 TRY
109 {
110 string_file stb;
111
112 LA_PRINT_TYPE (type, "", &stb, -1, 0, &type_print_raw_options);
113 return std::move (stb.string ());
114 }
115 CATCH (except, RETURN_MASK_ALL)
116 {
117 SCM excp = gdbscm_scm_from_gdb_exception (except);
118 gdbscm_throw (excp);
119 }
120 END_CATCH
121
122 gdb_assert_not_reached ("no way to get here");
123 }
124 \f
125 /* Administrivia for type smobs. */
126
127 /* Helper function to hash a type_smob. */
128
129 static hashval_t
130 tyscm_hash_type_smob (const void *p)
131 {
132 const type_smob *t_smob = (const type_smob *) p;
133
134 return htab_hash_pointer (t_smob->type);
135 }
136
137 /* Helper function to compute equality of type_smobs. */
138
139 static int
140 tyscm_eq_type_smob (const void *ap, const void *bp)
141 {
142 const type_smob *a = (const type_smob *) ap;
143 const type_smob *b = (const type_smob *) bp;
144
145 return (a->type == b->type
146 && a->type != NULL);
147 }
148
149 /* Return the struct type pointer -> SCM mapping table.
150 If type is owned by an objfile, the mapping table is created if necessary.
151 Otherwise, type is not owned by an objfile, and we use
152 global_types_map. */
153
154 static htab_t
155 tyscm_type_map (struct type *type)
156 {
157 struct objfile *objfile = TYPE_OBJFILE (type);
158 htab_t htab;
159
160 if (objfile == NULL)
161 return global_types_map;
162
163 htab = (htab_t) objfile_data (objfile, tyscm_objfile_data_key);
164 if (htab == NULL)
165 {
166 htab = gdbscm_create_eqable_gsmob_ptr_map (tyscm_hash_type_smob,
167 tyscm_eq_type_smob);
168 set_objfile_data (objfile, tyscm_objfile_data_key, htab);
169 }
170
171 return htab;
172 }
173
174 /* The smob "free" function for <gdb:type>. */
175
176 static size_t
177 tyscm_free_type_smob (SCM self)
178 {
179 type_smob *t_smob = (type_smob *) SCM_SMOB_DATA (self);
180
181 if (t_smob->type != NULL)
182 {
183 htab_t htab = tyscm_type_map (t_smob->type);
184
185 gdbscm_clear_eqable_gsmob_ptr_slot (htab, &t_smob->base);
186 }
187
188 /* Not necessary, done to catch bugs. */
189 t_smob->type = NULL;
190
191 return 0;
192 }
193
194 /* The smob "print" function for <gdb:type>. */
195
196 static int
197 tyscm_print_type_smob (SCM self, SCM port, scm_print_state *pstate)
198 {
199 type_smob *t_smob = (type_smob *) SCM_SMOB_DATA (self);
200 std::string name = tyscm_type_name (t_smob->type);
201
202 /* pstate->writingp = zero if invoked by display/~A, and nonzero if
203 invoked by write/~S. What to do here may need to evolve.
204 IWBN if we could pass an argument to format that would we could use
205 instead of writingp. */
206 if (pstate->writingp)
207 gdbscm_printf (port, "#<%s ", type_smob_name);
208
209 scm_puts (name.c_str (), port);
210
211 if (pstate->writingp)
212 scm_puts (">", port);
213
214 scm_remember_upto_here_1 (self);
215
216 /* Non-zero means success. */
217 return 1;
218 }
219
220 /* The smob "equal?" function for <gdb:type>. */
221
222 static SCM
223 tyscm_equal_p_type_smob (SCM type1_scm, SCM type2_scm)
224 {
225 type_smob *type1_smob, *type2_smob;
226 struct type *type1, *type2;
227 bool result = false;
228
229 SCM_ASSERT_TYPE (tyscm_is_type (type1_scm), type1_scm, SCM_ARG1, FUNC_NAME,
230 type_smob_name);
231 SCM_ASSERT_TYPE (tyscm_is_type (type2_scm), type2_scm, SCM_ARG2, FUNC_NAME,
232 type_smob_name);
233 type1_smob = (type_smob *) SCM_SMOB_DATA (type1_scm);
234 type2_smob = (type_smob *) SCM_SMOB_DATA (type2_scm);
235 type1 = type1_smob->type;
236 type2 = type2_smob->type;
237
238 TRY
239 {
240 result = types_deeply_equal (type1, type2);
241 }
242 CATCH (except, RETURN_MASK_ALL)
243 {
244 GDBSCM_HANDLE_GDB_EXCEPTION (except);
245 }
246 END_CATCH
247
248 return scm_from_bool (result);
249 }
250
251 /* Low level routine to create a <gdb:type> object. */
252
253 static SCM
254 tyscm_make_type_smob (void)
255 {
256 type_smob *t_smob = (type_smob *)
257 scm_gc_malloc (sizeof (type_smob), type_smob_name);
258 SCM t_scm;
259
260 /* This must be filled in by the caller. */
261 t_smob->type = NULL;
262
263 t_scm = scm_new_smob (type_smob_tag, (scm_t_bits) t_smob);
264 gdbscm_init_eqable_gsmob (&t_smob->base, t_scm);
265
266 return t_scm;
267 }
268
269 /* Return non-zero if SCM is a <gdb:type> object. */
270
271 int
272 tyscm_is_type (SCM self)
273 {
274 return SCM_SMOB_PREDICATE (type_smob_tag, self);
275 }
276
277 /* (type? object) -> boolean */
278
279 static SCM
280 gdbscm_type_p (SCM self)
281 {
282 return scm_from_bool (tyscm_is_type (self));
283 }
284
285 /* Return the existing object that encapsulates TYPE, or create a new
286 <gdb:type> object. */
287
288 SCM
289 tyscm_scm_from_type (struct type *type)
290 {
291 htab_t htab;
292 eqable_gdb_smob **slot;
293 type_smob *t_smob, t_smob_for_lookup;
294 SCM t_scm;
295
296 /* If we've already created a gsmob for this type, return it.
297 This makes types eq?-able. */
298 htab = tyscm_type_map (type);
299 t_smob_for_lookup.type = type;
300 slot = gdbscm_find_eqable_gsmob_ptr_slot (htab, &t_smob_for_lookup.base);
301 if (*slot != NULL)
302 return (*slot)->containing_scm;
303
304 t_scm = tyscm_make_type_smob ();
305 t_smob = (type_smob *) SCM_SMOB_DATA (t_scm);
306 t_smob->type = type;
307 gdbscm_fill_eqable_gsmob_ptr_slot (slot, &t_smob->base);
308
309 return t_scm;
310 }
311
312 /* Returns the <gdb:type> object in SELF.
313 Throws an exception if SELF is not a <gdb:type> object. */
314
315 static SCM
316 tyscm_get_type_arg_unsafe (SCM self, int arg_pos, const char *func_name)
317 {
318 SCM_ASSERT_TYPE (tyscm_is_type (self), self, arg_pos, func_name,
319 type_smob_name);
320
321 return self;
322 }
323
324 /* Returns a pointer to the type smob of SELF.
325 Throws an exception if SELF is not a <gdb:type> object. */
326
327 type_smob *
328 tyscm_get_type_smob_arg_unsafe (SCM self, int arg_pos, const char *func_name)
329 {
330 SCM t_scm = tyscm_get_type_arg_unsafe (self, arg_pos, func_name);
331 type_smob *t_smob = (type_smob *) SCM_SMOB_DATA (t_scm);
332
333 return t_smob;
334 }
335
336 /* Return the type field of T_SCM, an object of type <gdb:type>.
337 This exists so that we don't have to export the struct's contents. */
338
339 struct type *
340 tyscm_scm_to_type (SCM t_scm)
341 {
342 type_smob *t_smob;
343
344 gdb_assert (tyscm_is_type (t_scm));
345 t_smob = (type_smob *) SCM_SMOB_DATA (t_scm);
346 return t_smob->type;
347 }
348
349 /* Helper function for save_objfile_types to make a deep copy of the type. */
350
351 static int
352 tyscm_copy_type_recursive (void **slot, void *info)
353 {
354 type_smob *t_smob = (type_smob *) *slot;
355 htab_t copied_types = (htab_t) info;
356 struct objfile *objfile = TYPE_OBJFILE (t_smob->type);
357 htab_t htab;
358 eqable_gdb_smob **new_slot;
359 type_smob t_smob_for_lookup;
360
361 gdb_assert (objfile != NULL);
362
363 htab_empty (copied_types);
364 t_smob->type = copy_type_recursive (objfile, t_smob->type, copied_types);
365
366 /* The eq?-hashtab that the type lived in is going away.
367 Add the type to its new eq?-hashtab: Otherwise if/when the type is later
368 garbage collected we'll assert-fail if the type isn't in the hashtab.
369 PR 16612.
370
371 Types now live in "arch space", and things like "char" that came from
372 the objfile *could* be considered eq? with the arch "char" type.
373 However, they weren't before the objfile got deleted, so making them
374 eq? now is debatable. */
375 htab = tyscm_type_map (t_smob->type);
376 t_smob_for_lookup.type = t_smob->type;
377 new_slot = gdbscm_find_eqable_gsmob_ptr_slot (htab, &t_smob_for_lookup.base);
378 gdb_assert (*new_slot == NULL);
379 gdbscm_fill_eqable_gsmob_ptr_slot (new_slot, &t_smob->base);
380
381 return 1;
382 }
383
384 /* Called when OBJFILE is about to be deleted.
385 Make a copy of all types associated with OBJFILE. */
386
387 static void
388 save_objfile_types (struct objfile *objfile, void *datum)
389 {
390 htab_t htab = (htab_t) datum;
391 htab_t copied_types;
392
393 if (!gdb_scheme_initialized)
394 return;
395
396 copied_types = create_copied_types_hash (objfile);
397
398 if (htab != NULL)
399 {
400 htab_traverse_noresize (htab, tyscm_copy_type_recursive, copied_types);
401 htab_delete (htab);
402 }
403
404 htab_delete (copied_types);
405 }
406 \f
407 /* Administrivia for field smobs. */
408
409 /* The smob "print" function for <gdb:field>. */
410
411 static int
412 tyscm_print_field_smob (SCM self, SCM port, scm_print_state *pstate)
413 {
414 field_smob *f_smob = (field_smob *) SCM_SMOB_DATA (self);
415
416 gdbscm_printf (port, "#<%s ", field_smob_name);
417 scm_write (f_smob->type_scm, port);
418 gdbscm_printf (port, " %d", f_smob->field_num);
419 scm_puts (">", port);
420
421 scm_remember_upto_here_1 (self);
422
423 /* Non-zero means success. */
424 return 1;
425 }
426
427 /* Low level routine to create a <gdb:field> object for field FIELD_NUM
428 of type TYPE_SCM. */
429
430 static SCM
431 tyscm_make_field_smob (SCM type_scm, int field_num)
432 {
433 field_smob *f_smob = (field_smob *)
434 scm_gc_malloc (sizeof (field_smob), field_smob_name);
435 SCM result;
436
437 f_smob->type_scm = type_scm;
438 f_smob->field_num = field_num;
439 result = scm_new_smob (field_smob_tag, (scm_t_bits) f_smob);
440 gdbscm_init_gsmob (&f_smob->base);
441
442 return result;
443 }
444
445 /* Return non-zero if SCM is a <gdb:field> object. */
446
447 static int
448 tyscm_is_field (SCM self)
449 {
450 return SCM_SMOB_PREDICATE (field_smob_tag, self);
451 }
452
453 /* (field? object) -> boolean */
454
455 static SCM
456 gdbscm_field_p (SCM self)
457 {
458 return scm_from_bool (tyscm_is_field (self));
459 }
460
461 /* Create a new <gdb:field> object that encapsulates field FIELD_NUM
462 in type TYPE_SCM. */
463
464 SCM
465 tyscm_scm_from_field (SCM type_scm, int field_num)
466 {
467 return tyscm_make_field_smob (type_scm, field_num);
468 }
469
470 /* Returns the <gdb:field> object in SELF.
471 Throws an exception if SELF is not a <gdb:field> object. */
472
473 static SCM
474 tyscm_get_field_arg_unsafe (SCM self, int arg_pos, const char *func_name)
475 {
476 SCM_ASSERT_TYPE (tyscm_is_field (self), self, arg_pos, func_name,
477 field_smob_name);
478
479 return self;
480 }
481
482 /* Returns a pointer to the field smob of SELF.
483 Throws an exception if SELF is not a <gdb:field> object. */
484
485 static field_smob *
486 tyscm_get_field_smob_arg_unsafe (SCM self, int arg_pos, const char *func_name)
487 {
488 SCM f_scm = tyscm_get_field_arg_unsafe (self, arg_pos, func_name);
489 field_smob *f_smob = (field_smob *) SCM_SMOB_DATA (f_scm);
490
491 return f_smob;
492 }
493
494 /* Returns a pointer to the type struct in F_SMOB
495 (the type the field is in). */
496
497 static struct type *
498 tyscm_field_smob_containing_type (field_smob *f_smob)
499 {
500 type_smob *t_smob;
501
502 gdb_assert (tyscm_is_type (f_smob->type_scm));
503 t_smob = (type_smob *) SCM_SMOB_DATA (f_smob->type_scm);
504
505 return t_smob->type;
506 }
507
508 /* Returns a pointer to the field struct of F_SMOB. */
509
510 static struct field *
511 tyscm_field_smob_to_field (field_smob *f_smob)
512 {
513 struct type *type = tyscm_field_smob_containing_type (f_smob);
514
515 /* This should be non-NULL by construction. */
516 gdb_assert (TYPE_FIELDS (type) != NULL);
517
518 return &TYPE_FIELD (type, f_smob->field_num);
519 }
520 \f
521 /* Type smob accessors. */
522
523 /* (type-code <gdb:type>) -> integer
524 Return the code for this type. */
525
526 static SCM
527 gdbscm_type_code (SCM self)
528 {
529 type_smob *t_smob
530 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
531 struct type *type = t_smob->type;
532
533 return scm_from_int (TYPE_CODE (type));
534 }
535
536 /* (type-fields <gdb:type>) -> list
537 Return a list of all fields. Each element is a <gdb:field> object.
538 This also supports arrays, we return a field list of one element,
539 the range type. */
540
541 static SCM
542 gdbscm_type_fields (SCM self)
543 {
544 type_smob *t_smob
545 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
546 struct type *type = t_smob->type;
547 struct type *containing_type;
548 SCM containing_type_scm, result;
549 int i;
550
551 containing_type = tyscm_get_composite (type);
552 if (containing_type == NULL)
553 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG1, self,
554 _(not_composite_error));
555
556 /* If SELF is a typedef or reference, we want the underlying type,
557 which is what tyscm_get_composite returns. */
558 if (containing_type == type)
559 containing_type_scm = self;
560 else
561 containing_type_scm = tyscm_scm_from_type (containing_type);
562
563 result = SCM_EOL;
564 for (i = 0; i < TYPE_NFIELDS (containing_type); ++i)
565 result = scm_cons (tyscm_make_field_smob (containing_type_scm, i), result);
566
567 return scm_reverse_x (result, SCM_EOL);
568 }
569
570 /* (type-tag <gdb:type>) -> string
571 Return the type's tag, or #f. */
572
573 static SCM
574 gdbscm_type_tag (SCM self)
575 {
576 type_smob *t_smob
577 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
578 struct type *type = t_smob->type;
579 const char *tagname = nullptr;
580
581 if (TYPE_CODE (type) == TYPE_CODE_STRUCT
582 || TYPE_CODE (type) == TYPE_CODE_UNION
583 || TYPE_CODE (type) == TYPE_CODE_ENUM)
584 tagname = TYPE_NAME (type);
585
586 if (tagname == nullptr)
587 return SCM_BOOL_F;
588 return gdbscm_scm_from_c_string (tagname);
589 }
590
591 /* (type-name <gdb:type>) -> string
592 Return the type's name, or #f. */
593
594 static SCM
595 gdbscm_type_name (SCM self)
596 {
597 type_smob *t_smob
598 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
599 struct type *type = t_smob->type;
600
601 if (!TYPE_NAME (type))
602 return SCM_BOOL_F;
603 return gdbscm_scm_from_c_string (TYPE_NAME (type));
604 }
605
606 /* (type-print-name <gdb:type>) -> string
607 Return the print name of type.
608 TODO: template support elided for now. */
609
610 static SCM
611 gdbscm_type_print_name (SCM self)
612 {
613 type_smob *t_smob
614 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
615 struct type *type = t_smob->type;
616 std::string thetype = tyscm_type_name (type);
617 SCM result = gdbscm_scm_from_c_string (thetype.c_str ());
618
619 return result;
620 }
621
622 /* (type-sizeof <gdb:type>) -> integer
623 Return the size of the type represented by SELF, in bytes. */
624
625 static SCM
626 gdbscm_type_sizeof (SCM self)
627 {
628 type_smob *t_smob
629 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
630 struct type *type = t_smob->type;
631
632 TRY
633 {
634 check_typedef (type);
635 }
636 CATCH (except, RETURN_MASK_ALL)
637 {
638 }
639 END_CATCH
640
641 /* Ignore exceptions. */
642
643 return scm_from_long (TYPE_LENGTH (type));
644 }
645
646 /* (type-strip-typedefs <gdb:type>) -> <gdb:type>
647 Return the type, stripped of typedefs. */
648
649 static SCM
650 gdbscm_type_strip_typedefs (SCM self)
651 {
652 type_smob *t_smob
653 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
654 struct type *type = t_smob->type;
655
656 TRY
657 {
658 type = check_typedef (type);
659 }
660 CATCH (except, RETURN_MASK_ALL)
661 {
662 GDBSCM_HANDLE_GDB_EXCEPTION (except);
663 }
664 END_CATCH
665
666 return tyscm_scm_from_type (type);
667 }
668
669 /* Strip typedefs and pointers/reference from a type. Then check that
670 it is a struct, union, or enum type. If not, return NULL. */
671
672 static struct type *
673 tyscm_get_composite (struct type *type)
674 {
675
676 for (;;)
677 {
678 TRY
679 {
680 type = check_typedef (type);
681 }
682 CATCH (except, RETURN_MASK_ALL)
683 {
684 GDBSCM_HANDLE_GDB_EXCEPTION (except);
685 }
686 END_CATCH
687
688 if (TYPE_CODE (type) != TYPE_CODE_PTR
689 && TYPE_CODE (type) != TYPE_CODE_REF)
690 break;
691 type = TYPE_TARGET_TYPE (type);
692 }
693
694 /* If this is not a struct, union, or enum type, raise TypeError
695 exception. */
696 if (TYPE_CODE (type) != TYPE_CODE_STRUCT
697 && TYPE_CODE (type) != TYPE_CODE_UNION
698 && TYPE_CODE (type) != TYPE_CODE_ENUM)
699 return NULL;
700
701 return type;
702 }
703
704 /* Helper for tyscm_array and tyscm_vector. */
705
706 static SCM
707 tyscm_array_1 (SCM self, SCM n1_scm, SCM n2_scm, int is_vector,
708 const char *func_name)
709 {
710 type_smob *t_smob
711 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, func_name);
712 struct type *type = t_smob->type;
713 long n1, n2 = 0;
714 struct type *array = NULL;
715
716 gdbscm_parse_function_args (func_name, SCM_ARG2, NULL, "l|l",
717 n1_scm, &n1, n2_scm, &n2);
718
719 if (SCM_UNBNDP (n2_scm))
720 {
721 n2 = n1;
722 n1 = 0;
723 }
724
725 if (n2 < n1 - 1) /* Note: An empty array has n2 == n1 - 1. */
726 {
727 gdbscm_out_of_range_error (func_name, SCM_ARG3,
728 scm_cons (scm_from_long (n1),
729 scm_from_long (n2)),
730 _("Array length must not be negative"));
731 }
732
733 TRY
734 {
735 array = lookup_array_range_type (type, n1, n2);
736 if (is_vector)
737 make_vector_type (array);
738 }
739 CATCH (except, RETURN_MASK_ALL)
740 {
741 GDBSCM_HANDLE_GDB_EXCEPTION (except);
742 }
743 END_CATCH
744
745 return tyscm_scm_from_type (array);
746 }
747
748 /* (type-array <gdb:type> [low-bound] high-bound) -> <gdb:type>
749 The array has indices [low-bound,high-bound].
750 If low-bound is not provided zero is used.
751 Return an array type.
752
753 IWBN if the one argument version specified a size, not the high bound.
754 It's too easy to pass one argument thinking it is the size of the array.
755 The current semantics are for compatibility with the Python version.
756 Later we can add #:size. */
757
758 static SCM
759 gdbscm_type_array (SCM self, SCM n1, SCM n2)
760 {
761 return tyscm_array_1 (self, n1, n2, 0, FUNC_NAME);
762 }
763
764 /* (type-vector <gdb:type> [low-bound] high-bound) -> <gdb:type>
765 The array has indices [low-bound,high-bound].
766 If low-bound is not provided zero is used.
767 Return a vector type.
768
769 IWBN if the one argument version specified a size, not the high bound.
770 It's too easy to pass one argument thinking it is the size of the array.
771 The current semantics are for compatibility with the Python version.
772 Later we can add #:size. */
773
774 static SCM
775 gdbscm_type_vector (SCM self, SCM n1, SCM n2)
776 {
777 return tyscm_array_1 (self, n1, n2, 1, FUNC_NAME);
778 }
779
780 /* (type-pointer <gdb:type>) -> <gdb:type>
781 Return a <gdb:type> object which represents a pointer to SELF. */
782
783 static SCM
784 gdbscm_type_pointer (SCM self)
785 {
786 type_smob *t_smob
787 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
788 struct type *type = t_smob->type;
789
790 TRY
791 {
792 type = lookup_pointer_type (type);
793 }
794 CATCH (except, RETURN_MASK_ALL)
795 {
796 GDBSCM_HANDLE_GDB_EXCEPTION (except);
797 }
798 END_CATCH
799
800 return tyscm_scm_from_type (type);
801 }
802
803 /* (type-range <gdb:type>) -> (low high)
804 Return the range of a type represented by SELF. The return type is
805 a list. The first element is the low bound, and the second element
806 is the high bound. */
807
808 static SCM
809 gdbscm_type_range (SCM self)
810 {
811 type_smob *t_smob
812 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
813 struct type *type = t_smob->type;
814 SCM low_scm, high_scm;
815 /* Initialize these to appease GCC warnings. */
816 LONGEST low = 0, high = 0;
817
818 SCM_ASSERT_TYPE (TYPE_CODE (type) == TYPE_CODE_ARRAY
819 || TYPE_CODE (type) == TYPE_CODE_STRING
820 || TYPE_CODE (type) == TYPE_CODE_RANGE,
821 self, SCM_ARG1, FUNC_NAME, _("ranged type"));
822
823 switch (TYPE_CODE (type))
824 {
825 case TYPE_CODE_ARRAY:
826 case TYPE_CODE_STRING:
827 low = TYPE_LOW_BOUND (TYPE_INDEX_TYPE (type));
828 high = TYPE_HIGH_BOUND (TYPE_INDEX_TYPE (type));
829 break;
830 case TYPE_CODE_RANGE:
831 low = TYPE_LOW_BOUND (type);
832 high = TYPE_HIGH_BOUND (type);
833 break;
834 }
835
836 low_scm = gdbscm_scm_from_longest (low);
837 high_scm = gdbscm_scm_from_longest (high);
838
839 return scm_list_2 (low_scm, high_scm);
840 }
841
842 /* (type-reference <gdb:type>) -> <gdb:type>
843 Return a <gdb:type> object which represents a reference to SELF. */
844
845 static SCM
846 gdbscm_type_reference (SCM self)
847 {
848 type_smob *t_smob
849 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
850 struct type *type = t_smob->type;
851
852 TRY
853 {
854 type = lookup_lvalue_reference_type (type);
855 }
856 CATCH (except, RETURN_MASK_ALL)
857 {
858 GDBSCM_HANDLE_GDB_EXCEPTION (except);
859 }
860 END_CATCH
861
862 return tyscm_scm_from_type (type);
863 }
864
865 /* (type-target <gdb:type>) -> <gdb:type>
866 Return a <gdb:type> object which represents the target type of SELF. */
867
868 static SCM
869 gdbscm_type_target (SCM self)
870 {
871 type_smob *t_smob
872 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
873 struct type *type = t_smob->type;
874
875 SCM_ASSERT (TYPE_TARGET_TYPE (type), self, SCM_ARG1, FUNC_NAME);
876
877 return tyscm_scm_from_type (TYPE_TARGET_TYPE (type));
878 }
879
880 /* (type-const <gdb:type>) -> <gdb:type>
881 Return a const-qualified type variant. */
882
883 static SCM
884 gdbscm_type_const (SCM self)
885 {
886 type_smob *t_smob
887 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
888 struct type *type = t_smob->type;
889
890 TRY
891 {
892 type = make_cv_type (1, 0, type, NULL);
893 }
894 CATCH (except, RETURN_MASK_ALL)
895 {
896 GDBSCM_HANDLE_GDB_EXCEPTION (except);
897 }
898 END_CATCH
899
900 return tyscm_scm_from_type (type);
901 }
902
903 /* (type-volatile <gdb:type>) -> <gdb:type>
904 Return a volatile-qualified type variant. */
905
906 static SCM
907 gdbscm_type_volatile (SCM self)
908 {
909 type_smob *t_smob
910 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
911 struct type *type = t_smob->type;
912
913 TRY
914 {
915 type = make_cv_type (0, 1, type, NULL);
916 }
917 CATCH (except, RETURN_MASK_ALL)
918 {
919 GDBSCM_HANDLE_GDB_EXCEPTION (except);
920 }
921 END_CATCH
922
923 return tyscm_scm_from_type (type);
924 }
925
926 /* (type-unqualified <gdb:type>) -> <gdb:type>
927 Return an unqualified type variant. */
928
929 static SCM
930 gdbscm_type_unqualified (SCM self)
931 {
932 type_smob *t_smob
933 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
934 struct type *type = t_smob->type;
935
936 TRY
937 {
938 type = make_cv_type (0, 0, type, NULL);
939 }
940 CATCH (except, RETURN_MASK_ALL)
941 {
942 GDBSCM_HANDLE_GDB_EXCEPTION (except);
943 }
944 END_CATCH
945
946 return tyscm_scm_from_type (type);
947 }
948 \f
949 /* Field related accessors of types. */
950
951 /* (type-num-fields <gdb:type>) -> integer
952 Return number of fields. */
953
954 static SCM
955 gdbscm_type_num_fields (SCM self)
956 {
957 type_smob *t_smob
958 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
959 struct type *type = t_smob->type;
960
961 type = tyscm_get_composite (type);
962 if (type == NULL)
963 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG1, self,
964 _(not_composite_error));
965
966 return scm_from_long (TYPE_NFIELDS (type));
967 }
968
969 /* (type-field <gdb:type> string) -> <gdb:field>
970 Return the <gdb:field> object for the field named by the argument. */
971
972 static SCM
973 gdbscm_type_field (SCM self, SCM field_scm)
974 {
975 type_smob *t_smob
976 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
977 struct type *type = t_smob->type;
978
979 SCM_ASSERT_TYPE (scm_is_string (field_scm), field_scm, SCM_ARG2, FUNC_NAME,
980 _("string"));
981
982 /* We want just fields of this type, not of base types, so instead of
983 using lookup_struct_elt_type, portions of that function are
984 copied here. */
985
986 type = tyscm_get_composite (type);
987 if (type == NULL)
988 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG1, self,
989 _(not_composite_error));
990
991 {
992 gdb::unique_xmalloc_ptr<char> field = gdbscm_scm_to_c_string (field_scm);
993
994 for (int i = 0; i < TYPE_NFIELDS (type); i++)
995 {
996 const char *t_field_name = TYPE_FIELD_NAME (type, i);
997
998 if (t_field_name && (strcmp_iw (t_field_name, field.get ()) == 0))
999 {
1000 field.reset (nullptr);
1001 return tyscm_make_field_smob (self, i);
1002 }
1003 }
1004 }
1005
1006 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG1, field_scm,
1007 _("Unknown field"));
1008 }
1009
1010 /* (type-has-field? <gdb:type> string) -> boolean
1011 Return boolean indicating if type SELF has FIELD_SCM (a string). */
1012
1013 static SCM
1014 gdbscm_type_has_field_p (SCM self, SCM field_scm)
1015 {
1016 type_smob *t_smob
1017 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1018 struct type *type = t_smob->type;
1019
1020 SCM_ASSERT_TYPE (scm_is_string (field_scm), field_scm, SCM_ARG2, FUNC_NAME,
1021 _("string"));
1022
1023 /* We want just fields of this type, not of base types, so instead of
1024 using lookup_struct_elt_type, portions of that function are
1025 copied here. */
1026
1027 type = tyscm_get_composite (type);
1028 if (type == NULL)
1029 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG1, self,
1030 _(not_composite_error));
1031
1032 {
1033 gdb::unique_xmalloc_ptr<char> field
1034 = gdbscm_scm_to_c_string (field_scm);
1035
1036 for (int i = 0; i < TYPE_NFIELDS (type); i++)
1037 {
1038 const char *t_field_name = TYPE_FIELD_NAME (type, i);
1039
1040 if (t_field_name && (strcmp_iw (t_field_name, field.get ()) == 0))
1041 return SCM_BOOL_T;
1042 }
1043 }
1044
1045 return SCM_BOOL_F;
1046 }
1047
1048 /* (make-field-iterator <gdb:type>) -> <gdb:iterator>
1049 Make a field iterator object. */
1050
1051 static SCM
1052 gdbscm_make_field_iterator (SCM self)
1053 {
1054 type_smob *t_smob
1055 = tyscm_get_type_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1056 struct type *type = t_smob->type;
1057 struct type *containing_type;
1058 SCM containing_type_scm;
1059
1060 containing_type = tyscm_get_composite (type);
1061 if (containing_type == NULL)
1062 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG1, self,
1063 _(not_composite_error));
1064
1065 /* If SELF is a typedef or reference, we want the underlying type,
1066 which is what tyscm_get_composite returns. */
1067 if (containing_type == type)
1068 containing_type_scm = self;
1069 else
1070 containing_type_scm = tyscm_scm_from_type (containing_type);
1071
1072 return gdbscm_make_iterator (containing_type_scm, scm_from_int (0),
1073 tyscm_next_field_x_proc);
1074 }
1075
1076 /* (type-next-field! <gdb:iterator>) -> <gdb:field>
1077 Return the next field in the iteration through the list of fields of the
1078 type, or (end-of-iteration).
1079 SELF is a <gdb:iterator> object created by gdbscm_make_field_iterator.
1080 This is the next! <gdb:iterator> function, not exported to the user. */
1081
1082 static SCM
1083 gdbscm_type_next_field_x (SCM self)
1084 {
1085 iterator_smob *i_smob;
1086 type_smob *t_smob;
1087 struct type *type;
1088 SCM it_scm, result, progress, object;
1089 int field;
1090
1091 it_scm = itscm_get_iterator_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1092 i_smob = (iterator_smob *) SCM_SMOB_DATA (it_scm);
1093 object = itscm_iterator_smob_object (i_smob);
1094 progress = itscm_iterator_smob_progress (i_smob);
1095
1096 SCM_ASSERT_TYPE (tyscm_is_type (object), object,
1097 SCM_ARG1, FUNC_NAME, type_smob_name);
1098 t_smob = (type_smob *) SCM_SMOB_DATA (object);
1099 type = t_smob->type;
1100
1101 SCM_ASSERT_TYPE (scm_is_signed_integer (progress,
1102 0, TYPE_NFIELDS (type)),
1103 progress, SCM_ARG1, FUNC_NAME, _("integer"));
1104 field = scm_to_int (progress);
1105
1106 if (field < TYPE_NFIELDS (type))
1107 {
1108 result = tyscm_make_field_smob (object, field);
1109 itscm_set_iterator_smob_progress_x (i_smob, scm_from_int (field + 1));
1110 return result;
1111 }
1112
1113 return gdbscm_end_of_iteration ();
1114 }
1115 \f
1116 /* Field smob accessors. */
1117
1118 /* (field-name <gdb:field>) -> string
1119 Return the name of this field or #f if there isn't one. */
1120
1121 static SCM
1122 gdbscm_field_name (SCM self)
1123 {
1124 field_smob *f_smob
1125 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1126 struct field *field = tyscm_field_smob_to_field (f_smob);
1127
1128 if (FIELD_NAME (*field))
1129 return gdbscm_scm_from_c_string (FIELD_NAME (*field));
1130 return SCM_BOOL_F;
1131 }
1132
1133 /* (field-type <gdb:field>) -> <gdb:type>
1134 Return the <gdb:type> object of the field or #f if there isn't one. */
1135
1136 static SCM
1137 gdbscm_field_type (SCM self)
1138 {
1139 field_smob *f_smob
1140 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1141 struct field *field = tyscm_field_smob_to_field (f_smob);
1142
1143 /* A field can have a NULL type in some situations. */
1144 if (FIELD_TYPE (*field))
1145 return tyscm_scm_from_type (FIELD_TYPE (*field));
1146 return SCM_BOOL_F;
1147 }
1148
1149 /* (field-enumval <gdb:field>) -> integer
1150 For enum values, return its value as an integer. */
1151
1152 static SCM
1153 gdbscm_field_enumval (SCM self)
1154 {
1155 field_smob *f_smob
1156 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1157 struct field *field = tyscm_field_smob_to_field (f_smob);
1158 struct type *type = tyscm_field_smob_containing_type (f_smob);
1159
1160 SCM_ASSERT_TYPE (TYPE_CODE (type) == TYPE_CODE_ENUM,
1161 self, SCM_ARG1, FUNC_NAME, _("enum type"));
1162
1163 return scm_from_long (FIELD_ENUMVAL (*field));
1164 }
1165
1166 /* (field-bitpos <gdb:field>) -> integer
1167 For bitfields, return its offset in bits. */
1168
1169 static SCM
1170 gdbscm_field_bitpos (SCM self)
1171 {
1172 field_smob *f_smob
1173 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1174 struct field *field = tyscm_field_smob_to_field (f_smob);
1175 struct type *type = tyscm_field_smob_containing_type (f_smob);
1176
1177 SCM_ASSERT_TYPE (TYPE_CODE (type) != TYPE_CODE_ENUM,
1178 self, SCM_ARG1, FUNC_NAME, _("non-enum type"));
1179
1180 return scm_from_long (FIELD_BITPOS (*field));
1181 }
1182
1183 /* (field-bitsize <gdb:field>) -> integer
1184 Return the size of the field in bits. */
1185
1186 static SCM
1187 gdbscm_field_bitsize (SCM self)
1188 {
1189 field_smob *f_smob
1190 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1191 struct field *field = tyscm_field_smob_to_field (f_smob);
1192
1193 return scm_from_long (FIELD_BITPOS (*field));
1194 }
1195
1196 /* (field-artificial? <gdb:field>) -> boolean
1197 Return #t if field is artificial. */
1198
1199 static SCM
1200 gdbscm_field_artificial_p (SCM self)
1201 {
1202 field_smob *f_smob
1203 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1204 struct field *field = tyscm_field_smob_to_field (f_smob);
1205
1206 return scm_from_bool (FIELD_ARTIFICIAL (*field));
1207 }
1208
1209 /* (field-baseclass? <gdb:field>) -> boolean
1210 Return #t if field is a baseclass. */
1211
1212 static SCM
1213 gdbscm_field_baseclass_p (SCM self)
1214 {
1215 field_smob *f_smob
1216 = tyscm_get_field_smob_arg_unsafe (self, SCM_ARG1, FUNC_NAME);
1217 struct field *field = tyscm_field_smob_to_field (f_smob);
1218 struct type *type = tyscm_field_smob_containing_type (f_smob);
1219
1220 if (TYPE_CODE (type) == TYPE_CODE_STRUCT)
1221 return scm_from_bool (f_smob->field_num < TYPE_N_BASECLASSES (type));
1222 return SCM_BOOL_F;
1223 }
1224 \f
1225 /* Return the type named TYPE_NAME in BLOCK.
1226 Returns NULL if not found.
1227 This routine does not throw an error. */
1228
1229 static struct type *
1230 tyscm_lookup_typename (const char *type_name, const struct block *block)
1231 {
1232 struct type *type = NULL;
1233
1234 TRY
1235 {
1236 if (startswith (type_name, "struct "))
1237 type = lookup_struct (type_name + 7, NULL);
1238 else if (startswith (type_name, "union "))
1239 type = lookup_union (type_name + 6, NULL);
1240 else if (startswith (type_name, "enum "))
1241 type = lookup_enum (type_name + 5, NULL);
1242 else
1243 type = lookup_typename (current_language, get_current_arch (),
1244 type_name, block, 0);
1245 }
1246 CATCH (except, RETURN_MASK_ALL)
1247 {
1248 return NULL;
1249 }
1250 END_CATCH
1251
1252 return type;
1253 }
1254
1255 /* (lookup-type name [#:block <gdb:block>]) -> <gdb:type>
1256 TODO: legacy template support left out until needed. */
1257
1258 static SCM
1259 gdbscm_lookup_type (SCM name_scm, SCM rest)
1260 {
1261 SCM keywords[] = { block_keyword, SCM_BOOL_F };
1262 char *name;
1263 SCM block_scm = SCM_BOOL_F;
1264 int block_arg_pos = -1;
1265 const struct block *block = NULL;
1266 struct type *type;
1267
1268 gdbscm_parse_function_args (FUNC_NAME, SCM_ARG1, keywords, "s#O",
1269 name_scm, &name,
1270 rest, &block_arg_pos, &block_scm);
1271
1272 if (block_arg_pos != -1)
1273 {
1274 SCM exception;
1275
1276 block = bkscm_scm_to_block (block_scm, block_arg_pos, FUNC_NAME,
1277 &exception);
1278 if (block == NULL)
1279 {
1280 xfree (name);
1281 gdbscm_throw (exception);
1282 }
1283 }
1284 type = tyscm_lookup_typename (name, block);
1285 xfree (name);
1286
1287 if (type != NULL)
1288 return tyscm_scm_from_type (type);
1289 return SCM_BOOL_F;
1290 }
1291 \f
1292 /* Initialize the Scheme type code. */
1293
1294
1295 static const scheme_integer_constant type_integer_constants[] =
1296 {
1297 #define X(SYM) { #SYM, SYM }
1298 X (TYPE_CODE_BITSTRING),
1299 X (TYPE_CODE_PTR),
1300 X (TYPE_CODE_ARRAY),
1301 X (TYPE_CODE_STRUCT),
1302 X (TYPE_CODE_UNION),
1303 X (TYPE_CODE_ENUM),
1304 X (TYPE_CODE_FLAGS),
1305 X (TYPE_CODE_FUNC),
1306 X (TYPE_CODE_INT),
1307 X (TYPE_CODE_FLT),
1308 X (TYPE_CODE_VOID),
1309 X (TYPE_CODE_SET),
1310 X (TYPE_CODE_RANGE),
1311 X (TYPE_CODE_STRING),
1312 X (TYPE_CODE_ERROR),
1313 X (TYPE_CODE_METHOD),
1314 X (TYPE_CODE_METHODPTR),
1315 X (TYPE_CODE_MEMBERPTR),
1316 X (TYPE_CODE_REF),
1317 X (TYPE_CODE_CHAR),
1318 X (TYPE_CODE_BOOL),
1319 X (TYPE_CODE_COMPLEX),
1320 X (TYPE_CODE_TYPEDEF),
1321 X (TYPE_CODE_NAMESPACE),
1322 X (TYPE_CODE_DECFLOAT),
1323 X (TYPE_CODE_INTERNAL_FUNCTION),
1324 #undef X
1325
1326 END_INTEGER_CONSTANTS
1327 };
1328
1329 static const scheme_function type_functions[] =
1330 {
1331 { "type?", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_p),
1332 "\
1333 Return #t if the object is a <gdb:type> object." },
1334
1335 { "lookup-type", 1, 0, 1, as_a_scm_t_subr (gdbscm_lookup_type),
1336 "\
1337 Return the <gdb:type> object representing string or #f if not found.\n\
1338 If block is given then the type is looked for in that block.\n\
1339 \n\
1340 Arguments: string [#:block <gdb:block>]" },
1341
1342 { "type-code", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_code),
1343 "\
1344 Return the code of the type" },
1345
1346 { "type-tag", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_tag),
1347 "\
1348 Return the tag name of the type, or #f if there isn't one." },
1349
1350 { "type-name", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_name),
1351 "\
1352 Return the name of the type as a string, or #f if there isn't one." },
1353
1354 { "type-print-name", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_print_name),
1355 "\
1356 Return the print name of the type as a string." },
1357
1358 { "type-sizeof", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_sizeof),
1359 "\
1360 Return the size of the type, in bytes." },
1361
1362 { "type-strip-typedefs", 1, 0, 0,
1363 as_a_scm_t_subr (gdbscm_type_strip_typedefs),
1364 "\
1365 Return a type formed by stripping the type of all typedefs." },
1366
1367 { "type-array", 2, 1, 0, as_a_scm_t_subr (gdbscm_type_array),
1368 "\
1369 Return a type representing an array of objects of the type.\n\
1370 \n\
1371 Arguments: <gdb:type> [low-bound] high-bound\n\
1372 If low-bound is not provided zero is used.\n\
1373 N.B. If only the high-bound parameter is specified, it is not\n\
1374 the array size.\n\
1375 Valid bounds for array indices are [low-bound,high-bound]." },
1376
1377 { "type-vector", 2, 1, 0, as_a_scm_t_subr (gdbscm_type_vector),
1378 "\
1379 Return a type representing a vector of objects of the type.\n\
1380 Vectors differ from arrays in that if the current language has C-style\n\
1381 arrays, vectors don't decay to a pointer to the first element.\n\
1382 They are first class values.\n\
1383 \n\
1384 Arguments: <gdb:type> [low-bound] high-bound\n\
1385 If low-bound is not provided zero is used.\n\
1386 N.B. If only the high-bound parameter is specified, it is not\n\
1387 the array size.\n\
1388 Valid bounds for array indices are [low-bound,high-bound]." },
1389
1390 { "type-pointer", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_pointer),
1391 "\
1392 Return a type of pointer to the type." },
1393
1394 { "type-range", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_range),
1395 "\
1396 Return (low high) representing the range for the type." },
1397
1398 { "type-reference", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_reference),
1399 "\
1400 Return a type of reference to the type." },
1401
1402 { "type-target", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_target),
1403 "\
1404 Return the target type of the type." },
1405
1406 { "type-const", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_const),
1407 "\
1408 Return a const variant of the type." },
1409
1410 { "type-volatile", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_volatile),
1411 "\
1412 Return a volatile variant of the type." },
1413
1414 { "type-unqualified", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_unqualified),
1415 "\
1416 Return a variant of the type without const or volatile attributes." },
1417
1418 { "type-num-fields", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_num_fields),
1419 "\
1420 Return the number of fields of the type." },
1421
1422 { "type-fields", 1, 0, 0, as_a_scm_t_subr (gdbscm_type_fields),
1423 "\
1424 Return the list of <gdb:field> objects of fields of the type." },
1425
1426 { "make-field-iterator", 1, 0, 0,
1427 as_a_scm_t_subr (gdbscm_make_field_iterator),
1428 "\
1429 Return a <gdb:iterator> object for iterating over the fields of the type." },
1430
1431 { "type-field", 2, 0, 0, as_a_scm_t_subr (gdbscm_type_field),
1432 "\
1433 Return the field named by string of the type.\n\
1434 \n\
1435 Arguments: <gdb:type> string" },
1436
1437 { "type-has-field?", 2, 0, 0, as_a_scm_t_subr (gdbscm_type_has_field_p),
1438 "\
1439 Return #t if the type has field named string.\n\
1440 \n\
1441 Arguments: <gdb:type> string" },
1442
1443 { "field?", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_p),
1444 "\
1445 Return #t if the object is a <gdb:field> object." },
1446
1447 { "field-name", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_name),
1448 "\
1449 Return the name of the field." },
1450
1451 { "field-type", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_type),
1452 "\
1453 Return the type of the field." },
1454
1455 { "field-enumval", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_enumval),
1456 "\
1457 Return the enum value represented by the field." },
1458
1459 { "field-bitpos", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_bitpos),
1460 "\
1461 Return the offset in bits of the field in its containing type." },
1462
1463 { "field-bitsize", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_bitsize),
1464 "\
1465 Return the size of the field in bits." },
1466
1467 { "field-artificial?", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_artificial_p),
1468 "\
1469 Return #t if the field is artificial." },
1470
1471 { "field-baseclass?", 1, 0, 0, as_a_scm_t_subr (gdbscm_field_baseclass_p),
1472 "\
1473 Return #t if the field is a baseclass." },
1474
1475 END_FUNCTIONS
1476 };
1477
1478 void
1479 gdbscm_initialize_types (void)
1480 {
1481 type_smob_tag = gdbscm_make_smob_type (type_smob_name, sizeof (type_smob));
1482 scm_set_smob_free (type_smob_tag, tyscm_free_type_smob);
1483 scm_set_smob_print (type_smob_tag, tyscm_print_type_smob);
1484 scm_set_smob_equalp (type_smob_tag, tyscm_equal_p_type_smob);
1485
1486 field_smob_tag = gdbscm_make_smob_type (field_smob_name,
1487 sizeof (field_smob));
1488 scm_set_smob_print (field_smob_tag, tyscm_print_field_smob);
1489
1490 gdbscm_define_integer_constants (type_integer_constants, 1);
1491 gdbscm_define_functions (type_functions, 1);
1492
1493 /* This function is "private". */
1494 tyscm_next_field_x_proc
1495 = scm_c_define_gsubr ("%type-next-field!", 1, 0, 0,
1496 as_a_scm_t_subr (gdbscm_type_next_field_x));
1497 scm_set_procedure_property_x (tyscm_next_field_x_proc,
1498 gdbscm_documentation_symbol,
1499 gdbscm_scm_from_c_string ("\
1500 Internal function to assist the type fields iterator."));
1501
1502 block_keyword = scm_from_latin1_keyword ("block");
1503
1504 /* Register an objfile "free" callback so we can properly copy types
1505 associated with the objfile when it's about to be deleted. */
1506 tyscm_objfile_data_key
1507 = register_objfile_data_with_cleanup (save_objfile_types, NULL);
1508
1509 global_types_map = gdbscm_create_eqable_gsmob_ptr_map (tyscm_hash_type_smob,
1510 tyscm_eq_type_smob);
1511 }