source: vendor/gcc/3.2.2/libobjc/encoding.c

Last change on this file was 2, checked in by bird, 22 years ago

Initial revision

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  • Property svn:eol-style set to native
  • Property svn:executable set to *
File size: 21.6 KB
Line 
1/* Encoding of types for Objective C.
2 Copyright (C) 1993, 1995, 1996, 1997, 1998, 2000 Free Software Foundation, Inc.
3 Contributed by Kresten Krab Thorup
4 Bitfield support by Ovidiu Predescu
5
6This file is part of GNU CC.
7
8GNU CC is free software; you can redistribute it and/or modify
9it under the terms of the GNU General Public License as published by
10the Free Software Foundation; either version 2, or (at your option)
11any later version.
12
13GNU CC is distributed in the hope that it will be useful,
14but WITHOUT ANY WARRANTY; without even the implied warranty of
15MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16GNU General Public License for more details.
17
18You should have received a copy of the GNU General Public License
19along with GNU CC; see the file COPYING. If not, write to
20the Free Software Foundation, 59 Temple Place - Suite 330,
21Boston, MA 02111-1307, USA. */
22
23/* As a special exception, if you link this library with files
24 compiled with GCC to produce an executable, this does not cause
25 the resulting executable to be covered by the GNU General Public License.
26 This exception does not however invalidate any other reasons why
27 the executable file might be covered by the GNU General Public License. */
28
29#include "tconfig.h"
30#include "objc-api.h"
31#include "encoding.h"
32
33#undef MAX
34#define MAX(X, Y) \
35 ({ typeof(X) __x = (X), __y = (Y); \
36 (__x > __y ? __x : __y); })
37
38#undef MIN
39#define MIN(X, Y) \
40 ({ typeof(X) __x = (X), __y = (Y); \
41 (__x < __y ? __x : __y); })
42
43#undef ROUND
44#define ROUND(V, A) \
45 ({ typeof(V) __v=(V); typeof(A) __a=(A); \
46 __a*((__v+__a-1)/__a); })
47
48
49/* Various hacks for objc_layout_record. These are used by the target
50 macros. */
51
52#define TREE_CODE(TYPE) *(TYPE)
53#define TREE_TYPE(TREE) (TREE)
54
55#define RECORD_TYPE _C_STRUCT_B
56#define UNION_TYPE _C_UNION_B
57#define QUAL_UNION_TYPE _C_UNION_B
58#define ARRAY_TYPE _C_ARY_B
59
60#define REAL_TYPE _C_DBL
61
62#define VECTOR_TYPE _C_VECTOR
63
64#define TYPE_FIELDS(TYPE) objc_skip_typespec (TYPE)
65
66#define DECL_MODE(TYPE) *(TYPE)
67#define TYPE_MODE(TYPE) *(TYPE)
68
69#define DFmode _C_DBL
70
71#define get_inner_array_type(TYPE) ((TYPE) + 1)
72
73/* Some ports (eg ARM) allow the structure size boundary to be
74 selected at compile-time. We override the normal definition with
75 one that has a constant value for this compilation. */
76#undef STRUCTURE_SIZE_BOUNDARY
77#define STRUCTURE_SIZE_BOUNDARY (BITS_PER_UNIT * sizeof (struct{char a;}))
78
79/* Some ROUND_TYPE_ALIGN macros use TARGET_foo, and consequently
80 target_flags. Define a dummy entry here to so we don't die. */
81
82static int target_flags = 0;
83
84static inline int
85atoi (const char* str)
86{
87 int res = 0;
88
89 while (isdigit (*str))
90 res *= 10, res += (*str++ - '0');
91
92 return res;
93}
94
95/*
96 return the size of an object specified by type
97*/
98
99int
100objc_sizeof_type (const char* type)
101{
102 /* Skip the variable name if any */
103 if (*type == '"')
104 {
105 for (type++; *type++ != '"';)
106 /* do nothing */;
107 }
108
109 switch(*type) {
110 case _C_ID:
111 return sizeof(id);
112 break;
113
114 case _C_CLASS:
115 return sizeof(Class);
116 break;
117
118 case _C_SEL:
119 return sizeof(SEL);
120 break;
121
122 case _C_CHR:
123 return sizeof(char);
124 break;
125
126 case _C_UCHR:
127 return sizeof(unsigned char);
128 break;
129
130 case _C_SHT:
131 return sizeof(short);
132 break;
133
134 case _C_USHT:
135 return sizeof(unsigned short);
136 break;
137
138 case _C_INT:
139 return sizeof(int);
140 break;
141
142 case _C_UINT:
143 return sizeof(unsigned int);
144 break;
145
146 case _C_LNG:
147 return sizeof(long);
148 break;
149
150 case _C_ULNG:
151 return sizeof(unsigned long);
152 break;
153
154 case _C_LNG_LNG:
155 return sizeof(long long);
156 break;
157
158 case _C_ULNG_LNG:
159 return sizeof(unsigned long long);
160 break;
161
162 case _C_FLT:
163 return sizeof(float);
164 break;
165
166 case _C_DBL:
167 return sizeof(double);
168 break;
169
170 case _C_VOID:
171 return sizeof(void);
172 break;
173 case _C_PTR:
174 case _C_ATOM:
175 case _C_CHARPTR:
176 return sizeof(char*);
177 break;
178
179 case _C_ARY_B:
180 {
181 int len = atoi(type+1);
182 while (isdigit(*++type));
183 return len*objc_aligned_size (type);
184 }
185 break;
186
187 case _C_BFLD:
188 {
189 /* The new encoding of bitfields is: b 'position' 'type' 'size' */
190 int position, size;
191 int startByte, endByte;
192
193 position = atoi (type + 1);
194 while (isdigit (*++type));
195 size = atoi (type + 1);
196
197 startByte = position / BITS_PER_UNIT;
198 endByte = (position + size) / BITS_PER_UNIT;
199 return endByte - startByte;
200 }
201
202 case _C_STRUCT_B:
203 {
204 struct objc_struct_layout layout;
205 unsigned int size;
206
207 objc_layout_structure (type, &layout);
208 while (objc_layout_structure_next_member (&layout))
209 /* do nothing */ ;
210 objc_layout_finish_structure (&layout, &size, NULL);
211
212 return size;
213 }
214
215 case _C_UNION_B:
216 {
217 int max_size = 0;
218 while (*type != _C_UNION_E && *type++ != '=') /* do nothing */;
219 while (*type != _C_UNION_E)
220 {
221 /* Skip the variable name if any */
222 if (*type == '"')
223 {
224 for (type++; *type++ != '"';)
225 /* do nothing */;
226 }
227 max_size = MAX (max_size, objc_sizeof_type (type));
228 type = objc_skip_typespec (type);
229 }
230 return max_size;
231 }
232
233 default:
234 {
235 objc_error(nil, OBJC_ERR_BAD_TYPE, "unknown type %s\n", type);
236 return 0;
237 }
238 }
239}
240
241
242/*
243 Return the alignment of an object specified by type
244*/
245
246int
247objc_alignof_type(const char* type)
248{
249 /* Skip the variable name if any */
250 if (*type == '"')
251 {
252 for (type++; *type++ != '"';)
253 /* do nothing */;
254 }
255 switch(*type) {
256 case _C_ID:
257 return __alignof__(id);
258 break;
259
260 case _C_CLASS:
261 return __alignof__(Class);
262 break;
263
264 case _C_SEL:
265 return __alignof__(SEL);
266 break;
267
268 case _C_CHR:
269 return __alignof__(char);
270 break;
271
272 case _C_UCHR:
273 return __alignof__(unsigned char);
274 break;
275
276 case _C_SHT:
277 return __alignof__(short);
278 break;
279
280 case _C_USHT:
281 return __alignof__(unsigned short);
282 break;
283
284 case _C_INT:
285 return __alignof__(int);
286 break;
287
288 case _C_UINT:
289 return __alignof__(unsigned int);
290 break;
291
292 case _C_LNG:
293 return __alignof__(long);
294 break;
295
296 case _C_ULNG:
297 return __alignof__(unsigned long);
298 break;
299
300 case _C_LNG_LNG:
301 return __alignof__(long long);
302 break;
303
304 case _C_ULNG_LNG:
305 return __alignof__(unsigned long long);
306 break;
307
308 case _C_FLT:
309 return __alignof__(float);
310 break;
311
312 case _C_DBL:
313 return __alignof__(double);
314 break;
315
316 case _C_PTR:
317 case _C_ATOM:
318 case _C_CHARPTR:
319 return __alignof__(char*);
320 break;
321
322 case _C_ARY_B:
323 while (isdigit(*++type)) /* do nothing */;
324 return objc_alignof_type (type);
325
326 case _C_STRUCT_B:
327 {
328 struct objc_struct_layout layout;
329 unsigned int align;
330
331 objc_layout_structure (type, &layout);
332 while (objc_layout_structure_next_member (&layout))
333 /* do nothing */;
334 objc_layout_finish_structure (&layout, NULL, &align);
335
336 return align;
337 }
338
339 case _C_UNION_B:
340 {
341 int maxalign = 0;
342 while (*type != _C_UNION_E && *type++ != '=') /* do nothing */;
343 while (*type != _C_UNION_E)
344 {
345 /* Skip the variable name if any */
346 if (*type == '"')
347 {
348 for (type++; *type++ != '"';)
349 /* do nothing */;
350 }
351 maxalign = MAX (maxalign, objc_alignof_type (type));
352 type = objc_skip_typespec (type);
353 }
354 return maxalign;
355 }
356
357 default:
358 {
359 objc_error(nil, OBJC_ERR_BAD_TYPE, "unknown type %s\n", type);
360 return 0;
361 }
362 }
363}
364
365/*
366 The aligned size if the size rounded up to the nearest alignment.
367*/
368
369int
370objc_aligned_size (const char* type)
371{
372 int size, align;
373
374 /* Skip the variable name */
375 if (*type == '"')
376 {
377 for (type++; *type++ != '"';)
378 /* do nothing */;
379 }
380
381 size = objc_sizeof_type (type);
382 align = objc_alignof_type (type);
383
384 return ROUND (size, align);
385}
386
387/*
388 The size rounded up to the nearest integral of the wordsize, taken
389 to be the size of a void*.
390*/
391
392int
393objc_promoted_size (const char* type)
394{
395 int size, wordsize;
396
397 /* Skip the variable name */
398 if (*type == '"')
399 {
400 for (type++; *type++ != '"';)
401 /* do nothing */;
402 }
403
404 size = objc_sizeof_type (type);
405 wordsize = sizeof (void*);
406
407 return ROUND (size, wordsize);
408}
409
410/*
411 Skip type qualifiers. These may eventually precede typespecs
412 occurring in method prototype encodings.
413*/
414
415inline const char*
416objc_skip_type_qualifiers (const char* type)
417{
418 while (*type == _C_CONST
419 || *type == _C_IN
420 || *type == _C_INOUT
421 || *type == _C_OUT
422 || *type == _C_BYCOPY
423 || *type == _C_BYREF
424 || *type == _C_ONEWAY
425 || *type == _C_GCINVISIBLE)
426 {
427 type += 1;
428 }
429 return type;
430}
431
432
433/*
434 Skip one typespec element. If the typespec is prepended by type
435 qualifiers, these are skipped as well.
436*/
437
438const char*
439objc_skip_typespec (const char* type)
440{
441 /* Skip the variable name if any */
442 if (*type == '"')
443 {
444 for (type++; *type++ != '"';)
445 /* do nothing */;
446 }
447
448 type = objc_skip_type_qualifiers (type);
449
450 switch (*type) {
451
452 case _C_ID:
453 /* An id may be annotated by the actual type if it is known
454 with the @"ClassName" syntax */
455
456 if (*++type != '"')
457 return type;
458 else
459 {
460 while (*++type != '"') /* do nothing */;
461 return type + 1;
462 }
463
464 /* The following are one character type codes */
465 case _C_CLASS:
466 case _C_SEL:
467 case _C_CHR:
468 case _C_UCHR:
469 case _C_CHARPTR:
470 case _C_ATOM:
471 case _C_SHT:
472 case _C_USHT:
473 case _C_INT:
474 case _C_UINT:
475 case _C_LNG:
476 case _C_ULNG:
477 case _C_LNG_LNG:
478 case _C_ULNG_LNG:
479 case _C_FLT:
480 case _C_DBL:
481 case _C_VOID:
482 case _C_UNDEF:
483 return ++type;
484 break;
485
486 case _C_ARY_B:
487 /* skip digits, typespec and closing ']' */
488
489 while(isdigit(*++type));
490 type = objc_skip_typespec(type);
491 if (*type == _C_ARY_E)
492 return ++type;
493 else
494 {
495 objc_error(nil, OBJC_ERR_BAD_TYPE, "bad array type %s\n", type);
496 return 0;
497 }
498
499 case _C_BFLD:
500 /* The new encoding of bitfields is: b 'position' 'type' 'size' */
501 while (isdigit (*++type)); /* skip position */
502 while (isdigit (*++type)); /* skip type and size */
503 return type;
504
505 case _C_STRUCT_B:
506 /* skip name, and elements until closing '}' */
507
508 while (*type != _C_STRUCT_E && *type++ != '=');
509 while (*type != _C_STRUCT_E) { type = objc_skip_typespec (type); }
510 return ++type;
511
512 case _C_UNION_B:
513 /* skip name, and elements until closing ')' */
514
515 while (*type != _C_UNION_E && *type++ != '=');
516 while (*type != _C_UNION_E) { type = objc_skip_typespec (type); }
517 return ++type;
518
519 case _C_PTR:
520 /* Just skip the following typespec */
521
522 return objc_skip_typespec (++type);
523
524 default:
525 {
526 objc_error(nil, OBJC_ERR_BAD_TYPE, "unknown type %s\n", type);
527 return 0;
528 }
529 }
530}
531
532/*
533 Skip an offset as part of a method encoding. This is prepended by a
534 '+' if the argument is passed in registers.
535*/
536inline const char*
537objc_skip_offset (const char* type)
538{
539 if (*type == '+') type++;
540 while(isdigit(*++type));
541 return type;
542}
543
544/*
545 Skip an argument specification of a method encoding.
546*/
547const char*
548objc_skip_argspec (const char* type)
549{
550 type = objc_skip_typespec (type);
551 type = objc_skip_offset (type);
552 return type;
553}
554
555/*
556 Return the number of arguments that the method MTH expects.
557 Note that all methods need two implicit arguments `self' and
558 `_cmd'.
559*/
560int
561method_get_number_of_arguments (struct objc_method* mth)
562{
563 int i = 0;
564 const char* type = mth->method_types;
565 while (*type)
566 {
567 type = objc_skip_argspec (type);
568 i += 1;
569 }
570 return i - 1;
571}
572
573/*
574 Return the size of the argument block needed on the stack to invoke
575 the method MTH. This may be zero, if all arguments are passed in
576 registers.
577*/
578
579int
580method_get_sizeof_arguments (struct objc_method* mth)
581{
582 const char* type = objc_skip_typespec (mth->method_types);
583 return atoi (type);
584}
585
586/*
587 Return a pointer to the next argument of ARGFRAME. type points to
588 the last argument. Typical use of this look like:
589
590 {
591 char *datum, *type;
592 for (datum = method_get_first_argument (method, argframe, &type);
593 datum; datum = method_get_next_argument (argframe, &type))
594 {
595 unsigned flags = objc_get_type_qualifiers (type);
596 type = objc_skip_type_qualifiers (type);
597 if (*type != _C_PTR)
598 [portal encodeData: datum ofType: type];
599 else
600 {
601 if ((flags & _F_IN) == _F_IN)
602 [portal encodeData: *(char**)datum ofType: ++type];
603 }
604 }
605 }
606*/
607
608char*
609method_get_next_argument (arglist_t argframe,
610 const char **type)
611{
612 const char *t = objc_skip_argspec (*type);
613
614 if (*t == '\0')
615 return 0;
616
617 *type = t;
618 t = objc_skip_typespec (t);
619
620 if (*t == '+')
621 return argframe->arg_regs + atoi (++t);
622 else
623 return argframe->arg_ptr + atoi (t);
624}
625
626/*
627 Return a pointer to the value of the first argument of the method
628 described in M with the given argumentframe ARGFRAME. The type
629 is returned in TYPE. type must be passed to successive calls of
630 method_get_next_argument.
631*/
632char*
633method_get_first_argument (struct objc_method* m,
634 arglist_t argframe,
635 const char** type)
636{
637 *type = m->method_types;
638 return method_get_next_argument (argframe, type);
639}
640
641/*
642 Return a pointer to the ARGth argument of the method
643 M from the frame ARGFRAME. The type of the argument
644 is returned in the value-result argument TYPE
645*/
646
647char*
648method_get_nth_argument (struct objc_method* m,
649 arglist_t argframe, int arg,
650 const char **type)
651{
652 const char* t = objc_skip_argspec (m->method_types);
653
654 if (arg > method_get_number_of_arguments (m))
655 return 0;
656
657 while (arg--)
658 t = objc_skip_argspec (t);
659
660 *type = t;
661 t = objc_skip_typespec (t);
662
663 if (*t == '+')
664 return argframe->arg_regs + atoi (++t);
665 else
666 return argframe->arg_ptr + atoi (t);
667}
668
669unsigned
670objc_get_type_qualifiers (const char* type)
671{
672 unsigned res = 0;
673 BOOL flag = YES;
674
675 while (flag)
676 switch (*type++)
677 {
678 case _C_CONST: res |= _F_CONST; break;
679 case _C_IN: res |= _F_IN; break;
680 case _C_INOUT: res |= _F_INOUT; break;
681 case _C_OUT: res |= _F_OUT; break;
682 case _C_BYCOPY: res |= _F_BYCOPY; break;
683 case _C_BYREF: res |= _F_BYREF; break;
684 case _C_ONEWAY: res |= _F_ONEWAY; break;
685 case _C_GCINVISIBLE: res |= _F_GCINVISIBLE; break;
686 default: flag = NO;
687 }
688
689 return res;
690}
691
692
693/* The following three functions can be used to determine how a
694 structure is laid out by the compiler. For example:
695
696 struct objc_struct_layout layout;
697 int i;
698
699 objc_layout_structure (type, &layout);
700 while (objc_layout_structure_next_member (&layout))
701 {
702 int position, align;
703 const char *type;
704
705 objc_layout_structure_get_info (&layout, &position, &align, &type);
706 printf ("element %d has offset %d, alignment %d\n",
707 i++, position, align);
708 }
709
710 These functions are used by objc_sizeof_type and objc_alignof_type
711 functions to compute the size and alignment of structures. The
712 previous method of computing the size and alignment of a structure
713 was not working on some architectures, particulary on AIX, and in
714 the presence of bitfields inside the structure. */
715void
716objc_layout_structure (const char *type,
717 struct objc_struct_layout *layout)
718{
719 const char *ntype;
720
721 if (*type++ != _C_STRUCT_B)
722 {
723 objc_error(nil, OBJC_ERR_BAD_TYPE,
724 "record type expected in objc_layout_structure, got %s\n",
725 type);
726 }
727
728 layout->original_type = type;
729
730 /* Skip "<name>=" if any. Avoid embedded structures and unions. */
731 ntype = type;
732 while (*ntype != _C_STRUCT_E && *ntype != _C_STRUCT_B && *ntype != _C_UNION_B
733 && *ntype++ != '=')
734 /* do nothing */;
735
736 /* If there's a "<name>=", ntype - 1 points to '='; skip the the name */
737 if (*(ntype - 1) == '=')
738 type = ntype;
739
740 layout->type = type;
741 layout->prev_type = NULL;
742 layout->record_size = 0;
743 layout->record_align = BITS_PER_UNIT;
744
745 layout->record_align = MAX (layout->record_align, STRUCTURE_SIZE_BOUNDARY);
746}
747
748
749BOOL
750objc_layout_structure_next_member (struct objc_struct_layout *layout)
751{
752 register int known_align = layout->record_size;
753 register int desired_align = 0;
754
755 /* The following are used only if the field is a bitfield */
756 register const char *bfld_type;
757 register int bfld_type_size, bfld_type_align, bfld_field_size;
758
759 /* The current type without the type qualifiers */
760 const char *type;
761
762 /* Add the size of the previous field to the size of the record. */
763 if (layout->prev_type)
764 {
765 type = objc_skip_type_qualifiers (layout->prev_type);
766
767 if (*type != _C_BFLD)
768 layout->record_size += objc_sizeof_type (type) * BITS_PER_UNIT;
769 else {
770 /* Get the bitfield's type */
771 for (bfld_type = type + 1;
772 isdigit(*bfld_type);
773 bfld_type++)
774 /* do nothing */;
775
776 bfld_type_size = objc_sizeof_type (bfld_type) * BITS_PER_UNIT;
777 bfld_type_align = objc_alignof_type (bfld_type) * BITS_PER_UNIT;
778 bfld_field_size = atoi (objc_skip_typespec (bfld_type));
779 layout->record_size += bfld_field_size;
780 }
781 }
782
783 if (*layout->type == _C_STRUCT_E)
784 return NO;
785
786 /* Skip the variable name if any */
787 if (*layout->type == '"')
788 {
789 for (layout->type++; *layout->type++ != '"';)
790 /* do nothing */;
791 }
792
793 type = objc_skip_type_qualifiers (layout->type);
794
795 if (*type != _C_BFLD)
796 desired_align = objc_alignof_type(type) * BITS_PER_UNIT;
797 else
798 {
799 desired_align = 1;
800 /* Skip the bitfield's offset */
801 for (bfld_type = type + 1; isdigit(*bfld_type); bfld_type++)
802 /* do nothing */;
803
804 bfld_type_size = objc_sizeof_type (bfld_type) * BITS_PER_UNIT;
805 bfld_type_align = objc_alignof_type (bfld_type) * BITS_PER_UNIT;
806 bfld_field_size = atoi (objc_skip_typespec (bfld_type));
807 }
808
809#ifdef BIGGEST_FIELD_ALIGNMENT
810 desired_align = MIN (desired_align, BIGGEST_FIELD_ALIGNMENT);
811#endif
812#ifdef ADJUST_FIELD_ALIGN
813 desired_align = ADJUST_FIELD_ALIGN (type, desired_align);
814#endif
815
816 /* Record must have at least as much alignment as any field.
817 Otherwise, the alignment of the field within the record
818 is meaningless. */
819#ifndef PCC_BITFIELD_TYPE_MATTERS
820 layout->record_align = MAX (layout->record_align, desired_align);
821#else
822 if (*type == _C_BFLD)
823 {
824 /* For these machines, a zero-length field does not
825 affect the alignment of the structure as a whole.
826 It does, however, affect the alignment of the next field
827 within the structure. */
828 if (bfld_field_size)
829 layout->record_align = MAX (layout->record_align, desired_align);
830 else
831 desired_align = objc_alignof_type (bfld_type) * BITS_PER_UNIT;
832
833 /* A named bit field of declared type `int'
834 forces the entire structure to have `int' alignment.
835 Q1: How is encoded this thing and how to check for it?
836 Q2: How to determine maximum_field_alignment at runtime? */
837
838/* if (DECL_NAME (field) != 0) */
839 {
840 int type_align = bfld_type_align;
841#if 0
842 if (maximum_field_alignment != 0)
843 type_align = MIN (type_align, maximum_field_alignment);
844 else if (DECL_PACKED (field))
845 type_align = MIN (type_align, BITS_PER_UNIT);
846#endif
847
848 layout->record_align = MAX (layout->record_align, type_align);
849 }
850 }
851 else
852 layout->record_align = MAX (layout->record_align, desired_align);
853#endif
854
855 /* Does this field automatically have alignment it needs
856 by virtue of the fields that precede it and the record's
857 own alignment? */
858
859 if (*type == _C_BFLD)
860 layout->record_size = atoi (type + 1);
861 else if (layout->record_size % desired_align != 0)
862 {
863 /* No, we need to skip space before this field.
864 Bump the cumulative size to multiple of field alignment. */
865 layout->record_size = ROUND (layout->record_size, desired_align);
866 }
867
868 /* Jump to the next field in record. */
869
870 layout->prev_type = layout->type;
871 layout->type = objc_skip_typespec (layout->type); /* skip component */
872
873 return YES;
874}
875
876
877void objc_layout_finish_structure (struct objc_struct_layout *layout,
878 unsigned int *size,
879 unsigned int *align)
880{
881 if (layout->type && *layout->type == _C_STRUCT_E)
882 {
883 /* Work out the alignment of the record as one expression and store
884 in the record type. Round it up to a multiple of the record's
885 alignment. */
886
887#if defined(ROUND_TYPE_ALIGN) && !defined(__sparc__)
888 layout->record_align = ROUND_TYPE_ALIGN (layout->original_type,
889 1,
890 layout->record_align);
891#else
892 layout->record_align = MAX (1, layout->record_align);
893#endif
894
895#ifdef ROUND_TYPE_SIZE
896 layout->record_size = ROUND_TYPE_SIZE (layout->original_type,
897 layout->record_size,
898 layout->record_align);
899#else
900 /* Round the size up to be a multiple of the required alignment */
901 layout->record_size = ROUND (layout->record_size, layout->record_align);
902#endif
903
904 layout->type = NULL;
905 }
906 if (size)
907 *size = layout->record_size / BITS_PER_UNIT;
908 if (align)
909 *align = layout->record_align / BITS_PER_UNIT;
910}
911
912
913void objc_layout_structure_get_info (struct objc_struct_layout *layout,
914 unsigned int *offset,
915 unsigned int *align,
916 const char **type)
917{
918 if (offset)
919 *offset = layout->record_size / BITS_PER_UNIT;
920 if (align)
921 *align = layout->record_align / BITS_PER_UNIT;
922 if (type)
923 *type = layout->prev_type;
924}
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