[PATCH] de-anonymize typedefs
[smatch.git] / symbol.c
blob42a282fd35d1714807628c09d355c3e3a9877e85
1 /*
2 * Symbol lookup and handling.
4 * Copyright (C) 2003 Transmeta Corp.
5 * 2003-2004 Linus Torvalds
7 * Licensed under the Open Software License version 1.1
8 */
9 #include <stdlib.h>
10 #include <stdio.h>
11 #include <stdlib.h>
12 #include <string.h>
14 #include "lib.h"
15 #include "allocate.h"
16 #include "token.h"
17 #include "parse.h"
18 #include "symbol.h"
19 #include "scope.h"
20 #include "expression.h"
22 #include "target.h"
25 * Secondary symbol list for stuff that needs to be output because it
26 * was used.
28 struct symbol_list *translation_unit_used_list = NULL;
31 * If the symbol is an inline symbol, add it to the list of symbols to parse
33 void access_symbol(struct symbol *sym)
35 if (sym->ctype.modifiers & MOD_INLINE) {
36 if (!(sym->ctype.modifiers & MOD_ACCESSED)) {
37 add_symbol(&translation_unit_used_list, sym);
38 sym->ctype.modifiers |= MOD_ACCESSED;
43 struct symbol *lookup_symbol(struct ident *ident, enum namespace ns)
45 struct symbol *sym;
47 for (sym = ident->symbols; sym; sym = sym->next_id) {
48 if (sym->namespace & ns) {
49 sym->used = 1;
50 return sym;
53 return sym;
56 struct symbol *alloc_symbol(struct position pos, int type)
58 struct symbol *sym = __alloc_symbol(0);
59 sym->type = type;
60 sym->pos = pos;
61 return sym;
64 struct struct_union_info {
65 unsigned long max_align;
66 unsigned long bit_size;
67 int align_size;
71 * Unions are fairly easy to lay out ;)
73 static void lay_out_union(struct symbol *sym, struct struct_union_info *info)
75 examine_symbol_type(sym);
77 // Unnamed bitfields do not affect alignment.
78 if (sym->ident || !is_bitfield_type(sym)) {
79 if (sym->ctype.alignment > info->max_align)
80 info->max_align = sym->ctype.alignment;
83 if (sym->bit_size > info->bit_size)
84 info->bit_size = sym->bit_size;
86 sym->offset = 0;
89 static int bitfield_base_size(struct symbol *sym)
91 if (sym->type == SYM_NODE)
92 sym = sym->ctype.base_type;
93 if (sym->type == SYM_BITFIELD)
94 sym = sym->ctype.base_type;
95 return sym->bit_size;
99 * Structures are a bit more interesting to lay out
101 static void lay_out_struct(struct symbol *sym, struct struct_union_info *info)
103 unsigned long bit_size, align_bit_mask;
104 int base_size;
106 examine_symbol_type(sym);
108 // Unnamed bitfields do not affect alignment.
109 if (sym->ident || !is_bitfield_type(sym)) {
110 if (sym->ctype.alignment > info->max_align)
111 info->max_align = sym->ctype.alignment;
114 bit_size = info->bit_size;
115 base_size = sym->bit_size;
118 * Unsized arrays cause us to not align the resulting
119 * structure size
121 if (base_size < 0) {
122 info->align_size = 0;
123 base_size = 0;
126 align_bit_mask = (sym->ctype.alignment << 3) - 1;
129 * Bitfields have some very special rules..
131 if (is_bitfield_type (sym)) {
132 unsigned long bit_offset = bit_size & align_bit_mask;
133 int room = bitfield_base_size(sym) - bit_offset;
134 // Zero-width fields just fill up the unit.
135 int width = base_size ? : (bit_offset ? room : 0);
137 if (width > room) {
138 bit_size = (bit_size + align_bit_mask) & ~align_bit_mask;
139 bit_offset = 0;
141 sym->offset = (bit_size - bit_offset) >> 3;
142 sym->bit_offset = bit_offset;
143 sym->ctype.base_type->bit_offset = bit_offset;
144 info->bit_size = bit_size + width;
145 // warning (sym->pos, "bitfield: offset=%d:%d size=:%d", sym->offset, sym->bit_offset, width);
147 return;
151 * Otherwise, just align it right and add it up..
153 bit_size = (bit_size + align_bit_mask) & ~align_bit_mask;
154 sym->offset = bit_size >> 3;
156 info->bit_size = bit_size + base_size;
157 // warning (sym->pos, "regular: offset=%d", sym->offset);
160 static struct symbol * examine_struct_union_type(struct symbol *sym, int advance)
162 struct struct_union_info info = {
163 .max_align = 1,
164 .bit_size = 0,
165 .align_size = 1
167 unsigned long bit_size, bit_align;
168 void (*fn)(struct symbol *, struct struct_union_info *);
169 struct symbol *member;
171 fn = advance ? lay_out_struct : lay_out_union;
172 FOR_EACH_PTR(sym->symbol_list, member) {
173 fn(member, &info);
174 } END_FOR_EACH_PTR(member);
176 if (!sym->ctype.alignment)
177 sym->ctype.alignment = info.max_align;
178 bit_size = info.bit_size;
179 if (info.align_size) {
180 bit_align = (sym->ctype.alignment << 3)-1;
181 bit_size = (bit_size + bit_align) & ~bit_align;
183 sym->bit_size = bit_size;
184 return sym;
187 static struct symbol *examine_base_type(struct symbol *sym)
189 struct symbol *base_type;
191 /* Check the basetype */
192 base_type = sym->ctype.base_type;
193 if (base_type) {
194 base_type = examine_symbol_type(base_type);
196 /* "typeof" can cause this */
197 if (base_type && base_type->type == SYM_NODE)
198 merge_type(sym, base_type);
200 return base_type;
203 static struct symbol * examine_array_type(struct symbol *sym)
205 struct symbol *base_type = examine_base_type(sym);
206 unsigned long bit_size, alignment;
208 if (!base_type)
209 return sym;
210 bit_size = base_type->bit_size * get_expression_value(sym->array_size);
211 if (!sym->array_size || sym->array_size->type != EXPR_VALUE)
212 bit_size = -1;
213 alignment = base_type->ctype.alignment;
214 if (!sym->ctype.alignment)
215 sym->ctype.alignment = alignment;
216 sym->bit_size = bit_size;
217 return sym;
220 static struct symbol *examine_bitfield_type(struct symbol *sym)
222 struct symbol *base_type = examine_base_type(sym);
223 unsigned long bit_size, alignment, modifiers;
225 if (!base_type)
226 return sym;
227 bit_size = base_type->bit_size;
228 if (sym->bit_size > bit_size)
229 warning(sym->pos, "impossible field-width, %d, for this type", sym->bit_size);
231 alignment = base_type->ctype.alignment;
232 if (!sym->ctype.alignment)
233 sym->ctype.alignment = alignment;
234 modifiers = base_type->ctype.modifiers;
236 /* Bitfields are unsigned, unless the base type was explicitly signed */
237 if (!(modifiers & MOD_EXPLICITLY_SIGNED))
238 modifiers = (modifiers & ~MOD_SIGNED) | MOD_UNSIGNED;
239 sym->ctype.modifiers |= modifiers & MOD_SIGNEDNESS;
240 return sym;
244 * "typeof" will have to merge the types together
246 void merge_type(struct symbol *sym, struct symbol *base_type)
248 sym->ctype.as |= base_type->ctype.as;
249 sym->ctype.modifiers |= (base_type->ctype.modifiers & ~MOD_STORAGE);
250 sym->ctype.in_context += base_type->ctype.in_context;
251 sym->ctype.out_context += base_type->ctype.out_context;
252 sym->ctype.base_type = base_type->ctype.base_type;
255 static int count_array_initializer(struct expression *expr)
257 int nr = 0;
259 switch (expr->type) {
260 case EXPR_STRING:
261 nr = expr->string->length;
262 break;
263 case EXPR_INITIALIZER: {
264 struct expression *entry;
265 FOR_EACH_PTR(expr->expr_list, entry) {
266 switch (entry->type) {
267 case EXPR_STRING:
268 nr += entry->string->length;
269 break;
270 case EXPR_INDEX:
271 if (entry->idx_to >= nr)
272 nr = entry->idx_to+1;
273 break;
274 default:
275 nr++;
277 } END_FOR_EACH_PTR(entry);
278 break;
280 default:
281 break;
283 return nr;
286 static struct symbol * examine_node_type(struct symbol *sym)
288 struct symbol *base_type = examine_base_type(sym);
289 int bit_size;
290 unsigned long alignment, modifiers;
292 /* SYM_NODE - figure out what the type of the node was.. */
293 modifiers = sym->ctype.modifiers;
295 bit_size = 0;
296 alignment = 0;
297 if (!base_type)
298 return sym;
300 bit_size = base_type->bit_size;
301 alignment = base_type->ctype.alignment;
303 /* Pick up signedness information into the node */
304 sym->ctype.modifiers |= (MOD_SIGNEDNESS & base_type->ctype.modifiers);
306 if (!sym->ctype.alignment)
307 sym->ctype.alignment = alignment;
309 /* Unsized array? The size might come from the initializer.. */
310 if (bit_size < 0 && base_type->type == SYM_ARRAY && sym->initializer) {
311 int count = count_array_initializer(sym->initializer);
312 struct symbol *node_type = base_type->ctype.base_type;
314 if (node_type && node_type->bit_size >= 0)
315 bit_size = node_type->bit_size * count;
318 sym->bit_size = bit_size;
319 return sym;
322 static struct symbol *examine_enum_type(struct symbol *sym)
324 struct symbol *base_type = examine_base_type(sym);
326 if (!base_type || base_type == &bad_ctype) {
327 warning(sym->pos, "invalid enum type");
328 sym->bit_size = -1;
329 return sym;
331 sym->ctype.modifiers |= (base_type->ctype.modifiers & MOD_SIGNEDNESS);
332 sym->bit_size = bits_in_enum;
333 if (base_type->bit_size > sym->bit_size)
334 sym->bit_size = base_type->bit_size;
335 sym->ctype.alignment = enum_alignment;
336 if (base_type->ctype.alignment > sym->ctype.alignment)
337 sym->ctype.alignment = base_type->ctype.alignment;
338 return sym;
341 static struct symbol *examine_pointer_type(struct symbol *sym)
344 * We need to set the pointer size first, and
345 * examine the thing we point to only afterwards.
346 * That's because this pointer type may end up
347 * being needed for the base type size evalutation.
349 if (!sym->bit_size)
350 sym->bit_size = bits_in_pointer;
351 if (!sym->ctype.alignment)
352 sym->ctype.alignment = pointer_alignment;
353 return sym;
357 * Fill in type size and alignment information for
358 * regular SYM_TYPE things.
360 struct symbol *examine_symbol_type(struct symbol * sym)
362 if (!sym)
363 return sym;
365 /* Already done? */
366 if (sym->examined)
367 return sym;
368 sym->examined = 1;
370 switch (sym->type) {
371 case SYM_FN:
372 case SYM_NODE:
373 return examine_node_type(sym);
374 case SYM_ARRAY:
375 return examine_array_type(sym);
376 case SYM_STRUCT:
377 return examine_struct_union_type(sym, 1);
378 case SYM_UNION:
379 return examine_struct_union_type(sym, 0);
380 case SYM_PTR:
381 return examine_pointer_type(sym);
382 case SYM_ENUM:
383 return examine_enum_type(sym);
384 case SYM_BITFIELD:
385 return examine_bitfield_type(sym);
386 case SYM_BASETYPE:
387 /* Size and alignment had better already be set up */
388 return sym;
389 case SYM_TYPEOF: {
390 struct symbol *base = evaluate_expression(sym->initializer);
391 if (base) {
392 if (is_bitfield_type(base))
393 warning(base->pos, "typeof applied to bitfield type");
394 if (base->type == SYM_NODE)
395 base = base->ctype.base_type;
396 *sym = *base;
397 break;
399 break;
401 case SYM_PREPROCESSOR:
402 warning(sym->pos, "ctype on preprocessor command? (%s)", show_ident(sym->ident));
403 return NULL;
404 case SYM_UNINITIALIZED:
405 warning(sym->pos, "ctype on uninitialized symbol %p", sym);
406 return NULL;
407 case SYM_RESTRICT:
408 examine_base_type(sym);
409 return sym;
410 default:
411 warning(sym->pos, "Examining unknown symbol type %d", sym->type);
412 break;
414 return sym;
417 void check_declaration(struct symbol *sym)
419 struct symbol *next = sym;
421 while ((next = next->next_id) != NULL) {
422 if (next->namespace != sym->namespace)
423 continue;
424 if (sym->scope == next->scope) {
425 sym->same_symbol = next;
426 return;
428 if (sym->ctype.modifiers & next->ctype.modifiers & MOD_EXTERN) {
429 sym->same_symbol = next;
430 return;
432 #if 0
433 // This may make sense from a warning standpoint:
434 // consider top-level symbols to clash with everything
435 // (but the scoping rules will mean that we actually
436 // _use_ the innermost version)
437 if (toplevel(next->scope)) {
438 sym->same_symbol = next;
439 return;
441 #endif
445 void bind_symbol(struct symbol *sym, struct ident *ident, enum namespace ns)
447 struct scope *scope;
448 if (sym->id_list) {
449 warning(sym->pos, "internal error: symbol type already bound");
450 return;
452 if (ident->reserved && (ns & (NS_TYPEDEF | NS_STRUCT | NS_LABEL | NS_SYMBOL))) {
453 warning(sym->pos, "Trying to use reserved word '%s' as identifier", show_ident(ident));
454 return;
456 sym->namespace = ns;
457 sym->next_id = ident->symbols;
458 ident->symbols = sym;
459 sym->id_list = &ident->symbols;
460 if (sym->ident && sym->ident != ident)
461 warning(sym->pos, "Symbol '%s' already bound", show_ident(sym->ident));
462 sym->ident = ident;
464 scope = block_scope;
465 if (ns == NS_SYMBOL && toplevel(scope)) {
466 unsigned mod = MOD_ADDRESSABLE | MOD_TOPLEVEL;
467 scope = global_scope;
468 if (sym->ctype.modifiers & MOD_STATIC) {
469 scope = file_scope;
470 mod = MOD_TOPLEVEL;
472 sym->ctype.modifiers |= mod;
474 if (ns == NS_MACRO)
475 scope = file_scope;
476 if (ns == NS_LABEL)
477 scope = function_scope;
478 bind_scope(sym, scope);
481 struct symbol *create_symbol(int stream, const char *name, int type, int namespace)
483 struct token *token = built_in_token(stream, name);
484 struct symbol *sym = alloc_symbol(token->pos, type);
486 bind_symbol(sym, token->ident, namespace);
487 return sym;
490 static int evaluate_to_integer(struct expression *expr)
492 expr->ctype = &int_ctype;
493 return 1;
496 static int evaluate_expect(struct expression *expr)
498 /* Should we evaluate it to return the type of the first argument? */
499 expr->ctype = &int_ctype;
500 return 1;
503 static int expand_expect(struct expression *expr, int cost)
505 struct expression *arg = first_ptr_list((struct ptr_list *) expr->args);
507 if (arg)
508 *expr = *arg;
509 return 0;
513 * __builtin_warning() has type "int" and always returns 1,
514 * so that you can use it in conditionals or whatever
516 static int expand_warning(struct expression *expr, int cost)
518 struct expression *arg;
519 struct expression_list *arglist = expr->args;
521 FOR_EACH_PTR (arglist, arg) {
523 * Constant strings get printed out as a warning. By the
524 * time we get here, the EXPR_STRING has been fully
525 * evaluated, so by now it's an anonymous symbol with a
526 * string initializer.
528 * Just for the heck of it, allow any constant string
529 * symbol.
531 if (arg->type == EXPR_SYMBOL) {
532 struct symbol *sym = arg->symbol;
533 if (sym->initializer && sym->initializer->type == EXPR_STRING) {
534 struct string *string = sym->initializer->string;
535 warning(expr->pos, "%*s", string->length-1, string->data);
537 continue;
541 * Any other argument is a conditional. If it's
542 * non-constant, or it is false, we exit and do
543 * not print any warning.
545 if (arg->type != EXPR_VALUE)
546 goto out;
547 if (!arg->value)
548 goto out;
549 } END_FOR_EACH_PTR(arg);
550 out:
551 expr->type = EXPR_VALUE;
552 expr->value = 1;
553 return 0;
557 * Type and storage class keywords need to have the symbols
558 * created for them, so that the parser can have enough semantic
559 * information to do parsing.
561 * "double" == "long float", "long double" == "long long float"
563 static struct sym_init {
564 const char *name;
565 struct symbol *base_type;
566 unsigned int modifiers;
567 struct symbol_op *op;
568 } symbol_init_table[] = {
569 /* Storage class */
570 { "auto", NULL, MOD_AUTO },
571 { "register", NULL, MOD_REGISTER },
572 { "static", NULL, MOD_STATIC },
573 { "extern", NULL, MOD_EXTERN },
575 /* Type specifiers */
576 { "void", &void_ctype, 0 },
577 { "char", NULL, MOD_CHAR },
578 { "short", NULL, MOD_SHORT },
579 { "int", &int_type, 0 },
580 { "long", NULL, MOD_LONG },
581 { "float", &fp_type, 0 },
582 { "double", &fp_type, MOD_LONG },
583 { "signed", NULL, MOD_SIGNED | MOD_EXPLICITLY_SIGNED },
584 { "__signed", NULL, MOD_SIGNED | MOD_EXPLICITLY_SIGNED },
585 { "__signed__", NULL, MOD_SIGNED | MOD_EXPLICITLY_SIGNED },
586 { "unsigned", NULL, MOD_UNSIGNED },
587 { "__label__", &label_ctype, MOD_LABEL | MOD_UNSIGNED },
588 { "_Bool", &bool_ctype, MOD_UNSIGNED },
590 /* Type qualifiers */
591 { "const", NULL, MOD_CONST },
592 { "__const", NULL, MOD_CONST },
593 { "__const__", NULL, MOD_CONST },
594 { "volatile", NULL, MOD_VOLATILE },
595 { "__volatile", NULL, MOD_VOLATILE },
596 { "__volatile__", NULL, MOD_VOLATILE },
598 /* Predeclared types */
599 { "__builtin_va_list", &int_type, 0 },
601 /* Typedef.. */
602 { "typedef", NULL, MOD_TYPEDEF },
604 /* Extended types */
605 { "typeof", NULL, MOD_TYPEOF },
606 { "__typeof", NULL, MOD_TYPEOF },
607 { "__typeof__", NULL, MOD_TYPEOF },
609 #if 0
610 { "attribute", NULL, MOD_ATTRIBUTE },
611 #endif
612 { "__attribute", NULL, MOD_ATTRIBUTE },
613 { "__attribute__", NULL, MOD_ATTRIBUTE },
615 { "struct", NULL, MOD_STRUCTOF },
616 { "union", NULL, MOD_UNIONOF },
617 { "enum", NULL, MOD_ENUMOF },
619 { "inline", NULL, MOD_INLINE },
620 { "__inline", NULL, MOD_INLINE },
621 { "__inline__", NULL, MOD_INLINE },
623 /* Ignored for now.. */
624 { "restrict", NULL, 0 },
625 { "__restrict", NULL, 0 },
627 { NULL, NULL, 0 }
630 static struct symbol_op constant_p_op = {
631 .evaluate = evaluate_to_integer,
632 .expand = expand_constant_p
635 static struct symbol_op safe_p_op = {
636 .evaluate = evaluate_to_integer,
637 .expand = expand_safe_p
640 static struct symbol_op warning_op = {
641 .evaluate = evaluate_to_integer,
642 .expand = expand_warning
645 static struct symbol_op expect_op = {
646 .evaluate = evaluate_expect,
647 .expand = expand_expect
651 * Builtin functions
653 static struct symbol builtin_fn_type = { .type = SYM_FN /* , .variadic =1 */ };
654 static struct sym_init eval_init_table[] = {
655 { "__builtin_constant_p", &builtin_fn_type, MOD_TOPLEVEL, &constant_p_op },
656 { "__builtin_safe_p", &builtin_fn_type, MOD_TOPLEVEL, &safe_p_op },
657 { "__builtin_warning", &builtin_fn_type, MOD_TOPLEVEL, &warning_op },
658 { "__builtin_expect", &builtin_fn_type, MOD_TOPLEVEL, &expect_op },
659 { NULL, NULL, 0 }
664 * Abstract types
666 struct symbol int_type,
667 fp_type;
670 * C types (ie actual instances that the abstract types
671 * can map onto)
673 struct symbol bool_ctype, void_ctype, type_ctype,
674 char_ctype, schar_ctype, uchar_ctype,
675 short_ctype, sshort_ctype, ushort_ctype,
676 int_ctype, sint_ctype, uint_ctype,
677 long_ctype, slong_ctype, ulong_ctype,
678 llong_ctype, sllong_ctype, ullong_ctype,
679 float_ctype, double_ctype, ldouble_ctype,
680 string_ctype, ptr_ctype, lazy_ptr_ctype,
681 incomplete_ctype, label_ctype, bad_ctype;
684 #define __INIT_IDENT(str, res) { .len = sizeof(str)-1, .name = str, .reserved = res }
685 #define __IDENT(n,str,res) \
686 struct ident n = __INIT_IDENT(str,res)
688 #include "ident-list.h"
690 void init_symbols(void)
692 int stream = init_stream("builtin", -1, includepath);
693 struct sym_init *ptr;
695 #define __IDENT(n,str,res) \
696 hash_ident(&n)
697 #include "ident-list.h"
699 for (ptr = symbol_init_table; ptr->name; ptr++) {
700 struct symbol *sym;
701 sym = create_symbol(stream, ptr->name, SYM_NODE, NS_TYPEDEF);
702 sym->ident->reserved = 1;
703 sym->ctype.base_type = ptr->base_type;
704 sym->ctype.modifiers = ptr->modifiers;
707 builtin_fn_type.variadic = 1;
708 for (ptr = eval_init_table; ptr->name; ptr++) {
709 struct symbol *sym;
710 sym = create_symbol(stream, ptr->name, SYM_NODE, NS_SYMBOL);
711 sym->ctype.base_type = ptr->base_type;
712 sym->ctype.modifiers = ptr->modifiers;
713 sym->op = ptr->op;
717 #define MOD_ESIGNED (MOD_SIGNED | MOD_EXPLICITLY_SIGNED)
718 #define MOD_LL (MOD_LONG | MOD_LONGLONG)
719 static const struct ctype_declare {
720 struct symbol *ptr;
721 enum type type;
722 unsigned long modifiers;
723 int *bit_size;
724 int *maxalign;
725 struct symbol *base_type;
726 } ctype_declaration[] = {
727 { &bool_ctype, SYM_BASETYPE, MOD_UNSIGNED, &bits_in_bool, &max_int_alignment, &int_type },
728 { &void_ctype, SYM_BASETYPE, 0, NULL, NULL, NULL },
729 { &type_ctype, SYM_BASETYPE, MOD_TYPE, NULL, NULL, NULL },
730 { &incomplete_ctype,SYM_BASETYPE, 0, NULL, NULL, NULL },
731 { &bad_ctype, SYM_BASETYPE, 0, NULL, NULL, NULL },
733 { &char_ctype, SYM_BASETYPE, MOD_SIGNED | MOD_CHAR, &bits_in_char, &max_int_alignment, &int_type },
734 { &schar_ctype, SYM_BASETYPE, MOD_ESIGNED | MOD_CHAR, &bits_in_char, &max_int_alignment, &int_type },
735 { &uchar_ctype, SYM_BASETYPE, MOD_UNSIGNED | MOD_CHAR, &bits_in_char, &max_int_alignment, &int_type },
736 { &short_ctype, SYM_BASETYPE, MOD_SIGNED | MOD_SHORT, &bits_in_short, &max_int_alignment, &int_type },
737 { &sshort_ctype, SYM_BASETYPE, MOD_ESIGNED | MOD_SHORT, &bits_in_short, &max_int_alignment, &int_type },
738 { &ushort_ctype, SYM_BASETYPE, MOD_UNSIGNED | MOD_SHORT, &bits_in_short, &max_int_alignment, &int_type },
739 { &int_ctype, SYM_BASETYPE, MOD_SIGNED, &bits_in_int, &max_int_alignment, &int_type },
740 { &sint_ctype, SYM_BASETYPE, MOD_ESIGNED, &bits_in_int, &max_int_alignment, &int_type },
741 { &uint_ctype, SYM_BASETYPE, MOD_UNSIGNED, &bits_in_int, &max_int_alignment, &int_type },
742 { &long_ctype, SYM_BASETYPE, MOD_SIGNED | MOD_LONG, &bits_in_long, &max_int_alignment, &int_type },
743 { &slong_ctype, SYM_BASETYPE, MOD_ESIGNED | MOD_LONG, &bits_in_long, &max_int_alignment, &int_type },
744 { &ulong_ctype, SYM_BASETYPE, MOD_UNSIGNED | MOD_LONG, &bits_in_long, &max_int_alignment, &int_type },
745 { &llong_ctype, SYM_BASETYPE, MOD_SIGNED | MOD_LL, &bits_in_longlong, &max_int_alignment, &int_type },
746 { &sllong_ctype, SYM_BASETYPE, MOD_ESIGNED | MOD_LL, &bits_in_longlong, &max_int_alignment, &int_type },
747 { &ullong_ctype, SYM_BASETYPE, MOD_UNSIGNED | MOD_LL, &bits_in_longlong, &max_int_alignment, &int_type },
749 { &float_ctype, SYM_BASETYPE, 0, &bits_in_float, &max_fp_alignment, &fp_type },
750 { &double_ctype, SYM_BASETYPE, MOD_LONG, &bits_in_double, &max_fp_alignment, &fp_type },
751 { &ldouble_ctype, SYM_BASETYPE, MOD_LONG | MOD_LONGLONG, &bits_in_longdouble, &max_fp_alignment, &fp_type },
753 { &string_ctype, SYM_PTR, 0, &bits_in_pointer, &pointer_alignment, &char_ctype },
754 { &ptr_ctype, SYM_PTR, 0, &bits_in_pointer, &pointer_alignment, &void_ctype },
755 { &label_ctype, SYM_PTR, 0, &bits_in_pointer, &pointer_alignment, &void_ctype },
756 { &lazy_ptr_ctype, SYM_PTR, 0, &bits_in_pointer, &pointer_alignment, &void_ctype },
757 { NULL, }
759 #undef MOD_LL
760 #undef MOD_ESIGNED
762 void init_ctype(void)
764 const struct ctype_declare *ctype;
766 for (ctype = ctype_declaration ; ctype->ptr; ctype++) {
767 struct symbol *sym = ctype->ptr;
768 unsigned long bit_size = ctype->bit_size ? *ctype->bit_size : -1;
769 unsigned long maxalign = ctype->maxalign ? *ctype->maxalign : 0;
770 unsigned long alignment = bit_size >> 3;
772 if (alignment > maxalign)
773 alignment = maxalign;
774 sym->type = ctype->type;
775 sym->bit_size = bit_size;
776 sym->ctype.alignment = alignment;
777 sym->ctype.base_type = ctype->base_type;
778 sym->ctype.modifiers = ctype->modifiers;