2 * Stupid C parser, version 1e-6.
4 * Let's see how hard this is to do.
6 * Copyright (C) 2003 Transmeta Corp.
7 * 2003-2004 Linus Torvalds
8 * Copyright (C) 2004 Christopher Li
10 * Licensed under the Open Software License version 1.1
28 #include "expression.h"
31 #define warn_on_mixed (1)
33 static struct symbol_list
**function_symbol_list
;
34 struct symbol_list
*function_computed_target_list
;
35 struct statement_list
*function_computed_goto_list
;
37 static struct token
*statement(struct token
*token
, struct statement
**tree
);
38 static struct token
*handle_attributes(struct token
*token
, struct ctype
*ctype
, unsigned int keywords
);
40 static struct token
*struct_specifier(struct token
*token
, struct ctype
*ctype
);
41 static struct token
*union_specifier(struct token
*token
, struct ctype
*ctype
);
42 static struct token
*enum_specifier(struct token
*token
, struct ctype
*ctype
);
43 static struct token
*attribute_specifier(struct token
*token
, struct ctype
*ctype
);
44 static struct token
*typeof_specifier(struct token
*token
, struct ctype
*ctype
);
46 static struct token
*parse_if_statement(struct token
*token
, struct statement
*stmt
);
47 static struct token
*parse_return_statement(struct token
*token
, struct statement
*stmt
);
48 static struct token
*parse_loop_iterator(struct token
*token
, struct statement
*stmt
);
49 static struct token
*parse_default_statement(struct token
*token
, struct statement
*stmt
);
50 static struct token
*parse_case_statement(struct token
*token
, struct statement
*stmt
);
51 static struct token
*parse_switch_statement(struct token
*token
, struct statement
*stmt
);
52 static struct token
*parse_for_statement(struct token
*token
, struct statement
*stmt
);
53 static struct token
*parse_while_statement(struct token
*token
, struct statement
*stmt
);
54 static struct token
*parse_do_statement(struct token
*token
, struct statement
*stmt
);
55 static struct token
*parse_goto_statement(struct token
*token
, struct statement
*stmt
);
56 static struct token
*parse_context_statement(struct token
*token
, struct statement
*stmt
);
57 static struct token
*parse_range_statement(struct token
*token
, struct statement
*stmt
);
58 static struct token
*parse_asm_statement(struct token
*token
, struct statement
*stmt
);
59 static struct token
*toplevel_asm_declaration(struct token
*token
, struct symbol_list
**list
);
60 static struct token
*parse_asm_declarator(struct token
*token
, struct ctype
*ctype
);
63 static struct token
*attribute_packed(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
64 static struct token
*attribute_modifier(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
65 static struct token
*attribute_address_space(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
66 static struct token
*attribute_aligned(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
67 static struct token
*attribute_mode(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
68 static struct token
*attribute_context(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
69 static struct token
*attribute_transparent_union(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
70 static struct token
*ignore_attribute(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
);
73 static struct symbol_op modifier_op
= {
77 static struct symbol_op qualifier_op
= {
81 static struct symbol_op typeof_op
= {
83 .declarator
= typeof_specifier
,
86 static struct symbol_op attribute_op
= {
88 .declarator
= attribute_specifier
,
91 static struct symbol_op struct_op
= {
93 .declarator
= struct_specifier
,
96 static struct symbol_op union_op
= {
98 .declarator
= union_specifier
,
101 static struct symbol_op enum_op
= {
102 .type
= KW_SPECIFIER
,
103 .declarator
= enum_specifier
,
108 static struct symbol_op if_op
= {
109 .statement
= parse_if_statement
,
112 static struct symbol_op return_op
= {
113 .statement
= parse_return_statement
,
116 static struct symbol_op loop_iter_op
= {
117 .statement
= parse_loop_iterator
,
120 static struct symbol_op default_op
= {
121 .statement
= parse_default_statement
,
124 static struct symbol_op case_op
= {
125 .statement
= parse_case_statement
,
128 static struct symbol_op switch_op
= {
129 .statement
= parse_switch_statement
,
132 static struct symbol_op for_op
= {
133 .statement
= parse_for_statement
,
136 static struct symbol_op while_op
= {
137 .statement
= parse_while_statement
,
140 static struct symbol_op do_op
= {
141 .statement
= parse_do_statement
,
144 static struct symbol_op goto_op
= {
145 .statement
= parse_goto_statement
,
148 static struct symbol_op __context___op
= {
149 .statement
= parse_context_statement
,
152 static struct symbol_op range_op
= {
153 .statement
= parse_range_statement
,
156 static struct symbol_op asm_op
= {
158 .declarator
= parse_asm_declarator
,
159 .statement
= parse_asm_statement
,
160 .toplevel
= toplevel_asm_declaration
,
163 static struct symbol_op packed_op
= {
164 .attribute
= attribute_packed
,
167 static struct symbol_op aligned_op
= {
168 .attribute
= attribute_aligned
,
171 static struct symbol_op attr_mod_op
= {
172 .attribute
= attribute_modifier
,
175 static struct symbol_op address_space_op
= {
176 .attribute
= attribute_address_space
,
179 static struct symbol_op mode_op
= {
180 .attribute
= attribute_mode
,
183 static struct symbol_op context_op
= {
184 .attribute
= attribute_context
,
187 static struct symbol_op transparent_union_op
= {
188 .attribute
= attribute_transparent_union
,
191 static struct symbol_op ignore_attr_op
= {
192 .attribute
= ignore_attribute
,
195 static struct symbol_op mode_spec_op
= {
199 static struct init_keyword
{
202 unsigned long modifiers
;
203 struct symbol_op
*op
;
204 } keyword_table
[] = {
205 /* Type qualifiers */
206 { "const", NS_TYPEDEF
, MOD_CONST
, .op
= &qualifier_op
},
207 { "__const", NS_TYPEDEF
, MOD_CONST
, .op
= &qualifier_op
},
208 { "__const__", NS_TYPEDEF
, MOD_CONST
, .op
= &qualifier_op
},
209 { "volatile", NS_TYPEDEF
, MOD_VOLATILE
, .op
= &qualifier_op
},
210 { "__volatile", NS_TYPEDEF
, MOD_VOLATILE
, .op
= &qualifier_op
},
211 { "__volatile__", NS_TYPEDEF
, MOD_VOLATILE
, .op
= &qualifier_op
},
214 { "typedef", NS_TYPEDEF
, MOD_TYPEDEF
, .op
= &modifier_op
},
217 { "typeof", NS_TYPEDEF
, .op
= &typeof_op
},
218 { "__typeof", NS_TYPEDEF
, .op
= &typeof_op
},
219 { "__typeof__", NS_TYPEDEF
, .op
= &typeof_op
},
221 { "__attribute", NS_TYPEDEF
, .op
= &attribute_op
},
222 { "__attribute__", NS_TYPEDEF
, .op
= &attribute_op
},
224 { "struct", NS_TYPEDEF
, .op
= &struct_op
},
225 { "union", NS_TYPEDEF
, .op
= &union_op
},
226 { "enum", NS_TYPEDEF
, .op
= &enum_op
},
228 { "inline", NS_TYPEDEF
, MOD_INLINE
, .op
= &modifier_op
},
229 { "__inline", NS_TYPEDEF
, MOD_INLINE
, .op
= &modifier_op
},
230 { "__inline__", NS_TYPEDEF
, MOD_INLINE
, .op
= &modifier_op
},
232 /* Ignored for now.. */
233 { "restrict", NS_TYPEDEF
, .op
= &qualifier_op
},
234 { "__restrict", NS_TYPEDEF
, .op
= &qualifier_op
},
237 { "if", NS_KEYWORD
, .op
= &if_op
},
238 { "return", NS_KEYWORD
, .op
= &return_op
},
239 { "break", NS_KEYWORD
, .op
= &loop_iter_op
},
240 { "continue", NS_KEYWORD
, .op
= &loop_iter_op
},
241 { "default", NS_KEYWORD
, .op
= &default_op
},
242 { "case", NS_KEYWORD
, .op
= &case_op
},
243 { "switch", NS_KEYWORD
, .op
= &switch_op
},
244 { "for", NS_KEYWORD
, .op
= &for_op
},
245 { "while", NS_KEYWORD
, .op
= &while_op
},
246 { "do", NS_KEYWORD
, .op
= &do_op
},
247 { "goto", NS_KEYWORD
, .op
= &goto_op
},
248 { "__context__",NS_KEYWORD
, .op
= &__context___op
},
249 { "__range__", NS_KEYWORD
, .op
= &range_op
},
250 { "asm", NS_KEYWORD
, .op
= &asm_op
},
251 { "__asm", NS_KEYWORD
, .op
= &asm_op
},
252 { "__asm__", NS_KEYWORD
, .op
= &asm_op
},
255 { "packed", NS_KEYWORD
, .op
= &packed_op
},
256 { "__packed__", NS_KEYWORD
, .op
= &packed_op
},
257 { "aligned", NS_KEYWORD
, .op
= &aligned_op
},
258 { "__aligned__",NS_KEYWORD
, .op
= &aligned_op
},
259 { "nocast", NS_KEYWORD
, MOD_NOCAST
, .op
= &attr_mod_op
},
260 { "noderef", NS_KEYWORD
, MOD_NODEREF
, .op
= &attr_mod_op
},
261 { "safe", NS_KEYWORD
, MOD_SAFE
, .op
= &attr_mod_op
},
262 { "force", NS_KEYWORD
, MOD_FORCE
, .op
= &attr_mod_op
},
263 { "bitwise", NS_KEYWORD
, MOD_BITWISE
, .op
= &attr_mod_op
},
264 { "__bitwise__",NS_KEYWORD
, MOD_BITWISE
, .op
= &attr_mod_op
},
265 { "address_space",NS_KEYWORD
, .op
= &address_space_op
},
266 { "mode", NS_KEYWORD
, .op
= &mode_op
},
267 { "context", NS_KEYWORD
, .op
= &context_op
},
268 { "__transparent_union__", NS_KEYWORD
, .op
= &transparent_union_op
},
270 { "__mode__", NS_KEYWORD
, .op
= &mode_op
},
271 { "QI", NS_KEYWORD
, MOD_CHAR
, .op
= &mode_spec_op
},
272 { "__QI__", NS_KEYWORD
, MOD_CHAR
, .op
= &mode_spec_op
},
273 { "HI", NS_KEYWORD
, MOD_SHORT
, .op
= &mode_spec_op
},
274 { "__HI__", NS_KEYWORD
, MOD_SHORT
, .op
= &mode_spec_op
},
275 { "SI", NS_KEYWORD
, .op
= &mode_spec_op
},
276 { "__SI__", NS_KEYWORD
, .op
= &mode_spec_op
},
277 { "DI", NS_KEYWORD
, MOD_LONGLONG
, .op
= &mode_spec_op
},
278 { "__DI__", NS_KEYWORD
, MOD_LONGLONG
, .op
= &mode_spec_op
},
279 { "word", NS_KEYWORD
, MOD_LONG
, .op
= &mode_spec_op
},
280 { "__word__", NS_KEYWORD
, MOD_LONG
, .op
= &mode_spec_op
},
282 /* Ignored attributes */
283 { "nothrow", NS_KEYWORD
, .op
= &ignore_attr_op
},
284 { "__nothrow", NS_KEYWORD
, .op
= &ignore_attr_op
},
285 { "__nothrow__", NS_KEYWORD
, .op
= &ignore_attr_op
},
286 { "__malloc__", NS_KEYWORD
, .op
= &ignore_attr_op
},
287 { "nonnull", NS_KEYWORD
, .op
= &ignore_attr_op
},
288 { "__nonnull", NS_KEYWORD
, .op
= &ignore_attr_op
},
289 { "__nonnull__", NS_KEYWORD
, .op
= &ignore_attr_op
},
290 { "format", NS_KEYWORD
, .op
= &ignore_attr_op
},
291 { "__format__", NS_KEYWORD
, .op
= &ignore_attr_op
},
292 { "__format_arg__", NS_KEYWORD
, .op
= &ignore_attr_op
},
293 { "section", NS_KEYWORD
, .op
= &ignore_attr_op
},
294 { "__section__",NS_KEYWORD
, .op
= &ignore_attr_op
},
295 { "unused", NS_KEYWORD
, .op
= &ignore_attr_op
},
296 { "__unused__", NS_KEYWORD
, .op
= &ignore_attr_op
},
297 { "const", NS_KEYWORD
, .op
= &ignore_attr_op
},
298 { "__const", NS_KEYWORD
, .op
= &ignore_attr_op
},
299 { "__const__", NS_KEYWORD
, .op
= &ignore_attr_op
},
300 { "noreturn", NS_KEYWORD
, .op
= &ignore_attr_op
},
301 { "__noreturn__", NS_KEYWORD
, .op
= &ignore_attr_op
},
302 { "no_instrument_function", NS_KEYWORD
, .op
= &ignore_attr_op
},
303 { "__no_instrument_function__", NS_KEYWORD
, .op
= &ignore_attr_op
},
304 { "sentinel", NS_KEYWORD
, .op
= &ignore_attr_op
},
305 { "__sentinel__", NS_KEYWORD
, .op
= &ignore_attr_op
},
306 { "regparm", NS_KEYWORD
, .op
= &ignore_attr_op
},
307 { "__regparm__", NS_KEYWORD
, .op
= &ignore_attr_op
},
308 { "weak", NS_KEYWORD
, .op
= &ignore_attr_op
},
309 { "__weak__", NS_KEYWORD
, .op
= &ignore_attr_op
},
310 { "alias", NS_KEYWORD
, .op
= &ignore_attr_op
},
311 { "__alias__", NS_KEYWORD
, .op
= &ignore_attr_op
},
312 { "pure", NS_KEYWORD
, .op
= &ignore_attr_op
},
313 { "__pure__", NS_KEYWORD
, .op
= &ignore_attr_op
},
314 { "always_inline", NS_KEYWORD
, .op
= &ignore_attr_op
},
315 { "syscall_linkage", NS_KEYWORD
, .op
= &ignore_attr_op
},
316 { "visibility", NS_KEYWORD
, .op
= &ignore_attr_op
},
317 { "__visibility__", NS_KEYWORD
, .op
= &ignore_attr_op
},
318 { "deprecated", NS_KEYWORD
, .op
= &ignore_attr_op
},
319 { "__deprecated__", NS_KEYWORD
, .op
= &ignore_attr_op
},
320 { "noinline", NS_KEYWORD
, .op
= &ignore_attr_op
},
321 { "__used__", NS_KEYWORD
, .op
= &ignore_attr_op
},
322 { "warn_unused_result", NS_KEYWORD
, .op
= &ignore_attr_op
},
323 { "__warn_unused_result__", NS_KEYWORD
, .op
= &ignore_attr_op
},
324 { "model", NS_KEYWORD
, .op
= &ignore_attr_op
},
325 { "__model__", NS_KEYWORD
, .op
= &ignore_attr_op
},
326 { "cdecl", NS_KEYWORD
, .op
= &ignore_attr_op
},
327 { "__cdecl__", NS_KEYWORD
, .op
= &ignore_attr_op
},
328 { "stdcall", NS_KEYWORD
, .op
= &ignore_attr_op
},
329 { "__stdcall__", NS_KEYWORD
, .op
= &ignore_attr_op
},
332 void init_parser(int stream
)
335 for (i
= 0; i
< sizeof keyword_table
/sizeof keyword_table
[0]; i
++) {
336 struct init_keyword
*ptr
= keyword_table
+ i
;
337 struct symbol
*sym
= create_symbol(stream
, ptr
->name
, SYM_KEYWORD
, ptr
->ns
);
338 sym
->ident
->keyword
= 1;
339 sym
->ctype
.modifiers
= ptr
->modifiers
;
344 // Add a symbol to the list of function-local symbols
345 static void fn_local_symbol(struct symbol
*sym
)
347 if (function_symbol_list
)
348 add_symbol(function_symbol_list
, sym
);
351 static int SENTINEL_ATTR
match_idents(struct token
*token
, ...)
355 if (token_type(token
) != TOKEN_IDENT
)
358 va_start(args
, token
);
360 struct ident
* next
= va_arg(args
, struct ident
*);
363 if (token
->ident
== next
)
369 struct statement
*alloc_statement(struct position pos
, int type
)
371 struct statement
*stmt
= __alloc_statement(0);
377 static struct token
*struct_declaration_list(struct token
*token
, struct symbol_list
**list
);
379 static int apply_modifiers(struct position pos
, struct ctype
*ctype
)
383 while ((base
= ctype
->base_type
)) {
384 switch (base
->type
) {
390 ctype
= &base
->ctype
;
396 /* Turn the "virtual types" into real types with real sizes etc */
397 if (ctype
->base_type
== &int_type
) {
398 ctype
->base_type
= ctype_integer(ctype
->modifiers
);
399 ctype
->modifiers
&= ~MOD_SPECIFIER
;
400 } else if (ctype
->base_type
== &fp_type
) {
401 ctype
->base_type
= ctype_fp(ctype
->modifiers
);
402 ctype
->modifiers
&= ~MOD_SPECIFIER
;
405 if (ctype
->modifiers
& MOD_BITWISE
) {
407 ctype
->modifiers
&= ~(MOD_BITWISE
| MOD_SPECIFIER
);
408 if (!is_int_type(ctype
->base_type
)) {
409 sparse_error(pos
, "invalid modifier");
412 type
= alloc_symbol(pos
, SYM_BASETYPE
);
413 *type
= *ctype
->base_type
;
414 type
->ctype
.base_type
= ctype
->base_type
;
415 type
->type
= SYM_RESTRICT
;
416 type
->ctype
.modifiers
&= ~MOD_SPECIFIER
;
417 ctype
->base_type
= type
;
423 static struct symbol
* alloc_indirect_symbol(struct position pos
, struct ctype
*ctype
, int type
)
425 struct symbol
*sym
= alloc_symbol(pos
, type
);
427 sym
->ctype
.base_type
= ctype
->base_type
;
428 sym
->ctype
.modifiers
= ctype
->modifiers
& ~MOD_STORAGE
;
430 ctype
->base_type
= sym
;
431 ctype
->modifiers
&= MOD_STORAGE
;
435 static struct symbol
*lookup_or_create_symbol(enum namespace ns
, enum type type
, struct token
*token
)
437 struct symbol
*sym
= lookup_symbol(token
->ident
, ns
);
439 sym
= alloc_symbol(token
->pos
, type
);
440 bind_symbol(sym
, token
->ident
, ns
);
441 if (type
== SYM_LABEL
)
442 fn_local_symbol(sym
);
448 * NOTE! NS_LABEL is not just a different namespace,
449 * it also ends up using function scope instead of the
450 * regular symbol scope.
452 struct symbol
*label_symbol(struct token
*token
)
454 return lookup_or_create_symbol(NS_LABEL
, SYM_LABEL
, token
);
457 static struct token
*struct_union_enum_specifier(enum type type
,
458 struct token
*token
, struct ctype
*ctype
,
459 struct token
*(*parse
)(struct token
*, struct symbol
*))
462 struct position
*repos
;
464 ctype
->modifiers
= 0;
465 token
= handle_attributes(token
, ctype
, KW_ATTRIBUTE
| KW_ASM
);
466 if (token_type(token
) == TOKEN_IDENT
) {
467 sym
= lookup_symbol(token
->ident
, NS_STRUCT
);
469 (sym
->scope
!= block_scope
&&
470 (match_op(token
->next
,';') || match_op(token
->next
,'{')))) {
471 // Either a new symbol, or else an out-of-scope
472 // symbol being redefined.
473 sym
= alloc_symbol(token
->pos
, type
);
474 bind_symbol(sym
, token
->ident
, NS_STRUCT
);
476 if (sym
->type
!= type
)
477 error_die(token
->pos
, "invalid tag applied to %s", show_typename (sym
));
478 ctype
->base_type
= sym
;
481 if (match_op(token
, '{')) {
482 // The following test is actually wrong for empty
483 // structs, but (1) they are not C99, (2) gcc does
484 // the same thing, and (3) it's easier.
485 if (sym
->symbol_list
)
486 error_die(token
->pos
, "redefinition of %s", show_typename (sym
));
488 token
= parse(token
->next
, sym
);
489 token
= expect(token
, '}', "at end of struct-union-enum-specifier");
491 // Mark the structure as needing re-examination
497 // private struct/union/enum type
498 if (!match_op(token
, '{')) {
499 sparse_error(token
->pos
, "expected declaration");
500 ctype
->base_type
= &bad_ctype
;
504 sym
= alloc_symbol(token
->pos
, type
);
505 token
= parse(token
->next
, sym
);
506 ctype
->base_type
= sym
;
507 return expect(token
, '}', "at end of specifier");
510 static struct token
*parse_struct_declaration(struct token
*token
, struct symbol
*sym
)
512 return struct_declaration_list(token
, &sym
->symbol_list
);
515 static struct token
*struct_specifier(struct token
*token
, struct ctype
*ctype
)
517 return struct_union_enum_specifier(SYM_STRUCT
, token
, ctype
, parse_struct_declaration
);
520 static struct token
*union_specifier(struct token
*token
, struct ctype
*ctype
)
522 return struct_union_enum_specifier(SYM_UNION
, token
, ctype
, parse_struct_declaration
);
528 unsigned long long y
;
531 static void upper_boundary(Num
*n
, Num
*v
)
543 static void lower_boundary(Num
*n
, Num
*v
)
555 static int type_is_ok(struct symbol
*type
, Num
*upper
, Num
*lower
)
557 int shift
= type
->bit_size
;
558 int is_unsigned
= type
->ctype
.modifiers
& MOD_UNSIGNED
;
562 if (upper
->x
== 0 && upper
->y
>> shift
)
564 if (lower
->x
== 0 || (!is_unsigned
&& (~lower
->y
>> shift
) == 0))
569 static struct symbol
*bigger_enum_type(struct symbol
*s1
, struct symbol
*s2
)
571 if (s1
->bit_size
< s2
->bit_size
) {
573 } else if (s1
->bit_size
== s2
->bit_size
) {
574 if (s2
->ctype
.modifiers
& MOD_UNSIGNED
)
577 if (s1
->bit_size
< bits_in_int
)
582 static void cast_enum_list(struct symbol_list
*list
, struct symbol
*base_type
)
586 FOR_EACH_PTR(list
, sym
) {
587 struct expression
*expr
= sym
->initializer
;
588 struct symbol
*ctype
;
589 if (expr
->type
!= EXPR_VALUE
)
592 if (ctype
->bit_size
== base_type
->bit_size
)
594 cast_value(expr
, base_type
, expr
, ctype
);
595 } END_FOR_EACH_PTR(sym
);
598 static struct token
*parse_enum_declaration(struct token
*token
, struct symbol
*parent
)
600 unsigned long long lastval
= 0;
601 struct symbol
*ctype
= NULL
, *base_type
= NULL
;
602 Num upper
= {-1, 0}, lower
= {1, 0};
603 struct symbol_list
*entries
= NULL
;
605 parent
->examined
= 1;
606 parent
->ctype
.base_type
= &int_ctype
;
607 while (token_type(token
) == TOKEN_IDENT
) {
608 struct expression
*expr
= NULL
;
609 struct token
*next
= token
->next
;
612 sym
= alloc_symbol(token
->pos
, SYM_NODE
);
613 bind_symbol(sym
, token
->ident
, NS_SYMBOL
);
614 sym
->ctype
.modifiers
&= ~MOD_ADDRESSABLE
;
616 if (match_op(next
, '=')) {
617 next
= constant_expression(next
->next
, &expr
);
618 lastval
= get_expression_value(expr
);
620 if (expr
&& expr
->ctype
)
624 } else if (is_int_type(ctype
)) {
627 error_die(token
->pos
, "can't increment the last enum member");
631 expr
= alloc_expression(token
->pos
, EXPR_VALUE
);
632 expr
->value
= lastval
;
636 sym
->initializer
= expr
;
637 sym
->ctype
.base_type
= parent
;
638 add_ptr_list(&entries
, sym
);
640 if (base_type
!= &bad_ctype
) {
641 if (ctype
->type
== SYM_NODE
)
642 ctype
= ctype
->ctype
.base_type
;
643 if (ctype
->type
== SYM_ENUM
) {
647 ctype
= ctype
->ctype
.base_type
;
651 * - if all enums are of the same type, then
652 * the base_type is that type (two first
654 * - if enums are of different types, they
655 * all have to be integer types, and the
656 * base type is at least "int_ctype".
657 * - otherwise the base_type is "bad_ctype".
661 } else if (ctype
== base_type
) {
663 } else if (is_int_type(base_type
) && is_int_type(ctype
)) {
664 base_type
= bigger_enum_type(base_type
, ctype
);
666 base_type
= &bad_ctype
;
667 parent
->ctype
.base_type
= base_type
;
669 if (is_int_type(base_type
)) {
670 Num v
= {.y
= lastval
};
671 if (ctype
->ctype
.modifiers
& MOD_UNSIGNED
)
673 else if ((long long)lastval
>= 0)
677 upper_boundary(&upper
, &v
);
678 lower_boundary(&lower
, &v
);
681 if (!match_op(token
, ','))
686 sparse_error(token
->pos
, "bad enum definition");
687 base_type
= &bad_ctype
;
689 else if (!is_int_type(base_type
))
690 base_type
= base_type
;
691 else if (type_is_ok(base_type
, &upper
, &lower
))
692 base_type
= base_type
;
693 else if (type_is_ok(&int_ctype
, &upper
, &lower
))
694 base_type
= &int_ctype
;
695 else if (type_is_ok(&uint_ctype
, &upper
, &lower
))
696 base_type
= &uint_ctype
;
697 else if (type_is_ok(&long_ctype
, &upper
, &lower
))
698 base_type
= &long_ctype
;
699 else if (type_is_ok(&ulong_ctype
, &upper
, &lower
))
700 base_type
= &ulong_ctype
;
701 else if (type_is_ok(&llong_ctype
, &upper
, &lower
))
702 base_type
= &llong_ctype
;
703 else if (type_is_ok(&ullong_ctype
, &upper
, &lower
))
704 base_type
= &ullong_ctype
;
706 base_type
= &bad_ctype
;
707 parent
->ctype
.base_type
= base_type
;
708 parent
->ctype
.modifiers
|= (base_type
->ctype
.modifiers
& MOD_UNSIGNED
);
709 parent
->examined
= 0;
711 cast_enum_list(entries
, base_type
);
712 free_ptr_list(&entries
);
717 static struct token
*enum_specifier(struct token
*token
, struct ctype
*ctype
)
719 struct token
*ret
= struct_union_enum_specifier(SYM_ENUM
, token
, ctype
, parse_enum_declaration
);
721 ctype
= &ctype
->base_type
->ctype
;
722 if (!ctype
->base_type
)
723 ctype
->base_type
= &incomplete_ctype
;
728 static struct token
*typeof_specifier(struct token
*token
, struct ctype
*ctype
)
732 if (!match_op(token
, '(')) {
733 sparse_error(token
->pos
, "expected '(' after typeof");
736 if (lookup_type(token
->next
)) {
737 token
= typename(token
->next
, &sym
);
740 struct symbol
*typeof_sym
= alloc_symbol(token
->pos
, SYM_TYPEOF
);
741 token
= parse_expression(token
->next
, &typeof_sym
->initializer
);
743 ctype
->modifiers
= 0;
744 ctype
->base_type
= typeof_sym
;
746 return expect(token
, ')', "after typeof");
749 static struct token
*ignore_attribute(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
751 struct expression
*expr
= NULL
;
752 if (match_op(token
, '('))
753 token
= parens_expression(token
, &expr
, "in attribute");
757 static struct token
*attribute_packed(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
759 ctype
->alignment
= 1;
763 static struct token
*attribute_aligned(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
765 int alignment
= max_alignment
;
766 struct expression
*expr
= NULL
;
768 if (match_op(token
, '(')) {
769 token
= parens_expression(token
, &expr
, "in attribute");
771 alignment
= get_expression_value(expr
);
773 ctype
->alignment
= alignment
;
777 static struct token
*attribute_modifier(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
779 ctype
->modifiers
|= attr
->ctype
.modifiers
;
783 static struct token
*attribute_address_space(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
785 struct expression
*expr
= NULL
;
786 token
= expect(token
, '(', "after address_space attribute");
787 token
= conditional_expression(token
, &expr
);
789 ctype
->as
= get_expression_value(expr
);
790 token
= expect(token
, ')', "after address_space attribute");
794 static struct token
*attribute_mode(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
796 token
= expect(token
, '(', "after mode attribute");
797 if (token_type(token
) == TOKEN_IDENT
) {
798 struct symbol
*mode
= lookup_keyword(token
->ident
, NS_KEYWORD
);
799 if (mode
&& mode
->op
->type
== KW_MODE
)
800 ctype
->modifiers
|= mode
->ctype
.modifiers
;
802 sparse_error(token
->pos
, "unknown mode attribute %s\n", show_ident(token
->ident
));
805 sparse_error(token
->pos
, "expect attribute mode symbol\n");
806 token
= expect(token
, ')', "after mode attribute");
810 static struct token
*attribute_context(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
812 struct context
*context
= alloc_context();
813 struct expression
*args
[3];
816 token
= expect(token
, '(', "after context attribute");
817 while (!match_op(token
, ')')) {
818 struct expression
*expr
= NULL
;
819 token
= conditional_expression(token
, &expr
);
824 if (!match_op(token
, ','))
831 sparse_error(token
->pos
, "expected context input/output values");
834 context
->in
= get_expression_value(args
[0]);
837 context
->in
= get_expression_value(args
[0]);
838 context
->out
= get_expression_value(args
[1]);
841 context
->context
= args
[0];
842 context
->in
= get_expression_value(args
[1]);
843 context
->out
= get_expression_value(args
[2]);
848 add_ptr_list(&ctype
->contexts
, context
);
850 token
= expect(token
, ')', "after context attribute");
854 static struct token
*attribute_transparent_union(struct token
*token
, struct symbol
*attr
, struct ctype
*ctype
)
856 if (Wtransparent_union
)
857 sparse_error(token
->pos
, "ignoring attribute __transparent_union__");
861 static struct token
*recover_unknown_attribute(struct token
*token
)
863 struct expression
*expr
= NULL
;
865 sparse_error(token
->pos
, "attribute '%s': unknown attribute", show_ident(token
->ident
));
867 if (match_op(token
, '('))
868 token
= parens_expression(token
, &expr
, "in attribute");
872 static struct token
*attribute_specifier(struct token
*token
, struct ctype
*ctype
)
874 ctype
->modifiers
= 0;
875 token
= expect(token
, '(', "after attribute");
876 token
= expect(token
, '(', "after attribute");
879 struct ident
*attribute_name
;
882 if (eof_token(token
))
884 if (match_op(token
, ';'))
886 if (token_type(token
) != TOKEN_IDENT
)
888 attribute_name
= token
->ident
;
889 attr
= lookup_keyword(attribute_name
, NS_KEYWORD
);
890 if (attr
&& attr
->op
->attribute
)
891 token
= attr
->op
->attribute(token
->next
, attr
, ctype
);
893 token
= recover_unknown_attribute(token
);
895 if (!match_op(token
, ','))
900 token
= expect(token
, ')', "after attribute");
901 token
= expect(token
, ')', "after attribute");
905 struct symbol
* ctype_integer(unsigned long spec
)
907 static struct symbol
*const integer_ctypes
[][3] = {
908 { &llong_ctype
, &sllong_ctype
, &ullong_ctype
},
909 { &long_ctype
, &slong_ctype
, &ulong_ctype
},
910 { &short_ctype
, &sshort_ctype
, &ushort_ctype
},
911 { &char_ctype
, &schar_ctype
, &uchar_ctype
},
912 { &int_ctype
, &sint_ctype
, &uint_ctype
},
914 struct symbol
*const (*ctype
)[3];
917 ctype
= integer_ctypes
;
918 if (!(spec
& MOD_LONGLONG
)) {
920 if (!(spec
& MOD_LONG
)) {
922 if (!(spec
& MOD_SHORT
)) {
924 if (!(spec
& MOD_CHAR
))
930 sub
= ((spec
& MOD_UNSIGNED
)
932 : ((spec
& MOD_EXPLICITLY_SIGNED
)
936 return ctype
[0][sub
];
939 struct symbol
* ctype_fp(unsigned long spec
)
941 if (spec
& MOD_LONGLONG
)
942 return &ldouble_ctype
;
944 return &double_ctype
;
948 static void apply_ctype(struct position pos
, struct ctype
*thistype
, struct ctype
*ctype
)
950 unsigned long mod
= thistype
->modifiers
;
953 unsigned long old
= ctype
->modifiers
;
954 unsigned long extra
= 0, dup
, conflict
;
956 if (mod
& old
& MOD_LONG
) {
957 extra
= MOD_LONGLONG
| MOD_LONG
;
961 dup
= (mod
& old
) | (extra
& old
) | (extra
& mod
);
963 sparse_error(pos
, "Just how %sdo you want this type to be?",
964 modifier_string(dup
));
966 conflict
= !(~mod
& ~old
& (MOD_LONG
| MOD_SHORT
));
968 sparse_error(pos
, "You cannot have both long and short modifiers.");
970 conflict
= !(~mod
& ~old
& (MOD_SIGNED
| MOD_UNSIGNED
));
972 sparse_error(pos
, "You cannot have both signed and unsigned modifiers.");
974 // Only one storage modifier allowed, except that "inline" doesn't count.
975 conflict
= (mod
| old
) & (MOD_STORAGE
& ~MOD_INLINE
);
976 conflict
&= (conflict
- 1);
978 sparse_error(pos
, "multiple storage classes");
980 ctype
->modifiers
= old
| mod
| extra
;
984 concat_ptr_list((struct ptr_list
*)thistype
->contexts
,
985 (struct ptr_list
**)&ctype
->contexts
);
988 if (thistype
->alignment
& (thistype
->alignment
-1)) {
989 warning(pos
, "I don't like non-power-of-2 alignments");
990 thistype
->alignment
= 0;
992 if (thistype
->alignment
> ctype
->alignment
)
993 ctype
->alignment
= thistype
->alignment
;
997 ctype
->as
= thistype
->as
;
1000 static void check_modifiers(struct position
*pos
, struct symbol
*s
, unsigned long mod
)
1002 unsigned long banned
, wrong
;
1003 const unsigned long BANNED_SIZE
= MOD_LONG
| MOD_LONGLONG
| MOD_SHORT
;
1004 const unsigned long BANNED_SIGN
= MOD_SIGNED
| MOD_UNSIGNED
;
1006 if (s
->type
== SYM_KEYWORD
)
1007 banned
= s
->op
->type
== KW_SPECIFIER
? (BANNED_SIZE
| BANNED_SIGN
) : 0;
1008 else if (s
->ctype
.base_type
== &fp_type
)
1009 banned
= BANNED_SIGN
;
1010 else if (s
->ctype
.base_type
== &int_type
|| !s
->ctype
.base_type
|| is_int_type (s
))
1016 // vector_type <-- whatever that is
1017 banned
= BANNED_SIZE
| BANNED_SIGN
;
1020 wrong
= mod
& banned
;
1022 sparse_error(*pos
, "modifier %sis invalid in this context",
1023 modifier_string (wrong
));
1026 static struct token
*declaration_specifiers(struct token
*next
, struct ctype
*ctype
, int qual
)
1028 struct token
*token
;
1030 while ( (token
= next
) != NULL
) {
1031 struct ctype thistype
;
1032 struct ident
*ident
;
1033 struct symbol
*s
, *type
;
1037 if (token_type(token
) != TOKEN_IDENT
)
1039 ident
= token
->ident
;
1041 s
= lookup_symbol(ident
, NS_TYPEDEF
);
1044 thistype
= s
->ctype
;
1045 mod
= thistype
.modifiers
;
1047 if (s
->type
!= SYM_KEYWORD
)
1049 if (!(s
->op
->type
& (KW_ATTRIBUTE
| KW_QUALIFIER
)))
1052 if (s
->type
== SYM_KEYWORD
&& s
->op
->declarator
) {
1053 next
= s
->op
->declarator(next
, &thistype
);
1054 mod
= thistype
.modifiers
;
1056 type
= thistype
.base_type
;
1060 if (ctype
->base_type
)
1062 /* User types only mix with qualifiers */
1063 if (mod
& MOD_USERTYPE
) {
1064 if (ctype
->modifiers
& MOD_SPECIFIER
)
1067 ctype
->base_type
= type
;
1070 check_modifiers(&token
->pos
, s
, ctype
->modifiers
);
1071 apply_ctype(token
->pos
, &thistype
, ctype
);
1074 if (!ctype
->base_type
) {
1075 struct symbol
*base
= &incomplete_ctype
;
1078 * If we have modifiers, we'll default to an integer
1079 * type, and "ctype_integer()" will turn this into
1082 if (ctype
->modifiers
& MOD_SPECIFIER
)
1084 ctype
->base_type
= base
;
1089 static struct token
*abstract_array_declarator(struct token
*token
, struct symbol
*sym
)
1091 struct expression
*expr
= NULL
;
1093 token
= parse_expression(token
, &expr
);
1094 sym
->array_size
= expr
;
1098 static struct token
*parameter_type_list(struct token
*, struct symbol
*, struct ident
**p
);
1099 static struct token
*declarator(struct token
*token
, struct symbol
*sym
, struct ident
**p
);
1101 static struct token
*handle_attributes(struct token
*token
, struct ctype
*ctype
, unsigned int keywords
)
1103 struct symbol
*keyword
;
1105 struct ctype thistype
= { 0, };
1106 if (token_type(token
) != TOKEN_IDENT
)
1108 keyword
= lookup_keyword(token
->ident
, NS_KEYWORD
| NS_TYPEDEF
);
1109 if (!keyword
|| keyword
->type
!= SYM_KEYWORD
)
1111 if (!(keyword
->op
->type
& keywords
))
1113 token
= keyword
->op
->declarator(token
->next
, &thistype
);
1114 apply_ctype(token
->pos
, &thistype
, ctype
);
1119 static struct token
*direct_declarator(struct token
*token
, struct symbol
*decl
, struct ident
**p
)
1121 struct ctype
*ctype
= &decl
->ctype
;
1123 if (p
&& token_type(token
) == TOKEN_IDENT
) {
1125 token
= token
->next
;
1129 token
= handle_attributes(token
, ctype
, KW_ATTRIBUTE
| KW_ASM
);
1131 if (token_type(token
) != TOKEN_SPECIAL
)
1135 * This can be either a parameter list or a grouping.
1136 * For the direct (non-abstract) case, we know if must be
1137 * a parameter list if we already saw the identifier.
1138 * For the abstract case, we know if must be a parameter
1139 * list if it is empty or starts with a type.
1141 if (token
->special
== '(') {
1143 struct token
*next
= token
->next
;
1144 int fn
= (p
&& *p
) || match_op(next
, ')') || lookup_type(next
);
1147 struct symbol
*base_type
= ctype
->base_type
;
1148 token
= declarator(next
, decl
, p
);
1149 token
= expect(token
, ')', "in nested declarator");
1150 while (ctype
->base_type
!= base_type
)
1151 ctype
= &ctype
->base_type
->ctype
;
1156 sym
= alloc_indirect_symbol(token
->pos
, ctype
, SYM_FN
);
1157 token
= parameter_type_list(next
, sym
, p
);
1158 token
= expect(token
, ')', "in function declarator");
1161 if (token
->special
== '[') {
1162 struct symbol
*array
= alloc_indirect_symbol(token
->pos
, ctype
, SYM_ARRAY
);
1163 token
= abstract_array_declarator(token
->next
, array
);
1164 token
= expect(token
, ']', "in abstract_array_declarator");
1165 ctype
= &array
->ctype
;
1173 static struct token
*pointer(struct token
*token
, struct ctype
*ctype
)
1175 unsigned long modifiers
;
1176 struct symbol
*base_type
;
1178 modifiers
= ctype
->modifiers
& ~MOD_TYPEDEF
;
1179 base_type
= ctype
->base_type
;
1180 ctype
->modifiers
= modifiers
;
1182 while (match_op(token
,'*')) {
1183 struct symbol
*ptr
= alloc_symbol(token
->pos
, SYM_PTR
);
1184 ptr
->ctype
.modifiers
= modifiers
& ~MOD_STORAGE
;
1185 ptr
->ctype
.as
= ctype
->as
;
1186 concat_ptr_list((struct ptr_list
*)ctype
->contexts
,
1187 (struct ptr_list
**)&ptr
->ctype
.contexts
);
1188 ptr
->ctype
.base_type
= base_type
;
1191 ctype
->modifiers
= modifiers
& MOD_STORAGE
;
1192 ctype
->base_type
= base_type
;
1194 free_ptr_list(&ctype
->contexts
);
1196 token
= declaration_specifiers(token
->next
, ctype
, 1);
1197 modifiers
= ctype
->modifiers
;
1202 static struct token
*declarator(struct token
*token
, struct symbol
*sym
, struct ident
**p
)
1204 token
= pointer(token
, &sym
->ctype
);
1205 return direct_declarator(token
, sym
, p
);
1208 static struct token
*handle_bitfield(struct token
*token
, struct symbol
*decl
)
1210 struct ctype
*ctype
= &decl
->ctype
;
1211 struct expression
*expr
;
1212 struct symbol
*bitfield
;
1215 if (ctype
->base_type
!= &int_type
&& !is_int_type(ctype
->base_type
)) {
1216 sparse_error(token
->pos
, "invalid bitfield specifier for type %s.",
1217 show_typename(ctype
->base_type
));
1218 // Parse this to recover gracefully.
1219 return conditional_expression(token
->next
, &expr
);
1222 bitfield
= alloc_indirect_symbol(token
->pos
, ctype
, SYM_BITFIELD
);
1223 token
= conditional_expression(token
->next
, &expr
);
1224 width
= get_expression_value(expr
);
1225 bitfield
->bit_size
= width
;
1227 if (width
< 0 || width
> INT_MAX
) {
1228 sparse_error(token
->pos
, "invalid bitfield width, %lld.", width
);
1230 } else if (decl
->ident
&& width
== 0) {
1231 sparse_error(token
->pos
, "invalid named zero-width bitfield `%s'",
1232 show_ident(decl
->ident
));
1234 } else if (decl
->ident
) {
1235 struct symbol
*base_type
= bitfield
->ctype
.base_type
;
1236 struct symbol
*bitfield_type
= base_type
== &int_type
? bitfield
: base_type
;
1237 int is_signed
= !(bitfield_type
->ctype
.modifiers
& MOD_UNSIGNED
);
1238 if (Wone_bit_signed_bitfield
&& width
== 1 && is_signed
) {
1239 // Valid values are either {-1;0} or {0}, depending on integer
1240 // representation. The latter makes for very efficient code...
1241 sparse_error(token
->pos
, "dubious one-bit signed bitfield");
1243 if (Wdefault_bitfield_sign
&&
1244 bitfield_type
->type
!= SYM_ENUM
&&
1245 !(bitfield_type
->ctype
.modifiers
& MOD_EXPLICITLY_SIGNED
) &&
1247 // The sign of bitfields is unspecified by default.
1248 sparse_error(token
->pos
, "dubious bitfield without explicit `signed' or `unsigned'");
1251 bitfield
->bit_size
= width
;
1255 static struct token
*declaration_list(struct token
*token
, struct symbol_list
**list
)
1257 struct ctype ctype
= {0, };
1259 token
= declaration_specifiers(token
, &ctype
, 0);
1261 struct ident
*ident
= NULL
;
1262 struct symbol
*decl
= alloc_symbol(token
->pos
, SYM_NODE
);
1263 decl
->ctype
= ctype
;
1264 token
= declarator(token
, decl
, &ident
);
1265 decl
->ident
= ident
;
1266 if (match_op(token
, ':')) {
1267 token
= handle_bitfield(token
, decl
);
1268 token
= handle_attributes(token
, &decl
->ctype
, KW_ATTRIBUTE
| KW_ASM
);
1270 apply_modifiers(token
->pos
, &decl
->ctype
);
1271 add_symbol(list
, decl
);
1272 if (!match_op(token
, ','))
1274 token
= token
->next
;
1279 static struct token
*struct_declaration_list(struct token
*token
, struct symbol_list
**list
)
1281 while (!match_op(token
, '}')) {
1282 if (!match_op(token
, ';'))
1283 token
= declaration_list(token
, list
);
1284 if (!match_op(token
, ';')) {
1285 sparse_error(token
->pos
, "expected ; at end of declaration");
1288 token
= token
->next
;
1293 static struct token
*parameter_declaration(struct token
*token
, struct symbol
**tree
)
1295 struct ident
*ident
= NULL
;
1297 struct ctype ctype
= { 0, };
1299 token
= declaration_specifiers(token
, &ctype
, 0);
1300 sym
= alloc_symbol(token
->pos
, SYM_NODE
);
1303 token
= declarator(token
, sym
, &ident
);
1305 apply_modifiers(token
->pos
, &sym
->ctype
);
1309 struct token
*typename(struct token
*token
, struct symbol
**p
)
1311 struct symbol
*sym
= alloc_symbol(token
->pos
, SYM_NODE
);
1313 token
= declaration_specifiers(token
, &sym
->ctype
, 0);
1314 token
= declarator(token
, sym
, NULL
);
1315 apply_modifiers(token
->pos
, &sym
->ctype
);
1319 static struct token
*expression_statement(struct token
*token
, struct expression
**tree
)
1321 token
= parse_expression(token
, tree
);
1322 return expect(token
, ';', "at end of statement");
1325 static struct token
*parse_asm_operands(struct token
*token
, struct statement
*stmt
,
1326 struct expression_list
**inout
)
1328 struct expression
*expr
;
1330 /* Allow empty operands */
1331 if (match_op(token
->next
, ':') || match_op(token
->next
, ')'))
1334 struct ident
*ident
= NULL
;
1335 if (match_op(token
->next
, '[') &&
1336 token_type(token
->next
->next
) == TOKEN_IDENT
&&
1337 match_op(token
->next
->next
->next
, ']')) {
1338 ident
= token
->next
->next
->ident
;
1339 token
= token
->next
->next
->next
;
1341 add_expression(inout
, (struct expression
*)ident
); /* UGGLEE!!! */
1342 token
= primary_expression(token
->next
, &expr
);
1343 add_expression(inout
, expr
);
1344 token
= parens_expression(token
, &expr
, "in asm parameter");
1345 add_expression(inout
, expr
);
1346 } while (match_op(token
, ','));
1350 static struct token
*parse_asm_clobbers(struct token
*token
, struct statement
*stmt
,
1351 struct expression_list
**clobbers
)
1353 struct expression
*expr
;
1356 token
= primary_expression(token
->next
, &expr
);
1357 add_expression(clobbers
, expr
);
1358 } while (match_op(token
, ','));
1362 static struct token
*parse_asm_statement(struct token
*token
, struct statement
*stmt
)
1364 token
= token
->next
;
1365 stmt
->type
= STMT_ASM
;
1366 if (match_idents(token
, &__volatile___ident
, &__volatile_ident
, &volatile_ident
, NULL
)) {
1367 token
= token
->next
;
1369 token
= expect(token
, '(', "after asm");
1370 token
= parse_expression(token
, &stmt
->asm_string
);
1371 if (match_op(token
, ':'))
1372 token
= parse_asm_operands(token
, stmt
, &stmt
->asm_outputs
);
1373 if (match_op(token
, ':'))
1374 token
= parse_asm_operands(token
, stmt
, &stmt
->asm_inputs
);
1375 if (match_op(token
, ':'))
1376 token
= parse_asm_clobbers(token
, stmt
, &stmt
->asm_clobbers
);
1377 token
= expect(token
, ')', "after asm");
1378 return expect(token
, ';', "at end of asm-statement");
1381 static struct token
*parse_asm_declarator(struct token
*token
, struct ctype
*ctype
)
1383 struct expression
*expr
;
1384 token
= expect(token
, '(', "after asm");
1385 token
= parse_expression(token
->next
, &expr
);
1386 token
= expect(token
, ')', "after asm");
1390 /* Make a statement out of an expression */
1391 static struct statement
*make_statement(struct expression
*expr
)
1393 struct statement
*stmt
;
1397 stmt
= alloc_statement(expr
->pos
, STMT_EXPRESSION
);
1398 stmt
->expression
= expr
;
1403 * All iterators have two symbols associated with them:
1404 * the "continue" and "break" symbols, which are targets
1405 * for continue and break statements respectively.
1407 * They are in a special name-space, but they follow
1408 * all the normal visibility rules, so nested iterators
1409 * automatically work right.
1411 static void start_iterator(struct statement
*stmt
)
1413 struct symbol
*cont
, *brk
;
1415 start_symbol_scope();
1416 cont
= alloc_symbol(stmt
->pos
, SYM_NODE
);
1417 bind_symbol(cont
, &continue_ident
, NS_ITERATOR
);
1418 brk
= alloc_symbol(stmt
->pos
, SYM_NODE
);
1419 bind_symbol(brk
, &break_ident
, NS_ITERATOR
);
1421 stmt
->type
= STMT_ITERATOR
;
1422 stmt
->iterator_break
= brk
;
1423 stmt
->iterator_continue
= cont
;
1424 fn_local_symbol(brk
);
1425 fn_local_symbol(cont
);
1428 static void end_iterator(struct statement
*stmt
)
1433 static struct statement
*start_function(struct symbol
*sym
)
1436 struct statement
*stmt
= alloc_statement(sym
->pos
, STMT_COMPOUND
);
1438 start_function_scope();
1439 ret
= alloc_symbol(sym
->pos
, SYM_NODE
);
1440 ret
->ctype
= sym
->ctype
.base_type
->ctype
;
1441 ret
->ctype
.modifiers
&= ~(MOD_STORAGE
| MOD_CONST
| MOD_VOLATILE
| MOD_INLINE
| MOD_ADDRESSABLE
| MOD_NOCAST
| MOD_NODEREF
| MOD_ACCESSED
| MOD_TOPLEVEL
);
1442 ret
->ctype
.modifiers
|= (MOD_AUTO
| MOD_REGISTER
);
1443 bind_symbol(ret
, &return_ident
, NS_ITERATOR
);
1445 fn_local_symbol(ret
);
1447 // Currently parsed symbol for __func__/__FUNCTION__/__PRETTY_FUNCTION__
1453 static void end_function(struct symbol
*sym
)
1456 end_function_scope();
1460 * A "switch()" statement, like an iterator, has a
1461 * the "break" symbol associated with it. It works
1462 * exactly like the iterator break - it's the target
1463 * for any break-statements in scope, and means that
1464 * "break" handling doesn't even need to know whether
1465 * it's breaking out of an iterator or a switch.
1467 * In addition, the "case" symbol is a marker for the
1468 * case/default statements to find the switch statement
1469 * that they are associated with.
1471 static void start_switch(struct statement
*stmt
)
1473 struct symbol
*brk
, *switch_case
;
1475 start_symbol_scope();
1476 brk
= alloc_symbol(stmt
->pos
, SYM_NODE
);
1477 bind_symbol(brk
, &break_ident
, NS_ITERATOR
);
1479 switch_case
= alloc_symbol(stmt
->pos
, SYM_NODE
);
1480 bind_symbol(switch_case
, &case_ident
, NS_ITERATOR
);
1481 switch_case
->stmt
= stmt
;
1483 stmt
->type
= STMT_SWITCH
;
1484 stmt
->switch_break
= brk
;
1485 stmt
->switch_case
= switch_case
;
1487 fn_local_symbol(brk
);
1488 fn_local_symbol(switch_case
);
1491 static void end_switch(struct statement
*stmt
)
1493 if (!stmt
->switch_case
->symbol_list
)
1494 warning(stmt
->pos
, "switch with no cases");
1498 static void add_case_statement(struct statement
*stmt
)
1500 struct symbol
*target
= lookup_symbol(&case_ident
, NS_ITERATOR
);
1504 sparse_error(stmt
->pos
, "not in switch scope");
1505 stmt
->type
= STMT_NONE
;
1508 sym
= alloc_symbol(stmt
->pos
, SYM_NODE
);
1509 add_symbol(&target
->symbol_list
, sym
);
1511 stmt
->case_label
= sym
;
1512 fn_local_symbol(sym
);
1515 static struct token
*parse_return_statement(struct token
*token
, struct statement
*stmt
)
1517 struct symbol
*target
= lookup_symbol(&return_ident
, NS_ITERATOR
);
1520 error_die(token
->pos
, "internal error: return without a function target");
1521 stmt
->type
= STMT_RETURN
;
1522 stmt
->ret_target
= target
;
1523 return expression_statement(token
->next
, &stmt
->ret_value
);
1526 static struct token
*parse_for_statement(struct token
*token
, struct statement
*stmt
)
1528 struct symbol_list
*syms
;
1529 struct expression
*e1
, *e2
, *e3
;
1530 struct statement
*iterator
;
1532 start_iterator(stmt
);
1533 token
= expect(token
->next
, '(', "after 'for'");
1537 /* C99 variable declaration? */
1538 if (lookup_type(token
)) {
1539 token
= external_declaration(token
, &syms
);
1541 token
= parse_expression(token
, &e1
);
1542 token
= expect(token
, ';', "in 'for'");
1544 token
= parse_expression(token
, &e2
);
1545 token
= expect(token
, ';', "in 'for'");
1546 token
= parse_expression(token
, &e3
);
1547 token
= expect(token
, ')', "in 'for'");
1548 token
= statement(token
, &iterator
);
1550 stmt
->iterator_syms
= syms
;
1551 stmt
->iterator_pre_statement
= make_statement(e1
);
1552 stmt
->iterator_pre_condition
= e2
;
1553 stmt
->iterator_post_statement
= make_statement(e3
);
1554 stmt
->iterator_post_condition
= NULL
;
1555 stmt
->iterator_statement
= iterator
;
1561 static struct token
*parse_while_statement(struct token
*token
, struct statement
*stmt
)
1563 struct expression
*expr
;
1564 struct statement
*iterator
;
1566 start_iterator(stmt
);
1567 token
= parens_expression(token
->next
, &expr
, "after 'while'");
1568 token
= statement(token
, &iterator
);
1570 stmt
->iterator_pre_condition
= expr
;
1571 stmt
->iterator_post_condition
= NULL
;
1572 stmt
->iterator_statement
= iterator
;
1578 static struct token
*parse_do_statement(struct token
*token
, struct statement
*stmt
)
1580 struct expression
*expr
;
1581 struct statement
*iterator
;
1583 start_iterator(stmt
);
1584 token
= statement(token
->next
, &iterator
);
1585 if (token_type(token
) == TOKEN_IDENT
&& token
->ident
== &while_ident
)
1586 token
= token
->next
;
1588 sparse_error(token
->pos
, "expected 'while' after 'do'");
1589 token
= parens_expression(token
, &expr
, "after 'do-while'");
1591 stmt
->iterator_post_condition
= expr
;
1592 stmt
->iterator_statement
= iterator
;
1595 if (iterator
&& iterator
->type
!= STMT_COMPOUND
&& Wdo_while
)
1596 warning(iterator
->pos
, "do-while statement is not a compound statement");
1598 return expect(token
, ';', "after statement");
1601 static struct token
*parse_if_statement(struct token
*token
, struct statement
*stmt
)
1603 stmt
->type
= STMT_IF
;
1604 token
= parens_expression(token
->next
, &stmt
->if_conditional
, "after if");
1605 token
= statement(token
, &stmt
->if_true
);
1606 if (token_type(token
) != TOKEN_IDENT
)
1608 if (token
->ident
!= &else_ident
)
1610 return statement(token
->next
, &stmt
->if_false
);
1613 static inline struct token
*case_statement(struct token
*token
, struct statement
*stmt
)
1615 stmt
->type
= STMT_CASE
;
1616 token
= expect(token
, ':', "after default/case");
1617 add_case_statement(stmt
);
1618 return statement(token
, &stmt
->case_statement
);
1621 static struct token
*parse_case_statement(struct token
*token
, struct statement
*stmt
)
1623 token
= parse_expression(token
->next
, &stmt
->case_expression
);
1624 if (match_op(token
, SPECIAL_ELLIPSIS
))
1625 token
= parse_expression(token
->next
, &stmt
->case_to
);
1626 return case_statement(token
, stmt
);
1629 static struct token
*parse_default_statement(struct token
*token
, struct statement
*stmt
)
1631 return case_statement(token
->next
, stmt
);
1634 static struct token
*parse_loop_iterator(struct token
*token
, struct statement
*stmt
)
1636 struct symbol
*target
= lookup_symbol(token
->ident
, NS_ITERATOR
);
1637 stmt
->type
= STMT_GOTO
;
1638 stmt
->goto_label
= target
;
1640 sparse_error(stmt
->pos
, "break/continue not in iterator scope");
1641 return expect(token
->next
, ';', "at end of statement");
1644 static struct token
*parse_switch_statement(struct token
*token
, struct statement
*stmt
)
1646 stmt
->type
= STMT_SWITCH
;
1648 token
= parens_expression(token
->next
, &stmt
->switch_expression
, "after 'switch'");
1649 token
= statement(token
, &stmt
->switch_statement
);
1654 static struct token
*parse_goto_statement(struct token
*token
, struct statement
*stmt
)
1656 stmt
->type
= STMT_GOTO
;
1657 token
= token
->next
;
1658 if (match_op(token
, '*')) {
1659 token
= parse_expression(token
->next
, &stmt
->goto_expression
);
1660 add_statement(&function_computed_goto_list
, stmt
);
1661 } else if (token_type(token
) == TOKEN_IDENT
) {
1662 stmt
->goto_label
= label_symbol(token
);
1663 token
= token
->next
;
1665 sparse_error(token
->pos
, "Expected identifier or goto expression");
1667 return expect(token
, ';', "at end of statement");
1670 static struct token
*parse_context_statement(struct token
*token
, struct statement
*stmt
)
1672 stmt
->type
= STMT_CONTEXT
;
1673 token
= parse_expression(token
->next
, &stmt
->expression
);
1674 if(stmt
->expression
->type
== EXPR_PREOP
1675 && stmt
->expression
->op
== '('
1676 && stmt
->expression
->unop
->type
== EXPR_COMMA
) {
1677 struct expression
*expr
;
1678 expr
= stmt
->expression
->unop
;
1679 stmt
->context
= expr
->left
;
1680 stmt
->expression
= expr
->right
;
1682 return expect(token
, ';', "at end of statement");
1685 static struct token
*parse_range_statement(struct token
*token
, struct statement
*stmt
)
1687 stmt
->type
= STMT_RANGE
;
1688 token
= assignment_expression(token
->next
, &stmt
->range_expression
);
1689 token
= expect(token
, ',', "after range expression");
1690 token
= assignment_expression(token
, &stmt
->range_low
);
1691 token
= expect(token
, ',', "after low range");
1692 token
= assignment_expression(token
, &stmt
->range_high
);
1693 return expect(token
, ';', "after range statement");
1696 static struct token
*statement(struct token
*token
, struct statement
**tree
)
1698 struct statement
*stmt
= alloc_statement(token
->pos
, STMT_NONE
);
1701 if (token_type(token
) == TOKEN_IDENT
) {
1702 struct symbol
*s
= lookup_keyword(token
->ident
, NS_KEYWORD
);
1703 if (s
&& s
->op
->statement
)
1704 return s
->op
->statement(token
, stmt
);
1706 if (match_op(token
->next
, ':')) {
1707 stmt
->type
= STMT_LABEL
;
1708 stmt
->label_identifier
= label_symbol(token
);
1709 token
= handle_attributes(token
->next
->next
, &stmt
->label_identifier
->ctype
, KW_ATTRIBUTE
);
1710 return statement(token
, &stmt
->label_statement
);
1714 if (match_op(token
, '{')) {
1715 stmt
->type
= STMT_COMPOUND
;
1716 start_symbol_scope();
1717 token
= compound_statement(token
->next
, stmt
);
1720 return expect(token
, '}', "at end of compound statement");
1723 stmt
->type
= STMT_EXPRESSION
;
1724 return expression_statement(token
, &stmt
->expression
);
1727 static struct token
* statement_list(struct token
*token
, struct statement_list
**list
)
1729 int seen_statement
= 0;
1731 struct statement
* stmt
;
1732 if (eof_token(token
))
1734 if (match_op(token
, '}'))
1736 if (lookup_type(token
)) {
1737 if (seen_statement
) {
1738 warning(token
->pos
, "mixing declarations and code");
1741 stmt
= alloc_statement(token
->pos
, STMT_DECLARATION
);
1742 token
= external_declaration(token
, &stmt
->declaration
);
1744 seen_statement
= warn_on_mixed
;
1745 token
= statement(token
, &stmt
);
1747 add_statement(list
, stmt
);
1752 static struct token
*parameter_type_list(struct token
*token
, struct symbol
*fn
, struct ident
**p
)
1754 struct symbol_list
**list
= &fn
->arguments
;
1756 if (match_op(token
, ')')) {
1757 // No warning for "void oink ();"
1758 // Bug or feature: warns for "void oink () __attribute__ ((noreturn));"
1759 if (p
&& !match_op(token
->next
, ';'))
1760 warning(token
->pos
, "non-ANSI function declaration of function '%s'", show_ident(*p
));
1767 if (match_op(token
, SPECIAL_ELLIPSIS
)) {
1769 warning(token
->pos
, "variadic functions must have one named argument");
1771 token
= token
->next
;
1775 sym
= alloc_symbol(token
->pos
, SYM_NODE
);
1776 token
= parameter_declaration(token
, &sym
);
1777 if (sym
->ctype
.base_type
== &void_ctype
) {
1778 /* Special case: (void) */
1779 if (!*list
&& !sym
->ident
)
1781 warning(token
->pos
, "void parameter");
1783 add_symbol(list
, sym
);
1784 if (!match_op(token
, ','))
1786 token
= token
->next
;
1792 struct token
*compound_statement(struct token
*token
, struct statement
*stmt
)
1794 token
= statement_list(token
, &stmt
->stmts
);
1798 static struct expression
*identifier_expression(struct token
*token
)
1800 struct expression
*expr
= alloc_expression(token
->pos
, EXPR_IDENTIFIER
);
1801 expr
->expr_ident
= token
->ident
;
1805 static struct expression
*index_expression(struct expression
*from
, struct expression
*to
)
1807 int idx_from
, idx_to
;
1808 struct expression
*expr
= alloc_expression(from
->pos
, EXPR_INDEX
);
1810 idx_from
= get_expression_value(from
);
1813 idx_to
= get_expression_value(to
);
1814 if (idx_to
< idx_from
|| idx_from
< 0)
1815 warning(from
->pos
, "nonsense array initializer index range");
1817 expr
->idx_from
= idx_from
;
1818 expr
->idx_to
= idx_to
;
1822 static struct token
*single_initializer(struct expression
**ep
, struct token
*token
)
1824 int expect_equal
= 0;
1825 struct token
*next
= token
->next
;
1826 struct expression
**tail
= ep
;
1831 if ((token_type(token
) == TOKEN_IDENT
) && match_op(next
, ':')) {
1832 struct expression
*expr
= identifier_expression(token
);
1833 if (Wold_initializer
)
1834 warning(token
->pos
, "obsolete struct initializer, use C99 syntax");
1835 token
= initializer(&expr
->ident_expression
, next
->next
);
1836 if (expr
->ident_expression
)
1841 for (tail
= ep
, nested
= 0; ; nested
++, next
= token
->next
) {
1842 if (match_op(token
, '.') && (token_type(next
) == TOKEN_IDENT
)) {
1843 struct expression
*expr
= identifier_expression(next
);
1845 tail
= &expr
->ident_expression
;
1848 } else if (match_op(token
, '[')) {
1849 struct expression
*from
= NULL
, *to
= NULL
, *expr
;
1850 token
= constant_expression(token
->next
, &from
);
1852 sparse_error(token
->pos
, "Expected constant expression");
1855 if (match_op(token
, SPECIAL_ELLIPSIS
))
1856 token
= constant_expression(token
->next
, &to
);
1857 expr
= index_expression(from
, to
);
1859 tail
= &expr
->idx_expression
;
1860 token
= expect(token
, ']', "at end of initializer index");
1867 if (nested
&& !expect_equal
) {
1868 if (!match_op(token
, '='))
1869 warning(token
->pos
, "obsolete array initializer, use C99 syntax");
1874 token
= expect(token
, '=', "at end of initializer index");
1876 token
= initializer(tail
, token
);
1882 static struct token
*initializer_list(struct expression_list
**list
, struct token
*token
)
1884 struct expression
*expr
;
1887 token
= single_initializer(&expr
, token
);
1890 add_expression(list
, expr
);
1891 if (!match_op(token
, ','))
1893 token
= token
->next
;
1898 struct token
*initializer(struct expression
**tree
, struct token
*token
)
1900 if (match_op(token
, '{')) {
1901 struct expression
*expr
= alloc_expression(token
->pos
, EXPR_INITIALIZER
);
1903 token
= initializer_list(&expr
->expr_list
, token
->next
);
1904 return expect(token
, '}', "at end of initializer");
1906 return assignment_expression(token
, tree
);
1909 static void declare_argument(struct symbol
*sym
, struct symbol
*fn
)
1912 sparse_error(sym
->pos
, "no identifier for function argument");
1915 bind_symbol(sym
, sym
->ident
, NS_SYMBOL
);
1918 static struct token
*parse_function_body(struct token
*token
, struct symbol
*decl
,
1919 struct symbol_list
**list
)
1921 struct symbol_list
**old_symbol_list
;
1922 struct symbol
*base_type
= decl
->ctype
.base_type
;
1923 struct statement
*stmt
, **p
;
1926 old_symbol_list
= function_symbol_list
;
1927 if (decl
->ctype
.modifiers
& MOD_INLINE
) {
1928 function_symbol_list
= &decl
->inline_symbol_list
;
1929 p
= &base_type
->inline_stmt
;
1931 function_symbol_list
= &decl
->symbol_list
;
1932 p
= &base_type
->stmt
;
1934 function_computed_target_list
= NULL
;
1935 function_computed_goto_list
= NULL
;
1937 if (decl
->ctype
.modifiers
& MOD_EXTERN
) {
1938 if (!(decl
->ctype
.modifiers
& MOD_INLINE
))
1939 warning(decl
->pos
, "function '%s' with external linkage has definition", show_ident(decl
->ident
));
1941 if (!(decl
->ctype
.modifiers
& MOD_STATIC
))
1942 decl
->ctype
.modifiers
|= MOD_EXTERN
;
1944 stmt
= start_function(decl
);
1947 FOR_EACH_PTR (base_type
->arguments
, arg
) {
1948 declare_argument(arg
, base_type
);
1949 } END_FOR_EACH_PTR(arg
);
1951 token
= compound_statement(token
->next
, stmt
);
1954 if (!(decl
->ctype
.modifiers
& MOD_INLINE
))
1955 add_symbol(list
, decl
);
1956 check_declaration(decl
);
1957 function_symbol_list
= old_symbol_list
;
1958 if (function_computed_goto_list
) {
1959 if (!function_computed_target_list
)
1960 warning(decl
->pos
, "function '%s' has computed goto but no targets?", show_ident(decl
->ident
));
1962 FOR_EACH_PTR(function_computed_goto_list
, stmt
) {
1963 stmt
->target_list
= function_computed_target_list
;
1964 } END_FOR_EACH_PTR(stmt
);
1967 return expect(token
, '}', "at end of function");
1970 static void promote_k_r_types(struct symbol
*arg
)
1972 struct symbol
*base
= arg
->ctype
.base_type
;
1973 if (base
&& base
->ctype
.base_type
== &int_type
&& (base
->ctype
.modifiers
& (MOD_CHAR
| MOD_SHORT
))) {
1974 arg
->ctype
.base_type
= &int_ctype
;
1978 static void apply_k_r_types(struct symbol_list
*argtypes
, struct symbol
*fn
)
1980 struct symbol_list
*real_args
= fn
->ctype
.base_type
->arguments
;
1983 FOR_EACH_PTR(real_args
, arg
) {
1984 struct symbol
*type
;
1986 /* This is quadratic in the number of arguments. We _really_ don't care */
1987 FOR_EACH_PTR(argtypes
, type
) {
1988 if (type
->ident
== arg
->ident
)
1990 } END_FOR_EACH_PTR(type
);
1991 sparse_error(arg
->pos
, "missing type declaration for parameter '%s'", show_ident(arg
->ident
));
1995 /* "char" and "short" promote to "int" */
1996 promote_k_r_types(type
);
1998 arg
->ctype
= type
->ctype
;
1999 } END_FOR_EACH_PTR(arg
);
2001 FOR_EACH_PTR(argtypes
, arg
) {
2003 warning(arg
->pos
, "nonsensical parameter declaration '%s'", show_ident(arg
->ident
));
2004 } END_FOR_EACH_PTR(arg
);
2008 static struct token
*parse_k_r_arguments(struct token
*token
, struct symbol
*decl
,
2009 struct symbol_list
**list
)
2011 struct symbol_list
*args
= NULL
;
2013 warning(token
->pos
, "non-ANSI definition of function '%s'", show_ident(decl
->ident
));
2015 token
= declaration_list(token
, &args
);
2016 if (!match_op(token
, ';')) {
2017 sparse_error(token
->pos
, "expected ';' at end of parameter declaration");
2020 token
= token
->next
;
2021 } while (lookup_type(token
));
2023 apply_k_r_types(args
, decl
);
2025 if (!match_op(token
, '{')) {
2026 sparse_error(token
->pos
, "expected function body");
2029 return parse_function_body(token
, decl
, list
);
2032 static struct token
*toplevel_asm_declaration(struct token
*token
, struct symbol_list
**list
)
2034 struct symbol
*anon
= alloc_symbol(token
->pos
, SYM_NODE
);
2035 struct symbol
*fn
= alloc_symbol(token
->pos
, SYM_FN
);
2036 struct statement
*stmt
;
2038 anon
->ctype
.base_type
= fn
;
2039 stmt
= alloc_statement(token
->pos
, STMT_NONE
);
2042 token
= parse_asm_statement(token
, stmt
);
2044 add_symbol(list
, anon
);
2048 struct token
*external_declaration(struct token
*token
, struct symbol_list
**list
)
2050 struct ident
*ident
= NULL
;
2051 struct symbol
*decl
;
2052 struct ctype ctype
= { 0, };
2053 struct symbol
*base_type
;
2056 /* Top-level inline asm? */
2057 if (token_type(token
) == TOKEN_IDENT
) {
2058 struct symbol
*s
= lookup_keyword(token
->ident
, NS_KEYWORD
);
2059 if (s
&& s
->op
->toplevel
)
2060 return s
->op
->toplevel(token
, list
);
2063 /* Parse declaration-specifiers, if any */
2064 token
= declaration_specifiers(token
, &ctype
, 0);
2065 decl
= alloc_symbol(token
->pos
, SYM_NODE
);
2066 decl
->ctype
= ctype
;
2067 token
= declarator(token
, decl
, &ident
);
2068 apply_modifiers(token
->pos
, &decl
->ctype
);
2070 /* Just a type declaration? */
2072 return expect(token
, ';', "end of type declaration");
2074 /* type define declaration? */
2075 is_typedef
= (ctype
.modifiers
& MOD_TYPEDEF
) != 0;
2077 /* Typedefs don't have meaningful storage */
2079 ctype
.modifiers
&= ~MOD_STORAGE
;
2080 decl
->ctype
.modifiers
&= ~MOD_STORAGE
;
2081 decl
->ctype
.modifiers
|= MOD_USERTYPE
;
2084 bind_symbol(decl
, ident
, is_typedef
? NS_TYPEDEF
: NS_SYMBOL
);
2086 base_type
= decl
->ctype
.base_type
;
2089 if (base_type
&& !base_type
->ident
)
2090 base_type
->ident
= ident
;
2091 } else if (base_type
&& base_type
->type
== SYM_FN
) {
2092 /* K&R argument declaration? */
2093 if (lookup_type(token
))
2094 return parse_k_r_arguments(token
, decl
, list
);
2095 if (match_op(token
, '{'))
2096 return parse_function_body(token
, decl
, list
);
2098 if (!(decl
->ctype
.modifiers
& MOD_STATIC
))
2099 decl
->ctype
.modifiers
|= MOD_EXTERN
;
2100 } else if (base_type
== &void_ctype
&& !(decl
->ctype
.modifiers
& MOD_EXTERN
)) {
2101 sparse_error(token
->pos
, "void declaration");
2105 if (!is_typedef
&& match_op(token
, '=')) {
2106 if (decl
->ctype
.modifiers
& MOD_EXTERN
) {
2107 warning(decl
->pos
, "symbol with external linkage has initializer");
2108 decl
->ctype
.modifiers
&= ~MOD_EXTERN
;
2110 token
= initializer(&decl
->initializer
, token
->next
);
2113 if (!(decl
->ctype
.modifiers
& (MOD_EXTERN
| MOD_INLINE
))) {
2114 add_symbol(list
, decl
);
2115 fn_local_symbol(decl
);
2118 check_declaration(decl
);
2120 if (!match_op(token
, ','))
2123 token
= token
->next
;
2125 decl
= alloc_symbol(token
->pos
, SYM_NODE
);
2126 decl
->ctype
= ctype
;
2127 token
= declaration_specifiers(token
, &decl
->ctype
, 1);
2128 token
= declarator(token
, decl
, &ident
);
2129 apply_modifiers(token
->pos
, &decl
->ctype
);
2131 sparse_error(token
->pos
, "expected identifier name in type definition");
2135 bind_symbol(decl
, ident
, is_typedef
? NS_TYPEDEF
: NS_SYMBOL
);
2137 /* Function declarations are automatically extern unless specifically static */
2138 base_type
= decl
->ctype
.base_type
;
2139 if (!is_typedef
&& base_type
&& base_type
->type
== SYM_FN
) {
2140 if (!(decl
->ctype
.modifiers
& MOD_STATIC
))
2141 decl
->ctype
.modifiers
|= MOD_EXTERN
;
2144 return expect(token
, ';', "at end of declaration");