decl.c revision 1.183 1 /* $NetBSD: decl.c,v 1.183 2021/06/19 11:01:23 rillig Exp $ */
2
3 /*
4 * Copyright (c) 1996 Christopher G. Demetriou. All Rights Reserved.
5 * Copyright (c) 1994, 1995 Jochen Pohl
6 * All Rights Reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. All advertising materials mentioning features or use of this software
17 * must display the following acknowledgement:
18 * This product includes software developed by Jochen Pohl for
19 * The NetBSD Project.
20 * 4. The name of the author may not be used to endorse or promote products
21 * derived from this software without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 */
34
35 #if HAVE_NBTOOL_CONFIG_H
36 #include "nbtool_config.h"
37 #endif
38
39 #include <sys/cdefs.h>
40 #if defined(__RCSID) && !defined(lint)
41 __RCSID("$NetBSD: decl.c,v 1.183 2021/06/19 11:01:23 rillig Exp $");
42 #endif
43
44 #include <sys/param.h>
45 #include <limits.h>
46 #include <stdlib.h>
47 #include <string.h>
48
49 #include "lint1.h"
50
51 const char *unnamed = "<unnamed>";
52
53 /* shared type structures for arithmetic types and void */
54 static type_t *typetab;
55
56 /* value of next enumerator during declaration of enum types */
57 int enumval;
58
59 /*
60 * pointer to top element of a stack which contains information local
61 * to nested declarations
62 */
63 dinfo_t *dcs;
64
65 static type_t *tdeferr(type_t *, tspec_t);
66 static void settdsym(type_t *, sym_t *);
67 static tspec_t merge_type_specifiers(tspec_t, tspec_t);
68 static void align(int, int);
69 static sym_t *newtag(sym_t *, scl_t, bool, bool);
70 static bool eqargs(const type_t *, const type_t *, bool *);
71 static bool mnoarg(const type_t *, bool *);
72 static bool check_old_style_definition(sym_t *, sym_t *);
73 static bool check_prototype_declaration(sym_t *, sym_t *);
74 static sym_t *new_style_function(sym_t *, sym_t *);
75 static void old_style_function(sym_t *, sym_t *);
76 static void declare_external_in_block(sym_t *);
77 static bool check_init(sym_t *);
78 static void check_argument_usage(bool, sym_t *);
79 static void check_variable_usage(bool, sym_t *);
80 static void check_label_usage(sym_t *);
81 static void check_tag_usage(sym_t *);
82 static void check_global_variable(const sym_t *);
83 static void check_global_variable_size(const sym_t *);
84
85 /*
86 * initializes all global vars used in declarations
87 */
88 void
89 initdecl(void)
90 {
91 int i;
92
93 /* declaration stack */
94 dcs = xcalloc(1, sizeof(*dcs));
95 dcs->d_ctx = EXTERN;
96 dcs->d_ldlsym = &dcs->d_dlsyms;
97
98 /* type information and classification */
99 inittyp();
100
101 /* shared type structures */
102 typetab = xcalloc(NTSPEC, sizeof(*typetab));
103 for (i = 0; i < NTSPEC; i++)
104 typetab[i].t_tspec = NOTSPEC;
105 typetab[BOOL].t_tspec = BOOL;
106 typetab[CHAR].t_tspec = CHAR;
107 typetab[SCHAR].t_tspec = SCHAR;
108 typetab[UCHAR].t_tspec = UCHAR;
109 typetab[SHORT].t_tspec = SHORT;
110 typetab[USHORT].t_tspec = USHORT;
111 typetab[INT].t_tspec = INT;
112 typetab[UINT].t_tspec = UINT;
113 typetab[LONG].t_tspec = LONG;
114 typetab[ULONG].t_tspec = ULONG;
115 typetab[QUAD].t_tspec = QUAD;
116 typetab[UQUAD].t_tspec = UQUAD;
117 typetab[FLOAT].t_tspec = FLOAT;
118 typetab[DOUBLE].t_tspec = DOUBLE;
119 typetab[LDOUBLE].t_tspec = LDOUBLE;
120 typetab[FCOMPLEX].t_tspec = FCOMPLEX;
121 typetab[DCOMPLEX].t_tspec = DCOMPLEX;
122 typetab[LCOMPLEX].t_tspec = LCOMPLEX;
123 typetab[COMPLEX].t_tspec = COMPLEX;
124 typetab[VOID].t_tspec = VOID;
125 /*
126 * Next two are not real types. They are only used by the parser
127 * to return keywords "signed" and "unsigned"
128 */
129 typetab[SIGNED].t_tspec = SIGNED;
130 typetab[UNSIGN].t_tspec = UNSIGN;
131 }
132
133 /*
134 * Returns a shared type structure for arithmetic types and void.
135 *
136 * It's important to duplicate this structure (using dup_type() or
137 * expr_dup_type()) if it is to be modified (adding qualifiers or anything
138 * else).
139 */
140 type_t *
141 gettyp(tspec_t t)
142 {
143
144 /* TODO: make the return type 'const' */
145 return &typetab[t];
146 }
147
148 type_t *
149 dup_type(const type_t *tp)
150 {
151 type_t *ntp;
152
153 ntp = getblk(sizeof(*ntp));
154 *ntp = *tp;
155 return ntp;
156 }
157
158 /*
159 * Use expr_dup_type() instead of dup_type() inside expressions (if the
160 * allocated memory should be freed after the expr).
161 */
162 type_t *
163 expr_dup_type(const type_t *tp)
164 {
165 type_t *ntp;
166
167 ntp = expr_zalloc(sizeof(*ntp));
168 *ntp = *tp;
169 return ntp;
170 }
171
172 /*
173 * Returns whether the argument is void or an incomplete array,
174 * struct, union or enum type.
175 */
176 bool
177 is_incomplete(const type_t *tp)
178 {
179 tspec_t t;
180
181 if ((t = tp->t_tspec) == VOID) {
182 return true;
183 } else if (t == ARRAY) {
184 return tp->t_incomplete_array;
185 } else if (t == STRUCT || t == UNION) {
186 return tp->t_str->sou_incomplete;
187 } else if (t == ENUM) {
188 return tp->t_enum->en_incomplete;
189 }
190 return false;
191 }
192
193 /*
194 * Mark an array, struct, union or enum type as complete or incomplete.
195 */
196 void
197 setcomplete(type_t *tp, bool complete)
198 {
199 tspec_t t;
200
201 if ((t = tp->t_tspec) == ARRAY) {
202 tp->t_incomplete_array = !complete;
203 } else if (t == STRUCT || t == UNION) {
204 tp->t_str->sou_incomplete = !complete;
205 } else {
206 lint_assert(t == ENUM);
207 tp->t_enum->en_incomplete = !complete;
208 }
209 }
210
211 /*
212 * Remember the storage class of the current declaration in dcs->d_scl
213 * (the top element of the declaration stack) and detect multiple
214 * storage classes.
215 */
216 void
217 add_storage_class(scl_t sc)
218 {
219
220 if (sc == INLINE) {
221 if (dcs->d_inline)
222 /* duplicate '%s' */
223 warning(10, "inline");
224 dcs->d_inline = true;
225 return;
226 }
227 if (dcs->d_type != NULL || dcs->d_abstract_type != NOTSPEC ||
228 dcs->d_sign_mod != NOTSPEC || dcs->d_rank_mod != NOTSPEC) {
229 /* storage class after type is obsolescent */
230 warning(83);
231 }
232 if (dcs->d_scl == NOSCL) {
233 dcs->d_scl = sc;
234 } else {
235 /*
236 * multiple storage classes. An error will be reported in
237 * deftyp().
238 */
239 dcs->d_mscl = true;
240 }
241 }
242
243 /*
244 * Remember the type, modifier or typedef name returned by the parser
245 * in *dcs (top element of decl stack). This information is used in
246 * deftyp() to build the type used for all declarators in this
247 * declaration.
248 *
249 * If tp->t_typedef is 1, the type comes from a previously defined typename.
250 * Otherwise it comes from a type specifier (int, long, ...) or a
251 * struct/union/enum tag.
252 */
253 void
254 add_type(type_t *tp)
255 {
256 tspec_t t;
257 #ifdef DEBUG
258 printf("%s: %s\n", __func__, type_name(tp));
259 #endif
260 if (tp->t_typedef) {
261 /*
262 * something like "typedef int a; int a b;"
263 * This should not happen with current grammar.
264 */
265 lint_assert(dcs->d_type == NULL);
266 lint_assert(dcs->d_abstract_type == NOTSPEC);
267 lint_assert(dcs->d_sign_mod == NOTSPEC);
268 lint_assert(dcs->d_rank_mod == NOTSPEC);
269
270 dcs->d_type = tp;
271 return;
272 }
273
274 t = tp->t_tspec;
275
276 if (t == STRUCT || t == UNION || t == ENUM) {
277 /*
278 * something like "int struct a ..."
279 * struct/union/enum with anything else is not allowed
280 */
281 if (dcs->d_type != NULL || dcs->d_abstract_type != NOTSPEC ||
282 dcs->d_rank_mod != NOTSPEC || dcs->d_sign_mod != NOTSPEC) {
283 /*
284 * remember that an error must be reported in
285 * deftyp().
286 */
287 dcs->d_terr = true;
288 dcs->d_abstract_type = NOTSPEC;
289 dcs->d_sign_mod = NOTSPEC;
290 dcs->d_rank_mod = NOTSPEC;
291 }
292 dcs->d_type = tp;
293 return;
294 }
295
296 if (dcs->d_type != NULL && !dcs->d_type->t_typedef) {
297 /*
298 * something like "struct a int"
299 * struct/union/enum with anything else is not allowed
300 */
301 dcs->d_terr = true;
302 return;
303 }
304
305 if (t == COMPLEX) {
306 if (dcs->d_complex_mod == FLOAT)
307 t = FCOMPLEX;
308 else if (dcs->d_complex_mod == DOUBLE)
309 t = DCOMPLEX;
310 else {
311 /* invalid type for _Complex */
312 error(308);
313 t = DCOMPLEX; /* just as a fallback */
314 }
315 dcs->d_complex_mod = NOTSPEC;
316 }
317
318 if (t == LONG && dcs->d_rank_mod == LONG) {
319 /* "long long" or "long ... long" */
320 t = QUAD;
321 dcs->d_rank_mod = NOTSPEC;
322 if (!quadflg)
323 /* %s C does not support 'long long' */
324 c99ism(265, tflag ? "traditional" : "c89");
325 }
326
327 if (dcs->d_type != NULL && dcs->d_type->t_typedef) {
328 /* something like "typedef int a; a long ..." */
329 dcs->d_type = tdeferr(dcs->d_type, t);
330 return;
331 }
332
333 /* now it can be only a combination of arithmetic types and void */
334 if (t == SIGNED || t == UNSIGN) {
335 /*
336 * remember specifiers "signed" & "unsigned" in
337 * dcs->d_sign_mod
338 */
339 if (dcs->d_sign_mod != NOTSPEC)
340 /*
341 * more than one "signed" and/or "unsigned"; print
342 * an error in deftyp()
343 */
344 dcs->d_terr = true;
345 dcs->d_sign_mod = t;
346 } else if (t == SHORT || t == LONG || t == QUAD) {
347 /*
348 * remember specifiers "short", "long" and "long long" in
349 * dcs->d_rank_mod
350 */
351 if (dcs->d_rank_mod != NOTSPEC)
352 /* more than one, print error in deftyp() */
353 dcs->d_terr = true;
354 dcs->d_rank_mod = t;
355 } else if (t == FLOAT || t == DOUBLE) {
356 if (dcs->d_rank_mod == NOTSPEC || dcs->d_rank_mod == LONG) {
357 if (dcs->d_complex_mod != NOTSPEC
358 || (t == FLOAT && dcs->d_rank_mod == LONG))
359 dcs->d_terr = true;
360 dcs->d_complex_mod = t;
361 } else {
362 if (dcs->d_abstract_type != NOTSPEC)
363 dcs->d_terr = true;
364 dcs->d_abstract_type = t;
365 }
366 } else if (t == PTR) {
367 dcs->d_type = tp;
368 } else {
369 /*
370 * remember specifiers "void", "char", "int",
371 * or "_Complex" in dcs->d_abstract_type
372 */
373 if (dcs->d_abstract_type != NOTSPEC)
374 /* more than one, print error in deftyp() */
375 dcs->d_terr = true;
376 dcs->d_abstract_type = t;
377 }
378 }
379
380 /*
381 * called if a list of declaration specifiers contains a typedef name
382 * and other specifiers (except struct, union, enum, typedef name)
383 */
384 static type_t *
385 tdeferr(type_t *td, tspec_t t)
386 {
387 tspec_t t2;
388
389 t2 = td->t_tspec;
390
391 switch (t) {
392 case SIGNED:
393 case UNSIGN:
394 if (t2 == CHAR || t2 == SHORT || t2 == INT || t2 == LONG ||
395 t2 == QUAD) {
396 if (!tflag)
397 /* modifying typedef with '%s'; only ... */
398 warning(5, ttab[t].tt_name);
399 td = dup_type(gettyp(merge_type_specifiers(t2, t)));
400 td->t_typedef = true;
401 return td;
402 }
403 break;
404 case SHORT:
405 if (t2 == INT || t2 == UINT) {
406 /* modifying typedef with '%s'; only qualifiers ... */
407 warning(5, "short");
408 td = dup_type(gettyp(t2 == INT ? SHORT : USHORT));
409 td->t_typedef = true;
410 return td;
411 }
412 break;
413 case LONG:
414 if (t2 == INT || t2 == UINT || t2 == LONG || t2 == ULONG ||
415 t2 == FLOAT || t2 == DOUBLE || t2 == DCOMPLEX) {
416 /* modifying typedef with '%s'; only qualifiers ... */
417 warning(5, "long");
418 if (t2 == INT) {
419 td = gettyp(LONG);
420 } else if (t2 == UINT) {
421 td = gettyp(ULONG);
422 } else if (t2 == LONG) {
423 td = gettyp(QUAD);
424 } else if (t2 == ULONG) {
425 td = gettyp(UQUAD);
426 } else if (t2 == FLOAT) {
427 td = gettyp(DOUBLE);
428 } else if (t2 == DOUBLE) {
429 td = gettyp(LDOUBLE);
430 } else if (t2 == DCOMPLEX) {
431 td = gettyp(LCOMPLEX);
432 }
433 td = dup_type(td);
434 td->t_typedef = true;
435 return td;
436 }
437 break;
438 /* LINTED206: (enumeration values not handled in switch) */
439 case NOTSPEC:
440 case USHORT:
441 case UCHAR:
442 case SCHAR:
443 case CHAR:
444 case BOOL:
445 case FUNC:
446 case ARRAY:
447 case PTR:
448 case ENUM:
449 case UNION:
450 case STRUCT:
451 case VOID:
452 case LDOUBLE:
453 case FLOAT:
454 case DOUBLE:
455 case UQUAD:
456 case QUAD:
457 #ifdef INT128_SIZE
458 case UINT128:
459 case INT128:
460 #endif
461 case ULONG:
462 case UINT:
463 case INT:
464 case FCOMPLEX:
465 case DCOMPLEX:
466 case LCOMPLEX:
467 case COMPLEX:
468 break;
469 }
470
471 /* Anything other is not accepted. */
472
473 dcs->d_terr = true;
474 return td;
475 }
476
477 /*
478 * Remember the symbol of a typedef name (2nd arg) in a struct, union
479 * or enum tag if the typedef name is the first defined for this tag.
480 *
481 * If the tag is unnamed, the typdef name is used for identification
482 * of this tag in lint2. Although it's possible that more than one typedef
483 * name is defined for one tag, the first name defined should be unique
484 * if the tag is unnamed.
485 */
486 static void
487 settdsym(type_t *tp, sym_t *sym)
488 {
489 tspec_t t;
490
491 if ((t = tp->t_tspec) == STRUCT || t == UNION) {
492 if (tp->t_str->sou_first_typedef == NULL)
493 tp->t_str->sou_first_typedef = sym;
494 } else if (t == ENUM) {
495 if (tp->t_enum->en_first_typedef == NULL)
496 tp->t_enum->en_first_typedef = sym;
497 }
498 }
499
500 static size_t
501 bitfieldsize(sym_t **mem)
502 {
503 size_t len = (*mem)->s_type->t_flen;
504 while (*mem != NULL && (*mem)->s_type->t_bitfield) {
505 len += (*mem)->s_type->t_flen;
506 *mem = (*mem)->s_next;
507 }
508 return ((len + INT_SIZE - 1) / INT_SIZE) * INT_SIZE;
509 }
510
511 static void
512 setpackedsize(type_t *tp)
513 {
514 struct_or_union *sp;
515 sym_t *mem;
516
517 switch (tp->t_tspec) {
518 case STRUCT:
519 case UNION:
520 sp = tp->t_str;
521 sp->sou_size_in_bits = 0;
522 for (mem = sp->sou_first_member;
523 mem != NULL; mem = mem->s_next) {
524 if (mem->s_type->t_bitfield) {
525 sp->sou_size_in_bits += bitfieldsize(&mem);
526 if (mem == NULL)
527 break;
528 }
529 size_t x = (size_t)type_size_in_bits(mem->s_type);
530 if (tp->t_tspec == STRUCT)
531 sp->sou_size_in_bits += x;
532 else if (x > sp->sou_size_in_bits)
533 sp->sou_size_in_bits = x;
534 }
535 break;
536 default:
537 /* %s attribute ignored for %s */
538 warning(326, "packed", type_name(tp));
539 break;
540 }
541 }
542
543 void
544 addpacked(void)
545 {
546 if (dcs->d_type == NULL)
547 dcs->d_packed = true;
548 else
549 setpackedsize(dcs->d_type);
550 }
551
552 void
553 add_attr_used(void)
554 {
555 dcs->d_used = true;
556 }
557
558 /*
559 * Remember a qualifier which is part of the declaration specifiers
560 * (and not the declarator) in the top element of the declaration stack.
561 * Also detect multiple qualifiers of the same kind.
562
563 * The remembered qualifier is used by deftyp() to construct the type
564 * for all declarators.
565 */
566 void
567 add_qualifier(tqual_t q)
568 {
569
570 if (q == CONST) {
571 if (dcs->d_const) {
572 /* duplicate '%s' */
573 warning(10, "const");
574 }
575 dcs->d_const = true;
576 } else if (q == VOLATILE) {
577 if (dcs->d_volatile) {
578 /* duplicate '%s' */
579 warning(10, "volatile");
580 }
581 dcs->d_volatile = true;
582 } else {
583 lint_assert(q == RESTRICT || q == THREAD);
584 /* Silently ignore these qualifiers. */
585 }
586 }
587
588 /*
589 * Go to the next declaration level (structs, nested structs, blocks,
590 * argument declaration lists ...)
591 */
592 void
593 begin_declaration_level(scl_t sc)
594 {
595 dinfo_t *di;
596
597 /* put a new element on the declaration stack */
598 di = xcalloc(1, sizeof(*di));
599 di->d_next = dcs;
600 dcs = di;
601 di->d_ctx = sc;
602 di->d_ldlsym = &di->d_dlsyms;
603 if (dflag)
604 (void)printf("%s(%p %d)\n", __func__, dcs, (int)sc);
605
606 }
607
608 /*
609 * Go back to previous declaration level
610 */
611 void
612 end_declaration_level(void)
613 {
614 dinfo_t *di;
615
616 if (dflag)
617 (void)printf("%s(%p %d)\n", __func__, dcs, (int)dcs->d_ctx);
618
619 lint_assert(dcs->d_next != NULL);
620 di = dcs;
621 dcs = di->d_next;
622 switch (di->d_ctx) {
623 case MOS:
624 case MOU:
625 case CTCONST:
626 /*
627 * Symbols declared in (nested) structs or enums are
628 * part of the next level (they are removed from the
629 * symbol table if the symbols of the outer level are
630 * removed).
631 */
632 if ((*dcs->d_ldlsym = di->d_dlsyms) != NULL)
633 dcs->d_ldlsym = di->d_ldlsym;
634 break;
635 case ARG:
636 /*
637 * All symbols in dcs->d_dlsyms are introduced in old style
638 * argument declarations (it's not clean, but possible).
639 * They are appended to the list of symbols declared in
640 * an old style argument identifier list or a new style
641 * parameter type list.
642 */
643 if (di->d_dlsyms != NULL) {
644 *di->d_ldlsym = dcs->d_func_proto_syms;
645 dcs->d_func_proto_syms = di->d_dlsyms;
646 }
647 break;
648 case ABSTRACT:
649 /*
650 * casts and sizeof
651 * Append all symbols declared in the abstract declaration
652 * to the list of symbols declared in the surrounding
653 * declaration or block.
654 * XXX I'm not sure whether they should be removed from the
655 * symbol table now or later.
656 */
657 if ((*dcs->d_ldlsym = di->d_dlsyms) != NULL)
658 dcs->d_ldlsym = di->d_ldlsym;
659 break;
660 case AUTO:
661 /* check usage of local vars */
662 check_usage(di);
663 /* FALLTHROUGH */
664 case PROTO_ARG:
665 /* usage of arguments will be checked by funcend() */
666 rmsyms(di->d_dlsyms);
667 break;
668 case EXTERN:
669 /* there is nothing after external declarations */
670 /* FALLTHROUGH */
671 default:
672 lint_assert(/*CONSTCOND*/false);
673 }
674 free(di);
675 }
676
677 /*
678 * Set flag d_asm in all declaration stack elements up to the
679 * outermost one.
680 *
681 * This is used to mark compound statements which have, possibly in
682 * nested compound statements, asm statements. For these compound
683 * statements no warnings about unused or uninitialized variables are
684 * printed.
685 *
686 * There is no need to clear d_asm in dinfo structs with context AUTO,
687 * because these structs are freed at the end of the compound statement.
688 * But it must be cleared in the outermost dinfo struct, which has
689 * context EXTERN. This could be done in clrtyp() and would work for C90,
690 * but not for C99 or C++ (due to mixed statements and declarations). Thus
691 * we clear it in global_clean_up_decl(), which is used to do some cleanup
692 * after global declarations/definitions.
693 */
694 void
695 setasm(void)
696 {
697 dinfo_t *di;
698
699 for (di = dcs; di != NULL; di = di->d_next)
700 di->d_asm = true;
701 }
702
703 /*
704 * Clean all elements of the top element of declaration stack which
705 * will be used by the next declaration
706 */
707 void
708 clrtyp(void)
709 {
710
711 dcs->d_abstract_type = NOTSPEC;
712 dcs->d_complex_mod = NOTSPEC;
713 dcs->d_sign_mod = NOTSPEC;
714 dcs->d_rank_mod = NOTSPEC;
715 dcs->d_scl = NOSCL;
716 dcs->d_type = NULL;
717 dcs->d_const = false;
718 dcs->d_volatile = false;
719 dcs->d_inline = false;
720 dcs->d_mscl = false;
721 dcs->d_terr = false;
722 dcs->d_nonempty_decl = false;
723 dcs->d_notyp = false;
724 }
725
726 static void
727 dcs_adjust_storage_class(void)
728 {
729 if (dcs->d_ctx == EXTERN) {
730 if (dcs->d_scl == REG || dcs->d_scl == AUTO) {
731 /* illegal storage class */
732 error(8);
733 dcs->d_scl = NOSCL;
734 }
735 } else if (dcs->d_ctx == ARG || dcs->d_ctx == PROTO_ARG) {
736 if (dcs->d_scl != NOSCL && dcs->d_scl != REG) {
737 /* only register valid as formal parameter storage... */
738 error(9);
739 dcs->d_scl = NOSCL;
740 }
741 }
742 }
743
744 /*
745 * Create a type structure from the information gathered in
746 * the declaration stack.
747 * Complain about storage classes which are not possible in current
748 * context.
749 */
750 void
751 deftyp(void)
752 {
753 tspec_t t, s, l, c;
754 type_t *tp;
755
756 t = dcs->d_abstract_type; /* VOID, BOOL, CHAR, INT or COMPLEX */
757 c = dcs->d_complex_mod; /* FLOAT or DOUBLE */
758 s = dcs->d_sign_mod; /* SIGNED or UNSIGN */
759 l = dcs->d_rank_mod; /* SHORT, LONG or QUAD */
760 tp = dcs->d_type;
761
762 #ifdef DEBUG
763 printf("%s: %s\n", __func__, type_name(tp));
764 #endif
765 if (t == NOTSPEC && s == NOTSPEC && l == NOTSPEC && c == NOTSPEC &&
766 tp == NULL)
767 dcs->d_notyp = true;
768 if (t == NOTSPEC && s == NOTSPEC && (l == NOTSPEC || l == LONG) &&
769 tp == NULL)
770 t = c;
771
772 if (tp != NULL) {
773 lint_assert(t == NOTSPEC);
774 lint_assert(s == NOTSPEC);
775 lint_assert(l == NOTSPEC);
776 }
777
778 if (tp == NULL) {
779 switch (t) {
780 case BOOL:
781 break;
782 case NOTSPEC:
783 t = INT;
784 /* FALLTHROUGH */
785 case INT:
786 if (s == NOTSPEC)
787 s = SIGNED;
788 break;
789 case CHAR:
790 if (l != NOTSPEC) {
791 dcs->d_terr = true;
792 l = NOTSPEC;
793 }
794 break;
795 case FLOAT:
796 if (l == LONG) {
797 l = NOTSPEC;
798 t = DOUBLE;
799 if (!tflag)
800 /* use 'double' instead of 'long ... */
801 warning(6);
802 }
803 break;
804 case DOUBLE:
805 if (l == LONG) {
806 case LDOUBLE:
807 l = NOTSPEC;
808 t = LDOUBLE;
809 if (tflag)
810 /* 'long double' is illegal in ... */
811 warning(266);
812 }
813 break;
814 case DCOMPLEX:
815 if (l == LONG) {
816 l = NOTSPEC;
817 t = LCOMPLEX;
818 if (tflag)
819 /* 'long double' is illegal in ... */
820 warning(266);
821 }
822 break;
823 case VOID:
824 case FCOMPLEX:
825 case LCOMPLEX:
826 break;
827 default:
828 INTERNAL_ERROR("deftyp(%s)", tspec_name(t));
829 }
830 if (t != INT && t != CHAR && (s != NOTSPEC || l != NOTSPEC)) {
831 dcs->d_terr = true;
832 l = s = NOTSPEC;
833 }
834 if (l != NOTSPEC)
835 t = l;
836 dcs->d_type = gettyp(merge_type_specifiers(t, s));
837 }
838
839 if (dcs->d_mscl) {
840 /* only one storage class allowed */
841 error(7);
842 }
843 if (dcs->d_terr) {
844 /* illegal type combination */
845 error(4);
846 }
847
848 dcs_adjust_storage_class();
849
850 if (dcs->d_const && dcs->d_type->t_const) {
851 lint_assert(dcs->d_type->t_typedef);
852 /* typedef already qualified with '%s' */
853 warning(68, "const");
854 }
855 if (dcs->d_volatile && dcs->d_type->t_volatile) {
856 lint_assert(dcs->d_type->t_typedef);
857 /* typedef already qualified with '%s' */
858 warning(68, "volatile");
859 }
860
861 if (dcs->d_const || dcs->d_volatile) {
862 dcs->d_type = dup_type(dcs->d_type);
863 dcs->d_type->t_const |= dcs->d_const;
864 dcs->d_type->t_volatile |= dcs->d_volatile;
865 }
866 }
867
868 /*
869 * Merge type specifiers (char, ..., long long, signed, unsigned).
870 */
871 static tspec_t
872 merge_type_specifiers(tspec_t t, tspec_t s)
873 {
874
875 if (s != SIGNED && s != UNSIGN)
876 return t;
877
878 if (t == CHAR)
879 return s == SIGNED ? SCHAR : UCHAR;
880 if (t == SHORT)
881 return s == SIGNED ? SHORT : USHORT;
882 if (t == INT)
883 return s == SIGNED ? INT : UINT;
884 if (t == LONG)
885 return s == SIGNED ? LONG : ULONG;
886 if (t == QUAD)
887 return s == SIGNED ? QUAD : UQUAD;
888 return t;
889 }
890
891 /*
892 * Return the length of a type in bits.
893 *
894 * Printing a message if the outermost dimension of an array is 0 must
895 * be done by the caller. All other problems are reported by length()
896 * if name is not NULL.
897 */
898 int
899 length(const type_t *tp, const char *name)
900 {
901 int elem, elsz;
902
903 elem = 1;
904 while (tp != NULL && tp->t_tspec == ARRAY) {
905 elem *= tp->t_dim;
906 tp = tp->t_subt;
907 }
908 if (tp == NULL)
909 return -1;
910
911 switch (tp->t_tspec) {
912 case FUNC:
913 /* compiler takes size of function */
914 INTERNAL_ERROR("%s", msgs[12]);
915 /* NOTREACHED */
916 case STRUCT:
917 case UNION:
918 if (is_incomplete(tp) && name != NULL) {
919 /* incomplete structure or union %s: %s */
920 error(31, tp->t_str->sou_tag->s_name, name);
921 }
922 elsz = tp->t_str->sou_size_in_bits;
923 break;
924 case ENUM:
925 if (is_incomplete(tp) && name != NULL) {
926 /* incomplete enum type: %s */
927 warning(13, name);
928 }
929 /* FALLTHROUGH */
930 default:
931 elsz = size_in_bits(tp->t_tspec);
932 if (elsz <= 0)
933 INTERNAL_ERROR("length(%d)", elsz);
934 break;
935 }
936 return elem * elsz;
937 }
938
939 int
940 alignment_in_bits(const type_t *tp)
941 {
942 size_t a;
943 tspec_t t;
944
945 while (tp != NULL && tp->t_tspec == ARRAY)
946 tp = tp->t_subt;
947
948 if (tp == NULL)
949 return -1;
950
951 if ((t = tp->t_tspec) == STRUCT || t == UNION) {
952 a = tp->t_str->sou_align_in_bits;
953 } else if (t == FUNC) {
954 /* compiler takes alignment of function */
955 error(14);
956 a = WORST_ALIGN(1) * CHAR_SIZE;
957 } else {
958 if ((a = size_in_bits(t)) == 0) {
959 a = CHAR_SIZE;
960 } else if (a > WORST_ALIGN(1) * CHAR_SIZE) {
961 a = WORST_ALIGN(1) * CHAR_SIZE;
962 }
963 }
964 lint_assert(a >= CHAR_SIZE);
965 lint_assert(a <= WORST_ALIGN(1) * CHAR_SIZE);
966 return a;
967 }
968
969 /*
970 * Concatenate two lists of symbols by s_next. Used by declarations of
971 * struct/union/enum elements and parameters.
972 */
973 sym_t *
974 lnklst(sym_t *l1, sym_t *l2)
975 {
976 sym_t *l;
977
978 if ((l = l1) == NULL)
979 return l2;
980 while (l1->s_next != NULL)
981 l1 = l1->s_next;
982 l1->s_next = l2;
983 return l;
984 }
985
986 /*
987 * Check if the type of the given symbol is valid and print an error
988 * message if it is not.
989 *
990 * Invalid types are:
991 * - arrays of incomplete types or functions
992 * - functions returning arrays or functions
993 * - void types other than type of function or pointer
994 */
995 void
996 check_type(sym_t *sym)
997 {
998 tspec_t to, t;
999 type_t **tpp, *tp;
1000
1001 tpp = &sym->s_type;
1002 to = NOTSPEC;
1003 while ((tp = *tpp) != NULL) {
1004 t = tp->t_tspec;
1005 /*
1006 * If this is the type of an old style function definition,
1007 * a better warning is printed in funcdef().
1008 */
1009 if (t == FUNC && !tp->t_proto &&
1010 !(to == NOTSPEC && sym->s_osdef)) {
1011 if (sflag && hflag)
1012 /* function declaration is not a prototype */
1013 warning(287);
1014 }
1015 if (to == FUNC) {
1016 if (t == FUNC || t == ARRAY) {
1017 /* function returns illegal type */
1018 error(15);
1019 if (t == FUNC) {
1020 *tpp = derive_type(*tpp, PTR);
1021 } else {
1022 *tpp = derive_type((*tpp)->t_subt, PTR);
1023 }
1024 return;
1025 } else if (tp->t_const || tp->t_volatile) {
1026 if (sflag) { /* XXX or better !tflag ? */
1027 /* function cannot return const... */
1028 warning(228);
1029 }
1030 }
1031 } if (to == ARRAY) {
1032 if (t == FUNC) {
1033 /* array of function is illegal */
1034 error(16);
1035 *tpp = gettyp(INT);
1036 return;
1037 } else if (t == ARRAY && tp->t_dim == 0) {
1038 /* null dimension */
1039 error(17);
1040 return;
1041 } else if (t == VOID) {
1042 /* illegal use of 'void' */
1043 error(18);
1044 *tpp = gettyp(INT);
1045 #if 0 /* errors are produced by length() */
1046 } else if (is_incomplete(tp)) {
1047 /* array of incomplete type */
1048 if (sflag) {
1049 /* array of incomplete type */
1050 error(301);
1051 } else {
1052 /* array of incomplete type */
1053 warning(301);
1054 }
1055 #endif
1056 }
1057 } else if (to == NOTSPEC && t == VOID) {
1058 if (dcs->d_ctx == PROTO_ARG) {
1059 if (sym->s_scl != ABSTRACT) {
1060 lint_assert(sym->s_name != unnamed);
1061 /* void param. cannot have name: %s */
1062 error(61, sym->s_name);
1063 *tpp = gettyp(INT);
1064 }
1065 } else if (dcs->d_ctx == ABSTRACT) {
1066 /* ok */
1067 } else if (sym->s_scl != TYPEDEF) {
1068 /* void type for '%s' */
1069 error(19, sym->s_name);
1070 *tpp = gettyp(INT);
1071 }
1072 }
1073 if (t == VOID && to != PTR) {
1074 if (tp->t_const || tp->t_volatile) {
1075 /* inappropriate qualifiers with 'void' */
1076 warning(69);
1077 tp->t_const = tp->t_volatile = false;
1078 }
1079 }
1080 tpp = &tp->t_subt;
1081 to = t;
1082 }
1083 }
1084
1085 /*
1086 * In traditional C, the only portable type for bit-fields is unsigned int.
1087 *
1088 * In C90, the only allowed types for bit-fields are int, signed int and
1089 * unsigned int (3.5.2.1). There is no mention of implementation-defined
1090 * types.
1091 *
1092 * In C99, the only portable types for bit-fields are _Bool, signed int and
1093 * unsigned int (6.7.2.1p4). In addition, C99 allows "or some other
1094 * implementation-defined type".
1095 */
1096 static void
1097 check_bit_field_type(sym_t *dsym, type_t **const inout_tp, tspec_t *inout_t)
1098 {
1099 type_t *tp = *inout_tp;
1100 tspec_t t = *inout_t;
1101
1102 if (t == CHAR || t == UCHAR || t == SCHAR ||
1103 t == SHORT || t == USHORT || t == ENUM) {
1104 if (!bitfieldtype_ok) {
1105 if (sflag) {
1106 /* bit-field type '%s' invalid in ANSI C */
1107 warning(273, type_name(tp));
1108 } else if (pflag) {
1109 /* nonportable bit-field type '%s' */
1110 warning(34, type_name(tp));
1111 }
1112 }
1113 } else if (t == INT && dcs->d_sign_mod == NOTSPEC) {
1114 if (pflag && !bitfieldtype_ok) {
1115 /* bit-field of type plain 'int' has ... */
1116 warning(344);
1117 }
1118 } else if (t != INT && t != UINT && t != BOOL) {
1119 /*
1120 * Non-integer types are always illegal for bitfields,
1121 * regardless of BITFIELDTYPE. Integer types not dealt with
1122 * above are okay only if BITFIELDTYPE is in effect.
1123 */
1124 if (!(bitfieldtype_ok || gflag) || !is_integer(t)) {
1125 /* illegal bit-field type '%s' */
1126 warning(35, type_name(tp));
1127 int sz = tp->t_flen;
1128 dsym->s_type = tp = dup_type(gettyp(t = INT));
1129 if ((tp->t_flen = sz) > size_in_bits(t))
1130 tp->t_flen = size_in_bits(t);
1131 *inout_t = t;
1132 *inout_tp = tp;
1133 }
1134 }
1135 }
1136
1137 static void
1138 declare_bit_field(sym_t *dsym, tspec_t *inout_t, type_t **const inout_tp)
1139 {
1140
1141 check_bit_field_type(dsym, inout_tp, inout_t);
1142
1143 type_t *const tp = *inout_tp;
1144 tspec_t const t = *inout_t;
1145 if (tp->t_flen < 0 || tp->t_flen > (ssize_t)size_in_bits(t)) {
1146 /* illegal bit-field size: %d */
1147 error(36, tp->t_flen);
1148 tp->t_flen = size_in_bits(t);
1149 } else if (tp->t_flen == 0 && dsym->s_name != unnamed) {
1150 /* zero size bit-field */
1151 error(37);
1152 tp->t_flen = size_in_bits(t);
1153 }
1154 if (dsym->s_scl == MOU) {
1155 /* illegal use of bit-field */
1156 error(41);
1157 dsym->s_type->t_bitfield = false;
1158 dsym->s_bitfield = false;
1159 }
1160 }
1161
1162 /*
1163 * Process the declarator of a struct/union element.
1164 */
1165 sym_t *
1166 declarator_1_struct_union(sym_t *dsym)
1167 {
1168 type_t *tp;
1169 tspec_t t;
1170 int sz;
1171 int o = 0; /* Appease GCC */
1172
1173 lint_assert(dsym->s_scl == MOS || dsym->s_scl == MOU);
1174
1175 if (dcs->d_redeclared_symbol != NULL) {
1176 /* should be ensured by storesym() */
1177 lint_assert(dcs->d_redeclared_symbol->s_scl == MOS ||
1178 dcs->d_redeclared_symbol->s_scl == MOU);
1179
1180 if (dsym->s_styp == dcs->d_redeclared_symbol->s_styp) {
1181 /* duplicate member name: %s */
1182 error(33, dsym->s_name);
1183 rmsym(dcs->d_redeclared_symbol);
1184 }
1185 }
1186
1187 check_type(dsym);
1188
1189 t = (tp = dsym->s_type)->t_tspec;
1190
1191 if (dsym->s_bitfield) {
1192 declare_bit_field(dsym, &t, &tp);
1193 } else if (t == FUNC) {
1194 /* function illegal in structure or union */
1195 error(38);
1196 dsym->s_type = tp = derive_type(tp, t = PTR);
1197 }
1198
1199 /*
1200 * bit-fields of length 0 are not warned about because length()
1201 * does not return the length of the bit-field but the length
1202 * of the type the bit-field is packed in (it's ok)
1203 */
1204 if ((sz = length(dsym->s_type, dsym->s_name)) == 0) {
1205 if (t == ARRAY && dsym->s_type->t_dim == 0) {
1206 /* zero sized array in struct is a C99 extension: %s */
1207 c99ism(39, dsym->s_name);
1208 }
1209 }
1210
1211 if (dcs->d_ctx == MOU) {
1212 o = dcs->d_offset;
1213 dcs->d_offset = 0;
1214 }
1215 if (dsym->s_bitfield) {
1216 align(alignment_in_bits(tp), tp->t_flen);
1217 dsym->s_value.v_quad =
1218 (dcs->d_offset / size_in_bits(t)) * size_in_bits(t);
1219 tp->t_foffs = dcs->d_offset - (int)dsym->s_value.v_quad;
1220 dcs->d_offset += tp->t_flen;
1221 } else {
1222 align(alignment_in_bits(tp), 0);
1223 dsym->s_value.v_quad = dcs->d_offset;
1224 dcs->d_offset += sz;
1225 }
1226 if (dcs->d_ctx == MOU) {
1227 if (o > dcs->d_offset)
1228 dcs->d_offset = o;
1229 }
1230
1231 check_function_definition(dsym, false);
1232
1233 /*
1234 * Clear the BITFIELDTYPE indicator after processing each
1235 * structure element.
1236 */
1237 bitfieldtype_ok = false;
1238
1239 return dsym;
1240 }
1241
1242 /*
1243 * Aligns next structure element as required.
1244 *
1245 * al contains the required alignment, len the length of a bit-field.
1246 */
1247 static void
1248 align(int al, int len)
1249 {
1250 int no;
1251
1252 /*
1253 * The alignment of the current element becomes the alignment of
1254 * the struct/union if it is larger than the current alignment
1255 * of the struct/union.
1256 */
1257 if (al > dcs->d_stralign)
1258 dcs->d_stralign = al;
1259
1260 no = (dcs->d_offset + (al - 1)) & ~(al - 1);
1261 if (len == 0 || dcs->d_offset + len > no)
1262 dcs->d_offset = no;
1263 }
1264
1265 /*
1266 * Remember the width of the field in its type structure.
1267 */
1268 sym_t *
1269 bitfield(sym_t *dsym, int len)
1270 {
1271
1272 if (dsym == NULL) {
1273 dsym = getblk(sizeof(*dsym));
1274 dsym->s_name = unnamed;
1275 dsym->s_kind = FMEMBER;
1276 dsym->s_scl = MOS;
1277 dsym->s_type = gettyp(UINT);
1278 dsym->s_block_level = -1;
1279 }
1280 dsym->s_type = dup_type(dsym->s_type);
1281 dsym->s_type->t_bitfield = true;
1282 dsym->s_type->t_flen = len;
1283 dsym->s_bitfield = true;
1284 return dsym;
1285 }
1286
1287 /*
1288 * Collect information about a sequence of asterisks and qualifiers in a
1289 * list of type pqinf_t.
1290 * Qualifiers always refer to the left asterisk.
1291 * The rightmost asterisk will be at the top of the list.
1292 */
1293 pqinf_t *
1294 merge_pointers_and_qualifiers(pqinf_t *p1, pqinf_t *p2)
1295 {
1296 pqinf_t *p;
1297
1298 if (p2->p_pcnt != 0) {
1299 /* left '*' at the end of the list */
1300 for (p = p2; p->p_next != NULL; p = p->p_next)
1301 continue;
1302 p->p_next = p1;
1303 return p2;
1304 } else {
1305 if (p2->p_const) {
1306 if (p1->p_const) {
1307 /* duplicate '%s' */
1308 warning(10, "const");
1309 }
1310 p1->p_const = true;
1311 }
1312 if (p2->p_volatile) {
1313 if (p1->p_volatile) {
1314 /* duplicate '%s' */
1315 warning(10, "volatile");
1316 }
1317 p1->p_volatile = true;
1318 }
1319 free(p2);
1320 return p1;
1321 }
1322 }
1323
1324 /*
1325 * The following 3 functions extend the type of a declarator with
1326 * pointer, function and array types.
1327 *
1328 * The current type is the type built by deftyp() (dcs->d_type) and
1329 * pointer, function and array types already added for this
1330 * declarator. The new type extension is inserted between both.
1331 */
1332 sym_t *
1333 add_pointer(sym_t *decl, pqinf_t *pi)
1334 {
1335 type_t **tpp, *tp;
1336 pqinf_t *npi;
1337
1338 tpp = &decl->s_type;
1339 while (*tpp != NULL && *tpp != dcs->d_type)
1340 tpp = &(*tpp)->t_subt;
1341 if (*tpp == NULL)
1342 return decl;
1343
1344 while (pi != NULL) {
1345 *tpp = tp = getblk(sizeof(*tp));
1346 tp->t_tspec = PTR;
1347 tp->t_const = pi->p_const;
1348 tp->t_volatile = pi->p_volatile;
1349 *(tpp = &tp->t_subt) = dcs->d_type;
1350 npi = pi->p_next;
1351 free(pi);
1352 pi = npi;
1353 }
1354 return decl;
1355 }
1356
1357 /*
1358 * If a dimension was specified, dim is true, otherwise false
1359 * n is the specified dimension
1360 */
1361 sym_t *
1362 add_array(sym_t *decl, bool dim, int n)
1363 {
1364 type_t **tpp, *tp;
1365
1366 tpp = &decl->s_type;
1367 while (*tpp != NULL && *tpp != dcs->d_type)
1368 tpp = &(*tpp)->t_subt;
1369 if (*tpp == NULL)
1370 return decl;
1371
1372 *tpp = tp = getblk(sizeof(*tp));
1373 tp->t_tspec = ARRAY;
1374 tp->t_subt = dcs->d_type;
1375 tp->t_dim = n;
1376
1377 if (n < 0) {
1378 /* negative array dimension (%d) */
1379 error(20, n);
1380 n = 0;
1381 } else if (n == 0 && dim) {
1382 /* zero sized array is a C99 extension */
1383 c99ism(322);
1384 } else if (n == 0 && !dim) {
1385 setcomplete(tp, false);
1386 }
1387
1388 return decl;
1389 }
1390
1391 sym_t *
1392 add_function(sym_t *decl, sym_t *args)
1393 {
1394 type_t **tpp, *tp;
1395
1396 if (dcs->d_proto) {
1397 if (tflag)
1398 /* function prototypes are illegal in traditional C */
1399 warning(270);
1400 args = new_style_function(decl, args);
1401 } else {
1402 old_style_function(decl, args);
1403 }
1404
1405 /*
1406 * The symbols are removed from the symbol table by
1407 * end_declaration_level after add_function. To be able to restore
1408 * them if this is a function definition, a pointer to the list of all
1409 * symbols is stored in dcs->d_next->d_func_proto_syms. Also a list of
1410 * the arguments (concatenated by s_next) is stored in
1411 * dcs->d_next->d_func_args. (dcs->d_next must be used because *dcs is
1412 * the declaration stack element created for the list of params and is
1413 * removed after add_function.)
1414 */
1415 if (dcs->d_next->d_ctx == EXTERN &&
1416 decl->s_type == dcs->d_next->d_type) {
1417 dcs->d_next->d_func_proto_syms = dcs->d_dlsyms;
1418 dcs->d_next->d_func_args = args;
1419 }
1420
1421 tpp = &decl->s_type;
1422 while (*tpp != NULL && *tpp != dcs->d_next->d_type)
1423 tpp = &(*tpp)->t_subt;
1424 if (*tpp == NULL)
1425 return decl;
1426
1427 *tpp = tp = getblk(sizeof(*tp));
1428 tp->t_tspec = FUNC;
1429 tp->t_subt = dcs->d_next->d_type;
1430 if ((tp->t_proto = dcs->d_proto) != false)
1431 tp->t_args = args;
1432 tp->t_vararg = dcs->d_vararg;
1433
1434 return decl;
1435 }
1436
1437 /*
1438 * Called for new style function declarations.
1439 */
1440 /* ARGSUSED */
1441 static sym_t *
1442 new_style_function(sym_t *decl, sym_t *args)
1443 {
1444 sym_t *arg, *sym;
1445 scl_t sc;
1446 int n;
1447
1448 /*
1449 * Declarations of structs/unions/enums in param lists are legal,
1450 * but senseless.
1451 */
1452 for (sym = dcs->d_dlsyms; sym != NULL; sym = sym->s_dlnxt) {
1453 sc = sym->s_scl;
1454 if (sc == STRUCT_TAG || sc == UNION_TAG || sc == ENUM_TAG) {
1455 /* dubious tag declaration: %s %s */
1456 warning(85, storage_class_name(sc), sym->s_name);
1457 }
1458 }
1459
1460 n = 1;
1461 for (arg = args; arg != NULL; arg = arg->s_next) {
1462 if (arg->s_type->t_tspec == VOID) {
1463 if (n > 1 || arg->s_next != NULL) {
1464 /* void must be sole parameter */
1465 error(60);
1466 arg->s_type = gettyp(INT);
1467 }
1468 }
1469 n++;
1470 }
1471
1472 /* return NULL if first param is VOID */
1473 return args != NULL && args->s_type->t_tspec != VOID ? args : NULL;
1474 }
1475
1476 /*
1477 * Called for old style function declarations.
1478 */
1479 static void
1480 old_style_function(sym_t *decl, sym_t *args)
1481 {
1482
1483 /*
1484 * Remember list of params only if this is really seams to be
1485 * a function definition.
1486 */
1487 if (dcs->d_next->d_ctx == EXTERN &&
1488 decl->s_type == dcs->d_next->d_type) {
1489 /*
1490 * We assume that this becomes a function definition. If
1491 * we are wrong, it's corrected in check_function_definition().
1492 */
1493 if (args != NULL) {
1494 decl->s_osdef = true;
1495 decl->s_args = args;
1496 }
1497 } else {
1498 if (args != NULL)
1499 /* function prototype parameters must have types */
1500 warning(62);
1501 }
1502 }
1503
1504 /*
1505 * Lists of identifiers in functions declarations are allowed only if
1506 * it's also a function definition. If this is not the case, print an
1507 * error message.
1508 */
1509 void
1510 check_function_definition(sym_t *sym, bool msg)
1511 {
1512
1513 if (sym->s_osdef) {
1514 if (msg) {
1515 /* incomplete or misplaced function definition */
1516 error(22);
1517 }
1518 sym->s_osdef = false;
1519 sym->s_args = NULL;
1520 }
1521 }
1522
1523 /*
1524 * Process the name in a declarator.
1525 * The symbol gets one of the storage classes EXTERN, STATIC, AUTO or
1526 * TYPEDEF.
1527 * s_def and s_reg are valid after declarator_name().
1528 */
1529 sym_t *
1530 declarator_name(sym_t *sym)
1531 {
1532 scl_t sc = NOSCL;
1533
1534 if (sym->s_scl == NOSCL) {
1535 dcs->d_redeclared_symbol = NULL;
1536 } else if (sym->s_defarg) {
1537 sym->s_defarg = false;
1538 dcs->d_redeclared_symbol = NULL;
1539 } else {
1540 dcs->d_redeclared_symbol = sym;
1541 sym = pushdown(sym);
1542 }
1543
1544 switch (dcs->d_ctx) {
1545 case MOS:
1546 case MOU:
1547 /* Set parent */
1548 sym->s_styp = dcs->d_tagtyp->t_str;
1549 sym->s_def = DEF;
1550 sym->s_value.v_tspec = INT;
1551 sc = dcs->d_ctx;
1552 break;
1553 case EXTERN:
1554 /*
1555 * static and external symbols without "extern" are
1556 * considered to be tentative defined, external
1557 * symbols with "extern" are declared, and typedef names
1558 * are defined. Tentative defined and declared symbols
1559 * may become defined if an initializer is present or
1560 * this is a function definition.
1561 */
1562 if ((sc = dcs->d_scl) == NOSCL) {
1563 sc = EXTERN;
1564 sym->s_def = TDEF;
1565 } else if (sc == STATIC) {
1566 sym->s_def = TDEF;
1567 } else if (sc == TYPEDEF) {
1568 sym->s_def = DEF;
1569 } else {
1570 lint_assert(sc == EXTERN);
1571 sym->s_def = DECL;
1572 }
1573 break;
1574 case PROTO_ARG:
1575 sym->s_arg = true;
1576 /* FALLTHROUGH */
1577 case ARG:
1578 if ((sc = dcs->d_scl) == NOSCL) {
1579 sc = AUTO;
1580 } else {
1581 lint_assert(sc == REG);
1582 sym->s_reg = true;
1583 sc = AUTO;
1584 }
1585 sym->s_def = DEF;
1586 break;
1587 case AUTO:
1588 if ((sc = dcs->d_scl) == NOSCL) {
1589 /*
1590 * XXX somewhat ugly because we dont know whether
1591 * this is AUTO or EXTERN (functions). If we are
1592 * wrong it must be corrected in declare_local(),
1593 * where we have the necessary type information.
1594 */
1595 sc = AUTO;
1596 sym->s_def = DEF;
1597 } else if (sc == AUTO || sc == STATIC || sc == TYPEDEF) {
1598 sym->s_def = DEF;
1599 } else if (sc == REG) {
1600 sym->s_reg = true;
1601 sc = AUTO;
1602 sym->s_def = DEF;
1603 } else {
1604 lint_assert(sc == EXTERN);
1605 sym->s_def = DECL;
1606 }
1607 break;
1608 default:
1609 lint_assert(/*CONSTCOND*/false);
1610 }
1611 sym->s_scl = sc;
1612
1613 sym->s_type = dcs->d_type;
1614
1615 dcs->d_func_proto_syms = NULL;
1616
1617 return sym;
1618 }
1619
1620 /*
1621 * Process a name in the list of formal parameters in an old style function
1622 * definition.
1623 */
1624 sym_t *
1625 old_style_function_name(sym_t *sym)
1626 {
1627
1628 if (sym->s_scl != NOSCL) {
1629 if (block_level == sym->s_block_level) {
1630 /* redeclaration of formal parameter %s */
1631 error(21, sym->s_name);
1632 lint_assert(sym->s_defarg);
1633 }
1634 sym = pushdown(sym);
1635 }
1636 sym->s_type = gettyp(INT);
1637 sym->s_scl = AUTO;
1638 sym->s_def = DEF;
1639 sym->s_defarg = sym->s_arg = true;
1640 return sym;
1641 }
1642
1643 /*
1644 * Create the type of a tag.
1645 *
1646 * tag points to the symbol table entry of the tag
1647 * kind is the kind of the tag (STRUCT/UNION/ENUM)
1648 * decl is true if the type of the tag will be completed in this declaration
1649 * (the following token is T_LBRACE)
1650 * semi is true if the following token is T_SEMI
1651 */
1652 type_t *
1653 mktag(sym_t *tag, tspec_t kind, bool decl, bool semi)
1654 {
1655 scl_t scl;
1656 type_t *tp;
1657
1658 if (kind == STRUCT) {
1659 scl = STRUCT_TAG;
1660 } else if (kind == UNION) {
1661 scl = UNION_TAG;
1662 } else {
1663 lint_assert(kind == ENUM);
1664 scl = ENUM_TAG;
1665 }
1666
1667 if (tag != NULL) {
1668 if (tag->s_scl != NOSCL) {
1669 tag = newtag(tag, scl, decl, semi);
1670 } else {
1671 /* a new tag, no empty declaration */
1672 dcs->d_next->d_nonempty_decl = true;
1673 if (scl == ENUM_TAG && !decl) {
1674 if (!tflag && (sflag || pflag))
1675 /* forward reference to enum type */
1676 warning(42);
1677 }
1678 }
1679 if (tag->s_scl == NOSCL) {
1680 tag->s_scl = scl;
1681 tag->s_type = tp = getblk(sizeof(*tp));
1682 tp->t_packed = dcs->d_packed;
1683 } else {
1684 tp = tag->s_type;
1685 }
1686 } else {
1687 tag = getblk(sizeof(*tag));
1688 tag->s_name = unnamed;
1689 UNIQUE_CURR_POS(tag->s_def_pos);
1690 tag->s_kind = FTAG;
1691 tag->s_scl = scl;
1692 tag->s_block_level = -1;
1693 tag->s_type = tp = getblk(sizeof(*tp));
1694 tp->t_packed = dcs->d_packed;
1695 dcs->d_next->d_nonempty_decl = true;
1696 }
1697
1698 if (tp->t_tspec == NOTSPEC) {
1699 tp->t_tspec = kind;
1700 if (kind != ENUM) {
1701 tp->t_str = getblk(sizeof(*tp->t_str));
1702 tp->t_str->sou_align_in_bits = CHAR_SIZE;
1703 tp->t_str->sou_tag = tag;
1704 } else {
1705 tp->t_is_enum = true;
1706 tp->t_enum = getblk(sizeof(*tp->t_enum));
1707 tp->t_enum->en_tag = tag;
1708 }
1709 setcomplete(tp, false);
1710 }
1711 return tp;
1712 }
1713
1714 /*
1715 * Checks all possible cases of tag redeclarations.
1716 * decl is true if T_LBRACE follows
1717 * semi is true if T_SEMI follows
1718 */
1719 static sym_t *
1720 newtag(sym_t *tag, scl_t scl, bool decl, bool semi)
1721 {
1722
1723 if (tag->s_block_level < block_level) {
1724 if (semi) {
1725 /* "struct a;" */
1726 if (!tflag) {
1727 if (!sflag)
1728 /* decl. introduces new type ... */
1729 warning(44, storage_class_name(scl),
1730 tag->s_name);
1731 tag = pushdown(tag);
1732 } else if (tag->s_scl != scl) {
1733 /* base type is really '%s %s' */
1734 warning(45, storage_class_name(tag->s_scl),
1735 tag->s_name);
1736 }
1737 dcs->d_next->d_nonempty_decl = true;
1738 } else if (decl) {
1739 /* "struct a { ... } " */
1740 if (hflag)
1741 /* redefinition hides earlier one: %s */
1742 warning(43, tag->s_name);
1743 tag = pushdown(tag);
1744 dcs->d_next->d_nonempty_decl = true;
1745 } else if (tag->s_scl != scl) {
1746 /* base type is really '%s %s' */
1747 warning(45, storage_class_name(tag->s_scl),
1748 tag->s_name);
1749 /* declaration introduces new type in ANSI C: %s %s */
1750 if (!sflag) {
1751 /* decl. introduces new type in ANSI C: %s %s */
1752 warning(44, storage_class_name(scl),
1753 tag->s_name);
1754 }
1755 tag = pushdown(tag);
1756 dcs->d_next->d_nonempty_decl = true;
1757 }
1758 } else {
1759 if (tag->s_scl != scl) {
1760 /* (%s) tag redeclared */
1761 error(46, storage_class_name(tag->s_scl));
1762 print_previous_declaration(-1, tag);
1763 tag = pushdown(tag);
1764 dcs->d_next->d_nonempty_decl = true;
1765 } else if (decl && !is_incomplete(tag->s_type)) {
1766 /* (%s) tag redeclared */
1767 error(46, storage_class_name(tag->s_scl));
1768 print_previous_declaration(-1, tag);
1769 tag = pushdown(tag);
1770 dcs->d_next->d_nonempty_decl = true;
1771 } else if (semi || decl) {
1772 dcs->d_next->d_nonempty_decl = true;
1773 }
1774 }
1775 return tag;
1776 }
1777
1778 const char *
1779 storage_class_name(scl_t sc)
1780 {
1781 const char *s;
1782
1783 switch (sc) {
1784 case EXTERN: s = "extern"; break;
1785 case STATIC: s = "static"; break;
1786 case AUTO: s = "auto"; break;
1787 case REG: s = "register"; break;
1788 case TYPEDEF: s = "typedef"; break;
1789 case STRUCT_TAG:s = "struct"; break;
1790 case UNION_TAG: s = "union"; break;
1791 case ENUM_TAG: s = "enum"; break;
1792 default: lint_assert(/*CONSTCOND*/false);
1793 }
1794 return s;
1795 }
1796
1797 /*
1798 * tp points to the type of the tag, fmem to the list of members.
1799 */
1800 type_t *
1801 complete_tag_struct_or_union(type_t *tp, sym_t *fmem)
1802 {
1803 tspec_t t;
1804 struct_or_union *sp;
1805 int n;
1806 sym_t *mem;
1807
1808 setcomplete(tp, true);
1809
1810 t = tp->t_tspec;
1811 align(dcs->d_stralign, 0);
1812 sp = tp->t_str;
1813 sp->sou_align_in_bits = dcs->d_stralign;
1814 sp->sou_first_member = fmem;
1815 if (tp->t_packed)
1816 setpackedsize(tp);
1817 else
1818 sp->sou_size_in_bits = dcs->d_offset;
1819
1820 if (sp->sou_size_in_bits == 0) {
1821 /* zero sized %s is a C9X feature */
1822 c99ism(47, ttab[t].tt_name);
1823 }
1824
1825 n = 0;
1826 for (mem = fmem; mem != NULL; mem = mem->s_next) {
1827 /* bind anonymous members to the structure */
1828 if (mem->s_styp == NULL) {
1829 mem->s_styp = sp;
1830 if (mem->s_type->t_bitfield) {
1831 sp->sou_size_in_bits += bitfieldsize(&mem);
1832 if (mem == NULL)
1833 break;
1834 }
1835 sp->sou_size_in_bits += type_size_in_bits(mem->s_type);
1836 }
1837 if (mem->s_name != unnamed)
1838 n++;
1839 }
1840
1841 if (n == 0 && sp->sou_size_in_bits != 0) {
1842 /* %s has no named members */
1843 warning(65, t == STRUCT ? "structure" : "union");
1844 }
1845 return tp;
1846 }
1847
1848 type_t *
1849 complete_tag_enum(type_t *tp, sym_t *fmem)
1850 {
1851
1852 setcomplete(tp, true);
1853 tp->t_enum->en_first_enumerator = fmem;
1854 return tp;
1855 }
1856
1857 /*
1858 * Processes the name of an enumerator in an enum declaration.
1859 *
1860 * sym points to the enumerator
1861 * val is the value of the enumerator
1862 * impl is true if the value of the enumerator was not explicitly specified.
1863 */
1864 sym_t *
1865 enumeration_constant(sym_t *sym, int val, bool impl)
1866 {
1867
1868 if (sym->s_scl != NOSCL) {
1869 if (sym->s_block_level == block_level) {
1870 /* no hflag, because this is illegal!!! */
1871 if (sym->s_arg) {
1872 /* enumeration constant hides parameter: %s */
1873 warning(57, sym->s_name);
1874 } else {
1875 /* redeclaration of %s */
1876 error(27, sym->s_name);
1877 /*
1878 * inside blocks it should not be too
1879 * complicated to find the position of the
1880 * previous declaration
1881 */
1882 if (block_level == 0)
1883 print_previous_declaration(-1, sym);
1884 }
1885 } else {
1886 if (hflag)
1887 /* redefinition hides earlier one: %s */
1888 warning(43, sym->s_name);
1889 }
1890 sym = pushdown(sym);
1891 }
1892 sym->s_scl = CTCONST;
1893 sym->s_type = dcs->d_tagtyp;
1894 sym->s_value.v_tspec = INT;
1895 sym->s_value.v_quad = val;
1896 if (impl && val - 1 == TARG_INT_MAX) {
1897 /* overflow in enumeration values: %s */
1898 warning(48, sym->s_name);
1899 }
1900 enumval = val + 1;
1901 return sym;
1902 }
1903
1904 /*
1905 * Process a single external declarator.
1906 */
1907 static void
1908 declare_extern(sym_t *dsym, bool initflg, sbuf_t *renaming)
1909 {
1910 bool dowarn, rval, redec;
1911 sym_t *rdsym;
1912 char *s;
1913
1914 if (renaming != NULL) {
1915 lint_assert(dsym->s_rename == NULL);
1916
1917 s = getlblk(1, renaming->sb_len + 1);
1918 (void)memcpy(s, renaming->sb_name, renaming->sb_len + 1);
1919 dsym->s_rename = s;
1920 }
1921
1922 check_function_definition(dsym, true);
1923
1924 check_type(dsym);
1925
1926 if (initflg && !check_init(dsym))
1927 dsym->s_def = DEF;
1928
1929 /*
1930 * Declarations of functions are marked as "tentative" in
1931 * declarator_name(). This is wrong because there are no
1932 * tentative function definitions.
1933 */
1934 if (dsym->s_type->t_tspec == FUNC && dsym->s_def == TDEF)
1935 dsym->s_def = DECL;
1936
1937 if (dcs->d_inline) {
1938 if (dsym->s_type->t_tspec == FUNC) {
1939 dsym->s_inline = true;
1940 } else {
1941 /* variable declared inline: %s */
1942 warning(268, dsym->s_name);
1943 }
1944 }
1945
1946 /* Write the declaration into the output file */
1947 if (plibflg && llibflg &&
1948 dsym->s_type->t_tspec == FUNC && dsym->s_type->t_proto) {
1949 /*
1950 * With both LINTLIBRARY and PROTOLIB the prototype is
1951 * written as a function definition to the output file.
1952 */
1953 rval = dsym->s_type->t_subt->t_tspec != VOID;
1954 outfdef(dsym, &dsym->s_def_pos, rval, false, NULL);
1955 } else {
1956 outsym(dsym, dsym->s_scl, dsym->s_def);
1957 }
1958
1959 if ((rdsym = dcs->d_redeclared_symbol) != NULL) {
1960
1961 /*
1962 * If the old symbol stems from an old style function
1963 * definition, we have remembered the params in rdsmy->s_args
1964 * and compare them with the params of the prototype.
1965 */
1966 if (rdsym->s_osdef && dsym->s_type->t_proto) {
1967 redec = check_old_style_definition(rdsym, dsym);
1968 } else {
1969 redec = false;
1970 }
1971
1972 if (!redec &&
1973 !check_redeclaration(dsym, (dowarn = false, &dowarn))) {
1974
1975 if (dowarn) {
1976 if (sflag)
1977 /* redeclaration of %s */
1978 error(27, dsym->s_name);
1979 else
1980 /* redeclaration of %s */
1981 warning(27, dsym->s_name);
1982 print_previous_declaration(-1, rdsym);
1983 }
1984
1985 /*
1986 * Take over the remembered params if the new symbol
1987 * is not a prototype.
1988 */
1989 if (rdsym->s_osdef && !dsym->s_type->t_proto) {
1990 dsym->s_osdef = rdsym->s_osdef;
1991 dsym->s_args = rdsym->s_args;
1992 dsym->s_def_pos = rdsym->s_def_pos;
1993 }
1994
1995 /*
1996 * Remember the position of the declaration if the
1997 * old symbol was a prototype and the new is not.
1998 * Also remember the position if the old symbol
1999 * was defined and the new is not.
2000 */
2001 if (rdsym->s_type->t_proto && !dsym->s_type->t_proto) {
2002 dsym->s_def_pos = rdsym->s_def_pos;
2003 } else if (rdsym->s_def == DEF && dsym->s_def != DEF) {
2004 dsym->s_def_pos = rdsym->s_def_pos;
2005 }
2006
2007 /*
2008 * Copy usage information of the name into the new
2009 * symbol.
2010 */
2011 copy_usage_info(dsym, rdsym);
2012
2013 /* Once a name is defined, it remains defined. */
2014 if (rdsym->s_def == DEF)
2015 dsym->s_def = DEF;
2016
2017 /* once a function is inline, it remains inline */
2018 if (rdsym->s_inline)
2019 dsym->s_inline = true;
2020
2021 complete_type(dsym, rdsym);
2022
2023 }
2024
2025 rmsym(rdsym);
2026 }
2027
2028 if (dsym->s_scl == TYPEDEF) {
2029 dsym->s_type = dup_type(dsym->s_type);
2030 dsym->s_type->t_typedef = true;
2031 settdsym(dsym->s_type, dsym);
2032 }
2033
2034 }
2035
2036 void
2037 declare(sym_t *decl, bool initflg, sbuf_t *renaming)
2038 {
2039
2040 if (dcs->d_ctx == EXTERN) {
2041 declare_extern(decl, initflg, renaming);
2042 } else if (dcs->d_ctx == ARG) {
2043 if (renaming != NULL) {
2044 /* symbol renaming can't be used on function arguments */
2045 error(310);
2046 } else
2047 (void)declare_argument(decl, initflg);
2048 } else {
2049 lint_assert(dcs->d_ctx == AUTO);
2050 if (renaming != NULL) {
2051 /* symbol renaming can't be used on automatic variables */
2052 error(311);
2053 } else
2054 declare_local(decl, initflg);
2055 }
2056 }
2057
2058 /*
2059 * Copies information about usage into a new symbol table entry of
2060 * the same symbol.
2061 */
2062 void
2063 copy_usage_info(sym_t *sym, sym_t *rdsym)
2064 {
2065
2066 sym->s_set_pos = rdsym->s_set_pos;
2067 sym->s_use_pos = rdsym->s_use_pos;
2068 sym->s_set = rdsym->s_set;
2069 sym->s_used = rdsym->s_used;
2070 }
2071
2072 /*
2073 * Prints an error and returns true if a symbol is redeclared/redefined.
2074 * Otherwise returns false and, in some cases of minor problems, prints
2075 * a warning.
2076 */
2077 bool
2078 check_redeclaration(sym_t *dsym, bool *dowarn)
2079 {
2080 sym_t *rsym;
2081
2082 if ((rsym = dcs->d_redeclared_symbol)->s_scl == CTCONST) {
2083 /* redeclaration of %s */
2084 error(27, dsym->s_name);
2085 print_previous_declaration(-1, rsym);
2086 return true;
2087 }
2088 if (rsym->s_scl == TYPEDEF) {
2089 /* typedef redeclared: %s */
2090 error(89, dsym->s_name);
2091 print_previous_declaration(-1, rsym);
2092 return true;
2093 }
2094 if (dsym->s_scl == TYPEDEF) {
2095 /* redeclaration of %s */
2096 error(27, dsym->s_name);
2097 print_previous_declaration(-1, rsym);
2098 return true;
2099 }
2100 if (rsym->s_def == DEF && dsym->s_def == DEF) {
2101 /* redefinition of %s */
2102 error(28, dsym->s_name);
2103 print_previous_declaration(-1, rsym);
2104 return true;
2105 }
2106 if (!eqtype(rsym->s_type, dsym->s_type, false, false, dowarn)) {
2107 /* redeclaration of %s */
2108 error(27, dsym->s_name);
2109 print_previous_declaration(-1, rsym);
2110 return true;
2111 }
2112 if (rsym->s_scl == EXTERN && dsym->s_scl == EXTERN)
2113 return false;
2114 if (rsym->s_scl == STATIC && dsym->s_scl == STATIC)
2115 return false;
2116 if (rsym->s_scl == STATIC && dsym->s_def == DECL)
2117 return false;
2118 if (rsym->s_scl == EXTERN && rsym->s_def == DEF) {
2119 /*
2120 * All cases except "int a = 1; static int a;" are caught
2121 * above with or without a warning
2122 */
2123 /* redeclaration of %s */
2124 error(27, dsym->s_name);
2125 print_previous_declaration(-1, rsym);
2126 return true;
2127 }
2128 if (rsym->s_scl == EXTERN) {
2129 /* previously declared extern, becomes static: %s */
2130 warning(29, dsym->s_name);
2131 print_previous_declaration(-1, rsym);
2132 return false;
2133 }
2134 /*
2135 * Now it's one of:
2136 * "static a; int a;", "static a; int a = 1;", "static a = 1; int a;"
2137 */
2138 /* redeclaration of %s; ANSI C requires "static" */
2139 if (sflag) {
2140 /* redeclaration of %s; ANSI C requires static */
2141 warning(30, dsym->s_name);
2142 print_previous_declaration(-1, rsym);
2143 }
2144 dsym->s_scl = STATIC;
2145 return false;
2146 }
2147
2148 static bool
2149 qualifiers_correspond(const type_t *tp1, const type_t *tp2, bool ignqual)
2150 {
2151 if (tp1->t_const != tp2->t_const && !ignqual && !tflag)
2152 return false;
2153
2154 if (tp1->t_volatile != tp2->t_volatile && !ignqual && !tflag)
2155 return false;
2156
2157 return true;
2158 }
2159
2160 bool
2161 eqptrtype(const type_t *tp1, const type_t *tp2, bool ignqual)
2162 {
2163 if (tp1->t_tspec != VOID && tp2->t_tspec != VOID)
2164 return false;
2165
2166 if (!qualifiers_correspond(tp1, tp2, ignqual))
2167 return false;
2168
2169 return true;
2170 }
2171
2172
2173 /*
2174 * Checks if two types are compatible.
2175 *
2176 * ignqual ignore qualifiers of type; used for function params
2177 * promot promote left type; used for comparison of params of
2178 * old style function definitions with params of prototypes.
2179 * *dowarn set to true if an old style function declaration is not
2180 * compatible with a prototype
2181 */
2182 bool
2183 eqtype(const type_t *tp1, const type_t *tp2,
2184 bool ignqual, bool promot, bool *dowarn)
2185 {
2186 tspec_t t;
2187
2188 while (tp1 != NULL && tp2 != NULL) {
2189
2190 t = tp1->t_tspec;
2191 if (promot) {
2192 if (t == FLOAT) {
2193 t = DOUBLE;
2194 } else if (t == CHAR || t == SCHAR) {
2195 t = INT;
2196 } else if (t == UCHAR) {
2197 t = tflag ? UINT : INT;
2198 } else if (t == SHORT) {
2199 t = INT;
2200 } else if (t == USHORT) {
2201 /* CONSTCOND */
2202 t = TARG_INT_MAX < TARG_USHRT_MAX || tflag ? UINT : INT;
2203 }
2204 }
2205
2206 if (t != tp2->t_tspec)
2207 return false;
2208
2209 if (!qualifiers_correspond(tp1, tp2, ignqual))
2210 return false;
2211
2212 if (t == STRUCT || t == UNION)
2213 return tp1->t_str == tp2->t_str;
2214
2215 if (t == ARRAY && tp1->t_dim != tp2->t_dim) {
2216 if (tp1->t_dim != 0 && tp2->t_dim != 0)
2217 return false;
2218 }
2219
2220 /* dont check prototypes for traditional */
2221 if (t == FUNC && !tflag) {
2222 if (tp1->t_proto && tp2->t_proto) {
2223 if (!eqargs(tp1, tp2, dowarn))
2224 return false;
2225 } else if (tp1->t_proto) {
2226 if (!mnoarg(tp1, dowarn))
2227 return false;
2228 } else if (tp2->t_proto) {
2229 if (!mnoarg(tp2, dowarn))
2230 return false;
2231 }
2232 }
2233
2234 tp1 = tp1->t_subt;
2235 tp2 = tp2->t_subt;
2236 ignqual = promot = false;
2237
2238 }
2239
2240 return tp1 == tp2;
2241 }
2242
2243 /*
2244 * Compares the parameter types of two prototypes.
2245 */
2246 static bool
2247 eqargs(const type_t *tp1, const type_t *tp2, bool *dowarn)
2248 {
2249 sym_t *a1, *a2;
2250
2251 if (tp1->t_vararg != tp2->t_vararg)
2252 return false;
2253
2254 a1 = tp1->t_args;
2255 a2 = tp2->t_args;
2256
2257 while (a1 != NULL && a2 != NULL) {
2258
2259 if (!eqtype(a1->s_type, a2->s_type, true, false, dowarn))
2260 return false;
2261
2262 a1 = a1->s_next;
2263 a2 = a2->s_next;
2264
2265 }
2266
2267 return a1 == a2;
2268 }
2269
2270 /*
2271 * mnoarg() (matches functions with no argument type information)
2272 * returns whether all parameters of a prototype are compatible with
2273 * an old style function declaration.
2274 * This is the case if the following conditions are met:
2275 * 1. the prototype has a fixed number of parameters
2276 * 2. no parameter is of type float
2277 * 3. no parameter is converted to another type if integer promotion
2278 * is applied on it
2279 */
2280 static bool
2281 mnoarg(const type_t *tp, bool *dowarn)
2282 {
2283 sym_t *arg;
2284 tspec_t t;
2285
2286 if (tp->t_vararg) {
2287 if (dowarn != NULL)
2288 *dowarn = true;
2289 }
2290 for (arg = tp->t_args; arg != NULL; arg = arg->s_next) {
2291 if ((t = arg->s_type->t_tspec) == FLOAT ||
2292 t == CHAR || t == SCHAR || t == UCHAR ||
2293 t == SHORT || t == USHORT) {
2294 if (dowarn != NULL)
2295 *dowarn = true;
2296 }
2297 }
2298 return true;
2299 }
2300
2301 /*
2302 * Compares a prototype declaration with the remembered arguments of
2303 * a previous old style function definition.
2304 */
2305 static bool
2306 check_old_style_definition(sym_t *rdsym, sym_t *dsym)
2307 {
2308 sym_t *args, *pargs, *arg, *parg;
2309 int narg, nparg, n;
2310 bool dowarn, msg;
2311
2312 args = rdsym->s_args;
2313 pargs = dsym->s_type->t_args;
2314
2315 msg = false;
2316
2317 narg = nparg = 0;
2318 for (arg = args; arg != NULL; arg = arg->s_next)
2319 narg++;
2320 for (parg = pargs; parg != NULL; parg = parg->s_next)
2321 nparg++;
2322 if (narg != nparg) {
2323 /* prototype does not match old-style definition */
2324 error(63);
2325 msg = true;
2326 goto end;
2327 }
2328
2329 arg = args;
2330 parg = pargs;
2331 n = 1;
2332 while (narg-- > 0) {
2333 dowarn = false;
2334 /*
2335 * If it does not match due to promotion and sflag is
2336 * not set we print only a warning.
2337 */
2338 if (!eqtype(arg->s_type, parg->s_type, true, true, &dowarn) ||
2339 dowarn) {
2340 /* prototype does not match old style defn., arg #%d */
2341 error(299, n);
2342 msg = true;
2343 }
2344 arg = arg->s_next;
2345 parg = parg->s_next;
2346 n++;
2347 }
2348
2349 end:
2350 if (msg)
2351 /* old style definition */
2352 print_previous_declaration(300, rdsym);
2353
2354 return msg;
2355 }
2356
2357 /*
2358 * Completes a type by copying the dimension and prototype information
2359 * from a second compatible type.
2360 *
2361 * Following lines are legal:
2362 * "typedef a[]; a b; a b[10]; a c; a c[20];"
2363 * "typedef ft(); ft f; f(int); ft g; g(long);"
2364 * This means that, if a type is completed, the type structure must
2365 * be duplicated.
2366 */
2367 void
2368 complete_type(sym_t *dsym, sym_t *ssym)
2369 {
2370 type_t **dstp, *src;
2371 type_t *dst;
2372
2373 dstp = &dsym->s_type;
2374 src = ssym->s_type;
2375
2376 while ((dst = *dstp) != NULL) {
2377 lint_assert(src != NULL);
2378 lint_assert(dst->t_tspec == src->t_tspec);
2379 if (dst->t_tspec == ARRAY) {
2380 if (dst->t_dim == 0 && src->t_dim != 0) {
2381 *dstp = dst = dup_type(dst);
2382 dst->t_dim = src->t_dim;
2383 setcomplete(dst, true);
2384 }
2385 } else if (dst->t_tspec == FUNC) {
2386 if (!dst->t_proto && src->t_proto) {
2387 *dstp = dst = dup_type(dst);
2388 dst->t_proto = true;
2389 dst->t_args = src->t_args;
2390 }
2391 }
2392 dstp = &dst->t_subt;
2393 src = src->t_subt;
2394 }
2395 }
2396
2397 /*
2398 * Completes the declaration of a single argument.
2399 */
2400 sym_t *
2401 declare_argument(sym_t *sym, bool initflg)
2402 {
2403 tspec_t t;
2404
2405 check_function_definition(sym, true);
2406
2407 check_type(sym);
2408
2409 if (dcs->d_redeclared_symbol != NULL &&
2410 dcs->d_redeclared_symbol->s_block_level == block_level) {
2411 /* redeclaration of formal parameter %s */
2412 error(237, sym->s_name);
2413 rmsym(dcs->d_redeclared_symbol);
2414 sym->s_arg = true;
2415 }
2416
2417 if (!sym->s_arg) {
2418 /* declared argument %s is missing */
2419 error(53, sym->s_name);
2420 sym->s_arg = true;
2421 }
2422
2423 if (initflg) {
2424 /* cannot initialize parameter: %s */
2425 error(52, sym->s_name);
2426 }
2427
2428 if ((t = sym->s_type->t_tspec) == ARRAY) {
2429 sym->s_type = derive_type(sym->s_type->t_subt, PTR);
2430 } else if (t == FUNC) {
2431 if (tflag)
2432 /* a function is declared as an argument: %s */
2433 warning(50, sym->s_name);
2434 sym->s_type = derive_type(sym->s_type, PTR);
2435 } else if (t == FLOAT) {
2436 if (tflag)
2437 sym->s_type = gettyp(DOUBLE);
2438 }
2439
2440 if (dcs->d_inline)
2441 /* argument declared inline: %s */
2442 warning(269, sym->s_name);
2443
2444 /*
2445 * Arguments must have complete types. lengths() prints the needed
2446 * error messages (null dimension is impossible because arrays are
2447 * converted to pointers).
2448 */
2449 if (sym->s_type->t_tspec != VOID)
2450 (void)length(sym->s_type, sym->s_name);
2451
2452 sym->s_used = dcs->d_used;
2453 mark_as_set(sym);
2454
2455 return sym;
2456 }
2457
2458 void
2459 check_func_lint_directives(void)
2460 {
2461 sym_t *arg;
2462 int narg, n;
2463 tspec_t t;
2464
2465 /* check for illegal combinations of lint directives */
2466 if (printflike_argnum != -1 && scanflike_argnum != -1) {
2467 /* can't be used together: ** PRINTFLIKE ** ** SCANFLIKE ** */
2468 warning(289);
2469 printflike_argnum = scanflike_argnum = -1;
2470 }
2471 if (nvararg != -1 &&
2472 (printflike_argnum != -1 || scanflike_argnum != -1)) {
2473 /* dubious use of ** VARARGS ** with ** %s ** */
2474 warning(288,
2475 printflike_argnum != -1 ? "PRINTFLIKE" : "SCANFLIKE");
2476 nvararg = -1;
2477 }
2478
2479 /*
2480 * check if the argument of a lint directive is compatible with the
2481 * number of arguments.
2482 */
2483 narg = 0;
2484 for (arg = dcs->d_func_args; arg != NULL; arg = arg->s_next)
2485 narg++;
2486 if (nargusg > narg) {
2487 /* argument number mismatch with directive: ** %s ** */
2488 warning(283, "ARGSUSED");
2489 nargusg = 0;
2490 }
2491 if (nvararg > narg) {
2492 /* argument number mismatch with directive: ** %s ** */
2493 warning(283, "VARARGS");
2494 nvararg = 0;
2495 }
2496 if (printflike_argnum > narg) {
2497 /* argument number mismatch with directive: ** %s ** */
2498 warning(283, "PRINTFLIKE");
2499 printflike_argnum = -1;
2500 } else if (printflike_argnum == 0) {
2501 printflike_argnum = -1;
2502 }
2503 if (scanflike_argnum > narg) {
2504 /* argument number mismatch with directive: ** %s ** */
2505 warning(283, "SCANFLIKE");
2506 scanflike_argnum = -1;
2507 } else if (scanflike_argnum == 0) {
2508 scanflike_argnum = -1;
2509 }
2510 if (printflike_argnum != -1 || scanflike_argnum != -1) {
2511 narg = printflike_argnum != -1
2512 ? printflike_argnum : scanflike_argnum;
2513 arg = dcs->d_func_args;
2514 for (n = 1; n < narg; n++)
2515 arg = arg->s_next;
2516 if (arg->s_type->t_tspec != PTR ||
2517 ((t = arg->s_type->t_subt->t_tspec) != CHAR &&
2518 t != UCHAR && t != SCHAR)) {
2519 /* arg. %d must be 'char *' for PRINTFLIKE/SCANFLIKE */
2520 warning(293, narg);
2521 printflike_argnum = scanflike_argnum = -1;
2522 }
2523 }
2524 }
2525
2526 /*
2527 * Warn about arguments in old style function definitions that default to int.
2528 * Check that an old style function definition is compatible to a previous
2529 * prototype.
2530 */
2531 void
2532 check_func_old_style_arguments(void)
2533 {
2534 sym_t *args, *arg, *pargs, *parg;
2535 int narg, nparg;
2536 bool msg;
2537
2538 args = funcsym->s_args;
2539 pargs = funcsym->s_type->t_args;
2540
2541 /*
2542 * print a warning for each argument of an old style function
2543 * definition which defaults to int
2544 */
2545 for (arg = args; arg != NULL; arg = arg->s_next) {
2546 if (arg->s_defarg) {
2547 /* argument type defaults to 'int': %s */
2548 warning(32, arg->s_name);
2549 arg->s_defarg = false;
2550 mark_as_set(arg);
2551 }
2552 }
2553
2554 /*
2555 * If this is an old style function definition and a prototype
2556 * exists, compare the types of arguments.
2557 */
2558 if (funcsym->s_osdef && funcsym->s_type->t_proto) {
2559 /*
2560 * If the number of arguments does not match, we need not
2561 * continue.
2562 */
2563 narg = nparg = 0;
2564 msg = false;
2565 for (parg = pargs; parg != NULL; parg = parg->s_next)
2566 nparg++;
2567 for (arg = args; arg != NULL; arg = arg->s_next)
2568 narg++;
2569 if (narg != nparg) {
2570 /* parameter mismatch: %d declared, %d defined */
2571 error(51, nparg, narg);
2572 msg = true;
2573 } else {
2574 parg = pargs;
2575 arg = args;
2576 while (narg-- > 0) {
2577 msg |= check_prototype_declaration(arg, parg);
2578 parg = parg->s_next;
2579 arg = arg->s_next;
2580 }
2581 }
2582 if (msg)
2583 /* prototype declaration */
2584 print_previous_declaration(285,
2585 dcs->d_redeclared_symbol);
2586
2587 /* from now on the prototype is valid */
2588 funcsym->s_osdef = false;
2589 funcsym->s_args = NULL;
2590 }
2591 }
2592
2593 /*
2594 * Checks compatibility of an old style function definition with a previous
2595 * prototype declaration.
2596 * Returns true if the position of the previous declaration should be reported.
2597 */
2598 static bool
2599 check_prototype_declaration(sym_t *arg, sym_t *parg)
2600 {
2601 type_t *tp, *ptp;
2602 bool dowarn, msg;
2603
2604 tp = arg->s_type;
2605 ptp = parg->s_type;
2606
2607 msg = false;
2608 dowarn = false;
2609
2610 if (!eqtype(tp, ptp, true, true, &dowarn)) {
2611 if (eqtype(tp, ptp, true, false, &dowarn)) {
2612 /* type does not match prototype: %s */
2613 gnuism(58, arg->s_name);
2614 msg = sflag || !gflag;
2615 } else {
2616 /* type does not match prototype: %s */
2617 error(58, arg->s_name);
2618 msg = true;
2619 }
2620 } else if (dowarn) {
2621 if (sflag)
2622 /* type does not match prototype: %s */
2623 error(58, arg->s_name);
2624 else
2625 /* type does not match prototype: %s */
2626 warning(58, arg->s_name);
2627 msg = true;
2628 }
2629
2630 return msg;
2631 }
2632
2633 /*
2634 * Completes a single local declaration/definition.
2635 */
2636 void
2637 declare_local(sym_t *dsym, bool initflg)
2638 {
2639
2640 /* Correct a mistake done in declarator_name(). */
2641 if (dsym->s_type->t_tspec == FUNC) {
2642 dsym->s_def = DECL;
2643 if (dcs->d_scl == NOSCL)
2644 dsym->s_scl = EXTERN;
2645 }
2646
2647 if (dsym->s_type->t_tspec == FUNC) {
2648 if (dsym->s_scl == STATIC) {
2649 /* dubious static function at block level: %s */
2650 warning(93, dsym->s_name);
2651 dsym->s_scl = EXTERN;
2652 } else if (dsym->s_scl != EXTERN && dsym->s_scl != TYPEDEF) {
2653 /* function has illegal storage class: %s */
2654 error(94, dsym->s_name);
2655 dsym->s_scl = EXTERN;
2656 }
2657 }
2658
2659 /*
2660 * functions may be declared inline at local scope, although
2661 * this has no effect for a later definition of the same
2662 * function.
2663 * XXX it should have an effect if tflag is set. this would
2664 * also be the way gcc behaves.
2665 */
2666 if (dcs->d_inline) {
2667 if (dsym->s_type->t_tspec == FUNC) {
2668 dsym->s_inline = true;
2669 } else {
2670 /* variable declared inline: %s */
2671 warning(268, dsym->s_name);
2672 }
2673 }
2674
2675 check_function_definition(dsym, true);
2676
2677 check_type(dsym);
2678
2679 if (dcs->d_redeclared_symbol != NULL && dsym->s_scl == EXTERN)
2680 declare_external_in_block(dsym);
2681
2682 if (dsym->s_scl == EXTERN) {
2683 /*
2684 * XXX if the static variable at level 0 is only defined
2685 * later, checking will be possible.
2686 */
2687 if (dsym->s_ext_sym == NULL) {
2688 outsym(dsym, EXTERN, dsym->s_def);
2689 } else {
2690 outsym(dsym, dsym->s_ext_sym->s_scl, dsym->s_def);
2691 }
2692 }
2693
2694 if (dcs->d_redeclared_symbol != NULL) {
2695
2696 if (dcs->d_redeclared_symbol->s_block_level == 0) {
2697
2698 switch (dsym->s_scl) {
2699 case AUTO:
2700 if (hflag)
2701 /* automatic hides external decl.: %s */
2702 warning(86, dsym->s_name);
2703 break;
2704 case STATIC:
2705 if (hflag)
2706 /* static hides external decl.: %s */
2707 warning(87, dsym->s_name);
2708 break;
2709 case TYPEDEF:
2710 if (hflag)
2711 /* typedef hides external decl.: %s */
2712 warning(88, dsym->s_name);
2713 break;
2714 case EXTERN:
2715 /*
2716 * Warnings and errors are printed in
2717 * declare_external_in_block()
2718 */
2719 break;
2720 default:
2721 lint_assert(/*CONSTCOND*/false);
2722 }
2723
2724 } else if (dcs->d_redeclared_symbol->s_block_level ==
2725 block_level) {
2726
2727 /* no hflag, because it's illegal! */
2728 if (dcs->d_redeclared_symbol->s_arg) {
2729 /*
2730 * if !tflag, a "redeclaration of %s" error
2731 * is produced below
2732 */
2733 if (tflag) {
2734 if (hflag)
2735 /* decl. hides parameter: %s */
2736 warning(91, dsym->s_name);
2737 rmsym(dcs->d_redeclared_symbol);
2738 }
2739 }
2740
2741 } else if (dcs->d_redeclared_symbol->s_block_level <
2742 block_level) {
2743
2744 if (hflag)
2745 /* declaration hides earlier one: %s */
2746 warning(95, dsym->s_name);
2747
2748 }
2749
2750 if (dcs->d_redeclared_symbol->s_block_level == block_level) {
2751
2752 /* redeclaration of %s */
2753 error(27, dsym->s_name);
2754 rmsym(dcs->d_redeclared_symbol);
2755
2756 }
2757
2758 }
2759
2760 if (initflg && !check_init(dsym)) {
2761 dsym->s_def = DEF;
2762 mark_as_set(dsym);
2763 }
2764
2765 if (dsym->s_scl == TYPEDEF) {
2766 dsym->s_type = dup_type(dsym->s_type);
2767 dsym->s_type->t_typedef = true;
2768 settdsym(dsym->s_type, dsym);
2769 }
2770
2771 /*
2772 * Before we can check the size we must wait for a initialization
2773 * which may follow.
2774 */
2775 }
2776
2777 /*
2778 * Processes (re)declarations of external symbols inside blocks.
2779 */
2780 static void
2781 declare_external_in_block(sym_t *dsym)
2782 {
2783 bool eqt, dowarn;
2784 sym_t *esym;
2785
2786 /* look for a symbol with the same name */
2787 esym = dcs->d_redeclared_symbol;
2788 while (esym != NULL && esym->s_block_level != 0) {
2789 while ((esym = esym->s_link) != NULL) {
2790 if (esym->s_kind != FVFT)
2791 continue;
2792 if (strcmp(dsym->s_name, esym->s_name) == 0)
2793 break;
2794 }
2795 }
2796 if (esym == NULL)
2797 return;
2798 if (esym->s_scl != EXTERN && esym->s_scl != STATIC) {
2799 /* gcc accepts this without a warning, pcc prints an error. */
2800 /* redeclaration of %s */
2801 warning(27, dsym->s_name);
2802 print_previous_declaration(-1, esym);
2803 return;
2804 }
2805
2806 dowarn = false;
2807 eqt = eqtype(esym->s_type, dsym->s_type, false, false, &dowarn);
2808
2809 if (!eqt || dowarn) {
2810 if (esym->s_scl == EXTERN) {
2811 /* inconsistent redeclaration of extern: %s */
2812 warning(90, dsym->s_name);
2813 print_previous_declaration(-1, esym);
2814 } else {
2815 /* inconsistent redeclaration of static: %s */
2816 warning(92, dsym->s_name);
2817 print_previous_declaration(-1, esym);
2818 }
2819 }
2820
2821 if (eqt) {
2822 /*
2823 * Remember the external symbol so we can update usage
2824 * information at the end of the block.
2825 */
2826 dsym->s_ext_sym = esym;
2827 }
2828 }
2829
2830 /*
2831 * Print an error or a warning if the symbol cannot be initialized due
2832 * to type/storage class. Return whether an error has been detected.
2833 */
2834 static bool
2835 check_init(sym_t *sym)
2836 {
2837 bool erred;
2838
2839 erred = false;
2840
2841 if (sym->s_type->t_tspec == FUNC) {
2842 /* cannot initialize function: %s */
2843 error(24, sym->s_name);
2844 erred = true;
2845 } else if (sym->s_scl == TYPEDEF) {
2846 /* cannot initialize typedef: %s */
2847 error(25, sym->s_name);
2848 erred = true;
2849 } else if (sym->s_scl == EXTERN && sym->s_def == DECL) {
2850 /* cannot initialize "extern" declaration: %s */
2851 if (dcs->d_ctx == EXTERN) {
2852 /* cannot initialize extern declaration: %s */
2853 warning(26, sym->s_name);
2854 } else {
2855 /* cannot initialize extern declaration: %s */
2856 error(26, sym->s_name);
2857 erred = true;
2858 }
2859 }
2860
2861 return erred;
2862 }
2863
2864 /*
2865 * Create a symbol for an abstract declaration.
2866 */
2867 sym_t *
2868 abstract_name(void)
2869 {
2870 sym_t *sym;
2871
2872 lint_assert(dcs->d_ctx == ABSTRACT || dcs->d_ctx == PROTO_ARG);
2873
2874 sym = getblk(sizeof(*sym));
2875
2876 sym->s_name = unnamed;
2877 sym->s_def = DEF;
2878 sym->s_scl = ABSTRACT;
2879 sym->s_block_level = -1;
2880
2881 if (dcs->d_ctx == PROTO_ARG)
2882 sym->s_arg = true;
2883
2884 sym->s_type = dcs->d_type;
2885 dcs->d_redeclared_symbol = NULL;
2886 dcs->d_vararg = false;
2887
2888 return sym;
2889 }
2890
2891 /*
2892 * Removes anything which has nothing to do on global level.
2893 */
2894 void
2895 global_clean_up(void)
2896 {
2897
2898 while (dcs->d_next != NULL)
2899 end_declaration_level();
2900
2901 cleanup();
2902 block_level = 0;
2903 mem_block_level = 0;
2904
2905 /*
2906 * remove all information about pending lint directives without
2907 * warnings.
2908 */
2909 global_clean_up_decl(true);
2910 }
2911
2912 /*
2913 * Process an abstract type declaration
2914 */
2915 sym_t *
2916 declare_1_abstract(sym_t *sym)
2917 {
2918
2919 check_function_definition(sym, true);
2920 check_type(sym);
2921 return sym;
2922 }
2923
2924 /*
2925 * Checks size after declarations of variables and their initialization.
2926 */
2927 void
2928 check_size(sym_t *dsym)
2929 {
2930
2931 if (dsym->s_def != DEF)
2932 return;
2933 if (dsym->s_scl == TYPEDEF)
2934 return;
2935 if (dsym->s_type->t_tspec == FUNC)
2936 return;
2937
2938 if (length(dsym->s_type, dsym->s_name) == 0 &&
2939 dsym->s_type->t_tspec == ARRAY && dsym->s_type->t_dim == 0) {
2940 if (tflag) {
2941 /* empty array declaration: %s */
2942 warning(190, dsym->s_name);
2943 } else {
2944 /* empty array declaration: %s */
2945 error(190, dsym->s_name);
2946 }
2947 }
2948 }
2949
2950 /*
2951 * Mark an object as set if it is not already
2952 */
2953 void
2954 mark_as_set(sym_t *sym)
2955 {
2956
2957 if (!sym->s_set) {
2958 sym->s_set = true;
2959 UNIQUE_CURR_POS(sym->s_set_pos);
2960 }
2961 }
2962
2963 /*
2964 * Mark an object as used if it is not already
2965 */
2966 void
2967 mark_as_used(sym_t *sym, bool fcall, bool szof)
2968 {
2969
2970 if (!sym->s_used) {
2971 sym->s_used = true;
2972 UNIQUE_CURR_POS(sym->s_use_pos);
2973 }
2974 /*
2975 * for function calls another record is written
2976 *
2977 * XXX Should symbols used in sizeof() be treated as used or not?
2978 * Probably not, because there is no sense to declare an
2979 * external variable only to get their size.
2980 */
2981 if (!fcall && !szof && sym->s_kind == FVFT && sym->s_scl == EXTERN)
2982 outusg(sym);
2983 }
2984
2985 /*
2986 * Prints warnings for a list of variables and labels (concatenated
2987 * with s_dlnxt) if these are not used or only set.
2988 */
2989 void
2990 check_usage(dinfo_t *di)
2991 {
2992 sym_t *sym;
2993 int mklwarn;
2994
2995 /* for this warning LINTED has no effect */
2996 mklwarn = lwarn;
2997 lwarn = LWARN_ALL;
2998
2999 #ifdef DEBUG
3000 printf("%s, %d: >temp lwarn = %d\n", curr_pos.p_file, curr_pos.p_line,
3001 lwarn);
3002 #endif
3003 for (sym = di->d_dlsyms; sym != NULL; sym = sym->s_dlnxt)
3004 check_usage_sym(di->d_asm, sym);
3005 lwarn = mklwarn;
3006 #ifdef DEBUG
3007 printf("%s, %d: <temp lwarn = %d\n", curr_pos.p_file, curr_pos.p_line,
3008 lwarn);
3009 #endif
3010 }
3011
3012 /*
3013 * Prints a warning for a single variable or label if it is not used or
3014 * only set.
3015 */
3016 void
3017 check_usage_sym(bool novar, sym_t *sym)
3018 {
3019
3020 if (sym->s_block_level == -1)
3021 return;
3022
3023 if (sym->s_kind == FVFT && sym->s_arg)
3024 check_argument_usage(novar, sym);
3025 else if (sym->s_kind == FVFT)
3026 check_variable_usage(novar, sym);
3027 else if (sym->s_kind == FLABEL)
3028 check_label_usage(sym);
3029 else if (sym->s_kind == FTAG)
3030 check_tag_usage(sym);
3031 }
3032
3033 static void
3034 check_argument_usage(bool novar, sym_t *arg)
3035 {
3036
3037 lint_assert(arg->s_set);
3038
3039 if (novar)
3040 return;
3041
3042 if (!arg->s_used && vflag) {
3043 /* argument '%s' unused in function '%s' */
3044 warning_at(231, &arg->s_def_pos, arg->s_name, funcsym->s_name);
3045 }
3046 }
3047
3048 static void
3049 check_variable_usage(bool novar, sym_t *sym)
3050 {
3051 scl_t sc;
3052 sym_t *xsym;
3053
3054 lint_assert(block_level != 0);
3055 lint_assert(sym->s_block_level != 0);
3056
3057 /* errors in expressions easily cause lots of these warnings */
3058 if (nerr != 0)
3059 return;
3060
3061 /*
3062 * XXX Only variables are checked, although types should
3063 * probably also be checked
3064 */
3065 if ((sc = sym->s_scl) != EXTERN && sc != STATIC &&
3066 sc != AUTO && sc != REG) {
3067 return;
3068 }
3069
3070 if (novar)
3071 return;
3072
3073 if (sc == EXTERN) {
3074 if (!sym->s_used && !sym->s_set) {
3075 /* '%s' unused in function '%s' */
3076 warning_at(192, &sym->s_def_pos,
3077 sym->s_name, funcsym->s_name);
3078 }
3079 } else {
3080 if (sym->s_set && !sym->s_used) {
3081 /* '%s' set but not used in function '%s' */
3082 warning_at(191, &sym->s_set_pos,
3083 sym->s_name, funcsym->s_name);
3084 } else if (!sym->s_used) {
3085 /* '%s' unused in function '%s' */
3086 warning_at(192, &sym->s_def_pos,
3087 sym->s_name, funcsym->s_name);
3088 }
3089 }
3090
3091 if (sc == EXTERN) {
3092 /*
3093 * information about usage is taken over into the symbol
3094 * table entry at level 0 if the symbol was locally declared
3095 * as an external symbol.
3096 *
3097 * XXX This is wrong for symbols declared static at level 0
3098 * if the usage information stems from sizeof(). This is
3099 * because symbols at level 0 only used in sizeof() are
3100 * considered to not be used.
3101 */
3102 if ((xsym = sym->s_ext_sym) != NULL) {
3103 if (sym->s_used && !xsym->s_used) {
3104 xsym->s_used = true;
3105 xsym->s_use_pos = sym->s_use_pos;
3106 }
3107 if (sym->s_set && !xsym->s_set) {
3108 xsym->s_set = true;
3109 xsym->s_set_pos = sym->s_set_pos;
3110 }
3111 }
3112 }
3113 }
3114
3115 static void
3116 check_label_usage(sym_t *lab)
3117 {
3118
3119 lint_assert(block_level == 1);
3120 lint_assert(lab->s_block_level == 1);
3121
3122 if (lab->s_set && !lab->s_used) {
3123 /* label %s unused in function %s */
3124 warning_at(232, &lab->s_set_pos, lab->s_name, funcsym->s_name);
3125 } else if (!lab->s_set) {
3126 /* undefined label %s */
3127 warning_at(23, &lab->s_use_pos, lab->s_name);
3128 }
3129 }
3130
3131 static void
3132 check_tag_usage(sym_t *sym)
3133 {
3134
3135 if (!is_incomplete(sym->s_type))
3136 return;
3137
3138 /* always complain about incomplete tags declared inside blocks */
3139 if (!zflag || dcs->d_ctx != EXTERN)
3140 return;
3141
3142 switch (sym->s_type->t_tspec) {
3143 case STRUCT:
3144 /* struct %s never defined */
3145 warning_at(233, &sym->s_def_pos, sym->s_name);
3146 break;
3147 case UNION:
3148 /* union %s never defined */
3149 warning_at(234, &sym->s_def_pos, sym->s_name);
3150 break;
3151 case ENUM:
3152 /* enum %s never defined */
3153 warning_at(235, &sym->s_def_pos, sym->s_name);
3154 break;
3155 default:
3156 lint_assert(/*CONSTCOND*/false);
3157 }
3158 }
3159
3160 /*
3161 * Called after the entire translation unit has been parsed.
3162 * Changes tentative definitions into definitions.
3163 * Performs some tests on global symbols. Detected problems are:
3164 * - defined variables of incomplete type
3165 * - constant variables which are not initialized
3166 * - static symbols which are never used
3167 */
3168 void
3169 check_global_symbols(void)
3170 {
3171 sym_t *sym;
3172
3173 if (block_level != 0 || dcs->d_next != NULL)
3174 norecover();
3175
3176 for (sym = dcs->d_dlsyms; sym != NULL; sym = sym->s_dlnxt) {
3177 if (sym->s_block_level == -1)
3178 continue;
3179 if (sym->s_kind == FVFT) {
3180 check_global_variable(sym);
3181 } else if (sym->s_kind == FTAG) {
3182 check_tag_usage(sym);
3183 } else {
3184 lint_assert(sym->s_kind == FMEMBER);
3185 }
3186 }
3187 }
3188
3189 static void
3190 check_unused_static_global_variable(const sym_t *sym)
3191 {
3192 if (sym->s_type->t_tspec == FUNC) {
3193 if (sym->s_def == DEF) {
3194 if (!sym->s_inline)
3195 /* static function %s unused */
3196 warning_at(236, &sym->s_def_pos, sym->s_name);
3197 } else {
3198 /* static function %s declared but not defined */
3199 warning_at(290, &sym->s_def_pos, sym->s_name);
3200 }
3201 } else if (!sym->s_set) {
3202 /* static variable %s unused */
3203 warning_at(226, &sym->s_def_pos, sym->s_name);
3204 } else {
3205 /* static variable %s set but not used */
3206 warning_at(307, &sym->s_def_pos, sym->s_name);
3207 }
3208 }
3209
3210 static void
3211 check_static_global_variable(const sym_t *sym)
3212 {
3213 if (sym->s_type->t_tspec == FUNC && sym->s_used && sym->s_def != DEF) {
3214 /* static function called but not defined: %s() */
3215 error_at(225, &sym->s_use_pos, sym->s_name);
3216 }
3217
3218 if (!sym->s_used)
3219 check_unused_static_global_variable(sym);
3220
3221 if (!tflag && sym->s_def == TDEF && sym->s_type->t_const) {
3222 /* const object %s should have initializer */
3223 warning_at(227, &sym->s_def_pos, sym->s_name);
3224 }
3225 }
3226
3227 static void
3228 check_global_variable(const sym_t *sym)
3229 {
3230
3231 if (sym->s_scl == TYPEDEF || sym->s_scl == CTCONST)
3232 return;
3233
3234 if (sym->s_scl == NOSCL)
3235 return; /* May be caused by a syntax error. */
3236
3237 lint_assert(sym->s_scl == EXTERN || sym->s_scl == STATIC);
3238
3239 check_global_variable_size(sym);
3240
3241 if (sym->s_scl == STATIC)
3242 check_static_global_variable(sym);
3243 }
3244
3245 static void
3246 check_global_variable_size(const sym_t *sym)
3247 {
3248 pos_t cpos;
3249 int length_in_bits;
3250
3251 if (sym->s_def != TDEF)
3252 return;
3253 if (sym->s_type->t_tspec == FUNC)
3254 /*
3255 * this can happen if a syntax error occurred after a
3256 * function declaration
3257 */
3258 return;
3259 if (sym->s_def == TDEF && sym->s_type->t_tspec == VOID)
3260 return; /* prevent internal error in length() below */
3261
3262 cpos = curr_pos;
3263 curr_pos = sym->s_def_pos;
3264 length_in_bits = length(sym->s_type, sym->s_name);
3265 curr_pos = cpos;
3266
3267 if (length_in_bits == 0 &&
3268 sym->s_type->t_tspec == ARRAY && sym->s_type->t_dim == 0) {
3269 if (tflag || (sym->s_scl == EXTERN && !sflag)) {
3270 /* empty array declaration: %s */
3271 warning_at(190, &sym->s_def_pos, sym->s_name);
3272 } else {
3273 /* empty array declaration: %s */
3274 error_at(190, &sym->s_def_pos, sym->s_name);
3275 }
3276 }
3277 }
3278
3279 /*
3280 * Prints information about location of previous definition/declaration.
3281 */
3282 void
3283 print_previous_declaration(int msg, const sym_t *psym)
3284 {
3285
3286 if (!rflag)
3287 return;
3288
3289 if (msg != -1) {
3290 (message_at)(msg, &psym->s_def_pos);
3291 } else if (psym->s_def == DEF || psym->s_def == TDEF) {
3292 /* previous definition of %s */
3293 message_at(261, &psym->s_def_pos, psym->s_name);
3294 } else {
3295 /* previous declaration of %s */
3296 message_at(260, &psym->s_def_pos, psym->s_name);
3297 }
3298 }
3299
3300 /*
3301 * Gets a node for a constant and returns the value of this constant
3302 * as integer.
3303 *
3304 * If the node is not constant or too large for int or of type float,
3305 * a warning will be printed.
3306 *
3307 * to_int_constant() should be used only inside declarations. If it is used in
3308 * expressions, it frees the memory used for the expression.
3309 */
3310 int
3311 to_int_constant(tnode_t *tn, bool required)
3312 {
3313 int i;
3314 tspec_t t;
3315 val_t *v;
3316
3317 v = constant(tn, required);
3318
3319 if (tn == NULL) {
3320 i = 1;
3321 goto done;
3322 }
3323
3324 /*
3325 * Abstract declarations are used inside expression. To free
3326 * the memory would be a fatal error.
3327 * We don't free blocks that are inside casts because these
3328 * will be used later to match types.
3329 */
3330 if (tn->tn_op != CON && dcs->d_ctx != ABSTRACT)
3331 expr_free_all();
3332
3333 if ((t = v->v_tspec) == FLOAT || t == DOUBLE || t == LDOUBLE) {
3334 i = (int)v->v_ldbl;
3335 /* integral constant expression expected */
3336 error(55);
3337 } else {
3338 i = (int)v->v_quad;
3339 if (is_uinteger(t)) {
3340 if ((uint64_t)v->v_quad > (uint64_t)TARG_INT_MAX) {
3341 /* integral constant too large */
3342 warning(56);
3343 }
3344 } else {
3345 if (v->v_quad > (int64_t)TARG_INT_MAX ||
3346 v->v_quad < (int64_t)TARG_INT_MIN) {
3347 /* integral constant too large */
3348 warning(56);
3349 }
3350 }
3351 }
3352
3353 done:
3354 free(v);
3355 return i;
3356 }
3357