tree.c revision 1.541 1 /* $NetBSD: tree.c,v 1.541 2023/07/01 09:31:55 rillig Exp $ */
2
3 /*
4 * Copyright (c) 1994, 1995 Jochen Pohl
5 * All Rights Reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by Jochen Pohl for
18 * The NetBSD Project.
19 * 4. The name of the author may not be used to endorse or promote products
20 * derived from this software without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 */
33
34 #if HAVE_NBTOOL_CONFIG_H
35 #include "nbtool_config.h"
36 #endif
37
38 #include <sys/cdefs.h>
39 #if defined(__RCSID)
40 __RCSID("$NetBSD: tree.c,v 1.541 2023/07/01 09:31:55 rillig Exp $");
41 #endif
42
43 #include <float.h>
44 #include <limits.h>
45 #include <math.h>
46 #include <signal.h>
47 #include <stdlib.h>
48 #include <string.h>
49
50 #include "lint1.h"
51
52
53 typedef struct integer_constraints {
54 int64_t smin; /* signed minimum */
55 int64_t smax; /* signed maximum */
56 uint64_t umin; /* unsigned minimum */
57 uint64_t umax; /* unsigned maximum */
58 uint64_t bset; /* bits that are definitely set */
59 uint64_t bclr; /* bits that are definitely clear */
60 } integer_constraints;
61
62
63 static uint64_t
64 u64_fill_right(uint64_t x)
65 {
66 x |= x >> 1;
67 x |= x >> 2;
68 x |= x >> 4;
69 x |= x >> 8;
70 x |= x >> 16;
71 x |= x >> 32;
72 return x;
73 }
74
75 static bool
76 str_ends_with(const char *haystack, const char *needle)
77 {
78 size_t hlen = strlen(haystack);
79 size_t nlen = strlen(needle);
80
81 return nlen <= hlen &&
82 memcmp(haystack + hlen - nlen, needle, nlen) == 0;
83 }
84
85 static const char *
86 op_name(op_t op)
87 {
88 return modtab[op].m_name;
89 }
90
91 static unsigned
92 width_in_bits(const type_t *tp)
93 {
94
95 lint_assert(is_integer(tp->t_tspec));
96 return tp->t_bitfield
97 ? tp->t_bit_field_width
98 : size_in_bits(tp->t_tspec);
99 }
100
101 static bool
102 ic_maybe_signed(const type_t *tp, const integer_constraints *ic)
103 {
104 return !is_uinteger(tp->t_tspec) && ic->bclr >> 63 == 0;
105 }
106
107 static integer_constraints
108 ic_any(const type_t *tp)
109 {
110 integer_constraints c;
111
112 uint64_t vbits = value_bits(width_in_bits(tp));
113 if (is_uinteger(tp->t_tspec)) {
114 c.smin = INT64_MIN;
115 c.smax = INT64_MAX;
116 c.umin = 0;
117 c.umax = vbits;
118 c.bset = 0;
119 c.bclr = ~c.umax;
120 } else {
121 c.smin = (int64_t)-1 - (int64_t)(vbits >> 1);
122 c.smax = (int64_t)(vbits >> 1);
123 c.umin = 0;
124 c.umax = UINT64_MAX;
125 c.bset = 0;
126 c.bclr = 0;
127 }
128 return c;
129 }
130
131 static integer_constraints
132 ic_con(const type_t *tp, const val_t *v)
133 {
134 integer_constraints c;
135
136 lint_assert(is_integer(tp->t_tspec));
137 int64_t s = v->v_quad;
138 uint64_t u = (uint64_t)s;
139 c.smin = s;
140 c.smax = s;
141 c.umin = u;
142 c.umax = u;
143 c.bset = u;
144 c.bclr = ~u;
145 return c;
146 }
147
148 static integer_constraints
149 ic_cvt(const type_t *ntp, const type_t *otp, integer_constraints a)
150 {
151 unsigned nw = width_in_bits(ntp);
152 unsigned ow = width_in_bits(otp);
153 bool nu = is_uinteger(ntp->t_tspec);
154 bool ou = is_uinteger(otp->t_tspec);
155
156 if (nw >= ow && nu == ou)
157 return a;
158 if (nw > ow && ou)
159 return a;
160 return ic_any(ntp);
161 }
162
163 static integer_constraints
164 ic_bitand(integer_constraints a, integer_constraints b)
165 {
166 integer_constraints c;
167
168 c.smin = INT64_MIN;
169 c.smax = INT64_MAX;
170 c.umin = 0;
171 c.umax = UINT64_MAX;
172 c.bset = a.bset & b.bset;
173 c.bclr = a.bclr | b.bclr;
174 return c;
175 }
176
177 static integer_constraints
178 ic_bitor(integer_constraints a, integer_constraints b)
179 {
180 integer_constraints c;
181
182 c.smin = INT64_MIN;
183 c.smax = INT64_MAX;
184 c.umin = 0;
185 c.umax = UINT64_MAX;
186 c.bset = a.bset | b.bset;
187 c.bclr = a.bclr & b.bclr;
188 return c;
189 }
190
191 static integer_constraints
192 ic_mod(const type_t *tp, integer_constraints a, integer_constraints b)
193 {
194 integer_constraints c;
195
196 if (ic_maybe_signed(tp, &a) || ic_maybe_signed(tp, &b))
197 return ic_any(tp);
198
199 c.smin = INT64_MIN;
200 c.smax = INT64_MAX;
201 c.umin = 0;
202 c.umax = b.umax - 1;
203 c.bset = 0;
204 c.bclr = ~u64_fill_right(c.umax);
205 return c;
206 }
207
208 static integer_constraints
209 ic_shl(const type_t *tp, integer_constraints a, integer_constraints b)
210 {
211 integer_constraints c;
212 unsigned int amount;
213
214 if (ic_maybe_signed(tp, &a))
215 return ic_any(tp);
216
217 if (b.smin == b.smax && b.smin >= 0 && b.smin < 64)
218 amount = (unsigned int)b.smin;
219 else if (b.umin == b.umax && b.umin < 64)
220 amount = (unsigned int)b.umin;
221 else
222 return ic_any(tp);
223
224 c.smin = INT64_MIN;
225 c.smax = INT64_MAX;
226 c.umin = 0;
227 c.umax = UINT64_MAX;
228 c.bset = a.bset << amount;
229 c.bclr = a.bclr << amount | (((uint64_t)1 << amount) - 1);
230 return c;
231 }
232
233 static integer_constraints
234 ic_shr(const type_t *tp, integer_constraints a, integer_constraints b)
235 {
236 integer_constraints c;
237 unsigned int amount;
238
239 if (ic_maybe_signed(tp, &a))
240 return ic_any(tp);
241
242 if (b.smin == b.smax && b.smin >= 0 && b.smin < 64)
243 amount = (unsigned int)b.smin;
244 else if (b.umin == b.umax && b.umin < 64)
245 amount = (unsigned int)b.umin;
246 else
247 return ic_any(tp);
248
249 c.smin = INT64_MIN;
250 c.smax = INT64_MAX;
251 c.umin = 0;
252 c.umax = UINT64_MAX;
253 c.bset = a.bset >> amount;
254 c.bclr = a.bclr >> amount | ~(~(uint64_t)0 >> amount);
255 return c;
256 }
257
258 static integer_constraints
259 ic_cond(integer_constraints a, integer_constraints b)
260 {
261 integer_constraints c;
262
263 c.smin = a.smin < b.smin ? a.smin : b.smin;
264 c.smax = a.smax > b.smax ? a.smax : b.smax;
265 c.umin = a.umin < b.umin ? a.umin : b.umin;
266 c.umax = a.umax > b.umax ? a.umax : b.umax;
267 c.bset = a.bset | b.bset;
268 c.bclr = a.bclr & b.bclr;
269 return c;
270 }
271
272 static integer_constraints
273 ic_expr(const tnode_t *tn)
274 {
275 integer_constraints lc, rc;
276
277 lint_assert(is_integer(tn->tn_type->t_tspec));
278
279 switch (tn->tn_op) {
280 case CON:
281 return ic_con(tn->tn_type, &tn->tn_val);
282 case CVT:
283 if (!is_integer(tn->tn_left->tn_type->t_tspec))
284 return ic_any(tn->tn_type);
285 lc = ic_expr(tn->tn_left);
286 return ic_cvt(tn->tn_type, tn->tn_left->tn_type, lc);
287 case MOD:
288 lc = ic_expr(before_conversion(tn->tn_left));
289 rc = ic_expr(before_conversion(tn->tn_right));
290 return ic_mod(tn->tn_type, lc, rc);
291 case SHL:
292 lc = ic_expr(tn->tn_left);
293 rc = ic_expr(tn->tn_right);
294 return ic_shl(tn->tn_type, lc, rc);
295 case SHR:
296 lc = ic_expr(tn->tn_left);
297 rc = ic_expr(tn->tn_right);
298 return ic_shr(tn->tn_type, lc, rc);
299 case BITAND:
300 lc = ic_expr(tn->tn_left);
301 rc = ic_expr(tn->tn_right);
302 return ic_bitand(lc, rc);
303 case BITOR:
304 lc = ic_expr(tn->tn_left);
305 rc = ic_expr(tn->tn_right);
306 return ic_bitor(lc, rc);
307 case QUEST:
308 lc = ic_expr(tn->tn_right->tn_left);
309 rc = ic_expr(tn->tn_right->tn_right);
310 return ic_cond(lc, rc);
311 default:
312 return ic_any(tn->tn_type);
313 }
314 }
315
316 /* Build 'pointer to tp', 'array of tp' or 'function returning tp'. */
317 type_t *
318 block_derive_type(type_t *tp, tspec_t t)
319 {
320 type_t *tp2;
321
322 tp2 = block_zero_alloc(sizeof(*tp2));
323 tp2->t_tspec = t;
324 tp2->t_subt = tp;
325 return tp2;
326 }
327
328 /*
329 * Derive 'pointer to tp' or 'function returning tp'.
330 * The memory is freed at the end of the current expression.
331 */
332 type_t *
333 expr_derive_type(type_t *tp, tspec_t t)
334 {
335 type_t *tp2;
336
337 tp2 = expr_zero_alloc(sizeof(*tp2));
338 tp2->t_tspec = t;
339 tp2->t_subt = tp;
340 return tp2;
341 }
342
343 /*
344 * Build and initialize a new node.
345 */
346 static tnode_t *
347 new_tnode(op_t op, bool sys, type_t *type, tnode_t *ln, tnode_t *rn)
348 {
349
350 tnode_t *ntn = expr_alloc_tnode();
351 ntn->tn_op = op;
352 ntn->tn_type = type;
353 ntn->tn_sys = sys;
354 ntn->tn_left = ln;
355 ntn->tn_right = rn;
356
357 if (op == INDIR || op == FSEL) {
358 lint_assert(ln->tn_type->t_tspec == PTR);
359 tspec_t t = ln->tn_type->t_subt->t_tspec;
360 if (t != FUNC && t != VOID)
361 ntn->tn_lvalue = true;
362 }
363
364 return ntn;
365 }
366
367 /*
368 * Create a node for a constant.
369 */
370 tnode_t *
371 build_constant(type_t *tp, val_t *v)
372 {
373
374 tnode_t *n = expr_alloc_tnode();
375 n->tn_op = CON;
376 n->tn_type = tp;
377 n->tn_val.v_tspec = tp->t_tspec;
378 n->tn_val.v_unsigned_since_c90 = v->v_unsigned_since_c90;
379 n->tn_val.v_char_constant = v->v_char_constant;
380 n->tn_val.v_u = v->v_u;
381 free(v);
382 return n;
383 }
384
385 static tnode_t *
386 build_integer_constant(tspec_t t, int64_t q)
387 {
388
389 tnode_t *n = expr_alloc_tnode();
390 n->tn_op = CON;
391 n->tn_type = gettyp(t);
392 n->tn_val.v_tspec = t;
393 n->tn_val.v_unsigned_since_c90 = false;
394 n->tn_val.v_char_constant = false;
395 n->tn_val.v_quad = q;
396 return n;
397 }
398
399 static void
400 fallback_symbol(sym_t *sym)
401 {
402
403 if (Tflag && fallback_symbol_strict_bool(sym))
404 return;
405
406 if (block_level > 0 && (strcmp(sym->s_name, "__FUNCTION__") == 0 ||
407 strcmp(sym->s_name, "__PRETTY_FUNCTION__") == 0)) {
408 /* __FUNCTION__/__PRETTY_FUNCTION__ is a GCC extension */
409 gnuism(316);
410 sym->s_type = block_derive_type(gettyp(CHAR), PTR);
411 sym->s_type->t_const = true;
412 return;
413 }
414
415 if (block_level > 0 && strcmp(sym->s_name, "__func__") == 0) {
416 if (!allow_c99)
417 /* __func__ is a C99 feature */
418 warning(317);
419 /* C11 6.4.2.2 */
420 sym->s_type = block_derive_type(gettyp(CHAR), ARRAY);
421 sym->s_type->t_const = true;
422 sym->s_type->t_dim = (int)strlen(funcsym->s_name) + 1;
423 return;
424 }
425
426 /* '%s' undefined */
427 error(99, sym->s_name);
428 }
429
430 /*
431 * Functions that are predeclared by GCC or other compilers can be called
432 * with arbitrary arguments. Since lint usually runs after a successful
433 * compilation, it's the compiler's job to catch any errors.
434 */
435 bool
436 is_compiler_builtin(const char *name)
437 {
438 /* https://gcc.gnu.org/onlinedocs/gcc/C-Extensions.html */
439 if (allow_gcc) {
440 if (strncmp(name, "__atomic_", 9) == 0 ||
441 strncmp(name, "__builtin_", 10) == 0 ||
442 strcmp(name, "alloca") == 0 ||
443 /* obsolete but still in use, as of 2021 */
444 strncmp(name, "__sync_", 7) == 0)
445 return true;
446 }
447
448 /* https://software.intel.com/sites/landingpage/IntrinsicsGuide/ */
449 if (strncmp(name, "_mm_", 4) == 0)
450 return true;
451
452 return false;
453 }
454
455 /* https://gcc.gnu.org/onlinedocs/gcc/Integer-Overflow-Builtins.html */
456 static bool
457 is_gcc_bool_builtin(const char *name)
458 {
459 return strncmp(name, "__builtin_", 10) == 0 &&
460 (str_ends_with(name, "_overflow") ||
461 str_ends_with(name, "_overflow_p"));
462 }
463
464 static void
465 build_name_call(sym_t *sym)
466 {
467
468 if (is_compiler_builtin(sym->s_name)) {
469 /*
470 * Do not warn about these, just assume that
471 * they are regular functions compatible with
472 * non-prototype calling conventions.
473 */
474 if (allow_gcc && is_gcc_bool_builtin(sym->s_name))
475 sym->s_type = gettyp(BOOL);
476 } else if (allow_c99) {
477 /* function '%s' implicitly declared to return int */
478 error(215, sym->s_name);
479 } else if (!allow_trad) {
480 /* function '%s' implicitly declared to return int */
481 warning(215, sym->s_name);
482 }
483
484 /* XXX if !allow_c90, the symbol should be exported to level 0 */
485 sym->s_type = block_derive_type(sym->s_type, FUNC);
486 }
487
488 /* Create a node for a name (symbol table entry). */
489 tnode_t *
490 build_name(sym_t *sym, bool is_funcname)
491 {
492
493 if (sym->s_scl == NOSCL && !in_gcc_attribute) {
494 sym->s_scl = EXTERN;
495 sym->s_def = DECL;
496 if (is_funcname)
497 build_name_call(sym);
498 else
499 fallback_symbol(sym);
500 }
501
502 lint_assert(sym->s_kind == FVFT || sym->s_kind == FMEMBER);
503
504 tnode_t *n = expr_alloc_tnode();
505 n->tn_type = sym->s_type;
506 if (sym->s_scl == BOOL_CONST) {
507 n->tn_op = CON;
508 n->tn_val.v_tspec = BOOL;
509 n->tn_val.v_unsigned_since_c90 = false;
510 n->tn_val.v_char_constant = false;
511 n->tn_val.v_quad = sym->u.s_bool_constant ? 1 : 0;
512 } else if (sym->s_scl == ENUM_CONST) {
513 n->tn_op = CON;
514 n->tn_val.v_tspec = INT; /* ENUM is in n->tn_type */
515 n->tn_val.v_unsigned_since_c90 = false;
516 n->tn_val.v_char_constant = false;
517 n->tn_val.v_quad = sym->u.s_enum_constant;
518 } else {
519 n->tn_op = NAME;
520 n->tn_sym = sym;
521 if (sym->s_kind == FVFT && sym->s_type->t_tspec != FUNC)
522 n->tn_lvalue = true;
523 }
524
525 return n;
526 }
527
528 tnode_t *
529 build_string(strg_t *strg)
530 {
531 size_t len = strg->st_len;
532
533 type_t *tp = expr_zero_alloc(sizeof(*tp));
534 tp->t_tspec = ARRAY;
535 tp->t_subt = gettyp(strg->st_char ? CHAR : WCHAR);
536 tp->t_dim = (int)(len + 1);
537
538 tnode_t *n = expr_alloc_tnode();
539 n->tn_op = STRING;
540 n->tn_type = tp;
541 n->tn_lvalue = true;
542
543 n->tn_string = expr_zero_alloc(sizeof(*n->tn_string));
544 n->tn_string->st_char = strg->st_char;
545 n->tn_string->st_len = len;
546
547 size_t chsize = strg->st_char ? sizeof(char) : sizeof(wchar_t);
548 size_t size = (len + 1) * chsize;
549 n->tn_string->st_mem = expr_zero_alloc(size);
550 (void)memcpy(n->tn_string->st_mem, strg->st_mem, size);
551 free(strg->st_mem);
552 free(strg);
553
554 return n;
555 }
556
557 tnode_t *
558 build_generic_selection(const tnode_t *expr,
559 struct generic_association *sel)
560 {
561 tnode_t *default_result = NULL;
562
563 for (; sel != NULL; sel = sel->ga_prev) {
564 if (expr != NULL &&
565 types_compatible(sel->ga_arg, expr->tn_type,
566 false, false, NULL))
567 return sel->ga_result;
568 else if (sel->ga_arg == NULL)
569 default_result = sel->ga_result;
570 }
571 return default_result;
572 }
573
574 static bool
575 is_out_of_char_range(const tnode_t *tn)
576 {
577 return tn->tn_op == CON &&
578 !tn->tn_val.v_char_constant &&
579 !(0 <= tn->tn_val.v_quad &&
580 tn->tn_val.v_quad < 1 << (CHAR_SIZE - 1));
581 }
582
583 static void
584 check_integer_comparison(op_t op, tnode_t *ln, tnode_t *rn)
585 {
586
587 tspec_t lt = ln->tn_type->t_tspec;
588 tspec_t rt = rn->tn_type->t_tspec;
589
590 if (ln->tn_op != CON && rn->tn_op != CON)
591 return;
592
593 if (!is_integer(lt) || !is_integer(rt))
594 return;
595
596 if (any_query_enabled && !in_system_header) {
597 if (lt == CHAR && rn->tn_op == CON &&
598 !rn->tn_val.v_char_constant) {
599 /* comparison '%s' of 'char' with plain integer %d */
600 query_message(14,
601 op_name(op), (int)rn->tn_val.v_quad);
602 }
603 if (rt == CHAR && ln->tn_op == CON &&
604 !ln->tn_val.v_char_constant) {
605 /* comparison '%s' of 'char' with plain integer %d */
606 query_message(14,
607 op_name(op), (int)ln->tn_val.v_quad);
608 }
609 }
610
611 if (hflag || pflag) {
612 if (lt == CHAR && is_out_of_char_range(rn)) {
613 char buf[128];
614 (void)snprintf(buf, sizeof(buf), "%s %d",
615 op_name(op), (int)rn->tn_val.v_quad);
616 /* nonportable character comparison '%s' */
617 warning(230, buf);
618 return;
619 }
620 if (rt == CHAR && is_out_of_char_range(ln)) {
621 char buf[128];
622 (void)snprintf(buf, sizeof(buf), "%d %s ?",
623 (int)ln->tn_val.v_quad, op_name(op));
624 /* nonportable character comparison '%s' */
625 warning(230, buf);
626 return;
627 }
628 }
629
630 if (is_uinteger(lt) && !is_uinteger(rt) &&
631 rn->tn_op == CON && rn->tn_val.v_quad <= 0) {
632 if (rn->tn_val.v_quad < 0) {
633 /* operator '%s' compares '%s' with '%s' */
634 warning(162, op_name(op),
635 type_name(ln->tn_type), "negative constant");
636 } else if (op == LT || op == GE) {
637 /* operator '%s' compares '%s' with '%s' */
638 warning(162, op_name(op), type_name(ln->tn_type), "0");
639 }
640 return;
641 }
642 if (is_uinteger(rt) && !is_uinteger(lt) &&
643 ln->tn_op == CON && ln->tn_val.v_quad <= 0) {
644 if (ln->tn_val.v_quad < 0) {
645 /* operator '%s' compares '%s' with '%s' */
646 warning(162, op_name(op),
647 "negative constant", type_name(rn->tn_type));
648 } else if (op == GT || op == LE) {
649 /* operator '%s' compares '%s' with '%s' */
650 warning(162, op_name(op), "0", type_name(rn->tn_type));
651 }
652 return;
653 }
654 }
655
656 static const tspec_t arith_rank[] = {
657 LDOUBLE, DOUBLE, FLOAT,
658 #ifdef INT128_SIZE
659 UINT128, INT128,
660 #endif
661 UQUAD, QUAD,
662 ULONG, LONG,
663 UINT, INT,
664 };
665
666 /* Keep unsigned in traditional C */
667 static tspec_t
668 usual_arithmetic_conversion_trad(tspec_t lt, tspec_t rt)
669 {
670
671 size_t i;
672 for (i = 0; arith_rank[i] != INT; i++)
673 if (lt == arith_rank[i] || rt == arith_rank[i])
674 break;
675
676 tspec_t t = arith_rank[i];
677 if (is_uinteger(lt) || is_uinteger(rt))
678 if (is_integer(t) && !is_uinteger(t))
679 return unsigned_type(t);
680 return t;
681 }
682
683 static tspec_t
684 usual_arithmetic_conversion_c90(tspec_t lt, tspec_t rt)
685 {
686
687 if (lt == rt)
688 return lt;
689
690 if (lt == LCOMPLEX || rt == LCOMPLEX)
691 return LCOMPLEX;
692 if (lt == DCOMPLEX || rt == DCOMPLEX)
693 return DCOMPLEX;
694 if (lt == FCOMPLEX || rt == FCOMPLEX)
695 return FCOMPLEX;
696 if (lt == LDOUBLE || rt == LDOUBLE)
697 return LDOUBLE;
698 if (lt == DOUBLE || rt == DOUBLE)
699 return DOUBLE;
700 if (lt == FLOAT || rt == FLOAT)
701 return FLOAT;
702
703 /*
704 * If type A has more bits than type B, it should be able to hold all
705 * possible values of type B.
706 */
707 if (size_in_bits(lt) > size_in_bits(rt))
708 return lt;
709 if (size_in_bits(lt) < size_in_bits(rt))
710 return rt;
711
712 size_t i;
713 for (i = 3; arith_rank[i] != INT; i++)
714 if (arith_rank[i] == lt || arith_rank[i] == rt)
715 break;
716 if ((is_uinteger(lt) || is_uinteger(rt)) &&
717 !is_uinteger(arith_rank[i]))
718 i--;
719 return arith_rank[i];
720 }
721
722 static tnode_t *
723 apply_usual_arithmetic_conversions(op_t op, tnode_t *tn, tspec_t t)
724 {
725 type_t *ntp = expr_dup_type(tn->tn_type);
726 ntp->t_tspec = t;
727 if (tn->tn_op != CON) {
728 /* usual arithmetic conversion for '%s' from '%s' to '%s' */
729 query_message(4, op_name(op),
730 type_name(tn->tn_type), type_name(ntp));
731 }
732 return convert(op, 0, ntp, tn);
733 }
734
735 /*
736 * Apply the "usual arithmetic conversions" (C99 6.3.1.8), which gives both
737 * operands the same type.
738 */
739 static void
740 balance(op_t op, tnode_t **lnp, tnode_t **rnp)
741 {
742
743 tspec_t lt = (*lnp)->tn_type->t_tspec;
744 tspec_t rt = (*rnp)->tn_type->t_tspec;
745 if (!is_arithmetic(lt) || !is_arithmetic(rt))
746 return;
747
748 tspec_t t = allow_c90
749 ? usual_arithmetic_conversion_c90(lt, rt)
750 : usual_arithmetic_conversion_trad(lt, rt);
751
752 if (t != lt)
753 *lnp = apply_usual_arithmetic_conversions(op, *lnp, t);
754 if (t != rt)
755 *rnp = apply_usual_arithmetic_conversions(op, *rnp, t);
756 }
757
758 /*
759 * Create a tree node for the unary & operator
760 */
761 static tnode_t *
762 build_address(bool sys, tnode_t *tn, bool noign)
763 {
764 tspec_t t;
765
766 if (!noign && ((t = tn->tn_type->t_tspec) == ARRAY || t == FUNC)) {
767 if (!allow_c90)
768 /* '&' before array or function: ignored */
769 warning(127);
770 return tn;
771 }
772
773 /* eliminate &* */
774 if (tn->tn_op == INDIR &&
775 tn->tn_left->tn_type->t_tspec == PTR &&
776 tn->tn_left->tn_type->t_subt == tn->tn_type) {
777 return tn->tn_left;
778 }
779
780 return new_tnode(ADDR, sys, expr_derive_type(tn->tn_type, PTR),
781 tn, NULL);
782 }
783
784 /*
785 * XXX
786 * Note: There appear to be a number of bugs in detecting overflow in
787 * this function. An audit and a set of proper regression tests are needed.
788 * --Perry Metzger, Nov. 16, 2001
789 */
790 /*
791 * Do only as much as necessary to compute constant expressions.
792 * Called only if the operator allows folding and all operands are constants.
793 */
794 static tnode_t *
795 fold(tnode_t *tn)
796 {
797
798 val_t *v = xcalloc(1, sizeof(*v));
799 v->v_tspec = tn->tn_type->t_tspec;
800
801 tspec_t t = tn->tn_left->tn_type->t_tspec;
802 bool utyp = !is_integer(t) || is_uinteger(t);
803 int64_t sl = tn->tn_left->tn_val.v_quad, sr = 0;
804 uint64_t ul = sl, ur = 0;
805 if (is_binary(tn))
806 ur = sr = tn->tn_right->tn_val.v_quad;
807
808 int64_t mask = (int64_t)value_bits(size_in_bits(t));
809 bool ovfl = false;
810
811 int64_t q;
812 switch (tn->tn_op) {
813 case UPLUS:
814 q = sl;
815 break;
816 case UMINUS:
817 q = sl == INT64_MIN ? sl : -sl;
818 if (sl != 0 && msb(q, t) == msb(sl, t))
819 ovfl = true;
820 break;
821 case COMPL:
822 q = ~sl;
823 break;
824 case MULT:
825 if (utyp) {
826 q = (int64_t)(ul * ur);
827 if (q != (q & mask))
828 ovfl = true;
829 else if ((ul != 0) && ((q / ul) != ur))
830 ovfl = true;
831 } else {
832 q = sl * sr;
833 if (msb(q, t) != (msb(sl, t) ^ msb(sr, t)))
834 ovfl = true;
835 }
836 break;
837 case DIV:
838 if (sr == 0) {
839 /* division by 0 */
840 error(139);
841 q = utyp ? -1 : INT64_MAX;
842 } else {
843 q = utyp ? (int64_t)(ul / ur) : sl / sr;
844 }
845 break;
846 case MOD:
847 if (sr == 0) {
848 /* modulus by 0 */
849 error(140);
850 q = 0;
851 } else {
852 q = utyp ? (int64_t)(ul % ur) : sl % sr;
853 }
854 break;
855 case PLUS:
856 q = utyp ? (int64_t)(ul + ur) : sl + sr;
857 if (msb(sl, t) && msb(sr, t) && !msb(q, t))
858 ovfl = true;
859 if (!utyp && !msb(sl, t) && !msb(sr, t) && msb(q, t))
860 ovfl = true;
861 break;
862 case MINUS:
863 q = utyp ? (int64_t)(ul - ur) : sl - sr;
864 if (!utyp && msb(sl, t) && !msb(sr, t) && !msb(q, t))
865 ovfl = true;
866 if (!msb(sl, t) && msb(sr, t) && msb(q, t))
867 ovfl = true;
868 break;
869 case SHL:
870 /* TODO: warn about out-of-bounds 'sr'. */
871 /* TODO: warn about overflow in signed '<<'. */
872 q = utyp ? (int64_t)(ul << (sr & 63)) : sl << (sr & 63);
873 break;
874 case SHR:
875 /*
876 * The sign must be explicitly extended because
877 * shifts of signed values are implementation dependent.
878 */
879 /* TODO: warn about out-of-bounds 'sr'. */
880 q = (int64_t)(ul >> (sr & 63));
881 q = convert_integer(q, t, size_in_bits(t) - (int)sr);
882 break;
883 case LT:
884 q = (utyp ? ul < ur : sl < sr) ? 1 : 0;
885 break;
886 case LE:
887 q = (utyp ? ul <= ur : sl <= sr) ? 1 : 0;
888 break;
889 case GE:
890 q = (utyp ? ul >= ur : sl >= sr) ? 1 : 0;
891 break;
892 case GT:
893 q = (utyp ? ul > ur : sl > sr) ? 1 : 0;
894 break;
895 case EQ:
896 q = (utyp ? ul == ur : sl == sr) ? 1 : 0;
897 break;
898 case NE:
899 q = (utyp ? ul != ur : sl != sr) ? 1 : 0;
900 break;
901 case BITAND:
902 q = utyp ? (int64_t)(ul & ur) : sl & sr;
903 break;
904 case BITXOR:
905 q = utyp ? (int64_t)(ul ^ ur) : sl ^ sr;
906 break;
907 case BITOR:
908 q = utyp ? (int64_t)(ul | ur) : sl | sr;
909 break;
910 default:
911 lint_assert(/*CONSTCOND*/false);
912 }
913
914 /* XXX: The overflow check does not work for 64-bit integers. */
915 if (ovfl ||
916 ((uint64_t)(q | mask) != ~(uint64_t)0 && (q & ~mask) != 0)) {
917 if (hflag)
918 /* integer overflow detected, op '%s' */
919 warning(141, op_name(tn->tn_op));
920 }
921
922 v->v_quad = convert_integer(q, t, 0);
923
924 tnode_t *cn = build_constant(tn->tn_type, v);
925 if (tn->tn_left->tn_system_dependent)
926 cn->tn_system_dependent = true;
927 if (is_binary(tn) && tn->tn_right->tn_system_dependent)
928 cn->tn_system_dependent = true;
929
930 return cn;
931 }
932
933 /*
934 * Create a new node for one of the operators POINT and ARROW.
935 */
936 static tnode_t *
937 build_struct_access(op_t op, bool sys, tnode_t *ln, tnode_t *rn)
938 {
939
940 lint_assert(rn->tn_op == NAME);
941 lint_assert(is_member(rn->tn_sym));
942
943 /*
944 * Remember if the left operand is an lvalue (structure members
945 * are lvalues if and only if the structure itself is an lvalue).
946 */
947 bool nolval = op == POINT && !ln->tn_lvalue;
948
949 if (op == POINT) {
950 ln = build_address(sys, ln, true);
951 } else if (ln->tn_type->t_tspec != PTR) {
952 lint_assert(!allow_c90);
953 lint_assert(is_integer(ln->tn_type->t_tspec));
954 ln = convert(NOOP, 0, expr_derive_type(gettyp(VOID), PTR), ln);
955 }
956
957 tnode_t *ctn = build_integer_constant(PTRDIFF_TSPEC,
958 rn->tn_sym->u.s_member.sm_offset_in_bits / CHAR_SIZE);
959
960 type_t *ptr_tp = expr_derive_type(rn->tn_type, PTR);
961 tnode_t *ntn = new_tnode(PLUS, sys, ptr_tp, ln, ctn);
962 if (ln->tn_op == CON)
963 ntn = fold(ntn);
964
965 if (rn->tn_type->t_bitfield) {
966 ntn = new_tnode(FSEL, sys, ntn->tn_type->t_subt, ntn, NULL);
967 } else {
968 ntn = new_tnode(INDIR, sys, ntn->tn_type->t_subt, ntn, NULL);
969 }
970
971 if (nolval)
972 ntn->tn_lvalue = false;
973
974 return ntn;
975 }
976
977 /*
978 * Get the size in bytes of type tp->t_subt, as a constant expression of type
979 * ptrdiff_t as seen from the target platform.
980 */
981 static tnode_t *
982 subt_size_in_bytes(type_t *tp)
983 {
984
985 lint_assert(tp->t_tspec == PTR);
986 tp = tp->t_subt;
987
988 int elem = 1;
989 while (tp->t_tspec == ARRAY) {
990 elem *= tp->t_dim;
991 tp = tp->t_subt;
992 }
993
994 int elsz_in_bits = 0;
995 switch (tp->t_tspec) {
996 case FUNC:
997 /* pointer to function is not allowed here */
998 error(110);
999 break;
1000 case VOID:
1001 /* cannot do pointer arithmetic on operand of unknown size */
1002 gnuism(136);
1003 break;
1004 case STRUCT:
1005 case UNION:
1006 if ((elsz_in_bits = (int)tp->t_sou->sou_size_in_bits) == 0)
1007 /* cannot do pointer arithmetic on operand of ... */
1008 error(136);
1009 break;
1010 case ENUM:
1011 if (is_incomplete(tp)) {
1012 /* cannot do pointer arithmetic on operand of ... */
1013 warning(136);
1014 }
1015 /* FALLTHROUGH */
1016 default:
1017 if ((elsz_in_bits = size_in_bits(tp->t_tspec)) == 0) {
1018 /* cannot do pointer arithmetic on operand of ... */
1019 error(136);
1020 } else {
1021 lint_assert(elsz_in_bits != -1);
1022 }
1023 break;
1024 }
1025
1026 if (elem == 0 && elsz_in_bits != 0) {
1027 /* cannot do pointer arithmetic on operand of unknown size */
1028 error(136);
1029 }
1030
1031 if (elsz_in_bits == 0)
1032 elsz_in_bits = CHAR_SIZE;
1033
1034 return build_integer_constant(PTRDIFF_TSPEC,
1035 (int64_t)(elem * elsz_in_bits / CHAR_SIZE));
1036 }
1037
1038 /*
1039 * Create a node for INCAFT, INCBEF, DECAFT and DECBEF.
1040 */
1041 static tnode_t *
1042 build_prepost_incdec(op_t op, bool sys, tnode_t *ln)
1043 {
1044
1045 lint_assert(ln != NULL);
1046 tnode_t *cn = ln->tn_type->t_tspec == PTR
1047 ? subt_size_in_bytes(ln->tn_type)
1048 : build_integer_constant(INT, 1);
1049 return new_tnode(op, sys, ln->tn_type, ln, cn);
1050 }
1051
1052 static void
1053 check_enum_array_index(const tnode_t *ln, const tnode_t *rn)
1054 {
1055
1056 if (ln->tn_op != ADDR || ln->tn_left->tn_op != NAME)
1057 return;
1058
1059 const type_t *ltp = ln->tn_left->tn_type;
1060 if (ltp->t_tspec != ARRAY || ltp->t_incomplete_array)
1061 return;
1062
1063 if (rn->tn_op != CVT || !rn->tn_type->t_is_enum)
1064 return;
1065 if (rn->tn_left->tn_op != LOAD)
1066 return;
1067
1068 const type_t *rtp = rn->tn_left->tn_type;
1069 const sym_t *ec = rtp->t_enum->en_first_enumerator;
1070 const sym_t *max_ec = ec;
1071 lint_assert(ec != NULL);
1072 for (ec = ec->s_next; ec != NULL; ec = ec->s_next)
1073 if (ec->u.s_enum_constant > max_ec->u.s_enum_constant)
1074 max_ec = ec;
1075
1076 int64_t max_enum_value = max_ec->u.s_enum_constant;
1077 lint_assert(INT_MIN <= max_enum_value && max_enum_value <= INT_MAX);
1078
1079 int max_array_index = ltp->t_dim - 1;
1080 if (max_enum_value == max_array_index)
1081 return;
1082
1083 /*
1084 * If the name of the largest enum constant contains 'MAX' or 'NUM',
1085 * that constant is typically not part of the allowed enum values but
1086 * a marker for the number of actual enum values.
1087 */
1088 if (max_enum_value == max_array_index + 1 &&
1089 (strstr(max_ec->s_name, "MAX") != NULL ||
1090 strstr(max_ec->s_name, "max") != NULL ||
1091 strstr(max_ec->s_name, "NUM") != NULL ||
1092 strstr(max_ec->s_name, "num") != NULL))
1093 return;
1094
1095 /* maximum value %d of '%s' does not match maximum array index %d */
1096 warning(348, (int)max_enum_value, type_name(rtp), max_array_index);
1097 print_previous_declaration(max_ec);
1098 }
1099
1100 /*
1101 * Create a node for operators PLUS and MINUS.
1102 */
1103 static tnode_t *
1104 build_plus_minus(op_t op, bool sys, tnode_t *ln, tnode_t *rn)
1105 {
1106
1107 /* If pointer and integer, move the pointer to the left. */
1108 if (rn->tn_type->t_tspec == PTR && is_integer(ln->tn_type->t_tspec)) {
1109 tnode_t *tmp = ln;
1110 ln = rn;
1111 rn = tmp;
1112 /* pointer addition has integer on the left-hand side */
1113 query_message(5);
1114 }
1115
1116 /* pointer +- integer */
1117 if (ln->tn_type->t_tspec == PTR && rn->tn_type->t_tspec != PTR) {
1118 lint_assert(is_integer(rn->tn_type->t_tspec));
1119
1120 check_ctype_macro_invocation(ln, rn);
1121 check_enum_array_index(ln, rn);
1122
1123 tnode_t *elsz = subt_size_in_bytes(ln->tn_type);
1124 if (rn->tn_type->t_tspec != elsz->tn_type->t_tspec)
1125 rn = convert(NOOP, 0, elsz->tn_type, rn);
1126
1127 tnode_t *prod = new_tnode(MULT, sys, rn->tn_type, rn, elsz);
1128 if (rn->tn_op == CON)
1129 prod = fold(prod);
1130
1131 return new_tnode(op, sys, ln->tn_type, ln, prod);
1132 }
1133
1134 /* pointer - pointer */
1135 if (rn->tn_type->t_tspec == PTR) {
1136 lint_assert(ln->tn_type->t_tspec == PTR);
1137 lint_assert(op == MINUS);
1138
1139 type_t *ptrdiff = gettyp(PTRDIFF_TSPEC);
1140 tnode_t *raw_diff = new_tnode(op, sys, ptrdiff, ln, rn);
1141 if (ln->tn_op == CON && rn->tn_op == CON)
1142 raw_diff = fold(raw_diff);
1143
1144 tnode_t *elsz = subt_size_in_bytes(ln->tn_type);
1145 balance(NOOP, &raw_diff, &elsz);
1146
1147 return new_tnode(DIV, sys, ptrdiff, raw_diff, elsz);
1148 }
1149
1150 return new_tnode(op, sys, ln->tn_type, ln, rn);
1151 }
1152
1153 /*
1154 * Create a node for operators SHL and SHR.
1155 */
1156 static tnode_t *
1157 build_bit_shift(op_t op, bool sys, tnode_t *ln, tnode_t *rn)
1158 {
1159
1160 if (!allow_c90 && rn->tn_type->t_tspec != INT)
1161 rn = convert(NOOP, 0, gettyp(INT), rn);
1162 return new_tnode(op, sys, ln->tn_type, ln, rn);
1163 }
1164
1165 static bool
1166 is_null_pointer(const tnode_t *tn)
1167 {
1168 tspec_t t = tn->tn_type->t_tspec;
1169
1170 return ((t == PTR && tn->tn_type->t_subt->t_tspec == VOID) ||
1171 is_integer(t))
1172 && (tn->tn_op == CON && tn->tn_val.v_quad == 0);
1173 }
1174
1175 /* Return a type based on tp1, with added qualifiers from tp2. */
1176 static type_t *
1177 merge_qualifiers(type_t *tp1, const type_t *tp2)
1178 {
1179
1180 lint_assert(tp1->t_tspec == PTR);
1181 lint_assert(tp2->t_tspec == PTR);
1182
1183 bool c1 = tp1->t_subt->t_const;
1184 bool c2 = tp2->t_subt->t_const;
1185 bool v1 = tp1->t_subt->t_volatile;
1186 bool v2 = tp2->t_subt->t_volatile;
1187
1188 if (c1 == (c1 | c2) && v1 == (v1 | v2))
1189 return tp1;
1190
1191 type_t *nstp = expr_dup_type(tp1->t_subt);
1192 nstp->t_const |= c2;
1193 nstp->t_volatile |= v2;
1194
1195 type_t *ntp = expr_dup_type(tp1);
1196 ntp->t_subt = nstp;
1197 return ntp;
1198 }
1199
1200 /* See C99 6.5.15 "Conditional operator". */
1201 static tnode_t *
1202 build_colon(bool sys, tnode_t *ln, tnode_t *rn)
1203 {
1204
1205 tspec_t lt = ln->tn_type->t_tspec;
1206 tspec_t rt = rn->tn_type->t_tspec;
1207
1208 type_t *tp;
1209 if (is_arithmetic(lt) && is_arithmetic(rt)) {
1210 /* The operands were already balanced in build_binary. */
1211 tp = ln->tn_type;
1212 } else if (lt == BOOL && rt == BOOL) {
1213 tp = ln->tn_type;
1214 } else if (lt == VOID || rt == VOID) {
1215 tp = gettyp(VOID);
1216 } else if (is_struct_or_union(lt)) {
1217 /* Both types must be identical. */
1218 lint_assert(is_struct_or_union(rt));
1219 lint_assert(ln->tn_type->t_sou == rn->tn_type->t_sou);
1220 if (is_incomplete(ln->tn_type)) {
1221 /* unknown operand size, op '%s' */
1222 error(138, op_name(COLON));
1223 return NULL;
1224 }
1225 tp = ln->tn_type;
1226 } else if (lt == PTR && is_integer(rt)) {
1227 if (rt != PTRDIFF_TSPEC)
1228 rn = convert(NOOP, 0, gettyp(PTRDIFF_TSPEC), rn);
1229 tp = ln->tn_type;
1230 } else if (rt == PTR && is_integer(lt)) {
1231 if (lt != PTRDIFF_TSPEC)
1232 ln = convert(NOOP, 0, gettyp(PTRDIFF_TSPEC), ln);
1233 tp = rn->tn_type;
1234 } else if (lt == PTR && is_null_pointer(rn)) {
1235 tp = merge_qualifiers(ln->tn_type, rn->tn_type);
1236 } else if (rt == PTR && is_null_pointer(ln)) {
1237 tp = merge_qualifiers(rn->tn_type, ln->tn_type);
1238 } else if (lt == PTR && ln->tn_type->t_subt->t_tspec == VOID) {
1239 tp = merge_qualifiers(ln->tn_type, rn->tn_type);
1240 } else if (rt == PTR && rn->tn_type->t_subt->t_tspec == VOID) {
1241 tp = merge_qualifiers(rn->tn_type, ln->tn_type);
1242 } else {
1243 /*
1244 * XXX For now we simply take the left type. This is
1245 * probably wrong, if one type contains a function prototype
1246 * and the other one, at the same place, only an old-style
1247 * declaration.
1248 */
1249 tp = merge_qualifiers(ln->tn_type, rn->tn_type);
1250 }
1251
1252 return new_tnode(COLON, sys, tp, ln, rn);
1253 }
1254
1255 /* TODO: check for varargs */
1256 static bool
1257 is_cast_redundant(const tnode_t *tn)
1258 {
1259 const type_t *ntp = tn->tn_type, *otp = tn->tn_left->tn_type;
1260 tspec_t nt = ntp->t_tspec, ot = otp->t_tspec;
1261
1262 if (nt == BOOL || ot == BOOL)
1263 return nt == BOOL && ot == BOOL;
1264
1265 if (is_integer(nt) && is_integer(ot)) {
1266 unsigned int nw = width_in_bits(ntp), ow = width_in_bits(otp);
1267 if (is_uinteger(nt) == is_uinteger(ot))
1268 return nw >= ow;
1269 return is_uinteger(ot) && nw > ow;
1270 }
1271
1272 if (is_complex(nt) || is_complex(ot))
1273 return is_complex(nt) && is_complex(ot) &&
1274 size_in_bits(nt) >= size_in_bits(ot);
1275
1276 if (is_floating(nt) && is_floating(ot))
1277 return size_in_bits(nt) >= size_in_bits(ot);
1278
1279 if (nt == PTR && ot == PTR) {
1280 if (!ntp->t_subt->t_const && otp->t_subt->t_const)
1281 return false;
1282 if (!ntp->t_subt->t_volatile && otp->t_subt->t_volatile)
1283 return false;
1284
1285 if (ntp->t_subt->t_tspec == VOID ||
1286 otp->t_subt->t_tspec == VOID ||
1287 types_compatible(ntp->t_subt, otp->t_subt,
1288 false, false, NULL))
1289 return true;
1290 }
1291
1292 return false;
1293 }
1294
1295 static bool
1296 is_assignment(op_t op)
1297 {
1298
1299 return op == ASSIGN ||
1300 op == MULASS ||
1301 op == DIVASS ||
1302 op == MODASS ||
1303 op == ADDASS ||
1304 op == SUBASS ||
1305 op == SHLASS ||
1306 op == SHRASS ||
1307 op == ANDASS ||
1308 op == XORASS ||
1309 op == ORASS ||
1310 op == RETURN ||
1311 op == INIT;
1312 }
1313
1314 /* Create a node for an assignment operator (both '=' and 'op='). */
1315 static tnode_t *
1316 build_assignment(op_t op, bool sys, tnode_t *ln, tnode_t *rn)
1317 {
1318
1319 tspec_t lt = ln->tn_type->t_tspec;
1320 tspec_t rt = rn->tn_type->t_tspec;
1321
1322 if (any_query_enabled && is_assignment(rn->tn_op)) {
1323 /* chained assignment with '%s' and '%s' */
1324 query_message(10, op_name(op), op_name(rn->tn_op));
1325 }
1326
1327 if ((op == ADDASS || op == SUBASS) && lt == PTR) {
1328 lint_assert(is_integer(rt));
1329 tnode_t *ctn = subt_size_in_bytes(ln->tn_type);
1330 if (rn->tn_type->t_tspec != ctn->tn_type->t_tspec)
1331 rn = convert(NOOP, 0, ctn->tn_type, rn);
1332 rn = new_tnode(MULT, sys, rn->tn_type, rn, ctn);
1333 if (rn->tn_left->tn_op == CON)
1334 rn = fold(rn);
1335 }
1336
1337 if ((op == ASSIGN || op == RETURN || op == INIT) &&
1338 (lt == STRUCT || rt == STRUCT)) {
1339 lint_assert(lt == rt);
1340 lint_assert(ln->tn_type->t_sou == rn->tn_type->t_sou);
1341 if (is_incomplete(ln->tn_type)) {
1342 if (op == RETURN) {
1343 /* cannot return incomplete type */
1344 error(212);
1345 } else {
1346 /* unknown operand size, op '%s' */
1347 error(138, op_name(op));
1348 }
1349 return NULL;
1350 }
1351 }
1352
1353 if (op == SHLASS) {
1354 if (portable_size_in_bits(lt) < portable_size_in_bits(rt)) {
1355 if (hflag)
1356 /* semantics of '%s' change in ANSI C; ... */
1357 warning(118, "<<=");
1358 }
1359 } else if (op != SHRASS) {
1360 if (op == ASSIGN || lt != PTR) {
1361 if (lt != rt ||
1362 (ln->tn_type->t_bitfield && rn->tn_op == CON)) {
1363 rn = convert(op, 0, ln->tn_type, rn);
1364 rt = lt;
1365 }
1366 }
1367 }
1368
1369 if (any_query_enabled && rn->tn_op == CVT && rn->tn_cast &&
1370 types_compatible(ln->tn_type, rn->tn_type, false, false, NULL) &&
1371 is_cast_redundant(rn)) {
1372 /* redundant cast from '%s' to '%s' before assignment */
1373 query_message(7,
1374 type_name(rn->tn_left->tn_type), type_name(rn->tn_type));
1375 }
1376
1377 return new_tnode(op, sys, ln->tn_type, ln, rn);
1378 }
1379
1380 /*
1381 * Create a node for REAL, IMAG
1382 */
1383 static tnode_t *
1384 build_real_imag(op_t op, bool sys, tnode_t *ln)
1385 {
1386
1387 lint_assert(ln != NULL);
1388 if (ln->tn_op == NAME) {
1389 /*
1390 * This may be too much, but it avoids wrong warnings.
1391 * See d_c99_complex_split.c.
1392 */
1393 mark_as_used(ln->tn_sym, false, false);
1394 mark_as_set(ln->tn_sym);
1395 }
1396
1397 tnode_t *cn;
1398 switch (ln->tn_type->t_tspec) {
1399 case LCOMPLEX:
1400 /* XXX: integer and LDOUBLE don't match. */
1401 cn = build_integer_constant(LDOUBLE, (int64_t)1);
1402 break;
1403 case DCOMPLEX:
1404 /* XXX: integer and DOUBLE don't match. */
1405 cn = build_integer_constant(DOUBLE, (int64_t)1);
1406 break;
1407 case FCOMPLEX:
1408 /* XXX: integer and FLOAT don't match. */
1409 cn = build_integer_constant(FLOAT, (int64_t)1);
1410 break;
1411 default:
1412 /* '__%s__' is illegal for type '%s' */
1413 error(276, op == REAL ? "real" : "imag",
1414 type_name(ln->tn_type));
1415 return NULL;
1416 }
1417
1418 tnode_t *ntn = new_tnode(op, sys, cn->tn_type, ln, cn);
1419 ntn->tn_lvalue = true;
1420 return ntn;
1421 }
1422
1423 static bool
1424 is_confusing_precedence(op_t op, op_t lop, bool lparen, op_t rop, bool rparen)
1425 {
1426
1427 if (op == SHL || op == SHR) {
1428 if (!lparen && (lop == PLUS || lop == MINUS))
1429 return true;
1430 if (!rparen && (rop == PLUS || rop == MINUS))
1431 return true;
1432 return false;
1433 }
1434
1435 if (op == LOGOR) {
1436 if (!lparen && lop == LOGAND)
1437 return true;
1438 if (!rparen && rop == LOGAND)
1439 return true;
1440 return false;
1441 }
1442
1443 lint_assert(op == BITAND || op == BITXOR || op == BITOR);
1444 if (!lparen && lop != op) {
1445 if (lop == PLUS || lop == MINUS)
1446 return true;
1447 if (lop == BITAND || lop == BITXOR)
1448 return true;
1449 }
1450 if (!rparen && rop != op) {
1451 if (rop == PLUS || rop == MINUS)
1452 return true;
1453 if (rop == BITAND || rop == BITXOR)
1454 return true;
1455 }
1456 return false;
1457 }
1458
1459 /*
1460 * Print a warning if the given node has operands which should be
1461 * parenthesized.
1462 *
1463 * XXX Does not work if an operand is a constant expression. Constant
1464 * expressions are already folded.
1465 */
1466 static void
1467 check_precedence_confusion(tnode_t *tn)
1468 {
1469 tnode_t *ln, *rn;
1470
1471 if (!hflag)
1472 return;
1473
1474 debug_node(tn);
1475
1476 lint_assert(is_binary(tn));
1477 for (ln = tn->tn_left; ln->tn_op == CVT; ln = ln->tn_left)
1478 continue;
1479 for (rn = tn->tn_right; rn->tn_op == CVT; rn = rn->tn_left)
1480 continue;
1481
1482 if (is_confusing_precedence(tn->tn_op,
1483 ln->tn_op, ln->tn_parenthesized,
1484 rn->tn_op, rn->tn_parenthesized)) {
1485 /* precedence confusion possible: parenthesize! */
1486 warning(169);
1487 }
1488 }
1489
1490 /*
1491 * Fold constant nodes, as much as is needed for comparing the value with 0.
1492 */
1493 static tnode_t *
1494 fold_bool(tnode_t *tn)
1495 {
1496
1497 val_t *v = xcalloc(1, sizeof(*v));
1498 v->v_tspec = tn->tn_type->t_tspec;
1499 lint_assert(v->v_tspec == INT || (Tflag && v->v_tspec == BOOL));
1500
1501 bool l = constant_is_nonzero(tn->tn_left);
1502 bool r = is_binary(tn) && constant_is_nonzero(tn->tn_right);
1503
1504 switch (tn->tn_op) {
1505 case NOT:
1506 if (hflag && !constcond_flag)
1507 /* constant argument to '!' */
1508 warning(239);
1509 v->v_quad = !l ? 1 : 0;
1510 break;
1511 case LOGAND:
1512 v->v_quad = l && r ? 1 : 0;
1513 break;
1514 case LOGOR:
1515 v->v_quad = l || r ? 1 : 0;
1516 break;
1517 default:
1518 lint_assert(/*CONSTCOND*/false);
1519 }
1520
1521 return build_constant(tn->tn_type, v);
1522 }
1523
1524 static long double
1525 floating_error_value(tspec_t t, long double lv)
1526 {
1527 if (t == FLOAT)
1528 return lv < 0 ? -FLT_MAX : FLT_MAX;
1529 if (t == DOUBLE)
1530 return lv < 0 ? -DBL_MAX : DBL_MAX;
1531 /*
1532 * When NetBSD is cross-built in MKLINT=yes mode on x86_64 for
1533 * sparc64, tools/lint checks this code while building usr.bin/xlint.
1534 * In that situation, lint uses the preprocessor for sparc64, in which
1535 * the type 'long double' is IEEE-754-binary128, affecting the macro
1536 * LDBL_MAX below. The type 'long double', as well as the strtold
1537 * implementation, comes from the host platform x86_64 though, where
1538 * 'long double' consumes 128 bits as well but only uses 80 of them.
1539 * The exponent range of the two 'long double' types is the same, but
1540 * the maximum finite value differs due to the extended precision on
1541 * sparc64.
1542 *
1543 * To properly handle the data types of the target platform, lint
1544 * would have to implement the floating-point types in a
1545 * platform-independent way, which is not worth the effort, given how
1546 * few programs practically use 'long double'.
1547 */
1548 /* LINTED 248: floating-point constant out of range */
1549 long double max = LDBL_MAX;
1550 return lv < 0 ? -max : max;
1551 }
1552
1553 static bool
1554 is_floating_overflow(tspec_t t, long double val)
1555 {
1556 if (fpe != 0 || isfinite(val) == 0)
1557 return true;
1558 if (t == FLOAT && (val > FLT_MAX || val < -FLT_MAX))
1559 return true;
1560 if (t == DOUBLE && (val > DBL_MAX || val < -DBL_MAX))
1561 return true;
1562 return false;
1563 }
1564
1565 /*
1566 * Fold constant nodes having operands with floating point type.
1567 */
1568 static tnode_t *
1569 fold_float(tnode_t *tn)
1570 {
1571
1572 fpe = 0;
1573
1574 tspec_t t = tn->tn_type->t_tspec;
1575
1576 val_t *v = xcalloc(1, sizeof(*v));
1577 v->v_tspec = t;
1578
1579 lint_assert(is_floating(t));
1580 lint_assert(t == tn->tn_left->tn_type->t_tspec);
1581 lint_assert(!is_binary(tn) || t == tn->tn_right->tn_type->t_tspec);
1582
1583 long double lv = tn->tn_left->tn_val.v_ldbl;
1584 long double rv = is_binary(tn) ? tn->tn_right->tn_val.v_ldbl : 0.0;
1585
1586 switch (tn->tn_op) {
1587 case UPLUS:
1588 v->v_ldbl = lv;
1589 break;
1590 case UMINUS:
1591 v->v_ldbl = -lv;
1592 break;
1593 case MULT:
1594 v->v_ldbl = lv * rv;
1595 break;
1596 case DIV:
1597 if (rv == 0.0) {
1598 /* division by 0 */
1599 error(139);
1600 v->v_ldbl = floating_error_value(t, lv);
1601 } else {
1602 v->v_ldbl = lv / rv;
1603 }
1604 break;
1605 case PLUS:
1606 v->v_ldbl = lv + rv;
1607 break;
1608 case MINUS:
1609 v->v_ldbl = lv - rv;
1610 break;
1611 case LT:
1612 v->v_quad = lv < rv ? 1 : 0;
1613 break;
1614 case LE:
1615 v->v_quad = lv <= rv ? 1 : 0;
1616 break;
1617 case GE:
1618 v->v_quad = lv >= rv ? 1 : 0;
1619 break;
1620 case GT:
1621 v->v_quad = lv > rv ? 1 : 0;
1622 break;
1623 case EQ:
1624 v->v_quad = lv == rv ? 1 : 0;
1625 break;
1626 case NE:
1627 v->v_quad = lv != rv ? 1 : 0;
1628 break;
1629 default:
1630 lint_assert(/*CONSTCOND*/false);
1631 }
1632
1633 lint_assert(fpe != 0 || isnan(v->v_ldbl) == 0);
1634 if (is_complex(v->v_tspec)) {
1635 /*
1636 * Don't warn, as lint doesn't model the imaginary part of
1637 * complex numbers.
1638 */
1639 fpe = 0;
1640 } else if (is_floating_overflow(t, v->v_ldbl)) {
1641 /* floating point overflow on operator '%s' */
1642 warning(142, op_name(tn->tn_op));
1643 v->v_ldbl = floating_error_value(t, v->v_ldbl);
1644 fpe = 0;
1645 }
1646
1647 return build_constant(tn->tn_type, v);
1648 }
1649
1650 /*
1651 * Create a tree node for a binary operator and its two operands. Also called
1652 * for unary operators; in that case rn is NULL.
1653 *
1654 * Function calls, sizeof and casts are handled elsewhere.
1655 */
1656 tnode_t *
1657 build_binary(tnode_t *ln, op_t op, bool sys, tnode_t *rn)
1658 {
1659 const mod_t *mp = &modtab[op];
1660
1661 /* If there was an error in one of the operands, return. */
1662 if (ln == NULL || (mp->m_binary && rn == NULL))
1663 return NULL;
1664
1665 /*
1666 * Apply class conversions to the left operand, but only if its
1667 * value is needed or compared with zero.
1668 */
1669 if (mp->m_value_context || mp->m_compares_with_zero)
1670 ln = cconv(ln);
1671 /*
1672 * The right operand is almost always in a test or value context,
1673 * except if it is a struct or union member.
1674 */
1675 if (mp->m_binary && op != ARROW && op != POINT)
1676 rn = cconv(rn);
1677
1678 /*
1679 * Print some warnings for comparisons of unsigned values with
1680 * constants lower than or equal to null. This must be done
1681 * before promote() because otherwise unsigned char and unsigned
1682 * short would be promoted to int. Types are also tested to be
1683 * CHAR, which would also become int.
1684 */
1685 if (mp->m_comparison)
1686 check_integer_comparison(op, ln, rn);
1687
1688 if (mp->m_value_context || mp->m_compares_with_zero)
1689 ln = promote(op, false, ln);
1690 if (mp->m_binary && op != ARROW && op != POINT &&
1691 op != ASSIGN && op != RETURN && op != INIT) {
1692 rn = promote(op, false, rn);
1693 }
1694
1695 /*
1696 * If the result of the operation is different for signed or
1697 * unsigned operands and one of the operands is signed only in
1698 * ANSI C, print a warning.
1699 */
1700 if (mp->m_warn_if_left_unsigned_in_c90 &&
1701 ln->tn_op == CON && ln->tn_val.v_unsigned_since_c90) {
1702 /* ANSI C treats constant as unsigned, op '%s' */
1703 warning(218, mp->m_name);
1704 ln->tn_val.v_unsigned_since_c90 = false;
1705 }
1706 if (mp->m_warn_if_right_unsigned_in_c90 &&
1707 rn->tn_op == CON && rn->tn_val.v_unsigned_since_c90) {
1708 /* ANSI C treats constant as unsigned, op '%s' */
1709 warning(218, mp->m_name);
1710 rn->tn_val.v_unsigned_since_c90 = false;
1711 }
1712
1713 /* Make sure both operands are of the same type */
1714 if (mp->m_balance_operands || (!allow_c90 && (op == SHL || op == SHR)))
1715 balance(op, &ln, &rn);
1716
1717 /*
1718 * Check types for compatibility with the operation and mutual
1719 * compatibility. Return if there are serious problems.
1720 */
1721 if (!typeok(op, 0, ln, rn))
1722 return NULL;
1723
1724 /* And now create the node. */
1725 tnode_t *ntn;
1726 switch (op) {
1727 case POINT:
1728 case ARROW:
1729 ntn = build_struct_access(op, sys, ln, rn);
1730 break;
1731 case INCAFT:
1732 case DECAFT:
1733 case INCBEF:
1734 case DECBEF:
1735 ntn = build_prepost_incdec(op, sys, ln);
1736 break;
1737 case ADDR:
1738 ntn = build_address(sys, ln, false);
1739 break;
1740 case INDIR:
1741 ntn = new_tnode(INDIR, sys, ln->tn_type->t_subt, ln, NULL);
1742 break;
1743 case PLUS:
1744 case MINUS:
1745 ntn = build_plus_minus(op, sys, ln, rn);
1746 break;
1747 case SHL:
1748 case SHR:
1749 ntn = build_bit_shift(op, sys, ln, rn);
1750 break;
1751 case COLON:
1752 ntn = build_colon(sys, ln, rn);
1753 break;
1754 case ASSIGN:
1755 case MULASS:
1756 case DIVASS:
1757 case MODASS:
1758 case ADDASS:
1759 case SUBASS:
1760 case SHLASS:
1761 case SHRASS:
1762 case ANDASS:
1763 case XORASS:
1764 case ORASS:
1765 case RETURN:
1766 case INIT:
1767 ntn = build_assignment(op, sys, ln, rn);
1768 break;
1769 case COMMA:
1770 if (any_query_enabled) {
1771 /* comma operator with types '%s' and '%s' */
1772 query_message(12,
1773 type_name(ln->tn_type), type_name(rn->tn_type));
1774 }
1775 /* FALLTHROUGH */
1776 case QUEST:
1777 ntn = new_tnode(op, sys, rn->tn_type, ln, rn);
1778 break;
1779 case REAL:
1780 case IMAG:
1781 ntn = build_real_imag(op, sys, ln);
1782 break;
1783 default:
1784 lint_assert(mp->m_binary == (rn != NULL));
1785 type_t *rettp = mp->m_returns_bool
1786 ? gettyp(Tflag ? BOOL : INT) : ln->tn_type;
1787 ntn = new_tnode(op, sys, rettp, ln, rn);
1788 break;
1789 }
1790
1791 /* Return if an error occurred. */
1792 if (ntn == NULL)
1793 return NULL;
1794
1795 /* Print a warning if precedence confusion is possible */
1796 if (mp->m_possible_precedence_confusion)
1797 check_precedence_confusion(ntn);
1798
1799 /*
1800 * Print a warning if one of the operands is in a context where
1801 * it is compared with zero and if this operand is a constant.
1802 */
1803 if (hflag && !constcond_flag &&
1804 mp->m_compares_with_zero &&
1805 (ln->tn_op == CON ||
1806 ((mp->m_binary && op != QUEST) && rn->tn_op == CON)) &&
1807 /* XXX: rn->tn_system_dependent should be checked as well */
1808 !ln->tn_system_dependent) {
1809 /* constant in conditional context */
1810 warning(161);
1811 }
1812
1813 /* Fold if the operator requires it */
1814 if (mp->m_fold_constant_operands) {
1815 if (ln->tn_op == CON && (!mp->m_binary || rn->tn_op == CON)) {
1816 if (mp->m_compares_with_zero) {
1817 ntn = fold_bool(ntn);
1818 } else if (is_floating(ntn->tn_type->t_tspec)) {
1819 ntn = fold_float(ntn);
1820 } else {
1821 ntn = fold(ntn);
1822 }
1823 } else if (op == QUEST && ln->tn_op == CON) {
1824 ntn = ln->tn_val.v_quad != 0
1825 ? rn->tn_left : rn->tn_right;
1826 }
1827 }
1828
1829 return ntn;
1830 }
1831
1832 tnode_t *
1833 build_unary(op_t op, bool sys, tnode_t *tn)
1834 {
1835 return build_binary(tn, op, sys, NULL);
1836 }
1837
1838 static bool
1839 are_members_compatible(const sym_t *a, const sym_t *b)
1840 {
1841 if (a->u.s_member.sm_offset_in_bits != b->u.s_member.sm_offset_in_bits)
1842 return false;
1843
1844 const type_t *atp = a->s_type;
1845 const type_t *btp = b->s_type;
1846 bool w = false;
1847 if (!types_compatible(atp, btp, false, false, &w) && !w)
1848 return false;
1849 if (a->s_bitfield != b->s_bitfield)
1850 return false;
1851 if (a->s_bitfield) {
1852 if (atp->t_bit_field_width != btp->t_bit_field_width)
1853 return false;
1854 if (atp->t_bit_field_offset != btp->t_bit_field_offset)
1855 return false;
1856 }
1857 return true;
1858 }
1859
1860 /*
1861 * Return whether all struct/union members with the same name have the same
1862 * type and offset.
1863 */
1864 static bool
1865 all_members_compatible(const sym_t *msym)
1866 {
1867 for (const sym_t *csym = msym;
1868 csym != NULL; csym = csym->s_symtab_next) {
1869 if (!is_member(csym))
1870 continue;
1871 if (strcmp(msym->s_name, csym->s_name) != 0)
1872 continue;
1873
1874 for (const sym_t *sym = csym->s_symtab_next;
1875 sym != NULL; sym = sym->s_symtab_next) {
1876 if (is_member(sym)
1877 && strcmp(csym->s_name, sym->s_name) == 0
1878 && !are_members_compatible(csym, sym))
1879 return false;
1880 }
1881 }
1882 return true;
1883 }
1884
1885 sym_t *
1886 find_member(const type_t *tp, const char *name)
1887 {
1888 for (sym_t *mem = tp->t_sou->sou_first_member;
1889 mem != NULL; mem = mem->s_next) {
1890 if (strcmp(mem->s_name, name) == 0)
1891 return mem;
1892 }
1893 for (sym_t *mem = tp->t_sou->sou_first_member;
1894 mem != NULL; mem = mem->s_next) {
1895 if (is_struct_or_union(mem->s_type->t_tspec) &&
1896 mem->s_name == unnamed) {
1897 sym_t *nested_mem = find_member(mem->s_type, name);
1898 if (nested_mem != NULL)
1899 return nested_mem;
1900 }
1901 }
1902 return NULL;
1903 }
1904
1905 /*
1906 * Returns a symbol which has the same name as the msym argument and is a
1907 * member of the struct or union specified by the tn argument.
1908 */
1909 static sym_t *
1910 struct_or_union_member(tnode_t *tn, op_t op, sym_t *msym)
1911 {
1912
1913 /*
1914 * Remove the member if it was unknown until now, which means
1915 * that no defined struct or union has a member with the same name.
1916 */
1917 if (msym->s_scl == NOSCL) {
1918 /* type '%s' does not have member '%s' */
1919 error(101, type_name(tn->tn_type), msym->s_name);
1920 rmsym(msym);
1921 msym->s_kind = FMEMBER;
1922 msym->s_scl = STRUCT_MEMBER;
1923
1924 struct_or_union *sou = expr_zero_alloc(sizeof(*sou));
1925 sou->sou_tag = expr_zero_alloc(sizeof(*sou->sou_tag));
1926 sou->sou_tag->s_name = unnamed;
1927
1928 msym->u.s_member.sm_sou_type = sou;
1929 /*
1930 * The member sm_offset_in_bits is not needed here since this
1931 * symbol can only be used for error reporting.
1932 */
1933 return msym;
1934 }
1935
1936 /* Determine the tag type of which msym is expected to be a member. */
1937 const type_t *tp = NULL;
1938 if (op == POINT && is_struct_or_union(tn->tn_type->t_tspec))
1939 tp = tn->tn_type;
1940 if (op == ARROW && tn->tn_type->t_tspec == PTR
1941 && is_struct_or_union(tn->tn_type->t_subt->t_tspec))
1942 tp = tn->tn_type->t_subt;
1943 struct_or_union *str = tp != NULL ? tp->t_sou : NULL;
1944
1945 /*
1946 * If this struct/union has a member with the name of msym, return it.
1947 */
1948 if (str != NULL) {
1949 for (sym_t *sym = msym;
1950 sym != NULL; sym = sym->s_symtab_next) {
1951 if (is_member(sym) &&
1952 sym->u.s_member.sm_sou_type == str &&
1953 strcmp(sym->s_name, msym->s_name) == 0)
1954 return sym;
1955 }
1956 }
1957
1958 if (tp != NULL) {
1959 sym_t *nested_mem = find_member(tp, msym->s_name);
1960 if (nested_mem != NULL)
1961 return nested_mem;
1962 }
1963
1964 bool eq = all_members_compatible(msym);
1965
1966 /*
1967 * Now handle the case in which the left operand refers really
1968 * to a struct/union, but the right operand is not member of it.
1969 */
1970 if (str != NULL) {
1971 if (eq && !allow_c90) {
1972 /* illegal use of member '%s' */
1973 warning(102, msym->s_name);
1974 } else {
1975 /* illegal use of member '%s' */
1976 error(102, msym->s_name);
1977 }
1978 return msym;
1979 }
1980
1981 /*
1982 * Now the left operand of ARROW does not point to a struct/union
1983 * or the left operand of POINT is no struct/union.
1984 */
1985 if (eq) {
1986 if (op == POINT) {
1987 if (!allow_c90) {
1988 /* left operand of '.' must be struct ... */
1989 warning(103, type_name(tn->tn_type));
1990 } else {
1991 /* left operand of '.' must be struct ... */
1992 error(103, type_name(tn->tn_type));
1993 }
1994 } else {
1995 if (!allow_c90 && tn->tn_type->t_tspec == PTR) {
1996 /* left operand of '->' must be pointer ... */
1997 warning(104, type_name(tn->tn_type));
1998 } else {
1999 /* left operand of '->' must be pointer ... */
2000 error(104, type_name(tn->tn_type));
2001 }
2002 }
2003 } else {
2004 if (!allow_c90) {
2005 /* non-unique member requires struct/union %s */
2006 error(105, op == POINT ? "object" : "pointer");
2007 } else {
2008 /* unacceptable operand of '%s' */
2009 error(111, op_name(op));
2010 }
2011 }
2012
2013 return msym;
2014 }
2015
2016 tnode_t *
2017 build_member_access(tnode_t *ln, op_t op, bool sys, sbuf_t *member)
2018 {
2019 sym_t *msym;
2020
2021 if (ln == NULL)
2022 return NULL;
2023
2024 if (op == ARROW) {
2025 /* must do this before struct_or_union_member is called */
2026 ln = cconv(ln);
2027 }
2028 msym = struct_or_union_member(ln, op, getsym(member));
2029 return build_binary(ln, op, sys, build_name(msym, false));
2030 }
2031
2032 /*
2033 * Perform class conversions.
2034 *
2035 * Arrays of type T are converted into pointers to type T.
2036 * Functions are converted to pointers to functions.
2037 * Lvalues are converted to rvalues.
2038 *
2039 * C99 6.3 "Conversions"
2040 * C99 6.3.2 "Other operands"
2041 * C99 6.3.2.1 "Lvalues, arrays, and function designators"
2042 */
2043 tnode_t *
2044 cconv(tnode_t *tn)
2045 {
2046 /*
2047 * Array-lvalue (array of type T) is converted into rvalue
2048 * (pointer to type T)
2049 */
2050 if (tn->tn_type->t_tspec == ARRAY) {
2051 if (!tn->tn_lvalue) {
2052 /* XXX print correct operator */
2053 /* %soperand of '%s' must be lvalue */
2054 gnuism(114, "", op_name(ADDR));
2055 }
2056 tn = new_tnode(ADDR, tn->tn_sys,
2057 expr_derive_type(tn->tn_type->t_subt, PTR), tn, NULL);
2058 }
2059
2060 /*
2061 * Expression of type function (function with return value of type T)
2062 * in rvalue-expression (pointer to function with return value
2063 * of type T)
2064 */
2065 if (tn->tn_type->t_tspec == FUNC)
2066 tn = build_address(tn->tn_sys, tn, true);
2067
2068 /* lvalue to rvalue */
2069 if (tn->tn_lvalue) {
2070 type_t *tp = expr_dup_type(tn->tn_type);
2071 /* C99 6.3.2.1p2 sentence 2 says to remove the qualifiers. */
2072 tp->t_const = tp->t_volatile = false;
2073 tn = new_tnode(LOAD, tn->tn_sys, tp, tn, NULL);
2074 }
2075
2076 return tn;
2077 }
2078
2079 const tnode_t *
2080 before_conversion(const tnode_t *tn)
2081 {
2082 while (tn->tn_op == CVT && !tn->tn_cast)
2083 tn = tn->tn_left;
2084 return tn;
2085 }
2086
2087 /*
2088 * Most errors required by ANSI C are reported in struct_or_union_member().
2089 * Here we only check for totally wrong things.
2090 */
2091 static bool
2092 typeok_point(const tnode_t *ln, const type_t *ltp, tspec_t lt)
2093 {
2094 if (is_struct_or_union(lt))
2095 return true;
2096
2097 if (lt == FUNC || lt == VOID || ltp->t_bitfield)
2098 goto wrong;
2099
2100 /*
2101 * Some C dialects from before C90 tolerated any lvalue on the
2102 * left-hand side of the '.' operator, allowing things like
2103 * char st[100]; st.st_mtime, assuming that the member 'st_mtime'
2104 * only occurred in a single struct; see typeok_arrow.
2105 */
2106 if (ln->tn_lvalue)
2107 return true;
2108
2109 wrong:
2110 /* With allow_c90 we already got an error */
2111 if (!allow_c90)
2112 /* unacceptable operand of '%s' */
2113 error(111, op_name(POINT));
2114
2115 return false;
2116 }
2117
2118 static bool
2119 typeok_arrow(tspec_t lt)
2120 {
2121 /*
2122 * C1978 Appendix A 14.1 says: <quote>In fact, any lvalue is allowed
2123 * before '.', and that lvalue is then assumed to have the form of
2124 * the structure of which the name of the right is a member. [...]
2125 * Such constructions are non-portable.</quote>
2126 */
2127 if (lt == PTR || (!allow_c90 && is_integer(lt)))
2128 return true;
2129
2130 /* With allow_c90 we already got an error */
2131 if (!allow_c90)
2132 /* unacceptable operand of '%s' */
2133 error(111, op_name(ARROW));
2134 return false;
2135 }
2136
2137 static bool
2138 typeok_incdec(op_t op, const tnode_t *tn, const type_t *tp)
2139 {
2140 /* operand has scalar type (checked in typeok) */
2141 if (!tn->tn_lvalue) {
2142 if (tn->tn_op == CVT && tn->tn_cast &&
2143 tn->tn_left->tn_op == LOAD) {
2144 /* a cast does not yield an lvalue */
2145 error(163);
2146 }
2147 /* %soperand of '%s' must be lvalue */
2148 error(114, "", op_name(op));
2149 return false;
2150 }
2151 if (tp->t_const && allow_c90) {
2152 /* %soperand of '%s' must be modifiable lvalue */
2153 warning(115, "", op_name(op));
2154 }
2155 return true;
2156 }
2157
2158 static bool
2159 typeok_address(const mod_t *mp,
2160 const tnode_t *tn, const type_t *tp, tspec_t t)
2161 {
2162 if (t == ARRAY || t == FUNC) {
2163 /* ok, a warning comes later (in build_address()) */
2164 } else if (!tn->tn_lvalue) {
2165 if (tn->tn_op == CVT && tn->tn_cast &&
2166 tn->tn_left->tn_op == LOAD) {
2167 /* a cast does not yield an lvalue */
2168 error(163);
2169 }
2170 /* %soperand of '%s' must be lvalue */
2171 error(114, "", mp->m_name);
2172 return false;
2173 } else if (is_scalar(t)) {
2174 if (tp->t_bitfield) {
2175 /* cannot take address of bit-field */
2176 error(112);
2177 return false;
2178 }
2179 } else if (t != STRUCT && t != UNION) {
2180 /* unacceptable operand of '%s' */
2181 error(111, mp->m_name);
2182 return false;
2183 }
2184 if (tn->tn_op == NAME && tn->tn_sym->s_register) {
2185 /* cannot take address of register '%s' */
2186 error(113, tn->tn_sym->s_name);
2187 return false;
2188 }
2189 return true;
2190 }
2191
2192 static bool
2193 typeok_indir(const type_t *tp, tspec_t t)
2194 {
2195
2196 if (t != PTR) {
2197 /* cannot dereference non-pointer type '%s' */
2198 error(96, type_name(tp));
2199 return false;
2200 }
2201 return true;
2202 }
2203
2204 static void
2205 warn_incompatible_types(op_t op,
2206 const type_t *ltp, tspec_t lt,
2207 const type_t *rtp, tspec_t rt)
2208 {
2209 const mod_t *mp = &modtab[op];
2210
2211 if (lt == VOID || (mp->m_binary && rt == VOID)) {
2212 /* void type illegal in expression */
2213 error(109);
2214 } else if (op == ASSIGN) {
2215 /* cannot assign to '%s' from '%s' */
2216 error(171, type_name(ltp), type_name(rtp));
2217 } else if (mp->m_binary) {
2218 /* operands of '%s' have incompatible types '%s' and '%s' */
2219 error(107, mp->m_name, type_name(ltp), type_name(rtp));
2220 } else {
2221 lint_assert(rt == NO_TSPEC);
2222 /* operand of '%s' has invalid type '%s' */
2223 error(108, mp->m_name, type_name(ltp));
2224 }
2225 }
2226
2227 static bool
2228 typeok_plus(op_t op,
2229 const type_t *ltp, tspec_t lt,
2230 const type_t *rtp, tspec_t rt)
2231 {
2232 /* operands have scalar types (checked in typeok) */
2233 if ((lt == PTR && !is_integer(rt)) || (rt == PTR && !is_integer(lt))) {
2234 warn_incompatible_types(op, ltp, lt, rtp, rt);
2235 return false;
2236 }
2237 return true;
2238 }
2239
2240 static bool
2241 typeok_minus(op_t op,
2242 const type_t *ltp, tspec_t lt,
2243 const type_t *rtp, tspec_t rt)
2244 {
2245 /* operands have scalar types (checked in typeok) */
2246 if ((lt == PTR && rt != PTR && !is_integer(rt)) ||
2247 (lt != PTR && rt == PTR)) {
2248 warn_incompatible_types(op, ltp, lt, rtp, rt);
2249 return false;
2250 }
2251 if (lt == PTR && rt == PTR &&
2252 !types_compatible(ltp->t_subt, rtp->t_subt, true, false, NULL)) {
2253 /* illegal pointer subtraction */
2254 error(116);
2255 }
2256 return true;
2257 }
2258
2259 static void
2260 typeok_shr(const mod_t *mp,
2261 const tnode_t *ln, tspec_t lt,
2262 const tnode_t *rn, tspec_t rt)
2263 {
2264 tspec_t olt = before_conversion(ln)->tn_type->t_tspec;
2265 tspec_t ort = before_conversion(rn)->tn_type->t_tspec;
2266
2267 /* operands have integer types (checked in typeok) */
2268 if (pflag && !is_uinteger(olt)) {
2269 integer_constraints lc = ic_expr(ln);
2270 if (!ic_maybe_signed(ln->tn_type, &lc))
2271 return;
2272
2273 /*
2274 * The left operand is signed. This means that
2275 * the operation is (possibly) nonportable.
2276 */
2277 if (ln->tn_op != CON) {
2278 /* bitwise '%s' on signed value possibly nonportable */
2279 warning(117, mp->m_name);
2280 } else if (ln->tn_val.v_quad < 0) {
2281 /* bitwise '%s' on signed value nonportable */
2282 warning(120, mp->m_name);
2283 }
2284 } else if (allow_trad && allow_c90 &&
2285 !is_uinteger(olt) && is_uinteger(ort)) {
2286 /* The left operand would become unsigned in traditional C. */
2287 if (hflag && (ln->tn_op != CON || ln->tn_val.v_quad < 0)) {
2288 /* semantics of '%s' change in ANSI C; use ... */
2289 warning(118, mp->m_name);
2290 }
2291 } else if (allow_trad && allow_c90 &&
2292 !is_uinteger(olt) && !is_uinteger(ort) &&
2293 portable_size_in_bits(lt) < portable_size_in_bits(rt)) {
2294 /*
2295 * In traditional C the left operand would be extended
2296 * (possibly sign-extended) and then shifted.
2297 */
2298 if (hflag && (ln->tn_op != CON || ln->tn_val.v_quad < 0)) {
2299 /* semantics of '%s' change in ANSI C; use ... */
2300 warning(118, mp->m_name);
2301 }
2302 }
2303 }
2304
2305 static void
2306 typeok_shl(const mod_t *mp, tspec_t lt, tspec_t rt)
2307 {
2308 /*
2309 * C90 does not perform balancing for shift operations,
2310 * but traditional C does. If the width of the right operand
2311 * is greater than the width of the left operand, then in
2312 * traditional C the left operand would be extended to the
2313 * width of the right operand. For SHL this may result in
2314 * different results.
2315 */
2316 if (portable_size_in_bits(lt) < portable_size_in_bits(rt)) {
2317 /*
2318 * XXX If both operands are constant, make sure
2319 * that there is really a difference between
2320 * ANSI C and traditional C.
2321 */
2322 if (hflag && !allow_c99)
2323 /* semantics of '%s' change in ANSI C; use ... */
2324 warning(118, mp->m_name);
2325 }
2326 }
2327
2328 static void
2329 typeok_shift(const type_t *ltp, tspec_t lt, const tnode_t *rn, tspec_t rt)
2330 {
2331 if (rn->tn_op != CON)
2332 return;
2333
2334 if (!is_uinteger(rt) && rn->tn_val.v_quad < 0) {
2335 /* negative shift */
2336 warning(121);
2337 } else if ((uint64_t)rn->tn_val.v_quad ==
2338 (uint64_t)size_in_bits(lt)) {
2339 /* shift amount %u equals bit-size of '%s' */
2340 warning(267, (unsigned)rn->tn_val.v_quad, type_name(ltp));
2341 } else if ((uint64_t)rn->tn_val.v_quad > (uint64_t)size_in_bits(lt)) {
2342 /* shift amount %llu is greater than bit-size %llu of '%s' */
2343 warning(122, (unsigned long long)rn->tn_val.v_quad,
2344 (unsigned long long)size_in_bits(lt),
2345 tspec_name(lt));
2346 }
2347 }
2348
2349 static bool
2350 is_typeok_eq(const tnode_t *ln, tspec_t lt, const tnode_t *rn, tspec_t rt)
2351 {
2352 if (lt == PTR && is_null_pointer(rn))
2353 return true;
2354 if (rt == PTR && is_null_pointer(ln))
2355 return true;
2356 return false;
2357 }
2358
2359 /*
2360 * Called if incompatible pointer types are detected.
2361 * Print an appropriate warning.
2362 */
2363 static void
2364 warn_incompatible_pointers(const mod_t *mp,
2365 const type_t *ltp, const type_t *rtp)
2366 {
2367 lint_assert(ltp->t_tspec == PTR);
2368 lint_assert(rtp->t_tspec == PTR);
2369
2370 tspec_t lt = ltp->t_subt->t_tspec;
2371 tspec_t rt = rtp->t_subt->t_tspec;
2372
2373 if (is_struct_or_union(lt) && is_struct_or_union(rt)) {
2374 if (mp == NULL) {
2375 /* illegal structure pointer combination */
2376 warning(244);
2377 } else {
2378 /* incompatible structure pointers: '%s' '%s' '%s' */
2379 warning(245, type_name(ltp), mp->m_name, type_name(rtp));
2380 }
2381 } else {
2382 if (mp == NULL) {
2383 /* illegal combination of '%s' and '%s' */
2384 warning(184, type_name(ltp), type_name(rtp));
2385 } else {
2386 /* illegal combination of '%s' and '%s', op '%s' */
2387 warning(124,
2388 type_name(ltp), type_name(rtp), mp->m_name);
2389 }
2390 }
2391 }
2392
2393 static void
2394 check_pointer_comparison(op_t op, const tnode_t *ln, const tnode_t *rn)
2395 {
2396 type_t *ltp = ln->tn_type, *rtp = rn->tn_type;
2397 tspec_t lst = ltp->t_subt->t_tspec, rst = rtp->t_subt->t_tspec;
2398
2399 if (lst == VOID || rst == VOID) {
2400 /* TODO: C99 behaves like C90 here. */
2401 if ((!allow_trad && !allow_c99) &&
2402 (lst == FUNC || rst == FUNC)) {
2403 /* (void *)0 is already handled in typeok() */
2404 const char *lsts, *rsts;
2405 *(lst == FUNC ? &lsts : &rsts) = "function pointer";
2406 *(lst == VOID ? &lsts : &rsts) = "'void *'";
2407 /* ANSI C forbids comparison of %s with %s */
2408 warning(274, lsts, rsts);
2409 }
2410 return;
2411 }
2412
2413 if (!types_compatible(ltp->t_subt, rtp->t_subt, true, false, NULL)) {
2414 warn_incompatible_pointers(&modtab[op], ltp, rtp);
2415 return;
2416 }
2417
2418 if (lst == FUNC && rst == FUNC) {
2419 /* TODO: C99 behaves like C90 here, see C99 6.5.8p2. */
2420 if ((!allow_trad && !allow_c99) && op != EQ && op != NE)
2421 /* ANSI C forbids ordered comparisons of ... */
2422 warning(125);
2423 }
2424 }
2425
2426 static bool
2427 typeok_compare(op_t op,
2428 const tnode_t *ln, const type_t *ltp, tspec_t lt,
2429 const tnode_t *rn, const type_t *rtp, tspec_t rt)
2430 {
2431 if (lt == PTR && rt == PTR) {
2432 check_pointer_comparison(op, ln, rn);
2433 return true;
2434 }
2435
2436 if (lt != PTR && rt != PTR)
2437 return true;
2438
2439 if (!is_integer(lt) && !is_integer(rt)) {
2440 warn_incompatible_types(op, ltp, lt, rtp, rt);
2441 return false;
2442 }
2443
2444 const char *lx = lt == PTR ? "pointer" : "integer";
2445 const char *rx = rt == PTR ? "pointer" : "integer";
2446 /* illegal combination of %s '%s' and %s '%s', op '%s' */
2447 warning(123, lx, type_name(ltp), rx, type_name(rtp), op_name(op));
2448 return true;
2449 }
2450
2451 static bool
2452 typeok_quest(tspec_t lt, const tnode_t *rn)
2453 {
2454 if (!is_scalar(lt)) {
2455 /* first operand must have scalar type, op ? : */
2456 error(170);
2457 return false;
2458 }
2459 lint_assert(before_conversion(rn)->tn_op == COLON);
2460 return true;
2461 }
2462
2463 static void
2464 typeok_colon_pointer(const mod_t *mp, const type_t *ltp, const type_t *rtp)
2465 {
2466 type_t *lstp = ltp->t_subt;
2467 type_t *rstp = rtp->t_subt;
2468 tspec_t lst = lstp->t_tspec;
2469 tspec_t rst = rstp->t_tspec;
2470
2471 if ((lst == VOID && rst == FUNC) || (lst == FUNC && rst == VOID)) {
2472 /* (void *)0 is handled in typeok_colon */
2473 /* TODO: C99 behaves like C90 here. */
2474 if (!allow_trad && !allow_c99)
2475 /* ANSI C forbids conversion of %s to %s, op %s */
2476 warning(305, "function pointer", "'void *'",
2477 mp->m_name);
2478 return;
2479 }
2480
2481 if (pointer_types_are_compatible(lstp, rstp, true))
2482 return;
2483 if (!types_compatible(lstp, rstp, true, false, NULL))
2484 warn_incompatible_pointers(mp, ltp, rtp);
2485 }
2486
2487 static bool
2488 typeok_colon(const mod_t *mp,
2489 const tnode_t *ln, const type_t *ltp, tspec_t lt,
2490 const tnode_t *rn, const type_t *rtp, tspec_t rt)
2491 {
2492
2493 if (is_arithmetic(lt) && is_arithmetic(rt))
2494 return true;
2495 if (lt == BOOL && rt == BOOL)
2496 return true;
2497
2498 if (lt == STRUCT && rt == STRUCT && ltp->t_sou == rtp->t_sou)
2499 return true;
2500 if (lt == UNION && rt == UNION && ltp->t_sou == rtp->t_sou)
2501 return true;
2502
2503 if (lt == PTR && is_null_pointer(rn))
2504 return true;
2505 if (rt == PTR && is_null_pointer(ln))
2506 return true;
2507
2508 if ((lt == PTR && is_integer(rt)) || (is_integer(lt) && rt == PTR)) {
2509 const char *lx = lt == PTR ? "pointer" : "integer";
2510 const char *rx = rt == PTR ? "pointer" : "integer";
2511 /* illegal combination of %s '%s' and %s '%s', op '%s' */
2512 warning(123, lx, type_name(ltp),
2513 rx, type_name(rtp), mp->m_name);
2514 return true;
2515 }
2516
2517 if (lt == VOID || rt == VOID) {
2518 if (lt != VOID || rt != VOID)
2519 /* incompatible types '%s' and '%s' in conditional */
2520 warning(126, type_name(ltp), type_name(rtp));
2521 return true;
2522 }
2523
2524 if (lt == PTR && rt == PTR) {
2525 typeok_colon_pointer(mp, ltp, rtp);
2526 return true;
2527 }
2528
2529 /* incompatible types '%s' and '%s' in conditional */
2530 error(126, type_name(ltp), type_name(rtp));
2531 return false;
2532 }
2533
2534 /*
2535 * Returns true if the given structure or union has a constant member
2536 * (maybe recursively).
2537 */
2538 static bool
2539 has_constant_member(const type_t *tp)
2540 {
2541 lint_assert(is_struct_or_union(tp->t_tspec));
2542
2543 for (sym_t *m = tp->t_sou->sou_first_member;
2544 m != NULL; m = m->s_next) {
2545 const type_t *mtp = m->s_type;
2546 if (mtp->t_const)
2547 return true;
2548 if (is_struct_or_union(mtp->t_tspec) &&
2549 has_constant_member(mtp))
2550 return true;
2551 }
2552 return false;
2553 }
2554
2555 static bool
2556 typeok_assign(op_t op, const tnode_t *ln, const type_t *ltp, tspec_t lt)
2557 {
2558 if (op == RETURN || op == INIT || op == FARG)
2559 return true;
2560
2561 if (!ln->tn_lvalue) {
2562 if (ln->tn_op == CVT && ln->tn_cast &&
2563 ln->tn_left->tn_op == LOAD) {
2564 /* a cast does not yield an lvalue */
2565 error(163);
2566 }
2567 /* %soperand of '%s' must be lvalue */
2568 error(114, "left ", op_name(op));
2569 return false;
2570 } else if (ltp->t_const
2571 || (is_struct_or_union(lt) && has_constant_member(ltp))) {
2572 if (allow_c90)
2573 /* %soperand of '%s' must be modifiable lvalue */
2574 warning(115, "left ", op_name(op));
2575 }
2576 return true;
2577 }
2578
2579 /* Check the types using the information from modtab[]. */
2580 static bool
2581 typeok_scalar(op_t op, const mod_t *mp,
2582 const type_t *ltp, tspec_t lt,
2583 const type_t *rtp, tspec_t rt)
2584 {
2585 if (mp->m_takes_bool && lt == BOOL && rt == BOOL)
2586 return true;
2587 if (mp->m_requires_integer) {
2588 if (!is_integer(lt) || (mp->m_binary && !is_integer(rt))) {
2589 warn_incompatible_types(op, ltp, lt, rtp, rt);
2590 return false;
2591 }
2592 } else if (mp->m_requires_integer_or_complex) {
2593 if ((!is_integer(lt) && !is_complex(lt)) ||
2594 (mp->m_binary && (!is_integer(rt) && !is_complex(rt)))) {
2595 warn_incompatible_types(op, ltp, lt, rtp, rt);
2596 return false;
2597 }
2598 } else if (mp->m_requires_scalar) {
2599 if (!is_scalar(lt) || (mp->m_binary && !is_scalar(rt))) {
2600 warn_incompatible_types(op, ltp, lt, rtp, rt);
2601 return false;
2602 }
2603 } else if (mp->m_requires_arith) {
2604 if (!is_arithmetic(lt) ||
2605 (mp->m_binary && !is_arithmetic(rt))) {
2606 warn_incompatible_types(op, ltp, lt, rtp, rt);
2607 return false;
2608 }
2609 }
2610 return true;
2611 }
2612
2613 static void
2614 check_assign_void_pointer(op_t op, int arg,
2615 tspec_t lt, tspec_t lst,
2616 tspec_t rt, tspec_t rst)
2617 {
2618
2619 if (!(lt == PTR && rt == PTR && (lst == VOID || rst == VOID)))
2620 return;
2621 /* two pointers, at least one pointer to void */
2622
2623 /* TODO: C99 behaves like C90 here. */
2624 if (!((!allow_trad && !allow_c99) && (lst == FUNC || rst == FUNC)))
2625 return;
2626 /* comb. of ptr to func and ptr to void */
2627
2628 const char *lts, *rts;
2629 *(lst == FUNC ? <s : &rts) = "function pointer";
2630 *(lst == VOID ? <s : &rts) = "'void *'";
2631
2632 switch (op) {
2633 case INIT:
2634 case RETURN:
2635 /* ANSI C forbids conversion of %s to %s */
2636 warning(303, rts, lts);
2637 break;
2638 case FARG:
2639 /* ANSI C forbids conversion of %s to %s, arg #%d */
2640 warning(304, rts, lts, arg);
2641 break;
2642 default:
2643 /* ANSI C forbids conversion of %s to %s, op %s */
2644 warning(305, rts, lts, op_name(op));
2645 break;
2646 }
2647 }
2648
2649 static bool
2650 is_direct_function_call(const tnode_t *tn, const char **out_name)
2651 {
2652
2653 if (!(tn->tn_op == CALL &&
2654 tn->tn_left->tn_op == ADDR &&
2655 tn->tn_left->tn_left->tn_op == NAME))
2656 return false;
2657
2658 *out_name = tn->tn_left->tn_left->tn_sym->s_name;
2659 return true;
2660 }
2661
2662 static bool
2663 is_unconst_function(const char *name)
2664 {
2665
2666 return strcmp(name, "memchr") == 0 ||
2667 strcmp(name, "strchr") == 0 ||
2668 strcmp(name, "strpbrk") == 0 ||
2669 strcmp(name, "strrchr") == 0 ||
2670 strcmp(name, "strstr") == 0;
2671 }
2672
2673 static bool
2674 is_const_char_pointer(const tnode_t *tn)
2675 {
2676 /*
2677 * For traditional reasons, C99 6.4.5p5 defines that string literals
2678 * have type 'char[]'. They are often implicitly converted to
2679 * 'char *', for example when they are passed as function arguments.
2680 *
2681 * C99 6.4.5p6 further defines that modifying a string that is
2682 * constructed from a string literal invokes undefined behavior.
2683 *
2684 * Out of these reasons, string literals are treated as 'effectively
2685 * const' here.
2686 */
2687 if (tn->tn_op == CVT &&
2688 tn->tn_left->tn_op == ADDR &&
2689 tn->tn_left->tn_left->tn_op == STRING)
2690 return true;
2691
2692 const type_t *tp = before_conversion(tn)->tn_type;
2693 return tp->t_tspec == PTR &&
2694 tp->t_subt->t_tspec == CHAR &&
2695 tp->t_subt->t_const;
2696 }
2697
2698 static bool
2699 is_first_arg_const_char_pointer(const tnode_t *tn)
2700 {
2701 const tnode_t *an = tn->tn_right;
2702 if (an == NULL)
2703 return false;
2704
2705 while (an->tn_right != NULL)
2706 an = an->tn_right;
2707 return is_const_char_pointer(an->tn_left);
2708 }
2709
2710 static bool
2711 is_const_pointer(const tnode_t *tn)
2712 {
2713 const type_t *tp = before_conversion(tn)->tn_type;
2714 return tp->t_tspec == PTR && tp->t_subt->t_const;
2715 }
2716
2717 static bool
2718 is_second_arg_const_pointer(const tnode_t *tn)
2719 {
2720 const tnode_t *an = tn->tn_right;
2721 if (an == NULL || an->tn_right == NULL)
2722 return false;
2723
2724 while (an->tn_right->tn_right != NULL)
2725 an = an->tn_right;
2726 return is_const_pointer(an->tn_left);
2727 }
2728
2729 static void
2730 check_unconst_function(const type_t *lstp, const tnode_t *rn)
2731 {
2732 const char *function_name;
2733
2734 if (lstp->t_tspec == CHAR && !lstp->t_const &&
2735 is_direct_function_call(rn, &function_name) &&
2736 is_unconst_function(function_name) &&
2737 is_first_arg_const_char_pointer(rn)) {
2738 /* call to '%s' effectively discards 'const' from argument */
2739 warning(346, function_name);
2740 }
2741
2742 if (!lstp->t_const &&
2743 is_direct_function_call(rn, &function_name) &&
2744 strcmp(function_name, "bsearch") == 0 &&
2745 is_second_arg_const_pointer(rn)) {
2746 /* call to '%s' effectively discards 'const' from argument */
2747 warning(346, function_name);
2748 }
2749 }
2750
2751 static bool
2752 check_assign_void_pointer_compat(op_t op, int arg,
2753 const type_t *const ltp, tspec_t const lt,
2754 const type_t *const lstp, tspec_t const lst,
2755 const tnode_t *const rn,
2756 const type_t *const rtp, tspec_t const rt,
2757 const type_t *const rstp, tspec_t const rst)
2758 {
2759 if (!(lt == PTR && rt == PTR && (lst == VOID || rst == VOID ||
2760 types_compatible(lstp, rstp,
2761 true, false, NULL))))
2762 return false;
2763
2764 /* compatible pointer types (qualifiers ignored) */
2765 if (allow_c90 &&
2766 ((!lstp->t_const && rstp->t_const) ||
2767 (!lstp->t_volatile && rstp->t_volatile))) {
2768 /* left side has not all qualifiers of right */
2769 switch (op) {
2770 case INIT:
2771 case RETURN:
2772 /* incompatible pointer types to '%s' and '%s' */
2773 warning(182, type_name(lstp), type_name(rstp));
2774 break;
2775 case FARG:
2776 /* converting '%s' to incompatible '%s' ... */
2777 warning(153,
2778 type_name(rtp), type_name(ltp), arg);
2779 break;
2780 default:
2781 /* operands of '%s' have incompatible pointer ... */
2782 warning(128, op_name(op),
2783 type_name(lstp), type_name(rstp));
2784 break;
2785 }
2786 }
2787
2788 if (allow_c90)
2789 check_unconst_function(lstp, rn);
2790
2791 return true;
2792 }
2793
2794 static bool
2795 check_assign_pointer_integer(op_t op, int arg,
2796 const type_t *const ltp, tspec_t const lt,
2797 const type_t *const rtp, tspec_t const rt)
2798 {
2799
2800 if (!((lt == PTR && is_integer(rt)) || (is_integer(lt) && rt == PTR)))
2801 return false;
2802
2803 const char *lx = lt == PTR ? "pointer" : "integer";
2804 const char *rx = rt == PTR ? "pointer" : "integer";
2805
2806 switch (op) {
2807 case INIT:
2808 case RETURN:
2809 /* illegal combination of %s '%s' and %s '%s' */
2810 warning(183, lx, type_name(ltp), rx, type_name(rtp));
2811 break;
2812 case FARG:
2813 /* illegal combination of %s '%s' and %s '%s', arg #%d */
2814 warning(154,
2815 lx, type_name(ltp), rx, type_name(rtp), arg);
2816 break;
2817 default:
2818 /* illegal combination of %s '%s' and %s '%s', op '%s' */
2819 warning(123,
2820 lx, type_name(ltp), rx, type_name(rtp), op_name(op));
2821 break;
2822 }
2823 return true;
2824 }
2825
2826 static bool
2827 check_assign_pointer(op_t op, int arg,
2828 const type_t *ltp, tspec_t lt,
2829 const type_t *rtp, tspec_t rt)
2830 {
2831 if (!(lt == PTR && rt == PTR))
2832 return false;
2833
2834 switch (op) {
2835 case RETURN:
2836 warn_incompatible_pointers(NULL, ltp, rtp);
2837 break;
2838 case FARG:
2839 /* converting '%s' to incompatible '%s' for ... */
2840 warning(153, type_name(rtp), type_name(ltp), arg);
2841 break;
2842 default:
2843 warn_incompatible_pointers(&modtab[op], ltp, rtp);
2844 break;
2845 }
2846 return true;
2847 }
2848
2849 static void
2850 warn_assign(op_t op, int arg,
2851 const type_t *ltp, tspec_t lt,
2852 const type_t *rtp, tspec_t rt)
2853 {
2854 switch (op) {
2855 case INIT:
2856 /* cannot initialize '%s' from '%s' */
2857 error(185, type_name(ltp), type_name(rtp));
2858 break;
2859 case RETURN:
2860 /* function has return type '%s' but returns '%s' */
2861 error(211, type_name(ltp), type_name(rtp));
2862 break;
2863 case FARG:
2864 /* passing '%s' to incompatible '%s', arg #%d */
2865 warning(155, type_name(rtp), type_name(ltp), arg);
2866 break;
2867 default:
2868 warn_incompatible_types(op, ltp, lt, rtp, rt);
2869 break;
2870 }
2871 }
2872
2873 /*
2874 * Checks type compatibility for ASSIGN, INIT, FARG and RETURN
2875 * and prints warnings/errors if necessary.
2876 * Returns whether the types are (almost) compatible.
2877 */
2878 static bool
2879 check_assign_types_compatible(op_t op, int arg,
2880 const tnode_t *ln, const tnode_t *rn)
2881 {
2882 tspec_t lt, rt, lst = NO_TSPEC, rst = NO_TSPEC;
2883 type_t *ltp, *rtp, *lstp = NULL, *rstp = NULL;
2884
2885 if ((lt = (ltp = ln->tn_type)->t_tspec) == PTR)
2886 lst = (lstp = ltp->t_subt)->t_tspec;
2887 if ((rt = (rtp = rn->tn_type)->t_tspec) == PTR)
2888 rst = (rstp = rtp->t_subt)->t_tspec;
2889
2890 if (lt == BOOL && is_scalar(rt)) /* C99 6.3.1.2 */
2891 return true;
2892
2893 if (is_arithmetic(lt) && (is_arithmetic(rt) || rt == BOOL))
2894 return true;
2895
2896 if (is_struct_or_union(lt) && is_struct_or_union(rt))
2897 /* both are struct or union */
2898 return ltp->t_sou == rtp->t_sou;
2899
2900 /* a null pointer may be assigned to any pointer */
2901 if (lt == PTR && is_null_pointer(rn)) {
2902 if (is_integer(rn->tn_type->t_tspec))
2903 /* implicit conversion from integer 0 to pointer ... */
2904 query_message(15, type_name(ltp));
2905 return true;
2906 }
2907
2908 check_assign_void_pointer(op, arg, lt, lst, rt, rst);
2909
2910 if (check_assign_void_pointer_compat(op, arg,
2911 ltp, lt, lstp, lst, rn, rtp, rt, rstp, rst))
2912 return true;
2913
2914 if (check_assign_pointer_integer(op, arg, ltp, lt, rtp, rt))
2915 return true;
2916
2917 if (check_assign_pointer(op, arg, ltp, lt, rtp, rt))
2918 return true;
2919
2920 warn_assign(op, arg, ltp, lt, rtp, rt);
2921 return false;
2922 }
2923
2924 static bool
2925 has_side_effect(const tnode_t *tn) /* NOLINT(misc-no-recursion) */
2926 {
2927 op_t op = tn->tn_op;
2928
2929 if (modtab[op].m_has_side_effect)
2930 return true;
2931
2932 if (op == CVT && tn->tn_type->t_tspec == VOID)
2933 return has_side_effect(tn->tn_left);
2934
2935 /* XXX: Why not has_side_effect(tn->tn_left) as well? */
2936 if (op == LOGAND || op == LOGOR)
2937 return has_side_effect(tn->tn_right);
2938
2939 /* XXX: Why not has_side_effect(tn->tn_left) as well? */
2940 if (op == QUEST)
2941 return has_side_effect(tn->tn_right);
2942
2943 if (op == COLON || op == COMMA) {
2944 return has_side_effect(tn->tn_left) ||
2945 has_side_effect(tn->tn_right);
2946 }
2947
2948 return false;
2949 }
2950
2951 static bool
2952 is_void_cast(const tnode_t *tn)
2953 {
2954
2955 return tn->tn_op == CVT && tn->tn_cast &&
2956 tn->tn_type->t_tspec == VOID;
2957 }
2958
2959 static bool
2960 is_local_symbol(const tnode_t *tn)
2961 {
2962
2963 return tn->tn_op == LOAD &&
2964 tn->tn_left->tn_op == NAME &&
2965 tn->tn_left->tn_sym->s_scl == AUTO;
2966 }
2967
2968 static bool
2969 is_int_constant_zero(const tnode_t *tn)
2970 {
2971
2972 return tn->tn_op == CON &&
2973 tn->tn_type->t_tspec == INT &&
2974 tn->tn_val.v_quad == 0;
2975 }
2976
2977 static void
2978 check_null_effect(const tnode_t *tn)
2979 {
2980
2981 if (hflag &&
2982 !has_side_effect(tn) &&
2983 !(is_void_cast(tn) && is_local_symbol(tn->tn_left)) &&
2984 !(is_void_cast(tn) && is_int_constant_zero(tn->tn_left))) {
2985 /* expression has null effect */
2986 warning(129);
2987 }
2988 }
2989
2990 /*
2991 * Check the types for specific operators and type combinations.
2992 *
2993 * At this point, the operands already conform to the type requirements of
2994 * the operator, such as being integer, floating or scalar.
2995 */
2996 static bool
2997 typeok_op(op_t op, const mod_t *mp, int arg,
2998 const tnode_t *ln, const type_t *ltp, tspec_t lt,
2999 const tnode_t *rn, const type_t *rtp, tspec_t rt)
3000 {
3001 switch (op) {
3002 case ARROW:
3003 return typeok_arrow(lt);
3004 case POINT:
3005 return typeok_point(ln, ltp, lt);
3006 case INCBEF:
3007 case DECBEF:
3008 case INCAFT:
3009 case DECAFT:
3010 return typeok_incdec(op, ln, ltp);
3011 case INDIR:
3012 return typeok_indir(ltp, lt);
3013 case ADDR:
3014 return typeok_address(mp, ln, ltp, lt);
3015 case PLUS:
3016 return typeok_plus(op, ltp, lt, rtp, rt);
3017 case MINUS:
3018 return typeok_minus(op, ltp, lt, rtp, rt);
3019 case SHL:
3020 typeok_shl(mp, lt, rt);
3021 goto shift;
3022 case SHR:
3023 typeok_shr(mp, ln, lt, rn, rt);
3024 shift:
3025 typeok_shift(ltp, lt, rn, rt);
3026 break;
3027 case LT:
3028 case LE:
3029 case GT:
3030 case GE:
3031 compare:
3032 return typeok_compare(op, ln, ltp, lt, rn, rtp, rt);
3033 case EQ:
3034 case NE:
3035 if (is_typeok_eq(ln, lt, rn, rt))
3036 break;
3037 goto compare;
3038 case QUEST:
3039 return typeok_quest(lt, rn);
3040 case COLON:
3041 return typeok_colon(mp, ln, ltp, lt, rn, rtp, rt);
3042 case ASSIGN:
3043 case INIT:
3044 case FARG:
3045 case RETURN:
3046 if (!check_assign_types_compatible(op, arg, ln, rn))
3047 return false;
3048 goto assign;
3049 case MULASS:
3050 case DIVASS:
3051 case MODASS:
3052 goto assign;
3053 case ADDASS:
3054 case SUBASS:
3055 if ((lt == PTR && !is_integer(rt)) || rt == PTR) {
3056 warn_incompatible_types(op, ltp, lt, rtp, rt);
3057 return false;
3058 }
3059 goto assign;
3060 case SHLASS:
3061 goto assign;
3062 case SHRASS:
3063 if (pflag && !is_uinteger(lt) &&
3064 !(!allow_c90 && is_uinteger(rt))) {
3065 /* bitwise '%s' on signed value possibly nonportable */
3066 warning(117, mp->m_name);
3067 }
3068 goto assign;
3069 case ANDASS:
3070 case XORASS:
3071 case ORASS:
3072 assign:
3073 return typeok_assign(op, ln, ltp, lt);
3074 case COMMA:
3075 if (!modtab[ln->tn_op].m_has_side_effect)
3076 check_null_effect(ln);
3077 break;
3078 default:
3079 break;
3080 }
3081 return true;
3082 }
3083
3084 /* Prints a warning if a strange operator is used on an enum type. */
3085 static void
3086 check_bad_enum_operation(op_t op, const tnode_t *ln, const tnode_t *rn)
3087 {
3088
3089 if (!eflag)
3090 return;
3091
3092 /* Allow enum in array indices. */
3093 if (op == PLUS &&
3094 ((ln->tn_type->t_is_enum && rn->tn_type->t_tspec == PTR) ||
3095 (rn->tn_type->t_is_enum && ln->tn_type->t_tspec == PTR))) {
3096 return;
3097 }
3098
3099 /* dubious operation on enum, op '%s' */
3100 warning(241, op_name(op));
3101 }
3102
3103 /* Prints a warning if an operator is applied to two different enum types. */
3104 static void
3105 check_enum_type_mismatch(op_t op, int arg, const tnode_t *ln, const tnode_t *rn)
3106 {
3107 const mod_t *mp = &modtab[op];
3108
3109 if (ln->tn_type->t_enum != rn->tn_type->t_enum) {
3110 switch (op) {
3111 case INIT:
3112 /* enum type mismatch between '%s' and '%s' in ... */
3113 warning(210,
3114 type_name(ln->tn_type), type_name(rn->tn_type));
3115 break;
3116 case FARG:
3117 /* function expects '%s', passing '%s' for arg #%d */
3118 warning(156,
3119 type_name(ln->tn_type), type_name(rn->tn_type),
3120 arg);
3121 break;
3122 case RETURN:
3123 /* function has return type '%s' but returns '%s' */
3124 warning(211,
3125 type_name(ln->tn_type), type_name(rn->tn_type));
3126 break;
3127 default:
3128 /* enum type mismatch: '%s' '%s' '%s' */
3129 warning(130, type_name(ln->tn_type), mp->m_name,
3130 type_name(rn->tn_type));
3131 break;
3132 }
3133 } else if (Pflag && mp->m_comparison && op != EQ && op != NE) {
3134 if (eflag)
3135 /* dubious comparison of enums, op '%s' */
3136 warning(243, mp->m_name);
3137 }
3138 }
3139
3140 /* Prints a warning if the operands mix between enum and integer. */
3141 static void
3142 check_enum_int_mismatch(op_t op, int arg, const tnode_t *ln, const tnode_t *rn)
3143 {
3144
3145 if (!eflag)
3146 return;
3147
3148 switch (op) {
3149 case INIT:
3150 /*
3151 * Initialization with 0 is allowed. Otherwise, all implicit
3152 * initializations would need to be warned upon as well.
3153 */
3154 if (!rn->tn_type->t_is_enum && rn->tn_op == CON &&
3155 is_integer(rn->tn_type->t_tspec) &&
3156 rn->tn_val.v_quad == 0) {
3157 return;
3158 }
3159 /* initialization of '%s' with '%s' */
3160 warning(277, type_name(ln->tn_type), type_name(rn->tn_type));
3161 break;
3162 case FARG:
3163 /* combination of '%s' and '%s', arg #%d */
3164 warning(278,
3165 type_name(ln->tn_type), type_name(rn->tn_type), arg);
3166 break;
3167 case RETURN:
3168 /* combination of '%s' and '%s' in return */
3169 warning(279, type_name(ln->tn_type), type_name(rn->tn_type));
3170 break;
3171 default:
3172 /* combination of '%s' and '%s', op '%s' */
3173 warning(242, type_name(ln->tn_type), type_name(rn->tn_type),
3174 op_name(op));
3175 break;
3176 }
3177 }
3178
3179 static void
3180 typeok_enum(op_t op, const mod_t *mp, int arg,
3181 const tnode_t *ln, const type_t *ltp,
3182 const tnode_t *rn, const type_t *rtp)
3183 {
3184 if (mp->m_bad_on_enum &&
3185 (ltp->t_is_enum || (mp->m_binary && rtp->t_is_enum))) {
3186 check_bad_enum_operation(op, ln, rn);
3187 } else if (mp->m_valid_on_enum &&
3188 (ltp->t_is_enum && rtp != NULL && rtp->t_is_enum)) {
3189 check_enum_type_mismatch(op, arg, ln, rn);
3190 } else if (mp->m_valid_on_enum &&
3191 (ltp->t_is_enum || (rtp != NULL && rtp->t_is_enum))) {
3192 check_enum_int_mismatch(op, arg, ln, rn);
3193 }
3194 }
3195
3196 /* Perform most type checks. Return whether the types are ok. */
3197 bool
3198 typeok(op_t op, int arg, const tnode_t *ln, const tnode_t *rn)
3199 {
3200
3201 const mod_t *mp = &modtab[op];
3202
3203 type_t *ltp = ln->tn_type;
3204 tspec_t lt = ltp->t_tspec;
3205
3206 type_t *rtp = mp->m_binary ? rn->tn_type : NULL;
3207 tspec_t rt = mp->m_binary ? rtp->t_tspec : NO_TSPEC;
3208
3209 if (Tflag && !typeok_scalar_strict_bool(op, mp, arg, ln, rn))
3210 return false;
3211 if (!typeok_scalar(op, mp, ltp, lt, rtp, rt))
3212 return false;
3213
3214 if (!typeok_op(op, mp, arg, ln, ltp, lt, rn, rtp, rt))
3215 return false;
3216
3217 typeok_enum(op, mp, arg, ln, ltp, rn, rtp);
3218 return true;
3219 }
3220
3221 /* In traditional C, keep unsigned and promote FLOAT to DOUBLE. */
3222 static tspec_t
3223 promote_trad(tspec_t t)
3224 {
3225
3226 if (t == UCHAR || t == USHORT)
3227 return UINT;
3228 if (t == CHAR || t == SCHAR || t == SHORT)
3229 return INT;
3230 if (t == FLOAT)
3231 return DOUBLE;
3232 if (t == ENUM)
3233 return INT;
3234 return t;
3235 }
3236
3237 /*
3238 * C99 6.3.1.1p2 requires for types with lower rank than int that "If an int
3239 * can represent all the values of the original type, the value is converted
3240 * to an int; otherwise it is converted to an unsigned int", and that "All
3241 * other types are unchanged by the integer promotions".
3242 */
3243 static tspec_t
3244 promote_c90(const tnode_t *tn, tspec_t t, bool farg)
3245 {
3246 if (tn->tn_type->t_bitfield) {
3247 unsigned int width = tn->tn_type->t_bit_field_width;
3248 unsigned int int_width = size_in_bits(INT);
3249 // XXX: What about _Bool bit-fields, since C99?
3250 if (width < int_width)
3251 return INT;
3252 if (width == int_width)
3253 return is_uinteger(t) ? UINT : INT;
3254 return t;
3255 }
3256
3257 if (t == CHAR || t == SCHAR)
3258 return INT;
3259 if (t == UCHAR)
3260 return size_in_bits(CHAR) < size_in_bits(INT) ? INT : UINT;
3261 if (t == SHORT)
3262 return INT;
3263 if (t == USHORT)
3264 return size_in_bits(SHORT) < size_in_bits(INT) ? INT : UINT;
3265 if (t == ENUM)
3266 return INT;
3267 if (farg && t == FLOAT)
3268 return DOUBLE;
3269 return t;
3270 }
3271
3272 /*
3273 * Performs the "integer promotions" (C99 6.3.1.1p2), which convert small
3274 * integer types to either int or unsigned int.
3275 *
3276 * If allow_c90 is unset or the operand is a function argument with no type
3277 * information (no prototype or variable # of args), converts float to double.
3278 */
3279 tnode_t *
3280 promote(op_t op, bool farg, tnode_t *tn)
3281 {
3282
3283 tspec_t ot = tn->tn_type->t_tspec;
3284 if (!is_arithmetic(ot))
3285 return tn;
3286
3287 tspec_t nt = allow_c90 ? promote_c90(tn, ot, farg) : promote_trad(ot);
3288 if (nt == ot)
3289 return tn;
3290
3291 type_t *ntp = expr_dup_type(tn->tn_type);
3292 ntp->t_tspec = nt;
3293 /*
3294 * Keep t_is_enum even though t_tspec gets converted from
3295 * ENUM to INT, so we are later able to check compatibility
3296 * of enum types.
3297 */
3298 return convert(op, 0, ntp, tn);
3299 }
3300
3301 static void
3302 convert_integer_from_floating(op_t op, const type_t *tp, const tnode_t *tn)
3303 {
3304
3305 if (op == CVT)
3306 /* cast from floating point '%s' to integer '%s' */
3307 query_message(2, type_name(tn->tn_type), type_name(tp));
3308 else
3309 /* implicit conversion from floating point '%s' to ... */
3310 query_message(1, type_name(tn->tn_type), type_name(tp));
3311 }
3312
3313 static bool
3314 should_warn_about_prototype_conversion(tspec_t nt,
3315 tspec_t ot, const tnode_t *ptn)
3316 {
3317
3318 if (nt == ot)
3319 return false;
3320
3321 if (nt == ENUM && ot == INT)
3322 return false;
3323
3324 if (is_floating(nt) != is_floating(ot) ||
3325 portable_size_in_bits(nt) != portable_size_in_bits(ot)) {
3326 /* representation and/or width change */
3327 if (!is_integer(ot))
3328 return true;
3329 /*
3330 * XXX: Investigate whether this rule makes sense; see
3331 * tests/usr.bin/xlint/lint1/platform_long.c.
3332 */
3333 return portable_size_in_bits(ot) > portable_size_in_bits(INT);
3334 }
3335
3336 if (!hflag)
3337 return false;
3338
3339 /*
3340 * If the types differ only in sign and the argument has the same
3341 * representation in both types, print no warning.
3342 */
3343 if (ptn->tn_op == CON && is_integer(nt) &&
3344 signed_type(nt) == signed_type(ot) &&
3345 !msb(ptn->tn_val.v_quad, ot))
3346 return false;
3347
3348 return true;
3349 }
3350
3351 /*
3352 * Warn if a prototype causes a type conversion that is different from what
3353 * would happen to the same argument in the absence of a prototype. This
3354 * check is intended for code that needs to stay compatible with pre-C90 C.
3355 *
3356 * Errors/warnings about illegal type combinations are already printed
3357 * in check_assign_types_compatible().
3358 */
3359 static void
3360 check_prototype_conversion(int arg, tspec_t nt, tspec_t ot, type_t *tp,
3361 tnode_t *tn)
3362 {
3363
3364 if (!is_arithmetic(nt) || !is_arithmetic(ot))
3365 return;
3366
3367 /*
3368 * If the type of the formal parameter is char/short, a warning
3369 * would be useless, because functions declared the old style
3370 * can't expect char/short arguments.
3371 */
3372 if (nt == CHAR || nt == SCHAR || nt == UCHAR ||
3373 nt == SHORT || nt == USHORT)
3374 return;
3375
3376 /* apply the default promotion */
3377 tnode_t *ptn = promote(NOOP, true, tn);
3378 ot = ptn->tn_type->t_tspec;
3379
3380 if (should_warn_about_prototype_conversion(nt, ot, ptn)) {
3381 /* argument #%d is converted from '%s' to '%s' ... */
3382 warning(259, arg, type_name(tn->tn_type), type_name(tp));
3383 }
3384 }
3385
3386 /*
3387 * When converting a large integer type to a small integer type, in some
3388 * cases the value of the actual expression is further restricted than the
3389 * type bounds, such as in (expr & 0xFF) or (expr % 100) or (expr >> 24).
3390 */
3391 static bool
3392 can_represent(const type_t *tp, const tnode_t *tn)
3393 {
3394
3395 debug_step("%s: type '%s'", __func__, type_name(tp));
3396 debug_node(tn);
3397
3398 uint64_t nmask = value_bits(width_in_bits(tp));
3399 if (!is_uinteger(tp->t_tspec))
3400 nmask >>= 1;
3401
3402 integer_constraints c = ic_expr(tn);
3403 if ((~c.bclr & ~nmask) == 0)
3404 return true;
3405
3406 integer_constraints tpc = ic_any(tp);
3407 if (is_uinteger(tp->t_tspec)
3408 ? tpc.umin <= c.umin && tpc.umax >= c.umax
3409 : tpc.smin <= c.smin && tpc.smax >= c.smax)
3410 return true;
3411
3412 return false;
3413 }
3414
3415 static void
3416 convert_integer_from_integer(op_t op, int arg, tspec_t nt, tspec_t ot,
3417 type_t *tp, tnode_t *tn)
3418 {
3419
3420 if (tn->tn_op == CON)
3421 return;
3422
3423 if (op == CVT)
3424 return;
3425
3426 if (Pflag && pflag && aflag > 0 &&
3427 portable_size_in_bits(nt) > portable_size_in_bits(ot) &&
3428 is_uinteger(nt) != is_uinteger(ot)) {
3429 if (op == FARG) {
3430 /* conversion to '%s' may sign-extend ... */
3431 warning(297, type_name(tp), arg);
3432 } else {
3433 /* conversion to '%s' may sign-extend ... */
3434 warning(131, type_name(tp));
3435 }
3436 }
3437
3438 if (Pflag && portable_size_in_bits(nt) > portable_size_in_bits(ot) &&
3439 (tn->tn_op == PLUS || tn->tn_op == MINUS || tn->tn_op == MULT ||
3440 tn->tn_op == SHL)) {
3441 /* suggest cast from '%s' to '%s' on op '%s' to ... */
3442 warning(324, type_name(gettyp(ot)), type_name(tp),
3443 op_name(tn->tn_op));
3444 }
3445
3446 if (aflag > 0 &&
3447 portable_size_in_bits(nt) < portable_size_in_bits(ot) &&
3448 (ot == LONG || ot == ULONG || ot == QUAD || ot == UQUAD ||
3449 aflag > 1) &&
3450 !can_represent(tp, tn)) {
3451 if (op == FARG) {
3452 /* conversion from '%s' to '%s' may lose ... */
3453 warning(298,
3454 type_name(tn->tn_type), type_name(tp), arg);
3455 } else {
3456 /* conversion from '%s' to '%s' may lose accuracy */
3457 warning(132,
3458 type_name(tn->tn_type), type_name(tp));
3459 }
3460 }
3461
3462 if (is_uinteger(nt) != is_uinteger(ot))
3463 /* implicit conversion changes sign from '%s' to '%s' */
3464 query_message(3, type_name(tn->tn_type), type_name(tp));
3465 }
3466
3467 static void
3468 convert_integer_from_pointer(op_t op, tspec_t nt, type_t *tp, tnode_t *tn)
3469 {
3470
3471 if (tn->tn_op == CON)
3472 return;
3473 if (op != CVT)
3474 return; /* We already got an error. */
3475 if (portable_size_in_bits(nt) >= portable_size_in_bits(PTR))
3476 return;
3477
3478 if (pflag && size_in_bits(nt) >= size_in_bits(PTR)) {
3479 /* conversion of pointer to '%s' may lose bits */
3480 warning(134, type_name(tp));
3481 } else {
3482 /* conversion of pointer to '%s' loses bits */
3483 warning(133, type_name(tp));
3484 }
3485 }
3486
3487 static bool
3488 struct_starts_with(const type_t *struct_tp, const type_t *member_tp)
3489 {
3490
3491 return struct_tp->t_sou->sou_first_member != NULL &&
3492 types_compatible(struct_tp->t_sou->sou_first_member->s_type,
3493 member_tp, true, false, NULL);
3494 }
3495
3496 static bool
3497 is_byte_array(const type_t *tp)
3498 {
3499
3500 return tp->t_tspec == ARRAY &&
3501 (tp->t_subt->t_tspec == CHAR || tp->t_subt->t_tspec == UCHAR);
3502 }
3503
3504 static bool
3505 union_contains(const type_t *utp, const type_t *mtp)
3506 {
3507 for (const sym_t *mem = utp->t_sou->sou_first_member;
3508 mem != NULL; mem = mem->s_next) {
3509 if (types_compatible(mem->s_type, mtp, true, false, NULL))
3510 return true;
3511 }
3512 return false;
3513 }
3514
3515 static bool
3516 should_warn_about_pointer_cast(const type_t *nstp, tspec_t nst,
3517 const type_t *ostp, tspec_t ost)
3518 {
3519
3520 while (nst == ARRAY)
3521 nstp = nstp->t_subt, nst = nstp->t_tspec;
3522 while (ost == ARRAY)
3523 ostp = ostp->t_subt, ost = ostp->t_tspec;
3524
3525 if (nst == STRUCT && ost == STRUCT &&
3526 (struct_starts_with(nstp, ostp) ||
3527 struct_starts_with(ostp, nstp)))
3528 return false;
3529
3530 if (is_incomplete(nstp) || is_incomplete(ostp))
3531 return false;
3532
3533 if (nst == CHAR || nst == UCHAR)
3534 return false; /* for the sake of traditional C code */
3535 if (ost == CHAR || ost == UCHAR)
3536 return false; /* for the sake of traditional C code */
3537
3538 /* Allow cast between pointers to sockaddr variants. */
3539 if (nst == STRUCT && ost == STRUCT) {
3540 debug_type(nstp);
3541 debug_type(ostp);
3542 const sym_t *nmem = nstp->t_sou->sou_first_member;
3543 const sym_t *omem = ostp->t_sou->sou_first_member;
3544 while (nmem != NULL && omem != NULL &&
3545 types_compatible(nmem->s_type, omem->s_type,
3546 true, false, NULL))
3547 nmem = nmem->s_next, omem = omem->s_next;
3548 if (nmem != NULL && is_byte_array(nmem->s_type))
3549 return false;
3550 if (omem != NULL && is_byte_array(omem->s_type))
3551 return false;
3552 if (nmem == NULL && omem == NULL)
3553 return false;
3554 }
3555
3556 if (nst == UNION || ost == UNION) {
3557 const type_t *union_tp = nst == UNION ? nstp : ostp;
3558 const type_t *other_tp = nst == UNION ? ostp : nstp;
3559 if (union_contains(union_tp, other_tp))
3560 return false;
3561 }
3562
3563 if (is_struct_or_union(nst) && nstp->t_sou != ostp->t_sou)
3564 return true;
3565
3566 return portable_size_in_bits(nst) != portable_size_in_bits(ost);
3567 }
3568
3569 static void
3570 convert_pointer_from_pointer(type_t *ntp, tnode_t *tn)
3571 {
3572 const type_t *nstp = ntp->t_subt;
3573 const type_t *otp = tn->tn_type;
3574 const type_t *ostp = otp->t_subt;
3575 tspec_t nst = nstp->t_tspec;
3576 tspec_t ost = ostp->t_tspec;
3577
3578 if (nst == VOID || ost == VOID) {
3579 /* TODO: C99 behaves like C90 here. */
3580 if ((!allow_trad && !allow_c99) && (nst == FUNC || ost == FUNC)) {
3581 const char *nts, *ots;
3582 /* null pointers are already handled in convert() */
3583 *(nst == FUNC ? &nts : &ots) = "function pointer";
3584 *(nst == VOID ? &nts : &ots) = "'void *'";
3585 /* ANSI C forbids conversion of %s to %s */
3586 warning(303, ots, nts);
3587 }
3588 return;
3589 }
3590 if (nst == FUNC && ost == FUNC)
3591 return;
3592 if (nst == FUNC || ost == FUNC) {
3593 /* converting '%s' to '%s' is questionable */
3594 warning(229, type_name(otp), type_name(ntp));
3595 return;
3596 }
3597
3598 if (hflag && alignment_in_bits(nstp) > alignment_in_bits(ostp) &&
3599 ost != CHAR && ost != UCHAR &&
3600 !is_incomplete(ostp) &&
3601 !(nst == UNION && union_contains(nstp, ostp))) {
3602 /* converting '%s' to '%s' increases alignment ... */
3603 warning(135, type_name(otp), type_name(ntp),
3604 alignment_in_bits(ostp) / CHAR_SIZE,
3605 alignment_in_bits(nstp) / CHAR_SIZE);
3606 }
3607
3608 if (cflag && should_warn_about_pointer_cast(nstp, nst, ostp, ost)) {
3609 /* pointer cast from '%s' to '%s' may be troublesome */
3610 warning(247, type_name(otp), type_name(ntp));
3611 }
3612 }
3613
3614 /*
3615 * Insert a conversion operator, which converts the type of the node
3616 * to another given type.
3617 *
3618 * Possible values for 'op':
3619 * CVT a cast-expression
3620 * binary integer promotion for one of the operands, or a usual
3621 * arithmetic conversion
3622 * binary plain or compound assignments to bit-fields
3623 * FARG 'arg' is the number of the argument (used for warnings)
3624 * NOOP several other implicit conversions
3625 * ...
3626 */
3627 tnode_t *
3628 convert(op_t op, int arg, type_t *tp, tnode_t *tn)
3629 {
3630 tspec_t nt = tp->t_tspec;
3631 tspec_t ot = tn->tn_type->t_tspec;
3632
3633 if (allow_trad && allow_c90 && op == FARG)
3634 check_prototype_conversion(arg, nt, ot, tp, tn);
3635
3636 if (nt == BOOL) {
3637 /* No further checks. */
3638
3639 } else if (is_integer(nt)) {
3640 if (ot == BOOL) {
3641 /* No further checks. */
3642 } else if (is_integer(ot))
3643 convert_integer_from_integer(op, arg, nt, ot, tp, tn);
3644 else if (is_floating(ot))
3645 convert_integer_from_floating(op, tp, tn);
3646 else if (ot == PTR)
3647 convert_integer_from_pointer(op, nt, tp, tn);
3648
3649 } else if (is_floating(nt)) {
3650 /* No further checks. */
3651
3652 } else if (nt == PTR) {
3653 if (is_null_pointer(tn)) {
3654 /* a null pointer may be assigned to any pointer. */
3655 } else if (ot == PTR && op == CVT)
3656 convert_pointer_from_pointer(tp, tn);
3657 }
3658
3659 tnode_t *ntn = expr_alloc_tnode();
3660 ntn->tn_op = CVT;
3661 ntn->tn_type = tp;
3662 ntn->tn_cast = op == CVT;
3663 ntn->tn_sys |= tn->tn_sys;
3664 ntn->tn_right = NULL;
3665 if (tn->tn_op != CON || nt == VOID) {
3666 ntn->tn_left = tn;
3667 } else {
3668 ntn->tn_op = CON;
3669 convert_constant(op, arg, ntn->tn_type, &ntn->tn_val,
3670 &tn->tn_val);
3671 }
3672
3673 return ntn;
3674 }
3675
3676 static void
3677 convert_constant_floating(op_t op, int arg, tspec_t ot, const type_t *tp,
3678 tspec_t nt, val_t *v, val_t *nv)
3679 {
3680 long double max = 0.0, min = 0.0;
3681
3682 switch (nt) {
3683 case CHAR:
3684 max = TARG_CHAR_MAX; min = TARG_CHAR_MIN; break;
3685 case UCHAR:
3686 max = TARG_UCHAR_MAX; min = 0; break;
3687 case SCHAR:
3688 max = TARG_SCHAR_MAX; min = TARG_SCHAR_MIN; break;
3689 case SHORT:
3690 max = TARG_SHRT_MAX; min = TARG_SHRT_MIN; break;
3691 case USHORT:
3692 max = TARG_USHRT_MAX; min = 0; break;
3693 case ENUM:
3694 case INT:
3695 max = TARG_INT_MAX; min = TARG_INT_MIN; break;
3696 case UINT:
3697 max = TARG_UINT_MAX; min = 0; break;
3698 case LONG:
3699 max = TARG_LONG_MAX; min = TARG_LONG_MIN; break;
3700 case ULONG:
3701 max = TARG_ULONG_MAX; min = 0; break;
3702 case QUAD:
3703 max = QUAD_MAX; min = QUAD_MIN; break;
3704 case UQUAD:
3705 max = UQUAD_MAX; min = 0; break;
3706 case FLOAT:
3707 case FCOMPLEX:
3708 max = FLT_MAX; min = -FLT_MAX; break;
3709 case DOUBLE:
3710 case DCOMPLEX:
3711 max = DBL_MAX; min = -DBL_MAX; break;
3712 case PTR:
3713 /* Already got an error because of float --> ptr */
3714 case LDOUBLE:
3715 case LCOMPLEX:
3716 /* LINTED 248 */
3717 max = LDBL_MAX; min = -max; break;
3718 default:
3719 lint_assert(/*CONSTCOND*/false);
3720 }
3721 if (v->v_ldbl > max || v->v_ldbl < min) {
3722 lint_assert(nt != LDOUBLE);
3723 if (op == FARG) {
3724 /* conversion of '%s' to '%s' is out of range, ... */
3725 warning(295,
3726 type_name(gettyp(ot)), type_name(tp), arg);
3727 } else {
3728 /* conversion of '%s' to '%s' is out of range */
3729 warning(119, type_name(gettyp(ot)), type_name(tp));
3730 }
3731 v->v_ldbl = v->v_ldbl > 0 ? max : min;
3732 }
3733
3734 if (nt == FLOAT || nt == FCOMPLEX)
3735 nv->v_ldbl = (float)v->v_ldbl;
3736 else if (nt == DOUBLE || nt == DCOMPLEX)
3737 nv->v_ldbl = (double)v->v_ldbl;
3738 else if (nt == LDOUBLE || nt == LCOMPLEX)
3739 nv->v_ldbl = v->v_ldbl;
3740 else
3741 nv->v_quad = (int64_t)v->v_ldbl;
3742 }
3743
3744 static bool
3745 convert_constant_to_floating(tspec_t nt, val_t *nv,
3746 tspec_t ot, const val_t *v)
3747 {
3748 if (nt == FLOAT) {
3749 nv->v_ldbl = (ot == PTR || is_uinteger(ot)) ?
3750 (float)(uint64_t)v->v_quad : (float)v->v_quad;
3751 } else if (nt == DOUBLE) {
3752 nv->v_ldbl = (ot == PTR || is_uinteger(ot)) ?
3753 (double)(uint64_t)v->v_quad : (double)v->v_quad;
3754 } else if (nt == LDOUBLE) {
3755 nv->v_ldbl = (ot == PTR || is_uinteger(ot)) ?
3756 (long double)(uint64_t)v->v_quad : (long double)v->v_quad;
3757 } else
3758 return false;
3759 return true;
3760 }
3761
3762 /*
3763 * Print a warning if bits which were set are lost due to the conversion.
3764 * This can happen with operator ORASS only.
3765 */
3766 static void
3767 convert_constant_check_range_bitor(size_t nsz, size_t osz, const val_t *v,
3768 uint64_t xmask, op_t op)
3769 {
3770 if (nsz < osz && (v->v_quad & xmask) != 0) {
3771 /* constant truncated by conversion, op '%s' */
3772 warning(306, op_name(op));
3773 }
3774 }
3775
3776 /*
3777 * Print a warning if additional bits are not all 1
3778 * and the most significant bit of the old value is 1,
3779 * or if at least one (but not all) removed bit was 0.
3780 */
3781 static void
3782 convert_constant_check_range_bitand(size_t nsz, size_t osz,
3783 uint64_t xmask, const val_t *nv,
3784 tspec_t ot, const val_t *v,
3785 const type_t *tp, op_t op)
3786 {
3787 if (nsz > osz &&
3788 (nv->v_quad & bit((unsigned int)(osz - 1))) != 0 &&
3789 (nv->v_quad & xmask) != xmask) {
3790 /* extra bits set to 0 in conversion of '%s' to '%s', ... */
3791 warning(309, type_name(gettyp(ot)),
3792 type_name(tp), op_name(op));
3793 } else if (nsz < osz &&
3794 (v->v_quad & xmask) != xmask &&
3795 (v->v_quad & xmask) != 0) {
3796 /* constant truncated by conversion, op '%s' */
3797 warning(306, op_name(op));
3798 }
3799 }
3800
3801 static void
3802 convert_constant_check_range_signed(op_t op, int arg)
3803 {
3804 if (op == ASSIGN) {
3805 /* assignment of negative constant to unsigned type */
3806 warning(164);
3807 } else if (op == INIT) {
3808 /* initialization of unsigned with negative constant */
3809 warning(221);
3810 } else if (op == FARG) {
3811 /* conversion of negative constant to unsigned type, ... */
3812 warning(296, arg);
3813 } else if (modtab[op].m_comparison) {
3814 /* handled by check_integer_comparison() */
3815 } else {
3816 /* conversion of negative constant to unsigned type */
3817 warning(222);
3818 }
3819 }
3820
3821 /*
3822 * Loss of significant bit(s). All truncated bits of unsigned types or all
3823 * truncated bits plus the msb of the target for signed types are considered
3824 * to be significant bits. Loss of significant bits means that at least one
3825 * of the bits was set in an unsigned type or that at least one but not all
3826 * of the bits was set in a signed type. Loss of significant bits means that
3827 * it is not possible, also not with necessary casts, to convert back to the
3828 * original type. An example for a necessary cast is:
3829 * char c; int i; c = 128;
3830 * i = c; ** yields -128 **
3831 * i = (unsigned char)c; ** yields 128 **
3832 */
3833 static void
3834 warn_constant_check_range_truncated(op_t op, int arg, const type_t *tp,
3835 tspec_t ot)
3836 {
3837 if (op == ASSIGN && tp->t_bitfield)
3838 /* precision lost in bit-field assignment */
3839 warning(166);
3840 else if (op == ASSIGN)
3841 /* constant truncated by assignment */
3842 warning(165);
3843 else if (op == INIT && tp->t_bitfield)
3844 /* bit-field initializer does not fit */
3845 warning(180);
3846 else if (op == INIT)
3847 /* initializer does not fit */
3848 warning(178);
3849 else if (op == CASE)
3850 /* case label affected by conversion */
3851 warning(196);
3852 else if (op == FARG)
3853 /* conversion of '%s' to '%s' is out of range, arg #%d */
3854 warning(295, type_name(gettyp(ot)), type_name(tp), arg);
3855 else
3856 /* conversion of '%s' to '%s' is out of range */
3857 warning(119, type_name(gettyp(ot)), type_name(tp));
3858 }
3859
3860 static void
3861 warn_constant_check_range_loss(op_t op, int arg, const type_t *tp,
3862 tspec_t ot)
3863 {
3864 if (op == ASSIGN && tp->t_bitfield)
3865 /* precision lost in bit-field assignment */
3866 warning(166);
3867 else if (op == INIT && tp->t_bitfield)
3868 /* bit-field initializer out of range */
3869 warning(11);
3870 else if (op == CASE)
3871 /* case label affected by conversion */
3872 warning(196);
3873 else if (op == FARG)
3874 /* conversion of '%s' to '%s' is out of range, arg #%d */
3875 warning(295, type_name(gettyp(ot)), type_name(tp), arg);
3876 else
3877 /* conversion of '%s' to '%s' is out of range */
3878 warning(119, type_name(gettyp(ot)), type_name(tp));
3879 }
3880
3881 static void
3882 convert_constant_check_range(tspec_t ot, const type_t *tp, tspec_t nt,
3883 op_t op, int arg, const val_t *v, val_t *nv)
3884 {
3885 unsigned int obitsz, nbitsz;
3886 uint64_t xmask, xmsk1;
3887
3888 obitsz = size_in_bits(ot);
3889 nbitsz = tp->t_bitfield ? tp->t_bit_field_width : size_in_bits(nt);
3890 xmask = value_bits(nbitsz) ^ value_bits(obitsz);
3891 xmsk1 = value_bits(nbitsz) ^ value_bits(obitsz - 1);
3892 /*
3893 * For bitwise operations we are not interested in the arithmetic
3894 * value, but in the bits itself.
3895 */
3896 if (op == ORASS || op == BITOR || op == BITXOR) {
3897 convert_constant_check_range_bitor(
3898 nbitsz, obitsz, v, xmask, op);
3899 } else if (op == ANDASS || op == BITAND) {
3900 convert_constant_check_range_bitand(
3901 nbitsz, obitsz, xmask, nv, ot, v, tp, op);
3902 } else if ((nt != PTR && is_uinteger(nt)) &&
3903 (ot != PTR && !is_uinteger(ot)) &&
3904 v->v_quad < 0)
3905 convert_constant_check_range_signed(op, arg);
3906 else if (nv->v_quad != v->v_quad && nbitsz <= obitsz &&
3907 (v->v_quad & xmask) != 0 &&
3908 (is_uinteger(ot) || (v->v_quad & xmsk1) != xmsk1))
3909 warn_constant_check_range_truncated(op, arg, tp, ot);
3910 else if (nv->v_quad != v->v_quad)
3911 warn_constant_check_range_loss(op, arg, tp, ot);
3912 }
3913
3914 /*
3915 * Converts a typed constant to a constant of another type.
3916 *
3917 * op operator which requires conversion
3918 * arg if op is FARG, # of argument
3919 * tp type to which to convert the constant
3920 * nv new constant
3921 * v old constant
3922 */
3923 void
3924 convert_constant(op_t op, int arg, const type_t *tp, val_t *nv, val_t *v)
3925 {
3926 /*
3927 * TODO: make 'v' const; the name of this function does not suggest
3928 * that it modifies 'v'.
3929 */
3930 tspec_t ot = v->v_tspec;
3931 tspec_t nt = nv->v_tspec = tp->t_tspec;
3932 bool range_check = false;
3933
3934 if (nt == BOOL) { /* C99 6.3.1.2 */
3935 nv->v_unsigned_since_c90 = false;
3936 nv->v_quad = is_nonzero_val(v) ? 1 : 0;
3937 return;
3938 }
3939
3940 if (ot == FLOAT || ot == DOUBLE || ot == LDOUBLE)
3941 convert_constant_floating(op, arg, ot, tp, nt, v, nv);
3942 else if (!convert_constant_to_floating(nt, nv, ot, v)) {
3943 range_check = true; /* Check for lost precision. */
3944 nv->v_quad = v->v_quad;
3945 }
3946
3947 if (allow_trad && allow_c90 && v->v_unsigned_since_c90 &&
3948 (is_floating(nt) || (
3949 (is_integer(nt) && !is_uinteger(nt) &&
3950 portable_size_in_bits(nt) > portable_size_in_bits(ot))))) {
3951 /* ANSI C treats constant as unsigned */
3952 warning(157);
3953 v->v_unsigned_since_c90 = false;
3954 }
3955
3956 if (is_integer(nt)) {
3957 nv->v_quad = convert_integer(nv->v_quad, nt,
3958 tp->t_bitfield ? tp->t_bit_field_width : size_in_bits(nt));
3959 }
3960
3961 if (range_check && op != CVT)
3962 convert_constant_check_range(ot, tp, nt, op, arg, v, nv);
3963 }
3964
3965 /*
3966 * Create a constant node for sizeof.
3967 */
3968 tnode_t *
3969 build_sizeof(const type_t *tp)
3970 {
3971 unsigned int size_in_bytes = type_size_in_bits(tp) / CHAR_SIZE;
3972 tnode_t *tn = build_integer_constant(SIZEOF_TSPEC, size_in_bytes);
3973 tn->tn_system_dependent = true;
3974 debug_step("build_sizeof '%s' = %u", type_name(tp), size_in_bytes);
3975 return tn;
3976 }
3977
3978 /*
3979 * Create a constant node for offsetof.
3980 */
3981 /* ARGSUSED */ /* FIXME: See implementation comments. */
3982 tnode_t *
3983 build_offsetof(const type_t *tp, const sym_t *sym)
3984 {
3985
3986 if (!is_struct_or_union(tp->t_tspec))
3987 /* unacceptable operand of '%s' */
3988 error(111, "offsetof");
3989
3990 /* FIXME: Don't wrongly use the size of the whole type, use sym. */
3991 unsigned int offset_in_bytes = type_size_in_bits(tp) / CHAR_SIZE;
3992 tnode_t *tn = build_integer_constant(SIZEOF_TSPEC, offset_in_bytes);
3993 tn->tn_system_dependent = true;
3994 return tn;
3995 }
3996
3997 unsigned int
3998 type_size_in_bits(const type_t *tp)
3999 {
4000
4001 unsigned int elem = 1;
4002 bool flex = false;
4003 lint_assert(tp != NULL);
4004 while (tp->t_tspec == ARRAY) {
4005 flex = true; /* allow c99 flex arrays [] [0] */
4006 elem *= tp->t_dim;
4007 tp = tp->t_subt;
4008 }
4009 if (elem == 0 && !flex) {
4010 /* cannot take size/alignment of incomplete type */
4011 error(143);
4012 elem = 1;
4013 }
4014
4015 unsigned int elsz;
4016 switch (tp->t_tspec) {
4017 case FUNC:
4018 /* cannot take size/alignment of function type '%s' */
4019 error(144, type_name(tp));
4020 elsz = 1;
4021 break;
4022 case STRUCT:
4023 case UNION:
4024 if (is_incomplete(tp)) {
4025 /* cannot take size/alignment of incomplete type */
4026 error(143);
4027 elsz = 1;
4028 } else {
4029 elsz = tp->t_sou->sou_size_in_bits;
4030 }
4031 break;
4032 case ENUM:
4033 if (is_incomplete(tp)) {
4034 /* cannot take size/alignment of incomplete type */
4035 warning(143);
4036 }
4037 /* FALLTHROUGH */
4038 default:
4039 if (tp->t_bitfield) {
4040 /* cannot take size/alignment of bit-field */
4041 error(145);
4042 }
4043 if (tp->t_tspec == VOID) {
4044 /* cannot take size/alignment of void */
4045 error(146);
4046 elsz = 1;
4047 } else {
4048 elsz = size_in_bits(tp->t_tspec);
4049 lint_assert(elsz > 0);
4050 }
4051 break;
4052 }
4053
4054 return elem * elsz;
4055 }
4056
4057 /* C11 6.5.3.4, GCC */
4058 tnode_t *
4059 build_alignof(const type_t *tp)
4060 {
4061 if (tp->t_tspec == FUNC) {
4062 /* cannot take size/alignment of function type '%s' */
4063 error(144, type_name(tp));
4064 return NULL;
4065 }
4066 if (tp->t_tspec == VOID) {
4067 /* cannot take size/alignment of void */
4068 error(146);
4069 return NULL;
4070 }
4071 if (is_incomplete(tp)) {
4072 /* cannot take size/alignment of incomplete type */
4073 error(143);
4074 return NULL;
4075 }
4076 if (tp->t_bitfield) {
4077 /* cannot take size/alignment of bit-field */
4078 error(145);
4079 return NULL;
4080 }
4081 return build_integer_constant(SIZEOF_TSPEC,
4082 (int64_t)alignment_in_bits(tp) / CHAR_SIZE);
4083 }
4084
4085 static tnode_t *
4086 cast_to_union(tnode_t *otn, type_t *ntp)
4087 {
4088
4089 if (!allow_gcc) {
4090 /* union cast is a GCC extension */
4091 error(328);
4092 return NULL;
4093 }
4094
4095 for (const sym_t *m = ntp->t_sou->sou_first_member;
4096 m != NULL; m = m->s_next) {
4097 if (types_compatible(m->s_type, otn->tn_type,
4098 false, false, NULL)) {
4099 tnode_t *ntn = expr_alloc_tnode();
4100 ntn->tn_op = CVT;
4101 ntn->tn_type = ntp;
4102 ntn->tn_cast = true;
4103 ntn->tn_left = otn;
4104 ntn->tn_right = NULL;
4105 return ntn;
4106 }
4107 }
4108
4109 /* type '%s' is not a member of '%s' */
4110 error(329, type_name(otn->tn_type), type_name(ntp));
4111 return NULL;
4112 }
4113
4114 /*
4115 * Type casts.
4116 */
4117 tnode_t *
4118 cast(tnode_t *tn, type_t *tp)
4119 {
4120
4121 if (tn == NULL)
4122 return NULL;
4123
4124 tn = cconv(tn);
4125
4126 lint_assert(tp != NULL);
4127 tspec_t nt = tp->t_tspec;
4128 tspec_t ot = tn->tn_type->t_tspec;
4129
4130 if (nt == VOID) {
4131 /*
4132 * C90 6.3.4, C99 6.5.4p2 and C11 6.5.4p2 allow any type to
4133 * be cast to void. The only other allowed casts are from a
4134 * scalar type to a scalar type.
4135 */
4136 } else if (nt == UNION)
4137 return cast_to_union(tn, tp);
4138 else if (nt == STRUCT || nt == ARRAY || nt == FUNC) {
4139 /* Casting to a struct is an undocumented GCC extension. */
4140 if (!(allow_gcc && nt == STRUCT))
4141 goto invalid_cast;
4142 } else if (is_struct_or_union(ot))
4143 goto invalid_cast;
4144 else if (ot == VOID) {
4145 /* improper cast of void expression */
4146 error(148);
4147 return NULL;
4148 } else if (is_integer(nt) && is_scalar(ot)) {
4149 /* ok */
4150 } else if (is_floating(nt) && is_arithmetic(ot)) {
4151 /* ok */
4152 } else if (nt == PTR && is_integer(ot)) {
4153 /* ok */
4154 } else if (nt == PTR && ot == PTR) {
4155 if (!tp->t_subt->t_const && tn->tn_type->t_subt->t_const) {
4156 if (hflag)
4157 /* cast discards 'const' from type '%s' */
4158 warning(275, type_name(tn->tn_type));
4159 }
4160 } else
4161 goto invalid_cast;
4162
4163 if (any_query_enabled && types_compatible(tp, tn->tn_type,
4164 false, false, NULL)) {
4165 /* no-op cast from '%s' to '%s' */
4166 query_message(6, type_name(tn->tn_type), type_name(tp));
4167 }
4168
4169 tn = convert(CVT, 0, tp, tn);
4170 tn->tn_cast = true;
4171
4172 return tn;
4173
4174 invalid_cast:
4175 /* invalid cast from '%s' to '%s' */
4176 error(147, type_name(tn->tn_type), type_name(tp));
4177 return NULL;
4178 }
4179
4180 /*
4181 * Create the node for a function argument.
4182 * All necessary conversions and type checks are done in
4183 * build_function_call because build_function_argument has no
4184 * information about expected argument types.
4185 */
4186 tnode_t *
4187 build_function_argument(tnode_t *args, tnode_t *arg)
4188 {
4189 /*
4190 * If there was a serious error in the expression for the argument,
4191 * create a dummy argument so the positions of the remaining arguments
4192 * will not change.
4193 */
4194 if (arg == NULL)
4195 arg = build_integer_constant(INT, 0);
4196
4197 return new_tnode(PUSH, arg->tn_sys, arg->tn_type, arg, args);
4198 }
4199
4200 /*
4201 * Compare the type of an argument with the corresponding type of a
4202 * prototype parameter. If it is a valid combination, but both types
4203 * are not the same, insert a conversion to convert the argument into
4204 * the type of the parameter.
4205 */
4206 static tnode_t *
4207 check_prototype_argument(
4208 int n, /* pos of arg */
4209 type_t *tp, /* expected type (from prototype) */
4210 tnode_t *tn) /* argument */
4211 {
4212 tnode_t *ln = xcalloc(1, sizeof(*ln));
4213 ln->tn_type = expr_unqualified_type(tp);
4214 ln->tn_lvalue = true;
4215 if (typeok(FARG, n, ln, tn)) {
4216 bool dowarn;
4217 if (!types_compatible(tp, tn->tn_type,
4218 true, false, (dowarn = false, &dowarn)) || dowarn)
4219 tn = convert(FARG, n, tp, tn);
4220 }
4221 free(ln);
4222 return tn;
4223 }
4224
4225 /*
4226 * Check types of all function arguments and insert conversions,
4227 * if necessary.
4228 */
4229 static tnode_t *
4230 check_function_arguments(type_t *ftp, tnode_t *args)
4231 {
4232 /* get # of parameters in the prototype */
4233 int npar = 0;
4234 for (sym_t *asym = ftp->t_args; asym != NULL; asym = asym->s_next)
4235 npar++;
4236
4237 /* get # of arguments in the function call */
4238 int narg = 0;
4239 for (tnode_t *arg = args; arg != NULL; arg = arg->tn_right)
4240 narg++;
4241
4242 sym_t *asym = ftp->t_args;
4243 if (ftp->t_proto && npar != narg && !(ftp->t_vararg && npar < narg)) {
4244 /* argument mismatch: %d %s passed, %d expected */
4245 error(150, narg, narg > 1 ? "arguments" : "argument", npar);
4246 asym = NULL;
4247 }
4248
4249 for (int n = 1; n <= narg; n++) {
4250
4251 /*
4252 * The rightmost argument is at the top of the argument
4253 * subtree.
4254 */
4255 tnode_t *arg = args;
4256 for (int i = narg; i > n; i--, arg = arg->tn_right)
4257 continue;
4258
4259 /* some things which are always not allowed */
4260 tspec_t at = arg->tn_left->tn_type->t_tspec;
4261 if (at == VOID) {
4262 /* void expressions may not be arguments, arg #%d */
4263 error(151, n);
4264 return NULL;
4265 } else if (is_struct_or_union(at) &&
4266 is_incomplete(arg->tn_left->tn_type)) {
4267 /* argument cannot have unknown size, arg #%d */
4268 error(152, n);
4269 return NULL;
4270 } else if (is_integer(at) &&
4271 arg->tn_left->tn_type->t_is_enum &&
4272 is_incomplete(arg->tn_left->tn_type)) {
4273 /* argument cannot have unknown size, arg #%d */
4274 warning(152, n);
4275 }
4276
4277 /* class conversions (arg in value context) */
4278 arg->tn_left = cconv(arg->tn_left);
4279
4280 if (asym != NULL) {
4281 arg->tn_left = check_prototype_argument(
4282 n, asym->s_type, arg->tn_left);
4283 } else
4284 arg->tn_left = promote(NOOP, true, arg->tn_left);
4285 arg->tn_type = arg->tn_left->tn_type;
4286
4287 if (asym != NULL)
4288 asym = asym->s_next;
4289 }
4290
4291 return args;
4292 }
4293
4294 /*
4295 * Create the node for a function call. Also check types of
4296 * function arguments and insert conversions, if necessary.
4297 */
4298 tnode_t *
4299 build_function_call(tnode_t *func, bool sys, tnode_t *args)
4300 {
4301
4302 if (func == NULL)
4303 return NULL;
4304
4305 op_t fcop = func->tn_op == NAME && func->tn_type->t_tspec == FUNC
4306 ? CALL : ICALL;
4307
4308 check_ctype_function_call(func, args);
4309
4310 /* Turn the function name into a pointer to the function. */
4311 func = cconv(func);
4312
4313 if (func->tn_type->t_tspec != PTR ||
4314 func->tn_type->t_subt->t_tspec != FUNC) {
4315 /* cannot call '%s', must be a function */
4316 error(149, type_name(func->tn_type));
4317 return NULL;
4318 }
4319
4320 args = check_function_arguments(func->tn_type->t_subt, args);
4321
4322 return new_tnode(fcop, sys, func->tn_type->t_subt->t_subt, func, args);
4323 }
4324
4325 /*
4326 * Return the value of an integral constant expression.
4327 * If the expression is not constant or its type is not an integer
4328 * type, an error message is printed.
4329 */
4330 val_t *
4331 integer_constant(tnode_t *tn, bool required)
4332 {
4333
4334 if (tn != NULL)
4335 tn = cconv(tn);
4336 if (tn != NULL)
4337 tn = promote(NOOP, false, tn);
4338
4339 val_t *v = xcalloc(1, sizeof(*v));
4340
4341 if (tn == NULL) {
4342 lint_assert(nerr != 0);
4343 debug_step("constant node is null; returning 1 instead");
4344 v->v_tspec = INT;
4345 v->v_quad = 1;
4346 return v;
4347 }
4348
4349 v->v_tspec = tn->tn_type->t_tspec;
4350
4351 if (tn->tn_op == CON) {
4352 lint_assert(tn->tn_type->t_tspec == tn->tn_val.v_tspec);
4353 if (is_integer(tn->tn_val.v_tspec)) {
4354 v->v_unsigned_since_c90 =
4355 tn->tn_val.v_unsigned_since_c90;
4356 v->v_quad = tn->tn_val.v_quad;
4357 return v;
4358 }
4359 v->v_quad = (int64_t)tn->tn_val.v_ldbl;
4360 } else {
4361 v->v_quad = 1;
4362 }
4363
4364 if (required)
4365 /* integral constant expression expected */
4366 error(55);
4367 else
4368 /* variable array dimension is a C99/GCC extension */
4369 c99ism(318);
4370
4371 if (!is_integer(v->v_tspec))
4372 v->v_tspec = INT;
4373
4374 return v;
4375 }
4376
4377 static bool
4378 is_constcond_false(const tnode_t *tn, tspec_t t)
4379 {
4380 return (t == BOOL || t == INT) &&
4381 tn->tn_op == CON && tn->tn_val.v_quad == 0;
4382 }
4383
4384 /*
4385 * Perform some tests on expressions which can't be done in build_binary()
4386 * and functions called by build_binary(). These tests must be done here
4387 * because we need some information about the context in which the operations
4388 * are performed.
4389 * After all tests are performed and dofreeblk is true, expr() frees the
4390 * memory which is used for the expression.
4391 */
4392 void
4393 expr(tnode_t *tn, bool vctx, bool cond, bool dofreeblk, bool is_do_while)
4394 {
4395
4396 if (tn == NULL) { /* in case of errors */
4397 expr_free_all();
4398 return;
4399 }
4400
4401 /* expr() is also called in global initializations */
4402 if (dcs->d_kind != DLK_EXTERN && !is_do_while)
4403 check_statement_reachable();
4404
4405 check_expr_misc(tn, vctx, cond, !cond, false, false, false);
4406 if (tn->tn_op == ASSIGN && !tn->tn_parenthesized) {
4407 if (hflag && cond)
4408 /* assignment in conditional context */
4409 warning(159);
4410 } else if (tn->tn_op == CON) {
4411 if (hflag && cond && !constcond_flag &&
4412 !tn->tn_system_dependent &&
4413 !(is_do_while &&
4414 is_constcond_false(tn, tn->tn_type->t_tspec)))
4415 /* constant in conditional context */
4416 warning(161);
4417 }
4418 if (!modtab[tn->tn_op].m_has_side_effect) {
4419 /*
4420 * for left operands of COMMA this warning is already
4421 * printed
4422 */
4423 if (tn->tn_op != COMMA && !vctx && !cond)
4424 check_null_effect(tn);
4425 }
4426 debug_node(tn);
4427
4428 /* free the tree memory */
4429 if (dofreeblk)
4430 expr_free_all();
4431 }
4432
4433 /*
4434 * Checks the range of array indices, if possible.
4435 * amper is set if only the address of the element is used. This
4436 * means that the index is allowed to refer to the first element
4437 * after the array.
4438 */
4439 static void
4440 check_array_index(tnode_t *tn, bool amper)
4441 {
4442 const tnode_t *ln = tn->tn_left;
4443 const tnode_t *rn = tn->tn_right;
4444
4445 /* We can only check constant indices. */
4446 if (rn->tn_op != CON)
4447 return;
4448
4449 /* Return if the left node does not stem from an array. */
4450 if (ln->tn_op != ADDR)
4451 return;
4452 if (ln->tn_left->tn_op != STRING && ln->tn_left->tn_op != NAME)
4453 return;
4454 if (ln->tn_left->tn_type->t_tspec != ARRAY)
4455 return;
4456
4457 /*
4458 * For incomplete array types, we can print a warning only if
4459 * the index is negative.
4460 */
4461 if (is_incomplete(ln->tn_left->tn_type) && rn->tn_val.v_quad >= 0)
4462 return;
4463
4464 /* Get the size of one array element */
4465 int elsz = length_in_bits(ln->tn_type->t_subt, NULL);
4466 if (elsz == 0)
4467 return;
4468 elsz /= CHAR_SIZE;
4469
4470 /* Change the unit of the index from bytes to element size. */
4471 int64_t con = is_uinteger(rn->tn_type->t_tspec)
4472 ? (int64_t)((uint64_t)rn->tn_val.v_quad / elsz)
4473 : rn->tn_val.v_quad / elsz;
4474
4475 int dim = ln->tn_left->tn_type->t_dim + (amper ? 1 : 0);
4476
4477 if (!is_uinteger(rn->tn_type->t_tspec) && con < 0) {
4478 /* array subscript cannot be negative: %ld */
4479 warning(167, (long)con);
4480 } else if (dim > 0 && (uint64_t)con >= (uint64_t)dim) {
4481 /* array subscript cannot be > %d: %ld */
4482 warning(168, dim - 1, (long)con);
4483 }
4484 }
4485
4486 static void
4487 check_expr_addr(const tnode_t *ln, bool szof, bool fcall)
4488 {
4489 /* XXX: Taking warn_about_unreachable into account here feels wrong. */
4490 if (ln->tn_op == NAME && (reached || !warn_about_unreachable)) {
4491 if (!szof)
4492 mark_as_set(ln->tn_sym);
4493 mark_as_used(ln->tn_sym, fcall, szof);
4494 }
4495 if (ln->tn_op == INDIR && ln->tn_left->tn_op == PLUS)
4496 /* check the range of array indices */
4497 check_array_index(ln->tn_left, true);
4498 }
4499
4500 static void
4501 check_expr_load(const tnode_t *ln)
4502 {
4503 if (ln->tn_op == INDIR && ln->tn_left->tn_op == PLUS)
4504 /* check the range of array indices */
4505 check_array_index(ln->tn_left, false);
4506 }
4507
4508 /*
4509 * If there is an asm statement in one of the compound statements around,
4510 * there may be other side effects, so don't warn.
4511 */
4512 static bool
4513 is_asm_around(void)
4514 {
4515 for (decl_level *dl = dcs; dl != NULL; dl = dl->d_enclosing)
4516 if (dl->d_asm)
4517 return true;
4518 return false;
4519 }
4520
4521 static void
4522 check_expr_side_effect(const tnode_t *ln, bool szof)
4523 {
4524
4525 /* XXX: Taking warn_about_unreachable into account here feels wrong. */
4526 if (ln->tn_op == NAME && (reached || !warn_about_unreachable)) {
4527 scl_t sc = ln->tn_sym->s_scl;
4528 if (sc != EXTERN && sc != STATIC &&
4529 !ln->tn_sym->s_set && !szof && !is_asm_around()) {
4530 /* '%s' may be used before set */
4531 warning(158, ln->tn_sym->s_name);
4532 mark_as_set(ln->tn_sym);
4533 }
4534 mark_as_used(ln->tn_sym, false, false);
4535 }
4536 }
4537
4538 static void
4539 check_expr_assign(const tnode_t *ln, bool szof)
4540 {
4541 /* XXX: Taking warn_about_unreachable into account here feels wrong. */
4542 if (ln->tn_op == NAME && !szof && (reached || !warn_about_unreachable)) {
4543 mark_as_set(ln->tn_sym);
4544 if (ln->tn_sym->s_scl == EXTERN)
4545 outusg(ln->tn_sym);
4546 }
4547 if (ln->tn_op == INDIR && ln->tn_left->tn_op == PLUS)
4548 /* check the range of array indices */
4549 check_array_index(ln->tn_left, false);
4550 }
4551
4552 static void
4553 check_expr_call(const tnode_t *tn, const tnode_t *ln,
4554 bool szof, bool vctx, bool cond, bool retval_discarded)
4555 {
4556 lint_assert(ln->tn_op == ADDR);
4557 lint_assert(ln->tn_left->tn_op == NAME);
4558 if (!szof && !is_compiler_builtin(ln->tn_left->tn_sym->s_name))
4559 outcall(tn, vctx || cond, retval_discarded);
4560 }
4561
4562 static bool
4563 check_expr_op(const tnode_t *tn, op_t op, const tnode_t *ln,
4564 bool szof, bool fcall, bool vctx, bool cond,
4565 bool retval_discarded, bool eqwarn)
4566 {
4567 switch (op) {
4568 case ADDR:
4569 check_expr_addr(ln, szof, fcall);
4570 break;
4571 case LOAD:
4572 check_expr_load(ln);
4573 /* FALLTHROUGH */
4574 case PUSH:
4575 case INCBEF:
4576 case DECBEF:
4577 case INCAFT:
4578 case DECAFT:
4579 case ADDASS:
4580 case SUBASS:
4581 case MULASS:
4582 case DIVASS:
4583 case MODASS:
4584 case ANDASS:
4585 case ORASS:
4586 case XORASS:
4587 case SHLASS:
4588 case SHRASS:
4589 case REAL:
4590 case IMAG:
4591 check_expr_side_effect(ln, szof);
4592 break;
4593 case ASSIGN:
4594 check_expr_assign(ln, szof);
4595 break;
4596 case CALL:
4597 check_expr_call(tn, ln, szof, vctx, cond, retval_discarded);
4598 break;
4599 case EQ:
4600 if (hflag && eqwarn)
4601 /* operator '==' found where '=' was expected */
4602 warning(160);
4603 break;
4604 case CON:
4605 case NAME:
4606 case STRING:
4607 return false;
4608 default:
4609 break;
4610 }
4611 return true;
4612 }
4613
4614 /*
4615 * vctx ???
4616 * cond whether the expression is a condition that
4617 * will be compared with 0
4618 * eqwarn whether the operator '==' might be a
4619 * misspelled '='
4620 * fcall whether the expression is a function call
4621 * retval_discarded whether the return value of a function call
4622 * is discarded; such calls will be analyzed by
4623 * lint2 in messages 4, 8 and 9
4624 * szof whether the expression is part of a sizeof
4625 * expression, which means that its value is
4626 * discarded since only the type is relevant
4627 */
4628 void
4629 check_expr_misc(const tnode_t *tn, bool vctx, bool cond,
4630 bool eqwarn, bool fcall, bool retval_discarded, bool szof)
4631 {
4632
4633 if (tn == NULL)
4634 return;
4635
4636 tnode_t *ln = tn->tn_left;
4637 tnode_t *rn = tn->tn_right;
4638 op_t op = tn->tn_op;
4639 const mod_t *mp = &modtab[op];
4640
4641 if (!check_expr_op(tn, op, ln,
4642 szof, fcall, vctx, cond, retval_discarded, eqwarn))
4643 return;
4644
4645 bool cvctx = mp->m_value_context;
4646 bool ccond = mp->m_compares_with_zero;
4647 bool eq = mp->m_warn_if_operand_eq &&
4648 !ln->tn_parenthesized &&
4649 rn != NULL && !rn->tn_parenthesized;
4650
4651 /*
4652 * values of operands of ':' are not used if the type of at least
4653 * one of the operands (for gcc compatibility) is void
4654 * XXX test/value context of QUEST should probably be used as
4655 * context for both operands of COLON
4656 */
4657 if (op == COLON && tn->tn_type->t_tspec == VOID)
4658 cvctx = ccond = false;
4659 bool discard = op == CVT && tn->tn_type->t_tspec == VOID;
4660 check_expr_misc(ln, cvctx, ccond, eq, op == CALL, discard, szof);
4661
4662 switch (op) {
4663 case PUSH:
4664 if (rn != NULL)
4665 check_expr_misc(rn, false, false, eq, false, false,
4666 szof);
4667 break;
4668 case LOGAND:
4669 case LOGOR:
4670 check_expr_misc(rn, false, true, eq, false, false, szof);
4671 break;
4672 case COLON:
4673 check_expr_misc(rn, cvctx, ccond, eq, false, false, szof);
4674 break;
4675 case COMMA:
4676 check_expr_misc(rn, vctx, cond, false, false, false, szof);
4677 break;
4678 default:
4679 if (mp->m_binary)
4680 check_expr_misc(rn, true, false, eq, false, false,
4681 szof);
4682 break;
4683 }
4684 }
4685
4686 /*
4687 * Return whether the expression can be used for static initialization.
4688 *
4689 * Constant initialization expressions must be constant or an address
4690 * of a static object with an optional offset. In the first case,
4691 * the result is returned in *offsp. In the second case, the static
4692 * object is returned in *symp and the offset in *offsp.
4693 *
4694 * The expression can consist of PLUS, MINUS, ADDR, NAME, STRING and
4695 * CON. Type conversions are allowed if they do not change binary
4696 * representation (including width).
4697 *
4698 * C99 6.6 "Constant expressions"
4699 * C99 6.7.8p4 restricts initializers for static storage duration
4700 */
4701 bool
4702 constant_addr(const tnode_t *tn, const sym_t **symp, ptrdiff_t *offsp)
4703 {
4704 const sym_t *sym;
4705 ptrdiff_t offs1, offs2;
4706 tspec_t t, ot;
4707
4708 switch (tn->tn_op) {
4709 case MINUS:
4710 if (tn->tn_right->tn_op == CVT)
4711 return constant_addr(tn->tn_right, symp, offsp);
4712 else if (tn->tn_right->tn_op != CON)
4713 return false;
4714 /* FALLTHROUGH */
4715 case PLUS:
4716 offs1 = offs2 = 0;
4717 if (tn->tn_left->tn_op == CON) {
4718 offs1 = (ptrdiff_t)tn->tn_left->tn_val.v_quad;
4719 if (!constant_addr(tn->tn_right, &sym, &offs2))
4720 return false;
4721 } else if (tn->tn_right->tn_op == CON) {
4722 offs2 = (ptrdiff_t)tn->tn_right->tn_val.v_quad;
4723 if (tn->tn_op == MINUS)
4724 offs2 = -offs2;
4725 if (!constant_addr(tn->tn_left, &sym, &offs1))
4726 return false;
4727 } else {
4728 return false;
4729 }
4730 *symp = sym;
4731 *offsp = offs1 + offs2;
4732 return true;
4733 case ADDR:
4734 if (tn->tn_left->tn_op == NAME) {
4735 *symp = tn->tn_left->tn_sym;
4736 *offsp = 0;
4737 return true;
4738 } else {
4739 /*
4740 * If this were the front end of a compiler, we
4741 * would return a label instead of 0, at least if
4742 * 'tn->tn_left->tn_op == STRING'.
4743 */
4744 *symp = NULL;
4745 *offsp = 0;
4746 return true;
4747 }
4748 case CVT:
4749 t = tn->tn_type->t_tspec;
4750 ot = tn->tn_left->tn_type->t_tspec;
4751 if ((!is_integer(t) && t != PTR) ||
4752 (!is_integer(ot) && ot != PTR)) {
4753 return false;
4754 }
4755 #if 0
4756 /*
4757 * consider:
4758 * struct foo {
4759 * unsigned char a;
4760 * } f = {
4761 * (unsigned char)(unsigned long)
4762 * (&(((struct foo *)0)->a))
4763 * };
4764 * since psize(unsigned long) != psize(unsigned char),
4765 * this fails.
4766 */
4767 else if (psize(t) != psize(ot))
4768 return -1;
4769 #endif
4770 return constant_addr(tn->tn_left, symp, offsp);
4771 default:
4772 return false;
4773 }
4774 }
4775
4776 /* Append s2 to s1, then free s2. */
4777 strg_t *
4778 cat_strings(strg_t *s1, strg_t *s2)
4779 {
4780
4781 if (s1->st_char != s2->st_char) {
4782 /* cannot concatenate wide and regular string literals */
4783 error(292);
4784 return s1;
4785 }
4786
4787 size_t len1 = s1->st_len;
4788 size_t len2 = s2->st_len;
4789 size_t chsize = s1->st_char ? sizeof(char) : sizeof(wchar_t);
4790 size_t size1 = len1 * chsize;
4791 size_t size2 = (len2 + 1) * chsize;
4792 s1->st_mem = xrealloc(s1->st_mem, size1 + size2);
4793 memcpy((char *)s1->st_mem + size1, s2->st_mem, size2);
4794 free(s2->st_mem);
4795
4796 s1->st_len = len1 + len2;
4797 free(s2);
4798
4799 return s1;
4800 }
4801
4802
4803 typedef struct stmt_expr {
4804 memory_pool se_mem;
4805 sym_t *se_sym;
4806 struct stmt_expr *se_enclosing;
4807 } stmt_expr;
4808
4809 static stmt_expr *stmt_exprs;
4810
4811 void
4812 begin_statement_expr(void)
4813 {
4814 stmt_expr *se = xmalloc(sizeof(*se));
4815 se->se_mem = expr_save_memory();
4816 se->se_sym = NULL;
4817 se->se_enclosing = stmt_exprs;
4818 stmt_exprs = se;
4819 }
4820
4821 void
4822 do_statement_expr(tnode_t *tn)
4823 {
4824 block_level--;
4825 mem_block_level--;
4826 stmt_exprs->se_sym = tn != NULL
4827 ? mktempsym(block_dup_type(tn->tn_type))
4828 : NULL; /* after a syntax error */
4829 mem_block_level++;
4830 block_level++;
4831 /* ({ }) is a GCC extension */
4832 gnuism(320);
4833 }
4834
4835 tnode_t *
4836 end_statement_expr(void)
4837 {
4838 stmt_expr *se = stmt_exprs;
4839 if (se->se_sym == NULL)
4840 return NULL; /* after a syntax error */
4841 tnode_t *tn = build_name(se->se_sym, false);
4842 (void)expr_save_memory(); /* leak */
4843 expr_restore_memory(se->se_mem);
4844 stmt_exprs = se->se_enclosing;
4845 free(se);
4846 return tn;
4847 }
4848