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400fbf9f 1/* Build expressions with type checking for C compiler.
0953878d 2 Copyright (C) 1987, 1988, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
8bcd6380 3 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007
068e6bb3 4 Free Software Foundation, Inc.
400fbf9f 5
1322177d 6This file is part of GCC.
400fbf9f 7
1322177d
LB
8GCC is free software; you can redistribute it and/or modify it under
9the terms of the GNU General Public License as published by the Free
10Software Foundation; either version 2, or (at your option) any later
11version.
400fbf9f 12
1322177d
LB
13GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14WARRANTY; without even the implied warranty of MERCHANTABILITY or
15FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16for more details.
400fbf9f
JW
17
18You should have received a copy of the GNU General Public License
1322177d 19along with GCC; see the file COPYING. If not, write to the Free
366ccddb
KC
20Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA
2102110-1301, USA. */
400fbf9f
JW
22
23
24/* This file is part of the C front end.
25 It contains routines to build C expressions given their operands,
26 including computing the types of the result, C-specific error checks,
5088b058 27 and some optimization. */
400fbf9f
JW
28
29#include "config.h"
670ee920 30#include "system.h"
4977bab6
ZW
31#include "coretypes.h"
32#include "tm.h"
742b62e7 33#include "rtl.h"
400fbf9f 34#include "tree.h"
e57e265b 35#include "langhooks.h"
400fbf9f 36#include "c-tree.h"
6baf1cc8 37#include "tm_p.h"
400fbf9f 38#include "flags.h"
e14417fa 39#include "output.h"
234042f4 40#include "expr.h"
5f6da302 41#include "toplev.h"
ab87f8c8 42#include "intl.h"
4dd7201e 43#include "ggc.h"
672a6f42 44#include "target.h"
325c3691 45#include "tree-iterator.h"
3a5b9284 46#include "tree-gimple.h"
089efaa4 47#include "tree-flow.h"
325c3691 48
2ac2f164
JM
49/* Possible cases of implicit bad conversions. Used to select
50 diagnostic messages in convert_for_assignment. */
51enum impl_conv {
52 ic_argpass,
6dcc04b0 53 ic_argpass_nonproto,
2ac2f164
JM
54 ic_assign,
55 ic_init,
56 ic_return
57};
58
bc4b653b
JM
59/* The level of nesting inside "__alignof__". */
60int in_alignof;
61
62/* The level of nesting inside "sizeof". */
63int in_sizeof;
64
65/* The level of nesting inside "typeof". */
66int in_typeof;
400fbf9f 67
187230a7
JM
68struct c_label_context_se *label_context_stack_se;
69struct c_label_context_vm *label_context_stack_vm;
16ef3acc 70
b71c7f8a 71/* Nonzero if we've already printed a "missing braces around initializer"
103b7b17 72 message within this initializer. */
b71c7f8a 73static int missing_braces_mentioned;
103b7b17 74
bf730f15
RS
75static int require_constant_value;
76static int require_constant_elements;
77
6aa3c60d 78static bool null_pointer_constant_p (tree);
f55ade6e 79static tree qualify_type (tree, tree);
132da1a5 80static int tagged_types_tu_compatible_p (tree, tree);
58393038 81static int comp_target_types (tree, tree);
132da1a5
JM
82static int function_types_compatible_p (tree, tree);
83static int type_lists_compatible_p (tree, tree);
f55ade6e 84static tree decl_constant_value_for_broken_optimization (tree);
f55ade6e 85static tree lookup_field (tree, tree);
94a0dd7b 86static int convert_arguments (int, tree *, tree, tree, tree, tree);
f55ade6e 87static tree pointer_diff (tree, tree);
2ac2f164 88static tree convert_for_assignment (tree, tree, enum impl_conv, tree, tree,
f55ade6e 89 int);
f55ade6e
AJ
90static tree valid_compound_expr_initializer (tree, tree);
91static void push_string (const char *);
92static void push_member_name (tree);
f55ade6e
AJ
93static int spelling_length (void);
94static char *print_spelling (char *);
95static void warning_init (const char *);
916c5919
JM
96static tree digest_init (tree, tree, bool, int);
97static void output_init_element (tree, bool, tree, tree, int);
f55ade6e
AJ
98static void output_pending_init_elements (int);
99static int set_designator (int);
100static void push_range_stack (tree);
101static void add_pending_init (tree, tree);
102static void set_nonincremental_init (void);
103static void set_nonincremental_init_from_string (tree);
104static tree find_init_member (tree);
9bf24266 105static void readonly_error (tree, enum lvalue_use);
37dc0d8d
JM
106static int lvalue_or_else (tree, enum lvalue_use);
107static int lvalue_p (tree);
4e2fb7de 108static void record_maybe_used_decl (tree);
f13c9b2c 109static int comptypes_internal (tree, tree);
6aa3c60d
JM
110\f
111/* Return true if EXP is a null pointer constant, false otherwise. */
112
113static bool
114null_pointer_constant_p (tree expr)
115{
116 /* This should really operate on c_expr structures, but they aren't
117 yet available everywhere required. */
118 tree type = TREE_TYPE (expr);
119 return (TREE_CODE (expr) == INTEGER_CST
8bcd6380 120 && !TREE_OVERFLOW (expr)
6aa3c60d
JM
121 && integer_zerop (expr)
122 && (INTEGRAL_TYPE_P (type)
123 || (TREE_CODE (type) == POINTER_TYPE
124 && VOID_TYPE_P (TREE_TYPE (type))
125 && TYPE_QUALS (TREE_TYPE (type)) == TYPE_UNQUALIFIED)));
126}
f13c9b2c
AP
127\f/* This is a cache to hold if two types are compatible or not. */
128
129struct tagged_tu_seen_cache {
130 const struct tagged_tu_seen_cache * next;
131 tree t1;
132 tree t2;
133 /* The return value of tagged_types_tu_compatible_p if we had seen
134 these two types already. */
135 int val;
136};
137
138static const struct tagged_tu_seen_cache * tagged_tu_seen_base;
139static void free_all_tagged_tu_seen_up_to (const struct tagged_tu_seen_cache *);
140
400fbf9f
JW
141/* Do `exp = require_complete_type (exp);' to make sure exp
142 does not have an incomplete type. (That includes void types.) */
143
144tree
2f6e4e97 145require_complete_type (tree value)
400fbf9f
JW
146{
147 tree type = TREE_TYPE (value);
148
c3d5c3fa 149 if (value == error_mark_node || type == error_mark_node)
ea0f786b
CB
150 return error_mark_node;
151
400fbf9f 152 /* First, detect a valid value with a complete type. */
d0f062fb 153 if (COMPLETE_TYPE_P (type))
400fbf9f
JW
154 return value;
155
7a228918 156 c_incomplete_type_error (value, type);
400fbf9f
JW
157 return error_mark_node;
158}
159
160/* Print an error message for invalid use of an incomplete type.
161 VALUE is the expression that was used (or 0 if that isn't known)
162 and TYPE is the type that was invalid. */
163
164void
2f6e4e97 165c_incomplete_type_error (tree value, tree type)
400fbf9f 166{
5d5993dd 167 const char *type_code_string;
400fbf9f
JW
168
169 /* Avoid duplicate error message. */
170 if (TREE_CODE (type) == ERROR_MARK)
171 return;
172
173 if (value != 0 && (TREE_CODE (value) == VAR_DECL
174 || TREE_CODE (value) == PARM_DECL))
c51a1ba9 175 error ("%qD has an incomplete type", value);
400fbf9f
JW
176 else
177 {
178 retry:
179 /* We must print an error message. Be clever about what it says. */
180
181 switch (TREE_CODE (type))
182 {
183 case RECORD_TYPE:
ab87f8c8 184 type_code_string = "struct";
400fbf9f
JW
185 break;
186
187 case UNION_TYPE:
ab87f8c8 188 type_code_string = "union";
400fbf9f
JW
189 break;
190
191 case ENUMERAL_TYPE:
ab87f8c8 192 type_code_string = "enum";
400fbf9f
JW
193 break;
194
195 case VOID_TYPE:
196 error ("invalid use of void expression");
197 return;
198
199 case ARRAY_TYPE:
200 if (TYPE_DOMAIN (type))
201 {
fba78abb
RH
202 if (TYPE_MAX_VALUE (TYPE_DOMAIN (type)) == NULL)
203 {
204 error ("invalid use of flexible array member");
205 return;
206 }
400fbf9f
JW
207 type = TREE_TYPE (type);
208 goto retry;
209 }
210 error ("invalid use of array with unspecified bounds");
211 return;
212
213 default:
366de0ce 214 gcc_unreachable ();
400fbf9f
JW
215 }
216
217 if (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE)
c51a1ba9
JM
218 error ("invalid use of undefined type %<%s %E%>",
219 type_code_string, TYPE_NAME (type));
400fbf9f
JW
220 else
221 /* If this type has a typedef-name, the TYPE_NAME is a TYPE_DECL. */
c51a1ba9 222 error ("invalid use of incomplete typedef %qD", TYPE_NAME (type));
400fbf9f
JW
223 }
224}
225
ab393bf1
NB
226/* Given a type, apply default promotions wrt unnamed function
227 arguments and return the new type. */
228
229tree
2f6e4e97 230c_type_promotes_to (tree type)
ab393bf1
NB
231{
232 if (TYPE_MAIN_VARIANT (type) == float_type_node)
233 return double_type_node;
234
235 if (c_promoting_integer_type_p (type))
236 {
237 /* Preserve unsignedness if not really getting any wider. */
8df83eae 238 if (TYPE_UNSIGNED (type)
c22cacf3
MS
239 && (TYPE_PRECISION (type) == TYPE_PRECISION (integer_type_node)))
240 return unsigned_type_node;
ab393bf1
NB
241 return integer_type_node;
242 }
243
244 return type;
245}
246
400fbf9f
JW
247/* Return a variant of TYPE which has all the type qualifiers of LIKE
248 as well as those of TYPE. */
249
250static tree
2f6e4e97 251qualify_type (tree type, tree like)
400fbf9f 252{
2f6e4e97 253 return c_build_qualified_type (type,
afbadaa7 254 TYPE_QUALS (type) | TYPE_QUALS (like));
400fbf9f 255}
52ffd86e
MS
256
257/* Return true iff the given tree T is a variable length array. */
258
259bool
260c_vla_type_p (tree t)
261{
262 if (TREE_CODE (t) == ARRAY_TYPE
263 && C_TYPE_VARIABLE_SIZE (t))
264 return true;
265 return false;
266}
400fbf9f 267\f
10bc1b1b 268/* Return the composite type of two compatible types.
5305f6d7 269
10bc1b1b
JM
270 We assume that comptypes has already been done and returned
271 nonzero; if that isn't so, this may crash. In particular, we
272 assume that qualifiers match. */
400fbf9f
JW
273
274tree
10bc1b1b 275composite_type (tree t1, tree t2)
400fbf9f 276{
b3694847
SS
277 enum tree_code code1;
278 enum tree_code code2;
4b027d16 279 tree attributes;
400fbf9f
JW
280
281 /* Save time if the two types are the same. */
282
283 if (t1 == t2) return t1;
284
285 /* If one type is nonsense, use the other. */
286 if (t1 == error_mark_node)
287 return t2;
288 if (t2 == error_mark_node)
289 return t1;
290
10bc1b1b
JM
291 code1 = TREE_CODE (t1);
292 code2 = TREE_CODE (t2);
293
d9525bec 294 /* Merge the attributes. */
5fd9b178 295 attributes = targetm.merge_type_attributes (t1, t2);
4b027d16 296
10bc1b1b
JM
297 /* If one is an enumerated type and the other is the compatible
298 integer type, the composite type might be either of the two
299 (DR#013 question 3). For consistency, use the enumerated type as
300 the composite type. */
400fbf9f 301
10bc1b1b
JM
302 if (code1 == ENUMERAL_TYPE && code2 == INTEGER_TYPE)
303 return t1;
304 if (code2 == ENUMERAL_TYPE && code1 == INTEGER_TYPE)
305 return t2;
75326e8c 306
366de0ce 307 gcc_assert (code1 == code2);
b6a10c9f 308
400fbf9f
JW
309 switch (code1)
310 {
400fbf9f 311 case POINTER_TYPE:
10bc1b1b 312 /* For two pointers, do this recursively on the target type. */
400fbf9f 313 {
3932261a
MM
314 tree pointed_to_1 = TREE_TYPE (t1);
315 tree pointed_to_2 = TREE_TYPE (t2);
10bc1b1b
JM
316 tree target = composite_type (pointed_to_1, pointed_to_2);
317 t1 = build_pointer_type (target);
fe7080d2
AP
318 t1 = build_type_attribute_variant (t1, attributes);
319 return qualify_type (t1, t2);
400fbf9f 320 }
400fbf9f
JW
321
322 case ARRAY_TYPE:
323 {
10bc1b1b 324 tree elt = composite_type (TREE_TYPE (t1), TREE_TYPE (t2));
46df2823
JM
325 int quals;
326 tree unqual_elt;
ca8bdb78
JM
327 tree d1 = TYPE_DOMAIN (t1);
328 tree d2 = TYPE_DOMAIN (t2);
329 bool d1_variable, d2_variable;
330 bool d1_zero, d2_zero;
46df2823 331
de46b2fe 332 /* We should not have any type quals on arrays at all. */
366de0ce 333 gcc_assert (!TYPE_QUALS (t1) && !TYPE_QUALS (t2));
c22cacf3 334
ca8bdb78
JM
335 d1_zero = d1 == 0 || !TYPE_MAX_VALUE (d1);
336 d2_zero = d2 == 0 || !TYPE_MAX_VALUE (d2);
337
338 d1_variable = (!d1_zero
339 && (TREE_CODE (TYPE_MIN_VALUE (d1)) != INTEGER_CST
340 || TREE_CODE (TYPE_MAX_VALUE (d1)) != INTEGER_CST));
341 d2_variable = (!d2_zero
342 && (TREE_CODE (TYPE_MIN_VALUE (d2)) != INTEGER_CST
343 || TREE_CODE (TYPE_MAX_VALUE (d2)) != INTEGER_CST));
52ffd86e
MS
344 d1_variable = d1_variable || (d1_zero && c_vla_type_p (t1));
345 d2_variable = d2_variable || (d2_zero && c_vla_type_p (t2));
ca8bdb78 346
400fbf9f 347 /* Save space: see if the result is identical to one of the args. */
ca8bdb78
JM
348 if (elt == TREE_TYPE (t1) && TYPE_DOMAIN (t1)
349 && (d2_variable || d2_zero || !d1_variable))
4b027d16 350 return build_type_attribute_variant (t1, attributes);
ca8bdb78
JM
351 if (elt == TREE_TYPE (t2) && TYPE_DOMAIN (t2)
352 && (d1_variable || d1_zero || !d2_variable))
4b027d16 353 return build_type_attribute_variant (t2, attributes);
c22cacf3 354
de46b2fe
AP
355 if (elt == TREE_TYPE (t1) && !TYPE_DOMAIN (t2) && !TYPE_DOMAIN (t1))
356 return build_type_attribute_variant (t1, attributes);
357 if (elt == TREE_TYPE (t2) && !TYPE_DOMAIN (t2) && !TYPE_DOMAIN (t1))
358 return build_type_attribute_variant (t2, attributes);
c22cacf3 359
46df2823
JM
360 /* Merge the element types, and have a size if either arg has
361 one. We may have qualifiers on the element types. To set
362 up TYPE_MAIN_VARIANT correctly, we need to form the
363 composite of the unqualified types and add the qualifiers
364 back at the end. */
365 quals = TYPE_QUALS (strip_array_types (elt));
366 unqual_elt = c_build_qualified_type (elt, TYPE_UNQUALIFIED);
367 t1 = build_array_type (unqual_elt,
ca8bdb78
JM
368 TYPE_DOMAIN ((TYPE_DOMAIN (t1)
369 && (d2_variable
370 || d2_zero
371 || !d1_variable))
372 ? t1
373 : t2));
46df2823 374 t1 = c_build_qualified_type (t1, quals);
de46b2fe 375 return build_type_attribute_variant (t1, attributes);
400fbf9f
JW
376 }
377
fcb99e7b
JJ
378 case ENUMERAL_TYPE:
379 case RECORD_TYPE:
380 case UNION_TYPE:
381 if (attributes != NULL)
382 {
383 /* Try harder not to create a new aggregate type. */
384 if (attribute_list_equal (TYPE_ATTRIBUTES (t1), attributes))
385 return t1;
386 if (attribute_list_equal (TYPE_ATTRIBUTES (t2), attributes))
387 return t2;
388 }
389 return build_type_attribute_variant (t1, attributes);
390
400fbf9f
JW
391 case FUNCTION_TYPE:
392 /* Function types: prefer the one that specified arg types.
393 If both do, merge the arg types. Also merge the return types. */
394 {
10bc1b1b 395 tree valtype = composite_type (TREE_TYPE (t1), TREE_TYPE (t2));
400fbf9f
JW
396 tree p1 = TYPE_ARG_TYPES (t1);
397 tree p2 = TYPE_ARG_TYPES (t2);
398 int len;
399 tree newargs, n;
400 int i;
401
402 /* Save space: see if the result is identical to one of the args. */
3f75a254 403 if (valtype == TREE_TYPE (t1) && !TYPE_ARG_TYPES (t2))
4b027d16 404 return build_type_attribute_variant (t1, attributes);
3f75a254 405 if (valtype == TREE_TYPE (t2) && !TYPE_ARG_TYPES (t1))
4b027d16 406 return build_type_attribute_variant (t2, attributes);
400fbf9f
JW
407
408 /* Simple way if one arg fails to specify argument types. */
409 if (TYPE_ARG_TYPES (t1) == 0)
4b027d16 410 {
fe7080d2
AP
411 t1 = build_function_type (valtype, TYPE_ARG_TYPES (t2));
412 t1 = build_type_attribute_variant (t1, attributes);
413 return qualify_type (t1, t2);
4b027d16 414 }
400fbf9f 415 if (TYPE_ARG_TYPES (t2) == 0)
4b027d16
RK
416 {
417 t1 = build_function_type (valtype, TYPE_ARG_TYPES (t1));
fe7080d2
AP
418 t1 = build_type_attribute_variant (t1, attributes);
419 return qualify_type (t1, t2);
4b027d16 420 }
400fbf9f
JW
421
422 /* If both args specify argument types, we must merge the two
423 lists, argument by argument. */
f75fbaf7 424 /* Tell global_bindings_p to return false so that variable_size
535a42b1 425 doesn't die on VLAs in parameter types. */
f75fbaf7 426 c_override_global_bindings_to_false = true;
2f4e8f2b 427
400fbf9f
JW
428 len = list_length (p1);
429 newargs = 0;
430
431 for (i = 0; i < len; i++)
8d9bfdc5 432 newargs = tree_cons (NULL_TREE, NULL_TREE, newargs);
400fbf9f
JW
433
434 n = newargs;
435
436 for (; p1;
437 p1 = TREE_CHAIN (p1), p2 = TREE_CHAIN (p2), n = TREE_CHAIN (n))
438 {
439 /* A null type means arg type is not specified.
440 Take whatever the other function type has. */
441 if (TREE_VALUE (p1) == 0)
442 {
443 TREE_VALUE (n) = TREE_VALUE (p2);
444 goto parm_done;
445 }
446 if (TREE_VALUE (p2) == 0)
447 {
448 TREE_VALUE (n) = TREE_VALUE (p1);
449 goto parm_done;
450 }
2f6e4e97 451
400fbf9f
JW
452 /* Given wait (union {union wait *u; int *i} *)
453 and wait (union wait *),
454 prefer union wait * as type of parm. */
455 if (TREE_CODE (TREE_VALUE (p1)) == UNION_TYPE
456 && TREE_VALUE (p1) != TREE_VALUE (p2))
457 {
458 tree memb;
58cb41e6
JJ
459 tree mv2 = TREE_VALUE (p2);
460 if (mv2 && mv2 != error_mark_node
461 && TREE_CODE (mv2) != ARRAY_TYPE)
462 mv2 = TYPE_MAIN_VARIANT (mv2);
400fbf9f
JW
463 for (memb = TYPE_FIELDS (TREE_VALUE (p1));
464 memb; memb = TREE_CHAIN (memb))
58cb41e6
JJ
465 {
466 tree mv3 = TREE_TYPE (memb);
467 if (mv3 && mv3 != error_mark_node
468 && TREE_CODE (mv3) != ARRAY_TYPE)
469 mv3 = TYPE_MAIN_VARIANT (mv3);
470 if (comptypes (mv3, mv2))
471 {
472 TREE_VALUE (n) = composite_type (TREE_TYPE (memb),
473 TREE_VALUE (p2));
474 if (pedantic)
475 pedwarn ("function types not truly compatible in ISO C");
476 goto parm_done;
477 }
478 }
400fbf9f
JW
479 }
480 if (TREE_CODE (TREE_VALUE (p2)) == UNION_TYPE
481 && TREE_VALUE (p2) != TREE_VALUE (p1))
482 {
483 tree memb;
58cb41e6
JJ
484 tree mv1 = TREE_VALUE (p1);
485 if (mv1 && mv1 != error_mark_node
486 && TREE_CODE (mv1) != ARRAY_TYPE)
487 mv1 = TYPE_MAIN_VARIANT (mv1);
400fbf9f
JW
488 for (memb = TYPE_FIELDS (TREE_VALUE (p2));
489 memb; memb = TREE_CHAIN (memb))
58cb41e6
JJ
490 {
491 tree mv3 = TREE_TYPE (memb);
492 if (mv3 && mv3 != error_mark_node
493 && TREE_CODE (mv3) != ARRAY_TYPE)
494 mv3 = TYPE_MAIN_VARIANT (mv3);
495 if (comptypes (mv3, mv1))
496 {
497 TREE_VALUE (n) = composite_type (TREE_TYPE (memb),
498 TREE_VALUE (p1));
499 if (pedantic)
500 pedwarn ("function types not truly compatible in ISO C");
501 goto parm_done;
502 }
503 }
400fbf9f 504 }
10bc1b1b 505 TREE_VALUE (n) = composite_type (TREE_VALUE (p1), TREE_VALUE (p2));
400fbf9f
JW
506 parm_done: ;
507 }
508
f75fbaf7 509 c_override_global_bindings_to_false = false;
4b027d16 510 t1 = build_function_type (valtype, newargs);
fe7080d2 511 t1 = qualify_type (t1, t2);
0f41302f 512 /* ... falls through ... */
400fbf9f
JW
513 }
514
515 default:
4b027d16 516 return build_type_attribute_variant (t1, attributes);
400fbf9f
JW
517 }
518
519}
10bc1b1b
JM
520
521/* Return the type of a conditional expression between pointers to
522 possibly differently qualified versions of compatible types.
523
524 We assume that comp_target_types has already been done and returned
525 nonzero; if that isn't so, this may crash. */
526
527static tree
528common_pointer_type (tree t1, tree t2)
529{
530 tree attributes;
46df2823
JM
531 tree pointed_to_1, mv1;
532 tree pointed_to_2, mv2;
10bc1b1b
JM
533 tree target;
534
535 /* Save time if the two types are the same. */
536
537 if (t1 == t2) return t1;
538
539 /* If one type is nonsense, use the other. */
540 if (t1 == error_mark_node)
541 return t2;
542 if (t2 == error_mark_node)
543 return t1;
544
366de0ce 545 gcc_assert (TREE_CODE (t1) == POINTER_TYPE
c22cacf3 546 && TREE_CODE (t2) == POINTER_TYPE);
10bc1b1b
JM
547
548 /* Merge the attributes. */
549 attributes = targetm.merge_type_attributes (t1, t2);
550
551 /* Find the composite type of the target types, and combine the
46df2823
JM
552 qualifiers of the two types' targets. Do not lose qualifiers on
553 array element types by taking the TYPE_MAIN_VARIANT. */
554 mv1 = pointed_to_1 = TREE_TYPE (t1);
555 mv2 = pointed_to_2 = TREE_TYPE (t2);
556 if (TREE_CODE (mv1) != ARRAY_TYPE)
557 mv1 = TYPE_MAIN_VARIANT (pointed_to_1);
558 if (TREE_CODE (mv2) != ARRAY_TYPE)
559 mv2 = TYPE_MAIN_VARIANT (pointed_to_2);
560 target = composite_type (mv1, mv2);
10bc1b1b
JM
561 t1 = build_pointer_type (c_build_qualified_type
562 (target,
563 TYPE_QUALS (pointed_to_1) |
564 TYPE_QUALS (pointed_to_2)));
565 return build_type_attribute_variant (t1, attributes);
566}
567
568/* Return the common type for two arithmetic types under the usual
569 arithmetic conversions. The default conversions have already been
570 applied, and enumerated types converted to their compatible integer
571 types. The resulting type is unqualified and has no attributes.
572
573 This is the type for the result of most arithmetic operations
574 if the operands have the given two types. */
575
ccf7f880
JJ
576static tree
577c_common_type (tree t1, tree t2)
10bc1b1b
JM
578{
579 enum tree_code code1;
580 enum tree_code code2;
581
582 /* If one type is nonsense, use the other. */
583 if (t1 == error_mark_node)
584 return t2;
585 if (t2 == error_mark_node)
586 return t1;
587
588 if (TYPE_QUALS (t1) != TYPE_UNQUALIFIED)
589 t1 = TYPE_MAIN_VARIANT (t1);
590
591 if (TYPE_QUALS (t2) != TYPE_UNQUALIFIED)
592 t2 = TYPE_MAIN_VARIANT (t2);
593
594 if (TYPE_ATTRIBUTES (t1) != NULL_TREE)
595 t1 = build_type_attribute_variant (t1, NULL_TREE);
596
597 if (TYPE_ATTRIBUTES (t2) != NULL_TREE)
598 t2 = build_type_attribute_variant (t2, NULL_TREE);
599
600 /* Save time if the two types are the same. */
601
602 if (t1 == t2) return t1;
603
604 code1 = TREE_CODE (t1);
605 code2 = TREE_CODE (t2);
606
366de0ce
NS
607 gcc_assert (code1 == VECTOR_TYPE || code1 == COMPLEX_TYPE
608 || code1 == REAL_TYPE || code1 == INTEGER_TYPE);
609 gcc_assert (code2 == VECTOR_TYPE || code2 == COMPLEX_TYPE
610 || code2 == REAL_TYPE || code2 == INTEGER_TYPE);
10bc1b1b 611
5fc89bfd
JJ
612 /* When one operand is a decimal float type, the other operand cannot be
613 a generic float type or a complex type. We also disallow vector types
614 here. */
615 if ((DECIMAL_FLOAT_TYPE_P (t1) || DECIMAL_FLOAT_TYPE_P (t2))
616 && !(DECIMAL_FLOAT_TYPE_P (t1) && DECIMAL_FLOAT_TYPE_P (t2)))
617 {
618 if (code1 == VECTOR_TYPE || code2 == VECTOR_TYPE)
619 {
620 error ("can%'t mix operands of decimal float and vector types");
621 return error_mark_node;
622 }
623 if (code1 == COMPLEX_TYPE || code2 == COMPLEX_TYPE)
624 {
625 error ("can%'t mix operands of decimal float and complex types");
626 return error_mark_node;
627 }
628 if (code1 == REAL_TYPE && code2 == REAL_TYPE)
629 {
630 error ("can%'t mix operands of decimal float and other float types");
631 return error_mark_node;
632 }
633 }
634
10bc1b1b
JM
635 /* If one type is a vector type, return that type. (How the usual
636 arithmetic conversions apply to the vector types extension is not
637 precisely specified.) */
638 if (code1 == VECTOR_TYPE)
639 return t1;
640
641 if (code2 == VECTOR_TYPE)
642 return t2;
643
644 /* If one type is complex, form the common type of the non-complex
645 components, then make that complex. Use T1 or T2 if it is the
646 required type. */
647 if (code1 == COMPLEX_TYPE || code2 == COMPLEX_TYPE)
648 {
649 tree subtype1 = code1 == COMPLEX_TYPE ? TREE_TYPE (t1) : t1;
650 tree subtype2 = code2 == COMPLEX_TYPE ? TREE_TYPE (t2) : t2;
ccf7f880 651 tree subtype = c_common_type (subtype1, subtype2);
10bc1b1b
JM
652
653 if (code1 == COMPLEX_TYPE && TREE_TYPE (t1) == subtype)
654 return t1;
655 else if (code2 == COMPLEX_TYPE && TREE_TYPE (t2) == subtype)
656 return t2;
657 else
658 return build_complex_type (subtype);
659 }
660
661 /* If only one is real, use it as the result. */
662
663 if (code1 == REAL_TYPE && code2 != REAL_TYPE)
664 return t1;
665
666 if (code2 == REAL_TYPE && code1 != REAL_TYPE)
667 return t2;
668
9a8ce21f
JG
669 /* If both are real and either are decimal floating point types, use
670 the decimal floating point type with the greater precision. */
671
672 if (code1 == REAL_TYPE && code2 == REAL_TYPE)
673 {
674 if (TYPE_MAIN_VARIANT (t1) == dfloat128_type_node
675 || TYPE_MAIN_VARIANT (t2) == dfloat128_type_node)
676 return dfloat128_type_node;
677 else if (TYPE_MAIN_VARIANT (t1) == dfloat64_type_node
678 || TYPE_MAIN_VARIANT (t2) == dfloat64_type_node)
679 return dfloat64_type_node;
680 else if (TYPE_MAIN_VARIANT (t1) == dfloat32_type_node
681 || TYPE_MAIN_VARIANT (t2) == dfloat32_type_node)
682 return dfloat32_type_node;
683 }
684
10bc1b1b
JM
685 /* Both real or both integers; use the one with greater precision. */
686
687 if (TYPE_PRECISION (t1) > TYPE_PRECISION (t2))
688 return t1;
689 else if (TYPE_PRECISION (t2) > TYPE_PRECISION (t1))
690 return t2;
691
692 /* Same precision. Prefer long longs to longs to ints when the
693 same precision, following the C99 rules on integer type rank
694 (which are equivalent to the C90 rules for C90 types). */
695
696 if (TYPE_MAIN_VARIANT (t1) == long_long_unsigned_type_node
697 || TYPE_MAIN_VARIANT (t2) == long_long_unsigned_type_node)
698 return long_long_unsigned_type_node;
699
700 if (TYPE_MAIN_VARIANT (t1) == long_long_integer_type_node
701 || TYPE_MAIN_VARIANT (t2) == long_long_integer_type_node)
702 {
703 if (TYPE_UNSIGNED (t1) || TYPE_UNSIGNED (t2))
704 return long_long_unsigned_type_node;
705 else
c22cacf3 706 return long_long_integer_type_node;
10bc1b1b
JM
707 }
708
709 if (TYPE_MAIN_VARIANT (t1) == long_unsigned_type_node
710 || TYPE_MAIN_VARIANT (t2) == long_unsigned_type_node)
711 return long_unsigned_type_node;
712
713 if (TYPE_MAIN_VARIANT (t1) == long_integer_type_node
714 || TYPE_MAIN_VARIANT (t2) == long_integer_type_node)
715 {
716 /* But preserve unsignedness from the other type,
717 since long cannot hold all the values of an unsigned int. */
718 if (TYPE_UNSIGNED (t1) || TYPE_UNSIGNED (t2))
719 return long_unsigned_type_node;
720 else
721 return long_integer_type_node;
722 }
723
724 /* Likewise, prefer long double to double even if same size. */
725 if (TYPE_MAIN_VARIANT (t1) == long_double_type_node
726 || TYPE_MAIN_VARIANT (t2) == long_double_type_node)
727 return long_double_type_node;
728
729 /* Otherwise prefer the unsigned one. */
730
731 if (TYPE_UNSIGNED (t1))
732 return t1;
733 else
734 return t2;
735}
400fbf9f 736\f
5922c215
JM
737/* Wrapper around c_common_type that is used by c-common.c and other
738 front end optimizations that remove promotions. ENUMERAL_TYPEs
b2232745
RS
739 are allowed here and are converted to their compatible integer types.
740 BOOLEAN_TYPEs are allowed here and return either boolean_type_node or
741 preferably a non-Boolean type as the common type. */
ccf7f880
JJ
742tree
743common_type (tree t1, tree t2)
744{
745 if (TREE_CODE (t1) == ENUMERAL_TYPE)
746 t1 = c_common_type_for_size (TYPE_PRECISION (t1), 1);
747 if (TREE_CODE (t2) == ENUMERAL_TYPE)
748 t2 = c_common_type_for_size (TYPE_PRECISION (t2), 1);
b2232745
RS
749
750 /* If both types are BOOLEAN_TYPE, then return boolean_type_node. */
751 if (TREE_CODE (t1) == BOOLEAN_TYPE
752 && TREE_CODE (t2) == BOOLEAN_TYPE)
753 return boolean_type_node;
754
755 /* If either type is BOOLEAN_TYPE, then return the other. */
756 if (TREE_CODE (t1) == BOOLEAN_TYPE)
757 return t2;
758 if (TREE_CODE (t2) == BOOLEAN_TYPE)
759 return t1;
760
ccf7f880
JJ
761 return c_common_type (t1, t2);
762}
f13c9b2c 763
400fbf9f
JW
764/* Return 1 if TYPE1 and TYPE2 are compatible types for assignment
765 or various other operations. Return 2 if they are compatible
766 but a warning may be needed if you use them together. */
767
768int
132da1a5 769comptypes (tree type1, tree type2)
f13c9b2c
AP
770{
771 const struct tagged_tu_seen_cache * tagged_tu_seen_base1 = tagged_tu_seen_base;
772 int val;
773
774 val = comptypes_internal (type1, type2);
775 free_all_tagged_tu_seen_up_to (tagged_tu_seen_base1);
c22cacf3 776
f13c9b2c 777 return val;
c22cacf3
MS
778}
779\f
f13c9b2c
AP
780/* Return 1 if TYPE1 and TYPE2 are compatible types for assignment
781 or various other operations. Return 2 if they are compatible
782 but a warning may be needed if you use them together. This
783 differs from comptypes, in that we don't free the seen types. */
784
785static int
786comptypes_internal (tree type1, tree type2)
400fbf9f 787{
b3694847
SS
788 tree t1 = type1;
789 tree t2 = type2;
4b027d16 790 int attrval, val;
400fbf9f
JW
791
792 /* Suppress errors caused by previously reported errors. */
793
8d47dfc5
RH
794 if (t1 == t2 || !t1 || !t2
795 || TREE_CODE (t1) == ERROR_MARK || TREE_CODE (t2) == ERROR_MARK)
400fbf9f
JW
796 return 1;
797
21318741
RK
798 /* If either type is the internal version of sizetype, return the
799 language version. */
800 if (TREE_CODE (t1) == INTEGER_TYPE && TYPE_IS_SIZETYPE (t1)
eb1a2c88
DN
801 && TYPE_ORIG_SIZE_TYPE (t1))
802 t1 = TYPE_ORIG_SIZE_TYPE (t1);
21318741
RK
803
804 if (TREE_CODE (t2) == INTEGER_TYPE && TYPE_IS_SIZETYPE (t2)
eb1a2c88
DN
805 && TYPE_ORIG_SIZE_TYPE (t2))
806 t2 = TYPE_ORIG_SIZE_TYPE (t2);
807
21318741 808
bca63328
JM
809 /* Enumerated types are compatible with integer types, but this is
810 not transitive: two enumerated types in the same translation unit
811 are compatible with each other only if they are the same type. */
400fbf9f 812
bca63328 813 if (TREE_CODE (t1) == ENUMERAL_TYPE && TREE_CODE (t2) != ENUMERAL_TYPE)
8df83eae 814 t1 = c_common_type_for_size (TYPE_PRECISION (t1), TYPE_UNSIGNED (t1));
bca63328 815 else if (TREE_CODE (t2) == ENUMERAL_TYPE && TREE_CODE (t1) != ENUMERAL_TYPE)
8df83eae 816 t2 = c_common_type_for_size (TYPE_PRECISION (t2), TYPE_UNSIGNED (t2));
400fbf9f
JW
817
818 if (t1 == t2)
819 return 1;
820
821 /* Different classes of types can't be compatible. */
822
3aeb3655
EC
823 if (TREE_CODE (t1) != TREE_CODE (t2))
824 return 0;
400fbf9f 825
118a3a8b 826 /* Qualifiers must match. C99 6.7.3p9 */
400fbf9f 827
3932261a 828 if (TYPE_QUALS (t1) != TYPE_QUALS (t2))
400fbf9f
JW
829 return 0;
830
08632da2
RS
831 /* Allow for two different type nodes which have essentially the same
832 definition. Note that we already checked for equality of the type
38e01259 833 qualifiers (just above). */
400fbf9f 834
46df2823
JM
835 if (TREE_CODE (t1) != ARRAY_TYPE
836 && TYPE_MAIN_VARIANT (t1) == TYPE_MAIN_VARIANT (t2))
400fbf9f
JW
837 return 1;
838
4b027d16 839 /* 1 if no need for warning yet, 2 if warning cause has been seen. */
3f75a254 840 if (!(attrval = targetm.comp_type_attributes (t1, t2)))
4b027d16
RK
841 return 0;
842
843 /* 1 if no need for warning yet, 2 if warning cause has been seen. */
844 val = 0;
845
400fbf9f
JW
846 switch (TREE_CODE (t1))
847 {
848 case POINTER_TYPE:
106f5de5
UW
849 /* Do not remove mode or aliasing information. */
850 if (TYPE_MODE (t1) != TYPE_MODE (t2)
851 || TYPE_REF_CAN_ALIAS_ALL (t1) != TYPE_REF_CAN_ALIAS_ALL (t2))
852 break;
4b027d16 853 val = (TREE_TYPE (t1) == TREE_TYPE (t2)
f13c9b2c 854 ? 1 : comptypes_internal (TREE_TYPE (t1), TREE_TYPE (t2)));
4b027d16 855 break;
400fbf9f
JW
856
857 case FUNCTION_TYPE:
132da1a5 858 val = function_types_compatible_p (t1, t2);
4b027d16 859 break;
400fbf9f
JW
860
861 case ARRAY_TYPE:
862 {
400fbf9f
JW
863 tree d1 = TYPE_DOMAIN (t1);
864 tree d2 = TYPE_DOMAIN (t2);
3f85558f
RH
865 bool d1_variable, d2_variable;
866 bool d1_zero, d2_zero;
4b027d16 867 val = 1;
400fbf9f
JW
868
869 /* Target types must match incl. qualifiers. */
870 if (TREE_TYPE (t1) != TREE_TYPE (t2)
f13c9b2c 871 && 0 == (val = comptypes_internal (TREE_TYPE (t1), TREE_TYPE (t2))))
400fbf9f
JW
872 return 0;
873
874 /* Sizes must match unless one is missing or variable. */
3f85558f 875 if (d1 == 0 || d2 == 0 || d1 == d2)
4b027d16 876 break;
400fbf9f 877
3f75a254
JM
878 d1_zero = !TYPE_MAX_VALUE (d1);
879 d2_zero = !TYPE_MAX_VALUE (d2);
3f85558f 880
3f75a254 881 d1_variable = (!d1_zero
3f85558f
RH
882 && (TREE_CODE (TYPE_MIN_VALUE (d1)) != INTEGER_CST
883 || TREE_CODE (TYPE_MAX_VALUE (d1)) != INTEGER_CST));
3f75a254 884 d2_variable = (!d2_zero
3f85558f
RH
885 && (TREE_CODE (TYPE_MIN_VALUE (d2)) != INTEGER_CST
886 || TREE_CODE (TYPE_MAX_VALUE (d2)) != INTEGER_CST));
52ffd86e
MS
887 d1_variable = d1_variable || (d1_zero && c_vla_type_p (t1));
888 d2_variable = d2_variable || (d2_zero && c_vla_type_p (t2));
3f85558f
RH
889
890 if (d1_variable || d2_variable)
891 break;
892 if (d1_zero && d2_zero)
893 break;
894 if (d1_zero || d2_zero
3f75a254
JM
895 || !tree_int_cst_equal (TYPE_MIN_VALUE (d1), TYPE_MIN_VALUE (d2))
896 || !tree_int_cst_equal (TYPE_MAX_VALUE (d1), TYPE_MAX_VALUE (d2)))
05bccae2
RK
897 val = 0;
898
c22cacf3 899 break;
400fbf9f
JW
900 }
901
d1bd0ded 902 case ENUMERAL_TYPE:
58393038 903 case RECORD_TYPE:
d1bd0ded 904 case UNION_TYPE:
766beae1 905 if (val != 1 && !same_translation_unit_p (t1, t2))
c22cacf3 906 {
fcb99e7b
JJ
907 tree a1 = TYPE_ATTRIBUTES (t1);
908 tree a2 = TYPE_ATTRIBUTES (t2);
909
910 if (! attribute_list_contained (a1, a2)
911 && ! attribute_list_contained (a2, a1))
912 break;
913
f13c9b2c
AP
914 if (attrval != 2)
915 return tagged_types_tu_compatible_p (t1, t2);
916 val = tagged_types_tu_compatible_p (t1, t2);
917 }
4b027d16 918 break;
e9a25f70 919
62e1dfcf 920 case VECTOR_TYPE:
cc27e657 921 val = TYPE_VECTOR_SUBPARTS (t1) == TYPE_VECTOR_SUBPARTS (t2)
f13c9b2c 922 && comptypes_internal (TREE_TYPE (t1), TREE_TYPE (t2));
62e1dfcf
NC
923 break;
924
e9a25f70
JL
925 default:
926 break;
400fbf9f 927 }
4b027d16 928 return attrval == 2 && val == 1 ? 2 : val;
400fbf9f
JW
929}
930
931/* Return 1 if TTL and TTR are pointers to types that are equivalent,
58393038 932 ignoring their qualifiers. */
400fbf9f
JW
933
934static int
58393038 935comp_target_types (tree ttl, tree ttr)
400fbf9f 936{
392202b0 937 int val;
46df2823 938 tree mvl, mvr;
8b40563c 939
46df2823
JM
940 /* Do not lose qualifiers on element types of array types that are
941 pointer targets by taking their TYPE_MAIN_VARIANT. */
942 mvl = TREE_TYPE (ttl);
943 mvr = TREE_TYPE (ttr);
944 if (TREE_CODE (mvl) != ARRAY_TYPE)
945 mvl = TYPE_MAIN_VARIANT (mvl);
946 if (TREE_CODE (mvr) != ARRAY_TYPE)
947 mvr = TYPE_MAIN_VARIANT (mvr);
948 val = comptypes (mvl, mvr);
8b40563c 949
400fbf9f
JW
950 if (val == 2 && pedantic)
951 pedwarn ("types are not quite compatible");
952 return val;
953}
954\f
955/* Subroutines of `comptypes'. */
956
f75fbaf7
ZW
957/* Determine whether two trees derive from the same translation unit.
958 If the CONTEXT chain ends in a null, that tree's context is still
959 being parsed, so if two trees have context chains ending in null,
766beae1 960 they're in the same translation unit. */
f75fbaf7 961int
766beae1
ZW
962same_translation_unit_p (tree t1, tree t2)
963{
964 while (t1 && TREE_CODE (t1) != TRANSLATION_UNIT_DECL)
965 switch (TREE_CODE_CLASS (TREE_CODE (t1)))
966 {
6615c446
JO
967 case tcc_declaration:
968 t1 = DECL_CONTEXT (t1); break;
969 case tcc_type:
970 t1 = TYPE_CONTEXT (t1); break;
971 case tcc_exceptional:
972 t1 = BLOCK_SUPERCONTEXT (t1); break; /* assume block */
366de0ce 973 default: gcc_unreachable ();
766beae1
ZW
974 }
975
976 while (t2 && TREE_CODE (t2) != TRANSLATION_UNIT_DECL)
977 switch (TREE_CODE_CLASS (TREE_CODE (t2)))
978 {
6615c446
JO
979 case tcc_declaration:
980 t2 = DECL_CONTEXT (t2); break;
981 case tcc_type:
982 t2 = TYPE_CONTEXT (t2); break;
983 case tcc_exceptional:
984 t2 = BLOCK_SUPERCONTEXT (t2); break; /* assume block */
366de0ce 985 default: gcc_unreachable ();
766beae1
ZW
986 }
987
988 return t1 == t2;
989}
990
f13c9b2c 991/* Allocate the seen two types, assuming that they are compatible. */
d1bd0ded 992
f13c9b2c
AP
993static struct tagged_tu_seen_cache *
994alloc_tagged_tu_seen_cache (tree t1, tree t2)
995{
cceb1885 996 struct tagged_tu_seen_cache *tu = XNEW (struct tagged_tu_seen_cache);
f13c9b2c
AP
997 tu->next = tagged_tu_seen_base;
998 tu->t1 = t1;
999 tu->t2 = t2;
c22cacf3 1000
f13c9b2c 1001 tagged_tu_seen_base = tu;
c22cacf3 1002
f13c9b2c
AP
1003 /* The C standard says that two structures in different translation
1004 units are compatible with each other only if the types of their
1005 fields are compatible (among other things). We assume that they
1006 are compatible until proven otherwise when building the cache.
1007 An example where this can occur is:
1008 struct a
1009 {
1010 struct a *next;
1011 };
1012 If we are comparing this against a similar struct in another TU,
c83eecad 1013 and did not assume they were compatible, we end up with an infinite
f13c9b2c
AP
1014 loop. */
1015 tu->val = 1;
1016 return tu;
1017}
d1bd0ded 1018
f13c9b2c 1019/* Free the seen types until we get to TU_TIL. */
d1bd0ded 1020
f13c9b2c
AP
1021static void
1022free_all_tagged_tu_seen_up_to (const struct tagged_tu_seen_cache *tu_til)
1023{
1024 const struct tagged_tu_seen_cache *tu = tagged_tu_seen_base;
1025 while (tu != tu_til)
1026 {
5f754896
KG
1027 const struct tagged_tu_seen_cache *tu1
1028 = (const struct tagged_tu_seen_cache*)tu;
f13c9b2c 1029 tu = tu1->next;
5f754896 1030 free ((void *)tu1);
f13c9b2c
AP
1031 }
1032 tagged_tu_seen_base = tu_til;
1033}
d1bd0ded
GK
1034
1035/* Return 1 if two 'struct', 'union', or 'enum' types T1 and T2 are
1036 compatible. If the two types are not the same (which has been
1037 checked earlier), this can only happen when multiple translation
1038 units are being compiled. See C99 6.2.7 paragraph 1 for the exact
1039 rules. */
1040
1041static int
132da1a5 1042tagged_types_tu_compatible_p (tree t1, tree t2)
d1bd0ded
GK
1043{
1044 tree s1, s2;
1045 bool needs_warning = false;
3aeb3655 1046
d1bd0ded
GK
1047 /* We have to verify that the tags of the types are the same. This
1048 is harder than it looks because this may be a typedef, so we have
1049 to go look at the original type. It may even be a typedef of a
6de9cd9a
DN
1050 typedef...
1051 In the case of compiler-created builtin structs the TYPE_DECL
1052 may be a dummy, with no DECL_ORIGINAL_TYPE. Don't fault. */
dea984dc
ILT
1053 while (TYPE_NAME (t1)
1054 && TREE_CODE (TYPE_NAME (t1)) == TYPE_DECL
1055 && DECL_ORIGINAL_TYPE (TYPE_NAME (t1)))
d1bd0ded
GK
1056 t1 = DECL_ORIGINAL_TYPE (TYPE_NAME (t1));
1057
dea984dc
ILT
1058 while (TYPE_NAME (t2)
1059 && TREE_CODE (TYPE_NAME (t2)) == TYPE_DECL
1060 && DECL_ORIGINAL_TYPE (TYPE_NAME (t2)))
d1bd0ded
GK
1061 t2 = DECL_ORIGINAL_TYPE (TYPE_NAME (t2));
1062
1063 /* C90 didn't have the requirement that the two tags be the same. */
1064 if (flag_isoc99 && TYPE_NAME (t1) != TYPE_NAME (t2))
1065 return 0;
3aeb3655 1066
d1bd0ded
GK
1067 /* C90 didn't say what happened if one or both of the types were
1068 incomplete; we choose to follow C99 rules here, which is that they
1069 are compatible. */
1070 if (TYPE_SIZE (t1) == NULL
1071 || TYPE_SIZE (t2) == NULL)
1072 return 1;
3aeb3655 1073
d1bd0ded 1074 {
f13c9b2c 1075 const struct tagged_tu_seen_cache * tts_i;
d1bd0ded
GK
1076 for (tts_i = tagged_tu_seen_base; tts_i != NULL; tts_i = tts_i->next)
1077 if (tts_i->t1 == t1 && tts_i->t2 == t2)
f13c9b2c 1078 return tts_i->val;
d1bd0ded 1079 }
3aeb3655 1080
d1bd0ded
GK
1081 switch (TREE_CODE (t1))
1082 {
1083 case ENUMERAL_TYPE:
1084 {
f13c9b2c 1085 struct tagged_tu_seen_cache *tu = alloc_tagged_tu_seen_cache (t1, t2);
c22cacf3
MS
1086 /* Speed up the case where the type values are in the same order. */
1087 tree tv1 = TYPE_VALUES (t1);
1088 tree tv2 = TYPE_VALUES (t2);
3aeb3655 1089
c22cacf3 1090 if (tv1 == tv2)
f13c9b2c
AP
1091 {
1092 return 1;
1093 }
3aeb3655 1094
c22cacf3
MS
1095 for (;tv1 && tv2; tv1 = TREE_CHAIN (tv1), tv2 = TREE_CHAIN (tv2))
1096 {
1097 if (TREE_PURPOSE (tv1) != TREE_PURPOSE (tv2))
1098 break;
1099 if (simple_cst_equal (TREE_VALUE (tv1), TREE_VALUE (tv2)) != 1)
f13c9b2c 1100 {
c22cacf3 1101 tu->val = 0;
f13c9b2c
AP
1102 return 0;
1103 }
c22cacf3 1104 }
3aeb3655 1105
c22cacf3 1106 if (tv1 == NULL_TREE && tv2 == NULL_TREE)
f13c9b2c
AP
1107 {
1108 return 1;
1109 }
c22cacf3 1110 if (tv1 == NULL_TREE || tv2 == NULL_TREE)
f13c9b2c
AP
1111 {
1112 tu->val = 0;
1113 return 0;
1114 }
3aeb3655 1115
d1bd0ded 1116 if (list_length (TYPE_VALUES (t1)) != list_length (TYPE_VALUES (t2)))
f13c9b2c
AP
1117 {
1118 tu->val = 0;
1119 return 0;
1120 }
3aeb3655 1121
d1bd0ded
GK
1122 for (s1 = TYPE_VALUES (t1); s1; s1 = TREE_CHAIN (s1))
1123 {
1124 s2 = purpose_member (TREE_PURPOSE (s1), TYPE_VALUES (t2));
1125 if (s2 == NULL
1126 || simple_cst_equal (TREE_VALUE (s1), TREE_VALUE (s2)) != 1)
f13c9b2c
AP
1127 {
1128 tu->val = 0;
1129 return 0;
1130 }
d1bd0ded
GK
1131 }
1132 return 1;
1133 }
1134
1135 case UNION_TYPE:
1136 {
f13c9b2c 1137 struct tagged_tu_seen_cache *tu = alloc_tagged_tu_seen_cache (t1, t2);
d1bd0ded 1138 if (list_length (TYPE_FIELDS (t1)) != list_length (TYPE_FIELDS (t2)))
f13c9b2c
AP
1139 {
1140 tu->val = 0;
1141 return 0;
1142 }
c22cacf3 1143
f13c9b2c
AP
1144 /* Speed up the common case where the fields are in the same order. */
1145 for (s1 = TYPE_FIELDS (t1), s2 = TYPE_FIELDS (t2); s1 && s2;
1146 s1 = TREE_CHAIN (s1), s2 = TREE_CHAIN (s2))
1147 {
1148 int result;
c22cacf3
MS
1149
1150
f13c9b2c 1151 if (DECL_NAME (s1) == NULL
c22cacf3 1152 || DECL_NAME (s1) != DECL_NAME (s2))
f13c9b2c
AP
1153 break;
1154 result = comptypes_internal (TREE_TYPE (s1), TREE_TYPE (s2));
1155 if (result == 0)
1156 {
1157 tu->val = 0;
1158 return 0;
1159 }
1160 if (result == 2)
1161 needs_warning = true;
1162
1163 if (TREE_CODE (s1) == FIELD_DECL
1164 && simple_cst_equal (DECL_FIELD_BIT_OFFSET (s1),
1165 DECL_FIELD_BIT_OFFSET (s2)) != 1)
1166 {
1167 tu->val = 0;
1168 return 0;
1169 }
1170 }
1171 if (!s1 && !s2)
1172 {
1173 tu->val = needs_warning ? 2 : 1;
1174 return tu->val;
1175 }
d1bd0ded
GK
1176
1177 for (s1 = TYPE_FIELDS (t1); s1; s1 = TREE_CHAIN (s1))
1178 {
1179 bool ok = false;
3aeb3655 1180
d1bd0ded 1181 if (DECL_NAME (s1) != NULL)
398ce3dd 1182 for (s2 = TYPE_FIELDS (t2); s2; s2 = TREE_CHAIN (s2))
d1bd0ded
GK
1183 if (DECL_NAME (s1) == DECL_NAME (s2))
1184 {
1185 int result;
f13c9b2c 1186 result = comptypes_internal (TREE_TYPE (s1), TREE_TYPE (s2));
d1bd0ded 1187 if (result == 0)
f13c9b2c
AP
1188 {
1189 tu->val = 0;
1190 return 0;
1191 }
d1bd0ded
GK
1192 if (result == 2)
1193 needs_warning = true;
3aeb3655 1194
d1bd0ded
GK
1195 if (TREE_CODE (s1) == FIELD_DECL
1196 && simple_cst_equal (DECL_FIELD_BIT_OFFSET (s1),
1197 DECL_FIELD_BIT_OFFSET (s2)) != 1)
1198 break;
1199
1200 ok = true;
1201 break;
1202 }
3f75a254 1203 if (!ok)
f13c9b2c
AP
1204 {
1205 tu->val = 0;
1206 return 0;
1207 }
d1bd0ded 1208 }
f13c9b2c
AP
1209 tu->val = needs_warning ? 2 : 10;
1210 return tu->val;
d1bd0ded
GK
1211 }
1212
1213 case RECORD_TYPE:
1214 {
c22cacf3 1215 struct tagged_tu_seen_cache *tu = alloc_tagged_tu_seen_cache (t1, t2);
3aeb3655
EC
1216
1217 for (s1 = TYPE_FIELDS (t1), s2 = TYPE_FIELDS (t2);
d1bd0ded
GK
1218 s1 && s2;
1219 s1 = TREE_CHAIN (s1), s2 = TREE_CHAIN (s2))
1220 {
1221 int result;
1222 if (TREE_CODE (s1) != TREE_CODE (s2)
1223 || DECL_NAME (s1) != DECL_NAME (s2))
1224 break;
f13c9b2c 1225 result = comptypes_internal (TREE_TYPE (s1), TREE_TYPE (s2));
d1bd0ded
GK
1226 if (result == 0)
1227 break;
1228 if (result == 2)
1229 needs_warning = true;
3aeb3655 1230
d1bd0ded
GK
1231 if (TREE_CODE (s1) == FIELD_DECL
1232 && simple_cst_equal (DECL_FIELD_BIT_OFFSET (s1),
1233 DECL_FIELD_BIT_OFFSET (s2)) != 1)
1234 break;
1235 }
d1bd0ded 1236 if (s1 && s2)
f13c9b2c
AP
1237 tu->val = 0;
1238 else
1239 tu->val = needs_warning ? 2 : 1;
1240 return tu->val;
d1bd0ded
GK
1241 }
1242
1243 default:
366de0ce 1244 gcc_unreachable ();
d1bd0ded
GK
1245 }
1246}
1247
400fbf9f
JW
1248/* Return 1 if two function types F1 and F2 are compatible.
1249 If either type specifies no argument types,
1250 the other must specify a fixed number of self-promoting arg types.
2f6e4e97 1251 Otherwise, if one type specifies only the number of arguments,
400fbf9f
JW
1252 the other must specify that number of self-promoting arg types.
1253 Otherwise, the argument types must match. */
1254
1255static int
132da1a5 1256function_types_compatible_p (tree f1, tree f2)
400fbf9f
JW
1257{
1258 tree args1, args2;
1259 /* 1 if no need for warning yet, 2 if warning cause has been seen. */
1260 int val = 1;
1261 int val1;
a6fdc086
GK
1262 tree ret1, ret2;
1263
1264 ret1 = TREE_TYPE (f1);
1265 ret2 = TREE_TYPE (f2);
1266
e508a019
JM
1267 /* 'volatile' qualifiers on a function's return type used to mean
1268 the function is noreturn. */
1269 if (TYPE_VOLATILE (ret1) != TYPE_VOLATILE (ret2))
bda67431 1270 pedwarn ("function return types not compatible due to %<volatile%>");
a6fdc086
GK
1271 if (TYPE_VOLATILE (ret1))
1272 ret1 = build_qualified_type (TYPE_MAIN_VARIANT (ret1),
1273 TYPE_QUALS (ret1) & ~TYPE_QUAL_VOLATILE);
1274 if (TYPE_VOLATILE (ret2))
1275 ret2 = build_qualified_type (TYPE_MAIN_VARIANT (ret2),
1276 TYPE_QUALS (ret2) & ~TYPE_QUAL_VOLATILE);
f13c9b2c 1277 val = comptypes_internal (ret1, ret2);
a6fdc086 1278 if (val == 0)
400fbf9f
JW
1279 return 0;
1280
1281 args1 = TYPE_ARG_TYPES (f1);
1282 args2 = TYPE_ARG_TYPES (f2);
1283
1284 /* An unspecified parmlist matches any specified parmlist
1285 whose argument types don't need default promotions. */
1286
1287 if (args1 == 0)
1288 {
1289 if (!self_promoting_args_p (args2))
1290 return 0;
1291 /* If one of these types comes from a non-prototype fn definition,
1292 compare that with the other type's arglist.
3176a0c2 1293 If they don't match, ask for a warning (but no error). */
400fbf9f 1294 if (TYPE_ACTUAL_ARG_TYPES (f1)
132da1a5 1295 && 1 != type_lists_compatible_p (args2, TYPE_ACTUAL_ARG_TYPES (f1)))
400fbf9f
JW
1296 val = 2;
1297 return val;
1298 }
1299 if (args2 == 0)
1300 {
1301 if (!self_promoting_args_p (args1))
1302 return 0;
1303 if (TYPE_ACTUAL_ARG_TYPES (f2)
132da1a5 1304 && 1 != type_lists_compatible_p (args1, TYPE_ACTUAL_ARG_TYPES (f2)))
400fbf9f
JW
1305 val = 2;
1306 return val;
1307 }
1308
1309 /* Both types have argument lists: compare them and propagate results. */
132da1a5 1310 val1 = type_lists_compatible_p (args1, args2);
400fbf9f
JW
1311 return val1 != 1 ? val1 : val;
1312}
1313
1314/* Check two lists of types for compatibility,
1315 returning 0 for incompatible, 1 for compatible,
1316 or 2 for compatible with warning. */
1317
1318static int
132da1a5 1319type_lists_compatible_p (tree args1, tree args2)
400fbf9f
JW
1320{
1321 /* 1 if no need for warning yet, 2 if warning cause has been seen. */
1322 int val = 1;
9d5f3e49 1323 int newval = 0;
400fbf9f
JW
1324
1325 while (1)
1326 {
46df2823 1327 tree a1, mv1, a2, mv2;
400fbf9f
JW
1328 if (args1 == 0 && args2 == 0)
1329 return val;
1330 /* If one list is shorter than the other,
1331 they fail to match. */
1332 if (args1 == 0 || args2 == 0)
1333 return 0;
46df2823
JM
1334 mv1 = a1 = TREE_VALUE (args1);
1335 mv2 = a2 = TREE_VALUE (args2);
1336 if (mv1 && mv1 != error_mark_node && TREE_CODE (mv1) != ARRAY_TYPE)
1337 mv1 = TYPE_MAIN_VARIANT (mv1);
1338 if (mv2 && mv2 != error_mark_node && TREE_CODE (mv2) != ARRAY_TYPE)
1339 mv2 = TYPE_MAIN_VARIANT (mv2);
400fbf9f
JW
1340 /* A null pointer instead of a type
1341 means there is supposed to be an argument
1342 but nothing is specified about what type it has.
1343 So match anything that self-promotes. */
46df2823 1344 if (a1 == 0)
400fbf9f 1345 {
46df2823 1346 if (c_type_promotes_to (a2) != a2)
400fbf9f
JW
1347 return 0;
1348 }
46df2823 1349 else if (a2 == 0)
400fbf9f 1350 {
46df2823 1351 if (c_type_promotes_to (a1) != a1)
400fbf9f
JW
1352 return 0;
1353 }
8f5b6d29 1354 /* If one of the lists has an error marker, ignore this arg. */
46df2823
JM
1355 else if (TREE_CODE (a1) == ERROR_MARK
1356 || TREE_CODE (a2) == ERROR_MARK)
8f5b6d29 1357 ;
f13c9b2c 1358 else if (!(newval = comptypes_internal (mv1, mv2)))
400fbf9f
JW
1359 {
1360 /* Allow wait (union {union wait *u; int *i} *)
1361 and wait (union wait *) to be compatible. */
46df2823
JM
1362 if (TREE_CODE (a1) == UNION_TYPE
1363 && (TYPE_NAME (a1) == 0
1364 || TYPE_TRANSPARENT_UNION (a1))
1365 && TREE_CODE (TYPE_SIZE (a1)) == INTEGER_CST
1366 && tree_int_cst_equal (TYPE_SIZE (a1),
1367 TYPE_SIZE (a2)))
400fbf9f
JW
1368 {
1369 tree memb;
46df2823 1370 for (memb = TYPE_FIELDS (a1);
400fbf9f 1371 memb; memb = TREE_CHAIN (memb))
58cb41e6
JJ
1372 {
1373 tree mv3 = TREE_TYPE (memb);
1374 if (mv3 && mv3 != error_mark_node
1375 && TREE_CODE (mv3) != ARRAY_TYPE)
1376 mv3 = TYPE_MAIN_VARIANT (mv3);
f13c9b2c 1377 if (comptypes_internal (mv3, mv2))
58cb41e6
JJ
1378 break;
1379 }
400fbf9f
JW
1380 if (memb == 0)
1381 return 0;
1382 }
46df2823
JM
1383 else if (TREE_CODE (a2) == UNION_TYPE
1384 && (TYPE_NAME (a2) == 0
1385 || TYPE_TRANSPARENT_UNION (a2))
1386 && TREE_CODE (TYPE_SIZE (a2)) == INTEGER_CST
1387 && tree_int_cst_equal (TYPE_SIZE (a2),
1388 TYPE_SIZE (a1)))
400fbf9f
JW
1389 {
1390 tree memb;
46df2823 1391 for (memb = TYPE_FIELDS (a2);
400fbf9f 1392 memb; memb = TREE_CHAIN (memb))
58cb41e6
JJ
1393 {
1394 tree mv3 = TREE_TYPE (memb);
1395 if (mv3 && mv3 != error_mark_node
1396 && TREE_CODE (mv3) != ARRAY_TYPE)
1397 mv3 = TYPE_MAIN_VARIANT (mv3);
f13c9b2c 1398 if (comptypes_internal (mv3, mv1))
58cb41e6
JJ
1399 break;
1400 }
400fbf9f
JW
1401 if (memb == 0)
1402 return 0;
1403 }
1404 else
1405 return 0;
1406 }
1407
1408 /* comptypes said ok, but record if it said to warn. */
1409 if (newval > val)
1410 val = newval;
1411
1412 args1 = TREE_CHAIN (args1);
1413 args2 = TREE_CHAIN (args2);
1414 }
1415}
400fbf9f 1416\f
400fbf9f
JW
1417/* Compute the size to increment a pointer by. */
1418
4e2fb7de 1419static tree
2f6e4e97 1420c_size_in_bytes (tree type)
400fbf9f
JW
1421{
1422 enum tree_code code = TREE_CODE (type);
1423
fed3cef0
RK
1424 if (code == FUNCTION_TYPE || code == VOID_TYPE || code == ERROR_MARK)
1425 return size_one_node;
1426
d0f062fb 1427 if (!COMPLETE_OR_VOID_TYPE_P (type))
400fbf9f
JW
1428 {
1429 error ("arithmetic on pointer to an incomplete type");
fed3cef0 1430 return size_one_node;
400fbf9f
JW
1431 }
1432
1433 /* Convert in case a char is more than one unit. */
fed3cef0
RK
1434 return size_binop (CEIL_DIV_EXPR, TYPE_SIZE_UNIT (type),
1435 size_int (TYPE_PRECISION (char_type_node)
1436 / BITS_PER_UNIT));
400fbf9f 1437}
400fbf9f 1438\f
400fbf9f
JW
1439/* Return either DECL or its known constant value (if it has one). */
1440
56cb9733 1441tree
2f6e4e97 1442decl_constant_value (tree decl)
400fbf9f 1443{
a7c1916a 1444 if (/* Don't change a variable array bound or initial value to a constant
4f976745
RK
1445 in a place where a variable is invalid. Note that DECL_INITIAL
1446 isn't valid for a PARM_DECL. */
a7c1916a 1447 current_function_decl != 0
4f976745 1448 && TREE_CODE (decl) != PARM_DECL
3f75a254 1449 && !TREE_THIS_VOLATILE (decl)
83bab8db 1450 && TREE_READONLY (decl)
400fbf9f
JW
1451 && DECL_INITIAL (decl) != 0
1452 && TREE_CODE (DECL_INITIAL (decl)) != ERROR_MARK
1453 /* This is invalid if initial value is not constant.
1454 If it has either a function call, a memory reference,
1455 or a variable, then re-evaluating it could give different results. */
1456 && TREE_CONSTANT (DECL_INITIAL (decl))
1457 /* Check for cases where this is sub-optimal, even though valid. */
2f74f7e9 1458 && TREE_CODE (DECL_INITIAL (decl)) != CONSTRUCTOR)
400fbf9f
JW
1459 return DECL_INITIAL (decl);
1460 return decl;
1461}
1462
2f74f7e9
JM
1463/* Return either DECL or its known constant value (if it has one), but
1464 return DECL if pedantic or DECL has mode BLKmode. This is for
1465 bug-compatibility with the old behavior of decl_constant_value
1466 (before GCC 3.0); every use of this function is a bug and it should
1467 be removed before GCC 3.1. It is not appropriate to use pedantic
1468 in a way that affects optimization, and BLKmode is probably not the
1469 right test for avoiding misoptimizations either. */
1470
1471static tree
2f6e4e97 1472decl_constant_value_for_broken_optimization (tree decl)
2f74f7e9 1473{
c477e13b
JJ
1474 tree ret;
1475
2f74f7e9
JM
1476 if (pedantic || DECL_MODE (decl) == BLKmode)
1477 return decl;
c477e13b
JJ
1478
1479 ret = decl_constant_value (decl);
1480 /* Avoid unwanted tree sharing between the initializer and current
1481 function's body where the tree can be modified e.g. by the
1482 gimplifier. */
1483 if (ret != decl && TREE_STATIC (decl))
1484 ret = unshare_expr (ret);
1485 return ret;
2f74f7e9
JM
1486}
1487
f2a71bbc
JM
1488/* Convert the array expression EXP to a pointer. */
1489static tree
1490array_to_pointer_conversion (tree exp)
207bf485 1491{
f2a71bbc 1492 tree orig_exp = exp;
207bf485 1493 tree type = TREE_TYPE (exp);
f2a71bbc
JM
1494 tree adr;
1495 tree restype = TREE_TYPE (type);
1496 tree ptrtype;
207bf485 1497
f2a71bbc 1498 gcc_assert (TREE_CODE (type) == ARRAY_TYPE);
207bf485 1499
f2a71bbc 1500 STRIP_TYPE_NOPS (exp);
207bf485 1501
487a92fe
JM
1502 if (TREE_NO_WARNING (orig_exp))
1503 TREE_NO_WARNING (exp) = 1;
207bf485 1504
f2a71bbc
JM
1505 ptrtype = build_pointer_type (restype);
1506
1507 if (TREE_CODE (exp) == INDIRECT_REF)
1508 return convert (ptrtype, TREE_OPERAND (exp, 0));
1509
1510 if (TREE_CODE (exp) == VAR_DECL)
207bf485 1511 {
f2a71bbc
JM
1512 /* We are making an ADDR_EXPR of ptrtype. This is a valid
1513 ADDR_EXPR because it's the best way of representing what
1514 happens in C when we take the address of an array and place
1515 it in a pointer to the element type. */
1516 adr = build1 (ADDR_EXPR, ptrtype, exp);
1517 if (!c_mark_addressable (exp))
1518 return error_mark_node;
1519 TREE_SIDE_EFFECTS (adr) = 0; /* Default would be, same as EXP. */
1520 return adr;
207bf485 1521 }
207bf485 1522
f2a71bbc
JM
1523 /* This way is better for a COMPONENT_REF since it can
1524 simplify the offset for a component. */
1525 adr = build_unary_op (ADDR_EXPR, exp, 1);
1526 return convert (ptrtype, adr);
1527}
207bf485 1528
f2a71bbc
JM
1529/* Convert the function expression EXP to a pointer. */
1530static tree
1531function_to_pointer_conversion (tree exp)
1532{
1533 tree orig_exp = exp;
207bf485 1534
f2a71bbc 1535 gcc_assert (TREE_CODE (TREE_TYPE (exp)) == FUNCTION_TYPE);
207bf485 1536
f2a71bbc 1537 STRIP_TYPE_NOPS (exp);
207bf485 1538
f2a71bbc
JM
1539 if (TREE_NO_WARNING (orig_exp))
1540 TREE_NO_WARNING (exp) = 1;
207bf485 1541
f2a71bbc
JM
1542 return build_unary_op (ADDR_EXPR, exp, 0);
1543}
207bf485 1544
f2a71bbc
JM
1545/* Perform the default conversion of arrays and functions to pointers.
1546 Return the result of converting EXP. For any other expression, just
1547 return EXP after removing NOPs. */
1548
1549struct c_expr
1550default_function_array_conversion (struct c_expr exp)
1551{
1552 tree orig_exp = exp.value;
1553 tree type = TREE_TYPE (exp.value);
1554 enum tree_code code = TREE_CODE (type);
1555
1556 switch (code)
1557 {
1558 case ARRAY_TYPE:
1559 {
1560 bool not_lvalue = false;
1561 bool lvalue_array_p;
1562
1563 while ((TREE_CODE (exp.value) == NON_LVALUE_EXPR
718699e9
JM
1564 || TREE_CODE (exp.value) == NOP_EXPR
1565 || TREE_CODE (exp.value) == CONVERT_EXPR)
f2a71bbc
JM
1566 && TREE_TYPE (TREE_OPERAND (exp.value, 0)) == type)
1567 {
1568 if (TREE_CODE (exp.value) == NON_LVALUE_EXPR)
1569 not_lvalue = true;
1570 exp.value = TREE_OPERAND (exp.value, 0);
1571 }
1572
1573 if (TREE_NO_WARNING (orig_exp))
1574 TREE_NO_WARNING (exp.value) = 1;
1575
1576 lvalue_array_p = !not_lvalue && lvalue_p (exp.value);
1577 if (!flag_isoc99 && !lvalue_array_p)
1578 {
1579 /* Before C99, non-lvalue arrays do not decay to pointers.
1580 Normally, using such an array would be invalid; but it can
1581 be used correctly inside sizeof or as a statement expression.
1582 Thus, do not give an error here; an error will result later. */
1583 return exp;
1584 }
1585
1586 exp.value = array_to_pointer_conversion (exp.value);
1587 }
1588 break;
1589 case FUNCTION_TYPE:
1590 exp.value = function_to_pointer_conversion (exp.value);
1591 break;
1592 default:
1593 STRIP_TYPE_NOPS (exp.value);
1594 if (TREE_NO_WARNING (orig_exp))
1595 TREE_NO_WARNING (exp.value) = 1;
1596 break;
207bf485 1597 }
f2a71bbc 1598
207bf485
JM
1599 return exp;
1600}
1601
522ddfa2
JM
1602
1603/* EXP is an expression of integer type. Apply the integer promotions
1604 to it and return the promoted value. */
400fbf9f
JW
1605
1606tree
522ddfa2 1607perform_integral_promotions (tree exp)
400fbf9f 1608{
b3694847
SS
1609 tree type = TREE_TYPE (exp);
1610 enum tree_code code = TREE_CODE (type);
400fbf9f 1611
522ddfa2 1612 gcc_assert (INTEGRAL_TYPE_P (type));
157689c6 1613
400fbf9f
JW
1614 /* Normally convert enums to int,
1615 but convert wide enums to something wider. */
1616 if (code == ENUMERAL_TYPE)
1617 {
b0c48229
NB
1618 type = c_common_type_for_size (MAX (TYPE_PRECISION (type),
1619 TYPE_PRECISION (integer_type_node)),
1620 ((TYPE_PRECISION (type)
1621 >= TYPE_PRECISION (integer_type_node))
8df83eae 1622 && TYPE_UNSIGNED (type)));
05bccae2 1623
400fbf9f
JW
1624 return convert (type, exp);
1625 }
1626
522ddfa2
JM
1627 /* ??? This should no longer be needed now bit-fields have their
1628 proper types. */
9753f113 1629 if (TREE_CODE (exp) == COMPONENT_REF
05bccae2 1630 && DECL_C_BIT_FIELD (TREE_OPERAND (exp, 1))
cff9c407 1631 /* If it's thinner than an int, promote it like a
d72040f5 1632 c_promoting_integer_type_p, otherwise leave it alone. */
05bccae2
RK
1633 && 0 > compare_tree_int (DECL_SIZE (TREE_OPERAND (exp, 1)),
1634 TYPE_PRECISION (integer_type_node)))
f458d1d5 1635 return convert (integer_type_node, exp);
9753f113 1636
d72040f5 1637 if (c_promoting_integer_type_p (type))
400fbf9f 1638 {
f458d1d5 1639 /* Preserve unsignedness if not really getting any wider. */
8df83eae 1640 if (TYPE_UNSIGNED (type)
f458d1d5 1641 && TYPE_PRECISION (type) == TYPE_PRECISION (integer_type_node))
400fbf9f 1642 return convert (unsigned_type_node, exp);
05bccae2 1643
400fbf9f
JW
1644 return convert (integer_type_node, exp);
1645 }
05bccae2 1646
522ddfa2
JM
1647 return exp;
1648}
1649
1650
1651/* Perform default promotions for C data used in expressions.
46bdb9cf 1652 Enumeral types or short or char are converted to int.
522ddfa2
JM
1653 In addition, manifest constants symbols are replaced by their values. */
1654
1655tree
1656default_conversion (tree exp)
1657{
1658 tree orig_exp;
1659 tree type = TREE_TYPE (exp);
1660 enum tree_code code = TREE_CODE (type);
1661
46bdb9cf
JM
1662 /* Functions and arrays have been converted during parsing. */
1663 gcc_assert (code != FUNCTION_TYPE);
1664 if (code == ARRAY_TYPE)
1665 return exp;
522ddfa2
JM
1666
1667 /* Constants can be used directly unless they're not loadable. */
1668 if (TREE_CODE (exp) == CONST_DECL)
1669 exp = DECL_INITIAL (exp);
1670
1671 /* Replace a nonvolatile const static variable with its value unless
1672 it is an array, in which case we must be sure that taking the
1673 address of the array produces consistent results. */
1674 else if (optimize && TREE_CODE (exp) == VAR_DECL && code != ARRAY_TYPE)
1675 {
1676 exp = decl_constant_value_for_broken_optimization (exp);
1677 type = TREE_TYPE (exp);
1678 }
1679
1680 /* Strip no-op conversions. */
1681 orig_exp = exp;
1682 STRIP_TYPE_NOPS (exp);
1683
1684 if (TREE_NO_WARNING (orig_exp))
1685 TREE_NO_WARNING (exp) = 1;
1686
1687 if (INTEGRAL_TYPE_P (type))
1688 return perform_integral_promotions (exp);
1689
400fbf9f
JW
1690 if (code == VOID_TYPE)
1691 {
1692 error ("void value not ignored as it ought to be");
1693 return error_mark_node;
1694 }
400fbf9f
JW
1695 return exp;
1696}
1697\f
e9b2c823
NB
1698/* Look up COMPONENT in a structure or union DECL.
1699
1700 If the component name is not found, returns NULL_TREE. Otherwise,
1701 the return value is a TREE_LIST, with each TREE_VALUE a FIELD_DECL
1702 stepping down the chain to the component, which is in the last
1703 TREE_VALUE of the list. Normally the list is of length one, but if
1704 the component is embedded within (nested) anonymous structures or
1705 unions, the list steps down the chain to the component. */
2f6e4e97 1706
2f2d13da 1707static tree
2f6e4e97 1708lookup_field (tree decl, tree component)
2f2d13da 1709{
e9b2c823 1710 tree type = TREE_TYPE (decl);
2f2d13da
DE
1711 tree field;
1712
1713 /* If TYPE_LANG_SPECIFIC is set, then it is a sorted array of pointers
1714 to the field elements. Use a binary search on this array to quickly
1715 find the element. Otherwise, do a linear search. TYPE_LANG_SPECIFIC
1716 will always be set for structures which have many elements. */
1717
22a0b85f 1718 if (TYPE_LANG_SPECIFIC (type) && TYPE_LANG_SPECIFIC (type)->s)
2f2d13da
DE
1719 {
1720 int bot, top, half;
d07605f5 1721 tree *field_array = &TYPE_LANG_SPECIFIC (type)->s->elts[0];
2f2d13da
DE
1722
1723 field = TYPE_FIELDS (type);
1724 bot = 0;
d07605f5 1725 top = TYPE_LANG_SPECIFIC (type)->s->len;
2f2d13da
DE
1726 while (top - bot > 1)
1727 {
2f2d13da
DE
1728 half = (top - bot + 1) >> 1;
1729 field = field_array[bot+half];
1730
1731 if (DECL_NAME (field) == NULL_TREE)
1732 {
1733 /* Step through all anon unions in linear fashion. */
1734 while (DECL_NAME (field_array[bot]) == NULL_TREE)
1735 {
2f2d13da 1736 field = field_array[bot++];
a68b98cf
RK
1737 if (TREE_CODE (TREE_TYPE (field)) == RECORD_TYPE
1738 || TREE_CODE (TREE_TYPE (field)) == UNION_TYPE)
19d76e60 1739 {
e9b2c823
NB
1740 tree anon = lookup_field (field, component);
1741
1742 if (anon)
1743 return tree_cons (NULL_TREE, field, anon);
2f6e4e97 1744 }
2f2d13da
DE
1745 }
1746
1747 /* Entire record is only anon unions. */
1748 if (bot > top)
1749 return NULL_TREE;
1750
1751 /* Restart the binary search, with new lower bound. */
1752 continue;
1753 }
1754
e8b87aac 1755 if (DECL_NAME (field) == component)
2f2d13da 1756 break;
e8b87aac 1757 if (DECL_NAME (field) < component)
2f2d13da
DE
1758 bot += half;
1759 else
1760 top = bot + half;
1761 }
1762
1763 if (DECL_NAME (field_array[bot]) == component)
1764 field = field_array[bot];
1765 else if (DECL_NAME (field) != component)
e9b2c823 1766 return NULL_TREE;
2f2d13da
DE
1767 }
1768 else
1769 {
1770 for (field = TYPE_FIELDS (type); field; field = TREE_CHAIN (field))
1771 {
e9b2c823
NB
1772 if (DECL_NAME (field) == NULL_TREE
1773 && (TREE_CODE (TREE_TYPE (field)) == RECORD_TYPE
1774 || TREE_CODE (TREE_TYPE (field)) == UNION_TYPE))
2f2d13da 1775 {
e9b2c823 1776 tree anon = lookup_field (field, component);
a68b98cf 1777
e9b2c823
NB
1778 if (anon)
1779 return tree_cons (NULL_TREE, field, anon);
2f2d13da
DE
1780 }
1781
1782 if (DECL_NAME (field) == component)
1783 break;
1784 }
e9b2c823
NB
1785
1786 if (field == NULL_TREE)
1787 return NULL_TREE;
2f2d13da
DE
1788 }
1789
e9b2c823 1790 return tree_cons (NULL_TREE, field, NULL_TREE);
2f2d13da
DE
1791}
1792
400fbf9f
JW
1793/* Make an expression to refer to the COMPONENT field of
1794 structure or union value DATUM. COMPONENT is an IDENTIFIER_NODE. */
1795
1796tree
2f6e4e97 1797build_component_ref (tree datum, tree component)
400fbf9f 1798{
b3694847
SS
1799 tree type = TREE_TYPE (datum);
1800 enum tree_code code = TREE_CODE (type);
1801 tree field = NULL;
1802 tree ref;
400fbf9f 1803
7a3ea201
RH
1804 if (!objc_is_public (datum, component))
1805 return error_mark_node;
1806
400fbf9f
JW
1807 /* See if there is a field or component with name COMPONENT. */
1808
1809 if (code == RECORD_TYPE || code == UNION_TYPE)
1810 {
d0f062fb 1811 if (!COMPLETE_TYPE_P (type))
400fbf9f 1812 {
7a228918 1813 c_incomplete_type_error (NULL_TREE, type);
400fbf9f
JW
1814 return error_mark_node;
1815 }
1816
e9b2c823 1817 field = lookup_field (datum, component);
400fbf9f
JW
1818
1819 if (!field)
1820 {
c51a1ba9 1821 error ("%qT has no member named %qE", type, component);
400fbf9f
JW
1822 return error_mark_node;
1823 }
400fbf9f 1824
e9b2c823
NB
1825 /* Chain the COMPONENT_REFs if necessary down to the FIELD.
1826 This might be better solved in future the way the C++ front
1827 end does it - by giving the anonymous entities each a
1828 separate name and type, and then have build_component_ref
1829 recursively call itself. We can't do that here. */
46ea50cb 1830 do
19d76e60 1831 {
e9b2c823 1832 tree subdatum = TREE_VALUE (field);
efed193e
JM
1833 int quals;
1834 tree subtype;
e9b2c823
NB
1835
1836 if (TREE_TYPE (subdatum) == error_mark_node)
1837 return error_mark_node;
1838
efed193e
JM
1839 quals = TYPE_QUALS (strip_array_types (TREE_TYPE (subdatum)));
1840 quals |= TYPE_QUALS (TREE_TYPE (datum));
1841 subtype = c_build_qualified_type (TREE_TYPE (subdatum), quals);
1842
1843 ref = build3 (COMPONENT_REF, subtype, datum, subdatum,
53fb4de3 1844 NULL_TREE);
e9b2c823 1845 if (TREE_READONLY (datum) || TREE_READONLY (subdatum))
19d76e60 1846 TREE_READONLY (ref) = 1;
e9b2c823 1847 if (TREE_THIS_VOLATILE (datum) || TREE_THIS_VOLATILE (subdatum))
19d76e60 1848 TREE_THIS_VOLATILE (ref) = 1;
e23bd218
IR
1849
1850 if (TREE_DEPRECATED (subdatum))
1851 warn_deprecated_use (subdatum);
1852
19d76e60 1853 datum = ref;
46ea50cb
RS
1854
1855 field = TREE_CHAIN (field);
19d76e60 1856 }
46ea50cb 1857 while (field);
19d76e60 1858
400fbf9f
JW
1859 return ref;
1860 }
1861 else if (code != ERROR_MARK)
c51a1ba9
JM
1862 error ("request for member %qE in something not a structure or union",
1863 component);
400fbf9f
JW
1864
1865 return error_mark_node;
1866}
1867\f
1868/* Given an expression PTR for a pointer, return an expression
1869 for the value pointed to.
1870 ERRORSTRING is the name of the operator to appear in error messages. */
1871
1872tree
2f6e4e97 1873build_indirect_ref (tree ptr, const char *errorstring)
400fbf9f 1874{
b3694847
SS
1875 tree pointer = default_conversion (ptr);
1876 tree type = TREE_TYPE (pointer);
400fbf9f
JW
1877
1878 if (TREE_CODE (type) == POINTER_TYPE)
870cc33b 1879 {
79bedddc
SR
1880 if (TREE_CODE (pointer) == CONVERT_EXPR
1881 || TREE_CODE (pointer) == NOP_EXPR
1882 || TREE_CODE (pointer) == VIEW_CONVERT_EXPR)
1883 {
1884 /* If a warning is issued, mark it to avoid duplicates from
1885 the backend. This only needs to be done at
1886 warn_strict_aliasing > 2. */
1887 if (warn_strict_aliasing > 2)
1888 if (strict_aliasing_warning (TREE_TYPE (TREE_OPERAND (pointer, 0)),
1889 type, TREE_OPERAND (pointer, 0)))
1890 TREE_NO_WARNING (pointer) = 1;
1891 }
1892
870cc33b 1893 if (TREE_CODE (pointer) == ADDR_EXPR
870cc33b
RS
1894 && (TREE_TYPE (TREE_OPERAND (pointer, 0))
1895 == TREE_TYPE (type)))
1896 return TREE_OPERAND (pointer, 0);
1897 else
1898 {
1899 tree t = TREE_TYPE (type);
46df2823
JM
1900 tree ref;
1901
984dfd8c 1902 ref = build1 (INDIRECT_REF, t, pointer);
400fbf9f 1903
baae9b65 1904 if (!COMPLETE_OR_VOID_TYPE_P (t) && TREE_CODE (t) != ARRAY_TYPE)
870cc33b
RS
1905 {
1906 error ("dereferencing pointer to incomplete type");
1907 return error_mark_node;
1908 }
baae9b65 1909 if (VOID_TYPE_P (t) && skip_evaluation == 0)
d4ee4d25 1910 warning (0, "dereferencing %<void *%> pointer");
870cc33b
RS
1911
1912 /* We *must* set TREE_READONLY when dereferencing a pointer to const,
1913 so that we get the proper error message if the result is used
1914 to assign to. Also, &* is supposed to be a no-op.
1915 And ANSI C seems to specify that the type of the result
1916 should be the const type. */
1917 /* A de-reference of a pointer to const is not a const. It is valid
1918 to change it via some other pointer. */
1919 TREE_READONLY (ref) = TYPE_READONLY (t);
1920 TREE_SIDE_EFFECTS (ref)
271bd540 1921 = TYPE_VOLATILE (t) || TREE_SIDE_EFFECTS (pointer);
493692cd 1922 TREE_THIS_VOLATILE (ref) = TYPE_VOLATILE (t);
870cc33b
RS
1923 return ref;
1924 }
1925 }
400fbf9f 1926 else if (TREE_CODE (pointer) != ERROR_MARK)
2c751309 1927 error ("invalid type argument of %qs (have %qT)", errorstring, type);
400fbf9f
JW
1928 return error_mark_node;
1929}
1930
1931/* This handles expressions of the form "a[i]", which denotes
1932 an array reference.
1933
1934 This is logically equivalent in C to *(a+i), but we may do it differently.
1935 If A is a variable or a member, we generate a primitive ARRAY_REF.
1936 This avoids forcing the array out of registers, and can work on
1937 arrays that are not lvalues (for example, members of structures returned
1938 by functions). */
1939
1940tree
2f6e4e97 1941build_array_ref (tree array, tree index)
400fbf9f 1942{
a4ab7973 1943 bool swapped = false;
400fbf9f
JW
1944 if (TREE_TYPE (array) == error_mark_node
1945 || TREE_TYPE (index) == error_mark_node)
1946 return error_mark_node;
1947
a4ab7973
JM
1948 if (TREE_CODE (TREE_TYPE (array)) != ARRAY_TYPE
1949 && TREE_CODE (TREE_TYPE (array)) != POINTER_TYPE)
400fbf9f 1950 {
a4ab7973
JM
1951 tree temp;
1952 if (TREE_CODE (TREE_TYPE (index)) != ARRAY_TYPE
1953 && TREE_CODE (TREE_TYPE (index)) != POINTER_TYPE)
fdeefd49 1954 {
a4ab7973 1955 error ("subscripted value is neither array nor pointer");
fdeefd49
RS
1956 return error_mark_node;
1957 }
a4ab7973
JM
1958 temp = array;
1959 array = index;
1960 index = temp;
1961 swapped = true;
1962 }
1963
1964 if (!INTEGRAL_TYPE_P (TREE_TYPE (index)))
1965 {
1966 error ("array subscript is not an integer");
1967 return error_mark_node;
1968 }
1969
1970 if (TREE_CODE (TREE_TYPE (TREE_TYPE (array))) == FUNCTION_TYPE)
1971 {
1972 error ("subscripted value is pointer to function");
1973 return error_mark_node;
1974 }
1975
ff6b6641
GDR
1976 /* ??? Existing practice has been to warn only when the char
1977 index is syntactically the index, not for char[array]. */
1978 if (!swapped)
1979 warn_array_subscript_with_type_char (index);
a4ab7973
JM
1980
1981 /* Apply default promotions *after* noticing character types. */
1982 index = default_conversion (index);
1983
1984 gcc_assert (TREE_CODE (TREE_TYPE (index)) == INTEGER_TYPE);
1985
1986 if (TREE_CODE (TREE_TYPE (array)) == ARRAY_TYPE)
1987 {
1988 tree rval, type;
fdeefd49 1989
400fbf9f
JW
1990 /* An array that is indexed by a non-constant
1991 cannot be stored in a register; we must be able to do
1992 address arithmetic on its address.
1993 Likewise an array of elements of variable size. */
1994 if (TREE_CODE (index) != INTEGER_CST
d0f062fb 1995 || (COMPLETE_TYPE_P (TREE_TYPE (TREE_TYPE (array)))
400fbf9f
JW
1996 && TREE_CODE (TYPE_SIZE (TREE_TYPE (TREE_TYPE (array)))) != INTEGER_CST))
1997 {
dffd7eb6 1998 if (!c_mark_addressable (array))
400fbf9f
JW
1999 return error_mark_node;
2000 }
e6d52559
JW
2001 /* An array that is indexed by a constant value which is not within
2002 the array bounds cannot be stored in a register either; because we
2003 would get a crash in store_bit_field/extract_bit_field when trying
2004 to access a non-existent part of the register. */
2005 if (TREE_CODE (index) == INTEGER_CST
eb34af89 2006 && TYPE_DOMAIN (TREE_TYPE (array))
3f75a254 2007 && !int_fits_type_p (index, TYPE_DOMAIN (TREE_TYPE (array))))
e6d52559 2008 {
dffd7eb6 2009 if (!c_mark_addressable (array))
e6d52559
JW
2010 return error_mark_node;
2011 }
400fbf9f 2012
400fbf9f
JW
2013 if (pedantic)
2014 {
2015 tree foo = array;
2016 while (TREE_CODE (foo) == COMPONENT_REF)
2017 foo = TREE_OPERAND (foo, 0);
5baeaac0 2018 if (TREE_CODE (foo) == VAR_DECL && C_DECL_REGISTER (foo))
bda67431 2019 pedwarn ("ISO C forbids subscripting %<register%> array");
3f75a254 2020 else if (!flag_isoc99 && !lvalue_p (foo))
56508306 2021 pedwarn ("ISO C90 forbids subscripting non-lvalue array");
400fbf9f
JW
2022 }
2023
46df2823
JM
2024 type = TREE_TYPE (TREE_TYPE (array));
2025 if (TREE_CODE (type) != ARRAY_TYPE)
2026 type = TYPE_MAIN_VARIANT (type);
53fb4de3 2027 rval = build4 (ARRAY_REF, type, array, index, NULL_TREE, NULL_TREE);
400fbf9f 2028 /* Array ref is const/volatile if the array elements are
c22cacf3 2029 or if the array is. */
400fbf9f
JW
2030 TREE_READONLY (rval)
2031 |= (TYPE_READONLY (TREE_TYPE (TREE_TYPE (array)))
2032 | TREE_READONLY (array));
2033 TREE_SIDE_EFFECTS (rval)
2034 |= (TYPE_VOLATILE (TREE_TYPE (TREE_TYPE (array)))
2035 | TREE_SIDE_EFFECTS (array));
2036 TREE_THIS_VOLATILE (rval)
2037 |= (TYPE_VOLATILE (TREE_TYPE (TREE_TYPE (array)))
2038 /* This was added by rms on 16 Nov 91.
2f6e4e97 2039 It fixes vol struct foo *a; a->elts[1]
400fbf9f
JW
2040 in an inline function.
2041 Hope it doesn't break something else. */
2042 | TREE_THIS_VOLATILE (array));
2043 return require_complete_type (fold (rval));
2044 }
a4ab7973
JM
2045 else
2046 {
2047 tree ar = default_conversion (array);
400fbf9f 2048
a4ab7973
JM
2049 if (ar == error_mark_node)
2050 return ar;
400fbf9f 2051
a4ab7973
JM
2052 gcc_assert (TREE_CODE (TREE_TYPE (ar)) == POINTER_TYPE);
2053 gcc_assert (TREE_CODE (TREE_TYPE (TREE_TYPE (ar))) != FUNCTION_TYPE);
400fbf9f 2054
a4ab7973
JM
2055 return build_indirect_ref (build_binary_op (PLUS_EXPR, ar, index, 0),
2056 "array indexing");
2057 }
400fbf9f
JW
2058}
2059\f
7e585d16 2060/* Build an external reference to identifier ID. FUN indicates
766beb40
JM
2061 whether this will be used for a function call. LOC is the source
2062 location of the identifier. */
7e585d16 2063tree
766beb40 2064build_external_ref (tree id, int fun, location_t loc)
7e585d16
ZW
2065{
2066 tree ref;
2067 tree decl = lookup_name (id);
16b34ad6
ZL
2068
2069 /* In Objective-C, an instance variable (ivar) may be preferred to
2070 whatever lookup_name() found. */
2071 decl = objc_lookup_ivar (decl, id);
7e585d16 2072
339a28b9 2073 if (decl && decl != error_mark_node)
16b34ad6 2074 ref = decl;
339a28b9
ZW
2075 else if (fun)
2076 /* Implicit function declaration. */
2077 ref = implicitly_declare (id);
2078 else if (decl == error_mark_node)
2079 /* Don't complain about something that's already been
2080 complained about. */
2081 return error_mark_node;
2082 else
2083 {
766beb40 2084 undeclared_variable (id, loc);
339a28b9
ZW
2085 return error_mark_node;
2086 }
7e585d16
ZW
2087
2088 if (TREE_TYPE (ref) == error_mark_node)
2089 return error_mark_node;
2090
339a28b9
ZW
2091 if (TREE_DEPRECATED (ref))
2092 warn_deprecated_use (ref);
2093
ad960f56
MLI
2094 /* Recursive call does not count as usage. */
2095 if (ref != current_function_decl)
2096 {
2097 if (!skip_evaluation)
2098 assemble_external (ref);
2099 TREE_USED (ref) = 1;
2100 }
7e585d16 2101
bc4b653b
JM
2102 if (TREE_CODE (ref) == FUNCTION_DECL && !in_alignof)
2103 {
2104 if (!in_sizeof && !in_typeof)
2105 C_DECL_USED (ref) = 1;
2106 else if (DECL_INITIAL (ref) == 0
2107 && DECL_EXTERNAL (ref)
2108 && !TREE_PUBLIC (ref))
2109 record_maybe_used_decl (ref);
2110 }
2111
7e585d16
ZW
2112 if (TREE_CODE (ref) == CONST_DECL)
2113 {
6193b8b7 2114 used_types_insert (TREE_TYPE (ref));
7e585d16
ZW
2115 ref = DECL_INITIAL (ref);
2116 TREE_CONSTANT (ref) = 1;
6de9cd9a 2117 TREE_INVARIANT (ref) = 1;
7e585d16 2118 }
6a29edea 2119 else if (current_function_decl != 0
4b1e44be 2120 && !DECL_FILE_SCOPE_P (current_function_decl)
6a29edea
EB
2121 && (TREE_CODE (ref) == VAR_DECL
2122 || TREE_CODE (ref) == PARM_DECL
2123 || TREE_CODE (ref) == FUNCTION_DECL))
2124 {
2125 tree context = decl_function_context (ref);
2f6e4e97 2126
6a29edea
EB
2127 if (context != 0 && context != current_function_decl)
2128 DECL_NONLOCAL (ref) = 1;
2129 }
71113fcd
GK
2130 /* C99 6.7.4p3: An inline definition of a function with external
2131 linkage ... shall not contain a reference to an identifier with
2132 internal linkage. */
2133 else if (current_function_decl != 0
2134 && DECL_DECLARED_INLINE_P (current_function_decl)
2135 && DECL_EXTERNAL (current_function_decl)
2136 && VAR_OR_FUNCTION_DECL_P (ref)
2137 && (TREE_CODE (ref) != VAR_DECL || TREE_STATIC (ref))
2138 && ! TREE_PUBLIC (ref))
2139 pedwarn ("%H%qD is static but used in inline function %qD "
2140 "which is not static", &loc, ref, current_function_decl);
7e585d16
ZW
2141
2142 return ref;
2143}
2144
bc4b653b
JM
2145/* Record details of decls possibly used inside sizeof or typeof. */
2146struct maybe_used_decl
2147{
2148 /* The decl. */
2149 tree decl;
2150 /* The level seen at (in_sizeof + in_typeof). */
2151 int level;
2152 /* The next one at this level or above, or NULL. */
2153 struct maybe_used_decl *next;
2154};
2155
2156static struct maybe_used_decl *maybe_used_decls;
2157
2158/* Record that DECL, an undefined static function reference seen
2159 inside sizeof or typeof, might be used if the operand of sizeof is
2160 a VLA type or the operand of typeof is a variably modified
2161 type. */
2162
4e2fb7de 2163static void
bc4b653b
JM
2164record_maybe_used_decl (tree decl)
2165{
2166 struct maybe_used_decl *t = XOBNEW (&parser_obstack, struct maybe_used_decl);
2167 t->decl = decl;
2168 t->level = in_sizeof + in_typeof;
2169 t->next = maybe_used_decls;
2170 maybe_used_decls = t;
2171}
2172
2173/* Pop the stack of decls possibly used inside sizeof or typeof. If
2174 USED is false, just discard them. If it is true, mark them used
2175 (if no longer inside sizeof or typeof) or move them to the next
2176 level up (if still inside sizeof or typeof). */
2177
2178void
2179pop_maybe_used (bool used)
2180{
2181 struct maybe_used_decl *p = maybe_used_decls;
2182 int cur_level = in_sizeof + in_typeof;
2183 while (p && p->level > cur_level)
2184 {
2185 if (used)
2186 {
2187 if (cur_level == 0)
2188 C_DECL_USED (p->decl) = 1;
2189 else
2190 p->level = cur_level;
2191 }
2192 p = p->next;
2193 }
2194 if (!used || cur_level == 0)
2195 maybe_used_decls = p;
2196}
2197
2198/* Return the result of sizeof applied to EXPR. */
2199
2200struct c_expr
2201c_expr_sizeof_expr (struct c_expr expr)
2202{
2203 struct c_expr ret;
ad97f4be
JM
2204 if (expr.value == error_mark_node)
2205 {
2206 ret.value = error_mark_node;
2207 ret.original_code = ERROR_MARK;
2208 pop_maybe_used (false);
2209 }
2210 else
2211 {
2212 ret.value = c_sizeof (TREE_TYPE (expr.value));
2213 ret.original_code = ERROR_MARK;
52ffd86e
MS
2214 if (c_vla_type_p (TREE_TYPE (expr.value)))
2215 {
2216 /* sizeof is evaluated when given a vla (C99 6.5.3.4p2). */
2217 ret.value = build2 (COMPOUND_EXPR, TREE_TYPE (ret.value), expr.value, ret.value);
2218 }
ad97f4be
JM
2219 pop_maybe_used (C_TYPE_VARIABLE_SIZE (TREE_TYPE (expr.value)));
2220 }
bc4b653b
JM
2221 return ret;
2222}
2223
2224/* Return the result of sizeof applied to T, a structure for the type
2225 name passed to sizeof (rather than the type itself). */
2226
2227struct c_expr
f8893e47 2228c_expr_sizeof_type (struct c_type_name *t)
bc4b653b
JM
2229{
2230 tree type;
2231 struct c_expr ret;
2232 type = groktypename (t);
2233 ret.value = c_sizeof (type);
2234 ret.original_code = ERROR_MARK;
16464cc1
VR
2235 pop_maybe_used (type != error_mark_node
2236 ? C_TYPE_VARIABLE_SIZE (type) : false);
bc4b653b
JM
2237 return ret;
2238}
2239
400fbf9f
JW
2240/* Build a function call to function FUNCTION with parameters PARAMS.
2241 PARAMS is a list--a chain of TREE_LIST nodes--in which the
2242 TREE_VALUE of each node is a parameter-expression.
2243 FUNCTION's data type may be a function type or a pointer-to-function. */
2244
2245tree
2f6e4e97 2246build_function_call (tree function, tree params)
400fbf9f 2247{
b3694847 2248 tree fntype, fundecl = 0;
4977bab6 2249 tree name = NULL_TREE, result;
c96f4f73 2250 tree tem;
94a0dd7b
SL
2251 int nargs;
2252 tree *argarray;
2253
400fbf9f 2254
fc76e425 2255 /* Strip NON_LVALUE_EXPRs, etc., since we aren't using as an lvalue. */
a7d53fce 2256 STRIP_TYPE_NOPS (function);
400fbf9f
JW
2257
2258 /* Convert anything with function type to a pointer-to-function. */
2259 if (TREE_CODE (function) == FUNCTION_DECL)
2260 {
58646b77
PB
2261 /* Implement type-directed function overloading for builtins.
2262 resolve_overloaded_builtin and targetm.resolve_overloaded_builtin
2263 handle all the type checking. The result is a complete expression
2264 that implements this function call. */
2265 tem = resolve_overloaded_builtin (function, params);
2266 if (tem)
2267 return tem;
48ae6c13 2268
400fbf9f 2269 name = DECL_NAME (function);
a5eadacc 2270 fundecl = function;
400fbf9f 2271 }
f2a71bbc
JM
2272 if (TREE_CODE (TREE_TYPE (function)) == FUNCTION_TYPE)
2273 function = function_to_pointer_conversion (function);
400fbf9f 2274
6e955430
ZL
2275 /* For Objective-C, convert any calls via a cast to OBJC_TYPE_REF
2276 expressions, like those used for ObjC messenger dispatches. */
2277 function = objc_rewrite_function_call (function, params);
2278
400fbf9f
JW
2279 fntype = TREE_TYPE (function);
2280
2281 if (TREE_CODE (fntype) == ERROR_MARK)
2282 return error_mark_node;
2283
2284 if (!(TREE_CODE (fntype) == POINTER_TYPE
2285 && TREE_CODE (TREE_TYPE (fntype)) == FUNCTION_TYPE))
2286 {
f0c721ad 2287 error ("called object %qE is not a function", function);
400fbf9f
JW
2288 return error_mark_node;
2289 }
2290
5ce89b2e
JM
2291 if (fundecl && TREE_THIS_VOLATILE (fundecl))
2292 current_function_returns_abnormally = 1;
2293
400fbf9f
JW
2294 /* fntype now gets the type of function pointed to. */
2295 fntype = TREE_TYPE (fntype);
2296
c96f4f73
EB
2297 /* Check that the function is called through a compatible prototype.
2298 If it is not, replace the call by a trap, wrapped up in a compound
2299 expression if necessary. This has the nice side-effect to prevent
2300 the tree-inliner from generating invalid assignment trees which may
58393038 2301 blow up in the RTL expander later. */
718699e9
JM
2302 if ((TREE_CODE (function) == NOP_EXPR
2303 || TREE_CODE (function) == CONVERT_EXPR)
c96f4f73
EB
2304 && TREE_CODE (tem = TREE_OPERAND (function, 0)) == ADDR_EXPR
2305 && TREE_CODE (tem = TREE_OPERAND (tem, 0)) == FUNCTION_DECL
3f75a254 2306 && !comptypes (fntype, TREE_TYPE (tem)))
c96f4f73
EB
2307 {
2308 tree return_type = TREE_TYPE (fntype);
2309 tree trap = build_function_call (built_in_decls[BUILT_IN_TRAP],
2310 NULL_TREE);
2311
2312 /* This situation leads to run-time undefined behavior. We can't,
2313 therefore, simply error unless we can prove that all possible
2314 executions of the program must execute the code. */
d4ee4d25 2315 warning (0, "function called through a non-compatible type");
c96f4f73 2316
bba745c1
EB
2317 /* We can, however, treat "undefined" any way we please.
2318 Call abort to encourage the user to fix the program. */
2319 inform ("if this code is reached, the program will abort");
2320
c96f4f73
EB
2321 if (VOID_TYPE_P (return_type))
2322 return trap;
2323 else
2324 {
2325 tree rhs;
2326
2327 if (AGGREGATE_TYPE_P (return_type))
2328 rhs = build_compound_literal (return_type,
4038c495 2329 build_constructor (return_type, 0));
c96f4f73 2330 else
4c7a6c1b 2331 rhs = fold_convert (return_type, integer_zero_node);
c96f4f73 2332
53fb4de3 2333 return build2 (COMPOUND_EXPR, return_type, trap, rhs);
c96f4f73
EB
2334 }
2335 }
2336
400fbf9f
JW
2337 /* Convert the parameters to the types declared in the
2338 function prototype, or apply default promotions. */
2339
94a0dd7b
SL
2340 nargs = list_length (params);
2341 argarray = (tree *) alloca (nargs * sizeof (tree));
2342 nargs = convert_arguments (nargs, argarray, TYPE_ARG_TYPES (fntype),
2343 params, function, fundecl);
2344 if (nargs < 0)
3789b316
JM
2345 return error_mark_node;
2346
b34c7881 2347 /* Check that the arguments to the function are valid. */
400fbf9f 2348
94a0dd7b 2349 check_function_arguments (TYPE_ATTRIBUTES (fntype), nargs, argarray,
10a22b11 2350 TYPE_ARG_TYPES (fntype));
400fbf9f 2351
bf730f15
RS
2352 if (require_constant_value)
2353 {
94a0dd7b
SL
2354 result = fold_build_call_array_initializer (TREE_TYPE (fntype),
2355 function, nargs, argarray);
bf730f15
RS
2356 if (TREE_CONSTANT (result)
2357 && (name == NULL_TREE
2358 || strncmp (IDENTIFIER_POINTER (name), "__builtin_", 10) != 0))
2359 pedwarn_init ("initializer element is not constant");
2360 }
2361 else
94a0dd7b
SL
2362 result = fold_build_call_array (TREE_TYPE (fntype),
2363 function, nargs, argarray);
b0b3afb2 2364
71653180 2365 if (VOID_TYPE_P (TREE_TYPE (result)))
1eb8759b
RH
2366 return result;
2367 return require_complete_type (result);
400fbf9f
JW
2368}
2369\f
2370/* Convert the argument expressions in the list VALUES
94a0dd7b
SL
2371 to the types in the list TYPELIST. The resulting arguments are
2372 stored in the array ARGARRAY which has size NARGS.
400fbf9f
JW
2373
2374 If TYPELIST is exhausted, or when an element has NULL as its type,
2375 perform the default conversions.
2376
2377 PARMLIST is the chain of parm decls for the function being called.
2378 It may be 0, if that info is not available.
2379 It is used only for generating error messages.
2380
03dafa61
JM
2381 FUNCTION is a tree for the called function. It is used only for
2382 error messages, where it is formatted with %qE.
400fbf9f
JW
2383
2384 This is also where warnings about wrong number of args are generated.
2385
94a0dd7b
SL
2386 VALUES is a chain of TREE_LIST nodes with the elements of the list
2387 in the TREE_VALUE slots of those nodes.
400fbf9f 2388
94a0dd7b
SL
2389 Returns the actual number of arguments processed (which may be less
2390 than NARGS in some error situations), or -1 on failure. */
2391
2392static int
2393convert_arguments (int nargs, tree *argarray,
2394 tree typelist, tree values, tree function, tree fundecl)
400fbf9f 2395{
b3694847 2396 tree typetail, valtail;
400fbf9f 2397 int parmnum;
b5d32c25
KG
2398 const bool type_generic = fundecl
2399 && lookup_attribute ("type generic", TYPE_ATTRIBUTES(TREE_TYPE (fundecl)));
03dafa61 2400 tree selector;
03dafa61 2401
2ac2f164
JM
2402 /* Change pointer to function to the function itself for
2403 diagnostics. */
03dafa61
JM
2404 if (TREE_CODE (function) == ADDR_EXPR
2405 && TREE_CODE (TREE_OPERAND (function, 0)) == FUNCTION_DECL)
2ac2f164 2406 function = TREE_OPERAND (function, 0);
03dafa61
JM
2407
2408 /* Handle an ObjC selector specially for diagnostics. */
2409 selector = objc_message_selector ();
400fbf9f
JW
2410
2411 /* Scan the given expressions and types, producing individual
94a0dd7b 2412 converted arguments and storing them in ARGARRAY. */
400fbf9f
JW
2413
2414 for (valtail = values, typetail = typelist, parmnum = 0;
2415 valtail;
2416 valtail = TREE_CHAIN (valtail), parmnum++)
2417 {
b3694847
SS
2418 tree type = typetail ? TREE_VALUE (typetail) : 0;
2419 tree val = TREE_VALUE (valtail);
03dafa61
JM
2420 tree rname = function;
2421 int argnum = parmnum + 1;
4d3e6fae 2422 const char *invalid_func_diag;
400fbf9f
JW
2423
2424 if (type == void_type_node)
2425 {
03dafa61 2426 error ("too many arguments to function %qE", function);
94a0dd7b 2427 return parmnum;
400fbf9f
JW
2428 }
2429
03dafa61
JM
2430 if (selector && argnum > 2)
2431 {
2432 rname = selector;
2433 argnum -= 2;
2434 }
2435
ed248cf7 2436 STRIP_TYPE_NOPS (val);
400fbf9f 2437
400fbf9f
JW
2438 val = require_complete_type (val);
2439
2440 if (type != 0)
2441 {
2442 /* Formal parm type is specified by a function prototype. */
2443 tree parmval;
2444
20913689 2445 if (type == error_mark_node || !COMPLETE_TYPE_P (type))
400fbf9f
JW
2446 {
2447 error ("type of formal parameter %d is incomplete", parmnum + 1);
2448 parmval = val;
2449 }
2450 else
2451 {
d45cf215
RS
2452 /* Optionally warn about conversions that
2453 differ from the default conversions. */
05170031 2454 if (warn_traditional_conversion || warn_traditional)
400fbf9f 2455 {
e3a64162 2456 unsigned int formal_prec = TYPE_PRECISION (type);
400fbf9f 2457
aae43c5f 2458 if (INTEGRAL_TYPE_P (type)
400fbf9f 2459 && TREE_CODE (TREE_TYPE (val)) == REAL_TYPE)
d4ee4d25 2460 warning (0, "passing argument %d of %qE as integer "
03dafa61
JM
2461 "rather than floating due to prototype",
2462 argnum, rname);
03829ad2
KG
2463 if (INTEGRAL_TYPE_P (type)
2464 && TREE_CODE (TREE_TYPE (val)) == COMPLEX_TYPE)
d4ee4d25 2465 warning (0, "passing argument %d of %qE as integer "
03dafa61
JM
2466 "rather than complex due to prototype",
2467 argnum, rname);
aae43c5f
RK
2468 else if (TREE_CODE (type) == COMPLEX_TYPE
2469 && TREE_CODE (TREE_TYPE (val)) == REAL_TYPE)
d4ee4d25 2470 warning (0, "passing argument %d of %qE as complex "
03dafa61
JM
2471 "rather than floating due to prototype",
2472 argnum, rname);
400fbf9f 2473 else if (TREE_CODE (type) == REAL_TYPE
aae43c5f 2474 && INTEGRAL_TYPE_P (TREE_TYPE (val)))
d4ee4d25 2475 warning (0, "passing argument %d of %qE as floating "
03dafa61
JM
2476 "rather than integer due to prototype",
2477 argnum, rname);
03829ad2
KG
2478 else if (TREE_CODE (type) == COMPLEX_TYPE
2479 && INTEGRAL_TYPE_P (TREE_TYPE (val)))
d4ee4d25 2480 warning (0, "passing argument %d of %qE as complex "
03dafa61
JM
2481 "rather than integer due to prototype",
2482 argnum, rname);
aae43c5f
RK
2483 else if (TREE_CODE (type) == REAL_TYPE
2484 && TREE_CODE (TREE_TYPE (val)) == COMPLEX_TYPE)
d4ee4d25 2485 warning (0, "passing argument %d of %qE as floating "
03dafa61
JM
2486 "rather than complex due to prototype",
2487 argnum, rname);
aae43c5f
RK
2488 /* ??? At some point, messages should be written about
2489 conversions between complex types, but that's too messy
2490 to do now. */
d45cf215
RS
2491 else if (TREE_CODE (type) == REAL_TYPE
2492 && TREE_CODE (TREE_TYPE (val)) == REAL_TYPE)
2493 {
2494 /* Warn if any argument is passed as `float',
047de90b 2495 since without a prototype it would be `double'. */
9a8ce21f
JG
2496 if (formal_prec == TYPE_PRECISION (float_type_node)
2497 && type != dfloat32_type_node)
d4ee4d25 2498 warning (0, "passing argument %d of %qE as %<float%> "
03dafa61
JM
2499 "rather than %<double%> due to prototype",
2500 argnum, rname);
9a8ce21f
JG
2501
2502 /* Warn if mismatch between argument and prototype
2503 for decimal float types. Warn of conversions with
2504 binary float types and of precision narrowing due to
2505 prototype. */
2506 else if (type != TREE_TYPE (val)
2507 && (type == dfloat32_type_node
2508 || type == dfloat64_type_node
c22cacf3 2509 || type == dfloat128_type_node
9a8ce21f
JG
2510 || TREE_TYPE (val) == dfloat32_type_node
2511 || TREE_TYPE (val) == dfloat64_type_node
2512 || TREE_TYPE (val) == dfloat128_type_node)
c22cacf3 2513 && (formal_prec
9a8ce21f
JG
2514 <= TYPE_PRECISION (TREE_TYPE (val))
2515 || (type == dfloat128_type_node
2516 && (TREE_TYPE (val)
c22cacf3
MS
2517 != dfloat64_type_node
2518 && (TREE_TYPE (val)
9a8ce21f
JG
2519 != dfloat32_type_node)))
2520 || (type == dfloat64_type_node
2521 && (TREE_TYPE (val)
2522 != dfloat32_type_node))))
2523 warning (0, "passing argument %d of %qE as %qT "
2524 "rather than %qT due to prototype",
2525 argnum, rname, type, TREE_TYPE (val));
2526
d45cf215 2527 }
3ed56f8a
KG
2528 /* Detect integer changing in width or signedness.
2529 These warnings are only activated with
05170031
MLI
2530 -Wtraditional-conversion, not with -Wtraditional. */
2531 else if (warn_traditional_conversion && INTEGRAL_TYPE_P (type)
aae43c5f 2532 && INTEGRAL_TYPE_P (TREE_TYPE (val)))
400fbf9f 2533 {
d45cf215
RS
2534 tree would_have_been = default_conversion (val);
2535 tree type1 = TREE_TYPE (would_have_been);
2536
754a4d82 2537 if (TREE_CODE (type) == ENUMERAL_TYPE
a38b987a
NB
2538 && (TYPE_MAIN_VARIANT (type)
2539 == TYPE_MAIN_VARIANT (TREE_TYPE (val))))
754a4d82
RS
2540 /* No warning if function asks for enum
2541 and the actual arg is that enum type. */
2542 ;
2543 else if (formal_prec != TYPE_PRECISION (type1))
05170031 2544 warning (OPT_Wtraditional_conversion, "passing argument %d of %qE "
3176a0c2
DD
2545 "with different width due to prototype",
2546 argnum, rname);
8df83eae 2547 else if (TYPE_UNSIGNED (type) == TYPE_UNSIGNED (type1))
d45cf215 2548 ;
800cd3b9
RS
2549 /* Don't complain if the formal parameter type
2550 is an enum, because we can't tell now whether
2551 the value was an enum--even the same enum. */
2552 else if (TREE_CODE (type) == ENUMERAL_TYPE)
2553 ;
400fbf9f
JW
2554 else if (TREE_CODE (val) == INTEGER_CST
2555 && int_fits_type_p (val, type))
2556 /* Change in signedness doesn't matter
2557 if a constant value is unaffected. */
2558 ;
ce9895ae
RS
2559 /* If the value is extended from a narrower
2560 unsigned type, it doesn't matter whether we
2561 pass it as signed or unsigned; the value
2562 certainly is the same either way. */
2563 else if (TYPE_PRECISION (TREE_TYPE (val)) < TYPE_PRECISION (type)
8df83eae 2564 && TYPE_UNSIGNED (TREE_TYPE (val)))
ce9895ae 2565 ;
8df83eae 2566 else if (TYPE_UNSIGNED (type))
05170031 2567 warning (OPT_Wtraditional_conversion, "passing argument %d of %qE "
3176a0c2
DD
2568 "as unsigned due to prototype",
2569 argnum, rname);
3ed56f8a 2570 else
05170031 2571 warning (OPT_Wtraditional_conversion, "passing argument %d of %qE "
3176a0c2 2572 "as signed due to prototype", argnum, rname);
400fbf9f
JW
2573 }
2574 }
2575
2ac2f164
JM
2576 parmval = convert_for_assignment (type, val, ic_argpass,
2577 fundecl, function,
2578 parmnum + 1);
2f6e4e97 2579
61f71b34 2580 if (targetm.calls.promote_prototypes (fundecl ? TREE_TYPE (fundecl) : 0)
b6d6aa84 2581 && INTEGRAL_TYPE_P (type)
400fbf9f
JW
2582 && (TYPE_PRECISION (type) < TYPE_PRECISION (integer_type_node)))
2583 parmval = default_conversion (parmval);
400fbf9f 2584 }
94a0dd7b 2585 argarray[parmnum] = parmval;
400fbf9f
JW
2586 }
2587 else if (TREE_CODE (TREE_TYPE (val)) == REAL_TYPE
c22cacf3
MS
2588 && (TYPE_PRECISION (TREE_TYPE (val))
2589 < TYPE_PRECISION (double_type_node))
9a8ce21f 2590 && !DECIMAL_FLOAT_MODE_P (TYPE_MODE (TREE_TYPE (val))))
b5d32c25
KG
2591 {
2592 if (type_generic)
2593 argarray[parmnum] = val;
2594 else
2595 /* Convert `float' to `double'. */
2596 argarray[parmnum] = convert (double_type_node, val);
2597 }
c22cacf3
MS
2598 else if ((invalid_func_diag =
2599 targetm.calls.invalid_arg_for_unprototyped_fn (typelist, fundecl, val)))
4d3e6fae
FJ
2600 {
2601 error (invalid_func_diag);
94a0dd7b 2602 return -1;
4d3e6fae 2603 }
400fbf9f
JW
2604 else
2605 /* Convert `short' and `char' to full-size `int'. */
94a0dd7b 2606 argarray[parmnum] = default_conversion (val);
400fbf9f
JW
2607
2608 if (typetail)
2609 typetail = TREE_CHAIN (typetail);
2610 }
2611
94a0dd7b
SL
2612 gcc_assert (parmnum == nargs);
2613
400fbf9f 2614 if (typetail != 0 && TREE_VALUE (typetail) != void_type_node)
3789b316
JM
2615 {
2616 error ("too few arguments to function %qE", function);
94a0dd7b 2617 return -1;
3789b316 2618 }
400fbf9f 2619
94a0dd7b 2620 return parmnum;
400fbf9f
JW
2621}
2622\f
43f6dfd3
RS
2623/* This is the entry point used by the parser to build unary operators
2624 in the input. CODE, a tree_code, specifies the unary operator, and
2625 ARG is the operand. For unary plus, the C parser currently uses
2626 CONVERT_EXPR for code. */
2627
2628struct c_expr
2629parser_build_unary_op (enum tree_code code, struct c_expr arg)
2630{
2631 struct c_expr result;
2632
2633 result.original_code = ERROR_MARK;
2634 result.value = build_unary_op (code, arg.value, 0);
59c0753d
MLI
2635
2636 if (TREE_OVERFLOW_P (result.value) && !TREE_OVERFLOW_P (arg.value))
2637 overflow_warning (result.value);
2638
43f6dfd3
RS
2639 return result;
2640}
2641
2642/* This is the entry point used by the parser to build binary operators
2643 in the input. CODE, a tree_code, specifies the binary operator, and
2644 ARG1 and ARG2 are the operands. In addition to constructing the
2645 expression, we check for operands that were written with other binary
2646 operators in a way that is likely to confuse the user. */
edc7c4ec 2647
487a92fe
JM
2648struct c_expr
2649parser_build_binary_op (enum tree_code code, struct c_expr arg1,
2650 struct c_expr arg2)
400fbf9f 2651{
487a92fe 2652 struct c_expr result;
400fbf9f 2653
487a92fe
JM
2654 enum tree_code code1 = arg1.original_code;
2655 enum tree_code code2 = arg2.original_code;
400fbf9f 2656
487a92fe
JM
2657 result.value = build_binary_op (code, arg1.value, arg2.value, 1);
2658 result.original_code = code;
58bf601b 2659
487a92fe
JM
2660 if (TREE_CODE (result.value) == ERROR_MARK)
2661 return result;
400fbf9f
JW
2662
2663 /* Check for cases such as x+y<<z which users are likely
487a92fe 2664 to misinterpret. */
400fbf9f 2665 if (warn_parentheses)
2a67bec2 2666 warn_about_parentheses (code, code1, code2);
001af587 2667
63a08740
DM
2668 if (code1 != tcc_comparison)
2669 warn_logical_operator (code, arg1.value, arg2.value);
2670
e994a705
RS
2671 /* Warn about comparisons against string literals, with the exception
2672 of testing for equality or inequality of a string literal with NULL. */
2673 if (code == EQ_EXPR || code == NE_EXPR)
2674 {
2675 if ((code1 == STRING_CST && !integer_zerop (arg2.value))
2676 || (code2 == STRING_CST && !integer_zerop (arg1.value)))
4dad0aca 2677 warning (OPT_Waddress, "comparison with string literal results in unspecified behavior");
e994a705
RS
2678 }
2679 else if (TREE_CODE_CLASS (code) == tcc_comparison
2680 && (code1 == STRING_CST || code2 == STRING_CST))
4dad0aca 2681 warning (OPT_Waddress, "comparison with string literal results in unspecified behavior");
e994a705 2682
59c0753d
MLI
2683 if (TREE_OVERFLOW_P (result.value)
2684 && !TREE_OVERFLOW_P (arg1.value)
2685 && !TREE_OVERFLOW_P (arg2.value))
2686 overflow_warning (result.value);
400fbf9f
JW
2687
2688 return result;
2689}
3e4093b6 2690\f
3e4093b6
RS
2691/* Return a tree for the difference of pointers OP0 and OP1.
2692 The resulting tree has type int. */
293c9fdd 2693
3e4093b6
RS
2694static tree
2695pointer_diff (tree op0, tree op1)
2696{
3e4093b6 2697 tree restype = ptrdiff_type_node;
400fbf9f 2698
3e4093b6
RS
2699 tree target_type = TREE_TYPE (TREE_TYPE (op0));
2700 tree con0, con1, lit0, lit1;
2701 tree orig_op1 = op1;
400fbf9f 2702
3e4093b6
RS
2703 if (pedantic || warn_pointer_arith)
2704 {
2705 if (TREE_CODE (target_type) == VOID_TYPE)
bda67431 2706 pedwarn ("pointer of type %<void *%> used in subtraction");
3e4093b6
RS
2707 if (TREE_CODE (target_type) == FUNCTION_TYPE)
2708 pedwarn ("pointer to a function used in subtraction");
2709 }
400fbf9f 2710
3e4093b6
RS
2711 /* If the conversion to ptrdiff_type does anything like widening or
2712 converting a partial to an integral mode, we get a convert_expression
2713 that is in the way to do any simplifications.
2714 (fold-const.c doesn't know that the extra bits won't be needed.
2715 split_tree uses STRIP_SIGN_NOPS, which leaves conversions to a
2716 different mode in place.)
2717 So first try to find a common term here 'by hand'; we want to cover
2718 at least the cases that occur in legal static initializers. */
1344f9a3
JM
2719 if ((TREE_CODE (op0) == NOP_EXPR || TREE_CODE (op0) == CONVERT_EXPR)
2720 && (TYPE_PRECISION (TREE_TYPE (op0))
2721 == TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (op0, 0)))))
2722 con0 = TREE_OPERAND (op0, 0);
2723 else
2724 con0 = op0;
2725 if ((TREE_CODE (op1) == NOP_EXPR || TREE_CODE (op1) == CONVERT_EXPR)
2726 && (TYPE_PRECISION (TREE_TYPE (op1))
2727 == TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (op1, 0)))))
2728 con1 = TREE_OPERAND (op1, 0);
2729 else
2730 con1 = op1;
400fbf9f 2731
3e4093b6
RS
2732 if (TREE_CODE (con0) == PLUS_EXPR)
2733 {
2734 lit0 = TREE_OPERAND (con0, 1);
2735 con0 = TREE_OPERAND (con0, 0);
2736 }
2737 else
2738 lit0 = integer_zero_node;
400fbf9f 2739
3e4093b6 2740 if (TREE_CODE (con1) == PLUS_EXPR)
400fbf9f 2741 {
3e4093b6
RS
2742 lit1 = TREE_OPERAND (con1, 1);
2743 con1 = TREE_OPERAND (con1, 0);
400fbf9f
JW
2744 }
2745 else
3e4093b6
RS
2746 lit1 = integer_zero_node;
2747
2748 if (operand_equal_p (con0, con1, 0))
400fbf9f 2749 {
3e4093b6
RS
2750 op0 = lit0;
2751 op1 = lit1;
400fbf9f
JW
2752 }
2753
400fbf9f 2754
3e4093b6
RS
2755 /* First do the subtraction as integers;
2756 then drop through to build the divide operator.
2757 Do not do default conversions on the minus operator
2758 in case restype is a short type. */
400fbf9f 2759
3e4093b6
RS
2760 op0 = build_binary_op (MINUS_EXPR, convert (restype, op0),
2761 convert (restype, op1), 0);
2762 /* This generates an error if op1 is pointer to incomplete type. */
2763 if (!COMPLETE_OR_VOID_TYPE_P (TREE_TYPE (TREE_TYPE (orig_op1))))
2764 error ("arithmetic on pointer to an incomplete type");
400fbf9f 2765
3e4093b6
RS
2766 /* This generates an error if op0 is pointer to incomplete type. */
2767 op1 = c_size_in_bytes (target_type);
400fbf9f 2768
3e4093b6 2769 /* Divide by the size, in easiest possible way. */
987b67bc 2770 return fold_build2 (EXACT_DIV_EXPR, restype, op0, convert (restype, op1));
3e4093b6
RS
2771}
2772\f
2773/* Construct and perhaps optimize a tree representation
2774 for a unary operation. CODE, a tree_code, specifies the operation
2775 and XARG is the operand.
2776 For any CODE other than ADDR_EXPR, FLAG nonzero suppresses
2777 the default promotions (such as from short to int).
2778 For ADDR_EXPR, the default promotions are not applied; FLAG nonzero
2779 allows non-lvalues; this is only used to handle conversion of non-lvalue
2780 arrays to pointers in C99. */
400fbf9f 2781
3e4093b6
RS
2782tree
2783build_unary_op (enum tree_code code, tree xarg, int flag)
2784{
2785 /* No default_conversion here. It causes trouble for ADDR_EXPR. */
2786 tree arg = xarg;
2787 tree argtype = 0;
2788 enum tree_code typecode = TREE_CODE (TREE_TYPE (arg));
2789 tree val;
2790 int noconvert = flag;
4de67c26 2791 const char *invalid_op_diag;
400fbf9f 2792
3e4093b6
RS
2793 if (typecode == ERROR_MARK)
2794 return error_mark_node;
2795 if (typecode == ENUMERAL_TYPE || typecode == BOOLEAN_TYPE)
2796 typecode = INTEGER_TYPE;
6c36d76b 2797
4de67c26
JM
2798 if ((invalid_op_diag
2799 = targetm.invalid_unary_op (code, TREE_TYPE (xarg))))
2800 {
2801 error (invalid_op_diag);
2802 return error_mark_node;
2803 }
2804
3e4093b6
RS
2805 switch (code)
2806 {
2807 case CONVERT_EXPR:
2808 /* This is used for unary plus, because a CONVERT_EXPR
2809 is enough to prevent anybody from looking inside for
2810 associativity, but won't generate any code. */
2811 if (!(typecode == INTEGER_TYPE || typecode == REAL_TYPE
8a2cee38
JB
2812 || typecode == COMPLEX_TYPE
2813 || typecode == VECTOR_TYPE))
400fbf9f 2814 {
3e4093b6
RS
2815 error ("wrong type argument to unary plus");
2816 return error_mark_node;
400fbf9f 2817 }
3e4093b6
RS
2818 else if (!noconvert)
2819 arg = default_conversion (arg);
2820 arg = non_lvalue (arg);
400fbf9f
JW
2821 break;
2822
3e4093b6
RS
2823 case NEGATE_EXPR:
2824 if (!(typecode == INTEGER_TYPE || typecode == REAL_TYPE
2825 || typecode == COMPLEX_TYPE
2826 || typecode == VECTOR_TYPE))
2827 {
2828 error ("wrong type argument to unary minus");
2829 return error_mark_node;
2830 }
2831 else if (!noconvert)
2832 arg = default_conversion (arg);
400fbf9f
JW
2833 break;
2834
3e4093b6
RS
2835 case BIT_NOT_EXPR:
2836 if (typecode == INTEGER_TYPE || typecode == VECTOR_TYPE)
03d5b1f5 2837 {
3e4093b6
RS
2838 if (!noconvert)
2839 arg = default_conversion (arg);
03d5b1f5 2840 }
3e4093b6 2841 else if (typecode == COMPLEX_TYPE)
400fbf9f 2842 {
3e4093b6
RS
2843 code = CONJ_EXPR;
2844 if (pedantic)
bda67431 2845 pedwarn ("ISO C does not support %<~%> for complex conjugation");
3e4093b6
RS
2846 if (!noconvert)
2847 arg = default_conversion (arg);
2848 }
2849 else
2850 {
2851 error ("wrong type argument to bit-complement");
2852 return error_mark_node;
400fbf9f
JW
2853 }
2854 break;
2855
3e4093b6 2856 case ABS_EXPR:
11017cc7 2857 if (!(typecode == INTEGER_TYPE || typecode == REAL_TYPE))
400fbf9f 2858 {
3e4093b6
RS
2859 error ("wrong type argument to abs");
2860 return error_mark_node;
400fbf9f 2861 }
3e4093b6
RS
2862 else if (!noconvert)
2863 arg = default_conversion (arg);
400fbf9f
JW
2864 break;
2865
3e4093b6
RS
2866 case CONJ_EXPR:
2867 /* Conjugating a real value is a no-op, but allow it anyway. */
2868 if (!(typecode == INTEGER_TYPE || typecode == REAL_TYPE
2869 || typecode == COMPLEX_TYPE))
400fbf9f 2870 {
3e4093b6
RS
2871 error ("wrong type argument to conjugation");
2872 return error_mark_node;
400fbf9f 2873 }
3e4093b6
RS
2874 else if (!noconvert)
2875 arg = default_conversion (arg);
400fbf9f
JW
2876 break;
2877
3e4093b6
RS
2878 case TRUTH_NOT_EXPR:
2879 if (typecode != INTEGER_TYPE
2880 && typecode != REAL_TYPE && typecode != POINTER_TYPE
46bdb9cf 2881 && typecode != COMPLEX_TYPE)
400fbf9f 2882 {
3e4093b6
RS
2883 error ("wrong type argument to unary exclamation mark");
2884 return error_mark_node;
400fbf9f 2885 }
85498824 2886 arg = c_objc_common_truthvalue_conversion (arg);
3e4093b6
RS
2887 return invert_truthvalue (arg);
2888
3e4093b6
RS
2889 case REALPART_EXPR:
2890 if (TREE_CODE (arg) == COMPLEX_CST)
2891 return TREE_REALPART (arg);
2892 else if (TREE_CODE (TREE_TYPE (arg)) == COMPLEX_TYPE)
987b67bc 2893 return fold_build1 (REALPART_EXPR, TREE_TYPE (TREE_TYPE (arg)), arg);
3e4093b6
RS
2894 else
2895 return arg;
605a99f6 2896
3e4093b6
RS
2897 case IMAGPART_EXPR:
2898 if (TREE_CODE (arg) == COMPLEX_CST)
2899 return TREE_IMAGPART (arg);
2900 else if (TREE_CODE (TREE_TYPE (arg)) == COMPLEX_TYPE)
987b67bc 2901 return fold_build1 (IMAGPART_EXPR, TREE_TYPE (TREE_TYPE (arg)), arg);
3e4093b6
RS
2902 else
2903 return convert (TREE_TYPE (arg), integer_zero_node);
2904
2905 case PREINCREMENT_EXPR:
2906 case POSTINCREMENT_EXPR:
2907 case PREDECREMENT_EXPR:
2908 case POSTDECREMENT_EXPR:
3e4093b6
RS
2909
2910 /* Increment or decrement the real part of the value,
2911 and don't change the imaginary part. */
2912 if (typecode == COMPLEX_TYPE)
400fbf9f 2913 {
3e4093b6
RS
2914 tree real, imag;
2915
2916 if (pedantic)
bda67431
JM
2917 pedwarn ("ISO C does not support %<++%> and %<--%>"
2918 " on complex types");
3e4093b6
RS
2919
2920 arg = stabilize_reference (arg);
2921 real = build_unary_op (REALPART_EXPR, arg, 1);
2922 imag = build_unary_op (IMAGPART_EXPR, arg, 1);
a87db577
AP
2923 real = build_unary_op (code, real, 1);
2924 if (real == error_mark_node || imag == error_mark_node)
2925 return error_mark_node;
53fb4de3 2926 return build2 (COMPLEX_EXPR, TREE_TYPE (arg),
a87db577 2927 real, imag);
400fbf9f 2928 }
3e4093b6
RS
2929
2930 /* Report invalid types. */
2931
2932 if (typecode != POINTER_TYPE
2933 && typecode != INTEGER_TYPE && typecode != REAL_TYPE)
400fbf9f 2934 {
3e4093b6 2935 if (code == PREINCREMENT_EXPR || code == POSTINCREMENT_EXPR)
c22cacf3
MS
2936 error ("wrong type argument to increment");
2937 else
2938 error ("wrong type argument to decrement");
3e4093b6
RS
2939
2940 return error_mark_node;
400fbf9f 2941 }
400fbf9f 2942
3e4093b6
RS
2943 {
2944 tree inc;
2945 tree result_type = TREE_TYPE (arg);
400fbf9f 2946
3e4093b6
RS
2947 arg = get_unwidened (arg, 0);
2948 argtype = TREE_TYPE (arg);
2949
2950 /* Compute the increment. */
2951
2952 if (typecode == POINTER_TYPE)
2953 {
2954 /* If pointer target is an undefined struct,
2955 we just cannot know how to do the arithmetic. */
2956 if (!COMPLETE_OR_VOID_TYPE_P (TREE_TYPE (result_type)))
2957 {
2958 if (code == PREINCREMENT_EXPR || code == POSTINCREMENT_EXPR)
2959 error ("increment of pointer to unknown structure");
2960 else
2961 error ("decrement of pointer to unknown structure");
2962 }
2963 else if ((pedantic || warn_pointer_arith)
2964 && (TREE_CODE (TREE_TYPE (result_type)) == FUNCTION_TYPE
2965 || TREE_CODE (TREE_TYPE (result_type)) == VOID_TYPE))
c22cacf3 2966 {
3e4093b6
RS
2967 if (code == PREINCREMENT_EXPR || code == POSTINCREMENT_EXPR)
2968 pedwarn ("wrong type argument to increment");
2969 else
2970 pedwarn ("wrong type argument to decrement");
2971 }
2972
2973 inc = c_size_in_bytes (TREE_TYPE (result_type));
5be014d5 2974 inc = fold_convert (sizetype, inc);
3e4093b6
RS
2975 }
2976 else
5be014d5
AP
2977 {
2978 inc = integer_one_node;
2979 inc = convert (argtype, inc);
2980 }
3e4093b6 2981
3e4093b6
RS
2982 /* Complain about anything else that is not a true lvalue. */
2983 if (!lvalue_or_else (arg, ((code == PREINCREMENT_EXPR
2984 || code == POSTINCREMENT_EXPR)
9bf24266
JM
2985 ? lv_increment
2986 : lv_decrement)))
3e4093b6
RS
2987 return error_mark_node;
2988
2989 /* Report a read-only lvalue. */
2990 if (TREE_READONLY (arg))
953ff289
DN
2991 {
2992 readonly_error (arg,
2993 ((code == PREINCREMENT_EXPR
2994 || code == POSTINCREMENT_EXPR)
2995 ? lv_increment : lv_decrement));
2996 return error_mark_node;
2997 }
3e4093b6
RS
2998
2999 if (TREE_CODE (TREE_TYPE (arg)) == BOOLEAN_TYPE)
3000 val = boolean_increment (code, arg);
3001 else
53fb4de3 3002 val = build2 (code, TREE_TYPE (arg), arg, inc);
3e4093b6
RS
3003 TREE_SIDE_EFFECTS (val) = 1;
3004 val = convert (result_type, val);
3005 if (TREE_CODE (val) != code)
6de9cd9a 3006 TREE_NO_WARNING (val) = 1;
3e4093b6
RS
3007 return val;
3008 }
3009
3010 case ADDR_EXPR:
3011 /* Note that this operation never does default_conversion. */
3012
3013 /* Let &* cancel out to simplify resulting code. */
3014 if (TREE_CODE (arg) == INDIRECT_REF)
400fbf9f 3015 {
3e4093b6
RS
3016 /* Don't let this be an lvalue. */
3017 if (lvalue_p (TREE_OPERAND (arg, 0)))
3018 return non_lvalue (TREE_OPERAND (arg, 0));
3019 return TREE_OPERAND (arg, 0);
400fbf9f 3020 }
1eb8759b 3021
7c672dfc 3022 /* For &x[y], return x+y */
3e4093b6 3023 if (TREE_CODE (arg) == ARRAY_REF)
1eb8759b 3024 {
f2a71bbc
JM
3025 tree op0 = TREE_OPERAND (arg, 0);
3026 if (!c_mark_addressable (op0))
3e4093b6 3027 return error_mark_node;
46bdb9cf 3028 return build_binary_op (PLUS_EXPR,
f2a71bbc
JM
3029 (TREE_CODE (TREE_TYPE (op0)) == ARRAY_TYPE
3030 ? array_to_pointer_conversion (op0)
3031 : op0),
7c672dfc 3032 TREE_OPERAND (arg, 1), 1);
1eb8759b 3033 }
1eb8759b 3034
3e4093b6
RS
3035 /* Anything not already handled and not a true memory reference
3036 or a non-lvalue array is an error. */
3037 else if (typecode != FUNCTION_TYPE && !flag
9bf24266 3038 && !lvalue_or_else (arg, lv_addressof))
3e4093b6 3039 return error_mark_node;
b6a10c9f 3040
3e4093b6
RS
3041 /* Ordinary case; arg is a COMPONENT_REF or a decl. */
3042 argtype = TREE_TYPE (arg);
400fbf9f 3043
3e4093b6 3044 /* If the lvalue is const or volatile, merge that into the type
c22cacf3 3045 to which the address will point. Note that you can't get a
3e4093b6
RS
3046 restricted pointer by taking the address of something, so we
3047 only have to deal with `const' and `volatile' here. */
6615c446 3048 if ((DECL_P (arg) || REFERENCE_CLASS_P (arg))
3e4093b6
RS
3049 && (TREE_READONLY (arg) || TREE_THIS_VOLATILE (arg)))
3050 argtype = c_build_type_variant (argtype,
3051 TREE_READONLY (arg),
3052 TREE_THIS_VOLATILE (arg));
400fbf9f 3053
3e4093b6
RS
3054 if (!c_mark_addressable (arg))
3055 return error_mark_node;
400fbf9f 3056
abb54d14
JM
3057 gcc_assert (TREE_CODE (arg) != COMPONENT_REF
3058 || !DECL_C_BIT_FIELD (TREE_OPERAND (arg, 1)));
400fbf9f 3059
5cc200fc 3060 argtype = build_pointer_type (argtype);
5e55f99d
RH
3061
3062 /* ??? Cope with user tricks that amount to offsetof. Delete this
3063 when we have proper support for integer constant expressions. */
3064 val = get_base_address (arg);
3065 if (val && TREE_CODE (val) == INDIRECT_REF
3aa2ddb8
JJ
3066 && TREE_CONSTANT (TREE_OPERAND (val, 0)))
3067 {
5be014d5 3068 tree op0 = fold_convert (sizetype, fold_offsetof (arg, val)), op1;
3aa2ddb8
JJ
3069
3070 op1 = fold_convert (argtype, TREE_OPERAND (val, 0));
5be014d5 3071 return fold_build2 (POINTER_PLUS_EXPR, argtype, op1, op0);
3aa2ddb8 3072 }
5e55f99d 3073
5cc200fc 3074 val = build1 (ADDR_EXPR, argtype, arg);
400fbf9f 3075
5cc200fc 3076 return val;
400fbf9f 3077
3e4093b6 3078 default:
1344f9a3 3079 gcc_unreachable ();
3e4093b6 3080 }
400fbf9f 3081
3e4093b6
RS
3082 if (argtype == 0)
3083 argtype = TREE_TYPE (arg);
00d1b1d6 3084 return require_constant_value ? fold_build1_initializer (code, argtype, arg)
c22cacf3 3085 : fold_build1 (code, argtype, arg);
3e4093b6 3086}
400fbf9f 3087
3e4093b6
RS
3088/* Return nonzero if REF is an lvalue valid for this language.
3089 Lvalues can be assigned, unless their type has TYPE_READONLY.
5baeaac0 3090 Lvalues can have their address taken, unless they have C_DECL_REGISTER. */
400fbf9f 3091
37dc0d8d 3092static int
3e4093b6
RS
3093lvalue_p (tree ref)
3094{
3095 enum tree_code code = TREE_CODE (ref);
400fbf9f 3096
3e4093b6
RS
3097 switch (code)
3098 {
3099 case REALPART_EXPR:
3100 case IMAGPART_EXPR:
3101 case COMPONENT_REF:
3102 return lvalue_p (TREE_OPERAND (ref, 0));
400fbf9f 3103
3e4093b6
RS
3104 case COMPOUND_LITERAL_EXPR:
3105 case STRING_CST:
3106 return 1;
400fbf9f 3107
3e4093b6
RS
3108 case INDIRECT_REF:
3109 case ARRAY_REF:
3110 case VAR_DECL:
3111 case PARM_DECL:
3112 case RESULT_DECL:
3113 case ERROR_MARK:
3114 return (TREE_CODE (TREE_TYPE (ref)) != FUNCTION_TYPE
3115 && TREE_CODE (TREE_TYPE (ref)) != METHOD_TYPE);
665f2503 3116
3e4093b6 3117 case BIND_EXPR:
3e4093b6 3118 return TREE_CODE (TREE_TYPE (ref)) == ARRAY_TYPE;
665f2503 3119
3e4093b6
RS
3120 default:
3121 return 0;
3122 }
3123}
400fbf9f 3124\f
9bf24266 3125/* Give an error for storing in something that is 'const'. */
54c93c30 3126
9bf24266
JM
3127static void
3128readonly_error (tree arg, enum lvalue_use use)
54c93c30 3129{
5544530a
PB
3130 gcc_assert (use == lv_assign || use == lv_increment || use == lv_decrement
3131 || use == lv_asm);
9bf24266
JM
3132 /* Using this macro rather than (for example) arrays of messages
3133 ensures that all the format strings are checked at compile
3134 time. */
5544530a 3135#define READONLY_MSG(A, I, D, AS) (use == lv_assign ? (A) \
c22cacf3 3136 : (use == lv_increment ? (I) \
5544530a 3137 : (use == lv_decrement ? (D) : (AS))))
3e4093b6 3138 if (TREE_CODE (arg) == COMPONENT_REF)
54c93c30 3139 {
3e4093b6 3140 if (TYPE_READONLY (TREE_TYPE (TREE_OPERAND (arg, 0))))
9bf24266 3141 readonly_error (TREE_OPERAND (arg, 0), use);
3e4093b6 3142 else
4b794eaf
JJ
3143 error (READONLY_MSG (G_("assignment of read-only member %qD"),
3144 G_("increment of read-only member %qD"),
5544530a
PB
3145 G_("decrement of read-only member %qD"),
3146 G_("read-only member %qD used as %<asm%> output")),
c51a1ba9 3147 TREE_OPERAND (arg, 1));
54c93c30 3148 }
3e4093b6 3149 else if (TREE_CODE (arg) == VAR_DECL)
4b794eaf
JJ
3150 error (READONLY_MSG (G_("assignment of read-only variable %qD"),
3151 G_("increment of read-only variable %qD"),
5544530a
PB
3152 G_("decrement of read-only variable %qD"),
3153 G_("read-only variable %qD used as %<asm%> output")),
c51a1ba9 3154 arg);
3e4093b6 3155 else
4b794eaf
JJ
3156 error (READONLY_MSG (G_("assignment of read-only location"),
3157 G_("increment of read-only location"),
5544530a
PB
3158 G_("decrement of read-only location"),
3159 G_("read-only location used as %<asm%> output")));
54c93c30 3160}
37dc0d8d
JM
3161
3162
3163/* Return nonzero if REF is an lvalue valid for this language;
3164 otherwise, print an error message and return zero. USE says
3165 how the lvalue is being used and so selects the error message. */
3166
3167static int
3168lvalue_or_else (tree ref, enum lvalue_use use)
3169{
3170 int win = lvalue_p (ref);
3171
3172 if (!win)
3173 lvalue_error (use);
3174
3175 return win;
3176}
3e4093b6
RS
3177\f
3178/* Mark EXP saying that we need to be able to take the
3179 address of it; it should not be allocated in a register.
3180 Returns true if successful. */
54c93c30 3181
3e4093b6
RS
3182bool
3183c_mark_addressable (tree exp)
400fbf9f 3184{
3e4093b6 3185 tree x = exp;
95602da1 3186
3e4093b6
RS
3187 while (1)
3188 switch (TREE_CODE (x))
3189 {
3190 case COMPONENT_REF:
3191 if (DECL_C_BIT_FIELD (TREE_OPERAND (x, 1)))
3192 {
0039fa55
AN
3193 error
3194 ("cannot take address of bit-field %qD", TREE_OPERAND (x, 1));
3e4093b6
RS
3195 return false;
3196 }
95602da1 3197
3e4093b6 3198 /* ... fall through ... */
95602da1 3199
3e4093b6
RS
3200 case ADDR_EXPR:
3201 case ARRAY_REF:
3202 case REALPART_EXPR:
3203 case IMAGPART_EXPR:
3204 x = TREE_OPERAND (x, 0);
3205 break;
95602da1 3206
3e4093b6
RS
3207 case COMPOUND_LITERAL_EXPR:
3208 case CONSTRUCTOR:
3209 TREE_ADDRESSABLE (x) = 1;
3210 return true;
95602da1 3211
3e4093b6
RS
3212 case VAR_DECL:
3213 case CONST_DECL:
3214 case PARM_DECL:
3215 case RESULT_DECL:
5baeaac0 3216 if (C_DECL_REGISTER (x)
3e4093b6
RS
3217 && DECL_NONLOCAL (x))
3218 {
e697b20f 3219 if (TREE_PUBLIC (x) || TREE_STATIC (x) || DECL_EXTERNAL (x))
3e4093b6 3220 {
0039fa55
AN
3221 error
3222 ("global register variable %qD used in nested function", x);
3e4093b6
RS
3223 return false;
3224 }
0039fa55 3225 pedwarn ("register variable %qD used in nested function", x);
3e4093b6 3226 }
5baeaac0 3227 else if (C_DECL_REGISTER (x))
3e4093b6 3228 {
e697b20f 3229 if (TREE_PUBLIC (x) || TREE_STATIC (x) || DECL_EXTERNAL (x))
0039fa55
AN
3230 error ("address of global register variable %qD requested", x);
3231 else
3232 error ("address of register variable %qD requested", x);
3233 return false;
3e4093b6 3234 }
400fbf9f 3235
3e4093b6
RS
3236 /* drops in */
3237 case FUNCTION_DECL:
3238 TREE_ADDRESSABLE (x) = 1;
3239 /* drops out */
3240 default:
3241 return true;
3242 }
3243}
3244\f
3245/* Build and return a conditional expression IFEXP ? OP1 : OP2. */
400fbf9f
JW
3246
3247tree
3e4093b6 3248build_conditional_expr (tree ifexp, tree op1, tree op2)
400fbf9f 3249{
3e4093b6
RS
3250 tree type1;
3251 tree type2;
3252 enum tree_code code1;
3253 enum tree_code code2;
3254 tree result_type = NULL;
3255 tree orig_op1 = op1, orig_op2 = op2;
400fbf9f 3256
3e4093b6
RS
3257 /* Promote both alternatives. */
3258
3259 if (TREE_CODE (TREE_TYPE (op1)) != VOID_TYPE)
3260 op1 = default_conversion (op1);
3261 if (TREE_CODE (TREE_TYPE (op2)) != VOID_TYPE)
3262 op2 = default_conversion (op2);
3263
3264 if (TREE_CODE (ifexp) == ERROR_MARK
3265 || TREE_CODE (TREE_TYPE (op1)) == ERROR_MARK
3266 || TREE_CODE (TREE_TYPE (op2)) == ERROR_MARK)
400fbf9f 3267 return error_mark_node;
400fbf9f 3268
3e4093b6
RS
3269 type1 = TREE_TYPE (op1);
3270 code1 = TREE_CODE (type1);
3271 type2 = TREE_TYPE (op2);
3272 code2 = TREE_CODE (type2);
3273
b1adf557
JM
3274 /* C90 does not permit non-lvalue arrays in conditional expressions.
3275 In C99 they will be pointers by now. */
3276 if (code1 == ARRAY_TYPE || code2 == ARRAY_TYPE)
3277 {
3278 error ("non-lvalue array in conditional expression");
3279 return error_mark_node;
3280 }
3281
3e4093b6
RS
3282 /* Quickly detect the usual case where op1 and op2 have the same type
3283 after promotion. */
3284 if (TYPE_MAIN_VARIANT (type1) == TYPE_MAIN_VARIANT (type2))
400fbf9f 3285 {
3e4093b6
RS
3286 if (type1 == type2)
3287 result_type = type1;
3288 else
3289 result_type = TYPE_MAIN_VARIANT (type1);
3290 }
3291 else if ((code1 == INTEGER_TYPE || code1 == REAL_TYPE
c22cacf3
MS
3292 || code1 == COMPLEX_TYPE)
3293 && (code2 == INTEGER_TYPE || code2 == REAL_TYPE
3294 || code2 == COMPLEX_TYPE))
3e4093b6 3295 {
ccf7f880 3296 result_type = c_common_type (type1, type2);
400fbf9f 3297
3e4093b6
RS
3298 /* If -Wsign-compare, warn here if type1 and type2 have
3299 different signedness. We'll promote the signed to unsigned
3300 and later code won't know it used to be different.
3301 Do this check on the original types, so that explicit casts
3302 will be considered, but default promotions won't. */
3303 if (warn_sign_compare && !skip_evaluation)
ab87f8c8 3304 {
8df83eae
RK
3305 int unsigned_op1 = TYPE_UNSIGNED (TREE_TYPE (orig_op1));
3306 int unsigned_op2 = TYPE_UNSIGNED (TREE_TYPE (orig_op2));
400fbf9f 3307
3e4093b6
RS
3308 if (unsigned_op1 ^ unsigned_op2)
3309 {
6ac01510
ILT
3310 bool ovf;
3311
3e4093b6
RS
3312 /* Do not warn if the result type is signed, since the
3313 signed type will only be chosen if it can represent
3314 all the values of the unsigned type. */
3f75a254 3315 if (!TYPE_UNSIGNED (result_type))
3e4093b6
RS
3316 /* OK */;
3317 /* Do not warn if the signed quantity is an unsuffixed
3318 integer literal (or some static constant expression
3319 involving such literals) and it is non-negative. */
6ac01510
ILT
3320 else if ((unsigned_op2
3321 && tree_expr_nonnegative_warnv_p (op1, &ovf))
3322 || (unsigned_op1
3323 && tree_expr_nonnegative_warnv_p (op2, &ovf)))
3e4093b6
RS
3324 /* OK */;
3325 else
d4ee4d25 3326 warning (0, "signed and unsigned type in conditional expression");
3e4093b6
RS
3327 }
3328 }
3329 }
3330 else if (code1 == VOID_TYPE || code2 == VOID_TYPE)
3331 {
3332 if (pedantic && (code1 != VOID_TYPE || code2 != VOID_TYPE))
3333 pedwarn ("ISO C forbids conditional expr with only one void side");
3334 result_type = void_type_node;
3335 }
3336 else if (code1 == POINTER_TYPE && code2 == POINTER_TYPE)
3337 {
58393038 3338 if (comp_target_types (type1, type2))
10bc1b1b 3339 result_type = common_pointer_type (type1, type2);
6aa3c60d 3340 else if (null_pointer_constant_p (orig_op1))
3e4093b6 3341 result_type = qualify_type (type2, type1);
6aa3c60d 3342 else if (null_pointer_constant_p (orig_op2))
3e4093b6
RS
3343 result_type = qualify_type (type1, type2);
3344 else if (VOID_TYPE_P (TREE_TYPE (type1)))
34a80643 3345 {
3e4093b6 3346 if (pedantic && TREE_CODE (TREE_TYPE (type2)) == FUNCTION_TYPE)
bda67431
JM
3347 pedwarn ("ISO C forbids conditional expr between "
3348 "%<void *%> and function pointer");
3e4093b6
RS
3349 result_type = build_pointer_type (qualify_type (TREE_TYPE (type1),
3350 TREE_TYPE (type2)));
34a80643 3351 }
3e4093b6 3352 else if (VOID_TYPE_P (TREE_TYPE (type2)))
1c2a9b35 3353 {
3e4093b6 3354 if (pedantic && TREE_CODE (TREE_TYPE (type1)) == FUNCTION_TYPE)
bda67431
JM
3355 pedwarn ("ISO C forbids conditional expr between "
3356 "%<void *%> and function pointer");
3e4093b6
RS
3357 result_type = build_pointer_type (qualify_type (TREE_TYPE (type2),
3358 TREE_TYPE (type1)));
1c2a9b35 3359 }
34a80643 3360 else
ab87f8c8 3361 {
3e4093b6
RS
3362 pedwarn ("pointer type mismatch in conditional expression");
3363 result_type = build_pointer_type (void_type_node);
ab87f8c8 3364 }
3e4093b6
RS
3365 }
3366 else if (code1 == POINTER_TYPE && code2 == INTEGER_TYPE)
3367 {
6aa3c60d 3368 if (!null_pointer_constant_p (orig_op2))
3e4093b6
RS
3369 pedwarn ("pointer/integer type mismatch in conditional expression");
3370 else
ab87f8c8 3371 {
3e4093b6 3372 op2 = null_pointer_node;
ab87f8c8 3373 }
3e4093b6
RS
3374 result_type = type1;
3375 }
3376 else if (code2 == POINTER_TYPE && code1 == INTEGER_TYPE)
3377 {
6aa3c60d 3378 if (!null_pointer_constant_p (orig_op1))
3e4093b6
RS
3379 pedwarn ("pointer/integer type mismatch in conditional expression");
3380 else
ab87f8c8 3381 {
3e4093b6 3382 op1 = null_pointer_node;
ab87f8c8 3383 }
3e4093b6
RS
3384 result_type = type2;
3385 }
1c2a9b35 3386
3e4093b6
RS
3387 if (!result_type)
3388 {
3389 if (flag_cond_mismatch)
3390 result_type = void_type_node;
3391 else
400fbf9f 3392 {
3e4093b6 3393 error ("type mismatch in conditional expression");
ab87f8c8 3394 return error_mark_node;
400fbf9f 3395 }
3e4093b6 3396 }
400fbf9f 3397
3e4093b6
RS
3398 /* Merge const and volatile flags of the incoming types. */
3399 result_type
3400 = build_type_variant (result_type,
3401 TREE_READONLY (op1) || TREE_READONLY (op2),
3402 TREE_THIS_VOLATILE (op1) || TREE_THIS_VOLATILE (op2));
b6a10c9f 3403
3e4093b6
RS
3404 if (result_type != TREE_TYPE (op1))
3405 op1 = convert_and_check (result_type, op1);
3406 if (result_type != TREE_TYPE (op2))
3407 op2 = convert_and_check (result_type, op2);
b6a10c9f 3408
8c900457 3409 return fold_build3 (COND_EXPR, result_type, ifexp, op1, op2);
3e4093b6
RS
3410}
3411\f
487a92fe
JM
3412/* Return a compound expression that performs two expressions and
3413 returns the value of the second of them. */
400fbf9f 3414
3e4093b6 3415tree
487a92fe 3416build_compound_expr (tree expr1, tree expr2)
3e4093b6 3417{
3f75a254 3418 if (!TREE_SIDE_EFFECTS (expr1))
3e4093b6
RS
3419 {
3420 /* The left-hand operand of a comma expression is like an expression
c22cacf3 3421 statement: with -Wextra or -Wunused, we should warn if it doesn't have
3e4093b6 3422 any side-effects, unless it was explicitly cast to (void). */
e14a6540 3423 if (warn_unused_value)
47aecf47 3424 {
e14a6540 3425 if (VOID_TYPE_P (TREE_TYPE (expr1))
4c7a6c1b
JM
3426 && (TREE_CODE (expr1) == NOP_EXPR
3427 || TREE_CODE (expr1) == CONVERT_EXPR))
47aecf47 3428 ; /* (void) a, b */
e14a6540
JM
3429 else if (VOID_TYPE_P (TREE_TYPE (expr1))
3430 && TREE_CODE (expr1) == COMPOUND_EXPR
4c7a6c1b
JM
3431 && (TREE_CODE (TREE_OPERAND (expr1, 1)) == CONVERT_EXPR
3432 || TREE_CODE (TREE_OPERAND (expr1, 1)) == NOP_EXPR))
47aecf47
JM
3433 ; /* (void) a, (void) b, c */
3434 else
253a697e
DM
3435 warning (OPT_Wunused_value,
3436 "left-hand operand of comma expression has no effect");
47aecf47 3437 }
3e4093b6 3438 }
400fbf9f 3439
3e4093b6
RS
3440 /* With -Wunused, we should also warn if the left-hand operand does have
3441 side-effects, but computes a value which is not used. For example, in
3442 `foo() + bar(), baz()' the result of the `+' operator is not used,
3443 so we should issue a warning. */
3444 else if (warn_unused_value)
487a92fe 3445 warn_if_unused_value (expr1, input_location);
400fbf9f 3446
e63d6886
AP
3447 if (expr2 == error_mark_node)
3448 return error_mark_node;
3449
53fb4de3 3450 return build2 (COMPOUND_EXPR, TREE_TYPE (expr2), expr1, expr2);
3e4093b6 3451}
400fbf9f 3452
3e4093b6 3453/* Build an expression representing a cast to type TYPE of expression EXPR. */
400fbf9f 3454
3e4093b6
RS
3455tree
3456build_c_cast (tree type, tree expr)
3457{
3458 tree value = expr;
400fbf9f 3459
3e4093b6
RS
3460 if (type == error_mark_node || expr == error_mark_node)
3461 return error_mark_node;
400fbf9f 3462
3e4093b6
RS
3463 /* The ObjC front-end uses TYPE_MAIN_VARIANT to tie together types differing
3464 only in <protocol> qualifications. But when constructing cast expressions,
3465 the protocols do matter and must be kept around. */
700686fa
ZL
3466 if (objc_is_object_ptr (type) && objc_is_object_ptr (TREE_TYPE (expr)))
3467 return build1 (NOP_EXPR, type, expr);
3468
3469 type = TYPE_MAIN_VARIANT (type);
400fbf9f 3470
3e4093b6
RS
3471 if (TREE_CODE (type) == ARRAY_TYPE)
3472 {
3473 error ("cast specifies array type");
3474 return error_mark_node;
3475 }
400fbf9f 3476
3e4093b6
RS
3477 if (TREE_CODE (type) == FUNCTION_TYPE)
3478 {
3479 error ("cast specifies function type");
3480 return error_mark_node;
3481 }
400fbf9f 3482
3e4093b6
RS
3483 if (type == TYPE_MAIN_VARIANT (TREE_TYPE (value)))
3484 {
3485 if (pedantic)
400fbf9f 3486 {
3e4093b6
RS
3487 if (TREE_CODE (type) == RECORD_TYPE
3488 || TREE_CODE (type) == UNION_TYPE)
3489 pedwarn ("ISO C forbids casting nonscalar to the same type");
400fbf9f 3490 }
3e4093b6
RS
3491 }
3492 else if (TREE_CODE (type) == UNION_TYPE)
3493 {
3494 tree field;
400fbf9f 3495
3e4093b6
RS
3496 for (field = TYPE_FIELDS (type); field; field = TREE_CHAIN (field))
3497 if (comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (field)),
132da1a5 3498 TYPE_MAIN_VARIANT (TREE_TYPE (value))))
3e4093b6
RS
3499 break;
3500
3501 if (field)
400fbf9f 3502 {
3e4093b6
RS
3503 tree t;
3504
3505 if (pedantic)
3506 pedwarn ("ISO C forbids casts to union type");
3507 t = digest_init (type,
4038c495 3508 build_constructor_single (type, field, value),
916c5919 3509 true, 0);
3e4093b6 3510 TREE_CONSTANT (t) = TREE_CONSTANT (value);
6de9cd9a 3511 TREE_INVARIANT (t) = TREE_INVARIANT (value);
3e4093b6 3512 return t;
400fbf9f 3513 }
3e4093b6
RS
3514 error ("cast to union type from type not present in union");
3515 return error_mark_node;
3516 }
3517 else
3518 {
3519 tree otype, ovalue;
400fbf9f 3520
3e4093b6
RS
3521 if (type == void_type_node)
3522 return build1 (CONVERT_EXPR, type, value);
400fbf9f 3523
3e4093b6 3524 otype = TREE_TYPE (value);
400fbf9f 3525
3e4093b6 3526 /* Optionally warn about potentially worrisome casts. */
770ae6cc 3527
3e4093b6
RS
3528 if (warn_cast_qual
3529 && TREE_CODE (type) == POINTER_TYPE
3530 && TREE_CODE (otype) == POINTER_TYPE)
3531 {
3532 tree in_type = type;
3533 tree in_otype = otype;
3534 int added = 0;
3535 int discarded = 0;
400fbf9f 3536
3e4093b6
RS
3537 /* Check that the qualifiers on IN_TYPE are a superset of
3538 the qualifiers of IN_OTYPE. The outermost level of
3539 POINTER_TYPE nodes is uninteresting and we stop as soon
3540 as we hit a non-POINTER_TYPE node on either type. */
3541 do
3542 {
3543 in_otype = TREE_TYPE (in_otype);
3544 in_type = TREE_TYPE (in_type);
400fbf9f 3545
3e4093b6
RS
3546 /* GNU C allows cv-qualified function types. 'const'
3547 means the function is very pure, 'volatile' means it
3548 can't return. We need to warn when such qualifiers
3549 are added, not when they're taken away. */
3550 if (TREE_CODE (in_otype) == FUNCTION_TYPE
3551 && TREE_CODE (in_type) == FUNCTION_TYPE)
3552 added |= (TYPE_QUALS (in_type) & ~TYPE_QUALS (in_otype));
3553 else
3554 discarded |= (TYPE_QUALS (in_otype) & ~TYPE_QUALS (in_type));
3555 }
3556 while (TREE_CODE (in_type) == POINTER_TYPE
3557 && TREE_CODE (in_otype) == POINTER_TYPE);
400fbf9f 3558
3e4093b6 3559 if (added)
d4ee4d25 3560 warning (0, "cast adds new qualifiers to function type");
400fbf9f 3561
3e4093b6
RS
3562 if (discarded)
3563 /* There are qualifiers present in IN_OTYPE that are not
3564 present in IN_TYPE. */
d4ee4d25 3565 warning (0, "cast discards qualifiers from pointer target type");
3e4093b6 3566 }
400fbf9f 3567
3e4093b6 3568 /* Warn about possible alignment problems. */
3176a0c2 3569 if (STRICT_ALIGNMENT
3e4093b6
RS
3570 && TREE_CODE (type) == POINTER_TYPE
3571 && TREE_CODE (otype) == POINTER_TYPE
3572 && TREE_CODE (TREE_TYPE (otype)) != VOID_TYPE
3573 && TREE_CODE (TREE_TYPE (otype)) != FUNCTION_TYPE
3574 /* Don't warn about opaque types, where the actual alignment
3575 restriction is unknown. */
3576 && !((TREE_CODE (TREE_TYPE (otype)) == UNION_TYPE
3577 || TREE_CODE (TREE_TYPE (otype)) == RECORD_TYPE)
3578 && TYPE_MODE (TREE_TYPE (otype)) == VOIDmode)
3579 && TYPE_ALIGN (TREE_TYPE (type)) > TYPE_ALIGN (TREE_TYPE (otype)))
3176a0c2
DD
3580 warning (OPT_Wcast_align,
3581 "cast increases required alignment of target type");
e9a25f70 3582
3176a0c2 3583 if (TREE_CODE (type) == INTEGER_TYPE
3e4093b6 3584 && TREE_CODE (otype) == POINTER_TYPE
8d1c7aef 3585 && TYPE_PRECISION (type) != TYPE_PRECISION (otype))
c22cacf3
MS
3586 /* Unlike conversion of integers to pointers, where the
3587 warning is disabled for converting constants because
3588 of cases such as SIG_*, warn about converting constant
3589 pointers to integers. In some cases it may cause unwanted
8d1c7aef 3590 sign extension, and a warning is appropriate. */
3176a0c2
DD
3591 warning (OPT_Wpointer_to_int_cast,
3592 "cast from pointer to integer of different size");
400fbf9f 3593
3176a0c2 3594 if (TREE_CODE (value) == CALL_EXPR
3e4093b6 3595 && TREE_CODE (type) != TREE_CODE (otype))
3176a0c2
DD
3596 warning (OPT_Wbad_function_cast, "cast from function call of type %qT "
3597 "to non-matching type %qT", otype, type);
400fbf9f 3598
3176a0c2 3599 if (TREE_CODE (type) == POINTER_TYPE
3e4093b6
RS
3600 && TREE_CODE (otype) == INTEGER_TYPE
3601 && TYPE_PRECISION (type) != TYPE_PRECISION (otype)
3602 /* Don't warn about converting any constant. */
3603 && !TREE_CONSTANT (value))
3176a0c2
DD
3604 warning (OPT_Wint_to_pointer_cast, "cast to pointer from integer "
3605 "of different size");
400fbf9f 3606
79bedddc
SR
3607 if (warn_strict_aliasing <= 2)
3608 strict_aliasing_warning (otype, type, expr);
400fbf9f 3609
3897f229
JM
3610 /* If pedantic, warn for conversions between function and object
3611 pointer types, except for converting a null pointer constant
3612 to function pointer type. */
3613 if (pedantic
3614 && TREE_CODE (type) == POINTER_TYPE
3615 && TREE_CODE (otype) == POINTER_TYPE
3616 && TREE_CODE (TREE_TYPE (otype)) == FUNCTION_TYPE
3617 && TREE_CODE (TREE_TYPE (type)) != FUNCTION_TYPE)
3618 pedwarn ("ISO C forbids conversion of function pointer to object pointer type");
3619
3620 if (pedantic
3621 && TREE_CODE (type) == POINTER_TYPE
3622 && TREE_CODE (otype) == POINTER_TYPE
3623 && TREE_CODE (TREE_TYPE (type)) == FUNCTION_TYPE
3624 && TREE_CODE (TREE_TYPE (otype)) != FUNCTION_TYPE
6aa3c60d 3625 && !null_pointer_constant_p (value))
3897f229
JM
3626 pedwarn ("ISO C forbids conversion of object pointer to function pointer type");
3627
3e4093b6 3628 ovalue = value;
3e4093b6 3629 value = convert (type, value);
400fbf9f 3630
3e4093b6
RS
3631 /* Ignore any integer overflow caused by the cast. */
3632 if (TREE_CODE (value) == INTEGER_CST)
3633 {
8bcd6380 3634 if (CONSTANT_CLASS_P (ovalue) && TREE_OVERFLOW (ovalue))
6414bad6 3635 {
8bcd6380
RS
3636 if (!TREE_OVERFLOW (value))
3637 {
3638 /* Avoid clobbering a shared constant. */
3639 value = copy_node (value);
3640 TREE_OVERFLOW (value) = TREE_OVERFLOW (ovalue);
3641 }
6414bad6 3642 }
8bcd6380 3643 else if (TREE_OVERFLOW (value))
d8e1f97b
PB
3644 /* Reset VALUE's overflow flags, ensuring constant sharing. */
3645 value = build_int_cst_wide (TREE_TYPE (value),
3646 TREE_INT_CST_LOW (value),
3647 TREE_INT_CST_HIGH (value));
3e4093b6
RS
3648 }
3649 }
400fbf9f 3650
53cd18ec
JM
3651 /* Don't let a cast be an lvalue. */
3652 if (value == expr)
3e4093b6 3653 value = non_lvalue (value);
e9a25f70 3654
3e4093b6 3655 return value;
400fbf9f
JW
3656}
3657
3e4093b6
RS
3658/* Interpret a cast of expression EXPR to type TYPE. */
3659tree
f8893e47 3660c_cast_expr (struct c_type_name *type_name, tree expr)
400fbf9f 3661{
f8893e47 3662 tree type;
3e4093b6 3663 int saved_wsp = warn_strict_prototypes;
c5c76735 3664
3e4093b6
RS
3665 /* This avoids warnings about unprototyped casts on
3666 integers. E.g. "#define SIG_DFL (void(*)())0". */
3667 if (TREE_CODE (expr) == INTEGER_CST)
3668 warn_strict_prototypes = 0;
f8893e47 3669 type = groktypename (type_name);
3e4093b6 3670 warn_strict_prototypes = saved_wsp;
c5c76735 3671
3e4093b6 3672 return build_c_cast (type, expr);
400fbf9f 3673}
3e4093b6
RS
3674\f
3675/* Build an assignment expression of lvalue LHS from value RHS.
3676 MODIFYCODE is the code for a binary operator that we use
3677 to combine the old value of LHS with RHS to get the new value.
3678 Or else MODIFYCODE is NOP_EXPR meaning do a simple assignment. */
2f6e4e97 3679
3e4093b6
RS
3680tree
3681build_modify_expr (tree lhs, enum tree_code modifycode, tree rhs)
400fbf9f 3682{
3e4093b6
RS
3683 tree result;
3684 tree newrhs;
3685 tree lhstype = TREE_TYPE (lhs);
3686 tree olhstype = lhstype;
e9a25f70 3687
3e4093b6
RS
3688 /* Types that aren't fully specified cannot be used in assignments. */
3689 lhs = require_complete_type (lhs);
e9a25f70 3690
3e4093b6
RS
3691 /* Avoid duplicate error messages from operands that had errors. */
3692 if (TREE_CODE (lhs) == ERROR_MARK || TREE_CODE (rhs) == ERROR_MARK)
3693 return error_mark_node;
400fbf9f 3694
c0bcacec
VR
3695 if (!lvalue_or_else (lhs, lv_assign))
3696 return error_mark_node;
3697
ed248cf7 3698 STRIP_TYPE_NOPS (rhs);
e9a25f70 3699
3e4093b6 3700 newrhs = rhs;
400fbf9f 3701
3e4093b6
RS
3702 /* If a binary op has been requested, combine the old LHS value with the RHS
3703 producing the value we should actually store into the LHS. */
3704
3705 if (modifycode != NOP_EXPR)
400fbf9f 3706 {
3e4093b6
RS
3707 lhs = stabilize_reference (lhs);
3708 newrhs = build_binary_op (modifycode, lhs, rhs, 1);
400fbf9f 3709 }
400fbf9f 3710
9bf24266 3711 /* Give an error for storing in something that is 'const'. */
bbbd6700 3712
3e4093b6
RS
3713 if (TREE_READONLY (lhs) || TYPE_READONLY (lhstype)
3714 || ((TREE_CODE (lhstype) == RECORD_TYPE
3715 || TREE_CODE (lhstype) == UNION_TYPE)
3716 && C_TYPE_FIELDS_READONLY (lhstype)))
953ff289
DN
3717 {
3718 readonly_error (lhs, lv_assign);
3719 return error_mark_node;
3720 }
bbbd6700 3721
3e4093b6
RS
3722 /* If storing into a structure or union member,
3723 it has probably been given type `int'.
3724 Compute the type that would go with
3725 the actual amount of storage the member occupies. */
bbbd6700 3726
3e4093b6
RS
3727 if (TREE_CODE (lhs) == COMPONENT_REF
3728 && (TREE_CODE (lhstype) == INTEGER_TYPE
3729 || TREE_CODE (lhstype) == BOOLEAN_TYPE
3730 || TREE_CODE (lhstype) == REAL_TYPE
3731 || TREE_CODE (lhstype) == ENUMERAL_TYPE))
3732 lhstype = TREE_TYPE (get_unwidened (lhs, 0));
400fbf9f 3733
3e4093b6
RS
3734 /* If storing in a field that is in actuality a short or narrower than one,
3735 we must store in the field in its actual type. */
3736
3737 if (lhstype != TREE_TYPE (lhs))
3738 {
3739 lhs = copy_node (lhs);
3740 TREE_TYPE (lhs) = lhstype;
400fbf9f 3741 }
400fbf9f 3742
3e4093b6 3743 /* Convert new value to destination type. */
400fbf9f 3744
2ac2f164 3745 newrhs = convert_for_assignment (lhstype, newrhs, ic_assign,
3e4093b6
RS
3746 NULL_TREE, NULL_TREE, 0);
3747 if (TREE_CODE (newrhs) == ERROR_MARK)
3748 return error_mark_node;
400fbf9f 3749
6e955430
ZL
3750 /* Emit ObjC write barrier, if necessary. */
3751 if (c_dialect_objc () && flag_objc_gc)
3752 {
3753 result = objc_generate_write_barrier (lhs, modifycode, newrhs);
3754 if (result)
3755 return result;
3756 }
3757
ea4b7848 3758 /* Scan operands. */
400fbf9f 3759
53fb4de3 3760 result = build2 (MODIFY_EXPR, lhstype, lhs, newrhs);
3e4093b6 3761 TREE_SIDE_EFFECTS (result) = 1;
400fbf9f 3762
3e4093b6
RS
3763 /* If we got the LHS in a different type for storing in,
3764 convert the result back to the nominal type of LHS
3765 so that the value we return always has the same type
3766 as the LHS argument. */
e855c5ce 3767
3e4093b6
RS
3768 if (olhstype == TREE_TYPE (result))
3769 return result;
2ac2f164 3770 return convert_for_assignment (olhstype, result, ic_assign,
3e4093b6
RS
3771 NULL_TREE, NULL_TREE, 0);
3772}
3773\f
3774/* Convert value RHS to type TYPE as preparation for an assignment
3775 to an lvalue of type TYPE.
3776 The real work of conversion is done by `convert'.
3777 The purpose of this function is to generate error messages
3778 for assignments that are not allowed in C.
2ac2f164
JM
3779 ERRTYPE says whether it is argument passing, assignment,
3780 initialization or return.
2f6e4e97 3781
2ac2f164 3782 FUNCTION is a tree for the function being called.
3e4093b6 3783 PARMNUM is the number of the argument, for printing in error messages. */
cb3ca04e 3784
3e4093b6 3785static tree
2ac2f164
JM
3786convert_for_assignment (tree type, tree rhs, enum impl_conv errtype,
3787 tree fundecl, tree function, int parmnum)
3e4093b6
RS
3788{
3789 enum tree_code codel = TREE_CODE (type);
3790 tree rhstype;
3791 enum tree_code coder;
2ac2f164 3792 tree rname = NULL_TREE;
58393038 3793 bool objc_ok = false;
2ac2f164 3794
6dcc04b0 3795 if (errtype == ic_argpass || errtype == ic_argpass_nonproto)
2ac2f164
JM
3796 {
3797 tree selector;
3798 /* Change pointer to function to the function itself for
3799 diagnostics. */
3800 if (TREE_CODE (function) == ADDR_EXPR
3801 && TREE_CODE (TREE_OPERAND (function, 0)) == FUNCTION_DECL)
3802 function = TREE_OPERAND (function, 0);
3803
3804 /* Handle an ObjC selector specially for diagnostics. */
3805 selector = objc_message_selector ();
3806 rname = function;
3807 if (selector && parmnum > 2)
3808 {
3809 rname = selector;
3810 parmnum -= 2;
3811 }
3812 }
3813
3814 /* This macro is used to emit diagnostics to ensure that all format
3815 strings are complete sentences, visible to gettext and checked at
3816 compile time. */
3817#define WARN_FOR_ASSIGNMENT(AR, AS, IN, RE) \
3818 do { \
3819 switch (errtype) \
3820 { \
3821 case ic_argpass: \
3822 pedwarn (AR, parmnum, rname); \
3823 break; \
6dcc04b0 3824 case ic_argpass_nonproto: \
d4ee4d25 3825 warning (0, AR, parmnum, rname); \
6dcc04b0 3826 break; \
2ac2f164
JM
3827 case ic_assign: \
3828 pedwarn (AS); \
3829 break; \
3830 case ic_init: \
3831 pedwarn (IN); \
3832 break; \
3833 case ic_return: \
3834 pedwarn (RE); \
3835 break; \
3836 default: \
3837 gcc_unreachable (); \
3838 } \
3839 } while (0)
cb3ca04e 3840
ed248cf7 3841 STRIP_TYPE_NOPS (rhs);
3e4093b6 3842
46bdb9cf
JM
3843 if (optimize && TREE_CODE (rhs) == VAR_DECL
3844 && TREE_CODE (TREE_TYPE (rhs)) != ARRAY_TYPE)
3e4093b6
RS
3845 rhs = decl_constant_value_for_broken_optimization (rhs);
3846
3847 rhstype = TREE_TYPE (rhs);
3848 coder = TREE_CODE (rhstype);
3849
3850 if (coder == ERROR_MARK)
3851 return error_mark_node;
3852
58393038
ZL
3853 if (c_dialect_objc ())
3854 {
3855 int parmno;
3856
3857 switch (errtype)
3858 {
3859 case ic_return:
3860 parmno = 0;
3861 break;
3862
3863 case ic_assign:
3864 parmno = -1;
3865 break;
3866
3867 case ic_init:
3868 parmno = -2;
3869 break;
3870
3871 default:
3872 parmno = parmnum;
3873 break;
3874 }
3875
3876 objc_ok = objc_compare_types (type, rhstype, parmno, rname);
3877 }
3878
3e4093b6 3879 if (TYPE_MAIN_VARIANT (type) == TYPE_MAIN_VARIANT (rhstype))
59c0753d 3880 return rhs;
3e4093b6
RS
3881
3882 if (coder == VOID_TYPE)
400fbf9f 3883 {
6dcc04b0
JM
3884 /* Except for passing an argument to an unprototyped function,
3885 this is a constraint violation. When passing an argument to
3886 an unprototyped function, it is compile-time undefined;
3887 making it a constraint in that case was rejected in
3888 DR#252. */
3e4093b6
RS
3889 error ("void value not ignored as it ought to be");
3890 return error_mark_node;
400fbf9f 3891 }
3e4093b6
RS
3892 /* A type converts to a reference to it.
3893 This code doesn't fully support references, it's just for the
3894 special case of va_start and va_copy. */
3895 if (codel == REFERENCE_TYPE
132da1a5 3896 && comptypes (TREE_TYPE (type), TREE_TYPE (rhs)) == 1)
400fbf9f 3897 {
3e4093b6 3898 if (!lvalue_p (rhs))
400fbf9f 3899 {
3e4093b6
RS
3900 error ("cannot pass rvalue to reference parameter");
3901 return error_mark_node;
400fbf9f 3902 }
3e4093b6
RS
3903 if (!c_mark_addressable (rhs))
3904 return error_mark_node;
3905 rhs = build1 (ADDR_EXPR, build_pointer_type (TREE_TYPE (rhs)), rhs);
3906
3907 /* We already know that these two types are compatible, but they
3908 may not be exactly identical. In fact, `TREE_TYPE (type)' is
3909 likely to be __builtin_va_list and `TREE_TYPE (rhs)' is
3910 likely to be va_list, a typedef to __builtin_va_list, which
3911 is different enough that it will cause problems later. */
3912 if (TREE_TYPE (TREE_TYPE (rhs)) != TREE_TYPE (type))
3913 rhs = build1 (NOP_EXPR, build_pointer_type (TREE_TYPE (type)), rhs);
3914
3915 rhs = build1 (NOP_EXPR, type, rhs);
3916 return rhs;
400fbf9f 3917 }
3e4093b6 3918 /* Some types can interconvert without explicit casts. */
3274deff 3919 else if (codel == VECTOR_TYPE && coder == VECTOR_TYPE
00c8e9f6 3920 && vector_types_convertible_p (type, TREE_TYPE (rhs), true))
3e4093b6
RS
3921 return convert (type, rhs);
3922 /* Arithmetic types all interconvert, and enum is treated like int. */
3923 else if ((codel == INTEGER_TYPE || codel == REAL_TYPE
3924 || codel == ENUMERAL_TYPE || codel == COMPLEX_TYPE
3925 || codel == BOOLEAN_TYPE)
3926 && (coder == INTEGER_TYPE || coder == REAL_TYPE
3927 || coder == ENUMERAL_TYPE || coder == COMPLEX_TYPE
3928 || coder == BOOLEAN_TYPE))
3929 return convert_and_check (type, rhs);
400fbf9f 3930
79077aea
JJ
3931 /* Aggregates in different TUs might need conversion. */
3932 if ((codel == RECORD_TYPE || codel == UNION_TYPE)
3933 && codel == coder
3934 && comptypes (type, rhstype))
3935 return convert_and_check (type, rhs);
3936
3e4093b6
RS
3937 /* Conversion to a transparent union from its member types.
3938 This applies only to function arguments. */
79077aea
JJ
3939 if (codel == UNION_TYPE && TYPE_TRANSPARENT_UNION (type)
3940 && (errtype == ic_argpass || errtype == ic_argpass_nonproto))
400fbf9f 3941 {
0257e383 3942 tree memb, marginal_memb = NULL_TREE;
3e4093b6 3943
0257e383 3944 for (memb = TYPE_FIELDS (type); memb ; memb = TREE_CHAIN (memb))
400fbf9f 3945 {
0257e383 3946 tree memb_type = TREE_TYPE (memb);
400fbf9f 3947
3e4093b6 3948 if (comptypes (TYPE_MAIN_VARIANT (memb_type),
132da1a5 3949 TYPE_MAIN_VARIANT (rhstype)))
3e4093b6 3950 break;
e58cd767 3951
3e4093b6
RS
3952 if (TREE_CODE (memb_type) != POINTER_TYPE)
3953 continue;
2f6e4e97 3954
3e4093b6
RS
3955 if (coder == POINTER_TYPE)
3956 {
3957 tree ttl = TREE_TYPE (memb_type);
3958 tree ttr = TREE_TYPE (rhstype);
400fbf9f 3959
3e4093b6
RS
3960 /* Any non-function converts to a [const][volatile] void *
3961 and vice versa; otherwise, targets must be the same.
3962 Meanwhile, the lhs target must have all the qualifiers of
3963 the rhs. */
3964 if (VOID_TYPE_P (ttl) || VOID_TYPE_P (ttr)
58393038 3965 || comp_target_types (memb_type, rhstype))
3e4093b6
RS
3966 {
3967 /* If this type won't generate any warnings, use it. */
3968 if (TYPE_QUALS (ttl) == TYPE_QUALS (ttr)
3969 || ((TREE_CODE (ttr) == FUNCTION_TYPE
3970 && TREE_CODE (ttl) == FUNCTION_TYPE)
3971 ? ((TYPE_QUALS (ttl) | TYPE_QUALS (ttr))
3972 == TYPE_QUALS (ttr))
3973 : ((TYPE_QUALS (ttl) | TYPE_QUALS (ttr))
3974 == TYPE_QUALS (ttl))))
3975 break;
400fbf9f 3976
3e4093b6 3977 /* Keep looking for a better type, but remember this one. */
0257e383
RH
3978 if (!marginal_memb)
3979 marginal_memb = memb;
3e4093b6
RS
3980 }
3981 }
82bde854 3982
3e4093b6 3983 /* Can convert integer zero to any pointer type. */
6aa3c60d 3984 if (null_pointer_constant_p (rhs))
3e4093b6
RS
3985 {
3986 rhs = null_pointer_node;
3987 break;
3988 }
3989 }
400fbf9f 3990
0257e383 3991 if (memb || marginal_memb)
3e4093b6 3992 {
0257e383 3993 if (!memb)
3e4093b6
RS
3994 {
3995 /* We have only a marginally acceptable member type;
3996 it needs a warning. */
0257e383 3997 tree ttl = TREE_TYPE (TREE_TYPE (marginal_memb));
3e4093b6 3998 tree ttr = TREE_TYPE (rhstype);
714a0864 3999
3e4093b6
RS
4000 /* Const and volatile mean something different for function
4001 types, so the usual warnings are not appropriate. */
4002 if (TREE_CODE (ttr) == FUNCTION_TYPE
4003 && TREE_CODE (ttl) == FUNCTION_TYPE)
4004 {
4005 /* Because const and volatile on functions are
4006 restrictions that say the function will not do
4007 certain things, it is okay to use a const or volatile
4008 function where an ordinary one is wanted, but not
4009 vice-versa. */
4010 if (TYPE_QUALS (ttl) & ~TYPE_QUALS (ttr))
4b794eaf 4011 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE "
2ac2f164
JM
4012 "makes qualified function "
4013 "pointer from unqualified"),
4b794eaf 4014 G_("assignment makes qualified "
2ac2f164
JM
4015 "function pointer from "
4016 "unqualified"),
4b794eaf 4017 G_("initialization makes qualified "
2ac2f164
JM
4018 "function pointer from "
4019 "unqualified"),
4b794eaf 4020 G_("return makes qualified function "
2ac2f164 4021 "pointer from unqualified"));
3e4093b6
RS
4022 }
4023 else if (TYPE_QUALS (ttr) & ~TYPE_QUALS (ttl))
4b794eaf 4024 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE discards "
2ac2f164 4025 "qualifiers from pointer target type"),
4b794eaf 4026 G_("assignment discards qualifiers "
2ac2f164 4027 "from pointer target type"),
4b794eaf 4028 G_("initialization discards qualifiers "
2ac2f164 4029 "from pointer target type"),
4b794eaf 4030 G_("return discards qualifiers from "
2ac2f164 4031 "pointer target type"));
0257e383
RH
4032
4033 memb = marginal_memb;
3e4093b6 4034 }
400fbf9f 4035
13b22d3a 4036 if (pedantic && (!fundecl || !DECL_IN_SYSTEM_HEADER (fundecl)))
3e4093b6 4037 pedwarn ("ISO C prohibits argument conversion to union type");
0e7c47fa 4038
0257e383 4039 return build_constructor_single (type, memb, rhs);
3e4093b6 4040 }
0e7c47fa
RK
4041 }
4042
3e4093b6
RS
4043 /* Conversions among pointers */
4044 else if ((codel == POINTER_TYPE || codel == REFERENCE_TYPE)
4045 && (coder == codel))
400fbf9f 4046 {
3e4093b6
RS
4047 tree ttl = TREE_TYPE (type);
4048 tree ttr = TREE_TYPE (rhstype);
46df2823
JM
4049 tree mvl = ttl;
4050 tree mvr = ttr;
3e4093b6 4051 bool is_opaque_pointer;
264fa2db 4052 int target_cmp = 0; /* Cache comp_target_types () result. */
400fbf9f 4053
46df2823
JM
4054 if (TREE_CODE (mvl) != ARRAY_TYPE)
4055 mvl = TYPE_MAIN_VARIANT (mvl);
4056 if (TREE_CODE (mvr) != ARRAY_TYPE)
4057 mvr = TYPE_MAIN_VARIANT (mvr);
3e4093b6 4058 /* Opaque pointers are treated like void pointers. */
5fd9b178 4059 is_opaque_pointer = (targetm.vector_opaque_p (type)
c22cacf3
MS
4060 || targetm.vector_opaque_p (rhstype))
4061 && TREE_CODE (ttl) == VECTOR_TYPE
4062 && TREE_CODE (ttr) == VECTOR_TYPE;
4063
b7e20b53 4064 /* C++ does not allow the implicit conversion void* -> T*. However,
c22cacf3
MS
4065 for the purpose of reducing the number of false positives, we
4066 tolerate the special case of
b7e20b53 4067
c22cacf3 4068 int *p = NULL;
b7e20b53 4069
c22cacf3 4070 where NULL is typically defined in C to be '(void *) 0'. */
c6bdf92e 4071 if (VOID_TYPE_P (ttr) && rhs != null_pointer_node && !VOID_TYPE_P (ttl))
c22cacf3
MS
4072 warning (OPT_Wc___compat, "request for implicit conversion from "
4073 "%qT to %qT not permitted in C++", rhstype, type);
400fbf9f 4074
7876a414
KG
4075 /* Check if the right-hand side has a format attribute but the
4076 left-hand side doesn't. */
104f8784
KG
4077 if (warn_missing_format_attribute
4078 && check_missing_format_attribute (type, rhstype))
c22cacf3 4079 {
104f8784
KG
4080 switch (errtype)
4081 {
4082 case ic_argpass:
4083 case ic_argpass_nonproto:
4084 warning (OPT_Wmissing_format_attribute,
4085 "argument %d of %qE might be "
4086 "a candidate for a format attribute",
4087 parmnum, rname);
4088 break;
4089 case ic_assign:
4090 warning (OPT_Wmissing_format_attribute,
4091 "assignment left-hand side might be "
4092 "a candidate for a format attribute");
4093 break;
4094 case ic_init:
4095 warning (OPT_Wmissing_format_attribute,
4096 "initialization left-hand side might be "
4097 "a candidate for a format attribute");
4098 break;
4099 case ic_return:
4100 warning (OPT_Wmissing_format_attribute,
4101 "return type might be "
4102 "a candidate for a format attribute");
4103 break;
4104 default:
4105 gcc_unreachable ();
4106 }
7876a414 4107 }
c22cacf3 4108
3e4093b6
RS
4109 /* Any non-function converts to a [const][volatile] void *
4110 and vice versa; otherwise, targets must be the same.
4111 Meanwhile, the lhs target must have all the qualifiers of the rhs. */
4112 if (VOID_TYPE_P (ttl) || VOID_TYPE_P (ttr)
58393038 4113 || (target_cmp = comp_target_types (type, rhstype))
3e4093b6 4114 || is_opaque_pointer
12753674
RE
4115 || (c_common_unsigned_type (mvl)
4116 == c_common_unsigned_type (mvr)))
3e4093b6
RS
4117 {
4118 if (pedantic
4119 && ((VOID_TYPE_P (ttl) && TREE_CODE (ttr) == FUNCTION_TYPE)
4120 ||
4121 (VOID_TYPE_P (ttr)
6aa3c60d 4122 && !null_pointer_constant_p (rhs)
3e4093b6 4123 && TREE_CODE (ttl) == FUNCTION_TYPE)))
4b794eaf 4124 WARN_FOR_ASSIGNMENT (G_("ISO C forbids passing argument %d of "
2ac2f164
JM
4125 "%qE between function pointer "
4126 "and %<void *%>"),
4b794eaf 4127 G_("ISO C forbids assignment between "
2ac2f164 4128 "function pointer and %<void *%>"),
4b794eaf 4129 G_("ISO C forbids initialization between "
2ac2f164 4130 "function pointer and %<void *%>"),
4b794eaf 4131 G_("ISO C forbids return between function "
2ac2f164 4132 "pointer and %<void *%>"));
3e4093b6
RS
4133 /* Const and volatile mean something different for function types,
4134 so the usual warnings are not appropriate. */
4135 else if (TREE_CODE (ttr) != FUNCTION_TYPE
4136 && TREE_CODE (ttl) != FUNCTION_TYPE)
4137 {
4138 if (TYPE_QUALS (ttr) & ~TYPE_QUALS (ttl))
58393038
ZL
4139 {
4140 /* Types differing only by the presence of the 'volatile'
4141 qualifier are acceptable if the 'volatile' has been added
4142 in by the Objective-C EH machinery. */
4143 if (!objc_type_quals_match (ttl, ttr))
4b794eaf 4144 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE discards "
58393038 4145 "qualifiers from pointer target type"),
4b794eaf 4146 G_("assignment discards qualifiers "
58393038 4147 "from pointer target type"),
4b794eaf 4148 G_("initialization discards qualifiers "
58393038 4149 "from pointer target type"),
4b794eaf 4150 G_("return discards qualifiers from "
58393038
ZL
4151 "pointer target type"));
4152 }
3e4093b6
RS
4153 /* If this is not a case of ignoring a mismatch in signedness,
4154 no warning. */
4155 else if (VOID_TYPE_P (ttl) || VOID_TYPE_P (ttr)
264fa2db 4156 || target_cmp)
3e4093b6
RS
4157 ;
4158 /* If there is a mismatch, do warn. */
f2fd3821 4159 else if (warn_pointer_sign)
4b794eaf 4160 WARN_FOR_ASSIGNMENT (G_("pointer targets in passing argument "
2ac2f164 4161 "%d of %qE differ in signedness"),
4b794eaf 4162 G_("pointer targets in assignment "
2ac2f164 4163 "differ in signedness"),
4b794eaf 4164 G_("pointer targets in initialization "
2ac2f164 4165 "differ in signedness"),
4b794eaf 4166 G_("pointer targets in return differ "
2ac2f164 4167 "in signedness"));
3e4093b6
RS
4168 }
4169 else if (TREE_CODE (ttl) == FUNCTION_TYPE
4170 && TREE_CODE (ttr) == FUNCTION_TYPE)
4171 {
4172 /* Because const and volatile on functions are restrictions
4173 that say the function will not do certain things,
4174 it is okay to use a const or volatile function
4175 where an ordinary one is wanted, but not vice-versa. */
4176 if (TYPE_QUALS (ttl) & ~TYPE_QUALS (ttr))
4b794eaf 4177 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE makes "
2ac2f164
JM
4178 "qualified function pointer "
4179 "from unqualified"),
4b794eaf 4180 G_("assignment makes qualified function "
2ac2f164 4181 "pointer from unqualified"),
4b794eaf 4182 G_("initialization makes qualified "
2ac2f164 4183 "function pointer from unqualified"),
4b794eaf 4184 G_("return makes qualified function "
2ac2f164 4185 "pointer from unqualified"));
3e4093b6
RS
4186 }
4187 }
4188 else
58393038
ZL
4189 /* Avoid warning about the volatile ObjC EH puts on decls. */
4190 if (!objc_ok)
4b794eaf 4191 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE from "
58393038 4192 "incompatible pointer type"),
4b794eaf
JJ
4193 G_("assignment from incompatible pointer type"),
4194 G_("initialization from incompatible "
58393038 4195 "pointer type"),
4b794eaf 4196 G_("return from incompatible pointer type"));
58393038 4197
3e4093b6
RS
4198 return convert (type, rhs);
4199 }
b494fd98
EB
4200 else if (codel == POINTER_TYPE && coder == ARRAY_TYPE)
4201 {
6dcc04b0
JM
4202 /* ??? This should not be an error when inlining calls to
4203 unprototyped functions. */
b494fd98
EB
4204 error ("invalid use of non-lvalue array");
4205 return error_mark_node;
4206 }
3e4093b6 4207 else if (codel == POINTER_TYPE && coder == INTEGER_TYPE)
400fbf9f 4208 {
3e4093b6
RS
4209 /* An explicit constant 0 can convert to a pointer,
4210 or one that results from arithmetic, even including
4211 a cast to integer type. */
6aa3c60d 4212 if (!null_pointer_constant_p (rhs))
4b794eaf 4213 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE makes "
2ac2f164 4214 "pointer from integer without a cast"),
4b794eaf 4215 G_("assignment makes pointer from integer "
2ac2f164 4216 "without a cast"),
4b794eaf 4217 G_("initialization makes pointer from "
2ac2f164 4218 "integer without a cast"),
4b794eaf 4219 G_("return makes pointer from integer "
2ac2f164 4220 "without a cast"));
b3006337
EB
4221
4222 return convert (type, rhs);
400fbf9f 4223 }
3e4093b6 4224 else if (codel == INTEGER_TYPE && coder == POINTER_TYPE)
400fbf9f 4225 {
4b794eaf 4226 WARN_FOR_ASSIGNMENT (G_("passing argument %d of %qE makes integer "
2ac2f164 4227 "from pointer without a cast"),
4b794eaf 4228 G_("assignment makes integer from pointer "
2ac2f164 4229 "without a cast"),
4b794eaf 4230 G_("initialization makes integer from pointer "
2ac2f164 4231 "without a cast"),
4b794eaf 4232 G_("return makes integer from pointer "
2ac2f164 4233 "without a cast"));
3e4093b6
RS
4234 return convert (type, rhs);
4235 }
4236 else if (codel == BOOLEAN_TYPE && coder == POINTER_TYPE)
4237 return convert (type, rhs);
400fbf9f 4238
2ac2f164 4239 switch (errtype)
3e4093b6 4240 {
2ac2f164 4241 case ic_argpass:
6dcc04b0
JM
4242 case ic_argpass_nonproto:
4243 /* ??? This should not be an error when inlining calls to
4244 unprototyped functions. */
2ac2f164
JM
4245 error ("incompatible type for argument %d of %qE", parmnum, rname);
4246 break;
4247 case ic_assign:
4248 error ("incompatible types in assignment");
4249 break;
4250 case ic_init:
4251 error ("incompatible types in initialization");
4252 break;
4253 case ic_return:
4254 error ("incompatible types in return");
4255 break;
4256 default:
4257 gcc_unreachable ();
400fbf9f 4258 }
53b01f59 4259
3e4093b6
RS
4260 return error_mark_node;
4261}
3e4093b6
RS
4262\f
4263/* If VALUE is a compound expr all of whose expressions are constant, then
4264 return its value. Otherwise, return error_mark_node.
15b732b2 4265
3e4093b6
RS
4266 This is for handling COMPOUND_EXPRs as initializer elements
4267 which is allowed with a warning when -pedantic is specified. */
15b732b2 4268
3e4093b6
RS
4269static tree
4270valid_compound_expr_initializer (tree value, tree endtype)
4271{
4272 if (TREE_CODE (value) == COMPOUND_EXPR)
4273 {
4274 if (valid_compound_expr_initializer (TREE_OPERAND (value, 0), endtype)
4275 == error_mark_node)
4276 return error_mark_node;
4277 return valid_compound_expr_initializer (TREE_OPERAND (value, 1),
4278 endtype);
4279 }
116df786 4280 else if (!initializer_constant_valid_p (value, endtype))
3e4093b6
RS
4281 return error_mark_node;
4282 else
4283 return value;
15b732b2 4284}
400fbf9f 4285\f
3e4093b6
RS
4286/* Perform appropriate conversions on the initial value of a variable,
4287 store it in the declaration DECL,
4288 and print any error messages that are appropriate.
4289 If the init is invalid, store an ERROR_MARK. */
400fbf9f 4290
3e4093b6
RS
4291void
4292store_init_value (tree decl, tree init)
400fbf9f 4293{
3e4093b6 4294 tree value, type;
400fbf9f 4295
3e4093b6 4296 /* If variable's type was invalidly declared, just ignore it. */
400fbf9f 4297
3e4093b6
RS
4298 type = TREE_TYPE (decl);
4299 if (TREE_CODE (type) == ERROR_MARK)
4300 return;
400fbf9f 4301
3e4093b6 4302 /* Digest the specified initializer into an expression. */
400fbf9f 4303
916c5919 4304 value = digest_init (type, init, true, TREE_STATIC (decl));
400fbf9f 4305
3e4093b6 4306 /* Store the expression if valid; else report error. */
400fbf9f 4307
3176a0c2 4308 if (!in_system_header
3f75a254 4309 && AGGREGATE_TYPE_P (TREE_TYPE (decl)) && !TREE_STATIC (decl))
3176a0c2
DD
4310 warning (OPT_Wtraditional, "traditional C rejects automatic "
4311 "aggregate initialization");
2f6e4e97 4312
3e4093b6 4313 DECL_INITIAL (decl) = value;
400fbf9f 4314
3e4093b6
RS
4315 /* ANSI wants warnings about out-of-range constant initializers. */
4316 STRIP_TYPE_NOPS (value);
c2658540
MLI
4317 if (TREE_STATIC (decl))
4318 constant_expression_warning (value);
400fbf9f 4319
3e4093b6
RS
4320 /* Check if we need to set array size from compound literal size. */
4321 if (TREE_CODE (type) == ARRAY_TYPE
4322 && TYPE_DOMAIN (type) == 0
4323 && value != error_mark_node)
400fbf9f 4324 {
3e4093b6
RS
4325 tree inside_init = init;
4326
ed248cf7 4327 STRIP_TYPE_NOPS (inside_init);
3e4093b6
RS
4328 inside_init = fold (inside_init);
4329
4330 if (TREE_CODE (inside_init) == COMPOUND_LITERAL_EXPR)
4331 {
8d9f82d5 4332 tree cldecl = COMPOUND_LITERAL_EXPR_DECL (inside_init);
3e4093b6 4333
8d9f82d5 4334 if (TYPE_DOMAIN (TREE_TYPE (cldecl)))
3e4093b6
RS
4335 {
4336 /* For int foo[] = (int [3]){1}; we need to set array size
4337 now since later on array initializer will be just the
4338 brace enclosed list of the compound literal. */
8d9f82d5
AO
4339 type = build_distinct_type_copy (TYPE_MAIN_VARIANT (type));
4340 TREE_TYPE (decl) = type;
4341 TYPE_DOMAIN (type) = TYPE_DOMAIN (TREE_TYPE (cldecl));
3e4093b6 4342 layout_type (type);
8d9f82d5 4343 layout_decl (cldecl, 0);
3e4093b6
RS
4344 }
4345 }
400fbf9f 4346 }
3e4093b6
RS
4347}
4348\f
4349/* Methods for storing and printing names for error messages. */
400fbf9f 4350
3e4093b6
RS
4351/* Implement a spelling stack that allows components of a name to be pushed
4352 and popped. Each element on the stack is this structure. */
400fbf9f 4353
3e4093b6
RS
4354struct spelling
4355{
4356 int kind;
4357 union
400fbf9f 4358 {
a0f0ab9f 4359 unsigned HOST_WIDE_INT i;
3e4093b6
RS
4360 const char *s;
4361 } u;
4362};
2f6e4e97 4363
3e4093b6
RS
4364#define SPELLING_STRING 1
4365#define SPELLING_MEMBER 2
4366#define SPELLING_BOUNDS 3
400fbf9f 4367
3e4093b6
RS
4368static struct spelling *spelling; /* Next stack element (unused). */
4369static struct spelling *spelling_base; /* Spelling stack base. */
4370static int spelling_size; /* Size of the spelling stack. */
400fbf9f 4371
3e4093b6
RS
4372/* Macros to save and restore the spelling stack around push_... functions.
4373 Alternative to SAVE_SPELLING_STACK. */
400fbf9f 4374
3e4093b6
RS
4375#define SPELLING_DEPTH() (spelling - spelling_base)
4376#define RESTORE_SPELLING_DEPTH(DEPTH) (spelling = spelling_base + (DEPTH))
400fbf9f 4377
3e4093b6
RS
4378/* Push an element on the spelling stack with type KIND and assign VALUE
4379 to MEMBER. */
400fbf9f 4380
3e4093b6
RS
4381#define PUSH_SPELLING(KIND, VALUE, MEMBER) \
4382{ \
4383 int depth = SPELLING_DEPTH (); \
4384 \
4385 if (depth >= spelling_size) \
4386 { \
4387 spelling_size += 10; \
cca8ead2
BI
4388 spelling_base = XRESIZEVEC (struct spelling, spelling_base, \
4389 spelling_size); \
3e4093b6
RS
4390 RESTORE_SPELLING_DEPTH (depth); \
4391 } \
4392 \
4393 spelling->kind = (KIND); \
4394 spelling->MEMBER = (VALUE); \
4395 spelling++; \
4396}
400fbf9f 4397
3e4093b6 4398/* Push STRING on the stack. Printed literally. */
400fbf9f 4399
3e4093b6
RS
4400static void
4401push_string (const char *string)
4402{
4403 PUSH_SPELLING (SPELLING_STRING, string, u.s);
4404}
400fbf9f 4405
3e4093b6 4406/* Push a member name on the stack. Printed as '.' STRING. */
400fbf9f 4407
3e4093b6
RS
4408static void
4409push_member_name (tree decl)
4410{
4411 const char *const string
4412 = DECL_NAME (decl) ? IDENTIFIER_POINTER (DECL_NAME (decl)) : "<anonymous>";
4413 PUSH_SPELLING (SPELLING_MEMBER, string, u.s);
4414}
400fbf9f 4415
3e4093b6 4416/* Push an array bounds on the stack. Printed as [BOUNDS]. */
400fbf9f 4417
3e4093b6 4418static void
a0f0ab9f 4419push_array_bounds (unsigned HOST_WIDE_INT bounds)
3e4093b6
RS
4420{
4421 PUSH_SPELLING (SPELLING_BOUNDS, bounds, u.i);
4422}
bb58bec5 4423
3e4093b6 4424/* Compute the maximum size in bytes of the printed spelling. */
400fbf9f 4425
3e4093b6
RS
4426static int
4427spelling_length (void)
4428{
4429 int size = 0;
4430 struct spelling *p;
400fbf9f 4431
3e4093b6
RS
4432 for (p = spelling_base; p < spelling; p++)
4433 {
4434 if (p->kind == SPELLING_BOUNDS)
4435 size += 25;
4436 else
4437 size += strlen (p->u.s) + 1;
4438 }
4439
4440 return size;
400fbf9f 4441}
400fbf9f 4442
3e4093b6 4443/* Print the spelling to BUFFER and return it. */
400fbf9f 4444
3e4093b6
RS
4445static char *
4446print_spelling (char *buffer)
400fbf9f 4447{
3e4093b6
RS
4448 char *d = buffer;
4449 struct spelling *p;
400fbf9f 4450
3e4093b6
RS
4451 for (p = spelling_base; p < spelling; p++)
4452 if (p->kind == SPELLING_BOUNDS)
4453 {
a0f0ab9f 4454 sprintf (d, "[" HOST_WIDE_INT_PRINT_UNSIGNED "]", p->u.i);
3e4093b6
RS
4455 d += strlen (d);
4456 }
4457 else
4458 {
4459 const char *s;
4460 if (p->kind == SPELLING_MEMBER)
4461 *d++ = '.';
4462 for (s = p->u.s; (*d = *s++); d++)
4463 ;
4464 }
4465 *d++ = '\0';
4466 return buffer;
4467}
400fbf9f 4468
3e4093b6
RS
4469/* Issue an error message for a bad initializer component.
4470 MSGID identifies the message.
4471 The component name is taken from the spelling stack. */
400fbf9f 4472
3e4093b6
RS
4473void
4474error_init (const char *msgid)
4475{
4476 char *ofwhat;
400fbf9f 4477
3e4093b6 4478 error ("%s", _(msgid));
28dab132 4479 ofwhat = print_spelling ((char *) alloca (spelling_length () + 1));
3e4093b6 4480 if (*ofwhat)
bda67431 4481 error ("(near initialization for %qs)", ofwhat);
3e4093b6 4482}
400fbf9f 4483
3e4093b6
RS
4484/* Issue a pedantic warning for a bad initializer component.
4485 MSGID identifies the message.
4486 The component name is taken from the spelling stack. */
400fbf9f 4487
3e4093b6
RS
4488void
4489pedwarn_init (const char *msgid)
4490{
4491 char *ofwhat;
9f720c3e 4492
3e4093b6 4493 pedwarn ("%s", _(msgid));
28dab132 4494 ofwhat = print_spelling ((char *) alloca (spelling_length () + 1));
3e4093b6 4495 if (*ofwhat)
bda67431 4496 pedwarn ("(near initialization for %qs)", ofwhat);
3e4093b6 4497}
9f720c3e 4498
3e4093b6
RS
4499/* Issue a warning for a bad initializer component.
4500 MSGID identifies the message.
4501 The component name is taken from the spelling stack. */
61179109 4502
3e4093b6
RS
4503static void
4504warning_init (const char *msgid)
4505{
4506 char *ofwhat;
7e842ef8 4507
d4ee4d25 4508 warning (0, "%s", _(msgid));
28dab132 4509 ofwhat = print_spelling ((char *) alloca (spelling_length () + 1));
3e4093b6 4510 if (*ofwhat)
d4ee4d25 4511 warning (0, "(near initialization for %qs)", ofwhat);
3e4093b6
RS
4512}
4513\f
916c5919
JM
4514/* If TYPE is an array type and EXPR is a parenthesized string
4515 constant, warn if pedantic that EXPR is being used to initialize an
4516 object of type TYPE. */
4517
4518void
4519maybe_warn_string_init (tree type, struct c_expr expr)
4520{
4521 if (pedantic
4522 && TREE_CODE (type) == ARRAY_TYPE
4523 && TREE_CODE (expr.value) == STRING_CST
4524 && expr.original_code != STRING_CST)
4525 pedwarn_init ("array initialized from parenthesized string constant");
4526}
4527
3e4093b6
RS
4528/* Digest the parser output INIT as an initializer for type TYPE.
4529 Return a C expression of type TYPE to represent the initial value.
7e842ef8 4530
916c5919
JM
4531 If INIT is a string constant, STRICT_STRING is true if it is
4532 unparenthesized or we should not warn here for it being parenthesized.
4533 For other types of INIT, STRICT_STRING is not used.
4534
3e4093b6
RS
4535 REQUIRE_CONSTANT requests an error if non-constant initializers or
4536 elements are seen. */
7e842ef8 4537
3e4093b6 4538static tree
916c5919 4539digest_init (tree type, tree init, bool strict_string, int require_constant)
3e4093b6
RS
4540{
4541 enum tree_code code = TREE_CODE (type);
4542 tree inside_init = init;
7e842ef8 4543
3e4093b6 4544 if (type == error_mark_node
f01da1a5 4545 || !init
3e4093b6
RS
4546 || init == error_mark_node
4547 || TREE_TYPE (init) == error_mark_node)
4548 return error_mark_node;
7e842ef8 4549
ed248cf7 4550 STRIP_TYPE_NOPS (inside_init);
7e842ef8 4551
3e4093b6 4552 inside_init = fold (inside_init);
7e842ef8 4553
3e4093b6
RS
4554 /* Initialization of an array of chars from a string constant
4555 optionally enclosed in braces. */
7e842ef8 4556
197463ae
JM
4557 if (code == ARRAY_TYPE && inside_init
4558 && TREE_CODE (inside_init) == STRING_CST)
3e4093b6
RS
4559 {
4560 tree typ1 = TYPE_MAIN_VARIANT (TREE_TYPE (type));
197463ae
JM
4561 /* Note that an array could be both an array of character type
4562 and an array of wchar_t if wchar_t is signed char or unsigned
4563 char. */
4564 bool char_array = (typ1 == char_type_node
4565 || typ1 == signed_char_type_node
4566 || typ1 == unsigned_char_type_node);
4567 bool wchar_array = !!comptypes (typ1, wchar_type_node);
4568 if (char_array || wchar_array)
7e842ef8 4569 {
916c5919 4570 struct c_expr expr;
197463ae 4571 bool char_string;
916c5919
JM
4572 expr.value = inside_init;
4573 expr.original_code = (strict_string ? STRING_CST : ERROR_MARK);
4574 maybe_warn_string_init (type, expr);
4575
197463ae
JM
4576 char_string
4577 = (TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (inside_init)))
4578 == char_type_node);
4579
3e4093b6 4580 if (comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (inside_init)),
132da1a5 4581 TYPE_MAIN_VARIANT (type)))
3e4093b6 4582 return inside_init;
7e842ef8 4583
197463ae 4584 if (!wchar_array && !char_string)
3e4093b6
RS
4585 {
4586 error_init ("char-array initialized from wide string");
4587 return error_mark_node;
4588 }
197463ae 4589 if (char_string && !char_array)
3e4093b6 4590 {
197463ae 4591 error_init ("wchar_t-array initialized from non-wide string");
3e4093b6 4592 return error_mark_node;
7e842ef8 4593 }
2f6e4e97 4594
3e4093b6
RS
4595 TREE_TYPE (inside_init) = type;
4596 if (TYPE_DOMAIN (type) != 0
4597 && TYPE_SIZE (type) != 0
4598 && TREE_CODE (TYPE_SIZE (type)) == INTEGER_CST
4599 /* Subtract 1 (or sizeof (wchar_t))
4600 because it's ok to ignore the terminating null char
4601 that is counted in the length of the constant. */
4602 && 0 > compare_tree_int (TYPE_SIZE_UNIT (type),
4603 TREE_STRING_LENGTH (inside_init)
4604 - ((TYPE_PRECISION (typ1)
4605 != TYPE_PRECISION (char_type_node))
4606 ? (TYPE_PRECISION (wchar_type_node)
4607 / BITS_PER_UNIT)
4608 : 1)))
4609 pedwarn_init ("initializer-string for array of chars is too long");
7e842ef8 4610
3e4093b6 4611 return inside_init;
7e842ef8 4612 }
197463ae
JM
4613 else if (INTEGRAL_TYPE_P (typ1))
4614 {
4615 error_init ("array of inappropriate type initialized "
4616 "from string constant");
4617 return error_mark_node;
4618 }
7e842ef8
PE
4619 }
4620
3e4093b6
RS
4621 /* Build a VECTOR_CST from a *constant* vector constructor. If the
4622 vector constructor is not constant (e.g. {1,2,3,foo()}) then punt
4623 below and handle as a constructor. */
e89be13b
JJ
4624 if (code == VECTOR_TYPE
4625 && TREE_CODE (TREE_TYPE (inside_init)) == VECTOR_TYPE
00c8e9f6 4626 && vector_types_convertible_p (TREE_TYPE (inside_init), type, true)
e89be13b
JJ
4627 && TREE_CONSTANT (inside_init))
4628 {
4629 if (TREE_CODE (inside_init) == VECTOR_CST
4630 && comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (inside_init)),
4631 TYPE_MAIN_VARIANT (type)))
4632 return inside_init;
4633
4634 if (TREE_CODE (inside_init) == CONSTRUCTOR)
4635 {
4038c495
GB
4636 unsigned HOST_WIDE_INT ix;
4637 tree value;
4638 bool constant_p = true;
e89be13b
JJ
4639
4640 /* Iterate through elements and check if all constructor
4641 elements are *_CSTs. */
4038c495
GB
4642 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (inside_init), ix, value)
4643 if (!CONSTANT_CLASS_P (value))
4644 {
4645 constant_p = false;
4646 break;
4647 }
e89be13b 4648
4038c495
GB
4649 if (constant_p)
4650 return build_vector_from_ctor (type,
4651 CONSTRUCTOR_ELTS (inside_init));
e89be13b
JJ
4652 }
4653 }
6035d635 4654
3e4093b6
RS
4655 /* Any type can be initialized
4656 from an expression of the same type, optionally with braces. */
400fbf9f 4657
3e4093b6
RS
4658 if (inside_init && TREE_TYPE (inside_init) != 0
4659 && (comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (inside_init)),
132da1a5 4660 TYPE_MAIN_VARIANT (type))
3e4093b6 4661 || (code == ARRAY_TYPE
132da1a5 4662 && comptypes (TREE_TYPE (inside_init), type))
3e4093b6 4663 || (code == VECTOR_TYPE
132da1a5 4664 && comptypes (TREE_TYPE (inside_init), type))
3e4093b6 4665 || (code == POINTER_TYPE
3897f229 4666 && TREE_CODE (TREE_TYPE (inside_init)) == ARRAY_TYPE
3e4093b6 4667 && comptypes (TREE_TYPE (TREE_TYPE (inside_init)),
132da1a5 4668 TREE_TYPE (type)))))
3e4093b6
RS
4669 {
4670 if (code == POINTER_TYPE)
b494fd98 4671 {
b494fd98
EB
4672 if (TREE_CODE (TREE_TYPE (inside_init)) == ARRAY_TYPE)
4673 {
f2a71bbc
JM
4674 if (TREE_CODE (inside_init) == STRING_CST
4675 || TREE_CODE (inside_init) == COMPOUND_LITERAL_EXPR)
4676 inside_init = array_to_pointer_conversion (inside_init);
4677 else
4678 {
4679 error_init ("invalid use of non-lvalue array");
4680 return error_mark_node;
4681 }
b494fd98 4682 }
f2a71bbc 4683 }
b494fd98 4684
bae39a73
NS
4685 if (code == VECTOR_TYPE)
4686 /* Although the types are compatible, we may require a
4687 conversion. */
4688 inside_init = convert (type, inside_init);
3e4093b6 4689
ca58211b
PB
4690 if (require_constant
4691 && (code == VECTOR_TYPE || !flag_isoc99)
3e4093b6 4692 && TREE_CODE (inside_init) == COMPOUND_LITERAL_EXPR)
400fbf9f 4693 {
3e4093b6
RS
4694 /* As an extension, allow initializing objects with static storage
4695 duration with compound literals (which are then treated just as
ca58211b
PB
4696 the brace enclosed list they contain). Also allow this for
4697 vectors, as we can only assign them with compound literals. */
3e4093b6
RS
4698 tree decl = COMPOUND_LITERAL_EXPR_DECL (inside_init);
4699 inside_init = DECL_INITIAL (decl);
400fbf9f 4700 }
3e4093b6
RS
4701
4702 if (code == ARRAY_TYPE && TREE_CODE (inside_init) != STRING_CST
4703 && TREE_CODE (inside_init) != CONSTRUCTOR)
400fbf9f 4704 {
3e4093b6
RS
4705 error_init ("array initialized from non-constant array expression");
4706 return error_mark_node;
400fbf9f 4707 }
400fbf9f 4708
3e4093b6
RS
4709 if (optimize && TREE_CODE (inside_init) == VAR_DECL)
4710 inside_init = decl_constant_value_for_broken_optimization (inside_init);
2f6e4e97 4711
3e4093b6
RS
4712 /* Compound expressions can only occur here if -pedantic or
4713 -pedantic-errors is specified. In the later case, we always want
4714 an error. In the former case, we simply want a warning. */
4715 if (require_constant && pedantic
4716 && TREE_CODE (inside_init) == COMPOUND_EXPR)
4717 {
4718 inside_init
4719 = valid_compound_expr_initializer (inside_init,
4720 TREE_TYPE (inside_init));
4721 if (inside_init == error_mark_node)
4722 error_init ("initializer element is not constant");
2f6e4e97 4723 else
3e4093b6
RS
4724 pedwarn_init ("initializer element is not constant");
4725 if (flag_pedantic_errors)
4726 inside_init = error_mark_node;
4727 }
4728 else if (require_constant
116df786
RH
4729 && !initializer_constant_valid_p (inside_init,
4730 TREE_TYPE (inside_init)))
3e4093b6
RS
4731 {
4732 error_init ("initializer element is not constant");
4733 inside_init = error_mark_node;
8b40563c 4734 }
f735a153 4735
8fcef540
KG
4736 /* Added to enable additional -Wmissing-format-attribute warnings. */
4737 if (TREE_CODE (TREE_TYPE (inside_init)) == POINTER_TYPE)
4738 inside_init = convert_for_assignment (type, inside_init, ic_init, NULL_TREE,
4739 NULL_TREE, 0);
3e4093b6
RS
4740 return inside_init;
4741 }
f735a153 4742
3e4093b6 4743 /* Handle scalar types, including conversions. */
400fbf9f 4744
3e4093b6 4745 if (code == INTEGER_TYPE || code == REAL_TYPE || code == POINTER_TYPE
cc27e657
PB
4746 || code == ENUMERAL_TYPE || code == BOOLEAN_TYPE || code == COMPLEX_TYPE
4747 || code == VECTOR_TYPE)
400fbf9f 4748 {
f2a71bbc
JM
4749 if (TREE_CODE (TREE_TYPE (init)) == ARRAY_TYPE
4750 && (TREE_CODE (init) == STRING_CST
4751 || TREE_CODE (init) == COMPOUND_LITERAL_EXPR))
4752 init = array_to_pointer_conversion (init);
3e4093b6 4753 inside_init
2ac2f164 4754 = convert_for_assignment (type, init, ic_init,
3e4093b6 4755 NULL_TREE, NULL_TREE, 0);
2f6e4e97 4756
3274deff
JW
4757 /* Check to see if we have already given an error message. */
4758 if (inside_init == error_mark_node)
4759 ;
3f75a254 4760 else if (require_constant && !TREE_CONSTANT (inside_init))
400fbf9f 4761 {
3e4093b6
RS
4762 error_init ("initializer element is not constant");
4763 inside_init = error_mark_node;
400fbf9f 4764 }
3e4093b6 4765 else if (require_constant
116df786
RH
4766 && !initializer_constant_valid_p (inside_init,
4767 TREE_TYPE (inside_init)))
400fbf9f 4768 {
3e4093b6
RS
4769 error_init ("initializer element is not computable at load time");
4770 inside_init = error_mark_node;
400fbf9f 4771 }
3e4093b6
RS
4772
4773 return inside_init;
400fbf9f 4774 }
d9fc6069 4775
3e4093b6 4776 /* Come here only for records and arrays. */
d9fc6069 4777
3e4093b6 4778 if (COMPLETE_TYPE_P (type) && TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST)
d9fc6069 4779 {
3e4093b6
RS
4780 error_init ("variable-sized object may not be initialized");
4781 return error_mark_node;
d9fc6069 4782 }
3e4093b6
RS
4783
4784 error_init ("invalid initializer");
4785 return error_mark_node;
d9fc6069 4786}
400fbf9f 4787\f
3e4093b6 4788/* Handle initializers that use braces. */
400fbf9f 4789
3e4093b6
RS
4790/* Type of object we are accumulating a constructor for.
4791 This type is always a RECORD_TYPE, UNION_TYPE or ARRAY_TYPE. */
4792static tree constructor_type;
400fbf9f 4793
3e4093b6
RS
4794/* For a RECORD_TYPE or UNION_TYPE, this is the chain of fields
4795 left to fill. */
4796static tree constructor_fields;
400fbf9f 4797
3e4093b6
RS
4798/* For an ARRAY_TYPE, this is the specified index
4799 at which to store the next element we get. */
4800static tree constructor_index;
400fbf9f 4801
3e4093b6
RS
4802/* For an ARRAY_TYPE, this is the maximum index. */
4803static tree constructor_max_index;
400fbf9f 4804
3e4093b6
RS
4805/* For a RECORD_TYPE, this is the first field not yet written out. */
4806static tree constructor_unfilled_fields;
400fbf9f 4807
3e4093b6
RS
4808/* For an ARRAY_TYPE, this is the index of the first element
4809 not yet written out. */
4810static tree constructor_unfilled_index;
895ea614 4811
3e4093b6
RS
4812/* In a RECORD_TYPE, the byte index of the next consecutive field.
4813 This is so we can generate gaps between fields, when appropriate. */
4814static tree constructor_bit_index;
10d5caec 4815
3e4093b6
RS
4816/* If we are saving up the elements rather than allocating them,
4817 this is the list of elements so far (in reverse order,
4818 most recent first). */
4038c495 4819static VEC(constructor_elt,gc) *constructor_elements;
ad47f1e5 4820
3e4093b6
RS
4821/* 1 if constructor should be incrementally stored into a constructor chain,
4822 0 if all the elements should be kept in AVL tree. */
4823static int constructor_incremental;
ad47f1e5 4824
3e4093b6
RS
4825/* 1 if so far this constructor's elements are all compile-time constants. */
4826static int constructor_constant;
ad47f1e5 4827
3e4093b6
RS
4828/* 1 if so far this constructor's elements are all valid address constants. */
4829static int constructor_simple;
ad47f1e5 4830
3e4093b6
RS
4831/* 1 if this constructor is erroneous so far. */
4832static int constructor_erroneous;
d45cf215 4833
3e4093b6
RS
4834/* Structure for managing pending initializer elements, organized as an
4835 AVL tree. */
d45cf215 4836
3e4093b6 4837struct init_node
d45cf215 4838{
3e4093b6
RS
4839 struct init_node *left, *right;
4840 struct init_node *parent;
4841 int balance;
4842 tree purpose;
4843 tree value;
d45cf215
RS
4844};
4845
3e4093b6
RS
4846/* Tree of pending elements at this constructor level.
4847 These are elements encountered out of order
4848 which belong at places we haven't reached yet in actually
4849 writing the output.
4850 Will never hold tree nodes across GC runs. */
4851static struct init_node *constructor_pending_elts;
d45cf215 4852
3e4093b6
RS
4853/* The SPELLING_DEPTH of this constructor. */
4854static int constructor_depth;
d45cf215 4855
3e4093b6
RS
4856/* DECL node for which an initializer is being read.
4857 0 means we are reading a constructor expression
4858 such as (struct foo) {...}. */
4859static tree constructor_decl;
d45cf215 4860
3e4093b6
RS
4861/* Nonzero if this is an initializer for a top-level decl. */
4862static int constructor_top_level;
d45cf215 4863
3e4093b6
RS
4864/* Nonzero if there were any member designators in this initializer. */
4865static int constructor_designated;
d45cf215 4866
3e4093b6
RS
4867/* Nesting depth of designator list. */
4868static int designator_depth;
d45cf215 4869
3e4093b6 4870/* Nonzero if there were diagnosed errors in this designator list. */
b06df647 4871static int designator_erroneous;
d45cf215 4872
3e4093b6
RS
4873\f
4874/* This stack has a level for each implicit or explicit level of
4875 structuring in the initializer, including the outermost one. It
4876 saves the values of most of the variables above. */
d45cf215 4877
3e4093b6
RS
4878struct constructor_range_stack;
4879
4880struct constructor_stack
d45cf215 4881{
3e4093b6
RS
4882 struct constructor_stack *next;
4883 tree type;
4884 tree fields;
4885 tree index;
4886 tree max_index;
4887 tree unfilled_index;
4888 tree unfilled_fields;
4889 tree bit_index;
4038c495 4890 VEC(constructor_elt,gc) *elements;
3e4093b6
RS
4891 struct init_node *pending_elts;
4892 int offset;
4893 int depth;
916c5919 4894 /* If value nonzero, this value should replace the entire
3e4093b6 4895 constructor at this level. */
916c5919 4896 struct c_expr replacement_value;
3e4093b6
RS
4897 struct constructor_range_stack *range_stack;
4898 char constant;
4899 char simple;
4900 char implicit;
4901 char erroneous;
4902 char outer;
4903 char incremental;
4904 char designated;
4905};
d45cf215 4906
802415d1 4907static struct constructor_stack *constructor_stack;
d45cf215 4908
3e4093b6
RS
4909/* This stack represents designators from some range designator up to
4910 the last designator in the list. */
d45cf215 4911
3e4093b6
RS
4912struct constructor_range_stack
4913{
4914 struct constructor_range_stack *next, *prev;
4915 struct constructor_stack *stack;
4916 tree range_start;
4917 tree index;
4918 tree range_end;
4919 tree fields;
4920};
d45cf215 4921
802415d1 4922static struct constructor_range_stack *constructor_range_stack;
d45cf215 4923
3e4093b6
RS
4924/* This stack records separate initializers that are nested.
4925 Nested initializers can't happen in ANSI C, but GNU C allows them
4926 in cases like { ... (struct foo) { ... } ... }. */
d45cf215 4927
3e4093b6 4928struct initializer_stack
d45cf215 4929{
3e4093b6
RS
4930 struct initializer_stack *next;
4931 tree decl;
3e4093b6
RS
4932 struct constructor_stack *constructor_stack;
4933 struct constructor_range_stack *constructor_range_stack;
4038c495 4934 VEC(constructor_elt,gc) *elements;
3e4093b6
RS
4935 struct spelling *spelling;
4936 struct spelling *spelling_base;
4937 int spelling_size;
4938 char top_level;
4939 char require_constant_value;
4940 char require_constant_elements;
4941};
d45cf215 4942
802415d1 4943static struct initializer_stack *initializer_stack;
3e4093b6
RS
4944\f
4945/* Prepare to parse and output the initializer for variable DECL. */
400fbf9f
JW
4946
4947void
a396f8ae 4948start_init (tree decl, tree asmspec_tree ATTRIBUTE_UNUSED, int top_level)
400fbf9f 4949{
3e4093b6 4950 const char *locus;
cceb1885 4951 struct initializer_stack *p = XNEW (struct initializer_stack);
400fbf9f 4952
3e4093b6 4953 p->decl = constructor_decl;
3e4093b6
RS
4954 p->require_constant_value = require_constant_value;
4955 p->require_constant_elements = require_constant_elements;
4956 p->constructor_stack = constructor_stack;
4957 p->constructor_range_stack = constructor_range_stack;
4958 p->elements = constructor_elements;
4959 p->spelling = spelling;
4960 p->spelling_base = spelling_base;
4961 p->spelling_size = spelling_size;
4962 p->top_level = constructor_top_level;
4963 p->next = initializer_stack;
4964 initializer_stack = p;
400fbf9f 4965
3e4093b6 4966 constructor_decl = decl;
3e4093b6
RS
4967 constructor_designated = 0;
4968 constructor_top_level = top_level;
400fbf9f 4969
6f17bbcf 4970 if (decl != 0 && decl != error_mark_node)
3e4093b6
RS
4971 {
4972 require_constant_value = TREE_STATIC (decl);
4973 require_constant_elements
4974 = ((TREE_STATIC (decl) || (pedantic && !flag_isoc99))
4975 /* For a scalar, you can always use any value to initialize,
4976 even within braces. */
4977 && (TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE
4978 || TREE_CODE (TREE_TYPE (decl)) == RECORD_TYPE
4979 || TREE_CODE (TREE_TYPE (decl)) == UNION_TYPE
4980 || TREE_CODE (TREE_TYPE (decl)) == QUAL_UNION_TYPE));
4981 locus = IDENTIFIER_POINTER (DECL_NAME (decl));
4982 }
4983 else
4984 {
4985 require_constant_value = 0;
4986 require_constant_elements = 0;
4987 locus = "(anonymous)";
4988 }
b71c7f8a 4989
3e4093b6
RS
4990 constructor_stack = 0;
4991 constructor_range_stack = 0;
b71c7f8a 4992
3e4093b6
RS
4993 missing_braces_mentioned = 0;
4994
4995 spelling_base = 0;
4996 spelling_size = 0;
4997 RESTORE_SPELLING_DEPTH (0);
4998
4999 if (locus)
5000 push_string (locus);
5001}
5002
5003void
5004finish_init (void)
b71c7f8a 5005{
3e4093b6 5006 struct initializer_stack *p = initializer_stack;
b71c7f8a 5007
3e4093b6
RS
5008 /* Free the whole constructor stack of this initializer. */
5009 while (constructor_stack)
5010 {
5011 struct constructor_stack *q = constructor_stack;
5012 constructor_stack = q->next;
5013 free (q);
5014 }
5015
366de0ce 5016 gcc_assert (!constructor_range_stack);
3e4093b6
RS
5017
5018 /* Pop back to the data of the outer initializer (if any). */
36579663 5019 free (spelling_base);
3aeb3655 5020
3e4093b6 5021 constructor_decl = p->decl;
3e4093b6
RS
5022 require_constant_value = p->require_constant_value;
5023 require_constant_elements = p->require_constant_elements;
5024 constructor_stack = p->constructor_stack;
5025 constructor_range_stack = p->constructor_range_stack;
5026 constructor_elements = p->elements;
5027 spelling = p->spelling;
5028 spelling_base = p->spelling_base;
5029 spelling_size = p->spelling_size;
5030 constructor_top_level = p->top_level;
5031 initializer_stack = p->next;
5032 free (p);
b71c7f8a 5033}
400fbf9f 5034\f
3e4093b6
RS
5035/* Call here when we see the initializer is surrounded by braces.
5036 This is instead of a call to push_init_level;
5037 it is matched by a call to pop_init_level.
400fbf9f 5038
3e4093b6
RS
5039 TYPE is the type to initialize, for a constructor expression.
5040 For an initializer for a decl, TYPE is zero. */
400fbf9f 5041
3e4093b6
RS
5042void
5043really_start_incremental_init (tree type)
400fbf9f 5044{
5d038c4c 5045 struct constructor_stack *p = XNEW (struct constructor_stack);
400fbf9f 5046
3e4093b6
RS
5047 if (type == 0)
5048 type = TREE_TYPE (constructor_decl);
400fbf9f 5049
5fd9b178 5050 if (targetm.vector_opaque_p (type))
3e4093b6 5051 error ("opaque vector types cannot be initialized");
400fbf9f 5052
3e4093b6
RS
5053 p->type = constructor_type;
5054 p->fields = constructor_fields;
5055 p->index = constructor_index;
5056 p->max_index = constructor_max_index;
5057 p->unfilled_index = constructor_unfilled_index;
5058 p->unfilled_fields = constructor_unfilled_fields;
5059 p->bit_index = constructor_bit_index;
5060 p->elements = constructor_elements;
5061 p->constant = constructor_constant;
5062 p->simple = constructor_simple;
5063 p->erroneous = constructor_erroneous;
5064 p->pending_elts = constructor_pending_elts;
5065 p->depth = constructor_depth;
916c5919
JM
5066 p->replacement_value.value = 0;
5067 p->replacement_value.original_code = ERROR_MARK;
3e4093b6
RS
5068 p->implicit = 0;
5069 p->range_stack = 0;
5070 p->outer = 0;
5071 p->incremental = constructor_incremental;
5072 p->designated = constructor_designated;
5073 p->next = 0;
5074 constructor_stack = p;
b13aca19 5075
3e4093b6
RS
5076 constructor_constant = 1;
5077 constructor_simple = 1;
5078 constructor_depth = SPELLING_DEPTH ();
5079 constructor_elements = 0;
5080 constructor_pending_elts = 0;
5081 constructor_type = type;
5082 constructor_incremental = 1;
5083 constructor_designated = 0;
5084 designator_depth = 0;
b06df647 5085 designator_erroneous = 0;
400fbf9f 5086
3e4093b6
RS
5087 if (TREE_CODE (constructor_type) == RECORD_TYPE
5088 || TREE_CODE (constructor_type) == UNION_TYPE)
400fbf9f 5089 {
3e4093b6
RS
5090 constructor_fields = TYPE_FIELDS (constructor_type);
5091 /* Skip any nameless bit fields at the beginning. */
5092 while (constructor_fields != 0 && DECL_C_BIT_FIELD (constructor_fields)
5093 && DECL_NAME (constructor_fields) == 0)
5094 constructor_fields = TREE_CHAIN (constructor_fields);
05bccae2 5095
3e4093b6
RS
5096 constructor_unfilled_fields = constructor_fields;
5097 constructor_bit_index = bitsize_zero_node;
400fbf9f 5098 }
3e4093b6
RS
5099 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
5100 {
5101 if (TYPE_DOMAIN (constructor_type))
5102 {
5103 constructor_max_index
5104 = TYPE_MAX_VALUE (TYPE_DOMAIN (constructor_type));
400fbf9f 5105
3e4093b6
RS
5106 /* Detect non-empty initializations of zero-length arrays. */
5107 if (constructor_max_index == NULL_TREE
5108 && TYPE_SIZE (constructor_type))
7d60be94 5109 constructor_max_index = build_int_cst (NULL_TREE, -1);
400fbf9f 5110
3e4093b6
RS
5111 /* constructor_max_index needs to be an INTEGER_CST. Attempts
5112 to initialize VLAs will cause a proper error; avoid tree
5113 checking errors as well by setting a safe value. */
5114 if (constructor_max_index
5115 && TREE_CODE (constructor_max_index) != INTEGER_CST)
7d60be94 5116 constructor_max_index = build_int_cst (NULL_TREE, -1);
59c83dbf 5117
3e4093b6
RS
5118 constructor_index
5119 = convert (bitsizetype,
5120 TYPE_MIN_VALUE (TYPE_DOMAIN (constructor_type)));
59c83dbf 5121 }
3e4093b6 5122 else
493179da
JM
5123 {
5124 constructor_index = bitsize_zero_node;
5125 constructor_max_index = NULL_TREE;
5126 }
59c83dbf 5127
3e4093b6
RS
5128 constructor_unfilled_index = constructor_index;
5129 }
5130 else if (TREE_CODE (constructor_type) == VECTOR_TYPE)
5131 {
5132 /* Vectors are like simple fixed-size arrays. */
5133 constructor_max_index =
7d60be94 5134 build_int_cst (NULL_TREE, TYPE_VECTOR_SUBPARTS (constructor_type) - 1);
a0f0ab9f 5135 constructor_index = bitsize_zero_node;
3e4093b6
RS
5136 constructor_unfilled_index = constructor_index;
5137 }
5138 else
5139 {
5140 /* Handle the case of int x = {5}; */
5141 constructor_fields = constructor_type;
5142 constructor_unfilled_fields = constructor_type;
5143 }
5144}
5145\f
5146/* Push down into a subobject, for initialization.
5147 If this is for an explicit set of braces, IMPLICIT is 0.
5148 If it is because the next element belongs at a lower level,
5149 IMPLICIT is 1 (or 2 if the push is because of designator list). */
400fbf9f 5150
3e4093b6
RS
5151void
5152push_init_level (int implicit)
5153{
5154 struct constructor_stack *p;
5155 tree value = NULL_TREE;
400fbf9f 5156
3e4093b6 5157 /* If we've exhausted any levels that didn't have braces,
472d98b4
JM
5158 pop them now. If implicit == 1, this will have been done in
5159 process_init_element; do not repeat it here because in the case
5160 of excess initializers for an empty aggregate this leads to an
5161 infinite cycle of popping a level and immediately recreating
5162 it. */
5163 if (implicit != 1)
3e4093b6 5164 {
472d98b4
JM
5165 while (constructor_stack->implicit)
5166 {
5167 if ((TREE_CODE (constructor_type) == RECORD_TYPE
5168 || TREE_CODE (constructor_type) == UNION_TYPE)
5169 && constructor_fields == 0)
5170 process_init_element (pop_init_level (1));
5171 else if (TREE_CODE (constructor_type) == ARRAY_TYPE
5172 && constructor_max_index
5173 && tree_int_cst_lt (constructor_max_index,
5174 constructor_index))
5175 process_init_element (pop_init_level (1));
5176 else
5177 break;
5178 }
3e4093b6 5179 }
400fbf9f 5180
3e4093b6
RS
5181 /* Unless this is an explicit brace, we need to preserve previous
5182 content if any. */
5183 if (implicit)
5184 {
5185 if ((TREE_CODE (constructor_type) == RECORD_TYPE
5186 || TREE_CODE (constructor_type) == UNION_TYPE)
5187 && constructor_fields)
5188 value = find_init_member (constructor_fields);
5189 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
5190 value = find_init_member (constructor_index);
400fbf9f
JW
5191 }
5192
5d038c4c 5193 p = XNEW (struct constructor_stack);
3e4093b6
RS
5194 p->type = constructor_type;
5195 p->fields = constructor_fields;
5196 p->index = constructor_index;
5197 p->max_index = constructor_max_index;
5198 p->unfilled_index = constructor_unfilled_index;
5199 p->unfilled_fields = constructor_unfilled_fields;
5200 p->bit_index = constructor_bit_index;
5201 p->elements = constructor_elements;
5202 p->constant = constructor_constant;
5203 p->simple = constructor_simple;
5204 p->erroneous = constructor_erroneous;
5205 p->pending_elts = constructor_pending_elts;
5206 p->depth = constructor_depth;
916c5919
JM
5207 p->replacement_value.value = 0;
5208 p->replacement_value.original_code = ERROR_MARK;
3e4093b6
RS
5209 p->implicit = implicit;
5210 p->outer = 0;
5211 p->incremental = constructor_incremental;
5212 p->designated = constructor_designated;
5213 p->next = constructor_stack;
5214 p->range_stack = 0;
5215 constructor_stack = p;
400fbf9f 5216
3e4093b6
RS
5217 constructor_constant = 1;
5218 constructor_simple = 1;
5219 constructor_depth = SPELLING_DEPTH ();
5220 constructor_elements = 0;
5221 constructor_incremental = 1;
5222 constructor_designated = 0;
5223 constructor_pending_elts = 0;
5224 if (!implicit)
400fbf9f 5225 {
3e4093b6
RS
5226 p->range_stack = constructor_range_stack;
5227 constructor_range_stack = 0;
5228 designator_depth = 0;
b06df647 5229 designator_erroneous = 0;
3e4093b6 5230 }
400fbf9f 5231
3e4093b6
RS
5232 /* Don't die if an entire brace-pair level is superfluous
5233 in the containing level. */
5234 if (constructor_type == 0)
5235 ;
5236 else if (TREE_CODE (constructor_type) == RECORD_TYPE
5237 || TREE_CODE (constructor_type) == UNION_TYPE)
5238 {
5239 /* Don't die if there are extra init elts at the end. */
5240 if (constructor_fields == 0)
5241 constructor_type = 0;
5242 else
400fbf9f 5243 {
3e4093b6
RS
5244 constructor_type = TREE_TYPE (constructor_fields);
5245 push_member_name (constructor_fields);
5246 constructor_depth++;
400fbf9f 5247 }
3e4093b6
RS
5248 }
5249 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
5250 {
5251 constructor_type = TREE_TYPE (constructor_type);
a0f0ab9f 5252 push_array_bounds (tree_low_cst (constructor_index, 1));
3e4093b6 5253 constructor_depth++;
400fbf9f
JW
5254 }
5255
3e4093b6 5256 if (constructor_type == 0)
400fbf9f 5257 {
3e4093b6
RS
5258 error_init ("extra brace group at end of initializer");
5259 constructor_fields = 0;
5260 constructor_unfilled_fields = 0;
5261 return;
400fbf9f
JW
5262 }
5263
3e4093b6
RS
5264 if (value && TREE_CODE (value) == CONSTRUCTOR)
5265 {
5266 constructor_constant = TREE_CONSTANT (value);
5267 constructor_simple = TREE_STATIC (value);
5268 constructor_elements = CONSTRUCTOR_ELTS (value);
4038c495 5269 if (!VEC_empty (constructor_elt, constructor_elements)
3e4093b6
RS
5270 && (TREE_CODE (constructor_type) == RECORD_TYPE
5271 || TREE_CODE (constructor_type) == ARRAY_TYPE))
5272 set_nonincremental_init ();
5273 }
400fbf9f 5274
3e4093b6
RS
5275 if (implicit == 1 && warn_missing_braces && !missing_braces_mentioned)
5276 {
5277 missing_braces_mentioned = 1;
5278 warning_init ("missing braces around initializer");
5279 }
400fbf9f 5280
3e4093b6
RS
5281 if (TREE_CODE (constructor_type) == RECORD_TYPE
5282 || TREE_CODE (constructor_type) == UNION_TYPE)
5283 {
5284 constructor_fields = TYPE_FIELDS (constructor_type);
5285 /* Skip any nameless bit fields at the beginning. */
5286 while (constructor_fields != 0 && DECL_C_BIT_FIELD (constructor_fields)
5287 && DECL_NAME (constructor_fields) == 0)
5288 constructor_fields = TREE_CHAIN (constructor_fields);
103b7b17 5289
3e4093b6
RS
5290 constructor_unfilled_fields = constructor_fields;
5291 constructor_bit_index = bitsize_zero_node;
5292 }
5293 else if (TREE_CODE (constructor_type) == VECTOR_TYPE)
5294 {
5295 /* Vectors are like simple fixed-size arrays. */
5296 constructor_max_index =
7d60be94 5297 build_int_cst (NULL_TREE, TYPE_VECTOR_SUBPARTS (constructor_type) - 1);
3e4093b6
RS
5298 constructor_index = convert (bitsizetype, integer_zero_node);
5299 constructor_unfilled_index = constructor_index;
5300 }
5301 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
5302 {
5303 if (TYPE_DOMAIN (constructor_type))
5304 {
5305 constructor_max_index
5306 = TYPE_MAX_VALUE (TYPE_DOMAIN (constructor_type));
400fbf9f 5307
3e4093b6
RS
5308 /* Detect non-empty initializations of zero-length arrays. */
5309 if (constructor_max_index == NULL_TREE
5310 && TYPE_SIZE (constructor_type))
7d60be94 5311 constructor_max_index = build_int_cst (NULL_TREE, -1);
de520661 5312
3e4093b6
RS
5313 /* constructor_max_index needs to be an INTEGER_CST. Attempts
5314 to initialize VLAs will cause a proper error; avoid tree
5315 checking errors as well by setting a safe value. */
5316 if (constructor_max_index
5317 && TREE_CODE (constructor_max_index) != INTEGER_CST)
7d60be94 5318 constructor_max_index = build_int_cst (NULL_TREE, -1);
b62acd60 5319
3e4093b6
RS
5320 constructor_index
5321 = convert (bitsizetype,
5322 TYPE_MIN_VALUE (TYPE_DOMAIN (constructor_type)));
5323 }
5324 else
5325 constructor_index = bitsize_zero_node;
de520661 5326
3e4093b6
RS
5327 constructor_unfilled_index = constructor_index;
5328 if (value && TREE_CODE (value) == STRING_CST)
5329 {
5330 /* We need to split the char/wchar array into individual
5331 characters, so that we don't have to special case it
5332 everywhere. */
5333 set_nonincremental_init_from_string (value);
5334 }
5335 }
5336 else
5337 {
b4519d39
SB
5338 if (constructor_type != error_mark_node)
5339 warning_init ("braces around scalar initializer");
3e4093b6
RS
5340 constructor_fields = constructor_type;
5341 constructor_unfilled_fields = constructor_type;
5342 }
5343}
8b6a5902 5344
3e4093b6 5345/* At the end of an implicit or explicit brace level,
916c5919
JM
5346 finish up that level of constructor. If a single expression
5347 with redundant braces initialized that level, return the
5348 c_expr structure for that expression. Otherwise, the original_code
5349 element is set to ERROR_MARK.
5350 If we were outputting the elements as they are read, return 0 as the value
3e4093b6 5351 from inner levels (process_init_element ignores that),
916c5919 5352 but return error_mark_node as the value from the outermost level
3e4093b6 5353 (that's what we want to put in DECL_INITIAL).
916c5919 5354 Otherwise, return a CONSTRUCTOR expression as the value. */
de520661 5355
916c5919 5356struct c_expr
3e4093b6
RS
5357pop_init_level (int implicit)
5358{
5359 struct constructor_stack *p;
916c5919
JM
5360 struct c_expr ret;
5361 ret.value = 0;
5362 ret.original_code = ERROR_MARK;
de520661 5363
3e4093b6
RS
5364 if (implicit == 0)
5365 {
5366 /* When we come to an explicit close brace,
5367 pop any inner levels that didn't have explicit braces. */
5368 while (constructor_stack->implicit)
5369 process_init_element (pop_init_level (1));
de520661 5370
366de0ce 5371 gcc_assert (!constructor_range_stack);
3e4093b6 5372 }
e5e809f4 5373
0066ef9c
RH
5374 /* Now output all pending elements. */
5375 constructor_incremental = 1;
5376 output_pending_init_elements (1);
5377
3e4093b6 5378 p = constructor_stack;
e5e809f4 5379
3e4093b6
RS
5380 /* Error for initializing a flexible array member, or a zero-length
5381 array member in an inappropriate context. */
5382 if (constructor_type && constructor_fields
5383 && TREE_CODE (constructor_type) == ARRAY_TYPE
5384 && TYPE_DOMAIN (constructor_type)
3f75a254 5385 && !TYPE_MAX_VALUE (TYPE_DOMAIN (constructor_type)))
3e4093b6
RS
5386 {
5387 /* Silently discard empty initializations. The parser will
5388 already have pedwarned for empty brackets. */
5389 if (integer_zerop (constructor_unfilled_index))
5390 constructor_type = NULL_TREE;
366de0ce 5391 else
3e4093b6 5392 {
366de0ce 5393 gcc_assert (!TYPE_SIZE (constructor_type));
c22cacf3 5394
3e4093b6
RS
5395 if (constructor_depth > 2)
5396 error_init ("initialization of flexible array member in a nested context");
5397 else if (pedantic)
5398 pedwarn_init ("initialization of a flexible array member");
de520661 5399
3e4093b6
RS
5400 /* We have already issued an error message for the existence
5401 of a flexible array member not at the end of the structure.
535a42b1 5402 Discard the initializer so that we do not die later. */
3e4093b6
RS
5403 if (TREE_CHAIN (constructor_fields) != NULL_TREE)
5404 constructor_type = NULL_TREE;
5405 }
3e4093b6 5406 }
de520661 5407
3e4093b6 5408 /* Warn when some struct elements are implicitly initialized to zero. */
eaac4679 5409 if (warn_missing_field_initializers
3e4093b6
RS
5410 && constructor_type
5411 && TREE_CODE (constructor_type) == RECORD_TYPE
5412 && constructor_unfilled_fields)
5413 {
5414 /* Do not warn for flexible array members or zero-length arrays. */
5415 while (constructor_unfilled_fields
3f75a254 5416 && (!DECL_SIZE (constructor_unfilled_fields)
3e4093b6
RS
5417 || integer_zerop (DECL_SIZE (constructor_unfilled_fields))))
5418 constructor_unfilled_fields = TREE_CHAIN (constructor_unfilled_fields);
cc77d4d5 5419
3e4093b6
RS
5420 /* Do not warn if this level of the initializer uses member
5421 designators; it is likely to be deliberate. */
5422 if (constructor_unfilled_fields && !constructor_designated)
5423 {
5424 push_member_name (constructor_unfilled_fields);
5425 warning_init ("missing initializer");
5426 RESTORE_SPELLING_DEPTH (constructor_depth);
5427 }
5428 }
de520661 5429
3e4093b6 5430 /* Pad out the end of the structure. */
916c5919 5431 if (p->replacement_value.value)
3e4093b6
RS
5432 /* If this closes a superfluous brace pair,
5433 just pass out the element between them. */
916c5919 5434 ret = p->replacement_value;
3e4093b6
RS
5435 else if (constructor_type == 0)
5436 ;
5437 else if (TREE_CODE (constructor_type) != RECORD_TYPE
5438 && TREE_CODE (constructor_type) != UNION_TYPE
5439 && TREE_CODE (constructor_type) != ARRAY_TYPE
5440 && TREE_CODE (constructor_type) != VECTOR_TYPE)
5441 {
5442 /* A nonincremental scalar initializer--just return
5443 the element, after verifying there is just one. */
4038c495 5444 if (VEC_empty (constructor_elt,constructor_elements))
3e4093b6
RS
5445 {
5446 if (!constructor_erroneous)
5447 error_init ("empty scalar initializer");
916c5919 5448 ret.value = error_mark_node;
3e4093b6 5449 }
4038c495 5450 else if (VEC_length (constructor_elt,constructor_elements) != 1)
3e4093b6
RS
5451 {
5452 error_init ("extra elements in scalar initializer");
4038c495 5453 ret.value = VEC_index (constructor_elt,constructor_elements,0)->value;
3e4093b6
RS
5454 }
5455 else
4038c495 5456 ret.value = VEC_index (constructor_elt,constructor_elements,0)->value;
3e4093b6
RS
5457 }
5458 else
5459 {
5460 if (constructor_erroneous)
916c5919 5461 ret.value = error_mark_node;
3e4093b6
RS
5462 else
5463 {
916c5919 5464 ret.value = build_constructor (constructor_type,
4038c495 5465 constructor_elements);
3e4093b6 5466 if (constructor_constant)
916c5919 5467 TREE_CONSTANT (ret.value) = TREE_INVARIANT (ret.value) = 1;
3e4093b6 5468 if (constructor_constant && constructor_simple)
916c5919 5469 TREE_STATIC (ret.value) = 1;
3e4093b6
RS
5470 }
5471 }
de520661 5472
3e4093b6
RS
5473 constructor_type = p->type;
5474 constructor_fields = p->fields;
5475 constructor_index = p->index;
5476 constructor_max_index = p->max_index;
5477 constructor_unfilled_index = p->unfilled_index;
5478 constructor_unfilled_fields = p->unfilled_fields;
5479 constructor_bit_index = p->bit_index;
5480 constructor_elements = p->elements;
5481 constructor_constant = p->constant;
5482 constructor_simple = p->simple;
5483 constructor_erroneous = p->erroneous;
5484 constructor_incremental = p->incremental;
5485 constructor_designated = p->designated;
5486 constructor_pending_elts = p->pending_elts;
5487 constructor_depth = p->depth;
5488 if (!p->implicit)
5489 constructor_range_stack = p->range_stack;
5490 RESTORE_SPELLING_DEPTH (constructor_depth);
de520661 5491
3e4093b6
RS
5492 constructor_stack = p->next;
5493 free (p);
b621a4dd 5494
5d5e98dc
VR
5495 if (ret.value == 0 && constructor_stack == 0)
5496 ret.value = error_mark_node;
916c5919 5497 return ret;
3e4093b6 5498}
8b6a5902 5499
3e4093b6
RS
5500/* Common handling for both array range and field name designators.
5501 ARRAY argument is nonzero for array ranges. Returns zero for success. */
400fbf9f 5502
3e4093b6
RS
5503static int
5504set_designator (int array)
de520661 5505{
3e4093b6
RS
5506 tree subtype;
5507 enum tree_code subcode;
de520661 5508
3e4093b6
RS
5509 /* Don't die if an entire brace-pair level is superfluous
5510 in the containing level. */
5511 if (constructor_type == 0)
5512 return 1;
de520661 5513
366de0ce
NS
5514 /* If there were errors in this designator list already, bail out
5515 silently. */
b06df647 5516 if (designator_erroneous)
3e4093b6 5517 return 1;
e28cae4f 5518
3e4093b6
RS
5519 if (!designator_depth)
5520 {
366de0ce 5521 gcc_assert (!constructor_range_stack);
de520661 5522
3e4093b6
RS
5523 /* Designator list starts at the level of closest explicit
5524 braces. */
5525 while (constructor_stack->implicit)
5526 process_init_element (pop_init_level (1));
5527 constructor_designated = 1;
5528 return 0;
5529 }
de520661 5530
366de0ce 5531 switch (TREE_CODE (constructor_type))
3c3fa147 5532 {
366de0ce
NS
5533 case RECORD_TYPE:
5534 case UNION_TYPE:
3e4093b6
RS
5535 subtype = TREE_TYPE (constructor_fields);
5536 if (subtype != error_mark_node)
5537 subtype = TYPE_MAIN_VARIANT (subtype);
366de0ce
NS
5538 break;
5539 case ARRAY_TYPE:
3e4093b6 5540 subtype = TYPE_MAIN_VARIANT (TREE_TYPE (constructor_type));
366de0ce
NS
5541 break;
5542 default:
5543 gcc_unreachable ();
de520661 5544 }
400fbf9f 5545
3e4093b6
RS
5546 subcode = TREE_CODE (subtype);
5547 if (array && subcode != ARRAY_TYPE)
5548 {
5549 error_init ("array index in non-array initializer");
5550 return 1;
5551 }
5552 else if (!array && subcode != RECORD_TYPE && subcode != UNION_TYPE)
5553 {
5554 error_init ("field name not in record or union initializer");
5555 return 1;
5556 }
d45cf215 5557
3e4093b6
RS
5558 constructor_designated = 1;
5559 push_init_level (2);
5560 return 0;
de520661 5561}
400fbf9f 5562
3e4093b6
RS
5563/* If there are range designators in designator list, push a new designator
5564 to constructor_range_stack. RANGE_END is end of such stack range or
5565 NULL_TREE if there is no range designator at this level. */
400fbf9f 5566
3e4093b6
RS
5567static void
5568push_range_stack (tree range_end)
5569{
5570 struct constructor_range_stack *p;
400fbf9f 5571
5d038c4c 5572 p = GGC_NEW (struct constructor_range_stack);
3e4093b6
RS
5573 p->prev = constructor_range_stack;
5574 p->next = 0;
5575 p->fields = constructor_fields;
5576 p->range_start = constructor_index;
5577 p->index = constructor_index;
5578 p->stack = constructor_stack;
5579 p->range_end = range_end;
8b6a5902 5580 if (constructor_range_stack)
3e4093b6
RS
5581 constructor_range_stack->next = p;
5582 constructor_range_stack = p;
de520661 5583}
400fbf9f 5584
3e4093b6
RS
5585/* Within an array initializer, specify the next index to be initialized.
5586 FIRST is that index. If LAST is nonzero, then initialize a range
5587 of indices, running from FIRST through LAST. */
5a7ec9d9 5588
de520661 5589void
3e4093b6 5590set_init_index (tree first, tree last)
de520661 5591{
3e4093b6
RS
5592 if (set_designator (1))
5593 return;
de520661 5594
b06df647 5595 designator_erroneous = 1;
de520661 5596
3ea8cd06
JM
5597 if (!INTEGRAL_TYPE_P (TREE_TYPE (first))
5598 || (last && !INTEGRAL_TYPE_P (TREE_TYPE (last))))
5599 {
5600 error_init ("array index in initializer not of integer type");
5601 return;
5602 }
5603
3e4093b6
RS
5604 if (TREE_CODE (first) != INTEGER_CST)
5605 error_init ("nonconstant array index in initializer");
5606 else if (last != 0 && TREE_CODE (last) != INTEGER_CST)
5607 error_init ("nonconstant array index in initializer");
5608 else if (TREE_CODE (constructor_type) != ARRAY_TYPE)
5609 error_init ("array index in non-array initializer");
622adc7e
MK
5610 else if (tree_int_cst_sgn (first) == -1)
5611 error_init ("array index in initializer exceeds array bounds");
3e4093b6
RS
5612 else if (constructor_max_index
5613 && tree_int_cst_lt (constructor_max_index, first))
5614 error_init ("array index in initializer exceeds array bounds");
5615 else
de520661 5616 {
3e4093b6 5617 constructor_index = convert (bitsizetype, first);
665f2503 5618
3e4093b6 5619 if (last)
2bede729 5620 {
3e4093b6
RS
5621 if (tree_int_cst_equal (first, last))
5622 last = 0;
5623 else if (tree_int_cst_lt (last, first))
5624 {
5625 error_init ("empty index range in initializer");
5626 last = 0;
5627 }
5628 else
5629 {
5630 last = convert (bitsizetype, last);
5631 if (constructor_max_index != 0
5632 && tree_int_cst_lt (constructor_max_index, last))
5633 {
5634 error_init ("array index range in initializer exceeds array bounds");
5635 last = 0;
5636 }
5637 }
2bede729 5638 }
fed3cef0 5639
3e4093b6 5640 designator_depth++;
b06df647 5641 designator_erroneous = 0;
3e4093b6
RS
5642 if (constructor_range_stack || last)
5643 push_range_stack (last);
de520661 5644 }
de520661 5645}
3e4093b6
RS
5646
5647/* Within a struct initializer, specify the next field to be initialized. */
400fbf9f 5648
de520661 5649void
3e4093b6 5650set_init_label (tree fieldname)
de520661 5651{
3e4093b6 5652 tree tail;
94ba5069 5653
3e4093b6
RS
5654 if (set_designator (0))
5655 return;
5656
b06df647 5657 designator_erroneous = 1;
3e4093b6
RS
5658
5659 if (TREE_CODE (constructor_type) != RECORD_TYPE
5660 && TREE_CODE (constructor_type) != UNION_TYPE)
94ba5069 5661 {
3e4093b6
RS
5662 error_init ("field name not in record or union initializer");
5663 return;
94ba5069
RS
5664 }
5665
3e4093b6
RS
5666 for (tail = TYPE_FIELDS (constructor_type); tail;
5667 tail = TREE_CHAIN (tail))
8b6a5902 5668 {
3e4093b6
RS
5669 if (DECL_NAME (tail) == fieldname)
5670 break;
8b6a5902
JJ
5671 }
5672
3e4093b6 5673 if (tail == 0)
c51a1ba9 5674 error ("unknown field %qE specified in initializer", fieldname);
3e4093b6 5675 else
8b6a5902 5676 {
3e4093b6
RS
5677 constructor_fields = tail;
5678 designator_depth++;
b06df647 5679 designator_erroneous = 0;
3e4093b6
RS
5680 if (constructor_range_stack)
5681 push_range_stack (NULL_TREE);
8b6a5902 5682 }
3e4093b6
RS
5683}
5684\f
5685/* Add a new initializer to the tree of pending initializers. PURPOSE
5686 identifies the initializer, either array index or field in a structure.
5687 VALUE is the value of that index or field. */
de520661 5688
3e4093b6
RS
5689static void
5690add_pending_init (tree purpose, tree value)
5691{
5692 struct init_node *p, **q, *r;
5693
5694 q = &constructor_pending_elts;
5695 p = 0;
5696
5697 if (TREE_CODE (constructor_type) == ARRAY_TYPE)
de520661 5698 {
3e4093b6 5699 while (*q != 0)
91fa3c30 5700 {
3e4093b6
RS
5701 p = *q;
5702 if (tree_int_cst_lt (purpose, p->purpose))
5703 q = &p->left;
5704 else if (tree_int_cst_lt (p->purpose, purpose))
5705 q = &p->right;
5706 else
5707 {
5708 if (TREE_SIDE_EFFECTS (p->value))
5709 warning_init ("initialized field with side-effects overwritten");
7ed322d7
JM
5710 else if (warn_override_init)
5711 warning_init ("initialized field overwritten");
3e4093b6
RS
5712 p->value = value;
5713 return;
5714 }
91fa3c30 5715 }
de520661 5716 }
3e4093b6 5717 else
de520661 5718 {
3e4093b6 5719 tree bitpos;
400fbf9f 5720
3e4093b6
RS
5721 bitpos = bit_position (purpose);
5722 while (*q != NULL)
5723 {
5724 p = *q;
5725 if (tree_int_cst_lt (bitpos, bit_position (p->purpose)))
5726 q = &p->left;
5727 else if (p->purpose != purpose)
5728 q = &p->right;
5729 else
5730 {
5731 if (TREE_SIDE_EFFECTS (p->value))
5732 warning_init ("initialized field with side-effects overwritten");
7ed322d7
JM
5733 else if (warn_override_init)
5734 warning_init ("initialized field overwritten");
3e4093b6
RS
5735 p->value = value;
5736 return;
5737 }
5738 }
91fa3c30 5739 }
b71c7f8a 5740
5d038c4c 5741 r = GGC_NEW (struct init_node);
3e4093b6
RS
5742 r->purpose = purpose;
5743 r->value = value;
8b6a5902 5744
3e4093b6
RS
5745 *q = r;
5746 r->parent = p;
5747 r->left = 0;
5748 r->right = 0;
5749 r->balance = 0;
b71c7f8a 5750
3e4093b6 5751 while (p)
de520661 5752 {
3e4093b6 5753 struct init_node *s;
665f2503 5754
3e4093b6 5755 if (r == p->left)
2bede729 5756 {
3e4093b6
RS
5757 if (p->balance == 0)
5758 p->balance = -1;
5759 else if (p->balance < 0)
5760 {
5761 if (r->balance < 0)
5762 {
5763 /* L rotation. */
5764 p->left = r->right;
5765 if (p->left)
5766 p->left->parent = p;
5767 r->right = p;
e7b6a0ee 5768
3e4093b6
RS
5769 p->balance = 0;
5770 r->balance = 0;
39bc99c2 5771
3e4093b6
RS
5772 s = p->parent;
5773 p->parent = r;
5774 r->parent = s;
5775 if (s)
5776 {
5777 if (s->left == p)
5778 s->left = r;
5779 else
5780 s->right = r;
5781 }
5782 else
5783 constructor_pending_elts = r;
5784 }
5785 else
5786 {
5787 /* LR rotation. */
5788 struct init_node *t = r->right;
e7b6a0ee 5789
3e4093b6
RS
5790 r->right = t->left;
5791 if (r->right)
5792 r->right->parent = r;
5793 t->left = r;
5794
5795 p->left = t->right;
5796 if (p->left)
5797 p->left->parent = p;
5798 t->right = p;
5799
5800 p->balance = t->balance < 0;
5801 r->balance = -(t->balance > 0);
5802 t->balance = 0;
5803
5804 s = p->parent;
5805 p->parent = t;
5806 r->parent = t;
5807 t->parent = s;
5808 if (s)
5809 {
5810 if (s->left == p)
5811 s->left = t;
5812 else
5813 s->right = t;
5814 }
5815 else
5816 constructor_pending_elts = t;
5817 }
5818 break;
5819 }
5820 else
5821 {
5822 /* p->balance == +1; growth of left side balances the node. */
5823 p->balance = 0;
5824 break;
5825 }
2bede729 5826 }
3e4093b6
RS
5827 else /* r == p->right */
5828 {
5829 if (p->balance == 0)
5830 /* Growth propagation from right side. */
5831 p->balance++;
5832 else if (p->balance > 0)
5833 {
5834 if (r->balance > 0)
5835 {
5836 /* R rotation. */
5837 p->right = r->left;
5838 if (p->right)
5839 p->right->parent = p;
5840 r->left = p;
5841
5842 p->balance = 0;
5843 r->balance = 0;
5844
5845 s = p->parent;
5846 p->parent = r;
5847 r->parent = s;
5848 if (s)
5849 {
5850 if (s->left == p)
5851 s->left = r;
5852 else
5853 s->right = r;
5854 }
5855 else
5856 constructor_pending_elts = r;
5857 }
5858 else /* r->balance == -1 */
5859 {
5860 /* RL rotation */
5861 struct init_node *t = r->left;
5862
5863 r->left = t->right;
5864 if (r->left)
5865 r->left->parent = r;
5866 t->right = r;
5867
5868 p->right = t->left;
5869 if (p->right)
5870 p->right->parent = p;
5871 t->left = p;
5872
5873 r->balance = (t->balance < 0);
5874 p->balance = -(t->balance > 0);
5875 t->balance = 0;
5876
5877 s = p->parent;
5878 p->parent = t;
5879 r->parent = t;
5880 t->parent = s;
5881 if (s)
5882 {
5883 if (s->left == p)
5884 s->left = t;
5885 else
5886 s->right = t;
5887 }
5888 else
5889 constructor_pending_elts = t;
5890 }
5891 break;
5892 }
5893 else
5894 {
5895 /* p->balance == -1; growth of right side balances the node. */
5896 p->balance = 0;
5897 break;
5898 }
5899 }
5900
5901 r = p;
5902 p = p->parent;
5903 }
5904}
5905
5906/* Build AVL tree from a sorted chain. */
5907
5908static void
5909set_nonincremental_init (void)
5910{
4038c495
GB
5911 unsigned HOST_WIDE_INT ix;
5912 tree index, value;
3e4093b6
RS
5913
5914 if (TREE_CODE (constructor_type) != RECORD_TYPE
5915 && TREE_CODE (constructor_type) != ARRAY_TYPE)
5916 return;
5917
4038c495
GB
5918 FOR_EACH_CONSTRUCTOR_ELT (constructor_elements, ix, index, value)
5919 add_pending_init (index, value);
3e4093b6
RS
5920 constructor_elements = 0;
5921 if (TREE_CODE (constructor_type) == RECORD_TYPE)
5922 {
5923 constructor_unfilled_fields = TYPE_FIELDS (constructor_type);
5924 /* Skip any nameless bit fields at the beginning. */
5925 while (constructor_unfilled_fields != 0
5926 && DECL_C_BIT_FIELD (constructor_unfilled_fields)
5927 && DECL_NAME (constructor_unfilled_fields) == 0)
5928 constructor_unfilled_fields = TREE_CHAIN (constructor_unfilled_fields);
fed3cef0 5929
de520661 5930 }
3e4093b6 5931 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
de520661 5932 {
3e4093b6
RS
5933 if (TYPE_DOMAIN (constructor_type))
5934 constructor_unfilled_index
5935 = convert (bitsizetype,
5936 TYPE_MIN_VALUE (TYPE_DOMAIN (constructor_type)));
5937 else
5938 constructor_unfilled_index = bitsize_zero_node;
de520661 5939 }
3e4093b6 5940 constructor_incremental = 0;
de520661 5941}
400fbf9f 5942
3e4093b6 5943/* Build AVL tree from a string constant. */
de520661 5944
3e4093b6
RS
5945static void
5946set_nonincremental_init_from_string (tree str)
de520661 5947{
3e4093b6
RS
5948 tree value, purpose, type;
5949 HOST_WIDE_INT val[2];
5950 const char *p, *end;
5951 int byte, wchar_bytes, charwidth, bitpos;
de520661 5952
366de0ce 5953 gcc_assert (TREE_CODE (constructor_type) == ARRAY_TYPE);
940ff66d 5954
3e4093b6
RS
5955 if (TYPE_PRECISION (TREE_TYPE (TREE_TYPE (str)))
5956 == TYPE_PRECISION (char_type_node))
5957 wchar_bytes = 1;
3e4093b6 5958 else
366de0ce
NS
5959 {
5960 gcc_assert (TYPE_PRECISION (TREE_TYPE (TREE_TYPE (str)))
5961 == TYPE_PRECISION (wchar_type_node));
5962 wchar_bytes = TYPE_PRECISION (wchar_type_node) / BITS_PER_UNIT;
5963 }
3e4093b6
RS
5964 charwidth = TYPE_PRECISION (char_type_node);
5965 type = TREE_TYPE (constructor_type);
5966 p = TREE_STRING_POINTER (str);
5967 end = p + TREE_STRING_LENGTH (str);
91fa3c30 5968
3e4093b6
RS
5969 for (purpose = bitsize_zero_node;
5970 p < end && !tree_int_cst_lt (constructor_max_index, purpose);
5971 purpose = size_binop (PLUS_EXPR, purpose, bitsize_one_node))
584ef5fe 5972 {
3e4093b6 5973 if (wchar_bytes == 1)
ffc5c6a9 5974 {
3e4093b6
RS
5975 val[1] = (unsigned char) *p++;
5976 val[0] = 0;
ffc5c6a9
RH
5977 }
5978 else
3e4093b6
RS
5979 {
5980 val[0] = 0;
5981 val[1] = 0;
5982 for (byte = 0; byte < wchar_bytes; byte++)
5983 {
5984 if (BYTES_BIG_ENDIAN)
5985 bitpos = (wchar_bytes - byte - 1) * charwidth;
5986 else
5987 bitpos = byte * charwidth;
5988 val[bitpos < HOST_BITS_PER_WIDE_INT]
5989 |= ((unsigned HOST_WIDE_INT) ((unsigned char) *p++))
5990 << (bitpos % HOST_BITS_PER_WIDE_INT);
5991 }
5992 }
584ef5fe 5993
8df83eae 5994 if (!TYPE_UNSIGNED (type))
3e4093b6
RS
5995 {
5996 bitpos = ((wchar_bytes - 1) * charwidth) + HOST_BITS_PER_CHAR;
5997 if (bitpos < HOST_BITS_PER_WIDE_INT)
5998 {
5999 if (val[1] & (((HOST_WIDE_INT) 1) << (bitpos - 1)))
6000 {
6001 val[1] |= ((HOST_WIDE_INT) -1) << bitpos;
6002 val[0] = -1;
6003 }
6004 }
6005 else if (bitpos == HOST_BITS_PER_WIDE_INT)
6006 {
6007 if (val[1] < 0)
c22cacf3 6008 val[0] = -1;
3e4093b6
RS
6009 }
6010 else if (val[0] & (((HOST_WIDE_INT) 1)
6011 << (bitpos - 1 - HOST_BITS_PER_WIDE_INT)))
6012 val[0] |= ((HOST_WIDE_INT) -1)
6013 << (bitpos - HOST_BITS_PER_WIDE_INT);
6014 }
ffc5c6a9 6015
7d60be94 6016 value = build_int_cst_wide (type, val[1], val[0]);
3e4093b6 6017 add_pending_init (purpose, value);
9dfcc8db
BH
6018 }
6019
3e4093b6
RS
6020 constructor_incremental = 0;
6021}
de520661 6022
3e4093b6
RS
6023/* Return value of FIELD in pending initializer or zero if the field was
6024 not initialized yet. */
6025
6026static tree
6027find_init_member (tree field)
6028{
6029 struct init_node *p;
6030
6031 if (TREE_CODE (constructor_type) == ARRAY_TYPE)
19d76e60 6032 {
3e4093b6
RS
6033 if (constructor_incremental
6034 && tree_int_cst_lt (field, constructor_unfilled_index))
6035 set_nonincremental_init ();
6036
6037 p = constructor_pending_elts;
6038 while (p)
19d76e60 6039 {
3e4093b6
RS
6040 if (tree_int_cst_lt (field, p->purpose))
6041 p = p->left;
6042 else if (tree_int_cst_lt (p->purpose, field))
6043 p = p->right;
6044 else
6045 return p->value;
19d76e60 6046 }
19d76e60 6047 }
3e4093b6 6048 else if (TREE_CODE (constructor_type) == RECORD_TYPE)
de520661 6049 {
3e4093b6 6050 tree bitpos = bit_position (field);
de520661 6051
3e4093b6
RS
6052 if (constructor_incremental
6053 && (!constructor_unfilled_fields
6054 || tree_int_cst_lt (bitpos,
6055 bit_position (constructor_unfilled_fields))))
6056 set_nonincremental_init ();
de520661 6057
3e4093b6
RS
6058 p = constructor_pending_elts;
6059 while (p)
6060 {
6061 if (field == p->purpose)
6062 return p->value;
6063 else if (tree_int_cst_lt (bitpos, bit_position (p->purpose)))
6064 p = p->left;
6065 else
6066 p = p->right;
6067 }
6068 }
6069 else if (TREE_CODE (constructor_type) == UNION_TYPE)
de520661 6070 {
4038c495
GB
6071 if (!VEC_empty (constructor_elt, constructor_elements)
6072 && (VEC_last (constructor_elt, constructor_elements)->index
6073 == field))
6074 return VEC_last (constructor_elt, constructor_elements)->value;
de520661 6075 }
3e4093b6 6076 return 0;
de520661
RS
6077}
6078
3e4093b6
RS
6079/* "Output" the next constructor element.
6080 At top level, really output it to assembler code now.
6081 Otherwise, collect it in a list from which we will make a CONSTRUCTOR.
6082 TYPE is the data type that the containing data type wants here.
6083 FIELD is the field (a FIELD_DECL) or the index that this element fills.
916c5919
JM
6084 If VALUE is a string constant, STRICT_STRING is true if it is
6085 unparenthesized or we should not warn here for it being parenthesized.
6086 For other types of VALUE, STRICT_STRING is not used.
8b6a5902 6087
3e4093b6
RS
6088 PENDING if non-nil means output pending elements that belong
6089 right after this element. (PENDING is normally 1;
6090 it is 0 while outputting pending elements, to avoid recursion.) */
8b6a5902 6091
3e4093b6 6092static void
916c5919
JM
6093output_init_element (tree value, bool strict_string, tree type, tree field,
6094 int pending)
3e4093b6 6095{
4038c495
GB
6096 constructor_elt *celt;
6097
0a880880 6098 if (type == error_mark_node || value == error_mark_node)
8b6a5902 6099 {
3e4093b6
RS
6100 constructor_erroneous = 1;
6101 return;
8b6a5902 6102 }
46bdb9cf
JM
6103 if (TREE_CODE (TREE_TYPE (value)) == ARRAY_TYPE
6104 && (TREE_CODE (value) == STRING_CST
6105 || TREE_CODE (value) == COMPOUND_LITERAL_EXPR)
6106 && !(TREE_CODE (value) == STRING_CST
6107 && TREE_CODE (type) == ARRAY_TYPE
6108 && INTEGRAL_TYPE_P (TREE_TYPE (type)))
6109 && !comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (value)),
6110 TYPE_MAIN_VARIANT (type)))
f2a71bbc 6111 value = array_to_pointer_conversion (value);
8b6a5902 6112
3e4093b6
RS
6113 if (TREE_CODE (value) == COMPOUND_LITERAL_EXPR
6114 && require_constant_value && !flag_isoc99 && pending)
8b6a5902 6115 {
3e4093b6
RS
6116 /* As an extension, allow initializing objects with static storage
6117 duration with compound literals (which are then treated just as
6118 the brace enclosed list they contain). */
6119 tree decl = COMPOUND_LITERAL_EXPR_DECL (value);
6120 value = DECL_INITIAL (decl);
8b6a5902
JJ
6121 }
6122
3e4093b6
RS
6123 if (value == error_mark_node)
6124 constructor_erroneous = 1;
6125 else if (!TREE_CONSTANT (value))
6126 constructor_constant = 0;
116df786 6127 else if (!initializer_constant_valid_p (value, TREE_TYPE (value))
3e4093b6
RS
6128 || ((TREE_CODE (constructor_type) == RECORD_TYPE
6129 || TREE_CODE (constructor_type) == UNION_TYPE)
6130 && DECL_C_BIT_FIELD (field)
6131 && TREE_CODE (value) != INTEGER_CST))
6132 constructor_simple = 0;
6133
116df786 6134 if (!initializer_constant_valid_p (value, TREE_TYPE (value)))
8b6a5902 6135 {
116df786
RH
6136 if (require_constant_value)
6137 {
6138 error_init ("initializer element is not constant");
6139 value = error_mark_node;
6140 }
6141 else if (require_constant_elements)
6142 pedwarn ("initializer element is not computable at load time");
8b6a5902 6143 }
3e4093b6
RS
6144
6145 /* If this field is empty (and not at the end of structure),
6146 don't do anything other than checking the initializer. */
6147 if (field
6148 && (TREE_TYPE (field) == error_mark_node
6149 || (COMPLETE_TYPE_P (TREE_TYPE (field))
6150 && integer_zerop (TYPE_SIZE (TREE_TYPE (field)))
6151 && (TREE_CODE (constructor_type) == ARRAY_TYPE
6152 || TREE_CHAIN (field)))))
6153 return;
6154
916c5919 6155 value = digest_init (type, value, strict_string, require_constant_value);
3e4093b6 6156 if (value == error_mark_node)
8b6a5902 6157 {
3e4093b6
RS
6158 constructor_erroneous = 1;
6159 return;
8b6a5902 6160 }
8b6a5902 6161
3e4093b6
RS
6162 /* If this element doesn't come next in sequence,
6163 put it on constructor_pending_elts. */
6164 if (TREE_CODE (constructor_type) == ARRAY_TYPE
6165 && (!constructor_incremental
6166 || !tree_int_cst_equal (field, constructor_unfilled_index)))
8b6a5902 6167 {
3e4093b6
RS
6168 if (constructor_incremental
6169 && tree_int_cst_lt (field, constructor_unfilled_index))
6170 set_nonincremental_init ();
6171
6172 add_pending_init (field, value);
6173 return;
8b6a5902 6174 }
3e4093b6
RS
6175 else if (TREE_CODE (constructor_type) == RECORD_TYPE
6176 && (!constructor_incremental
6177 || field != constructor_unfilled_fields))
8b6a5902 6178 {
3e4093b6
RS
6179 /* We do this for records but not for unions. In a union,
6180 no matter which field is specified, it can be initialized
6181 right away since it starts at the beginning of the union. */
6182 if (constructor_incremental)
6183 {
6184 if (!constructor_unfilled_fields)
6185 set_nonincremental_init ();
6186 else
6187 {
6188 tree bitpos, unfillpos;
6189
6190 bitpos = bit_position (field);
6191 unfillpos = bit_position (constructor_unfilled_fields);
6192
6193 if (tree_int_cst_lt (bitpos, unfillpos))
6194 set_nonincremental_init ();
6195 }
6196 }
6197
6198 add_pending_init (field, value);
6199 return;
8b6a5902 6200 }
3e4093b6 6201 else if (TREE_CODE (constructor_type) == UNION_TYPE
4038c495 6202 && !VEC_empty (constructor_elt, constructor_elements))
3e4093b6 6203 {
4038c495
GB
6204 if (TREE_SIDE_EFFECTS (VEC_last (constructor_elt,
6205 constructor_elements)->value))
3e4093b6 6206 warning_init ("initialized field with side-effects overwritten");
7ed322d7
JM
6207 else if (warn_override_init)
6208 warning_init ("initialized field overwritten");
8b6a5902 6209
3e4093b6
RS
6210 /* We can have just one union field set. */
6211 constructor_elements = 0;
6212 }
8b6a5902 6213
3e4093b6
RS
6214 /* Otherwise, output this element either to
6215 constructor_elements or to the assembler file. */
8b6a5902 6216
4038c495
GB
6217 celt = VEC_safe_push (constructor_elt, gc, constructor_elements, NULL);
6218 celt->index = field;
6219 celt->value = value;
8b6a5902 6220
3e4093b6
RS
6221 /* Advance the variable that indicates sequential elements output. */
6222 if (TREE_CODE (constructor_type) == ARRAY_TYPE)
6223 constructor_unfilled_index
6224 = size_binop (PLUS_EXPR, constructor_unfilled_index,
6225 bitsize_one_node);
6226 else if (TREE_CODE (constructor_type) == RECORD_TYPE)
6227 {
6228 constructor_unfilled_fields
6229 = TREE_CHAIN (constructor_unfilled_fields);
8b6a5902 6230
3e4093b6
RS
6231 /* Skip any nameless bit fields. */
6232 while (constructor_unfilled_fields != 0
6233 && DECL_C_BIT_FIELD (constructor_unfilled_fields)
6234 && DECL_NAME (constructor_unfilled_fields) == 0)
6235 constructor_unfilled_fields =
6236 TREE_CHAIN (constructor_unfilled_fields);
6237 }
6238 else if (TREE_CODE (constructor_type) == UNION_TYPE)
6239 constructor_unfilled_fields = 0;
de520661 6240
3e4093b6
RS
6241 /* Now output any pending elements which have become next. */
6242 if (pending)
6243 output_pending_init_elements (0);
6244}
8b6a5902 6245
3e4093b6
RS
6246/* Output any pending elements which have become next.
6247 As we output elements, constructor_unfilled_{fields,index}
6248 advances, which may cause other elements to become next;
6249 if so, they too are output.
8b6a5902 6250
3e4093b6
RS
6251 If ALL is 0, we return when there are
6252 no more pending elements to output now.
665f2503 6253
3e4093b6
RS
6254 If ALL is 1, we output space as necessary so that
6255 we can output all the pending elements. */
19d76e60 6256
3e4093b6
RS
6257static void
6258output_pending_init_elements (int all)
6259{
6260 struct init_node *elt = constructor_pending_elts;
6261 tree next;
de520661 6262
3e4093b6
RS
6263 retry:
6264
ba228239 6265 /* Look through the whole pending tree.
3e4093b6
RS
6266 If we find an element that should be output now,
6267 output it. Otherwise, set NEXT to the element
6268 that comes first among those still pending. */
6269
6270 next = 0;
6271 while (elt)
6272 {
6273 if (TREE_CODE (constructor_type) == ARRAY_TYPE)
8b6a5902 6274 {
3e4093b6
RS
6275 if (tree_int_cst_equal (elt->purpose,
6276 constructor_unfilled_index))
916c5919 6277 output_init_element (elt->value, true,
3e4093b6
RS
6278 TREE_TYPE (constructor_type),
6279 constructor_unfilled_index, 0);
6280 else if (tree_int_cst_lt (constructor_unfilled_index,
6281 elt->purpose))
8b6a5902 6282 {
3e4093b6
RS
6283 /* Advance to the next smaller node. */
6284 if (elt->left)
6285 elt = elt->left;
6286 else
6287 {
6288 /* We have reached the smallest node bigger than the
6289 current unfilled index. Fill the space first. */
6290 next = elt->purpose;
6291 break;
6292 }
8b6a5902 6293 }
ce662d4c
JJ
6294 else
6295 {
3e4093b6
RS
6296 /* Advance to the next bigger node. */
6297 if (elt->right)
6298 elt = elt->right;
6299 else
ce662d4c 6300 {
3e4093b6
RS
6301 /* We have reached the biggest node in a subtree. Find
6302 the parent of it, which is the next bigger node. */
6303 while (elt->parent && elt->parent->right == elt)
6304 elt = elt->parent;
6305 elt = elt->parent;
6306 if (elt && tree_int_cst_lt (constructor_unfilled_index,
6307 elt->purpose))
6308 {
6309 next = elt->purpose;
6310 break;
6311 }
ce662d4c
JJ
6312 }
6313 }
8b6a5902 6314 }
3e4093b6
RS
6315 else if (TREE_CODE (constructor_type) == RECORD_TYPE
6316 || TREE_CODE (constructor_type) == UNION_TYPE)
6317 {
6318 tree ctor_unfilled_bitpos, elt_bitpos;
ce662d4c 6319
3e4093b6
RS
6320 /* If the current record is complete we are done. */
6321 if (constructor_unfilled_fields == 0)
6322 break;
de520661 6323
3e4093b6
RS
6324 ctor_unfilled_bitpos = bit_position (constructor_unfilled_fields);
6325 elt_bitpos = bit_position (elt->purpose);
6326 /* We can't compare fields here because there might be empty
6327 fields in between. */
6328 if (tree_int_cst_equal (elt_bitpos, ctor_unfilled_bitpos))
6329 {
6330 constructor_unfilled_fields = elt->purpose;
916c5919 6331 output_init_element (elt->value, true, TREE_TYPE (elt->purpose),
3e4093b6
RS
6332 elt->purpose, 0);
6333 }
6334 else if (tree_int_cst_lt (ctor_unfilled_bitpos, elt_bitpos))
6335 {
6336 /* Advance to the next smaller node. */
6337 if (elt->left)
6338 elt = elt->left;
6339 else
6340 {
6341 /* We have reached the smallest node bigger than the
6342 current unfilled field. Fill the space first. */
6343 next = elt->purpose;
6344 break;
6345 }
6346 }
6347 else
6348 {
6349 /* Advance to the next bigger node. */
6350 if (elt->right)
6351 elt = elt->right;
6352 else
6353 {
6354 /* We have reached the biggest node in a subtree. Find
6355 the parent of it, which is the next bigger node. */
6356 while (elt->parent && elt->parent->right == elt)
6357 elt = elt->parent;
6358 elt = elt->parent;
6359 if (elt
6360 && (tree_int_cst_lt (ctor_unfilled_bitpos,
6361 bit_position (elt->purpose))))
6362 {
6363 next = elt->purpose;
6364 break;
6365 }
6366 }
6367 }
6368 }
6369 }
de520661 6370
3e4093b6
RS
6371 /* Ordinarily return, but not if we want to output all
6372 and there are elements left. */
3f75a254 6373 if (!(all && next != 0))
e5cfb88f
RK
6374 return;
6375
3e4093b6
RS
6376 /* If it's not incremental, just skip over the gap, so that after
6377 jumping to retry we will output the next successive element. */
6378 if (TREE_CODE (constructor_type) == RECORD_TYPE
6379 || TREE_CODE (constructor_type) == UNION_TYPE)
6380 constructor_unfilled_fields = next;
6381 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
6382 constructor_unfilled_index = next;
de520661 6383
3e4093b6
RS
6384 /* ELT now points to the node in the pending tree with the next
6385 initializer to output. */
6386 goto retry;
de520661
RS
6387}
6388\f
3e4093b6
RS
6389/* Add one non-braced element to the current constructor level.
6390 This adjusts the current position within the constructor's type.
6391 This may also start or terminate implicit levels
6392 to handle a partly-braced initializer.
e5e809f4 6393
3e4093b6
RS
6394 Once this has found the correct level for the new element,
6395 it calls output_init_element. */
6396
6397void
916c5919 6398process_init_element (struct c_expr value)
e5e809f4 6399{
916c5919
JM
6400 tree orig_value = value.value;
6401 int string_flag = orig_value != 0 && TREE_CODE (orig_value) == STRING_CST;
6402 bool strict_string = value.original_code == STRING_CST;
e5e809f4 6403
3e4093b6 6404 designator_depth = 0;
b06df647 6405 designator_erroneous = 0;
e5e809f4 6406
3e4093b6
RS
6407 /* Handle superfluous braces around string cst as in
6408 char x[] = {"foo"}; */
6409 if (string_flag
6410 && constructor_type
6411 && TREE_CODE (constructor_type) == ARRAY_TYPE
197463ae 6412 && INTEGRAL_TYPE_P (TREE_TYPE (constructor_type))
3e4093b6 6413 && integer_zerop (constructor_unfilled_index))
e5e809f4 6414 {
916c5919 6415 if (constructor_stack->replacement_value.value)
c22cacf3 6416 error_init ("excess elements in char array initializer");
3e4093b6
RS
6417 constructor_stack->replacement_value = value;
6418 return;
e5e809f4 6419 }
8b6a5902 6420
916c5919 6421 if (constructor_stack->replacement_value.value != 0)
3e4093b6
RS
6422 {
6423 error_init ("excess elements in struct initializer");
6424 return;
e5e809f4
JL
6425 }
6426
3e4093b6
RS
6427 /* Ignore elements of a brace group if it is entirely superfluous
6428 and has already been diagnosed. */
6429 if (constructor_type == 0)
6430 return;
e5e809f4 6431
3e4093b6
RS
6432 /* If we've exhausted any levels that didn't have braces,
6433 pop them now. */
6434 while (constructor_stack->implicit)
6435 {
6436 if ((TREE_CODE (constructor_type) == RECORD_TYPE
6437 || TREE_CODE (constructor_type) == UNION_TYPE)
6438 && constructor_fields == 0)
6439 process_init_element (pop_init_level (1));
6440 else if (TREE_CODE (constructor_type) == ARRAY_TYPE
6441 && (constructor_max_index == 0
6442 || tree_int_cst_lt (constructor_max_index,
6443 constructor_index)))
6444 process_init_element (pop_init_level (1));
6445 else
6446 break;
6447 }
e5e809f4 6448
3e4093b6
RS
6449 /* In the case of [LO ... HI] = VALUE, only evaluate VALUE once. */
6450 if (constructor_range_stack)
e5e809f4 6451 {
3e4093b6
RS
6452 /* If value is a compound literal and we'll be just using its
6453 content, don't put it into a SAVE_EXPR. */
916c5919 6454 if (TREE_CODE (value.value) != COMPOUND_LITERAL_EXPR
3e4093b6
RS
6455 || !require_constant_value
6456 || flag_isoc99)
916c5919 6457 value.value = save_expr (value.value);
3e4093b6 6458 }
e5e809f4 6459
3e4093b6
RS
6460 while (1)
6461 {
6462 if (TREE_CODE (constructor_type) == RECORD_TYPE)
e5e809f4 6463 {
3e4093b6
RS
6464 tree fieldtype;
6465 enum tree_code fieldcode;
e5e809f4 6466
3e4093b6
RS
6467 if (constructor_fields == 0)
6468 {
6469 pedwarn_init ("excess elements in struct initializer");
6470 break;
6471 }
e5e809f4 6472
3e4093b6
RS
6473 fieldtype = TREE_TYPE (constructor_fields);
6474 if (fieldtype != error_mark_node)
6475 fieldtype = TYPE_MAIN_VARIANT (fieldtype);
6476 fieldcode = TREE_CODE (fieldtype);
e5e809f4 6477
3e4093b6
RS
6478 /* Error for non-static initialization of a flexible array member. */
6479 if (fieldcode == ARRAY_TYPE
6480 && !require_constant_value
6481 && TYPE_SIZE (fieldtype) == NULL_TREE
6482 && TREE_CHAIN (constructor_fields) == NULL_TREE)
6483 {
6484 error_init ("non-static initialization of a flexible array member");
6485 break;
6486 }
e5e809f4 6487
3e4093b6 6488 /* Accept a string constant to initialize a subarray. */
916c5919 6489 if (value.value != 0
3e4093b6 6490 && fieldcode == ARRAY_TYPE
197463ae 6491 && INTEGRAL_TYPE_P (TREE_TYPE (fieldtype))
3e4093b6 6492 && string_flag)
916c5919 6493 value.value = orig_value;
3e4093b6
RS
6494 /* Otherwise, if we have come to a subaggregate,
6495 and we don't have an element of its type, push into it. */
0953878d 6496 else if (value.value != 0
916c5919
JM
6497 && value.value != error_mark_node
6498 && TYPE_MAIN_VARIANT (TREE_TYPE (value.value)) != fieldtype
3e4093b6
RS
6499 && (fieldcode == RECORD_TYPE || fieldcode == ARRAY_TYPE
6500 || fieldcode == UNION_TYPE))
6501 {
6502 push_init_level (1);
6503 continue;
6504 }
e5e809f4 6505
916c5919 6506 if (value.value)
3e4093b6
RS
6507 {
6508 push_member_name (constructor_fields);
916c5919
JM
6509 output_init_element (value.value, strict_string,
6510 fieldtype, constructor_fields, 1);
3e4093b6 6511 RESTORE_SPELLING_DEPTH (constructor_depth);
e5e809f4
JL
6512 }
6513 else
3e4093b6
RS
6514 /* Do the bookkeeping for an element that was
6515 directly output as a constructor. */
e5e809f4 6516 {
3e4093b6
RS
6517 /* For a record, keep track of end position of last field. */
6518 if (DECL_SIZE (constructor_fields))
c22cacf3 6519 constructor_bit_index
3e4093b6 6520 = size_binop (PLUS_EXPR,
c22cacf3
MS
6521 bit_position (constructor_fields),
6522 DECL_SIZE (constructor_fields));
3e4093b6
RS
6523
6524 /* If the current field was the first one not yet written out,
6525 it isn't now, so update. */
6526 if (constructor_unfilled_fields == constructor_fields)
6527 {
6528 constructor_unfilled_fields = TREE_CHAIN (constructor_fields);
6529 /* Skip any nameless bit fields. */
6530 while (constructor_unfilled_fields != 0
6531 && DECL_C_BIT_FIELD (constructor_unfilled_fields)
6532 && DECL_NAME (constructor_unfilled_fields) == 0)
6533 constructor_unfilled_fields =
6534 TREE_CHAIN (constructor_unfilled_fields);
6535 }
e5e809f4 6536 }
3e4093b6
RS
6537
6538 constructor_fields = TREE_CHAIN (constructor_fields);
6539 /* Skip any nameless bit fields at the beginning. */
6540 while (constructor_fields != 0
6541 && DECL_C_BIT_FIELD (constructor_fields)
6542 && DECL_NAME (constructor_fields) == 0)
6543 constructor_fields = TREE_CHAIN (constructor_fields);
e5e809f4 6544 }
3e4093b6 6545 else if (TREE_CODE (constructor_type) == UNION_TYPE)
e5e809f4 6546 {
3e4093b6
RS
6547 tree fieldtype;
6548 enum tree_code fieldcode;
e5e809f4 6549
3e4093b6
RS
6550 if (constructor_fields == 0)
6551 {
6552 pedwarn_init ("excess elements in union initializer");
6553 break;
6554 }
e5e809f4 6555
3e4093b6
RS
6556 fieldtype = TREE_TYPE (constructor_fields);
6557 if (fieldtype != error_mark_node)
6558 fieldtype = TYPE_MAIN_VARIANT (fieldtype);
6559 fieldcode = TREE_CODE (fieldtype);
e5e809f4 6560
3e4093b6
RS
6561 /* Warn that traditional C rejects initialization of unions.
6562 We skip the warning if the value is zero. This is done
6563 under the assumption that the zero initializer in user
6564 code appears conditioned on e.g. __STDC__ to avoid
6565 "missing initializer" warnings and relies on default
6566 initialization to zero in the traditional C case.
6567 We also skip the warning if the initializer is designated,
6568 again on the assumption that this must be conditional on
6569 __STDC__ anyway (and we've already complained about the
6570 member-designator already). */
3176a0c2 6571 if (!in_system_header && !constructor_designated
916c5919
JM
6572 && !(value.value && (integer_zerop (value.value)
6573 || real_zerop (value.value))))
3176a0c2
DD
6574 warning (OPT_Wtraditional, "traditional C rejects initialization "
6575 "of unions");
e5e809f4 6576
3e4093b6 6577 /* Accept a string constant to initialize a subarray. */
916c5919 6578 if (value.value != 0
3e4093b6 6579 && fieldcode == ARRAY_TYPE
197463ae 6580 && INTEGRAL_TYPE_P (TREE_TYPE (fieldtype))
3e4093b6 6581 && string_flag)
916c5919 6582 value.value = orig_value;
3e4093b6
RS
6583 /* Otherwise, if we have come to a subaggregate,
6584 and we don't have an element of its type, push into it. */
0953878d 6585 else if (value.value != 0
916c5919
JM
6586 && value.value != error_mark_node
6587 && TYPE_MAIN_VARIANT (TREE_TYPE (value.value)) != fieldtype
3e4093b6
RS
6588 && (fieldcode == RECORD_TYPE || fieldcode == ARRAY_TYPE
6589 || fieldcode == UNION_TYPE))
6590 {
6591 push_init_level (1);
6592 continue;
6593 }
e5e809f4 6594
916c5919 6595 if (value.value)
3e4093b6
RS
6596 {
6597 push_member_name (constructor_fields);
916c5919
JM
6598 output_init_element (value.value, strict_string,
6599 fieldtype, constructor_fields, 1);
3e4093b6 6600 RESTORE_SPELLING_DEPTH (constructor_depth);
e5e809f4
JL
6601 }
6602 else
3e4093b6
RS
6603 /* Do the bookkeeping for an element that was
6604 directly output as a constructor. */
e5e809f4 6605 {
3e4093b6
RS
6606 constructor_bit_index = DECL_SIZE (constructor_fields);
6607 constructor_unfilled_fields = TREE_CHAIN (constructor_fields);
e5e809f4 6608 }
e5e809f4 6609
3e4093b6
RS
6610 constructor_fields = 0;
6611 }
6612 else if (TREE_CODE (constructor_type) == ARRAY_TYPE)
6613 {
6614 tree elttype = TYPE_MAIN_VARIANT (TREE_TYPE (constructor_type));
6615 enum tree_code eltcode = TREE_CODE (elttype);
e5e809f4 6616
3e4093b6 6617 /* Accept a string constant to initialize a subarray. */
916c5919 6618 if (value.value != 0
3e4093b6 6619 && eltcode == ARRAY_TYPE
197463ae 6620 && INTEGRAL_TYPE_P (TREE_TYPE (elttype))
3e4093b6 6621 && string_flag)
916c5919 6622 value.value = orig_value;
3e4093b6
RS
6623 /* Otherwise, if we have come to a subaggregate,
6624 and we don't have an element of its type, push into it. */
0953878d 6625 else if (value.value != 0
916c5919
JM
6626 && value.value != error_mark_node
6627 && TYPE_MAIN_VARIANT (TREE_TYPE (value.value)) != elttype
3e4093b6
RS
6628 && (eltcode == RECORD_TYPE || eltcode == ARRAY_TYPE
6629 || eltcode == UNION_TYPE))
6630 {
6631 push_init_level (1);
6632 continue;
6633 }
8b6a5902 6634
3e4093b6
RS
6635 if (constructor_max_index != 0
6636 && (tree_int_cst_lt (constructor_max_index, constructor_index)
6637 || integer_all_onesp (constructor_max_index)))
6638 {
6639 pedwarn_init ("excess elements in array initializer");
6640 break;
6641 }
8b6a5902 6642
3e4093b6 6643 /* Now output the actual element. */
916c5919 6644 if (value.value)
3e4093b6 6645 {
a0f0ab9f 6646 push_array_bounds (tree_low_cst (constructor_index, 1));
916c5919
JM
6647 output_init_element (value.value, strict_string,
6648 elttype, constructor_index, 1);
3e4093b6
RS
6649 RESTORE_SPELLING_DEPTH (constructor_depth);
6650 }
2f6e4e97 6651
3e4093b6
RS
6652 constructor_index
6653 = size_binop (PLUS_EXPR, constructor_index, bitsize_one_node);
8b6a5902 6654
916c5919 6655 if (!value.value)
3e4093b6
RS
6656 /* If we are doing the bookkeeping for an element that was
6657 directly output as a constructor, we must update
6658 constructor_unfilled_index. */
6659 constructor_unfilled_index = constructor_index;
6660 }
6661 else if (TREE_CODE (constructor_type) == VECTOR_TYPE)
6662 {
6663 tree elttype = TYPE_MAIN_VARIANT (TREE_TYPE (constructor_type));
8b6a5902 6664
c22cacf3
MS
6665 /* Do a basic check of initializer size. Note that vectors
6666 always have a fixed size derived from their type. */
3e4093b6
RS
6667 if (tree_int_cst_lt (constructor_max_index, constructor_index))
6668 {
6669 pedwarn_init ("excess elements in vector initializer");
6670 break;
6671 }
8b6a5902 6672
3e4093b6 6673 /* Now output the actual element. */
916c5919
JM
6674 if (value.value)
6675 output_init_element (value.value, strict_string,
6676 elttype, constructor_index, 1);
8b6a5902 6677
3e4093b6
RS
6678 constructor_index
6679 = size_binop (PLUS_EXPR, constructor_index, bitsize_one_node);
8b6a5902 6680
916c5919 6681 if (!value.value)
3e4093b6
RS
6682 /* If we are doing the bookkeeping for an element that was
6683 directly output as a constructor, we must update
6684 constructor_unfilled_index. */
6685 constructor_unfilled_index = constructor_index;
6686 }
8b6a5902 6687
3e4093b6
RS
6688 /* Handle the sole element allowed in a braced initializer
6689 for a scalar variable. */
b4519d39
SB
6690 else if (constructor_type != error_mark_node
6691 && constructor_fields == 0)
8b6a5902 6692 {
3e4093b6
RS
6693 pedwarn_init ("excess elements in scalar initializer");
6694 break;
8b6a5902
JJ
6695 }
6696 else
6697 {
916c5919
JM
6698 if (value.value)
6699 output_init_element (value.value, strict_string,
6700 constructor_type, NULL_TREE, 1);
3e4093b6 6701 constructor_fields = 0;
8b6a5902
JJ
6702 }
6703
3e4093b6
RS
6704 /* Handle range initializers either at this level or anywhere higher
6705 in the designator stack. */
6706 if (constructor_range_stack)
8b6a5902 6707 {
3e4093b6
RS
6708 struct constructor_range_stack *p, *range_stack;
6709 int finish = 0;
6710
6711 range_stack = constructor_range_stack;
6712 constructor_range_stack = 0;
6713 while (constructor_stack != range_stack->stack)
8b6a5902 6714 {
366de0ce 6715 gcc_assert (constructor_stack->implicit);
3e4093b6 6716 process_init_element (pop_init_level (1));
8b6a5902 6717 }
3e4093b6
RS
6718 for (p = range_stack;
6719 !p->range_end || tree_int_cst_equal (p->index, p->range_end);
6720 p = p->prev)
8b6a5902 6721 {
366de0ce 6722 gcc_assert (constructor_stack->implicit);
3e4093b6 6723 process_init_element (pop_init_level (1));
8b6a5902 6724 }
3e4093b6
RS
6725
6726 p->index = size_binop (PLUS_EXPR, p->index, bitsize_one_node);
6727 if (tree_int_cst_equal (p->index, p->range_end) && !p->prev)
6728 finish = 1;
6729
6730 while (1)
6731 {
6732 constructor_index = p->index;
6733 constructor_fields = p->fields;
6734 if (finish && p->range_end && p->index == p->range_start)
6735 {
6736 finish = 0;
6737 p->prev = 0;
6738 }
6739 p = p->next;
6740 if (!p)
6741 break;
6742 push_init_level (2);
6743 p->stack = constructor_stack;
6744 if (p->range_end && tree_int_cst_equal (p->index, p->range_end))
6745 p->index = p->range_start;
6746 }
6747
6748 if (!finish)
6749 constructor_range_stack = range_stack;
6750 continue;
8b6a5902
JJ
6751 }
6752
3e4093b6 6753 break;
8b6a5902
JJ
6754 }
6755
3e4093b6
RS
6756 constructor_range_stack = 0;
6757}
6758\f
9f0e2d86
ZW
6759/* Build a complete asm-statement, whose components are a CV_QUALIFIER
6760 (guaranteed to be 'volatile' or null) and ARGS (represented using
e130a54b 6761 an ASM_EXPR node). */
3e4093b6 6762tree
9f0e2d86 6763build_asm_stmt (tree cv_qualifier, tree args)
3e4093b6 6764{
6de9cd9a
DN
6765 if (!ASM_VOLATILE_P (args) && cv_qualifier)
6766 ASM_VOLATILE_P (args) = 1;
9f0e2d86 6767 return add_stmt (args);
8b6a5902
JJ
6768}
6769
9f0e2d86
ZW
6770/* Build an asm-expr, whose components are a STRING, some OUTPUTS,
6771 some INPUTS, and some CLOBBERS. The latter three may be NULL.
6772 SIMPLE indicates whether there was anything at all after the
6773 string in the asm expression -- asm("blah") and asm("blah" : )
e130a54b 6774 are subtly different. We use a ASM_EXPR node to represent this. */
3e4093b6 6775tree
9f0e2d86
ZW
6776build_asm_expr (tree string, tree outputs, tree inputs, tree clobbers,
6777 bool simple)
e5e809f4 6778{
3e4093b6 6779 tree tail;
9f0e2d86 6780 tree args;
6de9cd9a
DN
6781 int i;
6782 const char *constraint;
74f0c611 6783 const char **oconstraints;
6de9cd9a 6784 bool allows_mem, allows_reg, is_inout;
74f0c611 6785 int ninputs, noutputs;
6de9cd9a
DN
6786
6787 ninputs = list_length (inputs);
6788 noutputs = list_length (outputs);
74f0c611
RH
6789 oconstraints = (const char **) alloca (noutputs * sizeof (const char *));
6790
6791 string = resolve_asm_operand_names (string, outputs, inputs);
3e4093b6 6792
6de9cd9a
DN
6793 /* Remove output conversions that change the type but not the mode. */
6794 for (i = 0, tail = outputs; tail; ++i, tail = TREE_CHAIN (tail))
e5e809f4 6795 {
3e4093b6 6796 tree output = TREE_VALUE (tail);
74f0c611
RH
6797
6798 /* ??? Really, this should not be here. Users should be using a
6799 proper lvalue, dammit. But there's a long history of using casts
6800 in the output operands. In cases like longlong.h, this becomes a
6801 primitive form of typechecking -- if the cast can be removed, then
6802 the output operand had a type of the proper width; otherwise we'll
6803 get an error. Gross, but ... */
3e4093b6 6804 STRIP_NOPS (output);
74f0c611
RH
6805
6806 if (!lvalue_or_else (output, lv_asm))
6807 output = error_mark_node;
8b6a5902 6808
5544530a
PB
6809 if (output != error_mark_node
6810 && (TREE_READONLY (output)
6811 || TYPE_READONLY (TREE_TYPE (output))
6812 || ((TREE_CODE (TREE_TYPE (output)) == RECORD_TYPE
6813 || TREE_CODE (TREE_TYPE (output)) == UNION_TYPE)
6814 && C_TYPE_FIELDS_READONLY (TREE_TYPE (output)))))
6815 readonly_error (output, lv_asm);
6816
6de9cd9a 6817 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (tail)));
74f0c611
RH
6818 oconstraints[i] = constraint;
6819
6820 if (parse_output_constraint (&constraint, i, ninputs, noutputs,
6821 &allows_mem, &allows_reg, &is_inout))
6822 {
6823 /* If the operand is going to end up in memory,
6824 mark it addressable. */
6825 if (!allows_reg && !c_mark_addressable (output))
6826 output = error_mark_node;
6827 }
6828 else
c22cacf3 6829 output = error_mark_node;
3e4093b6 6830
74f0c611 6831 TREE_VALUE (tail) = output;
8b6a5902 6832 }
3e4093b6 6833
74f0c611
RH
6834 for (i = 0, tail = inputs; tail; ++i, tail = TREE_CHAIN (tail))
6835 {
6836 tree input;
6837
6838 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (tail)));
6839 input = TREE_VALUE (tail);
6840
74f0c611
RH
6841 if (parse_input_constraint (&constraint, i, ninputs, noutputs, 0,
6842 oconstraints, &allows_mem, &allows_reg))
6843 {
6844 /* If the operand is going to end up in memory,
6845 mark it addressable. */
b4c33883
AP
6846 if (!allows_reg && allows_mem)
6847 {
6848 /* Strip the nops as we allow this case. FIXME, this really
6849 should be rejected or made deprecated. */
6850 STRIP_NOPS (input);
6851 if (!c_mark_addressable (input))
6852 input = error_mark_node;
6853 }
74f0c611
RH
6854 }
6855 else
6856 input = error_mark_node;
6857
6858 TREE_VALUE (tail) = input;
6859 }
3e4093b6 6860
e130a54b 6861 args = build_stmt (ASM_EXPR, string, outputs, inputs, clobbers);
9f0e2d86 6862
5544530a
PB
6863 /* asm statements without outputs, including simple ones, are treated
6864 as volatile. */
6865 ASM_INPUT_P (args) = simple;
6866 ASM_VOLATILE_P (args) = (noutputs == 0);
74f0c611 6867
9f0e2d86 6868 return args;
e5e809f4 6869}
3e4093b6 6870\f
506e2710
RH
6871/* Generate a goto statement to LABEL. */
6872
6873tree
6874c_finish_goto_label (tree label)
6875{
6876 tree decl = lookup_label (label);
6877 if (!decl)
6878 return NULL_TREE;
6879
16ef3acc
JM
6880 if (C_DECL_UNJUMPABLE_STMT_EXPR (decl))
6881 {
6882 error ("jump into statement expression");
6883 return NULL_TREE;
6884 }
6885
187230a7
JM
6886 if (C_DECL_UNJUMPABLE_VM (decl))
6887 {
6888 error ("jump into scope of identifier with variably modified type");
6889 return NULL_TREE;
6890 }
6891
16ef3acc
JM
6892 if (!C_DECL_UNDEFINABLE_STMT_EXPR (decl))
6893 {
6894 /* No jump from outside this statement expression context, so
6895 record that there is a jump from within this context. */
6896 struct c_label_list *nlist;
6897 nlist = XOBNEW (&parser_obstack, struct c_label_list);
187230a7
JM
6898 nlist->next = label_context_stack_se->labels_used;
6899 nlist->label = decl;
6900 label_context_stack_se->labels_used = nlist;
6901 }
6902
6903 if (!C_DECL_UNDEFINABLE_VM (decl))
6904 {
6905 /* No jump from outside this context context of identifiers with
6906 variably modified type, so record that there is a jump from
6907 within this context. */
6908 struct c_label_list *nlist;
6909 nlist = XOBNEW (&parser_obstack, struct c_label_list);
6910 nlist->next = label_context_stack_vm->labels_used;
16ef3acc 6911 nlist->label = decl;
187230a7 6912 label_context_stack_vm->labels_used = nlist;
16ef3acc
JM
6913 }
6914
506e2710 6915 TREE_USED (decl) = 1;
53fb4de3 6916 return add_stmt (build1 (GOTO_EXPR, void_type_node, decl));
506e2710
RH
6917}
6918
6919/* Generate a computed goto statement to EXPR. */
6920
6921tree
6922c_finish_goto_ptr (tree expr)
6923{
6924 if (pedantic)
bda67431 6925 pedwarn ("ISO C forbids %<goto *expr;%>");
506e2710 6926 expr = convert (ptr_type_node, expr);
53fb4de3 6927 return add_stmt (build1 (GOTO_EXPR, void_type_node, expr));
506e2710
RH
6928}
6929
5088b058
RH
6930/* Generate a C `return' statement. RETVAL is the expression for what
6931 to return, or a null pointer for `return;' with no value. */
de520661 6932
506e2710 6933tree
5088b058 6934c_finish_return (tree retval)
3e4093b6 6935{
0c9b182b
JJ
6936 tree valtype = TREE_TYPE (TREE_TYPE (current_function_decl)), ret_stmt;
6937 bool no_warning = false;
3e4093b6
RS
6938
6939 if (TREE_THIS_VOLATILE (current_function_decl))
d4ee4d25 6940 warning (0, "function declared %<noreturn%> has a %<return%> statement");
3e4093b6
RS
6941
6942 if (!retval)
de520661 6943 {
3e4093b6
RS
6944 current_function_returns_null = 1;
6945 if ((warn_return_type || flag_isoc99)
6946 && valtype != 0 && TREE_CODE (valtype) != VOID_TYPE)
0c9b182b
JJ
6947 {
6948 pedwarn_c99 ("%<return%> with no value, in "
6949 "function returning non-void");
6950 no_warning = true;
6951 }
400fbf9f 6952 }
3e4093b6 6953 else if (valtype == 0 || TREE_CODE (valtype) == VOID_TYPE)
de520661 6954 {
3e4093b6 6955 current_function_returns_null = 1;
2397c575 6956 if (TREE_CODE (TREE_TYPE (retval)) != VOID_TYPE)
bda67431 6957 pedwarn ("%<return%> with a value, in function returning void");
2397c575
MLI
6958 else if (pedantic)
6959 pedwarn ("ISO C forbids %<return%> with expression, in function returning void");
de520661 6960 }
3e4093b6 6961 else
de520661 6962 {
2ac2f164 6963 tree t = convert_for_assignment (valtype, retval, ic_return,
3e4093b6
RS
6964 NULL_TREE, NULL_TREE, 0);
6965 tree res = DECL_RESULT (current_function_decl);
6966 tree inner;
6967
6968 current_function_returns_value = 1;
6969 if (t == error_mark_node)
506e2710 6970 return NULL_TREE;
3e4093b6
RS
6971
6972 inner = t = convert (TREE_TYPE (res), t);
6973
6974 /* Strip any conversions, additions, and subtractions, and see if
6975 we are returning the address of a local variable. Warn if so. */
6976 while (1)
8b6a5902 6977 {
3e4093b6 6978 switch (TREE_CODE (inner))
8b6a5902 6979 {
3e4093b6
RS
6980 case NOP_EXPR: case NON_LVALUE_EXPR: case CONVERT_EXPR:
6981 case PLUS_EXPR:
6982 inner = TREE_OPERAND (inner, 0);
6983 continue;
6984
6985 case MINUS_EXPR:
6986 /* If the second operand of the MINUS_EXPR has a pointer
6987 type (or is converted from it), this may be valid, so
6988 don't give a warning. */
6989 {
6990 tree op1 = TREE_OPERAND (inner, 1);
8b6a5902 6991
3f75a254 6992 while (!POINTER_TYPE_P (TREE_TYPE (op1))
3e4093b6
RS
6993 && (TREE_CODE (op1) == NOP_EXPR
6994 || TREE_CODE (op1) == NON_LVALUE_EXPR
6995 || TREE_CODE (op1) == CONVERT_EXPR))
6996 op1 = TREE_OPERAND (op1, 0);
8b6a5902 6997
3e4093b6
RS
6998 if (POINTER_TYPE_P (TREE_TYPE (op1)))
6999 break;
8b6a5902 7000
3e4093b6
RS
7001 inner = TREE_OPERAND (inner, 0);
7002 continue;
7003 }
400fbf9f 7004
3e4093b6
RS
7005 case ADDR_EXPR:
7006 inner = TREE_OPERAND (inner, 0);
c2f4acb7 7007
6615c446 7008 while (REFERENCE_CLASS_P (inner)
c22cacf3 7009 && TREE_CODE (inner) != INDIRECT_REF)
3e4093b6 7010 inner = TREE_OPERAND (inner, 0);
8b6a5902 7011
a2f1f4c3 7012 if (DECL_P (inner)
3f75a254
JM
7013 && !DECL_EXTERNAL (inner)
7014 && !TREE_STATIC (inner)
3e4093b6 7015 && DECL_CONTEXT (inner) == current_function_decl)
d4ee4d25 7016 warning (0, "function returns address of local variable");
3e4093b6 7017 break;
8b6a5902 7018
3e4093b6
RS
7019 default:
7020 break;
7021 }
de520661 7022
3e4093b6
RS
7023 break;
7024 }
7025
53fb4de3 7026 retval = build2 (MODIFY_EXPR, TREE_TYPE (res), res, t);
de520661 7027 }
8b6a5902 7028
0c9b182b
JJ
7029 ret_stmt = build_stmt (RETURN_EXPR, retval);
7030 TREE_NO_WARNING (ret_stmt) |= no_warning;
7031 return add_stmt (ret_stmt);
de520661 7032}
3e4093b6
RS
7033\f
7034struct c_switch {
604f5adf
ILT
7035 /* The SWITCH_EXPR being built. */
7036 tree switch_expr;
a6c0a76c 7037
89dbed81 7038 /* The original type of the testing expression, i.e. before the
a6c0a76c
SB
7039 default conversion is applied. */
7040 tree orig_type;
7041
3e4093b6
RS
7042 /* A splay-tree mapping the low element of a case range to the high
7043 element, or NULL_TREE if there is no high element. Used to
7044 determine whether or not a new case label duplicates an old case
7045 label. We need a tree, rather than simply a hash table, because
7046 of the GNU case range extension. */
7047 splay_tree cases;
a6c0a76c 7048
16ef3acc
JM
7049 /* Number of nested statement expressions within this switch
7050 statement; if nonzero, case and default labels may not
7051 appear. */
7052 unsigned int blocked_stmt_expr;
7053
187230a7
JM
7054 /* Scope of outermost declarations of identifiers with variably
7055 modified type within this switch statement; if nonzero, case and
7056 default labels may not appear. */
7057 unsigned int blocked_vm;
7058
3e4093b6
RS
7059 /* The next node on the stack. */
7060 struct c_switch *next;
7061};
400fbf9f 7062
3e4093b6
RS
7063/* A stack of the currently active switch statements. The innermost
7064 switch statement is on the top of the stack. There is no need to
7065 mark the stack for garbage collection because it is only active
7066 during the processing of the body of a function, and we never
7067 collect at that point. */
de520661 7068
506e2710 7069struct c_switch *c_switch_stack;
de520661 7070
3e4093b6 7071/* Start a C switch statement, testing expression EXP. Return the new
604f5adf 7072 SWITCH_EXPR. */
de520661 7073
3e4093b6
RS
7074tree
7075c_start_case (tree exp)
de520661 7076{
c58e8676 7077 tree orig_type = error_mark_node;
3e4093b6 7078 struct c_switch *cs;
2f6e4e97 7079
3e4093b6 7080 if (exp != error_mark_node)
de520661 7081 {
3e4093b6
RS
7082 orig_type = TREE_TYPE (exp);
7083
c58e8676 7084 if (!INTEGRAL_TYPE_P (orig_type))
de520661 7085 {
c58e8676
VR
7086 if (orig_type != error_mark_node)
7087 {
7088 error ("switch quantity not an integer");
7089 orig_type = error_mark_node;
7090 }
3e4093b6 7091 exp = integer_zero_node;
de520661 7092 }
3e4093b6 7093 else
de520661 7094 {
c58e8676 7095 tree type = TYPE_MAIN_VARIANT (orig_type);
8b6a5902 7096
3176a0c2 7097 if (!in_system_header
3e4093b6
RS
7098 && (type == long_integer_type_node
7099 || type == long_unsigned_type_node))
3176a0c2
DD
7100 warning (OPT_Wtraditional, "%<long%> switch expression not "
7101 "converted to %<int%> in ISO C");
8b6a5902 7102
3e4093b6 7103 exp = default_conversion (exp);
3e4093b6
RS
7104 }
7105 }
7106
604f5adf 7107 /* Add this new SWITCH_EXPR to the stack. */
5d038c4c 7108 cs = XNEW (struct c_switch);
604f5adf 7109 cs->switch_expr = build3 (SWITCH_EXPR, orig_type, exp, NULL_TREE, NULL_TREE);
a6c0a76c 7110 cs->orig_type = orig_type;
3e4093b6 7111 cs->cases = splay_tree_new (case_compare, NULL, NULL);
16ef3acc 7112 cs->blocked_stmt_expr = 0;
187230a7 7113 cs->blocked_vm = 0;
506e2710
RH
7114 cs->next = c_switch_stack;
7115 c_switch_stack = cs;
3e4093b6 7116
604f5adf 7117 return add_stmt (cs->switch_expr);
3e4093b6
RS
7118}
7119
7120/* Process a case label. */
7121
7122tree
7123do_case (tree low_value, tree high_value)
7124{
7125 tree label = NULL_TREE;
7126
187230a7
JM
7127 if (c_switch_stack && !c_switch_stack->blocked_stmt_expr
7128 && !c_switch_stack->blocked_vm)
3e4093b6 7129 {
506e2710 7130 label = c_add_case_label (c_switch_stack->cases,
604f5adf 7131 SWITCH_COND (c_switch_stack->switch_expr),
a6c0a76c 7132 c_switch_stack->orig_type,
3e4093b6
RS
7133 low_value, high_value);
7134 if (label == error_mark_node)
7135 label = NULL_TREE;
de520661 7136 }
16ef3acc
JM
7137 else if (c_switch_stack && c_switch_stack->blocked_stmt_expr)
7138 {
7139 if (low_value)
7140 error ("case label in statement expression not containing "
7141 "enclosing switch statement");
7142 else
7143 error ("%<default%> label in statement expression not containing "
7144 "enclosing switch statement");
7145 }
187230a7
JM
7146 else if (c_switch_stack && c_switch_stack->blocked_vm)
7147 {
7148 if (low_value)
7149 error ("case label in scope of identifier with variably modified "
7150 "type not containing enclosing switch statement");
7151 else
7152 error ("%<default%> label in scope of identifier with variably "
7153 "modified type not containing enclosing switch statement");
7154 }
3e4093b6
RS
7155 else if (low_value)
7156 error ("case label not within a switch statement");
7157 else
bda67431 7158 error ("%<default%> label not within a switch statement");
de520661 7159
3e4093b6
RS
7160 return label;
7161}
de520661 7162
3e4093b6 7163/* Finish the switch statement. */
de520661 7164
3e4093b6 7165void
325c3691 7166c_finish_case (tree body)
3e4093b6 7167{
506e2710 7168 struct c_switch *cs = c_switch_stack;
fbc315db 7169 location_t switch_location;
3e4093b6 7170
604f5adf 7171 SWITCH_BODY (cs->switch_expr) = body;
325c3691 7172
187230a7
JM
7173 /* We must not be within a statement expression nested in the switch
7174 at this point; we might, however, be within the scope of an
7175 identifier with variably modified type nested in the switch. */
16ef3acc
JM
7176 gcc_assert (!cs->blocked_stmt_expr);
7177
6de9cd9a 7178 /* Emit warnings as needed. */
fbc315db
ILT
7179 if (EXPR_HAS_LOCATION (cs->switch_expr))
7180 switch_location = EXPR_LOCATION (cs->switch_expr);
7181 else
7182 switch_location = input_location;
7183 c_do_switch_warnings (cs->cases, switch_location,
7184 TREE_TYPE (cs->switch_expr),
7185 SWITCH_COND (cs->switch_expr));
6de9cd9a 7186
3e4093b6 7187 /* Pop the stack. */
506e2710 7188 c_switch_stack = cs->next;
3e4093b6 7189 splay_tree_delete (cs->cases);
5d038c4c 7190 XDELETE (cs);
de520661 7191}
325c3691 7192\f
506e2710
RH
7193/* Emit an if statement. IF_LOCUS is the location of the 'if'. COND,
7194 THEN_BLOCK and ELSE_BLOCK are expressions to be used; ELSE_BLOCK
7195 may be null. NESTED_IF is true if THEN_BLOCK contains another IF
7196 statement, and was not surrounded with parenthesis. */
325c3691 7197
9e51cf9d 7198void
506e2710
RH
7199c_finish_if_stmt (location_t if_locus, tree cond, tree then_block,
7200 tree else_block, bool nested_if)
325c3691 7201{
506e2710 7202 tree stmt;
325c3691 7203
506e2710
RH
7204 /* Diagnose an ambiguous else if if-then-else is nested inside if-then. */
7205 if (warn_parentheses && nested_if && else_block == NULL)
325c3691 7206 {
506e2710 7207 tree inner_if = then_block;
16865eaa 7208
61ada8ae 7209 /* We know from the grammar productions that there is an IF nested
506e2710
RH
7210 within THEN_BLOCK. Due to labels and c99 conditional declarations,
7211 it might not be exactly THEN_BLOCK, but should be the last
7212 non-container statement within. */
7213 while (1)
7214 switch (TREE_CODE (inner_if))
7215 {
7216 case COND_EXPR:
7217 goto found;
7218 case BIND_EXPR:
7219 inner_if = BIND_EXPR_BODY (inner_if);
7220 break;
7221 case STATEMENT_LIST:
7222 inner_if = expr_last (then_block);
7223 break;
7224 case TRY_FINALLY_EXPR:
7225 case TRY_CATCH_EXPR:
7226 inner_if = TREE_OPERAND (inner_if, 0);
7227 break;
7228 default:
366de0ce 7229 gcc_unreachable ();
506e2710
RH
7230 }
7231 found:
16865eaa 7232
506e2710 7233 if (COND_EXPR_ELSE (inner_if))
c303630a
DD
7234 warning (OPT_Wparentheses,
7235 "%Hsuggest explicit braces to avoid ambiguous %<else%>",
506e2710
RH
7236 &if_locus);
7237 }
16865eaa 7238
62e00e94 7239 empty_if_body_warning (then_block, else_block);
325c3691 7240
2214de30 7241 stmt = build3 (COND_EXPR, void_type_node, cond, then_block, else_block);
a281759f 7242 SET_EXPR_LOCATION (stmt, if_locus);
506e2710 7243 add_stmt (stmt);
325c3691
RH
7244}
7245
506e2710
RH
7246/* Emit a general-purpose loop construct. START_LOCUS is the location of
7247 the beginning of the loop. COND is the loop condition. COND_IS_FIRST
7248 is false for DO loops. INCR is the FOR increment expression. BODY is
61ada8ae 7249 the statement controlled by the loop. BLAB is the break label. CLAB is
506e2710 7250 the continue label. Everything is allowed to be NULL. */
325c3691
RH
7251
7252void
506e2710
RH
7253c_finish_loop (location_t start_locus, tree cond, tree incr, tree body,
7254 tree blab, tree clab, bool cond_is_first)
325c3691 7255{
506e2710
RH
7256 tree entry = NULL, exit = NULL, t;
7257
28af952a
RS
7258 /* If the condition is zero don't generate a loop construct. */
7259 if (cond && integer_zerop (cond))
7260 {
7261 if (cond_is_first)
7262 {
7263 t = build_and_jump (&blab);
7264 SET_EXPR_LOCATION (t, start_locus);
7265 add_stmt (t);
7266 }
7267 }
7268 else
506e2710
RH
7269 {
7270 tree top = build1 (LABEL_EXPR, void_type_node, NULL_TREE);
c22cacf3 7271
506e2710 7272 /* If we have an exit condition, then we build an IF with gotos either
c22cacf3
MS
7273 out of the loop, or to the top of it. If there's no exit condition,
7274 then we just build a jump back to the top. */
506e2710 7275 exit = build_and_jump (&LABEL_EXPR_LABEL (top));
c22cacf3 7276
28af952a 7277 if (cond && !integer_nonzerop (cond))
c22cacf3
MS
7278 {
7279 /* Canonicalize the loop condition to the end. This means
7280 generating a branch to the loop condition. Reuse the
7281 continue label, if possible. */
7282 if (cond_is_first)
7283 {
7284 if (incr || !clab)
7285 {
7286 entry = build1 (LABEL_EXPR, void_type_node, NULL_TREE);
7287 t = build_and_jump (&LABEL_EXPR_LABEL (entry));
7288 }
7289 else
7290 t = build1 (GOTO_EXPR, void_type_node, clab);
a281759f 7291 SET_EXPR_LOCATION (t, start_locus);
c22cacf3
MS
7292 add_stmt (t);
7293 }
7294
506e2710 7295 t = build_and_jump (&blab);
c22cacf3 7296 exit = fold_build3 (COND_EXPR, void_type_node, cond, exit, t);
506e2710 7297 if (cond_is_first)
c22cacf3 7298 SET_EXPR_LOCATION (exit, start_locus);
506e2710 7299 else
c22cacf3
MS
7300 SET_EXPR_LOCATION (exit, input_location);
7301 }
7302
506e2710
RH
7303 add_stmt (top);
7304 }
c22cacf3 7305
506e2710
RH
7306 if (body)
7307 add_stmt (body);
7308 if (clab)
7309 add_stmt (build1 (LABEL_EXPR, void_type_node, clab));
7310 if (incr)
7311 add_stmt (incr);
7312 if (entry)
7313 add_stmt (entry);
7314 if (exit)
7315 add_stmt (exit);
7316 if (blab)
7317 add_stmt (build1 (LABEL_EXPR, void_type_node, blab));
325c3691 7318}
325c3691
RH
7319
7320tree
506e2710 7321c_finish_bc_stmt (tree *label_p, bool is_break)
325c3691 7322{
089efaa4 7323 bool skip;
506e2710 7324 tree label = *label_p;
325c3691 7325
089efaa4
ILT
7326 /* In switch statements break is sometimes stylistically used after
7327 a return statement. This can lead to spurious warnings about
7328 control reaching the end of a non-void function when it is
7329 inlined. Note that we are calling block_may_fallthru with
7330 language specific tree nodes; this works because
7331 block_may_fallthru returns true when given something it does not
7332 understand. */
7333 skip = !block_may_fallthru (cur_stmt_list);
7334
506e2710 7335 if (!label)
089efaa4
ILT
7336 {
7337 if (!skip)
7338 *label_p = label = create_artificial_label ();
7339 }
953ff289
DN
7340 else if (TREE_CODE (label) == LABEL_DECL)
7341 ;
7342 else switch (TREE_INT_CST_LOW (label))
506e2710 7343 {
953ff289 7344 case 0:
506e2710
RH
7345 if (is_break)
7346 error ("break statement not within loop or switch");
7347 else
c22cacf3 7348 error ("continue statement not within a loop");
506e2710 7349 return NULL_TREE;
953ff289
DN
7350
7351 case 1:
7352 gcc_assert (is_break);
7353 error ("break statement used with OpenMP for loop");
7354 return NULL_TREE;
7355
7356 default:
7357 gcc_unreachable ();
506e2710 7358 }
325c3691 7359
089efaa4
ILT
7360 if (skip)
7361 return NULL_TREE;
7362
53fb4de3 7363 return add_stmt (build1 (GOTO_EXPR, void_type_node, label));
325c3691
RH
7364}
7365
506e2710 7366/* A helper routine for c_process_expr_stmt and c_finish_stmt_expr. */
3a5b9284
RH
7367
7368static void
7369emit_side_effect_warnings (tree expr)
7370{
e6b5a630
RH
7371 if (expr == error_mark_node)
7372 ;
7373 else if (!TREE_SIDE_EFFECTS (expr))
3a5b9284
RH
7374 {
7375 if (!VOID_TYPE_P (TREE_TYPE (expr)) && !TREE_NO_WARNING (expr))
27f33b15 7376 warning (OPT_Wunused_value, "%Hstatement with no effect",
607bdeaa 7377 EXPR_HAS_LOCATION (expr) ? EXPR_LOCUS (expr) : &input_location);
3a5b9284 7378 }
27f33b15 7379 else
3a5b9284
RH
7380 warn_if_unused_value (expr, input_location);
7381}
7382
506e2710
RH
7383/* Process an expression as if it were a complete statement. Emit
7384 diagnostics, but do not call ADD_STMT. */
3a5b9284 7385
506e2710
RH
7386tree
7387c_process_expr_stmt (tree expr)
3a5b9284
RH
7388{
7389 if (!expr)
506e2710 7390 return NULL_TREE;
3a5b9284 7391
3a5b9284
RH
7392 if (warn_sequence_point)
7393 verify_sequence_points (expr);
7394
7395 if (TREE_TYPE (expr) != error_mark_node
7396 && !COMPLETE_OR_VOID_TYPE_P (TREE_TYPE (expr))
7397 && TREE_CODE (TREE_TYPE (expr)) != ARRAY_TYPE)
7398 error ("expression statement has incomplete type");
7399
7400 /* If we're not processing a statement expression, warn about unused values.
7401 Warnings for statement expressions will be emitted later, once we figure
7402 out which is the result. */
7403 if (!STATEMENT_LIST_STMT_EXPR (cur_stmt_list)
27f33b15 7404 && warn_unused_value)
3a5b9284
RH
7405 emit_side_effect_warnings (expr);
7406
7407 /* If the expression is not of a type to which we cannot assign a line
7408 number, wrap the thing in a no-op NOP_EXPR. */
6615c446 7409 if (DECL_P (expr) || CONSTANT_CLASS_P (expr))
3a5b9284
RH
7410 expr = build1 (NOP_EXPR, TREE_TYPE (expr), expr);
7411
07beea0d 7412 if (CAN_HAVE_LOCATION_P (expr))
a281759f 7413 SET_EXPR_LOCATION (expr, input_location);
506e2710
RH
7414
7415 return expr;
7416}
7417
7418/* Emit an expression as a statement. */
7419
7420tree
7421c_finish_expr_stmt (tree expr)
7422{
7423 if (expr)
7424 return add_stmt (c_process_expr_stmt (expr));
7425 else
7426 return NULL;
3a5b9284
RH
7427}
7428
7429/* Do the opposite and emit a statement as an expression. To begin,
7430 create a new binding level and return it. */
325c3691
RH
7431
7432tree
7433c_begin_stmt_expr (void)
7434{
7435 tree ret;
187230a7 7436 struct c_label_context_se *nstack;
16ef3acc 7437 struct c_label_list *glist;
325c3691
RH
7438
7439 /* We must force a BLOCK for this level so that, if it is not expanded
7440 later, there is a way to turn off the entire subtree of blocks that
7441 are contained in it. */
7442 keep_next_level ();
7443 ret = c_begin_compound_stmt (true);
16ef3acc
JM
7444 if (c_switch_stack)
7445 {
7446 c_switch_stack->blocked_stmt_expr++;
7447 gcc_assert (c_switch_stack->blocked_stmt_expr != 0);
7448 }
187230a7 7449 for (glist = label_context_stack_se->labels_used;
16ef3acc
JM
7450 glist != NULL;
7451 glist = glist->next)
7452 {
7453 C_DECL_UNDEFINABLE_STMT_EXPR (glist->label) = 1;
7454 }
187230a7 7455 nstack = XOBNEW (&parser_obstack, struct c_label_context_se);
16ef3acc
JM
7456 nstack->labels_def = NULL;
7457 nstack->labels_used = NULL;
187230a7
JM
7458 nstack->next = label_context_stack_se;
7459 label_context_stack_se = nstack;
325c3691
RH
7460
7461 /* Mark the current statement list as belonging to a statement list. */
7462 STATEMENT_LIST_STMT_EXPR (ret) = 1;
7463
7464 return ret;
7465}
7466
7467tree
7468c_finish_stmt_expr (tree body)
7469{
3a5b9284 7470 tree last, type, tmp, val;
325c3691 7471 tree *last_p;
16ef3acc 7472 struct c_label_list *dlist, *glist, *glist_prev = NULL;
325c3691
RH
7473
7474 body = c_end_compound_stmt (body, true);
16ef3acc
JM
7475 if (c_switch_stack)
7476 {
7477 gcc_assert (c_switch_stack->blocked_stmt_expr != 0);
7478 c_switch_stack->blocked_stmt_expr--;
7479 }
7480 /* It is no longer possible to jump to labels defined within this
7481 statement expression. */
187230a7 7482 for (dlist = label_context_stack_se->labels_def;
16ef3acc
JM
7483 dlist != NULL;
7484 dlist = dlist->next)
7485 {
7486 C_DECL_UNJUMPABLE_STMT_EXPR (dlist->label) = 1;
7487 }
7488 /* It is again possible to define labels with a goto just outside
7489 this statement expression. */
187230a7 7490 for (glist = label_context_stack_se->next->labels_used;
16ef3acc
JM
7491 glist != NULL;
7492 glist = glist->next)
7493 {
7494 C_DECL_UNDEFINABLE_STMT_EXPR (glist->label) = 0;
7495 glist_prev = glist;
7496 }
7497 if (glist_prev != NULL)
187230a7 7498 glist_prev->next = label_context_stack_se->labels_used;
16ef3acc 7499 else
187230a7
JM
7500 label_context_stack_se->next->labels_used
7501 = label_context_stack_se->labels_used;
7502 label_context_stack_se = label_context_stack_se->next;
325c3691 7503
3a5b9284
RH
7504 /* Locate the last statement in BODY. See c_end_compound_stmt
7505 about always returning a BIND_EXPR. */
7506 last_p = &BIND_EXPR_BODY (body);
7507 last = BIND_EXPR_BODY (body);
7508
7509 continue_searching:
325c3691
RH
7510 if (TREE_CODE (last) == STATEMENT_LIST)
7511 {
3a5b9284
RH
7512 tree_stmt_iterator i;
7513
7514 /* This can happen with degenerate cases like ({ }). No value. */
7515 if (!TREE_SIDE_EFFECTS (last))
7516 return body;
7517
7518 /* If we're supposed to generate side effects warnings, process
7519 all of the statements except the last. */
27f33b15 7520 if (warn_unused_value)
325c3691 7521 {
3a5b9284
RH
7522 for (i = tsi_start (last); !tsi_one_before_end_p (i); tsi_next (&i))
7523 emit_side_effect_warnings (tsi_stmt (i));
325c3691
RH
7524 }
7525 else
3a5b9284
RH
7526 i = tsi_last (last);
7527 last_p = tsi_stmt_ptr (i);
7528 last = *last_p;
325c3691
RH
7529 }
7530
3a5b9284
RH
7531 /* If the end of the list is exception related, then the list was split
7532 by a call to push_cleanup. Continue searching. */
7533 if (TREE_CODE (last) == TRY_FINALLY_EXPR
7534 || TREE_CODE (last) == TRY_CATCH_EXPR)
7535 {
7536 last_p = &TREE_OPERAND (last, 0);
7537 last = *last_p;
7538 goto continue_searching;
7539 }
7540
7541 /* In the case that the BIND_EXPR is not necessary, return the
7542 expression out from inside it. */
e6b5a630
RH
7543 if (last == error_mark_node
7544 || (last == BIND_EXPR_BODY (body)
7545 && BIND_EXPR_VARS (body) == NULL))
591baeb0
JM
7546 {
7547 /* Do not warn if the return value of a statement expression is
7548 unused. */
07beea0d 7549 if (CAN_HAVE_LOCATION_P (last))
591baeb0
JM
7550 TREE_NO_WARNING (last) = 1;
7551 return last;
7552 }
325c3691
RH
7553
7554 /* Extract the type of said expression. */
7555 type = TREE_TYPE (last);
325c3691 7556
3a5b9284
RH
7557 /* If we're not returning a value at all, then the BIND_EXPR that
7558 we already have is a fine expression to return. */
7559 if (!type || VOID_TYPE_P (type))
7560 return body;
7561
7562 /* Now that we've located the expression containing the value, it seems
7563 silly to make voidify_wrapper_expr repeat the process. Create a
7564 temporary of the appropriate type and stick it in a TARGET_EXPR. */
7565 tmp = create_tmp_var_raw (type, NULL);
7566
7567 /* Unwrap a no-op NOP_EXPR as added by c_finish_expr_stmt. This avoids
7568 tree_expr_nonnegative_p giving up immediately. */
7569 val = last;
7570 if (TREE_CODE (val) == NOP_EXPR
7571 && TREE_TYPE (val) == TREE_TYPE (TREE_OPERAND (val, 0)))
7572 val = TREE_OPERAND (val, 0);
7573
53fb4de3 7574 *last_p = build2 (MODIFY_EXPR, void_type_node, tmp, val);
3a5b9284
RH
7575 SET_EXPR_LOCUS (*last_p, EXPR_LOCUS (last));
7576
53fb4de3 7577 return build4 (TARGET_EXPR, type, tmp, body, NULL_TREE, NULL_TREE);
325c3691 7578}
187230a7
JM
7579
7580/* Begin the scope of an identifier of variably modified type, scope
7581 number SCOPE. Jumping from outside this scope to inside it is not
7582 permitted. */
7583
7584void
7585c_begin_vm_scope (unsigned int scope)
7586{
7587 struct c_label_context_vm *nstack;
7588 struct c_label_list *glist;
7589
7590 gcc_assert (scope > 0);
71d0c100
MS
7591
7592 /* At file_scope, we don't have to do any processing. */
7593 if (label_context_stack_vm == NULL)
7594 return;
7595
187230a7
JM
7596 if (c_switch_stack && !c_switch_stack->blocked_vm)
7597 c_switch_stack->blocked_vm = scope;
7598 for (glist = label_context_stack_vm->labels_used;
7599 glist != NULL;
7600 glist = glist->next)
7601 {
7602 C_DECL_UNDEFINABLE_VM (glist->label) = 1;
7603 }
7604 nstack = XOBNEW (&parser_obstack, struct c_label_context_vm);
7605 nstack->labels_def = NULL;
7606 nstack->labels_used = NULL;
7607 nstack->scope = scope;
7608 nstack->next = label_context_stack_vm;
7609 label_context_stack_vm = nstack;
7610}
7611
7612/* End a scope which may contain identifiers of variably modified
7613 type, scope number SCOPE. */
7614
7615void
7616c_end_vm_scope (unsigned int scope)
7617{
7618 if (label_context_stack_vm == NULL)
7619 return;
7620 if (c_switch_stack && c_switch_stack->blocked_vm == scope)
7621 c_switch_stack->blocked_vm = 0;
7622 /* We may have a number of nested scopes of identifiers with
7623 variably modified type, all at this depth. Pop each in turn. */
7624 while (label_context_stack_vm->scope == scope)
7625 {
7626 struct c_label_list *dlist, *glist, *glist_prev = NULL;
7627
7628 /* It is no longer possible to jump to labels defined within this
7629 scope. */
7630 for (dlist = label_context_stack_vm->labels_def;
7631 dlist != NULL;
7632 dlist = dlist->next)
7633 {
7634 C_DECL_UNJUMPABLE_VM (dlist->label) = 1;
7635 }
7636 /* It is again possible to define labels with a goto just outside
7637 this scope. */
7638 for (glist = label_context_stack_vm->next->labels_used;
7639 glist != NULL;
7640 glist = glist->next)
7641 {
7642 C_DECL_UNDEFINABLE_VM (glist->label) = 0;
7643 glist_prev = glist;
7644 }
7645 if (glist_prev != NULL)
7646 glist_prev->next = label_context_stack_vm->labels_used;
7647 else
7648 label_context_stack_vm->next->labels_used
7649 = label_context_stack_vm->labels_used;
7650 label_context_stack_vm = label_context_stack_vm->next;
7651 }
7652}
325c3691
RH
7653\f
7654/* Begin and end compound statements. This is as simple as pushing
7655 and popping new statement lists from the tree. */
7656
7657tree
7658c_begin_compound_stmt (bool do_scope)
7659{
7660 tree stmt = push_stmt_list ();
7661 if (do_scope)
4dfa0342 7662 push_scope ();
325c3691
RH
7663 return stmt;
7664}
7665
7666tree
7667c_end_compound_stmt (tree stmt, bool do_scope)
7668{
7669 tree block = NULL;
7670
7671 if (do_scope)
7672 {
7673 if (c_dialect_objc ())
7674 objc_clear_super_receiver ();
7675 block = pop_scope ();
7676 }
7677
7678 stmt = pop_stmt_list (stmt);
7679 stmt = c_build_bind_expr (block, stmt);
7680
7681 /* If this compound statement is nested immediately inside a statement
7682 expression, then force a BIND_EXPR to be created. Otherwise we'll
7683 do the wrong thing for ({ { 1; } }) or ({ 1; { } }). In particular,
7684 STATEMENT_LISTs merge, and thus we can lose track of what statement
7685 was really last. */
7686 if (cur_stmt_list
7687 && STATEMENT_LIST_STMT_EXPR (cur_stmt_list)
7688 && TREE_CODE (stmt) != BIND_EXPR)
7689 {
53fb4de3 7690 stmt = build3 (BIND_EXPR, void_type_node, NULL, stmt, NULL);
325c3691
RH
7691 TREE_SIDE_EFFECTS (stmt) = 1;
7692 }
7693
7694 return stmt;
7695}
5a508662
RH
7696
7697/* Queue a cleanup. CLEANUP is an expression/statement to be executed
7698 when the current scope is exited. EH_ONLY is true when this is not
7699 meant to apply to normal control flow transfer. */
7700
7701void
e18476eb 7702push_cleanup (tree ARG_UNUSED (decl), tree cleanup, bool eh_only)
5a508662 7703{
3a5b9284
RH
7704 enum tree_code code;
7705 tree stmt, list;
7706 bool stmt_expr;
7707
7708 code = eh_only ? TRY_CATCH_EXPR : TRY_FINALLY_EXPR;
7709 stmt = build_stmt (code, NULL, cleanup);
5a508662 7710 add_stmt (stmt);
3a5b9284
RH
7711 stmt_expr = STATEMENT_LIST_STMT_EXPR (cur_stmt_list);
7712 list = push_stmt_list ();
7713 TREE_OPERAND (stmt, 0) = list;
7714 STATEMENT_LIST_STMT_EXPR (list) = stmt_expr;
5a508662 7715}
325c3691 7716\f
3e4093b6
RS
7717/* Build a binary-operation expression without default conversions.
7718 CODE is the kind of expression to build.
7719 This function differs from `build' in several ways:
7720 the data type of the result is computed and recorded in it,
7721 warnings are generated if arg data types are invalid,
7722 special handling for addition and subtraction of pointers is known,
7723 and some optimization is done (operations on narrow ints
7724 are done in the narrower type when that gives the same result).
7725 Constant folding is also done before the result is returned.
de520661 7726
3e4093b6
RS
7727 Note that the operands will never have enumeral types, or function
7728 or array types, because either they will have the default conversions
7729 performed or they have both just been converted to some other type in which
7730 the arithmetic is to be done. */
7731
7732tree
7733build_binary_op (enum tree_code code, tree orig_op0, tree orig_op1,
7734 int convert_p)
de520661 7735{
3e4093b6
RS
7736 tree type0, type1;
7737 enum tree_code code0, code1;
7738 tree op0, op1;
4de67c26 7739 const char *invalid_op_diag;
b62acd60 7740
3e4093b6
RS
7741 /* Expression code to give to the expression when it is built.
7742 Normally this is CODE, which is what the caller asked for,
7743 but in some special cases we change it. */
7744 enum tree_code resultcode = code;
8b6a5902 7745
3e4093b6
RS
7746 /* Data type in which the computation is to be performed.
7747 In the simplest cases this is the common type of the arguments. */
7748 tree result_type = NULL;
7749
7750 /* Nonzero means operands have already been type-converted
7751 in whatever way is necessary.
7752 Zero means they need to be converted to RESULT_TYPE. */
7753 int converted = 0;
7754
7755 /* Nonzero means create the expression with this type, rather than
7756 RESULT_TYPE. */
7757 tree build_type = 0;
7758
7759 /* Nonzero means after finally constructing the expression
7760 convert it to this type. */
7761 tree final_type = 0;
7762
7763 /* Nonzero if this is an operation like MIN or MAX which can
7764 safely be computed in short if both args are promoted shorts.
7765 Also implies COMMON.
7766 -1 indicates a bitwise operation; this makes a difference
7767 in the exact conditions for when it is safe to do the operation
7768 in a narrower mode. */
7769 int shorten = 0;
7770
7771 /* Nonzero if this is a comparison operation;
7772 if both args are promoted shorts, compare the original shorts.
7773 Also implies COMMON. */
7774 int short_compare = 0;
7775
7776 /* Nonzero if this is a right-shift operation, which can be computed on the
7777 original short and then promoted if the operand is a promoted short. */
7778 int short_shift = 0;
7779
7780 /* Nonzero means set RESULT_TYPE to the common type of the args. */
7781 int common = 0;
7782
58393038
ZL
7783 /* True means types are compatible as far as ObjC is concerned. */
7784 bool objc_ok;
7785
3e4093b6 7786 if (convert_p)
790e9490 7787 {
3e4093b6
RS
7788 op0 = default_conversion (orig_op0);
7789 op1 = default_conversion (orig_op1);
790e9490 7790 }
3e4093b6 7791 else
790e9490 7792 {
3e4093b6
RS
7793 op0 = orig_op0;
7794 op1 = orig_op1;
790e9490
RS
7795 }
7796
3e4093b6
RS
7797 type0 = TREE_TYPE (op0);
7798 type1 = TREE_TYPE (op1);
91fa3c30 7799
3e4093b6
RS
7800 /* The expression codes of the data types of the arguments tell us
7801 whether the arguments are integers, floating, pointers, etc. */
7802 code0 = TREE_CODE (type0);
7803 code1 = TREE_CODE (type1);
7804
7805 /* Strip NON_LVALUE_EXPRs, etc., since we aren't using as an lvalue. */
7806 STRIP_TYPE_NOPS (op0);
7807 STRIP_TYPE_NOPS (op1);
7808
7809 /* If an error was already reported for one of the arguments,
7810 avoid reporting another error. */
7811
7812 if (code0 == ERROR_MARK || code1 == ERROR_MARK)
7813 return error_mark_node;
7814
4de67c26
JM
7815 if ((invalid_op_diag
7816 = targetm.invalid_binary_op (code, type0, type1)))
7817 {
7818 error (invalid_op_diag);
7819 return error_mark_node;
7820 }
7821
58393038
ZL
7822 objc_ok = objc_compare_types (type0, type1, -3, NULL_TREE);
7823
3e4093b6 7824 switch (code)
de520661 7825 {
3e4093b6
RS
7826 case PLUS_EXPR:
7827 /* Handle the pointer + int case. */
7828 if (code0 == POINTER_TYPE && code1 == INTEGER_TYPE)
7829 return pointer_int_sum (PLUS_EXPR, op0, op1);
7830 else if (code1 == POINTER_TYPE && code0 == INTEGER_TYPE)
7831 return pointer_int_sum (PLUS_EXPR, op1, op0);
fe67cf58 7832 else
3e4093b6
RS
7833 common = 1;
7834 break;
400fbf9f 7835
3e4093b6
RS
7836 case MINUS_EXPR:
7837 /* Subtraction of two similar pointers.
7838 We must subtract them as integers, then divide by object size. */
7839 if (code0 == POINTER_TYPE && code1 == POINTER_TYPE
58393038 7840 && comp_target_types (type0, type1))
3e4093b6
RS
7841 return pointer_diff (op0, op1);
7842 /* Handle pointer minus int. Just like pointer plus int. */
7843 else if (code0 == POINTER_TYPE && code1 == INTEGER_TYPE)
7844 return pointer_int_sum (MINUS_EXPR, op0, op1);
7845 else
7846 common = 1;
7847 break;
8b6a5902 7848
3e4093b6
RS
7849 case MULT_EXPR:
7850 common = 1;
7851 break;
7852
7853 case TRUNC_DIV_EXPR:
7854 case CEIL_DIV_EXPR:
7855 case FLOOR_DIV_EXPR:
7856 case ROUND_DIV_EXPR:
7857 case EXACT_DIV_EXPR:
2e9cb75e 7858 warn_for_div_by_zero (op1);
3e4093b6
RS
7859
7860 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE
7861 || code0 == COMPLEX_TYPE || code0 == VECTOR_TYPE)
7862 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE
7863 || code1 == COMPLEX_TYPE || code1 == VECTOR_TYPE))
400fbf9f 7864 {
5bed876a
AH
7865 enum tree_code tcode0 = code0, tcode1 = code1;
7866
3a021db2 7867 if (code0 == COMPLEX_TYPE || code0 == VECTOR_TYPE)
5bed876a 7868 tcode0 = TREE_CODE (TREE_TYPE (TREE_TYPE (op0)));
3a021db2 7869 if (code1 == COMPLEX_TYPE || code1 == VECTOR_TYPE)
5bed876a 7870 tcode1 = TREE_CODE (TREE_TYPE (TREE_TYPE (op1)));
3a021db2 7871
5bed876a 7872 if (!(tcode0 == INTEGER_TYPE && tcode1 == INTEGER_TYPE))
3e4093b6
RS
7873 resultcode = RDIV_EXPR;
7874 else
7875 /* Although it would be tempting to shorten always here, that
7876 loses on some targets, since the modulo instruction is
7877 undefined if the quotient can't be represented in the
7878 computation mode. We shorten only if unsigned or if
7879 dividing by something we know != -1. */
8df83eae 7880 shorten = (TYPE_UNSIGNED (TREE_TYPE (orig_op0))
3e4093b6 7881 || (TREE_CODE (op1) == INTEGER_CST
3f75a254 7882 && !integer_all_onesp (op1)));
3e4093b6
RS
7883 common = 1;
7884 }
7885 break;
de520661 7886
3e4093b6 7887 case BIT_AND_EXPR:
3e4093b6
RS
7888 case BIT_IOR_EXPR:
7889 case BIT_XOR_EXPR:
7890 if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
7891 shorten = -1;
7892 else if (code0 == VECTOR_TYPE && code1 == VECTOR_TYPE)
7893 common = 1;
7894 break;
7895
7896 case TRUNC_MOD_EXPR:
7897 case FLOOR_MOD_EXPR:
2e9cb75e 7898 warn_for_div_by_zero (op1);
de520661 7899
3e4093b6
RS
7900 if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
7901 {
7902 /* Although it would be tempting to shorten always here, that loses
7903 on some targets, since the modulo instruction is undefined if the
7904 quotient can't be represented in the computation mode. We shorten
7905 only if unsigned or if dividing by something we know != -1. */
8df83eae 7906 shorten = (TYPE_UNSIGNED (TREE_TYPE (orig_op0))
3e4093b6 7907 || (TREE_CODE (op1) == INTEGER_CST
3f75a254 7908 && !integer_all_onesp (op1)));
3e4093b6
RS
7909 common = 1;
7910 }
7911 break;
de520661 7912
3e4093b6
RS
7913 case TRUTH_ANDIF_EXPR:
7914 case TRUTH_ORIF_EXPR:
7915 case TRUTH_AND_EXPR:
7916 case TRUTH_OR_EXPR:
7917 case TRUTH_XOR_EXPR:
7918 if ((code0 == INTEGER_TYPE || code0 == POINTER_TYPE
7919 || code0 == REAL_TYPE || code0 == COMPLEX_TYPE)
7920 && (code1 == INTEGER_TYPE || code1 == POINTER_TYPE
7921 || code1 == REAL_TYPE || code1 == COMPLEX_TYPE))
7922 {
7923 /* Result of these operations is always an int,
7924 but that does not mean the operands should be
7925 converted to ints! */
7926 result_type = integer_type_node;
85498824
JM
7927 op0 = c_common_truthvalue_conversion (op0);
7928 op1 = c_common_truthvalue_conversion (op1);
3e4093b6
RS
7929 converted = 1;
7930 }
7931 break;
eba80994 7932
3e4093b6
RS
7933 /* Shift operations: result has same type as first operand;
7934 always convert second operand to int.
7935 Also set SHORT_SHIFT if shifting rightward. */
de520661 7936
3e4093b6
RS
7937 case RSHIFT_EXPR:
7938 if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
7939 {
7940 if (TREE_CODE (op1) == INTEGER_CST && skip_evaluation == 0)
b62acd60 7941 {
3e4093b6 7942 if (tree_int_cst_sgn (op1) < 0)
d4ee4d25 7943 warning (0, "right shift count is negative");
3e4093b6 7944 else
bbb818c6 7945 {
3f75a254 7946 if (!integer_zerop (op1))
3e4093b6
RS
7947 short_shift = 1;
7948
7949 if (compare_tree_int (op1, TYPE_PRECISION (type0)) >= 0)
d4ee4d25 7950 warning (0, "right shift count >= width of type");
bbb818c6 7951 }
b62acd60 7952 }
de520661 7953
3e4093b6
RS
7954 /* Use the type of the value to be shifted. */
7955 result_type = type0;
7956 /* Convert the shift-count to an integer, regardless of size
7957 of value being shifted. */
7958 if (TYPE_MAIN_VARIANT (TREE_TYPE (op1)) != integer_type_node)
7959 op1 = convert (integer_type_node, op1);
7960 /* Avoid converting op1 to result_type later. */
7961 converted = 1;
400fbf9f 7962 }
3e4093b6 7963 break;
253b6b82 7964
3e4093b6
RS
7965 case LSHIFT_EXPR:
7966 if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
7967 {
7968 if (TREE_CODE (op1) == INTEGER_CST && skip_evaluation == 0)
de520661 7969 {
3e4093b6 7970 if (tree_int_cst_sgn (op1) < 0)
d4ee4d25 7971 warning (0, "left shift count is negative");
de520661 7972
3e4093b6 7973 else if (compare_tree_int (op1, TYPE_PRECISION (type0)) >= 0)
d4ee4d25 7974 warning (0, "left shift count >= width of type");
94ba5069 7975 }
de520661 7976
3e4093b6
RS
7977 /* Use the type of the value to be shifted. */
7978 result_type = type0;
7979 /* Convert the shift-count to an integer, regardless of size
7980 of value being shifted. */
7981 if (TYPE_MAIN_VARIANT (TREE_TYPE (op1)) != integer_type_node)
7982 op1 = convert (integer_type_node, op1);
7983 /* Avoid converting op1 to result_type later. */
7984 converted = 1;
400fbf9f 7985 }
3e4093b6 7986 break;
de520661 7987
3e4093b6
RS
7988 case EQ_EXPR:
7989 case NE_EXPR:
44c21c7f
DD
7990 if (code0 == REAL_TYPE || code1 == REAL_TYPE)
7991 warning (OPT_Wfloat_equal,
7992 "comparing floating point with == or != is unsafe");
3e4093b6
RS
7993 /* Result of comparison is always int,
7994 but don't convert the args to int! */
7995 build_type = integer_type_node;
7996 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE
eabe2b29 7997 || code0 == COMPLEX_TYPE)
3e4093b6 7998 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE
eabe2b29 7999 || code1 == COMPLEX_TYPE))
3e4093b6
RS
8000 short_compare = 1;
8001 else if (code0 == POINTER_TYPE && code1 == POINTER_TYPE)
8002 {
8003 tree tt0 = TREE_TYPE (type0);
8004 tree tt1 = TREE_TYPE (type1);
8005 /* Anything compares with void *. void * compares with anything.
8006 Otherwise, the targets must be compatible
8007 and both must be object or both incomplete. */
58393038 8008 if (comp_target_types (type0, type1))
10bc1b1b 8009 result_type = common_pointer_type (type0, type1);
3e4093b6 8010 else if (VOID_TYPE_P (tt0))
ee2990e7 8011 {
3e4093b6
RS
8012 /* op0 != orig_op0 detects the case of something
8013 whose value is 0 but which isn't a valid null ptr const. */
6aa3c60d 8014 if (pedantic && !null_pointer_constant_p (orig_op0)
3e4093b6 8015 && TREE_CODE (tt1) == FUNCTION_TYPE)
bda67431
JM
8016 pedwarn ("ISO C forbids comparison of %<void *%>"
8017 " with function pointer");
ee2990e7 8018 }
3e4093b6 8019 else if (VOID_TYPE_P (tt1))
e6834654 8020 {
6aa3c60d 8021 if (pedantic && !null_pointer_constant_p (orig_op1)
3e4093b6 8022 && TREE_CODE (tt0) == FUNCTION_TYPE)
bda67431
JM
8023 pedwarn ("ISO C forbids comparison of %<void *%>"
8024 " with function pointer");
e6834654 8025 }
3e4093b6 8026 else
58393038
ZL
8027 /* Avoid warning about the volatile ObjC EH puts on decls. */
8028 if (!objc_ok)
8029 pedwarn ("comparison of distinct pointer types lacks a cast");
e6834654 8030
3e4093b6
RS
8031 if (result_type == NULL_TREE)
8032 result_type = ptr_type_node;
e6834654 8033 }
6aa3c60d 8034 else if (code0 == POINTER_TYPE && null_pointer_constant_p (orig_op1))
690a704a
BE
8035 {
8036 if (TREE_CODE (op0) == ADDR_EXPR
b3c6d2ea 8037 && decl_with_nonnull_addr_p (TREE_OPERAND (op0, 0)))
c116cd05 8038 warning (OPT_Waddress, "the address of %qD will never be NULL",
690a704a
BE
8039 TREE_OPERAND (op0, 0));
8040 result_type = type0;
8041 }
6aa3c60d 8042 else if (code1 == POINTER_TYPE && null_pointer_constant_p (orig_op0))
690a704a 8043 {
c22cacf3 8044 if (TREE_CODE (op1) == ADDR_EXPR
b3c6d2ea 8045 && decl_with_nonnull_addr_p (TREE_OPERAND (op1, 0)))
c116cd05 8046 warning (OPT_Waddress, "the address of %qD will never be NULL",
690a704a
BE
8047 TREE_OPERAND (op1, 0));
8048 result_type = type1;
8049 }
3e4093b6 8050 else if (code0 == POINTER_TYPE && code1 == INTEGER_TYPE)
de520661 8051 {
3e4093b6
RS
8052 result_type = type0;
8053 pedwarn ("comparison between pointer and integer");
de520661 8054 }
3e4093b6 8055 else if (code0 == INTEGER_TYPE && code1 == POINTER_TYPE)
8b6a5902 8056 {
3e4093b6
RS
8057 result_type = type1;
8058 pedwarn ("comparison between pointer and integer");
8b6a5902 8059 }
3e4093b6 8060 break;
8b6a5902 8061
3e4093b6
RS
8062 case LE_EXPR:
8063 case GE_EXPR:
8064 case LT_EXPR:
8065 case GT_EXPR:
8066 build_type = integer_type_node;
8067 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE)
8068 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE))
8069 short_compare = 1;
8070 else if (code0 == POINTER_TYPE && code1 == POINTER_TYPE)
8071 {
58393038 8072 if (comp_target_types (type0, type1))
3e4093b6 8073 {
10bc1b1b 8074 result_type = common_pointer_type (type0, type1);
3e4093b6
RS
8075 if (!COMPLETE_TYPE_P (TREE_TYPE (type0))
8076 != !COMPLETE_TYPE_P (TREE_TYPE (type1)))
8077 pedwarn ("comparison of complete and incomplete pointers");
8078 else if (pedantic
8079 && TREE_CODE (TREE_TYPE (type0)) == FUNCTION_TYPE)
8080 pedwarn ("ISO C forbids ordered comparisons of pointers to functions");
8081 }
8082 else
8083 {
8084 result_type = ptr_type_node;
8085 pedwarn ("comparison of distinct pointer types lacks a cast");
8086 }
8087 }
6aa3c60d 8088 else if (code0 == POINTER_TYPE && null_pointer_constant_p (orig_op1))
3e4093b6
RS
8089 {
8090 result_type = type0;
8091 if (pedantic || extra_warnings)
8092 pedwarn ("ordered comparison of pointer with integer zero");
8093 }
6aa3c60d 8094 else if (code1 == POINTER_TYPE && null_pointer_constant_p (orig_op0))
3e4093b6
RS
8095 {
8096 result_type = type1;
8097 if (pedantic)
8098 pedwarn ("ordered comparison of pointer with integer zero");
8099 }
8100 else if (code0 == POINTER_TYPE && code1 == INTEGER_TYPE)
8101 {
8102 result_type = type0;
8103 pedwarn ("comparison between pointer and integer");
8104 }
8105 else if (code0 == INTEGER_TYPE && code1 == POINTER_TYPE)
8106 {
8107 result_type = type1;
8108 pedwarn ("comparison between pointer and integer");
8109 }
8110 break;
64094f6a 8111
3e4093b6 8112 default:
37b2f290 8113 gcc_unreachable ();
c9fe6f9f 8114 }
8f17b5c5 8115
e57e265b
PB
8116 if (code0 == ERROR_MARK || code1 == ERROR_MARK)
8117 return error_mark_node;
8118
5bed876a
AH
8119 if (code0 == VECTOR_TYPE && code1 == VECTOR_TYPE
8120 && (!tree_int_cst_equal (TYPE_SIZE (type0), TYPE_SIZE (type1))
8121 || !same_scalar_type_ignoring_signedness (TREE_TYPE (type0),
8122 TREE_TYPE (type1))))
8123 {
2c751309 8124 binary_op_error (code, type0, type1);
5bed876a
AH
8125 return error_mark_node;
8126 }
8127
3e4093b6
RS
8128 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE || code0 == COMPLEX_TYPE
8129 || code0 == VECTOR_TYPE)
8130 &&
8131 (code1 == INTEGER_TYPE || code1 == REAL_TYPE || code1 == COMPLEX_TYPE
8132 || code1 == VECTOR_TYPE))
400fbf9f 8133 {
3e4093b6 8134 int none_complex = (code0 != COMPLEX_TYPE && code1 != COMPLEX_TYPE);
39b726dd 8135
3e4093b6 8136 if (shorten || common || short_compare)
3bf6bfcc
JJ
8137 {
8138 result_type = c_common_type (type0, type1);
8139 if (result_type == error_mark_node)
8140 return error_mark_node;
8141 }
400fbf9f 8142
3e4093b6
RS
8143 /* For certain operations (which identify themselves by shorten != 0)
8144 if both args were extended from the same smaller type,
8145 do the arithmetic in that type and then extend.
400fbf9f 8146
3e4093b6
RS
8147 shorten !=0 and !=1 indicates a bitwise operation.
8148 For them, this optimization is safe only if
8149 both args are zero-extended or both are sign-extended.
8150 Otherwise, we might change the result.
8151 Eg, (short)-1 | (unsigned short)-1 is (int)-1
8152 but calculated in (unsigned short) it would be (unsigned short)-1. */
400fbf9f 8153
3e4093b6
RS
8154 if (shorten && none_complex)
8155 {
8156 int unsigned0, unsigned1;
e6620e86
KH
8157 tree arg0, arg1;
8158 int uns;
3e4093b6 8159 tree type;
400fbf9f 8160
e6620e86
KH
8161 /* Cast OP0 and OP1 to RESULT_TYPE. Doing so prevents
8162 excessive narrowing when we call get_narrower below. For
8163 example, suppose that OP0 is of unsigned int extended
8164 from signed char and that RESULT_TYPE is long long int.
8165 If we explicitly cast OP0 to RESULT_TYPE, OP0 would look
8166 like
8167
8168 (long long int) (unsigned int) signed_char
8169
8170 which get_narrower would narrow down to
8171
8172 (unsigned int) signed char
8173
8174 If we do not cast OP0 first, get_narrower would return
8175 signed_char, which is inconsistent with the case of the
8176 explicit cast. */
8177 op0 = convert (result_type, op0);
8178 op1 = convert (result_type, op1);
8179
8180 arg0 = get_narrower (op0, &unsigned0);
8181 arg1 = get_narrower (op1, &unsigned1);
8182
8183 /* UNS is 1 if the operation to be done is an unsigned one. */
8184 uns = TYPE_UNSIGNED (result_type);
8185
3e4093b6 8186 final_type = result_type;
70768eda 8187
3e4093b6
RS
8188 /* Handle the case that OP0 (or OP1) does not *contain* a conversion
8189 but it *requires* conversion to FINAL_TYPE. */
70768eda 8190
3e4093b6
RS
8191 if ((TYPE_PRECISION (TREE_TYPE (op0))
8192 == TYPE_PRECISION (TREE_TYPE (arg0)))
8193 && TREE_TYPE (op0) != final_type)
8df83eae 8194 unsigned0 = TYPE_UNSIGNED (TREE_TYPE (op0));
3e4093b6
RS
8195 if ((TYPE_PRECISION (TREE_TYPE (op1))
8196 == TYPE_PRECISION (TREE_TYPE (arg1)))
8197 && TREE_TYPE (op1) != final_type)
8df83eae 8198 unsigned1 = TYPE_UNSIGNED (TREE_TYPE (op1));
88a3dbc1 8199
3e4093b6 8200 /* Now UNSIGNED0 is 1 if ARG0 zero-extends to FINAL_TYPE. */
abe80e6d 8201
3e4093b6
RS
8202 /* For bitwise operations, signedness of nominal type
8203 does not matter. Consider only how operands were extended. */
8204 if (shorten == -1)
8205 uns = unsigned0;
abe80e6d 8206
3e4093b6
RS
8207 /* Note that in all three cases below we refrain from optimizing
8208 an unsigned operation on sign-extended args.
8209 That would not be valid. */
abe80e6d 8210
3e4093b6
RS
8211 /* Both args variable: if both extended in same way
8212 from same width, do it in that width.
8213 Do it unsigned if args were zero-extended. */
8214 if ((TYPE_PRECISION (TREE_TYPE (arg0))
8215 < TYPE_PRECISION (result_type))
8216 && (TYPE_PRECISION (TREE_TYPE (arg1))
8217 == TYPE_PRECISION (TREE_TYPE (arg0)))
8218 && unsigned0 == unsigned1
8219 && (unsigned0 || !uns))
8220 result_type
8221 = c_common_signed_or_unsigned_type
5922c215 8222 (unsigned0, common_type (TREE_TYPE (arg0), TREE_TYPE (arg1)));
3e4093b6
RS
8223 else if (TREE_CODE (arg0) == INTEGER_CST
8224 && (unsigned1 || !uns)
8225 && (TYPE_PRECISION (TREE_TYPE (arg1))
8226 < TYPE_PRECISION (result_type))
8227 && (type
8228 = c_common_signed_or_unsigned_type (unsigned1,
8229 TREE_TYPE (arg1)),
8230 int_fits_type_p (arg0, type)))
8231 result_type = type;
8232 else if (TREE_CODE (arg1) == INTEGER_CST
8233 && (unsigned0 || !uns)
8234 && (TYPE_PRECISION (TREE_TYPE (arg0))
8235 < TYPE_PRECISION (result_type))
8236 && (type
8237 = c_common_signed_or_unsigned_type (unsigned0,
8238 TREE_TYPE (arg0)),
8239 int_fits_type_p (arg1, type)))
8240 result_type = type;
8241 }
88a3dbc1 8242
3e4093b6 8243 /* Shifts can be shortened if shifting right. */
2f6e4e97 8244
3e4093b6
RS
8245 if (short_shift)
8246 {
8247 int unsigned_arg;
8248 tree arg0 = get_narrower (op0, &unsigned_arg);
88a3dbc1 8249
3e4093b6 8250 final_type = result_type;
abe80e6d 8251
3e4093b6 8252 if (arg0 == op0 && final_type == TREE_TYPE (op0))
8df83eae 8253 unsigned_arg = TYPE_UNSIGNED (TREE_TYPE (op0));
e9a25f70 8254
3e4093b6
RS
8255 if (TYPE_PRECISION (TREE_TYPE (arg0)) < TYPE_PRECISION (result_type)
8256 /* We can shorten only if the shift count is less than the
8257 number of bits in the smaller type size. */
8258 && compare_tree_int (op1, TYPE_PRECISION (TREE_TYPE (arg0))) < 0
8259 /* We cannot drop an unsigned shift after sign-extension. */
8df83eae 8260 && (!TYPE_UNSIGNED (final_type) || unsigned_arg))
3e4093b6
RS
8261 {
8262 /* Do an unsigned shift if the operand was zero-extended. */
8263 result_type
8264 = c_common_signed_or_unsigned_type (unsigned_arg,
8265 TREE_TYPE (arg0));
8266 /* Convert value-to-be-shifted to that type. */
8267 if (TREE_TYPE (op0) != result_type)
8268 op0 = convert (result_type, op0);
8269 converted = 1;
abe80e6d 8270 }
88a3dbc1
RK
8271 }
8272
3e4093b6
RS
8273 /* Comparison operations are shortened too but differently.
8274 They identify themselves by setting short_compare = 1. */
56cb9733 8275
3e4093b6
RS
8276 if (short_compare)
8277 {
8278 /* Don't write &op0, etc., because that would prevent op0
8279 from being kept in a register.
8280 Instead, make copies of the our local variables and
8281 pass the copies by reference, then copy them back afterward. */
8282 tree xop0 = op0, xop1 = op1, xresult_type = result_type;
8283 enum tree_code xresultcode = resultcode;
8284 tree val
8285 = shorten_compare (&xop0, &xop1, &xresult_type, &xresultcode);
8f17b5c5 8286
3e4093b6
RS
8287 if (val != 0)
8288 return val;
8f17b5c5 8289
3e4093b6
RS
8290 op0 = xop0, op1 = xop1;
8291 converted = 1;
8292 resultcode = xresultcode;
8f17b5c5 8293
3e4093b6
RS
8294 if (warn_sign_compare && skip_evaluation == 0)
8295 {
3f75a254
JM
8296 int op0_signed = !TYPE_UNSIGNED (TREE_TYPE (orig_op0));
8297 int op1_signed = !TYPE_UNSIGNED (TREE_TYPE (orig_op1));
3e4093b6
RS
8298 int unsignedp0, unsignedp1;
8299 tree primop0 = get_narrower (op0, &unsignedp0);
8300 tree primop1 = get_narrower (op1, &unsignedp1);
400fbf9f 8301
3e4093b6
RS
8302 xop0 = orig_op0;
8303 xop1 = orig_op1;
8304 STRIP_TYPE_NOPS (xop0);
8305 STRIP_TYPE_NOPS (xop1);
e89a9554 8306
3e4093b6
RS
8307 /* Give warnings for comparisons between signed and unsigned
8308 quantities that may fail.
e89a9554 8309
3e4093b6
RS
8310 Do the checking based on the original operand trees, so that
8311 casts will be considered, but default promotions won't be.
400fbf9f 8312
3e4093b6
RS
8313 Do not warn if the comparison is being done in a signed type,
8314 since the signed type will only be chosen if it can represent
8315 all the values of the unsigned type. */
3f75a254 8316 if (!TYPE_UNSIGNED (result_type))
3e4093b6 8317 /* OK */;
c22cacf3
MS
8318 /* Do not warn if both operands are the same signedness. */
8319 else if (op0_signed == op1_signed)
8320 /* OK */;
3e4093b6
RS
8321 else
8322 {
8323 tree sop, uop;
6ac01510 8324 bool ovf;
8f17b5c5 8325
3e4093b6
RS
8326 if (op0_signed)
8327 sop = xop0, uop = xop1;
8328 else
8329 sop = xop1, uop = xop0;
8f17b5c5 8330
3e4093b6
RS
8331 /* Do not warn if the signed quantity is an
8332 unsuffixed integer literal (or some static
8333 constant expression involving such literals or a
8334 conditional expression involving such literals)
8335 and it is non-negative. */
6ac01510 8336 if (tree_expr_nonnegative_warnv_p (sop, &ovf))
3e4093b6
RS
8337 /* OK */;
8338 /* Do not warn if the comparison is an equality operation,
8339 the unsigned quantity is an integral constant, and it
8340 would fit in the result if the result were signed. */
8341 else if (TREE_CODE (uop) == INTEGER_CST
8342 && (resultcode == EQ_EXPR || resultcode == NE_EXPR)
8343 && int_fits_type_p
8344 (uop, c_common_signed_type (result_type)))
8345 /* OK */;
8346 /* Do not warn if the unsigned quantity is an enumeration
8347 constant and its maximum value would fit in the result
8348 if the result were signed. */
8349 else if (TREE_CODE (uop) == INTEGER_CST
8350 && TREE_CODE (TREE_TYPE (uop)) == ENUMERAL_TYPE
8351 && int_fits_type_p
3f75a254 8352 (TYPE_MAX_VALUE (TREE_TYPE (uop)),
3e4093b6
RS
8353 c_common_signed_type (result_type)))
8354 /* OK */;
8355 else
d4ee4d25 8356 warning (0, "comparison between signed and unsigned");
3e4093b6 8357 }
8f17b5c5 8358
3e4093b6
RS
8359 /* Warn if two unsigned values are being compared in a size
8360 larger than their original size, and one (and only one) is the
8361 result of a `~' operator. This comparison will always fail.
8f17b5c5 8362
3e4093b6
RS
8363 Also warn if one operand is a constant, and the constant
8364 does not have all bits set that are set in the ~ operand
8365 when it is extended. */
8f17b5c5 8366
3e4093b6
RS
8367 if ((TREE_CODE (primop0) == BIT_NOT_EXPR)
8368 != (TREE_CODE (primop1) == BIT_NOT_EXPR))
8369 {
8370 if (TREE_CODE (primop0) == BIT_NOT_EXPR)
8371 primop0 = get_narrower (TREE_OPERAND (primop0, 0),
8372 &unsignedp0);
8373 else
8374 primop1 = get_narrower (TREE_OPERAND (primop1, 0),
8375 &unsignedp1);
64094f6a 8376
3e4093b6
RS
8377 if (host_integerp (primop0, 0) || host_integerp (primop1, 0))
8378 {
8379 tree primop;
8380 HOST_WIDE_INT constant, mask;
8381 int unsignedp, bits;
2ad1815d 8382
3e4093b6
RS
8383 if (host_integerp (primop0, 0))
8384 {
8385 primop = primop1;
8386 unsignedp = unsignedp1;
8387 constant = tree_low_cst (primop0, 0);
8388 }
8389 else
8390 {
8391 primop = primop0;
8392 unsignedp = unsignedp0;
8393 constant = tree_low_cst (primop1, 0);
8394 }
8395
8396 bits = TYPE_PRECISION (TREE_TYPE (primop));
8397 if (bits < TYPE_PRECISION (result_type)
8398 && bits < HOST_BITS_PER_WIDE_INT && unsignedp)
8399 {
3f75a254 8400 mask = (~(HOST_WIDE_INT) 0) << bits;
3e4093b6 8401 if ((mask & constant) != mask)
d4ee4d25 8402 warning (0, "comparison of promoted ~unsigned with constant");
3e4093b6
RS
8403 }
8404 }
8405 else if (unsignedp0 && unsignedp1
8406 && (TYPE_PRECISION (TREE_TYPE (primop0))
8407 < TYPE_PRECISION (result_type))
8408 && (TYPE_PRECISION (TREE_TYPE (primop1))
8409 < TYPE_PRECISION (result_type)))
d4ee4d25 8410 warning (0, "comparison of promoted ~unsigned with unsigned");
3e4093b6
RS
8411 }
8412 }
2ad1815d 8413 }
64094f6a 8414 }
64094f6a 8415
3e4093b6
RS
8416 /* At this point, RESULT_TYPE must be nonzero to avoid an error message.
8417 If CONVERTED is zero, both args will be converted to type RESULT_TYPE.
8418 Then the expression will be built.
8419 It will be given type FINAL_TYPE if that is nonzero;
8420 otherwise, it will be given type RESULT_TYPE. */
400fbf9f 8421
3e4093b6
RS
8422 if (!result_type)
8423 {
2c751309 8424 binary_op_error (code, TREE_TYPE (op0), TREE_TYPE (op1));
3e4093b6
RS
8425 return error_mark_node;
8426 }
400fbf9f 8427
3f75a254 8428 if (!converted)
3e4093b6
RS
8429 {
8430 if (TREE_TYPE (op0) != result_type)
0f57299d 8431 op0 = convert_and_check (result_type, op0);
3e4093b6 8432 if (TREE_TYPE (op1) != result_type)
0f57299d 8433 op1 = convert_and_check (result_type, op1);
d97c6333
JW
8434
8435 /* This can happen if one operand has a vector type, and the other
8436 has a different type. */
8437 if (TREE_CODE (op0) == ERROR_MARK || TREE_CODE (op1) == ERROR_MARK)
8438 return error_mark_node;
3e4093b6 8439 }
400fbf9f 8440
3e4093b6
RS
8441 if (build_type == NULL_TREE)
8442 build_type = result_type;
400fbf9f 8443
3e4093b6 8444 {
3e4093b6 8445 /* Treat expressions in initializers specially as they can't trap. */
00d1b1d6
JM
8446 tree result = require_constant_value ? fold_build2_initializer (resultcode,
8447 build_type,
8448 op0, op1)
8449 : fold_build2 (resultcode, build_type,
8450 op0, op1);
6de9cd9a 8451
3e4093b6 8452 if (final_type != 0)
6de9cd9a
DN
8453 result = convert (final_type, result);
8454 return result;
3e4093b6 8455 }
400fbf9f 8456}
85498824
JM
8457
8458
8459/* Convert EXPR to be a truth-value, validating its type for this
46bdb9cf 8460 purpose. */
85498824
JM
8461
8462tree
8463c_objc_common_truthvalue_conversion (tree expr)
8464{
85498824
JM
8465 switch (TREE_CODE (TREE_TYPE (expr)))
8466 {
8467 case ARRAY_TYPE:
8468 error ("used array that cannot be converted to pointer where scalar is required");
8469 return error_mark_node;
8470
8471 case RECORD_TYPE:
8472 error ("used struct type value where scalar is required");
8473 return error_mark_node;
8474
8475 case UNION_TYPE:
8476 error ("used union type value where scalar is required");
8477 return error_mark_node;
8478
46bdb9cf
JM
8479 case FUNCTION_TYPE:
8480 gcc_unreachable ();
8481
85498824
JM
8482 default:
8483 break;
8484 }
8485
8486 /* ??? Should we also give an error for void and vectors rather than
8487 leaving those to give errors later? */
8488 return c_common_truthvalue_conversion (expr);
8489}
73f397d4
JM
8490\f
8491
8492/* Convert EXPR to a contained DECL, updating *TC, *TI and *SE as
8493 required. */
8494
8495tree
8496c_expr_to_decl (tree expr, bool *tc ATTRIBUTE_UNUSED,
8497 bool *ti ATTRIBUTE_UNUSED, bool *se)
8498{
8499 if (TREE_CODE (expr) == COMPOUND_LITERAL_EXPR)
8500 {
8501 tree decl = COMPOUND_LITERAL_EXPR_DECL (expr);
8502 /* Executing a compound literal inside a function reinitializes
8503 it. */
8504 if (!TREE_STATIC (decl))
8505 *se = true;
8506 return decl;
8507 }
8508 else
8509 return expr;
8510}
953ff289 8511\f
c0220ea4 8512/* Like c_begin_compound_stmt, except force the retention of the BLOCK. */
953ff289
DN
8513
8514tree
8515c_begin_omp_parallel (void)
8516{
8517 tree block;
8518
8519 keep_next_level ();
8520 block = c_begin_compound_stmt (true);
8521
8522 return block;
8523}
8524
8525tree
8526c_finish_omp_parallel (tree clauses, tree block)
8527{
8528 tree stmt;
8529
8530 block = c_end_compound_stmt (block, true);
8531
8532 stmt = make_node (OMP_PARALLEL);
8533 TREE_TYPE (stmt) = void_type_node;
8534 OMP_PARALLEL_CLAUSES (stmt) = clauses;
8535 OMP_PARALLEL_BODY (stmt) = block;
8536
8537 return add_stmt (stmt);
8538}
8539
8540/* For all elements of CLAUSES, validate them vs OpenMP constraints.
8541 Remove any elements from the list that are invalid. */
8542
8543tree
8544c_finish_omp_clauses (tree clauses)
8545{
8546 bitmap_head generic_head, firstprivate_head, lastprivate_head;
8547 tree c, t, *pc = &clauses;
8548 const char *name;
8549
8550 bitmap_obstack_initialize (NULL);
8551 bitmap_initialize (&generic_head, &bitmap_default_obstack);
8552 bitmap_initialize (&firstprivate_head, &bitmap_default_obstack);
8553 bitmap_initialize (&lastprivate_head, &bitmap_default_obstack);
8554
8555 for (pc = &clauses, c = clauses; c ; c = *pc)
8556 {
8557 bool remove = false;
8558 bool need_complete = false;
8559 bool need_implicitly_determined = false;
8560
aaf46ef9 8561 switch (OMP_CLAUSE_CODE (c))
953ff289
DN
8562 {
8563 case OMP_CLAUSE_SHARED:
8564 name = "shared";
8565 need_implicitly_determined = true;
8566 goto check_dup_generic;
8567
8568 case OMP_CLAUSE_PRIVATE:
8569 name = "private";
8570 need_complete = true;
8571 need_implicitly_determined = true;
8572 goto check_dup_generic;
8573
8574 case OMP_CLAUSE_REDUCTION:
8575 name = "reduction";
8576 need_implicitly_determined = true;
8577 t = OMP_CLAUSE_DECL (c);
8578 if (AGGREGATE_TYPE_P (TREE_TYPE (t))
8579 || POINTER_TYPE_P (TREE_TYPE (t)))
8580 {
8581 error ("%qE has invalid type for %<reduction%>", t);
8582 remove = true;
8583 }
8584 else if (FLOAT_TYPE_P (TREE_TYPE (t)))
8585 {
8586 enum tree_code r_code = OMP_CLAUSE_REDUCTION_CODE (c);
8587 const char *r_name = NULL;
8588
8589 switch (r_code)
8590 {
8591 case PLUS_EXPR:
8592 case MULT_EXPR:
8593 case MINUS_EXPR:
8594 break;
8595 case BIT_AND_EXPR:
8596 r_name = "&";
8597 break;
8598 case BIT_XOR_EXPR:
8599 r_name = "^";
8600 break;
8601 case BIT_IOR_EXPR:
8602 r_name = "|";
8603 break;
8604 case TRUTH_ANDIF_EXPR:
8605 r_name = "&&";
8606 break;
8607 case TRUTH_ORIF_EXPR:
8608 r_name = "||";
8609 break;
8610 default:
8611 gcc_unreachable ();
8612 }
8613 if (r_name)
8614 {
8615 error ("%qE has invalid type for %<reduction(%s)%>",
8616 t, r_name);
8617 remove = true;
8618 }
8619 }
8620 goto check_dup_generic;
8621
8622 case OMP_CLAUSE_COPYPRIVATE:
8623 name = "copyprivate";
8624 goto check_dup_generic;
8625
8626 case OMP_CLAUSE_COPYIN:
8627 name = "copyin";
8628 t = OMP_CLAUSE_DECL (c);
8629 if (TREE_CODE (t) != VAR_DECL || !DECL_THREAD_LOCAL_P (t))
8630 {
8631 error ("%qE must be %<threadprivate%> for %<copyin%>", t);
8632 remove = true;
8633 }
8634 goto check_dup_generic;
8635
8636 check_dup_generic:
8637 t = OMP_CLAUSE_DECL (c);
8638 if (TREE_CODE (t) != VAR_DECL && TREE_CODE (t) != PARM_DECL)
8639 {
8640 error ("%qE is not a variable in clause %qs", t, name);
8641 remove = true;
8642 }
8643 else if (bitmap_bit_p (&generic_head, DECL_UID (t))
8644 || bitmap_bit_p (&firstprivate_head, DECL_UID (t))
8645 || bitmap_bit_p (&lastprivate_head, DECL_UID (t)))
8646 {
8647 error ("%qE appears more than once in data clauses", t);
8648 remove = true;
8649 }
8650 else
8651 bitmap_set_bit (&generic_head, DECL_UID (t));
8652 break;
8653
8654 case OMP_CLAUSE_FIRSTPRIVATE:
8655 name = "firstprivate";
8656 t = OMP_CLAUSE_DECL (c);
8657 need_complete = true;
8658 need_implicitly_determined = true;
8659 if (TREE_CODE (t) != VAR_DECL && TREE_CODE (t) != PARM_DECL)
8660 {
8661 error ("%qE is not a variable in clause %<firstprivate%>", t);
8662 remove = true;
8663 }
8664 else if (bitmap_bit_p (&generic_head, DECL_UID (t))
8665 || bitmap_bit_p (&firstprivate_head, DECL_UID (t)))
8666 {
8667 error ("%qE appears more than once in data clauses", t);
8668 remove = true;
8669 }
8670 else
8671 bitmap_set_bit (&firstprivate_head, DECL_UID (t));
8672 break;
8673
8674 case OMP_CLAUSE_LASTPRIVATE:
8675 name = "lastprivate";
8676 t = OMP_CLAUSE_DECL (c);
8677 need_complete = true;
8678 need_implicitly_determined = true;
8679 if (TREE_CODE (t) != VAR_DECL && TREE_CODE (t) != PARM_DECL)
8680 {
8681 error ("%qE is not a variable in clause %<lastprivate%>", t);
8682 remove = true;
8683 }
8684 else if (bitmap_bit_p (&generic_head, DECL_UID (t))
8685 || bitmap_bit_p (&lastprivate_head, DECL_UID (t)))
8686 {
8687 error ("%qE appears more than once in data clauses", t);
8688 remove = true;
8689 }
8690 else
8691 bitmap_set_bit (&lastprivate_head, DECL_UID (t));
8692 break;
8693
8694 case OMP_CLAUSE_IF:
8695 case OMP_CLAUSE_NUM_THREADS:
8696 case OMP_CLAUSE_SCHEDULE:
8697 case OMP_CLAUSE_NOWAIT:
8698 case OMP_CLAUSE_ORDERED:
8699 case OMP_CLAUSE_DEFAULT:
8700 pc = &OMP_CLAUSE_CHAIN (c);
8701 continue;
8702
8703 default:
8704 gcc_unreachable ();
8705 }
8706
8707 if (!remove)
8708 {
8709 t = OMP_CLAUSE_DECL (c);
8710
8711 if (need_complete)
8712 {
8713 t = require_complete_type (t);
8714 if (t == error_mark_node)
8715 remove = true;
8716 }
8717
8718 if (need_implicitly_determined)
8719 {
8720 const char *share_name = NULL;
8721
8722 if (TREE_CODE (t) == VAR_DECL && DECL_THREAD_LOCAL_P (t))
8723 share_name = "threadprivate";
8724 else switch (c_omp_predetermined_sharing (t))
8725 {
8726 case OMP_CLAUSE_DEFAULT_UNSPECIFIED:
8727 break;
8728 case OMP_CLAUSE_DEFAULT_SHARED:
8729 share_name = "shared";
8730 break;
8731 case OMP_CLAUSE_DEFAULT_PRIVATE:
8732 share_name = "private";
8733 break;
8734 default:
8735 gcc_unreachable ();
8736 }
8737 if (share_name)
8738 {
8739 error ("%qE is predetermined %qs for %qs",
8740 t, share_name, name);
8741 remove = true;
8742 }
8743 }
8744 }
8745
8746 if (remove)
8747 *pc = OMP_CLAUSE_CHAIN (c);
8748 else
8749 pc = &OMP_CLAUSE_CHAIN (c);
8750 }
8751
8752 bitmap_obstack_release (NULL);
8753 return clauses;
8754}
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