c++: Implement -Wdangling-reference [PR106393]
[official-gcc.git] / gcc / cp / typeck.cc
blob4605f734e2d90901ed04faa54f61d150d5af5542
1 /* Build expressions with type checking for C++ compiler.
2 Copyright (C) 1987-2022 Free Software Foundation, Inc.
3 Hacked by Michael Tiemann (tiemann@cygnus.com)
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
10 any later version.
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
22 /* This file is part of the C++ front end.
23 It contains routines to build C++ expressions given their operands,
24 including computing the types of the result, C and C++ specific error
25 checks, and some optimization. */
27 #include "config.h"
28 #include "system.h"
29 #include "coretypes.h"
30 #include "target.h"
31 #include "cp-tree.h"
32 #include "stor-layout.h"
33 #include "varasm.h"
34 #include "intl.h"
35 #include "convert.h"
36 #include "c-family/c-objc.h"
37 #include "c-family/c-ubsan.h"
38 #include "gcc-rich-location.h"
39 #include "stringpool.h"
40 #include "attribs.h"
41 #include "asan.h"
42 #include "gimplify.h"
44 static tree cp_build_addr_expr_strict (tree, tsubst_flags_t);
45 static tree cp_build_function_call (tree, tree, tsubst_flags_t);
46 static tree pfn_from_ptrmemfunc (tree);
47 static tree delta_from_ptrmemfunc (tree);
48 static tree convert_for_assignment (tree, tree, impl_conv_rhs, tree, int,
49 tsubst_flags_t, int);
50 static tree cp_pointer_int_sum (location_t, enum tree_code, tree, tree,
51 tsubst_flags_t);
52 static tree rationalize_conditional_expr (enum tree_code, tree,
53 tsubst_flags_t);
54 static bool comp_ptr_ttypes_real (tree, tree, int);
55 static bool comp_except_types (tree, tree, bool);
56 static bool comp_array_types (const_tree, const_tree, compare_bounds_t, bool);
57 static tree pointer_diff (location_t, tree, tree, tree, tsubst_flags_t, tree *);
58 static tree get_delta_difference (tree, tree, bool, bool, tsubst_flags_t);
59 static void casts_away_constness_r (tree *, tree *, tsubst_flags_t);
60 static bool casts_away_constness (tree, tree, tsubst_flags_t);
61 static bool maybe_warn_about_returning_address_of_local (tree, location_t = UNKNOWN_LOCATION);
62 static void error_args_num (location_t, tree, bool);
63 static int convert_arguments (tree, vec<tree, va_gc> **, tree, int,
64 tsubst_flags_t);
65 static bool is_std_move_p (tree);
66 static bool is_std_forward_p (tree);
68 /* Do `exp = require_complete_type (exp);' to make sure exp
69 does not have an incomplete type. (That includes void types.)
70 Returns error_mark_node if the VALUE does not have
71 complete type when this function returns. */
73 tree
74 require_complete_type (tree value,
75 tsubst_flags_t complain /* = tf_warning_or_error */)
77 tree type;
79 if (processing_template_decl || value == error_mark_node)
80 return value;
82 if (TREE_CODE (value) == OVERLOAD)
83 type = unknown_type_node;
84 else
85 type = TREE_TYPE (value);
87 if (type == error_mark_node)
88 return error_mark_node;
90 /* First, detect a valid value with a complete type. */
91 if (COMPLETE_TYPE_P (type))
92 return value;
94 if (complete_type_or_maybe_complain (type, value, complain))
95 return value;
96 else
97 return error_mark_node;
100 /* Try to complete TYPE, if it is incomplete. For example, if TYPE is
101 a template instantiation, do the instantiation. Returns TYPE,
102 whether or not it could be completed, unless something goes
103 horribly wrong, in which case the error_mark_node is returned. */
105 tree
106 complete_type (tree type)
108 if (type == NULL_TREE)
109 /* Rather than crash, we return something sure to cause an error
110 at some point. */
111 return error_mark_node;
113 if (type == error_mark_node || COMPLETE_TYPE_P (type))
115 else if (TREE_CODE (type) == ARRAY_TYPE)
117 tree t = complete_type (TREE_TYPE (type));
118 unsigned int needs_constructing, has_nontrivial_dtor;
119 if (COMPLETE_TYPE_P (t) && !dependent_type_p (type))
120 layout_type (type);
121 needs_constructing
122 = TYPE_NEEDS_CONSTRUCTING (TYPE_MAIN_VARIANT (t));
123 has_nontrivial_dtor
124 = TYPE_HAS_NONTRIVIAL_DESTRUCTOR (TYPE_MAIN_VARIANT (t));
125 for (t = TYPE_MAIN_VARIANT (type); t; t = TYPE_NEXT_VARIANT (t))
127 TYPE_NEEDS_CONSTRUCTING (t) = needs_constructing;
128 TYPE_HAS_NONTRIVIAL_DESTRUCTOR (t) = has_nontrivial_dtor;
131 else if (CLASS_TYPE_P (type))
133 if (modules_p ())
134 /* TYPE could be a class member we've not loaded the definition of. */
135 lazy_load_pendings (TYPE_NAME (TYPE_MAIN_VARIANT (type)));
137 if (CLASSTYPE_TEMPLATE_INSTANTIATION (type))
138 instantiate_class_template (TYPE_MAIN_VARIANT (type));
141 return type;
144 /* Like complete_type, but issue an error if the TYPE cannot be completed.
145 VALUE is used for informative diagnostics.
146 Returns NULL_TREE if the type cannot be made complete. */
148 tree
149 complete_type_or_maybe_complain (tree type, tree value, tsubst_flags_t complain)
151 type = complete_type (type);
152 if (type == error_mark_node)
153 /* We already issued an error. */
154 return NULL_TREE;
155 else if (!COMPLETE_TYPE_P (type))
157 if (complain & tf_error)
158 cxx_incomplete_type_diagnostic (value, type, DK_ERROR);
159 note_failed_type_completion_for_satisfaction (type);
160 return NULL_TREE;
162 else
163 return type;
166 tree
167 complete_type_or_else (tree type, tree value)
169 return complete_type_or_maybe_complain (type, value, tf_warning_or_error);
173 /* Return the common type of two parameter lists.
174 We assume that comptypes has already been done and returned 1;
175 if that isn't so, this may crash.
177 As an optimization, free the space we allocate if the parameter
178 lists are already common. */
180 static tree
181 commonparms (tree p1, tree p2)
183 tree oldargs = p1, newargs, n;
184 int i, len;
185 int any_change = 0;
187 len = list_length (p1);
188 newargs = tree_last (p1);
190 if (newargs == void_list_node)
191 i = 1;
192 else
194 i = 0;
195 newargs = 0;
198 for (; i < len; i++)
199 newargs = tree_cons (NULL_TREE, NULL_TREE, newargs);
201 n = newargs;
203 for (i = 0; p1;
204 p1 = TREE_CHAIN (p1), p2 = TREE_CHAIN (p2), n = TREE_CHAIN (n), i++)
206 if (TREE_PURPOSE (p1) && !TREE_PURPOSE (p2))
208 TREE_PURPOSE (n) = TREE_PURPOSE (p1);
209 any_change = 1;
211 else if (! TREE_PURPOSE (p1))
213 if (TREE_PURPOSE (p2))
215 TREE_PURPOSE (n) = TREE_PURPOSE (p2);
216 any_change = 1;
219 else
221 if (simple_cst_equal (TREE_PURPOSE (p1), TREE_PURPOSE (p2)) != 1)
222 any_change = 1;
223 TREE_PURPOSE (n) = TREE_PURPOSE (p2);
225 if (TREE_VALUE (p1) != TREE_VALUE (p2))
227 any_change = 1;
228 TREE_VALUE (n) = merge_types (TREE_VALUE (p1), TREE_VALUE (p2));
230 else
231 TREE_VALUE (n) = TREE_VALUE (p1);
233 if (! any_change)
234 return oldargs;
236 return newargs;
239 /* Given a type, perhaps copied for a typedef,
240 find the "original" version of it. */
241 static tree
242 original_type (tree t)
244 int quals = cp_type_quals (t);
245 while (t != error_mark_node
246 && TYPE_NAME (t) != NULL_TREE)
248 tree x = TYPE_NAME (t);
249 if (TREE_CODE (x) != TYPE_DECL)
250 break;
251 x = DECL_ORIGINAL_TYPE (x);
252 if (x == NULL_TREE)
253 break;
254 t = x;
256 return cp_build_qualified_type (t, quals);
259 /* Merge the attributes of type OTHER_TYPE into the attributes of type TYPE
260 and return a variant of TYPE with the merged attributes. */
262 static tree
263 merge_type_attributes_from (tree type, tree other_type)
265 tree attrs = targetm.merge_type_attributes (type, other_type);
266 attrs = restrict_type_identity_attributes_to (attrs, TYPE_ATTRIBUTES (type));
267 return cp_build_type_attribute_variant (type, attrs);
270 /* Compare floating point conversion ranks and subranks of T1 and T2
271 types. If T1 and T2 have unordered conversion ranks, return 3.
272 If T1 has greater conversion rank than T2, return 2.
273 If T2 has greater conversion rank than T1, return -2.
274 If T1 has equal conversion rank as T2, return -1, 0 or 1 depending
275 on if T1 has smaller, equal or greater conversion subrank than
276 T2. */
279 cp_compare_floating_point_conversion_ranks (tree t1, tree t2)
281 tree mv1 = TYPE_MAIN_VARIANT (t1);
282 tree mv2 = TYPE_MAIN_VARIANT (t2);
283 int extended1 = 0;
284 int extended2 = 0;
286 if (mv1 == mv2)
287 return 0;
289 for (int i = 0; i < NUM_FLOATN_NX_TYPES; ++i)
291 if (mv1 == FLOATN_NX_TYPE_NODE (i))
292 extended1 = i + 1;
293 if (mv2 == FLOATN_NX_TYPE_NODE (i))
294 extended2 = i + 1;
296 if (mv1 == bfloat16_type_node)
297 extended1 = true;
298 if (mv2 == bfloat16_type_node)
299 extended2 = true;
300 if (extended2 && !extended1)
302 int ret = cp_compare_floating_point_conversion_ranks (t2, t1);
303 return ret == 3 ? 3 : -ret;
306 const struct real_format *fmt1 = REAL_MODE_FORMAT (TYPE_MODE (t1));
307 const struct real_format *fmt2 = REAL_MODE_FORMAT (TYPE_MODE (t2));
308 gcc_assert (fmt1->b == 2 && fmt2->b == 2);
309 /* For {ibm,mips}_extended_format formats, the type has variable
310 precision up to ~2150 bits when the first double is around maximum
311 representable double and second double is subnormal minimum.
312 So, e.g. for __ibm128 vs. std::float128_t, they have unordered
313 ranks. */
314 int p1 = (MODE_COMPOSITE_P (TYPE_MODE (t1))
315 ? fmt1->emax - fmt1->emin + fmt1->p - 1 : fmt1->p);
316 int p2 = (MODE_COMPOSITE_P (TYPE_MODE (t2))
317 ? fmt2->emax - fmt2->emin + fmt2->p - 1 : fmt2->p);
318 /* The rank of a floating point type T is greater than the rank of
319 any floating-point type whose set of values is a proper subset
320 of the set of values of T. */
321 if ((p1 > p2 && fmt1->emax >= fmt2->emax)
322 || (p1 == p2 && fmt1->emax > fmt2->emax))
323 return 2;
324 if ((p1 < p2 && fmt1->emax <= fmt2->emax)
325 || (p1 == p2 && fmt1->emax < fmt2->emax))
326 return -2;
327 if ((p1 > p2 && fmt1->emax < fmt2->emax)
328 || (p1 < p2 && fmt1->emax > fmt2->emax))
329 return 3;
330 if (!extended1 && !extended2)
332 /* The rank of long double is greater than the rank of double, which
333 is greater than the rank of float. */
334 if (t1 == long_double_type_node)
335 return 2;
336 else if (t2 == long_double_type_node)
337 return -2;
338 if (t1 == double_type_node)
339 return 2;
340 else if (t2 == double_type_node)
341 return -2;
342 if (t1 == float_type_node)
343 return 2;
344 else if (t2 == float_type_node)
345 return -2;
346 return 0;
348 /* Two extended floating-point types with the same set of values have equal
349 ranks. */
350 if (extended1 && extended2)
352 if ((extended1 <= NUM_FLOATN_TYPES) == (extended2 <= NUM_FLOATN_TYPES))
354 /* Prefer higher extendedN value. */
355 if (extended1 > extended2)
356 return 1;
357 else if (extended1 < extended2)
358 return -1;
359 else
360 return 0;
362 else if (extended1 <= NUM_FLOATN_TYPES)
363 /* Prefer _FloatN type over _FloatMx type. */
364 return 1;
365 else if (extended2 <= NUM_FLOATN_TYPES)
366 return -1;
367 else
368 return 0;
371 /* gcc_assert (extended1 && !extended2); */
372 tree *p;
373 int cnt = 0;
374 for (p = &float_type_node; p <= &long_double_type_node; ++p)
376 const struct real_format *fmt3 = REAL_MODE_FORMAT (TYPE_MODE (*p));
377 gcc_assert (fmt3->b == 2);
378 int p3 = (MODE_COMPOSITE_P (TYPE_MODE (*p))
379 ? fmt3->emax - fmt3->emin + fmt3->p - 1 : fmt3->p);
380 if (p1 == p3 && fmt1->emax == fmt3->emax)
381 ++cnt;
383 /* An extended floating-point type with the same set of values
384 as exactly one cv-unqualified standard floating-point type
385 has a rank equal to the rank of that standard floating-point
386 type.
388 An extended floating-point type with the same set of values
389 as more than one cv-unqualified standard floating-point type
390 has a rank equal to the rank of double.
392 Thus, if the latter is true and t2 is long double, t2
393 has higher rank. */
394 if (cnt > 1 && mv2 == long_double_type_node)
395 return -2;
396 /* Otherwise, they have equal rank, but extended types
397 (other than std::bfloat16_t) have higher subrank.
398 std::bfloat16_t shouldn't have equal rank to any standard
399 floating point type. */
400 return 1;
403 /* Return the common type for two arithmetic types T1 and T2 under the
404 usual arithmetic conversions. The default conversions have already
405 been applied, and enumerated types converted to their compatible
406 integer types. */
408 static tree
409 cp_common_type (tree t1, tree t2)
411 enum tree_code code1 = TREE_CODE (t1);
412 enum tree_code code2 = TREE_CODE (t2);
413 tree attributes;
414 int i;
417 /* In what follows, we slightly generalize the rules given in [expr] so
418 as to deal with `long long' and `complex'. First, merge the
419 attributes. */
420 attributes = (*targetm.merge_type_attributes) (t1, t2);
422 if (SCOPED_ENUM_P (t1) || SCOPED_ENUM_P (t2))
424 if (TYPE_MAIN_VARIANT (t1) == TYPE_MAIN_VARIANT (t2))
425 return build_type_attribute_variant (t1, attributes);
426 else
427 return NULL_TREE;
430 /* FIXME: Attributes. */
431 gcc_assert (ARITHMETIC_TYPE_P (t1)
432 || VECTOR_TYPE_P (t1)
433 || UNSCOPED_ENUM_P (t1));
434 gcc_assert (ARITHMETIC_TYPE_P (t2)
435 || VECTOR_TYPE_P (t2)
436 || UNSCOPED_ENUM_P (t2));
438 /* If one type is complex, form the common type of the non-complex
439 components, then make that complex. Use T1 or T2 if it is the
440 required type. */
441 if (code1 == COMPLEX_TYPE || code2 == COMPLEX_TYPE)
443 tree subtype1 = code1 == COMPLEX_TYPE ? TREE_TYPE (t1) : t1;
444 tree subtype2 = code2 == COMPLEX_TYPE ? TREE_TYPE (t2) : t2;
445 tree subtype
446 = type_after_usual_arithmetic_conversions (subtype1, subtype2);
448 if (subtype == error_mark_node)
449 return subtype;
450 if (code1 == COMPLEX_TYPE && TREE_TYPE (t1) == subtype)
451 return build_type_attribute_variant (t1, attributes);
452 else if (code2 == COMPLEX_TYPE && TREE_TYPE (t2) == subtype)
453 return build_type_attribute_variant (t2, attributes);
454 else
455 return build_type_attribute_variant (build_complex_type (subtype),
456 attributes);
459 if (code1 == VECTOR_TYPE)
461 /* When we get here we should have two vectors of the same size.
462 Just prefer the unsigned one if present. */
463 if (TYPE_UNSIGNED (t1))
464 return merge_type_attributes_from (t1, t2);
465 else
466 return merge_type_attributes_from (t2, t1);
469 /* If only one is real, use it as the result. */
470 if (code1 == REAL_TYPE && code2 != REAL_TYPE)
471 return build_type_attribute_variant (t1, attributes);
472 if (code2 == REAL_TYPE && code1 != REAL_TYPE)
473 return build_type_attribute_variant (t2, attributes);
475 if (code1 == REAL_TYPE
476 && (extended_float_type_p (t1) || extended_float_type_p (t2)))
478 tree mv1 = TYPE_MAIN_VARIANT (t1);
479 tree mv2 = TYPE_MAIN_VARIANT (t2);
480 if (mv1 == mv2)
481 return build_type_attribute_variant (t1, attributes);
483 int cmpret = cp_compare_floating_point_conversion_ranks (mv1, mv2);
484 if (cmpret == 3)
485 return error_mark_node;
486 else if (cmpret >= 0)
487 return build_type_attribute_variant (t1, attributes);
488 else
489 return build_type_attribute_variant (t2, attributes);
492 /* Both real or both integers; use the one with greater precision. */
493 if (TYPE_PRECISION (t1) > TYPE_PRECISION (t2))
494 return build_type_attribute_variant (t1, attributes);
495 else if (TYPE_PRECISION (t2) > TYPE_PRECISION (t1))
496 return build_type_attribute_variant (t2, attributes);
498 /* The types are the same; no need to do anything fancy. */
499 if (TYPE_MAIN_VARIANT (t1) == TYPE_MAIN_VARIANT (t2))
500 return build_type_attribute_variant (t1, attributes);
502 if (code1 != REAL_TYPE)
504 /* If one is unsigned long long, then convert the other to unsigned
505 long long. */
506 if (same_type_p (TYPE_MAIN_VARIANT (t1), long_long_unsigned_type_node)
507 || same_type_p (TYPE_MAIN_VARIANT (t2), long_long_unsigned_type_node))
508 return build_type_attribute_variant (long_long_unsigned_type_node,
509 attributes);
510 /* If one is a long long, and the other is an unsigned long, and
511 long long can represent all the values of an unsigned long, then
512 convert to a long long. Otherwise, convert to an unsigned long
513 long. Otherwise, if either operand is long long, convert the
514 other to long long.
516 Since we're here, we know the TYPE_PRECISION is the same;
517 therefore converting to long long cannot represent all the values
518 of an unsigned long, so we choose unsigned long long in that
519 case. */
520 if (same_type_p (TYPE_MAIN_VARIANT (t1), long_long_integer_type_node)
521 || same_type_p (TYPE_MAIN_VARIANT (t2), long_long_integer_type_node))
523 tree t = ((TYPE_UNSIGNED (t1) || TYPE_UNSIGNED (t2))
524 ? long_long_unsigned_type_node
525 : long_long_integer_type_node);
526 return build_type_attribute_variant (t, attributes);
529 /* Go through the same procedure, but for longs. */
530 if (same_type_p (TYPE_MAIN_VARIANT (t1), long_unsigned_type_node)
531 || same_type_p (TYPE_MAIN_VARIANT (t2), long_unsigned_type_node))
532 return build_type_attribute_variant (long_unsigned_type_node,
533 attributes);
534 if (same_type_p (TYPE_MAIN_VARIANT (t1), long_integer_type_node)
535 || same_type_p (TYPE_MAIN_VARIANT (t2), long_integer_type_node))
537 tree t = ((TYPE_UNSIGNED (t1) || TYPE_UNSIGNED (t2))
538 ? long_unsigned_type_node : long_integer_type_node);
539 return build_type_attribute_variant (t, attributes);
542 /* For __intN types, either the type is __int128 (and is lower
543 priority than the types checked above, but higher than other
544 128-bit types) or it's known to not be the same size as other
545 types (enforced in toplev.cc). Prefer the unsigned type. */
546 for (i = 0; i < NUM_INT_N_ENTS; i ++)
548 if (int_n_enabled_p [i]
549 && (same_type_p (TYPE_MAIN_VARIANT (t1), int_n_trees[i].signed_type)
550 || same_type_p (TYPE_MAIN_VARIANT (t2), int_n_trees[i].signed_type)
551 || same_type_p (TYPE_MAIN_VARIANT (t1), int_n_trees[i].unsigned_type)
552 || same_type_p (TYPE_MAIN_VARIANT (t2), int_n_trees[i].unsigned_type)))
554 tree t = ((TYPE_UNSIGNED (t1) || TYPE_UNSIGNED (t2))
555 ? int_n_trees[i].unsigned_type
556 : int_n_trees[i].signed_type);
557 return build_type_attribute_variant (t, attributes);
561 /* Otherwise prefer the unsigned one. */
562 if (TYPE_UNSIGNED (t1))
563 return build_type_attribute_variant (t1, attributes);
564 else
565 return build_type_attribute_variant (t2, attributes);
567 else
569 if (same_type_p (TYPE_MAIN_VARIANT (t1), long_double_type_node)
570 || same_type_p (TYPE_MAIN_VARIANT (t2), long_double_type_node))
571 return build_type_attribute_variant (long_double_type_node,
572 attributes);
573 if (same_type_p (TYPE_MAIN_VARIANT (t1), double_type_node)
574 || same_type_p (TYPE_MAIN_VARIANT (t2), double_type_node))
575 return build_type_attribute_variant (double_type_node,
576 attributes);
577 if (same_type_p (TYPE_MAIN_VARIANT (t1), float_type_node)
578 || same_type_p (TYPE_MAIN_VARIANT (t2), float_type_node))
579 return build_type_attribute_variant (float_type_node,
580 attributes);
582 /* Two floating-point types whose TYPE_MAIN_VARIANTs are none of
583 the standard C++ floating-point types. Logic earlier in this
584 function has already eliminated the possibility that
585 TYPE_PRECISION (t2) != TYPE_PRECISION (t1), so there's no
586 compelling reason to choose one or the other. */
587 return build_type_attribute_variant (t1, attributes);
591 /* T1 and T2 are arithmetic or enumeration types. Return the type
592 that will result from the "usual arithmetic conversions" on T1 and
593 T2 as described in [expr]. */
595 tree
596 type_after_usual_arithmetic_conversions (tree t1, tree t2)
598 gcc_assert (ARITHMETIC_TYPE_P (t1)
599 || VECTOR_TYPE_P (t1)
600 || UNSCOPED_ENUM_P (t1));
601 gcc_assert (ARITHMETIC_TYPE_P (t2)
602 || VECTOR_TYPE_P (t2)
603 || UNSCOPED_ENUM_P (t2));
605 /* Perform the integral promotions. We do not promote real types here. */
606 if (INTEGRAL_OR_ENUMERATION_TYPE_P (t1)
607 && INTEGRAL_OR_ENUMERATION_TYPE_P (t2))
609 t1 = type_promotes_to (t1);
610 t2 = type_promotes_to (t2);
613 return cp_common_type (t1, t2);
616 static void
617 composite_pointer_error (const op_location_t &location,
618 diagnostic_t kind, tree t1, tree t2,
619 composite_pointer_operation operation)
621 switch (operation)
623 case CPO_COMPARISON:
624 emit_diagnostic (kind, location, 0,
625 "comparison between "
626 "distinct pointer types %qT and %qT lacks a cast",
627 t1, t2);
628 break;
629 case CPO_CONVERSION:
630 emit_diagnostic (kind, location, 0,
631 "conversion between "
632 "distinct pointer types %qT and %qT lacks a cast",
633 t1, t2);
634 break;
635 case CPO_CONDITIONAL_EXPR:
636 emit_diagnostic (kind, location, 0,
637 "conditional expression between "
638 "distinct pointer types %qT and %qT lacks a cast",
639 t1, t2);
640 break;
641 default:
642 gcc_unreachable ();
646 /* Subroutine of composite_pointer_type to implement the recursive
647 case. See that function for documentation of the parameters. And ADD_CONST
648 is used to track adding "const" where needed. */
650 static tree
651 composite_pointer_type_r (const op_location_t &location,
652 tree t1, tree t2, bool *add_const,
653 composite_pointer_operation operation,
654 tsubst_flags_t complain)
656 tree pointee1;
657 tree pointee2;
658 tree result_type;
659 tree attributes;
661 /* Determine the types pointed to by T1 and T2. */
662 if (TYPE_PTR_P (t1))
664 pointee1 = TREE_TYPE (t1);
665 pointee2 = TREE_TYPE (t2);
667 else
669 pointee1 = TYPE_PTRMEM_POINTED_TO_TYPE (t1);
670 pointee2 = TYPE_PTRMEM_POINTED_TO_TYPE (t2);
673 /* [expr.type]
675 If T1 and T2 are similar types, the result is the cv-combined type of
676 T1 and T2. */
677 if (same_type_ignoring_top_level_qualifiers_p (pointee1, pointee2))
678 result_type = pointee1;
679 else if ((TYPE_PTR_P (pointee1) && TYPE_PTR_P (pointee2))
680 || (TYPE_PTRMEM_P (pointee1) && TYPE_PTRMEM_P (pointee2)))
682 result_type = composite_pointer_type_r (location, pointee1, pointee2,
683 add_const, operation, complain);
684 if (result_type == error_mark_node)
685 return error_mark_node;
687 else
689 if (complain & tf_error)
690 composite_pointer_error (location, DK_PERMERROR,
691 t1, t2, operation);
692 else
693 return error_mark_node;
694 result_type = void_type_node;
696 const int q1 = cp_type_quals (pointee1);
697 const int q2 = cp_type_quals (pointee2);
698 const int quals = q1 | q2;
699 result_type = cp_build_qualified_type (result_type,
700 (quals | (*add_const
701 ? TYPE_QUAL_CONST
702 : TYPE_UNQUALIFIED)));
703 /* The cv-combined type can add "const" as per [conv.qual]/3.3 (except for
704 the TLQ). The reason is that both T1 and T2 can then be converted to the
705 cv-combined type of T1 and T2. */
706 if (quals != q1 || quals != q2)
707 *add_const = true;
708 /* If the original types were pointers to members, so is the
709 result. */
710 if (TYPE_PTRMEM_P (t1))
712 if (!same_type_p (TYPE_PTRMEM_CLASS_TYPE (t1),
713 TYPE_PTRMEM_CLASS_TYPE (t2)))
715 if (complain & tf_error)
716 composite_pointer_error (location, DK_PERMERROR,
717 t1, t2, operation);
718 else
719 return error_mark_node;
721 result_type = build_ptrmem_type (TYPE_PTRMEM_CLASS_TYPE (t1),
722 result_type);
724 else
725 result_type = build_pointer_type (result_type);
727 /* Merge the attributes. */
728 attributes = (*targetm.merge_type_attributes) (t1, t2);
729 return build_type_attribute_variant (result_type, attributes);
732 /* Return the composite pointer type (see [expr.type]) for T1 and T2.
733 ARG1 and ARG2 are the values with those types. The OPERATION is to
734 describe the operation between the pointer types,
735 in case an error occurs.
737 This routine also implements the computation of a common type for
738 pointers-to-members as per [expr.eq]. */
740 tree
741 composite_pointer_type (const op_location_t &location,
742 tree t1, tree t2, tree arg1, tree arg2,
743 composite_pointer_operation operation,
744 tsubst_flags_t complain)
746 tree class1;
747 tree class2;
749 /* [expr.type]
751 If one operand is a null pointer constant, the composite pointer
752 type is the type of the other operand. */
753 if (null_ptr_cst_p (arg1))
754 return t2;
755 if (null_ptr_cst_p (arg2))
756 return t1;
758 /* We have:
760 [expr.type]
762 If one of the operands has type "pointer to cv1 void", then
763 the other has type "pointer to cv2 T", and the composite pointer
764 type is "pointer to cv12 void", where cv12 is the union of cv1
765 and cv2.
767 If either type is a pointer to void, make sure it is T1. */
768 if (TYPE_PTR_P (t2) && VOID_TYPE_P (TREE_TYPE (t2)))
769 std::swap (t1, t2);
771 /* Now, if T1 is a pointer to void, merge the qualifiers. */
772 if (TYPE_PTR_P (t1) && VOID_TYPE_P (TREE_TYPE (t1)))
774 tree attributes;
775 tree result_type;
777 if (TYPE_PTRFN_P (t2))
779 if (complain & tf_error)
781 switch (operation)
783 case CPO_COMPARISON:
784 pedwarn (location, OPT_Wpedantic,
785 "ISO C++ forbids comparison between pointer "
786 "of type %<void *%> and pointer-to-function");
787 break;
788 case CPO_CONVERSION:
789 pedwarn (location, OPT_Wpedantic,
790 "ISO C++ forbids conversion between pointer "
791 "of type %<void *%> and pointer-to-function");
792 break;
793 case CPO_CONDITIONAL_EXPR:
794 pedwarn (location, OPT_Wpedantic,
795 "ISO C++ forbids conditional expression between "
796 "pointer of type %<void *%> and "
797 "pointer-to-function");
798 break;
799 default:
800 gcc_unreachable ();
803 else
804 return error_mark_node;
806 result_type
807 = cp_build_qualified_type (void_type_node,
808 (cp_type_quals (TREE_TYPE (t1))
809 | cp_type_quals (TREE_TYPE (t2))));
810 result_type = build_pointer_type (result_type);
811 /* Merge the attributes. */
812 attributes = (*targetm.merge_type_attributes) (t1, t2);
813 return build_type_attribute_variant (result_type, attributes);
816 if (c_dialect_objc () && TYPE_PTR_P (t1)
817 && TYPE_PTR_P (t2))
819 if (objc_have_common_type (t1, t2, -3, NULL_TREE))
820 return objc_common_type (t1, t2);
823 /* if T1 or T2 is "pointer to noexcept function" and the other type is
824 "pointer to function", where the function types are otherwise the same,
825 "pointer to function" */
826 if (fnptr_conv_p (t1, t2))
827 return t1;
828 if (fnptr_conv_p (t2, t1))
829 return t2;
831 /* [expr.eq] permits the application of a pointer conversion to
832 bring the pointers to a common type. */
833 if (TYPE_PTR_P (t1) && TYPE_PTR_P (t2)
834 && CLASS_TYPE_P (TREE_TYPE (t1))
835 && CLASS_TYPE_P (TREE_TYPE (t2))
836 && !same_type_ignoring_top_level_qualifiers_p (TREE_TYPE (t1),
837 TREE_TYPE (t2)))
839 class1 = TREE_TYPE (t1);
840 class2 = TREE_TYPE (t2);
842 if (DERIVED_FROM_P (class1, class2))
843 t2 = (build_pointer_type
844 (cp_build_qualified_type (class1, cp_type_quals (class2))));
845 else if (DERIVED_FROM_P (class2, class1))
846 t1 = (build_pointer_type
847 (cp_build_qualified_type (class2, cp_type_quals (class1))));
848 else
850 if (complain & tf_error)
851 composite_pointer_error (location, DK_ERROR, t1, t2, operation);
852 return error_mark_node;
855 /* [expr.eq] permits the application of a pointer-to-member
856 conversion to change the class type of one of the types. */
857 else if (TYPE_PTRMEM_P (t1)
858 && !same_type_p (TYPE_PTRMEM_CLASS_TYPE (t1),
859 TYPE_PTRMEM_CLASS_TYPE (t2)))
861 class1 = TYPE_PTRMEM_CLASS_TYPE (t1);
862 class2 = TYPE_PTRMEM_CLASS_TYPE (t2);
864 if (DERIVED_FROM_P (class1, class2))
865 t1 = build_ptrmem_type (class2, TYPE_PTRMEM_POINTED_TO_TYPE (t1));
866 else if (DERIVED_FROM_P (class2, class1))
867 t2 = build_ptrmem_type (class1, TYPE_PTRMEM_POINTED_TO_TYPE (t2));
868 else
870 if (complain & tf_error)
871 switch (operation)
873 case CPO_COMPARISON:
874 error_at (location, "comparison between distinct "
875 "pointer-to-member types %qT and %qT lacks a cast",
876 t1, t2);
877 break;
878 case CPO_CONVERSION:
879 error_at (location, "conversion between distinct "
880 "pointer-to-member types %qT and %qT lacks a cast",
881 t1, t2);
882 break;
883 case CPO_CONDITIONAL_EXPR:
884 error_at (location, "conditional expression between distinct "
885 "pointer-to-member types %qT and %qT lacks a cast",
886 t1, t2);
887 break;
888 default:
889 gcc_unreachable ();
891 return error_mark_node;
895 bool add_const = false;
896 return composite_pointer_type_r (location, t1, t2, &add_const, operation,
897 complain);
900 /* Return the merged type of two types.
901 We assume that comptypes has already been done and returned 1;
902 if that isn't so, this may crash.
904 This just combines attributes and default arguments; any other
905 differences would cause the two types to compare unalike. */
907 tree
908 merge_types (tree t1, tree t2)
910 enum tree_code code1;
911 enum tree_code code2;
912 tree attributes;
914 /* Save time if the two types are the same. */
915 if (t1 == t2)
916 return t1;
917 if (original_type (t1) == original_type (t2))
918 return t1;
920 /* If one type is nonsense, use the other. */
921 if (t1 == error_mark_node)
922 return t2;
923 if (t2 == error_mark_node)
924 return t1;
926 /* Handle merging an auto redeclaration with a previous deduced
927 return type. */
928 if (is_auto (t1))
929 return t2;
931 /* Merge the attributes. */
932 attributes = (*targetm.merge_type_attributes) (t1, t2);
934 if (TYPE_PTRMEMFUNC_P (t1))
935 t1 = TYPE_PTRMEMFUNC_FN_TYPE (t1);
936 if (TYPE_PTRMEMFUNC_P (t2))
937 t2 = TYPE_PTRMEMFUNC_FN_TYPE (t2);
939 code1 = TREE_CODE (t1);
940 code2 = TREE_CODE (t2);
941 if (code1 != code2)
943 gcc_assert (code1 == TYPENAME_TYPE || code2 == TYPENAME_TYPE);
944 if (code1 == TYPENAME_TYPE)
946 t1 = resolve_typename_type (t1, /*only_current_p=*/true);
947 code1 = TREE_CODE (t1);
949 else
951 t2 = resolve_typename_type (t2, /*only_current_p=*/true);
952 code2 = TREE_CODE (t2);
956 switch (code1)
958 case POINTER_TYPE:
959 case REFERENCE_TYPE:
960 /* For two pointers, do this recursively on the target type. */
962 tree target = merge_types (TREE_TYPE (t1), TREE_TYPE (t2));
963 int quals = cp_type_quals (t1);
965 if (code1 == POINTER_TYPE)
967 t1 = build_pointer_type (target);
968 if (TREE_CODE (target) == METHOD_TYPE)
969 t1 = build_ptrmemfunc_type (t1);
971 else
972 t1 = cp_build_reference_type (target, TYPE_REF_IS_RVALUE (t1));
973 t1 = build_type_attribute_variant (t1, attributes);
974 t1 = cp_build_qualified_type (t1, quals);
976 return t1;
979 case OFFSET_TYPE:
981 int quals;
982 tree pointee;
983 quals = cp_type_quals (t1);
984 pointee = merge_types (TYPE_PTRMEM_POINTED_TO_TYPE (t1),
985 TYPE_PTRMEM_POINTED_TO_TYPE (t2));
986 t1 = build_ptrmem_type (TYPE_PTRMEM_CLASS_TYPE (t1),
987 pointee);
988 t1 = cp_build_qualified_type (t1, quals);
989 break;
992 case ARRAY_TYPE:
994 tree elt = merge_types (TREE_TYPE (t1), TREE_TYPE (t2));
995 /* Save space: see if the result is identical to one of the args. */
996 if (elt == TREE_TYPE (t1) && TYPE_DOMAIN (t1))
997 return build_type_attribute_variant (t1, attributes);
998 if (elt == TREE_TYPE (t2) && TYPE_DOMAIN (t2))
999 return build_type_attribute_variant (t2, attributes);
1000 /* Merge the element types, and have a size if either arg has one. */
1001 t1 = build_cplus_array_type
1002 (elt, TYPE_DOMAIN (TYPE_DOMAIN (t1) ? t1 : t2));
1003 break;
1006 case FUNCTION_TYPE:
1007 /* Function types: prefer the one that specified arg types.
1008 If both do, merge the arg types. Also merge the return types. */
1010 tree valtype = merge_types (TREE_TYPE (t1), TREE_TYPE (t2));
1011 tree p1 = TYPE_ARG_TYPES (t1);
1012 tree p2 = TYPE_ARG_TYPES (t2);
1013 tree parms;
1015 /* Save space: see if the result is identical to one of the args. */
1016 if (valtype == TREE_TYPE (t1) && ! p2)
1017 return cp_build_type_attribute_variant (t1, attributes);
1018 if (valtype == TREE_TYPE (t2) && ! p1)
1019 return cp_build_type_attribute_variant (t2, attributes);
1021 /* Simple way if one arg fails to specify argument types. */
1022 if (p1 == NULL_TREE || TREE_VALUE (p1) == void_type_node)
1023 parms = p2;
1024 else if (p2 == NULL_TREE || TREE_VALUE (p2) == void_type_node)
1025 parms = p1;
1026 else
1027 parms = commonparms (p1, p2);
1029 cp_cv_quals quals = type_memfn_quals (t1);
1030 cp_ref_qualifier rqual = type_memfn_rqual (t1);
1031 gcc_assert (quals == type_memfn_quals (t2));
1032 gcc_assert (rqual == type_memfn_rqual (t2));
1034 tree rval = build_function_type (valtype, parms);
1035 rval = apply_memfn_quals (rval, quals);
1036 tree raises = merge_exception_specifiers (TYPE_RAISES_EXCEPTIONS (t1),
1037 TYPE_RAISES_EXCEPTIONS (t2));
1038 bool late_return_type_p = TYPE_HAS_LATE_RETURN_TYPE (t1);
1039 t1 = build_cp_fntype_variant (rval, rqual, raises, late_return_type_p);
1040 break;
1043 case METHOD_TYPE:
1045 /* Get this value the long way, since TYPE_METHOD_BASETYPE
1046 is just the main variant of this. */
1047 tree basetype = class_of_this_parm (t2);
1048 tree raises = merge_exception_specifiers (TYPE_RAISES_EXCEPTIONS (t1),
1049 TYPE_RAISES_EXCEPTIONS (t2));
1050 cp_ref_qualifier rqual = type_memfn_rqual (t1);
1051 tree t3;
1052 bool late_return_type_1_p = TYPE_HAS_LATE_RETURN_TYPE (t1);
1054 /* If this was a member function type, get back to the
1055 original type of type member function (i.e., without
1056 the class instance variable up front. */
1057 t1 = build_function_type (TREE_TYPE (t1),
1058 TREE_CHAIN (TYPE_ARG_TYPES (t1)));
1059 t2 = build_function_type (TREE_TYPE (t2),
1060 TREE_CHAIN (TYPE_ARG_TYPES (t2)));
1061 t3 = merge_types (t1, t2);
1062 t3 = build_method_type_directly (basetype, TREE_TYPE (t3),
1063 TYPE_ARG_TYPES (t3));
1064 t1 = build_cp_fntype_variant (t3, rqual, raises, late_return_type_1_p);
1065 break;
1068 case TYPENAME_TYPE:
1069 /* There is no need to merge attributes into a TYPENAME_TYPE.
1070 When the type is instantiated it will have whatever
1071 attributes result from the instantiation. */
1072 return t1;
1074 default:;
1075 if (attribute_list_equal (TYPE_ATTRIBUTES (t1), attributes))
1076 return t1;
1077 else if (attribute_list_equal (TYPE_ATTRIBUTES (t2), attributes))
1078 return t2;
1079 break;
1082 return cp_build_type_attribute_variant (t1, attributes);
1085 /* Return the ARRAY_TYPE type without its domain. */
1087 tree
1088 strip_array_domain (tree type)
1090 tree t2;
1091 gcc_assert (TREE_CODE (type) == ARRAY_TYPE);
1092 if (TYPE_DOMAIN (type) == NULL_TREE)
1093 return type;
1094 t2 = build_cplus_array_type (TREE_TYPE (type), NULL_TREE);
1095 return cp_build_type_attribute_variant (t2, TYPE_ATTRIBUTES (type));
1098 /* Wrapper around cp_common_type that is used by c-common.cc and other
1099 front end optimizations that remove promotions.
1101 Return the common type for two arithmetic types T1 and T2 under the
1102 usual arithmetic conversions. The default conversions have already
1103 been applied, and enumerated types converted to their compatible
1104 integer types. */
1106 tree
1107 common_type (tree t1, tree t2)
1109 /* If one type is nonsense, use the other */
1110 if (t1 == error_mark_node)
1111 return t2;
1112 if (t2 == error_mark_node)
1113 return t1;
1115 return cp_common_type (t1, t2);
1118 /* Return the common type of two pointer types T1 and T2. This is the
1119 type for the result of most arithmetic operations if the operands
1120 have the given two types.
1122 We assume that comp_target_types has already been done and returned
1123 nonzero; if that isn't so, this may crash. */
1125 tree
1126 common_pointer_type (tree t1, tree t2)
1128 gcc_assert ((TYPE_PTR_P (t1) && TYPE_PTR_P (t2))
1129 || (TYPE_PTRDATAMEM_P (t1) && TYPE_PTRDATAMEM_P (t2))
1130 || (TYPE_PTRMEMFUNC_P (t1) && TYPE_PTRMEMFUNC_P (t2)));
1132 return composite_pointer_type (input_location, t1, t2,
1133 error_mark_node, error_mark_node,
1134 CPO_CONVERSION, tf_warning_or_error);
1137 /* Compare two exception specifier types for exactness or subsetness, if
1138 allowed. Returns false for mismatch, true for match (same, or
1139 derived and !exact).
1141 [except.spec] "If a class X ... objects of class X or any class publicly
1142 and unambiguously derived from X. Similarly, if a pointer type Y * ...
1143 exceptions of type Y * or that are pointers to any type publicly and
1144 unambiguously derived from Y. Otherwise a function only allows exceptions
1145 that have the same type ..."
1146 This does not mention cv qualifiers and is different to what throw
1147 [except.throw] and catch [except.catch] will do. They will ignore the
1148 top level cv qualifiers, and allow qualifiers in the pointer to class
1149 example.
1151 We implement the letter of the standard. */
1153 static bool
1154 comp_except_types (tree a, tree b, bool exact)
1156 if (same_type_p (a, b))
1157 return true;
1158 else if (!exact)
1160 if (cp_type_quals (a) || cp_type_quals (b))
1161 return false;
1163 if (TYPE_PTR_P (a) && TYPE_PTR_P (b))
1165 a = TREE_TYPE (a);
1166 b = TREE_TYPE (b);
1167 if (cp_type_quals (a) || cp_type_quals (b))
1168 return false;
1171 if (TREE_CODE (a) != RECORD_TYPE
1172 || TREE_CODE (b) != RECORD_TYPE)
1173 return false;
1175 if (publicly_uniquely_derived_p (a, b))
1176 return true;
1178 return false;
1181 /* Return true if TYPE1 and TYPE2 are equivalent exception specifiers.
1182 If EXACT is ce_derived, T2 can be stricter than T1 (according to 15.4/5).
1183 If EXACT is ce_type, the C++17 type compatibility rules apply.
1184 If EXACT is ce_normal, the compatibility rules in 15.4/3 apply.
1185 If EXACT is ce_exact, the specs must be exactly the same. Exception lists
1186 are unordered, but we've already filtered out duplicates. Most lists will
1187 be in order, we should try to make use of that. */
1189 bool
1190 comp_except_specs (const_tree t1, const_tree t2, int exact)
1192 const_tree probe;
1193 const_tree base;
1194 int length = 0;
1196 if (t1 == t2)
1197 return true;
1199 /* First handle noexcept. */
1200 if (exact < ce_exact)
1202 if (exact == ce_type
1203 && (canonical_eh_spec (CONST_CAST_TREE (t1))
1204 == canonical_eh_spec (CONST_CAST_TREE (t2))))
1205 return true;
1207 /* noexcept(false) is compatible with no exception-specification,
1208 and less strict than any spec. */
1209 if (t1 == noexcept_false_spec)
1210 return t2 == NULL_TREE || exact == ce_derived;
1211 /* Even a derived noexcept(false) is compatible with no
1212 exception-specification. */
1213 if (t2 == noexcept_false_spec)
1214 return t1 == NULL_TREE;
1216 /* Otherwise, if we aren't looking for an exact match, noexcept is
1217 equivalent to throw(). */
1218 if (t1 == noexcept_true_spec)
1219 t1 = empty_except_spec;
1220 if (t2 == noexcept_true_spec)
1221 t2 = empty_except_spec;
1224 /* If any noexcept is left, it is only comparable to itself;
1225 either we're looking for an exact match or we're redeclaring a
1226 template with dependent noexcept. */
1227 if ((t1 && TREE_PURPOSE (t1))
1228 || (t2 && TREE_PURPOSE (t2)))
1229 return (t1 && t2
1230 && cp_tree_equal (TREE_PURPOSE (t1), TREE_PURPOSE (t2)));
1232 if (t1 == NULL_TREE) /* T1 is ... */
1233 return t2 == NULL_TREE || exact == ce_derived;
1234 if (!TREE_VALUE (t1)) /* t1 is EMPTY */
1235 return t2 != NULL_TREE && !TREE_VALUE (t2);
1236 if (t2 == NULL_TREE) /* T2 is ... */
1237 return false;
1238 if (TREE_VALUE (t1) && !TREE_VALUE (t2)) /* T2 is EMPTY, T1 is not */
1239 return exact == ce_derived;
1241 /* Neither set is ... or EMPTY, make sure each part of T2 is in T1.
1242 Count how many we find, to determine exactness. For exact matching and
1243 ordered T1, T2, this is an O(n) operation, otherwise its worst case is
1244 O(nm). */
1245 for (base = t1; t2 != NULL_TREE; t2 = TREE_CHAIN (t2))
1247 for (probe = base; probe != NULL_TREE; probe = TREE_CHAIN (probe))
1249 tree a = TREE_VALUE (probe);
1250 tree b = TREE_VALUE (t2);
1252 if (comp_except_types (a, b, exact))
1254 if (probe == base && exact > ce_derived)
1255 base = TREE_CHAIN (probe);
1256 length++;
1257 break;
1260 if (probe == NULL_TREE)
1261 return false;
1263 return exact == ce_derived || base == NULL_TREE || length == list_length (t1);
1266 /* Compare the array types T1 and T2. CB says how we should behave when
1267 comparing array bounds: bounds_none doesn't allow dimensionless arrays,
1268 bounds_either says than any array can be [], bounds_first means that
1269 onlt T1 can be an array with unknown bounds. STRICT is true if
1270 qualifiers must match when comparing the types of the array elements. */
1272 static bool
1273 comp_array_types (const_tree t1, const_tree t2, compare_bounds_t cb,
1274 bool strict)
1276 tree d1;
1277 tree d2;
1278 tree max1, max2;
1280 if (t1 == t2)
1281 return true;
1283 /* The type of the array elements must be the same. */
1284 if (strict
1285 ? !same_type_p (TREE_TYPE (t1), TREE_TYPE (t2))
1286 : !similar_type_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1287 return false;
1289 d1 = TYPE_DOMAIN (t1);
1290 d2 = TYPE_DOMAIN (t2);
1292 if (d1 == d2)
1293 return true;
1295 /* If one of the arrays is dimensionless, and the other has a
1296 dimension, they are of different types. However, it is valid to
1297 write:
1299 extern int a[];
1300 int a[3];
1302 by [basic.link]:
1304 declarations for an array object can specify
1305 array types that differ by the presence or absence of a major
1306 array bound (_dcl.array_). */
1307 if (!d1 && d2)
1308 return cb >= bounds_either;
1309 else if (d1 && !d2)
1310 return cb == bounds_either;
1312 /* Check that the dimensions are the same. */
1314 if (!cp_tree_equal (TYPE_MIN_VALUE (d1), TYPE_MIN_VALUE (d2)))
1315 return false;
1316 max1 = TYPE_MAX_VALUE (d1);
1317 max2 = TYPE_MAX_VALUE (d2);
1319 if (!cp_tree_equal (max1, max2))
1320 return false;
1322 return true;
1325 /* Compare the relative position of T1 and T2 into their respective
1326 template parameter list.
1327 T1 and T2 must be template parameter types.
1328 Return TRUE if T1 and T2 have the same position, FALSE otherwise. */
1330 static bool
1331 comp_template_parms_position (tree t1, tree t2)
1333 tree index1, index2;
1334 gcc_assert (t1 && t2
1335 && TREE_CODE (t1) == TREE_CODE (t2)
1336 && (TREE_CODE (t1) == BOUND_TEMPLATE_TEMPLATE_PARM
1337 || TREE_CODE (t1) == TEMPLATE_TEMPLATE_PARM
1338 || TREE_CODE (t1) == TEMPLATE_TYPE_PARM));
1340 index1 = TEMPLATE_TYPE_PARM_INDEX (TYPE_MAIN_VARIANT (t1));
1341 index2 = TEMPLATE_TYPE_PARM_INDEX (TYPE_MAIN_VARIANT (t2));
1343 /* Then compare their relative position. */
1344 if (TEMPLATE_PARM_IDX (index1) != TEMPLATE_PARM_IDX (index2)
1345 || TEMPLATE_PARM_LEVEL (index1) != TEMPLATE_PARM_LEVEL (index2)
1346 || (TEMPLATE_PARM_PARAMETER_PACK (index1)
1347 != TEMPLATE_PARM_PARAMETER_PACK (index2)))
1348 return false;
1350 /* In C++14 we can end up comparing 'auto' to a normal template
1351 parameter. Don't confuse them. */
1352 if (cxx_dialect >= cxx14 && (is_auto (t1) || is_auto (t2)))
1353 return TYPE_IDENTIFIER (t1) == TYPE_IDENTIFIER (t2);
1355 return true;
1358 /* Heuristic check if two parameter types can be considered ABI-equivalent. */
1360 static bool
1361 cxx_safe_arg_type_equiv_p (tree t1, tree t2)
1363 t1 = TYPE_MAIN_VARIANT (t1);
1364 t2 = TYPE_MAIN_VARIANT (t2);
1366 if (TYPE_PTR_P (t1)
1367 && TYPE_PTR_P (t2))
1368 return true;
1370 /* The signedness of the parameter matters only when an integral
1371 type smaller than int is promoted to int, otherwise only the
1372 precision of the parameter matters.
1373 This check should make sure that the callee does not see
1374 undefined values in argument registers. */
1375 if (INTEGRAL_TYPE_P (t1)
1376 && INTEGRAL_TYPE_P (t2)
1377 && TYPE_PRECISION (t1) == TYPE_PRECISION (t2)
1378 && (TYPE_UNSIGNED (t1) == TYPE_UNSIGNED (t2)
1379 || !targetm.calls.promote_prototypes (NULL_TREE)
1380 || TYPE_PRECISION (t1) >= TYPE_PRECISION (integer_type_node)))
1381 return true;
1383 return same_type_p (t1, t2);
1386 /* Check if a type cast between two function types can be considered safe. */
1388 static bool
1389 cxx_safe_function_type_cast_p (tree t1, tree t2)
1391 if (TREE_TYPE (t1) == void_type_node &&
1392 TYPE_ARG_TYPES (t1) == void_list_node)
1393 return true;
1395 if (TREE_TYPE (t2) == void_type_node &&
1396 TYPE_ARG_TYPES (t2) == void_list_node)
1397 return true;
1399 if (!cxx_safe_arg_type_equiv_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1400 return false;
1402 for (t1 = TYPE_ARG_TYPES (t1), t2 = TYPE_ARG_TYPES (t2);
1403 t1 && t2;
1404 t1 = TREE_CHAIN (t1), t2 = TREE_CHAIN (t2))
1405 if (!cxx_safe_arg_type_equiv_p (TREE_VALUE (t1), TREE_VALUE (t2)))
1406 return false;
1408 return true;
1411 /* Subroutine in comptypes. */
1413 static bool
1414 structural_comptypes (tree t1, tree t2, int strict)
1416 /* Both should be types that are not obviously the same. */
1417 gcc_checking_assert (t1 != t2 && TYPE_P (t1) && TYPE_P (t2));
1419 /* Suppress typename resolution under spec_hasher::equal in place of calling
1420 push_to_top_level there. */
1421 if (!comparing_specializations)
1423 /* TYPENAME_TYPEs should be resolved if the qualifying scope is the
1424 current instantiation. */
1425 if (TREE_CODE (t1) == TYPENAME_TYPE)
1426 t1 = resolve_typename_type (t1, /*only_current_p=*/true);
1428 if (TREE_CODE (t2) == TYPENAME_TYPE)
1429 t2 = resolve_typename_type (t2, /*only_current_p=*/true);
1432 if (TYPE_PTRMEMFUNC_P (t1))
1433 t1 = TYPE_PTRMEMFUNC_FN_TYPE (t1);
1434 if (TYPE_PTRMEMFUNC_P (t2))
1435 t2 = TYPE_PTRMEMFUNC_FN_TYPE (t2);
1437 /* Different classes of types can't be compatible. */
1438 if (TREE_CODE (t1) != TREE_CODE (t2))
1439 return false;
1441 /* Qualifiers must match. For array types, we will check when we
1442 recur on the array element types. */
1443 if (TREE_CODE (t1) != ARRAY_TYPE
1444 && cp_type_quals (t1) != cp_type_quals (t2))
1445 return false;
1446 if (TREE_CODE (t1) == FUNCTION_TYPE
1447 && type_memfn_quals (t1) != type_memfn_quals (t2))
1448 return false;
1449 /* Need to check this before TYPE_MAIN_VARIANT.
1450 FIXME function qualifiers should really change the main variant. */
1451 if (FUNC_OR_METHOD_TYPE_P (t1))
1453 if (type_memfn_rqual (t1) != type_memfn_rqual (t2))
1454 return false;
1455 if (flag_noexcept_type
1456 && !comp_except_specs (TYPE_RAISES_EXCEPTIONS (t1),
1457 TYPE_RAISES_EXCEPTIONS (t2),
1458 ce_type))
1459 return false;
1462 /* Allow for two different type nodes which have essentially the same
1463 definition. Note that we already checked for equality of the type
1464 qualifiers (just above). */
1465 if (TREE_CODE (t1) != ARRAY_TYPE
1466 && TYPE_MAIN_VARIANT (t1) == TYPE_MAIN_VARIANT (t2))
1467 goto check_alias;
1469 /* Compare the types. Return false on known not-same. Break on not
1470 known. Never return true from this switch -- you'll break
1471 specialization comparison. */
1472 switch (TREE_CODE (t1))
1474 case VOID_TYPE:
1475 case BOOLEAN_TYPE:
1476 /* All void and bool types are the same. */
1477 break;
1479 case OPAQUE_TYPE:
1480 case INTEGER_TYPE:
1481 case FIXED_POINT_TYPE:
1482 case REAL_TYPE:
1483 /* With these nodes, we can't determine type equivalence by
1484 looking at what is stored in the nodes themselves, because
1485 two nodes might have different TYPE_MAIN_VARIANTs but still
1486 represent the same type. For example, wchar_t and int could
1487 have the same properties (TYPE_PRECISION, TYPE_MIN_VALUE,
1488 TYPE_MAX_VALUE, etc.), but have different TYPE_MAIN_VARIANTs
1489 and are distinct types. On the other hand, int and the
1490 following typedef
1492 typedef int INT __attribute((may_alias));
1494 have identical properties, different TYPE_MAIN_VARIANTs, but
1495 represent the same type. The canonical type system keeps
1496 track of equivalence in this case, so we fall back on it. */
1497 if (TYPE_CANONICAL (t1) != TYPE_CANONICAL (t2))
1498 return false;
1500 /* We don't need or want the attribute comparison. */
1501 goto check_alias;
1503 case TEMPLATE_TEMPLATE_PARM:
1504 case BOUND_TEMPLATE_TEMPLATE_PARM:
1505 if (!comp_template_parms_position (t1, t2))
1506 return false;
1507 if (!comp_template_parms
1508 (DECL_TEMPLATE_PARMS (TEMPLATE_TEMPLATE_PARM_TEMPLATE_DECL (t1)),
1509 DECL_TEMPLATE_PARMS (TEMPLATE_TEMPLATE_PARM_TEMPLATE_DECL (t2))))
1510 return false;
1511 if (TREE_CODE (t1) == TEMPLATE_TEMPLATE_PARM)
1512 break;
1513 /* Don't check inheritance. */
1514 strict = COMPARE_STRICT;
1515 /* Fall through. */
1517 case RECORD_TYPE:
1518 case UNION_TYPE:
1519 if (TYPE_TEMPLATE_INFO (t1) && TYPE_TEMPLATE_INFO (t2)
1520 && (TYPE_TI_TEMPLATE (t1) == TYPE_TI_TEMPLATE (t2)
1521 || TREE_CODE (t1) == BOUND_TEMPLATE_TEMPLATE_PARM)
1522 && comp_template_args (TYPE_TI_ARGS (t1), TYPE_TI_ARGS (t2)))
1523 break;
1525 if ((strict & COMPARE_BASE) && DERIVED_FROM_P (t1, t2))
1526 break;
1527 else if ((strict & COMPARE_DERIVED) && DERIVED_FROM_P (t2, t1))
1528 break;
1530 return false;
1532 case OFFSET_TYPE:
1533 if (!comptypes (TYPE_OFFSET_BASETYPE (t1), TYPE_OFFSET_BASETYPE (t2),
1534 strict & ~COMPARE_REDECLARATION))
1535 return false;
1536 if (!same_type_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1537 return false;
1538 break;
1540 case REFERENCE_TYPE:
1541 if (TYPE_REF_IS_RVALUE (t1) != TYPE_REF_IS_RVALUE (t2))
1542 return false;
1543 /* fall through to checks for pointer types */
1544 gcc_fallthrough ();
1546 case POINTER_TYPE:
1547 if (TYPE_MODE (t1) != TYPE_MODE (t2)
1548 || !same_type_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1549 return false;
1550 break;
1552 case METHOD_TYPE:
1553 case FUNCTION_TYPE:
1554 /* Exception specs and memfn_rquals were checked above. */
1555 if (!same_type_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1556 return false;
1557 if (!compparms (TYPE_ARG_TYPES (t1), TYPE_ARG_TYPES (t2)))
1558 return false;
1559 break;
1561 case ARRAY_TYPE:
1562 /* Target types must match incl. qualifiers. */
1563 if (!comp_array_types (t1, t2, ((strict & COMPARE_REDECLARATION)
1564 ? bounds_either : bounds_none),
1565 /*strict=*/true))
1566 return false;
1567 break;
1569 case TEMPLATE_TYPE_PARM:
1570 /* If T1 and T2 don't have the same relative position in their
1571 template parameters set, they can't be equal. */
1572 if (!comp_template_parms_position (t1, t2))
1573 return false;
1574 /* If T1 and T2 don't represent the same class template deduction,
1575 they aren't equal. */
1576 if (CLASS_PLACEHOLDER_TEMPLATE (t1)
1577 != CLASS_PLACEHOLDER_TEMPLATE (t2))
1578 return false;
1579 /* Constrained 'auto's are distinct from parms that don't have the same
1580 constraints. */
1581 if (!equivalent_placeholder_constraints (t1, t2))
1582 return false;
1583 break;
1585 case TYPENAME_TYPE:
1586 if (!cp_tree_equal (TYPENAME_TYPE_FULLNAME (t1),
1587 TYPENAME_TYPE_FULLNAME (t2)))
1588 return false;
1589 /* Qualifiers don't matter on scopes. */
1590 if (!same_type_ignoring_top_level_qualifiers_p (TYPE_CONTEXT (t1),
1591 TYPE_CONTEXT (t2)))
1592 return false;
1593 break;
1595 case UNBOUND_CLASS_TEMPLATE:
1596 if (!cp_tree_equal (TYPE_IDENTIFIER (t1), TYPE_IDENTIFIER (t2)))
1597 return false;
1598 if (!same_type_p (TYPE_CONTEXT (t1), TYPE_CONTEXT (t2)))
1599 return false;
1600 break;
1602 case COMPLEX_TYPE:
1603 if (!same_type_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1604 return false;
1605 break;
1607 case VECTOR_TYPE:
1608 if (gnu_vector_type_p (t1) != gnu_vector_type_p (t2)
1609 || maybe_ne (TYPE_VECTOR_SUBPARTS (t1), TYPE_VECTOR_SUBPARTS (t2))
1610 || !same_type_p (TREE_TYPE (t1), TREE_TYPE (t2)))
1611 return false;
1612 break;
1614 case TYPE_PACK_EXPANSION:
1615 return (same_type_p (PACK_EXPANSION_PATTERN (t1),
1616 PACK_EXPANSION_PATTERN (t2))
1617 && comp_template_args (PACK_EXPANSION_EXTRA_ARGS (t1),
1618 PACK_EXPANSION_EXTRA_ARGS (t2)));
1620 case DECLTYPE_TYPE:
1621 if (DECLTYPE_TYPE_ID_EXPR_OR_MEMBER_ACCESS_P (t1)
1622 != DECLTYPE_TYPE_ID_EXPR_OR_MEMBER_ACCESS_P (t2))
1623 return false;
1624 if (DECLTYPE_FOR_LAMBDA_CAPTURE (t1) != DECLTYPE_FOR_LAMBDA_CAPTURE (t2))
1625 return false;
1626 if (DECLTYPE_FOR_LAMBDA_PROXY (t1) != DECLTYPE_FOR_LAMBDA_PROXY (t2))
1627 return false;
1628 if (!cp_tree_equal (DECLTYPE_TYPE_EXPR (t1), DECLTYPE_TYPE_EXPR (t2)))
1629 return false;
1630 break;
1632 case TRAIT_TYPE:
1633 if (TRAIT_TYPE_KIND (t1) != TRAIT_TYPE_KIND (t2))
1634 return false;
1635 if (!same_type_p (TRAIT_TYPE_TYPE1 (t1), TRAIT_TYPE_TYPE1 (t2))
1636 || !cp_tree_equal (TRAIT_TYPE_TYPE2 (t1), TRAIT_TYPE_TYPE2 (t2)))
1637 return false;
1638 break;
1640 case TYPEOF_TYPE:
1641 if (!cp_tree_equal (TYPEOF_TYPE_EXPR (t1), TYPEOF_TYPE_EXPR (t2)))
1642 return false;
1643 break;
1645 default:
1646 return false;
1649 /* If we get here, we know that from a target independent POV the
1650 types are the same. Make sure the target attributes are also
1651 the same. */
1652 if (!comp_type_attributes (t1, t2))
1653 return false;
1655 check_alias:
1656 if (comparing_dependent_aliases)
1658 /* Don't treat an alias template specialization with dependent
1659 arguments as equivalent to its underlying type when used as a
1660 template argument; we need them to be distinct so that we
1661 substitute into the specialization arguments at instantiation
1662 time. And aliases can't be equivalent without being ==, so
1663 we don't need to look any deeper. */
1664 ++processing_template_decl;
1665 tree dep1 = dependent_alias_template_spec_p (t1, nt_transparent);
1666 tree dep2 = dependent_alias_template_spec_p (t2, nt_transparent);
1667 --processing_template_decl;
1668 if ((dep1 || dep2) && dep1 != dep2)
1669 return false;
1672 return true;
1675 /* Return true if T1 and T2 are related as allowed by STRICT. STRICT
1676 is a bitwise-or of the COMPARE_* flags. */
1678 bool
1679 comptypes (tree t1, tree t2, int strict)
1681 gcc_checking_assert (t1 && t2);
1683 /* TYPE_ARGUMENT_PACKS are not really types. */
1684 gcc_checking_assert (TREE_CODE (t1) != TYPE_ARGUMENT_PACK
1685 && TREE_CODE (t2) != TYPE_ARGUMENT_PACK);
1687 if (t1 == t2)
1688 return true;
1690 /* Suppress errors caused by previously reported errors. */
1691 if (t1 == error_mark_node || t2 == error_mark_node)
1692 return false;
1694 if (strict == COMPARE_STRICT)
1696 if (TYPE_STRUCTURAL_EQUALITY_P (t1) || TYPE_STRUCTURAL_EQUALITY_P (t2))
1697 /* At least one of the types requires structural equality, so
1698 perform a deep check. */
1699 return structural_comptypes (t1, t2, strict);
1701 if (flag_checking && param_use_canonical_types)
1703 bool result = structural_comptypes (t1, t2, strict);
1705 if (result && TYPE_CANONICAL (t1) != TYPE_CANONICAL (t2))
1706 /* The two types are structurally equivalent, but their
1707 canonical types were different. This is a failure of the
1708 canonical type propagation code.*/
1709 internal_error
1710 ("canonical types differ for identical types %qT and %qT",
1711 t1, t2);
1712 else if (!result && TYPE_CANONICAL (t1) == TYPE_CANONICAL (t2))
1713 /* Two types are structurally different, but the canonical
1714 types are the same. This means we were over-eager in
1715 assigning canonical types. */
1716 internal_error
1717 ("same canonical type node for different types %qT and %qT",
1718 t1, t2);
1720 return result;
1722 if (!flag_checking && param_use_canonical_types)
1723 return TYPE_CANONICAL (t1) == TYPE_CANONICAL (t2);
1724 else
1725 return structural_comptypes (t1, t2, strict);
1727 else if (strict == COMPARE_STRUCTURAL)
1728 return structural_comptypes (t1, t2, COMPARE_STRICT);
1729 else
1730 return structural_comptypes (t1, t2, strict);
1733 /* Returns nonzero iff TYPE1 and TYPE2 are the same type, ignoring
1734 top-level qualifiers. */
1736 bool
1737 same_type_ignoring_top_level_qualifiers_p (tree type1, tree type2)
1739 if (type1 == error_mark_node || type2 == error_mark_node)
1740 return false;
1741 if (type1 == type2)
1742 return true;
1744 type1 = cp_build_qualified_type (type1, TYPE_UNQUALIFIED);
1745 type2 = cp_build_qualified_type (type2, TYPE_UNQUALIFIED);
1746 return same_type_p (type1, type2);
1749 /* Returns nonzero iff TYPE1 and TYPE2 are similar, as per [conv.qual]. */
1751 bool
1752 similar_type_p (tree type1, tree type2)
1754 if (type1 == error_mark_node || type2 == error_mark_node)
1755 return false;
1757 /* Informally, two types are similar if, ignoring top-level cv-qualification:
1758 * they are the same type; or
1759 * they are both pointers, and the pointed-to types are similar; or
1760 * they are both pointers to member of the same class, and the types of
1761 the pointed-to members are similar; or
1762 * they are both arrays of the same size or both arrays of unknown bound,
1763 and the array element types are similar. */
1765 if (same_type_ignoring_top_level_qualifiers_p (type1, type2))
1766 return true;
1768 if ((TYPE_PTR_P (type1) && TYPE_PTR_P (type2))
1769 || (TYPE_PTRDATAMEM_P (type1) && TYPE_PTRDATAMEM_P (type2))
1770 || (TREE_CODE (type1) == ARRAY_TYPE && TREE_CODE (type2) == ARRAY_TYPE))
1771 return comp_ptr_ttypes_const (type1, type2, bounds_either);
1773 return false;
1776 /* Helper function for layout_compatible_type_p and
1777 is_corresponding_member_aggr. Advance to next members (NULL if
1778 no further ones) and return true if those members are still part of
1779 the common initial sequence. */
1781 bool
1782 next_common_initial_seqence (tree &memb1, tree &memb2)
1784 while (memb1)
1786 if (TREE_CODE (memb1) != FIELD_DECL
1787 || (DECL_FIELD_IS_BASE (memb1) && is_empty_field (memb1)))
1789 memb1 = DECL_CHAIN (memb1);
1790 continue;
1792 if (DECL_FIELD_IS_BASE (memb1))
1794 memb1 = TYPE_FIELDS (TREE_TYPE (memb1));
1795 continue;
1797 break;
1799 while (memb2)
1801 if (TREE_CODE (memb2) != FIELD_DECL
1802 || (DECL_FIELD_IS_BASE (memb2) && is_empty_field (memb2)))
1804 memb2 = DECL_CHAIN (memb2);
1805 continue;
1807 if (DECL_FIELD_IS_BASE (memb2))
1809 memb2 = TYPE_FIELDS (TREE_TYPE (memb2));
1810 continue;
1812 break;
1814 if (memb1 == NULL_TREE && memb2 == NULL_TREE)
1815 return true;
1816 if (memb1 == NULL_TREE || memb2 == NULL_TREE)
1817 return false;
1818 if (DECL_BIT_FIELD_TYPE (memb1))
1820 if (!DECL_BIT_FIELD_TYPE (memb2))
1821 return false;
1822 if (!layout_compatible_type_p (DECL_BIT_FIELD_TYPE (memb1),
1823 DECL_BIT_FIELD_TYPE (memb2)))
1824 return false;
1825 if (TYPE_PRECISION (TREE_TYPE (memb1))
1826 != TYPE_PRECISION (TREE_TYPE (memb2)))
1827 return false;
1829 else if (DECL_BIT_FIELD_TYPE (memb2))
1830 return false;
1831 else if (!layout_compatible_type_p (TREE_TYPE (memb1), TREE_TYPE (memb2)))
1832 return false;
1833 if ((!lookup_attribute ("no_unique_address", DECL_ATTRIBUTES (memb1)))
1834 != !lookup_attribute ("no_unique_address", DECL_ATTRIBUTES (memb2)))
1835 return false;
1836 if (!tree_int_cst_equal (bit_position (memb1), bit_position (memb2)))
1837 return false;
1838 return true;
1841 /* Return true if TYPE1 and TYPE2 are layout-compatible types. */
1843 bool
1844 layout_compatible_type_p (tree type1, tree type2)
1846 if (type1 == error_mark_node || type2 == error_mark_node)
1847 return false;
1848 if (type1 == type2)
1849 return true;
1850 if (TREE_CODE (type1) != TREE_CODE (type2))
1851 return false;
1853 type1 = cp_build_qualified_type (type1, TYPE_UNQUALIFIED);
1854 type2 = cp_build_qualified_type (type2, TYPE_UNQUALIFIED);
1856 if (TREE_CODE (type1) == ENUMERAL_TYPE)
1857 return (TYPE_ALIGN (type1) == TYPE_ALIGN (type2)
1858 && tree_int_cst_equal (TYPE_SIZE (type1), TYPE_SIZE (type2))
1859 && same_type_p (finish_underlying_type (type1),
1860 finish_underlying_type (type2)));
1862 if (CLASS_TYPE_P (type1)
1863 && std_layout_type_p (type1)
1864 && std_layout_type_p (type2)
1865 && TYPE_ALIGN (type1) == TYPE_ALIGN (type2)
1866 && tree_int_cst_equal (TYPE_SIZE (type1), TYPE_SIZE (type2)))
1868 tree field1 = TYPE_FIELDS (type1);
1869 tree field2 = TYPE_FIELDS (type2);
1870 if (TREE_CODE (type1) == RECORD_TYPE)
1872 while (1)
1874 if (!next_common_initial_seqence (field1, field2))
1875 return false;
1876 if (field1 == NULL_TREE)
1877 return true;
1878 field1 = DECL_CHAIN (field1);
1879 field2 = DECL_CHAIN (field2);
1882 /* Otherwise both types must be union types.
1883 The standard says:
1884 "Two standard-layout unions are layout-compatible if they have
1885 the same number of non-static data members and corresponding
1886 non-static data members (in any order) have layout-compatible
1887 types."
1888 but the code anticipates that bitfield vs. non-bitfield,
1889 different bitfield widths or presence/absence of
1890 [[no_unique_address]] should be checked as well. */
1891 auto_vec<tree, 16> vec;
1892 unsigned int count = 0;
1893 for (; field1; field1 = DECL_CHAIN (field1))
1894 if (TREE_CODE (field1) == FIELD_DECL)
1895 count++;
1896 for (; field2; field2 = DECL_CHAIN (field2))
1897 if (TREE_CODE (field2) == FIELD_DECL)
1898 vec.safe_push (field2);
1899 /* Discussions on core lean towards treating multiple union fields
1900 of the same type as the same field, so this might need changing
1901 in the future. */
1902 if (count != vec.length ())
1903 return false;
1904 for (field1 = TYPE_FIELDS (type1); field1; field1 = DECL_CHAIN (field1))
1906 if (TREE_CODE (field1) != FIELD_DECL)
1907 continue;
1908 unsigned int j;
1909 tree t1 = DECL_BIT_FIELD_TYPE (field1);
1910 if (t1 == NULL_TREE)
1911 t1 = TREE_TYPE (field1);
1912 FOR_EACH_VEC_ELT (vec, j, field2)
1914 tree t2 = DECL_BIT_FIELD_TYPE (field2);
1915 if (t2 == NULL_TREE)
1916 t2 = TREE_TYPE (field2);
1917 if (DECL_BIT_FIELD_TYPE (field1))
1919 if (!DECL_BIT_FIELD_TYPE (field2))
1920 continue;
1921 if (TYPE_PRECISION (TREE_TYPE (field1))
1922 != TYPE_PRECISION (TREE_TYPE (field2)))
1923 continue;
1925 else if (DECL_BIT_FIELD_TYPE (field2))
1926 continue;
1927 if (!layout_compatible_type_p (t1, t2))
1928 continue;
1929 if ((!lookup_attribute ("no_unique_address",
1930 DECL_ATTRIBUTES (field1)))
1931 != !lookup_attribute ("no_unique_address",
1932 DECL_ATTRIBUTES (field2)))
1933 continue;
1934 break;
1936 if (j == vec.length ())
1937 return false;
1938 vec.unordered_remove (j);
1940 return true;
1943 return same_type_p (type1, type2);
1946 /* Returns 1 if TYPE1 is at least as qualified as TYPE2. */
1948 bool
1949 at_least_as_qualified_p (const_tree type1, const_tree type2)
1951 int q1 = cp_type_quals (type1);
1952 int q2 = cp_type_quals (type2);
1954 /* All qualifiers for TYPE2 must also appear in TYPE1. */
1955 return (q1 & q2) == q2;
1958 /* Returns 1 if TYPE1 is more cv-qualified than TYPE2, -1 if TYPE2 is
1959 more cv-qualified that TYPE1, and 0 otherwise. */
1962 comp_cv_qualification (int q1, int q2)
1964 if (q1 == q2)
1965 return 0;
1967 if ((q1 & q2) == q2)
1968 return 1;
1969 else if ((q1 & q2) == q1)
1970 return -1;
1972 return 0;
1976 comp_cv_qualification (const_tree type1, const_tree type2)
1978 int q1 = cp_type_quals (type1);
1979 int q2 = cp_type_quals (type2);
1980 return comp_cv_qualification (q1, q2);
1983 /* Returns 1 if the cv-qualification signature of TYPE1 is a proper
1984 subset of the cv-qualification signature of TYPE2, and the types
1985 are similar. Returns -1 if the other way 'round, and 0 otherwise. */
1988 comp_cv_qual_signature (tree type1, tree type2)
1990 if (comp_ptr_ttypes_real (type2, type1, -1))
1991 return 1;
1992 else if (comp_ptr_ttypes_real (type1, type2, -1))
1993 return -1;
1994 else
1995 return 0;
1998 /* Subroutines of `comptypes'. */
2000 /* Return true if two parameter type lists PARMS1 and PARMS2 are
2001 equivalent in the sense that functions with those parameter types
2002 can have equivalent types. The two lists must be equivalent,
2003 element by element. */
2005 bool
2006 compparms (const_tree parms1, const_tree parms2)
2008 const_tree t1, t2;
2010 /* An unspecified parmlist matches any specified parmlist
2011 whose argument types don't need default promotions. */
2013 for (t1 = parms1, t2 = parms2;
2014 t1 || t2;
2015 t1 = TREE_CHAIN (t1), t2 = TREE_CHAIN (t2))
2017 /* If one parmlist is shorter than the other,
2018 they fail to match. */
2019 if (!t1 || !t2)
2020 return false;
2021 if (!same_type_p (TREE_VALUE (t1), TREE_VALUE (t2)))
2022 return false;
2024 return true;
2028 /* Process a sizeof or alignof expression where the operand is a type.
2029 STD_ALIGNOF indicates whether an alignof has C++11 (minimum alignment)
2030 or GNU (preferred alignment) semantics; it is ignored if OP is
2031 SIZEOF_EXPR. */
2033 tree
2034 cxx_sizeof_or_alignof_type (location_t loc, tree type, enum tree_code op,
2035 bool std_alignof, bool complain)
2037 gcc_assert (op == SIZEOF_EXPR || op == ALIGNOF_EXPR);
2038 if (type == error_mark_node)
2039 return error_mark_node;
2041 type = non_reference (type);
2042 if (TREE_CODE (type) == METHOD_TYPE)
2044 if (complain)
2046 pedwarn (loc, OPT_Wpointer_arith,
2047 "invalid application of %qs to a member function",
2048 OVL_OP_INFO (false, op)->name);
2049 return size_one_node;
2051 else
2052 return error_mark_node;
2054 else if (VOID_TYPE_P (type) && std_alignof)
2056 if (complain)
2057 error_at (loc, "invalid application of %qs to a void type",
2058 OVL_OP_INFO (false, op)->name);
2059 return error_mark_node;
2062 bool dependent_p = dependent_type_p (type);
2063 if (!dependent_p)
2064 complete_type (type);
2065 if (dependent_p
2066 /* VLA types will have a non-constant size. In the body of an
2067 uninstantiated template, we don't need to try to compute the
2068 value, because the sizeof expression is not an integral
2069 constant expression in that case. And, if we do try to
2070 compute the value, we'll likely end up with SAVE_EXPRs, which
2071 the template substitution machinery does not expect to see. */
2072 || (processing_template_decl
2073 && COMPLETE_TYPE_P (type)
2074 && TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST))
2076 tree value = build_min (op, size_type_node, type);
2077 TREE_READONLY (value) = 1;
2078 if (op == ALIGNOF_EXPR && std_alignof)
2079 ALIGNOF_EXPR_STD_P (value) = true;
2080 SET_EXPR_LOCATION (value, loc);
2081 return value;
2084 return c_sizeof_or_alignof_type (loc, complete_type (type),
2085 op == SIZEOF_EXPR, std_alignof,
2086 complain);
2089 /* Return the size of the type, without producing any warnings for
2090 types whose size cannot be taken. This routine should be used only
2091 in some other routine that has already produced a diagnostic about
2092 using the size of such a type. */
2093 tree
2094 cxx_sizeof_nowarn (tree type)
2096 if (TREE_CODE (type) == FUNCTION_TYPE
2097 || VOID_TYPE_P (type)
2098 || TREE_CODE (type) == ERROR_MARK)
2099 return size_one_node;
2100 else if (!COMPLETE_TYPE_P (type))
2101 return size_zero_node;
2102 else
2103 return cxx_sizeof_or_alignof_type (input_location, type,
2104 SIZEOF_EXPR, false, false);
2107 /* Process a sizeof expression where the operand is an expression. */
2109 static tree
2110 cxx_sizeof_expr (location_t loc, tree e, tsubst_flags_t complain)
2112 if (e == error_mark_node)
2113 return error_mark_node;
2115 if (instantiation_dependent_uneval_expression_p (e))
2117 e = build_min (SIZEOF_EXPR, size_type_node, e);
2118 TREE_SIDE_EFFECTS (e) = 0;
2119 TREE_READONLY (e) = 1;
2120 SET_EXPR_LOCATION (e, loc);
2122 return e;
2125 location_t e_loc = cp_expr_loc_or_loc (e, loc);
2126 STRIP_ANY_LOCATION_WRAPPER (e);
2128 /* To get the size of a static data member declared as an array of
2129 unknown bound, we need to instantiate it. */
2130 if (VAR_P (e)
2131 && VAR_HAD_UNKNOWN_BOUND (e)
2132 && DECL_TEMPLATE_INSTANTIATION (e))
2133 instantiate_decl (e, /*defer_ok*/true, /*expl_inst_mem*/false);
2135 if (TREE_CODE (e) == PARM_DECL
2136 && DECL_ARRAY_PARAMETER_P (e)
2137 && (complain & tf_warning))
2139 auto_diagnostic_group d;
2140 if (warning_at (e_loc, OPT_Wsizeof_array_argument,
2141 "%<sizeof%> on array function parameter %qE "
2142 "will return size of %qT", e, TREE_TYPE (e)))
2143 inform (DECL_SOURCE_LOCATION (e), "declared here");
2146 e = mark_type_use (e);
2148 if (bitfield_p (e))
2150 if (complain & tf_error)
2151 error_at (e_loc,
2152 "invalid application of %<sizeof%> to a bit-field");
2153 else
2154 return error_mark_node;
2155 e = char_type_node;
2157 else if (is_overloaded_fn (e))
2159 if (complain & tf_error)
2160 permerror (e_loc, "ISO C++ forbids applying %<sizeof%> to "
2161 "an expression of function type");
2162 else
2163 return error_mark_node;
2164 e = char_type_node;
2166 else if (type_unknown_p (e))
2168 if (complain & tf_error)
2169 cxx_incomplete_type_error (e_loc, e, TREE_TYPE (e));
2170 else
2171 return error_mark_node;
2172 e = char_type_node;
2174 else
2175 e = TREE_TYPE (e);
2177 return cxx_sizeof_or_alignof_type (loc, e, SIZEOF_EXPR, false,
2178 complain & tf_error);
2181 /* Implement the __alignof keyword: Return the minimum required
2182 alignment of E, measured in bytes. For VAR_DECL's and
2183 FIELD_DECL's return DECL_ALIGN (which can be set from an
2184 "aligned" __attribute__ specification). STD_ALIGNOF acts
2185 like in cxx_sizeof_or_alignof_type. */
2187 static tree
2188 cxx_alignof_expr (location_t loc, tree e, bool std_alignof,
2189 tsubst_flags_t complain)
2191 tree t;
2193 if (e == error_mark_node)
2194 return error_mark_node;
2196 if (processing_template_decl)
2198 e = build_min (ALIGNOF_EXPR, size_type_node, e);
2199 TREE_SIDE_EFFECTS (e) = 0;
2200 TREE_READONLY (e) = 1;
2201 SET_EXPR_LOCATION (e, loc);
2202 ALIGNOF_EXPR_STD_P (e) = std_alignof;
2204 return e;
2207 location_t e_loc = cp_expr_loc_or_loc (e, loc);
2208 STRIP_ANY_LOCATION_WRAPPER (e);
2210 e = mark_type_use (e);
2212 if (!verify_type_context (loc, TCTX_ALIGNOF, TREE_TYPE (e),
2213 !(complain & tf_error)))
2215 if (!(complain & tf_error))
2216 return error_mark_node;
2217 t = size_one_node;
2219 else if (VAR_P (e))
2220 t = size_int (DECL_ALIGN_UNIT (e));
2221 else if (bitfield_p (e))
2223 if (complain & tf_error)
2224 error_at (e_loc,
2225 "invalid application of %<__alignof%> to a bit-field");
2226 else
2227 return error_mark_node;
2228 t = size_one_node;
2230 else if (TREE_CODE (e) == COMPONENT_REF
2231 && TREE_CODE (TREE_OPERAND (e, 1)) == FIELD_DECL)
2232 t = size_int (DECL_ALIGN_UNIT (TREE_OPERAND (e, 1)));
2233 else if (is_overloaded_fn (e))
2235 if (complain & tf_error)
2236 permerror (e_loc, "ISO C++ forbids applying %<__alignof%> to "
2237 "an expression of function type");
2238 else
2239 return error_mark_node;
2240 if (TREE_CODE (e) == FUNCTION_DECL)
2241 t = size_int (DECL_ALIGN_UNIT (e));
2242 else
2243 t = size_one_node;
2245 else if (type_unknown_p (e))
2247 if (complain & tf_error)
2248 cxx_incomplete_type_error (e_loc, e, TREE_TYPE (e));
2249 else
2250 return error_mark_node;
2251 t = size_one_node;
2253 else
2254 return cxx_sizeof_or_alignof_type (loc, TREE_TYPE (e),
2255 ALIGNOF_EXPR, std_alignof,
2256 complain & tf_error);
2258 return fold_convert_loc (loc, size_type_node, t);
2261 /* Process a sizeof or alignof expression E with code OP where the operand
2262 is an expression. STD_ALIGNOF acts like in cxx_sizeof_or_alignof_type. */
2264 tree
2265 cxx_sizeof_or_alignof_expr (location_t loc, tree e, enum tree_code op,
2266 bool std_alignof, bool complain)
2268 gcc_assert (op == SIZEOF_EXPR || op == ALIGNOF_EXPR);
2269 if (op == SIZEOF_EXPR)
2270 return cxx_sizeof_expr (loc, e, complain? tf_warning_or_error : tf_none);
2271 else
2272 return cxx_alignof_expr (loc, e, std_alignof,
2273 complain? tf_warning_or_error : tf_none);
2276 /* Build a representation of an expression 'alignas(E).' Return the
2277 folded integer value of E if it is an integral constant expression
2278 that resolves to a valid alignment. If E depends on a template
2279 parameter, return a syntactic representation tree of kind
2280 ALIGNOF_EXPR. Otherwise, return an error_mark_node if the
2281 expression is ill formed, or NULL_TREE if E is NULL_TREE. */
2283 tree
2284 cxx_alignas_expr (tree e)
2286 if (e == NULL_TREE || e == error_mark_node
2287 || (!TYPE_P (e) && !require_potential_rvalue_constant_expression (e)))
2288 return e;
2290 if (TYPE_P (e))
2291 /* [dcl.align]/3:
2293 When the alignment-specifier is of the form
2294 alignas(type-id), it shall have the same effect as
2295 alignas(alignof(type-id)). */
2297 return cxx_sizeof_or_alignof_type (input_location,
2298 e, ALIGNOF_EXPR,
2299 /*std_alignof=*/true,
2300 /*complain=*/true);
2302 /* If we reach this point, it means the alignas expression if of
2303 the form "alignas(assignment-expression)", so we should follow
2304 what is stated by [dcl.align]/2. */
2306 if (value_dependent_expression_p (e))
2307 /* Leave value-dependent expression alone for now. */
2308 return e;
2310 e = instantiate_non_dependent_expr (e);
2311 e = mark_rvalue_use (e);
2313 /* [dcl.align]/2 says:
2315 the assignment-expression shall be an integral constant
2316 expression. */
2318 if (!INTEGRAL_OR_UNSCOPED_ENUMERATION_TYPE_P (TREE_TYPE (e)))
2320 error ("%<alignas%> argument has non-integral type %qT", TREE_TYPE (e));
2321 return error_mark_node;
2324 return cxx_constant_value (e);
2328 /* EXPR is being used in a context that is not a function call.
2329 Enforce:
2331 [expr.ref]
2333 The expression can be used only as the left-hand operand of a
2334 member function call.
2336 [expr.mptr.operator]
2338 If the result of .* or ->* is a function, then that result can be
2339 used only as the operand for the function call operator ().
2341 by issuing an error message if appropriate. Returns true iff EXPR
2342 violates these rules. */
2344 bool
2345 invalid_nonstatic_memfn_p (location_t loc, tree expr, tsubst_flags_t complain)
2347 if (expr == NULL_TREE)
2348 return false;
2349 /* Don't enforce this in MS mode. */
2350 if (flag_ms_extensions)
2351 return false;
2352 if (is_overloaded_fn (expr) && !really_overloaded_fn (expr))
2353 expr = get_first_fn (expr);
2354 if (TREE_TYPE (expr)
2355 && DECL_NONSTATIC_MEMBER_FUNCTION_P (expr))
2357 if (complain & tf_error)
2359 if (DECL_P (expr))
2361 error_at (loc, "invalid use of non-static member function %qD",
2362 expr);
2363 inform (DECL_SOURCE_LOCATION (expr), "declared here");
2365 else
2366 error_at (loc, "invalid use of non-static member function of "
2367 "type %qT", TREE_TYPE (expr));
2369 return true;
2371 return false;
2374 /* If EXP is a reference to a bit-field, and the type of EXP does not
2375 match the declared type of the bit-field, return the declared type
2376 of the bit-field. Otherwise, return NULL_TREE. */
2378 tree
2379 is_bitfield_expr_with_lowered_type (const_tree exp)
2381 switch (TREE_CODE (exp))
2383 case COND_EXPR:
2384 if (!is_bitfield_expr_with_lowered_type (TREE_OPERAND (exp, 1)
2385 ? TREE_OPERAND (exp, 1)
2386 : TREE_OPERAND (exp, 0)))
2387 return NULL_TREE;
2388 return is_bitfield_expr_with_lowered_type (TREE_OPERAND (exp, 2));
2390 case COMPOUND_EXPR:
2391 return is_bitfield_expr_with_lowered_type (TREE_OPERAND (exp, 1));
2393 case MODIFY_EXPR:
2394 case SAVE_EXPR:
2395 case UNARY_PLUS_EXPR:
2396 case PREDECREMENT_EXPR:
2397 case PREINCREMENT_EXPR:
2398 case POSTDECREMENT_EXPR:
2399 case POSTINCREMENT_EXPR:
2400 case NEGATE_EXPR:
2401 case NON_LVALUE_EXPR:
2402 case BIT_NOT_EXPR:
2403 return is_bitfield_expr_with_lowered_type (TREE_OPERAND (exp, 0));
2405 case COMPONENT_REF:
2407 tree field;
2409 field = TREE_OPERAND (exp, 1);
2410 if (TREE_CODE (field) != FIELD_DECL || !DECL_BIT_FIELD_TYPE (field))
2411 return NULL_TREE;
2412 if (same_type_ignoring_top_level_qualifiers_p
2413 (TREE_TYPE (exp), DECL_BIT_FIELD_TYPE (field)))
2414 return NULL_TREE;
2415 return DECL_BIT_FIELD_TYPE (field);
2418 case VAR_DECL:
2419 if (DECL_HAS_VALUE_EXPR_P (exp))
2420 return is_bitfield_expr_with_lowered_type (DECL_VALUE_EXPR
2421 (CONST_CAST_TREE (exp)));
2422 return NULL_TREE;
2424 case VIEW_CONVERT_EXPR:
2425 if (location_wrapper_p (exp))
2426 return is_bitfield_expr_with_lowered_type (TREE_OPERAND (exp, 0));
2427 else
2428 return NULL_TREE;
2430 default:
2431 return NULL_TREE;
2435 /* Like is_bitfield_with_lowered_type, except that if EXP is not a
2436 bitfield with a lowered type, the type of EXP is returned, rather
2437 than NULL_TREE. */
2439 tree
2440 unlowered_expr_type (const_tree exp)
2442 tree type;
2443 tree etype = TREE_TYPE (exp);
2445 type = is_bitfield_expr_with_lowered_type (exp);
2446 if (type)
2447 type = cp_build_qualified_type (type, cp_type_quals (etype));
2448 else
2449 type = etype;
2451 return type;
2454 /* Perform the conversions in [expr] that apply when an lvalue appears
2455 in an rvalue context: the lvalue-to-rvalue, array-to-pointer, and
2456 function-to-pointer conversions. In addition, bitfield references are
2457 converted to their declared types. Note that this function does not perform
2458 the lvalue-to-rvalue conversion for class types. If you need that conversion
2459 for class types, then you probably need to use force_rvalue.
2461 Although the returned value is being used as an rvalue, this
2462 function does not wrap the returned expression in a
2463 NON_LVALUE_EXPR; the caller is expected to be mindful of the fact
2464 that the return value is no longer an lvalue. */
2466 tree
2467 decay_conversion (tree exp,
2468 tsubst_flags_t complain,
2469 bool reject_builtin /* = true */)
2471 tree type;
2472 enum tree_code code;
2473 location_t loc = cp_expr_loc_or_input_loc (exp);
2475 type = TREE_TYPE (exp);
2476 if (type == error_mark_node)
2477 return error_mark_node;
2479 exp = resolve_nondeduced_context_or_error (exp, complain);
2481 code = TREE_CODE (type);
2483 if (error_operand_p (exp))
2484 return error_mark_node;
2486 if (NULLPTR_TYPE_P (type) && !TREE_SIDE_EFFECTS (exp))
2488 mark_rvalue_use (exp, loc, reject_builtin);
2489 return nullptr_node;
2492 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
2493 Leave such NOP_EXPRs, since RHS is being used in non-lvalue context. */
2494 if (code == VOID_TYPE)
2496 if (complain & tf_error)
2497 error_at (loc, "void value not ignored as it ought to be");
2498 return error_mark_node;
2500 if (invalid_nonstatic_memfn_p (loc, exp, complain))
2501 return error_mark_node;
2502 if (code == FUNCTION_TYPE || is_overloaded_fn (exp))
2504 exp = mark_lvalue_use (exp);
2505 if (reject_builtin && reject_gcc_builtin (exp, loc))
2506 return error_mark_node;
2507 return cp_build_addr_expr (exp, complain);
2509 if (code == ARRAY_TYPE)
2511 tree adr;
2512 tree ptrtype;
2514 exp = mark_lvalue_use (exp);
2516 if (INDIRECT_REF_P (exp))
2517 return build_nop (build_pointer_type (TREE_TYPE (type)),
2518 TREE_OPERAND (exp, 0));
2520 if (TREE_CODE (exp) == COMPOUND_EXPR)
2522 tree op1 = decay_conversion (TREE_OPERAND (exp, 1), complain);
2523 if (op1 == error_mark_node)
2524 return error_mark_node;
2525 return build2 (COMPOUND_EXPR, TREE_TYPE (op1),
2526 TREE_OPERAND (exp, 0), op1);
2529 if (!obvalue_p (exp)
2530 && ! (TREE_CODE (exp) == CONSTRUCTOR && TREE_STATIC (exp)))
2532 if (complain & tf_error)
2533 error_at (loc, "invalid use of non-lvalue array");
2534 return error_mark_node;
2537 /* Don't let an array compound literal decay to a pointer. It can
2538 still be used to initialize an array or bind to a reference. */
2539 if (TREE_CODE (exp) == TARGET_EXPR)
2541 if (complain & tf_error)
2542 error_at (loc, "taking address of temporary array");
2543 return error_mark_node;
2546 ptrtype = build_pointer_type (TREE_TYPE (type));
2548 if (VAR_P (exp))
2550 if (!cxx_mark_addressable (exp))
2551 return error_mark_node;
2552 adr = build_nop (ptrtype, build_address (exp));
2553 return adr;
2555 /* This way is better for a COMPONENT_REF since it can
2556 simplify the offset for a component. */
2557 adr = cp_build_addr_expr (exp, complain);
2558 return cp_convert (ptrtype, adr, complain);
2561 /* Otherwise, it's the lvalue-to-rvalue conversion. */
2562 exp = mark_rvalue_use (exp, loc, reject_builtin);
2564 /* If a bitfield is used in a context where integral promotion
2565 applies, then the caller is expected to have used
2566 default_conversion. That function promotes bitfields correctly
2567 before calling this function. At this point, if we have a
2568 bitfield referenced, we may assume that is not subject to
2569 promotion, and that, therefore, the type of the resulting rvalue
2570 is the declared type of the bitfield. */
2571 exp = convert_bitfield_to_declared_type (exp);
2573 /* We do not call rvalue() here because we do not want to wrap EXP
2574 in a NON_LVALUE_EXPR. */
2576 /* [basic.lval]
2578 Non-class rvalues always have cv-unqualified types. */
2579 type = TREE_TYPE (exp);
2580 if (!CLASS_TYPE_P (type) && cv_qualified_p (type))
2581 exp = build_nop (cv_unqualified (type), exp);
2583 if (!complete_type_or_maybe_complain (type, exp, complain))
2584 return error_mark_node;
2586 return exp;
2589 /* Perform preparatory conversions, as part of the "usual arithmetic
2590 conversions". In particular, as per [expr]:
2592 Whenever an lvalue expression appears as an operand of an
2593 operator that expects the rvalue for that operand, the
2594 lvalue-to-rvalue, array-to-pointer, or function-to-pointer
2595 standard conversions are applied to convert the expression to an
2596 rvalue.
2598 In addition, we perform integral promotions here, as those are
2599 applied to both operands to a binary operator before determining
2600 what additional conversions should apply. */
2602 static tree
2603 cp_default_conversion (tree exp, tsubst_flags_t complain)
2605 /* Check for target-specific promotions. */
2606 tree promoted_type = targetm.promoted_type (TREE_TYPE (exp));
2607 if (promoted_type)
2608 exp = cp_convert (promoted_type, exp, complain);
2609 /* Perform the integral promotions first so that bitfield
2610 expressions (which may promote to "int", even if the bitfield is
2611 declared "unsigned") are promoted correctly. */
2612 else if (INTEGRAL_OR_UNSCOPED_ENUMERATION_TYPE_P (TREE_TYPE (exp)))
2613 exp = cp_perform_integral_promotions (exp, complain);
2614 /* Perform the other conversions. */
2615 exp = decay_conversion (exp, complain);
2617 return exp;
2620 /* C version. */
2622 tree
2623 default_conversion (tree exp)
2625 return cp_default_conversion (exp, tf_warning_or_error);
2628 /* EXPR is an expression with an integral or enumeration type.
2629 Perform the integral promotions in [conv.prom], and return the
2630 converted value. */
2632 tree
2633 cp_perform_integral_promotions (tree expr, tsubst_flags_t complain)
2635 tree type;
2636 tree promoted_type;
2638 expr = mark_rvalue_use (expr);
2639 if (error_operand_p (expr))
2640 return error_mark_node;
2642 type = TREE_TYPE (expr);
2644 /* [conv.prom]
2646 A prvalue for an integral bit-field (11.3.9) can be converted to a prvalue
2647 of type int if int can represent all the values of the bit-field;
2648 otherwise, it can be converted to unsigned int if unsigned int can
2649 represent all the values of the bit-field. If the bit-field is larger yet,
2650 no integral promotion applies to it. If the bit-field has an enumerated
2651 type, it is treated as any other value of that type for promotion
2652 purposes. */
2653 tree bitfield_type = is_bitfield_expr_with_lowered_type (expr);
2654 if (bitfield_type
2655 && (TREE_CODE (bitfield_type) == ENUMERAL_TYPE
2656 || TYPE_PRECISION (type) > TYPE_PRECISION (integer_type_node)))
2657 type = bitfield_type;
2659 gcc_assert (INTEGRAL_OR_ENUMERATION_TYPE_P (type));
2660 /* Scoped enums don't promote. */
2661 if (SCOPED_ENUM_P (type))
2662 return expr;
2663 promoted_type = type_promotes_to (type);
2664 if (type != promoted_type)
2665 expr = cp_convert (promoted_type, expr, complain);
2666 else if (bitfield_type && bitfield_type != type)
2667 /* Prevent decay_conversion from converting to bitfield_type. */
2668 expr = build_nop (type, expr);
2669 return expr;
2672 /* C version. */
2674 tree
2675 perform_integral_promotions (tree expr)
2677 return cp_perform_integral_promotions (expr, tf_warning_or_error);
2680 /* Returns nonzero iff exp is a STRING_CST or the result of applying
2681 decay_conversion to one. */
2684 string_conv_p (const_tree totype, const_tree exp, int warn)
2686 tree t;
2688 if (!TYPE_PTR_P (totype))
2689 return 0;
2691 t = TREE_TYPE (totype);
2692 if (!same_type_p (t, char_type_node)
2693 && !same_type_p (t, char8_type_node)
2694 && !same_type_p (t, char16_type_node)
2695 && !same_type_p (t, char32_type_node)
2696 && !same_type_p (t, wchar_type_node))
2697 return 0;
2699 location_t loc = EXPR_LOC_OR_LOC (exp, input_location);
2701 STRIP_ANY_LOCATION_WRAPPER (exp);
2703 if (TREE_CODE (exp) == STRING_CST)
2705 /* Make sure that we don't try to convert between char and wide chars. */
2706 if (!same_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (exp))), t))
2707 return 0;
2709 else
2711 /* Is this a string constant which has decayed to 'const char *'? */
2712 t = build_pointer_type (cp_build_qualified_type (t, TYPE_QUAL_CONST));
2713 if (!same_type_p (TREE_TYPE (exp), t))
2714 return 0;
2715 STRIP_NOPS (exp);
2716 if (TREE_CODE (exp) != ADDR_EXPR
2717 || TREE_CODE (TREE_OPERAND (exp, 0)) != STRING_CST)
2718 return 0;
2720 if (warn)
2722 if (cxx_dialect >= cxx11)
2723 pedwarn (loc, OPT_Wwrite_strings,
2724 "ISO C++ forbids converting a string constant to %qT",
2725 totype);
2726 else
2727 warning_at (loc, OPT_Wwrite_strings,
2728 "deprecated conversion from string constant to %qT",
2729 totype);
2732 return 1;
2735 /* Given a COND_EXPR, MIN_EXPR, or MAX_EXPR in T, return it in a form that we
2736 can, for example, use as an lvalue. This code used to be in
2737 unary_complex_lvalue, but we needed it to deal with `a = (d == c) ? b : c'
2738 expressions, where we're dealing with aggregates. But now it's again only
2739 called from unary_complex_lvalue. The case (in particular) that led to
2740 this was with CODE == ADDR_EXPR, since it's not an lvalue when we'd
2741 get it there. */
2743 static tree
2744 rationalize_conditional_expr (enum tree_code code, tree t,
2745 tsubst_flags_t complain)
2747 location_t loc = cp_expr_loc_or_input_loc (t);
2749 /* For MIN_EXPR or MAX_EXPR, fold-const.cc has arranged things so that
2750 the first operand is always the one to be used if both operands
2751 are equal, so we know what conditional expression this used to be. */
2752 if (TREE_CODE (t) == MIN_EXPR || TREE_CODE (t) == MAX_EXPR)
2754 tree op0 = TREE_OPERAND (t, 0);
2755 tree op1 = TREE_OPERAND (t, 1);
2757 /* The following code is incorrect if either operand side-effects. */
2758 gcc_assert (!TREE_SIDE_EFFECTS (op0)
2759 && !TREE_SIDE_EFFECTS (op1));
2760 return
2761 build_conditional_expr (loc,
2762 build_x_binary_op (loc,
2763 (TREE_CODE (t) == MIN_EXPR
2764 ? LE_EXPR : GE_EXPR),
2765 op0, TREE_CODE (op0),
2766 op1, TREE_CODE (op1),
2767 NULL_TREE,
2768 /*overload=*/NULL,
2769 complain),
2770 cp_build_unary_op (code, op0, false, complain),
2771 cp_build_unary_op (code, op1, false, complain),
2772 complain);
2775 tree op1 = TREE_OPERAND (t, 1);
2776 if (TREE_CODE (op1) != THROW_EXPR)
2777 op1 = cp_build_unary_op (code, op1, false, complain);
2778 tree op2 = TREE_OPERAND (t, 2);
2779 if (TREE_CODE (op2) != THROW_EXPR)
2780 op2 = cp_build_unary_op (code, op2, false, complain);
2782 return
2783 build_conditional_expr (loc, TREE_OPERAND (t, 0), op1, op2, complain);
2786 /* Given the TYPE of an anonymous union field inside T, return the
2787 FIELD_DECL for the field. If not found return NULL_TREE. Because
2788 anonymous unions can nest, we must also search all anonymous unions
2789 that are directly reachable. */
2791 tree
2792 lookup_anon_field (tree, tree type)
2794 tree field;
2796 type = TYPE_MAIN_VARIANT (type);
2797 field = ANON_AGGR_TYPE_FIELD (type);
2798 gcc_assert (field);
2799 return field;
2802 /* Build an expression representing OBJECT.MEMBER. OBJECT is an
2803 expression; MEMBER is a DECL or baselink. If ACCESS_PATH is
2804 non-NULL, it indicates the path to the base used to name MEMBER.
2805 If PRESERVE_REFERENCE is true, the expression returned will have
2806 REFERENCE_TYPE if the MEMBER does. Otherwise, the expression
2807 returned will have the type referred to by the reference.
2809 This function does not perform access control; that is either done
2810 earlier by the parser when the name of MEMBER is resolved to MEMBER
2811 itself, or later when overload resolution selects one of the
2812 functions indicated by MEMBER. */
2814 tree
2815 build_class_member_access_expr (cp_expr object, tree member,
2816 tree access_path, bool preserve_reference,
2817 tsubst_flags_t complain)
2819 tree object_type;
2820 tree member_scope;
2821 tree result = NULL_TREE;
2822 tree using_decl = NULL_TREE;
2824 if (error_operand_p (object) || error_operand_p (member))
2825 return error_mark_node;
2827 gcc_assert (DECL_P (member) || BASELINK_P (member));
2829 /* [expr.ref]
2831 The type of the first expression shall be "class object" (of a
2832 complete type). */
2833 object_type = TREE_TYPE (object);
2834 if (!currently_open_class (object_type)
2835 && !complete_type_or_maybe_complain (object_type, object, complain))
2836 return error_mark_node;
2837 if (!CLASS_TYPE_P (object_type))
2839 if (complain & tf_error)
2841 if (INDIRECT_TYPE_P (object_type)
2842 && CLASS_TYPE_P (TREE_TYPE (object_type)))
2843 error ("request for member %qD in %qE, which is of pointer "
2844 "type %qT (maybe you meant to use %<->%> ?)",
2845 member, object.get_value (), object_type);
2846 else
2847 error ("request for member %qD in %qE, which is of non-class "
2848 "type %qT", member, object.get_value (), object_type);
2850 return error_mark_node;
2853 /* The standard does not seem to actually say that MEMBER must be a
2854 member of OBJECT_TYPE. However, that is clearly what is
2855 intended. */
2856 if (DECL_P (member))
2858 member_scope = DECL_CLASS_CONTEXT (member);
2859 if (!mark_used (member, complain) && !(complain & tf_error))
2860 return error_mark_node;
2862 if (TREE_UNAVAILABLE (member))
2863 error_unavailable_use (member, NULL_TREE);
2864 else if (TREE_DEPRECATED (member))
2865 warn_deprecated_use (member, NULL_TREE);
2867 else
2868 member_scope = BINFO_TYPE (BASELINK_ACCESS_BINFO (member));
2869 /* If MEMBER is from an anonymous aggregate, MEMBER_SCOPE will
2870 presently be the anonymous union. Go outwards until we find a
2871 type related to OBJECT_TYPE. */
2872 while ((ANON_AGGR_TYPE_P (member_scope) || UNSCOPED_ENUM_P (member_scope))
2873 && !same_type_ignoring_top_level_qualifiers_p (member_scope,
2874 object_type))
2875 member_scope = TYPE_CONTEXT (member_scope);
2876 if (!member_scope || !DERIVED_FROM_P (member_scope, object_type))
2878 if (complain & tf_error)
2880 if (TREE_CODE (member) == FIELD_DECL)
2881 error ("invalid use of non-static data member %qE", member);
2882 else
2883 error ("%qD is not a member of %qT", member, object_type);
2885 return error_mark_node;
2888 /* Transform `(a, b).x' into `(*(a, &b)).x', `(a ? b : c).x' into
2889 `(*(a ? &b : &c)).x', and so on. A COND_EXPR is only an lvalue
2890 in the front end; only _DECLs and _REFs are lvalues in the back end. */
2891 if (tree temp = unary_complex_lvalue (ADDR_EXPR, object))
2893 temp = cp_build_fold_indirect_ref (temp);
2894 if (!lvalue_p (object) && lvalue_p (temp))
2895 /* Preserve rvalueness. */
2896 temp = move (temp);
2897 object = temp;
2900 /* In [expr.ref], there is an explicit list of the valid choices for
2901 MEMBER. We check for each of those cases here. */
2902 if (VAR_P (member))
2904 /* A static data member. */
2905 result = member;
2906 mark_exp_read (object);
2908 if (tree wrap = maybe_get_tls_wrapper_call (result))
2909 /* Replace an evaluated use of the thread_local variable with
2910 a call to its wrapper. */
2911 result = wrap;
2913 /* If OBJECT has side-effects, they are supposed to occur. */
2914 if (TREE_SIDE_EFFECTS (object))
2915 result = build2 (COMPOUND_EXPR, TREE_TYPE (result), object, result);
2917 else if (TREE_CODE (member) == FIELD_DECL)
2919 /* A non-static data member. */
2920 bool null_object_p;
2921 int type_quals;
2922 tree member_type;
2924 if (INDIRECT_REF_P (object))
2925 null_object_p =
2926 integer_zerop (tree_strip_nop_conversions (TREE_OPERAND (object, 0)));
2927 else
2928 null_object_p = false;
2930 /* Convert OBJECT to the type of MEMBER. */
2931 if (!same_type_p (TYPE_MAIN_VARIANT (object_type),
2932 TYPE_MAIN_VARIANT (member_scope)))
2934 tree binfo;
2935 base_kind kind;
2937 /* We didn't complain above about a currently open class, but now we
2938 must: we don't know how to refer to a base member before layout is
2939 complete. But still don't complain in a template. */
2940 if (!cp_unevaluated_operand
2941 && !dependent_type_p (object_type)
2942 && !complete_type_or_maybe_complain (object_type, object,
2943 complain))
2944 return error_mark_node;
2946 binfo = lookup_base (access_path ? access_path : object_type,
2947 member_scope, ba_unique, &kind, complain);
2948 if (binfo == error_mark_node)
2949 return error_mark_node;
2951 /* It is invalid to try to get to a virtual base of a
2952 NULL object. The most common cause is invalid use of
2953 offsetof macro. */
2954 if (null_object_p && kind == bk_via_virtual)
2956 if (complain & tf_error)
2958 error ("invalid access to non-static data member %qD in "
2959 "virtual base of NULL object", member);
2961 return error_mark_node;
2964 /* Convert to the base. */
2965 object = build_base_path (PLUS_EXPR, object, binfo,
2966 /*nonnull=*/1, complain);
2967 /* If we found the base successfully then we should be able
2968 to convert to it successfully. */
2969 gcc_assert (object != error_mark_node);
2972 /* If MEMBER is from an anonymous aggregate, we have converted
2973 OBJECT so that it refers to the class containing the
2974 anonymous union. Generate a reference to the anonymous union
2975 itself, and recur to find MEMBER. */
2976 if (ANON_AGGR_TYPE_P (DECL_CONTEXT (member))
2977 /* When this code is called from build_field_call, the
2978 object already has the type of the anonymous union.
2979 That is because the COMPONENT_REF was already
2980 constructed, and was then disassembled before calling
2981 build_field_call. After the function-call code is
2982 cleaned up, this waste can be eliminated. */
2983 && (!same_type_ignoring_top_level_qualifiers_p
2984 (TREE_TYPE (object), DECL_CONTEXT (member))))
2986 tree anonymous_union;
2988 anonymous_union = lookup_anon_field (TREE_TYPE (object),
2989 DECL_CONTEXT (member));
2990 object = build_class_member_access_expr (object,
2991 anonymous_union,
2992 /*access_path=*/NULL_TREE,
2993 preserve_reference,
2994 complain);
2997 /* Compute the type of the field, as described in [expr.ref]. */
2998 type_quals = TYPE_UNQUALIFIED;
2999 member_type = TREE_TYPE (member);
3000 if (!TYPE_REF_P (member_type))
3002 type_quals = (cp_type_quals (member_type)
3003 | cp_type_quals (object_type));
3005 /* A field is const (volatile) if the enclosing object, or the
3006 field itself, is const (volatile). But, a mutable field is
3007 not const, even within a const object. */
3008 if (DECL_MUTABLE_P (member))
3009 type_quals &= ~TYPE_QUAL_CONST;
3010 member_type = cp_build_qualified_type (member_type, type_quals);
3013 result = build3_loc (input_location, COMPONENT_REF, member_type,
3014 object, member, NULL_TREE);
3016 /* Mark the expression const or volatile, as appropriate. Even
3017 though we've dealt with the type above, we still have to mark the
3018 expression itself. */
3019 if (type_quals & TYPE_QUAL_CONST)
3020 TREE_READONLY (result) = 1;
3021 if (type_quals & TYPE_QUAL_VOLATILE)
3022 TREE_THIS_VOLATILE (result) = 1;
3024 else if (BASELINK_P (member))
3026 /* The member is a (possibly overloaded) member function. */
3027 tree functions;
3028 tree type;
3030 /* If the MEMBER is exactly one static member function, then we
3031 know the type of the expression. Otherwise, we must wait
3032 until overload resolution has been performed. */
3033 functions = BASELINK_FUNCTIONS (member);
3034 if (TREE_CODE (functions) == FUNCTION_DECL
3035 && DECL_STATIC_FUNCTION_P (functions))
3036 type = TREE_TYPE (functions);
3037 else
3038 type = unknown_type_node;
3039 /* Note that we do not convert OBJECT to the BASELINK_BINFO
3040 base. That will happen when the function is called. */
3041 result = build3_loc (input_location, COMPONENT_REF, type, object, member,
3042 NULL_TREE);
3044 else if (TREE_CODE (member) == CONST_DECL)
3046 /* The member is an enumerator. */
3047 result = member;
3048 /* If OBJECT has side-effects, they are supposed to occur. */
3049 if (TREE_SIDE_EFFECTS (object))
3050 result = build2 (COMPOUND_EXPR, TREE_TYPE (result),
3051 object, result);
3053 else if ((using_decl = strip_using_decl (member)) != member)
3054 result = build_class_member_access_expr (object,
3055 using_decl,
3056 access_path, preserve_reference,
3057 complain);
3058 else
3060 if (complain & tf_error)
3061 error ("invalid use of %qD", member);
3062 return error_mark_node;
3065 if (!preserve_reference)
3066 /* [expr.ref]
3068 If E2 is declared to have type "reference to T", then ... the
3069 type of E1.E2 is T. */
3070 result = convert_from_reference (result);
3072 return result;
3075 /* Return the destructor denoted by OBJECT.SCOPE::DTOR_NAME, or, if
3076 SCOPE is NULL, by OBJECT.DTOR_NAME, where DTOR_NAME is ~type. */
3078 tree
3079 lookup_destructor (tree object, tree scope, tree dtor_name,
3080 tsubst_flags_t complain)
3082 tree object_type = TREE_TYPE (object);
3083 tree dtor_type = TREE_OPERAND (dtor_name, 0);
3084 tree expr;
3086 /* We've already complained about this destructor. */
3087 if (dtor_type == error_mark_node)
3088 return error_mark_node;
3090 if (scope && !check_dtor_name (scope, dtor_type))
3092 if (complain & tf_error)
3093 error ("qualified type %qT does not match destructor name ~%qT",
3094 scope, dtor_type);
3095 return error_mark_node;
3097 if (is_auto (dtor_type))
3098 dtor_type = object_type;
3099 else if (identifier_p (dtor_type))
3101 /* In a template, names we can't find a match for are still accepted
3102 destructor names, and we check them here. */
3103 if (check_dtor_name (object_type, dtor_type))
3104 dtor_type = object_type;
3105 else
3107 if (complain & tf_error)
3108 error ("object type %qT does not match destructor name ~%qT",
3109 object_type, dtor_type);
3110 return error_mark_node;
3114 else if (!DERIVED_FROM_P (dtor_type, TYPE_MAIN_VARIANT (object_type)))
3116 if (complain & tf_error)
3117 error ("the type being destroyed is %qT, but the destructor "
3118 "refers to %qT", TYPE_MAIN_VARIANT (object_type), dtor_type);
3119 return error_mark_node;
3121 expr = lookup_member (dtor_type, complete_dtor_identifier,
3122 /*protect=*/1, /*want_type=*/false,
3123 tf_warning_or_error);
3124 if (!expr)
3126 if (complain & tf_error)
3127 cxx_incomplete_type_error (dtor_name, dtor_type);
3128 return error_mark_node;
3130 expr = (adjust_result_of_qualified_name_lookup
3131 (expr, dtor_type, object_type));
3132 if (scope == NULL_TREE)
3133 /* We need to call adjust_result_of_qualified_name_lookup in case the
3134 destructor names a base class, but we unset BASELINK_QUALIFIED_P so
3135 that we still get virtual function binding. */
3136 BASELINK_QUALIFIED_P (expr) = false;
3137 return expr;
3140 /* An expression of the form "A::template B" has been resolved to
3141 DECL. Issue a diagnostic if B is not a template or template
3142 specialization. */
3144 void
3145 check_template_keyword (tree decl)
3147 /* The standard says:
3149 [temp.names]
3151 If a name prefixed by the keyword template is not a member
3152 template, the program is ill-formed.
3154 DR 228 removed the restriction that the template be a member
3155 template.
3157 DR 96, if accepted would add the further restriction that explicit
3158 template arguments must be provided if the template keyword is
3159 used, but, as of 2005-10-16, that DR is still in "drafting". If
3160 this DR is accepted, then the semantic checks here can be
3161 simplified, as the entity named must in fact be a template
3162 specialization, rather than, as at present, a set of overloaded
3163 functions containing at least one template function. */
3164 if (TREE_CODE (decl) != TEMPLATE_DECL
3165 && TREE_CODE (decl) != TEMPLATE_ID_EXPR)
3167 if (VAR_P (decl))
3169 if (DECL_USE_TEMPLATE (decl)
3170 && PRIMARY_TEMPLATE_P (DECL_TI_TEMPLATE (decl)))
3172 else
3173 permerror (input_location, "%qD is not a template", decl);
3175 else if (!is_overloaded_fn (decl))
3176 permerror (input_location, "%qD is not a template", decl);
3177 else
3179 bool found = false;
3181 for (lkp_iterator iter (MAYBE_BASELINK_FUNCTIONS (decl));
3182 !found && iter; ++iter)
3184 tree fn = *iter;
3185 if (TREE_CODE (fn) == TEMPLATE_DECL
3186 || TREE_CODE (fn) == TEMPLATE_ID_EXPR
3187 || (TREE_CODE (fn) == FUNCTION_DECL
3188 && DECL_USE_TEMPLATE (fn)
3189 && PRIMARY_TEMPLATE_P (DECL_TI_TEMPLATE (fn))))
3190 found = true;
3192 if (!found)
3193 permerror (input_location, "%qD is not a template", decl);
3198 /* Record that an access failure occurred on BASETYPE_PATH attempting
3199 to access DECL, where DIAG_DECL should be used for diagnostics. */
3201 void
3202 access_failure_info::record_access_failure (tree basetype_path,
3203 tree decl, tree diag_decl)
3205 m_was_inaccessible = true;
3206 m_basetype_path = basetype_path;
3207 m_decl = decl;
3208 m_diag_decl = diag_decl;
3211 /* If an access failure was recorded, then attempt to locate an
3212 accessor function for the pertinent field.
3213 Otherwise, return NULL_TREE. */
3215 tree
3216 access_failure_info::get_any_accessor (bool const_p) const
3218 if (!was_inaccessible_p ())
3219 return NULL_TREE;
3221 tree accessor
3222 = locate_field_accessor (m_basetype_path, m_diag_decl, const_p);
3223 if (!accessor)
3224 return NULL_TREE;
3226 /* The accessor must itself be accessible for it to be a reasonable
3227 suggestion. */
3228 if (!accessible_p (m_basetype_path, accessor, true))
3229 return NULL_TREE;
3231 return accessor;
3234 /* Add a fix-it hint to RICHLOC suggesting the use of ACCESSOR_DECL, by
3235 replacing the primary location in RICHLOC with "accessor()". */
3237 void
3238 access_failure_info::add_fixit_hint (rich_location *richloc,
3239 tree accessor_decl)
3241 pretty_printer pp;
3242 pp_string (&pp, IDENTIFIER_POINTER (DECL_NAME (accessor_decl)));
3243 pp_string (&pp, "()");
3244 richloc->add_fixit_replace (pp_formatted_text (&pp));
3247 /* If an access failure was recorded, then attempt to locate an
3248 accessor function for the pertinent field, and if one is
3249 available, add a note and fix-it hint suggesting using it. */
3251 void
3252 access_failure_info::maybe_suggest_accessor (bool const_p) const
3254 tree accessor = get_any_accessor (const_p);
3255 if (accessor == NULL_TREE)
3256 return;
3257 rich_location richloc (line_table, input_location);
3258 add_fixit_hint (&richloc, accessor);
3259 inform (&richloc, "field %q#D can be accessed via %q#D",
3260 m_diag_decl, accessor);
3263 /* Subroutine of finish_class_member_access_expr.
3264 Issue an error about NAME not being a member of ACCESS_PATH (or
3265 OBJECT_TYPE), potentially providing a fix-it hint for misspelled
3266 names. */
3268 static void
3269 complain_about_unrecognized_member (tree access_path, tree name,
3270 tree object_type)
3272 /* Attempt to provide a hint about misspelled names. */
3273 tree guessed_id = lookup_member_fuzzy (access_path, name,
3274 /*want_type=*/false);
3275 if (guessed_id == NULL_TREE)
3277 /* No hint. */
3278 error ("%q#T has no member named %qE",
3279 TREE_CODE (access_path) == TREE_BINFO
3280 ? TREE_TYPE (access_path) : object_type, name);
3281 return;
3284 location_t bogus_component_loc = input_location;
3285 gcc_rich_location rich_loc (bogus_component_loc);
3287 /* Check that the guessed name is accessible along access_path. */
3288 access_failure_info afi;
3289 lookup_member (access_path, guessed_id, /*protect=*/1,
3290 /*want_type=*/false, /*complain=*/false,
3291 &afi);
3292 if (afi.was_inaccessible_p ())
3294 tree accessor = afi.get_any_accessor (TYPE_READONLY (object_type));
3295 if (accessor)
3297 /* The guessed name isn't directly accessible, but can be accessed
3298 via an accessor member function. */
3299 afi.add_fixit_hint (&rich_loc, accessor);
3300 error_at (&rich_loc,
3301 "%q#T has no member named %qE;"
3302 " did you mean %q#D? (accessible via %q#D)",
3303 TREE_CODE (access_path) == TREE_BINFO
3304 ? TREE_TYPE (access_path) : object_type,
3305 name, afi.get_diag_decl (), accessor);
3307 else
3309 /* The guessed name isn't directly accessible, and no accessor
3310 member function could be found. */
3311 error_at (&rich_loc,
3312 "%q#T has no member named %qE;"
3313 " did you mean %q#D? (not accessible from this context)",
3314 TREE_CODE (access_path) == TREE_BINFO
3315 ? TREE_TYPE (access_path) : object_type,
3316 name, afi.get_diag_decl ());
3317 complain_about_access (afi.get_decl (), afi.get_diag_decl (),
3318 afi.get_diag_decl (), false, ak_none);
3321 else
3323 /* The guessed name is directly accessible; suggest it. */
3324 rich_loc.add_fixit_misspelled_id (bogus_component_loc,
3325 guessed_id);
3326 error_at (&rich_loc,
3327 "%q#T has no member named %qE;"
3328 " did you mean %qE?",
3329 TREE_CODE (access_path) == TREE_BINFO
3330 ? TREE_TYPE (access_path) : object_type,
3331 name, guessed_id);
3335 /* This function is called by the parser to process a class member
3336 access expression of the form OBJECT.NAME. NAME is a node used by
3337 the parser to represent a name; it is not yet a DECL. It may,
3338 however, be a BASELINK where the BASELINK_FUNCTIONS is a
3339 TEMPLATE_ID_EXPR. Templates must be looked up by the parser, and
3340 there is no reason to do the lookup twice, so the parser keeps the
3341 BASELINK. TEMPLATE_P is true iff NAME was explicitly declared to
3342 be a template via the use of the "A::template B" syntax. */
3344 tree
3345 finish_class_member_access_expr (cp_expr object, tree name, bool template_p,
3346 tsubst_flags_t complain)
3348 tree expr;
3349 tree object_type;
3350 tree member;
3351 tree access_path = NULL_TREE;
3352 tree orig_object = object;
3353 tree orig_name = name;
3355 if (object == error_mark_node || name == error_mark_node)
3356 return error_mark_node;
3358 /* If OBJECT is an ObjC class instance, we must obey ObjC access rules. */
3359 if (!objc_is_public (object, name))
3360 return error_mark_node;
3362 object_type = TREE_TYPE (object);
3364 if (processing_template_decl)
3366 if (/* If OBJECT is dependent, so is OBJECT.NAME. */
3367 type_dependent_object_expression_p (object)
3368 /* If NAME is "f<args>", where either 'f' or 'args' is
3369 dependent, then the expression is dependent. */
3370 || (TREE_CODE (name) == TEMPLATE_ID_EXPR
3371 && dependent_template_id_p (TREE_OPERAND (name, 0),
3372 TREE_OPERAND (name, 1)))
3373 /* If NAME is "T::X" where "T" is dependent, then the
3374 expression is dependent. */
3375 || (TREE_CODE (name) == SCOPE_REF
3376 && TYPE_P (TREE_OPERAND (name, 0))
3377 && dependent_scope_p (TREE_OPERAND (name, 0)))
3378 /* If NAME is operator T where "T" is dependent, we can't
3379 lookup until we instantiate the T. */
3380 || (TREE_CODE (name) == IDENTIFIER_NODE
3381 && IDENTIFIER_CONV_OP_P (name)
3382 && dependent_type_p (TREE_TYPE (name))))
3384 dependent:
3385 return build_min_nt_loc (UNKNOWN_LOCATION, COMPONENT_REF,
3386 orig_object, orig_name, NULL_TREE);
3388 object = build_non_dependent_expr (object);
3390 else if (c_dialect_objc ()
3391 && identifier_p (name)
3392 && (expr = objc_maybe_build_component_ref (object, name)))
3393 return expr;
3395 /* [expr.ref]
3397 The type of the first expression shall be "class object" (of a
3398 complete type). */
3399 if (!currently_open_class (object_type)
3400 && !complete_type_or_maybe_complain (object_type, object, complain))
3401 return error_mark_node;
3402 if (!CLASS_TYPE_P (object_type))
3404 if (complain & tf_error)
3406 if (INDIRECT_TYPE_P (object_type)
3407 && CLASS_TYPE_P (TREE_TYPE (object_type)))
3408 error ("request for member %qD in %qE, which is of pointer "
3409 "type %qT (maybe you meant to use %<->%> ?)",
3410 name, object.get_value (), object_type);
3411 else
3412 error ("request for member %qD in %qE, which is of non-class "
3413 "type %qT", name, object.get_value (), object_type);
3415 return error_mark_node;
3418 if (BASELINK_P (name))
3419 /* A member function that has already been looked up. */
3420 member = name;
3421 else
3423 bool is_template_id = false;
3424 tree template_args = NULL_TREE;
3425 tree scope = NULL_TREE;
3427 access_path = object_type;
3429 if (TREE_CODE (name) == SCOPE_REF)
3431 /* A qualified name. The qualifying class or namespace `S'
3432 has already been looked up; it is either a TYPE or a
3433 NAMESPACE_DECL. */
3434 scope = TREE_OPERAND (name, 0);
3435 name = TREE_OPERAND (name, 1);
3437 /* If SCOPE is a namespace, then the qualified name does not
3438 name a member of OBJECT_TYPE. */
3439 if (TREE_CODE (scope) == NAMESPACE_DECL)
3441 if (complain & tf_error)
3442 error ("%<%D::%D%> is not a member of %qT",
3443 scope, name, object_type);
3444 return error_mark_node;
3448 if (TREE_CODE (name) == TEMPLATE_ID_EXPR)
3450 is_template_id = true;
3451 template_args = TREE_OPERAND (name, 1);
3452 name = TREE_OPERAND (name, 0);
3454 if (!identifier_p (name))
3455 name = OVL_NAME (name);
3458 if (scope)
3460 if (TREE_CODE (scope) == ENUMERAL_TYPE)
3462 gcc_assert (!is_template_id);
3463 /* Looking up a member enumerator (c++/56793). */
3464 if (!TYPE_CLASS_SCOPE_P (scope)
3465 || !DERIVED_FROM_P (TYPE_CONTEXT (scope), object_type))
3467 if (complain & tf_error)
3468 error ("%<%D::%D%> is not a member of %qT",
3469 scope, name, object_type);
3470 return error_mark_node;
3472 tree val = lookup_enumerator (scope, name);
3473 if (!val)
3475 if (complain & tf_error)
3476 error ("%qD is not a member of %qD",
3477 name, scope);
3478 return error_mark_node;
3481 if (TREE_SIDE_EFFECTS (object))
3482 val = build2 (COMPOUND_EXPR, TREE_TYPE (val), object, val);
3483 return val;
3486 gcc_assert (CLASS_TYPE_P (scope));
3487 gcc_assert (identifier_p (name) || TREE_CODE (name) == BIT_NOT_EXPR);
3489 if (constructor_name_p (name, scope))
3491 if (complain & tf_error)
3492 error ("cannot call constructor %<%T::%D%> directly",
3493 scope, name);
3494 return error_mark_node;
3497 /* Find the base of OBJECT_TYPE corresponding to SCOPE. */
3498 access_path = lookup_base (object_type, scope, ba_check,
3499 NULL, complain);
3500 if (access_path == error_mark_node)
3501 return error_mark_node;
3502 if (!access_path)
3504 if (any_dependent_bases_p (object_type))
3505 goto dependent;
3506 if (complain & tf_error)
3507 error ("%qT is not a base of %qT", scope, object_type);
3508 return error_mark_node;
3512 if (TREE_CODE (name) == BIT_NOT_EXPR)
3514 if (dependent_type_p (object_type))
3515 /* The destructor isn't declared yet. */
3516 goto dependent;
3517 member = lookup_destructor (object, scope, name, complain);
3519 else
3521 /* Look up the member. */
3522 access_failure_info afi;
3523 if (processing_template_decl)
3524 /* Even though this class member access expression is at this
3525 point not dependent, the member itself may be dependent, and
3526 we must not potentially push a access check for a dependent
3527 member onto TI_DEFERRED_ACCESS_CHECKS. So don't check access
3528 ahead of time here; we're going to redo this member lookup at
3529 instantiation time anyway. */
3530 push_deferring_access_checks (dk_no_check);
3531 member = lookup_member (access_path, name, /*protect=*/1,
3532 /*want_type=*/false, complain,
3533 &afi);
3534 if (processing_template_decl)
3535 pop_deferring_access_checks ();
3536 afi.maybe_suggest_accessor (TYPE_READONLY (object_type));
3537 if (member == NULL_TREE)
3539 if (dependent_type_p (object_type))
3540 /* Try again at instantiation time. */
3541 goto dependent;
3542 if (complain & tf_error)
3543 complain_about_unrecognized_member (access_path, name,
3544 object_type);
3545 return error_mark_node;
3547 if (member == error_mark_node)
3548 return error_mark_node;
3549 if (DECL_P (member)
3550 && any_dependent_type_attributes_p (DECL_ATTRIBUTES (member)))
3551 /* Dependent type attributes on the decl mean that the TREE_TYPE is
3552 wrong, so don't use it. */
3553 goto dependent;
3554 if (TREE_CODE (member) == USING_DECL && DECL_DEPENDENT_P (member))
3555 goto dependent;
3558 if (is_template_id)
3560 tree templ = member;
3562 if (BASELINK_P (templ))
3563 member = lookup_template_function (templ, template_args);
3564 else if (variable_template_p (templ))
3565 member = (lookup_and_finish_template_variable
3566 (templ, template_args, complain));
3567 else
3569 if (complain & tf_error)
3570 error ("%qD is not a member template function", name);
3571 return error_mark_node;
3576 if (TREE_UNAVAILABLE (member))
3577 error_unavailable_use (member, NULL_TREE);
3578 else if (TREE_DEPRECATED (member))
3579 warn_deprecated_use (member, NULL_TREE);
3581 if (template_p)
3582 check_template_keyword (member);
3584 expr = build_class_member_access_expr (object, member, access_path,
3585 /*preserve_reference=*/false,
3586 complain);
3587 if (processing_template_decl && expr != error_mark_node)
3589 if (BASELINK_P (member))
3591 if (TREE_CODE (orig_name) == SCOPE_REF)
3592 BASELINK_QUALIFIED_P (member) = 1;
3593 orig_name = member;
3595 return build_min_non_dep (COMPONENT_REF, expr,
3596 orig_object, orig_name,
3597 NULL_TREE);
3600 return expr;
3603 /* Build a COMPONENT_REF of OBJECT and MEMBER with the appropriate
3604 type. */
3606 tree
3607 build_simple_component_ref (tree object, tree member)
3609 tree type = cp_build_qualified_type (TREE_TYPE (member),
3610 cp_type_quals (TREE_TYPE (object)));
3611 return build3_loc (input_location,
3612 COMPONENT_REF, type,
3613 object, member, NULL_TREE);
3616 /* Return an expression for the MEMBER_NAME field in the internal
3617 representation of PTRMEM, a pointer-to-member function. (Each
3618 pointer-to-member function type gets its own RECORD_TYPE so it is
3619 more convenient to access the fields by name than by FIELD_DECL.)
3620 This routine converts the NAME to a FIELD_DECL and then creates the
3621 node for the complete expression. */
3623 tree
3624 build_ptrmemfunc_access_expr (tree ptrmem, tree member_name)
3626 tree ptrmem_type;
3627 tree member;
3629 if (TREE_CODE (ptrmem) == CONSTRUCTOR)
3631 for (auto &e: CONSTRUCTOR_ELTS (ptrmem))
3632 if (e.index && DECL_P (e.index) && DECL_NAME (e.index) == member_name)
3633 return e.value;
3634 gcc_unreachable ();
3637 /* This code is a stripped down version of
3638 build_class_member_access_expr. It does not work to use that
3639 routine directly because it expects the object to be of class
3640 type. */
3641 ptrmem_type = TREE_TYPE (ptrmem);
3642 gcc_assert (TYPE_PTRMEMFUNC_P (ptrmem_type));
3643 for (member = TYPE_FIELDS (ptrmem_type); member;
3644 member = DECL_CHAIN (member))
3645 if (DECL_NAME (member) == member_name)
3646 break;
3647 return build_simple_component_ref (ptrmem, member);
3650 /* Return a TREE_LIST of namespace-scope overloads for the given operator,
3651 and for any other relevant operator. */
3653 static tree
3654 op_unqualified_lookup (tree_code code, bool is_assign)
3656 tree lookups = NULL_TREE;
3658 if (cxx_dialect >= cxx20 && !is_assign)
3660 if (code == NE_EXPR)
3662 /* != can get rewritten in terms of ==. */
3663 tree fnname = ovl_op_identifier (false, EQ_EXPR);
3664 if (tree fns = lookup_name (fnname, LOOK_where::BLOCK_NAMESPACE))
3665 lookups = tree_cons (fnname, fns, lookups);
3667 else if (code == GT_EXPR || code == LE_EXPR
3668 || code == LT_EXPR || code == GE_EXPR)
3670 /* These can get rewritten in terms of <=>. */
3671 tree fnname = ovl_op_identifier (false, SPACESHIP_EXPR);
3672 if (tree fns = lookup_name (fnname, LOOK_where::BLOCK_NAMESPACE))
3673 lookups = tree_cons (fnname, fns, lookups);
3677 tree fnname = ovl_op_identifier (is_assign, code);
3678 if (tree fns = lookup_name (fnname, LOOK_where::BLOCK_NAMESPACE))
3679 lookups = tree_cons (fnname, fns, lookups);
3681 if (lookups)
3682 return lookups;
3683 else
3684 return build_tree_list (NULL_TREE, NULL_TREE);
3687 /* Create a DEPENDENT_OPERATOR_TYPE for a dependent operator expression of
3688 the given operator. LOOKUPS, if non-NULL, is the result of phase 1
3689 name lookup for the given operator. */
3691 tree
3692 build_dependent_operator_type (tree lookups, tree_code code, bool is_assign)
3694 if (lookups)
3695 /* We're partially instantiating a dependent operator expression, and
3696 LOOKUPS is the result of phase 1 name lookup that we performed
3697 earlier at template definition time, so just reuse the corresponding
3698 DEPENDENT_OPERATOR_TYPE. */
3699 return TREE_TYPE (lookups);
3701 /* Otherwise we're processing a dependent operator expression at template
3702 definition time, so perform phase 1 name lookup now. */
3703 lookups = op_unqualified_lookup (code, is_assign);
3705 tree type = cxx_make_type (DEPENDENT_OPERATOR_TYPE);
3706 DEPENDENT_OPERATOR_TYPE_SAVED_LOOKUPS (type) = lookups;
3707 TREE_TYPE (lookups) = type;
3708 return type;
3711 /* Given an expression PTR for a pointer, return an expression
3712 for the value pointed to.
3713 ERRORSTRING is the name of the operator to appear in error messages.
3715 This function may need to overload OPERATOR_FNNAME.
3716 Must also handle REFERENCE_TYPEs for C++. */
3718 tree
3719 build_x_indirect_ref (location_t loc, tree expr, ref_operator errorstring,
3720 tree lookups, tsubst_flags_t complain)
3722 tree orig_expr = expr;
3723 tree rval;
3724 tree overload = NULL_TREE;
3726 if (processing_template_decl)
3728 /* Retain the type if we know the operand is a pointer. */
3729 if (TREE_TYPE (expr) && INDIRECT_TYPE_P (TREE_TYPE (expr)))
3731 if (expr == current_class_ptr
3732 || (TREE_CODE (expr) == NOP_EXPR
3733 && TREE_OPERAND (expr, 0) == current_class_ptr
3734 && (same_type_ignoring_top_level_qualifiers_p
3735 (TREE_TYPE (expr), TREE_TYPE (current_class_ptr)))))
3736 return current_class_ref;
3737 return build_min (INDIRECT_REF, TREE_TYPE (TREE_TYPE (expr)), expr);
3739 if (type_dependent_expression_p (expr))
3741 expr = build_min_nt_loc (loc, INDIRECT_REF, expr);
3742 TREE_TYPE (expr)
3743 = build_dependent_operator_type (lookups, INDIRECT_REF, false);
3744 return expr;
3746 expr = build_non_dependent_expr (expr);
3749 rval = build_new_op (loc, INDIRECT_REF, LOOKUP_NORMAL, expr,
3750 NULL_TREE, NULL_TREE, lookups,
3751 &overload, complain);
3752 if (!rval)
3753 rval = cp_build_indirect_ref (loc, expr, errorstring, complain);
3755 if (processing_template_decl && rval != error_mark_node)
3757 if (overload != NULL_TREE)
3758 return (build_min_non_dep_op_overload
3759 (INDIRECT_REF, rval, overload, orig_expr));
3761 return build_min_non_dep (INDIRECT_REF, rval, orig_expr);
3763 else
3764 return rval;
3767 /* Like c-family strict_aliasing_warning, but don't warn for dependent
3768 types or expressions. */
3770 static bool
3771 cp_strict_aliasing_warning (location_t loc, tree type, tree expr)
3773 if (processing_template_decl)
3775 tree e = expr;
3776 STRIP_NOPS (e);
3777 if (dependent_type_p (type) || type_dependent_expression_p (e))
3778 return false;
3780 return strict_aliasing_warning (loc, type, expr);
3783 /* The implementation of the above, and of indirection implied by other
3784 constructs. If DO_FOLD is true, fold away INDIRECT_REF of ADDR_EXPR. */
3786 static tree
3787 cp_build_indirect_ref_1 (location_t loc, tree ptr, ref_operator errorstring,
3788 tsubst_flags_t complain, bool do_fold)
3790 tree pointer, type;
3792 /* RO_NULL should only be used with the folding entry points below, not
3793 cp_build_indirect_ref. */
3794 gcc_checking_assert (errorstring != RO_NULL || do_fold);
3796 if (ptr == current_class_ptr
3797 || (TREE_CODE (ptr) == NOP_EXPR
3798 && TREE_OPERAND (ptr, 0) == current_class_ptr
3799 && (same_type_ignoring_top_level_qualifiers_p
3800 (TREE_TYPE (ptr), TREE_TYPE (current_class_ptr)))))
3801 return current_class_ref;
3803 pointer = (TYPE_REF_P (TREE_TYPE (ptr))
3804 ? ptr : decay_conversion (ptr, complain));
3805 if (pointer == error_mark_node)
3806 return error_mark_node;
3808 type = TREE_TYPE (pointer);
3810 if (INDIRECT_TYPE_P (type))
3812 /* [expr.unary.op]
3814 If the type of the expression is "pointer to T," the type
3815 of the result is "T." */
3816 tree t = TREE_TYPE (type);
3818 if ((CONVERT_EXPR_P (ptr)
3819 || TREE_CODE (ptr) == VIEW_CONVERT_EXPR)
3820 && (!CLASS_TYPE_P (t) || !CLASSTYPE_EMPTY_P (t)))
3822 /* If a warning is issued, mark it to avoid duplicates from
3823 the backend. This only needs to be done at
3824 warn_strict_aliasing > 2. */
3825 if (warn_strict_aliasing > 2
3826 && cp_strict_aliasing_warning (EXPR_LOCATION (ptr),
3827 type, TREE_OPERAND (ptr, 0)))
3828 suppress_warning (ptr, OPT_Wstrict_aliasing);
3831 if (VOID_TYPE_P (t))
3833 /* A pointer to incomplete type (other than cv void) can be
3834 dereferenced [expr.unary.op]/1 */
3835 if (complain & tf_error)
3836 error_at (loc, "%qT is not a pointer-to-object type", type);
3837 return error_mark_node;
3839 else if (do_fold && TREE_CODE (pointer) == ADDR_EXPR
3840 && same_type_p (t, TREE_TYPE (TREE_OPERAND (pointer, 0))))
3841 /* The POINTER was something like `&x'. We simplify `*&x' to
3842 `x'. */
3843 return TREE_OPERAND (pointer, 0);
3844 else
3846 tree ref = build1 (INDIRECT_REF, t, pointer);
3848 /* We *must* set TREE_READONLY when dereferencing a pointer to const,
3849 so that we get the proper error message if the result is used
3850 to assign to. Also, &* is supposed to be a no-op. */
3851 TREE_READONLY (ref) = CP_TYPE_CONST_P (t);
3852 TREE_THIS_VOLATILE (ref) = CP_TYPE_VOLATILE_P (t);
3853 TREE_SIDE_EFFECTS (ref)
3854 = (TREE_THIS_VOLATILE (ref) || TREE_SIDE_EFFECTS (pointer));
3855 return ref;
3858 else if (!(complain & tf_error))
3859 /* Don't emit any errors; we'll just return ERROR_MARK_NODE later. */
3861 /* `pointer' won't be an error_mark_node if we were given a
3862 pointer to member, so it's cool to check for this here. */
3863 else if (TYPE_PTRMEM_P (type))
3864 switch (errorstring)
3866 case RO_ARRAY_INDEXING:
3867 error_at (loc,
3868 "invalid use of array indexing on pointer to member");
3869 break;
3870 case RO_UNARY_STAR:
3871 error_at (loc, "invalid use of unary %<*%> on pointer to member");
3872 break;
3873 case RO_IMPLICIT_CONVERSION:
3874 error_at (loc, "invalid use of implicit conversion on pointer "
3875 "to member");
3876 break;
3877 case RO_ARROW_STAR:
3878 error_at (loc, "left hand operand of %<->*%> must be a pointer to "
3879 "class, but is a pointer to member of type %qT", type);
3880 break;
3881 default:
3882 gcc_unreachable ();
3884 else if (pointer != error_mark_node)
3885 invalid_indirection_error (loc, type, errorstring);
3887 return error_mark_node;
3890 /* Entry point used by c-common, which expects folding. */
3892 tree
3893 build_indirect_ref (location_t loc, tree ptr, ref_operator errorstring)
3895 return cp_build_indirect_ref_1 (loc, ptr, errorstring,
3896 tf_warning_or_error, true);
3899 /* Entry point used by internal indirection needs that don't correspond to any
3900 syntactic construct. */
3902 tree
3903 cp_build_fold_indirect_ref (tree pointer)
3905 return cp_build_indirect_ref_1 (input_location, pointer, RO_NULL,
3906 tf_warning_or_error, true);
3909 /* Entry point used by indirection needs that correspond to some syntactic
3910 construct. */
3912 tree
3913 cp_build_indirect_ref (location_t loc, tree ptr, ref_operator errorstring,
3914 tsubst_flags_t complain)
3916 return cp_build_indirect_ref_1 (loc, ptr, errorstring, complain, false);
3919 /* This handles expressions of the form "a[i]", which denotes
3920 an array reference.
3922 This is logically equivalent in C to *(a+i), but we may do it differently.
3923 If A is a variable or a member, we generate a primitive ARRAY_REF.
3924 This avoids forcing the array out of registers, and can work on
3925 arrays that are not lvalues (for example, members of structures returned
3926 by functions).
3928 If INDEX is of some user-defined type, it must be converted to
3929 integer type. Otherwise, to make a compatible PLUS_EXPR, it
3930 will inherit the type of the array, which will be some pointer type.
3932 LOC is the location to use in building the array reference. */
3934 tree
3935 cp_build_array_ref (location_t loc, tree array, tree idx,
3936 tsubst_flags_t complain)
3938 tree ret;
3940 if (idx == 0)
3942 if (complain & tf_error)
3943 error_at (loc, "subscript missing in array reference");
3944 return error_mark_node;
3947 if (TREE_TYPE (array) == error_mark_node
3948 || TREE_TYPE (idx) == error_mark_node)
3949 return error_mark_node;
3951 /* If ARRAY is a COMPOUND_EXPR or COND_EXPR, move our reference
3952 inside it. */
3953 switch (TREE_CODE (array))
3955 case COMPOUND_EXPR:
3957 tree value = cp_build_array_ref (loc, TREE_OPERAND (array, 1), idx,
3958 complain);
3959 ret = build2 (COMPOUND_EXPR, TREE_TYPE (value),
3960 TREE_OPERAND (array, 0), value);
3961 SET_EXPR_LOCATION (ret, loc);
3962 return ret;
3965 case COND_EXPR:
3966 ret = build_conditional_expr
3967 (loc, TREE_OPERAND (array, 0),
3968 cp_build_array_ref (loc, TREE_OPERAND (array, 1), idx,
3969 complain),
3970 cp_build_array_ref (loc, TREE_OPERAND (array, 2), idx,
3971 complain),
3972 complain);
3973 protected_set_expr_location (ret, loc);
3974 return ret;
3976 default:
3977 break;
3980 bool non_lvalue = convert_vector_to_array_for_subscript (loc, &array, idx);
3982 if (TREE_CODE (TREE_TYPE (array)) == ARRAY_TYPE)
3984 tree rval, type;
3986 warn_array_subscript_with_type_char (loc, idx);
3988 if (!INTEGRAL_OR_UNSCOPED_ENUMERATION_TYPE_P (TREE_TYPE (idx)))
3990 if (complain & tf_error)
3991 error_at (loc, "array subscript is not an integer");
3992 return error_mark_node;
3995 /* Apply integral promotions *after* noticing character types.
3996 (It is unclear why we do these promotions -- the standard
3997 does not say that we should. In fact, the natural thing would
3998 seem to be to convert IDX to ptrdiff_t; we're performing
3999 pointer arithmetic.) */
4000 idx = cp_perform_integral_promotions (idx, complain);
4002 idx = maybe_fold_non_dependent_expr (idx, complain);
4004 /* An array that is indexed by a non-constant
4005 cannot be stored in a register; we must be able to do
4006 address arithmetic on its address.
4007 Likewise an array of elements of variable size. */
4008 if (TREE_CODE (idx) != INTEGER_CST
4009 || (COMPLETE_TYPE_P (TREE_TYPE (TREE_TYPE (array)))
4010 && (TREE_CODE (TYPE_SIZE (TREE_TYPE (TREE_TYPE (array))))
4011 != INTEGER_CST)))
4013 if (!cxx_mark_addressable (array, true))
4014 return error_mark_node;
4017 /* An array that is indexed by a constant value which is not within
4018 the array bounds cannot be stored in a register either; because we
4019 would get a crash in store_bit_field/extract_bit_field when trying
4020 to access a non-existent part of the register. */
4021 if (TREE_CODE (idx) == INTEGER_CST
4022 && TYPE_DOMAIN (TREE_TYPE (array))
4023 && ! int_fits_type_p (idx, TYPE_DOMAIN (TREE_TYPE (array))))
4025 if (!cxx_mark_addressable (array))
4026 return error_mark_node;
4029 /* Note in C++ it is valid to subscript a `register' array, since
4030 it is valid to take the address of something with that
4031 storage specification. */
4032 if (extra_warnings)
4034 tree foo = array;
4035 while (TREE_CODE (foo) == COMPONENT_REF)
4036 foo = TREE_OPERAND (foo, 0);
4037 if (VAR_P (foo) && DECL_REGISTER (foo)
4038 && (complain & tf_warning))
4039 warning_at (loc, OPT_Wextra,
4040 "subscripting array declared %<register%>");
4043 type = TREE_TYPE (TREE_TYPE (array));
4044 rval = build4 (ARRAY_REF, type, array, idx, NULL_TREE, NULL_TREE);
4045 /* Array ref is const/volatile if the array elements are
4046 or if the array is.. */
4047 TREE_READONLY (rval)
4048 |= (CP_TYPE_CONST_P (type) | TREE_READONLY (array));
4049 TREE_SIDE_EFFECTS (rval)
4050 |= (CP_TYPE_VOLATILE_P (type) | TREE_SIDE_EFFECTS (array));
4051 TREE_THIS_VOLATILE (rval)
4052 |= (CP_TYPE_VOLATILE_P (type) | TREE_THIS_VOLATILE (array));
4053 ret = require_complete_type (rval, complain);
4054 protected_set_expr_location (ret, loc);
4055 if (non_lvalue)
4056 ret = non_lvalue_loc (loc, ret);
4057 return ret;
4061 tree ar = cp_default_conversion (array, complain);
4062 tree ind = cp_default_conversion (idx, complain);
4063 tree first = NULL_TREE;
4065 if (flag_strong_eval_order == 2 && TREE_SIDE_EFFECTS (ind))
4066 ar = first = save_expr (ar);
4068 /* Put the integer in IND to simplify error checking. */
4069 if (TREE_CODE (TREE_TYPE (ar)) == INTEGER_TYPE)
4070 std::swap (ar, ind);
4072 if (ar == error_mark_node || ind == error_mark_node)
4073 return error_mark_node;
4075 if (!TYPE_PTR_P (TREE_TYPE (ar)))
4077 if (complain & tf_error)
4078 error_at (loc, "subscripted value is neither array nor pointer");
4079 return error_mark_node;
4081 if (TREE_CODE (TREE_TYPE (ind)) != INTEGER_TYPE)
4083 if (complain & tf_error)
4084 error_at (loc, "array subscript is not an integer");
4085 return error_mark_node;
4088 warn_array_subscript_with_type_char (loc, idx);
4090 ret = cp_build_binary_op (input_location, PLUS_EXPR, ar, ind, complain);
4091 if (first)
4092 ret = build2_loc (loc, COMPOUND_EXPR, TREE_TYPE (ret), first, ret);
4093 ret = cp_build_indirect_ref (loc, ret, RO_ARRAY_INDEXING, complain);
4094 protected_set_expr_location (ret, loc);
4095 if (non_lvalue)
4096 ret = non_lvalue_loc (loc, ret);
4097 return ret;
4101 /* Entry point for Obj-C++. */
4103 tree
4104 build_array_ref (location_t loc, tree array, tree idx)
4106 return cp_build_array_ref (loc, array, idx, tf_warning_or_error);
4109 /* Resolve a pointer to member function. INSTANCE is the object
4110 instance to use, if the member points to a virtual member.
4112 This used to avoid checking for virtual functions if basetype
4113 has no virtual functions, according to an earlier ANSI draft.
4114 With the final ISO C++ rules, such an optimization is
4115 incorrect: A pointer to a derived member can be static_cast
4116 to pointer-to-base-member, as long as the dynamic object
4117 later has the right member. So now we only do this optimization
4118 when we know the dynamic type of the object. */
4120 tree
4121 get_member_function_from_ptrfunc (tree *instance_ptrptr, tree function,
4122 tsubst_flags_t complain)
4124 if (TREE_CODE (function) == OFFSET_REF)
4125 function = TREE_OPERAND (function, 1);
4127 if (TYPE_PTRMEMFUNC_P (TREE_TYPE (function)))
4129 tree idx, delta, e1, e2, e3, vtbl;
4130 bool nonvirtual;
4131 tree fntype = TYPE_PTRMEMFUNC_FN_TYPE (TREE_TYPE (function));
4132 tree basetype = TYPE_METHOD_BASETYPE (TREE_TYPE (fntype));
4134 tree instance_ptr = *instance_ptrptr;
4135 tree instance_save_expr = 0;
4136 if (instance_ptr == error_mark_node)
4138 if (TREE_CODE (function) == PTRMEM_CST)
4140 /* Extracting the function address from a pmf is only
4141 allowed with -Wno-pmf-conversions. It only works for
4142 pmf constants. */
4143 e1 = build_addr_func (PTRMEM_CST_MEMBER (function), complain);
4144 e1 = convert (fntype, e1);
4145 return e1;
4147 else
4149 if (complain & tf_error)
4150 error ("object missing in use of %qE", function);
4151 return error_mark_node;
4155 /* True if we know that the dynamic type of the object doesn't have
4156 virtual functions, so we can assume the PFN field is a pointer. */
4157 nonvirtual = (COMPLETE_TYPE_P (basetype)
4158 && !TYPE_POLYMORPHIC_P (basetype)
4159 && resolves_to_fixed_type_p (instance_ptr, 0));
4161 /* If we don't really have an object (i.e. in an ill-formed
4162 conversion from PMF to pointer), we can't resolve virtual
4163 functions anyway. */
4164 if (!nonvirtual && is_dummy_object (instance_ptr))
4165 nonvirtual = true;
4167 if (TREE_SIDE_EFFECTS (instance_ptr))
4168 instance_ptr = instance_save_expr = save_expr (instance_ptr);
4170 if (TREE_SIDE_EFFECTS (function))
4171 function = save_expr (function);
4173 /* Start by extracting all the information from the PMF itself. */
4174 e3 = pfn_from_ptrmemfunc (function);
4175 delta = delta_from_ptrmemfunc (function);
4176 idx = build1 (NOP_EXPR, vtable_index_type, e3);
4177 switch (TARGET_PTRMEMFUNC_VBIT_LOCATION)
4179 int flag_sanitize_save;
4180 case ptrmemfunc_vbit_in_pfn:
4181 e1 = cp_build_binary_op (input_location,
4182 BIT_AND_EXPR, idx, integer_one_node,
4183 complain);
4184 idx = cp_build_binary_op (input_location,
4185 MINUS_EXPR, idx, integer_one_node,
4186 complain);
4187 if (idx == error_mark_node)
4188 return error_mark_node;
4189 break;
4191 case ptrmemfunc_vbit_in_delta:
4192 e1 = cp_build_binary_op (input_location,
4193 BIT_AND_EXPR, delta, integer_one_node,
4194 complain);
4195 /* Don't instrument the RSHIFT_EXPR we're about to create because
4196 we're going to use DELTA number of times, and that wouldn't play
4197 well with SAVE_EXPRs therein. */
4198 flag_sanitize_save = flag_sanitize;
4199 flag_sanitize = 0;
4200 delta = cp_build_binary_op (input_location,
4201 RSHIFT_EXPR, delta, integer_one_node,
4202 complain);
4203 flag_sanitize = flag_sanitize_save;
4204 if (delta == error_mark_node)
4205 return error_mark_node;
4206 break;
4208 default:
4209 gcc_unreachable ();
4212 if (e1 == error_mark_node)
4213 return error_mark_node;
4215 /* Convert down to the right base before using the instance. A
4216 special case is that in a pointer to member of class C, C may
4217 be incomplete. In that case, the function will of course be
4218 a member of C, and no conversion is required. In fact,
4219 lookup_base will fail in that case, because incomplete
4220 classes do not have BINFOs. */
4221 if (!same_type_ignoring_top_level_qualifiers_p
4222 (basetype, TREE_TYPE (TREE_TYPE (instance_ptr))))
4224 basetype = lookup_base (TREE_TYPE (TREE_TYPE (instance_ptr)),
4225 basetype, ba_check, NULL, complain);
4226 instance_ptr = build_base_path (PLUS_EXPR, instance_ptr, basetype,
4227 1, complain);
4228 if (instance_ptr == error_mark_node)
4229 return error_mark_node;
4231 /* ...and then the delta in the PMF. */
4232 instance_ptr = fold_build_pointer_plus (instance_ptr, delta);
4234 /* Hand back the adjusted 'this' argument to our caller. */
4235 *instance_ptrptr = instance_ptr;
4237 if (nonvirtual)
4238 /* Now just return the pointer. */
4239 return e3;
4241 /* Next extract the vtable pointer from the object. */
4242 vtbl = build1 (NOP_EXPR, build_pointer_type (vtbl_ptr_type_node),
4243 instance_ptr);
4244 vtbl = cp_build_fold_indirect_ref (vtbl);
4245 if (vtbl == error_mark_node)
4246 return error_mark_node;
4248 /* Finally, extract the function pointer from the vtable. */
4249 e2 = fold_build_pointer_plus_loc (input_location, vtbl, idx);
4250 e2 = cp_build_fold_indirect_ref (e2);
4251 if (e2 == error_mark_node)
4252 return error_mark_node;
4253 TREE_CONSTANT (e2) = 1;
4255 /* When using function descriptors, the address of the
4256 vtable entry is treated as a function pointer. */
4257 if (TARGET_VTABLE_USES_DESCRIPTORS)
4258 e2 = build1 (NOP_EXPR, TREE_TYPE (e2),
4259 cp_build_addr_expr (e2, complain));
4261 e2 = fold_convert (TREE_TYPE (e3), e2);
4262 e1 = build_conditional_expr (input_location, e1, e2, e3, complain);
4263 if (e1 == error_mark_node)
4264 return error_mark_node;
4266 /* Make sure this doesn't get evaluated first inside one of the
4267 branches of the COND_EXPR. */
4268 if (instance_save_expr)
4269 e1 = build2 (COMPOUND_EXPR, TREE_TYPE (e1),
4270 instance_save_expr, e1);
4272 function = e1;
4274 return function;
4277 /* Used by the C-common bits. */
4278 tree
4279 build_function_call (location_t /*loc*/,
4280 tree function, tree params)
4282 return cp_build_function_call (function, params, tf_warning_or_error);
4285 /* Used by the C-common bits. */
4286 tree
4287 build_function_call_vec (location_t /*loc*/, vec<location_t> /*arg_loc*/,
4288 tree function, vec<tree, va_gc> *params,
4289 vec<tree, va_gc> * /*origtypes*/, tree orig_function)
4291 vec<tree, va_gc> *orig_params = params;
4292 tree ret = cp_build_function_call_vec (function, &params,
4293 tf_warning_or_error, orig_function);
4295 /* cp_build_function_call_vec can reallocate PARAMS by adding
4296 default arguments. That should never happen here. Verify
4297 that. */
4298 gcc_assert (params == orig_params);
4300 return ret;
4303 /* Build a function call using a tree list of arguments. */
4305 static tree
4306 cp_build_function_call (tree function, tree params, tsubst_flags_t complain)
4308 tree ret;
4310 releasing_vec vec;
4311 for (; params != NULL_TREE; params = TREE_CHAIN (params))
4312 vec_safe_push (vec, TREE_VALUE (params));
4313 ret = cp_build_function_call_vec (function, &vec, complain);
4314 return ret;
4317 /* Build a function call using varargs. */
4319 tree
4320 cp_build_function_call_nary (tree function, tsubst_flags_t complain, ...)
4322 va_list args;
4323 tree ret, t;
4325 releasing_vec vec;
4326 va_start (args, complain);
4327 for (t = va_arg (args, tree); t != NULL_TREE; t = va_arg (args, tree))
4328 vec_safe_push (vec, t);
4329 va_end (args);
4330 ret = cp_build_function_call_vec (function, &vec, complain);
4331 return ret;
4334 /* Build a function call using a vector of arguments.
4335 If FUNCTION is the result of resolving an overloaded target built-in,
4336 ORIG_FNDECL is the original function decl, otherwise it is null.
4337 PARAMS may be NULL if there are no parameters. This changes the
4338 contents of PARAMS. */
4340 tree
4341 cp_build_function_call_vec (tree function, vec<tree, va_gc> **params,
4342 tsubst_flags_t complain, tree orig_fndecl)
4344 tree fntype, fndecl;
4345 int is_method;
4346 tree original = function;
4347 int nargs;
4348 tree *argarray;
4349 tree parm_types;
4350 vec<tree, va_gc> *allocated = NULL;
4351 tree ret;
4353 /* For Objective-C, convert any calls via a cast to OBJC_TYPE_REF
4354 expressions, like those used for ObjC messenger dispatches. */
4355 if (params != NULL && !vec_safe_is_empty (*params))
4356 function = objc_rewrite_function_call (function, (**params)[0]);
4358 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
4359 Strip such NOP_EXPRs, since FUNCTION is used in non-lvalue context. */
4360 if (TREE_CODE (function) == NOP_EXPR
4361 && TREE_TYPE (function) == TREE_TYPE (TREE_OPERAND (function, 0)))
4362 function = TREE_OPERAND (function, 0);
4364 if (TREE_CODE (function) == FUNCTION_DECL)
4366 if (!mark_used (function, complain))
4367 return error_mark_node;
4368 fndecl = function;
4370 /* Convert anything with function type to a pointer-to-function. */
4371 if (DECL_MAIN_P (function))
4373 if (complain & tf_error)
4374 pedwarn (input_location, OPT_Wpedantic,
4375 "ISO C++ forbids calling %<::main%> from within program");
4376 else
4377 return error_mark_node;
4379 function = build_addr_func (function, complain);
4381 else
4383 fndecl = NULL_TREE;
4385 function = build_addr_func (function, complain);
4388 if (function == error_mark_node)
4389 return error_mark_node;
4391 fntype = TREE_TYPE (function);
4393 if (TYPE_PTRMEMFUNC_P (fntype))
4395 if (complain & tf_error)
4396 error ("must use %<.*%> or %<->*%> to call pointer-to-member "
4397 "function in %<%E (...)%>, e.g. %<(... ->* %E) (...)%>",
4398 original, original);
4399 return error_mark_node;
4402 is_method = (TYPE_PTR_P (fntype)
4403 && TREE_CODE (TREE_TYPE (fntype)) == METHOD_TYPE);
4405 if (!(TYPE_PTRFN_P (fntype)
4406 || is_method
4407 || TREE_CODE (function) == TEMPLATE_ID_EXPR))
4409 if (complain & tf_error)
4411 if (!flag_diagnostics_show_caret)
4412 error_at (input_location,
4413 "%qE cannot be used as a function", original);
4414 else if (DECL_P (original))
4415 error_at (input_location,
4416 "%qD cannot be used as a function", original);
4417 else
4418 error_at (input_location,
4419 "expression cannot be used as a function");
4422 return error_mark_node;
4425 /* fntype now gets the type of function pointed to. */
4426 fntype = TREE_TYPE (fntype);
4427 parm_types = TYPE_ARG_TYPES (fntype);
4429 if (params == NULL)
4431 allocated = make_tree_vector ();
4432 params = &allocated;
4435 nargs = convert_arguments (parm_types, params, fndecl, LOOKUP_NORMAL,
4436 complain);
4437 if (nargs < 0)
4438 return error_mark_node;
4440 argarray = (*params)->address ();
4442 /* Check for errors in format strings and inappropriately
4443 null parameters. */
4444 bool warned_p = check_function_arguments (input_location, fndecl, fntype,
4445 nargs, argarray, NULL);
4447 ret = build_cxx_call (function, nargs, argarray, complain, orig_fndecl);
4449 if (warned_p)
4451 tree c = extract_call_expr (ret);
4452 if (TREE_CODE (c) == CALL_EXPR)
4453 suppress_warning (c, OPT_Wnonnull);
4456 if (allocated != NULL)
4457 release_tree_vector (allocated);
4459 return ret;
4462 /* Subroutine of convert_arguments.
4463 Print an error message about a wrong number of arguments. */
4465 static void
4466 error_args_num (location_t loc, tree fndecl, bool too_many_p)
4468 if (fndecl)
4470 if (TREE_CODE (TREE_TYPE (fndecl)) == METHOD_TYPE)
4472 if (DECL_NAME (fndecl) == NULL_TREE
4473 || (DECL_NAME (fndecl)
4474 == DECL_NAME (TYPE_NAME (DECL_CONTEXT (fndecl)))))
4475 error_at (loc,
4476 too_many_p
4477 ? G_("too many arguments to constructor %q#D")
4478 : G_("too few arguments to constructor %q#D"),
4479 fndecl);
4480 else
4481 error_at (loc,
4482 too_many_p
4483 ? G_("too many arguments to member function %q#D")
4484 : G_("too few arguments to member function %q#D"),
4485 fndecl);
4487 else
4488 error_at (loc,
4489 too_many_p
4490 ? G_("too many arguments to function %q#D")
4491 : G_("too few arguments to function %q#D"),
4492 fndecl);
4493 if (!DECL_IS_UNDECLARED_BUILTIN (fndecl))
4494 inform (DECL_SOURCE_LOCATION (fndecl), "declared here");
4496 else
4498 if (c_dialect_objc () && objc_message_selector ())
4499 error_at (loc,
4500 too_many_p
4501 ? G_("too many arguments to method %q#D")
4502 : G_("too few arguments to method %q#D"),
4503 objc_message_selector ());
4504 else
4505 error_at (loc, too_many_p ? G_("too many arguments to function")
4506 : G_("too few arguments to function"));
4510 /* Convert the actual parameter expressions in the list VALUES to the
4511 types in the list TYPELIST. The converted expressions are stored
4512 back in the VALUES vector.
4513 If parmdecls is exhausted, or when an element has NULL as its type,
4514 perform the default conversions.
4516 NAME is an IDENTIFIER_NODE or 0. It is used only for error messages.
4518 This is also where warnings about wrong number of args are generated.
4520 Returns the actual number of arguments processed (which might be less
4521 than the length of the vector), or -1 on error.
4523 In C++, unspecified trailing parameters can be filled in with their
4524 default arguments, if such were specified. Do so here. */
4526 static int
4527 convert_arguments (tree typelist, vec<tree, va_gc> **values, tree fndecl,
4528 int flags, tsubst_flags_t complain)
4530 tree typetail;
4531 unsigned int i;
4533 /* Argument passing is always copy-initialization. */
4534 flags |= LOOKUP_ONLYCONVERTING;
4536 for (i = 0, typetail = typelist;
4537 i < vec_safe_length (*values);
4538 i++)
4540 tree type = typetail ? TREE_VALUE (typetail) : 0;
4541 tree val = (**values)[i];
4543 if (val == error_mark_node || type == error_mark_node)
4544 return -1;
4546 if (type == void_type_node)
4548 if (complain & tf_error)
4550 error_args_num (input_location, fndecl, /*too_many_p=*/true);
4551 return i;
4553 else
4554 return -1;
4557 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
4558 Strip such NOP_EXPRs, since VAL is used in non-lvalue context. */
4559 if (TREE_CODE (val) == NOP_EXPR
4560 && TREE_TYPE (val) == TREE_TYPE (TREE_OPERAND (val, 0))
4561 && (type == 0 || !TYPE_REF_P (type)))
4562 val = TREE_OPERAND (val, 0);
4564 if (type == 0 || !TYPE_REF_P (type))
4566 if (TREE_CODE (TREE_TYPE (val)) == ARRAY_TYPE
4567 || FUNC_OR_METHOD_TYPE_P (TREE_TYPE (val)))
4568 val = decay_conversion (val, complain);
4571 if (val == error_mark_node)
4572 return -1;
4574 if (type != 0)
4576 /* Formal parm type is specified by a function prototype. */
4577 tree parmval;
4579 if (!COMPLETE_TYPE_P (complete_type (type)))
4581 if (complain & tf_error)
4583 location_t loc = EXPR_LOC_OR_LOC (val, input_location);
4584 if (fndecl)
4586 auto_diagnostic_group d;
4587 error_at (loc,
4588 "parameter %P of %qD has incomplete type %qT",
4589 i, fndecl, type);
4590 inform (get_fndecl_argument_location (fndecl, i),
4591 " declared here");
4593 else
4594 error_at (loc, "parameter %P has incomplete type %qT", i,
4595 type);
4597 parmval = error_mark_node;
4599 else
4601 parmval = convert_for_initialization
4602 (NULL_TREE, type, val, flags,
4603 ICR_ARGPASS, fndecl, i, complain);
4604 parmval = convert_for_arg_passing (type, parmval, complain);
4607 if (parmval == error_mark_node)
4608 return -1;
4610 (**values)[i] = parmval;
4612 else
4614 int magic = fndecl ? magic_varargs_p (fndecl) : 0;
4615 if (magic)
4617 /* Don't truncate excess precision to the semantic type. */
4618 if (magic == 1 && TREE_CODE (val) == EXCESS_PRECISION_EXPR)
4619 val = TREE_OPERAND (val, 0);
4620 /* Don't do ellipsis conversion for __built_in_constant_p
4621 as this will result in spurious errors for non-trivial
4622 types. */
4623 val = require_complete_type (val, complain);
4625 else
4626 val = convert_arg_to_ellipsis (val, complain);
4628 (**values)[i] = val;
4631 if (typetail)
4632 typetail = TREE_CHAIN (typetail);
4635 if (typetail != 0 && typetail != void_list_node)
4637 /* See if there are default arguments that can be used. Because
4638 we hold default arguments in the FUNCTION_TYPE (which is so
4639 wrong), we can see default parameters here from deduced
4640 contexts (and via typeof) for indirect function calls.
4641 Fortunately we know whether we have a function decl to
4642 provide default arguments in a language conformant
4643 manner. */
4644 if (fndecl && TREE_PURPOSE (typetail)
4645 && TREE_CODE (TREE_PURPOSE (typetail)) != DEFERRED_PARSE)
4647 for (; typetail != void_list_node; ++i)
4649 /* After DR777, with explicit template args we can end up with a
4650 default argument followed by no default argument. */
4651 if (!TREE_PURPOSE (typetail))
4652 break;
4653 tree parmval
4654 = convert_default_arg (TREE_VALUE (typetail),
4655 TREE_PURPOSE (typetail),
4656 fndecl, i, complain);
4658 if (parmval == error_mark_node)
4659 return -1;
4661 vec_safe_push (*values, parmval);
4662 typetail = TREE_CHAIN (typetail);
4663 /* ends with `...'. */
4664 if (typetail == NULL_TREE)
4665 break;
4669 if (typetail && typetail != void_list_node)
4671 if (complain & tf_error)
4672 error_args_num (input_location, fndecl, /*too_many_p=*/false);
4673 return -1;
4677 return (int) i;
4680 /* Build a binary-operation expression, after performing default
4681 conversions on the operands. CODE is the kind of expression to
4682 build. ARG1 and ARG2 are the arguments. ARG1_CODE and ARG2_CODE
4683 are the tree codes which correspond to ARG1 and ARG2 when issuing
4684 warnings about possibly misplaced parentheses. They may differ
4685 from the TREE_CODE of ARG1 and ARG2 if the parser has done constant
4686 folding (e.g., if the parser sees "a | 1 + 1", it may call this
4687 routine with ARG2 being an INTEGER_CST and ARG2_CODE == PLUS_EXPR).
4688 To avoid issuing any parentheses warnings, pass ARG1_CODE and/or
4689 ARG2_CODE as ERROR_MARK. */
4691 tree
4692 build_x_binary_op (const op_location_t &loc, enum tree_code code, tree arg1,
4693 enum tree_code arg1_code, tree arg2,
4694 enum tree_code arg2_code, tree lookups,
4695 tree *overload_p, tsubst_flags_t complain)
4697 tree orig_arg1;
4698 tree orig_arg2;
4699 tree expr;
4700 tree overload = NULL_TREE;
4702 orig_arg1 = arg1;
4703 orig_arg2 = arg2;
4705 if (processing_template_decl)
4707 if (type_dependent_expression_p (arg1)
4708 || type_dependent_expression_p (arg2))
4710 expr = build_min_nt_loc (loc, code, arg1, arg2);
4711 TREE_TYPE (expr)
4712 = build_dependent_operator_type (lookups, code, false);
4713 return expr;
4715 arg1 = build_non_dependent_expr (arg1);
4716 arg2 = build_non_dependent_expr (arg2);
4719 if (code == DOTSTAR_EXPR)
4720 expr = build_m_component_ref (arg1, arg2, complain);
4721 else
4722 expr = build_new_op (loc, code, LOOKUP_NORMAL, arg1, arg2, NULL_TREE,
4723 lookups, &overload, complain);
4725 if (overload_p != NULL)
4726 *overload_p = overload;
4728 /* Check for cases such as x+y<<z which users are likely to
4729 misinterpret. But don't warn about obj << x + y, since that is a
4730 common idiom for I/O. */
4731 if (warn_parentheses
4732 && (complain & tf_warning)
4733 && !processing_template_decl
4734 && !error_operand_p (arg1)
4735 && !error_operand_p (arg2)
4736 && (code != LSHIFT_EXPR
4737 || !CLASS_TYPE_P (TREE_TYPE (arg1))))
4738 warn_about_parentheses (loc, code, arg1_code, orig_arg1,
4739 arg2_code, orig_arg2);
4741 if (processing_template_decl && expr != error_mark_node)
4743 if (overload != NULL_TREE)
4744 return (build_min_non_dep_op_overload
4745 (code, expr, overload, orig_arg1, orig_arg2));
4747 return build_min_non_dep (code, expr, orig_arg1, orig_arg2);
4750 return expr;
4753 /* Build and return an ARRAY_REF expression. */
4755 tree
4756 build_x_array_ref (location_t loc, tree arg1, tree arg2,
4757 tsubst_flags_t complain)
4759 tree orig_arg1 = arg1;
4760 tree orig_arg2 = arg2;
4761 tree expr;
4762 tree overload = NULL_TREE;
4764 if (processing_template_decl)
4766 if (type_dependent_expression_p (arg1)
4767 || type_dependent_expression_p (arg2))
4768 return build_min_nt_loc (loc, ARRAY_REF, arg1, arg2,
4769 NULL_TREE, NULL_TREE);
4770 arg1 = build_non_dependent_expr (arg1);
4771 arg2 = build_non_dependent_expr (arg2);
4774 expr = build_new_op (loc, ARRAY_REF, LOOKUP_NORMAL, arg1, arg2,
4775 NULL_TREE, NULL_TREE, &overload, complain);
4777 if (processing_template_decl && expr != error_mark_node)
4779 if (overload != NULL_TREE)
4780 return (build_min_non_dep_op_overload
4781 (ARRAY_REF, expr, overload, orig_arg1, orig_arg2));
4783 return build_min_non_dep (ARRAY_REF, expr, orig_arg1, orig_arg2,
4784 NULL_TREE, NULL_TREE);
4786 return expr;
4789 /* Return whether OP is an expression of enum type cast to integer
4790 type. In C++ even unsigned enum types are cast to signed integer
4791 types. We do not want to issue warnings about comparisons between
4792 signed and unsigned types when one of the types is an enum type.
4793 Those warnings are always false positives in practice. */
4795 static bool
4796 enum_cast_to_int (tree op)
4798 if (CONVERT_EXPR_P (op)
4799 && TREE_TYPE (op) == integer_type_node
4800 && TREE_CODE (TREE_TYPE (TREE_OPERAND (op, 0))) == ENUMERAL_TYPE
4801 && TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (op, 0))))
4802 return true;
4804 /* The cast may have been pushed into a COND_EXPR. */
4805 if (TREE_CODE (op) == COND_EXPR)
4806 return (enum_cast_to_int (TREE_OPERAND (op, 1))
4807 || enum_cast_to_int (TREE_OPERAND (op, 2)));
4809 return false;
4812 /* For the c-common bits. */
4813 tree
4814 build_binary_op (location_t location, enum tree_code code, tree op0, tree op1,
4815 bool /*convert_p*/)
4817 return cp_build_binary_op (location, code, op0, op1, tf_warning_or_error);
4820 /* Build a vector comparison of ARG0 and ARG1 using CODE opcode
4821 into a value of TYPE type. Comparison is done via VEC_COND_EXPR. */
4823 static tree
4824 build_vec_cmp (tree_code code, tree type,
4825 tree arg0, tree arg1)
4827 tree zero_vec = build_zero_cst (type);
4828 tree minus_one_vec = build_minus_one_cst (type);
4829 tree cmp_type = truth_type_for (type);
4830 tree cmp = build2 (code, cmp_type, arg0, arg1);
4831 return build3 (VEC_COND_EXPR, type, cmp, minus_one_vec, zero_vec);
4834 /* Possibly warn about an address never being NULL. */
4836 static void
4837 warn_for_null_address (location_t location, tree op, tsubst_flags_t complain)
4839 /* Prevent warnings issued for macro expansion. */
4840 if (!warn_address
4841 || (complain & tf_warning) == 0
4842 || c_inhibit_evaluation_warnings != 0
4843 || from_macro_expansion_at (location)
4844 || warning_suppressed_p (op, OPT_Waddress))
4845 return;
4847 if (TREE_CODE (op) == NON_DEPENDENT_EXPR)
4848 op = TREE_OPERAND (op, 0);
4850 tree cop = fold_for_warn (op);
4852 if (TREE_CODE (cop) == NON_LVALUE_EXPR)
4853 /* Unwrap the expression for C++ 98. */
4854 cop = TREE_OPERAND (cop, 0);
4856 if (TREE_CODE (cop) == PTRMEM_CST)
4858 /* The address of a nonstatic data member is never null. */
4859 warning_at (location, OPT_Waddress,
4860 "the address %qE will never be NULL",
4861 cop);
4862 return;
4865 if (TREE_CODE (cop) == NOP_EXPR)
4867 /* Allow casts to intptr_t to suppress the warning. */
4868 tree type = TREE_TYPE (cop);
4869 if (TREE_CODE (type) == INTEGER_TYPE)
4870 return;
4872 STRIP_NOPS (cop);
4875 bool warned = false;
4876 if (TREE_CODE (cop) == ADDR_EXPR)
4878 cop = TREE_OPERAND (cop, 0);
4880 /* Set to true in the loop below if OP dereferences its operand.
4881 In such a case the ultimate target need not be a decl for
4882 the null [in]equality test to be necessarily constant. */
4883 bool deref = false;
4885 /* Get the outermost array or object, or member. */
4886 while (handled_component_p (cop))
4888 if (TREE_CODE (cop) == COMPONENT_REF)
4890 /* Get the member (its address is never null). */
4891 cop = TREE_OPERAND (cop, 1);
4892 break;
4895 /* Get the outer array/object to refer to in the warning. */
4896 cop = TREE_OPERAND (cop, 0);
4897 deref = true;
4900 if ((!deref && !decl_with_nonnull_addr_p (cop))
4901 || from_macro_expansion_at (location)
4902 || warning_suppressed_p (cop, OPT_Waddress))
4903 return;
4905 warned = warning_at (location, OPT_Waddress,
4906 "the address of %qD will never be NULL", cop);
4907 op = cop;
4909 else if (TREE_CODE (cop) == POINTER_PLUS_EXPR)
4911 /* Adding zero to the null pointer is well-defined in C++. When
4912 the offset is unknown (i.e., not a constant) warn anyway since
4913 it's less likely that the pointer operand is null than not. */
4914 tree off = TREE_OPERAND (cop, 1);
4915 if (!integer_zerop (off)
4916 && !warning_suppressed_p (cop, OPT_Waddress))
4918 tree base = TREE_OPERAND (cop, 0);
4919 STRIP_NOPS (base);
4920 if (TYPE_REF_P (TREE_TYPE (base)))
4921 warning_at (location, OPT_Waddress, "the compiler can assume that "
4922 "the address of %qE will never be NULL", base);
4923 else
4924 warning_at (location, OPT_Waddress, "comparing the result of "
4925 "pointer addition %qE and NULL", cop);
4927 return;
4929 else if (CONVERT_EXPR_P (op)
4930 && TYPE_REF_P (TREE_TYPE (TREE_OPERAND (op, 0))))
4932 STRIP_NOPS (op);
4934 if (TREE_CODE (op) == COMPONENT_REF)
4935 op = TREE_OPERAND (op, 1);
4937 if (DECL_P (op))
4938 warned = warning_at (location, OPT_Waddress,
4939 "the compiler can assume that the address of "
4940 "%qD will never be NULL", op);
4943 if (warned && DECL_P (op))
4944 inform (DECL_SOURCE_LOCATION (op), "%qD declared here", op);
4947 /* Warn about [expr.arith.conv]/2: If one operand is of enumeration type and
4948 the other operand is of a different enumeration type or a floating-point
4949 type, this behavior is deprecated ([depr.arith.conv.enum]). CODE is the
4950 code of the binary operation, TYPE0 and TYPE1 are the types of the operands,
4951 and LOC is the location for the whole binary expression.
4952 TODO: Consider combining this with -Wenum-compare in build_new_op_1. */
4954 static void
4955 do_warn_enum_conversions (location_t loc, enum tree_code code, tree type0,
4956 tree type1)
4958 if (TREE_CODE (type0) == ENUMERAL_TYPE
4959 && TREE_CODE (type1) == ENUMERAL_TYPE
4960 && TYPE_MAIN_VARIANT (type0) != TYPE_MAIN_VARIANT (type1))
4962 /* In C++20, -Wdeprecated-enum-enum-conversion is on by default.
4963 Otherwise, warn if -Wenum-conversion is on. */
4964 enum opt_code opt;
4965 if (warn_deprecated_enum_enum_conv)
4966 opt = OPT_Wdeprecated_enum_enum_conversion;
4967 else if (warn_enum_conversion)
4968 opt = OPT_Wenum_conversion;
4969 else
4970 return;
4972 switch (code)
4974 case GT_EXPR:
4975 case LT_EXPR:
4976 case GE_EXPR:
4977 case LE_EXPR:
4978 case EQ_EXPR:
4979 case NE_EXPR:
4980 /* Comparisons are handled by -Wenum-compare. */
4981 return;
4982 case SPACESHIP_EXPR:
4983 /* This is invalid, don't warn. */
4984 return;
4985 case BIT_AND_EXPR:
4986 case BIT_IOR_EXPR:
4987 case BIT_XOR_EXPR:
4988 warning_at (loc, opt, "bitwise operation between different "
4989 "enumeration types %qT and %qT is deprecated",
4990 type0, type1);
4991 return;
4992 default:
4993 warning_at (loc, opt, "arithmetic between different enumeration "
4994 "types %qT and %qT is deprecated", type0, type1);
4995 return;
4998 else if ((TREE_CODE (type0) == ENUMERAL_TYPE
4999 && TREE_CODE (type1) == REAL_TYPE)
5000 || (TREE_CODE (type0) == REAL_TYPE
5001 && TREE_CODE (type1) == ENUMERAL_TYPE))
5003 const bool enum_first_p = TREE_CODE (type0) == ENUMERAL_TYPE;
5004 /* In C++20, -Wdeprecated-enum-float-conversion is on by default.
5005 Otherwise, warn if -Wenum-conversion is on. */
5006 enum opt_code opt;
5007 if (warn_deprecated_enum_float_conv)
5008 opt = OPT_Wdeprecated_enum_float_conversion;
5009 else if (warn_enum_conversion)
5010 opt = OPT_Wenum_conversion;
5011 else
5012 return;
5014 switch (code)
5016 case GT_EXPR:
5017 case LT_EXPR:
5018 case GE_EXPR:
5019 case LE_EXPR:
5020 case EQ_EXPR:
5021 case NE_EXPR:
5022 if (enum_first_p)
5023 warning_at (loc, opt, "comparison of enumeration type %qT with "
5024 "floating-point type %qT is deprecated",
5025 type0, type1);
5026 else
5027 warning_at (loc, opt, "comparison of floating-point type %qT "
5028 "with enumeration type %qT is deprecated",
5029 type0, type1);
5030 return;
5031 case SPACESHIP_EXPR:
5032 /* This is invalid, don't warn. */
5033 return;
5034 default:
5035 if (enum_first_p)
5036 warning_at (loc, opt, "arithmetic between enumeration type %qT "
5037 "and floating-point type %qT is deprecated",
5038 type0, type1);
5039 else
5040 warning_at (loc, opt, "arithmetic between floating-point type %qT "
5041 "and enumeration type %qT is deprecated",
5042 type0, type1);
5043 return;
5048 /* Build a binary-operation expression without default conversions.
5049 CODE is the kind of expression to build.
5050 LOCATION is the location_t of the operator in the source code.
5051 This function differs from `build' in several ways:
5052 the data type of the result is computed and recorded in it,
5053 warnings are generated if arg data types are invalid,
5054 special handling for addition and subtraction of pointers is known,
5055 and some optimization is done (operations on narrow ints
5056 are done in the narrower type when that gives the same result).
5057 Constant folding is also done before the result is returned.
5059 Note that the operands will never have enumeral types
5060 because either they have just had the default conversions performed
5061 or they have both just been converted to some other type in which
5062 the arithmetic is to be done.
5064 C++: must do special pointer arithmetic when implementing
5065 multiple inheritance, and deal with pointer to member functions. */
5067 tree
5068 cp_build_binary_op (const op_location_t &location,
5069 enum tree_code code, tree orig_op0, tree orig_op1,
5070 tsubst_flags_t complain)
5072 tree op0, op1;
5073 enum tree_code code0, code1;
5074 tree type0, type1, orig_type0, orig_type1;
5075 const char *invalid_op_diag;
5077 /* Expression code to give to the expression when it is built.
5078 Normally this is CODE, which is what the caller asked for,
5079 but in some special cases we change it. */
5080 enum tree_code resultcode = code;
5082 /* Data type in which the computation is to be performed.
5083 In the simplest cases this is the common type of the arguments. */
5084 tree result_type = NULL_TREE;
5086 /* When the computation is in excess precision, the type of the
5087 final EXCESS_PRECISION_EXPR. */
5088 tree semantic_result_type = NULL;
5090 /* Nonzero means operands have already been type-converted
5091 in whatever way is necessary.
5092 Zero means they need to be converted to RESULT_TYPE. */
5093 int converted = 0;
5095 /* Nonzero means create the expression with this type, rather than
5096 RESULT_TYPE. */
5097 tree build_type = 0;
5099 /* Nonzero means after finally constructing the expression
5100 convert it to this type. */
5101 tree final_type = 0;
5103 tree result;
5105 /* Nonzero if this is an operation like MIN or MAX which can
5106 safely be computed in short if both args are promoted shorts.
5107 Also implies COMMON.
5108 -1 indicates a bitwise operation; this makes a difference
5109 in the exact conditions for when it is safe to do the operation
5110 in a narrower mode. */
5111 int shorten = 0;
5113 /* Nonzero if this is a comparison operation;
5114 if both args are promoted shorts, compare the original shorts.
5115 Also implies COMMON. */
5116 int short_compare = 0;
5118 /* Nonzero if this is a right-shift operation, which can be computed on the
5119 original short and then promoted if the operand is a promoted short. */
5120 int short_shift = 0;
5122 /* Nonzero means set RESULT_TYPE to the common type of the args. */
5123 int common = 0;
5125 /* True if both operands have arithmetic type. */
5126 bool arithmetic_types_p;
5128 /* Remember whether we're doing / or %. */
5129 bool doing_div_or_mod = false;
5131 /* Remember whether we're doing << or >>. */
5132 bool doing_shift = false;
5134 /* Tree holding instrumentation expression. */
5135 tree instrument_expr = NULL_TREE;
5137 /* True means this is an arithmetic operation that may need excess
5138 precision. */
5139 bool may_need_excess_precision;
5141 /* Apply default conversions. */
5142 op0 = resolve_nondeduced_context (orig_op0, complain);
5143 op1 = resolve_nondeduced_context (orig_op1, complain);
5145 if (code == TRUTH_AND_EXPR || code == TRUTH_ANDIF_EXPR
5146 || code == TRUTH_OR_EXPR || code == TRUTH_ORIF_EXPR
5147 || code == TRUTH_XOR_EXPR)
5149 if (!really_overloaded_fn (op0) && !VOID_TYPE_P (TREE_TYPE (op0)))
5150 op0 = decay_conversion (op0, complain);
5151 if (!really_overloaded_fn (op1) && !VOID_TYPE_P (TREE_TYPE (op1)))
5152 op1 = decay_conversion (op1, complain);
5154 else
5156 if (!really_overloaded_fn (op0) && !VOID_TYPE_P (TREE_TYPE (op0)))
5157 op0 = cp_default_conversion (op0, complain);
5158 if (!really_overloaded_fn (op1) && !VOID_TYPE_P (TREE_TYPE (op1)))
5159 op1 = cp_default_conversion (op1, complain);
5162 /* Strip NON_LVALUE_EXPRs, etc., since we aren't using as an lvalue. */
5163 STRIP_TYPE_NOPS (op0);
5164 STRIP_TYPE_NOPS (op1);
5166 /* DTRT if one side is an overloaded function, but complain about it. */
5167 if (type_unknown_p (op0))
5169 tree t = instantiate_type (TREE_TYPE (op1), op0, tf_none);
5170 if (t != error_mark_node)
5172 if (complain & tf_error)
5173 permerror (location,
5174 "assuming cast to type %qT from overloaded function",
5175 TREE_TYPE (t));
5176 op0 = t;
5179 if (type_unknown_p (op1))
5181 tree t = instantiate_type (TREE_TYPE (op0), op1, tf_none);
5182 if (t != error_mark_node)
5184 if (complain & tf_error)
5185 permerror (location,
5186 "assuming cast to type %qT from overloaded function",
5187 TREE_TYPE (t));
5188 op1 = t;
5192 orig_type0 = type0 = TREE_TYPE (op0);
5193 orig_type1 = type1 = TREE_TYPE (op1);
5194 tree non_ep_op0 = op0;
5195 tree non_ep_op1 = op1;
5197 /* The expression codes of the data types of the arguments tell us
5198 whether the arguments are integers, floating, pointers, etc. */
5199 code0 = TREE_CODE (type0);
5200 code1 = TREE_CODE (type1);
5202 /* If an error was already reported for one of the arguments,
5203 avoid reporting another error. */
5204 if (code0 == ERROR_MARK || code1 == ERROR_MARK)
5205 return error_mark_node;
5207 if ((invalid_op_diag
5208 = targetm.invalid_binary_op (code, type0, type1)))
5210 if (complain & tf_error)
5212 if (code0 == REAL_TYPE
5213 && code1 == REAL_TYPE
5214 && (extended_float_type_p (type0)
5215 || extended_float_type_p (type1))
5216 && cp_compare_floating_point_conversion_ranks (type0,
5217 type1) == 3)
5219 rich_location richloc (line_table, location);
5220 binary_op_error (&richloc, code, type0, type1);
5222 else
5223 error (invalid_op_diag);
5225 return error_mark_node;
5228 switch (code)
5230 case PLUS_EXPR:
5231 case MINUS_EXPR:
5232 case MULT_EXPR:
5233 case TRUNC_DIV_EXPR:
5234 case CEIL_DIV_EXPR:
5235 case FLOOR_DIV_EXPR:
5236 case ROUND_DIV_EXPR:
5237 case EXACT_DIV_EXPR:
5238 may_need_excess_precision = true;
5239 break;
5240 case EQ_EXPR:
5241 case NE_EXPR:
5242 case LE_EXPR:
5243 case GE_EXPR:
5244 case LT_EXPR:
5245 case GT_EXPR:
5246 case SPACESHIP_EXPR:
5247 /* Excess precision for implicit conversions of integers to
5248 floating point. */
5249 may_need_excess_precision = (ANY_INTEGRAL_TYPE_P (type0)
5250 || ANY_INTEGRAL_TYPE_P (type1));
5251 break;
5252 default:
5253 may_need_excess_precision = false;
5254 break;
5256 if (TREE_CODE (op0) == EXCESS_PRECISION_EXPR)
5258 op0 = TREE_OPERAND (op0, 0);
5259 type0 = TREE_TYPE (op0);
5261 else if (may_need_excess_precision
5262 && (code0 == REAL_TYPE || code0 == COMPLEX_TYPE))
5263 if (tree eptype = excess_precision_type (type0))
5265 type0 = eptype;
5266 op0 = convert (eptype, op0);
5268 if (TREE_CODE (op1) == EXCESS_PRECISION_EXPR)
5270 op1 = TREE_OPERAND (op1, 0);
5271 type1 = TREE_TYPE (op1);
5273 else if (may_need_excess_precision
5274 && (code1 == REAL_TYPE || code1 == COMPLEX_TYPE))
5275 if (tree eptype = excess_precision_type (type1))
5277 type1 = eptype;
5278 op1 = convert (eptype, op1);
5281 /* Issue warnings about peculiar, but valid, uses of NULL. */
5282 if ((null_node_p (orig_op0) || null_node_p (orig_op1))
5283 /* It's reasonable to use pointer values as operands of &&
5284 and ||, so NULL is no exception. */
5285 && code != TRUTH_ANDIF_EXPR && code != TRUTH_ORIF_EXPR
5286 && ( /* Both are NULL (or 0) and the operation was not a
5287 comparison or a pointer subtraction. */
5288 (null_ptr_cst_p (orig_op0) && null_ptr_cst_p (orig_op1)
5289 && code != EQ_EXPR && code != NE_EXPR && code != MINUS_EXPR)
5290 /* Or if one of OP0 or OP1 is neither a pointer nor NULL. */
5291 || (!null_ptr_cst_p (orig_op0)
5292 && !TYPE_PTR_OR_PTRMEM_P (type0))
5293 || (!null_ptr_cst_p (orig_op1)
5294 && !TYPE_PTR_OR_PTRMEM_P (type1)))
5295 && (complain & tf_warning))
5297 location_t loc =
5298 expansion_point_location_if_in_system_header (input_location);
5300 warning_at (loc, OPT_Wpointer_arith, "NULL used in arithmetic");
5303 /* In case when one of the operands of the binary operation is
5304 a vector and another is a scalar -- convert scalar to vector. */
5305 if ((gnu_vector_type_p (type0) && code1 != VECTOR_TYPE)
5306 || (gnu_vector_type_p (type1) && code0 != VECTOR_TYPE))
5308 enum stv_conv convert_flag
5309 = scalar_to_vector (location, code, non_ep_op0, non_ep_op1,
5310 complain & tf_error);
5312 switch (convert_flag)
5314 case stv_error:
5315 return error_mark_node;
5316 case stv_firstarg:
5318 op0 = convert (TREE_TYPE (type1), op0);
5319 op0 = save_expr (op0);
5320 op0 = build_vector_from_val (type1, op0);
5321 orig_type0 = type0 = TREE_TYPE (op0);
5322 code0 = TREE_CODE (type0);
5323 converted = 1;
5324 break;
5326 case stv_secondarg:
5328 op1 = convert (TREE_TYPE (type0), op1);
5329 op1 = save_expr (op1);
5330 op1 = build_vector_from_val (type0, op1);
5331 orig_type1 = type1 = TREE_TYPE (op1);
5332 code1 = TREE_CODE (type1);
5333 converted = 1;
5334 break;
5336 default:
5337 break;
5341 switch (code)
5343 case MINUS_EXPR:
5344 /* Subtraction of two similar pointers.
5345 We must subtract them as integers, then divide by object size. */
5346 if (code0 == POINTER_TYPE && code1 == POINTER_TYPE
5347 && same_type_ignoring_top_level_qualifiers_p (TREE_TYPE (type0),
5348 TREE_TYPE (type1)))
5350 result = pointer_diff (location, op0, op1,
5351 common_pointer_type (type0, type1), complain,
5352 &instrument_expr);
5353 if (instrument_expr != NULL)
5354 result = build2 (COMPOUND_EXPR, TREE_TYPE (result),
5355 instrument_expr, result);
5357 return result;
5359 /* In all other cases except pointer - int, the usual arithmetic
5360 rules apply. */
5361 else if (!(code0 == POINTER_TYPE && code1 == INTEGER_TYPE))
5363 common = 1;
5364 break;
5366 /* The pointer - int case is just like pointer + int; fall
5367 through. */
5368 gcc_fallthrough ();
5369 case PLUS_EXPR:
5370 if ((code0 == POINTER_TYPE || code1 == POINTER_TYPE)
5371 && (code0 == INTEGER_TYPE || code1 == INTEGER_TYPE))
5373 tree ptr_operand;
5374 tree int_operand;
5375 ptr_operand = ((code0 == POINTER_TYPE) ? op0 : op1);
5376 int_operand = ((code0 == INTEGER_TYPE) ? op0 : op1);
5377 if (processing_template_decl)
5379 result_type = TREE_TYPE (ptr_operand);
5380 break;
5382 return cp_pointer_int_sum (location, code,
5383 ptr_operand,
5384 int_operand,
5385 complain);
5387 common = 1;
5388 break;
5390 case MULT_EXPR:
5391 common = 1;
5392 break;
5394 case TRUNC_DIV_EXPR:
5395 case CEIL_DIV_EXPR:
5396 case FLOOR_DIV_EXPR:
5397 case ROUND_DIV_EXPR:
5398 case EXACT_DIV_EXPR:
5399 if (TREE_CODE (op0) == SIZEOF_EXPR && TREE_CODE (op1) == SIZEOF_EXPR)
5401 tree type0 = TREE_OPERAND (op0, 0);
5402 tree type1 = TREE_OPERAND (op1, 0);
5403 tree first_arg = tree_strip_any_location_wrapper (type0);
5404 if (!TYPE_P (type0))
5405 type0 = TREE_TYPE (type0);
5406 if (!TYPE_P (type1))
5407 type1 = TREE_TYPE (type1);
5408 if (INDIRECT_TYPE_P (type0) && same_type_p (TREE_TYPE (type0), type1))
5410 if (!(TREE_CODE (first_arg) == PARM_DECL
5411 && DECL_ARRAY_PARAMETER_P (first_arg)
5412 && warn_sizeof_array_argument)
5413 && (complain & tf_warning))
5415 auto_diagnostic_group d;
5416 if (warning_at (location, OPT_Wsizeof_pointer_div,
5417 "division %<sizeof (%T) / sizeof (%T)%> does "
5418 "not compute the number of array elements",
5419 type0, type1))
5420 if (DECL_P (first_arg))
5421 inform (DECL_SOURCE_LOCATION (first_arg),
5422 "first %<sizeof%> operand was declared here");
5425 else if (TREE_CODE (type0) == ARRAY_TYPE
5426 && !char_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (type0)))
5427 /* Set by finish_parenthesized_expr. */
5428 && !warning_suppressed_p (op1, OPT_Wsizeof_array_div)
5429 && (complain & tf_warning))
5430 maybe_warn_sizeof_array_div (location, first_arg, type0,
5431 op1, non_reference (type1));
5434 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE
5435 || code0 == COMPLEX_TYPE || code0 == VECTOR_TYPE)
5436 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE
5437 || code1 == COMPLEX_TYPE || code1 == VECTOR_TYPE))
5439 enum tree_code tcode0 = code0, tcode1 = code1;
5440 doing_div_or_mod = true;
5441 warn_for_div_by_zero (location, fold_for_warn (op1));
5443 if (tcode0 == COMPLEX_TYPE || tcode0 == VECTOR_TYPE)
5444 tcode0 = TREE_CODE (TREE_TYPE (TREE_TYPE (op0)));
5445 if (tcode1 == COMPLEX_TYPE || tcode1 == VECTOR_TYPE)
5446 tcode1 = TREE_CODE (TREE_TYPE (TREE_TYPE (op1)));
5448 if (!(tcode0 == INTEGER_TYPE && tcode1 == INTEGER_TYPE))
5449 resultcode = RDIV_EXPR;
5450 else
5452 /* When dividing two signed integers, we have to promote to int.
5453 unless we divide by a constant != -1. Note that default
5454 conversion will have been performed on the operands at this
5455 point, so we have to dig out the original type to find out if
5456 it was unsigned. */
5457 tree stripped_op1 = tree_strip_any_location_wrapper (op1);
5458 shorten = ((TREE_CODE (op0) == NOP_EXPR
5459 && TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (op0, 0))))
5460 || (TREE_CODE (stripped_op1) == INTEGER_CST
5461 && ! integer_all_onesp (stripped_op1)));
5464 common = 1;
5466 break;
5468 case BIT_AND_EXPR:
5469 case BIT_IOR_EXPR:
5470 case BIT_XOR_EXPR:
5471 if ((code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
5472 || (code0 == VECTOR_TYPE && code1 == VECTOR_TYPE
5473 && !VECTOR_FLOAT_TYPE_P (type0)
5474 && !VECTOR_FLOAT_TYPE_P (type1)))
5475 shorten = -1;
5476 break;
5478 case TRUNC_MOD_EXPR:
5479 case FLOOR_MOD_EXPR:
5480 doing_div_or_mod = true;
5481 warn_for_div_by_zero (location, fold_for_warn (op1));
5483 if (code0 == VECTOR_TYPE && code1 == VECTOR_TYPE
5484 && TREE_CODE (TREE_TYPE (type0)) == INTEGER_TYPE
5485 && TREE_CODE (TREE_TYPE (type1)) == INTEGER_TYPE)
5486 common = 1;
5487 else if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
5489 /* Although it would be tempting to shorten always here, that loses
5490 on some targets, since the modulo instruction is undefined if the
5491 quotient can't be represented in the computation mode. We shorten
5492 only if unsigned or if dividing by something we know != -1. */
5493 tree stripped_op1 = tree_strip_any_location_wrapper (op1);
5494 shorten = ((TREE_CODE (op0) == NOP_EXPR
5495 && TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (op0, 0))))
5496 || (TREE_CODE (stripped_op1) == INTEGER_CST
5497 && ! integer_all_onesp (stripped_op1)));
5498 common = 1;
5500 break;
5502 case TRUTH_ANDIF_EXPR:
5503 case TRUTH_ORIF_EXPR:
5504 case TRUTH_AND_EXPR:
5505 case TRUTH_OR_EXPR:
5506 if (!VECTOR_TYPE_P (type0) && gnu_vector_type_p (type1))
5508 if (!COMPARISON_CLASS_P (op1))
5509 op1 = cp_build_binary_op (EXPR_LOCATION (op1), NE_EXPR, op1,
5510 build_zero_cst (type1), complain);
5511 if (code == TRUTH_ANDIF_EXPR)
5513 tree z = build_zero_cst (TREE_TYPE (op1));
5514 return build_conditional_expr (location, op0, op1, z, complain);
5516 else if (code == TRUTH_ORIF_EXPR)
5518 tree m1 = build_all_ones_cst (TREE_TYPE (op1));
5519 return build_conditional_expr (location, op0, m1, op1, complain);
5521 else
5522 gcc_unreachable ();
5524 if (gnu_vector_type_p (type0)
5525 && (!VECTOR_TYPE_P (type1) || gnu_vector_type_p (type1)))
5527 if (!COMPARISON_CLASS_P (op0))
5528 op0 = cp_build_binary_op (EXPR_LOCATION (op0), NE_EXPR, op0,
5529 build_zero_cst (type0), complain);
5530 if (!VECTOR_TYPE_P (type1))
5532 tree m1 = build_all_ones_cst (TREE_TYPE (op0));
5533 tree z = build_zero_cst (TREE_TYPE (op0));
5534 op1 = build_conditional_expr (location, op1, m1, z, complain);
5536 else if (!COMPARISON_CLASS_P (op1))
5537 op1 = cp_build_binary_op (EXPR_LOCATION (op1), NE_EXPR, op1,
5538 build_zero_cst (type1), complain);
5540 if (code == TRUTH_ANDIF_EXPR)
5541 code = BIT_AND_EXPR;
5542 else if (code == TRUTH_ORIF_EXPR)
5543 code = BIT_IOR_EXPR;
5544 else
5545 gcc_unreachable ();
5547 return cp_build_binary_op (location, code, op0, op1, complain);
5550 result_type = boolean_type_node;
5551 break;
5553 /* Shift operations: result has same type as first operand;
5554 always convert second operand to int.
5555 Also set SHORT_SHIFT if shifting rightward. */
5557 case RSHIFT_EXPR:
5558 if (gnu_vector_type_p (type0)
5559 && code1 == INTEGER_TYPE
5560 && TREE_CODE (TREE_TYPE (type0)) == INTEGER_TYPE)
5562 result_type = type0;
5563 converted = 1;
5565 else if (gnu_vector_type_p (type0)
5566 && gnu_vector_type_p (type1)
5567 && TREE_CODE (TREE_TYPE (type0)) == INTEGER_TYPE
5568 && TREE_CODE (TREE_TYPE (type1)) == INTEGER_TYPE
5569 && known_eq (TYPE_VECTOR_SUBPARTS (type0),
5570 TYPE_VECTOR_SUBPARTS (type1)))
5572 result_type = type0;
5573 converted = 1;
5575 else if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
5577 tree const_op1 = fold_for_warn (op1);
5578 if (TREE_CODE (const_op1) != INTEGER_CST)
5579 const_op1 = op1;
5580 result_type = type0;
5581 doing_shift = true;
5582 if (TREE_CODE (const_op1) == INTEGER_CST)
5584 if (tree_int_cst_lt (const_op1, integer_zero_node))
5586 if ((complain & tf_warning)
5587 && c_inhibit_evaluation_warnings == 0)
5588 warning_at (location, OPT_Wshift_count_negative,
5589 "right shift count is negative");
5591 else
5593 if (!integer_zerop (const_op1))
5594 short_shift = 1;
5596 if (compare_tree_int (const_op1, TYPE_PRECISION (type0)) >= 0
5597 && (complain & tf_warning)
5598 && c_inhibit_evaluation_warnings == 0)
5599 warning_at (location, OPT_Wshift_count_overflow,
5600 "right shift count >= width of type");
5603 /* Avoid converting op1 to result_type later. */
5604 converted = 1;
5606 break;
5608 case LSHIFT_EXPR:
5609 if (gnu_vector_type_p (type0)
5610 && code1 == INTEGER_TYPE
5611 && TREE_CODE (TREE_TYPE (type0)) == INTEGER_TYPE)
5613 result_type = type0;
5614 converted = 1;
5616 else if (gnu_vector_type_p (type0)
5617 && gnu_vector_type_p (type1)
5618 && TREE_CODE (TREE_TYPE (type0)) == INTEGER_TYPE
5619 && TREE_CODE (TREE_TYPE (type1)) == INTEGER_TYPE
5620 && known_eq (TYPE_VECTOR_SUBPARTS (type0),
5621 TYPE_VECTOR_SUBPARTS (type1)))
5623 result_type = type0;
5624 converted = 1;
5626 else if (code0 == INTEGER_TYPE && code1 == INTEGER_TYPE)
5628 tree const_op0 = fold_for_warn (op0);
5629 if (TREE_CODE (const_op0) != INTEGER_CST)
5630 const_op0 = op0;
5631 tree const_op1 = fold_for_warn (op1);
5632 if (TREE_CODE (const_op1) != INTEGER_CST)
5633 const_op1 = op1;
5634 result_type = type0;
5635 doing_shift = true;
5636 if (TREE_CODE (const_op0) == INTEGER_CST
5637 && tree_int_cst_sgn (const_op0) < 0
5638 && !TYPE_OVERFLOW_WRAPS (type0)
5639 && (complain & tf_warning)
5640 && c_inhibit_evaluation_warnings == 0)
5641 warning_at (location, OPT_Wshift_negative_value,
5642 "left shift of negative value");
5643 if (TREE_CODE (const_op1) == INTEGER_CST)
5645 if (tree_int_cst_lt (const_op1, integer_zero_node))
5647 if ((complain & tf_warning)
5648 && c_inhibit_evaluation_warnings == 0)
5649 warning_at (location, OPT_Wshift_count_negative,
5650 "left shift count is negative");
5652 else if (compare_tree_int (const_op1,
5653 TYPE_PRECISION (type0)) >= 0)
5655 if ((complain & tf_warning)
5656 && c_inhibit_evaluation_warnings == 0)
5657 warning_at (location, OPT_Wshift_count_overflow,
5658 "left shift count >= width of type");
5660 else if (TREE_CODE (const_op0) == INTEGER_CST
5661 && (complain & tf_warning))
5662 maybe_warn_shift_overflow (location, const_op0, const_op1);
5664 /* Avoid converting op1 to result_type later. */
5665 converted = 1;
5667 break;
5669 case EQ_EXPR:
5670 case NE_EXPR:
5671 if (gnu_vector_type_p (type0) && gnu_vector_type_p (type1))
5672 goto vector_compare;
5673 if ((complain & tf_warning)
5674 && c_inhibit_evaluation_warnings == 0
5675 && (FLOAT_TYPE_P (type0) || FLOAT_TYPE_P (type1)))
5676 warning_at (location, OPT_Wfloat_equal,
5677 "comparing floating-point with %<==%> "
5678 "or %<!=%> is unsafe");
5679 if (complain & tf_warning)
5681 tree stripped_orig_op0 = tree_strip_any_location_wrapper (orig_op0);
5682 tree stripped_orig_op1 = tree_strip_any_location_wrapper (orig_op1);
5683 if ((TREE_CODE (stripped_orig_op0) == STRING_CST
5684 && !integer_zerop (cp_fully_fold (op1)))
5685 || (TREE_CODE (stripped_orig_op1) == STRING_CST
5686 && !integer_zerop (cp_fully_fold (op0))))
5687 warning_at (location, OPT_Waddress,
5688 "comparison with string literal results in "
5689 "unspecified behavior");
5690 else if (warn_array_compare
5691 && TREE_CODE (TREE_TYPE (orig_op0)) == ARRAY_TYPE
5692 && TREE_CODE (TREE_TYPE (orig_op1)) == ARRAY_TYPE)
5693 do_warn_array_compare (location, code, stripped_orig_op0,
5694 stripped_orig_op1);
5697 build_type = boolean_type_node;
5698 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE
5699 || code0 == COMPLEX_TYPE || code0 == ENUMERAL_TYPE)
5700 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE
5701 || code1 == COMPLEX_TYPE || code1 == ENUMERAL_TYPE))
5702 short_compare = 1;
5703 else if (((code0 == POINTER_TYPE || TYPE_PTRDATAMEM_P (type0))
5704 && null_ptr_cst_p (orig_op1))
5705 /* Handle, eg, (void*)0 (c++/43906), and more. */
5706 || (code0 == POINTER_TYPE
5707 && TYPE_PTR_P (type1) && integer_zerop (op1)))
5709 if (TYPE_PTR_P (type1))
5710 result_type = composite_pointer_type (location,
5711 type0, type1, op0, op1,
5712 CPO_COMPARISON, complain);
5713 else
5714 result_type = type0;
5716 if (char_type_p (TREE_TYPE (orig_op1)))
5718 auto_diagnostic_group d;
5719 if (warning_at (location, OPT_Wpointer_compare,
5720 "comparison between pointer and zero character "
5721 "constant"))
5722 inform (location,
5723 "did you mean to dereference the pointer?");
5725 warn_for_null_address (location, op0, complain);
5727 else if (((code1 == POINTER_TYPE || TYPE_PTRDATAMEM_P (type1))
5728 && null_ptr_cst_p (orig_op0))
5729 /* Handle, eg, (void*)0 (c++/43906), and more. */
5730 || (code1 == POINTER_TYPE
5731 && TYPE_PTR_P (type0) && integer_zerop (op0)))
5733 if (TYPE_PTR_P (type0))
5734 result_type = composite_pointer_type (location,
5735 type0, type1, op0, op1,
5736 CPO_COMPARISON, complain);
5737 else
5738 result_type = type1;
5740 if (char_type_p (TREE_TYPE (orig_op0)))
5742 auto_diagnostic_group d;
5743 if (warning_at (location, OPT_Wpointer_compare,
5744 "comparison between pointer and zero character "
5745 "constant"))
5746 inform (location,
5747 "did you mean to dereference the pointer?");
5749 warn_for_null_address (location, op1, complain);
5751 else if ((code0 == POINTER_TYPE && code1 == POINTER_TYPE)
5752 || (TYPE_PTRDATAMEM_P (type0) && TYPE_PTRDATAMEM_P (type1)))
5753 result_type = composite_pointer_type (location,
5754 type0, type1, op0, op1,
5755 CPO_COMPARISON, complain);
5756 else if (null_ptr_cst_p (orig_op0) && null_ptr_cst_p (orig_op1))
5757 /* One of the operands must be of nullptr_t type. */
5758 result_type = TREE_TYPE (nullptr_node);
5759 else if (code0 == POINTER_TYPE && code1 == INTEGER_TYPE)
5761 result_type = type0;
5762 if (complain & tf_error)
5763 permerror (location, "ISO C++ forbids comparison between "
5764 "pointer and integer");
5765 else
5766 return error_mark_node;
5768 else if (code0 == INTEGER_TYPE && code1 == POINTER_TYPE)
5770 result_type = type1;
5771 if (complain & tf_error)
5772 permerror (location, "ISO C++ forbids comparison between "
5773 "pointer and integer");
5774 else
5775 return error_mark_node;
5777 else if (TYPE_PTRMEMFUNC_P (type0) && null_ptr_cst_p (orig_op1))
5779 if (TARGET_PTRMEMFUNC_VBIT_LOCATION
5780 == ptrmemfunc_vbit_in_delta)
5782 tree pfn0, delta0, e1, e2;
5784 if (TREE_SIDE_EFFECTS (op0))
5785 op0 = cp_save_expr (op0);
5787 pfn0 = pfn_from_ptrmemfunc (op0);
5788 delta0 = delta_from_ptrmemfunc (op0);
5789 e1 = cp_build_binary_op (location,
5790 EQ_EXPR,
5791 pfn0,
5792 build_zero_cst (TREE_TYPE (pfn0)),
5793 complain);
5794 e2 = cp_build_binary_op (location,
5795 BIT_AND_EXPR,
5796 delta0,
5797 integer_one_node,
5798 complain);
5800 if (complain & tf_warning)
5801 maybe_warn_zero_as_null_pointer_constant (op1, input_location);
5803 e2 = cp_build_binary_op (location,
5804 EQ_EXPR, e2, integer_zero_node,
5805 complain);
5806 op0 = cp_build_binary_op (location,
5807 TRUTH_ANDIF_EXPR, e1, e2,
5808 complain);
5809 op1 = cp_convert (TREE_TYPE (op0), integer_one_node, complain);
5811 else
5813 op0 = build_ptrmemfunc_access_expr (op0, pfn_identifier);
5814 op1 = cp_convert (TREE_TYPE (op0), op1, complain);
5816 result_type = TREE_TYPE (op0);
5818 warn_for_null_address (location, orig_op0, complain);
5820 else if (TYPE_PTRMEMFUNC_P (type1) && null_ptr_cst_p (orig_op0))
5821 return cp_build_binary_op (location, code, op1, op0, complain);
5822 else if (TYPE_PTRMEMFUNC_P (type0) && TYPE_PTRMEMFUNC_P (type1))
5824 tree type;
5825 /* E will be the final comparison. */
5826 tree e;
5827 /* E1 and E2 are for scratch. */
5828 tree e1;
5829 tree e2;
5830 tree pfn0;
5831 tree pfn1;
5832 tree delta0;
5833 tree delta1;
5835 type = composite_pointer_type (location, type0, type1, op0, op1,
5836 CPO_COMPARISON, complain);
5838 if (!same_type_p (TREE_TYPE (op0), type))
5839 op0 = cp_convert_and_check (type, op0, complain);
5840 if (!same_type_p (TREE_TYPE (op1), type))
5841 op1 = cp_convert_and_check (type, op1, complain);
5843 if (op0 == error_mark_node || op1 == error_mark_node)
5844 return error_mark_node;
5846 if (TREE_SIDE_EFFECTS (op0))
5847 op0 = save_expr (op0);
5848 if (TREE_SIDE_EFFECTS (op1))
5849 op1 = save_expr (op1);
5851 pfn0 = pfn_from_ptrmemfunc (op0);
5852 pfn0 = cp_fully_fold (pfn0);
5853 /* Avoid -Waddress warnings (c++/64877). */
5854 if (TREE_CODE (pfn0) == ADDR_EXPR)
5855 suppress_warning (pfn0, OPT_Waddress);
5856 pfn1 = pfn_from_ptrmemfunc (op1);
5857 pfn1 = cp_fully_fold (pfn1);
5858 delta0 = delta_from_ptrmemfunc (op0);
5859 delta1 = delta_from_ptrmemfunc (op1);
5860 if (TARGET_PTRMEMFUNC_VBIT_LOCATION
5861 == ptrmemfunc_vbit_in_delta)
5863 /* We generate:
5865 (op0.pfn == op1.pfn
5866 && ((op0.delta == op1.delta)
5867 || (!op0.pfn && op0.delta & 1 == 0
5868 && op1.delta & 1 == 0))
5870 The reason for the `!op0.pfn' bit is that a NULL
5871 pointer-to-member is any member with a zero PFN and
5872 LSB of the DELTA field is 0. */
5874 e1 = cp_build_binary_op (location, BIT_AND_EXPR,
5875 delta0,
5876 integer_one_node,
5877 complain);
5878 e1 = cp_build_binary_op (location,
5879 EQ_EXPR, e1, integer_zero_node,
5880 complain);
5881 e2 = cp_build_binary_op (location, BIT_AND_EXPR,
5882 delta1,
5883 integer_one_node,
5884 complain);
5885 e2 = cp_build_binary_op (location,
5886 EQ_EXPR, e2, integer_zero_node,
5887 complain);
5888 e1 = cp_build_binary_op (location,
5889 TRUTH_ANDIF_EXPR, e2, e1,
5890 complain);
5891 e2 = cp_build_binary_op (location, EQ_EXPR,
5892 pfn0,
5893 build_zero_cst (TREE_TYPE (pfn0)),
5894 complain);
5895 e2 = cp_build_binary_op (location,
5896 TRUTH_ANDIF_EXPR, e2, e1, complain);
5897 e1 = cp_build_binary_op (location,
5898 EQ_EXPR, delta0, delta1, complain);
5899 e1 = cp_build_binary_op (location,
5900 TRUTH_ORIF_EXPR, e1, e2, complain);
5902 else
5904 /* We generate:
5906 (op0.pfn == op1.pfn
5907 && (!op0.pfn || op0.delta == op1.delta))
5909 The reason for the `!op0.pfn' bit is that a NULL
5910 pointer-to-member is any member with a zero PFN; the
5911 DELTA field is unspecified. */
5913 e1 = cp_build_binary_op (location,
5914 EQ_EXPR, delta0, delta1, complain);
5915 e2 = cp_build_binary_op (location,
5916 EQ_EXPR,
5917 pfn0,
5918 build_zero_cst (TREE_TYPE (pfn0)),
5919 complain);
5920 e1 = cp_build_binary_op (location,
5921 TRUTH_ORIF_EXPR, e1, e2, complain);
5923 e2 = build2 (EQ_EXPR, boolean_type_node, pfn0, pfn1);
5924 e = cp_build_binary_op (location,
5925 TRUTH_ANDIF_EXPR, e2, e1, complain);
5926 if (code == EQ_EXPR)
5927 return e;
5928 return cp_build_binary_op (location,
5929 EQ_EXPR, e, integer_zero_node, complain);
5931 else
5933 gcc_assert (!TYPE_PTRMEMFUNC_P (type0)
5934 || !same_type_p (TYPE_PTRMEMFUNC_FN_TYPE (type0),
5935 type1));
5936 gcc_assert (!TYPE_PTRMEMFUNC_P (type1)
5937 || !same_type_p (TYPE_PTRMEMFUNC_FN_TYPE (type1),
5938 type0));
5941 break;
5943 case MAX_EXPR:
5944 case MIN_EXPR:
5945 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE)
5946 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE))
5947 shorten = 1;
5948 else if (code0 == POINTER_TYPE && code1 == POINTER_TYPE)
5949 result_type = composite_pointer_type (location,
5950 type0, type1, op0, op1,
5951 CPO_COMPARISON, complain);
5952 break;
5954 case LE_EXPR:
5955 case GE_EXPR:
5956 case LT_EXPR:
5957 case GT_EXPR:
5958 case SPACESHIP_EXPR:
5959 if (TREE_CODE (orig_op0) == STRING_CST
5960 || TREE_CODE (orig_op1) == STRING_CST)
5962 if (complain & tf_warning)
5963 warning_at (location, OPT_Waddress,
5964 "comparison with string literal results "
5965 "in unspecified behavior");
5967 else if (warn_array_compare
5968 && TREE_CODE (TREE_TYPE (orig_op0)) == ARRAY_TYPE
5969 && TREE_CODE (TREE_TYPE (orig_op1)) == ARRAY_TYPE
5970 && code != SPACESHIP_EXPR
5971 && (complain & tf_warning))
5972 do_warn_array_compare (location, code,
5973 tree_strip_any_location_wrapper (orig_op0),
5974 tree_strip_any_location_wrapper (orig_op1));
5976 if (gnu_vector_type_p (type0) && gnu_vector_type_p (type1))
5978 vector_compare:
5979 tree intt;
5980 if (!same_type_ignoring_top_level_qualifiers_p (TREE_TYPE (type0),
5981 TREE_TYPE (type1))
5982 && !vector_types_compatible_elements_p (type0, type1))
5984 if (complain & tf_error)
5986 error_at (location, "comparing vectors with different "
5987 "element types");
5988 inform (location, "operand types are %qT and %qT",
5989 type0, type1);
5991 return error_mark_node;
5994 if (maybe_ne (TYPE_VECTOR_SUBPARTS (type0),
5995 TYPE_VECTOR_SUBPARTS (type1)))
5997 if (complain & tf_error)
5999 error_at (location, "comparing vectors with different "
6000 "number of elements");
6001 inform (location, "operand types are %qT and %qT",
6002 type0, type1);
6004 return error_mark_node;
6007 /* It's not precisely specified how the usual arithmetic
6008 conversions apply to the vector types. Here, we use
6009 the unsigned type if one of the operands is signed and
6010 the other one is unsigned. */
6011 if (TYPE_UNSIGNED (type0) != TYPE_UNSIGNED (type1))
6013 if (!TYPE_UNSIGNED (type0))
6014 op0 = build1 (VIEW_CONVERT_EXPR, type1, op0);
6015 else
6016 op1 = build1 (VIEW_CONVERT_EXPR, type0, op1);
6017 warning_at (location, OPT_Wsign_compare, "comparison between "
6018 "types %qT and %qT", type0, type1);
6021 if (resultcode == SPACESHIP_EXPR)
6023 if (complain & tf_error)
6024 sorry_at (location, "three-way comparison of vectors");
6025 return error_mark_node;
6028 /* Always construct signed integer vector type. */
6029 intt = c_common_type_for_size
6030 (GET_MODE_BITSIZE (SCALAR_TYPE_MODE (TREE_TYPE (type0))), 0);
6031 if (!intt)
6033 if (complain & tf_error)
6034 error_at (location, "could not find an integer type "
6035 "of the same size as %qT", TREE_TYPE (type0));
6036 return error_mark_node;
6038 result_type = build_opaque_vector_type (intt,
6039 TYPE_VECTOR_SUBPARTS (type0));
6040 return build_vec_cmp (resultcode, result_type, op0, op1);
6042 build_type = boolean_type_node;
6043 if ((code0 == INTEGER_TYPE || code0 == REAL_TYPE
6044 || code0 == ENUMERAL_TYPE)
6045 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE
6046 || code1 == ENUMERAL_TYPE))
6047 short_compare = 1;
6048 else if (code0 == POINTER_TYPE && code1 == POINTER_TYPE)
6049 result_type = composite_pointer_type (location,
6050 type0, type1, op0, op1,
6051 CPO_COMPARISON, complain);
6052 else if ((code0 == POINTER_TYPE && null_ptr_cst_p (orig_op1))
6053 || (code1 == POINTER_TYPE && null_ptr_cst_p (orig_op0))
6054 || (null_ptr_cst_p (orig_op0) && null_ptr_cst_p (orig_op1)))
6056 /* Core Issue 1512 made this ill-formed. */
6057 if (complain & tf_error)
6058 error_at (location, "ordered comparison of pointer with "
6059 "integer zero (%qT and %qT)", type0, type1);
6060 return error_mark_node;
6062 else if (code0 == POINTER_TYPE && code1 == INTEGER_TYPE)
6064 result_type = type0;
6065 if (complain & tf_error)
6066 permerror (location, "ISO C++ forbids comparison between "
6067 "pointer and integer");
6068 else
6069 return error_mark_node;
6071 else if (code0 == INTEGER_TYPE && code1 == POINTER_TYPE)
6073 result_type = type1;
6074 if (complain & tf_error)
6075 permerror (location, "ISO C++ forbids comparison between "
6076 "pointer and integer");
6077 else
6078 return error_mark_node;
6081 if ((code0 == POINTER_TYPE || code1 == POINTER_TYPE)
6082 && !processing_template_decl
6083 && sanitize_flags_p (SANITIZE_POINTER_COMPARE))
6085 op0 = save_expr (op0);
6086 op1 = save_expr (op1);
6088 tree tt = builtin_decl_explicit (BUILT_IN_ASAN_POINTER_COMPARE);
6089 instrument_expr = build_call_expr_loc (location, tt, 2, op0, op1);
6092 break;
6094 case UNORDERED_EXPR:
6095 case ORDERED_EXPR:
6096 case UNLT_EXPR:
6097 case UNLE_EXPR:
6098 case UNGT_EXPR:
6099 case UNGE_EXPR:
6100 case UNEQ_EXPR:
6101 build_type = integer_type_node;
6102 if (code0 != REAL_TYPE || code1 != REAL_TYPE)
6104 if (complain & tf_error)
6105 error ("unordered comparison on non-floating-point argument");
6106 return error_mark_node;
6108 common = 1;
6109 break;
6111 default:
6112 break;
6115 if (((code0 == INTEGER_TYPE || code0 == REAL_TYPE || code0 == COMPLEX_TYPE
6116 || code0 == ENUMERAL_TYPE)
6117 && (code1 == INTEGER_TYPE || code1 == REAL_TYPE
6118 || code1 == COMPLEX_TYPE || code1 == ENUMERAL_TYPE)))
6119 arithmetic_types_p = 1;
6120 else
6122 arithmetic_types_p = 0;
6123 /* Vector arithmetic is only allowed when both sides are vectors. */
6124 if (gnu_vector_type_p (type0) && gnu_vector_type_p (type1))
6126 if (!tree_int_cst_equal (TYPE_SIZE (type0), TYPE_SIZE (type1))
6127 || !vector_types_compatible_elements_p (type0, type1))
6129 if (complain & tf_error)
6131 /* "location" already embeds the locations of the
6132 operands, so we don't need to add them separately
6133 to richloc. */
6134 rich_location richloc (line_table, location);
6135 binary_op_error (&richloc, code, type0, type1);
6137 return error_mark_node;
6139 arithmetic_types_p = 1;
6142 /* Determine the RESULT_TYPE, if it is not already known. */
6143 if (!result_type
6144 && arithmetic_types_p
6145 && (shorten || common || short_compare))
6147 result_type = cp_common_type (type0, type1);
6148 if (result_type == error_mark_node)
6150 tree t1 = type0;
6151 tree t2 = type1;
6152 if (TREE_CODE (t1) == COMPLEX_TYPE)
6153 t1 = TREE_TYPE (t1);
6154 if (TREE_CODE (t2) == COMPLEX_TYPE)
6155 t2 = TREE_TYPE (t2);
6156 gcc_checking_assert (TREE_CODE (t1) == REAL_TYPE
6157 && TREE_CODE (t2) == REAL_TYPE
6158 && (extended_float_type_p (t1)
6159 || extended_float_type_p (t2))
6160 && cp_compare_floating_point_conversion_ranks
6161 (t1, t2) == 3);
6162 if (complain & tf_error)
6164 rich_location richloc (line_table, location);
6165 binary_op_error (&richloc, code, type0, type1);
6167 return error_mark_node;
6169 if (complain & tf_warning)
6171 do_warn_double_promotion (result_type, type0, type1,
6172 "implicit conversion from %qH to %qI "
6173 "to match other operand of binary "
6174 "expression",
6175 location);
6176 do_warn_enum_conversions (location, code, TREE_TYPE (orig_op0),
6177 TREE_TYPE (orig_op1));
6180 if (may_need_excess_precision
6181 && (orig_type0 != type0 || orig_type1 != type1)
6182 && build_type == NULL_TREE)
6184 gcc_assert (common);
6185 semantic_result_type = cp_common_type (orig_type0, orig_type1);
6186 if (semantic_result_type == error_mark_node)
6188 tree t1 = orig_type0;
6189 tree t2 = orig_type1;
6190 if (TREE_CODE (t1) == COMPLEX_TYPE)
6191 t1 = TREE_TYPE (t1);
6192 if (TREE_CODE (t2) == COMPLEX_TYPE)
6193 t2 = TREE_TYPE (t2);
6194 gcc_checking_assert (TREE_CODE (t1) == REAL_TYPE
6195 && TREE_CODE (t2) == REAL_TYPE
6196 && (extended_float_type_p (t1)
6197 || extended_float_type_p (t2))
6198 && cp_compare_floating_point_conversion_ranks
6199 (t1, t2) == 3);
6200 if (complain & tf_error)
6202 rich_location richloc (line_table, location);
6203 binary_op_error (&richloc, code, type0, type1);
6205 return error_mark_node;
6209 if (code == SPACESHIP_EXPR)
6211 iloc_sentinel s (location);
6213 tree orig_type0 = TREE_TYPE (orig_op0);
6214 tree_code orig_code0 = TREE_CODE (orig_type0);
6215 tree orig_type1 = TREE_TYPE (orig_op1);
6216 tree_code orig_code1 = TREE_CODE (orig_type1);
6217 if (!result_type)
6218 /* Nope. */;
6219 else if ((orig_code0 == BOOLEAN_TYPE) != (orig_code1 == BOOLEAN_TYPE))
6220 /* "If one of the operands is of type bool and the other is not, the
6221 program is ill-formed." */
6222 result_type = NULL_TREE;
6223 else if (code0 == POINTER_TYPE && orig_code0 != POINTER_TYPE
6224 && code1 == POINTER_TYPE && orig_code1 != POINTER_TYPE)
6225 /* We only do array/function-to-pointer conversion if "at least one of
6226 the operands is of pointer type". */
6227 result_type = NULL_TREE;
6228 else if (TYPE_PTRFN_P (result_type) || NULLPTR_TYPE_P (result_type))
6229 /* <=> no longer supports equality relations. */
6230 result_type = NULL_TREE;
6231 else if (orig_code0 == ENUMERAL_TYPE && orig_code1 == ENUMERAL_TYPE
6232 && !(same_type_ignoring_top_level_qualifiers_p
6233 (orig_type0, orig_type1)))
6234 /* "If both operands have arithmetic types, or one operand has integral
6235 type and the other operand has unscoped enumeration type, the usual
6236 arithmetic conversions are applied to the operands." So we don't do
6237 arithmetic conversions if the operands both have enumeral type. */
6238 result_type = NULL_TREE;
6239 else if ((orig_code0 == ENUMERAL_TYPE && orig_code1 == REAL_TYPE)
6240 || (orig_code0 == REAL_TYPE && orig_code1 == ENUMERAL_TYPE))
6241 /* [depr.arith.conv.enum]: Three-way comparisons between such operands
6242 [where one is of enumeration type and the other is of a different
6243 enumeration type or a floating-point type] are ill-formed. */
6244 result_type = NULL_TREE;
6246 if (result_type)
6248 build_type = spaceship_type (result_type, complain);
6249 if (build_type == error_mark_node)
6250 return error_mark_node;
6253 if (result_type && arithmetic_types_p)
6255 /* If a narrowing conversion is required, other than from an integral
6256 type to a floating point type, the program is ill-formed. */
6257 bool ok = true;
6258 if (TREE_CODE (result_type) == REAL_TYPE
6259 && CP_INTEGRAL_TYPE_P (orig_type0))
6260 /* OK */;
6261 else if (!check_narrowing (result_type, orig_op0, complain))
6262 ok = false;
6263 if (TREE_CODE (result_type) == REAL_TYPE
6264 && CP_INTEGRAL_TYPE_P (orig_type1))
6265 /* OK */;
6266 else if (!check_narrowing (result_type, orig_op1, complain))
6267 ok = false;
6268 if (!ok && !(complain & tf_error))
6269 return error_mark_node;
6273 if (!result_type)
6275 if (complain & tf_error)
6277 binary_op_rich_location richloc (location,
6278 orig_op0, orig_op1, true);
6279 error_at (&richloc,
6280 "invalid operands of types %qT and %qT to binary %qO",
6281 TREE_TYPE (orig_op0), TREE_TYPE (orig_op1), code);
6283 return error_mark_node;
6286 /* If we're in a template, the only thing we need to know is the
6287 RESULT_TYPE. */
6288 if (processing_template_decl)
6290 /* Since the middle-end checks the type when doing a build2, we
6291 need to build the tree in pieces. This built tree will never
6292 get out of the front-end as we replace it when instantiating
6293 the template. */
6294 tree tmp = build2 (resultcode,
6295 build_type ? build_type : result_type,
6296 NULL_TREE, op1);
6297 TREE_OPERAND (tmp, 0) = op0;
6298 if (semantic_result_type)
6299 tmp = build1 (EXCESS_PRECISION_EXPR, semantic_result_type, tmp);
6300 return tmp;
6303 /* Remember the original type; RESULT_TYPE might be changed later on
6304 by shorten_binary_op. */
6305 tree orig_type = result_type;
6307 if (arithmetic_types_p)
6309 bool first_complex = (code0 == COMPLEX_TYPE);
6310 bool second_complex = (code1 == COMPLEX_TYPE);
6311 int none_complex = (!first_complex && !second_complex);
6313 /* Adapted from patch for c/24581. */
6314 if (first_complex != second_complex
6315 && (code == PLUS_EXPR
6316 || code == MINUS_EXPR
6317 || code == MULT_EXPR
6318 || (code == TRUNC_DIV_EXPR && first_complex))
6319 && TREE_CODE (TREE_TYPE (result_type)) == REAL_TYPE
6320 && flag_signed_zeros)
6322 /* An operation on mixed real/complex operands must be
6323 handled specially, but the language-independent code can
6324 more easily optimize the plain complex arithmetic if
6325 -fno-signed-zeros. */
6326 tree real_type = TREE_TYPE (result_type);
6327 tree real, imag;
6328 if (first_complex)
6330 if (TREE_TYPE (op0) != result_type)
6331 op0 = cp_convert_and_check (result_type, op0, complain);
6332 if (TREE_TYPE (op1) != real_type)
6333 op1 = cp_convert_and_check (real_type, op1, complain);
6335 else
6337 if (TREE_TYPE (op0) != real_type)
6338 op0 = cp_convert_and_check (real_type, op0, complain);
6339 if (TREE_TYPE (op1) != result_type)
6340 op1 = cp_convert_and_check (result_type, op1, complain);
6342 if (TREE_CODE (op0) == ERROR_MARK || TREE_CODE (op1) == ERROR_MARK)
6343 return error_mark_node;
6344 if (first_complex)
6346 op0 = save_expr (op0);
6347 real = cp_build_unary_op (REALPART_EXPR, op0, true, complain);
6348 imag = cp_build_unary_op (IMAGPART_EXPR, op0, true, complain);
6349 switch (code)
6351 case MULT_EXPR:
6352 case TRUNC_DIV_EXPR:
6353 op1 = save_expr (op1);
6354 imag = build2 (resultcode, real_type, imag, op1);
6355 /* Fall through. */
6356 case PLUS_EXPR:
6357 case MINUS_EXPR:
6358 real = build2 (resultcode, real_type, real, op1);
6359 break;
6360 default:
6361 gcc_unreachable();
6364 else
6366 op1 = save_expr (op1);
6367 real = cp_build_unary_op (REALPART_EXPR, op1, true, complain);
6368 imag = cp_build_unary_op (IMAGPART_EXPR, op1, true, complain);
6369 switch (code)
6371 case MULT_EXPR:
6372 op0 = save_expr (op0);
6373 imag = build2 (resultcode, real_type, op0, imag);
6374 /* Fall through. */
6375 case PLUS_EXPR:
6376 real = build2 (resultcode, real_type, op0, real);
6377 break;
6378 case MINUS_EXPR:
6379 real = build2 (resultcode, real_type, op0, real);
6380 imag = build1 (NEGATE_EXPR, real_type, imag);
6381 break;
6382 default:
6383 gcc_unreachable();
6386 result = build2 (COMPLEX_EXPR, result_type, real, imag);
6387 if (semantic_result_type)
6388 result = build1 (EXCESS_PRECISION_EXPR, semantic_result_type,
6389 result);
6390 return result;
6393 /* For certain operations (which identify themselves by shorten != 0)
6394 if both args were extended from the same smaller type,
6395 do the arithmetic in that type and then extend.
6397 shorten !=0 and !=1 indicates a bitwise operation.
6398 For them, this optimization is safe only if
6399 both args are zero-extended or both are sign-extended.
6400 Otherwise, we might change the result.
6401 E.g., (short)-1 | (unsigned short)-1 is (int)-1
6402 but calculated in (unsigned short) it would be (unsigned short)-1. */
6404 if (shorten && none_complex)
6406 final_type = result_type;
6407 result_type = shorten_binary_op (result_type, op0, op1,
6408 shorten == -1);
6411 /* Shifts can be shortened if shifting right. */
6413 if (short_shift)
6415 int unsigned_arg;
6416 tree arg0 = get_narrower (op0, &unsigned_arg);
6417 /* We're not really warning here but when we set short_shift we
6418 used fold_for_warn to fold the operand. */
6419 tree const_op1 = fold_for_warn (op1);
6421 final_type = result_type;
6423 if (arg0 == op0 && final_type == TREE_TYPE (op0))
6424 unsigned_arg = TYPE_UNSIGNED (TREE_TYPE (op0));
6426 if (TYPE_PRECISION (TREE_TYPE (arg0)) < TYPE_PRECISION (result_type)
6427 && tree_int_cst_sgn (const_op1) > 0
6428 /* We can shorten only if the shift count is less than the
6429 number of bits in the smaller type size. */
6430 && compare_tree_int (const_op1,
6431 TYPE_PRECISION (TREE_TYPE (arg0))) < 0
6432 /* We cannot drop an unsigned shift after sign-extension. */
6433 && (!TYPE_UNSIGNED (final_type) || unsigned_arg))
6435 /* Do an unsigned shift if the operand was zero-extended. */
6436 result_type
6437 = c_common_signed_or_unsigned_type (unsigned_arg,
6438 TREE_TYPE (arg0));
6439 /* Convert value-to-be-shifted to that type. */
6440 if (TREE_TYPE (op0) != result_type)
6441 op0 = convert (result_type, op0);
6442 converted = 1;
6446 /* Comparison operations are shortened too but differently.
6447 They identify themselves by setting short_compare = 1. */
6449 if (short_compare)
6451 /* We call shorten_compare only for diagnostics. */
6452 tree xop0 = fold_simple (op0);
6453 tree xop1 = fold_simple (op1);
6454 tree xresult_type = result_type;
6455 enum tree_code xresultcode = resultcode;
6456 shorten_compare (location, &xop0, &xop1, &xresult_type,
6457 &xresultcode);
6460 if ((short_compare || code == MIN_EXPR || code == MAX_EXPR)
6461 && warn_sign_compare
6462 /* Do not warn until the template is instantiated; we cannot
6463 bound the ranges of the arguments until that point. */
6464 && !processing_template_decl
6465 && (complain & tf_warning)
6466 && c_inhibit_evaluation_warnings == 0
6467 /* Even unsigned enum types promote to signed int. We don't
6468 want to issue -Wsign-compare warnings for this case. */
6469 && !enum_cast_to_int (orig_op0)
6470 && !enum_cast_to_int (orig_op1))
6472 warn_for_sign_compare (location, orig_op0, orig_op1, op0, op1,
6473 result_type, resultcode);
6477 /* If CONVERTED is zero, both args will be converted to type RESULT_TYPE.
6478 Then the expression will be built.
6479 It will be given type FINAL_TYPE if that is nonzero;
6480 otherwise, it will be given type RESULT_TYPE. */
6481 if (! converted)
6483 warning_sentinel w (warn_sign_conversion, short_compare);
6484 if (!same_type_p (TREE_TYPE (op0), result_type))
6485 op0 = cp_convert_and_check (result_type, op0, complain);
6486 if (!same_type_p (TREE_TYPE (op1), result_type))
6487 op1 = cp_convert_and_check (result_type, op1, complain);
6489 if (op0 == error_mark_node || op1 == error_mark_node)
6490 return error_mark_node;
6493 if (build_type == NULL_TREE)
6494 build_type = result_type;
6496 if (doing_shift
6497 && flag_strong_eval_order == 2
6498 && TREE_SIDE_EFFECTS (op1)
6499 && !processing_template_decl)
6501 /* In C++17, in both op0 << op1 and op0 >> op1 op0 is sequenced before
6502 op1, so if op1 has side-effects, use SAVE_EXPR around op0. */
6503 op0 = cp_save_expr (op0);
6504 instrument_expr = op0;
6507 if (sanitize_flags_p ((SANITIZE_SHIFT
6508 | SANITIZE_DIVIDE
6509 | SANITIZE_FLOAT_DIVIDE
6510 | SANITIZE_SI_OVERFLOW))
6511 && current_function_decl != NULL_TREE
6512 && !processing_template_decl
6513 && (doing_div_or_mod || doing_shift))
6515 /* OP0 and/or OP1 might have side-effects. */
6516 op0 = cp_save_expr (op0);
6517 op1 = cp_save_expr (op1);
6518 op0 = fold_non_dependent_expr (op0, complain);
6519 op1 = fold_non_dependent_expr (op1, complain);
6520 tree instrument_expr1 = NULL_TREE;
6521 if (doing_div_or_mod
6522 && sanitize_flags_p (SANITIZE_DIVIDE
6523 | SANITIZE_FLOAT_DIVIDE
6524 | SANITIZE_SI_OVERFLOW))
6526 /* For diagnostics we want to use the promoted types without
6527 shorten_binary_op. So convert the arguments to the
6528 original result_type. */
6529 tree cop0 = op0;
6530 tree cop1 = op1;
6531 if (TREE_TYPE (cop0) != orig_type)
6532 cop0 = cp_convert (orig_type, op0, complain);
6533 if (TREE_TYPE (cop1) != orig_type)
6534 cop1 = cp_convert (orig_type, op1, complain);
6535 instrument_expr1 = ubsan_instrument_division (location, cop0, cop1);
6537 else if (doing_shift && sanitize_flags_p (SANITIZE_SHIFT))
6538 instrument_expr1 = ubsan_instrument_shift (location, code, op0, op1);
6539 if (instrument_expr != NULL)
6540 instrument_expr = add_stmt_to_compound (instrument_expr,
6541 instrument_expr1);
6542 else
6543 instrument_expr = instrument_expr1;
6546 result = build2_loc (location, resultcode, build_type, op0, op1);
6547 if (final_type != 0)
6548 result = cp_convert (final_type, result, complain);
6550 if (instrument_expr != NULL)
6551 result = build2 (COMPOUND_EXPR, TREE_TYPE (result),
6552 instrument_expr, result);
6554 if (resultcode == SPACESHIP_EXPR && !processing_template_decl)
6555 result = get_target_expr (result, complain);
6557 if (semantic_result_type)
6558 result = build1 (EXCESS_PRECISION_EXPR, semantic_result_type, result);
6560 if (!c_inhibit_evaluation_warnings)
6562 if (!processing_template_decl)
6564 op0 = cp_fully_fold (op0);
6565 /* Only consider the second argument if the first isn't overflowed. */
6566 if (!CONSTANT_CLASS_P (op0) || TREE_OVERFLOW_P (op0))
6567 return result;
6568 op1 = cp_fully_fold (op1);
6569 if (!CONSTANT_CLASS_P (op1) || TREE_OVERFLOW_P (op1))
6570 return result;
6572 else if (!CONSTANT_CLASS_P (op0) || !CONSTANT_CLASS_P (op1)
6573 || TREE_OVERFLOW_P (op0) || TREE_OVERFLOW_P (op1))
6574 return result;
6576 tree result_ovl = fold_build2 (resultcode, build_type, op0, op1);
6577 if (TREE_OVERFLOW_P (result_ovl))
6578 overflow_warning (location, result_ovl);
6581 return result;
6584 /* Build a VEC_PERM_EXPR.
6585 This is a simple wrapper for c_build_vec_perm_expr. */
6586 tree
6587 build_x_vec_perm_expr (location_t loc,
6588 tree arg0, tree arg1, tree arg2,
6589 tsubst_flags_t complain)
6591 tree orig_arg0 = arg0;
6592 tree orig_arg1 = arg1;
6593 tree orig_arg2 = arg2;
6594 if (processing_template_decl)
6596 if (type_dependent_expression_p (arg0)
6597 || type_dependent_expression_p (arg1)
6598 || type_dependent_expression_p (arg2))
6599 return build_min_nt_loc (loc, VEC_PERM_EXPR, arg0, arg1, arg2);
6600 arg0 = build_non_dependent_expr (arg0);
6601 if (arg1)
6602 arg1 = build_non_dependent_expr (arg1);
6603 arg2 = build_non_dependent_expr (arg2);
6605 tree exp = c_build_vec_perm_expr (loc, arg0, arg1, arg2, complain & tf_error);
6606 if (processing_template_decl && exp != error_mark_node)
6607 return build_min_non_dep (VEC_PERM_EXPR, exp, orig_arg0,
6608 orig_arg1, orig_arg2);
6609 return exp;
6612 /* Build a VEC_PERM_EXPR.
6613 This is a simple wrapper for c_build_shufflevector. */
6614 tree
6615 build_x_shufflevector (location_t loc, vec<tree, va_gc> *args,
6616 tsubst_flags_t complain)
6618 tree arg0 = (*args)[0];
6619 tree arg1 = (*args)[1];
6620 if (processing_template_decl)
6622 for (unsigned i = 0; i < args->length (); ++i)
6623 if (i <= 1
6624 ? type_dependent_expression_p ((*args)[i])
6625 : instantiation_dependent_expression_p ((*args)[i]))
6627 tree exp = build_min_nt_call_vec (NULL, args);
6628 CALL_EXPR_IFN (exp) = IFN_SHUFFLEVECTOR;
6629 return exp;
6631 arg0 = build_non_dependent_expr (arg0);
6632 arg1 = build_non_dependent_expr (arg1);
6633 /* ??? Nothing needed for the index arguments? */
6635 auto_vec<tree, 16> mask;
6636 for (unsigned i = 2; i < args->length (); ++i)
6638 tree idx = fold_non_dependent_expr ((*args)[i], complain);
6639 mask.safe_push (idx);
6641 tree exp = c_build_shufflevector (loc, arg0, arg1, mask, complain & tf_error);
6642 if (processing_template_decl && exp != error_mark_node)
6644 exp = build_min_non_dep_call_vec (exp, NULL, args);
6645 CALL_EXPR_IFN (exp) = IFN_SHUFFLEVECTOR;
6647 return exp;
6650 /* Return a tree for the sum or difference (RESULTCODE says which)
6651 of pointer PTROP and integer INTOP. */
6653 static tree
6654 cp_pointer_int_sum (location_t loc, enum tree_code resultcode, tree ptrop,
6655 tree intop, tsubst_flags_t complain)
6657 tree res_type = TREE_TYPE (ptrop);
6659 /* pointer_int_sum() uses size_in_bytes() on the TREE_TYPE(res_type)
6660 in certain circumstance (when it's valid to do so). So we need
6661 to make sure it's complete. We don't need to check here, if we
6662 can actually complete it at all, as those checks will be done in
6663 pointer_int_sum() anyway. */
6664 complete_type (TREE_TYPE (res_type));
6666 return pointer_int_sum (loc, resultcode, ptrop,
6667 intop, complain & tf_warning_or_error);
6670 /* Return a tree for the difference of pointers OP0 and OP1.
6671 The resulting tree has type int. If POINTER_SUBTRACT sanitization is
6672 enabled, assign to INSTRUMENT_EXPR call to libsanitizer. */
6674 static tree
6675 pointer_diff (location_t loc, tree op0, tree op1, tree ptrtype,
6676 tsubst_flags_t complain, tree *instrument_expr)
6678 tree result, inttype;
6679 tree restype = ptrdiff_type_node;
6680 tree target_type = TREE_TYPE (ptrtype);
6682 if (!complete_type_or_maybe_complain (target_type, NULL_TREE, complain))
6683 return error_mark_node;
6685 if (VOID_TYPE_P (target_type))
6687 if (complain & tf_error)
6688 permerror (loc, "ISO C++ forbids using pointer of "
6689 "type %<void *%> in subtraction");
6690 else
6691 return error_mark_node;
6693 if (TREE_CODE (target_type) == FUNCTION_TYPE)
6695 if (complain & tf_error)
6696 permerror (loc, "ISO C++ forbids using pointer to "
6697 "a function in subtraction");
6698 else
6699 return error_mark_node;
6701 if (TREE_CODE (target_type) == METHOD_TYPE)
6703 if (complain & tf_error)
6704 permerror (loc, "ISO C++ forbids using pointer to "
6705 "a method in subtraction");
6706 else
6707 return error_mark_node;
6709 else if (!verify_type_context (loc, TCTX_POINTER_ARITH,
6710 TREE_TYPE (TREE_TYPE (op0)),
6711 !(complain & tf_error))
6712 || !verify_type_context (loc, TCTX_POINTER_ARITH,
6713 TREE_TYPE (TREE_TYPE (op1)),
6714 !(complain & tf_error)))
6715 return error_mark_node;
6717 /* Determine integer type result of the subtraction. This will usually
6718 be the same as the result type (ptrdiff_t), but may need to be a wider
6719 type if pointers for the address space are wider than ptrdiff_t. */
6720 if (TYPE_PRECISION (restype) < TYPE_PRECISION (TREE_TYPE (op0)))
6721 inttype = c_common_type_for_size (TYPE_PRECISION (TREE_TYPE (op0)), 0);
6722 else
6723 inttype = restype;
6725 if (!processing_template_decl
6726 && sanitize_flags_p (SANITIZE_POINTER_SUBTRACT))
6728 op0 = save_expr (op0);
6729 op1 = save_expr (op1);
6731 tree tt = builtin_decl_explicit (BUILT_IN_ASAN_POINTER_SUBTRACT);
6732 *instrument_expr = build_call_expr_loc (loc, tt, 2, op0, op1);
6735 /* First do the subtraction, then build the divide operator
6736 and only convert at the very end.
6737 Do not do default conversions in case restype is a short type. */
6739 /* POINTER_DIFF_EXPR requires a signed integer type of the same size as
6740 pointers. If some platform cannot provide that, or has a larger
6741 ptrdiff_type to support differences larger than half the address
6742 space, cast the pointers to some larger integer type and do the
6743 computations in that type. */
6744 if (TYPE_PRECISION (inttype) > TYPE_PRECISION (TREE_TYPE (op0)))
6745 op0 = cp_build_binary_op (loc,
6746 MINUS_EXPR,
6747 cp_convert (inttype, op0, complain),
6748 cp_convert (inttype, op1, complain),
6749 complain);
6750 else
6751 op0 = build2_loc (loc, POINTER_DIFF_EXPR, inttype, op0, op1);
6753 /* This generates an error if op1 is a pointer to an incomplete type. */
6754 if (!COMPLETE_TYPE_P (TREE_TYPE (TREE_TYPE (op1))))
6756 if (complain & tf_error)
6757 error_at (loc, "invalid use of a pointer to an incomplete type in "
6758 "pointer arithmetic");
6759 else
6760 return error_mark_node;
6763 if (pointer_to_zero_sized_aggr_p (TREE_TYPE (op1)))
6765 if (complain & tf_error)
6766 error_at (loc, "arithmetic on pointer to an empty aggregate");
6767 else
6768 return error_mark_node;
6771 op1 = (TYPE_PTROB_P (ptrtype)
6772 ? size_in_bytes_loc (loc, target_type)
6773 : integer_one_node);
6775 /* Do the division. */
6777 result = build2_loc (loc, EXACT_DIV_EXPR, inttype, op0,
6778 cp_convert (inttype, op1, complain));
6779 return cp_convert (restype, result, complain);
6782 /* Construct and perhaps optimize a tree representation
6783 for a unary operation. CODE, a tree_code, specifies the operation
6784 and XARG is the operand. */
6786 tree
6787 build_x_unary_op (location_t loc, enum tree_code code, cp_expr xarg,
6788 tree lookups, tsubst_flags_t complain)
6790 tree orig_expr = xarg;
6791 tree exp;
6792 int ptrmem = 0;
6793 tree overload = NULL_TREE;
6795 if (processing_template_decl)
6797 if (type_dependent_expression_p (xarg))
6799 tree e = build_min_nt_loc (loc, code, xarg.get_value (), NULL_TREE);
6800 TREE_TYPE (e) = build_dependent_operator_type (lookups, code, false);
6801 return e;
6804 xarg = build_non_dependent_expr (xarg);
6807 exp = NULL_TREE;
6809 /* [expr.unary.op] says:
6811 The address of an object of incomplete type can be taken.
6813 (And is just the ordinary address operator, not an overloaded
6814 "operator &".) However, if the type is a template
6815 specialization, we must complete the type at this point so that
6816 an overloaded "operator &" will be available if required. */
6817 if (code == ADDR_EXPR
6818 && TREE_CODE (xarg) != TEMPLATE_ID_EXPR
6819 && ((CLASS_TYPE_P (TREE_TYPE (xarg))
6820 && !COMPLETE_TYPE_P (complete_type (TREE_TYPE (xarg))))
6821 || (TREE_CODE (xarg) == OFFSET_REF)))
6822 /* Don't look for a function. */;
6823 else
6824 exp = build_new_op (loc, code, LOOKUP_NORMAL, xarg, NULL_TREE,
6825 NULL_TREE, lookups, &overload, complain);
6827 if (!exp && code == ADDR_EXPR)
6829 if (is_overloaded_fn (xarg))
6831 tree fn = get_first_fn (xarg);
6832 if (DECL_CONSTRUCTOR_P (fn) || DECL_DESTRUCTOR_P (fn))
6834 if (complain & tf_error)
6835 error_at (loc, DECL_CONSTRUCTOR_P (fn)
6836 ? G_("taking address of constructor %qD")
6837 : G_("taking address of destructor %qD"),
6838 fn);
6839 return error_mark_node;
6843 /* A pointer to member-function can be formed only by saying
6844 &X::mf. */
6845 if (!flag_ms_extensions && TREE_CODE (TREE_TYPE (xarg)) == METHOD_TYPE
6846 && (TREE_CODE (xarg) != OFFSET_REF || !PTRMEM_OK_P (xarg)))
6848 if (TREE_CODE (xarg) != OFFSET_REF
6849 || !TYPE_P (TREE_OPERAND (xarg, 0)))
6851 if (complain & tf_error)
6853 error_at (loc, "invalid use of %qE to form a "
6854 "pointer-to-member-function", xarg.get_value ());
6855 if (TREE_CODE (xarg) != OFFSET_REF)
6856 inform (loc, " a qualified-id is required");
6858 return error_mark_node;
6860 else
6862 if (complain & tf_error)
6863 error_at (loc, "parentheses around %qE cannot be used to "
6864 "form a pointer-to-member-function",
6865 xarg.get_value ());
6866 else
6867 return error_mark_node;
6868 PTRMEM_OK_P (xarg) = 1;
6872 if (TREE_CODE (xarg) == OFFSET_REF)
6874 ptrmem = PTRMEM_OK_P (xarg);
6876 if (!ptrmem && !flag_ms_extensions
6877 && TREE_CODE (TREE_TYPE (TREE_OPERAND (xarg, 1))) == METHOD_TYPE)
6879 /* A single non-static member, make sure we don't allow a
6880 pointer-to-member. */
6881 xarg = build2 (OFFSET_REF, TREE_TYPE (xarg),
6882 TREE_OPERAND (xarg, 0),
6883 ovl_make (TREE_OPERAND (xarg, 1)));
6884 PTRMEM_OK_P (xarg) = ptrmem;
6888 exp = cp_build_addr_expr_strict (xarg, complain);
6890 if (TREE_CODE (exp) == PTRMEM_CST)
6891 PTRMEM_CST_LOCATION (exp) = loc;
6892 else
6893 protected_set_expr_location (exp, loc);
6896 if (processing_template_decl && exp != error_mark_node)
6898 if (overload != NULL_TREE)
6899 return (build_min_non_dep_op_overload
6900 (code, exp, overload, orig_expr, integer_zero_node));
6902 exp = build_min_non_dep (code, exp, orig_expr,
6903 /*For {PRE,POST}{INC,DEC}REMENT_EXPR*/NULL_TREE);
6905 if (TREE_CODE (exp) == ADDR_EXPR)
6906 PTRMEM_OK_P (exp) = ptrmem;
6907 return exp;
6910 /* Construct and perhaps optimize a tree representation
6911 for __builtin_addressof operation. ARG specifies the operand. */
6913 tree
6914 cp_build_addressof (location_t loc, tree arg, tsubst_flags_t complain)
6916 tree orig_expr = arg;
6918 if (processing_template_decl)
6920 if (type_dependent_expression_p (arg))
6921 return build_min_nt_loc (loc, ADDRESSOF_EXPR, arg, NULL_TREE);
6923 arg = build_non_dependent_expr (arg);
6926 tree exp = cp_build_addr_expr_strict (arg, complain);
6928 if (processing_template_decl && exp != error_mark_node)
6929 exp = build_min_non_dep (ADDRESSOF_EXPR, exp, orig_expr, NULL_TREE);
6930 return exp;
6933 /* Like c_common_truthvalue_conversion, but handle pointer-to-member
6934 constants, where a null value is represented by an INTEGER_CST of
6935 -1. */
6937 tree
6938 cp_truthvalue_conversion (tree expr, tsubst_flags_t complain)
6940 tree type = TREE_TYPE (expr);
6941 location_t loc = cp_expr_loc_or_input_loc (expr);
6942 if (TYPE_PTR_OR_PTRMEM_P (type)
6943 /* Avoid ICE on invalid use of non-static member function. */
6944 || TREE_CODE (expr) == FUNCTION_DECL)
6945 return cp_build_binary_op (loc, NE_EXPR, expr, nullptr_node, complain);
6946 else
6947 return c_common_truthvalue_conversion (loc, expr);
6950 /* Returns EXPR contextually converted to bool. */
6952 tree
6953 contextual_conv_bool (tree expr, tsubst_flags_t complain)
6955 return perform_implicit_conversion_flags (boolean_type_node, expr,
6956 complain, LOOKUP_NORMAL);
6959 /* Just like cp_truthvalue_conversion, but we want a CLEANUP_POINT_EXPR. This
6960 is a low-level function; most callers should use maybe_convert_cond. */
6962 tree
6963 condition_conversion (tree expr)
6965 tree t = contextual_conv_bool (expr, tf_warning_or_error);
6966 if (!processing_template_decl)
6967 t = fold_build_cleanup_point_expr (boolean_type_node, t);
6968 return t;
6971 /* Returns the address of T. This function will fold away
6972 ADDR_EXPR of INDIRECT_REF. This is only for low-level usage;
6973 most places should use cp_build_addr_expr instead. */
6975 tree
6976 build_address (tree t)
6978 if (error_operand_p (t) || !cxx_mark_addressable (t))
6979 return error_mark_node;
6980 gcc_checking_assert (TREE_CODE (t) != CONSTRUCTOR
6981 || processing_template_decl);
6982 t = build_fold_addr_expr_loc (EXPR_LOCATION (t), t);
6983 if (TREE_CODE (t) != ADDR_EXPR)
6984 t = rvalue (t);
6985 return t;
6988 /* Return a NOP_EXPR converting EXPR to TYPE. */
6990 tree
6991 build_nop (tree type, tree expr)
6993 if (type == error_mark_node || error_operand_p (expr))
6994 return expr;
6995 return build1_loc (EXPR_LOCATION (expr), NOP_EXPR, type, expr);
6998 /* Take the address of ARG, whatever that means under C++ semantics.
6999 If STRICT_LVALUE is true, require an lvalue; otherwise, allow xvalues
7000 and class rvalues as well.
7002 Nothing should call this function directly; instead, callers should use
7003 cp_build_addr_expr or cp_build_addr_expr_strict. */
7005 static tree
7006 cp_build_addr_expr_1 (tree arg, bool strict_lvalue, tsubst_flags_t complain)
7008 tree argtype;
7009 tree val;
7011 if (!arg || error_operand_p (arg))
7012 return error_mark_node;
7014 arg = mark_lvalue_use (arg);
7015 if (error_operand_p (arg))
7016 return error_mark_node;
7018 argtype = lvalue_type (arg);
7019 location_t loc = cp_expr_loc_or_input_loc (arg);
7021 gcc_assert (!(identifier_p (arg) && IDENTIFIER_ANY_OP_P (arg)));
7023 if (TREE_CODE (arg) == COMPONENT_REF && type_unknown_p (arg)
7024 && !really_overloaded_fn (arg))
7026 /* They're trying to take the address of a unique non-static
7027 member function. This is ill-formed (except in MS-land),
7028 but let's try to DTRT.
7029 Note: We only handle unique functions here because we don't
7030 want to complain if there's a static overload; non-unique
7031 cases will be handled by instantiate_type. But we need to
7032 handle this case here to allow casts on the resulting PMF.
7033 We could defer this in non-MS mode, but it's easier to give
7034 a useful error here. */
7036 /* Inside constant member functions, the `this' pointer
7037 contains an extra const qualifier. TYPE_MAIN_VARIANT
7038 is used here to remove this const from the diagnostics
7039 and the created OFFSET_REF. */
7040 tree base = TYPE_MAIN_VARIANT (TREE_TYPE (TREE_OPERAND (arg, 0)));
7041 tree fn = get_first_fn (TREE_OPERAND (arg, 1));
7042 if (!mark_used (fn, complain) && !(complain & tf_error))
7043 return error_mark_node;
7045 if (! flag_ms_extensions)
7047 tree name = DECL_NAME (fn);
7048 if (!(complain & tf_error))
7049 return error_mark_node;
7050 else if (current_class_type
7051 && TREE_OPERAND (arg, 0) == current_class_ref)
7052 /* An expression like &memfn. */
7053 permerror (loc,
7054 "ISO C++ forbids taking the address of an unqualified"
7055 " or parenthesized non-static member function to form"
7056 " a pointer to member function. Say %<&%T::%D%>",
7057 base, name);
7058 else
7059 permerror (loc,
7060 "ISO C++ forbids taking the address of a bound member"
7061 " function to form a pointer to member function."
7062 " Say %<&%T::%D%>",
7063 base, name);
7065 arg = build_offset_ref (base, fn, /*address_p=*/true, complain);
7068 /* Uninstantiated types are all functions. Taking the
7069 address of a function is a no-op, so just return the
7070 argument. */
7071 if (type_unknown_p (arg))
7072 return build1 (ADDR_EXPR, unknown_type_node, arg);
7074 if (TREE_CODE (arg) == OFFSET_REF)
7075 /* We want a pointer to member; bypass all the code for actually taking
7076 the address of something. */
7077 goto offset_ref;
7079 /* Anything not already handled and not a true memory reference
7080 is an error. */
7081 if (!FUNC_OR_METHOD_TYPE_P (argtype))
7083 cp_lvalue_kind kind = lvalue_kind (arg);
7084 if (kind == clk_none)
7086 if (complain & tf_error)
7087 lvalue_error (loc, lv_addressof);
7088 return error_mark_node;
7090 if (strict_lvalue && (kind & (clk_rvalueref|clk_class)))
7092 if (!(complain & tf_error))
7093 return error_mark_node;
7094 /* Make this a permerror because we used to accept it. */
7095 permerror (loc, "taking address of rvalue");
7099 if (TYPE_REF_P (argtype))
7101 tree type = build_pointer_type (TREE_TYPE (argtype));
7102 arg = build1 (CONVERT_EXPR, type, arg);
7103 return arg;
7105 else if (pedantic && DECL_MAIN_P (tree_strip_any_location_wrapper (arg)))
7107 /* ARM $3.4 */
7108 /* Apparently a lot of autoconf scripts for C++ packages do this,
7109 so only complain if -Wpedantic. */
7110 if (complain & (flag_pedantic_errors ? tf_error : tf_warning))
7111 pedwarn (loc, OPT_Wpedantic,
7112 "ISO C++ forbids taking address of function %<::main%>");
7113 else if (flag_pedantic_errors)
7114 return error_mark_node;
7117 /* Let &* cancel out to simplify resulting code. */
7118 if (INDIRECT_REF_P (arg))
7120 arg = TREE_OPERAND (arg, 0);
7121 if (TYPE_REF_P (TREE_TYPE (arg)))
7123 tree type = build_pointer_type (TREE_TYPE (TREE_TYPE (arg)));
7124 arg = build1 (CONVERT_EXPR, type, arg);
7126 else
7127 /* Don't let this be an lvalue. */
7128 arg = rvalue (arg);
7129 return arg;
7132 /* Handle complex lvalues (when permitted)
7133 by reduction to simpler cases. */
7134 val = unary_complex_lvalue (ADDR_EXPR, arg);
7135 if (val != 0)
7136 return val;
7138 switch (TREE_CODE (arg))
7140 CASE_CONVERT:
7141 case FLOAT_EXPR:
7142 case FIX_TRUNC_EXPR:
7143 /* We should have handled this above in the lvalue_kind check. */
7144 gcc_unreachable ();
7145 break;
7147 case BASELINK:
7148 arg = BASELINK_FUNCTIONS (arg);
7149 /* Fall through. */
7151 case OVERLOAD:
7152 arg = OVL_FIRST (arg);
7153 break;
7155 case OFFSET_REF:
7156 offset_ref:
7157 /* Turn a reference to a non-static data member into a
7158 pointer-to-member. */
7160 tree type;
7161 tree t;
7163 gcc_assert (PTRMEM_OK_P (arg));
7165 t = TREE_OPERAND (arg, 1);
7166 if (TYPE_REF_P (TREE_TYPE (t)))
7168 if (complain & tf_error)
7169 error_at (loc,
7170 "cannot create pointer to reference member %qD", t);
7171 return error_mark_node;
7174 /* Forming a pointer-to-member is a use of non-pure-virtual fns. */
7175 if (TREE_CODE (t) == FUNCTION_DECL
7176 && !DECL_PURE_VIRTUAL_P (t)
7177 && !mark_used (t, complain) && !(complain & tf_error))
7178 return error_mark_node;
7180 type = build_ptrmem_type (context_for_name_lookup (t),
7181 TREE_TYPE (t));
7182 t = make_ptrmem_cst (type, t);
7183 return t;
7186 default:
7187 break;
7190 if (argtype != error_mark_node)
7191 argtype = build_pointer_type (argtype);
7193 if (bitfield_p (arg))
7195 if (complain & tf_error)
7196 error_at (loc, "attempt to take address of bit-field");
7197 return error_mark_node;
7200 /* In a template, we are processing a non-dependent expression
7201 so we can just form an ADDR_EXPR with the correct type. */
7202 if (processing_template_decl || TREE_CODE (arg) != COMPONENT_REF)
7204 if (!mark_single_function (arg, complain))
7205 return error_mark_node;
7206 val = build_address (arg);
7207 if (TREE_CODE (arg) == OFFSET_REF)
7208 PTRMEM_OK_P (val) = PTRMEM_OK_P (arg);
7210 else if (BASELINK_P (TREE_OPERAND (arg, 1)))
7212 tree fn = BASELINK_FUNCTIONS (TREE_OPERAND (arg, 1));
7214 /* We can only get here with a single static member
7215 function. */
7216 gcc_assert (TREE_CODE (fn) == FUNCTION_DECL
7217 && DECL_STATIC_FUNCTION_P (fn));
7218 if (!mark_used (fn, complain) && !(complain & tf_error))
7219 return error_mark_node;
7220 val = build_address (fn);
7221 if (TREE_SIDE_EFFECTS (TREE_OPERAND (arg, 0)))
7222 /* Do not lose object's side effects. */
7223 val = build2 (COMPOUND_EXPR, TREE_TYPE (val),
7224 TREE_OPERAND (arg, 0), val);
7226 else
7228 tree object = TREE_OPERAND (arg, 0);
7229 tree field = TREE_OPERAND (arg, 1);
7230 gcc_assert (same_type_ignoring_top_level_qualifiers_p
7231 (TREE_TYPE (object), decl_type_context (field)));
7232 val = build_address (arg);
7235 if (TYPE_PTR_P (argtype)
7236 && TREE_CODE (TREE_TYPE (argtype)) == METHOD_TYPE)
7238 build_ptrmemfunc_type (argtype);
7239 val = build_ptrmemfunc (argtype, val, 0,
7240 /*c_cast_p=*/false,
7241 complain);
7244 /* For addresses of immediate functions ensure we have EXPR_LOCATION
7245 set for possible later diagnostics. */
7246 if (TREE_CODE (val) == ADDR_EXPR
7247 && TREE_CODE (TREE_OPERAND (val, 0)) == FUNCTION_DECL
7248 && DECL_IMMEDIATE_FUNCTION_P (TREE_OPERAND (val, 0)))
7249 SET_EXPR_LOCATION (val, input_location);
7251 return val;
7254 /* Take the address of ARG if it has one, even if it's an rvalue. */
7256 tree
7257 cp_build_addr_expr (tree arg, tsubst_flags_t complain)
7259 return cp_build_addr_expr_1 (arg, 0, complain);
7262 /* Take the address of ARG, but only if it's an lvalue. */
7264 static tree
7265 cp_build_addr_expr_strict (tree arg, tsubst_flags_t complain)
7267 return cp_build_addr_expr_1 (arg, 1, complain);
7270 /* C++: Must handle pointers to members.
7272 Perhaps type instantiation should be extended to handle conversion
7273 from aggregates to types we don't yet know we want? (Or are those
7274 cases typically errors which should be reported?)
7276 NOCONVERT suppresses the default promotions (such as from short to int). */
7278 tree
7279 cp_build_unary_op (enum tree_code code, tree xarg, bool noconvert,
7280 tsubst_flags_t complain)
7282 /* No default_conversion here. It causes trouble for ADDR_EXPR. */
7283 tree arg = xarg;
7284 location_t location = cp_expr_loc_or_input_loc (arg);
7285 tree argtype = 0;
7286 tree eptype = NULL_TREE;
7287 const char *errstring = NULL;
7288 tree val;
7289 const char *invalid_op_diag;
7291 if (!arg || error_operand_p (arg))
7292 return error_mark_node;
7294 arg = resolve_nondeduced_context (arg, complain);
7296 if ((invalid_op_diag
7297 = targetm.invalid_unary_op ((code == UNARY_PLUS_EXPR
7298 ? CONVERT_EXPR
7299 : code),
7300 TREE_TYPE (arg))))
7302 if (complain & tf_error)
7303 error (invalid_op_diag);
7304 return error_mark_node;
7307 if (TREE_CODE (arg) == EXCESS_PRECISION_EXPR)
7309 eptype = TREE_TYPE (arg);
7310 arg = TREE_OPERAND (arg, 0);
7313 switch (code)
7315 case UNARY_PLUS_EXPR:
7316 case NEGATE_EXPR:
7318 int flags = WANT_ARITH | WANT_ENUM;
7319 /* Unary plus (but not unary minus) is allowed on pointers. */
7320 if (code == UNARY_PLUS_EXPR)
7321 flags |= WANT_POINTER;
7322 arg = build_expr_type_conversion (flags, arg, true);
7323 if (!arg)
7324 errstring = (code == NEGATE_EXPR
7325 ? _("wrong type argument to unary minus")
7326 : _("wrong type argument to unary plus"));
7327 else
7329 if (!noconvert && INTEGRAL_OR_ENUMERATION_TYPE_P (TREE_TYPE (arg)))
7330 arg = cp_perform_integral_promotions (arg, complain);
7332 /* Make sure the result is not an lvalue: a unary plus or minus
7333 expression is always a rvalue. */
7334 arg = rvalue (arg);
7337 break;
7339 case BIT_NOT_EXPR:
7340 if (TREE_CODE (TREE_TYPE (arg)) == COMPLEX_TYPE)
7342 code = CONJ_EXPR;
7343 if (!noconvert)
7345 arg = cp_default_conversion (arg, complain);
7346 if (arg == error_mark_node)
7347 return error_mark_node;
7350 else if (!(arg = build_expr_type_conversion (WANT_INT | WANT_ENUM
7351 | WANT_VECTOR_OR_COMPLEX,
7352 arg, true)))
7353 errstring = _("wrong type argument to bit-complement");
7354 else if (!noconvert && INTEGRAL_OR_ENUMERATION_TYPE_P (TREE_TYPE (arg)))
7356 /* Warn if the expression has boolean value. */
7357 if (TREE_CODE (TREE_TYPE (arg)) == BOOLEAN_TYPE
7358 && (complain & tf_warning)
7359 && warning_at (location, OPT_Wbool_operation,
7360 "%<~%> on an expression of type %<bool%>"))
7361 inform (location, "did you mean to use logical not (%<!%>)?");
7362 arg = cp_perform_integral_promotions (arg, complain);
7364 else if (!noconvert && VECTOR_TYPE_P (TREE_TYPE (arg)))
7365 arg = mark_rvalue_use (arg);
7366 break;
7368 case ABS_EXPR:
7369 if (!(arg = build_expr_type_conversion (WANT_ARITH | WANT_ENUM, arg, true)))
7370 errstring = _("wrong type argument to abs");
7371 else if (!noconvert)
7373 arg = cp_default_conversion (arg, complain);
7374 if (arg == error_mark_node)
7375 return error_mark_node;
7377 break;
7379 case CONJ_EXPR:
7380 /* Conjugating a real value is a no-op, but allow it anyway. */
7381 if (!(arg = build_expr_type_conversion (WANT_ARITH | WANT_ENUM, arg, true)))
7382 errstring = _("wrong type argument to conjugation");
7383 else if (!noconvert)
7385 arg = cp_default_conversion (arg, complain);
7386 if (arg == error_mark_node)
7387 return error_mark_node;
7389 break;
7391 case TRUTH_NOT_EXPR:
7392 if (gnu_vector_type_p (TREE_TYPE (arg)))
7393 return cp_build_binary_op (input_location, EQ_EXPR, arg,
7394 build_zero_cst (TREE_TYPE (arg)), complain);
7395 arg = perform_implicit_conversion (boolean_type_node, arg,
7396 complain);
7397 val = invert_truthvalue_loc (location, arg);
7398 if (arg != error_mark_node)
7399 return val;
7400 errstring = _("in argument to unary !");
7401 break;
7403 case NOP_EXPR:
7404 break;
7406 case REALPART_EXPR:
7407 case IMAGPART_EXPR:
7408 val = build_real_imag_expr (input_location, code, arg);
7409 if (eptype && TREE_CODE (eptype) == COMPLEX_EXPR)
7410 val = build1_loc (input_location, EXCESS_PRECISION_EXPR,
7411 TREE_TYPE (eptype), val);
7412 return val;
7414 case PREINCREMENT_EXPR:
7415 case POSTINCREMENT_EXPR:
7416 case PREDECREMENT_EXPR:
7417 case POSTDECREMENT_EXPR:
7418 /* Handle complex lvalues (when permitted)
7419 by reduction to simpler cases. */
7421 val = unary_complex_lvalue (code, arg);
7422 if (val != 0)
7423 goto return_build_unary_op;
7425 arg = mark_lvalue_use (arg);
7427 /* Increment or decrement the real part of the value,
7428 and don't change the imaginary part. */
7429 if (TREE_CODE (TREE_TYPE (arg)) == COMPLEX_TYPE)
7431 tree real, imag;
7433 arg = cp_stabilize_reference (arg);
7434 real = cp_build_unary_op (REALPART_EXPR, arg, true, complain);
7435 imag = cp_build_unary_op (IMAGPART_EXPR, arg, true, complain);
7436 real = cp_build_unary_op (code, real, true, complain);
7437 if (real == error_mark_node || imag == error_mark_node)
7438 return error_mark_node;
7439 val = build2 (COMPLEX_EXPR, TREE_TYPE (arg), real, imag);
7440 goto return_build_unary_op;
7443 /* Report invalid types. */
7445 if (!(arg = build_expr_type_conversion (WANT_ARITH | WANT_POINTER,
7446 arg, true)))
7448 if (code == PREINCREMENT_EXPR)
7449 errstring = _("no pre-increment operator for type");
7450 else if (code == POSTINCREMENT_EXPR)
7451 errstring = _("no post-increment operator for type");
7452 else if (code == PREDECREMENT_EXPR)
7453 errstring = _("no pre-decrement operator for type");
7454 else
7455 errstring = _("no post-decrement operator for type");
7456 break;
7458 else if (arg == error_mark_node)
7459 return error_mark_node;
7461 /* Report something read-only. */
7463 if (CP_TYPE_CONST_P (TREE_TYPE (arg))
7464 || TREE_READONLY (arg))
7466 if (complain & tf_error)
7467 cxx_readonly_error (location, arg,
7468 ((code == PREINCREMENT_EXPR
7469 || code == POSTINCREMENT_EXPR)
7470 ? lv_increment : lv_decrement));
7471 else
7472 return error_mark_node;
7476 tree inc;
7477 tree declared_type = unlowered_expr_type (arg);
7479 argtype = TREE_TYPE (arg);
7481 /* ARM $5.2.5 last annotation says this should be forbidden. */
7482 if (TREE_CODE (argtype) == ENUMERAL_TYPE)
7484 if (complain & tf_error)
7485 permerror (location, (code == PREINCREMENT_EXPR
7486 || code == POSTINCREMENT_EXPR)
7487 ? G_("ISO C++ forbids incrementing an enum")
7488 : G_("ISO C++ forbids decrementing an enum"));
7489 else
7490 return error_mark_node;
7493 /* Compute the increment. */
7495 if (TYPE_PTR_P (argtype))
7497 tree type = complete_type (TREE_TYPE (argtype));
7499 if (!COMPLETE_OR_VOID_TYPE_P (type))
7501 if (complain & tf_error)
7502 error_at (location, ((code == PREINCREMENT_EXPR
7503 || code == POSTINCREMENT_EXPR))
7504 ? G_("cannot increment a pointer to incomplete "
7505 "type %qT")
7506 : G_("cannot decrement a pointer to incomplete "
7507 "type %qT"),
7508 TREE_TYPE (argtype));
7509 else
7510 return error_mark_node;
7512 else if (!TYPE_PTROB_P (argtype))
7514 if (complain & tf_error)
7515 pedwarn (location, OPT_Wpointer_arith,
7516 (code == PREINCREMENT_EXPR
7517 || code == POSTINCREMENT_EXPR)
7518 ? G_("ISO C++ forbids incrementing a pointer "
7519 "of type %qT")
7520 : G_("ISO C++ forbids decrementing a pointer "
7521 "of type %qT"),
7522 argtype);
7523 else
7524 return error_mark_node;
7526 else if (!verify_type_context (location, TCTX_POINTER_ARITH,
7527 TREE_TYPE (argtype),
7528 !(complain & tf_error)))
7529 return error_mark_node;
7531 inc = cxx_sizeof_nowarn (TREE_TYPE (argtype));
7533 else
7534 inc = VECTOR_TYPE_P (argtype)
7535 ? build_one_cst (argtype)
7536 : integer_one_node;
7538 inc = cp_convert (argtype, inc, complain);
7540 /* If 'arg' is an Objective-C PROPERTY_REF expression, then we
7541 need to ask Objective-C to build the increment or decrement
7542 expression for it. */
7543 if (objc_is_property_ref (arg))
7544 return objc_build_incr_expr_for_property_ref (input_location, code,
7545 arg, inc);
7547 /* Complain about anything else that is not a true lvalue. */
7548 if (!lvalue_or_else (arg, ((code == PREINCREMENT_EXPR
7549 || code == POSTINCREMENT_EXPR)
7550 ? lv_increment : lv_decrement),
7551 complain))
7552 return error_mark_node;
7554 /* [depr.volatile.type] "Postfix ++ and -- expressions and
7555 prefix ++ and -- expressions of volatile-qualified arithmetic
7556 and pointer types are deprecated." */
7557 if (TREE_THIS_VOLATILE (arg) || CP_TYPE_VOLATILE_P (TREE_TYPE (arg)))
7558 warning_at (location, OPT_Wvolatile,
7559 "%qs expression of %<volatile%>-qualified type is "
7560 "deprecated",
7561 ((code == PREINCREMENT_EXPR
7562 || code == POSTINCREMENT_EXPR)
7563 ? "++" : "--"));
7565 /* Forbid using -- or ++ in C++17 on `bool'. */
7566 if (TREE_CODE (declared_type) == BOOLEAN_TYPE)
7568 if (code == POSTDECREMENT_EXPR || code == PREDECREMENT_EXPR)
7570 if (complain & tf_error)
7571 error_at (location,
7572 "use of an operand of type %qT in %<operator--%> "
7573 "is forbidden", boolean_type_node);
7574 return error_mark_node;
7576 else
7578 if (cxx_dialect >= cxx17)
7580 if (complain & tf_error)
7581 error_at (location,
7582 "use of an operand of type %qT in "
7583 "%<operator++%> is forbidden in C++17",
7584 boolean_type_node);
7585 return error_mark_node;
7587 /* Otherwise, [depr.incr.bool] says this is deprecated. */
7588 else
7589 warning_at (location, OPT_Wdeprecated,
7590 "use of an operand of type %qT "
7591 "in %<operator++%> is deprecated",
7592 boolean_type_node);
7594 val = boolean_increment (code, arg);
7596 else if (code == POSTINCREMENT_EXPR || code == POSTDECREMENT_EXPR)
7597 /* An rvalue has no cv-qualifiers. */
7598 val = build2 (code, cv_unqualified (TREE_TYPE (arg)), arg, inc);
7599 else
7600 val = build2 (code, TREE_TYPE (arg), arg, inc);
7602 TREE_SIDE_EFFECTS (val) = 1;
7603 goto return_build_unary_op;
7606 case ADDR_EXPR:
7607 /* Note that this operation never does default_conversion
7608 regardless of NOCONVERT. */
7609 return cp_build_addr_expr (arg, complain);
7611 default:
7612 break;
7615 if (!errstring)
7617 if (argtype == 0)
7618 argtype = TREE_TYPE (arg);
7619 val = build1 (code, argtype, arg);
7620 return_build_unary_op:
7621 if (eptype)
7622 val = build1 (EXCESS_PRECISION_EXPR, eptype, val);
7623 return val;
7626 if (complain & tf_error)
7627 error_at (location, "%s", errstring);
7628 return error_mark_node;
7631 /* Hook for the c-common bits that build a unary op. */
7632 tree
7633 build_unary_op (location_t /*location*/,
7634 enum tree_code code, tree xarg, bool noconvert)
7636 return cp_build_unary_op (code, xarg, noconvert, tf_warning_or_error);
7639 /* Adjust LVALUE, an MODIFY_EXPR, PREINCREMENT_EXPR or PREDECREMENT_EXPR,
7640 so that it is a valid lvalue even for GENERIC by replacing
7641 (lhs = rhs) with ((lhs = rhs), lhs)
7642 (--lhs) with ((--lhs), lhs)
7643 (++lhs) with ((++lhs), lhs)
7644 and if lhs has side-effects, calling cp_stabilize_reference on it, so
7645 that it can be evaluated multiple times. */
7647 tree
7648 genericize_compound_lvalue (tree lvalue)
7650 if (TREE_SIDE_EFFECTS (TREE_OPERAND (lvalue, 0)))
7651 lvalue = build2 (TREE_CODE (lvalue), TREE_TYPE (lvalue),
7652 cp_stabilize_reference (TREE_OPERAND (lvalue, 0)),
7653 TREE_OPERAND (lvalue, 1));
7654 return build2 (COMPOUND_EXPR, TREE_TYPE (TREE_OPERAND (lvalue, 0)),
7655 lvalue, TREE_OPERAND (lvalue, 0));
7658 /* Apply unary lvalue-demanding operator CODE to the expression ARG
7659 for certain kinds of expressions which are not really lvalues
7660 but which we can accept as lvalues.
7662 If ARG is not a kind of expression we can handle, return
7663 NULL_TREE. */
7665 tree
7666 unary_complex_lvalue (enum tree_code code, tree arg)
7668 /* Inside a template, making these kinds of adjustments is
7669 pointless; we are only concerned with the type of the
7670 expression. */
7671 if (processing_template_decl)
7672 return NULL_TREE;
7674 /* Handle (a, b) used as an "lvalue". */
7675 if (TREE_CODE (arg) == COMPOUND_EXPR)
7677 tree real_result = cp_build_unary_op (code, TREE_OPERAND (arg, 1), false,
7678 tf_warning_or_error);
7679 return build2 (COMPOUND_EXPR, TREE_TYPE (real_result),
7680 TREE_OPERAND (arg, 0), real_result);
7683 /* Handle (a ? b : c) used as an "lvalue". */
7684 if (TREE_CODE (arg) == COND_EXPR
7685 || TREE_CODE (arg) == MIN_EXPR || TREE_CODE (arg) == MAX_EXPR)
7686 return rationalize_conditional_expr (code, arg, tf_warning_or_error);
7688 /* Handle (a = b), (++a), and (--a) used as an "lvalue". */
7689 if (TREE_CODE (arg) == MODIFY_EXPR
7690 || TREE_CODE (arg) == PREINCREMENT_EXPR
7691 || TREE_CODE (arg) == PREDECREMENT_EXPR)
7692 return unary_complex_lvalue (code, genericize_compound_lvalue (arg));
7694 if (code != ADDR_EXPR)
7695 return NULL_TREE;
7697 /* Handle (a = b) used as an "lvalue" for `&'. */
7698 if (TREE_CODE (arg) == MODIFY_EXPR
7699 || TREE_CODE (arg) == INIT_EXPR)
7701 tree real_result = cp_build_unary_op (code, TREE_OPERAND (arg, 0), false,
7702 tf_warning_or_error);
7703 arg = build2 (COMPOUND_EXPR, TREE_TYPE (real_result),
7704 arg, real_result);
7705 suppress_warning (arg /* What warning? */);
7706 return arg;
7709 if (FUNC_OR_METHOD_TYPE_P (TREE_TYPE (arg))
7710 || TREE_CODE (arg) == OFFSET_REF)
7711 return NULL_TREE;
7713 /* We permit compiler to make function calls returning
7714 objects of aggregate type look like lvalues. */
7716 tree targ = arg;
7718 if (TREE_CODE (targ) == SAVE_EXPR)
7719 targ = TREE_OPERAND (targ, 0);
7721 if (TREE_CODE (targ) == CALL_EXPR && MAYBE_CLASS_TYPE_P (TREE_TYPE (targ)))
7723 if (TREE_CODE (arg) == SAVE_EXPR)
7724 targ = arg;
7725 else
7726 targ = build_cplus_new (TREE_TYPE (arg), arg, tf_warning_or_error);
7727 return build1 (ADDR_EXPR, build_pointer_type (TREE_TYPE (arg)), targ);
7730 if (TREE_CODE (arg) == SAVE_EXPR && INDIRECT_REF_P (targ))
7731 return build3 (SAVE_EXPR, build_pointer_type (TREE_TYPE (arg)),
7732 TREE_OPERAND (targ, 0), current_function_decl, NULL);
7735 /* Don't let anything else be handled specially. */
7736 return NULL_TREE;
7739 /* Mark EXP saying that we need to be able to take the
7740 address of it; it should not be allocated in a register.
7741 Value is true if successful. ARRAY_REF_P is true if this
7742 is for ARRAY_REF construction - in that case we don't want
7743 to look through VIEW_CONVERT_EXPR from VECTOR_TYPE to ARRAY_TYPE,
7744 it is fine to use ARRAY_REFs for vector subscripts on vector
7745 register variables.
7747 C++: we do not allow `current_class_ptr' to be addressable. */
7749 bool
7750 cxx_mark_addressable (tree exp, bool array_ref_p)
7752 tree x = exp;
7754 while (1)
7755 switch (TREE_CODE (x))
7757 case VIEW_CONVERT_EXPR:
7758 if (array_ref_p
7759 && TREE_CODE (TREE_TYPE (x)) == ARRAY_TYPE
7760 && VECTOR_TYPE_P (TREE_TYPE (TREE_OPERAND (x, 0))))
7761 return true;
7762 x = TREE_OPERAND (x, 0);
7763 break;
7765 case COMPONENT_REF:
7766 if (bitfield_p (x))
7767 error ("attempt to take address of bit-field");
7768 /* FALLTHRU */
7769 case ADDR_EXPR:
7770 case ARRAY_REF:
7771 case REALPART_EXPR:
7772 case IMAGPART_EXPR:
7773 x = TREE_OPERAND (x, 0);
7774 break;
7776 case PARM_DECL:
7777 if (x == current_class_ptr)
7779 error ("cannot take the address of %<this%>, which is an rvalue expression");
7780 TREE_ADDRESSABLE (x) = 1; /* so compiler doesn't die later. */
7781 return true;
7783 /* Fall through. */
7785 case VAR_DECL:
7786 /* Caller should not be trying to mark initialized
7787 constant fields addressable. */
7788 gcc_assert (DECL_LANG_SPECIFIC (x) == 0
7789 || DECL_IN_AGGR_P (x) == 0
7790 || TREE_STATIC (x)
7791 || DECL_EXTERNAL (x));
7792 /* Fall through. */
7794 case RESULT_DECL:
7795 if (DECL_REGISTER (x) && !TREE_ADDRESSABLE (x)
7796 && !DECL_ARTIFICIAL (x))
7798 if (VAR_P (x) && DECL_HARD_REGISTER (x))
7800 error
7801 ("address of explicit register variable %qD requested", x);
7802 return false;
7804 else if (extra_warnings)
7805 warning
7806 (OPT_Wextra, "address requested for %qD, which is declared %<register%>", x);
7808 TREE_ADDRESSABLE (x) = 1;
7809 return true;
7811 case CONST_DECL:
7812 case FUNCTION_DECL:
7813 TREE_ADDRESSABLE (x) = 1;
7814 return true;
7816 case CONSTRUCTOR:
7817 TREE_ADDRESSABLE (x) = 1;
7818 return true;
7820 case TARGET_EXPR:
7821 TREE_ADDRESSABLE (x) = 1;
7822 cxx_mark_addressable (TREE_OPERAND (x, 0));
7823 return true;
7825 default:
7826 return true;
7830 /* Build and return a conditional expression IFEXP ? OP1 : OP2. */
7832 tree
7833 build_x_conditional_expr (location_t loc, tree ifexp, tree op1, tree op2,
7834 tsubst_flags_t complain)
7836 tree orig_ifexp = ifexp;
7837 tree orig_op1 = op1;
7838 tree orig_op2 = op2;
7839 tree expr;
7841 if (processing_template_decl)
7843 /* The standard says that the expression is type-dependent if
7844 IFEXP is type-dependent, even though the eventual type of the
7845 expression doesn't dependent on IFEXP. */
7846 if (type_dependent_expression_p (ifexp)
7847 /* As a GNU extension, the middle operand may be omitted. */
7848 || (op1 && type_dependent_expression_p (op1))
7849 || type_dependent_expression_p (op2))
7850 return build_min_nt_loc (loc, COND_EXPR, ifexp, op1, op2);
7851 ifexp = build_non_dependent_expr (ifexp);
7852 if (op1)
7853 op1 = build_non_dependent_expr (op1);
7854 op2 = build_non_dependent_expr (op2);
7857 expr = build_conditional_expr (loc, ifexp, op1, op2, complain);
7858 if (processing_template_decl && expr != error_mark_node)
7860 tree min = build_min_non_dep (COND_EXPR, expr,
7861 orig_ifexp, orig_op1, orig_op2);
7862 expr = convert_from_reference (min);
7864 return expr;
7867 /* Given a list of expressions, return a compound expression
7868 that performs them all and returns the value of the last of them. */
7870 tree
7871 build_x_compound_expr_from_list (tree list, expr_list_kind exp,
7872 tsubst_flags_t complain)
7874 tree expr = TREE_VALUE (list);
7876 if (BRACE_ENCLOSED_INITIALIZER_P (expr)
7877 && !CONSTRUCTOR_IS_DIRECT_INIT (expr))
7879 if (complain & tf_error)
7880 pedwarn (cp_expr_loc_or_input_loc (expr), 0,
7881 "list-initializer for non-class type must not "
7882 "be parenthesized");
7883 else
7884 return error_mark_node;
7887 if (TREE_CHAIN (list))
7889 if (complain & tf_error)
7890 switch (exp)
7892 case ELK_INIT:
7893 permerror (input_location, "expression list treated as compound "
7894 "expression in initializer");
7895 break;
7896 case ELK_MEM_INIT:
7897 permerror (input_location, "expression list treated as compound "
7898 "expression in mem-initializer");
7899 break;
7900 case ELK_FUNC_CAST:
7901 permerror (input_location, "expression list treated as compound "
7902 "expression in functional cast");
7903 break;
7904 default:
7905 gcc_unreachable ();
7907 else
7908 return error_mark_node;
7910 for (list = TREE_CHAIN (list); list; list = TREE_CHAIN (list))
7911 expr = build_x_compound_expr (EXPR_LOCATION (TREE_VALUE (list)),
7912 expr, TREE_VALUE (list), NULL_TREE,
7913 complain);
7916 return expr;
7919 /* Like build_x_compound_expr_from_list, but using a VEC. */
7921 tree
7922 build_x_compound_expr_from_vec (vec<tree, va_gc> *vec, const char *msg,
7923 tsubst_flags_t complain)
7925 if (vec_safe_is_empty (vec))
7926 return NULL_TREE;
7927 else if (vec->length () == 1)
7928 return (*vec)[0];
7929 else
7931 tree expr;
7932 unsigned int ix;
7933 tree t;
7935 if (msg != NULL)
7937 if (complain & tf_error)
7938 permerror (input_location,
7939 "%s expression list treated as compound expression",
7940 msg);
7941 else
7942 return error_mark_node;
7945 expr = (*vec)[0];
7946 for (ix = 1; vec->iterate (ix, &t); ++ix)
7947 expr = build_x_compound_expr (EXPR_LOCATION (t), expr,
7948 t, NULL_TREE, complain);
7950 return expr;
7954 /* Handle overloading of the ',' operator when needed. */
7956 tree
7957 build_x_compound_expr (location_t loc, tree op1, tree op2,
7958 tree lookups, tsubst_flags_t complain)
7960 tree result;
7961 tree orig_op1 = op1;
7962 tree orig_op2 = op2;
7963 tree overload = NULL_TREE;
7965 if (processing_template_decl)
7967 if (type_dependent_expression_p (op1)
7968 || type_dependent_expression_p (op2))
7970 result = build_min_nt_loc (loc, COMPOUND_EXPR, op1, op2);
7971 TREE_TYPE (result)
7972 = build_dependent_operator_type (lookups, COMPOUND_EXPR, false);
7973 return result;
7975 op1 = build_non_dependent_expr (op1);
7976 op2 = build_non_dependent_expr (op2);
7979 result = build_new_op (loc, COMPOUND_EXPR, LOOKUP_NORMAL, op1, op2,
7980 NULL_TREE, lookups, &overload, complain);
7981 if (!result)
7982 result = cp_build_compound_expr (op1, op2, complain);
7984 if (processing_template_decl && result != error_mark_node)
7986 if (overload != NULL_TREE)
7987 return (build_min_non_dep_op_overload
7988 (COMPOUND_EXPR, result, overload, orig_op1, orig_op2));
7990 return build_min_non_dep (COMPOUND_EXPR, result, orig_op1, orig_op2);
7993 return result;
7996 /* Like cp_build_compound_expr, but for the c-common bits. */
7998 tree
7999 build_compound_expr (location_t /*loc*/, tree lhs, tree rhs)
8001 return cp_build_compound_expr (lhs, rhs, tf_warning_or_error);
8004 /* Build a compound expression. */
8006 tree
8007 cp_build_compound_expr (tree lhs, tree rhs, tsubst_flags_t complain)
8009 lhs = convert_to_void (lhs, ICV_LEFT_OF_COMMA, complain);
8011 if (lhs == error_mark_node || rhs == error_mark_node)
8012 return error_mark_node;
8014 if (TREE_CODE (lhs) == EXCESS_PRECISION_EXPR)
8015 lhs = TREE_OPERAND (lhs, 0);
8016 tree eptype = NULL_TREE;
8017 if (TREE_CODE (rhs) == EXCESS_PRECISION_EXPR)
8019 eptype = TREE_TYPE (rhs);
8020 rhs = TREE_OPERAND (rhs, 0);
8023 if (TREE_CODE (rhs) == TARGET_EXPR)
8025 /* If the rhs is a TARGET_EXPR, then build the compound
8026 expression inside the target_expr's initializer. This
8027 helps the compiler to eliminate unnecessary temporaries. */
8028 tree init = TREE_OPERAND (rhs, 1);
8030 init = build2 (COMPOUND_EXPR, TREE_TYPE (init), lhs, init);
8031 TREE_OPERAND (rhs, 1) = init;
8033 if (eptype)
8034 rhs = build1 (EXCESS_PRECISION_EXPR, eptype, rhs);
8035 return rhs;
8038 if (type_unknown_p (rhs))
8040 if (complain & tf_error)
8041 error_at (cp_expr_loc_or_input_loc (rhs),
8042 "no context to resolve type of %qE", rhs);
8043 return error_mark_node;
8046 tree ret = build2 (COMPOUND_EXPR, TREE_TYPE (rhs), lhs, rhs);
8047 if (eptype)
8048 ret = build1 (EXCESS_PRECISION_EXPR, eptype, ret);
8049 return ret;
8052 /* Issue a diagnostic message if casting from SRC_TYPE to DEST_TYPE
8053 casts away constness. CAST gives the type of cast. Returns true
8054 if the cast is ill-formed, false if it is well-formed.
8056 ??? This function warns for casting away any qualifier not just
8057 const. We would like to specify exactly what qualifiers are casted
8058 away.
8061 static bool
8062 check_for_casting_away_constness (location_t loc, tree src_type,
8063 tree dest_type, enum tree_code cast,
8064 tsubst_flags_t complain)
8066 /* C-style casts are allowed to cast away constness. With
8067 WARN_CAST_QUAL, we still want to issue a warning. */
8068 if (cast == CAST_EXPR && !warn_cast_qual)
8069 return false;
8071 if (!casts_away_constness (src_type, dest_type, complain))
8072 return false;
8074 switch (cast)
8076 case CAST_EXPR:
8077 if (complain & tf_warning)
8078 warning_at (loc, OPT_Wcast_qual,
8079 "cast from type %qT to type %qT casts away qualifiers",
8080 src_type, dest_type);
8081 return false;
8083 case STATIC_CAST_EXPR:
8084 if (complain & tf_error)
8085 error_at (loc, "%<static_cast%> from type %qT to type %qT casts "
8086 "away qualifiers",
8087 src_type, dest_type);
8088 return true;
8090 case REINTERPRET_CAST_EXPR:
8091 if (complain & tf_error)
8092 error_at (loc, "%<reinterpret_cast%> from type %qT to type %qT "
8093 "casts away qualifiers",
8094 src_type, dest_type);
8095 return true;
8097 default:
8098 gcc_unreachable();
8102 /* Warns if the cast from expression EXPR to type TYPE is useless. */
8103 void
8104 maybe_warn_about_useless_cast (location_t loc, tree type, tree expr,
8105 tsubst_flags_t complain)
8107 if (warn_useless_cast
8108 && complain & tf_warning)
8110 if (TYPE_REF_P (type)
8111 ? ((TYPE_REF_IS_RVALUE (type)
8112 ? xvalue_p (expr) : lvalue_p (expr))
8113 && same_type_p (TREE_TYPE (expr), TREE_TYPE (type)))
8114 /* Don't warn when converting a class object to a non-reference type,
8115 because that's a common way to create a temporary. */
8116 : (!glvalue_p (expr) && same_type_p (TREE_TYPE (expr), type)))
8117 warning_at (loc, OPT_Wuseless_cast,
8118 "useless cast to type %q#T", type);
8122 /* Warns if the cast ignores cv-qualifiers on TYPE. */
8123 static void
8124 maybe_warn_about_cast_ignoring_quals (location_t loc, tree type,
8125 tsubst_flags_t complain)
8127 if (warn_ignored_qualifiers
8128 && complain & tf_warning
8129 && !CLASS_TYPE_P (type)
8130 && (cp_type_quals (type) & (TYPE_QUAL_CONST|TYPE_QUAL_VOLATILE)))
8131 warning_at (loc, OPT_Wignored_qualifiers,
8132 "type qualifiers ignored on cast result type");
8135 /* Convert EXPR (an expression with pointer-to-member type) to TYPE
8136 (another pointer-to-member type in the same hierarchy) and return
8137 the converted expression. If ALLOW_INVERSE_P is permitted, a
8138 pointer-to-derived may be converted to pointer-to-base; otherwise,
8139 only the other direction is permitted. If C_CAST_P is true, this
8140 conversion is taking place as part of a C-style cast. */
8142 tree
8143 convert_ptrmem (tree type, tree expr, bool allow_inverse_p,
8144 bool c_cast_p, tsubst_flags_t complain)
8146 if (same_type_p (type, TREE_TYPE (expr)))
8147 return expr;
8149 if (TYPE_PTRDATAMEM_P (type))
8151 tree obase = TYPE_PTRMEM_CLASS_TYPE (TREE_TYPE (expr));
8152 tree nbase = TYPE_PTRMEM_CLASS_TYPE (type);
8153 tree delta = (get_delta_difference
8154 (obase, nbase,
8155 allow_inverse_p, c_cast_p, complain));
8157 if (delta == error_mark_node)
8158 return error_mark_node;
8160 if (!same_type_p (obase, nbase))
8162 if (TREE_CODE (expr) == PTRMEM_CST)
8163 expr = cplus_expand_constant (expr);
8165 tree cond = cp_build_binary_op (input_location, EQ_EXPR, expr,
8166 build_int_cst (TREE_TYPE (expr), -1),
8167 complain);
8168 tree op1 = build_nop (ptrdiff_type_node, expr);
8169 tree op2 = cp_build_binary_op (input_location, PLUS_EXPR, op1, delta,
8170 complain);
8172 expr = fold_build3_loc (input_location,
8173 COND_EXPR, ptrdiff_type_node, cond, op1, op2);
8176 return build_nop (type, expr);
8178 else
8179 return build_ptrmemfunc (TYPE_PTRMEMFUNC_FN_TYPE (type), expr,
8180 allow_inverse_p, c_cast_p, complain);
8183 /* Perform a static_cast from EXPR to TYPE. When C_CAST_P is true,
8184 this static_cast is being attempted as one of the possible casts
8185 allowed by a C-style cast. (In that case, accessibility of base
8186 classes is not considered, and it is OK to cast away
8187 constness.) Return the result of the cast. *VALID_P is set to
8188 indicate whether or not the cast was valid. */
8190 static tree
8191 build_static_cast_1 (location_t loc, tree type, tree expr, bool c_cast_p,
8192 bool *valid_p, tsubst_flags_t complain)
8194 tree intype;
8195 tree result;
8196 cp_lvalue_kind clk;
8198 /* Assume the cast is valid. */
8199 *valid_p = true;
8201 intype = unlowered_expr_type (expr);
8203 /* Save casted types in the function's used types hash table. */
8204 used_types_insert (type);
8206 /* A prvalue of non-class type is cv-unqualified. */
8207 if (!CLASS_TYPE_P (type))
8208 type = cv_unqualified (type);
8210 /* [expr.static.cast]
8212 An lvalue of type "cv1 B", where B is a class type, can be cast
8213 to type "reference to cv2 D", where D is a class derived (clause
8214 _class.derived_) from B, if a valid standard conversion from
8215 "pointer to D" to "pointer to B" exists (_conv.ptr_), cv2 is the
8216 same cv-qualification as, or greater cv-qualification than, cv1,
8217 and B is not a virtual base class of D. */
8218 /* We check this case before checking the validity of "TYPE t =
8219 EXPR;" below because for this case:
8221 struct B {};
8222 struct D : public B { D(const B&); };
8223 extern B& b;
8224 void f() { static_cast<const D&>(b); }
8226 we want to avoid constructing a new D. The standard is not
8227 completely clear about this issue, but our interpretation is
8228 consistent with other compilers. */
8229 if (TYPE_REF_P (type)
8230 && CLASS_TYPE_P (TREE_TYPE (type))
8231 && CLASS_TYPE_P (intype)
8232 && (TYPE_REF_IS_RVALUE (type) || lvalue_p (expr))
8233 && DERIVED_FROM_P (intype, TREE_TYPE (type))
8234 && can_convert (build_pointer_type (TYPE_MAIN_VARIANT (intype)),
8235 build_pointer_type (TYPE_MAIN_VARIANT
8236 (TREE_TYPE (type))),
8237 complain)
8238 && (c_cast_p
8239 || at_least_as_qualified_p (TREE_TYPE (type), intype)))
8241 tree base;
8243 if (processing_template_decl)
8244 return expr;
8246 /* There is a standard conversion from "D*" to "B*" even if "B"
8247 is ambiguous or inaccessible. If this is really a
8248 static_cast, then we check both for inaccessibility and
8249 ambiguity. However, if this is a static_cast being performed
8250 because the user wrote a C-style cast, then accessibility is
8251 not considered. */
8252 base = lookup_base (TREE_TYPE (type), intype,
8253 c_cast_p ? ba_unique : ba_check,
8254 NULL, complain);
8255 expr = cp_build_addr_expr (expr, complain);
8257 if (sanitize_flags_p (SANITIZE_VPTR))
8259 tree ubsan_check
8260 = cp_ubsan_maybe_instrument_downcast (loc, type,
8261 intype, expr);
8262 if (ubsan_check)
8263 expr = ubsan_check;
8266 /* Convert from "B*" to "D*". This function will check that "B"
8267 is not a virtual base of "D". Even if we don't have a guarantee
8268 that expr is NULL, if the static_cast is to a reference type,
8269 it is UB if it would be NULL, so omit the non-NULL check. */
8270 expr = build_base_path (MINUS_EXPR, expr, base,
8271 /*nonnull=*/flag_delete_null_pointer_checks,
8272 complain);
8274 /* Convert the pointer to a reference -- but then remember that
8275 there are no expressions with reference type in C++.
8277 We call rvalue so that there's an actual tree code
8278 (NON_LVALUE_EXPR) for the static_cast; otherwise, if the operand
8279 is a variable with the same type, the conversion would get folded
8280 away, leaving just the variable and causing lvalue_kind to give
8281 the wrong answer. */
8282 expr = cp_fold_convert (type, expr);
8284 /* When -fsanitize=null, make sure to diagnose reference binding to
8285 NULL even when the reference is converted to pointer later on. */
8286 if (sanitize_flags_p (SANITIZE_NULL)
8287 && TREE_CODE (expr) == COND_EXPR
8288 && TREE_OPERAND (expr, 2)
8289 && TREE_CODE (TREE_OPERAND (expr, 2)) == INTEGER_CST
8290 && TREE_TYPE (TREE_OPERAND (expr, 2)) == type)
8291 ubsan_maybe_instrument_reference (&TREE_OPERAND (expr, 2));
8293 return convert_from_reference (rvalue (expr));
8296 /* "A glvalue of type cv1 T1 can be cast to type rvalue reference to
8297 cv2 T2 if cv2 T2 is reference-compatible with cv1 T1 (8.5.3)." */
8298 if (TYPE_REF_P (type)
8299 && TYPE_REF_IS_RVALUE (type)
8300 && (clk = real_lvalue_p (expr))
8301 && reference_compatible_p (TREE_TYPE (type), intype)
8302 && (c_cast_p || at_least_as_qualified_p (TREE_TYPE (type), intype)))
8304 if (processing_template_decl)
8305 return expr;
8306 if (clk == clk_ordinary)
8308 /* Handle the (non-bit-field) lvalue case here by casting to
8309 lvalue reference and then changing it to an rvalue reference.
8310 Casting an xvalue to rvalue reference will be handled by the
8311 main code path. */
8312 tree lref = cp_build_reference_type (TREE_TYPE (type), false);
8313 result = (perform_direct_initialization_if_possible
8314 (lref, expr, c_cast_p, complain));
8315 result = build1 (NON_LVALUE_EXPR, type, result);
8316 return convert_from_reference (result);
8318 else
8319 /* For a bit-field or packed field, bind to a temporary. */
8320 expr = rvalue (expr);
8323 /* Resolve overloaded address here rather than once in
8324 implicit_conversion and again in the inverse code below. */
8325 if (TYPE_PTRMEMFUNC_P (type) && type_unknown_p (expr))
8327 expr = instantiate_type (type, expr, complain);
8328 intype = TREE_TYPE (expr);
8331 /* [expr.static.cast]
8333 Any expression can be explicitly converted to type cv void. */
8334 if (VOID_TYPE_P (type))
8336 if (TREE_CODE (expr) == EXCESS_PRECISION_EXPR)
8337 expr = TREE_OPERAND (expr, 0);
8338 return convert_to_void (expr, ICV_CAST, complain);
8341 /* [class.abstract]
8342 An abstract class shall not be used ... as the type of an explicit
8343 conversion. */
8344 if (abstract_virtuals_error (ACU_CAST, type, complain))
8345 return error_mark_node;
8347 /* [expr.static.cast]
8349 An expression e can be explicitly converted to a type T using a
8350 static_cast of the form static_cast<T>(e) if the declaration T
8351 t(e);" is well-formed, for some invented temporary variable
8352 t. */
8353 result = perform_direct_initialization_if_possible (type, expr,
8354 c_cast_p, complain);
8355 /* P1975 allows static_cast<Aggr>(42), as well as static_cast<T[5]>(42),
8356 which initialize the first element of the aggregate. We need to handle
8357 the array case specifically. */
8358 if (result == NULL_TREE
8359 && cxx_dialect >= cxx20
8360 && TREE_CODE (type) == ARRAY_TYPE)
8362 /* Create { EXPR } and perform direct-initialization from it. */
8363 tree e = build_constructor_single (init_list_type_node, NULL_TREE, expr);
8364 CONSTRUCTOR_IS_DIRECT_INIT (e) = true;
8365 CONSTRUCTOR_IS_PAREN_INIT (e) = true;
8366 result = perform_direct_initialization_if_possible (type, e, c_cast_p,
8367 complain);
8369 if (result)
8371 if (processing_template_decl)
8372 return expr;
8374 result = convert_from_reference (result);
8376 /* [expr.static.cast]
8378 If T is a reference type, the result is an lvalue; otherwise,
8379 the result is an rvalue. */
8380 if (!TYPE_REF_P (type))
8382 result = rvalue (result);
8384 if (result == expr && SCALAR_TYPE_P (type))
8385 /* Leave some record of the cast. */
8386 result = build_nop (type, expr);
8388 return result;
8391 /* [expr.static.cast]
8393 The inverse of any standard conversion sequence (clause _conv_),
8394 other than the lvalue-to-rvalue (_conv.lval_), array-to-pointer
8395 (_conv.array_), function-to-pointer (_conv.func_), and boolean
8396 (_conv.bool_) conversions, can be performed explicitly using
8397 static_cast subject to the restriction that the explicit
8398 conversion does not cast away constness (_expr.const.cast_), and
8399 the following additional rules for specific cases: */
8400 /* For reference, the conversions not excluded are: integral
8401 promotions, floating-point promotion, integral conversions,
8402 floating-point conversions, floating-integral conversions,
8403 pointer conversions, and pointer to member conversions. */
8404 /* DR 128
8406 A value of integral _or enumeration_ type can be explicitly
8407 converted to an enumeration type. */
8408 /* The effect of all that is that any conversion between any two
8409 types which are integral, floating, or enumeration types can be
8410 performed. */
8411 if ((INTEGRAL_OR_ENUMERATION_TYPE_P (type)
8412 || SCALAR_FLOAT_TYPE_P (type))
8413 && (INTEGRAL_OR_ENUMERATION_TYPE_P (intype)
8414 || SCALAR_FLOAT_TYPE_P (intype)))
8416 if (processing_template_decl)
8417 return expr;
8418 if (TREE_CODE (expr) == EXCESS_PRECISION_EXPR)
8419 expr = TREE_OPERAND (expr, 0);
8420 return ocp_convert (type, expr, CONV_C_CAST, LOOKUP_NORMAL, complain);
8423 if (TYPE_PTR_P (type) && TYPE_PTR_P (intype)
8424 && CLASS_TYPE_P (TREE_TYPE (type))
8425 && CLASS_TYPE_P (TREE_TYPE (intype))
8426 && can_convert (build_pointer_type (TYPE_MAIN_VARIANT
8427 (TREE_TYPE (intype))),
8428 build_pointer_type (TYPE_MAIN_VARIANT
8429 (TREE_TYPE (type))),
8430 complain))
8432 tree base;
8434 if (processing_template_decl)
8435 return expr;
8437 if (!c_cast_p
8438 && check_for_casting_away_constness (loc, intype, type,
8439 STATIC_CAST_EXPR,
8440 complain))
8441 return error_mark_node;
8442 base = lookup_base (TREE_TYPE (type), TREE_TYPE (intype),
8443 c_cast_p ? ba_unique : ba_check,
8444 NULL, complain);
8445 expr = build_base_path (MINUS_EXPR, expr, base, /*nonnull=*/false,
8446 complain);
8448 if (sanitize_flags_p (SANITIZE_VPTR))
8450 tree ubsan_check
8451 = cp_ubsan_maybe_instrument_downcast (loc, type,
8452 intype, expr);
8453 if (ubsan_check)
8454 expr = ubsan_check;
8457 return cp_fold_convert (type, expr);
8460 if ((TYPE_PTRDATAMEM_P (type) && TYPE_PTRDATAMEM_P (intype))
8461 || (TYPE_PTRMEMFUNC_P (type) && TYPE_PTRMEMFUNC_P (intype)))
8463 tree c1;
8464 tree c2;
8465 tree t1;
8466 tree t2;
8468 c1 = TYPE_PTRMEM_CLASS_TYPE (intype);
8469 c2 = TYPE_PTRMEM_CLASS_TYPE (type);
8471 if (TYPE_PTRDATAMEM_P (type))
8473 t1 = (build_ptrmem_type
8474 (c1,
8475 TYPE_MAIN_VARIANT (TYPE_PTRMEM_POINTED_TO_TYPE (intype))));
8476 t2 = (build_ptrmem_type
8477 (c2,
8478 TYPE_MAIN_VARIANT (TYPE_PTRMEM_POINTED_TO_TYPE (type))));
8480 else
8482 t1 = intype;
8483 t2 = type;
8485 if (can_convert (t1, t2, complain) || can_convert (t2, t1, complain))
8487 if (!c_cast_p
8488 && check_for_casting_away_constness (loc, intype, type,
8489 STATIC_CAST_EXPR,
8490 complain))
8491 return error_mark_node;
8492 if (processing_template_decl)
8493 return expr;
8494 return convert_ptrmem (type, expr, /*allow_inverse_p=*/1,
8495 c_cast_p, complain);
8499 /* [expr.static.cast]
8501 An rvalue of type "pointer to cv void" can be explicitly
8502 converted to a pointer to object type. A value of type pointer
8503 to object converted to "pointer to cv void" and back to the
8504 original pointer type will have its original value. */
8505 if (TYPE_PTR_P (intype)
8506 && VOID_TYPE_P (TREE_TYPE (intype))
8507 && TYPE_PTROB_P (type))
8509 if (!c_cast_p
8510 && check_for_casting_away_constness (loc, intype, type,
8511 STATIC_CAST_EXPR,
8512 complain))
8513 return error_mark_node;
8514 if (processing_template_decl)
8515 return expr;
8516 return build_nop (type, expr);
8519 *valid_p = false;
8520 return error_mark_node;
8523 /* Return an expression representing static_cast<TYPE>(EXPR). */
8525 tree
8526 build_static_cast (location_t loc, tree type, tree oexpr,
8527 tsubst_flags_t complain)
8529 tree expr = oexpr;
8530 tree result;
8531 bool valid_p;
8533 if (type == error_mark_node || expr == error_mark_node)
8534 return error_mark_node;
8536 bool dependent = (dependent_type_p (type)
8537 || type_dependent_expression_p (expr));
8538 if (dependent)
8540 tmpl:
8541 expr = build_min (STATIC_CAST_EXPR, type, oexpr);
8542 /* We don't know if it will or will not have side effects. */
8543 TREE_SIDE_EFFECTS (expr) = 1;
8544 result = convert_from_reference (expr);
8545 protected_set_expr_location (result, loc);
8546 return result;
8548 else if (processing_template_decl)
8549 expr = build_non_dependent_expr (expr);
8551 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
8552 Strip such NOP_EXPRs if VALUE is being used in non-lvalue context. */
8553 if (!TYPE_REF_P (type)
8554 && TREE_CODE (expr) == NOP_EXPR
8555 && TREE_TYPE (expr) == TREE_TYPE (TREE_OPERAND (expr, 0)))
8556 expr = TREE_OPERAND (expr, 0);
8558 result = build_static_cast_1 (loc, type, expr, /*c_cast_p=*/false,
8559 &valid_p, complain);
8560 if (valid_p)
8562 if (result != error_mark_node)
8564 maybe_warn_about_useless_cast (loc, type, expr, complain);
8565 maybe_warn_about_cast_ignoring_quals (loc, type, complain);
8567 if (processing_template_decl)
8568 goto tmpl;
8569 protected_set_expr_location (result, loc);
8570 return result;
8573 if (complain & tf_error)
8575 error_at (loc, "invalid %<static_cast%> from type %qT to type %qT",
8576 TREE_TYPE (expr), type);
8577 if ((TYPE_PTR_P (type) || TYPE_REF_P (type))
8578 && CLASS_TYPE_P (TREE_TYPE (type))
8579 && !COMPLETE_TYPE_P (TREE_TYPE (type)))
8580 inform (DECL_SOURCE_LOCATION (TYPE_MAIN_DECL (TREE_TYPE (type))),
8581 "class type %qT is incomplete", TREE_TYPE (type));
8582 tree expr_type = TREE_TYPE (expr);
8583 if (TYPE_PTR_P (expr_type))
8584 expr_type = TREE_TYPE (expr_type);
8585 if (CLASS_TYPE_P (expr_type) && !COMPLETE_TYPE_P (expr_type))
8586 inform (DECL_SOURCE_LOCATION (TYPE_MAIN_DECL (expr_type)),
8587 "class type %qT is incomplete", expr_type);
8589 return error_mark_node;
8592 /* EXPR is an expression with member function or pointer-to-member
8593 function type. TYPE is a pointer type. Converting EXPR to TYPE is
8594 not permitted by ISO C++, but we accept it in some modes. If we
8595 are not in one of those modes, issue a diagnostic. Return the
8596 converted expression. */
8598 tree
8599 convert_member_func_to_ptr (tree type, tree expr, tsubst_flags_t complain)
8601 tree intype;
8602 tree decl;
8604 intype = TREE_TYPE (expr);
8605 gcc_assert (TYPE_PTRMEMFUNC_P (intype)
8606 || TREE_CODE (intype) == METHOD_TYPE);
8608 if (!(complain & tf_warning_or_error))
8609 return error_mark_node;
8611 location_t loc = cp_expr_loc_or_input_loc (expr);
8613 if (pedantic || warn_pmf2ptr)
8614 pedwarn (loc, pedantic ? OPT_Wpedantic : OPT_Wpmf_conversions,
8615 "converting from %qH to %qI", intype, type);
8617 STRIP_ANY_LOCATION_WRAPPER (expr);
8619 if (TREE_CODE (intype) == METHOD_TYPE)
8620 expr = build_addr_func (expr, complain);
8621 else if (TREE_CODE (expr) == PTRMEM_CST)
8622 expr = build_address (PTRMEM_CST_MEMBER (expr));
8623 else
8625 decl = maybe_dummy_object (TYPE_PTRMEM_CLASS_TYPE (intype), 0);
8626 decl = build_address (decl);
8627 expr = get_member_function_from_ptrfunc (&decl, expr, complain);
8630 if (expr == error_mark_node)
8631 return error_mark_node;
8633 expr = build_nop (type, expr);
8634 SET_EXPR_LOCATION (expr, loc);
8635 return expr;
8638 /* Build a NOP_EXPR to TYPE, but mark it as a reinterpret_cast so that
8639 constexpr evaluation knows to reject it. */
8641 static tree
8642 build_nop_reinterpret (tree type, tree expr)
8644 tree ret = build_nop (type, expr);
8645 if (ret != expr)
8646 REINTERPRET_CAST_P (ret) = true;
8647 return ret;
8650 /* Return a representation for a reinterpret_cast from EXPR to TYPE.
8651 If C_CAST_P is true, this reinterpret cast is being done as part of
8652 a C-style cast. If VALID_P is non-NULL, *VALID_P is set to
8653 indicate whether or not reinterpret_cast was valid. */
8655 static tree
8656 build_reinterpret_cast_1 (location_t loc, tree type, tree expr,
8657 bool c_cast_p, bool *valid_p,
8658 tsubst_flags_t complain)
8660 tree intype;
8662 /* Assume the cast is invalid. */
8663 if (valid_p)
8664 *valid_p = true;
8666 if (type == error_mark_node || error_operand_p (expr))
8667 return error_mark_node;
8669 intype = TREE_TYPE (expr);
8671 /* Save casted types in the function's used types hash table. */
8672 used_types_insert (type);
8674 /* A prvalue of non-class type is cv-unqualified. */
8675 if (!CLASS_TYPE_P (type))
8676 type = cv_unqualified (type);
8678 /* [expr.reinterpret.cast]
8679 A glvalue of type T1, designating an object x, can be cast to the type
8680 "reference to T2" if an expression of type "pointer to T1" can be
8681 explicitly converted to the type "pointer to T2" using a reinterpret_cast.
8682 The result is that of *reinterpret_cast<T2 *>(p) where p is a pointer to x
8683 of type "pointer to T1". No temporary is created, no copy is made, and no
8684 constructors (11.4.4) or conversion functions (11.4.7) are called. */
8685 if (TYPE_REF_P (type))
8687 if (!glvalue_p (expr))
8689 if (complain & tf_error)
8690 error_at (loc, "invalid cast of a prvalue expression of type "
8691 "%qT to type %qT",
8692 intype, type);
8693 return error_mark_node;
8696 /* Warn about a reinterpret_cast from "A*" to "B&" if "A" and
8697 "B" are related class types; the reinterpret_cast does not
8698 adjust the pointer. */
8699 if (TYPE_PTR_P (intype)
8700 && (complain & tf_warning)
8701 && (comptypes (TREE_TYPE (intype), TREE_TYPE (type),
8702 COMPARE_BASE | COMPARE_DERIVED)))
8703 warning_at (loc, 0, "casting %qT to %qT does not dereference pointer",
8704 intype, type);
8706 expr = cp_build_addr_expr (expr, complain);
8708 if (warn_strict_aliasing > 2)
8709 cp_strict_aliasing_warning (EXPR_LOCATION (expr), type, expr);
8711 if (expr != error_mark_node)
8712 expr = build_reinterpret_cast_1
8713 (loc, build_pointer_type (TREE_TYPE (type)), expr, c_cast_p,
8714 valid_p, complain);
8715 if (expr != error_mark_node)
8716 /* cp_build_indirect_ref isn't right for rvalue refs. */
8717 expr = convert_from_reference (fold_convert (type, expr));
8718 return expr;
8721 /* As a G++ extension, we consider conversions from member
8722 functions, and pointers to member functions to
8723 pointer-to-function and pointer-to-void types. If
8724 -Wno-pmf-conversions has not been specified,
8725 convert_member_func_to_ptr will issue an error message. */
8726 if ((TYPE_PTRMEMFUNC_P (intype)
8727 || TREE_CODE (intype) == METHOD_TYPE)
8728 && TYPE_PTR_P (type)
8729 && (TREE_CODE (TREE_TYPE (type)) == FUNCTION_TYPE
8730 || VOID_TYPE_P (TREE_TYPE (type))))
8731 return convert_member_func_to_ptr (type, expr, complain);
8733 /* If the cast is not to a reference type, the lvalue-to-rvalue,
8734 array-to-pointer, and function-to-pointer conversions are
8735 performed. */
8736 expr = decay_conversion (expr, complain);
8738 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
8739 Strip such NOP_EXPRs if VALUE is being used in non-lvalue context. */
8740 if (TREE_CODE (expr) == NOP_EXPR
8741 && TREE_TYPE (expr) == TREE_TYPE (TREE_OPERAND (expr, 0)))
8742 expr = TREE_OPERAND (expr, 0);
8744 if (error_operand_p (expr))
8745 return error_mark_node;
8747 intype = TREE_TYPE (expr);
8749 /* [expr.reinterpret.cast]
8750 A pointer can be converted to any integral type large enough to
8751 hold it. ... A value of type std::nullptr_t can be converted to
8752 an integral type; the conversion has the same meaning and
8753 validity as a conversion of (void*)0 to the integral type. */
8754 if (CP_INTEGRAL_TYPE_P (type)
8755 && (TYPE_PTR_P (intype) || NULLPTR_TYPE_P (intype)))
8757 if (TYPE_PRECISION (type) < TYPE_PRECISION (intype))
8759 if (complain & tf_error)
8760 permerror (loc, "cast from %qH to %qI loses precision",
8761 intype, type);
8762 else
8763 return error_mark_node;
8765 if (NULLPTR_TYPE_P (intype))
8766 return build_int_cst (type, 0);
8768 /* [expr.reinterpret.cast]
8769 A value of integral or enumeration type can be explicitly
8770 converted to a pointer. */
8771 else if (TYPE_PTR_P (type) && INTEGRAL_OR_ENUMERATION_TYPE_P (intype))
8772 /* OK */
8774 else if ((INTEGRAL_OR_ENUMERATION_TYPE_P (type)
8775 || TYPE_PTR_OR_PTRMEM_P (type))
8776 && same_type_p (type, intype))
8777 /* DR 799 */
8778 return rvalue (expr);
8779 else if (TYPE_PTRFN_P (type) && TYPE_PTRFN_P (intype))
8781 if ((complain & tf_warning)
8782 && !cxx_safe_function_type_cast_p (TREE_TYPE (type),
8783 TREE_TYPE (intype)))
8784 warning_at (loc, OPT_Wcast_function_type,
8785 "cast between incompatible function types"
8786 " from %qH to %qI", intype, type);
8787 return build_nop_reinterpret (type, expr);
8789 else if (TYPE_PTRMEMFUNC_P (type) && TYPE_PTRMEMFUNC_P (intype))
8791 if ((complain & tf_warning)
8792 && !cxx_safe_function_type_cast_p
8793 (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE_RAW (type)),
8794 TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE_RAW (intype))))
8795 warning_at (loc, OPT_Wcast_function_type,
8796 "cast between incompatible pointer to member types"
8797 " from %qH to %qI", intype, type);
8798 return build_nop_reinterpret (type, expr);
8800 else if ((TYPE_PTRDATAMEM_P (type) && TYPE_PTRDATAMEM_P (intype))
8801 || (TYPE_PTROBV_P (type) && TYPE_PTROBV_P (intype)))
8803 if (!c_cast_p
8804 && check_for_casting_away_constness (loc, intype, type,
8805 REINTERPRET_CAST_EXPR,
8806 complain))
8807 return error_mark_node;
8808 /* Warn about possible alignment problems. */
8809 if ((STRICT_ALIGNMENT || warn_cast_align == 2)
8810 && (complain & tf_warning)
8811 && !VOID_TYPE_P (type)
8812 && TREE_CODE (TREE_TYPE (intype)) != FUNCTION_TYPE
8813 && COMPLETE_TYPE_P (TREE_TYPE (type))
8814 && COMPLETE_TYPE_P (TREE_TYPE (intype))
8815 && min_align_of_type (TREE_TYPE (type))
8816 > min_align_of_type (TREE_TYPE (intype)))
8817 warning_at (loc, OPT_Wcast_align, "cast from %qH to %qI "
8818 "increases required alignment of target type",
8819 intype, type);
8821 if (warn_strict_aliasing <= 2)
8822 /* strict_aliasing_warning STRIP_NOPs its expr. */
8823 cp_strict_aliasing_warning (EXPR_LOCATION (expr), type, expr);
8825 return build_nop_reinterpret (type, expr);
8827 else if ((TYPE_PTRFN_P (type) && TYPE_PTROBV_P (intype))
8828 || (TYPE_PTRFN_P (intype) && TYPE_PTROBV_P (type)))
8830 if (complain & tf_warning)
8831 /* C++11 5.2.10 p8 says that "Converting a function pointer to an
8832 object pointer type or vice versa is conditionally-supported." */
8833 warning_at (loc, OPT_Wconditionally_supported,
8834 "casting between pointer-to-function and "
8835 "pointer-to-object is conditionally-supported");
8836 return build_nop_reinterpret (type, expr);
8838 else if (gnu_vector_type_p (type) && scalarish_type_p (intype))
8839 return convert_to_vector (type, rvalue (expr));
8840 else if (gnu_vector_type_p (intype)
8841 && INTEGRAL_OR_ENUMERATION_TYPE_P (type))
8842 return convert_to_integer_nofold (type, expr);
8843 else
8845 if (valid_p)
8846 *valid_p = false;
8847 if (complain & tf_error)
8848 error_at (loc, "invalid cast from type %qT to type %qT",
8849 intype, type);
8850 return error_mark_node;
8853 expr = cp_convert (type, expr, complain);
8854 if (TREE_CODE (expr) == NOP_EXPR)
8855 /* Mark any nop_expr that created as a reintepret_cast. */
8856 REINTERPRET_CAST_P (expr) = true;
8857 return expr;
8860 tree
8861 build_reinterpret_cast (location_t loc, tree type, tree expr,
8862 tsubst_flags_t complain)
8864 tree r;
8866 if (type == error_mark_node || expr == error_mark_node)
8867 return error_mark_node;
8869 if (processing_template_decl)
8871 tree t = build_min (REINTERPRET_CAST_EXPR, type, expr);
8873 if (!TREE_SIDE_EFFECTS (t)
8874 && type_dependent_expression_p (expr))
8875 /* There might turn out to be side effects inside expr. */
8876 TREE_SIDE_EFFECTS (t) = 1;
8877 r = convert_from_reference (t);
8878 protected_set_expr_location (r, loc);
8879 return r;
8882 r = build_reinterpret_cast_1 (loc, type, expr, /*c_cast_p=*/false,
8883 /*valid_p=*/NULL, complain);
8884 if (r != error_mark_node)
8886 maybe_warn_about_useless_cast (loc, type, expr, complain);
8887 maybe_warn_about_cast_ignoring_quals (loc, type, complain);
8889 protected_set_expr_location (r, loc);
8890 return r;
8893 /* Perform a const_cast from EXPR to TYPE. If the cast is valid,
8894 return an appropriate expression. Otherwise, return
8895 error_mark_node. If the cast is not valid, and COMPLAIN is true,
8896 then a diagnostic will be issued. If VALID_P is non-NULL, we are
8897 performing a C-style cast, its value upon return will indicate
8898 whether or not the conversion succeeded. */
8900 static tree
8901 build_const_cast_1 (location_t loc, tree dst_type, tree expr,
8902 tsubst_flags_t complain, bool *valid_p)
8904 tree src_type;
8905 tree reference_type;
8907 /* Callers are responsible for handling error_mark_node as a
8908 destination type. */
8909 gcc_assert (dst_type != error_mark_node);
8910 /* In a template, callers should be building syntactic
8911 representations of casts, not using this machinery. */
8912 gcc_assert (!processing_template_decl);
8914 /* Assume the conversion is invalid. */
8915 if (valid_p)
8916 *valid_p = false;
8918 if (!INDIRECT_TYPE_P (dst_type) && !TYPE_PTRDATAMEM_P (dst_type))
8920 if (complain & tf_error)
8921 error_at (loc, "invalid use of %<const_cast%> with type %qT, "
8922 "which is not a pointer, reference, "
8923 "nor a pointer-to-data-member type", dst_type);
8924 return error_mark_node;
8927 if (TREE_CODE (TREE_TYPE (dst_type)) == FUNCTION_TYPE)
8929 if (complain & tf_error)
8930 error_at (loc, "invalid use of %<const_cast%> with type %qT, "
8931 "which is a pointer or reference to a function type",
8932 dst_type);
8933 return error_mark_node;
8936 /* A prvalue of non-class type is cv-unqualified. */
8937 dst_type = cv_unqualified (dst_type);
8939 /* Save casted types in the function's used types hash table. */
8940 used_types_insert (dst_type);
8942 src_type = TREE_TYPE (expr);
8943 /* Expressions do not really have reference types. */
8944 if (TYPE_REF_P (src_type))
8945 src_type = TREE_TYPE (src_type);
8947 /* [expr.const.cast]
8949 For two object types T1 and T2, if a pointer to T1 can be explicitly
8950 converted to the type "pointer to T2" using a const_cast, then the
8951 following conversions can also be made:
8953 -- an lvalue of type T1 can be explicitly converted to an lvalue of
8954 type T2 using the cast const_cast<T2&>;
8956 -- a glvalue of type T1 can be explicitly converted to an xvalue of
8957 type T2 using the cast const_cast<T2&&>; and
8959 -- if T1 is a class type, a prvalue of type T1 can be explicitly
8960 converted to an xvalue of type T2 using the cast const_cast<T2&&>. */
8962 if (TYPE_REF_P (dst_type))
8964 reference_type = dst_type;
8965 if (!TYPE_REF_IS_RVALUE (dst_type)
8966 ? lvalue_p (expr)
8967 : obvalue_p (expr))
8968 /* OK. */;
8969 else
8971 if (complain & tf_error)
8972 error_at (loc, "invalid %<const_cast%> of an rvalue of type %qT "
8973 "to type %qT",
8974 src_type, dst_type);
8975 return error_mark_node;
8977 dst_type = build_pointer_type (TREE_TYPE (dst_type));
8978 src_type = build_pointer_type (src_type);
8980 else
8982 reference_type = NULL_TREE;
8983 /* If the destination type is not a reference type, the
8984 lvalue-to-rvalue, array-to-pointer, and function-to-pointer
8985 conversions are performed. */
8986 src_type = type_decays_to (src_type);
8987 if (src_type == error_mark_node)
8988 return error_mark_node;
8991 if (TYPE_PTR_P (src_type) || TYPE_PTRDATAMEM_P (src_type))
8993 if (comp_ptr_ttypes_const (dst_type, src_type, bounds_none))
8995 if (valid_p)
8997 *valid_p = true;
8998 /* This cast is actually a C-style cast. Issue a warning if
8999 the user is making a potentially unsafe cast. */
9000 check_for_casting_away_constness (loc, src_type, dst_type,
9001 CAST_EXPR, complain);
9002 /* ??? comp_ptr_ttypes_const ignores TYPE_ALIGN. */
9003 if ((STRICT_ALIGNMENT || warn_cast_align == 2)
9004 && (complain & tf_warning)
9005 && min_align_of_type (TREE_TYPE (dst_type))
9006 > min_align_of_type (TREE_TYPE (src_type)))
9007 warning_at (loc, OPT_Wcast_align, "cast from %qH to %qI "
9008 "increases required alignment of target type",
9009 src_type, dst_type);
9011 if (reference_type)
9013 expr = cp_build_addr_expr (expr, complain);
9014 if (expr == error_mark_node)
9015 return error_mark_node;
9016 expr = build_nop (reference_type, expr);
9017 return convert_from_reference (expr);
9019 else
9021 expr = decay_conversion (expr, complain);
9022 if (expr == error_mark_node)
9023 return error_mark_node;
9025 /* build_c_cast puts on a NOP_EXPR to make the result not an
9026 lvalue. Strip such NOP_EXPRs if VALUE is being used in
9027 non-lvalue context. */
9028 if (TREE_CODE (expr) == NOP_EXPR
9029 && TREE_TYPE (expr) == TREE_TYPE (TREE_OPERAND (expr, 0)))
9030 expr = TREE_OPERAND (expr, 0);
9031 return build_nop (dst_type, expr);
9034 else if (valid_p
9035 && !at_least_as_qualified_p (TREE_TYPE (dst_type),
9036 TREE_TYPE (src_type)))
9037 check_for_casting_away_constness (loc, src_type, dst_type,
9038 CAST_EXPR, complain);
9041 if (complain & tf_error)
9042 error_at (loc, "invalid %<const_cast%> from type %qT to type %qT",
9043 src_type, dst_type);
9044 return error_mark_node;
9047 tree
9048 build_const_cast (location_t loc, tree type, tree expr,
9049 tsubst_flags_t complain)
9051 tree r;
9053 if (type == error_mark_node || error_operand_p (expr))
9054 return error_mark_node;
9056 if (processing_template_decl)
9058 tree t = build_min (CONST_CAST_EXPR, type, expr);
9060 if (!TREE_SIDE_EFFECTS (t)
9061 && type_dependent_expression_p (expr))
9062 /* There might turn out to be side effects inside expr. */
9063 TREE_SIDE_EFFECTS (t) = 1;
9064 r = convert_from_reference (t);
9065 protected_set_expr_location (r, loc);
9066 return r;
9069 r = build_const_cast_1 (loc, type, expr, complain, /*valid_p=*/NULL);
9070 if (r != error_mark_node)
9072 maybe_warn_about_useless_cast (loc, type, expr, complain);
9073 maybe_warn_about_cast_ignoring_quals (loc, type, complain);
9075 protected_set_expr_location (r, loc);
9076 return r;
9079 /* Like cp_build_c_cast, but for the c-common bits. */
9081 tree
9082 build_c_cast (location_t loc, tree type, tree expr)
9084 return cp_build_c_cast (loc, type, expr, tf_warning_or_error);
9087 /* Like the "build_c_cast" used for c-common, but using cp_expr to
9088 preserve location information even for tree nodes that don't
9089 support it. */
9091 cp_expr
9092 build_c_cast (location_t loc, tree type, cp_expr expr)
9094 cp_expr result = cp_build_c_cast (loc, type, expr, tf_warning_or_error);
9095 result.set_location (loc);
9096 return result;
9099 /* Build an expression representing an explicit C-style cast to type
9100 TYPE of expression EXPR. */
9102 tree
9103 cp_build_c_cast (location_t loc, tree type, tree expr,
9104 tsubst_flags_t complain)
9106 tree value = expr;
9107 tree result;
9108 bool valid_p;
9110 if (type == error_mark_node || error_operand_p (expr))
9111 return error_mark_node;
9113 if (processing_template_decl)
9115 tree t = build_min (CAST_EXPR, type,
9116 tree_cons (NULL_TREE, value, NULL_TREE));
9117 /* We don't know if it will or will not have side effects. */
9118 TREE_SIDE_EFFECTS (t) = 1;
9119 return convert_from_reference (t);
9122 /* Casts to a (pointer to a) specific ObjC class (or 'id' or
9123 'Class') should always be retained, because this information aids
9124 in method lookup. */
9125 if (objc_is_object_ptr (type)
9126 && objc_is_object_ptr (TREE_TYPE (expr)))
9127 return build_nop (type, expr);
9129 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
9130 Strip such NOP_EXPRs if VALUE is being used in non-lvalue context. */
9131 if (!TYPE_REF_P (type)
9132 && TREE_CODE (value) == NOP_EXPR
9133 && TREE_TYPE (value) == TREE_TYPE (TREE_OPERAND (value, 0)))
9134 value = TREE_OPERAND (value, 0);
9136 if (TREE_CODE (type) == ARRAY_TYPE)
9138 /* Allow casting from T1* to T2[] because Cfront allows it.
9139 NIHCL uses it. It is not valid ISO C++ however. */
9140 if (TYPE_PTR_P (TREE_TYPE (expr)))
9142 if (complain & tf_error)
9143 permerror (loc, "ISO C++ forbids casting to an array type %qT",
9144 type);
9145 else
9146 return error_mark_node;
9147 type = build_pointer_type (TREE_TYPE (type));
9149 else
9151 if (complain & tf_error)
9152 error_at (loc, "ISO C++ forbids casting to an array type %qT",
9153 type);
9154 return error_mark_node;
9158 if (FUNC_OR_METHOD_TYPE_P (type))
9160 if (complain & tf_error)
9161 error_at (loc, "invalid cast to function type %qT", type);
9162 return error_mark_node;
9165 if (TYPE_PTR_P (type)
9166 && TREE_CODE (TREE_TYPE (value)) == INTEGER_TYPE
9167 /* Casting to an integer of smaller size is an error detected elsewhere. */
9168 && TYPE_PRECISION (type) > TYPE_PRECISION (TREE_TYPE (value))
9169 /* Don't warn about converting any constant. */
9170 && !TREE_CONSTANT (value))
9171 warning_at (loc, OPT_Wint_to_pointer_cast,
9172 "cast to pointer from integer of different size");
9174 /* A C-style cast can be a const_cast. */
9175 result = build_const_cast_1 (loc, type, value, complain & tf_warning,
9176 &valid_p);
9177 if (valid_p)
9179 if (result != error_mark_node)
9181 maybe_warn_about_useless_cast (loc, type, value, complain);
9182 maybe_warn_about_cast_ignoring_quals (loc, type, complain);
9184 return result;
9187 /* Or a static cast. */
9188 result = build_static_cast_1 (loc, type, value, /*c_cast_p=*/true,
9189 &valid_p, complain);
9190 /* Or a reinterpret_cast. */
9191 if (!valid_p)
9192 result = build_reinterpret_cast_1 (loc, type, value, /*c_cast_p=*/true,
9193 &valid_p, complain);
9194 /* The static_cast or reinterpret_cast may be followed by a
9195 const_cast. */
9196 if (valid_p
9197 /* A valid cast may result in errors if, for example, a
9198 conversion to an ambiguous base class is required. */
9199 && !error_operand_p (result))
9201 tree result_type;
9203 maybe_warn_about_useless_cast (loc, type, value, complain);
9204 maybe_warn_about_cast_ignoring_quals (loc, type, complain);
9206 /* Non-class rvalues always have cv-unqualified type. */
9207 if (!CLASS_TYPE_P (type))
9208 type = TYPE_MAIN_VARIANT (type);
9209 result_type = TREE_TYPE (result);
9210 if (!CLASS_TYPE_P (result_type) && !TYPE_REF_P (type))
9211 result_type = TYPE_MAIN_VARIANT (result_type);
9212 /* If the type of RESULT does not match TYPE, perform a
9213 const_cast to make it match. If the static_cast or
9214 reinterpret_cast succeeded, we will differ by at most
9215 cv-qualification, so the follow-on const_cast is guaranteed
9216 to succeed. */
9217 if (!same_type_p (non_reference (type), non_reference (result_type)))
9219 result = build_const_cast_1 (loc, type, result, false, &valid_p);
9220 gcc_assert (valid_p);
9222 return result;
9225 return error_mark_node;
9228 /* Warn when a value is moved to itself with std::move. LHS is the target,
9229 RHS may be the std::move call, and LOC is the location of the whole
9230 assignment. */
9232 static void
9233 maybe_warn_self_move (location_t loc, tree lhs, tree rhs)
9235 if (!warn_self_move)
9236 return;
9238 /* C++98 doesn't know move. */
9239 if (cxx_dialect < cxx11)
9240 return;
9242 if (processing_template_decl)
9243 return;
9245 if (!REFERENCE_REF_P (rhs)
9246 || TREE_CODE (TREE_OPERAND (rhs, 0)) != CALL_EXPR)
9247 return;
9248 tree fn = TREE_OPERAND (rhs, 0);
9249 if (!is_std_move_p (fn))
9250 return;
9252 /* Just a little helper to strip * and various NOPs. */
9253 auto extract_op = [] (tree &op) {
9254 STRIP_NOPS (op);
9255 while (INDIRECT_REF_P (op))
9256 op = TREE_OPERAND (op, 0);
9257 op = maybe_undo_parenthesized_ref (op);
9258 STRIP_ANY_LOCATION_WRAPPER (op);
9261 tree arg = CALL_EXPR_ARG (fn, 0);
9262 extract_op (arg);
9263 if (TREE_CODE (arg) == ADDR_EXPR)
9264 arg = TREE_OPERAND (arg, 0);
9265 tree type = TREE_TYPE (lhs);
9266 tree orig_lhs = lhs;
9267 extract_op (lhs);
9268 if (cp_tree_equal (lhs, arg))
9270 auto_diagnostic_group d;
9271 if (warning_at (loc, OPT_Wself_move,
9272 "moving %qE of type %qT to itself", orig_lhs, type))
9273 inform (loc, "remove %<std::move%> call");
9277 /* For use from the C common bits. */
9278 tree
9279 build_modify_expr (location_t location,
9280 tree lhs, tree /*lhs_origtype*/,
9281 enum tree_code modifycode,
9282 location_t /*rhs_location*/, tree rhs,
9283 tree /*rhs_origtype*/)
9285 return cp_build_modify_expr (location, lhs, modifycode, rhs,
9286 tf_warning_or_error);
9289 /* Build an assignment expression of lvalue LHS from value RHS.
9290 MODIFYCODE is the code for a binary operator that we use
9291 to combine the old value of LHS with RHS to get the new value.
9292 Or else MODIFYCODE is NOP_EXPR meaning do a simple assignment.
9294 C++: If MODIFYCODE is INIT_EXPR, then leave references unbashed. */
9296 tree
9297 cp_build_modify_expr (location_t loc, tree lhs, enum tree_code modifycode,
9298 tree rhs, tsubst_flags_t complain)
9300 lhs = mark_lvalue_use_nonread (lhs);
9302 tree result = NULL_TREE;
9303 tree newrhs = rhs;
9304 tree lhstype = TREE_TYPE (lhs);
9305 tree olhs = lhs;
9306 tree olhstype = lhstype;
9307 bool plain_assign = (modifycode == NOP_EXPR);
9308 bool compound_side_effects_p = false;
9309 tree preeval = NULL_TREE;
9311 /* Avoid duplicate error messages from operands that had errors. */
9312 if (error_operand_p (lhs) || error_operand_p (rhs))
9313 return error_mark_node;
9315 while (TREE_CODE (lhs) == COMPOUND_EXPR)
9317 if (TREE_SIDE_EFFECTS (TREE_OPERAND (lhs, 0)))
9318 compound_side_effects_p = true;
9319 lhs = TREE_OPERAND (lhs, 1);
9322 /* Handle control structure constructs used as "lvalues". Note that we
9323 leave COMPOUND_EXPR on the LHS because it is sequenced after the RHS. */
9324 switch (TREE_CODE (lhs))
9326 /* Handle --foo = 5; as these are valid constructs in C++. */
9327 case PREDECREMENT_EXPR:
9328 case PREINCREMENT_EXPR:
9329 if (compound_side_effects_p)
9330 newrhs = rhs = stabilize_expr (rhs, &preeval);
9331 lhs = genericize_compound_lvalue (lhs);
9332 maybe_add_compound:
9333 /* If we had (bar, --foo) = 5; or (bar, (baz, --foo)) = 5;
9334 and looked through the COMPOUND_EXPRs, readd them now around
9335 the resulting lhs. */
9336 if (TREE_CODE (olhs) == COMPOUND_EXPR)
9338 lhs = build2 (COMPOUND_EXPR, lhstype, TREE_OPERAND (olhs, 0), lhs);
9339 tree *ptr = &TREE_OPERAND (lhs, 1);
9340 for (olhs = TREE_OPERAND (olhs, 1);
9341 TREE_CODE (olhs) == COMPOUND_EXPR;
9342 olhs = TREE_OPERAND (olhs, 1))
9344 *ptr = build2 (COMPOUND_EXPR, lhstype,
9345 TREE_OPERAND (olhs, 0), *ptr);
9346 ptr = &TREE_OPERAND (*ptr, 1);
9349 break;
9351 case MODIFY_EXPR:
9352 if (compound_side_effects_p)
9353 newrhs = rhs = stabilize_expr (rhs, &preeval);
9354 lhs = genericize_compound_lvalue (lhs);
9355 goto maybe_add_compound;
9357 case MIN_EXPR:
9358 case MAX_EXPR:
9359 /* MIN_EXPR and MAX_EXPR are currently only permitted as lvalues,
9360 when neither operand has side-effects. */
9361 if (!lvalue_or_else (lhs, lv_assign, complain))
9362 return error_mark_node;
9364 gcc_assert (!TREE_SIDE_EFFECTS (TREE_OPERAND (lhs, 0))
9365 && !TREE_SIDE_EFFECTS (TREE_OPERAND (lhs, 1)));
9367 lhs = build3 (COND_EXPR, TREE_TYPE (lhs),
9368 build2 (TREE_CODE (lhs) == MIN_EXPR ? LE_EXPR : GE_EXPR,
9369 boolean_type_node,
9370 TREE_OPERAND (lhs, 0),
9371 TREE_OPERAND (lhs, 1)),
9372 TREE_OPERAND (lhs, 0),
9373 TREE_OPERAND (lhs, 1));
9374 gcc_fallthrough ();
9376 /* Handle (a ? b : c) used as an "lvalue". */
9377 case COND_EXPR:
9379 /* Produce (a ? (b = rhs) : (c = rhs))
9380 except that the RHS goes through a save-expr
9381 so the code to compute it is only emitted once. */
9382 if (VOID_TYPE_P (TREE_TYPE (rhs)))
9384 if (complain & tf_error)
9385 error_at (cp_expr_loc_or_loc (rhs, loc),
9386 "void value not ignored as it ought to be");
9387 return error_mark_node;
9390 rhs = stabilize_expr (rhs, &preeval);
9392 /* Check this here to avoid odd errors when trying to convert
9393 a throw to the type of the COND_EXPR. */
9394 if (!lvalue_or_else (lhs, lv_assign, complain))
9395 return error_mark_node;
9397 tree op1 = TREE_OPERAND (lhs, 1);
9398 if (TREE_CODE (op1) != THROW_EXPR)
9399 op1 = cp_build_modify_expr (loc, op1, modifycode, rhs, complain);
9400 /* When sanitizing undefined behavior, even when rhs doesn't need
9401 stabilization at this point, the sanitization might add extra
9402 SAVE_EXPRs in there and so make sure there is no tree sharing
9403 in the rhs, otherwise those SAVE_EXPRs will have initialization
9404 only in one of the two branches. */
9405 if (sanitize_flags_p (SANITIZE_UNDEFINED
9406 | SANITIZE_UNDEFINED_NONDEFAULT))
9407 rhs = unshare_expr (rhs);
9408 tree op2 = TREE_OPERAND (lhs, 2);
9409 if (TREE_CODE (op2) != THROW_EXPR)
9410 op2 = cp_build_modify_expr (loc, op2, modifycode, rhs, complain);
9411 tree cond = build_conditional_expr (input_location,
9412 TREE_OPERAND (lhs, 0), op1, op2,
9413 complain);
9415 if (cond == error_mark_node)
9416 return cond;
9417 /* If we had (e, (a ? b : c)) = d; or (e, (f, (a ? b : c))) = d;
9418 and looked through the COMPOUND_EXPRs, readd them now around
9419 the resulting cond before adding the preevaluated rhs. */
9420 if (TREE_CODE (olhs) == COMPOUND_EXPR)
9422 cond = build2 (COMPOUND_EXPR, TREE_TYPE (cond),
9423 TREE_OPERAND (olhs, 0), cond);
9424 tree *ptr = &TREE_OPERAND (cond, 1);
9425 for (olhs = TREE_OPERAND (olhs, 1);
9426 TREE_CODE (olhs) == COMPOUND_EXPR;
9427 olhs = TREE_OPERAND (olhs, 1))
9429 *ptr = build2 (COMPOUND_EXPR, TREE_TYPE (cond),
9430 TREE_OPERAND (olhs, 0), *ptr);
9431 ptr = &TREE_OPERAND (*ptr, 1);
9434 /* Make sure the code to compute the rhs comes out
9435 before the split. */
9436 result = cond;
9437 goto ret;
9440 default:
9441 lhs = olhs;
9442 break;
9445 if (modifycode == INIT_EXPR)
9447 if (BRACE_ENCLOSED_INITIALIZER_P (rhs))
9448 /* Do the default thing. */;
9449 else if (TREE_CODE (rhs) == CONSTRUCTOR)
9451 /* Compound literal. */
9452 if (! same_type_p (TREE_TYPE (rhs), lhstype))
9453 /* Call convert to generate an error; see PR 11063. */
9454 rhs = convert (lhstype, rhs);
9455 result = cp_build_init_expr (lhs, rhs);
9456 TREE_SIDE_EFFECTS (result) = 1;
9457 goto ret;
9459 else if (! MAYBE_CLASS_TYPE_P (lhstype))
9460 /* Do the default thing. */;
9461 else
9463 releasing_vec rhs_vec = make_tree_vector_single (rhs);
9464 result = build_special_member_call (lhs, complete_ctor_identifier,
9465 &rhs_vec, lhstype, LOOKUP_NORMAL,
9466 complain);
9467 if (result == NULL_TREE)
9468 return error_mark_node;
9469 goto ret;
9472 else
9474 lhs = require_complete_type (lhs, complain);
9475 if (lhs == error_mark_node)
9476 return error_mark_node;
9478 if (modifycode == NOP_EXPR)
9480 maybe_warn_self_move (loc, lhs, rhs);
9482 if (c_dialect_objc ())
9484 result = objc_maybe_build_modify_expr (lhs, rhs);
9485 if (result)
9486 goto ret;
9489 /* `operator=' is not an inheritable operator. */
9490 if (! MAYBE_CLASS_TYPE_P (lhstype))
9491 /* Do the default thing. */;
9492 else
9494 result = build_new_op (input_location, MODIFY_EXPR,
9495 LOOKUP_NORMAL, lhs, rhs,
9496 make_node (NOP_EXPR), NULL_TREE,
9497 /*overload=*/NULL, complain);
9498 if (result == NULL_TREE)
9499 return error_mark_node;
9500 goto ret;
9502 lhstype = olhstype;
9504 else
9506 tree init = NULL_TREE;
9508 /* A binary op has been requested. Combine the old LHS
9509 value with the RHS producing the value we should actually
9510 store into the LHS. */
9511 gcc_assert (!((TYPE_REF_P (lhstype)
9512 && MAYBE_CLASS_TYPE_P (TREE_TYPE (lhstype)))
9513 || MAYBE_CLASS_TYPE_P (lhstype)));
9515 /* An expression of the form E1 op= E2. [expr.ass] says:
9516 "Such expressions are deprecated if E1 has volatile-qualified
9517 type and op is not one of the bitwise operators |, &, ^."
9518 We warn here rather than in cp_genericize_r because
9519 for compound assignments we are supposed to warn even if the
9520 assignment is a discarded-value expression. */
9521 if (modifycode != BIT_AND_EXPR
9522 && modifycode != BIT_IOR_EXPR
9523 && modifycode != BIT_XOR_EXPR
9524 && (TREE_THIS_VOLATILE (lhs) || CP_TYPE_VOLATILE_P (lhstype)))
9525 warning_at (loc, OPT_Wvolatile,
9526 "compound assignment with %<volatile%>-qualified left "
9527 "operand is deprecated");
9528 /* Preevaluate the RHS to make sure its evaluation is complete
9529 before the lvalue-to-rvalue conversion of the LHS:
9531 [expr.ass] With respect to an indeterminately-sequenced
9532 function call, the operation of a compound assignment is a
9533 single evaluation. [ Note: Therefore, a function call shall
9534 not intervene between the lvalue-to-rvalue conversion and the
9535 side effect associated with any single compound assignment
9536 operator. -- end note ] */
9537 lhs = cp_stabilize_reference (lhs);
9538 rhs = decay_conversion (rhs, complain);
9539 if (rhs == error_mark_node)
9540 return error_mark_node;
9541 rhs = stabilize_expr (rhs, &init);
9542 newrhs = cp_build_binary_op (loc, modifycode, lhs, rhs, complain);
9543 if (newrhs == error_mark_node)
9545 if (complain & tf_error)
9546 inform (loc, " in evaluation of %<%Q(%#T, %#T)%>",
9547 modifycode, TREE_TYPE (lhs), TREE_TYPE (rhs));
9548 return error_mark_node;
9551 if (init)
9552 newrhs = build2 (COMPOUND_EXPR, TREE_TYPE (newrhs), init, newrhs);
9554 /* Now it looks like a plain assignment. */
9555 modifycode = NOP_EXPR;
9556 if (c_dialect_objc ())
9558 result = objc_maybe_build_modify_expr (lhs, newrhs);
9559 if (result)
9560 goto ret;
9563 gcc_assert (!TYPE_REF_P (lhstype));
9564 gcc_assert (!TYPE_REF_P (TREE_TYPE (newrhs)));
9567 /* The left-hand side must be an lvalue. */
9568 if (!lvalue_or_else (lhs, lv_assign, complain))
9569 return error_mark_node;
9571 /* Warn about modifying something that is `const'. Don't warn if
9572 this is initialization. */
9573 if (modifycode != INIT_EXPR
9574 && (TREE_READONLY (lhs) || CP_TYPE_CONST_P (lhstype)
9575 /* Functions are not modifiable, even though they are
9576 lvalues. */
9577 || FUNC_OR_METHOD_TYPE_P (TREE_TYPE (lhs))
9578 /* If it's an aggregate and any field is const, then it is
9579 effectively const. */
9580 || (CLASS_TYPE_P (lhstype)
9581 && C_TYPE_FIELDS_READONLY (lhstype))))
9583 if (complain & tf_error)
9584 cxx_readonly_error (loc, lhs, lv_assign);
9585 return error_mark_node;
9588 /* If storing into a structure or union member, it may have been given a
9589 lowered bitfield type. We need to convert to the declared type first,
9590 so retrieve it now. */
9592 olhstype = unlowered_expr_type (lhs);
9594 /* Convert new value to destination type. */
9596 if (TREE_CODE (lhstype) == ARRAY_TYPE)
9598 int from_array;
9600 if (BRACE_ENCLOSED_INITIALIZER_P (newrhs))
9602 if (modifycode != INIT_EXPR)
9604 if (complain & tf_error)
9605 error_at (loc,
9606 "assigning to an array from an initializer list");
9607 return error_mark_node;
9609 if (check_array_initializer (lhs, lhstype, newrhs))
9610 return error_mark_node;
9611 newrhs = digest_init (lhstype, newrhs, complain);
9612 if (newrhs == error_mark_node)
9613 return error_mark_node;
9616 /* C++11 8.5/17: "If the destination type is an array of characters,
9617 an array of char16_t, an array of char32_t, or an array of wchar_t,
9618 and the initializer is a string literal...". */
9619 else if ((TREE_CODE (tree_strip_any_location_wrapper (newrhs))
9620 == STRING_CST)
9621 && char_type_p (TREE_TYPE (TYPE_MAIN_VARIANT (lhstype)))
9622 && modifycode == INIT_EXPR)
9624 newrhs = digest_init (lhstype, newrhs, complain);
9625 if (newrhs == error_mark_node)
9626 return error_mark_node;
9629 else if (!same_or_base_type_p (TYPE_MAIN_VARIANT (lhstype),
9630 TYPE_MAIN_VARIANT (TREE_TYPE (newrhs))))
9632 if (complain & tf_error)
9633 error_at (loc, "incompatible types in assignment of %qT to %qT",
9634 TREE_TYPE (rhs), lhstype);
9635 return error_mark_node;
9638 /* Allow array assignment in compiler-generated code. */
9639 else if (!current_function_decl
9640 || !DECL_DEFAULTED_FN (current_function_decl))
9642 /* This routine is used for both initialization and assignment.
9643 Make sure the diagnostic message differentiates the context. */
9644 if (complain & tf_error)
9646 if (modifycode == INIT_EXPR)
9647 error_at (loc, "array used as initializer");
9648 else
9649 error_at (loc, "invalid array assignment");
9651 return error_mark_node;
9654 from_array = TREE_CODE (TREE_TYPE (newrhs)) == ARRAY_TYPE
9655 ? 1 + (modifycode != INIT_EXPR): 0;
9656 result = build_vec_init (lhs, NULL_TREE, newrhs,
9657 /*explicit_value_init_p=*/false,
9658 from_array, complain);
9659 goto ret;
9662 if (modifycode == INIT_EXPR)
9663 /* Calls with INIT_EXPR are all direct-initialization, so don't set
9664 LOOKUP_ONLYCONVERTING. */
9665 newrhs = convert_for_initialization (lhs, olhstype, newrhs, LOOKUP_NORMAL,
9666 ICR_INIT, NULL_TREE, 0,
9667 complain | tf_no_cleanup);
9668 else
9669 newrhs = convert_for_assignment (olhstype, newrhs, ICR_ASSIGN,
9670 NULL_TREE, 0, complain, LOOKUP_IMPLICIT);
9672 if (!same_type_p (lhstype, olhstype))
9673 newrhs = cp_convert_and_check (lhstype, newrhs, complain);
9675 if (modifycode != INIT_EXPR)
9677 if (TREE_CODE (newrhs) == CALL_EXPR
9678 && TYPE_NEEDS_CONSTRUCTING (lhstype))
9679 newrhs = build_cplus_new (lhstype, newrhs, complain);
9681 /* Can't initialize directly from a TARGET_EXPR, since that would
9682 cause the lhs to be constructed twice, and possibly result in
9683 accidental self-initialization. So we force the TARGET_EXPR to be
9684 expanded without a target. */
9685 if (TREE_CODE (newrhs) == TARGET_EXPR)
9686 newrhs = build2 (COMPOUND_EXPR, TREE_TYPE (newrhs), newrhs,
9687 TREE_OPERAND (newrhs, 0));
9690 if (newrhs == error_mark_node)
9691 return error_mark_node;
9693 if (c_dialect_objc () && flag_objc_gc)
9695 result = objc_generate_write_barrier (lhs, modifycode, newrhs);
9697 if (result)
9698 goto ret;
9701 result = build2_loc (loc, modifycode == NOP_EXPR ? MODIFY_EXPR : INIT_EXPR,
9702 lhstype, lhs, newrhs);
9703 if (modifycode == INIT_EXPR)
9704 set_target_expr_eliding (newrhs);
9706 TREE_SIDE_EFFECTS (result) = 1;
9707 if (!plain_assign)
9708 suppress_warning (result, OPT_Wparentheses);
9710 ret:
9711 if (preeval)
9712 result = build2 (COMPOUND_EXPR, TREE_TYPE (result), preeval, result);
9713 return result;
9716 cp_expr
9717 build_x_modify_expr (location_t loc, tree lhs, enum tree_code modifycode,
9718 tree rhs, tree lookups, tsubst_flags_t complain)
9720 tree orig_lhs = lhs;
9721 tree orig_rhs = rhs;
9722 tree overload = NULL_TREE;
9724 if (lhs == error_mark_node || rhs == error_mark_node)
9725 return cp_expr (error_mark_node, loc);
9727 if (processing_template_decl)
9729 if (modifycode == NOP_EXPR
9730 || type_dependent_expression_p (lhs)
9731 || type_dependent_expression_p (rhs))
9733 tree op = build_min_nt_loc (loc, modifycode, NULL_TREE, NULL_TREE);
9734 tree rval = build_min_nt_loc (loc, MODOP_EXPR, lhs, op, rhs);
9735 if (modifycode != NOP_EXPR)
9736 TREE_TYPE (rval)
9737 = build_dependent_operator_type (lookups, modifycode, true);
9738 return rval;
9741 lhs = build_non_dependent_expr (lhs);
9742 rhs = build_non_dependent_expr (rhs);
9745 if (modifycode != NOP_EXPR)
9747 tree op = build_nt (modifycode, NULL_TREE, NULL_TREE);
9748 tree rval = build_new_op (loc, MODIFY_EXPR, LOOKUP_NORMAL,
9749 lhs, rhs, op, lookups, &overload, complain);
9750 if (rval)
9752 if (rval == error_mark_node)
9753 return rval;
9754 suppress_warning (rval /* What warning? */);
9755 if (processing_template_decl)
9757 if (overload != NULL_TREE)
9758 return (build_min_non_dep_op_overload
9759 (MODIFY_EXPR, rval, overload, orig_lhs, orig_rhs));
9761 return (build_min_non_dep
9762 (MODOP_EXPR, rval, orig_lhs, op, orig_rhs));
9764 return rval;
9767 return cp_build_modify_expr (loc, lhs, modifycode, rhs, complain);
9770 /* Helper function for get_delta_difference which assumes FROM is a base
9771 class of TO. Returns a delta for the conversion of pointer-to-member
9772 of FROM to pointer-to-member of TO. If the conversion is invalid and
9773 tf_error is not set in COMPLAIN returns error_mark_node, otherwise
9774 returns zero. If FROM is not a base class of TO, returns NULL_TREE.
9775 If C_CAST_P is true, this conversion is taking place as part of a
9776 C-style cast. */
9778 static tree
9779 get_delta_difference_1 (tree from, tree to, bool c_cast_p,
9780 tsubst_flags_t complain)
9782 tree binfo;
9783 base_kind kind;
9785 binfo = lookup_base (to, from, c_cast_p ? ba_unique : ba_check,
9786 &kind, complain);
9788 if (binfo == error_mark_node)
9790 if (!(complain & tf_error))
9791 return error_mark_node;
9793 inform (input_location, " in pointer to member function conversion");
9794 return size_zero_node;
9796 else if (binfo)
9798 if (kind != bk_via_virtual)
9799 return BINFO_OFFSET (binfo);
9800 else
9801 /* FROM is a virtual base class of TO. Issue an error or warning
9802 depending on whether or not this is a reinterpret cast. */
9804 if (!(complain & tf_error))
9805 return error_mark_node;
9807 error ("pointer to member conversion via virtual base %qT",
9808 BINFO_TYPE (binfo_from_vbase (binfo)));
9810 return size_zero_node;
9813 else
9814 return NULL_TREE;
9817 /* Get difference in deltas for different pointer to member function
9818 types. If the conversion is invalid and tf_error is not set in
9819 COMPLAIN, returns error_mark_node, otherwise returns an integer
9820 constant of type PTRDIFF_TYPE_NODE and its value is zero if the
9821 conversion is invalid. If ALLOW_INVERSE_P is true, then allow reverse
9822 conversions as well. If C_CAST_P is true this conversion is taking
9823 place as part of a C-style cast.
9825 Note that the naming of FROM and TO is kind of backwards; the return
9826 value is what we add to a TO in order to get a FROM. They are named
9827 this way because we call this function to find out how to convert from
9828 a pointer to member of FROM to a pointer to member of TO. */
9830 static tree
9831 get_delta_difference (tree from, tree to,
9832 bool allow_inverse_p,
9833 bool c_cast_p, tsubst_flags_t complain)
9835 tree result;
9837 if (same_type_ignoring_top_level_qualifiers_p (from, to))
9838 /* Pointer to member of incomplete class is permitted*/
9839 result = size_zero_node;
9840 else
9841 result = get_delta_difference_1 (from, to, c_cast_p, complain);
9843 if (result == error_mark_node)
9844 return error_mark_node;
9846 if (!result)
9848 if (!allow_inverse_p)
9850 if (!(complain & tf_error))
9851 return error_mark_node;
9853 error_not_base_type (from, to);
9854 inform (input_location, " in pointer to member conversion");
9855 result = size_zero_node;
9857 else
9859 result = get_delta_difference_1 (to, from, c_cast_p, complain);
9861 if (result == error_mark_node)
9862 return error_mark_node;
9864 if (result)
9865 result = size_diffop_loc (input_location,
9866 size_zero_node, result);
9867 else
9869 if (!(complain & tf_error))
9870 return error_mark_node;
9872 error_not_base_type (from, to);
9873 inform (input_location, " in pointer to member conversion");
9874 result = size_zero_node;
9879 return convert_to_integer (ptrdiff_type_node, result);
9882 /* Return a constructor for the pointer-to-member-function TYPE using
9883 the other components as specified. */
9885 tree
9886 build_ptrmemfunc1 (tree type, tree delta, tree pfn)
9888 tree u = NULL_TREE;
9889 tree delta_field;
9890 tree pfn_field;
9891 vec<constructor_elt, va_gc> *v;
9893 /* Pull the FIELD_DECLs out of the type. */
9894 pfn_field = TYPE_FIELDS (type);
9895 delta_field = DECL_CHAIN (pfn_field);
9897 /* Make sure DELTA has the type we want. */
9898 delta = convert_and_check (input_location, delta_type_node, delta);
9900 /* Convert to the correct target type if necessary. */
9901 pfn = fold_convert (TREE_TYPE (pfn_field), pfn);
9903 /* Finish creating the initializer. */
9904 vec_alloc (v, 2);
9905 CONSTRUCTOR_APPEND_ELT(v, pfn_field, pfn);
9906 CONSTRUCTOR_APPEND_ELT(v, delta_field, delta);
9907 u = build_constructor (type, v);
9908 TREE_CONSTANT (u) = TREE_CONSTANT (pfn) & TREE_CONSTANT (delta);
9909 TREE_STATIC (u) = (TREE_CONSTANT (u)
9910 && (initializer_constant_valid_p (pfn, TREE_TYPE (pfn))
9911 != NULL_TREE)
9912 && (initializer_constant_valid_p (delta, TREE_TYPE (delta))
9913 != NULL_TREE));
9914 return u;
9917 /* Build a constructor for a pointer to member function. It can be
9918 used to initialize global variables, local variable, or used
9919 as a value in expressions. TYPE is the POINTER to METHOD_TYPE we
9920 want to be.
9922 If FORCE is nonzero, then force this conversion, even if
9923 we would rather not do it. Usually set when using an explicit
9924 cast. A C-style cast is being processed iff C_CAST_P is true.
9926 Return error_mark_node, if something goes wrong. */
9928 tree
9929 build_ptrmemfunc (tree type, tree pfn, int force, bool c_cast_p,
9930 tsubst_flags_t complain)
9932 tree fn;
9933 tree pfn_type;
9934 tree to_type;
9936 if (error_operand_p (pfn))
9937 return error_mark_node;
9939 pfn_type = TREE_TYPE (pfn);
9940 to_type = build_ptrmemfunc_type (type);
9942 /* Handle multiple conversions of pointer to member functions. */
9943 if (TYPE_PTRMEMFUNC_P (pfn_type))
9945 tree delta = NULL_TREE;
9946 tree npfn = NULL_TREE;
9947 tree n;
9949 if (!force
9950 && !can_convert_arg (to_type, TREE_TYPE (pfn), pfn,
9951 LOOKUP_NORMAL, complain))
9953 if (complain & tf_error)
9954 error ("invalid conversion to type %qT from type %qT",
9955 to_type, pfn_type);
9956 else
9957 return error_mark_node;
9960 n = get_delta_difference (TYPE_PTRMEMFUNC_OBJECT_TYPE (pfn_type),
9961 TYPE_PTRMEMFUNC_OBJECT_TYPE (to_type),
9962 force,
9963 c_cast_p, complain);
9964 if (n == error_mark_node)
9965 return error_mark_node;
9967 /* We don't have to do any conversion to convert a
9968 pointer-to-member to its own type. But, we don't want to
9969 just return a PTRMEM_CST if there's an explicit cast; that
9970 cast should make the expression an invalid template argument. */
9971 if (TREE_CODE (pfn) != PTRMEM_CST)
9973 if (same_type_p (to_type, pfn_type))
9974 return pfn;
9975 else if (integer_zerop (n) && TREE_CODE (pfn) != CONSTRUCTOR)
9976 return build_reinterpret_cast (input_location, to_type, pfn,
9977 complain);
9980 if (TREE_SIDE_EFFECTS (pfn))
9981 pfn = save_expr (pfn);
9983 /* Obtain the function pointer and the current DELTA. */
9984 if (TREE_CODE (pfn) == PTRMEM_CST)
9985 expand_ptrmemfunc_cst (pfn, &delta, &npfn);
9986 else
9988 npfn = build_ptrmemfunc_access_expr (pfn, pfn_identifier);
9989 delta = build_ptrmemfunc_access_expr (pfn, delta_identifier);
9992 /* Just adjust the DELTA field. */
9993 gcc_assert (same_type_ignoring_top_level_qualifiers_p
9994 (TREE_TYPE (delta), ptrdiff_type_node));
9995 if (!integer_zerop (n))
9997 if (TARGET_PTRMEMFUNC_VBIT_LOCATION == ptrmemfunc_vbit_in_delta)
9998 n = cp_build_binary_op (input_location,
9999 LSHIFT_EXPR, n, integer_one_node,
10000 complain);
10001 delta = cp_build_binary_op (input_location,
10002 PLUS_EXPR, delta, n, complain);
10004 return build_ptrmemfunc1 (to_type, delta, npfn);
10007 /* Handle null pointer to member function conversions. */
10008 if (null_ptr_cst_p (pfn))
10010 pfn = cp_build_c_cast (input_location,
10011 TYPE_PTRMEMFUNC_FN_TYPE_RAW (to_type),
10012 pfn, complain);
10013 return build_ptrmemfunc1 (to_type,
10014 integer_zero_node,
10015 pfn);
10018 if (type_unknown_p (pfn))
10019 return instantiate_type (type, pfn, complain);
10021 fn = TREE_OPERAND (pfn, 0);
10022 gcc_assert (TREE_CODE (fn) == FUNCTION_DECL
10023 /* In a template, we will have preserved the
10024 OFFSET_REF. */
10025 || (processing_template_decl && TREE_CODE (fn) == OFFSET_REF));
10026 return make_ptrmem_cst (to_type, fn);
10029 /* Return the DELTA, IDX, PFN, and DELTA2 values for the PTRMEM_CST
10030 given by CST.
10032 ??? There is no consistency as to the types returned for the above
10033 values. Some code acts as if it were a sizetype and some as if it were
10034 integer_type_node. */
10036 void
10037 expand_ptrmemfunc_cst (tree cst, tree *delta, tree *pfn)
10039 tree type = TREE_TYPE (cst);
10040 tree fn = PTRMEM_CST_MEMBER (cst);
10041 tree ptr_class, fn_class;
10043 gcc_assert (TREE_CODE (fn) == FUNCTION_DECL);
10045 /* The class that the function belongs to. */
10046 fn_class = DECL_CONTEXT (fn);
10048 /* The class that we're creating a pointer to member of. */
10049 ptr_class = TYPE_PTRMEMFUNC_OBJECT_TYPE (type);
10051 /* First, calculate the adjustment to the function's class. */
10052 *delta = get_delta_difference (fn_class, ptr_class, /*force=*/0,
10053 /*c_cast_p=*/0, tf_warning_or_error);
10055 if (!DECL_VIRTUAL_P (fn))
10057 tree t = build_addr_func (fn, tf_warning_or_error);
10058 if (TREE_CODE (t) == ADDR_EXPR)
10059 SET_EXPR_LOCATION (t, PTRMEM_CST_LOCATION (cst));
10060 *pfn = convert (TYPE_PTRMEMFUNC_FN_TYPE (type), t);
10062 else
10064 /* If we're dealing with a virtual function, we have to adjust 'this'
10065 again, to point to the base which provides the vtable entry for
10066 fn; the call will do the opposite adjustment. */
10067 tree orig_class = DECL_CONTEXT (fn);
10068 tree binfo = binfo_or_else (orig_class, fn_class);
10069 *delta = fold_build2 (PLUS_EXPR, TREE_TYPE (*delta),
10070 *delta, BINFO_OFFSET (binfo));
10072 /* We set PFN to the vtable offset at which the function can be
10073 found, plus one (unless ptrmemfunc_vbit_in_delta, in which
10074 case delta is shifted left, and then incremented). */
10075 *pfn = DECL_VINDEX (fn);
10076 *pfn = fold_build2 (MULT_EXPR, integer_type_node, *pfn,
10077 TYPE_SIZE_UNIT (vtable_entry_type));
10079 switch (TARGET_PTRMEMFUNC_VBIT_LOCATION)
10081 case ptrmemfunc_vbit_in_pfn:
10082 *pfn = fold_build2 (PLUS_EXPR, integer_type_node, *pfn,
10083 integer_one_node);
10084 break;
10086 case ptrmemfunc_vbit_in_delta:
10087 *delta = fold_build2 (LSHIFT_EXPR, TREE_TYPE (*delta),
10088 *delta, integer_one_node);
10089 *delta = fold_build2 (PLUS_EXPR, TREE_TYPE (*delta),
10090 *delta, integer_one_node);
10091 break;
10093 default:
10094 gcc_unreachable ();
10097 *pfn = fold_convert (TYPE_PTRMEMFUNC_FN_TYPE (type), *pfn);
10101 /* Return an expression for PFN from the pointer-to-member function
10102 given by T. */
10104 static tree
10105 pfn_from_ptrmemfunc (tree t)
10107 if (TREE_CODE (t) == PTRMEM_CST)
10109 tree delta;
10110 tree pfn;
10112 expand_ptrmemfunc_cst (t, &delta, &pfn);
10113 if (pfn)
10114 return pfn;
10117 return build_ptrmemfunc_access_expr (t, pfn_identifier);
10120 /* Return an expression for DELTA from the pointer-to-member function
10121 given by T. */
10123 static tree
10124 delta_from_ptrmemfunc (tree t)
10126 if (TREE_CODE (t) == PTRMEM_CST)
10128 tree delta;
10129 tree pfn;
10131 expand_ptrmemfunc_cst (t, &delta, &pfn);
10132 if (delta)
10133 return delta;
10136 return build_ptrmemfunc_access_expr (t, delta_identifier);
10139 /* Convert value RHS to type TYPE as preparation for an assignment to
10140 an lvalue of type TYPE. ERRTYPE indicates what kind of error the
10141 implicit conversion is. If FNDECL is non-NULL, we are doing the
10142 conversion in order to pass the PARMNUMth argument of FNDECL.
10143 If FNDECL is NULL, we are doing the conversion in function pointer
10144 argument passing, conversion in initialization, etc. */
10146 static tree
10147 convert_for_assignment (tree type, tree rhs,
10148 impl_conv_rhs errtype, tree fndecl, int parmnum,
10149 tsubst_flags_t complain, int flags)
10151 tree rhstype;
10152 enum tree_code coder;
10154 location_t rhs_loc = cp_expr_loc_or_input_loc (rhs);
10155 bool has_loc = EXPR_LOCATION (rhs) != UNKNOWN_LOCATION;
10156 /* Strip NON_LVALUE_EXPRs since we aren't using as an lvalue,
10157 but preserve location wrappers. */
10158 if (TREE_CODE (rhs) == NON_LVALUE_EXPR
10159 && !location_wrapper_p (rhs))
10160 rhs = TREE_OPERAND (rhs, 0);
10162 /* Handle [dcl.init.list] direct-list-initialization from
10163 single element of enumeration with a fixed underlying type. */
10164 if (is_direct_enum_init (type, rhs))
10166 tree elt = CONSTRUCTOR_ELT (rhs, 0)->value;
10167 if (check_narrowing (ENUM_UNDERLYING_TYPE (type), elt, complain))
10169 warning_sentinel w (warn_useless_cast);
10170 warning_sentinel w2 (warn_ignored_qualifiers);
10171 rhs = cp_build_c_cast (rhs_loc, type, elt, complain);
10173 else
10174 rhs = error_mark_node;
10177 rhstype = TREE_TYPE (rhs);
10178 coder = TREE_CODE (rhstype);
10180 if (VECTOR_TYPE_P (type) && coder == VECTOR_TYPE
10181 && vector_types_convertible_p (type, rhstype, true))
10183 rhs = mark_rvalue_use (rhs);
10184 return convert (type, rhs);
10187 if (rhs == error_mark_node || rhstype == error_mark_node)
10188 return error_mark_node;
10189 if (TREE_CODE (rhs) == TREE_LIST && TREE_VALUE (rhs) == error_mark_node)
10190 return error_mark_node;
10192 /* The RHS of an assignment cannot have void type. */
10193 if (coder == VOID_TYPE)
10195 if (complain & tf_error)
10196 error_at (rhs_loc, "void value not ignored as it ought to be");
10197 return error_mark_node;
10200 if (c_dialect_objc ())
10202 int parmno;
10203 tree selector;
10204 tree rname = fndecl;
10206 switch (errtype)
10208 case ICR_ASSIGN:
10209 parmno = -1;
10210 break;
10211 case ICR_INIT:
10212 parmno = -2;
10213 break;
10214 default:
10215 selector = objc_message_selector ();
10216 parmno = parmnum;
10217 if (selector && parmno > 1)
10219 rname = selector;
10220 parmno -= 1;
10224 if (objc_compare_types (type, rhstype, parmno, rname))
10226 rhs = mark_rvalue_use (rhs);
10227 return convert (type, rhs);
10231 /* [expr.ass]
10233 The expression is implicitly converted (clause _conv_) to the
10234 cv-unqualified type of the left operand.
10236 We allow bad conversions here because by the time we get to this point
10237 we are committed to doing the conversion. If we end up doing a bad
10238 conversion, convert_like will complain. */
10239 if (!can_convert_arg_bad (type, rhstype, rhs, flags, complain))
10241 /* When -Wno-pmf-conversions is use, we just silently allow
10242 conversions from pointers-to-members to plain pointers. If
10243 the conversion doesn't work, cp_convert will complain. */
10244 if (!warn_pmf2ptr
10245 && TYPE_PTR_P (type)
10246 && TYPE_PTRMEMFUNC_P (rhstype))
10247 rhs = cp_convert (strip_top_quals (type), rhs, complain);
10248 else
10250 if (complain & tf_error)
10252 /* If the right-hand side has unknown type, then it is an
10253 overloaded function. Call instantiate_type to get error
10254 messages. */
10255 if (rhstype == unknown_type_node)
10257 tree r = instantiate_type (type, rhs, tf_warning_or_error);
10258 /* -fpermissive might allow this; recurse. */
10259 if (!seen_error ())
10260 return convert_for_assignment (type, r, errtype, fndecl,
10261 parmnum, complain, flags);
10263 else if (fndecl)
10264 complain_about_bad_argument (rhs_loc,
10265 rhstype, type,
10266 fndecl, parmnum);
10267 else
10269 range_label_for_type_mismatch label (rhstype, type);
10270 gcc_rich_location richloc (rhs_loc, has_loc ? &label : NULL);
10271 switch (errtype)
10273 case ICR_DEFAULT_ARGUMENT:
10274 error_at (&richloc,
10275 "cannot convert %qH to %qI in default argument",
10276 rhstype, type);
10277 break;
10278 case ICR_ARGPASS:
10279 error_at (&richloc,
10280 "cannot convert %qH to %qI in argument passing",
10281 rhstype, type);
10282 break;
10283 case ICR_CONVERTING:
10284 error_at (&richloc, "cannot convert %qH to %qI",
10285 rhstype, type);
10286 break;
10287 case ICR_INIT:
10288 error_at (&richloc,
10289 "cannot convert %qH to %qI in initialization",
10290 rhstype, type);
10291 break;
10292 case ICR_RETURN:
10293 error_at (&richloc, "cannot convert %qH to %qI in return",
10294 rhstype, type);
10295 break;
10296 case ICR_ASSIGN:
10297 error_at (&richloc,
10298 "cannot convert %qH to %qI in assignment",
10299 rhstype, type);
10300 break;
10301 default:
10302 gcc_unreachable();
10305 if (TYPE_PTR_P (rhstype)
10306 && TYPE_PTR_P (type)
10307 && CLASS_TYPE_P (TREE_TYPE (rhstype))
10308 && CLASS_TYPE_P (TREE_TYPE (type))
10309 && !COMPLETE_TYPE_P (TREE_TYPE (rhstype)))
10310 inform (DECL_SOURCE_LOCATION (TYPE_MAIN_DECL
10311 (TREE_TYPE (rhstype))),
10312 "class type %qT is incomplete", TREE_TYPE (rhstype));
10314 return error_mark_node;
10317 if (warn_suggest_attribute_format)
10319 const enum tree_code codel = TREE_CODE (type);
10320 if ((codel == POINTER_TYPE || codel == REFERENCE_TYPE)
10321 && coder == codel
10322 && check_missing_format_attribute (type, rhstype)
10323 && (complain & tf_warning))
10324 switch (errtype)
10326 case ICR_ARGPASS:
10327 case ICR_DEFAULT_ARGUMENT:
10328 if (fndecl)
10329 warning (OPT_Wsuggest_attribute_format,
10330 "parameter %qP of %qD might be a candidate "
10331 "for a format attribute", parmnum, fndecl);
10332 else
10333 warning (OPT_Wsuggest_attribute_format,
10334 "parameter might be a candidate "
10335 "for a format attribute");
10336 break;
10337 case ICR_CONVERTING:
10338 warning (OPT_Wsuggest_attribute_format,
10339 "target of conversion might be a candidate "
10340 "for a format attribute");
10341 break;
10342 case ICR_INIT:
10343 warning (OPT_Wsuggest_attribute_format,
10344 "target of initialization might be a candidate "
10345 "for a format attribute");
10346 break;
10347 case ICR_RETURN:
10348 warning (OPT_Wsuggest_attribute_format,
10349 "return type might be a candidate "
10350 "for a format attribute");
10351 break;
10352 case ICR_ASSIGN:
10353 warning (OPT_Wsuggest_attribute_format,
10354 "left-hand side of assignment might be a candidate "
10355 "for a format attribute");
10356 break;
10357 default:
10358 gcc_unreachable();
10362 /* If -Wparentheses, warn about a = b = c when a has type bool and b
10363 does not. */
10364 if (warn_parentheses
10365 && TREE_CODE (type) == BOOLEAN_TYPE
10366 && TREE_CODE (rhs) == MODIFY_EXPR
10367 && !warning_suppressed_p (rhs, OPT_Wparentheses)
10368 && TREE_CODE (TREE_TYPE (rhs)) != BOOLEAN_TYPE
10369 && (complain & tf_warning)
10370 && warning_at (rhs_loc, OPT_Wparentheses,
10371 "suggest parentheses around assignment used as "
10372 "truth value"))
10373 suppress_warning (rhs, OPT_Wparentheses);
10375 if (complain & tf_warning)
10376 warn_for_address_or_pointer_of_packed_member (type, rhs);
10378 return perform_implicit_conversion_flags (strip_top_quals (type), rhs,
10379 complain, flags);
10382 /* Convert RHS to be of type TYPE.
10383 If EXP is nonzero, it is the target of the initialization.
10384 ERRTYPE indicates what kind of error the implicit conversion is.
10386 Two major differences between the behavior of
10387 `convert_for_assignment' and `convert_for_initialization'
10388 are that references are bashed in the former, while
10389 copied in the latter, and aggregates are assigned in
10390 the former (operator=) while initialized in the
10391 latter (X(X&)).
10393 If using constructor make sure no conversion operator exists, if one does
10394 exist, an ambiguity exists. */
10396 tree
10397 convert_for_initialization (tree exp, tree type, tree rhs, int flags,
10398 impl_conv_rhs errtype, tree fndecl, int parmnum,
10399 tsubst_flags_t complain)
10401 enum tree_code codel = TREE_CODE (type);
10402 tree rhstype;
10403 enum tree_code coder;
10405 /* build_c_cast puts on a NOP_EXPR to make the result not an lvalue.
10406 Strip such NOP_EXPRs, since RHS is used in non-lvalue context. */
10407 if (TREE_CODE (rhs) == NOP_EXPR
10408 && TREE_TYPE (rhs) == TREE_TYPE (TREE_OPERAND (rhs, 0))
10409 && codel != REFERENCE_TYPE)
10410 rhs = TREE_OPERAND (rhs, 0);
10412 if (type == error_mark_node
10413 || rhs == error_mark_node
10414 || (TREE_CODE (rhs) == TREE_LIST && TREE_VALUE (rhs) == error_mark_node))
10415 return error_mark_node;
10417 if (MAYBE_CLASS_TYPE_P (non_reference (type)))
10419 else if ((TREE_CODE (TREE_TYPE (rhs)) == ARRAY_TYPE
10420 && TREE_CODE (type) != ARRAY_TYPE
10421 && (!TYPE_REF_P (type)
10422 || TREE_CODE (TREE_TYPE (type)) != ARRAY_TYPE))
10423 || (TREE_CODE (TREE_TYPE (rhs)) == FUNCTION_TYPE
10424 && !TYPE_REFFN_P (type))
10425 || TREE_CODE (TREE_TYPE (rhs)) == METHOD_TYPE)
10426 rhs = decay_conversion (rhs, complain);
10428 rhstype = TREE_TYPE (rhs);
10429 coder = TREE_CODE (rhstype);
10431 if (coder == ERROR_MARK)
10432 return error_mark_node;
10434 /* We accept references to incomplete types, so we can
10435 return here before checking if RHS is of complete type. */
10437 if (codel == REFERENCE_TYPE)
10439 auto_diagnostic_group d;
10440 /* This should eventually happen in convert_arguments. */
10441 int savew = 0, savee = 0;
10443 if (fndecl)
10444 savew = warningcount + werrorcount, savee = errorcount;
10445 rhs = initialize_reference (type, rhs, flags, complain);
10447 if (fndecl
10448 && (warningcount + werrorcount > savew || errorcount > savee))
10449 inform (get_fndecl_argument_location (fndecl, parmnum),
10450 "in passing argument %P of %qD", parmnum, fndecl);
10451 return rhs;
10454 if (exp != 0)
10455 exp = require_complete_type (exp, complain);
10456 if (exp == error_mark_node)
10457 return error_mark_node;
10459 type = complete_type (type);
10461 if (DIRECT_INIT_EXPR_P (type, rhs))
10462 /* Don't try to do copy-initialization if we already have
10463 direct-initialization. */
10464 return rhs;
10466 if (MAYBE_CLASS_TYPE_P (type))
10467 return perform_implicit_conversion_flags (type, rhs, complain, flags);
10469 return convert_for_assignment (type, rhs, errtype, fndecl, parmnum,
10470 complain, flags);
10473 /* If RETVAL is the address of, or a reference to, a local variable or
10474 temporary give an appropriate warning and return true. */
10476 static bool
10477 maybe_warn_about_returning_address_of_local (tree retval, location_t loc)
10479 tree valtype = TREE_TYPE (DECL_RESULT (current_function_decl));
10480 tree whats_returned = fold_for_warn (retval);
10481 if (!loc)
10482 loc = cp_expr_loc_or_input_loc (retval);
10484 for (;;)
10486 if (TREE_CODE (whats_returned) == COMPOUND_EXPR)
10487 whats_returned = TREE_OPERAND (whats_returned, 1);
10488 else if (CONVERT_EXPR_P (whats_returned)
10489 || TREE_CODE (whats_returned) == NON_LVALUE_EXPR)
10490 whats_returned = TREE_OPERAND (whats_returned, 0);
10491 else
10492 break;
10495 if (TREE_CODE (whats_returned) == TARGET_EXPR
10496 && is_std_init_list (TREE_TYPE (whats_returned)))
10498 tree init = TARGET_EXPR_INITIAL (whats_returned);
10499 if (TREE_CODE (init) == CONSTRUCTOR)
10500 /* Pull out the array address. */
10501 whats_returned = CONSTRUCTOR_ELT (init, 0)->value;
10502 else if (TREE_CODE (init) == INDIRECT_REF)
10503 /* The source of a trivial copy looks like *(T*)&var. */
10504 whats_returned = TREE_OPERAND (init, 0);
10505 else
10506 return false;
10507 STRIP_NOPS (whats_returned);
10510 /* As a special case, we handle a call to std::move or std::forward. */
10511 if (TREE_CODE (whats_returned) == CALL_EXPR
10512 && (is_std_move_p (whats_returned)
10513 || is_std_forward_p (whats_returned)))
10515 tree arg = CALL_EXPR_ARG (whats_returned, 0);
10516 return maybe_warn_about_returning_address_of_local (arg, loc);
10519 if (TREE_CODE (whats_returned) != ADDR_EXPR)
10520 return false;
10521 whats_returned = TREE_OPERAND (whats_returned, 0);
10523 while (TREE_CODE (whats_returned) == COMPONENT_REF
10524 || TREE_CODE (whats_returned) == ARRAY_REF)
10525 whats_returned = TREE_OPERAND (whats_returned, 0);
10527 if (TREE_CODE (whats_returned) == AGGR_INIT_EXPR
10528 || TREE_CODE (whats_returned) == TARGET_EXPR)
10530 if (TYPE_REF_P (valtype))
10531 warning_at (loc, OPT_Wreturn_local_addr,
10532 "returning reference to temporary");
10533 else if (is_std_init_list (valtype))
10534 warning_at (loc, OPT_Winit_list_lifetime,
10535 "returning temporary %<initializer_list%> does not extend "
10536 "the lifetime of the underlying array");
10537 return true;
10540 STRIP_ANY_LOCATION_WRAPPER (whats_returned);
10542 if (DECL_P (whats_returned)
10543 && DECL_NAME (whats_returned)
10544 && DECL_FUNCTION_SCOPE_P (whats_returned)
10545 && !is_capture_proxy (whats_returned)
10546 && !(TREE_STATIC (whats_returned)
10547 || TREE_PUBLIC (whats_returned)))
10549 if (VAR_P (whats_returned)
10550 && DECL_DECOMPOSITION_P (whats_returned)
10551 && DECL_DECOMP_BASE (whats_returned)
10552 && DECL_HAS_VALUE_EXPR_P (whats_returned))
10554 /* When returning address of a structured binding, if the structured
10555 binding is not a reference, continue normally, if it is a
10556 reference, recurse on the initializer of the structured
10557 binding. */
10558 tree base = DECL_DECOMP_BASE (whats_returned);
10559 if (TYPE_REF_P (TREE_TYPE (base)))
10561 if (tree init = DECL_INITIAL (base))
10562 return maybe_warn_about_returning_address_of_local (init, loc);
10563 else
10564 return false;
10567 bool w = false;
10568 auto_diagnostic_group d;
10569 if (TYPE_REF_P (valtype))
10570 w = warning_at (loc, OPT_Wreturn_local_addr,
10571 "reference to local variable %qD returned",
10572 whats_returned);
10573 else if (is_std_init_list (valtype))
10574 w = warning_at (loc, OPT_Winit_list_lifetime,
10575 "returning local %<initializer_list%> variable %qD "
10576 "does not extend the lifetime of the underlying array",
10577 whats_returned);
10578 else if (POINTER_TYPE_P (valtype)
10579 && TREE_CODE (whats_returned) == LABEL_DECL)
10580 w = warning_at (loc, OPT_Wreturn_local_addr,
10581 "address of label %qD returned",
10582 whats_returned);
10583 else if (POINTER_TYPE_P (valtype))
10584 w = warning_at (loc, OPT_Wreturn_local_addr,
10585 "address of local variable %qD returned",
10586 whats_returned);
10587 if (w)
10588 inform (DECL_SOURCE_LOCATION (whats_returned),
10589 "declared here");
10590 return true;
10593 return false;
10596 /* Returns true if DECL is in the std namespace. */
10598 bool
10599 decl_in_std_namespace_p (tree decl)
10601 while (decl)
10603 decl = decl_namespace_context (decl);
10604 if (DECL_NAMESPACE_STD_P (decl))
10605 return true;
10606 /* Allow inline namespaces inside of std namespace, e.g. with
10607 --enable-symvers=gnu-versioned-namespace std::forward would be
10608 actually std::_8::forward. */
10609 if (!DECL_NAMESPACE_INLINE_P (decl))
10610 return false;
10611 decl = CP_DECL_CONTEXT (decl);
10613 return false;
10616 /* Returns true if FN, a CALL_EXPR, is a call to std::forward. */
10618 static bool
10619 is_std_forward_p (tree fn)
10621 /* std::forward only takes one argument. */
10622 if (call_expr_nargs (fn) != 1)
10623 return false;
10625 tree fndecl = cp_get_callee_fndecl_nofold (fn);
10626 if (!decl_in_std_namespace_p (fndecl))
10627 return false;
10629 tree name = DECL_NAME (fndecl);
10630 return name && id_equal (name, "forward");
10633 /* Returns true if FN, a CALL_EXPR, is a call to std::move. */
10635 static bool
10636 is_std_move_p (tree fn)
10638 /* std::move only takes one argument. */
10639 if (call_expr_nargs (fn) != 1)
10640 return false;
10642 tree fndecl = cp_get_callee_fndecl_nofold (fn);
10643 if (!decl_in_std_namespace_p (fndecl))
10644 return false;
10646 tree name = DECL_NAME (fndecl);
10647 return name && id_equal (name, "move");
10650 /* Returns true if RETVAL is a good candidate for the NRVO as per
10651 [class.copy.elision]. FUNCTYPE is the type the function is declared
10652 to return. */
10654 static bool
10655 can_do_nrvo_p (tree retval, tree functype)
10657 if (functype == error_mark_node)
10658 return false;
10659 if (retval)
10660 STRIP_ANY_LOCATION_WRAPPER (retval);
10661 tree result = DECL_RESULT (current_function_decl);
10662 return (retval != NULL_TREE
10663 && !processing_template_decl
10664 /* Must be a local, automatic variable. */
10665 && VAR_P (retval)
10666 && DECL_CONTEXT (retval) == current_function_decl
10667 && !TREE_STATIC (retval)
10668 /* And not a lambda or anonymous union proxy. */
10669 && !DECL_HAS_VALUE_EXPR_P (retval)
10670 && (DECL_ALIGN (retval) <= DECL_ALIGN (result))
10671 /* The cv-unqualified type of the returned value must be the
10672 same as the cv-unqualified return type of the
10673 function. */
10674 && same_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (retval)),
10675 TYPE_MAIN_VARIANT (functype))
10676 /* And the returned value must be non-volatile. */
10677 && !TYPE_VOLATILE (TREE_TYPE (retval)));
10680 /* Like can_do_nrvo_p, but we check if we're trying to move a class
10681 prvalue. */
10683 static bool
10684 can_elide_copy_prvalue_p (tree retval, tree functype)
10686 if (functype == error_mark_node)
10687 return false;
10688 if (retval)
10689 STRIP_ANY_LOCATION_WRAPPER (retval);
10690 return (retval != NULL_TREE
10691 && !glvalue_p (retval)
10692 && same_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (retval)),
10693 TYPE_MAIN_VARIANT (functype))
10694 && !TYPE_VOLATILE (TREE_TYPE (retval)));
10697 /* If we should treat RETVAL, an expression being returned, as if it were
10698 designated by an rvalue, returns it adjusted accordingly; otherwise, returns
10699 NULL_TREE. See [class.copy.elision]. RETURN_P is true if this is a return
10700 context (rather than throw). */
10702 tree
10703 treat_lvalue_as_rvalue_p (tree expr, bool return_p)
10705 if (cxx_dialect == cxx98)
10706 return NULL_TREE;
10708 tree retval = expr;
10709 STRIP_ANY_LOCATION_WRAPPER (retval);
10710 if (REFERENCE_REF_P (retval))
10711 retval = TREE_OPERAND (retval, 0);
10713 /* An implicitly movable entity is a variable of automatic storage duration
10714 that is either a non-volatile object or (C++20) an rvalue reference to a
10715 non-volatile object type. */
10716 if (!(((VAR_P (retval) && !DECL_HAS_VALUE_EXPR_P (retval))
10717 || TREE_CODE (retval) == PARM_DECL)
10718 && !TREE_STATIC (retval)
10719 && !CP_TYPE_VOLATILE_P (non_reference (TREE_TYPE (retval)))
10720 && (TREE_CODE (TREE_TYPE (retval)) != REFERENCE_TYPE
10721 || (cxx_dialect >= cxx20
10722 && TYPE_REF_IS_RVALUE (TREE_TYPE (retval))))))
10723 return NULL_TREE;
10725 /* If the expression in a return or co_return statement is a (possibly
10726 parenthesized) id-expression that names an implicitly movable entity
10727 declared in the body or parameter-declaration-clause of the innermost
10728 enclosing function or lambda-expression, */
10729 if (DECL_CONTEXT (retval) != current_function_decl)
10730 return NULL_TREE;
10731 if (return_p)
10733 expr = move (expr);
10734 if (expr == error_mark_node)
10735 return NULL_TREE;
10736 return set_implicit_rvalue_p (expr);
10739 /* if the operand of a throw-expression is a (possibly parenthesized)
10740 id-expression that names an implicitly movable entity whose scope does not
10741 extend beyond the compound-statement of the innermost try-block or
10742 function-try-block (if any) whose compound-statement or ctor-initializer
10743 encloses the throw-expression, */
10745 /* C++20 added move on throw of parms. */
10746 if (TREE_CODE (retval) == PARM_DECL && cxx_dialect < cxx20)
10747 return NULL_TREE;
10749 for (cp_binding_level *b = current_binding_level;
10750 ; b = b->level_chain)
10752 for (tree decl = b->names; decl; decl = TREE_CHAIN (decl))
10753 if (decl == retval)
10754 return set_implicit_rvalue_p (move (expr));
10755 if (b->kind == sk_function_parms || b->kind == sk_try)
10756 return NULL_TREE;
10760 /* Warn about dubious usage of std::move (in a return statement, if RETURN_P
10761 is true). EXPR is the std::move expression; TYPE is the type of the object
10762 being initialized. */
10764 void
10765 maybe_warn_pessimizing_move (tree expr, tree type, bool return_p)
10767 if (!(warn_pessimizing_move || warn_redundant_move))
10768 return;
10770 const location_t loc = cp_expr_loc_or_input_loc (expr);
10772 /* C++98 doesn't know move. */
10773 if (cxx_dialect < cxx11)
10774 return;
10776 /* Wait until instantiation time, since we can't gauge if we should do
10777 the NRVO until then. */
10778 if (processing_template_decl)
10779 return;
10781 /* This is only interesting for class types. */
10782 if (!CLASS_TYPE_P (type))
10783 return;
10785 bool wrapped_p = false;
10786 /* A a = std::move (A()); */
10787 if (TREE_CODE (expr) == TREE_LIST)
10789 if (list_length (expr) == 1)
10791 expr = TREE_VALUE (expr);
10792 wrapped_p = true;
10794 else
10795 return;
10797 /* A a = {std::move (A())};
10798 A a{std::move (A())}; */
10799 else if (TREE_CODE (expr) == CONSTRUCTOR)
10801 if (CONSTRUCTOR_NELTS (expr) == 1)
10803 expr = CONSTRUCTOR_ELT (expr, 0)->value;
10804 wrapped_p = true;
10806 else
10807 return;
10810 /* First, check if this is a call to std::move. */
10811 if (!REFERENCE_REF_P (expr)
10812 || TREE_CODE (TREE_OPERAND (expr, 0)) != CALL_EXPR)
10813 return;
10814 tree fn = TREE_OPERAND (expr, 0);
10815 if (!is_std_move_p (fn))
10816 return;
10817 tree arg = CALL_EXPR_ARG (fn, 0);
10818 if (TREE_CODE (arg) != NOP_EXPR)
10819 return;
10820 /* If we're looking at *std::move<T&> ((T &) &arg), do the pessimizing N/RVO
10821 and implicitly-movable warnings. */
10822 if (TREE_CODE (TREE_OPERAND (arg, 0)) == ADDR_EXPR)
10824 arg = TREE_OPERAND (arg, 0);
10825 arg = TREE_OPERAND (arg, 0);
10826 arg = convert_from_reference (arg);
10827 if (can_elide_copy_prvalue_p (arg, type))
10829 auto_diagnostic_group d;
10830 if (warning_at (loc, OPT_Wpessimizing_move,
10831 "moving a temporary object prevents copy elision"))
10832 inform (loc, "remove %<std::move%> call");
10834 /* The rest of the warnings is only relevant for when we are returning
10835 from a function. */
10836 if (!return_p)
10837 return;
10839 tree moved;
10840 /* Warn if we could do copy elision were it not for the move. */
10841 if (can_do_nrvo_p (arg, type))
10843 auto_diagnostic_group d;
10844 if (!warning_suppressed_p (expr, OPT_Wpessimizing_move)
10845 && warning_at (loc, OPT_Wpessimizing_move,
10846 "moving a local object in a return statement "
10847 "prevents copy elision"))
10848 inform (loc, "remove %<std::move%> call");
10850 /* Warn if the move is redundant. It is redundant when we would
10851 do maybe-rvalue overload resolution even without std::move. */
10852 else if (warn_redundant_move
10853 /* This doesn't apply for return {std::move (t)};. */
10854 && !wrapped_p
10855 && !warning_suppressed_p (expr, OPT_Wredundant_move)
10856 && (moved = treat_lvalue_as_rvalue_p (arg, /*return*/true)))
10858 /* Make sure that overload resolution would actually succeed
10859 if we removed the std::move call. */
10860 tree t = convert_for_initialization (NULL_TREE, type,
10861 moved,
10862 (LOOKUP_NORMAL
10863 | LOOKUP_ONLYCONVERTING),
10864 ICR_RETURN, NULL_TREE, 0,
10865 tf_none);
10866 /* If this worked, implicit rvalue would work, so the call to
10867 std::move is redundant. */
10868 if (t != error_mark_node)
10870 auto_diagnostic_group d;
10871 if (warning_at (loc, OPT_Wredundant_move,
10872 "redundant move in return statement"))
10873 inform (loc, "remove %<std::move%> call");
10877 /* Also try to warn about redundant std::move in code such as
10878 T f (const T& t)
10880 return std::move(t);
10882 for which EXPR will be something like
10883 *std::move<const T&> ((const struct T &) (const struct T *) t)
10884 and where the std::move does nothing if T does not have a T(const T&&)
10885 constructor, because the argument is const. It will not use T(T&&)
10886 because that would mean losing the const. */
10887 else if (TYPE_REF_P (TREE_TYPE (arg))
10888 && CP_TYPE_CONST_P (TREE_TYPE (TREE_TYPE (arg))))
10890 tree rtype = TREE_TYPE (TREE_TYPE (arg));
10891 if (!same_type_ignoring_top_level_qualifiers_p (rtype, type))
10892 return;
10893 /* Check for the unlikely case there's T(const T&&) (we don't care if
10894 it's deleted). */
10895 for (tree fn : ovl_range (CLASSTYPE_CONSTRUCTORS (rtype)))
10896 if (move_fn_p (fn))
10898 tree t = TREE_VALUE (FUNCTION_FIRST_USER_PARMTYPE (fn));
10899 if (UNLIKELY (CP_TYPE_CONST_P (TREE_TYPE (t))))
10900 return;
10902 auto_diagnostic_group d;
10903 if (warning_at (loc, OPT_Wredundant_move,
10904 "redundant move in return statement"))
10905 inform (loc, "remove %<std::move%> call");
10909 /* Check that returning RETVAL from the current function is valid.
10910 Return an expression explicitly showing all conversions required to
10911 change RETVAL into the function return type, and to assign it to
10912 the DECL_RESULT for the function. Set *NO_WARNING to true if
10913 code reaches end of non-void function warning shouldn't be issued
10914 on this RETURN_EXPR. */
10916 tree
10917 check_return_expr (tree retval, bool *no_warning)
10919 tree result;
10920 /* The type actually returned by the function. */
10921 tree valtype;
10922 /* The type the function is declared to return, or void if
10923 the declared type is incomplete. */
10924 tree functype;
10925 int fn_returns_value_p;
10926 location_t loc = cp_expr_loc_or_input_loc (retval);
10928 *no_warning = false;
10930 /* A `volatile' function is one that isn't supposed to return, ever.
10931 (This is a G++ extension, used to get better code for functions
10932 that call the `volatile' function.) */
10933 if (TREE_THIS_VOLATILE (current_function_decl))
10934 warning (0, "function declared %<noreturn%> has a %<return%> statement");
10936 /* Check for various simple errors. */
10937 if (DECL_DESTRUCTOR_P (current_function_decl))
10939 if (retval)
10940 error_at (loc, "returning a value from a destructor");
10942 if (targetm.cxx.cdtor_returns_this () && !processing_template_decl)
10943 retval = current_class_ptr;
10944 else
10945 return NULL_TREE;
10947 else if (DECL_CONSTRUCTOR_P (current_function_decl))
10949 if (in_function_try_handler)
10950 /* If a return statement appears in a handler of the
10951 function-try-block of a constructor, the program is ill-formed. */
10952 error ("cannot return from a handler of a function-try-block of a constructor");
10953 else if (retval)
10954 /* You can't return a value from a constructor. */
10955 error_at (loc, "returning a value from a constructor");
10957 if (targetm.cxx.cdtor_returns_this () && !processing_template_decl)
10958 retval = current_class_ptr;
10959 else
10960 return NULL_TREE;
10963 const tree saved_retval = retval;
10965 if (processing_template_decl)
10967 current_function_returns_value = 1;
10969 if (check_for_bare_parameter_packs (retval))
10970 return error_mark_node;
10972 /* If one of the types might be void, we can't tell whether we're
10973 returning a value. */
10974 if ((WILDCARD_TYPE_P (TREE_TYPE (DECL_RESULT (current_function_decl)))
10975 && !FNDECL_USED_AUTO (current_function_decl))
10976 || (retval != NULL_TREE
10977 && (TREE_TYPE (retval) == NULL_TREE
10978 || WILDCARD_TYPE_P (TREE_TYPE (retval)))))
10979 goto dependent;
10982 functype = TREE_TYPE (TREE_TYPE (current_function_decl));
10984 /* Deduce auto return type from a return statement. */
10985 if (FNDECL_USED_AUTO (current_function_decl))
10987 tree pattern = DECL_SAVED_AUTO_RETURN_TYPE (current_function_decl);
10988 tree auto_node;
10989 tree type;
10991 if (!retval && !is_auto (pattern))
10993 /* Give a helpful error message. */
10994 error ("return-statement with no value, in function returning %qT",
10995 pattern);
10996 inform (input_location, "only plain %<auto%> return type can be "
10997 "deduced to %<void%>");
10998 type = error_mark_node;
11000 else if (retval && BRACE_ENCLOSED_INITIALIZER_P (retval))
11002 error ("returning initializer list");
11003 type = error_mark_node;
11005 else
11007 if (!retval)
11008 retval = void_node;
11009 auto_node = type_uses_auto (pattern);
11010 type = do_auto_deduction (pattern, retval, auto_node,
11011 tf_warning_or_error, adc_return_type);
11014 if (type == error_mark_node)
11015 /* Leave it. */;
11016 else if (functype == pattern)
11017 apply_deduced_return_type (current_function_decl, type);
11018 else if (!same_type_p (type, functype))
11020 if (LAMBDA_FUNCTION_P (current_function_decl))
11021 error_at (loc, "inconsistent types %qT and %qT deduced for "
11022 "lambda return type", functype, type);
11023 else
11024 error_at (loc, "inconsistent deduction for auto return type: "
11025 "%qT and then %qT", functype, type);
11027 functype = type;
11030 result = DECL_RESULT (current_function_decl);
11031 valtype = TREE_TYPE (result);
11032 gcc_assert (valtype != NULL_TREE);
11033 fn_returns_value_p = !VOID_TYPE_P (valtype);
11035 /* Check for a return statement with no return value in a function
11036 that's supposed to return a value. */
11037 if (!retval && fn_returns_value_p)
11039 if (functype != error_mark_node)
11040 permerror (input_location, "return-statement with no value, in "
11041 "function returning %qT", valtype);
11042 /* Remember that this function did return. */
11043 current_function_returns_value = 1;
11044 /* And signal caller that TREE_NO_WARNING should be set on the
11045 RETURN_EXPR to avoid control reaches end of non-void function
11046 warnings in tree-cfg.cc. */
11047 *no_warning = true;
11049 /* Check for a return statement with a value in a function that
11050 isn't supposed to return a value. */
11051 else if (retval && !fn_returns_value_p)
11053 if (VOID_TYPE_P (TREE_TYPE (retval)))
11054 /* You can return a `void' value from a function of `void'
11055 type. In that case, we have to evaluate the expression for
11056 its side-effects. */
11057 finish_expr_stmt (retval);
11058 else if (retval != error_mark_node)
11059 permerror (loc, "return-statement with a value, in function "
11060 "returning %qT", valtype);
11061 current_function_returns_null = 1;
11063 /* There's really no value to return, after all. */
11064 return NULL_TREE;
11066 else if (!retval)
11067 /* Remember that this function can sometimes return without a
11068 value. */
11069 current_function_returns_null = 1;
11070 else
11071 /* Remember that this function did return a value. */
11072 current_function_returns_value = 1;
11074 /* Check for erroneous operands -- but after giving ourselves a
11075 chance to provide an error about returning a value from a void
11076 function. */
11077 if (error_operand_p (retval))
11079 current_function_return_value = error_mark_node;
11080 return error_mark_node;
11083 /* Only operator new(...) throw(), can return NULL [expr.new/13]. */
11084 if (IDENTIFIER_NEW_OP_P (DECL_NAME (current_function_decl))
11085 && !TYPE_NOTHROW_P (TREE_TYPE (current_function_decl))
11086 && ! flag_check_new
11087 && retval && null_ptr_cst_p (retval))
11088 warning (0, "%<operator new%> must not return NULL unless it is "
11089 "declared %<throw()%> (or %<-fcheck-new%> is in effect)");
11091 /* Effective C++ rule 15. See also start_function. */
11092 if (warn_ecpp
11093 && DECL_NAME (current_function_decl) == assign_op_identifier
11094 && !type_dependent_expression_p (retval))
11096 bool warn = true;
11098 /* The function return type must be a reference to the current
11099 class. */
11100 if (TYPE_REF_P (valtype)
11101 && same_type_ignoring_top_level_qualifiers_p
11102 (TREE_TYPE (valtype), TREE_TYPE (current_class_ref)))
11104 /* Returning '*this' is obviously OK. */
11105 if (retval == current_class_ref)
11106 warn = false;
11107 /* If we are calling a function whose return type is the same of
11108 the current class reference, it is ok. */
11109 else if (INDIRECT_REF_P (retval)
11110 && TREE_CODE (TREE_OPERAND (retval, 0)) == CALL_EXPR)
11111 warn = false;
11114 if (warn)
11115 warning_at (loc, OPT_Weffc__,
11116 "%<operator=%> should return a reference to %<*this%>");
11119 if (dependent_type_p (functype)
11120 || type_dependent_expression_p (retval))
11122 dependent:
11123 /* We should not have changed the return value. */
11124 gcc_assert (retval == saved_retval);
11125 /* We don't know if this is an lvalue or rvalue use, but
11126 either way we can mark it as read. */
11127 mark_exp_read (retval);
11128 /* Disable our std::move warnings when we're returning
11129 a dependent expression (c++/89780). */
11130 if (retval && TREE_CODE (retval) == CALL_EXPR)
11131 /* This also suppresses -Wredundant-move. */
11132 suppress_warning (retval, OPT_Wpessimizing_move);
11133 return retval;
11136 /* The fabled Named Return Value optimization, as per [class.copy]/15:
11138 [...] For a function with a class return type, if the expression
11139 in the return statement is the name of a local object, and the cv-
11140 unqualified type of the local object is the same as the function
11141 return type, an implementation is permitted to omit creating the tem-
11142 porary object to hold the function return value [...]
11144 So, if this is a value-returning function that always returns the same
11145 local variable, remember it.
11147 It might be nice to be more flexible, and choose the first suitable
11148 variable even if the function sometimes returns something else, but
11149 then we run the risk of clobbering the variable we chose if the other
11150 returned expression uses the chosen variable somehow. And people expect
11151 this restriction, anyway. (jason 2000-11-19)
11153 See finish_function and finalize_nrv for the rest of this optimization. */
11154 tree bare_retval = NULL_TREE;
11155 if (retval)
11157 retval = maybe_undo_parenthesized_ref (retval);
11158 bare_retval = tree_strip_any_location_wrapper (retval);
11161 bool named_return_value_okay_p = can_do_nrvo_p (bare_retval, functype);
11162 if (fn_returns_value_p && flag_elide_constructors)
11164 if (named_return_value_okay_p
11165 && (current_function_return_value == NULL_TREE
11166 || current_function_return_value == bare_retval))
11167 current_function_return_value = bare_retval;
11168 else
11169 current_function_return_value = error_mark_node;
11172 /* We don't need to do any conversions when there's nothing being
11173 returned. */
11174 if (!retval)
11175 return NULL_TREE;
11177 if (!named_return_value_okay_p)
11178 maybe_warn_pessimizing_move (retval, functype, /*return_p*/true);
11180 /* Do any required conversions. */
11181 if (bare_retval == result || DECL_CONSTRUCTOR_P (current_function_decl))
11182 /* No conversions are required. */
11184 else
11186 int flags = LOOKUP_NORMAL | LOOKUP_ONLYCONVERTING;
11188 /* The functype's return type will have been set to void, if it
11189 was an incomplete type. Just treat this as 'return;' */
11190 if (VOID_TYPE_P (functype))
11191 return error_mark_node;
11193 if (processing_template_decl)
11194 retval = build_non_dependent_expr (retval);
11196 /* Under C++11 [12.8/32 class.copy], a returned lvalue is sometimes
11197 treated as an rvalue for the purposes of overload resolution to
11198 favor move constructors over copy constructors.
11200 Note that these conditions are similar to, but not as strict as,
11201 the conditions for the named return value optimization. */
11202 bool converted = false;
11203 tree moved;
11204 /* Until C++23, this was only interesting for class type, but in C++23,
11205 we should do the below when we're converting rom/to a class/reference
11206 (a non-scalar type). */
11207 if ((cxx_dialect < cxx23
11208 ? CLASS_TYPE_P (functype)
11209 : !SCALAR_TYPE_P (functype) || !SCALAR_TYPE_P (TREE_TYPE (retval)))
11210 && (moved = treat_lvalue_as_rvalue_p (retval, /*return*/true)))
11211 /* In C++20 and earlier we treat the return value as an rvalue
11212 that can bind to lvalue refs. In C++23, such an expression is just
11213 an xvalue (see reference_binding). */
11214 retval = moved;
11216 /* The call in a (lambda) thunk needs no conversions. */
11217 if (TREE_CODE (retval) == CALL_EXPR
11218 && call_from_lambda_thunk_p (retval))
11219 converted = true;
11221 /* First convert the value to the function's return type, then
11222 to the type of return value's location to handle the
11223 case that functype is smaller than the valtype. */
11224 if (!converted)
11225 retval = convert_for_initialization
11226 (NULL_TREE, functype, retval, flags, ICR_RETURN, NULL_TREE, 0,
11227 tf_warning_or_error);
11228 retval = convert (valtype, retval);
11230 /* If the conversion failed, treat this just like `return;'. */
11231 if (retval == error_mark_node)
11232 return retval;
11233 /* We can't initialize a register from a AGGR_INIT_EXPR. */
11234 else if (! cfun->returns_struct
11235 && TREE_CODE (retval) == TARGET_EXPR
11236 && TREE_CODE (TREE_OPERAND (retval, 1)) == AGGR_INIT_EXPR)
11237 retval = build2 (COMPOUND_EXPR, TREE_TYPE (retval), retval,
11238 TREE_OPERAND (retval, 0));
11239 else if (!processing_template_decl
11240 && maybe_warn_about_returning_address_of_local (retval, loc)
11241 && INDIRECT_TYPE_P (valtype))
11242 retval = build2 (COMPOUND_EXPR, TREE_TYPE (retval), retval,
11243 build_zero_cst (TREE_TYPE (retval)));
11246 if (processing_template_decl)
11247 return saved_retval;
11249 /* A naive attempt to reduce the number of -Wdangling-reference false
11250 positives: if we know that this function can return a variable with
11251 static storage duration rather than one of its parameters, suppress
11252 the warning. */
11253 if (warn_dangling_reference
11254 && TYPE_REF_P (functype)
11255 && bare_retval
11256 && VAR_P (bare_retval)
11257 && TREE_STATIC (bare_retval))
11258 suppress_warning (current_function_decl, OPT_Wdangling_reference);
11260 /* Actually copy the value returned into the appropriate location. */
11261 if (retval && retval != result)
11262 retval = cp_build_init_expr (result, retval);
11264 if (tree set = maybe_set_retval_sentinel ())
11265 retval = build2 (COMPOUND_EXPR, void_type_node, retval, set);
11267 return retval;
11271 /* Returns nonzero if the pointer-type FROM can be converted to the
11272 pointer-type TO via a qualification conversion. If CONSTP is -1,
11273 then we return nonzero if the pointers are similar, and the
11274 cv-qualification signature of FROM is a proper subset of that of TO.
11276 If CONSTP is positive, then all outer pointers have been
11277 const-qualified. */
11279 static bool
11280 comp_ptr_ttypes_real (tree to, tree from, int constp)
11282 bool to_more_cv_qualified = false;
11283 bool is_opaque_pointer = false;
11285 for (; ; to = TREE_TYPE (to), from = TREE_TYPE (from))
11287 if (TREE_CODE (to) != TREE_CODE (from))
11288 return false;
11290 if (TREE_CODE (from) == OFFSET_TYPE
11291 && !same_type_p (TYPE_OFFSET_BASETYPE (from),
11292 TYPE_OFFSET_BASETYPE (to)))
11293 return false;
11295 /* Const and volatile mean something different for function and
11296 array types, so the usual checks are not appropriate. We'll
11297 check the array type elements in further iterations. */
11298 if (!FUNC_OR_METHOD_TYPE_P (to) && TREE_CODE (to) != ARRAY_TYPE)
11300 if (!at_least_as_qualified_p (to, from))
11301 return false;
11303 if (!at_least_as_qualified_p (from, to))
11305 if (constp == 0)
11306 return false;
11307 to_more_cv_qualified = true;
11310 if (constp > 0)
11311 constp &= TYPE_READONLY (to);
11314 if (VECTOR_TYPE_P (to))
11315 is_opaque_pointer = vector_targets_convertible_p (to, from);
11317 /* P0388R4 allows a conversion from int[N] to int[] but not the
11318 other way round. When both arrays have bounds but they do
11319 not match, then no conversion is possible. */
11320 if (TREE_CODE (to) == ARRAY_TYPE
11321 && !comp_array_types (to, from, bounds_first, /*strict=*/false))
11322 return false;
11324 if (!TYPE_PTR_P (to)
11325 && !TYPE_PTRDATAMEM_P (to)
11326 /* CWG 330 says we need to look through arrays. */
11327 && TREE_CODE (to) != ARRAY_TYPE)
11328 return ((constp >= 0 || to_more_cv_qualified)
11329 && (is_opaque_pointer
11330 || same_type_ignoring_top_level_qualifiers_p (to, from)));
11334 /* When comparing, say, char ** to char const **, this function takes
11335 the 'char *' and 'char const *'. Do not pass non-pointer/reference
11336 types to this function. */
11339 comp_ptr_ttypes (tree to, tree from)
11341 return comp_ptr_ttypes_real (to, from, 1);
11344 /* Returns true iff FNTYPE is a non-class type that involves
11345 error_mark_node. We can get FUNCTION_TYPE with buried error_mark_node
11346 if a parameter type is ill-formed. */
11348 bool
11349 error_type_p (const_tree type)
11351 tree t;
11353 switch (TREE_CODE (type))
11355 case ERROR_MARK:
11356 return true;
11358 case POINTER_TYPE:
11359 case REFERENCE_TYPE:
11360 case OFFSET_TYPE:
11361 return error_type_p (TREE_TYPE (type));
11363 case FUNCTION_TYPE:
11364 case METHOD_TYPE:
11365 if (error_type_p (TREE_TYPE (type)))
11366 return true;
11367 for (t = TYPE_ARG_TYPES (type); t; t = TREE_CHAIN (t))
11368 if (error_type_p (TREE_VALUE (t)))
11369 return true;
11370 return false;
11372 case RECORD_TYPE:
11373 if (TYPE_PTRMEMFUNC_P (type))
11374 return error_type_p (TYPE_PTRMEMFUNC_FN_TYPE (type));
11375 return false;
11377 default:
11378 return false;
11382 /* Returns true if to and from are (possibly multi-level) pointers to the same
11383 type or inheritance-related types, regardless of cv-quals. */
11385 bool
11386 ptr_reasonably_similar (const_tree to, const_tree from)
11388 for (; ; to = TREE_TYPE (to), from = TREE_TYPE (from))
11390 /* Any target type is similar enough to void. */
11391 if (VOID_TYPE_P (to))
11392 return !error_type_p (from);
11393 if (VOID_TYPE_P (from))
11394 return !error_type_p (to);
11396 if (TREE_CODE (to) != TREE_CODE (from))
11397 return false;
11399 if (TREE_CODE (from) == OFFSET_TYPE
11400 && comptypes (TYPE_OFFSET_BASETYPE (to),
11401 TYPE_OFFSET_BASETYPE (from),
11402 COMPARE_BASE | COMPARE_DERIVED))
11403 continue;
11405 if (VECTOR_TYPE_P (to)
11406 && vector_types_convertible_p (to, from, false))
11407 return true;
11409 if (TREE_CODE (to) == INTEGER_TYPE
11410 && TYPE_PRECISION (to) == TYPE_PRECISION (from))
11411 return true;
11413 if (TREE_CODE (to) == FUNCTION_TYPE)
11414 return !error_type_p (to) && !error_type_p (from);
11416 if (!TYPE_PTR_P (to))
11418 /* When either type is incomplete avoid DERIVED_FROM_P,
11419 which may call complete_type (c++/57942). */
11420 bool b = !COMPLETE_TYPE_P (to) || !COMPLETE_TYPE_P (from);
11421 return comptypes
11422 (TYPE_MAIN_VARIANT (to), TYPE_MAIN_VARIANT (from),
11423 b ? COMPARE_STRICT : COMPARE_BASE | COMPARE_DERIVED);
11428 /* Return true if TO and FROM (both of which are POINTER_TYPEs or
11429 pointer-to-member types) are the same, ignoring cv-qualification at
11430 all levels. CB says how we should behave when comparing array bounds. */
11432 bool
11433 comp_ptr_ttypes_const (tree to, tree from, compare_bounds_t cb)
11435 bool is_opaque_pointer = false;
11437 for (; ; to = TREE_TYPE (to), from = TREE_TYPE (from))
11439 if (TREE_CODE (to) != TREE_CODE (from))
11440 return false;
11442 if (TREE_CODE (from) == OFFSET_TYPE
11443 && same_type_p (TYPE_OFFSET_BASETYPE (from),
11444 TYPE_OFFSET_BASETYPE (to)))
11445 continue;
11447 if (VECTOR_TYPE_P (to))
11448 is_opaque_pointer = vector_targets_convertible_p (to, from);
11450 if (TREE_CODE (to) == ARRAY_TYPE
11451 /* Ignore cv-qualification, but if we see e.g. int[3] and int[4],
11452 we must fail. */
11453 && !comp_array_types (to, from, cb, /*strict=*/false))
11454 return false;
11456 /* CWG 330 says we need to look through arrays. */
11457 if (!TYPE_PTR_P (to) && TREE_CODE (to) != ARRAY_TYPE)
11458 return (is_opaque_pointer
11459 || same_type_ignoring_top_level_qualifiers_p (to, from));
11463 /* Returns the type qualifiers for this type, including the qualifiers on the
11464 elements for an array type. */
11467 cp_type_quals (const_tree type)
11469 int quals;
11470 /* This CONST_CAST is okay because strip_array_types returns its
11471 argument unmodified and we assign it to a const_tree. */
11472 type = strip_array_types (CONST_CAST_TREE (type));
11473 if (type == error_mark_node
11474 /* Quals on a FUNCTION_TYPE are memfn quals. */
11475 || TREE_CODE (type) == FUNCTION_TYPE)
11476 return TYPE_UNQUALIFIED;
11477 quals = TYPE_QUALS (type);
11478 /* METHOD and REFERENCE_TYPEs should never have quals. */
11479 gcc_assert ((TREE_CODE (type) != METHOD_TYPE
11480 && !TYPE_REF_P (type))
11481 || ((quals & (TYPE_QUAL_CONST|TYPE_QUAL_VOLATILE))
11482 == TYPE_UNQUALIFIED));
11483 return quals;
11486 /* Returns the function-ref-qualifier for TYPE */
11488 cp_ref_qualifier
11489 type_memfn_rqual (const_tree type)
11491 gcc_assert (FUNC_OR_METHOD_TYPE_P (type));
11493 if (!FUNCTION_REF_QUALIFIED (type))
11494 return REF_QUAL_NONE;
11495 else if (FUNCTION_RVALUE_QUALIFIED (type))
11496 return REF_QUAL_RVALUE;
11497 else
11498 return REF_QUAL_LVALUE;
11501 /* Returns the function-cv-quals for TYPE, which must be a FUNCTION_TYPE or
11502 METHOD_TYPE. */
11505 type_memfn_quals (const_tree type)
11507 if (TREE_CODE (type) == FUNCTION_TYPE)
11508 return TYPE_QUALS (type);
11509 else if (TREE_CODE (type) == METHOD_TYPE)
11510 return cp_type_quals (class_of_this_parm (type));
11511 else
11512 gcc_unreachable ();
11515 /* Returns the FUNCTION_TYPE TYPE with its function-cv-quals changed to
11516 MEMFN_QUALS and its ref-qualifier to RQUAL. */
11518 tree
11519 apply_memfn_quals (tree type, cp_cv_quals memfn_quals, cp_ref_qualifier rqual)
11521 /* Could handle METHOD_TYPE here if necessary. */
11522 gcc_assert (TREE_CODE (type) == FUNCTION_TYPE);
11523 if (TYPE_QUALS (type) == memfn_quals
11524 && type_memfn_rqual (type) == rqual)
11525 return type;
11527 /* This should really have a different TYPE_MAIN_VARIANT, but that gets
11528 complex. */
11529 tree result = build_qualified_type (type, memfn_quals);
11530 return build_ref_qualified_type (result, rqual);
11533 /* Returns nonzero if TYPE is const or volatile. */
11535 bool
11536 cv_qualified_p (const_tree type)
11538 int quals = cp_type_quals (type);
11539 return (quals & (TYPE_QUAL_CONST|TYPE_QUAL_VOLATILE)) != 0;
11542 /* Returns nonzero if the TYPE contains a mutable member. */
11544 bool
11545 cp_has_mutable_p (const_tree type)
11547 /* This CONST_CAST is okay because strip_array_types returns its
11548 argument unmodified and we assign it to a const_tree. */
11549 type = strip_array_types (CONST_CAST_TREE(type));
11551 return CLASS_TYPE_P (type) && CLASSTYPE_HAS_MUTABLE (type);
11554 /* Set TREE_READONLY and TREE_VOLATILE on DECL as indicated by the
11555 TYPE_QUALS. For a VAR_DECL, this may be an optimistic
11556 approximation. In particular, consider:
11558 int f();
11559 struct S { int i; };
11560 const S s = { f(); }
11562 Here, we will make "s" as TREE_READONLY (because it is declared
11563 "const") -- only to reverse ourselves upon seeing that the
11564 initializer is non-constant. */
11566 void
11567 cp_apply_type_quals_to_decl (int type_quals, tree decl)
11569 tree type = TREE_TYPE (decl);
11571 if (type == error_mark_node)
11572 return;
11574 if (TREE_CODE (decl) == TYPE_DECL)
11575 return;
11577 gcc_assert (!(TREE_CODE (type) == FUNCTION_TYPE
11578 && type_quals != TYPE_UNQUALIFIED));
11580 /* Avoid setting TREE_READONLY incorrectly. */
11581 /* We used to check TYPE_NEEDS_CONSTRUCTING here, but now a constexpr
11582 constructor can produce constant init, so rely on cp_finish_decl to
11583 clear TREE_READONLY if the variable has non-constant init. */
11585 /* If the type has (or might have) a mutable component, that component
11586 might be modified. */
11587 if (TYPE_HAS_MUTABLE_P (type) || !COMPLETE_TYPE_P (type))
11588 type_quals &= ~TYPE_QUAL_CONST;
11590 c_apply_type_quals_to_decl (type_quals, decl);
11593 /* Subroutine of casts_away_constness. Make T1 and T2 point at
11594 exemplar types such that casting T1 to T2 is casting away constness
11595 if and only if there is no implicit conversion from T1 to T2. */
11597 static void
11598 casts_away_constness_r (tree *t1, tree *t2, tsubst_flags_t complain)
11600 int quals1;
11601 int quals2;
11603 /* [expr.const.cast]
11605 For multi-level pointer to members and multi-level mixed pointers
11606 and pointers to members (conv.qual), the "member" aspect of a
11607 pointer to member level is ignored when determining if a const
11608 cv-qualifier has been cast away. */
11609 /* [expr.const.cast]
11611 For two pointer types:
11613 X1 is T1cv1,1 * ... cv1,N * where T1 is not a pointer type
11614 X2 is T2cv2,1 * ... cv2,M * where T2 is not a pointer type
11615 K is min(N,M)
11617 casting from X1 to X2 casts away constness if, for a non-pointer
11618 type T there does not exist an implicit conversion (clause
11619 _conv_) from:
11621 Tcv1,(N-K+1) * cv1,(N-K+2) * ... cv1,N *
11625 Tcv2,(M-K+1) * cv2,(M-K+2) * ... cv2,M *. */
11626 if ((!TYPE_PTR_P (*t1) && !TYPE_PTRDATAMEM_P (*t1))
11627 || (!TYPE_PTR_P (*t2) && !TYPE_PTRDATAMEM_P (*t2)))
11629 *t1 = cp_build_qualified_type (void_type_node,
11630 cp_type_quals (*t1));
11631 *t2 = cp_build_qualified_type (void_type_node,
11632 cp_type_quals (*t2));
11633 return;
11636 quals1 = cp_type_quals (*t1);
11637 quals2 = cp_type_quals (*t2);
11639 if (TYPE_PTRDATAMEM_P (*t1))
11640 *t1 = TYPE_PTRMEM_POINTED_TO_TYPE (*t1);
11641 else
11642 *t1 = TREE_TYPE (*t1);
11643 if (TYPE_PTRDATAMEM_P (*t2))
11644 *t2 = TYPE_PTRMEM_POINTED_TO_TYPE (*t2);
11645 else
11646 *t2 = TREE_TYPE (*t2);
11648 casts_away_constness_r (t1, t2, complain);
11649 *t1 = build_pointer_type (*t1);
11650 *t2 = build_pointer_type (*t2);
11651 *t1 = cp_build_qualified_type (*t1, quals1);
11652 *t2 = cp_build_qualified_type (*t2, quals2);
11655 /* Returns nonzero if casting from TYPE1 to TYPE2 casts away
11656 constness.
11658 ??? This function returns non-zero if casting away qualifiers not
11659 just const. We would like to return to the caller exactly which
11660 qualifiers are casted away to give more accurate diagnostics.
11663 static bool
11664 casts_away_constness (tree t1, tree t2, tsubst_flags_t complain)
11666 if (TYPE_REF_P (t2))
11668 /* [expr.const.cast]
11670 Casting from an lvalue of type T1 to an lvalue of type T2
11671 using a reference cast casts away constness if a cast from an
11672 rvalue of type "pointer to T1" to the type "pointer to T2"
11673 casts away constness. */
11674 t1 = (TYPE_REF_P (t1) ? TREE_TYPE (t1) : t1);
11675 return casts_away_constness (build_pointer_type (t1),
11676 build_pointer_type (TREE_TYPE (t2)),
11677 complain);
11680 if (TYPE_PTRDATAMEM_P (t1) && TYPE_PTRDATAMEM_P (t2))
11681 /* [expr.const.cast]
11683 Casting from an rvalue of type "pointer to data member of X
11684 of type T1" to the type "pointer to data member of Y of type
11685 T2" casts away constness if a cast from an rvalue of type
11686 "pointer to T1" to the type "pointer to T2" casts away
11687 constness. */
11688 return casts_away_constness
11689 (build_pointer_type (TYPE_PTRMEM_POINTED_TO_TYPE (t1)),
11690 build_pointer_type (TYPE_PTRMEM_POINTED_TO_TYPE (t2)),
11691 complain);
11693 /* Casting away constness is only something that makes sense for
11694 pointer or reference types. */
11695 if (!TYPE_PTR_P (t1) || !TYPE_PTR_P (t2))
11696 return false;
11698 /* Top-level qualifiers don't matter. */
11699 t1 = TYPE_MAIN_VARIANT (t1);
11700 t2 = TYPE_MAIN_VARIANT (t2);
11701 casts_away_constness_r (&t1, &t2, complain);
11702 if (!can_convert (t2, t1, complain))
11703 return true;
11705 return false;
11708 /* If T is a REFERENCE_TYPE return the type to which T refers.
11709 Otherwise, return T itself. */
11711 tree
11712 non_reference (tree t)
11714 if (t && TYPE_REF_P (t))
11715 t = TREE_TYPE (t);
11716 return t;
11720 /* Return nonzero if REF is an lvalue valid for this language;
11721 otherwise, print an error message and return zero. USE says
11722 how the lvalue is being used and so selects the error message. */
11725 lvalue_or_else (tree ref, enum lvalue_use use, tsubst_flags_t complain)
11727 cp_lvalue_kind kind = lvalue_kind (ref);
11729 if (kind == clk_none)
11731 if (complain & tf_error)
11732 lvalue_error (cp_expr_loc_or_input_loc (ref), use);
11733 return 0;
11735 else if (kind & (clk_rvalueref|clk_class))
11737 if (!(complain & tf_error))
11738 return 0;
11739 /* Make this a permerror because we used to accept it. */
11740 permerror (cp_expr_loc_or_input_loc (ref),
11741 "using rvalue as lvalue");
11743 return 1;
11746 /* Return true if a user-defined literal operator is a raw operator. */
11748 bool
11749 check_raw_literal_operator (const_tree decl)
11751 tree argtypes = TYPE_ARG_TYPES (TREE_TYPE (decl));
11752 tree argtype;
11753 int arity;
11754 bool maybe_raw_p = false;
11756 /* Count the number and type of arguments and check for ellipsis. */
11757 for (argtype = argtypes, arity = 0;
11758 argtype && argtype != void_list_node;
11759 ++arity, argtype = TREE_CHAIN (argtype))
11761 tree t = TREE_VALUE (argtype);
11763 if (same_type_p (t, const_string_type_node))
11764 maybe_raw_p = true;
11766 if (!argtype)
11767 return false; /* Found ellipsis. */
11769 if (!maybe_raw_p || arity != 1)
11770 return false;
11772 return true;
11776 /* Return true if a user-defined literal operator has one of the allowed
11777 argument types. */
11779 bool
11780 check_literal_operator_args (const_tree decl,
11781 bool *long_long_unsigned_p, bool *long_double_p)
11783 tree argtypes = TYPE_ARG_TYPES (TREE_TYPE (decl));
11785 *long_long_unsigned_p = false;
11786 *long_double_p = false;
11787 if (processing_template_decl || processing_specialization)
11788 return argtypes == void_list_node;
11789 else
11791 tree argtype;
11792 int arity;
11793 int max_arity = 2;
11795 /* Count the number and type of arguments and check for ellipsis. */
11796 for (argtype = argtypes, arity = 0;
11797 argtype && argtype != void_list_node;
11798 argtype = TREE_CHAIN (argtype))
11800 tree t = TREE_VALUE (argtype);
11801 ++arity;
11803 if (TYPE_PTR_P (t))
11805 bool maybe_raw_p = false;
11806 t = TREE_TYPE (t);
11807 if (cp_type_quals (t) != TYPE_QUAL_CONST)
11808 return false;
11809 t = TYPE_MAIN_VARIANT (t);
11810 if ((maybe_raw_p = same_type_p (t, char_type_node))
11811 || same_type_p (t, wchar_type_node)
11812 || same_type_p (t, char8_type_node)
11813 || same_type_p (t, char16_type_node)
11814 || same_type_p (t, char32_type_node))
11816 argtype = TREE_CHAIN (argtype);
11817 if (!argtype)
11818 return false;
11819 t = TREE_VALUE (argtype);
11820 if (maybe_raw_p && argtype == void_list_node)
11821 return true;
11822 else if (same_type_p (t, size_type_node))
11824 ++arity;
11825 continue;
11827 else
11828 return false;
11831 else if (same_type_p (t, long_long_unsigned_type_node))
11833 max_arity = 1;
11834 *long_long_unsigned_p = true;
11836 else if (same_type_p (t, long_double_type_node))
11838 max_arity = 1;
11839 *long_double_p = true;
11841 else if (same_type_p (t, char_type_node))
11842 max_arity = 1;
11843 else if (same_type_p (t, wchar_type_node))
11844 max_arity = 1;
11845 else if (same_type_p (t, char8_type_node))
11846 max_arity = 1;
11847 else if (same_type_p (t, char16_type_node))
11848 max_arity = 1;
11849 else if (same_type_p (t, char32_type_node))
11850 max_arity = 1;
11851 else
11852 return false;
11854 if (!argtype)
11855 return false; /* Found ellipsis. */
11857 if (arity != max_arity)
11858 return false;
11860 return true;
11864 /* Always returns false since unlike C90, C++ has no concept of implicit
11865 function declarations. */
11867 bool
11868 c_decl_implicit (const_tree)
11870 return false;