1 /* Perform the semantic phase of parsing, i.e., the process of
2 building tree structure, checking semantic consistency, and
3 building RTL. These routines are used both during actual parsing
4 and during the instantiation of template functions.
6 Copyright (C) 1998-2013 Free Software Foundation, Inc.
7 Written by Mark Mitchell (mmitchell@usa.net) based on code found
8 formerly in parse.y and pt.c.
10 This file is part of GCC.
12 GCC is free software; you can redistribute it and/or modify it
13 under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 3, or (at your option)
17 GCC is distributed in the hope that it will be useful, but
18 WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 General Public License for more details.
22 You should have received a copy of the GNU General Public License
23 along with GCC; see the file COPYING3. If not see
24 <http://www.gnu.org/licenses/>. */
28 #include "coretypes.h"
32 #include "c-family/c-common.h"
33 #include "c-family/c-objc.h"
34 #include "tree-inline.h"
39 #include "diagnostic.h"
41 #include "tree-iterator.h"
46 #include "hash-table.h"
48 static bool verify_constant (tree
, bool, bool *, bool *);
49 #define VERIFY_CONSTANT(X) \
51 if (verify_constant ((X), allow_non_constant, non_constant_p, overflow_p)) \
55 /* There routines provide a modular interface to perform many parsing
56 operations. They may therefore be used during actual parsing, or
57 during template instantiation, which may be regarded as a
58 degenerate form of parsing. */
60 static tree
maybe_convert_cond (tree
);
61 static tree
finalize_nrv_r (tree
*, int *, void *);
62 static tree
capture_decltype (tree
);
65 /* Deferred Access Checking Overview
66 ---------------------------------
68 Most C++ expressions and declarations require access checking
69 to be performed during parsing. However, in several cases,
70 this has to be treated differently.
72 For member declarations, access checking has to be deferred
73 until more information about the declaration is known. For
85 When we are parsing the function return type `A::X', we don't
86 really know if this is allowed until we parse the function name.
88 Furthermore, some contexts require that access checking is
89 never performed at all. These include class heads, and template
92 Typical use of access checking functions is described here:
94 1. When we enter a context that requires certain access checking
95 mode, the function `push_deferring_access_checks' is called with
96 DEFERRING argument specifying the desired mode. Access checking
97 may be performed immediately (dk_no_deferred), deferred
98 (dk_deferred), or not performed (dk_no_check).
100 2. When a declaration such as a type, or a variable, is encountered,
101 the function `perform_or_defer_access_check' is called. It
102 maintains a vector of all deferred checks.
104 3. The global `current_class_type' or `current_function_decl' is then
105 setup by the parser. `enforce_access' relies on these information
108 4. Upon exiting the context mentioned in step 1,
109 `perform_deferred_access_checks' is called to check all declaration
110 stored in the vector. `pop_deferring_access_checks' is then
111 called to restore the previous access checking mode.
113 In case of parsing error, we simply call `pop_deferring_access_checks'
114 without `perform_deferred_access_checks'. */
116 typedef struct GTY(()) deferred_access
{
117 /* A vector representing name-lookups for which we have deferred
118 checking access controls. We cannot check the accessibility of
119 names used in a decl-specifier-seq until we know what is being
120 declared because code like:
127 A::B* A::f() { return 0; }
129 is valid, even though `A::B' is not generally accessible. */
130 vec
<deferred_access_check
, va_gc
> * GTY(()) deferred_access_checks
;
132 /* The current mode of access checks. */
133 enum deferring_kind deferring_access_checks_kind
;
137 /* Data for deferred access checking. */
138 static GTY(()) vec
<deferred_access
, va_gc
> *deferred_access_stack
;
139 static GTY(()) unsigned deferred_access_no_check
;
141 /* Save the current deferred access states and start deferred
142 access checking iff DEFER_P is true. */
145 push_deferring_access_checks (deferring_kind deferring
)
147 /* For context like template instantiation, access checking
148 disabling applies to all nested context. */
149 if (deferred_access_no_check
|| deferring
== dk_no_check
)
150 deferred_access_no_check
++;
153 deferred_access e
= {NULL
, deferring
};
154 vec_safe_push (deferred_access_stack
, e
);
158 /* Resume deferring access checks again after we stopped doing
162 resume_deferring_access_checks (void)
164 if (!deferred_access_no_check
)
165 deferred_access_stack
->last().deferring_access_checks_kind
= dk_deferred
;
168 /* Stop deferring access checks. */
171 stop_deferring_access_checks (void)
173 if (!deferred_access_no_check
)
174 deferred_access_stack
->last().deferring_access_checks_kind
= dk_no_deferred
;
177 /* Discard the current deferred access checks and restore the
181 pop_deferring_access_checks (void)
183 if (deferred_access_no_check
)
184 deferred_access_no_check
--;
186 deferred_access_stack
->pop ();
189 /* Returns a TREE_LIST representing the deferred checks.
190 The TREE_PURPOSE of each node is the type through which the
191 access occurred; the TREE_VALUE is the declaration named.
194 vec
<deferred_access_check
, va_gc
> *
195 get_deferred_access_checks (void)
197 if (deferred_access_no_check
)
200 return (deferred_access_stack
->last().deferred_access_checks
);
203 /* Take current deferred checks and combine with the
204 previous states if we also defer checks previously.
205 Otherwise perform checks now. */
208 pop_to_parent_deferring_access_checks (void)
210 if (deferred_access_no_check
)
211 deferred_access_no_check
--;
214 vec
<deferred_access_check
, va_gc
> *checks
;
215 deferred_access
*ptr
;
217 checks
= (deferred_access_stack
->last ().deferred_access_checks
);
219 deferred_access_stack
->pop ();
220 ptr
= &deferred_access_stack
->last ();
221 if (ptr
->deferring_access_checks_kind
== dk_no_deferred
)
224 perform_access_checks (checks
, tf_warning_or_error
);
228 /* Merge with parent. */
230 deferred_access_check
*chk
, *probe
;
232 FOR_EACH_VEC_SAFE_ELT (checks
, i
, chk
)
234 FOR_EACH_VEC_SAFE_ELT (ptr
->deferred_access_checks
, j
, probe
)
236 if (probe
->binfo
== chk
->binfo
&&
237 probe
->decl
== chk
->decl
&&
238 probe
->diag_decl
== chk
->diag_decl
)
241 /* Insert into parent's checks. */
242 vec_safe_push (ptr
->deferred_access_checks
, *chk
);
249 /* Perform the access checks in CHECKS. The TREE_PURPOSE of each node
250 is the BINFO indicating the qualifying scope used to access the
251 DECL node stored in the TREE_VALUE of the node. If CHECKS is empty
252 or we aren't in SFINAE context or all the checks succeed return TRUE,
256 perform_access_checks (vec
<deferred_access_check
, va_gc
> *checks
,
257 tsubst_flags_t complain
)
260 deferred_access_check
*chk
;
261 location_t loc
= input_location
;
267 FOR_EACH_VEC_SAFE_ELT (checks
, i
, chk
)
269 input_location
= chk
->loc
;
270 ok
&= enforce_access (chk
->binfo
, chk
->decl
, chk
->diag_decl
, complain
);
273 input_location
= loc
;
274 return (complain
& tf_error
) ? true : ok
;
277 /* Perform the deferred access checks.
279 After performing the checks, we still have to keep the list
280 `deferred_access_stack->deferred_access_checks' since we may want
281 to check access for them again later in a different context.
288 A::X A::a, x; // No error for `A::a', error for `x'
290 We have to perform deferred access of `A::X', first with `A::a',
291 next with `x'. Return value like perform_access_checks above. */
294 perform_deferred_access_checks (tsubst_flags_t complain
)
296 return perform_access_checks (get_deferred_access_checks (), complain
);
299 /* Defer checking the accessibility of DECL, when looked up in
300 BINFO. DIAG_DECL is the declaration to use to print diagnostics.
301 Return value like perform_access_checks above. */
304 perform_or_defer_access_check (tree binfo
, tree decl
, tree diag_decl
,
305 tsubst_flags_t complain
)
308 deferred_access
*ptr
;
309 deferred_access_check
*chk
;
312 /* Exit if we are in a context that no access checking is performed.
314 if (deferred_access_no_check
)
317 gcc_assert (TREE_CODE (binfo
) == TREE_BINFO
);
319 ptr
= &deferred_access_stack
->last ();
321 /* If we are not supposed to defer access checks, just check now. */
322 if (ptr
->deferring_access_checks_kind
== dk_no_deferred
)
324 bool ok
= enforce_access (binfo
, decl
, diag_decl
, complain
);
325 return (complain
& tf_error
) ? true : ok
;
328 /* See if we are already going to perform this check. */
329 FOR_EACH_VEC_SAFE_ELT (ptr
->deferred_access_checks
, i
, chk
)
331 if (chk
->decl
== decl
&& chk
->binfo
== binfo
&&
332 chk
->diag_decl
== diag_decl
)
337 /* If not, record the check. */
338 deferred_access_check new_access
= {binfo
, decl
, diag_decl
, input_location
};
339 vec_safe_push (ptr
->deferred_access_checks
, new_access
);
344 /* Returns nonzero if the current statement is a full expression,
345 i.e. temporaries created during that statement should be destroyed
346 at the end of the statement. */
349 stmts_are_full_exprs_p (void)
351 return current_stmt_tree ()->stmts_are_full_exprs_p
;
354 /* T is a statement. Add it to the statement-tree. This is the C++
355 version. The C/ObjC frontends have a slightly different version of
361 enum tree_code code
= TREE_CODE (t
);
363 if (EXPR_P (t
) && code
!= LABEL_EXPR
)
365 if (!EXPR_HAS_LOCATION (t
))
366 SET_EXPR_LOCATION (t
, input_location
);
368 /* When we expand a statement-tree, we must know whether or not the
369 statements are full-expressions. We record that fact here. */
370 STMT_IS_FULL_EXPR_P (t
) = stmts_are_full_exprs_p ();
373 /* Add T to the statement-tree. Non-side-effect statements need to be
374 recorded during statement expressions. */
375 gcc_checking_assert (!stmt_list_stack
->is_empty ());
376 append_to_statement_list_force (t
, &cur_stmt_list
);
381 /* Returns the stmt_tree to which statements are currently being added. */
384 current_stmt_tree (void)
387 ? &cfun
->language
->base
.x_stmt_tree
388 : &scope_chain
->x_stmt_tree
);
391 /* If statements are full expressions, wrap STMT in a CLEANUP_POINT_EXPR. */
394 maybe_cleanup_point_expr (tree expr
)
396 if (!processing_template_decl
&& stmts_are_full_exprs_p ())
397 expr
= fold_build_cleanup_point_expr (TREE_TYPE (expr
), expr
);
401 /* Like maybe_cleanup_point_expr except have the type of the new expression be
402 void so we don't need to create a temporary variable to hold the inner
403 expression. The reason why we do this is because the original type might be
404 an aggregate and we cannot create a temporary variable for that type. */
407 maybe_cleanup_point_expr_void (tree expr
)
409 if (!processing_template_decl
&& stmts_are_full_exprs_p ())
410 expr
= fold_build_cleanup_point_expr (void_type_node
, expr
);
416 /* Create a declaration statement for the declaration given by the DECL. */
419 add_decl_expr (tree decl
)
421 tree r
= build_stmt (input_location
, DECL_EXPR
, decl
);
422 if (DECL_INITIAL (decl
)
423 || (DECL_SIZE (decl
) && TREE_SIDE_EFFECTS (DECL_SIZE (decl
))))
424 r
= maybe_cleanup_point_expr_void (r
);
428 /* Finish a scope. */
431 do_poplevel (tree stmt_list
)
435 if (stmts_are_full_exprs_p ())
436 block
= poplevel (kept_level_p (), 1, 0);
438 stmt_list
= pop_stmt_list (stmt_list
);
440 if (!processing_template_decl
)
442 stmt_list
= c_build_bind_expr (input_location
, block
, stmt_list
);
443 /* ??? See c_end_compound_stmt re statement expressions. */
449 /* Begin a new scope. */
452 do_pushlevel (scope_kind sk
)
454 tree ret
= push_stmt_list ();
455 if (stmts_are_full_exprs_p ())
456 begin_scope (sk
, NULL
);
460 /* Queue a cleanup. CLEANUP is an expression/statement to be executed
461 when the current scope is exited. EH_ONLY is true when this is not
462 meant to apply to normal control flow transfer. */
465 push_cleanup (tree decl
, tree cleanup
, bool eh_only
)
467 tree stmt
= build_stmt (input_location
, CLEANUP_STMT
, NULL
, cleanup
, decl
);
468 CLEANUP_EH_ONLY (stmt
) = eh_only
;
470 CLEANUP_BODY (stmt
) = push_stmt_list ();
473 /* Begin a conditional that might contain a declaration. When generating
474 normal code, we want the declaration to appear before the statement
475 containing the conditional. When generating template code, we want the
476 conditional to be rendered as the raw DECL_EXPR. */
479 begin_cond (tree
*cond_p
)
481 if (processing_template_decl
)
482 *cond_p
= push_stmt_list ();
485 /* Finish such a conditional. */
488 finish_cond (tree
*cond_p
, tree expr
)
490 if (processing_template_decl
)
492 tree cond
= pop_stmt_list (*cond_p
);
494 if (expr
== NULL_TREE
)
495 /* Empty condition in 'for'. */
496 gcc_assert (empty_expr_stmt_p (cond
));
497 else if (check_for_bare_parameter_packs (expr
))
498 expr
= error_mark_node
;
499 else if (!empty_expr_stmt_p (cond
))
500 expr
= build2 (COMPOUND_EXPR
, TREE_TYPE (expr
), cond
, expr
);
505 /* If *COND_P specifies a conditional with a declaration, transform the
508 for (; A x = 42;) { }
510 while (true) { A x = 42; if (!x) break; }
511 for (;;) { A x = 42; if (!x) break; }
512 The statement list for BODY will be empty if the conditional did
513 not declare anything. */
516 simplify_loop_decl_cond (tree
*cond_p
, tree body
)
520 if (!TREE_SIDE_EFFECTS (body
))
524 *cond_p
= boolean_true_node
;
526 if_stmt
= begin_if_stmt ();
527 cond
= cp_build_unary_op (TRUTH_NOT_EXPR
, cond
, 0, tf_warning_or_error
);
528 finish_if_stmt_cond (cond
, if_stmt
);
529 finish_break_stmt ();
530 finish_then_clause (if_stmt
);
531 finish_if_stmt (if_stmt
);
534 /* Finish a goto-statement. */
537 finish_goto_stmt (tree destination
)
539 if (identifier_p (destination
))
540 destination
= lookup_label (destination
);
542 /* We warn about unused labels with -Wunused. That means we have to
543 mark the used labels as used. */
544 if (TREE_CODE (destination
) == LABEL_DECL
)
545 TREE_USED (destination
) = 1;
548 destination
= mark_rvalue_use (destination
);
549 if (!processing_template_decl
)
551 destination
= cp_convert (ptr_type_node
, destination
,
552 tf_warning_or_error
);
553 if (error_operand_p (destination
))
556 = fold_build_cleanup_point_expr (TREE_TYPE (destination
),
561 check_goto (destination
);
563 return add_stmt (build_stmt (input_location
, GOTO_EXPR
, destination
));
566 /* COND is the condition-expression for an if, while, etc.,
567 statement. Convert it to a boolean value, if appropriate.
568 In addition, verify sequence points if -Wsequence-point is enabled. */
571 maybe_convert_cond (tree cond
)
573 /* Empty conditions remain empty. */
577 /* Wait until we instantiate templates before doing conversion. */
578 if (processing_template_decl
)
581 if (warn_sequence_point
)
582 verify_sequence_points (cond
);
584 /* Do the conversion. */
585 cond
= convert_from_reference (cond
);
587 if (TREE_CODE (cond
) == MODIFY_EXPR
588 && !TREE_NO_WARNING (cond
)
591 warning (OPT_Wparentheses
,
592 "suggest parentheses around assignment used as truth value");
593 TREE_NO_WARNING (cond
) = 1;
596 return condition_conversion (cond
);
599 /* Finish an expression-statement, whose EXPRESSION is as indicated. */
602 finish_expr_stmt (tree expr
)
606 if (expr
!= NULL_TREE
)
608 if (!processing_template_decl
)
610 if (warn_sequence_point
)
611 verify_sequence_points (expr
);
612 expr
= convert_to_void (expr
, ICV_STATEMENT
, tf_warning_or_error
);
614 else if (!type_dependent_expression_p (expr
))
615 convert_to_void (build_non_dependent_expr (expr
), ICV_STATEMENT
,
616 tf_warning_or_error
);
618 if (check_for_bare_parameter_packs (expr
))
619 expr
= error_mark_node
;
621 /* Simplification of inner statement expressions, compound exprs,
622 etc can result in us already having an EXPR_STMT. */
623 if (TREE_CODE (expr
) != CLEANUP_POINT_EXPR
)
625 if (TREE_CODE (expr
) != EXPR_STMT
)
626 expr
= build_stmt (input_location
, EXPR_STMT
, expr
);
627 expr
= maybe_cleanup_point_expr_void (expr
);
639 /* Begin an if-statement. Returns a newly created IF_STMT if
646 scope
= do_pushlevel (sk_cond
);
647 r
= build_stmt (input_location
, IF_STMT
, NULL_TREE
,
648 NULL_TREE
, NULL_TREE
, scope
);
649 begin_cond (&IF_COND (r
));
653 /* Process the COND of an if-statement, which may be given by
657 finish_if_stmt_cond (tree cond
, tree if_stmt
)
659 finish_cond (&IF_COND (if_stmt
), maybe_convert_cond (cond
));
661 THEN_CLAUSE (if_stmt
) = push_stmt_list ();
664 /* Finish the then-clause of an if-statement, which may be given by
668 finish_then_clause (tree if_stmt
)
670 THEN_CLAUSE (if_stmt
) = pop_stmt_list (THEN_CLAUSE (if_stmt
));
674 /* Begin the else-clause of an if-statement. */
677 begin_else_clause (tree if_stmt
)
679 ELSE_CLAUSE (if_stmt
) = push_stmt_list ();
682 /* Finish the else-clause of an if-statement, which may be given by
686 finish_else_clause (tree if_stmt
)
688 ELSE_CLAUSE (if_stmt
) = pop_stmt_list (ELSE_CLAUSE (if_stmt
));
691 /* Finish an if-statement. */
694 finish_if_stmt (tree if_stmt
)
696 tree scope
= IF_SCOPE (if_stmt
);
697 IF_SCOPE (if_stmt
) = NULL
;
698 add_stmt (do_poplevel (scope
));
702 /* Begin a while-statement. Returns a newly created WHILE_STMT if
706 begin_while_stmt (void)
709 r
= build_stmt (input_location
, WHILE_STMT
, NULL_TREE
, NULL_TREE
);
711 WHILE_BODY (r
) = do_pushlevel (sk_block
);
712 begin_cond (&WHILE_COND (r
));
716 /* Process the COND of a while-statement, which may be given by
720 finish_while_stmt_cond (tree cond
, tree while_stmt
)
722 finish_cond (&WHILE_COND (while_stmt
), maybe_convert_cond (cond
));
723 simplify_loop_decl_cond (&WHILE_COND (while_stmt
), WHILE_BODY (while_stmt
));
726 /* Finish a while-statement, which may be given by WHILE_STMT. */
729 finish_while_stmt (tree while_stmt
)
731 WHILE_BODY (while_stmt
) = do_poplevel (WHILE_BODY (while_stmt
));
735 /* Begin a do-statement. Returns a newly created DO_STMT if
741 tree r
= build_stmt (input_location
, DO_STMT
, NULL_TREE
, NULL_TREE
);
743 DO_BODY (r
) = push_stmt_list ();
747 /* Finish the body of a do-statement, which may be given by DO_STMT. */
750 finish_do_body (tree do_stmt
)
752 tree body
= DO_BODY (do_stmt
) = pop_stmt_list (DO_BODY (do_stmt
));
754 if (TREE_CODE (body
) == STATEMENT_LIST
&& STATEMENT_LIST_TAIL (body
))
755 body
= STATEMENT_LIST_TAIL (body
)->stmt
;
757 if (IS_EMPTY_STMT (body
))
758 warning (OPT_Wempty_body
,
759 "suggest explicit braces around empty body in %<do%> statement");
762 /* Finish a do-statement, which may be given by DO_STMT, and whose
763 COND is as indicated. */
766 finish_do_stmt (tree cond
, tree do_stmt
)
768 cond
= maybe_convert_cond (cond
);
769 DO_COND (do_stmt
) = cond
;
773 /* Finish a return-statement. The EXPRESSION returned, if any, is as
777 finish_return_stmt (tree expr
)
782 expr
= check_return_expr (expr
, &no_warning
);
784 if (flag_openmp
&& !check_omp_return ())
785 return error_mark_node
;
786 if (!processing_template_decl
)
788 if (warn_sequence_point
)
789 verify_sequence_points (expr
);
791 if (DECL_DESTRUCTOR_P (current_function_decl
)
792 || (DECL_CONSTRUCTOR_P (current_function_decl
)
793 && targetm
.cxx
.cdtor_returns_this ()))
795 /* Similarly, all destructors must run destructors for
796 base-classes before returning. So, all returns in a
797 destructor get sent to the DTOR_LABEL; finish_function emits
798 code to return a value there. */
799 return finish_goto_stmt (cdtor_label
);
803 r
= build_stmt (input_location
, RETURN_EXPR
, expr
);
804 TREE_NO_WARNING (r
) |= no_warning
;
805 r
= maybe_cleanup_point_expr_void (r
);
812 /* Begin the scope of a for-statement or a range-for-statement.
813 Both the returned trees are to be used in a call to
814 begin_for_stmt or begin_range_for_stmt. */
817 begin_for_scope (tree
*init
)
819 tree scope
= NULL_TREE
;
820 if (flag_new_for_scope
> 0)
821 scope
= do_pushlevel (sk_for
);
823 if (processing_template_decl
)
824 *init
= push_stmt_list ();
831 /* Begin a for-statement. Returns a new FOR_STMT.
832 SCOPE and INIT should be the return of begin_for_scope,
836 begin_for_stmt (tree scope
, tree init
)
840 r
= build_stmt (input_location
, FOR_STMT
, NULL_TREE
, NULL_TREE
,
841 NULL_TREE
, NULL_TREE
, NULL_TREE
);
843 if (scope
== NULL_TREE
)
845 gcc_assert (!init
|| !(flag_new_for_scope
> 0));
847 scope
= begin_for_scope (&init
);
849 FOR_INIT_STMT (r
) = init
;
850 FOR_SCOPE (r
) = scope
;
855 /* Finish the for-init-statement of a for-statement, which may be
856 given by FOR_STMT. */
859 finish_for_init_stmt (tree for_stmt
)
861 if (processing_template_decl
)
862 FOR_INIT_STMT (for_stmt
) = pop_stmt_list (FOR_INIT_STMT (for_stmt
));
864 FOR_BODY (for_stmt
) = do_pushlevel (sk_block
);
865 begin_cond (&FOR_COND (for_stmt
));
868 /* Finish the COND of a for-statement, which may be given by
872 finish_for_cond (tree cond
, tree for_stmt
)
874 finish_cond (&FOR_COND (for_stmt
), maybe_convert_cond (cond
));
875 simplify_loop_decl_cond (&FOR_COND (for_stmt
), FOR_BODY (for_stmt
));
878 /* Finish the increment-EXPRESSION in a for-statement, which may be
879 given by FOR_STMT. */
882 finish_for_expr (tree expr
, tree for_stmt
)
886 /* If EXPR is an overloaded function, issue an error; there is no
887 context available to use to perform overload resolution. */
888 if (type_unknown_p (expr
))
890 cxx_incomplete_type_error (expr
, TREE_TYPE (expr
));
891 expr
= error_mark_node
;
893 if (!processing_template_decl
)
895 if (warn_sequence_point
)
896 verify_sequence_points (expr
);
897 expr
= convert_to_void (expr
, ICV_THIRD_IN_FOR
,
898 tf_warning_or_error
);
900 else if (!type_dependent_expression_p (expr
))
901 convert_to_void (build_non_dependent_expr (expr
), ICV_THIRD_IN_FOR
,
902 tf_warning_or_error
);
903 expr
= maybe_cleanup_point_expr_void (expr
);
904 if (check_for_bare_parameter_packs (expr
))
905 expr
= error_mark_node
;
906 FOR_EXPR (for_stmt
) = expr
;
909 /* Finish the body of a for-statement, which may be given by
910 FOR_STMT. The increment-EXPR for the loop must be
912 It can also finish RANGE_FOR_STMT. */
915 finish_for_stmt (tree for_stmt
)
917 if (TREE_CODE (for_stmt
) == RANGE_FOR_STMT
)
918 RANGE_FOR_BODY (for_stmt
) = do_poplevel (RANGE_FOR_BODY (for_stmt
));
920 FOR_BODY (for_stmt
) = do_poplevel (FOR_BODY (for_stmt
));
922 /* Pop the scope for the body of the loop. */
923 if (flag_new_for_scope
> 0)
926 tree
*scope_ptr
= (TREE_CODE (for_stmt
) == RANGE_FOR_STMT
927 ? &RANGE_FOR_SCOPE (for_stmt
)
928 : &FOR_SCOPE (for_stmt
));
931 add_stmt (do_poplevel (scope
));
937 /* Begin a range-for-statement. Returns a new RANGE_FOR_STMT.
938 SCOPE and INIT should be the return of begin_for_scope,
940 To finish it call finish_for_stmt(). */
943 begin_range_for_stmt (tree scope
, tree init
)
947 r
= build_stmt (input_location
, RANGE_FOR_STMT
,
948 NULL_TREE
, NULL_TREE
, NULL_TREE
, NULL_TREE
);
950 if (scope
== NULL_TREE
)
952 gcc_assert (!init
|| !(flag_new_for_scope
> 0));
954 scope
= begin_for_scope (&init
);
957 /* RANGE_FOR_STMTs do not use nor save the init tree, so we
960 pop_stmt_list (init
);
961 RANGE_FOR_SCOPE (r
) = scope
;
966 /* Finish the head of a range-based for statement, which may
967 be given by RANGE_FOR_STMT. DECL must be the declaration
968 and EXPR must be the loop expression. */
971 finish_range_for_decl (tree range_for_stmt
, tree decl
, tree expr
)
973 RANGE_FOR_DECL (range_for_stmt
) = decl
;
974 RANGE_FOR_EXPR (range_for_stmt
) = expr
;
975 add_stmt (range_for_stmt
);
976 RANGE_FOR_BODY (range_for_stmt
) = do_pushlevel (sk_block
);
979 /* Finish a break-statement. */
982 finish_break_stmt (void)
984 /* In switch statements break is sometimes stylistically used after
985 a return statement. This can lead to spurious warnings about
986 control reaching the end of a non-void function when it is
987 inlined. Note that we are calling block_may_fallthru with
988 language specific tree nodes; this works because
989 block_may_fallthru returns true when given something it does not
991 if (!block_may_fallthru (cur_stmt_list
))
992 return void_zero_node
;
993 return add_stmt (build_stmt (input_location
, BREAK_STMT
));
996 /* Finish a continue-statement. */
999 finish_continue_stmt (void)
1001 return add_stmt (build_stmt (input_location
, CONTINUE_STMT
));
1004 /* Begin a switch-statement. Returns a new SWITCH_STMT if
1008 begin_switch_stmt (void)
1012 scope
= do_pushlevel (sk_cond
);
1013 r
= build_stmt (input_location
, SWITCH_STMT
, NULL_TREE
, NULL_TREE
, NULL_TREE
, scope
);
1015 begin_cond (&SWITCH_STMT_COND (r
));
1020 /* Finish the cond of a switch-statement. */
1023 finish_switch_cond (tree cond
, tree switch_stmt
)
1025 tree orig_type
= NULL
;
1026 if (!processing_template_decl
)
1028 /* Convert the condition to an integer or enumeration type. */
1029 cond
= build_expr_type_conversion (WANT_INT
| WANT_ENUM
, cond
, true);
1030 if (cond
== NULL_TREE
)
1032 error ("switch quantity not an integer");
1033 cond
= error_mark_node
;
1035 orig_type
= TREE_TYPE (cond
);
1036 if (cond
!= error_mark_node
)
1040 Integral promotions are performed. */
1041 cond
= perform_integral_promotions (cond
);
1042 cond
= maybe_cleanup_point_expr (cond
);
1045 if (check_for_bare_parameter_packs (cond
))
1046 cond
= error_mark_node
;
1047 else if (!processing_template_decl
&& warn_sequence_point
)
1048 verify_sequence_points (cond
);
1050 finish_cond (&SWITCH_STMT_COND (switch_stmt
), cond
);
1051 SWITCH_STMT_TYPE (switch_stmt
) = orig_type
;
1052 add_stmt (switch_stmt
);
1053 push_switch (switch_stmt
);
1054 SWITCH_STMT_BODY (switch_stmt
) = push_stmt_list ();
1057 /* Finish the body of a switch-statement, which may be given by
1058 SWITCH_STMT. The COND to switch on is indicated. */
1061 finish_switch_stmt (tree switch_stmt
)
1065 SWITCH_STMT_BODY (switch_stmt
) =
1066 pop_stmt_list (SWITCH_STMT_BODY (switch_stmt
));
1070 scope
= SWITCH_STMT_SCOPE (switch_stmt
);
1071 SWITCH_STMT_SCOPE (switch_stmt
) = NULL
;
1072 add_stmt (do_poplevel (scope
));
1075 /* Begin a try-block. Returns a newly-created TRY_BLOCK if
1079 begin_try_block (void)
1081 tree r
= build_stmt (input_location
, TRY_BLOCK
, NULL_TREE
, NULL_TREE
);
1083 TRY_STMTS (r
) = push_stmt_list ();
1087 /* Likewise, for a function-try-block. The block returned in
1088 *COMPOUND_STMT is an artificial outer scope, containing the
1089 function-try-block. */
1092 begin_function_try_block (tree
*compound_stmt
)
1095 /* This outer scope does not exist in the C++ standard, but we need
1096 a place to put __FUNCTION__ and similar variables. */
1097 *compound_stmt
= begin_compound_stmt (0);
1098 r
= begin_try_block ();
1099 FN_TRY_BLOCK_P (r
) = 1;
1103 /* Finish a try-block, which may be given by TRY_BLOCK. */
1106 finish_try_block (tree try_block
)
1108 TRY_STMTS (try_block
) = pop_stmt_list (TRY_STMTS (try_block
));
1109 TRY_HANDLERS (try_block
) = push_stmt_list ();
1112 /* Finish the body of a cleanup try-block, which may be given by
1116 finish_cleanup_try_block (tree try_block
)
1118 TRY_STMTS (try_block
) = pop_stmt_list (TRY_STMTS (try_block
));
1121 /* Finish an implicitly generated try-block, with a cleanup is given
1125 finish_cleanup (tree cleanup
, tree try_block
)
1127 TRY_HANDLERS (try_block
) = cleanup
;
1128 CLEANUP_P (try_block
) = 1;
1131 /* Likewise, for a function-try-block. */
1134 finish_function_try_block (tree try_block
)
1136 finish_try_block (try_block
);
1137 /* FIXME : something queer about CTOR_INITIALIZER somehow following
1138 the try block, but moving it inside. */
1139 in_function_try_handler
= 1;
1142 /* Finish a handler-sequence for a try-block, which may be given by
1146 finish_handler_sequence (tree try_block
)
1148 TRY_HANDLERS (try_block
) = pop_stmt_list (TRY_HANDLERS (try_block
));
1149 check_handlers (TRY_HANDLERS (try_block
));
1152 /* Finish the handler-seq for a function-try-block, given by
1153 TRY_BLOCK. COMPOUND_STMT is the outer block created by
1154 begin_function_try_block. */
1157 finish_function_handler_sequence (tree try_block
, tree compound_stmt
)
1159 in_function_try_handler
= 0;
1160 finish_handler_sequence (try_block
);
1161 finish_compound_stmt (compound_stmt
);
1164 /* Begin a handler. Returns a HANDLER if appropriate. */
1167 begin_handler (void)
1171 r
= build_stmt (input_location
, HANDLER
, NULL_TREE
, NULL_TREE
);
1174 /* Create a binding level for the eh_info and the exception object
1176 HANDLER_BODY (r
) = do_pushlevel (sk_catch
);
1181 /* Finish the handler-parameters for a handler, which may be given by
1182 HANDLER. DECL is the declaration for the catch parameter, or NULL
1183 if this is a `catch (...)' clause. */
1186 finish_handler_parms (tree decl
, tree handler
)
1188 tree type
= NULL_TREE
;
1189 if (processing_template_decl
)
1193 decl
= pushdecl (decl
);
1194 decl
= push_template_decl (decl
);
1195 HANDLER_PARMS (handler
) = decl
;
1196 type
= TREE_TYPE (decl
);
1200 type
= expand_start_catch_block (decl
);
1201 HANDLER_TYPE (handler
) = type
;
1202 if (!processing_template_decl
&& type
)
1203 mark_used (eh_type_info (type
));
1206 /* Finish a handler, which may be given by HANDLER. The BLOCKs are
1207 the return value from the matching call to finish_handler_parms. */
1210 finish_handler (tree handler
)
1212 if (!processing_template_decl
)
1213 expand_end_catch_block ();
1214 HANDLER_BODY (handler
) = do_poplevel (HANDLER_BODY (handler
));
1217 /* Begin a compound statement. FLAGS contains some bits that control the
1218 behavior and context. If BCS_NO_SCOPE is set, the compound statement
1219 does not define a scope. If BCS_FN_BODY is set, this is the outermost
1220 block of a function. If BCS_TRY_BLOCK is set, this is the block
1221 created on behalf of a TRY statement. Returns a token to be passed to
1222 finish_compound_stmt. */
1225 begin_compound_stmt (unsigned int flags
)
1229 if (flags
& BCS_NO_SCOPE
)
1231 r
= push_stmt_list ();
1232 STATEMENT_LIST_NO_SCOPE (r
) = 1;
1234 /* Normally, we try hard to keep the BLOCK for a statement-expression.
1235 But, if it's a statement-expression with a scopeless block, there's
1236 nothing to keep, and we don't want to accidentally keep a block
1237 *inside* the scopeless block. */
1238 keep_next_level (false);
1241 r
= do_pushlevel (flags
& BCS_TRY_BLOCK
? sk_try
: sk_block
);
1243 /* When processing a template, we need to remember where the braces were,
1244 so that we can set up identical scopes when instantiating the template
1245 later. BIND_EXPR is a handy candidate for this.
1246 Note that do_poplevel won't create a BIND_EXPR itself here (and thus
1247 result in nested BIND_EXPRs), since we don't build BLOCK nodes when
1248 processing templates. */
1249 if (processing_template_decl
)
1251 r
= build3 (BIND_EXPR
, NULL
, NULL
, r
, NULL
);
1252 BIND_EXPR_TRY_BLOCK (r
) = (flags
& BCS_TRY_BLOCK
) != 0;
1253 BIND_EXPR_BODY_BLOCK (r
) = (flags
& BCS_FN_BODY
) != 0;
1254 TREE_SIDE_EFFECTS (r
) = 1;
1260 /* Finish a compound-statement, which is given by STMT. */
1263 finish_compound_stmt (tree stmt
)
1265 if (TREE_CODE (stmt
) == BIND_EXPR
)
1267 tree body
= do_poplevel (BIND_EXPR_BODY (stmt
));
1268 /* If the STATEMENT_LIST is empty and this BIND_EXPR isn't special,
1269 discard the BIND_EXPR so it can be merged with the containing
1271 if (TREE_CODE (body
) == STATEMENT_LIST
1272 && STATEMENT_LIST_HEAD (body
) == NULL
1273 && !BIND_EXPR_BODY_BLOCK (stmt
)
1274 && !BIND_EXPR_TRY_BLOCK (stmt
))
1277 BIND_EXPR_BODY (stmt
) = body
;
1279 else if (STATEMENT_LIST_NO_SCOPE (stmt
))
1280 stmt
= pop_stmt_list (stmt
);
1283 /* Destroy any ObjC "super" receivers that may have been
1285 objc_clear_super_receiver ();
1287 stmt
= do_poplevel (stmt
);
1290 /* ??? See c_end_compound_stmt wrt statement expressions. */
1295 /* Finish an asm-statement, whose components are a STRING, some
1296 OUTPUT_OPERANDS, some INPUT_OPERANDS, some CLOBBERS and some
1297 LABELS. Also note whether the asm-statement should be
1298 considered volatile. */
1301 finish_asm_stmt (int volatile_p
, tree string
, tree output_operands
,
1302 tree input_operands
, tree clobbers
, tree labels
)
1306 int ninputs
= list_length (input_operands
);
1307 int noutputs
= list_length (output_operands
);
1309 if (!processing_template_decl
)
1311 const char *constraint
;
1312 const char **oconstraints
;
1313 bool allows_mem
, allows_reg
, is_inout
;
1317 oconstraints
= XALLOCAVEC (const char *, noutputs
);
1319 string
= resolve_asm_operand_names (string
, output_operands
,
1320 input_operands
, labels
);
1322 for (i
= 0, t
= output_operands
; t
; t
= TREE_CHAIN (t
), ++i
)
1324 operand
= TREE_VALUE (t
);
1326 /* ??? Really, this should not be here. Users should be using a
1327 proper lvalue, dammit. But there's a long history of using
1328 casts in the output operands. In cases like longlong.h, this
1329 becomes a primitive form of typechecking -- if the cast can be
1330 removed, then the output operand had a type of the proper width;
1331 otherwise we'll get an error. Gross, but ... */
1332 STRIP_NOPS (operand
);
1334 operand
= mark_lvalue_use (operand
);
1336 if (!lvalue_or_else (operand
, lv_asm
, tf_warning_or_error
))
1337 operand
= error_mark_node
;
1339 if (operand
!= error_mark_node
1340 && (TREE_READONLY (operand
)
1341 || CP_TYPE_CONST_P (TREE_TYPE (operand
))
1342 /* Functions are not modifiable, even though they are
1344 || TREE_CODE (TREE_TYPE (operand
)) == FUNCTION_TYPE
1345 || TREE_CODE (TREE_TYPE (operand
)) == METHOD_TYPE
1346 /* If it's an aggregate and any field is const, then it is
1347 effectively const. */
1348 || (CLASS_TYPE_P (TREE_TYPE (operand
))
1349 && C_TYPE_FIELDS_READONLY (TREE_TYPE (operand
)))))
1350 cxx_readonly_error (operand
, lv_asm
);
1352 constraint
= TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (t
)));
1353 oconstraints
[i
] = constraint
;
1355 if (parse_output_constraint (&constraint
, i
, ninputs
, noutputs
,
1356 &allows_mem
, &allows_reg
, &is_inout
))
1358 /* If the operand is going to end up in memory,
1359 mark it addressable. */
1360 if (!allows_reg
&& !cxx_mark_addressable (operand
))
1361 operand
= error_mark_node
;
1364 operand
= error_mark_node
;
1366 TREE_VALUE (t
) = operand
;
1369 for (i
= 0, t
= input_operands
; t
; ++i
, t
= TREE_CHAIN (t
))
1371 constraint
= TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (t
)));
1372 bool constraint_parsed
1373 = parse_input_constraint (&constraint
, i
, ninputs
, noutputs
, 0,
1374 oconstraints
, &allows_mem
, &allows_reg
);
1375 /* If the operand is going to end up in memory, don't call
1376 decay_conversion. */
1377 if (constraint_parsed
&& !allows_reg
&& allows_mem
)
1378 operand
= mark_lvalue_use (TREE_VALUE (t
));
1380 operand
= decay_conversion (TREE_VALUE (t
), tf_warning_or_error
);
1382 /* If the type of the operand hasn't been determined (e.g.,
1383 because it involves an overloaded function), then issue
1384 an error message. There's no context available to
1385 resolve the overloading. */
1386 if (TREE_TYPE (operand
) == unknown_type_node
)
1388 error ("type of asm operand %qE could not be determined",
1390 operand
= error_mark_node
;
1393 if (constraint_parsed
)
1395 /* If the operand is going to end up in memory,
1396 mark it addressable. */
1397 if (!allows_reg
&& allows_mem
)
1399 /* Strip the nops as we allow this case. FIXME, this really
1400 should be rejected or made deprecated. */
1401 STRIP_NOPS (operand
);
1402 if (!cxx_mark_addressable (operand
))
1403 operand
= error_mark_node
;
1405 else if (!allows_reg
&& !allows_mem
)
1407 /* If constraint allows neither register nor memory,
1408 try harder to get a constant. */
1409 tree constop
= maybe_constant_value (operand
);
1410 if (TREE_CONSTANT (constop
))
1415 operand
= error_mark_node
;
1417 TREE_VALUE (t
) = operand
;
1421 r
= build_stmt (input_location
, ASM_EXPR
, string
,
1422 output_operands
, input_operands
,
1424 ASM_VOLATILE_P (r
) = volatile_p
|| noutputs
== 0;
1425 r
= maybe_cleanup_point_expr_void (r
);
1426 return add_stmt (r
);
1429 /* Finish a label with the indicated NAME. Returns the new label. */
1432 finish_label_stmt (tree name
)
1434 tree decl
= define_label (input_location
, name
);
1436 if (decl
== error_mark_node
)
1437 return error_mark_node
;
1439 add_stmt (build_stmt (input_location
, LABEL_EXPR
, decl
));
1444 /* Finish a series of declarations for local labels. G++ allows users
1445 to declare "local" labels, i.e., labels with scope. This extension
1446 is useful when writing code involving statement-expressions. */
1449 finish_label_decl (tree name
)
1451 if (!at_function_scope_p ())
1453 error ("__label__ declarations are only allowed in function scopes");
1457 add_decl_expr (declare_local_label (name
));
1460 /* When DECL goes out of scope, make sure that CLEANUP is executed. */
1463 finish_decl_cleanup (tree decl
, tree cleanup
)
1465 push_cleanup (decl
, cleanup
, false);
1468 /* If the current scope exits with an exception, run CLEANUP. */
1471 finish_eh_cleanup (tree cleanup
)
1473 push_cleanup (NULL
, cleanup
, true);
1476 /* The MEM_INITS is a list of mem-initializers, in reverse of the
1477 order they were written by the user. Each node is as for
1478 emit_mem_initializers. */
1481 finish_mem_initializers (tree mem_inits
)
1483 /* Reorder the MEM_INITS so that they are in the order they appeared
1484 in the source program. */
1485 mem_inits
= nreverse (mem_inits
);
1487 if (processing_template_decl
)
1491 for (mem
= mem_inits
; mem
; mem
= TREE_CHAIN (mem
))
1493 /* If the TREE_PURPOSE is a TYPE_PACK_EXPANSION, skip the
1494 check for bare parameter packs in the TREE_VALUE, because
1495 any parameter packs in the TREE_VALUE have already been
1496 bound as part of the TREE_PURPOSE. See
1497 make_pack_expansion for more information. */
1498 if (TREE_CODE (TREE_PURPOSE (mem
)) != TYPE_PACK_EXPANSION
1499 && check_for_bare_parameter_packs (TREE_VALUE (mem
)))
1500 TREE_VALUE (mem
) = error_mark_node
;
1503 add_stmt (build_min_nt_loc (UNKNOWN_LOCATION
,
1504 CTOR_INITIALIZER
, mem_inits
));
1507 emit_mem_initializers (mem_inits
);
1510 /* Finish a parenthesized expression EXPR. */
1513 finish_parenthesized_expr (tree expr
)
1516 /* This inhibits warnings in c_common_truthvalue_conversion. */
1517 TREE_NO_WARNING (expr
) = 1;
1519 if (TREE_CODE (expr
) == OFFSET_REF
1520 || TREE_CODE (expr
) == SCOPE_REF
)
1521 /* [expr.unary.op]/3 The qualified id of a pointer-to-member must not be
1522 enclosed in parentheses. */
1523 PTRMEM_OK_P (expr
) = 0;
1525 if (TREE_CODE (expr
) == STRING_CST
)
1526 PAREN_STRING_LITERAL_P (expr
) = 1;
1531 /* Finish a reference to a non-static data member (DECL) that is not
1532 preceded by `.' or `->'. */
1535 finish_non_static_data_member (tree decl
, tree object
, tree qualifying_scope
)
1537 gcc_assert (TREE_CODE (decl
) == FIELD_DECL
);
1541 tree scope
= qualifying_scope
;
1542 if (scope
== NULL_TREE
)
1543 scope
= context_for_name_lookup (decl
);
1544 object
= maybe_dummy_object (scope
, NULL
);
1547 object
= maybe_resolve_dummy (object
);
1548 if (object
== error_mark_node
)
1549 return error_mark_node
;
1551 /* DR 613: Can use non-static data members without an associated
1552 object in sizeof/decltype/alignof. */
1553 if (is_dummy_object (object
) && cp_unevaluated_operand
== 0
1554 && (!processing_template_decl
|| !current_class_ref
))
1556 if (current_function_decl
1557 && DECL_STATIC_FUNCTION_P (current_function_decl
))
1558 error ("invalid use of member %q+D in static member function", decl
);
1560 error ("invalid use of non-static data member %q+D", decl
);
1561 error ("from this location");
1563 return error_mark_node
;
1566 if (current_class_ptr
)
1567 TREE_USED (current_class_ptr
) = 1;
1568 if (processing_template_decl
&& !qualifying_scope
)
1570 tree type
= TREE_TYPE (decl
);
1572 if (TREE_CODE (type
) == REFERENCE_TYPE
)
1573 /* Quals on the object don't matter. */;
1576 /* Set the cv qualifiers. */
1577 int quals
= cp_type_quals (TREE_TYPE (object
));
1579 if (DECL_MUTABLE_P (decl
))
1580 quals
&= ~TYPE_QUAL_CONST
;
1582 quals
|= cp_type_quals (TREE_TYPE (decl
));
1583 type
= cp_build_qualified_type (type
, quals
);
1586 return (convert_from_reference
1587 (build_min (COMPONENT_REF
, type
, object
, decl
, NULL_TREE
)));
1589 /* If PROCESSING_TEMPLATE_DECL is nonzero here, then
1590 QUALIFYING_SCOPE is also non-null. Wrap this in a SCOPE_REF
1592 else if (processing_template_decl
)
1593 return build_qualified_name (TREE_TYPE (decl
),
1596 /*template_p=*/false);
1599 tree access_type
= TREE_TYPE (object
);
1601 perform_or_defer_access_check (TYPE_BINFO (access_type
), decl
,
1602 decl
, tf_warning_or_error
);
1604 /* If the data member was named `C::M', convert `*this' to `C'
1606 if (qualifying_scope
)
1608 tree binfo
= NULL_TREE
;
1609 object
= build_scoped_ref (object
, qualifying_scope
,
1613 return build_class_member_access_expr (object
, decl
,
1614 /*access_path=*/NULL_TREE
,
1615 /*preserve_reference=*/false,
1616 tf_warning_or_error
);
1620 /* If we are currently parsing a template and we encountered a typedef
1621 TYPEDEF_DECL that is being accessed though CONTEXT, this function
1622 adds the typedef to a list tied to the current template.
1623 At template instantiation time, that list is walked and access check
1624 performed for each typedef.
1625 LOCATION is the location of the usage point of TYPEDEF_DECL. */
1628 add_typedef_to_current_template_for_access_check (tree typedef_decl
,
1630 location_t location
)
1632 tree template_info
= NULL
;
1633 tree cs
= current_scope ();
1635 if (!is_typedef_decl (typedef_decl
)
1637 || !CLASS_TYPE_P (context
)
1641 if (CLASS_TYPE_P (cs
) || TREE_CODE (cs
) == FUNCTION_DECL
)
1642 template_info
= get_template_info (cs
);
1645 && TI_TEMPLATE (template_info
)
1646 && !currently_open_class (context
))
1647 append_type_to_template_for_access_check (cs
, typedef_decl
,
1651 /* DECL was the declaration to which a qualified-id resolved. Issue
1652 an error message if it is not accessible. If OBJECT_TYPE is
1653 non-NULL, we have just seen `x->' or `x.' and OBJECT_TYPE is the
1654 type of `*x', or `x', respectively. If the DECL was named as
1655 `A::B' then NESTED_NAME_SPECIFIER is `A'. */
1658 check_accessibility_of_qualified_id (tree decl
,
1660 tree nested_name_specifier
)
1663 tree qualifying_type
= NULL_TREE
;
1665 /* If we are parsing a template declaration and if decl is a typedef,
1666 add it to a list tied to the template.
1667 At template instantiation time, that list will be walked and
1668 access check performed. */
1669 add_typedef_to_current_template_for_access_check (decl
,
1670 nested_name_specifier
1671 ? nested_name_specifier
1672 : DECL_CONTEXT (decl
),
1675 /* If we're not checking, return immediately. */
1676 if (deferred_access_no_check
)
1679 /* Determine the SCOPE of DECL. */
1680 scope
= context_for_name_lookup (decl
);
1681 /* If the SCOPE is not a type, then DECL is not a member. */
1682 if (!TYPE_P (scope
))
1684 /* Compute the scope through which DECL is being accessed. */
1686 /* OBJECT_TYPE might not be a class type; consider:
1688 class A { typedef int I; };
1692 In this case, we will have "A::I" as the DECL, but "I" as the
1694 && CLASS_TYPE_P (object_type
)
1695 && DERIVED_FROM_P (scope
, object_type
))
1696 /* If we are processing a `->' or `.' expression, use the type of the
1698 qualifying_type
= object_type
;
1699 else if (nested_name_specifier
)
1701 /* If the reference is to a non-static member of the
1702 current class, treat it as if it were referenced through
1704 if (DECL_NONSTATIC_MEMBER_P (decl
)
1705 && current_class_ptr
1706 && DERIVED_FROM_P (scope
, current_class_type
))
1707 qualifying_type
= current_class_type
;
1708 /* Otherwise, use the type indicated by the
1709 nested-name-specifier. */
1711 qualifying_type
= nested_name_specifier
;
1714 /* Otherwise, the name must be from the current class or one of
1716 qualifying_type
= currently_open_derived_class (scope
);
1719 /* It is possible for qualifying type to be a TEMPLATE_TYPE_PARM
1720 or similar in a default argument value. */
1721 && CLASS_TYPE_P (qualifying_type
)
1722 && !dependent_type_p (qualifying_type
))
1723 perform_or_defer_access_check (TYPE_BINFO (qualifying_type
), decl
,
1724 decl
, tf_warning_or_error
);
1727 /* EXPR is the result of a qualified-id. The QUALIFYING_CLASS was the
1728 class named to the left of the "::" operator. DONE is true if this
1729 expression is a complete postfix-expression; it is false if this
1730 expression is followed by '->', '[', '(', etc. ADDRESS_P is true
1731 iff this expression is the operand of '&'. TEMPLATE_P is true iff
1732 the qualified-id was of the form "A::template B". TEMPLATE_ARG_P
1733 is true iff this qualified name appears as a template argument. */
1736 finish_qualified_id_expr (tree qualifying_class
,
1741 bool template_arg_p
)
1743 gcc_assert (TYPE_P (qualifying_class
));
1745 if (error_operand_p (expr
))
1746 return error_mark_node
;
1748 if (DECL_P (expr
) || BASELINK_P (expr
))
1752 check_template_keyword (expr
);
1754 /* If EXPR occurs as the operand of '&', use special handling that
1755 permits a pointer-to-member. */
1756 if (address_p
&& done
)
1758 if (TREE_CODE (expr
) == SCOPE_REF
)
1759 expr
= TREE_OPERAND (expr
, 1);
1760 expr
= build_offset_ref (qualifying_class
, expr
,
1761 /*address_p=*/true);
1765 /* Within the scope of a class, turn references to non-static
1766 members into expression of the form "this->...". */
1768 /* But, within a template argument, we do not want make the
1769 transformation, as there is no "this" pointer. */
1771 else if (TREE_CODE (expr
) == FIELD_DECL
)
1773 push_deferring_access_checks (dk_no_check
);
1774 expr
= finish_non_static_data_member (expr
, NULL_TREE
,
1776 pop_deferring_access_checks ();
1778 else if (BASELINK_P (expr
) && !processing_template_decl
)
1780 /* See if any of the functions are non-static members. */
1781 /* If so, the expression may be relative to 'this'. */
1782 if (!shared_member_p (expr
)
1783 && current_class_ptr
1784 && DERIVED_FROM_P (qualifying_class
,
1785 current_nonlambda_class_type ()))
1786 expr
= (build_class_member_access_expr
1787 (maybe_dummy_object (qualifying_class
, NULL
),
1789 BASELINK_ACCESS_BINFO (expr
),
1790 /*preserve_reference=*/false,
1791 tf_warning_or_error
));
1793 /* The expression is a qualified name whose address is not
1795 expr
= build_offset_ref (qualifying_class
, expr
, /*address_p=*/false);
1797 else if (BASELINK_P (expr
))
1801 /* In a template, return a SCOPE_REF for most qualified-ids
1802 so that we can check access at instantiation time. But if
1803 we're looking at a member of the current instantiation, we
1804 know we have access and building up the SCOPE_REF confuses
1805 non-type template argument handling. */
1806 if (processing_template_decl
1807 && !currently_open_class (qualifying_class
))
1808 expr
= build_qualified_name (TREE_TYPE (expr
),
1809 qualifying_class
, expr
,
1812 expr
= convert_from_reference (expr
);
1818 /* Begin a statement-expression. The value returned must be passed to
1819 finish_stmt_expr. */
1822 begin_stmt_expr (void)
1824 return push_stmt_list ();
1827 /* Process the final expression of a statement expression. EXPR can be
1828 NULL, if the final expression is empty. Return a STATEMENT_LIST
1829 containing all the statements in the statement-expression, or
1830 ERROR_MARK_NODE if there was an error. */
1833 finish_stmt_expr_expr (tree expr
, tree stmt_expr
)
1835 if (error_operand_p (expr
))
1837 /* The type of the statement-expression is the type of the last
1839 TREE_TYPE (stmt_expr
) = error_mark_node
;
1840 return error_mark_node
;
1843 /* If the last statement does not have "void" type, then the value
1844 of the last statement is the value of the entire expression. */
1847 tree type
= TREE_TYPE (expr
);
1849 if (processing_template_decl
)
1851 expr
= build_stmt (input_location
, EXPR_STMT
, expr
);
1852 expr
= add_stmt (expr
);
1853 /* Mark the last statement so that we can recognize it as such at
1854 template-instantiation time. */
1855 EXPR_STMT_STMT_EXPR_RESULT (expr
) = 1;
1857 else if (VOID_TYPE_P (type
))
1859 /* Just treat this like an ordinary statement. */
1860 expr
= finish_expr_stmt (expr
);
1864 /* It actually has a value we need to deal with. First, force it
1865 to be an rvalue so that we won't need to build up a copy
1866 constructor call later when we try to assign it to something. */
1867 expr
= force_rvalue (expr
, tf_warning_or_error
);
1868 if (error_operand_p (expr
))
1869 return error_mark_node
;
1871 /* Update for array-to-pointer decay. */
1872 type
= TREE_TYPE (expr
);
1874 /* Wrap it in a CLEANUP_POINT_EXPR and add it to the list like a
1875 normal statement, but don't convert to void or actually add
1877 if (TREE_CODE (expr
) != CLEANUP_POINT_EXPR
)
1878 expr
= maybe_cleanup_point_expr (expr
);
1882 /* The type of the statement-expression is the type of the last
1884 TREE_TYPE (stmt_expr
) = type
;
1890 /* Finish a statement-expression. EXPR should be the value returned
1891 by the previous begin_stmt_expr. Returns an expression
1892 representing the statement-expression. */
1895 finish_stmt_expr (tree stmt_expr
, bool has_no_scope
)
1900 if (error_operand_p (stmt_expr
))
1902 pop_stmt_list (stmt_expr
);
1903 return error_mark_node
;
1906 gcc_assert (TREE_CODE (stmt_expr
) == STATEMENT_LIST
);
1908 type
= TREE_TYPE (stmt_expr
);
1909 result
= pop_stmt_list (stmt_expr
);
1910 TREE_TYPE (result
) = type
;
1912 if (processing_template_decl
)
1914 result
= build_min (STMT_EXPR
, type
, result
);
1915 TREE_SIDE_EFFECTS (result
) = 1;
1916 STMT_EXPR_NO_SCOPE (result
) = has_no_scope
;
1918 else if (CLASS_TYPE_P (type
))
1920 /* Wrap the statement-expression in a TARGET_EXPR so that the
1921 temporary object created by the final expression is destroyed at
1922 the end of the full-expression containing the
1923 statement-expression. */
1924 result
= force_target_expr (type
, result
, tf_warning_or_error
);
1930 /* Returns the expression which provides the value of STMT_EXPR. */
1933 stmt_expr_value_expr (tree stmt_expr
)
1935 tree t
= STMT_EXPR_STMT (stmt_expr
);
1937 if (TREE_CODE (t
) == BIND_EXPR
)
1938 t
= BIND_EXPR_BODY (t
);
1940 if (TREE_CODE (t
) == STATEMENT_LIST
&& STATEMENT_LIST_TAIL (t
))
1941 t
= STATEMENT_LIST_TAIL (t
)->stmt
;
1943 if (TREE_CODE (t
) == EXPR_STMT
)
1944 t
= EXPR_STMT_EXPR (t
);
1949 /* Return TRUE iff EXPR_STMT is an empty list of
1950 expression statements. */
1953 empty_expr_stmt_p (tree expr_stmt
)
1955 tree body
= NULL_TREE
;
1957 if (expr_stmt
== void_zero_node
)
1962 if (TREE_CODE (expr_stmt
) == EXPR_STMT
)
1963 body
= EXPR_STMT_EXPR (expr_stmt
);
1964 else if (TREE_CODE (expr_stmt
) == STATEMENT_LIST
)
1970 if (TREE_CODE (body
) == STATEMENT_LIST
)
1971 return tsi_end_p (tsi_start (body
));
1973 return empty_expr_stmt_p (body
);
1978 /* Perform Koenig lookup. FN is the postfix-expression representing
1979 the function (or functions) to call; ARGS are the arguments to the
1980 call; if INCLUDE_STD then the `std' namespace is automatically
1981 considered an associated namespace (used in range-based for loops).
1982 Returns the functions to be considered by overload resolution. */
1985 perform_koenig_lookup (tree fn
, vec
<tree
, va_gc
> *args
, bool include_std
,
1986 tsubst_flags_t complain
)
1988 tree identifier
= NULL_TREE
;
1989 tree functions
= NULL_TREE
;
1990 tree tmpl_args
= NULL_TREE
;
1991 bool template_id
= false;
1993 if (TREE_CODE (fn
) == TEMPLATE_ID_EXPR
)
1995 /* Use a separate flag to handle null args. */
1997 tmpl_args
= TREE_OPERAND (fn
, 1);
1998 fn
= TREE_OPERAND (fn
, 0);
2001 /* Find the name of the overloaded function. */
2002 if (identifier_p (fn
))
2004 else if (is_overloaded_fn (fn
))
2007 identifier
= DECL_NAME (get_first_fn (functions
));
2009 else if (DECL_P (fn
))
2012 identifier
= DECL_NAME (fn
);
2015 /* A call to a namespace-scope function using an unqualified name.
2017 Do Koenig lookup -- unless any of the arguments are
2019 if (!any_type_dependent_arguments_p (args
)
2020 && !any_dependent_template_arguments_p (tmpl_args
))
2022 fn
= lookup_arg_dependent (identifier
, functions
, args
, include_std
);
2025 /* The unqualified name could not be resolved. */
2027 fn
= unqualified_fn_lookup_error (identifier
);
2033 if (fn
&& template_id
)
2034 fn
= build2 (TEMPLATE_ID_EXPR
, unknown_type_node
, fn
, tmpl_args
);
2039 /* Generate an expression for `FN (ARGS)'. This may change the
2042 If DISALLOW_VIRTUAL is true, the call to FN will be not generated
2043 as a virtual call, even if FN is virtual. (This flag is set when
2044 encountering an expression where the function name is explicitly
2045 qualified. For example a call to `X::f' never generates a virtual
2048 Returns code for the call. */
2051 finish_call_expr (tree fn
, vec
<tree
, va_gc
> **args
, bool disallow_virtual
,
2052 bool koenig_p
, tsubst_flags_t complain
)
2056 vec
<tree
, va_gc
> *orig_args
= NULL
;
2058 if (fn
== error_mark_node
)
2059 return error_mark_node
;
2061 gcc_assert (!TYPE_P (fn
));
2065 if (processing_template_decl
)
2067 /* If the call expression is dependent, build a CALL_EXPR node
2068 with no type; type_dependent_expression_p recognizes
2069 expressions with no type as being dependent. */
2070 if (type_dependent_expression_p (fn
)
2071 || any_type_dependent_arguments_p (*args
)
2072 /* For a non-static member function that doesn't have an
2073 explicit object argument, we need to specifically
2074 test the type dependency of the "this" pointer because it
2075 is not included in *ARGS even though it is considered to
2076 be part of the list of arguments. Note that this is
2077 related to CWG issues 515 and 1005. */
2078 || (TREE_CODE (fn
) != COMPONENT_REF
2079 && non_static_member_function_p (fn
)
2080 && current_class_ref
2081 && type_dependent_expression_p (current_class_ref
)))
2083 result
= build_nt_call_vec (fn
, *args
);
2084 SET_EXPR_LOCATION (result
, EXPR_LOC_OR_HERE (fn
));
2085 KOENIG_LOOKUP_P (result
) = koenig_p
;
2090 tree fndecl
= OVL_CURRENT (fn
);
2091 if (TREE_CODE (fndecl
) != FUNCTION_DECL
2092 || !TREE_THIS_VOLATILE (fndecl
))
2098 current_function_returns_abnormally
= 1;
2102 orig_args
= make_tree_vector_copy (*args
);
2103 if (!BASELINK_P (fn
)
2104 && TREE_CODE (fn
) != PSEUDO_DTOR_EXPR
2105 && TREE_TYPE (fn
) != unknown_type_node
)
2106 fn
= build_non_dependent_expr (fn
);
2107 make_args_non_dependent (*args
);
2110 if (TREE_CODE (fn
) == COMPONENT_REF
)
2112 tree member
= TREE_OPERAND (fn
, 1);
2113 if (BASELINK_P (member
))
2115 tree object
= TREE_OPERAND (fn
, 0);
2116 return build_new_method_call (object
, member
,
2119 ? LOOKUP_NORMAL
| LOOKUP_NONVIRTUAL
2126 if (is_overloaded_fn (fn
))
2127 fn
= baselink_for_fns (fn
);
2130 if (BASELINK_P (fn
))
2134 /* A call to a member function. From [over.call.func]:
2136 If the keyword this is in scope and refers to the class of
2137 that member function, or a derived class thereof, then the
2138 function call is transformed into a qualified function call
2139 using (*this) as the postfix-expression to the left of the
2140 . operator.... [Otherwise] a contrived object of type T
2141 becomes the implied object argument.
2145 struct A { void f(); };
2146 struct B : public A {};
2147 struct C : public A { void g() { B::f(); }};
2149 "the class of that member function" refers to `A'. But 11.2
2150 [class.access.base] says that we need to convert 'this' to B* as
2151 part of the access, so we pass 'B' to maybe_dummy_object. */
2153 object
= maybe_dummy_object (BINFO_TYPE (BASELINK_ACCESS_BINFO (fn
)),
2156 if (processing_template_decl
)
2158 if (type_dependent_expression_p (object
))
2160 tree ret
= build_nt_call_vec (orig_fn
, orig_args
);
2161 release_tree_vector (orig_args
);
2164 object
= build_non_dependent_expr (object
);
2167 result
= build_new_method_call (object
, fn
, args
, NULL_TREE
,
2169 ? LOOKUP_NORMAL
|LOOKUP_NONVIRTUAL
2174 else if (is_overloaded_fn (fn
))
2176 /* If the function is an overloaded builtin, resolve it. */
2177 if (TREE_CODE (fn
) == FUNCTION_DECL
2178 && (DECL_BUILT_IN_CLASS (fn
) == BUILT_IN_NORMAL
2179 || DECL_BUILT_IN_CLASS (fn
) == BUILT_IN_MD
))
2180 result
= resolve_overloaded_builtin (input_location
, fn
, *args
);
2184 if (warn_sizeof_pointer_memaccess
2185 && !vec_safe_is_empty (*args
)
2186 && !processing_template_decl
)
2188 location_t sizeof_arg_loc
[3];
2191 for (i
= 0; i
< 3; i
++)
2195 sizeof_arg_loc
[i
] = UNKNOWN_LOCATION
;
2196 sizeof_arg
[i
] = NULL_TREE
;
2197 if (i
>= (*args
)->length ())
2200 if (TREE_CODE (t
) != SIZEOF_EXPR
)
2202 if (SIZEOF_EXPR_TYPE_P (t
))
2203 sizeof_arg
[i
] = TREE_TYPE (TREE_OPERAND (t
, 0));
2205 sizeof_arg
[i
] = TREE_OPERAND (t
, 0);
2206 sizeof_arg_loc
[i
] = EXPR_LOCATION (t
);
2208 sizeof_pointer_memaccess_warning
2209 (sizeof_arg_loc
, fn
, *args
,
2210 sizeof_arg
, same_type_ignoring_top_level_qualifiers_p
);
2213 /* A call to a namespace-scope function. */
2214 result
= build_new_function_call (fn
, args
, koenig_p
, complain
);
2217 else if (TREE_CODE (fn
) == PSEUDO_DTOR_EXPR
)
2219 if (!vec_safe_is_empty (*args
))
2220 error ("arguments to destructor are not allowed");
2221 /* Mark the pseudo-destructor call as having side-effects so
2222 that we do not issue warnings about its use. */
2223 result
= build1 (NOP_EXPR
,
2225 TREE_OPERAND (fn
, 0));
2226 TREE_SIDE_EFFECTS (result
) = 1;
2228 else if (CLASS_TYPE_P (TREE_TYPE (fn
)))
2229 /* If the "function" is really an object of class type, it might
2230 have an overloaded `operator ()'. */
2231 result
= build_op_call (fn
, args
, complain
);
2234 /* A call where the function is unknown. */
2235 result
= cp_build_function_call_vec (fn
, args
, complain
);
2237 if (processing_template_decl
&& result
!= error_mark_node
)
2239 if (TREE_CODE (result
) == INDIRECT_REF
)
2240 result
= TREE_OPERAND (result
, 0);
2241 result
= build_call_vec (TREE_TYPE (result
), orig_fn
, orig_args
);
2242 SET_EXPR_LOCATION (result
, input_location
);
2243 KOENIG_LOOKUP_P (result
) = koenig_p
;
2244 release_tree_vector (orig_args
);
2245 result
= convert_from_reference (result
);
2250 /* Free garbage OVERLOADs from arg-dependent lookup. */
2251 tree next
= NULL_TREE
;
2253 fn
&& TREE_CODE (fn
) == OVERLOAD
&& OVL_ARG_DEPENDENT (fn
);
2256 if (processing_template_decl
)
2257 /* In a template, we'll re-use them at instantiation time. */
2258 OVL_ARG_DEPENDENT (fn
) = false;
2261 next
= OVL_CHAIN (fn
);
2270 /* Finish a call to a postfix increment or decrement or EXPR. (Which
2271 is indicated by CODE, which should be POSTINCREMENT_EXPR or
2272 POSTDECREMENT_EXPR.) */
2275 finish_increment_expr (tree expr
, enum tree_code code
)
2277 return build_x_unary_op (input_location
, code
, expr
, tf_warning_or_error
);
2280 /* Finish a use of `this'. Returns an expression for `this'. */
2283 finish_this_expr (void)
2287 if (current_class_ptr
)
2289 tree type
= TREE_TYPE (current_class_ref
);
2291 /* In a lambda expression, 'this' refers to the captured 'this'. */
2292 if (LAMBDA_TYPE_P (type
))
2293 result
= lambda_expr_this_capture (CLASSTYPE_LAMBDA_EXPR (type
));
2295 result
= current_class_ptr
;
2298 else if (current_function_decl
2299 && DECL_STATIC_FUNCTION_P (current_function_decl
))
2301 error ("%<this%> is unavailable for static member functions");
2302 result
= error_mark_node
;
2306 if (current_function_decl
)
2307 error ("invalid use of %<this%> in non-member function");
2309 error ("invalid use of %<this%> at top level");
2310 result
= error_mark_node
;
2316 /* Finish a pseudo-destructor expression. If SCOPE is NULL, the
2317 expression was of the form `OBJECT.~DESTRUCTOR' where DESTRUCTOR is
2318 the TYPE for the type given. If SCOPE is non-NULL, the expression
2319 was of the form `OBJECT.SCOPE::~DESTRUCTOR'. */
2322 finish_pseudo_destructor_expr (tree object
, tree scope
, tree destructor
)
2324 if (object
== error_mark_node
|| destructor
== error_mark_node
)
2325 return error_mark_node
;
2327 gcc_assert (TYPE_P (destructor
));
2329 if (!processing_template_decl
)
2331 if (scope
== error_mark_node
)
2333 error ("invalid qualifying scope in pseudo-destructor name");
2334 return error_mark_node
;
2336 if (scope
&& TYPE_P (scope
) && !check_dtor_name (scope
, destructor
))
2338 error ("qualified type %qT does not match destructor name ~%qT",
2340 return error_mark_node
;
2344 /* [expr.pseudo] says both:
2346 The type designated by the pseudo-destructor-name shall be
2347 the same as the object type.
2351 The cv-unqualified versions of the object type and of the
2352 type designated by the pseudo-destructor-name shall be the
2355 We implement the more generous second sentence, since that is
2356 what most other compilers do. */
2357 if (!same_type_ignoring_top_level_qualifiers_p (TREE_TYPE (object
),
2360 error ("%qE is not of type %qT", object
, destructor
);
2361 return error_mark_node
;
2365 return build3 (PSEUDO_DTOR_EXPR
, void_type_node
, object
, scope
, destructor
);
2368 /* Finish an expression of the form CODE EXPR. */
2371 finish_unary_op_expr (location_t loc
, enum tree_code code
, tree expr
)
2373 tree result
= build_x_unary_op (loc
, code
, expr
, tf_warning_or_error
);
2374 if (TREE_OVERFLOW_P (result
) && !TREE_OVERFLOW_P (expr
))
2375 overflow_warning (input_location
, result
);
2380 /* Finish a compound-literal expression. TYPE is the type to which
2381 the CONSTRUCTOR in COMPOUND_LITERAL is being cast. */
2384 finish_compound_literal (tree type
, tree compound_literal
,
2385 tsubst_flags_t complain
)
2387 if (type
== error_mark_node
)
2388 return error_mark_node
;
2390 if (TREE_CODE (type
) == REFERENCE_TYPE
)
2393 = finish_compound_literal (TREE_TYPE (type
), compound_literal
,
2395 return cp_build_c_cast (type
, compound_literal
, complain
);
2398 if (!TYPE_OBJ_P (type
))
2400 if (complain
& tf_error
)
2401 error ("compound literal of non-object type %qT", type
);
2402 return error_mark_node
;
2405 if (processing_template_decl
)
2407 TREE_TYPE (compound_literal
) = type
;
2408 /* Mark the expression as a compound literal. */
2409 TREE_HAS_CONSTRUCTOR (compound_literal
) = 1;
2410 return compound_literal
;
2413 type
= complete_type (type
);
2415 if (TYPE_NON_AGGREGATE_CLASS (type
))
2417 /* Trying to deal with a CONSTRUCTOR instead of a TREE_LIST
2418 everywhere that deals with function arguments would be a pain, so
2419 just wrap it in a TREE_LIST. The parser set a flag so we know
2420 that it came from T{} rather than T({}). */
2421 CONSTRUCTOR_IS_DIRECT_INIT (compound_literal
) = 1;
2422 compound_literal
= build_tree_list (NULL_TREE
, compound_literal
);
2423 return build_functional_cast (type
, compound_literal
, complain
);
2426 if (TREE_CODE (type
) == ARRAY_TYPE
2427 && check_array_initializer (NULL_TREE
, type
, compound_literal
))
2428 return error_mark_node
;
2429 compound_literal
= reshape_init (type
, compound_literal
, complain
);
2430 if (SCALAR_TYPE_P (type
)
2431 && !BRACE_ENCLOSED_INITIALIZER_P (compound_literal
)
2432 && (complain
& tf_warning_or_error
))
2433 check_narrowing (type
, compound_literal
);
2434 if (TREE_CODE (type
) == ARRAY_TYPE
2435 && TYPE_DOMAIN (type
) == NULL_TREE
)
2437 cp_complete_array_type_or_error (&type
, compound_literal
,
2439 if (type
== error_mark_node
)
2440 return error_mark_node
;
2442 compound_literal
= digest_init (type
, compound_literal
, complain
);
2443 if (TREE_CODE (compound_literal
) == CONSTRUCTOR
)
2444 TREE_HAS_CONSTRUCTOR (compound_literal
) = true;
2445 /* Put static/constant array temporaries in static variables, but always
2446 represent class temporaries with TARGET_EXPR so we elide copies. */
2447 if ((!at_function_scope_p () || CP_TYPE_CONST_P (type
))
2448 && TREE_CODE (type
) == ARRAY_TYPE
2449 && !TYPE_HAS_NONTRIVIAL_DESTRUCTOR (type
)
2450 && initializer_constant_valid_p (compound_literal
, type
))
2452 tree decl
= create_temporary_var (type
);
2453 DECL_INITIAL (decl
) = compound_literal
;
2454 TREE_STATIC (decl
) = 1;
2455 if (literal_type_p (type
) && CP_TYPE_CONST_NON_VOLATILE_P (type
))
2457 /* 5.19 says that a constant expression can include an
2458 lvalue-rvalue conversion applied to "a glvalue of literal type
2459 that refers to a non-volatile temporary object initialized
2460 with a constant expression". Rather than try to communicate
2461 that this VAR_DECL is a temporary, just mark it constexpr. */
2462 DECL_DECLARED_CONSTEXPR_P (decl
) = true;
2463 DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (decl
) = true;
2464 TREE_CONSTANT (decl
) = true;
2466 cp_apply_type_quals_to_decl (cp_type_quals (type
), decl
);
2467 decl
= pushdecl_top_level (decl
);
2468 DECL_NAME (decl
) = make_anon_name ();
2469 SET_DECL_ASSEMBLER_NAME (decl
, DECL_NAME (decl
));
2473 return get_target_expr_sfinae (compound_literal
, complain
);
2476 /* Return the declaration for the function-name variable indicated by
2480 finish_fname (tree id
)
2484 decl
= fname_decl (input_location
, C_RID_CODE (id
), id
);
2485 if (processing_template_decl
&& current_function_decl
)
2486 decl
= DECL_NAME (decl
);
2490 /* Finish a translation unit. */
2493 finish_translation_unit (void)
2495 /* In case there were missing closebraces,
2496 get us back to the global binding level. */
2498 while (current_namespace
!= global_namespace
)
2501 /* Do file scope __FUNCTION__ et al. */
2502 finish_fname_decls ();
2505 /* Finish a template type parameter, specified as AGGR IDENTIFIER.
2506 Returns the parameter. */
2509 finish_template_type_parm (tree aggr
, tree identifier
)
2511 if (aggr
!= class_type_node
)
2513 permerror (input_location
, "template type parameters must use the keyword %<class%> or %<typename%>");
2514 aggr
= class_type_node
;
2517 return build_tree_list (aggr
, identifier
);
2520 /* Finish a template template parameter, specified as AGGR IDENTIFIER.
2521 Returns the parameter. */
2524 finish_template_template_parm (tree aggr
, tree identifier
)
2526 tree decl
= build_decl (input_location
,
2527 TYPE_DECL
, identifier
, NULL_TREE
);
2528 tree tmpl
= build_lang_decl (TEMPLATE_DECL
, identifier
, NULL_TREE
);
2529 DECL_TEMPLATE_PARMS (tmpl
) = current_template_parms
;
2530 DECL_TEMPLATE_RESULT (tmpl
) = decl
;
2531 DECL_ARTIFICIAL (decl
) = 1;
2532 end_template_decl ();
2534 gcc_assert (DECL_TEMPLATE_PARMS (tmpl
));
2536 check_default_tmpl_args (decl
, DECL_TEMPLATE_PARMS (tmpl
),
2537 /*is_primary=*/true, /*is_partial=*/false,
2540 return finish_template_type_parm (aggr
, tmpl
);
2543 /* ARGUMENT is the default-argument value for a template template
2544 parameter. If ARGUMENT is invalid, issue error messages and return
2545 the ERROR_MARK_NODE. Otherwise, ARGUMENT itself is returned. */
2548 check_template_template_default_arg (tree argument
)
2550 if (TREE_CODE (argument
) != TEMPLATE_DECL
2551 && TREE_CODE (argument
) != TEMPLATE_TEMPLATE_PARM
2552 && TREE_CODE (argument
) != UNBOUND_CLASS_TEMPLATE
)
2554 if (TREE_CODE (argument
) == TYPE_DECL
)
2555 error ("invalid use of type %qT as a default value for a template "
2556 "template-parameter", TREE_TYPE (argument
));
2558 error ("invalid default argument for a template template parameter");
2559 return error_mark_node
;
2565 /* Begin a class definition, as indicated by T. */
2568 begin_class_definition (tree t
)
2570 if (error_operand_p (t
) || error_operand_p (TYPE_MAIN_DECL (t
)))
2571 return error_mark_node
;
2573 if (processing_template_parmlist
)
2575 error ("definition of %q#T inside template parameter list", t
);
2576 return error_mark_node
;
2579 /* According to the C++ ABI, decimal classes defined in ISO/IEC TR 24733
2580 are passed the same as decimal scalar types. */
2581 if (TREE_CODE (t
) == RECORD_TYPE
2582 && !processing_template_decl
)
2584 tree ns
= TYPE_CONTEXT (t
);
2585 if (ns
&& TREE_CODE (ns
) == NAMESPACE_DECL
2586 && DECL_CONTEXT (ns
) == std_node
2588 && !strcmp (IDENTIFIER_POINTER (DECL_NAME (ns
)), "decimal"))
2590 const char *n
= TYPE_NAME_STRING (t
);
2591 if ((strcmp (n
, "decimal32") == 0)
2592 || (strcmp (n
, "decimal64") == 0)
2593 || (strcmp (n
, "decimal128") == 0))
2594 TYPE_TRANSPARENT_AGGR (t
) = 1;
2598 /* A non-implicit typename comes from code like:
2600 template <typename T> struct A {
2601 template <typename U> struct A<T>::B ...
2603 This is erroneous. */
2604 else if (TREE_CODE (t
) == TYPENAME_TYPE
)
2606 error ("invalid definition of qualified type %qT", t
);
2607 t
= error_mark_node
;
2610 if (t
== error_mark_node
|| ! MAYBE_CLASS_TYPE_P (t
))
2612 t
= make_class_type (RECORD_TYPE
);
2613 pushtag (make_anon_name (), t
, /*tag_scope=*/ts_current
);
2616 if (TYPE_BEING_DEFINED (t
))
2618 t
= make_class_type (TREE_CODE (t
));
2619 pushtag (TYPE_IDENTIFIER (t
), t
, /*tag_scope=*/ts_current
);
2621 maybe_process_partial_specialization (t
);
2623 TYPE_BEING_DEFINED (t
) = 1;
2625 if (flag_pack_struct
)
2628 TYPE_PACKED (t
) = 1;
2629 /* Even though the type is being defined for the first time
2630 here, there might have been a forward declaration, so there
2631 might be cv-qualified variants of T. */
2632 for (v
= TYPE_NEXT_VARIANT (t
); v
; v
= TYPE_NEXT_VARIANT (v
))
2633 TYPE_PACKED (v
) = 1;
2635 /* Reset the interface data, at the earliest possible
2636 moment, as it might have been set via a class foo;
2638 if (! TYPE_ANONYMOUS_P (t
))
2640 struct c_fileinfo
*finfo
= get_fileinfo (input_filename
);
2641 CLASSTYPE_INTERFACE_ONLY (t
) = finfo
->interface_only
;
2642 SET_CLASSTYPE_INTERFACE_UNKNOWN_X
2643 (t
, finfo
->interface_unknown
);
2645 reset_specialization();
2647 /* Make a declaration for this class in its own scope. */
2648 build_self_reference ();
2653 /* Finish the member declaration given by DECL. */
2656 finish_member_declaration (tree decl
)
2658 if (decl
== error_mark_node
|| decl
== NULL_TREE
)
2661 if (decl
== void_type_node
)
2662 /* The COMPONENT was a friend, not a member, and so there's
2663 nothing for us to do. */
2666 /* We should see only one DECL at a time. */
2667 gcc_assert (DECL_CHAIN (decl
) == NULL_TREE
);
2669 /* Set up access control for DECL. */
2671 = (current_access_specifier
== access_private_node
);
2672 TREE_PROTECTED (decl
)
2673 = (current_access_specifier
== access_protected_node
);
2674 if (TREE_CODE (decl
) == TEMPLATE_DECL
)
2676 TREE_PRIVATE (DECL_TEMPLATE_RESULT (decl
)) = TREE_PRIVATE (decl
);
2677 TREE_PROTECTED (DECL_TEMPLATE_RESULT (decl
)) = TREE_PROTECTED (decl
);
2680 /* Mark the DECL as a member of the current class, unless it's
2681 a member of an enumeration. */
2682 if (TREE_CODE (decl
) != CONST_DECL
)
2683 DECL_CONTEXT (decl
) = current_class_type
;
2685 /* Check for bare parameter packs in the member variable declaration. */
2686 if (TREE_CODE (decl
) == FIELD_DECL
)
2688 if (check_for_bare_parameter_packs (TREE_TYPE (decl
)))
2689 TREE_TYPE (decl
) = error_mark_node
;
2690 if (check_for_bare_parameter_packs (DECL_ATTRIBUTES (decl
)))
2691 DECL_ATTRIBUTES (decl
) = NULL_TREE
;
2696 A C language linkage is ignored for the names of class members
2697 and the member function type of class member functions. */
2698 if (DECL_LANG_SPECIFIC (decl
) && DECL_LANGUAGE (decl
) == lang_c
)
2699 SET_DECL_LANGUAGE (decl
, lang_cplusplus
);
2701 /* Put functions on the TYPE_METHODS list and everything else on the
2702 TYPE_FIELDS list. Note that these are built up in reverse order.
2703 We reverse them (to obtain declaration order) in finish_struct. */
2704 if (TREE_CODE (decl
) == FUNCTION_DECL
2705 || DECL_FUNCTION_TEMPLATE_P (decl
))
2707 /* We also need to add this function to the
2708 CLASSTYPE_METHOD_VEC. */
2709 if (add_method (current_class_type
, decl
, NULL_TREE
))
2711 DECL_CHAIN (decl
) = TYPE_METHODS (current_class_type
);
2712 TYPE_METHODS (current_class_type
) = decl
;
2714 maybe_add_class_template_decl_list (current_class_type
, decl
,
2718 /* Enter the DECL into the scope of the class. */
2719 else if (pushdecl_class_level (decl
))
2721 if (TREE_CODE (decl
) == USING_DECL
)
2723 /* For now, ignore class-scope USING_DECLS, so that
2724 debugging backends do not see them. */
2725 DECL_IGNORED_P (decl
) = 1;
2728 /* All TYPE_DECLs go at the end of TYPE_FIELDS. Ordinary fields
2729 go at the beginning. The reason is that lookup_field_1
2730 searches the list in order, and we want a field name to
2731 override a type name so that the "struct stat hack" will
2732 work. In particular:
2734 struct S { enum E { }; int E } s;
2737 is valid. In addition, the FIELD_DECLs must be maintained in
2738 declaration order so that class layout works as expected.
2739 However, we don't need that order until class layout, so we
2740 save a little time by putting FIELD_DECLs on in reverse order
2741 here, and then reversing them in finish_struct_1. (We could
2742 also keep a pointer to the correct insertion points in the
2745 if (TREE_CODE (decl
) == TYPE_DECL
)
2746 TYPE_FIELDS (current_class_type
)
2747 = chainon (TYPE_FIELDS (current_class_type
), decl
);
2750 DECL_CHAIN (decl
) = TYPE_FIELDS (current_class_type
);
2751 TYPE_FIELDS (current_class_type
) = decl
;
2754 maybe_add_class_template_decl_list (current_class_type
, decl
,
2759 note_decl_for_pch (decl
);
2762 /* DECL has been declared while we are building a PCH file. Perform
2763 actions that we might normally undertake lazily, but which can be
2764 performed now so that they do not have to be performed in
2765 translation units which include the PCH file. */
2768 note_decl_for_pch (tree decl
)
2770 gcc_assert (pch_file
);
2772 /* There's a good chance that we'll have to mangle names at some
2773 point, even if only for emission in debugging information. */
2774 if ((TREE_CODE (decl
) == VAR_DECL
2775 || TREE_CODE (decl
) == FUNCTION_DECL
)
2776 && !processing_template_decl
)
2780 /* Finish processing a complete template declaration. The PARMS are
2781 the template parameters. */
2784 finish_template_decl (tree parms
)
2787 end_template_decl ();
2789 end_specialization ();
2792 /* Finish processing a template-id (which names a type) of the form
2793 NAME < ARGS >. Return the TYPE_DECL for the type named by the
2794 template-id. If ENTERING_SCOPE is nonzero we are about to enter
2795 the scope of template-id indicated. */
2798 finish_template_type (tree name
, tree args
, int entering_scope
)
2802 type
= lookup_template_class (name
, args
,
2803 NULL_TREE
, NULL_TREE
, entering_scope
,
2804 tf_warning_or_error
| tf_user
);
2805 if (type
== error_mark_node
)
2807 else if (CLASS_TYPE_P (type
) && !alias_type_or_template_p (type
))
2808 return TYPE_STUB_DECL (type
);
2810 return TYPE_NAME (type
);
2813 /* Finish processing a BASE_CLASS with the indicated ACCESS_SPECIFIER.
2814 Return a TREE_LIST containing the ACCESS_SPECIFIER and the
2815 BASE_CLASS, or NULL_TREE if an error occurred. The
2816 ACCESS_SPECIFIER is one of
2817 access_{default,public,protected_private}_node. For a virtual base
2818 we set TREE_TYPE. */
2821 finish_base_specifier (tree base
, tree access
, bool virtual_p
)
2825 if (base
== error_mark_node
)
2827 error ("invalid base-class specification");
2830 else if (! MAYBE_CLASS_TYPE_P (base
))
2832 error ("%qT is not a class type", base
);
2837 if (cp_type_quals (base
) != 0)
2839 /* DR 484: Can a base-specifier name a cv-qualified
2841 base
= TYPE_MAIN_VARIANT (base
);
2843 result
= build_tree_list (access
, base
);
2845 TREE_TYPE (result
) = integer_type_node
;
2851 /* If FNS is a member function, a set of member functions, or a
2852 template-id referring to one or more member functions, return a
2853 BASELINK for FNS, incorporating the current access context.
2854 Otherwise, return FNS unchanged. */
2857 baselink_for_fns (tree fns
)
2862 if (BASELINK_P (fns
)
2863 || error_operand_p (fns
))
2866 scope
= ovl_scope (fns
);
2867 if (!CLASS_TYPE_P (scope
))
2870 cl
= currently_open_derived_class (scope
);
2873 cl
= TYPE_BINFO (cl
);
2874 return build_baselink (cl
, cl
, fns
, /*optype=*/NULL_TREE
);
2877 /* Returns true iff DECL is a variable from a function outside
2881 outer_var_p (tree decl
)
2883 return ((TREE_CODE (decl
) == VAR_DECL
|| TREE_CODE (decl
) == PARM_DECL
)
2884 && DECL_FUNCTION_SCOPE_P (decl
)
2885 && (DECL_CONTEXT (decl
) != current_function_decl
2886 || parsing_nsdmi ()));
2889 /* As above, but also checks that DECL is automatic. */
2892 outer_automatic_var_p (tree decl
)
2894 return (outer_var_p (decl
)
2895 && !TREE_STATIC (decl
));
2898 /* ID_EXPRESSION is a representation of parsed, but unprocessed,
2899 id-expression. (See cp_parser_id_expression for details.) SCOPE,
2900 if non-NULL, is the type or namespace used to explicitly qualify
2901 ID_EXPRESSION. DECL is the entity to which that name has been
2904 *CONSTANT_EXPRESSION_P is true if we are presently parsing a
2905 constant-expression. In that case, *NON_CONSTANT_EXPRESSION_P will
2906 be set to true if this expression isn't permitted in a
2907 constant-expression, but it is otherwise not set by this function.
2908 *ALLOW_NON_CONSTANT_EXPRESSION_P is true if we are parsing a
2909 constant-expression, but a non-constant expression is also
2912 DONE is true if this expression is a complete postfix-expression;
2913 it is false if this expression is followed by '->', '[', '(', etc.
2914 ADDRESS_P is true iff this expression is the operand of '&'.
2915 TEMPLATE_P is true iff the qualified-id was of the form
2916 "A::template B". TEMPLATE_ARG_P is true iff this qualified name
2917 appears as a template argument.
2919 If an error occurs, and it is the kind of error that might cause
2920 the parser to abort a tentative parse, *ERROR_MSG is filled in. It
2921 is the caller's responsibility to issue the message. *ERROR_MSG
2922 will be a string with static storage duration, so the caller need
2925 Return an expression for the entity, after issuing appropriate
2926 diagnostics. This function is also responsible for transforming a
2927 reference to a non-static member into a COMPONENT_REF that makes
2928 the use of "this" explicit.
2930 Upon return, *IDK will be filled in appropriately. */
2932 finish_id_expression (tree id_expression
,
2936 bool integral_constant_expression_p
,
2937 bool allow_non_integral_constant_expression_p
,
2938 bool *non_integral_constant_expression_p
,
2942 bool template_arg_p
,
2943 const char **error_msg
,
2944 location_t location
)
2946 decl
= strip_using_decl (decl
);
2948 /* Initialize the output parameters. */
2949 *idk
= CP_ID_KIND_NONE
;
2952 if (id_expression
== error_mark_node
)
2953 return error_mark_node
;
2954 /* If we have a template-id, then no further lookup is
2955 required. If the template-id was for a template-class, we
2956 will sometimes have a TYPE_DECL at this point. */
2957 else if (TREE_CODE (decl
) == TEMPLATE_ID_EXPR
2958 || TREE_CODE (decl
) == TYPE_DECL
)
2960 /* Look up the name. */
2963 if (decl
== error_mark_node
)
2965 /* Name lookup failed. */
2968 || (!dependent_type_p (scope
)
2969 && !(identifier_p (id_expression
)
2970 && IDENTIFIER_TYPENAME_P (id_expression
)
2971 && dependent_type_p (TREE_TYPE (id_expression
))))))
2973 /* If the qualifying type is non-dependent (and the name
2974 does not name a conversion operator to a dependent
2975 type), issue an error. */
2976 qualified_name_lookup_error (scope
, id_expression
, decl
, location
);
2977 return error_mark_node
;
2981 /* It may be resolved via Koenig lookup. */
2982 *idk
= CP_ID_KIND_UNQUALIFIED
;
2983 return id_expression
;
2986 decl
= id_expression
;
2988 /* If DECL is a variable that would be out of scope under
2989 ANSI/ISO rules, but in scope in the ARM, name lookup
2990 will succeed. Issue a diagnostic here. */
2992 decl
= check_for_out_of_scope_variable (decl
);
2994 /* Remember that the name was used in the definition of
2995 the current class so that we can check later to see if
2996 the meaning would have been different after the class
2997 was entirely defined. */
2998 if (!scope
&& decl
!= error_mark_node
&& identifier_p (id_expression
))
2999 maybe_note_name_used_in_class (id_expression
, decl
);
3001 /* Disallow uses of local variables from containing functions, except
3002 within lambda-expressions. */
3003 if (!outer_var_p (decl
)
3004 /* It's not a use (3.2) if we're in an unevaluated context. */
3005 || cp_unevaluated_operand
)
3007 else if (TREE_STATIC (decl
))
3009 if (processing_template_decl
)
3010 /* For a use of an outer static var, return the identifier so
3011 that we'll look it up again in the instantiation. */
3012 return id_expression
;
3016 tree context
= DECL_CONTEXT (decl
);
3017 tree containing_function
= current_function_decl
;
3018 tree lambda_stack
= NULL_TREE
;
3019 tree lambda_expr
= NULL_TREE
;
3020 tree initializer
= convert_from_reference (decl
);
3022 /* Mark it as used now even if the use is ill-formed. */
3025 /* Core issue 696: "[At the July 2009 meeting] the CWG expressed
3026 support for an approach in which a reference to a local
3027 [constant] automatic variable in a nested class or lambda body
3028 would enter the expression as an rvalue, which would reduce
3029 the complexity of the problem"
3031 FIXME update for final resolution of core issue 696. */
3032 if (decl_constant_var_p (decl
))
3034 if (processing_template_decl
)
3035 /* In a template, the constant value may not be in a usable
3036 form, so look it up again at instantiation time. */
3037 return id_expression
;
3039 return integral_constant_value (decl
);
3042 if (parsing_nsdmi ())
3043 containing_function
= NULL_TREE
;
3044 /* If we are in a lambda function, we can move out until we hit
3046 2. a non-lambda function, or
3047 3. a non-default capturing lambda function. */
3048 else while (context
!= containing_function
3049 && LAMBDA_FUNCTION_P (containing_function
))
3051 lambda_expr
= CLASSTYPE_LAMBDA_EXPR
3052 (DECL_CONTEXT (containing_function
));
3054 if (LAMBDA_EXPR_DEFAULT_CAPTURE_MODE (lambda_expr
)
3058 lambda_stack
= tree_cons (NULL_TREE
,
3063 = decl_function_context (containing_function
);
3066 if (context
== containing_function
)
3068 decl
= add_default_capture (lambda_stack
,
3069 /*id=*/DECL_NAME (decl
),
3072 else if (lambda_expr
)
3074 error ("%qD is not captured", decl
);
3075 return error_mark_node
;
3079 error (TREE_CODE (decl
) == VAR_DECL
3080 ? G_("use of local variable with automatic storage from containing function")
3081 : G_("use of parameter from containing function"));
3082 error (" %q+#D declared here", decl
);
3083 return error_mark_node
;
3087 /* Also disallow uses of function parameters outside the function
3088 body, except inside an unevaluated context (i.e. decltype). */
3089 if (TREE_CODE (decl
) == PARM_DECL
3090 && DECL_CONTEXT (decl
) == NULL_TREE
3091 && !cp_unevaluated_operand
)
3093 error ("use of parameter %qD outside function body", decl
);
3094 return error_mark_node
;
3098 /* If we didn't find anything, or what we found was a type,
3099 then this wasn't really an id-expression. */
3100 if (TREE_CODE (decl
) == TEMPLATE_DECL
3101 && !DECL_FUNCTION_TEMPLATE_P (decl
))
3103 *error_msg
= "missing template arguments";
3104 return error_mark_node
;
3106 else if (TREE_CODE (decl
) == TYPE_DECL
3107 || TREE_CODE (decl
) == NAMESPACE_DECL
)
3109 *error_msg
= "expected primary-expression";
3110 return error_mark_node
;
3113 /* If the name resolved to a template parameter, there is no
3114 need to look it up again later. */
3115 if ((TREE_CODE (decl
) == CONST_DECL
&& DECL_TEMPLATE_PARM_P (decl
))
3116 || TREE_CODE (decl
) == TEMPLATE_PARM_INDEX
)
3120 *idk
= CP_ID_KIND_NONE
;
3121 if (TREE_CODE (decl
) == TEMPLATE_PARM_INDEX
)
3122 decl
= TEMPLATE_PARM_DECL (decl
);
3123 r
= convert_from_reference (DECL_INITIAL (decl
));
3125 if (integral_constant_expression_p
3126 && !dependent_type_p (TREE_TYPE (decl
))
3127 && !(INTEGRAL_OR_ENUMERATION_TYPE_P (TREE_TYPE (r
))))
3129 if (!allow_non_integral_constant_expression_p
)
3130 error ("template parameter %qD of type %qT is not allowed in "
3131 "an integral constant expression because it is not of "
3132 "integral or enumeration type", decl
, TREE_TYPE (decl
));
3133 *non_integral_constant_expression_p
= true;
3141 /* If the declaration was explicitly qualified indicate
3142 that. The semantics of `A::f(3)' are different than
3143 `f(3)' if `f' is virtual. */
3145 ? CP_ID_KIND_QUALIFIED
3146 : (TREE_CODE (decl
) == TEMPLATE_ID_EXPR
3147 ? CP_ID_KIND_TEMPLATE_ID
3148 : CP_ID_KIND_UNQUALIFIED
));
3153 An id-expression is type-dependent if it contains an
3154 identifier that was declared with a dependent type.
3156 The standard is not very specific about an id-expression that
3157 names a set of overloaded functions. What if some of them
3158 have dependent types and some of them do not? Presumably,
3159 such a name should be treated as a dependent name. */
3160 /* Assume the name is not dependent. */
3161 dependent_p
= false;
3162 if (!processing_template_decl
)
3163 /* No names are dependent outside a template. */
3165 else if (TREE_CODE (decl
) == CONST_DECL
)
3166 /* We don't want to treat enumerators as dependent. */
3168 /* A template-id where the name of the template was not resolved
3169 is definitely dependent. */
3170 else if (TREE_CODE (decl
) == TEMPLATE_ID_EXPR
3171 && (identifier_p (TREE_OPERAND (decl
, 0))))
3173 /* For anything except an overloaded function, just check its
3175 else if (!is_overloaded_fn (decl
))
3177 = dependent_type_p (TREE_TYPE (decl
));
3178 /* For a set of overloaded functions, check each of the
3184 if (BASELINK_P (fns
))
3185 fns
= BASELINK_FUNCTIONS (fns
);
3187 /* For a template-id, check to see if the template
3188 arguments are dependent. */
3189 if (TREE_CODE (fns
) == TEMPLATE_ID_EXPR
)
3191 tree args
= TREE_OPERAND (fns
, 1);
3192 dependent_p
= any_dependent_template_arguments_p (args
);
3193 /* The functions are those referred to by the
3195 fns
= TREE_OPERAND (fns
, 0);
3198 /* If there are no dependent template arguments, go through
3199 the overloaded functions. */
3200 while (fns
&& !dependent_p
)
3202 tree fn
= OVL_CURRENT (fns
);
3204 /* Member functions of dependent classes are
3206 if (TREE_CODE (fn
) == FUNCTION_DECL
3207 && type_dependent_expression_p (fn
))
3209 else if (TREE_CODE (fn
) == TEMPLATE_DECL
3210 && dependent_template_p (fn
))
3213 fns
= OVL_NEXT (fns
);
3217 /* If the name was dependent on a template parameter, we will
3218 resolve the name at instantiation time. */
3221 /* Create a SCOPE_REF for qualified names, if the scope is
3227 if (address_p
&& done
)
3228 decl
= finish_qualified_id_expr (scope
, decl
,
3234 tree type
= NULL_TREE
;
3235 if (DECL_P (decl
) && !dependent_scope_p (scope
))
3236 type
= TREE_TYPE (decl
);
3237 decl
= build_qualified_name (type
,
3243 if (TREE_TYPE (decl
))
3244 decl
= convert_from_reference (decl
);
3247 /* A TEMPLATE_ID already contains all the information we
3249 if (TREE_CODE (id_expression
) == TEMPLATE_ID_EXPR
)
3250 return id_expression
;
3251 *idk
= CP_ID_KIND_UNQUALIFIED_DEPENDENT
;
3252 /* If we found a variable, then name lookup during the
3253 instantiation will always resolve to the same VAR_DECL
3254 (or an instantiation thereof). */
3255 if (TREE_CODE (decl
) == VAR_DECL
3256 || TREE_CODE (decl
) == PARM_DECL
)
3259 return convert_from_reference (decl
);
3261 /* The same is true for FIELD_DECL, but we also need to
3262 make sure that the syntax is correct. */
3263 else if (TREE_CODE (decl
) == FIELD_DECL
)
3265 /* Since SCOPE is NULL here, this is an unqualified name.
3266 Access checking has been performed during name lookup
3267 already. Turn off checking to avoid duplicate errors. */
3268 push_deferring_access_checks (dk_no_check
);
3269 decl
= finish_non_static_data_member
3271 /*qualifying_scope=*/NULL_TREE
);
3272 pop_deferring_access_checks ();
3275 return id_expression
;
3278 if (TREE_CODE (decl
) == NAMESPACE_DECL
)
3280 error ("use of namespace %qD as expression", decl
);
3281 return error_mark_node
;
3283 else if (DECL_CLASS_TEMPLATE_P (decl
))
3285 error ("use of class template %qT as expression", decl
);
3286 return error_mark_node
;
3288 else if (TREE_CODE (decl
) == TREE_LIST
)
3290 /* Ambiguous reference to base members. */
3291 error ("request for member %qD is ambiguous in "
3292 "multiple inheritance lattice", id_expression
);
3293 print_candidates (decl
);
3294 return error_mark_node
;
3297 /* Mark variable-like entities as used. Functions are similarly
3298 marked either below or after overload resolution. */
3299 if ((TREE_CODE (decl
) == VAR_DECL
3300 || TREE_CODE (decl
) == PARM_DECL
3301 || TREE_CODE (decl
) == CONST_DECL
3302 || TREE_CODE (decl
) == RESULT_DECL
)
3303 && !mark_used (decl
))
3304 return error_mark_node
;
3306 /* Only certain kinds of names are allowed in constant
3307 expression. Template parameters have already
3308 been handled above. */
3309 if (! error_operand_p (decl
)
3310 && integral_constant_expression_p
3311 && ! decl_constant_var_p (decl
)
3312 && TREE_CODE (decl
) != CONST_DECL
3313 && ! builtin_valid_in_constant_expr_p (decl
))
3315 if (!allow_non_integral_constant_expression_p
)
3317 error ("%qD cannot appear in a constant-expression", decl
);
3318 return error_mark_node
;
3320 *non_integral_constant_expression_p
= true;
3324 if (TREE_CODE (decl
) == VAR_DECL
3325 && !cp_unevaluated_operand
3326 && DECL_THREAD_LOCAL_P (decl
)
3327 && (wrap
= get_tls_wrapper_fn (decl
)))
3329 /* Replace an evaluated use of the thread_local variable with
3330 a call to its wrapper. */
3331 decl
= build_cxx_call (wrap
, 0, NULL
, tf_warning_or_error
);
3335 decl
= (adjust_result_of_qualified_name_lookup
3336 (decl
, scope
, current_nonlambda_class_type()));
3338 if (TREE_CODE (decl
) == FUNCTION_DECL
)
3342 decl
= finish_qualified_id_expr (scope
,
3349 decl
= convert_from_reference (decl
);
3351 else if (TREE_CODE (decl
) == FIELD_DECL
)
3353 /* Since SCOPE is NULL here, this is an unqualified name.
3354 Access checking has been performed during name lookup
3355 already. Turn off checking to avoid duplicate errors. */
3356 push_deferring_access_checks (dk_no_check
);
3357 decl
= finish_non_static_data_member (decl
, NULL_TREE
,
3358 /*qualifying_scope=*/NULL_TREE
);
3359 pop_deferring_access_checks ();
3361 else if (is_overloaded_fn (decl
))
3365 first_fn
= get_first_fn (decl
);
3366 if (TREE_CODE (first_fn
) == TEMPLATE_DECL
)
3367 first_fn
= DECL_TEMPLATE_RESULT (first_fn
);
3369 if (!really_overloaded_fn (decl
)
3370 && !mark_used (first_fn
))
3371 return error_mark_node
;
3374 && TREE_CODE (first_fn
) == FUNCTION_DECL
3375 && DECL_FUNCTION_MEMBER_P (first_fn
)
3376 && !shared_member_p (decl
))
3378 /* A set of member functions. */
3379 decl
= maybe_dummy_object (DECL_CONTEXT (first_fn
), 0);
3380 return finish_class_member_access_expr (decl
, id_expression
,
3381 /*template_p=*/false,
3382 tf_warning_or_error
);
3385 decl
= baselink_for_fns (decl
);
3389 if (DECL_P (decl
) && DECL_NONLOCAL (decl
)
3390 && DECL_CLASS_SCOPE_P (decl
))
3392 tree context
= context_for_name_lookup (decl
);
3393 if (context
!= current_class_type
)
3395 tree path
= currently_open_derived_class (context
);
3396 perform_or_defer_access_check (TYPE_BINFO (path
),
3398 tf_warning_or_error
);
3402 decl
= convert_from_reference (decl
);
3406 if (TREE_DEPRECATED (decl
))
3407 warn_deprecated_use (decl
, NULL_TREE
);
3412 /* Implement the __typeof keyword: Return the type of EXPR, suitable for
3413 use as a type-specifier. */
3416 finish_typeof (tree expr
)
3420 if (type_dependent_expression_p (expr
))
3422 type
= cxx_make_type (TYPEOF_TYPE
);
3423 TYPEOF_TYPE_EXPR (type
) = expr
;
3424 SET_TYPE_STRUCTURAL_EQUALITY (type
);
3429 expr
= mark_type_use (expr
);
3431 type
= unlowered_expr_type (expr
);
3433 if (!type
|| type
== unknown_type_node
)
3435 error ("type of %qE is unknown", expr
);
3436 return error_mark_node
;
3442 /* Implement the __underlying_type keyword: Return the underlying
3443 type of TYPE, suitable for use as a type-specifier. */
3446 finish_underlying_type (tree type
)
3448 tree underlying_type
;
3450 if (processing_template_decl
)
3452 underlying_type
= cxx_make_type (UNDERLYING_TYPE
);
3453 UNDERLYING_TYPE_TYPE (underlying_type
) = type
;
3454 SET_TYPE_STRUCTURAL_EQUALITY (underlying_type
);
3456 return underlying_type
;
3459 complete_type (type
);
3461 if (TREE_CODE (type
) != ENUMERAL_TYPE
)
3463 error ("%qT is not an enumeration type", type
);
3464 return error_mark_node
;
3467 underlying_type
= ENUM_UNDERLYING_TYPE (type
);
3469 /* Fixup necessary in this case because ENUM_UNDERLYING_TYPE
3470 includes TYPE_MIN_VALUE and TYPE_MAX_VALUE information.
3471 See finish_enum_value_list for details. */
3472 if (!ENUM_FIXED_UNDERLYING_TYPE_P (type
))
3474 = c_common_type_for_mode (TYPE_MODE (underlying_type
),
3475 TYPE_UNSIGNED (underlying_type
));
3477 return underlying_type
;
3480 /* Implement the __direct_bases keyword: Return the direct base classes
3484 calculate_direct_bases (tree type
)
3486 vec
<tree
, va_gc
> *vector
= make_tree_vector();
3487 tree bases_vec
= NULL_TREE
;
3488 vec
<tree
, va_gc
> *base_binfos
;
3492 complete_type (type
);
3494 if (!NON_UNION_CLASS_TYPE_P (type
))
3495 return make_tree_vec (0);
3497 base_binfos
= BINFO_BASE_BINFOS (TYPE_BINFO (type
));
3499 /* Virtual bases are initialized first */
3500 for (i
= 0; base_binfos
->iterate (i
, &binfo
); i
++)
3502 if (BINFO_VIRTUAL_P (binfo
))
3504 vec_safe_push (vector
, binfo
);
3508 /* Now non-virtuals */
3509 for (i
= 0; base_binfos
->iterate (i
, &binfo
); i
++)
3511 if (!BINFO_VIRTUAL_P (binfo
))
3513 vec_safe_push (vector
, binfo
);
3518 bases_vec
= make_tree_vec (vector
->length ());
3520 for (i
= 0; i
< vector
->length (); ++i
)
3522 TREE_VEC_ELT (bases_vec
, i
) = BINFO_TYPE ((*vector
)[i
]);
3527 /* Implement the __bases keyword: Return the base classes
3530 /* Find morally non-virtual base classes by walking binfo hierarchy */
3531 /* Virtual base classes are handled separately in finish_bases */
3534 dfs_calculate_bases_pre (tree binfo
, void * /*data_*/)
3536 /* Don't walk bases of virtual bases */
3537 return BINFO_VIRTUAL_P (binfo
) ? dfs_skip_bases
: NULL_TREE
;
3541 dfs_calculate_bases_post (tree binfo
, void *data_
)
3543 vec
<tree
, va_gc
> **data
= ((vec
<tree
, va_gc
> **) data_
);
3544 if (!BINFO_VIRTUAL_P (binfo
))
3546 vec_safe_push (*data
, BINFO_TYPE (binfo
));
3551 /* Calculates the morally non-virtual base classes of a class */
3552 static vec
<tree
, va_gc
> *
3553 calculate_bases_helper (tree type
)
3555 vec
<tree
, va_gc
> *vector
= make_tree_vector();
3557 /* Now add non-virtual base classes in order of construction */
3558 dfs_walk_all (TYPE_BINFO (type
),
3559 dfs_calculate_bases_pre
, dfs_calculate_bases_post
, &vector
);
3564 calculate_bases (tree type
)
3566 vec
<tree
, va_gc
> *vector
= make_tree_vector();
3567 tree bases_vec
= NULL_TREE
;
3569 vec
<tree
, va_gc
> *vbases
;
3570 vec
<tree
, va_gc
> *nonvbases
;
3573 complete_type (type
);
3575 if (!NON_UNION_CLASS_TYPE_P (type
))
3576 return make_tree_vec (0);
3578 /* First go through virtual base classes */
3579 for (vbases
= CLASSTYPE_VBASECLASSES (type
), i
= 0;
3580 vec_safe_iterate (vbases
, i
, &binfo
); i
++)
3582 vec
<tree
, va_gc
> *vbase_bases
;
3583 vbase_bases
= calculate_bases_helper (BINFO_TYPE (binfo
));
3584 vec_safe_splice (vector
, vbase_bases
);
3585 release_tree_vector (vbase_bases
);
3588 /* Now for the non-virtual bases */
3589 nonvbases
= calculate_bases_helper (type
);
3590 vec_safe_splice (vector
, nonvbases
);
3591 release_tree_vector (nonvbases
);
3593 /* Last element is entire class, so don't copy */
3594 bases_vec
= make_tree_vec (vector
->length () - 1);
3596 for (i
= 0; i
< vector
->length () - 1; ++i
)
3598 TREE_VEC_ELT (bases_vec
, i
) = (*vector
)[i
];
3600 release_tree_vector (vector
);
3605 finish_bases (tree type
, bool direct
)
3607 tree bases
= NULL_TREE
;
3609 if (!processing_template_decl
)
3611 /* Parameter packs can only be used in templates */
3612 error ("Parameter pack __bases only valid in template declaration");
3613 return error_mark_node
;
3616 bases
= cxx_make_type (BASES
);
3617 BASES_TYPE (bases
) = type
;
3618 BASES_DIRECT (bases
) = direct
;
3619 SET_TYPE_STRUCTURAL_EQUALITY (bases
);
3624 /* Perform C++-specific checks for __builtin_offsetof before calling
3628 finish_offsetof (tree expr
)
3630 if (TREE_CODE (expr
) == PSEUDO_DTOR_EXPR
)
3632 error ("cannot apply %<offsetof%> to destructor %<~%T%>",
3633 TREE_OPERAND (expr
, 2));
3634 return error_mark_node
;
3636 if (TREE_CODE (TREE_TYPE (expr
)) == FUNCTION_TYPE
3637 || TREE_CODE (TREE_TYPE (expr
)) == METHOD_TYPE
3638 || TREE_TYPE (expr
) == unknown_type_node
)
3640 if (TREE_CODE (expr
) == COMPONENT_REF
3641 || TREE_CODE (expr
) == COMPOUND_EXPR
)
3642 expr
= TREE_OPERAND (expr
, 1);
3643 error ("cannot apply %<offsetof%> to member function %qD", expr
);
3644 return error_mark_node
;
3646 if (REFERENCE_REF_P (expr
))
3647 expr
= TREE_OPERAND (expr
, 0);
3648 if (TREE_CODE (expr
) == COMPONENT_REF
)
3650 tree object
= TREE_OPERAND (expr
, 0);
3651 if (!complete_type_or_else (TREE_TYPE (object
), object
))
3652 return error_mark_node
;
3654 return fold_offsetof (expr
);
3657 /* Replace the AGGR_INIT_EXPR at *TP with an equivalent CALL_EXPR. This
3658 function is broken out from the above for the benefit of the tree-ssa
3662 simplify_aggr_init_expr (tree
*tp
)
3664 tree aggr_init_expr
= *tp
;
3666 /* Form an appropriate CALL_EXPR. */
3667 tree fn
= AGGR_INIT_EXPR_FN (aggr_init_expr
);
3668 tree slot
= AGGR_INIT_EXPR_SLOT (aggr_init_expr
);
3669 tree type
= TREE_TYPE (slot
);
3672 enum style_t
{ ctor
, arg
, pcc
} style
;
3674 if (AGGR_INIT_VIA_CTOR_P (aggr_init_expr
))
3676 #ifdef PCC_STATIC_STRUCT_RETURN
3682 gcc_assert (TREE_ADDRESSABLE (type
));
3686 call_expr
= build_call_array_loc (input_location
,
3687 TREE_TYPE (TREE_TYPE (TREE_TYPE (fn
))),
3689 aggr_init_expr_nargs (aggr_init_expr
),
3690 AGGR_INIT_EXPR_ARGP (aggr_init_expr
));
3691 TREE_NOTHROW (call_expr
) = TREE_NOTHROW (aggr_init_expr
);
3695 /* Replace the first argument to the ctor with the address of the
3697 cxx_mark_addressable (slot
);
3698 CALL_EXPR_ARG (call_expr
, 0) =
3699 build1 (ADDR_EXPR
, build_pointer_type (type
), slot
);
3701 else if (style
== arg
)
3703 /* Just mark it addressable here, and leave the rest to
3704 expand_call{,_inline}. */
3705 cxx_mark_addressable (slot
);
3706 CALL_EXPR_RETURN_SLOT_OPT (call_expr
) = true;
3707 call_expr
= build2 (INIT_EXPR
, TREE_TYPE (call_expr
), slot
, call_expr
);
3709 else if (style
== pcc
)
3711 /* If we're using the non-reentrant PCC calling convention, then we
3712 need to copy the returned value out of the static buffer into the
3714 push_deferring_access_checks (dk_no_check
);
3715 call_expr
= build_aggr_init (slot
, call_expr
,
3716 DIRECT_BIND
| LOOKUP_ONLYCONVERTING
,
3717 tf_warning_or_error
);
3718 pop_deferring_access_checks ();
3719 call_expr
= build2 (COMPOUND_EXPR
, TREE_TYPE (slot
), call_expr
, slot
);
3722 if (AGGR_INIT_ZERO_FIRST (aggr_init_expr
))
3724 tree init
= build_zero_init (type
, NULL_TREE
,
3725 /*static_storage_p=*/false);
3726 init
= build2 (INIT_EXPR
, void_type_node
, slot
, init
);
3727 call_expr
= build2 (COMPOUND_EXPR
, TREE_TYPE (call_expr
),
3734 /* Emit all thunks to FN that should be emitted when FN is emitted. */
3737 emit_associated_thunks (tree fn
)
3739 /* When we use vcall offsets, we emit thunks with the virtual
3740 functions to which they thunk. The whole point of vcall offsets
3741 is so that you can know statically the entire set of thunks that
3742 will ever be needed for a given virtual function, thereby
3743 enabling you to output all the thunks with the function itself. */
3744 if (DECL_VIRTUAL_P (fn
)
3745 /* Do not emit thunks for extern template instantiations. */
3746 && ! DECL_REALLY_EXTERN (fn
))
3750 for (thunk
= DECL_THUNKS (fn
); thunk
; thunk
= DECL_CHAIN (thunk
))
3752 if (!THUNK_ALIAS (thunk
))
3754 use_thunk (thunk
, /*emit_p=*/1);
3755 if (DECL_RESULT_THUNK_P (thunk
))
3759 for (probe
= DECL_THUNKS (thunk
);
3760 probe
; probe
= DECL_CHAIN (probe
))
3761 use_thunk (probe
, /*emit_p=*/1);
3765 gcc_assert (!DECL_THUNKS (thunk
));
3770 /* Returns true iff FUN is an instantiation of a constexpr function
3774 is_instantiation_of_constexpr (tree fun
)
3776 return (DECL_TEMPLOID_INSTANTIATION (fun
)
3777 && DECL_DECLARED_CONSTEXPR_P (DECL_TEMPLATE_RESULT
3778 (DECL_TI_TEMPLATE (fun
))));
3781 /* Generate RTL for FN. */
3784 expand_or_defer_fn_1 (tree fn
)
3786 /* When the parser calls us after finishing the body of a template
3787 function, we don't really want to expand the body. */
3788 if (processing_template_decl
)
3790 /* Normally, collection only occurs in rest_of_compilation. So,
3791 if we don't collect here, we never collect junk generated
3792 during the processing of templates until we hit a
3793 non-template function. It's not safe to do this inside a
3794 nested class, though, as the parser may have local state that
3795 is not a GC root. */
3796 if (!function_depth
)
3801 gcc_assert (DECL_SAVED_TREE (fn
));
3803 /* If this is a constructor or destructor body, we have to clone
3805 if (maybe_clone_body (fn
))
3807 /* We don't want to process FN again, so pretend we've written
3808 it out, even though we haven't. */
3809 TREE_ASM_WRITTEN (fn
) = 1;
3810 /* If this is an instantiation of a constexpr function, keep
3811 DECL_SAVED_TREE for explain_invalid_constexpr_fn. */
3812 if (!is_instantiation_of_constexpr (fn
))
3813 DECL_SAVED_TREE (fn
) = NULL_TREE
;
3817 /* We make a decision about linkage for these functions at the end
3818 of the compilation. Until that point, we do not want the back
3819 end to output them -- but we do want it to see the bodies of
3820 these functions so that it can inline them as appropriate. */
3821 if (DECL_DECLARED_INLINE_P (fn
) || DECL_IMPLICIT_INSTANTIATION (fn
))
3823 if (DECL_INTERFACE_KNOWN (fn
))
3824 /* We've already made a decision as to how this function will
3828 DECL_EXTERNAL (fn
) = 1;
3829 DECL_NOT_REALLY_EXTERN (fn
) = 1;
3830 note_vague_linkage_fn (fn
);
3831 /* A non-template inline function with external linkage will
3832 always be COMDAT. As we must eventually determine the
3833 linkage of all functions, and as that causes writes to
3834 the data mapped in from the PCH file, it's advantageous
3835 to mark the functions at this point. */
3836 if (!DECL_IMPLICIT_INSTANTIATION (fn
))
3838 /* This function must have external linkage, as
3839 otherwise DECL_INTERFACE_KNOWN would have been
3841 gcc_assert (TREE_PUBLIC (fn
));
3842 comdat_linkage (fn
);
3843 DECL_INTERFACE_KNOWN (fn
) = 1;
3847 import_export_decl (fn
);
3849 /* If the user wants us to keep all inline functions, then mark
3850 this function as needed so that finish_file will make sure to
3851 output it later. Similarly, all dllexport'd functions must
3852 be emitted; there may be callers in other DLLs. */
3853 if ((flag_keep_inline_functions
3854 && DECL_DECLARED_INLINE_P (fn
)
3855 && !DECL_REALLY_EXTERN (fn
))
3856 || (flag_keep_inline_dllexport
3857 && lookup_attribute ("dllexport", DECL_ATTRIBUTES (fn
))))
3860 DECL_EXTERNAL (fn
) = 0;
3864 /* There's no reason to do any of the work here if we're only doing
3865 semantic analysis; this code just generates RTL. */
3866 if (flag_syntax_only
)
3873 expand_or_defer_fn (tree fn
)
3875 if (expand_or_defer_fn_1 (fn
))
3879 /* Expand or defer, at the whim of the compilation unit manager. */
3880 cgraph_finalize_function (fn
, function_depth
> 1);
3881 emit_associated_thunks (fn
);
3891 hash_table
<pointer_hash
<tree_node
> > visited
;
3894 /* Helper function for walk_tree, used by finalize_nrv below. */
3897 finalize_nrv_r (tree
* tp
, int* walk_subtrees
, void* data
)
3899 struct nrv_data
*dp
= (struct nrv_data
*)data
;
3902 /* No need to walk into types. There wouldn't be any need to walk into
3903 non-statements, except that we have to consider STMT_EXPRs. */
3906 /* Change all returns to just refer to the RESULT_DECL; this is a nop,
3907 but differs from using NULL_TREE in that it indicates that we care
3908 about the value of the RESULT_DECL. */
3909 else if (TREE_CODE (*tp
) == RETURN_EXPR
)
3910 TREE_OPERAND (*tp
, 0) = dp
->result
;
3911 /* Change all cleanups for the NRV to only run when an exception is
3913 else if (TREE_CODE (*tp
) == CLEANUP_STMT
3914 && CLEANUP_DECL (*tp
) == dp
->var
)
3915 CLEANUP_EH_ONLY (*tp
) = 1;
3916 /* Replace the DECL_EXPR for the NRV with an initialization of the
3917 RESULT_DECL, if needed. */
3918 else if (TREE_CODE (*tp
) == DECL_EXPR
3919 && DECL_EXPR_DECL (*tp
) == dp
->var
)
3922 if (DECL_INITIAL (dp
->var
)
3923 && DECL_INITIAL (dp
->var
) != error_mark_node
)
3924 init
= build2 (INIT_EXPR
, void_type_node
, dp
->result
,
3925 DECL_INITIAL (dp
->var
));
3927 init
= build_empty_stmt (EXPR_LOCATION (*tp
));
3928 DECL_INITIAL (dp
->var
) = NULL_TREE
;
3929 SET_EXPR_LOCATION (init
, EXPR_LOCATION (*tp
));
3932 /* And replace all uses of the NRV with the RESULT_DECL. */
3933 else if (*tp
== dp
->var
)
3936 /* Avoid walking into the same tree more than once. Unfortunately, we
3937 can't just use walk_tree_without duplicates because it would only call
3938 us for the first occurrence of dp->var in the function body. */
3939 slot
= dp
->visited
.find_slot (*tp
, INSERT
);
3945 /* Keep iterating. */
3949 /* Called from finish_function to implement the named return value
3950 optimization by overriding all the RETURN_EXPRs and pertinent
3951 CLEANUP_STMTs and replacing all occurrences of VAR with RESULT, the
3952 RESULT_DECL for the function. */
3955 finalize_nrv (tree
*tp
, tree var
, tree result
)
3957 struct nrv_data data
;
3959 /* Copy name from VAR to RESULT. */
3960 DECL_NAME (result
) = DECL_NAME (var
);
3961 /* Don't forget that we take its address. */
3962 TREE_ADDRESSABLE (result
) = TREE_ADDRESSABLE (var
);
3963 /* Finally set DECL_VALUE_EXPR to avoid assigning
3964 a stack slot at -O0 for the original var and debug info
3965 uses RESULT location for VAR. */
3966 SET_DECL_VALUE_EXPR (var
, result
);
3967 DECL_HAS_VALUE_EXPR_P (var
) = 1;
3970 data
.result
= result
;
3971 data
.visited
.create (37);
3972 cp_walk_tree (tp
, finalize_nrv_r
, &data
, 0);
3973 data
.visited
.dispose ();
3976 /* Create CP_OMP_CLAUSE_INFO for clause C. Returns true if it is invalid. */
3979 cxx_omp_create_clause_info (tree c
, tree type
, bool need_default_ctor
,
3980 bool need_copy_ctor
, bool need_copy_assignment
)
3982 int save_errorcount
= errorcount
;
3985 /* Always allocate 3 elements for simplicity. These are the
3986 function decls for the ctor, dtor, and assignment op.
3987 This layout is known to the three lang hooks,
3988 cxx_omp_clause_default_init, cxx_omp_clause_copy_init,
3989 and cxx_omp_clause_assign_op. */
3990 info
= make_tree_vec (3);
3991 CP_OMP_CLAUSE_INFO (c
) = info
;
3993 if (need_default_ctor
|| need_copy_ctor
)
3995 if (need_default_ctor
)
3996 t
= get_default_ctor (type
);
3998 t
= get_copy_ctor (type
, tf_warning_or_error
);
4000 if (t
&& !trivial_fn_p (t
))
4001 TREE_VEC_ELT (info
, 0) = t
;
4004 if ((need_default_ctor
|| need_copy_ctor
)
4005 && TYPE_HAS_NONTRIVIAL_DESTRUCTOR (type
))
4006 TREE_VEC_ELT (info
, 1) = get_dtor (type
, tf_warning_or_error
);
4008 if (need_copy_assignment
)
4010 t
= get_copy_assign (type
);
4012 if (t
&& !trivial_fn_p (t
))
4013 TREE_VEC_ELT (info
, 2) = t
;
4016 return errorcount
!= save_errorcount
;
4019 /* For all elements of CLAUSES, validate them vs OpenMP constraints.
4020 Remove any elements from the list that are invalid. */
4023 finish_omp_clauses (tree clauses
)
4025 bitmap_head generic_head
, firstprivate_head
, lastprivate_head
;
4026 tree c
, t
, *pc
= &clauses
;
4029 bitmap_obstack_initialize (NULL
);
4030 bitmap_initialize (&generic_head
, &bitmap_default_obstack
);
4031 bitmap_initialize (&firstprivate_head
, &bitmap_default_obstack
);
4032 bitmap_initialize (&lastprivate_head
, &bitmap_default_obstack
);
4034 for (pc
= &clauses
, c
= clauses
; c
; c
= *pc
)
4036 bool remove
= false;
4038 switch (OMP_CLAUSE_CODE (c
))
4040 case OMP_CLAUSE_SHARED
:
4042 goto check_dup_generic
;
4043 case OMP_CLAUSE_PRIVATE
:
4045 goto check_dup_generic
;
4046 case OMP_CLAUSE_REDUCTION
:
4048 goto check_dup_generic
;
4049 case OMP_CLAUSE_COPYPRIVATE
:
4050 name
= "copyprivate";
4051 goto check_dup_generic
;
4052 case OMP_CLAUSE_COPYIN
:
4054 goto check_dup_generic
;
4056 t
= OMP_CLAUSE_DECL (c
);
4057 if (TREE_CODE (t
) != VAR_DECL
&& TREE_CODE (t
) != PARM_DECL
)
4059 if (processing_template_decl
)
4062 error ("%qD is not a variable in clause %qs", t
, name
);
4064 error ("%qE is not a variable in clause %qs", t
, name
);
4067 else if (bitmap_bit_p (&generic_head
, DECL_UID (t
))
4068 || bitmap_bit_p (&firstprivate_head
, DECL_UID (t
))
4069 || bitmap_bit_p (&lastprivate_head
, DECL_UID (t
)))
4071 error ("%qD appears more than once in data clauses", t
);
4075 bitmap_set_bit (&generic_head
, DECL_UID (t
));
4078 case OMP_CLAUSE_FIRSTPRIVATE
:
4079 t
= OMP_CLAUSE_DECL (c
);
4080 if (TREE_CODE (t
) != VAR_DECL
&& TREE_CODE (t
) != PARM_DECL
)
4082 if (processing_template_decl
)
4085 error ("%qD is not a variable in clause %<firstprivate%>", t
);
4087 error ("%qE is not a variable in clause %<firstprivate%>", t
);
4090 else if (bitmap_bit_p (&generic_head
, DECL_UID (t
))
4091 || bitmap_bit_p (&firstprivate_head
, DECL_UID (t
)))
4093 error ("%qD appears more than once in data clauses", t
);
4097 bitmap_set_bit (&firstprivate_head
, DECL_UID (t
));
4100 case OMP_CLAUSE_LASTPRIVATE
:
4101 t
= OMP_CLAUSE_DECL (c
);
4102 if (TREE_CODE (t
) != VAR_DECL
&& TREE_CODE (t
) != PARM_DECL
)
4104 if (processing_template_decl
)
4107 error ("%qD is not a variable in clause %<lastprivate%>", t
);
4109 error ("%qE is not a variable in clause %<lastprivate%>", t
);
4112 else if (bitmap_bit_p (&generic_head
, DECL_UID (t
))
4113 || bitmap_bit_p (&lastprivate_head
, DECL_UID (t
)))
4115 error ("%qD appears more than once in data clauses", t
);
4119 bitmap_set_bit (&lastprivate_head
, DECL_UID (t
));
4123 t
= OMP_CLAUSE_IF_EXPR (c
);
4124 t
= maybe_convert_cond (t
);
4125 if (t
== error_mark_node
)
4127 else if (!processing_template_decl
)
4128 t
= fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4129 OMP_CLAUSE_IF_EXPR (c
) = t
;
4132 case OMP_CLAUSE_FINAL
:
4133 t
= OMP_CLAUSE_FINAL_EXPR (c
);
4134 t
= maybe_convert_cond (t
);
4135 if (t
== error_mark_node
)
4137 else if (!processing_template_decl
)
4138 t
= fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4139 OMP_CLAUSE_FINAL_EXPR (c
) = t
;
4142 case OMP_CLAUSE_NUM_THREADS
:
4143 t
= OMP_CLAUSE_NUM_THREADS_EXPR (c
);
4144 if (t
== error_mark_node
)
4146 else if (!type_dependent_expression_p (t
)
4147 && !INTEGRAL_TYPE_P (TREE_TYPE (t
)))
4149 error ("num_threads expression must be integral");
4154 t
= mark_rvalue_use (t
);
4155 if (!processing_template_decl
)
4156 t
= fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4157 OMP_CLAUSE_NUM_THREADS_EXPR (c
) = t
;
4161 case OMP_CLAUSE_SCHEDULE
:
4162 t
= OMP_CLAUSE_SCHEDULE_CHUNK_EXPR (c
);
4165 else if (t
== error_mark_node
)
4167 else if (!type_dependent_expression_p (t
)
4168 && !INTEGRAL_TYPE_P (TREE_TYPE (t
)))
4170 error ("schedule chunk size expression must be integral");
4175 t
= mark_rvalue_use (t
);
4176 if (!processing_template_decl
)
4177 t
= fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4178 OMP_CLAUSE_SCHEDULE_CHUNK_EXPR (c
) = t
;
4182 case OMP_CLAUSE_NOWAIT
:
4183 case OMP_CLAUSE_ORDERED
:
4184 case OMP_CLAUSE_DEFAULT
:
4185 case OMP_CLAUSE_UNTIED
:
4186 case OMP_CLAUSE_COLLAPSE
:
4187 case OMP_CLAUSE_MERGEABLE
:
4195 *pc
= OMP_CLAUSE_CHAIN (c
);
4197 pc
= &OMP_CLAUSE_CHAIN (c
);
4200 for (pc
= &clauses
, c
= clauses
; c
; c
= *pc
)
4202 enum omp_clause_code c_kind
= OMP_CLAUSE_CODE (c
);
4203 bool remove
= false;
4204 bool need_complete_non_reference
= false;
4205 bool need_default_ctor
= false;
4206 bool need_copy_ctor
= false;
4207 bool need_copy_assignment
= false;
4208 bool need_implicitly_determined
= false;
4209 tree type
, inner_type
;
4213 case OMP_CLAUSE_SHARED
:
4215 need_implicitly_determined
= true;
4217 case OMP_CLAUSE_PRIVATE
:
4219 need_complete_non_reference
= true;
4220 need_default_ctor
= true;
4221 need_implicitly_determined
= true;
4223 case OMP_CLAUSE_FIRSTPRIVATE
:
4224 name
= "firstprivate";
4225 need_complete_non_reference
= true;
4226 need_copy_ctor
= true;
4227 need_implicitly_determined
= true;
4229 case OMP_CLAUSE_LASTPRIVATE
:
4230 name
= "lastprivate";
4231 need_complete_non_reference
= true;
4232 need_copy_assignment
= true;
4233 need_implicitly_determined
= true;
4235 case OMP_CLAUSE_REDUCTION
:
4237 need_implicitly_determined
= true;
4239 case OMP_CLAUSE_COPYPRIVATE
:
4240 name
= "copyprivate";
4241 need_copy_assignment
= true;
4243 case OMP_CLAUSE_COPYIN
:
4245 need_copy_assignment
= true;
4248 pc
= &OMP_CLAUSE_CHAIN (c
);
4252 t
= OMP_CLAUSE_DECL (c
);
4253 if (processing_template_decl
4254 && TREE_CODE (t
) != VAR_DECL
&& TREE_CODE (t
) != PARM_DECL
)
4256 pc
= &OMP_CLAUSE_CHAIN (c
);
4262 case OMP_CLAUSE_LASTPRIVATE
:
4263 if (!bitmap_bit_p (&firstprivate_head
, DECL_UID (t
)))
4264 need_default_ctor
= true;
4267 case OMP_CLAUSE_REDUCTION
:
4268 if (AGGREGATE_TYPE_P (TREE_TYPE (t
))
4269 || POINTER_TYPE_P (TREE_TYPE (t
)))
4271 error ("%qE has invalid type for %<reduction%>", t
);
4274 else if (FLOAT_TYPE_P (TREE_TYPE (t
)))
4276 enum tree_code r_code
= OMP_CLAUSE_REDUCTION_CODE (c
);
4286 error ("%qE has invalid type for %<reduction(%s)%>",
4287 t
, operator_name_info
[r_code
].name
);
4293 case OMP_CLAUSE_COPYIN
:
4294 if (TREE_CODE (t
) != VAR_DECL
|| !DECL_THREAD_LOCAL_P (t
))
4296 error ("%qE must be %<threadprivate%> for %<copyin%>", t
);
4305 if (need_complete_non_reference
|| need_copy_assignment
)
4307 t
= require_complete_type (t
);
4308 if (t
== error_mark_node
)
4310 else if (TREE_CODE (TREE_TYPE (t
)) == REFERENCE_TYPE
4311 && need_complete_non_reference
)
4313 error ("%qE has reference type for %qs", t
, name
);
4317 if (need_implicitly_determined
)
4319 const char *share_name
= NULL
;
4321 if (TREE_CODE (t
) == VAR_DECL
&& DECL_THREAD_LOCAL_P (t
))
4322 share_name
= "threadprivate";
4323 else switch (cxx_omp_predetermined_sharing (t
))
4325 case OMP_CLAUSE_DEFAULT_UNSPECIFIED
:
4327 case OMP_CLAUSE_DEFAULT_SHARED
:
4328 /* const vars may be specified in firstprivate clause. */
4329 if (OMP_CLAUSE_CODE (c
) == OMP_CLAUSE_FIRSTPRIVATE
4330 && cxx_omp_const_qual_no_mutable (t
))
4332 share_name
= "shared";
4334 case OMP_CLAUSE_DEFAULT_PRIVATE
:
4335 share_name
= "private";
4342 error ("%qE is predetermined %qs for %qs",
4343 t
, share_name
, name
);
4348 /* We're interested in the base element, not arrays. */
4349 inner_type
= type
= TREE_TYPE (t
);
4350 while (TREE_CODE (inner_type
) == ARRAY_TYPE
)
4351 inner_type
= TREE_TYPE (inner_type
);
4353 /* Check for special function availability by building a call to one.
4354 Save the results, because later we won't be in the right context
4355 for making these queries. */
4356 if (CLASS_TYPE_P (inner_type
)
4357 && COMPLETE_TYPE_P (inner_type
)
4358 && (need_default_ctor
|| need_copy_ctor
|| need_copy_assignment
)
4359 && !type_dependent_expression_p (t
)
4360 && cxx_omp_create_clause_info (c
, inner_type
, need_default_ctor
,
4361 need_copy_ctor
, need_copy_assignment
))
4365 *pc
= OMP_CLAUSE_CHAIN (c
);
4367 pc
= &OMP_CLAUSE_CHAIN (c
);
4370 bitmap_obstack_release (NULL
);
4374 /* For all variables in the tree_list VARS, mark them as thread local. */
4377 finish_omp_threadprivate (tree vars
)
4381 /* Mark every variable in VARS to be assigned thread local storage. */
4382 for (t
= vars
; t
; t
= TREE_CHAIN (t
))
4384 tree v
= TREE_PURPOSE (t
);
4386 if (error_operand_p (v
))
4388 else if (TREE_CODE (v
) != VAR_DECL
)
4389 error ("%<threadprivate%> %qD is not file, namespace "
4390 "or block scope variable", v
);
4391 /* If V had already been marked threadprivate, it doesn't matter
4392 whether it had been used prior to this point. */
4393 else if (TREE_USED (v
)
4394 && (DECL_LANG_SPECIFIC (v
) == NULL
4395 || !CP_DECL_THREADPRIVATE_P (v
)))
4396 error ("%qE declared %<threadprivate%> after first use", v
);
4397 else if (! TREE_STATIC (v
) && ! DECL_EXTERNAL (v
))
4398 error ("automatic variable %qE cannot be %<threadprivate%>", v
);
4399 else if (! COMPLETE_TYPE_P (complete_type (TREE_TYPE (v
))))
4400 error ("%<threadprivate%> %qE has incomplete type", v
);
4401 else if (TREE_STATIC (v
) && TYPE_P (CP_DECL_CONTEXT (v
))
4402 && CP_DECL_CONTEXT (v
) != current_class_type
)
4403 error ("%<threadprivate%> %qE directive not "
4404 "in %qT definition", v
, CP_DECL_CONTEXT (v
));
4407 /* Allocate a LANG_SPECIFIC structure for V, if needed. */
4408 if (DECL_LANG_SPECIFIC (v
) == NULL
)
4410 retrofit_lang_decl (v
);
4412 /* Make sure that DECL_DISCRIMINATOR_P continues to be true
4413 after the allocation of the lang_decl structure. */
4414 if (DECL_DISCRIMINATOR_P (v
))
4415 DECL_LANG_SPECIFIC (v
)->u
.base
.u2sel
= 1;
4418 if (! DECL_THREAD_LOCAL_P (v
))
4420 DECL_TLS_MODEL (v
) = decl_default_tls_model (v
);
4421 /* If rtl has been already set for this var, call
4422 make_decl_rtl once again, so that encode_section_info
4423 has a chance to look at the new decl flags. */
4424 if (DECL_RTL_SET_P (v
))
4427 CP_DECL_THREADPRIVATE_P (v
) = 1;
4432 /* Build an OpenMP structured block. */
4435 begin_omp_structured_block (void)
4437 return do_pushlevel (sk_omp
);
4441 finish_omp_structured_block (tree block
)
4443 return do_poplevel (block
);
4446 /* Similarly, except force the retention of the BLOCK. */
4449 begin_omp_parallel (void)
4451 keep_next_level (true);
4452 return begin_omp_structured_block ();
4456 finish_omp_parallel (tree clauses
, tree body
)
4460 body
= finish_omp_structured_block (body
);
4462 stmt
= make_node (OMP_PARALLEL
);
4463 TREE_TYPE (stmt
) = void_type_node
;
4464 OMP_PARALLEL_CLAUSES (stmt
) = clauses
;
4465 OMP_PARALLEL_BODY (stmt
) = body
;
4467 return add_stmt (stmt
);
4471 begin_omp_task (void)
4473 keep_next_level (true);
4474 return begin_omp_structured_block ();
4478 finish_omp_task (tree clauses
, tree body
)
4482 body
= finish_omp_structured_block (body
);
4484 stmt
= make_node (OMP_TASK
);
4485 TREE_TYPE (stmt
) = void_type_node
;
4486 OMP_TASK_CLAUSES (stmt
) = clauses
;
4487 OMP_TASK_BODY (stmt
) = body
;
4489 return add_stmt (stmt
);
4492 /* Helper function for finish_omp_for. Convert Ith random access iterator
4493 into integral iterator. Return FALSE if successful. */
4496 handle_omp_for_class_iterator (int i
, location_t locus
, tree declv
, tree initv
,
4497 tree condv
, tree incrv
, tree
*body
,
4498 tree
*pre_body
, tree clauses
)
4500 tree diff
, iter_init
, iter_incr
= NULL
, last
;
4501 tree incr_var
= NULL
, orig_pre_body
, orig_body
, c
;
4502 tree decl
= TREE_VEC_ELT (declv
, i
);
4503 tree init
= TREE_VEC_ELT (initv
, i
);
4504 tree cond
= TREE_VEC_ELT (condv
, i
);
4505 tree incr
= TREE_VEC_ELT (incrv
, i
);
4507 location_t elocus
= locus
;
4509 if (init
&& EXPR_HAS_LOCATION (init
))
4510 elocus
= EXPR_LOCATION (init
);
4512 switch (TREE_CODE (cond
))
4518 if (TREE_OPERAND (cond
, 1) == iter
)
4519 cond
= build2 (swap_tree_comparison (TREE_CODE (cond
)),
4520 TREE_TYPE (cond
), iter
, TREE_OPERAND (cond
, 0));
4521 if (TREE_OPERAND (cond
, 0) != iter
)
4522 cond
= error_mark_node
;
4525 tree tem
= build_x_binary_op (EXPR_LOCATION (cond
),
4528 TREE_OPERAND (cond
, 1), ERROR_MARK
,
4529 NULL
, tf_warning_or_error
);
4530 if (error_operand_p (tem
))
4535 cond
= error_mark_node
;
4538 if (cond
== error_mark_node
)
4540 error_at (elocus
, "invalid controlling predicate");
4543 diff
= build_x_binary_op (elocus
, MINUS_EXPR
, TREE_OPERAND (cond
, 1),
4544 ERROR_MARK
, iter
, ERROR_MARK
, NULL
,
4545 tf_warning_or_error
);
4546 if (error_operand_p (diff
))
4548 if (TREE_CODE (TREE_TYPE (diff
)) != INTEGER_TYPE
)
4550 error_at (elocus
, "difference between %qE and %qD does not have integer type",
4551 TREE_OPERAND (cond
, 1), iter
);
4555 switch (TREE_CODE (incr
))
4557 case PREINCREMENT_EXPR
:
4558 case PREDECREMENT_EXPR
:
4559 case POSTINCREMENT_EXPR
:
4560 case POSTDECREMENT_EXPR
:
4561 if (TREE_OPERAND (incr
, 0) != iter
)
4563 incr
= error_mark_node
;
4566 iter_incr
= build_x_unary_op (EXPR_LOCATION (incr
),
4567 TREE_CODE (incr
), iter
,
4568 tf_warning_or_error
);
4569 if (error_operand_p (iter_incr
))
4571 else if (TREE_CODE (incr
) == PREINCREMENT_EXPR
4572 || TREE_CODE (incr
) == POSTINCREMENT_EXPR
)
4573 incr
= integer_one_node
;
4575 incr
= integer_minus_one_node
;
4578 if (TREE_OPERAND (incr
, 0) != iter
)
4579 incr
= error_mark_node
;
4580 else if (TREE_CODE (TREE_OPERAND (incr
, 1)) == PLUS_EXPR
4581 || TREE_CODE (TREE_OPERAND (incr
, 1)) == MINUS_EXPR
)
4583 tree rhs
= TREE_OPERAND (incr
, 1);
4584 if (TREE_OPERAND (rhs
, 0) == iter
)
4586 if (TREE_CODE (TREE_TYPE (TREE_OPERAND (rhs
, 1)))
4588 incr
= error_mark_node
;
4591 iter_incr
= build_x_modify_expr (EXPR_LOCATION (rhs
),
4592 iter
, TREE_CODE (rhs
),
4593 TREE_OPERAND (rhs
, 1),
4594 tf_warning_or_error
);
4595 if (error_operand_p (iter_incr
))
4597 incr
= TREE_OPERAND (rhs
, 1);
4598 incr
= cp_convert (TREE_TYPE (diff
), incr
,
4599 tf_warning_or_error
);
4600 if (TREE_CODE (rhs
) == MINUS_EXPR
)
4602 incr
= build1 (NEGATE_EXPR
, TREE_TYPE (diff
), incr
);
4603 incr
= fold_if_not_in_template (incr
);
4605 if (TREE_CODE (incr
) != INTEGER_CST
4606 && (TREE_CODE (incr
) != NOP_EXPR
4607 || (TREE_CODE (TREE_OPERAND (incr
, 0))
4612 else if (TREE_OPERAND (rhs
, 1) == iter
)
4614 if (TREE_CODE (TREE_TYPE (TREE_OPERAND (rhs
, 0))) != INTEGER_TYPE
4615 || TREE_CODE (rhs
) != PLUS_EXPR
)
4616 incr
= error_mark_node
;
4619 iter_incr
= build_x_binary_op (EXPR_LOCATION (rhs
),
4621 TREE_OPERAND (rhs
, 0),
4624 tf_warning_or_error
);
4625 if (error_operand_p (iter_incr
))
4627 iter_incr
= build_x_modify_expr (EXPR_LOCATION (rhs
),
4630 tf_warning_or_error
);
4631 if (error_operand_p (iter_incr
))
4633 incr
= TREE_OPERAND (rhs
, 0);
4638 incr
= error_mark_node
;
4641 incr
= error_mark_node
;
4644 incr
= error_mark_node
;
4648 if (incr
== error_mark_node
)
4650 error_at (elocus
, "invalid increment expression");
4654 incr
= cp_convert (TREE_TYPE (diff
), incr
, tf_warning_or_error
);
4655 for (c
= clauses
; c
; c
= OMP_CLAUSE_CHAIN (c
))
4656 if (OMP_CLAUSE_CODE (c
) == OMP_CLAUSE_LASTPRIVATE
4657 && OMP_CLAUSE_DECL (c
) == iter
)
4660 decl
= create_temporary_var (TREE_TYPE (diff
));
4662 add_decl_expr (decl
);
4663 last
= create_temporary_var (TREE_TYPE (diff
));
4665 add_decl_expr (last
);
4666 if (c
&& iter_incr
== NULL
)
4668 incr_var
= create_temporary_var (TREE_TYPE (diff
));
4669 pushdecl (incr_var
);
4670 add_decl_expr (incr_var
);
4672 gcc_assert (stmts_are_full_exprs_p ());
4674 orig_pre_body
= *pre_body
;
4675 *pre_body
= push_stmt_list ();
4677 add_stmt (orig_pre_body
);
4679 finish_expr_stmt (build_x_modify_expr (elocus
,
4680 iter
, NOP_EXPR
, init
,
4681 tf_warning_or_error
));
4682 init
= build_int_cst (TREE_TYPE (diff
), 0);
4683 if (c
&& iter_incr
== NULL
)
4685 finish_expr_stmt (build_x_modify_expr (elocus
,
4687 incr
, tf_warning_or_error
));
4689 iter_incr
= build_x_modify_expr (elocus
,
4690 iter
, PLUS_EXPR
, incr
,
4691 tf_warning_or_error
);
4693 finish_expr_stmt (build_x_modify_expr (elocus
,
4694 last
, NOP_EXPR
, init
,
4695 tf_warning_or_error
));
4696 *pre_body
= pop_stmt_list (*pre_body
);
4698 cond
= cp_build_binary_op (elocus
,
4699 TREE_CODE (cond
), decl
, diff
,
4700 tf_warning_or_error
);
4701 incr
= build_modify_expr (elocus
, decl
, NULL_TREE
, PLUS_EXPR
,
4702 elocus
, incr
, NULL_TREE
);
4705 *body
= push_stmt_list ();
4706 iter_init
= build2 (MINUS_EXPR
, TREE_TYPE (diff
), decl
, last
);
4707 iter_init
= build_x_modify_expr (elocus
,
4708 iter
, PLUS_EXPR
, iter_init
,
4709 tf_warning_or_error
);
4710 iter_init
= build1 (NOP_EXPR
, void_type_node
, iter_init
);
4711 finish_expr_stmt (iter_init
);
4712 finish_expr_stmt (build_x_modify_expr (elocus
,
4713 last
, NOP_EXPR
, decl
,
4714 tf_warning_or_error
));
4715 add_stmt (orig_body
);
4716 *body
= pop_stmt_list (*body
);
4720 OMP_CLAUSE_LASTPRIVATE_STMT (c
) = push_stmt_list ();
4721 finish_expr_stmt (iter_incr
);
4722 OMP_CLAUSE_LASTPRIVATE_STMT (c
)
4723 = pop_stmt_list (OMP_CLAUSE_LASTPRIVATE_STMT (c
));
4726 TREE_VEC_ELT (declv
, i
) = decl
;
4727 TREE_VEC_ELT (initv
, i
) = init
;
4728 TREE_VEC_ELT (condv
, i
) = cond
;
4729 TREE_VEC_ELT (incrv
, i
) = incr
;
4734 /* Build and validate an OMP_FOR statement. CLAUSES, BODY, COND, INCR
4735 are directly for their associated operands in the statement. DECL
4736 and INIT are a combo; if DECL is NULL then INIT ought to be a
4737 MODIFY_EXPR, and the DECL should be extracted. PRE_BODY are
4738 optional statements that need to go before the loop into its
4742 finish_omp_for (location_t locus
, tree declv
, tree initv
, tree condv
,
4743 tree incrv
, tree body
, tree pre_body
, tree clauses
)
4745 tree omp_for
= NULL
, orig_incr
= NULL
;
4746 tree decl
, init
, cond
, incr
;
4750 gcc_assert (TREE_VEC_LENGTH (declv
) == TREE_VEC_LENGTH (initv
));
4751 gcc_assert (TREE_VEC_LENGTH (declv
) == TREE_VEC_LENGTH (condv
));
4752 gcc_assert (TREE_VEC_LENGTH (declv
) == TREE_VEC_LENGTH (incrv
));
4753 for (i
= 0; i
< TREE_VEC_LENGTH (declv
); i
++)
4755 decl
= TREE_VEC_ELT (declv
, i
);
4756 init
= TREE_VEC_ELT (initv
, i
);
4757 cond
= TREE_VEC_ELT (condv
, i
);
4758 incr
= TREE_VEC_ELT (incrv
, i
);
4764 switch (TREE_CODE (init
))
4767 decl
= TREE_OPERAND (init
, 0);
4768 init
= TREE_OPERAND (init
, 1);
4771 if (TREE_CODE (TREE_OPERAND (init
, 1)) == NOP_EXPR
)
4773 decl
= TREE_OPERAND (init
, 0);
4774 init
= TREE_OPERAND (init
, 2);
4784 "expected iteration declaration or initialization");
4789 if (init
&& EXPR_HAS_LOCATION (init
))
4790 elocus
= EXPR_LOCATION (init
);
4794 error_at (elocus
, "missing controlling predicate");
4800 error_at (elocus
, "missing increment expression");
4804 TREE_VEC_ELT (declv
, i
) = decl
;
4805 TREE_VEC_ELT (initv
, i
) = init
;
4808 if (dependent_omp_for_p (declv
, initv
, condv
, incrv
))
4812 stmt
= make_node (OMP_FOR
);
4814 for (i
= 0; i
< TREE_VEC_LENGTH (declv
); i
++)
4816 /* This is really just a place-holder. We'll be decomposing this
4817 again and going through the cp_build_modify_expr path below when
4818 we instantiate the thing. */
4819 TREE_VEC_ELT (initv
, i
)
4820 = build2 (MODIFY_EXPR
, void_type_node
, TREE_VEC_ELT (declv
, i
),
4821 TREE_VEC_ELT (initv
, i
));
4824 TREE_TYPE (stmt
) = void_type_node
;
4825 OMP_FOR_INIT (stmt
) = initv
;
4826 OMP_FOR_COND (stmt
) = condv
;
4827 OMP_FOR_INCR (stmt
) = incrv
;
4828 OMP_FOR_BODY (stmt
) = body
;
4829 OMP_FOR_PRE_BODY (stmt
) = pre_body
;
4830 OMP_FOR_CLAUSES (stmt
) = clauses
;
4832 SET_EXPR_LOCATION (stmt
, locus
);
4833 return add_stmt (stmt
);
4836 if (processing_template_decl
)
4837 orig_incr
= make_tree_vec (TREE_VEC_LENGTH (incrv
));
4839 for (i
= 0; i
< TREE_VEC_LENGTH (declv
); )
4841 decl
= TREE_VEC_ELT (declv
, i
);
4842 init
= TREE_VEC_ELT (initv
, i
);
4843 cond
= TREE_VEC_ELT (condv
, i
);
4844 incr
= TREE_VEC_ELT (incrv
, i
);
4846 TREE_VEC_ELT (orig_incr
, i
) = incr
;
4849 if (init
&& EXPR_HAS_LOCATION (init
))
4850 elocus
= EXPR_LOCATION (init
);
4854 error_at (elocus
, "expected iteration declaration or initialization");
4858 if (incr
&& TREE_CODE (incr
) == MODOP_EXPR
)
4861 TREE_VEC_ELT (orig_incr
, i
) = incr
;
4862 incr
= cp_build_modify_expr (TREE_OPERAND (incr
, 0),
4863 TREE_CODE (TREE_OPERAND (incr
, 1)),
4864 TREE_OPERAND (incr
, 2),
4865 tf_warning_or_error
);
4868 if (CLASS_TYPE_P (TREE_TYPE (decl
)))
4870 if (handle_omp_for_class_iterator (i
, locus
, declv
, initv
, condv
,
4871 incrv
, &body
, &pre_body
, clauses
))
4876 if (!INTEGRAL_TYPE_P (TREE_TYPE (decl
))
4877 && TREE_CODE (TREE_TYPE (decl
)) != POINTER_TYPE
)
4879 error_at (elocus
, "invalid type for iteration variable %qE", decl
);
4883 if (!processing_template_decl
)
4885 init
= fold_build_cleanup_point_expr (TREE_TYPE (init
), init
);
4886 init
= cp_build_modify_expr (decl
, NOP_EXPR
, init
, tf_warning_or_error
);
4889 init
= build2 (MODIFY_EXPR
, void_type_node
, decl
, init
);
4891 && TREE_SIDE_EFFECTS (cond
)
4892 && COMPARISON_CLASS_P (cond
)
4893 && !processing_template_decl
)
4895 tree t
= TREE_OPERAND (cond
, 0);
4896 if (TREE_SIDE_EFFECTS (t
)
4898 && (TREE_CODE (t
) != NOP_EXPR
4899 || TREE_OPERAND (t
, 0) != decl
))
4900 TREE_OPERAND (cond
, 0)
4901 = fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4903 t
= TREE_OPERAND (cond
, 1);
4904 if (TREE_SIDE_EFFECTS (t
)
4906 && (TREE_CODE (t
) != NOP_EXPR
4907 || TREE_OPERAND (t
, 0) != decl
))
4908 TREE_OPERAND (cond
, 1)
4909 = fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4911 if (decl
== error_mark_node
|| init
== error_mark_node
)
4914 TREE_VEC_ELT (declv
, i
) = decl
;
4915 TREE_VEC_ELT (initv
, i
) = init
;
4916 TREE_VEC_ELT (condv
, i
) = cond
;
4917 TREE_VEC_ELT (incrv
, i
) = incr
;
4921 if (IS_EMPTY_STMT (pre_body
))
4924 omp_for
= c_finish_omp_for (locus
, declv
, initv
, condv
, incrv
,
4927 if (omp_for
== NULL
)
4930 for (i
= 0; i
< TREE_VEC_LENGTH (OMP_FOR_INCR (omp_for
)); i
++)
4932 decl
= TREE_OPERAND (TREE_VEC_ELT (OMP_FOR_INIT (omp_for
), i
), 0);
4933 incr
= TREE_VEC_ELT (OMP_FOR_INCR (omp_for
), i
);
4935 if (TREE_CODE (incr
) != MODIFY_EXPR
)
4938 if (TREE_SIDE_EFFECTS (TREE_OPERAND (incr
, 1))
4939 && BINARY_CLASS_P (TREE_OPERAND (incr
, 1))
4940 && !processing_template_decl
)
4942 tree t
= TREE_OPERAND (TREE_OPERAND (incr
, 1), 0);
4943 if (TREE_SIDE_EFFECTS (t
)
4945 && (TREE_CODE (t
) != NOP_EXPR
4946 || TREE_OPERAND (t
, 0) != decl
))
4947 TREE_OPERAND (TREE_OPERAND (incr
, 1), 0)
4948 = fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4950 t
= TREE_OPERAND (TREE_OPERAND (incr
, 1), 1);
4951 if (TREE_SIDE_EFFECTS (t
)
4953 && (TREE_CODE (t
) != NOP_EXPR
4954 || TREE_OPERAND (t
, 0) != decl
))
4955 TREE_OPERAND (TREE_OPERAND (incr
, 1), 1)
4956 = fold_build_cleanup_point_expr (TREE_TYPE (t
), t
);
4960 TREE_VEC_ELT (OMP_FOR_INCR (omp_for
), i
) = TREE_VEC_ELT (orig_incr
, i
);
4962 if (omp_for
!= NULL
)
4963 OMP_FOR_CLAUSES (omp_for
) = clauses
;
4968 finish_omp_atomic (enum tree_code code
, enum tree_code opcode
, tree lhs
,
4969 tree rhs
, tree v
, tree lhs1
, tree rhs1
)
4984 dependent_p
= false;
4987 /* Even in a template, we can detect invalid uses of the atomic
4988 pragma if neither LHS nor RHS is type-dependent. */
4989 if (processing_template_decl
)
4991 dependent_p
= (type_dependent_expression_p (lhs
)
4992 || (rhs
&& type_dependent_expression_p (rhs
))
4993 || (v
&& type_dependent_expression_p (v
))
4994 || (lhs1
&& type_dependent_expression_p (lhs1
))
4995 || (rhs1
&& type_dependent_expression_p (rhs1
)));
4998 lhs
= build_non_dependent_expr (lhs
);
5000 rhs
= build_non_dependent_expr (rhs
);
5002 v
= build_non_dependent_expr (v
);
5004 lhs1
= build_non_dependent_expr (lhs1
);
5006 rhs1
= build_non_dependent_expr (rhs1
);
5011 stmt
= c_finish_omp_atomic (input_location
, code
, opcode
, lhs
, rhs
,
5013 if (stmt
== error_mark_node
)
5016 if (processing_template_decl
)
5018 if (code
== OMP_ATOMIC_READ
)
5020 stmt
= build_min_nt_loc (EXPR_LOCATION (orig_lhs
),
5021 OMP_ATOMIC_READ
, orig_lhs
);
5022 stmt
= build2 (MODIFY_EXPR
, void_type_node
, orig_v
, stmt
);
5026 if (opcode
== NOP_EXPR
)
5027 stmt
= build2 (MODIFY_EXPR
, void_type_node
, orig_lhs
, orig_rhs
);
5029 stmt
= build2 (opcode
, void_type_node
, orig_lhs
, orig_rhs
);
5031 stmt
= build_min_nt_loc (EXPR_LOCATION (orig_rhs1
),
5032 COMPOUND_EXPR
, orig_rhs1
, stmt
);
5033 if (code
!= OMP_ATOMIC
)
5035 stmt
= build_min_nt_loc (EXPR_LOCATION (orig_lhs1
),
5036 code
, orig_lhs1
, stmt
);
5037 stmt
= build2 (MODIFY_EXPR
, void_type_node
, orig_v
, stmt
);
5040 stmt
= build2 (OMP_ATOMIC
, void_type_node
, integer_zero_node
, stmt
);
5046 finish_omp_barrier (void)
5048 tree fn
= builtin_decl_explicit (BUILT_IN_GOMP_BARRIER
);
5049 vec
<tree
, va_gc
> *vec
= make_tree_vector ();
5050 tree stmt
= finish_call_expr (fn
, &vec
, false, false, tf_warning_or_error
);
5051 release_tree_vector (vec
);
5052 finish_expr_stmt (stmt
);
5056 finish_omp_flush (void)
5058 tree fn
= builtin_decl_explicit (BUILT_IN_SYNC_SYNCHRONIZE
);
5059 vec
<tree
, va_gc
> *vec
= make_tree_vector ();
5060 tree stmt
= finish_call_expr (fn
, &vec
, false, false, tf_warning_or_error
);
5061 release_tree_vector (vec
);
5062 finish_expr_stmt (stmt
);
5066 finish_omp_taskwait (void)
5068 tree fn
= builtin_decl_explicit (BUILT_IN_GOMP_TASKWAIT
);
5069 vec
<tree
, va_gc
> *vec
= make_tree_vector ();
5070 tree stmt
= finish_call_expr (fn
, &vec
, false, false, tf_warning_or_error
);
5071 release_tree_vector (vec
);
5072 finish_expr_stmt (stmt
);
5076 finish_omp_taskyield (void)
5078 tree fn
= builtin_decl_explicit (BUILT_IN_GOMP_TASKYIELD
);
5079 vec
<tree
, va_gc
> *vec
= make_tree_vector ();
5080 tree stmt
= finish_call_expr (fn
, &vec
, false, false, tf_warning_or_error
);
5081 release_tree_vector (vec
);
5082 finish_expr_stmt (stmt
);
5085 /* Begin a __transaction_atomic or __transaction_relaxed statement.
5086 If PCOMPOUND is non-null, this is for a function-transaction-block, and we
5087 should create an extra compound stmt. */
5090 begin_transaction_stmt (location_t loc
, tree
*pcompound
, int flags
)
5095 *pcompound
= begin_compound_stmt (0);
5097 r
= build_stmt (loc
, TRANSACTION_EXPR
, NULL_TREE
);
5099 /* Only add the statement to the function if support enabled. */
5103 error_at (loc
, ((flags
& TM_STMT_ATTR_RELAXED
) != 0
5104 ? G_("%<__transaction_relaxed%> without "
5105 "transactional memory support enabled")
5106 : G_("%<__transaction_atomic%> without "
5107 "transactional memory support enabled")));
5109 TRANSACTION_EXPR_BODY (r
) = push_stmt_list ();
5110 TREE_SIDE_EFFECTS (r
) = 1;
5114 /* End a __transaction_atomic or __transaction_relaxed statement.
5115 If COMPOUND_STMT is non-null, this is for a function-transaction-block,
5116 and we should end the compound. If NOEX is non-NULL, we wrap the body in
5117 a MUST_NOT_THROW_EXPR with NOEX as condition. */
5120 finish_transaction_stmt (tree stmt
, tree compound_stmt
, int flags
, tree noex
)
5122 TRANSACTION_EXPR_BODY (stmt
) = pop_stmt_list (TRANSACTION_EXPR_BODY (stmt
));
5123 TRANSACTION_EXPR_OUTER (stmt
) = (flags
& TM_STMT_ATTR_OUTER
) != 0;
5124 TRANSACTION_EXPR_RELAXED (stmt
) = (flags
& TM_STMT_ATTR_RELAXED
) != 0;
5125 TRANSACTION_EXPR_IS_STMT (stmt
) = 1;
5127 /* noexcept specifications are not allowed for function transactions. */
5128 gcc_assert (!(noex
&& compound_stmt
));
5131 tree body
= build_must_not_throw_expr (TRANSACTION_EXPR_BODY (stmt
),
5133 SET_EXPR_LOCATION (body
, EXPR_LOCATION (TRANSACTION_EXPR_BODY (stmt
)));
5134 TREE_SIDE_EFFECTS (body
) = 1;
5135 TRANSACTION_EXPR_BODY (stmt
) = body
;
5139 finish_compound_stmt (compound_stmt
);
5143 /* Build a __transaction_atomic or __transaction_relaxed expression. If
5144 NOEX is non-NULL, we wrap the body in a MUST_NOT_THROW_EXPR with NOEX as
5148 build_transaction_expr (location_t loc
, tree expr
, int flags
, tree noex
)
5153 expr
= build_must_not_throw_expr (expr
, noex
);
5154 SET_EXPR_LOCATION (expr
, loc
);
5155 TREE_SIDE_EFFECTS (expr
) = 1;
5157 ret
= build1 (TRANSACTION_EXPR
, TREE_TYPE (expr
), expr
);
5158 if (flags
& TM_STMT_ATTR_RELAXED
)
5159 TRANSACTION_EXPR_RELAXED (ret
) = 1;
5160 TREE_SIDE_EFFECTS (ret
) = 1;
5161 SET_EXPR_LOCATION (ret
, loc
);
5166 init_cp_semantics (void)
5170 /* Build a STATIC_ASSERT for a static assertion with the condition
5171 CONDITION and the message text MESSAGE. LOCATION is the location
5172 of the static assertion in the source code. When MEMBER_P, this
5173 static assertion is a member of a class. */
5175 finish_static_assert (tree condition
, tree message
, location_t location
,
5178 if (message
== NULL_TREE
5179 || message
== error_mark_node
5180 || condition
== NULL_TREE
5181 || condition
== error_mark_node
)
5184 if (check_for_bare_parameter_packs (condition
))
5185 condition
= error_mark_node
;
5187 if (type_dependent_expression_p (condition
)
5188 || value_dependent_expression_p (condition
))
5190 /* We're in a template; build a STATIC_ASSERT and put it in
5194 assertion
= make_node (STATIC_ASSERT
);
5195 STATIC_ASSERT_CONDITION (assertion
) = condition
;
5196 STATIC_ASSERT_MESSAGE (assertion
) = message
;
5197 STATIC_ASSERT_SOURCE_LOCATION (assertion
) = location
;
5200 maybe_add_class_template_decl_list (current_class_type
,
5204 add_stmt (assertion
);
5209 /* Fold the expression and convert it to a boolean value. */
5210 condition
= fold_non_dependent_expr (condition
);
5211 condition
= cp_convert (boolean_type_node
, condition
, tf_warning_or_error
);
5212 condition
= maybe_constant_value (condition
);
5214 if (TREE_CODE (condition
) == INTEGER_CST
&& !integer_zerop (condition
))
5215 /* Do nothing; the condition is satisfied. */
5219 location_t saved_loc
= input_location
;
5221 input_location
= location
;
5222 if (TREE_CODE (condition
) == INTEGER_CST
5223 && integer_zerop (condition
))
5224 /* Report the error. */
5225 error ("static assertion failed: %s", TREE_STRING_POINTER (message
));
5226 else if (condition
&& condition
!= error_mark_node
)
5228 error ("non-constant condition for static assertion");
5229 cxx_constant_value (condition
);
5231 input_location
= saved_loc
;
5235 /* Implements the C++0x decltype keyword. Returns the type of EXPR,
5236 suitable for use as a type-specifier.
5238 ID_EXPRESSION_OR_MEMBER_ACCESS_P is true when EXPR was parsed as an
5239 id-expression or a class member access, FALSE when it was parsed as
5240 a full expression. */
5243 finish_decltype_type (tree expr
, bool id_expression_or_member_access_p
,
5244 tsubst_flags_t complain
)
5246 tree type
= NULL_TREE
;
5248 if (!expr
|| error_operand_p (expr
))
5249 return error_mark_node
;
5252 || TREE_CODE (expr
) == TYPE_DECL
5253 || (TREE_CODE (expr
) == BIT_NOT_EXPR
5254 && TYPE_P (TREE_OPERAND (expr
, 0))))
5256 if (complain
& tf_error
)
5257 error ("argument to decltype must be an expression");
5258 return error_mark_node
;
5261 /* Depending on the resolution of DR 1172, we may later need to distinguish
5262 instantiation-dependent but not type-dependent expressions so that, say,
5263 A<decltype(sizeof(T))>::U doesn't require 'typename'. */
5264 if (instantiation_dependent_expression_p (expr
))
5266 type
= cxx_make_type (DECLTYPE_TYPE
);
5267 DECLTYPE_TYPE_EXPR (type
) = expr
;
5268 DECLTYPE_TYPE_ID_EXPR_OR_MEMBER_ACCESS_P (type
)
5269 = id_expression_or_member_access_p
;
5270 SET_TYPE_STRUCTURAL_EQUALITY (type
);
5275 /* The type denoted by decltype(e) is defined as follows: */
5277 expr
= resolve_nondeduced_context (expr
);
5279 if (type_unknown_p (expr
))
5281 if (complain
& tf_error
)
5282 error ("decltype cannot resolve address of overloaded function");
5283 return error_mark_node
;
5286 if (invalid_nonstatic_memfn_p (expr
, complain
))
5287 return error_mark_node
;
5289 /* To get the size of a static data member declared as an array of
5290 unknown bound, we need to instantiate it. */
5291 if (TREE_CODE (expr
) == VAR_DECL
5292 && VAR_HAD_UNKNOWN_BOUND (expr
)
5293 && DECL_TEMPLATE_INSTANTIATION (expr
))
5294 instantiate_decl (expr
, /*defer_ok*/true, /*expl_inst_mem*/false);
5296 if (id_expression_or_member_access_p
)
5298 /* If e is an id-expression or a class member access (5.2.5
5299 [expr.ref]), decltype(e) is defined as the type of the entity
5300 named by e. If there is no such entity, or e names a set of
5301 overloaded functions, the program is ill-formed. */
5302 if (identifier_p (expr
))
5303 expr
= lookup_name (expr
);
5305 if (TREE_CODE (expr
) == INDIRECT_REF
)
5306 /* This can happen when the expression is, e.g., "a.b". Just
5307 look at the underlying operand. */
5308 expr
= TREE_OPERAND (expr
, 0);
5310 if (TREE_CODE (expr
) == OFFSET_REF
5311 || TREE_CODE (expr
) == MEMBER_REF
5312 || TREE_CODE (expr
) == SCOPE_REF
)
5313 /* We're only interested in the field itself. If it is a
5314 BASELINK, we will need to see through it in the next
5316 expr
= TREE_OPERAND (expr
, 1);
5318 if (BASELINK_P (expr
))
5319 /* See through BASELINK nodes to the underlying function. */
5320 expr
= BASELINK_FUNCTIONS (expr
);
5322 switch (TREE_CODE (expr
))
5325 if (DECL_BIT_FIELD_TYPE (expr
))
5327 type
= DECL_BIT_FIELD_TYPE (expr
);
5330 /* Fall through for fields that aren't bitfields. */
5337 case TEMPLATE_PARM_INDEX
:
5338 expr
= mark_type_use (expr
);
5339 type
= TREE_TYPE (expr
);
5343 type
= error_mark_node
;
5347 mark_type_use (expr
);
5348 type
= is_bitfield_expr_with_lowered_type (expr
);
5350 type
= TREE_TYPE (TREE_OPERAND (expr
, 1));
5358 /* We can get here when the id-expression refers to an
5359 enumerator or non-type template parameter. */
5360 type
= TREE_TYPE (expr
);
5365 return error_mark_node
;
5370 /* Within a lambda-expression:
5372 Every occurrence of decltype((x)) where x is a possibly
5373 parenthesized id-expression that names an entity of
5374 automatic storage duration is treated as if x were
5375 transformed into an access to a corresponding data member
5376 of the closure type that would have been declared if x
5377 were a use of the denoted entity. */
5378 if (outer_automatic_var_p (expr
)
5379 && current_function_decl
5380 && LAMBDA_FUNCTION_P (current_function_decl
))
5381 type
= capture_decltype (expr
);
5382 else if (error_operand_p (expr
))
5383 type
= error_mark_node
;
5384 else if (expr
== current_class_ptr
)
5385 /* If the expression is just "this", we want the
5386 cv-unqualified pointer for the "this" type. */
5387 type
= TYPE_MAIN_VARIANT (TREE_TYPE (expr
));
5390 /* Otherwise, where T is the type of e, if e is an lvalue,
5391 decltype(e) is defined as T&; if an xvalue, T&&; otherwise, T. */
5392 cp_lvalue_kind clk
= lvalue_kind (expr
);
5393 type
= unlowered_expr_type (expr
);
5394 gcc_assert (TREE_CODE (type
) != REFERENCE_TYPE
);
5396 /* For vector types, pick a non-opaque variant. */
5397 if (TREE_CODE (type
) == VECTOR_TYPE
)
5398 type
= strip_typedefs (type
);
5400 if (clk
!= clk_none
&& !(clk
& clk_class
))
5401 type
= cp_build_reference_type (type
, (clk
& clk_rvalueref
));
5408 /* Called from trait_expr_value to evaluate either __has_nothrow_assign or
5409 __has_nothrow_copy, depending on assign_p. */
5412 classtype_has_nothrow_assign_or_copy_p (tree type
, bool assign_p
)
5419 ix
= lookup_fnfields_1 (type
, ansi_assopname (NOP_EXPR
));
5422 fns
= (*CLASSTYPE_METHOD_VEC (type
))[ix
];
5424 else if (TYPE_HAS_COPY_CTOR (type
))
5426 /* If construction of the copy constructor was postponed, create
5428 if (CLASSTYPE_LAZY_COPY_CTOR (type
))
5429 lazily_declare_fn (sfk_copy_constructor
, type
);
5430 if (CLASSTYPE_LAZY_MOVE_CTOR (type
))
5431 lazily_declare_fn (sfk_move_constructor
, type
);
5432 fns
= CLASSTYPE_CONSTRUCTORS (type
);
5437 for (; fns
; fns
= OVL_NEXT (fns
))
5439 tree fn
= OVL_CURRENT (fns
);
5443 if (copy_fn_p (fn
) == 0)
5446 else if (copy_fn_p (fn
) <= 0)
5449 maybe_instantiate_noexcept (fn
);
5450 if (!TYPE_NOTHROW_P (TREE_TYPE (fn
)))
5457 /* Actually evaluates the trait. */
5460 trait_expr_value (cp_trait_kind kind
, tree type1
, tree type2
)
5462 enum tree_code type_code1
;
5465 type_code1
= TREE_CODE (type1
);
5469 case CPTK_HAS_NOTHROW_ASSIGN
:
5470 type1
= strip_array_types (type1
);
5471 return (!CP_TYPE_CONST_P (type1
) && type_code1
!= REFERENCE_TYPE
5472 && (trait_expr_value (CPTK_HAS_TRIVIAL_ASSIGN
, type1
, type2
)
5473 || (CLASS_TYPE_P (type1
)
5474 && classtype_has_nothrow_assign_or_copy_p (type1
,
5477 case CPTK_HAS_TRIVIAL_ASSIGN
:
5478 /* ??? The standard seems to be missing the "or array of such a class
5479 type" wording for this trait. */
5480 type1
= strip_array_types (type1
);
5481 return (!CP_TYPE_CONST_P (type1
) && type_code1
!= REFERENCE_TYPE
5482 && (trivial_type_p (type1
)
5483 || (CLASS_TYPE_P (type1
)
5484 && TYPE_HAS_TRIVIAL_COPY_ASSIGN (type1
))));
5486 case CPTK_HAS_NOTHROW_CONSTRUCTOR
:
5487 type1
= strip_array_types (type1
);
5488 return (trait_expr_value (CPTK_HAS_TRIVIAL_CONSTRUCTOR
, type1
, type2
)
5489 || (CLASS_TYPE_P (type1
)
5490 && (t
= locate_ctor (type1
))
5491 && (maybe_instantiate_noexcept (t
),
5492 TYPE_NOTHROW_P (TREE_TYPE (t
)))));
5494 case CPTK_HAS_TRIVIAL_CONSTRUCTOR
:
5495 type1
= strip_array_types (type1
);
5496 return (trivial_type_p (type1
)
5497 || (CLASS_TYPE_P (type1
) && TYPE_HAS_TRIVIAL_DFLT (type1
)));
5499 case CPTK_HAS_NOTHROW_COPY
:
5500 type1
= strip_array_types (type1
);
5501 return (trait_expr_value (CPTK_HAS_TRIVIAL_COPY
, type1
, type2
)
5502 || (CLASS_TYPE_P (type1
)
5503 && classtype_has_nothrow_assign_or_copy_p (type1
, false)));
5505 case CPTK_HAS_TRIVIAL_COPY
:
5506 /* ??? The standard seems to be missing the "or array of such a class
5507 type" wording for this trait. */
5508 type1
= strip_array_types (type1
);
5509 return (trivial_type_p (type1
) || type_code1
== REFERENCE_TYPE
5510 || (CLASS_TYPE_P (type1
) && TYPE_HAS_TRIVIAL_COPY_CTOR (type1
)));
5512 case CPTK_HAS_TRIVIAL_DESTRUCTOR
:
5513 type1
= strip_array_types (type1
);
5514 return (trivial_type_p (type1
) || type_code1
== REFERENCE_TYPE
5515 || (CLASS_TYPE_P (type1
)
5516 && TYPE_HAS_TRIVIAL_DESTRUCTOR (type1
)));
5518 case CPTK_HAS_VIRTUAL_DESTRUCTOR
:
5519 return type_has_virtual_destructor (type1
);
5521 case CPTK_IS_ABSTRACT
:
5522 return (ABSTRACT_CLASS_TYPE_P (type1
));
5524 case CPTK_IS_BASE_OF
:
5525 return (NON_UNION_CLASS_TYPE_P (type1
) && NON_UNION_CLASS_TYPE_P (type2
)
5526 && DERIVED_FROM_P (type1
, type2
));
5529 return (NON_UNION_CLASS_TYPE_P (type1
));
5531 case CPTK_IS_CONVERTIBLE_TO
:
5536 return (NON_UNION_CLASS_TYPE_P (type1
) && CLASSTYPE_EMPTY_P (type1
));
5539 return (type_code1
== ENUMERAL_TYPE
);
5542 return (CLASS_TYPE_P (type1
) && CLASSTYPE_FINAL (type1
));
5544 case CPTK_IS_LITERAL_TYPE
:
5545 return (literal_type_p (type1
));
5548 return (pod_type_p (type1
));
5550 case CPTK_IS_POLYMORPHIC
:
5551 return (CLASS_TYPE_P (type1
) && TYPE_POLYMORPHIC_P (type1
));
5553 case CPTK_IS_STD_LAYOUT
:
5554 return (std_layout_type_p (type1
));
5556 case CPTK_IS_TRIVIAL
:
5557 return (trivial_type_p (type1
));
5560 return (type_code1
== UNION_TYPE
);
5568 /* If TYPE is an array of unknown bound, or (possibly cv-qualified)
5569 void, or a complete type, returns it, otherwise NULL_TREE. */
5572 check_trait_type (tree type
)
5574 if (TREE_CODE (type
) == ARRAY_TYPE
&& !TYPE_DOMAIN (type
)
5575 && COMPLETE_TYPE_P (TREE_TYPE (type
)))
5578 if (VOID_TYPE_P (type
))
5581 return complete_type_or_else (strip_array_types (type
), NULL_TREE
);
5584 /* Process a trait expression. */
5587 finish_trait_expr (cp_trait_kind kind
, tree type1
, tree type2
)
5589 gcc_assert (kind
== CPTK_HAS_NOTHROW_ASSIGN
5590 || kind
== CPTK_HAS_NOTHROW_CONSTRUCTOR
5591 || kind
== CPTK_HAS_NOTHROW_COPY
5592 || kind
== CPTK_HAS_TRIVIAL_ASSIGN
5593 || kind
== CPTK_HAS_TRIVIAL_CONSTRUCTOR
5594 || kind
== CPTK_HAS_TRIVIAL_COPY
5595 || kind
== CPTK_HAS_TRIVIAL_DESTRUCTOR
5596 || kind
== CPTK_HAS_VIRTUAL_DESTRUCTOR
5597 || kind
== CPTK_IS_ABSTRACT
5598 || kind
== CPTK_IS_BASE_OF
5599 || kind
== CPTK_IS_CLASS
5600 || kind
== CPTK_IS_CONVERTIBLE_TO
5601 || kind
== CPTK_IS_EMPTY
5602 || kind
== CPTK_IS_ENUM
5603 || kind
== CPTK_IS_FINAL
5604 || kind
== CPTK_IS_LITERAL_TYPE
5605 || kind
== CPTK_IS_POD
5606 || kind
== CPTK_IS_POLYMORPHIC
5607 || kind
== CPTK_IS_STD_LAYOUT
5608 || kind
== CPTK_IS_TRIVIAL
5609 || kind
== CPTK_IS_UNION
);
5611 if (kind
== CPTK_IS_CONVERTIBLE_TO
)
5613 sorry ("__is_convertible_to");
5614 return error_mark_node
;
5617 if (type1
== error_mark_node
5618 || ((kind
== CPTK_IS_BASE_OF
|| kind
== CPTK_IS_CONVERTIBLE_TO
)
5619 && type2
== error_mark_node
))
5620 return error_mark_node
;
5622 if (processing_template_decl
)
5624 tree trait_expr
= make_node (TRAIT_EXPR
);
5625 TREE_TYPE (trait_expr
) = boolean_type_node
;
5626 TRAIT_EXPR_TYPE1 (trait_expr
) = type1
;
5627 TRAIT_EXPR_TYPE2 (trait_expr
) = type2
;
5628 TRAIT_EXPR_KIND (trait_expr
) = kind
;
5634 case CPTK_HAS_NOTHROW_ASSIGN
:
5635 case CPTK_HAS_TRIVIAL_ASSIGN
:
5636 case CPTK_HAS_NOTHROW_CONSTRUCTOR
:
5637 case CPTK_HAS_TRIVIAL_CONSTRUCTOR
:
5638 case CPTK_HAS_NOTHROW_COPY
:
5639 case CPTK_HAS_TRIVIAL_COPY
:
5640 case CPTK_HAS_TRIVIAL_DESTRUCTOR
:
5641 case CPTK_HAS_VIRTUAL_DESTRUCTOR
:
5642 case CPTK_IS_ABSTRACT
:
5645 case CPTK_IS_LITERAL_TYPE
:
5647 case CPTK_IS_POLYMORPHIC
:
5648 case CPTK_IS_STD_LAYOUT
:
5649 case CPTK_IS_TRIVIAL
:
5650 if (!check_trait_type (type1
))
5651 return error_mark_node
;
5654 case CPTK_IS_BASE_OF
:
5655 if (NON_UNION_CLASS_TYPE_P (type1
) && NON_UNION_CLASS_TYPE_P (type2
)
5656 && !same_type_ignoring_top_level_qualifiers_p (type1
, type2
)
5657 && !complete_type_or_else (type2
, NULL_TREE
))
5658 /* We already issued an error. */
5659 return error_mark_node
;
5667 case CPTK_IS_CONVERTIBLE_TO
:
5672 return (trait_expr_value (kind
, type1
, type2
)
5673 ? boolean_true_node
: boolean_false_node
);
5676 /* Do-nothing variants of functions to handle pragma FLOAT_CONST_DECIMAL64,
5677 which is ignored for C++. */
5680 set_float_const_decimal64 (void)
5685 clear_float_const_decimal64 (void)
5690 float_const_decimal64_p (void)
5696 /* Return true if T is a literal type. */
5699 literal_type_p (tree t
)
5701 if (SCALAR_TYPE_P (t
)
5702 || TREE_CODE (t
) == VECTOR_TYPE
5703 || TREE_CODE (t
) == REFERENCE_TYPE
)
5705 if (CLASS_TYPE_P (t
))
5707 t
= complete_type (t
);
5708 gcc_assert (COMPLETE_TYPE_P (t
) || errorcount
);
5709 return CLASSTYPE_LITERAL_P (t
);
5711 if (TREE_CODE (t
) == ARRAY_TYPE
)
5712 return literal_type_p (strip_array_types (t
));
5716 /* If DECL is a variable declared `constexpr', require its type
5717 be literal. Return the DECL if OK, otherwise NULL. */
5720 ensure_literal_type_for_constexpr_object (tree decl
)
5722 tree type
= TREE_TYPE (decl
);
5723 if (TREE_CODE (decl
) == VAR_DECL
&& DECL_DECLARED_CONSTEXPR_P (decl
)
5724 && !processing_template_decl
)
5726 if (CLASS_TYPE_P (type
) && !COMPLETE_TYPE_P (complete_type (type
)))
5727 /* Don't complain here, we'll complain about incompleteness
5728 when we try to initialize the variable. */;
5729 else if (!literal_type_p (type
))
5731 error ("the type %qT of constexpr variable %qD is not literal",
5733 explain_non_literal_class (type
);
5740 /* Representation of entries in the constexpr function definition table. */
5742 typedef struct GTY(()) constexpr_fundef
{
5747 /* This table holds all constexpr function definitions seen in
5748 the current translation unit. */
5750 static GTY ((param_is (constexpr_fundef
))) htab_t constexpr_fundef_table
;
5752 /* Utility function used for managing the constexpr function table.
5753 Return true if the entries pointed to by P and Q are for the
5754 same constexpr function. */
5757 constexpr_fundef_equal (const void *p
, const void *q
)
5759 const constexpr_fundef
*lhs
= (const constexpr_fundef
*) p
;
5760 const constexpr_fundef
*rhs
= (const constexpr_fundef
*) q
;
5761 return lhs
->decl
== rhs
->decl
;
5764 /* Utility function used for managing the constexpr function table.
5765 Return a hash value for the entry pointed to by Q. */
5767 static inline hashval_t
5768 constexpr_fundef_hash (const void *p
)
5770 const constexpr_fundef
*fundef
= (const constexpr_fundef
*) p
;
5771 return DECL_UID (fundef
->decl
);
5774 /* Return a previously saved definition of function FUN. */
5776 static constexpr_fundef
*
5777 retrieve_constexpr_fundef (tree fun
)
5779 constexpr_fundef fundef
= { NULL
, NULL
};
5780 if (constexpr_fundef_table
== NULL
)
5784 return (constexpr_fundef
*) htab_find (constexpr_fundef_table
, &fundef
);
5787 /* Check whether the parameter and return types of FUN are valid for a
5788 constexpr function, and complain if COMPLAIN. */
5791 is_valid_constexpr_fn (tree fun
, bool complain
)
5793 tree parm
= FUNCTION_FIRST_USER_PARM (fun
);
5795 for (; parm
!= NULL
; parm
= TREE_CHAIN (parm
))
5796 if (!literal_type_p (TREE_TYPE (parm
)))
5801 error ("invalid type for parameter %d of constexpr "
5802 "function %q+#D", DECL_PARM_INDEX (parm
), fun
);
5803 explain_non_literal_class (TREE_TYPE (parm
));
5807 if (!DECL_CONSTRUCTOR_P (fun
))
5809 tree rettype
= TREE_TYPE (TREE_TYPE (fun
));
5810 if (!literal_type_p (rettype
))
5815 error ("invalid return type %qT of constexpr function %q+D",
5817 explain_non_literal_class (rettype
);
5821 if (DECL_NONSTATIC_MEMBER_FUNCTION_P (fun
)
5822 && !CLASSTYPE_LITERAL_P (DECL_CONTEXT (fun
)))
5827 error ("enclosing class of constexpr non-static member "
5828 "function %q+#D is not a literal type", fun
);
5829 explain_non_literal_class (DECL_CONTEXT (fun
));
5833 else if (CLASSTYPE_VBASECLASSES (DECL_CONTEXT (fun
)))
5837 error ("%q#T has virtual base classes", DECL_CONTEXT (fun
));
5843 /* Subroutine of build_data_member_initialization. MEMBER is a COMPONENT_REF
5844 for a member of an anonymous aggregate, INIT is the initializer for that
5845 member, and VEC_OUTER is the vector of constructor elements for the class
5846 whose constructor we are processing. Add the initializer to the vector
5847 and return true to indicate success. */
5850 build_anon_member_initialization (tree member
, tree init
,
5851 vec
<constructor_elt
, va_gc
> **vec_outer
)
5853 /* MEMBER presents the relevant fields from the inside out, but we need
5854 to build up the initializer from the outside in so that we can reuse
5855 previously built CONSTRUCTORs if this is, say, the second field in an
5856 anonymous struct. So we use a vec as a stack. */
5861 fields
.safe_push (TREE_OPERAND (member
, 1));
5862 member
= TREE_OPERAND (member
, 0);
5864 while (ANON_AGGR_TYPE_P (TREE_TYPE (member
)));
5866 /* VEC has the constructor elements vector for the context of FIELD.
5867 If FIELD is an anonymous aggregate, we will push inside it. */
5868 vec
<constructor_elt
, va_gc
> **vec
= vec_outer
;
5870 while (field
= fields
.pop(),
5871 ANON_AGGR_TYPE_P (TREE_TYPE (field
)))
5874 /* If there is already an outer constructor entry for the anonymous
5875 aggregate FIELD, use it; otherwise, insert one. */
5876 if (vec_safe_is_empty (*vec
)
5877 || (*vec
)->last().index
!= field
)
5879 ctor
= build_constructor (TREE_TYPE (field
), NULL
);
5880 CONSTRUCTOR_APPEND_ELT (*vec
, field
, ctor
);
5883 ctor
= (*vec
)->last().value
;
5884 vec
= &CONSTRUCTOR_ELTS (ctor
);
5887 /* Now we're at the innermost field, the one that isn't an anonymous
5888 aggregate. Add its initializer to the CONSTRUCTOR and we're done. */
5889 gcc_assert (fields
.is_empty());
5891 CONSTRUCTOR_APPEND_ELT (*vec
, field
, init
);
5896 /* Subroutine of build_constexpr_constructor_member_initializers.
5897 The expression tree T represents a data member initialization
5898 in a (constexpr) constructor definition. Build a pairing of
5899 the data member with its initializer, and prepend that pair
5900 to the existing initialization pair INITS. */
5903 build_data_member_initialization (tree t
, vec
<constructor_elt
, va_gc
> **vec
)
5906 if (TREE_CODE (t
) == CLEANUP_POINT_EXPR
)
5907 t
= TREE_OPERAND (t
, 0);
5908 if (TREE_CODE (t
) == EXPR_STMT
)
5909 t
= TREE_OPERAND (t
, 0);
5910 if (t
== error_mark_node
)
5912 if (TREE_CODE (t
) == STATEMENT_LIST
)
5914 tree_stmt_iterator i
;
5915 for (i
= tsi_start (t
); !tsi_end_p (i
); tsi_next (&i
))
5917 if (! build_data_member_initialization (tsi_stmt (i
), vec
))
5922 if (TREE_CODE (t
) == CLEANUP_STMT
)
5924 /* We can't see a CLEANUP_STMT in a constructor for a literal class,
5925 but we can in a constexpr constructor for a non-literal class. Just
5926 ignore it; either all the initialization will be constant, in which
5927 case the cleanup can't run, or it can't be constexpr.
5928 Still recurse into CLEANUP_BODY. */
5929 return build_data_member_initialization (CLEANUP_BODY (t
), vec
);
5931 if (TREE_CODE (t
) == CONVERT_EXPR
)
5932 t
= TREE_OPERAND (t
, 0);
5933 if (TREE_CODE (t
) == INIT_EXPR
5934 || TREE_CODE (t
) == MODIFY_EXPR
)
5936 member
= TREE_OPERAND (t
, 0);
5937 init
= unshare_expr (TREE_OPERAND (t
, 1));
5939 else if (TREE_CODE (t
) == CALL_EXPR
)
5941 member
= CALL_EXPR_ARG (t
, 0);
5942 /* We don't use build_cplus_new here because it complains about
5943 abstract bases. Leaving the call unwrapped means that it has the
5944 wrong type, but cxx_eval_constant_expression doesn't care. */
5945 init
= unshare_expr (t
);
5947 else if (TREE_CODE (t
) == DECL_EXPR
)
5948 /* Declaring a temporary, don't add it to the CONSTRUCTOR. */
5952 if (TREE_CODE (member
) == INDIRECT_REF
)
5953 member
= TREE_OPERAND (member
, 0);
5954 if (TREE_CODE (member
) == NOP_EXPR
)
5958 if (TREE_CODE (op
) == ADDR_EXPR
)
5960 gcc_assert (same_type_ignoring_top_level_qualifiers_p
5961 (TREE_TYPE (TREE_TYPE (op
)),
5962 TREE_TYPE (TREE_TYPE (member
))));
5963 /* Initializing a cv-qualified member; we need to look through
5967 else if (op
== current_class_ptr
5968 && (same_type_ignoring_top_level_qualifiers_p
5969 (TREE_TYPE (TREE_TYPE (member
)),
5970 current_class_type
)))
5971 /* Delegating constructor. */
5975 /* This is an initializer for an empty base; keep it for now so
5976 we can check it in cxx_eval_bare_aggregate. */
5977 gcc_assert (is_empty_class (TREE_TYPE (TREE_TYPE (member
))));
5980 if (TREE_CODE (member
) == ADDR_EXPR
)
5981 member
= TREE_OPERAND (member
, 0);
5982 if (TREE_CODE (member
) == COMPONENT_REF
)
5984 tree aggr
= TREE_OPERAND (member
, 0);
5985 if (TREE_CODE (aggr
) != COMPONENT_REF
)
5986 /* Normal member initialization. */
5987 member
= TREE_OPERAND (member
, 1);
5988 else if (ANON_AGGR_TYPE_P (TREE_TYPE (aggr
)))
5989 /* Initializing a member of an anonymous union. */
5990 return build_anon_member_initialization (member
, init
, vec
);
5992 /* We're initializing a vtable pointer in a base. Leave it as
5993 COMPONENT_REF so we remember the path to get to the vfield. */
5994 gcc_assert (TREE_TYPE (member
) == vtbl_ptr_type_node
);
5997 CONSTRUCTOR_APPEND_ELT (*vec
, member
, init
);
6001 /* Make sure that there are no statements after LAST in the constructor
6002 body represented by LIST. */
6005 check_constexpr_ctor_body (tree last
, tree list
)
6008 if (TREE_CODE (list
) == STATEMENT_LIST
)
6010 tree_stmt_iterator i
= tsi_last (list
);
6011 for (; !tsi_end_p (i
); tsi_prev (&i
))
6013 tree t
= tsi_stmt (i
);
6016 if (TREE_CODE (t
) == BIND_EXPR
)
6018 if (!check_constexpr_ctor_body (last
, BIND_EXPR_BODY (t
)))
6023 /* We currently allow typedefs and static_assert.
6024 FIXME allow them in the standard, too. */
6025 if (TREE_CODE (t
) != STATIC_ASSERT
)
6032 else if (list
!= last
6033 && TREE_CODE (list
) != STATIC_ASSERT
)
6037 error ("constexpr constructor does not have empty body");
6038 DECL_DECLARED_CONSTEXPR_P (current_function_decl
) = false;
6043 /* V is a vector of constructor elements built up for the base and member
6044 initializers of a constructor for TYPE. They need to be in increasing
6045 offset order, which they might not be yet if TYPE has a primary base
6046 which is not first in the base-clause or a vptr and at least one base
6047 all of which are non-primary. */
6049 static vec
<constructor_elt
, va_gc
> *
6050 sort_constexpr_mem_initializers (tree type
, vec
<constructor_elt
, va_gc
> *v
)
6052 tree pri
= CLASSTYPE_PRIMARY_BINFO (type
);
6054 constructor_elt elt
;
6058 field_type
= BINFO_TYPE (pri
);
6059 else if (TYPE_CONTAINS_VPTR_P (type
))
6060 field_type
= vtbl_ptr_type_node
;
6064 /* Find the element for the primary base or vptr and move it to the
6065 beginning of the vec. */
6066 vec
<constructor_elt
, va_gc
> &vref
= *v
;
6068 if (TREE_TYPE (vref
[i
].index
) == field_type
)
6075 vref
[i
] = vref
[i
-1];
6082 /* Build compile-time evalable representations of member-initializer list
6083 for a constexpr constructor. */
6086 build_constexpr_constructor_member_initializers (tree type
, tree body
)
6088 vec
<constructor_elt
, va_gc
> *vec
= NULL
;
6090 if (TREE_CODE (body
) == MUST_NOT_THROW_EXPR
6091 || TREE_CODE (body
) == EH_SPEC_BLOCK
)
6092 body
= TREE_OPERAND (body
, 0);
6093 if (TREE_CODE (body
) == STATEMENT_LIST
)
6094 body
= STATEMENT_LIST_HEAD (body
)->stmt
;
6095 body
= BIND_EXPR_BODY (body
);
6096 if (TREE_CODE (body
) == CLEANUP_POINT_EXPR
)
6098 body
= TREE_OPERAND (body
, 0);
6099 if (TREE_CODE (body
) == EXPR_STMT
)
6100 body
= TREE_OPERAND (body
, 0);
6101 if (TREE_CODE (body
) == INIT_EXPR
6102 && (same_type_ignoring_top_level_qualifiers_p
6103 (TREE_TYPE (TREE_OPERAND (body
, 0)),
6104 current_class_type
)))
6107 return TREE_OPERAND (body
, 1);
6109 ok
= build_data_member_initialization (body
, &vec
);
6111 else if (TREE_CODE (body
) == STATEMENT_LIST
)
6113 tree_stmt_iterator i
;
6114 for (i
= tsi_start (body
); !tsi_end_p (i
); tsi_next (&i
))
6116 ok
= build_data_member_initialization (tsi_stmt (i
), &vec
);
6121 else if (TREE_CODE (body
) == TRY_BLOCK
)
6123 error ("body of %<constexpr%> constructor cannot be "
6124 "a function-try-block");
6125 return error_mark_node
;
6127 else if (EXPR_P (body
))
6128 ok
= build_data_member_initialization (body
, &vec
);
6130 gcc_assert (errorcount
> 0);
6133 if (vec_safe_length (vec
) > 0)
6135 /* In a delegating constructor, return the target. */
6136 constructor_elt
*ce
= &(*vec
)[0];
6137 if (ce
->index
== current_class_ptr
)
6144 vec
= sort_constexpr_mem_initializers (type
, vec
);
6145 return build_constructor (type
, vec
);
6148 return error_mark_node
;
6151 /* Subroutine of register_constexpr_fundef. BODY is the body of a function
6152 declared to be constexpr, or a sub-statement thereof. Returns the
6153 return value if suitable, error_mark_node for a statement not allowed in
6154 a constexpr function, or NULL_TREE if no return value was found. */
6157 constexpr_fn_retval (tree body
)
6159 switch (TREE_CODE (body
))
6161 case STATEMENT_LIST
:
6163 tree_stmt_iterator i
;
6164 tree expr
= NULL_TREE
;
6165 for (i
= tsi_start (body
); !tsi_end_p (i
); tsi_next (&i
))
6167 tree s
= constexpr_fn_retval (tsi_stmt (i
));
6168 if (s
== error_mark_node
)
6169 return error_mark_node
;
6170 else if (s
== NULL_TREE
)
6171 /* Keep iterating. */;
6173 /* Multiple return statements. */
6174 return error_mark_node
;
6182 return unshare_expr (TREE_OPERAND (body
, 0));
6185 if (TREE_CODE (DECL_EXPR_DECL (body
)) == USING_DECL
)
6187 return error_mark_node
;
6189 case CLEANUP_POINT_EXPR
:
6190 return constexpr_fn_retval (TREE_OPERAND (body
, 0));
6196 return error_mark_node
;
6200 /* Subroutine of register_constexpr_fundef. BODY is the DECL_SAVED_TREE of
6201 FUN; do the necessary transformations to turn it into a single expression
6202 that we can store in the hash table. */
6205 massage_constexpr_body (tree fun
, tree body
)
6207 if (DECL_CONSTRUCTOR_P (fun
))
6208 body
= build_constexpr_constructor_member_initializers
6209 (DECL_CONTEXT (fun
), body
);
6212 if (TREE_CODE (body
) == EH_SPEC_BLOCK
)
6213 body
= EH_SPEC_STMTS (body
);
6214 if (TREE_CODE (body
) == MUST_NOT_THROW_EXPR
)
6215 body
= TREE_OPERAND (body
, 0);
6216 if (TREE_CODE (body
) == BIND_EXPR
)
6217 body
= BIND_EXPR_BODY (body
);
6218 body
= constexpr_fn_retval (body
);
6223 /* FUN is a constexpr constructor with massaged body BODY. Return true
6224 if some bases/fields are uninitialized, and complain if COMPLAIN. */
6227 cx_check_missing_mem_inits (tree fun
, tree body
, bool complain
)
6234 if (TREE_CODE (body
) != CONSTRUCTOR
)
6237 nelts
= CONSTRUCTOR_NELTS (body
);
6238 ctype
= DECL_CONTEXT (fun
);
6239 field
= TYPE_FIELDS (ctype
);
6241 if (TREE_CODE (ctype
) == UNION_TYPE
)
6243 if (nelts
== 0 && next_initializable_field (field
))
6246 error ("%<constexpr%> constructor for union %qT must "
6247 "initialize exactly one non-static data member", ctype
);
6254 for (i
= 0; i
<= nelts
; ++i
)
6261 index
= CONSTRUCTOR_ELT (body
, i
)->index
;
6262 /* Skip base and vtable inits. */
6263 if (TREE_CODE (index
) != FIELD_DECL
6264 || DECL_ARTIFICIAL (index
))
6267 for (; field
!= index
; field
= DECL_CHAIN (field
))
6270 if (TREE_CODE (field
) != FIELD_DECL
6271 || (DECL_C_BIT_FIELD (field
) && !DECL_NAME (field
))
6272 || DECL_ARTIFICIAL (field
))
6274 ftype
= strip_array_types (TREE_TYPE (field
));
6275 if (type_has_constexpr_default_constructor (ftype
))
6277 /* It's OK to skip a member with a trivial constexpr ctor.
6278 A constexpr ctor that isn't trivial should have been
6280 gcc_checking_assert (!TYPE_HAS_COMPLEX_DFLT (ftype
)
6281 || errorcount
!= 0);
6286 error ("uninitialized member %qD in %<constexpr%> constructor",
6290 if (field
== NULL_TREE
)
6292 field
= DECL_CHAIN (field
);
6298 /* We are processing the definition of the constexpr function FUN.
6299 Check that its BODY fulfills the propriate requirements and
6300 enter it in the constexpr function definition table.
6301 For constructor BODY is actually the TREE_LIST of the
6302 member-initializer list. */
6305 register_constexpr_fundef (tree fun
, tree body
)
6307 constexpr_fundef entry
;
6308 constexpr_fundef
**slot
;
6310 if (!is_valid_constexpr_fn (fun
, !DECL_GENERATED_P (fun
)))
6313 body
= massage_constexpr_body (fun
, body
);
6314 if (body
== NULL_TREE
|| body
== error_mark_node
)
6316 if (!DECL_CONSTRUCTOR_P (fun
))
6317 error ("body of constexpr function %qD not a return-statement", fun
);
6321 if (!potential_rvalue_constant_expression (body
))
6323 if (!DECL_GENERATED_P (fun
))
6324 require_potential_rvalue_constant_expression (body
);
6328 if (DECL_CONSTRUCTOR_P (fun
)
6329 && cx_check_missing_mem_inits (fun
, body
, !DECL_GENERATED_P (fun
)))
6332 /* Create the constexpr function table if necessary. */
6333 if (constexpr_fundef_table
== NULL
)
6334 constexpr_fundef_table
= htab_create_ggc (101,
6335 constexpr_fundef_hash
,
6336 constexpr_fundef_equal
,
6340 slot
= (constexpr_fundef
**)
6341 htab_find_slot (constexpr_fundef_table
, &entry
, INSERT
);
6343 gcc_assert (*slot
== NULL
);
6344 *slot
= ggc_alloc_constexpr_fundef ();
6350 /* FUN is a non-constexpr function called in a context that requires a
6351 constant expression. If it comes from a constexpr template, explain why
6352 the instantiation isn't constexpr. */
6355 explain_invalid_constexpr_fn (tree fun
)
6357 static struct pointer_set_t
*diagnosed
;
6359 location_t save_loc
;
6360 /* Only diagnose defaulted functions or instantiations. */
6361 if (!DECL_DEFAULTED_FN (fun
)
6362 && !is_instantiation_of_constexpr (fun
))
6364 if (diagnosed
== NULL
)
6365 diagnosed
= pointer_set_create ();
6366 if (pointer_set_insert (diagnosed
, fun
) != 0)
6367 /* Already explained. */
6370 save_loc
= input_location
;
6371 input_location
= DECL_SOURCE_LOCATION (fun
);
6372 inform (0, "%q+D is not usable as a constexpr function because:", fun
);
6373 /* First check the declaration. */
6374 if (is_valid_constexpr_fn (fun
, true))
6376 /* Then if it's OK, the body. */
6377 if (DECL_DEFAULTED_FN (fun
))
6378 explain_implicit_non_constexpr (fun
);
6381 body
= massage_constexpr_body (fun
, DECL_SAVED_TREE (fun
));
6382 require_potential_rvalue_constant_expression (body
);
6383 if (DECL_CONSTRUCTOR_P (fun
))
6384 cx_check_missing_mem_inits (fun
, body
, true);
6387 input_location
= save_loc
;
6390 /* Objects of this type represent calls to constexpr functions
6391 along with the bindings of parameters to their arguments, for
6392 the purpose of compile time evaluation. */
6394 typedef struct GTY(()) constexpr_call
{
6395 /* Description of the constexpr function definition. */
6396 constexpr_fundef
*fundef
;
6397 /* Parameter bindings environment. A TREE_LIST where each TREE_PURPOSE
6398 is a parameter _DECL and the TREE_VALUE is the value of the parameter.
6399 Note: This arrangement is made to accomodate the use of
6400 iterative_hash_template_arg (see pt.c). If you change this
6401 representation, also change the hash calculation in
6402 cxx_eval_call_expression. */
6404 /* Result of the call.
6405 NULL means the call is being evaluated.
6406 error_mark_node means that the evaluation was erroneous;
6407 otherwise, the actuall value of the call. */
6409 /* The hash of this call; we remember it here to avoid having to
6410 recalculate it when expanding the hash table. */
6414 /* A table of all constexpr calls that have been evaluated by the
6415 compiler in this translation unit. */
6417 static GTY ((param_is (constexpr_call
))) htab_t constexpr_call_table
;
6419 static tree
cxx_eval_constant_expression (const constexpr_call
*, tree
,
6420 bool, bool, bool *, bool *);
6422 /* Compute a hash value for a constexpr call representation. */
6425 constexpr_call_hash (const void *p
)
6427 const constexpr_call
*info
= (const constexpr_call
*) p
;
6431 /* Return 1 if the objects pointed to by P and Q represent calls
6432 to the same constexpr function with the same arguments.
6433 Otherwise, return 0. */
6436 constexpr_call_equal (const void *p
, const void *q
)
6438 const constexpr_call
*lhs
= (const constexpr_call
*) p
;
6439 const constexpr_call
*rhs
= (const constexpr_call
*) q
;
6444 if (!constexpr_fundef_equal (lhs
->fundef
, rhs
->fundef
))
6446 lhs_bindings
= lhs
->bindings
;
6447 rhs_bindings
= rhs
->bindings
;
6448 while (lhs_bindings
!= NULL
&& rhs_bindings
!= NULL
)
6450 tree lhs_arg
= TREE_VALUE (lhs_bindings
);
6451 tree rhs_arg
= TREE_VALUE (rhs_bindings
);
6452 gcc_assert (TREE_TYPE (lhs_arg
) == TREE_TYPE (rhs_arg
));
6453 if (!cp_tree_equal (lhs_arg
, rhs_arg
))
6455 lhs_bindings
= TREE_CHAIN (lhs_bindings
);
6456 rhs_bindings
= TREE_CHAIN (rhs_bindings
);
6458 return lhs_bindings
== rhs_bindings
;
6461 /* Initialize the constexpr call table, if needed. */
6464 maybe_initialize_constexpr_call_table (void)
6466 if (constexpr_call_table
== NULL
)
6467 constexpr_call_table
= htab_create_ggc (101,
6468 constexpr_call_hash
,
6469 constexpr_call_equal
,
6473 /* Return true if T designates the implied `this' parameter. */
6476 is_this_parameter (tree t
)
6478 return t
== current_class_ptr
;
6481 /* We have an expression tree T that represents a call, either CALL_EXPR
6482 or AGGR_INIT_EXPR. If the call is lexically to a named function,
6483 retrun the _DECL for that function. */
6486 get_function_named_in_call (tree t
)
6489 switch (TREE_CODE (t
))
6492 fun
= CALL_EXPR_FN (t
);
6495 case AGGR_INIT_EXPR
:
6496 fun
= AGGR_INIT_EXPR_FN (t
);
6503 if (TREE_CODE (fun
) == ADDR_EXPR
6504 && TREE_CODE (TREE_OPERAND (fun
, 0)) == FUNCTION_DECL
)
6505 fun
= TREE_OPERAND (fun
, 0);
6509 /* We have an expression tree T that represents a call, either CALL_EXPR
6510 or AGGR_INIT_EXPR. Return the Nth argument. */
6513 get_nth_callarg (tree t
, int n
)
6515 switch (TREE_CODE (t
))
6518 return CALL_EXPR_ARG (t
, n
);
6520 case AGGR_INIT_EXPR
:
6521 return AGGR_INIT_EXPR_ARG (t
, n
);
6529 /* Look up the binding of the function parameter T in a constexpr
6530 function call context CALL. */
6533 lookup_parameter_binding (const constexpr_call
*call
, tree t
)
6535 tree b
= purpose_member (t
, call
->bindings
);
6536 return TREE_VALUE (b
);
6539 /* Attempt to evaluate T which represents a call to a builtin function.
6540 We assume here that all builtin functions evaluate to scalar types
6541 represented by _CST nodes. */
6544 cxx_eval_builtin_function_call (const constexpr_call
*call
, tree t
,
6545 bool allow_non_constant
, bool addr
,
6546 bool *non_constant_p
, bool *overflow_p
)
6548 const int nargs
= call_expr_nargs (t
);
6549 tree
*args
= (tree
*) alloca (nargs
* sizeof (tree
));
6552 for (i
= 0; i
< nargs
; ++i
)
6554 args
[i
] = cxx_eval_constant_expression (call
, CALL_EXPR_ARG (t
, i
),
6555 allow_non_constant
, addr
,
6556 non_constant_p
, overflow_p
);
6557 if (allow_non_constant
&& *non_constant_p
)
6560 if (*non_constant_p
)
6562 new_call
= build_call_array_loc (EXPR_LOCATION (t
), TREE_TYPE (t
),
6563 CALL_EXPR_FN (t
), nargs
, args
);
6564 new_call
= fold (new_call
);
6565 VERIFY_CONSTANT (new_call
);
6569 /* TEMP is the constant value of a temporary object of type TYPE. Adjust
6570 the type of the value to match. */
6573 adjust_temp_type (tree type
, tree temp
)
6575 if (TREE_TYPE (temp
) == type
)
6577 /* Avoid wrapping an aggregate value in a NOP_EXPR. */
6578 if (TREE_CODE (temp
) == CONSTRUCTOR
)
6579 return build_constructor (type
, CONSTRUCTOR_ELTS (temp
));
6580 gcc_assert (scalarish_type_p (type
));
6581 return cp_fold_convert (type
, temp
);
6584 /* Subroutine of cxx_eval_call_expression.
6585 We are processing a call expression (either CALL_EXPR or
6586 AGGR_INIT_EXPR) in the call context of OLD_CALL. Evaluate
6587 all arguments and bind their values to correspondings
6588 parameters, making up the NEW_CALL context. */
6591 cxx_bind_parameters_in_call (const constexpr_call
*old_call
, tree t
,
6592 constexpr_call
*new_call
,
6593 bool allow_non_constant
,
6594 bool *non_constant_p
, bool *overflow_p
)
6596 const int nargs
= call_expr_nargs (t
);
6597 tree fun
= new_call
->fundef
->decl
;
6598 tree parms
= DECL_ARGUMENTS (fun
);
6600 for (i
= 0; i
< nargs
; ++i
)
6603 tree type
= parms
? TREE_TYPE (parms
) : void_type_node
;
6604 /* For member function, the first argument is a pointer to the implied
6605 object. And for an object contruction, don't bind `this' before
6606 it is fully constructed. */
6607 if (i
== 0 && DECL_CONSTRUCTOR_P (fun
))
6609 x
= get_nth_callarg (t
, i
);
6610 if (parms
&& DECL_BY_REFERENCE (parms
))
6612 /* cp_genericize made this a reference for argument passing, but
6613 we don't want to treat it like one for constexpr evaluation. */
6614 gcc_assert (TREE_CODE (type
) == REFERENCE_TYPE
);
6615 gcc_assert (TREE_CODE (TREE_TYPE (x
)) == REFERENCE_TYPE
);
6616 type
= TREE_TYPE (type
);
6617 x
= convert_from_reference (x
);
6619 arg
= cxx_eval_constant_expression (old_call
, x
, allow_non_constant
,
6620 TREE_CODE (type
) == REFERENCE_TYPE
,
6621 non_constant_p
, overflow_p
);
6622 /* Don't VERIFY_CONSTANT here. */
6623 if (*non_constant_p
&& allow_non_constant
)
6625 /* Just discard ellipsis args after checking their constantitude. */
6628 if (*non_constant_p
)
6629 /* Don't try to adjust the type of non-constant args. */
6632 /* Make sure the binding has the same type as the parm. */
6633 if (TREE_CODE (type
) != REFERENCE_TYPE
)
6634 arg
= adjust_temp_type (type
, arg
);
6635 new_call
->bindings
= tree_cons (parms
, arg
, new_call
->bindings
);
6637 parms
= TREE_CHAIN (parms
);
6641 /* Variables and functions to manage constexpr call expansion context.
6642 These do not need to be marked for PCH or GC. */
6644 /* FIXME remember and print actual constant arguments. */
6645 static vec
<tree
> call_stack
= vNULL
;
6646 static int call_stack_tick
;
6647 static int last_cx_error_tick
;
6650 push_cx_call_context (tree call
)
6653 if (!EXPR_HAS_LOCATION (call
))
6654 SET_EXPR_LOCATION (call
, input_location
);
6655 call_stack
.safe_push (call
);
6656 if (call_stack
.length () > (unsigned) max_constexpr_depth
)
6662 pop_cx_call_context (void)
6669 cx_error_context (void)
6671 vec
<tree
> r
= vNULL
;
6672 if (call_stack_tick
!= last_cx_error_tick
6673 && !call_stack
.is_empty ())
6675 last_cx_error_tick
= call_stack_tick
;
6679 /* Subroutine of cxx_eval_constant_expression.
6680 Evaluate the call expression tree T in the context of OLD_CALL expression
6684 cxx_eval_call_expression (const constexpr_call
*old_call
, tree t
,
6685 bool allow_non_constant
, bool addr
,
6686 bool *non_constant_p
, bool *overflow_p
)
6688 location_t loc
= EXPR_LOC_OR_HERE (t
);
6689 tree fun
= get_function_named_in_call (t
);
6691 constexpr_call new_call
= { NULL
, NULL
, NULL
, 0 };
6692 constexpr_call
**slot
;
6693 constexpr_call
*entry
;
6696 if (TREE_CODE (fun
) != FUNCTION_DECL
)
6698 /* Might be a constexpr function pointer. */
6699 fun
= cxx_eval_constant_expression (old_call
, fun
, allow_non_constant
,
6700 /*addr*/false, non_constant_p
, overflow_p
);
6701 if (TREE_CODE (fun
) == ADDR_EXPR
)
6702 fun
= TREE_OPERAND (fun
, 0);
6704 if (TREE_CODE (fun
) != FUNCTION_DECL
)
6706 if (!allow_non_constant
&& !*non_constant_p
)
6707 error_at (loc
, "expression %qE does not designate a constexpr "
6709 *non_constant_p
= true;
6712 if (DECL_CLONED_FUNCTION_P (fun
))
6713 fun
= DECL_CLONED_FUNCTION (fun
);
6714 if (is_builtin_fn (fun
))
6715 return cxx_eval_builtin_function_call (old_call
, t
, allow_non_constant
,
6716 addr
, non_constant_p
, overflow_p
);
6717 if (!DECL_DECLARED_CONSTEXPR_P (fun
))
6719 if (!allow_non_constant
)
6721 error_at (loc
, "call to non-constexpr function %qD", fun
);
6722 explain_invalid_constexpr_fn (fun
);
6724 *non_constant_p
= true;
6728 /* Shortcut trivial copy constructor/op=. */
6729 if (call_expr_nargs (t
) == 2 && trivial_fn_p (fun
))
6731 tree arg
= convert_from_reference (get_nth_callarg (t
, 1));
6732 return cxx_eval_constant_expression (old_call
, arg
, allow_non_constant
,
6733 addr
, non_constant_p
, overflow_p
);
6736 /* If in direct recursive call, optimize definition search. */
6737 if (old_call
!= NULL
&& old_call
->fundef
->decl
== fun
)
6738 new_call
.fundef
= old_call
->fundef
;
6741 new_call
.fundef
= retrieve_constexpr_fundef (fun
);
6742 if (new_call
.fundef
== NULL
|| new_call
.fundef
->body
== NULL
)
6744 if (!allow_non_constant
)
6746 if (DECL_INITIAL (fun
))
6748 /* The definition of fun was somehow unsuitable. */
6749 error_at (loc
, "%qD called in a constant expression", fun
);
6750 explain_invalid_constexpr_fn (fun
);
6753 error_at (loc
, "%qD used before its definition", fun
);
6755 *non_constant_p
= true;
6759 cxx_bind_parameters_in_call (old_call
, t
, &new_call
,
6760 allow_non_constant
, non_constant_p
, overflow_p
);
6761 if (*non_constant_p
)
6764 depth_ok
= push_cx_call_context (t
);
6767 = iterative_hash_template_arg (new_call
.bindings
,
6768 constexpr_fundef_hash (new_call
.fundef
));
6770 /* If we have seen this call before, we are done. */
6771 maybe_initialize_constexpr_call_table ();
6772 slot
= (constexpr_call
**)
6773 htab_find_slot (constexpr_call_table
, &new_call
, INSERT
);
6777 /* We need to keep a pointer to the entry, not just the slot, as the
6778 slot can move in the call to cxx_eval_builtin_function_call. */
6779 *slot
= entry
= ggc_alloc_constexpr_call ();
6782 /* Calls which are in progress have their result set to NULL
6783 so that we can detect circular dependencies. */
6784 else if (entry
->result
== NULL
)
6786 if (!allow_non_constant
)
6787 error ("call has circular dependency");
6788 *non_constant_p
= true;
6789 entry
->result
= result
= error_mark_node
;
6794 if (!allow_non_constant
)
6795 error ("constexpr evaluation depth exceeds maximum of %d (use "
6796 "-fconstexpr-depth= to increase the maximum)",
6797 max_constexpr_depth
);
6798 *non_constant_p
= true;
6799 entry
->result
= result
= error_mark_node
;
6803 result
= entry
->result
;
6804 if (!result
|| result
== error_mark_node
)
6805 result
= (cxx_eval_constant_expression
6806 (&new_call
, new_call
.fundef
->body
,
6807 allow_non_constant
, addr
,
6808 non_constant_p
, overflow_p
));
6809 if (result
== error_mark_node
)
6810 *non_constant_p
= true;
6811 if (*non_constant_p
)
6812 entry
->result
= result
= error_mark_node
;
6815 /* If this was a call to initialize an object, set the type of
6816 the CONSTRUCTOR to the type of that object. */
6817 if (DECL_CONSTRUCTOR_P (fun
))
6819 tree ob_arg
= get_nth_callarg (t
, 0);
6820 STRIP_NOPS (ob_arg
);
6821 gcc_assert (TREE_CODE (TREE_TYPE (ob_arg
)) == POINTER_TYPE
6822 && CLASS_TYPE_P (TREE_TYPE (TREE_TYPE (ob_arg
))));
6823 result
= adjust_temp_type (TREE_TYPE (TREE_TYPE (ob_arg
)),
6826 entry
->result
= result
;
6830 pop_cx_call_context ();
6831 return unshare_expr (result
);
6834 /* FIXME speed this up, it's taking 16% of compile time on sieve testcase. */
6837 reduced_constant_expression_p (tree t
)
6839 if (TREE_CODE (t
) == PTRMEM_CST
)
6840 /* Even if we can't lower this yet, it's constant. */
6842 /* FIXME are we calling this too much? */
6843 return initializer_constant_valid_p (t
, TREE_TYPE (t
)) != NULL_TREE
;
6846 /* Some expressions may have constant operands but are not constant
6847 themselves, such as 1/0. Call this function (or rather, the macro
6848 following it) to check for that condition.
6850 We only call this in places that require an arithmetic constant, not in
6851 places where we might have a non-constant expression that can be a
6852 component of a constant expression, such as the address of a constexpr
6853 variable that might be dereferenced later. */
6856 verify_constant (tree t
, bool allow_non_constant
, bool *non_constant_p
,
6859 if (!*non_constant_p
&& !reduced_constant_expression_p (t
))
6861 if (!allow_non_constant
)
6862 error ("%q+E is not a constant expression", t
);
6863 *non_constant_p
= true;
6865 if (TREE_OVERFLOW_P (t
))
6867 if (!allow_non_constant
)
6869 permerror (input_location
, "overflow in constant expression");
6870 /* If we're being permissive (and are in an enforcing
6871 context), ignore the overflow. */
6872 if (flag_permissive
)
6873 return *non_constant_p
;
6877 return *non_constant_p
;
6880 /* Subroutine of cxx_eval_constant_expression.
6881 Attempt to reduce the unary expression tree T to a compile time value.
6882 If successful, return the value. Otherwise issue a diagnostic
6883 and return error_mark_node. */
6886 cxx_eval_unary_expression (const constexpr_call
*call
, tree t
,
6887 bool allow_non_constant
, bool addr
,
6888 bool *non_constant_p
, bool *overflow_p
)
6891 tree orig_arg
= TREE_OPERAND (t
, 0);
6892 tree arg
= cxx_eval_constant_expression (call
, orig_arg
, allow_non_constant
,
6893 addr
, non_constant_p
, overflow_p
);
6894 VERIFY_CONSTANT (arg
);
6895 if (arg
== orig_arg
)
6897 r
= fold_build1 (TREE_CODE (t
), TREE_TYPE (t
), arg
);
6898 VERIFY_CONSTANT (r
);
6902 /* Subroutine of cxx_eval_constant_expression.
6903 Like cxx_eval_unary_expression, except for binary expressions. */
6906 cxx_eval_binary_expression (const constexpr_call
*call
, tree t
,
6907 bool allow_non_constant
, bool addr
,
6908 bool *non_constant_p
, bool *overflow_p
)
6911 tree orig_lhs
= TREE_OPERAND (t
, 0);
6912 tree orig_rhs
= TREE_OPERAND (t
, 1);
6914 lhs
= cxx_eval_constant_expression (call
, orig_lhs
,
6915 allow_non_constant
, addr
,
6916 non_constant_p
, overflow_p
);
6917 VERIFY_CONSTANT (lhs
);
6918 rhs
= cxx_eval_constant_expression (call
, orig_rhs
,
6919 allow_non_constant
, addr
,
6920 non_constant_p
, overflow_p
);
6921 VERIFY_CONSTANT (rhs
);
6922 if (lhs
== orig_lhs
&& rhs
== orig_rhs
)
6924 r
= fold_build2 (TREE_CODE (t
), TREE_TYPE (t
), lhs
, rhs
);
6925 VERIFY_CONSTANT (r
);
6929 /* Subroutine of cxx_eval_constant_expression.
6930 Attempt to evaluate condition expressions. Dead branches are not
6934 cxx_eval_conditional_expression (const constexpr_call
*call
, tree t
,
6935 bool allow_non_constant
, bool addr
,
6936 bool *non_constant_p
, bool *overflow_p
)
6938 tree val
= cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 0),
6939 allow_non_constant
, addr
,
6940 non_constant_p
, overflow_p
);
6941 VERIFY_CONSTANT (val
);
6942 /* Don't VERIFY_CONSTANT the other operands. */
6943 if (integer_zerop (val
))
6944 return cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 2),
6945 allow_non_constant
, addr
,
6946 non_constant_p
, overflow_p
);
6947 return cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 1),
6948 allow_non_constant
, addr
,
6949 non_constant_p
, overflow_p
);
6952 /* Subroutine of cxx_eval_constant_expression.
6953 Attempt to reduce a reference to an array slot. */
6956 cxx_eval_array_reference (const constexpr_call
*call
, tree t
,
6957 bool allow_non_constant
, bool addr
,
6958 bool *non_constant_p
, bool *overflow_p
)
6960 tree oldary
= TREE_OPERAND (t
, 0);
6961 tree ary
= cxx_eval_constant_expression (call
, oldary
,
6962 allow_non_constant
, addr
,
6963 non_constant_p
, overflow_p
);
6967 unsigned len
, elem_nchars
= 1;
6968 if (*non_constant_p
)
6970 oldidx
= TREE_OPERAND (t
, 1);
6971 index
= cxx_eval_constant_expression (call
, oldidx
,
6972 allow_non_constant
, false,
6973 non_constant_p
, overflow_p
);
6974 VERIFY_CONSTANT (index
);
6975 if (addr
&& ary
== oldary
&& index
== oldidx
)
6978 return build4 (ARRAY_REF
, TREE_TYPE (t
), ary
, index
, NULL
, NULL
);
6979 elem_type
= TREE_TYPE (TREE_TYPE (ary
));
6980 if (TREE_CODE (ary
) == CONSTRUCTOR
)
6981 len
= CONSTRUCTOR_NELTS (ary
);
6982 else if (TREE_CODE (ary
) == STRING_CST
)
6984 elem_nchars
= (TYPE_PRECISION (elem_type
)
6985 / TYPE_PRECISION (char_type_node
));
6986 len
= (unsigned) TREE_STRING_LENGTH (ary
) / elem_nchars
;
6990 /* We can't do anything with other tree codes, so use
6991 VERIFY_CONSTANT to complain and fail. */
6992 VERIFY_CONSTANT (ary
);
6995 if (compare_tree_int (index
, len
) >= 0)
6997 if (tree_int_cst_lt (index
, array_type_nelts_top (TREE_TYPE (ary
))))
6999 /* If it's within the array bounds but doesn't have an explicit
7000 initializer, it's value-initialized. */
7001 tree val
= build_value_init (elem_type
, tf_warning_or_error
);
7002 return cxx_eval_constant_expression (call
, val
,
7003 allow_non_constant
, addr
,
7004 non_constant_p
, overflow_p
);
7007 if (!allow_non_constant
)
7008 error ("array subscript out of bound");
7009 *non_constant_p
= true;
7012 else if (tree_int_cst_lt (index
, integer_zero_node
))
7014 if (!allow_non_constant
)
7015 error ("negative array subscript");
7016 *non_constant_p
= true;
7019 i
= tree_low_cst (index
, 0);
7020 if (TREE_CODE (ary
) == CONSTRUCTOR
)
7021 return (*CONSTRUCTOR_ELTS (ary
))[i
].value
;
7022 else if (elem_nchars
== 1)
7023 return build_int_cst (cv_unqualified (TREE_TYPE (TREE_TYPE (ary
))),
7024 TREE_STRING_POINTER (ary
)[i
]);
7027 tree type
= cv_unqualified (TREE_TYPE (TREE_TYPE (ary
)));
7028 return native_interpret_expr (type
, (const unsigned char *)
7029 TREE_STRING_POINTER (ary
)
7030 + i
* elem_nchars
, elem_nchars
);
7032 /* Don't VERIFY_CONSTANT here. */
7035 /* Subroutine of cxx_eval_constant_expression.
7036 Attempt to reduce a field access of a value of class type. */
7039 cxx_eval_component_reference (const constexpr_call
*call
, tree t
,
7040 bool allow_non_constant
, bool addr
,
7041 bool *non_constant_p
, bool *overflow_p
)
7043 unsigned HOST_WIDE_INT i
;
7046 tree part
= TREE_OPERAND (t
, 1);
7047 tree orig_whole
= TREE_OPERAND (t
, 0);
7048 tree whole
= cxx_eval_constant_expression (call
, orig_whole
,
7049 allow_non_constant
, addr
,
7050 non_constant_p
, overflow_p
);
7051 if (whole
== orig_whole
)
7054 return fold_build3 (COMPONENT_REF
, TREE_TYPE (t
),
7055 whole
, part
, NULL_TREE
);
7056 /* Don't VERIFY_CONSTANT here; we only want to check that we got a
7058 if (!*non_constant_p
&& TREE_CODE (whole
) != CONSTRUCTOR
)
7060 if (!allow_non_constant
)
7061 error ("%qE is not a constant expression", orig_whole
);
7062 *non_constant_p
= true;
7064 if (DECL_MUTABLE_P (part
))
7066 if (!allow_non_constant
)
7067 error ("mutable %qD is not usable in a constant expression", part
);
7068 *non_constant_p
= true;
7070 if (*non_constant_p
)
7072 FOR_EACH_CONSTRUCTOR_ELT (CONSTRUCTOR_ELTS (whole
), i
, field
, value
)
7077 if (TREE_CODE (TREE_TYPE (whole
)) == UNION_TYPE
7078 && CONSTRUCTOR_NELTS (whole
) > 0)
7080 /* DR 1188 says we don't have to deal with this. */
7081 if (!allow_non_constant
)
7082 error ("accessing %qD member instead of initialized %qD member in "
7083 "constant expression", part
, CONSTRUCTOR_ELT (whole
, 0)->index
);
7084 *non_constant_p
= true;
7088 /* If there's no explicit init for this field, it's value-initialized. */
7089 value
= build_value_init (TREE_TYPE (t
), tf_warning_or_error
);
7090 return cxx_eval_constant_expression (call
, value
,
7091 allow_non_constant
, addr
,
7092 non_constant_p
, overflow_p
);
7095 /* Subroutine of cxx_eval_constant_expression.
7096 Attempt to reduce a field access of a value of class type that is
7097 expressed as a BIT_FIELD_REF. */
7100 cxx_eval_bit_field_ref (const constexpr_call
*call
, tree t
,
7101 bool allow_non_constant
, bool addr
,
7102 bool *non_constant_p
, bool *overflow_p
)
7104 tree orig_whole
= TREE_OPERAND (t
, 0);
7105 tree retval
, fldval
, utype
, mask
;
7106 bool fld_seen
= false;
7107 HOST_WIDE_INT istart
, isize
;
7108 tree whole
= cxx_eval_constant_expression (call
, orig_whole
,
7109 allow_non_constant
, addr
,
7110 non_constant_p
, overflow_p
);
7111 tree start
, field
, value
;
7112 unsigned HOST_WIDE_INT i
;
7114 if (whole
== orig_whole
)
7116 /* Don't VERIFY_CONSTANT here; we only want to check that we got a
7118 if (!*non_constant_p
&& TREE_CODE (whole
) != CONSTRUCTOR
)
7120 if (!allow_non_constant
)
7121 error ("%qE is not a constant expression", orig_whole
);
7122 *non_constant_p
= true;
7124 if (*non_constant_p
)
7127 start
= TREE_OPERAND (t
, 2);
7128 istart
= tree_low_cst (start
, 0);
7129 isize
= tree_low_cst (TREE_OPERAND (t
, 1), 0);
7130 utype
= TREE_TYPE (t
);
7131 if (!TYPE_UNSIGNED (utype
))
7132 utype
= build_nonstandard_integer_type (TYPE_PRECISION (utype
), 1);
7133 retval
= build_int_cst (utype
, 0);
7134 FOR_EACH_CONSTRUCTOR_ELT (CONSTRUCTOR_ELTS (whole
), i
, field
, value
)
7136 tree bitpos
= bit_position (field
);
7137 if (bitpos
== start
&& DECL_SIZE (field
) == TREE_OPERAND (t
, 1))
7139 if (TREE_CODE (TREE_TYPE (field
)) == INTEGER_TYPE
7140 && TREE_CODE (value
) == INTEGER_CST
7141 && host_integerp (bitpos
, 0)
7142 && host_integerp (DECL_SIZE (field
), 0))
7144 HOST_WIDE_INT bit
= tree_low_cst (bitpos
, 0);
7145 HOST_WIDE_INT sz
= tree_low_cst (DECL_SIZE (field
), 0);
7146 HOST_WIDE_INT shift
;
7147 if (bit
>= istart
&& bit
+ sz
<= istart
+ isize
)
7149 fldval
= fold_convert (utype
, value
);
7150 mask
= build_int_cst_type (utype
, -1);
7151 mask
= fold_build2 (LSHIFT_EXPR
, utype
, mask
,
7152 size_int (TYPE_PRECISION (utype
) - sz
));
7153 mask
= fold_build2 (RSHIFT_EXPR
, utype
, mask
,
7154 size_int (TYPE_PRECISION (utype
) - sz
));
7155 fldval
= fold_build2 (BIT_AND_EXPR
, utype
, fldval
, mask
);
7156 shift
= bit
- istart
;
7157 if (BYTES_BIG_ENDIAN
)
7158 shift
= TYPE_PRECISION (utype
) - shift
- sz
;
7159 fldval
= fold_build2 (LSHIFT_EXPR
, utype
, fldval
,
7161 retval
= fold_build2 (BIT_IOR_EXPR
, utype
, retval
, fldval
);
7167 return fold_convert (TREE_TYPE (t
), retval
);
7169 return error_mark_node
;
7172 /* Subroutine of cxx_eval_constant_expression.
7173 Evaluate a short-circuited logical expression T in the context
7174 of a given constexpr CALL. BAILOUT_VALUE is the value for
7175 early return. CONTINUE_VALUE is used here purely for
7176 sanity check purposes. */
7179 cxx_eval_logical_expression (const constexpr_call
*call
, tree t
,
7180 tree bailout_value
, tree continue_value
,
7181 bool allow_non_constant
, bool addr
,
7182 bool *non_constant_p
, bool *overflow_p
)
7185 tree lhs
= cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 0),
7186 allow_non_constant
, addr
,
7187 non_constant_p
, overflow_p
);
7188 VERIFY_CONSTANT (lhs
);
7189 if (tree_int_cst_equal (lhs
, bailout_value
))
7191 gcc_assert (tree_int_cst_equal (lhs
, continue_value
));
7192 r
= cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 1),
7193 allow_non_constant
, addr
, non_constant_p
, overflow_p
);
7194 VERIFY_CONSTANT (r
);
7198 /* REF is a COMPONENT_REF designating a particular field. V is a vector of
7199 CONSTRUCTOR elements to initialize (part of) an object containing that
7200 field. Return a pointer to the constructor_elt corresponding to the
7201 initialization of the field. */
7203 static constructor_elt
*
7204 base_field_constructor_elt (vec
<constructor_elt
, va_gc
> *v
, tree ref
)
7206 tree aggr
= TREE_OPERAND (ref
, 0);
7207 tree field
= TREE_OPERAND (ref
, 1);
7209 constructor_elt
*ce
;
7211 gcc_assert (TREE_CODE (ref
) == COMPONENT_REF
);
7213 if (TREE_CODE (aggr
) == COMPONENT_REF
)
7215 constructor_elt
*base_ce
7216 = base_field_constructor_elt (v
, aggr
);
7217 v
= CONSTRUCTOR_ELTS (base_ce
->value
);
7220 for (i
= 0; vec_safe_iterate (v
, i
, &ce
); ++i
)
7221 if (ce
->index
== field
)
7228 /* Subroutine of cxx_eval_constant_expression.
7229 The expression tree T denotes a C-style array or a C-style
7230 aggregate. Reduce it to a constant expression. */
7233 cxx_eval_bare_aggregate (const constexpr_call
*call
, tree t
,
7234 bool allow_non_constant
, bool addr
,
7235 bool *non_constant_p
, bool *overflow_p
)
7237 vec
<constructor_elt
, va_gc
> *v
= CONSTRUCTOR_ELTS (t
);
7238 vec
<constructor_elt
, va_gc
> *n
;
7239 vec_alloc (n
, vec_safe_length (v
));
7240 constructor_elt
*ce
;
7242 bool changed
= false;
7243 gcc_assert (!BRACE_ENCLOSED_INITIALIZER_P (t
));
7244 for (i
= 0; vec_safe_iterate (v
, i
, &ce
); ++i
)
7246 tree elt
= cxx_eval_constant_expression (call
, ce
->value
,
7247 allow_non_constant
, addr
,
7248 non_constant_p
, overflow_p
);
7249 /* Don't VERIFY_CONSTANT here. */
7250 if (allow_non_constant
&& *non_constant_p
)
7252 if (elt
!= ce
->value
)
7254 if (ce
->index
&& TREE_CODE (ce
->index
) == COMPONENT_REF
)
7256 /* This is an initialization of a vfield inside a base
7257 subaggregate that we already initialized; push this
7258 initialization into the previous initialization. */
7259 constructor_elt
*inner
= base_field_constructor_elt (n
, ce
->index
);
7262 else if (ce
->index
&& TREE_CODE (ce
->index
) == NOP_EXPR
)
7264 /* This is an initializer for an empty base; now that we've
7265 checked that it's constant, we can ignore it. */
7266 gcc_assert (is_empty_class (TREE_TYPE (TREE_TYPE (ce
->index
))));
7269 CONSTRUCTOR_APPEND_ELT (n
, ce
->index
, elt
);
7271 if (*non_constant_p
|| !changed
)
7277 t
= build_constructor (TREE_TYPE (t
), n
);
7278 TREE_CONSTANT (t
) = true;
7279 if (TREE_CODE (TREE_TYPE (t
)) == VECTOR_TYPE
)
7284 /* Subroutine of cxx_eval_constant_expression.
7285 The expression tree T is a VEC_INIT_EXPR which denotes the desired
7286 initialization of a non-static data member of array type. Reduce it to a
7289 Note that apart from value-initialization (when VALUE_INIT is true),
7290 this is only intended to support value-initialization and the
7291 initializations done by defaulted constructors for classes with
7292 non-static data members of array type. In this case, VEC_INIT_EXPR_INIT
7293 will either be NULL_TREE for the default constructor, or a COMPONENT_REF
7294 for the copy/move constructor. */
7297 cxx_eval_vec_init_1 (const constexpr_call
*call
, tree atype
, tree init
,
7298 bool value_init
, bool allow_non_constant
, bool addr
,
7299 bool *non_constant_p
, bool *overflow_p
)
7301 tree elttype
= TREE_TYPE (atype
);
7302 int max
= tree_low_cst (array_type_nelts (atype
), 0);
7303 vec
<constructor_elt
, va_gc
> *n
;
7304 vec_alloc (n
, max
+ 1);
7305 bool pre_init
= false;
7308 /* For the default constructor, build up a call to the default
7309 constructor of the element type. We only need to handle class types
7310 here, as for a constructor to be constexpr, all members must be
7311 initialized, which for a defaulted default constructor means they must
7312 be of a class type with a constexpr default constructor. */
7313 if (TREE_CODE (elttype
) == ARRAY_TYPE
)
7314 /* We only do this at the lowest level. */;
7315 else if (value_init
)
7317 init
= build_value_init (elttype
, tf_warning_or_error
);
7318 init
= cxx_eval_constant_expression
7319 (call
, init
, allow_non_constant
, addr
, non_constant_p
, overflow_p
);
7324 vec
<tree
, va_gc
> *argvec
= make_tree_vector ();
7325 init
= build_special_member_call (NULL_TREE
, complete_ctor_identifier
,
7326 &argvec
, elttype
, LOOKUP_NORMAL
,
7327 tf_warning_or_error
);
7328 release_tree_vector (argvec
);
7329 init
= cxx_eval_constant_expression (call
, init
, allow_non_constant
,
7330 addr
, non_constant_p
, overflow_p
);
7334 if (*non_constant_p
&& !allow_non_constant
)
7337 for (i
= 0; i
<= max
; ++i
)
7339 tree idx
= build_int_cst (size_type_node
, i
);
7341 if (TREE_CODE (elttype
) == ARRAY_TYPE
)
7343 /* A multidimensional array; recurse. */
7344 if (value_init
|| init
== NULL_TREE
)
7345 eltinit
= NULL_TREE
;
7347 eltinit
= cp_build_array_ref (input_location
, init
, idx
,
7348 tf_warning_or_error
);
7349 eltinit
= cxx_eval_vec_init_1 (call
, elttype
, eltinit
, value_init
,
7350 allow_non_constant
, addr
,
7351 non_constant_p
, overflow_p
);
7355 /* Initializing an element using value or default initialization
7356 we just pre-built above. */
7360 eltinit
= unshare_expr (init
);
7364 /* Copying an element. */
7365 vec
<tree
, va_gc
> *argvec
;
7366 gcc_assert (same_type_ignoring_top_level_qualifiers_p
7367 (atype
, TREE_TYPE (init
)));
7368 eltinit
= cp_build_array_ref (input_location
, init
, idx
,
7369 tf_warning_or_error
);
7370 if (!real_lvalue_p (init
))
7371 eltinit
= move (eltinit
);
7372 argvec
= make_tree_vector ();
7373 argvec
->quick_push (eltinit
);
7374 eltinit
= (build_special_member_call
7375 (NULL_TREE
, complete_ctor_identifier
, &argvec
,
7376 elttype
, LOOKUP_NORMAL
, tf_warning_or_error
));
7377 release_tree_vector (argvec
);
7378 eltinit
= cxx_eval_constant_expression
7379 (call
, eltinit
, allow_non_constant
, addr
, non_constant_p
, overflow_p
);
7381 if (*non_constant_p
&& !allow_non_constant
)
7383 CONSTRUCTOR_APPEND_ELT (n
, idx
, eltinit
);
7386 if (!*non_constant_p
)
7388 init
= build_constructor (atype
, n
);
7389 TREE_CONSTANT (init
) = true;
7399 cxx_eval_vec_init (const constexpr_call
*call
, tree t
,
7400 bool allow_non_constant
, bool addr
,
7401 bool *non_constant_p
, bool *overflow_p
)
7403 tree atype
= TREE_TYPE (t
);
7404 tree init
= VEC_INIT_EXPR_INIT (t
);
7405 tree r
= cxx_eval_vec_init_1 (call
, atype
, init
,
7406 VEC_INIT_EXPR_VALUE_INIT (t
),
7407 allow_non_constant
, addr
, non_constant_p
, overflow_p
);
7408 if (*non_constant_p
)
7414 /* A less strict version of fold_indirect_ref_1, which requires cv-quals to
7415 match. We want to be less strict for simple *& folding; if we have a
7416 non-const temporary that we access through a const pointer, that should
7417 work. We handle this here rather than change fold_indirect_ref_1
7418 because we're dealing with things like ADDR_EXPR of INTEGER_CST which
7419 don't really make sense outside of constant expression evaluation. Also
7420 we want to allow folding to COMPONENT_REF, which could cause trouble
7421 with TBAA in fold_indirect_ref_1.
7423 Try to keep this function synced with fold_indirect_ref_1. */
7426 cxx_fold_indirect_ref (location_t loc
, tree type
, tree op0
, bool *empty_base
)
7432 subtype
= TREE_TYPE (sub
);
7433 if (!POINTER_TYPE_P (subtype
))
7436 if (TREE_CODE (sub
) == ADDR_EXPR
)
7438 tree op
= TREE_OPERAND (sub
, 0);
7439 tree optype
= TREE_TYPE (op
);
7441 /* *&CONST_DECL -> to the value of the const decl. */
7442 if (TREE_CODE (op
) == CONST_DECL
)
7443 return DECL_INITIAL (op
);
7444 /* *&p => p; make sure to handle *&"str"[cst] here. */
7445 if (same_type_ignoring_top_level_qualifiers_p (optype
, type
))
7447 tree fop
= fold_read_from_constant_string (op
);
7453 /* *(foo *)&fooarray => fooarray[0] */
7454 else if (TREE_CODE (optype
) == ARRAY_TYPE
7455 && (same_type_ignoring_top_level_qualifiers_p
7456 (type
, TREE_TYPE (optype
))))
7458 tree type_domain
= TYPE_DOMAIN (optype
);
7459 tree min_val
= size_zero_node
;
7460 if (type_domain
&& TYPE_MIN_VALUE (type_domain
))
7461 min_val
= TYPE_MIN_VALUE (type_domain
);
7462 return build4_loc (loc
, ARRAY_REF
, type
, op
, min_val
,
7463 NULL_TREE
, NULL_TREE
);
7465 /* *(foo *)&complexfoo => __real__ complexfoo */
7466 else if (TREE_CODE (optype
) == COMPLEX_TYPE
7467 && (same_type_ignoring_top_level_qualifiers_p
7468 (type
, TREE_TYPE (optype
))))
7469 return fold_build1_loc (loc
, REALPART_EXPR
, type
, op
);
7470 /* *(foo *)&vectorfoo => BIT_FIELD_REF<vectorfoo,...> */
7471 else if (TREE_CODE (optype
) == VECTOR_TYPE
7472 && (same_type_ignoring_top_level_qualifiers_p
7473 (type
, TREE_TYPE (optype
))))
7475 tree part_width
= TYPE_SIZE (type
);
7476 tree index
= bitsize_int (0);
7477 return fold_build3_loc (loc
, BIT_FIELD_REF
, type
, op
, part_width
, index
);
7479 /* Also handle conversion to an empty base class, which
7480 is represented with a NOP_EXPR. */
7481 else if (is_empty_class (type
)
7482 && CLASS_TYPE_P (optype
)
7483 && DERIVED_FROM_P (type
, optype
))
7488 /* *(foo *)&struct_with_foo_field => COMPONENT_REF */
7489 else if (RECORD_OR_UNION_TYPE_P (optype
))
7491 tree field
= TYPE_FIELDS (optype
);
7492 for (; field
; field
= DECL_CHAIN (field
))
7493 if (TREE_CODE (field
) == FIELD_DECL
7494 && integer_zerop (byte_position (field
))
7495 && (same_type_ignoring_top_level_qualifiers_p
7496 (TREE_TYPE (field
), type
)))
7498 return fold_build3 (COMPONENT_REF
, type
, op
, field
, NULL_TREE
);
7503 else if (TREE_CODE (sub
) == POINTER_PLUS_EXPR
7504 && TREE_CODE (TREE_OPERAND (sub
, 1)) == INTEGER_CST
)
7506 tree op00
= TREE_OPERAND (sub
, 0);
7507 tree op01
= TREE_OPERAND (sub
, 1);
7510 if (TREE_CODE (op00
) == ADDR_EXPR
)
7513 op00
= TREE_OPERAND (op00
, 0);
7514 op00type
= TREE_TYPE (op00
);
7516 /* ((foo*)&vectorfoo)[1] => BIT_FIELD_REF<vectorfoo,...> */
7517 if (TREE_CODE (op00type
) == VECTOR_TYPE
7518 && (same_type_ignoring_top_level_qualifiers_p
7519 (type
, TREE_TYPE (op00type
))))
7521 HOST_WIDE_INT offset
= tree_low_cst (op01
, 0);
7522 tree part_width
= TYPE_SIZE (type
);
7523 unsigned HOST_WIDE_INT part_widthi
= tree_low_cst (part_width
, 0)/BITS_PER_UNIT
;
7524 unsigned HOST_WIDE_INT indexi
= offset
* BITS_PER_UNIT
;
7525 tree index
= bitsize_int (indexi
);
7527 if (offset
/part_widthi
<= TYPE_VECTOR_SUBPARTS (op00type
))
7528 return fold_build3_loc (loc
,
7529 BIT_FIELD_REF
, type
, op00
,
7533 /* ((foo*)&complexfoo)[1] => __imag__ complexfoo */
7534 else if (TREE_CODE (op00type
) == COMPLEX_TYPE
7535 && (same_type_ignoring_top_level_qualifiers_p
7536 (type
, TREE_TYPE (op00type
))))
7538 tree size
= TYPE_SIZE_UNIT (type
);
7539 if (tree_int_cst_equal (size
, op01
))
7540 return fold_build1_loc (loc
, IMAGPART_EXPR
, type
, op00
);
7542 /* ((foo *)&fooarray)[1] => fooarray[1] */
7543 else if (TREE_CODE (op00type
) == ARRAY_TYPE
7544 && (same_type_ignoring_top_level_qualifiers_p
7545 (type
, TREE_TYPE (op00type
))))
7547 tree type_domain
= TYPE_DOMAIN (op00type
);
7548 tree min_val
= size_zero_node
;
7549 if (type_domain
&& TYPE_MIN_VALUE (type_domain
))
7550 min_val
= TYPE_MIN_VALUE (type_domain
);
7551 op01
= size_binop_loc (loc
, EXACT_DIV_EXPR
, op01
,
7552 TYPE_SIZE_UNIT (type
));
7553 op01
= size_binop_loc (loc
, PLUS_EXPR
, op01
, min_val
);
7554 return build4_loc (loc
, ARRAY_REF
, type
, op00
, op01
,
7555 NULL_TREE
, NULL_TREE
);
7557 /* Also handle conversion to an empty base class, which
7558 is represented with a NOP_EXPR. */
7559 else if (is_empty_class (type
)
7560 && CLASS_TYPE_P (op00type
)
7561 && DERIVED_FROM_P (type
, op00type
))
7566 /* ((foo *)&struct_with_foo_field)[1] => COMPONENT_REF */
7567 else if (RECORD_OR_UNION_TYPE_P (op00type
))
7569 tree field
= TYPE_FIELDS (op00type
);
7570 for (; field
; field
= DECL_CHAIN (field
))
7571 if (TREE_CODE (field
) == FIELD_DECL
7572 && tree_int_cst_equal (byte_position (field
), op01
)
7573 && (same_type_ignoring_top_level_qualifiers_p
7574 (TREE_TYPE (field
), type
)))
7576 return fold_build3 (COMPONENT_REF
, type
, op00
,
7583 /* *(foo *)fooarrptreturn> (*fooarrptr)[0] */
7584 else if (TREE_CODE (TREE_TYPE (subtype
)) == ARRAY_TYPE
7585 && (same_type_ignoring_top_level_qualifiers_p
7586 (type
, TREE_TYPE (TREE_TYPE (subtype
)))))
7589 tree min_val
= size_zero_node
;
7590 sub
= cxx_fold_indirect_ref (loc
, TREE_TYPE (subtype
), sub
, NULL
);
7592 sub
= build1_loc (loc
, INDIRECT_REF
, TREE_TYPE (subtype
), sub
);
7593 type_domain
= TYPE_DOMAIN (TREE_TYPE (sub
));
7594 if (type_domain
&& TYPE_MIN_VALUE (type_domain
))
7595 min_val
= TYPE_MIN_VALUE (type_domain
);
7596 return build4_loc (loc
, ARRAY_REF
, type
, sub
, min_val
, NULL_TREE
,
7604 cxx_eval_indirect_ref (const constexpr_call
*call
, tree t
,
7605 bool allow_non_constant
, bool addr
,
7606 bool *non_constant_p
, bool *overflow_p
)
7608 tree orig_op0
= TREE_OPERAND (t
, 0);
7609 tree op0
= cxx_eval_constant_expression (call
, orig_op0
, allow_non_constant
,
7610 /*addr*/false, non_constant_p
, overflow_p
);
7611 bool empty_base
= false;
7614 /* Don't VERIFY_CONSTANT here. */
7615 if (*non_constant_p
)
7618 r
= cxx_fold_indirect_ref (EXPR_LOCATION (t
), TREE_TYPE (t
), op0
,
7622 r
= cxx_eval_constant_expression (call
, r
, allow_non_constant
,
7623 addr
, non_constant_p
, overflow_p
);
7628 if (TREE_CODE (sub
) == POINTER_PLUS_EXPR
)
7630 sub
= TREE_OPERAND (sub
, 0);
7633 if (TREE_CODE (sub
) == ADDR_EXPR
)
7635 /* We couldn't fold to a constant value. Make sure it's not
7636 something we should have been able to fold. */
7637 gcc_assert (!same_type_ignoring_top_level_qualifiers_p
7638 (TREE_TYPE (TREE_TYPE (sub
)), TREE_TYPE (t
)));
7639 /* DR 1188 says we don't have to deal with this. */
7640 if (!allow_non_constant
)
7641 error ("accessing value of %qE through a %qT glvalue in a "
7642 "constant expression", build_fold_indirect_ref (sub
),
7644 *non_constant_p
= true;
7649 /* If we're pulling out the value of an empty base, make sure
7650 that the whole object is constant and then return an empty
7654 VERIFY_CONSTANT (r
);
7655 r
= build_constructor (TREE_TYPE (t
), NULL
);
7656 TREE_CONSTANT (r
) = true;
7662 VERIFY_CONSTANT (t
);
7668 /* Complain about R, a VAR_DECL, not being usable in a constant expression.
7669 Shared between potential_constant_expression and
7670 cxx_eval_constant_expression. */
7673 non_const_var_error (tree r
)
7675 tree type
= TREE_TYPE (r
);
7676 error ("the value of %qD is not usable in a constant "
7678 /* Avoid error cascade. */
7679 if (DECL_INITIAL (r
) == error_mark_node
)
7681 if (DECL_DECLARED_CONSTEXPR_P (r
))
7682 inform (DECL_SOURCE_LOCATION (r
),
7683 "%qD used in its own initializer", r
);
7684 else if (INTEGRAL_OR_ENUMERATION_TYPE_P (type
))
7686 if (!CP_TYPE_CONST_P (type
))
7687 inform (DECL_SOURCE_LOCATION (r
),
7688 "%q#D is not const", r
);
7689 else if (CP_TYPE_VOLATILE_P (type
))
7690 inform (DECL_SOURCE_LOCATION (r
),
7691 "%q#D is volatile", r
);
7692 else if (!DECL_INITIAL (r
)
7693 || !TREE_CONSTANT (DECL_INITIAL (r
)))
7694 inform (DECL_SOURCE_LOCATION (r
),
7695 "%qD was not initialized with a constant "
7702 if (cxx_dialect
>= cxx0x
&& !DECL_DECLARED_CONSTEXPR_P (r
))
7703 inform (DECL_SOURCE_LOCATION (r
),
7704 "%qD was not declared %<constexpr%>", r
);
7706 inform (DECL_SOURCE_LOCATION (r
),
7707 "%qD does not have integral or enumeration type",
7712 /* Evaluate VEC_PERM_EXPR (v1, v2, mask). */
7714 cxx_eval_vec_perm_expr (const constexpr_call
*call
, tree t
,
7715 bool allow_non_constant
, bool addr
,
7716 bool *non_constant_p
, bool *overflow_p
)
7721 tree elttype
= TREE_TYPE (t
);
7723 for (i
= 0; i
< 3; i
++)
7725 args
[i
] = cxx_eval_constant_expression (call
, TREE_OPERAND (t
, i
),
7726 allow_non_constant
, addr
,
7727 non_constant_p
, overflow_p
);
7728 if (*non_constant_p
)
7732 gcc_assert (TREE_CODE (TREE_TYPE (args
[0])) == VECTOR_TYPE
);
7733 gcc_assert (TREE_CODE (TREE_TYPE (args
[1])) == VECTOR_TYPE
);
7734 gcc_assert (TREE_CODE (TREE_TYPE (args
[2])) == VECTOR_TYPE
);
7736 val
= fold_ternary_loc (EXPR_LOCATION (t
), VEC_PERM_EXPR
, elttype
,
7737 args
[0], args
[1], args
[2]);
7738 if (val
!= NULL_TREE
)
7745 /* Attempt to reduce the expression T to a constant value.
7746 On failure, issue diagnostic and return error_mark_node. */
7747 /* FIXME unify with c_fully_fold */
7750 cxx_eval_constant_expression (const constexpr_call
*call
, tree t
,
7751 bool allow_non_constant
, bool addr
,
7752 bool *non_constant_p
, bool *overflow_p
)
7756 if (t
== error_mark_node
)
7758 *non_constant_p
= true;
7761 if (CONSTANT_CLASS_P (t
))
7763 if (TREE_CODE (t
) == PTRMEM_CST
)
7764 t
= cplus_expand_constant (t
);
7765 else if (TREE_OVERFLOW (t
) && (!flag_permissive
|| allow_non_constant
))
7769 if (TREE_CODE (t
) != NOP_EXPR
7770 && reduced_constant_expression_p (t
))
7773 switch (TREE_CODE (t
))
7778 /* else fall through. */
7780 r
= integral_constant_value (t
);
7781 if (TREE_CODE (r
) == TARGET_EXPR
7782 && TREE_CODE (TARGET_EXPR_INITIAL (r
)) == CONSTRUCTOR
)
7783 r
= TARGET_EXPR_INITIAL (r
);
7786 if (!allow_non_constant
)
7787 non_const_var_error (r
);
7788 *non_constant_p
= true;
7798 if (call
&& DECL_CONTEXT (t
) == call
->fundef
->decl
)
7800 if (DECL_ARTIFICIAL (t
) && DECL_CONSTRUCTOR_P (DECL_CONTEXT (t
)))
7802 if (!allow_non_constant
)
7803 sorry ("use of the value of the object being constructed "
7804 "in a constant expression");
7805 *non_constant_p
= true;
7808 r
= lookup_parameter_binding (call
, t
);
7811 /* Defer in case this is only used for its type. */;
7814 if (!allow_non_constant
)
7815 error ("%qE is not a constant expression", t
);
7816 *non_constant_p
= true;
7821 case AGGR_INIT_EXPR
:
7822 r
= cxx_eval_call_expression (call
, t
, allow_non_constant
, addr
,
7823 non_constant_p
, overflow_p
);
7827 if (!literal_type_p (TREE_TYPE (t
)))
7829 if (!allow_non_constant
)
7831 error ("temporary of non-literal type %qT in a "
7832 "constant expression", TREE_TYPE (t
));
7833 explain_non_literal_class (TREE_TYPE (t
));
7835 *non_constant_p
= true;
7838 /* else fall through. */
7840 /* Pass false for 'addr' because these codes indicate
7841 initialization of a temporary. */
7842 r
= cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 1),
7843 allow_non_constant
, false,
7844 non_constant_p
, overflow_p
);
7845 if (!*non_constant_p
)
7846 /* Adjust the type of the result to the type of the temporary. */
7847 r
= adjust_temp_type (TREE_TYPE (t
), r
);
7851 r
= cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 1),
7852 allow_non_constant
, addr
,
7853 non_constant_p
, overflow_p
);
7857 case NON_LVALUE_EXPR
:
7858 case TRY_CATCH_EXPR
:
7859 case CLEANUP_POINT_EXPR
:
7860 case MUST_NOT_THROW_EXPR
:
7862 r
= cxx_eval_constant_expression (call
, TREE_OPERAND (t
, 0),
7863 allow_non_constant
, addr
,
7864 non_constant_p
, overflow_p
);
7867 /* These differ from cxx_eval_unary_expression in that this doesn't
7868 check for a constant operand or result; an address can be
7869 constant without its operand being, and vice versa. */
7871 r
= cxx_eval_indirect_ref (call
, t
, allow_non_constant
, addr
,
7872 non_constant_p
, overflow_p
);
7877 tree oldop
= TREE_OPERAND (t
, 0);
7878 tree op
= cxx_eval_constant_expression (call
, oldop
,
7881 non_constant_p
, overflow_p
);
7882 /* Don't VERIFY_CONSTANT here. */
7883 if (*non_constant_p
)
7885 /* This function does more aggressive folding than fold itself. */
7886 r
= build_fold_addr_expr_with_type (op
, TREE_TYPE (t
));
7887 if (TREE_CODE (r
) == ADDR_EXPR
&& TREE_OPERAND (r
, 0) == oldop
)
7895 case FIX_TRUNC_EXPR
:
7900 case TRUTH_NOT_EXPR
:
7901 case FIXED_CONVERT_EXPR
:
7902 r
= cxx_eval_unary_expression (call
, t
, allow_non_constant
, addr
,
7903 non_constant_p
, overflow_p
);
7907 if (SIZEOF_EXPR_TYPE_P (t
))
7908 r
= cxx_sizeof_or_alignof_type (TREE_TYPE (TREE_OPERAND (t
, 0)),
7909 SIZEOF_EXPR
, false);
7910 else if (TYPE_P (TREE_OPERAND (t
, 0)))
7911 r
= cxx_sizeof_or_alignof_type (TREE_OPERAND (t
, 0), SIZEOF_EXPR
,
7914 r
= cxx_sizeof_or_alignof_expr (TREE_OPERAND (t
, 0), SIZEOF_EXPR
,
7916 if (r
== error_mark_node
)
7918 VERIFY_CONSTANT (r
);
7923 /* check_return_expr sometimes wraps a TARGET_EXPR in a
7924 COMPOUND_EXPR; don't get confused. Also handle EMPTY_CLASS_EXPR
7925 introduced by build_call_a. */
7926 tree op0
= TREE_OPERAND (t
, 0);
7927 tree op1
= TREE_OPERAND (t
, 1);
7929 if ((TREE_CODE (op0
) == TARGET_EXPR
&& op1
== TARGET_EXPR_SLOT (op0
))
7930 || TREE_CODE (op1
) == EMPTY_CLASS_EXPR
)
7931 r
= cxx_eval_constant_expression (call
, op0
, allow_non_constant
,
7932 addr
, non_constant_p
, overflow_p
);
7935 /* Check that the LHS is constant and then discard it. */
7936 cxx_eval_constant_expression (call
, op0
, allow_non_constant
,
7937 false, non_constant_p
, overflow_p
);
7938 op1
= TREE_OPERAND (t
, 1);
7939 r
= cxx_eval_constant_expression (call
, op1
, allow_non_constant
,
7940 addr
, non_constant_p
, overflow_p
);
7945 case POINTER_PLUS_EXPR
:
7949 case TRUNC_DIV_EXPR
:
7951 case FLOOR_DIV_EXPR
:
7952 case ROUND_DIV_EXPR
:
7953 case TRUNC_MOD_EXPR
:
7955 case ROUND_MOD_EXPR
:
7957 case EXACT_DIV_EXPR
:
7967 case TRUTH_XOR_EXPR
:
7974 case UNORDERED_EXPR
:
7983 r
= cxx_eval_binary_expression (call
, t
, allow_non_constant
, addr
,
7984 non_constant_p
, overflow_p
);
7987 /* fold can introduce non-IF versions of these; still treat them as
7988 short-circuiting. */
7989 case TRUTH_AND_EXPR
:
7990 case TRUTH_ANDIF_EXPR
:
7991 r
= cxx_eval_logical_expression (call
, t
, boolean_false_node
,
7993 allow_non_constant
, addr
,
7994 non_constant_p
, overflow_p
);
7998 case TRUTH_ORIF_EXPR
:
7999 r
= cxx_eval_logical_expression (call
, t
, boolean_true_node
,
8001 allow_non_constant
, addr
,
8002 non_constant_p
, overflow_p
);
8006 r
= cxx_eval_array_reference (call
, t
, allow_non_constant
, addr
,
8007 non_constant_p
, overflow_p
);
8011 r
= cxx_eval_component_reference (call
, t
, allow_non_constant
, addr
,
8012 non_constant_p
, overflow_p
);
8016 r
= cxx_eval_bit_field_ref (call
, t
, allow_non_constant
, addr
,
8017 non_constant_p
, overflow_p
);
8022 r
= cxx_eval_conditional_expression (call
, t
, allow_non_constant
, addr
,
8023 non_constant_p
, overflow_p
);
8027 r
= cxx_eval_bare_aggregate (call
, t
, allow_non_constant
, addr
,
8028 non_constant_p
, overflow_p
);
8032 /* We can get this in a defaulted constructor for a class with a
8033 non-static data member of array type. Either the initializer will
8034 be NULL, meaning default-initialization, or it will be an lvalue
8035 or xvalue of the same type, meaning direct-initialization from the
8036 corresponding member. */
8037 r
= cxx_eval_vec_init (call
, t
, allow_non_constant
, addr
,
8038 non_constant_p
, overflow_p
);
8042 r
= cxx_eval_vec_perm_expr (call
, t
, allow_non_constant
, addr
,
8043 non_constant_p
, overflow_p
);
8047 case VIEW_CONVERT_EXPR
:
8050 tree oldop
= TREE_OPERAND (t
, 0);
8051 tree op
= cxx_eval_constant_expression (call
, oldop
,
8052 allow_non_constant
, addr
,
8053 non_constant_p
, overflow_p
);
8054 if (*non_constant_p
)
8057 /* We didn't fold at the top so we could check for ptr-int
8060 r
= fold_build1 (TREE_CODE (t
), TREE_TYPE (t
), op
);
8061 /* Conversion of an out-of-range value has implementation-defined
8062 behavior; the language considers it different from arithmetic
8063 overflow, which is undefined. */
8064 if (TREE_OVERFLOW_P (r
) && !TREE_OVERFLOW_P (op
))
8065 TREE_OVERFLOW (r
) = false;
8069 case EMPTY_CLASS_EXPR
:
8070 /* This is good enough for a function argument that might not get
8071 used, and they can't do anything with it, so just return it. */
8075 case PREINCREMENT_EXPR
:
8076 case POSTINCREMENT_EXPR
:
8077 case PREDECREMENT_EXPR
:
8078 case POSTDECREMENT_EXPR
:
8082 case VEC_DELETE_EXPR
:
8086 /* GCC internal stuff. */
8089 case WITH_CLEANUP_EXPR
:
8090 case STATEMENT_LIST
:
8092 case NON_DEPENDENT_EXPR
:
8096 if (!allow_non_constant
)
8097 error_at (EXPR_LOC_OR_HERE (t
),
8098 "expression %qE is not a constant-expression", t
);
8099 *non_constant_p
= true;
8103 internal_error ("unexpected expression %qE of kind %s", t
,
8104 tree_code_name
[TREE_CODE (t
)]);
8105 *non_constant_p
= true;
8109 if (r
== error_mark_node
)
8110 *non_constant_p
= true;
8112 if (*non_constant_p
)
8119 cxx_eval_outermost_constant_expr (tree t
, bool allow_non_constant
)
8121 bool non_constant_p
= false;
8122 bool overflow_p
= false;
8123 tree r
= cxx_eval_constant_expression (NULL
, t
, allow_non_constant
,
8124 false, &non_constant_p
, &overflow_p
);
8126 verify_constant (r
, allow_non_constant
, &non_constant_p
, &overflow_p
);
8128 if (TREE_CODE (t
) != CONSTRUCTOR
8129 && cp_has_mutable_p (TREE_TYPE (t
)))
8131 /* We allow a mutable type if the original expression was a
8132 CONSTRUCTOR so that we can do aggregate initialization of
8133 constexpr variables. */
8134 if (!allow_non_constant
)
8135 error ("%qT cannot be the type of a complete constant expression "
8136 "because it has mutable sub-objects", TREE_TYPE (t
));
8137 non_constant_p
= true;
8140 /* Technically we should check this for all subexpressions, but that
8141 runs into problems with our internal representation of pointer
8142 subtraction and the 5.19 rules are still in flux. */
8143 if (CONVERT_EXPR_CODE_P (TREE_CODE (r
))
8144 && ARITHMETIC_TYPE_P (TREE_TYPE (r
))
8145 && TREE_CODE (TREE_OPERAND (r
, 0)) == ADDR_EXPR
)
8147 if (!allow_non_constant
)
8148 error ("conversion from pointer type %qT "
8149 "to arithmetic type %qT in a constant-expression",
8150 TREE_TYPE (TREE_OPERAND (r
, 0)), TREE_TYPE (r
));
8151 non_constant_p
= true;
8154 if (!non_constant_p
&& overflow_p
)
8155 non_constant_p
= true;
8157 if (non_constant_p
&& !allow_non_constant
)
8158 return error_mark_node
;
8159 else if (non_constant_p
&& TREE_CONSTANT (r
))
8161 /* This isn't actually constant, so unset TREE_CONSTANT. */
8164 else if (TREE_CODE (r
) == CONSTRUCTOR
)
8165 r
= build1 (VIEW_CONVERT_EXPR
, TREE_TYPE (r
), r
);
8167 r
= build_nop (TREE_TYPE (r
), r
);
8168 TREE_CONSTANT (r
) = false;
8170 else if (non_constant_p
|| r
== t
)
8173 if (TREE_CODE (r
) == CONSTRUCTOR
&& CLASS_TYPE_P (TREE_TYPE (r
)))
8175 if (TREE_CODE (t
) == TARGET_EXPR
8176 && TARGET_EXPR_INITIAL (t
) == r
)
8180 r
= get_target_expr (r
);
8181 TREE_CONSTANT (r
) = true;
8189 /* Returns true if T is a valid subexpression of a constant expression,
8190 even if it isn't itself a constant expression. */
8193 is_sub_constant_expr (tree t
)
8195 bool non_constant_p
= false;
8196 bool overflow_p
= false;
8197 cxx_eval_constant_expression (NULL
, t
, true, false, &non_constant_p
,
8199 return !non_constant_p
&& !overflow_p
;
8202 /* If T represents a constant expression returns its reduced value.
8203 Otherwise return error_mark_node. If T is dependent, then
8207 cxx_constant_value (tree t
)
8209 return cxx_eval_outermost_constant_expr (t
, false);
8212 /* If T is a constant expression, returns its reduced value.
8213 Otherwise, if T does not have TREE_CONSTANT set, returns T.
8214 Otherwise, returns a version of T without TREE_CONSTANT. */
8217 maybe_constant_value (tree t
)
8221 if (type_dependent_expression_p (t
)
8222 || type_unknown_p (t
)
8223 || BRACE_ENCLOSED_INITIALIZER_P (t
)
8224 || !potential_constant_expression (t
)
8225 || value_dependent_expression_p (t
))
8227 if (TREE_OVERFLOW_P (t
))
8229 t
= build_nop (TREE_TYPE (t
), t
);
8230 TREE_CONSTANT (t
) = false;
8235 r
= cxx_eval_outermost_constant_expr (t
, true);
8236 #ifdef ENABLE_CHECKING
8237 /* cp_tree_equal looks through NOPs, so allow them. */
8239 || CONVERT_EXPR_P (t
)
8240 || (TREE_CONSTANT (t
) && !TREE_CONSTANT (r
))
8241 || !cp_tree_equal (r
, t
));
8246 /* Like maybe_constant_value, but returns a CONSTRUCTOR directly, rather
8247 than wrapped in a TARGET_EXPR. */
8250 maybe_constant_init (tree t
)
8252 t
= maybe_constant_value (t
);
8253 if (TREE_CODE (t
) == TARGET_EXPR
)
8255 tree init
= TARGET_EXPR_INITIAL (t
);
8256 if (TREE_CODE (init
) == CONSTRUCTOR
)
8263 /* FIXME see ADDR_EXPR section in potential_constant_expression_1. */
8264 /* Return true if the object referred to by REF has automatic or thread
8267 enum { ck_ok
, ck_bad
, ck_unknown
};
8269 check_automatic_or_tls (tree ref
)
8271 enum machine_mode mode
;
8272 HOST_WIDE_INT bitsize
, bitpos
;
8274 int volatilep
= 0, unsignedp
= 0;
8275 tree decl
= get_inner_reference (ref
, &bitsize
, &bitpos
, &offset
,
8276 &mode
, &unsignedp
, &volatilep
, false);
8279 /* If there isn't a decl in the middle, we don't know the linkage here,
8280 and this isn't a constant expression anyway. */
8283 dk
= decl_storage_duration (decl
);
8284 return (dk
== dk_auto
|| dk
== dk_thread
) ? ck_bad
: ck_ok
;
8288 /* Return true if T denotes a potentially constant expression. Issue
8289 diagnostic as appropriate under control of FLAGS. If WANT_RVAL is true,
8290 an lvalue-rvalue conversion is implied.
8292 C++0x [expr.const] used to say
8294 6 An expression is a potential constant expression if it is
8295 a constant expression where all occurences of function
8296 parameters are replaced by arbitrary constant expressions
8297 of the appropriate type.
8299 2 A conditional expression is a constant expression unless it
8300 involves one of the following as a potentially evaluated
8301 subexpression (3.2), but subexpressions of logical AND (5.14),
8302 logical OR (5.15), and conditional (5.16) operations that are
8303 not evaluated are not considered. */
8306 potential_constant_expression_1 (tree t
, bool want_rval
, tsubst_flags_t flags
)
8308 enum { any
= false, rval
= true };
8312 if (t
== error_mark_node
)
8316 if (TREE_THIS_VOLATILE (t
))
8318 if (flags
& tf_error
)
8319 error ("expression %qE has side-effects", t
);
8322 if (CONSTANT_CLASS_P (t
))
8325 switch (TREE_CODE (t
))
8331 case TEMPLATE_ID_EXPR
:
8338 case TEMPLATE_PARM_INDEX
:
8340 case IDENTIFIER_NODE
:
8341 case USERDEF_LITERAL
:
8342 /* We can see a FIELD_DECL in a pointer-to-member expression. */
8348 case AGGR_INIT_EXPR
:
8350 /* -- an invocation of a function other than a constexpr function
8351 or a constexpr constructor. */
8353 tree fun
= get_function_named_in_call (t
);
8354 const int nargs
= call_expr_nargs (t
);
8357 if (is_overloaded_fn (fun
))
8359 if (TREE_CODE (fun
) == FUNCTION_DECL
)
8361 if (builtin_valid_in_constant_expr_p (fun
))
8363 if (!DECL_DECLARED_CONSTEXPR_P (fun
)
8364 /* Allow any built-in function; if the expansion
8365 isn't constant, we'll deal with that then. */
8366 && !is_builtin_fn (fun
))
8368 if (flags
& tf_error
)
8370 error_at (EXPR_LOC_OR_HERE (t
),
8371 "call to non-constexpr function %qD", fun
);
8372 explain_invalid_constexpr_fn (fun
);
8376 /* A call to a non-static member function takes the address
8377 of the object as the first argument. But in a constant
8378 expression the address will be folded away, so look
8380 if (DECL_NONSTATIC_MEMBER_FUNCTION_P (fun
)
8381 && !DECL_CONSTRUCTOR_P (fun
))
8383 tree x
= get_nth_callarg (t
, 0);
8384 if (is_this_parameter (x
))
8386 if (DECL_CONSTRUCTOR_P (DECL_CONTEXT (x
)))
8388 if (flags
& tf_error
)
8389 sorry ("calling a member function of the "
8390 "object being constructed in a constant "
8394 /* Otherwise OK. */;
8396 else if (!potential_constant_expression_1 (x
, rval
, flags
))
8402 fun
= get_first_fn (fun
);
8403 /* Skip initial arguments to base constructors. */
8404 if (DECL_BASE_CONSTRUCTOR_P (fun
))
8405 i
= num_artificial_parms_for (fun
);
8406 fun
= DECL_ORIGIN (fun
);
8410 if (potential_constant_expression_1 (fun
, rval
, flags
))
8411 /* Might end up being a constant function pointer. */;
8415 for (; i
< nargs
; ++i
)
8417 tree x
= get_nth_callarg (t
, i
);
8418 if (!potential_constant_expression_1 (x
, rval
, flags
))
8424 case NON_LVALUE_EXPR
:
8425 /* -- an lvalue-to-rvalue conversion (4.1) unless it is applied to
8426 -- an lvalue of integral type that refers to a non-volatile
8427 const variable or static data member initialized with
8428 constant expressions, or
8430 -- an lvalue of literal type that refers to non-volatile
8431 object defined with constexpr, or that refers to a
8432 sub-object of such an object; */
8433 return potential_constant_expression_1 (TREE_OPERAND (t
, 0), rval
, flags
);
8436 if (want_rval
&& !decl_constant_var_p (t
)
8437 && !dependent_type_p (TREE_TYPE (t
)))
8439 if (flags
& tf_error
)
8440 non_const_var_error (t
);
8447 case VIEW_CONVERT_EXPR
:
8448 /* -- a reinterpret_cast. FIXME not implemented, and this rule
8449 may change to something more specific to type-punning (DR 1312). */
8451 tree from
= TREE_OPERAND (t
, 0);
8452 return (potential_constant_expression_1
8453 (from
, TREE_CODE (t
) != VIEW_CONVERT_EXPR
, flags
));
8457 /* -- a unary operator & that is applied to an lvalue that
8458 designates an object with thread or automatic storage
8460 t
= TREE_OPERAND (t
, 0);
8462 /* FIXME adjust when issue 1197 is fully resolved. For now don't do
8463 any checking here, as we might dereference the pointer later. If
8464 we remove this code, also remove check_automatic_or_tls. */
8465 i
= check_automatic_or_tls (t
);
8470 if (flags
& tf_error
)
8471 error ("address-of an object %qE with thread local or "
8472 "automatic storage is not a constant expression", t
);
8476 return potential_constant_expression_1 (t
, any
, flags
);
8482 /* -- a class member access unless its postfix-expression is
8483 of literal type or of pointer to literal type. */
8484 /* This test would be redundant, as it follows from the
8485 postfix-expression being a potential constant expression. */
8486 return potential_constant_expression_1 (TREE_OPERAND (t
, 0),
8489 case EXPR_PACK_EXPANSION
:
8490 return potential_constant_expression_1 (PACK_EXPANSION_PATTERN (t
),
8495 tree x
= TREE_OPERAND (t
, 0);
8497 if (is_this_parameter (x
))
8499 if (DECL_CONTEXT (x
)
8500 && !DECL_DECLARED_CONSTEXPR_P (DECL_CONTEXT (x
)))
8502 if (flags
& tf_error
)
8503 error ("use of %<this%> in a constant expression");
8506 if (want_rval
&& DECL_CONTEXT (x
)
8507 && DECL_CONSTRUCTOR_P (DECL_CONTEXT (x
)))
8509 if (flags
& tf_error
)
8510 sorry ("use of the value of the object being constructed "
8511 "in a constant expression");
8516 return potential_constant_expression_1 (x
, rval
, flags
);
8520 case DYNAMIC_CAST_EXPR
:
8521 case PSEUDO_DTOR_EXPR
:
8522 case PREINCREMENT_EXPR
:
8523 case POSTINCREMENT_EXPR
:
8524 case PREDECREMENT_EXPR
:
8525 case POSTDECREMENT_EXPR
:
8529 case VEC_DELETE_EXPR
:
8533 /* GCC internal stuff. */
8536 case WITH_CLEANUP_EXPR
:
8537 case CLEANUP_POINT_EXPR
:
8538 case MUST_NOT_THROW_EXPR
:
8539 case TRY_CATCH_EXPR
:
8540 case STATEMENT_LIST
:
8541 /* Don't bother trying to define a subset of statement-expressions to
8542 be constant-expressions, at least for now. */
8546 case TRANSACTION_EXPR
:
8551 if (flags
& tf_error
)
8552 error ("expression %qE is not a constant-expression", t
);
8556 /* -- a typeid expression whose operand is of polymorphic
8559 tree e
= TREE_OPERAND (t
, 0);
8560 if (!TYPE_P (e
) && !type_dependent_expression_p (e
)
8561 && TYPE_POLYMORPHIC_P (TREE_TYPE (e
)))
8563 if (flags
& tf_error
)
8564 error ("typeid-expression is not a constant expression "
8565 "because %qE is of polymorphic type", e
);
8572 /* -- a subtraction where both operands are pointers. */
8573 if (TYPE_PTR_P (TREE_OPERAND (t
, 0))
8574 && TYPE_PTR_P (TREE_OPERAND (t
, 1)))
8576 if (flags
& tf_error
)
8577 error ("difference of two pointer expressions is not "
8578 "a constant expression");
8590 /* -- a relational or equality operator where at least
8591 one of the operands is a pointer. */
8592 if (TYPE_PTR_P (TREE_OPERAND (t
, 0))
8593 || TYPE_PTR_P (TREE_OPERAND (t
, 1)))
8595 if (flags
& tf_error
)
8596 error ("pointer comparison expression is not a "
8597 "constant expression");
8605 if (TYPE_P (TREE_OPERAND (t
, 0)))
8607 /* else fall through. */
8613 case FIX_TRUNC_EXPR
:
8617 case TRUTH_NOT_EXPR
:
8618 case FIXED_CONVERT_EXPR
:
8619 case UNARY_PLUS_EXPR
:
8620 return potential_constant_expression_1 (TREE_OPERAND (t
, 0), rval
,
8624 case CONST_CAST_EXPR
:
8625 case STATIC_CAST_EXPR
:
8626 case REINTERPRET_CAST_EXPR
:
8627 case IMPLICIT_CONV_EXPR
:
8628 if (cxx_dialect
< cxx0x
8629 && !dependent_type_p (TREE_TYPE (t
))
8630 && !INTEGRAL_OR_ENUMERATION_TYPE_P (TREE_TYPE (t
)))
8631 /* In C++98, a conversion to non-integral type can't be part of a
8632 constant expression. */
8634 if (flags
& tf_error
)
8635 error ("cast to non-integral type %qT in a constant expression",
8640 return (potential_constant_expression_1
8641 (TREE_OPERAND (t
, 0),
8642 TREE_CODE (TREE_TYPE (t
)) != REFERENCE_TYPE
, flags
));
8645 case NON_DEPENDENT_EXPR
:
8646 /* For convenience. */
8648 return potential_constant_expression_1 (TREE_OPERAND (t
, 0),
8652 return potential_constant_expression_1 (TREE_OPERAND (t
, 1),
8656 if (!literal_type_p (TREE_TYPE (t
)))
8658 if (flags
& tf_error
)
8660 error ("temporary of non-literal type %qT in a "
8661 "constant expression", TREE_TYPE (t
));
8662 explain_non_literal_class (TREE_TYPE (t
));
8667 return potential_constant_expression_1 (TREE_OPERAND (t
, 1),
8672 vec
<constructor_elt
, va_gc
> *v
= CONSTRUCTOR_ELTS (t
);
8673 constructor_elt
*ce
;
8674 for (i
= 0; vec_safe_iterate (v
, i
, &ce
); ++i
)
8675 if (!potential_constant_expression_1 (ce
->value
, want_rval
, flags
))
8682 gcc_assert (TREE_PURPOSE (t
) == NULL_TREE
8683 || DECL_P (TREE_PURPOSE (t
)));
8684 if (!potential_constant_expression_1 (TREE_VALUE (t
), want_rval
,
8687 if (TREE_CHAIN (t
) == NULL_TREE
)
8689 return potential_constant_expression_1 (TREE_CHAIN (t
), want_rval
,
8693 case TRUNC_DIV_EXPR
:
8695 case FLOOR_DIV_EXPR
:
8696 case ROUND_DIV_EXPR
:
8697 case TRUNC_MOD_EXPR
:
8699 case ROUND_MOD_EXPR
:
8701 tree denom
= TREE_OPERAND (t
, 1);
8702 if (!potential_constant_expression_1 (denom
, rval
, flags
))
8704 /* We can't call cxx_eval_outermost_constant_expr on an expression
8705 that hasn't been through fold_non_dependent_expr yet. */
8706 if (!processing_template_decl
)
8707 denom
= cxx_eval_outermost_constant_expr (denom
, true);
8708 if (integer_zerop (denom
))
8710 if (flags
& tf_error
)
8711 error ("division by zero is not a constant-expression");
8717 return potential_constant_expression_1 (TREE_OPERAND (t
, 0),
8724 /* check_return_expr sometimes wraps a TARGET_EXPR in a
8725 COMPOUND_EXPR; don't get confused. Also handle EMPTY_CLASS_EXPR
8726 introduced by build_call_a. */
8727 tree op0
= TREE_OPERAND (t
, 0);
8728 tree op1
= TREE_OPERAND (t
, 1);
8730 if ((TREE_CODE (op0
) == TARGET_EXPR
&& op1
== TARGET_EXPR_SLOT (op0
))
8731 || TREE_CODE (op1
) == EMPTY_CLASS_EXPR
)
8732 return potential_constant_expression_1 (op0
, want_rval
, flags
);
8737 /* If the first operand is the non-short-circuit constant, look at
8738 the second operand; otherwise we only care about the first one for
8740 case TRUTH_AND_EXPR
:
8741 case TRUTH_ANDIF_EXPR
:
8742 tmp
= boolean_true_node
;
8745 case TRUTH_ORIF_EXPR
:
8746 tmp
= boolean_false_node
;
8749 tree op
= TREE_OPERAND (t
, 0);
8750 if (!potential_constant_expression_1 (op
, rval
, flags
))
8752 if (!processing_template_decl
)
8753 op
= cxx_eval_outermost_constant_expr (op
, true);
8754 if (tree_int_cst_equal (op
, tmp
))
8755 return potential_constant_expression_1 (TREE_OPERAND (t
, 1), rval
, flags
);
8762 case POINTER_PLUS_EXPR
:
8764 case EXACT_DIV_EXPR
:
8774 case TRUTH_XOR_EXPR
:
8775 case UNORDERED_EXPR
:
8788 case ARRAY_RANGE_REF
:
8792 for (i
= 0; i
< 2; ++i
)
8793 if (!potential_constant_expression_1 (TREE_OPERAND (t
, i
),
8800 for (i
= 0; i
< 3; ++i
)
8801 if (!potential_constant_expression_1 (TREE_OPERAND (t
, i
),
8808 /* If the condition is a known constant, we know which of the legs we
8809 care about; otherwise we only require that the condition and
8810 either of the legs be potentially constant. */
8811 tmp
= TREE_OPERAND (t
, 0);
8812 if (!potential_constant_expression_1 (tmp
, rval
, flags
))
8814 if (!processing_template_decl
)
8815 tmp
= cxx_eval_outermost_constant_expr (tmp
, true);
8816 if (integer_zerop (tmp
))
8817 return potential_constant_expression_1 (TREE_OPERAND (t
, 2),
8819 else if (TREE_CODE (tmp
) == INTEGER_CST
)
8820 return potential_constant_expression_1 (TREE_OPERAND (t
, 1),
8822 for (i
= 1; i
< 3; ++i
)
8823 if (potential_constant_expression_1 (TREE_OPERAND (t
, i
),
8824 want_rval
, tf_none
))
8826 if (flags
& tf_error
)
8827 error ("expression %qE is not a constant-expression", t
);
8831 if (VEC_INIT_EXPR_IS_CONSTEXPR (t
))
8833 if (flags
& tf_error
)
8835 error ("non-constant array initialization");
8836 diagnose_non_constexpr_vec_init (t
);
8841 if (objc_is_property_ref (t
))
8844 sorry ("unexpected AST of kind %s", tree_code_name
[TREE_CODE (t
)]);
8850 /* The main entry point to the above. */
8853 potential_constant_expression (tree t
)
8855 return potential_constant_expression_1 (t
, false, tf_none
);
8858 /* As above, but require a constant rvalue. */
8861 potential_rvalue_constant_expression (tree t
)
8863 return potential_constant_expression_1 (t
, true, tf_none
);
8866 /* Like above, but complain about non-constant expressions. */
8869 require_potential_constant_expression (tree t
)
8871 return potential_constant_expression_1 (t
, false, tf_warning_or_error
);
8874 /* Cross product of the above. */
8877 require_potential_rvalue_constant_expression (tree t
)
8879 return potential_constant_expression_1 (t
, true, tf_warning_or_error
);
8882 /* Constructor for a lambda expression. */
8885 build_lambda_expr (void)
8887 tree lambda
= make_node (LAMBDA_EXPR
);
8888 LAMBDA_EXPR_DEFAULT_CAPTURE_MODE (lambda
) = CPLD_NONE
;
8889 LAMBDA_EXPR_CAPTURE_LIST (lambda
) = NULL_TREE
;
8890 LAMBDA_EXPR_THIS_CAPTURE (lambda
) = NULL_TREE
;
8891 LAMBDA_EXPR_PENDING_PROXIES (lambda
) = NULL
;
8892 LAMBDA_EXPR_RETURN_TYPE (lambda
) = NULL_TREE
;
8893 LAMBDA_EXPR_MUTABLE_P (lambda
) = false;
8897 /* Create the closure object for a LAMBDA_EXPR. */
8900 build_lambda_object (tree lambda_expr
)
8902 /* Build aggregate constructor call.
8903 - cp_parser_braced_list
8904 - cp_parser_functional_cast */
8905 vec
<constructor_elt
, va_gc
> *elts
= NULL
;
8906 tree node
, expr
, type
;
8907 location_t saved_loc
;
8909 if (processing_template_decl
)
8912 /* Make sure any error messages refer to the lambda-introducer. */
8913 saved_loc
= input_location
;
8914 input_location
= LAMBDA_EXPR_LOCATION (lambda_expr
);
8916 for (node
= LAMBDA_EXPR_CAPTURE_LIST (lambda_expr
);
8918 node
= TREE_CHAIN (node
))
8920 tree field
= TREE_PURPOSE (node
);
8921 tree val
= TREE_VALUE (node
);
8923 if (field
== error_mark_node
)
8925 expr
= error_mark_node
;
8932 /* Mere mortals can't copy arrays with aggregate initialization, so
8933 do some magic to make it work here. */
8934 if (TREE_CODE (TREE_TYPE (field
)) == ARRAY_TYPE
)
8935 val
= build_array_copy (val
);
8936 else if (DECL_NORMAL_CAPTURE_P (field
)
8937 && TREE_CODE (TREE_TYPE (field
)) != REFERENCE_TYPE
)
8939 /* "the entities that are captured by copy are used to
8940 direct-initialize each corresponding non-static data
8941 member of the resulting closure object."
8943 There's normally no way to express direct-initialization
8944 from an element of a CONSTRUCTOR, so we build up a special
8945 TARGET_EXPR to bypass the usual copy-initialization. */
8946 val
= force_rvalue (val
, tf_warning_or_error
);
8947 if (TREE_CODE (val
) == TARGET_EXPR
)
8948 TARGET_EXPR_DIRECT_INIT_P (val
) = true;
8951 CONSTRUCTOR_APPEND_ELT (elts
, DECL_NAME (field
), val
);
8954 expr
= build_constructor (init_list_type_node
, elts
);
8955 CONSTRUCTOR_IS_DIRECT_INIT (expr
) = 1;
8957 /* N2927: "[The closure] class type is not an aggregate."
8958 But we briefly treat it as an aggregate to make this simpler. */
8959 type
= LAMBDA_EXPR_CLOSURE (lambda_expr
);
8960 CLASSTYPE_NON_AGGREGATE (type
) = 0;
8961 expr
= finish_compound_literal (type
, expr
, tf_warning_or_error
);
8962 CLASSTYPE_NON_AGGREGATE (type
) = 1;
8965 input_location
= saved_loc
;
8969 /* Return an initialized RECORD_TYPE for LAMBDA.
8970 LAMBDA must have its explicit captures already. */
8973 begin_lambda_type (tree lambda
)
8978 /* Unique name. This is just like an unnamed class, but we cannot use
8979 make_anon_name because of certain checks against TYPE_ANONYMOUS_P. */
8981 name
= make_lambda_name ();
8983 /* Create the new RECORD_TYPE for this lambda. */
8984 type
= xref_tag (/*tag_code=*/record_type
,
8986 /*scope=*/ts_lambda
,
8987 /*template_header_p=*/false);
8990 /* Designate it as a struct so that we can use aggregate initialization. */
8991 CLASSTYPE_DECLARED_CLASS (type
) = false;
8993 /* Cross-reference the expression and the type. */
8994 LAMBDA_EXPR_CLOSURE (lambda
) = type
;
8995 CLASSTYPE_LAMBDA_EXPR (type
) = lambda
;
8997 /* Clear base types. */
8998 xref_basetypes (type
, /*bases=*/NULL_TREE
);
9000 /* Start the class. */
9001 type
= begin_class_definition (type
);
9002 if (type
== error_mark_node
)
9003 return error_mark_node
;
9008 /* Returns the type to use for the return type of the operator() of a
9012 lambda_return_type (tree expr
)
9014 if (expr
== NULL_TREE
)
9015 return void_type_node
;
9016 if (type_unknown_p (expr
)
9017 || BRACE_ENCLOSED_INITIALIZER_P (expr
))
9019 cxx_incomplete_type_error (expr
, TREE_TYPE (expr
));
9020 return void_type_node
;
9022 gcc_checking_assert (!type_dependent_expression_p (expr
));
9023 return cv_unqualified (type_decays_to (unlowered_expr_type (expr
)));
9026 /* Given a LAMBDA_EXPR or closure type LAMBDA, return the op() of the
9030 lambda_function (tree lambda
)
9033 if (TREE_CODE (lambda
) == LAMBDA_EXPR
)
9034 type
= LAMBDA_EXPR_CLOSURE (lambda
);
9037 gcc_assert (LAMBDA_TYPE_P (type
));
9038 /* Don't let debug_tree cause instantiation. */
9039 if (CLASSTYPE_TEMPLATE_INSTANTIATION (type
)
9040 && !COMPLETE_OR_OPEN_TYPE_P (type
))
9042 lambda
= lookup_member (type
, ansi_opname (CALL_EXPR
),
9043 /*protect=*/0, /*want_type=*/false,
9044 tf_warning_or_error
);
9046 lambda
= BASELINK_FUNCTIONS (lambda
);
9050 /* Returns the type to use for the FIELD_DECL corresponding to the
9052 The caller should add REFERENCE_TYPE for capture by reference. */
9055 lambda_capture_field_type (tree expr
)
9058 if (!TREE_TYPE (expr
) || WILDCARD_TYPE_P (TREE_TYPE (expr
)))
9060 type
= cxx_make_type (DECLTYPE_TYPE
);
9061 DECLTYPE_TYPE_EXPR (type
) = expr
;
9062 DECLTYPE_FOR_LAMBDA_CAPTURE (type
) = true;
9063 SET_TYPE_STRUCTURAL_EQUALITY (type
);
9066 type
= non_reference (unlowered_expr_type (expr
));
9070 /* Insert the deduced return type for an auto function. */
9073 apply_deduced_return_type (tree fco
, tree return_type
)
9077 if (return_type
== error_mark_node
)
9080 if (LAMBDA_FUNCTION_P (fco
))
9082 tree lambda
= CLASSTYPE_LAMBDA_EXPR (current_class_type
);
9083 LAMBDA_EXPR_RETURN_TYPE (lambda
) = return_type
;
9086 if (DECL_CONV_FN_P (fco
))
9087 DECL_NAME (fco
) = mangle_conv_op_name_for_type (return_type
);
9089 TREE_TYPE (fco
) = change_return_type (return_type
, TREE_TYPE (fco
));
9091 result
= DECL_RESULT (fco
);
9092 if (result
== NULL_TREE
)
9094 if (TREE_TYPE (result
) == return_type
)
9097 /* We already have a DECL_RESULT from start_preparsed_function.
9098 Now we need to redo the work it and allocate_struct_function
9099 did to reflect the new type. */
9100 gcc_assert (current_function_decl
== fco
);
9101 result
= build_decl (input_location
, RESULT_DECL
, NULL_TREE
,
9102 TYPE_MAIN_VARIANT (return_type
));
9103 DECL_ARTIFICIAL (result
) = 1;
9104 DECL_IGNORED_P (result
) = 1;
9105 cp_apply_type_quals_to_decl (cp_type_quals (return_type
),
9108 DECL_RESULT (fco
) = result
;
9110 if (!processing_template_decl
)
9112 bool aggr
= aggregate_value_p (result
, fco
);
9113 #ifdef PCC_STATIC_STRUCT_RETURN
9114 cfun
->returns_pcc_struct
= aggr
;
9116 cfun
->returns_struct
= aggr
;
9121 /* DECL is a local variable or parameter from the surrounding scope of a
9122 lambda-expression. Returns the decltype for a use of the capture field
9123 for DECL even if it hasn't been captured yet. */
9126 capture_decltype (tree decl
)
9128 tree lam
= CLASSTYPE_LAMBDA_EXPR (DECL_CONTEXT (current_function_decl
));
9129 /* FIXME do lookup instead of list walk? */
9130 tree cap
= value_member (decl
, LAMBDA_EXPR_CAPTURE_LIST (lam
));
9134 type
= TREE_TYPE (TREE_PURPOSE (cap
));
9136 switch (LAMBDA_EXPR_DEFAULT_CAPTURE_MODE (lam
))
9139 error ("%qD is not captured", decl
);
9140 return error_mark_node
;
9143 type
= TREE_TYPE (decl
);
9144 if (TREE_CODE (type
) == REFERENCE_TYPE
9145 && TREE_CODE (TREE_TYPE (type
)) != FUNCTION_TYPE
)
9146 type
= TREE_TYPE (type
);
9149 case CPLD_REFERENCE
:
9150 type
= TREE_TYPE (decl
);
9151 if (TREE_CODE (type
) != REFERENCE_TYPE
)
9152 type
= build_reference_type (TREE_TYPE (decl
));
9159 if (TREE_CODE (type
) != REFERENCE_TYPE
)
9161 if (!LAMBDA_EXPR_MUTABLE_P (lam
))
9162 type
= cp_build_qualified_type (type
, (cp_type_quals (type
)
9164 type
= build_reference_type (type
);
9169 /* Returns true iff DECL is a lambda capture proxy variable created by
9170 build_capture_proxy. */
9173 is_capture_proxy (tree decl
)
9175 return (TREE_CODE (decl
) == VAR_DECL
9176 && DECL_HAS_VALUE_EXPR_P (decl
)
9177 && !DECL_ANON_UNION_VAR_P (decl
)
9178 && LAMBDA_FUNCTION_P (DECL_CONTEXT (decl
)));
9181 /* Returns true iff DECL is a capture proxy for a normal capture
9182 (i.e. without explicit initializer). */
9185 is_normal_capture_proxy (tree decl
)
9187 if (!is_capture_proxy (decl
))
9188 /* It's not a capture proxy. */
9191 /* It is a capture proxy, is it a normal capture? */
9192 tree val
= DECL_VALUE_EXPR (decl
);
9193 if (val
== error_mark_node
)
9196 gcc_assert (TREE_CODE (val
) == COMPONENT_REF
);
9197 val
= TREE_OPERAND (val
, 1);
9198 return DECL_NORMAL_CAPTURE_P (val
);
9201 /* VAR is a capture proxy created by build_capture_proxy; add it to the
9202 current function, which is the operator() for the appropriate lambda. */
9205 insert_capture_proxy (tree var
)
9207 cp_binding_level
*b
;
9211 /* Put the capture proxy in the extra body block so that it won't clash
9212 with a later local variable. */
9213 b
= current_binding_level
;
9214 for (skip
= 0; ; ++skip
)
9216 cp_binding_level
*n
= b
->level_chain
;
9217 if (n
->kind
== sk_function_parms
)
9221 pushdecl_with_scope (var
, b
, false);
9223 /* And put a DECL_EXPR in the STATEMENT_LIST for the same block. */
9224 var
= build_stmt (DECL_SOURCE_LOCATION (var
), DECL_EXPR
, var
);
9225 stmt_list
= (*stmt_list_stack
)[stmt_list_stack
->length () - 1 - skip
];
9226 gcc_assert (stmt_list
);
9227 append_to_statement_list_force (var
, &stmt_list
);
9230 /* We've just finished processing a lambda; if the containing scope is also
9231 a lambda, insert any capture proxies that were created while processing
9232 the nested lambda. */
9235 insert_pending_capture_proxies (void)
9238 vec
<tree
, va_gc
> *proxies
;
9241 if (!current_function_decl
|| !LAMBDA_FUNCTION_P (current_function_decl
))
9244 lam
= CLASSTYPE_LAMBDA_EXPR (DECL_CONTEXT (current_function_decl
));
9245 proxies
= LAMBDA_EXPR_PENDING_PROXIES (lam
);
9246 for (i
= 0; i
< vec_safe_length (proxies
); ++i
)
9248 tree var
= (*proxies
)[i
];
9249 insert_capture_proxy (var
);
9251 release_tree_vector (LAMBDA_EXPR_PENDING_PROXIES (lam
));
9252 LAMBDA_EXPR_PENDING_PROXIES (lam
) = NULL
;
9255 /* Given REF, a COMPONENT_REF designating a field in the lambda closure,
9256 return the type we want the proxy to have: the type of the field itself,
9257 with added const-qualification if the lambda isn't mutable and the
9258 capture is by value. */
9261 lambda_proxy_type (tree ref
)
9264 if (REFERENCE_REF_P (ref
))
9265 ref
= TREE_OPERAND (ref
, 0);
9266 type
= TREE_TYPE (ref
);
9267 if (type
&& !WILDCARD_TYPE_P (type
))
9269 type
= cxx_make_type (DECLTYPE_TYPE
);
9270 DECLTYPE_TYPE_EXPR (type
) = ref
;
9271 DECLTYPE_FOR_LAMBDA_PROXY (type
) = true;
9272 SET_TYPE_STRUCTURAL_EQUALITY (type
);
9276 /* MEMBER is a capture field in a lambda closure class. Now that we're
9277 inside the operator(), build a placeholder var for future lookups and
9281 build_capture_proxy (tree member
)
9283 tree var
, object
, fn
, closure
, name
, lam
, type
;
9285 closure
= DECL_CONTEXT (member
);
9286 fn
= lambda_function (closure
);
9287 lam
= CLASSTYPE_LAMBDA_EXPR (closure
);
9289 /* The proxy variable forwards to the capture field. */
9290 object
= build_fold_indirect_ref (DECL_ARGUMENTS (fn
));
9291 object
= finish_non_static_data_member (member
, object
, NULL_TREE
);
9292 if (REFERENCE_REF_P (object
))
9293 object
= TREE_OPERAND (object
, 0);
9295 /* Remove the __ inserted by add_capture. */
9296 name
= get_identifier (IDENTIFIER_POINTER (DECL_NAME (member
)) + 2);
9298 type
= lambda_proxy_type (object
);
9299 var
= build_decl (input_location
, VAR_DECL
, name
, type
);
9300 SET_DECL_VALUE_EXPR (var
, object
);
9301 DECL_HAS_VALUE_EXPR_P (var
) = 1;
9302 DECL_ARTIFICIAL (var
) = 1;
9303 TREE_USED (var
) = 1;
9304 DECL_CONTEXT (var
) = fn
;
9306 if (name
== this_identifier
)
9308 gcc_assert (LAMBDA_EXPR_THIS_CAPTURE (lam
) == member
);
9309 LAMBDA_EXPR_THIS_CAPTURE (lam
) = var
;
9312 if (fn
== current_function_decl
)
9313 insert_capture_proxy (var
);
9315 vec_safe_push (LAMBDA_EXPR_PENDING_PROXIES (lam
), var
);
9320 /* From an ID and INITIALIZER, create a capture (by reference if
9321 BY_REFERENCE_P is true), add it to the capture-list for LAMBDA,
9325 add_capture (tree lambda
, tree id
, tree initializer
, bool by_reference_p
,
9326 bool explicit_init_p
)
9329 tree type
, member
, name
;
9331 type
= lambda_capture_field_type (initializer
);
9334 type
= build_reference_type (type
);
9335 if (!real_lvalue_p (initializer
))
9336 error ("cannot capture %qE by reference", initializer
);
9339 /* Capture by copy requires a complete type. */
9340 type
= complete_type (type
);
9342 /* Add __ to the beginning of the field name so that user code
9343 won't find the field with name lookup. We can't just leave the name
9344 unset because template instantiation uses the name to find
9345 instantiated fields. */
9346 buf
= (char *) alloca (IDENTIFIER_LENGTH (id
) + 3);
9347 buf
[1] = buf
[0] = '_';
9348 memcpy (buf
+ 2, IDENTIFIER_POINTER (id
),
9349 IDENTIFIER_LENGTH (id
) + 1);
9350 name
= get_identifier (buf
);
9352 /* If TREE_TYPE isn't set, we're still in the introducer, so check
9354 if (!LAMBDA_EXPR_CLOSURE (lambda
))
9356 if (IDENTIFIER_MARKED (name
))
9358 pedwarn (input_location
, 0,
9359 "already captured %qD in lambda expression", id
);
9362 IDENTIFIER_MARKED (name
) = true;
9365 /* Make member variable. */
9366 member
= build_lang_decl (FIELD_DECL
, name
, type
);
9368 if (!explicit_init_p
)
9369 /* Normal captures are invisible to name lookup but uses are replaced
9370 with references to the capture field; we implement this by only
9371 really making them invisible in unevaluated context; see
9372 qualify_lookup. For now, let's make explicitly initialized captures
9374 DECL_NORMAL_CAPTURE_P (member
) = true;
9376 if (id
== this_identifier
)
9377 LAMBDA_EXPR_THIS_CAPTURE (lambda
) = member
;
9379 /* Add it to the appropriate closure class if we've started it. */
9380 if (current_class_type
9381 && current_class_type
== LAMBDA_EXPR_CLOSURE (lambda
))
9382 finish_member_declaration (member
);
9384 LAMBDA_EXPR_CAPTURE_LIST (lambda
)
9385 = tree_cons (member
, initializer
, LAMBDA_EXPR_CAPTURE_LIST (lambda
));
9387 if (LAMBDA_EXPR_CLOSURE (lambda
))
9388 return build_capture_proxy (member
);
9389 /* For explicit captures we haven't started the function yet, so we wait
9390 and build the proxy from cp_parser_lambda_body. */
9394 /* Register all the capture members on the list CAPTURES, which is the
9395 LAMBDA_EXPR_CAPTURE_LIST for the lambda after the introducer. */
9398 register_capture_members (tree captures
)
9400 if (captures
== NULL_TREE
)
9403 register_capture_members (TREE_CHAIN (captures
));
9404 /* We set this in add_capture to avoid duplicates. */
9405 IDENTIFIER_MARKED (DECL_NAME (TREE_PURPOSE (captures
))) = false;
9406 finish_member_declaration (TREE_PURPOSE (captures
));
9409 /* Similar to add_capture, except this works on a stack of nested lambdas.
9410 BY_REFERENCE_P in this case is derived from the default capture mode.
9411 Returns the capture for the lambda at the bottom of the stack. */
9414 add_default_capture (tree lambda_stack
, tree id
, tree initializer
)
9416 bool this_capture_p
= (id
== this_identifier
);
9418 tree var
= NULL_TREE
;
9420 tree saved_class_type
= current_class_type
;
9424 for (node
= lambda_stack
;
9426 node
= TREE_CHAIN (node
))
9428 tree lambda
= TREE_VALUE (node
);
9430 current_class_type
= LAMBDA_EXPR_CLOSURE (lambda
);
9431 var
= add_capture (lambda
,
9436 && (LAMBDA_EXPR_DEFAULT_CAPTURE_MODE (lambda
)
9437 == CPLD_REFERENCE
)),
9438 /*explicit_init_p=*/false);
9439 initializer
= convert_from_reference (var
);
9442 current_class_type
= saved_class_type
;
9447 /* Return the capture pertaining to a use of 'this' in LAMBDA, in the form of an
9448 INDIRECT_REF, possibly adding it through default capturing. */
9451 lambda_expr_this_capture (tree lambda
)
9455 tree this_capture
= LAMBDA_EXPR_THIS_CAPTURE (lambda
);
9457 /* In unevaluated context this isn't an odr-use, so just return the
9459 if (cp_unevaluated_operand
)
9460 return lookup_name (this_identifier
);
9462 /* Try to default capture 'this' if we can. */
9464 && LAMBDA_EXPR_DEFAULT_CAPTURE_MODE (lambda
) != CPLD_NONE
)
9466 tree lambda_stack
= NULL_TREE
;
9467 tree init
= NULL_TREE
;
9469 /* If we are in a lambda function, we can move out until we hit:
9470 1. a non-lambda function or NSDMI,
9471 2. a lambda function capturing 'this', or
9472 3. a non-default capturing lambda function. */
9473 for (tree tlambda
= lambda
; ;)
9475 lambda_stack
= tree_cons (NULL_TREE
,
9479 if (LAMBDA_EXPR_EXTRA_SCOPE (tlambda
)
9480 && TREE_CODE (LAMBDA_EXPR_EXTRA_SCOPE (tlambda
)) == FIELD_DECL
)
9482 /* In an NSDMI, we don't have a function to look up the decl in,
9483 but the fake 'this' pointer that we're using for parsing is
9485 init
= scope_chain
->x_current_class_ptr
;
9487 (init
&& (TREE_TYPE (TREE_TYPE (init
))
9488 == current_nonlambda_class_type ()));
9492 tree closure_decl
= TYPE_NAME (LAMBDA_EXPR_CLOSURE (tlambda
));
9493 tree containing_function
= decl_function_context (closure_decl
);
9495 if (containing_function
== NULL_TREE
)
9496 /* We ran out of scopes; there's no 'this' to capture. */
9499 if (!LAMBDA_FUNCTION_P (containing_function
))
9501 /* We found a non-lambda function. */
9502 if (DECL_NONSTATIC_MEMBER_FUNCTION_P (containing_function
))
9503 /* First parameter is 'this'. */
9504 init
= DECL_ARGUMENTS (containing_function
);
9509 = CLASSTYPE_LAMBDA_EXPR (DECL_CONTEXT (containing_function
));
9511 if (LAMBDA_EXPR_THIS_CAPTURE (tlambda
))
9513 /* An outer lambda has already captured 'this'. */
9514 init
= LAMBDA_EXPR_THIS_CAPTURE (tlambda
);
9518 if (LAMBDA_EXPR_DEFAULT_CAPTURE_MODE (tlambda
) == CPLD_NONE
)
9519 /* An outer lambda won't let us capture 'this'. */
9524 this_capture
= add_default_capture (lambda_stack
,
9525 /*id=*/this_identifier
,
9531 error ("%<this%> was not captured for this lambda function");
9532 result
= error_mark_node
;
9536 /* To make sure that current_class_ref is for the lambda. */
9537 gcc_assert (TYPE_MAIN_VARIANT (TREE_TYPE (current_class_ref
))
9538 == LAMBDA_EXPR_CLOSURE (lambda
));
9540 result
= this_capture
;
9542 /* If 'this' is captured, each use of 'this' is transformed into an
9543 access to the corresponding unnamed data member of the closure
9544 type cast (_expr.cast_ 5.4) to the type of 'this'. [ The cast
9545 ensures that the transformed expression is an rvalue. ] */
9546 result
= rvalue (result
);
9552 /* We don't want to capture 'this' until we know we need it, i.e. after
9553 overload resolution has chosen a non-static member function. At that
9554 point we call this function to turn a dummy object into a use of the
9558 maybe_resolve_dummy (tree object
)
9560 if (!is_dummy_object (object
))
9563 tree type
= TYPE_MAIN_VARIANT (TREE_TYPE (object
));
9564 gcc_assert (TREE_CODE (type
) != POINTER_TYPE
);
9566 if (type
!= current_class_type
9567 && current_class_type
9568 && LAMBDA_TYPE_P (current_class_type
))
9570 /* In a lambda, need to go through 'this' capture. */
9571 tree lam
= CLASSTYPE_LAMBDA_EXPR (current_class_type
);
9572 tree cap
= lambda_expr_this_capture (lam
);
9573 object
= build_x_indirect_ref (EXPR_LOCATION (object
), cap
,
9574 RO_NULL
, tf_warning_or_error
);
9580 /* Returns the method basetype of the innermost non-lambda function, or
9581 NULL_TREE if none. */
9584 nonlambda_method_basetype (void)
9587 if (!current_class_ref
)
9590 type
= current_class_type
;
9591 if (!LAMBDA_TYPE_P (type
))
9594 /* Find the nearest enclosing non-lambda function. */
9595 fn
= TYPE_NAME (type
);
9597 fn
= decl_function_context (fn
);
9598 while (fn
&& LAMBDA_FUNCTION_P (fn
));
9600 if (!fn
|| !DECL_NONSTATIC_MEMBER_FUNCTION_P (fn
))
9603 return TYPE_METHOD_BASETYPE (TREE_TYPE (fn
));
9606 /* If the closure TYPE has a static op(), also add a conversion to function
9610 maybe_add_lambda_conv_op (tree type
)
9612 bool nested
= (current_function_decl
!= NULL_TREE
);
9613 tree callop
= lambda_function (type
);
9614 tree rettype
, name
, fntype
, fn
, body
, compound_stmt
;
9615 tree thistype
, stattype
, statfn
, convfn
, call
, arg
;
9616 vec
<tree
, va_gc
> *argvec
;
9618 if (LAMBDA_EXPR_CAPTURE_LIST (CLASSTYPE_LAMBDA_EXPR (type
)) != NULL_TREE
)
9621 if (processing_template_decl
)
9624 stattype
= build_function_type (TREE_TYPE (TREE_TYPE (callop
)),
9625 FUNCTION_ARG_CHAIN (callop
));
9627 /* First build up the conversion op. */
9629 rettype
= build_pointer_type (stattype
);
9630 name
= mangle_conv_op_name_for_type (rettype
);
9631 thistype
= cp_build_qualified_type (type
, TYPE_QUAL_CONST
);
9632 fntype
= build_method_type_directly (thistype
, rettype
, void_list_node
);
9633 fn
= convfn
= build_lang_decl (FUNCTION_DECL
, name
, fntype
);
9634 DECL_SOURCE_LOCATION (fn
) = DECL_SOURCE_LOCATION (callop
);
9636 if (TARGET_PTRMEMFUNC_VBIT_LOCATION
== ptrmemfunc_vbit_in_pfn
9637 && DECL_ALIGN (fn
) < 2 * BITS_PER_UNIT
)
9638 DECL_ALIGN (fn
) = 2 * BITS_PER_UNIT
;
9640 SET_OVERLOADED_OPERATOR_CODE (fn
, TYPE_EXPR
);
9641 grokclassfn (type
, fn
, NO_SPECIAL
);
9642 set_linkage_according_to_type (type
, fn
);
9643 rest_of_decl_compilation (fn
, toplevel_bindings_p (), at_eof
);
9644 DECL_IN_AGGR_P (fn
) = 1;
9645 DECL_ARTIFICIAL (fn
) = 1;
9646 DECL_NOT_REALLY_EXTERN (fn
) = 1;
9647 DECL_DECLARED_INLINE_P (fn
) = 1;
9648 DECL_ARGUMENTS (fn
) = build_this_parm (fntype
, TYPE_QUAL_CONST
);
9650 DECL_INTERFACE_KNOWN (fn
) = 1;
9652 add_method (type
, fn
, NULL_TREE
);
9654 /* Generic thunk code fails for varargs; we'll complain in mark_used if
9655 the conversion op is used. */
9656 if (varargs_function_p (callop
))
9658 DECL_DELETED_FN (fn
) = 1;
9662 /* Now build up the thunk to be returned. */
9664 name
= get_identifier ("_FUN");
9665 fn
= statfn
= build_lang_decl (FUNCTION_DECL
, name
, stattype
);
9666 DECL_SOURCE_LOCATION (fn
) = DECL_SOURCE_LOCATION (callop
);
9667 if (TARGET_PTRMEMFUNC_VBIT_LOCATION
== ptrmemfunc_vbit_in_pfn
9668 && DECL_ALIGN (fn
) < 2 * BITS_PER_UNIT
)
9669 DECL_ALIGN (fn
) = 2 * BITS_PER_UNIT
;
9670 grokclassfn (type
, fn
, NO_SPECIAL
);
9671 set_linkage_according_to_type (type
, fn
);
9672 rest_of_decl_compilation (fn
, toplevel_bindings_p (), at_eof
);
9673 DECL_IN_AGGR_P (fn
) = 1;
9674 DECL_ARTIFICIAL (fn
) = 1;
9675 DECL_NOT_REALLY_EXTERN (fn
) = 1;
9676 DECL_DECLARED_INLINE_P (fn
) = 1;
9677 DECL_STATIC_FUNCTION_P (fn
) = 1;
9678 DECL_ARGUMENTS (fn
) = copy_list (DECL_CHAIN (DECL_ARGUMENTS (callop
)));
9679 for (arg
= DECL_ARGUMENTS (fn
); arg
; arg
= DECL_CHAIN (arg
))
9681 /* Avoid duplicate -Wshadow warnings. */
9682 DECL_NAME (arg
) = NULL_TREE
;
9683 DECL_CONTEXT (arg
) = fn
;
9686 DECL_INTERFACE_KNOWN (fn
) = 1;
9688 add_method (type
, fn
, NULL_TREE
);
9691 push_function_context ();
9693 /* Still increment function_depth so that we don't GC in the
9694 middle of an expression. */
9697 /* Generate the body of the thunk. */
9699 start_preparsed_function (statfn
, NULL_TREE
,
9700 SF_PRE_PARSED
| SF_INCLASS_INLINE
);
9701 if (DECL_ONE_ONLY (statfn
))
9703 /* Put the thunk in the same comdat group as the call op. */
9704 symtab_add_to_same_comdat_group
9705 ((symtab_node
) cgraph_get_create_node (statfn
),
9706 (symtab_node
) cgraph_get_create_node (callop
));
9708 body
= begin_function_body ();
9709 compound_stmt
= begin_compound_stmt (0);
9711 arg
= build1 (NOP_EXPR
, TREE_TYPE (DECL_ARGUMENTS (callop
)),
9713 argvec
= make_tree_vector ();
9714 argvec
->quick_push (arg
);
9715 for (arg
= DECL_ARGUMENTS (statfn
); arg
; arg
= DECL_CHAIN (arg
))
9717 mark_exp_read (arg
);
9718 vec_safe_push (argvec
, arg
);
9720 call
= build_call_a (callop
, argvec
->length (), argvec
->address ());
9721 CALL_FROM_THUNK_P (call
) = 1;
9722 if (MAYBE_CLASS_TYPE_P (TREE_TYPE (call
)))
9723 call
= build_cplus_new (TREE_TYPE (call
), call
, tf_warning_or_error
);
9724 call
= convert_from_reference (call
);
9725 finish_return_stmt (call
);
9727 finish_compound_stmt (compound_stmt
);
9728 finish_function_body (body
);
9730 expand_or_defer_fn (finish_function (2));
9732 /* Generate the body of the conversion op. */
9734 start_preparsed_function (convfn
, NULL_TREE
,
9735 SF_PRE_PARSED
| SF_INCLASS_INLINE
);
9736 body
= begin_function_body ();
9737 compound_stmt
= begin_compound_stmt (0);
9739 /* decl_needed_p needs to see that it's used. */
9740 TREE_USED (statfn
) = 1;
9741 finish_return_stmt (decay_conversion (statfn
, tf_warning_or_error
));
9743 finish_compound_stmt (compound_stmt
);
9744 finish_function_body (body
);
9746 expand_or_defer_fn (finish_function (2));
9749 pop_function_context ();
9754 /* Returns true iff VAL is a lambda-related declaration which should
9755 be ignored by unqualified lookup. */
9758 is_lambda_ignored_entity (tree val
)
9760 /* In unevaluated context, look past normal capture proxies. */
9761 if (cp_unevaluated_operand
&& is_normal_capture_proxy (val
))
9764 /* Always ignore lambda fields, their names are only for debugging. */
9765 if (TREE_CODE (val
) == FIELD_DECL
9766 && CLASSTYPE_LAMBDA_EXPR (DECL_CONTEXT (val
)))
9769 /* None of the lookups that use qualify_lookup want the op() from the
9770 lambda; they want the one from the enclosing class. */
9771 if (TREE_CODE (val
) == FUNCTION_DECL
&& LAMBDA_FUNCTION_P (val
))
9777 #include "gt-cp-semantics.h"